Gene ID	Length(bp)	Gene name	COG	Product	Nucleotide seq	Protein seq	PGPT:Locus Tag	PGPT:Effect	PGPT:L1	PGPT:L2	PGPT:L3	PGPT:L4	PGPT:L5	PGPT:L6
AK001_00001	804			hypothetical protein	ATGACCGCAGACGTGCACCACCCGACCCGCCTCGACGTCCGGACCGGCATGCGCCCGGTGCGCCGCGCGGCCCAGCTCCTGCTGGGTCTGACGGCCTACACCGTCTCGATGGCCATGATGCTGCAGGCCGGCCAGGGCGGGATGCCCTGGGACGTGCTGCACCAGGGCCTGGTGCGCACCACCGGGTGGTCCTTCGGCGTCGCCGTCGCGCTGACGTCGCTGGCCGTGCTGGCGCTGTGGGTCCCGCTGCGGCAGCGTCCCGGGGTCGGGACGGTCGCGAACGTCGTGGTGATCTCGGTGCTGATCGGCCCCTGCCTGGCGATGGTCGAGCGGCTCGTGCCCGCTCCCGGAGTTCTCGCGCAGGTGCTGCTGGGCCTCGGCGGCATCGTGCTCAACGGCCTCGCCACCGCCGCCTACGTCGGCGTGCGGCTCGGGCCGGGGCCCCGGGACGGGCTCATGACCGGCCTCGTCGCGCGGACGGGCTGGTCCGTGCGCGGGGTCAAGACCGGCATCGAGATCAGCGTCGTGGCCGTCGGCTGGGTGCTCGGGGGCACCTTCGGCTGGATGACCGTCGCCTACGCGCTCGGGGTGGGGCCCGTCGTGCAGGCGGGCGCGCGGTGGCGGTGGCTCGTGCCCGACGGGCTGGCGGCTCCCGCGCGGCCGACGCCGGCCCGGCGGGTGCCGGGCCCGGTGCCGGTGACCGGGGACGGCAGGACCGAGCGCCGGCACGTCGAGCGGCGCCGTCGTGCCCGGCAGATCGCCCGGGCCCTGGAGACGTTCGGCGACCAGGACCGCACGCTCTGA	MTADVHHPTRLDVRTGMRPVRRAAQLLLGLTAYTVSMAMMLQAGQGGMPWDVLHQGLVRTTGWSFGVAVALTSLAVLALWVPLRQRPGVGTVANVVVISVLIGPCLAMVERLVPAPGVLAQVLLGLGGIVLNGLATAAYVGVRLGPGPRDGLMTGLVARTGWSVRGVKTGIEISVVAVGWVLGGTFGWMTVAYALGVGPVVQAGARWRWLVPDGLAAPARPTPARRVPGPVPVTGDGRTERRHVERRRRARQIARALETFGDQDRTL	PGPT0026395_859	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_RELATED_GENES	CE-BIOFILM-SURFACE_PROTEIN,PGPT0026395-yczE|yyaS-K07149	NA	NA
AK001_00002	1467	norG	COG1167	HTH-type transcriptional regulator NorG	GTGACCACCACCACATCCGGTCCGCCCGCCGCTGTCCGGTCCGTCTCCCCGCAGGCCACGGTGCGGCTGCTCGGCGCGTGGCACACGACCGGGCCGGCCTACGCGGCGCTGGCCGACGCGCTGCGCTCCGCCGTCCTCGCCGGCTCCCTGCCCGTGCTGACCCGGCTGCCGAGCGAACGCGAGCTCGCCCGGGCGCTGGGCGTCTCGCGGGCCACGACGTCGGCCGCCTACGCCCGGCTGCGGGACCTCGGCTTCGCCACCAGCCGCGTGGGCTCCGGGACGGTCGCCACGCTGCCGCGGGACGCCTCCCGGCACGAGGTCGCCGCCCCGCCCCCGGCCGGCGACGCTCCCGCGAGCGACACGCCGTCGGCGGACCCGACCATCCCCGCCACGGACGACACCATCGACATGTCCCAGGCGACCCCGTCCGCGTCCCGGGCCCTGCACGGCGCCTACACCCGCGCTCTCGAGGCGCTGCCCGCCTACCTGGACGGCGGCGGGTACGCCCACCTCGGCGTCGAGCCGCTGCGTGCTGCCGTGGCCGCGCGGTACACCGCCCGCGGGGTGCCGACCGACCCCGACCAGATCCTCGTGACCACGGGCGCGCAGCAGGCGATCGCGCTGCTGGCGACCACGCTGGTGGCGCGCACGGAGCACGTCGTGGTCGAGTCCCCCACCTACGTGCACGCCCTCGAGGCGATGCGCCGCACCGGCGCCCGCGTCGTCGGCGTGCCCGTCGGCGACGTCGAGGCGATCGAGTCGGTGGTCCGGCGCACCGGCGCGCGGTTCGTCTACCTCGTGCCGGACTTCCACAACCCGACCGGACGCTCCCTGTCCGCCGACGAGCGCCGCGCCCTGGCCGACCTCGTCGCCCGCCACGACGTGACCGTCGTGGGCGACGAGACGCTGACCGACGTCGACCTCGTCGGTGCCGGGGTGCCCGCACCCGTGGTCGGCGACGGGACCGACCCGCGGCTCGTCGCGGTCGGCTCCGCGTCGAAGTCGTTCTGGGGCGGGCTGCGCGTCGGCTGGGTGCGCGCCGACCCGCAGCTCGTCCGTCGGCTCGCGCACACCCGCCAGGTCCTGGACGTCGCCACCCCGGTGCTCGAACAGCTCGCGGTGACGGACCTGCTCGAGCACCGTGCCGCGATCCTCCCCGACCGCCTCGCGGCCCTGCGGGCCCAGCGGGACGACCTGGTCGACCTGCTGCACGAGCGGCTCCCGGCCTGGGACGTGCCCCGGCCGGACGGCGGGCTGTGCCTGTGGGTCGGCGTGGGCCGGCCGGTCGGGCGGGCGCTGGCCGCCGCGGCCGTCACGGAGGGCTTGCGCGTCTCCCCGGGTCCGCTGTTCACCCCGGACGGCTCGGGGCAGGACCGGGTGCGCCTGACCTACACCCGGCCGGCCGGGCAGTACGAACCGGTCGTCGACCGGCTCCGGCGAGCGTGGGAGCGGGTCGGCGGGCGCTGA	MTTTTSGPPAAVRSVSPQATVRLLGAWHTTGPAYAALADALRSAVLAGSLPVLTRLPSERELARALGVSRATTSAAYARLRDLGFATSRVGSGTVATLPRDASRHEVAAPPPAGDAPASDTPSADPTIPATDDTIDMSQATPSASRALHGAYTRALEALPAYLDGGGYAHLGVEPLRAAVAARYTARGVPTDPDQILVTTGAQQAIALLATTLVARTEHVVVESPTYVHALEAMRRTGARVVGVPVGDVEAIESVVRRTGARFVYLVPDFHNPTGRSLSADERRALADLVARHDVTVVGDETLTDVDLVGAGVPAPVVGDGTDPRLVAVGSASKSFWGGLRVGWVRADPQLVRRLAHTRQVLDVATPVLEQLAVTDLLEHRAAILPDRLAALRAQRDDLVDLLHERLPAWDVPRPDGGLCLWVGVGRPVGRALAAAAVTEGLRVSPGPLFTPDGSGQDRVRLTYTRPAGQYEPVVDRLRRAWERVGGR				NA	NA	NA	NA	NA
AK001_00003	210			hypothetical protein	ATGATCCGGCCGCGCTGGGAGTGGGCCCTCGACGACGACGCCGGCACGCCGCTGGCGGCGGCCCTGAGCCCCGCCTTCACCACGCAGTTCGACGCCGAGGAGTGGCTCGGCGAGCACTGGCGCGCCCTGGCCTCCGCCGGTGCCGCCCAGGCGCGCCTGCTGCACGACGGCACCCAGGCCACCCCCACGGTGGAGCTGCGCAAGCCGTGA	MIRPRWEWALDDDAGTPLAAALSPAFTTQFDAEEWLGEHWRALASAGAAQARLLHDGTQATPTVELRKP				NA	NA	NA	NA	NA
AK001_00004	1080	pyrD	COG0167	Dihydroorotate dehydrogenase (quinone)	ATGACGCCCTACACCCTGCTGTTCCAGACCGTCTTCCGGCGGATGGATCCCGAGCGCGCGCACGAGCTCGCCTTCCGCGCCATCGAGACCGCCGGCCGCGTGCCGGTGCTGCGCGACGTCGTCCAGGGTGCCCTCGCCCCCTACCTCGGCCGCGGCGCGGGCGGCCCCGGCAGCGTCGAGGTGCTCGGTCGGACGGTCCCGGCACCCTTCGGGCTCGCCGGCGGCTTCGACAAGAACGCCCGCGCGGTGCGTGGGCTGACCATGCTCGGCTTCGGGTTCGTCGAGGTCGGCACGGTCACGCCGCGCCCGCAGCCCGGCAACGACGCACCCCGGATGTGGCGCGAGCTCGACCTGCACGGTGTGCGCAACCGGATGGGCTTCAACAACGACGGCGCCGTCGAGATGGCCGAGCGGCTGCGGCGGCTGCGGTCCACGCCCGCCGGTCGTGCCGCCGTCGTCGGCGTCAACATCGGCAAGAACAAGACCACGTCGGCCGAGCACGCCGCCGACGACTACGCCCGGTGCGCCCGGCTGCTGGCGGTGGAGGCCGACTACCTCGTGGTCAACGTCTCCTCGCCCAACACCCCCGGCCTGCGGGACCTGCAGACCACCGCCGAGCTGCGGCCGATCCTCGTCGCGGCCCGGACCGCGGCCGACGAGGCCACGCGGGCCGCGGGGGTGCGGCGCACGCCGCTGCTGGTGAAGATCGCCCCGGACCTGGCCGACGAGGACGTCGACGCGGCCGCGGACCTCGTCACCGAGCTGGGGCTCGACGGCGTCGTGGCCGTCAACACCACGATCGGCCACGACCGCGGACCCGGCGGGCTGTCCGGGCCGCTGCTGCTGCCCCGGGGGCTGGAGGTGGTGCGGCGCCTGCGCGACCGCCTGGGACCCGACCCGGTGGTGATCGGCGTCGGCGGCGTCACGGGCGCGGACGACGTGCGTGCGTACCTGCGGGCCGGGGCCGACCTGGTCCAGGGCTACACGTCCTTCGTCTACCGCGGCCCGTTCTGGCCGTCCGCGATCAACCGCGCCCTGACCAGGTCCCAGGGCTCGTCGAGCGCCGGGAGGGTCGCATGA	MTPYTLLFQTVFRRMDPERAHELAFRAIETAGRVPVLRDVVQGALAPYLGRGAGGPGSVEVLGRTVPAPFGLAGGFDKNARAVRGLTMLGFGFVEVGTVTPRPQPGNDAPRMWRELDLHGVRNRMGFNNDGAVEMAERLRRLRSTPAGRAAVVGVNIGKNKTTSAEHAADDYARCARLLAVEADYLVVNVSSPNTPGLRDLQTTAELRPILVAARTAADEATRAAGVRRTPLLVKIAPDLADEDVDAAADLVTELGLDGVVAVNTTIGHDRGPGGLSGPLLLPRGLEVVRRLRDRLGPDPVVIGVGGVTGADDVRAYLRAGADLVQGYTSFVYRGPFWPSAINRALTRSQGSSSAGRVA	PGPT0021190_1444	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254	NA	NA
AK001_00005	450			hypothetical protein	GTGAGCGACGAGCACGCCCCGACGACCGGCCGCGGCTTCGGCCGGCTGCTGGTCACCGTCTACGGCATCCTGGCGTTCGCCGCGCTGGGCCGGTCGAGCTACCAGGTGCTGACCAAGCTCGCCGACGCGCCCGCCGCCTACCTGCTGTCGCTGCTGGCCGCCGTCGTCTACGTGGTGGCCACGGTCGCCCTCGCCCTCGGGGCACGCCCGGGCTGGCGGCGGGCCGCCTGGGCCGCCGTCGTCGTCGAGGCGGTCGGCGTGCTGACGGTGGGCACCCTCTCGCTGACGCACCCCGCGTACTTCGCCGAGGCGACCGTCTGGTCCGGCTTCGGCCAGGGGTACGGGTACGTCCCGCTCGTCCTGCCGTTCGTGGGGTTGTGGTGGCTCTGGCACACTCGCCCCGGACGCACCGCCCCGACGTCCGCGCCGGCCCGACCGACGGAGGCCTGA	MSDEHAPTTGRGFGRLLVTVYGILAFAALGRSSYQVLTKLADAPAAYLLSLLAAVVYVVATVALALGARPGWRRAAWAAVVVEAVGVLTVGTLSLTHPAYFAEATVWSGFGQGYGYVPLVLPFVGLWWLWHTRPGRTAPTSAPARPTEA				NA	NA	NA	NA	NA
AK001_00006	360			hypothetical protein	GTGGTCCTTCCGCTCCTTTACCTCGCCCTGCTGCTGTGCGTCCTGCTCGCGGGCTGGGCGGCGTGGTTCGTCCTGCGGGACCGCGCGGTGATCCTGCGCCAGCTCTTCGGCGCGGCGGCGGTGGAGGCCGTCCTGGTCGTCCAGGCCGTCGTCGCCGGCGTCCTGCAGGTCCAGGGGCACGCCGTGGACGGTCCGCTGTTCTGGGGGTACCTGCTCACCGCGGCGCTGCTGCTGCCCCTGGCCGCCGTGTGGGCCTTCGCGGAGCGCACCAAGTGGTCGTCGGTGGTGCTGTGCGTCGCCGCGCTGACGGTCGCGTTCCTCGAGTGGCGCCTGTGGATCATCTGGGAGGCGGGACTGTGA	MVLPLLYLALLLCVLLAGWAAWFVLRDRAVILRQLFGAAAVEAVLVVQAVVAGVLQVQGHAVDGPLFWGYLLTAALLLPLAAVWAFAERTKWSSVVLCVAALTVAFLEWRLWIIWEAGL				NA	NA	NA	NA	NA
AK001_00007	1509	pepA	COG0260	putative cytosol aminopeptidase	GTGCGCGTGGCTGACCTCACTCTGACCGGTAAGAACCCGACCTCCCTGACCGCTGACGCCCTCGTGGTGGGCACCTGCTCGACCTCCGACGGCGTGGCCGTCGTGGCCGACCAGCTCCCCGCCGCGCTGGTCGAGCAGCTCGAGACGCTCGCACCGCGACTCGGTGTGACCGGCGCCCGGCAGGAGGTGCGCACGGTGCCCGCCGGCAAGGACGTCTCGGCCGACGTGCTGGTCCTGACCGGGCTGGGCGAGCGGGACGCGGACGGCACCTTCGACCGCGAGACGCTCCGCGGCGCCGCCGGTGCGGCCGTCCGCTCGCTGGCCGGCTCGCGGTCGGCGGTCGTGGCCCTGCCCGCGGTCGACGAGGAGGAGCTCGGCGCCGTCGTCGAGGGCGCCCTGCTCGGCGCGTACGCCTACACGGCCTACCGCGAGGAGAAGGCCGCGACGAAGCTCGCCCCGGTGGAGACCCTGCAGGTCGCCACCCCGTTCGCCCGCTCGGCCCGCGCCAAGGCGGCCGTGGCCCGCGCCGAGGTGCTCGCCGCGGCCGTGCACGGCACGCGCGACCTGGTGAACACCCCCGCCAACGACCTCTACCCCGCCTCCTTCGTCGACGCGGTGAAGTCCGCCGTCAAGGAGCTCGGCGTCAAGGGCGTCAAGGTGTCGGTCCTCGACGACAAGCAGCTCGCCGCCGGCGGGTACGGCGGCCTGACCGGCGTCGGCCAGGGCTCGGCCCGCGGCCCGCGCATGGTCAAGCTCTCCTACTCCCCGCCCAAGCCGACCGACAAGGTCGCGCTGGTGGGCAAGGGCATCACCTTCGACACCGGCGGCATCTCCATCAAGCCGGCGGCCAACATGGGTGCGATGAAGTCCGACATGGCCGGCGCCGCCACGGTACTGCACGCCGTGCTCGCCGCGGCCCGCCTGGGTCTGCCGGTGGCCGTGACCGGCTACCTGTGCCTGGCGGAGAACATGCCCGGCAGCAACGCCACCCGTCCCGGTGACGTCCTGACCATCCGCGGCGGCAAGACGGTCGAGGTGCTCAACACCGACGCCGAGGGCCGCCTGGTCATGGCCGACGGCCTCGTCTCGGCGGTCGAGGACGGCCACGACGTCGTGCTCGACATCGCCACGCTGACCGGCGCGCAGATGGTCGCGCTCGGCAAGCGTGTCGGCGGCGTCATGGGCACCGACGACGTGCGCGACGAGGTCAAGGTCGCCGCGGACACCGTGGGCGAGCTGTTCTGGCCGATGCCGCTGCCCGAGGAGCTGGCCGACGGCCTGAAGTCGAAGACCGCCGACATCGCCAACGTCGGCGAGCGCTGGGGCGGCATGCTCTCGGCGGGGATCTTCCTGCAGTCCTTCGTGGGCGACACCCCGTGGGCCCACCTGGACATCGCCGGCCCGTCGTTCAACGACGCCGGCGCGTTCGGCTACACCCCGGTCGGCGGCACCGGCGTCGGCCTGCGCACGCTGGTCGGCTTCCTCGAGGGCCGCGGCACCACCGACTGA	MRVADLTLTGKNPTSLTADALVVGTCSTSDGVAVVADQLPAALVEQLETLAPRLGVTGARQEVRTVPAGKDVSADVLVLTGLGERDADGTFDRETLRGAAGAAVRSLAGSRSAVVALPAVDEEELGAVVEGALLGAYAYTAYREEKAATKLAPVETLQVATPFARSARAKAAVARAEVLAAAVHGTRDLVNTPANDLYPASFVDAVKSAVKELGVKGVKVSVLDDKQLAAGGYGGLTGVGQGSARGPRMVKLSYSPPKPTDKVALVGKGITFDTGGISIKPAANMGAMKSDMAGAATVLHAVLAAARLGLPVAVTGYLCLAENMPGSNATRPGDVLTIRGGKTVEVLNTDAEGRLVMADGLVSAVEDGHDVVLDIATLTGAQMVALGKRVGGVMGTDDVRDEVKVAADTVGELFWPMPLPEELADGLKSKTADIANVGERWGGMLSAGIFLQSFVGDTPWAHLDIAGPSFNDAGAFGYTPVGGTGVGLRTLVGFLEGRGTTD				NA	NA	NA	NA	NA
AK001_00008	354			hypothetical protein	ATGTCGTTGAGGTCTGCGCTGGACCGTCTCCTCGGACGGTCCGCACCGTCGTCGCCCGCCGCCGCGCCCGCCGGGGGTGGTCGAGCCGCCGCCGTCGGCCACCTCGAGGAGTTCGCCCGCACGCGCGTCGGCGTCGAGGCCTACGTCGAGCCGCCGAACGCGCAGACGCCGACCACCGTGCTGCTCGTGGCGACCACGGGGGAGTGGACACGGCGGCGCGTGCCCGACGAGCGCACCGGTTTCGAGGTCGCCCGCTCGCTCGGTGTGCCGGTCTACAACGTCCGCTTCACGGGATACCCGCAGCGGATGCGCGACTGGAACTCCGCCCAGCGCCAGGCGCGCAAGCGCCGCTGA	MSLRSALDRLLGRSAPSSPAAAPAGGGRAAAVGHLEEFARTRVGVEAYVEPPNAQTPTTVLLVATTGEWTRRRVPDERTGFEVARSLGVPVYNVRFTGYPQRMRDWNSAQRQARKRR				NA	NA	NA	NA	NA
AK001_00009	1782			hypothetical protein	ATGTCTGAGAACGTGCAGCTGCCGGCACTCGGCGAGTCCGTCACCGAAGGTACCGTCACGCGGTGGCTGAAGTCCGTCGGTGACACCGTCGAGGTCGACGAGCCCTTGCTCGAGGTCTCCACCGACAAGGTCGACACCGAGGTCCCCTCCCCCGTCGCCGGCGTCGTCGAGCAGATCCTGGCCGAGGAGGACGAGACCGTCGAGGTCGGCGCCGTGCTCGCCGTCATCGGCGACGGTTCCGGCTCCGGCTCCTCCGACGGCGGCTCGCAGGAGGCGCCCGCCGAGGAGTCCGCCGCCGAGTCCGCCCCCGCCGAGGAGTCTCCCGCGGAGTCCGCGCCGGCCCAGGAGCCCGCGGCCGAGTCCGCCCCGGCCGCCGAGGAGTCGGCGCCGCAGCCGTCCGCCGGCGGCGGTGACGGCACCGAGGTGACCCTGCCCGCGCTGGGCGAGTCGGTCACCGAGGGCACCGTGACGCGGTGGCTCAAGGAGGTCGGCGACAGCATCGAGGTCGACGAGCCCCTGCTCGAGGTCTCCACCGACAAGGTCGACACCGAGGTCCCCTCCCCCGTGGCGGGCACGGTGCAGGAGATCAAGGTCGCCGAGGACGAGACCGTCGAGGTCGGCGCCGTGCTCGCGATCGTCGGTTCGGGCGCCGCCCCCGCCGCCGAGAAGCCGGCCGAGAAGAGCGAGCCCGCGCCCGCTCCCCCGGCCGAGAAGCCCGCCGAGAAGTCCGAGCCGGCCCCCGAGCCGAAGGCCGAGAAGCCCGCCGAGTCGCCGGCGCCGGCCGAGTCGCCCGCCCCGGCGAAGTCCCCGGAGTCGGCTCCCGCGGCGGAGAAGCCCGCGGGCGGCCGCAGCTCGTACCTGACGCCGCTGGTGCGCAAGCTCGCCGCGGAGAAGGGCGTCGACGTCTCGACCGTCGAGGGCACCGGTGTCGGCGGACGCGTCCGCAAGGAGGACGTCCTGGCCGCGGCCGAGAAGGCCGCCGCTCCGGCCGCCGAGCCCGCGCCCGCGTCCGCGCCGTCGTCGGCCCCGAAGAAGCCGACCGTCCCCGAGGTCTCGCCGCTGCGCGGCACCACGGAGAAGATGTCGCGCCTGCGCAAGGTCGTGGCCGAGCGCATGCACGAGGCGCTGCACACGCAGGCCCAGCTCACCACCGCGGTCGAGGTCGACGTCACCAAGGTCTCGAAGCTGCGCCAGCGGGCGAAGGCCGACTTCAAGGCGCGCGAGGGCGCGAACCTCACGTTCCTGCCCTTCTACACCCAGGCCGCCGTCGAGGCGCTGAAGGCCTTCCCGAAGGTCAACGCGTCGATCGACACCGACAAGGGCGAGATCACCTACCACTCCTCGGAGAACGTGGGCATCGCCGTGGACACCGAGCGCGGCCTCGTCGTGCCGGTGATCAAGAACGCCGGTGACCTGAACCTGGCCGGGATCGCCCGTCAGATCGGTGACCTCGCGACCCGCACCCGCGACAACAAGATCGGGCCGGACGACCTCAGCGGCGCCACGTTCACCATCACGAACACCGGCTCCGGCGGTGCCGTGTGGGACACCCCGATCGTCCCGGTGGGCCAGGTCGCGATCCTGGGCACGGGCACCATCACGAAGAAGCCCGTGGTCGTCACCACCCCGGACGGCGAGGAGACCATCGCGATCCGTCAGATGGCGATGCTGTTCCTGTCCTACGACCACCGCCTGGTCGACGGCGCCGACGCCGCCCGCTTCCTCACCGCGGTGAAGAACCGCATCGAGGAGGGCGCGTTCGAGTCCGAGGTCGGTCTCTGA	MSENVQLPALGESVTEGTVTRWLKSVGDTVEVDEPLLEVSTDKVDTEVPSPVAGVVEQILAEEDETVEVGAVLAVIGDGSGSGSSDGGSQEAPAEESAAESAPAEESPAESAPAQEPAAESAPAAEESAPQPSAGGGDGTEVTLPALGESVTEGTVTRWLKEVGDSIEVDEPLLEVSTDKVDTEVPSPVAGTVQEIKVAEDETVEVGAVLAIVGSGAAPAAEKPAEKSEPAPAPPAEKPAEKSEPAPEPKAEKPAESPAPAESPAPAKSPESAPAAEKPAGGRSSYLTPLVRKLAAEKGVDVSTVEGTGVGGRVRKEDVLAAAEKAAAPAAEPAPASAPSSAPKKPTVPEVSPLRGTTEKMSRLRKVVAERMHEALHTQAQLTTAVEVDVTKVSKLRQRAKADFKAREGANLTFLPFYTQAAVEALKAFPKVNASIDTDKGEITYHSSENVGIAVDTERGLVVPVIKNAGDLNLAGIARQIGDLATRTRDNKIGPDDLSGATFTITNTGSGGAVWDTPIVPVGQVAILGTGTITKKPVVVTTPDGEETIAIRQMAMLFLSYDHRLVDGADAARFLTAVKNRIEEGAFESEVGL	PGPT0001390_1416	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001390-aceF|pdhC-K00627	NA	NA
AK001_00010	1329			hypothetical protein	GTGCAGACCGACACCGTGCTCACCGTCCCCTCCGACGCGACCGCCCGCGACGCCCTCCTGGACCGGCTGCGACGGCTGGCCACGATCGACGCCGCCCGGGTGGAACCCGTCGGAGCCGCCGTGGCACGCCCGGACGGAGCGCTCGTCGTGCCGCGCGGCTCGACGTCCGCGACGGACCTCGCCACCGTGCTCGCCGTGCGCGGGCGCTGCGACGGGCCCGAGGCGGCGGGACTCGCCGCCGACCTCGCCCAGGGGCTCGCCACGCTGCACAGCGCGGGCGTCGTGCACGGCGGGCTCGACGTCGCCGACGTCCTCGTCGACCTCACCGGCCGGGCCCTGCTGAGGCCGCGCCTGACCCCGCCGGCGGGCCCCGCGCACACCACGGAGAGCGCGGACGTGCACGCCCTGGCCCGACTCGTGGAGACCCTGCGCGGCCACGACCCCTCGGACGCCGCGACCGCGCTGCGCGCCGTGCTGGCCCCGGCGCTCGCGGACGACCCGCGGGTGCGTCCCGAGGCGGGCACCCTCGCCGCTCGCGTCCACGAGACCGCGAGCCCGGAACCGGTCCGGCTGCCCGAGCCGGCGGCGCTCGCCGCCGCGGCGCTGGGTGCGCACCGGCAACGGCCCGGTGGCGAGGTGGACGCGGTGGGCTCGGAGCCACGGCATCGGCGGGCGCGACGAGCAGCGGGCCCGGTCGATCCGCCCGGGGCAGGCGGCCGCGTCCCGTCACGGGCCGAGCGGCGGGCCCGGCGGACGACGGCCCGGCCTCCGGTCTCGCCGTGGCGGCCGGTGCTGGCGGGAGCCGGCGTCCTGGTCTCCCTGGGCGTGCTGGTGGCCGGGGGGCTGGCGCTGACGGCCGGGCAGGGGTCCACGGGGCACCCGTCGCCCCTGGTGGCGGCGTCGTCGCCGGCCACGGCGTCCTCGGCAGGTCCGGGGGCCGCGGACGGTGCGGCGACGACCGACCGCGACGACCCGGCCGGCGCCGCGGCCGAGCTGACCCGGCGCCGTGCCGGCCTGCTGACGGGCGAGCACGCCGTGGCGGAGGTGGCGCTGCCCGGCTCGGACGCCCACGGCGCGGACACGGCGCTGGTCGAGCGTGCGTCGGCGTCGGGGACCCGGCTCGTCGGGGCCGAGGTGACGGTGCTGTCGGCGCGGCTGGCCGCCGAGCCGTCGACCGGCACCGCCGAGGTCGTGGTGCGCTACGTCGTCGAGGAGCACACCCAGGTCGACGGTGACGCCGCCACCACCGTGCCGGCCGGCGCACCACGCACCGACACGGTCCGGCTCGCCTGGACCGCCGACGGGTGGCGCGTCACCGACGTCGTGTGA	MQTDTVLTVPSDATARDALLDRLRRLATIDAARVEPVGAAVARPDGALVVPRGSTSATDLATVLAVRGRCDGPEAAGLAADLAQGLATLHSAGVVHGGLDVADVLVDLTGRALLRPRLTPPAGPAHTTESADVHALARLVETLRGHDPSDAATALRAVLAPALADDPRVRPEAGTLAARVHETASPEPVRLPEPAALAAAALGAHRQRPGGEVDAVGSEPRHRRARRAAGPVDPPGAGGRVPSRAERRARRTTARPPVSPWRPVLAGAGVLVSLGVLVAGGLALTAGQGSTGHPSPLVAASSPATASSAGPGAADGAATTDRDDPAGAAAELTRRRAGLLTGEHAVAEVALPGSDAHGADTALVERASASGTRLVGAEVTVLSARLAAEPSTGTAEVVVRYVVEEHTQVDGDAATTVPAGAPRTDTVRLAWTADGWRVTDVV				NA	NA	NA	NA	NA
AK001_00011	1041	iolW	COG0673	scyllo-inositol 2-dehydrogenase (NADP(+)) IolW	ATGATCACGCCACGCGTCGCCATCATCGGGTACGGGGGAGCCGGCCGGGGGATCCACGCCGCCCTCGCACGGGAGGCCGGTCTCCCCGTCACCGGTGTCGTCACCCGCGACCAGGGTCGCCGCACCCAGGCCGCGGGCGACTGGCCCGGCGCCCGGCTGTACGACGACCTGGACGCCCTGCTGGCCGCGCGCTCGACCTACGACGTCGTCGTGGTCGCCAGCCCCACCCAGCTCCACGCCGCCCAGGCCGCGGCGCTGGCCCGGGCTGGCGTCCCGTTCGTCCTGGACAAGCCGATCGGCGTCGACGCCCACGAGGCGCGCGCCGTGGTCGCCGAGGCGGACGCGACCGGCACCCCCTTCACGGTGTTCCAGAACCGGCGCTGGGACCCGGAGCAGCTCACGCTCTCCGCGCTCCTGGGGCGCGGGGAGCTGGGCGACGTGCACACCTTCGAACGGCACTGGGAGCGCTGGCGGCCCGTACCGCGCAAGCGGTGGAAGGAGAACGACCCCGACGGCGGCGGTCTCCTGCTCGACCTCGGACCGCACCTCGTGGACTCCGCCACCCGGCTCTTCGGCCGGGTGACCGGCGTGTGGGCCCAGCTGCGGGCCCTGACCACGCCGACCGAGGACGACGTCTTCCTCGTCCTGACGCACGAGGCGGGGGGCGGGCTGGCCGCCAGCCCGCACGCCGTCACCTCGCGGCTGTGGGCCGGCTCCGTCGTCGCCGCGCCCGGGCCGCGCACCCGCGTGCTCGGCACCGACGGCGCCTACCTCGTGACCACCTTCGAGCAGGACGCCTCGCCGCTCGAGCGGTTCGACGACGACGCCCCGGCCGGCACGCACGGATGGTTCACGCGCGGGCGCGAGCGGCGGCCCGTCCCCGCCGCGGCGGGCGGCCACGCCGACTTCTACCGGGCCCTCGGCCCCTGGCTGGACGGCGAGGAGCCCGCGCCCGTCGACCCGGCCGACGCCGTGCGTACCGCCGAGGTCCTCGACGCGGCCCGCGTGGCTGCCCGTCAGGGACGCCGCGTCGAGCTCTGA	MITPRVAIIGYGGAGRGIHAALAREAGLPVTGVVTRDQGRRTQAAGDWPGARLYDDLDALLAARSTYDVVVVASPTQLHAAQAAALARAGVPFVLDKPIGVDAHEARAVVAEADATGTPFTVFQNRRWDPEQLTLSALLGRGELGDVHTFERHWERWRPVPRKRWKENDPDGGGLLLDLGPHLVDSATRLFGRVTGVWAQLRALTTPTEDDVFLVLTHEAGGGLAASPHAVTSRLWAGSVVAAPGPRTRVLGTDGAYLVTTFEQDASPLERFDDDAPAGTHGWFTRGRERRPVPAAAGGHADFYRALGPWLDGEEPAPVDPADAVRTAEVLDAARVAARQGRRVEL	PGPT0018530_219	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044	NA	NA
AK001_00012	2373	apeX	COG2409	Apo-petrobactin exporter	ATGCTGAGTAAAAGGTGGGCGGGTATCGCCCGTGGTCTGGTCATTCTGGCAGCGATCGGCGTCTGGCTCGCCATCGGGGCGTTCGGTGGCCAGGCCCAGGGCAACCTGAGCAGCGTCCAGGAGAACGACTCCGCCGCGTTCCTGCCCGAGAGCGCCGAGTCGACCCGGGCGGCCGAGCTCGCCGCGGAGTTCACCGACGACACGACCCTGCCCGCCCTGCTCGTGGCCGAGGCCGGTGACGGTGCCACCCTGACCCCCGAGCAGCTCGCGGACGTGCAGGCGTACGCCGAGGCGGTGCCGGACGCGCCGCTCGAGGGAGCCACCGGCGACGAGCCCGCCACGGTGGGCGAGGCCAGCGTCGCCGACCCGGTGGTCATCCCGTCCGAGGACGGCGAGGCGGCGCTGGTGCTGGTCTCCCTCGACGCCTCGCTCGCCGACGAGGTCGTCGGCGAGGAGGAGTCCAGCGTGACCGAGGCCGCCGTCACGGCGCTGCGCGACCTCGCCGAGCAGGGTGCCGGCGACGGCGGTCTGGCCGACACCGGGCTCGAGGCGTGGGTCACCGGACCGGCCGGCTTCGTCGCCGACCTCACCAACGCGTTCGGCGCCATCGACACCGTGCTGCTCCTCGTCGCCCTCGGCGCCGTCCTCGTCATCCTCGCCCTGGTCTACCGCTCGCCGTTCCTGCCGTTCGTGGTCATCTTCACCTCCGTGCTCGCGCTGTCCCTCGCCGGGCTCGCCGTCTACCAGCTGGCGGCGAACGACGTGCTGACCCTCAACGGCCAGTCCCAGGGCATCCTGTCGATCCTCGTGGTCGGCGCGTCCGTGGACTACTCCCTGCTCGTCGTGGCCAGGTACCGCGAGGAGCTGGGGCGGCTGTCGTCGCCCTACACCGCCCTGCGCCGCGCCGTCCGGGCGTCGTTCGAACCCATCACGGCCAGCGCGGTCACCGTCATCGCCGGCCTGCTCTGCCTGCTGCTGTCCGACCTGTCGTCCAACCGCAGCCTCGGGCCCGTCGCCGCCATCGGCATCGTCGCGGCGTTCCTGTCCGCGCTGACCCTGCTGCCGGCGCTGCTGCTCGTCGGCGGGAAGCGTGCCCGCTGGGTGTTCTGGCCCCGGATCCCCCGGGTGCCGGCCACCGCCGAGGGCGCGACGGCGTCCGACGCCGGCACGTCCGCCGCGCACGACGTCGAGGAAGACGCCGAGCAGGACGCCACGCACGGCGCTGCGCCCCGACACGGCCGCCACAGCGCCGCGGGCGCGACGGACGACGCCCCGGCCGTGGCCGGGCACGGCCTGTGGTCCCGCGTGGCCGGCTTCGTCGGTCGCCACGACCGGCCCGTCTGGATCGTCACCGCGATCGTGCTCCTCGCCGGTGCCACCTTCGTGCCCACGCTGAACGCCGGCGGGACGGGCGACTCCGACGTGTTCCTCACCCAGGTCGACTCCGTCGACGGCGAGGAGGTCCTCACCGCGCACTTCGAGGGCGTGTCCACCCAGCCGGCCACCGTCATCGTCCCCGAGGGCGACCTGGACGCCGTCGTGGAGGCCGCCGAAGGCACCGCGGGGGTCTCCGAGGCCGCCCCGGTGACCGACCAGCCGGCCCCGGCGCCCGGGGCGCCGGCCGGCGGCGACCCGCTCGTGGTGGACGGCCTGGTCCGGGTGGACGTCATCACCGACGCGCCCTCCGACAGCCAGGAGGCCACCGAGGCCGTCTCGGCCCTGCGGGACTCGCTGCAGGACGTCTCGCCCGACGCCCTCGTCGGCGGCGCCGCCGCCGAACGCCTGGACACCCAGCTCGCCGGCCAGCGTGACCTGCAGGTCATCGTGCCCGTCGTGCTGGTGGTCATCCTGCTGATCCTCATGCTGCTGCTGCGCTCGGTGCTGGCCGCCGCGCTCCTCATGGGGGCGAACGTGCTGTCGTTCGGCTTCGCCCTCGGCGTCTCGGCGATCCTGTTCAACACCGTCTTCGACTTCCCGGCGACCGACCCCAGCGTGCCGCTGTACGCGTTCGCGTTCCTCGTCGCGCTCGGCGTCGACTACTCGATCTTCCTCATGACCCGCGTGCGGGAGGAGAGCCTGAAGATCGGGACGCGGCCGGGGGTGCTGCGCGGGCTCGCGGTCACGGGATCGGTCATCACCTCGGCCGGTGTCGTGCTCGCGGCGACGTTCGCAGCCCTCGGCGTCATCCCGCTGGCGTTCCTCGCCCAGCTCGCCTTCATCGTCTCCTTCGGCGTGCTGATCGACACCCTCGTGGTCCGCAGCCTGCTGGTGCCGGCGCTGGTCCACGACATCGGCGACCGCACGTGGTGGCCGTCCCGCCTGGCGCGTCGCCCGGTGGCGGTCGAGCAGGGGTCGGGCACCATGGGCACATGA	MLSKRWAGIARGLVILAAIGVWLAIGAFGGQAQGNLSSVQENDSAAFLPESAESTRAAELAAEFTDDTTLPALLVAEAGDGATLTPEQLADVQAYAEAVPDAPLEGATGDEPATVGEASVADPVVIPSEDGEAALVLVSLDASLADEVVGEEESSVTEAAVTALRDLAEQGAGDGGLADTGLEAWVTGPAGFVADLTNAFGAIDTVLLLVALGAVLVILALVYRSPFLPFVVIFTSVLALSLAGLAVYQLAANDVLTLNGQSQGILSILVVGASVDYSLLVVARYREELGRLSSPYTALRRAVRASFEPITASAVTVIAGLLCLLLSDLSSNRSLGPVAAIGIVAAFLSALTLLPALLLVGGKRARWVFWPRIPRVPATAEGATASDAGTSAAHDVEEDAEQDATHGAAPRHGRHSAAGATDDAPAVAGHGLWSRVAGFVGRHDRPVWIVTAIVLLAGATFVPTLNAGGTGDSDVFLTQVDSVDGEEVLTAHFEGVSTQPATVIVPEGDLDAVVEAAEGTAGVSEAAPVTDQPAPAPGAPAGGDPLVVDGLVRVDVITDAPSDSQEATEAVSALRDSLQDVSPDALVGGAAAERLDTQLAGQRDLQVIVPVVLVVILLILMLLLRSVLAAALLMGANVLSFGFALGVSAILFNTVFDFPATDPSVPLYAFAFLVALGVDYSIFLMTRVREESLKIGTRPGVLRGLAVTGSVITSAGVVLAATFAALGVIPLAFLAQLAFIVSFGVLIDTLVVRSLLVPALVHDIGDRTWWPSRLARRPVAVEQGSGTMGT				NA	NA	NA	NA	NA
AK001_00013	489			hypothetical protein	ATGACACCGCAGAGCCGATCCGGCACGGAACCGGACCCGATGAGCGAGGACCCGCGCCAGTGGCCCACGGGGCGCCTCCTCTTCTCGGTCGCGCGCCGGATCGAGCAGGACTGGAACGCGCACCTGGCGACCTGGGACCTCAACCACGCCGGGCACCCCGCGCTCCTGCACCTGATGGGCGGACCGCTCACCCAGCGCGAGATCGCCGCCCGCAACGGGGTCACCGAGCAGACCATGAGCCGCATCGTGGCTCGTCTCGAGCGCTCCGGCTACGTGACGCGGGACGACGACCCGCGCGACCGTCGTCGTCGCGCCGTCACCCTCACCGACCTCGGCCGGCGCGTCGCGCTGGAGGCGGCGCAGTTCCAGCCCGCCGAGGACCTCACCGCGCGCGGCCTCGACGAGGACCAGGTCGAGGCCCTGCGCGAGCTCCTCGTGGCGATGGTGCGCGCCCAGCGCGCGGAACCCCGCACCCCCGCCGAGCAGTAG	MTPQSRSGTEPDPMSEDPRQWPTGRLLFSVARRIEQDWNAHLATWDLNHAGHPALLHLMGGPLTQREIAARNGVTEQTMSRIVARLERSGYVTRDDDPRDRRRRAVTLTDLGRRVALEAAQFQPAEDLTARGLDEDQVEALRELLVAMVRAQRAEPRTPAEQ	PGPT0013155_513	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
AK001_00014	717	lipB	COG0321	Octanoyltransferase	ATGGACGTCGTCTCCCTGCCGGGCCCGGTCGACTACCACGAGGCCTGGGACCTGCAGCGCCGCACGCACGCCGCCGTGCACGCGGGCCAGGACGCCGGACGCCTCTTCCTGCTCGAGCACGCCTCGGTGTACACGGCCGGACGACGGACCCGCCGGGCCGAGTACCCCACCGACGGCACCGCGGTCGTGGACGTCGACCGCGGCGGCAAGATCACCTGGCACGGGCCCGGCCAGCTCGTCGCCTACCCGATCGTCCCCCTGCGCTCCCCCGTCGACGTCGTCGCCTACGTCCGCACGCTCGAGGCCGCCGTGATGGACGTCTGCCGCGGGCTGGGGCTCGAGCCGGTCCGCGTCGAGGGCCGTTCCGGCGTGTGGTTCGCGGCCGACGACGGCGCCGAGGGGCCCGACGGCGGTGCCCCGCGCCGGGCCCGCAAGGTCTGCGCGATCGGCGCCCGTGTGGCCCGCGGCGTGACGATGCACGGCCTGGCCCTGAACTGCGACCCGGACCTGACCGCGTTCGACGCCATCGTGCCCTGCGGCATCGACGACGCCGACGTCACCTCGCTGTCGGCCGAGACCGGACGGCGCGTCACGGTCGACGACGTCCGGGACGCCCTGACCGAGGCCCTGGTCGGGCACCTGGCACCCCTGGTGACCCACCTCACGCCCACGCAGCAAGACGTCGCGCCGGGGCCGCGCGACGCCGTCGTAGGCTGA	MDVVSLPGPVDYHEAWDLQRRTHAAVHAGQDAGRLFLLEHASVYTAGRRTRRAEYPTDGTAVVDVDRGGKITWHGPGQLVAYPIVPLRSPVDVVAYVRTLEAAVMDVCRGLGLEPVRVEGRSGVWFAADDGAEGPDGGAPRRARKVCAIGARVARGVTMHGLALNCDPDLTAFDAIVPCGIDDADVTSLSAETGRRVTVDDVRDALTEALVGHLAPLVTHLTPTQQDVAPGPRDAVVG	PGPT0003925_1353	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCE	PLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801	NA	NA
AK001_00015	1011	lipA	COG0320	Lipoyl synthase	GTGACCATCGCACCCGAGGGCCGCCGCCTGCTGCGCGTCGAGGCCCGCAACGCCGAGACCCCCATCGAGAAGAAGCCCGAGTGGATCAAGACCCGAGCGGTCATGGGCCCGGAGTACAAAGAGCTCAAGGGCCTGGTCAAGGGCGGTGGGCTGCACACCGTCTGCGAGGAGGCGGGCTGTCCCAACATCTTCGAGTGCTGGGAGGACCGCGAGGCGACCTTCCTCATCGGCGGTGACCAGTGCACCCGCCGGTGCGACTTCTGCCAGATCGACACCGGCAAGCCGGCCGACTTCGACGCCGACGAGCCGCGCCGCGTGGCCGAGTCGGTCCAGCAGATGGGTCTGAAGTACTCCACGGTCACGGGCGTCGCCCGCGACGACCTGGCCGACGGCGGCGCCTGGCTGTACGCCGAGACCGTCCGGCAGATCCACGCGCTCAACCCGGGTACCGGCGTCGAGCTGCTCATCCCGGACTTCAACGCGATCCCCGAGCTGCTCGACGAGGTCAACGCCTCGCGACCCGAGGTGATGGCGCACAACGTCGAGACCGTGCCGCGGATCTTCAAGAAGATCCGCCCCGCCTTCCGCTACGAGCGGTCGCTGTCGGTGCTGACCCGTGCGCGCGAGGCCGGCCTGGTGACCAAGTCGAACCTCATCCTCGGCATGGGCGAGACCATCGAGGAGGTCAAGTCCGCGCTGGACGACCTGCAGTCGGCCGGGTGCGACCTCATCACGATCACCCAGTACCTGCGCCCGTCCGTGCGCCACCACCCCGTGGAGCGCTGGGTGCGCCCCGAGGAGTTCGTCGAGCTGAGCGAGTACGCCGAGGAGATCGGGTTCCTCGGCGTCATGGCCGGCCCGCTGGTGCGGTCCTCGTACCGCGCCGGACGCCTGTGGGGCCAGGCCATGACCAAGCGCGGCCAGGCCGTCCCGGAGGCGCTCGCGCACCTGACCGAACCCACGACCGCACGCCAGGAGGCGGCGAGCCTCGTCGCTCCCCGCGCCCAGTAG	MTIAPEGRRLLRVEARNAETPIEKKPEWIKTRAVMGPEYKELKGLVKGGGLHTVCEEAGCPNIFECWEDREATFLIGGDQCTRRCDFCQIDTGKPADFDADEPRRVAESVQQMGLKYSTVTGVARDDLADGGAWLYAETVRQIHALNPGTGVELLIPDFNAIPELLDEVNASRPEVMAHNVETVPRIFKKIRPAFRYERSLSVLTRAREAGLVTKSNLILGMGETIEEVKSALDDLQSAGCDLITITQYLRPSVRHHPVERWVRPEEFVELSEYAEEIGFLGVMAGPLVRSSYRAGRLWGQAMTKRGQAVPEALAHLTEPTTARQEAASLVAPRAQ	PGPT0003935_1180	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCE	PLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644	NA	NA
AK001_00016	735			putative protein	ATGGCCCGCACGAAGTCCGACGCCGGCGAGCCCGCCGACGCGTCCACGAAGAAGCAGAAGAAGCCCAAGAAGCAGCGCTGGTACCACCAGGTGTGGTCCGCGTACCAGATGACCAGGCGACAGGACCCCATGGTCACCTGGATCATGCTGGCGGTCTTCCTCGGCGTCCTCGCCGTCGCGCTGCTCATCGGCGCCCTGACCGGCAACGTGATCTACGCCTCGATCATCGGTCTGCCGTTCGCCCTGCTCGCCGCGATGTTCGTCCTGACGCGCAAGGCCGAGCGGGCGGCGTACACCCAGATCGCCGGCCAGCCGGGCGCCGTGCGCGCCGCGCTGGGCACCGTCCGCGGCGGCTGGAACTTCGACGACGAGCCGGTGGCGGTCAACCGCCACCAGGACCTCGTCTTCCGCGGCGTGGGACGCCCCGGCGTCGTGCTGGTCTCCGAGGGCCCCGCGCACCGCGTGCAGCGGATGCTGGCCGACGAGCGCAAGCGCACCACGCGCATCCTGCCCAACGTCCCGGTCGCCACGATCCAGGTCGGCGACGAGGAGGGCCAGGTGCCGCTGCCCAAGGTGGCCCGCAAGGTGCAGCGCATGAAGAAGCAGCTCACGCGGGCCGAGGCCGGCGAGGTCGGCAAGCGGCTCAAGGCGCTCGGCGGGGTCCGCCTGCCGGTGCCCAAGGGCGTCGACCCCATGAACGCCCGCCCCGACCGCAAGGGGATGCGCGGGCGCTGA	MARTKSDAGEPADASTKKQKKPKKQRWYHQVWSAYQMTRRQDPMVTWIMLAVFLGVLAVALLIGALTGNVIYASIIGLPFALLAAMFVLTRKAERAAYTQIAGQPGAVRAALGTVRGGWNFDDEPVAVNRHQDLVFRGVGRPGVVLVSEGPAHRVQRMLADERKRTTRILPNVPVATIQVGDEEGQVPLPKVARKVQRMKKQLTRAEAGEVGKRLKALGGVRLPVPKGVDPMNARPDRKGMRGR				NA	NA	NA	NA	NA
AK001_00017	1425	glnA_1	COG0174	Glutamine synthetase	ATGTTCACCAATGCCGAGGAGGCAATCGCCTTCACCCGCAACGAGGGGGTGGAATTCATCGACGTCCGGTTCATCGACCTGCCGGGCGTCATGCAGCACTTCAACATCCCCGTGGCGCAGTTCGACGAGGACTCGTTCACCGACGGCCTCATGTTCGACGGCTCCTCGATCCGCGGGTTCCAGGCGATCCACGAGTCGGACATGAAGCTCGTCCCGGACGTGAAGACCGCCTTCATCGACCCGTTCCGCAAGCGCAAGACGCTCGTGATGAACTTCTCGATCGTCGACCCGTTCACGGACGAGCCCTACGCCCGTGACCCGCGCAACATCGCGGCCAAGGCCGAGGCCTACCTCGCCTCCACCGGTCTCGCGGACACGGCGTTCTTCGCGCCCGAGGCCGAGTTCTACATCTTCGACTCCGCTCGCTTCGAGACCAACTCGCAGCGGAGCTTCTACGAGATCGACTCCGTCGAGGCCGCCTGGAACACCGGCCGCGACGAAGAGGGCGGGAACCTCAGCTACAAGACCCGCTACAAGGGTGGCTACTTCCCCACCTCCCCCAGCGACCGCTTCGCGGACCTGCGCGACGACATGGTCGCGACCCTGGGCCAGGTGGGCCTGGACGTCGAGCGTGCGCACCACGAGGTGGGCACGGCCGGCCAGCAGGAGGTCAACTACAAGTTCAACACCCTGCTGCACGCCGCCGACGACCTGATGAAGTTCAAGTACGTCATCAAGAACGTCGGCTTCAACGCCGGCAAGTCGGTGACGTTCATGCCGAAGCCGATCTTCGGTGACAACGGCTCGGGCATGCACTCGCACCAGTCGCTGTGGCTGAACGGCGAGCCGCTGTTCTACGACGAGAAGGGCTACGGCGGCCTGTCCGACATGGCCCGCTGGTACATCGGCGGTCTGCTCAAGCACGCCCCGTCGCTGCTGGCCTTCACCAACCCGTCGGTGAACTCGTTCCACCGCCTGGTCCCCGGCTTCGAGGCCCCGGTCAACCTGGTCTACTCGGCCCGTAACCGCTCGGCCTGCATCCGCATCCCGGTCACCGGCTCCTCGCCGAAGGCCAAGCGCGTCGAGTTCCGCGTGCCGGACCCGTCGTCGAACCCGTACCTCGCGTTCTCCGCGATGCTGCTCGCCGGCATCGACGGCATCAAGAACCGCATCGAGCCGCCGGCCCCGGTCGACAAGGACCTCTACGAGCTCCCGCCGGAGGAGCACGCGGAGATCGCCCAGGTCCCGAGCTCGCTCGAGGGCGCGATCAACAACCTCGAGGCGGACCACGAGTTCCTCACCCAGGGCGACGTCTTCTCCGAGGACCTCATCGCCACCTGGGTCGACTACAAGCGCACCAACGAGATCGACCCGATCCGTCTGCGCCCGCACCCGCACGAGTTCGAGCTCTACTACGACATCTGA	MFTNAEEAIAFTRNEGVEFIDVRFIDLPGVMQHFNIPVAQFDEDSFTDGLMFDGSSIRGFQAIHESDMKLVPDVKTAFIDPFRKRKTLVMNFSIVDPFTDEPYARDPRNIAAKAEAYLASTGLADTAFFAPEAEFYIFDSARFETNSQRSFYEIDSVEAAWNTGRDEEGGNLSYKTRYKGGYFPTSPSDRFADLRDDMVATLGQVGLDVERAHHEVGTAGQQEVNYKFNTLLHAADDLMKFKYVIKNVGFNAGKSVTFMPKPIFGDNGSGMHSHQSLWLNGEPLFYDEKGYGGLSDMARWYIGGLLKHAPSLLAFTNPSVNSFHRLVPGFEAPVNLVYSARNRSACIRIPVTGSSPKAKRVEFRVPDPSSNPYLAFSAMLLAGIDGIKNRIEPPAPVDKDLYELPPEEHAEIAQVPSSLEGAINNLEADHEFLTQGDVFSEDLIATWVDYKRTNEIDPIRLRPHPHEFELYYDI	PGPT0000645_2394	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915	NA	NA
AK001_00018	1176	gltA_1		2-methylcitrate synthase	ATGAGCGAGACCGTCGAGATCAGGAAGGGTCTGGCCGGTGTCACGGTCGACCGCACCGCCGTCTCCCACGTCAACGTCGAGAGCAACTCGCTGCTCTACCGGGGGTACCCGGTGCAGGAGCTCGCGGCGACCACCTCGTTCGAGGAGGTCGTGCACCTGCTCTGGTACGGCGACCTGCCCAGCGCGGAGGAGCTCGACCGCTTCCGAGCGGCCGAGCGGAAGCACCGTGCGCTGGACGCGCACCTGATGGACGTCATCGACGGGCTGTCGCGGACCGCCCACCCGATGGACGTGGTGCGCACCGCCGTCAGCGTCATCGGTGCTGACGACCCCGACGTCGCCGACCAGGACCCCGAGACGGTGCTGCGCAAGGCGCTCGTGCTCTACGCGAAGCTCCCTGCCGTCGTGGCCCACGTCCAGCGACGGCGTCGGGGGCTGGCCCCGGTCCCGCCCCGGGACGACCTGGGCTACGCCGCGAACTTCCTGTGGATGACTTTCGGCGACGAACCCGACGAGGTCGTGCGCCAGGCCTTCGACGTGTCGATGACGCTCTACGCGGAGCACTCGTTCAACGCCTCGACCTTCACCGCCCGGGTGGTCGCCTCGACGCTGTCCGACTACCACAGCGCGATCGTGGCGGCCGTGGGCGCCCTCAAGGGGTCGCTGCACGGCGGGGCGAACGAGGCCGTGATGCATACCTTCGACGAGATCGGCACCGCAGCGAACGTCGTGCCGTGGCTCGACACCGCGCTCGCGGACAAGCGCAAGATCATGGGATTCGGGCACCGCGTGTACAAGCGCGGCGACTCCCGGGTGCCCACGATGCAGGCGGCGCTCGACTCACTCGTCGCGCACGACGACCGGCCCGATCTCGCGGAGCTCGCCACGACCCTCGAGACGGAGTTTGTCGAGCGCAAGGGGATCTACCCGAACCTCGACTATCCCTCCGGCCCCGCCTACCACCTCATCGGCTTCGACACCGAGCTCTTCACGCCGATCTTCGTGGCCTCGCGCATCGCCGGCTGGACCGCGCACGTCCAGGAGCAGTACGCCGACAACGCCCTGATCCGTCCGCTCAGCGCCTACGACGGCGTGGGCGAGCGGCACGTCGCCGGCTACGTCCCGGACGCGGCGGCGGTGGCCGCGGCGACCCGGAGCGAGGAGCAGGCCGGGTAG	MSETVEIRKGLAGVTVDRTAVSHVNVESNSLLYRGYPVQELAATTSFEEVVHLLWYGDLPSAEELDRFRAAERKHRALDAHLMDVIDGLSRTAHPMDVVRTAVSVIGADDPDVADQDPETVLRKALVLYAKLPAVVAHVQRRRRGLAPVPPRDDLGYAANFLWMTFGDEPDEVVRQAFDVSMTLYAEHSFNASTFTARVVASTLSDYHSAIVAAVGALKGSLHGGANEAVMHTFDEIGTAANVVPWLDTALADKRKIMGFGHRVYKRGDSRVPTMQAALDSLVAHDDRPDLAELATTLETEFVERKGIYPNLDYPSGPAYHLIGFDTELFTPIFVASRIAGWTAHVQEQYADNALIRPLSAYDGVGERHVAGYVPDAAAVAAATRSEEQAG	PGPT0001480_934	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659	NA	NA
AK001_00019	1410			hypothetical protein	ATGACCGCGCTGCGGCGAGGGCTGCCGCGTCGTCCGGGCGGGCCGCCGTGGCCGCCGGCCGGCGAGGCGCCCGGGACGGCGGGCGTCGTGGCCGCGCCGGAGGCGTCCGTGGCCACCGGGACGATCGAGCGCCCGGAGGAGGGCGTCGCTGAGCCGGAGGCCTCGGCCGCGGGCACGGGCGGCGCGACGTCCGCCCGGCCGGCAGCCGCGTCCGGTGGGTCTGCCCAGGGTCCTGCGCAGCCGGTCGCCGACGGTGTCCCGCTGCGCCGCGGCCTGCCGCGCGTGGCCGGGGGAGAGCCGTGGCCGCCGGCGGGGACGGCGCCGGCCTGGGCGTACCGACCGCCCGAGCCGGAGCCCGAGCCCGAGCCGGAGTCCGAGCCCGAGGCGGGGCCGGAACCGGTGCCCGAGCCCGAGGCGGGGCCGGAACCGGTGCCGACTCCGGTCGGGGCGGGGGACGACGTCCCCGTCGCACGGCAGCAGCCGGGCACGGTCGGCGGTGACGAGCCCTCCGCCAGGACCGGCCCGCGACTGCCGCGCCGCGCGGCCCGTGCTCTGGCGCTGGTCGCCGTGGCGGTCGTGCTGGTCGGTGTCGCCGTCCTGGTGGCGCGGTGGCTGGTCGACCTCGAGCCGGTGCAGCGCTTCCTGGCGACGTACCCCGGCGACTACCCCCTGCCCGAGGGGTCGCCGGTGGGGATCCCCGCCTGGCTCTCGTGGCAGCACTTCTTCAACGTGTTCCTGCTGGTGATGATCGTGCGCACCGGCTGGATGGTGCGGCGCCAGCAGCGCCCCGAGGCGTACTGGGCCCCACGGTCCGCGCCGAGCTCGCGCGTCAGCATCATGTCCTGGGCCCACCAGGCGCTGGACGTCTTCTGGGTCGCCAACGGCGCGCTCTACCTGGTCCTGCTCTTCGTGACCGGCCAGTGGGTGCGCATCGTGCCGACCGACTGGAGTGTGGTCCCGAACGCGCTCTCCGCTGGACTGCAGTACCTCTCGCTGAGCTGGCCCACCGACAACGGCTGGGTGCACTACAACAGCCTGCAGCAGCTGGCCTACTTCACCACCGTGTTCGTCGCGGCGCCGCTGGCGATCGCCAGTGGGGTGCGGATGAGCTCCGCGTGGCGCGAGGGCAGCCGGTGGGACCGGGTGCTCCCCGTCGCGGCGGCCCGCCGTCTCCACTTCCCGGTGATGCTCTACTTCGTCGCGTTCACGGTCGTCCACGTGGCCCTCGTGCTCTCGACCGGTGCGCTGCGCAACCTCAACCACATGTACGGCGGACGCGACGAGGTGAGCTGGTTCGGCTTCTGGATGTTCGTGGCCTCGCTCGTCGTGATCGTGGCGGCCGCGTCCGCGCTGCGCCCGGTCCTCCTCGCGCCCGTCGCCCGCCGGTTCGGCACCGTCAGCCGGCGCTGA	MTALRRGLPRRPGGPPWPPAGEAPGTAGVVAAPEASVATGTIERPEEGVAEPEASAAGTGGATSARPAAASGGSAQGPAQPVADGVPLRRGLPRVAGGEPWPPAGTAPAWAYRPPEPEPEPEPESEPEAGPEPVPEPEAGPEPVPTPVGAGDDVPVARQQPGTVGGDEPSARTGPRLPRRAARALALVAVAVVLVGVAVLVARWLVDLEPVQRFLATYPGDYPLPEGSPVGIPAWLSWQHFFNVFLLVMIVRTGWMVRRQQRPEAYWAPRSAPSSRVSIMSWAHQALDVFWVANGALYLVLLFVTGQWVRIVPTDWSVVPNALSAGLQYLSLSWPTDNGWVHYNSLQQLAYFTTVFVAAPLAIASGVRMSSAWREGSRWDRVLPVAAARRLHFPVMLYFVAFTVVHVALVLSTGALRNLNHMYGGRDEVSWFGFWMFVASLVVIVAAASALRPVLLAPVARRFGTVSRR				NA	NA	NA	NA	NA
AK001_00020	981	etfA_1	COG2025	Electron transfer flavoprotein subunit alpha	ATGACCGACGTCCACGACGCACCGATCCTGGTGCTCCTCGACCGCACGCCCGACGGTGCACCGGCGGCGTCGTCCGCCGAGCTGCTCGGGGCGGCCGCCACGATCGGCACGCCCGTCGCGCTGCTCGTGGGACCCGGTGCCGAGACCGAGGCCGCCGCGGCCGGCGCGCTGGGGGCGCGGCGGGTGCTGACCGTCTCCACGCCGGCCAAGACGCTGGGTGTCCCCCAGGTGGACGCCCTCGCGGCGGCGGCACGGCACGTCCGCCCGGCGGCGGTGCTCGCCGCGCACTCCGTGGAGGGGCGCGAGGTGGCCGCCCGCTACGCGGTCCGGACCCGGTCGGCGCTCACGGTCGACGCCGTGCGGGTCTCCCGCGACGACGAGGGGATCGTCTCCCACCACTCGGTCTACGGCGGGACCTACCTGGTCGACGCCGCACCGACGTTCGGCGCGCCGGTCATCACCGTCCGGCCCGGCGAGATCGACGACCGGGCACCGGCCGTCGACGACGCCGCCGTCGAGGAGATCGAGGTCGAGGACTCGGGCCTGCCCGGTGCCGAGATCGTGGCGGTCGAGCCGGTCGAGGTCACCTCGGAACGACCCGAGCTGCGCGGGGCCGAGAAGGTCGTGTCCGGCGGTCGGGGACTGGGCTCGGCGGAGGGTTTCGAGCTGGTCGAGCGCCTTGCCGACGCGCTCGGTGCCGCCGTCGGCGCCTCGCGCGTCGCGGTGGACAACGGGTACGCCCCGGCGTCGGCCCAGGTGGGGCAGACGGGCGTGTCCGTGTCACCGCGCCTCTACGTCGCCCTGGGCATCTCGGGCGCGATCCAGCACCGTGCCGGGATGCAGACCGCCCAGACCATCGTCGTCGTCAACAACGACGCCGACGCGCCCCTGTTCGAGATCGCGGACTTCGGGGTGGTCGGTGACGTGTTCGAGGTCGTGCCGCAGCTCGTGGCCGCGCTCGAGGAGCGGAGGGGCGCATGA	MTDVHDAPILVLLDRTPDGAPAASSAELLGAAATIGTPVALLVGPGAETEAAAAGALGARRVLTVSTPAKTLGVPQVDALAAAARHVRPAAVLAAHSVEGREVAARYAVRTRSALTVDAVRVSRDDEGIVSHHSVYGGTYLVDAAPTFGAPVITVRPGEIDDRAPAVDDAAVEEIEVEDSGLPGAEIVAVEPVEVTSERPELRGAEKVVSGGRGLGSAEGFELVERLADALGAAVGASRVAVDNGYAPASAQVGQTGVSVSPRLYVALGISGAIQHRAGMQTAQTIVVVNNDADAPLFEIADFGVVGDVFEVVPQLVAALEERRGA	PGPT0001040_2341	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522	NA	NA
AK001_00021	777	etfB_1	COG2086	Electron transfer flavoprotein subunit beta	ATGAAGATCGTCGTGCTGATGAAGGTGGTCCCGGACACCTACGTGGACCGCACGCTGTCGCTCGAGACGGGGCTGGCCGACCGTGCCACCGCCGACCTCGTCCTCGACGAGATCGACGAGCGTGCGCTCGAGGTGGCCCTGGCCCACGCCGACGAGGACCCCGAGACCGAGATCGTCGCCGTCGCCATGACCCCGGAACCCGGTGTCACCAGCCTGCGCAAGGCGCTCGCCCTCGGGGCGATCTCGGCGCTGCAGGTGGTCGACGACCGTCTCCTCGGGGCCGACGTCGTGCTCACCGCCGAGATCCTCGCCGCGGCCGTGCAGCACGTCGGCTTCGACCTCGTCCTGGCCGGCGACGCGTCCACCGACGGGTCCGGCGGGGCCGTCCCGGCCGCCGTCGCCGAGCTCCTCGCCCTGCCGTGCGCCACCGCGCTGGCCGAGGTGGAGCTGACCGCGACCGAGGTCACCGGCCTGCGCGCCTCCGACGGCGCCACCGTGCGCCTCACCGCGCCCCTGCCGGCCGTGGTGTCCGTCACCGAGGCGCTGCCCGAGGCCCGCATGGCCGGCTTCAAGGGGATCATCGCCGCCAAGAAGAAGACCATCGAGACCGTCTCCGCCACCGACCTCGGCGTCGACCCCGAGCCGGCCGACGCCGCCCGGTCGATCATGCTCGCCGTCGCCGAGCGGCCGGCGCGGACGGCGGGCACCAAGATCGTCGACCGCGGGGACGCCGGTGAGCAGCTGGCGGCGTTCCTCCTCGAGAACCGGCTGGCATGA	MKIVVLMKVVPDTYVDRTLSLETGLADRATADLVLDEIDERALEVALAHADEDPETEIVAVAMTPEPGVTSLRKALALGAISALQVVDDRLLGADVVLTAEILAAAVQHVGFDLVLAGDASTDGSGGAVPAAVAELLALPCATALAEVELTATEVTGLRASDGATVRLTAPLPAVVSVTEALPEARMAGFKGIIAAKKKTIETVSATDLGVDPEPADAARSIMLAVAERPARTAGTKIVDRGDAGEQLAAFLLENRLA	PGPT0001035_1904	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521	NA	NA
AK001_00022	1098			hypothetical protein	GTGAGCGCGCTCGTGACCGGACCCGACCGGACCGACGTCGTGCAGGACGCGGCCGAGGCAGCGGCGGCCCCGCGCCCGCCGCTGCTCGTGCTCGACCCGCTGCAGCGGTACCTCGACGGCCTCGGGGTCCCGGCGGGCACGCTCGCCTGGCGGCGCATCGGCGACGGCCAGGCCAACGTCACCTACGAGGTGCGGCGCGGCGGCGAGCGGGTGGTGCTGCGCCGCGGACCGCGCCCCCCGTTCCCGCCGTCGGCCCACGACATGGTCCGCGAGGCCCGCGTCGTCGCCGCGCTGGGTGCCGTGGGCGTGCGCGTGCCGCGGGTCCGCGCGGTGTGCGACGACCTCGCCGTGCTGGGTGTGCCCTTCTACCTCATGGACTACGTCGAGGGCGAGGTCGTCACGACGTCGTTGCCGCCCGGGTTCGACGGCCCGGGCGCCGGGACCGCCCTGGTCCACGCCGCCGTCGACGCCCTCGCCGACCTGCACCAGGTACCTCTCGAGGGCGAGGTGGCCGGCCTCGGCCGGCCCGCGGGGTACCTGGACCGGCAGGTCCGGCGCTTCGCGCAGCTCTGGCCGGTGAACACCCGGCGCTCCGTCCCGGTCGTCGACCGGCTGGCCGAGCGGCTCGCCGCCACCGTGCCGCGGTCCGCCCGCGCGACGGTCGTGCACGGCGACTACCGCCTCGGCAACCTGCTGTTCGCCGCGCCCGACCGGCTGGCCGCCGTCCTGGACTGGGAGATGGCGACGCTCGGGGACCCGCTCGCGGACCTGGGCTACCTCGTCGCCACCTACTCCGCGGCGGGCGAGGTCCGCACGCCGATGGACCTCACCCCGGTGACCGCCGGCCCGGGGTTCCCGTCCCGGGCGGGCCTCGTCGAGCGATACGCTGCCCGCACCGGTGCGGACCTGGAGAACCTGGCCTGGTACGAGGCGCTCGCCCTGTGGAAGTCGACGATCTTCTGCGAGGCGATCTACACACGATGGCTCGACGGGCAGCGACCGGACGACACCTTCGCCCCCGGCCTGGCCGAGGGCGTCCCGCTGATGGCCGACGTCGCCGCCCAGGCGCTGTCCCGTGCCGAGGAAGGAAGACGATGA	MSALVTGPDRTDVVQDAAEAAAAPRPPLLVLDPLQRYLDGLGVPAGTLAWRRIGDGQANVTYEVRRGGERVVLRRGPRPPFPPSAHDMVREARVVAALGAVGVRVPRVRAVCDDLAVLGVPFYLMDYVEGEVVTTSLPPGFDGPGAGTALVHAAVDALADLHQVPLEGEVAGLGRPAGYLDRQVRRFAQLWPVNTRRSVPVVDRLAERLAATVPRSARATVVHGDYRLGNLLFAAPDRLAAVLDWEMATLGDPLADLGYLVATYSAAGEVRTPMDLTPVTAGPGFPSRAGLVERYAARTGADLENLAWYEALALWKSTIFCEAIYTRWLDGQRPDDTFAPGLAEGVPLMADVAAQALSRAEEGRR	PGPT0008385_114	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
AK001_00023	1200	bbsG		(R)-benzylsuccinyl-CoA dehydrogenase	ATGACCGCCGCGGAGCTCGTCGAGCGCACCCGACGTTTCGTCCGCGACGTCGTGGTCCCGGCGGAACCGCCGGTCGGCACCCCGCTGGACGCCGCCGGCCGCCGTGCGCTGCAGCGACGGGCCCGGGAGGCCGGCGTGTTCGCGCCCCACGTGCCGACCCGGTTCGGCGGGCAGGGGCTGCGGCTCGGCGAGTGGTCCGCCGTCTTCCAGGAGGCCGGCTACTCGCCGATCGGCCCGGCGGTCCTCAACTGCATGGCGCCCGACGAGGGGAACATGCTGCTGCTGGAGCGGGTCGCCACCCCCGCGCAGCAGGAGCGCTACCTCGCCCCGCTCGCCGCGGGCGAGACGCGGTCGTGCTTCGCCATGACCGAGCCGCACCCGGGTGCCGGGTCGGACCCGGCCGCCCTGACGACCACGGCGCGCCGGGTCGACGGGGGATGGGCGATCGACGGGGAGAAGCGGTTCATCTCCGGTGCCGAGGAGGCCGACGTCGCCGTCGTCATGGCGCGCACGCCGGAGATCGGCCCGGACGCCGCGACGATGTTCCTCGTGGAGATGGGGGCCGACGGCGTCTCGATCGGGCACGGCATCCGCACGCTGGAGACCGCGATCACCGGCGGGCACCCGCACGTGCTCTTCCGGGACTGCGTCGTCCCCGACGACGCCGTCCTCGGCACGCCGGGGGAGGGCTTCCGGCACGCCCAGGTCCGGCTCGGCCCCGCCCGGCTCACGCACTGCATGCGATGGCTGGGGCTGGCGCGTCGGGCCCACGACACCGCGCTGGACCGGGTGCGCCACCGCGAGCTGTTCGGGTCCCCGCTGGCCGAGCTGGGCATCGCGCAGGCGCTCGTCGCCGACTCCGAGATCGACCTCGCCACGGCCGCCGCCCTCGTCGACCGGGCGGCCCGCACGCTCGAGGACGACGCGCGGGCCGGCGCCCAGGCGTCGTCCATCGCGAAGGTGCACTGCTCCGAGGCGGTCGGACGGGTCGTCGACCGGGCCGTCCAGCTCTGCGGCGGCGACGGCGTGACCCTCGAGCTGCCCCTGCTGGCGTTCCAGAACGAGGTCCGCCCCTTCCGCGTGTACGACGGGTCGAGCGAGACGCACCGGTGGGCCATCGCGCGTCGTGCCGTCGCGCACCGCGAGCGGGAGGTCGAGGCCGGCGAACGCGTCCTGGACCGAGCGGAGGCCGACCGGTGA	MTAAELVERTRRFVRDVVVPAEPPVGTPLDAAGRRALQRRAREAGVFAPHVPTRFGGQGLRLGEWSAVFQEAGYSPIGPAVLNCMAPDEGNMLLLERVATPAQQERYLAPLAAGETRSCFAMTEPHPGAGSDPAALTTTARRVDGGWAIDGEKRFISGAEEADVAVVMARTPEIGPDAATMFLVEMGADGVSIGHGIRTLETAITGGHPHVLFRDCVVPDDAVLGTPGEGFRHAQVRLGPARLTHCMRWLGLARRAHDTALDRVRHRELFGSPLAELGIAQALVADSEIDLATAAALVDRAARTLEDDARAGAQASSIAKVHCSEAVGRVVDRAVQLCGGDGVTLELPLLAFQNEVRPFRVYDGSSETHRWAIARRAVAHREREVEAGERVLDRAEADR	PGPT0008385_1932	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
AK001_00024	789	baiA		3-alpha-hydroxycholanate dehydrogenase (NADP(+))	ATGACGGAGGGTGAAGCGCCCCGGGTGGGCAGCTGCACGCGCCTCGAGGGCCGTGTGGGACTCGTGACCGGCGCGAGCCGTGGCATCGGCCTCGCGGTCGCGCGACGACTCGTCGCGGAGGGCGCGTCCGTCGTGCTCACCGCGCGCTCCGCCGAGGACCTGGAGTCGGCGGCGGCGACGCTGCCGCCCGGCCGCGTCCGGGTCGTCGCCGGACGCGCCCAGGACCCGGACCACCGCCGCGCGGCCGTGCAGACCGCCGTGCGCGAGCTCGGGGCACTGGATGTGCTCGTCAACAACGCCGGCATCAACCCGGTCTACGGGCCGCTCGTCGGGCTCGATCCCGAGGCCGCACGCAAGGTGCTGGAGGTGAACGTCGTCGGCACGCTCGGCTGGGTCCAGGAGGCCCTCGCGGCCGGGCTCGGCGACCGCGAGGGCGCCGCCGTCCTCAACCTCTCGTCCGTGAGCGGGCAGGTGCCGTCGCCGGGCATCGGCTGGTACGGCGTCAGCAAGGCCGCCGTCGCCCACCTCACCACGACGCTCGCCGTCGAGCTCGCCCCGTCGGTCCGCGTCAACGCCCTCGCCCCCGCGGTGGTCAGGACCCGGTTCGCCCGGGCGCTGTACGAGGGGCGCGAGGCGGAGGTCGCCGCACGCTACCCGCTGGGGCGCCTCGGGGAGCCGGTCGACGTCGCCTCCGCCGCCGCGTTCCTGTGCTCCGACGACGCGAGCTGGATCACCGGGCAGGTCCTCACGCTCGACGGCGGTCTGCTCGCCGCGGGAGGGACGGCATGA	MTEGEAPRVGSCTRLEGRVGLVTGASRGIGLAVARRLVAEGASVVLTARSAEDLESAAATLPPGRVRVVAGRAQDPDHRRAAVQTAVRELGALDVLVNNAGINPVYGPLVGLDPEAARKVLEVNVVGTLGWVQEALAAGLGDREGAAVLNLSSVSGQVPSPGIGWYGVSKAAVAHLTTTLAVELAPSVRVNALAPAVVRTRFARALYEGREAEVAARYPLGRLGEPVDVASAAAFLCSDDASWITGQVLTLDGGLLAAGGTA	PGPT0003180_1815	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_00025	1161	mmgC_1	COG1960	Acyl-CoA dehydrogenase	ATGAGCCAGATCATCGGACCGCGATCCCTCTACGAGGACGAGCACGAACAGCTGCGCGAGATGGTGCGAGCCTTCGTCGAGCAGTACGCCCGCCCGCACGCCGCACGCTGGGAGCAGGAGGGCCGGGTCGACCGCAAGCTCTTCGTCCAGGCCGCGGAGGCCGGGATCCTGGGCTTCGGCATCCCGGAGGAGTACGGAGGCGGGGGGTCGGACGACTTCCGCTTCAACGCCGTCATGGGCGAGGAGCTCGCCCGCCACCCCGTGTCGGACGGCATGGCGGGCATCGCCCTGTCGAACGACATCGTCATCCCCTACTTCACCGACCTGACGGACGACGAGCAGAAGGAGCGCTGGCTGCCCGGCATCGCGGCCGGGGAGTCGATCGTCGCCGTGGCGATGTCCGAACCCGGCACCGGCAGCGACCTCGCCGGGATCCGCACCACGGCCACCCGCGACGGCGACGACTACGTCGTCGACGGGTCCAAGACGTTCATCTCCAACGGGCAGAACGCCGACCTCGTGGTGACCGCCGTGCGCACCGGGCCCGACCCGCACCGCGGGCTGAGCCTGCTCGTGATCCCCGCCGACTCCCCCGGGTTCTCCCGGGGACGGCGGCTCGAGAAGATCGGCCTGCACGCCCAGGACACCAGCGAGCTCGCGTTCGAGGGCGTCCGCGTCCCGGCGGCGAACCTGCTGGGCGCCGAGGGGTCCGGGTTCGCCGGCCTCATGCGCAACCTGCCGCAGGAACGGATCTCCATCGGCGCCGCCGCCGTCGCGTCCAGCGAGGGCGTCCTGGAGCGGACGCTCGAGTACGTCACGCAGCGGCACGCGTTCGGCCGACCGATCGGGTCGTTCCAGAACACCCGCTTCGAGCTGGCCGAGATGGTCACCGCCGTGCGGGCCAGCCGCGCCTACGTCGACGCCTGCCTCGTGCAGCACAACGCGGGCCGGCTGAGCCCCGAGGACGCGGCCGCGGCGAAGTTCTGGGCCACCGAGCAGTACGTCGACGTGGTGGGCCGCTGCCTGCAGCTGTACGGCGGCTACGGCTACATGCGGGAGTACCGCATCGCCCGCGACTACGAGGACGCCCGCATCACCACCATCTACGGAGGCACGACCGAGATCATGAAGGAGATCGTCGGTCGGGGCCTGGGACTGTGA	MSQIIGPRSLYEDEHEQLREMVRAFVEQYARPHAARWEQEGRVDRKLFVQAAEAGILGFGIPEEYGGGGSDDFRFNAVMGEELARHPVSDGMAGIALSNDIVIPYFTDLTDDEQKERWLPGIAAGESIVAVAMSEPGTGSDLAGIRTTATRDGDDYVVDGSKTFISNGQNADLVVTAVRTGPDPHRGLSLLVIPADSPGFSRGRRLEKIGLHAQDTSELAFEGVRVPAANLLGAEGSGFAGLMRNLPQERISIGAAAVASSEGVLERTLEYVTQRHAFGRPIGSFQNTRFELAEMVTAVRASRAYVDACLVQHNAGRLSPEDAAAAKFWATEQYVDVVGRCLQLYGGYGYMREYRIARDYEDARITTIYGGTTEIMKEIVGRGLGL	PGPT0008385_5748	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
AK001_00026	1209	fadA_1	COG0183	Putative acyltransferase	ATGACCGAGGCACTCATCTACGACGCGGTGCGCACACCGCGAGGAAAGAACCGCGACGGCGCGCTGCACGGCGTCAAGCCGGTCGACCTGGTGGTCGGCCTGATCCACGCACTGACCGAGCGGCACCCCTCCATGGACCCCGAGCTGATCGACGACGTCGTGCTCGGCGTCGTCTCCCCCGTCGGCGAGCAGGGCGGCGACATCGCCCGGACCGCCGCGCTGGTCGCCGGGCTCCCCGAGACCGTCGCGGGCGTCCAGCTCAACCGGTTCTGCGCGTCGGGCCTGGAGGCGGTGAACACCGCCGCGCAGAAGGTCATGAGCGGCTTCGAGGACCTGGTGCTCGCCGGCGGGGTCGAGTCCATGTCCCGCGTCCCGATCGGGTCCGACGGCGGGGCCTACGTGCAGGACCCCACCACCAACTACGACCTGCACTTCGTCCCCCAAGGGATCGGAGCCGACCTCATCGCCACCCTCGAGGGCTTCACCCGGCAGGACGTCGACGCCTACGCGGTCGAGTCCCAGCGCCGGGCCGAGGAGGCCTGGCGCGAGGGGCGCTTCGCCCGCTCCGTGGTCCCGGTGCGCGACGTCAACGGGGTCACCCTGCTCGACCACGACGAGCACCGGCGCCCCGGGTCGACCGTCGAGTCGCTCGGACACCTGAAGCCCGCCTTCGCCATCCCCGGCGCCCAGGCCGGGTACGACGCGGTGGCTCTGCAGAAGTACCACCACGTCGAGGCGATCGACCACGTGCACACGGCGGCCAACTCGTCGGGCATCGTCGACGGCGCCGCGCTCGTCCCCGTCGGCAGCCGGGAGATCGGCGACCGGCTCGGCCTCACGCCCCGGGCGCGCATCGTGGCCGCCGCCGTCACGGGGTCGGAACCGACGATCATGCTCACCGGCCCCGCCCCGGCGACCCGCAAGGCGCTCGCGCAGGCCGGCCTCACGGTCGACGACATCGACCTGTTCGAGCTCAACGAGGCGTTCGCCTCGGTCGTCATGCGGTGGGAGCGGGAGATGGGCGTCCCCCACGACAAGGTCAACGTCAACGGCGGCGCGATCGCCATGGGGCACCCGCTCGGAGCCACCGGGGCCATGATCCTCGGCACGCTCCTCGACGAGCTGGAGCGGCGCGACCTGCAGCGCGGGCTGGCCACGCTCTGCGTCGGTGCCGGCATGGGGATCGCCACCATCATCGAGCGGGTCTGA	MTEALIYDAVRTPRGKNRDGALHGVKPVDLVVGLIHALTERHPSMDPELIDDVVLGVVSPVGEQGGDIARTAALVAGLPETVAGVQLNRFCASGLEAVNTAAQKVMSGFEDLVLAGGVESMSRVPIGSDGGAYVQDPTTNYDLHFVPQGIGADLIATLEGFTRQDVDAYAVESQRRAEEAWREGRFARSVVPVRDVNGVTLLDHDEHRRPGSTVESLGHLKPAFAIPGAQAGYDAVALQKYHHVEAIDHVHTAANSSGIVDGAALVPVGSREIGDRLGLTPRARIVAAAVTGSEPTIMLTGPAPATRKALAQAGLTVDDIDLFELNEAFASVVMRWEREMGVPHDKVNVNGGAIAMGHPLGATGAMILGTLLDELERRDLQRGLATLCVGAGMGIATIIERV	PGPT0008320_4351	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
AK001_00027	2190	fadJ_1	COG1024	Fatty acid oxidation complex subunit alpha	ATGAGCGTCATCGAGGACAAGACCGACGTCCGGCTCGGGTACGACTGGGCCGAGGACGCCGACGGCGTCGTCACCATCACCATGGACGACCCGGACAGCGCGGCCAACACCATGAACGCCCACTTCGTGAGCGCGATCGAGGCGACCGTCGAGCGGCTGGAGGCCGAACGCGACCGGATCGCCGGCGTCGTCCTCGCCTCGGCCAAGAAGAGCTGGTTCGCCGGCGGGGACCTCAACCTGCTGCGCGCCGCCGACCCCGAGAGGTCGGCCGAGGAGACCGCGCACATCGACCACGTCAAGTCGCTCCTGCGCCGCCTCGAGCGGCTCGGTCGGCCCGTGGTCGCCGCGCTCACCGGCACCGCGCTCGGCGGCGGTCTCGAGGTCGCGCTGGCCACCCACCACCGGATCGCCGCCGGCGACGCCGCGGGGGCACGGTTCGGGCTCCCCGAGGTCTCTCTCGGGCTGCTGCCCGGCGGCGGCGGGGTGACCCGCACCGTCCGGATGCTCGGCCTGCAGAAGGCCCTCGCCGACGTGATCCTGCCGGCCACGCGCTTCACCGCGGAGGGTGCGCTGGACGCGGGGCTCGTCGACGAGGTCGTGCCCGCGGCCGAGGTCCACGACCGGGCCAAGGCGTGGATCGCCGCCCACCCGGAGCCCGTCCAGCCCTGGGACGCCGACGGCTTCCGCCTGCCCGGGGGCTCGCCGTCGTCGCCGTCGATGGCCCAGGCCCTGGCCGCGATGCCGGCCATGCTGCGCCAGCAGGTCAAGGGAGCGCCCGTGCCGGCACCCCGCGCCGCCATGGCCGCCGCCGTCGAGGGCGCGTCCGTGGACTTCGACACCGCGTCGAGGGTCGAGACCCGCTACCTCGTCCAGCTGACCCACACCCAGGTCGCCAAGAACATGATCCAGGCGTTCTTCTTCGACCTGCAGAGCATCACCGCCGGAGCCAGCCGGCCCGAGGGCTACCCCACGTACCGGGCGACCCGTCTGGGCGTCGTCGGGGCCGGGATGATGGGCGCGGCGATCGCCTACGTGGCCGCGCGCAGCGGCATCGACGTCGTCCTCAAGGACGTGTCCGCCGAGGCAGCCGAGCAGGGCAAGGACTACGCACGCAAGCTCGAGGAGAAGGTCCTGCGGCGGGGGAAGACCACCCCGGAACGCAGCGCCGAGCTCCTCGACCGGATCACCGCGACCGGCGAGGCCGCCGACTTCGCGGGCGTGGACTTCGTCGTCGAGGCCGTCTTCGAGTCCGTCCCTCTCAAGCAGGGGGTCTTCCAGGAGATCCAGGACGTCGTGGAGCCCGACGCCGTGCTCGGGTCCAACACCTCCACCCTGCCGATCACGCTGCTGGCCGAGGGCGTCGACCGGGTCGAGGACTTCATCGGCATCCACTTCTTCTCCCCCGTCGACAAGATGCCCCTGGTCGAGATCGTGCGGGGCGAACGCACGAGCGACGCCGTGCTGGCGAAGGTGTTCGACTTCGTCCTGCAGATCCGCAAGACGCCGATCGTCGTCAACGACGCCCGCGGGTTCTTCACCTCGCGCGTGATCGGCAAGTTCATCGACGAGGCGGTCGCCGCCGTCGGCGAGGGCGTCGAACCGGCGAGCATCGAGCAGGCGGCGCTCCAGGCCGGGTACCCCGCAGGCGCCCTGCAGCTGCTCGACGAGCTCACGCTGTCGCTCACGCAGAAGATCCGCACCGAGACCCGCGCCGCCGAGGAGGCCGAAGGACGCACCTGGGTCCCGCACCCCGCCGAGGCCGTGGTCGACTGGATGGTCGACTCCCAGGACCGGCCGGGACGCAAGGCCCGCCGGGGCTTCTACGAGTACGACGAGTCCGGGCGGCGCGTCCGGCTCTGGCCGGGACTGCGCGAGAAGTACGACTCCGGCAGCGCCGACGTCCCGCTCGTGGACCTCCAGGAGCGGATGCTCTTCGCCGAGGCCCTCGACGCGATCGCCTGCCTCGACGACGGAGTGCTCACCACCGTCGCCGACGCCAACATCGGCTCGATCTACGGCATCGGCTTCCCCGCGTGGACGGGGGGCGTGCTGCAGTACGTCAACCAGTACGCGGGCGGGCTCGAGGGGTTCGTCGGGCGCGCCCACGAGCTGGCGGACACCTACGGCGAGCGGTTCCGCCCCCCGGCCTCGCTCGTCGCCCGGGCCGCCGCCGACGAGACCTACGCGTAG	MSVIEDKTDVRLGYDWAEDADGVVTITMDDPDSAANTMNAHFVSAIEATVERLEAERDRIAGVVLASAKKSWFAGGDLNLLRAADPERSAEETAHIDHVKSLLRRLERLGRPVVAALTGTALGGGLEVALATHHRIAAGDAAGARFGLPEVSLGLLPGGGGVTRTVRMLGLQKALADVILPATRFTAEGALDAGLVDEVVPAAEVHDRAKAWIAAHPEPVQPWDADGFRLPGGSPSSPSMAQALAAMPAMLRQQVKGAPVPAPRAAMAAAVEGASVDFDTASRVETRYLVQLTHTQVAKNMIQAFFFDLQSITAGASRPEGYPTYRATRLGVVGAGMMGAAIAYVAARSGIDVVLKDVSAEAAEQGKDYARKLEEKVLRRGKTTPERSAELLDRITATGEAADFAGVDFVVEAVFESVPLKQGVFQEIQDVVEPDAVLGSNTSTLPITLLAEGVDRVEDFIGIHFFSPVDKMPLVEIVRGERTSDAVLAKVFDFVLQIRKTPIVVNDARGFFTSRVIGKFIDEAVAAVGEGVEPASIEQAALQAGYPAGALQLLDELTLSLTQKIRTETRAAEEAEGRTWVPHPAEAVVDWMVDSQDRPGRKARRGFYEYDESGRRVRLWPGLREKYDSGSADVPLVDLQERMLFAEALDAIACLDDGVLTTVADANIGSIYGIGFPAWTGGVLQYVNQYAGGLEGFVGRAHELADTYGERFRPPASLVARAAADETYA	PGPT0001870_748	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001870-fadJ-K01782	NA	NA
AK001_00028	984		COG2070	NADH:quinone reductase	ATGGTGACGACACGTCTGACCGAGGCGCTCGGGATCGAGCACCCCGTGATCCAGGGCGGGATGATGTGGGTCGGCCGTGCGGAGCTCGCCGCGGCCGTCTCGGAGGCGGGCGGCCTGGGCATGATCACGGCCCTCACCCAGCCGACGCCGGCCGACCTGGTCGCCGAGATCGAGAAGGCTCGTGCGCTCACGGACAAGCCCGTGGGCGTCAACCTGACCATCCTGCCCGCGATCGACCCCCCGCCGTACGACGAGTACCGCCGCGCGATCATCGACGCCGGCGTCACGATCGTCGAGACGGCGGGCGCCAACCCGGAGCCGCACATGGACATGTTCACCGCGCACGGCGTGCGGGTGATCCACAAGTGCACCAGCGTGCGGCACGCGCTCAAGGCGCAGAGCGTCGGGGTGACCGCCGTGTCGATCGACGGCTTCGAGTGCGCCGGGCACCCCGGGGAGGACGACGTCCCGGGCCTGGTGCTCGTGCCCGCGGCGGCGGACCGGCTGACGATCCCCTTCACCGCCTGCGGCGGGTTCGCCGACGGGCGCGGGCTCGCCGCGGCGCTCGCGCTCGGCGCCGACGGCATCACGATGGGCTCGCGGTTCATGTGCACCCAGGAGTCGCCCGTCGCACCGACCGTCAAGGAACGGATCGTGGCGGGCACCGAGCGCGACACGAACCTCATCTTCCGGCAGCTGCGCAACACGGCCCGCGTGGCGAAGAACGCCGTGAGCGACGAGGTCGTCGAGGTGCTGGCGCGCGGCGGGGACTTCGCCGACGTCCGCGAGCTCGTCGCGGGCCGCCACGGGCGGAAGGTGTTCGAGGACGGTGACCTCGACGCGGGTATCTGGACGGTGGGGCTCGTGCAGGGCCTCATCCACGACGTGCCGGCCGCGGGCGAGGTCGTGCGGCGCACCGTCGCCGACGCCGAGCAGATCCTGCGCGACCGGCTGGCGATGTTCGCGAGCCCTGCTGCGGTGTGA	MVTTRLTEALGIEHPVIQGGMMWVGRAELAAAVSEAGGLGMITALTQPTPADLVAEIEKARALTDKPVGVNLTILPAIDPPPYDEYRRAIIDAGVTIVETAGANPEPHMDMFTAHGVRVIHKCTSVRHALKAQSVGVTAVSIDGFECAGHPGEDDVPGLVLVPAAADRLTIPFTACGGFADGRGLAAALALGADGITMGSRFMCTQESPVAPTVKERIVAGTERDTNLIFRQLRNTARVAKNAVSDEVVEVLARGGDFADVRELVAGRHGRKVFEDGDLDAGIWTVGLVQGLIHDVPAAGEVVRRTVADAEQILRDRLAMFASPAAV	PGPT0006800_3585	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459	NA	NA
AK001_00029	1311			hypothetical protein	ATGTCCATCGTCCGCACCGCAGGACGCGCACGACCCCTGACCACGCTCGCGGCGGGGATCGCCGTCGTCGCGCTCACCCTGGCGGGGTGCTCCGGGCGCGACGCGGCCGACGACGCCCCCGCCGCGTCCGGGGAGGACGCCGGCGACGACACCACGACCGCGGCCGCCGCCGAGGACTGCAGCCCCGGCTTCACCGAGACCGAGGTGCGGATCGGCAACAGCATCCCGCTCTCGGGACCGGCCGCCGCCTACGGCGCGATCGGTCAGACGCTCCAGGCCTACTTCGACGACGTCAACGCCGCCGGGGGGCTCGAGCTGGCCGACGGCACGCAGCGCGACGTCTCGGTCAGCGTCGTCGACGACGGCTACGACCCCGCGAAGACCGCCGCGAACGTCCGCTCGCTCGTCGAGCAGGAGGAGGTGTTCGCCCTGGCGGGCGTGCTCGGGACGGGCGCCGCGATCAGCGTCGCACCGTACGTGGAGGAGGCCGGCGTACCGAACCTGTTCGTGGGCACCGGCACGGACGCCCTCCAGTCCCTGCACGCCGAGGACCCCTGGACGACCGGCTTCATGCCCCAGTACGGCTTCGAGGTGCAGGCGCTCGCCGAGTACCTCGTCGCGCACCACCCCGGCGCGACCGCCGCGATCCTGTACCAGAACGACGACTTCGGCGAGAGCGTCCGCGCGGGCTTCGAGGAGGCGTTCGAGGGCACCGACCTCGAGATCGTCGCCGCCGAGCCGTACGAGCTGGCCAGCGCCTCCGTCGACAGCCAGGTCACGACCCTCGCGGCGTCCGAGGCGGACATCTTCCTGGACTGGGCCGTCGGGTCGTTCGCGACGCAGTCGCTCAAGAAGAAGATGGAGCTCGGGTGGGACGCGACGACCGTCGTCAGCGCCCCGGCGGCCGACGCGACGTTCTTCCTCAAGCCCGCCGGCGAGGGAGCCGCCGACGGCGTCGTCTCCGTCGCCTACACCAAGGACATCACCGACCCGTCGTCCGCCGGCGACGCCGGCTTCGACGCCTGGACCGATTTCGCCACGGCGCACGACGAGGTCGACCCCCTCTCCGCCCCCGCGGCGGCGGGCTACCAGACCGCGCAGCTGCTGGAGGCCGCGCTGCAGCAGATGCAGGGCTGCACCCGCGAGGCGCTGCTCGAGGCGGCGACGACCTTCGAGGGCCTCGAGCTCGACCTCGCGCCGGTCGCCGTCACCACGACGCCGGACTACCCGTACGTCTTCCGGGAGATCAAGGTCCAGGTCTTCAACGGCGAGAACTGGGACCTCGCCGAGGGGGACTACACCGTCGACTGA	MSIVRTAGRARPLTTLAAGIAVVALTLAGCSGRDAADDAPAASGEDAGDDTTTAAAAEDCSPGFTETEVRIGNSIPLSGPAAAYGAIGQTLQAYFDDVNAAGGLELADGTQRDVSVSVVDDGYDPAKTAANVRSLVEQEEVFALAGVLGTGAAISVAPYVEEAGVPNLFVGTGTDALQSLHAEDPWTTGFMPQYGFEVQALAEYLVAHHPGATAAILYQNDDFGESVRAGFEEAFEGTDLEIVAAEPYELASASVDSQVTTLAASEADIFLDWAVGSFATQSLKKKMELGWDATTVVSAPAADATFFLKPAGEGAADGVVSVAYTKDITDPSSAGDAGFDAWTDFATAHDEVDPLSAPAAAGYQTAQLLEAALQQMQGCTREALLEAATTFEGLELDLAPVAVTTTPDYPYVFREIKVQVFNGENWDLAEGDYTVD	PGPT0020765_3648	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999	NA	NA
AK001_00030	768	lptB_1	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGGACGCGTTGCTCGAGGTGCACGACGTGCACCTCTCGTTCGGCGGGCTGCAGGCGCTCGACGGACCGAGCCTGACGGTCGCCGACGGCGAGGTCGTGGGCCTCATCGGCCCCAACGGCGCGGGCAAGACCAGTCTCTTCAACTGCATCAACGGCTTGTACCGACCGCAGTCGGGCAGCGTCCGGGTCCTCGGACGGGAGGTCGCGGGCCTGCCGCGCCACCGCATCGCCGGGCTCGGCGTCGGGCGGACCTTCCAGAACCTCGGTCTGCTGGCGAGCCAGACCGTGCTGGAGAACGTGCTGGCCGGCGCGTACCACGCCACGCGCGGCGGCTGGTGGGCCACCGTGCTCGACCTGCCCGACGTCCGTCGCACCGAGGACCGGCTCCGCGCCCGCGCCCTGGAGCTCCTCACCGAGCTCGACCTCGCCGACGTCGCGGGCCGTCCCGTCGGCACGCTCCCGTTCGGCACGCTCAAGCGCATCGAGCTGGCCCGTGCGCTCGTCGGCGAGCCGCGTCTGCTGCTCGTGGACGAGCCGGCCAACGGACTGGTCCACAGCGAGGTGGCCGAGCTCGGCGCGACGCTCCGACGGCTGGCCACGGACCGCGGGGCGGCGATCCTCCTCGTGGAGCACCACATGGGTCTCGTGACGTCCGTCTGCGACCGCGTCGCCGTGCTGGACTTCGGCCGCCTCATCGCCGAGGGCGACCCCCGCGAGGTCGCCCGCGACCCGCAGGTCGTGGCCGCCTACCTCGGGACCGCCGCATGA	MDALLEVHDVHLSFGGLQALDGPSLTVADGEVVGLIGPNGAGKTSLFNCINGLYRPQSGSVRVLGREVAGLPRHRIAGLGVGRTFQNLGLLASQTVLENVLAGAYHATRGGWWATVLDLPDVRRTEDRLRARALELLTELDLADVAGRPVGTLPFGTLKRIELARALVGEPRLLLVDEPANGLVHSEVAELGATLRRLATDRGAAILLVEHHMGLVTSVCDRVAVLDFGRLIAEGDPREVARDPQVVAAYLGTAA	PGPT0020780_7706	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995	NA	NA
AK001_00031	708	livF_1	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	ATGAGCGCGCTGACGGTCGAGATCGAGGCCGCGGGCTACGGTCCCGCGACGGTCCTCCGCGACGTGCGCTTCGAGGTGCCCGACGGCGGGCGGCTGGTGGTCCTCGGGGCCAACGGGGCCGGCAAGACCACCGTGCTGAGGACCATCTCCGGCCTCTGCGACGCCGTGGGGTCCGTCCGGCTCGGGGAGACCGAGCTCCTCGGCCTCCCGCCGTACCGTGTCGCCGGGGCGGGCATCGCCCACGTGCCGCAGGGCCGCGGGACCTTCGGGGACCTCACGGTGCGCGAGAACCTGCTCGTGGGCGGGGCGACGCGACCCCGGAGAGAGGCGGTCGCGGCAGCGGACCGCTGGATGGAGCGCTTCCCGCGGCTGGGTGAACGCAGCGGCCGTCCGGCGTCCGGGCTCAGCGGCGGCGAGCAGCAGCTGCTGGCCATCGCCCGCGCGTTCATGTCGGCGCCGCGGATGCTGCTGCTGGACGAGCCCTCCCTGGGCCTCGCGCCCAAGATCACCACCGACCTCTTCGTCACCCTCGACGAGCTGGGCCGCGAGACGGGCACGGCCATGCTGCTCGTCGAGCAGAACGCCGAGGTGGCCCTCGGCATCGCCGAGGACGCGGTCGTCATCTCCAGCGGCCGGATCACCGTGCGAGGTCGGGCGGACGAGCTCCGGGACAACGACGACGTGCGCCGGGCCTACCTGGGCGTCTGA	MSALTVEIEAAGYGPATVLRDVRFEVPDGGRLVVLGANGAGKTTVLRTISGLCDAVGSVRLGETELLGLPPYRVAGAGIAHVPQGRGTFGDLTVRENLLVGGATRPRREAVAAADRWMERFPRLGERSGRPASGLSGGEQQLLAIARAFMSAPRMLLLDEPSLGLAPKITTDLFVTLDELGRETGTAMLLVEQNAEVALGIAEDAVVISSGRITVRGRADELRDNDDVRRAYLGV	PGPT0020785_7081	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996	NA	NA
AK001_00032	876	livH_1	COG0559	High-affinity branched-chain amino acid transport system permease protein LivH	ATGCTGCTGCAACAGCTCGCCGACGGGGTCGCGACCGGAGCGGTCTACGGCGCCCTCGCGCTCGCGATCGTGCTGGTCTACCGCGCGTCGCGGACGCTCAACTTCGCCCAGGGCGAGCTCGCCCTGCTCGGGGCGTACGTGTCGTGGCAGCTGACGGCCTGGGGCCTGCCGATCTGGGCCGCACTGCTGGTCGCGACCGCCGCGCTCGCCGCGCTCTCCGCGGGGGTCGAACGGGTGCTCGTCCGCCCCCTGGTGCGCCGCCACCAGGCGCTCCCGCTCATCATCGTCACGCTCGGGCTGATGATCGCGCTCAACGCGATCATCGGCTGGGTGTGGACCTACCAGACCAAGGAGGTCCCGGCGCTCTTCGGCTCGGGAGCGGTCGAGATCGGCGGCGTTGCGGTCTCGCGCCAGGACGTCGGCATCGTCCTGACCGTCCTGGTCGTCGCCGTGGCCCTCGGCGTGCTCTTCGAGCTCACGCCGGTGGGGCTGCGCATGCGGGCCGCGATCTCCGCCCCCGAGTCCGCCGAGCTGTCGGGCATCTCGACCGGTCGCACCATGACCGCCGGCTGGGCGATCGCCGGCGCGGTGGGTGCGGTGGCCGGCACGCTGATCGCCCCCGAGCTGTTCCTGCACCCCGGCATGATGACGCCGGTCCTCATCTACGCCTTCGCGGCGGCGACGCTCGGCGGCCTCGACTCGCCGCCCGGAGCGCTCGTCGGCGGCATCGTCGTCGGGGTCGTCGAGAACCTCGCCGGCAGCTACCTGCCGCACGGCTCCGACTTCAAGCAGGTGGTCGCGCTGGCGATCATCGTGGTCGTGCTGCTGGTGCGACCTCAAGGACTCCTCGGACGACGAGAGGTGGTGCGCGTATGA	MLLQQLADGVATGAVYGALALAIVLVYRASRTLNFAQGELALLGAYVSWQLTAWGLPIWAALLVATAALAALSAGVERVLVRPLVRRHQALPLIIVTLGLMIALNAIIGWVWTYQTKEVPALFGSGAVEIGGVAVSRQDVGIVLTVLVVAVALGVLFELTPVGLRMRAAISAPESAELSGISTGRTMTAGWAIAGAVGAVAGTLIAPELFLHPGMMTPVLIYAFAAATLGGLDSPPGALVGGIVVGVVENLAGSYLPHGSDFKQVVALAIIVVVLLVRPQGLLGRREVVRV	PGPT0020770_5882	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997	NA	NA
AK001_00033	1068			hypothetical protein	ATGAGCACGACGGCGACCCGTCCGGCCCGGACGTCCGGCGGCGGAACCACACGTCGCGGCGGCGGCACGGTGGCGGAGTGGCTGCGACGACCGCGGCCGCCCCTGGCACCACCGCGCTGGCTGGCGGTGCTGAGCACCGTGGGAGCGGCCGCGGCGCTCCTCGTCGTGCCGCTGGTCAACCCCAGCTACGTCAACCTCACGGTCACGCTGGTCATGGTCTGGACGATCGTCGGCCTCGGGCTCAACCTGCTCGTCGGCTTCGGGGGCCAGGTCTCGCTCGGACACTCGGCGTTCTTCGCGATCGGTGCGTACGCCGTCGCGGTGGCCGGGGAGGCCGGGTGGGCGCAGCCCGCCGCACTGCTCGTCGCGGGGGTCGTGCCGTTCGTCGTCGGCTACGCGATCGGCTTGCCGGCGCTGCGTCTGCACGGCCTCCAGCTCGGCCTCGTGACGCTCGCGCTGGCGATGGCCACCCCGGCCGCCATCCGCGCGTTCGAGCCGCTGACGCACGGCAGCCGAGGGATCGGGATCGACGGCACCCCACCGGCGTGGGTACCGCTCGACCACGACCAGTGGGTCTACTACCTCGCGCTCGCCGCGGCGTCGCTCGGCTACGTCGTCACCCGTCGGCTCGCGCGCGGTCGTCTGGGCCGGTCCTTCGTCGCGGTGCGGGACGCCGAGCTGGTCGCCGAGACGCTCGGCGTGAACACGTGGCAGACCAAGACCCGGCTCTTCGCGACGTCCGCCGCGTACGCGGGCGTCGCCGGGGGTCTGTACGCGCTGCTCCTGGAGTTCGTCGGGCCCGAGAACTTCAACCTCACGCTGTCGATCTCGTTCGTGACCCTCATCGTGGTCGGGGGGCTCGCGACGGTCCCCGGCGCCGTGCTCGGCGCGATCTTCGTCCAGTACGTCCCGACGCTGACCTCGAGCATCAGTCCGGCGGCGACCGGGGCGACCTACGGCGTCGTCCTCATCCTGTTCGCGTTCTTCGTGCCCCACGGACTCGCCGGGCTCGCGCGCGCTGCGCTCGGTCCCCTGGTCCGCCGGGTGCCGGGCCGGCCGAAGGCCTGA	MSTTATRPARTSGGGTTRRGGGTVAEWLRRPRPPLAPPRWLAVLSTVGAAAALLVVPLVNPSYVNLTVTLVMVWTIVGLGLNLLVGFGGQVSLGHSAFFAIGAYAVAVAGEAGWAQPAALLVAGVVPFVVGYAIGLPALRLHGLQLGLVTLALAMATPAAIRAFEPLTHGSRGIGIDGTPPAWVPLDHDQWVYYLALAAASLGYVVTRRLARGRLGRSFVAVRDAELVAETLGVNTWQTKTRLFATSAAYAGVAGGLYALLLEFVGPENFNLTLSISFVTLIVVGGLATVPGAVLGAIFVQYVPTLTSSISPAATGATYGVVLILFAFFVPHGLAGLARAALGPLVRRVPGRPKA	PGPT0020775_4602	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998	NA	NA
AK001_00034	627	fadR		Fatty acid metabolism regulator protein	ATGGACGTGACCGAGCCCGCCCCGCCACCGACCCGCGCGGCGTCGAAGTCCGCGCAGACCCGGCAGCGCATCCTCGACGCGGCTGCCGAGGTGCTGTCGAGGAAGGGCTACGCCGGGACCCGGCTCTCCGACGTGGCCGCTGCGGCGGGCGTGCAGGCCCCGGCGATCTACTACTACTTCGCCTCACGCGACGAGCTCGTCGAGGAGGTGATGTGGGTCGGTGCCCACCGTGTCCGGCTCCACGTGGAGGAGCGGCTGGCGGCGGTGCCCGAGGACGCCTCGCCGATGGACCGGCTCCTGGTCGCCGTCGACGCGCACCTGCGCTACGAGCTGCAGCTCTCGGACTACGCCACCGCCTCGGTGCGCAACGCCGGTCACGTCCCGGAGCAGCTCCGCGTCCGTCCCGCCGCGGAGGAGGCCCTGTACAGCCGGTTGTGGCGCGACCTGTTCGTGGCCGCCCAGCAGGCGGGCCAGGTGCGTGCCGACCTCGACATCAACATCTTCCGGCTGCTGCTTCTCGGAGCGATGAACTGGGTCGTCGAGTGGTGGAACCCCCGCACGCGGTCGCTCGACGAGCTGGTCGCGACCGCCCAGGGGATGGTCCGGCACGGCGCCGGGGTCGCCTGA	MDVTEPAPPPTRAASKSAQTRQRILDAAAEVLSRKGYAGTRLSDVAAAAGVQAPAIYYYFASRDELVEEVMWVGAHRVRLHVEERLAAVPEDASPMDRLLVAVDAHLRYELQLSDYATASVRNAGHVPEQLRVRPAAEEALYSRLWRDLFVAAQQAGQVRADLDINIFRLLLLGAMNWVVEWWNPRTRSLDELVATAQGMVRHGAGVA				NA	NA	NA	NA	NA
AK001_00035	1500	ald_1		4,4'-diapolycopene aldehyde oxidase	ATGACACTCGCGGACCAGGCACCGGCGGCCCAGCAGGTGACGACGCACAACCCGGTCGACGGCGAACCCGTCGGCCACTACCCCCTCGCGCAGGGCGCGGACGTCGAGGACGCCGTCCGCCGTGCACGCGCCGGGGCCACGTGGTGGCAGAACCAGGGCTTCGCCGCCCGGCGCGCCCACCTGCTCCACTGGAAGTCCCGCATCGCGGCCGGGGCCGAGGAGCTCGCGACCCTCATCTCCGCAGAGACCGGCAAGCCGCACGGCGACGCCCTGCTCGAGATCATGCTGACGCTGGGCCACCTCGACTGGGCCGCGAAGAACGCGCGGCGGGTGCTGCGCCGGCGCAAGGTGTCCGCCGGGCTGATCAACTACAACCAGCACGCCACCGTGGGCTACGAGCCCTACGGCGTCGTGGGCGTGATCGGTCCGTGGAACTACCCGCTATACACCCCCATGGGGTCGATCTCCTACGCTCTCGCCGCGGGCAACGCCGTGGTCTTCAAGCCCAGCGAGCTCACCCCCGGCCCCGCCGTGTGGCTCGCCGAACGCTGGGCGGAGGCGGTCGGCCACGACGTGCTCGTCGCCCTGACCGGCGACGGGGCGACCGGCGCACAGCTGGTCCGCTCGGTCGACAAGATCGCCTTCACCGGGTCGACCGCCACGGCGAAGAAAGTCATGTCCGTGGCGGCCGAGCAGCTCACCCCGATCGTGGCCGAGTGCGGCGGCAAGGACGCCATGCTCGTCGCCGCCGACGCCGACCTGGACTCCGCGGCCGACTTCGTGGTCTTCGGAGCCATGGGCAACGCCGGGCAGACCTGCGTCGGGGTCGAGCGCGTGTACGTCGTCGACACGGTCCGCGACGACCTGGTGGCGCGCGTCGTCGAACGGGTCGAGCGGCTGCGCATCGACGGACCCGACCCGCACTACGGTCCGATGACGATGCCGTCGCAGGTCGACGTCGTGCGCGACCACGTCGACGACGCCCTGCGCACGGGGTCGGCCGCGTTCGGCGGACGCGACAGCGTCGCCGGCCGGGTCGTCGGACCCGTCGTCGTCACCGACGTGGCCGAGGACTCCGCCGCCGTGCAGCACGAGACGTTCGGCCCGCTCGTCGTCATCAACACGGTCGCGTCCCTCGACGAGGCCGTCGAGCGCGCGAACGCCACGGTGTACGGCCTCGGCGCCGCCGTGTTCACGAAGGACAAGGGCGCCGCGACCCGGGCCGCGGACGCGCTGCGGGCGGGAGTCGTCACGATCAACTCGGTGCTCGGGTTCGCCGGTGTGGCGGCGCTGCCCTTCGGGGGCGTCAAGCAGAGCGGCTTCGGGCGCATCCACGGGGCCGACGGGCTGCGCGAGTTCTGCGCGGTCAAGTCCGTCGCGCGGCAGACCCGTCGGGCGGCGCTGAACCTGCTGACCATGGAGCGCACGGACAAGGACATGCACACGGTCGCCCGGATGATCCCGATGCTGCACGGCAGAGCGAAGCCGCCGCGCAACTGA	MTLADQAPAAQQVTTHNPVDGEPVGHYPLAQGADVEDAVRRARAGATWWQNQGFAARRAHLLHWKSRIAAGAEELATLISAETGKPHGDALLEIMLTLGHLDWAAKNARRVLRRRKVSAGLINYNQHATVGYEPYGVVGVIGPWNYPLYTPMGSISYALAAGNAVVFKPSELTPGPAVWLAERWAEAVGHDVLVALTGDGATGAQLVRSVDKIAFTGSTATAKKVMSVAAEQLTPIVAECGGKDAMLVAADADLDSAADFVVFGAMGNAGQTCVGVERVYVVDTVRDDLVARVVERVERLRIDGPDPHYGPMTMPSQVDVVRDHVDDALRTGSAAFGGRDSVAGRVVGPVVVTDVAEDSAAVQHETFGPLVVINTVASLDEAVERANATVYGLGAAVFTKDKGAATRAADALRAGVVTINSVLGFAGVAALPFGGVKQSGFGRIHGADGLREFCAVKSVARQTRRAALNLLTMERTDKDMHTVARMIPMLHGRAKPPRN	PGPT0001580_5503	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
AK001_00036	1212	mce3R		Transcriptional repressor Mce3R	GTGAGCAGCGTGAGCGAGACGCGTGCGACGACGCCGGTCCGGCGGCGACCCCGTGACCGCCGTCAGGTCATCGAGGCGGCGGCCGCGGTCGCGTTCGCCGAACGGGGGTACCACCGCGTGGCCATGCAGGACGTGGCCGACGAGGTGGGGATCACGGCGGCAGCCCTGTACCGGCACTTCGACAACAAGTACGAGCTGTTCCGCGAGGTCGCGCTCGACCACGTGCACCGGATCTCCGCCGCGGCCGCCGCCGTCGACGCGGGGCAGGACCGGTCGCCTGCGGCCGCCCAGGAGGAGCTCGAGGTCCTGCTGGACGCCGTCGTGGGCGCGACGCTCGCGATGCGGTCGACCGGGAGTATCTACCGGTGGGAGAGCCGCTGCCTGCGGCCCGAGGACCGTCGGGTGCTCGCGGGCGAGTTCGCCGCGCTGCGCCGCCGGCTGGCCGGCCCGGCGGCCGTGCTCCGGCCGGACCTGGATCCCCGCACGCTCGACCTCGCGGCGCTCGCGGCGCTGAGCGCCGTCGCCAGCGTGACGACGCACCGCACCGCGATGCCGGCCGCTCGCCTCGGGGTGCTCCTGCGTGAGGCGGCGGTGCGGGTGCTGGCCCGGACGGCGGGCCCGGCGCCCGCCGACGGCCCCGAGGCCGCCGAGGCGACGGCGCCGCCGCGCCGACGCCGCGACCAGCTCGCCCGGGCCGGCATCACGATGTTCGCGCGGCGCGGGTACCACGACGTGACCATCGAGGAGATCGCGGCGGCCGTCGGGCTCACTCCGTCCGGCGTCTACCGCCACTTCAGCGGCAAGTCGGAGATCCTGCGAGCGGCCTGCGAGCGCGCGGCCGTGGCGCTCGACGAGGCCGCGGAGGACGCGCTGCGGTACACCGAGCCCCGCCAGGCGCTCCGACTGCTCGCCACGGCCTATATCGGGTTCGCCGTGGACGACCGCGGCCTGATGGAGGTGTACACGGCGGACGTCGGAGCGCTCGACGCCGAGGACCAGCGGCGGCTGCGGCGTCTGCAGCGCGCCCACGTCGACGACTGGGTCGAGCTGCTGGGCCGTGTCCGCCCGGAGCTCGACGCCCGCGAGCGGCGGTTCCTCGTGCACGCCGGGTTCAACGTGGTCGCCGACCTGAGCGTGGCGCTGCGGCACGCGCCCGCGGCGGACGCCAAGGGCTGGATCGAACCCGTCCTCGAGGCGACCCTGGGGGTCTGA	MSSVSETRATTPVRRRPRDRRQVIEAAAAVAFAERGYHRVAMQDVADEVGITAAALYRHFDNKYELFREVALDHVHRISAAAAAVDAGQDRSPAAAQEELEVLLDAVVGATLAMRSTGSIYRWESRCLRPEDRRVLAGEFAALRRRLAGPAAVLRPDLDPRTLDLAALAALSAVASVTTHRTAMPAARLGVLLREAAVRVLARTAGPAPADGPEAAEATAPPRRRRDQLARAGITMFARRGYHDVTIEEIAAAVGLTPSGVYRHFSGKSEILRAACERAAVALDEAAEDALRYTEPRQALRLLATAYIGFAVDDRGLMEVYTADVGALDAEDQRRLRRLQRAHVDDWVELLGRVRPELDARERRFLVHAGFNVVADLSVALRHAPAADAKGWIEPVLEATLGV				NA	NA	NA	NA	NA
AK001_00037	1578	lcfB_1	COG0318	Long-chain-fatty-acid--CoA ligase	ATGAGCGAAGCCACCAGCGTCATTCCTGCGGCGGTCCGCCGCAACCACTGGATGAACCAGGTCCTGATCCATGCCGGGATGAAGCCGGACGCGACGGCCTTCAAGTACCTGGGCGAGGTGACCACCTGGGCCGACACCGCGCGCCACATGGACACGCTCGCCGCGGCCCTCCAGCGCCGGGGCGTGTCCTTCGGCGACCGCGTGCTGCTGCTGACCCTCAACCACCCCCAGGTGGTCGAGACCGTCTTCGCGGTCAACCGGCTCGGCGCCATCGCGGTGCCGGTCAACGTCCGGCTCTCCCCGGCCGAGATCGCCTACATCGTCGACGACGCCGACGCCGACGTGATCGTCGTCGACCAGCCCCTGGCGCCGCTCGTCGCCGCGGTCGGCCAGTTCACCGACCGCCTGCAGCGGGTGGTCGTCGTCGGCGAGGCCGGCGAGGGCCAGGAGAGCCTGGCCGACCTGCTGGCCGAGGCGCCCGGCGACTTCGAGGCCCCGGACGTCCCCGAGGACACGACCTGCCTGATCATGTACACCTCGGGCACGACGGGCAAGCCCAAGGGCGCGATGCTCGACCACGTCAACATGGCGGCCCAGGCGCTGACCTGTCTGCGGGTCAACGAGATCGTCACGGAGGACGACGTCGCCTTCCTGACCGCTCCGATGTTCCACATCGCGGGCCTGGGCTCCATCGCCCCCAACTTCATCGTCGGCATCCCGACCGTCATGCACCCCCTGGGCGCGTTCGATCCCGTGGCCCTCATCGACGCCTGGGAGCGCGAGCGGGCCACGATCGTCTTCAACGTGCCGCAGCAGTGGCAGGCGATCTGCGCGGTCCCGGGCATCCGGGAGCGCGACCTGCCCCTGCGCGTGATCAGCTGGGGCGCGGCACCGGCGTCGGACAGCCTGCTGCGCACCATGTCGGAGACGTTCCCCGACGCGCTCAACGTCGCGGTGTTCGGCCAGACCGAGCTCTCCCCCATCACCTGCGCGCTGCGCGGCGAGGACGCGCTGCGCAAGCTCGGGTCGGTGGGCCGCCCGATCCCCACGATCGAGACCCGCATCGTGGACGCCGAGCTGCAGGACGTCGCGCCCGGCACGGTCGGCGAGATCGTCTACCGCGGCCCGAACCTCATGAAGGGCTACTGGCGCAAGCCGGCCGAGACCGCCGCCGCCTTCGAGGGCGGCTGGTTCCACTCCGGGGACCTGGTGCGTCAGGACGAGGACGGCTTCGTGTGGGTGGTCGACCGCCTCAAGGACATGATCATCTCCGGCGGGGAGAACGTGTACTGCGCGGAGGTTGAGAACGCGCTCTACTCGCACCCGAAGATCGTCGAGGTCGCCGTCTACGGCCGGGCCGACGAACGCTGGGGCGAGGTGCCCGTGGCCGCCGTCGTGCTGCGGGAGGGCGAGTCCCTGGAGCTCGCCGAGCTGAAGGACTGGCTGGGCGACCGGCTCGCCCGCTACAAGCAGCCCGCGGACGTCCTGTTCCTGGACGAGCTGCCGCGCAACGCCGCCGGGAAGCTGAACAAGATCTCGCTGCGGCGGAACGACCACCCCGTCGCGGTGGTGTCCTAG	MSEATSVIPAAVRRNHWMNQVLIHAGMKPDATAFKYLGEVTTWADTARHMDTLAAALQRRGVSFGDRVLLLTLNHPQVVETVFAVNRLGAIAVPVNVRLSPAEIAYIVDDADADVIVVDQPLAPLVAAVGQFTDRLQRVVVVGEAGEGQESLADLLAEAPGDFEAPDVPEDTTCLIMYTSGTTGKPKGAMLDHVNMAAQALTCLRVNEIVTEDDVAFLTAPMFHIAGLGSIAPNFIVGIPTVMHPLGAFDPVALIDAWERERATIVFNVPQQWQAICAVPGIRERDLPLRVISWGAAPASDSLLRTMSETFPDALNVAVFGQTELSPITCALRGEDALRKLGSVGRPIPTIETRIVDAELQDVAPGTVGEIVYRGPNLMKGYWRKPAETAAAFEGGWFHSGDLVRQDEDGFVWVVDRLKDMIISGGENVYCAEVENALYSHPKIVEVAVYGRADERWGEVPVAAVVLREGESLELAELKDWLGDRLARYKQPADVLFLDELPRNAAGKLNKISLRRNDHPVAVVS	PGPT0008380_16079	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
AK001_00038	801			hypothetical protein	ATGGAGGGACGCGGGTCCGGCCCGCGTCCCGCACCGAGGAGCTGCTCGACCATCACGACGACGCCCGACCTCCTGGCCGCCGGGATCGACCTCTCGGCCGACCCGCGCAAGACCGGCGTGGCGACGATCGCCTGGCACGGCGACGACGCCACCGTCGTCGAGGTCGCCGTGGGCCGGCACGACGACGCCGCGCTGTGCGAGGTCGTCCGCGCGGCCGGGACCACGGGCGTCGACTGCCCGATCGGGTGGCCCGACGCGTTCGTGGACTACGTGGTCGCGCACCGTGCCGGCGGGCACGACCTGGAGATTCCCGAGACCCGCAGGCCGCTGACCTACCGGGCGACCGACCTGCACGTGTGGCGACGGACGGGCGTGCGACCGCTCGCCGTCTCGGCCGAGCGGATCGGCTCTGCCGCGATGCGCTGCGCGGCCCTGCTGGCGACGCTCGCCCGGTCCGGGACCGTCGTCGACCGCGCGGGCGGTGGTCCCGTCCTCGAGGTGTACCCGGCGGCGTCCCTGGCGATCTGGGAGCTGCCGCACCGCGGGTACAAGGGTCGCGACCCGGCGGCCCGCCAGGTGCGCGAGCAGCTCGTCGACGCGGTGGCGACCACGTTCCCCTGGCTCGACCTCGCGGGGTTCGCGCAGGACTGCCGTGACTCCGACGACGCCCTCGACGCCGTGCTGTGCGCCGTGATCGCGGGTCTCGCCCACCGCGGCCGGTGCGAGCGGGTGCCGGAGGAGCTGCGGGACACGGCGTCGCGCGAGGGGTGGATCGTGCTGCCGCTCGACGCGTCGGTCTGA	MEGRGSGPRPAPRSCSTITTTPDLLAAGIDLSADPRKTGVATIAWHGDDATVVEVAVGRHDDAALCEVVRAAGTTGVDCPIGWPDAFVDYVVAHRAGGHDLEIPETRRPLTYRATDLHVWRRTGVRPLAVSAERIGSAAMRCAALLATLARSGTVVDRAGGGPVLEVYPAASLAIWELPHRGYKGRDPAARQVREQLVDAVATTFPWLDLAGFAQDCRDSDDALDAVLCAVIAGLAHRGRCERVPEELRDTASREGWIVLPLDASV				NA	NA	NA	NA	NA
AK001_00039	705	gph_1		Phosphoglycolate phosphatase	ATGGAACCGACGTCCGCACCGCACGAGGTCGCCCGCCCGGAGGTCGTTCTTCTCGACGTCAACGAGACCCTGTCCGACCTCGCACCCCTGGACGAGGCCTTCGCCGACGTGGGCCTGCCCGCGCACGACACGGAGGCGTGGTTCGCCGGTGTGCTCCGGGACGCCTTCGCCCTCACCGTGCTCGGTGACAACCCGCGGTTCGCGGAGGTCGCGGACTCGGCCCTGCGGGCCCGCCTGGCGGCCGCCGGGAGCCCCGACCCCGCCGGCGGCGCCGCGTACGTCATGGCGCGCTTCGCCGCGCTCGGCACCCATCCCGACGTCGTGCCCGGACTCCTCGCCCTGGCGCGGCGGGGCTGCCGGCTGGTGACCCTCAGCAACGGGTCCGCGGACGTGGCCCGCGCGCTGCTCCGCGACACCCCGGCGGAGCGTGTCGTCGAGGACTGCCTCGCGGTCACCGACACGGAGGCATGGAAGCCCGACGCGCGCGCGTACGCCCACGCGCTGTCGACCACGGGCGTCGCCGCCGAGCACGCGATGCTCGTCGCCGTCCATCCCTGGGACGTCGAGGGGGCTCGGCGGGCCGGTCTGCGGACCGCGTGGATCAACCGCACCGGAGCCGCCTACCCCGCTCACTTCGCCCCGGCCGACGTCGAGGCGGCCTCGCTCCTCGACCTGGCGGACGCGCTGGTCGTGCCGTCGCGGTGA	MEPTSAPHEVARPEVVLLDVNETLSDLAPLDEAFADVGLPAHDTEAWFAGVLRDAFALTVLGDNPRFAEVADSALRARLAAAGSPDPAGGAAYVMARFAALGTHPDVVPGLLALARRGCRLVTLSNGSADVARALLRDTPAERVVEDCLAVTDTEAWKPDARAYAHALSTTGVAAEHAMLVAVHPWDVEGARRAGLRTAWINRTGAAYPAHFAPADVEAASLLDLADALVVPSR	PGPT0006885_1045	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560	NA	NA
AK001_00040	6456			hypothetical protein	ATGGAGCGAACCCACGGTTTCACCCTGGTGCGGCTCATCGCCGCCGTGCTGGCCCTGACACTCCTCGGTGCGGGACTGGTGACGGTCGCACTCCCCGCCGCGGCGGCGACGCTGCAGATCGGGCCGATCACCGCCCAGCTCAGCGACCACGAGCCCGTCGGGGGCCACGGCCAACGGTGCATCCGCTACTCCCCCACCTCCGGAGACGGGGCCTCCTCGACGAGCTCCGCGTTCGTCGACGCCGGCGGCGGCACCGAGGCCCGCGCCTCCCACGGCCGGTACCGTGACGGTCGGCAATACCGGTGCCCCCGGGACCTCGACATCCGACGACAGAGCGCCGTCGGCTTCACCCCGGCTCCGGTCACGACCGCCGAGGACGGCGACACGTTCCTCATCGGACGCCTGACGCACTACAACAACCCGATCAACGGCTCCTCGGAGCACTACACCGGACAGCTCACGGTCCAGCTCGGCGGCTTCACCCCGCTGCAGCCCACCACGTTCCCATGGGCCCTGTGGGAGACACCGAACGACCCTCGTGGCAGTCGCCCCTGCGCTTTCCCGGACGGTCCCAACGACCGCGGGTGCGCCGACGAGATCCGCTTCAGCAGCCAGATCTCGAACCAGGTATTCGACCAGGACGGTTTCGAGTACAAGCTCGTGGTCACCGGCTTCGTGCCCACCGACGGAACCTGCCCGGCGACGCCGTCGGGTGAGTCGGTGAACCGCTTCCTGACGCGGGAGAGCAGCACGTCCGCGGCGTGCCTGTACGCCTCGTTGGTCCAGCTCCGCTCGCTGGAGATCGTCAAGCGGACCGTCGTGCCGGACGGCGTCGACGTCACGCCGCCGGAGTTCGACTTCACCGGCACCAGCAGCCTGGACGGGTCGCCGTGGGCCACGCGGACGTTCTCCCTGGACCCGAACGACCCGGGCAACAGCGAGACCGACCAGCTGCTGCGCGGGGAGTCGGTCAGCATCACCGAGAACCTGCCGCCCGGCGACCAGTGGTCGGTGACAGACCTCGAGTGCCTCGACTCCTCCGGCGGGCCGGTCCCGGAGGCCACCTACGACGCGGCGGCCGGACGCATCGTCCTCGACGACGTCGGACCACCCCCGACGACCGACGCGCTCGGCATCACGTGCACGGTCACCAACACCTACACGCCGAGGGCCACGCTGACGCTCGTCAAGGAGGTCGACGGCGGCCCCGCGCAACCGTCCGACTTCACCCTCAGCGCCCGAGGTCCGGCGTCGATCGGCGGACCGAGCGGTAGCGCCGCGGTCACCGCCCAGCGCGTGCCCGCCGGGACGTACCAGCTCACCGAGCACGGCCCCGACGGCTACGCGGCGGGTCCGTGGCAGTGCGCCGGGGCGGCCGACAGCGACGGCGTCTCGGTCACCGTCGCCGATGGCCAGGACGTGACCTGCACCGTCGTCAACACGTTCGCCACCGCGACCTTCACGATCGTCAAGGAGACGGACGGGCCGGACGGCGGGTTCACCGGGGACGCCGGCACGGAGTTCACCGGGACGTACGTCTGCGGCAACGACGCCCCGCAGCCGTTCAGCGTCAGCACCGGCACGCCGTTCGTCTCGCCGCCGCTGCCCGTCGGCACCTCCTGCGCCGTGACCGAGGACCCGCCGACCGGCGATCTTGCGAACTCCTCGTACGAGTGGCTGGACCCGGTGTACTCGGCCGCGGGCGGACAGGTCACCATCCCGACCTCGGGGACCTCGACACTCGAGATTGCCAACCCGTACCGGCAGCGCACCGGCGGCATCGCCCTGACCAAGGCCGTGGAGGCCCGGCCCGGCACGCCGTCCACGGGCTACACGGCCGCCGCGAACCGCGCCTACACGGTCGACTACGACTGCACGCTCGACGGCGACGCCGTGGGGTCGGGCACCGTCGACCTCACGGACGGGACCACCACCACGGTGAACGACCTGCCGGCCGGGGCGACGTGCAGCCTCACCGAGGCCGTGGTCACTACGCAGCCCGGCGACTTCGCCGACGGCTCCTACACCTGGGACGGTTCCGTCTGGTCACCGGCGGCGACTGTCACCGTGCCCGACGGCGGCGCCCATGGCGCGACGACCGTCACCAACTACTTCACCCGGCAGACGGGTGATCTCGTGCTCAGCAAGTCCGTGAACGGCGACGGCTTCGTCGGCGGCACGAGCTTCACCGTCGGCTACGACTGCGGCGCGGGCTTCTCGGGGACCGAGACCCTGGACGACGGCGCCACCGCGACGATCACCGGGGTTCCGGTCGGCACCCGCTGCCTGGTGTCGGAGCAGCCACCCCGGGGCGGCCTGGAGACCGGCTACGTCTGGGGCACCCCGACCTACGACGGCATCGTCGGCGGCGGCACCGCGATCGTTCCGCCGGCGGGCTCGGCCGACGTCGTGATCGGAAACCCCACCGAGCGTCTCTACCGCCCCCTGACGGTGGGCAAGGCCGTGGTGCCCGCCGAGCTGGCGGCCGGCGGGCTGGAGGCATCGGCCACGTTCAGCGTCTCCGTCGACTGCGACGCCCCCGCGCAGGGTGGCGGCTCCGCCTACACCCAGACGTTCGACCTGGCTGCCGGCGCCACGGCGACCACCCCACCGCTGCCCGTCGGGACGTCCTGCGACGTGTCCGAGGTCACGCCCGACGGCTCCGAGCTGGTCGACTCGAGCTACTCGTGGGTCGGCGCCCCCGCGGCGCAGACCGTGACCGTCGAGACGTCGAACGACCCCGTGACCGTGACGAACACGATCCGGCGCGAGTACGGCAGCCTCGGCATCGCCAAGGCCGTCGAGGGCGCCGGCGGCGTGGACGGGTCCGGTACGACCTTCACCGGCACGTGGAGCTGCGCGTACGGCGGGACGACGTTGGACGGGACCTGGTCGGTGACCGGCCCCGGTACCGCGACCCTCACGGGCCCGGCCGACCAGCTGCCGCTCGGTGCGCGATGCACCGTCACCGAGGACCCCGTCGACACCGATCCCGACCCCGACGAGCCCTCGCTGGTGTGGGGCGGGACGACGCTGCCCGCACCGGTCACGCTCACGGACGCTGCGCGGGACGCCGACGTGACGGTCACGAACCAGGTCGTCGAGATCGACGGCGACCTCGTCATCGCCAAGGTGGTCGTCGGCGGCAGCGCCGGGGTCGCCTACGTCGACGCCGACGTCGAGTTCGAGTACTCGTGCACCCCGGCGGGTGGCGGGACCCCCGTCACGGGCACCGTCGCCCTGGCCGACGGTGGGTCCGCGGACACCAGGGACACCATCCCGGTGGGCAGTACCTGCACCGTCACCGAGACCGGCGTGCCGGCCGCGCTGCCCCCCTACGCGTGGCTCGACACGGTCCAGCTCGACGTGACCGGCGAGGACACCGTCGTCGAGCGGACGGCCGACTCGATCACGTTCACGACGCCGACGGCGTTCAAGAAGGTCGTCGTCCGGGCGACCAACACGCTGGTCGAGCAGTTCGCCGAGGTCACCGTCACGAAGGCCGTCACGGGGATCGACCCGTCCGCGGTGGACGCCGGTGTCGAGTTCCCCCTGAGCGTCGTGTGCACGGACGCGACCTACGGACCGGCGTTCACCGGGGTCGGCGGGACGGCGCGGTTCCAGGTGCCGGTCGGCCAGGAGTGCCGCGCCGTCGAGGGCGCGATCGATCCGGGACTCGGGCTGCCCGACGACTCCTACGTCTGGGGTGCCCCGGACACCGAGCCGGCGGGCACCGTCGACGTGGTCCAGGAGGCCGCCGAGTACCCCTTCACCCTGACCAACCCGGCCGAACGGGTCACGACCGATATCAGACTGGTCAAGGTCGTCGACGAGTCCGCGGTCGGCGCCAACGTCGTCGACCAGCTGCTCACCTACACCGGGACGTGGACCTGCACCCACGCGGGCGACCCGGACCGCACCGGCTCGTGGAGCGTCGACGACGGCGGGCCCGCGACGCTCACGGGGCCGTCCGGCGACGTCCTCGTCGGCTCGGAGTGCACGGCCACCGAGGACACCCCGGGGAGCCCGTCGAGCGATCCGTCCTACTCCTGGACGGCGCCCCAGGTCGCGCCCGTCACCACGACGGCTGCCGGTCCGAACGAGGTGACCGTCACCAACGCCGTCGTGCGCGACACCGGGGTGCTGCGAGCCGCCAAGACGATCACGGGCGAGGGGGCCGGGTACACCGGCAGCGGCCCGCAGTTCGAGATCGACTACGCGTGCACGTTCGACGGCAACACCGCCGGCGAGATCGTCGGCAGCGCGCCCGTCCCCGCCGACGGCATCCCCGTCGTGCTCGACGACGCGGTCCCCCTCGGTTGGACCTGCCGGGTCTCCGAGGGCCGCATCCCGGACGGACTGCTGCGCGACGCCTCCTACGCCTGGGGGGTCGCGACCGTGGAGCCCTCGGACGTCACCGTCGACTCGGTGGACCAGGTGCTCGACGTGTCGGTCGCCAACACGGTCGAGCGGCGTACCGGCCGTTTCGCGGTCGACAAGCGGATCCTGCACGGCGACCCCGTGCTGCCGGGGGCGACGTTCACCGGGGACTACGAGTGCGTGTACGGCGCGGGTGAGCCCTTCGAGGAGGTCTTCACCGGCACCTGGTCCGTCACCGGCGCGGGTCGTGCCGTCCTGTCCCCCGACGTCGATCTCCCGATCGGGACGGCCTGCGCAGCGACCGAGGACGCCCCGGACGCTGCGTCGACCCTGCTGCCCGGGTTCGCCTGGACCGCACCGGTCGTGACCGGTCCGGTCACCGTCGTGGGCGGCAGCTCACCGCCCGTCGTCGAGGTCACGAACTCCCCGCAGCAGGTCTCCGGGGCCCTGCGCGTCGTCAAGGAGTACACCGGCGTCGACGGCGCGCTGGTGCCCGGCACCACCGTGACCGGGACGTGGCACTGCGTCGACCCGCAGGGCCTGGAGTACGACGGCACGTGGGAGCTGCCGCCGAGCGGTGGCGAGACGCAGCTCTTCGGCGTCACCGACCCCGGCGCGGCACCGGTCGGCTCGGAGTGCACCGTCGCGGAGGACACCCTCGCCGACGACGACCTCGCGGACGACTCGTTCACGTGGGAGCACCCGTCCTACAGTCCCGGGGTGACCCTCCCGGCCGGGCAGGAGGCCACCCTCGGCGTCGTCAACTCGGTGTCGCGGGTCTTCACGCCGATCGAGATCACCAAGACCATCGACTCCCCGGACGACCTCGTGGTCGACCCCGGCCAGACGTTCGGCGGGACGTACACGTGCCGATCCGGTGAGGACGGCCCGTCCGCGACCGGCCACTGGGAGGTCGTCGGCACGGGCGGCTACGTCGTCCCGGGCATCCTGGTCGGCTCGGAGTGCACGGCCACCGAGGACCAGCCGACGTCGTCCCCGACCGCCGCCGACCCCTCGTTCGTCTGGGGCCCGCCCGCCGTCGCGGCTCTCGGCACGGTCACCCGGGCAGAGGCGGGAACCAACGGGGTCGAGGTGACCAACACGGTCGAGCGCATGCTGACCGGGTTCGAGATCGACAAGTCGCTGCGCGCCCCGGACGGCGCGCTGCCGGACGACGCCGCCTTCGACATCCAATGGGCCTGCACGGCCGGCAACGGCGACCGGCTCGTGGGCGAGGCGCGACTGGGCGCGGACGAGACCCTGCGGACCCCGACGACGGTCCCGATCGGCTCCCGCTGCACCGTGAGCGAGGGCGCGCTGCCCGACCCGTCCGGTGTCACGGTCTGGGAGCCCGTGTCCTTCGTGGTCGACGGCCCCGACCAGGCGGCCGATGTCGAGGTGATCGACCAGACGGTCACGTTCGCGCTACCGATGCCGCTGGCCGACGGCGAGGCGGCGCAGGTGGGCGTCACCGTCCAGAACCGCGCGGTGCGCGGGCCGGGCGCCTACACCTTCGCCAAGACGGCCGACCCGCCCTCGGGGTCGACGGTGCGGCCAGGCGACGAGATCACCTACACCGTCACCGTGCGCGGCAACGGTGGACAGGGGGTCGACGACGTCGTGGTGGTCGACGCCCTGGACCGTGTCACCCGGCACGCGACATTCCTGGACGGCAGCCTCGACGCCAGCCAGGGGCGTGCCCTGCTGCGTGCCGACGGCACGCTGCGGTGGGACGTCGGGACCGTGATCGGCACCGACGCCATCACCCTGAGCTACGCCGTGCGGGTCGACGCCGCCGCCGCTGGCGTCACCCTGCGCAACGCGATCACCCTGAGCGGCGACACGCCGCCTGCGTGCGGGCCCACACCGGACCGCACGTGCCCGAGCACGACCACCCACCACGTCCCGCCGCGCGAGGTACCACCCGCGCTCGGGGGCACTCCGCCCGACCACGCCGTGCCGCCACCCCTGGCGAGCACCGGTCCGGACGGGATCGCCCTCGCCCTGCTCCTGGCCGCCGTCCTGGTCGGGCTGGGTCTCGTGCTCCGTTCCCGCGCACGACGGCGGCACGGGTAG	MERTHGFTLVRLIAAVLALTLLGAGLVTVALPAAAATLQIGPITAQLSDHEPVGGHGQRCIRYSPTSGDGASSTSSAFVDAGGGTEARASHGRYRDGRQYRCPRDLDIRRQSAVGFTPAPVTTAEDGDTFLIGRLTHYNNPINGSSEHYTGQLTVQLGGFTPLQPTTFPWALWETPNDPRGSRPCAFPDGPNDRGCADEIRFSSQISNQVFDQDGFEYKLVVTGFVPTDGTCPATPSGESVNRFLTRESSTSAACLYASLVQLRSLEIVKRTVVPDGVDVTPPEFDFTGTSSLDGSPWATRTFSLDPNDPGNSETDQLLRGESVSITENLPPGDQWSVTDLECLDSSGGPVPEATYDAAAGRIVLDDVGPPPTTDALGITCTVTNTYTPRATLTLVKEVDGGPAQPSDFTLSARGPASIGGPSGSAAVTAQRVPAGTYQLTEHGPDGYAAGPWQCAGAADSDGVSVTVADGQDVTCTVVNTFATATFTIVKETDGPDGGFTGDAGTEFTGTYVCGNDAPQPFSVSTGTPFVSPPLPVGTSCAVTEDPPTGDLANSSYEWLDPVYSAAGGQVTIPTSGTSTLEIANPYRQRTGGIALTKAVEARPGTPSTGYTAAANRAYTVDYDCTLDGDAVGSGTVDLTDGTTTTVNDLPAGATCSLTEAVVTTQPGDFADGSYTWDGSVWSPAATVTVPDGGAHGATTVTNYFTRQTGDLVLSKSVNGDGFVGGTSFTVGYDCGAGFSGTETLDDGATATITGVPVGTRCLVSEQPPRGGLETGYVWGTPTYDGIVGGGTAIVPPAGSADVVIGNPTERLYRPLTVGKAVVPAELAAGGLEASATFSVSVDCDAPAQGGGSAYTQTFDLAAGATATTPPLPVGTSCDVSEVTPDGSELVDSSYSWVGAPAAQTVTVETSNDPVTVTNTIRREYGSLGIAKAVEGAGGVDGSGTTFTGTWSCAYGGTTLDGTWSVTGPGTATLTGPADQLPLGARCTVTEDPVDTDPDPDEPSLVWGGTTLPAPVTLTDAARDADVTVTNQVVEIDGDLVIAKVVVGGSAGVAYVDADVEFEYSCTPAGGGTPVTGTVALADGGSADTRDTIPVGSTCTVTETGVPAALPPYAWLDTVQLDVTGEDTVVERTADSITFTTPTAFKKVVVRATNTLVEQFAEVTVTKAVTGIDPSAVDAGVEFPLSVVCTDATYGPAFTGVGGTARFQVPVGQECRAVEGAIDPGLGLPDDSYVWGAPDTEPAGTVDVVQEAAEYPFTLTNPAERVTTDIRLVKVVDESAVGANVVDQLLTYTGTWTCTHAGDPDRTGSWSVDDGGPATLTGPSGDVLVGSECTATEDTPGSPSSDPSYSWTAPQVAPVTTTAAGPNEVTVTNAVVRDTGVLRAAKTITGEGAGYTGSGPQFEIDYACTFDGNTAGEIVGSAPVPADGIPVVLDDAVPLGWTCRVSEGRIPDGLLRDASYAWGVATVEPSDVTVDSVDQVLDVSVANTVERRTGRFAVDKRILHGDPVLPGATFTGDYECVYGAGEPFEEVFTGTWSVTGAGRAVLSPDVDLPIGTACAATEDAPDAASTLLPGFAWTAPVVTGPVTVVGGSSPPVVEVTNSPQQVSGALRVVKEYTGVDGALVPGTTVTGTWHCVDPQGLEYDGTWELPPSGGETQLFGVTDPGAAPVGSECTVAEDTLADDDLADDSFTWEHPSYSPGVTLPAGQEATLGVVNSVSRVFTPIEITKTIDSPDDLVVDPGQTFGGTYTCRSGEDGPSATGHWEVVGTGGYVVPGILVGSECTATEDQPTSSPTAADPSFVWGPPAVAALGTVTRAEAGTNGVEVTNTVERMLTGFEIDKSLRAPDGALPDDAAFDIQWACTAGNGDRLVGEARLGADETLRTPTTVPIGSRCTVSEGALPDPSGVTVWEPVSFVVDGPDQAADVEVIDQTVTFALPMPLADGEAAQVGVTVQNRAVRGPGAYTFAKTADPPSGSTVRPGDEITYTVTVRGNGGQGVDDVVVVDALDRVTRHATFLDGSLDASQGRALLRADGTLRWDVGTVIGTDAITLSYAVRVDAAAAGVTLRNAITLSGDTPPACGPTPDRTCPSTTTHHVPPREVPPALGGTPPDHAVPPPLASTGPDGIALALLLAAVLVGLGLVLRSRARRRHG				NA	NA	NA	NA	NA
AK001_00041	1023	yedI	COG2354	Inner membrane protein YedI	ATGAGCGCAGGTCTGCTGGGGCTCCTGGACGACATCGCGGCGATCGCCAAGCTGGCGGCGGCCTCCCTGGACGACGTCGGCGCGGCGGCCGGGCGCGCGACGGCCAAGGCGGCCGGCGTGGTGGTCGACGACACGGCCGTCACGCCGCAGTACGTGCACGGGGTCGCCGCCGACCGGGAGCTGCCGATCGTCAAGAAGATCGCCTGGGGGTCGATCCGCAACAAGGTCCTCGTCATCCTGCCGATCGCGCTGGTGCTCAGCGAGTGGCTGCCGTGGCTGCTGACCCCGATCCTCATGCTCGGCGGCACCTATCTCGCCTTCGAGGGGGCCGAGAAGATCTGGCGGCGCGTGCGCGGCCACACCGACCACCAGAAACCGGCCGCCGCCGTCGGCCCGGAGGCCGAGAAGACGCTCGTGGCCGGGGCGATCCGCACCGACCTCATCCTGTCCGCCGAGATCATGGTCATCGCCCTGGACGAGGTCGCCGACGAGGGGTTCTGGGCGCGGCTGGCGATCCTGCTCGTGGTGGCCCTGGTGATCACGGTGATCGTCTACGGCGTGGTGGCGCTCATCGTGAAGATGGACGACGTCGGGCTCTCCCTCGCCCAGCGGGAGTCCGACGTCGCGCAGCGCGTCGGGCGCGCCCTGGTGACCGGCATGCCGAAGGTGCTCGCGGCGATCTCCGTCGTGGGCACGGTCGCGATGCTGTGGGTCGGCGGGCACATCCTGCTGGTCGGCGTCGACGAGCTCGGCTGGCACGGCCTGTACGACCTGGTCCACCACGGCGAGGAGGCGATCGCCGCCGCGGTGCCGGGGATCGGCGGGTTCCTCGCCTGGTGCTTCAACACGCTGTGCTCGGCGGTGATCGGGCTCGTCGTCGGGGCCGTGGCCGTGGCCGTGATGCACCTGCTGCCGTTCGGCCACGACGACGACCCGCGCGACGAGCCCGTGGGGCACGGTGCGGACGTCGCCGCCGACGGCGGGACGACACCTCCGGGAGCGGACGGGCCCGAGAAGATCTGA	MSAGLLGLLDDIAAIAKLAAASLDDVGAAAGRATAKAAGVVVDDTAVTPQYVHGVAADRELPIVKKIAWGSIRNKVLVILPIALVLSEWLPWLLTPILMLGGTYLAFEGAEKIWRRVRGHTDHQKPAAAVGPEAEKTLVAGAIRTDLILSAEIMVIALDEVADEGFWARLAILLVVALVITVIVYGVVALIVKMDDVGLSLAQRESDVAQRVGRALVTGMPKVLAAISVVGTVAMLWVGGHILLVGVDELGWHGLYDLVHHGEEAIAAAVPGIGGFLAWCFNTLCSAVIGLVVGAVAVAVMHLLPFGHDDDPRDEPVGHGADVAADGGTTPPGADGPEKI				NA	NA	NA	NA	NA
AK001_00042	3150	glnE		Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzyme	GTGAGCTCGACGACCTCCGGAACCGGTAGACCGCAGACCCCGACCCGGAGGCTGCTCCGGGCCGGGTTCGCCGACCTGACGCGGTCGGCGACGCTCTGGGACGACGCGGAGCTGCAGCGCCGCCTCCCCGCCGACGACGGCGGGGGAGACGCGGTGCTGCAGGCGCTCGGCGTCACGGCCGACCCCGACATGGCGCTGCTGCAGCTCGTGCGGCTGGCCGCCGTGCCCGCCGCCGAGCGGACCGTCGAGCGGCTGCTCGCCGCGGACACCCGGTCGGCCGACGGTGTCGCGCGCGGACGGCTGCTCGCGGTGCTCGGGGCGTCCTCGGCGCTCGGCGACGAGATCGTGCGGCGTCCGGCGCTGCTGGACGTGCTCGGCGACGGCGACGGCGGCCTCGGGGTCGACCCGGCCGACGTCCGGGCCGAGCTGCTGCGCGCCGTCGGGGCGGATCCCGAGGCGGTCGCCCCGGTGGCCGCCGAGCAGGCGGCCGGCGACGGGGAATCGGGCTGGCCCGACACCGACGCCCCCACCGCGACCGACGCCCTGCGGCGCGCCTATCGCGAGCGGCTGCTGCGCATCGCGGCCACCGACCTGACCGCCCCCGACCCGTCGGCCACCCTGCCCGACGTCGCCGCGGCGCTGGCCGACCTGGCCTCCGGGGCGCTGGAGGCCGCGCTGGCCGTCGCGCGCTCCCAGCTGCCCGACCACGGCGCCGGTGCCCGGCTGTCGGTGATCGGGATGGGCAAGACCGGCGGGCGCGAGCTGAACTACGTCTCCGACGTCGACGTCGTCTACGTGTGCGAGCCCGCCACCGGCGACGACGGCGAACCCCTGGTGGACGAGCCCACGGCCATGCGGACCGGGACCCAGCTCGCCACCCGGCTGCAGAAGGTCTGCGGCGGGACCTCGCTGGAGCCGGCCCTGTGGGAGGTCGACGCCGCCCTGCGTCCCGAGGGCAAGCAGGGGCCGCTGGTGCGGTCCCTGGAGAGCCACGTCGCCTACTACGAGCGCTGGGCCGAGACCTGGGAGTTCCAGGCCCTGCTCAAGGCCCGCCCGGTCGCCGGCGACGTCGCGCTCGGCACCGCCTACCGCGAGGCCCTCGACCCGTTCGTGTGGGCCGCCGCCAACCGGGACCACTTCGTCGAGGACGCCCAGGCGATGCGGCGCCGGGTCGAGGCGCACGTGCCCAACGCCGAGGCGGACCGGCAGATCAAGCTCGGCAAGGGCGGGCTGCGGGACGTGGAGTTCACCGTCCAGCTCCTGCAGCTCGTGCACGGGCGCACCGACGACACGATCCACGCCGGCAACACCTTCGCGGCGCTCGCCGCGCTGGCCGCCGGGGGCTACGTGGGCCGCGAGCACGCCACGAAGATGAGCGCGTGCTACCGGTTCTCGCGGTCCCTGGAGCACCGGGTCCAGCTCTTCCGGCTCAAGCGCACCCACCTGCTGCCCACGGACGACGACGACCTGCGGCGCCTGGCCCGGTCGCTGGGGATGCGCGGCCAGGGTGCCGACGACCTGCGCAAGCGGTGGCGGGACACCCGCCGCGAGGTGCGCGCCCTGCACGAGGCCGTCTTCTACCGCCCGCTGCTGCCGGCCTGGGCGCAGCTCTCGGAGGACGAGCTCTCGCTCGCCCCCGAGGCCGCGCGGGCCCGGTTCGCCGCGATCGGCTACCGCGACCCCGACGGCGCGATGCGGCACGTCGTCGCCCTCACCGAGGGCACCTCGCGCCGCGCCAAGCTGCAGCGCCAGCTCCTGCCGGTCATGCTCGGCTGGTTCGCCGAGGGAGCCGACCCGGACGCCGGGCTGCTGGCCTTCCGCAAGCTGTCCGAGAACCTCGGGTCGACCCCCTGGTACCTGCGGCTGCTGCGCGACTCCGGCAACGCGGCCTACCACCTCGCCCAGCTGCTGTCGTCGTCGCGCTACCTCGCCGAGGCGCTGTCCCGGTCGCCCGAGTCGGTGCAGTGGCTGGCCGACACCTCGCGGCTCGAGCCGCGAGGCCCGGAGCGGCTCGCCGCCGAGGCGGACGCCGTCCTGACCCGGTCGGACGACCCCGGGCCGGCGGCCACGAAGCTGCGGGCCCTGCGCCGTCGCGAGCTCGCCCGCACCGGCGCGGGCGAGGTGCTCGGCGTGCTCGACCCCGTCCAGGCGCAGGCCGCCATCTCCGACGCCGCGGACATGGTGCTCGTCGGCGGGCTGCGCGTGGCCGAGTACGCGGCACGCGCCGAGATGGGCCTCGGCCCCGACCCGGCGGCCAACCCGACGCGCATGCTCGTGGTCGCCATGGGGCGCCTCGGCGGCCGGGAGATGGGCTACGGCTCCGACGCGGACGTGATGTTCGTCCACGACCCGCTGCCCGGCGTCGAGGAGAAGCACGCCCACGACTTCGCCCTGCTGACCGCGCGGACGCTGCAGAAGATGCTCTCCGCCGTCGGGCCCGAGCCGTCGCTGCCGGTGGACGCCGACCTGCGTCCCGAGGGCCGCCAGGGCGCTCTGGTGCGCACGATGGCCTCCTACGCCGAGTACTACGAGCGCTGGTCCAGCGTGTGGGAGCAGCAGGCGCTGCTGCGGGCCCGGCCGGTGGCGGGCGCCGAGGGATCGGCGCGCGACCTCGCCGAGCGGTTCGCCGCGATCGTCGACCCGCTGCGCTACCCGTCCGGCGGGTTCTCCGAGCCCAAGCTGCGCGAGGTGCGGCGGATCAAGGCACGCGTCGAGTCCGAGCGGCTGCCGCGCGGCACCGACCCCAGCCGGCACCTGAAGCTGGGCCGCGGGGGAGTGGCCGACGTCGAGTGGACGGTGCAGCTGCTGCAGCTCCAGCACGCCCACGAGGTGCCCGGGCTGCGCACCACGGAGACGGTCTCCGCGCTGACCGCGGCGCAGGAGGCCGGCCTGGTCGAGGCCGAGGACGCGGACTGCCTGCTCGAGGCGTGGCTGCTCGCCTCCCGGCTGCGGTCGGCGCTGGTGCTGTGGTCCGGCAAGGTCGGGGGCCCGCGGGCGGACGTCCTGCCGGCGGACGCCTGGGCGCTGAGCGGGCTGGCGCGGCTGCTCGGCGACGTGGACACCGGCCAGGAGCTGGAGGAGCTGTACCTGCGGCACGCCCGGCGGGCCCGCACCGTGATGGAGCGCCTCGTCTACGGCGAGGAGGACTGA	MSSTTSGTGRPQTPTRRLLRAGFADLTRSATLWDDAELQRRLPADDGGGDAVLQALGVTADPDMALLQLVRLAAVPAAERTVERLLAADTRSADGVARGRLLAVLGASSALGDEIVRRPALLDVLGDGDGGLGVDPADVRAELLRAVGADPEAVAPVAAEQAAGDGESGWPDTDAPTATDALRRAYRERLLRIAATDLTAPDPSATLPDVAAALADLASGALEAALAVARSQLPDHGAGARLSVIGMGKTGGRELNYVSDVDVVYVCEPATGDDGEPLVDEPTAMRTGTQLATRLQKVCGGTSLEPALWEVDAALRPEGKQGPLVRSLESHVAYYERWAETWEFQALLKARPVAGDVALGTAYREALDPFVWAAANRDHFVEDAQAMRRRVEAHVPNAEADRQIKLGKGGLRDVEFTVQLLQLVHGRTDDTIHAGNTFAALAALAAGGYVGREHATKMSACYRFSRSLEHRVQLFRLKRTHLLPTDDDDLRRLARSLGMRGQGADDLRKRWRDTRREVRALHEAVFYRPLLPAWAQLSEDELSLAPEAARARFAAIGYRDPDGAMRHVVALTEGTSRRAKLQRQLLPVMLGWFAEGADPDAGLLAFRKLSENLGSTPWYLRLLRDSGNAAYHLAQLLSSSRYLAEALSRSPESVQWLADTSRLEPRGPERLAAEADAVLTRSDDPGPAATKLRALRRRELARTGAGEVLGVLDPVQAQAAISDAADMVLVGGLRVAEYAARAEMGLGPDPAANPTRMLVVAMGRLGGREMGYGSDADVMFVHDPLPGVEEKHAHDFALLTARTLQKMLSAVGPEPSLPVDADLRPEGRQGALVRTMASYAEYYERWSSVWEQQALLRARPVAGAEGSARDLAERFAAIVDPLRYPSGGFSEPKLREVRRIKARVESERLPRGTDPSRHLKLGRGGVADVEWTVQLLQLQHAHEVPGLRTTETVSALTAAQEAGLVEAEDADCLLEAWLLASRLRSALVLWSGKVGGPRADVLPADAWALSGLARLLGDVDTGQELEELYLRHARRARTVMERLVYGEED	PGPT0000655_210	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982	NA	NA
AK001_00043	1338	glnA_2	COG0174	Glutamine synthetase	ATGGACAGGCAGCAGGAGTTCGTGCTTCGCACGGTCGAGGAGCGCGACATCCGCTTCATCCGACTCTGGTTCACCGACGTGCTGGGGGTGCTCAAGTCCGTGGCGGTGGCGCCGGCGGAGCTCGAGCAGGCCTTCGTCGAGGGCATCGGCTTCGACGGCAGCGCGATCGAGGGTCTGACCCGGGTCTACGAGGCGGACATGATCGCCAAGCCCGACCCCACGACGTTCCAGGTGCTGCCGTGGCGCGGCGAGCGCCACGGCACCGGTCGCATGTTCTGCGACCTGCTCACCCCCGAGGGCGAGCCGTCGCGCGCCGACTCGCGCAACGTGCTCAAGCGCACGCTGGCCAAGGCCGGCGACAAGGGGTTCACCTTCTACACCCACCCCGAGGTCGAGTTCTACCTCTTCAACCAGATGGCCTCCGCGGAGGGCCCCCTGGTGCCGGTCGACGAGGGCGGCTACTTCGACCACCTCGCCCGCGGCAGCACGCACGACTTCCGCCGCGCGGCGATCTCGATGCTCGAGTCGATGGGCATCTCGGTGGAGTTCTCCCACCACGAGGCCGGTCCGGGGCAGAACGAGATCGACCTGCGCTACGCCGACGCGCTGACCACCGCGGACAACCTCATGACCTTCCGCACCGTGGTCAAGGAGGTCGCGCTCGAGCAGGGCGTCTTCGCCTCCTTCATGCCGAAGCCGTTCGCCGACCAGCCGGGTTCGGGCATGCACACCCACATGTCGCTGTTCGAGGAGGACCACAACGCCTTCCACGAGCCGGGTGCGCAGTTCGAGCTGTCCAAGACCGGCCGGCAGTTCATCGCGGGCCTGCTCGTGCACGCCGGCGAGATCACCGCGGTGACGAACCAGCACGTGAACTCCTACAAGCGGCTGTGGGGCGGCGCCGAGGCGCCGAGCTACATCTGCTGGGGGCACAACAACCGCTCGGCCCTGGTGCGCGTCCCGATGTACAAGCCGGGCAAGGGCAACTCGTCGCGGATCGAGTACCGGGCGCTGGACTCGGCGACGAACCCCTACCTCGCGTTCGCGGTGCTGCTGGCCGCCGGGATGAAGGGCATCGAGGAGGGGTACGAGCTGCCCGAGGCCACCGAGGACGACGTCTGGGAGCTCACCGGGGCGGAGCGCCGCGCGCTCGGCATCGCGCCGCTGCCGGAGTCGCTCGACGAGGCCATCGAGCTGATGGAGTCCTCCGAGCTCGTGGCCGAGACCCTCGGCGAGCACGTGTTCGACTACGTGCTGAAGAACAAGCGCAACGAGTGGGATGCCTACCGCTCCCAGGTCACCCCCTACGAGCTCAAGGCCTCGCTGCAGTTCCTCTGA	MDRQQEFVLRTVEERDIRFIRLWFTDVLGVLKSVAVAPAELEQAFVEGIGFDGSAIEGLTRVYEADMIAKPDPTTFQVLPWRGERHGTGRMFCDLLTPEGEPSRADSRNVLKRTLAKAGDKGFTFYTHPEVEFYLFNQMASAEGPLVPVDEGGYFDHLARGSTHDFRRAAISMLESMGISVEFSHHEAGPGQNEIDLRYADALTTADNLMTFRTVVKEVALEQGVFASFMPKPFADQPGSGMHTHMSLFEEDHNAFHEPGAQFELSKTGRQFIAGLLVHAGEITAVTNQHVNSYKRLWGGAEAPSYICWGHNNRSALVRVPMYKPGKGNSSRIEYRALDSATNPYLAFAVLLAAGMKGIEEGYELPEATEDDVWELTGAERRALGIAPLPESLDEAIELMESSELVAETLGEHVFDYVLKNKRNEWDAYRSQVTPYELKASLQFL	PGPT0000645_7904	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915	NA	NA
AK001_00044	900	panB	COG0413	3-methyl-2-oxobutanoate hydroxymethyltransferase	ATGGAACCAGCAGGCCACAACCCCTCGGCCACCACCGCTGACAACTCCGCTGTGAGGTCGGTCACCGGCGACGACGCCCCGGCCGGTATCGCCGGCGGCGCCCGCCGCGTCCGCGTCCACCACCTGCAGCGCGCGAAGGAGCGCGGCGAGCGCATCACGATGCTCACCGCCTACGACGCCACGACGGCCGCGATCCTCGACGCGGCCGGCGTCGACACCCTGCTCGTGGGCGACTCGATCGGCAACACGATGCTCGGGCACGCCACCACCCTGCCGGTCACCCTGGACGACATGGTCCGGGCCGGCCGGGCGGTGGCCTCGGCGACGCGGCACGCGTGGGTCGTCGTCGACCTGCCCTTCGGCAGCTACGAGGCCGGCCCGGAGCAGGCCCTGGCCTCGGCGGTGCGGGTGATGAAGGAGACCGGCGCCTCGGCCGTGAAGCTCGAGGGCGGACGGCGTTCGGCGGCGCAGATCCGCGCGATCACCGACGCCGGGATCCCCGTGGTCGGTCACCTCGGCTACACCCCGCAGTCGGAGAACGTCCTCGGCGGCCCCCGCGTGCAGGGCCGCGGGGACGACTCGGCCGAGGAGCTGAGCCAGGACGCCCTCGCCGTCCAGGAGGCCGGCGCCGTGGCGGTCGTGCTGGAGATGGTGCCGCGCGAGGTCGCGGCCCGCATCACCGAGTTCCTCGTCATCCCCACGATCGGCATCGGCGCCGGTCCGGAGGTCGACGGCCAGGTGCTCGTGTGGACGGACATGGCGGGGATGACCGACTGGTCCCCGCGCTTCGCCCGCCGCTACGCCGAGCTCGGCCGGGCGCTGCAGCAGGCGGCGGCCGACTTCGCCGCCGAGGTCCGCGACGGCGCCTTCCCCGCGGACGAGCACACCTTCGACCAGTGA	MEPAGHNPSATTADNSAVRSVTGDDAPAGIAGGARRVRVHHLQRAKERGERITMLTAYDATTAAILDAAGVDTLLVGDSIGNTMLGHATTLPVTLDDMVRAGRAVASATRHAWVVVDLPFGSYEAGPEQALASAVRVMKETGASAVKLEGGRRSAAQIRAITDAGIPVVGHLGYTPQSENVLGGPRVQGRGDDSAEELSQDALAVQEAGAVAVVLEMVPREVAARITEFLVIPTIGIGAGPEVDGQVLVWTDMAGMTDWSPRFARRYAELGRALQQAAADFAAEVRDGAFPADEHTFDQ	PGPT0008740_366	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606	NA	NA
AK001_00045	198			hypothetical protein	ATGAGCGAGTACAGCACCGGTCGCACGCAGTATTGGTACAACACCGAGACCGGGCAGGTGGAGACCTCGACGGAGAAGTCGAGCTGGACCCACCTGCTGGGGCCCTACCCGACCCGCGAGGCCGCCGAGCACGCCCTGGAGAACGCCGAGCGCCGCAACGAGGCGTGGGACGCCGAGGACGAGGACTGGCGGCGCTGA	MSEYSTGRTQYWYNTETGQVETSTEKSSWTHLLGPYPTREAAEHALENAERRNEAWDAEDEDWRR				NA	NA	NA	NA	NA
AK001_00046	774	ppgK_1	COG1940	Polyphosphate glucokinase	ATGGGGTCCATGGCTGAGCAGAACGACCATCAGGTGGCCTTCGGCATCGACATCGGCGGTTCGGGCATCAAGGGCGCTCCCGTGGACCTGACCACGGGTGAGTTCGCTGCCGACCGGCTGCGGATCCCCACCCCTGACAAGTCCACCCCGGAGGCGGTCGTCGAGGTGCTCGCCGAGCTCGTCGGCAGCTTCGACCTGCCCGACGACGCACCGATCGGCGTCGCGTTCCCGGCGCCGCTGGACCACGGGGTCGTGCGGTTCATCGCGAACCTGCACAAGTCCTGGAAGGGCGTCGACCTGCCCGCACTGGTGCGCGAGGCGACCGGGCACGAGGTCGTGGCCGTCAACGACGCCGACGCCGCCGGCGTCGGCGAGGACCGTTACGGCGCGGCGGCGGGCAAGGACGGCGTGGTCCTGATGGCGACGCTGGGCACCGGGATCGGCTCGGCGCTCCTCGTGGACGGTGTCCTCGTGCCGAACACGGAGCTCGGCCACCTGGAGATCGACGGCCACGACGCCGAGACGAAGGCGTCCGAGGCGGCCCGCGACCGCGAGGACCTGTCGTGGGAGAAGTGGGCGAAGCGGCTGCAGCGCTACTTCTCCACGGTCGAGATGCTCCTGTCCCCCGACCTCATCGTGGTCGGCGGCGGCGTGAGCAAGCACCACAAGAAGTTCTTGCCGCTGCTCGACCTGCGCGCCGAGATCGTCCCGGCCACCCTGCGCAACCGGGCCGGGATCGTCGGCGCGGCCTCCCTCGCGGCCCGCCCGCACTGA	MGSMAEQNDHQVAFGIDIGGSGIKGAPVDLTTGEFAADRLRIPTPDKSTPEAVVEVLAELVGSFDLPDDAPIGVAFPAPLDHGVVRFIANLHKSWKGVDLPALVREATGHEVVAVNDADAAGVGEDRYGAAAGKDGVVLMATLGTGIGSALLVDGVLVPNTELGHLEIDGHDAETKASEAARDREDLSWEKWAKRLQRYFSTVEMLLSPDLIVVGGGVSKHHKKFLPLLDLRAEIVPATLRNRAGIVGAASLAARPH	PGPT0017750_521	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886	NA	NA
AK001_00047	324			hypothetical protein	GTGACCCTCACGCATGAGGTTCGGGCCGGTGGGATCGTCTTGAACGAGGCTCCCGAGGCCAGTGTGGTGACCCTGTGGGGCGAGATCGACATCGCCCTGCGCGACGAAGCCTCGGCCGCGCTGGCCGGGGCGTTCCAGCGAGACCTGCCCGTGGTCGTGGACGCCTCCGAGGTGACCTTCCTCGACTCCGCGGGTATCGCCTTCCTCGTCCAGCTCTGCCGCATCGGGCAGGACGAGGGGCTCTCGGTCACGTTGCACGACCCGCCGTCCGTCGTCAGCGAAGCACTGGGCACGCTGCACCTGCACGTGCCCGTCGCCGGCTGA	MTLTHEVRAGGIVLNEAPEASVVTLWGEIDIALRDEASAALAGAFQRDLPVVVDASEVTFLDSAGIAFLVQLCRIGQDEGLSVTLHDPPSVVSEALGTLHLHVPVAG	PGPT0014350_2778	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
AK001_00048	723			hypothetical protein	ATGACCGTCGCCCGCGCAGGGGTGACCCGGCGCGGGAACAGAACCCGGCGTACAGACCGGCTCGTCCGCCCCCGACGCCCGCCGCCCCCGGCGGCGAGCGTCGGAGGCCTCTCGTATCGTCGCCCCGTGGCGACGTTCACCGCGCGACCGGCCAACCAGGTCCCGTTCGAGGACCTGCAGACGGTCCTGGGCACCTCGCAGGCCGGGCGCTGCCAGTGCCAGCGCAAGGTGCTCGGCGACCGGGACTGGTGGTTCATGCCGGTGGAGGAGCGTCGGCTCCGGCTGGCCGAGCTGACCTGTGCGGGCGACCCGGACTCGGCGGTGACCAGCGGCGTCGTGCTGTACGTCGACGACGACCCGGCCGGCTGGGTCGCGGTCGGTCCGCGCCCCACCTACCGCCGCTACTTCGGGCGCAGCCCGGTGGCCTGGCGGGGCCGCAACGAGGATCGCGACGACGACGGCGTGTGGCTCGCGGCGTGCTTCGTCGTCCGCGCGGGGTTCCGCGGCCAGGGGCTGATGTACGAGCTGGCGCGCTGCGCCGTCGACCTGGCACGGGCCCGGGGCGCGCGGGCGCTGGAGGGGTATCCGATCGTCGCCGCGGACGGTGGCGAGGTGATCTGGGACGAGGCGAGCGTCGGTGTGCCGCAGGTGTTCGCGGCGGCGGGGCTGAGCGAGGTCGCGGCGCCGACGTCGCGCCGCCGGGTGATGCGGATCGAGCTCTGA	MTVARAGVTRRGNRTRRTDRLVRPRRPPPPAASVGGLSYRRPVATFTARPANQVPFEDLQTVLGTSQAGRCQCQRKVLGDRDWWFMPVEERRLRLAELTCAGDPDSAVTSGVVLYVDDDPAGWVAVGPRPTYRRYFGRSPVAWRGRNEDRDDDGVWLAACFVVRAGFRGQGLMYELARCAVDLARARGARALEGYPIVAADGGEVIWDEASVGVPQVFAAAGLSEVAAPTSRRRVMRIEL				NA	NA	NA	NA	NA
AK001_00050	384			putative protein.1	ATGGCGCAGGTGAAGATCTACGGGAACCGGACCGTCTGGGGCGATCGCCGCGGGGAGGTGTCCGACGCCGTGCACCAGGCGCTGGTGGGGGCCTGGCGGATCCCCGAGGACAAGAGGTTCCACCGGTTCCTGCTGCTCGAGGACGGCGACCTGGTCGCGCCGCGGTCGGCGGCGTACCTCGTGATCGAGGTCGTGTGCTTCTCCGGGCGGTCCACCACCGCCAAGAGAGCGCTGGTGCGGGCGATGTACGACGACGTCGCCCCCGCCCTGGACCTGGCGGACGACGACCTGGAGGTCGTGATCCTCGAGAGCCGGCCGGAGAACTGGGGGATCCGGGGCCGGTCGGCCGACGAGCTGGTCCTGACGTACCCGGTGGAGGTCTGA	MAQVKIYGNRTVWGDRRGEVSDAVHQALVGAWRIPEDKRFHRFLLLEDGDLVAPRSAAYLVIEVVCFSGRSTTAKRALVRAMYDDVAPALDLADDDLEVVILESRPENWGIRGRSADELVLTYPVEV				NA	NA	NA	NA	NA
AK001_00051	834			hypothetical protein	GTGCTGATCTGCCTGCCGCCCTCCGAGGGCAAGACCCCCGCGCCCGTCGACGGCGCCCCCGCCGACCTGGCCACGCTCACGGCCCCGGGGCTCACCGCGCAGCGCGAGACCGTCCTGGACGCCCTCGCCGACGCCAGCGCCCGCGAGGACGCCACCACCGTGCTCAAGGTCGGGACGAGCCTGGCCGACGAGGTCGCCCGGAACACCCGGCTGCGCTCCGCTCCCGCGGCCCCGGCGACCGAGGTCTACACCGGCGTCCTGTACGCGGCAGCCGGTCTCGGGGACCTGTCGGTCGAGGCGGCCGCCCGGGCGGCCGCCGACGTCCTGGTCTTCTCCGGGCTGTGGGGCGTCGTCGCCCCGACCGACCGGATCCCCGCCTACCGGCTCTCCATGGGCGTGTCCCTGCCCGGCGTCGGCGGGCTGGCCGCCGCGTGGCGGCCCCACCTGGAGGCCGCCCTGGCCGAGCGGGCCGCCGGGGACGTCGTCGTCGACTGCCGCTCGGCGGCCTACGTCTCCGCCTGGAAGCCCGCCACCACCGGCGACGGCGCGGCGGACTGGGTCACGATCCGCGTGGTGCGCGAGACCGACGGCGTGCGCTCGGTCGTCTCGCACCACGCCAAGCACACGCGCGGGGTGCTGACCGGCCACCTGCTGCGCCGCCCGGGGCCGCCCCCGACGTCGGCGGCCGAGCTGCTGGCGGCCGCCCGCGAGCTCGACGGCACGGTGATCGGCACCGAGGCCGGCACCGGCCTGAGCTACCGCATGCTGGCGGCCGAGCTGCACGAGGCCACCGGCCCGCGCCGCCCGCACACGCTGGAGCTCGTCATCTCCTGA	MLICLPPSEGKTPAPVDGAPADLATLTAPGLTAQRETVLDALADASAREDATTVLKVGTSLADEVARNTRLRSAPAAPATEVYTGVLYAAAGLGDLSVEAAARAAADVLVFSGLWGVVAPTDRIPAYRLSMGVSLPGVGGLAAAWRPHLEAALAERAAGDVVVDCRSAAYVSAWKPATTGDGAADWVTIRVVRETDGVRSVVSHHAKHTRGVLTGHLLRRPGPPPTSAAELLAAARELDGTVIGTEAGTGLSYRMLAAELHEATGPRRPHTLELVIS				NA	NA	NA	NA	NA
AK001_00052	327			hypothetical protein	ATGGCGTACGACGAGGAGCTGGCCGACCGGGTCCGGGAGTCCCTGTCGCCCCGGGACGGCCTGACCGAGCGGAAGATGTTCGGCGGCATCGCCTTCATGCTGTCGGGGAACATGGCGGCCGGGGTCCTGCGGGACGAGCTGATGGTGCGCGTGGGCCCCGACGGGTACGACGCGGCGCTGGCCGACGGGGCCGCCCCGATGACGATGGGCGAGCGGACGATGGGCGGCTTCGTGACGGTGGGCGCCGACCAGGTCGCCGACCCCGCGACGCTGGACGCCTGGGTCGCCCGGGGCGCCGACCACGCCGCCGCACTGCCGCCGAAGTGA	MAYDEELADRVRESLSPRDGLTERKMFGGIAFMLSGNMAAGVLRDELMVRVGPDGYDAALADGAAPMTMGERTMGGFVTVGADQVADPATLDAWVARGADHAAALPPK				NA	NA	NA	NA	NA
AK001_00053	684		COG0328	Bifunctional protein	ATGCGCAGGCCCGCGTCCGGAGCCCTGGCCCGCTACGACGGCGCGGTGCCGGCGACCCTCGTCCTGGTCCGGCACGGCGTGACGCCGTTGACCGAGGTCGGCGCGCTGTCCGGCGGCGACGTGCCCGGTCCGTCCCTGACCACGGTCGGACGGCGTCAGGCGGCCCAGGCGGCGGACGCCGTCTTCCGGCTGGGCACCGAGCGGTGGGCCGACCTCGCACGCCCCGAGCTGCTGGTGGCCTCGCCGATGGTGCGCACCCAGGAGACGGCCGCGGCCATCGGCCGCCGGCTGGGCGTGCACGTGGCGACGGACGACCGCTTCGCCGAGGTGCGGTTCGGAGCCTGGGAGTCGTTGACCCCGCAGCAGGTCGAGGAGTCCTGGCCGGGCGACCTGGCCAAGTGGGTCACGAGCGGATCCTTCGCCCCGCCGGACGGGGAGTCGTACGCGGACCTGGGCGAGCGGGTCGGTCCGGCCGTCGACGAGCTGGCCGCCGGGACGGTCGGTCGCACCACGGTCGTCGTCGCGCACGCCGCGGTGATCCGCTCCGTGGTCGGACGGGCGCTGGACGCGCCGCCGGCCGGGTGGGGACGGCTCCGGGTGCCCCCGTGCTCGCTGTCGATCGTGCGCCTCTGGGCCGACGGCGACCGCGAGGTCACCGCCGTCGGGCACCCTGCCGCGGACTGA	MRRPASGALARYDGAVPATLVLVRHGVTPLTEVGALSGGDVPGPSLTTVGRRQAAQAADAVFRLGTERWADLARPELLVASPMVRTQETAAAIGRRLGVHVATDDRFAEVRFGAWESLTPQQVEESWPGDLAKWVTSGSFAPPDGESYADLGERVGPAVDELAAGTVGRTTVVVAHAAVIRSVVGRALDAPPAGWGRLRVPPCSLSIVRLWADGDREVTAVGHPAAD	PGPT0004650_145	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004650-cobC|phpB-K02226	NA	NA
AK001_00054	741		COG1579	putative protein	ATGGCTACCGCACCCGTCGAGGACCAGCGTCGTCTGCTCCAGGTCCAGGCGCTGGACACCAAGCTCCAGCAGCTCGCGCACCAGCGCCGCAAGCACCCCTCGCTGACCACCCTCGCCGAGCTCGACGACCGGCTCGCGGACCTGCACTCCTCGATCGTCGACTCGCGGACCGCCGTGGCGGACCTCGAGCGCGAGGTCACCAAGGCCGAGGTCGACGTCGAGCAGGTGCGCACGCGTGCCACCAGGGATCAGCAGCGGCTCGACTCGGGTGCGCTCGGTGCCAAGGACGCCCAGGCCGTGGTCAGCGAGCTCGAGTCGCTCGCCCGCCGCCAGAACGTCCTGGAGGAGGCCGAGCTGGAGATCATGGAGCGGCTCGAGGCCCACCAGGAGTCGCTGGCCCAGGTGGAGGCCGCCCACGGCGAGCTGGTCGCGGCCCAGGAGAAGGCGGCCGGGGAGCGCGACGCCGCGTTCGCCGAGATCGACGCGGAGGCGCGCGAGGTCAAGGCCGAGCGGGCCCGCCTCGCCGACGGCCTCGACGCCGGCCTGGTGACCCTCTACGACCGCCTGCGCAGCCAGCTCGGCGGGCTGGGCGCCGCCGCCCTGCGGGGCAACCGGTGCGAGGGCTGCCGCCTCGAGCTCAACCCCGGCGACCTGGCCGCGGCACGCGGCGCGGCCCCCGAGCAGGTGGTGCGCTGCGAGGAGTGCGGGCGGATCCTCGTGCGCGACCCCGACGGCTCCTGA	MATAPVEDQRRLLQVQALDTKLQQLAHQRRKHPSLTTLAELDDRLADLHSSIVDSRTAVADLEREVTKAEVDVEQVRTRATRDQQRLDSGALGAKDAQAVVSELESLARRQNVLEEAELEIMERLEAHQESLAQVEAAHGELVAAQEKAAGERDAAFAEIDAEAREVKAERARLADGLDAGLVTLYDRLRSQLGGLGAAALRGNRCEGCRLELNPGDLAAARGAAPEQVVRCEECGRILVRDPDGS				NA	NA	NA	NA	NA
AK001_00055	873			hypothetical protein	ATGAACGCTGCACCGCCCACGCTGGCCGACGTCGTCTCCGTCCTGGAGGACCTGTACCCGCCGTCCACGGCCGAGGGGTGGGACGCGGTCGGGCTGGTCACGGGCGACCCGTCCCGGCCGGTGCGCAAGGTGCTGTTCGCCGTGGACCCGGTGGCCGACGTCGTCGCCGAGGCCGTCGACTGGGGAGCGGACCTCGTGGTCACCCACCACCCGCTGTTCCTCCGGGGCGTGCACTCGGTGGCGGCCACCACGTTCAAGGGTGCCGTGGTGCACCGGCTCCTCACCGCCGGGTGCGGGCTCTACGTGGCGCACACCAACGCCGACTCCGCCCCGCGCGGGGTCGCGGACGCCCTGGCCGACCTGGTCGGGCTGACCGACCGGCGTCCGCTCGTGGCGCACGTCGAGGACGTCGACCGCGGCCTGGGCCGGGTCGGCCGGCTGGACCACCCGACGACGTTGCGCGAGTTCGCCGAGCGGGTCGCCCAGGTGCTGCCCGCCACCGCCCAGGGCGTGCGCGTGGCCGGGGACCTGGACGCGCCGGTGTCGACGGCGGCCGTGGTCGGCGGGTCCGGGGACTCCCTGTTCGACGCCGTGCGGGCCACGGCCGCCGACGTGTACGTCACCGCCGACCTGCGCCACCACCCGGCCTCCGAGCTGCGCGAGCGCGCCGCCTTCGAGTCGCCCGACCCCGAGCGGCCGCAGGCGGGCACCCCCTACCTGGTCGACGTGGCCCACTTCGCCTCGGAGTGGCCCTGGCTGGCCTACGCCGCCGCGGATCTCGCGACCGGACTGGGAGACGGTACGGTGACCACCAAGGTGAGCACTCTGGTCACCGACCCGTGGACGCACCGTCTCGGGAGCCCGGAGCGCTGA	MNAAPPTLADVVSVLEDLYPPSTAEGWDAVGLVTGDPSRPVRKVLFAVDPVADVVAEAVDWGADLVVTHHPLFLRGVHSVAATTFKGAVVHRLLTAGCGLYVAHTNADSAPRGVADALADLVGLTDRRPLVAHVEDVDRGLGRVGRLDHPTTLREFAERVAQVLPATAQGVRVAGDLDAPVSTAAVVGGSGDSLFDAVRATAADVYVTADLRHHPASELRERAAFESPDPERPQAGTPYLVDVAHFASEWPWLAYAAADLATGLGDGTVTTKVSTLVTDPWTHRLGSPER				NA	NA	NA	NA	NA
AK001_00056	1419	xylE_1		D-xylose-proton symporter	ATGTCCGGCACGACTCAGACCCATGAACAGGGTTTCCACGCAGCACGCGTGATCCAGCTCGCGGTCACCGCGGCGCTGGGCGGTTTCCTCTTCGGATTCGACACGGCGGTCATCAACGGTGCCGTCACACCCATGCAGGAGGACTTCGGCATGGGTGCCGGGGTGACCGGTTTCGTCGTCTCCTCCGCCCTGCTCGGCTGCATGGTCGGGGCCTACTTCGCCGGTCGGCTGTCCGACAAGATCGGCCGCGTGCGCGTGATGGTGATCGCCTCGGCGCTGTTCACCCTCTCCGCGGTCGGTTCGACGTTCGCGTTCGGGCCCGTGGACATGATCGTCTGGCGGGTCATCGGCGGTCTCGGCGTCGGCGCGGCGTCGGTGATCGCGCCGGCGTACATCGCCGAGATCTCGCCGGCGCACATCCGCGGCCGCCTCGGCTCGTTGCAGCAGATGGCGATCGTCACCGGCATCTTCGTGGCGCTGCTCAGCGACTACGCGATCGCGGCCGCCGCGGGCGGCGCCGAGAACGAGCTGTGGTTCGGCCTGGCGGCCTGGCGGTGGATGTTCTTCACCGAGGTGGTCCCCGCCGTCGTCTACGGTGCCCTGGCTCTGAGCATCCCCGAGTCGCCACGCTTCCTCGTCCACCAGGGACGAGACAAGGAGGCGCGCGAGGTCCTCTCCAGCGTGCTGACCGAGGGTGTCGACGAGCGCATCAGCGAGATCCGTCGCACGATCATCCGTGACCGGGCGACCTCGCTGCGCGACCTGGTCAAGCCCACCGGCGGCCTGCTGCCGATCGTGTGGATCGGCATCGCCCTGAGCGTGTTCCAGCAGTTCGTCGGGATCAACGTCATCTTCTACTACTCCTCGACGCTGTGGCAGGCGGTCGGGTTCACCGAGGACGACGCGCTGCAGCAGACCGTCATCACGTCGGTGACCAACATCGTGGTGACCGTCGTGGCGATCCTGCTCATCGACCGGATCGGTCGACGGCGGCTGCTCACCATCGGGTCGGCCGGGATGTTCGTCGCGCTCGGCACGATGACGATCGTGTTCAGCCAGGCGCCCCTGGTCGCGAACGACGCCGGCGAGCTGGAGCCGGTGCTCAGCGACACCGGCGGGATCGTCGCCCTCGTCGCCGCCAACCTGTTCGTCGTCTTCTTCGGGATGTCGTGGGGGCCGGCGGTGTGGGTGCTGCTGGGCGAGATGTTCAACAACAAGATCCGCGGCACGGCGCTCGGCATCGCGGCCGCGGCGCAGTGGCTGGCGAACTTCGCCATCTCCAGCTCGTTCCCGTCCATGGCGGAGATCGGCCTGTGGTTCGCGTACGGCTTCTACACGATCGCGGCGCTCGCCTCGTTGTTCTTCGTCCTGCGCTTCGTGCCCGAGACGCGCGACAAGGAGCTCGAGGACATGGAGTGA	MSGTTQTHEQGFHAARVIQLAVTAALGGFLFGFDTAVINGAVTPMQEDFGMGAGVTGFVVSSALLGCMVGAYFAGRLSDKIGRVRVMVIASALFTLSAVGSTFAFGPVDMIVWRVIGGLGVGAASVIAPAYIAEISPAHIRGRLGSLQQMAIVTGIFVALLSDYAIAAAAGGAENELWFGLAAWRWMFFTEVVPAVVYGALALSIPESPRFLVHQGRDKEAREVLSSVLTEGVDERISEIRRTIIRDRATSLRDLVKPTGGLLPIVWIGIALSVFQQFVGINVIFYYSSTLWQAVGFTEDDALQQTVITSVTNIVVTVVAILLIDRIGRRRLLTIGSAGMFVALGTMTIVFSQAPLVANDAGELEPVLSDTGGIVALVAANLFVVFFGMSWGPAVWVLLGEMFNNKIRGTALGIAAAAQWLANFAISSSFPSMAEIGLWFAYGFYTIAALASLFFVLRFVPETRDKELEDME	PGPT0014440_1117	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0014440-hxt-K08139	NA	NA
AK001_00057	1752			hypothetical protein	GTGCACGTCCTCCTCACGCGACTTCCCGGCGGCCGGGTCCGGGTCCACCCGTCCGACGACGGCGCACCGGCCGACACCGGTGCCGTGGCACCGCAGGACGTCGACGCCGACGCCGTCCCCGCCGTCGTGCACCGGCTCGAGGAGACCGGCCACCCGCGGTGGACCTGGGACAACACCAACCGGTGGTACCCGGCGCTGCTGACCGCCGGCGAGCGGCTCGACCGCGCCCATGACCTGCGGCTCGCCCACCGCGTGCTGCGCACCTCGCAGCTCGCGCGCACCACGGAGCTGGCCGGGGCCCCGCCCGGCCCGTGGGACGCCCTCGAGCCGGCGGCGGCCGGGGGAGGGGGCGACACGTCCGTCGTCCGCGCACGGCAGCACGAGTCCCTGTTCGACCTCGACGACGTCGCGCCGGCCGCCCCGCCCGCGGACGGGGCGGACCCGCAGCGCGAGCTCGAGGTCCAGCGGGCCGCCGTCGCCGGCTCCTCCGACCCCGGCCGGCTGCGGCTGCTGCTCGCCGCCGAGTCCGCCGGGGCGCTCGCGGCCGCCGAGATGCACCACGCGGGGCTGCCCTGGCGCGCCGACGTCCACGACGCGATCCTCACCGAGGCCCTCGGACCCCGGCCGACGCCCGGGCAGCGCCCGGCCCGCCTGGAGGAGCTCGTGGCCGACGTCCGTGCCGCGCTGGACGCCCCGCCGACCCTCAACCCCGACTCCCACCCGGACCTGCTGCGGGCCCTGGAGTACGCGGGCGTCGGTGCCCGCAGCCTGCGCAAGGGGGAGCTCGAACGGATCGACCACCCGGTGGTCGCGCCGCTGCTGGAGTACAAGAGCCTGTACCGGTTGTGGACGGCCAACGGCTGGCACTGGCTCGACCAGTGGGTCCGCGGCGACCGGTTCCGCACCGACTACGTCGTGGCGGGCGTCGTCACCGGGCGCTGGTCCTCCACCGGCGGCGGCGCCCTGCAGCTGCCGAAGGGCGTGCGCGGGGCCGTGCGGGCCGACCCCGGCTGGGTGCTCGTCGTGGCCGACGCCGCCCAGCTCGAGCCGCGGGTGCTGGCCGCGATGGCGCACGACGAGGCGATGGCGCGTGCCGGGCGGGACGGCGACCTGTACGCGGGCATCGTGGCCTCCGGTGCCGTCGCCACCCGCGAGCACGCCAAGGTGGGCATGCTCGGCGCGCTGTACGGCGGGACCACCGGCGTCAGCGGGCAGGTGCTGCCGCGGCTGCGGCGCGCCTTCCCGCACGCGATGGGGCTGGTGGAGGACGCCGCGGCCACCGGTGAGGGCGGGGGCGTGGTGACCACCTGGCTGGGACGGTCCTCCCCACCGCCCGGCCAGGCCTGGGACGAGGCGCAGTCCGGGGCGCTCGGGGAGGGCGCCGCGGAGGGTGCGGCGACCCTCGCGCGGTCCTCGGCCCGTGCGTGGGGCCGGTTCACGCGCAACTTCGTGGTCCAGGGCACCGCCGCGGAGTGGGCGGAGTGCTGGCTCGCCTCGATCCGGCGCCGGCTGTGGGCGCTCGGTACCGCCGGGCCCGCCGGTCGGGCGCCCGCGCCGTTCGCCGACCGTCCGCACCTGGTGTTCTTCGTCCACGACGAGGTCGTGGTGCACGCCCCGGCGGGGCTCGCCGACGCGGTGGCGCACGAGGTGCGCGAGGCCGCGGCCGAGGCCGGCCGGCTGATGTTCGGCGACTTCCCGGTCGCCTTCCCGCTGACGGTCGCCGCCGTGGCGGCGTACGACGAGGCGAAGTAG	MHVLLTRLPGGRVRVHPSDDGAPADTGAVAPQDVDADAVPAVVHRLEETGHPRWTWDNTNRWYPALLTAGERLDRAHDLRLAHRVLRTSQLARTTELAGAPPGPWDALEPAAAGGGGDTSVVRARQHESLFDLDDVAPAAPPADGADPQRELEVQRAAVAGSSDPGRLRLLLAAESAGALAAAEMHHAGLPWRADVHDAILTEALGPRPTPGQRPARLEELVADVRAALDAPPTLNPDSHPDLLRALEYAGVGARSLRKGELERIDHPVVAPLLEYKSLYRLWTANGWHWLDQWVRGDRFRTDYVVAGVVTGRWSSTGGGALQLPKGVRGAVRADPGWVLVVADAAQLEPRVLAAMAHDEAMARAGRDGDLYAGIVASGAVATREHAKVGMLGALYGGTTGVSGQVLPRLRRAFPHAMGLVEDAAATGEGGGVVTTWLGRSSPPPGQAWDEAQSGALGEGAAEGAATLARSSARAWGRFTRNFVVQGTAAEWAECWLASIRRRLWALGTAGPAGRAPAPFADRPHLVFFVHDEVVVHAPAGLADAVAHEVREAAAEAGRLMFGDFPVAFPLTVAAVAAYDEAK				NA	NA	NA	NA	NA
AK001_00058	1695	pknD_1		Serine/threonine-protein kinase PknD	GTGCCCGGCGTGACGCCCCCGGGACCGGCCGACGAGGCGTCCGGCGGCCACGTCGTGCTCGGCGGGGCCTACGTGCTGGGCGACATCCTCGGCACCGGTGGCACCTACACGGTCTACGAGGCCTCCCGGGTCGGCGCGACCGGCACGGACGGGACCGCGGAGGACACCGAGCCGCTGCTCATCAAGGTCCTGCACCCGCACCTGGTCGACGACGAGCCCACCCGCGCGGCCCTGGCCCGCGAGATCGCCGCCTCCGACCAGGTCGACCACCCGGGCGTCGCCAAGGTCCTCGACACCGGTGAGGACGAGATCGCGGGCGCGACCGTCCCCTGGCTGCTCACCCGGCGGCTGCCCGGGACCACCCTCGCCGAGCAGACGCCCTCGACGGGCCTGCCGTGGCCCGAGGCGCTCGGGGTCGCCGGCGGGCTGCTCGCGGCGCTCGCCGCCGTGCACGCCGCCGGGCTGGTGCACCGCGACGTGAGCCCGCGCAACGTGGTCGTCGACCGGCACCCGGACGGCACCGTCCAGGTCGGGCTGATCGACCTGGGCCTCACCGCCCCCGGCGGCCGGGACGGCGACGGCGGGACCGTCGTGGGCTCGGCGGCGTTCATGTCGCCCGAGCAGGCCCAGGGCAGGCCGCTCGACGCACGCAGCGACCTGTACTCCGTCGGGGCGCTGACCTACTTCGCCCTCACCGGGCACGCTCCGTACGAGCGCGCCGAGCCCGCCGACGTGCTGCGCGCCCACGTCGGGGCGCCCGTACCCGCGCCGTCGGCCCGCCGGGCCGGCGTGCCGACCTCCGTCGACCGGTTCGTCGCGCAGGCGATGGCCAAGGACCCCGACCGCCGGTTCACCGCCGCCGGCACCATGGCGGCCGCCGCCGCGTCCGTGCTGGGCCTCGCCGCGAGCGCCGCCGCGGGCCCGGGGGCGGACCCCGACCAGACGATGAGCCTCGCCGAGGTCGACGCGCAGGACCCGGACCGGACCGCCGCGCTGGGAGCCGCCGGCACGACGGCGGCGCTCGCCGCGGCAGCAGCGGCGGCCGCGAGCGACGCCGAGCTGCAGCGGACCCGGCAGCTCGGCGCGGTCGGCGCCGGTGCCCCCGGCGACGCCGGCGAGGCGACCGGCGCTGCCGGAGCGGCCGCGGCGGTCACCGGGGCGACGCCCGCCGACCCGGGTGCCGCGGCGCCGGACGCCCCGCCGTCGTCCGCTCGCCGGTGGGTCCCGGTCGCGCTGGTGGCCCTCGTGCTGGCCGTCGCCGCCGGCGCCGTCGTGTCCTGGCCCCTGGGCGACGCGGACCGAGGAGACCCCGTGCCCGTCGTCACGGTCAGCCCCTCCCCGACCACGGACCGCACGACGCCACCTCGCCCGGACGACCCGACGACGGCACCGCCCGCCGCACCGGCGCCCGAGCCCGAGCCCGAACCCACTCAGGAGCCGTCGCCCAGTCCGTCGCCGAGCCCCACGCCGTCGGACGAGCCGTCGCCGGAGCCGACGACGGCGTCGCCCACGGCACCGGAGCCGGACCCCACGGACGACACCACGACGGCACCGCCGCCGACGCCCGACCCGGACCCCACGGACGACACCACCACGGCGCCGGCGCCGGCACCCGAGCCGACCGACGACGCGCCCACGGCGCCGTCGGACGCCGAGGCGTCACCGGCGCCGGGCGGGAGCACCCCCGCGCCGTGA	MPGVTPPGPADEASGGHVVLGGAYVLGDILGTGGTYTVYEASRVGATGTDGTAEDTEPLLIKVLHPHLVDDEPTRAALAREIAASDQVDHPGVAKVLDTGEDEIAGATVPWLLTRRLPGTTLAEQTPSTGLPWPEALGVAGGLLAALAAVHAAGLVHRDVSPRNVVVDRHPDGTVQVGLIDLGLTAPGGRDGDGGTVVGSAAFMSPEQAQGRPLDARSDLYSVGALTYFALTGHAPYERAEPADVLRAHVGAPVPAPSARRAGVPTSVDRFVAQAMAKDPDRRFTAAGTMAAAAASVLGLAASAAAGPGADPDQTMSLAEVDAQDPDRTAALGAAGTTAALAAAAAAAASDAELQRTRQLGAVGAGAPGDAGEATGAAGAAAAVTGATPADPGAAAPDAPPSSARRWVPVALVALVLAVAAGAVVSWPLGDADRGDPVPVVTVSPSPTTDRTTPPRPDDPTTAPPAAPAPEPEPEPTQEPSPSPSPSPTPSDEPSPEPTTASPTAPEPDPTDDTTTAPPPTPDPDPTDDTTTAPAPAPEPTDDAPTAPSDAEASPAPGGSTPAP				NA	NA	NA	NA	NA
AK001_00059	441			A-adding tRNA nucleotidyltransferase	ATGCGGGTGACAGAGACGTTGCGGCACAAGGGTGACGAGGTCGTCACCGTCGCGCCGGGGGCGAGCGTGCGGGACCTGCTGGCGCTGCTGGCCGAGCACCGCATCGGTGCGGTCGTCGTGTCCGGCGACGGCACCCACGTCGACGGCATCGTCAGCGAGCGCGACGTGGTCCGTCGGCTGCACCACGACGGCGACGGGGTGCTCGACGCCTCCGTGGCGCAGCTCATGACGGTCGACGTGCACACCTGCGGGCCCGAGACGCCGTTGGACGACCTGATGGCCGTGATGACCGAGCGCCGGGTCCGCCACGTGCCGGTTCTGGACGACGGCCGGCTGGTCGGGATCGTCAGCATCGGCGACGTCGTCAAGCGCCGCATGGCCGAGGTGCAGGCCGAGCGCGACCAGCTCACCGACTACATCACCGGCGGCCGGGCGCACTGA	MRVTETLRHKGDEVVTVAPGASVRDLLALLAEHRIGAVVVSGDGTHVDGIVSERDVVRRLHHDGDGVLDASVAQLMTVDVHTCGPETPLDDLMAVMTERRVRHVPVLDDGRLVGIVSIGDVVKRRMAEVQAERDQLTDYITGGRAH				NA	NA	NA	NA	NA
AK001_00060	1416	mcrA		Mitomycin radical oxidase	ATGACCGAGCTCACCACGATCGACGGCGGCACCACGCGGCTCGACGCCGAGCTGGACGCGCTGGCCGCCGACCTGACCGGCGGGCTGGTCCGGGCCGGGGACCCCGACTACGACACGTCCCGCGCGCTGTGGAACGCCGTGACCGACCGGCACCCGGCCGCGATCGTGCGGTGCGCCACCACCGAGGACGTGGGCCGCGCGGTGCTGCTGGCCGCCGAGCACCGCCTGCTCGTCGCGGTGCGCGCCGGCGGGCACAACGTCGCCGGCACCGCGGGCGTCGACGACGGGCTCGTCATCGACCTCGGGCAGATGCGCGACGTGTCGGTCGACCCCGGGACCCGGCTCGCCCGGGTCGCCGGCGGGGCGCGGCTCGGCGACCTGGACGCCGCCACCCAGGAGCACGCTCTCGCGGCCCCGGCCGGGGTCTTCTCCGACACGGGGATCGGCGGGCTGGGGCTGACCGGCGGCATCGGGTGGCTGCGGCGCCTGCTCGGGCTGACGTGCGACAACATCGTCGGGGCGACGGTGGTCGCCGCGGACGGGACCGTCCACGAGGTCGACGAGGAGAACGACCCCGAGCTGCTGTGGGGCCTGCGCGGCGGGGGCGGCAACCTGGGGGTCGTCACCGAGCTCGTCGTGCGGCTGCACCCGGTCGGACCGGAGGTCTACGCCGGGTTCGTCCTCCACCGCGCCGACCGGGCCCTGGAGGTCCTGCACGCCTACCGGGACTGGTCCGCCGACCTGCCCGACGAGGTCTCCTCCATGGCCGTCCTCGGGGCAGCACCCGAGGACGAGGCCGTCCCCGCCGAGCTGACGGGACAGCCGTGCGTGATCGTGCTGGCCTGCGTGGCCGACCCCGACCACGGGGAGGAGCTGCTGGCGCCGATCCGCGACCTGCCCGACCCGGCCGCGGACCTCAGCGGCCCGGTGCCGTACGTCGAGCTGCAGCAGCTCTTCGACGCCGACTACCCCGAGGGGATGCGGTACTACTGGCGCTCGGTGCACCTGCCCGAGCTCTCCGAGGAGGCGCTGCTGCGCAGCGTGGACCAGATGCACCGCCGTCCCTCGGCGCTGTCCACCATCGACCTGTGGCACCTGGGTGGCGCGATGTCGCGGGTCGGCGCCGAGGACACCGCGTTCGGCGACCGCAGCGCGCCCTATCTCGTGGGCATCGAGGCGAACTGGACCGATCCGGACGACGACGAGGCGAACATGCGCTGGGCCCGGGGCTGCGCCGCCGACCTCGACGAGCTGTCCACGGGACGCGAGTACCTCAACTTCCCCGGTTTCCAGGAGGGCGGCCAGGAGACCCTGCGGGCGGCCCACGGCGAGGCGAACTACGCCCGGCTGCGTGCGCTCAAGCAGCGCATGGACCCGCAGAACCTCTTCCGGCTGCACCAGAACATCGCACCCTGA	MTELTTIDGGTTRLDAELDALAADLTGGLVRAGDPDYDTSRALWNAVTDRHPAAIVRCATTEDVGRAVLLAAEHRLLVAVRAGGHNVAGTAGVDDGLVIDLGQMRDVSVDPGTRLARVAGGARLGDLDAATQEHALAAPAGVFSDTGIGGLGLTGGIGWLRRLLGLTCDNIVGATVVAADGTVHEVDEENDPELLWGLRGGGGNLGVVTELVVRLHPVGPEVYAGFVLHRADRALEVLHAYRDWSADLPDEVSSMAVLGAAPEDEAVPAELTGQPCVIVLACVADPDHGEELLAPIRDLPDPAADLSGPVPYVELQQLFDADYPEGMRYYWRSVHLPELSEEALLRSVDQMHRRPSALSTIDLWHLGGAMSRVGAEDTAFGDRSAPYLVGIEANWTDPDDDEANMRWARGCAADLDELSTGREYLNFPGFQEGGQETLRAAHGEANYARLRALKQRMDPQNLFRLHQNIAP				NA	NA	NA	NA	NA
AK001_00061	885		COG0589	Universal stress protein/MSMEI_3859	GTGATCGAGAAGAGCGAGATCTGGTCGCGCGGCGTGGTCGTCGGCGTGGACGGGTCCCCCGAGAGCTACCACGCGTTCGACTGGGCCCTGGCCGCCGCGGCGCGCCACCACGCGACGCTGACCGTGACGCACGCCCGGACGGTGCCGGCCGGGCCCGTCAGCCCCGTGCCGGCCTACGACCCCGAGCAGCTGCGTGCCGAGGCCCAGCAGGTCGTGGACGACGCGCTCGGCAGGATCCGGCACGACCCGCAGGACATGCCGGAGGTGCGGTCCGCGGCCAGCATCGGCGCTCCCGACTCCGTGCTGACCGCGTACTCGCGCGACGTCGACCTGGTCGTCGTAGGACGCCGCGGCGCGGCCGGCTCGCGGCACGCCCTGGGGTCGGTGTCCGCGGCGACCGCCGCGCACGCCCGTGGTCCGGTCGCGATCGTCCCCACCGGCGCCCACGGGCCCACCCCGGAGCGGGTCGTGGTCGGCATCGGGTTCGACGACGACCCCACCGCGGCGCTCGACCTCGCGTTCTCCGAGGCGGACCGCAGCGGCTGCCCCGTCGTGCTGGTGCACGCCGTGCAGCCGTCGACGCAGGTCGCCCACGAGGCGGGACCCGCGCAGGACGAGGACGTCCAGGCCGCGCTGCGCGGGCTGGCCAGCCACTGGGCGACGGCCCACCCCGAGGTCGAGTGCCTCCTGCGGACGCGGCCCGGGGACGCCGCCGAGGCGCTCCTGGACGAGGTGACGGCGTCGGACCTGCTCGTCCTCGGCGGGCACCGGCACCGGCGCTTCCTCGGGCGTCTGCTCGGCTCGGTCCCGGACGCGCTGCTGGGCGAGGCCCCCTGCGTCGTCACCGTGGTGCACACCGACCGGCCGCACCCCCACGAGGACTGA	MIEKSEIWSRGVVVGVDGSPESYHAFDWALAAAARHHATLTVTHARTVPAGPVSPVPAYDPEQLRAEAQQVVDDALGRIRHDPQDMPEVRSAASIGAPDSVLTAYSRDVDLVVVGRRGAAGSRHALGSVSAATAAHARGPVAIVPTGAHGPTPERVVVGIGFDDDPTAALDLAFSEADRSGCPVVLVHAVQPSTQVAHEAGPAQDEDVQAALRGLASHWATAHPEVECLLRTRPGDAAEALLDEVTASDLLVLGGHRHRRFLGRLLGSVPDALLGEAPCVVTVVHTDRPHPHED				NA	NA	NA	NA	NA
AK001_00062	990	adhA	COG1064	putative alcohol dehydrogenase AdhA	GTGCGGGCCTGGACGACCGGCGACCAGGCCGGGAGCCTCACCCTGTCCGAGCTGCCCGTCCCGGAGCCGGCGGCGGACGAGGTGCTCGTGCGCGTCGAGGCCTCCGGGGTGTGCCGCACCGACCTGCACGTGGTCGACCGCGAGCTCGCCGTGCACCGACCGCACGTCGTCCCCGGCCACCAGGTCGTGGGGACGGTCGAGGTCACCGGGTCCGCCGTCCGTCGGCTGCGCCCGGGCGAGCGCGTCGGCGTCGCCTGGCTGCGCCGCACCTGCGGGGCCTGCCGCTGGTGCCGCGAGGGCCGCGAGAACCTCTGTCCCGACTCGGCCTACACCGGCTGGGACGCCGACGGCGGCTTCGCGGAGCACACCACCGTGCCCGAGGCCTTCGCCTACCCGCTGACCGCCGACCACGACCCCGTCACGACGGCGCCGCTGCTGTGCGCCGGCATCATCGGCTACCGCGCCCTGAGCCGGGCGAACCTGCCGCCCGGCGGGCGCCTCGGCATCTACGGGTTCGGCTCGAGCGCGCACCTCACCGCCCAGGTGGCGACCGCCCGCGGGGCCGAGCTGTTCGTCATGACCCGCGGCGAGCAGAACCGCGAGCTGGCGCGACGCGCCGGGGCCGCCTTCGTCGGCGGCGCCACCGACGTGCCCCCGGTGCGGGTCGACGCCGCGATCGTGTTCGCCCCGGCCGGCGAGCTGGTCCCCCTCGCGCTGCAGGCCACCGAGCGTGGCGGCACCGTCGCGCTGGCCGGCATCCACATGAGCGAGATCCCCGCGATGGACCACACCCGCGACCTGTTCGACGAGCGGGACCTGCGCACGGTGACCGCCAACACGCGGGCGGACGGCGCCGCGCTGCTGCGGCTGGCCACCACGATGCGACTGACGCCGACCGTCACGCGGTACCCGTTCACCGCCGCCGACACGGCCCTGGACGACCTGCGGTCCGGGCGCGCCTCCGGCTCCCTCGTGCTCGTGCCGGCGTGA	MRAWTTGDQAGSLTLSELPVPEPAADEVLVRVEASGVCRTDLHVVDRELAVHRPHVVPGHQVVGTVEVTGSAVRRLRPGERVGVAWLRRTCGACRWCREGRENLCPDSAYTGWDADGGFAEHTTVPEAFAYPLTADHDPVTTAPLLCAGIIGYRALSRANLPPGGRLGIYGFGSSAHLTAQVATARGAELFVMTRGEQNRELARRAGAAFVGGATDVPPVRVDAAIVFAPAGELVPLALQATERGGTVALAGIHMSEIPAMDHTRDLFDERDLRTVTANTRADGAALLRLATTMRLTPTVTRYPFTAADTALDDLRSGRASGSLVLVPA	PGPT0006365_2294	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953	NA	NA
AK001_00063	525			hypothetical protein	ATGTCCGCACTCGTGATCTACGAGACCAGCTTCGGCAACACCGCCCTGGTGGCGCGTGCCGTCGGCGACGGGATCGCCACCCGTATGCCGGTGCGCGTCCGCTCCGTCAGCAGCCTGGGCGACGACGAGGCCGACGGGGAGGACCTCGTCGTCGTCGGTGGCCCGACCCACGCCTTCGGCATGAGCCGGCCCCAGACACGGCACGAGGCGCAGGAACGGCTGGGCGACCGCCCCTCCGACTACCCGGGCATCCGGGAGTGGATCGACCGTCTCTCACCGGACCGCGACCTGCGGCTGTACGCCACGTTCGACACGCGCGTCGAGAAGGTCCGCCACCTGCCCGGGTCGGCCGCGCACGCCGCGGCACGCGCGCTGCGGCACGAGGGGCACCGCGTGGTGGACCGGGGGGCGTCGTTCTACGTCGCCGACACCGAGGGGCCGCTCCTGCCGCACGAGCGCGACCGTGCCCGCGAGTGGGGCGAACGGCTCGCCGTCCGTTCCCTGCAGATGCTGCAGCGCACCTGA	MSALVIYETSFGNTALVARAVGDGIATRMPVRVRSVSSLGDDEADGEDLVVVGGPTHAFGMSRPQTRHEAQERLGDRPSDYPGIREWIDRLSPDRDLRLYATFDTRVEKVRHLPGSAAHAAARALRHEGHRVVDRGASFYVADTEGPLLPHERDRAREWGERLAVRSLQMLQRT				NA	NA	NA	NA	NA
AK001_00064	507			hypothetical protein	ATGGACGAGACGCACGAGATCCGACTGATCGAGTCCGTGGAGCAGCACACCTTCGGGCTGCGGCAGATGGTGAGCCAGGAGGACGTGCCCGCGCTGTTCGCCCGGGTCCTGCCCCAGGTGGTCGCCGCCCTGGAGCACGGCGGCGTGCAGCCCGCCGGTCCGCCCTACGCCCGCTACCGCGGGCCCATGGCCGGGGGCTTCGACATCGAGATCGGGTTCCCGCTGGCCGAACCGGCCGACCTCACCGTGGCCGACCCCGGCCCCGGGAGGCCGGTCTCCGGCGTCCTGCCCGAGGCGCGCGTCGTGGAGACCCTCCACGACGGGGCCTACGACGGGCTGGCGGCGACCTACGCACGGCTGGAGACCTGGATGACCGAGCACGACGTGTATCCCCTGGACCAGTCGTGGGAGTTCTACGAGGCCGGACCCGAGTCGGACCCCGACCCGGCGACCTGGCGCACCCGGATCGTCATGCCGGTCAGCGGTCCGGCCGTCGAGGCCGGCTGA	MDETHEIRLIESVEQHTFGLRQMVSQEDVPALFARVLPQVVAALEHGGVQPAGPPYARYRGPMAGGFDIEIGFPLAEPADLTVADPGPGRPVSGVLPEARVVETLHDGAYDGLAATYARLETWMTEHDVYPLDQSWEFYEAGPESDPDPATWRTRIVMPVSGPAVEAG				NA	NA	NA	NA	NA
AK001_00065	1389		COG1236	Ribonuclease	ATGGGGAGCGTGGGTACAGCATCGGTCGCGCTGACGTTCCTCGGTGGCGCCGGGACCGTGACCGGGAGCCGGTTCCTGCTCGAGTCCGACGATCGACGGCTCCTGGTCGACTGCGGTCTCTACCAGGGCGAGCGGCGGTGGAGGCGGAGGAACTGGGACGCCTTCCCTGTCCCGCCGGAGACCATCGACGACGTGGTCCTGACGCACTGCCACCTGGACCACTGCGGCTTCCTCCCCGTCCTCGTCCGTGACGGCTACGCGGGGTCGATCCGGATGACCGAGGGGACGGCCGCGCTCACCGCGATCGTCCTGCGGGACAGCGCCAACCTGCAGGAGCGGGACGCGGACCTCGCGCGACGCGGCGGGTGGTCCCGTCACGACCCGCCCCTGCCGCTCTACACGGTCGAGGACGCCGAGCGCGCGATCGAGAGGTTCGAGACCGTGCCCTTCGACGTCGACGTCGACCTCGGGGGCGAGTCGAGCCTGCGACTCGTCCGGGCCGGTCACGTCCTGGGCTCGGCCAGCGTGCTGGCTCGGGTCGGGTCCGCCCGGGTCCTGGTCTCCGGGGACCTCGGGCGTACCGAGCACCCCGTGCTGCGACCACGCGCCGACCCGCCCGCCGCGCGCACGGTGGTGATCGAGTCCACCTACGGCGACCGCGAGCACCGTGAGCCGCCCCGGGCGCACGCGGCGTTCGCGGACGCCGTACGCCGCACGATCCGTCGGGGCGGCGTGGTCCTCGTGCCGGCGTTCGCCGTCGACCGCACGGAGCTGGTCCTGCACGCCCTGTCCACGATGGTCCGCGAGGGCCAGATCCCTCCGGTCCCGGTCTTCGTCGACAGCCCCATGGCGCTGGCCGCCCTCGACGTCTACCGACGTGCCGGGGTCGCCGGAGAGCTGCGCCCGGGGATGTCGGACCTCGTCGACCTCCCGTCGCTGCACGCGGCCCGGACCCCGGAGGAGTCGATGAGGCTCAACTCGCCGCGGCAGCCGTGCATCGTCGTCTCCGCCTCGGGGATGGCGTCCGGGGGCCGCGTGGTCCACCACCTGCGCCATCTGCTCCCGGACCGCCGGAACTGCGTGGTCCTGACCGGCTTCCAGGCGAACGGCACCCGGGGCAGCATGCTGCGCGACGGCGCGCGTGAGGTGAAGATGATGGGCCGGTACGTGCCGGTGAACGCGGAGATCGTCGAGGACCAGGAGTTCTCCGTCCACGCCGACGCGAGCGAGCTGGTCGACTGGCTCCGGCAGATGCCCGAGCCTCCGGAGGCCGTCTACGTCGTCCACGGCGAGGAACGCGCGTCGGCGGCACTGGCCGAGCGCATCCGTGACGAGGTCGGCTGTCCCGCCGTCGTCCCGCGCGCCGGCGAGAAGGTGCTCGTGGACTGA	MGSVGTASVALTFLGGAGTVTGSRFLLESDDRRLLVDCGLYQGERRWRRRNWDAFPVPPETIDDVVLTHCHLDHCGFLPVLVRDGYAGSIRMTEGTAALTAIVLRDSANLQERDADLARRGGWSRHDPPLPLYTVEDAERAIERFETVPFDVDVDLGGESSLRLVRAGHVLGSASVLARVGSARVLVSGDLGRTEHPVLRPRADPPAARTVVIESTYGDREHREPPRAHAAFADAVRRTIRRGGVVLVPAFAVDRTELVLHALSTMVREGQIPPVPVFVDSPMALAALDVYRRAGVAGELRPGMSDLVDLPSLHAARTPEESMRLNSPRQPCIVVSASGMASGGRVVHHLRHLLPDRRNCVVLTGFQANGTRGSMLRDGAREVKMMGRYVPVNAEIVEDQEFSVHADASELVDWLRQMPEPPEAVYVVHGEERASAALAERIRDEVGCPAVVPRAGEKVLVD				NA	NA	NA	NA	NA
AK001_00066	831			hypothetical protein	ATGGGCACCGCGGACGCCGAGCGGCCCGCCGTCCGGCACGGTCCGGACGTGCGGGGGCGGGTGGCCGCGCACCCGCTGGCCACCTACGTCCTCCTCGCGTACGCCTTCTCGTGGGCGTACTGGGTCCCGCTCGCGCTCGGCGAGCAGACCGTCGAGGCCGGGGTGGGTCGACCGAGCCAGCTGCCGGGTCTGCTGGGCCCCGCGCTGGCCGCCGTGGTCGTCACGGCGGTCGTCGGCGGGCGGGCAGGGCTGGCGGACCTGGGCCGCCGGCTGGTCCGCTGGCGGGTGGGCTGGTGGTGGCTGTCCGTGGTCGCCGTCCTGGGGGTCGGTGCGGGCGCGCTCGCCGTCGTCGGCGGCACGACCGATGCCGGGGACCTGACCCGCTACAGCGGGATCGACGCCGCGGCGGGCCCGGTGGGGACCGTCGCCCTGGCCCTCGTGGTCAACGGGCTCGGGGAGGAGACCGGGTGGCGCGGCTTCCTCGCGGACCGTCTGCTGCGTCGGCACGGCCTGACCGTGACCGCGCTGCTGGTCGCGGCGGCGTGGGCGCCGTGGCACGCACCACTGTTCGTCCTCATGGGCTCGTTCGCGGGATTCACCCCGGTCGAGACCGTCGGGTGGGTGATCGGTCTGACCGCGGGGTCCGTCGTGCTCACGTGGCTGTACCGCGGGGCGTCGGCGAGCATCCTGCTGGTGGCGGTGTGGCACGTCGCGTTCAACCTGACGTCCGGCACCCCGGGCACCGCGGGCACCGTCGCCGCCGTCAGCTCCACCGTCGTCATGGTGGCCGCGGTGGTGATCGTCGCCGCCGACCTCCGCCGGCGGCGGTGA	MGTADAERPAVRHGPDVRGRVAAHPLATYVLLAYAFSWAYWVPLALGEQTVEAGVGRPSQLPGLLGPALAAVVVTAVVGGRAGLADLGRRLVRWRVGWWWLSVVAVLGVGAGALAVVGGTTDAGDLTRYSGIDAAAGPVGTVALALVVNGLGEETGWRGFLADRLLRRHGLTVTALLVAAAWAPWHAPLFVLMGSFAGFTPVETVGWVIGLTAGSVVLTWLYRGASASILLVAVWHVAFNLTSGTPGTAGTVAAVSSTVVMVAAVVIVAADLRRRR				NA	NA	NA	NA	NA
AK001_00067	1032			hypothetical protein	ATGTTCAGCATGCCGTGGGACTTCCTGCCCAGCCTCGTCGCGCTGGCGGCCATGTCCGGGGTGATCGTCCTCGCGGGCGTGCGGCTGACCCGGGTCGCCGACACGCTGTCCGAGCGGACCGGCCTGGGCGACGCGGTCGGCGGTGCGCTGCTCCTCGGGGCGGTCACTTCCCTGCCCGGCCTGGTCACGGTGCTCACGGGGTCTCTCGGCGGCGACGCCGGCTTCGCGCTCGCCAACCCGGTCGGCGGGGTGGCGGTGCAGACCGTCTGGCTCGCGATCGCCGACCTGGTCTACCGCCGGGTCAACCTCGAGCACGCGGCGGCCTCCCTGCAGAACGTCCTGCAGTCGTTGATCCTCGTCGCCCTGCTGGCCGTGCCGGTGGTCGCCGCCGCCACGCCGGACCTGACGATCGGCTGGGTGCACTGGCTCACGCTGCTCATCCCGGTGCTCTACGGCTACGGGCTGGTGCTGCTGCGCCAGATGCACAAGGCGCCGATGTGGCAGCCCATCCGGACCGCGCAGACGGCGGACGACGACCAGGGCGACGGGGACGACGGCGTGGAGGACTCCCGCTCGACCCGGCGGCTGTGGGGGCTGCTGGCCGGGCTCGGGCTCGTCGTCGGCGTCGCGGGCTGGATCGTCGGCCGGGCAGGACTGTCCGTGGTCGAGGCGACCGGGCTCGACGGCGGGGTCGTCGGCTTCACCCTCACGACGGGGATCAGCTCCCTGCCCGAGCTCGTGGTGCTGGTGACCGCGGTCAGGATGGGCCAGCTCACCCTCGGTATCGGCAACGTCATCGGCGGCAACGTCTACGACATGCTCATGGTGTCCGTCGCCGACGCGGCGTACCTGCCCGGGTCCGTCTACACCGACGCGGGGTCGACCGGCCTGGTGCTGGTGGGCGGGACCCTGCTGATGACCGCCACGCTGGCCGCCGGGCTCATCGTGCGCGACCGGCGGGGGATCGGCTTCGAGGGCATCGCGATCCCGGCGATCTACGTCGGGACCGTGGCGCTCGCGGTCTGGGGCTGA	MFSMPWDFLPSLVALAAMSGVIVLAGVRLTRVADTLSERTGLGDAVGGALLLGAVTSLPGLVTVLTGSLGGDAGFALANPVGGVAVQTVWLAIADLVYRRVNLEHAAASLQNVLQSLILVALLAVPVVAAATPDLTIGWVHWLTLLIPVLYGYGLVLLRQMHKAPMWQPIRTAQTADDDQGDGDDGVEDSRSTRRLWGLLAGLGLVVGVAGWIVGRAGLSVVEATGLDGGVVGFTLTTGISSLPELVVLVTAVRMGQLTLGIGNVIGGNVYDMLMVSVADAAYLPGSVYTDAGSTGLVLVGGTLLMTATLAAGLIVRDRRGIGFEGIAIPAIYVGTVALAVWG	PGPT0014400_556	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301	NA	NA
AK001_00069	468	ahpE	COG1225	Alkyl hydroperoxide reductase E	GTGGTCGACGGCGTCGTGCCGGCTGCCGACGCACCGGCACCCGACTTCACGCTGCCCGACACGCACGGCACCCCCACGCACCTGGCCGACCTGCGCGGCCGGCCGGTGCTCGTGGTGTTCTTCCCGTTCGCCTTCTCGGGGACCTGCACCGCCGAGCTCGGCGAGCTGCGCGACCACGCCGGCGAGTTCGAGGCCGCCGGCGTCCGGGTGCTGGCCGTGTCCACGGACCCGGTCTTCACGCTGAAGGCCTGGCAGGAGGTCGAGGGCTTCGGCTTCGACCTGCTCAGCGACTTCTGGCCGCACGGCCGGGCCGCCCAGGCGTTCGGCGTCTTCGACGACTCGTCCGGGCACGCGCTGCGGGGGTCGTTCCTCATCGACGCCGACGGCATCGTGCGCTGGTCCGTGGTGCTCCCGCGGGGCGCCCGGCGTGACCTCGACGACTACCTGGCGGCGCTCGCGGAGGTCTGA	MVDGVVPAADAPAPDFTLPDTHGTPTHLADLRGRPVLVVFFPFAFSGTCTAELGELRDHAGEFEAAGVRVLAVSTDPVFTLKAWQEVEGFGFDLLSDFWPHGRAAQAFGVFDDSSGHALRGSFLIDADGIVRWSVVLPRGARRDLDDYLAALAEV	PGPT0013145_90	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013145-ahpE-K24120	NA	NA
AK001_00070	429			putative protein	ATGACGGAAGGAACCAAGGTCCTCGTGGGACAGCAGGCGGACACCCTGGCGGCGCGCTTCGGGTTCACCACCGGTCAGGTCGTGCAGGAGTTCGGGTGGGACGACGACGTCGACGAGCCCCTGCGCGGGGCGATCGAGGCGGTGGTCGGCGACGAGCTCGTGGACGAGGACTTCGACGACGTGGTCGACGGCGTCATCATCTGGTGGCGCGAGGAGGACGGGGACCTGACGGACATGCTGGTCGACGTCCAGACGGCGCTCGACGACGGCGGCCAGATCTGGCTGCTCACCCGCAAGCCGGGTCGGGACGGCCACGTGGGCCACAGCGAGATCCAGGAGGCGTCGACCACCGCCGGCCTGCACGCGACGAGCACGTTTTCCGCGGGCGACGACTGGTCGGCCACGCGGCTCGCCTCGCGCGGTCGGTAG	MTEGTKVLVGQQADTLAARFGFTTGQVVQEFGWDDDVDEPLRGAIEAVVGDELVDEDFDDVVDGVIIWWREEDGDLTDMLVDVQTALDDGGQIWLLTRKPGRDGHVGHSEIQEASTTAGLHATSTFSAGDDWSATRLASRGR				NA	NA	NA	NA	NA
AK001_00071	2748	aceE	COG2609	Pyruvate dehydrogenase E1 component	GTGGCTTCGTACGACGAGACCGGACCGCTGATCGACGGTCTGCTCAGCGCTGTGCCGGACATCGACCCGTCCGAGACCTCGGAGTGGGTGGAGTCCCTCGACGGGCTGATCGACGACAAGGGCGGTCCGCGCGCCCGCTACGTCATGCTCAACCTGCTGCGGCGTGCCCGCGAGCGCAACGTGCAGATCCCGACGTCGGTGGCCACGCCGTACGTCAACACCATCGGTGTGCACGAGGAGCCGTACTTCCCCGGCGACGAGACGATGGAGCGGCGCTACCGCTCCTGGATCCGCTGGAACGCCGCGGTGATGGTGACCCGCGCCCAGCGCCCGGAGATCTCGGTGGGTGGCCACATCTCCTCCTACGCCTCCGTGGCGACGCTGACCGAGGTCGGCCTCAACCACTTCTTCCGCGGCAAGGACCACCCGGGCGGCGGCGACCAGGTCTACTTCCAGGGGCACTCCTCCCCCGGCCAGTACGCCCGCGCCTACCTCGAGGGTCGCCTGTCCGCGGACCGGCTCGACGGGTTCCGCCAGGAGAAGTCCCACGAGGGCGGCGGCCTGCCGTCCTACCCGCACCCGCGCCTCATGCCGGAGTTCTGGGAGTACCCGACGGTCTCGATGGGCCTCGGCCCGGCCTCGGCGATCTACCAGGCCTGGACCAACAAGTACCTGCACAACCGCGGGATCAAGGACACCAGCCAGCAGGACGTGTGGGCCTTCCTCGGCGACGGCGAGATGGACGAGCCCGAGTCGCGCGGCATGCTCCAGCACGCCGCCCACCAGGGGCTGGACAACCTGACCTTCGTGGTCAACTGCAACCTGCAGCGCCTGGACGGTCCGGTCCGCGGCAACGGCAAGATCATGCAGGAGCTGGAGGCCCAGTTCCGCGGCGCCGGCTGGAACGTCATCAAGGTCGTCTGGGGCCGCGAGTGGGACGCCCTGCTCAACGCGGACAAGGACCGCGCCCTGGTCAACCTCATGAACGCCACGCCGGACGGCGACTACCAGACCTACCGCGCCGAGTCGGGCGCGTTCATCCGCGAGCACTTCTTCGGGCGCGACCCGCGCACGAAGGCGCTCGTGGAGAACATGACCGACGAGGACATCTGGAACCTGCGCCGCGGCGGCCACGACTACCGCAAGATCTTCGCCGCCTACTCGGCCGCGCGGGCGCACACCGGACAGCCCACGGTGATCCTGGCCCAGACGGTCAAGGGCTACGCGCTCGGGTCGAGCTTCGCGGGCCGCAACGCCACGCACCAGATGAAGAAGGTCAAGAACGAGGACCTCAAGGCGCTGCGCGACAACCTGCGCATCCCGCTGACCGACGAGCAGATCGACGCCGAGCCGGGCCTGCCCCCGTACTACCACCCGGGCATGGAGGACGAGTCGATCCAGTACATGCTGGACCGCCGCCGTCACCTCGGCGGGTTCGTGCCGGAGCGCCGGTCGTCGCCCAAGGCGCTGTCCCTGCCGAAGGACAAGTCCTACGAGATCCTCAAGAAGGGCTCGGGCAGCCAGCAGGTCGCCTCGACGATGGCCTTCGTGCGGCTGCTCAAGGACCTCATCAAGGACAAGGAGTTCGGCAAGCGCATCGTGCCGATCATCCCCGACGAGGCGCGCACCTTCGGTCTGGACTCGATCTTCCCGAGCGCCAAGATCTTCAACACCGTCGGGCAGAACTACCTGGCCGTGGACCGCGAGCTCATGCTGAGCTACAAGGAGTCCGAGGCCGGGCAGATCATGCACACCGGCATCAACGAGGCCGGTTCCGCCGCCGCGTTCCAGTCGGTCGGCACGGCGTACGCCACCCACGGCGAGCACATGGTGCCCGTCTACATCTTCTACTCGATGTTCGGGTTCCAGCGCACCGGCGACCAGTTCTGGGCCGCCGGTGACCAGATGACCCGCGGGTTCATCATCGGCGCCACGGCCGGCCGCACCACGCTGACCGGTGAGGGTCTGCAGCACGCCGACGGCCACTCCCCGCTCATCGCGGGCACCAACACCGCGATGGTGCAGTACGACCCGGCCTTCGGCTACGAGATCCGCCACATCGTGCGCGACGGCATCGAGCGCATGTACGGCGACGGCTCCGACGGTCGCGACCAGAACGTCATGTACTACCTGACGGTCTACAACGAGCCGATGGTCCAGCCGGCCGAGCCGGAGGACGTGGACGTCGACGGCATCCTGCACGGCATCCACCGCATCGCCACCGACGACGGCGAGGGCCCCAAGGCCCAGCTGCTCGCCTCCGGCGTGGGCGTGCCGTGGGCCCTGGAGGCCCAGGAGCTGCTGCGCGAGGACTGGGGCGTGTCGGCCGACGTGTGGTCGGTGACGAGCTGGAACGAGCTGCGTCGCGACGCGCTCGCCGCCGAGCAGGCGGCGCTGGTCGACCCGGCCGCGGAGCCCCGCGTGCCGTACCTGACCCAGAAGCTGTCCGACGCCGCGGGGCCGTTCGTCGCCACCAGCGACTACGACCACCTGGTCCCCGACCAGATCCGGGCGTGGGTGCCGGGCGACTACGCGGTGCTCGGTGCCGACGGCTTCGGGTTCTCCGACACCCGCGCCGCCGCACGCCGGTTCTTCCTCATCGACGGCCCGTCGATGGTGGTCAAGACGCTGCAGCAGCTCGCCCGCCGTGGCGAGGTCCCGCAGGACGTCGTGGCCAAGGCCGTCGAGAAGTACCGCCTCACCGACGTCAACGCCGGCACCTCCGGTGTCGCGGGCGGGGACGCCTGA	MASYDETGPLIDGLLSAVPDIDPSETSEWVESLDGLIDDKGGPRARYVMLNLLRRARERNVQIPTSVATPYVNTIGVHEEPYFPGDETMERRYRSWIRWNAAVMVTRAQRPEISVGGHISSYASVATLTEVGLNHFFRGKDHPGGGDQVYFQGHSSPGQYARAYLEGRLSADRLDGFRQEKSHEGGGLPSYPHPRLMPEFWEYPTVSMGLGPASAIYQAWTNKYLHNRGIKDTSQQDVWAFLGDGEMDEPESRGMLQHAAHQGLDNLTFVVNCNLQRLDGPVRGNGKIMQELEAQFRGAGWNVIKVVWGREWDALLNADKDRALVNLMNATPDGDYQTYRAESGAFIREHFFGRDPRTKALVENMTDEDIWNLRRGGHDYRKIFAAYSAARAHTGQPTVILAQTVKGYALGSSFAGRNATHQMKKVKNEDLKALRDNLRIPLTDEQIDAEPGLPPYYHPGMEDESIQYMLDRRRHLGGFVPERRSSPKALSLPKDKSYEILKKGSGSQQVASTMAFVRLLKDLIKDKEFGKRIVPIIPDEARTFGLDSIFPSAKIFNTVGQNYLAVDRELMLSYKESEAGQIMHTGINEAGSAAAFQSVGTAYATHGEHMVPVYIFYSMFGFQRTGDQFWAAGDQMTRGFIIGATAGRTTLTGEGLQHADGHSPLIAGTNTAMVQYDPAFGYEIRHIVRDGIERMYGDGSDGRDQNVMYYLTVYNEPMVQPAEPEDVDVDGILHGIHRIATDDGEGPKAQLLASGVGVPWALEAQELLREDWGVSADVWSVTSWNELRRDALAAEQAALVDPAAEPRVPYLTQKLSDAAGPFVATSDYDHLVPDQIRAWVPGDYAVLGADGFGFSDTRAAARRFFLIDGPSMVVKTLQQLARRGEVPQDVVAKAVEKYRLTDVNAGTSGVAGGDA	PGPT0001385_329	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163	NA	NA
AK001_00072	684			hypothetical protein	ATGGCCATGATGTCTCGGCTCCGCCAGCTCATCCGCCGGCCACGGTCCACCTCGATGGTGGGTGTCCGGCGCCCGTCCGAGACCCGACGGCGAGGTGACACCGTGCACGAAGACGCGTTGCGGGCGATGCTCCACGACGACCCGAACGACGAGCGCGCCTTCAGCGCGCTCGCCGAGCTGGTGCGTCGTCACGCGACCGAGCCCGACAACCCCGAGGACCCGCTGACGGCGGAGCCGGAGGAGGAGCCGGTCGGTGCCGCCGACCTCGCGCTCTGGTCGCTCGCCGAGGAGCTCGCCGGCCACCCCAAGGCCTGGCGCCCCCTGGTCGAGCTCGGCCGCCTGTCGGTCGGTGACGACCCCGAGGGTGCGGTGCGCCGCTTCACCACGGCCGCCGAGCGCGACCCGTCCGGGGTGGCGCTGGCCACGAGCCTGGAGATCCTGCGCGAGGCCGACATGCCCGTCGAGGCCCTCGGCCTGGGCGTCGGCCACTGGCGCACGCGGGAGCAGGTGCCCGAGGTGGGCCGCCAGCTCGTGCTGGCCGCCGTGGAGGCGGACCGCCTGTTCGAGGCGCGGCAGCACCTGGAGGCCCTGGACACCCACCCCGAGTCCGGGCAGGTCGAGGCGATGCGGCGCGACCTCGTGGTCGCGATCGAGGCCGCCGAGGCCCGGCAGTCCTCCACCTGA	MAMMSRLRQLIRRPRSTSMVGVRRPSETRRRGDTVHEDALRAMLHDDPNDERAFSALAELVRRHATEPDNPEDPLTAEPEEEPVGAADLALWSLAEELAGHPKAWRPLVELGRLSVGDDPEGAVRRFTTAAERDPSGVALATSLEILREADMPVEALGLGVGHWRTREQVPEVGRQLVLAAVEADRLFEARQHLEALDTHPESGQVEAMRRDLVVAIEAAEARQSST				NA	NA	NA	NA	NA
AK001_00073	1161		COG2508	putative protein	ATGTCGACCACGACCGTCTCGCGCGACGAGAACGTCCAGCGCGTCCGTGAAGGGCTCGGGCTCCTCACCAACGCCGCCATGCGCCGCCTCGACGAGGAGGTCTCCTGGTACCGCCAGCTGCCCGCCGAGGACCGCTCCTACGTCGCCCTGGTCGCCCAGAGCGGCATCAACTCCTTCGCGACCTGGTTCGCCGACCCGACCCAGACCCCGCACGGCGTGGGCGAGATGTTCGCCGCCGCTCCCCCGGAGCTGACCCGGTCGATCTCCCTGCAGCACACGCTGCAGCTGGTGCGGCTCATGGTCGACGTCGTCGAGTCCTACTCCGACCAGATCGCCGCCCCGGGCTACGAGCGCGAGCTGCGCGAGGCCGTGCTGCGGTACTCCCGCGAGGTCGCGTTCTCCGCCGCCGAGGTCTACGCCCGGGCGGCCGAGGTCCGTGGCGCGTGGGACGCCCGCCTCGAGGCCCTGGCGGTGGACGCCCTGGTGCGCGGCGACACCGACGACGCGCTGCGCTCGCGCATCTCCGCCCTGGGCTGGAGCGGGCGCGGCCAGGTGCTCGTCATCGTCGGCGAGGCGCTGGACGGGCTGGACGACGTCGGCACCGCCGAGCTGCGGCGCGCCGCCCGCCGCGCGGCCGGGGACACCCTCGTGGGCATCCACGGCGACCGCCTCGTGCTGGTCCTGGGCGGCGAGACCGACCTGGTCGCGGCCGCCACGAGCCTGATCGGCCGGTTCGGGCCGGGGCCGGTCGTGTTCGGGCCGGTCGTGCCCACGATCGCCGAGGCGACGTCGTCGGCGCGCTCCGCCCTGGCCGGGCTGGCCGCAGCGTCGGCGTGGCCGCAGGCGCCGCGCCCGGTCCTGGCCGACGACCTGCTGCCCGAACGGGTGCTCACCGGCGACCGCGCGGCACGCCGCACGCTCGTCGCGCAGGCCTACCTGCCGCTGCAGCAGGCCACCGGTGCCGTCCTGGAGACGCTGTCGGCCTACCTCGGCACCGGGCGCTCCCTGGAGGCGGCGGCCCGACGGCTGTACGTCCACCCCAACACCGTGCGCTACCGGCTGCGCAAGGTCTCCGAGATCACCGGCTGGGACCCGCTGGACGCCCGCGAGTCGTTCGTGCTGCAGATCGCCCTCGCGCTGGGGCAGCTCGACGACTCCTGA	MSTTTVSRDENVQRVREGLGLLTNAAMRRLDEEVSWYRQLPAEDRSYVALVAQSGINSFATWFADPTQTPHGVGEMFAAAPPELTRSISLQHTLQLVRLMVDVVESYSDQIAAPGYERELREAVLRYSREVAFSAAEVYARAAEVRGAWDARLEALAVDALVRGDTDDALRSRISALGWSGRGQVLVIVGEALDGLDDVGTAELRRAARRAAGDTLVGIHGDRLVLVLGGETDLVAAATSLIGRFGPGPVVFGPVVPTIAEATSSARSALAGLAAASAWPQAPRPVLADDLLPERVLTGDRAARRTLVAQAYLPLQQATGAVLETLSAYLGTGRSLEAAARRLYVHPNTVRYRLRKVSEITGWDPLDARESFVLQIALALGQLDDS				NA	NA	NA	NA	NA
AK001_00074	927	fabD	COG0331	Malonyl CoA-acyl carrier protein transacylase	ATGCTCAGCCCCTGGCTGGAGCTGCCCGGCACCGCCGACCTGCTCGACTCCTTCTCGGCCGCTGCCGGGACCGACCTGACCCAGCACGGGACCACGTCGGACGCGGAGACGATCCGGGACACCGCCGTGGCCCAGCCGCTGATCGTCTCGGCCTCCCTGGTCGCGCTGCGCACGATCCTCGACGGGCGTGAGGCCACCGAGGTCGTCGACGTCACCGCCGGGCACTCGGTGGGCGAGCTGTCCGCCGCCGCCGTCGCCGGAGCGCTCGACGACGCCGGCGCCGTCGGTCTCGTCTCCCACCGCGGACGGGCGATGGCCGACGCCGCGGCCGCCGCGCCGTCGGGCATGAGCGCCGTCGTCGGCGGCGACACCGACGAGGTCATGGCCGCCATCGAGGCTGCCGGCCTGTACCCCGCCAACGTCAACGGCGGCGGCCAGATCGTGGCCGCCGGGTCCCGCGAGGCCCTCGAGGCCCTGGCCGAGCAGCCTCCGGCGCGCACCCGCGTCGTCCCGCTGCCCGTGGCCGGCGCCTTCCACACCCCGTACATGGAGCCCGCGCGCAGCCGCTTCGAGCAGGTGGCCACCACGTGGCTGGCCACCGACCCGCGGCTGCCGCTGCTGAGCAACGCCGACGGCGCCGACTACGGCTCGCTGGCCGAGGGCTCGCGCGGCCACGGCACCTCCGCCGACGTCCTGTCCCGCCTGACCGCCCAGATCACCGCGCCGGTGCGCTGGGACCTGTGCCAGGCGTCGCTGGCCGAGCGCGGCGTCACCGGGCTCCTCGAGCTCGCCCCCGGCGGCGTCCTGGCCGGCCTGGCCAAGCGCTCGCTCAAGGGCGTCGAGTCCGTCGCCGTGAAGTCGCCCGACGACGTCGAGGCGGCGCGCGACCTCATCACCCGGCACTCCGCCGTCGGCGGCGCGGCATGA	MLSPWLELPGTADLLDSFSAAAGTDLTQHGTTSDAETIRDTAVAQPLIVSASLVALRTILDGREATEVVDVTAGHSVGELSAAAVAGALDDAGAVGLVSHRGRAMADAAAAAPSGMSAVVGGDTDEVMAAIEAAGLYPANVNGGGQIVAAGSREALEALAEQPPARTRVVPLPVAGAFHTPYMEPARSRFEQVATTWLATDPRLPLLSNADGADYGSLAEGSRGHGTSADVLSRLTAQITAPVRWDLCQASLAERGVTGLLELAPGGVLAGLAKRSLKGVESVAVKSPDDVEAARDLITRHSAVGGAA	PGPT0008350_860	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008350-fabD|bmyD-K00645	NA	NA
AK001_00075	1011	fabH_1		3-oxoacyl-[acyl-carrier-protein] synthase 3	ATGACCGCGCGCGCCGTGCTGCGCCAGGCCGAACCGGTGCGCCACTCGCGCATCCTGGGCATCGGCGGCGAGCGCGGCAGCCGGTCGGTCACGAACGACGAGATCGCCGGCCCGATCGACTCCTCGGACGAGTGGATCCGCCAGCGCACCGGCATCGTGACCCGGCGTCGCGCGACCGACGACGTCGACGTGCTGGACCTCGCCGAGGCCGCCGCCCGCCGGGCGATGGACGCCGCCGGGGTGACCGGCGCGGAGATCGACGCGATCGTGCTGTCGACCATCACGTACTTCCACCAGACGCCGTCGGCCGCCGCCGTGCTGGCCGACCGGCTCGGCGCCACCCCGGCCGCCGCGTACGACATCTCGGCCGCCTGCGCCGGGTACGCGTACGGCATCGGGCAGGCCGACGCGATGGTCCGCGCCGGGACGGCGCGCCACGTGCTCGTCATCGGCGCGGAGAAGCTCAGCGACATCATCGACCCCACCGACCGGTCGATCTCGTTCCTGCTGGGCGACGGCGCCGGCGCCGCCGTCGTCGGCCCCTCGGACACCCCGGGCATCGGCCCGACGGTGTGGGGGTCCGACGGCGCGAAGTCGCAGGCCATCCGGCAGACCCACTCCTGGTCGGAGCTGCGCCGGGACGCCGACCTCGGCTGGCCCACGCTGCGCCAGGACGGCCAGACCGTCTTCAAGTGGGCGAGCTTCCAGATGGCCCCGGTCGCCGCCAAGGCGATGGCCGAGGCCGGGGTGCAGCCCGAGGACATCCAGGTCTTCGTGCCGCACCAGGCGAACATGCGCATCATCGACCAGATGGTCAAGCAGCTCGGGCTGCCCGAGTCCGTCGTGGTCGCCCGGGACATCGCCGACACCGGCAACACCTCGGCGGCCTCGATCCCCCTGGCCGTCGACCGGCTGCTGACCGAGGGACGGGCCCGCCCCGGCGACCTGGCCCTCCAGATCGGCTTCGGAGCCGGCCTGGTCTACGCGGCCCAGGTGGTCGTGCTCCCGTAA	MTARAVLRQAEPVRHSRILGIGGERGSRSVTNDEIAGPIDSSDEWIRQRTGIVTRRRATDDVDVLDLAEAAARRAMDAAGVTGAEIDAIVLSTITYFHQTPSAAAVLADRLGATPAAAYDISAACAGYAYGIGQADAMVRAGTARHVLVIGAEKLSDIIDPTDRSISFLLGDGAGAAVVGPSDTPGIGPTVWGSDGAKSQAIRQTHSWSELRRDADLGWPTLRQDGQTVFKWASFQMAPVAAKAMAEAGVQPEDIQVFVPHQANMRIIDQMVKQLGLPESVVVARDIADTGNTSAASIPLAVDRLLTEGRARPGDLALQIGFGAGLVYAAQVVVLP	PGPT0008355_2426	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648	NA	NA
AK001_00076	249	acpP		Acyl carrier protein	ATGGCTCACACTTCTTCCGAGATCCTCGAGGGCCTCGCCGAGATCGTCGCCGAGGAGACCGGTCTGCCGACCGACGCCGTCGTGCCCGAGAAGTCGTTCACGGACGACCTCGACATCGACTCGCTGTCGATGATGACGATCGTGACCCACGCCGAGGACAAGTTCGGCGTCCGCATCCCGGACGACGAGGTGAAGAACCTCACCACCGTCGGCGACGCGGTGAAGTACATCGAGGGCGCCCAGAGCTGA	MAHTSSEILEGLAEIVAEETGLPTDAVVPEKSFTDDLDIDSLSMMTIVTHAEDKFGVRIPDDEVKNLTTVGDAVKYIEGAQS	PGPT0011375_4275	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078	NA	NA
AK001_00077	1251	fabF		3-oxoacyl-[acyl-carrier-protein] synthase 2	ATGACCGCCCCAGCCACGCGCGACGTCGTCGTCACCGGCCTCGGTGCCACCACCCCGCTCGGCGGGGACGCCCCCTCGACGTGGGCGGCCGCGCTCGCCGGTGAGTCCGGTGCGCGCACGATGGACAACGACTGGTCGGAGAAGTACGGCATCCCCGTCACCTTCGCCGCGACGATCAAGGAGGACCCCTCCGAGAAGCTGTCGCGCCCCGAGACCAAGCGGATGGACCCCTCGACCCAGTACGCGATGATCGCCGCACGGGAGGCCTGGCAGGACGCCGGCGCCCCCGAGGTCGACGGCGAGCGGCTCGGTGCGGTGGTCTCCTCCGGCATCGGCGGCATCTGGACCACGCTGGACGGCTGGGACACGCTCCGCGAGCGGGGCGCCCGCCGCGTGCTGCCGATGACCGTCCCCATGCTCATGCCGAACTCGCCGGCGGCCTACGTCTCCCTCGAGCTCGGCGCCCAGGCCGGCGCGCACGCGCTGGTCTCGGCCTGCGCCTCCGGCGCCGAGGCGATCGGCTACGGCCTGGACATGATCCGTGCCGGCCGCGCCGACGTCGTCGTCTGCGGCGGGACCGAGGCCACGATCCACCCGATGCCGATCGCGGCGTTCGCCGCCTCGCGCACGCTCTCGTTGCGCAACGACGACCCGCAGGGCGCCTCGCGTCCCTACGACGTCGACCGCGACGGCTTCGTCATCGGCGAGGGCGCGGCCGTCGTCGTGCTGGAGAGCGCCGAGCACGCCGCCGCCCGCGGCGCGCGCGTCTACGCGAAGATCGCGGGTGTGGGGCTGTCCGCCGACGCCTACCACATCACCTCCCCCGACCCGGAGGGCAAGGGGCAGGTCGCGGCGATGCGCCGCTCCCTGGCCGACGCCGGGGTCACGGGCGCCGACGTCGTGCACGTCAACGCCCACGCGACCTCCACCAAGGTGGGCGACCTCACCGAGACCCGCTCGATCCGCACCGTGCTGGGCGAGGACACCGACCACGTGCGCCTGTCCGCGACGAAGTCGATGACGGGCCACCTGCTCGGTGGCGCGGGCGCGCTGGAGGCCCTGTTCACCATCAAGGCGGTGCACGAGCGCCTCGCCCCGCCGACGATCAACGTCGTCACGCCCGACCCGGAGCTGCAGGTGCCGCTGGTCCGCGACGAGCCGGCGACGCTGCCCGACGGCGACATCGCCGCGGTCAACAACTCCTTCGGCTTCGGCGGCCACAACGTGGCGCTCACCGTCACCAACGCCTGA	MTAPATRDVVVTGLGATTPLGGDAPSTWAAALAGESGARTMDNDWSEKYGIPVTFAATIKEDPSEKLSRPETKRMDPSTQYAMIAAREAWQDAGAPEVDGERLGAVVSSGIGGIWTTLDGWDTLRERGARRVLPMTVPMLMPNSPAAYVSLELGAQAGAHALVSACASGAEAIGYGLDMIRAGRADVVVCGGTEATIHPMPIAAFAASRTLSLRNDDPQGASRPYDVDRDGFVIGEGAAVVVLESAEHAAARGARVYAKIAGVGLSADAYHITSPDPEGKGQVAAMRRSLADAGVTGADVVHVNAHATSTKVGDLTETRSIRTVLGEDTDHVRLSATKSMTGHLLGGAGALEALFTIKAVHERLAPPTINVVTPDPELQVPLVRDEPATLPDGDIAAVNNSFGFGGHNVALTVTNA	PGPT0008360_4759	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458	NA	NA
AK001_00078	501			hypothetical protein	ATGGCTGGCGTCATCACCCGCGGTGTACTTTTCGTGCACTCCGCGCCGCGCGCGTTGTGCCCCCACCTCGAGTGGGCGGCGGGCAACGTGCTGAGCGCTGACGTGTCGTTGGACTGGACGCCCCAGCCCGCGGCACGCGGTCTGTACCGCGCCGAGTACGCGTGGCAGGGCGCCCAGGGCACGGGTGCGCGCCTGGCCTCTGCGCTGCGCGGCTGGGACCACCTGCGCTACGAAGTCACGGAGGACGCCAGCCACGGCAGCGACGCCGCGCGGTGGTCGCACACTCCCGACCTCGGCATCTTCCACGCCATGACCGACATCCACGGCAACGTCGTCGTGCCCGAGGACCGCGTGCGCACCGCCATGGAGAGCTCGCACGACCCGCGTGCCCTGCGCGAGGCGATGGACCTCGCCCTCGGCAGCGCCTGGGACGACGAGCTCGAACCCTTCCGGTACGCGGGAGCCGGCGCCCCCGTGCGCTGGCTGCACCGCGTCGGGTAG	MAGVITRGVLFVHSAPRALCPHLEWAAGNVLSADVSLDWTPQPAARGLYRAEYAWQGAQGTGARLASALRGWDHLRYEVTEDASHGSDAARWSHTPDLGIFHAMTDIHGNVVVPEDRVRTAMESSHDPRALREAMDLALGSAWDDELEPFRYAGAGAPVRWLHRVG				NA	NA	NA	NA	NA
AK001_00079	486	def_1	COG0242	Peptide deformylase	ATGGCGATGCGAGAGATCCGGGTGGTGCCCGACCCCGTGCTGCGCACGGCGTGCGACGAGATCACGACGATCGACGACCGTGTGCGCGGCCTCGTCGCGGACCTGCTCGAGACCGTCGACGCGGAGGGCCGTGCCGGGCTGGCCGCGAACCAGATCGGCGTGAACCTGCGGGCGTTCTCCTGGAACGTCGACGACGAGATCGGCTACGTGCTCAACCCGCGGCTGGTCGACGTCTCGGAGGAGCAGCAGGACGGCGACGAGGGCTGCCTGTCGGTGCCCGGGCTGTTCTACCCGACGACCCGCGCCTGGTACGCCCGCGTGGAGGGGACCGACCTGGACGGCAACGAGGTCGTGGTCGAGGGCACGGACCTCATGGCGCGTGCGCTGCAGCACGAGTGCGACCACCTGGACGGCAAGCTCTACCTGGACCGTCTGGAGCGCAGCGTGCGCAAGAAGGCGATGCGGGAGCTGCGCGAGCGCCTCTGA	MAMREIRVVPDPVLRTACDEITTIDDRVRGLVADLLETVDAEGRAGLAANQIGVNLRAFSWNVDDEIGYVLNPRLVDVSEEQQDGDEGCLSVPGLFYPTTRAWYARVEGTDLDGNEVVVEGTDLMARALQHECDHLDGKLYLDRLERSVRKKAMRELRERL				NA	NA	NA	NA	NA
AK001_00081	174			hypothetical protein	ATGAGCATCGGAGACAAGGCCAAGCACGCCGCCGAGGAAGCCCTGGGCAAGGCCAAGGAGGGTCTGGGCAAGGCGTCGGAGGACGAGGAGATGCAGGCCGAGGGCGAGGCCGAGCAGTCGCAGGCCAACCTCAAGCAGGCCGGTGACGACGTCAAGGACGCCTTCAAGAAGTAG	MSIGDKAKHAAEEALGKAKEGLGKASEDEEMQAEGEAEQSQANLKQAGDDVKDAFKK				NA	NA	NA	NA	NA
AK001_00082	522			hypothetical protein	ATGTTCACGCGCAGGCGTCGCCAGCGGCCCCCGTCCGTCCGTGAGGTGGTGCCGCTGGTCGGCCCCGAGCGGTTGCTCGCCGGCGCCGAGACGGCCGACGGCGGCTGGGTCGTCGCCACCACCGCCGACCTCGTCCTGGTCTCCGGGACCGACGACGACCCCCGGGTCGCGACGCGGCGTCCCTGGTGCGACGTCGACCGCGCGGCCTTCGACCCCGAGCGGTCGATCCTCACCGTCGAGTGGGTGGACGCGGCACCGGACCTGCGACCGATGCTCTCCGACGCGGCCGGTACCAACCTGCCGGCGGTCGTGCGCGAGCGCGTGCTGTGGTCCGTCGTCCTGGCCGAGACGGTCGACGTCCCCGGCGGGACGGTCCGGGTCGCGGTGCGGCGCCGGCTGGACGGCACCCTCTTCTCCCAGGCCGTCGCGGGCGACGGGGTCGACCTGTCACGGGCGGACGTCGCGAACGTGGTGGACGCCACGGAGTCGAGGGTGCGGGCGGCGTGCGGACTACCCGGTTGA	MFTRRRRQRPPSVREVVPLVGPERLLAGAETADGGWVVATTADLVLVSGTDDDPRVATRRPWCDVDRAAFDPERSILTVEWVDAAPDLRPMLSDAAGTNLPAVVRERVLWSVVLAETVDVPGGTVRVAVRRRLDGTLFSQAVAGDGVDLSRADVANVVDATESRVRAACGLPG				NA	NA	NA	NA	NA
AK001_00084	579	dps_1	COG0783	DNA protection during starvation protein	ATGGCTGACGGCACGCACCAACCCACCTACACGGTCCCGTCGATGACCGCCGAGGACGGCGCCCGGGTCGCCGAGATCCTGCAGGACCGCCTCAACTCGCTGACCGACCTCCACCTGACGCTCAAGCACGTCCACTGGAACGTCGTCGGGCCGCACTTCATCGCCGTCCACGAGATGCTCGACCCGCAGGTCGACGCCGTGCGGCTCATGGCCGACGACGTCGCCGAACGCATCGCCACGCTCGGCGGGGTGCCGCAGGGCACGCCCGGTGCGCTCGTCGCCCACCGCACCTGGGAGGACTACCACCTGGGCCGGGCCACGACCATCGAGCACCTCGGGGCGCTGGACGAGGTGTACCAGGGCGTCATCGCCGCGCACCGCCAGGCGGCCGAGACCACGGCCGAGCTCGACGACGTGACCAACGACCTGCTGATCGGCAACCTGCGCGACCTGGAGCAGTTCCACTGGTTCGTCCGGGCCCACCTGGAGACCGCCGGGGGAGAGCTGTCGACCGCCGGGGCGACCTCGGAGATCGCCGCCGCCCGGCAGGCGCGGGAGGCCGAGCGCGACGCCGGCTGA	MADGTHQPTYTVPSMTAEDGARVAEILQDRLNSLTDLHLTLKHVHWNVVGPHFIAVHEMLDPQVDAVRLMADDVAERIATLGGVPQGTPGALVAHRTWEDYHLGRATTIEHLGALDEVYQGVIAAHRQAAETTAELDDVTNDLLIGNLRDLEQFHWFVRAHLETAGGELSTAGATSEIAAARQAREAERDAG	PGPT0004055_236	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047	NA	NA
AK001_00085	249			hypothetical protein	ATGAGCGAGGACGACCTGGACGCCGGTGTCCCGCAGGTCGACCCGGCGGTCCGTGACGCGCTGACCACGGCCGAGGGCTGGATCGGGCCGGAGATCCAGGGGGTCGCCGTCGGCGAGACCGCCCAGGGCGACCCCTGCCTGGTCGTGTACGCGCCCGACCCGGAGTCGCCGGCCGTGCGCGAGCTGCCGCCCGCCGTCGGCGACGTCCCGGTGCGCGTCGAGGCCGCCGGCCCGTTCGCCGCGGAGTAG	MSEDDLDAGVPQVDPAVRDALTTAEGWIGPEIQGVAVGETAQGDPCLVVYAPDPESPAVRELPPAVGDVPVRVEAAGPFAAE				NA	NA	NA	NA	NA
AK001_00086	990			hypothetical protein	ATGCACGACGACGAGCTGTTCGACGTCGAGGCCGACGTACCGGAGGCGTTCTCCGCCGTCGCCCCGACGCGCGACGCGGCCGAGGACGACCTGCTGGCCACCGAGAACGTGGTGGGGGTCGGCCTCGGCTACAAGATCACCGGCGGGGTCCAGACGGACAAGCCCAGCGTCATGGTGCTGGTCGAGCAGAAGCTGCCGCCCGAGCTGCTGTCCGGCAAGCCGGTGCCCAAGACCATCGGCGGCAAGCCGACCGACCTGATGGAGGTCGGCGTCCTGCAGGCAGGTGGGGACGCCGAGCCCGCCGCCGAGGTGGGCGTCCAGAAGCTGGCCACGCGGGTGCGCCCGGCACGGCCCGGCTACAGCATCGGGCACCTGAAGGTCACGGCCGGCACGCTCGGTGCCGGGGCCTACGACCTGCGCAGCACGGTGCCCGGCAAGCCGCCGCGCTACTACGCGCTGAGCAACAACCACGTGCTCGCCAACTCGAACGACGCCAAGATCGGCGACCCCATCATCCAGCCCGGGGCGTTCGACGGCGGCACCTTCCCGGCGGACGTGATCGGGCGCCTCGCCCGGTACGTGCCGATCAGGTTCGACGGGACGACGAACCTGGTCGACGCGGCGATCGCCGAGGTCCCCTTCGACACCATCGACCGGGACATCTACTGGACCGGCTACCCGCAGTCGCTGGTCAGGGCGGCGCAGGTCGGGATGGTGCTGAAGAAGACGGGACGGACCACGCACTTCACCACGGGCCGGGTGACCGCGCTCAACGCCACGGTGAACGTCAACTACGGCGGGGGCAAGGTGGCCAAGTTCGGTCGCCAGATCGTCACCACGGACATGTCCGCGGGCGGCGACTCCGGGTCGCTCGTGCTGGACCTGCAGAACAACCCGGTGGGCCTGCTGTTCGCGGGGTCGAGCACGGCGACGATCCTCAACCCGATCGCCTACGTGCAGCGGCTGCTCGGGGTGCGCGTCTGGCCGTGA	MHDDELFDVEADVPEAFSAVAPTRDAAEDDLLATENVVGVGLGYKITGGVQTDKPSVMVLVEQKLPPELLSGKPVPKTIGGKPTDLMEVGVLQAGGDAEPAAEVGVQKLATRVRPARPGYSIGHLKVTAGTLGAGAYDLRSTVPGKPPRYYALSNNHVLANSNDAKIGDPIIQPGAFDGGTFPADVIGRLARYVPIRFDGTTNLVDAAIAEVPFDTIDRDIYWTGYPQSLVRAAQVGMVLKKTGRTTHFTTGRVTALNATVNVNYGGGKVAKFGRQIVTTDMSAGGDSGSLVLDLQNNPVGLLFAGSSTATILNPIAYVQRLLGVRVWP				NA	NA	NA	NA	NA
AK001_00087	1977	dnaG_1	COG0358	DNA primase	GTGCAGGGGCATAGACTCGCGACCGTGGCAGGCCTGATCAAGCGCGACGACGTGGACGCCGTCCGCGACCGCGCGCGCATCGACGAGATCGTCGGCCAGCACGTCACCCTCAAGTCCGCCGGCGTCGGCTCGATGAAGGGGCTGTGCCCGTTCCACGACGAGCGCACCCCCTCCTTCCACGTCCGGCCGGGCGTGGGCCGCTGGCACTGCTTCGGCTGCGGCGAGGGCGGCGACGTCATCTCGTTCGTGCAGAAGATCGACGGGATGGGGTTCACCGACGCCGTCGAGTACCTCGCCGACAAGGTCGGCGTCGAGCTGCACTACGAGGACTCCCGCACCGGCGCCGCCGCCCAGCGCGGGCCGCGCGAGGAGCCCGGCCGTCGCCAGCGCCTGCTCGAGGCCCACCGCGTCGCCGCCGCGTTCTACGCCGAGCAGCTCTTCGCCCCCGGAGCGCAGGCCGCCCGGGCGTTCCTCGCCGAGCGCAGCTTCGAGCGGGCCGACGCCGAGACGTTCGGTCTCGGGTACGCCCCGACCGGGTGGGACGCGCTGCTGCGGCACCTGCAGAGCCGCGGGTTCACCCAGCCCGAGCTCGTCGCCTCGGGGCTGGTCAGCCAGGGTCAGCGCGGGATCTACGACCGGTTCCGCGGACGGCTCGTGTGGCCGATCCGGGACGTGACCGGCGCCGTCATCGGGTTCGGGGCGCGCAAGCTCTTCGACGACGACCCCGGCCCCAAGTACCTCAACACCCCCGAGACGACGCTGTACAAGAAGGCGCAGGTCCTCTACGGGATCGACCTGGCCAAGCGCGCGATCGCCCAGAACAAGCGGGTCGTCATCGTCGAGGGGTACACCGACGTCATGGCCGCGCACCTGTCCGGCGTGGACACGGCGGTGGCGACCTGCGGCACCGCGTTCGGCCCCGAGCACGCCAAGGTCGTGCGCCGCCTGCTCGGCGACACCACCGCGGGTGGCGGTCTGCAGCTGGCCTCCGGAGCGTCGCTCGGCGGAGAGATCATCTTCACTTTCGACGGCGACGCGGCCGGCCAGAAGGCCGCCATGCGGGCCTTCGGCGAGGACCAGCGCTTCCACGCCCAGACGTTCGTCGCCGTCGAGCCCAGCGGCATGGACCCGTGCGACCTGCGCATGGAGCGCGGCCCCGACGCGGTGCGCACGCTGGTGGACACCCGCGTGCCGCTGTTCGAGTTCGTCATCCGCACCACCCTCGATGGCTTCGACCTCGACACGGTCGAGGGCCGCGTCAACGCGCTGCGGGCGGCGGCACCGATGGTCGCCGGCATCCGCGACCGCTCCATGCAGCTCGGCTACGCCCGCCTGCTGGCCCGCTGGATCGGGATCGACACCGACGAGGTCCGCCGCGAGGTGGGACGGGCGCACAGCACCCCCGGGCCGGCCCGACGCCGGGACGAGCGCACCGCACGGCCGGAGCGCGCCGTCGAGTCGCCGTCGGACGGGCCCGTGGCCGGTCCCGTCCTCAGCGCCCCCGACCCGGCCGACCCCGTGGCGCGCATCGAGCGGCTCGCCCTGGTCGTCGTGCTGCAGTACCCGCAGCACGTGCCGGTCACGTTCGACGACCTCGGTCCGGACGCGTTCGCCACGCCGGCCTGGCGGGCCGTGCACGCGGCGATCCGGGCGGCCGGGGGAGTGCGCACCGGGGCCGGCCTGGGCGGCAACCGCTGGGTGGAGACCGTCGTCGAGGAGGCCGGCGACGCCGTCTCGCCGCTGGTGACCGAACTGGCCGTGGCGCCGGTGCCCGAGGACCGCGAGAGCGCGATCGCGGCGTTCGTGGCCGACGTCGTGCGCAAGGTCGCCGACCTGGGCCTGACCCGTCGCATCGCCGACGCCAAGAGCCGCGTGCAGCGCCTCGACGCCCAGGCCGACCCGGACGCCTACCGGGCGGCGTTCGAGGAGCTCGTCGCGATCGAGAAGGAACGGCGCGAGCTGCGCGAGAGCGCCTGA	MQGHRLATVAGLIKRDDVDAVRDRARIDEIVGQHVTLKSAGVGSMKGLCPFHDERTPSFHVRPGVGRWHCFGCGEGGDVISFVQKIDGMGFTDAVEYLADKVGVELHYEDSRTGAAAQRGPREEPGRRQRLLEAHRVAAAFYAEQLFAPGAQAARAFLAERSFERADAETFGLGYAPTGWDALLRHLQSRGFTQPELVASGLVSQGQRGIYDRFRGRLVWPIRDVTGAVIGFGARKLFDDDPGPKYLNTPETTLYKKAQVLYGIDLAKRAIAQNKRVVIVEGYTDVMAAHLSGVDTAVATCGTAFGPEHAKVVRRLLGDTTAGGGLQLASGASLGGEIIFTFDGDAAGQKAAMRAFGEDQRFHAQTFVAVEPSGMDPCDLRMERGPDAVRTLVDTRVPLFEFVIRTTLDGFDLDTVEGRVNALRAAAPMVAGIRDRSMQLGYARLLARWIGIDTDEVRREVGRAHSTPGPARRRDERTARPERAVESPSDGPVAGPVLSAPDPADPVARIERLALVVVLQYPQHVPVTFDDLGPDAFATPAWRAVHAAIRAAGGVRTGAGLGGNRWVETVVEEAGDAVSPLVTELAVAPVPEDRESAIAAFVADVVRKVADLGLTRRIADAKSRVQRLDAQADPDAYRAAFEELVAIEKERRELRESA				NA	NA	NA	NA	NA
AK001_00088	1335	dgt	COG0232	Deoxyguanosinetriphosphate triphosphohydrolase-like protein	GTGCAGACGTTCTCGCAGGAGGCCTTCGACCCGGACGTGGTCGGCACCGGACCCCGTCCTGCCCCCGGCGAGGAAGGTCCGGCGTCGTACACCGACGCCGACACCGAGCGGTGGGCCGCCGAACCGCCCAAGTCCAAGGACCGCACCCCGTTCGAGCGCGACCGCGCGCGGGTGGTGCACTCCTCGGGCCTGCGGCGCCTCGGTGCCAAGACCCAGGTGCTCACCCCGGGCAGCGACGACTTCGTGCGGACCCGGCTGACGCACTCGCTCGAGGTGGCCCAGGTCGGGCGGGAGATGGGCCGGGCGCTGGGCTGCGACCCGGACCTGGTCGACACCGCCTGCCTCACGCACGACCTGGGCCACCCGCCGTTCGGGCACAACGGCGAGCGGGTGCTGGCCGAGCTCGCGGCGGAGATCGGCGGGTTCGAGGGCAACGCCCAGACCCTGCGCCTGCTGACCCGGCTCGAGCCCAAGATCCTCGACGCCGACGGCGCCCCGCGCGGCCTGAACCTCACGCGGGCCTCGCTGGACGCCTCGGTGAAGTACCCGTGGCGGCTCCACGAGGGCCCGCCCCGGCCGGACGGGTCCCGTACCGGCAAGTTCGGCGTCTACCCAGACGATGCCCCCGTCTTCGCGTGGCTGCGCCGCGGCGCACCGCAGTCCATGGTGCGCTGCATGGAGGCGCAGGTCATGGACCTCGCCGACGACATCAGCTACTCCGTGCACGACGTCGAGGACGCCGTGGTGGGCAGCCGCCTGGACCTGCGGGTGCTCGACGACGAGGCCGAGCGGGCCCGCATCGTCGAGCACGTGCGGTCCTGGTACGGCGCCTGGCACGACGCGGACGCCCTCGACACTGCCCTGTGCCGGCTGCGCGACACCGGCTACCTCGTGACCGACTTCGACGGGTCGCGCGGTGCCCTGGCCGGGCTCAAGGACGCCACCAGCCAGCTCATCGGCCGGTTCAGCGGCGCGGCCCAGCGGGCCACCCGCGAGGTGTACGGCGAGGGGCCGCTGACCCGGTACTCGGCGCAGCTCGTCGTCCCGCCCGAGACGGCCGACGAGATCCTGGCGCTCAAGGGCGTGGCCGTCACCTACGTCATGGCGCCGCGGGAGTCCGAGCCGCTGTACGCGGCCCAGCGCGAGATCGTCGCCGACCTGGTCAAGGTGCTCGCGGACCGCGCCCCGGTGGCGCTCGAGCCCCAGTTCGCCGCGGACTGGCGGGCGGCGTCCGACGACGCCGCGCGACTGCGCGTCGTCGTCGACCAGGTGGCCTCGCTGACGGACGTCTCGGCGGTCCAGATGCACGGCCGGCTGGTGCGCGGCGACGACTGA	MQTFSQEAFDPDVVGTGPRPAPGEEGPASYTDADTERWAAEPPKSKDRTPFERDRARVVHSSGLRRLGAKTQVLTPGSDDFVRTRLTHSLEVAQVGREMGRALGCDPDLVDTACLTHDLGHPPFGHNGERVLAELAAEIGGFEGNAQTLRLLTRLEPKILDADGAPRGLNLTRASLDASVKYPWRLHEGPPRPDGSRTGKFGVYPDDAPVFAWLRRGAPQSMVRCMEAQVMDLADDISYSVHDVEDAVVGSRLDLRVLDDEAERARIVEHVRSWYGAWHDADALDTALCRLRDTGYLVTDFDGSRGALAGLKDATSQLIGRFSGAAQRATREVYGEGPLTRYSAQLVVPPETADEILALKGVAVTYVMAPRESEPLYAAQREIVADLVKVLADRAPVALEPQFAADWRAASDDAARLRVVVDQVASLTDVSAVQMHGRLVRGDD	PGPT0021495_1378	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129	NA	NA
AK001_00089	765			hypothetical protein	GTGGCCACCGAGCAGATCGCGATCCTGTCCGACGTCCACGGCAACCTCACCGCCCTGGAGGCGGTCCTGGCGGACATCGAGCGCCGCGGGATCACCCGGATCCTGAACCTGGGCGACGACGTGGGCAAGGGGCCGCGCGGCCGCGCCGTCGTGGACCGCACGGAGCAGGTCTGCGAGGTCAACGTCCGCGGCAACTGGGACGACTTCCTGCCGGCGATCGCCGACGACGGGCCCGACGAGATGGTCTGGTGGCGCGACGAGCTGCGCCCCGAACAGCGCGAGCTGATCCGCCGCCGGCCGCTGTGCCACGACCTGCAGCTCTCCGGGCGGCGGATCCGGCTCTTCCACGCCTCGGCGACGAGTGTGCACACGCGGGTCCACGTCGACCATACCCGCGAGGAGTTCGCCGGGATGTTCGCCGCCACGGACCTCACGGGACCGGGGCCGGAACCCGACCTGGTCGGCTACGGCGACGTCCACGCCGCCTACCAGCGCACCCGGCGCGGGCGCACCCTCTTCAACGCCGGCAGCGTCGGCAACGCGCTCGACGAACCCTCGGCGGCCTACGTGGTCCTCGAGGGGGTCCCCGGACAGGACCCGGCGCCCTTCGGCCTGCAGGTCGTCCGTCTGTCCTACGACGTGGAGGCCGAGCTGGCCGTCGCCCGTGAGGCGGACATGCCGCAGTACGCCGCCTGGGCGCAGGAGCTGCGGACCGCCGTCTACCGCGGGCTGTCGGCCGTCGAGCCCGTGGGCGGCGCTCGGTAG	MATEQIAILSDVHGNLTALEAVLADIERRGITRILNLGDDVGKGPRGRAVVDRTEQVCEVNVRGNWDDFLPAIADDGPDEMVWWRDELRPEQRELIRRRPLCHDLQLSGRRIRLFHASATSVHTRVHVDHTREEFAGMFAATDLTGPGPEPDLVGYGDVHAAYQRTRRGRTLFNAGSVGNALDEPSAAYVVLEGVPGQDPAPFGLQVVRLSYDVEAELAVAREADMPQYAAWAQELRTAVYRGLSAVEPVGGAR	PGPT0030420_552	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030420-ppa|prpA-K01090	NA	NA
AK001_00090	513			hypothetical protein	ATGCACGGCGTCGCGGTGCTGCAGGACCTGTACTCCCGGATCGCGCCCACGGTGCACCGCGCGGTCGACGGGCTCGGCGACGCCGCGCTCGTCGAGCGGCTCGACCCGGCGGCGAACACGATCGCGTGGCTCACCTGGCACATCGGCCGCGACCAGGACGTCCAGGTCGCCGACGTCGTCGGCCGCGACCAGGTGTACTCGCGTGGCTGGGCGGACCGGTTCGACCTGCCGTTCGGCCTGCACGACACCGGCTACGGGCACACCTCCGACGACGTCGCGAGGGTCCGCGCGCCGGGCGAGCTGCTGCTGGGCTACGTGGACGCGGTCGCCGCGGAGTCGCTCGACGTGCTCGCCGGGCTGACCGACGACGACCTCGACGAGGTGGTCGACGACGCCTGGGACCCGCCGGTCACCCGCGGGGCGCGGCTCGTGAGCGTCGCGAACGACTCCCTGGAGCACGCGGCGCAGATCGCGTACGTCCGCGGCGTCCTCGAGCGCACCGGGCGCGCGTAG	MHGVAVLQDLYSRIAPTVHRAVDGLGDAALVERLDPAANTIAWLTWHIGRDQDVQVADVVGRDQVYSRGWADRFDLPFGLHDTGYGHTSDDVARVRAPGELLLGYVDAVAAESLDVLAGLTDDDLDEVVDDAWDPPVTRGARLVSVANDSLEHAAQIAYVRGVLERTGRA				NA	NA	NA	NA	NA
AK001_00091	1887	malZ	COG0366	Maltodextrin glucosidase	ATGACGCACGCACCGCACCTGCTCGACCTGCCCCACCACGACGGCTCGGCCGTGCACGTGCCCCCGGGCACGCCGGCGCTCGGCGACGCCGTGCCCGTGCGCGTCCGCGTGCCCCGGGCCGCCGGCGTCGAGCGGGTCTGGGTGCGGTCCGTGCGCGACGGCGAGCCGCGTCTCGCCGAGGCCGTGCCCGACGGCGGCACGGACGCCGAGCAGTGGTTCACCGGCGAGGTCGTGGTCCACAACCCCGTCACCCCGTACCGGTTCCTGCTCGACGGACCCGGCGGCTACCGGTGGCTCGACGGCCGCGGCGTGCACGACCGGGACGTGTCCGACGACGGCGACTTCCGGCTGACCACGCACGCCCCGGCCCCGTCGTGGCTGGGCGACGGGCTCGTGTACCAGATCTTCCCCGACCGGTTCGCCCGGTCCGGCGCCGCGGACGGACGGCCGACGCCCGACTGGGCCGTGCCCGCCGCCTGGGACGACGAGCCGGCCGGGACCGGCGTGCTCGCCGGCACCCAGTACTACGGCGGCGACCTGGACGGCGTCGTCGAGCACCTCGACCACCTCGCCGCGCTCGGCGTCGGCACCGTCTACCTCACGCCCGTGTTCCCGGGCCGCTCCAACCACCGTTACGACGCCTCGACGTTCGCCGAGGTGGACCCGCTGCTCGGTGGCGACGACGCCTACGCCCGGCTCTCCGAGGCCGTGCACGCCCGCGGGATGCGGTTGATGGGCGACATCACCACCAACCACACCGGCGAGGGGCACGAGTGGTTCGCCGCCGCGCTCGCCGACCCCGCCTCGCCCGAGCACAGCATGTACGTGTGGGCCGACCCGGCGTCGGACAACACCGACGTGGCCACCACCGCCACCGGGGAGGGGTACGCGAGCTGGCTCGGGTTCGGCTCCCTGCCCAAGCTCGACTGGGCCGCCCCCGAGACCTGGCACCGCATGGTCACCGGGCGCGACGCCCCGATCGGCCGGTACCTGCGCCCGCCGTTCGCGCTCGACGGGTGGCGGGTCGACGTCGCCAACATGACCGGCCGGTGGGGGAGCGAGGACCGCACGCACGCCGTCTCGCGCGAGCTGCGGGCCGCCGTCGAGCGCGAGCGCCCCGACGGCGCGTTGATCGCCGAGCACTTCCACGACGCCGGGGCCGACCTGCGCGCCGGGGGCTGGCACGCCAACATGAACTACACCGGGTTCACCCGGCCCGCCTGGTCCTGGCTGGCGACCGAGGGGTCCCCGGCCGCGGCGCACGGGTTGCCCGTGGCGGGCACCCGTCGGCCCGGCGGCGCCATGGTGGACGCGATGCGCGAGTTCGACGCCGCGGTGCCGTGGTCCGTCACGGCGGCGCAGTGGAACATGCTCGGCTCCCACGACACGCCGCGGCTGCGCACCGCCGTCGGCTCGGACGAGCTGACCGAGGTGGCCGCCACGCTGCTGTTCACCTACCCGGGCACGCCCGTCGTGTTCGCCGGGGACGAGGTCGGCGCCACCGGCGACAACGGCGAGCACGCCCGGACCACCATGGCCTGGGACCAGGGCGCTCGCGGCGGCGGTCCGCGCTGGGACGCCGGGACGCTGGAGCGGTACCGCCGGCTGTCGGCGGTGCGGCGCGGGTCGGACGCCCTGCGCGACGGCGGCCTGCGCTGGGCGGTCGTGGAGGACGACGCGGTCGTGTTCCTGCGCGAGTCGCCGACCGAGCGCATCCTGGTCGTGCTGGCGCGGGCGCCGTGGGCCGGGACGGTGCTGCCGGGGCGTCTGCTGGTTCCCGGCGGCGCGCCGGAGCGGCTGTACGGCGAGGTGGGTCTCGCCGTCGGCCCGGACGGTCTGACGATCTCCGGCGACGGCCCGGCCGTCGGCGTCTTCCGCCTGCTCTGA	MTHAPHLLDLPHHDGSAVHVPPGTPALGDAVPVRVRVPRAAGVERVWVRSVRDGEPRLAEAVPDGGTDAEQWFTGEVVVHNPVTPYRFLLDGPGGYRWLDGRGVHDRDVSDDGDFRLTTHAPAPSWLGDGLVYQIFPDRFARSGAADGRPTPDWAVPAAWDDEPAGTGVLAGTQYYGGDLDGVVEHLDHLAALGVGTVYLTPVFPGRSNHRYDASTFAEVDPLLGGDDAYARLSEAVHARGMRLMGDITTNHTGEGHEWFAAALADPASPEHSMYVWADPASDNTDVATTATGEGYASWLGFGSLPKLDWAAPETWHRMVTGRDAPIGRYLRPPFALDGWRVDVANMTGRWGSEDRTHAVSRELRAAVERERPDGALIAEHFHDAGADLRAGGWHANMNYTGFTRPAWSWLATEGSPAAAHGLPVAGTRRPGGAMVDAMREFDAAVPWSVTAAQWNMLGSHDTPRLRTAVGSDELTEVAATLLFTYPGTPVVFAGDEVGATGDNGEHARTTMAWDQGARGGGPRWDAGTLERYRRLSAVRRGSDALRDGGLRWAVVEDDAVVFLRESPTERILVVLARAPWAGTVLPGRLLVPGGAPERLYGEVGLAVGPDGLTISGDGPAVGVFRLL	PGPT0018560_2358	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
AK001_00092	564			hypothetical protein	ATGACCGAGACGCGCAGCTACAGCCCGGACCTGGGGCGGCTCACCGCCGCCGCCGACGACTCGTTCACCGTGCGCCGCGCGTACGGCGAACCGTACGAGCACGACGGCCAGCTCATCATCCCGGTGGCCCGGGTGTGGGGCGGCATCGGCACCGGCTCGGGCGGGGGAGCGGGCGCCACCTCGGGCAACGGGTCCGGGGAGGGGACCGGCTCGGGCAAGGGGTCCGGCCACCTGGCCGGATGGTCGAAGTCCTTCCACCGCGGCGCCGAGGCCACCGAGGCTGCCGACGGCGAGGGCGACGGTGACGGGTCCGACGCCGGGGACGCGTCCGGGGAGACCCGGGGCGAGGCCCACGGCGAGCTGCACGGCGAGGGCTCGGGCGAGGGCGGTGGCGGCGGTGGCGGCTACGGCCTGCACGTCAAGCCGCTCGGCGTCTACGTCGTCGGCTCCGCGGGCACGCGCTGGCAGCCCGTGCTCGACCTGAACAAGGCGATCCTCGGCGGACAGGTCGTCGGGATCGCGATCGCGCTCGCCGCCGGGTGGGCGATCGGTCGCCGCCGCTGA	MTETRSYSPDLGRLTAAADDSFTVRRAYGEPYEHDGQLIIPVARVWGGIGTGSGGGAGATSGNGSGEGTGSGKGSGHLAGWSKSFHRGAEATEAADGEGDGDGSDAGDASGETRGEAHGELHGEGSGEGGGGGGGYGLHVKPLGVYVVGSAGTRWQPVLDLNKAILGGQVVGIAIALAAGWAIGRRR	PGPT0024995_6	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE_OTHER_SPORULATION_RELATED_PROTEINS,PGPT0024995-ytfJ-NA	NA	NA
AK001_00093	906	malG	COG3833	Maltose/maltodextrin transport system permease protein MalG	ATGACTGCCACCTCGACCGCCCCCGCGGTCCGCACCCCGTCGACGCCGACCCGTCGCAGGACGGCGGGCCGCTGGTTCTCCGAGCTCGGCTGGCGGCACGTCGTCGGCGTCCTGTTCGTCGTCTACGCCGCCTTCCCGATCGTGTACGTCCTGTCGGCCTCCGTGGCCGAGAGCGGCACCCTGACCGGGTCCAACCAGCTCTTCGACTCGTTCAGCACGGAGAACTACGCCCGGCTGGCCGACACGGTGTACTGGTCGTGGTTCGCCAACTCGGTGCTGATCGCCGTCGCCACCTCGATCGGCACCGTGCTCATGGGCGCCGCCGCGGCGTACGCCTTCAGCCGGTTCCGCTTCACGGGGCGCCGCGTGGGCCTGACGACGCTGCTGATCCTCCAGATGTTCCCGCAGATGCTCGCGTTCGTCGCGATCTTCCTGCTGCTCATCAGCCTCGGCGAGGTGGTTCCGGCGCTCGGCCTGAACTCCCGGGTCGCGCTCATCTGCGTGTACCTCGGCGGCGCGCTGGGCGTGAACACGTTCCTCATGTACGGGTTCTTCAACACGATCCCGCGCGAGCTGGACGAGGCGGCCAAGATCGACGGCGCCACGCACGCCCAGACGTACTGGACGATCATCCTGCGACTGGTGACCCCGATCCTCGCGGTCGTGGCGCTGCTGTCGATCATCGCCACCTTCGGCGAGTTCGTCATCGCCCGCGTGCTCCTGCAGTCGGAGGCCAACTGGACGCTCGCCGTGGGCCTCTACTCGTGGGTCTCCAGCCTGCTCGAGGCCAACTGGGGACTGTTCGCCGCCGGCGCGGTGATCTCCACGATCCCGATCCTCGTGCTGTTCCTGTTCCTGCAGAAGTACATCGTCGGCGGACTGACGGCCGGCTCCGTGAAGGGATGA	MTATSTAPAVRTPSTPTRRRTAGRWFSELGWRHVVGVLFVVYAAFPIVYVLSASVAESGTLTGSNQLFDSFSTENYARLADTVYWSWFANSVLIAVATSIGTVLMGAAAAYAFSRFRFTGRRVGLTTLLILQMFPQMLAFVAIFLLLISLGEVVPALGLNSRVALICVYLGGALGVNTFLMYGFFNTIPRELDEAAKIDGATHAQTYWTIILRLVTPILAVVALLSIIATFGEFVIARVLLQSEANWTLAVGLYSWVSSLLEANWGLFAAGAVISTIPILVLFLFLQKYIVGGLTAGSVKG	PGPT0016325_336	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016325-ganQ-K15772	NA	NA
AK001_00094	1644	malF	COG1175	Maltose/maltodextrin transport system permease protein MalF	ATGACAGACCTGCAGCAGACCCGCACCGCCTCGGACGAGGCGCCGGGTGACGCTCCCGCCCCGCCCGACTCCACCCGCCGACGTCGCCTCGGCCGTCGCGACGAGTCACCCGCCGGCCGCTACGGCGCCGGGTTCCTCGCCAAGCTCGCCCTCATGGCCGTCGCGAACGCGTTCGGCGTCTACGTGCTCTGGTCCGCGTGGCTGGCCGAGTCGTGGATCATCCTCGGCGCCATGCTCGTCATGCTCGCCGTGGCGAACTGGGTGTACTTCTCGCGTCGCACGGTGCCGCTGAAGTACGTGCTGCCCGGTCTGATCTTCCTGTTCACGTTCCAGATCTTCACCATCGGCTACACCGGCTGGGTGGCGTTCACGAACTACGGCGACGGCCACAACTCCACCAAGGACGACGCCGTCGCCGCCCTGCTCATCCAGAACGAGCGGCGCGTCGAGGGGTCGCCCGCGCTGCCCCTGACCGTCGTCGCCGACGGCGAGGAGCTCGGGTTCGCCGTCGTGCAGCCCGACGGCACGGCCACCGTCGGCGACGCCGAGGCGCCGCTGTCCGCCGTCGACGCCACCGTCGCCGAGGGCCGGATCACCGCCGTCGACGGCTGGGAGGTCCTCGACCGGGCCGAGGTGCTCGCCCGTCAGGGCGAGGTCACCGACCTGCGGGTCCCGGTCTCGGACGACCCGGGTGCCGGGTCGGTGCGCACCCAGGACGCCCGTACCGGCTACGTCTACGAGTCCACGCTCGTGTACGACGAGGCCGCGGACACGATGACGGACACCACCACCGGCACCGTCTACACGCCCAACGACGAGGGACAGTTCGAGGCCGCGGACGGCTCCACGCTCAACGTCGGCTGGCGCGTGTTCGTCGGCTTCGACAACTTCACCACCGCGTTCTCCGACTCGCGCTACTCCGGGCCGTTCCTCCAGGTCGTGGTGTGGACGTTCGTCTTCGCCTTCGCCTCGGTGGCCACGACGTTCCTGCTCGGGATGTTCCTGGCCACGGTCTTCAACACCCCGATGCGCGGGCGCAAGATCTACCGCACGCTGCTGATCCTGCCGTACGCCATCCCCGGGTTCGTCGCCCCGCTGCTGTGGTCCGGCCTGCTCAACCGCAGCTTCGGGTTCGTCAACCAGGTGCTGCTCGGAGGCGCCGCCGTCCCGTGGCTGACCGACCCGTGGCTGGCCAAGCTGTCGATCATCGGGGTCAACCTGTGGCTCGGGTTCCCCTACATGTTCCTCATCTGCACCGGTGCGCTGCAGTCGCTGCCCACCGACGTGCTCGAGGCCGCGAAGATCGACGGCGCCGGCCGGCTGCGCACCTGGCGCTCGGTCGTCATGCCGCTGCTGCTGGTCTCCACGACCCCGCTGCTCATCTCGAGCTTCGCGTTCAACTTCAACAACTTCGCCCTGATCTACATGCTCACCGGCGGCGGACCACGGTTCGAGGACGCCTCGGTGCCGCTGGGGCACACCGACATCATGATCACGATGGTCTACTCCGTGGCCGGCCTGGACGGGAACGCCCCGAAGGACTTCGGCCTGGCCAGTGCGCTGTCCATCGTCATCTTCGTGATCATCGCGACGATCTCGGCCATCGCCTTCAAGCGGACCCGCTCGCTCGAGGAGATCAACTGA	MTDLQQTRTASDEAPGDAPAPPDSTRRRRLGRRDESPAGRYGAGFLAKLALMAVANAFGVYVLWSAWLAESWIILGAMLVMLAVANWVYFSRRTVPLKYVLPGLIFLFTFQIFTIGYTGWVAFTNYGDGHNSTKDDAVAALLIQNERRVEGSPALPLTVVADGEELGFAVVQPDGTATVGDAEAPLSAVDATVAEGRITAVDGWEVLDRAEVLARQGEVTDLRVPVSDDPGAGSVRTQDARTGYVYESTLVYDEAADTMTDTTTGTVYTPNDEGQFEAADGSTLNVGWRVFVGFDNFTTAFSDSRYSGPFLQVVVWTFVFAFASVATTFLLGMFLATVFNTPMRGRKIYRTLLILPYAIPGFVAPLLWSGLLNRSFGFVNQVLLGGAAVPWLTDPWLAKLSIIGVNLWLGFPYMFLICTGALQSLPTDVLEAAKIDGAGRLRTWRSVVMPLLLVSTTPLLISSFAFNFNNFALIYMLTGGGPRFEDASVPLGHTDIMITMVYSVAGLDGNAPKDFGLASALSIVIFVIIATISAIAFKRTRSLEEIN	PGPT0016320_90	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016320-ganP-K15771	NA	NA
AK001_00095	1257	cycB	COG2182	Cyclodextrin-binding protein	ATGCGACGGAGCATCCTTATCGCGTCCGCCCTGGTCACCACTCTCGCCCTGTCGGCCTGCGGGTCGGCCGACGACGCCGGTGACGCCGCCGAGGACACCACCGACGAGAGCACGGCCGAGGCCACCGACGCCGGCGAGGACATGGCGACCGGCTCGCTGACCGTGTGGGTCGACGAGACGCGCGAGAGCGCCGTCGAGTCCGCCGCCGAGGCGTTCGAGACCGAGACCGGGGCCGAGGTCGAGATCGTCCTGAAGAACTTCGAGGACATCCGCTCCGACTTCATCGCCCAGGTCCCCACCGGCGAGGGCCCCGACGTCACCGTCGGCGCGCACGACTGGCTGGGCGAGCTCATCACCAACGGCGTCGTCGCCCCGGTCGAGCTCGGTGCCACCGCCGAGGAGTTCGAGGACGTCGCGGTCGAGGCCTTCACCGCCGACGGCGCCGTCTACGGCCTGCCGTACGCGATCGAGAACATCGCCCTGATCCGGAACACCGAGCTGGCCGACACCGCGCCCGCCACGTGGGACGAGGCGATCTCGATGGGCGAGGACGCCGACACCAAGTACCCGTTCCTCATCCAGACCGGGACCGAGGGCGACCCGTACACGTACTACCCGTTCCAGACGTCGTTCGGCGCCCCGGTGTTCGAGCAGAACGAGGACGGCTCGTACTCCCCGGAGCTCGCCATGGGCGGTGAGGCCGGTGACGCCTACGCCCAGTGGCTCGCCGAGCAGGGCGAGGCCGGCACGCTGACCACCGACATCACCTACGACATCGCGGTCGAGGCCTTCGCCAAGGGCCAGTCGCCGTTCATCGTGGGCGGTCCGTGGATGCTCGAGCAGTTCGCCGACCTGGACCTCGCGATCGACCCGGTCCCCGCCGCCGGTGACCAGGCCGCCCAGCCGTTCGTGGGCGTCCAGGGCTTCTACGTCAGCGCCCAGAGCGAGAACGCCCTGCTGGCCAACGACTTCCTCGTGAACTTCCTGTCCACGCAGGACGCCCAGACCGCGCTGTTCGAGGCCGGCGGCCGCCCGCCGGCGCTCACCGCCGCCGCCGACGCCGCGTCGTCGGACCCGATCGTGGCGGGCTTCCGCGAGGTCGGCGCCGAGGCCGTGCCGATGCCGTCCATCCCCGAGATGGGTTCGGTGTGGGCCTTCTGGGGCGTCACCGAGGCCAACATCATCTCCGGCTCGGCCGACCCGGCCGAGGCCTGGAGCAAGATGATCTCGGACATCGAGGGCGCGCTCGACTCCTGA	MRRSILIASALVTTLALSACGSADDAGDAAEDTTDESTAEATDAGEDMATGSLTVWVDETRESAVESAAEAFETETGAEVEIVLKNFEDIRSDFIAQVPTGEGPDVTVGAHDWLGELITNGVVAPVELGATAEEFEDVAVEAFTADGAVYGLPYAIENIALIRNTELADTAPATWDEAISMGEDADTKYPFLIQTGTEGDPYTYYPFQTSFGAPVFEQNEDGSYSPELAMGGEAGDAYAQWLAEQGEAGTLTTDITYDIAVEAFAKGQSPFIVGGPWMLEQFADLDLAIDPVPAAGDQAAQPFVGVQGFYVSAQSENALLANDFLVNFLSTQDAQTALFEAGGRPPALTAAADAASSDPIVAGFREVGAEAVPMPSIPEMGSVWAFWGVTEANIISGSADPAEAWSKMISDIEGALDS	PGPT0016315_942	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016315-cycB|ganO-K15770	NA	NA
AK001_00096	1044	degA_1	COG1609	HTH-type transcriptional regulator DegA	GTGTCCCTTACGATCGCAGGCGTGCGCACCCGACTGAGCGACCTGGCCGACCAGGCCGGGGTCTCCACCGCGACGGTGTCGCGCGTGCTCAACGGCAAGCCCGGTGTCGCCAGCTCCACCCGCCAGGCCGTCCTGGCGGCCCTGGACGTGCTCGGCTACGAGCGCCCGTCGGCGCTGGCCGGCCGGTCGGCCGGCCTCGTCGGCCTCGTGGTGCCCGAGCTCACCAACCCCGTCTTCCCGGCGTTCGCCCAGGCGGTGGAGTCGATCCTGGCGCAGCGAGGCTACACGCCGCTGCTGTGCACCCAGGCCCCGGGAGGGACCACCGAGGACGAGTACGTCTCGACCCTCGTGGACCACTCGGTCGACGGCATCATCTTCATCTCCGGCCTGCACGCGGACACCCGCGCCAGCCACGCGCGCTACGAGCTGCTGCGCGGCCAGGGCGTGCCGATCGTGCTCGTCAACGGCTACGCGCCGGGCATCGACGCCCCGTTCATCTCCCCCGACGACGCCGAGAGCATCGACGTGGCGGTCCAGCACCTGGTCACGCTGGGTCACCGCCGCATCGGGCTCGCCATCGGACCCGAGCGGTACGTGCCCGCCCAGCGCAAGGTCGCGGCGTTCTCCGCGGCCCTGGTCCGGCACGGCCTGGCGTCCGACGAGGCCGCGGCCCGCTCGCACGCCATCAACACGCTGTACACCCTCGAGGGCGGGCAGGCCGCCGCGGCCGACCTGTTCGCGTCGGGCCACACCGCCGTCGTCTGCGGCTCGGACATCATGGCGCTCGGCGCGGTCCGCGCCGCGAGGGCCCAGGGCCTGGACGTGCCCGGGGACGTGTCGGTGGTGGGCTACGACGACGCCCCGCTCATCGCCTTCACGGAACCGCCGCTGACCACGGTCCGCCAGCCGGTGGACGCCATGGCCAACGCGGCCGTCAGCGCGCTGCTGACCGAGATCGGCGGCGACCGCGCCCCCCGCACGGAGCTGCTCTTCTCCCCCGAGCTGGTCGTGCGCGGTTCCACCGGCCCCGCGCCCCGCGACTGA	MSLTIAGVRTRLSDLADQAGVSTATVSRVLNGKPGVASSTRQAVLAALDVLGYERPSALAGRSAGLVGLVVPELTNPVFPAFAQAVESILAQRGYTPLLCTQAPGGTTEDEYVSTLVDHSVDGIIFISGLHADTRASHARYELLRGQGVPIVLVNGYAPGIDAPFISPDDAESIDVAVQHLVTLGHRRIGLAIGPERYVPAQRKVAAFSAALVRHGLASDEAAARSHAINTLYTLEGGQAAAADLFASGHTAVVCGSDIMALGAVRAARAQGLDVPGDVSVVGYDDAPLIAFTEPPLTTVRQPVDAMANAAVSALLTEIGGDRAPRTELLFSPELVVRGSTGPAPRD	PGPT0021075_83	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499	NA	NA
AK001_00097	1779	malL	COG0366	Oligo-1,6-glucosidase	ATGGCCACCACCGAGCCGACCATCCCGACACCGGAGCGCCTCGCCGCGGGCGCCACGGTCCACGTCGGGTCCGAGACCGCCCGCGAATGGTGGCGGGACGCCGTCATCTACCAGGTCTACCCGCGCTCGTTCGCCGACGGCAACGGGGACGGCATCGGCGACATCCCCGGCATCACGGCACGCCTCGACCACCTCCAGACCCTCGGCGTCGACGCCGTCTGGCTCTCGCCCTTCTACCGCTCGCCGCAGAACGACGCCGGGTACGACGTCGCCGACTACCGCGACGTCGACCCGCTGTTCGGCACCCTCGCCGACTTCGACGCGATGCTCGCCGGCGCCCACGCGCGCGGCATGCGCGTCGTCGTCGACCTCGTGCCGAACCACACCTCCGACCAGCACGTCTGGTTCCAGGCGGCACTGGCCTCCGCCCCGGGGTCCCCGGAGCGCGCGCGCTACATCTTCCGCGACGGCCGCGGCCCGGGCGGCGACGAGCCGCCGAACAACTGGCAGTCCATCTTCGGCGGCCCCGCCTGGACCCGGCTCGAGGCCTCGAGCACGGCCGACGGTGATGCCTACGACGAGCCCAGCCCGCAGTGGTACCTGCACCTGTTCGACTCCACCCAGCCCGACCTCGACTGGAACCACCCCGAGGTGCGCACCGAGTTCACCGACGTGCTGCGGTTCTGGCTGGACAAGGGTGTCGACGGCTTCCGCGTCGACGTCGCCCACGGCCTGGTCAAGGCCGACGGGCTGCCCGACTGGCACGGGCACGTGTCGATGGTCGACGGCGGCACCTCCGACGAGGCCGACCCCGGTGCCCCGGAGGACGGCTCGACCGGCGCCGGCAACCAGGGCCCGATGTTCGACCAGGACGGCGTGCACGAGATCTACCGCACCTGGCACGACGTGCTCGCCGAGTACGACGGCGACCGCTGCCTGGTCGCCGAGGCCTGGGTGGAGCCGCTGTCCCGCCTGGCACGGTACGTGCGCCCAGACGAGATGCACCAGGCGTTCAACTTCTCGTTCCTCACCACCGGCTGGGACGCCGCCGCGCTGCGTCGCGTCGTCGCGGCGTCGTACGAGGCCAACGACGAGGTCGGCGCACCCACCACCTGGGTGCTGTCCAACCACGACGTCGTCCGCCACGTCACGCGGCTCGGCCTGCCCGACGTCGGGGTGCGGCCGAACGGCGTCTTCGCCACCGACCCGCAGCCCGACGAGGAGCTGGGGCTGCGCCGCGGCCGCGCGGCCACGCTGCTCATGCTCGGCCTGCCTGGCTCGGCGTACCTCTACCAGGGCGAGGAGCTCGGCCTGCCCGAGCACACCACGATGCCGAACGACGTGCGCCAGGACCCGGCACACTTCCGCACCGAGGGCGCCGAGGCCGGCCGCGACGGCTGCCGCGTGCCCCTGCCCTGGGCGGCCGACGCCGAGGGCTTCGGTTTCGGCCCGTCCGGCGAGCCCTGGCTGCCCCAGCCCGACTCCTACGCGCGCTACGCGGCGGACGTCCAGTACGGCGTCGAGGGCTCGACCTTCGAGCTGTACCGGTCCGCCCTGGCGACCCGGCGCGCCGAGGGCCTCGGGCACGGCAGCCTGACCTGGCTGGCGGCGTTCGAGGACTCGGCCGACGTCGTCGCGTTCCGCAACGGCGACGTCGTCGTGCTGGCCAACCTCGGCACCGCACCGGTGGCGCTGCCCGACGGCGCGACCGCGCTGCTGGCCTCGGGCCCGGTGGACGGCGAGCTCCCGGCCGACACCACCGTCTGGCTGCGCGCCTGA	MATTEPTIPTPERLAAGATVHVGSETAREWWRDAVIYQVYPRSFADGNGDGIGDIPGITARLDHLQTLGVDAVWLSPFYRSPQNDAGYDVADYRDVDPLFGTLADFDAMLAGAHARGMRVVVDLVPNHTSDQHVWFQAALASAPGSPERARYIFRDGRGPGGDEPPNNWQSIFGGPAWTRLEASSTADGDAYDEPSPQWYLHLFDSTQPDLDWNHPEVRTEFTDVLRFWLDKGVDGFRVDVAHGLVKADGLPDWHGHVSMVDGGTSDEADPGAPEDGSTGAGNQGPMFDQDGVHEIYRTWHDVLAEYDGDRCLVAEAWVEPLSRLARYVRPDEMHQAFNFSFLTTGWDAAALRRVVAASYEANDEVGAPTTWVLSNHDVVRHVTRLGLPDVGVRPNGVFATDPQPDEELGLRRGRAATLLMLGLPGSAYLYQGEELGLPEHTTMPNDVRQDPAHFRTEGAEAGRDGCRVPLPWAADAEGFGFGPSGEPWLPQPDSYARYAADVQYGVEGSTFELYRSALATRRAEGLGHGSLTWLAAFEDSADVVAFRNGDVVVLANLGTAPVALPDGATALLASGPVDGELPADTTVWLRA	PGPT0018560_2890	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
AK001_00098	624			hypothetical protein	ATGAGTACCACCGGGTCGTCGCGCCAGGTCCGCGTGCTGCGCGGCACCCTGGTGGCGACCCTGACCACCGGCGTCGCGCTGGCGTCGCACGTCGCCGGCGGCGGCACCGCGCCCGGCTGGCTCGGTGTCGCCGCCCCCTGGGCGCTCTCGCTGTGGCTGTCCACGCTGCTGGCGGGCCGCCGGGTCTCCCGCTGGCGGACGACCGCCTCCGTCGTCGTCGGCCAGGTGCTCTTCCACACGCTGTTCGTGCTCGGCACCCCGACCGAGGCGGCCGTCCCGTCCGGACCGCACGCCGGGCACGCCGTGCTCGCTCCCCTCACGCCGTCGGCGACCACCGTCGACCTGATCCAGGCCGACGCCCGCATGTGGCTCTGGCACGTGGCGGCCGCTGCCGCGACGGTCGCCCTGCTCTTCCGCGGCGAGCTGTTCCTGCTCCGGCTGCGACGGGCCGCCACGACGGTCGCGGCACGGCTCGCACCCCGCTGGGTCGACCCGGCGGCCGTGGGGTTCGAGGCCCCCGCCGTCCGGACCCACGTGCCGGCCCGACGCCGCACGTCGAGCCTCCCCCGCCCCGAGCTGCGACCTCTGCAGCGCCGTGGGCCCCCGACCCTCTCCGCTCTCTGA	MSTTGSSRQVRVLRGTLVATLTTGVALASHVAGGGTAPGWLGVAAPWALSLWLSTLLAGRRVSRWRTTASVVVGQVLFHTLFVLGTPTEAAVPSGPHAGHAVLAPLTPSATTVDLIQADARMWLWHVAAAAATVALLFRGELFLLRLRRAATTVAARLAPRWVDPAAVGFEAPAVRTHVPARRRTSSLPRPELRPLQRRGPPTLSAL				NA	NA	NA	NA	NA
AK001_00099	543			hypothetical protein	GTGACCACCCGACGCACCACCACCACGCTCGCTCTGCTGCTCGCCGCCGGCTCCCTCGGCCTGGCGGGGTGCACCTCCGACGACGCCGCGGCCGAGGCGACCTCGACCGGGACCTCGACGACCGCCGCGGAGGCGGTGTCGATCCAGGACGCCTGGGTCAAGGCCGCCGACGAGGGCATGACCGCCGGGTTCGGCGAGATCACCAACGGCGGCGAGGCCGAGCTGACCATCGTGGCGGCCTCCACCGGGGCCGCGGCGATGACCGAGCTGCACGAGACCGCCGCCGACTCCGCCGGCGAGATGTCCATGACCGAGGTCGAGGGCGGCTTCGTCATCGCCGCCGGCGAGACCCTCACGCTCGAACCGGGCGGGCACCACCTCATGCTCATGGACCTGACGGATCCGATCCAGGCCGGCGACGAGGTGACGTTCACCCTGACCTTCGCCGACGACTCGACGACCGAGCTCACCGCGACGGTCAAGGACTTCACTGGCGCCGAGGAGAGCTACGGCGACTCCGACACGGAGCACGAGGACTCCTGA	MTTRRTTTTLALLLAAGSLGLAGCTSDDAAAEATSTGTSTTAAEAVSIQDAWVKAADEGMTAGFGEITNGGEAELTIVAASTGAAAMTELHETAADSAGEMSMTEVEGGFVIAAGETLTLEPGGHHLMLMDLTDPIQAGDEVTFTLTFADDSTTELTATVKDFTGAEESYGDSDTEHEDS				NA	NA	NA	NA	NA
AK001_00100	1233	efeN	COG2837	putative deferrochelatase/peroxidase EfeN	ATGGCGGCGTCCGACGAGGGCGCCCGCGGCCGGTCCGGGTCGACCCGGCGGCAGTTCCTCCTCGGAGGTGCTGCCGCCGGTGTCGGCGCGGTCGCCGCGCTCGGCGCCGAGCACGTCCTGGACCGGCCCGGAGCAGCGGCGCGGGATGCCCCCGTGCCGCTGCACGGCACCGAGACGGTCCCGTTCCACGGCGTCCACCAGGCCGGCGTCACCACCGACGCCCAGGCGTACGCCACGTTCGTCGCCCTGGACCTGCACGACGAGGTCGACCGCGAGGCGCTGGGTCGCCTCATGCGGATCCTGTCCGACGACGCCGCCCGGCTGACCCAGGGCGAAGCGGCGCTGGCGGACACCGAGCCCGAGCTCGCCGTCACCCCCGCCCGACTGACGGTCACCTTCGGGTTCGGCCCCCGGTTCGTCGACCGCGCCCGGGGCACCGCGCCGTCGTGGCTCCACCCCTTGCCCGCGTTCGAGATCGACCGGCTCGAACCCGGCTTCAGCGACGGCGACCTGCTGCTGCAGGTGGCCGCGGACGACCAGCTCACCGTGTCCCACGCGACACGGATGCTGCTCAAGGACGCCCGCGGTTTCGCCGACGTGCGCTGGACGCAGCGCGGGTTCCGCCGCGCCCACGGGTCGGTCGCCCCCGGCACGACGATGCGGAACCTGTTCGGCCAGGTGGACGGCACCGCCAACCCGGTGCCGGGCACGGCCGACTTCGACGAGGTCGTGTGGGTCACCGAGGGCTGGATGGCCGGCGGCACGAGCGCCGTCGTGCGCCGCATCCACATGGACCTCGACGAGTGGGACACGGTCGGTCGGGCCGGACGGGAGCAGTCGGTGGGCCGCACCCAGGCCACCGGCGCCCCGCTGACCGGGACCCGGGAGCACGACGAGCCCGACTTCGCCGCGCGGACCGACGCGGGCTTCTCCGTGATCCCGGAGTTCTCGCACCTGCGGCGGGCCCGCGGAGTCGACGAGGGTCGCCACGACCGGATCTTCCGGCGCGGCTACAACTACGACGACGCCCCGAGCGGGGACCACGTGTCGGACGCGGGGCTGATCTTCGCGTGCTTCCAGGCCGACGTGGACGAGCAGTTCACGCCGATGCAGCGCAGGCTCGCCGAGCTCGACCTGCTGAACCGGTGGACGACGCCGATCGGGTCGTCCGTGTTCGCGATCCCGCCGGGGTGCGAGCCGGGCGGGTTCGTCGGCGACACCCTGCTCTCGTAG	MAASDEGARGRSGSTRRQFLLGGAAAGVGAVAALGAEHVLDRPGAAARDAPVPLHGTETVPFHGVHQAGVTTDAQAYATFVALDLHDEVDREALGRLMRILSDDAARLTQGEAALADTEPELAVTPARLTVTFGFGPRFVDRARGTAPSWLHPLPAFEIDRLEPGFSDGDLLLQVAADDQLTVSHATRMLLKDARGFADVRWTQRGFRRAHGSVAPGTTMRNLFGQVDGTANPVPGTADFDEVVWVTEGWMAGGTSAVVRRIHMDLDEWDTVGRAGREQSVGRTQATGAPLTGTREHDEPDFAARTDAGFSVIPEFSHLRRARGVDEGRHDRIFRRGYNYDDAPSGDHVSDAGLIFACFQADVDEQFTPMQRRLAELDLLNRWTTPIGSSVFAIPPGCEPGGFVGDTLLS	PGPT0003720_607	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0003720-efeB-K16301	NA	NA
AK001_00101	1251	dus	COG0042	putative tRNA-dihydrouridine synthase	ATGGCGGGCGTGACTTCCACGCTCGACCCCACCCGCACGACGCCGCAGCCCGCGCCCGCCCCGGACGCGCCGGCGTCGGACGCCCGTGTGCTCCCGCCGCTGCAGATCGGGCCGATCACCGTGGACACCCCGGTGGTCCTGGCCCCCATGGCGGGCGTGACCAACCGAGCCTTCCGCACGCTGTGCCGGCAGGCCGGTGAGTCGACCGGGTTCGACCCGGGCCTGTACGTCGCGGAGATGGTGACCTCGCGCGCCCTGGTGGAGCGCAACTCCGAGGCGCTGCGCATCGTCACCTTCGGCGAGGACGAGACGCCGCGCTCGGCGCAGGTCTACGGCGTCGACCCGGCCACGGTCGGCGAGGCTGTGCGGATCATCGCCGGCGAGGACCGCGCCGACCACATCGACCTGAACTTCGGCTGCCCGGTACCCAAGGTGACGCGCAAGGGCGGTGGCGCGGCGGTCCCGTGGAAGCGTGAGCTGTTCTCCGGCATCGTGCGCGCCGCTGTCGACGCCGCCGAGCCGTACGGCCTGCCGGTGACCGTCAAGATGCGCAAGGGCATCGACGACGACCACCTGACCTACCTCGAGGCCGGCCGGACGGCCGAGTCGCTCGGCGCCGCCGCCGTCGCGCTGCACGCGCGCACCGCCGCGCAGCACTACTCCGGCACCGCCGACTGGACCGCGATCGCGCGGCTCAAGCAGGAGGTGCGCACCATCCCGGTGCTCGGCAACGGCGACGTCTGGGCCGCCGAGGACGCCGTGCGCATGGTGCGCGAGACCGGCGCGGACGGCGTCGTCGTCGGCCGGGGCTGCCAGGGCCGCCCGTGGCTGTTCGCCGACCTCGCCGCCGCGTTCCACGGCTCCGACCTGCGGGTCCGGCCGGGCCTGCGGGAGGTCGCGGACACGATCTACCGCCACGGCGAGCTGATGATCGCCTACTACGACGGCGACGAGGACAAGGGCATGCGCGACCTGCGCAAGCACATGGCCTGGTACCTCAAGGGGTACCCCGTCGGGGGAGACGCCCGCCGCGGGCTGGCGATGATCTCCACTCTCGCCGAGCTGCGCGATCGGCTGGACGGCCTCGACCTCTCCTTGCCGTACCCGGGCGAGGAGGCCGAGGGGCCGCGCGGCCGCGCCGGCAGCCCGAAGAAGCCGCACCTGCCCTACGGCTGGCTGGACTCGCGCGAGCTCGACGCGGAGTTCGAGGCGAAGCTGCGCGAGGCCGAGCTCAGCGTCTCCGGCGGTTGA	MAGVTSTLDPTRTTPQPAPAPDAPASDARVLPPLQIGPITVDTPVVLAPMAGVTNRAFRTLCRQAGESTGFDPGLYVAEMVTSRALVERNSEALRIVTFGEDETPRSAQVYGVDPATVGEAVRIIAGEDRADHIDLNFGCPVPKVTRKGGGAAVPWKRELFSGIVRAAVDAAEPYGLPVTVKMRKGIDDDHLTYLEAGRTAESLGAAAVALHARTAAQHYSGTADWTAIARLKQEVRTIPVLGNGDVWAAEDAVRMVRETGADGVVVGRGCQGRPWLFADLAAAFHGSDLRVRPGLREVADTIYRHGELMIAYYDGDEDKGMRDLRKHMAWYLKGYPVGGDARRGLAMISTLAELRDRLDGLDLSLPYPGEEAEGPRGRAGSPKKPHLPYGWLDSRELDAEFEAKLREAELSVSGG				NA	NA	NA	NA	NA
AK001_00102	156			hypothetical protein	ATGGCACTCTGGCTCATCCTCATCATCGCCGGGCTCGTCTCGCTCGTCCTCGGCCTGGTCGGCCTCGGCCAGTTCTTCGTCTGGGCCGGCGTCATCGCCATGGTGGTGGGCGTCGTGCTCGTGGTCGTCGGCAAGGGGAACCGCAAGGTCGGATGA	MALWLILIIAGLVSLVLGLVGLGQFFVWAGVIAMVVGVVLVVVGKGNRKVG				NA	NA	NA	NA	NA
AK001_00103	144			hypothetical protein	GTGCCCCTCTGGCTCATTCTCATCATCATCGGTGTCGTGCTGCTCGTCCTCGGGCTCACCGGCATCGCAGAGTTCCTGCTCTGGGTCGGTGTCGCCGTGCTGGTCGTCAGCCTGGTCCTGGCCCTGGTGAGACGAGCAAAATGA	MPLWLILIIIGVVLLVLGLTGIAEFLLWVGVAVLVVSLVLALVRRAK				NA	NA	NA	NA	NA
AK001_00104	1395	glyQS	COG0423	Glycine--tRNA ligase	GTGGCAGCACCGTCCGCGACCGCCAAGCTCGACGCCGTCGTCTCCCTCGCCAAGCGCCGAGGATTCGTCTTCCAGTCCGGCGAGATCTACGGCGGGACCCGCTCCGCGTGGGACTACGGCCCCCTGGGCGTCGAGCTCAAGGAGAACATCAAGAAGCAGTGGTGGAAGGCCATGACGCGTCGTCCCGACGTCGTCGGGCTGGACTCGTCGGTCATCCTGCCGACACCGGTCTGGCAGGCCTCCGGTCACCTGGGCGCCTTCACCGACCCGCTGACCGAGTGCCTGAGCTGCCACAAGCGGTTCCGCGAGGACCAGATGATCGAGGAGTTCACCGAGCGCAAGGGCCGCGAGCCCGAGGGCGGCCTCGCCGAGATCGCCTGCCCGAACTGCGGCACCCGTGGCGAGTGGACCGAGCCGCGCGACTTCAACATGATGCTCAAGACCTACCTCGGCCCGGTCGAGGACGAGTCGGGCCGGCACTACCTCCGCCCGGAGACGGCCCAGGGCATCTTCGTGAACTTCGCCAACGTCGCCGCGGCGGCGCGGCAGAAGCCGCCGTTCGGCATCGCCCAGATCGGCAAGTCGTTCCGCAACGAGATCACGCCGGGCAACTTCATCTTCCGCACGCGCGAGTTCGAGCAGATGGAGATGGAGTACTTCGTCGAGCCGGGCTCCGACGCCGAGTGGCACCAGTACTGGATCGACACCCGCATGGCCTGGTACACGGGCCTGGGCATCGACCCGGAGAACCTGCGCCTGTACGAGCACCCGCAGGAGAAGCTCTCGCACTACTCCACCCGCACGGTGGACATCGAGTACCGCTTCGGCTTCACCGGCAGCGAGTGGGGCGAGCTCGAGGGCATCGCGAACCGCACCGACTTCGACCTGTCGACCCACGCGGAGCACTCCGGCAAGGACCTGATGTACCGCGACCCGGTGACCAACGAGAAGTACTTCCCGTACGTCATCGAGCCGGCCGCCGGTCTGACCCGTTCCCTCATGGCCTTCCTCGTCGAGGCGTACGCCGAGGACGAGGCGCCCAACACCAAGGGCGGCGTCGACAAGCGCACCGTGCTGCGCCTGGACAAGCGCCTCGCTCCGGTCAAGGCGGCAGTGCTCCCGCTGTCCAAGAGCTCCGAGCTGCTGCCCACGGCCGAGAAGCTCGCCGCGGACCTGCGGCAGTACTGGAACGTCGACTACGACGTCACCCAGGCGATCGGCAAGCGGTACCGCCGCCAGGACGAGATCGGCACGCCGTACTGCGTCACCGTCGACTTCGACACCCTGGACGACCAGGCGGTGACCATCCGCGACCGCGACACGATGAGCCAGGAGCGCGTCTCCCTGGACAAGGTCGCCGGCTACCTCGCGGAGAAGATGCCCGGAGTCTCCTGA	MAAPSATAKLDAVVSLAKRRGFVFQSGEIYGGTRSAWDYGPLGVELKENIKKQWWKAMTRRPDVVGLDSSVILPTPVWQASGHLGAFTDPLTECLSCHKRFREDQMIEEFTERKGREPEGGLAEIACPNCGTRGEWTEPRDFNMMLKTYLGPVEDESGRHYLRPETAQGIFVNFANVAAAARQKPPFGIAQIGKSFRNEITPGNFIFRTREFEQMEMEYFVEPGSDAEWHQYWIDTRMAWYTGLGIDPENLRLYEHPQEKLSHYSTRTVDIEYRFGFTGSEWGELEGIANRTDFDLSTHAEHSGKDLMYRDPVTNEKYFPYVIEPAAGLTRSLMAFLVEAYAEDEAPNTKGGVDKRTVLRLDKRLAPVKAAVLPLSKSSELLPTAEKLAADLRQYWNVDYDVTQAIGKRYRRQDEIGTPYCVTVDFDTLDDQAVTIRDRDTMSQERVSLDKVAGYLAEKMPGVS				NA	NA	NA	NA	NA
AK001_00105	1038	znuA	COG0803	High-affinity zinc uptake system binding-protein ZnuA	ATGAACCGTCGTGCCACGCTCGGCCTCGCCGCCGCGCTCCCCCTGAGCCTCGTCCTGACCGCCTGCGCCACCGACAGCGGCGGCAGCGACGACGCAGGGGCCGACGGCGTGCAGGTCCTCGCCTCGTTCTACCCGCTGCAGTACGTGGCCGAGCAGGTCGGCGGCGACCTCGTCAGCGTCGACAACCTCACGCCCCCCGCGGCGGACCCGCACGACCTCGAGCTGGCGCCCGCCCAGGTGCGCGAGCTCGGCGAGGCCTCCCTCGTCGTCTACCTGTCGGGCTTCCAGCCCGCCGTGGACGAGGGCGTGGAGGCGCGCTCACCGGAGCACGTCGTCGACGCCGCGGACGTCGTGACGCTGGAGGAGAGCCCCGGGACCGTCCTGCACATGGACGAGGACGAGGAGCACGCCGACGAGCACGGCCACGAGGGCGAGACGGCCGAGGAGCACGCCGAGCACGCCGACGAGGACGAGCACGCCGAGGAGGGCGAGGACGACCACGACCACGGCGCTCTCGACCCGCACTTCTGGCTCGACCCCACCCTGCTGGAGCCGGTCGCCGACGCCGTCGCCACCGAGCTCTCCGCGGCGGACCCGGACAACGCCGAGACCTACGCGGCCAACGCCGAGGCGCTGAAGTCCACCCTGGACGACCTCGACGCCGAGTTCGCCACCGCGCTGGAGCCCTGCGCCGGCGAGACGCTCGTGACCAGCCACGCCGCCTTCGGCTACCTGGCCGAGCGCTACGGCCTGACGCAGATCGGCATCGCGGCGATCGACCCGGAGGCCGAGCCCTCCCCCGCCCGTCTGCGCGAGATCGGCGAGGTCGTCGAGGAGAACGACGTGCAGACGATCTTCACCGAGACCCTCACCAGCCCCAAGGTCGCCGAGACCCTCGCCGACGACCTCGGCGTCGCCACCGCCGTGCTCGACCCGCTCGAGGGCCTGTCCACGGAGGACCTCGACGCCGGAGCGGACTACGTTGCTGTCATGGACGAGAACCTCGTGACGATCACCGACGGCCTGGGGTGCGCATGA	MNRRATLGLAAALPLSLVLTACATDSGGSDDAGADGVQVLASFYPLQYVAEQVGGDLVSVDNLTPPAADPHDLELAPAQVRELGEASLVVYLSGFQPAVDEGVEARSPEHVVDAADVVTLEESPGTVLHMDEDEEHADEHGHEGETAEEHAEHADEDEHAEEGEDDHDHGALDPHFWLDPTLLEPVADAVATELSAADPDNAETYAANAEALKSTLDDLDAEFATALEPCAGETLVTSHAAFGYLAERYGLTQIGIAAIDPEAEPSPARLREIGEVVEENDVQTIFTETLTSPKVAETLADDLGVATAVLDPLEGLSTEDLDAGADYVAVMDENLVTITDGLGCA	PGPT0004220_998	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	ROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815	NA	NA
AK001_00106	807	glnQ_1	COG1126	Glutamine transport ATP-binding protein GlnQ	ATGATGGCTCCGGCCATCGACGTCCGCGACCTCCACGTCCACCTGGGCGCCAGCCACGTGCTGCGCGGGGTCGACCTGCGCGTGGACCACGGCGAGGTCGTCGCGCTGCTCGGCGCCAACGGGTCGGGCAAGTCCACCCTGGTGCGGACCGTCGTCGGCGTGCTGGAGCCGACCCGCGGCGAGGTGGACCTGCTGGGCCACCGGCTCGGCGACGACGTGCCCTGGCAGCGCGTGGGCTACGTGCCGCAGCGCGTGAGCGCGGCCGCCGGCGTCCCGTCGACCGCGGCCGAGGTCGTCGCCTCCGGGCTCCTGCACGGCCGCCGCCTCGCCCTGCCGCGCGGATGGCGCCGCCTGGCACGCGAGGCGCTGGAGCAGGTCGGCCTCGCCGACCGCGCCGACCACGCCACCGGCCAGCTCTCCGGCGGCCAGCAGCAACGGGTCCTCATCGCCCGCGCACTGGTCCGCAAGCCGGAGCTGCTCGTCCTGGACGAGCCGGTCGCCGGCGTGGACCGGCCCAGCCAGGAGGCGTTCGCCGCCACCATGGCCCGCCTGGTCGACGACGGCCTGACGGTCCTCGTCGTGCTGCACGAGCTCGGCGAGCTCGCCGGCCTCATCAGCCGCGCCGTCGTCCTGCGGCACGGACAGGTCGTGCACGACGGCGCTCCTCCGCGCCCGCACGCCGAGCACGGGTCGCGCGAGCACGAGCACGTCCACCCCCACACCTCCGAGGTACCGGTCGTCGGCGCCCACGACGTCGGGCTCTCCGACGGCCCTCTGCTGACCGGCGAGCAGGAGGCCCGCCCATGA	MMAPAIDVRDLHVHLGASHVLRGVDLRVDHGEVVALLGANGSGKSTLVRTVVGVLEPTRGEVDLLGHRLGDDVPWQRVGYVPQRVSAAAGVPSTAAEVVASGLLHGRRLALPRGWRRLAREALEQVGLADRADHATGQLSGGQQQRVLIARALVRKPELLVLDEPVAGVDRPSQEAFAATMARLVDDGLTVLVVLHELGELAGLISRAVVLRHGQVVHDGAPPRPHAEHGSREHEHVHPHTSEVPVVGAHDVGLSDGPLLTGEQEARP	PGPT0004230_279	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817	NA	NA
AK001_00107	930	znuB	COG1108	High-affinity zinc uptake system membrane protein ZnuB	ATGAGCGAGATCGCGTCCATGCTCACCGACCCCCTCATGCAGCGCGCCCTGCTGGCCGCCCTGCTCGTCGGGGCTGCCGCCCCGGTGGTCGGCACCTACCTCGTCCAGCGCCGTCTCGCCCTGCTCGGCGACGGCATCGGCCACGTCGCGCTGACCGGCGTGGCCCTCGGCTGGCTCGTCGGCTCGGCCATGGGCCTGGTCCCCAACGACGTGCTCGCCATCCCCGGCGCGGTGGTGGCCGCCGTCGTCGGCTCCGTCCTCATCGAGGTGGTCCGGCGGCGCGGGCGCACCTCGGGCGACCTCGCCCTGGCCATCATGTTCTACGGGGGCATCGCCGGCGGCGTCCTCATCATCACCGTCGCCGGCGGCTCGTCGGGCAGCCTCATGGCCTACCTGTTCGGGTCGATCTCGACGGTCACCACCACCGACCTGATCCTCACCGTGGTGCTGTGCCTGGTGATCCTCGCCGTCGGCGTCGGGCTGCGTCCGGCGCTGTTCTCGGTGAGCCACGACGAGGAGTTCGCCGTCTCCTCCGGCCTGCCGGTGTGGGCGCTCAACATGGCCGTGGCCGTCCTCGCCGCGCTGACCGTCACGGTCGCGATGCGGGTGGTCGGGCTGTTGCTCGTCTCCGCCCTGATGATCGTGCCGGTCGCGATCGGCCAGCTCGTGACGCACTCGTTCCGCCGCACCATGGGCGTGGGCTCCGTGGTCGGGGTCGTCGTGTGCGTGACCGGCCTGAGCATCAGCTACTGGTACCCGCTCTCCCCCGGCGCCCTCATCGTGGTGCTCGCCATCGGCGTCTACGCCGTCGTGGCGGGGCTGCACCCGCTCCTCGCGCGCCGCCGCCCCGCCGGCGACCCGCACCCGGACATCCCCGACGACGTCCAGGTTGCCCCCCGGGCACCCGCGGACGCAGACTGCACACCATGA	MSEIASMLTDPLMQRALLAALLVGAAAPVVGTYLVQRRLALLGDGIGHVALTGVALGWLVGSAMGLVPNDVLAIPGAVVAAVVGSVLIEVVRRRGRTSGDLALAIMFYGGIAGGVLIITVAGGSSGSLMAYLFGSISTVTTTDLILTVVLCLVILAVGVGLRPALFSVSHDEEFAVSSGLPVWALNMAVAVLAALTVTVAMRVVGLLLVSALMIVPVAIGQLVTHSFRRTMGVGSVVGVVVCVTGLSISYWYPLSPGALIVVLAIGVYAVVAGLHPLLARRRPAGDPHPDIPDDVQVAPRAPADADCTP	PGPT0004225_173	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816	NA	NA
AK001_00108	411	zur	COG0735	Zinc uptake regulation protein	ATGAACCAGCCGCTGCGCATGACCAAGCAGCGGGCCGCCGTCGCCGAGGTCCTGGACGCCAGCGACGAGTTCCGCAGCGCGCAGCAGCTCCACGAGCTGCTGCGCGACCGCGGCGACACCGTCGGGCTCGCCACCGTGTACCGCACCCTGCAGGCCCTGGCCGACGGCGGGGACGTGGACGTGCTGCGCACGGACGACGGCGAGGCGCTCTACCGGCGCTGCGCACGCGCCGAGCACCACCACCACCTGGTGTGCCGCTCCTGCGGGCGCGCGGTCGAGATCGACGGCCCCACGGTCGAGTCCTGGGCGGCCGAGGTCGGGGCGTCCCAGGGCTTCTCCGACATCGAGCACACGATCGAGCTCTGGGGCACCTGCGCCCAGTGCCGCGCGAACGTGACGAAGTCGAGTTAG	MNQPLRMTKQRAAVAEVLDASDEFRSAQQLHELLRDRGDTVGLATVYRTLQALADGGDVDVLRTDDGEALYRRCARAEHHHHLVCRSCGRAVEIDGPTVESWAAEVGASQGFSDIEHTIELWGTCAQCRANVTKSS	PGPT0003880_4910	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711	NA	NA
AK001_00109	546			hypothetical protein	ATGCTCACCGCCTCGCTGCTCGCCGCCGCGTCCTCGGACGCCGAGCGGCACGGCGTGTTCACCCTCGAGGGCTTCCCGTACTGGATCGTCTACGTCGCGGCCTTCGGCATCGTCATGGCCCGCGCCCAGGCGACGTACTGGCTGGGGCGCGGCGTCGCCCGGGGCGTCGGCGGCACGCGGGTCGCCCGGCTGCTGACCGGGCCGCGCGCCGCCCGCGTCATCGAGCAGATCCACCGGTGGGGCCCGCCGGCGGTGACCTTCTCCTTCCTGACCGTCGGGGTGCAGACCGTCGTCAACCTCGCCGCGGGCTACCTCCGCATGCCGTTCGCCCGCTACCTGGTCGCCCTGGTCTTCGGCTGCCTGATCTGGGCGGCGATCTGGACGACCGTCGGCACCGCGGTCGTCTGGGGCGCCATCCTGCTGTTCCTGCACCAGCCCGCCGTGCTGGCGGCCCTGGTCGTGCTCGGCCTCGCCACGACCGCGTGGCTGCTGTCCCGCCGTCGTGCCCGCGACAAGGACCCCCAGCCGCAGCCGGAGGAGGTCTGA	MLTASLLAAASSDAERHGVFTLEGFPYWIVYVAAFGIVMARAQATYWLGRGVARGVGGTRVARLLTGPRAARVIEQIHRWGPPAVTFSFLTVGVQTVVNLAAGYLRMPFARYLVALVFGCLIWAAIWTTVGTAVVWGAILLFLHQPAVLAALVVLGLATTAWLLSRRRARDKDPQPQPEEV				NA	NA	NA	NA	NA
AK001_00110	1038	yfiZ	COG0609	putative siderophore transport system permease protein YfiZ	ATGCTCGCCGCCCCCGCCGCGGTCCCGGTCTCCGGGGCCGAGCAGGTCGCCCGACGCGCGCGACGCCGGGTCCTGGCGTGCGTGCTCGCCCTCGTGGCGCTGGCGCTCGTGGTGCTCCTGAGCCTGGTGCTCGGCGTGCGGGACGTGTCCCTGCCCGTCGTGTGGCAGGCGCTCACCGACCCCGTGGCGGGGAACGTCGACCACCAGGTGATCGCCGGCCAGCGGGTGCCGCGCGCCCTGGTCGGCATCGCCGCCGGGCTCGCCCTCGGCGTCGCCGGCGCCGTCATCCAGGGCGTCACCCGCAACCCCATCGCCGACCCGGGGCTGCTCGGACTGAACTCCGGCGCCTCCTTCGCCGTCGTCTGCGCCGTCTGGCTGCTCGGCCTCACCGCACCGTCGCAGTTCGTCTGGTTCGCCTTCCTGGGCGCCGCGGGGGCGGCCGCGCTGGTCTTCTCGATCGGTGCCGGACAGCCGGTCAAGCTCGCCCTCGTCGGGGCGACCGTCACCGCGCTCATCACCCCGCTCATCACGCTGGTGCTGCTGCGCGACCAGCAGGCGTTCAACCTCTACCGCTTCTGGGCCGTCGGGTCCCTCACGGGTCGCGGGACCGAGACGCTCCTGGTGGTGCTGCCGTTCCTCGCCGTCGGCGTGGTCCTGGCCGCCGGCCTCGCGCACCGGCTCAACATGCTCGCCCTCGGCGACGACATCGCCCGCGGGCTCGGCCAGCGCGTCGGCGTCACCCGGACCGTGGCCGGCGTGACGATCGTGCTGCTCGCCGGGGCCGCCACCTCCCTGGCCGGGCCCATCGCCCTGGTCGGCCTCGCCGTCCCGCACGCCGCCCGTCGCCTGGTCGGCACCGACTACCGCTGGGTGATCATGCTGTCGGCGCTGCTCGGACCGGTGATGCTGCTCGGCGCCGACGTCATCGGCCGGCTGGTGCTGCCGCACAGCGAGCTGGAGGCCGGCGTCGTCGCCGCGGCGCTCGGCGCCCCCGTCCTCGTCGCGGTCGCCCGCGGCAAGAAGGTCGCGGGGGTGTGA	MLAAPAAVPVSGAEQVARRARRRVLACVLALVALALVVLLSLVLGVRDVSLPVVWQALTDPVAGNVDHQVIAGQRVPRALVGIAAGLALGVAGAVIQGVTRNPIADPGLLGLNSGASFAVVCAVWLLGLTAPSQFVWFAFLGAAGAAALVFSIGAGQPVKLALVGATVTALITPLITLVLLRDQQAFNLYRFWAVGSLTGRGTETLLVVLPFLAVGVVLAAGLAHRLNMLALGDDIARGLGQRVGVTRTVAGVTIVLLAGAATSLAGPIALVGLAVPHAARRLVGTDYRWVIMLSALLGPVMLLGADVIGRLVLPHSELEAGVVAAALGAPVLVAVARGKKVAGV	PGPT0003770_4838	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_00111	1050	fepG	COG4779	Ferric enterobactin transport system permease protein FepG	ATGACCACGACTCTCCCTCCCGCCACCGCCGTCTCCCCGGTCGTCCGGCTCCGCGCCCGCCGCCGCCGTCGGCGCACGCTCGTGCTCGGCGTGCTCGCGGTGGTGATCGTCGCGCTGGCGGCCCTCGCCCTGACGCTCGGCGCCGCCTCGCTGTCCCCGAGCCGGGCGCTGCTGGCCGCCGTGGGCGTCGGCGACGACGGCGACCTGTTCATCGTGCAGCGGCTCCGGCTCCCCCGGCTCGCCGCCGCCCTGCTGGCCGGCGCCGCGTTCGGCCTCGCCGGCGCGCTGTTCCAGTCGACGCTGCGCAACCCGCTGGCCAGCCCCGACATCCTCGGCATCGCCACCGGCGCGTCCGTCGGCGCGGTGTACGCGATGCTCGGACTGGGCCTGACCGGGCTCGCCGTGTCGGCGGGCGCGTTCGGCGGCGCGGCCGTCATCGCGCTGCTCATCTGGTTCTTCGCCTGGCGCCAGGGACTGCACTCCATCCGGTTCGTGCTCGTCGGGGTGGGCTTCGCCTACCTCGCCTCGTCGGTCCTGGCCTGGATGCTCGCGAGCGCCGACCAGCGCGACGCCGCGTCGGCCCTGGTGTGGACCGTGGGCAGCGTGGCGGACGTGCGCGGCACCCCCCTCGTCGTGCTCGGCCTGGGCCTCGCCGCCCTGGCGCTGGTCGTCGCGCTGATCTCCCGGTGGCAGGCGCCTCTGGCACTCGGCGACGACCACGCCCGCGGACTCGGCGTGCCGACCGACGCGGCCCGGATCGGCTCGCTGCTCGCCGCGGTCGGGCTCGTCGCGCTGGCGACCTCCGTCGTCGGCCCCCTGGCGTTCGTCGCGCTCGTCGCCCCCGCCATCGCCCGACGCCTCCTCGACGACGGCGGTCCCGCCCTGTCCGTGTCCGTCGCCACGGGCGCCACCCTGGTGCTCGCCGCCGACATCGTCGCGGAGAACGGCCTGCTCGGCGTGGCCGCCCCGACCGGCATCGTCACCGGGCTGGTCGGCGCCCCGTACCTGCTGTGGCTGCTGGCCACCCACGAGAAGAGAACTCGCGCATGA	MTTTLPPATAVSPVVRLRARRRRRRTLVLGVLAVVIVALAALALTLGAASLSPSRALLAAVGVGDDGDLFIVQRLRLPRLAAALLAGAAFGLAGALFQSTLRNPLASPDILGIATGASVGAVYAMLGLGLTGLAVSAGAFGGAAVIALLIWFFAWRQGLHSIRFVLVGVGFAYLASSVLAWMLASADQRDAASALVWTVGSVADVRGTPLVVLGLGLAALALVVALISRWQAPLALGDDHARGLGVPTDAARIGSLLAAVGLVALATSVVGPLAFVALVAPAIARRLLDDGGPALSVSVATGATLVLAADIVAENGLLGVAAPTGIVTGLVGAPYLLWLLATHEKRTRA	PGPT0003770_2978	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_00112	882	yusV	COG1120	putative siderophore transport system ATP-binding protein YusV	ATGATCGACATCCCGCACCGCCCCGACGTCCGCCCGGCGCCGACCGCCGCCGGGGCGCTCGTCGCGCACGGCGTCTCGATCGGCTACGACGGCCACCGGGTCATCGACGGTCTCGACCTGACGCTGCCCGCCGGGAAGGTGACCTCCGTCGTCGGCCCGAACGCCTGCGGCAAGTCCACGCTGCTGCGTGGACTGGCCCGCCTGCACCCCCTGGAGGCCGGGCGCGTGACGCTGGGCGACCGGGACGTCACCTCGATGCCCCGCAAGGAGCTGGCCCGGTCCGTCGGCGTGCTGCCGCAGACGTCGGTCGCGCCCGACGGCGTCCGGGTCGCGGAGCTCGTCGGGCGGGGCCGCTACCCGCACCAGGGCTGGTTCGGGCGGCACTCCAGCGACGACGACGCCGTGGTGCTGCGGTCGCTGGAGGCCACCGGGGTCGCCGACCTCGCCGACCGGCCCGTGGCCGAGCTGTCCGGCGGCCAGCGGCAGCGGGTCTGGGTCGCCATGGTGCTCGCCCAGGAGACCGACGTCGTGCTGCTCGACGAGCCGACGACGTTCCTCGACGTCGCCCACCAGGTCGAGCTGCTCGACCTGCTGACCGACCTCAACGCCGAGCGCGGCACGACCGTGGTGATGGTGCTGCACGAGCTGAACCTCGCCGCCCGCTACGCCGACCATCTCGTGGTGATGAGCGCCGGCCGGGTGGTGGCCGAGGGGTCTCCGGCCGAGGTCCTCGACGCCCGCACGGTGCTCGACGCCTTCGGCCTCGACGCGAAGGTCGTCCCGGACCCGGTCGCGGGCACGCCACTCATCGTGCCGGTGGGGCGGCATCGCCGCGCCGACGGGTCCCTCGCGCCGGACGGGTCGGCCGAGCACGGTCGCTGA	MIDIPHRPDVRPAPTAAGALVAHGVSIGYDGHRVIDGLDLTLPAGKVTSVVGPNACGKSTLLRGLARLHPLEAGRVTLGDRDVTSMPRKELARSVGVLPQTSVAPDGVRVAELVGRGRYPHQGWFGRHSSDDDAVVLRSLEATGVADLADRPVAELSGGQRQRVWVAMVLAQETDVVLLDEPTTFLDVAHQVELLDLLTDLNAERGTTVVMVLHELNLAARYADHLVVMSAGRVVAEGSPAEVLDARTVLDAFGLDAKVVPDPVAGTPLIVPVGRHRRADGSLAPDGSAEHGR	PGPT0003760_415	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_00113	1077			hypothetical protein	GTGCTTCGTCGCCGCTCCCTGACCACCGCCGTCGGCCTCGCCGCCGTCGGCGCCCTGACGCTGACCGCCTGCTCCGGCGGGAGCGACCCGGAGACGGACTCCGCCGAGGAGACCGCCGCGGCCGAGGAGTCGACCGAGGACGCCGGCGGCGCCACGGACGAGTTCCCGGTCACGATCTCCCACGCCCTGGGCGAGACGACGATCGAGTCCGAGCCGCAGCGCGTGGCCACCTGGGGCTGGGGCTCCACCGAGGCGGCGCTGGCCGTCGGCGTCGCACCCGTCGGTGTCGCCGAGCAGGTCTTCACCGTCGGCGAGCAGGCGCTCGTGCCGTGGGTCGCCGAGGAGTACGAGGCGCTCGGCGCCGAGGAGCCGGTCATCTTCACCGATCCCGAAGCGGGCGCGTCCGTGCCCTACGAGGAGTTCGTCGAGGCCGACCCCGACCTCATCCTGGCGCCCTACTCCGGTGTGACCGAGGAGCAGTACGAGGTGCTCTCCGACATCGCGCCCGTCGTGGCCTACCCGGAGGGCCCCTGGACCACGCCGTGGGACGAGATCATCACCATCACCGCCGAGGCCCTGGGCCGCTCCGCGGCCGGTGAGCAGGTCCTGACGGACATCGACACCTACTTCGCCGACCTCGCCGCCGAGCACCCCGCGTTCGAGGGCAAGACCTTCGCCGCCGTCGTCGACTCCCCCTCCGAGGGCCTGGTGTACGTCTACACCCCGGCCGACCCCCGCGTGAGCATCCTCGAGGGCCTCGGCGTCGTCTCGGCCCCGTCGGTCACCGAGCTCGACTCCTCCGACGGCGGGTTCTTCTACACGCTGTCCTACGAGGAGCTCGACCGGCTCGAGTCGGACTTCCTCATCGCCTACACGTACACCGAGGAGGAGGCCGAGACCTTCGGCGAGTCCGACGAGCTCCAGGCGATCCCCGCGATCGCCGACGGCAACGTCGTCAAGGTCGTCGGCAACGTCGCCGTCTCGTCCGTCTCGCCGCCCACGGCCCTGTCCTACGACTGGCCCGACGGCGTGCCCGCCATTGTCGACCAGCTCGCGGAGCTCTACCCCGAGAGCTGA	MLRRRSLTTAVGLAAVGALTLTACSGGSDPETDSAEETAAAEESTEDAGGATDEFPVTISHALGETTIESEPQRVATWGWGSTEAALAVGVAPVGVAEQVFTVGEQALVPWVAEEYEALGAEEPVIFTDPEAGASVPYEEFVEADPDLILAPYSGVTEEQYEVLSDIAPVVAYPEGPWTTPWDEIITITAEALGRSAAGEQVLTDIDTYFADLAAEHPAFEGKTFAAVVDSPSEGLVYVYTPADPRVSILEGLGVVSAPSVTELDSSDGGFFYTLSYEELDRLESDFLIAYTYTEEEAETFGESDELQAIPAIADGNVVKVVGNVAVSSVSPPTALSYDWPDGVPAIVDQLAELYPES	PGPT0003765_2819	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016	NA	NA
AK001_00114	798		COG0020	Trans,polycis-polyprenyl diphosphate synthase ((2Z,6E)-farnesyl diphosphate specific)	ATGCCCCGCGCCGCCCGCCCCTACGACGAGCCGTACCCGCACCCGTCCGGTGCCACCCCGCCGGAGATCCCCGCCCAGTTCGTGCCGAACCACGTCGCGATCGTCATGGACGGCAACGGCCGGTGGGCCAACGCGCGGGGGCTCTCCCGGATCGAGGGGCACAAGGAGGGCGAGAAGTCCCTGCTCGACGTCGTGGCGGGCGCCGTGCAGATCGGCGTCAAGCACGTCTCGGCCTACGCGTTCAGCACCGAGAACTGGAAGCGGTCGCCCGAGGAGGTGAAGTTCCTGCTCGGCTTCAACCGCGACGTGATCCGCCGACGCCGGGACGAGATGGCCTCCTGGGGAGTCCGGATCCGCTGGGCCGGCCGCCGGCCGAAGCTGTGGGGCTCCGTGATCGACGAGCTGCAGCGTGCCGAGGAGATGACCAAGGACAACGACCGCTGCACGCTGACGATGTGCGTCAACTACGGCGGGCGGGCCGAGATCGCCGACGCCGCGGCCGCCATCGCCCGGGACGCCGCCGAGGGGAGGATCAACCCGGCCCGCGTCACCGAGAAGACGATCCAGCAGTACCTCGACGAGCCGGACCTGCCCGACGTCGACCTGTTCCTGCGGTCCTCCGGCGAGCAGCGCACCAGCAACTTCATGATCTGGCAGGCGGCCTACGCGGAGATGGTGTTCCTGCCCGAGCCGTGGCCGGAGGTGGACCGGCGGCACCTGTGGCGGGCGGTCGAGGAGTTCGCGCGGCGGGACCGGCGCTACGGGGGAGCGGTGGACACGCCGGGCGCCTCGGCCTGA	MPRAARPYDEPYPHPSGATPPEIPAQFVPNHVAIVMDGNGRWANARGLSRIEGHKEGEKSLLDVVAGAVQIGVKHVSAYAFSTENWKRSPEEVKFLLGFNRDVIRRRRDEMASWGVRIRWAGRRPKLWGSVIDELQRAEEMTKDNDRCTLTMCVNYGGRAEIADAAAAIARDAAEGRINPARVTEKTIQQYLDEPDLPDVDLFLRSSGEQRTSNFMIWQAAYAEMVFLPEPWPEVDRRHLWRAVEEFARRDRRYGGAVDTPGASA	PGPT0024180_641	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806	NA	NA
AK001_00115	735	recO	COG1381	DNA repair protein RecO	GTGCCCCTGTACCGAGACGACGCGATCGTGCTGCGCACCCAGAAGCTGGGCGAGGCCGACCGCATCATCACGTTCCTGACCCGCGAGCACGGCAAGGTCCGCGCCGTCGGGCGGGGGGTGCGGCGCACGTCGTCGAAGTTCGGCGCCCGGCTCGAGCCCTTCATGGCCGTCGACGTCCAGCTCCACACCGGACGCAGCCTGGACTCGGTGACCCAGGTCGAGACGATCGGGCCGTTCGCCCGACAGATCAGCGCCGACTACGTGCTGTACACCGCGGGGGCGGCCATGCTGGAGACGGCCGACCGGCTCGTCTCGCAGGAGCACGAGCCCGCCGTCCAGCAGTACTGGTTGCTCGTCGGTGCCCTGCGGGCTCTGTCCGCCCGGGCGCACGCCCCGGGGCTCGTGCTCAACTCCTACCTGCTGCGGGCGCTGGCCGTGGCCGGGTGGGCGCCGTCGTTCACCGAGTGCGCCCGCTGCGGCGAGCCGGGACCGCACCACGCGTTCGCCGTCGCCCAGGGCGGTGCCGTGTGCACCCGCTGCCGTCCGCCGGGCTCGCCGTCGCCCGCACCGGAGACCTTCGTGCTGCTGGCCGCGCTGCTCGCCGGCGACTGGGACGTCGCCGACGCCGCGGACTCCCGGCACCGCAGCGAGGCGGACGGCCTGGTCGCCGCCTACTCGCAGTTCTACCTGGAGCGCACCCTGCGCTCCTTGCGTCTGATCGAGAGAGAGGCCTGA	MPLYRDDAIVLRTQKLGEADRIITFLTREHGKVRAVGRGVRRTSSKFGARLEPFMAVDVQLHTGRSLDSVTQVETIGPFARQISADYVLYTAGAAMLETADRLVSQEHEPAVQQYWLLVGALRALSARAHAPGLVLNSYLLRALAVAGWAPSFTECARCGEPGPHHAFAVAQGGAVCTRCRPPGSPSPAPETFVLLAALLAGDWDVADAADSRHRSEADGLVAAYSQFYLERTLRSLRLIEREA				NA	NA	NA	NA	NA
AK001_00116	1791	leuA	COG0119	2-isopropylmalate synthase	ATGAAGACCGAGCACACCCACGCCACCAACGGCATCGCCGCGCAGAATCCGCAGCGCAGCTCGCAGATGCCGTACCACCGGTACCTGCCCTTCCACGAGCAGATCGACGTCCACCTGCCGGACCGCACCTGGCCCGACCGCCGCATCGAGAAGGCCCCGCGCTGGTGCGCGGTCGACCTGCGGGACGGCAACCAGGCCCTCATCGAGCCGATGAACGCCGAGCGCAAGCTGCGGATGTTCGAGCTGCTGGTCCAGATGGGCTACAAGGAGATCGAGGTCGGGTTCCCCTCGGCCTCGCAGACAGACTTCGACTTCGTGCGCACGCTCATCGAGTCCGGCCGCATCCCCGACGACGTCGTCATCCAGGTGCTGACCCAGTGCCGCGACCACCTCATCGAACGCACCTTCGACGCGATCCGCGGCGCCAAGCAGGCGATCGTGCACATCTACAACTCCACCTCGATCCTGCAGCGCGAGGTCGTCTTCCGCACCGACCAGGACGGGATCATCGACATCGCCCTGCAGGGCGCGCGGCTGTGCCGCAAGCTCGAGGAGACCGTCCCCGAGACCACTGTCTACTACGAGTACTCCCCGGAGTCGTACACGGGCACCGAGCTGGAGTACGCCGCCCGGATCTGCAACGAGGTGCTCGAGGTCCTGGAGCCGACGGCGGAGCGCCCCGTGATCGTCAACCTGCCGGCGACGGTCGAGATGGCGACGCCCAACGTCTACGCCGACTCCATCGAGTGGATGAGCCGCAACCTCAACCACCGCGAGCACGTCGTGCTGTCCCTGCACCCGCACAACGACCGCGGCACCGCCGTCGCGGCGGCCGAGCTGGGCTACCAGGCCGGGGCCGACCGCATCGAGGGCTGCCTGTTCGGCAACGGCGAGCGCACCGGCAACGTCGACCTGGTCACCCTGGGCATGAACCTGTTCGGGCAGGGCATCGACCCGCAGATCGACTTCACCGTCGGCGGCGGCATCGACGCCATCCGCCGCACGGTCGAGTACTGCAACCAGCTCCCCGTGGCCGAGCGGCACCCCTACGTGGGCGACCTGGTCTTCACGGCGTTCTCCGGCTCGCACCAGGACGCCATCAAGAAGGGCCTGGAGCACATGGCGGCCCGGGCCGAGTCCGAGGGCAAGGCCGTCGACGAGATCACGTGGGGCGTGCCGTACCTGCCGATCGACCCGAAGGACCTGGGCCGGTCGTACGAGGCGGTCATCCGCGTGAACTCCCAGTCCGGCAAGGGCGGCGTCGCCTACCTGCTGCGCACCGAGCACCACCTGGAGCTGCCGCGCCGGCTGCAGATCGAGTTCTCCGGCGTCGTGCAGAAGTTCTCGGACACCGCGGGCAGCGAGGTCACCGGTGCCGACATCTGGCGCATGTTCACCGACGAGTACCTGCCCGTCGAGGAGAACGGCCACGCCGACCTGCAGCCGTGGGGCCGCCTGAAGCTGCGCGAGATCCGGACCCGTGCGGTGCAGGACGGGACCACGACGCTCGAGGCCGACGTCGTCGACCAGGGCACCGAGCAGACGCTGGTCGGCACCGGCAACGGGCCGCTGGACGCGTTCGTCACCGCGATCGCCGGCGTCGGGGTCGACGTCACGGTCCTGGACTACAGCGAGCACGCGATGAGCGCGGGCGGCGACGCGACGGCGGCCGCGTACGTCGAGTGCGCCGTCGGCGACGACGTGCTGTGGGGCGTCGGGATCGACCCGTCGATCACCACCGCCTCGCTCAAGGCGATCGTCTCCGCGGTGAACCGCGCCGAGCACGGCTGA	MKTEHTHATNGIAAQNPQRSSQMPYHRYLPFHEQIDVHLPDRTWPDRRIEKAPRWCAVDLRDGNQALIEPMNAERKLRMFELLVQMGYKEIEVGFPSASQTDFDFVRTLIESGRIPDDVVIQVLTQCRDHLIERTFDAIRGAKQAIVHIYNSTSILQREVVFRTDQDGIIDIALQGARLCRKLEETVPETTVYYEYSPESYTGTELEYAARICNEVLEVLEPTAERPVIVNLPATVEMATPNVYADSIEWMSRNLNHREHVVLSLHPHNDRGTAVAAAELGYQAGADRIEGCLFGNGERTGNVDLVTLGMNLFGQGIDPQIDFTVGGGIDAIRRTVEYCNQLPVAERHPYVGDLVFTAFSGSHQDAIKKGLEHMAARAESEGKAVDEITWGVPYLPIDPKDLGRSYEAVIRVNSQSGKGGVAYLLRTEHHLELPRRLQIEFSGVVQKFSDTAGSEVTGADIWRMFTDEYLPVEENGHADLQPWGRLKLREIRTRAVQDGTTTLEADVVDQGTEQTLVGTGNGPLDAFVTAIAGVGVDVTVLDYSEHAMSAGGDATAAAYVECAVGDDVLWGVGIDPSITTASLKAIVSAVNRAEHG				NA	NA	NA	NA	NA
AK001_00117	1779			hypothetical protein	ATGTCCGACGTCGTCGTCGTCGAGCAGCGCCGTTCGCCGTTCGCCGGGGTGCCGACCCGGGAGATCGTGCGCGACGTCGTCGCCGTGGTCGCGCTGCTGGTGGCCCTGCCGCTGCCCTGGGCGATCGTCACCCTGCGCGGTGTCGACGGCGCCGTGGCCGCGCGAGGCAGCGACCTGCTCTGGGTCGTGCTGGCCACGGTCGCCGCCGTCGTGGTGATCGTCGCCACCTACGCCGACCGTGCCGGGGTGCTGACCGGGGGCTGGAAGCGTCTCGCCGCACCGACCGCGCGGTGGTGGGGCCTGGCACCCTACGGTCTGGTCACGCTGCTGTACCTCGTGCTCGATCTCGTCCGGGCGTCCGCCGACACCGGTGCGGTCGGCGGCGGGCTCGCCGTCGGGCTGGCGGGAGCCGTGCTCGCCGCCGCGGTACCCGACGTGCGGCTGATGACCGGGGCCGCCGTGGTGGTCGCCGTGGGTGCCGTCGCGACCCCCGTGCTGACCCTGGTCGACGGCGTGGCCTGGCCCGACGTGGTCGGATCCGCGCTCGGCGCGCTCCTGGTCCTCGGTCTGCTCTGGGCGACCGCGCGGCGGTTCCTGCGCGGGGACGACGCGGCCGGCGTCGTGCTCCTCGTCCTCGGGGCCGCCGTGGCGGTCGAGGTGACGATGCTCGGCGGCGGTGCGGTCGGGGTCTGGCTCGAGTCGGTCCACGGGCTGCGCTTCGGCCTGCTCCTCCTGCCCGCCGTGGCCGCGACCGCCGTCGTGCCGGTGCTGGCCCGGTGGGACGCCGTCGTCGGGGAACCGGTCGTGGCCACCGCGTCGCGCTGGATCCGCGTCGCGGTCCAGGCGTTCGAGCTGATGCTGCTGGTCGCGGCCTTCGTCGTGGTCGTGGCCGTGGTCCAGCTCGTGGCCGGGCGGATCGAGGTCGAGCCGGTGCTGCGGCTGATCGTCGGCGTGCTCGTCGTCGTGGTGGCGCTCCTGGCGCGGCGCGCCCTGCTGCGCGACCCGCGCGGCGGTCACGCGACGGCGGTCGGGGCCGCGTGCGTCGTCGTCGTGCTCGGCGTCGTCATCCTCGTGGCACGTGCCGGGATCGGGACGGCCTCGCGGGTGGAGGAGCTGCTGCTGGCGCTCGCGCTGCCCGCCCTGGTGCTCGCCGCGCTCATCGTGCCGCCGTCGGTTGCGACGTTCCTCGCGGCCGACCCGCAGGGTTCCGCGCAGCCGGTGCCCGGCCGGCCGCAGCAGCCGTTCGGTGCGCAGCCGGGCTACGCGCAGCCGGGCTACGCCGAGCCCGCGCAGCCGGCACAGCCGGCGCACCCCGGCTACGCGGAGGCCGCACAGCCCGAGCCCGCACAGCCCGAGCCCGCGCAGGCAGCCGAGACCGAGCCGGGCTCGCGCTGGCGGGGAACCTGGGCGGCGGGCACGGACGCGACGCAGCAGATGTCGCCGGTGCGCTCGGCCGCGACGGGTGAGCAGCCGTCCGCGCACGGGGCCCCGTCGGTGGCCGACGCGACCGCCGTGCAGCAGCCGGTCCAGCAGGGTGCGGCGCCGGCCGAGTCCACGCAGATGCTGCCGCCGGTCACCCACGTGCCCGGCAGCCCCTGGACCCCCGAGCAGGCGCTCGACCCGCACACGCCGCTGGAGCAGCTCGCGCAGATCGTCCAGGAGGCACCCCACCTGCGGCCGCACGTCGCGGCGAACCCCTCGACCTACCCGGCGCTGCTCGACTGGCTGGGCGCGCTGGGCGACCCGTCGGTCGACGCCGCGCTGCGCACCCGCCGCTGA	MSDVVVVEQRRSPFAGVPTREIVRDVVAVVALLVALPLPWAIVTLRGVDGAVAARGSDLLWVVLATVAAVVVIVATYADRAGVLTGGWKRLAAPTARWWGLAPYGLVTLLYLVLDLVRASADTGAVGGGLAVGLAGAVLAAAVPDVRLMTGAAVVVAVGAVATPVLTLVDGVAWPDVVGSALGALLVLGLLWATARRFLRGDDAAGVVLLVLGAAVAVEVTMLGGGAVGVWLESVHGLRFGLLLLPAVAATAVVPVLARWDAVVGEPVVATASRWIRVAVQAFELMLLVAAFVVVVAVVQLVAGRIEVEPVLRLIVGVLVVVVALLARRALLRDPRGGHATAVGAACVVVVLGVVILVARAGIGTASRVEELLLALALPALVLAALIVPPSVATFLAADPQGSAQPVPGRPQQPFGAQPGYAQPGYAEPAQPAQPAHPGYAEAAQPEPAQPEPAQAAETEPGSRWRGTWAAGTDATQQMSPVRSAATGEQPSAHGAPSVADATAVQQPVQQGAAPAESTQMLPPVTHVPGSPWTPEQALDPHTPLEQLAQIVQEAPHLRPHVAANPSTYPALLDWLGALGDPSVDAALRTRR				NA	NA	NA	NA	NA
AK001_00118	1590			hypothetical protein	GTGGTGTTCCGGACGTTCGCGGCCAGCCTGGCCCTGTTGGTCGGGCTCGCCGTGGTGGGCTCCCTGGCCGGTCCGCAGTGGCACCCCGTCCCCGTGCGCGACCACATCGTGCCGACGCGGTCCGCCACCACCATCGAGTCCACCGAGCCCGCGGCGACCGGCGACGTCGGTGAGGTCGGCGACCACGCCGTGCGCACCACCCCGGTGACGGTCGACCTCGGGGACACCACCGTCGACGGGCTGCTGCGCCGGCCGCTGGACGCGGACGGCGCGGTGCTGCCGGACCGCCCCGGCGTGGTGTTCGTGCACGGCGCCGGGACCGGCGCCGCCGAGGAGGCGTTCGTCGACACCGCCGAGCTGCTGGCCAGCGCCGGCGTGGCCACGCTCGTGCCCGACAAGCGGCTGGACACCTACTCCACCCGCGAGCGCGACTACGAGGCGATGGCCGAGGACTACCTGCGCTCGGTCGGGCTGCTGCGCACCGTCGACGGCGTGGACCCCGAGCGGGTCGGCGCCTACGGCGAGTCCGAGGGCACCTGGATCGTCCCGGTGATGCAGGTCGAGGACCCCGACGTCGCCTTCACGGTGCTGGTCTCCGCGCCCGTCGTGCCGCCCCGCGAGCAGGCCGCCTTCGCCGTCGACAACTATCTGCGCAACACCGGGGTGCCCGGCCAGGTGTTCCGCGCCATCCCGCGTGCGGTCGGGATGCAGCTCCCCGGCGGCGGGTTCGACTACGCCGACTTCGACGTGCGCCCGTGGCTGGAGGACCAGACCGCGCCGCTGCTGGTCGTCTACGGCACGGCCGACCCGTCGATGCCCATCGAGCAGGGCGTGCGGCTGATCCTCGCCGACACGGCCGTCGGGTCGGGGGCGCCGGTGACGGTGCGGTACTACGCCGGCGCCGACCACGGCATCCGGCTGCGGGACGAGCTCCCCGCCGACGCCCCGAAGGACGCCGAGGCGCCGCTGCACCCGCACTTCCCCCGCGACCTGGCCGCGTGGGTCCAAGGGCTGCCGGGCACCGCCGACGCCGCACCGCGCATCGCCGGGGACGCTCCCCAGCAGCTCTACCTGGCCGCCCCCGTGCCGCAGCCGCGCTGGTGGGGCAACGGCGACGTCGTGGTCGCCGTCGTCGTCGGGGGGACCGGCCTCGTCGTGCTCGCGCTCGTGGCCTGGGGCGTGGTGTCGCTGGCCCGGCGGGTGCTGCACCGCTCCGCGCCGCCGAACGGGCGCTTCGCGCCGGGAGTGGGACCGCCGCTGGTCGCCCTCGGTGTGGTGTCGGTGGCCACGGTGTGCGGCCTGGCCGTCTACCTCGTCGCGGTGGCGCGGCTCGCCATCGACTACGAGCGCGACGCCCTCGTCGTCCAGGGCGGCTGGATCGCCGTGCGGCTGCTCGGCGCCGTGGCCGCGGTGGCCGCCGCCGTCCTGCTGCAGCGTGTCGGCGACGTCCGGGTGCGCCACCGCGCCGAGCGCGACGTCGTCGTCGCCCGCGGTGCCGTGGCGCACCTCACGCTGTGGGCCGTGCTCGTCGGGTCGGCGTTGTTGCTGGTCACGGCCGCGTACTGGGGGGTGTACCAGCTCGGGATCTGA	MVFRTFAASLALLVGLAVVGSLAGPQWHPVPVRDHIVPTRSATTIESTEPAATGDVGEVGDHAVRTTPVTVDLGDTTVDGLLRRPLDADGAVLPDRPGVVFVHGAGTGAAEEAFVDTAELLASAGVATLVPDKRLDTYSTRERDYEAMAEDYLRSVGLLRTVDGVDPERVGAYGESEGTWIVPVMQVEDPDVAFTVLVSAPVVPPREQAAFAVDNYLRNTGVPGQVFRAIPRAVGMQLPGGGFDYADFDVRPWLEDQTAPLLVVYGTADPSMPIEQGVRLILADTAVGSGAPVTVRYYAGADHGIRLRDELPADAPKDAEAPLHPHFPRDLAAWVQGLPGTADAAPRIAGDAPQQLYLAAPVPQPRWWGNGDVVVAVVVGGTGLVVLALVAWGVVSLARRVLHRSAPPNGRFAPGVGPPLVALGVVSVATVCGLAVYLVAVARLAIDYERDALVVQGGWIAVRLLGAVAAVAAAVLLQRVGDVRVRHRAERDVVVARGAVAHLTLWAVLVGSALLLVTAAYWGVYQLGI				NA	NA	NA	NA	NA
AK001_00119	951	era	COG1159	GTPase Era	ATGACCCACGAGAACCCGCACCGCTCCGGCTTCGCCTGCCTGGTCGGCCGCCCGAACGTCGGCAAGTCGACCCTGACCAACGCGCTGGTGGGGCAGAAGGTCGCGATCATGTCGGCGCGTCCCCAGACGACCCGGCACACGATCCGCGGGATCGTCCAGCGCGACGACGCCCAGATGGTGCTCGTGGACACCCCGGGGCTGCACCGGCCCCGCACCCTGCTGGGGGAGCGGCTGAACACGCTCGTCGTCGACACCCTCAGCGAGGTGGACGTCGTCGGCTTCTGCCTGCCCGCGGACCAGAAGATCGGCCCCGGGGACCGGTACATCGCGAACCAGCTCGCCCCGCTCATGGAGGGGCGCACCGCCGTCCCCGTCGTGGCGATCGTGACCAAGGCCGACCTGGTCGGTCGCGCGGCGCTGGCCGAGCAGCTCATGGCCGTGGACCAGCTCGCTCGGTCGATGGACCGGGACTGGTCGGCCATCGTGCCGGTCTCGGCACAGGACGGCTTCCAGGTCGCCGAGCTCACCGAGGTCCTGGTCGCCCACCTGCCCGAGGGGCCCGACCTCTACCCGGGCGGCGAGCTGACCGACGAGCCCGAGGAGACGATGATCGCCGAGCTCGTGCGCGAGGCGGCCCTGGAGGGCATCCGCGACGAGCTGCCGCACTCGCTGGCGGTCGTGGTCGAGGAGATCGTGCCGCGCGAGGGTTCCGGCGACGACTCCTCGGGCAAGCCGCCGCTGCTGGACGTGCGCGTGAACCTGTTCGTCGAGCGCGAGAGCCAGAAGGGCATCATCATCGGCCGCGGCGGCTCGCGGCTGCGCGAGGTCGGGTCCCAGGCCCGGGAGGGCATCGAGAAGCTCCTCGGCGCGCGGATCTACCTCGACCTGCACGTGAAGGTCGCCAAGGACTGGCAGCGCGACCCGAAGCAGCTCCAGCGCCTCGGCTTCTGA	MTHENPHRSGFACLVGRPNVGKSTLTNALVGQKVAIMSARPQTTRHTIRGIVQRDDAQMVLVDTPGLHRPRTLLGERLNTLVVDTLSEVDVVGFCLPADQKIGPGDRYIANQLAPLMEGRTAVPVVAIVTKADLVGRAALAEQLMAVDQLARSMDRDWSAIVPVSAQDGFQVAELTEVLVAHLPEGPDLYPGGELTDEPEETMIAELVREAALEGIRDELPHSLAVVVEEIVPREGSGDDSSGKPPLLDVRVNLFVERESQKGIIIGRGGSRLREVGSQAREGIEKLLGARIYLDLHVKVAKDWQRDPKQLQRLGF				NA	NA	NA	NA	NA
AK001_00120	1332			hypothetical protein	GTGAGCGGCGCGGTGGACGTCCCCGACCTGCTGCTGTGGGCCGTGCTCGTCGTGGCGCTCGGCCTGTCCGCCCTGCTCAGTGCGGGCGAGGCCGCCGTCGAACGGGTCACCAAGGTCTCCTTGGCCCTCGCCCTCGAGGAGCCCGGACCCCACGGCGGCTCGCCCGGGCCGCGTCGACGGCGCAACGTGCGGCGGGCCCAGCTGCTCGCGGCCGACCCCCGGGCCGCGGGCTCGTTCGCGCTGGTGCGCGTGCTGGCCGAGACCCTGTCGGTCGCCTCGGCCACGCTGCTGCTCGCGCACTGGTTCGACCGGTGGTGGGAGGTGCTGGTCGGGGCCGCCGTGGTCGGTGTGCTCGCGGGGATCCTCGTGGTGCGGCTCAGCCCGCGCACGTGGGCCCACCACCGTCCGACGACCGCGCTGGTGATGCTCGCCGGGCCGCTGTCCGTGGTGCACCGGGCCGTGTCCTGGGTGCCGCGGCGCGACCGCGCCGCCGACGTGGCGATCCCGGAGACCGACGAGCTGCAGGACATGGCCGACCGCGTCCGGGAGAACGAGGCGATCGAGGAACCGGAGCGCGAGCTCCTGCGCTCGGCCCTGCAGCTCGGCGACACCCTCGCCCGCGAGGTGATGGTGCCGCGCACCGACATGGTGACCACCGGCACCGACACGTCGCTGGCGAAGGCGATGCGGCTGTTCCTGCGCTCCGGCTTCTCCCGCGTGCCCGTCGTGGGCCGGACGGTCGACGACCTCGTCGGCGTCGTCTACCTCAAGGACGTCGCCCGGCGGATCGAGAACGACCCCGGGGCGGCGGACTGGCCCGTGCGGGACGTGGCGCGCGAGGCCGTGTTCGTCCCCGAGTCCAAGCCGGCCGACGACCTGCTGCGCGAGATGCAGGCGCGCCGCTCGCACATCGCCATCGTCGTCGACGAGTACGGCGGCGTCGCCGGGCTGGTCACGGTCGAGGACATCGTCGAGGAGCTGGTCGGCGAGCTGACCGACGAGCACGACACCGTCGCCGAGCCCGAGCCGGAGGACCTCGGCGACGGCCTGTGGCGCATCCCCGCCCGCCTGCCGGTGGACGAGCTCGGCGAGCTGTTCGACCTGCGTCTCGACGACGACGACGTCGACACCGCCGGCGGCCTGCTCGCCAAGGCCCTCGGCAAGGTCCCGCTGGCCGGGTCCTCGGCCGACGTCGGCGCCCTGCGGCTCGAGGCCGAGCGCGTCGAGGGACGCCGCAAGCAGCTCGCCAGCCTGCTGGTGCGCCGGATCGCCCTACCAGCAGCGGACGAGGACGACGACCTCGTGCCGCACGACCAGAAGGACGCCGTATGA	MSGAVDVPDLLLWAVLVVALGLSALLSAGEAAVERVTKVSLALALEEPGPHGGSPGPRRRRNVRRAQLLAADPRAAGSFALVRVLAETLSVASATLLLAHWFDRWWEVLVGAAVVGVLAGILVVRLSPRTWAHHRPTTALVMLAGPLSVVHRAVSWVPRRDRAADVAIPETDELQDMADRVRENEAIEEPERELLRSALQLGDTLAREVMVPRTDMVTTGTDTSLAKAMRLFLRSGFSRVPVVGRTVDDLVGVVYLKDVARRIENDPGAADWPVRDVAREAVFVPESKPADDLLREMQARRSHIAIVVDEYGGVAGLVTVEDIVEELVGELTDEHDTVAEPEPEDLGDGLWRIPARLPVDELGELFDLRLDDDDVDTAGGLLAKALGKVPLAGSSADVGALRLEAERVEGRRKQLASLLVRRIALPAADEDDDLVPHDQKDAV				NA	NA	NA	NA	NA
AK001_00121	453	ybeY	COG0319	Endoribonuclease YbeY	GTGAGCATCGAGGTCAACAACGAGTCCGGCGTCGAGGTCGACGAGGCCGAGTTCGCCGCGCTGGCCCGGTTCGCCCTCGACGAGCTGCACGTCCACCCCGCCGCCGAGCTGTCCATCGTGCTCGTCGACACGGCTGCGATGACCGACCTGCACGTGCAGTGGATGGACGAGCCCGGCCCCACCGACGTGCTCTCCTTCCCCATGGACGAGCTGCGGCCCGGCCGCGAGGGCGAGGAGACCCCGCCCGGCACCCTCGGCGACATCGTGCTGTGCCCCGAGGTGGCGGCCGCCCAGGCCCGCGCCGCCGGGCACTCCACGGTCGAGGAGCTCCTGCTGCTGACCACGCACGGGATCCTGCACCTGCTCGGCTACGACCACGCCGAACCCGACGAGGAGCGCGAGATGTTCGCGCTGCAGCGGCGGCTCCTGCTCACCTTCCTGGCCGGGCGGTGA	MSIEVNNESGVEVDEAEFAALARFALDELHVHPAAELSIVLVDTAAMTDLHVQWMDEPGPTDVLSFPMDELRPGREGEETPPGTLGDIVLCPEVAAAQARAAGHSTVEELLLLTTHGILHLLGYDHAEPDEEREMFALQRRLLLTFLAGR	PGPT0002700_49	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217	NA	NA
AK001_00122	2145			hypothetical protein	ATGGAGTCCCGCCTGAGCATGACGTCCGCCGCCTCCGACAGCCCCCTGACCGACCACCCGCGGCACGCCACCGAGCACCGCGTCGTCGTCCCCCCGCACGTGCCGATGGTGGCGCTGCTGGGCAGCGGCGACACGGTGCTCCGCGCGATCGAGGACGGGTTCGGTGGCGTGGACGTGCACGCCCGCGGCAACGAGATCTCCGTCCACGGCCCCGCCGGCGACGTCGCCCTGGTGGCTCGCCTGCTGGACGAGCTGGTCGAGGTCGTCGAGGCCGGGACCCCGCTGACCCCCGAGGTGGTCTCCCGCTCGGTCTCGATGCTGACCTCCGCCGCCGCGCAGCGGCCCGCCGAGGTGCTCACCCACGACATCCTCTCCGGGCGCGGTCGCACGATCCGCCCGAAGACCGTCGGGCAGAAGCGCTACGTGGAGGCCATGGCGGCCAACACGATCACCTTCGGCATCGGCCCCGCCGGGACCGGCAAGACCTACCTGGCGATGGCGAAGGCCGTGCAGGCGCTGCAGGCCAAGCAGATCAACCGGATCGTGCTCACCCGGCCCGCGGTCGAGGCGGGGGAGAAGCTCGGCTACCTGCCCGGATCGTTGAGCGACAAGATCGACCCGTACCTGCGGCCGCTGTACGACGCGCTGCACGACATGCTCGACCCCGACGCGATCCCACGGCTGGTCGAGTCCGGCACCATCGAGGTCGCGCCGCTGGCGTACATGCGCGGCCGTGCCCAGCCGTACGACGCCGAGGTCCTGACCCCTGACGGCTTCCGACCGTTCGGATCGCTGCAGGTGGGTGACCTGGTGGTGGGGTCCGACGGGCGTCCGACACCCGTCGTCGGCATCTACCCGCAGGGGCCGAAGCAGACCTATCGGGTGACGGCGTCGGACGGGTCGTCGACCGTCTGCTGCGGCGAGCACCTGTGGACCGTCCGGACCCAGTCGGACAAGCGTCGGGGGCGGAGCCGGACACTGGAGACGCAGGAGATGATCGGGCGTGAGTGGTACGGACACACACGCCGATTCGAACTACCCGTCGTCGATCCGGTCGAGATGCCGGAGCGCGACGTGCCGATGGACCCGTACGCGCTGGGCCTGATGCTCGGCGACGGATCGTTCTCCTCGCGTGCGACGCCGTCGTACACGACGGCGGACCCCGAGCTCGCCGACGCCCTGGAGTCCGCACTGCCCGACATCGAGCTGGTTCCGCACGGGGAGTACGGCTACGTGCTGCGACACGTCCACGGGCACCGCGGTGGCGTCATCGTGGCGAACCCGGTGAAGACGATCCTGCGCGAGCTGGGTCTCGACGGTCGGAAGTCGGCCACGAAGTTCGTGCCCGAGGCGTACAAGATCAACGCCGTCGAGGTGCGCCTGGCGGTCCTGCAGGGACTCCTGGACACCGACGGCGGACCGGTGACGCAGGACGGGCGGACCTGCCGGGTGCAGTACACGACCACGTCGCGCCGACTCCGGGACGACGTCGTCCATCTCGTCCGGTCGCTCGGTGGTGTCGCCACGACCCGCGTGCGGGAGGCCGAGGGGCGGAAGCCCGGACGGGCCAGGGAACGACCGGTCCCGTATCGCTGCGACGCCTACGTCGTCGAGATCCGCCTGCCCGACGGCGTCACTCCGTTCCGCCTCACCCGCAAGGCGCGGACGTACGCCGCGCTCGGAGGGGGACGTCCGATGCGCGCCGTCGACTCGATCCTGCCTGCGGGCGTCCAGGACACGATGTGCATCCAGGTCGCCGCCGAGGACTCTCTCTACGTCACCGACGACTTCCTCGTCACGCACAACACCATCAACGACGCCTTCATCATCCTGGACGAGGCGCAGAACACCTCGGCCGAGCAGATGAAGATGTTCCTCACCCGGCTCGGCTTCGGCTCGACGATGGTCATCACCGGCGACGCCACCCAGGTCGACCTGCCGGGCGGCACCACGTCGGGCCTGCGCGTGGTCGAGGACATCCTCACCGGCGTCGACGACGTCGAGTTCTGCCGGCTCACCAGCACCGACGTGGTCCGACACCGCCTGGTCAGCGACATCGTCGACGCCTACGCCCGCTGGGACAGCACCCGCCCGGCCGACGACCGCCGTCGGCCCGGCCGCCACGACCGAGGAGGACGCCGGTGA	MESRLSMTSAASDSPLTDHPRHATEHRVVVPPHVPMVALLGSGDTVLRAIEDGFGGVDVHARGNEISVHGPAGDVALVARLLDELVEVVEAGTPLTPEVVSRSVSMLTSAAAQRPAEVLTHDILSGRGRTIRPKTVGQKRYVEAMAANTITFGIGPAGTGKTYLAMAKAVQALQAKQINRIVLTRPAVEAGEKLGYLPGSLSDKIDPYLRPLYDALHDMLDPDAIPRLVESGTIEVAPLAYMRGRAQPYDAEVLTPDGFRPFGSLQVGDLVVGSDGRPTPVVGIYPQGPKQTYRVTASDGSSTVCCGEHLWTVRTQSDKRRGRSRTLETQEMIGREWYGHTRRFELPVVDPVEMPERDVPMDPYALGLMLGDGSFSSRATPSYTTADPELADALESALPDIELVPHGEYGYVLRHVHGHRGGVIVANPVKTILRELGLDGRKSATKFVPEAYKINAVEVRLAVLQGLLDTDGGPVTQDGRTCRVQYTTTSRRLRDDVVHLVRSLGGVATTRVREAEGRKPGRARERPVPYRCDAYVVEIRLPDGVTPFRLTRKARTYAALGGGRPMRAVDSILPAGVQDTMCIQVAAEDSLYVTDDFLVTHNTINDAFIILDEAQNTSAEQMKMFLTRLGFGSTMVITGDATQVDLPGGTTSGLRVVEDILTGVDDVEFCRLTSTDVVRHRLVSDIVDAYARWDSTRPADDRRRPGRHDRGGRR	PGPT0002700_8	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217	NA	NA
AK001_00123	354		COG0537	Purine nucleoside phosphoramidase	ATGACGACGGAGACCGAGGCGGACTGCCTCTTCTGCAAGATCGTCGCCGGCGACCTGCCCGCCGACGTCGTGGCCGACACCGACCGGGTCGTGGCCTTCCGGGACATCGACCCGCAGGCTCCCGTCCACGTGCTCGTGGTGCCCAAGGAGCACCACGGGGACGTGTCCGTCCTGGCCGCGGCCGACCCGGACCTGCTCGCCGAGGTCGTCGGTGTCGCCGACAACGTGGCGCACGAGCTGGCCGACGGCCAGTACCGGTTCATCTTCAACTCCGGCCCGCGCGCGGGCCAGAGCGTCTTCCACGTGCACGGCCACGTCCTGGCCGGCACCCAGCTGGGATGGAGTCCCGCCTGA	MTTETEADCLFCKIVAGDLPADVVADTDRVVAFRDIDPQAPVHVLVVPKEHHGDVSVLAAADPDLLAEVVGVADNVAHELADGQYRFIFNSGPRAGQSVFHVHGHVLAGTQLGWSPA				NA	NA	NA	NA	NA
AK001_00124	777	rsmE	COG1385	Ribosomal RNA small subunit methyltransferase E	GTGAGCGCGCCCGTCTTCGTCGACGCCGGCGTGGCGTCTGCGCCGGCGCCGGGGGCGACCTACGTCCTCGGCGGGCCGGAGGGCCGGCACGCCGGCGTCGTCCAGCGGCGCCGCCCGGGGGAGCGGCTCGACGTGGTCGACGGCGCGGGCACCCGCGTGCTCGGTGTGGTCGAGGCCGTCGACGGCGGCGAGGTCACCCTGCGCGTCGAGGACGTGCGGCACGAGCCCGCCCCTGCCGTGCGGCTCGCGCTGGTCCAGGCGCTGGCCAAGGGCGACCGCGACCACCAGGCCGTCGAGGCGGCCGTGGAGGTCGGGGTCGACGCCGTCGTGCCGTGGCAGGCCGACCGGTCCGTGGTCGTCTGGCGCGGCCCGCGGGCCGAGAAGGCGCGCGCCAAGTGGGCCGCGACCGTGCTCGCGGCGGTCAAGCAGTCCCGTCGGGCCTGGCTGCCGCCCGTGCACGAGCACGTGACCACCCGCGGGCTCGCCGACCGGGTGCGCGAGGTCGTCGCCGCGGGCGGTGCCGTCGTCGTGCTGCACGAGGAGGCGGTGACGCCGCTCGCGGACGTCCCGCTGCCCACGGCGGCGGACGGCTCGGCCGAGGCGCCCGAGGTCGACCTCGTCGTGGGTCCCGAGGGCGGCATCTCCGCCGAGGAGGTCACCGCCCTCGCCGACGCCGGTGCCGTGACGGCCCGGTTGGGTCCGCACGTGCTGCGCACCTCGACCGCCGGACCCGTCGCCGTCGCGATTCTCAGCGACCGCACGGGCCGCTGGCGGTAG	MSAPVFVDAGVASAPAPGATYVLGGPEGRHAGVVQRRRPGERLDVVDGAGTRVLGVVEAVDGGEVTLRVEDVRHEPAPAVRLALVQALAKGDRDHQAVEAAVEVGVDAVVPWQADRSVVVWRGPRAEKARAKWAATVLAAVKQSRRAWLPPVHEHVTTRGLADRVREVVAAGGAVVVLHEEAVTPLADVPLPTAADGSAEAPEVDLVVGPEGGISAEEVTALADAGAVTARLGPHVLRTSTAGPVAVAILSDRTGRWR				NA	NA	NA	NA	NA
AK001_00125	1122	dnaJ2	COG0484	Chaperone protein DnaJ 2	GTGACCGACTACTACGAGATCCTCGGCGTCGAGCGTGACGCCACCCCCGAGCAGATCAAGAAGGCGTACCGTCGCCTGGCCCGCGAGCTCCACCCCGACGTCGCGGGTGCCGAGGGCGAGGAGAAGTTCAAGGACGTCGCCCGTGCCTACGAGGTGCTGTCGAACCGCGACAAGCGCGAGCAGTACGACATGGGCGTCGACCCGAGCGCGCCCGGCGGCGGCGCCGGCGCCGGCTTCGGCCAGGGCTTCGGGTTCCAGGACATCTTCGAGACGTTCTTCGGCGGCGGCCAGCCGTCCGGCCCCGTGCCGCGCGCACGGCGCGGCCAGGACGCCCTGGTGCGCATGGACATCGACCTCACCGAGGCGACGTTCGGCGGCAAGCGCGAGCTGCAGGTCGACACGGCCGTGGTGTGCGGGACGTGCGGCGGCAACGGCTGCCGGCCCGGCACCGACGTGCGCACCTGCGAGGTCTGCCACGGCCAGGGCAACGTCCAGCGCGTGGCCCGGTCCTTCCTGGGCCAGGTCATGACCACCGCGCCCTGCGCGGCCTGCCAGGGCTTCGGCACCGTCATCCCCGAGCCGTGCGCCGAGTGCTCCGGCGAGGGCCGGGTGCGCTCGCGCCGGTCGCTGACGGTGAACGTGCCCGCCGGTGTCGACACCGGCACGCGCATCAAGCTGTCCTCCCAGGGGGAGGTCGGCCCGGGCGGTGGCCCGGCCGGCGACCTGTACGTCGAGATCCGCGAGAAGGCGCACGACACCTTCGTGCGTCGCGGCGACGACCTGCACTGCACCCTGCCGGTGCCGGTGACCGCGGCCGCCCTGGGCACCGTGCTGGAGCTGTCCACCCTCGACGGTCAGCAGGAGATCGACCTGCGTCCGGGCACGCAGCCGGGCGAGGTCGTCACGCTCAAGGGTCTCGGCGTCGGGCACCTGCACGCGAACGGCCGCGGCGACCTGAACGTCCACATCGACGTGCAGGTCCCGACCTCCCTCGACGAGGAGCAGACCGAGCTGCTGCGCAAGCTCGCCGAGCTGCGCGACGAGGAGCGTCCCGACCCGCGGCTCGCGGCCGCGCACCCCGGCGTGTTCTCGCGCCTGCGGGACAAGTTCGCCGGGCGCTGA	MTDYYEILGVERDATPEQIKKAYRRLARELHPDVAGAEGEEKFKDVARAYEVLSNRDKREQYDMGVDPSAPGGGAGAGFGQGFGFQDIFETFFGGGQPSGPVPRARRGQDALVRMDIDLTEATFGGKRELQVDTAVVCGTCGGNGCRPGTDVRTCEVCHGQGNVQRVARSFLGQVMTTAPCAACQGFGTVIPEPCAECSGEGRVRSRRSLTVNVPAGVDTGTRIKLSSQGEVGPGGGPAGDLYVEIREKAHDTFVRRGDDLHCTLPVPVTAAALGTVLELSTLDGQQEIDLRPGTQPGEVVTLKGLGVGHLHANGRGDLNVHIDVQVPTSLDEEQTELLRKLAELRDEERPDPRLAAAHPGVFSRLRDKFAGR	PGPT0014545_4929	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686	NA	NA
AK001_00126	1041	hrcA	COG1420	Heat-inducible transcription repressor HrcA	ATGAGCGAGGAACGTCGGCTCGCAGTACTGCGCGCCATCGTCGAGGACTACGTCACCACGCGTGAGCCCGTCGGGTCGCGCATGCTCACCGAACGCCACGGCCTCGGCGTGTCCCCGGCCACCATCCGCAACGACATGGCCGCGCTCGAGGACGCCGGGTACATCGCCCAGCCGCACACGTCCGCCGGGCGCGTGCCCACGGACGCCGGCTACCGGGTGTTCGTCGACCGGCTCGCCGAGGTACGACCCCTCAACGTGCCCCAGAAGCGGGCCATCGAGACCTTCCTGTCCGAGGCCGTGGACCTCGACGACGTCCTGACCCGGGCCGGGCGGCTCATCGCCCAGCTCACCGGCCAGGTCGCCGTCGTGCAGTACCCGTCGCTGCGGCGGTCCGGGCTGCGTCACCTCGAGCTCGTGCCCGTGGCGGAGTCCCGGATCCTGGTCGTGGTCATCACCGACACCGGCCGGGTCGAGCAGCGCTACTGCGAGCTGCCCGTGCGTCCCGACGGCTCCGACGCGGGCGACGACCTCGACGAGGCGACCCTCGGCGAGCTGCGGGCCCGGTTCAACGCGGCCGCCGCGGGCAAGCGGCTGGCCGACCTCCCCGCGGCCTTCGCGGGCCTGGTCGAGTCCGTGGGCCCCCACCTGAGCGGGGTGACCCAGGCCGTCGCGGACCTCGTCGTGGAGACCCTCGGCGAGGAGAACGAGGAGCGGATCGTGCTGGCGGGCACCGCCAACCTCGTCCGCTCCGAGGCCACGTTCGAGCAGGGGCTCAGTCCCGTGCTCGAGGCGCTCGAGGAGCAGGTGGTGCTGCTGGGGCTGCTGACCGAGATGGCCGGCGACGGCGTCGGGGTCCGCATCGGGCGGGAGAACCGCCTCGACGGTCTCACCGAGACCTCCGTCGTCGCCTCCGGATACGGTAGCGACGGCGACACCGTCGCCTCCCTCGGCTCCATCGGCCCGACCCGCATGGACTACCCGGGCACCATCGCCTCGGTCCGCGCCGTGGCACGCTACCTGTCGCGCGTCCTGCCGAACTGA	MSEERRLAVLRAIVEDYVTTREPVGSRMLTERHGLGVSPATIRNDMAALEDAGYIAQPHTSAGRVPTDAGYRVFVDRLAEVRPLNVPQKRAIETFLSEAVDLDDVLTRAGRLIAQLTGQVAVVQYPSLRRSGLRHLELVPVAESRILVVVITDTGRVEQRYCELPVRPDGSDAGDDLDEATLGELRARFNAAAAGKRLADLPAAFAGLVESVGPHLSGVTQAVADLVVETLGEENEERIVLAGTANLVRSEATFEQGLSPVLEALEEQVVLLGLLTEMAGDGVGVRIGRENRLDGLTETSVVASGYGSDGDTVASLGSIGPTRMDYPGTIASVRAVARYLSRVLPN				NA	NA	NA	NA	NA
AK001_00127	207			hypothetical protein	ATGTCCCCGGAGCAGCTCCACCAGATGTACCGCCTGCAGGAGGCCGAGGTCGTCCGCGAGGCGGAGCACCGCCGTCGGGCGGCCGAGCGCGCCGCGCAGGACGTTTCGCGGCACCGCCGCCACCCCGAGCCGGCCCCGCGCCCCCGCGTCCTGGTGCTCCTCGACCGCCCGCGCATGGCCCGGGCCCGTGCGGTCCGCGCAGCCTGA	MSPEQLHQMYRLQEAEVVREAEHRRRAAERAAQDVSRHRRHPEPAPRPRVLVLLDRPRMARARAVRAA				NA	NA	NA	NA	NA
AK001_00128	2685			hypothetical protein	ATGAGGGTCAGCCGGGTCCCGCTGATCGGCCGCGAGACCGAGCTCGCGACGTTGCGTGGCCTCCTCGAGGAGGCCACGCACGGCGACGGGCAGTGCGTGGTCGTGGGCGGGGAGGCCGGGATCGGCAAGACGCGCCTCGTCGAGGAGCTCCTCGACGGGTCCGGTGCCGACCCGGCCTTCGTCCTGCGGGGCCAGTGCGCCGACTCCGGCGCCGGCCCCGTGCCGTACGCCGGGCTCGAGGGTCTGCTGCGGGACGCCGTCACCGCGCTGGGACCCGAGGCCACGCTGGAGGCCGCCGGACCGGCGGCGGACGCCCTCGGCGTCGTGCTCCCCGAGCTGGTCGCGGTCCGGGCCGACGGGGAGGCCGGGCGTCTGCCGGAGGCCCTCGCCGCACTGCTCACCACGCTCGCCGGGAGACGACCCGTCGTGGTCGTGATCGAGGACCTGCACTGGTCCGACGACGCCACCCGCGGCTGCGTGGCCCGCCTCGCCCGCACCGCCCCCGGCCGTCGGCTGCTGCTGGTGGTCACCTACCGCAGCGACGACGTCGGACGGACCCACCCCCTGCGGGCCGCGCTCGCGGAGATCGAGCGGGCCCGGCTCGCCACCCGGGTCGAGGTCCCGCGGCTCGCCGCCCACGACGTCGTCGCCCTGTTCCGGGCGCACCTCGAGGCCGGAGCCGTCGACCTCGAGGAGATCGTCGACCGCAGCCAGGGTGTGCCGTTCTACGTCGAGGAGCTCGCCACCGGGGTCGGCGTCACCCTGCCCGAGTCGGTGCGCGACCTGATGCTCCTGCGGTACTCGCGCCTCGGCCGCGACGCGCAGGAGTTCTGCCGCACCGTGGCCGCCGCCGGGCAGAGCGTCGGGCACGAGCTGCTCGCCGCGGCGCTCGGCGACGAGGCCGTCCGGGACGCGGAGCCCGCCGCCCGCGAGTCCGTCGAGGCCGGGGTCCTCGTCGTCGACGCCGACGGCTACCGGTTCCGGCACGCCCTGATGCAGGAGGCCGTGGCCACCGAGCTGCTGCCCAGCGAGAGCCGGCGCCTGCACACCGCCTACGCCCGCGCCCTGGAGACCCGGCCGGCCACCATCGCCCGCCTCGCGGAGATCGCGGACCACTGGTGGCGTGCCCGCGTGCCGGACCGGGCGCTCGCCGCGTGCGTGGCGGGCCAGGCCGCGGCCGGCGAGTACGCGGCGACGTCCACGGCCGTCGCCCTGGGCGAACGGGCGCTCGAGCTGTGGGACCTGGTCGCGGACCCCGAGGAGGTCGCGGGCACCACCCACGCCGAGCTCATGCGGCGGGTGGCCTGGGCGCTGCACGTCGGGTCCCAGGCCGAGCGCGCGCTCGCGCTCGCGCGCCAGGCCCTCGACGAGTGGCCGCCGGAGGACCCGGCCGGGCGTGTCTCCGCCTTCGTGACGCTGTCCACCGCCGCCGAGGTCACCGGGTCCGACGAGGGACGGCGCCTGCTCGACCACGCCCTGGAGGAGATCCCGGACGACGACGTCGCCGGGCGCGCCGCCCTGCTCACGGAGTCCGCCCGGGGCGCGATGATGGAAGGGCTCGAGGACCGGGCCATCGAGCTCGCCAACCGGGGGCTGGCGGCCGCCGAGGAGGCCGGGGACCGCCGCCTGCAGGCACGGTGCGTCAACATCCGCGCGGTCAGCCGCGTGATCACCGGTGACATGGACGGGCTCGAGGACTTCGCCCTCGACCGCGCGCTCGCCGGCGACGACTGGGACGCGCTGATGAAGCACTTCGTCAACGCCTCCGAGGCCACGCTGCGCGTCGGCAGGGCGCACCGGGCGCTGGAGATCGCCGAGGAGGGGGCCGCCCGGGCGCGGGAGCGGGGCACCGGGATCGGGATGCGGTCGCGGATCGAGGGCAACGGCATCGAGGCGCTGGTCGACCTCGGCCGCTGGGACGAGGCGGCGGCCTGGTTCGAGCGCACCGTCCCCCTGCTGGGACGCAGCGTCTTCACCGTCACCCTCACCGAGCTCTGGGCCTGCTCCTGCTGTGGCGCGGGGAGGTCGAGCAGGCGGAGTCCGTGGTCCGGACGTACCGGGCGTCCTGGGAACGGCACGGCCGGATCGAGCTGCAGGTGCGCTCGCTGCTCACCACCACGCTGGCGGACCTGGCCCTCGAGCGCGGGGACGTGGACGAGGCCCTCCGTGTCGTGGCCGACGCCGTGGCCGACCCCCTGCATCGTCGGTCGGCGTCGTCGCTGCTGCCGATCCTCGGGATCGCGGCCCGGGCGCTGGCCGCGGCGGGGGCCGCCGGACGCGACGTGGACCGGGCCCCGTACCGCGCGGCGCTCGCCGACTGCTCCGGGTGGCCGACCCACGGCGTGTGGTCGGCGGTGTTCGCGGCCGAGCTCGGCGAGGGCCCGTGGTCCGCGGTGGCCTCCCTCGGGCCCGACGACGGCGCCCCGGCGTACCTGCGCCCCTACGCCCGCTACCGCGAGGGCGCCGGTCTCCTGGCCGCAGGGGACCGGCCCGGCGGCCGTGTCGCGCTGGAGTCGGCGGTCCGGGAGGCCGAGACGATCGGGTGCGGGCTGGTGGCCCGGCACGCGGCCGGGCTCCTGGCCGGGGCCGGTGCGGCCTCGCCGTCGCGGCGTCGGCCGGACGAGGCGGCCGACCGGCTCACCGACCGCGAGCGCCAGGTGCTGGAGCTGGTCGCCGAGGGGCTGA	MRVSRVPLIGRETELATLRGLLEEATHGDGQCVVVGGEAGIGKTRLVEELLDGSGADPAFVLRGQCADSGAGPVPYAGLEGLLRDAVTALGPEATLEAAGPAADALGVVLPELVAVRADGEAGRLPEALAALLTTLAGRRPVVVVIEDLHWSDDATRGCVARLARTAPGRRLLLVVTYRSDDVGRTHPLRAALAEIERARLATRVEVPRLAAHDVVALFRAHLEAGAVDLEEIVDRSQGVPFYVEELATGVGVTLPESVRDLMLLRYSRLGRDAQEFCRTVAAAGQSVGHELLAAALGDEAVRDAEPAARESVEAGVLVVDADGYRFRHALMQEAVATELLPSESRRLHTAYARALETRPATIARLAEIADHWWRARVPDRALAACVAGQAAAGEYAATSTAVALGERALELWDLVADPEEVAGTTHAELMRRVAWALHVGSQAERALALARQALDEWPPEDPAGRVSAFVTLSTAAEVTGSDEGRRLLDHALEEIPDDDVAGRAALLTESARGAMMEGLEDRAIELANRGLAAAEEAGDRRLQARCVNIRAVSRVITGDMDGLEDFALDRALAGDDWDALMKHFVNASEATLRVGRAHRALEIAEEGAARARERGTGIGMRSRIEGNGIEALVDLGRWDEAAAWFERTVPLLGRSVFTVTLTELWACSCCGAGRSSRRSPWSGRTGRPGNGTAGSSCRCARCSPPRWRTWPSSAGTWTRPSVSWPTPWPTPCIVGRRRRCCRSSGSRPGRWPRRGPPDATWTGPRTARRSPTAPGGRPTACGRRCSRPSSARARGPRWPPSGPTTAPRRTCAPTPATARAPVSWPQGTGPAAVSRWSRRSGRPRRSGAGWWPGTRPGSWPGPVRPRRRGVGRTRRPTGSPTASARCWSWSPRG				NA	NA	NA	NA	NA
AK001_00129	870			hypothetical protein	GTGCACGATCGCTACGGCTCCGACGTCCTGTCCTCCTCCCCCGGCGCGCCCGGCGGCTCGGCCCACCACCGCGCGCGGCCGACCACGCGGCCGCAGCCGGCCGAGCACGGCCTCGTGGTCGAGGAGGTGACCAGCGGCTGGGTCGGCGCCGTGACCCGCGTGGAGAAGTCCGGCGGCGTGCACCTCGTGGTGCTGGAGGACCGCCGCGGCCGGACCCGGTCCTTCCCGCTGGGCAAGGGGTTCTGGGTCGACGGGCAGCCGGTCGAGCTCACCGCGCCGGTCACCTCCCGGGCACCGGCCGCGCCGACGCGGACGGCCTCCGGCTCCGTCGCGGTGCACGGGGCTCGTGCCCGCGTCGCGCGCGGGTCGCGCATCTGGGTGGAGGGCAAGCACGACGCCGAGCTCGTAGAGAAGGTGTGGGGCGACGACCTGCGCATCGAGGGCGTCGTGGTCGAGATGCTCGACGGCGTGGACCACCTGGCCGAGGCCCTCGCCGAGTTCTCCCCGACGCCCGAGCGCCGGGTCGGGGTGCTGGTGGACCACCTCGTGCCGGGAGCCAAGGAGCAGCGGATCGCGGCGGAGGCGCTGCGCACGGTCCCGGACGGCACCGTCCTGGTGCTCGGGCACCCCTACGTGGACGTCTGGCAGGCCGTGAAGCCTGCCCGGGTCGGCCTGGAGTCGTGGCCGACCATCGAGCGCGGCACCGAGTGGAAGCGCGGCATCCTGCGCGAGCTGGGCTGGCCCGGAAGCTCGACCGCGGACGTCGGGCGGGCCTGGCAGCGGATCCTGGGCTCGGTACGCGACTTCCGCGACCTCGACCCGGCCCTCCTGGGCCGGGTCGAGGAGCTCATCGACTTCGTGACGGCGTGA	MHDRYGSDVLSSSPGAPGGSAHHRARPTTRPQPAEHGLVVEEVTSGWVGAVTRVEKSGGVHLVVLEDRRGRTRSFPLGKGFWVDGQPVELTAPVTSRAPAAPTRTASGSVAVHGARARVARGSRIWVEGKHDAELVEKVWGDDLRIEGVVVEMLDGVDHLAEALAEFSPTPERRVGVLVDHLVPGAKEQRIAAEALRTVPDGTVLVLGHPYVDVWQAVKPARVGLESWPTIERGTEWKRGILRELGWPGSSTADVGRAWQRILGSVRDFRDLDPALLGRVEELIDFVTA				NA	NA	NA	NA	NA
AK001_00130	531			hypothetical protein	ATGTCCGAGAACCCCCCGCAGCAGCCCGGACGACCCGAGGACCCCTACGGCGGGCAGCCGTCGCAGCCGGACCCCGCGCAGCAGCCGTACCAGCAGCCGTACACCGGACAGCAGCACTCCGGGCAGCCGGCGGCGTCCTACCCGCCGCCGTCGGGCCACCAGGGCGGCCAGCAGCCGTTCTACGCGAGCGCGGCGTCGTCGGCCGCCGGCGTGGCGCGCGACGACACCAAGGGGCTGATCGGCTCCCTGTTCGACTTCTCGTTCAGCAACTACGTCACGCCGAAGATCGTCAAGATCGTCTACGTCATCCTGACGATCCTGGTCGCCATCGGCTGGCTGTTCTCCTTCATCGCCGGCATCGCCACGCTGTTCTCCGACCAGTGGTACGTCGGGCTCTTCACCATCCTGTTCGGCTGGATCGGCGCGCTGGTCTACCTGGCGGTCTGGCGGATCGGTCTGGAGGTCTTCCAGGCGGTGGTGAACATCTCCGAGAAGGTCAACCACTACGCCCAGCGCGACGGCATGGTCTGA	MSENPPQQPGRPEDPYGGQPSQPDPAQQPYQQPYTGQQHSGQPAASYPPPSGHQGGQQPFYASAASSAAGVARDDTKGLIGSLFDFSFSNYVTPKIVKIVYVILTILVAIGWLFSFIAGIATLFSDQWYVGLFTILFGWIGALVYLAVWRIGLEVFQAVVNISEKVNHYAQRDGMV				NA	NA	NA	NA	NA
AK001_00131	396			hypothetical protein	ATGACGCAGAACCCGCCGCCCACCGGCCCGCCCGCGGGCCCGCGACCGCTGTCCCCGCCCGACGAGCGCACCTGGGCGATCATGGCCCACATCGGCCCGCTGCTCGTCGGGATCATCACGGCGGGATCGCTGGGCTTCGTGGCCCCGCTCGTGATCTGGCTCGCCCTGCGCGACCGCAGCGCGTTCGTCGCCGACCAGGCCAAGGAGGCGCTGAACTTCCAGATCACGCTGCTCATCGGCCAGGTCGTCGGCTGGCTGACCGTCTGGCTGCTGGTCGGGTGGCTGGTCCTCGCCGTGGTGTGGGTCCTGGGCATCGTGTTCGCGATCATCGCGGCGATCACCGTCAACCGGTACGAGGCCTACCGCTACCCCCTGACCCTGCGGCTGGTGTCGTGA	MTQNPPPTGPPAGPRPLSPPDERTWAIMAHIGPLLVGIITAGSLGFVAPLVIWLALRDRSAFVADQAKEALNFQITLLIGQVVGWLTVWLLVGWLVLAVVWVLGIVFAIIAAITVNRYEAYRYPLTLRLVS				NA	NA	NA	NA	NA
AK001_00132	480			hypothetical protein	ATGACCGAGTCGACTCCAGACCCGCACGCCGACCAGCGCCCGCAGCAGCCCGAGGGACAGCAGCCGCAGCAGCCCCCGCAGGGCTACCAGCAGGGCTACCAGCAGCCCCCGCAGGGCCAGCCGGGCTACCCGCAGGGCGCCGCCGCACCCCAGCCGGTCGCCCCGTCGGAGGAGCGGACCTGGTCGATCATCGCGCACGCCGGCGGCATCCTCGTGGGCTTCCTCGCCCCGCTGATCGTCTGGCTCGTGTACAAGGACCGCAGCGCGCGCCTGGACGACCAGGGCAAGGAGGCGCTGAACTTCCAGCTCACGATGCTCATCGGCTACGTCGTGGGGTGGATCCTCACGATCATCATCGTCGGTGGGTTGATCGTCTTCGCCGCCTGGGTGTGCACGATCGTCTTCGGCATCCTGGGGGCGATGGCCGCCTCGCGCGACGAGTGGTACCGCTACCCGTTCAAGATCACGTTCATCAAGTGA	MTESTPDPHADQRPQQPEGQQPQQPPQGYQQGYQQPPQGQPGYPQGAAAPQPVAPSEERTWSIIAHAGGILVGFLAPLIVWLVYKDRSARLDDQGKEALNFQLTMLIGYVVGWILTIIIVGGLIVFAAWVCTIVFGILGAMAASRDEWYRYPFKITFIK				NA	NA	NA	NA	NA
AK001_00133	1296	hemW	COG0635	Heme chaperone HemW	GTGCCCGCGCTGCCCGACGGCGAACCCGTCCCGGCGGACGGCGCCCTGCCCGAGCTCGTGGCCCGGACGGCGGGCGCCGAGACCGACGACGCCTCGTCGCGCTCCCGGTTCGGCGTGTACGTGCACGTGCCGTTCTGCTCGGTGCGCTGCGGCTACTGCGACTTCAACACCTACACCGCGTCCGAGCTCGGGGGCGGTGCGTCGCAGCACGAGTACGCCACGACGGCGCTCGGCGAGGTCGACCTGGCCGCGCGCGTGCTCGACGCCGCCGGTCTGGGCGACCGGCCCGTGTCGACGGTGTTCTTCGGCGGCGGGACGCCGACGATGCTGCCGGCCGGCGACCTGGTGCGGATCCTGGACGGCGTGCGGTCGGCCTGGGGCCTGGCCCCCGACGCCGAGGTGACGACCGAGGCGAACCCCGACTCGGTGACGCCCGGCTCGCTGGCGACCCTGGCCGAGGCCGGGTTCACGCGGGTCTCGTTCGGCATGCAGTCCGCGGTGCCGCGCGTCCTGGCGACGCTCGAGCGCACCCACGACCCCGCGCGGCTGCCCGACGTCGTGCGCTGGGCCCGCGAGGCCGGGCTCGCCGTCTCGGTCGACCTCATCTACGGCACCCCGGGGGAGTCGCTGGACGACTGGCGGACGTCGGTCGAGGCCGCCCTGGCCACCGGCGTCGACCACGTGTCCGCGTACGCGCTGGTCGTCGAGCCCGGGACGAAGATGGCCGCCCAGGTGCGGCGCGGTCAGCTGACCCTCCCGGACGAGGACGACCAGGCCGCCAAGTACGAGCTCGCCGACGACCTGCTCACGGCGGCCGGCCTGGGCTGGTACGAGGTCAGCAACTGGTCGCGCGGCCTGGAGCAGGCGTGCCGGCACAACCTGGCCTACTGGCGCGGGGACGACTGGTGGGGCATCGGCCCCGGGGCGCACTCCTACGTCGGGGCGTCCGACGGCGGTGCGGGAGGCCGCGGTGCCGCCGACGGCGCGGCGGGGGTGCGCTGGTGGAACGTCAAGCACCCGCTGCGCTACGCGACGCTGCTCGGCCAGGGGCGCTCGCCGGGGGCGGGGCGCGAGGTGCTGACCCGCGACGAGGCGCACCTGGAGCGGGTGATGCTCGGGGTCCGGCTCGCCGAGGGGCTCGACCTGGACGTGCTGGACGCCGACGGCCGCCGCGCCGTCGCCGGACTGGTCGCGTCCGGGCTGCTCGACGGGGCGGCGGCCGTGCGGGGCCGGGCGGTGCTCACGCGGCGCGGACGGCTCCTGGCCGACGCGGTCGTGCGCGAGCTGACCGCCTGA	MPALPDGEPVPADGALPELVARTAGAETDDASSRSRFGVYVHVPFCSVRCGYCDFNTYTASELGGGASQHEYATTALGEVDLAARVLDAAGLGDRPVSTVFFGGGTPTMLPAGDLVRILDGVRSAWGLAPDAEVTTEANPDSVTPGSLATLAEAGFTRVSFGMQSAVPRVLATLERTHDPARLPDVVRWAREAGLAVSVDLIYGTPGESLDDWRTSVEAALATGVDHVSAYALVVEPGTKMAAQVRRGQLTLPDEDDQAAKYELADDLLTAAGLGWYEVSNWSRGLEQACRHNLAYWRGDDWWGIGPGAHSYVGASDGGAGGRGAADGAAGVRWWNVKHPLRYATLLGQGRSPGAGREVLTRDEAHLERVMLGVRLAEGLDLDVLDADGRRAVAGLVASGLLDGAAAVRGRAVLTRRGRLLADAVVRELTA	PGPT0003200_3018	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003200-hemN|hemZ-K02495	NA	NA
AK001_00134	1875	lepA	COG0481	Elongation factor 4	TTGCCCATCCCGTCCGCCTCCCTGAGCGAACGCATCCAGCCGAACGCGACCCCGCCCGAGCTGATCCGCAACTTCTGCATCATCGCGCACATCGACCACGGCAAGTCGACGCTGGCGGACCGCATGCTGCAGCTCACCGGCGTCGTGCAGCCGCGCGACGCCCGGGCGCAGTACCTCGACCGCATGGACATCGAGCGCGAGCGCGGCATCACGATCAAGTCGCAGGCCGTGCGGATGCCCTGGCAGCGGGGCGAGGAGCCGTACGCGCTCAACATGATCGACACCCCCGGCCACGTGGACTTCACCTACGAGGTGTCCCGCTCGCTGGCCGCCTGCGAGGGCGCGGTCCTGCTGGTCGACGCCGCCCAGGGCATCGAGGCCCAGACGCTGGCCAACCTGTACCTGGCGATGGAGCACGACCTGGAGATCATCCCGGTCCTGAACAAGATCGACCTGCCCGCCGCGCAGCCCGAGAAGTACGCGGCCGAGCTCGCCGGCCTGGTCGGCGGGGAGCCGGAGGACGTGCTGCGGGTCTCGGGCAAGACCGGTGACGGCGTCACCGAGCTGCTCGACGTCATCGTGGACCGCATCCCGTCGCCGGTCGGCGACCCGGACGCCCCCGCGCGTGCCATGATCTTCGACTCGGTGTACGACACCTACCGCGGCGTGGTCACGTACGTGCGCGCGGTCGACGGCAACCTCAACCCGCGCGAGCGCATCGAGATGATGTCGACCAAGGCCACCCACGAGCTCCTCGAGATCGGCGTCATCTCGCCCGAGGCGATCAAGACGAACGGTCTGGGCGTCGGCGAGGTCGGCTACCTCATCACCGGCGTGAAGGACGTGCGCCAGTCCAAGGTGGGTGACACCGTCACCAGCGCCCGGCAGCCGGCGTCCGAGCCGCTGGGCGGTTACGAGGAGCCCAAGCCGATGGTGTTCTCGGGCCTGTACCCGATCGACGGGTCGGACTACCCGACGCTGCGCGACGCGCTGGACAAGCTCAAGCTCAACGACGCCGCCCTCAACTACGAGCCGGAGACCTCCGTGGCCCTCGGCTTCGGCTTCCGCGTCGGCTTCCTGGGGCTGCTCCACCTGGAGATCGTGCGCGAGCGCCTGGAGCGCGAGTTCGACCTCGACCTCATCTCGACCGCCCCGAACGTCGTCTACGACGTGACGCTGGAGGACGGCACCGAGGTCAAGGTCACCAACCCCTCGGAGTTCCCGGCCGGGAAGATCAAGGACGTCCGCGAGCCGATCGTCAGGGCCACGGTGCTCGCGCCGAGCGAGTTCGTCGGCGCGGTCATGGGCCTGTGCACCGACCGCCGCGGCCAGATGGAGGGCATGGACTACCTGTCCGAGGACCGGGTCGAGCTGCGCTGGACGCTGCCGCTGGCCGAGATCGTCTTCGACTTCTTCGACGCGCTGAAGTCGCGCACCCGCGGCTACGCCTCGCTGGACTACGAGCCCTCCGGCGACCAGGTGGCCGACCTGGTCAAGGTCGACATCCTGCTGCAGGGCGACCAGGTCGACGCCTTCAGCGCCATCGTGCACAAGGACGCGGCCTACGAGTACGGCGTCAAGATGACGGCCAAGCTCAAGGAGATCATCCCGCGCCAGCAGTTCGAGGTGCCGATCCAGGCGGCTGTCGGCGCGCGCATCATCGCCCGCGAGACGGTGCGCGCCATCCGCAAGGACGTGCTCGCCAAGTGCTACGGCGGCGACATCTCCCGGAAGCGCAAGCTGCTGGAGAAGCAGAAGGAGGGCAAGAAGCGGATGAAGAACATCGGGTCCGTCGAGGTCCCGAAGGAAGCCTTCATCTCCGCGCTGTCCTCCGACGGCTCCGGCGGCAAGGAGACCAAGGACAAGAAGAAGTAG	MPIPSASLSERIQPNATPPELIRNFCIIAHIDHGKSTLADRMLQLTGVVQPRDARAQYLDRMDIERERGITIKSQAVRMPWQRGEEPYALNMIDTPGHVDFTYEVSRSLAACEGAVLLVDAAQGIEAQTLANLYLAMEHDLEIIPVLNKIDLPAAQPEKYAAELAGLVGGEPEDVLRVSGKTGDGVTELLDVIVDRIPSPVGDPDAPARAMIFDSVYDTYRGVVTYVRAVDGNLNPRERIEMMSTKATHELLEIGVISPEAIKTNGLGVGEVGYLITGVKDVRQSKVGDTVTSARQPASEPLGGYEEPKPMVFSGLYPIDGSDYPTLRDALDKLKLNDAALNYEPETSVALGFGFRVGFLGLLHLEIVRERLEREFDLDLISTAPNVVYDVTLEDGTEVKVTNPSEFPAGKIKDVREPIVRATVLAPSEFVGAVMGLCTDRRGQMEGMDYLSEDRVELRWTLPLAEIVFDFFDALKSRTRGYASLDYEPSGDQVADLVKVDILLQGDQVDAFSAIVHKDAAYEYGVKMTAKLKEIIPRQQFEVPIQAAVGARIIARETVRAIRKDVLAKCYGGDISRKRKLLEKQKEGKKRMKNIGSVEVPKEAFISALSSDGSGGKETKDKKK	PGPT0015105_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771	NA	NA
AK001_00135	798			hypothetical protein	ATGACCACCGTGACGCCCACCGTGGACCCCTCCAGCGGGCTGCGGTCCGACGGCGGGCCGGACCTCGACCACCTGAACCGACTCGCCGCGCTGCAGGCGGCCGTCCTGGCGGAGGTGCCCGACGCCGACGCGCGCGCCCCGGTCCCCGCCTGCGGACGCTGGACGGTCGCCCGGCTGGTCGTGCACCTCGCCCGGATCCACCACTGGGCCGCGGGCCAGGCACGTCGCCGGCAGGAGACGCCGCTCGGGCGCGGCCCGTTCGACCTCGCTCCGTTCTACGCGGCGCAGGCCGCCGAGCTGCGGGACACGCTGACGGCGCTGCCCGCGCACGATCCGGCGTGGACGTTGCTCGGCACCGGGCCGGTGTCGTTCTGGCACCGCCGGCAGGCGCACGAGACGCTGATCCACCTGCACGACCTGCGCGCCGCCGCCCTCGGGTCCGGGCCGCGCGCGGCGCGCGAGCACCCGGTCGACGTCCCGGCCGAGGTCTGGGGGGACGCCGTCGACGAGGTGCTGGGCATGTTCCTGCCCCGGCAGATCGCCCTGGGGCGGGCGGCACACCTCCCGTCGTCGGTGCGGCTGACCGCCACCGACCTGGGGTGGTCCTGGCGGCTGGGGCCGACCGGCTCGGGCCCGCACGGCACCGACCCGGCCGGCGACGCCGCCGAGCTGCGAGCCCCGGCGCGCGAGCTGGCCCTGGTGCTGTGGCGGCGGCTCACCCCGGACGAGGCCGACGCCGGGATCACGGGCGACGCCGGCGCGGTGACCTCCCTGCTGGACGACCGGCTGGTGCCCTGA	MTTVTPTVDPSSGLRSDGGPDLDHLNRLAALQAAVLAEVPDADARAPVPACGRWTVARLVVHLARIHHWAAGQARRRQETPLGRGPFDLAPFYAAQAAELRDTLTALPAHDPAWTLLGTGPVSFWHRRQAHETLIHLHDLRAAALGSGPRAAREHPVDVPAEVWGDAVDEVLGMFLPRQIALGRAAHLPSSVRLTATDLGWSWRLGPTGSGPHGTDPAGDAAELRAPARELALVLWRRLTPDEADAGITGDAGAVTSLLDDRLVP				NA	NA	NA	NA	NA
AK001_00136	1389			Cyclomaltodextrinase	ATGACCGACGACGACGGAGCGCGCCCGGCCGAAACCGGCTGGGTCGCGCACGCGATGTGGTGGCACGTCTACCCCCTGGGCTTCGTGGGCGCGCCGGTCCGTCCGGCCGAGGGCACCGACGGTGCCGACGGCGCCGGCAGCACGGCCGTCGTGCACCGGCTCGGCCGGATCGAGGCGTGGCTCGACCACGTCGTCGCGCTCGGGCTCAACGGCCTGCTGCTCGGGCCCGTGTTCGCCTCGTCGACGCACGGGTACGACACGGTCGACCACCTGCGCGTCGACCCGCGGCTGGGGGACGAGGCCGACCTGCGGCGACTCGTCGACGCCGCCCACGCCCGCGGCGTGCGGGTGCTGCTCGACGGCGTCTTCCACCACGTCGGGCGCGAGCACCCGGCGGTGCGGGCGCTGGAGGCCGAGGGGCCGGGGTCCCCGGCGGCGGCGCTGTTCCGCGTCGACCGCGACGCCGTCGACCCCGCGACGTGGCGGCCGGGGGACCCGGTGCCGGTCGCCGTGTTCGAGGGCCACGACCAGCTCGTCGCGCTGGACCACGGCTCGCCGGCGGTCGAGGACCTCGTCGTCGAGGCCATGACCTACTGGCTCGACCGCGGTGTCGACGGCTGGCGGCTGGACGCCGCCTACGCCGTGCCGCCGGCCTTCTGGGCGCGGGTGCTGCCACGGGTCCGCGAGCGCCACCCCGAGGCGTGGTTCACCGGCGAGGTGATCCACGGCGACCTGCCCGGGATCGTGGCGGCGTCGACCGTGGACTCGGTGACCCAGTACGAGCTGTGGCAGGGGATCTGGCACGCGATCGCCGACCAGAACCTGTTCGAGCTCGCCCACGCGCTCGGGCGGCACGCGCAGTTCCTGCGCACGTTCGTCCCGAGCACGTTCGTCGGCAACCACGACGTGACCCGGATCGCCGACGCCGTCGGGGACCGGCACGTGCCGCACGCGCTCGCGGTCCTGTGCACCGTCGCGGGGACGCCGTCGTTCTACGCCGGGGACGAGCTGGGGCTGCACGGCGTCAAGGAGGAACGGCTCGGCGGCGACGACGCCGTGCGGCCCGAGCTCGCCGAGCGGCCCCCGGGTCCGCAGGACCTGTCGGCCGAGGCGGCCGCGGTCCTGGCGGTCACCCGCGAGCTGGTCGCGCTGCGCCGGCGCCGGCCCTGGCTGCGCACCGCGGTCACCGACGTCGTGCAGGTGGCCAACCCGACGATCGTGCTGCGCACGGCGCGCGACGCCGACGCCGTCGTCACGGTCCTGCACCTCGGCGACGACGAGGTCACGGTCCCGGCCGCGGGCTCGCGGCAGGTGCTGGCCGGCACGGGTGCGCTCGAGGGCGACGCCGTGCGGGTGCCCGCCCACGGCTGGGCGGTGCTGGGTTCCTGA	MTDDDGARPAETGWVAHAMWWHVYPLGFVGAPVRPAEGTDGADGAGSTAVVHRLGRIEAWLDHVVALGLNGLLLGPVFASSTHGYDTVDHLRVDPRLGDEADLRRLVDAAHARGVRVLLDGVFHHVGREHPAVRALEAEGPGSPAAALFRVDRDAVDPATWRPGDPVPVAVFEGHDQLVALDHGSPAVEDLVVEAMTYWLDRGVDGWRLDAAYAVPPAFWARVLPRVRERHPEAWFTGEVIHGDLPGIVAASTVDSVTQYELWQGIWHAIADQNLFELAHALGRHAQFLRTFVPSTFVGNHDVTRIADAVGDRHVPHALAVLCTVAGTPSFYAGDELGLHGVKEERLGGDDAVRPELAERPPGPQDLSAEAAAVLAVTRELVALRRRRPWLRTAVTDVVQVANPTIVLRTARDADAVVTVLHLGDDEVTVPAAGSRQVLAGTGALEGDAVRVPAHGWAVLGS	PGPT0012200_1088	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-HYDROLASE,PGPT0012200-cd|ma|nplT-K01208	NA	NA
AK001_00137	840		COG1305	putative protein	GTGAGCCTGCTGCGCGTGGTGCACACGACGAGATTCGACTACGCCGGGGACGTGACGGCCTCGTACAACGAGGCGCGGATGCGACCGGCCGACGACGACCACCAGGTCGTACGGTCGGCCCGCGTCGACGTCGAGCCGTCCACCTGGACCGACTCCTACCGCGACTACTGGGGCACCCACGTCACCCTGTTCGAGGTGCTGCGCCCGCACGGGAGCCTGCGGATCGTCGCCGACGCGACCGTCGAGGTGACGGCACCGGGACCCGCGCGGTCCGCGGTCGGCTGGGAGGACCTCGGCGGTCCCGCCGTCCTGGACGAGCACGCCGGCTACCTCGGTCACACCCCGACCACGGCGGTGCCCGACGACGTCGCGGCGCTCGCGCTGGAGGCGGCCGGGGGACTGGACCCCGGCCCCGCGGCCGAGGCGGTCTGCCTGGCGGTGCGCGACCGCCTGGAGTACGTGCCGGGGGTGACCACCGTGCACACCCCCGCGGCGGACGCGTGGGCCTCGCGCGAGGGGGTCTGCCAGGACATGGCACACCTGGGCATCGGTGCGCTGCGGTCGCTCGGCATCCCGGCGCGCTACGTCTCCGGGTACCTGCACCCGCAGGCCGGCGCCGAGATCGGGGTGCCCGAGACCGGCGAGTCGCACGCCTGGCTGGAGTGGTGGGTCGGGCAGTGGGTGGCCTACGACCCCACGAACCGGCGGTACGCCGGGGAGGACCACGTCGTCGTCGGCCGCGGGCGCCAGTACGGCGACGTCCCCCCGCTCAAGGGCGTCTACGCCGGTCCGGGCGCGAGCGAGCTGGACGTGACCGTGGAGATCACCCGCCTGGCGTGA	MSLLRVVHTTRFDYAGDVTASYNEARMRPADDDHQVVRSARVDVEPSTWTDSYRDYWGTHVTLFEVLRPHGSLRIVADATVEVTAPGPARSAVGWEDLGGPAVLDEHAGYLGHTPTTAVPDDVAALALEAAGGLDPGPAAEAVCLAVRDRLEYVPGVTTVHTPAADAWASREGVCQDMAHLGIGALRSLGIPARYVSGYLHPQAGAEIGVPETGESHAWLEWWVGQWVAYDPTNRRYAGEDHVVVGRGRQYGDVPPLKGVYAGPGASELDVTVEITRLA				NA	NA	NA	NA	NA
AK001_00138	933			hypothetical protein	GTGCTGAGCCGGATCGCCGAGTCCCTGTTCTGGATCGGCCGGTACGTCGAGCGGGCGGACGACACCGCCCGGATCCTCGACGTGCACGTGCAGATGCTCTCCGAGGAGCCGTGGGCGGAGGAGTCCCTGGCGTGCCGGTCGCTGCTGGCGATCATGGACCACCCTGCCCCGTCGGACGACGCCGTCGTCGGGCGCGACGCCGTCGTGCGGCTGCTGGCCCACGACCGGTCCAACCCGTCGGCCATCGCCGGTGCGCTGGTCGCGGCCCGGGAGAACGCCCGTCGGGCCCGCGAGATCGTCTCCACCGAGCTGTGGGAGACGCTCAACACCACGCGCAACGAGGTCTCGGTCGTCGGCCGTCGCGTCGGGGCGCACGAGTTCTTCGGCTGGGTGCGTCAGCGGGCGGCGGTGGTGGCGGGACTGATGGACTCCGCGACCCCGCACGACGCCACCTGGCACTTCATGGTGCTGGGCCAGTCGCTCGAGCGGGCCGACATGACGGCCCGCCTGCTGACCACCCAGGCGCGGCTCGGGGCCGCGGGGCCGGGATGGACGACGGTGCTGCGCTCCTGCGGCGCCCACGAGGCCTACCTGCGGGCCCACCGCGGCCGCACCTCCGACGTCGACGCCGCCGGGTTCCTCGTGCGCGACCGGCTGTTCCCGCGCTCGATCGTCTACGCCCTCGGTGCCGCCGACCGGGCGCTGCGCGCGCTCGAACCGGTCGAGAGTCGCCGCGAGATCAGCGACGAGGCGGTCCGCCAGCTCGGCATCGTGCGGGCGCGGCTGGAGTTCGCCCGCCGCACCGACACCCTCGAGGACCTGCCCGCCACGCTGGAGCAGGTCCAGCAGGCGTGCTCGCGCGCGTCGGACGCGATCCGTGACCGGTACTTCCCGTCGTCGGCGACGACGGCCTGGGTGGGGGAGGCGCTGTGA	MLSRIAESLFWIGRYVERADDTARILDVHVQMLSEEPWAEESLACRSLLAIMDHPAPSDDAVVGRDAVVRLLAHDRSNPSAIAGALVAARENARRAREIVSTELWETLNTTRNEVSVVGRRVGAHEFFGWVRQRAAVVAGLMDSATPHDATWHFMVLGQSLERADMTARLLTTQARLGAAGPGWTTVLRSCGAHEAYLRAHRGRTSDVDAAGFLVRDRLFPRSIVYALGAADRALRALEPVESRREISDEAVRQLGIVRARLEFARRTDTLEDLPATLEQVQQACSRASDAIRDRYFPSSATTAWVGEAL				NA	NA	NA	NA	NA
AK001_00139	1581		COG2308	putative protein	ATGGCGGACCTGTTCGACGACTACCCCCTGGGCCCGGCGTTCGACGAGCTCATCGACCGTGAGCGCGCGGTGCGGCCCCGCTACGAGCAGGTGCACGCCACCTTCGCCTCGTTGTCGCCCGAGGAGGTCGCCGCCCGCTCGGACACGCTGGCGCGCTCCTTCCTGGCCCAGGGCATCACCTTCGACGTCGCGGGCGAGGAGCGGCCCTTCCCGCTGGACGTGGTGCCCCGTGTCGTCGAGCCGGACGAGTGGGACCGGATCAGCCGGGGCGTGCAGCAGCGGGTGCGGGCCCTCGAGGCGTTCCTCGCCGACGTCTACGGCCCGCAGCACGCGGTGCGCGACGGCGTGGTCCCGCGTCGGCTCATCGAGTCCAGCGGCGAGTTCCAGCGGGCGGCGCACGGCATCGTCCCGGCCAACGGCGTGCGGTGCCACGTCGCCGGGGTCGACCTGATCCGCGACGAGGCCGGGGAGTTCCGGGTGCTGGAGGACAACGTGCGGGTGCCCTCCGGCGTCAGCTACGTGCTGGCGAACCGGCAGGCGATGGTCCGCACGGTCCCCGAGCTGTTCTCCGAGCTGCGGGTGCGCAGCGTCGTGGAGTACCCGCGCCGGCTGCGGTCCGCGCTGGTGGCCGCGGCCCCCGACGGCACGCCGGACCCGACGGTCGTGGTCCTCACGCCCGGGGTGTTCAACTCCGCCTACTACGAGCACGCGCTGCTGGCGCGGCTCATGGGGGTCGAGCTCGTCGAGGGGCGGGACCTGTACTGCGCCGCCGGGCGCGTCTACATGCGCACCACGAGCGGCCCCCAGCGCGTCGACGTGATCTACCGCCGCGTCGACGACGCGTTCCTCGACCCCGTGCAGTTCCGGGCCGACTCCGTGCTCGGGGTGCCGGGCCTGGTCGACTGCGCCCGCCGCGGCACGGTGGCGCTGGCCAACGGCCTCGGCAACGGCGTCGCCGACGACAAGCTGGTCTACACCTACCTGCCGGACCTGGTGCGCTACTACCTGTCCGAGGAGCCGGTGCTGCAGAACGTCGACACCTGGCGCCTCGAGGAACCGGGGGCGCTGACCGAGGTGCTCGAACGGCTCGACGAGATGGTCGTCAAACCCGTCGACGGCGCCGGGGGCAAGGGGATCGTCGTCGGCCCGGACGCCTCGGCCGACGAGCTGGCCGCCCTGCGCGCTCGGCTGGTCGCCGACCCGCGCGGCTGGATCGCCCAGCCGGTGGTGCAGCTGTCCACCACCCCGACCTACGTCGACGGCGCCTTCCGGCCCCGGCACGTGGACCTGCGCCCGTTCGCGGTCAACGACGGCGACGACGTCTGGGTGCTGCCCGGCGGGCTGACCCGGGTGGCGCTCGGGGAGGGCCAGCTCGTGGTCAACAGCTCCCAGGGCGGCGGGTCGAAGGACACCTGGGTGCTCGAGCACCCTCGCGACCACGGCGCCGCCCCGGCGACCGACGACGCCGCCTCCCCGCGTCCGGCCGAGGCCGGGGTGCCGATCGCGACCAACCCGGCCGACGTCGTCGACCTGCACCACCAGCAGCAACAGCAGCAGCAACAGGAGGTGCCCCCGTGCTGA	MADLFDDYPLGPAFDELIDRERAVRPRYEQVHATFASLSPEEVAARSDTLARSFLAQGITFDVAGEERPFPLDVVPRVVEPDEWDRISRGVQQRVRALEAFLADVYGPQHAVRDGVVPRRLIESSGEFQRAAHGIVPANGVRCHVAGVDLIRDEAGEFRVLEDNVRVPSGVSYVLANRQAMVRTVPELFSELRVRSVVEYPRRLRSALVAAAPDGTPDPTVVVLTPGVFNSAYYEHALLARLMGVELVEGRDLYCAAGRVYMRTTSGPQRVDVIYRRVDDAFLDPVQFRADSVLGVPGLVDCARRGTVALANGLGNGVADDKLVYTYLPDLVRYYLSEEPVLQNVDTWRLEEPGALTEVLERLDEMVVKPVDGAGGKGIVVGPDASADELAALRARLVADPRGWIAQPVVQLSTTPTYVDGAFRPRHVDLRPFAVNDGDDVWVLPGGLTRVALGEGQLVVNSSQGGGSKDTWVLEHPRDHGAAPATDDAASPRPAEAGVPIATNPADVVDLHHQQQQQQQQEVPPC	PGPT0026300_18	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048	NA	NA
AK001_00140	528			hypothetical protein	ATGGCGAGCCACCGGTGGACGAGACTCCTGCGTGAGGCGGCGCGCGCCGTCGGGTCGGCGGTCGCGCGGTCGCGACGACGCCCGACGGCGCCCCCGGGCCGGCAGGCGCCCGCCGGTGCCGTGCGCTACCCGGGGGACTTCACCGGCGTCGTGCGGCCCGTGTACTCCCCGCACCTGGACGGTGCGCCGGACCCCGGCGAGATCGTGTGGACCTGGGTGCCGTTCGAGGAGGACCACAGCCGCGGCAAGGACCGGCCGGTGCTGCTGATCGGCCACGACGGCCCGTGGCTGCTCGCCCTGCAGCTGACCAGCAAGGACCACGACCGCGACGCGGCCACGGAGGCCCGGTACGGCCGGCTGTGGATGGACATCGGGTCCGGGCCGTGGGACGCCCGGGGCCGGCCCAGCGAGGTGCGGGTGAACCGCGTCGTGCGGGTGGCGCCCGACGCCGTGCGCCGCGAGGGTGCGGTGCTGGACGCCGCGACCTTCCGCCAGGTCGTCGACACGATGAGCCGCGCCCGTCGCTGA	MASHRWTRLLREAARAVGSAVARSRRRPTAPPGRQAPAGAVRYPGDFTGVVRPVYSPHLDGAPDPGEIVWTWVPFEEDHSRGKDRPVLLIGHDGPWLLALQLTSKDHDRDAATEARYGRLWMDIGSGPWDARGRPSEVRVNRVVRVAPDAVRREGAVLDAATFRQVVDTMSRARR				NA	NA	NA	NA	NA
AK001_00141	261	rpsT	COG0268	30S ribosomal protein S20	GTGGCAAACATCAAGTCCCAGATCAAGCGCAACCTGCAGAACGAGAAGGCGCGCCTGCGGAACCGCTCCGTGAAGTCGGAGCTCAAGACTCACGTCCGCAAGGTCCGCAAGGCCGTCGCCGCCGGCGACAAGGAGGCCGCCACCGAGGCGCTCCGCGTCGCGTCGCGCAAGCTCGACAAGGCTGTCTCGAAGGGTGTCATCCACCCCAACCAGGCCGCGAACCGCAAGTCGGCCATCTCGAAGGCCGTCGACGCGCTCTGA	MANIKSQIKRNLQNEKARLRNRSVKSELKTHVRKVRKAVAAGDKEAATEALRVASRKLDKAVSKGVIHPNQAANRKSAISKAVDAL				NA	NA	NA	NA	NA
AK001_00142	1014			hypothetical protein	GTGCCGCCCGCCTCCCGCTCCCGCCCCGCGAAGACCTCCGCGAACCAGCGCCCCTGGAACGACCCGACCCTCGCTCCGGTGGTCCTGGTCCGCGGCCCCGAGGGCCTGCTGGCCGAGCGCGCGGTGGACGGCGTGGTGGCACTCGCCCGCGAGCGCGACCCGGAGGTCGAGCGTGCCGAGCTGGACGCGCCGACCTACGCGGCCGGCCAGCTCACGGTGGCGGCCAGCCCGTCGCTGTTCGGCGAGGCGAAGGTCGTGGTCGTGCGGGGGGCGGAGGCGTGCACCGACGACCTCGTGGCCGACGTCGTCGACTACGTGGCCGCACCCGACCCGGAGACGGTCGTGGTGGTGGTGCACGGCGGGGGGAACCGCGGCAAGAAGATGCTCGACGCGATCACCGGGTCCGGTGCGCCGGTGCTGCAGTGCGACGCCGTGAGCAAGGACGCGGACAAGGTGGCGTTCGTCGGCGGCGAGTTCCGTGCCGCGCGGCGCCGTGCCGAGCAGGCCGCGGTGCGGGCGCTGGTCGACGCGCTGGGCAACGACCTGCGCGAGCTCGCGGCGGCCTGCTCCCAGCTCGTCGCGGACACCACGGGCACGATCTCCGCCGAGACGGTGGACCGGTACTACGGCGGCCGCGTGGAGGCGACCGGTTTCAAGGTGGCCGACGCCGCGGTGGCCGGCGACGCCGGGGCCGCGGTGGCGCTGCTGCGGCACGCCCTGGCCACCGGGGCCGACCCCGTGCCCGTCGTGGCGGCGCTGGCGCTGCGGCTGCGGACGCTGGCCCGGGTGGCGGCGATCCGCGGGGGGACGACGACGGCGCGCGAGCTCGGCCTGCAGGACTGGCAGGTGCGCAACGCCCAGCGGGACCTGTCCCGGTGGACGCCGGAGGGGCTGGCCACCGCCATCACCGCGGTGGCCAAGGCCGACGCCGACGTCAAGGGCGGCGGGCGCGACCCCGTCTACGCCGTGGAGACCGCGGTGCTGACGATCGCGCGCTCCGGCGGACGGCCCTGA	MPPASRSRPAKTSANQRPWNDPTLAPVVLVRGPEGLLAERAVDGVVALARERDPEVERAELDAPTYAAGQLTVAASPSLFGEAKVVVVRGAEACTDDLVADVVDYVAAPDPETVVVVVHGGGNRGKKMLDAITGSGAPVLQCDAVSKDADKVAFVGGEFRAARRRAEQAAVRALVDALGNDLRELAAACSQLVADTTGTISAETVDRYYGGRVEATGFKVADAAVAGDAGAAVALLRHALATGADPVPVVAALALRLRTLARVAAIRGGTTTARELGLQDWQVRNAQRDLSRWTPEGLATAITAVAKADADVKGGGRDPVYAVETAVLTIARSGGRP	PGPT0029415_7	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238	NA	NA
AK001_00143	1140	pimB	COG0438	GDP-mannose-dependent alpha-(1-6)-phosphatidylinositol monomannoside mannosyltransferase	GTGCCTCGGACCCTCGTCGTCACCAACGACTTCCCGCCGCGCCAGGGCGGCATCGAGACGTTCGTCCACGCGATGACCTCGCGCTTCGACCCCGACGACGTGGTCGTGTACACCTCCTCGACCCCCGGCCAGGCGGAGTACGACCGCACCCTGCCCCACCCCGTCGTCCGGGCACGGACCCGCATGCTGCTGCCCACCCCGGCGCGGACCCGCGAGGTCGCCCGGCTCGTGGACGCGCACGGGTGCGACACGGTCTGGTTCGGCGCCGCCGCACCCCTGGGCCTCATGGCACCGGCGCTGCGGCGGCGCACCGACGTGCGCCGGATGGTGGCCACCACCCACGGCCACGAGCTGTGGTGGGCCCGCGTCCCCGGCACCCGGGCGGCCCTGCGCCGCATCGGCCGGTCCGTCGACCACCTCACCTACCTCTCGGACCGCACCGTCGGGGTGCTGGCCGACGCCGTCGGCGCCGAGGCCGCCGCCCGTGCCGTGCGCCTCTCCCCCGGCGTCGACCCCTCGACCTTCGCCGGCACCGACCCCGCCGGCGGCCGCGCGGTCCGCGAGCGCCACGGCATCCCGGCCGACGCTCCCGTGGTGCTGTGCGCCGCCCGGCTGGTCGAGCGCAAGGGCCAGGACACCCTGGTGCGCGCCCTGCCCGCCGTGCTGCGCGAGATCCCCGACGCCCGGCTGCTCCTGGTCGGCGACGGTCCCGCCGCCGGCCGGCTGCGCCGTCTCGTGGACGAGCACGGCGTGTCCGACCACGTCGTCCTCGCCGGGGGGCACCCGCACGCGGCGATGCCGGCCTTCTACAGCGCTGCGGACGTGTTCGCCGGGCCGTCGCGCACCCGGCGCGGCGGGCTCGAGGTCGAGGGGCTCGGCATCGTCTACCTCGAGGCCCAGGCCGCCGGTCTGCCCGTCGTCGTGGGCGACTCCGGCGGGGCACCCGACGCGGTGCGCGACGGCGTCACCGGGTTCGTCGTCGACGGCACCGACCCGGACGACGTCGCGGCCCGTCTGGTCGAGCTCCTCGCGGACCCGGTGCGGAGCCGGCGGATGGGTGCCGCCGGGCCGGGCTGGGTCGAGGACGCCTGGACCTGGGACGAACGGTTCGAGATCCTGCACGGCCTCCTCACCGGGTGA	MPRTLVVTNDFPPRQGGIETFVHAMTSRFDPDDVVVYTSSTPGQAEYDRTLPHPVVRARTRMLLPTPARTREVARLVDAHGCDTVWFGAAAPLGLMAPALRRRTDVRRMVATTHGHELWWARVPGTRAALRRIGRSVDHLTYLSDRTVGVLADAVGAEAAARAVRLSPGVDPSTFAGTDPAGGRAVRERHGIPADAPVVLCAARLVERKGQDTLVRALPAVLREIPDARLLLVGDGPAAGRLRRLVDEHGVSDHVVLAGGHPHAAMPAFYSAADVFAGPSRTRRGGLEVEGLGIVYLEAQAAGLPVVVGDSGGAPDAVRDGVTGFVVDGTDPDDVAARLVELLADPVRSRRMGAAGPGWVEDAWTWDERFEILHGLLTG	PGPT0024300_504	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024300-pimB-K13668	NA	NA
AK001_00144	2211			hypothetical protein	GTGACCCCCTCCACCACCGACGTCCCGCCGCTGCCGACGCCCCGCACCCGGCTCGTGGGCCGTGAGCAGGAGGTCCGCACCGTCCTCGACGCGGTGGACGCCTCGACCCAGGCGGTCGTGACGATCACCGGGATCGGCGGCAGCGGCAAGACGACGCTCGCCACCGAGATCCTCCGGCACCTCACCGTCCAGTTCGCCCGCCGCTGGTTCGTCGACCTGACTCGTCTCGACCGTGCCGAGGACCTGGCGGGGCACGTGTGCCACCGGCTCGGCGTGCGCCGCGGGACGACGGGGCCGCTCGCGGTCCTCGAGGAGGAGCTCGGTCGGGCGCCCGCCCTGCTCGTGCTCGACAACTGCGAGCACCTGCTCGACGCCGTGGCCGAGCTGGTCGGCTCCCTGAGCGCCACGTGCCCGGAGCTGACCGTGCTGGCCACCAGTCGTCGTCCCCTCGACGTCCCGGCCGAGCGCACCGTCGCGCTCGGGCCGCTGCCCGTCACCGGGCCCGACGGGGGCCCGGGTGCCGCGGTCGAGCTGCTCGTCGAGCGCGCCCGGACGGCGGGTGCGGACCTGTCCGCCGACGACGTCGCCCCGGACGGCCCGACCGCGGCGCACCTGGCCGCGGTCTGCCGCCGGCTGGACGGCCTGCCGCTGCCGATCGTGCTGGCCGCGACGCACCTGCGCACGATGCATCCCGCCGAGCTGGCCGAACGGTTGGAGCGCGACCTGACCCTGCCGGCGATGCGGGGCGGGGCGGACCACCAGCGCACCATGGCGGCGTCGATCGACTGGAGCCTCGACCTGCTGGCGACCTCGCACCGGGACCTCCTGCTGCGCGCCGGGGTGTTCGTCGGCGCCTTCGACGCCGACGACTGCCGTGCCGTGTGCCGCCCGGACGGCACGCCGGAGGAGGTCGACGACGGGCTGCGCGAGCTGGTGGAGCACTCGCTGCTGACGGCCGACACCTCGGCGGCGCCGACGCGCTACCGGATGCTCGCCGTGGTGCGCGAGCACGCCCGACGCCGCCTCGGCGCCGGTCCGACGGACCGGCTGGCCGTCGCCCACCGTGTCCATCTGACGACGACGATCGGCGTCACGCCGTCGAGCTCGCCGTTCTACACACCGGCCGACGTGGCCCGGCTGGAGGTCGTCCACGACGACGCGGTGGCGGCGCTGGACCGGGCCGTCCGAGACGAGGACGCCGCGGCCGTCGTCGGTCTGCTCATGGCGCTGATGCGGTTCTGGCGCGTCACGGGCCGGATCCGGTTCGGGCTGGACCACGCCGCCCGGGCCTCGGTCGGGCTGGACGGGTTCGGCCTGGCGGTCGTGCACCTCGTCCGCGCCGACCTGGAGCGACTGCTCGGGCTTCTCGACGACGCCGACGAGCACGTGCGGGCCGGGCTGGCGATCGTCCGGGCCGGGGGTGCGGCCACGGCGCACGCCCTGCCCACCGGGCTGGGGATCCGCGGCGACCTCCTGTCCGCGCGGGGCCGGCACGACGACGCCCTCGCGCTGTACGACGAGATCCGTGCGCTGTACGACCCCGTGGACCGTCCGCAGCTGCACGGCGTCTGGTGCGCGAACGTCGGCGGGATCCTCCTCGCCGCGGGGCGCGACGCGGAGGCCGAGCCCCGGCTGCTCGAGGCGCGCCGCGTCCTGGGCGGGCAGCCCCCGGTCTGGCTCGCCGGACGCGTGCACGGCCACCTGGGCACGCTGGCCCGCCGGGCCGGGGACCTCGACGCCGCCCGCGAGCTGGTGCTGGCCGGGCTGGACGAGCTGGCACCGTTCGGCGCGCTGGCCGAGGCAGCCCCGCTGGTCGACGAGCTCGCCGCCGTCCTGCGGGCGGACGGGCGCCCCCGGGACGCGGAGGAGTGCGCCCGCGCGGCGGCGTCGATGCGCCGCCGCGTCGGGTCGACGAGCGCCCGGCACGACGGTCCGGGCGAGCACGGACCGGACGTCGCCGACGTGACCGCGCTGGTGCGGGACGTCCGCACCGCCCCGGCGCCGGCCGACGCGCTCACGGCGCGCGAGCGCGAGGTGGCCGACCTGGTCGCCGAGGGCCTGACGAACCCGCAGATCGCCCGACGGCTGGTCATCTCTCCGGGCACGGCACGCACCCACGTCGAACGCATCCGCACCAAGCTCGGGGTGTCCTCCCGGGTGCACGTCGCACGCTGGGTGCTCGAGAGATACGTCGATCGACGGACGCGCTGA	MTPSTTDVPPLPTPRTRLVGREQEVRTVLDAVDASTQAVVTITGIGGSGKTTLATEILRHLTVQFARRWFVDLTRLDRAEDLAGHVCHRLGVRRGTTGPLAVLEEELGRAPALLVLDNCEHLLDAVAELVGSLSATCPELTVLATSRRPLDVPAERTVALGPLPVTGPDGGPGAAVELLVERARTAGADLSADDVAPDGPTAAHLAAVCRRLDGLPLPIVLAATHLRTMHPAELAERLERDLTLPAMRGGADHQRTMAASIDWSLDLLATSHRDLLLRAGVFVGAFDADDCRAVCRPDGTPEEVDDGLRELVEHSLLTADTSAAPTRYRMLAVVREHARRRLGAGPTDRLAVAHRVHLTTTIGVTPSSSPFYTPADVARLEVVHDDAVAALDRAVRDEDAAAVVGLLMALMRFWRVTGRIRFGLDHAARASVGLDGFGLAVVHLVRADLERLLGLLDDADEHVRAGLAIVRAGGAATAHALPTGLGIRGDLLSARGRHDDALALYDEIRALYDPVDRPQLHGVWCANVGGILLAAGRDAEAEPRLLEARRVLGGQPPVWLAGRVHGHLGTLARRAGDLDAARELVLAGLDELAPFGALAEAAPLVDELAAVLRADGRPRDAEECARAAASMRRRVGSTSARHDGPGEHGPDVADVTALVRDVRTAPAPADALTAREREVADLVAEGLTNPQIARRLVISPGTARTHVERIRTKLGVSSRVHVARWVLERYVDRRTR				NA	NA	NA	NA	NA
AK001_00145	2448			hypothetical protein	GTGAGCACGGACCTGCGTCTCGTACCGGTCGTGGCCACGGCGTGGGTCGTCGCGTGGACCCTGACGGGTCCGTGGACTTCGGTGGCCCGTCCGCTGACGGTCGTCGGGGCCCTCGTGGCGCTGGGGTGCGCGGCAGCGGTCGCTGCCGGCGTCCGACGGCGCGGCGGCCCGGTCGGTCCGGTGGTCGCGCACGGAGCACTGGTGGCGGCGTGCCTCGTCGCCGTCGCGGCCTCGGTGGCCGTGCAGACCGCGGCGCGGGGTCCGCTGGCCGGGCTCGCCGACGACGGCGCCACGGCGACCGTCGACGGGCGCGTGGTCTCCTCGGCCCGTGCGGCGGTGCACGGGGACGGGTCCCGGTGGGTGCTCGCCGTCGACGCGGTCGTCGCGCGGGGCGTGCGTTCCGCCGCCGTCGGGCACGTCCTGGTCACGGCCCCGGGGGACCCGCCCCGCTTCGGGGCCGCGGTGCGCGCGCGGGTCAGGCTGGCCCCGCCGTCCTTCGGCGCGGGGGTCGTGGCCGCCGGGCGGGCGCCGACCCCCGTCGCCGAGAGCGCGCCGCCGGGTCCGTCCGGCCGGGCGACCCACGCCCTGCGCACCGCCCTCCTCGACGTCACCGACGGGTTGTCCGACCAGGCGCGCGGCCTGGTGCCCGGAGCCGCCGTCGGGGACACCTCCCGCGTGCCGGCCGAGCTCGAGGACGCGTTGCGCGTCACCGGCCTGACCCACGTCACGGCCGTCTCGGGCAGCCACTTCGCCATCGTGCTCACGGCCGCCGGCGCCGCGTGCGTGGCGCTGCGGGCCCCGCCCGCGGTCCGCGTCGGGCTGCTGGCCGCGGTCGGCGTCGGGTTCGTGCTCCTGGTGCGTCCCGAGCCGAGCGTGCTCCGGGCCGCCTGGACCTGCGCCGTGACGCTGGTCGCCCTGGTCCTGGGCCGCCCCGCGGCCGGGTTCCCGGCGCTGGCGACCGCCGCCACGGTGCTGCTCGTCGTCGACCCGTGGCAGGCCCGCTCGTTCGGGTTCGCGCTGTCCTGCGCTGCCACGGCCGGCATCGTGCTCCTGACCGGGCCGCTGTCGCGGCGTCTGGCCCCGTGGTGCGGACGGGGTCCCGCGTTCGCACTGGCGGTCCCCTTGGCCGCCCAGGCGGCGTGCGGCCCGGTGCTGATCCTGCTGGACCCGGCGCTGCCGTCCACCGCCGTGCTCGCGAACCTCCTCGCCGCCCCGGCCCTCGTCCCGGCGACCGTCCTGGGGCTGGTGGCCACGCTCGCGGCGCCGTGGGCCCCCGGTGCTGCCGGTGCCGTGGCGTGGCTGGCCGGGATCCCGACCGGCTGGATCGCGACCGTCGCCACCACCGCCGCGGCGCTGCCCGGGGCACGCCTGCCCTGGCTCGCCGGACCGGGCGGCGCGGTGCTGCTCGCCCTCGCGACCGCCGTCGTGCTCACGTTCGTGCTGCGGCGGCCCCCGGGGCGGGGCTGGCCGGTGGGCCGGGCACCGGCCGACCGGTTGTCGGCCCTGCGGCGCCGGGTGCGTCGCGCGCACCGGTCACGCCGGTCTCCCGGCGCCCGCGGCGGGCGGGTCCGGAGGCCCGGGGGCGCGGCGACGGCGGGTGCCGTCGTCCTCGTCACGGTCCTCGGGGTGGCGCTCGGGACGGTGCTCGTCGTCGCGCCACGCACCGGGCCGGCGGCCGGCGTCCCGCCCGACTGGCAGGTGGCCGCGTGCGACGTCGGACAGGGCGACGCGCTGGTCGTGCGCAGCGGGCCGCGTGCGGCCGTCGTGGTCGACGTCGGACCGCCCGGGGACGGTGCCGCACGGTGCCTGCGACGGCTCGGCGTGGACCGCGTCGACCTGCTGGTCCTGAGCCACTTCCACGCCGACCACGTCGGCGGTCTGGAGGGCGTGCTGGCGGGTCGGACCGTCGTGGCGGCCCTCGTCTCGCCCCTCGACGACCCGGCGGACGCCGCCCGCCGGACCCGGGTCGCGCTGGCCCGGCACGAGGTGCCCGTCGAGGTGGCCGCGGCCGCCCGTCAGGGCACGGCGGGCGACGTGGCCTGGACGGTGCTCGGCGCCGACGCCGGGGCCGGCGGGGCCAACGAGGCCAGCGTCGCGATCGCCCTGCGCACGGCCGCCGGGGTCGACGTCGTGGCGCTGGGTGACCTGGAGGAGCCGGGGCAGGAGCGCCTCGCCGCGGACCTGGCCGCCGGCGGGTATCCCGACGGTGCCGTCGAGGTCGTCAAGATGGCCCACCACGGGTCGGCCGCGCAGTCGGCCGACCTGGCGCGGCGGCTGGCCCCCGGGGTCGTCCTGGTCTCGGTGGGGCAGAACGACTACGGCCATCCCACCCGGACCGCGCTGGACCTGTATCGCGCGGTCGGGTCCGAGGTGGTGCGCACCGACCGGTGCGGCACGGCCTCGCTGTCCGTGCGGGCGGGAGGCCTGGCCCTGGCGTGCGCCGGCTGA	MSTDLRLVPVVATAWVVAWTLTGPWTSVARPLTVVGALVALGCAAAVAAGVRRRGGPVGPVVAHGALVAACLVAVAASVAVQTAARGPLAGLADDGATATVDGRVVSSARAAVHGDGSRWVLAVDAVVARGVRSAAVGHVLVTAPGDPPRFGAAVRARVRLAPPSFGAGVVAAGRAPTPVAESAPPGPSGRATHALRTALLDVTDGLSDQARGLVPGAAVGDTSRVPAELEDALRVTGLTHVTAVSGSHFAIVLTAAGAACVALRAPPAVRVGLLAAVGVGFVLLVRPEPSVLRAAWTCAVTLVALVLGRPAAGFPALATAATVLLVVDPWQARSFGFALSCAATAGIVLLTGPLSRRLAPWCGRGPAFALAVPLAAQAACGPVLILLDPALPSTAVLANLLAAPALVPATVLGLVATLAAPWAPGAAGAVAWLAGIPTGWIATVATTAAALPGARLPWLAGPGGAVLLALATAVVLTFVLRRPPGRGWPVGRAPADRLSALRRRVRRAHRSRRSPGARGGRVRRPGGAATAGAVVLVTVLGVALGTVLVVAPRTGPAAGVPPDWQVAACDVGQGDALVVRSGPRAAVVVDVGPPGDGAARCLRRLGVDRVDLLVLSHFHADHVGGLEGVLAGRTVVAALVSPLDDPADAARRTRVALARHEVPVEVAAAARQGTAGDVAWTVLGADAGAGGANEASVAIALRTAAGVDVVALGDLEEPGQERLAADLAAGGYPDGAVEVVKMAHHGSAAQSADLARRLAPGVVLVSVGQNDYGHPTRTALDLYRAVGSEVVRTDRCGTASLSVRAGGLALACAG	PGPT0029415_962	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238	NA	NA
AK001_00146	927			hypothetical protein	GTGACCACGGCACACCACCACCCGACCGAGCCCCCGGACGCCACGGACGACCCCGTCGGGGGACGTCTGGAGGCCCTGCGCGCCGCGCTCGCCACTCCCACGGACGACGACGGCCCCGACGAGCTCGTCGAGCGGTTGCGCGCTCGGCGTTCCGGCGGCCACGTCGCCGCGGCCTACAGCGCCGCGCACGGCCACCCGGTGGACGACGCGCCGGACGGGGGCCGTCGCCGGTGGGCGCTGGCCGGACCGGTCGCCACCGCGGCCGCCGTCGTCCTGCTGGCCCTCGGGCTCGTCGTGGGAGGTGTCGCGCTCTGGCCCCGTCAGGACGTGGCGCCGCTGGGGGTGCCCGTCGGCGGCGCACCGACGGACCCCGCTCCGGGCGGCCCCGCCTCGGGCGGCCCCGTATCGGTCGACCCCGCACCGGCCGGGACCCCGCCCGGGCCGGCGAGCCCCGGAGCCGGCCCGGGCGGCTCGGGCGGCTCGGCGACGGGCAGGGGTGTGGTGGTGCACGTCATCGGCCAGGTCGCCGACCCCGGCCTGGTCACCGTGCCGACCGGGGCACGGGTGGCCGACGCGGTCGAGGCCGCCGGCGGTGCCACGGGCACGGCGGACCTGACCGCCCTGAACCTGGCCCGTTCCGTCGTGGACGGCGAGCAGGTGCACGTGCCGGCGCCCGGGGAGGAGCCGCGCGTGGCGGCACCGCCCGCAGGGACGGCGGCGGGGGCCGACGCCGCCGCCCCCGTGCCGCTCAACGCCGCGGACGCCACGGCGCTGACGGCGCTGCCCGGCGTCGGCCCGGTCCTCGCCGACCGGATCGTCGCCTGGCGTGACGAGCACGGGCCCTTCACCCGGTTCGACGAGCTCGCCGAGGTGTCCGGCATCGGCCCGGTGCTCCTGGAGGAGCTGCGCGACCTCGTGGTGCTGTGA	MTTAHHHPTEPPDATDDPVGGRLEALRAALATPTDDDGPDELVERLRARRSGGHVAAAYSAAHGHPVDDAPDGGRRRWALAGPVATAAAVVLLALGLVVGGVALWPRQDVAPLGVPVGGAPTDPAPGGPASGGPVSVDPAPAGTPPGPASPGAGPGGSGGSATGRGVVVHVIGQVADPGLVTVPTGARVADAVEAAGGATGTADLTALNLARSVVDGEQVHVPAPGEEPRVAAPPAGTAAGADAAAPVPLNAADATALTALPGVGPVLADRIVAWRDEHGPFTRFDELAEVSGIGPVLLEELRDLVVL	PGPT0029410_96	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029410-comEA-K02237	NA	NA
AK001_00147	912			DegV domain-containing protein	ATGCGTGACCTACCGGCCGTCCGCGTCGTGACCGACTCGACCGCCTGCCTGCCCGGCCCAGGAGACCTGCCCGCCGACGTCCTGCTGCCCCGGGAGCTGGCGCCCGTCGTCGTCCCCCTGCACGTGGTGACGGACGACACGGAGCTGCGCGAGGGCGTGGACGTCCGGCCGGCGGACGTGGCCGAGCGGATCGCCGCCGGGGAGCGGCTGACCACGTCGCAGCCGACGACGACCGAGCTCACCGCCGCCTACGGCGACCTGGCCGCCCAGGGGGCGCGTGCCGTGGTCTCGGTGCACCTGTCCGGGAAGCTGTCGGGCACGGTGGAGACCGCCGAGCGGGCCGGGCAGCGCGCCATGCTGCCGGTGCGCGTCGTGGACTCCCGCACCGCGGCGATGGGTCTCGGCTTCGCGGCCGACGAGGCGGCCCGCTGCGCCGCCGCCGGGTGCGACGCGGCCCACGTGGCGCGCCGCGCGGCCGAGGTCGCCGCCTCGGCGCGCACGACCTTCCTCGTGGACTCCCTGGACCACCTGCGTCGCGGCGGGCGGCTCTCCGCCCCGGCCGCCGCGCTGGGCACGGCGCTGGGCGTGCGGCCCATCCTCGCCCTGGACGACGGCGGGATCGACCTCGTCCAGCGGGTGCGCACCCGGCGGGCCTCCGTGGCCCGGCTGGTGGCGATCGCGCTGGAGCAGGTCCGCACGGCGACCCGTCCCGCGGTGGCGGTGCACCATCTCGGCGCGCCCGACCAGGCGGCCGAGGTCGCCGACGCCCTGGCGGGGCGCCTGGGGTTCACCCCGGTGGTGACCCCCGTCAGCGCCGTCCTCGGCGCGCACGTCGGACCCGGGGCGCTGGCCGTCGTGGTCGTCGACCGGGGCGGGCACGTGCACGACCTGGAGCCCGGCGGCCCCTGGTAG	MRDLPAVRVVTDSTACLPGPGDLPADVLLPRELAPVVVPLHVVTDDTELREGVDVRPADVAERIAAGERLTTSQPTTTELTAAYGDLAAQGARAVVSVHLSGKLSGTVETAERAGQRAMLPVRVVDSRTAAMGLGFAADEAARCAAAGCDAAHVARRAAEVAASARTTFLVDSLDHLRRGGRLSAPAAALGTALGVRPILALDDGGIDLVQRVRTRRASVARLVAIALEQVRTATRPAVAVHHLGAPDQAAEVADALAGRLGFTPVVTPVSAVLGAHVGPGALAVVVVDRGGHVHDLEPGGPW				NA	NA	NA	NA	NA
AK001_00148	2496	malP	COG0058	Maltodextrin phosphorylase	ATGGGTAGTGTCGCTCGTGTGACCGAATCGACGCCCCTGATCACCAGCCCGGAGCCCTCGGTCGAGGGGTTCGTGCGCGAGTACCTGCGCGAGCTCAACTTCACCCAGGGCACCGTCCTCGAACGCGCCAGCACCAACGACAAGTACCTGGCCCTGGCCCGCACCGTGCGCCACTACCTGATGTCGCGCTGGATGCGGACCACGAACGAGCACCTGCGCACGCAGCCCAAGGCCGTGGCGTACCTGTCCGCGGAGTACCTGCTGGGCCGCCAGCTCGACAACGCGCTCATCGCGGCCGACCTCACCGAGGTCGCCTCGGAGGCCCTGGCGTCGCTGGGCATCGACCTGGCCGACCTGCGCGAGGCCGAGGTCGAGCCGGGGCTCGGCAACGGTGGTCTGGGCCGCCTCGCCGCGTGCTTCGTCGATTCCCTGGCCACCATGTCGATCCCCGCCATCGGGTACGGCATCCGCTACGAGTACGGCATCTTCCGCCAGAACTTCGTGGACGGGTGGCAGGTCGAGGAGCCCGACCACTGGCTCGACAACGGCTCGCCGTGGGAGTTCGCCCACCCCGAGCACGAGGTCACCGTGAGCTTCGGCGGCCGCACCGAGACCGTCACCGAGCAGGTGGGCGACGACACCGTCGAGCGCACCCGCTGGGTGCCCGGCTGGAAGGTGCTCGGCGTCCCCTACAACTACATGGTCCCCGGCTACCGCAACGGGTGCGTGAACACGCTGCGGCTGTGGAGCGCGCGGGCCACGCACGCCTTCGACCTGGAGATCTTCAACTACGGCGACTACGCCGAGGCTGTGCGCGCCCAGACGTTCGCCGAGAACATCTCCAAGGTGCTCTACCCCGAGGACTCCACGCCGCAGGGCAAGGAGCTGCGCCTGCAGCAGCAGTACTTCTTCGTGGCGTGCTCGCTGCGCGACTTCATCGACCAGCTCCTGCCGGAGGGCTTCGACCTGCACCGGCTCCCCGAGCGCGTCTGCTTCCAGCTCAACGACACCCACCCCGTCATCGCGGTGCCCGAGCTCATGCGGATCCTCGTCGACGAGCAGGGTTTCGCGTGGGACGAAGCCTGGGAGGTCACCCAGGGCTGCTTCGCCTACACCTGCCACACGCTGCTGCCCGAGGCGCTCGAGGTCTGGCCCGTCGAGCTGCTGGGCCGCCTGCTGCCGCGGCACCTGGAGATCATCTACCGCATCAACGACGAGTTCCTCGACGAGGTGCGCGAGTCCTCGGGCGACGACGAGCTGCTCGTGCGGCGCATGTCGATCATCGCCGAGCACCCGCAGCGGGCGGTGCGCATGGCGCACCTGGCCACCGTGGCCGCGACCAAGGTCAACGGGGTCGCCGAGCTGCACTCGCAGCTCCTGCGCGACAAGGTGCTCGCCGACTTCGCCCGCCTGTGGCCGGAGAAGTTCACCAACGTCACCAACGGGGTGACCCCGCGCCGGTTCGTCCGCCTGGCGAACCCGGGCCTGTCCGGGCTGATCACCGAGGCGATCGGCGACGGCTGGGTCACCGACCTCGACCGGCTGCGCGACCTGGAGCCGATGGCCGACGACCCCGAGTTCCGGCGTCGGTTCCGCGAGGTCAAGGCCGCCAACAAGGAACGGCTGGCCGGCTTCCTCGAGCGGCGCGACGGGATCGAGATCCCGGCGGACACGATGCTGGACGTCATGGTCAAGCGCCTGCACGAGTACAAGCGCCAGACGCTCAAGATCCTGCACGTCATCACGCTGTACGACCAGATCGTCTCGGGACGCCTCGACCCGGAGGACGTGGTGCCCCGCACCGTCGTCTTCGGCGCGAAGGCCGCCCCCGGCTACGCGATGGCCAAGCAGATCATCGGCCTGATCAACCACGTCGGCTCCGTGGTCAACGCCCACCCCGAGGTCTCGCGGGTGCTGCGCGTCGCCTTCCCGGCGAACTACGACGTGACGGTGGCCGAGACGCTCATCCCGGCGGCGGACCTGTCCGAGCAGATCTCGCTGGCCGGCAAGGAGGCCTCCGGGACGGGCAACATGAAGTTCGCGCTCAACGGCGCGCTGACGGTGGGCACCGACGACGGCGCGAACGTCGAGATCCGCCAGCTCGTCGGCGACGACAACTTCTTCCTGTTCGGCCTCACCGAGCCGGAGGCCGCCGCCGTCGCCGAGGCCGGGTACCGGCCCGCGGCGTACTACGAGGAGAACCCGGTCCTGCGCCGGGCGCTCGACCTCGTGGCGCGCGGGGAGTTCTCCGGCGGGGACCGACGCGTCTTCGAGCCGATCGTGTCCAACCTGCTGGGCGAGGACCGCTTCATGGTGCTGGCCGACTTCCAGTCCTACCTGGACGCCCAGGAGCGGGTCGAGACCGCCTACCGCGACCCGGACGCCTGGAGCCGGGCGGCCGTGCTCAACGTGGCGCGCTCCGGCTTCTTCTCCTCGGACCGGTCGATGCGCGACTACCTCGACCGCATCTGGCACGCGGAGCCGATGGAGGCGTGA	MGSVARVTESTPLITSPEPSVEGFVREYLRELNFTQGTVLERASTNDKYLALARTVRHYLMSRWMRTTNEHLRTQPKAVAYLSAEYLLGRQLDNALIAADLTEVASEALASLGIDLADLREAEVEPGLGNGGLGRLAACFVDSLATMSIPAIGYGIRYEYGIFRQNFVDGWQVEEPDHWLDNGSPWEFAHPEHEVTVSFGGRTETVTEQVGDDTVERTRWVPGWKVLGVPYNYMVPGYRNGCVNTLRLWSARATHAFDLEIFNYGDYAEAVRAQTFAENISKVLYPEDSTPQGKELRLQQQYFFVACSLRDFIDQLLPEGFDLHRLPERVCFQLNDTHPVIAVPELMRILVDEQGFAWDEAWEVTQGCFAYTCHTLLPEALEVWPVELLGRLLPRHLEIIYRINDEFLDEVRESSGDDELLVRRMSIIAEHPQRAVRMAHLATVAATKVNGVAELHSQLLRDKVLADFARLWPEKFTNVTNGVTPRRFVRLANPGLSGLITEAIGDGWVTDLDRLRDLEPMADDPEFRRRFREVKAANKERLAGFLERRDGIEIPADTMLDVMVKRLHEYKRQTLKILHVITLYDQIVSGRLDPEDVVPRTVVFGAKAAPGYAMAKQIIGLINHVGSVVNAHPEVSRVLRVAFPANYDVTVAETLIPAADLSEQISLAGKEASGTGNMKFALNGALTVGTDDGANVEIRQLVGDDNFFLFGLTEPEAAAVAEAGYRPAAYYEENPVLRRALDLVARGEFSGGDRRVFEPIVSNLLGEDRFMVLADFQSYLDAQERVETAYRDPDAWSRAAVLNVARSGFFSSDRSMRDYLDRIWHAEPMEA	PGPT0018545_2567	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVAL	CE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018545-glgP-K00688	NA	NA
AK001_00149	783			hypothetical protein	ATGAGCCCCTTCCTCCCTGCCGTCTCGCGACGTGTCCTGGGCCTCCTGCTGAGCCTCGTCGTCGCGCTGGCCGGGACGGTCGTCGCCGCTCCCGCCGCGACGGCGGCCGACACGACCCCGCCCACGAAGCCCGAGATCACGCTCGAGCGCTGGCAGCGCCCGAAGGAGCCGGACTTCTCGGGCTACTGGCTGTGGAAGCCGCGCGCGACCTGGTCCGCCGCCCAGGACAGCCACGGGGTCACCGGGTACCACGTCCAGCTGCGGTTCCCGGGCGGTCGCTGGCACACACCGGCGCGGGGCAGGTGGCGCTCTCCCGACAAGCGCCACTACCGCGTCCAGCTCGAGCCCGGCCACCAGGCCTGCTTCCGCGTCCGGGCCCGCGACGCCGCCGGGAACGTGAGCCGGTGGTCGAAGCGGCGGTGCACCGCCGCGCCGCTGACGCCGCTGATGGACTTCCAGAGCACCGCGCTGGTGCAGGACAACGGTGCGTCGACCCATGAGTACGCCTACCTCAGCACCGAGGTGGGGCCGACCAGGACCGAGGCGAAGTTCACGGACGTCCGCGGTGTCCGCCTCCGGGTGCGCACCGGCCCGAAGGCCGGGCGCGCCACGGTGTACGTCGGACGTCAGCGCCTCGGCACGATCGACGCCCGCGCCTCGACCGGCAAGTGGCGCACGATCAAGATCCGCATCCCCCGTGCGGACGCCCACAGCGGCCGCATCCGCTTCGTGCCACGCACGAAGGCCCCCGTCAAGGTCCGGTTCGTCTGGCCGATCAGCTGA	MSPFLPAVSRRVLGLLLSLVVALAGTVVAAPAATAADTTPPTKPEITLERWQRPKEPDFSGYWLWKPRATWSAAQDSHGVTGYHVQLRFPGGRWHTPARGRWRSPDKRHYRVQLEPGHQACFRVRARDAAGNVSRWSKRRCTAAPLTPLMDFQSTALVQDNGASTHEYAYLSTEVGPTRTEAKFTDVRGVRLRVRTGPKAGRATVYVGRQRLGTIDARASTGKWRTIKIRIPRADAHSGRIRFVPRTKAPVKVRFVWPIS				NA	NA	NA	NA	NA
AK001_00150	3369	smc_1		Chromosome partition protein Smc	GTGACCACGACGTCGACGGCCCGTATGAGCGACTCGCTGTTCGGGCTCATCCCTGCCGCCTCGGACGGCCGCCAGTGGACGGCCACCTCGATGCAGCTCGTCAACTGGGGCGGCTACCACGGGCACCACGAGGTGCGGTTCTCCGCGCGCGCGACGCTGCTGTCCGGCGCCTCCGGCTCGGGCAAGTCCACGCTGCTGGACGCCTACATCGCGCTCATGATGAGCCACACCACGCCGTTCAACGGTGCCTCCAACGGCGCCGCGGCCGGTCGGGCGCGGGGGCGCGAGCAGCGCAACGTGCTGTCCTACGCGCGCGGCAAGCTCGACGACTCGCGGGCCGACGGCGCCACCAGCCGCGAGCAGGTGCTGCGCGGCGACGGCGTGGACACCTGGACGGCGATCGCGATGTCCTGGACGGACCAGTCCGGCGAGGTCTTCACGGCCCTGCGGGCCTGGTACGTGCCGCGTGGCGCGACCCGCAACGAGGAGTGCGTCGTCGTGCGGGCCACCGCCGACGGCGCGTTCGACCTGCGTGCGCTGGAACCCCTGGCCGCCGGCCGGTTCGCCCGGGGCGGGCTCACCGAGGCCGGGCTCACCCCGTTCGACACCGACATCGCCTTCGCCACCCGGCTGCACGCCGCGCTCGGCATCGGCGCGGCCGGTGACGGCCACAAGGCGATGCAGCTGCTGGGCCGCATCCAGGCCGGTCAGGCGATCACCACCGTCGACGCGCTGTACAAGGCGATGGTGCTCACCGAGCCGGAGACGCTCGAGGTCGCCGACCGTGCCGTCGAGCACTTCGACGAGCTGAGCGCCGTCCGCAGCGAGATGCTCACCGCGACCCGCCAGGTCGAGGTGCTGCGGCCCATGGTCGAGCTGCGCGAACGGATCGACGACGCCGAGGACTCGGTCGCCCTGCTGGACACGCTGGGCGTGGCCGGGAGCGGACCCGCCGCCGGGACGACGCCGTTCGCGGTGTGGCGCGACCGGCGTCGGCTCGCGCTCGTCCGCGCCGAGGAGGAGGTCAACCGGACGGCTCACCGGGCGGCCGAGGAGCGGCGCACGGCGGCCGCGGCGCGGATCGCCACCGCCGAGTCCGACCTCGAGGAGACCCGTGCCGCCCTGCGGCGTTCGGGCGGCGACGCGATCGAGGCCGCCGAGCGCGAGGTCCGGCGGCGCACCGAGGAGCTGGCGCAGGTGCGCACCGCCCGCGCCGGGCTCGACACCCCGCTCGCCGTGCTCGAGGAGTCGGTGTCCTCGCGGCGCGACCTGGACCGCGTGCACCGCGCCGCGCGCGAGCTCGTGGAGCACCGGACCGAGCGGGCGGCCGAGCTCGAGGACGCGGTGTACGGCGCACGCCAGGCCGTCACCGACGCCGAGCAGCGGCTGGCCCGCCTGGAGCAGGAGGCCGCCTCGCTGTCCCGCCGCCGGGGCAACGTCTCGGCGGAGGACCACGCCGCCCGGGTCGCGCTGGCCGAGGCCGCCGGGCTCGGGACCGACGAGCTGCCGTTCGTCGGCGAGCTGCTCGAGGTGCGCGGCGAGTACGAACCGTGGCGCGACGCCATCGGCCTGGCCCTCGGCGGGTTCGCCACGACGCTGCTCGTCGACGCCGACCGGCTGGCCGACTTCCGGGCCGCCGTCGACACCGTGCCGCTGCGCCGCCGGCTGCGCTTCGAGGGTGTGCCCACGCATCGGCCGATGGGCGACGACGCCGACCCGCGCACGCTGCCGGGTCGCCTGGAGATCAAGGCCGGGCCGTTCGGCGGCTGGCTCGCCGACCGGCTCGCGCAGCGCTACGACCACGTCTGCGTCGACGACCCCGCCGAGCTGCACCACCACCGCCGTGCCCTGACCCGCACCGGGCAGATCGCCGACGGCGCCCGCGGCGCGCACGGCGGCAGCCCGCGAGGCTCCGTGCTGGGCTTCTCCAACGCCCGGCGCCGGGACCGTCTGGCCACCGACATCGAGGCCGCGCGCACGGCGCTGCAGGAGGCCGGTGCGTCCCTGGAGGGTGTACGGCTGCGGCAGGCGGCGCACACCGACCAGTTCGTGGCCGCCGGGCAGGTCGTGCGGACGACCTGGGAGGAGGTCGACGTCGCCGGTGCCGAGGAGGCGCTCGCCGCGCGGCAGGAGCGCCTCGCCGCGCTGCGCGACGGGTCCGACGTCGTGCGCGCGCTCGGCGAGGACGAGCAGGAGCTGCGCACCCGGCTGACCGAGCTGTACCGCGAGCGCGCCGACGCCGAGAACCGCGTCCGCGAGCTCGGCGAGCAGTGGGCGTCCATCACCGACCTCGTCGACCAGGTGACCGACGCCGTCGAGGAGGCCGAGCGCACCGGCGCCGCGTGCACCGAGGCGCAGGCGCGTCGGCTGGAGTCGGCGCTGGCCGCGGTGGCCCCGGGCGACCCCGACCGGTTGCCGCTGGCCGCGCTGGACCAGGCGACCACCGCCGTGGCACGTGAGCTCGTGCGTGACCGGGAGGCCGCCGTGGCCGCGGCCGAGGCGGCCCGGACCGCGTTGCGCGGTGTCTTCGAGCGGTTCTGCGACGCGTGGCCGAACCCCAACCTCGGCACGGACCCGGACGACTCCTACGACGACTTCGCCCGCATCCTGGCCGAGATCGAGGACCAGCGCCTGTACGAGCTGACCGAACGCTGGTCGCGGACCCTCGGGCGCCTGTCCGGGCACGACCTGACCCTGCTGGGCAACGTGATGAGCCGGTCGGTCGCCGAGATCCGCGAACGGATGGAGCCGGTCAACCAGATCCTGGCGACCCTGCCCTTCCGTGACGAGAACCACCGGTTGCGCATCACCGCCCAGGTGACCGAGGCGCGCGACGTCGTCTCGTTCCGTCGCCGGTTGCGGGAGCTCGCCGCGGACCCGGGTGAGCAGACTCCCGCCGAGCGGCAGCGGCGCTACGAACGGATGGCCCGGCTCGTCGACCGCATCCGCCCCGACTCGCCGGAACGACGTCGGCTCGTGGACGTGCGCGAGCACGTGCGGATCAGCGCCGAGTGCGTCGACCTCGAGGGCCGGCACGTCTCGGTCTACGACCACATCGCCGGCAAGTCCGGCGGGGAGTCGCAGGAGCTGGTGGCGTTCATCGTGGGCGCGGCGCTGCGCTACCAGCTCGGCGACGCGGGGGCCGACCGGCCGCGGTACGCGCCGGTGTTCCTCGACGAGGCGTTCATCAAGGCCGACGCGCGGTTCGCGGGGCGCGCCGTCGGGGCGTGGCAGGGTCTGGGCTTCCAGCTCGTCATCGGCGCGCCCCTGGACAAGGTCAGCGCCCTGGAGCCGCACGTCGACGTCGTGCTGCAGGCCGTCAAGGACCCGGCGGGGCGCTCGCGGCTCGTGACCCTGGTGGGTGCCTGA	MTTTSTARMSDSLFGLIPAASDGRQWTATSMQLVNWGGYHGHHEVRFSARATLLSGASGSGKSTLLDAYIALMMSHTTPFNGASNGAAAGRARGREQRNVLSYARGKLDDSRADGATSREQVLRGDGVDTWTAIAMSWTDQSGEVFTALRAWYVPRGATRNEECVVVRATADGAFDLRALEPLAAGRFARGGLTEAGLTPFDTDIAFATRLHAALGIGAAGDGHKAMQLLGRIQAGQAITTVDALYKAMVLTEPETLEVADRAVEHFDELSAVRSEMLTATRQVEVLRPMVELRERIDDAEDSVALLDTLGVAGSGPAAGTTPFAVWRDRRRLALVRAEEEVNRTAHRAAEERRTAAAARIATAESDLEETRAALRRSGGDAIEAAEREVRRRTEELAQVRTARAGLDTPLAVLEESVSSRRDLDRVHRAARELVEHRTERAAELEDAVYGARQAVTDAEQRLARLEQEAASLSRRRGNVSAEDHAARVALAEAAGLGTDELPFVGELLEVRGEYEPWRDAIGLALGGFATTLLVDADRLADFRAAVDTVPLRRRLRFEGVPTHRPMGDDADPRTLPGRLEIKAGPFGGWLADRLAQRYDHVCVDDPAELHHHRRALTRTGQIADGARGAHGGSPRGSVLGFSNARRRDRLATDIEAARTALQEAGASLEGVRLRQAAHTDQFVAAGQVVRTTWEEVDVAGAEEALAARQERLAALRDGSDVVRALGEDEQELRTRLTELYRERADAENRVRELGEQWASITDLVDQVTDAVEEAERTGAACTEAQARRLESALAAVAPGDPDRLPLAALDQATTAVARELVRDREAAVAAAEAARTALRGVFERFCDAWPNPNLGTDPDDSYDDFARILAEIEDQRLYELTERWSRTLGRLSGHDLTLLGNVMSRSVAEIRERMEPVNQILATLPFRDENHRLRITAQVTEARDVVSFRRRLRELAADPGEQTPAERQRRYERMARLVDRIRPDSPERRRLVDVREHVRISAECVDLEGRHVSVYDHIAGKSGGESQELVAFIVGAALRYQLGDAGADRPRYAPVFLDEAFIKADARFAGRAVGAWQGLGFQLVIGAPLDKVSALEPHVDVVLQAVKDPAGRSRLVTLVGA				NA	NA	NA	NA	NA
AK001_00151	690			hypothetical protein	ATGACTGACGCCGGCGAGGGCACCTTCGTCGAGACCGCCGCGATCGAGGACGACGACGCCGCGCTGTTCGCCGGCGACACCGGCGTGCTGCCGTTCGAGGCCCGTCGCGTGCTGGCGCTCGTGATGCAGCGTCGCTACCTGTCCGCCGCGGAGCACCCGGCCGAGTGGACGGCGCTCCTGGCCCACCAGCAGGTGCTGTCCTCGCGGCTGCACGACCTGTTCGTCGAGCTCGTGGTGGACCGCGACTACGAGATCGCCTACAAGCGCCAGGTCCGGTCCGACGGGCTCGCGATCCCGGTGCTGCTGCGCGACGAGCCGTTCAAGCGGGTCGAGACGCTGCTCATGCTCTACGTGCGCAACCGGTACCACCAGGAGCAGGGCGCCGGGCACCCCGCCGCCTACGTGGACGCCGAGGAGATGACCGACTACGCCCTCGGGTTCCTCGCCCACGACGAGACGAACCTGGCCGCCCGGCACCGCGAGATCGAGAACGCCGTCGCCGCGCTGGTGCGCGAGCGGGTGCTCGAGGAGGTCGCCACGGGGCGGTACCGCGTGGGCGCGGTGGTGGAGATCCTGCTGCCCGTGGACCGGCTGCGCGAGCTCACCGCGTGGTTGCGCGGCACCGGCACCGGCACCGGCACCGGCGACGCCACGGACCACCGTCCCCACGAGACGCAGGAGATCGCGTGA	MTDAGEGTFVETAAIEDDDAALFAGDTGVLPFEARRVLALVMQRRYLSAAEHPAEWTALLAHQQVLSSRLHDLFVELVVDRDYEIAYKRQVRSDGLAIPVLLRDEPFKRVETLLMLYVRNRYHQEQGAGHPAAYVDAEEMTDYALGFLAHDETNLAARHREIENAVAALVRERVLEEVATGRYRVGAVVEILLPVDRLRELTAWLRGTGTGTGTGDATDHRPHETQEIA				NA	NA	NA	NA	NA
AK001_00152	1563			hypothetical protein	GTGGCGTCGACACCTGGATCGCGTCTGGCCGGGGCGCTCGCGGGGGTCGAGCGCGCCTTCGCGGCCCCGACGCTCGGGCTGCTGCACAAGGCCGAGGCGCCCCTGGTGGTCGCCGTGCTGCGCTGCGTGTTCACCCCGGACCGCCCGACGGTCGCCACCGAGCAGCTGCACGTCGAGGTGGACGACCTGCTGGACGGCTTCCGTGCCGCCCGGGACGACGGCGGTGCGCCGGCGGCGTCCGGCGCACCCCGGGTGCCGGACGAGCCCGCGCGCGTGCTGTGCACCCGGTGGGTGCGCGAGCGCTGGCTCGTGCGGTCCCTGGACGACGGCGGCGCCGAGCGGTACCAGCTCTCCAGCTACGCCACCGAGGCCCTCGACGTCGTCGCGCGCACCCAGGGCGGCCGGGGCCTGGTCAGCGAGTCCCGGATCCGGACGCTGCTCGTCGCGCTCGACGACCTCGCCCGGGACGCCTACCCGGACCGCGAGGCCCGCATGCGGCGGCTGCGCGCGCGGATCGACGAGGCGCAGGGCGAGCTCGCGCGCCTCGAGGCCGGGGGAGAGGTGGAGCCCGTCGCCGAGGAGCGCCTGGGCGAGCAGTACGACCACCTGCTGTTCCTCGTGCGCGAGCTGCCCGCCGACTTCGCCCGCGTGGCGGAGTCGCTGACCGTTCTGCAGCGCGACCTGGTGACCCGCCTGCGTCAGGACGACCGGTCCACCGGCGTGGTGGTCGCGGAGTACCTCGACGCCTCGGAGAACCTGCTCGACAGCACCACCGAGGGCCGGGCGTTCGCCGGGGCGATGGAGCTCCTCGGCGATCCCGAGCTCCTGGACTCCCTGGAGCAGCGCGTGCGCGAGATCCTCGAGCACCCGTTCGCCGTGGACCTGCCGGTGGCGCAGCGGAACGCGCTGCAGGGGCTGCGGTCGCAGCTGGTCACGGCCATCGAGGTCGTGCTCGCCGCGCAGGCCCGCGTCTCGCGGACCGTGACCGCGCAGATCCGCCACCACAACCCGCTGCGCGACCGCGAGGTCGACAGCGCCCTGCGCGAGGCGACCGCGGCGATGGCGGACTGGTTCCCGGCCAGCGGCCGGGCGGCCCGGGTCGAACCGCTGCGCTGGTTCGAGCGTGCCGTGCCGGGCCGGCTGCGCACCACCCTGCACGACCTGCGTCCCGAGACACCGCCCGAGCAGCTCGACCCGTGGGCGCCCGAGGACACCGACGACCCGGACGGGGCGATCGACGAGCTGCGGGCGATGGGCGGCCCCAGCCACCAGGACCTCGCGGCGCGGCTGGCCGGGCTGACGGCGCCGAGCACCGTCGGGGCGGTCTTCTCCGACGGCCCGGCGGCGCTGCGCCGGCCGGTGGAGCTGCTCGGCTACCTGGACCTGGCCGTCGACGGCGGCCGCCCCGGTGCCGACGACGCCGCGGCCGCGCCGCCACCGGAGGCCCCCCGCACCGGGGACGTGCCCGCCGACGGGCTGGAGCGGGTCACCGCCACCCGCGCCGACGGCACCACCCGCGACTTCGTGCTGCCCCGCACCCCGATCAGGAGGACCGATGACTGA	MASTPGSRLAGALAGVERAFAAPTLGLLHKAEAPLVVAVLRCVFTPDRPTVATEQLHVEVDDLLDGFRAARDDGGAPAASGAPRVPDEPARVLCTRWVRERWLVRSLDDGGAERYQLSSYATEALDVVARTQGGRGLVSESRIRTLLVALDDLARDAYPDREARMRRLRARIDEAQGELARLEAGGEVEPVAEERLGEQYDHLLFLVRELPADFARVAESLTVLQRDLVTRLRQDDRSTGVVVAEYLDASENLLDSTTEGRAFAGAMELLGDPELLDSLEQRVREILEHPFAVDLPVAQRNALQGLRSQLVTAIEVVLAAQARVSRTVTAQIRHHNPLRDREVDSALREATAAMADWFPASGRAARVEPLRWFERAVPGRLRTTLHDLRPETPPEQLDPWAPEDTDDPDGAIDELRAMGGPSHQDLAARLAGLTAPSTVGAVFSDGPAALRRPVELLGYLDLAVDGGRPGADDAAAAPPPEAPRTGDVPADGLERVTATRADGTTRDFVLPRTPIRRTDD				NA	NA	NA	NA	NA
AK001_00153	2994	leuS	COG0495	Leucine--tRNA ligase	GTGAGCACGCCCAACGCCGACACCACTGACCTGTCCGTCGCCCCGCAGCGCCCCGACGAGCCCGAGCACCGGTACACCCCGGCCCTCGCGCAGGAGATCGAGCTGCGCTGGCAGGACCGGTGGGAGGAGCGCGGCACGTTCCACGCCGCGAACCCCACCGGCGAGCTCACCGGTCCCGACGGGGCCGAGCCGGCCGGACGGCCCTTCTTCATCATGGACATGTTCCCGTACCCCTCGGGGGCGGGGCTGCACGTGGGGCACCCGCTCGGGTTCATCGCCACCGACGTCGTCGGCCGCTTCCGCATGATGTGCGGCGACAACGTGCTGCACGCCATGGGCTTCGACGCCTTCGGCCTGCCCGCCGAGCAGTACGCCGTGCAGACCGGCGAGCACCCCCGCCTGGTGACCGAGCGCAACATGGTCACCTACCGCCGCCAGCTGCGCCGGATGGGGCTGGGGCACGACCCGCGCCGCAGCTTCGCCACCATCGACGACGACTACGTGCGCTGGACGCAGTGGATCTTCCTGGAGATCTTCGACTCCTGGTACGACGCCGACGCCGAGCCGGTCGACGGCGGCACGCAGCGCGGCCGGGCCCGCCGGATCTCCGAGCTGCGCGCGGAGCTGGCCGCCGGCACCCGGGCCGTGCCGGGCCACGAGGGCGACAACACCGGCGGCGCCGTGTGGTCCACGCTGAGCGAGCCCGAGCAGCGCGACGTCCTGGACGCCCAGCGCCTGGCCTACGTCGACTCCTCCCCGGTGAACTGGTGCCCCGGCCTGGGCACCGTGCTGGCCAACGAGGAGGTCACCGCCGAGGGGCGCTCCGAGCGCGGCAACTTCCCGGTGTTCACCAAGAACCTGCGCCAGTGGAAGATGCGGATCACCGCCTACGCGGACCGCCTGGTCGACGACCTGGAGCTCATCGAGTGGCCCGACAAGGTCAAGGCGATGCAGCGCAACTGGATCGGCCGCTCGACGGGCGCCAACGTGACGTTCCACGTCGTCGGCGCGGGTGACGCGGACGCCGACGCCGCCGGCGCGGGCGCCGCCATCGAGGTCTTCACCACCCGGCCCGACACCCTGTTCGGCGCGACCTTCATGGTGGTCTCCCCGGAGCACCCGCTGCTGGACGAGGTCCCGGCGACCTGGCCCGACGGCACCCGCGCGGCCTGGACCGGCGGGCACGCCTCCCCGGTGGAGGCCGTGGCCGCCTACCGCCGCGAGGCGGCCGCCAAGACCGCCGTCGAGCGGCAGGCCGACGCCGGCAAGAAGACCGGCGTGTTCACCGGTCACCTGGCGGTCAACCCGGTCAACGGCGAGACCGTCCCCGTCTTCACGGCGGACTACGTGCTGATGGGCTACGGCACCGGCGCGATCATGGCCGTGCCCGGCGGGGACGATCGCGACCACGCCTTCGCCGAGGCCTTCGAGCTGCCGATCGTGCACACCGTCGAGCCGGCCGGCGGGCTGCCCGAGGGGCACGAGGGCGCGTGGACCGGTGACGGCGTCACCGTGCGCTCGTCGAACGACGAGATCTCCCTGGACGGGCTCGGCGTGGCCGAGGCCAAGGCGCGGATCATCGCCTGGCTCGAGGAGAAGGGCGCCGGCCGGGGCACGACCACCTACCGGCTCAACGACTGGCTGTTCAGCCGCCAGCGGTACTGGGGCGAGCCGTTCCCGATCCTCTGGGACGCCGAGGACCGCCCCGTCGCCATCCCCGGTGACCGCCTGCCCGTGGACCTGCCCGAGGTGCCGGACTACGCGCCGCGCACCTTCGACCCGGACGACCGCGACTCCGAGCCGGAGGCGCCGCTGGGCCGCAACGACGACTGGGTGCACGTCACCCTGGACCTGGGCGACGGCCCGCAGCAGTACCGCCGCGACACCAACACCATGCCCAACTGGGCCGGGTCGTGCTGGTACTACCTGCGGTACCTGGACCCCACCTGGGGCACCGACGACCAGGGTGACGGCGAGCGCCCCGTGGTCGACCCGGATCTGGAGCGGTACTGGATGGGCCCCCGGCACAACGACACCTCCGGCCCGGCCGGCGGCGTCGACCTGTACGTCGGAGGCGTCGAGCACGCCGTGCTGCACCTGCTGTACGCGCGGTTCTGGCACAAGGTCCTGCACGACCTCGGGCACGTCAGCTCGCGCGAGCCGTTCGGCAAGCTCTTCAACCAGGGCTACATCCAGGCCTACGCCTTCACCGACGACCGCGGCGCCTACGTGCCCGCGGCCGAGGTCGAGGGCGACGAGCAGGAGGGCTGGACCTACCAGGGCCGGGCCGTCGAGCGCGAGTACGGCAAGATGGGCAAGTCGCTGAAGAACGTCGTCACCCCCGACGACATGTACGCCGAGTACGGCGCCGACACCTTCCGCGTCTACGAGATGGCGATGGGCCCGCTGGACCTGTCGCGCCCGTGGAACACGCGGGACGTCGTCGGCTCCCAGCGGTTCCTGCAGCGGCTGTGGCGCAACGTCGTCGACGAGACCGACGGGTCGCTGGTCGTCACCGACGACGAGCCCGCGCCGGACACCCTCAAGGCGCTGCACCGCACCATCGCGGACGTACGCGTCGAGATGGAGGGCATGCGGCCCAACACGGCCATCGCCAAGCTCATCACCTACAACAACCACCTGACGGCCCTGGACCGCGTGCCGCGTGCCGCCGTCGAGCCGCTGGTGCTCATGGTCGCGCCCATCGCGCCGCACATCGCCGAAGAGCTGTGGGAGCGTCTCGGGCACACCGCCTCGCTGGCGCGTGAGCCCTTCCCCGAGGCCCGCGACGAGTACCTGGTCGCCGAGACGGTCACCTGCGTCGTGCAGGTCAAGGGCAAGGTGCGCGGGCGCGTCGAGGTGTCGCCGGACATCTCCGACGACGACCTGACGGCTGCGGCCCTGGCCGAGCCGAACGTGATGCGGGCGATCGACGGCGCCGAGATCCGCAAGGTGATCGTCCGGGCGCCGAAGCTGGTGAATGTCGTCGTCTGA	MSTPNADTTDLSVAPQRPDEPEHRYTPALAQEIELRWQDRWEERGTFHAANPTGELTGPDGAEPAGRPFFIMDMFPYPSGAGLHVGHPLGFIATDVVGRFRMMCGDNVLHAMGFDAFGLPAEQYAVQTGEHPRLVTERNMVTYRRQLRRMGLGHDPRRSFATIDDDYVRWTQWIFLEIFDSWYDADAEPVDGGTQRGRARRISELRAELAAGTRAVPGHEGDNTGGAVWSTLSEPEQRDVLDAQRLAYVDSSPVNWCPGLGTVLANEEVTAEGRSERGNFPVFTKNLRQWKMRITAYADRLVDDLELIEWPDKVKAMQRNWIGRSTGANVTFHVVGAGDADADAAGAGAAIEVFTTRPDTLFGATFMVVSPEHPLLDEVPATWPDGTRAAWTGGHASPVEAVAAYRREAAAKTAVERQADAGKKTGVFTGHLAVNPVNGETVPVFTADYVLMGYGTGAIMAVPGGDDRDHAFAEAFELPIVHTVEPAGGLPEGHEGAWTGDGVTVRSSNDEISLDGLGVAEAKARIIAWLEEKGAGRGTTTYRLNDWLFSRQRYWGEPFPILWDAEDRPVAIPGDRLPVDLPEVPDYAPRTFDPDDRDSEPEAPLGRNDDWVHVTLDLGDGPQQYRRDTNTMPNWAGSCWYYLRYLDPTWGTDDQGDGERPVVDPDLERYWMGPRHNDTSGPAGGVDLYVGGVEHAVLHLLYARFWHKVLHDLGHVSSREPFGKLFNQGYIQAYAFTDDRGAYVPAAEVEGDEQEGWTYQGRAVEREYGKMGKSLKNVVTPDDMYAEYGADTFRVYEMAMGPLDLSRPWNTRDVVGSQRFLQRLWRNVVDETDGSLVVTDDEPAPDTLKALHRTIADVRVEMEGMRPNTAIAKLITYNNHLTALDRVPRAAVEPLVLMVAPIAPHIAEELWERLGHTASLAREPFPEARDEYLVAETVTCVVQVKGKVRGRVEVSPDISDDDLTAAALAEPNVMRAIDGAEIRKVIVRAPKLVNVVV				NA	NA	NA	NA	NA
AK001_00154	627			hypothetical protein	GTGACCGAGACACCCGCCGACGGCGCACCGGCCGTCGCACAGCCCCGCCCGCTGGCGGCCCGCACCTACGGCACACTGCTCGTCGTGCTCGGCGCCGTCGGCTTCGGCGGCGCGATGTGGCTGGCCGTCGAGAGGATCCTCAAGCTCCAGGACCCCGACCGGGTCACGTCCTGCTCGATCAACCTGTTCCTCGACTGCGGCATCGCCATGGAGTCCTGGCAGGGGGCGCTGCTCGGCTTCCCCAACCCGTTCATCGGTGTGGCCGCCTTCCCCGTGGTGATCACCAGCGGGGTCGTGCTGCTCGCCGGGGCGCGGCTGCCGCGGTGGTACCACCTGTGGCTGCTCGGCGGGACGGTGCTCGGTCAGCTCCTGGTCTTCTTCCTGATGTGGACGAGCTTCTCCGTGCTCGTCGCCCTCTGCCCGGCCTGCATGGTCGTGTGGACGATCATGTGGCCGCTGCTGTGGTACCAGGTCGTGCACAACGTGCAGGAGGGTCACCTGCGCGTCGGGGACGGGCTGCGACGCCTCGTCCTGGGCTACCGCGGCATGATCCTCGTCATCGGCTACGTCGTGGCGATCGCCTGGCTGCTCCTCGCCGTCGGGTCGCCGCTCGTCGCCTCCTTCTGA	MTETPADGAPAVAQPRPLAARTYGTLLVVLGAVGFGGAMWLAVERILKLQDPDRVTSCSINLFLDCGIAMESWQGALLGFPNPFIGVAAFPVVITSGVVLLAGARLPRWYHLWLLGGTVLGQLLVFFLMWTSFSVLVALCPACMVVWTIMWPLLWYQVVHNVQEGHLRVGDGLRRLVLGYRGMILVIGYVVAIAWLLLAVGSPLVASF				NA	NA	NA	NA	NA
AK001_00155	1224	ydhP	COG2814	Inner membrane transport protein YdhP	GTGACCGTCGCGCCACCCCGACCCACCACGGGACGCCCGGCCCTCGGTGCCGGACAAGCCCTGTTCGCCCTGGCCCTCGGCGGCTTCACCATCGGCACCACCGAGTTCGCCACGATGGGGCTGCTGCCCCAGATCGGTGCGGACCTGCAGGCGAGCGACCCCGTCGTCGGCCACGCGATCACCGCCTACGCCGTCGGCGTCGTCGCCGGCGCGCCGCTGCTGACCGTGGCCGCCGCCCGGATGTCCCGGCGTCGGCTCCTGCTGGTGCTCATGGGCGCCTACACGGTGGCGAACGTCCTCTCCGCCGCCGCGCCGAGCATCGAGTGGCTGGTCGCCGGCCGGTTCCTCGCCGGGCTGCCGCACGGCGCCTTCTTCGGCGTCGGGGCCGCCGTCGGGGCGGCGGTCGCCGGCCCCGGGAGGCGCGGTCACGCCGTGGCGATGATGATGACGGGACTGACCGTGGCCAACGTGGTCGGCGTCCCGCTCTCGACCGCCGTCGGGCAGGCTTTCGGCTGGCGCGTCGCGTTCGTGCTGATCGGCGTGCTGGGCGGCATCACGCTGCTCGGGCTGTGGCGCTTCGTGCCCGAGCAGGGGCCGGTGCCGACCAGCGTCCGCCAGGAGCTGGGGACGCTCGCCAACGGTCCGCTGTGGGTCGCGTTCGTCGGCGGTGCGATCGGGTTCGGCGGGCTGTTCGCCGTCTACACCTACGTCGCGCCCACGGTCACGCGGGTGTCCGGCATGAGCGAGAGCGCCGTGCCGTGGGTGCTCGCCGTCATGGGCGTGGGGATGACCGTCGGCACGCTGCTCGGCGGCCGGCTCGCCGACCGGTCCGTGCTCGGCACCCTGCTCGGCGGCTACGTCGCCACCGGCCTGTCCCTCGTGCTGTTCGCCCTGACCGCGACCAGCGCGGTGGGGGCCGTGCTGGGCCTGTTCCTCCTCGGGGTCACCTCGCAGGTGCTCGGGATCGCGATGCAGACGCGTCTGATGGACCTCTCCCCGCGGGCCCAGTCCCTCGGCGCGGCACTGTGCCACTCGGCGCTGAACGTGGGCAACGCCGGCGGCGCCTTCGTCGGCGGGCTCGTCATCGCCGGTGGCTGGGGGTACGTCGCCCCGGCCTGGGCCGGGCTGGGCCTGACGGTGGTGGGTCTGCTGATCGTGCTCGTGTCCCTGCGCACGACCCGGCCGGCGCCGGCGGCCGAGGGGTGCGATACCGTCACCCCGTGA	MTVAPPRPTTGRPALGAGQALFALALGGFTIGTTEFATMGLLPQIGADLQASDPVVGHAITAYAVGVVAGAPLLTVAAARMSRRRLLLVLMGAYTVANVLSAAAPSIEWLVAGRFLAGLPHGAFFGVGAAVGAAVAGPGRRGHAVAMMMTGLTVANVVGVPLSTAVGQAFGWRVAFVLIGVLGGITLLGLWRFVPEQGPVPTSVRQELGTLANGPLWVAFVGGAIGFGGLFAVYTYVAPTVTRVSGMSESAVPWVLAVMGVGMTVGTLLGGRLADRSVLGTLLGGYVATGLSLVLFALTATSAVGAVLGLFLLGVTSQVLGIAMQTRLMDLSPRAQSLGAALCHSALNVGNAGGAFVGGLVIAGGWGYVAPAWAGLGLTVVGLLIVLVSLRTTRPAPAAEGCDTVTP	PGPT0028991_735	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577	NA	NA
AK001_00156	699	mntR		HTH-type transcriptional regulator MntR	GTGAACGACACCGACACCACCCGGCCGGCCGATCTGACCCCGGTGGCGCAGGACTACCTCAAGGCGATCTGGTCGGCGCAGGAGTGGAGCGACGAACGGGTCACCACCGGCCTGCTCGCCGACCGCCTGGGCGTCGGGCCGTCCACGGTGTCGGAGACGGTGCGCCGGCTGACGGCGCAGGGCCTGCTCGGGCACGAGCCGTACAGCGGGGTCTGGCTCACCGACGAGGGCCGTCGGCACGCCCTGACCATGGTGCGTCGACACCGGCTGCTCGAGACCTGGCTGGTGCGTGAGCTCGGCTACGGCTGGGACGAGGTGCACGACGAGGCCGAGGTGCTCGAGCACGCGGTCTCGGACCTGCTCGTCGAGCGCATCGACGCCCGGCTGGGGCACCCCGTCCGCGACCCGCACGGCGACCCCATCCCCACGGCGGACGGCCGGGTGGTCCGCCCCGACGCGGTCCCGCTCGAGGACCTGGCCGAGGGGGAGCGGGGCGTCGTGGCGCGGATCTCCGACGCCGACCCCGACGCGCTGCGCTACCTCGCGGACCTGGGTCTCGAGCTCGACGTGGAGGTGACCGTCGTGGAGCGTCGCGACTACGCCGGCACGCTCTCCCTGACCTGGACCGGGCCCGCCGGTGCCGTGGCCGTCGACCTGGGCCACCTCGCGGCCTCGCGCGTGCGGGTGGTCCGCGCGTAG	MNDTDTTRPADLTPVAQDYLKAIWSAQEWSDERVTTGLLADRLGVGPSTVSETVRRLTAQGLLGHEPYSGVWLTDEGRRHALTMVRRHRLLETWLVRELGYGWDEVHDEAEVLEHAVSDLLVERIDARLGHPVRDPHGDPIPTADGRVVRPDAVPLEDLAEGERGVVARISDADPDALRYLADLGLELDVEVTVVERRDYAGTLSLTWTGPAGAVAVDLGHLAASRVRVVRA	PGPT0003890_480	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709	NA	NA
AK001_00157	1710			hypothetical protein	ATGACCGAACGCCGTACCCCGCCCCGCTGGCTGCGCTGGACCCTCGTGGTCACCGCGGCCGTGGTCGCCTGCGTCGTGTACGGCGTGACGACCGCGTCCGCCGAGCTCAACCTCGGCCCGCACGAGGCCGTCTACGAGGTCGACACCGACGGCCTCGTGGTCACCGACCTCGGTCCGCTGGGCACCCTCGAGATCGACTCGCCGCTCCCGCTCGGCCTCGGCGTGGACGTCACCGTCCAGGAGATCCCCGCCGACCTGACCGCGGTCGACGACGCCTCGACGCTGGACAGGCTGGTCGGCGACCTCGACCGCTACCTCCAGTTCTACGACAGCCCCCAGATCACCTTCGACGCCGTCACCTGGGCCCTGGTCGCCTCGGCGGCGCGCCGGACCGTGGGGGCCCTCGTCGTGGTGGCGCTCGCGGCCTGGGGCGTGCGGCTGCTGCTCGGGCCCCGGCGTCGCGACGAGCTCTCCGCGACGCTGGCCCCGCGCACCTGGCAGCTCACCGCCGGGGCCGTCGTGGTCGGGGTCGTCGGGTCGACCCTGGTCGCCGGCGACGTGACGCCGCCGCGGGCCGGGCGCCCGGCGTCCGAGGTGTTCGCGGGGACCGCGCTGGAAGGTGCGCGCATCACCGGGCGCCTGGCGTCCGTGGTCGACACCTACGGGGGCCAGCTCCTGGAGCTGTACGAGGAGAACGAGGCGTTCTACGCCGCGGCGGACGACGACCTGCACGACGCGTGGCGCGCCTGGGAGATCCGTGACGCCGTGCGGACCAACCTCGGGGCGGCCTCTCCGGTGCCCGAGGACGCGGTGACGATGCTCGTGGTCTCCGACCTGCACTGCAACACCGGCATGTCGCCGCTGATCCGGTCGACCGCGGAGCTGTCCGGCACGGACGTGATGCTCAACGCCGGGGACACGACGATGAACGGCACGGCCGTCGAGAAGGCGTGCGTGGACTCCTTCGCGGCCGCCGTGCCCGACGACGTGCCCATGATCGTCGCCGACGGCAACCACGACTCGGTGCTGACCTCCGCCCAGGAGGCCGCGCACGGTCAGGTGGTGCTCGACGGGTCCGTCGTCGAGGCGTCCGGGGTGCGCATCCTCGGCGACCGGGACGTCCTGGAGACCCGGATCGGCGAGGGCACGACCGTCGCGCGCGAGCGCACCCCGGCCGAGCAGGCCGCCGAGCTGGCCGCCACGGCCTGCGCGGAGGGCGACGTCGACCTGCTGCTGGTGCACACTCCCGTGGTCGGGGACCCCGCGCTGGAGTCCGGCTGCGTGCCTTTCCAGGTCTCGGGGCACACGCATCGGCGGGCCGGGCCCGTGCAGGTCGGCCAGGGGATCCGCTACGTGTCGGCCAGCACGGCCGGGGCGGCCTCCGGGCAGGCGACCGTCGGCCCGTTGCGCGGGACCGCCGAGATGACGCTGCTGCGGTTCGACCCCGAGGACGGCCGGGTGCTGGACGTCCAGGTCGTCTCCGTGAACCCGGCCGGTCAGGCCACGGTGCACGACCGCGAGCCGGTGCCCGAGGTCGTGCCGGCGGTCGGGCAGCTCGAGCCGACGGCGGCGCCGGAGGCCGCCCCGGTCACCCCGAGCCCGGAGGCGTCGCCCGTCGCGACCCCGCTGGAGCTCGAGGACCCGCCGGACGGCGGGAGCACCCAGGAACCGTCCCCCTCGCCGAGCCCCGAGGGGCCGCTCGCGCCCTGA	MTERRTPPRWLRWTLVVTAAVVACVVYGVTTASAELNLGPHEAVYEVDTDGLVVTDLGPLGTLEIDSPLPLGLGVDVTVQEIPADLTAVDDASTLDRLVGDLDRYLQFYDSPQITFDAVTWALVASAARRTVGALVVVALAAWGVRLLLGPRRRDELSATLAPRTWQLTAGAVVVGVVGSTLVAGDVTPPRAGRPASEVFAGTALEGARITGRLASVVDTYGGQLLELYEENEAFYAAADDDLHDAWRAWEIRDAVRTNLGAASPVPEDAVTMLVVSDLHCNTGMSPLIRSTAELSGTDVMLNAGDTTMNGTAVEKACVDSFAAAVPDDVPMIVADGNHDSVLTSAQEAAHGQVVLDGSVVEASGVRILGDRDVLETRIGEGTTVARERTPAEQAAELAATACAEGDVDLLLVHTPVVGDPALESGCVPFQVSGHTHRRAGPVQVGQGIRYVSASTAGAASGQATVGPLRGTAEMTLLRFDPEDGRVLDVQVVSVNPAGQATVHDREPVPEVVPAVGQLEPTAAPEAAPVTPSPEASPVATPLELEDPPDGGSTQEPSPSPSPEGPLAP				NA	NA	NA	NA	NA
AK001_00158	1557	lfrA	COG0477	Multidrug efflux pump LfrA	ATGGCTCAGATCCTCACGGCACCGGCTTCCTCGACGACGAACCCCACCCCGGCGCCGGCTCCCGGCGCGACCGTGACGTCCCCGGTCCGGCGGTGGATCGCCCTCGCCGTGCTCATGCTTCCGGTGCTCCTGGTGTCCATCGACAACACGGTGCTCAGCTTCGCGCTGCCGCAGATCTCCGCGGCGCTGGAACCCGGCGGCACCCAGCTCCTCTGGATCGTCGACGCCTACTCGCTGGTGCTCGCCGGGCTCCTGGTCCCGATGGGGTCGGTCGCCGACCGCGTCGGACGGCGTCGCCTGCTGCTGACCGGCGCCGTCGGCTTCGCGGCCGTGTCCGCCCTCGCGGCCTTCGCGCCCAGCGCCGGTGCGCTCGTGGTCGCCCGCGCCGCCCTCGGCTTCTTCGGGGCCATGCTCATGCCGTCGGCCCTGTCGCTGCTGCGCAACGTCTTCACCGACCGCGCCGAGCGACGCCTCGCCATCGCGGTCTTCGCCTCCGCCTTCGCGGCCGGCTCCGCCGTCGGGCCGATCGTCGGCGGCGTGCTGCTGGAGCACTTCTGGTGGGGGTCGGTGTTCCTTCTGGCCGTCCCCGTGCTCGTGCTGCTCGGAATCCTGGCCCCGATCTTCGTCCCGGAGTCCCGCGACCCCGCGCCGGGACGGGTCGACCCGCTCTCCGTCGTCCTCGTCATGGCGGCCATGCTGGCCGTGGTCCTCGGCATCAAGACGCTCGCCAAGGGTGACCTGCTCGGGCTCGCCGAGCTCACCGTCGGCCTCGGGATCGGGGCGGTGTTCGTCCGTCGTCAGCTGGGCCGGCCCGACCCGATGCTCGACGTCAGGCTGTTCACGCACGCCGCCTTCACCGGCAGCGTGCTGGTCAACCTGCTGTCGGTGTTCGCGCTCGTCGGCTTCCTGTTCTTCGTCTCCCAGGACCTGCAGCTCGTCATCGGGCTCTCCCCGGTGCAGGCCGGTCTCGTCCTGGTGCCGGGCACGATCACCACGGTCGTCGCGGGGCTGTCGGTCGTGCGGATCGTCCGTCGTGTCCGGCCCGCGGTCATCGTGGCCGCCGGGCTCTGCGTGTCGGCCACCGGCTACCTCGTCACCGCCCTCGTGGCCGGGCGGGGCGAGGCCGGGTGGATCGCCGTCGCCTTCGTCGTGCTCGCGCTCGGGGTCGGGATGGCCGAGACCATCTCCAACGACCTCATCGTCTCCACCGTGCCGGCGGCGAAGGCGGGTGCGGCCTCGGCCATCTCCGAGACCGCGTACGAGGTCGGGGCGGTCCTGGGCACCGCGGTGCTCGGCGGCATCCTCACGGCGTCGTACCACGCGGCCGTCCGGGTGCCCGACGGCGTCACGCCGGCCGAGGCGGCCCGCGCGGCCGAGACCCTCGGCGGGGCGACCAACGTCGCCGCCGACCTGCCCGCCGACCAGGCGAGCGCGCTGCTCGGCTCTGCGCACGCGGCGTTCGGCAGCGGTGTGGTGACGACCTCCGTCATCGGGTTCGTCGCGGTGCTCGGCGCCGCCGCGATCGCGCTGACCACGCTGCGCCGCGCGACCTCCTGA	MAQILTAPASSTTNPTPAPAPGATVTSPVRRWIALAVLMLPVLLVSIDNTVLSFALPQISAALEPGGTQLLWIVDAYSLVLAGLLVPMGSVADRVGRRRLLLTGAVGFAAVSALAAFAPSAGALVVARAALGFFGAMLMPSALSLLRNVFTDRAERRLAIAVFASAFAAGSAVGPIVGGVLLEHFWWGSVFLLAVPVLVLLGILAPIFVPESRDPAPGRVDPLSVVLVMAAMLAVVLGIKTLAKGDLLGLAELTVGLGIGAVFVRRQLGRPDPMLDVRLFTHAAFTGSVLVNLLSVFALVGFLFFVSQDLQLVIGLSPVQAGLVLVPGTITTVVAGLSVVRIVRRVRPAVIVAAGLCVSATGYLVTALVAGRGEAGWIAVAFVVLALGVGMAETISNDLIVSTVPAAKAGAASAISETAYEVGAVLGTAVLGGILTASYHAAVRVPDGVTPAEAARAAETLGGATNVAADLPADQASALLGSAHAAFGSGVVTTSVIGFVAVLGAAAIALTTLRRATS	PGPT0028045_84	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167	NA	NA
AK001_00159	531			hypothetical protein	ATGCCTCCCCCACCCGCAGCACGCGCCAAGGTGCTCCAGGCGTTCACCGACCTGCTCGTCACGTCCGGCGAACGGTCGGCCACCCTCGACGCGGTCGCCGACCACGCCGGCGTCTCCAAGGGCGGGCTGCTGTACCACTTCGGCTCCAAGGACGCCCTCGTCGACGGGCTCGTGGAACACCTGACCGCGCTCATCGCCGCCGACGTCGCCGCGATGCGGGCCGCCCCCGAGGGCCCGGTGCACTACCTGCTCCGTACGTCGTCGGACGTCGGCAACGAGTTCGACCGCACCTATCTCGCGGTGGCCGAGCTCGCCCGCGGCGCCTACCCCCGCGCCCGCAGCGCGCTCGACGCCGCCGAGCAGGCGTGGACGGACACCGTGGCCGAGCAGGTGGGCGACGACGCCCTCGCGCGGACCGTCGTGCTGCTGTCGGACGGCATCTACCACCGCGCCTCGCTGGGCGCGGCTCCCCCGCCCCTGGAGGAGCTGCTCGCCCTGGTGGAGCGTCTGCGGCGACCTGCCGCGTCCTGA	MPPPPAARAKVLQAFTDLLVTSGERSATLDAVADHAGVSKGGLLYHFGSKDALVDGLVEHLTALIAADVAAMRAAPEGPVHYLLRTSSDVGNEFDRTYLAVAELARGAYPRARSALDAAEQAWTDTVAEQVGDDALARTVVLLSDGIYHRASLGAAPPPLEELLALVERLRRPAAS				NA	NA	NA	NA	NA
AK001_00160	792	ku	COG1273	Non-homologous end joining protein Ku	ATGAGGGCGATCTGGAAGGGCGCCGTGACGTTCGGTCTGGTGAACGTCCCGGTGAAGGTCTACAGCGCCACCGAGGACCACGACGTGTCGCTGCACCAGGTGCACGACGCCGACGGCGGACGGATCCGCTACCGGCGCGTGTGCGAGGTGTGCGGCGAGACGGTCCCGTACGAGCACATCGACAAGGCCTACGACGACGGCGAGCACGTGGTGGTGCTGACGCGGGAGGACTTCGCGGCGCTGCCGGCGGAGTCGAACCGGGAGATCGAGGTCGTCGAGTTCGTGCCGAGCGACCAGGTCGACCCGATCCTCCTGGACCGGACGTACTACCTGGAGCCGGACTCGACGAGCCCCAAGGCGTACGTGCTGCTGCGGCGCACGCTGGAGGACACGGACCGCACCGCCATCGTGAAGTTCGCGCTGCGGCAGCGCACCCGGCTGGCGGCGCTGCGGGTGCGGGACGAGGTCCTGACGTTGCAGACGCTGCTGTGGGCCGACGAGATCCGCGCCGCGGAGTTCCCGGCGTTGGACGGGTCGACCTCGGTGAGCGACTCCGAGCTGGCGATGTCCGCCCAGCTGGTGTCCGCCTACGAGGCGGACTTCACACCGGAGGAGTACACGGACGAGTACCAGGCCCAGCTGCGACAGCTCATCGACGCCAAGATCGAGAAGGGCGACACGATGGACGCCGCCGAGACGTTCGGCGAGCAGCCGGAGGGCGAGGGGGCCGAGGTCGTCGATCTCATGGAGGCGCTGCGGCGGTCGGTGGCCGCCCAGCGCAAGACCGGCTGA	MRAIWKGAVTFGLVNVPVKVYSATEDHDVSLHQVHDADGGRIRYRRVCEVCGETVPYEHIDKAYDDGEHVVVLTREDFAALPAESNREIEVVEFVPSDQVDPILLDRTYYLEPDSTSPKAYVLLRRTLEDTDRTAIVKFALRQRTRLAALRVRDEVLTLQTLLWADEIRAAEFPALDGSTSVSDSELAMSAQLVSAYEADFTPEEYTDEYQAQLRQLIDAKIEKGDTMDAAETFGEQPEGEGAEVVDLMEALRRSVAAQRKTG				NA	NA	NA	NA	NA
AK001_00161	222			hypothetical protein	GTGGAGATCCCCGTCGTCTGGTCCGTCGTCCTGCTCGTCGCCGCCGTGTGGAACCTCGTGGTGTGGCCGCAGTTCTGGCGGCGCGTGACCAAGGACCCGCGGTCCCGCGACGACGCCGGCCGCGCGACCCGCTTCTACACGGTGCACGCCGTGCTCGTGGGGGTGTCCCTGCTCCTGGGCGTGCTGGTGGGCGTGGTCGGCGTGCTGGGGCTGCTCGGCTGA	MEIPVVWSVVLLVAAVWNLVVWPQFWRRVTKDPRSRDDAGRATRFYTVHAVLVGVSLLLGVLVGVVGVLGLLG				NA	NA	NA	NA	NA
AK001_00162	876			Lipase 2	ATGAACGCATCGCGTCGGGCACGTCGTGGTCCCACGGCCTGGGTCACGGCACTGGCCGTCGGTCTCGCGACCCTGGTCTCCGCCCCCGCGGCGACGGCGGCTCCGCCCCCCGACGAGTACGTCGCCCTGGGGGACTCGTACGCCGCCGGCTCCGGCATCCTGCCCCTCGACCCGTCGGCGCCGCCCCGGTGCCTCCGGGCCACGCGCAACTACCCGAAGCTCGTCGCCGGCGCGCTCGGTGCCGACCTCACCGACGTCACCTGCGGCGGGGCCGAGACGGCCGACCTGTACGACCGCCAGTACCGGCGGGTGCCGGCCCAGCTCGACGCGGTCACGAGGAAGACGGACCTGGTGACCGTCACCATCGGCGGGAACGACAACGACGTCTTCAGCGGGGCGATCCTGGCGTGCGGGTCGCTGGGCGGCCTGACCCGCGGGTACGGCAGCCCGTGCGAGCACGTCTACGGCGACTACTTCGTCGACCGGGTCGAGCAGCGGACCTATCCTGCCGTGCGGCAGGCGCTCGTCGACGTCCAGCGCCGGGCGCCGCGGGCCGACGTCGTGGTCGTGGGCTACCCGTGGCTGCTCCCGCCCCAGGTCGGGTGCTACCCCGAGCTGCCCTTCGCCCGCGGGGACGTGCCCTACCTGCGCGACCTGCAGGCCACGCTGAACGACGTGCTCGAGCGCGCCGCACGGGAGACCGGGGCGGTGTTCGTCGACCTCTCGGTCGTGAGCGAGGGGCGCGACGCGTGCTCCGGGGCCGGGACGCGGTGGGTCGAGCCGCTGCTCGAGGGGTCCGGGGTGGTGCCGCTGCACCCGAACGCCCGCGGCGAGGCCGGCATGGCCGACGCCGTCCTGGCGACGCTGGGAGGCTGA	MNASRRARRGPTAWVTALAVGLATLVSAPAATAAPPPDEYVALGDSYAAGSGILPLDPSAPPRCLRATRNYPKLVAGALGADLTDVTCGGAETADLYDRQYRRVPAQLDAVTRKTDLVTVTIGGNDNDVFSGAILACGSLGGLTRGYGSPCEHVYGDYFVDRVEQRTYPAVRQALVDVQRRAPRADVVVVGYPWLLPPQVGCYPELPFARGDVPYLRDLQATLNDVLERAARETGAVFVDLSVVSEGRDACSGAGTRWVEPLLEGSGVVPLHPNARGEAGMADAVLATLGG				NA	NA	NA	NA	NA
AK001_00163	2463	ligD_1	COG1793	Multifunctional non-homologous end joining DNA repair protein LigD	GTGAGCCCGCAGGCCCAGCGCGTCACGGTGGCGGGCCGCACCCTGTCGCTGACCAACCTCGACAAGGTGCTCTACCCCGCCACCGGCACCACGAAGGGCGAGGTGCTGCAGTACCTCGCCACGGTCGCCGACGTCCTGATCCCGCACGCGGCGCACCGACCCGCCACCCGCAAGCGCTGGCCCGACGGCGTCGAGGGACAGTCGTTCTTCCAGAAGAACCTCGACGCCTCCACCCCCGACTGGGTGCCGCGGCACACCATCCGCCACCGGCACTCCGTCAACGACTACGTCCTCGTCGACGACCTGGCCACGCTCACCTGGCTCGGTCAGACGGCGACCCTGGAGATCCACGTGCCGCAGTGGCGGTTCGGGCGCACCGGCGACCCGCTGCCGCCGGACCGGATGGTGCTCGACCTCGACCCGGGCCCCGGGGTCGGGCTGCCCGAGTGCGCGCAGGTCGCCCGCTGGGCCAGAGAGATCGTCGCCGGGATGGGTCTCGACCTGCTGCCGGTGACCAGCGGGTCCAAGGGACTGCACCTGTACGCGCCGCTGACGGGCCCGCACGGGACGCTCACCAGCGACGACGTCTCCGCCGTCGCCAAGGAGCTCGCCCAGCACCTCGCCACGGAGCACCCCGGCCACGTCGTGGCCGAGATGAAGCGGTCGCTGCGGACCGGCAAGGTGTTCGTCGACTGGTCGCAGAACAACGGCTCCAAGACCACGATCACCCCCTACTCCCTGCGGGGACGCGCGCAGCCGACGGTCGCCGCCCCGCGCACGTGGGACGAGCTCGAGGACCCCGACCTCCGCCAGCTCGACCACGCCGAGGTCCTCGAGCGGATCGGCCGCGACGGCGACCTGCTCGCCCCGCTGCTGGCCGGCCACCTGGACCGCCTGGAGCCCACGCCGGAGCACCTGGCGACCTTCGACCGGCTGGAGACCTACCGCGCCAAGCGCGACCCGGGACGCACCCCCGAGCCGTTCTCCTCGGGCGCTGCACGCCCGGCCGACGCGGCGCCGCGGTTCGTGATCCAGGAGCACCACGCCCGCCGGCTGCACTGGGACTTCCGGCTGGAGCACGAGGGCGTCCTGGTCAGCTGGGCGCTACCGAAGGGCGAGCCCGCCGACCCCGACCAGAACCACCTCGCCGTGCAGACCGAGGACCACCCGCTGGCCTACGGCGACTTCGAGGGCACGATCCCGGCCGGGGAGTACGGCGGCGGCGAGGTGACGATCTGGGACACCGGCACCTACGACCTCGAGAAGTGGCGCGAGGGCGCCGAGGTCATCGTCACGCTGCACAGCGAGCGCCGAGGGTCGCGGCGGCTCGCCCTGATCCGGACGGGAGGGCGCGGCGGTGACGACCAGCGGTCGTGGCTGATCCACCGCACCAAGGCCCAGCCCGGCGAGGCTGCCGTCGCGGGACCCACGCCGGCTCCGACAGATCCCGCCCGGGCGCCCCGCCCCATGCTCGCCACCAGCGCTCCCCCGGCCGAGCTGGCCCGGCTCGACCCGGCCGACTGGGCGTTCGAGGTCAAGTGGGACGGGTTCCGCGCGATCGCGGAGGTCCTGCCACCCGACGATGCTGCCGGCAGAGCCGGGGTCCGGCTCACGTCCCGCTCGGGTCGCGACCTCACGCCGACGTTCCCCGAGCTGCAGGCGCTGGGCGAGATGGTGCCGGCCGAGGAGCTGCCTCTCGTGCTCGACGGGGAGATCGTCGCCCTGGACGGGGACGCGCGGCCGAGCTTCCGCCGGTTGCAGCAGCGGGCCAACCTCGCCGCACCCCGCGACGTGGAGCGTGCCCGCCGACGGGTCGGCGTCGACCTCGTCCTCTTCGACGTGCTGCGAACCGCCGGCGTCGACCTGACCGACCACCCCTACACGGAGCGGCGTGCCGCGCTGGAGCGGCTGGTGTCGCCACGGCCCCCGGTGCACGTGCCGGCGGGGCTGGAGGGCACGGCCGAGGAGGCGATGGCCGAGTCCCGCCGGCTCGGGCTCGAGGGCGTGGTCGCCAAGCGCCGTCGGGCCGGGTACGCGGCGGGCCGCCGCTCGCGCGACTGGCTCAAGATCAAGCACGCCCCCACCCAGGAGGCGGTGGTGATCGGCTGGCGTCCGCTGCGGACCGGGACGCCGACCGAGGACCCTCGCTCGGCGGGAGGGCTGCTGCTCGCGCTGCCGTCGGGCGACGGCTGGCGGTACGTGGGGCGGGTCGGCACCGGGTTCTCCGACCGGGTGCGGCGCGAGGTGGTCACGCGGCTCGCCCCGCACGAGCAGTCCGCACCGGCGACCGACGACGTCCCGGCGGCCGACGCCGTCGGCGCCCGGTGGGTGGCCCCCGCCGAGGTCGTCGAGGTCCAGCACGCCGGCTGGACCGGCGACGTCCCCGGCGAGGGCAGCCTGCGGCACGCCGTGTGGCGCGGCTTCCGGCCGGACTCGGAGCCCGACCGGGTGCGCGTGGAGTGA	MSPQAQRVTVAGRTLSLTNLDKVLYPATGTTKGEVLQYLATVADVLIPHAAHRPATRKRWPDGVEGQSFFQKNLDASTPDWVPRHTIRHRHSVNDYVLVDDLATLTWLGQTATLEIHVPQWRFGRTGDPLPPDRMVLDLDPGPGVGLPECAQVARWAREIVAGMGLDLLPVTSGSKGLHLYAPLTGPHGTLTSDDVSAVAKELAQHLATEHPGHVVAEMKRSLRTGKVFVDWSQNNGSKTTITPYSLRGRAQPTVAAPRTWDELEDPDLRQLDHAEVLERIGRDGDLLAPLLAGHLDRLEPTPEHLATFDRLETYRAKRDPGRTPEPFSSGAARPADAAPRFVIQEHHARRLHWDFRLEHEGVLVSWALPKGEPADPDQNHLAVQTEDHPLAYGDFEGTIPAGEYGGGEVTIWDTGTYDLEKWREGAEVIVTLHSERRGSRRLALIRTGGRGGDDQRSWLIHRTKAQPGEAAVAGPTPAPTDPARAPRPMLATSAPPAELARLDPADWAFEVKWDGFRAIAEVLPPDDAAGRAGVRLTSRSGRDLTPTFPELQALGEMVPAEELPLVLDGEIVALDGDARPSFRRLQQRANLAAPRDVERARRRVGVDLVLFDVLRTAGVDLTDHPYTERRAALERLVSPRPPVHVPAGLEGTAEEAMAESRRLGLEGVVAKRRRAGYAAGRRSRDWLKIKHAPTQEAVVIGWRPLRTGTPTEDPRSAGGLLLALPSGDGWRYVGRVGTGFSDRVRREVVTRLAPHEQSAPATDDVPAADAVGARWVAPAEVVEVQHAGWTGDVPGEGSLRHAVWRGFRPDSEPDRVRVE	PGPT0014910_441	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
AK001_00164	705			hypothetical protein	ATGCGGCGCCGACGCGTGGCCGTCGTCCTCGCCGCCGGGCTGGTGCTCGGCGGCGGGACGGCGGTCGCCGTCGGGCTCGGCGACCAGGACACCGGGCCGGGCGAGGTCCCGGCCGCGGCGCCGAGCCCGAGCGGCCCGGCCGGCGGGGCCCTCCCCGCCCCCTCGGCGGCCCCGGCCCCGACACCCTCCGGCGCGCCGACGTCGGAGGCGCCGACGGCCTCGGCGGCGCCGGAGCAGACGTCGGAGCAGCAGGAGCGTGCGGCCCTGCCCGAGCAGGTCCGGATCCCGGCCATCGACGTCGACTCCGACCTGCTGCACCTGGGGCTGAACGACGACGGCACGATCGAGGTGCCCGCCGGGGACGACATCGACCGTGCGGCCTGGTTCGACGGGTCGCCGCGGCCCGGCGAGGACGGCCCGGCCGTCATCGAGGGGCACGTCGACAGCCCGAACGGGGCGTCCGTGTTCTATCGCCTCTCGGAGATGCAGCCGGGCCAGGAGATCCACGTCGACCGGCGCGACGGGTCGACCGCGACCTTCGTCGTCGACCGCGTCGAGCAGTACCCGAAGCGGGAGTTCCCCACGCGCGCGGTCTACGCCAACACCGACGGCCCGGAGCTGCGGGTCATCACCTGCGGCGGTGCCTGGGACGCGGACTGGGGCCACTACGTCGACAACACCGTGGTGTACGCCCACGAGGTGTGA	MRRRRVAVVLAAGLVLGGGTAVAVGLGDQDTGPGEVPAAAPSPSGPAGGALPAPSAAPAPTPSGAPTSEAPTASAAPEQTSEQQERAALPEQVRIPAIDVDSDLLHLGLNDDGTIEVPAGDDIDRAAWFDGSPRPGEDGPAVIEGHVDSPNGASVFYRLSEMQPGQEIHVDRRDGSTATFVVDRVEQYPKREFPTRAVYANTDGPELRVITCGGAWDADWGHYVDNTVVYAHEV				NA	NA	NA	NA	NA
AK001_00165	786			hypothetical protein	ATGAAGGCACGTACCCGCGCAGCGCTCGCCGCGCCCGCCCTCTCGCTCGCCGGCCTGCTGGCCGTCACCGGTCCGGCCGTCGCGGCCGACGGCACCGCGTCCGGTGACCTCACGCCGGTGCCCCTCAACGGGGTGGACGGCAGCGGCGACGCGATGGTCTGGGTCGAGGGCACGACCCTCACGGTCGAGTTCGCGGCCTCGGGGCTGCTCGCCGGCAGCCCGCACGCCGCCCACCTGCACTTCGGCCCGGACGCGGCCAACCAGTGCCCGACCGAGGCCGACGACGCCGACGGTTCCGGCACCATCACCACGTCCGAGGGTGTGCCGTCCTACGGGTCGGTCCAGCTCTCGCTGACCACGTCCGGCGACACGTCCGGCGACTCGGCGCTCGCCGTGGACCGCTTCGACACGGCCGAGGGCGGCAGCATCGACTACCAGCGCGGCGAGATCGAGGTCTCCGAGGACCTCGCCGACAACATCCTCGCCGGTGACGTCGCGCTCGTGGTCCACGGTGTGGACTACGACGGCAGCGGTGCCTACGACGGCGACACCGAGTCGGACCTCGACCCGTCGCTGCCCGCCGAGGCCACGGACCCGGCCCTGTGCGGCATCCTCGACGCCGCGCAGATGGACGAGATGCCCGCCGGTGGCGTGCAGACCGGCACCGGCAGCACCGCGGGCGCCGAGCCGGGCGCCCTGATCACGGCCGGTGGCGTCGCGCTGCTCGCCGGTGCGGGCGTCGGCGCCGGGCTGCTCGCCCGCCGTCGCGGCACGCAGGAGTCCTGA	MKARTRAALAAPALSLAGLLAVTGPAVAADGTASGDLTPVPLNGVDGSGDAMVWVEGTTLTVEFAASGLLAGSPHAAHLHFGPDAANQCPTEADDADGSGTITTSEGVPSYGSVQLSLTTSGDTSGDSALAVDRFDTAEGGSIDYQRGEIEVSEDLADNILAGDVALVVHGVDYDGSGAYDGDTESDLDPSLPAEATDPALCGILDAAQMDEMPAGGVQTGTGSTAGAEPGALITAGGVALLAGAGVGAGLLARRRGTQES				NA	NA	NA	NA	NA
AK001_00166	924	qorA	COG0604	Quinone oxidoreductase 1	ATGCGAGCAATCACCTACGCGAAGTACGGCAGCGCCGACGTCCTGGAGCTCACGGAGCAGCCCGACCCCCACCCCGGCGCGGACGCCGTGGTCGTCCGCGTGAAGGCGGCCTCGGTCAACCCCGTGGACTGGAAGGTGCGCGAGGGCTACCTCGACGGGCTGCTCGACACCCAGTTCCCGGTGGTGCCGGGCTGGGACGTCGCCGGCGTCGTCGAGCAGGTCGGCCTGGACACCCCCGAGTACGCGGTGGGCGACGAGGTCTACGGCTACGTCCGCAAGGACTGGGTCCACGGCGGCACGTTCGCCGAGCTGGTCTCCGCTCCGGTGCGGACGCTCGCCCCCAAGCCGTCGACGCTGTCCTTCGAGGAGGCGGCCGCGGTGCCGCTGACGGGTCTGACGGCCCTGCAGTCGATCCGCCGCGCCGGGGTCTCCGCGGGGCAGACGGTCCTCGTGCACGCCGCGGCCGGCGGCGTCGGGTCGTTCGCCGTCCAGATCGCGAAGGCCCGCGGTGCGCGGGTGATCGGGACCGCGAGCGAGCCCAACCACGACTTCCTGCGCGCGCTCGGCGCCGAGCCGGTCACCTACGGGGACGATCTCGCGGACCGCGTCCGGGCCCTGGCGCCCGAGGGCATCGACGTGGCGCTGGACTTCGTCGGCGGCGACGCCGTGGCGGCGAGCGCGGCCGCCCTGGCCCCCGGCGGCACGATCGCCTCGATCGCGGACCCGGCGGCACGCGACGAGCACGGCGGGCTGTACGTCTGGGTCCGCCCCTCGACGGACGACCTGGCCGAGCTCGGCGCCCTGATCGACGAGGGCACCGTCTCCGTCGAGGTCGCGGAGGTCTACGACCTGGCCGACGCCGCGGCGGCGCACCGGGCCAGCGAGACCGGCCACGTGCGCGGCAAGATCGTCGTGCGGGTCTGA	MRAITYAKYGSADVLELTEQPDPHPGADAVVVRVKAASVNPVDWKVREGYLDGLLDTQFPVVPGWDVAGVVEQVGLDTPEYAVGDEVYGYVRKDWVHGGTFAELVSAPVRTLAPKPSTLSFEEAAAVPLTGLTALQSIRRAGVSAGQTVLVHAAAGGVGSFAVQIAKARGARVIGTASEPNHDFLRALGAEPVTYGDDLADRVRALAPEGIDVALDFVGGDAVAASAAALAPGGTIASIADPAARDEHGGLYVWVRPSTDDLAELGALIDEGTVSVEVAEVYDLADAAAAHRASETGHVRGKIVVRV	PGPT0013255_9664	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_00167	861			hypothetical protein	GTGCCTGGGCGCCGACCAGTGGTTCCGGCTGTTCCTGCCGCGTCCCGGCCAGGACGCGATGAAGCTGCCCACCCGCACCTCGAGCCTCGGCTGGTACGCGCAGTACCTCGCCACGCCGCGCTCGCGCCGGCCGTGGGTACGCAGCTACACCATCCGGGCCGCACGGCCCGAGCTGTCGGAGATCGACGTGGACTTCGTGCTGCACGGTCTGTCCGACGACGGCACCCCGGACGAGCACAGCGGTCCGGCGACGACCTTCGCCGCCACGGCGCGTCCCGGCGACACCGTCGGGATGCTCGACCAGGGCTGCGGGTACGACCCTCCCGAGGACGCGGACTGGACGCTGCTCGTCGCCGACGAGACCGGGCTGCCCGCCGTCGCCGGCATCGGCGAGGCGCTGCCCGCGGACGCGCGGGGTCTGGCGATCGTCGAGGTCCCGACGGCCGACGACAGGCAGGAGGTGCGGGTGCCGGACGGCGTGGACCTGCTGTGGGTGGAGCGGGACCGGGCCGACCCGGCAGCCGTGCCGGGGCAGGCGGCGCTCGAGGTCGTGCGCGGGGCCCGGTTCCCGGCCGGCTCGGTGTACGCCTTCGTCGTCGGGGAGTCCGGCCTGGCGACCGGGACCCGACGTCACCTGGTCAACGACCGGGGCGTGCCCAAGTCGCACGTGCACTTCGCCGGCTACTGGCGACACGGCCGCGCCGCGACCGGAGTCGCGGCGCGGCCCGCATCGTGCCGTCCGCGGGGGACGGGACCGACGGTGTGCGCCGGAGCGGGCGTCAGACCCGCACGACGATCTTGCCGCGCACGTGGCCGGTCTCGCTGGCCCGGTGCGCCGCCGCGGCGTCGGCCAGGTCGTAG	MPGRRPVVPAVPAASRPGRDEAAHPHLEPRLVRAVPRHAALAPAVGTQLHHPGRTARAVGDRRGLRAARSVRRRHPGRAQRSGDDLRRHGASRRHRRDARPGLRVRPSRGRGLDAARRRRDRAARRRRHRRGAARGRAGSGDRRGPDGRRQAGGAGAGRRGPAVGGAGPGRPGSRAGAGGARGRARGPVPGRLGVRLRRRGVRPGDRDPTSPGQRPGRAQVARALRRLLATRPRRDRSRGAARIVPSAGDGTDGVRRSGRQTRTTILPRTWPVSLARCAAAASARS				NA	NA	NA	NA	NA
AK001_00168	699			hypothetical protein	ATGCCCGGCACCCCGGCGCCGTCGGCACCGTCCGCTGCCGGGCAGCATCTCCGCGTCGCGGCCGGCGACGTCGTCGTGGACCTCGCCGGCGACTGGGCCGAGGACTCCGCGCCACGGGTCGCGGGCACGGGCGCGTCCCGGACCGTGTCGACCGGGACCGGCGCGCTCCCGCTGACGTTCTCCGTCGACGGCGGCGAGCTCGTCCGGCACGCGGACGGGAGCGTCAGCGTGCTCGACGCCGACGGCGGGTCCCCGGTCGGGGGGCTGACGCGGCCCGACGGCCCCGCCACGTTCCGGGACGTCGACCCGCAGCACCTGGAGCTCGTGGGCACTGCGGGCACTGCGGGCACCGACGACGACGGCGCGACGTCCGGCGACGGTGCACGCGAGGAGGTGGGCACGACCCTCGGCACCGCGGGCGTCGTCGACGCCACCTGGGGCGAACGGGAGGGCGGCCGGTCGCTGGCCGTCGACGCGACGGACTGGGCCCGCTCGGCCGGGACCGCGGGCGTCGAGCTCGTCTGGGCGGAGCTGGTGGCCGCCGACCCGGAGGTCGACACGGCGACGATGCGCGACCAGCTCGTCTGCCACGCCCTGGGCGCCCCCGACAAGGCGACGTGGAACCTCGAGCCGTGGCGTCCCGACGTCGGGCTGGTCGCAGTGCTCGCGGCGCGCTGCAACCCCACCGACGAGGGCTGA	MPGTPAPSAPSAAGQHLRVAAGDVVVDLAGDWAEDSAPRVAGTGASRTVSTGTGALPLTFSVDGGELVRHADGSVSVLDADGGSPVGGLTRPDGPATFRDVDPQHLELVGTAGTAGTDDDGATSGDGAREEVGTTLGTAGVVDATWGEREGGRSLAVDATDWARSAGTAGVELVWAELVAADPEVDTATMRDQLVCHALGAPDKATWNLEPWRPDVGLVAVLAARCNPTDEG				NA	NA	NA	NA	NA
AK001_00169	1533			hypothetical protein	ATGACGCAGATGTCGGACCAGCCCTGGGGAGCATCACCCGACCAGATGCTCGCTGCGCTCCGACGCGCGACGCAGAGGGCCGTGGCGAGCCTCGATGCCGTCGGCTCTGCGGACGAGCACCCGGCAGATCTGGACGCGACGCTCGACGCCGTCGAAGCGGTACAGGCCGCCGTCAAAACGCTCGAGGGGCTGCGGGCGGTGCTGGCCGACCGGCTCCGGCGGCAGGCGGACCGCTCCCCCGGCTCGCTCGTCGACACCGAGGACGCGATCGCCCGGCGGGCCGACGCCGGACGGCAGCGGGAGCTCGCGCTGCGTGCCGTCACGGCCGACCTCGCCACGTCCCTGCACGTCGGTGACGGCGCCGCCCGGCGCCTGCTGGACCACGCCACGACGCTGACCACCGTCGCGCCACGCACGGTACGCGCCGTCGTGGACGGCACGGTCTCCTGGCCGAAGGCCGAGATCCTCGCCCGGGAGATCGACGACCTGACCGTCGCGGAAGCGGCGCATGTCGAGGCGCGCGTGCTGCCGGTCGCCGCCACGTCGACGCCGGCTCAGCTCCGGTCGCGGGCTCGCCGCGCCCGGGAGGAGGCCCACCCGGTACCCGCCGACGTCCGCCACGGCGAGGAGACCTCGCGTCGCGAGGTCTGGCTCGATCCCGGGCGCGACGGCATGGCCTGGCTCACCGCGCACCTGCCGGCGCCGTTCGCCCACGCCGTCCACGACCGGCTGACCAGCACCGCGACTCGTCTCCGCTCGGAGGGCGACGACCGCAGCACGGGACAGCTGCGCGCCGACGTCCTGGCCGACCTGCTGCTCGACGACGGCACGCTCGACCGCGGTGTGCTCGGTGCCGACGATCTCGTCGGATCCGTCGGAGCGCCGCGTCCCGAGGAGGCGCCCGGGCCGTCCGCTGCCGGGACTCCCCCGGTGCGCCCTGTCGGCGCACTCGCCCCGATCGCCCGCGCGATCCGGCCACGGGTCCACCTCACCGTCCCGGTCCTGTCGTTGCTGGGCGTCGGCGACGCCCCGGCCAGCCTCGACGGCCGCACCCCGGTCGACGCCGAGACCGCCCGTGCGCTGTGCGCGCACGCCCCGTCGTTCCGACGCATCCTCACCGACCCCGAGACCGGCGCGGTGCTGTCGGTCGGCCGCTCCACATACCAGGCGCCCGCCGACCTCAAGGCGATGCTCGCCGAACGGGATGCCACCTGCCGGTTCCCCGGTTGCGTCCGCCCGGTGTCGGGCACCGATCTCGACCACACCGTGGCCTGGGCCGACGGCGGCACGACCGGTACCGACAACCTCGCCCACCTGTGCCGTCACCACCACGTGCTCAAGCACCAGACCCGGTGGAGGGTCCGCCAGCTCGGCGCCGGCCGGCTGCGATGGACCTCACCGACGGGGCGCGTCCACGAGACCGTTCCTCCCCTGCCGGAGACCACCCGGCACCGCGCACCGCCGACGCCGCCTGCACTGCCGGCCCCGTCGCGAGCGCACGAGACCGCCGACCTGGGCCCGCCTCCGTTCTGA	MTQMSDQPWGASPDQMLAALRRATQRAVASLDAVGSADEHPADLDATLDAVEAVQAAVKTLEGLRAVLADRLRRQADRSPGSLVDTEDAIARRADAGRQRELALRAVTADLATSLHVGDGAARRLLDHATTLTTVAPRTVRAVVDGTVSWPKAEILAREIDDLTVAEAAHVEARVLPVAATSTPAQLRSRARRAREEAHPVPADVRHGEETSRREVWLDPGRDGMAWLTAHLPAPFAHAVHDRLTSTATRLRSEGDDRSTGQLRADVLADLLLDDGTLDRGVLGADDLVGSVGAPRPEEAPGPSAAGTPPVRPVGALAPIARAIRPRVHLTVPVLSLLGVGDAPASLDGRTPVDAETARALCAHAPSFRRILTDPETGAVLSVGRSTYQAPADLKAMLAERDATCRFPGCVRPVSGTDLDHTVAWADGGTTGTDNLAHLCRHHHVLKHQTRWRVRQLGAGRLRWTSPTGRVHETVPPLPETTRHRAPPTPPALPAPSRAHETADLGPPPF				NA	NA	NA	NA	NA
AK001_00170	1008			hypothetical protein	GTGACCGAGGACGAGATCACGCGCACCGTCGCGCTGTGCCGCCCCGACGGGTCGTTGAACCCGGAGGCTGTGGGCTGGACGCGCGCGCCGCTGCACGACACCTCCGGGATCGGCCGGGGGCTGCGGGGGCGCGGCCGGGACAAACGATGGGAGTACTGGGCGCTCGTGACGCCGACGCACGTCGTCGGCGTGACCACTTCGGCCCTCGACTACGCCGCGCTGCACGAGGTGTACGTGCTGGACCGAGCCACCGGGGGAGAGCTGGACGAGGTCGTGATCGCACCGCTGAACGGGTCCGCGTCCCTGCCCGCGTCCCTCGGGACGGGGCCTGTGCGCTCGCGGACGCGGCGGGTCGCGGTCGCCGTGGACGAGTCCCGGGACGGGACGGCGACCCGGCTGCGCGCCCGGACGCCGCGCGTCGGCCTCGACGTCCTCGTGGACCGTCCGGACGGGCACGAGGTCCTGGGGGTCGTGGTGCCGTGGTCGGAGCGGCGGTTCCAGTACACCGTCAAGGACGTCGGACGGCCGGTGCGCGGGATGCTGCGAGTGGACGGGGTCGAGCACCCGGTCGGCGGCGGGACCGGCGCCGGGGCGTGGGCGGTGCTCGACCACGGCCGGGGCCGCTGGCCGTACGCGGTGCGCTGGCAGTGGGGCGTCGGCTTCCGGGACGGCATGGGCCTGCAGCTCGGCGGCACGTGGACGCGGCAGGGACCCACGACCGAGAACGGCGTGTTCGTGGACGGCCGGCTGCACAAGCTCCACGGCGAGCTCGACTGGACCTTCGACGAGACCGACCACATGGCGCCGTGGCAGGTGATCGGGAACCGGGTCGACCTGACGTTCACCCCCTGGCACGACCGGGTCTCGCGGACGAACCTCGGCGTCCTCGCCTCGGCGACCGACCAGTGCTTCGGCCGCTGGTCGGGGTCGGTGGTCACCGACGGCGGCGGACGGCTGCTCGTCGACGGGCTCGAGGGGTGGGTCGAGGACGTGCGCCAGCGCTGGTGA	MTEDEITRTVALCRPDGSLNPEAVGWTRAPLHDTSGIGRGLRGRGRDKRWEYWALVTPTHVVGVTTSALDYAALHEVYVLDRATGGELDEVVIAPLNGSASLPASLGTGPVRSRTRRVAVAVDESRDGTATRLRARTPRVGLDVLVDRPDGHEVLGVVVPWSERRFQYTVKDVGRPVRGMLRVDGVEHPVGGGTGAGAWAVLDHGRGRWPYAVRWQWGVGFRDGMGLQLGGTWTRQGPTTENGVFVDGRLHKLHGELDWTFDETDHMAPWQVIGNRVDLTFTPWHDRVSRTNLGVLASATDQCFGRWSGSVVTDGGGRLLVDGLEGWVEDVRQRW				NA	NA	NA	NA	NA
AK001_00171	1026			hypothetical protein	GTGAGGCTGCTCGTCCTCGGCGGCACGGTGTTCCTCTCGCGCGCCGTCGCCGCCCTCGGCATCGCCCGGGGCCACGAGGTCGTCGCCGTGCACCGCGGACGGTCCGGCACCGTGCCCGGCGGCGTGCGGCAGGTCGTCCACGACCGCGCCGAGCCGCTGCCCGCCGGCCTCGCCGCCGAGCGGTTCGACGCCGTCGTCGACGTCGCACGGACCCCGTCGCACGTGCGGCGGGCCGTCGAGGCCTGGCCCGACGCGCACCGGGTCTTCGTCTCGACCGTCAGCGTCTACGCCGATCCTGCCGATCCCGGCGGCCCCGGCGTCGGGCGGCTGGTCGACCCCGAGCCGGACGACGTCGACCTCGCGGCCCACGCCGACGCGTACGGCGCGATGAAGGTGGCCTGCGAGCGCCTGGTGCTGGACGGCTGCGCGAGCGCCGCCGTCGTGCGGCCCGGGCTCGTCGTCGGACCCGGCGACCCGTCCGGGCGGTTCAGCTACTGGCCCGCGCGGATGCAGCGGGTGCTCGACGCCGGTCCGGACGAGGCCGCGGACGTCCTGGCGCCGGGTGACCCGTCGGCCATCGTCCAGGTGGTCGACGTGCGCGACCTCGCCGCCTGGATCCTCGACCTCGCCGAGCGGCGGACCGCGGGTGTGTACGACGCCGTCGGTCCGACCGTCCCGATCGCGGACCTGCTGGCCGCCGTCGCCCGCGGGTGCGGGGCCATCCCGCGGTGGCGGTGGGTCGACGACGAACGGTTGTCCGCGCTCGACGTGCGGCCCTGGGCCGGGCCGAGGTCGCTGCCGCTGTGGCTGCCGCGCCCGGCCTACGACGGGATGCTCGCGCACGATCCGGGCCCGGCGCTCGCGGCGGGGCTGTCGGTGCGTCCGGTGGAGGAGACCGCCGCCGACGTGCTGGACCGCTTGCGTGCGGACCCGGACGCCCCGGTGACGGGGCTGAGCGCGGAGGAGGAGGCCGAGGTGCTGGGGCGGGCGCCGGGCCTCGGGGACACCGGGGGGCGGCCCGGCTAG	MRLLVLGGTVFLSRAVAALGIARGHEVVAVHRGRSGTVPGGVRQVVHDRAEPLPAGLAAERFDAVVDVARTPSHVRRAVEAWPDAHRVFVSTVSVYADPADPGGPGVGRLVDPEPDDVDLAAHADAYGAMKVACERLVLDGCASAAVVRPGLVVGPGDPSGRFSYWPARMQRVLDAGPDEAADVLAPGDPSAIVQVVDVRDLAAWILDLAERRTAGVYDAVGPTVPIADLLAAVARGCGAIPRWRWVDDERLSALDVRPWAGPRSLPLWLPRPAYDGMLAHDPGPALAAGLSVRPVEETAADVLDRLRADPDAPVTGLSAEEEAEVLGRAPGLGDTGGRPG				NA	NA	NA	NA	NA
AK001_00172	1338	stp_1		Multidrug resistance protein Stp	GTGCAGCGGCGCGTGCTGATCGTCGCCATCCTCGCCTCGTTCGTCTCGTTCCTCGACGGGACGGTCGTCAACGTCGCCCTGCCCGCGATCGCCGACGAGCTCGGCGGACCGGGCGAGGCCGGCCTGACGCTGCAGCAGTGGGTGGTCGACGGCTACCTGGTGACCCTCGGGTCCTTCATCCTGCTGGCCGGGTCGCTGTCCGACGTTCACGGCCGCCGCCGGGTGCTGCTGTGGGGGCTGGTCGGGTTCGCCGTCGCCTCCGTGCTGTGCGCGCTGGCGCCCACCGGACCGGTGCTGGTCGTCGCCCGGCTGCTGCAGGGGGTCGCGGGCGCCCTGCTGGTCCCGAGCTCGCTGGCGCTGATCATCTCGACGTTCGACGGGCCGGAGCAGGGCCGCGCGATCGGCCGCTGGACGGCCTGGACCGGCACGGCGATGATCGTCGGACCGTTCGTCGGCGGGGGGCTGGTCGACCTCATCTCCTGGCGCTGGGTGTTCTGGATCAACGTGCCCGTCGTGGTGATCACGCTGCTGCTGCTGCGCCGCGTGCCCGAGGCCGAGGTCACGATCCGACGCCGCATCGACGTCCCCGGGGCGCTCCTCGCCGCGCTGGGGCTGGCCGCCGCCGTGCTGGGCCTCATCGAGGAGTGGTGGCCGGTCGTCGTCGTCGGCGCCGTGCTGCTGGCCGCGTTCGTCGTCGTCGAGCGGCGGGCACCCGACCCGATGCTCCCGCTGCGCCTCTTCCGGGCGCGGACCTTCGCGTGGGGGAACGTGGCGGCCTTCGCCGTGTACGGGGCGCTGGCGTTCGGCGGGTTCGTCCTGACGATCTTCCTCCAGCAGGTCGCCGGGTACTCGGCCACCGCCGCCGGGGTCGCCCAGCTGCCGACGACGTTCGCGATGCTGGCGCTGTCGACCCGGTTCGGCACGCTGGCCGGACGGTACGGCGCCCGCTGGTTCATGACCGTCGGCCCCGTCGTGGCCGGGTGCGGTTTCCTGCTGATGCTGACGATGGACGAGCAGGCGACGTACCTCACGCAGGTGCTGCCCGGCATCCTCGTGTTCGGCCTCGGGCTGTCGATCACGGTGGCCCCCCTGACCGCCGCGATCCTCGGTGCGGTGCCGGCGACGGACGCCGGGATCGCCTCGGCGGTCAACAACGCCGTCTCCCGCGTCGCCGGGCTCGTCGTGATCGCGTTCGCGGGCGTCATCCTCGGCGGCGTGCTGGACGTCGAGTCGTTCCACCGGGCGCTCCTGGTGACCGCGGCGCTGCTCGTCGCCGGAGGGCTGGTCAGCATGGTCGGCATCGGGGACACCCGGACGGCGCCGGAGCAGGTCTCGTGA	MQRRVLIVAILASFVSFLDGTVVNVALPAIADELGGPGEAGLTLQQWVVDGYLVTLGSFILLAGSLSDVHGRRRVLLWGLVGFAVASVLCALAPTGPVLVVARLLQGVAGALLVPSSLALIISTFDGPEQGRAIGRWTAWTGTAMIVGPFVGGGLVDLISWRWVFWINVPVVVITLLLLRRVPEAEVTIRRRIDVPGALLAALGLAAAVLGLIEEWWPVVVVGAVLLAAFVVVERRAPDPMLPLRLFRARTFAWGNVAAFAVYGALAFGGFVLTIFLQQVAGYSATAAGVAQLPTTFAMLALSTRFGTLAGRYGARWFMTVGPVVAGCGFLLMLTMDEQATYLTQVLPGILVFGLGLSITVAPLTAAILGAVPATDAGIASAVNNAVSRVAGLVVIAFAGVILGGVLDVESFHRALLVTAALLVAGGLVSMVGIGDTRTAPEQVS				NA	NA	NA	NA	NA
AK001_00173	1218	eis_1		N-acetyltransferase Eis	GTGGACCTCGACATCCGCCGCATCCCGTTCGACGACGCGGCCGCGTCCCAGCGGCTCCAGCACGAGGCGTTCGGCGGCGCCGCGTCCGCGCCGACGGCCGACGGGTGGCCCCCGGCCGGCTCCCGGCCGTGGGGCGCCTGGCTCGACGGCGAGCTCGCGGCCCGGGCGACGGTGCGCTCGTTCACCTCGTGGTTCCACGGCGCTCGGGTGCCGACGGCGGGGCTGGGAGGCGTCACGGTGGCGGCCGAGCACCGCGGTGCCGGACTGCTGCGTCCGCTGATGGACGCCGGGCTGGCCGACGCCCGCGACCGCGGGGCGACGGTGTCGACCCTGTACCCGTCCGCGGCGGGGATCTACCGCGGCCTGGGCTACGAGATCGTGGGCTCCTACGACGAGGTCACGATCCCGCTGTCCGCCCTGGCCACGCTGCGCCGGCCGTCCGACGTCCGGACCCGGCGGGCGCGGGCGGCGGACGTCCCGGCGGTCCGCGCGGTGTACGAGCGGTGGGCGGCCGCCCAGAACGGTCCGTTGACCCGGTCCGAGGCACCGTTCGCCCTGGAGGCCGACGAGATGGTCGGGCCGGACGCCGACGACACGGGGGTCAGCCTCGCCGTCGACGCGTCCGACGGCACCGTCCTGGGGTTCGTGAGCTGGACGCGCGCGACCGGCCACGACCGCACGACCGACCTCGAGGTCGACGACCTCGTGGCGCTCACCCCGGACGCCGCCCGGGCGCTGTGGTTCGTGCTGGGGTCCTTCGCCACCGTCGTGGGCGCGGCCCGCGTCTCGACGTCGGGCGCCTGGTCCGGGGCGGACGTGAGCCGCCTCGTGCTGCCCGACCACGTCGCCACGACGACGTCGCGCCCCTACATGCTGCGACTGCTGGACGTCCCCGGGGCGCTGGGCTCCGCCCGCCTCGCCCCGCTGACGGCGCAGGTGCCCTTCGCGGTCCGAGACCCGCGCACCCCCGACCTGGAGGGGTCGTGGCTGCTGCGGGTGCGCGACGGCGCCGTGGAGGTCGTCGCGGACGCCGCGCCCGCCGGGACGGCGACCGACCGACCGACCTTCACCGCCGGCGGGCTGGCTCAGTCGTACGCCGGGTCCCAGTCCTGCGCGAACCTCCGGCTGGCCGGGCACCTGCACGGGCCGCCGGAGCACGACGCGCTCTGGGACGCGCTGTGGACCGGCCGCCCGGTGCACGTGCGCGACTACTTCTGA	MDLDIRRIPFDDAAASQRLQHEAFGGAASAPTADGWPPAGSRPWGAWLDGELAARATVRSFTSWFHGARVPTAGLGGVTVAAEHRGAGLLRPLMDAGLADARDRGATVSTLYPSAAGIYRGLGYEIVGSYDEVTIPLSALATLRRPSDVRTRRARAADVPAVRAVYERWAAAQNGPLTRSEAPFALEADEMVGPDADDTGVSLAVDASDGTVLGFVSWTRATGHDRTTDLEVDDLVALTPDAARALWFVLGSFATVVGAARVSTSGAWSGADVSRLVLPDHVATTTSRPYMLRLLDVPGALGSARLAPLTAQVPFAVRDPRTPDLEGSWLLRVRDGAVEVVADAAPAGTATDRPTFTAGGLAQSYAGSQSCANLRLAGHLHGPPEHDALWDALWTGRPVHVRDYF				NA	NA	NA	NA	NA
AK001_00174	750			hypothetical protein	ATGACGTACCCGCCGGGAGCTTCGCCCCGCCCGGACGGCGGTCGGCGGATCGCACGCCGTCGCCTCGAGCCGAGCAGCGGTGCCATGACCTCCGTCGCGACGCTCCTGCCCGCAGAGCCCGCACCGCAGCCCGCACCGCAGCCCGCACCGCAGCCCGCAGCGCAGCCCGCCCGCCCCGGACCCGGCCCGGCGACGCCGGTCTGGACGGCGACGCGGGTCCAGACGGCGCTGATCGCCGCGGCGCTCGTGCTGGCCCTGGTGGCCACCCTGGGGGTGGCGATGCTCTGGTCGGCGAACCGCAAGCTCGCCGGCGAGGTCGAGGCCGCGGTGCAGCGCACCGAGGTCGCCGAGGCCGAGGCCGCCCGGCTGCGCGTCGCCGTCGACGAGGCGCCCGACACGGCGACCGTCGACGCGCTGGCGGGGCGGGTCGACGGCGTGGAGGCGTGGACCGGGATGCCGCAGGAGGGCATCGACGGCATGGACGACCTGCAGACGCGCCTGCTGGAGGTCTCCAACGGCATCGACAGCCTCGAGACGAACCTGCAGGACGGCCTCGGCACCGTGCGCAACGACCTGGCCACGGTGCGCAACGACCTGTCCGCCGGCCCCGAGCCGCCGTCGGTCGCGGACGTCGACGCGCTGCGTCGCGAGCTCAGCGGGTTGCGCAGCTCGATCGACGGGATCCGGCAGGACGTCGGCGTGCTCTGCTGGGCCCTGGGCTACCGCAAGGACGTCTCCGCCTCCTGCTGA	MTYPPGASPRPDGGRRIARRRLEPSSGAMTSVATLLPAEPAPQPAPQPAPQPAAQPARPGPGPATPVWTATRVQTALIAAALVLALVATLGVAMLWSANRKLAGEVEAAVQRTEVAEAEAARLRVAVDEAPDTATVDALAGRVDGVEAWTGMPQEGIDGMDDLQTRLLEVSNGIDSLETNLQDGLGTVRNDLATVRNDLSAGPEPPSVADVDALRRELSGLRSSIDGIRQDVGVLCWALGYRKDVSASC				NA	NA	NA	NA	NA
AK001_00175	666	pdxH	COG0259	Pyridoxine/pyridoxamine 5'-phosphate oxidase	GTGCCCGGCTTTCGCGAGAGACTCCGCGACCTGCCGATGTTCCCCGACGGCCTGCCCGAAGGGCAGATCTCCGACCCGCACGCGGCGCCGCCCACCCCGCACGACCTGTTCACCGCGTGGTTCGACGACGCCGTGGCGGCGGGCGCCCACGCCCCGCACGCCATGACGCTGTCGACGGCCGGCAGCGGCGCCGTCGTGGACGCGCGCACCGTGCTGCTGACGGACCTCGACGCCGGAGGCTGGTGGTTCGCCGGTCACGCCACCAGCCCGAAGGGCCGCCACCTCGCGGAGAACCCGCAGGCCGCGCTGACCTTCCTGTGGCGCGAGGTCGGACGGCAGGTCCGCGTGGCGGGCACCGTGTCCTCGCACCCGGACGTCGGCGTCGAGGACTTCCGGCGCCGCTCCGACGCGTCGCGGGCGACGGGGCTGGTCGACCACCAGAGCGAGGTGCTCGACGACCTGGCCGAGCACCGGGAGGCGTGGGCCGAGGCGCTGCAGGAGGTGCGGGCGGACCCGCGGCGCGTCCCGTCCACGTGGACGGCCTGGCGGCTGTCCCCGTCCTCGGTCGAGTTCTGGCAGACCGGTGCCGGGACCGGTCAGACGCGCCTGCGCTACCGCCGGGGCACCGGGCCGACGGCATGGACCACGGAGCTGCTCTGGCCCTGA	MPGFRERLRDLPMFPDGLPEGQISDPHAAPPTPHDLFTAWFDDAVAAGAHAPHAMTLSTAGSGAVVDARTVLLTDLDAGGWWFAGHATSPKGRHLAENPQAALTFLWREVGRQVRVAGTVSSHPDVGVEDFRRRSDASRATGLVDHQSEVLDDLAEHREAWAEALQEVRADPRRVPSTWTAWRLSPSSVEFWQTGAGTGQTRLRYRRGTGPTAWTTELLWP	PGPT0009115_617	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009115-pdxH-K00275	NA	NA
AK001_00176	1569	mqo	COG0579	putative malate:quinone oxidoreductase	GTGACTTCGCGCGAAACCTCCCCCCGCCAGCAGCCCGCGGACGCCGTCGACGTCGTCCTCGTCGGCGGCGGCGTCATGAGCGCCACCCTCGGCACGCTGATCCAGCAGCTCGAGCCGACGTGGTCGATCCGGATCATCGAACGACTCGACGGCGTGGCGCTGGAGTCGTCCAACCCGTGGAACAACGCGGGGACGGGGCACGCCGCGCTGTGCGAGCTCAACTACACGCCGGAGAGGGCCGACGGCTCGGTCGACATCACCAAGGCGGTGGCGATCAACGAGCAGTTCGAGACCTCGCGCGAGCTGTGGCAGCACCTGCTCGCCACCGGTCAGCTCGCCGACGAGTCGTTCGTCCACCGCACGCCGCACATGACCTTCGTGCGGGGCGCCGAGAACGTGGAGTTCCTGCGCCGCCGGTACGAGACCATGACGGCGCACCCGCTGTTCCGGGACATGGAGTTCTCCACCGACCGCGCCGAGATCTCGCGCTGGACCCCGCTGCTCACGGCCGGCCGGGACGCCGACGAGCCGATCGCCGCGACCCGCTCGGTCGCCGGCACCGACGTGGACTTCGGCAACCTGACCCGCCAGCTCGTCGACAACCTCGTGCGCCACGGCGCCGAGCTGCAGCTGCAGCACGAGGTCACCTCCCTGAAGCGGACCAAGGACCGCCGCTGGCGGCTCAAGGTCAAGGACCGCTCCTGGAACGCCCCGCGCCGCACCTCCACGGTCACCGCGCGCTTCGTCTTCGTCGGCGCCGGCGGCGGGGCGCTCCCGCTGCTCCAGGCGTCGGGCATCCCCGAGATCAAGGGCTTCGGCGGCTTCCCCATCTCCGGGGAGTTCCTGCGCACCGACAACCCCGAGGTCGTCGCGCAGCACCAGGCCAAGGTCTACGGCAAGGCCGACGTCGGCGCCCCGCCGATGTCGGTGCCGCACCTCGACACCCGCGTCGTCGACGGCAAGAGCTACCTGATGTTCGGCCCCTACGCCGGGTTCAGCCCCAAGTACCTCAAGAAGGGCAAGTACCTGGGTCTGATCACCTCGCTGCGCGCCGACAACATCACCTCGATGCTGGGCGCCGGGCTGAAGAACATGGACCTGACCCAGTACCTGCTCGGCCAGCTCGCGGCGGCGCCGGAGTCGAAGTTCCACACGCTGCAGCAGTTCATGCCCCAGGCCCACCCCAAGGACTGGGAGAAGATCACCGCGGGCCAGCGCGTGCAGGTCATCAAGCGCGACGCCGACGGCAAGGGCGTGCTCCAGTTCGGCACCGAGGTCGTCACGGCCGGGGACGGTTCCATCGCCGGACTGCTCGGCGCCTCCCCCGGCGCGTCCACCGCGGTCTCCGCGATGGTCGACGTGCTCGGGCGCTGCTTCCCCCAGGAGTTCCCGGCCTGGCGCGAGCAGCTCGCCGCGATGATGCCCAGCCTGGACGGTGTGCCGGCCGACGCCCGCGAGATCGACACGACGGCCAGCGCGGCCGACGAGCCCGCGGCCACCCTGCCGGAGCCGGTCGACGGCGTGCTGCCGGCCAGCGTCTACGAGTCGCAGGCCGACTCGCGGTCCTGA	MTSRETSPRQQPADAVDVVLVGGGVMSATLGTLIQQLEPTWSIRIIERLDGVALESSNPWNNAGTGHAALCELNYTPERADGSVDITKAVAINEQFETSRELWQHLLATGQLADESFVHRTPHMTFVRGAENVEFLRRRYETMTAHPLFRDMEFSTDRAEISRWTPLLTAGRDADEPIAATRSVAGTDVDFGNLTRQLVDNLVRHGAELQLQHEVTSLKRTKDRRWRLKVKDRSWNAPRRTSTVTARFVFVGAGGGALPLLQASGIPEIKGFGGFPISGEFLRTDNPEVVAQHQAKVYGKADVGAPPMSVPHLDTRVVDGKSYLMFGPYAGFSPKYLKKGKYLGLITSLRADNITSMLGAGLKNMDLTQYLLGQLAAAPESKFHTLQQFMPQAHPKDWEKITAGQRVQVIKRDADGKGVLQFGTEVVTAGDGSIAGLLGASPGASTAVSAMVDVLGRCFPQEFPAWREQLAAMMPSLDGVPADAREIDTTASAADEPAATLPEPVDGVLPASVYESQADSRS	PGPT0001440_569	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116	NA	NA
AK001_00177	1407	pntB	COG1282	NAD(P) transhydrogenase subunit beta	ATGACCGTGCTCTCGGCCGTCCAGGCCACCTACGTCGTCGCCGGCGTGCTGTTCATCCTCTCGCTCGCGGGACTGTCCAAGCAGGAGTCGGCGCGCCGCGGCAACGTCCTCGGCATGGTCGGCATGGCCCTCGCCCTGGTCGCCACGGTCGCCCTCGCCCTGGAGAGCTCCGAGCGCCCCTGGCAGGTCACGGCCGGCCTGATCCTGCTGGTCTTCGTCGTCGGCGCCGCCGTCGGCACCTGGCGGGTCCGTCGGGTCGAGATGACCCAGATGCCCGAGCTCATCGCGCTGCTGCACTCGTTCGTCGGGCTCGCGGCGGTGCTCGTGGGCTACGGCTCCTACCTGACCGAGCCGCAGTCGGACACGGTCCACCTGGTCGAGGTGTTCCTCGGTGTGCTCATCGGTGCGGTGACCTTCACGGGGTCGATCGTCGCCAACCTCAAGCTCTCCGCCCGGATCAAGTCGGCTCCCTTGATGCTGCCGGGACGGCACTGGCTGAACCTCGCCATGGTGGTGTCCGCGGCCGGGCTGCTGGCCTGGTTCATCACGGCGGCCGGCGCCGGTGCCGACGGCGCCGCGCTGACCGCGCTCGTGCTCATGACCGTCGTCGCGCTGGCGCTCGGCTGGCACCTCGTGGCGTCGATCGGCGGCGGCGACATGCCCGTCGTGGTCTCGATGCTCAATTCGTACTCGGGGTGGGCGGCGGCCGCGGCCGGCTTCATGCTGGGCAACGACCTGCTCATCATCACCGGTGCCCTGGTCGGCTCCTCCGGCGCGATCCTGTCGTACATCATGTGCCAGGCGATGAACCGCTCCTTCGTCTCGGTCATCCTCGGCGGCTTCGGCGCCGAGCCGGGCACCCCGGCGTCGGCCGGGGTCGACGGCGAGCACCGGGAGACCTACGCGGCCGACGTCGCCGAGCAGCTCGCCCGCTCCCGCTCGGTGATCATCGTGCCCGGGTACGGCATGGCGGTGGCCAAGGCCCAGTACCCGGTGGCCGACCTGACCGAGAAGCTGCGGGACCGCGGGGTGGACGTGCGGTTCGGCGTGCACCCGGTGGCGGGCCGTCTGCCGGGCCACATGAACGTGCTGCTGGCCGAGGCGAAGGTCCCCTACGACGTCGTGCTCGGCATGGAGGAGATCAACGGGGACTTCACCGAGACGGACGTGGTGCTGGTCATCGGCGCCAACGACACCGTCAACCCGGCCGCCCAGGAGGACCCGGGCTCGCCGATCGCCGGCATGCCCGTGCTCGAGGTGTGGCAGGCGCGCGACGTCGTCGTCTTCAAGCGGTCGATGGCCACCGGCTACGCCGGCGTGCAGAACCCGCTGTTCTTCCGCGAGAACACCGCGATGATCTTCGGGGACGCCAAGGACCAGATCGAGAGGATCATCCAGTCGCTGTGA	MTVLSAVQATYVVAGVLFILSLAGLSKQESARRGNVLGMVGMALALVATVALALESSERPWQVTAGLILLVFVVGAAVGTWRVRRVEMTQMPELIALLHSFVGLAAVLVGYGSYLTEPQSDTVHLVEVFLGVLIGAVTFTGSIVANLKLSARIKSAPLMLPGRHWLNLAMVVSAAGLLAWFITAAGAGADGAALTALVLMTVVALALGWHLVASIGGGDMPVVVSMLNSYSGWAAAAAGFMLGNDLLIITGALVGSSGAILSYIMCQAMNRSFVSVILGGFGAEPGTPASAGVDGEHRETYAADVAEQLARSRSVIIVPGYGMAVAKAQYPVADLTEKLRDRGVDVRFGVHPVAGRLPGHMNVLLAEAKVPYDVVLGMEEINGDFTETDVVLVIGANDTVNPAAQEDPGSPIAGMPVLEVWQARDVVVFKRSMATGYAGVQNPLFFRENTAMIFGDAKDQIERIIQSL	PGPT0013505_2308	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325	NA	NA
AK001_00178	1602	pntA	COG3288	NAD(P) transhydrogenase subunit alpha	GTGCAGATCGGTGTCCCCCGGGAGTCACGCGACGGCGAACGTCTCGTCGCCGCCACCCCCGCGACCGTCCAGCGCCTGACCGCGCTCGGCTACGACGTGCTCGTCGAGCACGGTGCCGGCGACCAGGCGGCCATGCCCACGCGGGCCTACGTCGAGTCCGGGGCGCGGGTCGCCGGCCGGGAGGAGGTCTGGGCTTCCGACGTCGTCACCTGCGTCAACGCGCCGTCCCCGCCCGAGCTGGACCTGCTGCGTCCCGGTGCCGTGCTCGTCTCCCAGCTCGCCCCGGCGATGCACCCCGAGCTCGTCGAGGCGCTCGCCGCGCGGCACGTGACCGCGCTCGCGCTCGACGCCGTCCCGCGCATCTCGCGGGCCCAGGCGCTCGACGTGCTCTCGGCGCAGTCGAACGTGGCGGGCTACCGGTCCGTCATCGAGGCGGCCGAGGAGTTCGGCGGCATGTTCACCGGCCAGGTGACCGCGGCCGGCACGACGCCGCCCGCGACCGTGTTCGTCATCGGCGCCGGCGTCGCCGGCCTGGCCGCGATCGGCACGGCCTCCTCCCTGGGGGCCAAGGTGCGGGCGTTCGACGTCCGCCCCGAGGTCGGCGAGCAGATCGAGTCCCTCGGGGCGACGTTCGTCCAGGCCGAGGGCAGCGCGCAGGAGGTCAGCAGCGACGGGTACGCCCGCGAGCTGACGGCCGACCAGGAGGCGGCGACCCGGGCGATGTACGCGGCCGAGTCCGCCGGCGCCGACGTCGTCGTCACGACGGCGCTGGTGCGGGGCACGGCCCCGACCACCATCACCGCGGAGATGGTCGCCGCCATGAAGCCCGGGTCGGTGATCGTCGACCTGGCCGCCCCGGGCGGCGGCAACTGCGAGCTCACGGTGCCGGGGGAGCGCGTCGTCAGCGACAACGGCGTGATCGTCCTGGGCTACACCGACCTGCCCGGACGGATGCCGCAGCACACCTCGCAGCTGCTCGGTACCAACGTCGTCAACCTGCTGACCCTGATGACGCCCGGCAAGGACGGGCAGCTCGTGGTCGACCTCGACGACGTCGTCGTGCGCGGCATGACCGTCTGCCGCGAGGGCGAGGTGCTCTGGCCGCCGCCACCGGTCCAGGTCTCGGCCGCGCCGTCGGCGCCGCCGGCCGCCGAGGAGCCGGAGGCGGCCGCCGGGCCGACCCCGGAGGAGCTCGCCGAGCAGCGCCGTCTCCGGTCGCGCCGCCGGACCGTCCTGGCCGGGCTGGGCGCCGTGGTCGGGGGTCTGGCGATCGCCGCCTCGCCGCCGGACGCCGTCGGCCACTTCACCGTGTTCGCCCTCGCGGTCGTCGTCGGGTTCTACGTCATCTCGGCCGTGACGCACGCTCTGCACACCCCGCTGATGGCGCAGACCAACGCCATCAGCGGCATCATCCTCGTCGGTGCACTGCTCCAGATCGGCGTCGACGACTGGCTCGTGACGGGGCTGGCCGTCGTGGCGGCCGCCGTGGCGAGCATCAACGTGTTCGGCGGCTTCCTGGTCGCGAACCGCATGATCCGCATGTTCCGCAAGGGAGCGCCCACGCCGCACGTGACCGCGCCGACCGGGGAGGTGGCCCGATGA	MQIGVPRESRDGERLVAATPATVQRLTALGYDVLVEHGAGDQAAMPTRAYVESGARVAGREEVWASDVVTCVNAPSPPELDLLRPGAVLVSQLAPAMHPELVEALAARHVTALALDAVPRISRAQALDVLSAQSNVAGYRSVIEAAEEFGGMFTGQVTAAGTTPPATVFVIGAGVAGLAAIGTASSLGAKVRAFDVRPEVGEQIESLGATFVQAEGSAQEVSSDGYARELTADQEAATRAMYAAESAGADVVVTTALVRGTAPTTITAEMVAAMKPGSVIVDLAAPGGGNCELTVPGERVVSDNGVIVLGYTDLPGRMPQHTSQLLGTNVVNLLTLMTPGKDGQLVVDLDDVVVRGMTVCREGEVLWPPPPVQVSAAPSAPPAAEEPEAAAGPTPEELAEQRRLRSRRRTVLAGLGAVVGGLAIAASPPDAVGHFTVFALAVVVGFYVISAVTHALHTPLMAQTNAISGIILVGALLQIGVDDWLVTGLAVVAAAVASINVFGGFLVANRMIRMFRKGAPTPHVTAPTGEVAR	PGPT0013500_189	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324	NA	NA
AK001_00179	456			hypothetical protein	GTGAAGGTCGAGGCGACCACGATCGCCGAGCTGATCGAACGTTCGGCCGACGTCTGTCCGGACCTGGCGGAGGTCGACCGTCTCGTGGCCGCGGCGGCACCGGAGCTCGAGCGGCGACTGTTCGTCGGGCCGTCGATCTCGATGATCGGCTACGGCAGCATGCCGTGGCGCCGAGCCTCCGGCAGCGGCGTGTGGCCCCTGCTGGGACTGGCTCCGCAGAGGCATGGGGTGAGTCTCTACGTCGCGGCGCGGCGTGACGGCGTCACGTTGCCCGAACGGTACGCGCCGTCACTGGGCCGCGCGGACAGCGGGAAGCACTGCCTGCGGCTGCGGAGGCTGTCCAGGTGCGACGTCGACGAGCTGCGCCGTGCGGTGCGTGACGCGGTGGCCTGGGGCGCCGATCACGATCCGCGGTACGGCCGTGCCTGCGCGGCTCCCGTCACCGACGGCGGTTGA	MKVEATTIAELIERSADVCPDLAEVDRLVAAAAPELERRLFVGPSISMIGYGSMPWRRASGSGVWPLLGLAPQRHGVSLYVAARRDGVTLPERYAPSLGRADSGKHCLRLRRLSRCDVDELRRAVRDAVAWGADHDPRYGRACAAPVTDGG				NA	NA	NA	NA	NA
AK001_00180	435			hypothetical protein	GTGCACCGCACCACGGAGGACGTCGACGCCTTCTTGGCCGGTGACGACGTGTCGCCCGACATGGTCCGCACGGACGCCGTCGTGCGAGAGATGCTGCCCGCACTCTCCCGCACCCTGTGGCGGGGCGTGTTCTGGGGTGGGACGGAACAGGCGATCGTCGGCTACGGGGACATCGTCCAGCCGCGACCCCGCGGTGCCGATGTGGAGTGGTTCCTCGTCGGTCTGGCGCAGCAGAGGCGACATCTGAGCCTGTACGTCAACGCCGTCGCCGACGGCGCCTACCTCACGCGGGCCTACGCCGACCGCCTCGGACGCGCGAAGGTGGGCGCGGCGAGCATCGCGTTCACCCGTCTGGACGACCTCGACGACGCCGTGCTGCGCGAGATGCTGGCGCGGGCCGGCCGGACGGCCGACGTGCCCAGGGCGGACCCGTGA	MHRTTEDVDAFLAGDDVSPDMVRTDAVVREMLPALSRTLWRGVFWGGTEQAIVGYGDIVQPRPRGADVEWFLVGLAQQRRHLSLYVNAVADGAYLTRAYADRLGRAKVGAASIAFTRLDDLDDAVLREMLARAGRTADVPRADP				NA	NA	NA	NA	NA
AK001_00181	1371	gabD1	COG1012	Succinate-semialdehyde dehydrogenase [NADP(+)] 1	ATGCTCACTGCGACCGACCCGAGCACGGGCAAGGTCATCCGCGAGGTCGAGCCGGCCGGACCCGAGCGCGTGGAGGAGATCCTCGCGGCCGCGGCCGCTGCCGCGCCGAGCTGGGGGGACCGGTCCTTCGCCGAGCGTGCCGAGGTGCTGCACGCCGTCGCCGCCCACCTGCGCGAGCACGTCGACGAGCTCGCCCCCCTGATGACCGAGGAGATGGGCAAGCCGATCGGGGAGGCGCGCGGGGAGGTCGCCAAGGCCGCCCTGTGCTTCGACCACTACGCCGACCACGGTGCCGACTACCTGGCCGACGAGGTGCTCGCCTCCGACGCCACGACGAGCTACGTGCAGCACCTCCCGCTCGGCACGGTGCTGGGCGTGCTGCCGTGGAACGCACCGTTCTGGCTGTGGTCGCGGTTCGCGGCGCCGGCGCTCATGGCCGGCAACACCTGCCTGATGAAGCACGACCCGCACGTGCCGGGGTGCGCCGCGGCCATCGCGGACGTGTTCACCCGGGTCGGGGCGCCGGAGGGCGTCTTCCAGCACCTGCCGCTCGAGACGCCGCAGGTCGAGGCGGTGATCCGCGACCCGCGGGTGCACGCGGTCTCCTTCACCGGTTCGGCGCGTGGCGGGTCGGCGGTGGCCAGCACCGCGGCGGCCGAGATCAAGCCCACCGTCCTCGAGCTCGGCGGGTCGGACCCCTGCCTGGTCCTGGCCGACGCCGACCTCGACGCGGCTGCGGACACGGTCGCGCTGTCCCGGATCATCAACGCCGGGCAGTCCTGCATCGCGGCCAAGCGCATCATCGTCGAGAGCGCGGTCTACCCCCAGATGGTCGAGAAGCTGCGCGAGCGCCTCGCGCGGCTGACCGTCGGGGACCCCGCCGAGGAGACCACCGACGTCGGACCGATCGCGCGCGAGGACCTGCGCACGGAGCTCCACCGCCAGGTCAGCGAGACGGTGGACGCCGGGGCGCGGCTGGTGCTCGGCGGCGAGCTGCCCGCGGGGGACGGCTGGTTCTACCCCGTCACGATGCTGGCGGACGTCGTCGAGGGCATGACCGCGTGCCGCGAGGAGACGTTCGGCCCGGTGATGGTCGTCATGGAGGCGGCCGACGCCGAGGAGGCCCTCGCGATCGCGAACCGCACCGAGTACGGCCTCGCGGCGAGCGTGTGGTCGACGGCGGAGCGCGGCGTGGCGATGGCCCGCCGGATCGAGGCCGGCCAGGTCGCCGTCAACGGCATCGTCAAGACGGACCCGCGGCTGCCCAGCGGCGGCGTCAAGCGGTCCGGCTACGGTCGCGAGCTCGGCCCGCACGGCATCCGCGAGTTCGTCAACGCCCAGCAGGTGTGGGTCGGTCCGAAGCGGGGTTGA	MLTATDPSTGKVIREVEPAGPERVEEILAAAAAAAPSWGDRSFAERAEVLHAVAAHLREHVDELAPLMTEEMGKPIGEARGEVAKAALCFDHYADHGADYLADEVLASDATTSYVQHLPLGTVLGVLPWNAPFWLWSRFAAPALMAGNTCLMKHDPHVPGCAAAIADVFTRVGAPEGVFQHLPLETPQVEAVIRDPRVHAVSFTGSARGGSAVASTAAAEIKPTVLELGGSDPCLVLADADLDAAADTVALSRIINAGQSCIAAKRIIVESAVYPQMVEKLRERLARLTVGDPAEETTDVGPIAREDLRTELHRQVSETVDAGARLVLGGELPAGDGWFYPVTMLADVVEGMTACREETFGPVMVVMEAADAEEALAIANRTEYGLAASVWSTAERGVAMARRIEAGQVAVNGIVKTDPRLPSGGVKRSGYGRELGPHGIREFVNAQQVWVGPKRG	PGPT0001580_6183	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
AK001_00182	1260	doeA	COG0006	Ectoine hydrolase	GTGAAGCAGCGCGACGACATGACGTTCCCGTTCGAGGAGTACGAGCGCCGGCTCGACGAGCTCCGTCGACGGATGGCCGATCGGCTCCTCGACGCCGTGGTGATCACCGATCCCGAGAATCTGATGTATCTGACGGATTATCAGACCACCGGGTATTCGTTCTTCCAGGCGCTCGTGGTTCCGTTGACCGAGGAACCCTTCATGATCACCCGCAGCATGGAGGAGTCGAACGTCTATGCGCGCACCTGGGTCGAGCTGACCCGGCCCTATCCGGACACCGGGGACGCCATTCAGAGTCTCGTGCAGTCGCTGCGCGAATTCGGGCTCCACACCAAGGACATCGGCTACGAGCGCAACAGCTACTATTTCCCGGCTTATCACCAGGACTACATCCACACCTCGCTCACCGAGGGGCGGCTCCTGGACTGCTTCGGGATCGTCGAGGAGGGCCGGGTCACCAAGTCCCCGGCCGAGATCGAGATCATGCGCCGGGCCGCCCGCGCGACCGAGGTCGGCATGCAGGCCGGGCTGGAGGCGTGCGCGCCGGGCGTGACCGAGAACGACATCGCGGCCGAGATCAGCGCCGCGATGTTCCGCGCCGGGGGCGAGTTCCCGGCCGTGATGCCGTACGTCACCTCCGGTCCGCGCTCGATGATCGGCCACGCCACCTGGGAGGGCCGGGTCGTCCAGCCGGGCGAGCACGTCTTCCTCGAGGTGGGCGGCTGCTTCCGTCGGTACCACACGGCCATGATGCGCACCGCCGTGCTGGACGACCTGTCGCCGTCGATGGCGGCGGCCCAGCACCGGATGAAGACGGCGCTCGCCGAGGTCAAGAAGGCCATCCGGCCGGGGATCACGGTCTCCGACGCGGACAACATCGTGCGCAGCATCATCACGGACAACCACGTCGGTGCCCGTCTGATCACGCGGTCGGGGTACTCCATCGGCATCGCGTTCCCGCCGAGCTGGGACGAGGGCTACATCGCCAGCCTCAACCAGGGCAACCCCACGATCCTGCGCGAGGGCATGACGTTCCACATCATCCCGTGGATGTGGGGTGTCGACGGGGACAAGACCGTCGGCATCTCGGACACGGTCCACGTCACCGCGCGGGGCTGCGAGTCGTTCTTCACCCTGGACGAGGACTTCACGGTCAAGCCCGAGGCCGGCGCCCGTGCCGGGGTCCGCGACGCCGAGTCCGGCGAGGAACCGTCCGAGGGCCACGGCCAGGCCACCCCGATCCGTCCCGAAGTCGCCTGA	MKQRDDMTFPFEEYERRLDELRRRMADRLLDAVVITDPENLMYLTDYQTTGYSFFQALVVPLTEEPFMITRSMEESNVYARTWVELTRPYPDTGDAIQSLVQSLREFGLHTKDIGYERNSYYFPAYHQDYIHTSLTEGRLLDCFGIVEEGRVTKSPAEIEIMRRAARATEVGMQAGLEACAPGVTENDIAAEISAAMFRAGGEFPAVMPYVTSGPRSMIGHATWEGRVVQPGEHVFLEVGGCFRRYHTAMMRTAVLDDLSPSMAAAQHRMKTALAEVKKAIRPGITVSDADNIVRSIITDNHVGARLITRSGYSIGIAFPPSWDEGYIASLNQGNPTILREGMTFHIIPWMWGVDGDKTVGISDTVHVTARGCESFFTLDEDFTVKPEAGARAGVRDAESGEEPSEGHGQATPIRPEVA	PGPT0006760_908	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006760-opaA|pepQ-K01271	NA	NA
AK001_00183	1245	ectB_1	COG0160	Diaminobutyrate--2-oxoglutarate transaminase	ATGGAGGCGTTCGAGAAGTGGGAATCTGAGATCCGGGGTTACAGCCGGGCATACCCGACCGTTTTTGCTTCGGCATCCAATGCCCGTCAGGTGGACGAATCGGGACGGAGTTATCTCGATTTCTTCGCGGGCGCCGGCGTGCTCAACTTCGGGCACAACAACCCGCGCATGAAGCGCGCGATGATCGAATTCCTCGAGGCCGACGGCGTCGCGCACAGCCTCGACACGGCGACGACGACGAAGCGGGACTTCATCGAGAAGTTCGCCGCCACGGTGCTCGAGCCGCGCGACATGACCATGAAGATGCAGTTCATGGGACCGACGGGCACCAACGCCGTCGAGGCCGCGCTCAAGCTCGCCCGGCGCGTGACCGGACGCCGCGACGTCGTGGCGTTCAGCAACGGGTTCCACGGGATGACGCTCGGGTCGCTGGCCCTGACCGCGAACGACTACTTCCGCGCCGCCGCGGGCGTCCCGCTGGAGAACGTCGTGCGGCTGCCGTTCGAGACGGCTCCGGGCGGCGGCGTCCAGCAGCTGGCGGACTACCGGGCGCTGCTGGAGGACTCCTCCAGCGGTCTGCTCCCGCCGGCGGCCTTCGTCGTCGAGACGATCCAGGCCGAGGGCGGCGTGCACGTGGCGAGCGCGGAGTGGTTGCGCGAGGTGCAGCGCCTCGCCCACGACGTGGGCGCCCTGTTCATCGTGGACGACATCCAGACCGGCTGCGGACGGACCGGCAACTACTTCAGCTTCGACGGCATGGGGCTCGACCCGGACATCATCACGCTGGCGAAGGGCCTCGGCGGCTACGGGACGCCGATCGCCATGAACCTCAACAAGCCCGAGCTGGACGCCCACTGGTCGCCCGGTGAGCACACCGGGACCTTCCGCGGGCAGGGGCTGTCCTTCGTGGCGGGCAGGGTCGCGCTGGAGTACTTCGACGACGACGAGCTGATGAACCAGGTCGCGGCCAAGCGCGAGACCATGACGGCGGTCCTGGACGACCTCGCCGCGGGCTCGGACGGACGCTTCGAGGTCCGCGGCCGCGGCATGATGCAGGGCCTCGACCTCGGCGACGGAGCCCTGGCCAAGGCCATCGCCAAGAAGTGCTTCGACGACGGTCTGCTCATCGGTCCGTGCGGGACCGGGGGCCGGGTCCTCAAGCTCATCCCGCCGTTGACGATCCCGGACGAGGACCTGAGCGAGGGACTGGACATCCTCGCCTCGGCCGTCCGCAGCACCACCTGA	MEAFEKWESEIRGYSRAYPTVFASASNARQVDESGRSYLDFFAGAGVLNFGHNNPRMKRAMIEFLEADGVAHSLDTATTTKRDFIEKFAATVLEPRDMTMKMQFMGPTGTNAVEAALKLARRVTGRRDVVAFSNGFHGMTLGSLALTANDYFRAAAGVPLENVVRLPFETAPGGGVQQLADYRALLEDSSSGLLPPAAFVVETIQAEGGVHVASAEWLREVQRLAHDVGALFIVDDIQTGCGRTGNYFSFDGMGLDPDIITLAKGLGGYGTPIAMNLNKPELDAHWSPGEHTGTFRGQGLSFVAGRVALEYFDDDELMNQVAAKRETMTAVLDDLAAGSDGRFEVRGRGMMQGLDLGDGALAKAIAKKCFDDGLLIGPCGTGGRVLKLIPPLTIPDEDLSEGLDILASAVRSTT	PGPT0014050_1577	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836	NA	NA
AK001_00185	687	gpgP	COG0406	Glucosyl-3-phosphoglycerate phosphatase	GTGACCGCGCGCACCGTCGTCCTGCTGCGGCACGGACGGACCTCCTACAACGCCTCGATGCGGCTGCAGGGCCAGGTCGACATCCCCCTCGACGAGGTGGGCCGGTGGCAGGCCGCCCAGGGCGCGGCCGCGCTGGTGACCTCCCACCGCGCCACCCGGATCGTCTCCTCCGACCTCGGGCGCGCGGCGGACACCGCCGCGGCCTACGCCGAGCTGGTCGGCGTGCCGGTGGAGACCGATCCGCGTCTGCGCGAGCGGTCGTTCGGCCGCTGGGAGGGGCTGACCGCGGACGAGATCGCCGAGCGCTGGCCGGACGAGCACGCCGAGTGGCGCCGTGGCGGCGAGCCCCGTGGCGTCGGCGCCGAGACGAAGGTCGAGGTCGCCGAGCGGACGGCCGGGGCGGTCCGCGAGCACGCCGAGGGCCTCGAGGGTGACGAGTGTCTCGTCGTCGTGTCCCACGGCGCGGCGATCTCGTTGGCCATCACCGGGCTGCTCGAGCTGGACGCCACGGCGTGGCGCGGGATCTCCGGCATGCACAACGTGCACTGGTCCCACCTGCACCGATCCGCTCCCGGAGCGGTCCCGGGCTGGCGGCTCGTCGCCCACAACGTGGGTGCCGGCTACCCGCTGGACCGTTGGCAGGCGGGCCCGCACGCGGATTTGGAACCTGAGCCGAAGTCTGCCTAA	MTARTVVLLRHGRTSYNASMRLQGQVDIPLDEVGRWQAAQGAAALVTSHRATRIVSSDLGRAADTAAAYAELVGVPVETDPRLRERSFGRWEGLTADEIAERWPDEHAEWRRGGEPRGVGAETKVEVAERTAGAVREHAEGLEGDECLVVVSHGAAISLAITGLLELDATAWRGISGMHNVHWSHLHRSAPGAVPGWRLVAHNVGAGYPLDRWQAGPHADLEPEPKSA				NA	NA	NA	NA	NA
AK001_00186	444	rsfS		Ribosomal silencing factor RsfS	ATGACCGCGACGGACCGCGCCGTCGAGCTGGCGGTGGTCGCGGCGCGCGCCGCGTCCGAGCGCAAGGCGCAGGAGATCATCGCCCTCGACGTCAGCGACCAGCTGGTGCTCACCGACGTGTTCCTCATCGCCTCCGGGACGAACGAGCGTCAGGTGGTCGCCGTCGTCGACGCCGTCGAGGAGGCCATGCACCGCGCGGGAGCCAAGATGCTCCGCCGCGAGGGCAAGGCCGAGGCCCGGTGGGTGCTGCTGGACTTCGGCGACGTGGTCGTCCACGTCCAGCACGCCGAGGACCGTGTCTACTACGCCCTCGAGCGGCTCTGGAAGGACTGCCCCGCCCTCGACCTGCCCGCGGACGCCCGCGGGGGCGACGGCGCGGCGGCCCGTGCCGAGTTCGGCGACGACGGCTCGGACGGCGCGATCCACCTGCGCGGCGGGATGTGA	MTATDRAVELAVVAARAASERKAQEIIALDVSDQLVLTDVFLIASGTNERQVVAVVDAVEEAMHRAGAKMLRREGKAEARWVLLDFGDVVVHVQHAEDRVYYALERLWKDCPALDLPADARGGDGAAARAEFGDDGSDGAIHLRGGM	PGPT0013435_149	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969	NA	NA
AK001_00187	288			hypothetical protein	GTGCCGCCGTCGTCCGGATCGCCGTTCGGCGGACTCGCCGGGCAGACGCCGGCCGCCGCCTCCGCCCCGCTGGTGGAGGACGACGAGGACGACTGGGACGACGAGCACGAGCCGTCGTACACCTGGCTGCACTACATCATCCTCGTCGTGGTCGCCTTCGTCCTGGGCCTGCTGATCTGGAACCTGGTGCTCAGCCCTCCGGACGAGTTCGCCCCCGAGGAGGCGTCCGCGACGGTGCAGACGACCGAGGCGGCCGGCCCACCGAACGTGACGGGAGGATCCCGATGA	MPPSSGSPFGGLAGQTPAAASAPLVEDDEDDWDDEHEPSYTWLHYIILVVVAFVLGLLIWNLVLSPPDEFAPEEASATVQTTEAAGPPNVTGGSR				NA	NA	NA	NA	NA
AK001_00188	768			hypothetical protein	GTGCGTCGCCGACGACGGGGCCGAGGGGGCCGACGGTGGCGAGGAGGCCGCCGGGGAGGTGGCCGGGGGCGTCGCGGGCGGCGCGTCGGCCGGCTGCCCGAACGCGCGGGCCGAGGTGCGTCGCGGAGCCGACGGGGGGCTCTCGGCCCCCGGGGTCGGGAAGCGGGGCGGAGCGGCCGGCGTCGGCTCCTCACCCGGGGCGCCGCCCGGGGTGCCGCCCTGGGTCCGCCGGACCGGTGTCAGGCGACCCGTCTCGTCCAGCCCGCGCACCCCGCCGGACGTGCTCGGCGGACGGACCGTCGGCGCCGGTGCGGGGGCCGGGGAGGCGGTGGACCGCTCGCGCAGCGCGCGGCGGGACGGCGGGGTCGGAGCGGGCCGGGCTGGCTCCCCTGCCCCGGGGGCCGGTGCCGGCGCGGGAGCCGGCGCCGGGGCGGGAGCGGGCGCCGGGGTCGGTGCACCGCTGCCGAACGCTGCGGGACCGGCGCCGGGGACCGGGGCGGATCCCGCCGACGGCGCGCTCTCCTGCGCGGCGGCCGCCGCGCGCTCACGCTCGCGGATCTCCCGACGTGTCAGCGGTCGGGACCTGTTGTCACTCATCGAGACCTCGATACAGACCGTACTTGGCGATGTACTGGACGACGCCGTCCGGGACCAGATACCAGACCGGCTGCCCGGCCGCGGCACGGCGGCGGCAGTCGGTCGAGGAGATGGCGAGCGCGGGCACCTCGAGGGTGGTCACGCCGTGGGAGGGCAGTCCGTCGACGGTGA	MRRRRRGRGGRRWRGGRRGGGRGRRGRRVGRLPERAGRGASRSRRGALGPRGREAGRSGRRRLLTRGAARGAALGPPDRCQATRLVQPAHPAGRARRTDRRRRCGGRGGGGPLAQRAAGRRGRSGPGWLPCPGGRCRRGSRRRGGSGRRGRCTAAERCGTGAGDRGGSRRRRALLRGGRRALTLADLPTCQRSGPVVTHRDLDTDRTWRCTGRRRPGPDTRPAARPRHGGGSRSRRWRARAPRGWSRRGRAVRRR				NA	NA	NA	NA	NA
AK001_00189	573	nadD	COG1057	putative nicotinate-nucleotide adenylyltransferase	ATGGGTGGGACGTTCGACCCCATCCACCACGGTCACCTCGTCGCGGCGAGCGAGGCGGCCGCGCTGCTCGACCTCGACGAGGTCGTGTTCGTCCCGACCGGCAAGCCGAGCTTCAAGCAGGACGCCCAGGTCTCGCCGGCCGAGGACCGGTACCTGATGACGGTGATCGCCACGGCGTCGAACCCTCGCTTCACGGTGAGCCGCGCCGACATCGACCGGCCCGGTCTGACCTACACGGTCGACACGCTGCGCGACCTGCAGGACGCGCGCCCCGACGCCGACCTGTACTTCATCACCGGGGCGGACGCCATCGAGCAGATCCTCACGTGGAAGGACGCGGGGGACCTGTGGACGATGGCCCACTTCGTGGCGGTGACCCGACCGGGCCACCCGCTCACCGTCGACGGACTGCCCTCCCACGGCGTGACCACCCTCGAGGTGCCCGCGCTCGCCATCTCCTCGACCGACTGCCGCCGCCGTGCCGCGGCCGGGCAGCCGGTCTGGTATCTGGTCCCGGACGGCGTCGTCCAGTACATCGCCAAGTACGGTCTGTATCGAGGTCTCGATGAGTGA	MGGTFDPIHHGHLVAASEAAALLDLDEVVFVPTGKPSFKQDAQVSPAEDRYLMTVIATASNPRFTVSRADIDRPGLTYTVDTLRDLQDARPDADLYFITGADAIEQILTWKDAGDLWTMAHFVAVTRPGHPLTVDGLPSHGVTTLEVPALAISSTDCRRRAAAGQPVWYLVPDGVVQYIAKYGLYRGLDE	PGPT0013435_4168	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969	NA	NA
AK001_00190	153			hypothetical protein	GTGCTGCACACCGCCGTCCTTGCCGCCGAAGAGGCCGTCGAGCACTCCGGTTTCGTCATCTCGCCGGTGCTGCTCGGAGTGCTCGCCTTCGGTGGATTCGTCGTCGCGCTGCTGGCGACGTACGCCTTCCGCAACGCGAACAACAAGCACTGA	MLHTAVLAAEEAVEHSGFVISPVLLGVLAFGGFVVALLATYAFRNANNKH				NA	NA	NA	NA	NA
AK001_00191	1332	proA	COG0014	Gamma-glutamyl phosphate reductase	ATGACCACGACGTTCGACCCCTCCGCCACCACGACGCCCGGCCCCGCGCAGCGACCGCAGCCGGACGCCGACGTGCTGGCCGCGGTGCAGGACGTCGCGCGCCGCTCCCAGCGGGCCTCCCGGACCCTCGCGACCGCGACCCGCGCCACCAAGGACGCGGCGCTGCACGCCCTGGCCGACGCGCTGGTGGCGGCGTCCGGCGAGATCGTGGCCGCCAACGCCGAGGACCTGAGCCGCGGGCGCGAGCGCGGCATGAGCGAGGGGCTCCTGGACCGGCTGGCGCTGACCGACGAGCGGGTCGCGGCGATCGCCGCGTCCCTGCGCGAGGTGGCCGGCCTGCCCGACCCGGTCGGGGAGGTCGTGCGCGGCCAGACCCTGCCCAACGGGCTGCGGCTGCGGCAGCTGCGGGTGCCGATGGGCGTGGTCGGCATGATCTACGAGGCGCGGCCGAACGTGACGGTCGACGCCGCCGGGCTCGCCCTGAAGTCGGGCAACGCCGTGATCCTCCGCGGCGGCAGCGCCGCCGCCTCGTCGAACACCGTCATCGTCGACGTGATGCGCCGCGGCCTGGAGTCCCGGGACCTGCCCGCCGACCTCGTGCAGTCCATCGACGGCTACGGCCGCCCCGGCGGCGTCGCGCTGATGCAGGCCCGCGGTCTGGTCGACCTGCTGGTGCCGCGCGGCGGTGCCGACCTCATCCGCACCGTGGTCGAGCAGTCCACGGTCCCGGTGATCGAGACCGGCACCGGCAACGTGCACGTCTACGTGGACGCGGCCGCGGACGTGTCCACGGCCGTCGACATCGTCATGAACGCCAAGACCCAGCGCGTCGGGGTGTGCAACGCGGCCGAGACCCTGCTGGTGCACGCCGACGTCGCCGACCGGTTCCTGCCCGCCGCGCTCGCGGCGCTGGGGGGTGCCGGGGTGGTGCTGCACGTCGACGACCGGGCGGCGGGGCAGGCGCCCGAGAGCGTCGAGGTGCTGCCGGCCACCGAGGCGGACTGGGCCACCGAGTACCTCGCGGCCGAGCTGGCCGTGCGCGTCGTCGACTCCCTCGACGAGGCGATCGACCACATCCGCACCTGGAGCTCGGGGCACTCCGAGGCCATCGTCACCAACGACCTCGCGGCGTCGGAGCGGTTCGTCGCGGAGGTCGACGCCGCGGCCGTGCTGGTCAACGCCTCGACGCGCTTCACCGACGGCGGTCAGTTCGGGATGGGCGCCGAGCTCGGCATCTCCACCCAGAAGCTGCACGCGCGCGGACCGATGGGGCTGGCCGAGCTGTGCACCACCAAGTGGGTCGTGCACGGCGACGGGCACGTACGGCCCTGA	MTTTFDPSATTTPGPAQRPQPDADVLAAVQDVARRSQRASRTLATATRATKDAALHALADALVAASGEIVAANAEDLSRGRERGMSEGLLDRLALTDERVAAIAASLREVAGLPDPVGEVVRGQTLPNGLRLRQLRVPMGVVGMIYEARPNVTVDAAGLALKSGNAVILRGGSAAASSNTVIVDVMRRGLESRDLPADLVQSIDGYGRPGGVALMQARGLVDLLVPRGGADLIRTVVEQSTVPVIETGTGNVHVYVDAAADVSTAVDIVMNAKTQRVGVCNAAETLLVHADVADRFLPAALAALGGAGVVLHVDDRAAGQAPESVEVLPATEADWATEYLAAELAVRVVDSLDEAIDHIRTWSSGHSEAIVTNDLAASERFVAEVDAAAVLVNASTRFTDGGQFGMGAELGISTQKLHARGPMGLAELCTTKWVVHGDGHVRP	PGPT0014215_323	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147	NA	NA
AK001_00192	1155	proB	COG0263	Glutamate 5-kinase	GTGATCGCCCAGTCCCGCTCCGCCCTGCCGGCCGCCCGTCGGCTCGTCGTCAAGATCGGTTCGTCGTCCCTGACCCGGGCCGACGGTCACCTGGACCTCGGCGCGCTGCGGGCGCTGGTCGACGTGCTCGCCGCCTGCCACCGCCGCGGCCAGGAGATCGTGCTCGTCACCTCCGGGGCCATCGCCGCAGGGATCGGGCCGGCCGGCCTGACCTCCCGCCCCCGCGACCTGGCCACCATGCAGGCCTGCGCGATGCTGGGCCAGGGCCAGCTCGTGGCCCGGTACAGCGAGGCGTTCGCCGCCCACGACATCCGGGTCGGCCAGGCGCTGCTCACGGCCGAGGACACCGTGCGCCGGGCCCGGTACCGCAACGCACAGCGGTCGCTGGAGAAGCTGCTCGCGCTCGGCGTCGTGCCCGTGGTGAACGAGAACGACGCGGTGACGGTCGACGAGCTGCGCTTCGGCGACAACGACCGGCTCGCCGCCCTCGTCTCCCACCTGGTGCGCGCCGACGCGATGGTGCTGCTCACCGACGTGGACGGCCTGCACGACGCCCCGCCCAGCCGGCCCGGCGCGCGCCGGATCTCGCACGTCGCCGACCTGTCCCAGGTCGCCGGTGTCGAGGTCACGGCCCGGGGGAGCGCCGTGGGCACCGGCGGCATGGTGACCAAGCTCGAGTCGGTGCGCATCGCCACCCAGGACGGCGTGCCCGTCGTCCTGACCTGCGCCGACAACGTCGCCGCGGCGCTCGCCGGGGACGACGTCGGCACGTTCTTCGCCGCCGGCGGCAAGCGGACGACGGCGCGACGGCTGTGGATCGCGCACGCGGCCCGCACCGAGGGGCGGCTCCACCTGGACGCCGGTGCCACGCGCGCGGTCCTCGGCGGCCGGGCCTCGCTGCTGCCGGCCGGGATCACCCGGGTGGAGGGACACTTCGAGACCGGCGACCCCGTCGAGCTGGTGGCGCCGGACGGCGCCGTCGTCGCCCGCGGGCTCGTCGCCTACGACGCGGCCGACCTGCCCGCGCTGCTCGGCCGGTCCACCTACGCGCTGCGCGACGAGCTGGGCGAGGGGTACGACCGCGAGGTCGTCCACCGCGACGACCTGGTGCTCGAAGGGCGGAACGGCCTGTCCTCGCGGCCCGCGTCGTCGTAG	MIAQSRSALPAARRLVVKIGSSSLTRADGHLDLGALRALVDVLAACHRRGQEIVLVTSGAIAAGIGPAGLTSRPRDLATMQACAMLGQGQLVARYSEAFAAHDIRVGQALLTAEDTVRRARYRNAQRSLEKLLALGVVPVVNENDAVTVDELRFGDNDRLAALVSHLVRADAMVLLTDVDGLHDAPPSRPGARRISHVADLSQVAGVEVTARGSAVGTGGMVTKLESVRIATQDGVPVVLTCADNVAAALAGDDVGTFFAAGGKRTTARRLWIAHAARTEGRLHLDAGATRAVLGGRASLLPAGITRVEGHFETGDPVELVAPDGAVVARGLVAYDAADLPALLGRSTYALRDELGEGYDREVVHRDDLVLEGRNGLSSRPASS	PGPT0014220_701	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931	NA	NA
AK001_00193	1524	obg	COG0536	GTPase Obg	ATGGCCAGCTTCGTCGATCGAGTCGTGCTCCACGCGGCCGGGGGATCCGGCGGGCACGGCGTCGCGTCCGTGCACCGCGAGAAGTTCAAGCCCCTCGGCGGCCCCGACGGCGGCAACGGCGGTGACGGGGGCAGCGTGCGGCTCGTCGTGGACGGGCAGACGACGACGCTGCTCGACTACCACCACTCGCCGCACCGCAAGGCCCCCAACGGCGGCCAGGGCATGGGCGGGGACCGGCACGGCGCCCAGGGCGAGGACCTCGTCCTCAGCGTGCCGGACGGCACCGTCGTCAAGGACCGCGACGGCACCGTGCTGGCCGACCTCGTCGGCGTCGGTGCCGAGCTCGTCGTCGCCGCCGGCGGCCGCGGGGGTCTCGGCAACCGCGCGCTGGCCTCCCCGAAGCGCAAGGCCCCCGGGTTCGCCCTCCTCGGCGAGCCCGGCGAGGAGCGCGACGTCACGCTCGAGGTCAAGACCATCGCCGACGTCGCCCTGGTCGGCTTCCCCAGCGCCGGCAAGTCCTCCCTGATCGCCGCCATCTCGGCCGCCCGGCCCAAGATCGCCGACTACCCCTTCACGACGCTCGTGCCGAACCTCGGCGTCGTCCAGGCCGGCGCGACGCGCTACACCGTCGCCGACGTGCCCGGGCTGATCCCCGGCGCGAGCGAGGGCAAGGGGCTGGGGCTGGAGTTCCTGCGGCACATCGAGCGGACCGCGGTCATCGTGCACGTGCTGGACTGCGCCACCCTCGAGCCCGGGCGCGACCCGCTGACCGACCTGGAGGTCCTCGAGGCCGAGCTCGCCGCCTACGCGGGCGACCTGGACATCGCCGGCGGACGGGTCCCGCTCACGGAGCGTCCGCAGCTGGTCGTGCTCAACAAGATCGACGTGCCCGAGGCCCGCGAGCTGGCGGAGTTCGTCCGGCCCGACCTGGAGGCACGCGGGCTGCGGGTCTTCGAGATCTCCACCGCCTCGCACGAGGGGCTGCGCGAGCTCTCCTTCGCGCTGGGTGACCTCGTGGACCGGGCCCGCGCCGCCGCGCCGCCGCCCGAGCCGGCCCGCATCGTGCTGCGCCCGCAGGCCGTCGACGACTCCGGGTTCACGGTCACGCGTCGGACCGACGGCTCCACGGGCCACGTGTACTTCCTCGTCCAGGGGCGCAAGCCCCAGCGCTGGGTGCGGCAGACCGACTTCAACAACGACGAGGCCGTGGGCTTCCTCGCCGACCGCCTCGCCAAGCTCGGGGTGGAGGACAAGCTCCTCGAGGCCGGGGCGGTCGCCGGCGACGAGGTCCGCATCGGCACCGAGCAGGACGCGGTCGTCTTCGACTGGGAGCCCACCCTGTCCACCGGGGCCGAGCTGCTCGGGTCGCGCGGCACCGACCGTCGCCTGGAGGACACCCACCGGCCCACGCGGTCCGAGAAGCGGCGCGACTTCGTCGAGCGCATGGACGCCAAGTCGGCCGCCCGCGAGGAGCTGTGGACCGAGCGCGAGGCCGGTCACTGGGCGGACCCCTCCGACGACTGA	MASFVDRVVLHAAGGSGGHGVASVHREKFKPLGGPDGGNGGDGGSVRLVVDGQTTTLLDYHHSPHRKAPNGGQGMGGDRHGAQGEDLVLSVPDGTVVKDRDGTVLADLVGVGAELVVAAGGRGGLGNRALASPKRKAPGFALLGEPGEERDVTLEVKTIADVALVGFPSAGKSSLIAAISAARPKIADYPFTTLVPNLGVVQAGATRYTVADVPGLIPGASEGKGLGLEFLRHIERTAVIVHVLDCATLEPGRDPLTDLEVLEAELAAYAGDLDIAGGRVPLTERPQLVVLNKIDVPEARELAEFVRPDLEARGLRVFEISTASHEGLRELSFALGDLVDRARAAAPPPEPARIVLRPQAVDDSGFTVTRRTDGSTGHVYFLVQGRKPQRWVRQTDFNNDEAVGFLADRLAKLGVEDKLLEAGAVAGDEVRIGTEQDAVVFDWEPTLSTGAELLGSRGTDRRLEDTHRPTRSEKRRDFVERMDAKSAAREELWTEREAGHWADPSDD				NA	NA	NA	NA	NA
AK001_00194	258	rpmA	COG0211	50S ribosomal protein L27	ATGGCACACAAGAAGGGCGCGAGCTCCTCGCGCAACGGTCGTGACTCCAACGCCAAGTCCCTCGGCGTGAAGCGCTTCGCGGGCCAGGCGGTCAACGCCGGCGAGATCATCGTCCGGCAGCGTGGCACCCACTTCCACCCCGGCGAGAACGTCGGCCGCGGCGGCGACGACACGCTGTTCGCGCTGTCGGCCGGCGAGGTCGCCTTCGCGACGCGTCGCGGCCGCAAGGTCGTCGACATCGTCGCCGCCCAGGTCTGA	MAHKKGASSSRNGRDSNAKSLGVKRFAGQAVNAGEIIVRQRGTHFHPGENVGRGGDDTLFALSAGEVAFATRRGRKVVDIVAAQV	PGPT0019510_13	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019510-icd2-K00030	NA	NA
AK001_00195	309	rplU	COG0261	50S ribosomal protein L21	ATGGTGTACGCGATCGTCAAGGCCGGTGGCCGGCAGGAGAAGGTGTCCGTCGGGGACATCGTCGTCACGGACCGACTCGAGGGCTCGGCCGGTGACACCGTCGAGCTGCCCGCGATCCTGCTCGTGGACGGCGACACCGTGACCACCGACGCCAAGAAGCTGGCGAAGGTCAAGGTCACCGCGGAGGTCGTCAAGGACGCCAAGGGTCCGAAGATCACGATCCACAAGTACAAGAACAAGACCGGCTACCGGAAGCGGCAGGGTCACCGTCAGCAGCTGACCCGCCTGAAGGTCACCGGTATCAAGTGA	MVYAIVKAGGRQEKVSVGDIVVTDRLEGSAGDTVELPAILLVDGDTVTTDAKKLAKVKVTAEVVKDAKGPKITIHKYKNKTGYRKRQGHRQQLTRLKVTGIK				NA	NA	NA	NA	NA
AK001_00196	576	pcm	COG2518	Protein-L-isoaspartate O-methyltransferase	ATGAGCACGCCGGACGTCGTGGCGGACGCGATGCGCGCCGTCGACCGGCGCGGGTTCCTGCCGCGGGCGCAGCGGGCCTCCGCCGCGTTCGACCAGCCGCTGCCGATCGGCCACGACCAGACCTGCTCCCAGCCCTCCACGGTGGCCGCGATGCTGCGGATGCTCCGGGTCCCGCGCGGCGGTGACGTGCTCGACGTCGGCGCCGGGTCCGGGTGGACGACGGCGCTGCTCGCCCACCTCGTCGGCCCGCAGGGCGAGGTGCTGGGCGTGGAGCGGATCCCCGAGATCGCAGGGTGGGGCGCCGCGAACCTCGCGCGGGCCGGGATGCCGTGGGCCCGGTTGGTGACCGCCCGCCCGGGCGTCCTGGGCGCGCCGCGACCCGGCGGATGGTCCCGCGTCCTCGTCTCGGCCGCCGCGGACCGGCTGCCCGAGGAGCTCGTGGACCAGGTCGCGCCGGGAGGCCGCATGGTGGTGCCGGTCCGGCACCGGATGGTCGTCGTCGACCGGGACGACGACGGCAGCGTGCGCACCGCCGAGGAGGGCACCTACAGCTTCGTGCCGCTCGTGGAGGACTGA	MSTPDVVADAMRAVDRRGFLPRAQRASAAFDQPLPIGHDQTCSQPSTVAAMLRMLRVPRGGDVLDVGAGSGWTTALLAHLVGPQGEVLGVERIPEIAGWGAANLARAGMPWARLVTARPGVLGAPRPGGWSRVLVSAAADRLPEELVDQVAPGGRMVVPVRHRMVVVDRDDDGSVRTAEEGTYSFVPLVED				NA	NA	NA	NA	NA
AK001_00197	543	tdk_1		Thymidine kinase	ATGTTCGCGGGCAAGACCACCGAGCTCGTGCGCCGGGTCGACCGGGCACGGATCGCCGGCCGCGAGGTGCTCGTGGTCTCCCACGCGCTGGACGACCGGCACGGCCCGGGCCGCATCGCCTCCCACACCGGGCTGGCGGTGGCGTCCCGGGCGGTGACGCGCGCGGCCGAGATCCCCGGCCACCTGCGGCCCGGGACCGTCCTGGTGGCGGTCGACGAGGCGCAGTTCCTCGGTCCGGAGCTGGTGGACGTCGTCACGGGCCTCGCCGACGACGGCCTCGACGTCGTGGTGGCGGGCCTGACGGTGACGTTCGACGGCCGGCCCTTCGAACCGCTGCCGTCCCTCATGGCCCTGGCGGAGTCGGTCACCCGGCTGACCGCCGTGTGCACCGTCTGCGGTCGCGACGCCGCGTACCACGTCCGCCTCGAGGGGGCGGTCGCGGGCGGCGACGCCCTGACGACGGTGGCCGGGTACGTCGGGGGAGCGGAGACCTACCAGGCCCGGTGCCGCGCCCACCGCACGGTGACCGGCCGGTCCTCGTGA	MFAGKTTELVRRVDRARIAGREVLVVSHALDDRHGPGRIASHTGLAVASRAVTRAAEIPGHLRPGTVLVAVDEAQFLGPELVDVVTGLADDGLDVVVAGLTVTFDGRPFEPLPSLMALAESVTRLTAVCTVCGRDAAYHVRLEGAVAGGDALTTVAGYVGGAETYQARCRAHRTVTGRSS	PGPT0021390_3145	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857	NA	NA
AK001_00198	3615	rne		Ribonuclease E	GTGACATCCGACACCCCCGACCAGCCCGTGGCCGCTGCCGACGAGACGCCGCGCCGGGCTCCCCGCCGACGCGTGACCCGCGCGACCTCGGCCCCGTCGACCAGCGCGCCCGCCCCGATCGTCGTGCCGGCGACGTCGTCCGAGCCGGCCGCCCCGGCCGCCGAGCCGGCGACCTCCGCCGCGCCGCAGCCCGACCAGGCGACGGCCGCGGCGCCGTCCGCCCCGGCGCGTCGTCCGCGCCGCGCCAGCCGCCGTGCCGCCGGTCCGGCGCAGGCCGAGCCGTCGGCGGAGACTGCGCAGCCGGCGGTCGCGCCGGAGCAGCCGGAGCAGCCCACCGAGCCGCAGGAGCCGGTCGCTCAGGAGCCCGAGCAGCCGGCCGGGGCCGCCGCGCCGATCGCCCTGCCCGACCGCGCGCCCGAGGCGACCGCGACGGCCGCTCCCTCGCTGTCGCTCGACGACATCGTCCTGCCGGGACGGGACGCCGCCTCGGGCGACCGTCCGGCCACCGGTGCCGAGACCGCGTCCGCCCCCGCCGCGCCGCCGGCGCGCCGGGCCCGCCGCAGCACCGCGAAGGCGTCGCGTACCGAGGCGCCGGCAGAGGTCTCCGGTGACGAGAGCGCCGACGAGGTCGACGCGTCCGCCGCCACGGCATCGACCGCGGCGAAGAAGTCGACCTCCGCGAAGAAGTCGACCGCCACGAAGGAGGCCGGCACCAAGAAGTCGACCGCCACGAAGGAGACCGGCACCAAGAAGCCGGCCGACAAGAAGCCGGCCGACAAGAAGCCCTCCACGAAGAAGTCCGGCGCCGAGCAGGCCGCCACGGCCGAGCCGACGGGCGCCGCGACCGGTGCGGCCCGGACCGAGTCCACCACGGGCACGGCCAGCGGGTCCGGCACGCCTCGCCTCGCCACCACGGCTCTGCTGTTCCAGGCGCCCGACCTGTCGGGCCAGCGCGCCGCGCGCCGCGCCCAGGCGCCGGCGGGTCCGCCGCGCCCGAGCGACGAGCCGGACGCCGTCGAGAGCACGGACGCCGGGCCCGCGCCGGAGTCGCGCGAGTCGCGCACCGAGACCACGGACACCTCGTCCTCGACGTCGGCGAAGGCCGGGAAGTCCTCCCGCTCGTCGCGCGCCCGGGGTTCCGCCGCGTCGTCCGCGTCCGCCACGGACGAGGCCGCGCCGCAGCCCGAGGCGTCCGCCGGCGAGAAGTCCGACAAGAAGCCCGGCACGCCGTCGGACCAGCAGCCCGCCGAGCAGCCGGCGCAGCAGCCGGCGTCGACGCCGCTCGAGCTGAGCGACGTCGACGAGGCCGCCGTCGAGGAGCTCGAGCAGATCGAGACCGAGATCGTCGACGAGGGTGTCGAGCTCGTCGAGTTCGGCCCCGCCGACTTCCTGGAGGACGGCGACGAGTCCGACATCCGCCCGCGCCGTCGTCGGCGACGGGGCGGCCGCGGCCGTCGTGGGGGCCGCAAGGGCGACCGCCGGCCCCAGGACGACGCGGAGGGCGAGTCCTCCGACTCCTCGGCCGACGAGGACGAGGAGCGTGGCGCCGAGGAGCAGGACGAGCAGGGCTCCTCCGCACGGGACGAGCATGACGGCCAGGGCGCCGACGCGGCCGCGTCGTCCGCCACCGAGAGCGACACCGAACGGTCCGAGGCCTCCGAGGGATCCGACGACGCCGAGCAGTCGTCCGGCAGCAGCAGCCGCCGGCGTCGGCGCCGTCGGCGTGGCCGGGGCAGCGACCGCGAGGGGAGCCGCCCGGCCCGTGCCGAGGACGAGGTCACCGCGCTCAAGGGGTCGACGCGGCTGGAGGCCAAGCGCCAGCGCCGGCGCGAGGGGCGCGACGCCGGTCGTCGCCGTCAGGTCATCACCGAGGCCGAGTTCCTGGCCCGCCGCGAGTCGGTCGAGCGGTCGATGATCGTGCGCGAGCACGACGGCCGCACCCAGATCGCCGTGCTCGAGGACGGCGTGCTCGTCGAGCACTACGTCTCCCAGCAGGCGCAGGCGTCCATGGTGGGCAACGTCTACCTCGGCCGCGTGCAGAACGTGCTGCCCTCGATGGAGGCCGCCTTCGTCGACGTCGGCAAGGGCCGCAACGCCGTCCTCTACGCCGGCGAGGTCAACTGGGACGCCGCCGGGATCGAGGGGCAGCCGCGCCGCATCGAGGAGGCGCTCAAGTCCGGCGACTCGGTCCTGGTCCAGGTGACCAAGGACCCGATCGGCCACAAGGGCGCGCGCCTGACCTCCCAGGTCACGCTCGCCGGCCGGTACCTGGTCTTCGTCCCCGGCGGGGGCATGACCGGCATCAGCCGCAAGCTGCCCGACACCGAGCGCAACCGCCTCAAGAAGATCCTGCGCGACATCGTCCCCGAGGGCGCGGGCGTCATCGTGCGCACCGCCGCCGAGGGCGCCTCGGAGGAGGAGCTGCGCGCCGACGTCGAGCGGCTGCAGTCGCAGTGGCAGTCGATCACCGCCAAGGCCGAGAAGTCGTCGACCAACGCGCCGTCGCTCCTGCAGGGCGAGGCCGACATGGCCATCCGCGTGGTCCGGGACATCTTCAACGACGACTTCAGCTCGCTGGTGGTCCAGGGCGACAGCGCCTGGACCGAGATCTCGTCCTACGTCGCCGAGCTGGCGCCCGACCTGCGCGAGCGGGTCACGCGGTGGAACGAGACCGGCGACGTCTTCGCCCGGCACCGGGTCGACGAGCAGCTCGCCAAGGGCATGGACCGCAAGGTCTGGCTGCCCTCGGGCGGCTCGCTCGTGATCGACCGCACCGAGGCCATGACGGTCATCGACGTCAACACGGGCAAGTTCACCGGCAGCGGTGGCACGCTCGAGGAGACGGTGACGCGCAACAACCTCGAGGCGGCCGAGGAGATCGTGCGCCAGCTCCGGCTGCGCGACATCGGCGGCATCATCGTCATCGACTTCGTCGACATGGTGCTCGAGTCGAACCGCGACCTGGTGCTGCGCCGGCTCGTGGAGTGCCTGGGCCGGGACCGCACCAAGCACCAGGTCGCCGAGGTGACCTCGCTCGGTCTGGTCCAGATGACCCGCAAGCGCGTCGGGCAGGGGCTCGTCGAGGCGTTCAGCTCGACCTGCGAGCACTGCAAGGGCCGCGGGTTCATCGTCCACGAGCACCCCGTCGAGAAGGGCGCCGCCTCCTCGGGCGACGGCGACGGCGGCGGCGGCTCGAAGCGCTCGCGCCGCAAGCGCTCCTCCGGCAAGAAGGAGGAGCCGGCACCGGCGCACGCCGACATGCCGAAGCTGCCCGACGACGAGTCCGAGAAGCGTCAGGCGGTCAAGGCCACGCTGGCCACCATCGCCGCGGCGGCCGCCCACGCCCACGAGCACGAGGGCGAGGAGGGCCACGAGGCGTCCGCGCCGACCGAGCCTGCTGGGGACGCCGCCGCCGAGCCTGCCGGTGAGGCCGCGGCCGAGCCTGCCGAGCCCGCCGGCGAGCGGGCGGCGTCGACCCCGGCCGAGACCGCGCCGGACCCCGACGCGGCCGGCGCTCCCGCACCCGGTGGTGACACGCCGCCCAAAGGAGCCGGGGCCGACGGGGCTCCTGAGCAGGCTGCGGCGTCGTCTGCGACGCTGACCGACACGCCCTGA	MTSDTPDQPVAAADETPRRAPRRRVTRATSAPSTSAPAPIVVPATSSEPAAPAAEPATSAAPQPDQATAAAPSAPARRPRRASRRAAGPAQAEPSAETAQPAVAPEQPEQPTEPQEPVAQEPEQPAGAAAPIALPDRAPEATATAAPSLSLDDIVLPGRDAASGDRPATGAETASAPAAPPARRARRSTAKASRTEAPAEVSGDESADEVDASAATASTAAKKSTSAKKSTATKEAGTKKSTATKETGTKKPADKKPADKKPSTKKSGAEQAATAEPTGAATGAARTESTTGTASGSGTPRLATTALLFQAPDLSGQRAARRAQAPAGPPRPSDEPDAVESTDAGPAPESRESRTETTDTSSSTSAKAGKSSRSSRARGSAASSASATDEAAPQPEASAGEKSDKKPGTPSDQQPAEQPAQQPASTPLELSDVDEAAVEELEQIETEIVDEGVELVEFGPADFLEDGDESDIRPRRRRRRGGRGRRGGRKGDRRPQDDAEGESSDSSADEDEERGAEEQDEQGSSARDEHDGQGADAAASSATESDTERSEASEGSDDAEQSSGSSSRRRRRRRRGRGSDREGSRPARAEDEVTALKGSTRLEAKRQRRREGRDAGRRRQVITEAEFLARRESVERSMIVREHDGRTQIAVLEDGVLVEHYVSQQAQASMVGNVYLGRVQNVLPSMEAAFVDVGKGRNAVLYAGEVNWDAAGIEGQPRRIEEALKSGDSVLVQVTKDPIGHKGARLTSQVTLAGRYLVFVPGGGMTGISRKLPDTERNRLKKILRDIVPEGAGVIVRTAAEGASEEELRADVERLQSQWQSITAKAEKSSTNAPSLLQGEADMAIRVVRDIFNDDFSSLVVQGDSAWTEISSYVAELAPDLRERVTRWNETGDVFARHRVDEQLAKGMDRKVWLPSGGSLVIDRTEAMTVIDVNTGKFTGSGGTLEETVTRNNLEAAEEIVRQLRLRDIGGIIVIDFVDMVLESNRDLVLRRLVECLGRDRTKHQVAEVTSLGLVQMTRKRVGQGLVEAFSSTCEHCKGRGFIVHEHPVEKGAASSGDGDGGGGSKRSRRKRSSGKKEEPAPAHADMPKLPDDESEKRQAVKATLATIAAAAAHAHEHEGEEGHEASAPTEPAGDAAAEPAGEAAAEPAEPAGERAASTPAETAPDPDAAGAPAPGGDTPPKGAGADGAPEQAAASSATLTDTP				NA	NA	NA	NA	NA
AK001_00199	1500	cydA	COG1271	Cytochrome bd-I ubiquinol oxidase subunit 1	GTGGACGCTCTCGACCTGGCACGGTGGCAGTTCGCCATCACCACCGTGTACCACTTCATCTTCGTGCCGCTGACGATCGGGCTCGCCCCCCTCGTCGCGGGCATGCAGACGGCGTGGGTCGTCACGAAGAACGACCGCTGGCTGCGGCTGACGAAGTTCTTCGGCAAGCTGCTGCTGATCAACTTCGCCCTCGGCGTCGTGACCGGCATCTGGCAGGAGTTCCAGTTCGGCATGGCCTGGAGCGAGTACTCCCGGTTCGTCGGCGACGTCTTCGGCGCCCCGCTGGCCATGGAGGCGCTGGCCGCGTTCTTCGTGGAGTCGGTCTTCCTGGGCGTGTGGATCTTCGGCTGGGACCGCGTGTCCAAGAAGATCCACCTGGCCTCGATCTGGCTCTTCGCGCTGGCCACCAACCTCTCGGCGTTCTTCATCCTGGCGGCGAACTCCTGGATGCAGCACCCCGTCGGCGTCATCTACAACGAGGAGACGGGCCGCGCCGAGATGGAGTCCATCTGGGCGGTGCTGACCAACAACACGCTGCTCGCGGCGTTCCCGCACACCATCACCGCCGCGTTCCTCACCGCCGGCACCTTCGTGACCGGCGTCGCCGCCTGGTGGATGGTCCGGCTGGCCCGCACCAAGAAGGCCGAGAACCTCGAGACCGCCCGGGACGTCTACCGTCCGGCCGTCCGGCTCGGCGTGTGGGTCATGGTCGTGGCCGGGCTCGGCGTCATCTGGTCCGGCGACATCCAGGGCAAGCTCATGTACGAGCAGCAGCCCGGCAAGATGTCGTCGGCCGAGGCCCTGTGCGAGGGGACCGAGTCCGCGGAGTTCTCCATCCTCGCCGTCGGCCCGCTCTACGCCGGCTGCGAGGACGTGGCCCACCTCATCTCGATCCCCGGCGTGACCAGCTACCTCGGCACCGGGGAGTTCTCCGGCGAGGACTCCTACCTGCCCGGCGTCTACGACGTCCAGGAGGAGTACTCCGAGCGCTACGGCGAGACCACGGCCGACGGCGAGGAGATCTCCTACACCCCGCCGTTGGCGATCACCTACTGGTCGTTCCGTCTGATGATCGGGTTCGCCGCGTTCTCCGTGGCCCTCGCCCTCGTGGCGTTCTGGCTGACGCGCAAGGGCAGGATCAGCGACAACGTCTGGCTCAGCCGGCTCGCGCTCCTGGCCATCCCCATGCCCTTCGTCGCGAACTCGTTCGGCTGGATCTTCACCGAGGTCGGGCGCCAGCCGTGGGTCGTGGCCCCCAACCCCACCGGCATCGACCAGGTCCGGCTGCTCACCGAGCGCGGGGTGTCCACCGCCGTGCCGGCGGGCGTCATCCTGACCTCGATGATCGTGCTGACGATCATCTACGCGATCCTGGCGGTGGTGTGGTTCCGGCTCATGCACCGGTACGCGATCGAGGGCGTGCCCGACGTCGTCCGCGACGAGTCGCCGGAGGCGCAGGACCCCGACGACTCCGACCGCCCGCTGTCCTTCGCGTACTGA	MDALDLARWQFAITTVYHFIFVPLTIGLAPLVAGMQTAWVVTKNDRWLRLTKFFGKLLLINFALGVVTGIWQEFQFGMAWSEYSRFVGDVFGAPLAMEALAAFFVESVFLGVWIFGWDRVSKKIHLASIWLFALATNLSAFFILAANSWMQHPVGVIYNEETGRAEMESIWAVLTNNTLLAAFPHTITAAFLTAGTFVTGVAAWWMVRLARTKKAENLETARDVYRPAVRLGVWVMVVAGLGVIWSGDIQGKLMYEQQPGKMSSAEALCEGTESAEFSILAVGPLYAGCEDVAHLISIPGVTSYLGTGEFSGEDSYLPGVYDVQEEYSERYGETTADGEEISYTPPLAITYWSFRLMIGFAAFSVALALVAFWLTRKGRISDNVWLSRLALLAIPMPFVANSFGWIFTEVGRQPWVVAPNPTGIDQVRLLTERGVSTAVPAGVILTSMIVLTIIYAILAVVWFRLMHRYAIEGVPDVVRDESPEAQDPDDSDRPLSFAY	PGPT0026700_1758	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026700-cydA-K00425	NA	NA
AK001_00200	1050	cydB	COG1294	Cytochrome bd-I ubiquinol oxidase subunit 2	GTGGACCTCGCGATCCTCTGGTTCGTCATCATCGCCGTGCTGTGGACCGGCTACCTCGTGCTCGAGGGCTTCGACTTCGGCGTCGGCATGCTGCTGTCGATCCTGCCCCGGGGCGACAAGGAGCACCGGGAGAAGGAACGGCGCGTGCTCGTCAACACCATCGGCCCCGTCTGGGACGGCAACGAGGTGTGGCTGCTCACCGCCGGCGGTGCGACCTTCGCCGCGTTCCCCGAGTGGTACGCCACGATGTTCTCGGGCTTCTACATCCCGCTGCTGATCATCCTCGTGGGCCTCGTGGCCCGCGGCGTCGCCTTCGAGTACCGCGGCAAGATCAACGACCCGACCTGGGCCCGCCGCTGCGACCAGGCCATCCAGCTCGGCTCCTGGATCCCGGCGGTGATGTGGGGCGTCGCGTTCGGCAACCTCGTGCGCGGCCTCCTGCTGGACGCCGACCACCAGTACGTCGGCGGCTTCTGGGCGCTGCTCAACCCCTTCGCCCTGGTCGGCGGCCTGACCACGCTGACGCTGTTCCTCCTGCACGGCGCCGTGTTCGTCTCGCTGAAGACGGACGGCGAGATCCGCGAGCGTGCGCAGCGCCTCGCCTCCGGTCTCGCGGTCACGGCGCTCGTCGTGGCCGGCGGCTGGGCGATCTGGGCGCAGGTCGCCTACTCGGCCACCTGGACCTGGGCGGCCGTCGCGGTGGCGGCGCTGTCGCTGATCGGTGTCGTGGCCGCGACCCGCGCCCGCAAGGAGGGCACGGCCTTCATGCTGTCGGCCGTGACCATCGTGGCCGCCGTCGTGCTGATCTTCGGCTCCATGTACCCCGACGTCATCCCCGCGCTCGACGGCGGCAACGCCCTGACCGTCGCGGAGGCCTCCTCGACGGACTACACGCTGACGGTCATGACGTGGGTGGCGGTGTTCCTCACCCCGGTGGTCATCGCCTACCAGGCGTGGACCTACTGGGTGTTCCGGCGCCGCCTGTCGACGAAGGACATCCCCGCCCCCGCGGGCCTGAGCTGGCAGAAGATCAAGGACGCGGCGTTCTGA	MDLAILWFVIIAVLWTGYLVLEGFDFGVGMLLSILPRGDKEHREKERRVLVNTIGPVWDGNEVWLLTAGGATFAAFPEWYATMFSGFYIPLLIILVGLVARGVAFEYRGKINDPTWARRCDQAIQLGSWIPAVMWGVAFGNLVRGLLLDADHQYVGGFWALLNPFALVGGLTTLTLFLLHGAVFVSLKTDGEIRERAQRLASGLAVTALVVAGGWAIWAQVAYSATWTWAAVAVAALSLIGVVAATRARKEGTAFMLSAVTIVAAVVLIFGSMYPDVIPALDGGNALTVAEASSTDYTLTVMTWVAVFLTPVVIAYQAWTYWVFRRRLSTKDIPAPAGLSWQKIKDAAF	PGPT0026705_1759	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026705-cydB-K00426	NA	NA
AK001_00201	1701	cydD	COG4988	ATP-binding/permease protein CydD	GTGAGACCGCTCGACCCCCGGCTGCTCCGGCAGGCCCGGGCCGCCCGTTCCTACGTTCTGCTCACCACCGCCCTGGGTGCGGTCTCGGCCGCCCTGGTCGTGGTCCAGGCGTTCGCGATCGCCTTCGCGCTCGGACCCGTCGTGGTGGCCACCAGTCCCGGTGGCGACGGCGCCGTCGACCAGGCCGCGGTCGCCCGGTGGCTCGCCGTCCTGGCGGGTGCCGCCGTCGGACGCGCGGCGGTGGCCTGGGCGCAGGAGCGCTTCGGGCGCCGCGCCGCCACCGCGGTGGTCGCCGACCTGCGCGAGCAGGTCGTCGGCCACGCGGTCGCGCTCGGCCCGCGCCCGCCCGCCGGTGCGGCGCCGTCGGACGTCGCCACCCTGGCGACCCGCGGGCTGAACGACCTCGAGCCCTACCTGGTGCGGTTCCTGCCGCAGCTGCTGCTCACGGCGCTCGTCACCCCCGCCACCGTGCTCGTCGTGCTCGGGCTCGACTGGGTCTCCGCGCTGATCGCCGTCGTCACGCTGCCGCTCGTGCCGTTCTTCATGTGGCTCATCGGCACCATGACGGCCGGGACCTCCGAACGGCGGCTCGCGACCGTCGAGCGGCTCGGGTCGCAGGTCCTCGACCTGATCGCCGGGCTGCCGACCCTGCGGGCGTTCGGCCGCGAGCTCGGCCCGGCCGCCCGGGTCCGGGCCCTGGGCGAGTCCTCGCGACGCGCCACGATGGGCACGCTGCGGGTGGCGTTCCTGTCCGGCGCGGTGCTGGAGCTGCTGACCACGCTGTGCGTGGCGATCATCGCCGTCGGGGTGGGGCTGAGGCTCGTGCACGGCGGCATGGAGCTGGTCCCGGCGATCGCCGTGCTGGTGCTCGCGCCCGAGATCTTCCTGCCGCTGCGCCGGGTCGGCTCCGAGTTCCACGCGTCCACCGACGGGCTCGCCGCCACCCGGCGCGCCTTCGCCGTGCTGGACCTGCCGGTCATGGACGGCAGCACCGACGGCGAGCGCACCAGCGGTGCGGCGCCGACGGCCACCGGGCTCGCCGGGGGCACGCTCGTGCTCGACGACGTCACCGTCCGGGCACCCGGCCGCGACGTCGACGCCCCCGCGCACCTGTCCGCCCGCATCGCGCTCGGCTCGGGCGAGCCCGGCGGCGGCCGGGTGGTCGCGCTGCGCGGACCGAGCGGGGCCGGCAAGTCGACCCTCGTGCTGCTCCTGCTCGGGCTGCTGCGCCCCGACCACGGCAGCATCTCCCCCACCCTGCCGTGGGACCAGGTGGCGTGGGTCCCCCAGCGTCCCGCGATCGGCCCCGGCACGGTGCGCGACGTCGTCACCGACGGCCGCGAGGTCCCCCCGGAGACGTTGGCGGCGGCCGCGGCCACCACGGGCCTCGACGCCGTGCTCGCCGACCTGCCCGGCGGGTGGGACGCGCCCGTGGGGCTGGGCGGCGTCGGGCTGAGCGTCGGGCAGCGTCAGCGCCTCGCCCTGGCCCGGGCGCTGGTCGGCGCCGCCGACCGGCCGGTGGTCGTCCTCGACGAGCCCACCGCGCACCTGGACGCCCGGGGCGAGCAGGTCGTGCTCGACACCGTCAGGACCTGGCGGGACGCCGGCCGCACCGTGCTCGTGGTCGCGCACCGCGCGTCCCTGCTGGGCCTGGCCGACCAGGTCGTCGACGTCGAGGCCCGGGAGGTCGCCCGTGCCTGA	MRPLDPRLLRQARAARSYVLLTTALGAVSAALVVVQAFAIAFALGPVVVATSPGGDGAVDQAAVARWLAVLAGAAVGRAAVAWAQERFGRRAATAVVADLREQVVGHAVALGPRPPAGAAPSDVATLATRGLNDLEPYLVRFLPQLLLTALVTPATVLVVLGLDWVSALIAVVTLPLVPFFMWLIGTMTAGTSERRLATVERLGSQVLDLIAGLPTLRAFGRELGPAARVRALGESSRRATMGTLRVAFLSGAVLELLTTLCVAIIAVGVGLRLVHGGMELVPAIAVLVLAPEIFLPLRRVGSEFHASTDGLAATRRAFAVLDLPVMDGSTDGERTSGAAPTATGLAGGTLVLDDVTVRAPGRDVDAPAHLSARIALGSGEPGGGRVVALRGPSGAGKSTLVLLLLGLLRPDHGSISPTLPWDQVAWVPQRPAIGPGTVRDVVTDGREVPPETLAAAAATTGLDAVLADLPGGWDAPVGLGGVGLSVGQRQRLALARALVGAADRPVVVLDEPTAHLDARGEQVVLDTVRTWRDAGRTVLVVAHRASLLGLADQVVDVEAREVARA				NA	NA	NA	NA	NA
AK001_00202	1755		COG1132	putative ABC transporter ATP-binding/permease protein	GTGCCTGAGACCCTGCGCCGCCGCGTCGCCCAGGACCCGCTGCTGCAGCTCGCGCCGCTGCTCGAGATCCGCTGGGGGCGCGTGGTCCGCGCCGTCGGCCTCGGCACCGCCACCCTCGTGTGCGCGATCGGGCTGGCCGCCGCCGCGGCCTGGCTCATCGCGCGGGCCTCGCAGATGCCGCCGGTGCTCACCCTCTCGGTCGCCACCGTCGGCGTGCGCGCCTTCGGCACCGGCCGGGCGTTCTTCCGCTACCTCGAACGGCTCGCCTCGCACGGCGTCGCGCTGCGCGGCATGGCCGCGCTGCGCGCCAACCTGTACGACCGGCTCGCCCGCGGCGGCGCCGACGTCGTCGCCCTGCGCCGCGGCGACCTGCTCGCCCGGGTCGGGAACGACGTCGACGACGTGGGTGACGTCGTCGTGCGCGCGCTGGTCCCCGGCGGGGTCGCCGTGGTGGCGGGACTGGGCTCGGTGCTGCTGGTCGGGATCTTCCTGCCCGCCGCAGGGGCGGTGCTGCTCGCCTGCCTGCTGGTGACCGGGGTCCTGTCCCCCTGGCTGGCCTCGCGCGCGTCGGCGTCCGTGGAGCAACGCGGCGCCGAGGCCCGCGGCGAGGTCGCCGCCCGCACCCTGGAGCTGCTCGAGGACGGCCAGCAGCTCCGCGTCGCCGGCCGCCTCGCCCAGCGCACCGACGGCCTGCGGGCCGCCGACCGCCGCCTCGCGGCCGCCACGGACGACGGCGCCCGCGTCTCGGGGCTGTCGGCGGCCCTCGAGGCCGGTGCCCAGACGCTGGCGGTGCTCGGCTGCCTGCTGCTCGGCATCCCGGCCGCGCTGGCCGGCGACCTGGCGGCGACCGAGCTCGCCGTCGTCGTCCTCACGCCGCTGGCCGTCTTCGAGGTGACCACGGCGCTGCCTGCCGCGGCGGTCCAGCTGCGGCGGTCCCGCGCGGCGGCCCGGCGGCTGGTGGACCTGCTGCCCGACGACGCACCGCCGCACCGCGAGCCCGAGGCCGCGCCCGCGCCGGACGGGACCCTGCTGGAGACCGCGGGCCTCACGGCCGGGTGGTCGTCGCCGAAGCCCGTGGTCGAGGACGTGGACCTGACGCTGCGACCCGGCACCGTCGTGGCCCTGGCCGGGGCCTCCGGCGTCGGCAAGACGACGCTGCTGCTCACCGCCGCCGGGCTGCTCGGGCCCGTGGCGGGCCAGGTGCGGGGCGAGGGCCTGTTCGTCGCCGAGGACGGTCACGTGTTCGGCACCACCGTGCTGGAGAACCTCCGGGTGGCCCGCGCCGACGTCACCGAGGCCGACGCCCGCGAGGCGCTGGCCGCCGTCGGGCTCACCGGCTGGCTGGACGGGCTGCCCGACGGGCTCGCCACCGGACTCGGTACGGGCGGCACCGACGTCTCCGGCGGCGAGCGCCGGCGGCTGCTCGTCGCCCGCGCGCTGCTGGCACCCCACCGGGTGCTGCTGGTGGACGAGCCCGCCGAGCACCTGGACGCCGCCACCGCCGACGCGCTGGTGGAGATGCTGGCCACCCTCGCCCGCGGGACCGGGCGGGCCGTCGTCGTCGCCTCGCACCGCCTGACGCCGCTCGGGGCGGCCGCCGAGGTGCTGCTGCTCGGGCACGACCGCGGAGCCCCGGACCGTGCCGCGCAGGTCGTGGCCCGGGGCCCGCACGCCGCGCTGCTGCGCGACGTGCCGGAGTACCGCTGGGCGGCCGAGCGGGAGGCCGCCTCCGCGCCCGCGTCGGCCGGCCCCTGA	MPETLRRRVAQDPLLQLAPLLEIRWGRVVRAVGLGTATLVCAIGLAAAAAWLIARASQMPPVLTLSVATVGVRAFGTGRAFFRYLERLASHGVALRGMAALRANLYDRLARGGADVVALRRGDLLARVGNDVDDVGDVVVRALVPGGVAVVAGLGSVLLVGIFLPAAGAVLLACLLVTGVLSPWLASRASASVEQRGAEARGEVAARTLELLEDGQQLRVAGRLAQRTDGLRAADRRLAAATDDGARVSGLSAALEAGAQTLAVLGCLLLGIPAALAGDLAATELAVVVLTPLAVFEVTTALPAAAVQLRRSRAAARRLVDLLPDDAPPHREPEAAPAPDGTLLETAGLTAGWSSPKPVVEDVDLTLRPGTVVALAGASGVGKTTLLLTAAGLLGPVAGQVRGEGLFVAEDGHVFGTTVLENLRVARADVTEADAREALAAVGLTGWLDGLPDGLATGLGTGGTDVSGGERRRLLVARALLAPHRVLLVDEPAEHLDAATADALVEMLATLARGTGRAVVVASHRLTPLGAAAEVLLLGHDRGAPDRAAQVVARGPHAALLRDVPEYRWAAEREAASAPASAGP				NA	NA	NA	NA	NA
AK001_00203	948	btuD_1		Vitamin B12 import ATP-binding protein BtuD	ATGTGCCGGGACCCGCGGCTCCGTAGCGTCCGAGGCATGATCAGGATCGACTCCCTCACGAAGCGCTACGGGGACCTCGCCGCCGTCGACGACGTCTCCTTCACCGCGTTCCCCGGACGGGTCACGGGCTTCCTCGGCCCGAACGGGGCCGGCAAGTCCACCACGCTGCGGATCCTCACCGGCCTGGCGGCACCGACGTCCGGCCGCGCCACGGTGCTGGGCCGGCGCTACGCCGACCTGCCCAACCCGGGGCTCGACGTCGGGGTGCTGCTGGACGCCTCGGCCCAGCACGGTGGCCGCACCGGCCGCGAGACCCTGGTGCTCGCCCAGCGCACCATGGGTCTGCCGGACGCCCAGGTCGACGCGATGCTCGACCTGGTGGGGCTCACCCGCACCGAGTCGCAGCGGCGGGTGCGCGACTACTCCCTGGGCATGCGCCAGCGCCTCGGCATCGCCACGGCGCTGCTCGGCGACCCGCGCGTGCTGATCCTCGACGAGCCCGCCAACGGCCTCGACCCGGCCGGGATCCGCTGGATGCGGGACCTGCTGCGCGCCTTCGCCGACGACGGCGGCACCGTGCTGCTGTCCAGCCACCTGCTGGCCGAGATCGAGCTGGTCGCCGACGACATCGTCGTCATCGGGCACGGCCGCGCCGTGGCCTCCGGGGCGACGCACGAGCTCCTGGCGGCCTCCGGCACGCTGGTGCGCGCGCACGACGGCGAGGCGCTCGTCTCGGCGCTCGCCTCGGCGGGCTACCGCGCGACGCCGGGTGCCGACGGCGGGGTCGTCACCGACGCCGGCCCCGCCGACGCGGGTCGGGTCGCCTTCGCGGCCGGGCTGCCGCTCGTCGAGCTGCGGTCCGCCGACGGCATCGCCCTGGAGGAGATGTTCCTCGACCTGACCGCCGACGACCAGCGCGACCCGCACCCGATCGGAGCCCTCGCATGA	MCRDPRLRSVRGMIRIDSLTKRYGDLAAVDDVSFTAFPGRVTGFLGPNGAGKSTTLRILTGLAAPTSGRATVLGRRYADLPNPGLDVGVLLDASAQHGGRTGRETLVLAQRTMGLPDAQVDAMLDLVGLTRTESQRRVRDYSLGMRQRLGIATALLGDPRVLILDEPANGLDPAGIRWMRDLLRAFADDGGTVLLSSHLLAEIELVADDIVVIGHGRAVASGATHELLAASGTLVRAHDGEALVSALASAGYRATPGADGGVVTDAGPADAGRVAFAAGLPLVELRSADGIALEEMFLDLTADDQRDPHPIGALA	PGPT0006725_8150	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_00204	816			hypothetical protein	ATGACCACCCTGACCACCCCGCCCGCCGACGTCGTCGGCCGCTCCGGACCCCGGGCCGTGCCCCGGAACCGCATCCCCCGGACGCGACTGGTCGACGTCGAGCTGCGCAAGCTGGTCGACACCCGGGCGAGCCGCTGGCTGCTCGCCGCGGTCCCGCTGCTGACCCTCGTCGTCGCCGCCGGGGTGACGATCTGGGGAAGCGACGCCGAGACCGCCTTCGCGGCGCTGGCCACGACCAACCTCATGCCGCTGGAGCTCCTGCTGCCCCTGGTCGCCGTGCTCACCGTGGCCGGCGAGTGGAGCGAGCGGTCGGCCCTGACGACGTTCGCCCTCGTCCCGCGCCGGGGTCGCGTGGTCGGCGCCCAGGCCGTCGCGCTGGTGCTGGTCACGCTCGCCGCGGCCGCCGCCGTGGTGGTGCTCAGCGCGGTCGGCACCGTCGTGGCGGCGCAGGTCCGCGGGATCGACGCCGTGTGGAACCTGGGCACGGGTCTGACCCTGCGCTCGGTGCTGGCCTACCTCGCGGCCGTGGCCGTCGGGTTCGTCGCCGCGGTGGCGATCCGCAGCACCGCGCCGGCGATGGTGGCCTGCCTCGGGTTCCTGTTCGTGGTGCCGATGGTCTCGACCGTCGCCGCCGGCCTGTGGTCCTGGTGGGCCGAGCACGGCGCCTGGTTCGACCTGAGCTGGTCGCTGGCCTTCCTCACCGCGCCGCAGGTCACCGGCACGCAGTGGACCCAGGTGGGCACCTCGGCGCTGCTCTGGCTCGGGCTGCCGCTGGTGCTGGGACTGAGCCGGCTGCTGCGGGTCGAGATCCGCTGA	MTTLTTPPADVVGRSGPRAVPRNRIPRTRLVDVELRKLVDTRASRWLLAAVPLLTLVVAAGVTIWGSDAETAFAALATTNLMPLELLLPLVAVLTVAGEWSERSALTTFALVPRRGRVVGAQAVALVLVTLAAAAAVVVLSAVGTVVAAQVRGIDAVWNLGTGLTLRSVLAYLAAVAVGFVAAVAIRSTAPAMVACLGFLFVVPMVSTVAAGLWSWWAEHGAWFDLSWSLAFLTAPQVTGTQWTQVGTSALLWLGLPLVLGLSRLLRVEIR	PGPT0006730_14788	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_00205	1194			hypothetical protein	GTGACGCCCCCGATCCGCCGTGGCGCTCTGCTCGCCGGGCCGCTGACCGCCGCCCTGGTGCTCGCCGGCTGCACCGACGACCCCGCGACGCCCGACGCCGCAACGGTACCGATCGAGCGCACCCCGGACACCGCCGTCGAGGCCCCGCCCGCCGTCGACACCGACGGGCTGCGCGTCCCGCTGCAGGTGGACACCGTGCGCCTCGTCGACCCCGGCTGGGACGCCGCCCCGCAGACCGCCGACGGCATCGCCCTGGGCGTCGACGAGCGCGACGGACTGCAGCGGTTCACCGCCGTCGCGGCCGACGGCGAGGCGCTGTGGAGCGCCGAACGTCCCGCGAGCGGCACCGGCCACGCCGTCACGACGACCTCGGCAGGCCGGGCGCTCGCGGTCCTGGCCGACACCGGGGCCGACACCGCGGCCGAGTCCACGACCGCGACGGCCTACGACCTGCGCACCGGCGAGCCGGTCTGGGGACCGGTCGACGTCCCCGGACCGCCGGCCGGGCCGGGGCTGGTGTTCGCCGAGAGCGGGTCCGAGCCGGCGGACGCGGCCGGGTCGCGCGTCGTCCTGGACGCCGACACCGGCGAGCCGGTCACGCTGGAGGCCGACGTGTCGGTGCTGGGGGAGCACCGCGGCACCGTGCTCGTCCGGGACGGTGACGAGGTCGTCGCCCGCACCGCGGACGGCGAGGCCCGCTGGCGCCTCGACACCGCCGACCAGGGCTGGGAGGCCGGGGCCGTGACGGCGTCCCTCGAGCCGTCACCGGGCCCGGGCACCGTGCGGCTGCGCACCGGTGAGGCCTCGGAGGCGCTGGTCGACCTCGACGACGGCACGGTCCTGGCGGACGGGTTCACCGACGTCGGCGTCGACCCGACCACCGGCACCGTCGTCACCGTCGACGCCGACGGGCTGCGCGGGCTCGACGCCGCGGGCACCGAGCTGTGGACCACCTCGACCGCGCAGGAGACCACGATCGAGGGCGTCAGCGGCGCGCTGGTCTACCTGCGGGTCGGCGACTCCCTGCGGGCGCACAACGTCGTCACCGGGAACGTGGCGGAGGCCTACGCCCCGGACGGCACCGGCGACCTCGTGGTGCCCGTCGCCGTGACCGACGCCGGCAGCATCGTGCTGTCGGACTACTCGGGCTACCTGCTGGCCACCACGGACACCGTCGCGCCGCCCGCCCCGTGA	MTPPIRRGALLAGPLTAALVLAGCTDDPATPDAATVPIERTPDTAVEAPPAVDTDGLRVPLQVDTVRLVDPGWDAAPQTADGIALGVDERDGLQRFTAVAADGEALWSAERPASGTGHAVTTTSAGRALAVLADTGADTAAESTTATAYDLRTGEPVWGPVDVPGPPAGPGLVFAESGSEPADAAGSRVVLDADTGEPVTLEADVSVLGEHRGTVLVRDGDEVVARTADGEARWRLDTADQGWEAGAVTASLEPSPGPGTVRLRTGEASEALVDLDDGTVLADGFTDVGVDPTTGTVVTVDADGLRGLDAAGTELWTTSTAQETTIEGVSGALVYLRVGDSLRAHNVVTGNVAEAYAPDGTGDLVVPVAVTDAGSIVLSDYSGYLLATTDTVAPPAP				NA	NA	NA	NA	NA
AK001_00206	861			hypothetical protein	GTGGACGTCGGTCTCCTCACCGCGTTCCTCGGGGGAGCGCTGGCGCTGCTGAGCCCCTGCGGTGCCCTGCTGCTGCCCGCGTTCTTCGCCTCCACCGTCGGCTCCGGCCCGCGGCTGTGGGCCCACGGCGGCGTCTTCTACGCCGGGCTGGTCGTCGTGCTCGTGCCGCTCGGCGTCGGCGCCGGGGCGGTCGGGGCGCTGTTCGCCACGCACCGCGAGACCGTCGTCGCCGTGGCCGCGGTGCTGCTCGTCGTGCTCGGCGTCCTGCAGCTGCTCGGCCTCGGCTTCGACCCGGCCCGCGTGCTGCCCGGCGCCCGGGCGGTCCAGCGGTCCTCGGCGTCGCGCACCGGCTGGGTCAAGACGTTCCTGCTCGGCGCCGCGGGCGGGGTGGCGGGGTTCTGCGCCGGGCCCGTCCTCGGTGCCGTGCTCACCCTCGCCGCCGCGCAGGGCGACGTCGTCGGCGCCGGGCTGCTGCTCGCCGTCTACGCGGCCGGCATGGTCCTGCCGCTGCTCGCCCTCGCCGCGGCCTGGGGCCGGCTCGGCGAGCGCGGCCGGTCCGTGCTGCGCGGCCGGACGGTGCGGGTGCTCGGTCGCGAGCTGCACACCACCTCGATCGTCACCGGTCTGCTGCTGATCGCGGTCGGCGTGCTGTTCTGGGTCACCAACGGGCTCGTCGGGATGCCCGAGCTCCTGCCCGTCGGCACGCAGGCCTGGCTGCAGGGTCAGGGCGCCCTGCTGGCGCACCCCGTCCTCGACGTCGCCCTCGTGCTGGTCGTCGCCGTGGTCGTGGTCGTCGTCTGGACGCGCCACCGGGCCCGTGCCCAGCGGGCCGCCGCCCCCGAGACCGAGGAGGCCTCGTGA	MDVGLLTAFLGGALALLSPCGALLLPAFFASTVGSGPRLWAHGGVFYAGLVVVLVPLGVGAGAVGALFATHRETVVAVAAVLLVVLGVLQLLGLGFDPARVLPGARAVQRSSASRTGWVKTFLLGAAGGVAGFCAGPVLGAVLTLAAAQGDVVGAGLLLAVYAAGMVLPLLALAAAWGRLGERGRSVLRGRTVRVLGRELHTTSIVTGLLLIAVGVLFWVTNGLVGMPELLPVGTQAWLQGQGALLAHPVLDVALVLVVAVVVVVVWTRHRARAQRAAAPETEEAS				NA	NA	NA	NA	NA
AK001_00207	771			hypothetical protein	GTGGCCGACCCCCGCACCCCGACCGCCTCGCGGCCGTGGGTCCTGCCCGCCGTCGTCGTCGCCGTCCTGACCCTCGTCCTGCTCGTCGCCGTGGTGTGGTCGTCCGACGGCGACGCCCCCGCCGCGCCGGGCGCCGGCCCGGGCACGACGGCGACCGCGCCGGAGGACGCCGACCCGGGCGACGCCCCGACCGACGTCCAGGGGCCCGCCGAGGTCGACACCGCCGCGGTCGAGCGCCGCGACCCGGACGACCCCCTCACGGACGGCCCGGTCGACGCGCCCGTCGTGCTGGTCGTCTTCTCCGACTACCAGTGCCCGTTCTGCGCCCAGTGGAGCCAGGAGACGCTGCCCGAGATGCGCGAGCACGCCGCGGCCGGCGACCTGCGCATCGAGTACCGGGACGTCAACGTCTTCGGCGAGGCCTCCGAGCGCGCCGCCCGCGCCTCCTACGCCGCCGCGCTGCAGGACGAGTTCTGGGCCTACCACGAGGGCCTGTACCCGGAGGGGGAGACCCGCTCCGAGGACGAGCTCTCCGAGGAGGCGCTGACCGACCTCGCCGCCGAGCTGGGGCTGGACGTCGAGCAGTTCACCCGCGACCTGGGATCGGCCGGGACCGCCGACGCCGTCGCGGCCAACGAGCAGCTCGGCCTCGACCTCGGCGCCTACTCCACGCCCGCCTTCCTGATCGGCGGCCGGCCGATCGTGGGCGCCCAGCCGACCCAGGTCTTCCGCGACGCCTTCGACACCGCCCTCGCCGCGAGCAGGGGCTGA	MADPRTPTASRPWVLPAVVVAVLTLVLLVAVVWSSDGDAPAAPGAGPGTTATAPEDADPGDAPTDVQGPAEVDTAAVERRDPDDPLTDGPVDAPVVLVVFSDYQCPFCAQWSQETLPEMREHAAAGDLRIEYRDVNVFGEASERAARASYAAALQDEFWAYHEGLYPEGETRSEDELSEEALTDLAAELGLDVEQFTRDLGSAGTADAVAANEQLGLDLGAYSTPAFLIGGRPIVGAQPTQVFRDAFDTALAASRG				NA	NA	NA	NA	NA
AK001_00208	558			hypothetical protein	ATGGTGCATAGTGACCTCGTGACGCTCGAGACACCATCCCGCACCACGTGGCGCGAGACCGCCGGGCTCGCCGTGCTCGGCCTGCGCGCCTGGACCCCCCGCCAGCGCGTCGTCGCCGTCGTCGCGGCGCTGGCCGTCGGCCTGCTCATCGGGTGGGCGACCGTGCTCCTCCCCAACCCGGTCTTCTCCCGCGAGATCCCGCCGGTGTGGTGGAACTACCCCGTGTGGGTCCTCACGTCCGTCCTGTCCGGGATGCTCGTGGCGACCTACGTGCGGTCCGCCGCACCGTCCGACGACGAGACCCGGACCAGCCGCCTGGGCATGGCCGGCGGGGTCCTCGCCTGGTTCGCCGTCGGCTGCCCGGTGTGCAACAAGCTGGCGCTGCTGGCCCTCGGCTACAGCGGCGCGATCACCTGGTTCGCGCCGGTCCAGCCGTTCCTGGGCCTGGCCGCGCTCGTGCTGACCGCCGTCGCGCTCGTGTGGCGGCTGCGCGGACAGGTCGCGTGCCCCACGCCGGCGGCCGCACCGACGTCCGCCCCGGAGGGAGCCGCGCGATGA	MVHSDLVTLETPSRTTWRETAGLAVLGLRAWTPRQRVVAVVAALAVGLLIGWATVLLPNPVFSREIPPVWWNYPVWVLTSVLSGMLVATYVRSAAPSDDETRTSRLGMAGGVLAWFAVGCPVCNKLALLALGYSGAITWFAPVQPFLGLAALVLTAVALVWRLRGQVACPTPAAAPTSAPEGAAR				NA	NA	NA	NA	NA
AK001_00209	393	blaI	COG3682	Transcriptional regulator BlaI	ATGACCGCACGGGAGACCGACGAGCCCGCCCGCCTGGGGACCCTGGAGTCCCAGGTCATGGACGTGCTGTGGACCTGCGGCGGCTGCACGATCCGGAACGTCATCGAGCGTCTCGACGGCCGGCCCGCCTACACCACGATCGCCACCGTGCTCGGCAACCTGGAGCGCAAGGGCTTCGTCGAGCACGTGCGCGAGGGCCGCTCCGCCCGGTACCTGCCCGCCTCGACCCGGTCCGAGCACGCCGCCGAGGTGATGGAGCACGCGCTCGCCGCCAGCGGCGACCGCGCGGCGTCGATCCTGCACTTCGTCGAGGCGATGCCCGAGAGCGACCGCGCCCTGCTGCGCGACTACCTCGCCGGCCAGGACCGACGGCATGCCCCGGGGGCCCCGTGA	MTARETDEPARLGTLESQVMDVLWTCGGCTIRNVIERLDGRPAYTTIATVLGNLERKGFVEHVREGRSARYLPASTRSEHAAEVMEHALAASGDRAASILHFVEAMPESDRALLRDYLAGQDRRHAPGAP				NA	NA	NA	NA	NA
AK001_00210	972			hypothetical protein	GTGACCCCCGCCGTGGCCGTGCTGGTCGGGCTCGGCATCGCCCTCGCCGCGCTCGGCGGGCCGTGGCTGGTCCGCCGCGCCGCACCTGCGCTCGTGCGGGCTCCGCTGGTGGCCGCGGTGGCGCTCACCGGCGGGGTGGTGCTCTGGCTGGCCGCCCTGCTCGCCGTCGGACCGATGCTCGCCTGGACCCTCTCGGGGCCGGCCGTGCTGCCCGGCACCGCGGGCGCCGTCTGCCAGCAGTGCCTGGACGCAGCGAACCCGTTCGCCGGCTCCCCCGTCGACACCGCCGTGCCCGTGGTGCTGCTCCTGGTCGGACCGGCCCTGGTGGCCGCCGTGCTCGCCGCGGTGCTGGGCCGTGAGCTGCGGCACCGGCGTCGGGAGACCGCCCGCACGGCCGCCGCGCTCCGGGCCGTCGGCGTCCCCCGCGTCGTGGCCGGCCACCGGGTGCTGGTCGTGCCCGACGACGCGCCGGCCGCCTTCGCCCTGCCCGCCCGGCACGGCGGCGTCGTCGTGAGCACCGGCGCGCTGGCCTCCCTGGACGACGCCGGGCTCGCCGCCGTGCTCGCCCACGAGGACGCCCACCTGCGCCAGCGCCACCACCTCGTGGCCGCGCTCACCGCGGCCCTGGCGACCCACCTGCGCTGGGTCCCCGTCGTCGCCGCCGTCGCGGACGCCGTGCCCACCTACCTCGAGATCGCCGCCGACGACACGGCCCGGCGCCGGGTCGGCACCACCGCGCTCGCCGGCGCCCTGCTCACGCTCGGCGCCGCGGAGCGGTCGACGGTTCCCGCGGCGGCCGGGGCGCTGCACGCGGCCGGCCCGGACCGGATCCGCCACCTGGTCGCCCCCGGCGCGGGGCGGGCCGGCACGTGGCCCGCCGTCGCCGTCGGGGCCCACCTCGGGGTGCTCGCCGCGGTGTCGCTCGCGGTGCACGTGCCGTACGCGAGCGCCGTGCTGTCGGGGTGCGCCTGA	MTPAVAVLVGLGIALAALGGPWLVRRAAPALVRAPLVAAVALTGGVVLWLAALLAVGPMLAWTLSGPAVLPGTAGAVCQQCLDAANPFAGSPVDTAVPVVLLLVGPALVAAVLAAVLGRELRHRRRETARTAAALRAVGVPRVVAGHRVLVVPDDAPAAFALPARHGGVVVSTGALASLDDAGLAAVLAHEDAHLRQRHHLVAALTAALATHLRWVPVVAAVADAVPTYLEIAADDTARRRVGTTALAGALLTLGAAERSTVPAAAGALHAAGPDRIRHLVAPGAGRAGTWPAVAVGAHLGVLAAVSLAVHVPYASAVLSGCA				NA	NA	NA	NA	NA
AK001_00211	396			hypothetical protein	GTGAAGAGGCGGTTCCTCGTCGTCCTGGCCGGTGTCCTGGCCGCCTGCGCCTGTCTCGCGCCCGGGGCGCTCGGGCAGTCCGAGGCCGACCGACCCCTCGAGACCGACGACCGCGTCTCCACGGCCTGGCTCGTGATGGCCGGGTCCGGGGACAAGGTGGAGGACGAGTCCGCCGCCGCCCCGGCCGAGCGGCACGCGGCACGGCGTACGGCGCAGTCGAGGTGGGCCGAGACGGTGACGGCGTGCCTGCGCGCGCAGGGATGGCCCGGCGCGCAGGCCGGGCCGCAGGACCCGCTCGAGGCGGGTGCGGAGACCGCCGCCCAGCACGCGGCGCTGCAGGAGGACCGGGCCGCCTGCGAGCGGGTCGCCGGTCCGCGACCCGGTGCGCAGCCGTAG	MKRRFLVVLAGVLAACACLAPGALGQSEADRPLETDDRVSTAWLVMAGSGDKVEDESAAAPAERHAARRTAQSRWAETVTACLRAQGWPGAQAGPQDPLEAGAETAAQHAALQEDRAACERVAGPRPGAQP				NA	NA	NA	NA	NA
AK001_00212	1620		COG1233	putative protein	ATGACCCGCATGGAACCCGCGCGTACCCCCGCCACCGCCGCCCGCTACGACGTCGTGGTCGTCGGGGGCGGCCACAACGGTCTGACGGCGGCCGCCTACCTGGCCCGGGCGGGCCGGTCGGTGCTGCTGCTGGAACGGCTCGACCACGTCGGCGGGGCGTCGGTGTCGGCGCCGGTGTTCGACGGCGTCGACGCGCGGCTGTCGCGCTACTCCTACCTGGTCTCGCTGATGCCGCGGCAGGTGGTCGACGAGCTCGGGCTCTCGCTGCGGCTCGCCCGCCGGCGATACTCCTCGTACACGCCGGTGGGCGACCGCGGCCTGCTCGTGGACACCGGGTCCGACGACGCCACCCGCGCCGCGTTCGAGGCGGTCGGCGCCGGGAGGGACCACGCGCGCTGGCAGGGGCTGTACGCCGGGCTGGAGCGTCTCGCGGGCCGGATCTTCCCCACGGTCACCGAGCCGCTGCTGTCGGCGGCCGAGGCGCGCGCCCGGGCCGGCGACGACGCGCTGTGGCACGCCGTCGTCGAGCAGCCGCTGGGCGAGATGCTGCGCGAGAGGTTCGACGCGGACCTGGTGCGCGGGGTGGTCGCCACCGACGCGCTCATCGGGACCTTCGCCGACCTGGACGAGACGTCGCTGGTCCAGAACCGCTGCTTCCTCTACCACGTCATCGGCGGCGGGACGGGGGACTGGGACGTGCCCGTCGGCGGGATGGGCGCCGTCTCCGGTGCGCTGCGCGACGCGGCGCTCGGCGCCGGGGCCACCCTCGTCACCGGCGCGGACGTCACGGCGATCGACCCGGGGCCGCCCACCGGCGACGCCGAGGTCACGTGGACCGACGACGACGGCGTCGCCCGCGGGGTGCGGGCCGGTGCGGTCGTGTGCGGGGCGGCCCCCGCCGTGCTGGACGCGCTGCTGGACGCCGGTGGGGCGACGCCGTCGGGCCGCGCCACGGCCACGGCGCCCGAGGGTGCCCAGCTCAAGGTCAACATGCTGCTGCGGCGGCTGCCGCGGCTGCGCGAGGACGTCGACCCCGTCGCGGCGTTCAGCGGGACGTTCCACGTCCACGAGTCCTTCGACGAGCTGCAGACCGCCCACGCCCAGGCCGCGGCGGGCCGGATCCCCGACACCCCGCCCTGCGAGATCTACTGCCACTCCCTGACCGACGACTCGATCCTCGGTCCCGACCTGCGGGCGGCGGGTGCCCAGACCCTCACCCTGTTCGGTCTGCACATGCCGGCCCGGCTGTTCCGGGACGGTGCGGACGGAGCCCACGACGCCGCCCGTGACGCGGCGCTCGCGGCCACGCTGCGCTCCCTGGACTCCGTGCTCGCCGAACCCGTCGAGGACGTGCTGTGGCGGGGTCCCGACGGCGAGCCCTGCCTCGAGGCCCGCACGCCGGTGGACCTGGAGCGCGGCGTCGGGCTGCCCGGCGGGCACATCTTCCACCGCGACCTGTCGTGGCCCTGGGCCGAGGACGACGGTCTGGACGCGCCCGGGACGTGGGGCGTCGAGACGCTGCACCCGCGGGTGCTGCTCGCCGGTGCCGGCGCACGCCGGGGCGGGGGCGTCAGCGGCATCCCCGGACGGGCGGCGGCGATGGCCCTGCTGGAGGGGTGA	MTRMEPARTPATAARYDVVVVGGGHNGLTAAAYLARAGRSVLLLERLDHVGGASVSAPVFDGVDARLSRYSYLVSLMPRQVVDELGLSLRLARRRYSSYTPVGDRGLLVDTGSDDATRAAFEAVGAGRDHARWQGLYAGLERLAGRIFPTVTEPLLSAAEARARAGDDALWHAVVEQPLGEMLRERFDADLVRGVVATDALIGTFADLDETSLVQNRCFLYHVIGGGTGDWDVPVGGMGAVSGALRDAALGAGATLVTGADVTAIDPGPPTGDAEVTWTDDDGVARGVRAGAVVCGAAPAVLDALLDAGGATPSGRATATAPEGAQLKVNMLLRRLPRLREDVDPVAAFSGTFHVHESFDELQTAHAQAAAGRIPDTPPCEIYCHSLTDDSILGPDLRAAGAQTLTLFGLHMPARLFRDGADGAHDAARDAALAATLRSLDSVLAEPVEDVLWRGPDGEPCLEARTPVDLERGVGLPGGHIFHRDLSWPWAEDDGLDAPGTWGVETLHPRVLLAGAGARRGGGVSGIPGRAAAMALLEG				NA	NA	NA	NA	NA
AK001_00213	945	ghrA_1		Glyoxylate/hydroxypyruvate reductase A	GTGAAGATCCTCGTGCCGAGCAACGTGCCCTTCGACCTGACCCTCGACGTCGAGGGGGTCGACGTCGCGCCGTACGTCATGCGCGACCCGGTCCCCGACGAGCACCTCGACGCCGAGGCGATCGTCACCTGGGCCAGCCCGCAACGGGTCATGGACGACGCCGCGCGCCGGCTGACGAACCTGCGCTGGGTGCAGACGCTCAACGCCGGGCCCGACCAGGCGCTCGCCACCGGGTTCGCCCCCGAGGTGGTCGTCGCCTCGGGGCGCAGCCTGCACGACGCGACCGTCGCCGAGCACACCCTGGCGCTGCTCCTGGCCTCGGTGCGCCGGATCGACCGCACCCTGGACGCCCAGCGCCGCCACGAGTGGGACCGGGACCTGGGCCGCGAGCAGGCACGGGACGAGCAGGCGTTCACGCTGCGCGGCGCGCACGTGGTGATCTGGGGGTTCGGCTCCATCGCCGCCCGCCTCGCCCCGCTGCTGGAGGCGCTCGGGGCGCGCGTGTCCGGGGTGGCGTCGTCGGACGGGCAGCGGTACGGCTACCCCGTGGTCGGCCAGGACCGGCTGGCCGAGGTGCTGCCGACGACGGACGTGCTCGTCTCGCTGCTGCCCGCCACCGCGGCCACCCGCCACGCGCTCGACGCCGACGTCCTGGCGCTCCTGCCCGCCCGCGCCCGGTTCGTCAACGCCGGGCGCGGCGCCACGGTCGACGAGACCGCGCTGGTCGCCGCGCTGCGGTCGGGGTCGATCGCCGGGGCCGCCCTGGACGTGACCGAGACCGAGCCGCTGCCGGCCGACTCGGAGCTGTGGGACGCCCCGGGACTGATCCTCACGCCGCACGTCGCCGGCGGACGGCCGCAGGGCGCGGCGGCGTTCGTGACCGCCCAGGTGCGGCGCTGGCGCGAGGGCGGGGCGGACGCGCTGGAGAACGTCGTCGCGCGCTGA	MKILVPSNVPFDLTLDVEGVDVAPYVMRDPVPDEHLDAEAIVTWASPQRVMDDAARRLTNLRWVQTLNAGPDQALATGFAPEVVVASGRSLHDATVAEHTLALLLASVRRIDRTLDAQRRHEWDRDLGREQARDEQAFTLRGAHVVIWGFGSIAARLAPLLEALGARVSGVASSDGQRYGYPVVGQDRLAEVLPTTDVLVSLLPATAATRHALDADVLALLPARARFVNAGRGATVDETALVAALRSGSIAGAALDVTETEPLPADSELWDAPGLILTPHVAGGRPQGAAAFVTAQVRRWREGGADALENVVAR				NA	NA	NA	NA	NA
AK001_00214	306			hypothetical protein	GTGCTCGACGGCCAGATGATCGGCTCGCTCGTCCTCGTCGCCGGGCCGACCGCGGCGTCGTTCCTCACGACCCGCTACTGGGAGGCCCGCGACCTCGGCGACCCGCGTCGGCACGCCTGGTTCGCGCTCTACCTCGCCGTCGTGCTGACGCTGCTCGTGGCGGTGCTGGCGACGTCGTCGGTGGAGGACCGGCTGCGGTCGGTCGGGATCTTCTTCGCCGTGACGATCGGCGCGACGTTCCTGCAGGAGCGCCGCGCGCGGCGGCAGCGGCGCGTGCCCGCCCCGTCGCGGACGACGGAGTCCTGA	MLDGQMIGSLVLVAGPTAASFLTTRYWEARDLGDPRRHAWFALYLAVVLTLLVAVLATSSVEDRLRSVGIFFAVTIGATFLQERRARRQRRVPAPSRTTES				NA	NA	NA	NA	NA
AK001_00215	567			hypothetical protein	ATGACCGTGACGACCGTGCCGACGAGCCGCGGGCCCCTGCCGGTGTACCTGGCGGTCCCCGACGGCGAGGGTCCCTGGCCGGGGGTGGTGGTGATCCACGACGCGCTGGGCCGGACGACCGACGTGCGCCGGCAGTGCGAGTGGCTGGCCGGGCACGGGTTCGCCGTCCTCCTCGCCGGCACCGGCCGCTACCAGGCGGCGAGCGTCAACTACGGCGGCGTGCCCGAGGACGCGGACGAGCTGCTCGCCGGGTCCTGCCCGGTCGTGGGCAGCTACGGCGCGCGCGACCCGAGCCTGCGCGACGACCCCGCCCGTCTCGAGCACGCTCTGCAGGCCGCCGGCGTCCCGCACGAGGTCACCGTCTACGACGAGGCCGGGCACTCGTTCCTCAACGACCACCCGCGCGAGGAGGTGCCTGTCTGGGCGGTCGTCGCGGGGCGGTTCGTCGCCACGGAGTACCGGCCCGAGGCCGCCGCCGAGGCCCGGGAGCGGATCGTGGCGTTCTTCGGCGAGCACCTCGCCGCCCCGGGGACGGCGAGGTCCTCCGGCGACGACGGCATGGCCTAG	MTVTTVPTSRGPLPVYLAVPDGEGPWPGVVVIHDALGRTTDVRRQCEWLAGHGFAVLLAGTGRYQAASVNYGGVPEDADELLAGSCPVVGSYGARDPSLRDDPARLEHALQAAGVPHEVTVYDEAGHSFLNDHPREEVPVWAVVAGRFVATEYRPEAAAEARERIVAFFGEHLAAPGTARSSGDDGMA	PGPT0005685_3483	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005685-catA-K01061	NA	NA
AK001_00216	288			hypothetical protein	GTGGGCGTCTGGCTGCGGGACGTGGCGCCGTCGACCGAGCTGCGCCGCTGGTACGCCCACGACCCCGACCGGACGGCGGAGTTCGGCGCGCGGTATCGGGCCGAGCTGGAGACGCCCGGGCCGGGGGCCGACGCCCTCGCGGAGCTGCGTGACCTGGCGCGGGAGGGGACGGTCACGCTGGTGACCTCGACCCGCGAGCTCGACGGCAGCCACCTGCCGGTGCTGGCCGGGCTGCTGCGGGAACCGTCCGGCGAGGAGGGACCGGCTGCCGAGGAGGACCCGTCATGA	MGVWLRDVAPSTELRRWYAHDPDRTAEFGARYRAELETPGPGADALAELRDLAREGTVTLVTSTRELDGSHLPVLAGLLREPSGEEGPAAEEDPS	PGPT0008170_142	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934	NA	NA
AK001_00217	96			hypothetical protein	ATGACCGTGCACCTGGCGCGCGTGTACAGCCCGCCCGGGCCCGACGACGGTCGTCGGGTGCTGGCCGACCGGCTCTGGCCGCGCGGGGTCCGCTAG	MTVHLARVYSPPGPDDGRRVLADRLWPRGVR	PGPT0008170_142	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934	NA	NA
AK001_00218	933	fpg1	COG0266	Formamidopyrimidine-DNA glycosylase 1	GTGCCTGAGCTCCCCGAGGTCGAGACCGTCCGTGACGGCCTCGACCGGCTGGTGACCGGCGCCGTCGTGCGGGACGTCGAGGTCTTCCGCGACTACTCGGTGCGACGCCACGACGGTGGCCCGGCGGGGTTCGCCGACCAGCTCCGCGGTCGCCGGCTGGCCGGCGCCGCCCGCCGCGGCAAGTACCTGTGGCTGCCCCTGGCCGACGCCGCACCCGCCGACCCCGCGGCCGCGCTGCTGGCCCACCTGGGCATGTCCGGCCAGCTGCTCGTGCGCGACCCGGCGGTCGCGGGGGAGTGGGCGCACCCCCACCTGCGGGTCCGGCTCCACCTGCTCGACGCCCCCTCCGGCGCCCACTACCTGGACTTCGTCGACCAGCGCACCTTCGGGCACCTGTCCGTGGCCGACCTCGTGCCGACCCCGGACGGCGCCCCGGGCGGGTTCGGCAGCCCGCTGGCCGCCGTGCCGGAACCCGTGGCGCACATCGGGCGCGACCTGCTCGACCCCGCGCTCGACCGCGACGTCCTGGTCGAGCGCGTGCGCCGTCGGCGGACCGGGATCAAGCGCGCGCTGCTCGACCAGACCGTCACCTCCGGGGTGGGCAACATCTACGCCGACGAGGCCCTGTGGCGGGCCCGGGTGCACTTCGCCCGCGCCACGGACATGATGACGCGACCCGTGGTGCACCGGGTGCTCGACGCCGCCACCGAGGTCATGACCGAGGCGCTGGTCCAGGGCGGCACGAGCTTCGACGCCCTCTACGTCAACGTCAACGGCGAGTCCGGGTACTTCTCCCGGTCGCTGGCCGTCTACGGCCGGCTCGGCAAGGCCTGCCCCCGCTGCGCGACGCCGGTGCGCCGCGACGAGTTCATGAACCGCTCGTCGTTCACGTGCCCGCGCTGCCAGCCGCGTCCGCGGAACGGTCGCTGGTAG	MPELPEVETVRDGLDRLVTGAVVRDVEVFRDYSVRRHDGGPAGFADQLRGRRLAGAARRGKYLWLPLADAAPADPAAALLAHLGMSGQLLVRDPAVAGEWAHPHLRVRLHLLDAPSGAHYLDFVDQRTFGHLSVADLVPTPDGAPGGFGSPLAAVPEPVAHIGRDLLDPALDRDVLVERVRRRRTGIKRALLDQTVTSGVGNIYADEALWRARVHFARATDMMTRPVVHRVLDAATEVMTEALVQGGTSFDALYVNVNGESGYFSRSLAVYGRLGKACPRCATPVRRDEFMNRSSFTCPRCQPRPRNGRW				NA	NA	NA	NA	NA
AK001_00219	756	rnc	COG0571	Ribonuclease 3	ATGCACCCGCGCGGCAACGGATCACGTCCGGAGCCGACCGCACTTCTCGAGAAGCTCGGGGTCCACCTGGACCCCGAGCTTCTCGTGCTTGCCCTGACCCACCGGTCGTTCGCGCACGAGGCCGGCGGCATCCCCACCAACGAGCGCCTGGAGTTCCTCGGGGACACCGTGCTCGGCCTGGTGGTCACCGAGGCGCTGTACCGGCGTCACCCGGACAAGCCCGAGGGCGAGCTCGCGAAGATGCGGGCGGCGACGGTCTCGCAGCGGTCGCTCGCTGCGGTGGCGCGCCGGCTCGAGCTCGGCAGCTACGTCCTGCTCGGCAAGGGCGAGAAGCGCACCCGCGGGTTCGACAAGGACTCGATCCTGTCGGACACGGTCGAGGCGCTGCTGGGCGCGACCTACCTCTCGCACGGCCTCGAGACGGCCCGCGACCTGGTGCACCGGCTCGTGGACGACACCATGGAGGCCGCCGCCGACCTGGGGGCGGGCCTGGACTGGAAGACGTCCCTGCAGGAGGCCGCGGCCGAGCGCGGGTTCGACGCCCCCGCCTACGAGGTCACCGGCGAGGGCCCCGAGCACGCGCGCCGCTTCTCGGCGCACGTCACGGCCGGGCCGGTCGTCGGGATCGGCGAGGGCACCGCGAAGAAGCATGCCGAGCAGGCCGCCGCGGAGCAGGCCTACCGCGCCGTCGTCGCGCTGCCCGTGCCCGGCACCGCGGGCACCACCGGCGGCGCGGAGCAGCCCGCCGGTGCCTGA	MHPRGNGSRPEPTALLEKLGVHLDPELLVLALTHRSFAHEAGGIPTNERLEFLGDTVLGLVVTEALYRRHPDKPEGELAKMRAATVSQRSLAAVARRLELGSYVLLGKGEKRTRGFDKDSILSDTVEALLGATYLSHGLETARDLVHRLVDDTMEAAADLGAGLDWKTSLQEAAAERGFDAPAYEVTGEGPEHARRFSAHVTAGPVVGIGEGTAKKHAEQAAAEQAYRAVVALPVPGTAGTTGGAEQPAGA				NA	NA	NA	NA	NA
AK001_00220	195	rpmF_1	COG0333	50S ribosomal protein L32	GTGGCTGTTCCCAAGCGCAAGATGTCGCGCAGCAACACCCGCGCGCGCCGCTCGCAGTGGAAGACCACCGCAGCGCCGCTCGCGACGTGCCCGAAGTGCAAGGGCGACAAGCTGTCCCACACCGCGTGCCCCACCTGCGGTGCCTACAAGGACCGCCAGTACGCCGAGGCGCTGCGCACCGAGCACGCGGGCTGA	MAVPKRKMSRSNTRARRSQWKTTAAPLATCPKCKGDKLSHTACPTCGAYKDRQYAEALRTEHAG				NA	NA	NA	NA	NA
AK001_00221	552		COG1399	putative protein	GTGCTCGACACGCACGAGCTCTCGCGGCGTCCCGGGACCATGCGGGAGGTCGCGACCGTCGTCGCCGCGCCCGCAGACCTGGGCACGGCGGTCATCGGTGTGCCCGAGGGCGCCGACCTGACGCTCGGGCTGCGCCTCGAGGCCGTCATGGAGGGCGTGCTGGTCTCCGGCGTCGTGCGCGGTACCGCGGTCGGGGAGTGCGTGCGGTGCCTGGACGAGGTCTCCGAGCAGGTGACCGTGCGCGTCCAGGAGCTGTTCGTCTACCCCGAGCGCGCCGAGGCGGCCGAGGACGCCGGTGACGAGGAGGCCGAGGACGAGGCCCTGCTGACCGACGACCTGGCGGACATCGAGCCCACGGTTCGGGATTCGCTGGTCACTGCATTACCATTTCAACCGCTGTGCCGGCCGGACTGCCCCGGTCTGTGCTCCGAGTGCGGAGCACGACTGGAGGACGATCCCGAGCACCATCACGACATCGTCGACCCACGATGGGCGGCGCTGCAGACCATGCTCGAGGAGTCGAGCGTGTCCGACGAGACGAAAGAGAGCTGA	MLDTHELSRRPGTMREVATVVAAPADLGTAVIGVPEGADLTLGLRLEAVMEGVLVSGVVRGTAVGECVRCLDEVSEQVTVRVQELFVYPERAEAAEDAGDEEAEDEALLTDDLADIEPTVRDSLVTALPFQPLCRPDCPGLCSECGARLEDDPEHHHDIVDPRWAALQTMLEESSVSDETKES				NA	NA	NA	NA	NA
AK001_00222	564			hypothetical protein	ATGACCGACACCACCCAGAACCCCACCGCCGGGCTGCTCGAGATCCTCGACGACCTGGCCGCGCTCGTCGAGAACGCGCGCACCTCGCCGCTGTCGACGAACGTCAAGGTCGACCGCGAGCAGGCGCTCGGGCTCGTGGCCGAGCTGCGCGAGAACCTGCCCACCCAGGTCGCGCGCGCGGACGACGTCCTCGCCGACGCCGAGCGCACACTGGCCGACGCGCACCGCCGGGCCGAGGAGATCGTCGCCACGGCGCGGGCGCGGGCGATCGAGCTCGTGCAGGACGAGCAGGTCGTCGTGCAGGCGGAGTCCCGCGCGGCGGACATCGTCGCCGAGGCGGAGCGCCGGGCTGCCGGGCTGCGCGCCGACGCCGACGAGTACTGCGACGGTCGGCTCGCCGACTTCGAGGCGGACCTGGGCCGGCTGACCTCCCAGGTGCAGGCCGGGCGGGCCAGGCTCGCCGAACGCCTGGAGGCGTCCTCGGGAGCGCCCCGGGTGCGGTGGGACGCCGTGCCGGACCCCGCGTGGCCGGCCGGCGACGAGGACGACCGCCGCAGCGCCTGA	MTDTTQNPTAGLLEILDDLAALVENARTSPLSTNVKVDREQALGLVAELRENLPTQVARADDVLADAERTLADAHRRAEEIVATARARAIELVQDEQVVVQAESRAADIVAEAERRAAGLRADADEYCDGRLADFEADLGRLTSQVQAGRARLAERLEASSGAPRVRWDAVPDPAWPAGDEDDRRSA				NA	NA	NA	NA	NA
AK001_00223	519	coaD	COG0669	Phosphopantetheine adenylyltransferase	GTGACCGGCCGTCCTACCGTGGGCAGCGTGAGCATCGCCGTCTGTCCCGGGTCCTTCGACCCGATCACGCTCGGGCACCTCGACATCGTGCGCCGGGCGAACCGCCTGTTCGACGTCGTCGTGGTGGGCGTGGCCCGCAACGCCGCCAAGAACGCCCTGCTCACCGCCGACGAGCGGGTGGAGGTGGCACGCGCCGCCGTCGCCGCCGACCCGGACACCGCCGACGTCCGGGTCGACGTGGTGCCCGGCCTGCTGGTCGACTTCTGCCGCGAGGTCGGCGCCCTCGCGGTGGTCAAGGGGCTGCGCGGCGGCGCCGACTTCGACGGCGAGCATCCGATGGCCCTGATGAACCGCCACCTGAGCGGTGTGGAGACCGTCTTCCTGCCGGCCGAGCAGCAGCACGCCCACGTGGCGTCGTCGCTGGTCAAGGACATCGCCCGGCACGGCGGCCCGATCGACGACCTCGTGCCGTCCGCGGCGGCCGAGGCGGTGCGCTCCGCCGTGGCGCACCGTGCGTGA	MTGRPTVGSVSIAVCPGSFDPITLGHLDIVRRANRLFDVVVVGVARNAAKNALLTADERVEVARAAVAADPDTADVRVDVVPGLLVDFCREVGALAVVKGLRGGADFDGEHPMALMNRHLSGVETVFLPAEQQHAHVASSLVKDIARHGGPIDDLVPSAAAEAVRSAVAHRA	PGPT0008825_2215	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008825-coaD|kdtB-K00954	NA	NA
AK001_00224	600	rsmD	COG0742	Ribosomal RNA small subunit methyltransferase D	ATGACCAGGATCGTCGCCGGAACCGTCGGCGGGCGCTCGCTGACCGTGCCGCCGTCGGGGACCCGCCCCACCAGCGAACGCGTCCGGGAGGCGATGTTCTCCCGGCTCGAGCACCTCGGCGTCGTCGACGGTGCCCGCGTGCTGGACCTGTTCGCCGGGTCGGGTGCGCTCGGCCTCGAGGCCGCCAGCCGGGGCGCGGCCGAGGTCGTGCTCGTCGACGCGGCACGGCAGGCCGCCGACGTCGCCCGCCGCAACGCCGCCGACCTCGGGCTCGGCCGCCGGGTCCGGGTGCTCGCCGAGCCCGCCGAGCGGGCCGCCGCACGCCTGGCCGCCGACGGCGCACGGTCCGGCGGCTTCGACCTCGTGCTCGTCGACCCGCCGTACGACCTCGACCCCGCGGTCCTGAACCGGGTGCTGGCCGACCTCGCCGCTCCCGGCGTGCTGGCGCCGGACGCCGTCGTCGTCCTCGAGCAGGCCCGCCGCGGCGCTCCGTTCACCTGGCCGGACGCGCTCACCGAGCTGTCGGCCAAGCGGTACGGCGACACGGTCGTCCACTACGCGGAACCGCGCCAGGCCGAGGAAGATCCCCGCGAATCGTGA	MTRIVAGTVGGRSLTVPPSGTRPTSERVREAMFSRLEHLGVVDGARVLDLFAGSGALGLEAASRGAAEVVLVDAARQAADVARRNAADLGLGRRVRVLAEPAERAAARLAADGARSGGFDLVLVDPPYDLDPAVLNRVLADLAAPGVLAPDAVVVLEQARRGAPFTWPDALTELSAKRYGDTVVHYAEPRQAEEDPRES				NA	NA	NA	NA	NA
AK001_00225	2271	recG		ATP-dependent DNA helicase RecG	ATGAGCCCGCGGCTGGCCGAGCCGCTGACCACCACGCTGGGCAAGCGCGCGGCCGGCCCGCTGGCGAAGATGGGGCTGGTCACCATCGACGACCTGCTGCGCCACTACCCGCGCCGGTACGGCGACCCGGGCACGCTGACCGACATGGACCGCCTGCAGCTCGGGGAGCACGTGACGGTCATGGCGCGGGTCGCCAGCGCCACGGTGCGGCCGATGCGCAGCCGCGGCGGGGCCCTGCTGCAGGCGCGGGTGACCGACGGCCGCCACGAGCTGGCCCTGACCTTCTTCGCCAAGCGTCCCGGGGCGCTGCGACCGCACGAGGACAAGCTGCGGCCCGGCCGCTCGGGTCTGTTCACCGGGGTGGTCTCCGAGTACCGCGGCACCCGCCAGCTCACGCACCCGGACTACGTCCTGGTCGGGGTCGACGCCGACGACGACGAGGCCGCCATGATGGAGGCGTCGCGGCCGATCCCGATCTACCCGGCCACGGCCTCGGTGCCGACCTGGCGGATCCAGAAGGCCGTGCGCGCGGTGCTGGACCCGCTCACCGAGGACGAGGTCCCGGACCCGGTGCCCGACGAGGTCCGGGCGCGGCTCGGGCTGCCGACCCGGCTGGACGCCCTGCGCGCCGTGCACGTGCCGGACTCGGCCCAGCACTGGCAGAGTGGGCGCCGCCGGCTCCGCTTCGAGGAGGCGTTCGTGCTGCAGTCGGCGCTCGCCCAGCGCCGCGCCGCGGTCGCGGCCCAGGAGGCCACCGCGCGGCCGCCGCGCGCCGAGGTCGAGGGCGGCCTGCTCGCCGACTTCGACGCCGCGCTGCCCTTCACCCTCACCGACGGCCAGCGCGCGGTCGGGGCCGAGATCGCCGACGAGCTCGCGCGGCCCCGCCCGATGCAGCGGCTGCTGCAGGGCGAGGTCGGCTCGGGCAAGACGGTGGTCGCCCTGCGCGCCATGCTGCAGGTCATCGACGCCGGGGGACAGGCGGCGCTGCTCGCCCCGACCGAGGTGCTCGCCGCCCAGCACGCCCGCACGCTGCGCGCGATGCTGGGCCCGCTGGCCGAGGGTGGGTTGCTCGGCGGCGCGGCGCACGGCACCCGCGTCGCCCTGCTCACCGGCTCGCTCAACGCGGCGGCCCGCAAGGAGGCGCTGCTGGACGCCGCGAGCGGGGAGGCCGGGATCGTCGTCGGCACGCACGCGCTGCTGGGCGACCAGGTGCAGTTCGCCGACCTGGGTCTCGTCGTCGTCGACGAGCAGCACCGGTTCGGCGTCGAGCAGCGCGACGCCCTGCGCGCCAAGGCACGCGTCGCCCCGCACCTGCTGGTCATGACCGCGACGCCGATCCCGCGCACCGTGGCGATGACGGTGTTCGGCGACCTGACGACCTCCACGCTCACCGAGATCCCCGCGGGCCGCTCCGGCATCACCTCCCACGTCGTGCCGGCGGAGAACCCCCGCTGGATGCAGCGCGTGTGGGAGAAGGTCCGCGAGGAGGTCGACGCCGGCCGGCGCGCCTACGTCGTGTGCCCGCGGATCCATCCCGACGACGACGGCGCCGCGGGCCGGGGAGGGGACACCGGCGACTTCGACGAGGTCCCGGAGTTCCTCGACCTCTCCGACGGTGCTGCCGGCGGTACCGGCGAGGCCGCCGGCGACCGCGCCCCGCTGCGGGCCGTGCTCGAGGTCGCCGAGGCGCTGCGTGCCGAGCCCCGGCTCGACGGCGTCGAGGTCGGCGTGCTGCACGGCCAGATGGCCCCCGCGGACAAGGACGCCGCGATGGCGCGCTTCGCCGCGGGGGACGCGCCCGTCCTGGTGTCCACCACCGTCGTCGAGGTCGGCGTCGACGTGCCCGAGGCCACGGTGATGGTGGTGTTCGACGCGGACCGCTTCGGCATCTCCCAGCTGCACCAGCTGCGCGGGCGCGTCGGGCGCGGCGCCGATGCCGGTCTGTGCCTGCTCGTGTCGACCGCCCGGCCGGGTACCCCGGCGGCGGCGCGGGTCGAGGCGCTGGCCGCCACGACCGACGGCTTCGAGCTCGCCACCCTCGACCTGGAGCTGCGGTCCGAGGGGGACGTGCTGGGCGCCGCGCAGTCGGGCCGGGCGAGCTCGCTGCGCCTGCTGCGGGTCGTGCAGGACGCCGACCTCATCGCCTCGGCCCGCACCGAGTCGACCGGTGTCGTCGAGGCCGACCCGGACCTCGGGCGGCATCCCGCGCTGGCCGCCGCGATCGCGGCCCAGCTCGACGCCGAGCAGGAGGAGTTCCTCGAGCGTGCCTGA	MSPRLAEPLTTTLGKRAAGPLAKMGLVTIDDLLRHYPRRYGDPGTLTDMDRLQLGEHVTVMARVASATVRPMRSRGGALLQARVTDGRHELALTFFAKRPGALRPHEDKLRPGRSGLFTGVVSEYRGTRQLTHPDYVLVGVDADDDEAAMMEASRPIPIYPATASVPTWRIQKAVRAVLDPLTEDEVPDPVPDEVRARLGLPTRLDALRAVHVPDSAQHWQSGRRRLRFEEAFVLQSALAQRRAAVAAQEATARPPRAEVEGGLLADFDAALPFTLTDGQRAVGAEIADELARPRPMQRLLQGEVGSGKTVVALRAMLQVIDAGGQAALLAPTEVLAAQHARTLRAMLGPLAEGGLLGGAAHGTRVALLTGSLNAAARKEALLDAASGEAGIVVGTHALLGDQVQFADLGLVVVDEQHRFGVEQRDALRAKARVAPHLLVMTATPIPRTVAMTVFGDLTTSTLTEIPAGRSGITSHVVPAENPRWMQRVWEKVREEVDAGRRAYVVCPRIHPDDDGAAGRGGDTGDFDEVPEFLDLSDGAAGGTGEAAGDRAPLRAVLEVAEALRAEPRLDGVEVGVLHGQMAPADKDAAMARFAAGDAPVLVSTTVVEVGVDVPEATVMVVFDADRFGISQLHQLRGRVGRGADAGLCLLVSTARPGTPAAARVEALAATTDGFELATLDLELRSEGDVLGAAQSGRASSLRLLRVVQDADLIASARTESTGVVEADPDLGRHPALAAAIAAQLDAEQEEFLERA				NA	NA	NA	NA	NA
AK001_00226	1731			hypothetical protein	GTGGGCACCGTGGATCAGCCCGAGCTCCTGGACGCCGCCGTGGTGCGCACCTGGGCGCACACCGTCGTCGAGGCCCTCGACGCGGCGCGCTCGGAGCTCGACGGGGTCAACGTCTTCCCGGTCGCCGACGGTGACACCGGCACCAACATGTACCTCACGCTGCGCGAGGCGGCGGGCGCCGTCCACGACGCGAACGCGGACGACGGCGGCGCGAAGCTCCTGCGGGTCGCCGCCCGGGCCGCCCTGCTCGGCGCGCGCGGCAACTCGGGGATCATCCTCAGCGAGTGGCTGCGCGGGTTCGCCGTCGCCGCGAGCCGGCAGGACACGCTCGGTCTCGCGCTCGACGTGGCCGCGCGCTCCGCACGGCGCGCCGTCGCCCATCCCGTGCCCGGCACCATCCTCACGGCCGCGGACGCCGCCGCGGCCGCCGCCCGGCACGCCGAGGCCGGCGGGATGGTCGGCCCCCTCGGCGCGCCGCGACGGCTCAGCGTCATCGACGCCGCACGGCGCGGGGCGCGCGAGGCGGCCCTGCGCAGCGTCGGGTCGCTGGCACCGCTGCGCGCCGCCGGGGTCCTCGACGCGGGCGCCTGCGGCCTGGTCCTGGTGCTGGCCGCGCTGGCGGCCGCCCAGCGGGCCGCCGGGGAGCGCGGCGCGTCCCCGGTGCCCGGCAGCACGGCTCCCGTCCGGCTCGACCTGGACCTCCGGGGCCACGACCCGGACGACCACGACGCCCCGGCGGTGCCCGAGGGGGCGACCGAGCCGGAGCCCGGGAGCCTCGACGAGGTCGAGCTCATGTTCGTGCTGCACCGCTCCGCCGACGCCGAGGGCTTCGTCCCCGGCGCCGTGGCGGACGCGCTGCGGGCCGACCTGGACCAGGTCGGCAACTCCGTGGTCGTGGTCGGTGGCGCCGCGGGCGAGGCGCACGCCGACGACGTCGACTCGCTGTGGCAGGCGCACGTGCACGCCCCCGACCTCGACGCGGCCCTCGCGGTCCCGCGGCGCTGGTCCCGGCGCGGAGCCATCTCGCACGTGCACGTCCGCCACCTCGCGGTGCCGCCCACGGACTGGGCGGTCGTGGTGACCACGTCGGCCCCGGCCCTGGCCTCCGAGCTGGCCACCGGCGGGGCGGCGGTGCTGCTCGACCTCGACACGGCCCCGACGACCGCGGACCTGGCGCAGGCGGCCCTGGCGGCCGGGACCCCGAACGTGCTGGTCCTGGCCCCGCCGGACGTGCTGGCCGACGTGGACGACGCCGTCGCCGAGCTCGTCGCCCGCGACGTCGCCCGCGGGGGACCCGGGGCACGGCCCCGGCTCGCCGCCGTGCCGGCGCCCGAGGACGTCCACCTCGTCAGCGCCGTGTCCGCCCTGGCCGGCGCCCTGGACGCCGTCGGTGCCGACCAGGGCTCCCTGGACGTCCCGGGCGTGGTGCGCTCGGCGCACCGGCGCCTGCGGGCCGACCGGGTGCCGTCGCAGAGCGCCGCGACCGCCGTGGCCCGGCTCGTCCACGACTGCGAGGACGACCCCGGCATCGTCGCCGTGCTGCCCGACGCCGACGTCGGCGCCTCCGCCCTGGAGGAGGTCGTCTCCCGCGCCGGCACCTGCGCCCCGGGTGCCGACGTCGTCGTGCTGGCCACCGGCCGGCCCGGCGACCGCATCGGGCTCGGCGTGGAGCCCGCCGAGGACGTCGTCGACCTCCCGCTGCTGACCGTGCGGGACGGAGAGGGCCGATGA	MGTVDQPELLDAAVVRTWAHTVVEALDAARSELDGVNVFPVADGDTGTNMYLTLREAAGAVHDANADDGGAKLLRVAARAALLGARGNSGIILSEWLRGFAVAASRQDTLGLALDVAARSARRAVAHPVPGTILTAADAAAAAARHAEAGGMVGPLGAPRRLSVIDAARRGAREAALRSVGSLAPLRAAGVLDAGACGLVLVLAALAAAQRAAGERGASPVPGSTAPVRLDLDLRGHDPDDHDAPAVPEGATEPEPGSLDEVELMFVLHRSADAEGFVPGAVADALRADLDQVGNSVVVVGGAAGEAHADDVDSLWQAHVHAPDLDAALAVPRRWSRRGAISHVHVRHLAVPPTDWAVVVTTSAPALASELATGGAAVLLDLDTAPTTADLAQAALAAGTPNVLVLAPPDVLADVDDAVAELVARDVARGGPGARPRLAAVPAPEDVHLVSAVSALAGALDAVGADQGSLDVPGVVRSAHRRLRADRVPSQSAATAVARLVHDCEDDPGIVAVLPDADVGASALEEVVSRAGTCAPGADVVVLATGRPGDRIGLGVEPAEDVVDLPLLTVRDGEGR				NA	NA	NA	NA	NA
AK001_00227	192	rpmB_1	COG0227	50S ribosomal protein L28	GTGGCTGCCAACTGCGACGTCTGCGGCAAGGGCCCGGGCTTCGGGCACAGCGTTTCGCACTCCCACATCCGGACCAAGCGCCGCTGGAACCCGAACATCCAGCGCGTGCGCGCCGTCGTCGCGGGCACCCCCAAGCGCGTGAACGTGTGCACCTCGTGCCTCAAGGCCGGCAAGGTGCAGCGCCAGGCCTGA	MAANCDVCGKGPGFGHSVSHSHIRTKRRWNPNIQRVRAVVAGTPKRVNVCTSCLKAGKVQRQA				NA	NA	NA	NA	NA
AK001_00228	528	mshD_1		Mycothiol acetyltransferase	ATGATGGTGGAGACCGACAACGACGTGGTGATCCGATCGGCGAGCACGTCCGACGCCGGTGCGATCGCTCGGGTGCACCTGACCTCCTGGCGCAGTGCCTACGCGCACGTCCTGCCGGCGGACTACCTCGAGTCGCTCGACGTCGGTGAGCGCACCGCCGAGTGGGAGAAGATCCTCCACCAGGGCCGCAGCAGCACGATCGTCGCCGAGGCCGACGGGCGCACCCTCGGCTTCGCCAGCTACGGACCGTCCCGCGACGAGGACGCCGAGGACGACTGCCTCGAGCTCTACGCCATCTACCTCGACCCCGAGGCCTGGGGACGCGGCGTCGCCCGCGACCTCATGCGCACGATGCTCGGCGACGTCGGGCCGCGCGCCCGGATCACGCTCTGGGTGCTCTCCGAGAACGAGCGGGCCCACCATTTCTACCGCCGCCACGGGTTCCAGCCCGACGGGATCGAGCGCATGGAGGACATCGCCGACGTCCCCGTCACCGAGCTGCGCTTCGTCCGCGAGCCCGAGCGCTGA	MMVETDNDVVIRSASTSDAGAIARVHLTSWRSAYAHVLPADYLESLDVGERTAEWEKILHQGRSSTIVAEADGRTLGFASYGPSRDEDAEDDCLELYAIYLDPEAWGRGVARDLMRTMLGDVGPRARITLWVLSENERAHHFYRRHGFQPDGIERMEDIADVPVTELRFVREPER				NA	NA	NA	NA	NA
AK001_00229	1035	thiL	COG0611	Thiamine-monophosphate kinase	GTGACCGACCCCACCCTGCGCGTGCGCGACCTCGACGAGACCGAGCTGCTGGCGCGGATCTTCCCGCTGCTGCCCATCGGTGAGGGCGTCGACGTCGGACCGGGCGACGACGCCGCCGTGGTGCGCGCCGACGACGGCCGCTTCGTCGTGACCACCGACGTGCTCGTCGAGGGGCGCCATTTCCGGCGCGCGTGGTCGAGCGGGTACGACGTCGGCTACCGGGCGGCGGTGCAGAACCTCGCCGACGTCGCGGCCATGGGCGCCCGTCCCACGTCGATGGTGGTCTCCCTGGTGATGCCCGCCGACCTGCCGGTGGCGTGGGTGACGGACTTCGCCCGGGGGCTGGCCGACGCGTCCGGGCCGGCGACCGTCGTCGGCGGCGACCTGTCGGGCGGCGACGCGGTGGTCGTGTCGGTGACCGTCCACGGCGACCTCGACGGTCGTGCCCCCGTGCTGCGGTCGGGGGCCCGGCCGGGTGACGTCGTCGCGCACGCGGGCACGCTGGGTGCCTCGGCGGCCGGCTTCGACCTGCTCTCCAGCGGGGCGGGGAGCCCTGCGGACGGCGCACCGGGCGTCTCGAACCCCCGCAGCCCCTACGTGACGGCGTTCCTGCGCCCCGAGACTCCGCTCGCGGCGGGACCCGCGGCGGCCCGCGCGGGAGCGACGGCGATGCTCGACGTCTCGGACGGGCTGCTGCGCGACGCCGGTCGGCTCGCCCGCGCCAGCGGCGTCGACGTCGACCTCGCCGAGGGGGTGCTGATGCGGGACGTGACCGCGCTGGTGCCGGCCGCCGTCGACGTGGCGGTCGCGACCGACGACGCCGACGGCGCCCACCGGGCGCGCACCTGGGTGCTGTCCGGAGGAGAGGACCACGGGCTGCTCGCGACGTTCCCGCCCGAGGTGGCCGAGAAGGGGTTGCCGGCGGGCTTCCGCCCGATCGGCGACGTCCGGGACGCCGGGGAGGCCGGGCCGCGGGTGCTGCTCGACGGCGAGCCGCCGCACGAGGCGACCGGCTGGGACCACTTCCGGCCCTGA	MTDPTLRVRDLDETELLARIFPLLPIGEGVDVGPGDDAAVVRADDGRFVVTTDVLVEGRHFRRAWSSGYDVGYRAAVQNLADVAAMGARPTSMVVSLVMPADLPVAWVTDFARGLADASGPATVVGGDLSGGDAVVVSVTVHGDLDGRAPVLRSGARPGDVVAHAGTLGASAAGFDLLSSGAGSPADGAPGVSNPRSPYVTAFLRPETPLAAGPAAARAGATAMLDVSDGLLRDAGRLARASGVDVDLAEGVLMRDVTALVPAAVDVAVATDDADGAHRARTWVLSGGEDHGLLATFPPEVAEKGLPAGFRPIGDVRDAGEAGPRVLLDGEPPHEATGWDHFRP	PGPT0009010_612	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946	NA	NA
AK001_00230	468			hypothetical protein	GTGCTGGTCCGTCGTCTCGCCGTGCTGCTTTCCCTGCCGTGCCTCGCGCTGCTCGCCGCCTGCACGCCGACCATCGGCGTGGAGGCTGCCCCGGACGCCGACGACCCCGACTGCGCGCCCGTCATGCTGGCCCTGCCGGACGTCGTCGCGGGCGACCTCGAGCGCGCGAAGGTCAACGCCCAGGCGACGGCGGCGTGGGGCGAGCCCGGCGCGGCGGTGACGCTGCGGTGCGGCGTCGAGCAGCCCGGCCCGTCGCCCGACTGCCAGCGGATCGAGACCGCGAACGGGTCGGTGGACTGGATCGTCGAGAGCAACGACACCGGCACGTGGCGGTTCACGACCTACGGACGCAGCCCGGCGATCGAGGTCACGGTGCCGCCGGCGGTCACCACGGACCACTCCACGTCGTTCATCGCGGACCTGACGGGAGCGATCGGTCAGGTCCCGCAGACGCGGCAGTGCACCTGA	MLVRRLAVLLSLPCLALLAACTPTIGVEAAPDADDPDCAPVMLALPDVVAGDLERAKVNAQATAAWGEPGAAVTLRCGVEQPGPSPDCQRIETANGSVDWIVESNDTGTWRFTTYGRSPAIEVTVPPAVTTDHSTSFIADLTGAIGQVPQTRQCT				NA	NA	NA	NA	NA
AK001_00231	1137	ddl	COG1181	D-alanine--D-alanine ligase	ATGCTCGACACCCAGTCCTCCGCCCCCGAGCGCAAGCCGCGCGTCGCCCTCCTGTTCGGGGGGCGTTCCGGCGAGCACGCGATCTCCGCCGCCACCGCCGCCGGGGTGCTCGGCGCCATCGACCGCGACGTCTACGACGTCGTCCCGATCGGCATCACCCGCGCCGGCCGCTGGGTGGTCGCCGAGGACGACGCCGAGCGCTGGCAGATCACCGCCGGCCGGCTCCCCGAGGTCACCTCCGACGAGGGCGCCGAGGTCGTGCTCTCGCTGACGGCGGGGGAGCGGACGCTGCGCACCCTGGAGCCCGGCCAGGTGCCGGACGTCCTGGGCCAGGTCGACGTCGTCTTCCCTCTGCTGCACGGCCCCTTCGGCGAGGACGGCACCGTCCAGGGTCTGCTCGAGCTGGCCGACGTGCGCTACGTCGGGGCCGGCGTGCTGGCCTCCGCCGTCGGTATGGACAAGCACTTCATGAAGCTGGTGCTCGCCGGCCACGACATCCCCGTGGGTCCGTTCGAGGTCGTCCGGCCGCGGGACTGGGAGGCCGACCCCGAGGCGTGCGTCGCGCGGGTCGAGGCTCTGGGCCTGCCGGTGTTCGTCAAGCCCGCCCGCGCCGGGTCCTCGCTCGGCATCACGCGCGTCGACGACCTGGCCGACCTGCCGGCCGCCGTCGAGGAGGCCCGCGAGCACGACCCCAAGGTGATCGTGGAGGCCGCGATCGACGGCCGCGAGATCGAGTGCGCCGTCCTCGGCGGTCGCGGGGGCGAGCGTCCCCGGGCGTCGCTGCCCGGCGAGATCGTCGTCGACGGCACGCACGCGTTCTACGACTTCGAGGCCAAGTACCTCGACGAGGCGCACGTGGAGCTGGCCTGCCCCGCCGACCTGCCCGAGCCGGTCGTCAAGGAGATCCGCGAGCTCGCGGTGCGCACCTTCGAGGCGGTGGAGGCCGAGGGGCTGTCCCGCGTCGACGTGTTCGTCACGCCCGACCACCAGGTGATCGTCAACGAGATCAACACGATGCCCGGGTTCACGCCGTTCTCGATGTACCCGCGCATGTGGGAGGCCACCGGGATGAGCTACCCCGAGCTCGTCGACGAGCTGATCCGGCTCGCCCTCGAGCGGCCCACCGGCCTGCGCTGA	MLDTQSSAPERKPRVALLFGGRSGEHAISAATAAGVLGAIDRDVYDVVPIGITRAGRWVVAEDDAERWQITAGRLPEVTSDEGAEVVLSLTAGERTLRTLEPGQVPDVLGQVDVVFPLLHGPFGEDGTVQGLLELADVRYVGAGVLASAVGMDKHFMKLVLAGHDIPVGPFEVVRPRDWEADPEACVARVEALGLPVFVKPARAGSSLGITRVDDLADLPAAVEEAREHDPKVIVEAAIDGREIECAVLGGRGGERPRASLPGEIVVDGTHAFYDFEAKYLDEAHVELACPADLPEPVVKEIRELAVRTFEAVEAEGLSRVDVFVTPDHQVIVNEINTMPGFTPFSMYPRMWEATGMSYPELVDELIRLALERPTGLR	PGPT0020050_594	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921	NA	NA
AK001_00232	1152	ydbM		Putative acyl-CoA dehydrogenase YdbM	ATGACGACGCTGCTCTCCGACGACCTGCTCGCCACGATCCGCGGCCGGGCCGCGATCCACGACCGCGAGAACTCGTTCTTCGCCGACGACCTGGCGGACCTGCGAGCGGCCGGCTACCTCGCGGCGCTCGTCCCGACGTCGATGGGCGGCGCCGGCCTGACGCTGCGCGAGATCTGCCACGAGCAGGCGGCGCTCGCCGGTGCCGCACCCGCCACGGCGCTGGCCGTGAACATGCACCACGTGTGGACCGGCGTCGCACGCTACCTGCACGAGCGCGGCGACGACTCGCTGGACTGGCTGCTCGCCGAGGCGGCCGCGGGCGAGGTCTTCGGGTTCGGGTACTCCGAGGCGGGCAACGACCTGGTGCTGCTCGGCTCGCGCACGGAGGCCCGGCCGGACGGCACGGGCGGCTACACCTTCCACGGCCGCAAGATCTTCACCTCCAACTCCCCCGGCTGGACCCGTCTGGGGGTGATGGGCCTGGACTCGACCACCGACCCCGAGGACCCGCGCATCGTCCACGCGTTCGTCGCGCGCGACGCCGGCGGGTTCCAGATCCTCGACGACTGGGACACGGTCGGGATGCGGGCCTCCCAGTCCTGCACCACCGTGCTCGACGGCGCCCCCGCGCCCGCCGACCGCGTCATGCGCCGGATCGCACCGGGCCCGAGCCTGGACCCGTACGTGCTGGGGATCTTCACCAGCTTCGAGATCCTGCTGGCATCGGTGTACGCGGGGATCGCGGACCGGGCGCTCGAGCTCGCGGTCGCCGCGGTGGGGCGTCGCACCTCGATGAAGACGGGCAAGGCGTACTCCCAGGACCCGGACATCCGGTGGCGCATCGCCACGGCGGCCCTCGCCCAGGACGGCATCTGGCCGCAGATCGACCAGATCGCGGGCGGCATCGACGCCCGGGAGGACCGCGGCGCCGGATGGTTCCGCGCGACGTCGGGCCTCAAGGTGCGCGCCACCGAGACCGCGCGGCAGGTGGTCGACGAGGCGATCCGCTGCTCGGGTGGCTCGAGCTACTTCAACCGCTCCGAGCTGGGACGCCTGTACCGGGACGTGCTGGCCGGCATCTTCCACCCCAGCGACGACGAGTCGGCCCACTCCCAGGTGGCGCAGTCCCTCCTCGGCCCGCTGGAGGACTGA	MTTLLSDDLLATIRGRAAIHDRENSFFADDLADLRAAGYLAALVPTSMGGAGLTLREICHEQAALAGAAPATALAVNMHHVWTGVARYLHERGDDSLDWLLAEAAAGEVFGFGYSEAGNDLVLLGSRTEARPDGTGGYTFHGRKIFTSNSPGWTRLGVMGLDSTTDPEDPRIVHAFVARDAGGFQILDDWDTVGMRASQSCTTVLDGAPAPADRVMRRIAPGPSLDPYVLGIFTSFEILLASVYAGIADRALELAVAAVGRRTSMKTGKAYSQDPDIRWRIATAALAQDGIWPQIDQIAGGIDAREDRGAGWFRATSGLKVRATETARQVVDEAIRCSGGSSYFNRSELGRLYRDVLAGIFHPSDDESAHSQVAQSLLGPLED				NA	NA	NA	NA	NA
AK001_00233	672			hypothetical protein	GTGTCGAACGGGTTGAACCGCGACCGCGTGCTGGAGGCCGCCGTGGCGCTCGCGGACGCCGAGGGGCTGGGCGCGGTGACCATGCGCGGCGTCGCGACGCGGCTCGGGGTCGAGGCGATGTCGCTCTACCACCACCTGCCCGGCAAGAAGGACGAGCTGCTCGACGGCCTCGTCGACGTCGTCGCCGCCGAGATCCACGCCGGCCTGGCCGCCCGCGACGACGGCGTCCGGGACGACTGGGTCGCCGACGTCCGGTCGCGGTGCCTCGTGGCCCGCGAGGTGGTGCTGCGCCACCCGTGGCTGCCCGCGCTGCTGGGATCGCGCCCCGCGATCCGTCCCGGGGTCTACACGCTCTACGACGGGGTGCTGGGCGCGATGGTCAGCGGCGGGTGCTCCTACCGGCTCGGGCACCGCGCCATGCACGCCCTGGGCAGCATGGTGCTGGGGTTCACCTCGGAGCTGTTCAGCCCCGAGGCGGGCGACGAGGACGCGACGCCCGAGGCGCTCGAGGCGATGGCGCAGACCGTGCCGCACATCACGGCCATGGTCGCCGCCGAGCTGCACGACCCGGCCGACCCGACGCTCGGCTGGTGCGACAGCCAGACCGAGTTCGAGTTCACCCTCGGGCTGCTGCTCGACGGGATCGAACGGTCCCGCCGCGCCGGCGTCTGA	MSNGLNRDRVLEAAVALADAEGLGAVTMRGVATRLGVEAMSLYHHLPGKKDELLDGLVDVVAAEIHAGLAARDDGVRDDWVADVRSRCLVAREVVLRHPWLPALLGSRPAIRPGVYTLYDGVLGAMVSGGCSYRLGHRAMHALGSMVLGFTSELFSPEAGDEDATPEALEAMAQTVPHITAMVAAELHDPADPTLGWCDSQTEFEFTLGLLLDGIERSRRAGV				NA	NA	NA	NA	NA
AK001_00234	720			hypothetical protein	ATGGACCAGCGCATCGCCCGCCCGGTGGCCCGTACCACCGGACTGCTCTATCTCGCACTCGGCCTCACCGGCATGGCCGGCTTCCTGCTCGTCCGCCCGCAGGTCTTCGACCCCGCCGACGCCGCGACCACCGCCGCCCTGCTCGTCGACCACGAGCTGCTGGCCCGCGCCGGCGTCGCCCTCGAGCTCGCGACCGTGGTCACCCAGGCGCTGGCCGCGCTGTGGTTCGTCCGGCTCTTCCGCCCGGTGGACCCCTTCGCCGCCTCCGCCGTCGGCGCGCTGGGCATGATGAACGCCGTGGCGATCCTCGGCAGCACGGCCGCCCTCGGCACGGCCCTCGACAGCGCGCTCGCCGGCGGCCAGTCCGCGCCGCAGCTCCTGTACGGGCTGTCGGAGAACCTCTGGGCCGCCGGGGCCGCGTTCTTCGGGCTGTGGCTGATCCCGATGGGACGGCTGGTGCTGCGCTCCGGCCTGCCGCGCGTGCTCGGCTGGTTCCTCGTCGTCGGTGGAGCCGGGTACCTGCTGCAGTCCTTCGTGACGTTCCTGGTCCCCGACGCCGGCCCGCTGGCCGAGCTGCTGGTCGTGCCGGCCACGGTCGGCGAGCTGTGGATGATCGGCCTGCTGCTCGTGATCGGATTCCGGCGCGACCGCACGGACGACACCGCCACCACCGAGCCGGCGCTGCACCCCGGAGACGGGGCGGTCGCACGCGGTCAGTAG	MDQRIARPVARTTGLLYLALGLTGMAGFLLVRPQVFDPADAATTAALLVDHELLARAGVALELATVVTQALAALWFVRLFRPVDPFAASAVGALGMMNAVAILGSTAALGTALDSALAGGQSAPQLLYGLSENLWAAGAAFFGLWLIPMGRLVLRSGLPRVLGWFLVVGGAGYLLQSFVTFLVPDAGPLAELLVVPATVGELWMIGLLLVIGFRRDRTDDTATTEPALHPGDGAVARGQ				NA	NA	NA	NA	NA
AK001_00235	1440	yagG	COG2211	Putative glycoside/cation symporter YagG	ATGAGTCTGCGCAAGGGCACCGTCGCCCGGTACGCCGTCGGATCCGTCGGCACCGGGGGCTTCGGCACCCTGCCCGGACTCGTGCTGGTCTACTACCTCACCGACACCCTCGGGGTGGCGGCGCTGGCCGCCGGGCTCATCGTGACGCTCGCCAAGGTGTGGGACGTCGTCGTCGACCCCGTCATCGGGGCCGCCAGCGACCGGGACCGCGCCGCGCACGGCACGCGCCGCCGGCTGATGATCGTCGGCGGCGTGCTGCTGCCGGTGTTCTTCCTGCTGACCTTCGCCGTCCCGCCGACGCTCGGGTCGCTCGCCGGCGCCGTCTGGGTGCTCGTCGCCTTCCTGTGCGCGGCGACGGCGTTCAGCCTGTTCCAGGTCCCCTACATCGCCCTGCCCGCCGAGCTCACCGGCAGCTACGACGAGCGCACCCGCCTGCTCACGGCCCGCGTCGTGGTGCTGACCGTGGCGATCCTCGCCTTCGGCGGCGGAGCGCCCGCGCTGCGCGGGCTGGTGCCGGACGAGCACGCCGGGTACCTGCTGATGGGCGCCGTGGCCGGGCTGGTGCTCGGCGCGTCCCTGCTGGTGGCGGCAGGCGTCGAGGGTCGGGCCCGACGGCGCGACGCCGACCCGGCCGCCGACGGCGGTCCGCAGGGCCCAGGCGCCGACGGCACCCCGCAGTCCACGGAGGTCGCGACCCCGGACACGCCGACCCCCGGCGTGCTGGCGCACTACCGCGCGGGCCTCGTCGTGCTGCGCACCAGCCCGCCGTTCCGCGCGCTGCTGTCCGCGTTCGTCCTGCAGGCGCTGGCCACCGGCACCATGCTCGCCGGCGCCCAGTACGTGGCCACGTGGGTGCTCGACGACGAGGGTGCCGTGACGTTCCTGTTCGCGGCGCTGGTCGGCCCGGCCGTCGTCTTCGCGCCGGTGTGGGGCCGGGCCGCGCGCCGGATCGGCAAGGAGCGGGCCTTCGCCGTCGCCTCGGGCGTCTTCCTCGGGGCGGCCGCCGCGCTCGTCGTCATGTACTGGTCCCCCGGCGTCTGGGTGTACGCCGTCGTCGCGGTCGCGGGCGCCGCGTACGCCGGGCTGCAGTCCCTGCCGATGGCGATGCTGCCCGACGTCGTCAGCCACGACGCCGTCACCCGGGGCCCGGGGCGCGCCGGCACGTTCTCCGGCCTGTGGACCGCCGGGGAGACCACGGGTTTCGGACTCGGCACGGCCGTGCTCGCCACGGTCCTGGCCACCACGGGCTACGTGGAGTCCCGTGCCGAGGCCGTCGTCGTCCAGCCCGACAGCGCGGTGCTCGGCATCGTGCTGGCCTTCACCCTGCTGCCGGCCGCCCTGGTCGCCGTCAGCCTCGTCCCCCTGCGCCGCTACCCGCTGCGCCGGACCGACATCGAGGCGGCACACACCGCCGCCCGGACCGAGGAGCACCGCGCATGA	MSLRKGTVARYAVGSVGTGGFGTLPGLVLVYYLTDTLGVAALAAGLIVTLAKVWDVVVDPVIGAASDRDRAAHGTRRRLMIVGGVLLPVFFLLTFAVPPTLGSLAGAVWVLVAFLCAATAFSLFQVPYIALPAELTGSYDERTRLLTARVVVLTVAILAFGGGAPALRGLVPDEHAGYLLMGAVAGLVLGASLLVAAGVEGRARRRDADPAADGGPQGPGADGTPQSTEVATPDTPTPGVLAHYRAGLVVLRTSPPFRALLSAFVLQALATGTMLAGAQYVATWVLDDEGAVTFLFAALVGPAVVFAPVWGRAARRIGKERAFAVASGVFLGAAAALVVMYWSPGVWVYAVVAVAGAAYAGLQSLPMAMLPDVVSHDAVTRGPGRAGTFSGLWTAGETTGFGLGTAVLATVLATTGYVESRAEAVVVQPDSAVLGIVLAFTLLPAALVAVSLVPLRRYPLRRTDIEAAHTAARTEEHRA	PGPT0014410_379	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-COLANIC_ACID_METABOLISM	CE-EPS-CAPSULAR_COLANIC_ACID_BIOSYNTHESIS,PGPT0014410-TC_GPH|yihO|xynP-K03292	NA	NA
AK001_00236	1527			hypothetical protein	ATGAAGTTCGCCACCAGCCCCGAGACCGTCCTGGAGCGCCTGACAGCCCTGCGCGCCCACGACGCGCCCACCCACGGCGGCCACGTGCTCAGCTACGTGTACGACTCCGGGGAGCCCGGGCTCGACCGGCTCGCCGGCGAGGCGATCCGCGCGATGCAGCCCGTCAACGGCCTCGACCCCACGACGTTCGGGTCCGTGGCCGCCCTGGAGCGGGACCTGGTGGGCTTCACGCGCGACCTGCTCGGCGGGGACGACGAGGTCGTCGGCACCGTCACCTCCGGCGGCACGGAGAGCTGCCTGCTCGCCGTCAAGACCGCCCGGGACGCCTGGCTCGCCGCCCACGGCCTGCGCCCGGGCGAGGCCCGGCCGCGGCTGGTGCTGCCGACGACGGCGCACGCCGCCTTCCGCAAGGCCGCGCACTACTTCGGCCTCGAGACCGACCTCGTGCCCGTCACGGCCACCGGCGAGGTCACCGCGGCGGCCGTGGCCGAGCGCGTGAGCGGGCCGGCCGCGCACGACGTCGCGCTCGTCGTCGTCTCCGCGCCCTCCTACCCGCACGCCGCGCTCGACCCCGTCGCCGACGTCGCCGCCGTCGCGGCCGACGCCGGCGTCCCCGTGCACGTGGACGCCTGCATCGGCGGCATGGCGCTGCCGTTCTGGCCCGACCTGCCCGACTGGGACCTGCGGGTGCCCGGGGTGACGAGCCTGAGCGTCGACCTGCACAAGTACGGCTACGCGCCCAAGGGCGTCTCGGTGCTGCTGCAGCGCGGTCGTGACCGCCAGCGCGGCCAGTACTTCGCCACCACCCGCTGGCCCGGGTACCCCGTAGTCAACCCGACGCTGCTCGGCTCCCGCTCCGGCGGGCCGCTGGCCGCCGCCTGGGCGATCGTCCAGGCGCTGGGCCACGAGGGGTTCGCCGAGCTCGCCGGACGGTCGCGCCGCGCCACCGACGCCCTGCGTGACGCCGTCGGGGCCGTCGAGGGGCTGCGCGTCGTCGGCGACCCCGTCGGCCCGCTGCTCGCCGTCGCCACCGACGACGCCGTCCCCGCCGAGCGTCGCGTCGACCCGCACCGCTGGGCGGACGCGGCCACGGCGCACGGCTGGGTGCTGCAGGCGCAGCCCGCGTACAGCCAGGAGGACGGCACCCGGCTGCCGCACACCACGCACCTGACCGTCACGCCCGTGACCGAGTCCGTCCTCGGCGAGCTCGTGCCCGCCCTGGAGGCCGCCGCCGACGCCGTGCGCGGCGAGCCCCGGCCGGACGCGACCGCGCTGCTGGCCGCCCTGCCGGCGGCCGGAGCGCCCGCCGACGGCGTCCCGGGGGCGGACCCCGGCACCCTCGACGCGGAGACGGCCGCCGGGCTCCTGGGGGCGCTGGGGCTGGACGCCTCGCGGCTGGGCGACGACGGCCCGGGCGTGGGACCGATGGCCCCGCTGCTCGCCGCCGTGGAGGCCCTGCCGGCGCCGATGGCCGAGCGGCTGCTCACCGAGCTGCTCGCGCGCCTGGTCGAGCCGCGCCGCCCGTAG	MKFATSPETVLERLTALRAHDAPTHGGHVLSYVYDSGEPGLDRLAGEAIRAMQPVNGLDPTTFGSVAALERDLVGFTRDLLGGDDEVVGTVTSGGTESCLLAVKTARDAWLAAHGLRPGEARPRLVLPTTAHAAFRKAAHYFGLETDLVPVTATGEVTAAAVAERVSGPAAHDVALVVVSAPSYPHAALDPVADVAAVAADAGVPVHVDACIGGMALPFWPDLPDWDLRVPGVTSLSVDLHKYGYAPKGVSVLLQRGRDRQRGQYFATTRWPGYPVVNPTLLGSRSGGPLAAAWAIVQALGHEGFAELAGRSRRATDALRDAVGAVEGLRVVGDPVGPLLAVATDDAVPAERRVDPHRWADAATAHGWVLQAQPAYSQEDGTRLPHTTHLTVTPVTESVLGELVPALEAAADAVRGEPRPDATALLAALPAAGAPADGVPGADPGTLDAETAAGLLGALGLDASRLGDDGPGVGPMAPLLAAVEALPAPMAERLLTELLARLVEPRRP				NA	NA	NA	NA	NA
AK001_00237	1137	metB	COG0626	Cystathionine gamma-synthase	ATGACGCACGACCCGCACCTCGCCCCCGCCACCGTCGCCGTGACCGCCGGCCGGCCCGCCCGGACCCAGGGCGGCCCGGTCAACGCGCCGGTCTCCCTGACCTCCACCTACGTCTCGCGCGGCGTGCCCGGCGACGAGCTGCTCTACGCCCGCGGCGGCAACGAGACCTGGGAGACCTTCGAGGAGACGCTCGCCGCGCTCGAGGGAGCGGCCCACGGCGTCGTCCTCGCCTCCGGCATGGCCGCGATCGCCGCGGCCGTCGGCGACCTGCCCCCGGGCAGCGCCGTCGTCGTGCCCCGGCACGCCTACCAGGTCACGCTCGGCTACCTGGACGACCGGGCCACGCGGTACGACGTCGAGGTGCGGCGCGTGGACGTCGCGGACACCGACGCCGTCGTGGCGGCGCTCGACGGCGCCGCCCTGCTCGTGCTCGAGTCGCCGACGAACCCGATGCTGGAGGTCGCCGACCTGCCCGCCGTCCTGGCCGCCGCCCGCGAGCGCGGCGTGCGGTCGGTGGTGGACAACACGTTCGCCACCCCCCTGGGCCAGCAGCCCCTCGCCCTGGGGGCGGACGTCGTCGTGCACTCGGTGACCAAGTACCTCTCCGGCCACTCCGACGTCGTCCTCGGCGCGGTGCTGACGAACGACGCGCAGCGGGCCGACGAGGTCCGCGCCTACCGGACCCTGCACGGCGCGATCGCGGGCCCGATGGAGGTCTTCCTGGCGCTGCGCGGGCTGCGCACGCTGCACCTGCGCGTCGAGCGCGCCACCGCCAACGCCGCCGAGATCGCCCGCCGCCTGCGCGAGCACCCGGCCGTGGCCGAGGTGCGGCACCCCTCCCTGCCCGACGACCCCGGCCACGCGCGGGCGGCGGCGCAGATGGCGCACTTCGGTGCCGTCGTGGGGGTGCGGCCCGTCGGCGGGCCGGCGGGGGCGGACGCGCTGGTCGACGCGGTGCGGCTGTGGGTGCCGGCGACGTCCCTGGGCGGCGTGGAGTCGATGCTGGAGCGCCGACGGCGGCTCGCGACCGAGTCCCCGACGGTGCCCGAGGACCTGGTCCGGCTCTCGGTGGGCGTCGAGGACGTCGAGGACCTGTGGGCGGACCTCGCCCAGGCGCTCGACCACGTCGCCTCCTGA	MTHDPHLAPATVAVTAGRPARTQGGPVNAPVSLTSTYVSRGVPGDELLYARGGNETWETFEETLAALEGAAHGVVLASGMAAIAAAVGDLPPGSAVVVPRHAYQVTLGYLDDRATRYDVEVRRVDVADTDAVVAALDGAALLVLESPTNPMLEVADLPAVLAAARERGVRSVVDNTFATPLGQQPLALGADVVVHSVTKYLSGHSDVVLGAVLTNDAQRADEVRAYRTLHGAIAGPMEVFLALRGLRTLHLRVERATANAAEIARRLREHPAVAEVRHPSLPDDPGHARAAAQMAHFGAVVGVRPVGGPAGADALVDAVRLWVPATSLGGVESMLERRRRLATESPTVPEDLVRLSVGVEDVEDLWADLAQALDHVAS	PGPT0001980_1147	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001980-metB|met|cysA-K01758	NA	NA
AK001_00238	687			hypothetical protein	GTGCACCGCTCACCGCACCGTCGTCGGACCGTGGGCGCCGTCGCGCTCGTGGCGGGCGCCGCCCTGCTCGCCGCGTGCGGGGACGGCGACGGGCTGCCCGGCTACGGCGGCGGCGCGCCCGCGACGGAGTCGTCGTCGCCCACCGCCGCGTCGAGCGCGCCGGAGGACGAGGAGACGCCGACCGAGGAGCCGACCGACGAGGCCACCGACGAGCCGACCGACGACGCGACCCCGACCGAGCCCGAGACCCCGTTCGAGGGCGGCACCGCCCTGGACGAGTCCGCCGCGAGCGACGACGCGCTGCTCACCGTCACGGACGTCCGCGTCGGCTCCCACGACGGCTACGACCGGGTCGTGTTCGACCTGGAGGGCACCGGGACGCCCGGGTGGCGGGCGCAGTACGTCGAGGCGGCGCTCGAGCCGGGCCGCGGCGAGGAGCTCGACGTCGGCGGGGACTCGGTGCTGGAGGTCGGGATCACCGGGACCGGCTACCCGACGGACACCGGCGTCACCGAGTACGACGGCGACCCCGTCGCGGGGCCGGGCGGCTCCGTCGAGGAGGTCGTCTACAGCTTCGTCTTCGAGGGCACGACGACGGCGTTCGTCGGCGTCGACGGCGAGCCGCGGCCGTTCCGCGTGTTCTCCCTGGAGGACCCCACGCGGGTCGTGGTCGACGTCGGCAGCTGA	MHRSPHRRRTVGAVALVAGAALLAACGDGDGLPGYGGGAPATESSSPTAASSAPEDEETPTEEPTDEATDEPTDDATPTEPETPFEGGTALDESAASDDALLTVTDVRVGSHDGYDRVVFDLEGTGTPGWRAQYVEAALEPGRGEELDVGGDSVLEVGITGTGYPTDTGVTEYDGDPVAGPGGSVEEVVYSFVFEGTTTAFVGVDGEPRPFRVFSLEDPTRVVVDVGS				NA	NA	NA	NA	NA
AK001_00239	1011	gpsA	COG0240	Glycerol-3-phosphate dehydrogenase [NAD(P)+]	GTGAGCGGCCCGACGACCGCCGTCCTGGGCTCCGGCTCCTGGGGCACGACCTTCGCCATGGTCATGGCCGACGCCGGCTGCGACGTGACGCTGTGGGGCCGCGACGAGGCCCTGGTCCGCCAGGTCGCCGAGGAGCGGCGCAACAGCAAGTACCTGCCCGACGTCGAGCTCCCCGCCATGGCCGCCACGACCGACGCCGCCGTCGCCCTCGCCGGCGCGAAGATCGTCGTCGTCGCCGTGCCGTCCCAGGTGGCCCGCCGCACGCTGGAGCCGCTGCGCGAGCACCTCGAGCCCGACGCCGTCGTGGTCTCGCTGATGAAGGGTGTCGAGCTCAGCACCGACAAGCGGATGAGCCAGGTCGTCGCCGAGGCGCTCGACGTCCCGGCCGGGCGCGTCGCCGTCGTCTCCGGACCGAACCTGGCCAAGGAGATCGCCGCCCGGCAGCCCACCGCGACCGTCGTGGCGTGCTCCGACCCGGACAACGCCCGGCTGGTCGCCGACGCGTGCTCGAGCTCGTACTTCCGCCCGTACACCAACACCGACGTCGTCGGCGTCGAGCTGTGCGGCGCGGTGAAGAACATCATCGCGCTCGCCGTCGGCATGGCGCAGGGCAGCGGCTTCGGCTGGAACACCACCGCGACCGTCATCACCCGCGGCCTGGTGGAGATCACCCGGCTGGGACGTGCCCTCGGCGCCGAGCAGGAGACCTTCTCCGGGCTGGCGGGCATGGGTGACCTCGTCGCGACCTGCGCCTCGCCGCTGTCCCGCAACCACTCGCTGGGCAAGTACGTCGGCCAGGGCATGACGCTCGACGAGGCGCTCGAGGCCACCGGGACGACGGCGGAGGGCGTGAAGTCCTCGCGCTCGGTCCTGGAGCTGGCCCAGCAGCACGACGTGGACATGCCGATCACGGCCGGCGTGGTGGCGGTGCTGCACGAGGGCCTCTCGGTCGACGAGATGGCCCGCGCGCTGCTCTCGCGCCCGCAGAAGTCCGAGAGCGTCGCCGACTGA	MSGPTTAVLGSGSWGTTFAMVMADAGCDVTLWGRDEALVRQVAEERRNSKYLPDVELPAMAATTDAAVALAGAKIVVVAVPSQVARRTLEPLREHLEPDAVVVSLMKGVELSTDKRMSQVVAEALDVPAGRVAVVSGPNLAKEIAARQPTATVVACSDPDNARLVADACSSSYFRPYTNTDVVGVELCGAVKNIIALAVGMAQGSGFGWNTTATVITRGLVEITRLGRALGAEQETFSGLAGMGDLVATCASPLSRNHSLGKYVGQGMTLDEALEATGTTAEGVKSSRSVLELAQQHDVDMPITAGVVAVLHEGLSVDEMARALLSRPQKSESVAD	PGPT0024330_2328	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057	NA	NA
AK001_00240	693	plsC	COG0204	1-acyl-sn-glycerol-3-phosphate acyltransferase	ATGTTCTCGATGTGCCGCTACGAGTGGAGCGGCAGCGAAAACTTCCCGACCGACGGCGGCTTCATCGCGGCCGCCAACCACGCGACCGAGCTCGACGCGCTGACCTTCGTGCACTACCTGTTCGACCACGGTGTCGAGCCGCGCGTGCTCGCCAAGCGCGGCCTGTTCGACACCCCGGTCGTGGGCGCGGTGCTGCGGGCGACGAACATGATCCCCGTCGACCGCGGCAGCAAGGCGGCCGCCGCCTCGCTCGAGCGCGCCGGCCGCGAGCTCGGCGAGGGGGCCTGCGTGGCCGTGTTCCCCGAGGGCACCTTGACCCGCGACCCGGACCTGTGGCCGATGGAGCCGAAGACGGGCCTGGCCCGGATCGCCCTGGCGTCGCGGCTCCCGGTCGTCCCGATCGCCCAGTGGGGCGCCACGGAGATCCTGCCGCGGTACGGCAAGCTGCCGCGTCCGTTCCCGCGCAAGCGGGTGCAGACCACCGCCGGCCCGCCGGTGGACCTGTCCGACCTGTACGACCGGCCGCTGGACGCGGCCACCCTGCGCGAGGCGATGGACCGGGTGATGGACGCCATCACCGCCCAGCTCGCCACGCTGCGGGACGAGGTCCCGCCGGAGCACCGGTTCGACCTGCGCAAGCACCCCGACTACGAAGCGAGACAGATGCACTACCCGCCGGTGGAGCGCCCGTGA	MFSMCRYEWSGSENFPTDGGFIAAANHATELDALTFVHYLFDHGVEPRVLAKRGLFDTPVVGAVLRATNMIPVDRGSKAAAASLERAGRELGEGACVAVFPEGTLTRDPDLWPMEPKTGLARIALASRLPVVPIAQWGATEILPRYGKLPRPFPRKRVQTTAGPPVDLSDLYDRPLDAATLREAMDRVMDAITAQLATLRDEVPPEHRFDLRKHPDYEARQMHYPPVERP	PGPT0024330_4	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057	NA	NA
AK001_00241	1317	murAA	COG0766	UDP-N-acetylglucosamine 1-carboxyvinyltransferase 1	ATGACTGATCTGCTGTACGTCAACGGCGGCACGCCGCTGCAGGGCACCATCGAGGTGCGCGGGGCGAAGAACTTCGTGTCCAAGGCGATGGTGGCGTCGCTCCTGGGGGAGTCGCCGAGCGTGCTGCGCAACGTGCCGCAGATCCGTGACGTCGCGGTCGTGTCCGGTCTGCTCGAGCTGCACGGGGTCAACGTCAAGTACGACCCCGACGCCGGCATCCTCGACCTGGACCCCTCGAACGTCGAGTCGGCGCACGTCGCGGACATCGACGCCCACGCCGGCTCCAGCCGTATCCCGATCCTGTTCTGCGGCCCGCTGCTGCACCGCCTGGGCGAGGCGTTCATCCCCGACCTCGGCGGCTGCCGGATCGGCGACCGGCCGATCAACTACCACCTGGACATCCTGCGGCAGTTCGGTGCCGTGGTCGACAAGCGGCCCAACGGCATCCACCTGCGTGCGCCGCGGCGTCTGCAGGGCACCAAGATCGAGCTGCCCTACCCGTCGGTGGGGGCGACCGAGCAGCTGCTGCTGACGGCCGTGCGCGCCGAGGGCATCACCGAGCTGACCGGTGCGGCCACCGAGCCCGAGATCATGGACCTCATCGCCGTGCTGCAGAAGATGGGCGCGATCATCTCGGTCGACACCGACCGCGTGATCCGGATCGAGGGCGTCGACCGTCTCGACGGCTACTCGCACACCGCGCTGGGCGACCGCATCGAGGCGGCCTCCTGGGCGTCCGCGGCGCTCGCGACCGGCGGCGACGTGACGATCAAGGGCGCCTCGCAGCCCGAGATGATGACCTTCCTGAACACCTACCGCAAGGTCGGCGGCCAGTTCGACGTCCAGGACGACGGCATCCGGTTCTGGCACCCGGGCGGCGAGCTGCGCTCGATCGTCCTGGAGACCGACGTCCACCCCGGGTTCATGACCGACTGGCAGCAGCCGCTGGTCGTGGCGCTGACCCAGGCCACGGGGCTGTCGATCGTGCACGAGACCGTGTACGAGAACCGCTTCGGCTTCACCGAGGCGCTGCGTCAGATGGGCGCCACGATCCAGGTCTACAAGGAGTGCCTGGGCGGTGCCGCCTGCCGGTTCGGCCGCCGCAACTTCCAGCACTCCGCCGTCGTGTCCGGTCCGACCACGCTCGAGGCCGCCGACATCGAGGTGCCGGACCTGCGCGGCGGGTTCTCCCACCTCATCGCCGCCCTGGCCGCCAAGGGCTCCTCCACGGTGCGCGGGATCAGCCTCATCGACCGCGGCTACGAGTCCTTCCAGGACAAGCTCGAGGCGCTCGGCGCGGACGTCACCCGCGGCTGA	MTDLLYVNGGTPLQGTIEVRGAKNFVSKAMVASLLGESPSVLRNVPQIRDVAVVSGLLELHGVNVKYDPDAGILDLDPSNVESAHVADIDAHAGSSRIPILFCGPLLHRLGEAFIPDLGGCRIGDRPINYHLDILRQFGAVVDKRPNGIHLRAPRRLQGTKIELPYPSVGATEQLLLTAVRAEGITELTGAATEPEIMDLIAVLQKMGAIISVDTDRVIRIEGVDRLDGYSHTALGDRIEAASWASAALATGGDVTIKGASQPEMMTFLNTYRKVGGQFDVQDDGIRFWHPGGELRSIVLETDVHPGFMTDWQQPLVVALTQATGLSIVHETVYENRFGFTEALRQMGATIQVYKECLGGAACRFGRRNFQHSAVVSGPTTLEAADIEVPDLRGGFSHLIAALAAKGSSTVRGISLIDRGYESFQDKLEALGADVTRG	PGPT0024090_977	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790	NA	NA
AK001_00242	1197		COG0446	Sulfide-quinone reductase	ATGACCGCACGTGTCCTGGTTCTCGGCGGCAGCTTCGCAGGGATGACGGCCGCCCTGTCCATCAAGTTCGACCTGGGCGAGGAGGCCGAGGTCACGGTCGTGTCGGCCTCCGACCGGTTCGTCTTCAACCCGTCGCTGATCTGGCTGCCCTTCGGGCGGCGGGGCCGCACCGACATCACGTTCCCGCTGGAGCCGACGTTCACCAAGCAGGGCGTGCGGTTCGTGCACGGGTCCGCGACGTACGTCGACCCCGACCACCACCGGGTGGAGACCACCGAGGGGACGTTCGACTACGACTACCTGGTCATCGCCACCGGGTACCGCAACGACCTCGACGTCGTCCCCGGGATGCGCGACACGCCCACCATCACCACCCTGCACGACGCCGAGCGCACCTACGACGCCTGGCGCCGGTTCCTCGACGACCCGGGCGACGTCGTCATCGGCGCGACGCAGCGCGCGAGCTGCTTCGGGGCGGCGTACGAGTTCCTGTTCAACACCTCCTACCAGCTGCGCCGCGCCGGCCTGCACGGCAAGGTCAAGCTGACGTACGTCACCTCCGAGCCCTTCGCCGGCCACTTCGGCATCGACGGCATGCCCGGGGCGAAGCCGCTGATGAAGATGTTCGCCAAGAAGGAGGGCATCACCGTCGAGCCGAACCAGTCGATCGCGGAGATCAAGCCTGACGTCGTCGTGCTGTCCGACGGGCGCGAGCTGCCGTACAAGTTCGCGATGATCGTCCCGCCGTTCCGCGGCCAGGACTTCCTCGCCAAGACGCCCGACCTGGTCGACGCCGGCAACTACGTCACGGTCCGCCCGACCTACCAGTCGGAGAAGTGGGACGACGTCTACGCCGTCGGCATCGCCGCCGCCGTGCCCGTGCCCTGGACCACGCAGGTCGCGACCGGCATCCCGAAGACCGGCTTCCCCAGCGAGCAGCAGGCGCACGTCGCGGCCAAGAACATCGTCTCCCAGGTGCGCGGCGAGGAGCCGACGGAGGAGAAGGAGTTCTCGAAGATCCCGGCGCTGTGCGTCATGGACGCCGGCAACAACGGCGTCGCGATGGTCGCCGACCACATGCTGCCCCCGCGCAAGGCCGCCGTCATGGTGCCCGGACCGCAGAACCACGCGTTCAAGATCGGCTTCGAGAAGTACTCCCTGGCCAAGATGAAGGCCGGCAAGGTCAAGCTGCCGTGA	MTARVLVLGGSFAGMTAALSIKFDLGEEAEVTVVSASDRFVFNPSLIWLPFGRRGRTDITFPLEPTFTKQGVRFVHGSATYVDPDHHRVETTEGTFDYDYLVIATGYRNDLDVVPGMRDTPTITTLHDAERTYDAWRRFLDDPGDVVIGATQRASCFGAAYEFLFNTSYQLRRAGLHGKVKLTYVTSEPFAGHFGIDGMPGAKPLMKMFAKKEGITVEPNQSIAEIKPDVVVLSDGRELPYKFAMIVPPFRGQDFLAKTPDLVDAGNYVTVRPTYQSEKWDDVYAVGIAAAVPVPWTTQVATGIPKTGFPSEQQAHVAAKNIVSQVRGEEPTEEKEFSKIPALCVMDAGNNGVAMVADHMLPPRKAAVMVPGPQNHAFKIGFEKYSLAKMKAGKVKLP				NA	NA	NA	NA	NA
AK001_00243	438			hypothetical protein	ATGACGGGCACGGAGACGACCGCGCGACGCCCCTCCGCCGCCTCGCGGCGGGTCGGCTACGCCGTCGCCGTGCTCGTGAACGGTCTGCTGCTCGTGCTGATCCACGGGTGGCCGGGCTGGGAGGCGGTGCCGTTCCTGACGCCGCGGACCACCGAGGTGCTGACGGCGGTCGACGCCTCGATCGTCGTCGGCATCGTCGCGAACCTGGTCTACTTCGTGGCGGACCCGCCGCGGCTGCGCGCCCTGGGCGACGTCGTGACCACGGCGGTGGGACTCGTCGCGGTCGTGGTCGTGTGGCGCGTGTTCCCGTTCGACTTCGCCGGCACCTTCGACTGGGCGCTGGTGGTCCGCATCCTGCTGGTCGTCGCGATGGTGGGCAGCACGATCGGGATCGTCGTCGGCCTCGTCCGGCTGGCGACCGGACGAGGGAGACCGTGA	MTGTETTARRPSAASRRVGYAVAVLVNGLLLVLIHGWPGWEAVPFLTPRTTEVLTAVDASIVVGIVANLVYFVADPPRLRALGDVVTTAVGLVAVVVVWRVFPFDFAGTFDWALVVRILLVVAMVGSTIGIVVGLVRLATGRGRP				NA	NA	NA	NA	NA
AK001_00244	729			hypothetical protein	ATGACCGTGATGCCCGAGAAGCCCCGCACCGGCTACCCGCTGCGGATGGAGGCCGAACCACCCGCCGAGCTCTCCCGGGGGCTCTGGCTGGTCAAGTGGCTGCTGATCCTCCCGCACGTCGTGGTGCTGATCGGCCTGTGGATCGCCTTCGTCGTGCTGACGGTCGTGGCGTTCTTCGCGATCCTGTTCACCGGCCGCTACCCGCAGGGCATCTTCACCTTCAACGTCGGCGTCCTGCGCTGGTGCTGGCGCGTCGCGTACTACTCCTACGGCGCGCTGGGCACCGACCGCTACCCGCCGTTCACGCTCGACGAGGTGCCCGACTACCCCACCCACCTGGACGTCACGCCCCCGCAGCGGCTCTCCCGCGGCCTGGTGCTCGTCAAGTGGTGGCTGCTCGCGATCCCGCACTACGTCGTGGTGGCCTTCTTCCTCGGCGGCACCTCCACCACGGAGTACACGACCGAGGAGGGGATCACCACCACGGTCGAGAGCTGGCCGCCGGCCGTCGGGCTCGTCGGCGTGCTCGTCCTGTTCGCCGCCGTGGTGCTCCTCTTCCGCGGCACCTACCCGCGCAGCATGTTCGACCTGGTCCTGGGGCTGCAGCGCTGGGCACTGCGCGTGGCCGCCTACGCCGCCCTCATGACGGACGACTACCCGCCGTTCCGCCTCGACCTGGGCACCCACGAACCGGCCGGCACCGTGCCGCAGCAGAGTCCCCCGGCCTGA	MTVMPEKPRTGYPLRMEAEPPAELSRGLWLVKWLLILPHVVVLIGLWIAFVVLTVVAFFAILFTGRYPQGIFTFNVGVLRWCWRVAYYSYGALGTDRYPPFTLDEVPDYPTHLDVTPPQRLSRGLVLVKWWLLAIPHYVVVAFFLGGTSTTEYTTEEGITTTVESWPPAVGLVGVLVLFAAVVLLFRGTYPRSMFDLVLGLQRWALRVAAYAALMTDDYPPFRLDLGTHEPAGTVPQQSPPA				NA	NA	NA	NA	NA
AK001_00245	282			putative protein	ATGGCGCACACCTGGACGATCACCGTCCACCTCGTCGAGACCGAGGACATCGATCCCGACCGGGGCATCACCTCCGCCCACGCGGTGCTGACCACCTCGAGCGGCACGACGCTCGAGGGCCGCGGCACGGCGCGTCGCAACCCCGACGACGTCGAGGTCGAGGCGATCGGCGAGGAGCTCGCGACGGCGCGGGCGCTCCGCGACCTCTCGGACCGGCTCCTGCAGGAGACGTCGGACGACCTCGCCGAGATCGAGCAGCACCCGGTGCACCTGCGCTCGTGA	MAHTWTITVHLVETEDIDPDRGITSAHAVLTTSSGTTLEGRGTARRNPDDVEVEAIGEELATARALRDLSDRLLQETSDDLAEIEQHPVHLRS				NA	NA	NA	NA	NA
AK001_00246	1572	oxyL		6-methylpretetramide 4-monooxygenase	GTGACCGACGTCCTGGTCGTGGGCGCCGGACCCACCGGGCTGGCGACGGCCCTGCAGGCGCACGACCACGGCGCCGCGGTGCGCGTCGTCGAGCGGCGTCCGACGGCGTGGCGGCCGTCGCGCGCGATGATCGTCCACCCGCACACCCTGGAGTCGCTGCGCCCCCTCGGCGTGGCCGACGCCCTGCTGGACCGCGCCGACCGCTCGCCCCGCGCACAGGTGCACCTCGGGCGGCGCCTGGTCGACGTCCGGCTGGCCGACGTGGACTGGCCCGCCACCCCGTACCCGCACCTGACGATGGTGCGCCAGGCCGACGTCGAGGACGTGCTCGCGCAGGCGCTCGCGGCCCGGGGCGTCACGGTGGAACGGGGCACCGAGTGCGTCGCGGCCCGGGACGGCGGCACGCCCGGCACGGACGCCGGTGCCGTGCGTGCCGTGCTGCGCGCCGAGGGCGGCGACGAGGAGGCCGCGGCCCGCTTCCTCGTCGGCTGCGACGGCCCGGACAGCACCGTGCGGCGCGGCGCCGGGACCGCCTGGCGCGGCGGCCCGTACCCGGTGGAGGTCCTGCTGGCCGACCTCGAGCTCGACGGCGACCTCGCCCCGGGCGTCCTGCACGCCGTCGTCGCCCGTCGCGGTCTGGTGTTCCTCTTCGCGCTGGGGGAGGGCGCCCCGTGGCGGCTGCTCGCGACCCGTCCGGCGTCCGACGGCGGCGCACCCGCCGGGCAGCCCGGTGCACCGGTCCCGGCAGACGAGGTCGCGGCGCTCCTCGACGACGCCGGGCTGGGCGCCACGCTCGCCGACCTGCGCTGGTCGGCACGGGTGCGGCTGCAGCACCGGGTCGCCGGGGCGTTCCGCCAGGGCCGGATCTTCCTCGCCGGGGACGCCGCCCACACCCACTCGCCGGCAGCGGCGCAGGGCATGAACTCCGGCCTCCTCGACGCCGTCAACCTCGGGTGGAAGCTCGCCCTCGCCGCCGGGACCGCGGACCCCTCCGGCGACACCGACAGCCCCCTGCTGGCCTCCTACGACGCCGAGCGGCGCCCGGTGGCCCGCCAGGTCCTCGCCCTGACCCACCTCGTGTTCTTCGGCGAGGCGTCCACGCACCCGCTGCCCGCCCTGCTGCGCGGGACGGCGCTGCCCCTCGCGGCCCCGGTGGTGCCGCTGGCGGTGCGCCGACGTCGGCTCATGGGCCTGGTCGTCCGGCTGCTGTCGCAGGACTGGGTCGCCTACGGGCACAGCCCCCTGACGGTCGCGGGACGCCCCGCCCGGGCGGCACCCCGACCGGGGCACCGCCTGCGGGACCAGGACGTCACCTGTGCCGGGCGCACCCGCCGCCTGCACGAGCTCACCGCGAGCCCGGGCGTCCACGTCCTGCTCGACCGCGACGCCCCGGCGCTCGACCCGCGCGACCTCGGCCCGCACGTGGCCGTCCACCGCCTCGCGAGCAGTCCCGGGCGGGGCGTGGTCGCCGTGCGCCCCGACGGGTTCGTCGGGTACACGGACGCCGGCGGCGCCCCGCGGGGGCTCACCGACTGGCTGGACCGCGCCGGGGCGCGTCCGCCGGCCCGCTGA	MTDVLVVGAGPTGLATALQAHDHGAAVRVVERRPTAWRPSRAMIVHPHTLESLRPLGVADALLDRADRSPRAQVHLGRRLVDVRLADVDWPATPYPHLTMVRQADVEDVLAQALAARGVTVERGTECVAARDGGTPGTDAGAVRAVLRAEGGDEEAAARFLVGCDGPDSTVRRGAGTAWRGGPYPVEVLLADLELDGDLAPGVLHAVVARRGLVFLFALGEGAPWRLLATRPASDGGAPAGQPGAPVPADEVAALLDDAGLGATLADLRWSARVRLQHRVAGAFRQGRIFLAGDAAHTHSPAAAQGMNSGLLDAVNLGWKLALAAGTADPSGDTDSPLLASYDAERRPVARQVLALTHLVFFGEASTHPLPALLRGTALPLAAPVVPLAVRRRRLMGLVVRLLSQDWVAYGHSPLTVAGRPARAAPRPGHRLRDQDVTCAGRTRRLHELTASPGVHVLLDRDAPALDPRDLGPHVAVHRLASSPGRGVVAVRPDGFVGYTDAGGAPRGLTDWLDRAGARPPAR				NA	NA	NA	NA	NA
AK001_00247	594			hypothetical protein	ATGAGCCCGACCAGCGCATCCCGCCCCGCCCCCCGACCTGCCCCCCGCCCGGCCGCCCGCCCCGAAGCATGGCGCGCCGTCGGGCGCTGTGCCGTCGCCAGCACGTCCCTGCTCGTGCGGGGTCGGGTGCGCCAGCCGCGGTCCCGCGTCGGACGGGTCGTGCGGTTCGCCGACGGCACGCAGGGCCGTGTCTACCGGGAGACGGTCGTCGCCCGGGTGCCCGCCGAGCCCTGCTTCCTGGCCGTCGCCTTCCGGCTGCGGTGGGTCCACGGCCCCCGGGGACACGCGGTGTTTCGCGCCGAGAGCCTGCTCAACACCCCGCTGTTCGTCGGCTTCCCCGGCTTCGTGTCCAAGCTGTGGCTGGCTGCCGACGAGCGGCACGTCTACCGGGGCCTGTACGAGTGGGACAGCGCCGGTCGCGCCGAGGGCTACGCCCGCTCCCTGTGGCGCGTGCTCGAGCTCGTCAGCGAGCCCGGTTCGATCGACTACCGGGTCGTGCCCGGTCTGACCCGCGAGGAGGCGTTGGCGCGGCTCGTGCCGACGGGCACCGGCGACGCCGCGCCGGACGACGGCTGGTGGCGGGTGGTCCCGTGA	MSPTSASRPAPRPAPRPAARPEAWRAVGRCAVASTSLLVRGRVRQPRSRVGRVVRFADGTQGRVYRETVVARVPAEPCFLAVAFRLRWVHGPRGHAVFRAESLLNTPLFVGFPGFVSKLWLAADERHVYRGLYEWDSAGRAEGYARSLWRVLELVSEPGSIDYRVVPGLTREEALARLVPTGTGDAAPDDGWWRVVP				NA	NA	NA	NA	NA
AK001_00248	1173		COG0265	Serine protease	GTGACCCCCCTCGACGTCGTGCTCGTCGTCCTCCTCGTCGCCGCGCTCGCGACCGGGCTGACGCGTGGCGTGCTGTCCACGGTCGGCGGGCTCGTCGGCCTCGTCCTCGGCGGCGCGGTGGCGTTCCTGGCGGTGCCTGTCGTGGTCGACGCGCTGCCCGTGTCCGAGTGGCGCGGGGCGGCCACGGTGCTCCTGGCGGTGGCCGTCCCGCTGCTGGGCCTGTCGCTCGGCGCCGGGGTGGGACGCCGCCTGCGCCAGCAGGTCGACCGCACCCGCGCCGTCCCGCTCGAGCGTCTCCTCGGCGGGGTCGCGAGCCTGCTGGTGGCCGCCGTCGCGCTCTCGTTCATCGGCTCGACGATCAAGGCCACGGGGACTCCGGTCCTGGCCCCGGCCGTGTCGTCGTCGGCGGTCCTGCGCGCCATCGACGCGTACACGCCGGCACCGGTGACGCGGACCCTGGCCCAGGCGCGGGCCGCGGTGCTCGACGACGGTCTGCCGCAGCTGGACGGGCTGCTCGACCCGCGCCGGAGCAGGACGGCCCCCGCTGTCGACCTCGCGGACCCGGCGCTGGAGGCCTCCGCGCAGTCCGTCGCCCGCGTCTGGGGCACCGCCTACGAGTGCGGCACGGGCGTGACCGGGTCCGGCTTCGTCGCGGCGCCGGACCGCGTCGTGACCAACGCGCACGTCGTGGCCGGCGTGGAGCGGCCGCTCGTCGAGCTGCCCGGGCGGACGGCCGAGGAGGGGCGGGTCGTCTACTACGACCCGGAGGCCGACCTCGCCGTCGTGGCGGTCGACGGGCTGGACGCCACCCCGCTGACCATCGCGCCCGCGCTCGAGCGCGGCGACGCGGCGGTCGTGCAGGGCTATCCGTACGGGGGACCGTTCACCTCGACCGGCGCGGAGGTGCTCGACGCCGGGGGAGTGCGGATCCCGGCGTCCGACGGGACGGGCACCGTCGAGCGCGACGTCTACGCCCTCGCCGCGACCGTGCACGGCGGGAGCTCGGGCGGCCCCGTGCTCTCGCCCGACGGCGAGGTCGTCGGCGTGATCTTCGGTCAGTCCCAGTCGGACGACGAGCTGGCCTACGGCGTGACGTCCACCGAGCTGATGCCCGTGGCGGCCCGGCTCGCCGACCTGGACGACGCGGTCGCGCCGGGGCGCTGCGCCGCCTGA	MTPLDVVLVVLLVAALATGLTRGVLSTVGGLVGLVLGGAVAFLAVPVVVDALPVSEWRGAATVLLAVAVPLLGLSLGAGVGRRLRQQVDRTRAVPLERLLGGVASLLVAAVALSFIGSTIKATGTPVLAPAVSSSAVLRAIDAYTPAPVTRTLAQARAAVLDDGLPQLDGLLDPRRSRTAPAVDLADPALEASAQSVARVWGTAYECGTGVTGSGFVAAPDRVVTNAHVVAGVERPLVELPGRTAEEGRVVYYDPEADLAVVAVDGLDATPLTIAPALERGDAAVVQGYPYGGPFTSTGAEVLDAGGVRIPASDGTGTVERDVYALAATVHGGSSGGPVLSPDGEVVGVIFGQSQSDDELAYGVTSTELMPVAARLADLDDAVAPGRCAA				NA	NA	NA	NA	NA
AK001_00249	1404	lpdC	COG1249	Dihydrolipoyl dehydrogenase	ATGGCTTCCCACTACGACGTCGTCCTCCTTGGAGCTGGCCCCGGCGGCTACGTCGCCGCCATCCGCGCGGCACAGCTCGGCAAGTCCGTCGCCATCATCGAGGAGAAGTACTGGGGTGGTGTGTGCCTCAACGTGGGCTGCATCCCCTCCAAGGCTCTCCTGCGCAACGCCGAGCTGGCGCACATCTTCCACGACCAGGCCGACTACTTCGGCATGTCGGGGGACGTGAGCTTCGACTTCGGCAAGGCGTTCGACCGGTCCCGCGAGGTCGCGGACGGCCGCACCAAGGGCGTCCACTTCCTCATGAAGAAGAACAAGATCACCGAGTACGACGGCCGCGGCACCTTCCGTGACGCGAACACGATCGAGGTGGCGCTGAACGACGGCGGCACCGAGACCGTGACCGGCGACGACGTGATCATCGCGACCGGCTCGCAGGTCAAGCTCCTCCCGGGCGTCGAGCTCTCCGAGAACGTCGTGACCTACGAGAAGCAGATCATGACGCGCGAGCTGCCGTCGTCGATCGCCATCGTGGGCGCCGGCGCCATCGGCATGGAGTTCGCCTACGTCATGAAGAACTACGGCGTGGACGTCACGATCGTGGAGTTCCTCGACCGCGCCCTGCCGAACGAGGACGCCGAGGTCTCCAAGGAGATCGCCAAGCAGTACAAGAAGCTCGGCATCAAGATCCTCACCTCGACCGCGGTGCAGTCCGTCAAGGACAACGGCTCCTCGGTCACCGTCGACTACAAGGGCGTCAAGGACGACAAGCCCGGCTCGCTCGAGGTCGACAAGGTCCTCATGGCGGTCGGCTTCGCGCCGGCGGTGGAGGGCTTCGGCCTGGAGAACACCGGCGTGCAGCTCGACGAGCGCGGCGCGATCGCGATCGACGACCACATGCGCACCAACGTGCCGCACCTCTTCGCCATCGGTGACGTCACCGCGAAGCTCATGCTCGCCCACGTGGCCGAGGCCATGGGCGTCGTCGCGGCCGAGACGATCGCCGGCGCCGAGACCATGACGCTCGGCGACTACCGCATGATGCCGCGCGCGACGTTCTGCTCGCCGCAGGTCGCCTCCTTCGGCCTCACCGAGGCGCAGGCCAAGGACGAGGGCTACGACGTCAAGGTGTCGAAGTTCCCGTTCATGGCCAACGGCAAGGCCCACGGCCTGGGCGAGACCGCCGGCTTCGTCAAGCTCGTCGCGGACTCCACGTACAACGAGCTGCTCGGCGCCCACATGATCGGCCCGGACGTCTCGGAGATGCTGCCCGAGCTCACCCTGGCCCAGAAGTGGGACCTCACGGCCGACGAGGTGGCGCGCAACGTGCACACCCACCCGACCCTGTCGGAGTCGGTCCAGGAGGCCGTGCACGGCCTCGCAGGGCACATGATCAACCTCTGA	MASHYDVVLLGAGPGGYVAAIRAAQLGKSVAIIEEKYWGGVCLNVGCIPSKALLRNAELAHIFHDQADYFGMSGDVSFDFGKAFDRSREVADGRTKGVHFLMKKNKITEYDGRGTFRDANTIEVALNDGGTETVTGDDVIIATGSQVKLLPGVELSENVVTYEKQIMTRELPSSIAIVGAGAIGMEFAYVMKNYGVDVTIVEFLDRALPNEDAEVSKEIAKQYKKLGIKILTSTAVQSVKDNGSSVTVDYKGVKDDKPGSLEVDKVLMAVGFAPAVEGFGLENTGVQLDERGAIAIDDHMRTNVPHLFAIGDVTAKLMLAHVAEAMGVVAAETIAGAETMTLGDYRMMPRATFCSPQVASFGLTEAQAKDEGYDVKVSKFPFMANGKAHGLGETAGFVKLVADSTYNELLGAHMIGPDVSEMLPELTLAQKWDLTADEVARNVHTHPTLSESVQEAVHGLAGHMINL	PGPT0001380_5945	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001380-lpd|pdhD-K00382	NA	NA
AK001_00250	444	rnhA_1	COG0328	Ribonuclease HI	GTGAGCGACAAGCCGACCGTGGAGATCTGGACCGACGGCGCCTGCAAGGGCAACCCCGGTCTCGGGGGATGGGGCGCCCTGCTGCGTTCCGGGGAGCACAGCAAGGAGCTGTTCGGCGGCGAGAAGGTCACCACGAACAACCGCATGGAGCTGACGGCCGTCGTCGAGGCCCTGCGGGCGCTCAAGGGACCCAGCGAGGTCACGCTGCACGTCGACTCCCAGTACGTCATGAACGGCATGAAGTCGTGGATCGCCGGCTGGAAGCGCAACGGCTGGCAGACGTCGGCCAAGAAGCCCGTCAAGAACGTCGACCTGTGGCAGGCCCTGGACGCCGAGGTCGCCGAGCACGACGTGCGCTGGGTCTGGGTCAAGGGCCACGCGGGCGACCCCGGCAACGAGCGCGCCGACCAGCTCGCCAACGCCGGCGTCGACTCCGTGCGCTGA	MSDKPTVEIWTDGACKGNPGLGGWGALLRSGEHSKELFGGEKVTTNNRMELTAVVEALRALKGPSEVTLHVDSQYVMNGMKSWIAGWKRNGWQTSAKKPVKNVDLWQALDAEVAEHDVRWVWVKGHAGDPGNERADQLANAGVDSVR	PGPT0003760_50	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_00251	942	fgd_1		F420-dependent glucose-6-phosphate dehydrogenase	ATGTGCATCCGGCCCTCGTCGGGCCGGACGGTGTGGGGGGCGCGCCCGGTGTCGGAGGGCGTGCCTACCGTGACGGGCATGAGGTTCGGGTTCGTCAGCAGCTTCGGCACACCGGTCCAGCACGTGGAGCTCGCCCGCGCGTGCGAGGAGCACGGCTGGGACGGCTTCTTCACCTGGGACGGCGTCAGCCTGGGCGAGCTCGGCGAGGGCGCCGTGGCGACGTGGGACCCGTTCGGGATCCTCGCTGCCGCGGCGGCGGTCACCGAACGCGTCACGCTGGGGGCGATGGTCTTCGCGCTTCCCCGGCACCGACCGTGGGAGCTGGCCCAGCGGGCGCTGACGGTCGACCACCTGTCCGGGGGCCGTCTCGTGCTGCCCGTGGGCGTGGGTGTCACCGACGACCGCGGCTTCAGCTCGGTGCCGGGGCAGCCGCTCGCCCTGAGGGACCGCGCCGCCGCCCTCGACGAGACGCTGGCCTGGCTCGAGCGCTCCTGGACGGGAGAGCCCTTCGCCGCCGAGGGCGAGCACGTCCGCACCGGTGAGTTCCAGTTCCCCCAGCGGCCCGTCGCGGGCCGCATCCCCGTGTGGCCGGTCGGCGTCTGGGACGCCGCCCGGCCACCGGTGGCGAACCTGCGCCGCGCGCTGCGCTGGGACGGCGTCGTCCCCCAGCTGCGCGGCACGGCCGAGGTGCCGGGGCCCGACGACGTCGAGGGGCTCGTCGCCTGGATCGAGGCGGAGCGGTCCCGGCAGGACGACGCCGGGCGTCCGTTCGACGTCGTGGTGCAGGGTCGCCTGCCCGACGACGGCACCGCAGCCGCGGAGCTCGTCGCGGCCCTGCGGGAGGCGGGCGCGACGTGGTGGGTCGAGTCGCGCTGGGACCCGGCCGAGGCCACGCCGGAGTCGCTCCTGGCCCGCGTGCGTCAGGGGCCACCGGCGTCGTGA	MCIRPSSGRTVWGARPVSEGVPTVTGMRFGFVSSFGTPVQHVELARACEEHGWDGFFTWDGVSLGELGEGAVATWDPFGILAAAAAVTERVTLGAMVFALPRHRPWELAQRALTVDHLSGGRLVLPVGVGVTDDRGFSSVPGQPLALRDRAAALDETLAWLERSWTGEPFAAEGEHVRTGEFQFPQRPVAGRIPVWPVGVWDAARPPVANLRRALRWDGVVPQLRGTAEVPGPDDVEGLVAWIEAERSRQDDAGRPFDVVVQGRLPDDGTAAAELVAALREAGATWWVESRWDPAEATPESLLARVRQGPPAS				NA	NA	NA	NA	NA
AK001_00252	639	leuD	COG0066	3-isopropylmalate dehydratase small subunit	ATGGAGAAGATCGTCACCCACACCGGCGTCGGGGTCCCGCTGCGCCGCAGCAACGTCGACACCGACCAGATCATCCCCGCCGTGTACCTCAAGCGGGTCACGCGCACGGGCTTCGAGGACGCGCTGTTCGCCGCCTGGCGCGGCGACGAGTCGTTCGTCCTCAACCAGGACGCCTACCGCAACGGCTCGGTGCTCGTGGCCGGTCCGGACTTCGGCACGGGCTCCTCGCGCGAGCACGCCGTGTGGGCGCTGAAGGACTACGGCTTCCGCGTCGTGCTGGCCTCCCGGTTCGCCGACATCTTCCGCGGCAACTCGGGCAAGCAGGGCCTCGTGGCCGGCATGGTCGCCCAGGACGACATCGAGCTGCTCTGGAAGATCCTCGAGACCAAGCCGGGCACCGAGGTCACGGTCGACCTGGAGCAGCGCACCGTGCACGCCGACGACGTCACCGTGCCGTTCCAGATCGACGACTACACCCGTTGGCGGCTGATGGAGGGGCTCGACGACATCGGCCTCACCCTGCAGCACGAGGAGGACATCTCCGCCTACGAGGCGTCGCGGTCGTCCTGGCGCCCGACGACGCTGCCGGCCAAGCACCTGCCGAAGGTCGAGATCGAGCCGGCGCGTCCGGTGGCCTGA	MEKIVTHTGVGVPLRRSNVDTDQIIPAVYLKRVTRTGFEDALFAAWRGDESFVLNQDAYRNGSVLVAGPDFGTGSSREHAVWALKDYGFRVVLASRFADIFRGNSGKQGLVAGMVAQDDIELLWKILETKPGTEVTVDLEQRTVHADDVTVPFQIDDYTRWRLMEGLDDIGLTLQHEEDISAYEASRSSWRPTTLPAKHLPKVEIEPARPVA	PGPT0001443_1154	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704	NA	NA
AK001_00253	1518	leuC	COG0065	3-isopropylmalate dehydratase large subunit	ATGAACGACAGCCGCCCCGGGGCGGCGGACGAGGAGCTCGCCATGGCCGGCACGCTGGCAGAGAAGGTCTGGGAGGCGCACCTGGTGCGCCAGGGCACCGACGGGGCACCGGACCTGCTCTACATCGACCTGCACCTGGTGCACGAGGTCACCAGCCCGCAGGCCTTCGAAGGTCTGCGCCTGGCCGGGCGGCCCGTGCGCCGGCCCGACCTGACGATCGCGACCGAGGACCACAACACCCCCACCCTCGACATCGACCTGCCGATCGCCGACCCGACGAGCCGGACCCAGATCGACACGCTGCGCAACAACGCCGCCGAGTTCGGCGTGCGCATCCACTCCCTCGGCGACGCCGACCAGGGCATCGTCCACCAGGTGGGCCCGCAGCTCGGCCTGACGATGCCGGGGCTGACCGTGGTCTGCGGCGACTCGCACACCTCGACCCACGGCGCCTTCGGTGCTCTCGCCTTCGGCATCGGCACCTCCGAGGTCGAGCACGTCCTGGCGACCCAGACGCTGCCGCTCGCCCCGTTCAAGACGATGGCGATCACCGTCAACGGCGACCTGCCGCCCGGCACCACCTCCAAGGACATCATCCTGGCGATCATCGCCAAGATCGGCACCGGCGGCGGCCAGGGCTACGTGCTCGAGTACCGCGGCGAGGCCATCCGGCAGCTCTCGATGGAGGCGCGGATGACCATCTGCAACATGTCCATCGAGGCCGGGGCCCGCGCCGGCATGATCGCCCCGGACGAGACGACCTTCGAGTACCTCGAGGGCCGCCCGCACGCCCCCGAGGGGGAGGACTGGGACGCCGCGGTCGAGTACTGGAGCACGCTGCGCAGCGACGACGACGCCGAGTTCGACGCCGAGGTGGTCCTCGAGGCCGCCGACCTCGAGCCGTTCGTCACCTGGGGCACCAACCCTGGTCAGGGCCTGCCGCTGTCCGCCTCCGTGCCCGTGCCCGCCGAGATCGCCGAGGAGGGCGAGCGCGTCGCCGCCGAGCGGTCCCTGGAGTACATGGGCCTCGAGCCCGGCACCCCGCTGCGCGACATCGCCGTGGACACGGTGTTCATCGGCTCGTGCACCAACGGGCGCATCGAGGACCTGCGGTCGGTCGCCAAGGTCCTCCAGGGCCGCACCAAGGCCGACGACGTCCGCGTGCTCGTCGTGCCGGCGTCGGCCCGCGTGCGCCTGCAGGCCGAGGCCGAGGGCCTGGACGTCGTCTTCAAGGACTTCGGCGCCGAGTGGCGCAACGCCGGGTGCTCGATGTGCCTCGGCATGAACCCCGACCAGCTGCAGCCGGGGGAGCGGGCCGCCTCGACGTCGAACCGCAACTTCGAGGGCCGCCAGGGCAAGGGCGGCCGCACGCACCTGGTCTCGCCGCTGGTGGCGGCCGCGACCGCCGTGCGCGGCACGCTGTCCTCCGTGGCCGACCTCGACCTGGGCGAGGACGTCGACCTGACCACGTTCGACGGGTCCCCGCTGGCGCCGCTGACCGCGCCGTCGTTCGTCTGA	MNDSRPGAADEELAMAGTLAEKVWEAHLVRQGTDGAPDLLYIDLHLVHEVTSPQAFEGLRLAGRPVRRPDLTIATEDHNTPTLDIDLPIADPTSRTQIDTLRNNAAEFGVRIHSLGDADQGIVHQVGPQLGLTMPGLTVVCGDSHTSTHGAFGALAFGIGTSEVEHVLATQTLPLAPFKTMAITVNGDLPPGTTSKDIILAIIAKIGTGGGQGYVLEYRGEAIRQLSMEARMTICNMSIEAGARAGMIAPDETTFEYLEGRPHAPEGEDWDAAVEYWSTLRSDDDAEFDAEVVLEAADLEPFVTWGTNPGQGLPLSASVPVPAEIAEEGERVAAERSLEYMGLEPGTPLRDIAVDTVFIGSCTNGRIEDLRSVAKVLQGRTKADDVRVLVVPASARVRLQAEAEGLDVVFKDFGAEWRNAGCSMCLGMNPDQLQPGERAASTSNRNFEGRQGKGGRTHLVSPLVAAATAVRGTLSSVADLDLGEDVDLTTFDGSPLAPLTAPSFV	PGPT0001442_340	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703	NA	NA
AK001_00254	720	iclR	COG1414	Transcriptional repressor IclR	ATGGACGATACTAGCGGAGTCGGCGTACTGGACAAGGCCGCGTCCGTACTGGGCGCACTGGAGGCCGGTCCGGCCACCCTCGCGCAGCTGGTCGCCTCGACCGGCCTGGCGCGTCCGACCGCGCACCGCCTCGCGGTCGCGCTCGAGCACCATCGGTTCGTGGCGCGCGACATGCAGGGCCGTTTCGTGCTCGGCCCCCGGCTCAACGAGCTGGCGACCGCGGCCGGGGAGGACCGGCTGCTCGCGGCGGCGAACCCCGTGCTCACGGCGCTGCGGGACCACACCGGGGAGAGCGCTCAGCTCTATCGCCGACAGGGTGACCACCGCGTGTGCGTGGCCGCCGCCGAGCGGCCGGTCGGCCTGCGCGACTCCATCCCGGTCGGGGCCACCCTGACGATGCACGCGGGCTCCGCGGCGCAGATCCTGCTCGCGTGGGAGGAGCCGGACCGCCTGCACCGCGGGCTGCGCGAGGCCGTCTTCACCGCGACGATCCTGTCGGGTGTCCGGCGCCGCGGCTGGGCCCAGTCCGTCTCCGAGCGCGAGCTCGGGGTGGCCTCGGTCTCGGCACCGGTGCGCGGACCGTCCGGGCGGATCGTCGCCGCGGTCTCGGTCTCCGGCCCGGTCGAGCGACTGACCCGTCAGCCGGGACGCCTGCACTCGGCCTCCGTGGTCGCGGCCGCGAACCGGCTCACCGAGGTCCTGCAGCGCGCCGGCGACTGA	MDDTSGVGVLDKAASVLGALEAGPATLAQLVASTGLARPTAHRLAVALEHHRFVARDMQGRFVLGPRLNELATAAGEDRLLAAANPVLTALRDHTGESAQLYRRQGDHRVCVAAAERPVGLRDSIPVGATLTMHAGSAAQILLAWEEPDRLHRGLREAVFTATILSGVRRRGWAQSVSERELGVASVSAPVRGPSGRIVAAVSVSGPVERLTRQPGRLHSASVVAAANRLTEVLQRAGD				NA	NA	NA	NA	NA
AK001_00255	168			hypothetical protein	ATGCCGGCCAAGGCCAAGACCCTGCTGATCTGGCTCGTCGTGATCTTCCTGATCTACGCGATCGTGACGAGCCCCGAGCGCGCTGCCGACATCGTCCAGGCCCTCTGGGACGTCATCGCGGGAGCCTTCGCCAGCTTCGGGGAGTTCCTCGCGAACCTGACGTCATGA	MPAKAKTLLIWLVVIFLIYAIVTSPERAADIVQALWDVIAGAFASFGEFLANLTS				NA	NA	NA	NA	NA
AK001_00256	810			hypothetical protein	ATGAACGGCGCGGACCCCGACCTCGCGGTCCGTCGGCACAGCCACCTGCGGCGCTACGTGCTGGCCGGCGAACGGGTGTCGGTGGCCACACGGCTGCACTGGGCCAAGCTGGTCGAGCCGATCGCGACGACGCTCGCCGCGACGGTGGTCGTGGCCTGGTTGCACTCCACGAGCGGGTCCGGACTCGTCTGGGTGCTGTGGCTGCTGCCCGCCGGGCGCCTCGTCGTCCGGTGGGCCGAGTGGCACTACGAGTGGTTCGTCGCGACCGACAAGCGCCTGCTCCTCACCTACGGGTTCATCATCCACAAGGTCGCGATGATGCCGCTGGCCAAGGTCACCGACATGGGCTACACCCGCACCCCGGTGGGCCAGGTGCTCGGCTACGGGCGCTTCGTCATGGAGTCCGCGGGCCAGGACCAGGCGCTGCGCCAGATCGACCACGTCCCCGACCCGGACCAGACCTATCGCACGCTGTGCGACACGATCTTCGCGCCGAAGCCGCCCCCGGGGGACGGCGGTAGTCCCTCACCGCCGCCGGCGATCGCCCCGAGCGGCCGCGCGGCGCCGCGCCCGACGACGGCGGAGATCCCCGTCGTGCCCGTCGGGACGCCCGACCCCGCACCGGCGCCCCCGGCGGCGGCCACCGGTCGCACCGGGCCGCTCGACGGCGGGGCGGAACCGCGGCCGGCGAGGGCGGAGACCCGGCACCCGGGTCGCCGCGGCTGGATCCCGGCCCGGCGTCGGCCCGTGCACGACACCCCGCCGGACGCCGGAGACGGCGGACCGATCGTCCCGGACCCGTTCCTGTAG	MNGADPDLAVRRHSHLRRYVLAGERVSVATRLHWAKLVEPIATTLAATVVVAWLHSTSGSGLVWVLWLLPAGRLVVRWAEWHYEWFVATDKRLLLTYGFIIHKVAMMPLAKVTDMGYTRTPVGQVLGYGRFVMESAGQDQALRQIDHVPDPDQTYRTLCDTIFAPKPPPGDGGSPSPPPAIAPSGRAAPRPTTAEIPVVPVGTPDPAPAPPAAATGRTGPLDGGAEPRPARAETRHPGRRGWIPARRRPVHDTPPDAGDGGPIVPDPFL				NA	NA	NA	NA	NA
AK001_00260	765		COG0500	putative methyltransferase	ATGACCCCCCACCCGGACCCCACGTCCCGCGCCGACCGCGCCGCCTCCTTCACCCGGGGCGCCGACGTCTACGCCCGTGTCCGTCCCGGATACCCCGCCGAGGCCGTGTCCTGGCTGCTGGAGGGGACGACCGGCCCCGTCCTCGACCTCGCCGCCGGCACCGGTCTCCTCACGCGCCGCCTCGTCGAGCTCGGCGCCGACGTCGTCGCCGTCGACCCGGCCGCCGCGATGCTCGAGGAGCTCTCGGCGGCGCTGCCGGGCGTGGACACCCGGACGGGGACCGCCGAGCGGATCCCGCTGGCCGACGCCGGCGTCGGGGCCGTCGTGGTCGGGCAGGCCTGGCACTGGTTCGACCCGCCGCGCGCCGCGGCGGAGATCGCCCGCGTCCTGCGCCCCGGCGGCACGCTCGGCGTGCTGACCAACGACCGCGACGAGCGGGTCGACTGGGTCGCCCGCTTCGGCGAGATCCTGCACGAGGGCGACTCCCTCGCTCCGGACTCGGCGCAGAGCGCGGCCCCGCCCGCGCTGGACGAGAGCTTCGGTCCGGCGGAGCGCTTCGAGCACTCCTGGCACCACCACCTGCCGACGGCGGAGCTCGGCCCGCTGGCCGCCTCGCGCAGCTACGCCCTGACGCTGTCCCCGGAGGACCGCGAGCACCTCGTGCAGCGCGTCGAGGACCTCGCCGCGACCCACGCCGACCTGTCGGGCACCACCGAGGTGGCCCTGCCCTACGTCACGACGGCGTACCGAGCGCGACGGCGCTGA	MTPHPDPTSRADRAASFTRGADVYARVRPGYPAEAVSWLLEGTTGPVLDLAAGTGLLTRRLVELGADVVAVDPAAAMLEELSAALPGVDTRTGTAERIPLADAGVGAVVVGQAWHWFDPPRAAAEIARVLRPGGTLGVLTNDRDERVDWVARFGEILHEGDSLAPDSAQSAAPPALDESFGPAERFEHSWHHHLPTAELGPLAASRSYALTLSPEDREHLVQRVEDLAATHADLSGTTEVALPYVTTAYRARRR				NA	NA	NA	NA	NA
AK001_00261	882			putative HTH-type transcriptional regulator	ATGGCAGCCCTCGAGCTGCTCGTGGCCGTCGACACCCACGGCTCGATCAGCGCCGCCGCGCGGTCCCTCGGCGTCGCCCAGCCCACCGCGTCGGCCGGTCTGCGCCGGCTGGAGCACCGCCTGGGCCTGGAGCTGCTGAGCCGCGGGGCGCGGGGCACGGCGCTCACCCCGTCGGGCCGTGCCGCGGCGGGCTGGGCGCGCGAGGTGGTGGAGGCGTCGGACCGCTTCCAGACGGCGGTCGCGGGCATGCGGGCGGGTGCGGCCTCGGCGCTGAGGGTCGCGGCCAGCCTGACGATCGCGGAGTACCTCGTGCCGCGCTGGCTGGGACTCCTGACCGGTGACGCCGACGCCCCGGAGATCGAGCTGACGGTGCGCAACTCCCAGGACGTCACCACGCGGGTGCTCGCCGGGGACGCCGAGCTCGGCTTCGTCGAGAGCCCCGCGGTGGCCCCGGGGCTGCGCAGCCGGACGATCGCGTACGACGAGCTGGTCGCCGTCGTCGCCCGCGCCCACCCGTGGGCCGGCCGGGCCGGCGTGGGCCCCGAGGAGCTGGTCGCGGCCCGGCTCGTGCTGCGCGAGACCGGGTCCGGCACCCGCGAGATCCTCGAGCAGGCCCTGGCGGGTGCCGGGAGCGATCTGCCCGAGCACCTGCCCGCCCTGGGCTCCACGGCAGCGCTGAAGGCCGCCGTGCAGCACGGCGGGTCGGTCGCGGTGCTGTCGGCCCTGACGGTGGCGGAGGACGTCGCGACGGGCCGTCTGGCCGCCGTGCCGATCGACGGGCTCGACCTGACCCGACGGCTCCGGGTGGTCTGGCGCACCGACGCGCCGCTGTCGGCGGCGGCCCGCCGGCTCAGCGCCGTCGCGCTCGGTACGCCGTCGTGA	MAALELLVAVDTHGSISAAARSLGVAQPTASAGLRRLEHRLGLELLSRGARGTALTPSGRAAAGWAREVVEASDRFQTAVAGMRAGAASALRVAASLTIAEYLVPRWLGLLTGDADAPEIELTVRNSQDVTTRVLAGDAELGFVESPAVAPGLRSRTIAYDELVAVVARAHPWAGRAGVGPEELVAARLVLRETGSGTREILEQALAGAGSDLPEHLPALGSTAALKAAVQHGGSVAVLSALTVAEDVATGRLAAVPIDGLDLTRRLRVVWRTDAPLSAAARRLSAVALGTPS				NA	NA	NA	NA	NA
AK001_00262	1161			hypothetical protein	ATGACGCGACTCCTGCCCGGCCTCGCCCTGGCCGCCGCGGCGACCGCCGCGCTGCTGGGCCTGACCCCGGTCCTGGCGTCCGCCGCCCCGTCGCTGTCACCCCTCGTGCTCGCCCTGCTCGCCGGTGCCGCCGCCGGGTCGGTGCTCGGCGTGCTGGCCCGGCGCGCCCCGGGCGGCGCCACCGCCCGCGTGCGCGACGCCGTCGGCCCCGGCACCGCCTGGACGGCGCGGCACCTCCTGCGTGCCGGGGTGGTGCTGCTCGGGCTGCAGCTGTCCGTCGCGGACGTGCTCGGCCTGGGCTGGCGCGGGCTGGTGGTCGTGGCGGTCACGGTGGCCACGACGTTCGCCGGCACGCTCGCGATCGGACGGCGGCTGCACGTACCCCGGGACACCGCCCTGCTGGTGGCCACGGGGTTCTCCATCTGCGGGGCGGCGGCCGTCTCGGCCGTCAGCGGGGTGCTCGACCGGGCCCCGGCCCGCCCCGACCGCGCGCACCGGCACACCGGTGCGGACCGGCCCGAGGACGGCCCCGTCGAGGACCTCGCCGGGTCGACCGGCGCCGCGCTGGCGATGGTCGCCCTGTTCGGGACCGCCGCCGTGCTGGTGCTCCCGCCGCTCGCCGACGCGCTGGGCCTGCGGGCGGAGCAGGCCGGTCTGTGGATCGGCGCGGGCGTCCAGGAGGTCGCCCAGGTCGTCGCCGCGGCCGGCGCGCTGCCGCTGGCCCCCGCGGCGGTGGCCACGGCCCTGGCCACCGCGACCGTCGCCAAGCTGGCGCGGGTCGTGCTGCTGGCACCGCTGGTGGCCGGCGTCGGCGCCGTGCGCGGCCGTCGGGTCGCCCTCGCGGCACCCGTCGGTGCACCGGTCCCCGCGGTCCGGACCCGCACGGCACGGCGCGGTGGCCCGGCCCTGGTCCCGGGGTTCGTCGTCGGCTTCCTCGTCGCCGTCGGCCTGCGCAGCCTCGGCGTCGTGCCGGACGCGGTCCTGACCGCCGCCGGTCCTCTCGGCACGGGCCTGTTCGTGGCCGCGATGTTCTCCCTCGGGTTGGGTGTCGACGTGCCGCGGCTCGTGCGCAGCGGCGGCCGGACGTTGCTGCTCGGCGCGGCCTCCGCCGTCGTGGTCACCGGGACGTCGCTGGCCGCCGTCCTGCTCCTGGTCCCGTGA	MTRLLPGLALAAAATAALLGLTPVLASAAPSLSPLVLALLAGAAAGSVLGVLARRAPGGATARVRDAVGPGTAWTARHLLRAGVVLLGLQLSVADVLGLGWRGLVVVAVTVATTFAGTLAIGRRLHVPRDTALLVATGFSICGAAAVSAVSGVLDRAPARPDRAHRHTGADRPEDGPVEDLAGSTGAALAMVALFGTAAVLVLPPLADALGLRAEQAGLWIGAGVQEVAQVVAAAGALPLAPAAVATALATATVAKLARVVLLAPLVAGVGAVRGRRVALAAPVGAPVPAVRTRTARRGGPALVPGFVVGFLVAVGLRSLGVVPDAVLTAAGPLGTGLFVAAMFSLGLGVDVPRLVRSGGRTLLLGAASAVVVTGTSLAAVLLLVP				NA	NA	NA	NA	NA
AK001_00263	783	gph_2		Phosphoglycolate phosphatase	GTGACCGCGTTCGGCGTCGCCGCCGGTCGTGTCGACGGCGTGCTGCTCGACATCGACGACACTCTCGTGGACACCAAGGGGGCCTTCGCCGCGGCGCTGCGTGCCGTCGCCGAGGCGCACCTGCCCGAGGACGTCGACCACGCGGCGGTGCTGGACCACTGGCGCTCCGACCCGGCCGGGCACTACCGCCGGTACACCCGGGGCGAGACCGACCACCGCACCCAGCGTCGGCTGCGTGCCGACCTGCTGCACCGCACCTTCGGCGGGGCTCCGGTGGGGGAGGACGCCTTCGACGCCTGGGACGAGCTGTTCTGGGGCACCTTCGAGCGGTCGTGGCGCGCGTTCGACGACGCCGCGGCGTTCCTCGACCGGCTGCGCGCGCAGGGCCTGGCCACCGGCGTGGTGACGAACGCGGGCGTGGCGCTGCAGGAGCGCAAGCTCGCCGTCGTCGGGCTCGACCTGCCCGTGCTGGTGGGGGTCGACACGCTGGGCTACGGCAAGCCGCACCCGGACGTCTTCGTCGAGGGTGCGCGCCGGCTCGGCACGATCCCGCCGCGGACCGCCTACGTGGGCGACGAGCCGCGCGTCGACGCCACGGGGGCGCACGAGGCGGGCCTGGTGGGCGTCTGGCTGGACCGGCCCGGTGCCCGGCGTGCCGACGAGCACGACGCCGACGTCGCGGCGATGCGGGCCGCGGGCATCGTCGTCGTGCCCGGGCTGGCCGAGGCGTTCGCGGAGCTCACGGGACCAGGAGCAGGACGGCGGCCAGCGACGTCCCGGTGA	MTAFGVAAGRVDGVLLDIDDTLVDTKGAFAAALRAVAEAHLPEDVDHAAVLDHWRSDPAGHYRRYTRGETDHRTQRRLRADLLHRTFGGAPVGEDAFDAWDELFWGTFERSWRAFDDAAAFLDRLRAQGLATGVVTNAGVALQERKLAVVGLDLPVLVGVDTLGYGKPHPDVFVEGARRLGTIPPRTAYVGDEPRVDATGAHEAGLVGVWLDRPGARRADEHDADVAAMRAAGIVVVPGLAEAFAELTGPGAGRRPATSR				NA	NA	NA	NA	NA
AK001_00264	1452	gltX	COG0008	Glutamate--tRNA ligase	GTGATCCCCGCAGCAGGTACCTCCTCCGTCCGTGTCCGCTTCGCCCCGTCCCCGACCGGCATGTTCCACGTCGGCGGCGCGCGCTCCGCGCTGTTCAACTGGGCCGTCGCCAAGCAGACCGGCGGGACGTTCGTGCTGCGCATCGAGGACACCGACGCCTCGCGCAACAAGCCCGAGTGGGTCGACGGCATCCTCGCCGCCCACGCGGCGCTCGGCATGCACGCCGACGACCCGACGTTCGAGGGCCCGTACTTCCAGTCCGCGAACGTCGACAAGCACCGCGAGGCGCTCGCGCGCCTGCTGGAGTCCGGCAGCGCGTACTACTGCGACTGCACCCGCGACGACGTCGCCGCCCGGACCGGCAACCCGCACTCGGGCTACGACGCGTACTGCCGCGACCGCGGCCTGACCGAGGCGCCGGGCCGCGCCCTGCGGTTCCGCACCCCGGACACCGGTGAGACGCGGGTCGTCGACCTGATCCGCGGCAACCCGGTCTTCCCCAACGACGCGATGGAGGACTTCGTCGTGGCCCGGGGGGACGGCTCGCCGGTCTTCCTGCTCGCGAACGTCGTGGACGACCTGGACGAGGGCATCACCCACGTCATCCGCGGCGAGGAGCACCTGTCCAACACGCCCAAGCAGCAGCTGCTGTGGGAGGCGCTGGGCGCCGAGCCGCCCGTGTGGGCGCACCTGCCCGTCATCGTCAACGAGAAGCGCCAGAAGCTCTCCAAGCGTCGGGACAAGGTGGCCCTCGAGGACTACCTCGCCGAGGGCTACCTGCCGGCCGCGATGGTCAACTACCTCATGCTGCTGGGCTGGGCGCCCGGCAACGACGAGGAGATCCTGCCGTTCGACGAGATGATCGAGCGGTTCCGCATCGAGGACGTGAACAGCGCCGCGTCGTTCTTCGACCTCAAGAAGCTCGCGGCGTTCAACGGCGAGTACATCCGGGCGCTGAGCGTCGACGAGTTCGTCGCCGCCGTCGGGCCCTGGCTGCGCGCCCCGCACGCCCCCTGGGCCGAGGAGCAGTTCGACCCCGCCGCGTTCGCCGCCGTGGCGCCGCTGGCCCAGTCCCGCGTGGCGCTGCTCAGCGACATCACCGACAACGTCGACTTCCTGTTCCTCGACCGGCCCGTCGAGGACGAGCGGTCCTGGAAGAAGGCGATGAAGCCCGGCGCCGTCGAGCTCCTGACGGACGTGCGCACGACGCTGTCCACGCTGGAGCCGTGGGAGGCGGAGCCGCTGAAGAACGCCGTGGCGACGGCGGGGGAGTGGCACGGCCTCAAGCTCGGCAAGGCGCAGGCACCCGTGCGGGTGGCTGTCACCGGGCGCACGATCGGGCTGCCGCTGTTCGAGTCGCTCGAGGTGCTCGGGCGCGAGCGGACCCTCGGCCGGATCGACGCCGCCCTGGCCACCCTCGCCGAGAACCCGCCCCAGGCACCGGCGCAGTGA	MIPAAGTSSVRVRFAPSPTGMFHVGGARSALFNWAVAKQTGGTFVLRIEDTDASRNKPEWVDGILAAHAALGMHADDPTFEGPYFQSANVDKHREALARLLESGSAYYCDCTRDDVAARTGNPHSGYDAYCRDRGLTEAPGRALRFRTPDTGETRVVDLIRGNPVFPNDAMEDFVVARGDGSPVFLLANVVDDLDEGITHVIRGEEHLSNTPKQQLLWEALGAEPPVWAHLPVIVNEKRQKLSKRRDKVALEDYLAEGYLPAAMVNYLMLLGWAPGNDEEILPFDEMIERFRIEDVNSAASFFDLKKLAAFNGEYIRALSVDEFVAAVGPWLRAPHAPWAEEQFDPAAFAAVAPLAQSRVALLSDITDNVDFLFLDRPVEDERSWKKAMKPGAVELLTDVRTTLSTLEPWEAEPLKNAVATAGEWHGLKLGKAQAPVRVAVTGRTIGLPLFESLEVLGRERTLGRIDAALATLAENPPQAPAQ	PGPT0008460_4903	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885	NA	NA
AK001_00265	642			hypothetical protein	ATGTCGGCGTGCTGCGAGCCGCAGGGGTACGAGAAGGTCTTCGACGACCGGGAGGCCCGGCGCGCCGCGGCGCGGTACGCGCGCTCGGGGCTGACCACGCTGCCCCGGCGCACCGTGGAGCTCTACCGCTCCGGCGTGGTCGGCGGAGCGACGCTCCTGGAGGTCGGGAGCGGGGTCGGGGACTTCTCGCTGGAGATGCTACGGGCCGGTGTCGAGCGTGCCACCTGCGTGGACATGTCGACGGGGTACGACGCCGTCGCGGCCCGGCTGCTGGCGGACGCCGGGCTGGCGGACCGGGTGCGCCGCCGCACCGGCGACCTGGTGACGCACCCGGACCTGGCCGGCCCGGCCGACGTCGTCGCGCTGCACAGCGTGGTCTGCTGCTACCCGGACGCCCGGGCGCTGGTCACCGCGGCCGCGGACCGGACCCGGCAGTACCTGGTGCTCGCGTTCCCGCGGCACACCTGGTGGATGCGGGCCGCGGCACGCGTGCTCAACGTCTACCCGCGCGTGCGGGGCAGCGACTGGCGCTTCCGCGTCCACGAACCGGCCGAGGTCGCGCGCGCGGCCACGGACGCCGGGCTGCGGCGGGTGCGCACCGAGCGGTTCGCGTTCGACCACCACTGGGTCTTCGCCCGCTGA	MSACCEPQGYEKVFDDREARRAAARYARSGLTTLPRRTVELYRSGVVGGATLLEVGSGVGDFSLEMLRAGVERATCVDMSTGYDAVAARLLADAGLADRVRRRTGDLVTHPDLAGPADVVALHSVVCCYPDARALVTAAADRTRQYLVLAFPRHTWWMRAAARVLNVYPRVRGSDWRFRVHEPAEVARAATDAGLRRVRTERFAFDHHWVFAR				NA	NA	NA	NA	NA
AK001_00266	786			hypothetical protein	GTGCGTATCGCGAGATTCACCACCGGTGACGACCCCCGCTTCGGATTTGTCCAGACCGAGGGCGACAGGACCTACCTGGCCGTCCTCAGCGGCGACCCGCTGTCCATGCCCGCCATGCCGACGGGCGAGCGGATCGAGCTCGGCGACGGGGTGCGCCTGCTGTCGCCCGTGATCCCGCGCTCGAAGGTGGTCGCCGTCGGGCGCAACTACCTGGACCACGTGCGGGAGATGGGCGGCGAGCCGCCGACGTCGCCGCTGCTGTTCTTCAAGCCCAACACCTCGGTGGTGGGCCCGGACGACCCGATCGTGCTGCCGGAGTGGACCTCCGAGGTCTCCTACGAGGCCGAGCTCGCCGTCGTCATCTCCAAGCCGTGCAAGGACGTCGAGCCGGAGAACGCCCGCGCCTACGTGCTGGGGTACACCGTCGCCAACGACGTCACGGCGCGTGACGCCCAGCGCACCGACGACCAGTGGGCGCGGGCCAAGGGCTTCGACACCGCCTGCCCGCTGGGGCCGTGGATCGAGACCGACCTGAACCCCGAGGACGTCGGCGTCGTCTCCCGCGTCAACGGCGAGACCAAGCAGGACGGCCGCACCGCCGAGATGATCTTCGACGTCGACTACCTGATCTCGTACGCCTCCAAGGCCATGACGCTGCTGCCCGGGGACGTGCTGCTGACCGGCACGCCGGCCGGGGTGGGCCGGATCGAGTCCGGCGACCGCGTCGAGTGCGAGGTCGAGGAGATCGGCGTCCTGGCCAACCCCGTGGTCCGGCGCGAGGACTGA	MRIARFTTGDDPRFGFVQTEGDRTYLAVLSGDPLSMPAMPTGERIELGDGVRLLSPVIPRSKVVAVGRNYLDHVREMGGEPPTSPLLFFKPNTSVVGPDDPIVLPEWTSEVSYEAELAVVISKPCKDVEPENARAYVLGYTVANDVTARDAQRTDDQWARAKGFDTACPLGPWIETDLNPEDVGVVSRVNGETKQDGRTAEMIFDVDYLISYASKAMTLLPGDVLLTGTPAGVGRIESGDRVECEVEEIGVLANPVVRRED	PGPT0001745_728	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336	NA	NA
AK001_00267	633			hypothetical protein	ATGAGCACGCCGCACGATCCCCTCGAACCGCACCAGCCCGGGACGCCGCAGCAGCCATCGTCGTCCGGTGGCACGTCCGACCCGTACGGCGCGCCGCCCCCGCCCGGCGGCACCCCCGCGCAGGGCCCCTCCGACCCGGGCCAGGCGCCGGGCCGGCAGCCGACCTACCCCGGACAGACACCCCCGCCCGGCGGAGCGAGCGGCAACCAGGGCTACGGCGGCGCGCAGGGCTACGGCGGCGCGCCGGGCTACGGCGGGTACGGCGCCGCGCCGCCGCGCCCGCCCTCGGAGCGCAAGGGGCTCGCGATCGCCGCGCTGGTGCTGGGCATCCTGGCGCTGCTCGGCAGCTGGATCCCGTTCGTCAACATCGGCGCGATCCTGCTCGGCGTCATCGGCCTGGTGCTGGGCATCGTCGCCCTGGTCCAGGTGTCGAAGGGGACGGCCGGCGGCAAGGCCATGGCGATCGTCGGCGCCGCCCTGTCGGCGTTCGCCGTCGTCGTGTCGATCGTCGTGACCGTGTTCGTCGTGCTGGCCATCGAGGAGCAGGCTCCCGCGATCCAGCAGGAGCTGGAGCGTCAGCTCGAGGAGCAGGGCTTGTCGGACGAGGAGATCGACGAGCTCCTGGGCGAGTGA	MSTPHDPLEPHQPGTPQQPSSSGGTSDPYGAPPPPGGTPAQGPSDPGQAPGRQPTYPGQTPPPGGASGNQGYGGAQGYGGAPGYGGYGAAPPRPPSERKGLAIAALVLGILALLGSWIPFVNIGAILLGVIGLVLGIVALVQVSKGTAGGKAMAIVGAALSAFAVVVSIVVTVFVVLAIEEQAPAIQQELERQLEEQGLSDEEIDELLGE				NA	NA	NA	NA	NA
AK001_00268	969	COQ3_1		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	ATGAGCGATCTGCCGCACGGTGCCGAGCCCGACTTCCCGGAGCCCCCGAGCCTGGGCAGCCCGGCCGACGGCCCGAACGGGAACGCCTCCGACGAGCCGTCCGGGGCGGCGTTGTCCGACGCCATCGAGGCACCGAGCTTCCACCAGACCGTGCCCAGCCAGGAGTCCGAGTCGTACACGCACGGCCACCACGAGTCCGTGCTGCGCGCCCACCGGGCCCGGACGGCGCAGAACTCCGCCGGCTTCCTGCTGCCGCACCTGAAGGACGACATGCACCTGCTCGACGTCGGCTGCGGCCCCGGGACCGTGACGACGGACCTGGGGCGGGTGCTCGCCGGGGGCAGGGTCGTGGGCGTCGACGCCTCGGCGACGGTGCTCGAGGCGGCCCAGGCGCATGCCGACGCTCTCGGGGCGTCGAACGTCCGGTTCGAGCAGGCCAACGCCTACGAGCTGCCGTTCGACGACGACACCTTCGACGTCGTCTACGCCCACCAGCTGCTGCAGCACCTGTCCGACCCCGTCGCCGCGCTGCGCGAGATGAAGCGCGTCACCAAGCCGGGCGGCCTCGTCGCGGCGCGCGACGCCGACTACGCGGCGATGGCCTGGTACCCGGAGTCGCCGGGGCTGACGGAGTGGAACACGCTCTACCACGAGGTCACGCGCGCCTACGGCTTCGAGCCGGACGCCGGGCGACGGCTCTTCTCGTGGGTGCTGCAGGCCGGGTTCGACGTGGCCGGCACGGTGCCCAGCGCGTCGTCGTGGTGCTACGCCACGCCTACCGACCGCGAGTGGTGGGGGCAGGTCTGGGCCGAGCGGTGCGTCGAGTCGAACTTCGCGCGCCAGGCCCAGGAGTCGAACCTGGCCGACGACGTCGCGCTCGAGCAGCTCGCCCACGACTGGCGGACCTGGGCCCAGGCGCCGGACGGCTGGTTCGCCGTGCTGCACGGCGAGGTGCTGGCCCGGGCCTGA	MSDLPHGAEPDFPEPPSLGSPADGPNGNASDEPSGAALSDAIEAPSFHQTVPSQESESYTHGHHESVLRAHRARTAQNSAGFLLPHLKDDMHLLDVGCGPGTVTTDLGRVLAGGRVVGVDASATVLEAAQAHADALGASNVRFEQANAYELPFDDDTFDVVYAHQLLQHLSDPVAALREMKRVTKPGGLVAARDADYAAMAWYPESPGLTEWNTLYHEVTRAYGFEPDAGRRLFSWVLQAGFDVAGTVPSASSWCYATPTDREWWGQVWAERCVESNFARQAQESNLADDVALEQLAHDWRTWAQAPDGWFAVLHGEVLARA				NA	NA	NA	NA	NA
AK001_00269	1140			hypothetical protein	ATGCCCACGGTCCGCGAACGTCTTCTCGGCGGTCCGGCGCGCGTGGTCGGGCTCGACGTGGCCCGCGGGCTGGCCGTGCTCGGCATGTTCACCGCCCACGTCGGTGTGATCGACGATTCGACGCTGTGGCTCACCATCGCCGACGGCCGCTCGTCGGTGCTGTTCGCGCTGGTCGCCGGGGTGTCGCTCGCCCTCGTCACCGGGGGTCCCCGCCCGGTGGCCGGCGACGCGCTGGTCCACGCCCGGGCGCGGCTGCTGGTTCGCGCGGTCCTGCTGCTGGCTCTCGTGGCGCTGCTGGACCTGCTGGGCACCCGCGTCCTGCTCATCCTCGGCTTCTACGCGACCTACTTCGTCCTGGCGCTGCCGTTCGTGACGTGGGGGCCGCGGCGGCTGGCCCTGGCCGCGGTCGTGGTGGCCGTCGTCGGGCCTCCGCTGGCCCACTGGGGCCCGGTGGCCCTGACCCGGGCCGGGCTGCACCTGCCCGACGACGGCTCGGGCGCGGTGACGGACTTCCTGCTCACGGGCCACTACCCCGCCGTGGTGTGGATGGCGTACGTGTTCGCCGGCATGGCCGTGGGGCGGTGCGACCTGTCCTCGGCCCGGCTGCGCCGCGGGCTGGTGCTCGGGGGCCTGGGGGCGGTGGTCGTGGGCAGCCTGCTGTCCGCGGAGGTCGTGGACCGCTTCGGCGGTCCGACCGCGGTGCGCGAGCAGGTCGAGTCGACCGTCACGCCCGGGTGGGCGTGGAGCGACCCCTGGCCGACGGCGGCCTACCTGGCCCTGCCCGGCCCGCACGAGGAGAGCTGGCTCGAGGTGCTGGCCACCGGCGGGTTCGCGCTGGCCGTGCTGGGGCTGTGCCTGGCCGTGACGGGCGTCGGGGCGTGGGTGCTGTCCCCGCTCGCGGCCGTGGGGGCCTTGGCGCTGACGGTCTACTCGCTGCAGATCGTGGCGATCTGGCACGGGGACCTGATCGACGCCGAGACCAACGGGCCGCTGCTGGCGATGATCGGGGTCTCGCTGCTCGCGGCCACCCTGTGGCGGCTGTGGCTCGGGCGCGGACCCCTGGAGCGGTTGTTCACCGCGGTGGCGCGACGCACCGCTCCCCCGCCGCCGCGCCAGGCCGCCGTCGGACCGGAGGAGTGA	MPTVRERLLGGPARVVGLDVARGLAVLGMFTAHVGVIDDSTLWLTIADGRSSVLFALVAGVSLALVTGGPRPVAGDALVHARARLLVRAVLLLALVALLDLLGTRVLLILGFYATYFVLALPFVTWGPRRLALAAVVVAVVGPPLAHWGPVALTRAGLHLPDDGSGAVTDFLLTGHYPAVVWMAYVFAGMAVGRCDLSSARLRRGLVLGGLGAVVVGSLLSAEVVDRFGGPTAVREQVESTVTPGWAWSDPWPTAAYLALPGPHEESWLEVLATGGFALAVLGLCLAVTGVGAWVLSPLAAVGALALTVYSLQIVAIWHGDLIDAETNGPLLAMIGVSLLAATLWRLWLGRGPLERLFTAVARRTAPPPPRQAAVGPEE				NA	NA	NA	NA	NA
AK001_00270	273			hypothetical protein	GTGGGCGTCATGAAGAACGGTGCGGAGCAGGACCCGGCGCGACGCCGGGCGAAGGCGGCGACCGGCCTGATGTGGCACGCCGGGGTGTTCGTCATCGTCAACGGTTTCCTCTGGGCCATCGACCTGGCCATGGATCCCGGGGTGAACTGGGCCTACTGGACCACGCTGCCCTGGGCGGTCGGTCTGGCCTTCCACGCGCTCGCGTACTTCATCGACGGCCGGCAGGTCGAGGACCGTCTCACACGGAAGTACGAGCAGCGCCAGGACCGGTGA	MGVMKNGAEQDPARRRAKAATGLMWHAGVFVIVNGFLWAIDLAMDPGVNWAYWTTLPWAVGLAFHALAYFIDGRQVEDRLTRKYEQRQDR				NA	NA	NA	NA	NA
AK001_00271	837	yddE	COG0384	putative isomerase YddE	ATGACGACGTTCCCCTTCCGCCAGGTCGACGTCTTCGGGGCCGGCCCGCTGGCCGGCAACCCGGTGGCCGTGGTGCACGACGCCGACGCCTGGGGCGAGGCGCAGATGGCGGCCTTCGCGCGCTGGACCAACCTGTCCGAGACCACGTTCCTGCTGCCCGCCACCGACCCGGACGCGGACTACCGGGTGCGCATCTGGACCCCGGGCGGTGAGCTCCCGTTCGCGGGCCACCCGACGCTGGGGACCGCGCACGCCTGGCTGGAGGCCGGTGGCGTGCCGGCCGGCGAGGACGTCGTCCAGGAGTGCGGGGTCGGGCTGGTGACCGTCGCACGGACCGCCGACGGGCTCGCGTTCGCGGGCCCGCCGCTGCGCCGGTCCGGTCCCGTGTCCGACGACGACCTCGGCCGCATCGTGCGCGGCCTGCGGATCGGGGCGGACGACGTCGTCGACGCCGCCTGGGTGGACAACGGGCCGGGCTGGGTCGGCGTGCGGCTGGCCGACGCCGCATCGGTCCTCGCCGTCGAGCCCGACCTCGCCGCCTTCGAGGGGCTCCACGTGGGGCTGGTCGGGTCGTACACGCCCGGGGAGTCCGACGCCGACGTCGAGGTGCGCGCGTTCGTGCCGGACATCGGCGTCCCCGAGGACCCTGTCACGGGGTCCCTGAACGCCGGGCTCGGCCAGTGGCTCGCCGGTTCCGTGCTGCCCGCGGGCTACGTGGCCTCGCAGGGCACGGTGCTCGGTCGGCGCGGCCGGGTGCGCGTGCGTCGCGCCGACGACGGCGTCGTCTGGGTCGGCGGGTCCACGGTCACGACCGTGCACGGCGAGGTCACGCTCTGA	MTTFPFRQVDVFGAGPLAGNPVAVVHDADAWGEAQMAAFARWTNLSETTFLLPATDPDADYRVRIWTPGGELPFAGHPTLGTAHAWLEAGGVPAGEDVVQECGVGLVTVARTADGLAFAGPPLRRSGPVSDDDLGRIVRGLRIGADDVVDAAWVDNGPGWVGVRLADAASVLAVEPDLAAFEGLHVGLVGSYTPGESDADVEVRAFVPDIGVPEDPVTGSLNAGLGQWLAGSVLPAGYVASQGTVLGRRGRVRVRRADDGVVWVGGSTVTTVHGEVTL	PGPT0024545_43	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNS	CE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728	NA	NA
AK001_00272	165			hypothetical protein	ATGGCCACCGTCGGGACGCAGTCGGACTTCGACCCGCACCAGGACGAGGTCGAACCCACACCGCACGTTCCCCTGGACACCTGGATCGAACGGCACGGCACCACGATCGGTCTGATCCTCGGGGCCGGGGCCGTGGTCATGACGCTGCTGCGGTACATGGACTGA	MATVGTQSDFDPHQDEVEPTPHVPLDTWIERHGTTIGLILGAGAVVMTLLRYMD				NA	NA	NA	NA	NA
AK001_00273	942			hypothetical protein	GTGACAGCGCCCTCCGCACTCGCCACTCACGGGCACCGTCCCGGCGCCGCGGACGACGCCGTCCCGGGCGTCGTCGTGGACGGTTGGCGCGCGCTCGACGCGGCGCACGCACGACGTGCCGACGCCCTGACCGCCGTGTGGCGCGCGGCGCGCGACCGCGGCGAGAAGCACGCGATCGAGGACTTCCTGTTCACCTACTACCCCACCCGGGCCAGCCATCTGCGCCGGTGGCACCCCGGCGTCGGGCAGGTGCTGCCCGACGCCCCGGACCACGCCGCCCGACGCTGGTACCGCACGGTCGCGTTGCCGGACGGCACCACCGGCGCCGTGCTCGACGTCCCCGTGTTCCGGGCCGACCGGGGCGACACCGTGCGGTACGTCCGCTCGCTGGTGGGCGCGACGGCGGGACGGCCGGGCACCTTCGGCTGCTTCGGGCTGCACGAGTGGGCCATGGTCTACCGCGACGCCGACGCCGGCCGGGACCACCGGCACCCCCTGCCGCTGCGCCTCGGGGGTGCCGGCACCGACGCGGTCGTCGAGTCGCACCGGGTGGGCTGCTCGCACTACGACGCCTTCCGGTTCTTCACCCCGGAGGCGCGGGACGCCAACCAGCTGCGCCCGACCCGCGAGCGCCAGGTCGCGATGGAGCAGCCGGGGTGCCTGCACGCGAACATGGACCTGTACAAGTGGTGCCAGAAGCTCGGCCCTGCCGTGCCCGGCGAGCTGCTGCTGGACGCCTTCGAGCTGGCCCGCGACATCCGGTACACCGACATGGCGGCCTCGCCCTACGACGTCTCGTCCTACGGCGTCGAGGCGGTCGAGATCGAGACGGCGGCCGGCAAGGCCGAGTACGTGCAGCGTCAGCGCGCGTTCGCCGAGCGGGCGCAGGCGCTGCGCGGCCGGCTGCTGGACGTGTGCGACGCCGTGCTCGCCGCGGGGTGA	MTAPSALATHGHRPGAADDAVPGVVVDGWRALDAAHARRADALTAVWRAARDRGEKHAIEDFLFTYYPTRASHLRRWHPGVGQVLPDAPDHAARRWYRTVALPDGTTGAVLDVPVFRADRGDTVRYVRSLVGATAGRPGTFGCFGLHEWAMVYRDADAGRDHRHPLPLRLGGAGTDAVVESHRVGCSHYDAFRFFTPEARDANQLRPTRERQVAMEQPGCLHANMDLYKWCQKLGPAVPGELLLDAFELARDIRYTDMAASPYDVSSYGVEAVEIETAAGKAEYVQRQRAFAERAQALRGRLLDVCDAVLAAG				NA	NA	NA	NA	NA
AK001_00274	735			hypothetical protein	ATGACGCTGCGACCGGTCCAGGTGAACATCAAGGCCCGCGACGAGGCGGCCCTGGGCCGGTTCTGGGCCGACGCCCTGGACTGGGCGACCTCCAGCGAGGCCCCCGGGGTGATCAACCTCGAACCCCGAGGGTTCGACTGGCCGGACCCGGCGGCCCTCACCGTCGACCTCGTGCGGATCCCGGACGCCGCCCGGGTGCGGTACCGCACCCACGTCGACCTCGCCACCACCTCCGTCGAGCACCAGGCCGAGCTGGTCGCCCGGCTGCGGGGCCTGGGCGCGACCCCGCTCGACGTTGGCCAGGGCGAGGTTCCCTGGGTGGTGATGGCCGACCCGGAGGGGAACGCGTTCTGCGTCCTGGAGCCCCGGCCGCTCGACCAGGACACCGGACCGGTCGCGGCCGTCGTCGTGCACTGCACCGACCCGCGCGGGCTGGCCCGGTTCTGGACGGCGGGCACCGACTGGGTCCTGCACGAGGCGACCGACGACCTCGCCCGGCTCCGGGCGCCGGAAAGGGTCGGCCCCTACCTGGAGCTCGTCCGGGTTCCCGAGGAGACGGTGTGGACCCGGGTGCACGTGGACCTGCTGCCGACCCCGGGGAGCGACCCGGCCGCCGACGTCGACCGACTGCGGACGCTCGGCGCCACCGACGTCGACCTCGGCCAGGGCGAGGTCCCCTGGGTGGTGATGGCCGACCCGGAGGGCAACGCGTTCTGCGTCCTGGGCGCGCGGTGA	MTLRPVQVNIKARDEAALGRFWADALDWATSSEAPGVINLEPRGFDWPDPAALTVDLVRIPDAARVRYRTHVDLATTSVEHQAELVARLRGLGATPLDVGQGEVPWVVMADPEGNAFCVLEPRPLDQDTGPVAAVVVHCTDPRGLARFWTAGTDWVLHEATDDLARLRAPERVGPYLELVRVPEETVWTRVHVDLLPTPGSDPAADVDRLRTLGATDVDLGQGEVPWVVMADPEGNAFCVLGAR				NA	NA	NA	NA	NA
AK001_00275	510			hypothetical protein	GTGGAGCTCGTCAACGGCGTCGAGCCGCCGGTCACGCTGGCCACCGAGGCGGACCTGGCCGCGTTCTACCGGCGCCACGGCTACACGGGGCGGCGCGACGGCACCGAGACCGAGCTGGCCGAGGTGCTGGCCCTCGCCCCGCGCCTGCGCACCCTGCTGCTGGCCGCGCGCGACGACGTCGCCCCGATCGTCAACGCGATGCTCGCCGAGGCCGGCGCCGTCCCGCGGCTCGTGCGGCACGAGCACGAGGACTGGCACCTGCACGCCATCGCCGACGACGCGCCCCTGGCCGACCGCATCGCCGTCGAGACCGCCCTGGCGATGATCGACGTCGTGCGCTCCGGCGAGAGCTCCCGGCTCGGCGTGTGCGCCGACGACGACTGCGCCGGCGTCGTCCTCGACCTGTCCCGGAACCGGTCCCGGCGGTACTGCTCGACCGCCTGCACCAACCGCAACGCCCAGGCCGCGCACCGCGCCCGGGCCACCGGCTCGTCGCCGCGCCCGCGATAA	MELVNGVEPPVTLATEADLAAFYRRHGYTGRRDGTETELAEVLALAPRLRTLLLAARDDVAPIVNAMLAEAGAVPRLVRHEHEDWHLHAIADDAPLADRIAVETALAMIDVVRSGESSRLGVCADDDCAGVVLDLSRNRSRRYCSTACTNRNAQAAHRARATGSSPRPR				NA	NA	NA	NA	NA
AK001_00276	993			hypothetical protein	ATGAGCACAGTGGCACCTGACGACCTCGTCGCGACCGACACCGGCCGGCGAGCGGGGCTGGTCCTGGCCGTCGTGTCGGCGGTGAGCTTCAGCCTCTCCGGACCGCTCGCCGCCGGGATGTTCGCCACGGGCTGGAGCCCCGGCGCGGTCGTGCTCGTCCGGGTGGCGGTCGGCGCGCTCGTGGTCCTCCCCGTCGGTCTGGTCGCCCTGCGGGGACGCTGGACGCTCGTGCGCCGCAACCTGCGGCTGATCGTCGTCTACGGCGCGCTCGGCGTCGCCGCCACGCAGTTCTGCTACTTCGCGGCCGTGCAGCACATGCAGGTCGGGCCGGCGCTGCTCATCGAGTACTCGGCGCCCGCCGCCGTGGTCGTGTGGCTGTGGCTGCGGCACGGTCAGCGGCCCGCCCGCGCGACGCTCGGCGGGATCGCGCTCGCCGCCGTCGGCCTCGTGCTGGTCCTCGACCTCACCGGGGTCAGCGTCGACCCCGTCGGTACCGCCTGGGCCCTGGGCGCGATGGTGGGCGCCTCCGCCTACTTCCTCATCAACGCCCGCCTGGACACCGGGCTGCCGCCGATGACGCTGGCCGCCGGCGGGCTCGTCGTCGGCGCGGGGCTGCTCGGTGCCCTGGCCGCCGTCGGGCTGCTGCCCCTGTCCGCCTCCACCGACGCGGTCCCGCTCGCCGGCTCCACCCTGCCCTGGTGGGCCGTGCTGGCGCTGCTGGGACTCGTCACCGCCGGGGTCGCGTACACCACCGGCGTCGCGGCCGGACGGCGGCTCGGCGCCCGGGCCGGCGCGTTCGCCGGTCTCCTCGAGGTCGTCAGCGCCGTCCTGCTCGCCTGGCTCCTCCTGGGCGAGCTGCCGAGCGGCGTCCAGCTCACCGGCGGCGTGCTGGTGCTCGCCGGCGTCGTCGCCGTCCAGCTCGCCGAGGCCGCGACCGCGCGGCGGCTCGCGACGGCCTCGCCCGCCGCCCGGGCGCGAGACCTGCCAGCATGA	MSTVAPDDLVATDTGRRAGLVLAVVSAVSFSLSGPLAAGMFATGWSPGAVVLVRVAVGALVVLPVGLVALRGRWTLVRRNLRLIVVYGALGVAATQFCYFAAVQHMQVGPALLIEYSAPAAVVVWLWLRHGQRPARATLGGIALAAVGLVLVLDLTGVSVDPVGTAWALGAMVGASAYFLINARLDTGLPPMTLAAGGLVVGAGLLGALAAVGLLPLSASTDAVPLAGSTLPWWAVLALLGLVTAGVAYTTGVAAGRRLGARAGAFAGLLEVVSAVLLAWLLLGELPSGVQLTGGVLVLAGVVAVQLAEAATARRLATASPAARARDLPA				NA	NA	NA	NA	NA
AK001_00277	744	neo		Aminoglycoside 3'-phosphotransferase	ATGGCCCGTGACCTCGCCGCCCCGCCGCGCGGACCTGTCGTCGTCCCGGAGGCCGTGGCCGCGCTGGCCGGCGCCGACGCCGTCACCCCGGTGTGGCGCAACACCCTGGGCGGCCTGACCTTCCGGCTCTCCGGCGACCGGGGCGACCGGTACGTCAAGTGGGTGCCCGCCGGGACACCGGAGCTCGACCCGGGCGCCGAGGCGGACCGTCTCGCCTGGGCCGGCCGGTACGCCCGGGTGCCGCGCGTGCTCGACCGTGGCGCGGACGCCGCCGGGAGCTGGCTGGTGACGGCCGCGCTGCCGGGCCGGTCCGCCGTCGACCCGTCCTGGCCGGCCCACCCGGAGACCGCCGTCCGCGCGATCGGGACCGGGCTGCGCGCGCTGCACGACGCCCTGCCCGTCGCGGACTGCCCGTTCTCCTGGAGCGCGGCGGACCGCATCGCGCGACTCTCGCCCGCCGGACGTGCCGACGTCGGGGGCGAACCGCCCGTCGACCGGCTCGTGGTCTGCCACGGGGATGCCTGCGCCCCCAACACCCTGGTCGCCGACGACGGCACCTGGGCCGGGCACGTCGACCTGGGCACCCTCGGGGTCGCGGACCGGTGGGCGGATCTCGCCGTGGCGAGCATGAGCCTGGGGTGGAACTTCGGCGAGGGGTACGAGCCGCTCTTCTTCGCGGCCTACGGCATCGAGCCCGACGCCGGGCGGCTCGCCTTCTACCGCCGCCTGTGGGACGCGGCGTAG	MARDLAAPPRGPVVVPEAVAALAGADAVTPVWRNTLGGLTFRLSGDRGDRYVKWVPAGTPELDPGAEADRLAWAGRYARVPRVLDRGADAAGSWLVTAALPGRSAVDPSWPAHPETAVRAIGTGLRALHDALPVADCPFSWSAADRIARLSPAGRADVGGEPPVDRLVVCHGDACAPNTLVADDGTWAGHVDLGTLGVADRWADLAVASMSLGWNFGEGYEPLFFAAYGIEPDAGRLAFYRRLWDAA	PGPT0028740_28	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028740-aphA-K00897	NA	NA
AK001_00278	2754			hypothetical protein	ATGACTGCCACCGACACCGCCGCCTCGTCCGTCGCCTCCGTCCCGCGCCCTGCCGGCACCCTGCTGCCGCACCTGCCCGCGCCCACCGGGCAGGCCCCGGACCCGGACGCGCTGTTCGAGGGGTTCAGCGAGTGGGCGGCCTCGACCGGTCGTCCGCTGTACCCGCACCAGGAGGAGGCGCTGCTCGAGCTCATGACGGGCTCGCACGTCGTCCTGGCCACGCCGACCGGGTCGGGCAAGTCGATGGTGGCGATGGGCGCGCAGTTCGCGGCCCTGGCGGCGCGCCGGTCCGGGATGGGCGGGCGCACCTACTACACGGCCCCGCTCAAGGCCCTGGTCAGCGAGAAGTTCTTCGACCTCGTGGCGGCGTTCGGGTCGCGCAACGTCGGGATGATGACCGGCGACAGCGCCGTGAACCCCGACGCCCCGATCATCTGCTGCACCGCCGAGATCCTCGCGAACCTCGCGCTGCGCAACGGCGCGGGCAGCCCGGGCCAGGACCAGTTCATCGGCCAGGTCGTCATGGACGAGTTCCACTTCTACGGCGACCCGCAGCGCGGCTGGGCCTGGCAGGTGCCGCTGCTGGAGCTGCCGCACACCCAGTTCCTGCTGATGTCCGGCACCCTCGGCGACACCAGCCGCCTGCGCGAGGACCTCACCGAGCGCACCGGCCGGGACGTCGCCGAGGTCACCGGCGCCGAACGACCGGTCCCGCTGGAGTTCTCCTACGTCCAGGACCCGCTGCCCGAGGTCATCGAGGAGCTGGTACACACCCACCGCGCCCCGGTGTACGTCGTGCACTTCACCCAGAAGGACGCCGTCGACCGCGCCCAGGCGCTGCTCAGCACCAAGCTCGCCTCCAAGGAGGAGAAGCAGGCGATCGTCGACGAGATCGGCGCGTTCCGGTTCGGCACCGGGTTCGGCAAGATCCTGTCCAAGTACCTGCGCGCCGGCGTCGGCGTGCACCACGCCGGGATGCTGCCCAAGTACCGCCGGCTCGTCGAGCGGCTCACGCAGAAGGGGCTGCTCAAGGTCGTCTGCGGCACCGACACGCTCGGCGTGGGCATCAACGTCCCGATCCGCACGGTGCTCATGACCTCGCTGGTGAAGTTCGACGGCGAGCGCATGCGGCACCTGACCGCCCGCGAGTTCCACCAGATCGCCGGCCGGGCCGGTCGCGCCGGGTACGACACCCTCGGCGAGGTGCTCGTCATGGCGCCGGAGCACGTCATCGAGAACCGCAAGGCGCTCGCCAAGGCCGGTGACGACCCCAAGAAGAAGAAGAAGATCGTCCGCAAGAAGGCGCCGTCGGGTGCGGTCAACTGGACCGAGTCGACGTTCGAGCGCCTGCGCGACGCCCCGCCGGAGCCGCTGGCCAGCCAGTTCCACGTCAACCACGCGATGGTGCTCAACGTGCTGGCCCGCACGCGGCCCGACGGCGGGTCGGGGCACGACGGCGGCACGTCCGGCCCCGCTGTCGACCCCGTCGAGGCGATGCGCCACCTGCTCACCGCCAACCACGACACCGCCGCCCAGCAGGCCGGGCACGTGCGCCAGGCCCTGCGGATCTACCGCTCCCTGCGCGTGGCCGGCGTCGTGGAGAAGGTGCACGTCCCCGACGACTCCCGCCCCGCGGGCTACCGCCCCAGCGTGCGGCTCGAGGTCGACCTGCCGCGCGACTTCGCGCTCAACGCTCCCCTGTCGCCGTTCGCGCTGGCGGCCATGGACCTGCTCGACGTCGAGTCGCCCACGCACGCCCTCGACGTCGTCTCCGTCATCGAGGCCACCCTCGACGACCCCCGCCAGATCCTCTTCGGCCAGCAGAAGAAGGCCCGCGGCGAGGCCGTCGCCGCGATGAAGGCCGAGGGCATCGAGTACGACGAGCGCATGGAGCTGCTCGAGGAGGTCACCTGGCCCCGGCCGCTGGCCGACCTGCTCGAGCCCGCGTTCGCCCAGTACAAGCAGTCCAACCCGTGGGTCGCGGGCGCCGAGCTGGCTCCCAAGTCCGTGGTGCGCGACATGCTCGAGCAGGCCATGACGTTCGCCGAGCTGGTCAGCACCTACGGCCTGGAGCGCACCGAGGGCGTCGTGCTGCGCTACCTCGCGGACGCCTACCGGGCGGTGCGCCAGGTCGTGCCCGAGGAGCACCGCACCGAGGAGGTCGCCGAGATCGTCGAGTGGCTCGGCGAGCTCGTGCGCGGCGTCGACTCCTCGCTGCTGGACGAGTGGGAGCGGCTGCAGAACCCCGTCGACGACGATGCCGACGACGTCGTCCAGGGCGAGCTGGCCGAGGCCGGGGCCGAGGCGCCGGCGCGCCCCGTCACGGGCAACCCGCGCTCGTTCCGCCGCCTCGTGCGCAACGCCATGTTCCGCCGCGTCGAGCTCGCCGCCCGCGAGGACTACGACGCCCTCGAAGCCCTCGACAAGGCCTCCGGCTGGGACGGCGACGCCTGGGCCGACGCCCTGGAGGACCTGTTCGAGACCCAGGGCGACGACGCGATCGGGTTCGGGGCGGACGCCCGCGCCACCGCGCTGCTGACCATGCTGGAGCCGGGGGCCGCGCTGCCCGCCGACGCGACGACGTCGGACGGCGAGGCCCTGTCGACCGTGCCGGCCGACACCTGGTGGGTGCGCCAGGTCCTCGACGACGCGAACGGCGACCGGGACTGGTCGATCACCGCGCTGGTCGACCTGCCGGCCTCGGACGAGGCCGGGCGACCGGTGGTCCAGGTGCTCTCGGTCGGGCGCCGGTAG	MTATDTAASSVASVPRPAGTLLPHLPAPTGQAPDPDALFEGFSEWAASTGRPLYPHQEEALLELMTGSHVVLATPTGSGKSMVAMGAQFAALAARRSGMGGRTYYTAPLKALVSEKFFDLVAAFGSRNVGMMTGDSAVNPDAPIICCTAEILANLALRNGAGSPGQDQFIGQVVMDEFHFYGDPQRGWAWQVPLLELPHTQFLLMSGTLGDTSRLREDLTERTGRDVAEVTGAERPVPLEFSYVQDPLPEVIEELVHTHRAPVYVVHFTQKDAVDRAQALLSTKLASKEEKQAIVDEIGAFRFGTGFGKILSKYLRAGVGVHHAGMLPKYRRLVERLTQKGLLKVVCGTDTLGVGINVPIRTVLMTSLVKFDGERMRHLTAREFHQIAGRAGRAGYDTLGEVLVMAPEHVIENRKALAKAGDDPKKKKKIVRKKAPSGAVNWTESTFERLRDAPPEPLASQFHVNHAMVLNVLARTRPDGGSGHDGGTSGPAVDPVEAMRHLLTANHDTAAQQAGHVRQALRIYRSLRVAGVVEKVHVPDDSRPAGYRPSVRLEVDLPRDFALNAPLSPFALAAMDLLDVESPTHALDVVSVIEATLDDPRQILFGQQKKARGEAVAAMKAEGIEYDERMELLEEVTWPRPLADLLEPAFAQYKQSNPWVAGAELAPKSVVRDMLEQAMTFAELVSTYGLERTEGVVLRYLADAYRAVRQVVPEEHRTEEVAEIVEWLGELVRGVDSSLLDEWERLQNPVDDDADDVVQGELAEAGAEAPARPVTGNPRSFRRLVRNAMFRRVELAAREDYDALEALDKASGWDGDAWADALEDLFETQGDDAIGFGADARATALLTMLEPGAALPADATTSDGEALSTVPADTWWVRQVLDDANGDRDWSITALVDLPASDEAGRPVVQVLSVGRR				NA	NA	NA	NA	NA
AK001_00279	765			hypothetical protein	GTGGGGGCCGTGCTCGCCCTCCTCGTCCTCGCCATCCTCGTCGGTGGTGTCCTGCAACGGGTGACGGGCATGGGGTTCGGCCTCGTGGCCGGACCGTTCATCGTGCTCATCGTGGGCCCGCTCGAGGGCGTGCTGTTCGTGAACCTCGCCGGGGCGACGGCCTCGGCCCTGATCCTCGGCCGCGTCGTGCGCGACGTGGAGTGGCGCAAGTTCGCCTGGCTCACGCTGTCCTCGCTGGTCGTGACCGTGCCCGCGGCGCTCGCCCTGCGCGACGTCAGCGCCCCGGCGCTCGAGGTGACGATCGGCCTGTTCATCCTCGCGGCGATGACGCTGGCGGTGCTCACGACCCGGCTGCGCCGCGAGGGCAGGCACCCCGTGGACCCCGCGGCCGGCTGGCCGCTGGCCCTGACCGGCACGGCGAGCGGCATCGGCTCGGTCGCGGCCGGCATCGGCGGGCCTCCCGTGGCGGTCTACGCGGTGCTCAGCGGCTGGGACCCGCGGCGCTTCGCCGCCACCGCCCAGCCCTTCTTCGCCGCCAACGCGCTCGCCGCCCTGGTGGCCAAGCTGGTGCTCGCCGACGCCTCGTTCCCGACCATGGCCCCCTGGCAGTGGGTGCTGCTCATGGTCTCGATCCTCGGCGGGCTCGTCCTGGGCGACCTGCTCGCGCCGCGCGTCTCGGCCACGGCCACCCGACGCGTGCTCATCCTGCTGGCGTACGTCGGCGGCGTGGCCACGCTGGCGCGCGGCGTCACCGGCCTGGTCTGA	MGAVLALLVLAILVGGVLQRVTGMGFGLVAGPFIVLIVGPLEGVLFVNLAGATASALILGRVVRDVEWRKFAWLTLSSLVVTVPAALALRDVSAPALEVTIGLFILAAMTLAVLTTRLRREGRHPVDPAAGWPLALTGTASGIGSVAAGIGGPPVAVYAVLSGWDPRRFAATAQPFFAANALAALVAKLVLADASFPTMAPWQWVLLMVSILGGLVLGDLLAPRVSATATRRVLILLAYVGGVATLARGVTGLV				NA	NA	NA	NA	NA
AK001_00280	492	ybaK	COG2606	Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaK	GTGGCCCGCTCCAAGACCCGTGGATCGACCCCCGCCGTGCTCGCGCTCGAACGGGCCGGGGTCGCGCACGCGCTGCACCCGTACGAGCACGACCCCCGCAGCGGGCTGAGCTTCGGCCTCGAGGCCGCCGCGGCGATCGGGGTCCCGGCCGAGCAGGTGTTCAAGACGCTCGTCGCGGACGTCGACGGGGATCTCGTGGTCGCCGTCGTCCCCGTGACCGGCGAGCTCGACCTCAAGGCGCTCGCCCGCGCCGTCGGCGGCAAGAAGGCCGCCATGGCCGCCGTGCCCCGCGCCGAACGCGCCACCGGCTACGTCGCGGGGGGCATCTCTCCCCTGGGCCAGCGGGCGCGGCACACCACGGTCGTGGACGCGTCGGCCGCGTCGTTCGACGCCGTCTACGTCTCGGGCGGACGCCGGGGGCTCGACGTGTCGCTGGCTCCCGCCGACCTGGTGCGCCTCACCGACGCCACGACCGCACCCCTCGGGCGCTGA	MARSKTRGSTPAVLALERAGVAHALHPYEHDPRSGLSFGLEAAAAIGVPAEQVFKTLVADVDGDLVVAVVPVTGELDLKALARAVGGKKAAMAAVPRAERATGYVAGGISPLGQRARHTTVVDASAASFDAVYVSGGRRGLDVSLAPADLVRLTDATTAPLGR				NA	NA	NA	NA	NA
AK001_00281	402	yccF	COG3304	Inner membrane protein YccF	GTGAAAGCGATCCTGAACGTCATCTGGCTGGTGCTCTCGGGCTTCTGGCTCGCCCTCGGCTACGTGCTCGCGGGCCTCATCTGCTGCGTGCTCATCGTGACGATCCCCTGGGGGATCGCCTCGTTCCGGATCGCCGGCTACGCGCTGTGGCCCTTCGGCCGCACCGTCGTCGACCGGCCCGGGTCCGGGGCGTTCTCGGTGCTGGGCAACGTCGTCTGGCTGGTCTTCGCGGGCTGGTGGCTGGCGCTGAGCCACATCATCACCGCGATCCCGCTGTTCGTGTCGATCATCGGCATCCCGCTGGGCATCGCGAACCTCAAGATGATCCCGATCTCGCTGCTGCCGCTCGGCAAGGACATCGTCTCGACCGACACGCGGTACCCCACCTACCGCCCGGCCTGA	MKAILNVIWLVLSGFWLALGYVLAGLICCVLIVTIPWGIASFRIAGYALWPFGRTVVDRPGSGAFSVLGNVVWLVFAGWWLALSHIITAIPLFVSIIGIPLGIANLKMIPISLLPLGKDIVSTDTRYPTYRPA				NA	NA	NA	NA	NA
AK001_00282	750	yggS	COG0325	Pyridoxal phosphate homeostasis protein	ATGCCGTCCGACCTGACCGACCTGATCGCCCGTGTGCGCGCGCGCGTCGACCACGCCGCCACCGCCGCGGGACGCCGACCCGCCGACGTGCGCCTGATGCTCGCCACCAAGACCCAGGACGCCGAGACCGTGCTGGCCGCGGTCGCCGCGGCCACGGAGCTCGCCGCCGGCCGCGGGGACGACGGCCCGGTCCTGATCGGCGAGAACCGGGTCCAGGAGCTGGTCGCCAAGGCCCCCGCCCTGGCCGACCTGGTCGCGGCCGGCCGCCTCGACGTGCACATGATCGGGTCGCTGCAGCGCAACAAGATCAACCAGATGCTGCCGACCGTCACCGGCCTGGCCGGCGTCGACCGGCTCTCGCTGGCGCAGGCCGTGGCCCAGCGGTGCGTCCGCGACGGGCGCACCCTCGACGTCATGGTCCAGGTCAACGTCTCCGGGGAGGCCTCGAAGTCCGGTGCGGCGCCGTCGGACGCCGTGGACCTGGCCTCGGCCGTGGCGGCCCTGGACGGCCTGCACCTGACCGGCTTCATGACCATCGGCGCGAACACCTCCGACGAGGCGCAGGTGCGGGCCGGGTTCGCGCGGCTGCGCGAGATCCGTGACGAGGTCGTCGCCTCCGGTGCGCCGGGGACCGCCGACGCCCGCGAGCTGTCGATGGGCATGTCCACCGACCTCGAGCTCGCCGTGGCCGAGGGGGCCACGATCGTGCGCGTCGGCACGGCGGTGTTCGGCGAGCGCCCACCCGCCTGA	MPSDLTDLIARVRARVDHAATAAGRRPADVRLMLATKTQDAETVLAAVAAATELAAGRGDDGPVLIGENRVQELVAKAPALADLVAAGRLDVHMIGSLQRNKINQMLPTVTGLAGVDRLSLAQAVAQRCVRDGRTLDVMVQVNVSGEASKSGAAPSDAVDLASAVAALDGLHLTGFMTIGANTSDEAQVRAGFARLREIRDEVVASGAPGTADARELSMGMSTDLELAVAEGATIVRVGTAVFGERPPA				NA	NA	NA	NA	NA
AK001_00283	1089	lipM		Octanoyltransferase LipM	GTGCATGGTGAGTACAAGGTCCCCGGTGGCAAGCTCGTCGCGGTCGACCTCGAGGTCGACGACTCCTCCGACCCCGCCGTCCTGACGGCGGTGCGCCTGTCGGGCGACTTCTTCCTCGAGCCCGACGAGGCGCTGGGCGTCATCGACACCGCGCTGACCGGCCTGCCGGCCTCGACCGGCACCGGAGAGCTGCAGCGCACCGTCACCGAGGCGCTGGAGAAGGCCGAGCTGTCCGGCGAGATCGCCGGCCCGGTCGCGATGGTCGGCTTCGACGCCCGTGCCGTGGCGGTCGCCGTGCGCCGGGCCCTGGGCCTGGCCACGACGTGGCAGGACCACACCTTCGAGGTGCTGCGTCCCGGCCCGCTGCCGCCGCGCACGCTCGCCGCGCTCGACCAGGTGCTGACCGAGGAGCTCGCCGCCGGCCGACGCGGCCCGACCCTGCGGTTCTGGGACTGGGACGAGCGGGCCGTGTTCATCGGGTCCTTCCAGTCCTACCGGAACGAGATCGACGAGGACGGCGTGGCCGAGCACGACGTCACGGTCGTGCGGCGCATCTCCGGCGGCGGGGCGATGTTCATGGAGGCCGGCAACTGCGTGACGTTCTCGCTCGTCGTGCCGGGCTCGCTCGTCGACGGGATGAGCTTCGAGCAGTCCTACGCCTTCCTGGACGCCTGGGTGCTCGGCGCGCTCGGCGAGCTGGGCGTCGAGGCCTACTTCAGCGGCATGAACGACGTCGCCTCACCGGGCGGCAAGCTCGCCGGCTCCGCCCAGAAGCGGCTCGCCGGTGGAGCGGTGCTGCACCACATGACGATGGCCTACGACATCGACGCCGACAAGATGATGCAGGTGCTGCGCATCGGCCGCGAGAAGATGTCCGACAAGGGCACCCGCAGCGCCAACAAGCGCGTCGACCCGCTGCGCTCCCAGACCGGCCTGGCCCGCGACGAGGTCGTGCAGGCCTTCGCGGCCTACTTCGCCGACCGGCACCGCACCGAGTCCTCCGACCTGCGTGCCGCGGAGCTCGAGCGGGCCGAGGACCTGGTGCGCACGAAGTTCGACACCGCCGAGTGGATCCACCGGGTGCCCTGA	MHGEYKVPGGKLVAVDLEVDDSSDPAVLTAVRLSGDFFLEPDEALGVIDTALTGLPASTGTGELQRTVTEALEKAELSGEIAGPVAMVGFDARAVAVAVRRALGLATTWQDHTFEVLRPGPLPPRTLAALDQVLTEELAAGRRGPTLRFWDWDERAVFIGSFQSYRNEIDEDGVAEHDVTVVRRISGGGAMFMEAGNCVTFSLVVPGSLVDGMSFEQSYAFLDAWVLGALGELGVEAYFSGMNDVASPGGKLAGSAQKRLAGGAVLHHMTMAYDIDADKMMQVLRIGREKMSDKGTRSANKRVDPLRSQTGLARDEVVQAFAAYFADRHRTESSDLRAAELERAEDLVRTKFDTAEWIHRVP	PGPT0003945_236	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCE	PLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003945-lplA|lplJ|lipL1-K03800	NA	NA
AK001_00284	1656	cimA	COG0119	(R)-citramalate synthase	ATGGCCACCGCCCCGTTCCACGTGTACGACACCACCCTGCGCGACGGCGCGCAGCAGGAGGGCATGAACCTCTCCGTCGCGGACAAGCTCGCGATCGCGCCGCTGCTCGACGAGCTCGGTGTGGGCTTCATCGAGGGTGGCTGGCCGGGCGCGATCCCCAAGGACACCGAGTTCTTCCGTCGCGCCGCCAAGGAGCTCGAGCTCAGCAACGCCGTGCTGGCGGCGTTCGGCTCCACCCGGCGCGCCGGCACCCGCGCCTGGGACGACCCGCAGGTCCGCGCGCTGCTCGACTCCGAGGCGCCGGTGGTCACGCTCGTGGCCAAGTCCGACGTCCGGCACGTCGAGCGGGCGCTGCGCACGACGCCGGACGAGGGCCTGGCGATGATCAGCGACACCGTGCGGTTCCTCGTGGGCGAGGGCCGCCGCGTCGTCGTCGACGCCGAGCACTTCTTCGACGGCTACCGGGACGACCCGGCCTACACGCGCTCCGCCGTGGAGGCAGCCTTCGAGGCCGGCGCCGAGGTCGTCGCCCTGTGCGACACCAACGGCGGCATGCTCCCGGACTGGGTGACCGACGTCGTCGGCGAGCTGCGCACGGCCCTCGACCTGCCGCACGGGCGCGACGCGCTGCCCGGCGACCCGCTGCTGGGCATGCACGCGCACAACGACTCGGGCTGCGCCGTGGCCAACACCCTCGCCGCCGTCGAGGCCGGGTGCGCCCACGTCCAGGGCACCGTCAACGGCTACGGCGAGCGCACGGGCAACGTCGACCTCGTGGCCGTCGTCGCGAACCTGGCCCTCAAGCGCGGCCTGCCCACGCTGGCCGGCGACGGGCTCGCCGACTCCACCCGGATCGCGCACGCCGTCGCCGAGATCACCAACATCGCGCCGTACACGCGCCAGCCGTACGTCGGGTCCAGCGCGTTCGCGCACAAGGCCGGCCTGCACGCCAGCGCCATCAAGATCGACCCCGACCTCTACCAGCACATCGACCCCACCGCCGTCGGCAACGACATGCGCATGCTCGTCTCCGACATGGCCGGCCGGGCGTCGGTGGAGCTCAAGGGCCGCGAGCTCGGCTTCGACCTGGCCGGGCAGGGCGAGCTGCTCACCCGGGTGACCAACCGGGTCAAGGACGCCGAGGCGCAGGGCTACACGTTCGACGCCGCGGACGCCTCCTTCGAGCTCATCCTGCGCGAGGAGCTCACCGGCCGGCGGCCCGCCTACTTCCAGGTCGAGTCCTGGCGCGCGATCGTCGAGACCACCGGCGGGCGCACCGGCGGGGTGCCCGACGCGGACCGGCGCGACGCCGAGGCGCTGGCCGAGGCGACCGTCAAGCTGCACGCCGGCGGGGAGCGCATCGTCGTCACCGGCGAGGGCAACGGCCCGGTCAACGCCCTCGACCAGGCGCTCCGGCACGCCCTGACGCGCGTCTACCCGACCATCGAGAAGTTCGAGCTCGTGGACTTCAAGGTGCGGATCATGGACGCCGAGCACGGCACCGACGCGACCACCCGGGTGCTGGTCGAGACCACCGACGGCCACCACACCTGGTCGACCGTCGGCGTCGGGCCCAACATCATCGAGGCCGCCTGGGAGGCGCTGATCGACGCGCACGTCTACGGGCTGCTGCACGCCGACGTCGCTCCCCGCTGA	MATAPFHVYDTTLRDGAQQEGMNLSVADKLAIAPLLDELGVGFIEGGWPGAIPKDTEFFRRAAKELELSNAVLAAFGSTRRAGTRAWDDPQVRALLDSEAPVVTLVAKSDVRHVERALRTTPDEGLAMISDTVRFLVGEGRRVVVDAEHFFDGYRDDPAYTRSAVEAAFEAGAEVVALCDTNGGMLPDWVTDVVGELRTALDLPHGRDALPGDPLLGMHAHNDSGCAVANTLAAVEAGCAHVQGTVNGYGERTGNVDLVAVVANLALKRGLPTLAGDGLADSTRIAHAVAEITNIAPYTRQPYVGSSAFAHKAGLHASAIKIDPDLYQHIDPTAVGNDMRMLVSDMAGRASVELKGRELGFDLAGQGELLTRVTNRVKDAEAQGYTFDAADASFELILREELTGRRPAYFQVESWRAIVETTGGRTGGVPDADRRDAEALAEATVKLHAGGERIVVTGEGNGPVNALDQALRHALTRVYPTIEKFELVDFKVRIMDAEHGTDATTRVLVETTDGHHTWSTVGVGPNIIEAAWEALIDAHVYGLLHADVAPR				NA	NA	NA	NA	NA
AK001_00285	1218			hypothetical protein	ATGCACCACGCGACCACGACCACCGCCGCGCCGGACACCCCGGCGTCGACCGGACGCACGGGCCTCTGGCTCGTCGGCGCCCGCGGCTCGGTGGCCACCACCGCCACGCTCGGCCTTGCCGCGCTCGCCGCCGGGCACGCCCGGCCGACCGGCTGCGTCACCGCCGCCGAGCCGTTCGACGGCCTCGCGCTGCCCGCGTTCGGCGACCTCGTCGTCGGCGGGCACGACGTCGCGCCCACGACGATGGTCAAGCAGGCCGAGGCGCTCGCCGCCGCCGGGATGATCCCCGGTCACCTGCTGTCCGCCACCCGCGACGCGCTCGCCGCGGCCGACGCCGAGGTCCGCCCCGGGTACGACCCCCGCCAGCACCACGGGTCGCAGCAGGAGGCCGCCGAGGCGCTGGCCGCCGACCTGACCGCCTTCCGCCGGACCCACGACCTGGACCGGGTCGTCGTCGTCGACGTCGCCTCGACCGAACCGCCCCTGGACCTGCTCCCCGAGCACGAGGACCCGGCGCTCCTGCGCGCGGCGCTGGCCGACCCCGACCAGGCCGTGCTCCCGGCGTCGTCGGTGACCGCCTACGCCGCGGTGCTGGCCGGCTGCGCGTACGCCTCCTTCACGCCGTCGGCCGGGATGACCGTGCCCGTGCTGGCGCGCTGGGCCGCCGAGGCGGGCCTGCCGGTGGCCGGCCAGGACGGCAAGACCGGGCAGACCTGGCTGCGCACCGTCCTGGCGCCCGCCTTCACCGCCCGCGGGATGCGCGTGCTGTCCTGGGCCGGCACCAACCTGCTCGGCGGCGGCGACGGCGCCACCCTGGCCGACCCCGTGGCCGCCCGCAGCAAGCTCACCTCCAAGAACCGCGGCCTGCGCGACCTCACCGGCACCGACGTCACCCCGCTGCACATCGACAACGTGCCCGACCTCGGCGACGTGAAGGTCGCCTGGGACCACGTGCACGTCGAGGGCTTCCTCGGCTCGCGCCTGACCCTGCAGACGACCTGGAGCGCCCACGACTCCATGCTCGCCGCCCCGATGATCCTCGACCTGGCCCGCCTGCTCGCGCTGGCCCACGCCGCCGGGGTCTCCGGCCCGGTGCCCGAGCTCGGCTACTTCTTCAAGGACCCCTGGGGCTCCGACGTGCACGGCGCCGCCGCCCAGGCGATCCAGCTGGCCGACTGGGCCCGCCGCACCGCGGACGCCGCGGAGCACCGGCCGTGA	MHHATTTTAAPDTPASTGRTGLWLVGARGSVATTATLGLAALAAGHARPTGCVTAAEPFDGLALPAFGDLVVGGHDVAPTTMVKQAEALAAAGMIPGHLLSATRDALAAADAEVRPGYDPRQHHGSQQEAAEALAADLTAFRRTHDLDRVVVVDVASTEPPLDLLPEHEDPALLRAALADPDQAVLPASSVTAYAAVLAGCAYASFTPSAGMTVPVLARWAAEAGLPVAGQDGKTGQTWLRTVLAPAFTARGMRVLSWAGTNLLGGGDGATLADPVAARSKLTSKNRGLRDLTGTDVTPLHIDNVPDLGDVKVAWDHVHVEGFLGSRLTLQTTWSAHDSMLAAPMILDLARLLALAHAAGVSGPVPELGYFFKDPWGSDVHGAAAQAIQLADWARRTADAAEHRP				NA	NA	NA	NA	NA
AK001_00286	912	cyoE		Protoheme IX farnesyltransferase	GTGAGGGCCGGCGACCTCGTCGAGCTCGTCCGCGCCCCGGCCGCCCTGACCGTGCTGGGCGACACCCTCGCCGGGATGGCCGCCGCCCCGCCGGCCACGCGCCGGGCACGGCACGGGCTGCTGCCCGTCGCCTCGGCCTGCCTCTACCTGGGCGGCATGGCGCTGAACGACTACGGCGACCGCGACCTCGACGCGCTCGAGCGCCCCGAGCGCCCGATCCCGTCCGGCCGGGTGACCCCGGGCCAGGCGCTCGCCGTCGGCACGGGGCTCGTCGCGACCGGCGTCGTGGCCGCGGGGGTCGCGAGCGGACGACGCGGGCTCGGGGTGGCGCTGCCGCTCGCGGCCTGCGTGCTCACCTACGACCTCGCCGCCAAGGACCGGCCGGCCGGCGCGGTCGTCATGGCCGCCTGCCGCGGCCTGGACGTCCTGCTGGGCGCGACACCGACCTCGTGGCGGGCGGCCGCCCCGACCGCCGCCGTGTTCTTCACCCACACGCTGGCCGTGACCGCGCTGTCCCGGGGCGAGGTCCACGGCACGACCAGCACGGTGGCCCGCTGCGCCGTCGCCGGCACGACGGCGGCCGCGACCGCGACCGCCGCCGCGGCCCTGCGGCCCGCGACCGCCCGGCCCGCCGCCTCGCGGTCCGGTGCGGTGACCCGGACGCTCGGCGCCCTGGCCGCCACGGCCGGGTACGTAGCCATGTGCCTGCCGCCCCAGCTGCACGCGGCCGAGGACCGGTCGGCCGGGGCGGCCCGCGCCGCGACCGGGGCCGGCATCCAGGCGATGGTCCCGCTGCAGGCCGCCTGGACGCTGCGCGGGGGCCGGGCGGCGAGCACCGCCGTGCTCGCGGGCGCCCTGGTCGCCGGGCGCCTGCTGCGCCGCCGCGGCCGCAAGCAGGTGAGCATCACGTGA	MRAGDLVELVRAPAALTVLGDTLAGMAAAPPATRRARHGLLPVASACLYLGGMALNDYGDRDLDALERPERPIPSGRVTPGQALAVGTGLVATGVVAAGVASGRRGLGVALPLAACVLTYDLAAKDRPAGAVVMAACRGLDVLLGATPTSWRAAAPTAAVFFTHTLAVTALSRGEVHGTTSTVARCAVAGTTAAATATAAAALRPATARPAASRSGAVTRTLGALAATAGYVAMCLPPQLHAAEDRSAGAARAATGAGIQAMVPLQAAWTLRGGRAASTAVLAGALVAGRLLRRRGRKQVSIT				NA	NA	NA	NA	NA
AK001_00287	903			hypothetical protein	GTGAGCGGCTCCGCCTCCTCGTCCCCGCTCCCCTTCGCGATCGGCTACGGCACGAACGGGTTCGGGGACCACCCGCTGCCGTCCGCCCTCGACGTCCTGGACGCCCTGGGCTACGACGCCGTCGCCCTGACGGTCGGCCACCCGCACCTCGACCCCTTCGCGCCCGGGTCGTCGCAGACGACGGAACGGCTGGCGCGGCGGCTCGGCCGGATGCGCGACGGTGCCGGTGCCGCCGTGGTCGTCGAGACCGGCACCCGGTTCACGCTCGACCCGTGGACCAAGCACCGTCCGACGCTCGTCGACGCCGAGGCCGGGCTGCGGATGCGCTACCTGACCCGGGCGATCGACGTCGCCGCGACGCTGGACGCGCGCTGCGTGTCGTTCTTCTCCGGCGTGCTGCCCGAGGACGACCGTCCCGCCGACGGGTGGGCCCGGCTGGTCGACCGGCTCCCCGTGCTCCTGGAGGAGGCCCGGGAGAGCGGGGTGCGCCTGGCGATCGAGCCCGAGCCGGGCATGCTCGTCGAGACCGTGGAGGACGCCCTGCGCCTGCGGTCCGCGCTCGGCGACCCGGACGACCTGGGACTGACCGTCGACGTCGGGCACTGCCTCGTCGTCGAGCCCGACGGCGTGGTCGGGGCCCTGCGCGCCGCGGCCCCCGTGCTGGCCAACGTCCAGCTCGACGACATGCCGCGCACGCACCACGAGCACCGGCCGTTCGGCGAGGGCGACCTCGACCTGCCGCTGGTGCTGGCCACGCTCGCCGAGATCGACTACCGCGGCGTCGCCGCCGTCGAGCTCCCCCGCCACTCCCACGACGCCCCGGCGCTCGCCCGCCGCAGCCTGGCCGCGCTGCGGCAGGCCTGGGCGGACGTCGTCGGGCACCCCCCGGAGGCCACCTCATGA	MSGSASSSPLPFAIGYGTNGFGDHPLPSALDVLDALGYDAVALTVGHPHLDPFAPGSSQTTERLARRLGRMRDGAGAAVVVETGTRFTLDPWTKHRPTLVDAEAGLRMRYLTRAIDVAATLDARCVSFFSGVLPEDDRPADGWARLVDRLPVLLEEARESGVRLAIEPEPGMLVETVEDALRLRSALGDPDDLGLTVDVGHCLVVEPDGVVGALRAAAPVLANVQLDDMPRTHHEHRPFGEGDLDLPLVLATLAEIDYRGVAAVELPRHSHDAPALARRSLAALRQAWADVVGHPPEATS	PGPT0017530_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATION	PLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079	NA	NA
AK001_00288	678			hypothetical protein	ATGACCGACACCTGGATCGACCGGGCCCGGGCCGACGTCGCCCGCGACCCGCGGACGCTGACCCGCCTGTTCGCCCTCGCGCCACGACGCGCCGGCCGAGGCCCCCACGACCCGCAGGGCGACCCGCACGGCGTCGTGCGGGGTACCGCCGAGGACGACGCGCGCGCCGCCCTCGTCGTCGCGCTGGTCCGCGGCGTCGACGGCACCGGCAGCGACACCGGCGACGCGACGGCCGCGCGGCTGCGCGAGCTCTACGACCGGGGCGACACCGGCGAGCGCCGGGGCGTGCTGCGCGGTCTGGACGCCCTCGAGGCCGCCGGGGGCGTCCCCGGAGGCTCGCCGCTGGCGCGCACCGGCGTCGAGCTCGCCCACGACGCCCACCGCGCCAACGACCCGTCCCTGGTGGCCGCCGCCGTCGGCCGGTTCGGCGGGCGGCACCTGGACCAGCACACCTGGCGGCACACGGTGCTCAAGCTCGTGTTCCTGGGCGTCCCCCTGGACGCCGTCGCCGGGCTGACCGACCGGCTCGACGACGAGACCGTCCGCATGGCGTCCGACTTCGCCGCCGAACGGCGCGCGGCCGGCCGGCCGGTCCCGGACGACGTCGACCGGATCCTGCACCCCCTCACCCCCGGCCGGCCCGCGCCGACCGCCCCGACCCCGAGCACCGCGGAGTGA	MTDTWIDRARADVARDPRTLTRLFALAPRRAGRGPHDPQGDPHGVVRGTAEDDARAALVVALVRGVDGTGSDTGDATAARLRELYDRGDTGERRGVLRGLDALEAAGGVPGGSPLARTGVELAHDAHRANDPSLVAAAVGRFGGRHLDQHTWRHTVLKLVFLGVPLDAVAGLTDRLDDETVRMASDFAAERRAAGRPVPDDVDRILHPLTPGRPAPTAPTPSTAE	PGPT0018975_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_FRUCTOSELYSINE_BIOSYNTHESIS,PGPT0018975-frlC-K10709	NA	NA
AK001_00289	876			hypothetical protein	ATGCGCATCTTCGACCCGCACATCCACATGACCAGCCGCACCACCGACGACTACGAGCGGATGTACGCCGCCGGGGTCCGCGCCGTCGTCGAACCCGCGTTCTGGCTCGGCCAGCCGCGCACCAGCGTGGCCTCCTTCTGCGACTACTTCGACTCCCTCGTGGGCTGGGAACGGTTCCGGGCCGAGCAGTTCGGCATCCGCCACCACGCGACCATCGCCCTCAACCCCAAGGAGGCGAACGACCCGCGCTGCCGCGACGTGCTGGACGAGGTGCCGCGGTACCTGCTCAAGGACGGCGTCGTGGCCGTGGGCGAGGTCGGCTACGACTCGATGACCCCGGCCGAGGACGAGGCGTTCGCCGCGCAGCTCCAGATGGCGCGCGAGGCCGAGCTGCCCGTGCTGGTGCACACCCCGCACCGCGACAAGCTGAACGGCACGCGGCGCACGCTCGACGTGGTGCGCGAGTCCGGCATCGACCCGTCGCGGGTGCTCGTCGACCACCTCAACGAGACCACCGTGGCGATGGTCCGCGACGCCGGGGCGTGGGCGGGCTTCTCCATCTACCCGGACACCAAGATGGACCCGCACCGCATGGTCGCGCTGCTGCACGAGTACGGCACCGAGCGGATGATCGTGAACTCCGCGGCCGACTGGGGGCGCAGCGACCCGCTGCGCACGGCGCGCACCGGGTCCGAGATGCTCGCCGCCGGGTTCACCGACCACGACGTCGACCGCGTGCTGTGGCGCAACCCGGTGGCCTTCTACGGCACCTCCGGCAACCTCGTGCTGGACCCCGTCCCCGGTTTCGTCCCCGGCGAGGTCCCGGCGCCCGCGGAGTTCGAGGGCTCCTCGGTGCTGCGCGGCGCGCGGGTCTGA	MRIFDPHIHMTSRTTDDYERMYAAGVRAVVEPAFWLGQPRTSVASFCDYFDSLVGWERFRAEQFGIRHHATIALNPKEANDPRCRDVLDEVPRYLLKDGVVAVGEVGYDSMTPAEDEAFAAQLQMAREAELPVLVHTPHRDKLNGTRRTLDVVRESGIDPSRVLVDHLNETTVAMVRDAGAWAGFSIYPDTKMDPHRMVALLHEYGTERMIVNSAADWGRSDPLRTARTGSEMLAAGFTDHDVDRVLWRNPVAFYGTSGNLVLDPVPGFVPGEVPAPAEFEGSSVLRGARV				NA	NA	NA	NA	NA
AK001_00290	1197			hypothetical protein	ATGCACCTGTCGTACTGCACCAACGTCCACCCCGCCGAGGACCTCGACGGCGTGCTGGCGCAGCTGGAGCGCTACGCGGCACCGGTCCGGCGCGCCACCGGCCGCGAGCGCCTCGGGATCGGCCTGTGGCTGCCCGCCGCGCTCGCGCACCGGCTCGACGCCTCGGCCCCGGACCGCGACCGGCTGCGCGGAGCGCTGGACCGGCACGGCCTCGAGGTGCGCACGCTCAACGCCTTCCCCGCCGGCGGCTTCCACGCCGAGGTCGTGGGCCGCGACGTGTACCACCCGGACTGGACCCGGCCGGAACGGCTCGCGTACACCCTGGCCTGCGCCCGCGTGCTCACGGACCTGCTGCCGCCCGGCGCCGCCGGGTCGATCTCCACCCTGCCGCTGGGCTGGCGCACCGGCTGGACGACGCGCGACGACGAGGCCGCCACCCGGGCGCTGGCCGCGCTGTCCGCGGAGCTGCGCGCCCTGGCCGACCGCACCGGTGTCGTGGTGCGGCTGGCCGTCGAACCGGAACCGGGGTGCGTGCTGGACACGGTCGACGACGTCGTCGGCTGGCTGGCGGACCGGACCGGTACCGACCGGCCCGCCGGGACGCGCATCGACCCCGCGCTCGTCGGGGTGTGCCTCGACACCTGCCACCTCGCGGTGTCGTTCGCGGACCCCGCCGCGGCGGTGCGTCGCGTCACCGACGCCGGACTGCGCGTCGTCAAGGTCCAGGCGTCGGCCGCCCTGCACGTCGCCGACCCCGCCGACCCGGAGACCCGCAGCGCCCTGACCCGGTTCGCCGAGCCCCGCTACCTGCACCAGACCCGCGCGCTGGACGCCGCGGGCCGGGTGCACGGCGTCGACGACCTGCCCGAGGCCCTCGCCGGCGGTCTGCCCCGGACCGGTCCGTGGCGCGTGCACTTCCACGTGCCGCTGCATCACGACCCGGCTCCCCCGCTGTCGGCCACCACCGACGTGCTGCGCACCGCCGTCGACGCCGTGGCGCGCGCCCCGCACGGGCGCGAGACGCACCTGGACGTGGAGACCTACACCTGGGGGGTGCTCCCCGCCGACGTGCTGCCGACGGGGGCCGACGAGCTCGTCGCCGGCATCGCCGCCGAGCTGCGCTGGGCCGCCGACCACCTGGAGGCCGTGGAGGCCCCCGACGCCGTCCTGACCACCACCGGGAGGAACACGCTGTGA	MHLSYCTNVHPAEDLDGVLAQLERYAAPVRRATGRERLGIGLWLPAALAHRLDASAPDRDRLRGALDRHGLEVRTLNAFPAGGFHAEVVGRDVYHPDWTRPERLAYTLACARVLTDLLPPGAAGSISTLPLGWRTGWTTRDDEAATRALAALSAELRALADRTGVVVRLAVEPEPGCVLDTVDDVVGWLADRTGTDRPAGTRIDPALVGVCLDTCHLAVSFADPAAAVRRVTDAGLRVVKVQASAALHVADPADPETRSALTRFAEPRYLHQTRALDAAGRVHGVDDLPEALAGGLPRTGPWRVHFHVPLHHDPAPPLSATTDVLRTAVDAVARAPHGRETHLDVETYTWGVLPADVLPTGADELVAGIAAELRWAADHLEAVEAPDAVLTTTGRNTL				NA	NA	NA	NA	NA
AK001_00291	1461			hypothetical protein	GTGAGACCCGTCCTGCTGCTCGACGTCGTCGGCCTGACGCCCCGCGCGCTGGCCCACATGCCCCGGTTGCGCCGCCTCGCGGGCACCGGGTGGTCCTCGCCGCTGGCGACGGTGCTGCCCGCCGTGACCTGCACCGTGCAGTCGACGATGCTCACCGGCCTGTCCCCCGCCCAGCACGGCGCGGTCGCCAACGGCTGGTACTTCCGCGAGCTCGGCGAGGTATTCCTGTGGCGGCAGCACAACCGTCTGGTCGCCGGCGAGACGGTGTGGGAGACCGGTCGCCGACGGCACGCTGACTACTCCGCCGTCAACGTGTGCTGGTGGTACGCGATGGGGATGACCACCGAGGTCACCGTGACGCCCCGGCCGATCTACCACGCCGACGGCCGCAAGTCCCCCGACGCCTACGTCCGCCCGCCGGGCCTGCACGACGAGCTCGTCGAACGGTTCGGCGACTTCCCCCTGTTCACCTACTGGGGTCCGACGGCGTCGCTCACCTCCAGCCGGTGGGTCGTGGACGCCACCCGGCACCTGCTGCGCACCCGCGCCGCGGACCTGACCACCGCGTACGTCCCGCACCTGGACTACGACCTGCAGCGGTTCGGCCCCGAGTCCCCGCAGGCCGACGCCGCCGCGGCCGACCTGGACGGCGTGCTCGCGCCGCTGCTGGACCAGGCCGAGGCCGACGGCGTAACCGTCGTCGTCGTGTCCGAGTACGGCATCACCCGCGCGGAGCGTCCCGTGCACCTCAACCGGGTGCTGCGCCGTGAGGGGCTGCTGGAGGTCTACACCCAGGCGGGCCGCGAACAGCTCGACCCGTGGACCTCGCGGGCGTTCGCCGTCGCCGACCACCAGGTCGCGCACGTGTACGTCGACGACGCCGCCGACGTCGCCCGGGTCGCCGACCTGCTGCGCGCCGTGCCCGGCGTGGACGAGGTGCTCGACCGCGAGGCCCAGGCCCGCTACGGGCTCGACCACGAGCGCTCCGGCGAGCTCGTCGTCGTCGCCGAGCCCGGGGCGTGGTTCACCTACTACTTCTGGCTGGACGACGACCGGGCCCCGGAGTACGCGCGCGCCGTGGACATCCACCGCAAGCCCGGCTTCGACCCGGCCGAGCTGTTCTTCGACCCGGCCGACCGGCTCGCGAAGGCCAAGGCCGGGCTGAACCTCGTGCGCAAGACGCTCGGGCTGCGCTACGCGATGTCCACCGTGCCCCTGGACGCCTCCTGGGTGGGCGGCACGCACGGCCGCCTTCCCGACGACGCCGCGGACTCCCCGATGATCCTCTGCTCGGCCCCGGAGGTCCCCGACGTCGTGGCGCGGCAGGTGCACGACGACGACCGGTCGGTCCCGGCGGCCGCGGTCAAGGACCTCGTGCTCGCCCTGCAGGGGATCGCTCCCGGCGGGTCCCCGCAGCACGCCGTCCCAGGGGGCGCCGAGGCCGCGGATGTGGTCGGCTAG	MRPVLLLDVVGLTPRALAHMPRLRRLAGTGWSSPLATVLPAVTCTVQSTMLTGLSPAQHGAVANGWYFRELGEVFLWRQHNRLVAGETVWETGRRRHADYSAVNVCWWYAMGMTTEVTVTPRPIYHADGRKSPDAYVRPPGLHDELVERFGDFPLFTYWGPTASLTSSRWVVDATRHLLRTRAADLTTAYVPHLDYDLQRFGPESPQADAAAADLDGVLAPLLDQAEADGVTVVVVSEYGITRAERPVHLNRVLRREGLLEVYTQAGREQLDPWTSRAFAVADHQVAHVYVDDAADVARVADLLRAVPGVDEVLDREAQARYGLDHERSGELVVVAEPGAWFTYYFWLDDDRAPEYARAVDIHRKPGFDPAELFFDPADRLAKAKAGLNLVRKTLGLRYAMSTVPLDASWVGGTHGRLPDDAADSPMILCSAPEVPDVVARQVHDDDRSVPAAAVKDLVLALQGIAPGGSPQHAVPGGAEAADVVG				NA	NA	NA	NA	NA
AK001_00292	567			hypothetical protein	GTGAGCGATCAGCAGCGTCCGTACGGGTCCGAGGACCCGACGCAGCGCTACCGGCCGGTGAACCGGCCGGCGGACCAGCCCCCCGGGATGCCGCCCGCGGCGAAGCCCTCCTGGGAGGCCGCTCCGAAGGACCCGCCTCCCGAGCCGCGGCTCGACCTGGGCCGGTACTGGGCGGGGGCCGCGGCCACCGTCCTGGTGTGCGCCCTCCTGGGCTTCACCGCCTCGGTGATCTTCGACGAGGTCTTCGACATCGGGCTCATCCCGCCGCCCGACGCGTTCGGCGCGGGCGACGACGCCTCGTGGGCCGCCGCGGGGGCGCTCTTCGCCCTCGCCGCCGCCGTCGTGCTCAACCTGCTGGTCGTGGTGGCCCCGCGGCCGCGGATGTTCTTCGGCTGGCTCGTGGGCCTGGCCACGGTGATCCTGGCGGTGCTGCCGTTCACCGGCAACCCGGACCCGCTGCCCGGCGCGATGACCGCGCTGGTGTGGGTGATCCTGGGCATCGCGGTGTCCTCGATGCTCGGCAGCGTCATCGTGCGGACCCTCGTGGTCCCGACACCGCCGCGCTGA	MSDQQRPYGSEDPTQRYRPVNRPADQPPGMPPAAKPSWEAAPKDPPPEPRLDLGRYWAGAAATVLVCALLGFTASVIFDEVFDIGLIPPPDAFGAGDDASWAAAGALFALAAAVVLNLLVVVAPRPRMFFGWLVGLATVILAVLPFTGNPDPLPGAMTALVWVILGIAVSSMLGSVIVRTLVVPTPPR				NA	NA	NA	NA	NA
AK001_00293	1131	ilvE	COG0115	Branched-chain-amino-acid aminotransferase	ATGACCACGACCTCGCACAACGTCCTCCCCGAGGAGCTCGAGGACCTCGTCGCGCTCTTCGACGTCCGCGGAACCGACGAGCCCACCCCCGACGCCGAGCGCGAGGAGGCGCTCGCGTCACCCCGCTTCGGCACGGTCTTCACCGACCACATGGCCCGGGTCTCCTGGCGCCAGGAGGACGGTTGGCTCGACCGGCGGGTGGAGAAGTACGGACCGCTGCAGCTCGACCCCGCCACCGCCGTCCTGCACTACGCGCAGGAGATCTTCGAGGGCATGAAGGCGTACAAGCACGCCGACGGGTCGGTGTGGACCTTCCGCCCCGAGTCCAACGCCGCGCGGTTCGCACGCTCCGCCCACCGGCTGGCGCTGCCCGCGCTCACCGTGGACGACTTCATCGGGTCGATCGCCGCGCTGGTGCGGACCGACCTGGCGTGGGTTCCCGACGGCGAGGACTCCAGCCTGTACCTGCGCCCGTTCATGTTCGCCTCGGAGCCGTTCCTCGGCGTCCGCCCGGCGGCGCAGGTCGAGTACCTGTGCATCGCCTCGCCGGTGGGTCCCTACTTCGCCGGCGGCGTGAAGCCGGTGTCGATCTGGGTCTCCCAGGACTACCACCGCGCAGGCCCGGGCGGCACCGGCGACGCCAAGTGCGGCGGCAACTACGCCGCCAGCCTCCTGCCGCAGACCGAGGCCCAGCAGAACGGCTGCGACCAGGTGTGCTTCCTGGACGCCACGACGAACTCCTACCTCGAGGAGCTCGGCGGCATGAACATCTTCGTGGTGATGGACGACGGCACGGTCCACACCCCGGAGCTGACCGGCTCGATCCTCGAGGGCGTCACCCGCTCGTCGATCCTGCGCCTCGTCGCCGACCACGGGCGCGAGGTCGTCGAGCGCAAGATCCCGCTCGAGGAGGTCGTCGCGGGTCTCGCGGACGGCAGCGTGCGGGAGATCTTCGCCTGCGGCACCGCTGCCGTCGTGACCCCGGTGGGCCGCCTGGCCGGCGGGACGTTCGACCACACGGTGGCCGACGGCGAGCCCGGCGAGCTGACGATGGCGGTGCGGACCGAGCTCACCGACATCCAGTACGGGCGCGCGCAGGACCGGCACGGCTGGATGCGCCGCCTGGCCTGA	MTTTSHNVLPEELEDLVALFDVRGTDEPTPDAEREEALASPRFGTVFTDHMARVSWRQEDGWLDRRVEKYGPLQLDPATAVLHYAQEIFEGMKAYKHADGSVWTFRPESNAARFARSAHRLALPALTVDDFIGSIAALVRTDLAWVPDGEDSSLYLRPFMFASEPFLGVRPAAQVEYLCIASPVGPYFAGGVKPVSIWVSQDYHRAGPGGTGDAKCGGNYAASLLPQTEAQQNGCDQVCFLDATTNSYLEELGGMNIFVVMDDGTVHTPELTGSILEGVTRSSILRLVADHGREVVERKIPLEEVVAGLADGSVREIFACGTAAVVTPVGRLAGGTFDHTVADGEPGELTMAVRTELTDIQYGRAQDRHGWMRRLA	PGPT0008860_1026	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826	NA	NA
AK001_00294	1044	leuB	COG0473	3-isopropylmalate dehydrogenase	ATGACGCGCAACATCGATCTGGCTGTGGTGGCAGGCGACGGCATCGGCCCCGAGGTCGTCGAGCAGGGGCTCGCCGTGCTCGACGCCGCGCTGGCCGGCTCCGACGTGAAGGTCTCGACCACCGAGTTCGATCTCGGCGCGCGTCGCTGGCACGAGACCGGCGAGACGCTCACCGACGACGACCTCGCCCGGATCCGCGAGCACGACGCGATCCTGCTCGGTGCCATCGGCGACCCGTCGGTGCCCTCCGGCGTGCTCGAGCGCGGCCTGCTGCTCAAGCTGCGCTTCGCGCTGGACCACTACGTCAACCTGCGCCCCGGCACGCTCTACCCGGGCGTCACCAGCCCGCTGGCCGACCCGGGCGAGGTCGACTTCGTCGTCGTGCGCGAGGGCACCGAGGGGCCCTACGTCGGCAACGGCGGGTCGGTGCGCACCGGCACGCCGCACGAGATCGCCACCGAGGTGTCGGTCAACACCGCGTTCGGCGTCGAGCGGGTCGTCCGCGACGCCTTCGCCCGCGCCCAGGCGCGCCCCCGCAAGCACCTGACGCTGGTGCACAAGCACAACGTGCTCGTGCACGCCGGACACCTGTGGCGGCGCACCGTCGAGGCCGTGGGCGCCGAGTTCCCCGACGTGACCACGGACTACCTCCACGTCGACGCGGCGACGATCTTCCTGACCACGAACCCCTCGCGGTTCGACGTCATCGTCACCGACAACCTGTTCGGCGACATCATCACCGACCAGGCGGCGGCCATCACCGGCGGCATCGGCCTGGCCGCGTCGGGCAACATCAACCCCGACCGGACGGCGCCGTCGATGTTCGAGCCCGTGCACGGCTCCGCCCCGGACATCGCCGGGCAGGGCAAGGCCGACCCGACGGCGACCGTGCTGTCCGTGTCGCTGCTGCTGGAGCACCTGGGCCTGACCGAGCAGGCGCGTCGCGTGGAGGCCGCCGTGGCAGCCGACCTGGCCGAGCGCGGGGACCGAGTACGCTCGACGGCCGAGGTCGGACGCGAGCTCGCCGCCCGCGTCGCCGGCTGA	MTRNIDLAVVAGDGIGPEVVEQGLAVLDAALAGSDVKVSTTEFDLGARRWHETGETLTDDDLARIREHDAILLGAIGDPSVPSGVLERGLLLKLRFALDHYVNLRPGTLYPGVTSPLADPGEVDFVVVREGTEGPYVGNGGSVRTGTPHEIATEVSVNTAFGVERVVRDAFARAQARPRKHLTLVHKHNVLVHAGHLWRRTVEAVGAEFPDVTTDYLHVDAATIFLTTNPSRFDVIVTDNLFGDIITDQAAAITGGIGLAASGNINPDRTAPSMFEPVHGSAPDIAGQGKADPTATVLSVSLLLEHLGLTEQARRVEAAVAADLAERGDRVRSTAEVGRELAARVAG	PGPT0001441_4250	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052	NA	NA
AK001_00295	399			hypothetical protein	GTGGCGTTGCGCTGGTACTCGACGGTGGTGGAGACCACCGATCCTCGCGCCCTGGCCGGTTGGTGGGCCGAGGCGTTGGGCTGGACGTTCGCGCACACCTCCGACGAGGAGTGCGTCCTGGTGCCGCCGTGGGCCCGCGAGCTCGTCGACCGGTTCGAGTTCCACCAGGTCCCGCCGGGGATGGTGTTCGTGCGCGTCGAGCACGAGAAGACCTCCAAGAACCGGCTGCACTGGGACTTCGCCCCGCACACCTCCGACGACCGGGACGCCGAGATCGACCGGCTCGTCGCGCTCGGGGCGACGGTGATCGACGTCGGGCAGCCGGTGGACGCGTCCTGGACGGTCCTGGCCGACCCGGACGGCAACGAGTTCTGCGTGCTGTCGTCGCGCGAGTACTGA	MALRWYSTVVETTDPRALAGWWAEALGWTFAHTSDEECVLVPPWARELVDRFEFHQVPPGMVFVRVEHEKTSKNRLHWDFAPHTSDDRDAEIDRLVALGATVIDVGQPVDASWTVLADPDGNEFCVLSSREY				NA	NA	NA	NA	NA
AK001_00296	531			hypothetical protein	ATGACGGACGAGCAGGGACCGCACCTCGACGACGTGGCACAGGCCGAACGGATCACCGCCTTCTGGGACACCGCCCGGCCCTCCGCCGGACGCACGAGCCACGGCGGTGCCGTCGGCGAGCGCTCCGAGAACGTCGTGCCGCCGCCGGCGTGGGCGTTCGGGGACAACCCGGCGCTGGCCGACGAGCTGCTCGGCCTGGTGCTCGCCGGCACCAAGACGGCGACGGCGTCGCTCGTCGTCGAGTACGAGGACGCCGCCGAGCCCGCGCCCCGCAAGGGCGACCTGTCGATCCTCCTGGACGGCAGGGGCGAGCCCCGGGCGCTCGTGCGCACGACGCAGGTCGACCGGGTGCCGTTCCGCGACGTCACCGCGGAGCACGCGTGGCGCGAGGGGGAGGGCGACCGGACGCTGGAGTCCTGGCGCGAGGGGCACGAACGCTACTGGCGGCGCACCCTGGCCGGCACGGCGCACGAGTTCGACCCGTCCCTGGAGGTCCTCTGCGAGCGGTTCAAGGTCCTCTACTCCGAGTGA	MTDEQGPHLDDVAQAERITAFWDTARPSAGRTSHGGAVGERSENVVPPPAWAFGDNPALADELLGLVLAGTKTATASLVVEYEDAAEPAPRKGDLSILLDGRGEPRALVRTTQVDRVPFRDVTAEHAWREGEGDRTLESWREGHERYWRRTLAGTAHEFDPSLEVLCERFKVLYSE	PGPT0008170_121	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934	NA	NA
AK001_00297	492			hypothetical protein	ATGGCAGCCATGTACCTGCGGGTGGCGGCCTACGCCGTGATCATCTCCGACGGCCAGGTCCTCCTGCCGCACTGGTCGGACCGACGGCGGTCCGGCTGGACGCTGCCCGGCGGGGGCATCGACCCGGGCGAGCACCCCGAGGACGCGGCCGTGCGGGAGGTCCGCGAGGAGACCGGCTACGGCGTGGAGCTCGACGGGCTGCTCGGCGTCGACAGCATCGTCGTCCCGCCCGAGCACCTCATCGGGTTCGACGACGACGCGGACGTCGACCCCCTGCACGGGATCCGCATCGTGTACCGGGCCCGCATCGTCGGCGGGTCGCTGACGGTCGAGCAGGACGGGTCCACCGACGACGTCGCCTGGCATCCCCTCGAGGGGGTCGCCCACCTGCCGCGGGTCGAGCTCGTCGACCGCGCGCTGGCGATGGCCGGGGTGCTGGACCTCTCCGCGCAGGACGGCGGTCCCGGCGCGACGGACGCCGCCCCGGGCTGA	MAAMYLRVAAYAVIISDGQVLLPHWSDRRRSGWTLPGGGIDPGEHPEDAAVREVREETGYGVELDGLLGVDSIVVPPEHLIGFDDDADVDPLHGIRIVYRARIVGGSLTVEQDGSTDDVAWHPLEGVAHLPRVELVDRALAMAGVLDLSAQDGGPGATDAAPG				NA	NA	NA	NA	NA
AK001_00298	1029	ilvC	COG0059	Ketol-acid reductoisomerase (NADP(+))	GTGGCTGAGATGTTCTACGAGGACGCCGCCGACCTGTCCATCATCCATAGCAAGAAGGTCGCCGTCATCGGCTACGGCAGCCAGGGCCACGCCCACGCGCTGAACCTGCGCGACTCGGGTGTCGACGTCCGCGTCGGCCTGCGCGCCGGCTCGTCGTCGGCCGCCAAGGCGGAGGACCAGGGCCTGAAGGTCCTGCCCGTCGCCGAGGCCGTCGCCGAGGCCGACGTCGTCGTCGTCCTGGCGCCGGACCAGGTCCAGCGCGACCTGTACCGCGACGAGATCGCCCCGAACCTCCGCGAGGGCGCCGCCCTGGTCTTCGGCCACGGCTTCAACATCCGGTTCGGCTACATCAAGCCCGCGGCCGGTCACGACGTCTTCATGGTCGCCCCGAAGGGCCCCGGCCACCTCGTGCGTCGCGAGTACGTCGACGGCCGCGGCGTGCCGGTGATCGTCGCCGTCGAGCAGGACGCCAGCGGTTCCGCCTGGGACCTCGCCCTGTCGTACGCCGCGGGCATCGGCGGGCTGCGTGCCGGCGGCATCAAGACCACGTTCACCGAGGAGACCGAGACCGACCTGTTCGGCGAGCAGGCCGTGCTCTGCGGCGGCACCTCGCAGATGGTCCAGTACGGCTTCGAGGTCCTCACCGAGGCCGGCTACCAGCCCGAGGTCGCGTACTTCGAGGTGCTGCACGAGCTGAAGCTCATCGTCGACCTCATGGTCGAGGGCGGTCTGGCCAAGCAGCGCTGGTCGATCTCCGACACCGCCGAGTACGGCGACTACGTCTCCGGCCCGCGCGTGATCTCGCCCGAGGTCAAGGAGAACATGAAGGCCGTGCTCGCGGACATCCAGTCGGGTGCCTTCGCCGAGCGCTTCATCGCCGACCAGGACGCCGGCGCCCCGGAGTTCACCGAGCTCCGCGCCAAGGGCGAGTCGCACCCGATCGAGACCACCGGTCGCGAGCTGCGCAAGATGTTCGCCTGGATCAAGCCTGCCGACTCGGACTACACCGAGGGCAGCGCCGCTCGCTGA	MAEMFYEDAADLSIIHSKKVAVIGYGSQGHAHALNLRDSGVDVRVGLRAGSSSAAKAEDQGLKVLPVAEAVAEADVVVVLAPDQVQRDLYRDEIAPNLREGAALVFGHGFNIRFGYIKPAAGHDVFMVAPKGPGHLVRREYVDGRGVPVIVAVEQDASGSAWDLALSYAAGIGGLRAGGIKTTFTEETETDLFGEQAVLCGGTSQMVQYGFEVLTEAGYQPEVAYFEVLHELKLIVDLMVEGGLAKQRWSISDTAEYGDYVSGPRVISPEVKENMKAVLADIQSGAFAERFIADQDAGAPEFTELRAKGESHPIETTGRELRKMFAWIKPADSDYTEGSAAR	PGPT0008735_1630	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008735-ilvC-K00053	NA	NA
AK001_00299	522	ilvH	COG0440	Acetolactate synthase small subunit	ATGAGCCGTCACACGTTGTCCGTGCTGGTCGAGGACAAGCCGGGTGTCCTGACCCGCGTCGCCGGGCTCTTCGCCCGACGTGCGTTCAACATCCAGTCCCTGGCGGTGGGTCCGACCGAGCACGCGGAGATCTCGCGGATCACCGTCGTGGTCGACGTCGAGGACCACCCGCTGGAGCAGGTCACCAAGCAGCTCAACAAGCTGGTGCACGTCATCAAGATCGTCGAGCTCGACCCGGAGTCCTCGGTCCAGCGCGAGCTGCTGCTGGTCAAGGTCAAGGCCGACCAGGCCACCCGGTCGGGCGTGCTCGAGGTCGTCGAGCTCTTCCGGGCCAAGGTCGTCGACGTCGTGCCCGACACGGTCGTCATCGAGGCGACCGGGACGGGGAGCAAGCTCGAGGCGCTGCTGACCGCGCTCGAGCCCTACGGCATCCGCGAGATCGTCAAGTCCGGGACCCTCGCCGTCGGGCGCGGGTCGCGATCCATCACCGACCGGGCGCTGGAGCGGGTCCGCAGCGCGTGA	MSRHTLSVLVEDKPGVLTRVAGLFARRAFNIQSLAVGPTEHAEISRITVVVDVEDHPLEQVTKQLNKLVHVIKIVELDPESSVQRELLLVKVKADQATRSGVLEVVELFRAKVVDVVPDTVVIEATGTGSKLEALLTALEPYGIREIVKSGTLAVGRGSRSITDRALERVRSA	PGPT0008205_1462	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008205-ilvH|ilvN-K01653	NA	NA
AK001_00300	1824	ilvB1	COG0028	Acetolactate synthase large subunit IlvB1	ATGGGCCAGCCGAACCCGACACCAGCCCAGGTGGCAGCGCGTACCGCCCCGCGCCCGGTCGAGCGCCGGGTCGACGAGCAGGTCACGGGGGCGGAGTCGATCGTCAAGTCGCTCGAGGCCGTCGGCGTCGACACCGTGTTCGGCATCCCGGGCGGCGCCATCCTGCCGACCTACGACCCGCTGATGGACTCGCAGAAGCTGCGCCACATCCTGGTGCGGCACGAGCAGGGCGGCGGGCACGCCGCCTCCGGGTACGCCCACGCGACCGGTCGGGTCGGCGTGACGATGGCGACCTCGGGCCCCGGCGCGACCAACCTGGTCACCCCGCTGGCGGACGCCAACATGGACTCGATCCCGATGGTCGCGATCACCGGCCAGGTGGCGGCGCCCGCGATCGGGACCGACGCGTTCCAGGAGGCGGACATCGTCGGCATCACGATGCCGATCACCAAGCACTCCTACCTGGTGACCGACCCGGCCGAGATCCCGCGGACCATCGCCGAGGCGTTCCACATCGCCTCGACGGGGCGTCCCGGTCCGGTGCTGGTCGACATCGCCAAGTCCGCGATGCAGGCCCAGACCACCTTCTCGTGGCCGCAGCAGCCCGCGCTGCCCGGCTACCACCCGGTGACCAAGCCGCACGCCAAGCAGATCCGCGAGGCCGCCAAGCTGCTGGCCACCGCGCGCCGGCCCGTGCTGTACGTCGGCGGCGGGGCCGTGCGCTCCGGGGCCGCGGCCGAGCTGCGCCGTCTGGTGGACGTCTCCGGCGCCGCCGTCGTGACGACCCTCATGGCACGCGGTGCGGTCCCCGACTCGCACCCCCAGCACCTGGGCCTGCCCGGCATGCACGGCACGGTGCCCGCCGTGGCCGCGCTGCAGAAGGCCGACCTCATCGTCGCTCTCGGCGCGCGCTTCGACGACCGCGTGACGGGCAAGCTGTCCAGCTTCGCTCCGCACGCCGCCGTCGTCCACGCCGACATCGACCCGGCCGAGATCGGCAAGAACCGGGCCGTGGACGTGCCCATCGTCGGCGACCTGCGCGAGGTCATCGGCGACCTGGTCCCGGCGCTGGAGGCCGAGCACGCCAAGGTCGGCCGACCCGACGTCGAGGCCTGGTGGCACCAGATCGACACCTGGCGGGAGACCTACCCGCTCGGCTACACCTCCACGGACGACGGCCACCTGGCGCCGCAGTCGGTGATCTCCCGGCTCGGCGAGCTGGCCGGTCCCGACGCCATCTACGTCGCCGGTGTGGGGCAGCACCAGATGTGGGCCTCCCAGTTCATCCGCTACGAGCGGCCCAACACCTGGATCAACTCCGGTGGTCTGGGCACCATGGGGTACTCGGTCCCGGCGGCGATGGGCGCCAAGGCCGGAGCGCCCGACCGCGAGGTGTGGGCGATCGACGGCGACGGCTGCTTCCAGATGACCAACCAGGAGCTGGCCACCTGCGCGATCAACGACATCCCGATCAAGGTCGCGCTGATCAACAACAGCTCCCTCGGCATGGTCCGCCAGTGGCAGACGCTCTTCTACAACGAGCGGTACTCCAACACCGACCTGCACACCGGGCACGGCACGGCGCGCATCCCCGACTTCGTCAAGCTCGCCGAGGCGTACGGCTGCGTGGGGATCCGGGTGGAGCACCCCGGCGAGGTGGACGCCGCGATCAAGAAGGCCCAGGAGATCAACGACCGCCCGGTGGTCGTCGACTTCACCGTCTCGCGCGACGCGATGGTGTGGCCGATGGTCGCGGCCGGGGTCAGCAACGACGACATCCAGTACGCGCGGGGCATCTCGCCGGCCTGGGAACGAGAGGACTGA	MGQPNPTPAQVAARTAPRPVERRVDEQVTGAESIVKSLEAVGVDTVFGIPGGAILPTYDPLMDSQKLRHILVRHEQGGGHAASGYAHATGRVGVTMATSGPGATNLVTPLADANMDSIPMVAITGQVAAPAIGTDAFQEADIVGITMPITKHSYLVTDPAEIPRTIAEAFHIASTGRPGPVLVDIAKSAMQAQTTFSWPQQPALPGYHPVTKPHAKQIREAAKLLATARRPVLYVGGGAVRSGAAAELRRLVDVSGAAVVTTLMARGAVPDSHPQHLGLPGMHGTVPAVAALQKADLIVALGARFDDRVTGKLSSFAPHAAVVHADIDPAEIGKNRAVDVPIVGDLREVIGDLVPALEAEHAKVGRPDVEAWWHQIDTWRETYPLGYTSTDDGHLAPQSVISRLGELAGPDAIYVAGVGQHQMWASQFIRYERPNTWINSGGLGTMGYSVPAAMGAKAGAPDREVWAIDGDGCFQMTNQELATCAINDIPIKVALINNSSLGMVRQWQTLFYNERYSNTDLHTGHGTARIPDFVKLAEAYGCVGIRVEHPGEVDAAIKKAQEINDRPVVVDFTVSRDAMVWPMVAAGVSNDDIQYARGISPAWERED	PGPT0008185_1178	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008185-budB|ilvK|alsS|ilvB|ilvG|ilvI-K01652	NA	NA
AK001_00301	1089			hypothetical protein	ATGCGACTGCTCAGGGTGGAGCTGCGTCGGCTGTGGATGCGGCGCGTGACGTGGGGCGGCCTCCTGCTCGCGCTGGTCGTCGCGGGCCTCGGTGTCGCCGGGCAGATCGGCAGCGCCCAGCCGCCCACCGACCGGCAGGTCGCCGAGGCGGAGGCGTTCTACGCCGAGGAGCTCGAGCGCTGGGAGGAGACCGGCGAGCAGCAGGTCGAGCAGTGCGAGGAGGCCGAGGCGGAGGCCGCCGCGGACGACCCCGGTGCGGACTTCGGCTGCGACGACATGGCGCCCCGGCTGGAGTACTTCCTGCCGCCGACCGTGTCGTTCGTCCCCGACGCCGACGACCGGGAGGCCGCCGCCTTCGGCGTACCGCCCGACCGGGGCGAGAGCCAGGACCCGCGCGTCGCGGAGATCGAGCAGTCGCTCTGGACCGGCTGGTCCGGTGTCGGGGCGGCGGCCGGCTACGCCCCGGCGTTCCTCATGCTCGCCTTCGTCGTCGGGGTGAGCTTCATGACGGCCGAGCGCAGCACGGGGGCGCTGGGCATGTGGCTCACGTTCGAGCCCCGGCGCTCGCGGGTGTACGGGTCGAAGGCGCTCGCGGCCGCGCTGGGGACCGTCCCGCTCGTCGTCGCGGGCTGGGCGGCGGTGGCCGGGGGCATCTGCACGCTGCACGCCGTCTTCGGCACGGTGGGCACGGTCACCACGGAGGACTGGGTCGAGATCGGCGCCTTCTCGGTCCGTCTCGTGGGGGCCGGCGTGCTCTGTGCCGCGGTCGGCACGGCCCTCGGCGTCCTGCTGCGGCACGCCGTGGCGGCCGTCGGCGCGGTGGCCGTGGTCCTGTGGGCGGGTGCGGCCTTCGGCTACCCCCTGGGCGCCGCCCAGCGCTGGACCCCGACGACGAACCTGACCGCGTGGCTCGAGGGCGGCACCGCGTACGGCGTGGCCCTCGAGACCCGCGACGAGAGCGGCATGGTCACCACGACGTGGACCACCGAGGTGGTCACGGGCCTGCAGGGCGGGCTGTACCTGCTCGCCGTCGCGGCCGTGCTCACGCTGCTCGCCGTCGTCGTCTTCCGCCGCCGCGACGTCGCCTGA	MRLLRVELRRLWMRRVTWGGLLLALVVAGLGVAGQIGSAQPPTDRQVAEAEAFYAEELERWEETGEQQVEQCEEAEAEAAADDPGADFGCDDMAPRLEYFLPPTVSFVPDADDREAAAFGVPPDRGESQDPRVAEIEQSLWTGWSGVGAAAGYAPAFLMLAFVVGVSFMTAERSTGALGMWLTFEPRRSRVYGSKALAAALGTVPLVVAGWAAVAGGICTLHAVFGTVGTVTTEDWVEIGAFSVRLVGAGVLCAAVGTALGVLLRHAVAAVGAVAVVLWAGAAFGYPLGAAQRWTPTTNLTAWLEGGTAYGVALETRDESGMVTTTWTTEVVTGLQGGLYLLAVAAVLTLLAVVVFRRRDVA	PGPT0006730_7921	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_00302	1056	btuD_2		Vitamin B12 import ATP-binding protein BtuD	GTGGCGGTCGACGGCGAGCTGGCGATCGAGACCCGCGGGCTGCGCAAGACCTACCGCAGCGTCCGCGGGCGGCGCGTCGGGGTCGAGGACCTCGACCTGCAGGTGCCCGTCGGCGGCGTGCACGGGTTCCTCGGCCCGAACGGCTCCGGCAAGACCACGACCATCCGGATGCTGCTCGGGCTGGTGCGCCCGGACCGGGGGAGCGCGACGATCTTCGGTCACGACGTGCCGCGTCACCTGCCCGACGTCGTCGGTCGGGTCGGCGCGATCGTGGAGAGCCCGACGTTCTTCCCCGCCTTCAGCGCCCGGGCGAACCTGCGGTTGCTGGCCGACGGCATCGGGGCCCCGCGCGAGCGGGTCGACGCGGTCCTCGACGACGTCGGCCTGACCGGCCGGGCGAAGGACCGCTACCGGACCTACTCGCTCGGCATGAAGCAGCGCCTGGCGATCGCGGCGACCCTGCTCAAGGACCCGGACCTGCTGATCTTCGACGAGCCGACCAACGGCCTCGACCCGGCGGGCATCCACGAGATCCGGCGCACGATGCGCGACCTGGGCGACCAGGGCAAGACGGTGCTGGTCTCCAGCCACATCCTCGCCGAGGTCGAGCAGGTCGCCGACACCGTCTCCATCGTCGCGCGGGGCCGACTCGTGGCCTCCGGGCGGGTGACCGACCTGATCTCCGGGCAGGGCGGCGCGGCCGTGCGGGTCGTCGTCGCGCCCGACGACGTCGCGATCGCGACGAGCCTGCTGGCCTCCCGCGGGCTCGTCGCACGGCACGAGGACGACGCGCTCGTCGTCGAGGGCGCGGACCCCGCCGGCGTCAACCGGATGCTCGGCGAGCAGGGCGTCTGGGCTCGCGAGATCGCAGCGCGCCAGGTCGACCTGGAGTCGGTGTTCCTCGGCCTGACCCAGCACGAGACGCCGGGCGGCCGCGACCACCGGGGCGGACGTCGTCGTCGGCGACGAGACGCCGAGCCGCCCGTCGGACCCGCCGCGACGGCGGCGGCCACGCGCTCCGGGACCGGCCGGGCGGACGGCGGCGAGGAGATCTGA	MAVDGELAIETRGLRKTYRSVRGRRVGVEDLDLQVPVGGVHGFLGPNGSGKTTTIRMLLGLVRPDRGSATIFGHDVPRHLPDVVGRVGAIVESPTFFPAFSARANLRLLADGIGAPRERVDAVLDDVGLTGRAKDRYRTYSLGMKQRLAIAATLLKDPDLLIFDEPTNGLDPAGIHEIRRTMRDLGDQGKTVLVSSHILAEVEQVADTVSIVARGRLVASGRVTDLISGQGGAAVRVVVAPDDVAIATSLLASRGLVARHEDDALVVEGADPAGVNRMLGEQGVWAREIAARQVDLESVFLGLTQHETPGGRDHRGGRRRRRRDAEPPVGPAATAAATRSGTGRADGGEEI	PGPT0006725_1080	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_00303	321			Putative pterin-4-alpha-carbinolamine dehydratase	ATGAGTGACCACATGACCCCCACGCAGTTCCGCGCCGCCGCAGGGACCGCGGACTGGCGGGTGCTCGACGACGGGCGGGCGACGGCGACCTTCCGCACCGGTGCCTTCACCACCGGGGTGCGGCTGGTCGAGGAGATCGGCGAGCTCGCCGAGGCCGCGAACCACCACCCCGACGTCGACCTGCGGTACGGCACCGTCGTCGTGCGCACCGTGTCCCACGACATCGGCGGGCTGAGCCAGCGGGACGCGGCGCTCGCGGCGCAGATCTCGGCGGCGGCGCGCGAGCTCGACATCCCCGCCGAGGCCCCGTCGTCCGCCTGA	MSDHMTPTQFRAAAGTADWRVLDDGRATATFRTGAFTTGVRLVEEIGELAEAANHHPDVDLRYGTVVVRTVSHDIGGLSQRDAALAAQISAAARELDIPAEAPSSA				NA	NA	NA	NA	NA
AK001_00304	1266			Putative pterin-4-alpha-carbinolamine dehydratase	ATGTCCACCGAGTCCGACGATCCCGTTACGGACGAGCTGACCCCGGACCAGTTCGAGCGGGCCGACTCCACCGGCCACTGGCGGGTGCTGTCGCACGGGGCCTGCGCGCTCTTCCGCACCGGGACGCCGGGCGCCGGAGCCGTCCTGCTCGAGGACGTCGCGGTGCTCGCCGACGCCGCGAACCACCACCCGGACGTGGACCTGCGGCCCGACGGCGTCGTCGTGTGGTGCGTCTCGCACGACGTCGGCGGCCTGAGCCGGCGCGACGTCGCGCTCGCCCAGGACGTCTCGGCCGCGGCCGACCGGCTGGGGCTGACCGCCGACCCGGCGGCGCTGCAGGACGTCGAGCTGACGATCGACGCCACCGACCGCGAGCGTGTCATGCCCTTCTGGGCCGTGGTGCTCGGGCACGAGCGGGCCGGCGACGAGGACCTGCTCGACCCGGACGCGCGCTGGCCCGGCATCTGGTTCCAGCAGATGGACGCGCCCCGGCCGCTGCGGAACCGGCTGCACCTGGACGTGTTCGTGCCGCACGACGACCGGCCCGCCCGGGTCGAGGCCGCCCTGGCGGCCGGCGGGAGGCTCACCACCGAGGAGTTCGTCCCGCAGTGGTGGACGCTCGCCGACCCGGAGGGCAACGAGGCCGACGTCGAGGCGTGGGAGGGTTTCACCGACGAGCTGCCCGAGGGGCTCGTCTCCCCGGACGCTTTCCGCGCGGCCCACGGCGTGGAGGACTGGCGGGTGCTGCAGGGAGCGTGCGCGCGCTACCGGACCGGGCGGTTCCACACCGGGGTGGACCTGGCGGCGAGCGCGCAGCGGATCGCCGACGACGCCGGGGTCCGTCTCTCCACGGACCTGCGCTTCGGGCACGTCTCCTTCCGGGTGGGCGCGCCCGAGGACGGCTGGATCGACGACGCGGCCCTCGTGGTGGCCCGCCGGATCCAGGCCGCCGCACGCGCCGCCGACCTGGAGCCCGACCCGCGGGCCCTGCGGGACGTCCAGCTCACGTTCGACGCCCTGGACGTCGCCGCCGTGCAGCGGTTCTGGGCCGCCGCCCTCGGCTACACCACCCGCGAGGACACCGACCTGTTCGACCCGCTGCTGCGCGGTCCGGCAGTCTTCATCCAGCCGATGGCCGAGCCGCGCGAGCAGCGCAACCGGATCCACGTCGACGCGTTCGTCCCCGCCGACGTGGCGGACGAGAGGGTCGCGGCCGCCGTCGCCGCGGGCGGGCGCGTCGTGCGCGACGCCGAGGCGCCGCTGTGA	MSTESDDPVTDELTPDQFERADSTGHWRVLSHGACALFRTGTPGAGAVLLEDVAVLADAANHHPDVDLRPDGVVVWCVSHDVGGLSRRDVALAQDVSAAADRLGLTADPAALQDVELTIDATDRERVMPFWAVVLGHERAGDEDLLDPDARWPGIWFQQMDAPRPLRNRLHLDVFVPHDDRPARVEAALAAGGRLTTEEFVPQWWTLADPEGNEADVEAWEGFTDELPEGLVSPDAFRAAHGVEDWRVLQGACARYRTGRFHTGVDLAASAQRIADDAGVRLSTDLRFGHVSFRVGAPEDGWIDDAALVVARRIQAAARAADLEPDPRALRDVQLTFDALDVAAVQRFWAAALGYTTREDTDLFDPLLRGPAVFIQPMAEPREQRNRIHVDAFVPADVADERVAAAVAAGGRVVRDAEAPL				NA	NA	NA	NA	NA
AK001_00305	1716	ilvD_1	COG0129	Dihydroxy-acid dehydratase	ATGACGAGCACCGACGACCGGACCACGCCTGACCTCAAGCCCCGCTCCCGCCAGGTGACCGACGGCCTGGAGGCCACCGCATCGCGCGGCATGCTGCGCGCGGTCGGCATGGGGGACGACGACTGGGACAAGCCGCAGATCGGCGTCGCGAGCTCGTGGAACGAGATCACGCCCTGCAACCTGTCGCTGGACCGGCTGGGCGGCGCGGTGAAGAACGGCGTGCACGCCGGCGGCGGCTACCCGCTGGAGTTCGGCACGATCTCCGTCTCCGACGGCATCTCGATGGGCCACGAGGGGATGCACTTCTCGCTGGTCTCCCGGGACGTCATCGCCGACTCCGTCGAGACGGTCATGCAGGCCGAGCGCCTGGACGGCTCGGTGCTGCTGGCCGGCTGCGACAAGTCGCTGCCCGGCATGCTCATGGCCGCCGCCCGCCTGGACCTGGCCAGCGTGTTCCTCTACGCCGGGTCGATCATGCCCGGCTGGGTGAAGCTCGCGGACGGCACCGAGAAGGACGTCACCCTCATCGACGCCTTCGAGGCCGTCGGCGCCTGCTCGCGCGGGCTGATGTCCCGCGACGACGTCGACCGCATCGAGCGGGCCATCTGCCCCGGCGAGGGTGCCTGCGGCGGGATGTACACGGCCAACACCATGGCCTCGGTGGCCGAGGCGATGGGCATGTCCCTGCCGGGCTCGGCCGCCCCGCCGTCGGCCGACCGTCGCCGCGACTCCTTCGCGCACGCCTCCGGCGAGGCCGTCGTCGAGATGCTGCGCCGCGGCATCACCGCCCGCGACATCATGACCAAGGAGGCGTTCGAGAACGCCATCGCCGTCGTCATGGCGTTCGGCGGGTCCACCAACGCCGTGCTGCACCTGCTGGCCATCGCCCACGAGGCCGAGGTCGAGCTGACGCTCGAGGACTTCGACCGGGTGGCGAGCCGCGTGCCGCACCTGGGTGACCTCAAGCCGTTCGGCCGCTACGTGATGAACGACGTCGACCGCATCGGCGGGGTCCCCGTGATCATGAAGGCGCTGCTGGACGCCGGGCTGATCCACGGCGACTGCCTGACGGTCACCGGGCGCACCGTGGCCGAGAACCTGGCCGACATCGCTCCGCCGGACCCGGACGGCAAGATCCTGCGCGCCCTCGACCAGCCGATCCACCCCACCGGCGGCATCACGATCCTGCACGGGTCGCTGGCCCCCGAGGGCGCCGTGGTCAAGAGCGCCGGGTTCGACTCCGACGTCTTCGAAGGCACCGCGCGCGTGTTCGAGCGGGAGCGGCACGCCCTGGACGCGCTGGAGGACGGCACGATCACCGCCGGCGACGTCGTCGTCATCCGGTACGAGGGCCCCAAGGGCGGACCCGGGATGCGCGAGATGCTGGCCATCACCGGCGCGATCAAGGGTGCGGGACTCGGCAAGGACGTCCTGCTCGTCACCGACGGCCGGTTCTCCGGCGGCACCACCGGGCTGTGCGTCGGGCACATCGCCCCGGAGGCCGTCGACGCCGGACCGATCGCCTTCGTGCGCGACGGCGACCGCATCCGCCTCGACGTCGCCGCCAAGACGCTCGACCTCCTGGTCGACGCCGACGAGCTGGCCGCCCGGCACACCGACGACTGGGAGCCCGTGCCGCACGGCTACACCCGCGGGGTGCTCGCCAAGTACACCAAGCTGGTGCAGTCCGCCTCGACGGGCGCGGTGCTCGGCTGA	MTSTDDRTTPDLKPRSRQVTDGLEATASRGMLRAVGMGDDDWDKPQIGVASSWNEITPCNLSLDRLGGAVKNGVHAGGGYPLEFGTISVSDGISMGHEGMHFSLVSRDVIADSVETVMQAERLDGSVLLAGCDKSLPGMLMAAARLDLASVFLYAGSIMPGWVKLADGTEKDVTLIDAFEAVGACSRGLMSRDDVDRIERAICPGEGACGGMYTANTMASVAEAMGMSLPGSAAPPSADRRRDSFAHASGEAVVEMLRRGITARDIMTKEAFENAIAVVMAFGGSTNAVLHLLAIAHEAEVELTLEDFDRVASRVPHLGDLKPFGRYVMNDVDRIGGVPVIMKALLDAGLIHGDCLTVTGRTVAENLADIAPPDPDGKILRALDQPIHPTGGITILHGSLAPEGAVVKSAGFDSDVFEGTARVFERERHALDALEDGTITAGDVVVIRYEGPKGGPGMREMLAITGAIKGAGLGKDVLLVTDGRFSGGTTGLCVGHIAPEAVDAGPIAFVRDGDRIRLDVAAKTLDLLVDADELAARHTDDWEPVPHGYTRGVLAKYTKLVQSASTGAVLG	PGPT0001875_3258	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687	NA	NA
AK001_00306	552			hypothetical protein	GTGCGGGTCGTCGACCTCTCCTCGCACGACGTCGACGACGTCGCAGGCTTGTTCGCGGACGACGGCGGCTACTCCTGCCGCGTGGCCGGCCGGCCGGCCACGCGGCAGGACGCCGTCGACGCCCTCACGGCCCGTCCGCCGGGGACCGACCCCGCGGCGAAGACCGTCCTCGGCGCGTACGACGACGCGGGCGTGCTCGTGGGGCTGCTCGACGTGATCCGCGGGTGGCCGGAGGCCGACCACGCGCACGTCGGCCTGCTGCAGACCGCGGCGGGCCGGCACCGGCAGGGACTGGGGCGGGCGCTGCACGCGGCGCTGGAGCGACGGGCCGAGCGCTGGCCGGAGGTCACGACGCTGCGCCTCGCCGTCGTCGACACCAACCGGGAGGTCGCCGAACCCTTCTGGCGCGCCCTCGGCTACGCGCCGACCGGCGGGGCCACGCCGTTCGCCGCCGGGAGCGTCGAGTCCGTGGCCCGCGTCTGGACCCGTCCGGTCACGCGCCGAGGAACCGCCGGGCCAGGTGGCGTCGTCGGCCCTAGCCTGGGGGCATGA	MRVVDLSSHDVDDVAGLFADDGGYSCRVAGRPATRQDAVDALTARPPGTDPAAKTVLGAYDDAGVLVGLLDVIRGWPEADHAHVGLLQTAAGRHRQGLGRALHAALERRAERWPEVTTLRLAVVDTNREVAEPFWRALGYAPTGGATPFAAGSVESVARVWTRPVTRRGTAGPGGVVGPSLGA				NA	NA	NA	NA	NA
AK001_00307	1863	ilvD_2	COG0129	Dihydroxy-acid dehydratase	ATGAGCCGCCCCCTGCGTTCGCGCACGTCGACCCACGGCCGCAACATGTCCGGCGCCCGCGCCCTGTGGCGCGCCACCGGCATGGGGTCGGAGGACTTCGGCAAGCCGATCGTCGCGATCGCCAACTCGTACACCCAGTTCGTCCCGGGGCACGTCCACCTCAAGGACATGGGCGACCTCGTCGCGGGAGCCATCCGCGAGGCCGGGGGAGTGGCCAAGGAGTTCAACACGATCGCCGTCGACGACGGCATCGCGATGGGCCACGGCGGCATGCTCTACTCGCTGCCCAGCCGCGACCTCATCGCCGACTCGGTCGAGTACATGGTCAACGCCCACTGCGCGGACGCCCTGGTGTGCATCTCCAACTGCGACAAGATCACCCCGGGCATGCTGAACGCCGCGCTGCGGCTGAACATCCCGGTCGTGTTCGTCTCCGGCGGCCCGATGGAGGCCGGCAAGGCGGTCGTCGCGGACGGGGTGGCGAGGACGAACCTCAACCTCATCAACGCGATCAACTACTCGGCCGACGAGAACGTCTCCGACGAGGCGCTGGCGAAGGTCGAGGAGAACGCCTGCCCGACCTGCGGCTCCTGCTCCGGCATGTTCACGGCGAACTCGATGAACTGCCTCACCGAGGCCCTGGGCCTGTCGCTGCCGGGCAACGGGTCGGTGCTGGCCACGCACGCCGCGCGCAAGGAGCTGTTCCTCGAGGCCGGCCGGACCGTCGTCGAGCTGGCGAAGCGCTACTACGACGAGTCCGACGACACCGCGGCGCCCCGCGGTATCGCCACCAAGGAGGCGTTCGCCAACGCGATGGCGCTCGACGTCGCCATGGGCGGCTCGACCAACACGGTGCTGCACGTGCTGGCGGCGGCGCAGGAGGCCGAGGTCGACTTCACGCTGTCCGACATCGAGGAGATCTCGCGCCGCGTGCCCTGCCTGAGCAAGGTCGCGCCGAACCACCCGAACTACCACATGGAGGACGTCCACCGGGCCGGCGGCATCCCCGCGCTGCTCGGCGAGCTGCACCGGGCCGGGCTGCTCGAGAAGGACGTCTCCAGCGTGCACACCCCGACGCTGCAGCAGTGGCTGGACGACTGGGACGTGCGCGGCGGGAAGGCGACCGAGCAGGCCACCGAGATGTTCTACGCGGCACCGGGCGGTGTGCGCACGACGCAGGCGTTCTCCACGCAGAACCGCTGGGAGTCACTGGACACCGACGCCGCCGAGGGCTGCATCCGCGACGTCCAGCACGCCTACACCGTCGACGGTGGTCTGGCGGTGCTGCGCGGCAACCTCGCGACCGACGGCGCGGTGTTCAAGACCGCCGGCGTCGACCCGGACGTCTTCCACTTCACCGGCCGGGCGCTCGTGTGCGAGTCGCAGGACGAGGCCGTGGAGAAGATCCTGACCAAGCAGGTCGAGCCCGGGCACGTCGTCGTGGTGCGCTACGAGGGTCCCGCCGGCGGCCCCGGCATGCAGGAGATGCTCTACCCGACCTCCTTCATCAAGGGCCGCGGTCTGGGCAAGGTCTGCGCCCTCATCACCGACGGCCGGTTCTCGGGCGGTTCGTCCGGCATCTCCATCGGCCACGTCTCCCCGGAGGCGGCCGCGGGCGGCGTCATCGGCCTGGTCGAGGACGGCGACGAGATCGAGATCGACGTCGAGTCCCGCTCCGTCCGGCTCAACGTGGCCGACGACGTGCTCGCCGAGCGACGCGCCGCGATGGAGGCCTCGGACAACCCGTGGCAGCCGAAGGACCGCGACCGGTACGTCTCCCCGGCGCTGCGCGCCTACGCCGCCATGGCCACCAGCGCGGACAAGGGCGCGGTGCGCGACATCAACCTGGTCACCCGCCGCTGA	MSRPLRSRTSTHGRNMSGARALWRATGMGSEDFGKPIVAIANSYTQFVPGHVHLKDMGDLVAGAIREAGGVAKEFNTIAVDDGIAMGHGGMLYSLPSRDLIADSVEYMVNAHCADALVCISNCDKITPGMLNAALRLNIPVVFVSGGPMEAGKAVVADGVARTNLNLINAINYSADENVSDEALAKVEENACPTCGSCSGMFTANSMNCLTEALGLSLPGNGSVLATHAARKELFLEAGRTVVELAKRYYDESDDTAAPRGIATKEAFANAMALDVAMGGSTNTVLHVLAAAQEAEVDFTLSDIEEISRRVPCLSKVAPNHPNYHMEDVHRAGGIPALLGELHRAGLLEKDVSSVHTPTLQQWLDDWDVRGGKATEQATEMFYAAPGGVRTTQAFSTQNRWESLDTDAAEGCIRDVQHAYTVDGGLAVLRGNLATDGAVFKTAGVDPDVFHFTGRALVCESQDEAVEKILTKQVEPGHVVVVRYEGPAGGPGMQEMLYPTSFIKGRGLGKVCALITDGRFSGGSSGISIGHVSPEAAAGGVIGLVEDGDEIEIDVESRSVRLNVADDVLAERRAAMEASDNPWQPKDRDRYVSPALRAYAAMATSADKGAVRDINLVTRR	PGPT0001875_536	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687	NA	NA
AK001_00308	1518	dtpT	COG3104	Di-/tripeptide transporter	ATGACGGATTCCGCGGCCGGCTCGGGCCGCCCCGCCCAGCCGGCCGAGCGGACCTTCTTCGGGCACCCGCGCGGGCTGCTGACGCTGTTCACCACCGAGGCGTGGGAACGGTTCAGCTACTACGGGATGCGCGCCATCCTGGTGCTGTACATCACCGACGCGGTGGTCGACGGCGGGCTCGGCTACGACGAGACGACCGGCAACGCGATCGGGTCGATCTACGGCAGCTCGGTCTACCTGCTGTCCATCGTCGGCGGCTGGCTGGCCGACCGCGTCATCGGTGCCCGGCGTTCGGTGCTGTACGGCGGCATCGTCATCGCCGCCGGCCACGTGGCCCTCACCGTCCCGCAGGCCGCGTTCACCTGGCTCGGTCTGGTCCTCGTGGCCACGGGCACCGGCCTGCTCAAGCCGAACGTCTCGGCGATGGTCGGCGAGCTCTACGACCGGCGCGACCCGCGCCGCGAGGCCGGGTTCTCGATCTTCTACATGGGCATCAACTTCGGGTCGTTGTTCGCGCCGCTCGTGGTGGGCAGCGTGCAGCGGCTCTGGGGCTACCACGCGGGATTCCTCGTCGCCGCGGTCGGCATGGCGGTCGCCCTGGTCTTCTTCGTCGCCGGCCGCCGCTACCTCCACGGTGCCGGCGACGCCGTACCGAACCCGGTCCGGCGCGAGGAGCGGGGCACCATCGCACGGATCATGGTGGCGGTCGTCGCCGGCGTCGGCGTGCTCTACCTCGTGGCGGTCGCGGTCTCGGGCGGCTGGTCCGGAGGAGCGTTCGTCGACACCCTCAGCTACGTCGCGCTGGTGACCCCCGTCGTCTACTTCGTGGTGATGTACCGCTCGCCGAAGGTCACCGACACCGAGCGCCCGCGTCTGCTGGCCTACATCCCGCTGTTCGTCGCCGCCATGCTGTTCTGGATGATCTTCGAGCAGGCCGCCACGACCCTGACGACGTTCGCCCGCGACCGGACCCAGCTCGACGTCCTCGGGGTGGAGATCAGCCCGGCGTTCTTCCAGTCCGTGAACCCGGCCTCGATCATCCTGCTCGCCCCGGTGTTCGCCTGGCTGTGGCAGCGGACCGGCGGGCGCCCGCCCACGCCGTACAAGTTCGCGCTGGGGCTGGCGCTGGCCGCGGTGTCGTTCCTGTTCCTGGCGGGGGCCTCGGAGGTCGTCGGGGACGACCGCGCGCCGGCGTGGGTGCTGATCGTCGTCTACGTGATCCAGACCCTCGGCGAGCTGTGCCTGTCCCCGGTCGGGCTCGCGGCCACGACCCTGCTGGCGCCGCAGGCGTTCCGCGGGCAGGCGATGGCGCTGTGGTTCCTGGCCAACGCCTCGGGCCAGGCGATCACCGCGCAGCTCGTCCAGGCGACCGCCGACGTCTCCGACACCGCCTACTTCGGCGGGATCGGCGTCGTGGCGCTCGCGGTGGCGGGGCTGGTCTGGGCCGTCTCGCCGTGGGTGGTCCGGCAGATCCGGGCCGCCGACGAGGCCGAGGGCGTGCACACGGCGGGCGCCTGA	MTDSAAGSGRPAQPAERTFFGHPRGLLTLFTTEAWERFSYYGMRAILVLYITDAVVDGGLGYDETTGNAIGSIYGSSVYLLSIVGGWLADRVIGARRSVLYGGIVIAAGHVALTVPQAAFTWLGLVLVATGTGLLKPNVSAMVGELYDRRDPRREAGFSIFYMGINFGSLFAPLVVGSVQRLWGYHAGFLVAAVGMAVALVFFVAGRRYLHGAGDAVPNPVRREERGTIARIMVAVVAGVGVLYLVAVAVSGGWSGGAFVDTLSYVALVTPVVYFVVMYRSPKVTDTERPRLLAYIPLFVAAMLFWMIFEQAATTLTTFARDRTQLDVLGVEISPAFFQSVNPASIILLAPVFAWLWQRTGGRPPTPYKFALGLALAAVSFLFLAGASEVVGDDRAPAWVLIVVYVIQTLGELCLSPVGLAATTLLAPQAFRGQAMALWFLANASGQAITAQLVQATADVSDTAYFGGIGVVALAVAGLVWAVSPWVVRQIRAADEAEGVHTAGA	PGPT0021010_750	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021010-TC_POT-K03305	NA	NA
AK001_00309	1374	phrB	COG0415	Deoxyribodipyrimidine photo-lyase	ATGCCGACGACCGTGATGTGGTTCCGGCGCGACCTGCGCCTGGCCGACAACCCGGCCCTGCTCGCCGCCGTCGAGGCGGCGCGGGACGACGACGCGACCGTCGTCGCCCTGTACGTGCTCGACGAGACGCTGTGGCGCAGCGCGGGCGCCAACCGGCTCGCCTACCTGCGCGCGTCGCTGCAGGCCCTGGACGAGGCCTGCGACGGACGGCTCGTGGTCCGGCGCGGGGACCCGGCCGAGATCGTGCCGCAGGTGGTGCGCGAGACCGGGGCCGGTGCCGTGCACGTCGCGGCCAGCCACGAGCCGTACGGGTGCCGCCGGGACGCCGAGGTCGCCGCCGCCCTCGACGACCTCGGAGTGTCCCTGGAGCGCACCGGGTCGGCCTACGCCGTGTCCCCGGGGCGGCTGTTCACGCAGACCGGCGGGCCGTACCAGGTGTTCACCCCGTTCCGGCGGGCGTGGCTGGAGCACGGCTGGCCGTCCCCGGCCCGCCGTCCGCGGCAGGTCCCGTGGGCCGCGCTGGACGGAGACGCCCTGCCGGAGGGACCGGAGCCCACCGCGCACCTGCCCCGGGCCGGCGAGGACGCGGCGCGGCGCCGCTGGCGGGACTTCCTCGCCGACGGGCTCGCCGACTACCCCGACGCCGGGGACCGCCCCGACCTCGCCGGGACCTCGGCGATGTCCGTGCACCTGCGCTGGGGGGAGATCCACCCGCGCACGATGCTCGCCGACCTCGCCGCCGCGCAGGCCGACGGTGTCGACCCGGACGCCGTGGCGACGTTCCGCTCGGAGCTGTCGTGGCGCGAGTTCCACGCCGACGTGCTGCACCACCGCCCCGACGCCCGCACCCGCTCGCTGCGCGCCGTCGTGCCCGACGACGCCTGGACGCGGGGCGAGCAGGAGGACGAGTGGCTGGCGGCGTGGCGGGACGGGCGCACCGGCTATCCGTTCGTCGACGCCGGGATGCGCCAGCTGCTCGCCACCGGCTGGATGCACAACCGCGTGCGGATGGTGGTGGCGTCGTTCCTCGTCAAGGATCTCCACGTGCGCTGGCAGCGCGGGGCCGAGCACTTCATGGCCCACCTCGTGGACGGCGACGTGTCCCAGAACCAGCTCAACTGGCAGTGGGTCGCCGGGACCGGGCACGACGCCGCGCCCTACTTCCGCATCTTCAACCCGGTCACGCAGGGCGAGAAGTTCGACCCCGACGGGCAGTACGTGCGCCGCTGGGTGCCCGAGCTGCGCGACGTGGCCGGCCGGCGGGTGCACCAGCCCTGGAAGCTGGACACCCCGCCGGCCGACTACCCGGCACCGCTGGTCGACCACGCGCACGAGCGCAGGGTCAGCCTCGACGACTTCCAGCGGGGCCGGTGA	MPTTVMWFRRDLRLADNPALLAAVEAARDDDATVVALYVLDETLWRSAGANRLAYLRASLQALDEACDGRLVVRRGDPAEIVPQVVRETGAGAVHVAASHEPYGCRRDAEVAAALDDLGVSLERTGSAYAVSPGRLFTQTGGPYQVFTPFRRAWLEHGWPSPARRPRQVPWAALDGDALPEGPEPTAHLPRAGEDAARRRWRDFLADGLADYPDAGDRPDLAGTSAMSVHLRWGEIHPRTMLADLAAAQADGVDPDAVATFRSELSWREFHADVLHHRPDARTRSLRAVVPDDAWTRGEQEDEWLAAWRDGRTGYPFVDAGMRQLLATGWMHNRVRMVVASFLVKDLHVRWQRGAEHFMAHLVDGDVSQNQLNWQWVAGTGHDAAPYFRIFNPVTQGEKFDPDGQYVRRWVPELRDVAGRRVHQPWKLDTPPADYPAPLVDHAHERRVSLDDFQRGR				NA	NA	NA	NA	NA
AK001_00310	576			hypothetical protein	GTGACACCCCCGGTGCTGCCGGGGGAGATGGTGCGGCTGCGTCCGCTCGCGGCCCGCGACGCCGACCGCCTCTGGGAGTCGCTGCACGACCCGGAGGGCATGCGCCTGACGGGGACGACGGCGAGCTTCACCCGGGAGCAGATCGACGAGTGGGCGTCCTCGGTCGCCGGGCGCGACGGCCGGTTCGACTGGGCCATCACGCCGGCCGCGGTACGGGACGGCGAGCTGGTCAGCGACGAGCTGATCGGCGAGATCGTGCTCAACGACATCGACCCGGTCAGCCGCAGCGCCAACCTGCGCCTGCAGATGCTGCCGGACTACCGGGGCCGCGGCTACGGTCGCGAGGCGATCGAGCATGTGCTCCGCTTCGCCTTCGAGGCCGACCAGCTGCGCCTGCACCGGGTGGGCCTGGACGTGCTGAGCATCAACCCGCGGGCCAAGGCGCTGTACGCGTCGCTCGGCTTCGTCGAGGAGGGGCGGCTGCGCGACGCCTACCGCGACGGGGACGACTGGTCCGACGCGATCGTGATGAGCCTCCTCGAGGACGAGTACCGGGCGATGGTGCGCACCGCCTGA	MTPPVLPGEMVRLRPLAARDADRLWESLHDPEGMRLTGTTASFTREQIDEWASSVAGRDGRFDWAITPAAVRDGELVSDELIGEIVLNDIDPVSRSANLRLQMLPDYRGRGYGREAIEHVLRFAFEADQLRLHRVGLDVLSINPRAKALYASLGFVEEGRLRDAYRDGDDWSDAIVMSLLEDEYRAMVRTA				NA	NA	NA	NA	NA
AK001_00311	1497	gatB	COG0064	Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B	GTGACCCAGCTGGTCGACTACGCCGACGCGGTCCGACGGTTCGACCCGGTGCTCGGCATCGAGGTGCACGTCGAGCTCGGCACCCGGACCAAGATGTTCTGCCCGGCCGAGGTGGAGTTCGGCGGCGACCCGAACACCCAGACGACCCCCGTCAGCCTCGGGCTCCCCGGTGCGCTGCCCGTCGTCAACGGGACGGCCGTCGAGTACGCGATCCGGATCGGCCTGGCGCTCAACTGCCAGATCGCCGAGTCCTGCCGCTTCGCCCGGAAGAACTACTTCTACCCGGACGTGCCGAAGAACTTCCAGACCTCCCAGTACGACGAGCCGATCGCCTTCGACGGCTGGCTCGACGTCGAGCTCGAGGACGGCACGGTCCACCGTGTCGAGATCGAGCGGGCGCACATGGAGGAGGACGCCGGCAAGAACACCCACGTCGGGGGTGCCGCCGGCCGGATCCACGGCGCCGACTACTCGCTCGTGGACTACAACCGTGCGGGCATCCCGCTGGTCGAGATCGTCACGAAGCCGATCACCGGCGTCGGGGACCGTGCCCCCGAGGTGGCCCGCGCCTACGTGCAGGCGCTGCGCGACATCTTCCGGGCGCTGGACGTGTCCGAGGCCCGCATGGAGCGGGGCAACGTGCGTGCCGACGTCAACCTCTCGCTGCGTGCTACGCCGGACGCCCCGCTCGGCACCCGCACCGAGACCAAGAACGTCAACTCGTTCCGGTCGGTCGAGCGGGCCGTGCGCTACGAGGTCTCCCGGCAGGCCGCGATCCTCGACGCCGGGGACACCGTGGTCCAGGAGACCCGGCACTGGCACGAGGACACCGGCATCACCACCTCGGGCCGCGTGAAGTCCGACGCCGAGGACTACCGGTACTTCCCCGAGCCGGACCTGGTGCCGGTCGAGCCGTCCCGCGAGTGGGTCGAGGAGATCCGCGCCGGGCTGCCGGAGCTGCCGCAGGCCCACCGCCGTCGGCTCCAGGACGAGTGGGGCTACGCCGACGCCGAGATGCGCGACGTCGTCAACGCCGGCGCCCTCGACCTCATCGAGGCGACCGTCGCGGCGGGGTCCAGCCCGGCCGCGGCGCGCAAGTGGTGGATGGGCGAGCTCGCCCGCCGTGCCAAGCAGGACGAGGTCGAGCTGGCCGACCTGGCCATCACGCCGGCCCAGATCGGCGAGCTGCAGGGTCTGGTCGACTCCGGCCGGATCAACGACAAGATCGCCCGTCAGGTCCTCGACGGCGTGCTCGCCGGCGAGGGCGACCCGGAGCAGGTCGTGGTCGACCGCGGCCTCGAGATCGTCTCCGACGACGGCGCGCTGCTGTCCGCCATCGACGAGGCGCTGGCCGCCCAGCCCGACGTCGTCGAGAAGGTCCGCGGCGGCAACCAGGGGCCCGTCGGCGCGATCATCGGCGCCGTGATGAAGACGACCAAGGGGCAGGCCGACGCCAAGCGCGTGCGCGAGCTCATCCTCGAGAGGATCGGCTCGTGA	MTQLVDYADAVRRFDPVLGIEVHVELGTRTKMFCPAEVEFGGDPNTQTTPVSLGLPGALPVVNGTAVEYAIRIGLALNCQIAESCRFARKNYFYPDVPKNFQTSQYDEPIAFDGWLDVELEDGTVHRVEIERAHMEEDAGKNTHVGGAAGRIHGADYSLVDYNRAGIPLVEIVTKPITGVGDRAPEVARAYVQALRDIFRALDVSEARMERGNVRADVNLSLRATPDAPLGTRTETKNVNSFRSVERAVRYEVSRQAAILDAGDTVVQETRHWHEDTGITTSGRVKSDAEDYRYFPEPDLVPVEPSREWVEEIRAGLPELPQAHRRRLQDEWGYADAEMRDVVNAGALDLIEATVAAGSSPAAARKWWMGELARRAKQDEVELADLAITPAQIGELQGLVDSGRINDKIARQVLDGVLAGEGDPEQVVVDRGLEIVSDDGALLSAIDEALAAQPDVVEKVRGGNQGPVGAIIGAVMKTTKGQADAKRVRELILERIGS				NA	NA	NA	NA	NA
AK001_00312	1521	gatA	COG0154	Glutamyl-tRNA(Gln) amidotransferase subunit A	ATGACCGACCTGACCCGCCTGTCGGCCGCCGACCTGGCGCAGAAGCTGCGCCGGCGTGAGGTGACCAGCGTCGAGGTGACGCAGGCGTTCCTGGACCGGATCGCCGCCGTGGACGGTGCCGTCCACGCCTACCTGCACGTCAACGCCGAGGAGGCGCTGGCGACCGCTCGCGACGTCGACGCCCGCCGCGAGGCCGGCGAGGAGCTGCACCCGCTGGCCGGCGTGCCGATCGCCGTCAAGGACGTCGTCGTCACCCGTGGCATGCCCTCGACGGCCGGCTCCAAGATCCTCGAGGGATGGGTGCCGCCCTACGACGCCACCCTCGTCGAGAAGATCCGCGACGCGCGCATGCCCATCCTGGGCAAGACCAACATGGACGAGTTCGCCATGGGCTCCTCCACGGAGCACTCGGCCTACGGCAACACGCAAAACCCGTGGGACCTCGAGCGCATCCCGGGCGGGTCTGGCGGCGGCTCGGCCGCTGCGCTGGCGTCCTTCACCGCGCCCCTGGCGATCGGCACCGACACCGGCGGCTCCATCCGCCAGCCCGGCGCCGTCACCGGCACGGTCGGGGTGAAGCCGACCTACGGGAGCGTGTCGCGCTACGGCCTCATCGCGCTCGCCTCCAGCCTCGACCAGGCGGGTCCGGTCACCCGGACCGTCATGGACTCGGCGCTGCTGCACGAGCTGATCGGCGGGCACGACCCGCGGGACTCGACCTCCATCCCCGAGCCGCTGCCCGCGCTGGTGGAGGCCGCCGCGCAGGGTGCCGGCGGCGACCTGTCCGGCGTGCGGGTCGGCGTCGTCAGCCAGCTGCAGGGCGAGGGCTACCAGGAGGGGGTCCAGGCCCGGTTCACCGAGTCCCTCGAGCTGCTGCGTCAGGCGGGTGCCGAGGTCGTGGAGGTGTCCTGCCCGCACTTCGAGTACGCGCTGGCCGCGTACTACCTGATCCTGCCGGCCGAGGCGTCTAGCAACCTGGCCAAGTTCGACGGCATGCGCTTCGGCCTGCGGGTCGAGCCCGAGGACGGCCCGGTGACCGCCGAGCGCGTCATGGCCGCCACCCGGGGCGCCGGCTTCGGCGACGAGGTCAAGCGCCGCATCATCCTGGGCACCTACGCGCTGAGCGCCGGCTACTACGACGCCTACTACGGCAGCGCGCAGAAGGTCCGCACGCTCATCCAGCAGGACTTCGACGCCGCGTTCGAGCAGGTCGACGTGCTCGTCTCCCCGACTGCGCCGACCACGGCGTTCAAGCTCGGCGAGAAGCTCGACGACCCCCTGGCGATGTACCTCAACGACGTCGCCACGATCCCGGCCAACCTCGCGGGCATCCCCGGCATCTCGGTGCCGAACGGCCTCGCGGAGCCCACCGACGGCGGTGCCGCCATGCCGACCGGCTTCCAGGTGCTGGCCCCCGCCAAGGCCGACGACCGCCTCTACCGCGTCGGCGCCGCCCTCGAGGCCGCCCTGGAGAAGTCCTGGGGCGGTCCGCTGCTGGACCGCGCGCCCGAGCTCGGCTGA	MTDLTRLSAADLAQKLRRREVTSVEVTQAFLDRIAAVDGAVHAYLHVNAEEALATARDVDARREAGEELHPLAGVPIAVKDVVVTRGMPSTAGSKILEGWVPPYDATLVEKIRDARMPILGKTNMDEFAMGSSTEHSAYGNTQNPWDLERIPGGSGGGSAAALASFTAPLAIGTDTGGSIRQPGAVTGTVGVKPTYGSVSRYGLIALASSLDQAGPVTRTVMDSALLHELIGGHDPRDSTSIPEPLPALVEAAAQGAGGDLSGVRVGVVSQLQGEGYQEGVQARFTESLELLRQAGAEVVEVSCPHFEYALAAYYLILPAEASSNLAKFDGMRFGLRVEPEDGPVTAERVMAATRGAGFGDEVKRRIILGTYALSAGYYDAYYGSAQKVRTLIQQDFDAAFEQVDVLVSPTAPTTAFKLGEKLDDPLAMYLNDVATIPANLAGIPGISVPNGLAEPTDGGAAMPTGFQVLAPAKADDRLYRVGAALEAALEKSWGGPLLDRAPELG				NA	NA	NA	NA	NA
AK001_00313	297	gatC	COG0721	Glutamyl-tRNA(Gln) amidotransferase subunit C	ATGTCCACCATCTCCCGTGACGAGGTCGCGCGTGTCGCCGCGCTGGCGCGGATCGAGCTGCGCCCTGACGAGCTGGATCGGCTCGCCGGCGAGCTCGACGTGATCGTCGAGTCCATCGCCAAGGTGAGCCAGGTCGCGACCCCCGAGGTCCCCGCGACGAGCCATCCGCTGCCCATGTCCAACGTGTTCCGTCCCGACGTGCCCGAGCCGGCGCTGCCGGTCGACGACGTGCTCGCGGGTGCGCCGGAGGCCGAGGACGGCCGGTTCGCGGTGCCGCAGATCCTCGGGGAGGAGTGA	MSTISRDEVARVAALARIELRPDELDRLAGELDVIVESIAKVSQVATPEVPATSHPLPMSNVFRPDVPEPALPVDDVLAGAPEAEDGRFAVPQILGEE	PGPT0023460_1669	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023460-gtaC-K02435	NA	NA
AK001_00314	687			hypothetical protein	ATGCGGGACCTGCACAAGGATGCGCGGGAACGGCTGCGCGGCCTGAGCAAGGAGAACGCCGAGCGGGTCGGTGCACACCTCGTCATGGCCGGACGCCTGCTCGACGCCGACCCCGAGGCGGCCTACGCCCACGCACAGGCCGCCGTCCGGCGCGCCGGACGCGTCGACGTCGTGCGCGAGGCAGCCGGCATCGCCGCCTACCGGACCGGTCGGTTCGCCGAGGCCCTGCGCGAGCTGCGCACCGTGCGACGGCTCAACGGTTCCTCGGAGCACCTGCCGCTCATGGCCGACGCCGAACGCGGGCTGGGCCGCCCGGAGCGTGCCATCGCGCTGGCGGCCTCCGAGGAGGCGCGCACCCTGGACGCCGAGACGCGCACCGAGCTGGCGATCGTCGTCAGCGGAGCTCGCTCCGACCTCGGTGAGCACGACGCCGCACTCGTGGTGCTCGACCGGATCCCGGCCGCCGAACGGAAGGGCGACCTGGGGCTGCGCGTGCTGCAGGCCCGCGCCGTCGCCCTCGAGTCCGCCGGCCGCACGGACGAAGCAGCGACGGTCCTCGCCGGGATCGACCCGGAGGCCCTGCAGCGCGCCGTCGGCGGCGGCGAGATGCCGGCCGACGACGTCGTCGTCTTCGACGCCTACGACGAGTCGGCGGACGAGGGGAACGAGGCGGAGGCCGACGCGTGA	MRDLHKDARERLRGLSKENAERVGAHLVMAGRLLDADPEAAYAHAQAAVRRAGRVDVVREAAGIAAYRTGRFAEALRELRTVRRLNGSSEHLPLMADAERGLGRPERAIALAASEEARTLDAETRTELAIVVSGARSDLGEHDAALVVLDRIPAAERKGDLGLRVLQARAVALESAGRTDEAATVLAGIDPEALQRAVGGGEMPADDVVVFDAYDESADEGNEAEADA	PGPT0024450_6	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117	NA	NA
AK001_00315	1011		COG0647	D,L-glycerol 3-phosphate phosphatase	GTGAGCGCCGGGCTCGCCGCGAGCGAGACGCCGCTGGCCGAGGCCTACGACCTCGCCCTGGTCGACCTGGACGGTGTCGCCTACCAGGGGCACCTGCCCATCGACCACGCGGCGCCGAGCCTGGCGTCGGCGCGGGCGAGCGGCCTCGACCTGCTGTTCGTGACGAACAACGCCTCGCGCGAGCCCGAGGAGGTGGCCGGGCAGCTCAGCAGTCTGGACATCCCGACGGAGGCCGGCGAGGTCATGACGGCCGCGCAGGCGTGCGCCACCCTGTTGCGCACCCGGCTCGAGCCCGGCGCCCGGGTGCTCGTCGTGGGCGGCCGCGGCCTGGTCACGGCGGTGCGCGAGGCCGGCCTCGAGGTCGTCGGCAGCGCCGAGGACGCCCCGGAGGCCGTCGCCCAGGGGTTCGCCCCCGAGCTCGGCTGGAGCGACCTGGCCGAGGCGGCGTACGCCGTGGCCGGCGGCGCCTTGCACGTGGCGAGCAACCGGGACATGTCCCTGCCGACCGCCCGAGGGTTCGCCCCGGGCAACGGCGCGCTCGTCGCCGCCGTGTCGGCGGCGACGGGGATCGAGCCCGACAGCGCCGGCAAGCCGTCGCCCACGATGTACCGCATGGCCGTGGAACGGGCGGGCGCGTCGCGTCCGCTGGTCATCGGCGACCGGCTCGACACCGACCTCGCCGGGGCCCGGGCGGCGGGATACGCCGGGCTGCACGTCCTGACGGGGGTGTCCTCCGCGCGCGACGCCGTGCTGGCCGAGCCGGGCCTGCGCCCGCACTTCGTGGGCGCGGACCTGCGCTCCCTCCTCGTCGCGCACGAGACGCCCGTCCTGGCCGACGGCTGGTGGCGGTGCGCCGACCGGGCTGCGCGCGTCGTCGACGGACGGCTCGAGCTCGACCGGCACGGCCCGGCGGGCCTCGACGTGGTCCGCGCCGCCTGCGCCGCCGCGTGGGACGTGGCGGACGCCGGTGGGCCCGTGGCGGCGGACAGCGTGCCGGAGCTGACCGCCTGA	MSAGLAASETPLAEAYDLALVDLDGVAYQGHLPIDHAAPSLASARASGLDLLFVTNNASREPEEVAGQLSSLDIPTEAGEVMTAAQACATLLRTRLEPGARVLVVGGRGLVTAVREAGLEVVGSAEDAPEAVAQGFAPELGWSDLAEAAYAVAGGALHVASNRDMSLPTARGFAPGNGALVAAVSAATGIEPDSAGKPSPTMYRMAVERAGASRPLVIGDRLDTDLAGARAAGYAGLHVLTGVSSARDAVLAEPGLRPHFVGADLRSLLVAHETPVLADGWWRCADRAARVVDGRLELDRHGPAGLDVVRAACAAAWDVADAGGPVAADSVPELTA	PGPT0024450_425	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117	NA	NA
AK001_00316	186			hypothetical protein	ATGTCGGACGACGCAGCCGACGTCGGCGAGCAGCCGGCCGGCCGCTCCACCTCTCTGACCCCGCTGGACGGGCTCGAGGACCTGCCGACCGGAGAGCACCCGTCGCGGTTCGAGGCCGTGCACCAGCACCTGCGGGCACGGCTGGACGACCCCGACCACCCCGGGACGGACGGAGCGGGGGACTGA	MSDDAADVGEQPAGRSTSLTPLDGLEDLPTGEHPSRFEAVHQHLRARLDDPDHPGTDGAGD				NA	NA	NA	NA	NA
AK001_00317	891	tlyA	COG1189	16S/23S rRNA (cytidine-2'-O)-methyltransferase TlyA	ATGCCGAACCGTGCCGACTCAGAGCTCGTGCGGCGCGGACTGGCCCGGTCTCGTCGGCAGGCGTCCGCCTTCGTCGCGGCCGGCCGGGTCCGGGTCGGCGACGAGGTCGTCACGAAGTCCTCCGCCGCCGTCGCGCAGGACGCCCCGCTCACCGTCGCCCCCGACCCGGACGACCCCGGGTACGCCTCGCGCGCCGGCGCGAAGCTCGCCGGCGCCCTCGACGCGCTCGCCGCGGACGCGGTCGGGCGCGCGGTGACCGACCGTCTGCCGGGTGCGCACTGCCTCGACCTGGGCGCCTCCACCGGCGGCTTCACCGACGTGCTGCTGCGCCGCGGTGCTGCCGGCGTCGTCGCCGTCGACGTCGGGCACGACCAGCTCGTGGACACGTTGCGCGCCGACGACCGCGTCACGGTCGTCGAGGGCTTCAACGTCCGTGACCTCGGGCCCGCGGACCTGCCTCGGCCTCCCGACGTCGTCGTCGGCGACCTGTCCTTCATCTCGCTGCGCCTCGTCCTGGGCCCCGTCGCGACCTCGGTGCCCACCGGTGCCGACGTCCTGCTGCTGGTCAAGCCGCAGTTCGAGGTCGGGCGCGACCGGCTCGGCAGCGGCGGCGTGGTCCGGGACGCGGCCCTGCACGCGCGGTCCGTCACGGACGTGGTCGTCACGGCGGCGCCGCTCGGCCTCGCGGCCCGCGCGCTCGTGCCCAGCCCGCTGCCCGGACCCAGCGGGAACCGTGAGTACTTCGTCTGGCTGCGGCGTACGCCGGCGGCCGTCCCCGCCGACGGCGACGCCGTTCGGTCCGTCGCCGACCGTGCGGCCGCCTGGCTGCCGGACGGTCAGCTGCCGCCGGTCCTCGCCCTGGGCGGGCCCGGCACCGGAGGTGAGAGATGA	MPNRADSELVRRGLARSRRQASAFVAAGRVRVGDEVVTKSSAAVAQDAPLTVAPDPDDPGYASRAGAKLAGALDALAADAVGRAVTDRLPGAHCLDLGASTGGFTDVLLRRGAAGVVAVDVGHDQLVDTLRADDRVTVVEGFNVRDLGPADLPRPPDVVVGDLSFISLRLVLGPVATSVPTGADVLLLVKPQFEVGRDRLGSGGVVRDAALHARSVTDVVVTAAPLGLAARALVPSPLPGPSGNREYFVWLRRTPAAVPADGDAVRSVADRAAAWLPDGQLPPVLALGGPGTGGER				NA	NA	NA	NA	NA
AK001_00318	975	nadK		NAD kinase	ATGACGCGCCGCGTCCTGATCGTGACCCACGGCGGGCGGCCCCGTGCCGTGGCCGCGATGTCCGAGGCGGTCTCCGAGCTCGAGTCCGCAGGGTTCGAGGTCACGCTGCACGACGACGACCTCGCCGAGACCTTCGGCGACCGGATCTCCTCGGTGCGCCTGCGCGAGGGCGTCGCCGAGTCCGAGGTCGTCATGGTCCTCGGCGGTGACGGCACGATCCTGCGCGCGGCCGAGCTGACGCACGGGACCGAGGTGCCCCTGCTGGGCGTGAACCTGGGGCACGTCGGGTTCCTGGCCGAGTCCGAGCGGGAGAACCTGCACGACGCCGTGCGCCGGCTGGCGGCCCACGACTACGTTGTCGAGGAGCGCCGGGTGGTGGACGTCGTCGTCCACCGTCCCGGGGAGGACGAGCCGGTGACCGGCTGGGCGCTCAACGAGGCCACCATCGAGAAGGGCGACCGCGAGCGCATGCTCGAGGTCGGCATCGCCGTGGACGGCCGGCCGCTGAGCTCCTTCGGGTGCGACGGCGTCCTCGTCTCGACCGCGACGGGGTCGACGGCGCACGCCTTCAGCGCCGGCGGACCGGTGATGTGGCCGGACGTCGACGCCGTGCTGCTCGTCCCGCTGTCGGCGCACGCGCTGTTCTCGCGGCCCCTGGTCATCAGCCCGCGCTCGGAGTACGTCGTGGAGGTGCTGGAGCGCAGCCCGATCCCCGGGGTGCTGACCTGCGACGGGCGCCGCAGCATCGACCTGCCGCCCGGCTCCCGCGTGCACGTCCGCAGCGGCGCCGTGCCGCTGCGGTTCGCTCGGCTGATGCCGGCGCCGTTCACCGACCGGCTCGTGTCCAAGTTCAACCTGCCCGTCGTCGGCTGGCGGCAGGCCGCCGACGGTGCGGCACGGCGGTCCGTGCCCACGGAACCGGGTCCGTCCGAGGACTCCGCCCCGGGCCCGACCCCGGTCCAGAAGGAGGTGTGA	MTRRVLIVTHGGRPRAVAAMSEAVSELESAGFEVTLHDDDLAETFGDRISSVRLREGVAESEVVMVLGGDGTILRAAELTHGTEVPLLGVNLGHVGFLAESERENLHDAVRRLAAHDYVVEERRVVDVVVHRPGEDEPVTGWALNEATIEKGDRERMLEVGIAVDGRPLSSFGCDGVLVSTATGSTAHAFSAGGPVMWPDVDAVLLVPLSAHALFSRPLVISPRSEYVVEVLERSPIPGVLTCDGRRSIDLPPGSRVHVRSGAVPLRFARLMPAPFTDRLVSKFNLPVVGWRQAADGAARRSVPTEPGPSEDSAPGPTPVQKEV	PGPT0013490_1589	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858	NA	NA
AK001_00319	1704	recN	COG0497	DNA repair protein RecN	GTGCTCGAGGAGATCGCGATCGAGGACCTCGGGGTGATCCGCTCGGCGCGGGTCCCGCTGTCCGCCGGCCTGACCGTGATCACCGGTGAGACCGGAGCGGGCAAGACCATGGTGCTCACGGGCCTGGGGCTGCTCATGGGCGGCAAGGCCGATCCCGGCAGCATCCGGCCGGGTGCCTCGCGCGCCGTCGTCGAGGGACGCCTCGACCTGGCCCGTCACCCGGAGGTCGTCGGTCGCGTCGACGACGCCGGGGGCAGCGTGGACGACGACGGCACGGTCGTCGTGCTGCGCACGGTCGCCTCCGGACGGTCGCGGGCCCATCTCGGCGGACGGGGGGTGCCGCAGGGCGTCCTCGCGGAGGTCGCCGACGAGCTCGTCACCGTGCACGGGCAGTCCGACCAGCTGCGGCTGCGCACGCCCGCCAAGCAGCGCGAGGCCCTCGACCGGTTCGCCGGGACGGAGCACGCCGAGGTGCTCGCCGCCTACCGGGCGGCCTGGAGCGAGCGGGCCGGGCTGCAGGCGGAGATCGACGACCTGACCTCGCGCGCCGCCGAGCGGGCACGCGAGGCCGAGCTGCTGCGCCTCGGGCTGGCCGAGGTCGAACGCGTCGACCCCCAGCCCGGGGAGGATGCCGAGCTGACGGCGCTGACCGCCCGCCTCGGCAACGCCGAGGCGCTGCGGCAGGCGGCGCAGCAGGCGCACGACGCCGTCGTCGGCCTCGACATGGAGACCGAGGGCTCGGCGGTGCACGCCCTGGAGCAGGCCAAGCGTTCCCTGGACGCCGTCGCCGAGTCCGACCCCGCGCTGGCCGAGCAGGCCGGTCGCCTCGCCGAGGCCGCCTACGTCATCACCGACGTGGCGACCGAGCTGTCCGGCTACGTCGCCGACCTGCAGGCCGACCCGGCCGCGCTGGAGACCGCGCACCAGCGTCTGGCCGAGCTCGGCGCGCTCACCCGCAGCTACGGCGAGACGATCGACGACGTCCTGCAATGGGCGTCCGACGCCGGGCTGCGGCTGCTGGACCTGGACGACGGCGACGAGCGGGTCACCGCGATGCGCGACCGGGTGACCGAGCTGGACGCCCGGCTCGTCGACCTCGCGGCCCGGGTCACGGCCGGGCGACGTACCGCCTCCGACCGGCTCGCCGAGGTCGTCACGACCGAGCTGGCCGGGCTGGCCATGTCGGGGGCCCGCCTGCAGGTCGACGTCGGCGAGGCCGACCCCGGGCCGTCGGGGGCGGACCAGGTGGTGTTCCTGCTCGAACCGCACCCCGGCGCTCCGGCCCGCCCGCTCGGCAAGGGCGCGTCCGGCGGTGAGCTGTCCCGCGTCATGCTCGCGGTCGAGGTCGCCCTGGCCACCGCCGGCGAGGACACCGTGCTGCCGACGTTCGTCTTCGACGAGGTCGACGCCGGCGTCGGGGGACGAGCGGCGGTCGAGGTCGGGCGACGGCTCGCCCGGCTGGCGCGCAGCACCCAGGTGGTGGTCGTCACCCACCTGGCGCAGGTGGCGGCCTTCGCCGACACCCACCTGGTGGTGACGAAGGCCACCGAGGGCGACGACGTCACCACCGTGACCGGCGTCCACGAGGTCGCGGAGGACGAGCGGGTCCGTGAGCTGGCCCGGATGCTGTCCGGCCAGGACGACTCGGCGACGGCGCGGCAGCACGCCCTCGAACTTCTCGAGTCCTCGGCCGTGGGACGATAG	MLEEIAIEDLGVIRSARVPLSAGLTVITGETGAGKTMVLTGLGLLMGGKADPGSIRPGASRAVVEGRLDLARHPEVVGRVDDAGGSVDDDGTVVVLRTVASGRSRAHLGGRGVPQGVLAEVADELVTVHGQSDQLRLRTPAKQREALDRFAGTEHAEVLAAYRAAWSERAGLQAEIDDLTSRAAERAREAELLRLGLAEVERVDPQPGEDAELTALTARLGNAEALRQAAQQAHDAVVGLDMETEGSAVHALEQAKRSLDAVAESDPALAEQAGRLAEAAYVITDVATELSGYVADLQADPAALETAHQRLAELGALTRSYGETIDDVLQWASDAGLRLLDLDDGDERVTAMRDRVTELDARLVDLAARVTAGRRTASDRLAEVVTTELAGLAMSGARLQVDVGEADPGPSGADQVVFLLEPHPGAPARPLGKGASGGELSRVMLAVEVALATAGEDTVLPTFVFDEVDAGVGGRAAVEVGRRLARLARSTQVVVVTHLAQVAAFADTHLVVTKATEGDDVTTVTGVHEVAEDERVRELARMLSGQDDSATARQHALELLESSAVGR				NA	NA	NA	NA	NA
AK001_00320	1188			hypothetical protein	ATGATCCTGCGCCGGGCCGACCGCAGCCCCGACACCAGCGACGACGCCGCCGACGGCGGTGGGACGGCGCGTGTCGGCGCGCGGACGAAGGACCTCACCAAGCGGCTCCGCCCGGGCGACGTGGCCGTGATCGACCACGCCGACATCGACCGGGTGGCGGCCGAGGCGCTGGTCGCCGCCGGACCGTCCGCCGTGCTGAACGCGGCCGCCTCGACGACCGGCCGCTACCCGAACGCCGGTCCCGACATCCTGCTGCAGGCCGGCATCGTCCTGGTCGACGACATCGGCCCGGAGATCATGACCGTGCGCGACGGCGCCCGCGTGAGCGTCGAGGGCGGCGAGGTCCGCGTGGACGGCCAGGCCTTCGCGTCCGGGACCCGCCAGACGCCAGAGACCGTCGCCCGCGACCTCGCGGAAGCCCGCGAGGGCCTGTCGGACGAGATCGAGCGGTTCGCCGAGAACACGCTGTCCTACCTGCGCCGCGAGCGCGACCTGCTGCTGGACGGCGTGGGCGTGCCGGACGTGCGCACCACGGTCGAGGGCCGGCACGTCCTCATCGTCGTGCGCGGTTACCACTACCGCGAGGACCTGGCGATGCTGCGGTCCTACATCGCCGAGAACCGGCCGGTGCTGGTCGGTGTCGACGGCGGCGCGGACGCGATCCTCGACGCCGGGTACCAGCCGGACATGATCGTGGGCGACATGGACTCGGTCTCGGACCAGGCGCTGTCGTGCGGCGCCGAGATCGTGGTGCACGCCTACCGGGACGGCAACGCCCCCGGCCTGGAGCGCGTACGCGCCCTGGGGGTGGACCCCGTGGTGTTCCCGGCCACCGGGACCAGCGAGGACATCGCGATGCTGCTCGCCGACGACAAGGGTGCCGAGCTGATCGTCGCCGTCGGGACGCACGCCACGCTCGTGGAGTTCCTCGACAAGGGCCGCGCCGGCATGGCAAGCACCTTCCTGACCCGGCTGCGCATCGGCGGCAAGCTCGTCGACGCCAAGGGCGTCTCCCGGCTGTACCGCACCCGGATCTCCAACCTGCAGCTCACGCTGCTGTCGCTGGCCGGCGTCGCGGCGGTCCTCGCCGCCCTGTGGTCGACGGCGGCCGGGCAGACCGCCTTCGGGCTCGTCGGAGCCCAGATCGACGACCTCGTGTCGTGGATCGGCAGCCTCTTCGGCGGCTGA	MILRRADRSPDTSDDAADGGGTARVGARTKDLTKRLRPGDVAVIDHADIDRVAAEALVAAGPSAVLNAAASTTGRYPNAGPDILLQAGIVLVDDIGPEIMTVRDGARVSVEGGEVRVDGQAFASGTRQTPETVARDLAEAREGLSDEIERFAENTLSYLRRERDLLLDGVGVPDVRTTVEGRHVLIVVRGYHYREDLAMLRSYIAENRPVLVGVDGGADAILDAGYQPDMIVGDMDSVSDQALSCGAEIVVHAYRDGNAPGLERVRALGVDPVVFPATGTSEDIAMLLADDKGAELIVAVGTHATLVEFLDKGRAGMASTFLTRLRIGGKLVDAKGVSRLYRTRISNLQLTLLSLAGVAAVLAALWSTAAGQTAFGLVGAQIDDLVSWIGSLFGG				NA	NA	NA	NA	NA
AK001_00321	1092			hypothetical protein	GTGATCGACTTCCGTTACCACCTCGTCTCGCTGATCAGCGTCTTCCTGGCGCTCGCGGTCGGCATCATCCTCGGCGCCGGTCCGCTGCAGAACGCCATCGGCGACCAGCTGACCGACCAGGTGGAGGCCCTGCGGACCGAGCGCACCGCGCTGCGCGACAGCCTCGGGCAGACCGAGGCGGAGCTCGCCGACCAGCAGGCCTACGCGCTGGCGGCGGGCGCCGAGCTCGTCGACGGGTCCCTCGAGGACCTGAGCGTCGCCGTCGTCGACCTCGACGGTATCGCCGAGACCCTGGAGCTCGACGTCGTCAACCAGCTCGAGGCGGCGGGCGCGCGCGTGGTGGCCCAGTCCTCGATGACCGACGCCTGGAGCACCGTGGACGACTCGGTGCTCCGTGACACCGTCGCCGACGGGCAGCGCGGTCAGCTCGAGGACATGGTGCCCGAGGACGCGACGACCCCGCAGGTGCTCGGCACGGTGCTGGGCGTCGCGCTGACCGAGGGCGACGATCAGGTCCCCGGCACGCGCAGCGACCGGGCCGTCGAGCTCTACCAGCTCCTCGCGCAGGTCGGCCTGGTCGACTCCCGGTTCGCGCCGTCGGCACCGGCCGACGCCGTGCTGCTGCTGACCGCAGGGCTCCCGGAGGAGAACGGGGCCTCCACGTCCGAGACGCCCGAGGTCGGCGAGGACGTCGACGTCGCGAGCACCGTCACCGCCGTGCAGGCCGTGGCCGGGACGGTCGTGGTGGCCGGCCCCACGGCGACCGACGGCGACCTGCTCACCGAGCTGCGCGCCGTCGAGGACGTCACCGCCTCCACCAGCACGGTCAGCGGCATCGAGCAGGAGGTCATGCGGATGAACGTGCCGCTGGCGATCGCCGCGCAGGACGACGACCAGGTGGGGCACTACGGCTTCGAGGAGGGTGCGCAGGTCATCCCGCCGGTGGTGCGGACCCCGCCCACCGAGGACGACGCCGAGGGGACGGTCGACGGCCCGACCGACGCGACCGAGGACTCCGCCGACGGCGCCGCCGCGCCGGACGACTCGTCCGCCGACGCGTCCGCCGACGCCGACAGCACCCAGGACTCCTGA	MIDFRYHLVSLISVFLALAVGIILGAGPLQNAIGDQLTDQVEALRTERTALRDSLGQTEAELADQQAYALAAGAELVDGSLEDLSVAVVDLDGIAETLELDVVNQLEAAGARVVAQSSMTDAWSTVDDSVLRDTVADGQRGQLEDMVPEDATTPQVLGTVLGVALTEGDDQVPGTRSDRAVELYQLLAQVGLVDSRFAPSAPADAVLLLTAGLPEENGASTSETPEVGEDVDVASTVTAVQAVAGTVVVAGPTATDGDLLTELRAVEDVTASTSTVSGIEQEVMRMNVPLAIAAQDDDQVGHYGFEEGAQVIPPVVRTPPTEDDAEGTVDGPTDATEDSADGAAAPDDSSADASADADSTQDS				NA	NA	NA	NA	NA
AK001_00322	879			hypothetical protein	ATGCGCGCGGCGCGGGTCCTGGCGGCCGGGCTGGTCGCCGCGGCCACGACCGCCGTCGTGCGCCGTGCCCTGAACGCGGCGCCCCCCGGCGGGCCCGACCGGTGGACGCGGACCAACCACCGCGACGAGCCGGTCTCGATGCTCGAGGGCCCGGCCGCGGCCGCCGGGCTGGTCGCGGGAGCCACGGCCTGCGGTGCTGCGCCGCGGACCCGGGCGGCACTGGTGATCGCCACCGGCGCGGCCGGGGCCTTCGGCGTCGTCGACGACCTCGCCGAGGACGCCGCGACGCGCACCAAGGGACTGCGCGGGCACCTCGGGGCGCTGGCGCGCGGCGAGCTCACGACGGGCGGGCTCAAGGTCCTCGGGATCGGGACGACGGCCCTCGTCGTCGCCGGGGTCGGTACGCCGCGCCGGCGGAGCGCGGTCGGGCACGTGGCCGACGTCGTCGTCAACGGCGCGCTCATCGCCGGGACGGCCAACCTGGTCAACTTGCTCGACCTGCGTCCGGGCCGTGCCCTCAAGGCCTCCGCAGCGCTCACCGCCCCGGTGCTCGCCGCTCGGGAGCCGGGGTCGACCGGGGCGCTGCTCGGGGTCGTGGCGGCCTCGGCCCCGGCCGACCTGGCCGAGCGCGACATGCTGGGCGACGGTGGAGCCAACGCGCTGGGCGCCTTCGTCGGCACGCAGTGGGCGTGCGCGGCCTCCCGCCCGGTCCGCGTGACGGCCCTGGCGACCGTGGTCGGGCTGACGCTCGCCTCGGAGCGGGTCAGCTTCTCCGCCGTCATCGACCGCACCCCCTGGCTGCGTCGTGTCGACCGGCTCGGCCGACGTCCCGCCGAGCCGGCCGCCGGCGCCCCCGACTCCGGAGGCACGGCGGGGTGA	MRAARVLAAGLVAAATTAVVRRALNAAPPGGPDRWTRTNHRDEPVSMLEGPAAAAGLVAGATACGAAPRTRAALVIATGAAGAFGVVDDLAEDAATRTKGLRGHLGALARGELTTGGLKVLGIGTTALVVAGVGTPRRRSAVGHVADVVVNGALIAGTANLVNLLDLRPGRALKASAALTAPVLAAREPGSTGALLGVVAASAPADLAERDMLGDGGANALGAFVGTQWACAASRPVRVTALATVVGLTLASERVSFSAVIDRTPWLRRVDRLGRRPAEPAAGAPDSGGTAG	PGPT0015240_2799	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISM	CE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851	NA	NA
AK001_00323	1656	murJ_1		lipid II flippase MurJ	GTGAGCGCACCGGGCGGTCGCCGGGTCGGGGCCACGGTCGCCGGGGCGGCGGTGCTCATCACCGTCGTCACCCTGGCGAGCCGCGTCGTCGGGTTCGGGCGGTGGCTGGCCCAGGCCCGGTTCGTGGGGACCGACGGCGTCGACGCCCCCCTGAACGCCGCCAACCTGCTGCCGAACGTCCTCTTCGAGATCGCGGCCGGCGGCGCCCTGACCGGTGCGGTCGTGCCGCTGCTGTCGGGCTTCCTCGTGCGCGGCGACCGGCCCAACGCCTCGCGCACCGCCTCGGCGCTGCTCGGGTGGACCGTCGTCGTGCTGGTCCCGGTCGCGGGCCTGATGGCGCTGCTGGCCGACCCGCTCGCCGAGCACGTGCTCCGCCTGCACGACCCCGTCAACGTGGCCGTGGCGGCCGACTTCCTGCGCGTCTTCGCCGTGCAGGTGCCGCTGTACGGGCTCGCGGTGGTCCTCGGCGGGATCCTGCAGGCGCACCACCGCTTCTTCTGGCCCGCCTTCGCGCCGCTGGTGTCCAGCCTCGTGGTCATCGGCGTCTACGCCCGGTTCGGCACCCTGGCCGACGGCAACCAGCAGGACGTCGCCGAGCTGACGTCCCAGGCGCTCGGCTGGCTGGCCTGGGGCATGACGGCGGGCGTGGCGTTCCTCGCCCTGCCGCTGGTGGTGCCCGTGGCCCGCACGGGGCTGCGGATCCGGCCCACGTTGCGCTTCCCGGACGGCGAGGGTCGGCGCGCGGCCCGGCTCGCCTCGGCCGGCATCGGAGCCCTGGTGGCGCAGCAGCTCGCGCTGCTGGCCACGATGGCGTCCGCGAACGAGGCCGGCGGCGACGGGACGTGGACGATCTTCCTGTACGCGCAGAACGTCTACTTCCTGCCGTACGCCGTCCTGGCGTTCCCCATCGCCACGAGCGCCTTCCCCCGCTTCTCCGCGCTGGCGTCGGAGGGACGCGGCGACGAGCTCGCGCGGCTGGTGTCGTCGACCACGCGGGTCCTCGTCGTCGTCTCGGCGGCCGGCGCCGCCGCGCTCGTCGCGGCCGCGCCCCTGGTCGAGAACGTCTTCGCGGGCGTCGCCGACGGTGACGCCGACGGCCTCGCGGCCGCGTTGGCCTGGATGGCGCCGGGACTGCTCGGGTACGCGCTGATCCTGCAGCTGTCCCGGCTGCTGTACGCGGTCGGCGCCGCTCGGGCCGCGTGGATCTCCACGGCGGCGGGCTGGGCCGTCGTCGCCGTCGGGGTGGGACTCGCGGTCCCGGTGTTCGCCGGGGGAGTGGACGTCGAGACGGCCGTGCTGGCCTGGCTCGGCGGCGCCACGACGGTCGGCATGACCGTGGCCGGTGCCGCCCTGCTGCTCGCGGTGCGGCGTCGGGTCGGCGCACCCGCCCTGGACGGCGTGCTGCGCACGGGCGCCGTGACGGTGGCCGCGGCCGCGGTCGGGGCGTTGGCGGGCCGCTGGGCCCTCCCGGTGGCCGACCGGGGCGCGGGCGACGACGCCGCCCTCGACGCCGGGTGGATCGCGGCCGACGTCGGCTGGGGGCTGCTCGCGGGGCTGCTCGCCGCCGCCGTCGTCCTGGTGGTCGCCGCGGCCACCGACCCGGCCGTGCGCTCGCGCGCCGCGGGCGTCGGCGGGCGCCTGCTGCGCCGGCGGTGA	MSAPGGRRVGATVAGAAVLITVVTLASRVVGFGRWLAQARFVGTDGVDAPLNAANLLPNVLFEIAAGGALTGAVVPLLSGFLVRGDRPNASRTASALLGWTVVVLVPVAGLMALLADPLAEHVLRLHDPVNVAVAADFLRVFAVQVPLYGLAVVLGGILQAHHRFFWPAFAPLVSSLVVIGVYARFGTLADGNQQDVAELTSQALGWLAWGMTAGVAFLALPLVVPVARTGLRIRPTLRFPDGEGRRAARLASAGIGALVAQQLALLATMASANEAGGDGTWTIFLYAQNVYFLPYAVLAFPIATSAFPRFSALASEGRGDELARLVSSTTRVLVVVSAAGAAALVAAAPLVENVFAGVADGDADGLAAALAWMAPGLLGYALILQLSRLLYAVGAARAAWISTAAGWAVVAVGVGLAVPVFAGGVDVETAVLAWLGGATTVGMTVAGAALLLAVRRRVGAPALDGVLRTGAVTVAAAAVGALAGRWALPVADRGAGDDAALDAGWIAADVGWGLLAGLLAAAVVLVVAAATDPAVRSRAAGVGGRLLRRR	PGPT0024200_787	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980	NA	NA
AK001_00324	1689	pyrG	COG0504	CTP synthase	GTGGCTGACACCGTGAACCGAACCTCGTCCCGTTCCTCGAGCCGCGCCGGTGCCACGCACCCGACGCGCCACATCTTCGTGACGGGCGGTGTCGCCTCGTCGCTCGGCAAGGGGCTGACCGCCTCCTCCCTCGGCCGTCTGCTCCGGTCCCGCGGGCTGCGGGTCACGATGCAGAAGCTCGACCCCTACCTCAACGTCGACCCGGGCACCATGAACCCGTTCCAGCACGGCGAGGTGTTCGTCACCGAGGACGGCGCCGAGACCGACCTGGACATCGGCCACTACGAGCGCTTCCTCGACGTCGAGCTGCCGGCCTCGTCGAACGTCACCACCGGCCAGGTCTACTCCCGCGTCATCGCCAAGGAGCGTCGCGGGGAGTACCTCGGCGACACCGTGCAGGTCATCCCGCACATCACGGACGAGATCAAGGCGCGGATGCGCGACCAGGCCGGCCCCGACGTCGACGTGATCATCACCGAGATCGGCGGCACCGTCGGCGACATCGAGTCCCAGCCGTTCCTCGAGGCCGCCCGCCAGGTCCGTCACGAGCTCGGCCGCGACGACTGCTTCTTCCTGCACGTCTCGCTCGTGCCCTACATCGGGCCGTCGGGCGAGCTCAAGACCAAGCCGACCCAGCACTCGGTCGCCGCCCTGCGGTCGATCGGTATCCAGCCCGACGCCATCGTGCTGCGCTCGGACCGCACGGTGCCGACGTCCATCAAGCACAAGATCGCGATGATGTGCGACGTCGAGAACGAGGCGGTCGTCAACGCGGCGGACGCCCCGAGCATCTACGACATCCCGCGGGTGGTGCACTCCGAGGGCCTGGACGCCTACGTGGTGCGACGGCTCGACCTGCCGTTCCACGACGTCGAGTGGGGCGGCTGGAACCGTGTCCTGGAGCGGGTCCACGAGCCGGAGCACAACGTCGAGATCGCCCTGGTGGGCAAGTACATCGACCTGCCGGACGCCTACCTGTCGGTCACCGAGGCGCTGCGCGCCGGCGGCTTCGACAACGACACCCGGGTCGCGATCCGGTGGGTCGCGGCCGACGACTGCAGCACGCCCGCCGGCGCGCAGGAGGCGCTGTCCGGCGTGGACGCCATCCTCGTGCCGGGCGGCTTCGGCGTGCGCGGCATCGACGGCAAGGTCGGCGCGCTGCGCTGGGCGCGGGAGAACCTCGTGCCCACCCTCGGCATCTGCCTCGGCCTGCAGTCGATGGTCATCGAGTACGCGCGCAACGTCCTCGGCCTGGCGCAGGCCTCGTCGACCGAGTTCGACCCGGACTCCTCGGACCCCGTGATCGCCACGATGGCCGAGCAGCTCGCGATCGTCGGCGGCGACGGCGACCTGGGCGGCACGATGCGCCTCGGTGCCTACCCCGCCACCCTCGCCGAGGGCTCCGTGGTCGCCAAGACCTACGGCGCCACGGACGTCTCCGAGCGTCACCGCCACCGCTACGAGGTGAACAACCTCTACCGCGACCGCCTCGAGGAGGCCGGCCTGCGGATCAGCGGCACCTCGCCGGACGGCGACCTCGTCGAGTTCGTCGAGCTGCCCGCCGACGTCCACCCGTACTACGTGAGCACCCAGGCGCACCCGGAGTTCAAGTCCCGTCCCACGGGCTCGCACCCCCTGTTCTCGGGTCTCGTCGCCGCGGCGCTGGTCCGCCAGGGCGCGACCGCGTGA	MADTVNRTSSRSSSRAGATHPTRHIFVTGGVASSLGKGLTASSLGRLLRSRGLRVTMQKLDPYLNVDPGTMNPFQHGEVFVTEDGAETDLDIGHYERFLDVELPASSNVTTGQVYSRVIAKERRGEYLGDTVQVIPHITDEIKARMRDQAGPDVDVIITEIGGTVGDIESQPFLEAARQVRHELGRDDCFFLHVSLVPYIGPSGELKTKPTQHSVAALRSIGIQPDAIVLRSDRTVPTSIKHKIAMMCDVENEAVVNAADAPSIYDIPRVVHSEGLDAYVVRRLDLPFHDVEWGGWNRVLERVHEPEHNVEIALVGKYIDLPDAYLSVTEALRAGGFDNDTRVAIRWVAADDCSTPAGAQEALSGVDAILVPGGFGVRGIDGKVGALRWARENLVPTLGICLGLQSMVIEYARNVLGLAQASSTEFDPDSSDPVIATMAEQLAIVGGDGDLGGTMRLGAYPATLAEGSVVAKTYGATDVSERHRHRYEVNNLYRDRLEEAGLRISGTSPDGDLVEFVELPADVHPYYVSTQAHPEFKSRPTGSHPLFSGLVAAALVRQGATA	PGPT0021215_1418	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937	NA	NA
AK001_00325	660			hypothetical protein	GTGAGCGACCGCGGGACCGCCGGCCCCGGCACGGGGGTGGACCAGGTCGCGCCGCGGCCCGTGGTCGGGCGCTCCGCTCTGCACGCCGGGCGCATCTTCGACGTCGTCCGGGACGACGTCGATCTCGGTGACGCCGGGGTCGTGACGCGGGAGTACCTGGACCACCCCGGCGCCGTCGCGATCGTCGTGCTCGACGCCGACGACCGCGTCCTGCTGCTGCGCCAGTACCGGCACCCGGTGCGCACGATGATGTGGGAGGTCCCGGCCGGACTCCTGGACGTCCCGGCGGAGCCGGCCGTGGAGGCGGCCGCTCGCGAGCTGGCGGAGGAGGCGGACCTCGTCGCCGACCGCTGGGACGTCCTCGTCGACTACGCCACGACGCCCGGGGCGAGCAACGAGTCGGTGCGGGTGTTCCTCGCCCGGGACGTGCGTGAGGTGGCTCCGGAGGACCGCCACGAGCGTCACGGCGAGGAGGCGGAGATCGTCACCGCCTGGGTCCCGCTGGACGACGCCGTCGCGCGGGCGCTCGCCGGCGACCTGCACAACCCCTCGGCGGTGGTCGGGATCCTGGCCGCGGCCGCGAGCCGCGCCGGCGGGTGGGCGTCGCTGCGACCCGTCGACGTGGAGTGGCCGTACCGCCGGGGCGTGCTGCCCGACTGA	MSDRGTAGPGTGVDQVAPRPVVGRSALHAGRIFDVVRDDVDLGDAGVVTREYLDHPGAVAIVVLDADDRVLLLRQYRHPVRTMMWEVPAGLLDVPAEPAVEAAARELAEEADLVADRWDVLVDYATTPGASNESVRVFLARDVREVAPEDRHERHGEEAEIVTAWVPLDDAVARALAGDLHNPSAVVGILAAAASRAGGWASLRPVDVEWPYRRGVLPD	PGPT0021525_3646	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021525-nudF-K01515	NA	NA
AK001_00326	954	ctaA		Heme A synthase	GTGAGCTCGACCGCGCCCGCCGAGGCCTCCCGCACCCCCGCACGCCGTGACCGGCTCGCCCGTCTGCGTGGCGCGACCCGGGGCGTGCTCGTCGCCAACGTGGTCGCCCAGATCGGCATCATCGTCACCGGCGGTGCCGTGCGGCTCACCGGCTCCGGGCTCGGCTGCTCGACGTGGCCGCAGTGCGAACCGGGCAGCTTCACCCCCGTCTTCCACGCCGAGGCCGGCATCCACCCCTACGTGGAGTTCGGCAACCGCCTGCTGACGTTCGTGCTGGCCGCGATCGCCATCGCGGTGCTGGTGCTCGTGGTGACGGACCGCCGGCGCACGCGCGCCTACCGCGCGCTCGGCGTCGTCCCGCTGGCCGGCGTCGCCGCCCAGGCGATCATCGGCGGCGTGGTGGTGCTGCTCGACCTGCACCCGGCCTGGGTGTCGCTGCACTTCGTCGTCTCGGCCGCGCTGGTCTGGCTCTCGGCGTACCTGCTGCACCGGCACGGCGAGGGCGACGGGACCCCGACGCCGGTCGCGTCGCGCGGGGCGACGGTCGCGGGCCGCGCCCTCGGCCTGCTGGTGGTCCCCGTCGTCGTGCTGGGCGTCGTGGTGACCGCCGCCGGACCGCACTCCGGCGACGCGGAGGTCGGCTACCGCCTCGCGGTGGACCCGCTGCTGATGACTCGCGCGCACTCGGCCTCGGTGTGGCTGTTCACGGGCGTCCTGGTGCTGCTGCTGGTCCTGCTGCACCGGACGCCGACGAGCGCCGACGACCGGCTCGTGCAGCGGGCGCGTCGGGGCGCCCGGGTCCTGCTCGTGGTCACCCTGGCCCAGGGAGCGATCGGGTACGCCCAGTACTTCACCGGGCTTCCCGAGCTGCTGGTCGGCCTGCACATGCTCGGGGCCGGGCTGCTCACCTGGGCGACCGCGAGCGCCGTCCTGCGGCTCCGCGCCCGGGCCTGA	MSSTAPAEASRTPARRDRLARLRGATRGVLVANVVAQIGIIVTGGAVRLTGSGLGCSTWPQCEPGSFTPVFHAEAGIHPYVEFGNRLLTFVLAAIAIAVLVLVVTDRRRTRAYRALGVVPLAGVAAQAIIGGVVVLLDLHPAWVSLHFVVSAALVWLSAYLLHRHGEGDGTPTPVASRGATVAGRALGLLVVPVVVLGVVVTAAGPHSGDAEVGYRLAVDPLLMTRAHSASVWLFTGVLVLLLVLLHRTPTSADDRLVQRARRGARVLLVVTLAQGAIGYAQYFTGLPELLVGLHMLGAGLLTWATASAVLRLRARA	PGPT0008525_2830	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259	NA	NA
AK001_00327	777			hypothetical protein	ATGAGCACCGCGAACCCGACGGCGGCCCACCCCGGCGCGGCCTCACCCGCCCGCCGCGTGGCGGCGCAGGCCTCGTTCGAGACCCGCGCGATCCTGCGCAACGGCGAACAGCTCCTCGTGACGATCGTCGTCCCGGTGCTGCTGCTCGTCGGCCTGGTGCGCACCTCGCTGGTCGAGCTCGACACCGCCGGCGCGACGCGCATCGACTTCGTCACCCCCGGCGTGCTCGCCCTGGCCTGCGTCACCACGGCCTTCACCTCGCAGTCCATCGCTACCGCCTTCGACCGCCGCAACGGCGTGCTGCGGCTGCTCGCCACCACTCCCCTGGGCCGCGGCGGGCTGCTGGCGGGCAAGATCCTCGGTGTGCTCGCCGTGGAGGTGGTGCAGGTCGTCGTCATCGGCGGCGTGGCTCTCGCGCTCGGGTGGCAGCCGGTCCTCGCGGGACTGCTGCCCGCCGCCGGGCTCCTGCTGCTCGGCACCGCCGCGTTCACCGCACTGGCCCTGCTGCTGGCGGGCACGCTGCGCGCCGAGGGGGTCCTCGCCGTGGCCAACCTCGTGCTCGTGCTCCTCGTCGTCGGCGGCGGGCTCATCGTGCCGCCGTCCGAGCTGCCCGGGGCGCTCGCCCACCTGGCGGCGTTCCTGCCGTCCGGCGCGCTCGGCGAGGGCCTGCGCGGCGCGCTGCTCGGGACGGGTGTGCCGGCGCTCAGCGTCGTGGTCCTCGTGGCCTGGACGGCGGCCTTCGGGGCCGGCGCCGGGCGGCTCTTCCGCTGGCACTGA	MSTANPTAAHPGAASPARRVAAQASFETRAILRNGEQLLVTIVVPVLLLVGLVRTSLVELDTAGATRIDFVTPGVLALACVTTAFTSQSIATAFDRRNGVLRLLATTPLGRGGLLAGKILGVLAVEVVQVVVIGGVALALGWQPVLAGLLPAAGLLLLGTAAFTALALLLAGTLRAEGVLAVANLVLVLLVVGGGLIVPPSELPGALAHLAAFLPSGALGEGLRGALLGTGVPALSVVVLVAWTAAFGAGAGRLFRWH	PGPT0006730_16705	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_00328	957	drrA_1		Daunorubicin/doxorubicin resistance ATP-binding protein DrrA	GTGCCCACCACCGATGCGCCATCCGGCGCCGCCGTCGTCGCGCGCGGCCTGCGCAAGACGTACGGCGGCCGTGACGTCGTCGACGGGCTCGATCTGCAGGCTACCGCCGGAGCGGTGACCGCGGTGCTCGGGCCCAACGGCGCCGGCAAGACCACCACCGTCGAGTGCTGCGAAGGTCTGCGGACCCCCGACGGCGGCACGGTGCGCGTGCTCGGCCTCGACCCGGTGGCCGACGCCGTGCGCCTGCGGCCTCGCGTGGGCGTCATGCTGCAGGACGGCGGGCTGCCCACCGGCGTGCGGGCCGGGGAGATGCTACGGCACGTGGCGGCGATGTACGCCGCACCGCGCGACCTCGGCGAGCTCTCCGCCCGGCTGGGCCTCGACGCCTTCGCCCGGACCACGGTGCGCCGTCTCTCCGGCGGGCAGCGTCAGCGGCTCGCCCTGGCGGCCGCCGTCGTCGGGCGTCCCGAGGTCGTGTTCCTCGACGAACCCAGCGCCGGCCTGGACCCGCAGTCGCGGCACGCCGTGTGGGACCTGGTGCGCGAGCTGCGCGCCGAGGGCGTCGCCGTCGTGCTGACCACGCACCTGATGGCCGAGGCCGAGGACCTCGCCGACCGGGTCCACGTCGTCGACCACGGGCGCGTCATCGCCTCCGGCAGCGTGCCCGAGCTCGTCGCGAGCGGTCCCGGCACCTCCCCCACGATCCGGCTGGACGCGCGGCCCGGCCTGGACGTCGACGCCCTGCAGGAGCACCTCGGCGCGCTCGACGGCGGCACCTGGACGGTCGCCGAGCCGTCCCCCGGGGAGTACACCGTGGCAGGCAGGACCGGACCCGCCACGCTCGCGGCGCTCACCGCCTGGCTCGCCGACCACGACGTCCTGGCCCGTCGGATCGCCGTCGGCCGGCGCACCCTCGAAGACGTCTTCCTCGACCTGACGGGACGGCACCTGCGATGA	MPTTDAPSGAAVVARGLRKTYGGRDVVDGLDLQATAGAVTAVLGPNGAGKTTTVECCEGLRTPDGGTVRVLGLDPVADAVRLRPRVGVMLQDGGLPTGVRAGEMLRHVAAMYAAPRDLGELSARLGLDAFARTTVRRLSGGQRQRLALAAAVVGRPEVVFLDEPSAGLDPQSRHAVWDLVRELRAEGVAVVLTTHLMAEAEDLADRVHVVDHGRVIASGSVPELVASGPGTSPTIRLDARPGLDVDALQEHLGALDGGTWTVAEPSPGEYTVAGRTGPATLAALTAWLADHDVLARRIAVGRRTLEDVFLDLTGRHLR	PGPT0006725_5371	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_00329	636			hypothetical protein	ATGAGCTTCTACACCTTCGCCCAGCCCGCCGATCTGGCGCAGCTCGCACGCCGCATCTGGTACTGGCCCGTGGTCCGCGGCGTGCTCGCCGTGGCCTTCGGGCTGCTGGCGATGTTCCTGCCGCGTGACGTGCCCGGTCTGCTCGTGCAGGTCTTCGGCGCCTTCGTGCTGGTGGACGGCATCGTCTCCCTCGTGGACGGGCTGCGGCGCCGCGGGACGCAGGCCGGCTCGGCGAACCTGGGCATCGGTGTCGTCGCGATGGCTTTCGGCGCGGCGCTGCTGTTCCTGCCCGAGGTGTTCCTGACGATCGCCGTGGTGCTGATCGGCATCTGGGCGATGATCTTCGGTCTGCTGCAGATCGTCGGGGCGTTCGCCGTGCGGGGCCGCGGAGGTGCGTCGTGGGTGCTCAGCCTGCTCTCGGGACTGCTCTTCGTGGCGCTGGCGCTGGTCTGCTTCGCCAACCCGGGGACGGCGATCACCGCGATGGCCTTCGTGGTCGGGGCGTTCGCCGTCGTGATCGGGGTCGCCCTGGTCGCGCTGGGCCTCAAGCTGCGCTCGCTGGGGCAGCAGGGCGGCACCGGTGGCTCCGGTGGCTCCCGCCCGGACGTCATCGAGGGCGAGATCGTCGACGAGTGA	MSFYTFAQPADLAQLARRIWYWPVVRGVLAVAFGLLAMFLPRDVPGLLVQVFGAFVLVDGIVSLVDGLRRRGTQAGSANLGIGVVAMAFGAALLFLPEVFLTIAVVLIGIWAMIFGLLQIVGAFAVRGRGGASWVLSLLSGLLFVALALVCFANPGTAITAMAFVVGAFAVVIGVALVALGLKLRSLGQQGGTGGSGGSRPDVIEGEIVDE				NA	NA	NA	NA	NA
AK001_00330	747			hypothetical protein	GTGACGACGAACCCGACACCCGTCGGCACCGTGACCCACGTGACCCACGCCGGGGCGGACACCGACGGCACGCGCCGCCGGGTCCTCGAGCTGGTCGCCACCGAGGGCCCCGTCACCGCCGGTGACCTGGCCCGCACGCTCCGGCTGACCTCGGCGGCCGTGCGCCGGCATCTGGCCTGCCTCGAGCAGGACGGCACGATCGCGGTGCACGAGACCGCTCCGGCGGCCCGCCAGGCACGTCGTGGCCGCCCCGCGCGGCGCTACGTGGTCAGCACGGCGGGGCAGGCCGAGCTCGGGGGCGAGGACGTCGAGCTCGCGACGCAGGCGATGCGCTACCTGCGCCGCACGGCCGGGGACGCGGCGGTGGCGGAGTTCGCCGCCGAGCGCAACGACGCCGTCGTCCGCCGCTACGCCCCGCGCCTGACCGGCGCCGACCCGCACGAGCGGGCCGCCCAGCTGGCGGACCTGCTCGCCGCCGACGGCTACGCCGCCTCGGTACGGCCCGTGGCCGGGCCCCAGATCCCCACCGTCCAGCTGTGCCAGGGCCACTGCCCGGTCCAGCACGCGGCGGAGGACTTCCCCGAGCTGTGCGAGGCGGAGGCCGACGCCTTCGCCCGGCTGCTCGGTACGCACGTCCAACGGTTGGCCACCCTCGCAGGCGGCGCGCACGCCTGCGTGACCAACGTCCCGCTTGCTCCCCCCACCCCCGCCGGCCGCTCCCGCGGTACGCAGGAAGGAACACGATGA	MTTNPTPVGTVTHVTHAGADTDGTRRRVLELVATEGPVTAGDLARTLRLTSAAVRRHLACLEQDGTIAVHETAPAARQARRGRPARRYVVSTAGQAELGGEDVELATQAMRYLRRTAGDAAVAEFAAERNDAVVRRYAPRLTGADPHERAAQLADLLAADGYAASVRPVAGPQIPTVQLCQGHCPVQHAAEDFPELCEAEADAFARLLGTHVQRLATLAGGAHACVTNVPLAPPTPAGRSRGTQEGTR				NA	NA	NA	NA	NA
AK001_00331	1452			hypothetical protein	ATGAGCGTCCCCACCCAGGCCGCCGCCCAGGCGGCGCAGGAGCAGCGCACCGACGAGGAGATCATCGCCTCGATCGGTGCCTACGAGTACGGCTGGCACGACGAGGACTCCGCCGGCCAGACCGCCGAGCGCGGGCTGAGCGAGGCCGTCGTGCGCAACATCTCGGACATGAAGGACGAGCCGGAGTGGATGCGCAAGCGTCGGCTCAAGGCGCTGCGCCTGTTCGACAAGAAGCCGATGCCGAGCTGGGGTGCCGACCTGACCGGCATCGACTTCGACCGCATCAAGTACTTCGTGCGCTCCACCGAGAAGCAGGCCACCAGCTGGGAGGACCTGCCCGACGACATCAAGGCGACGTACGACAAGCTCGGCATCCCCGAGGCGGAGAAGCAGCGCCTCGTGGCCGGCGTCGCGGCGCAGTACGAGTCCGAGGTCGTCTACCACCAGATCCGCGAGGACCTGGAGGCCCAGGGCGTCATCTTCGTCGACACCGACACCGGTCTGCGCGAGCACCCCGAGCTGTTCGAGGAGTACTTCGGCACGGTCATCCCGGCCGGCGACAACAAGTTCTCCGCGCTGAACTCCGCGGTGTGGTCGGGCGGCTCGTTCATCTACGTGCCGCCGGGCGTGCACGTCGACATCCCGCTGCAGGCCTACTTCCGGATCAACACCGAGAACATGGGCCAGTTCGAGCGGACGCTGATCATCGCCGACGAGGGCTCCTACGTGCACTACGTCGAGGGCTGCACGGCGCCGATCTACTCCACCGACTCGCTGCACAGTGCCGTCGTGGAGATCGTCGTCAAGAAGAACGCCCGCGTGCGGTACACGACCATCCAGAACTGGTCGAACAACGTCTACAACCTGGTGACCAAGCGCGCCACGGCCGAGGCCGGCGCCACCATGGAGTGGGTCGACGGCAACATCGGCTCCAAGGTCACCATGAAGTACCCGGCGATCTACCTGCTGGGCGAGCGCGCCCGCGGCGAGACGCTGTCCATCGCCTTCGCCGGCGAGGGTCAGCACCAGGACGCCGGCGCCAAGATGGTGCACGCCGCCCCGCACACCTCGAGCTCGATCGTCTCGAAGTCGGTGGCCCGTGGCGGCGGCCGCACCTCCTACCGCGGTCTGGTGCAGGTGCTCGAGGGCGCCGAGGCGTCCGCGTCGAACGTCCTGTGCGACGCGCTGCTCGTCGACCAGATCTCCCGGTCCGACACCTACCCGTACGTCGACGTCCGCGAGGACGACGTGTCCATGGGGCACGAGGCGACGGTGTCCAAGGTGAGCGAGGACCAGCTGTTCTACCTCATGTCCCGAGGCATGGAGGAGACCGAGGCCATGGCCATGATCGTGCGCGGGTTCGTCGAGCCCATCGCGCGCGAGCTGCCCATGGAGTACGCCCTCGAGCTCAACCGCCTCATCGAGCTGCAGATGGAAGGGTCCGTCGGCTGA	MSVPTQAAAQAAQEQRTDEEIIASIGAYEYGWHDEDSAGQTAERGLSEAVVRNISDMKDEPEWMRKRRLKALRLFDKKPMPSWGADLTGIDFDRIKYFVRSTEKQATSWEDLPDDIKATYDKLGIPEAEKQRLVAGVAAQYESEVVYHQIREDLEAQGVIFVDTDTGLREHPELFEEYFGTVIPAGDNKFSALNSAVWSGGSFIYVPPGVHVDIPLQAYFRINTENMGQFERTLIIADEGSYVHYVEGCTAPIYSTDSLHSAVVEIVVKKNARVRYTTIQNWSNNVYNLVTKRATAEAGATMEWVDGNIGSKVTMKYPAIYLLGERARGETLSIAFAGEGQHQDAGAKMVHAAPHTSSSIVSKSVARGGGRTSYRGLVQVLEGAEASASNVLCDALLVDQISRSDTYPYVDVREDDVSMGHEATVSKVSEDQLFYLMSRGMEETEAMAMIVRGFVEPIARELPMEYALELNRLIELQMEGSVG				NA	NA	NA	NA	NA
AK001_00332	1200			hypothetical protein	ATGACTCTCACTACCGATCACTCCCGCGCGACCGCCGACGGCGCCCACACGCACGGCACCGTGCCGGCCGGTTCGCGCGCCGAGCGCAAGACCTCCTTCGACCTGGCGGACATCCCCGTGCCGTCGGGCCGCGAGGAGGAGTGGCGCTTCTCGCCGGTGGCGCGCCTGCAGCCGCTGTTCGCGGACGACCTCACGGGTGACGGCGTCGCCGTCACCGTCGACGCGGCCCCCGAGGTCGTCGTCGAGACCGTGGGCCGCGACGACGAGCGTCTGGGCCGTGCCGGCAAGCCGGGCGACCGGGCCGCCGTCACCGCCTGGAACGCCGTGCGCGAGGCCACCGTCGTGACGGTCCCGGCCGAGGCGGTCGCCACCGGTGCGACGTCGGTGCGCATCGACGGCACCTCGAAGGACGCCACGGCCTCGCACCTGCTGGTGCGCGCCGAGCGGCACTCCGAGGCCGTCGTGGTCATCGACCACCGTGGCGACGCGCTGCTGAACCAGACCGTCGAGATCCTCGTCGAGGACGGCGCCCACCTGACCGTCGTCTCCGTCCAGGACTGGGCCGACGGCGCCGTGCACGCCTCCTCGCACCGCGCGAGCATCGGCCGCGACGCCAAGCTCAAGCACGTCGTGGTGACCTTCGGCGGCGACGTCGTGCGGGTGACCCCCGACGCGACCTTCACCGCCGAGGGCGGCGAGGTCGAGATGGTCGGGCTGTACTTCGCCGACGCCGACCAGCACCAGGAGCACCGGCTCTTCGTGGACCACGCGGTCCCGCAGTGCAAGTCGCGCGTGACCTACAAGGGAGCGCTCCAGGGCGCCTCCGCGCACACGGTGTGGGTGGGTGACGTGCTCATCCAGGCCGACGCCGAGGGCACCGACACCTACGAGCTCAACCGCAACCTGGTGCTCACCGACGGCGCCCGCGCCGACTCGGTGCCGAACCTCGAGATCGAGACCGGAGAGATCGCGGGGGCGGGGCACGCCTCGGCCACCGGCCGGTTCGACGACGAGCAGCTCTTCTACCTCATGGCGCGCGGCATCCCCGAGATCGACGCCCGCCGTCTCGTGGTGCGCGGCTTCTTCGCCGAGCTGATCGACGAGATCGGCGTCGAGTCCGTCGAGGAGCGCCTGCTCGCCTCCATCGAGGCCGAGCTGGAGAAGTCGATGAGCGTCATCACCGGCGCTCCGGCGCAGTGA	MTLTTDHSRATADGAHTHGTVPAGSRAERKTSFDLADIPVPSGREEEWRFSPVARLQPLFADDLTGDGVAVTVDAAPEVVVETVGRDDERLGRAGKPGDRAAVTAWNAVREATVVTVPAEAVATGATSVRIDGTSKDATASHLLVRAERHSEAVVVIDHRGDALLNQTVEILVEDGAHLTVVSVQDWADGAVHASSHRASIGRDAKLKHVVVTFGGDVVRVTPDATFTAEGGEVEMVGLYFADADQHQEHRLFVDHAVPQCKSRVTYKGALQGASAHTVWVGDVLIQADAEGTDTYELNRNLVLTDGARADSVPNLEIETGEIAGAGHASATGRFDDEQLFYLMARGIPEIDARRLVVRGFFAELIDEIGVESVEERLLASIEAELEKSMSVITGAPAQ				NA	NA	NA	NA	NA
AK001_00333	348	cmtAd	COG2146	p-cumate 2,3-dioxygenase system, ferredoxin component	GTGACCGCACAGATCGCCTGCGCGACCGACGACCTCGGCCCCGAGGAGACGCTGCTCGTCGAGCTCACGTCCGCCGACGGCGCCTCCGTGGCCGTCGCGGTCGTGCGGGACGAGGACGGCGAGTTCCACGCCATCAGCGACGTCTGCTCCCACGGGGCGGTGTCGCTGTCCGACGGCGAGGTCGAGGGCTGCCGCGTGGAGTGCTGGTTGCACGGTTCGCAGTTCGACCTGCGCACCGGCCGGCCCCTGCAGCTGCCCGCGACCCGGCCCGTACCCGTCTACCCGGTGACGGTGGACGGCGACAAGGTGCTCGTCGACATCGACGCACCGCTCGCCGCCGCGTCCTGA	MTAQIACATDDLGPEETLLVELTSADGASVAVAVVRDEDGEFHAISDVCSHGAVSLSDGEVEGCRVECWLHGSQFDLRTGRPLQLPATRPVPVYPVTVDGDKVLVDIDAPLAAAS	PGPT0019745_182	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710	NA	NA
AK001_00334	771	sufC	COG0396	Vegetative protein 296	ATGTCCACCCTGGAGATCCGCGACCTGCACGTCAGCGTCGACACCAAGGAAGGCGCCAAGCCGATCCTGCGCGGCGTCGACCTGACCATCAACTCCGGCGAGACGCACGCCATCATGGGCCCGAACGGCTCCGGCAAGTCCACGCTCGCCTCCGCCCTGGCCGGGCACCCCAAGTACGAGGTCACCTCGGGCACCGTGACGCTCGACGGCGAGGACGTCCTCGCCATGAGCGTCGACGAGCGCGCCCGTGCCGGCCTGTTCCTGGCGATGCAGTACCCCGTCGAGGTGCCCGGCGTCTCGGTGGCGAACTTCCTGCGCACCGCCAAGACCGCCATCGACGGCGACGCGCCGTCGCTGCGCCACTGGGCCAAGGAGGTCCGCGGCGCGATGGAGAACCTGCGCATCGACTCCTCCTTCGCCGAGCGCTCGGTCAACGAGGGCTTCTCCGGCGGTGAGAAGAAGCGCCACGAGATCCTGCAGATGGAGCTCTTCAAGCCCGGCTTCGCGATCCTCGACGAGACCGACTCGGGTCTCGACGTCGACGCCCTGCGCGTCGTGTCCGAGGGCGTGAACCGCGCCAAGGAGTCCACGGACGTCGGCGTGCTGCTCATCACGCACTACACGCGCATCCTGCGCTACATCAAGCCGGACTACGTCCACGTCTTCGTCGACGGCAAGATCGCCGAGGAGGGCGGGCCCGAGCTCGCCGAGCGTCTCGAGGAAGAGGGTTACGACCGCTTCCTGCCCGCGGGCGCGTCGGCCTCGGCCTGA	MSTLEIRDLHVSVDTKEGAKPILRGVDLTINSGETHAIMGPNGSGKSTLASALAGHPKYEVTSGTVTLDGEDVLAMSVDERARAGLFLAMQYPVEVPGVSVANFLRTAKTAIDGDAPSLRHWAKEVRGAMENLRIDSSFAERSVNEGFSGGEKKRHEILQMELFKPGFAILDETDSGLDVDALRVVSEGVNRAKESTDVGVLLITHYTRILRYIKPDYVHVFVDGKIAEEGGPELAERLEEEGYDRFLPAGASASA				NA	NA	NA	NA	NA
AK001_00335	1305	csd	COG0520	putative cysteine desulfurase	ATGACCGCCACCGACACCGTGCGCCCGCACCAGCCGATGGGCTCGCGCGAGCTCGCCGCCGTGCGGGCCGACTTCCCGCTGCTCGGGCGCACGGTGCGGGGCGGCAAGCCGCTGGTCTACCTCGACTCGGCTGCGACCTCGCAGAAGCCGAACGTCGTGCTCGAGGCCGAGGTCGACTTCTACGAGCAGCGCAACGCCGCCGTGCACCGCGGGGCCCACCATCTCGCCGAGGAGGCCACCGAGGCCTTCGAGGACGCGCGGGCCGCCGTCGCGTCGTTCGTGGGCGCCGACGTCGACGAGATCGTGTGGACGTCGGGGGCGACCGCGGCGATCAACCTCGTCACCTACGCGCTGTCGAACGCGACGGCCGGGCGCGGGGGAGAGGCGGCCGAGCGGTTCCGGCTCGCCCCGGGCGACGAGATCGTCGTCACCGAGGCGGAGCACCACGCCAACCTCGTGCCGTGGCAGGAGCTGTGCGCCCGCACCGGTGCCACGCTGCGCTGGTTCGGCGTGACCGACGACGGCCGGCTCGACGTCTCGGACGTCGACGCGGTGATCACCGACCGCACCCGGGTCGTGGCCTTCGGGCACGTGTCCAACGTGACCGGCGCGGTGGCGCCGGTGGCCGAGATCGTCGCTGCGGCGCGTCGCGTCGGGGCGCTCACCGTGCTGGACGCGTGCCAGTCGGTGCCGCACCTGCCGGTCGACCTGCACGAGCTGGGCGTCGACCTCGCGGCGTTCAGCGCCCACAAGATGCTCGGCCCCACGGGCGTCGGCGCGCTCTACGGCCGGCGCGAGCTGCTCGAGGCGATGCCGCCGGTGACCACCGGCGGGTCGATGGTCGAGGTCGTGACGATGACCGACACGACGTACATGCCTCCGCCCCAGCGCTTCGAGGCCGGCACCCAGATGGTGGCCCAGGCCGTCGGCATGGGCGTGGCCGCGCAGTGGCTCGACGAGCTCGGCATGGACCGGGTCGCGGCGCACGAGCGCGAGCTCGCGGCCGAGCTGCTGCGGATCACCGAGATCCCGGGTGTCCGCGTCCTCGGTCCGACGGACCCGACGGACCGGATCGCCGTGGTGTCCTTCGTCGTGGACGGCGTGCACGCCCACGACGTCAACCAGGTGCTGGACGACCAGGGCATCGCCATCCGGGTGGGGCACCACTGCGCGCAGCCCCTGCACCGCCGCTTCGGCCTGGCCGCCACGGCGCGTGCCTCGGCCTCGGTGTACACAGGTGTCGAGGAGATCGTCGCGTTCCGCGAGGCCCTCGCGGGGGTCCGCGCGTTCTTCGGTGAGGAGTGA	MTATDTVRPHQPMGSRELAAVRADFPLLGRTVRGGKPLVYLDSAATSQKPNVVLEAEVDFYEQRNAAVHRGAHHLAEEATEAFEDARAAVASFVGADVDEIVWTSGATAAINLVTYALSNATAGRGGEAAERFRLAPGDEIVVTEAEHHANLVPWQELCARTGATLRWFGVTDDGRLDVSDVDAVITDRTRVVAFGHVSNVTGAVAPVAEIVAAARRVGALTVLDACQSVPHLPVDLHELGVDLAAFSAHKMLGPTGVGALYGRRELLEAMPPVTTGGSMVEVVTMTDTTYMPPPQRFEAGTQMVAQAVGMGVAAQWLDELGMDRVAAHERELAAELLRITEIPGVRVLGPTDPTDRIAVVSFVVDGVHAHDVNQVLDDQGIAIRVGHHCAQPLHRRFGLAATARASASVYTGVEEIVAFREALAGVRAFFGEE	PGPT0020195_717	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717	NA	NA
AK001_00336	501	sufU	COG0822	Zinc-dependent sulfurtransferase SufU	ATGAGCTCGCTGCAGAACCTGTACCAGCAGGTCATCCTGGACCACGCCAAGCATCCGCACGGACACGGCCTGGTCGACGTCCCCAGCGGTCATCTGGCGGGGGAGTCCCACCAGGTCAACACCACCTGCGGGGACGAGGTCACCCTGCGCGTGGACGTGCGGAGCACCGACGACGGCGCCACGCTCGAGCGCGTGTCCTGGGAGGGACAGGGCTGCTCGATCTCGCAGGCGTCGGCCTCAGTGATGACCGAGCTGGTCACCGGCCAGGACCTGAGGGAGGTCGAGCGGCTGGACGCCGCCTTCCACGCCCTGATGGGCTCGCGGGGCAAGGGGCTCGACGACGAGGAGGTGCTGGACGCCCTGGGCGACGGCACGGCCTTCACCGGCGTCTCGCAGTACCCCGCCCGCATCAAGTGCGCGCTGCTCGGCTGGGCAGCGTTGAAGGACTCGCTGGCGCGCAGCGGCGCGCTGGCCGACCGACCCGGAGGATCGGATGACTGA	MSSLQNLYQQVILDHAKHPHGHGLVDVPSGHLAGESHQVNTTCGDEVTLRVDVRSTDDGATLERVSWEGQGCSISQASASVMTELVTGQDLREVERLDAAFHALMGSRGKGLDDEEVLDALGDGTAFTGVSQYPARIKCALLGWAALKDSLARSGALADRPGGSDD	PGPT0000075_554	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATION	N-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488	NA	NA
AK001_00337	363			hypothetical protein	ATGACTGACAACCCGACCGACACCGCCCCCGAGCAGGCGCCGGCGGCGCCGGGCGCGACCACCGCGGCCGACGTCGAGGAGGCGCTGCGCGACGTCATCGACCCCGAGCTCGGCATCAACGTCGTCGACCTCGGCCTCGTCTACGGCGTCGAGGTGGACCAGAACAACCACGCCACCATCGACATGACGCTCACGTCCGCGGCCTGCCCGCTGACCGACGTCATCGAGGACCAGTCCGCCCAGGCACTGGAGGGCATCGTCACCGGGCACCGGATCAACTGGGTCTGGATGCCGCCGTGGGGCCCGGAGAAGATCACGGACGACGGTCGCGAGCAGCTGCGCATGCTCGGCTTCAACGTCTGA	MTDNPTDTAPEQAPAAPGATTAADVEEALRDVIDPELGINVVDLGLVYGVEVDQNNHATIDMTLTSAACPLTDVIEDQSAQALEGIVTGHRINWVWMPPWGPEKITDDGREQLRMLGFNV				NA	NA	NA	NA	NA
AK001_00338	1707	dapH_1		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	ATGAGCCCGACGACCACCACGCAGCCGACGACGACGTCCGGCCGCCACGACCTGGACTACGAGCCCTGGCGGTTCTGGTCCGAGGCCGACGCCGCGCAGCGAGACCGGCAGCAGGCTCTCCAGGAGGAGCTCGCGGGGCGCGGCGTCCGGTGCGGCGAGCGCTGCTTCGTCTCCGCGCTGGCGTCGGTCACCACCGACGTCCTGGAGCTCGGCGACCGCACCTACGTCGCCGCCGGCGCCGTGCTCTCCGGCGACGTCCGGGCCGGCCGCGACTGCTCGGTCAACCCGTACACCGTGGTGCGTGGCGAGGTCCGGATCGGCGACGCCGTCCGGATCGGTGCACACACCTCCCTGCTCGGCTTCAACCACACGATGGACGACCCGGACACCGAGATCCACCGCCAGCCGCTGCGGGTGCAGGGCATCACGATCGGCGACGACGTCTGGATCGGCTCCCACGTGGTGGTGCTGGACGGCGTCCGCGTCGGCGACAAGGCCGTGCTGGCGGCCGGGGCCGTGGTGACCAAGGACGTCCCGCCGGGCGCCGTCGTCGGGGGGAACCCCGCGCGCGTCCTCAAGTGGCGCACGGCACCGCCCACGCCGGAGGCCGCGCCGCGCGACGACCTCGCGGCCGCCGTGGCGCGGTTCGCGGACGCCGCCCGCGCGCAGGCCCGTGCGGTGCTGGACCGGTGCTGGGACCCCGCGACGGGACTCTTCCTCGACGCTCCGGGCGTCTCGGCGACGGTCCGCGCGCAGTGCGACGCCGTCGAGGTGGCCGACCTCCTGCTCGACGGGCCACCCCCGCAGCTCCCCGCCACCGAACAGGTGGACCGCCTGCGGTCGTGGCAGGACGCCGGCACCGGGATGGTGGGCGAGCTGGGTCCCGACGGCGTCCCGCGCCGCCCCGGGACCGGCCTGTTCGACCCGGAGGCCGCCTACCACGTGCTCAGCGTCGGGTACGCCCTGGAGCTGCTCGGCTCGCGCTTCGCGCACCCGGTCGCCGTCGTGTCCGACGCGTCGCTGGAGGACGTCCTGCACGGGCTGCGGGAGCAGGACCGGCTCGCCGACCCCTGGGCGACGGGTCACTGGGTCGACGTGCTCGGCACGGCGCTGCACCGCAACCGGGAGCTCGGCGTCGACACGCCGCCGGGCGCCACCGAGGCCCTGCTCGGCCGACTGCTGTCACAGGCCGACCCGCGGACCGGCATGTGGGGCCGGCCCGGCCCGGACGGCGACCTGCTGCTGACGGTGAACGGCTACTACCGCACCACGCGCGGCACCTTCGCCCAGCACGGCGTGCCCGTCCCGTACCCGGAGCGCGTCGTCGACACCGTCCTGGCGCACGTGCGCGACGCGCGTTACTTCCATCCCGGACGGCAGAACGCCTGCAACGTCCTCGACGTGGCCCACCCGCTGTGGCTCACGCGCGCCACGGGCCACCGGTCGGACGAGGTCGTCGACGTCGCCCGGACGCTCCTGGGCCAGGCGCTCGGCCGCTGGGAGCCGGACCAGGGCTTCGCCTTCCGGGCGTCGGACGCCTCGACGGCGTCGCTGCCGCAGGCACGGCCGGGTCTGCAGGGCACGGAGATGTGGCTGGCCATCGTGTGGCTCCTGGCCGACCTGGCCGGCGTCTCCGACGCGCTGGGCTACCGTCCGCGGGGCGTGCACCGTCCCGAGCCGGCCGCCACGCTTCGCGACCGGGACTGA	MSPTTTTQPTTTSGRHDLDYEPWRFWSEADAAQRDRQQALQEELAGRGVRCGERCFVSALASVTTDVLELGDRTYVAAGAVLSGDVRAGRDCSVNPYTVVRGEVRIGDAVRIGAHTSLLGFNHTMDDPDTEIHRQPLRVQGITIGDDVWIGSHVVVLDGVRVGDKAVLAAGAVVTKDVPPGAVVGGNPARVLKWRTAPPTPEAAPRDDLAAAVARFADAARAQARAVLDRCWDPATGLFLDAPGVSATVRAQCDAVEVADLLLDGPPPQLPATEQVDRLRSWQDAGTGMVGELGPDGVPRRPGTGLFDPEAAYHVLSVGYALELLGSRFAHPVAVVSDASLEDVLHGLREQDRLADPWATGHWVDVLGTALHRNRELGVDTPPGATEALLGRLLSQADPRTGMWGRPGPDGDLLLTVNGYYRTTRGTFAQHGVPVPYPERVVDTVLAHVRDARYFHPGRQNACNVLDVAHPLWLTRATGHRSDEVVDVARTLLGQALGRWEPDQGFAFRASDASTASLPQARPGLQGTEMWLAIVWLLADLAGVSDALGYRPRGVHRPEPAATLRDRD				NA	NA	NA	NA	NA
AK001_00339	1149	araR_1	COG1609	Arabinose metabolism transcriptional repressor	ATGCCGACCGGCCCGTCCCAGCCCGGTGCGCCGCCCGCCCAGCTCGGCGCGCGGCGCCGGGAGCACGTCCTGCGCCGGTTGCGGACCGACGGCACCGTCCGGGTGAACGACCTCGCCGCCGAGCTCGGTGTGTCGGCCATGACCGTCCGGCGCGACCTCAACGCGCTCGCGACGCGCGGGCTGCTCGACCGCGTCCACGGGGGCGCCACGCTCCCGGACCCCTTCGTCCCGGCGTCCGAGCGGGGGACGCCGGACGGGCGGTCACGCTTCACCGTCGGGCTGGTCGTGCCGCAGCTCGACTACTACTTCCCGCCCCTGGTGGCCGGGGCCCGGGCGGCCGCCGCGGCGGCGGGGGTCCGCCTCGTCATCCGCACGACCGCCTACGACCCGGACGAGGAGCGGCACCAGGTCCGGCGTCTGGCCGAGACGCCGGGCATCGACGGTCTCGTCGTGGCTCCCGACGTCCGCGGTGCCGCCGGGGCCGAGCTGCTCCGCCGGCTGGACCGCCTGCCGCTGCCCGTGGTGCTGGCCGAGCGGCAGCCGCCCGGCCCGATGCCGCTCGCCCGCCTGGAGTGGGTGGCGGCGGACCACGTGGCGGGCGCGGCGACCGCGGTGTGGCACCTGCACGCCCAGGGCCACCGGAGCATCGGGCTGCTCACGCTGGCCGCGTCGACGACGTCGGACCTGCTGCACCACGGGTGGTCCGACGCCCTGCGGTCGCTCGACGTCGATCCCGCGCAGCAGCTCACCGGTCCGACGGACGGGTTCGGGGCGCCCGGCCGGGCCGAGGTCCTGGCCGGCGTCCTCGACGACGTCGCCGCGTCCGGGACGACGGCGGTGGTGGTCCAGGGCGACCCGGCCGCCGTGAACCTCGCCCAGTACTGCGCCGAGGCCGGTGTCGTGGTGCCGGACGACCTGGCGATCGTGGCCTACGACGACCAGGTGGCCGAGCTGGCCGACCCGCCGTTGACCGCCGTCCGCCCGCCGCTGCCGGAGGTGGGGCGCCTGGCCGTGGAGACCGTCGTCGCGCGGCTGGTCGAGGGTGCGGAGCGGTCGGTCCACCGGTCGCTCATCGCGCCCGCGCTGGTGGTGCGGGCGTCCAGCACGGCCGTCGCCCGGTCGTCCGATGCCGTAGAGTCCTGCCCGTGA	MPTGPSQPGAPPAQLGARRREHVLRRLRTDGTVRVNDLAAELGVSAMTVRRDLNALATRGLLDRVHGGATLPDPFVPASERGTPDGRSRFTVGLVVPQLDYYFPPLVAGARAAAAAAGVRLVIRTTAYDPDEERHQVRRLAETPGIDGLVVAPDVRGAAGAELLRRLDRLPLPVVLAERQPPGPMPLARLEWVAADHVAGAATAVWHLHAQGHRSIGLLTLAASTTSDLLHHGWSDALRSLDVDPAQQLTGPTDGFGAPGRAEVLAGVLDDVAASGTTAVVVQGDPAAVNLAQYCAEAGVVVPDDLAIVAYDDQVAELADPPLTAVRPPLPEVGRLAVETVVARLVEGAERSVHRSLIAPALVVRASSTAVARSSDAVESCP				NA	NA	NA	NA	NA
AK001_00340	1434			hypothetical protein	GTGGTCGGCCTGGCCGGGCGCACCGTCCTCCCCGAGGCGGTCGGCGGCCCGCTCGGCGACGCGCTCTCCGCGGTGCTGGTCGTCTGGCTCGTGGTGCTGCTGGCTCCCCGGACGCCCCCGGCGGTCGCGGCCTCGGTGGCGCTCGCGGTCTGCGCGGTGATCGAGGCGTCCCACCTCACCCCGCTCGCCCCCGCGCTCCTCGACCGGTGGCCCACGGCCCGGTTCGTCGTCGGCACGACCTTCGCGGTGCAGGACCTGGCCTGGTACGCGCTGGGGGCGGCCCTGGCCGGGACGCTCGTCGCCGCCGTGACGCCCCGCCGGGGTGGGACCGGCCAGACGCTGCGGCACGCGCCCACCGCCGCCGCGGTGCGGGGCCGCCGTGCCGCCTCGGTGGTCGCCCCGCTGACGGTCCTCGGTCTTCTCGTGGCGGGCGGTCTCGTCCTCGGCCGGATCGTCGAGGCCGAGGCCGTCGAGCTGACCGCCGAGGTCACCACCGCGCAGCGGGAGCTGGGCACGTCCGCGGACAAGGTGGCCGACGACGCCGTCCGGGAGCGGCTCGCCGCGGCCCTCGACAGCGCGGGGTCGGTGCTCGAGGCCACCCCTGTGCTGCACCGGTTGCCGGGCGACGCCCGGGCGGCGGCCGCCGGCCTCGAGGACGCGATCGAGGCCGTGCAGGCGTCCCGTCGGGAGCACGCGACCGACCGGGCGACGACCGCCCGCGAGGAGGCGGCCCCCGTGCGCCGCCGTGCCGAACGCGTGCTGGATGCGGCCGACGCGCTCGCCGAGTCGGGGCAGGACGCCGGTGAGGCGACCCGGGCAGCGGTCCGTGACGCGCTGGGAGCCGTCGACGACACGGTCGCCCTCGCCGACCCGGACCGCCTCGCCCAGATGCCGCTCGCCGACCTCGAGGAGGTCGCCCCCGTGCTCCGGGCGCGTCAGGACGCCGTCGGCACGGCGACCGCGAGGCTGATGTCGGCCCAGGACGACGTCGTCTGCCCGTTCCCCGACCAGGTCTGGTTCCCCGAGGGCGGCCGGATACCCGCCGACGACCTCGCGCCGATCCCGTGGGCACCGCAGCACTCGGTGCGGGCCGACCTCCTCGACGGCCTCGTCGCGCTCGACGAGGCCTACCTCGCGCAGTTCGGGGCGCACCTCGTCGTGAACTCCGCGTACCGGAGCATGGACGAGCAGCGCGAGGTCTACCGTCCCGAGAACCCGAACCCGCTGGCGGCGCCGCCCGGATGCTCGAACCACGGTCTGGGCACCGCCGTCGACCTCAGCGTGGGACCTGAAGGGTTCGACGGCGCGCGGTTCGCGTGGCTGGCGGAGCACGCCGAGCAGTACGGCTGGACCCACCCGGACTGGGCCGGACCGACCGGCCGCCTCCCGGAGCCCTGGCACTGGGAGGCGGTGGCGACCCCGGACGCCTACTGA	MVGLAGRTVLPEAVGGPLGDALSAVLVVWLVVLLAPRTPPAVAASVALAVCAVIEASHLTPLAPALLDRWPTARFVVGTTFAVQDLAWYALGAALAGTLVAAVTPRRGGTGQTLRHAPTAAAVRGRRAASVVAPLTVLGLLVAGGLVLGRIVEAEAVELTAEVTTAQRELGTSADKVADDAVRERLAAALDSAGSVLEATPVLHRLPGDARAAAAGLEDAIEAVQASRREHATDRATTAREEAAPVRRRAERVLDAADALAESGQDAGEATRAAVRDALGAVDDTVALADPDRLAQMPLADLEEVAPVLRARQDAVGTATARLMSAQDDVVCPFPDQVWFPEGGRIPADDLAPIPWAPQHSVRADLLDGLVALDEAYLAQFGAHLVVNSAYRSMDEQREVYRPENPNPLAAPPGCSNHGLGTAVDLSVGPEGFDGARFAWLAEHAEQYGWTHPDWAGPTGRLPEPWHWEAVATPDAY	PGPT0024055_52	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_00341	873	nirC	COG2116	Nitrite transporter NirC	ATGGATGATCAGGGCAGGCTCTTCCCTGGCAAGCAGTTCATCTCCACGGTGCTGGACGCGCTGCGGACCAAGTCGACGATGAGCGGCGGGCTGGCACACATCTACCTCATGCGTGCCGCGATGGCCGGTGCACTCATCGGGATCATGTACATCACCTACTACACGGTGATCGCGACGTTCGCCGGGATCGGGGACGGCGACCTGGCCGGCCTCGGCAGCATGGTCGGCGCGCTCGTGTTCGGCTTCGCGCTCGTGTTCATCTACTTCAGCAAGTCCGAGCTGCTGACGTCGAACATGATGATCGTGTCGGTCGGTCGGTACTACAAGAAGATCTCCGCCTGGCGCGGGCTGCGCGTCCTGCTCCTGTGCTACCTGGGCAACATCCTCGGCGGCCTCGCCGTCGCGCTGGCCGTGCTCGGCTCCACGCTCGGCGACGGCGCGGTGGGCGAGCAGATGCAGCACTCCGTGGACCACAAGCTCGGCTACCTCACCGAGGGTCTGGCGGGATGGTCGGACCTGTTCGTCCGTGCGGTGCTGTGCAACTTCATGATCAACCTCGGCATGCTGCTCGTCTACAACGGCTTCGTGAAGAACGACGGCACCAAGGCGCTCATGATGATCATGAGCGTGTTCGTCTTCGCGTTCGTCGGCTTCGAGCACTCCGTGGCGAACACCGCGCTGTTCCTCATGGTCGGTCTCCACGACGGCATCGACGTCGGACTCGCGCTCGGCAACCTCGCCGTCGTGCTGGCGGGGAACTTCATCGGCGGCGGGCTGCTCATCGGCTACTACTACTCGTTCGCCAACGACGACCGGCGATACCTGCGCAAGCAGGGCGCCCGCACCGGGACCGAGGCGGACACCGAGGTCTGA	MDDQGRLFPGKQFISTVLDALRTKSTMSGGLAHIYLMRAAMAGALIGIMYITYYTVIATFAGIGDGDLAGLGSMVGALVFGFALVFIYFSKSELLTSNMMIVSVGRYYKKISAWRGLRVLLLCYLGNILGGLAVALAVLGSTLGDGAVGEQMQHSVDHKLGYLTEGLAGWSDLFVRAVLCNFMINLGMLLVYNGFVKNDGTKALMMIMSVFVFAFVGFEHSVANTALFLMVGLHDGIDVGLALGNLAVVLAGNFIGGGLLIGYYYSFANDDRRYLRKQGARTGTEADTEV				NA	NA	NA	NA	NA
AK001_00342	1599	yheS_1	COG0488	putative ABC transporter ATP-binding protein YheS	TTGATCACGGCCCACGGCGTCGAGCTGCGCTTCGGCGCGCGCACCCTGCTGCACGAGGCCACGTTCCGCGTGGCCCCGGGCGACCGTGTCGGCCTGGTCGGTCGCAACGGCGCCGGCAAGACCACGCTCACCAAGACCTTGGCGGGCGAGACGCTGCCGGCGGGCGGGACGATCACGCGCGGGAACGAGATCGGCTACCTGCCGCAGGACCCGCGCACCGGTGACCTCGACGTCGTGGCGATGGACCGGGTGCTCAGCGCCCGCGGCCTCGACGTCATCGTGACGAGGATGCGCCAGGCCGAGAAGGAGATGGCCAGCGAGGACCCGCAGGTCCAGGCCGCGGCGCTGGAGCGGTACCCGAAGCTGGAGACGCGCTTCCTCGCGGCGGGCGGGTACTCGGCCGAGTCCGAGGCGCACCGCATCACGAGCAACCTGGCGCTCGACGACCGGATCCTCGCTCAGCCGCTGCACACGCTCTCCGGCGGCCAGCGCCGCCGCGTCGAGCTGGCGAGGATCCTGTTCTCCGGGGTGGACACGTTGCTGCTCGACGAGCCCACCAACCACCTCGACGCCGACTCCATCGTGTGGCTGCGCGAGTACCTGCGGTCCTACTCCGGGGGGTTCATCGTGATCTCCCACGACGTCGAGCTGCTGCGCGCCTGCGTGAACAAGGTCTTCCACCTCGACGCCAACCGCGGCGAGCTCGACCAGTACAACCTGGGCTGGGACAAGTACCTGGAGCAGCGCGAGCAGGACGAGCGCCGTCGTCGGCGCGAACGCGCCAACGCCGAGAAGAAGGCCGAGACGCTCATCGCCCAGGCGAACAAGATGCGCGCCAAGGCGACCAAGGCGACCGCCGCGCAGAACATGCTCAAGCGGGCCGAGCGGATGCTCGCCGGCACCGAGGGCGAGCGGCAGACGGACAAGGTGGCCGCGCTGCGGTTCCCGAAGCCGTCGCCCTGCGGCAAGACGCCACTGATGGCACGGGAGCTGTCCAAGAGCTACGGCTCGCTGGAGGTCTTCACGGGCGTCGACCTGGCGATCGACCGGGGGTCACGGGTCGTCATCCTCGGGCTCAACGGTGCGGGCAAGACGACGATGCTGCGGATGCTCGCCGGTGTGGAGACACCGGACACGGGCGAGATCCTGCCGGGCCACGGGCTGAAGATGGGCTACTACGCCCAGGAGCACGACATGCTCGACATGGACGCCACCGTCGTGGAGAACCTGCGGCACGCCGCCCCCGACCTGACCGACACCCAGGTGCGCACCACGCTGGGGTCGTTCCTGTTCAGCGGCGACGACGCCGACAAGCCGGCGCACGTCCTCTCCGGCGGGGAGAAGACCCGCCTGGCGCTGGCCACGCTGGTCGTCTCGAGCGCGAACGTGCTGCTGCTCGACGAGCCGACGAACAACCTGGACCCGGCCTCGCGCCGGGAGATCCTCGGGGCGCTGAACACCTACGAGGGTGCCGTCATCATGGTCACCCACGACGACGGCGCGGTCGACGCGCTGAACCCGGAGCGGGTGCTCCTGCTGCCGGACGGCGACGAGGACCTGTGGTCGGACGACTACGCCGAGCTCGTCTCCCTGGCGTGA	MITAHGVELRFGARTLLHEATFRVAPGDRVGLVGRNGAGKTTLTKTLAGETLPAGGTITRGNEIGYLPQDPRTGDLDVVAMDRVLSARGLDVIVTRMRQAEKEMASEDPQVQAAALERYPKLETRFLAAGGYSAESEAHRITSNLALDDRILAQPLHTLSGGQRRRVELARILFSGVDTLLLDEPTNHLDADSIVWLREYLRSYSGGFIVISHDVELLRACVNKVFHLDANRGELDQYNLGWDKYLEQREQDERRRRRERANAEKKAETLIAQANKMRAKATKATAAQNMLKRAERMLAGTEGERQTDKVAALRFPKPSPCGKTPLMARELSKSYGSLEVFTGVDLAIDRGSRVVILGLNGAGKTTMLRMLAGVETPDTGEILPGHGLKMGYYAQEHDMLDMDATVVENLRHAAPDLTDTQVRTTLGSFLFSGDDADKPAHVLSGGEKTRLALATLVVSSANVLLLDEPTNNLDPASRREILGALNTYEGAVIMVTHDDGAVDALNPERVLLLPDGDEDLWSDDYAELVSLA				NA	NA	NA	NA	NA
AK001_00343	900		COG3346	putative SURF1-like protein	GTGAGGCGGACCCGCCGGCAGTGGGTCACGCTCGGTCTGGCCGCCGTGCTGCTTGCCGCCCTGTGCGTCCTGGCGGCCCTGTGGCAGTGGCACCGCTACACCGACCGGCAGGCGCAGATCGACCTCGTCGAGGCCAACTACACCGCTGACCCGGAGCCCCTGGCGACGTTCGTGGGCGGACCGGACGAGGAGCTGGCGCCGCGGGACGTGTGGCGCCCCGCCGTCGTCACCGGCGAGTACGACCCCGCCGGCACGGTGCTGCTGCGCAACCGCCCCGTCGGCGGCACGCCCGGCTTCCACCTCCTGGTGCCGCTGCGCACGGAGCTCGGGGGCGAGGAGGTCGTCCTCGTCGTCGACCGGGGGTTCGTCCCGCTCGGCGCCGACGCCGGCGAGCCGGCGTTCGTGCCCGACCCGCCCGACGGCGAGGTGACCGTGACCATGACGCTGCGGGCCGACGAGCCGGCGTCCGACCGGGGCGCGCCGTCGGGCACGGTCGTGCGGATCAACACCGAGCAGGTGCTGGCCCAGGGTGCCGCCGACGGCGCGGCGACGACGGCGGCGGCGACGGTCGGGGCCTACGGCCAGATGCGCAGCGAGGACCCGGCGGCGGCCGAGACGCCCGTGGCGCTCCCCCGCCCCGACACCGACCCCGGATCGCACCTGAGCTACACGTTCCAGTGGGCGATCTTCGCGCTCGGGGCCGTCGGCGGCTACGTGCTGCTGTGGCGCCGCGAGACCCGGGCGGCCACGGTCACGGCCGGCGAGCTGCTGGCCGCCGACGACCCCGAGGGCACCTCACGACCGCGGCGACCGCGCCGTCGGCACGTCGACGAGGACTACGAGGACGCCGTCCTGGACGCCGCCCACCAGGCCCCCGCGAGATCGACGTACCCGGACTGA	MRRTRRQWVTLGLAAVLLAALCVLAALWQWHRYTDRQAQIDLVEANYTADPEPLATFVGGPDEELAPRDVWRPAVVTGEYDPAGTVLLRNRPVGGTPGFHLLVPLRTELGGEEVVLVVDRGFVPLGADAGEPAFVPDPPDGEVTVTMTLRADEPASDRGAPSGTVVRINTEQVLAQGAADGAATTAAATVGAYGQMRSEDPAAAETPVALPRPDTDPGSHLSYTFQWAIFALGAVGGYVLLWRRETRAATVTAGELLAADDPEGTSRPRRPRRRHVDEDYEDAVLDAAHQAPARSTYPD				NA	NA	NA	NA	NA
AK001_00344	240			hypothetical protein	ATGGACGTGCTCGGCCTGGGGGCCGACCCCGTCGCCGACGACGCCCTGGTCTGCTCGGCCAAGGGGTGCCGTGACGAGGCGCGCTGGGGCCTGCTGTGGAACAACCCCAAGCTGCACACGCCGGAGCGGCGCAAGGTGTGGCTCGCCTGCTCCGACCACCGTGACCACCTCGAGCGGTTCCTCGGCGCCCGAGGCTTCTGGAAGCAGACCGTCGGCGTCGACGAGCTGGAGCGTGCGTGA	MDVLGLGADPVADDALVCSAKGCRDEARWGLLWNNPKLHTPERRKVWLACSDHRDHLERFLGARGFWKQTVGVDELERA				NA	NA	NA	NA	NA
AK001_00345	342			hypothetical protein	GTGCACTCGATCACGGCCGTCCCGACGAACCTGTCGGACGACCAGCACCGACGCATGCGGGCGTACCTCATCCAGATGGGCCTGCGCGTGGTCCTCATCCTGACGGCGGTGCTGCTCGTCGACGGCTGGCTGCTGTGGGCCTGCATCGCCGGCGCCGTCATCCTGCCGTACACGGCCGTGCTGTTCGCCAACGCGGGCCGCGACCGCAGCGCGCGCGACGTCGAGTCGCTGCCGCCGGAGATGCCGCGCGAGCTGCCGACGACGCCCGCGGCGCCACCGGACGACGTGCGCATCGTGGAGCACACCGACGACACCGACGACTCCGACCGGAAGGACCACTGA	MHSITAVPTNLSDDQHRRMRAYLIQMGLRVVLILTAVLLVDGWLLWACIAGAVILPYTAVLFANAGRDRSARDVESLPPEMPRELPTTPAAPPDDVRIVEHTDDTDDSDRKDH				NA	NA	NA	NA	NA
AK001_00346	726	fabG_1		3-oxoacyl-[acyl-carrier-protein] reductase FabG	GTGGCAGAGCAGGCAGCAACCGGTGGCCGCACCGTGGTCGTGACCGGGGCCGCGCGCGGCATCGGGCGGGCGATCGCGGAGCGTTTCGTCGCCGCCGGCGACACCGTCGCGACGATCTACCGCGGGGGAGACCTGCCCGAGGGGGTGCACGGGTTCGTCGCCGACGTCACCGACAGTGCGGCCGTCGACGCGGCGTTCACCGAGATCGAGCAGCAGCTCGGCGCACCGACGGTGCTCGTGGCCAACGCCGGCGTCACCCGCGACCAGCTCCTGATGCGGATGAGCGACGAGGAGTTCGACCAGGTCGTCGACGTCAACCTCACCGGGACGTTCCGCTGCGTGCGGCGCGCCTCGAAGGGCATGATCCGCGCCCGGTCCGGCCGCATCGTCCTCATCGGCTCCGTCGTCGGGCTCTACGGCGGCCCGGGCCAGGTCAACTACTCCTCGACCAAGGCCGCCCTGGTGGGCATGGCCCGGTCGATCACGCGCGAGCTCGGCGGGCGCGGGATCACCGCGAACGTCGTCGCGCCCGGCTTCGTGGAGACCGACATGACTGCCGCGCTGCCCGAGGACACCCAGAAGAAGTACAAGTCCTCGATCCCCGCCGGGCGGTTCGCCGACCCGGCCGAGGTGGCCGGCGTGGTCGAGTTCCTCGCCTCCGACGCCGCCGCCTACGTCTCCGGCGCCGTCGTGCCCGTCGACGGCGGGCTCGGCATGGGGCACTGA	MAEQAATGGRTVVVTGAARGIGRAIAERFVAAGDTVATIYRGGDLPEGVHGFVADVTDSAAVDAAFTEIEQQLGAPTVLVANAGVTRDQLLMRMSDEEFDQVVDVNLTGTFRCVRRASKGMIRARSGRIVLIGSVVGLYGGPGQVNYSSTKAALVGMARSITRELGGRGITANVVAPGFVETDMTAALPEDTQKKYKSSIPAGRFADPAEVAGVVEFLASDAAAYVSGAVVPVDGGLGMGH	PGPT0003180_21916	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_00347	768	inhA_1	COG0623	Enoyl-[acyl-carrier-protein] reductase [NADH]	ATGGCTCTGCTCGACGGCAAGAAGCTGCTCATCACGGGCGTCCTCACGGACAGCTCCATCGCCTTCCACGCCGCACGCCTCGCCCAGGAAGAGGGCGCCGAGGTCGTCCTGACGTCCTTCGGGCGCCAGATGAAGCTCACGCAGGCCTTCGCCAAGCGCCTGCCCGTCACCGCCCCCGTCGTCGAGCTGGACGTCACCAGCGCCGAGGACCTCGGGGCGCTCGCGGAGCGCGTCGGGGAGCACACCGACCGCATCGACGGCGTCGTGCACTCGATCGGTTTCGCCCCCCAGAGCGTCATGGGCGGCAACTTCCTCACCGCCGAGTGGGACGACGTCGCCACCGCGATGCAGATCTCGACGTTCTCCTACAAGTCGCTCATCACGGCGGCGCAGCCGCTGATGACCGACGGCGGCTCCTACGTGGGCCTGACCTTCGACGCCCAGTTCGCCTGGCCGGTCTACGACTGGATGGGCGTGGCCAAGGCCGGCCTGGAGTCCGCGAACCGCTACGTGGCCCGCGACCTGGGCCCGGAGGGCATCCGCGCGAACCTCGTCTCGGCCGGCCCGATCCGCACCACCGCGGCGAAGTCCATCCCGGGCTTCGAGACGATGGAGGACGCCTGGCCGCAGCGCGCCCCGCTCGGCTGGGACCAGACGACCGCCGAGCCGGCCGCCCGCGCCGTCGTCGCGCTGCTGTCCGACTGGTTCCCGGCCACGACCGGCGAGATCGTGCACGTCGACGGTGGCCTGCACGCGATGGGGCAGTGA	MALLDGKKLLITGVLTDSSIAFHAARLAQEEGAEVVLTSFGRQMKLTQAFAKRLPVTAPVVELDVTSAEDLGALAERVGEHTDRIDGVVHSIGFAPQSVMGGNFLTAEWDDVATAMQISTFSYKSLITAAQPLMTDGGSYVGLTFDAQFAWPVYDWMGVAKAGLESANRYVARDLGPEGIRANLVSAGPIRTTAAKSIPGFETMEDAWPQRAPLGWDQTTAEPAARAVVALLSDWFPATTGEIVHVDGGLHAMGQ	PGPT0008370_3443	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008370-fabI-K00208	NA	NA
AK001_00348	558			hypothetical protein	ATGAACGTGTCGTCGACGCACTCGCCGGACGTCCCGCGTCAGGGGCGCCGTCTCGTGCTGCTGCGGCACGCCAAGGCCGAACCGGCCCGCGACCCGCTCCCGGACGCCGACCGGCCGCTCGCGCTCAAGGGGCGCAAGCAGGCCGGTCGGGTCGGGATGGCGCTCACGGCGGCCCACCTCGTCCCCGACCTCGCGCTCGTCTCGTCGTCGCTGCGCACCCGCCAGACCTGGGACCTGGCCGCCGCGCACCTCGCGGGCCGCGACGCGATCACCGTGGACGTGCGCGACGAGCTGTACGCGGCCAGCATCCGCGACGTGCTCGAGCTCGTGCGCGGGGCCGGCAGCGACGCGACGACGGTGCTCGTCGTCGGTCACGAGCCCACGATGGCGGCCACGGCCGCCTACCTGGCCGACCGGGACTCCGACGACGCCGCGCTCGCGCAGGTGCGCGTCGGCGTGCCGACGGCGACCTACTCGGTGCTGCACGCCGAGGACCTGCCCTGGTCGCAGTGGGGCAAGAAGTCCGCGACCCTGCTGCGGGTCGGCCGGCCGTCCTGA	MNVSSTHSPDVPRQGRRLVLLRHAKAEPARDPLPDADRPLALKGRKQAGRVGMALTAAHLVPDLALVSSSLRTRQTWDLAAAHLAGRDAITVDVRDELYAASIRDVLELVRGAGSDATTVLVVGHEPTMAATAAYLADRDSDDAALAQVRVGVPTATYSVLHAEDLPWSQWGKKSATLLRVGRPS				NA	NA	NA	NA	NA
AK001_00349	723	serB	COG0560	Phosphoserine phosphatase	TTGCCTGACCGCGCCCCCGACACGCCCCTGCCCGACCCGTCCGACGCACCGCACCGCCGCCTGGTCGTCACCGACGTCGACTCGACGTTCCTGACGCAGGAGGTCATCGAGCTCATCGCCGAGCACGCCGGCACCCGCGAGCAGGTCGCCGAGGTCACCGAGCGCGCGATGCGCGGCGAGCTCGACTTCGCCGACTCGCTGCGCGAGCGCGTGGCCACCCTGGCCGGTGTCCCCGTGAGCGCCCTGGCCGCCGTCCGCGACGCCGTCGTGCTCACGCCGGGCGCCGCGGAGCTGGTCGCCGAGGTGCAGCGGCGCGGATGGGAGTTCGGGCTCGTCTCGGGCGGGTTCGCCGAGATCCTCGAGCCGCTGGCGGACTCGCTGGGCATCACCCGGTGGCGCGCCAACCGGCTCGAGGCGGTCGACGGCGTGCTGACGGGCCGCACGACGGGCCCGGTCGTGGACCGCGCCCTGAAGGAGTCGACGCTGCGCGAGTGGGCCGCCGACCTGGGCCTGTCGATGGCCGACACCGTGGCCGTGGGCGACGGCGCCAACGACCTGGACATGATCGGTGCCGCGGGCATCGGGGTCGCCTTCGCGGCCAAGCCGGCCGTGCGGGAGCAGGCGCCCTACTGCCTCGACGGTCCCCGGCTGGACGCGGTGCTGGAGATCGTGGACGAGGTCGACGCCGGGCGTCAGCCCGTCGCGGACGCCCGGCCCTCCTGA	MPDRAPDTPLPDPSDAPHRRLVVTDVDSTFLTQEVIELIAEHAGTREQVAEVTERAMRGELDFADSLRERVATLAGVPVSALAAVRDAVVLTPGAAELVAEVQRRGWEFGLVSGGFAEILEPLADSLGITRWRANRLEAVDGVLTGRTTGPVVDRALKESTLREWAADLGLSMADTVAVGDGANDLDMIGAAGIGVAFAAKPAVREQAPYCLDGPRLDAVLEIVDEVDAGRQPVADARPS	PGPT0014525_44	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058	NA	NA
AK001_00350	1245	glgC	COG0448	Glucose-1-phosphate adenylyltransferase	ATGGCATCGTCACACCCCCGGGTCCTGGCCATCGTCCTCGCCGGCGGCGAGGGCAAGCGACTGATGCCGTTGACGGCACAGCGGGCGAAACCCGCCGTGCCGTTCGGGGGGATCTACCGGCTCGTCGACTTCGCCCTGTCGAACATCATCAACTCCCACTACCTGCACGTCATCGTGCTGACGCAGTACAAGTCGCACTCGCTGGACCGGCACATCTCCAAGACGTGGCGCATGTCGGCCCTGCTGGGCAACTACGTCTCCTCGGTGCCCGCCCAGCAGCGGGTCGGCAAGCACTGGTACCTCGGCTCGGCCGACGCCATCCACCAGTCCCTCAACATCATCGAGGACGAACGCCCCGACATCGTCGTCGTCGTGGGCGCCGACCACGTGTACCGCATGGACTTCTCGCAGATGGTCGACGCGCACATCGAGTCCGGCGCCCGGGCCACCGTGTCCGCGATCCGCCAGCCCATCGCCCTGGCGGACCAGTTCGGCGTCATCGACGTCGACCCGCAGGACCCCACGCGCATCCGCGAGTTCCTCGAGAAGCCCGTCAACCCCGTCGGCCTGCCCGACTCCCCCACCGAGGTGCTCGCCTCGATGGGCAACTACGTCTTCGACACCGACGCCCTGGTCGAGGCCGTGACCAAGGACGCGGCCAACCCGGACTCCCGTCACGACATGGGGGGCGACATCATCCCCGCGTTCGTCGACGAGGGGACGGCCGGCGTGTACGACATGATCCGCAACGAGGTGCCCGGCGCGACGGACCGCGACCGCTACTACTGGCGCGACGTCGGGACCATCGACGCCTACTTCGACGCCAACAAGGACCTCATCGCCGTCCAGCCGGTCTTCAACCTCTACAACGAGGACTGGCCGCTGTACACGGGGTACACGGGGCTGCCGCCGGCGAAGTTCGTGCACGCCGGCCCGGGCCGGCTCGGCCACGCGGCCGACTCGATCGTCTCACCTGGTGTCCTCGTCTCCGGCGCGACGGTCGCAGGGTCCATCCTGTCCCCGGGCGTGCACCTGCACTCCTGGGCGACGCTGACCGACTCGGTCGTGATGGACGGCGTCCAGGTGCACCGGCACGCCCAGGTCCACCGCGCCATCCTCGACAAGAACGTGGTGGTGGACGAGCGGGCACGGATCGGCGTCGACCACGAGGAGGACCGCGCCCGCGGGTTCACCGTCACCGACTCGGGGATCACCGTCGTCCCGAAGGGTTCCCACGTTGCCTGA	MASSHPRVLAIVLAGGEGKRLMPLTAQRAKPAVPFGGIYRLVDFALSNIINSHYLHVIVLTQYKSHSLDRHISKTWRMSALLGNYVSSVPAQQRVGKHWYLGSADAIHQSLNIIEDERPDIVVVVGADHVYRMDFSQMVDAHIESGARATVSAIRQPIALADQFGVIDVDPQDPTRIREFLEKPVNPVGLPDSPTEVLASMGNYVFDTDALVEAVTKDAANPDSRHDMGGDIIPAFVDEGTAGVYDMIRNEVPGATDRDRYYWRDVGTIDAYFDANKDLIAVQPVFNLYNEDWPLYTGYTGLPPAKFVHAGPGRLGHAADSIVSPGVLVSGATVAGSILSPGVHLHSWATLTDSVVMDGVQVHRHAQVHRAILDKNVVVDERARIGVDHEEDRARGFTVTDSGITVVPKGSHVA	PGPT0025885_2271	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVAL	CE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025885-glgC-K00975	NA	NA
AK001_00351	1227	glgM	COG0438	Alpha-maltose-1-phosphate synthase	GTGAGCACCCGACCCGTCATCGACCTGCTGACCCGCGAGTACCCGCCGCACGTCTACGGCGGAGCCGGGGTGCACGTGGCCGAGCTCTCCCGCGTCCTGCGCGCCCACGCCGACGTGCGCGTACGCTGCTTCGACGGTCCGCGCCCCGACGCCGAGGACGTGACCGGCTACGACGTGCCCGGCACGCTCACCGGCGCCAACGCCTCCCTGCGCACGCTCGGGGTGGACCTGGCGATGGCCGAGGACGTCGCCGGTGCCGACGTCGTGCACTCCCACACCTGGTACGCGAACATGGCGGGCCACCTGGGCGGCCTGCTGCACGACGTCCCGCACGTGGTGACCGCGCACTCCCTGGAGCCGCTGCGGCCCTGGAAGGCCGAGCAGCTCGGCGGCGGGTACGCGGTCTCGAGCTGGGCCGAGCGCACCGCCTACCTCGGGGCCGCGGGGATCGTCGCCGTCTCGGCCGGCATGCGCGCCGACATCCTGCGCTGCTACCCCGAGCTCGACCCGGACCGCGTCCACGTCGTGCACAACGGGATCGACCTGGACGGCTGGGTCCGTCCGCACGAGGACTCCGTGGCCCGCGTCGCCGCGGAGCGCGGCATCGACACCGACCGGCCGGCCGTGGTGTTCGTCGGGCGCATCACCCGCCAGAAGGGGCTGCCGCACTTCCTGCGGGCGGCCGCCCAGCTGCCGCCCGAGGTGCAGGTGATCCTCTGCGCGGGCGCCCCGGACACCGACGAGATCATGGCCGAGGTGCGCGGGCTGGTCGACGACCTGCGCGCGGCCCGCGGCGGCGGGGCCGAGGCCGGCGTGGTGTGGATCGAGGAGATGCTGCCCCGTCCTGAGCTGTGCGCCGTGCTGGCCGCCTCGACGGTGTTCGTGTGCCCCTCGGTCTACGAGCCGCTGGGCATCGTCAACCTCGAGGCGATGGCGGTCGGGCTGCCCGTGGTGGGCTCCGCGACCGGAGGTATCCCCGAGGTCGTCGACGACGGCGTGACGGGCACGCTGGTCCCGATCGAGCAGTCCGACGACGGCACCGGGACGCCGCTCGACCCCGACCGTTTCGAGGCCGACCTGGCCGCCGCGCTGACGGACCTGGCCGGGGACCCCGTCCGGGCGGCCGCCTGGGGCGCGGCGGGCCGTCGTCGTGCGGAGGAGCACTTCGCGTGGTCCGCCATCGCCGAGCGCACGATGGACGTGTACCGCGGCGTGCTCGGCGCGTGA	MSTRPVIDLLTREYPPHVYGGAGVHVAELSRVLRAHADVRVRCFDGPRPDAEDVTGYDVPGTLTGANASLRTLGVDLAMAEDVAGADVVHSHTWYANMAGHLGGLLHDVPHVVTAHSLEPLRPWKAEQLGGGYAVSSWAERTAYLGAAGIVAVSAGMRADILRCYPELDPDRVHVVHNGIDLDGWVRPHEDSVARVAAERGIDTDRPAVVFVGRITRQKGLPHFLRAAAQLPPEVQVILCAGAPDTDEIMAEVRGLVDDLRAARGGGAEAGVVWIEEMLPRPELCAVLAASTVFVCPSVYEPLGIVNLEAMAVGLPVVGSATGGIPEVVDDGVTGTLVPIEQSDDGTGTPLDPDRFEADLAAALTDLAGDPVRAAAWGAAGRRRAEEHFAWSAIAERTMDVYRGVLGA	PGPT0017715_57	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017715-glgM-K16148	NA	NA
AK001_00352	621			hypothetical protein	GTGAGCCGGCAGGGCCGCCGACGGCGGCAGGGGCTGTGGGACGACGTGCGGGTCCGTGGGCTGAGCCCCGAGGAGCAGGTCCGTCCGGCGGCGTTCCTGCGCGCGGGCACGGTGGACGCGGCGACGCTGCTGGTGCTGCGCGCGCTGCGCCGGGCGGTGTGGCCCCTGGTGGTGATCGGCCTCGCGGTGGCGTGGGTGAGCGGTGACCTCACGAACGGGGCGATGAGCTGGCTGACCGACCCGACCCAGCTGGCCGACCCGGCGGCGCTGATCGGTCTGATCCTGTCCCCGCTGGTCGTCTTCGCGGCGGGAGTGGCGCTGCGGATCATCGTCAACCTGACAGCGCTCGCGGTCGCCGCACCGCTGGCGCAGGGAGCCTGGGTGGCCGGGACGGAGGCCGTCTCCCGGGGGCGGCGGCTGATCGACCTGGCCTACCTCTCGGCGGGCTACCGGTCGGTGCGCTGGTCCTACGCGGTCCAGCGCGAGGCGGTCGCCCGGTGCGGGATGCTGGGGCGACAGCTCGCGTTCGTCGAGACGCTGGGGCGCATCGCGCTGCCCGTGTCGATCGTCGTCTTCGTCTGGATCGTCTACGACAGCGTGTCGACGGGCACCGCGGGCTGA	MSRQGRRRRQGLWDDVRVRGLSPEEQVRPAAFLRAGTVDAATLLVLRALRRAVWPLVVIGLAVAWVSGDLTNGAMSWLTDPTQLADPAALIGLILSPLVVFAAGVALRIIVNLTALAVAAPLAQGAWVAGTEAVSRGRRLIDLAYLSAGYRSVRWSYAVQREAVARCGMLGRQLAFVETLGRIALPVSIVVFVWIVYDSVSTGTAG				NA	NA	NA	NA	NA
AK001_00353	768			hypothetical protein	GTGGAAGCGAGCAACCTCCTGCCCCGCAGCGTCGTCCTGGCGCTGTGGCTCCAGGCCGTCGGCGCCTCGCACGGCGTGGCCGTGCGGTCGGTGACCGACGACGACGAGCCGCACACCGTCGTCGGGCTGCCCGGGTCCGCGGACACGTCCGGCACCCTGGCCGACCTCGTCGCCGCGTTCTCGACGGGTCCGCGCGAGGTGTGCGCCCTGCTGCCCGCCCCGGGCGACCCGTCCGGGGTGCCCGCACCCGCCGCCCACGACGCCGTCGAGGCCGGCGAGTGCGTGCTCGTCTCGACCGCCGAGGGGTCCTGGGCCGCGGTGCCGCACGTGACCGCCTTCGGCAGCGCGCTCGAACCGGGTCACCTGGTGTCCTGGGAGATCATCGCCGTGCCCCCGTGGTCGACCCTGGTGGCCGGCACCGTGGGCTCGCTCGCCGACGCCGAGCGCGAGCTGCGCAGCAGCCTGATCGTCGCCACCGACGCCCTGGACTCCCTCGACGTGGCGCGCTGGCGCGACGACGCGGCCGACGCCATCGAGCGGCTGCGCTCCTCGACGACGGCCGGCTGGCCCGTCCCCGAGCTCGAGGGGCGGCGTGCCCGCGTGCTCCAGCTCGCCTGGCGCCTGCTGCAGATCGTCGACCTGGCCACCGCGGACGACGGCGGCGCGGTGAACCTCTGGCAGGCCGACCAGCGCTCCACCGCGCTGCGCGAGGTCGACCGCACGGCCCGGCGGGCGCTGGGCGCGGCGACCTACGCCGCGGTGCGGTAG	MEASNLLPRSVVLALWLQAVGASHGVAVRSVTDDDEPHTVVGLPGSADTSGTLADLVAAFSTGPREVCALLPAPGDPSGVPAPAAHDAVEAGECVLVSTAEGSWAAVPHVTAFGSALEPGHLVSWEIIAVPPWSTLVAGTVGSLADAERELRSSLIVATDALDSLDVARWRDDAADAIERLRSSTTAGWPVPELEGRRARVLQLAWRLLQIVDLATADDGGAVNLWQADQRSTALREVDRTARRALGAATYAAVR				NA	NA	NA	NA	NA
AK001_00354	798	ylmA	COG1119	putative ABC transporter ATP-binding protein YlmA	ATGAGCGCGGTACTCGACCTGCAGGGCGTCACCGTCCGACGCGGCACCTCGACCATCGTCGACACCATCGACTGGACCGTCTCCGAGGGGGAGCGGTGGATCGTGCTCGGGCCCAACGGCGCCGGCAAGACCACCCTGCTGCAGATCCTCGCCGCCCGGTCGCACCCGACCGCGGGCACTGCGACGCTGCTGGGAGAGCAGCTCGGGAAGACCGACGTGTTCGAGCTGCGTCCGCGGATCGGGTTCTCCTCGGCGGCTCTGGCCGACAAGATCCCGGCGGGGGAGACGGTGCGCGACGTCGTCCTGACGGCGGCGTACGGCGTCACCGGTCGCTGGCGCGAGGAGTACGAGGAGCTCGACGAGAAGCAGGCGCAGGACCTGCTCGCCGCCTTCGACGTCGGCGACCTGATCGACCGCCACTACGGCACCCTGTCCGAGGGGGAGCGCAAGCGGGTCCAGATCGCCCGCGCGCTGATGACCGACCCCGAGGTGCTGCTGCTCGACGAGCCCGCCGCCGGCCTGGACCTGGCCGGTCGCGAGGAGCTCGTCGGGGCGCTGGCCGAGCTGGCCGGGGACCCGGCCTCGCCGGTCCTGGTCGTGGTCACCCACCACGTGGAGGAGATCCCCCCGGGGTTCACCCACCTGCTGCTGCTCGGCGACGGCCACGTGCAGGCGTCCGGACCCATCGAGGAGGTCCTCACCGCCGAGAACCTGTCGAAGGCGTTCGGCCTGGACCTGCTGGTCGCGCACGGGGGCGGGCGCTGGCTGGCGCGCGCTGCCCGCCCCGGCGGCCGCTGA	MSAVLDLQGVTVRRGTSTIVDTIDWTVSEGERWIVLGPNGAGKTTLLQILAARSHPTAGTATLLGEQLGKTDVFELRPRIGFSSAALADKIPAGETVRDVVLTAAYGVTGRWREEYEELDEKQAQDLLAAFDVGDLIDRHYGTLSEGERKRVQIARALMTDPEVLLLDEPAAGLDLAGREELVGALAELAGDPASPVLVVVTHHVEEIPPGFTHLLLLGDGHVQASGPIEEVLTAENLSKAFGLDLLVAHGGGRWLARAARPGGR	PGPT0003760_3557	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_00355	492			hypothetical protein	ATGGACGGCTGGTTGTGGTGGATCGCCGGGGCGTTCGTCCTGGCGGTCGTCGAGATGATCTCCCTCGACCTGGTGTTCATCATGCTCGCGGGCGGCGCGGTCGCCGGTGGCCTCACGGCGGCGGGAGGTGGACCCGTGTGGCTCCAGATCATCGTGGCGTGCGTCGTGGCGGTGCTGCTCCTGGCGGTGCTGCGTCCCTGGCTGCTGCAGAACCTGCGCCAGCGCACCGACCTGGTCGAGACCAACGCCGCGGCCCAGGTCGGACGGCTCGCGATCGTGCTCGCCGAGGTCACCGAGACCGGCGGCCGGGTCAAGCTCTCCGGTGAGGTGTGGTCGGCCCGGCTGCCCGACGACGGCGTCCCCAACAGCAGCGACCGGATCCCCGAGGGCGTGGAGGTCCGGGTCGTGGCCATCGACGGCGCGACCGCGGTCGTGACGCCCGCGTCCTCCCCGAGCTCACCGACCACCGACGACGGCGGTCGGCTCGTCTGA	MDGWLWWIAGAFVLAVVEMISLDLVFIMLAGGAVAGGLTAAGGGPVWLQIIVACVVAVLLLAVLRPWLLQNLRQRTDLVETNAAAQVGRLAIVLAEVTETGGRVKLSGEVWSARLPDDGVPNSSDRIPEGVEVRVVAIDGATAVVTPASSPSSPTTDDGGRLV				NA	NA	NA	NA	NA
AK001_00356	1188			hypothetical protein	GTGGAACTCGCCACCATCATCGGCTGGGTCGTCCTGCTCGCGTTCGTGATCTTCGTGATCACGGCGCTGTTCAAGATGGTCCGCGTCGTGCCCCAGGCCACCGCGCTGATCATCGAGCGCCTCGGCCGCTACCAGAAGACCTTCGACCCCGGCCTGCACTGGCTGGTGCCGTTCATCGACAAGGTGCGCGCCGGCGTCGACCTGCGCGAGCAGGTCGTCTCGTTCCCGCCCCAGCCGGTGATCACCTCGGACAACCTCGTGGTAGAGATCGACACCGTCATCTACTTCCAGGTCACCGAGCCCAAGTCCGCGGTCTACGAGATCTCGAACTACATCACCGGTATCGAGCAGCTCACCGTCACCACGCTGCGCAACGTCGTCGGGTCCATGGACCTGGAGCAGACGCTGACCAGCCGCGACCAGATCAACGGCCAGCTCCGCGGCGTCCTCGACGAGGCGACGGGCCGCTGGGGCGTGCGCGTCAACCGTGTCGAGCTGAAGTCCATCGAGCCGCCGGCTTCCGTGCAGGGCGCGATGGAGCAGCAGATGCGCGCCGAGCGCGACCGCCGCGCCGCCATCCTCACCGCCGAGGGTGTCAAGCAGTCGCAGATCCTCACGGCCGAGGGCGAGAAGCAGTCCCAGATCCTGCGGGCCGAGGGCGACGCGCAGTCGGCGATCCTGCAGGCCGAGGGTGAGGCGCGGGCGATCCTCCAGGTCTTCGAGGCGATCCACCAGGGCAACCCCGACCCGAAGCTGCTGGCCTACCAGTACCTGCAGATGCTCCCCGAGATCGCCAACGGCAGCTCGTCCAAGCTGTGGGTCGTGCCGACCGAGTTCACCGCCGCCCTGGGCTCGATCGCCAAGGGCTTCGGCGGGACGCCGGGCACCCCGGGCATCCCCACCGAGCCCGGCGACGACGAGGACGACGGCGGCGCCGGTGCGGCGCTGTCCTCCGCGCTGGGGCAGTCGGGGCTGCAGGACCCGGGTGAGGCGCTCGCCGAGGCCCGCCGCCAGGCCGAGGCGGCCACGGCCGACGCCACGAGCTCCGGCACCCGCTCCGGGTCGCCGTTCGACCCGTCGGTCGAGCGCGGGCAGCGTCCCGCCGGCGAGCAGCCGCCGGCCGCACCTCCGTCGCCGCGGCCGCGGACGGTCGGCGACGACGAGCCGCCGGCCCCGCCCCAGCAGTGA	MELATIIGWVVLLAFVIFVITALFKMVRVVPQATALIIERLGRYQKTFDPGLHWLVPFIDKVRAGVDLREQVVSFPPQPVITSDNLVVEIDTVIYFQVTEPKSAVYEISNYITGIEQLTVTTLRNVVGSMDLEQTLTSRDQINGQLRGVLDEATGRWGVRVNRVELKSIEPPASVQGAMEQQMRAERDRRAAILTAEGVKQSQILTAEGEKQSQILRAEGDAQSAILQAEGEARAILQVFEAIHQGNPDPKLLAYQYLQMLPEIANGSSSKLWVVPTEFTAALGSIAKGFGGTPGTPGIPTEPGDDEDDGGAGAALSSALGQSGLQDPGEALAEARRQAEAATADATSSGTRSGSPFDPSVERGQRPAGEQPPAAPPSPRPRTVGDDEPPAPPQQ				NA	NA	NA	NA	NA
AK001_00357	1752		COG1132	putative ABC transporter ATP-binding protein	ATGCTCGTCGCGCTCGTCCGGCGCTACCTGCGCCCCTACCTCGGTGCCGTCGTCGTGCTGCTGGTGCTGCAGCTCGTGCAGACCCTGGCGACGCTGTACCTGCCGTCGCTCAACGCCGACATCGTCGACCAGGGTGTCGTCCAGGGGGACACCGGCTACATCCTCGAGGTCGGGGGAGTGATGCTCCTCGTCTCGCTGGGACAGGTGGTCTGCGCGATCGGGGCGATCGGCCTCGGGGCGCGGGCGGCGACGGCGTTCGGCCGTGACCTGCGGCGTGACCTGTTCGACGCGGTCCAGGGGTTCTCGGCCCGCGAGCTCGGGCAGTTCGGGGCGCCGTCGCTGATCACCCGGACGACCAACGACGTCCAGCAGGTCATGATGATGGTGCTGATGACCTTCACCATCATGGTCGTGGCGCCGATCATGATGGTCGGCGGCGTCGTCATGGCGCTGCGCGAGGACGGCAGCCTGTCGCTGCTCCTGCTCGTCGTGGTCCCGGTGCTCGGCGGTGTGCTCGGCGTGCTGCTGTGGCGGATGGTGCCCTACTTCCGGGCGATGCAGTCGCGCATCGACGCGATCAACGGCGTCCTGCGCGAGCAGATCACCGGTCTGCGCGTGGTGCGGGCCTTCGTGCGCGAGCGTGCCGAGGCGGAACGCTTCGCCGCGGCGAACACGCGGCTGTACGACGTCTCGCTCGGCGCCGGCAAGCTGATGGCGCTGGCCTTCCCGGTGGTCATGCTCATCATGAACCTGTCGCAGGTGGCGGTGCTCTGGTTCGGCGCCGGAGAGGTCGCCGACGGGTCGCTGCAGGTCGGGTCCCTCATCGCCTTCCTCAGCTACATCATGTTCATCCTCATGGCGGTGATGATGTCGACGATGATGGTGATGATGGTGCCGCGGGCCTCCGTCGCCGCGGGCCGCATCGGCGAGGTGCTGGCCACCGAGACCTCCGTCGTCGAGCCCGCCGCACCGGTCGGTCTCGCGCAGCTGTCCGACGGCGCCGGGCCGCGGGGGCGCGTCGCGTTCGAGGGGGTGCGGTTCGGCTACCCGGGGGCCGACGACCCGGTGCTGCAGGACGTCGACCTCGTCGCGGAGCCGGGACGGACCACCGCGATCATCGGCTCGACCGGGTCCGGCAAGACGACGCTGCTGAACCTCGTGCCCCGGCTGTACGACGTCACCGCCGGGCGGGTCACGATCGACGGCGTCGACGTGCGGGACCTGTCCACGGCCGACCTGGGGTCCGTGCTGGGGCTCGTGCCGCAGCAGGCCTACCTGTTCTCCGGGACGATCGCCGACAACCTGCGGTACGGCAAGGCCGACGCCACCGAGGCGGAGATGTGGGACGCGCTCGAGGTGGCCCAGGCCCGCGGCTTCGTCGAGGCCCTGCCCGACGGCCTGGAGGCGTCGGTGGCCCAGGGCGGCACGACGTTCTCCGGCGGTCAGCGCCAGCGCCTGGCGATCGCCCGGGCCGTGATCCGCCGTCCGCTCGTCTACCTCTTCGACGACTCGTTCTCCGCCCTGGACTACGCGACCGACGCCCGGCTCCGGGCCGCGCTGCGCCCGCGCACCGCCCGCGCCACGGTGCTCGTCGTCGCCCAGCGGGTCGCCACCATCCGCGACGCCGACCAGATCCTGGTGCTCGACCACGGCCGGGTCGTCGGGCGGGGCACCCACGCCGAGCTGCTCGCCGAGAACGCCACGTACGCCGAGATCGTCACCTCCCAGATGTCGAGGGAGGAGGCGGCATGA	MLVALVRRYLRPYLGAVVVLLVLQLVQTLATLYLPSLNADIVDQGVVQGDTGYILEVGGVMLLVSLGQVVCAIGAIGLGARAATAFGRDLRRDLFDAVQGFSARELGQFGAPSLITRTTNDVQQVMMMVLMTFTIMVVAPIMMVGGVVMALREDGSLSLLLLVVVPVLGGVLGVLLWRMVPYFRAMQSRIDAINGVLREQITGLRVVRAFVRERAEAERFAAANTRLYDVSLGAGKLMALAFPVVMLIMNLSQVAVLWFGAGEVADGSLQVGSLIAFLSYIMFILMAVMMSTMMVMMVPRASVAAGRIGEVLATETSVVEPAAPVGLAQLSDGAGPRGRVAFEGVRFGYPGADDPVLQDVDLVAEPGRTTAIIGSTGSGKTTLLNLVPRLYDVTAGRVTIDGVDVRDLSTADLGSVLGLVPQQAYLFSGTIADNLRYGKADATEAEMWDALEVAQARGFVEALPDGLEASVAQGGTTFSGGQRQRLAIARAVIRRPLVYLFDDSFSALDYATDARLRAALRPRTARATVLVVAQRVATIRDADQILVLDHGRVVGRGTHAELLAENATYAEIVTSQMSREEAA	PGPT0029025_829	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887	NA	NA
AK001_00358	2004		COG1132	Fatty acid ABC transporter ATP-binding/permease protein	ATGAGCCAGCAGACCTCCCACCGGCCGCCGCCCGGACCCCCGGCCGGCGGCCACGGGCCGCGCGCCGCGGCGGGCGTGCCCACCGCCAAGCCGCTGGACTTCGGCGGGTCGCTGCGGCGGTTCGCCGGCGTCATGCGCCCCGAACGGGTGCGGGTGGCCGTGCTGCTCGCGTGCGGGACGGTCTCGGTCGTGCTCACGGTGCTGGGCCCCAAGATCCTCGGCGACGCGACGGACGTCATCTTCACCGGGGTGGTCGGCCGGCTCCTCGGCAGCACGCTGCCGCCCGACACCACCACCGCGGAGGCGGTCGCGGCGCTCCGGGCCGCCGGCGACGAGAACCAGGCCGACATGATCGCGGCGATGAGCGGCGTCGTGCCGGGCGAGGGGATCGACGTCGAGCGGCTCGCGCAGATCCTCGCCACGGTCGTCGCGGTCTACGTCGGGGCGTTCTTGTTCGGCTGGTGGCAGTCGCGTCTGATGACCGTGGCGGTGCAGAACACGGTGCGCCGGCTGCGCGACGACGTCGAGGCGAAGCTGCACCGCATCCCGCTGAGCTATGTCGACCGGCAGGCCAAGGGCGACATCCTCTCCCGGGTCACCAACGACATCGACAACGTCGCCCAGACGACCACGCAGACGCTGGCCCAGCTCGTCACCGCGCTGCTGACCGTGGTGGGCGTGCTGACGATGATGTTCTGGATCTCGTGGGTGCTGGCCCTGGTCGCCCTCGTCACGGTGCCGCTGTCGATCCTGCTGACGATGGCGATCGCCAAGCGGTCGCAGCCGCAGTTCATCGAGCAGTGGGCCGCCACCGGGCGGCTCAACGCGCACGTCGAGGAGATGTTCACCGGCCACGCCCTGGTCAAGGTGTACGGCCGCCAGGCCGACGCGGCCGCGACCTTCGCCCGGGAGAACGAGGCCGTCCACGACGCCACCCGGCGCTCGCAGTTCATCTCGGGCACGATCCAGCCGACCATGGGCTTCCTCGCGAACCTCAACTACGTGCTGGTGGCCGTCATCGGCGGGCTGCGGGTCGCCTCCGGCCAGCTCTCCATCGGCGACGTGCAGGCCTTCATCCAGTACTCGCGCCAGTTCACCCAGCCGCTGAGCCAGATCGCCTCGATGATGAACCTGCTGCAGTCGGGCGTCGCCTCGGCCGAGCGCGTCTTCACGCTGCTCGACGCCCCCGAGCAGGATCCCGACCCGGTCCCGGCCCGCGACCCGGAGCGCGTGCGCGGCCGGGTCGAGTTCGACGACGTGTCGTTCTCCTACACCCCCGACGAGGAGCTCATCGAGCACCTCGACCTGGTGGCCGAGCCCGGGCAGACGATCGCGATCGTCGGACCGACCGGTGCCGGCAAGACGACGCTGGTCAACCTGCTCATGCGGTTCTACGAGATCGACGGGGGCCGGATCCTCCTCGACGGCGTCGACACCCGCGCGATGACCCGTGACGGGCTGCGGTCCCGCGTCGGGATGGTGCTCCAGGACGCCTGGCTGTTCGGCGGCACCATCGCCGAGAACATCCGCTACGGGGTGCGCGACGGGCGCGAGGTGTCGGACGAGGAGTTCCTGGCGGCCGCCCGGGCCACCTCCGTCGACCCGTTCGTGCGGACGCTGCCCGACGGGTACGACACCGTCCTCGACGACGGCGGCGCGTCGCTCTCCGCCGGCGAGAAGCAGCTGCTGACGATCGCGCGGGCGTTCCTCGCCGACCCCGACATCCTCGTCCTGGACGAGGCGACGAGCTCGGTGGACACCCGGACCGAGGTGCTGGTGCAGGAGGCGATGAACGCGCTGCGCTCGGGGCGGACCTCGTTCGTCATCGCCCACCGGCTCTCCACGATCCGCGAGGCCGACCTCATCGTGGTGATGGAGCACGGACGGATCGTCGAGCAGGGCGACCACGACGGGCTGCTCGCCGCCGACGGTGCCTACGCCCGGCTCTACGCCAGCCAGTTCGCCGCGCCGATGACCGAGGACCCGGCCGGGTCCGGTGCGTGA	MSQQTSHRPPPGPPAGGHGPRAAAGVPTAKPLDFGGSLRRFAGVMRPERVRVAVLLACGTVSVVLTVLGPKILGDATDVIFTGVVGRLLGSTLPPDTTTAEAVAALRAAGDENQADMIAAMSGVVPGEGIDVERLAQILATVVAVYVGAFLFGWWQSRLMTVAVQNTVRRLRDDVEAKLHRIPLSYVDRQAKGDILSRVTNDIDNVAQTTTQTLAQLVTALLTVVGVLTMMFWISWVLALVALVTVPLSILLTMAIAKRSQPQFIEQWAATGRLNAHVEEMFTGHALVKVYGRQADAAATFARENEAVHDATRRSQFISGTIQPTMGFLANLNYVLVAVIGGLRVASGQLSIGDVQAFIQYSRQFTQPLSQIASMMNLLQSGVASAERVFTLLDAPEQDPDPVPARDPERVRGRVEFDDVSFSYTPDEELIEHLDLVAEPGQTIAIVGPTGAGKTTLVNLLMRFYEIDGGRILLDGVDTRAMTRDGLRSRVGMVLQDAWLFGGTIAENIRYGVRDGREVSDEEFLAAARATSVDPFVRTLPDGYDTVLDDGGASLSAGEKQLLTIARAFLADPDILVLDEATSSVDTRTEVLVQEAMNALRSGRTSFVIAHRLSTIREADLIVVMEHGRIVEQGDHDGLLAADGAYARLYASQFAAPMTEDPAGSGA	PGPT0029030_181	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888	NA	NA
AK001_00359	1263			hypothetical protein	GTGAGCACCGCACGGCGTGCCACAGTGGTGCGCGTGACCGCACCCGACACCCGGCCGGCCGCCGAGCCGGCATCCGCGGCTCGCCCGGATCCCGGCGCCCGGCCGCGGCGCAGCATCCTCGTCGGCGTGCTGCTCGCCGTGGCCCTGCCGCTCGCCGTGCTCTCGGTCGGCGCCCTCGTGCCGCGGGTGCCCTGGCTCGGGCACACCGGCGTCGCCGTCTCGCCCTGGGCGGTCTGGCTCGTGGCGGCCGGCATCGTCGTGCTCGTCCTCGGCACCGTCGCGCTGCTGCGCCGGCCGTCCGTGCCGCGCGTGATCGCCCTCGTCGCCGGGGCCACGACGGCCGTCTGCTCCTTCACCGTCGTCACCCAGCAGCTGCTCGTCGCCCAGGACCACGGCGTCGCCGTGCGGATCGGTGAGCTGTTCACCCTCGTCCGGGGCGACGTCTCGGCCGACCTCGACGCCGAGTACGCGCAGCTCGACGGGGAGCCGCAGGAGCTGTCCGTCTGGCTGCCCCGCACGGGACAGGACGGGGCGCCGGCACCCGTCGTGGTCCTCGTGCACGGCGGCGGGTGGACCTCCGAGGACCGGCTGCAGCCGACCACCGCGTCGCACGCCGCCTGGTTCGCCGAGCAGGGTTTCCTGGCGATCAGCGTCGACTACCCCCTGTCGGACGACGAGGACCACCGGTGGGACGTTGTGGAGCCGCAGGTCGCCTGCGCCCTGGTCTGGGCGGGCCGGCACGCCGCCGAGCACGGGGGCGACCCGGCCGAGGTCCACCTCGTCGGCGACTCCGCCGGCGGGAACGTCGCCCTCGACGTGGCCTACCGCGCCGAGGCCGGGGAGCTGGAGCCCCCCTGCTCCGGCGAGCTGCCGCGCGTCGCCGCGGTGAGCACGCTGTACCCCGTGGCGGACCCGGTCGCGTTCCACGACAACGACGACCCGGTCGTCGGGGACGCCGCCCGGTCGATGGCCGAGCGGTACACCGGAGGAGCCCCCGGCGAGGTGCCCGAGCGCTACGCCGCCGTGTGGCCGGCCGAGCACGTCCGGGACGGGGCGCCCCCGACGCTGATGGTCCTCGGCGCCGCGGACCACCTGGTCCCGCCGGCCGGCGCGCAGGACCTGGCAGGCGTGCTGGCCCGCCACGACGTGGAGCACGAGCTCGTCGAGCTGCCGGCGGCGGGGCACGTGTTCGACGCCGCACCCGGGGGAGTGGGGACCCAGACCTGGCGCGAGCTGACGCTGCGGTGGTTCTCCGGGGGCTGA	MSTARRATVVRVTAPDTRPAAEPASAARPDPGARPRRSILVGVLLAVALPLAVLSVGALVPRVPWLGHTGVAVSPWAVWLVAAGIVVLVLGTVALLRRPSVPRVIALVAGATTAVCSFTVVTQQLLVAQDHGVAVRIGELFTLVRGDVSADLDAEYAQLDGEPQELSVWLPRTGQDGAPAPVVVLVHGGGWTSEDRLQPTTASHAAWFAEQGFLAISVDYPLSDDEDHRWDVVEPQVACALVWAGRHAAEHGGDPAEVHLVGDSAGGNVALDVAYRAEAGELEPPCSGELPRVAAVSTLYPVADPVAFHDNDDPVVGDAARSMAERYTGGAPGEVPERYAAVWPAEHVRDGAPPTLMVLGAADHLVPPAGAQDLAGVLARHDVEHELVELPAAGHVFDAAPGGVGTQTWRELTLRWFSGG				NA	NA	NA	NA	NA
AK001_00360	849			Putative TrmH family tRNA/rRNA methyltransferase	GTGAACCTGCCTGCCGAGCTCGCCGCCGCCGTGGTGCCCGTGACCGATCCGGCCGACCCGCGGCTGCGGGACTACACCGACCTGACCGACGTCAAGCTGCGCACGGCCCGCGAGCCCGCCGAGGGCCTGTTCATGGCCGAGTCGTCGAACGTCATCCGCCGCGCGCTGGCCGCCGGGCACCGGCCGCGGTCCTTCCTCATGGCCGACAAGTGGCTCGACTCGATGGCCGACGTGCTCGCCGCCCACCCGGACGTGCCCGTCTTCGTCGCCGACGAGGTCGTCCTGCGCGAGATCACCGGGTTCCACCTGCACCGCGGGGCGCTCGCGGCGATGCACCGCCCAGCGCTGGCCGACGTCGGCGAGCTGCTGTCCCGCCGCGGGGCCGGTGGCGGAGCGCGGCGGGTCGCCGTCCTGGAGGACATCGTCGACCACACGAACGTCGGGGCGATCTTCCGCTCCGCCGCGGGCCTGGGCGTGGATGCCGTGCTGGTGACCCCGCGCTGCGCCGACCCCCTGTACCGGCGGTCGGTGCGGGTCTCGATGGGCACGGTGTTCCAGGTGCCGTGGACGCGGCTGCCGGCCTGGCCGGCCGGTGTGGGCGAGCTGCAGGACCTGGGGTTCACGGTCGCCGCGCTGGCGCTGAGCGACGACGCCGTCACGCTCGACGAGCTGGCGGACGAGGCGCCCGATCGCCTGGCCCTGGTGCTCGGGACCGAGGGCGACGGGCTCTCCCGCGGCGCCGTGGCCGCCGCCGACCGCGTGGTCCGCATCCCCATGGCCGGGGCGGTGGACTCGCTCAACGTGGCGGCGGCCTCGGCGGTCGCCTTCTGGGCGACCCGCACGCGCTGA	MNLPAELAAAVVPVTDPADPRLRDYTDLTDVKLRTAREPAEGLFMAESSNVIRRALAAGHRPRSFLMADKWLDSMADVLAAHPDVPVFVADEVVLREITGFHLHRGALAAMHRPALADVGELLSRRGAGGGARRVAVLEDIVDHTNVGAIFRSAAGLGVDAVLVTPRCADPLYRRSVRVSMGTVFQVPWTRLPAWPAGVGELQDLGFTVAALALSDDAVTLDELADEAPDRLALVLGTEGDGLSRGAVAAADRVVRIPMAGAVDSLNVAAASAVAFWATRTR				NA	NA	NA	NA	NA
AK001_00361	489			hypothetical protein	ATGGTCACCCTGACGACGCACGACCACGACGGCGAGCTCGCCGTCTTCCTCATCGGCGCACGGATCGAGCGACCGTGGCGTCCCGACGGGTGGTGGCCCGCCCTCGCGGCGATGCGGCCGATGCTCACCGAGCTCGCCCGCGACCCCGGCTCCGGGTTCCTGGGCGCCACGACGCTGGTCGGCGCCCGCGGGCCGACGTCCGTGCAGTACTGGCGCAGCGTCGAGGACATCTACGCCTACGCCGGCGACGACGCCCGCCGGCACCGGCCGGCGTGGGTCGAGTTCTACCGCCGGGCGCGCCGCGTGCCCGGCGCGGTCACCGTGTGGCACGAGACGTTCCGTGTCCCGGCGGGCGGCCACGAGAGCCTCTACGCCGGCCAGCCGGCGCTCTTCGGCCTCGCCGCCGCGACCGGAGCGGTCCCGGCCGCCCGCCGTGGCCGGACCGCGCGGGAGCGGCTGCACAGCACCGGGGCGCAGGACGGCTCCTGA	MVTLTTHDHDGELAVFLIGARIERPWRPDGWWPALAAMRPMLTELARDPGSGFLGATTLVGARGPTSVQYWRSVEDIYAYAGDDARRHRPAWVEFYRRARRVPGAVTVWHETFRVPAGGHESLYAGQPALFGLAAATGAVPAARRGRTARERLHSTGAQDGS				NA	NA	NA	NA	NA
AK001_00362	630			hypothetical protein	ATGCGGATCTCCGCGCTGGCCGACCGCACCGGGGTGCCGGTGGCCACGATCAAGTACTACCTGCGCGAGGGGCTGCTGCCGCCGGGTGAGCCGACGTCGCGCACGCAGGCCACCTACGGCGACGAGCACGTCGACCGGGTCCGGCTGGTCCGCGCGATGACGGAGTCGGCCGGGCTGTCGCTGGCCGCCGTCCGCGACGTCCTGTCCGCCCTGGACGACCCGCCGCGGTCCCGCCACGACCTGCTCGGCGCGGCGCAGCACGCCCTGGTCGCCGATGAGGCGCGGTCCGACGGCGAGGTCGACGACGCCGTCCGTCGGCGCGTGGACGCTCTCGTCGCGGCGCGGGGGTGGTACGACGACGCCGCCCTGGCCGGCCGTCTGGCGGCCCTGCTGCGCGACGCCGAGCGGGCCGGGGTGCCGGTGGGTGACGAGCATCTGGCCGTCCTCGCCGACGCCGCCGAGCTGGTGGCCCGCGCGGACCTCGCCACGGTGCCCGACGCTCCCGCCGACGCGGCCCGCCAGGTCGTGGTCGGCACCCTCCTCACGGATCCGGTGCTCGTCGTCCTGCGCCGGTTCGCCCAGCAGCAGGCGAGCGCCCGGCGGGCCGGCGGCGGTCAGGGCGCGGTCTGA	MRISALADRTGVPVATIKYYLREGLLPPGEPTSRTQATYGDEHVDRVRLVRAMTESAGLSLAAVRDVLSALDDPPRSRHDLLGAAQHALVADEARSDGEVDDAVRRRVDALVAARGWYDDAALAGRLAALLRDAERAGVPVGDEHLAVLADAAELVARADLATVPDAPADAARQVVVGTLLTDPVLVVLRRFAQQQASARRAGGGQGAV				NA	NA	NA	NA	NA
AK001_00363	999		COG2375	putative protein	GTGACTGAAGCCGTGACCGACACTCGGACCGAGACCGCCGTCGCACCCCGCCCCTGGCGCATGTTCGACGTCGAGGTCCTGCGGGTCACGCGCCTGTGCCCGTCCTTCGTGCGGATCACCTTCACCGGCGAGGACCTGCACGAGTTCGCCGACAACGGTCGCGACCAGCGCATCAAGTTCCTGCTCCCGGCCCCGTGCGGCGGCTGGGAGTACCTGGACCGGCAGAACCCGGACTGGTTCACCTCCTGGCGCGAGCTGCCCGACGAGCGCCGCAACCCCCTGCGGACCTACACCGTGCGCGCCGTCCGTCCCGCGCAGCGCGAGGTGGACGTCGACATCGTCCTGCACGGCGACACCGGCCCGGCGTCCCGCTGGGCGAACGGCGCCCGGCCCGGTTCCCCGCTCGTGATCCTCGGGCCGAACGCGGCCTACGACGGCGGTCCGCACGGCGGGCGCGACTTCGCGCCACCGCCGTCCAGCCACGCGCTGCTGCTCGCCGGCGACGAGACGGCCGTCCCGGCCATCGCCTCGATCTGCGAGTCCCTGCCCGCCGACGCCGTCGGTGAGGTCTTCCTCGAGGTGCCGCACGCGGAGGACCGCTGGACGCTCGCCGCGCCGGCGGGCGTGCGGGTCACCTGGCTGCCGCGCGACGGTGCCGAGCACGGGGACGTCCTGGTCCCGGCGGTGCAGGACGCCGCCGACCGCATGCTCGCCATGGGCGTCCGGCCGTCGGCCGACGGCGGCCCCGCGACGACGGCCACGGGTGTCGACCTGGACGCCGAGCTCGTCGACGTCGACGTCGACACCGACCTCCTCTGGGAGGTCCCGACGGACGCCGAGGGGCGCCCGCTCGTGCAGGACACCGTGCTCTACGCCTGGCTGGCCGGGGAGGCCGGCGTCATCAAGACGCTGCGTCGCTACCTCGTGCGCACCAAGGGCGTCGACCGCAAGTCCGTGGCCTTCATGGGCTACTGGCGCCGCGGCCGCTCGGAGTGCTGA	MTEAVTDTRTETAVAPRPWRMFDVEVLRVTRLCPSFVRITFTGEDLHEFADNGRDQRIKFLLPAPCGGWEYLDRQNPDWFTSWRELPDERRNPLRTYTVRAVRPAQREVDVDIVLHGDTGPASRWANGARPGSPLVILGPNAAYDGGPHGGRDFAPPPSSHALLLAGDETAVPAIASICESLPADAVGEVFLEVPHAEDRWTLAAPAGVRVTWLPRDGAEHGDVLVPAVQDAADRMLAMGVRPSADGGPATTATGVDLDAELVDVDVDTDLLWEVPTDAEGRPLVQDTVLYAWLAGEAGVIKTLRRYLVRTKGVDRKSVAFMGYWRRGRSEC	PGPT0003760_107	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_00364	588			hypothetical protein	ATGAGCGACGCGTCCGGGACGGGCCTGCCGTCGCTGGGCGACCTGGACTGGGTGCCCGCGCTCGAGCGTCCGGACCTGCTGGCCGACCCGGTCGCCGAGGCGCTGCGCGCCTGGGCGGAGGCGGACGAGCGGGTCGCCGGCCAGGTGGCGGTCGCCGAGATCGACCCCGACCACGCGGACACGGCCACGCTCAACGAGGTGCACGGGCTGCCGCCGGAGGCGTCGGCGAACTGCGTCGTGGTAGCCGGACGGCGCGGCGACGTCGAGCGGGTCGCGGCCTGCGTGGTGCCCGCCTCGACGTTCGCGGACGTCAACACCCGGGTGCGCAAGCTGCTCGACGCCCGCAAGGCGTCGTTCCTGCCGATGGACCGCGCCACCGAGGAGTCGGGGATGGCCTACGGCGGGATCACGCCGATCGGCGTGCCGTCGAGCTGGCGGGTCCTGGTGGACAGCCGCTTCGACGACGGCGCGGCGCCGGCGCTCCTGGGCAGCGGCCTGCGGGTGTCCAAGCTGCTCATGCCCGGCGACCTGCTGTGCAGCGCCCCGGGCGTGGAGGTCGTGGCGGACCTGGGCGTGGTGCGGGGGTGA	MSDASGTGLPSLGDLDWVPALERPDLLADPVAEALRAWAEADERVAGQVAVAEIDPDHADTATLNEVHGLPPEASANCVVVAGRRGDVERVAACVVPASTFADVNTRVRKLLDARKASFLPMDRATEESGMAYGGITPIGVPSSWRVLVDSRFDDGAAPALLGSGLRVSKLLMPGDLLCSAPGVEVVADLGVVRG				NA	NA	NA	NA	NA
AK001_00365	531			hypothetical protein	ATGGACTTCACACGGCCGACCCCACCGGACCCCTACTCCCTGCTCCCCGTCCCGGCGACGTTCGAGCTGACGAGCGCCGACATCACCGAGGGCGACCCGATGCCGGCGGACCACGCGGCCGACGGCGGCAACACCTCGCCGGCGCTGGCCTGGTCGGGCTTCCCCGCCGAGACCCGGTCGTTCGTCGTCAGCTGCTTCGACCCCGACGCGCCGACGCCGTCCGGCTACTGGCACTGGCACGTGCTCGACGTCCCGGCCTCGGTCACGTCGCTGCCGCGTGGTGCGGGGGCGGCCGACGGCAGCGGGCTGCCCGCCGGCGCCTTCCAGCTCCTCTCGGACGGCGGTCAGGTCGGCTTCGAGGGGGCGGGCCCGCCCCCGGGCGACCACGCCCACCGCTACGTCTTCGCCGTGCACGCGCTGGACGTCGACTCGCTCGGGCTGACCACGGAGAACACCAACGTGCACGCGGCGTTCAACGTCTACTTCCACGTCATCGCCCGCGCGACGCTGACCGGGACCTACCGCCGATGA	MDFTRPTPPDPYSLLPVPATFELTSADITEGDPMPADHAADGGNTSPALAWSGFPAETRSFVVSCFDPDAPTPSGYWHWHVLDVPASVTSLPRGAGAADGSGLPAGAFQLLSDGGQVGFEGAGPPPGDHAHRYVFAVHALDVDSLGLTTENTNVHAAFNVYFHVIARATLTGTYRR				NA	NA	NA	NA	NA
AK001_00366	762	novJ		Short-chain reductase protein NovJ	ATGACCCCCACCACCGACCGCGTCGCGATCGTCACCGGCGCCGCCCGCGGCATCGGCGCCGCCACCGCCGCCCGCCTGGCCGCCGACGGCCACGCCGTGGCGCTGCTCGACCTGCGCGAGGAGGCCGCCGCCGAGACCGCCGCCGCCCTGGCGGCCGACGGCCACCGCGCGATCGGCGTCGGCGTGGACGTCGCCGACGAGCAGTCCGTGACCGACGCCGTCGAGCGCGTGGTCGCCGAGCTCGGCGCCCCGACGGTGCTCGTCAACAACGCCGGGATCCTGCGCGACAACCTGCTGTTCAAGATGTCGACCGACGACTGGGACGCCGTGCTCGGGGTCCACCTGCGCGGGGCGTTCCTCATGACGCGGGCCGTGCAGCAGCACATGGTCTCCGCCCGGTGGGGCCGCATCGTCAACCTGTCCAGCACCTCGGCCCTGGGCCACCGCGGCCAGGTCAACTACTCCGCCGCCAAGGCCGGCATGCAGGGCTTCACCAAGAGCCTCGCCATCGAGCTCGGCAAGTTCGGGGTCACGGCCAACGCCGTGGCGCCCGGGGTCGTCGCGACCGACATGATCGCCGAGACCGCCGAGCGGGTCGGCGTCCCGCTGGAGGACTTCCTGGCCGGCATCGCCCAGGACGTGCCGGCCGGACGCGTCGGCCGGCCCGAGGACATCGCCGCCGCGGTGGCGTTCTTCTGCTCCACCGAGGCCTCGTTCACCAACGGCCAGGTGCTCTACGTCGCCGGAGGGCCGCAGGACTGA	MTPTTDRVAIVTGAARGIGAATAARLAADGHAVALLDLREEAAAETAAALAADGHRAIGVGVDVADEQSVTDAVERVVAELGAPTVLVNNAGILRDNLLFKMSTDDWDAVLGVHLRGAFLMTRAVQQHMVSARWGRIVNLSSTSALGHRGQVNYSAAKAGMQGFTKSLAIELGKFGVTANAVAPGVVATDMIAETAERVGVPLEDFLAGIAQDVPAGRVGRPEDIAAAVAFFCSTEASFTNGQVLYVAGGPQD	PGPT0003180_9374	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_00367	897			hypothetical protein	GTGACCGTCGTCCCCGAGGCCCCGCCCCGCACCGACCGTGCCGCACGGCACTCCCGGGCGCTGGCCGCCCTGCGTGCCGCCGAGCACGGGACGACGGCGCCGCGGCGGGCGGCCCCGGTCGACGAGCGCTCGGTCGAGGAACGCCCGGTCGAGGAGCACCCGGACGACGACGGCCCGCTCGGCGAGATCCCCTACGAGGCGAGGGCGTCCGCCCTCGGCGCGGCTCCCCGGGTGCCGGTCCGCGCCGGCCGGGCCGTGCATCCCGACCTCGCAGCGCTGCTGCCCGGCGGCGTGCTGCCGACCGGCGGCGTCCTGGCGGTCCAGGGGTCGACCAGCCTGCTGCTCGGGCTGCTCGCCGCCCCCTCGCGCGACGGCGCCTGGACCGTCCTGGTCGGGGCGCCCGCCGTCGGGCTGCTGGCCGCCGCCGACGCCGGGATCGACCTGGCGCGCACCGTCGTCGTCCCCGCCCCCGGCCCGGACGCCCCCGCGGTGCTGGCCGCGCTGCTGGACGGCATGGACGTCGTCGTGGTCGGGCCGCAGGCGGCGCTGACCGACGCCGACCGGCGCCGCCTGGCCGCCCGGGCCCGGCAGCGTGACGCCGTCCTGGTCGCGACCGGCCGCTGGGCCGGGGCCCACGTCACCCTCGACGCCCGCGGCGGGGCCTGGACCGGCGTGGACGCCGGTGCCGGCTGGCTGCGCCGCCGCACCCTGCGCGTGCTGCGCACCGGGCGCGGGGCCGCGGCCCGTCCGGTGGAGATCGACGTCGAGGTGCCGCTCGGCGGCGAGGAGCCCGTCCTCGCGCCCGCGGCGGCCCGGCCCGACGTCGCAGCCCCTGCCGGGCCGACGTCCGCCGCCACGGACGACTCGCCCCAGGCCCGGCACCTGAGGGTCGCATGA	MTVVPEAPPRTDRAARHSRALAALRAAEHGTTAPRRAAPVDERSVEERPVEEHPDDDGPLGEIPYEARASALGAAPRVPVRAGRAVHPDLAALLPGGVLPTGGVLAVQGSTSLLLGLLAAPSRDGAWTVLVGAPAVGLLAAADAGIDLARTVVVPAPGPDAPAVLAALLDGMDVVVVGPQAALTDADRRRLAARARQRDAVLVATGRWAGAHVTLDARGGAWTGVDAGAGWLRRRTLRVLRTGRGAAARPVEIDVEVPLGGEEPVLAPAAARPDVAAPAGPTSAATDDSPQARHLRVA				NA	NA	NA	NA	NA
AK001_00368	1635	dinB		DNA polymerase IV	ATGAGCACGGGCAGCGCAGGCGTCACCCGCACCGCGGTGCTCTGGGTCCCGGACTGGCCGGTGGTGGCCGCCCTGGCCGCCGCCGGGCTGGACGCGCACGTGCCCGCCGCCGTCCTCGGCGCGCCCTCGGGCGGCGGGACCCGGGCCGGACGCAGCGTCGTGGCGACCTCCGCCGTCGCCCGCACCGCCGGGGTGCGACGCGGCATGCGGCGCCGCCAGGCCCAGGAGGCCTGCCCCGACCTGGTGCTGCTGGAGGCCGACGACGACCGGGACGCCCGCACCTTCGAACCCGTGGCGGCCGCCGCGGAGACCGTCGTGGCCGGCCTCGAGATCGCCCGCCCCGGCCTGCTGCTCCTGCCCGCCGACGGCGCCGCGCGCTACCACGGCTCCGAGCGGGCCCTGGCCGAGGCGCTCGTGACCGCCGTCGCCGGCACCGGCCACGAGTGCCAGGTCGGGGTCGCCGACGGTCTGCTCGCCGCGGTCCTCGCCGCCCGGGAGGACGCCGTCGTCCCGCCCGACGGGTCGCCGTCGGCCCTCGCCGGACGGCCGGTGGGCGAGCTCGTGCACGCCGTGTGCGACCCGGGTGTCGTGGCCGCCGTGCGCGACGCCGTCGGCCTGTGGTGGCGGCTCGGCCTGCACACCCTCGGCGACCTGGCCGCCCTGCCCGCGGCGAGCGTGTCCGCCCGGTTCGGCGAGCTCGGCACCTGGGCGCACCGGCTGGCCCGCGGCGAGGACGAACGCCCGCCCGCGCGCCGGCGCATCGAGGCCGACCTGGTCGTGGACACCGCGCTCGACCCGCCCGCCGACCGCGTCGACGTCGCCGCCTTCGCCGCCCGCCGTCTCGCCGAGGAGCTGCACGTACTGCTCGTGGCCCACGGCGTGGCCTGCGGACGGCTGCGCATCACCGCCCGGACCACCGAGGGCGAGCTCGAGCGGCTCTGGCGCACCGACACCGTCGCCGGCGGGCTGTCCGCCGCCCGGATCACCGACCGGGTGCGCTGGCAGCTCGAGGGATGGCTGACCGACGCCGCCCGCCGGCGCACCGGCACCGAGGACTCGCCCGAGGTCGCCCCCGTGGTCCACCTCGCGCTCGCCGCCGAGGACGTCGCCCCCGCCGGGACGCACCAGCCGAGCCTGTGGGGCGCCGACGCCGGGCAGGACGAACGTGCCCGCCAGGTGCTGGACCGGGTGCAGGGGCTGCTCGGCGGCGACGGCGTGCTCACCGTCCGGCGGGCCGGCGGGCGCCACCCGCGCCACCGCGTCCGGCTCGTGCCCTACGGCGAGGAGGCCGTCGTCGACCGGCCCCCGGACCGCCCCTGGCCCGGGGCGCTGCCCAGCCCGGCCCCGGCGACCCTGCTGCCCGAGCCCGCGGCCGTCCGGGTGCTCGACACCGCCGGGGCCGACGTCGTCGTCGACGCCCGCCTCGGGCGCAGCGGCGACCCGCACCGGGTGCGCTGGGACGACCAGGAGCACCGCGTAGTCGGCTGGGCCGGCCCGTGGCCGCTCGCCGAACGCTGGTGGGCGCCCGACGGCGGAACCCGGCGGGTGCACCTGCAGGCGGTGCTCGACGACGGCCGCGGGCTGCTGCTCGCCCAGGTCGGCGGCCGGTGGCAGGTGGAGGCGCTGTATGACTGA	MSTGSAGVTRTAVLWVPDWPVVAALAAAGLDAHVPAAVLGAPSGGGTRAGRSVVATSAVARTAGVRRGMRRRQAQEACPDLVLLEADDDRDARTFEPVAAAAETVVAGLEIARPGLLLLPADGAARYHGSERALAEALVTAVAGTGHECQVGVADGLLAAVLAAREDAVVPPDGSPSALAGRPVGELVHAVCDPGVVAAVRDAVGLWWRLGLHTLGDLAALPAASVSARFGELGTWAHRLARGEDERPPARRRIEADLVVDTALDPPADRVDVAAFAARRLAEELHVLLVAHGVACGRLRITARTTEGELERLWRTDTVAGGLSAARITDRVRWQLEGWLTDAARRRTGTEDSPEVAPVVHLALAAEDVAPAGTHQPSLWGADAGQDERARQVLDRVQGLLGGDGVLTVRRAGGRHPRHRVRLVPYGEEAVVDRPPDRPWPGALPSPAPATLLPEPAAVRVLDTAGADVVVDARLGRSGDPHRVRWDDQEHRVVGWAGPWPLAERWWAPDGGTRRVHLQAVLDDGRGLLLAQVGGRWQVEALYD				NA	NA	NA	NA	NA
AK001_00369	3510	dnaE2		Error-prone DNA polymerase	ATGACTGAGCCCCACCCGGCACCCCGGTACGCGGAGCTGCACGCCCACTCGGCCTTCAGCTTCCTCGACGGCGCCAGCCACCCCGCCGAGCTCGCCGCCGAGGCCGATCGGCTCGGACTCGAGGCCCTGGCCCTGACCGACCACGATGGGCTGTACGGCGTGGTCCGGTTCGCCGAGGCCGCCCGCGCCGTCGGGCTGCCCACGGCGTTCGGCGCCGAGCTGCACCTGCCCGCCCCGGTGCCGGGCGCCGCCCCGGTCCTCGACGAGCCCACCGGCGTCCCCGACCCGCGGGCCACGCACCTGCTCGTGCTCGCCCGCGGTCCGGACGGCTACCGGAACCTGTCGCGCGCGATTGCCACCGCCCACCTCGAGGCCGGGGTCAAGGGCAAGGCCCGCTACGACCTCGACCGGCTGGGCGCCGAGGCCGACGGCCAGTGGCTGGTGCTCACCGGGTGCCGCAAGGGCGCCGTCCGGCGCGCGCTCGAGGCCCAGGGGCTCGACGGCGCGCGCCGCGAGCTCGACCGGCTCACCGCCGTCTTCGGCCGGGACAACGTCGCCGTGGAGATCACCGCCACCGGCGACCCCCGCGACGCCGACCGGCACGCGGCGCTCGCCGCGCTGTCGCAGGACGCGGGGCTGCCCCTGGTCGCCACCACCGCCGCCCACTACGCCCGCCCGCGCGACGCCGACCTGGCCGGGGCGCTCGCGGCCGTGCGCGCCCGCTCCTCCCTGGACGACCAGGACGGCTGGCTGCCCGGCGCCCCGACGGCGCACCTGCGCTCGGGCGCCGAGATGGCCCGGCTGCACCACCGGCACCCGCAGGCCGTGCCGACGGCCGCCGACCTGGCCGCCGAGTGCGCGTTCGACCTGCACCTGGTGGCGCCGCAGCTGCCGCCCTACCCGGTGCCGGACGGCCACGACGAGGCGAGCTGGCTGCACGAGCTCGTCCTCCGGGGCGCCGAGGACCGGTACGGGCCGCGGGAGGCCGAGCGGGAGCCCGGCGCGTGGGCGCAGATCGACCACGAGCTGCGCGTCATCACCGACCTGAACTTCCCGGGGTACTTCCTCGTCGTCTACGACCTGGTCGAGTTCTGCCGCCGGGAGGGCATCCTGTGCCAGGGCCGAGGGAGCGCCGCCAACTCGGCGGTCTGCTACGCGCTCGGGATCACCGCCGTCGACGCCGTGCACCACGGCCTGCTGTTCGAGCGGTTCCTGGCCCCCGAGCGGGACGGACCCCCCGACATCGACATCGACATCGAGTCGGGCCGCCGCGAGGAGGTCATCCAGCACGTCTACGCCCGGTTCGGGCGCACGCACGCCGCCCAGGTCGCCAACGTCATCTCCTACCGGCCGCGCTCGGCGGTGCGCGACGCCGCCCGCGCGCTCGGGTACGACGTCGGCCAGCAGGACGCCTGGAGCAAGTCCATCGAGCGCTGGGGGTCGCTGCGCGGCCCCGACCCGACCAGTCCCGCGGCGGACCGGACGGCGGGTGCCGCGCGGGCGTCCGACGGCTCCCCGGTCACCGGCCGCGACCGGCGGCGGGCCGAGGTCGCCGCCCGCTGGCAGCACGGTGCCCCGGCGCGCCCGGACGCCCCCGTGGTCGACCCGCTCGCCGTCGACGGCGGCCTGCAGCGGTCCGATGACCCGCACGACGTCGTCCCCGCCCGACGTCCGCCGTCGGCCGAGCAGGAGGGACAGATCCCCGACCCCGTGCTCGACCTCGCCGAACGGTTCCTCCGCCTGCCCCGCCACCTCGGCATCCACTCCGGGGGCATGGTGATGTGCGACCGGCCCGTCATCGAGGTCTGCCCGGTCGAGTGGGCCCGGATGGAGGGGCGCACCGTGCTGCAGTGGGACAAGGAGGACTGCGCCGACGCCGGGCTGGTGAAGTTCGACCTGCTGGGTCTGGGCATGCTCACCGCGATCCGGTACGCGTTCGCCTCGGTGCACGAAGCCACCGGCGAGCGGCTCGCGCTGCACACGCTGCCGGCCGAGGACCCGCGCGTGTACGACCTGCTGTGCGCCGCCGACACCGTCGGGGTGTTCCAGGTCGAGTCCCGCGCCCAGATGGCCACCCTGCCGCGGCTGCAGCCCCGGAGGTTCTACGACATCGTCGTCGAGGTCGCCCTCATCCGCCCCGGGCCGATCCAGGGGCGGTCCGTGCACCCGTACATCGAGCGCTCCCGGGGCCGCGAGGAGGTCACCTACCTGCACCCCCTGCTGGAACCGTCCCTGCGGCGCACCCTCGGGGTACCGCTGTTCCAGGAGCAGCTCATGCAGATGGCGATCGACGTGGCCGGGTTCACCCCCGCCGAGTCCGACCGGCTGCGCCGGGCCATGGGTTCCAAGCGCTCCGTGGAACGCATGGAGGCGCTGCGCGGGCGCCTGTTCGCCGGGATGACCGAGCGCGGGATCCCGGACGACGTGCAGGAGGAGATCTACGACAAGCTCAAGGCGTTCGCCGACTTCGGCTTCCCCGAGTCGCACGCCTACTCCTTCGCGTTCCTCGTCTACGCCAGCTCGTGGCTCAAGGTGCACGCGCCCGAGGCGTTCTACGCCGGCCTGCTCGCCGCGCAGCCGATGGGGTTCTACTCCCCGGCGTCCCTCGTCGCCGACGCCCGTCGGCACGGGGTGCGGGTGCTGCGCCCGGACGTCAACGCCTCGGCGGCGCTCGCGGGCGTCGAGGCGGTGCCGGACGGGTCCGTCGCCGGTCCGGCCGACGCTGTGGCCGGTCCGGACGATCCTGTCGGCGGCGCCGAGGGCCGGGTCGGCAGCGGGGGAGTGCCGCTCGACACCGACCCCGCGCTGGCCGTCCGGCTCGGGCTCTCGGCCGTGCGCGGGCTCGGCACCGACGTCGCCGAGCAGATGGTCGCCGAGCGCGACGCCCACGGCGAGTTCGCCGACCTGCGCGACCTGGTGCGGCGCGTCGAGCTGTCCACCGCCCGCCTGGAGGCCCTGGCCACCGCCGGGGCGCTGACCTCGCTCGGCGTGACCCGACGCGAGGGGCTGTGGGCCGCCGGCGCGCTCGGGCAGGAGGGTCCGGAGACGCTCGCGGGCGTCAGCGTCGGGGTGTCCGCGCCGCCGCTGCCGGACATGGACCCCCTCGAGATCGACGTCGCCGACACCTGGGCCACCGGCATCACGCCGGACTCCACCTCCCCGCTGGAGCACCTGCGCGACGGGCTGGAGCGCCAGGGCGTGGTGACCGTGGCCGCCGCGACGACGACGGAGCCCGGCCGCCGCATCGCCGTCGGCGGGGTGGTCACCCACCGGCAGCGGCCGGGTACCGCCGGGGGCGTCACGTTCCTGTCCCTGGAGGACGAGACCGGCCTGCTCAACGTCATCTGCACCCCCGGGCTGTGGCGGCGCTTCCGGACCGTGGCGCGCGGCGCCCCGGCACTCGTCGTGCGCGGTCAGGTGGAACGGGCCGACGGCGCGGTCAACCTGCTCGCCGAGCACCTCGCCCCGCTGCGCCTGCCGGTGGCGACCCGGTCGCGGGACTTCCGCTGA	MTEPHPAPRYAELHAHSAFSFLDGASHPAELAAEADRLGLEALALTDHDGLYGVVRFAEAARAVGLPTAFGAELHLPAPVPGAAPVLDEPTGVPDPRATHLLVLARGPDGYRNLSRAIATAHLEAGVKGKARYDLDRLGAEADGQWLVLTGCRKGAVRRALEAQGLDGARRELDRLTAVFGRDNVAVEITATGDPRDADRHAALAALSQDAGLPLVATTAAHYARPRDADLAGALAAVRARSSLDDQDGWLPGAPTAHLRSGAEMARLHHRHPQAVPTAADLAAECAFDLHLVAPQLPPYPVPDGHDEASWLHELVLRGAEDRYGPREAEREPGAWAQIDHELRVITDLNFPGYFLVVYDLVEFCRREGILCQGRGSAANSAVCYALGITAVDAVHHGLLFERFLAPERDGPPDIDIDIESGRREEVIQHVYARFGRTHAAQVANVISYRPRSAVRDAARALGYDVGQQDAWSKSIERWGSLRGPDPTSPAADRTAGAARASDGSPVTGRDRRRAEVAARWQHGAPARPDAPVVDPLAVDGGLQRSDDPHDVVPARRPPSAEQEGQIPDPVLDLAERFLRLPRHLGIHSGGMVMCDRPVIEVCPVEWARMEGRTVLQWDKEDCADAGLVKFDLLGLGMLTAIRYAFASVHEATGERLALHTLPAEDPRVYDLLCAADTVGVFQVESRAQMATLPRLQPRRFYDIVVEVALIRPGPIQGRSVHPYIERSRGREEVTYLHPLLEPSLRRTLGVPLFQEQLMQMAIDVAGFTPAESDRLRRAMGSKRSVERMEALRGRLFAGMTERGIPDDVQEEIYDKLKAFADFGFPESHAYSFAFLVYASSWLKVHAPEAFYAGLLAAQPMGFYSPASLVADARRHGVRVLRPDVNASAALAGVEAVPDGSVAGPADAVAGPDDPVGGAEGRVGSGGVPLDTDPALAVRLGLSAVRGLGTDVAEQMVAERDAHGEFADLRDLVRRVELSTARLEALATAGALTSLGVTRREGLWAAGALGQEGPETLAGVSVGVSAPPLPDMDPLEIDVADTWATGITPDSTSPLEHLRDGLERQGVVTVAAATTTEPGRRIAVGGVVTHRQRPGTAGGVTFLSLEDETGLLNVICTPGLWRRFRTVARGAPALVVRGQVERADGAVNLLAEHLAPLRLPVATRSRDFR				NA	NA	NA	NA	NA
AK001_00370	597			hypothetical protein	ATGGGCTACCGGATCGAGCCGGCCACGGCCGACAGGTTCGACGACGTCACCGCGATCCTCGACCCGCGCGGGCACGAGCGGGCGTGCTGGTGCCTGGCCTGGCGCCGCCCCCGCGGGCTGCCGCCGGGTGGTGGTGGCGCGCACCTGCGCGAGCTCTGCGCGCACGACCCGCGCCCGGGACTGCTGGCCTACCTCGACGAGGACGGCACGCAGGACGTCGTGGGCTGGGTCGGTCTCGCCCCGCGGTCGGCGGTGCCCTCCCTCCAGCGGTCCCGCGTGCTGCCGCGGAGCGACCCGGAGATCGCGGGCACGACCTGGGTCGTGATGTGCTTCGTCGTACGCCCCGGCTACCGACGCCGCGGGGTCGCCCGGGCGCTGCTGTACGGCGCCGTCGACCACGCCCGTGCCCGCGGCGGCCGGGTGATGGAGGGGTTCCCGGTCGAGCCCGAGCCGGGCCGCCGGGTCCCCGTCGGCGCGGCGTACGTCGGCACCGTGCCGCTGTTCGAGTCGGCGGGGTTCGACCGCGTCGGCGAGACGGCCGCGACGAGCGGGCGGCTGCCGCGGTGGGTGCTGCGCCGGGTGCTGGCCACCGACTGA	MGYRIEPATADRFDDVTAILDPRGHERACWCLAWRRPRGLPPGGGGAHLRELCAHDPRPGLLAYLDEDGTQDVVGWVGLAPRSAVPSLQRSRVLPRSDPEIAGTTWVVMCFVVRPGYRRRGVARALLYGAVDHARARGGRVMEGFPVEPEPGRRVPVGAAYVGTVPLFESAGFDRVGETAATSGRLPRWVLRRVLATD				NA	NA	NA	NA	NA
AK001_00371	432			hypothetical protein	GTGTGTGGCGGGGACCCGGCCTACCGTGAGGAGATGGGCACGGACTTCGAGGACTACGACCACGAGGCGCTGCGCACGTACTTCGTCGAGCAGGGTCTGGCGCTCGGCTCCGGCGACCTCGAGGCGGTGGCCGACCGGTTCGACGCCGCCGCGGTGCTGGTCCTCGCCGAGGAGACCGTGGCGCTGCAGAGCCCCGAGCAGATGCACGACCTGCTGCGCGAGCACGCCGGTGCCCCCGACCCGGGCGACGCCGTCGCCCTCGTGCCGGAAGTGACCGACAGCGCCGAGCTGGGCTGGGCGCTGCTGTGGGTCGAGGTGCGCTGGAGCCTGCGGGACGAGCTCGCCGCGGAGCGGGCCAGCCGGCACGTGCGCTATCTGCTGCGACGCGCCCGCGGCACCTTCGAGGTCTGCGTCGTCGTCCCGCTGCCCTGA	MCGGDPAYREEMGTDFEDYDHEALRTYFVEQGLALGSGDLEAVADRFDAAAVLVLAEETVALQSPEQMHDLLREHAGAPDPGDAVALVPEVTDSAELGWALLWVEVRWSLRDELAAERASRHVRYLLRRARGTFEVCVVVPLP				NA	NA	NA	NA	NA
AK001_00372	900	ectD		Ectoine dioxygenase	ATGACCGCCACGGTCGAGACCACGACCGACCTCTACCCGAGCCGTCTGGCCCAGCCCGGCGAGTTCATCGAGCGCGAGCACCCCACGGTGTGGGGCACGGCCGCCGACGGCCCGTTCGACGCCGACGCCCTCGACGCGCACGCGCAGCGGGGCTTCACCGTCCTCGAGGACTTCATCACCCCCGACGAGGTGACCCGGTACAGCGCGGAGCTGAGCCGGCTGTCCTCGGACGAGTCGCTGCAGGGCGACCCGCGCGTCGTCACCGAGAAGAGCTCCGGCGAGGTCCGGTCGATCTTCGAGGTGACGAAGCTCAGCGAGCGGATCGACGCGCTCGCCCGGGACCCGCGGCTGCTGGACCGTGCCCGCCAGCTGCTCGGCTCGGACGTGTACCTGCACCAGACGCGCGTCAACTACATGCCCGGCTACAAGGGCGCCGGCTTCTACTGGCACTCGGACTTCGAGACCTGGCACGCCGAGGACGGCATGCCGGCCCCGCGCGCCGTGAGCTGCTCGATCGCGCTGACGCCCAACTATCCGTACAACGGCGGCCTGATGGTCATGCCGGGCTCGCACCGCACCTACGTGCCGTGCGTGGGAGAGACCCCGGAGAACTACCACCAGGACTCCCTCAAGGAGCAGCGGATCGGCGTGCCCTCGGAGGACGCCATCACCGAGCTCGCCTGGAGGTACGGCATCGACCAGTTCACCGGATCGGCCGGCTCGGCGCTCTGGTTCGACGCGAACATCATGCACGGGTCCGGCAACAACATCACGCCGTTCCCGCGGTCGAACATCTTCCTGGTGTTCAACAGCGTCGAGAACGCGCTCACCGAGCCGTACAGCGCGCCCGCGCCGCGGCCCGAGCACATCGGCAGCCGCGACACCACGCCGCTGCGGTAG	MTATVETTTDLYPSRLAQPGEFIEREHPTVWGTAADGPFDADALDAHAQRGFTVLEDFITPDEVTRYSAELSRLSSDESLQGDPRVVTEKSSGEVRSIFEVTKLSERIDALARDPRLLDRARQLLGSDVYLHQTRVNYMPGYKGAGFYWHSDFETWHAEDGMPAPRAVSCSIALTPNYPYNGGLMVMPGSHRTYVPCVGETPENYHQDSLKEQRIGVPSEDAITELAWRYGIDQFTGSAGSALWFDANIMHGSGNNITPFPRSNIFLVFNSVENALTEPYSAPAPRPEHIGSRDTTPLR	PGPT0014065_324	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014065-ectD-K10674	NA	NA
AK001_00373	840			hypothetical protein	GTGCCTCAGCATCTCTCCCTCTCCCTGACCACCGACGACGCCGGCCCCGGACCCGACCAGCGCTGGTCGACCTGGACCACGGTCACCAAGGGCCAACGTGGCCCGACGCCGCGACCCGACTGGGTCGTCACGGCGGCCGCCGCCCTGGACACCGAGCTCGGCGTGCTCAAGACCGGCAAGGAGGCCGACGTCTTCCTCGTCGAGCGCGCCGTGCCCGACGACCCCGCGCAGACCTCGCTCCTGGCGGCCAAGCGCTACCGCTCCCCCGACCACCGGCAGTTCCACCGCGACAGCACCTACACCGACGGGCGGCGGGTGCGGCGCACGCGCGACCAGCGCGCGGTGGAGGACCGCCGCTCCGCCTGGGGACGGGCCGTGCGCGCCACCCAGTGGGCCGACGCCGAGTTCACGACCCTGGGCACCCTGTGGGACGCTGGCGCACCGGTGCCCTACCCGGTGCAGGTCGACGGCACCGAGCTGCTCATGGAGTTCGTCGGGAGCGTCGACGACGACGGCGTCGCCGTGGCCGCCCCGCGGCTGGACCGCAGCCGGCCGGACGCGGCGGAGCTGTCCGACTGGTTCGACCAGCTCTACGCCGCGATGAGCGTGCTGGCGCGGCTCGGCTGGGCGCACGGCGACCTGTCGCCGTACAACGTGCTCGTCGACGACGGCCGGCTGGTCGTCATCGACCTGCCCCAGGTCGTCGACCTGGTCGCGAACCCCGCCGGCCCGGAGCTGCTGCACCGCGACTGCCGCACCGTGTGCCGGTGGTTCGCCGCCCGCGGCCTGGAGGTCGACGCCGACGAGGTCTTCGCCGACCTGCTGGCCCAGGCCTGGTGA	MPQHLSLSLTTDDAGPGPDQRWSTWTTVTKGQRGPTPRPDWVVTAAAALDTELGVLKTGKEADVFLVERAVPDDPAQTSLLAAKRYRSPDHRQFHRDSTYTDGRRVRRTRDQRAVEDRRSAWGRAVRATQWADAEFTTLGTLWDAGAPVPYPVQVDGTELLMEFVGSVDDDGVAVAAPRLDRSRPDAAELSDWFDQLYAAMSVLARLGWAHGDLSPYNVLVDDGRLVVIDLPQVVDLVANPAGPELLHRDCRTVCRWFAARGLEVDADEVFADLLAQAW				NA	NA	NA	NA	NA
AK001_00374	750			hypothetical protein	ATGGCCTTCCATCCCGTGGCCGAGGACGTGCTGGTCCGTTCCAGCCGGCGCGACGCGACGACGTCGGTGCTGGCGCTCGGGGCACGTCGGCCTGGGGGTCGCCGCCCCGCTCTGCTCGTGGACCCGGCCTGGGACGACGACGAGCTCGCCTCGATCGCCGACGAGCTCGACGCGCGAGCGGTGCGGGTCGCCGCCGGGCTGTCGACGCACGCCCACCACGACCACCTGCTGTGGCACTCCCGGTTCGGCGACGTGCCGCGGTGGGCCTCGGCGCGGGCGGCCCGCACCGCGAGGCAGCACCGCGGCGCCCTGGACGCCACCCTGGCGCCCGAGCACCGCGCCCCGGAGGTGCGGGCGCTGTTCGCGGCCGTCCAGCCGGTCGAGGGCGACGCCTTACCCGATCCCCACGGCGAGCTGCCGGGGACCGAGCTGGTCGTGCACGACGCGCACGCGCCGGGGCACACCGCGCTGTGGCTGCCCGAGGCCGGGGTGCTGGTGGTCGGAGACATGCTCTCCGACGTCGAGCCGCCTCTGCCGTGGGACGAGATCTCCGGTGCCACGGACCTGGCCGGCTACCGGGAGGGGCTGGAACGGCTGGCGCCGTTCGTGGCCCGGGCGGCCGTCGTCGTCCCCGGTCACGGGACGCCGTCGTGGCGCCCGCAGGAACGGCTCGACGCCGACCGGCGCTACGTCGACGCGCTGCTCGCCGGGCGCGTCCCGGACGACCCGCGCGGAGCGGTCCCGGGCTGA	MAFHPVAEDVLVRSSRRDATTSVLALGARRPGGRRPALLVDPAWDDDELASIADELDARAVRVAAGLSTHAHHDHLLWHSRFGDVPRWASARAARTARQHRGALDATLAPEHRAPEVRALFAAVQPVEGDALPDPHGELPGTELVVHDAHAPGHTALWLPEAGVLVVGDMLSDVEPPLPWDEISGATDLAGYREGLERLAPFVARAAVVVPGHGTPSWRPQERLDADRRYVDALLAGRVPDDPRGAVPG	PGPT0001770_4366	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069	NA	NA
AK001_00375	834			hypothetical protein	ATGATGGGTGGGCACCACGCCGCCTCGGGAGCGGCCGCCTGGGTGGCGGTCACCGCCTCGACCCCGATCGCGTTCGGCTGGTACCCGGTCTCCGACGTGGGCGTGATGACCGGAGCCCTCGTCTGCGCGGGTGCCGCGCTGCTGCCCGACGCCGACCACCACAACGGCACGATCTCCCACTCGCTGCCGCCGCTGTCGGAGGCGATGACCAAGGCCGTCTCGACCGTCGCGGGCGGGCACCGCAACGCCACCCACTCGATCGTCGGCATCGTCGTCTTCACGCTCGTCGCGTGGGCCATGAGCTTCCTGACGATCAGCACCGAGACCTTCGGCCAGGTGCTGATCGGACCCGGCATCATGGCGGTGGTGCTCGTCGCGTTCGCCGTCCGCGCCCTGAAGCTGACCGGGCAGCGGCGGTGGTGGACCTGGACCCTGTCGGTCTCCCTGGCGGCGTTCGTCGCCGTCTTCGCGCCCGAGGAGTGGTACTGGATGCCGTTCTGCGTCGGGCTGGGCTGCGCGGTGCACATCCTCGGCGACATGCTGACCACCCGCGGCGTGCCGCTGCTCTGGCCGATCCGCTTCCGGTCGCCCCGCTGGGTGCGGCGGCACCGCTGGCTGCCGTTCGACGACATGTGGAGCCCGCGCGGCAACATCTCGGTGCCGCTGCTCGGCGACGCCGGGTCGTGGCGCGAGTGGCTGGTGATGACCCCCGTCAGCCTCTACGCCCTCGTCGGCGTCGCCTGGGCGGTCCTGGACCAGATGGGTTTCGACACCGTGGGCGCCTGGGACGACGCGACGGCTCTCGTCGGGACCGCGGCCGGGTCGCTGGGCTGA	MMGGHHAASGAAAWVAVTASTPIAFGWYPVSDVGVMTGALVCAGAALLPDADHHNGTISHSLPPLSEAMTKAVSTVAGGHRNATHSIVGIVVFTLVAWAMSFLTISTETFGQVLIGPGIMAVVLVAFAVRALKLTGQRRWWTWTLSVSLAAFVAVFAPEEWYWMPFCVGLGCAVHILGDMLTTRGVPLLWPIRFRSPRWVRRHRWLPFDDMWSPRGNISVPLLGDAGSWREWLVMTPVSLYALVGVAWAVLDQMGFDTVGAWDDATALVGTAAGSLG				NA	NA	NA	NA	NA
AK001_00376	474			hypothetical protein	ATGCCGACCGAACGCGAGATGGTCCGTCAGTTCCACGCCGCCTTCGAGGTCCCGGTGAACGACGGCCCGCCGGACCTCGACCTGCCCGACGACCGGCTGCGCCTGCGGTACCGGCTGGTGGCCGAGGAGTTCGCCGAGCTGACCGGGGCGATCCTCGGAGCGGACGCCCGCGCCGTCGTCGAAGCCGCCGTGGAGCGTGTCGTCGAGAGTTCGACGGCGGAGGCCGACGCCGTGGCCACCGCCGACGCCACGGGCGACCTGCGCTACGTGCTGCACGGGCTCGAGCTCGAGTGCGGCATCCCCGAGTCCGTGTTCGCCGAGATCCACGCCTCCAACCTGGCCAAGCTCGGCCCGGACGGGACGGCCGTGCGCCGCTCCGACGGCAAGGTCCTCAAGCCCGCCGGGTGGCGGCCGCCCGACGTGGCGAGCGTGCTGGCCGCGGCAGGTTTCCGCCGCGTCGGCGGCGACGTGTAG	MPTEREMVRQFHAAFEVPVNDGPPDLDLPDDRLRLRYRLVAEEFAELTGAILGADARAVVEAAVERVVESSTAEADAVATADATGDLRYVLHGLELECGIPESVFAEIHASNLAKLGPDGTAVRRSDGKVLKPAGWRPPDVASVLAAAGFRRVGGDV				NA	NA	NA	NA	NA
AK001_00377	1062	tdh_1		L-threonine 3-dehydrogenase	GTGAGAGCGCTGACCGTCGTCCCCGGACGAGCCGGGACGCTGGACGTCACCGAGGTCTCCGACCGTGCGGCCGGTGAGGACGAGCTCCTCGTCGACGGCGTCGCCGTCGGCGTCTGCGGCACCGACCACGAGATCGTGCGGGGCGAGCACGGTGCGCCGCCCCCGGGTCACGAGCGTCTCGTGCTCGGCCACGAGTCGCTCGGCCGGGTCCGCGAGGCGCCGGCCGGCTCCGGGTTCGAGCCCGGCGACCTCGTCGTCGGCGTCGTGCGCCGACCCGACCCCGTCCCGTGCGGCGCCTGCGCCCACGGCGAGTGGGACATGTGCCGCAACGGGCTGTTCACCGAGCACGGGATCAAGGAGGTCGACGGCTTCGCCGCCGAGCAGTGGACCATCGCCGCCGACCGTGCCGTCCGCCTCGACCCGGCGCTGGGCGACCTCGGTGTGCTACTCGAACCGACGAGCATCGTGGCCAAGGCGTGGGACCAGGTCGACCGGATCGGCCGGCGCGCGTGGTTCGACCCCCGCACGGTGCTGGTCACCGGTGCCGGGCCGATCGGCCTGCTCGCCGCCCTCATCGGGATCCAGCGCGGGCTCGACGTGCACGTCCTGGACCAGGTCTCCGACGGTCCCAAGCCCGACCTGGTGCGGGCGCTGGGTGCCACCTACCACCAGCAGGACCTGCCGACGGTCGCCGACCGGATCGAGCCCGACGTCATCGTCGAGTGCACCGGCGCGCCCTCCGTCGTCGTGGACACGTTCACCTCGACCAGGCCGTACGGCATCACCGTCCTGACCGGGATGTCGTCGGCCGGCCGGCACGTCCCCGTGGACGCCGGCGCCGCCAACCGCTCGGTCGTGCTGGAGAACGACGTCATCGTGGGCTCGGTGAACGCCAACCTGGCCCACTACCGCGCCGGCGCCGAGGTGCTCGCCCGTGCGGACCGCGACTGGTTGGCGGGCCTCGTCACCCGTCGCGTGCCGCTGGACCGGGCGACCGAGGCGTTCGAGCCGCACCAGGACGACGTCAAGGTCGTGCTCGACCTCGGCCGACCCCGCGGCTAG	MRALTVVPGRAGTLDVTEVSDRAAGEDELLVDGVAVGVCGTDHEIVRGEHGAPPPGHERLVLGHESLGRVREAPAGSGFEPGDLVVGVVRRPDPVPCGACAHGEWDMCRNGLFTEHGIKEVDGFAAEQWTIAADRAVRLDPALGDLGVLLEPTSIVAKAWDQVDRIGRRAWFDPRTVLVTGAGPIGLLAALIGIQRGLDVHVLDQVSDGPKPDLVRALGATYHQQDLPTVADRIEPDVIVECTGAPSVVVDTFTSTRPYGITVLTGMSSAGRHVPVDAGAANRSVVLENDVIVGSVNANLAHYRAGAEVLARADRDWLAGLVTRRVPLDRATEAFEPHQDDVKVVLDLGRPRG				NA	NA	NA	NA	NA
AK001_00378	1836		COG3387	Trehalase	ATGACGCTCCGGATCGAGGACTACGGCCTGATCGGCGACCTGCAGACGGTCGCCCTCGTGGGGCGCGACGGCTCGATCGACTGGCTCTGCCTGCCCGACATCGACTCCCCCGCCTGCCTCGCGGCCCTGCTGGGGGACGACTCGCACGGGTCGTGGCGCATCGCTCCCGCCGGTGCCGGGACGAGCACGCGGCGCCGCTACCGCGGGGAGACGCTCGTGCTGGAGACGGAGTGGGAGACGCCCGACGGCCACGTCCGGGTGACGGACCTCATGCCGCCCCGTGGCGAGATGCCGGACCTCGTGCGCATCGTCGACGGGCTGAGCGGGCGGGTCCCCATGGAGAGCCTGCTGCGTCCCCGCTTCGACTACGGTGCGGCGGCGCCGTGGATCACGCGGCACCGGACGGTGCTCGGCACCCGGCGGTCACGCACCGTGTGCGCGGTCGCGGGACCGGACGCCCTGAGCCTGGCCGCCCCGGTCGACCAGGAGGTGTCCGAGGAGTCGGTCCGCTCGCGGTTCGAGGTCGCCGCCGGCGACCAGGTCGCGTTCGTGCTCACCTACCACCGCTCGCACCTTCCCGAACCCGAGCCGGTCGACGCCCAGGAGGCCCTGGCGGACACGCTGGACTACTGGACCGACTGGGTCGGCCAGACGCGCTACGAGGGCGAGTGGCCCGACGCCGTCCGCCGCTCCCTGGTGACGCTGAAGTCCCTGACCTACGGGCCGACGGGCGGCATCGCCGCTGCGGCGACCACCTCGCTGCCGGAGACGATCGGCGGCGTGCGCAACTGGGACTACCGCTACTGCTGGCTGCGCGACGCCTCGTTCACACTGCTCGCTCTGCTGGCCAGCGGGCACACCGCCGAGGCGCGTGCCTGGCGCGAGTGGCTCGTGCGCGCCGTCGCCGGGGACCCGGCGGACCTGAAGATCATGTACGGGCTCGACGGCCGCCGTCGGCTCCCCGAGACCACGCTCGACTGGCTGCCCGGCTACGAGGGCAGCGCGCCGGTGCGCGTCGGCAACGGCGCCGCGCACCAGTTCCAGCTCGACGTCTGGGGCGAGACGCTCATGGCGCTGCACCTTGCCCGGGCCGACGGCGTCGAGGAGGACGTCGACACCTGGCGTCTGCAGCGCTCCCTGCTCGACTTCCTCGAGGGTCACTGGGACGAGCCCGACAACGGGCTGTGGGAGGTGCGCGGACCGCGCCGGCCGTTCGTGCACTCCCGGGTGATGGCCTGGGCCGGTGTCGCGTCGATGGTCCGGGCGGTCGAGACCACCGACCTCGACGGCCCGCTCGGCCGATGGCGCGCTCTGCGCGAGTCGATCCGTGCGGACGTCCTCACCCACGGGTACGACGCCGAGCGCAACACCTTCACGCAGTTCTACGGGTCGCAGGGCCTGGACGCCTCGCTGCTCCTCGTCCCCCGGGTCGGCTTCCTGCCCTGGTCCGACCACCGCGTCGTCGGCACCGTCGAGGCCGTCCAGCGCGAGCTGAGCCAGGACGGCCTGCTGCTGCGGTACCAGACGCATGCCGGCGGGCGCGTCGACGGGCTGCCGGGCTCGGAGGGCACGTTCCTGGTGTGCAGCTTCTGGCTCGTCGACGCCCTGCACGGGATCGGTCGGCACGCCGAGGCACGGGCGCTGTTCGAGCGTCTGCTCGACCTGCGCAACGACCTGGGCCTGCTCGCCGAGGAGTATGACGTCGCGGCCGGGCGTCAGCTCGGCAACGTGCCGCAGGCGTTCAGCCACGTCGGCCTGGTCAACTCCGCCCGCATCCTGTCCGGCGGCCAGGGTCCTGGTACCCACCTCGCCGGGCTGCCAGAGTTCCCGAGCTGA	MTLRIEDYGLIGDLQTVALVGRDGSIDWLCLPDIDSPACLAALLGDDSHGSWRIAPAGAGTSTRRRYRGETLVLETEWETPDGHVRVTDLMPPRGEMPDLVRIVDGLSGRVPMESLLRPRFDYGAAAPWITRHRTVLGTRRSRTVCAVAGPDALSLAAPVDQEVSEESVRSRFEVAAGDQVAFVLTYHRSHLPEPEPVDAQEALADTLDYWTDWVGQTRYEGEWPDAVRRSLVTLKSLTYGPTGGIAAAATTSLPETIGGVRNWDYRYCWLRDASFTLLALLASGHTAEARAWREWLVRAVAGDPADLKIMYGLDGRRRLPETTLDWLPGYEGSAPVRVGNGAAHQFQLDVWGETLMALHLARADGVEEDVDTWRLQRSLLDFLEGHWDEPDNGLWEVRGPRRPFVHSRVMAWAGVASMVRAVETTDLDGPLGRWRALRESIRADVLTHGYDAERNTFTQFYGSQGLDASLLLVPRVGFLPWSDHRVVGTVEAVQRELSQDGLLLRYQTHAGGRVDGLPGSEGTFLVCSFWLVDALHGIGRHAEARALFERLLDLRNDLGLLAEEYDVAAGRQLGNVPQAFSHVGLVNSARILSGGQGPGTHLAGLPEFPS	PGPT0018651_2	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASES	PLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NA	NA	NA
AK001_00380	771	gno_1		Gluconate 5-dehydrogenase	GTGCCCTCTCTCGACGACCTGTTCTCCCTCGCCGGCCGCACGGCCCTCGTCACCGGCGGCAGCTCCGGCATCGGCCGCGGCATCGCCACCGCGCTGGCCGGAGCCGGTGCCGCCGTCGTCCTCGTGGCCCGCGGACGCGAGGCGCTGGACGCCACCGCGGCCGAGCTGCGCGGCTCCGGAGCCCGATGCGCCGTCGTCGTCGGCGACCTGTCCACCCGGTCCGGCGTGCACGGGGTCGCCGAGTCCGCCGTCGAACCGTTCGGCGAGCCGGACGTCGTGGTCTCCAGCGCGGGGGTCAACCTGCGCCCGTCCCTGGCCGAGGTCGACGAGCACGTGTGGGACACCACGATGGCCGTCAACCTCGAGGCACCGTTCCTGCTGGGCCAGCGGTTCGGGCCCGGGATGGCCGAGCGCGGCTACGGCCGGCTGATCCACGTCAGCTCCCAGCAGGCGCACCGCGCCTTCGCCGCCAGCGGCGTGTACGGGGTGTCCAAGGGGGCCCTGGAGTCGCTGGCGCGGTCCCAGGCCGAGGCGTGGTCGCCGCGCGGCGTCACCGCGAACACGCTCGTGCCCGGGTTCGTCCCCACGCCGCTCAACGAGCGGCTCAGCAGCGACCCGGGGCGTGTGGCGGCGCTCGCGGACCGCACGCTGGTGGGCCGCAACTCCGTGCCCGACGACTTCGCCGGGGCCGCAGTGTTCCTCGCGAGCCGGGCGTCGGGGTACGTGACCGGCCAGTCCATCCACGTCGACGGCGGGTTCTCCGTGCACTGA	MPSLDDLFSLAGRTALVTGGSSGIGRGIATALAGAGAAVVLVARGREALDATAAELRGSGARCAVVVGDLSTRSGVHGVAESAVEPFGEPDVVVSSAGVNLRPSLAEVDEHVWDTTMAVNLEAPFLLGQRFGPGMAERGYGRLIHVSSQQAHRAFAASGVYGVSKGALESLARSQAEAWSPRGVTANTLVPGFVPTPLNERLSSDPGRVAALADRTLVGRNSVPDDFAGAAVFLASRASGYVTGQSIHVDGGFSVH	PGPT0018070_385	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046	NA	NA
AK001_00381	1149		COG0628	Putative transport protein	GTGGCCGAGGCGAGGGAGAACGTCCCGCAGTGGCTGCGCAGCGCGGCCGGGTGGTCGTGGCGGCTGGTCGCCCTGGTCGTGGCGGTGTCGCTGGTCGTGTACGCCACCGCCCAGGTGCAGTTCGTCTTCTTCGCGATCTTCCTGGCGCTGGTGCTCACCTCGGTCTTCCGGCCGCTGGCGGACCTGTACGACCGGGTGATGCCCCGCGCGCTGGCCACGACGCTCGCGCTGCTGACCGGCGTCGTCCTCTTCGGCGGGCTGATGGCCTACGTCGTGGCGTCCGTCGCCGGGCAGTGGGCCGAGCTCGGCGGGCAGTTCGAGACCGGCGTGCAGCAGATCCTCGACTTCCTGGAGACGGGGCTCTTCGGCCTGTCCATCAGCGCGGGCCAGCTCCAGGAGTGGCTGGACTCCGGCCAGCAGTGGGTGGCGGACAACGCCGAGAACCTCGTCGGCCAGGCGGCCGAGAGCGCCGGGTCCGTCATCGAGGGCTTCATGGTCGCGGCGCTCGCGATCTTCCTCACCGTCTTCTTCGTGCACTCGGGCGACCGCATGTGGCACTGGTTCCTGCACCAGGTGCCCTCCGCGCACCGCACCCGCTGGGTGGAGGCCGCCGGGGCCGGGTGGTACACCTTCTCCGGCTTCGCCCGCGGCACCGTCATCATCGCCTTCATCGACGGGATCCTGGCCTTCGTGCTGCTGATGATCCTCGGCGTGCCGCTCGCGGCGCCGCTGGCGGTCCTGGTGTTCATCGGCGCCTTCATCCCGCTCATCGGCGCGCCGCTGGCGATGATCATCGCCGCCGTCGTCGCCCTCGCGGCGGAGGGCTTCATCACCGCCCTCATCGTCACCCTCGGCATCGCCGCCATCGGCCAGCTCGAGGGGCACGTGCTCCAGCCGCTCATCATGGGCAAGCAGGTGTCCCTGCACCCGGTCGTGGTCGCCGTGGTCGTGCTGGCGGGCACCGTGCTGGCCGGTCTCCTGGGTGCGGTGGTCGCCGTCCCGCTCGTGGCCGTGGCCTGGACCGTGTTCTCCACCCTGCGCGGCGACAGACCCGTCCCTGTCCCGTCCGGGGCGCTGGCCACCCCGGACCCGGCCGACGACGACAGCGCCGGCACCGCCCCCGGGGCGGACGGCGCGGAAAGGGCCTGA	MAEARENVPQWLRSAAGWSWRLVALVVAVSLVVYATAQVQFVFFAIFLALVLTSVFRPLADLYDRVMPRALATTLALLTGVVLFGGLMAYVVASVAGQWAELGGQFETGVQQILDFLETGLFGLSISAGQLQEWLDSGQQWVADNAENLVGQAAESAGSVIEGFMVAALAIFLTVFFVHSGDRMWHWFLHQVPSAHRTRWVEAAGAGWYTFSGFARGTVIIAFIDGILAFVLLMILGVPLAAPLAVLVFIGAFIPLIGAPLAMIIAAVVALAAEGFITALIVTLGIAAIGQLEGHVLQPLIMGKQVSLHPVVVAVVVLAGTVLAGLLGAVVAVPLVAVAWTVFSTLRGDRPVPVPSGALATPDPADDDSAGTAPGADGAERA				NA	NA	NA	NA	NA
AK001_00382	606			hypothetical protein	ATGGAGCCCTTCGTCCTGCGCAGCCCCGAGGTCCTGCTCTCCGTCCCGACGGACGCCGACGTCGACCGGATCGCCGCGGTGTGCACCGATGAGCAGATCGCGTCCTGGACGACCGTACCGTCGCCCTACTCGCGCGAGGACGCCGAGGGATTCGTGCGGGGATACGTGGCCCAGGGCTGGGCGCAGGACAAGGACTTCACCTGGGCGGTGCGCGCGCCCGGCCGGGCCGACGGCCCGGTGCTGGGCATGATGGGCGTCACCGTCACCGCGCGGCACCCGGACGGGACACCGCTGACGGGTGAGCTGGGGTACTGGACCGCGCCGGACGCGCGGGGCCGCGGCCTGACGACGGCCGCGGGTCGCCTGGTCGCCGACTGGGCGCTCGACGCGGAGGGGCTGGGGCTGCAGCGCCTGCAATGGCTCGCCTTCGTGGGCAACTGGCCCTCGCGCCGGGTCGCGTGGAAGCTCGGCTTCCGGTTCGAGGGCACGATGCGGCGCCACGGCGTGCAGCGGGGCGAGCTGCGCGACGACTGGATCGGGGCGCTGCTGCCGGGCGACCCGCGGGAGCCGAACGAGCCCTGGCCCCACGATTCCGCCGCTTTCTGA	MEPFVLRSPEVLLSVPTDADVDRIAAVCTDEQIASWTTVPSPYSREDAEGFVRGYVAQGWAQDKDFTWAVRAPGRADGPVLGMMGVTVTARHPDGTPLTGELGYWTAPDARGRGLTTAAGRLVADWALDAEGLGLQRLQWLAFVGNWPSRRVAWKLGFRFEGTMRRHGVQRGELRDDWIGALLPGDPREPNEPWPHDSAAF				NA	NA	NA	NA	NA
AK001_00383	1371			Ferredoxin--NADP reductase	ATGACGCTGCAACGGCGAGTCGCGGTCATCGGAGCCGGACCGTCCGGCCTGGCCACCGCCCGGGCCCTGGACCGGCACGGGGTGCCGCTGACCGGCTTCGAGGCCCACGACGACGTGGGAGGGCTGTGGGACATCGACAACCCGCGCTCGACCGTCTACGAGTCGGCGCACCTGATCTCCTCGCGCACGACGACGGAGTTCACCGAGCTGCCGATGTCGACGCAGGTCGACTACCCGAGCCACCGTGAGCTGCTGCGCTACTTCCACGAGTACGCCGACGCCTTCGACCTGCGACGCCACTACCGGTTCGGCACCCGGGTCACCGCCGTCGAGCCCGGCGACGGCGACCCGACGGGCCGCGCCGGCTGGGACGTGTGCTCCACCGGGCTCGACGGCGCCACGCACCGCGAGCGCTTCAGCCACGTCGTCGTCGCCAACGGCACCCTGGCCGAGCCCAACGTGCCGACGTTCGCCGGCGAGTTCACCGGCGAGCTGCTGCACTCGTCCGAGTACAAGCGGTCCGACGTGTTCGCCGGCAAGCGGGTCCTCGTGGTCGGCGGCGGCAACTCGGGCTGCGACGTGGCGGTCGACGCCGTGCACCGGGCCGCGTCCGTCGACCTGTCGGTGCGGCGCGGGTACTGGTTCGTCCCGCGGTACCTGCTCGGTCGCCCCACGGACACCCTCAACCAGGGCCGCCCGCTGCCGGCACGGATCAAGCAGGCCGTCGACTCCCGGGTGCTCACGCTCCTCAACGGCGACCCGCAGCGCTTCGGCTTCCCGGCGCCCGACCACAAGATCTACGAGTCCCACCCGGTGGTGAACTCCCTGGTGCTGCAGCACGCGGGCCAGGGCGACCTGCGGGTCCGCCGCGACATCGACCGCTTCGAGGGGCGCACCGTGCACTTCGTCGACGGCACCGCCGGGGAGTACGACCTCGTGCTGCTCGCCACCGGGTACAAGCTGGACTACCCGTTCGTCGACCCCAAGCACCTCGCCTGGGACGGCCCCGGCTCCGGGACGGCACCCGAGCTGTTCTGCAACATCCTCCCGCCGTCGCTCAACGGGCTCTTCGTCGTCGGCATGCTCGAGGCCTCCGGGATCGGCTGGCAGGGCCGCGCCGAGCAGGCGGAGCTCGTCGCCCGCTACCTCGCCGCGGAGGCCGCGAGCGCCCACGGCGACGCCGCGGCCCGCGACCGGGTCGCGGCGTTCCAGCGCCGGGTCGGCGAGCGATGGCCCGACCTGACCGGGGGCTACCGCTACCTCGGCCTGGAGCGGATGAGCTACTACGTCAACAAGGACGCCTACCGCCGCACCGTGCGCCGGCTCGCCGACGAGCTCGTCCCGGCGACGACGAACCGGAGCGAGCGATGA	MTLQRRVAVIGAGPSGLATARALDRHGVPLTGFEAHDDVGGLWDIDNPRSTVYESAHLISSRTTTEFTELPMSTQVDYPSHRELLRYFHEYADAFDLRRHYRFGTRVTAVEPGDGDPTGRAGWDVCSTGLDGATHRERFSHVVVANGTLAEPNVPTFAGEFTGELLHSSEYKRSDVFAGKRVLVVGGGNSGCDVAVDAVHRAASVDLSVRRGYWFVPRYLLGRPTDTLNQGRPLPARIKQAVDSRVLTLLNGDPQRFGFPAPDHKIYESHPVVNSLVLQHAGQGDLRVRRDIDRFEGRTVHFVDGTAGEYDLVLLATGYKLDYPFVDPKHLAWDGPGSGTAPELFCNILPPSLNGLFVVGMLEASGIGWQGRAEQAELVARYLAAEAASAHGDAAARDRVAAFQRRVGERWPDLTGGYRYLGLERMSYYVNKDAYRRTVRRLADELVPATTNRSER				NA	NA	NA	NA	NA
AK001_00384	921	panS	COG0385	Pantothenate precursors transporter PanS	ATGAACATCGACGACGTCGTCGTGAACTTCTCGCCGGGGTCGATGGTCGCGCTCAGCGTGGTGCTGGCCCTGATCATGCTCGGCATCGCGCTGGACACCTCGCCGGCCGACTTCCGCGTGCTGCGCCGGGCGCCGCGCGCGGCGGTGCTCGCCCTGCTCGCGCAGATCGTGCTGCTGCCCGTGGTCACGTTCGTGCTGACGCTCGCCCTCGGCGTCCAGGCGTCCATCGCGATGGGCATGATCCTCGTCGCCTGCTGCCCGCCGGGGAACGTCTCGCAGATCCTCACCTACCGCTCCGGCGGCAACGTGGCGCTGTCGGTGTCCCTGACGGCCGTCGGCAACGCGCTGTACCTGGTGGCGATGCCGCTGAACATCGCGCTGTGGGGCAGCCTGCACCCCACCGGCCGCGAGATCCTGGCCGAGGTCAGCCTCGACCCGCTGGAGATGATGCTCGACATCGTGCTCATCATCGGCGTGCCCTTCGCGCTGGGCCTGCTGGTGCGCACCCGCTGGCCGGCCGTCGCCGCCCGGGCGCACCGCCCCGTCCACGTCGTGAGCATCCTGGCGCTGATCGGCTTCGTCGTCGCGGCCCTGGTGGGCAACTTCGCCGTCTTCGTCGCCTGGGTCGGCGTGGTGCTGGTCGCCGTGTTCCTGCACGACGCCGTCGCGCTGGCCCTCGGCTACGCCGCCGCCCGCGCCGGACGGCTGGAGGTCCGCGAGCGCAAGGCCGTGACGTTCGAGGTCGGCATCCGCAACGCCGCCCTCGGGCTCGGCCTGGTGATGACGTTCTTCGACGGCATCGGCGGGATGGCGGTCGTGGCGGGCTGGTGGGGCATCTGGGACATCATCGCCGGCCTGACGCTGGCGACTCTCTGGGCGCGGCGCACCCGCGCCCGCCAGACGCAGGAGGTGTCGGCATGA	MNIDDVVVNFSPGSMVALSVVLALIMLGIALDTSPADFRVLRRAPRAAVLALLAQIVLLPVVTFVLTLALGVQASIAMGMILVACCPPGNVSQILTYRSGGNVALSVSLTAVGNALYLVAMPLNIALWGSLHPTGREILAEVSLDPLEMMLDIVLIIGVPFALGLLVRTRWPAVAARAHRPVHVVSILALIGFVVAALVGNFAVFVAWVGVVLVAVFLHDAVALALGYAAARAGRLEVRERKAVTFEVGIRNAALGLGLVMTFFDGIGGMAVVAGWWGIWDIIAGLTLATLWARRTRARQTQEVSA	PGPT0013890_2203	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453	NA	NA
AK001_00385	942		COG0451	putative protein	ATGAGGCGCGTGCTGGTCACGGGCGGCTCGGGGTTCCTCGGGTCGCACACCGTCGCGGCGCTCGCCGACCGGGACGACGTCGCGCACGTCGTCTCGGCGGACCTGCGCGCACCGGCGACGCTGCCCGACGGCGTCACCGCCGTCACGCTCGACGTCACGGACGCCGACGCCGTGCGGGACGCGGTCGTCGAGCACCGGGTCGACACCGTGGTGCACCTCGCCGCGATCGTGAACCCCGGCACGCTGGACGAGGACACGGAGCAGCGCGTGGACGTCGACGGCACCCGCCACGTGCTGCAGGCGTGCGTCGCCGGGGGAGTGCGGCGCGTGGTGATCTCCTCCTCGGGCGCCGCCTACGGCTACCACGCCGACAACCCGGTGCCGCTGCGCGAGACCGACCCGGTGCGCGGCAACGAGGAGTTCACCTACTCCCGGCACAAGCGGCTCGTGGAGGAGATGCTCGCCGACCACCGCCGCGACCATCCCGACCTCGAGCAGGTGATCCTGCGGATCGGCACGATCCTCGGCCCGGGCGTGGCGAACCAGATCACCGCCCTGTGGGACGCGCCGCGGCTGGTCCGCGTGCGCGGCTCCGAGGGCCCGTTCGTGTTCGCCTGGGTCGGCGACGTCACCGGCGCGATCGTCGCCGGGGCCACCGGGACCGCGACGGGGGCGTTCAACGTCTGCGGCGACGGACGCATGACCGTCGCCGACATCGCCGACCGGCTCGGCAAGCGCACCCTCGACCTGCCCGCCCCGCTGCTCGCCGGGGCGCTGCGCGTCGGCCGGGCGCTGCGCCTGACCGTGCACGGCCCCGAACGGGTCGGGTTCCTGCGCTACCGCCCGGTGCTCGACAACACCCGGCTGCGCACCGAGCTCGGCTACACCCCGCGGTACACCAGCCGCGAGGCGTTCGAGCAGTGGCTGACCGTGCGCGGATGA	MRRVLVTGGSGFLGSHTVAALADRDDVAHVVSADLRAPATLPDGVTAVTLDVTDADAVRDAVVEHRVDTVVHLAAIVNPGTLDEDTEQRVDVDGTRHVLQACVAGGVRRVVISSSGAAYGYHADNPVPLRETDPVRGNEEFTYSRHKRLVEEMLADHRRDHPDLEQVILRIGTILGPGVANQITALWDAPRLVRVRGSEGPFVFAWVGDVTGAIVAGATGTATGAFNVCGDGRMTVADIADRLGKRTLDLPAPLLAGALRVGRALRLTVHGPERVGFLRYRPVLDNTRLRTELGYTPRYTSREAFEQWLTVRG				NA	NA	NA	NA	NA
AK001_00386	1608	ettA_1	COG0488	Energy-dependent translational throttle protein EttA	ATGCCTGCCCCCACCCCCAGCCCCGCCGTGGTCCTGCAGGACCTCACCTTCACCTGGCCCGACGGCGCGACCGCGCTCGACGCCGTCACCGGCACCTTCCCGACCGGCCGCACCGGCCTCGTCGGCGACAACGGCACCGGCAAGTCGACCCTGCTGCGCCTCGTGGCCGGCGGGCTGACGCCGACCCGCGGCAGCGTCTCCGTGGCCGGCACCGCCGGCTCCGTGCCGCAGCGCCTCACCCTCGACACCCGCGCCACGGTCGCCGACCTGCTCGGTGTCCGCACCGCCGTCGACGCCGTGCGCGCCATCACCGACGGCGACGTGCGCCCCGAGCTCTTCGACGCCGTCGGCGACGCCTGGGACGTCGAGGAGCGGGCGGTGGCGGCGCTCGCGGCCGTCGACCTGCCGCACTCCGGCGGCGCACTGGACCGCACCGTCGGCACGCTGTCCGGCGGCGAGGCCGTGCTGACCGCCGTCACCGGGCTGCGGCTGCGCGACCCGGACGTGGCGCTGCTGGACGAGCCCACCAACAACCTCGACGCCGGATCGCGGGACCGGCTCGCCGAGCTGGTGCGCACCTGGCGCGGCGCCCTGGTGGTGGTGTCCCACGACCGCGCGCTGCTCGAGCTCGTGGACGCCACCGCCGAGCTGCGGGCCGGGTCGCTGACGACGTTCGGCGGGTCGTACAGCGCCTACGAGGACCACCTGGCCGTCCAGCAGGAGGCCGCGGTGCGGTCGGTGCGCGACGCCGAGCAGACGTGGCGCCGCGAACGCCGCGAACGGATCAAGATCGCCGAACGGGTCGCGCACTCCCAGCGCCAGGGGCGCAAGGACGCGGCCAACGCGAAGTTCGTCAAGGCGGCGATCAACGACCGGCGCAACAGCGCGGAGAAGTCGCAGGGCGCGCGGCGCGGGGCGGCCGAGGCCGCGGAGAGCACGGCGCGCGCCGCCGTCGAGACCGCCCGGAGCGCGGTCCGGGACGACGACCGCATCACGGTCGACCTGCCGGACCCCGACGTCCCCGCGTCCCGGCGGATCGCCGTGCTGGGTTCGGCCGACGGCCGCGACGTGGTCCTCGCCGGGCCGGAGCGGGTCGCCCTGACCGGACCGAACGGCGTCGGCAAGACGACGCTGCTGGAGCGGCTGCTCGCGGGGCCGTCGCCCGCGGGCCGGCTGTGCACCGACCGGGTGGGCTACCTGCCGCAGCGCCTCGACGTCCTGGACCCCCGCGCCACCGTCCTGGACGCCGTCCGCGCCGGAGCACCAGGCGTCGCCCCGGGCGACCTGCGCGGCCGGCTGGCCCGCTTCCTCGTGCGCGGCGCCCAGATCGACCGGCCGGTGGCCACGCTGTCCGGCGGGGAGCTGTTCCGGGTGCACCTGGCCCGGCTGCTGCTCGCCGAGCCGCCCGCCCAGCTGCTGATGCTCGACGAGCCGACGAACAACCTGGACCTGGCCAGCGTCGACCGCCTCGTCGAGGCGCTGTCGTCCTACCGGGGCGCGCTGCTGGTGGTCAGCCACGACCGGGCGTTCCTGGAGCGGCTCGGCCTCGACGCCCACGTCGAGCTGCGTCCGGACGGCCGGCTGGCGGTGGGTACGGTGTCCTCGTGA	MPAPTPSPAVVLQDLTFTWPDGATALDAVTGTFPTGRTGLVGDNGTGKSTLLRLVAGGLTPTRGSVSVAGTAGSVPQRLTLDTRATVADLLGVRTAVDAVRAITDGDVRPELFDAVGDAWDVEERAVAALAAVDLPHSGGALDRTVGTLSGGEAVLTAVTGLRLRDPDVALLDEPTNNLDAGSRDRLAELVRTWRGALVVVSHDRALLELVDATAELRAGSLTTFGGSYSAYEDHLAVQQEAAVRSVRDAEQTWRRERRERIKIAERVAHSQRQGRKDAANAKFVKAAINDRRNSAEKSQGARRGAAEAAESTARAAVETARSAVRDDDRITVDLPDPDVPASRRIAVLGSADGRDVVLAGPERVALTGPNGVGKTTLLERLLAGPSPAGRLCTDRVGYLPQRLDVLDPRATVLDAVRAGAPGVAPGDLRGRLARFLVRGAQIDRPVATLSGGELFRVHLARLLLAEPPAQLLMLDEPTNNLDLASVDRLVEALSSYRGALLVVSHDRAFLERLGLDAHVELRPDGRLAVGTVSS				NA	NA	NA	NA	NA
AK001_00387	1344	dapE_1		Succinyl-diaminopimelate desuccinylase	GTGAACGCACCCGGTACCGCCCCTCACCAGCCCACCGCCGCCGACGAGGTCGTGGGGATCTGCCAGGACCTCCTGCGCATCGACACCTCCAACTACGGCGAGAACCAGGGCCCGGGCGAGCGCAAGGCCGCCGAGTACGTCGCCGGGCTGCTGGCCGACGTCGGGCTCGAGCCGCAGCTGTTCGAGTCCCGCCCGGGACGGACGTCGGTGGTGGCCCGCTTCGAGGGCAGCGACCCGACCCGGGACGCGCTGGTGCTGCACGGGCACACCGACGTCGTGCCCGCCCAGGCCGCCGACTGGTCGGTCGACCCGTTCGCGGGCGAGGAGATCGACGGCCTGCTGTGGGGCCGCGGCGCCGTCGACATGAAGGACATGGACGCCATGATCCTCTCGGTCGTGCGCCAGATGGTGCGCGAGGGCCGCCGCCCCGCCCGCGACGTCGTCATCGGCATGTTCGCCGACGAGGAGGCCGGCGGGGTCCTGGGCGCGCGCTGGTTGGTCGAGAACCACCCCGAGCTGTTCGAGGGCGCGTCCGAGGCCATCAGCGAGGTCGGCGGGTTCTCCGTGGACGTCGACGGCCGACGCACCTACCTGGTCCAGACCGCCGAGAAGGGGCTGGCCTGGCTGCGCCTGGTCGCCGACGGCCGCGCCGGGCACGGCTCGCAGGTCAACCACGAGAACGCCGTGACCGAGCTCGCGGCGGCCGTCGCCCGGATCGGCAAGCACGCCTGGCCCTACACCCTGACCCCGACGGTCGAGCGGCTGCTGCGGGGGGTGGCGGACCTGACCGGGCTGCCCTTCGACCCCGAGGGCGGCGCCGACCCGGACCAGGTCGACGCCCTGGTGGACGCGCTCGGCCCCGCCGCGAAGTTCGTGGGCGCCACCGTGCGGCACACCACCAACCCGACCCAGCTCGACGCCGGGTACAAGGCGAACGTCATCCCGGGCACGGCGACCGCCGCCCTGGACATGCGCACCGTGCCCGGCCACGAGGCCGAGGCCATGGGGGTGCTGCGCGAGCTGGCCGGACCGCACGTGCGCGTCGAGACGCTGCACGCCGACCGCTCCCTCGAGGTGCCGTTCAGCGGGGGACTGGTCGACGCGATGGTGGACTCCCTGCACGCCGAGGACCCGGGCTCGGCCGTGCTGCCGTACACGCTGTCCGGCGGCACCGACAACAAGTCGCTCGCACGGCTCGGCATCACCGGCTACGGGTTCGCGCCGCTGCGCCTGCCCGCCGAGCTGGACTTCGCCGGCATGTTCCACGGCGTCGACGAGCGCGTCCCGGTCGACGCCCTGCAGTTCGGCACCCGCGTGCTGGACCGGCTGCTCACGACCTGCTGA	MNAPGTAPHQPTAADEVVGICQDLLRIDTSNYGENQGPGERKAAEYVAGLLADVGLEPQLFESRPGRTSVVARFEGSDPTRDALVLHGHTDVVPAQAADWSVDPFAGEEIDGLLWGRGAVDMKDMDAMILSVVRQMVREGRRPARDVVIGMFADEEAGGVLGARWLVENHPELFEGASEAISEVGGFSVDVDGRRTYLVQTAEKGLAWLRLVADGRAGHGSQVNHENAVTELAAAVARIGKHAWPYTLTPTVERLLRGVADLTGLPFDPEGGADPDQVDALVDALGPAAKFVGATVRHTTNPTQLDAGYKANVIPGTATAALDMRTVPGHEAEAMGVLRELAGPHVRVETLHADRSLEVPFSGGLVDAMVDSLHAEDPGSAVLPYTLSGGTDNKSLARLGITGYGFAPLRLPAELDFAGMFHGVDERVPVDALQFGTRVLDRLLTTC				NA	NA	NA	NA	NA
AK001_00388	483			hypothetical protein	GTGCCGGTCACCAGCGCCGGGCTGCTGTTCTACCGGCCGGGCACGGACGGACCGATCGTGTTGCTGGCGCACATGGGCGGCCCGTTCTGGGCCCGGCGCGAGGCCGGCGCCTGGACCGTGGTCAAGGGCGAGGTCGGCGACGGCGAGGACGCCCACGCCGCCGCCGTGCGCGAGGCCGGCGAGGAGCTGGGGCTGACGATCCCGGACCCCGTGGTACCGGACGTCGACCTAGGGGAGATCCGGCAGCGCTCCGGCAAGCGGGTGCGGGCCTGGGGCCGCTGCTGGCCGGAGCCAGGACCGGACCTGTCGGCCGTGCGCAGCAACACGGTGCGGGTGGAGTGGCCGCCCCGCTCCGGCCGGCACCTCGAGGTGCCCGAGATCGACCGCGCCGCCTGGTTCACCCCCGCCGAGGCGCGCCGCGTCCTGGTCCGGGGCCAGGACGTGCTGGTCGACCGGCTGGAGGCGGCGCTCAGCAGGTCGTGA	MPVTSAGLLFYRPGTDGPIVLLAHMGGPFWARREAGAWTVVKGEVGDGEDAHAAAVREAGEELGLTIPDPVVPDVDLGEIRQRSGKRVRAWGRCWPEPGPDLSAVRSNTVRVEWPPRSGRHLEVPEIDRAAWFTPAEARRVLVRGQDVLVDRLEAALSRS				NA	NA	NA	NA	NA
AK001_00389	777		COG3001	putative ketoamine kinase	ATGGACGCCTTCCGCAAGTCCCGGCACGGCTCGCCGCCCGGGGTCTTCGCCACCGAGGCGGCGGGCCTGCGCTGGCTCGCCGTCGACGGCGGGCCGCGGGTGGCCGCGGTGCTGGACGTCGGCCCCGGGCACCTCGACCTGGAACGACTCGGGGCCGCCCGGCCGACCGCCTCCGCGGCCCGGTCGTTCGGCCGCGCGCTGGCCCGGCTGCACGACGCCGGAGCGCCCGCCTTCGGCGTCCTGCCCCCGGACGCCGGGCACGGCTGGTTCGGGCCGCTGGACGACCCGCTGGACATGCCGGCCGGCGCGTTCGAGGACTGGCCCTCCTTCTACGCCGAGGCACGGCTGCGGCCGGTCGTCGCCCAGGGCCGCGAGCGCGGGGTGCTCGACCGCCGGGACGCCGCGGCGATGGAGGCGGTGTGCGGGGCGCTGCCCGACCTCGCCGGTCCGCCGGACTCCCCCGCCCGGCTGCACGGCGACCTGTGGTCGGGCAACCTGCTGTGGACCGCTTCGGACGACGGCGGCACCGAGGCGGCGCTCATCGATCCCACCGCCCACGGCGGCCACCGGGAGACGGACCTGGCGATGCTGACGCTGTTCGGTGCGCCGCACCTGGACGAGATCCTCGCCGGCTACGACGAGACCCACCCGCTCGCCGCCGGGTGGCAGCAGCGCGTCGAGCTGCACCAGCTCTACCCGCTCGCCGTGCACGCGGTGCTGTTCGGCGGCGGGTACGTCGACGGGACCCGGCGGTCGATGGCCGCGCTGGGCGGCTGA	MDAFRKSRHGSPPGVFATEAAGLRWLAVDGGPRVAAVLDVGPGHLDLERLGAARPTASAARSFGRALARLHDAGAPAFGVLPPDAGHGWFGPLDDPLDMPAGAFEDWPSFYAEARLRPVVAQGRERGVLDRRDAAAMEAVCGALPDLAGPPDSPARLHGDLWSGNLLWTASDDGGTEAALIDPTAHGGHRETDLAMLTLFGAPHLDEILAGYDETHPLAAGWQQRVELHQLYPLAVHAVLFGGGYVDGTRRSMAALGG				NA	NA	NA	NA	NA
AK001_00390	207			hypothetical protein	ATGGCTTCGAGCTGGCGCACGCACGGGCAGTACGAGTACCGGGTGGTCACGATCGACCGGGGCACGTCCGTCCCGGACGCCCGGAGACAGCTCACCGAGGAGGCCGAGTACGGGCGCTGGGAGCTCGCCCGGACGCGTCTCTACATGGGCGGCGAACGCCGGGTGTGGTTGCGGCGCAAGATCATCAAGGCGACCTCCACGCTCTGA	MASSWRTHGQYEYRVVTIDRGTSVPDARRQLTEEAEYGRWELARTRLYMGGERRVWLRRKIIKATSTL				NA	NA	NA	NA	NA
AK001_00391	258			hypothetical protein	ATGACCGCTGACCCGCGTGCCGCGCTGGACCGATTCGTCGCCGCCCTCGAGGGGCACTTCCACGCGGTGTCGTCCCGCCGGAGCGACGAGGACCCTGCCGTGGACGACGCCTACGAGGTGCTCGCCGACGCCTTCGAGGTGTACGAGGACGCCCTGGCCCAGGCCTACAGCGAGGTGACGCCGTTCTACCTCGACGACGACGATGACGACGACGAGGACGACGACTACGACGAGGACGACGACGCCAGCGCGCGCTGA	MTADPRAALDRFVAALEGHFHAVSSRRSDEDPAVDDAYEVLADAFEVYEDALAQAYSEVTPFYLDDDDDDDEDDDYDEDDDASAR				NA	NA	NA	NA	NA
AK001_00392	972	yajO_1	COG0667	1-deoxyxylulose-5-phosphate synthase YajO	ATGGAACGACGCCAGGTGGGGGGCTCGGGGCTGCACGTCTCGGCGCTGGGGCTGGGCACCATGTCGTGGGGCCGCGACACCGACGCGGACGACGCCGCGCAGATCCTGCGGGCCTTCCTCGACGGCGGCGGGTCGTTCGTCGACACCGCGGCCTCCTACGGGGACGGCGACGCCGAGCGGATGCTGGGTGCGCTCCTGGACGGCTCCGTCGCCCGCGACGACGTGGTGCTCGCCACCAAGGCCGGGGTGCGGCACGGGCCCCGGGGCACGCACCGGGACGCCTCGCGCGGCGGGCTGCTCGGCGAGCTGGACGCCTCCCTGCGACGGCTGGGCACCGACCACGTCGACCTGTTCCTCGTGGCCTGCCCCGACCCCGTCACGCCGCTGGAGGAGACCGTCTCGGCGCTGCGGCTGGCCGTGTCCTCCGGGCGGGCCCGCTACGTGGGGCTGTCGAACTTCCCGGCCTGGGCCTCGGCGCGCGCCGCGACGCTGCTGGAGGCCGGTGACGGGATCGGGCTCGCCGCCCTGGAGCTGGAGTACTCGCTGCTGCAGCGGGGGCTGGAGCGGGAGGTCGCCCCGGCGGCCTCGGCGCTCGGCCTCGGTCTGCTCGCCTGGTCCCCGCTGGGTCGTGGTGTGCTGACGGGCAAGTACCGGCGCAGCGTGCCGGCGGACTCGCGGGCCGCCTCGGACCGGCTGGCCGGGTTCGTCGAGACGTACGTCGAGGACGCCGGGGCGGCGGCGGTCGTGGAGGCCGTGGCCACGGCCGCGGACGGCCTGGGCCGGGCCCCGCTGGAGGTGGCGCTGGCCTGGCTGCTCGCCCGTGACGCGGTGGCCTCCGCCGTCGTCGGCGCCCGTACCCCGGCCCACCTGCGCGGGGCGACGGCGGCGCTGGACCTCGCGCTGCCCGCCGAGGTGCACGCGGCGCTCGACGACGTCTCCGGGCTGCCGCTGGGCTACCCCGAGCGGGCGTAG	MERRQVGGSGLHVSALGLGTMSWGRDTDADDAAQILRAFLDGGGSFVDTAASYGDGDAERMLGALLDGSVARDDVVLATKAGVRHGPRGTHRDASRGGLLGELDASLRRLGTDHVDLFLVACPDPVTPLEETVSALRLAVSSGRARYVGLSNFPAWASARAATLLEAGDGIGLAALELEYSLLQRGLEREVAPAASALGLGLLAWSPLGRGVLTGKYRRSVPADSRAASDRLAGFVETYVEDAGAAAVVEAVATAADGLGRAPLEVALAWLLARDAVASAVVGARTPAHLRGATAALDLALPAEVHAALDDVSGLPLGYPERA	PGPT0017540_574	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017540-yajO|iolS-K23107	NA	NA
AK001_00393	876	uppP	COG1968	Undecaprenyl-diphosphatase	GTGAGTGCGTGGGAAGCGATCATCCTCGGTCTGGTCCAGGGTTTCACCGAGTTCCTGCCGGTCTCCTCGAGCGCACAGCTGAGGATCGTCGGCGAGCTGATCGGCGGTGCCGACCCCGGCGCGCTGTTCACCGCGGTGACCCAGATCGGCACGGAGGTCGCCGTCCTGCTCTACTACCGCCGCAAGATCCGGGACATCTGCGTCGGGTGGTGGACCTCGTTGCGCGGCGACCACGGCACCACGTGGCGCGACCGGTTCGGCGCCCACGACGCCGACGCCCGCATGGCCTGGTACATCACGCTGGGCTCGGTGCCGATCGTCGTGCTGGGCGTGCTCTTCGACGAGGCGATCGAGACGACGCTGCGCAACCTGTGGATCACCGTCGCCACGCTGGTGGTCTTCGGCGTGCTGCTCGACCTGGCCGACCGGTACGGGCGGCGCACCCGGTCCGTGGAGGACCTGACCCCGAAGCGCGCGATCGGGTACGGGCTCGCGCAGGCCCTGGCGCTCATCCCCGGCGTGTCCCGGTCCGGCGGCACGATCACGGCCGGTCTCGCGATGGGCTTCACCCGGCGCGCCGCGGCCGACTACTCGTTCCTCCTGGCGATCCCGGCCGTGCTGGGCTCGGGCTTCTACCAGCTCGCCAAGGCCGCCGGGGGCGACCCGGCGCCCGGGTCCGCGGGATGGTGGCCCACGCTGATCGCGACCGTCGTGGCCTTCGCGCTCGGCTACGTCGTGCTCATCGGCTTCCTGAAGATCGTCTCGACCTACTCCTACAAGCCCTTCGTGTACTACCGGTACGGCCTGGCGGCGCTCGTCGTCGTGCTGCTTCTCACGGGGGTGCTGGAGGCCGATCCGGCCGGGACCACGGCCTGA	MSAWEAIILGLVQGFTEFLPVSSSAQLRIVGELIGGADPGALFTAVTQIGTEVAVLLYYRRKIRDICVGWWTSLRGDHGTTWRDRFGAHDADARMAWYITLGSVPIVVLGVLFDEAIETTLRNLWITVATLVVFGVLLDLADRYGRRTRSVEDLTPKRAIGYGLAQALALIPGVSRSGGTITAGLAMGFTRRAAADYSFLLAIPAVLGSGFYQLAKAAGGDPAPGSAGWWPTLIATVVAFALGYVVLIGFLKIVSTYSYKPFVYYRYGLAALVVVLLLTGVLEADPAGTTA	PGPT0024165_612	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153	NA	NA
AK001_00394	1290	mshC	COG0215	L-cysteine:1D-myo-inositol 2-amino-2-deoxy-alpha-D-glucopyranoside ligase	GTGCGACCCTGGCCCACCCCCCAGATCCCCGAGCTGCCTGCTCCCACCGACGGTCACCGTCCCGTGGTGCGGATCCACGACACGACCACCGGACACCTCGTCGAGGCGGCTCCGGGTCCGACGGCGCGCAGCTACGTCTGCGGGATCACGCCCTACGACGCGACCCACCTCGGGCACGCCGCGACCTACGTCGCCTTCGACCTGCTGCACCGCGCCTGGATCGACGCCGGCAAGCAGGTCACGTACGCGTCGAACGTCACCGACGTCGACGACCCGCTGCTCGAGCGCGCCGCCGCCACCGGCGTCGACTGGCGCGACCTCGCCGCGGACCAGGTGGCGCTGTTCCGCGAGGACATGACGGCGCTCGGCGTCGTCCCGCCGGACCCGTGGACGGGTGTGGCCGAGTACGTCGGTCCCATCGCCGAGGCGGTCGCCCGGATGCTCGACGACGGCACCGCCTACCGGGTCCCGATGGAACCCGGTGCCGGCGGCGACGACCCCTGTCTGGGCGACGTCTACGCCGACCTGACGGCCGACCCCGACTTCGGCGCGGTCTCCGGCTTCGACGAGGCCACCATGGCCGAGCTGTTCGCCGAGCGCGGGGGAGACCCCGACCGGGAGGGCAAGAAGAACCCGCTGGACCCGCTGCTGTGGCGCCGCGAGCGCCCCGGCGAGCCCACCTGGGACGGTGGCCCGCTCGGCACCGGCCGCCCCGGGTGGCACGTGGAGTGCACGGTCATCGCCCGGGACGGGATCGGTCTGCCCTTCGACGTCCAGGGCGGCGGCTCGGACCTCGTCTTCCCGCACCACGAGATGTCCGTCTCGCACGGGCGGATGCTCGCCGGTGCCGGGTCCGCGCCCGGCGCGCACGCCCACGCCGGCCTCATCGCCTACGAGGGCCACAAGATGAGCAAGTCGCGGGGCAACCTCGTGCTCGTCTCCGCGCTGCGCCGCGACGGCGTCGACCCGATGGCGGTGCGCCTCGGCATCCTGTCGCAGCACTACCGCACCGAGTGGGAGTGGACCCACGACCTGCTCACCACCGCCCAGGCGCGCCTGGAGCGGTGGCGGGAGGCCGTCTCGGGCAACGGGGGACCGGCCTGGCAGGACACGCTGGCCGAGCTGCGCGCCGCGCTCGCCGACGACCTCGACGCCCCGCGGGCGCTCGCGGCCGTGGACGCCTGGGCCGACCGCGCCCTGGAGCCCGGACGGGACACCGCCGCGGACACCGAGGGTGCCCCCGGCGTCGTGGCCCGCGCCGTCAACGCCCTGCTCGGCGTGCGGCTGTAG	MRPWPTPQIPELPAPTDGHRPVVRIHDTTTGHLVEAAPGPTARSYVCGITPYDATHLGHAATYVAFDLLHRAWIDAGKQVTYASNVTDVDDPLLERAAATGVDWRDLAADQVALFREDMTALGVVPPDPWTGVAEYVGPIAEAVARMLDDGTAYRVPMEPGAGGDDPCLGDVYADLTADPDFGAVSGFDEATMAELFAERGGDPDREGKKNPLDPLLWRRERPGEPTWDGGPLGTGRPGWHVECTVIARDGIGLPFDVQGGGSDLVFPHHEMSVSHGRMLAGAGSAPGAHAHAGLIAYEGHKMSKSRGNLVLVSALRRDGVDPMAVRLGILSQHYRTEWEWTHDLLTTAQARLERWREAVSGNGGPAWQDTLAELRAALADDLDAPRALAAVDAWADRALEPGRDTAADTEGAPGVVARAVNALLGVRL				NA	NA	NA	NA	NA
AK001_00395	891			hypothetical protein	ATGACCACCGAGCAGCCGGTCGGCCGTCACGCCGCACGTCAGACCGTCATGATCGCGGCCTTCGAGGGGTGGAACGACGCGGGCAGCGCCGCGACGGACGCCCTCGAGCACCTCGCCGACGTGTGGGGAGCGTCACTGCACCGCGAGCTCGATCCGGAGGGGTATCACGACTTCCAGGTCAACCGACCGATGATCGGCTCCGGTCCGGAGGGCCGACGCATCATCGCCTGGCCCACCACGACCGTCTCGGTCGCGGAGCTGCCGGACCGCCGCGTCGTGCTCGTGCACGGCATCGAGCCGTCCTTCCGCTGGAAGTCGTTCTGCCGCGAGCTGCTGGACATCGCCGCCGAGCTGGACGTGCGCACCGTCGTGACCCTCGGCGCGCTGCTGGCCGACGTGCCGCACACCCGCCCGATCCCGCTGACCGCGACGACGGAGAGCCCCGGCCTGCAGGCCGTCCTGGACGTCGAGCCGAGCACGTACGAGGGACCGACCGGCATCGTCGGCGTGCTGCAGCACGAGGCCGCCGCGCGCGAGTTCCAGGCCGTGTCGCTGTGGGCGGCGGTGCCGCACTACGTGGCCAACCCGCCCTCGCCCAAGGCGACCCTCGCCATCCTGACCCGGGTCGAGGACCTGGTGGGCACGTCCGTCGACATGGGGGACCTGCCCGAGGACGCCGAGGCGTGGCAGCAGGGAGTCGACGAGCTGGCCGGCGAGGACGCGGAGATCTCCGAGTACGTCGCCCAGCTCGAGGAGGCCAAGGACACCGCGGACCTGCCGGAGGCGTCCGGCGAGGCGATCGCGCAGGAGTTCGAGCGCTACCTGCGCCGCCGGGACCTCGGTCCGGGCCGCGGGGGCCACGGGACCCCCGGCGGACCGGACAAGGGCTAG	MTTEQPVGRHAARQTVMIAAFEGWNDAGSAATDALEHLADVWGASLHRELDPEGYHDFQVNRPMIGSGPEGRRIIAWPTTTVSVAELPDRRVVLVHGIEPSFRWKSFCRELLDIAAELDVRTVVTLGALLADVPHTRPIPLTATTESPGLQAVLDVEPSTYEGPTGIVGVLQHEAAAREFQAVSLWAAVPHYVANPPSPKATLAILTRVEDLVGTSVDMGDLPEDAEAWQQGVDELAGEDAEISEYVAQLEEAKDTADLPEASGEAIAQEFERYLRRRDLGPGRGGHGTPGGPDKG				NA	NA	NA	NA	NA
AK001_00396	705	hxpB	COG0637	Hexitol phosphatase B	ATGCGTCCTGACGAACCCGCCGCGCTGCCCGCCGCCGTCCTGTGGGACATGGACGGCACCCTCGTCGACACCGAGCCCTACTGGATCCGTGCCGAGCACGAGCTGGTGGCCGCCCACGGCGGCAGCTGGTCGCACGAGCAGGCGCTCGAGCTGGTCGGCAACCCCCTGACCGTCTCCGCGGGCATCCTGCGCGACGCCGGTGTCGACCTGAGCGTCGACGCGATCGTCGACCACCTCCTGGCCCGGGTCCGCGAGCAGGTAGCCGACTCCGTGCCGTGGCGCCCGGGCGCCCGGGAGCTGCTCGCCGCGCTCGGGGACGCCGGGGTGCCCTGCGCCCTGGTGACGATGAGCTACACGGTGCTGGCCGAGGCCGTGACCGCGCACGTGCCCGGGGCGTTCAGCACCCTGGTGACCGGTGACCAGGTCACCCACGGCAAGCCCCACCCGGAGCCGTACCTGGTGGCGGCCGAGCGGCTGGGCGTGCCCGTCGAGGACTGCGTGGCCATCGAGGACTCGCCGACCGGGATCGCCTCCGCGCTGGCCGCCGGTGCCCGCACCCTCGGGGTGGAGGCCGTCGTGCCCGTCCCGTCGCGTCCCGGTCTGAGCCGGGCGGCGAGCCTGGCCGACGTCGACCTGACCACGGTGCGGCGCCTCGCCGCCGGCGAGGTGCTCGACCTGCGGCCGGTCGCGGCCTCGTCGCGCTAG	MRPDEPAALPAAVLWDMDGTLVDTEPYWIRAEHELVAAHGGSWSHEQALELVGNPLTVSAGILRDAGVDLSVDAIVDHLLARVREQVADSVPWRPGARELLAALGDAGVPCALVTMSYTVLAEAVTAHVPGAFSTLVTGDQVTHGKPHPEPYLVAAERLGVPVEDCVAIEDSPTGIASALAAGARTLGVEAVVPVPSRPGLSRAASLADVDLTTVRRLAAGEVLDLRPVAASSR	PGPT0017720_1140	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017720-pgmB-K01838	NA	NA
AK001_00397	912			hypothetical protein	ATGACGACGACGGCCGACCCCGCCACCGGATCACCGGACCGCACCGCGTCGAGCCCCGACGCGGCGGGGACCCGACCGTCACGTCCCCCGGCGCTGTCGCCGTCGCGCGCCAACGACTTCATGCAGTGCCCGCTGCTGTTCCGCTTCCGGGCGGTCGACCGCCTGCCCGAGCCGCCGTCGTCCGCCGCCGCACGCGGCACGCTCGTGCACGCCGTCCTCGAACGGCTCTACGACGCCCCGCTGGGCGAACGCACTCCCGAGGCGGCGCGCGGCCTGCTGCCCGGCGAGTGGGAGCGTCTGGTGGAGGTCGAGCCCCGCTACGCCGAGCTGTTCACCGCCGGCGGGGACGCCGAGGGGCAGCCCCTGGAGACCTGGCTGGACGGCGCGGGCAAGCTGCTGGGCACGTACTTCACGCTGGAGGACCCGAACCGCCTGCAGCCCGAGGCCCGCGAGCTGGCCGTGGAGAGCCAGCTCGAGGACGGGCCGCTGCTGCGCGGCATCGTGGACCGGCTCGACGTGGCGCCCGACGGCGCGGTCCGGGTCGTCGACTACAAGTCCGGACGCTCGCCCCGGCCCGGGTTCGAGGCCTCGGCCCTGTTCCAGATGCGCTTCTACGGGCTCGTCGTCTGGCGCGAGCGCGGCGTGCTGCCGACGATGCTCCAGCTCGTCTACCTCGGCGACGGGCAGGTCCTGCGGGCCGAGCCCCGCGAGCGGGAGCTGGAGGTCACCGAGGCGAAGGTGCGCGGCCTGTGGGACGCCATCACCACGGCGGCGCGCCGGGGCGAGTTCGTCCCGAAGCAGAGCAAGCTGTGCGGATGGTGCGCCCACCAGGCGCTCTGTCCCGCGTTCGGCGGCACTCCCCCGCCGATCCCCGCCGACGCGCTGCGCCGACGTCTGGGCGTGGAGGTCTAG	MTTTADPATGSPDRTASSPDAAGTRPSRPPALSPSRANDFMQCPLLFRFRAVDRLPEPPSSAAARGTLVHAVLERLYDAPLGERTPEAARGLLPGEWERLVEVEPRYAELFTAGGDAEGQPLETWLDGAGKLLGTYFTLEDPNRLQPEARELAVESQLEDGPLLRGIVDRLDVAPDGAVRVVDYKSGRSPRPGFEASALFQMRFYGLVVWRERGVLPTMLQLVYLGDGQVLRAEPRERELEVTEAKVRGLWDAITTAARRGEFVPKQSKLCGWCAHQALCPAFGGTPPPIPADALRRRLGVEV				NA	NA	NA	NA	NA
AK001_00398	1131	rip3	COG0517	Putative zinc metalloprotease Rip3	GTGACTCAACGCTCCTCCGGGTGGCGCATCGGCCGTGTCGCCGGCGCCCCCGTCCTGGTGACCCCGTCGTGGCTCCTCGCCGCCGTCGTCCTGACCGCGCTGTTCGCCCCGACGGTGCGTGCTTTCGCCCCCCGCATGGAGCTGGTGGGGGTGCTGGTCGTCTCCTTCGCGTTCGTGCTGCTGCTGTTCGCGTCGGTGTTCTGCCACGAGGTGGCCCACGCCCTGGTGGCGCGCGCCCGCGGACAACGCGTCGACGAGCTCGCCCTGACGCTGTGGGGCGGACACACCGCCTACTCCGGAACGGTCCGGCACCCGCGCGACAGCGCGCTGATCGCCGTCGTCGGCCCGCTGACGAACCTGGCGCTCGCCGCCGGCTTCTGGCTGCTGTTCTCCGCCCAGACCTCGGCGTCGGTGCCCGCGCTGCTGCTCTACGCCGGCGCGTTCTCGAACGCGTTCGTCGGTGCCTTCAACCTGCTGCCGGGTCTCCCGCTCGACGGCGGCCAGGTCCTCGAGGCGGGCGTCTGGGCCGCGACGGGCTCGCGCACGCGCGGCACGCTGGCGGCCGGCTGGGTCGGCCGGGCGGTCGGTGCGGCCGTCGTGCTGTGGGCGCTGGTCTGGCCCCTGGCGACCGGACGCAGCCCCGACCTCTTCACCGTGATGTGGGCCGCGCTGATCGGCGCGTTCCTGTGGTCCGGGGCGAGCGAGGCCATGCGGGTGGGGCGCCGGCGCGAGCAGCTCGACCGCCTCGACGTGCGGTCGCTGGTGACCTCCGCCGTCGTCGTCCCGGCCGGGGCGACGGTGGCCGACGCCGGCCGGGCGGCGCGCGGGCACGGCGAGGTCGCCGTCGTCGTCCTCGACCACCGGGGCGAGCCGGCCGGCTGGGTCGACCCGCAGGCCGCGGCCGCCGTGCCGGCGGACCAGGCCGCCGCGACGCCGGCCGAGTCGGCCCTGGTGCCCTTCCCCGCGGGGTCGACCGTGGACGTCGACGAGTCCGGACCCGAGCTGCTCGACCACCTGGCCCGTGTCGCCGGCGGCGCGCGCGTGCTGCCGGTGGCCGACCGTGGCCGGGTCACCGGGGTGCTGGACGTCGCCCGGGTCGCGGCGGCCGTGCGTCCGGCGGGCCGCCGGTAG	MTQRSSGWRIGRVAGAPVLVTPSWLLAAVVLTALFAPTVRAFAPRMELVGVLVVSFAFVLLLFASVFCHEVAHALVARARGQRVDELALTLWGGHTAYSGTVRHPRDSALIAVVGPLTNLALAAGFWLLFSAQTSASVPALLLYAGAFSNAFVGAFNLLPGLPLDGGQVLEAGVWAATGSRTRGTLAAGWVGRAVGAAVVLWALVWPLATGRSPDLFTVMWAALIGAFLWSGASEAMRVGRRREQLDRLDVRSLVTSAVVVPAGATVADAGRAARGHGEVAVVVLDHRGEPAGWVDPQAAAAVPADQAAATPAESALVPFPAGSTVDVDESGPELLDHLARVAGGARVLPVADRGRVTGVLDVARVAAAVRPAGRR				NA	NA	NA	NA	NA
AK001_00399	1002	trmI	COG2519	tRNA (adenine(58)-N(1))-methyltransferase TrmI	GTGACTTCCTCCTCCGCCACCGGTGCCGACATCCGCCGCGGTCCGTTCCGCGTCGGCGACAAGGTCCAGCTCACCGACCCCAAGGGTCGGATGCACACGATCACGCTCGCCGAGAACGCCACCTTCCACACGCACAAGGGCTACTTCCGTCACGAGGACCTCATCGGTCGCCCCGAGGGGTGGGTGGTCACCAACACCGCCGGGATCGAGTACCTCGCCCTGCGGCCGCTGCTGAGCGACTTCGTGCTGTCCATGCCGCGCGGTGCCGCCGTCGTCTACCCCAAGGACGCGGGCCAGATCGTCCAGATGGCCGACATCTTCCCCGGGGCCCGCGTCCTGGAGGCCGGTGTCGGCTCCGGCGCGCTGACCATGTCCCTGCTGCGCGCCGTCGGCGACGCGGGCGAGCTGCACTCGATCGAGCGTCGCGAGGACTTCGCCGCGATCGCGCGCGGCAACGTCGAGACGTTCTTCGGCGGCCCCCACCCGGCCTGGCACCTGCACACCGGCGACCTGGCCGACCGGGCCGCCGACGTCGTCGAGCCCGGTTCGGTGGACCGCGTCGTGCTGGACATGCTCGCTCCGTGGGAGAACGTCGACGCCGTCGCGCAGGTGCTCATCCCCGGCGGGGTGCTCGTCTGCTACGTCGCGACGGCGACCCAGCTGTCCCGGACGGCCGAGACGCTGCGTGCCGACGGCCGGTTCGCCGAACCGTCCGCGTGGGAGTCGATGGTGCGCGGCTGGCACCTCGAGGGGCTGGCCGTCCGGCCGCAGCACCGCATGGTCGGGCACACCGGCTTCCTGCTGACCGCCCGCCGCCTGGCCGACGGCGTCACCCCGCCGCTGCGCAAGCGGCGCCCGGCCAAGGGCTCGCGCCCGGGCGACGAGGAGCAGTGGGGCGCCGGCCGGTGGAGCGAGGAGGAGCTCGGCGAGAAGGCGGTCTCGGACAAGAAGATCCGTCGCGTGCGCCGTCAGGTCGGTCAGGAGCCCGAGCAGGAGGCCTGA	MTSSSATGADIRRGPFRVGDKVQLTDPKGRMHTITLAENATFHTHKGYFRHEDLIGRPEGWVVTNTAGIEYLALRPLLSDFVLSMPRGAAVVYPKDAGQIVQMADIFPGARVLEAGVGSGALTMSLLRAVGDAGELHSIERREDFAAIARGNVETFFGGPHPAWHLHTGDLADRAADVVEPGSVDRVVLDMLAPWENVDAVAQVLIPGGVLVCYVATATQLSRTAETLRADGRFAEPSAWESMVRGWHLEGLAVRPQHRMVGHTGFLLTARRLADGVTPPLRKRRPAKGSRPGDEEQWGAGRWSEEELGEKAVSDKKIRRVRRQVGQEPEQEA				NA	NA	NA	NA	NA
AK001_00400	1656	mpa	COG0464	Proteasome-associated ATPase	ATGACCGACCACCCTGTTCGCCCGGACCACTCGGACGCGCCGACGCCGTCCGGACGCGACGCCCAGCTGGCGCTGCTCGCGGCGAAGAACGAGCGGCTCGCCGAGGCGTTGCGCGCCGCCCGGGAGCAGATCGTCGAGCTGAAGAAGCAGATCGACGACCTGGCCAAGCCGCCCGGGACGTACGCCACCTTCCTGTCCGACCACGGCGACGGGTCGGTGGACGTGGTCTCCCAGGGCCGCAAGATGCACGTCCAGGCCAGTCCCCAGCTCCAGCTGTCCGACCTCGCCCCGGGGCAGGAGGTCAAGCTCAACGAGGCCATGACCGTCGTCGGCGCGGGTGGCTACGAGCGCACGGGCGAGCTGGTCACGGTCAAGGAGGTGCTCGACGAGGACCGCGTGCTCGTGGTCGGGCGCGCCGACGAGGAGCGCGTCGTCCGGCTCGCCGGCTCCGTCGCGGCCGACCGGCTGCGCGTCGGGGACGCGCTGACCGTCGACGTGCGCAGCGGGTTCGTCTTCGAGGTCGTGCCCAAGTCCGAGGTCGAGGAGCTCGTCCTGGAGGAGGTGCCCGACATCGCCTACGAGGACATCGGCGGTCTGGGCACGCAGATCGAGGCGATCCGCGACGCCGTCGAGCTGCCGTTCTCCCACCCGGACCTGTTCCGCGAGCACGGGCTGCGCCCGCCCAAGGGCGTGCTGCTCTACGGCCCGCCCGGCTGCGGCAAGACGCTCATCGCCAAGGCGGTCGCCTCCTCGCTGGCCCGGATGGTCGCGGAGAAGCGCGGCGGCGACCCGAACGCGAAGAGCTTCTTCCTCAACGTCAAGGGTCCCGAGCTGCTGAACAAGTACGTCGGCGAGACCGAGCGGCACATCCGGCTCATCTTCGCCCGGGCCCGGGAGAAGGCCGGCCAGGGCATGCCCGTGGTGGTGTTCTTCGACGAGATGGAGTCGCTGTTCCGCACCCGGGGGACCGGCCTGTCCTCGGACGTGGAGACCACGATCGTGCCGCAGCTGCTCGCCGAGATCGACGGCGTCGAGCGGCTGGACAACGTGATCGTCATCGGCGCCTCCAACCGCGAGGACATGATCGACCCGGCGATCCTGCGTCCCGGCCGGCTCGACGTGAAGATCAAGATCGAGCGCCCGGACGCCGAGGGCGCCACGGAGATCTTCGGCAAGTACCTCACGGCCGACCTGCCCATCAACGCCGACGACCTCGCCGAGCACGGCGGCAACCGGCAGGCGGCCGTCGAGGCGATGATCCGCTCCGTGGTGGAGCGCATGTACGCCGAGGACGAGGACAACCAGTTCCTCGAGGTCACCTACGCCAGCGGTGACAAGGAGACCCTGTACTTCAAGGACTTCAACTCCGGGGCGATGATCGAGAACGTCGTCGACCGCGCCAAGAAGTCGGCGATCAAGGACTTCCTGGCCTCCGGCCACCGGGGGATCCGGGTGGAGCACCTGCTGTCGGCCTGCGTCGACGAGTTCCAGGAGAACGAGGACCTGCCGAACACGACCAACCCCGACGACTGGGCGCGCATCAGCGGCAAGAAGGGTGAGCGCATCGTGTTCATCCGCACCATCGTGCAGAAGAAGGGCGAGAACAACACCCCGCGCACGATCGACACCGTGAACTCCACGGGTCAGTACCTGTAG	MTDHPVRPDHSDAPTPSGRDAQLALLAAKNERLAEALRAAREQIVELKKQIDDLAKPPGTYATFLSDHGDGSVDVVSQGRKMHVQASPQLQLSDLAPGQEVKLNEAMTVVGAGGYERTGELVTVKEVLDEDRVLVVGRADEERVVRLAGSVAADRLRVGDALTVDVRSGFVFEVVPKSEVEELVLEEVPDIAYEDIGGLGTQIEAIRDAVELPFSHPDLFREHGLRPPKGVLLYGPPGCGKTLIAKAVASSLARMVAEKRGGDPNAKSFFLNVKGPELLNKYVGETERHIRLIFARAREKAGQGMPVVVFFDEMESLFRTRGTGLSSDVETTIVPQLLAEIDGVERLDNVIVIGASNREDMIDPAILRPGRLDVKIKIERPDAEGATEIFGKYLTADLPINADDLAEHGGNRQAAVEAMIRSVVERMYAEDEDNQFLEVTYASGDKETLYFKDFNSGAMIENVVDRAKKSAIKDFLASGHRGIRVEHLLSACVDEFQENEDLPNTTNPDDWARISGKKGERIVFIRTIVQKKGENNTPRTIDTVNSTGQYL				NA	NA	NA	NA	NA
AK001_00401	1596			hypothetical protein	ATGGCGGACTGGTTCTCGACAGCCGTGCGTGGCCAGGACTGCGCCGAGGCAGCGCTCCGGGTCGACTGGGGGTCGACGCCGCTGGGGGACCCTGCCGGCTGGCCCCTCGGGCTGCGCAGCGCCGTCGAGCTGTGCTTCAGCACGCGGTTCGCCGTCCTGGTGACGTGGGGGCCCGAGCTGACGATGATCTACAACGACGGCTACCGCGACATGCTCGGCAGCGACCTGCACCCGCGCGCGATGGGCGCCGCGGCCCCCGTGCTCTGGGGCCAGATCTGGGACGACGTCGGCCCTCTGTTCGACGAGGTGATGCGCTCGGGCCTGCCCACGTGGGATGTCGACATGCCCCTGATGATGAACCGGTCCGGCTTCCTCGAGGAGACCCGGTTCACCTTCTCCTACAGTCCGCTGCGCGACGACGACGGCGTCGTCCGCGGCGTCATGGACATCGCCACGGAGACGACCGACCAGGTCGTCGACCGGCGTCGGATGTCCACGCTGAGCCGCCTCTCCACGGCGCTGCACGGCCATCGCAGCGACCCGTCGACGGTGGCTCGCGTGGCCACGGAGGTGCTCCTCGAGGCCGAGGACGTCACCGAGGTCGACGTCTCGTTCGACGTCCCGGTCGGCACCGTGGACCGCGGCGCCGCCGACGACCAGGTCGACGGCGCCGGGTCGCCGCAGCCGTCGCCGGGGGCGCAGCCGGTGTGGCACGGTCCCCTGCTCGTCGCCCCGCTGGCCCCGCACCCGGACCGTGCCGCGCTCGGGAGCATCACCCTGCGGGGCACCGACCGCCGTCCGCTGGACGAGACCCAGCGCGCCTTCCTCCTGCTCCTGGCCACCACGGTGTCGAACGCCGTCGCGGAGGCGGACGAGCACCGCCGCCGGGTGACGCACCTGCGCGGCGTGAGCGACACGCTGCAGCGCGCCATGGTGCCGGACACTCCCTCCTCGCCCCGCTGGCAGGTGCGCTACCGCCCCGCCGACGACAACCTGAGCGTGGGCGGGGACTGGTTCGACGTGATCGAGCTGTCCGGCGGACGGTTCGGTCTCGTGGTGGGCGACTGCGTCGGGCACGGCATCGGTGCCGCCGCGTCCATGGGGCGTCTCAGCAGCGCCGGACGCGCCGTGCTGCTCGCCGGGTCCGGCCCGGCGCACACCCTGTCGATGCTCGACGACTTCGCCCGCACCGTGCCCGGAGCGGAGAACGCGACGGTCTTCTGCGGGATCGTCGATCCGCAGGCCATGACCCTGACCTACTCCAGCGCCGGGCACCCGCCCGGTCTCCTGCTGGCCGCCGACGGTTCCACGACGTGGCTCGCCGAGGCCCGCAGCGTGCCCCTGACGCTCCCGCACCGCGGGCGGACCGAGCACGAGACGACGCTGACCCCCGGCGACCTCGTCCTGCTCTTCACCGACGGGCTCGTCGAGCGTCGCGACACGCGGCTGCGCACCGGCCTGGAACGGCTCGCGACCGTGGCCGGGGCGGCGCGCGCCGAGACGTCGCTGGACGCCCTGCCCGAGCGGCTCATGGACGACATGCTGGCCGACGGCGCCCGGGACGACGTCGCGCTCGTGGTGTACCGCGCCGGCTGA	MADWFSTAVRGQDCAEAALRVDWGSTPLGDPAGWPLGLRSAVELCFSTRFAVLVTWGPELTMIYNDGYRDMLGSDLHPRAMGAAAPVLWGQIWDDVGPLFDEVMRSGLPTWDVDMPLMMNRSGFLEETRFTFSYSPLRDDDGVVRGVMDIATETTDQVVDRRRMSTLSRLSTALHGHRSDPSTVARVATEVLLEAEDVTEVDVSFDVPVGTVDRGAADDQVDGAGSPQPSPGAQPVWHGPLLVAPLAPHPDRAALGSITLRGTDRRPLDETQRAFLLLLATTVSNAVAEADEHRRRVTHLRGVSDTLQRAMVPDTPSSPRWQVRYRPADDNLSVGGDWFDVIELSGGRFGLVVGDCVGHGIGAAASMGRLSSAGRAVLLAGSGPAHTLSMLDDFARTVPGAENATVFCGIVDPQAMTLTYSSAGHPPGLLLAADGSTTWLAEARSVPLTLPHRGRTEHETTLTPGDLVLLFTDGLVERRDTRLRTGLERLATVAGAARAETSLDALPERLMDDMLADGARDDVALVVYRAG				NA	NA	NA	NA	NA
AK001_00402	1650	dop		Pup deamidase/depupylase	ATGGGTATCGAGACCGAGTACGGGGTGCTGTCCCCGGGCCGCCCGATGGCGAACCCGATGCTGATGAGCTCCCAGGTCGTGACCACCTACCGGGCGCTCGTCCAGGACGGACGCCCCGGCCACCCGCCGGCGCGATGGGACTACGACGACGAGGACCCGCTGGCCGACGCGCGCGGGTTCCACCTCGACCGCGCCGCCGCGCACCCCTCGTTGCTCACGGACGACCCGTCCCAGCCCGCGCCGTCCGGACCGGCCAGCGCCCAGGTGGGCGCCGCACCCACCGGCGCCGCCGAGGTCCCCGCGACGCCCGAGTCGCTCGAGCGTCCCGAGACCGAGGACTACGACGACCCGAGCGCCGCCAACTGCATCCTCACCAACGGGGCCCGCCTGTACGTGGACCACGCCCACCCCGAGTACTCCTCGCCGGAGGTCACGAACCCCCGTGACGCCGTGGTGTGGGACGTGGCCGGCGAGCGGGTCATGCTGGCGGCGAGCCGGCACCTCGCGCAGGTGCCGGGCACCGAGATCGTCCTGTACAAGAACAACGTGGACGGCAAGGGCGCCAGCTACGGCACCCACGAGAACTACCTGGTCGACCGCGACCTGCCGTTCGCCACCCTGGCAGAGCTCGTCACCGCGTTCCTGGTCACCCGGCAGGTCTTCACCGGCTCGGGTCGTGTCGGCCTCGGGCAGACGGGCGACGAGCCGGGGTTCCAGCTCTCCCAGCGGGCGGACTACATCGAGGCCGAGATCGGCCTGGAGACCACGCTGCGCCGCCCGATCGTCAACACCCGCGACGAGCCGCACGCCGACCGCACGCGCTGGCGGCGCCTGCACCTCATCCTCGGCGACGCCAACCACCTCGAGGTCGCCACCTACCTCAAGCTCGGCACGACGTCGCTGGTGCTGTGGGTGCTCGAGCACCTCGACGACCTCGCCGCGGTCGGGGTCCCCGCCCGGGCCGAGCTGTCGCGGCTGCGGCTGGCCGACCCGGTCCCGGCGGTCCGGCGGGTCTCGCGCGACCTGGACCTGACCGCCGAGCTGGACCTGGCCGACGGCACGACGGCCACCGCCCTGGAGATCCAGCGCCGCTGCGTCGACCTCGTCGAACGGGCGCTCGCGGCCCTGGGCTCGGACGAGGAGTCCGACGCGGTCGTGACGCGGTGGCGCGGCGTGTTGGACCGCCTGGGCGCCGACCCGATGAGCTGTGCCCGGGACGTCGAGTGGGTGGCCAAGCTGCGCCTGCTGGAGCGGCTGCGCACGCGCGACGGGCTGGACTGGGACCACCCGCGCCTGGGTGCGCTGGACCTGCAGTGGTCGGACGTGCGACCCGAGCGCGGGATCTACCACCGGCTGCTGTCCTCCGACGCCGTCGACCGGATCACCACCGAGGAGGACGTCGCCCGCGCGGTGCACCACCCGCCGACCGACACGCGGGCGTGGTTCCGCGGCGAGGTGATGGAGCGCTACGCCGACGAGGTCTCGGCGGCGAGCTGGGACTCGGTGATCTTCGACGTCGCCGGCGCCGCGTCCCTGCAGCGGGTGCCGATGCCGGACCCGCTGCGCGGCACCGCGCAGCACATCGGCCGGCTGCTGGACGCGAGCCCGGACGCGACGGCCCTGCTGACGGGGTTGCGAGGAGATGCGTGA	MGIETEYGVLSPGRPMANPMLMSSQVVTTYRALVQDGRPGHPPARWDYDDEDPLADARGFHLDRAAAHPSLLTDDPSQPAPSGPASAQVGAAPTGAAEVPATPESLERPETEDYDDPSAANCILTNGARLYVDHAHPEYSSPEVTNPRDAVVWDVAGERVMLAASRHLAQVPGTEIVLYKNNVDGKGASYGTHENYLVDRDLPFATLAELVTAFLVTRQVFTGSGRVGLGQTGDEPGFQLSQRADYIEAEIGLETTLRRPIVNTRDEPHADRTRWRRLHLILGDANHLEVATYLKLGTTSLVLWVLEHLDDLAAVGVPARAELSRLRLADPVPAVRRVSRDLDLTAELDLADGTTATALEIQRRCVDLVERALAALGSDEESDAVVTRWRGVLDRLGADPMSCARDVEWVAKLRLLERLRTRDGLDWDHPRLGALDLQWSDVRPERGIYHRLLSSDAVDRITTEEDVARAVHHPPTDTRAWFRGEVMERYADEVSAASWDSVIFDVAGAASLQRVPMPDPLRGTAQHIGRLLDASPDATALLTGLRGDA				NA	NA	NA	NA	NA
AK001_00403	195	pup		Prokaryotic ubiquitin-like protein Pup	ATGGCCGGTCAGGAACGGATCAACCCGCAGAACGACGACCGCACGCCCGACGACGACGCGGAGGCGCCGGCTCCGGCTCCGCAGGCCGCCGACCGCGACGCGGAGGTCGACTCGCTGCTCGAGGAGATCGACGAGGTCCTGGAGTCGAACGCGGAGTCGTTCGTCCGGGGGTTCGTGCAGAAGGGCGGGCAGTGA	MAGQERINPQNDDRTPDDDAEAPAPAPQAADRDAEVDSLLEEIDEVLESNAESFVRGFVQKGGQ				NA	NA	NA	NA	NA
AK001_00404	852	prcB	COG0638	Proteasome subunit beta	GTGACCTCCCCATCCGCTGAGTCCTCCGGTCGGCTGCCGGACGCCTTCCTGCGGCCGGGATCCAGCTCGTTCGTCGACTTCCTGGGCGAGCACGCCCCGGACCTGCTGCCGGGCAACCGGCCGGCGGGGACGACGGGCACCGCCGCGGAGCTGGCCCCGCACGCGACCACGATCGTCGCGCTCACCTTCGGTGACGACGAGAGCGGCCGCGGCGTGGTCATGGCCGGCGACCGACGCGCGACCATGGGCAACCTCATCGCCAGCCGCGAGATCGAGAAGGTCTTCGCCGCGGACGACTACTCCGCGGTCGGCATCGCGGGCTCGGCGGGCATCGCCCTGGAGCTCGTGCGGCTGTTCCAGCTCGAGCTCGAGCACTACGAGAAGATCGAGGGCTCCCAGCTCTCGCTGGACGGCAAGGCCAACCGGCTGGCCGCGATCATCCGCGGCAACCTGCCCCTGGCCCTGCAGGGACTGGCCGTCGTGCCCCTGTTCGGCGGGTTCGACCTCGACCGGTCCGGCGGACGCCTGTTCAGCTACGACGTCACCGGCGGACGCTACGAGGAGCACGACCACCACTCGGTGGGATCCGGCTCGGTGTTCGCCCGCGGGTCGCTGAAGAAGCGGTGGCGCCACGGCCTCGACGCCGACGCCGCCGTGGCGGTCGCCGTCGAGGCGCTCTACGACGCCGCGGACGACGACAGCGCGACCGGCGGGCCCGACACGGTCCGGCGCATCTGGCCGGTGGTGGCCACGGTCACCGCGGACGGCTACCGGCGGGTGGCCGACGACGCCCTGGCGGACGTCGTCGAACAGATCGTCGCCGAGCGGCGCGAGGGAGGTGCACGCGCGTGA	MTSPSAESSGRLPDAFLRPGSSSFVDFLGEHAPDLLPGNRPAGTTGTAAELAPHATTIVALTFGDDESGRGVVMAGDRRATMGNLIASREIEKVFAADDYSAVGIAGSAGIALELVRLFQLELEHYEKIEGSQLSLDGKANRLAAIIRGNLPLALQGLAVVPLFGGFDLDRSGGRLFSYDVTGGRYEEHDHHSVGSGSVFARGSLKKRWRHGLDADAAVAVAVEALYDAADDDSATGGPDTVRRIWPVVATVTADGYRRVADDALADVVEQIVAERREGGARA				NA	NA	NA	NA	NA
AK001_00405	720	prcA	COG0638	Proteasome subunit alpha	GTGAACATGCCGTTCTACGTCTCGCCCGAGCAGCTGATGAAGGACCGGGCGGACTTCGCGCGCAAGGGGATCGGCCGCGGGCGCTCCGTCGTCGTGCTGGCCTACGACGACGGGATCGCGTTCGCGACGGAGAACCCCTCGCGCGCGCTGCACAAGATCTCCGAGATCTACGACCGCATCGCCTTCGCCGCCGTGGGCAAGTACAACGAGTTCGAGAACCTCCGCGTGGCGGGGGTGCGGTACGCGGACCTGCGCGGGTACTCCTACGACCGCACCGACGTGACGGCCCGGGGCCTCGCGAACGCCTACGCCCAGACGCTGGGCACGGTGTTCACCACCGAGTCCAAGCCGCTCGAGGTCGAGCTGGTGGTCGCCGAGGTCGGTGCCACGCAGGACGACGACCAGCTGTACCGGCTGTCCTACGACGGCTCGGTCGCCGACGAGCACGGGTTCGTCGTGATGGGCGGGCAGGCGGACCAGCTCACCTCGCGGGTGCGTGACGGCTGGGAGCCGGGCATGGACCTGGCCGGCGTGCTGCGGCTGGCGGTGCGGACGCTGGGTGCGGTGAACACCGACGGCTCGGTCGCCGGTGAGGGGCAGGAGCGGGAGATCTCCGCCGCGGGGCTGGAGGTGGCGGTGCTGGACCGCCGCCGCGCGCGGCGGGCCTTCCGCCGGTGGCAGGGCGACGCGTTGGCGCGCCTGCTGCACGGAGACGACTGA	MNMPFYVSPEQLMKDRADFARKGIGRGRSVVVLAYDDGIAFATENPSRALHKISEIYDRIAFAAVGKYNEFENLRVAGVRYADLRGYSYDRTDVTARGLANAYAQTLGTVFTTESKPLEVELVVAEVGATQDDDQLYRLSYDGSVADEHGFVVMGGQADQLTSRVRDGWEPGMDLAGVLRLAVRTLGAVNTDGSVAGEGQEREISAAGLEVAVLDRRRARRAFRRWQGDALARLLHGDD				NA	NA	NA	NA	NA
AK001_00406	1362	pafA		Pup--protein ligase	ATGGACCGGAGGATCTTCGGGCTGGAGACCGAGTACGGCGTGACGTGCGCGGCCGACGACGGGCGGGGGCTGAGCGCCGACGAGGTCGCGCGCTACCTGTTCCGCAAGGTCGTGGCCTGGGGCCGGTCCTCGAACGTCTTCCTGCGCAACGGCTCGCGGCTCTACCTCGACGTCGGCTCGCACCCCGAGTACGCGACCGCCGAGTGCGACGACGTCCGCCAGCTCGTGGCCTACGACCGCGGCGGCGAGCGCATCCTCGAGGGTCTGGTGGCGGACGCGCAGCAGCGGCTGGAGCACGAGGGCCTGCCCGGCAAGGTCCACCTGTTCAAGAACAACACGGACTCGGCGGGCAACTCCTACGGCTGCCACGAGAACTACCTCGTGCGGCGGCAGGGCGACTTCTCCCGTCTCAGCGACGTCCTGGTCCCGTTCCTCATCACCCGGCAGGTGCTGACCGGCGCGGGCAAGGTGCTGGCCACCCCCCGCGGGGCGACCTACTGCCTGTCCCAGCGCGCCGACCACATCTGGGAGGCGGTCTCCAGCGCCACGACGCGCTCGCGGCCGATCATCAACACCCGCGACGAGCCGCACGCCGACGCCGAGCACTACCGGCGCCTGCACGTCATCGTCGGCGACTCCTCGATGTCGGAGACGACGACCCTGCTCAAGGTCGGGGCCACGGACCTGGTGCTGCGCCTGGTCGAGGCGGGGGTGCCCGTCCGTGACCTGACCCTGGAGAACCCGATCCGGGCCATCCGGGAGATCAGCCACGACTCCTCCGGCAAGCACGCCGTCCAGCTCGCCAACGGGCGCTCCGCGACGGCGGTCGACGTCCAGGGCGAGTACTACCAGCGGGTGCGCGAGCACGTCGACGCCCACCTGGACCCGACCCCGCAGGTCAAGCAGACGCTCGACCTGTGGGAGCGGGGCCTGCGCGCCCTGGAGTCCGGCGACCTGTCCCTCGTCGACCGCGAGCTGGACTGGGTCATCAAGTGGCGCATCATCGAGCGGTACCGGGCCAAGCACGACCTGTCGCTGGAGGACCCTCGCATCGCCCGCCTGGACCTGGCCTACCACGACATCTCGCGCACCGAGGGCCTGTACAACCTCCTCGCGGCGCGAGGGATGGTGGAACGGGTCGTGACGGACCTCGAGGTGTTCGAGTCCACGGCGATCCCGCCCCAGACGACGCGTGCCAAGCTGCGCGGCGACTTCGTGCGGGCGGCCCAGGACGCCCGGCGCGACTACACGGTCGACTGGGTGCACCTGAAGCTCAACGACCAGGCCCAGCGCACGGTGCTGTGCAAGGACCCGTTCCGCAACGTCGACGAGCGCGTCGAACGGCTCATCGAGTCCATGTGA	MDRRIFGLETEYGVTCAADDGRGLSADEVARYLFRKVVAWGRSSNVFLRNGSRLYLDVGSHPEYATAECDDVRQLVAYDRGGERILEGLVADAQQRLEHEGLPGKVHLFKNNTDSAGNSYGCHENYLVRRQGDFSRLSDVLVPFLITRQVLTGAGKVLATPRGATYCLSQRADHIWEAVSSATTRSRPIINTRDEPHADAEHYRRLHVIVGDSSMSETTTLLKVGATDLVLRLVEAGVPVRDLTLENPIRAIREISHDSSGKHAVQLANGRSATAVDVQGEYYQRVREHVDAHLDPTPQVKQTLDLWERGLRALESGDLSLVDRELDWVIKWRIIERYRAKHDLSLEDPRIARLDLAYHDISRTEGLYNLLAARGMVERVVTDLEVFESTAIPPQTTRAKLRGDFVRAAQDARRDYTVDWVHLKLNDQAQRTVLCKDPFRNVDERVERLIESM				NA	NA	NA	NA	NA
AK001_00407	936			hypothetical protein	GTGCTGCTGACACTGACCGGGTGCTCGACGCCCGTGTGGGAGCGGGTCGCACCGACCCAGGTGCCCTCCCAGACCCCGGTCCAGGTCAGCGGACCCCAGGGCGAGCCGCCGGCGCTGCAGTACCCGCAGCCGTACCAGGTCGTGCAGTCCGGCTCCCGCACCCTGTGGCCCGGGACCGGTGACCCGCTCGAACCCGGCCAGCAGGTGCTGCTGCACATGTACGCCGAGGACGGCCGGGACGGCAGCGTCATCTCCTCGACCTATCTCGACGCACCCGCCTGGTACACGTTCGACGCCGACTCGCTGGGCCAGAACGTCTACGACTCGCTGCGCGGCAAGCGGGTGGGCGCGCGGGTCCTGGTCGTCGAGCAGGACGGCGACGTGCCCGTCGTGCTGGTCGTGGACGTGCTGCCCACGCGGGCCACGGGTGACGTGGTCGAACCGGTCGAGGGACTGCCGACCGTGGTCCGGGACCCGGACGGCAGCCCGACGGTGCTCGTCGGCGACGGCGACCCGCCCGGTCAGCTCGTCGTCCAGCCGCTGATCCGCGGCGGCGGCCCCCAGGTGGAGGTCGGCCAGGTGGTCACGGCCCGCTACGTGGCCGTGCGGTGGAGCGACGGGCGTGTCGTCGACACCAGCTGGGAGCCCGGCGTGGCCCCGCAGTCGGCGACGATCGGCATCGGCCGGCTGATCGAGGGGTGGGACCAGGGGCTGCTCGAGCAGTCCGTCGGGTCCCAGGTGATGCTCGTGGTGCCCCCGCACCTGGGCTACGGTGGGACCGGGAGCGAGCTGGCCGACGAGACCCTCGTCTACGTCATCGACATCCTCGACGCCCGGTTCCAGGTCACGCAGGACGCCCCGGCGCCGGAGGGCGGCGAGCAGGACTCCGACGAGGCGGCCGACCAGGACCCGCCACCCAGCACGACCGAAGGATGA	MLLTLTGCSTPVWERVAPTQVPSQTPVQVSGPQGEPPALQYPQPYQVVQSGSRTLWPGTGDPLEPGQQVLLHMYAEDGRDGSVISSTYLDAPAWYTFDADSLGQNVYDSLRGKRVGARVLVVEQDGDVPVVLVVDVLPTRATGDVVEPVEGLPTVVRDPDGSPTVLVGDGDPPGQLVVQPLIRGGGPQVEVGQVVTARYVAVRWSDGRVVDTSWEPGVAPQSATIGIGRLIEGWDQGLLEQSVGSQVMLVVPPHLGYGGTGSELADETLVYVIDILDARFQVTQDAPAPEGGEQDSDEAADQDPPPSTTEG				NA	NA	NA	NA	NA
AK001_00408	771	hisF	COG0107	Imidazole glycerol phosphate synthase subunit HisF	ATGACCGTGGCCGTTCGGGTGATCCCGTGCCTCGACGTCGACGCCGGACGTGTCGTCAAGGGCGTCAACTTCGCCAACCTGCGCGACGCCGGCGACCCGGTCGAGCTCGCCGACCGGTACGACCACGAGGGCGCCGACGAGGTGACGTTCCTCGACGTCTCGGCCTCCTCGGGCGGCCGGGAGACGATGGTCGACGTCGTGCGCCGCACGGCGGAGCAGGTCTTCGTGCCCCTCACCGTGGGCGGCGGCGTGCGCTCGACCGACGACGTGGACCGGCTGCTGCGGGCCGGTGCCGACAAGGTCGGGGTCAACACCGCGGCGATCGCGCGTCCCGAGCTCATCGCGGAGATCGCCGACCGGTTCGGCAACCAGGTCCTCACGCTCTCGGTCGACGCCCGTCGCGTCACGGGGGACACCACGACGCCCTCGGGGTACGAGGTCACCACGCACGGCGGCCGCCGGGGGACCGGCATCGACGCCGTGGAGTGGGCGGAGCGCGCCGCCGGGCTCGGTGCCGGCGAGATCCTGCTGAACTCGATGGACGCCGACGGCACCACCGGCGGGTTCGACCTGGAGATGCTCCGCGCCGTGCGCGAACGCGTCCACGTCCCGCTGGTCGCCTCGGGCGGGGCGGGCACCCCCGAGGACTTCGTCGCCGCGGCGCGCGCCGGGGCGGACGCCGTCCTGGCGGCCAGCGTGTTCCACTTCTCCACGTTGACCATCGGCGAGGTCAAGGACGCGATGCGCGCCGCCGGCGTCGAGGTGCGCTGA	MTVAVRVIPCLDVDAGRVVKGVNFANLRDAGDPVELADRYDHEGADEVTFLDVSASSGGRETMVDVVRRTAEQVFVPLTVGGGVRSTDDVDRLLRAGADKVGVNTAAIARPELIAEIADRFGNQVLTLSVDARRVTGDTTTPSGYEVTTHGGRRGTGIDAVEWAERAAGLGAGEILLNSMDADGTTGGFDLEMLRAVRERVHVPLVASGGAGTPEDFVAAARAGADAVLAASVFHFSTLTIGEVKDAMRAAGVEVR	PGPT0007095_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657	NA	NA
AK001_00410	1800	msbA_1	COG1132	Lipid A export ATP-binding/permease protein MsbA	ATGAGCGACTCGCGCATCGCGTCCGCCAGCGACCTGGGGGTGCTCGCCACCCTGCGACGCGGTCTGGAGATCTCGCCGCAGATCGTCCAGGGGCTGTGGATCACGCTGGCGCTGGCCGTCCTGGCGGCCGCCGGCCGGGTCGTGGTGCCCCTGGCGGTCCAGCGCACGGTCGACGACGGCATCCTCGCCGCCGGCGGGCCGGACGCCTCGCGCGTCCTGACGCTGACCCTGCTCGCCGCCGGCGCGATCGTCGTGGCAGGGCTGTGCACCGCCGTCGTCAACGTCCGTCTCTTCCGCACCACCGAGGCCGGTCTGGCCACGCTGCGCGTGCGGGCGTTCCGCCACGTGCACGACCTGTCCACCCTGTCCCAGGGCTCCGAACGGCGCGGCGCCCTGGTCTCGCGCGTGACGACCGACGTCGACCAGATCTCCCACTTCGTGCAGTGGGGCGGGATCATGCTGCTGGTCTCCAGCCTGCAGATCGCCGTGGCCACCGTCCTCATGGCCGTGTACTCGCCGGCCCTGACCGTCGTGGTCTGGCTGTGCTTCGTGCCGCTGTTCATCGTCCTGCGCTACGCCCAGCGGTCGGTCGGCCGGGCCTTCGGGCGCTCGCGCGAGAAGGTCGGCGCGATGCTCGGTGCCGTCTCGGAGGCCGTCGTGGGCGCCGAGACCGTGCGTGCGTACGGCGTCGAGGACCGCACCGGCCGGCGCATCGACACGGCGATCGAGGCGGCCCGGCGGACCCAGGGCCGTGCGCTGCTGCTGGTGGCGAGCGTGTTCTCCTCCGGGACGTTCATGGCCAACCTGGTCCTGGCCGTCGTGGTGGTGGTGGGCTCCTACCTCGGCATCGGGGGAGGGCTCACGGCCGGGCAGCTCGTCGCGTTCCTGTTCCTGGTCCAGCTCTTCACCGGTCCGGTCCAGATGGCCACGGAGATCCTCAACGAGCTGCAGAACGCCGTGGCGGGATGGCGGCGCGTGCTGGCGGTCGTCGAGACGCCGCTGGACGTCGTCGACGCGGGCGAGGACGGCGTCGAGTCCCCCCGCGGGGACGCGCACGTCGCGCTGCGCGGGGTGCGCTACGCCTACCCCGAGGGGCCGGAGGTCCTGCACGGCGTCGACCTCGAGCTGCCCGCCCGCCGCAAGGTCGCCGTCGTCGGTCAGACGGGGTCGGGCAAGACGACGATCGCCAAGCTCGTCACGCGACTCATGGACCCCACCGAGGGTCGTGTGGAGCTCGACGGCGTCGACCTGCGGCAGATCCCGCTGGCCCGCCTGCGCGAGCGCGTGGTCCTGGTGCCGCAGGAGGGCTTCCTCTTCGACGGCACGGTGCTGACCAACGCCGCCTACGGGCTGCCCGGTGCCGTGCCCGACGACCCCGAGGTCCGTGCCCGGGTGGCCGCGGCCTTCGAGGCCCTCGGGCTGACGGACTGGGTCGAGGGGCTGGCGGCCGGGCTGGACACCGACGTCGGCCAGCGCGGCGAGGCGCTGTCCGCGGGCGAGCGGCAGCTCGTCGCGGTCGCGCGCGCCTACCTGGCCGCCCCCGACCTGCTCGTGCTGGACGAGGCGACCTCGGCGGTCGACCCGGCCACCGAGGTGCGCATCGCGCGGGCGCTGGACGCGCTCACCTCCGGACGCTCGACGATCACCATCGCCCACCGGCTGTCCACCGCCGAGGCGAGCGACCTCGTCGTGGTCGTCGACGACGGGCACGTCGTCGAGGTCGGGCCGCACGAGGAGCTGGCGGCGGCCGGCGGCGTGTACGCCCGCATGCACGCCTCGTGGGTGGCCCAGACCCGCTGA	MSDSRIASASDLGVLATLRRGLEISPQIVQGLWITLALAVLAAAGRVVVPLAVQRTVDDGILAAGGPDASRVLTLTLLAAGAIVVAGLCTAVVNVRLFRTTEAGLATLRVRAFRHVHDLSTLSQGSERRGALVSRVTTDVDQISHFVQWGGIMLLVSSLQIAVATVLMAVYSPALTVVVWLCFVPLFIVLRYAQRSVGRAFGRSREKVGAMLGAVSEAVVGAETVRAYGVEDRTGRRIDTAIEAARRTQGRALLLVASVFSSGTFMANLVLAVVVVVGSYLGIGGGLTAGQLVAFLFLVQLFTGPVQMATEILNELQNAVAGWRRVLAVVETPLDVVDAGEDGVESPRGDAHVALRGVRYAYPEGPEVLHGVDLELPARRKVAVVGQTGSGKTTIAKLVTRLMDPTEGRVELDGVDLRQIPLARLRERVVLVPQEGFLFDGTVLTNAAYGLPGAVPDDPEVRARVAAAFEALGLTDWVEGLAAGLDTDVGQRGEALSAGERQLVAVARAYLAAPDLLVLDEATSAVDPATEVRIARALDALTSGRSTITIAHRLSTAEASDLVVVVDDGHVVEVGPHEELAAAGGVYARMHASWVAQTR				NA	NA	NA	NA	NA
AK001_00411	396	hisI	COG0139	Phosphoribosyl-AMP cyclohydrolase	GTGCAGAACCAGGACTCCCTCGACCCGGCCGTGGCCGCCCGCCTCAAGCGTGACGAGCAGGGCCTCGTCGCCGCGATCGTGCAGCAGCACGACTCCGGCGAGGTGCTGATGCTCGGCTGGATGGACGACGAGGCCCTGGGCCGCACGCTGACGACGGGACGGGTGACGTTCTGGAGCCGGTCCCGCGGCGAGTACTGGCGCAAGGGGGACACCTCCGGACACCGCCAGTACGTCCGGTCCGTCGCCCTCGACTGCGACGGCGACGCCCTGCTCGTGCGCGTGGACCAGGTGGGCGCCGCCTGCCACACGGGCACGCGCACCTGCTTCGAGGCCGGCGGCGAGCTCAGCGCCGTCGTCGGCCGCCGCCCCGACGAGACCGCCGAGGAGAACCGGTGA	MQNQDSLDPAVAARLKRDEQGLVAAIVQQHDSGEVLMLGWMDDEALGRTLTTGRVTFWSRSRGEYWRKGDTSGHRQYVRSVALDCDGDALLVRVDQVGAACHTGTRTCFEAGGELSAVVGRRPDETAEENR	PGPT0007095_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657	NA	NA
AK001_00412	1602	trpE	COG0147	Anthranilate synthase component 1	GTGACCACTCCTGCCTCGACCTCCGCCCAGGCTCCTGCCGTCGCACCGACGGCCGACGAGCTCACCTGGGGCGCCACGTGGCCGGGACTGGGCACCTTCCGCGAGCTGGCGCGCGACCGGCGGGTCATCCCCGTGGTGCGCCGCGTCCTGGCCGACGACGTCACCCCGGTCGGGCTGTACCGCACGCTCGCGCAGGGACGCCCCGGCACCTTCGTGCTGGAGTCGGCCGACTCCGGCGGCGCCTGGGCGCGGTGGTCGTTCGTCGGCGTGGACTCCCGGGCGACGTTGCTGTCCGACGGCGGCCGCGCCGTCTGGCGGGGCGACGTGCCTGCCGGCATCCCGGCCGAGGGCGACGTGCTCGACGTGCTCGAGGCCGCCCTGCAGGCGTTGCGCACCGAGCCGATCGACGGGCTGCCCCCGCTGACCGGCGGCTTCGTCGGGGCGATGGGCTGGGACGTCGTCCGGCACTGGGAGCCGACGCTGCCGGCCGAGGCTCCCGACGAGCTGGACGTGCCCGAGGTCGCGCTGTCGCTGGCCACCGACCTCGTCGCGTTCGACCACCACTCCGGGTCGGTGTGGCTCATCGCGAACGCGATCAACGCCGACGACACCGACGAGCGGGTCGACGAGGCCCACGCGGACGCGGTGGCCCGGCTGGACCGGCTGGCCGCGGGTCTCGCGGCGCCGACCACGCCGGTGCGCACCGTCGTCGACCCGACCGCCGCGGAGCCCGGGCTGGAGTTCCGCTCGACCCGCGACGACTTCGAGGACGCGGTGCGGGCCGGCAAGGAGGCGATCCGCGAGGGCGAGGTCTTCCAGGTCGTGCTCTCGCAGCGGCTCGACCTCGACTGCCCGGCCGAGCCGCTGGACGTCTACCGGGCGCTGCGGACGATCAACCCGAGCCCGTACATGTACTACTTCCAGCTGCGCGACCACCGCGAGCGGGACTTCGCGGTCGTGGGCTCCAGCCCCGAGACCCTGGTCAAGGTCGACGCCGGGCACGTCACGACGTACCCGATCGCCGGGTCGCGGCCGCGCGGCGCGACCGTCGAGGAGGACGTGGCGCTGGCCGAGGAGCTCATCGCCGACCCGAAGGAGCGGGCCGAGCACCTCATGCTCGTCGACCTGTCCCGCAACGACCTGGTCAAGGTGTGCGAGCCCACCACCGTCGAGGTCGTCGAGTTCATGGTCACGCGCCGGTTCAGCCACATCATGCACCTGTGCTCCACCGTCGTGGGTCGGCTGCGTCCCGGCGCCACCGCGCTGGAGACGTTCCGGGCGACCTTCCCGGCCGGGACGCTCTCCGGCGCCCCGAAGCCCCGGGCGATCGCCCTGATCGACGAGCTGGAGCCCGCCTCGCGCGGGATCTACGGCGGGACCTGCGGGTACCTGGACTTCGGCGGGAACATGGACATGGCCATCGCCATCCGGACGGCGTTCCTGCGCGAGGGTCGGGCCTCGGTCCAGGCCGGCGGCGGCATCGTGGCCGACTCGGTGCCGGCCCTGGAGTACGCGGAGTCGCGGAACAAGGCCGCCGCCGCCGTCCGTGCGGTCCAGCTCGCGGCGCGGTTCGCCGACCTCGGCACGGGGCGGGCGTCGTGA	MTTPASTSAQAPAVAPTADELTWGATWPGLGTFRELARDRRVIPVVRRVLADDVTPVGLYRTLAQGRPGTFVLESADSGGAWARWSFVGVDSRATLLSDGGRAVWRGDVPAGIPAEGDVLDVLEAALQALRTEPIDGLPPLTGGFVGAMGWDVVRHWEPTLPAEAPDELDVPEVALSLATDLVAFDHHSGSVWLIANAINADDTDERVDEAHADAVARLDRLAAGLAAPTTPVRTVVDPTAAEPGLEFRSTRDDFEDAVRAGKEAIREGEVFQVVLSQRLDLDCPAEPLDVYRALRTINPSPYMYYFQLRDHRERDFAVVGSSPETLVKVDAGHVTTYPIAGSRPRGATVEEDVALAEELIADPKERAEHLMLVDLSRNDLVKVCEPTTVEVVEFMVTRRFSHIMHLCSTVVGRLRPGATALETFRATFPAGTLSGAPKPRAIALIDELEPASRGIYGGTCGYLDFGGNMDMAIAIRTAFLREGRASVQAGGGIVADSVPALEYAESRNKAAAAVRAVQLAARFADLGTGRAS	PGPT0007095_673	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657	NA	NA
AK001_00413	612			hypothetical protein	GTGATCCGCACGCGCTCGCGCGCCGTGGTGCTGCTGCTCGCGCTGGGCGGGGCGACCTTCTGCGTCTCGGCACCGGTCTGGCTGCGCACCACGGTGGCCACGGCCCTGGAGCCGGAGGTCGCGGTCGAGGTCGCGGGCACGTCGGCCGCCCCCGTGGTCAGCGCCGCGGCGTTCGTGACCCTGGCGTGCGCGCTGGCCACGACGCTCGCCGGCCGGGTCGCCCGGCGGCTGGCCCTGGTCGTGGCCGGGCTCGCCGGGCTGGCCGTCGTGGCCGGCACCGTCGCCGTGCTGCGCGACCCGGCCGGTCCGGCGGTCGCCGCCGCCGCGGACGCCGCCGGCGTGACCGAGCTGACCGCCCCCGTGGACCTGACGCCGTGGCCGTGGCTGGCCCTGGTCACCGGCGCCGCGATCGTCGTCGTCGCCGTCCTCGCCACGCTCGGCGCCGGGAGGTGGAGCGCCACCGGCGGACGGCACGAGCGGGTGCCGGCCGCCGGGCCGGTCGACGGCCCGGTCGACGGTTCCGGGCAGGCCGCGGCCGGCGCGGACGAGGCCGACCCGCAGGCCGACTGGGACGCCCTCTCCCGCGGCACCGATCCGTCGTCGGACCGGTAG	MIRTRSRAVVLLLALGGATFCVSAPVWLRTTVATALEPEVAVEVAGTSAAPVVSAAAFVTLACALATTLAGRVARRLALVVAGLAGLAVVAGTVAVLRDPAGPAVAAAADAAGVTELTAPVDLTPWPWLALVTGAAIVVVAVLATLGAGRWSATGGRHERVPAAGPVDGPVDGSGQAAAGADEADPQADWDALSRGTDPSSDR				NA	NA	NA	NA	NA
AK001_00414	279			hypothetical protein	ATGACCGACCACAGCACCGCCGAGCCGACGTACCTGCCGGAAGCGGTCCCGCCCACCAACCACGGCCACACGCTGGCGGCGTGGACCGCGATGACCGGCGTCATCCTGGGTGCGCTCCTCGCCTCGCTCGGCTGCCTGCCGGGCGTGCCCTTCGCGCTCTTCTGGGCCGGGCTCGCCGTCGTGGTGGTCTCCTGCGTCGTCGGCCTCGTCATGCGCAACATGGGCTATGGCCAGCCGCGGCCCGGCATGCCCGCGCGGCAGGACCGGGCCGGGCACTGA	MTDHSTAEPTYLPEAVPPTNHGHTLAAWTAMTGVILGALLASLGCLPGVPFALFWAGLAVVVVSCVVGLVMRNMGYGQPRPGMPARQDRAGH				NA	NA	NA	NA	NA
AK001_00415	825	trpC	COG0134	Indole-3-glycerol phosphate synthase	ATGACAGTCCTGGAGGACATCGTCGCCGGGGTCCGGGAGGACCTCGCCGAGCGTCAGGCACGGACCTCGCTCGAGGAGCTCAAGCAGCGTGCTGCGCGGGTTCCCGGGGCCCTGGAGTGCTGCGACATGCTGCGGTCCGAGGACCGCGTCGCGGTGATCGCCGAGGTCAAGCGGTCCAGCCCGTCCAAGGGGGACCTCGCCCCGATCAGCGATCCCGCCGCCCTCGCCGGGGAGTACGCCGCCGGCGGCGCCAGCGTCATCTCGGTGCTGACCGAGCAGCGTCGCTTCGGCGGCAGCCTGGCCGACCTCGACGCCGTCCGCGCGACCGTCGACGTCCCCGTGCTGCGCAAGGACTTCGTCGTGACCCCCTACCAGGTCTGGGAGGCGCGCGCGCACGGCGCCGACCTGGTGCTGCTCATCGTCGCCGCGCTGGAGCAGACGGTGCTGACCTCGCTCGTCGAGCGGGTGCACTCCCTGGGCATGACGGCCCTGGTGGAGGCGCACACCGCCGACGAGGTGCACCGGGCGCTCGACGCCGGCGCCCGCGTGGTGGGGATCAACGCCCGCGACCTGAAGACCCTCGAGGTGCGGCGCGACACCTTCGCCCAGCTCGCCCCCCTCATCCCCGACGACGTCGTCCGCGTCGCCGAGTCCGGCGTCCGCGGTCCGCACGACGTGATGGAGTACGCGCGGTCCGGGGCCCACGCGGTCCTGGTCGGCGAGGCGCTCGTGACCGACGGCGAGCCGCGTCGCTCGGTGGCCGACCTGGTCGCGGCCGGTCAGCACCCCTCGCTCTGGTCGGTCCGGCCGGCCGTGCAGCCCTGA	MTVLEDIVAGVREDLAERQARTSLEELKQRAARVPGALECCDMLRSEDRVAVIAEVKRSSPSKGDLAPISDPAALAGEYAAGGASVISVLTEQRRFGGSLADLDAVRATVDVPVLRKDFVVTPYQVWEARAHGADLVLLIVAALEQTVLTSLVERVHSLGMTALVEAHTADEVHRALDAGARVVGINARDLKTLEVRRDTFAQLAPLIPDDVVRVAESGVRGPHDVMEYARSGAHAVLVGEALVTDGEPRRSVADLVAAGQHPSLWSVRPAVQP	PGPT0007080_799	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007080-trpC-K01609	NA	NA
AK001_00416	1305	trpB	COG0133	Tryptophan synthase beta chain	GTGCCCGAGCAGCCCCACCAGCCCGTGCGCGACGCGCTGACCGAGACCCTGGCCGACCAGGACGCCGGCCGCCTCGCCGACGTCCACGGGCCGTACTTCGGCCAGTTCGGCGGCCGGTACGTCCCCGAGGCGCTGATCGCCGCCCTCGACGAGCTCGAGGCCGAGTTCCGCAAGGCCCAGCAGGACCCGGCGTTCGCCGCCGACCTGAGCCGTCTGCACCGGGAGTACACGGGCCGCCCCTCGCCCCTGACCGAGGTGCCGCGGTTCGCCGAGCACGCCGGCGGCGACGCGGTGCGCATCTTCCTCAAGCGCGAGGACCTGAACCACACCGGCTCGCACAAGATCAACAACGTGCTGGGCCAGGCCCTGCTGGTCAAGCGCATGGGCAAGTCGCGCGTCATCGCGGAGACCGGCGCCGGCCAGCACGGGGTGGCCACCGCGACCGCCGCGGCCCTCATGGGCCTGGAGTGCGTCGTCTACATGGGCGAGGAGGACACCCGCCGCCAGGCGCTGAACGTGGCGCGCATGGAGCTGCTCGGGGCCACCGTCGTCCCGGTGACCCTGGGGACCCGGACGCTCAAGGACGCCATCAACGAGGCGCTGCGCGACTGGGTCACCAACGTCGAGTCCACGCACTACCTGCTCGGCACCGTCACCGGCCCGCACCCGTTCCCCGAGATGGTGCGCGAGTTCCACCGGATCATCGGCGCCGAGGCCCGCGAGCAGATGCTCGAGCGCGTGGGTCGCCTGCCGGACGCCGTCGCGGCGTGCGTCGGCGGCGGGTCCAACGCGCTCGGCATCTTCAACGCCTTCCTCGACGACGACGGCGTCGACCTGTACGGCTTCGAGGCCGGCGGCGAGGGCATCGAGTCCGGCCGCCACGCCGCGCGGTTCTCCGGCGGCGCCCCCGGCGTGCTGCACGGGGCACGGTCCTACCTGCTGCAGGACGACGACGGCCAGACCCGCCCCAGCCACTCGGTGTCCGCGGGGCTGGACTACCCGAGCGTGGGCCCGGCCCACTCGTGGCTGCACGACATCGGCCGCGCCACCTACGAGCCGGTGACGGACGCGGAGGCGATGGAGGCCTTCCGGCTGCTGTGCCGGACCGAGGGCATCATCCCCGCCATCGAGTCCGCGCACGCCCTGGCGGGCGTGCTGCGCGTCGGCCGCCGGCTGGCCGACGCCGGGCAGCGCGACCAGGTGCTCCTGGTCAACCTCTCCGGACGCGGGGACAAGGACGTGGCCACGGCGGCACGCTGGTTCGGGCTGCTGCACGAGGAGCCCGCGACGGAGGGAGACCAGTGA	MPEQPHQPVRDALTETLADQDAGRLADVHGPYFGQFGGRYVPEALIAALDELEAEFRKAQQDPAFAADLSRLHREYTGRPSPLTEVPRFAEHAGGDAVRIFLKREDLNHTGSHKINNVLGQALLVKRMGKSRVIAETGAGQHGVATATAAALMGLECVVYMGEEDTRRQALNVARMELLGATVVPVTLGTRTLKDAINEALRDWVTNVESTHYLLGTVTGPHPFPEMVREFHRIIGAEAREQMLERVGRLPDAVAACVGGGSNALGIFNAFLDDDGVDLYGFEAGGEGIESGRHAARFSGGAPGVLHGARSYLLQDDDGQTRPSHSVSAGLDYPSVGPAHSWLHDIGRATYEPVTDAEAMEAFRLLCRTEGIIPAIESAHALAGVLRVGRRLADAGQRDQVLLVNLSGRGDKDVATAARWFGLLHEEPATEGDQ	PGPT0007075_568	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007075-trpB-K01696	NA	NA
AK001_00417	852	trpA	COG0159	Tryptophan synthase alpha chain	GTGACCCGGACGGTGACGACGTCGCCGACGGCGACGCGCCTGGACGCGCTGCGCGCGCAGGGCCGGCCCGCGCTCGTGGGCTACCTGCCCGTGGGCTACCCGGACGTGGAGCGGTCGGTGCAGGCCATGACGACGATGGTCGACGCCGGCGTGGACGTCGTCGAGATCGGCGTGCCCTACTCGGACCCGGTCATGGACGGTCCCGTCATCCAGCAGGCCGCCGAGGCGGCGCTGGCCGGCGGCGCGCGCGTGCGCGACGTGCTGCGCGTGGTCGAGGCCGTGGCCGAGCGGTCCGGCGGCGAGGTCCCGGCGCTGGTCATGTCGTACTACAACCCCGTGCTGCGCTACGGCGTGGCCGCCTTCGCCCGGGACCTCGCGGCCGCGGGCGGAGCGGGCATGATCACGCCCGACCTCATCCCGGACGAGGCGGACGACTGGAACGCCGCCGCCGACGAGCACGGGCTGGACAAGGTCTACCTCGTCGCGCCGAGCTCGACGCCCGAGCGGCTGCGCCTGACCGCGCAGGCCTCGCGCGGCTTCGTCTACGCCGCCTCGACGATGGGCGTCACCGGCACCCGTGCCTCGGTGGGCGACCGCGCCGAGCAGCTCGTCGCCGACACCCGGGCGGCCGGGGCCTCGCACGTGTGCGTCGGCCTCGGCGTCTCGACGGGGGAGCAGGCCGCCGAGGTCGGCCGCTTCGCCGACGGCGTGATCGTCGGCTCGGCGTTCGTGCGCACGCTGCTGGGCGAGGAGCCCTGGCCGGAGCGTCTCGAGGCGCTCGGCGAGGTCACGCGCGAGCTGGCCGCCGGCGTCGCGCGCGCCCGCACCGGCGTCGCCGGGGGTGACGCATGA	MTRTVTTSPTATRLDALRAQGRPALVGYLPVGYPDVERSVQAMTTMVDAGVDVVEIGVPYSDPVMDGPVIQQAAEAALAGGARVRDVLRVVEAVAERSGGEVPALVMSYYNPVLRYGVAAFARDLAAAGGAGMITPDLIPDEADDWNAAADEHGLDKVYLVAPSSTPERLRLTAQASRGFVYAASTMGVTGTRASVGDRAEQLVADTRAAGASHVCVGLGVSTGEQAAEVGRFADGVIVGSAFVRTLLGEEPWPERLEALGEVTRELAAGVARARTGVAGGDA	PGPT0007070_439	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007070-trpA-K01695	NA	NA
AK001_00418	1023	lgt	COG0682	Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase	ATGAGCGCGGACCGTCTCGTGACGCTGATCCCCAGCCCGCCCGAGCACACCTGGTACCTCGGTCCCGTCCCGCTGCGCGCCTACGCCCTGGCGATCCTCGCCGGCATCGTCGTCGCCGTCTGGATGACGATGCGCCGCTGGAAGGACCGCGGCGGCGACCCCGACGACGTCCTCGAGATCGCGTTCTGGGCCGTCCCCTTCGGCATCGTCGGCGGGCGGATCTACCACGTGATCTCCACGCCGGACCCCTACTGGGGCGAGAACGGCGACCCCGTCTCGGCGCTGTACATCTGGCAGGGCGGACTGGGCATCTGGGGAGCGGTCGCGCTCGGAGCCGTGGGCGCCTGGATCGGCTGTCGCCGCCAGGGGGTGCGCCTGAGCAGCTTCGCCGACGCGCTGGCCCCGGGCCTGCTCGTCGCCCAGGCGATCGGACGGCTCGGCAACTGGTTCAACCAGGAGCTCTTCGGCGCCCCGACGGACCTGCCGTGGGGGCTGGCGATCGACCCCGCCTACCTGCCGATCGACCCGGCCACGGGCGTGCAGTACGCCGAGGGCACGCTGTTCCACCCCACGTTCCTGTACGAGATGCTGTGGAACCTCGCGGCTGCCGCCCTTCTGATCTGGCTCGATCGCCGGTACAGGCTCGGTCATGGGAGGGTATTCTGGGCCTACGTCGCGGTCTACACCCTCGGTAGGGTGTGGATCGAGATGCTCCGCATCGACACCGCTGAGATGGTGCTCGGGCTGCGGCTGAACGTGTGGACGTCGATCGTCGTCGGCCTGGGTGCCCTCGTCGCGTTCGTCGTCATCGGTCGGCTGCGTCCCGGTCGCGAGGACGGTGTCGCACTGCCGGGTCGTGCGGACGACACGCGGCAGGTCACCGATGCACAGACCGAGACCGACGACGCTCCCGCGGGGACGGCCGACTCCGGCCCCGGCGAGGAGGTCACCGACACGAGAGCCACGACCGACCAGGACGCGTCGTCGGCCGGGACCGACCAGGACCCGGCCTCGCGCTCCTAG	MSADRLVTLIPSPPEHTWYLGPVPLRAYALAILAGIVVAVWMTMRRWKDRGGDPDDVLEIAFWAVPFGIVGGRIYHVISTPDPYWGENGDPVSALYIWQGGLGIWGAVALGAVGAWIGCRRQGVRLSSFADALAPGLLVAQAIGRLGNWFNQELFGAPTDLPWGLAIDPAYLPIDPATGVQYAEGTLFHPTFLYEMLWNLAAAALLIWLDRRYRLGHGRVFWAYVAVYTLGRVWIEMLRIDTAEMVLGLRLNVWTSIVVGLGALVAFVVIGRLRPGREDGVALPGRADDTRQVTDAQTETDDAPAGTADSGPGEEVTDTRATTDQDASSAGTDQDPASRS				NA	NA	NA	NA	NA
AK001_00419	4569	gltB	COG0067	Glutamate synthase [NADPH] large chain	ATGACCACGCCGCAGCACTGGGTCGCGCCACCCGAGGCGCAGGGCCTCTACGACCCCGCGAGCGAGCACGACGCCTGTGGCGTCGCGTTCGTCGCGACACTGCGAGGGACCCCCGGGCGCGACATCGTCGACGCCGGCCTCACCGCCCTGCTCAACCTCGACCACCGCGGAGCGGTGGGTGCCGAGGAGGACAGCGGTGACGGAGCGGGCATCCTGACCCAGATCCCCGACGCCTTCCTGCGCGACGTGGTGGACGCCGAGCTCCCGCCGGCGGGCCAGTACGCCATCGGCATGGCGTTCCTGCCGCAGGAGCTCGAGGACGCGGACAAGCTCGCCCGGCGGTTCGAGACGATCGCCGCCGAGGAGAAGCTCGACGTCCTCGCCTGGCGCGACGTCCCGGTGACGGTCGACCTGGTGGGTCCGACCGCCCGGGCCTCGATGCCGACGTTCCGCCAGGTCGTGGTCGCCGACCCGCAGCGCGAGCTGGCGGGCATCGAGCTCGACCGTCGCGCCTACCGGCTGCGCAAGCGGGCGGAGAACGAGCTGGAGCTCTTCCTCGCCTCGCTGTCGGCCCGCACGCTGACCTACAAGGGCATGCTGACCACGGCCCAGCTCGAGCCGTTCTTCCCGGACCTGTCCGACCCGCGGTACGCCTCGGAGATCGCGCTGGTCCACTCCCGGTTCTCGACGAACACGTTCCCGTCGTGGCCCCTGGCCCAGCCGTTCCGCCTCATCGCCCACAACGGCGAGATCAACACCGTGCGCGGCAACCGCAACTGGATGGCGGCCCGCGAGGGCAAGCTGGCGAGCGAGGCGCTGGGCGACCTGGGCCCCCTGCTGCCCGTGTGCAGCCCGGGGTCCAGCGACTCCGCGAGCTTCGACGAGGTCCTCGAGCTGCTCCACCTCTCGGGCCGCTCGCTGCCGCACTCGGTGCTGATGATGGTCCCCGAGGCGTGGGAGAACCACGACGAGATGGACCCCGCGCGGCGCGCCTTCTACCAGTACCACGCGAACCTCATCGAGCCGTGGGACGGCCCGGCCTGCCTGACCTTCACCGACGGCACGCTGATCGGTGCCGTCCTGGACCGCAACGGTCTGCGTCCGGGCCGGTTCTGGGTCACCGAGGACGGGCTCGTCGTGCTGGGCTCCGAGGCGGGCGTGCTCGACCTCGACCCGGCCACGGTGGTGCGCAAGGGCCGCCTCGAGCCCGGCCGGATGTTCCTGGTCGACACCGCGCAGGGGCGCATCGTCGAGGACGACGAGGTCAAGTCCCAGCTCGCGTCCCAGCGCCCGTACGGCGAGTGGGTCGAGCAGAACTCGATCTCGCTGGACTCGCTGCCGGAGCGTGAGCACGTCGCCCACTCGCCGGCGTCGGTGCAGCGGCGCCAGCGGGCGTTCGGCTACACCTCCGAAGAGCTGAAGATCATCCTGACGCCGATGGCCAACACCTCGGCGGAGCCGCTCGGCGCGATGGGCTCGGACACCCCGGTGGCCGTGCTGTCGAACCGGCCGCGGCTGCTGTTCGACTACTTCACCCAGATGTTCGCCCAGGTGACCAACCCGCCGCTGGACTCGATCCGCGAGCAGCTGGTCACCTCGATCGGCAGCGCCATCGGCCCGGAGCCGAACCTGCTGGAGGCGACGCCGCAGCACGCCCGCAAGCTCGAGCTGCCGTTCCCGGTGCTGGACAACGACGAGCTGGCCAAGATCGTGCGCATCGAGCGCGACCAGCGGCTGGAGGGCGAGTTCCGCGCCGTCATCGTGCGCGGTCTCTACGACGTCTCGGGCGGCGGACGTGCTCTGCAGGCCCGGCTGGAGGAGATCTTCGCCCAGGTCGACGCGGAGATCGAGGCCGGGGCGACGCACATCGTGCTGTCGGACCGGGACTCGGACGCCGAGCGCGCCCCGATCCCGTCGCTGCTGCTGACCTCGGCCGTGCACCACCACCTGCTGCGCCGGCACACCCGCACGCAGATCTCGCTGGTGGTCGAGGCCGGAGACGTGCGCGAGGTCCACCACGTCGCGCTGCTGATCGGCTACGGCGCGGCGGCCGTCAACCCGTACCTGGCGATGGAGACCGTCGAGGACCTCGCCCGGCGCGGGTACCTCCAGGTCACCCCCGAGGCCGCGGTGAAGAACCTCATCACGGCGCTGGGCAAGGGCGTGCTCAAGGTGATGTCCAAGATGGGCATCTCCACGATCATGTCCTACCGGGGCGCCCAGGTCTTCGAGGCCGTCGGTCTGTCCCACGAGCTGGTCGACGACTACTTCACGGGCACCACGAGCCGCCTGGCCGGCATCGGCCTGGACGTGATCGCCGCCGAGACCGCCGCGCGGCACGCCGAGGCCTACCCGGCCTCCGGCAACCACACGCCGCACGAGCGCCTGACCACCGGTGGCGAGTACCAGTGGCGCCGGGACGGCGAGGAGCACCTCTTCGACCCGGAGACCGTGTTCCGGCTGCAGCACGCGACGCGCTCGGGCCGCATGGACATCTTCCGCCAGTACACCCAGCGGGTGGACGAGCAGTCCGAGCGGCTCATGACGCTGCGCGGCCTGCTGGAGTTCACCGGCGACCGCGAGCCCGTGCCGATCGACGAGGTCGAGCCGGTCAGCGAGATCGTCAAGCGCTTCAACACCGGCGCGATGTCCTACGGGGCCATCAGCCAGGAGATGCACGAGACGCTCGCCATCGCGATGAACCAGCTCGGCGGACGGTCGAACTCCGGCGAGGGCGGCGAGGACACCGAGCGTCTCTACGACCCCGAGCGCCGCTCGCGCGTCAAGCAGATCGCCTCGGGCCGGTTCGGCGTCACCAGCGAGTACCTCACGCAGGCCGACGACATCCAGCTCAAGCTCGCCCAGGGCGCCAAGCCCGGCGAGGGCGGCCAGCTGCCCGGACCCAAGGTCTACCCGTGGGTGGCCAAGACGCGTCACTCGACGCCGGGCGTCGGGCTGATCTCGCCGCCGCCGCACCACGACATCTACTCGATCGAGGACCTCGCGCAGCTCATCCACGACGCCAAGAACGCGAACCCGAGCGCCCGGGTGCACGTCAAGCTCGTCTCCGAGTTCGGCGTCGGCACCGTGGCCACGGGCGTGTCCAAGGCGCACGCGGACGTCGTGCTCATCTCCGGGCACGACGGCGGCACGGGCGCGAGCCCGCTGACCTCGCTGAAGCACGCGGGCACGCCGTGGGAGATCGGCCTGGCCGAGACGCAGCAGACCCTGGTGCTCAACAACCTGCGCGACCGCATCACGGTCCAGGTCGACGGGCAGATGAAGACCGGGCGCGACGTCGTCGTGGCCGCGCTGCTCGGTGCCGAGGAGTTCGGTTTCGCCACCGCGCCGATGGTCGTCTCGGGCTGCATCATGATGCGGGTCTGCCACCTGGACACCTGCCCGGTGGGCGTGGCCACGCAGAACCCCGAGCTGCGCCGCCGGTTCACCGGCAAGCCGGAGTTCGTCGTGAACTTCTTCGAGTACATCGCCGAGGAGGTGCGCGAGCACCTGGCGGCGCTCGGCTTCCGCTCCGTCGAGGAGGCCGTGGGCCAGGTCCAGCGCCTGGACACGCGCCGCGTCGTCGACCACTGGAAGGCCCAGGGCCTCAACCTGGCCCCGGTGCTGGAGCGGGTCGAGCCCGTGGAGGGGTCGTCGCTGCACCGCACGCACGACCAGGACCACGGCCTGGACAAGGCGCTCGACCAGCAGCTCATCGCCCAGGCCCGGCCCGCCCTCGAGGACGGCCGGCCCGTGCGGATCGAGCTGCCCGTGCGCAACGTCAACCGGACGGTCGGCACCATGCTCGGTCACGAGGTGACCAAGCGGTACCGCGGCGACGGCCTGCCCGACGGCACCGTCGACGTGACCCTCACCGGGTCCGCGGGGCAGTCGTTCGGCGCGTTCGTGCCGCACGGTGTCACGCTGCGCTTGTACGGGGACGCGAACGACTACGTCGGCAAGGGCCTCTCCGGCGGCCGGCTGGTCGTCCGTCCGGACAAGGCCGCGGTGCTCGAGGGCGCGGCGAACGTCATCGCCGGCAACGTCATCGGCTACGGCGCCACCCGGGGCGAGATCTTCCTGCGCGGTCGCGTGGGGGAGCGCTTCGGCGTGCGCAACTCGGGGGCGACCCTCGTCGTCGAGGGCGTGGGCGACCACGGCTGCGAGTACATGACCGGCGGCGAGGTCCTCGTCCTGGGTCCGACCGGACGCAACTTCGGCGCCGGCATGTCCGGCGGCATCGCCTACGTGCTCGACCTGCGCGACGCGGCGATGAACGCCGCCGCCGTGGCGTCCGGCGAGCTCGTCGTCGGCGCGCTCTCGGACGAGGACTGGGAGCGGGTGTCCGCGCTGCTGCAGCGGCACCTGGACGAGACCGGTTCGCCGGTGGCGGCCGAGCTGCTGGCCGACGAGGGCACGCGGGCCCGGTTCTCGCGCGTCCTCCCGCCCGGATGGGCCAACGTGCGCGTCGCGCTGGCCGAGGCCGAGTCGGCGGGCACGCCGCTCGGCGAGGGCGACGACTTCGACCCGACGCTGTGGGAGCGCATCATGGAGGTGGCTCGTGGCTGA	MTTPQHWVAPPEAQGLYDPASEHDACGVAFVATLRGTPGRDIVDAGLTALLNLDHRGAVGAEEDSGDGAGILTQIPDAFLRDVVDAELPPAGQYAIGMAFLPQELEDADKLARRFETIAAEEKLDVLAWRDVPVTVDLVGPTARASMPTFRQVVVADPQRELAGIELDRRAYRLRKRAENELELFLASLSARTLTYKGMLTTAQLEPFFPDLSDPRYASEIALVHSRFSTNTFPSWPLAQPFRLIAHNGEINTVRGNRNWMAAREGKLASEALGDLGPLLPVCSPGSSDSASFDEVLELLHLSGRSLPHSVLMMVPEAWENHDEMDPARRAFYQYHANLIEPWDGPACLTFTDGTLIGAVLDRNGLRPGRFWVTEDGLVVLGSEAGVLDLDPATVVRKGRLEPGRMFLVDTAQGRIVEDDEVKSQLASQRPYGEWVEQNSISLDSLPEREHVAHSPASVQRRQRAFGYTSEELKIILTPMANTSAEPLGAMGSDTPVAVLSNRPRLLFDYFTQMFAQVTNPPLDSIREQLVTSIGSAIGPEPNLLEATPQHARKLELPFPVLDNDELAKIVRIERDQRLEGEFRAVIVRGLYDVSGGGRALQARLEEIFAQVDAEIEAGATHIVLSDRDSDAERAPIPSLLLTSAVHHHLLRRHTRTQISLVVEAGDVREVHHVALLIGYGAAAVNPYLAMETVEDLARRGYLQVTPEAAVKNLITALGKGVLKVMSKMGISTIMSYRGAQVFEAVGLSHELVDDYFTGTTSRLAGIGLDVIAAETAARHAEAYPASGNHTPHERLTTGGEYQWRRDGEEHLFDPETVFRLQHATRSGRMDIFRQYTQRVDEQSERLMTLRGLLEFTGDREPVPIDEVEPVSEIVKRFNTGAMSYGAISQEMHETLAIAMNQLGGRSNSGEGGEDTERLYDPERRSRVKQIASGRFGVTSEYLTQADDIQLKLAQGAKPGEGGQLPGPKVYPWVAKTRHSTPGVGLISPPPHHDIYSIEDLAQLIHDAKNANPSARVHVKLVSEFGVGTVATGVSKAHADVVLISGHDGGTGASPLTSLKHAGTPWEIGLAETQQTLVLNNLRDRITVQVDGQMKTGRDVVVAALLGAEEFGFATAPMVVSGCIMMRVCHLDTCPVGVATQNPELRRRFTGKPEFVVNFFEYIAEEVREHLAALGFRSVEEAVGQVQRLDTRRVVDHWKAQGLNLAPVLERVEPVEGSSLHRTHDQDHGLDKALDQQLIAQARPALEDGRPVRIELPVRNVNRTVGTMLGHEVTKRYRGDGLPDGTVDVTLTGSAGQSFGAFVPHGVTLRLYGDANDYVGKGLSGGRLVVRPDKAAVLEGAANVIAGNVIGYGATRGEIFLRGRVGERFGVRNSGATLVVEGVGDHGCEYMTGGEVLVLGPTGRNFGAGMSGGIAYVLDLRDAAMNAAAVASGELVVGALSDEDWERVSALLQRHLDETGSPVAAELLADEGTRARFSRVLPPGWANVRVALAEAESAGTPLGEGDDFDPTLWERIMEVARG	PGPT0000635_1495	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265	NA	NA
AK001_00420	1467	gltD	COG0493	Glutamate synthase [NADPH] small chain	GTGGCTGATCCCCGTGGATTCCTCAAGGTCCGGGAGCGCGAGCTCCCGCCGAGCAGGCCCGTCGAGGTCCGCCTGCGGGACTGGAAGGACACGTACGCGATCCGTGAGGACGGTCAGCCGTTCCTCAAGGAGCAGGCCGGACGCTGCATGGACTGCGGCATCCCGTTCTGCCACCAGGGGTGCCCGCTGGGCAACCTCATCCCGGAGTGGAACGACCTCGTGCGCACCGGCCAGTGGGCCGACGCGATCGAGCGGCTGCACGCGACGAACAACTTCCCCGAGTTCACCGGCCGGGTGTGCCCCGCGCCGTGCGAGACGAGCTGCGTGCTGGGCATCAACCAGCCCGCGGTGACGATCAAGAACATCGAGGTCTCGATCATCGACGAGGCGTTCGAGCGCGGTCTGGTCGTCCCGCAGGTCCCGCAGCGGCTGACGGGCAAGACCGTCGCCGTGGTCGGGTCCGGTCCGGCCGGCCTCGCCGCCGCCCAGCAGCTCACGCGTGCGGGCCACACCGTCGTCGTGTACGAGCGCGACGACGCCATCGGCGGTCTGCTGCGCTACGGCATCCCGGACTTCAAGCTCGAGAAGCACCACATCGACCGCCGGATGGCCCAGATGGAGGCCGAGGGCACGCGGTTCCGCGCCGGCGTGGAGATCGGCCGGGACGTGACGTGGGACGCGCTGCGCCGCCGCTTCGACTCCGTCGTGGTGGCCACCGGGGCCACGGTCCCGCGCGACCTGTCGATCCCGGGCCGCGACCTGGCCGGCGTCGAGTTCGCGATGGACTTCCTCACGCCGTCGAACAAGGCGGTGGCCGGCGGCGCGGTCGAGGGCGCGCCGACGGCCGAGGGCAAGCACGTCATCGTCATCGGCGGTGGCGACACCGGGTCGGACTGCGTCGGCACCTCGCTGCGCCAGGGCGCCGCGAGCGTGACGACGCTCGCGATCGGCAAGAAGCCGCCGACGGAGCGTCCGGCGCACCAGCCCTGGCCCACGGACCCGATCCTGTTCGAGGTCTCGAGCTCGCACGAGGAGGGTGGGGAGCGCTCGTTCCTCGCCTCGACGGTGGAGTTCCTGAGCGACGAGCAGGGCGCCGTGCGTGCCCTGACGGTCGCCGAGACGGAGTACCTCGAGGACGGTCGGCGCGTGCCCAAGGCGGGGACGGAGCACGAGATCCCGGCCGACCTGGTGCTCATCGCGATGGGCTTCACCGGGCCGGAGATCACGGAACTGGTGGACCAGACCGGCGTCGAGACGACCTCGCGCGGTCTGGTGCAGCGGCAGGACGACTACGCGTCGTCGCTGCCGGGCGTGTTCGTGGCCGGCGACGCCGGCCGCGGGCAGTCGCTGATCGTGTGGGCGATCGCCGAGGGCCGCGCCGCGGCCGCCGCGGCCGACGCCTACCTGCAGGGGACCACGGAGCTGCCGGCCCCGGTGGGCCCCCGCACCGTCGCCCTGAGAGGATGA	MADPRGFLKVRERELPPSRPVEVRLRDWKDTYAIREDGQPFLKEQAGRCMDCGIPFCHQGCPLGNLIPEWNDLVRTGQWADAIERLHATNNFPEFTGRVCPAPCETSCVLGINQPAVTIKNIEVSIIDEAFERGLVVPQVPQRLTGKTVAVVGSGPAGLAAAQQLTRAGHTVVVYERDDAIGGLLRYGIPDFKLEKHHIDRRMAQMEAEGTRFRAGVEIGRDVTWDALRRRFDSVVVATGATVPRDLSIPGRDLAGVEFAMDFLTPSNKAVAGGAVEGAPTAEGKHVIVIGGGDTGSDCVGTSLRQGAASVTTLAIGKKPPTERPAHQPWPTDPILFEVSSSHEEGGERSFLASTVEFLSDEQGAVRALTVAETEYLEDGRRVPKAGTEHEIPADLVLIAMGFTGPEITELVDQTGVETTSRGLVQRQDDYASSLPGVFVAGDAGRGQSLIVWAIAEGRAAAAAADAYLQGTTELPAPVGPRTVALRG	PGPT0000640_1396	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266	NA	NA
AK001_00421	1521	pyk	COG0469	Pyruvate kinase	ATGACAACGGACCCGGGCGCCGCCGTGGCGTCCGAGCGCGCCCCGGAAGTCCAGGGGCGGTACGACGATGAGGCTGGAGACATGCGCAGAGCGAAGATCGTGTGCACCATCGGACCCGCGACGGCGTCCCCGGAGAAGCTCCGGGAGCTGGTCGACGCAGGTATGGACGTGGCCCGGATCAACCGGAGCCACGGGGAGCAGTCGGAGCACGAGACCGTCTACCACGGGGTGCGCACGGCGGCGAAGGAGGCGGGACGCAACGTCGCCGTCCTCGTCGACCTGCAGGGCCCGAAGATCCGCCTGGGGCGGTTCGACGGCGACGAGAAGCACTTCCTCAACGAGGGTGACACCCTCACGATCACGACCGAGGACGTCGTGGGGACCCGCGAGCTCGTCTCGACGACCCACGAGGGCCTCCCGCAGGACGCTCGCGTCGGCGACCCGATCCTGATCGACGACGGCAAGGTCCGGGTGCGGGTCACCGCCGTCGAGGGGCCGCGCGTCGTCACCACCGTCGAGGTCCCGGGTCCGGTCTCCAACAACAAGGGCCTCAACCTGCCCGGCGTGGCCGTCTCGGTCCCCGCGCTGAGCGAGAAGGACACCGACGACCTGCGCTGGGCGCTGCGCATGGGCGCCGACCTCATCGCGCTGTCCTTCGTGCGCAACGCCGCCGACTACGACGACGTCCGCAAGATCATGGACGAGGAGGGCCGGGTCGTCCCGGTCATCGCCAAGATCGAGAAGCCGCAGGCCGTCGACAACCTCGAGGAGGTCGTCGCGGCGTTCGACGGCTTCATGGTGGCCCGCGGCGACCTCGCGGTCGAGATGCCGCTCGAGCAGGTCCCGCTGGTGCAGAAGCGCATCGTGGAGATGGCCCGTCGCAACGCCAAGCCGGTGATCGTGGCCACCCAGGTGCTGGAGTCGATGACCACCAGCCCGCGCCCGACCCGTGCCGAGGCCTCGGACTGCGCCAACGCCGTCCTCGACGGTGCCGACGCGGTCATGCTCTCCGGCGAGACGTCCGTCGGCGACTACCCGATCCTCACGGTGGAGACGATGGCCTCGATCATCGAGGCCACCGAGGGTGCCGGCCGCGAGCGCATCGCGCCGCTGGGTTCGACGCCGCACACCCGCGGGGGGATCATCACGCGGGCCGCCGCGGAGATCGCCAACTCGCTGGAGGCCAAGTACCTGGTCACCTTCACCCAGTCGGGCGACTCGGCCAAGCGCATGTCGCGCCTGCGCTCGGGCATCCCGCTGCTGGCCTTCACCCCGGAGGAGTCGGTCCGCAACGTGCTGGCCCTGACCTGGGGCACCGTCAGCTACCAGGTGCCGAAGGTCGGTTCGGTCGACGCGATGGTCGGTCAGGTCGACCAGACGCTGCAGGCCAACGGCCTCGCCGAGGTCGGCGACCGGGTCGTCATCGTCTCGGGTGCGCCGGTGGGCGTCCCCGGCACGACGAACTCGATCCTCGTGCACAAGGTGGGCAGTCACACCGACGCCCACGCGATCGCCGAGTGA	MTTDPGAAVASERAPEVQGRYDDEAGDMRRAKIVCTIGPATASPEKLRELVDAGMDVARINRSHGEQSEHETVYHGVRTAAKEAGRNVAVLVDLQGPKIRLGRFDGDEKHFLNEGDTLTITTEDVVGTRELVSTTHEGLPQDARVGDPILIDDGKVRVRVTAVEGPRVVTTVEVPGPVSNNKGLNLPGVAVSVPALSEKDTDDLRWALRMGADLIALSFVRNAADYDDVRKIMDEEGRVVPVIAKIEKPQAVDNLEEVVAAFDGFMVARGDLAVEMPLEQVPLVQKRIVEMARRNAKPVIVATQVLESMTTSPRPTRAEASDCANAVLDGADAVMLSGETSVGDYPILTVETMASIIEATEGAGRERIAPLGSTPHTRGGIITRAAAEIANSLEAKYLVTFTQSGDSAKRMSRLRSGIPLLAFTPEESVRNVLALTWGTVSYQVPKVGSVDAMVGQVDQTLQANGLAEVGDRVVIVSGAPVGVPGTTNSILVHKVGSHTDAHAIAE	PGPT0002020_5868	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873	NA	NA
AK001_00423	675	pdtaR	COG3707	putative transcriptional regulatory protein pdtaR	ATGTCTCCTGTGACCGACGAGAAGCTGCCGCTCGACCTGCCCCCGATGATCGACCAGGAGTCCGCCGAGTCGCCGGAGCCGGCGCCTGCGGCGGGCAAGCCTGCCCGCCGGGCGGTGGTGGCCGAGGACGAGGCCCTGATTCGCATGGACGTCGTCGAGACGCTCCGCGAGGCGGGCTTCGACGTCGTCGGTGAGGCCGGCGACGGCGAGACCGCCGTGAACCTCGCGACCGAGCTCAAGCCGGACGTCGTCGTGATGGACGTCAAGATGCCCGAGCTGGACGGCATCTCCGCGGCGGAGCGGATCGGCAAGGCCCACGCCGCCCCGGTCGTGCTGCTCACGGCCTTCTCCCAGACCGAGCTCGTCGAGCGGGCGCGCGACGCCGGCGCGATGGCCTACGTCGTGAAGCCGTTCACACCGGCGGACCTGCTGCCCGCGGTGGAGATCGCCATCTCCCGCTACCAGCAGATCGGCGCCCTGGAGTCCGAGGTCGCCGACCTCCAGGACCGCTTCGAGACCCGCAAGCGCGTCGACCGGGCGAAGGGCCTGCTCATGACGAAGATGGGTCTCAGCGAGCCGGAGTCGTTCCGCTGGATCCAGAAGACGTCGATGGACCGTCGTCTGACCATGCGCGAGGTCGCGGACGCCGTGATCGACCAGGTCGGCGCGTCCTGA	MSPVTDEKLPLDLPPMIDQESAESPEPAPAAGKPARRAVVAEDEALIRMDVVETLREAGFDVVGEAGDGETAVNLATELKPDVVVMDVKMPELDGISAAERIGKAHAAPVVLLTAFSQTELVERARDAGAMAYVVKPFTPADLLPAVEIAISRYQQIGALESEVADLQDRFETRKRVDRAKGLLMTKMGLSEPESFRWIQKTSMDRRLTMREVADAVIDQVGAS				NA	NA	NA	NA	NA
AK001_00424	702			hypothetical protein	ATGCGTGCAGCGGTCGAGGTCCGCACCGCCGACGAGGACGACCTGTGGGCCGTGGCGGACATGTCCGCCGCGCTCGGGCCCGAGGGGGCGAACGGCGCGACGGCCGAGCCGGCGCGCGTCCGCGAGCACCTGAGCGTCTTCGTCGCGGCCGGGGGCGAGGTGCTCGTCGCCCGTTCGGAGCACGGCGTCGTCGGCTTCCTCCTCGCGCGCCCGCTCGCGCCGCAGCTGTACTCGACCACGCCGAGCCTGTACGTCGACGCGATCCTCGTCGCACCCCAGGCACGGCGCCAGGGCGTCGGCCGTGCCCTGCTCGCGGCCGCGCTGCGGACGGCGGTCGTCCACGGCGCGGAGTCCGTCTACTGCGCCCCGGCGCCGGGCGCCCGCGAGATGCAGCGCTTCCTCGCGCGCGTCGGCTTCGCGCCCGCGGCCGGCCACCGGGTGGTCCCGGTCTCCGTGCTCGAGCGCTGGCTCGCCCAGGAGCCGGGCGGCGGCCCGACCGTGGTCCGGCGGCGCGACGGCGGTCGCCGTCGGCGGGACCAGACGCGCGCGGCGATCGAGGACCTCGTGGCGCGCCGCCGCCGGGCGCGGGAGGCGGGCCTGCCGACGGGCCCGGTCGACCTGCGGGCGTTCCAGGAGCAGCGCACCGCCGAGCACGAGACGCCCGACGGCTCCCCGGCGGAGCCGACCTCGCACGTGTCCTGA	MRAAVEVRTADEDDLWAVADMSAALGPEGANGATAEPARVREHLSVFVAAGGEVLVARSEHGVVGFLLARPLAPQLYSTTPSLYVDAILVAPQARRQGVGRALLAAALRTAVVHGAESVYCAPAPGAREMQRFLARVGFAPAAGHRVVPVSVLERWLAQEPGGGPTVVRRRDGGRRRRDQTRAAIEDLVARRRRAREAGLPTGPVDLRAFQEQRTAEHETPDGSPAEPTSHVS				NA	NA	NA	NA	NA
AK001_00425	420	entH	COG2050	Proofreading thioesterase EntH	ATGTCTGACAGAGATTCCTTCCCCCAGGACGTGGACGCCTGGCGGGAGGCTGCCGCGGGGACCCTCCTGGAGCGCACCGGCATCGACCTGGTGGAGGTGAGTGCCGACGGGGCCCGGGCGAGCATGCCCGTGGCGGGCAACACCCAGCCCGCCGGCCTGCTGCACGGCGGCGCGACGGCGACGCTGGCCGAGACGCTCGGCTCGGTGGCCGCGCAGGTGCACGCCGGACCGGGACGGGCGGCGGTCGGCACCGAGCTCAGCGTCACCCACCATCGCGGCGTGCGCTCGGGGTCGGTGCACGGCGTGGCGACGGCGGTGCACCGGGGCAGGTCGACGGCCTGCTACGAGATCGAGGTCGTGGACGACGACGGACGTCGCGTCGCCAGCGCCCGGCTGACGTGCCTCGTGCTGGACACCTGA	MSDRDSFPQDVDAWREAAAGTLLERTGIDLVEVSADGARASMPVAGNTQPAGLLHGGATATLAETLGSVAAQVHAGPGRAAVGTELSVTHHRGVRSGSVHGVATAVHRGRSTACYEIEVVDDDGRRVASARLTCLVLDT	PGPT0001845_1278	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222	NA	NA
AK001_00426	2637	polA	COG0258	DNA polymerase I	ATGGCCTACCGGGCCTTCTACGCCCTGCCGGACACCCTGGCCACCACCAGCGGGCAGGTCACCAACGCCGTGTACGGCTTCACCTCGATGCTCACCAACCTGCTGCGCGACGAGGAGCCGACGCACGTGGCCGTGGCCTTCGACGCCGGTCGCGTGACCTTCCGCACGGAGCGGTTCGCGGAGTACAAGGCGCAGCGCGAGGCCACGCCCGAGGTGTTCCGCGGCCAGGTGCCGCTGATCCACGAGGTGCTGGAGTCCCTGCGCGTGCCGGTGCTGCAGCGCGCGGGCATCGAGGCGGACGACATCCTGGCGACGCTGGCGCGGCGGGGGACCGAGGCGGGCCTGGAGGTGCTCGTCTGCTCGGGCGACCGCGACGCCCTGCAGCTCGTGACCGACGACGTCACCGTGCTGTACCCGAAGAAGGGCGTCTCGGAGCTCACGCGGATGACGCCGGAGGCGGTCGAGGCCAAGTACAAGGTGCCGCCCGCGCGCTACCCCGACCTGGCGGCGCTCGTCGGCGAGACGAGCGACAACCTGCCGGGCATCCCCGGCGTCGGTCCCGGGGTCGCGGCCAAGTGGATCACCCAGTTCGGCGACCTCGACTCCCTGCTGGAGCGCCGCGACGAGGTCGGCGGCAAGCGGGGCGAGGCCCTGCGCGAGCACGTCGAGCAGGTCCGGCTGAACCGCGAGCTCAACGCGCTGCTGACCGACGTGGACCTCCCGCTGGGGATCGACGACCTCGCGGTGGCCGGCTTCGACCGCGAGGCGGTCCACCGGGTGGCCGACACCCTCGAGTTCGGCGCGCTGCGCGACCGCCTCCTGGCGGTCGACCCCGCCGGCGGCGACGCCACGGTCGCGCCGACGGCGTCCCTCGAGGTCGACCGGCACGACGGCCCCCTCGCGGACTGGTTGACCGCCCGGGCGGGCGCTCTCGTGGGCGTCGACGTCACCGGGGTGCGGCGCCCGGGTGCCGGCGACGCGTGGCAGGTGGCCCTGGCCACCGCGAGCGACGGGGGCCGGGCCGACGCCGTCGTCGTCGACCTCGCCGACGTCGACGACGCCGACGAGCGGGCCCTGCGCGACTGGCTGTCCGACCCCCGGGCGCCGAAGGCCGTGCACGGGGCCAAGGCGGCCTGGCACATGCTGTTCGCGCGGGGGGCGGACCTCGTCGGTGTCCAGGTGGACACCGAGCTCGCGGCGTACCTGTGCTACCCCGACCAGCGTGGCTACGACCTCGGCGACCTCGTGGTCCGGCACCTGGGACGCGAGCTGACCGTCGAGGACGGCGGCGCCCAGGGCGCGCTGGACCTCGCGCTGGAGGCGGGGCCCCCCGGCGCCGACGCGGCGGGCCGTGCCGTGGCCGTGGTGGACCTGGCCGCGGCGCTCGGCGAGCGACTCGTGGACCGGGGCGCGCGCGGGCTGCTCGACGACGTCGAGCTCCCGCTGTCCGGGGTGCTGGCCCGCATGGAGGCCACCGGCATCGCGGCCGACACGACGTTCCTCACCGAGCTGGAGCAGCACTTCGCCCAGCGTGTGGGGACCTCGGCCGCCGAGGCCTACGACGTCATCGGCCGCGAGGTGAACCTGGGCAGCCCGAAGCAGCTGCAGGAGGTCCTCTTCGACCAGCTCGGCATGCCGAAGACGAAGAAGATCAAGACCGGGTACACGACGGACGCCGCCTCGCTGCAGGACCTGTTCGTCAAGACCGAGCACCCCTTCCTGGCCCACCTGCTGGCACACCGGGACGCGGCCAAGCTGCGCACGACCGTCGAGGGGCTCCTCAAGGCGGTGCACCCGGACGGCCGGATCCGCACCACGTTCCAGCAGACGATCGCGGCCACCGGACGCCTCAGCTCGACCGACCCGAACCTGCAGAACATCCCGATCCGCACCGAGGCCGGTCGGCGCATCCGGCGCGCGTTCACGGTCGGGGAGGGGTACGCCGAGCTCGTCACGGCGGACTACAGCCAGATCGAGATGCGGATCATGGCGCACCTGTCGGGCGACGCCGGGCTCATCGAGGCGTTCCGCTCCGGCGAGGACCTGCACCGCTACGTCGGGTCGCGCGTGTTCGACGTCGAGCCGGCGGCGGTGACCCCCGAGATGCGCGCCAAGGTCAAGGCGATGAGCTACGGGCTCGCCTACGGGCTCAGCGCCTTCGGGCTGTCCCAGCAGCTCACCATCCCCACCGGTGAGGCGCAGGCCCTCATGGACGACTACTTCACGCGGTTCGGGGGCGTGCGCGACTACCTGACCGGGGTCGTCGAGGAGGCGCGCGCGACCGGGTACACGGCGACCCTCCTCGGGCGCCGGCGCTACCTGCCGGACCTGACCAGCGACAACCGTCAGCGCCGTCAGATGGCCGAGCGGATGGCGCTGAACGCCCCGATCCAGGGCAGCGCCGCCGACATCATCAAGCTGGCGATGCTGGGCGTGCAGCGCGAGCTCGACGAGAAGGAGCTGCGCTCGCGGCTGCTGCTGCAGGTCCACGACGAGCTCGTGGTCGAGGTCGCCGCGGGGGAGCGGGAGGTCGTGGAGGACGTGCTGCGCCGGCAGATGGGCGGCGCGGTCGAGCTCGACGTGCCCCTGGACGTCTCGGTGGGCGCCGGTCAGACCTGGCACGACGCAGCCCACTGA	MAYRAFYALPDTLATTSGQVTNAVYGFTSMLTNLLRDEEPTHVAVAFDAGRVTFRTERFAEYKAQREATPEVFRGQVPLIHEVLESLRVPVLQRAGIEADDILATLARRGTEAGLEVLVCSGDRDALQLVTDDVTVLYPKKGVSELTRMTPEAVEAKYKVPPARYPDLAALVGETSDNLPGIPGVGPGVAAKWITQFGDLDSLLERRDEVGGKRGEALREHVEQVRLNRELNALLTDVDLPLGIDDLAVAGFDREAVHRVADTLEFGALRDRLLAVDPAGGDATVAPTASLEVDRHDGPLADWLTARAGALVGVDVTGVRRPGAGDAWQVALATASDGGRADAVVVDLADVDDADERALRDWLSDPRAPKAVHGAKAAWHMLFARGADLVGVQVDTELAAYLCYPDQRGYDLGDLVVRHLGRELTVEDGGAQGALDLALEAGPPGADAAGRAVAVVDLAAALGERLVDRGARGLLDDVELPLSGVLARMEATGIAADTTFLTELEQHFAQRVGTSAAEAYDVIGREVNLGSPKQLQEVLFDQLGMPKTKKIKTGYTTDAASLQDLFVKTEHPFLAHLLAHRDAAKLRTTVEGLLKAVHPDGRIRTTFQQTIAATGRLSSTDPNLQNIPIRTEAGRRIRRAFTVGEGYAELVTADYSQIEMRIMAHLSGDAGLIEAFRSGEDLHRYVGSRVFDVEPAAVTPEMRAKVKAMSYGLAYGLSAFGLSQQLTIPTGEAQALMDDYFTRFGGVRDYLTGVVEEARATGYTATLLGRRRYLPDLTSDNRQRRQMAERMALNAPIQGSAADIIKLAMLGVQRELDEKELRSRLLLQVHDELVVEVAAGEREVVEDVLRRQMGGAVELDVPLDVSVGAGQTWHDAAH				NA	NA	NA	NA	NA
AK001_00427	798	COQ5_1		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	ATGTGGGACGTGAGCGATCCATGGTTCGGATACCGCACCACCGACGACGACGGCACCGCCGCGCGGCGGTGGTGGGACGCGCACGCCGAGGAGTACCTCGACGACCACGGCGACTTCCTCGGCGACGCCGGCTTCCGCTGGGGGCCGGAGGGGCTGACCGAGGCCGAGGCCGGGCTCCTGGGGCCCCCGCAGGGCGCCCGGGTGCTGGAGGTCGGCGCGGGGGCCGCCCACTGCTCGCGCTGGCTCGCCGCCCGCGGCGCGGACGTCGTGGCGACCGACGTGGCCCCCGCGATGCTGGACGCCGCGGCGGAGATCTCCCGGCGGTCGGGCACGCCGGTGCCGCTGGTGGAGGCCGACGCCCGTGACCTGCCGTTCGCCGACGGCTCGTTCGACGTCGTCTTCACCTCGTTCGGCGCGATCCCCTTCGTCCCGGACGCCCACCGCGTGCACGCCGAGGCCGCGCGGGTGCTGCACGACGGCGGTCGCTGGGTCTTCTCCGTCACGCACCCGGTGCGCTGGGCCTTCCCCGACGACCCGACGCTCGCCGGGCTGACCGCCCACCGGTCCTACTTCGACCGCCGCCCCTACGTCGAGGCCGAGGGCGGTCACGTGGTCTACGCCGAGTACCACCGCACCCTGGGCGACCACGTCCGCGACGTCGCGGCGGCCGGGCTGCGGCTGCGCGACGTCGTCGAGCCCGAGTGGCCGGCCTGGAACGCCCAGACGTGGGGCGGCTGGGGTCCCGAGCGCGGGCACTACCTGCCCGGCACCGCCGTCTTCGTCGCCACGAAGGACTGA	MWDVSDPWFGYRTTDDDGTAARRWWDAHAEEYLDDHGDFLGDAGFRWGPEGLTEAEAGLLGPPQGARVLEVGAGAAHCSRWLAARGADVVATDVAPAMLDAAAEISRRSGTPVPLVEADARDLPFADGSFDVVFTSFGAIPFVPDAHRVHAEAARVLHDGGRWVFSVTHPVRWAFPDDPTLAGLTAHRSYFDRRPYVEAEGGHVVYAEYHRTLGDHVRDVAAAGLRLRDVVEPEWPAWNAQTWGGWGPERGHYLPGTAVFVATKD				NA	NA	NA	NA	NA
AK001_00428	1026	pfp_1		Pyrophosphate--fructose 6-phosphate 1-phosphotransferase	GTGCGCGTAGGACTGCTGACCGGAGGCGGGGACGTCCCCGGGCTCAACGCGGCGATCAGGGCCGTGGTCAAGCGGGGAGAAGGCGAGCACGGGCACACCATCGTCGGTTTCCGCCACGGGTGGCGCGGGCTGGCCGACGGCGACGTGATGCCCCTGACCCGGTCCCACATCCGCAACGTGCTCCCGACGGGCGGCACGCTGCTCGGCACCGCCCGCTACCACCCGCACGCCGACGACGGGGGGCTGGACGCCGTGCGCGCCACCCTCGAGGAGGAGCGGATCGAGGCGCTGATCTGCATCGGCGGCGACGGCACGCTCCACGCGGCGAGCAAGGTCGCCGAGTCCGGCGTCCGCATCGTCGCCGTGCCCAAGACGATCGACAACGACGTCTGGGGCACGGACCGCTCCATCGGTTTCGACACGGCCGTCAACATCGCCACCGAGGCCGTCGACCGGATCCACACGACGGCGGAGAGCCACAACCGGGTGATGATCGTCGAGGTCATGGGCCGGCACGCCGGGTGGATCGCGACGACGGCCGGCATCGCCGGAGGCGCCGAGCTGGTGCTCGCCCCGGAGGAGCCGTTCGACATCGACCGGGTCGTCCGCTTCCTGCAGCACCGCCACCGGGCCCACGCGAGCTTCTCCATCATCGTGGTCGCCGAGGGCGCGGTGCCGCTGGAGGGCTCGTCGATGCAGTACGAGACGCAGCTCGGCCCGTTCGGGGAGATCGTGGCGGGCGCGATCAGCGAGCGCCTCGGCGCCGAGATCGCCTCCCGCACCGGGTTCGACACCCGTGTGACGATCCTGGGCCACGTCCAGCGCGGCGGGACGCCGACGCCGGCCGACCGGATCCTCGGGTCCCGGCTCGGGGTCGCGGCGATCGACGCGGTCTCGGCGGGGGAGTCGGGTGTCATGACGGCCCTGCGCGGCGACGACGTGGTCCTGGTCCCGCTGACGGACATCGCGGGCAAGGTCAAGCAGGTGCCGGCCGAGATGCTGGAGGTCGCCCGCGCGCTCGCGTGA	MRVGLLTGGGDVPGLNAAIRAVVKRGEGEHGHTIVGFRHGWRGLADGDVMPLTRSHIRNVLPTGGTLLGTARYHPHADDGGLDAVRATLEEERIEALICIGGDGTLHAASKVAESGVRIVAVPKTIDNDVWGTDRSIGFDTAVNIATEAVDRIHTTAESHNRVMIVEVMGRHAGWIATTAGIAGGAELVLAPEEPFDIDRVVRFLQHRHRAHASFSIIVVAEGAVPLEGSSMQYETQLGPFGEIVAGAISERLGAEIASRTGFDTRVTILGHVQRGGTPTPADRILGSRLGVAAIDAVSAGESGVMTALRGDDVVLVPLTDIAGKVKQVPAEMLEVARALA	PGPT0017605_2039	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017605-pfk|pfp-K21071	NA	NA
AK001_00429	1491	rpsA	COG0539	30S ribosomal protein S1	ATGACCATCTCCACCACGAAGTCCGCCCCGCAGGTCGCCGTCAACGACATCGGCACCGAAGAGGACTTCCTTGCCGCCGTCGACTCCACCATCAAGTACTTCAACGATGGTGACATCGTCGAAGGCACGATCGTCAAGGTCGACCGCGACGAGGTCCTCCTCGACATCGGCTACAAGACGGAGGGCGTGATCCCGTCTCGTGAGCTGTCCATCAAGCACGACGTGGACCCGGGCGAGGTCGTCGCCGTCGGCGACGCCGTCGAGGCCCTCGTCCTCCAGAAGGAGGACAAGGAAGGCCGTCTGATCCTGTCCAAGAAGCGCGCCCAGTACGAGCGCGCCTGGGGCACGATCGAGCAGATCAAGGAGGACGACGGCGTCGTCACCGGTACCGTCATCGAGGTCGTCAAGGGTGGTCTCATCCTCGACATCGGCCTGCGTGGCTTCCTGCCGGCCTCCCTCGTCGAGATGCGTCGCGTCCGCGACCTCGCGCCGTACGTCGGCCGCGAGATCGAGGCCAAGATCATCGAGCTGGACAAGAACCGCAACAACGTGGTCCTGTCCCGCCGCGCCTGGCTCGAGCAGACGCAGTCCGAGGTTCGCTCCACCTTCCTGCAGACGCTGCAGAAGGGCCAGGTGCGCCCGGGTGTCGTCTCCTCGATCGTCAACTTCGGTGCGTTCGTCGACCTCGGTGGGGTCGACGGCCTCGTGCACGTCTCCGAGCTGTCCTGGAAGCACATCGACCACCCGTCCGAGGTCGTCGAGGTCGGCCAGGAGGTCACGGTCGAGGTGCTCGACGTCGACTTCGACCGCGAGCGTGTCTCCCTGTCGCTGAAGGCGACGCAGGAGGACCCGTGGCAGACCTTCGCCCGCACCCACGCCATCGGCCAGGTCGTGCCGGGCAAGGTCACCAAGCTGGTGCCGTTCGGTGCGTTCGTCCGCGTCGAGGACGGCATCGAGGGCCTGGTGCACATCTCCGAGCTGGCGGTCCGCCACGTCGAGCTGCCCGAGCAGGTCGTCCAGGTGGGTGCCGAGGTCTTCGTCAAGGTCATCGACATCGACCTCGAGCGTCGCCGCATCTCGCTGTCGCTCAAGCAGGCCAACGAGGGCATGGACCCGGAGTCCGAGGACTTCGACCCGGCGCTCTACGGCATGGCCGCCGAGTACGACGAGAACGGCGAGTACAAGTACCCGGAGGGCTTCGACCCGGAGACCAACGAGTGGCTCGAGGGCTTCGAGACCCAGCGCGAGGCCTGGGAGGCCGAGTACGCCAAGGCGCACTCGCGCTGGGAGTCGCACCGCGAGCAGGTCCGTGCGGCGCTCTCGGCCGACGCCGAGGCCGCGGCCGGCGACGTCGTCTCCAGCAGCACCGGCGGCGCGTCCGCGTCCTCGTCCTACTCCTCGGCGGCCCCGACCCCGCAGGAGGACACCGGCGGCACGCTGGCGTCCGACGAGGCCCTGGCTGCTCTGCGCGAGAAGCTGACCGGCAACTGA	MTISTTKSAPQVAVNDIGTEEDFLAAVDSTIKYFNDGDIVEGTIVKVDRDEVLLDIGYKTEGVIPSRELSIKHDVDPGEVVAVGDAVEALVLQKEDKEGRLILSKKRAQYERAWGTIEQIKEDDGVVTGTVIEVVKGGLILDIGLRGFLPASLVEMRRVRDLAPYVGREIEAKIIELDKNRNNVVLSRRAWLEQTQSEVRSTFLQTLQKGQVRPGVVSSIVNFGAFVDLGGVDGLVHVSELSWKHIDHPSEVVEVGQEVTVEVLDVDFDRERVSLSLKATQEDPWQTFARTHAIGQVVPGKVTKLVPFGAFVRVEDGIEGLVHISELAVRHVELPEQVVQVGAEVFVKVIDIDLERRRISLSLKQANEGMDPESEDFDPALYGMAAEYDENGEYKYPEGFDPETNEWLEGFETQREAWEAEYAKAHSRWESHREQVRAALSADAEAAAGDVVSSSTGGASASSSYSSAAPTPQEDTGGTLASDEALAALREKLTGN	PGPT0007615_15	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527	NA	NA
AK001_00430	1857	msbA_2	COG1132	Lipid A export ATP-binding/permease protein MsbA	ATGCGGTCCTTCCTCCAGGACCGGTCGGTCACCGACCGGCGGCTGTCGCGGTCGACGCTGCGCCGCATCCTCGCGTTCGCGCGGCCCTACCGCCGCCACCTGGCCGGTCTGGTCGGCCTCCTGACCCTCAGCGCCGCCGCCGGCGCGGTCACACCGCTGCTGTTCCGCCGCATCATCGACGACGGGATCGCCGGCGGCGACCGCGAGCTCGTCGTCGGCCTCGCCGCGGCCGCGGTCGGGCTCGCCCTCGCCGGCGCCGGGCTCTCCCTCGCCGAGCGCTGGGTGGCCGCCCTGGTCGGCGAAGGTCTCATCGTCGACCTGCGCACCGCCGTCTTCGACCACGTCCAGCGCATGCCGCTGGCGTTCTTCGCCCGCGCCCGCACCGGCGCTCTCGTGCAGCGCCTCAACGGCGACGTCCTCGGGGCGCAGCAGGCGTTCACCGCGACCCTGCAGTCGGTCGTCTCGAACGGTCTGACGGTCGTGTTCACGCTCGCGGCCATGCTGGTGATGTCGTGGCAGCTCACGCTGCTCTCCCTGCTGCTGGTCCCCGCCTTCGTCCTGCCCGCCCGTTGGTTCGGACGCCGGCTGGCGGCGCTGACCCGGACCACCTACGACCTCAACGCCGACGTCGGACAGACGATGAACGAGCGGTTCAACGTCGCCGGTGCCCAGCTCGCCAAGGTCTTCGGCGCTCCGGACCGCGAGTCCGCGGCCTACGCCGACCAGGTCCGTCTGCTGCGCGACGTCGGGGTCCGCCGCGCGGTGTACGCCACGTGGTTCCGGGTGGGCCTGACGACGCTGGCCTCCGTCGCGATCGCCCTGACCTACGGTGTCGGCGGGCTGCAGGCCCTCACCGGGCAGATCACCGTCGGCACGCTCGTGGCGCTCACCGCCTACCTCGGGCGGCTGTACGCACCCCTGGCGGCCCTGTCGAACGTCCAGGTCGACGTCATGACCGCGCTGGTCAGCTTCGAGCGGGTCCTGGAGGTGCTCGACCTCCGGCCGGCGCTGACCGAGGCCCCGGACGCCGACGACCTGCGCGACGCGGTCCGCCGCGAGGGCGCCGGGATCGAGCTGGACCACGTGACGTTCCGCTACCCCCGGTCCGACGAGGTCTCGCTGGCCTCGCTGGAGTCCGTCGCCGCGGCCCGCAAGGACCCCGACCGGGACACCCTGCGCGACGTCTCCTTCGTCGTCCCCGCGGGCGCCATGGTCGCCCTCGTCGGGCCCTCCGGCGCCGGGAAGACGACGCTCTCCCACCTGGTCAGCCGGCTGTACGACCCGACGGCCGGGACCGTCCGGGTCGCCGGCACCGATCTGCGCCGGGCGTCCTTCGCCTCCCTGCGTGCCACGGTCGGCGTGGTCTCCCAGGACGCCCACCTGTTCCACGACACCGTGGCCGCCAACCTGCGGTACGCCCGGCCCGACGCCACGGACGACGATCTCGAGCAGGCGCTGCACGCCGCGCACCTGTGGCCCGTCGTGGCGCAGATGCCCGACGGCCTCGACACGGTCGTCGGCGACCGCGGCTACCGGCTGTCGGGCGGCGAGCGGCAACGGCTCGCGATCGCGCGCGTGCTGCTCAAGGGGCCCGACGTCATCGTGCTGGACGAGGCCACGGCGCACCTGGACTCGGAGTCGGAGGCCGCCGTCCAGGCGGCTCTCGACGTGGCGCTGCAGGGGCGCACGGCACTCGTGATCGCCCACCGCCTGTCGACGGTGCGCCACGCCGACCGGATCGTCGTGCTCGACGACGGACGCGTCGTCGAGCAGGGCACGCACCTCGACCTGCTCGCCGCCGGCGGGCACTACGCCGAGGTGTACCGGGCGCAGTTCGCGGACCACGAGCGGGCCTGA	MRSFLQDRSVTDRRLSRSTLRRILAFARPYRRHLAGLVGLLTLSAAAGAVTPLLFRRIIDDGIAGGDRELVVGLAAAAVGLALAGAGLSLAERWVAALVGEGLIVDLRTAVFDHVQRMPLAFFARARTGALVQRLNGDVLGAQQAFTATLQSVVSNGLTVVFTLAAMLVMSWQLTLLSLLLVPAFVLPARWFGRRLAALTRTTYDLNADVGQTMNERFNVAGAQLAKVFGAPDRESAAYADQVRLLRDVGVRRAVYATWFRVGLTTLASVAIALTYGVGGLQALTGQITVGTLVALTAYLGRLYAPLAALSNVQVDVMTALVSFERVLEVLDLRPALTEAPDADDLRDAVRREGAGIELDHVTFRYPRSDEVSLASLESVAAARKDPDRDTLRDVSFVVPAGAMVALVGPSGAGKTTLSHLVSRLYDPTAGTVRVAGTDLRRASFASLRATVGVVSQDAHLFHDTVAANLRYARPDATDDDLEQALHAAHLWPVVAQMPDGLDTVVGDRGYRLSGGERQRLAIARVLLKGPDVIVLDEATAHLDSESEAAVQAALDVALQGRTALVIAHRLSTVRHADRIVVLDDGRVVEQGTHLDLLAAGGHYAEVYRAQFADHERA				NA	NA	NA	NA	NA
AK001_00431	636	coaE	COG0237	Dephospho-CoA kinase	ATGTTTCGCATGGGGCTCACGGGCGGGATCGCGGCCGGCAAGTCCGTCGCGGCGCAGCGGCTGGCGGACCTCGGGGCGGTCGTCATCGACCACGACCTGCTGGCCCGGGACGCCGTCGCGCCCGGGTCCGTCGGTCTGACCGAGGTCGTCGACGCCTTCGGACCGGGGGTGCTGTCCGACGACGGATCGCTCGACCGGCCCGCGCTCGGACGCCGGGTCTTCGGTGACGACGACGCGCGCCGCCGCCTGGAGGAGATCGTCCACCCGGAGGTCCGACGGCTGGCCGCGGAGCGCGAGGCCGCCGCCGGTGCGGCGGACCCGCGGGCCGTCGTCGTGCACGACATCCCCCTGCTGGTCGAGACGGGGCAGGCGGACCACTTCCACCTGCTCGCCGTGGTCGACGCCCCGGCGCAGCAGCGGGTGGACCGCCTGATGGCGACGCGCGGGCTCGACGAGGGCGAGGCCCGCGACCGCGTCGCGGCGCAGGCGAGCGACGCCGAGCGCCGCGAGCTGGCGGACGTGCTGCTGGACGGCACGGGGACGCCGGACGACCTGCGCCGCCAGGTCGACGAGCTGTGGGCCCGGGTCCGCCAGGAGGTGGCCGAGGAGCTCGACGCCGAGGAGCTCGAGCACTGA	MFRMGLTGGIAAGKSVAAQRLADLGAVVIDHDLLARDAVAPGSVGLTEVVDAFGPGVLSDDGSLDRPALGRRVFGDDDARRRLEEIVHPEVRRLAAEREAAAGAADPRAVVVHDIPLLVETGQADHFHLLAVVDAPAQQRVDRLMATRGLDEGEARDRVAAQASDAERRELADVLLDGTGTPDDLRRQVDELWARVRQEVAEELDAEELEH	PGPT0008835_1018	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008835-coaE-K00859	NA	NA
AK001_00432	633	pcp	COG2039	Pyrrolidone-carboxylate peptidase	GTGCGGGTGCTGGTGACGGGGTTCGAACCGTTCGGCGGTGACACGGTCAACGAGTCGTGGCAGGCCACCACGGCGCTGGCCGCCGACTGGCGTGCGGCGCGCGACGGCGCCGAGCTCGTCGTCGCGCCGCTGCCGGTGACGTTCGCCGCGGGGCCCGCCGAGCTGCTCCGGCTGGTCCGACGCCACGCTCCGGACGTCGTGGTGGCCACCGGCCTGGCGGGCGGGACCGAGTCGGTGCGGCTCGAGCGCGTCGCCGTCAACGTCGCCGACGCGCGCATCCCCGACAACGCCGGGGCGCAGCCGGTCGACGAGGCGGTCGTCGGCGACGGCCCGGCCGCCTACTTCTCGACCTTGCCCCTCAAGGCCGCGTGGAGCGCGGTGCGGTCCGACGGCGTGCCCGCGACCGTCAGCAACACGGCGGGCACGTACGTGTGCAACGCCACCTTCTACGCCCTGCAGCACGCCCTGGCGGGCCGGCCCGCCGTGCGTTCCGGGTTCGTGCACGTCCCGCGCGCCGCGCAGCTCGACGCGGCGTCCTCGGCCCGCGGCCTGAGGGCGGTGGTGCTCACGGCGACGGCGGCGGTGCGGGGCGAGCTGTCCGAGCCGCGGATCGCCGCCGGCGCCGAGCACTGA	MRVLVTGFEPFGGDTVNESWQATTALAADWRAARDGAELVVAPLPVTFAAGPAELLRLVRRHAPDVVVATGLAGGTESVRLERVAVNVADARIPDNAGAQPVDEAVVGDGPAAYFSTLPLKAAWSAVRSDGVPATVSNTAGTYVCNATFYALQHALAGRPAVRSGFVHVPRAAQLDAASSARGLRAVVLTATAAVRGELSEPRIAAGAEH				NA	NA	NA	NA	NA
AK001_00433	2112	uvrB	COG0556	UvrABC system protein B	ATGCGACCCGTGACCGACCTGCAGCGGACCGTGGCCCCGTTCGAGGTGGTCTCGGAGTACCAGCCCAGCGGCGACCAGCCCACCGCCATCGCCGAGCTCGCCGAGCGCATCCAGGCGGGGGAGAAGGACGCCGTGCTGCTCGGCGCCACCGGCACCGGCAAGAGCGCCACGACGGCCTGGCTCATCGAGAAGCTGCAGCGCCCGACGCTCATCATGGCGCCGAACAAGACCCTCGCCGCCCAGCTCGCCACGGAGTTCCGCGAGCTGCTGCCGCACAACGCCGTCGAGTACTTCGTCTCGTACTACGACTACTACCAGCCCGAGGCGTACATCGCGCAGACGGACACCTACATCGAGAAGGACTCCTCGATCAACGACGAGGTGGAGCGGCTGCGGCACTCGGCGACGTCGTCGCTGCTGACGCGGCGCGACACGGTCGTGGTGGCGTCGGTGTCGTGCATCTACGGCCTGGGCACCCCGCAGGAGTACGTCGACCGGATGGTGCGCCTCTCCGTCGGCGACGTCGTCGAGCGCGACGACCTGCTGCGCCAGTTCGTCCAGATGCAGTACACGCGCAACGACATGTCGTTCACGCGCGGGACCTTCCGGGTCCGCGGCGACACGGTCGAGATCATCCCGGTGTACGAGGAGCTCGCGGTACGCATCGAGATGTTCGGCGACGAGATCGAGACGATCCAGACGCTGCACCCCCTGACGGGGGAGGTCGTGCGCACCGAGCAGAGCATCTACCTGTTCCCCGCGACCCACTACGTCGCCGGCCCCGAGCGGATGGAGCGGGCGGTGTCGAGCATCGAGGCCGAGCTCGAGGCACGGCTGGCCGACCTGGAGAAGCAGAACAAGCTGCTCGAGGCGCAGCGGCTGCGCATGCGCACCACGTACGACATCGAGATGATGCGCTCCATCGGGACCTGCAACGGCATCGAGAACTACTCGCGGCACATCGACGGCCGCGAGGCGGGCTCGCCCCCCAACACCCTGCTCGACTACTTCCCCGAGGACTTCCTGCTCGTCATCGACGAGTCCCACGTGACGGTCCCGCAGATCGGCGCGATGTTCGAGGGCGACATGTCGCGCAAGCGGTCCCTGGTCGACCACGGGTTCCGGCTGCCCAGCGCGACGGACAACCGGCCGCTGCGCTGGGAGGAGTTCGTCGAGCGGATCGGTCAGACCGTGTACCTCTCCGCGACCCCGGGCGACTACGAGCTGTCCATGTCCGACGGCGTGGTCGAGCAGATCATCCGTCCCACGGGGCTGGTCGACCCGGAGGTCCACGTCAAGCCGACCACCGGGCAGATCGACGACCTCCTCGGCGAGATCCGCGACCGCGTGGACCGCAACGAGCGCGTCCTGGTGACGACGCTGACGAAGAAGATGGCCGAGGACCTGACCGACTACCTGCTCGGCAAGGACGTGCGGGTGCGCTACCTGCACTCCGAGGTGGACACGCTGCGCCGGGTGGAGCTGCTGCGCGAGCTGCGGCTCGGGGAGTACGACGTGCTGGTCGGCATCAACCTGCTGCGCGAGGGTCTCGACCTGCCCGAGGTGTCGTTGGTCGCGATCCTCGACGCGGACAAGGAGGGCTTCCTGCGCTCCGAGCGCTCCCTGATCCAGACGATCGGTCGCGCGGCCCGCAACGTCACCGGTCAGGTCCACATGTACGCCGACAAGGTCACCCCCGCGATGCAGTTCGCGCTGGACGAGACCGACCGGCGCCGGGAGAAGCAGCTCGCCTACAACGCCGAGCACGGGATCGACCCCCAGCCGCTGCGCAAGAAGATCGCCGACGTCACCGACATGCTCGCCCGGGAGGACATCGACACCGCCGAGCTGCTCGCCGGCGGCTACCGCAAGGCGCCGGACCGCGGCGGCCGCGGGGGTGCGCCGGTGCCCGGTGCGCCCAAGGAGGGCGCGACGTCCGGCAACCGGCTCGCCGGTCTCGCCGCGACCGAGCTGGCGGAGCTCATCCAGGAGCTCAGCGACCAGATGCACACGGCCGCGGCCGAGCTGCAGTTCGAGGTGGCGGCGCGCCTGCGGGACGAGATCGGCGGGCTCAAGAAGGAGCTGCGGCAGATGCGCGAGGCCACCGGCTGA	MRPVTDLQRTVAPFEVVSEYQPSGDQPTAIAELAERIQAGEKDAVLLGATGTGKSATTAWLIEKLQRPTLIMAPNKTLAAQLATEFRELLPHNAVEYFVSYYDYYQPEAYIAQTDTYIEKDSSINDEVERLRHSATSSLLTRRDTVVVASVSCIYGLGTPQEYVDRMVRLSVGDVVERDDLLRQFVQMQYTRNDMSFTRGTFRVRGDTVEIIPVYEELAVRIEMFGDEIETIQTLHPLTGEVVRTEQSIYLFPATHYVAGPERMERAVSSIEAELEARLADLEKQNKLLEAQRLRMRTTYDIEMMRSIGTCNGIENYSRHIDGREAGSPPNTLLDYFPEDFLLVIDESHVTVPQIGAMFEGDMSRKRSLVDHGFRLPSATDNRPLRWEEFVERIGQTVYLSATPGDYELSMSDGVVEQIIRPTGLVDPEVHVKPTTGQIDDLLGEIRDRVDRNERVLVTTLTKKMAEDLTDYLLGKDVRVRYLHSEVDTLRRVELLRELRLGEYDVLVGINLLREGLDLPEVSLVAILDADKEGFLRSERSLIQTIGRAARNVTGQVHMYADKVTPAMQFALDETDRRREKQLAYNAEHGIDPQPLRKKIADVTDMLAREDIDTAELLAGGYRKAPDRGGRGGAPVPGAPKEGATSGNRLAGLAATELAELIQELSDQMHTAAAELQFEVAARLRDEIGGLKKELRQMREATG	PGPT0014920_1075	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702	NA	NA
AK001_00434	1002		COG0861	putative membrane protein	ATGGATGTCGCCCCCTGGGTCTGGATCGTCACCGTCGGGGTCATCCTGGCGATGCTCGCCGTCGACTACGTCGGGCACGTGCGCACGCCGCACGCGCCGACCCTGAAGGAGTCGGCCTGGTGGTCGATCGCCTACGTCGCCGTGGCGCTCGTGTTCGGCCTCGTCGTGCTCGCCGGGTGGGGACCCACCTACGGCGGCGAGTACTTCGCCGGCTACATCACCGAGAAGTCGCTCAGCGTGGACAACCTGTTCGTGTTCGTGCTGATCATGACCAGCTTCCGCGTCCCGCGCCAGCACCAGCAGCGCGTCCTGCTCATCGGCATCACCATCGCCCTGGTGCTGCGCACGATCTTCATCCTGGCGGGCGCCGCGCTCATAGCGAACTTCGCCTGGATCTTCTACCTCTTCGGGGCGTTCCTCATCTGGACGGCGATCGCCCAGGCCCGTGCCGGGACCGACCACGACGAGGAGTACACCGAGAACGCCGTGCTGCGGCTGACCCGCCGGATCCTGCCGACGACCGACGACTACGTCGAGCACCACATGTTCACGAAGGTCGACGGCAAGCGGTACGTGACGCCGATGCTCATCGTCATGATCGCCATCGGCAGCGCCGACCTGCTGTTCGCCGTCGACTCGATCCCGGCCATCTTCGGGCTCACCCAGGAGACCTACCTCGTCTTCGCGGCCAACGCCTTCTCGCTGCTCGGTCTGCGCCAGCTCTACTTCCTCGTCGACGGCCTGCTGGACCGCCTCGTGTACCTCAACTACGGGCTCGCGGCGATCCTCGGGTTCATCGGCGTCAAGCTCGTGATCCACGCGCTGCACACCAACGAGCTGCCGTTCGTCAACGGCGGGGAGCACATCGAGGTCGTCCCCGAGATCCCCACCAGCGTCTCGCTGTCGTTCATCGTGGTGGTCCTGGCGGTCACCACCGTGGCGTCGCTGATGAAGAGCCGGCGGGAGGAACGCGTCGGCGTGTCGTCCTCGGGTGACGCGTGA	MDVAPWVWIVTVGVILAMLAVDYVGHVRTPHAPTLKESAWWSIAYVAVALVFGLVVLAGWGPTYGGEYFAGYITEKSLSVDNLFVFVLIMTSFRVPRQHQQRVLLIGITIALVLRTIFILAGAALIANFAWIFYLFGAFLIWTAIAQARAGTDHDEEYTENAVLRLTRRILPTTDDYVEHHMFTKVDGKRYVTPMLIVMIAIGSADLLFAVDSIPAIFGLTQETYLVFAANAFSLLGLRQLYFLVDGLLDRLVYLNYGLAAILGFIGVKLVIHALHTNELPFVNGGEHIEVVPEIPTSVSLSFIVVVLAVTTVASLMKSRREERVGVSSSGDA	PGPT0004905_1120	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_TELLURIUM_RESISTANCE	TELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794	NA	NA
AK001_00435	1008		COG0861	putative membrane protein	GTGACCCACGAGCTCCCGGTCTGGTTCGAGGCCGCGTCCCTCGCCCTGATGGTCGCGGTCCTCGTCACCGACCTGGTCGTGGTCGGCCGCCGGCCGCACGTGCCCTCGATGCGGGAGTCCGCGACCTGGGTGGCGTTCTACGTCGGCCTCGCCGCGCTCTACGGGCTCGTCGTGTGGGCCGTCGGCGGCTCGCAGCCCGCGGGGGAGTTCTACGCCGGTTGGGTCACCGAGTACTCCCTGAGCGTCGACAACCTCTTCGTGTTCGTGCTCATCATGTCGCGGTTCGCCGTGCCGCGGGAGCACCAGCAGCGGGTGCTGATGGTGGGCATCATCATCGCCCTGGTCCTGCGCGGGGCGTTCATCCTCGCCGGGGCAGCCCTGCTCGAGCAGTTCACGTGGCTGTTCTACCTGTTCGGCGCGTTCCTGGTGTACACCGCCGTCAAGCTCGCCGTCGGCGGGGACGACGACGAGGAGTTCCGGGAGAACGCCGTGATCCGCGCGCTGCGCCGCGTGCTGCCGCTGAGCCCCGGGTACGACGGCGCCAGGGTGCGCACCGTCGTCGACGGCCGGCGGGTCTGGACCCCGATGCTCGTGGTGTTCGTGGCCATCGGGACCACCGACCTGCTGTTCGCCTTCGACTCCATCCCCGCCATCTTCGGCCTGACCCAGGACCCCTTCATCGTGTTCGCCACGAACCTGTTCGCGCTGATGGGGCTGCGCCAGCTGTACTTCCTGCTCGGCGGGCTGCTGGACCGGCTGGTCTACCTGCCGGTCGCGCTCGCGGTCATCCTCGGCTTCATCGGCGTCAAGCTCGTGCTGGAGGCGCTGCACGCCAACACGCTGCCGTTCGTCAACGGCGGGGAGTCCGTCCCGTGGGCGCCGGAGGTGCCCATCTGGCTCTCGCTGGTCGTCATCGTCGGTGCGCTGGGCATCGCGACGGCGGCCAGCCTGCTGCGGACCCGCCGCGGCCGGGCGGTCGCCGACCGCGAGGACGCCGACCGCGACTGA	MTHELPVWFEAASLALMVAVLVTDLVVVGRRPHVPSMRESATWVAFYVGLAALYGLVVWAVGGSQPAGEFYAGWVTEYSLSVDNLFVFVLIMSRFAVPREHQQRVLMVGIIIALVLRGAFILAGAALLEQFTWLFYLFGAFLVYTAVKLAVGGDDDEEFRENAVIRALRRVLPLSPGYDGARVRTVVDGRRVWTPMLVVFVAIGTTDLLFAFDSIPAIFGLTQDPFIVFATNLFALMGLRQLYFLLGGLLDRLVYLPVALAVILGFIGVKLVLEALHANTLPFVNGGESVPWAPEVPIWLSLVVIVGALGIATAASLLRTRRGRAVADREDADRD	PGPT0004905_998	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_TELLURIUM_RESISTANCE	TELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794	NA	NA
AK001_00436	294			hypothetical protein	ATGGCCACCTTCGTCGTGACGTACACCTACTCCCCCGACGCCGAACGGCTCGACGCCGTCCGGCCCGAGCACCGCGCGTTCCTCGGCGCGCTGCACGAGGAGGGGTCGGTCGTCGTCTCCGGGCCCCTGCCGCCGACGGGGCAGGCTGCGGCGGGCGCCCTGATCGTGCTCGAGGCCGAGGACGAGACCGCGGCGCTGGCGCTGCTCGACGACGACCCGTTCCGCCGCGAGGAGCTCGTCGTCGAGGCGACCGTGCGCCGCTGGGTCCCCGTCATCGGGTCCCTCGCCGGCTGA	MATFVVTYTYSPDAERLDAVRPEHRAFLGALHEEGSVVVSGPLPPTGQAAAGALIVLEAEDETAALALLDDDPFRREELVVEATVRRWVPVIGSLAG				NA	NA	NA	NA	NA
AK001_00437	357			hypothetical protein	GTGACCCACAGCAGACAGCCGACCAGCTCCCGGACCGTCGGGGCGTGGGTCGCCGCCGCGCTCGTCCTCGTGGGCTTCCTGCTCGGCCTCGTCCTGTCGTACGTGCTCGAGGGAGTGCTCGCGGGGTCGACGGTCGGCGACGAGCGGTCGCTGACCGCCGACCTCGTGGGTGCGCTGCTGACGATCGTGCTCGTCCTGGTGCCGGCGTCGGTGGCCTGGAGGCAGGGGCGTCGCGCCGAGACGGACGGGGACCCGCGGGGCGCCTACCCCCGGCTGGTCGGTGCGGTGCTGGGGGGCCTCGGCATCGCCGTCGTGGTGGTCCAGCTCGTCGTGAACGCGTCCTCCGGCGCCTACTGA	MTHSRQPTSSRTVGAWVAAALVLVGFLLGLVLSYVLEGVLAGSTVGDERSLTADLVGALLTIVLVLVPASVAWRQGRRAETDGDPRGAYPRLVGAVLGGLGIAVVVVQLVVNASSGAY				NA	NA	NA	NA	NA
AK001_00438	2949	uvrA_1	COG0178	UvrABC system protein A	GTGAGCAATCGCCTCGTCGTCTCCGGTGCCCGCGAGCACAACCTGCGCAACGTCGACCTCGACCTGCCGCGCGACCGTCTCATCGTGTTCACCGGTCTGAGCGGCTCGGGGAAGTCCTCGCTGGCCTTCGACACGATCTTCGCCGAGGGGCAGCGCCGCTACGTCGAGTCGCTCTCGGCCTACGCCCGGCAGTTCCTGGGGCAGATGGACAAGCCGGACGTCGACTTCATCGAAGGACTGAGCCCGGCGGTCTCGATCGACCAGAAGTCGACGAACCGCAACCCGCGCTCGACGGTCGGCACGATCACCGAGGTGTACGACTACCTGCGGCTGCTCTTCGCCCGGGCGGGGACGCAGCACTGCCCCGTCTGCGACGAGCCGATCCAGGCCCAGACGCCGCAGCAGATCGTCGACAAGATCCTCGAGCTGCCCGAGGGGACCCGCTACCAGGTCCTCGCCCCCGTGGTCCGGGGGCGCAAGGGGGAGTACACCGAGCTGTTCGGCGAGCTGCAGACCCAGGGTTTCGCCCGCGCCCGGGTCGACGGCGAGGTGGCCCAGCTCAGCACGCCGCCGACGCTGGAGAAGAACCTCAAGCACGACATCGAGGTCGTCGTCGACCGGCTGGTGGCCCGCGACGGCGTCCAGCGCCGGCTGACCGACTCGGTCGAGACCGCCCTCGGGCTGGCCGGCGGGCTCGTGATGATCGAGCTCGTGGACGCCGACGTGGACGACCTCGACCGGGTCCGCAAGTACTCCGAGAAGCGCGCCTGCCCGAACGACCACCCGCTCAGCCTGGACGAGATCGAGCCCCGGACCTTCTCCTTCAACGCGCCCTACGGCGCCTGCCCGGAGTGCACGGGCATCGGGTTCCGCCTCGAGGTCGACCCCGAGCTCGTCGTGCCGGACCCGGAGAAGACGCTGCGCGAGGGCGCGATCGTGCCCTGGGCGCAGACGTCGTCGGAGTACTTCGAGCGGGTCCTGACGGCGCTCGCCGACGAGATGACCTTCTCCCTCGACGTGCCGTGGCGTGCGCTGCCGCAGCGTGCGCGGACCGCCGTCCTGCACGGCCGGAACCACAAGGTGCACGTGCGCTACCGCAACCGGTGGGGGCGTGAGCGCCAGTACTCGACCGGCTTCGAGGGGGCCGTGACCTTCATCGAGCGCCGGCACTCCGAGACCGAGTCCGACTGGTCGAAGGAGCGTTACGAGGCCTTCATGCGCCAGGTGCCGTGCCCGGTGTGCCAGGGTGCCCGTCTCAAGCCCGAGGTGCTGGCCGTCCGGGTCGGGTCGAAGTCGATCTGGGACGTGTGCCGGCTGCCCATCGCCGAGGCCAAGGAGTACCTGGACGCCCTGGACCTGGGCGAGCGGGAGCGCGCGATCGCGGGCGAGGTGCTCAAGGAGATCCACGCGCGGCTCGGCTTCCTGCTGGACGTCGGCCTGCACTACCTCACGCTCGAGCGGGCGGCGGGCACGCTGTCCGGCGGGGAGGCACAGCGTATCCGCCTGGCGACCCAGATCGGGTCCGGCCTGGTCGGTGTGCTGTACGTGCTGGACGAGCCGAGCATCGGTCTGCACCAGCGGGACAACCGTCGACTCATCGACACCCTGAGCCGGCTGCGCGACCTCGGCAACACCCTCATCGTGGTCGAGCACGACGAGGACACGATCCGGTCCGCGGACTGGATCGTCGACGTCGGACCGGGTGCGGGCGAGCACGGCGGGCAGGTCGTGCACTCCGGCGACTACGCCGGCCTGCTCGAGACCGAGGCGTCGATGACCGGCGCCTACCTGTCCGGGCGGCGCAGCATCGCGCTGCCGGCCACCCGGCGCGGGGTCGACCCGCAGCGGGAGCTCACCGTCGTCGGAGCCCGCGAGAACAACCTGCGCGACATCGACGTGTCGTTCCCCCTCGGTGTGTTCACCGCCATCACGGGGGTGTCGGGCTCGGGCAAGTCCACGCTGGTCAACTCGATCCTGCACACCGTGCTCGCCAACGAGCTCAACGGCGCGCGCCAGGTGGCCGGCCGGCACACGCGCGTGACCGGCACCGACCACCTCGACAAGGTCGTGCACGTCGACCAGGGGCCGATCGGCCGGACGCCGCGGTCGAACCCGGCCACCTACACCGGCGTGTGGGACCGGATCCGCAAGATCTTCGCCGAGACCGAGGAGGCGAAGGTCCGCGGGTACGGACCCGGCCGGTTCTCCTTCAACGTCAAGGGCGGACGGTGCGAGGCCTGCTCCGGTGACGGCACGCTGAAGATCGAGATGAACTTCCTGCCGGACGTCTACGTGCCCTGCGAGGTCTGCCACGGGGCGCGGTACAACCGCGAGACCCTCGAGGTGCACTTCAAGGGCCGGACGGTCGCCGACGTCCTCGACATGCCGATCGAGGAGGCCGCCGAGTTCTTCTCCGCGTTCCCGGCGATCTCGCGGCACCTGACCACGCTGGTGGAGGTCGGCCTCGGCTACGTGCGTCTGGGACAGCCGGCCCCCACGCTGTCCGGCGGCGAGGCGCAGCGCGTCAAGCTCGCCAGCGAGCTGCAGAAGCGGTCGACGGGCCGCACCGTGTACGTGCTCGACGAACCCACCACGGGCCTGCACTTCGAGGACATCCGCCGGTTGCTGTCGGTGCTGCAGTCCCTCGTCGACAAGGGCAACACCGTGCTCGTCATCGAGCACAACCTGGACGTGGTCAAGAGCGCCGACTGGATCATCGACATGGGACCCGAGGGCGGTTCCGGCGGCGGGGTCGTCGTGGCCCAGGGAACCCCCGAGCAGGTCGCGGCCGTGCCCGAGAGCCACACCGGCCGCTTCCTCGCCGAGACGCTGGCGCCGCACGCCGACGTCCCGGTCGAGCCGCAGGTCGCGGCCCCCGCGGCGGCGGCCGCGCCCGCCCGGCGGCGCAAGACGGCCAAGGCACGGGCCACCAAGCACGACGCCGCCTGA	MSNRLVVSGAREHNLRNVDLDLPRDRLIVFTGLSGSGKSSLAFDTIFAEGQRRYVESLSAYARQFLGQMDKPDVDFIEGLSPAVSIDQKSTNRNPRSTVGTITEVYDYLRLLFARAGTQHCPVCDEPIQAQTPQQIVDKILELPEGTRYQVLAPVVRGRKGEYTELFGELQTQGFARARVDGEVAQLSTPPTLEKNLKHDIEVVVDRLVARDGVQRRLTDSVETALGLAGGLVMIELVDADVDDLDRVRKYSEKRACPNDHPLSLDEIEPRTFSFNAPYGACPECTGIGFRLEVDPELVVPDPEKTLREGAIVPWAQTSSEYFERVLTALADEMTFSLDVPWRALPQRARTAVLHGRNHKVHVRYRNRWGRERQYSTGFEGAVTFIERRHSETESDWSKERYEAFMRQVPCPVCQGARLKPEVLAVRVGSKSIWDVCRLPIAEAKEYLDALDLGERERAIAGEVLKEIHARLGFLLDVGLHYLTLERAAGTLSGGEAQRIRLATQIGSGLVGVLYVLDEPSIGLHQRDNRRLIDTLSRLRDLGNTLIVVEHDEDTIRSADWIVDVGPGAGEHGGQVVHSGDYAGLLETEASMTGAYLSGRRSIALPATRRGVDPQRELTVVGARENNLRDIDVSFPLGVFTAITGVSGSGKSTLVNSILHTVLANELNGARQVAGRHTRVTGTDHLDKVVHVDQGPIGRTPRSNPATYTGVWDRIRKIFAETEEAKVRGYGPGRFSFNVKGGRCEACSGDGTLKIEMNFLPDVYVPCEVCHGARYNRETLEVHFKGRTVADVLDMPIEEAAEFFSAFPAISRHLTTLVEVGLGYVRLGQPAPTLSGGEAQRVKLASELQKRSTGRTVYVLDEPTTGLHFEDIRRLLSVLQSLVDKGNTVLVIEHNLDVVKSADWIIDMGPEGGSGGGVVVAQGTPEQVAAVPESHTGRFLAETLAPHADVPVEPQVAAPAAAAAPARRRKTAKARATKHDAA	PGPT0014915_1264	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701	NA	NA
AK001_00439	516			hypothetical protein	GTGGCCATGGGAGCCCACCACGAGTACTCCGTGACCGTCCGCTGGCCCGTCACCGGCGTCGAACCCGGCAGCGCCGCCGGGGCGACGACGTCGTACACCGCCTACACCCGCGACCACGACGTCGTCGTGCCCGGCCGTCCGGTGCTGGCCGGCACGGCCGACCCGTCGTTCCGCGGGGACCCGGAGCGCTACAGCCCCGAGGACCTGTTCGTGGCGAGCCTGTCCCAGTGCCACATGCTGTGGTTCCTGCACCTGGCCGCTGAGCGCGGCCTGGTGGTGCACTCCTACCGCGACGCCGCGACGGGCACGATGCGCGTCGAGTCGCGGGGCGAGGGGCAGTTCAGCGACGTCACGCTGCACCCGCGCCTCCTGGTCGCGCCGGGGGAGCAGGCCACCGAGGAGGTCGTGGCCGAGCTGCACGAGCGGGCGCACGCCCTGTGCTTCCTCTCGCGCAGCGTGAACTTCCCCGTGCTCGTCGAGCCGGCGCCGCTGCACGTGGCCGACGAGGCGGCCTGA	MAMGAHHEYSVTVRWPVTGVEPGSAAGATTSYTAYTRDHDVVVPGRPVLAGTADPSFRGDPERYSPEDLFVASLSQCHMLWFLHLAAERGLVVHSYRDAATGTMRVESRGEGQFSDVTLHPRLLVAPGEQATEEVVAELHERAHALCFLSRSVNFPVLVEPAPLHVADEAA				NA	NA	NA	NA	NA
AK001_00440	2022	uvrC	COG0322	UvrABC system protein C	ATGGCCGACCCAGCGACCTACCGCCCTCGCGCGGGCGAGATCCCGACGTCCCCCGGGGTGTACCGGTTCCGCGACCCGCACGGGCGCGTGATCTACGTCGGCAAGGCGAAGAACCTGCGCCAGCGGCTGTCGAACTACTTCCAGGACGTCGCGAACCTGCACCACCGCACCCAGCGGATGGTCACGACGGCGGCCTCGGTCGAGTGGACCGTCGTCGGCACCGAGGTCGAGGCCCTCGCCCTCGAGTACTCGTGGATCAAGGAGTACGACCCGCGGTTCAACGTCAAGTACCGCGACGACAAGTCCTACCCCTACCTCGCCGTGACCATGGGGGAGGAGATCCCCCGGGCGCAGGTGATGCGGGGGACCAAGCGGCGCGGCACGCGGTACTTCGGCCCGTACGGGCACGCCTGGGCGATCCGGGAGACCCTCGACCTGCTGCTGCGCGTCTTCCCCGTGCGGACCTGCTCCGCGGGCGTGTACCGGCGGGCCCAGCAGTCCGGCCGGCCCTGCCTGCTCGGGTACATCGACAAGTGCTCGGCGCCGTGCGTGGGCCGCGTCAGCCCCGAGGAGCACCGCGACCTGGCGAGCGACCTGTGCGACTTCATGGCCGGTGACACCGGGCGGTTCGTCCGGCGGCTGGAGAAGGAGATGACCGACGCCGCGGCCGCGATGGAGTACGAGCGCGCCGCCCAGCTGCGCGACGACCTCGCGGCGCTGCGTCGCGTGACCGAGAAGAACGCCGTCGTCCTCTCGGACGCCACCGACGCGGACGTCTTCGCGCTGGTCGGCGACGAGCTGGAGGCCGCGGTCCAGGTGTTCCACGTCCGCGGGGGCCGGATCCGCGGCCAGCGCGGCTGGGTCGTGGAGAAGGTCGAGGACGTCACCGACGCGGAGCTGGTCGAGCACCTGCTCCAGCAGGTCTACGGCGCGGTCGACGAGGTCCAGGACCCCACGCTGGCGCCCGAGCAGTCCCGGGCGGCCACCCGGGACGCCGTGCCGCGCGAGGTGCTCGTGCCCGTCCTGCCGCCGGACCTGGCGGAGGTGACGACCTGGCTGTCCGGGCTGCGGGGCGCCAGGGTGGACGTCCGGGTCCCGCAGCGCGGGGACAAGCGCGAGCTCGCCGAGACGGTCCGCACGAACGCCGAGCAGGCGCTGGCGCTGCACCGGACCCGCCGCGCCGGCGACCTGACCACCCGCAGCCAGGCGCTCGCCGAGCTCCAGGACGCCCTCGGGCTCGACGAGGCGCCGCTGCGCATCGAGTGCTACGACGTCTCGCACACCCAGGGCAGCTACCAGTCGGCCTCCATGGTCGTCTTCGAGGACGGCCTGCCGCGCAAGAGCGAGTACCGCACCTTCTCCGTCCGGGGCCCGGCCGGCGACGGCGCGGCGGACGACACCGCGGCGATGCACGAGGTCATCACCCGCCGGTTCAAGCGCTACCTCTCCGACCGGCACGCCTCGGGCGAGGTGGACGGCTCGGGCCCCGTGGGCGCCGAGACCGAGCCGGAGGAGCGGCGGCGGTTCGCCTACCCGCCGAACCTCGTCGTGGTCGACGGGGGCCCGCCGCAGGTGGCCGCGGCGGCACGCGCGCTGGAGGAGCTGGGCGTGACCGACGTCGCCCTGTGCGGGCTGGCCAAGCGCCTGGAGGAGGTCTGGGTGCCCCACGACGACTACCCGGTCATCCTCGAGCGGGCCTCCCAGGGGCTCTACCTGCTGCAGCGTGTGCGCGACGAGGCCCACCGGTTCGCGATCGCCCAGCACCGCAAGCGGCGCAGCAAGGGCATGGTGTCCTCGGTGCTCGACGAGGTGCCGGGCCTGGGGCCGGCCCGGCAGCGCGCGCTGCTGGACGCCTTCGGCTCGGTCAAGCGCCTGCGCGCCGCCACCGTGGACGAGGTCGCACGGGTCAAGGGCATGGGCCCGGCCACCGCGCAGGCCGTGGTGGACGCCCTGGCGGGCGCGACCGCCTCCGCCGCCACGCCGGCCGAGGCCGAGGCTCCGGGCGCCGGGGCCGCGTCATGA	MADPATYRPRAGEIPTSPGVYRFRDPHGRVIYVGKAKNLRQRLSNYFQDVANLHHRTQRMVTTAASVEWTVVGTEVEALALEYSWIKEYDPRFNVKYRDDKSYPYLAVTMGEEIPRAQVMRGTKRRGTRYFGPYGHAWAIRETLDLLLRVFPVRTCSAGVYRRAQQSGRPCLLGYIDKCSAPCVGRVSPEEHRDLASDLCDFMAGDTGRFVRRLEKEMTDAAAAMEYERAAQLRDDLAALRRVTEKNAVVLSDATDADVFALVGDELEAAVQVFHVRGGRIRGQRGWVVEKVEDVTDAELVEHLLQQVYGAVDEVQDPTLAPEQSRAATRDAVPREVLVPVLPPDLAEVTTWLSGLRGARVDVRVPQRGDKRELAETVRTNAEQALALHRTRRAGDLTTRSQALAELQDALGLDEAPLRIECYDVSHTQGSYQSASMVVFEDGLPRKSEYRTFSVRGPAGDGAADDTAAMHEVITRRFKRYLSDRHASGEVDGSGPVGAETEPEERRRFAYPPNLVVVDGGPPQVAAAARALEELGVTDVALCGLAKRLEEVWVPHDDYPVILERASQGLYLLQRVRDEAHRFAIAQHRKRRSKGMVSSVLDEVPGLGPARQRALLDAFGSVKRLRAATVDEVARVKGMGPATAQAVVDALAGATASAATPAEAEAPGAGAAS	PGPT0014925_819	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703	NA	NA
AK001_00441	936		COG1660	Nucleotide-binding protein	ATGAGCGAACCGTCGCCCATCACCGTCCCGCAGGGCATCCCCGAGATCGAGGCCGCCACCCCCGCCCCTGACCGTTCCGACCCCGAGGTGCTCATCATCACGGGCATGTCCGGAGCGGGGCGCACCCGTGCCGCCGGCGTCCTGGAGGACCTGGACTGGTTCGTGGTGGACAACCTGCCACCGATGATGATCGTGCCGCTGGTCGACCTGATGACGAAGGCCGGGTCCTCCGTGGAGCGGCTGGCGGTCGTCGTCGACGTGCGTGGCCGGGAGTACTTCGGCGAGCTGGCGCAGGCGCTGCAGCACCTCGACGACAGCGGCGTCACCCACCGCATCCTGTTCCTCGACGCCCGCGACGACGTCCTGGTCCGCCGCTACGAGAGCGTGCGGCGGCCGCACCCCCTGCAGGGCGACGGGCGGATCCTGGACGGCATCGAGGCCGAGCGGCGCATGCTCGCCTCGCTGGCCGAGCGCGCCGACGTCGTGCTGGACACCTCCGAGATGTCCGTCCACGACCTCGCCAAGGAGGTCCGGGACGCGGTCGCGGCGGGCGCTGCCGACTCCCTGCGCGTGAACGTCGTGGCGTTCGGATTCAAGTACGGGCTGCCGCTGGACGCGGACCACGTCGCCGACGTGCGGTTCCTGGCGAACCCCTACTGGATCACCGAGCTGCGGCACCTGACCGGCCAGGACGAGGCCGTGCGCCAGTACGTGCTGGCCCGGCCCGGGGCGAGGGAGTTCGTCGACCGCTACGTCGCGGCCCTCGAGCCGGTGCTGGCCGGCTACCTCGCGGAGGAGAAGCGCTACGTCACGATCGCCGTGGGCTGCACCGGCGGCAAGCACCGGTCCGTGGCCATCGCGGGCGAGATCGCCGACCGGCTGCGCCAGGACGGCCAGCGGGTGACGGTCACGGCACGTGACCTCGGGAAGGAGTAG	MSEPSPITVPQGIPEIEAATPAPDRSDPEVLIITGMSGAGRTRAAGVLEDLDWFVVDNLPPMMIVPLVDLMTKAGSSVERLAVVVDVRGREYFGELAQALQHLDDSGVTHRILFLDARDDVLVRRYESVRRPHPLQGDGRILDGIEAERRMLASLAERADVVLDTSEMSVHDLAKEVRDAVAAGAADSLRVNVVAFGFKYGLPLDADHVADVRFLANPYWITELRHLTGQDEAVRQYVLARPGAREFVDRYVAALEPVLAGYLAEEKRYVTIAVGCTGGKHRSVAIAGEIADRLRQDGQRVTVTARDLGKE				NA	NA	NA	NA	NA
AK001_00442	921		COG0391	Putative gluconeogenesis factor	GTGACGGCGCTCGGCGGCGGCCACGGGCTGTCCGCGACGCTGGGAGCGCTGCGACTGCTCTCCGACCGGCTGACGGCGGTGGTCACGGTGGCCGACGACGGCGGGTCCTCGGGCCGGTTGCGCGAGGAGCTGGGCGTGGTGCCGCCGGGCGACCTGCGGATGGCGCTCGCCGCCCTCTGCGACGACTCCGACTGGGGCCGCACGTGGAGCGGGCTGCTCCAGCACCGGTTCGCGTCCGGCGGCGAGCTCGACGGGCACGCCATGGGCAACCTGCTCATCGTCTCGCTCTGGGAACGCCTGGGGGACACCGTGGCGGGGCTCGACTGGGTGGGCCGGCTGCTCGGCGCCCGCGGCCGGGTGCTGCCCATGGCGTCGGTCCCGCTCGTCGTCGAGGCCGACGTCTCCTCGCACGGCCGGTGCTCCACGGTGGTCGGGCAGAGCAAGGTCGCCGTCACCGACGGGCTGGTCGAGCAGCTCCGGCTGGTGCCGGCGGACCCGCCGGCGTGCCCGGAGGCGGTCCGCGCGGTGCAGGAGGCCGACTGGGTCGTCATGGGCCCGGGCTCCTGGTACTCGTCGGTGCTGGTGCACCTGCTCGTGCCGGAGCTGGCGGCGGCGCTGCACTCGACGGCGGCGCGACGCTGCGTGACGCTGAACCTCAGCGCCGAGCGTGGCGAGACCCACGGGCTGTCGGCGCCGCAGCACCTCGAGGCGCTGCGCAAGCACGCCCCGGGGCTGCGGGTCGACGCCGTGCTCGCCGATCCCTCGACGGTGGACGACCGCGACGCGCTGGAGCGCGCCGCCGCCGAGCTCGGTGCCCGGCTGGTGTTGCGGCAGGTCCGACGGGGTGACGGCACCCCGCGGCACGACCCGTTGCGCCTGGCGGCGGCCTATCACGATGTCTTCGAGGGCGTGGCAGGATGA	MTALGGGHGLSATLGALRLLSDRLTAVVTVADDGGSSGRLREELGVVPPGDLRMALAALCDDSDWGRTWSGLLQHRFASGGELDGHAMGNLLIVSLWERLGDTVAGLDWVGRLLGARGRVLPMASVPLVVEADVSSHGRCSTVVGQSKVAVTDGLVEQLRLVPADPPACPEAVRAVQEADWVVMGPGSWYSSVLVHLLVPELAAALHSTAARRCVTLNLSAERGETHGLSAPQHLEALRKHAPGLRVDAVLADPSTVDDRDALERAAAELGARLVLRQVRRGDGTPRHDPLRLAAAYHDVFEGVAG				NA	NA	NA	NA	NA
AK001_00443	981	whiA	COG1481	putative cell division protein WhiA	ATGGCGCTCACGGCAGAGGTGAAGGACGAGCTGGCTCGATACCAGGTGACGCGCACGTCGTGCCGGAAGGCCGAGGTGTCGGCGATGCTGCGCTTCTCCGGAGGGTTGCACATCATCTCCGGGCGGGTGGTCATCGAGGCCGAGCTCGACGGCGACGCGGTGGCGGCGCGGCTGCGCCGCGCGATCGCCGACCTGTACGGGCACCAGAGCGAGCTCATCGTGGTCAAGGCGGGCGGCCTGCGCAAGAACGACCGGTTCGTCGTCCGCGTGGTGCGCGACGGGGAGTCGCTGGCCCGTCAGACGGGCCTGCTGGACGGTCGTGGGCGGCCGGTGCGTGGTCTGGCCCCCGAGGTCGTCTCGAGCGGCGCCGACGAGGCCGAGGCCGTCTGGCGGGGCGCCTTCCTCGCGCACGGCTCGCTGACCGAACCGGGGCGCTCGATGGCCCTGGAGATCACGTGTCCGGGCCCGGAGTCCGCGCTCGCCCTGGTGGGCGCCGCGCGGCGCCTGGGCGTCCAGGCCAAGTCGCGCGAGGTCCGCGGGATCGACCGCGTCGTCGTGCGCGACGGTGAGGCCATCGGGGAGATGCTGCGCCGGATGGGCGCCACGGCGACCCGGCAGACCTGGGAGGACCGCCGCGCCCGCCGCGAGGTCCGCGGCACGGCGAACCGGCTGGCCAACTTCGACGACGCGAACCTGCGACGCTCGGCACGCGCGGCCGTCGCGGCCGGGGCCCGGGTGGAGCGCGCCTTCGAGATCCTCGGGGACGAGGTGCCGGACCACCTGCGCGAGGCGGGCGAGCTGCGACTCGCGCACAAGCAGGCCTCGTTGGAGGAGCTCGGGCGCCTCGCCGAGCCGCAGCTGTCGAAGGACGCGGTCGCCGGCCGTATCCGCCGGCTGCTGTCCACGGCGGACAAGCGCGCCATGGAGCTCGGGATCCCCGACACGGAGGCCGGGCTGAGCGCCGACCTGCTCGACCTGTGA	MALTAEVKDELARYQVTRTSCRKAEVSAMLRFSGGLHIISGRVVIEAELDGDAVAARLRRAIADLYGHQSELIVVKAGGLRKNDRFVVRVVRDGESLARQTGLLDGRGRPVRGLAPEVVSSGADEAEAVWRGAFLAHGSLTEPGRSMALEITCPGPESALALVGAARRLGVQAKSREVRGIDRVVVRDGEAIGEMLRRMGATATRQTWEDRRARREVRGTANRLANFDDANLRRSARAAVAAGARVERAFEILGDEVPDHLREAGELRLAHKQASLEELGRLAEPQLSKDAVAGRIRRLLSTADKRAMELGIPDTEAGLSADLLDL				NA	NA	NA	NA	NA
AK001_00444	1005	gapA	COG0057	Glyceraldehyde-3-phosphate dehydrogenase	GTGACCATCCGCGTCGGTATCAACGGCTTCGGCCGCATCGGACGGAACTACTACCGGGCTCTGGTCGAGTCCGGTGCGGACATCGAGGTCGTGGGCGTCAACGACCTCACCGACAACAAGACGCTCGCCCACCTGCTCAAGTACGACACCGTGCTGGGCCGGTTCGGCAAGACCGTCGAGTTCGACGACGACAACATCATCGTCGACGGCGCCAAGATCCGCGCTCTCGCCGAGCGCGACCCGGCCAACCTCCCCTGGGGCGAGCTGGGTGCGGACATCGTGATCGAGTCCACCGGCTTCTTCACCGACGCGACCAAGGCCAAGGCGCACATCGACGCCGGCGCGAAGAAGGTCATCATCTCCGCCCCGGCGAAGAACGAGGACGCGACCTTCGTCATGGGCGTCAACAGCGACCAGTACGACCCGGCCGCGCACCACGTGATCTCCAACGCCTCGTGCACCACGAACTGCCTCGCGCCGCTGGCCAAGGCCCTCAACGACGCGATCGGCATCGAGCGTGGTCTGATGACCACGATCCACGCCTACACGGGTGACCAGAACATCCAGGACGGCCCGCACAAGGACCTGCGTCGCGCCCGCGCCGCGGCCCAGAACATCGTGCCGACCACGACCGGCGCCGCCAAGGCCGTCGCCCTGGTCCTGCCGGAGCTCAAGGGCAAGCTGGACGGCTACGCGCTGCGCGTGCCGACGATCACCGGTTCGGCGACCGACCTGACCTTCGAGTCCCCCAAGGAGGTCTCGGTCGAGGAGGTCAACGCCGCGGTCAAGGCTGCCGCCGAGGGCCCGCTCAAGGGCGTGCTGTCCTACGTCGAGGACGACATCGTCTCCTCGGACATCGTGACGGACCCGCACCAGAGCATCTTCGACGCCAAGCTCACCAAGGTGATCGGCAACCAGGTCAAGGTCGTCTCCTGGTACGACAACGAGTGGGGCTACTCCAACTCGCTCGTCTCGCTGACCGAGCTCGTCGGCGAGAAGCTCTGA	MTIRVGINGFGRIGRNYYRALVESGADIEVVGVNDLTDNKTLAHLLKYDTVLGRFGKTVEFDDDNIIVDGAKIRALAERDPANLPWGELGADIVIESTGFFTDATKAKAHIDAGAKKVIISAPAKNEDATFVMGVNSDQYDPAAHHVISNASCTTNCLAPLAKALNDAIGIERGLMTTIHAYTGDQNIQDGPHKDLRRARAAAQNIVPTTTGAAKAVALVLPELKGKLDGYALRVPTITGSATDLTFESPKEVSVEEVNAAVKAAAEGPLKGVLSYVEDDIVSSDIVTDPHQSIFDAKLTKVIGNQVKVVSWYDNEWGYSNSLVSLTELVGEKL	PGPT0018000_5939	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134	NA	NA
AK001_00445	1200	pgk	COG0126	Phosphoglycerate kinase	ATGAAGACGATCGATTCGCTCGGCGACCTGCGCGGCCGGCGCGTCCTGGTCCGTTCCGACTTCAACGTGCCGCTCGACGGCACGACCATCACCGACGACGGCCGCATCCGCGCCGCGCTCCCGACGCTCACGCGTCTGGTCGACGCCGGCGCCCGCGTCGTGGTGATGGCGCACCTGGGCCGGCCCAAGGGCACGCCCGACCCGGCGTTCTCCCTCGCCCCGGTCGCCGCCCGCCTGGGCGAGCTCCTCGGCCAGGACGTCGCGCTCGCGCAGGACCTCGTCGGCGAGTCCGCCCGCGCCACCGTCGCGGGTCTGGCCGACGGCCAGGTGGCCCTGCTGGAGAACGTCCGCTTCGACCCGCGCGAGACCTCCAAGGTCGACGCCGAGCGGGCCGAGCTCGCCGGTGAGCTGGCCGAGCTGGGCGACGCGTTCGTGTCCGACGGCTTCGGCGTCGTGCACCGCAAGCAGGCGTCCGTCTACGATGTCGCCGAGCGGCTGCCCGCCGGTGCCGGTGAGCTCGTCCTCGCCGAGGTGGAGTCGCTGTCCCGCGCCACGACCGACCCGGAGCGCCCCTACGCCGTCGTGCTCGGCGGCTCGAAGGTGTCCGACAAGCTCGGCGTCATCGCCAACCTCCTGACCAAGGCGGACCGGCTCCTCATCGGCGGCGGGATGGTGTTCACCTTCCTGGCGGCCAAGGGTCACGCGGTCGGCTCGTCGCTGCTGGAGGAGGACCAGATCGACACGGTCAAGGAGTACCTCGCGCAGGCCGAGGCCAACGGCGTCGAGATCGTGCTGCCCACCGACATCGTGGCGGCCGACTCCTTCGCGGCCGACGCCCCCCACGAGACGGTCGCCGCCGACGCGATCCCCGACGGCAAGATGGGCCTGGACATCGGCCCGGACTCCGGCGCGCTGTTCGCGGCCAAGCTCGCCGACGCACGCACGATCGCCTGGAACGGTCCCATGGGCGTCTTCGAGTTCGAGGCGTTCGCCGGCGGCACCCGTGCCGTGGCCCAGGGCATCGTCGACGCCACCGCGGCCGGCGCCTTCTCGATCGTCGGCGGCGGCGACTCGGCGGCCGCCGTGCGCAAGCTCGGCTTCGACGAGGCGGGCTTCAGCCACATCTCCACGGGCGGCGGCGCGAGCCTCGAGCTGCTCGAGGGCAAGCAGCTGCCCGGCCTGACCGTGCTGGCCGACTGA	MKTIDSLGDLRGRRVLVRSDFNVPLDGTTITDDGRIRAALPTLTRLVDAGARVVVMAHLGRPKGTPDPAFSLAPVAARLGELLGQDVALAQDLVGESARATVAGLADGQVALLENVRFDPRETSKVDAERAELAGELAELGDAFVSDGFGVVHRKQASVYDVAERLPAGAGELVLAEVESLSRATTDPERPYAVVLGGSKVSDKLGVIANLLTKADRLLIGGGMVFTFLAAKGHAVGSSLLEEDQIDTVKEYLAQAEANGVEIVLPTDIVAADSFAADAPHETVAADAIPDGKMGLDIGPDSGALFAAKLADARTIAWNGPMGVFEFEAFAGGTRAVAQGIVDATAAGAFSIVGGGDSAAAVRKLGFDEAGFSHISTGGGASLELLEGKQLPGLTVLAD	PGPT0018015_3420	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018015-pgk-K00927	NA	NA
AK001_00446	792	tpiA	COG0149	Triosephosphate isomerase	GTGGCCACGAACCGCACGCCGCTGATGGCGGGCAACTGGAAGATGAACCTGGACCACGCCGAGGCGATCGCCGCGGTCCAGAAGCTCGCCTGGACCCTCAAGGACGCCGGGCACGACTACTCCGCGGTGGAGGTGGCGGTCCTCGCACCGTTCACCGACCTGCGCTCGGTGCAGACCCTGGTCGACGCCGACAAGCTCGACATCCGCTACGGCGCCCAGGACCTCTCCCCGCACGAGAAGGGCGCGTACACCGGCGACGTCTCGGCCCCGATGCTCGCGCGCCTTGGGTGCACCTACGTCGCCGTCGGCCACTCCGAGCGCCGCGAGCACCACGGCGAGGACGACGCGCTGATCAACGCGAAGGTCAAGGCGGCCTTCGCCCAGCAGATCACGCCGGTGCTGTGCGTCGGCGAGGGCCTCGACGTGCGCGAGGCGGGCGACCAGGTGTCCTACACCCTGGCGCAGGTCGACGCGGCCCTCGAGGGCGTCCCGGCCGAGCAGGCGAAGACCGTCGTCATCGCCTACGAGCCCGTCTGGGCGATCGGGACCGGCAAGGTCGCGACCCCGGAGGACGCCCAGGAGGTCTGCGGGGCGATCCGCGGCCGCCTCGCCGAGCTGTACGACGCCGAGCTCGCCGTCGGCGTGCGCGTGCTCTACGGCGGCTCGGTGAAGTCGGGGAACGTCGCGCAGATCATGGCGCAGACGGACGTCGACGGCGCCCTCGTCGGCGGCGCGAGCCTCGACGCCGAGGAGTTCGCCAAGATCGCGCGCTACCAGTCGCACGTCTCCTGA	MATNRTPLMAGNWKMNLDHAEAIAAVQKLAWTLKDAGHDYSAVEVAVLAPFTDLRSVQTLVDADKLDIRYGAQDLSPHEKGAYTGDVSAPMLARLGCTYVAVGHSERREHHGEDDALINAKVKAAFAQQITPVLCVGEGLDVREAGDQVSYTLAQVDAALEGVPAEQAKTVVIAYEPVWAIGTGKVATPEDAQEVCGAIRGRLAELYDAELAVGVRVLYGGSVKSGNVAQIMAQTDVDGALVGGASLDAEEFAKIARYQSHVS	PGPT0017995_770	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017995-tpiA-K01803	NA	NA
AK001_00447	246	secG	COG1314	putative protein-export membrane protein SecG	ATGTTCGCAGCGTTGACGATCTTCCTGAACGTGCTGCTGGTGCTCACCAGCGCCTTCCTGATCCTGCTCATCCTCATGCACAAGGGGAAGGGTGGGGGACTGTCCGACATGTTCGGCGGAGGGATCTCCAGCGCGGCGGGAAGCTCCGGCGTCGCGGAGCGCAACCTGAACCGCATCACCGTCGGCATCGCCGTCGTGTGGTCGGTCGTCGTGGTCCTGCTCGGGGTCGCCACGCGCGTGAGCTGA	MFAALTIFLNVLLVLTSAFLILLILMHKGKGGGLSDMFGGGISSAAGSSGVAERNLNRITVGIAVVWSVVVVLLGVATRVS	PGPT0025720_3050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025720-secG-K03075	NA	NA
AK001_00448	318	rbpA_1		RNA polymerase-binding protein RbpA	ATGGGAGAGCAGGAGCGCGGCGTGCCCGCGCCCCGGAACCAGGTCTCGTACTGGTGCCTCAACGGGCACGAGACACGACCGAGCTTCGCGGCGGTCGACGAGATCGAACCCCCGGAGCAGTGGGACTGCCCCCGGTGCGGCTTCCCCGCCGGGCAGGACCCGGCGAACCCGCCGGCCCCGCTGCGCAACGAGCCCTACAAGACCCACCTGGCGTACGTGAAGGAGCGTCGGTCCGACGAGGACGGCGCCGCGCTGCTCCAGGAGGCGCTGGACACCCTGCAGGCGCGTCGCCGGGGTGTCGCCCCGGCACGCGGCTGA	MGEQERGVPAPRNQVSYWCLNGHETRPSFAAVDEIEPPEQWDCPRCGFPAGQDPANPPAPLRNEPYKTHLAYVKERRSDEDGAALLQEALDTLQARRRGVAPARG				NA	NA	NA	NA	NA
AK001_00449	762	pgl_1	COG0363	6-phosphogluconolactonase	ATGAGCACCCGTCTCGTCGTCGTCCACCCCGACGCCGCCGTCCTCGCCGAGGCCGCCGCGGCGCGGCTGCTCACGCGCCTGCTCGACGTGCAGTCCGTGCGCAGCCCCGCCCACGTCGTGCTGACGGGCGGCACGGTCGGCATCAGGACCCTCGCCGCAGCGGCCGCCAGCCCGCTGCGGTCGGCCGTCGACTGGTCCGGCGTCCACCTGTGGTGGGGGGACGAGCGGTTCCTGCCCGCCGGCGACCCCGACCGCAACGAGACGCAGGCGCGCGAGGCGCTCCTCGACGACCTCGTGGCGACCGGCGCCCTGCCCGAGGAGAACATCCACCGGATGCCGGCGCGCGGGGACGCCCCGTCCGAGGCGGCCACGCCCGAGGAGGCCGCGGCCGCGTACGCCGACGAGCTCGCGCAGCACTCCGAGGACGGCACGACGCCGCACTTCGACGTGCTGCTGCTGGGCATGGGGCCCGACGGCCACGTGGCCTCCCTGTTCCCCGAGCACCACGCCCTCGAGGCGCCCGGGTACACGGTGGGCGTGCACGGCTCGCCCAAGCCGCCCCCGGAGCGGGTCTCGCTGACGTTCGCCGCGATCGGGCGGGCCGACGAGGTCTGGGTCGTGGCGGCCGGCGGCGAGAAGGCGGAGCAGGCCGCGGCCGCGCTGGCCGACGGCCCCGTGACGCAGGTGCCCGCCGTGCGTGCCGTGGGTCGTCACCGCACGCTGTGGCTGGTGGACGCCGCGGCGGCCTCCGCACGCGGCTGA	MSTRLVVVHPDAAVLAEAAAARLLTRLLDVQSVRSPAHVVLTGGTVGIRTLAAAAASPLRSAVDWSGVHLWWGDERFLPAGDPDRNETQAREALLDDLVATGALPEENIHRMPARGDAPSEAATPEEAAAAYADELAQHSEDGTTPHFDVLLLGMGPDGHVASLFPEHHALEAPGYTVGVHGSPKPPPERVSLTFAAIGRADEVWVVAAGGEKAEQAAAALADGPVTQVPAVRAVGRHRTLWLVDAAAASARG	PGPT0013345_541	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
AK001_00450	933			hypothetical protein	ATGATCATCGACATGCCGGACACCAGCACCAACGCGGTCGGCAAGCGGCTCGACAGCCTGCGCGACGAGGGCGGCGCCGTGGCGCTGGGACGCGTCCTGACCCTCGTCGTCGTGGCCGGCGAGGACGACATCGAGGCGGCCGTCGACGCGGCCAACGAGGCCAGCCACGAGCACCCGTGCCGCGTCGTCGTGGTGGCGCCGCTGGCCGGCGGGGCCACCGACGGCCGGGTCGACGCCGAGATCCGGGTCGGCGGCGACGCCGGCGCCTCGGAGGTCGTCGTCCTGCGCTGCTCCGACCCGCTGCGCGAGCACCCCGACACCCTCGTGATGCCGCTGCTGCTGCCCGACGCCCCGATCGTGGTGTGGTGGCCCGCGGGCGGACCCGACGACCCGACGGGGAACCCGCTGGGCGCCATGGCCCAGCGTCGCATCACCGACACCACCCGGGCGCACGACCCGGTCGACATGCTCGGCCGGCTGGCGGAGGCGTTCACGGAGGGCGACACCGACCTGGCGTGGGCCCGGGTCACGCTGTGGCGTGGACTCATCGCCGCCGCCGTGGACCAGCCCCCGTACGAACCGGTCACGGCCGTGCGGGTCGAGGGCGAGCACCAGCACACCTCGCTCGACCTTCTCGCGTCCTGGCTCGGTGCCAAGCTGCGCTGCCCCGCGCGCGTGGTCCGCACCGAGGACGCGGACGCCATCACGCGGGTGGTCCTGGAGCGCAAGAGCGGCCCCATCGTCCTGGACCGCCCGGACGGACGGGTCGTGACCATCACGCAGCCGGGCAAGCCGGACCGACGCGTCTCGCTGCCGATCCGTGCGCTGTCCGAGGCCCTCATCGAGGAGCTGCGTCGTCTCGACCCGGACGAGGTCTACGGGCAGGTGTTGCGAGCGCTGGAGCGCGTCGAGACAGTGGAGTCGGCATCATGA	MIIDMPDTSTNAVGKRLDSLRDEGGAVALGRVLTLVVVAGEDDIEAAVDAANEASHEHPCRVVVVAPLAGGATDGRVDAEIRVGGDAGASEVVVLRCSDPLREHPDTLVMPLLLPDAPIVVWWPAGGPDDPTGNPLGAMAQRRITDTTRAHDPVDMLGRLAEAFTEGDTDLAWARVTLWRGLIAAAVDQPPYEPVTAVRVEGEHQHTSLDLLASWLGAKLRCPARVVRTEDADAITRVVLERKSGPIVLDRPDGRVVTITQPGKPDRRVSLPIRALSEALIEELRRLDPDEVYGQVLRALERVETVESAS				NA	NA	NA	NA	NA
AK001_00451	1542	zwf2	COG0364	Glucose-6-phosphate 1-dehydrogenase 2	GTGAGACCCGCCAAGATCACCGCTGAGCAGAATCCGCTGCGCGATCCGCTCGACCTGAGACTCCCCCGGATCGCCGGCCCGTGCGGCCTGGTGATCTTCGGGGTCACCGGCGACCTGTCGCGCAAGAAGCTCATGCCGGCCGTGTACGACCTGGCCAACCGCGGCCTGCTGCCGCCCGGGTTCGCGCTCACGGGCTTCGCCCGGCGCGACTGGGAGGACGAGGACTTCGCCCAGGTGGTGCACGACGCCGTCAAGGAGCACGCCCGCACGCCGTTCCGGGAGGCGACCTGGAAGCAGCTCGCCGAGGGCATCCGCTTCGTCCAGGGCAGCTTCGACGACCCGGACGCGTTCGAGGAGCTGCGCCGCACCGTCGAGACCCTCGACGCCGAGCGCGGCACCGGCGGCAACCACGCGTTCTACCTGTCGGTGCCGCCCAGCGCCTTCCCGCTCGTGTGCGAGCAGCTGTCCCGCTCCGGGCTGTCGGAGTCCGCCGAGGACGCGTGGCGCCGGGTGGTCATCGAGAAGCCGTTCGGCCACGACCTGGCCTCCGCCCAGGAGCTCGACGCGGTCGTCTCCAAGGTCTTCGAGCCGGAGTCGGTGTTCCGCATCGACCACTACCTCGGCAAGGAGACGGTCCAGAACATCCTGGCCCTGCGGTTCGCCAACCAGCTCTTCGAGCCGCTGTGGAACTCCAACTACGTCGACCACGTGCAGATCACGATGGCCGAGGACATCGGCATCGGCGGCCGGGCCGGCTACTACGACGGCGTCGGTGCGGCGCGGGACGTCATCCAGAACCACCTGCTGCAGCTCCTGGCCCTCGTGGCCATGGAGGAGCCGGTGAACTTCGACGCCGACGCGCTGCGCGCCGAGAAGATCAAGGCCCTGTCCTCCGTCCGGCTGCCGCGGGACCTGTCCCGGCACACCGCCCGCGGGCAGTACGCCTCGGCCTGGCAGGGCGGGGAGAAGGTCCCCGGGTTCCTCGAGGAGGAGGGGTTCAACCCCGAGTCCACGACCGAGACCTACGCCGCCGTCCGGATGGACATCGACAACCGGCGCTGGGCCGGCGTGCCGTTCTACCTGCGCACCGGCAAGCGCCTCGGGCGCCGCGTCACCGAGGTGGCCGTGGTGTTCAAGAAGGCTCCGCACCTGCCCTTCGAGTCCTCCCTGACCTCCGACCTGGGCTCCAACGCGCTGGTCATCCGCGTCCAGCCCGACGAGGGCGTGACGCTCCGCTTCGGCGCCAAGGTGCCCGGCACGGCCATGGAGGTCCGCGACGTCACGATGGACTTCGGGTACGGGCACTCCTTCACGGAGTCCTCCCCCGAGGCCTACGAACGCCTCATCCTCGACGTGCTGCTGGGCGACCCGCCGCTGTTCCCGACCCGCGAGGAGGTCGAGCTCTCCTGGAAGATCCTCGACCCGGTGATCGCGCACTGGGCCGGCAAGGGCAAGCCGGACACCTACCCGGCCGGGTCCTGGGGACCGCAGTCGGCCGACGCCATGATGGCCCGCGACGGCCGCACCTGGCGTCGACCCTGA	MRPAKITAEQNPLRDPLDLRLPRIAGPCGLVIFGVTGDLSRKKLMPAVYDLANRGLLPPGFALTGFARRDWEDEDFAQVVHDAVKEHARTPFREATWKQLAEGIRFVQGSFDDPDAFEELRRTVETLDAERGTGGNHAFYLSVPPSAFPLVCEQLSRSGLSESAEDAWRRVVIEKPFGHDLASAQELDAVVSKVFEPESVFRIDHYLGKETVQNILALRFANQLFEPLWNSNYVDHVQITMAEDIGIGGRAGYYDGVGAARDVIQNHLLQLLALVAMEEPVNFDADALRAEKIKALSSVRLPRDLSRHTARGQYASAWQGGEKVPGFLEEEGFNPESTTETYAAVRMDIDNRRWAGVPFYLRTGKRLGRRVTEVAVVFKKAPHLPFESSLTSDLGSNALVIRVQPDEGVTLRFGAKVPGTAMEVRDVTMDFGYGHSFTESSPEAYERLILDVLLGDPPLFPTREEVELSWKILDPVIAHWAGKGKPDTYPAGSWGPQSADAMMARDGRTWRRP	PGPT0017380_1489	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036	NA	NA
AK001_00452	1122	tal	COG0176	Transaldolase	GTGACCGAGACGAACCGCCCCACCGCACAGCTGTCAGCCGCCGGTGTGTCCATCTGGCTCGACGACCTCTCCCGGGAGCGGCTCGACACCGGCAACCTCGCCGGTCTGGTGGACTCCCACGACGTGGTCGGCGTGACCACCAACCCCACGATCTTCGCCGGCGCCCTGGCCGGCGGCGACGCCTACGACTCCGCGCTGGCCGACCTCGCCGGCACCGACGTCGAGGCCGCCGTCGAGCGCATCACCACCGACGACGTGCGCGCCGCGGCCGACGTGCTGCGTGGCGTCCACGACCGCACGGACACCGTCGACGGCCGGGTCTCGATCGAGGTCGACCCGCGGCTGGCCCGCGACACCGAGGCGACCGTCGCCACCGCCCGGCGGCTGTGGAGCACCGTGGACCGCCCCAACGTCATGATCAAGATCCCCGCCACCGTCGAGGGTCTGCCGGCGATCACCGAGACTCTCGCCGCCGGGATCAGCGTCAACGTCACGCTCATCTTCTCCATCGAGCGCTACCGCGCCGTCATGGAGGCGTTCCTCGCCGGTCTCGAGCAGGCCCGTGCCAACGGTCACGACCTGTCCGTGATCGGGTCGGTCGCGTCGTTCTTCGTCTCGCGCGTCGACGCCGCCGTCGACCCCGCGCTGGCCGAGGTCGGCACCGACGAGGCGTCCGCGCTGCAGGGCACCGCCGCGATCGCCAACGCTCGCCTCGCCTACGCCGCCTACCAGGACGTCTTCGAGGCCGACGTGACGGGACGCTGGGCCGCGCTGCGCGAGGCCGGGGCGCACCCGCAGCGTCCGCTGTGGGCCTCGACCGGCGTGAAGAACCCCGACTACCCCGACACGCTCTACGTCACCGAGCTCGTCGCCCCTGGGGTCGTGAACACGATGCCGCAGGCCACGCTCGACGCGGTCGCCGACCACGGCGAGATCCCCGCCGACACCGTGACCGGCACCGCCGACAGCGCCGCGGCCACGATCGCCGCCATCGAGGCCCAGGGGATCTCGATGGCCGAGGTGACCGCGCAGCTCGAGGCCGAGGGCGTGAGCAAGTTCGAGAAGAGCTGGGACGAGCTGCTCACCACCACCAAGACCGGGCTCGACGCCGCGGGCGCCTGA	MTETNRPTAQLSAAGVSIWLDDLSRERLDTGNLAGLVDSHDVVGVTTNPTIFAGALAGGDAYDSALADLAGTDVEAAVERITTDDVRAAADVLRGVHDRTDTVDGRVSIEVDPRLARDTEATVATARRLWSTVDRPNVMIKIPATVEGLPAITETLAAGISVNVTLIFSIERYRAVMEAFLAGLEQARANGHDLSVIGSVASFFVSRVDAAVDPALAEVGTDEASALQGTAAIANARLAYAAYQDVFEADVTGRWAALREAGAHPQRPLWASTGVKNPDYPDTLYVTELVAPGVVNTMPQATLDAVADHGEIPADTVTGTADSAAATIAAIEAQGISMAEVTAQLEAEGVSKFEKSWDELLTTTKTGLDAAGA	PGPT0017375_896	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_PENTOSE_METABOLISM,PGPT0017375-talA|talB-K00616	NA	NA
AK001_00453	2112	tkt	COG0021	Transketolase	GTGAACGCGTTCGATCCCGCACCGGCACCGCTCGAGTGGAACGACCTGGACGAGCGGGCGGTCAAGTCCATCAAGGCGCTCGCCGCCGACGCCGTGGAGAAGTGCGGCAGCGGTCACCCGGGCACGGCGATCTCCCTCGCCCCGGCCGCCTACCTGCTCTTCCAGAAGACGATGCGGCACGACCCCTCCGACCCGACCTGGGTCGGTCGCGACCGGTTCGTGCTCTCGGCCGGGCACTCGTCCCTGACGCTGTACCTGCAGCTCTTCCTGGCCGGCTACGGCATGGAGATGGACGACCTGGCCGCGCTGCGCACCTTCAACTCCCAGACGCCGGGCCACCCCGAGTACGGCCACACGCCCGGAGTCGAGATCACCACCGGTCCCCTCGGCCAGGGCCTGGCCTCCGCCGTCGGCATGGCCTACGCCTCGCGCCGCGAGCGGGCGCTGCTCGACCCCGACGCCGCGGCCGGCACCTCGCCGTTCGACCACCACGTGTACGTCATCGCCTCCGACGGCGACCTGCAGGAGGGCGTGACCTCCGAGGCCTCGTCGCTGGCCGGCACGCAGCAGCTCGGCAACCTCGTCGTGATCTGGGACGACAACAAGATCTCGATCGAGGACGACACCGAGATCGCCTTCACCGAGGACGTCCTGGCCCGGTACGAGGCCTACGGCTGGCACACCCAGCGGGTCGACTGGACCAACGGCGGCACGGGCTACGCCGAGGACACCGACGCGCTCGCCACCGCGCTGGACGCCGCGAAGAACGAGACGGGCAAGCCGTCGATCATCGCGCTGCGCACGATCATCGGCTGGCCGTCGCCGACCAAGCAGAACACCGGCGGCATCCACGGCTCGGCGCTCGGCGCCGACGAGGTCGCCGGGCTCAAGACGACCCTGGGTCTCGACCCCGAGGCCACGTTCACCATCGACGACGACGTCCTCAAGCACACGCGGTCGGTCGCCGAGCGCCACGGCTCCGAGCGCGACGCCTGGGACACCGCCTTCGAGGCGTGGAAGACCGCCAACCCGGACGGCGCCGCGCTGCTCGAGCGGCTCGGCGCGCGCGAGCTGCCCGCCGGCTGGACCGAGTCGCTGCCCGTCTTCGAGGCCTCCGAGAAGGGCGTCGCCACCCGCGCCGCCTCGGGCAAGGTGCTCTCGGCGCTGGCCGACGTGCTGCCCGAGCTGTGGGGCGGCTCGGCCGACCTCGCCGGGTCGAACAACACCACGATGGACGGCGAGCCGTCCTTCATCCCGTTCGAGCACGCCACGAAGAAGTTCCCGGGCAACCCGCAGGGCCGCACGCTGCACTTCGGCATCCGCGAGCACGCGATGGGCTCGATCCTCAACGGCATCGTGCTGCACGGCCTCACCCGCCCCTACGGCGGCACCTTCCTGCAGTTCTCGGACTACATGCGTGCCTCGGTGCGCCTGGCCGCGCTCATGGAGATCCCCACCACCTTCGTGTGGACCCACGACTCCATCGGTCTGGGCGAGGACGGCCCGACCCACCAGCCGGTCGAGCACCTCGCCGCGCTGCGCGCGATCCCCGGTCTCGACGTCGTCCGTCCGGCGGACGCCAACGAGACCGCGTGGGCCTGGCGCGGCATCATCGAGAACACCTCGAACCCCGCCGGCCTGGTGCTGACCCGCCAGGGGGTGCCCACCTACCCCCGCGGCGAGGACGGCTTCGCGCCGGCCGAGGGCACCCTGCGGGGCGCCTACACCCTGCTCGACACGGAGGGCACCCCGGACGTCATCCTGGTCGGCACCGGGTCCGAGGTGCAGCTCGCCGTCGAGGCGCGCGAGCAGCTCGCGGCCGACGGCATCGCCGCCCGCGTGGTGTCCATGCCCAGCCGCGAGTGGTTCGACCGCCAGGACGCCGAGTACCGCGAGTCGGTGCTGCCCGCCGGGGTCAAGGCCCGCGTGTCGGTCGAGGCCGGCATCGCGCTGAGCTGGCGCGACGTCGTCGGCGACGCCGGCCGCTCGGTCTCGCTCGAGCACTACGGCGCCTCGGCCGACTACAAGACGCTGTACCGCGAGTTCGGCATCACCGCTGACGCCGTGGCCACGGCGGCCCGCGAGTCGCTCGCCACCGTCCGCGGCGAGTGA	MNAFDPAPAPLEWNDLDERAVKSIKALAADAVEKCGSGHPGTAISLAPAAYLLFQKTMRHDPSDPTWVGRDRFVLSAGHSSLTLYLQLFLAGYGMEMDDLAALRTFNSQTPGHPEYGHTPGVEITTGPLGQGLASAVGMAYASRRERALLDPDAAAGTSPFDHHVYVIASDGDLQEGVTSEASSLAGTQQLGNLVVIWDDNKISIEDDTEIAFTEDVLARYEAYGWHTQRVDWTNGGTGYAEDTDALATALDAAKNETGKPSIIALRTIIGWPSPTKQNTGGIHGSALGADEVAGLKTTLGLDPEATFTIDDDVLKHTRSVAERHGSERDAWDTAFEAWKTANPDGAALLERLGARELPAGWTESLPVFEASEKGVATRAASGKVLSALADVLPELWGGSADLAGSNNTTMDGEPSFIPFEHATKKFPGNPQGRTLHFGIREHAMGSILNGIVLHGLTRPYGGTFLQFSDYMRASVRLAALMEIPTTFVWTHDSIGLGEDGPTHQPVEHLAALRAIPGLDVVRPADANETAWAWRGIIENTSNPAGLVLTRQGVPTYPRGEDGFAPAEGTLRGAYTLLDTEGTPDVILVGTGSEVQLAVEAREQLAADGIAARVVSMPSREWFDRQDAEYRESVLPAGVKARVSVEAGIALSWRDVVGDAGRSVSLEHYGASADYKTLYREFGITADAVATAARESLATVRGE	PGPT0011200_346	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615	NA	NA
AK001_00454	915	ctaB	COG0109	Protoheme IX farnesyltransferase	GTGCACGGGTCGGCCGCGCGGCGCTCGACCGGCTGGCGCGACCGCGTGGGCGCGTACGTGGCCCTGACCAAGCCCCGCATCATCGAGCTGCTGCTCGTGACCACGGTGCCCACGATGATCCTCGCCGAGGGCGGCCTGCCCGACCTCTGGCTCGTCGTGGCCACGCTGATCGGCGGGGCGCTCGCGGCGGGGTCGGCCAACGCCTTCAACTGCTACCTCGACCGCGACATCGACGAGATGATGAACCGCACCAAGCGGCGTCCGCTCGTCACGGGGGAGATCCGGCCCCGCAACGCGCTCGTCTTCGCCACGGCGCTCGGCGTGGTGGCGCTGGTGTGGTTCGCCTGGCTGGTCAACGTCCCGGCCGCGTGGCTGACGTTCGGGGCGATCGCGATCTACGTCGTGGGCTACACGATGATCCTCAAGCGCCGGACCCCGCAGAACATCGTGTGGGGCGGCATCGCCGGCTGCATGCCGGTCTTCATCGGCTGGGCGGCCGTGACCGAGAGCCTGAGCTGGGCGGCGCTCGCCCTGTTCGGCGTCATCTTCTTCTGGACGCCCCCGCACTACTGGCCGCTGTCGGTGAAGTTCAAGAAGGACTACGCCACTGCCGGCGTGCCGATGCTGCCCGTGGTCGCCACGGACCGCCGCGTGGCCGCCGAGATGCTGGGCCACACGATCGCGATGATCGCGTGCTCCCTGGCGCTCGTCCCGCTGGCCGGGATGACCTGGGTCTACACGGCGGTGGCGGCCGGCCTGGGCGGCTGGTTCCTGTGGCTGACGGTCTCCATGCTGCGCAAGGCGCAGGGCCGCGCCCGCAAGGGCCCCGGCGCGATGAAGGTCTTCCACGCCTCCATCACCTACCTCACCCTGCTGTTCGTCGCCGTCGCCGTGGACGTCTTCCTGCCCTTCTGA	MHGSAARRSTGWRDRVGAYVALTKPRIIELLLVTTVPTMILAEGGLPDLWLVVATLIGGALAAGSANAFNCYLDRDIDEMMNRTKRRPLVTGEIRPRNALVFATALGVVALVWFAWLVNVPAAWLTFGAIAIYVVGYTMILKRRTPQNIVWGGIAGCMPVFIGWAAVTESLSWAALALFGVIFFWTPPHYWPLSVKFKKDYATAGVPMLPVVATDRRVAAEMLGHTIAMIACSLALVPLAGMTWVYTAVAAGLGGWFLWLTVSMLRKAQGRARKGPGAMKVFHASITYLTLLFVAVAVDVFLPF	PGPT0008520_2396	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257	NA	NA
AK001_00455	957	xerD_1	COG4974	Tyrosine recombinase XerD	ATGACCGTGGCCCCCGCCGACCTGCCCGACGCGCTGGACTCGGCGCTGCGCGACTACCTCGCCCACCTCCGGGTCGAGCGGGGGCTGTCCGGCAACACCGTGCAGGCCTACCGCCGGGACCTGACCCGCTACGCCGCCTTCCTCGACGGTCTCGGCCGGTCGGGCCTGGCACAGGTCACCGAGCCCGACGTCGAGGCGTACCTGGACGCGGTGCGCGAGGGGGACGACGGCGGCCGGGCGCTCTCGCCCGCCTCGACGGCCCGTGCCCTGGCGGCCCTGCGGGGCTGGCACCGGTTCGCCCAGGCCGAGGGCGACGCCCCCGACGACCCCACGGTCGAGGTCACCGCACCCACCCAGACCCGCCGGCTGCCGCACGCCCTGAGCGTCGACGCCGTGGCCCGCCTCCTCGCCGCGGCGTCCGCCGTCGAGGGCGCGCCCGGCCTGCGCGACCGCGCTCTGCTCGAGCTGCTCTACTCCACCGGGGGCCGCATCAGCGAGGTGGTCGGGCTCGACGTCGACGACGTCGGCACCGAGGCCGTCGTGCGGTTGTTCGGCAAAGGCGGCAAGGAGCGGGTGGTCCCCGTCGGGTCCTACGCACGTGACGCGGTGGACGCCTACCTCGTCCGGGCCCGGCCGGTCCTGGCCACGGCCGGGAGCGCCCACGGGCGCAGCACCCCGGCGCTGTTCCTCAACTCCCGTGGCGACCGGCTCTCGCGCCAGAGCGCCTGGGCCGTGCTGCAGCGCGCGGCGGACCGCGCCGGGCTGGCCGAGCACGTCTCGCCGCACACGCTGCGCCACTCCTTCGCCACCCACCTGCTGGCCGGGGGAGCGGACGTGCGGGTCGTCCAGGAGCTGCTGGGCCACGCCTCGGTCACCACGACGCAGATCTACACGATGGTCACCCCGGAGGCGCTGCGGGAGGTCTACGCCGCCGCGCACCCCCGGGCCCTGTCCTGA	MTVAPADLPDALDSALRDYLAHLRVERGLSGNTVQAYRRDLTRYAAFLDGLGRSGLAQVTEPDVEAYLDAVREGDDGGRALSPASTARALAALRGWHRFAQAEGDAPDDPTVEVTAPTQTRRLPHALSVDAVARLLAAASAVEGAPGLRDRALLELLYSTGGRISEVVGLDVDDVGTEAVVRLFGKGGKERVVPVGSYARDAVDAYLVRARPVLATAGSAHGRSTPALFLNSRGDRLSRQSAWAVLQRAADRAGLAEHVSPHTLRHSFATHLLAGGADVRVVQELLGHASVTTTQIYTMVTPEALREVYAAAHPRALS	PGPT0022000_3340	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763	NA	NA
AK001_00456	912		COG1192	putative protein	ATGACGCAGCCGGCGACCGCCGAGAACACCTTGCCCGGGGTCCCGGGCGCGGAGGCGAACCAGGACGGCCCGGCCACGGACGTGGTGGGACGGCCGCTGCCCGAGTTCCCCCCGCCCGCCCCGCGCTCCTCCCACGGGCCCGCGCGCATCGTGGCGATGTGCAACCAGAAGGGCGGGGTGGGCAAGACCACCACGACCATCAACCTCGGGGCGACCCTCGCCGAGTACGGCCGCAAGGTGCTGCTGGTCGACTTCGACCCGCAGGGCGCGGCCTCCGTCGGCGTCGGCGTGAGCCCGCACGACCTCGAGCTGAGCGTCTACAACCTCGTCATGGAGCGTGACGTCACCCTCGACGACGTGGTGCGCCCCACCGCGATCGCGGGGCTCGACGTCGTCCCGGCGAACATCGACCTCTCGGCCGCCGAGGTGCAGCTCGTGGGCGAGGTCGCCCGCGAGTCCGTGCTGTCGCGCGCCCTGCGCCCGGCGCTGGACACCTACGACGTCGTGCTCATCGACTGCCAGCCGTCGCTCGGCCTGCTCACCGTCAACGCGCTGACCGCCGCGGACGGCGTCCTCATCCCGCTGGAGTGCGAGTTCTTCGCCCTGCGCGGCGTCGCCCTGCTCGTGGAGACCATCGACAAGGTGCGCGACCGGCTCAACCCCGACCTGGCCGTGGACGGCATCCTGGCGACCATGTACGACTCGCGCACCCTGCACTCGCGCGAGGTGGTCCAACGCGTCCACGAGGCCTTCGGCGACACGCTGCTGCACACCGTCATCGGCCGGACGGTGAAGTTCCCCGACGCCTCGGTCGCGGCCGAGCCGATCACCTCCCACGCCCCGTCGCACGCGGGTGCGGCGGCCTACCGGCAGCTGGCGCGTGAGCTCGTCGCCCGTGGCAGCGCCACCTGA	MTQPATAENTLPGVPGAEANQDGPATDVVGRPLPEFPPPAPRSSHGPARIVAMCNQKGGVGKTTTTINLGATLAEYGRKVLLVDFDPQGAASVGVGVSPHDLELSVYNLVMERDVTLDDVVRPTAIAGLDVVPANIDLSAAEVQLVGEVARESVLSRALRPALDTYDVVLIDCQPSLGLLTVNALTAADGVLIPLECEFFALRGVALLVETIDKVRDRLNPDLAVDGILATMYDSRTLHSREVVQRVHEAFGDTLLHTVIGRTVKFPDASVAAEPITSHAPSHAGAAAYRQLARELVARGSAT				NA	NA	NA	NA	NA
AK001_00457	882	scpA		Segregation and condensation protein A	GTGGCAGCGCCACCTGAGCAGGCCCCGGCGGAGGCTGCGGCGGGGCGGGCCCGCGCCGGGGCGTTCGAGGTCCACCTCGACAACTTCGACGGACCGTTCGACCTGCTGCTGTCGCTGATCAACGCCCGGGAGCTGGACCTGACCGAGGTGGCCCTGGCAGAGGTGACCGACGACTTCGTCGCACACCTGCGCGCCGCCGAGTCCGCCGCGCTCGAGGCCGCCGACCGCGGCGAGGAGCACCCCTCGTGGGACCTGGGCGCGGCGAGCGAGTTCCTCGTCGTGGCCGCCACGCTGCTCGACCTCAAGGCGGCGCGGCTGCTGCCCGGCACGGCCGAGGAGGACGCCGACGACCTCGAGCTCCTCGAGGCGCGCGACCTGCTGTTCGCGCGACTGCTGCAGTACCGCGCCTACAAGGAGATCTCGGCGGTGTTCGCCGACCGGCTCGCCGACGCCGGACGGCGGGTGCCGCGGTCGGTGCCGCTGGAGGAGCACCTGACCGCGATGCTCCCCGAGCTCGTGTGGACCCTGGACGGCGATCGCCTGGCCGAGCTGGCCGCCCGCGCCCTGGAGCCGAAGCCGCCGCCCGTGGTGGGGCTGAGCCACCTGCACGGCGCCGCCGTGAGCGTGCGCGAGGAGGCGCTGATCGTGGCCGACCAGCTGCGCCGCGAGCACGCCGCGACCTTCCGCGCCCTGACCGCCGGTGCGGAGCGGCTCGTGGTCGTCGCGCGGTTCCTGGCGCTGCTGGAGCTGTTCCGCACCGGGCAGGTCGCCTTCGACCAGGCGGCCGCCCTCGGCGAGCTGACCGTGCGCTGGACGGGCGGGACCGACGACGACGTGGGCGACGTCGAGGAGTTCGACGGCGCCCAGGAAGGAGCCGCATGA	MAAPPEQAPAEAAAGRARAGAFEVHLDNFDGPFDLLLSLINARELDLTEVALAEVTDDFVAHLRAAESAALEAADRGEEHPSWDLGAASEFLVVAATLLDLKAARLLPGTAEEDADDLELLEARDLLFARLLQYRAYKEISAVFADRLADAGRRVPRSVPLEEHLTAMLPELVWTLDGDRLAELAARALEPKPPPVVGLSHLHGAAVSVREEALIVADQLRREHAATFRALTAGAERLVVVARFLALLELFRTGQVAFDQAAALGELTVRWTGGTDDDVGDVEEFDGAQEGAA				NA	NA	NA	NA	NA
AK001_00458	657	scpB		Segregation and condensation protein B	ATGACCGAGTCGACGCAGAGCGTCCCGGCGCCGCAGGACGTCGCCGATCCGGCGTCGGGGGACAGCCCCGACCAGGTCGACGTCGACGACCTGCCCGGCGGCCTGCCCGCCGCGCTGGAGGCGATCCTCATGGTCGCCGAGTCCCCGGTCCCGGCCGAACGGCTCGCCGCCGCCGTGGCACGCCCCACCGCCGAGGTGCGCGCGGCGCTGACCGCCCTGGCGCAGGAGTACCAGGGGGCCGACGGCGCCCGGCCGCGCGGGTTCGAGCTGCGGCGCGGCGCCGAGGGGTGGCGCTTCTACTCCCACCGGGACCTGACCGACGTGGTGGCCCGCTTCGTGCTGGAGGGCCAGTCGTCCCGCCTCAGCCAGGCCGCCCTGGAGACCCTCGCGGTCGTCGCCTACCGCCAGCCCGTCACCCGCGGGCAGGTCTCGGCCGTGCGCGGGGTCAACGTCGACGGGGTCGTGCGCACCCTGCTGGCCCGCAACCTGGTGGCCGAGGTCGGCCAGGACCCGTCCACGGGCGCGGTGCTGTTCGGCACCACCGGGGAGTTCCTGGACCGGATGGGCTGGTCGTCGCTGGACGAGCTGCCGCCGCTGGCCCCGCACCTGCCCGGCGTGGAGGCGCTCGGCGGGCTGGAGGACCTCGGCGTCGACTGA	MTESTQSVPAPQDVADPASGDSPDQVDVDDLPGGLPAALEAILMVAESPVPAERLAAAVARPTAEVRAALTALAQEYQGADGARPRGFELRRGAEGWRFYSHRDLTDVVARFVLEGQSSRLSQAALETLAVVAYRQPVTRGQVSAVRGVNVDGVVRTLLARNLVAEVGQDPSTGAVLFGTTGEFLDRMGWSSLDELPPLAPHLPGVEALGGLEDLGVD				NA	NA	NA	NA	NA
AK001_00459	819		COG1187	putative RNA pseudouridine synthase	ATGGGGTCCATGCCCACCTCACGCCGCGGCGGGAGCCGCCGCTCCTCGCGCCGCCAGGCCCCCGCGTCCCCGACCGTCGACGTCCACGTCCCCGACGGCGTGCGCCTGCAGAAGGTGCTCGCCCAGGCCGGGCTCGGCTCGCGGCGCGCCTGCGAGGCGCTGATCGCCGACGGCCGGGTGGAGGTCGACGGCCAGGTCGTGGTCGAGCTCGGCGTGCGGGTCGACCCGGCCACCGCCGTCGTCCACGTCGACGGGCTGCGCGTCCAGCTCGACGACTCGAAGATCACCGTCGCGGTGAACAAGCCGCTCGGGATGCTCTCGGCGATGAGCGACCCCGAGGGGCGCCCCACGGTCGCCGAGCTGGTTCAGGACCGCCCGGAGCGCCTGTTCCACGTCGGACGCCTGGACGCCGACTCCGAGGGCCTGCTGCTGCTGACCAACGACGGCGAGCTCGGCAACCGGCTGTCGCACCCGCGCTACGAGATCCCGAAGACCTACCTGGTGACGGTCGAGGGCGGCGAGTTCTACCCGCGCCACGCCAAGGAGCTGCTGGCCGGCGTCGAGCTCGACGACGGCCCCGCCCGCATGGACAAGGTCCACGTCGTCGACGCCGTGCCCGGCCGGACGATGATCGAGGTGGTCCTGCACGAGGGCCGCAACCGCATCGTGCGGCGGATGTTCGACGCGATCGGCTTCCCGGTCACGCGACTGGTGCGCACCCGCGTCGGGCCCGTCACCCTCGGCGACCTGAAGGTCGGCCGCACCCGCGTGCTCGGCCGCACCGAGCTCGGCACGCTGATGCGCGCCGTGGACCTCTGA	MGSMPTSRRGGSRRSSRRQAPASPTVDVHVPDGVRLQKVLAQAGLGSRRACEALIADGRVEVDGQVVVELGVRVDPATAVVHVDGLRVQLDDSKITVAVNKPLGMLSAMSDPEGRPTVAELVQDRPERLFHVGRLDADSEGLLLLTNDGELGNRLSHPRYEIPKTYLVTVEGGEFYPRHAKELLAGVELDDGPARMDKVHVVDAVPGRTMIEVVLHEGRNRIVRRMFDAIGFPVTRLVRTRVGPVTLGDLKVGRTRVLGRTELGTLMRAVDL				NA	NA	NA	NA	NA
AK001_00460	699	cmk	COG0283	Cytidylate kinase	GTGGTCACCATTGCCGTCGACGGCCCGTCCGGGTCCGGCAAGTCCAGCGTCTCGAAGGCCGTCGCCGGCCGTCTCGGCCTGGCCTACCTCGACACCGGTGCGATGTACCGGGCCGCCACGCTGTGGTGCGTGCGCACCGACGTCGCCCTGGACGACGCCGACGCGGTCGCGCGGTCCGTGCGGGAGATGCCCCTGGAGATGGGCGTCGACCCCGCCGCGCCCGGCGTGGTGCTCGACGGCGACGACGTCGCCGCGGCGATCCGCACCACCGAGGTCTCCTCGGCGGTGTCGCAGGTCGCGACCAACCTCGAGGTCCGCGCCGAGATGAAGCGCCGCCAGCGCGCCGTCATCGACACCGAGAACACCGACGGGTTCTCCGGCGGCCGTGGCATCGTCGCCGAGGGCCGCGACATCACCACGGTCGTCGCCCCCGACGCCGACGCCCGCGTCCTGCTGACCGCCAGCGAGGAGGCGCGCCTGCGCCGCCGGTCGCTGGAGGTGCACGGTGCGGCGGACGCCGCCGCCGTGGACGCCACCCGCGACCAGGTGCTGCGCCGGGACCGGGACGACTCGACCGTCAGCCAGTTCCTCACCGCGGCGGACGGCGTGGTGACCGTCGACTCCAGCGAGCTGGATCTGGACCAGACCGTCGCGGCGGTCCTCTCCGTCGTCGATCGCCTGGGACAATGGCAGGCATGA	MVTIAVDGPSGSGKSSVSKAVAGRLGLAYLDTGAMYRAATLWCVRTDVALDDADAVARSVREMPLEMGVDPAAPGVVLDGDDVAAAIRTTEVSSAVSQVATNLEVRAEMKRRQRAVIDTENTDGFSGGRGIVAEGRDITTVVAPDADARVLLTASEEARLRRRSLEVHGAADAAAVDATRDQVLRRDRDDSTVSQFLTAADGVVTVDSSELDLDQTVAAVLSVVDRLGQWQA	PGPT0021220_618	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945	NA	NA
AK001_00461	1539	der	COG1160	GTPase Der	ATGACCACACCCGCCGACGGTCCCGAGCCCCTGCCCGCCGACCCTGTCGACACCGCCGAGGTCCCGGCCGAGGACCTCGGTCCCGTCGTCACCGAGTTCGCCGACGACGAGGCCCGCGAGCGCGCACTGCGCGCCGGCCTCGAGGAGTTCGAGCTCGACGAGACCGACCGCGAGCTGCTCGACACCGGTTGGGAGGACCTCGACGCCGCCCCGGCCGAGGCCCCGCTGCCGGTGCTCGCGGTCGTCGGCCGGCCCAACGTCGGCAAGTCGACCCTCGTCAACCGCATCCTCGGACGGCGCGAGGCCGTCGTCGAGGACACCCCCGGCGTCACCCGCGACCGGGTGACCTACGCGGCCGAGTGGTCGGGCACCGACTTCACGCTCGTCGACACCGGCGGCTGGGAGGTCGACGTCGCGGGCATGGAGTCCAAGGTCGCCGAGCAGGCCGAGGTCGCGATCGACCTCGCCGACGCCGTCGTGTTCGTCGTGGACGCCCAGGTGGGTGCCACGGCCACCGACGAGCGCGTCGTCGAGCTGCTGCGCCGCTCGGGCAAGCCGGTGATCCTGTGCGCCAACAAGGTCGACGGCCCCTCCGGCGAGGCGGACGCCGCCGCGCTGTGGGCGCTGGGCCTGGGCGAGCCGATGCCCGTCTCTGCGCTGCACGGGCGCGGCCTGGGCGACATGCTCGACGCCGTGCTCGAGGTGCTGCCGGACGAGTCGGCGCGCGGCGAGCTGCGGCCCGAGGGCCCGCGTCGCGTCGCGCTGGTGGGGCGGCCCAACGTCGGCAAGTCCTCGCTGCTGAACAAGCTGGCGGGCGCCGAGCGCGTCGTGGTCGACGAGACCGCGGGGACGACCCGCGACCCGGTCGACGAGCTCGTGGAGATCAAGGGGATCCCGTACTGGTTCGTCGACACCGCCGGCATCCGCCGCCGGGTGCATCAGACCCGGGGCGCGGACTTCTACGCCTCGCTGCGCACGCAGGCCGCGATCGAGAAGGCCGAGATCGCCGTCGTGCTCATCGACTCCTCGACGCCGCTGACCGAGCAGGACCTGCGGGTCATCTCCCAGACCGTCGACGCCGGCCGGGCCCTCGTCATCGCCTACAACAAGTGGGATCTGATGGACGACGACCGCCGGCACTTCCTCGAGCGGGAGATCGACAAGGAGCTCGTCCAGGTCACCTGGGCGCCCCGGATCAACGTCTCGGCACGCACCGGCTGGCACACCGACCGGCTGGTCCGGGCGCTGGAGACGTCGCTGGCCTCCTGGGACACCCGGATCCCCACCGGGCGCCTGAACGGGTTCCTCGGCGAGCTGGTCTCCGCCCACCCGCACCCGGTGCGCGGCGGCAAGCAGCCGCGCATCCTGTTCGCCACGCAGGCCTCGACGCGCCCGCCGCGCTTCGTCATCTTCGCCACGGGGTTCATCGAGGCCGGCTACCGCCGGTTCATCGAGCGCCGGCTGCGCGAGGAGTTCGGGTTCGAGGGCTCGCCGATCCGGATCAGCGTCCGGGTGCGCGAGAAGCGCCGCCGGCGCTGA	MTTPADGPEPLPADPVDTAEVPAEDLGPVVTEFADDEARERALRAGLEEFELDETDRELLDTGWEDLDAAPAEAPLPVLAVVGRPNVGKSTLVNRILGRREAVVEDTPGVTRDRVTYAAEWSGTDFTLVDTGGWEVDVAGMESKVAEQAEVAIDLADAVVFVVDAQVGATATDERVVELLRRSGKPVILCANKVDGPSGEADAAALWALGLGEPMPVSALHGRGLGDMLDAVLEVLPDESARGELRPEGPRRVALVGRPNVGKSSLLNKLAGAERVVVDETAGTTRDPVDELVEIKGIPYWFVDTAGIRRRVHQTRGADFYASLRTQAAIEKAEIAVVLIDSSTPLTEQDLRVISQTVDAGRALVIAYNKWDLMDDDRRHFLEREIDKELVQVTWAPRINVSARTGWHTDRLVRALETSLASWDTRIPTGRLNGFLGELVSAHPHPVRGGKQPRILFATQASTRPPRFVIFATGFIEAGYRRFIERRLREEFGFEGSPIRISVRVREKRRRR				NA	NA	NA	NA	NA
AK001_00463	1113	ribD	COG0117	Riboflavin biosynthesis protein RibD	ATGACCACCGCCACGGCGGGTCCCACGGTGACACCGGCCGAGCAGGCCGCGATGGAGCGCGCGCTGACCCTCGCCGCGACACCGGGACTCGACCTCGGGCCCAATCCGCGCGTCGGGTGCGTGCTGCTCGACGCCGACGGCGCCACGCTGGCCGAGGGATTCCACCGGGGCGCCGGCACGCCGCACGCCGAGGCGGTGGCGTTGACCAACGCCCGGCACGCCCACGGCCCGGCTGCGCTGCGCGGCGCCACCGCCGTCGTCACCCTCGAACCCTGCGCGCACACCGGCCGCACCGGCCCGTGCACCGACGCGCTGCGCGACGCCGGCGTGTCGCGCGTCGTGTTCGCCCAGCCCGACCCCAACCCCCAGGCCGCCGGGGGAGCAGAGGCCCTGCGCGCGGCCGGGGTCACCGTCGTCGGAGAGGTCCGGGCCGACGCGGCGCGGGCACTGAACCACGCCTGGTCCGCGACGGTCTCGCTCGGGCGGCCGTTCGTCACGTGGAAGGTCGCCACGACGCTGGACGGCCGCACCGCCGCCGCCGACGGCACCTCGCGCTGGATCACCTCGGCCGCCGCCCGCCGCGACGTGCACCGCCTGCGCGCCGAGGCCGACACCGTCCTGGTGGGCACCGGCACCCTGCTGGACGACGACCCGTCGCTCACCGTCCGGGAGGGACCCGGGCCGCAGCCGCTGCGGGCGGTCATGGGCCTGCGCGAGGTCCCCGCGACCGCACGGCTGGCCGCCCCGGGCCCCGACGGCGCCGTCGCCCGCCACCTGCGCACCCGCGACCCTCGCGCGGCGCTCACCCGGCTCTGGGACCTCGACCGCCGTCACGTGCTGCTCGAGGGCGGCGCCACGCTGGCGGCGGCCTTCCTGCGCGCCGGGCTCGTCGACGAGATCGTCGCCTACGTGGCCCCGACCCTGCTCGGCGCCGGCACCGCCGCCGTCGGCGACCTCGGCATCACGACCATCACCGACGCCGCACGGTTCGACCTCGTCGACGCCACCGTCGTCGAACCGGCGCCCGACGACCTCGCCACCCCCGACGGCCCCGCCTCCGGCCTGGCCGCCACGAACCTGCGGCTCACCCTGCGGCCGCGGAAGGAGTCCTGA	MTTATAGPTVTPAEQAAMERALTLAATPGLDLGPNPRVGCVLLDADGATLAEGFHRGAGTPHAEAVALTNARHAHGPAALRGATAVVTLEPCAHTGRTGPCTDALRDAGVSRVVFAQPDPNPQAAGGAEALRAAGVTVVGEVRADAARALNHAWSATVSLGRPFVTWKVATTLDGRTAAADGTSRWITSAAARRDVHRLRAEADTVLVGTGTLLDDDPSLTVREGPGPQPLRAVMGLREVPATARLAAPGPDGAVARHLRTRDPRAALTRLWDLDRRHVLLEGGATLAAAFLRAGLVDEIVAYVAPTLLGAGTAAVGDLGITTITDAARFDLVDATVVEPAPDDLATPDGPASGLAATNLRLTLRPRKES	PGPT0008555_2075	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008555-ribD-K11752	NA	NA
AK001_00464	639	ribE	COG0307	Riboflavin synthase	ATGTTCACCGGCATCGTGTCCGAGCTCGGCACCGTGGTGGCCCTCGAGAGGACCGCCGACGCCGCACGCCTCACCGTGCGCTCGCCGGGCGTGCTCGACGGCGTCCGCACCGGCGACTCGATCGCGGTCGACGGGTGCTGCCTGACGGTCTCCGACCACGACGACAGCACCTGGACGGCCGACCTCATGGCCGAGACCCTCGAGATGACCACGCTCGGGCACCGGCGTGCCGGCGACCGGGTCGACGTGGAGCCGGCGCTCGCGGTCGGCGACCGGCTCGGCGGGCACATCGTGCAGGGCCATGTCGACGGCGTCGGCACCGTCCTGGCGCGCACGCCCGGCGAGCGGTGGGAGGCCGTGGAGATCTCCCTGCCGGCCGACCTGGCGCGGTACGTCGTGGCCAAGGGCTCGATCGCGGTCGACGGCGTGTCCCTGACCGTCGTGGAGGCCGGTGCGGACCGGTTCACGGTCAGCCTGATCCCCGAGACGCTCGCGCGCACCACCCTGGGATCTCGTGCCGTGGGCGAGCAGGTCAACCTCGAGACGGACGTGCTCGCCCGGCACGTCGAACGGCTGCTGGACGGGCGCCTGGCCGGGCCGGCCGTGCCGCCGGCCGAGATCGCGGAGGTGCTCCGATGA	MFTGIVSELGTVVALERTADAARLTVRSPGVLDGVRTGDSIAVDGCCLTVSDHDDSTWTADLMAETLEMTTLGHRRAGDRVDVEPALAVGDRLGGHIVQGHVDGVGTVLARTPGERWEAVEISLPADLARYVVAKGSIAVDGVSLTVVEAGADRFTVSLIPETLARTTLGSRAVGEQVNLETDVLARHVERLLDGRLAGPAVPPAEIAEVLR	PGPT0008610_2671	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008610-ribE|RIB5|ribC-K00793	NA	NA
AK001_00465	1335	ribBA	COG0108	Riboflavin biosynthesis protein RibBA	ATGAGCGTCGTCGACCCGGACGTGCGCGAGCGCGTCGATCGTGCCGTGGCAGCGGTGGGTGCCGGACAGGCGGTCGTCGTCGTCGACGACGAGAGCCGGGAGAACGAGGGCGACCTGATCTTCGCCGCGGAGGCCGCTACGCCGGAGCTCATGGGCTTCACGGTGCGGCACACCAGCGGGCTGATCTGCGTCGCCGCCGACGGCGCGACCCTGGACCGGCTGCGCCTGCCGCTGATGGTCACCGAGAACCGGGACGCCTTCCGGACCGCGTACACGATCACGGTGGACGCCGCCGAGGGCGTCACGACCGGGATCTCCGGCGCGGACCGGGCGCGCACCGCCCGGGTCCTGGCCGACCCGGGGGCGACGCCCGCCGACCTGACCCGGCCCGGGCACGTGCTGCCGCTGCGGGCCCGCGACGGGGGCGTCCTGGAACGCACGGGGCACACCGAGGCCGCCGTCGACCTCGCCCGGCTGGCCGGGCGCGGCAGCGCGGGCGTGCTGGCCGAGGTCACCCACGACGACGGCACCATGATGCGCCGGCCGGCCCTGAGGGAGTTCGCCGCCGAGCACGGACTGGCGCTGGTCAGCGTGGCCGACCTCGTCGCCTACCGCCGCGCCACGGAGTCGACCGTGGACCGGCTCGCCGTGACCCGGCTGCCCACCCGGCACGGGGAGTTCACGGCGGTGGGCTACCGCGACCGCGTCACGGGCGACGAGCACGTGGCCCTGGTGGCCGGAGCACTCGCCGACCTCGACGGGGCCGGGCCCGTGCTGACCCGCGTGCACTCGGAGTGCCTGACCGGGGACGCCTTCGGCTCCCTGCGCTGCGACTGCGGCCCGCAGCTGGACTCCGCGCTGCGTGCGGTGCAGGAGGCCGGCCGGGGCGTCGTCGTCTACCTGCGCGGCCACGAGGGCCGGGGCATCGGGCTGGTGGCGAAGCTGACGGCGTACAGCCTGCAGGACGGCGGCCAGGACACGATCGACGCGAACCTGGCCCAGGGGCTGCCCGTGGACTCGCGGGAGTACACGGCGGCCGCGCACGTGCTGCGCGACCTGGACGTCGAGTCCGTCCGGCTGCTGACGAACAACCCGGCCAAGGTCGACGGCCTGCGGGCCGGGGGAGTCGCGGTGGCCGAGCGGGTGCCGCTGGCCATCCACCCGGCGCCCGACAACGTGGCCTACCTGCGCACCAAGCGCGACCGGATGGGACACGACCTGCCGAACCTTGAACCCGAGGTCGAACCTCGACCCGGGATCGACCCTCACCCTCGACTCGAACCTCAAGGAGAACCGATGACCGGCACGACGACGGCGCACGAGGTCCTGCGATGA	MSVVDPDVRERVDRAVAAVGAGQAVVVVDDESRENEGDLIFAAEAATPELMGFTVRHTSGLICVAADGATLDRLRLPLMVTENRDAFRTAYTITVDAAEGVTTGISGADRARTARVLADPGATPADLTRPGHVLPLRARDGGVLERTGHTEAAVDLARLAGRGSAGVLAEVTHDDGTMMRRPALREFAAEHGLALVSVADLVAYRRATESTVDRLAVTRLPTRHGEFTAVGYRDRVTGDEHVALVAGALADLDGAGPVLTRVHSECLTGDAFGSLRCDCGPQLDSALRAVQEAGRGVVVYLRGHEGRGIGLVAKLTAYSLQDGGQDTIDANLAQGLPVDSREYTAAAHVLRDLDVESVRLLTNNPAKVDGLRAGGVAVAERVPLAIHPAPDNVAYLRTKRDRMGHDLPNLEPEVEPRPGIDPHPRLEPQGEPMTGTTTAHEVLR	PGPT0007990_964	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007990-ribBA-K14652	NA	NA
AK001_00466	495	ribH		6,7-dimethyl-8-ribityllumazine synthase	ATGAGCGGGGCGGGGGCGCCCGCCACGCACGCCGTGGACAGCTCGGACCTGCGGGTGGCGGTGATCGCCGCCTCCTGGCACGACACCGTCATGGACGGGTTGCTCGACGGCGCCCGCCGCGCGTGCGCCGACCACGCGGTCGCGCCGGACGTGCTGCGCGTGCCCGGGTCCTTCGAGCTGCCGGTGGCGGCCCAGGCCTGCGCCGCGGCCGGCTACGACGCCGTCGTGGCGCTCGGCGTCGTCATCCGGGGCGGCACCCCGCACTTCGACTACGTGTGCGCCGCGGCCACCGACGGGCTGAACAGGGTCGCGCTGGACCACACGGTGCCGGTCGGGTTCGGTCTGCTCACGTGCGACGACGAGGCGCAGGCCCTCGACCGTGCCGGGCTCGAGGGCTCGCACGAGGACAAGGGCTACGAGGCCGCGGCGGCAGCGCTCGCGACGGCGCACGTGGTGCGCGGCGTGCGGACGGCCGCGTCGGTGCCCGCCCGCTGA	MSGAGAPATHAVDSSDLRVAVIAASWHDTVMDGLLDGARRACADHAVAPDVLRVPGSFELPVAAQACAAAGYDAVVALGVVIRGGTPHFDYVCAAATDGLNRVALDHTVPVGFGLLTCDDEAQALDRAGLEGSHEDKGYEAAAAALATAHVVRGVRTAASVPAR	PGPT0008605_1145	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794	NA	NA
AK001_00468	738			hypothetical protein	ATGGCGGCTCAGCGGCGGTATTCGGACGAGCAGCTCGAGCACGCCGTCTCGGCGGGGACGTCGTGGCGCGGGACGCTGCGCATCCTCGGCCTCTGCGCGACGTCGGCGTCGGCGATCCGCTCGGTCCGCGCGCACGCCGATCGTCTGGGGCTGGACTACGGCCACTTCACCGGGTCTCGCCGCTGGACCGACGCCGAGCTGAAGCAAGCGCTCGTCGGGGCCACCGACTGGGAGGACGCTGCCCGTCGGCTGGGTCTACGGGGAGGCTCCCGTGTCGCGGTGGTCAAGCGCCATGCGGCGCGCCTCGGCCTCGATGTCGGCTCGTCGTTCCCGGGCCACGTACCGGCGCCGCCGCCGGCTGCGCCGGACCTGGCGAACCTGCACCGCGCCGGACCGCAGCTCGCCGCGGCATGGTTCACCCTGTGCGGGAAGGACGTGTGCTGGCCCCTGGAGCCCTGTCGCTACGACCTCGTCGTCGACGTCGCCGGACGCGTCAGGCGCATCCAGGTCAAGACGACAGTCACCCGGAGCGGCTCGACGTGGCAGGTCTTCCTGTCGTCCGGCGGGAGCGACCGGAAGGTCTACTCACCCGACGAGATCGACGACTTCTTCATCATCGACGGCGACCTGCAGTACTACCTGGTGCCGATCGAAGCTGTCCGAGGCATGCACGCCATCCATCTCAGCGCCTATGAGGACCATCGGCTCCTGCAGCTCCCGGCGCCCGATGCGACGTGA	MAAQRRYSDEQLEHAVSAGTSWRGTLRILGLCATSASAIRSVRAHADRLGLDYGHFTGSRRWTDAELKQALVGATDWEDAARRLGLRGGSRVAVVKRHAARLGLDVGSSFPGHVPAPPPAAPDLANLHRAGPQLAAAWFTLCGKDVCWPLEPCRYDLVVDVAGRVRRIQVKTTVTRSGSTWQVFLSSGGSDRKVYSPDEIDDFFIIDGDLQYYLVPIEAVRGMHAIHLSAYEDHRLLQLPAPDAT				NA	NA	NA	NA	NA
AK001_00469	402			hypothetical protein	GTGGTGATAGAAGGATTCTGCCTGAAGATCCAGCGCACGCTCGCGGGCGCCGCCGTCGCCGCCCTCGCGACGCTGGGCGTCGCGGGTACCGCCCACGCCGCCGACGACAGCACCACCGTTCCCGGCCAGCAGGGACGTGACGGCACCGTCGACGGCGTCGACGACCTCGACCCGGAGACCGTGGTCACCTGCGACTACCAGGTGATCTACCGCGGCGACTTCGGCGACGACCCCCGCCTCGACGACGGATGGATCAAGAACAACATCCGCTGCGACGACGGCACGACGTACAACAGCACCTACGTCAGCTCCGAGGACCCGCGCTACACCGGCGAGCACCCCATCTGGGGCAGCTGGGACATCGTCGTCAGCACCGTCTCCGGCCAGGGCAACATCGTCTGA	MVIEGFCLKIQRTLAGAAVAALATLGVAGTAHAADDSTTVPGQQGRDGTVDGVDDLDPETVVTCDYQVIYRGDFGDDPRLDDGWIKNNIRCDDGTTYNSTYVSSEDPRYTGEHPIWGSWDIVVSTVSGQGNIV				NA	NA	NA	NA	NA
AK001_00470	300			hypothetical protein	GTGAACGACGACATCACCATCACCATCACGGTCGGCCGGTCCGGCTCCTCCGGCGGCTCGACGACGGTCTCGACCCAGGACGCGGACGAGGCGGCGCCGCCCGAGGAGCTGGTCCTGGCCGACGACGGGACCTCCGACGCGCAGGACGACGCCCCGCCGGAGGACGTCGGCGTTCCCGACGACGCGCAGGCGAGCTCGGACGACGAGGCGCCTCCCGAGGATCTCGGGTCCGCCGGATCCGACGCCGCCATCGTGGCGGACGCCGACGCGCCGCCCGAGGACGTCGGCAGCCCGTCGTAG	MNDDITITITVGRSGSSGGSTTVSTQDADEAAPPEELVLADDGTSDAQDDAPPEDVGVPDDAQASSDDEAPPEDLGSAGSDAAIVADADAPPEDVGSPS				NA	NA	NA	NA	NA
AK001_00471	213			hypothetical protein	ATGTGGACCGTGATCAACCAGACCTACGCCACCAGCGGCAGCAAGAACGCGTGGGCCCACCTCAAGAAGAACGACACCGGGTGGCGCAGGATCAAGCCCAGCTCGTCCGACGGCGTGACGAACGTGTTCCTGATGCTGGTGGCGGCGAAGGCCAGCGGCAAGCAGGCCCACGTCGTCCAGGACGGGGACAAGATCACCAAGGCCTACTTCTGA	MWTVINQTYATSGSKNAWAHLKKNDTGWRRIKPSSSDGVTNVFLMLVAAKASGKQAHVVQDGDKITKAYF				NA	NA	NA	NA	NA
AK001_00472	1044			hypothetical protein	GTGACCGACGACAGCGCGGGGAGCGCGCAGCAGATGGAGGAGGACAACGTCGGACTCCTCGGCGGGGACGACGTCCGCACCGGCCTGGTGGTGCTGTCCAGCGGCGAGACCCGGGCCGTGCAGTACGCGGCGGTGGACGGCCTGGCCGTGTTCGAGGGCGACATCGTCCTCGGCACCGTCGACGAGATGGAGAGCGCCACGGCGCAGCTGTCCGGGCGCGCGCAGGCCGGCGACGACGTCGCCCACGGCGTGGTGCACCCCAGCCAGAGCCGACGCTGGCCGAACGCCCTGATGCCCTACGAGATCGACCCGGCGGTGACCAACGGCGAGGCACGGGTCGCGGCCGCGATCCAGCACTGGGAGCAGAACACCCACATGCGGTTCGTGCGCCGCACGTCGGCGAACGCCTCGCAGTATCCGAACTACGTGCGCGTGATCCGGGGGGACGGGTGCTGGTCCAAGGTCGGCATGCGCGGCGGGAAGCAGGAGCTCAGCCTGGCCGACGGTTGCGGGTTCGGAGCGGCGGTGCACGAGTTCGGCCACGCCTGGGGCATCTGGCACGAGCAGTCGCGGGAGGACCGCGACGCCTTCGTCACGATCAACTGGGCGAACATCACCTCGGGCAAGGTGCACAACTTCAACCAGCACATCTCCGACGGCAACGACGTCGGGGCGTACGACTACGGCTCGATCATGCACTACGGCCGGTTCGCGTTCTCCAAGAACGGCCAGCCGACGATCACGCCCAAGCAGTCGGGCGTCACCATCGGGCAGCGCTCCGGGCTCTCGGCCGGGGACATCGCGACCGTGCACCACATGTACCGCCTGTGGCACACCCACATGACCGTGGCGCAGACCTACGCCACCAGCGGCAGCAAGAACGCCTGGGTCAACCTCGTCGGCATGGGCTGGCGACGCATCGACCCGAACGCGTCCGACGGCGTGACGGACGTGTTCGCCCAGGCGGTCTGGGCGCGCGCCGAGGGGCGCAAGCTCACCGTCTACGCCGACGGCCGGCACATCTACCGCGCCTACATGCTCTAG	MTDDSAGSAQQMEEDNVGLLGGDDVRTGLVVLSSGETRAVQYAAVDGLAVFEGDIVLGTVDEMESATAQLSGRAQAGDDVAHGVVHPSQSRRWPNALMPYEIDPAVTNGEARVAAAIQHWEQNTHMRFVRRTSANASQYPNYVRVIRGDGCWSKVGMRGGKQELSLADGCGFGAAVHEFGHAWGIWHEQSREDRDAFVTINWANITSGKVHNFNQHISDGNDVGAYDYGSIMHYGRFAFSKNGQPTITPKQSGVTIGQRSGLSAGDIATVHHMYRLWHTHMTVAQTYATSGSKNAWVNLVGMGWRRIDPNASDGVTDVFAQAVWARAEGRKLTVYADGRHIYRAYML				NA	NA	NA	NA	NA
AK001_00473	348			hypothetical protein	ATGAGGGTCCACGCCAGGGTGTTCGCCGCCGACGGTGCTGTGCCGACCCCGGGTGCATCGGTCACGGTGCGGGTCCTCGACGTGAGCCGGGCCGACGCGTCCTCGGTCCGCCTCGCCGAGACCTCCCGGGACGTGGACGCCGTGGACGGGCCCGACGGCGGCGTCGTCGTCGACCTGGACCTGACCGCGCCCGATCCCCGCGCGGACTGCGCCGTGGCCGCGCACGTCGACGTCGACGGCTCCGGTGACGTCACGCCCGGTGACCTGGTGACGGTCCAGCACGTGGGCCTCGACCTCGGCGCCGACGAGCAGACCCTGGACGTCCCGGTGCGGCGGGTCGCCGGCTGA	MRVHARVFAADGAVPTPGASVTVRVLDVSRADASSVRLAETSRDVDAVDGPDGGVVVDLDLTAPDPRADCAVAAHVDVDGSGDVTPGDLVTVQHVGLDLGADEQTLDVPVRRVAG				NA	NA	NA	NA	NA
AK001_00474	714			hypothetical protein	ATGCAGACGACGTCGCGTCCGGCAGGGTCCCGCTCGCGCGAGGTCAGCGTGCAGCTGCTCGGCGGGTTCGCGGTGACGTGCGCCGACGGACCCGTCGACCTGCCCGTGCAGGCGCAGCGCCTGGTCGCGGTGCTGGCGCTGCAGGGCAGGACCGGTCGCCGCCGGCTGGCCGACCGGCTCTGGTGCGACGTCGCCGAGGACCGCGCGCTGGCCAGCCTGCGCACCTGCCTGTGGCGGACCAACAAGGCCCTGCCGGGACTGGTCGAGACCACCGGGTGCTCGGTGGGCCTCGGGCTGGACCCGGAGATCGACGTCCACCGGCTGACCGACGCCGCGCACTCGGTCCACGAACCCGCGCGGGTCGCCGCGGCGACCGAGGTCGCGCTCGCGGCGGGAGAGCTGCTGCCCGACTGGGAGGACCGGTGGCTCGACGAGGAGCGTGAACGACTGCGGCAGGTGCGGCTGCACCTGCTGGAGAACGGCGCCGCGCTCCTCGCCGGGCACGGACGGTTCGGGCTGGCGATCGAGGCGGCGCTCGCGGCGCTGGTCGTCGACGACCTGCGCGAGAGCGCGCACCGGACCGTCATCGCGATCCACCTCGCCGAGGGCAACGTGGCCGAGGCGCGGCGCGCCTACACGGCGTGCCGCCGCACGCTGCAGCGCGCCCTCGGCGTCGATCCGACACCGCAGACGGCGACGCTCCTCGCCGTCTGA	MQTTSRPAGSRSREVSVQLLGGFAVTCADGPVDLPVQAQRLVAVLALQGRTGRRRLADRLWCDVAEDRALASLRTCLWRTNKALPGLVETTGCSVGLGLDPEIDVHRLTDAAHSVHEPARVAAATEVALAAGELLPDWEDRWLDEERERLRQVRLHLLENGAALLAGHGRFGLAIEAALAALVVDDLRESAHRTVIAIHLAEGNVAEARRAYTACRRTLQRALGVDPTPQTATLLAV				NA	NA	NA	NA	NA
AK001_00475	675	ucpA		Oxidoreductase UcpA	ATGCCGACGATGGCCATCATCGGAGCAGGTCCGAACCTGGGAGCCGCCGTGGCGCGGCGCTTCGGCCGGGAGGGGTTCTCCGTGGCCCTCGTCTCGCGCGACCAGCAGAAGCTCGACGCGCTCGCGGCCGAGCTCGGCGCCGAGGGCGTGACGGCGCGGGGCTACGCGGCCGACGTCCGCGACGGTGCCTCGCTCGAGGCGGCGCTCGGGCGCGCGGCCGAGGACCTCGGCGAGATCACCGCCCTGCAGTACAGCCCGCTGCCGGCGCGCGAGTACCTGAAGCCGGTCCTGGACCTCACCCCGGAGCTGGCGCTCGACGCGCTCAGCTTCTCTGCCCTCGGCCTCATCAGCGCGGTCCGCGCCGTCCTGCCCGGCATGCGCCGGGCGGGGGAGGGCAGCATCGTGCTGATCAACGGCGGCACGTCGGTCAAGGCCCGGGCGGGGTTCGCAGGGACCTCCGTGGCATTCCCCGCCGAGAGCGCGTACGGCGAGATGCTGCACGACGCGCTCGCCGACGAGGGCATCCGCGTCGCCCAGCTGGTCATCCCGGGGGCGATCCCGAAGCTGCAGCTCGAGAACGGCATCGACGACGTGGCCGAGCGCGTCTGGGAGCTCGCGAGCACGCCGGGGGAGTTCCGCACGATGCTGATCCCGCTCGAGGAGGGACGGGAGTAG	MPTMAIIGAGPNLGAAVARRFGREGFSVALVSRDQQKLDALAAELGAEGVTARGYAADVRDGASLEAALGRAAEDLGEITALQYSPLPAREYLKPVLDLTPELALDALSFSALGLISAVRAVLPGMRRAGEGSIVLINGGTSVKARAGFAGTSVAFPAESAYGEMLHDALADEGIRVAQLVIPGAIPKLQLENGIDDVAERVWELASTPGEFRTMLIPLEEGRE				NA	NA	NA	NA	NA
AK001_00476	291			hypothetical protein	ATGACGACAGCGCCCACGGCCCTCGACCACACCGTCACCGCGCCGATCGGGGTGGACGTCCGCGGCGACGTCTGGCCCTGCGTCGAGCTGGCGGGTGCGGCCGAGCTCCTCGGGACGGGACGGTCGGTCCGGGTCGACGCCACGGTCGACGACGTGGAGCTGGAGAACATCGGTCTCATGCCGACCGGTCGCGGCGAGCTGATGCTGTCCCTGAACGCGCGGCTGCGCCGGCGGCTCGGCAAGGACGTCGGTGACACGGTCACGGTGCGCCTGACGCGGCGGCACGGCTGA	MTTAPTALDHTVTAPIGVDVRGDVWPCVELAGAAELLGTGRSVRVDATVDDVELENIGLMPTGRGELMLSLNARLRRRLGKDVGDTVTVRLTRRHG				NA	NA	NA	NA	NA
AK001_00477	615			hypothetical protein	GTGCTCGCCTGCGGCGACGCGCAGGGCACCGTGCAGCGCTATCGCATGCCCACCAGCCGACGGCGGCACGTCGAGCGGGCCGGTCGTGTCGCGCCGGGCTTCGTCGTGCTCGGCGACGCCGTGTGCAGCGTCAACCCGGTCTACGGCCAGGGCATGACCTCGGCGGCACTCCAGGCCCTGGCGCTCGGCGAGTGCATGGGCCGGTTCGGCCCGGCCTCGGACCGGCTGCCCGCGACGTTCTACCGCCGGGCCGCCCGGGTCGTCGACGTGCCGTGGCGCATCGCGGCGGGCGGCGACTTCGCCGACCCGCGCACCTCGGGGGCCAAGCCGGTCGGCACGGACCTGACGAACCGCTTCCTCGAGCGTGTCTTCCGCGCCTGCCACTCGTCGCCGGCGGTGGCCCGGCAGACCCAGCGCGTGCAGAACCTGCTCGACCCGCCGAGCTCGCTGCTGCGCCCGGACCGGCTGCTGCGGATCCTGCTGGCGGACCGGCGGGCGCGGGCGGCCGAGCGGCGGAGCGCCGTCGGCGCACTCTCGCGCGGGCCGGCGCTCGCCCCGCCGGAGTCGGTCGACCGCCACGCCGCCGAGCTGCACCGTCGGATGGTCCTGCGCTGA	MLACGDAQGTVQRYRMPTSRRRHVERAGRVAPGFVVLGDAVCSVNPVYGQGMTSAALQALALGECMGRFGPASDRLPATFYRRAARVVDVPWRIAAGGDFADPRTSGAKPVGTDLTNRFLERVFRACHSSPAVARQTQRVQNLLDPPSSLLRPDRLLRILLADRRARAAERRSAVGALSRGPALAPPESVDRHAAELHRRMVLR				NA	NA	NA	NA	NA
AK001_00478	432			hypothetical protein	GTGGCGGAGCGGGTGAACCGTGGCGACCCCGGCCGCACGGCGTCGTCGGGCATCATGGTCCCCATGGCCGGCCACCGGATCTTCACCATGAGCTTCGCGAGCATCTATCCCCAGTACGTGGCGAAGGTCGAGCGCAAGGGGCACACCGTCGCCGAGCTGCACCAGGTCATCACCTGGCTGACGGGCTACGACGACGCCGGGCTGCAGCGGGTGCTCGACGACGAGAACGACATGGCCACGTTCTTCGACCGCGCGCCGCGGATGAACCCGCACGCCGTGCTCATCACGGGCGTGATCTGCGGGCACCGGGTCGAGGAGATCGACGACCCGCTGATGCAGAAGATCCGCTACCTGGACAAGCTCGTCGACGAGGTGGCACGCGGCAAGAAGATGTCGTCGATCCTGCGCGAACCGGCTCGCACCACCGGGTGA	MAERVNRGDPGRTASSGIMVPMAGHRIFTMSFASIYPQYVAKVERKGHTVAELHQVITWLTGYDDAGLQRVLDDENDMATFFDRAPRMNPHAVLITGVICGHRVEEIDDPLMQKIRYLDKLVDEVARGKKMSSILREPARTTG				NA	NA	NA	NA	NA
AK001_00479	855			hypothetical protein	GTGCCCGCCGAGACCTACCGGTTCGAGGAGTTCGAGCTCGACGCCGCCCGCTACGAGCTGCGCCGCGACGGCGCGCCGGTCCGCGTCGAGCCCCGGGTCTTCGACGTGCTGCTGTACCTCGTCGCACGCCGGGAGCGGGTGGTGGCCAAGCACGAGCTGCTGGACTCGGTGTGGGGCAGCCGCTTCGTCAGCGAGGCCGCCCTGACGACGGCGTTGCGGGCCGCGCGCGCCGCCGTCGGTGACAGCGGCGGCGAGCAGCGGCTGATCCGCACGGCCCACGGCCGCGGGTACCAGTTCGTCGGCGACGTCCGGGTTCCGGACGGCGGGGCGGAGCCGGCCACGCCGGCGGCGTCGGTCGGAGCCGAGCACCAGACGATCCGGTGCTGCCGCGCCGGCGACGGCACGAGGATCGCCTACGCCGCGATCGGTGACGGGGCGCCGCTGGTCAAGGCGGCGAACTGGATGAGCCATCTCGACCTCGAGTGGTCCACCCCCGTGTGGTCGCACTGGATCAAGGGGCTGGCCCGCAACCGCACCCTGATCCGCTACGACGAGCGGGGGTGCGGACTCTCGGACTGGGAGGTCCCCGACTTCAGCCTCGAGGCGTGGGTCCGGGACCTCGAGACGACGCCTGCGGCCTCGAGCGCTTCCCCCTGCTCGGCGTGTCCCAGGGCGGAGCCGTGGCCATCGCCTACGCCGCGCGGCACCCCGAGCGGGTCAGCCGCCTCGTGCTGGCCGGCGCCTACGCGCGCGGCCGCGGCGTGCGGGCGGCCGACGAGGTCGAACGCGCCGAGGCCGCCCTCGACCTGGACCTGGCTCGTGTGGGGTGGGCCCGTCAGGACCCGAGCTTCCTGA	MPAETYRFEEFELDAARYELRRDGAPVRVEPRVFDVLLYLVARRERVVAKHELLDSVWGSRFVSEAALTTALRAARAAVGDSGGEQRLIRTAHGRGYQFVGDVRVPDGGAEPATPAASVGAEHQTIRCCRAGDGTRIAYAAIGDGAPLVKAANWMSHLDLEWSTPVWSHWIKGLARNRTLIRYDERGCGLSDWEVPDFSLEAWVRDLETTPAASSASPCSACPRAEPWPSPTPRGTPSGSAASCWPAPTRAAAACGRPTRSNAPRPPSTWTWLVWGGPVRTRAS				NA	NA	NA	NA	NA
AK001_00480	375	rutD		Putative aminoacrylate hydrolase RutD	GTGGGGTGGGCCCGTCAGGACCCGAGCTTCCTGAGGGTCTTCGCCTCGCAGTTCCTGCCCGACGGCACGCCGGAGGAGTGGGCCGAGTTCACCGAGTTCCAGCGCCGGACGACGTCACCGGCCAACGCGGTGCGGTTCCTCGAGGAGTTCGGGAGCCTCGACGTCTCCGCCAGCGCGCCGCAGGTGCGGTGCCCGACCCTGATCCTGCACTCCCGCGGGGACGTGCGGGTGCCCGCCTCGCAGGCGAGCGAGCTGGCCGCCCTCGTCCCGGACAGCCGGCTCGCCCTCCTGGACAGCGCGAGCCACCTGATCGGTGCCGCGGAGCCGGCGTGGCCGGACTTCCTGGCCCGGATCGACGCGTTCCTGGCGGAGTAG	MGWARQDPSFLRVFASQFLPDGTPEEWAEFTEFQRRTTSPANAVRFLEEFGSLDVSASAPQVRCPTLILHSRGDVRVPASQASELAALVPDSRLALLDSASHLIGAAEPAWPDFLARIDAFLAE				NA	NA	NA	NA	NA
AK001_00481	1152			hypothetical protein	ATGTCCGAGCCCAGCGCACGCGTCGACCGCCACCTGTTCGCGGTGCCGCGGGACTCACGGCCCGTCATGGATCTGCAGTACGCCGACGAGCACGCCGAGATCCTGGCCTGCCACCCCCTGTCCGACCTCGCCCAGGGCGACCATCTCGCCGTCGGCGTCGAGGCCTACGCCGTCGCCACCCGCAACCTGGTGGCCGAGCGCGACCCCGCCGGCTACTGGTGGGTCAACCAGATGGTGGAGGACGACGTCCGCCGGCTCGTCGAGGCCGGCGTCGAGCGGACCGTGCCGCTGTCCGGACCCCGGGACCGCGCCGCGCTCACCGCCCAGCACCCGGTGCTGGACCGGTGGTGGGGCGACTCCGCCGAGCCCGGGCGCGACGGCGCCGACTTCTGCTACATGCCGCGCTGGCGCGAGCACGTCCCGTCGGCACGGGCCCTGTGGCCGCTGCAGAACCCGGACGCTCCTCGGCTGCCCTTCGACCGCGGCGCTCTGCCCAGCGACCACGACTGGACCGTCTGGTCGCACGTGTCGGACGCCGTCGGGATCCGTTCGCGTGCCGCGGTCATGGCGGCGCTGCTCAGGACGCGGTTCGTGGGGCACGACTGGGCCTCGTGGGTCTCGCTGGCCGGCGGCGCCCTGCTGCCGGTGATGTCCTCGGCCGTGGCGTTGAGCGTCGCGGGCGTCGACGTGGACGTCGAGCTCTGGGACTCCGACCCGGAGGCGATGATGCTGGCCGAGACCCTGGCCGAGAAGCACGGGATGCTGGGGCACTTCGCGGTGCGGGGCGCGAACCTGTACGACCTGGCGGCCCTGGCTGACGGCGGACCCCGCTACGACATGGTCGACGTCCTCGGCTTCTTCGAGTACCTGCCCACCGAGGCCCTCCCGGGCCTGAGCGTGCCGACCGCCGGCGACTTCCTGTCCGCCGCGCTGTCCCTCGTCAAGCCCGGAGGCACCCTCGTGCTGGGCAACATGCTCAGCAGCCGTCCCCAGCTCGACTTCGTCACGCGCCTCGTGCAGTGGCCGTACATCCGTCCCCGCAGCCTCGACGAGCTGCTGGGCGTCATCCGTCGCGCCGGGGTCCACGACAACCAGATCACGCTGTACCTGCCCGACGACGGCGTGTACGCGGTCGCCACGATCGACGTCTGA	MSEPSARVDRHLFAVPRDSRPVMDLQYADEHAEILACHPLSDLAQGDHLAVGVEAYAVATRNLVAERDPAGYWWVNQMVEDDVRRLVEAGVERTVPLSGPRDRAALTAQHPVLDRWWGDSAEPGRDGADFCYMPRWREHVPSARALWPLQNPDAPRLPFDRGALPSDHDWTVWSHVSDAVGIRSRAAVMAALLRTRFVGHDWASWVSLAGGALLPVMSSAVALSVAGVDVDVELWDSDPEAMMLAETLAEKHGMLGHFAVRGANLYDLAALADGGPRYDMVDVLGFFEYLPTEALPGLSVPTAGDFLSAALSLVKPGGTLVLGNMLSSRPQLDFVTRLVQWPYIRPRSLDELLGVIRRAGVHDNQITLYLPDDGVYAVATIDV				NA	NA	NA	NA	NA
AK001_00482	429			hypothetical protein	ATGGCCACCTTCTCCTCCGTCACGCGTACGCACGTGCTCTCGGCGATCGCCGAGCACGACGACCGGGGCGCCTCCGCGTTCCTGTCCGTCTACGGGTTCTCCCCGACGCCCGGCGTCACCCTGACGCACGACGGCGAGACCTACGACGCCACGGCGATCCTCGCCGTCGCGCACCGGTACGCCACCGGGCGGGCTGCCCTGCCCGAGGAGATGACCGGCGGCAAGGTCGCCGTCGGGACGCTGCTGGGCAAGCGCGGTTTCGACGTGGCCGGCGGGCGGCCGGCCGCGACGTCGGCGCGCCGCAGCACCACGAGGGCCCCGCGCGCCGCCACGCCTCGCAAGGCGCCCGAGCCGGAGAAGCCGACGCCCGTGTGCCCGTCGTGCTTCATGGCGCTGCCGGCCACCGGAGTCTGCGACAGCTGCGGCTGA	MATFSSVTRTHVLSAIAEHDDRGASAFLSVYGFSPTPGVTLTHDGETYDATAILAVAHRYATGRAALPEEMTGGKVAVGTLLGKRGFDVAGGRPAATSARRSTTRAPRAATPRKAPEPEKPTPVCPSCFMALPATGVCDSCG				NA	NA	NA	NA	NA
AK001_00483	300			hypothetical protein	ATGAAGAAGATCGCTGTCGGTGCCGCCACGCTCGCCCTCCTCGCCGCCCCGCTGGCCGCCGCCCCGGCCGCCGCCGCCGGGCACGGGCCCCACCCGTCGTGCTGGGGCCAGGCCTCGGCCGTGTTCGCCCAGATGCAGATGATGGGCGAGCACTCGTCGAGCTTCCCGACCCCGCGGGTCGGGCTGCGCAACCTGGCCCGCGATCTCGCCGAGGTCGGTGCCATCGAGGACGACGGCATGGCCGACCTCGGTGTGTTCGTCGCCACGGAGCTCGGCCTCGAGATCGACGCCTGCCTGTGA	MKKIAVGAATLALLAAPLAAAPAAAAGHGPHPSCWGQASAVFAQMQMMGEHSSSFPTPRVGLRNLARDLAEVGAIEDDGMADLGVFVATELGLEIDACL				NA	NA	NA	NA	NA
AK001_00484	582			hypothetical protein	GTGCTGGCGCTCCTCGCCGTGGCCGCCGCGTGCCTGGCACTGGCGCCGCTCGTGCTGCCCGACTCCTACGAGGTGCTGCGTCAGCCCGTGACCCGTGCCGGCGCCCAGGGCGTGCCCGGGGCGTGGCTCGCCCGCACCGGGTACGTGCTGCTCGGTCTCGCGGTGCTCGTCGAGGCCGCACGGGCGGGGGAGGCGTGGGGGCCCGTGGGCCGCGCCGCCCACGCCGTGTACGCCACGGCCATGGTCTGCCTCGCCGTGTTCTCGGCCAGCCCCTGGTACGGCGGGCCGGGGGACACCGTCGAGGCCTCCCTGCACACCTGGGCCGCGACCGTCGCGGTGGGGGCGTTCTTCGTCGGCGTGCTCGGGGTGCGTATCCAGCGAGGTCGCCGGCCCGGACGGATCGCCGTGCTGGACGTCGTCGCGCTCGCCGGCGCGCCCGTGCTCGCCCTGGCCGCGGAGACGATGCCCGGGGGTGCCGGGGTCACCGAGCGGCTGATCTTCGTCATCGGCTTCACCTGGTACGGCGTCGAAGCGGTGCGGCTCTCGCACCCGGACGCCCCGGGGCGCGTCCGCGAGATCTGA	MLALLAVAAACLALAPLVLPDSYEVLRQPVTRAGAQGVPGAWLARTGYVLLGLAVLVEAARAGEAWGPVGRAAHAVYATAMVCLAVFSASPWYGGPGDTVEASLHTWAATVAVGAFFVGVLGVRIQRGRRPGRIAVLDVVALAGAPVLALAAETMPGGAGVTERLIFVIGFTWYGVEAVRLSHPDAPGRVREI				NA	NA	NA	NA	NA
AK001_00485	531		COG3265	Gluconokinase	ATGGTGCTCGGCCCCGTGCGCGGGGTCGTCGTCATGGGGGTGTCCGGCTGCGGCAAGTCGACCGTCGGCGCCCTGCTCGCGGCCCGCTGGCACGCACGGTTCGTGGACGCCGACGACCTCCACCCGGCGTCGAACGTCGCGAAGATGAGCGCCGGCGAGCCGCTGACCGACGCCGACCGCGCTCCGTGGCTCCGGCGGACCGGCAAGGTGATCGCCGAGACGGCCGACGCCGGCCGGGCGGTCGTCGTGGCCTGCTCGGCGCTGCGCCGCACGTACCGCGACATGCTGCGCGACGGCGCGGGCGGCGACGTCGCGTTCGTCCACCTGACCGCCGACCGCGACCTGCTCGTGGCGCGGACGACCTGCCGGACCGACCACTTCATGCCCCCCGCGCTGCTCGACTCCCAGCTCGCCACCCTGGAGCCGCTCGCGTCCGACGAGACCGGCATGACCGTGGACGTCACGACCGCGCCGGAGACCGTGGTCGACCGGGTCGCGGCATGGTCGGCACGAGTGCCCGGGGTCCGCTGA	MVLGPVRGVVVMGVSGCGKSTVGALLAARWHARFVDADDLHPASNVAKMSAGEPLTDADRAPWLRRTGKVIAETADAGRAVVVACSALRRTYRDMLRDGAGGDVAFVHLTADRDLLVARTTCRTDHFMPPALLDSQLATLEPLASDETGMTVDVTTAPETVVDRVAAWSARVPGVR	PGPT0018055_216	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851	NA	NA
AK001_00486	924			Formate dehydrogenase, mitochondrial	ATGAGCGCCCGCCCGGCGATCAGCGCCGCCCCGGAGACGCCCGCGTGGGTTCCCGATGCCGTCGCGGCCGCGGGCGCCCGCCTCGTCCCGCTCGGCACCGAGACCGAGGGCCTGCTCTGGTTCGGACCGCTCGGCGTCGACGGGTTGGGTCCGGCGTTGCGGTCGGCGCCCCGGGCCCGCTGGGTGCAGCTCCCCTCCGCGGGCGTCGACGCCGCGCTCGACGCCGGGCTGATCGACGCCGACCGCACCTGGACCTCGGCCAAGGGATCGTTCGCCGAGCCCGTCGCCGAGCACGCTCTGGCCCTGACCCTCGCCGCGCTCCGGCGGCTGCCCGAACGTGCGCGGGCCCGGACCTGGGGCGTCGAGGCCGGCCTGTCGTTGTTCGACGCGCACGTGCTCGTCCTCGGCGCCGGCGGCATCGCCCGGACGTACCTGGAGCTGCTGGCCCCGTTCCGGACCCGCAACGTCGTGGTCCGCCGGCGGCCCGACCCGGTCCCGGGCGCCGACCGGGTCGTGACCGGCGAGAGCCTGATCGACGAGCTCGGACGGGCGGACGTCGTCGTGCTGGCCGCCGCGCTGACCGACCGGACCCGGGCGCTGCTCGGCGCGGACGAGCTGGCGGCGATGCGCCCCGGCGCGACGCTCGTCAACATCGCCCGCGGCGAGCTGGTCGACACCGACGCCCTCGTCGCGGCCCTGCGCTCCGGCCAGGTCGGGGCGGCCGCGCTCGACGTGACCGATCCCGAGCCGCTGCCGGACGGACACCCCCTGTGGGAGCTGCCGACCGCTCTGGTGACCCCGCACACGGCCGACACGCCGGAGATGGTCGAGCCACTGCTGCGCCGACGTGTCGAGGAGAACCTGCGGCGGTTCGTCGCCGGGGACACCCTCGAGGGCGTCGTTGACCCGACGACGGGGTACTGA	MSARPAISAAPETPAWVPDAVAAAGARLVPLGTETEGLLWFGPLGVDGLGPALRSAPRARWVQLPSAGVDAALDAGLIDADRTWTSAKGSFAEPVAEHALALTLAALRRLPERARARTWGVEAGLSLFDAHVLVLGAGGIARTYLELLAPFRTRNVVVRRRPDPVPGADRVVTGESLIDELGRADVVVLAAALTDRTRALLGADELAAMRPGATLVNIARGELVDTDALVAALRSGQVGAAALDVTDPEPLPDGHPLWELPTALVTPHTADTPEMVEPLLRRRVEENLRRFVAGDTLEGVVDPTTGY				NA	NA	NA	NA	NA
AK001_00487	2319	yicI	COG1501	Alpha-xylosidase	ATGAAGTTCACCGACGGTTTCTGGCACGCCCGCCGAGGGGTCGACATCCACTACGCCCGCGAGGTGGACCGGATCACGGCCCGCGAGCGCGAGCTGCACGCGATCTCCCCGACCCGGGTGGTCCGGCACCGCGGAGACACCCTCAACCTGCCGGTCCTGACCACGTCCGTCTCGGCGCCGATGGAGAACGTCGTCCGGGTCCGCCACACCCACCACAAGGGCGCCGGCGAGCCGTTCCGGTTCGAGGTGGACGAGGTCGACGGGGCCGGGGAGGCTGCCGTCGTCGACGGCGTGGGGACCCTCACCTCGGGCGAGCTGTCCGTCCGGCTCGCGGTCGGCAAGACCTGGGAGCTCGACTTCCGTGCCGGCGGCCGGTCGATCACGCGCTCGGGCGGCAAGTCCGCGGCGTGGGCGGACGTCTCCCCCGACGCCGCCGTGGACCACGGCGCCACCCAGCTCGAGCGCGACGGCCGGACCAGCTACATGATCGAGCAGCTCGACCTCGGTGTGGGCGAGCTGGTCTACGGCCTGGGCGAACGGTTCGGCCCCGTGGTCAAGAACGGGCAGACCGTCGACATCTGGAACGAGGACGGCGGCACGTCCAGCGAGCAGGCCTACAAGAACGTGCCGTTCTACCTCACGAACGCCGGGTACGGCGTCTTCGTCAACGACTCCGGGCACGTCTCCTACGAGGTGGGCTCCGAGGCCGTCGAGCGGGTGCAGTTCTCCGTGCCCGGCGAGACGCTGGAGTACTTCGTCGTCTACGGCCCGGACCCCAAGTCGATCCTCGAGCGGTACACGGCGCTGACCGGGCGGCCGGCCCGCGTCCCGGCGTGGTCCTACGGGCTGTGGCTGTCGACGTCGTTCACGACCGACTACGACGAGGAGACCGTCACCTCGTTCATCGAGGGCATGGCCGAGCGGGAGATCCCGCTGAGCCTGTTCCACTTCGACTGCTTCTGGATGCGCGAGTTCACCTGGTGCGACTTCGAGTGGGACGAGCGTGTCTTCCCCGACCCCGAGGGCATGCTGGCCCGGCTGCACGACCGCGGCCTGCGGGTGTGCGTCTGGATCAACCCCTACATCGCCCAGCAGTCCCCGCTGTTCGACGAGGGGATGGACGCCGGGTACCTGGTGAAGAACCGCGACGGCAGCGTCTGGCAGTGGGACCGCTGGCAGGCGGGCATGGCCCTGGTGGACTTCACCAACCCCGAGGCCACGGCCTGGTACCAGGACAAGCTGCGCCGTCTGGTGCGCCAGGGGGTCGACGCCTTCAAGACCGACTTCGGCGAGCGCATCCCGACCGACGTGCAGTACTTCGACGGCTCCGACCCGGAGCGCATGCACAACTACTACACGCATCTGTACAACCAGGCGGTCCACGAGGTCCTCGCCTCCGAGCGCGGGGTCGACGACGCCGTGCTGTTCGCCCGCTCGGCCACCGCCGGCGGGCAGCAGTTCCCGGTGCACTGGGGCGGCGACAACACCGCCTCGTACGTGTCGATGGCCGAGTCCCTGCGCGGCGGGCTCTCCCTGGCCTGCAGCGGCTTCGGCTACTGGAGCCACGACATCGGGGGCTTCGAGATGACCCCGGACGCCGGCGTGTTCAAGCGCTGGGTGGCCTTCGGGCTGTTCTCCAGCCACTCGCGCCTGCACGGCAGCGGGTCCTACCGGGTCCCGTGGATGTTCGGCGAGGACGAGTCCGACCCGACGGGCGCCGTCGCCGTGACCCGGAAGTTCGCACGGCTCAAGAACCGCCTGGCGCCCTACCTGGTCGCCACGGGCGAGGAGGCGCACCGGCGCGGGACGCCCATGATGCGACCGATGCTGCTGGAGTTCCCCGACGACCTCACGGTGGCGCACCTGGACCGGCAGTACATGCTCGGCGCCGACCTCCTCGTCGCCCCGGTCTTCAGCGCCGAGGGCCACGTGGACGTCTACCTGCCCGCCGGCGAGTGGGCCGGCCTCCTGACGGGCGAGCGCGTCCGCGGCGGCGGCTGGGTCCGCGAGCAGCACGACTTCGACTCGCTGCCGGTCTACCTGCGCCCCGGCGCCGTCGTCCCGCTCAGCCGGCACGAGGACCGCCCCGACGCCGACCACCTCGACGGGCTGACGCTGCTCGTCCACGCCGGCCCCGAGCCCGACTGGTCACGCACCGTCGAGGTCGCCGGCCCGGACGGCACGGCCGTGCCCTTCACCGTGGCCCGCGAGGACGGCGTCCTGGTCGCCCGGTCGACGCAGGACTCCTCCTGGTCGGTGCAGGTCGTCGGCGGCGAGACCGTCGCGGCCACCGGCGGGCGGGCGGAGGTGTCCGCATGA	MKFTDGFWHARRGVDIHYAREVDRITARERELHAISPTRVVRHRGDTLNLPVLTTSVSAPMENVVRVRHTHHKGAGEPFRFEVDEVDGAGEAAVVDGVGTLTSGELSVRLAVGKTWELDFRAGGRSITRSGGKSAAWADVSPDAAVDHGATQLERDGRTSYMIEQLDLGVGELVYGLGERFGPVVKNGQTVDIWNEDGGTSSEQAYKNVPFYLTNAGYGVFVNDSGHVSYEVGSEAVERVQFSVPGETLEYFVVYGPDPKSILERYTALTGRPARVPAWSYGLWLSTSFTTDYDEETVTSFIEGMAEREIPLSLFHFDCFWMREFTWCDFEWDERVFPDPEGMLARLHDRGLRVCVWINPYIAQQSPLFDEGMDAGYLVKNRDGSVWQWDRWQAGMALVDFTNPEATAWYQDKLRRLVRQGVDAFKTDFGERIPTDVQYFDGSDPERMHNYYTHLYNQAVHEVLASERGVDDAVLFARSATAGGQQFPVHWGGDNTASYVSMAESLRGGLSLACSGFGYWSHDIGGFEMTPDAGVFKRWVAFGLFSSHSRLHGSGSYRVPWMFGEDESDPTGAVAVTRKFARLKNRLAPYLVATGEEAHRRGTPMMRPMLLEFPDDLTVAHLDRQYMLGADLLVAPVFSAEGHVDVYLPAGEWAGLLTGERVRGGGWVREQHDFDSLPVYLRPGAVVPLSRHEDRPDADHLDGLTLLVHAGPEPDWSRTVEVAGPDGTAVPFTVAREDGVLVARSTQDSSWSVQVVGGETVAATGGRAEVSA	PGPT0019340_667	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811	NA	NA
AK001_00488	1011	ccpA_1	COG1609	Catabolite control protein A	GTGGTGACCATGCAGGACGTGGCCGACCGGGCCGGCGTCTCCCTGACGACGGTCTCGTTCGTCGTCAACGGCACCAAGCCGGTCGCCGAGCGGACGCGGGCGCGGGTGCAGGCGGCCATGGCCGACCTCGGCTACCGTCGCAACGTCGTGGCCCGTGCGCTGGCGAGCCAGCGGACCCGGATCGTGGCGCTCGTGTTCCCGGCGCTCGAGCACGGCCTCGGCGGCGCTGCCCTGAGCATCGTCACCGCGGCGGCCTCCGCCGCCACCCGGCGGGGCTTCAACGTCGTGCTGTGGCCCGTCACGGGTGCCGACCAGCTCGAGGACTACGTCTCCGGGGGCCTCGCCGACGGCGTGCTCCTCATGGAGGTCACCGCGCAGGACCCGCGCGTGGAGGTGCTGCAGCGCCGCGCCGTCCCGTTCGGGCTCATCGGTCGCACCGAGGACGTCGAGGGTCTGTCGTACGTCGACATGGACTTCGACGCCATGCTCGCCACCGGCCTCGACCACCTCGTCGGACTCGGCCACGAGCGCGTCGCGCTCTTCGTCGGGGACCTCGGCCCCACGGCTCCGGCGGGCTACGGCCCGGTCGCCCGCACGGAGGCCGCCTACCTGCACGAGACCGCCGCCCGCGGGCTCGATCCCGTCGTGGTCCGCGGTGCCCAGGACCCCCGCTCCGGGCACCGCACCGCCGACGAGCTGCTCGCCCGTCACCCCGAGGTCACGGCCGTGCTGGCCCTCAACGAGGCCGCGCTGTCAGGCTTCGTCAACGGGCTCGTGGCCGGTGGACGCTCGGTCCCCGACGACGTCTCCGTGCTCGGCGTCGCCACCTCCGCCGAGGCCGTCTCCACCGCCGACCCGCCGGTCTCGGCCGTCGTCGCCCCCGGGCACGACCTCGGCAGCCGCAGCGTCGACGCCCTGATCGACCGCCTCGCCGAGCCGACGGCGCCCCCGCTGCAGCTCCTGCTCGACGGCGAGCTCCAGCCGGCCGGATCCACCGCACCGCCGCGCTGA	MVTMQDVADRAGVSLTTVSFVVNGTKPVAERTRARVQAAMADLGYRRNVVARALASQRTRIVALVFPALEHGLGGAALSIVTAAASAATRRGFNVVLWPVTGADQLEDYVSGGLADGVLLMEVTAQDPRVEVLQRRAVPFGLIGRTEDVEGLSYVDMDFDAMLATGLDHLVGLGHERVALFVGDLGPTAPAGYGPVARTEAAYLHETAARGLDPVVVRGAQDPRSGHRTADELLARHPEVTAVLALNEAALSGFVNGLVAGGRSVPDDVSVLGVATSAEAVSTADPPVSAVVAPGHDLGSRSVDALIDRLAEPTAPPLQLLLDGELQPAGSTAPPR	PGPT0014791_184	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_00489	1209	malX	COG2182	Maltose/maltodextrin-binding protein	GTGCGACGAACCCACACCGCCGTCGGTGCGGCGTCGGCCGCCGCCGTCGTCCTGAGCCTGTCGGCCTGTGCCGACCAGGGCCGGGCCGACGCCGACACGCTGGTCGTGACCGACACCATGTCGGCGACCAGCGCGCCCATCTACGAGGAGATCTACGACGCCTGCGCCGCCGAGGTGGGCATGCAGGTCCGGGCCAACCACGTGGCCGGCTCCGGGCTCATCGCCACCGTGCTCCAGCAGGCGTCCTCGCGCACGCTGCCCGACGTGCTCATGCTCGACAACCCGGACGTGCAGCAGATCGCCTCGTCGGGCGCGCTGAGCCCGCTGGGCGACTACGGCATCACCGGCGACGGGTTCCCGCAGGGCGTGATCGACGCCGGGACCTACGACGGTGCGCTGTACGGCATCGCCCCGGTGGTCAACAGCATCGGGCTGTTCTACGACGCCGAGGCCCTGGCCGAGGCCGGCCTCGAGCCCCCGCGGACGTGGGATCAGCTGCGTGCGGCCGCCGCCGAGCTGACCACCGAGGACCGGTACGGCATCGCGTTCAGCGCGACCAACTCGTTCGAGGGCACCTGGCAGCTCCTGCCGTTCCTGTGGAGCAACGGCGCCACCGAGGACGACCTGGACTCGCCCGAGGCGGTGCAGGCGCTCGAGCTCGTCGACGCGCTGGTCGCCGACGGCTCGGCGTCCGCCAGCGTCGTCAACTGGTCGCAGAACGACGTCAACGACCAGTTCCTCGCCGGCAACGCCGCGATGATGGTCAACGGCCCGTGGAACATGCCCAGCCTCGAGGCCGCCGAGGGGCTCGAGTACGACTCGGTCCCGCTGCCGGTCCCCGCACCCGGCGACACGCTCGTGGCGCCCCTCGGCGGCGAGGCCTTCACCGTCCCCGACACCGGCGACCCGGACAAGATGGCCCGGGCCGGTGAGTTCGTCGACTGCGTCGTCGACGGGGAGAACCAGCTGACGATGGCCACCGGCCGCGGGGCCGTGCCGGCCGACAGCGCGGTCGCGGCGGAGGCCGCACGGACGAACCCGACCGTGGCCACGTTCGTCGACACCGTGCAGACCGCCCGCGCCCGCACCGCTCTGCTGGGCCCCGACTGGCCGCGCGCCGCCACCCAGATCTACACCGCCGAACAGCTCGCCCTGACCGACACCGAGTCCCCGGCGGAAGCGCTCGAGCGCGTGGCGGGACAGGACTGA	MRRTHTAVGAASAAAVVLSLSACADQGRADADTLVVTDTMSATSAPIYEEIYDACAAEVGMQVRANHVAGSGLIATVLQQASSRTLPDVLMLDNPDVQQIASSGALSPLGDYGITGDGFPQGVIDAGTYDGALYGIAPVVNSIGLFYDAEALAEAGLEPPRTWDQLRAAAAELTTEDRYGIAFSATNSFEGTWQLLPFLWSNGATEDDLDSPEAVQALELVDALVADGSASASVVNWSQNDVNDQFLAGNAAMMVNGPWNMPSLEAAEGLEYDSVPLPVPAPGDTLVAPLGGEAFTVPDTGDPDKMARAGEFVDCVVDGENQLTMATGRGAVPADSAVAAEAARTNPTVATFVDTVQTARARTALLGPDWPRAATQIYTAEQLALTDTESPAEALERVAGQD	PGPT0016545_10889	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_00490	960	melD_1	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGACCACGACCCTCGCCGCCGGACCGACGGGCGCCAGCGCGCCGCCGCGGTCCGCCCCACCGGCACGCCGGCGCGCCCGACGGCGCGAGCTCACCGCCCAGTGGCTCTTCCTCGTGCCCGCGATCGCCTACGTGCTGGTCTTCTTCGGCTACCCGATCGTCAAGAACCTCGTCATGGGGTTCCAGGACTACTCGGTGCGCACCTTCGTCACCGGCGAGGCGCCCTGGGTCGGCCTGGCGAACTACGCCGAGGTCGTCTCGAGCGGGATCTTCCAGACCACCGTGGTCAACACGGTGCTGTTCACCCTGGGGTCCATCGCCGGCCAGTTCGTCATCGGGCTGCTGTTCGCGCTGTTCTTCAAGCGCCGGTTCCCGCTGAGCAACGTGCTGCGGTCGCTGCTGCTCCTGCCGTGGCTGCTGCCGATGATCGCCGGCAGCGCCGTGTGGCGCTGGATCCTCGACCAGGACGGCGGCATCCTCAACCAGACCCTGCAGGGCGTCGGGATCATCGACGACCCCGTGCGCTGGCTGACCAGCCCGGACGTCGCGCTGGTCGCGGTGATCCTCGTGAACGTCTGGGTCGGCATCCCGTTCAACATGACGCTGCTGTACAGCGGGCTGCAGAACATCCCCGACGAGCTCTACGAAGCCGGTGCCCTCGACGGCGCCACGGGCTGGAAGGCCTTCCGGCACATCACGTGGCCGAGCCTGCGCCCCGTCGTCAACGTCGTGCTCGTGCTGGGCGTGATCTACACGCTCAAGGTGCTCGACATCATCCTGGGACTCACGGGCGGGGGACCGGCGAACGCCACGCAGACGCTCGCCACCGACTCCTACCGGCGTTCGTTCCAGGAGTTCTCCTTCGGCACCGGGGCAGCGGTGAGCAACGTCCTCATCGTCGTCTCCCTGGTGTTCGCCGTCGTCTACCTGCGCGCCAACCGCCGCGCCGAGGATGAGTGA	MTTTLAAGPTGASAPPRSAPPARRRARRRELTAQWLFLVPAIAYVLVFFGYPIVKNLVMGFQDYSVRTFVTGEAPWVGLANYAEVVSSGIFQTTVVNTVLFTLGSIAGQFVIGLLFALFFKRRFPLSNVLRSLLLLPWLLPMIAGSAVWRWILDQDGGILNQTLQGVGIIDDPVRWLTSPDVALVAVILVNVWVGIPFNMTLLYSGLQNIPDELYEAGALDGATGWKAFRHITWPSLRPVVNVVLVLGVIYTLKVLDIILGLTGGGPANATQTLATDSYRRSFQEFSFGTGAAVSNVLIVVSLVFAVVYLRANRRAEDE	PGPT0016535_2117	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_00491	819	dasC_1	COG0395	Diacetylchitobiose uptake system permease protein DasC	ATGTCGCCGACGACCACCTCCCGCACGCTGCCGCACACGATCCTGGGGATCGTGCTCCTGGCCTTCATGCTGTTCCCGGTCTACTGGATGGTGAACGTCTCGCTGCAGGGCGGCAGCACCGCGGCCAGCAGCACGTTCCTGCCCACCGACGTCACGTTCGACGGCTACCGCACCGCCATCGAGGACCAGACCGGCAACCTGCTCACCAGCATCGTCGTGGCGCTCGGGGCCGTGGCGGTCTCCCTGGCGATCGCCACGCCGGCCGCCTACGCGGTGTCCCGGTTCCGGCTGCGCGGCCTGGGGGTCTTCCTGTTCGCCCTGCTGCTGGCCCAGATGATCCCCGGCATCGTCATCGCGAACTCGCTGTACACGCTGTTCAACGACCTCGGCCTGCTGAACTCCTACGCGGGGCTCGTCCTGGCCAACGCCACCCACGGCATCCCGTTCGCGATCCTCATCATGAGCGCCTTCATGCGGTCGATCCCGCCGGCGCTGACCGAGGCGGCCCGGGTCGACGGTGCGAGCCACTTCCGGGCCTTCTGGTCGATCATCGTGCCGGTGAGCAAGAACTCCCTCATCACCGCCGGGCTGTTCTGCTTCCTGTTCGCCTGGAGCGACTTCATGTTCGGCCTGACGCTGACCACGGGCGCGGACATCAAGCCGGTCACCCTCGGCATCTACGACTACCTGCAGGGGAACGTGCAGAGCTGGGGACCCGTCATGGCGACCGCCGTGCTGTCGTCGATCCCGGCGATCGTGCTGCTCGTGCTGGCCCAGCGGTACATCGCCGCCGGGGCGATGGGCGGGGCCGTCAAGTAG	MSPTTTSRTLPHTILGIVLLAFMLFPVYWMVNVSLQGGSTAASSTFLPTDVTFDGYRTAIEDQTGNLLTSIVVALGAVAVSLAIATPAAYAVSRFRLRGLGVFLFALLLAQMIPGIVIANSLYTLFNDLGLLNSYAGLVLANATHGIPFAILIMSAFMRSIPPALTEAARVDGASHFRAFWSIIVPVSKNSLITAGLFCFLFAWSDFMFGLTLTTGADIKPVTLGIYDYLQGNVQSWGPVMATAVLSSIPAIVLLVLAQRYIAAGAMGGAVK	PGPT0016540_8989	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_00492	1350	aqdA2		putative N-octanoylanthranilate hydrolase AqdA2	ATGACCCAGGAGACCACGACGGCGTCCGGCGCGGGGTCGCGCGACGGCGCGGTACGCGTCGTGCAGGCGCCGGCGGGTCGGTTCTCGGCCCGCGTCGGCGCCGACGTGCTGCGCGCCGGCGGGATCCGCTACGCCCGAGCCGCACGCTTCGACGCGCCCGTGGACGAGCCACCGGCTCCGGGCCCCGTCGACGCGACCGGCTTCTCGCCGTCGTGCCCGCAGAATCCCGACCCGGCCGGACTGGACGTCTTCGGCCCGGGCTCCGCGCGACCGCTGCCACCGTCCGAGGACTGCCTGCGGCTGACCGTCACGGCACCCGTCGACGCCTTCCCGGGCGAGAACCTGCCCGTCGTGGTCTGGATCCACGGCGGGTCGTACGTGTCCGGCGCCGGGGACGCGATCAGCTACGACCCGACCCTGCTGGTGCGCGAGCAACGCGTCGTCGTGGTCGCCGTGACGTACCGGCTCGGCGTGCTGGGATTCCTCGGCGACGCCGAGCGTCCGGCGAACCTCGGTCTGCTGGACATGCTGGCCGCGCTGCGCTGGGTGTCGCGCAACGTGGCCGCGTTCGGGGGCGACCCCGGGCGCGTGACGGCGATGGGCGAGTCCGCGGGCGCGGACGCGATCGCGCACCTGATGGTCGCCGACGGCGCGGCGGGGCTCTTCCGGCGGGCGATCGTGCAGAGCCCTCCGCTGGGGATCTCCCGACGCCGCGCGGCGATGTCGGCGACCCTGGCCGCCGAGGTGCGCACGGTTCGCGACGACGCGCCCCTGGAGGACCTGCTCGCCGCCCAGCACCGCGCCGCGCGTCGTGTGCTGCCCCGCTACGGGCTGCGCGCGGCGATGCCGTTCGGCACGCAGTACGGCTTCGCTCCCCTGCCGCCGGAGGACCACCTGGCCTCCGCCTGGTCGCGGGTCGCCCCGCAGGTCGAGGTCCTGGCGGGGACCAACGCCCGCGAGGCCGCGCTGTTCGTCGACGGGGCCCTGCCCCGGCCGGTCGTCCCGGGCCTGGGCCGCGGGCTGCGCGAGGCGGCGGTGCACGAGCTCACCCGGACGGTGTACGGCCGCGCGGTGGACCGGTTCGTCCAGCGCCACCGCCGCGCCGGGGGCAGGGCGGCGCGGTACACCTACCTCGGCGGCGACGCGCACCACCCGCTCCGGGCGGCGCACGCCACCGAGCTGCCGCTGCTGCTCGGCGACCCCGACGGCTGGCGCGGGGTGCCGGTGGTGGCGGGCCGCTCCGACGCGGACCTCCTCGACACCGGGCGGACGCTGCGTGCCGCCTGGGCCGAGTTCGCTCGCTCCGGCCGTCCTCCCACCGACGTCCCCGCGCTGCTGCGCGTCGACTGA	MTQETTTASGAGSRDGAVRVVQAPAGRFSARVGADVLRAGGIRYARAARFDAPVDEPPAPGPVDATGFSPSCPQNPDPAGLDVFGPGSARPLPPSEDCLRLTVTAPVDAFPGENLPVVVWIHGGSYVSGAGDAISYDPTLLVREQRVVVVAVTYRLGVLGFLGDAERPANLGLLDMLAALRWVSRNVAAFGGDPGRVTAMGESAGADAIAHLMVADGAAGLFRRAIVQSPPLGISRRRAAMSATLAAEVRTVRDDAPLEDLLAAQHRAARRVLPRYGLRAAMPFGTQYGFAPLPPEDHLASAWSRVAPQVEVLAGTNAREAALFVDGALPRPVVPGLGRGLREAAVHELTRTVYGRAVDRFVQRHRRAGGRAARYTYLGGDAHHPLRAAHATELPLLLGDPDGWRGVPVVAGRSDADLLDTGRTLRAAWAEFARSGRPPTDVPALLRVD	PGPT0030515_2648	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-TANNIN_DEGRADATION	PUTATIVE-TANNIN_DEGRADATION-1,PGPT0030515-pnbA-K03929
AK001_00493	948	yajO_2	COG0667	1-deoxyxylulose-5-phosphate synthase YajO	ATGACGCAGTCGACGATCTCAGCACAGCTCGGTTCCCTCGACCTGTCCGCGGCGCCCCTGGCGCTCGGCGGGAACGTCTTCGGCTGGACGGCCGACGACGACGCCTCCTTCTCCGTGCTGGACGCCTTCGTGGCGGCCGGCGGGCGGATGATCGACTCCGCCGACGTCTACTCGGCCTGGGTCCCCGGCAACTCCGGGGGCGAGAGCGAGACGACCGTCGGGCGCTGGCTCGCGCGCGGCGGGCGCCGTGACGACGTGCAGATCGCCACCAAGGTCTCCCAGCACCCCGAGTACCCCGGGCTGTCCGCGGCGAACGTCCGCGCCGCGGCCGAGGCGTCCCTGCGGCGTCTGGGCACCGACCGCATCGACCTGTACTACGCGCACTTCGACGACGCCGACACCCCGGTGGCGGAGACCGCTGCCGCGTTCTCCCGCCTCGTCGACGACGGCCTGGTCCGCGAGATCGGGATCTCGAACTACAGCGCCGAGCGGATCGACGAGTGGTTCGCCGCGGTCGAGGCCGGCGGGCTGCACCGCCCGGTCGCCCTGCAGCCGCACTACAACCTCGTCGAGCGGGGCTTCGAGGGAGCCGTCCGGGGCGCCGCGCTGCGGCACGGCCTGGGCGTGCTGCCGTACTACGCGCTGGCGTCCGGCTTCCTCACCGGCACCTACCGCGACGGGGTCGCGCCCGACAGTCCGCGGGCGCAGGGTGCGGCGCGCTACCTCGACGACCGCGGCCGCCGGGTGCTGGACGCCCTCGACGAGGTCGCCGCCGCGCACGACGCGCCCCTCGCGTCCGTGGCGCTGGCCTGGCTGCGCGCGCAGCCGACCGTCGTGGCCCCGATCGCCAGCGCGCGCCGCACCGACCAGCTCGACGCGCTGCTGACCTCGATGACGCTCGACCTCACACCGGGCGAGGTCGACCGGCTCACCGACGCCTCCGCCTGA	MTQSTISAQLGSLDLSAAPLALGGNVFGWTADDDASFSVLDAFVAAGGRMIDSADVYSAWVPGNSGGESETTVGRWLARGGRRDDVQIATKVSQHPEYPGLSAANVRAAAEASLRRLGTDRIDLYYAHFDDADTPVAETAAAFSRLVDDGLVREIGISNYSAERIDEWFAAVEAGGLHRPVALQPHYNLVERGFEGAVRGAALRHGLGVLPYYALASGFLTGTYRDGVAPDSPRAQGAARYLDDRGRRVLDALDEVAAAHDAPLASVALAWLRAQPTVVAPIASARRTDQLDALLTSMTLDLTPGEVDRLTDASA	PGPT0016784_4	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016784-mocA-NA	NA	NA
AK001_00494	732			Tropinesterase	ATGGGCACGGCACCGACCCGGCTCGTCCTGCTGCCCGGCTGGGCCGAGACGGGCGGGGTATTCGCACGACTCCTGCCCCGGCTGCCCGGGACGGTCGCGGCCGAGGTGGTCGAGCTGGCCGACCCGACGATCACGGACTGGTCGGTCCGCGCCCTCGCGTCGCGGGTCGCCGACGTGCTTGACGTGTCCCGGCCGACGGCGGCACGCACCGTCGTGCTCGGGACGTCCAGCGGTGGCTACGTGGCCCAGCAGCTCGCCGTCGACCGTCCGGACCTGCTCGACGGACTCGTCCTGGTCGGCTCACCCGTCGACCTGCGGAGCAGGCCGCCGTTCGCCGACGACGTCGAACGGCTCACCGACCCCGTCGACCCGGCGTGGGTCCGCGCGTCGCTGGACTGGTTCGGCACGGGTGCCACGATCCCCGCGGACTTCCTCGCGGCGCGCTCCGCGGAGTCGGCCGCCCTGGGCGCTCGCGTCTGGCGCGACTCGCTGCGCGGCCTGATCGATTCGGAACCGCCGCTGTCCACGGGGACGACCGAGGTGCCCACGCTGGTCGTCGGCGGGGCGCTGGACGAGCTCGTCGGCCCGAGCCACGAGCGGCTCCTGGCGGCCCTCCCCCGCGCCCGCGGCACGGTGTACGCCCGCACGGGTCACCTCGTGCTCTGGGAGCGCCCGGACCGGGTCGCGGCCGACGTCGTCGACTTCCTCGACAACGTCGGCCGCGACGCGTGA	MGTAPTRLVLLPGWAETGGVFARLLPRLPGTVAAEVVELADPTITDWSVRALASRVADVLDVSRPTAARTVVLGTSSGGYVAQQLAVDRPDLLDGLVLVGSPVDLRSRPPFADDVERLTDPVDPAWVRASLDWFGTGATIPADFLAARSAESAALGARVWRDSLRGLIDSEPPLSTGTTEVPTLVVGGALDELVGPSHERLLAALPRARGTVYARTGHLVLWERPDRVAADVVDFLDNVGRDA				NA	NA	NA	NA	NA
AK001_00495	339	ndhC		NAD(P)H-quinone oxidoreductase subunit 3, chloroplastic	ATGGCCGCGGTCGGGCTCGTGCTGGGGATCGCGCTGCTCGTGCTGGGCCTGCGTGGTGCTGCCGTCGCCCTGGCCGTGGCTCGCACGCCGGCCCTCGGCCTGCCGTTCGAGTCCGGGACGCTCCCCGCGCAGCACGCCGTGTCGCGGTTCCACGTCCGCTGGTACGCGGTGAGTCTGCTGTTCCTCGCCTTCGACATGGAGATGATCTTCATGTACCCGTGGGCCGTCGTGATCGCGCAGATGGGCGCGACCTCGGTCGTGGAGATGTTCGCTTTCCTCGCGGTGCTGCTGGTGGGGGTCCTGTACGCCTGGCGCGAGGGAGCGCTGCGGTGGGTCTGA	MAAVGLVLGIALLVLGLRGAAVALAVARTPALGLPFESGTLPAQHAVSRFHVRWYAVSLLFLAFDMEMIFMYPWAVVIAQMGATSVVEMFAFLAVLLVGVLYAWREGALRWV	PGPT0026780_2994	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330	NA	NA
AK001_00496	1089			hypothetical protein	GTGGGTCTGAGACGGCGTCTGGTCCGGTTCGCCCTGGCGCAGCCGCGCGTGCTGCTCGTGGTCGCCCCCGACGGGGCGGCGCTCGCGCGGCAGGTTGGGTCCGTGCTGCTGCGGCGCGGCTGGTCGACGGCGAGCGCGCCGACCGACGCCGATCTCCTCGTCGTGGCCGGGAATCCCGGTCCCGAGCTGACGGCGGCCGTCGACGTGCTCTGGTCCCAGGTCCCGGCGCCCCGGTCCTGCGTCCGGCTCCCGGCCGCGAACGACGTCGGTGGCGCCCTGGACGTTGCCGCGGAGTCCCTGCAGGCGTGGGGGACGCAACGCGCCCGGGCCTCCGGACCGGACGGGGATCCCTGGCTCGGGCGCGGACCCGACGAGGAGAGCGACCACGAGGGTCACGAGGGTCACGAGGGTCACGAGGGTCACGAGGGTCACGAGGGCCATGGTGATCACGGGGGTCACGGCGGTCACGAGGGTCACGGCGGTCACGAGGGTCACGGGGGTCACGGGGGTCACGGCGACATGATGGTGGCGGGCCTGCCCATGGCGTCCTCGGCGCCGGACCGCGACGGCCTCGAGCTCGAGGCGCTGTCCCTGACGCTCGGTCCCTGGATGCCCGGGGCCCCCGACGGACTGGTCGTGCAGGCCTCGATGCAGGGTGACGTCCTGACCGGGGTGCACGTGCGCTGGGCCGACGCCGGTGCCCGTCCACTGCCGGGCGGAGCGGTGCGGGCCCTGGACGCCGTGTGCCGCGTCCTGACCCTGACCGGACCCGAACGGCTGCTCGACCGCGCCCGGCACGCCCGTGACGCCGTCGTGCAGCAGCACCCGGACGCGACGCAGCAGGCGGGCCGGGTGGTTCGTGACCTGCGCCGGTCGCGCACGCTGGCCTGGCCGGTGCGTGGCCTGCCGGCCCCCGGGGGCGGTGACGTGCTGGACCGCCTGCACACCTGGTGCGACGTGCTCGACGGCGCGCGACCGCCGGCACCGGTCGCCCCCGGCAGCGTGGCCGCGTCCCTCGAGGGCGCCGAGCTCGCCGCGGCGCGCCTCGCCGTGGCCTGCGTCGACGTGGCACCAGGGGAGCACCCATGA	MGLRRRLVRFALAQPRVLLVVAPDGAALARQVGSVLLRRGWSTASAPTDADLLVVAGNPGPELTAAVDVLWSQVPAPRSCVRLPAANDVGGALDVAAESLQAWGTQRARASGPDGDPWLGRGPDEESDHEGHEGHEGHEGHEGHEGHGDHGGHGGHEGHGGHEGHGGHGGHGDMMVAGLPMASSAPDRDGLELEALSLTLGPWMPGAPDGLVVQASMQGDVLTGVHVRWADAGARPLPGGAVRALDAVCRVLTLTGPERLLDRARHARDAVVQQHPDATQQAGRVVRDLRRSRTLAWPVRGLPAPGGGDVLDRLHTWCDVLDGARPPAPVAPGSVAASLEGAELAAARLAVACVDVAPGEHP				NA	NA	NA	NA	NA
AK001_00497	948	nuoH_1	COG1005	NADH-quinone oxidoreductase subunit H	ATGACCGAGACGACCTGGACGTCACCCGGCGCCGGGCTCGCCGTCGCGGGCGTCGCCGTGCTGCTCGGTGTCGTGCTCGCCGCGATGGACGCCGTGGCCCGCCGCGCACCGGCGTCCGAGGGTCGATCGGCCGAGCGCGCGGTGACCCCGGTCCGCGACGTCGCCCGGCTGCTGCTCGAGCGTCGACGCGCGACGCTCGCCCCCGACCGGCTGCTGCGCACCGTGGCGGTCCTCGCGATCCCCGTGCTCGCGCTGCTCTCGGCGGCGGTGCTGCCGTTCGGGGGCCGCAGCGTGGTCTCGACGTCGGCGGACCTGGTGTGGTTCAACGCCGCCGAGGCGCTGCTGTGGGCCGCCGTCTGGCTGCTGGGCTGGGGGCCGAACGCGGCGCACGCCCTGGTCGGCGCCTACCGCTTCCTCGCCCAGGGGCTCGCCTACGAGCTGCCGCTGATGTTCGCGATCATCACCGTCGGGGTCGGTGCCGGGTCGCTGCGGGCCACCGACGTGGTCGCCGCCCAGGCCGGCGGTGCCTGGTTCGTGTGGACCATGCCCGTGGCCTTCGTGGTGTTCCTGCTCGGGGCGGCGGCGTTCGCCTTCTGGGGCCCCTTCGCGGCGCCGGCGGGCGCCGACGTCGCCGGTGGCGTGCTCGCTGAGGTCTCGGGCGTCGACCGGCTGCTGGTGCAGGTGGGTCGCGCCGTGCTCCTCGGGGTCGCGGCCGCCACGGCGGCCGCCTGGTTCCTCGGCGGCGAGGACGGACCCGTGCTGCCGGGTCCGGCGTGGTACGCGCTCAAGACCCTGGCGGTGATGGCCTTGCTGGTCGGGGTGGGGCGACGCTGGCCGGTCGTGCGGCCCGAACGGTTCGCCGACGTCGCCTGGGTGGTCCTGCTGCCCGCGACGATCCTGCAGTCCGCGGTGGCCGCGGTCCTCGTGCTGGGAGGTTTCTACCGATGA	MTETTWTSPGAGLAVAGVAVLLGVVLAAMDAVARRAPASEGRSAERAVTPVRDVARLLLERRRATLAPDRLLRTVAVLAIPVLALLSAAVLPFGGRSVVSTSADLVWFNAAEALLWAAVWLLGWGPNAAHALVGAYRFLAQGLAYELPLMFAIITVGVGAGSLRATDVVAAQAGGAWFVWTMPVAFVVFLLGAAAFAFWGPFAAPAGADVAGGVLAEVSGVDRLLVQVGRAVLLGVAAATAAAWFLGGEDGPVLPGPAWYALKTLAVMALLVGVGRRWPVVRPERFADVAWVVLLPATILQSAVAAVLVLGGFYR	PGPT0026825_3420	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337	NA	NA
AK001_00498	564			hypothetical protein	ATGACGGAGCTGCTGGTCCTCGCCGCCCTCGGGGCCGTCGCCGTGTGCACCGGGGTGCTGGTGTTCGTCGTCGACTCCATGGCCCGGGCCACGTTCTCGCTGCTCGCCTCGTTCCTCGCGACCGGCGCGGCGCTGCTGGTCATGGACCTGGCCTACCTCGGCCTGCTGACCATCCTGATGATGACCATCGAGATGGCGATCATGGCCGTGTTCATGATCATGCTCATGATGAACCCGGCCGGTCTGATGCCCATGACCATGGTGCACAACGCCACCGGGTCCGCAATCGTGGGCGGCGCGGTGTTCGTCCTGCTCACCGTCGGCGTGTGGACGACCGACTGGCCCGACCGGCCCGGCCCGCCGCCGGACGACGCGACGGCCCAGGTCGGCGAGGCGGTCATGGGCGACTACATGCTCGTCATGATCCTGGTCGGTGTCGTCCTGCTCGCGACGATGGTCGCCGGCATCGCGCTGGCCACGCACCGCGGACGCTACGACCGGTTCGGACCCGGCCTCGACCGCCGCGCGCCCGACGACCCCGTCCGAGGAGGCCTGCCGCGATGA	MTELLVLAALGAVAVCTGVLVFVVDSMARATFSLLASFLATGAALLVMDLAYLGLLTILMMTIEMAIMAVFMIMLMMNPAGLMPMTMVHNATGSAIVGGAVFVLLTVGVWTTDWPDRPGPPPDDATAQVGEAVMGDYMLVMILVGVVLLATMVAGIALATHRGRYDRFGPGLDRRAPDDPVRGGLPR	PGPT0026835_1831	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339	NA	NA
AK001_00499	315	ndhE		NAD(P)H-quinone oxidoreductase subunit 4L, chloroplastic	ATGACCGAGCTGACCCTGCAGGTCGTCCTGACCGTCGCCGCCGCCCTGGTGGGCACCGGGCTGTTCGGGGCGCTGTCCCAGCAGTCGATCGTCATGGTCATGATGGGCCTCGAGCTCGTGGTCAACGGCGTGCTTCTGGCGGCGGGCGCAGCGTGGGCCTTCCTCACCCCGCAGCTGCCCGGCGCGCAGGTGCTGGTGCTGATGGCCACCGTCGTGATGGCCGTGGAGATGGCGATGGGCTTCGCCGTCGCGCTGGCGATCTACCGCGCCCGCCAGGTCGACACCGTCGACGCCGCCGAGGACCTCGCCGGATGA	MTELTLQVVLTVAAALVGTGLFGALSQQSIVMVMMGLELVVNGVLLAAGAAWAFLTPQLPGAQVLVLMATVVMAVEMAMGFAVALAIYRARQVDTVDAAEDLAG	PGPT0026730_314	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026730-ndhE-K05576	NA	NA
AK001_00500	1950	nuoL_1	COG1009	NADH-quinone oxidoreductase subunit L	ATGAGCGCCGCCCTGCTGCTCCTCGTGCTGCTGCCCGCCGCGGGCGGCGCGGTCCTGCTGCTCGGACGGCACCGCCTGGACCGCGTCGGCGCGCCCCTGGCGCTCGGCCTCGGTGCCGTCGGGCTGGCGCTCGCGGTCGTGGCCGCCGTCGGGCGTCCCGTCGTCACGGTGCCGTTCCTGGGTCGCGGCGCCGCCGCGGTCGCCGACGGCGCGGACCTCGCGCTGGCCGTCGACGGCCTGTCGGCCGTGCTGACCGTGACCGTCGCCGCGGTCGCGCTGACCGTGACGGTGCCCGCCGCGGTCGACCACGAGGCCCGCACGTCCCGGGCCCGGTTCTTCGGCTACTGGCTGCTGTTCGTCGCCGCCATGCAGCTCACCGTCACCGCCGCGACCTTCCCCGTGCTCCTGCTCGGCTGGGAGGTCATGGGGGCGACCTCCTACGCGCTCATCGGGTTCCGCTGGCGGCTGGCGGGCCGGACCGCGGCCGGCACCACGGCGCTGCTCACGACCCGGGCCGCCGACCTCGGGCTGTACGTCGCGGCCGGCGCCGTGCTGGCGGGCAGCGGGGGCCTGCACCTGTCCGGGCTGGGCGGCCTGCCCGACCCGTGGGCCGCGGTGGCCACGACCGGCGTGGTGGTCGCGGCGCTGGGCAAGTCGGCCCAGCTGCCCCTGTCCGGCTGGCTGTCCGCGGCCATGCAGGGGCCGAGCCCGGTGTCCGCCCTGCTGCACTCGGCCACCATGGTGGCCGCCGGCGGCTACCTGCTGCTGCGCGTCGGAACCGACCTGACGGCGGGCGGGGCGACCGCCGCGGTCTGGGCCGGGGCCGCCACCGCCCTGGTGCTCGGGCTGGCCGCCGTGGCCCAGACCGACCTCAAGCAGCTCCTGGCGGCGAGCACCGCGGCCCAGACGGGGTTCGTCGTGGCGGCCGCGGGGGCGTACGCCGCCGGGGCGGGGACCGGCCTGCTCGCAGGGACCGAGCACCTGGTCGCCCACGCCGTCGTCAAGGCGGGCCTGTTCGTCGCGGCCGGCATCTGGCTGGGGGCGCTGGGCACGCGGGCGTTCGCCGAGCTGCGCGGCGCGGCCCGCCGCTACCCGCTCGTGGGGGCCGCCGTCGTCGCCGGGGCGGCCGCGCTGGCCGGGATCCCCCCGCTGTCGCTGTGGGTGACCAAGGACGAGGTCCTGCTCGGCCTCGAGCAGGCGCACCTGCCCGGCGGGGCCGTGCTGCACGTCGTGCTCCTGGTCGCCGGGGCCCTGTCGGCCGCCTACGCCGCCAAGGTCGTCGCGGTCGTGCTCGCCCCGACCGCCGGGCGCGACGGCGGCTCCCCGGCCCCGGTACCGGCCGTCGCCGCCGCGCTGGCCCTGGCCGCGGCCGCCGTCGGCCTGGGTGGCCTGGCCCTGCCCGGCGTGCGCGACGCCGTGGCCGGGGTGCTGGACGTCGAGCCCGGTGCCGCCCCGGCGCCGTCGGCCCTGGCGATCTCCGGCGGGCTCGCCGTGCTGGTGGCCGCGGCCGTGCTGTGGCGCCCGGGCCTGGCCCGGGCCGCCGAGCGTGCGCCGATGCAGGGCTGGTGGTCCCTGCCCGCGCTGCTCGCGGCCGCCGGGAGCGCGGCCGTGCGGCTGGCCGGTGCGGTCGACCGCGCCGACGCCGGGCTGGACCGTGCCGTGCGTTCCGTGCCGACCGGGGCCCTGGCCGCGGCCCGGGGCGCCGGGACGGCCGACGGCGGGATCGACCGGGGCGTGCACGGTGTCGCCGGGCTCGCCGTGACCGGGGCCCGGCACGCGGCGGTGGCCGACGACCGCGGCGTCGACGGCGTCGTGCGCGACGTCGCCACCGGTGCCGGTCGGGCCGGCCGGGCTGCCCGGCGTCCCCAGACCGGCCTGCTGCACCAGTACTACGCGCAGGTGGCCGCCGGCCTCGGCGCGCTCCTCGTCCTGCTGATCCTCGTGAGGTGA	MSAALLLLVLLPAAGGAVLLLGRHRLDRVGAPLALGLGAVGLALAVVAAVGRPVVTVPFLGRGAAAVADGADLALAVDGLSAVLTVTVAAVALTVTVPAAVDHEARTSRARFFGYWLLFVAAMQLTVTAATFPVLLLGWEVMGATSYALIGFRWRLAGRTAAGTTALLTTRAADLGLYVAAGAVLAGSGGLHLSGLGGLPDPWAAVATTGVVVAALGKSAQLPLSGWLSAAMQGPSPVSALLHSATMVAAGGYLLLRVGTDLTAGGATAAVWAGAATALVLGLAAVAQTDLKQLLAASTAAQTGFVVAAAGAYAAGAGTGLLAGTEHLVAHAVVKAGLFVAAGIWLGALGTRAFAELRGAARRYPLVGAAVVAGAAALAGIPPLSLWVTKDEVLLGLEQAHLPGGAVLHVVLLVAGALSAAYAAKVVAVVLAPTAGRDGGSPAPVPAVAAALALAAAAVGLGGLALPGVRDAVAGVLDVEPGAAPAPSALAISGGLAVLVAAAVLWRPGLARAAERAPMQGWWSLPALLAAAGSAAVRLAGAVDRADAGLDRAVRSVPTGALAAARGAGTADGGIDRGVHGVAGLAVTGARHAAVADDRGVDGVVRDVATGAGRAGRAARRPQTGLLHQYYAQVAAGLGALLVLLILVR	PGPT0026845_2685	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341	NA	NA
AK001_00501	1518	ndhD1	COG1008	NAD(P)H-quinone oxidoreductase chain 4 1	GTGCTCCTGACCGTCGTCGTCCTGCTCCCGGTGCTCGCCGGCCTCGTGCTCGTCGCGGCGCGCGTCCCGGACCGGGTCGCGTCCTGGGCGTGGGTGGCGACGTCCTCGGCCGTCGTCGCGCTCGTGGCGTGGATCTGGTGGGGCTTCGACGCCGGCGGCGGGGTCCAGAACGACGTCAAGCTGCGCTGGATCCCGACCGTCGACGCCTCCTACCACGTCGGCGTCGACGGCCTGTCCCTGCCGCTGCTCGGGCTCACCGCGGTGCTGTTCTGGTGCTGCGCCGTGTGGTCGCTGCGCGGCACCCCGCGGCCCCGCAGCCACGCGGCGCTCTTCCTGCTGCTGCAGACCACCTGCCTGGGCACGTTCGCCGCGCTGGACCTGATCCTGTTCTTCCTCTTCTTCGACCTGTCCATCGTGGCGATGTACTTCGTCATCGCCGGCTGGGGCCACGGCGACCGCCGGCGCAGCGCCCTGACCTTCTTCCTGTACACGTTCCTCGGTTCGCTCGCGCTGCTGCTCGGCTTCATCGGCCTGTTCCTCGGCAGCGAGCCGCGCACGTTCGACATCGTGCGCCTCGTCGAGGACCCGCCGTGGGCCGGGCAGGACGCCACCGCCTCCTGGGTGCTGCTGGCCCTCTTCGTCGGGCTGGCGGTCAAGACGCCGCTGTTCCCCTTCCACACCTGGCTGCCGCCCGCGCACACCGACGCCCCGGCCGAGGGCTCCGCGGTGCTGGCGGGCGTGCTGCTGAAGCTGGGCACCTTCGGGTTCGTGCGGATCGTCATGCCGACGCTGCCCGAGGCGTGGCAGCGCTGGGGCACCTGGATCGTCGTCGTCGGTGTCGTCAGCGTGCTCTGGGGCGCCCTGGTGGCGCTGGCCCAGGACGACCTGAAGCGGATGATCGCCTACACCTCGGTCAACCACATGGGCTACGTGCTGCTGGGGCTCGGGGCGGTCGGCGTGCTCGCCCGCGGGAGCACCGACGCCGCGGACGCCGCGGGCGCGGCCGGGGTGGCCGCGACCGGGGCCGTGGTGCAGATGGTCAGCCACGGACTGCTCACCGGCGCGCTGTTCCTCGTCGCCGGCGTGCTGTGGAACCGCGGAGGCACCTACGCGTTCGCCCGCTGGGGTGGCCTGGGCCGGGTGGTCCCCGGGTTCGCGGTGCTGCTGTCCGTGGCCGCCTTCGGGTCGCTCGGGCTGCCCGGTCTGTCGGGCTTCGTCGCCGAGTTCCAGGTGTTCGCCGGGTCGCTGGCCGCGGTGCCCGTGGCCGTGGCGATCGCCGTGGTGGGCATCCTGCTGACCGCCGGGCTGTTCCTGCGGGCGCTGCAGCGGCTGCTCACCGGTGACCTGCGGGTGCCCGAGGGCCTCGACGCGACGGCGGTGGGGGACGTGACCACCACCGAGCGCGTCGCCGTCGTCCCCCTGCTCGCCCTGAGCGTCGCCGTCGGTCTGGTGCCCTGGCTGCTGGTCGACGTCGTCGGGCCGGCCGCGGACGGCCTGGTCGCCCTGGTGGCCCGGTGA	MLLTVVVLLPVLAGLVLVAARVPDRVASWAWVATSSAVVALVAWIWWGFDAGGGVQNDVKLRWIPTVDASYHVGVDGLSLPLLGLTAVLFWCCAVWSLRGTPRPRSHAALFLLLQTTCLGTFAALDLILFFLFFDLSIVAMYFVIAGWGHGDRRRSALTFFLYTFLGSLALLLGFIGLFLGSEPRTFDIVRLVEDPPWAGQDATASWVLLALFVGLAVKTPLFPFHTWLPPAHTDAPAEGSAVLAGVLLKLGTFGFVRIVMPTLPEAWQRWGTWIVVVGVVSVLWGALVALAQDDLKRMIAYTSVNHMGYVLLGLGAVGVLARGSTDAADAAGAAGVAATGAVVQMVSHGLLTGALFLVAGVLWNRGGTYAFARWGGLGRVVPGFAVLLSVAAFGSLGLPGLSGFVAEFQVFAGSLAAVPVAVAIAVVGILLTAGLFLRALQRLLTGDLRVPEGLDATAVGDVTTTERVAVVPLLALSVAVGLVPWLLVDVVGPAADGLVALVAR	PGPT0026850_282	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342	NA	NA
AK001_00502	1401	nuoN_1	COG1007	NADH-quinone oxidoreductase subunit N	ATGACGGGGGACGACCTGGCCGGACTGCTGCCCGAGGGCCTGCTGCTCGTCGCGGCCGTCGGGGGACTGCTGCTCGGGCTGTGGACGCCGCAGGCAGCCCAGCGCCGGGTCGCCGTCGTCGCCGCCGTGGGGTGCCTGGCCAGCGCGCTGGCGGCCGCCGCAGCCCTGGCCGGGCCGGCGCGGACGGTGTTCGCCGGGACCTGGACCGTGGACGCCACCACCGGCGTCGTCCGCCTGGCGGTGGCTGCCGCGACCCTCGGCGTGGTGGTGCTGCTGCGCACCGAGCTCGCCGGGCACCCCCGCGAGACGGAGGCGTACGTCCTGGCGCTGCTGGTCGCCCTGGGCGCCGACGCCCTGGCCGCCGCGAGCGACGCCCTGCTGCTGGTGGCCGCCTACCTGCTCGCCAGCGTGCCCGCGTACGCGCTGACCGCCTTCCGCCAGGACGCCCGCGGCACCGAGGCGGCGCTGAAGTACTACCTGCTCAGCGCCCTGGTCGGCGTGGTGCTGCTGGTCGGCGTGACCGCCCTGGTGCTCGCCACGGGCCGGACGGGCTACGCCTCCGCGGGCGCGGGGCTGCCGGACGCCGCCCCGGCGCTCGGCGCGCTGGCCACGCTCGGCCTGCTCGCCGCGGTGCTGTTCAAGGCGGGCGCGGTCCCCGTGCACTTCTGGGTGCCCGACGCCGTCGACGGCGCGAGCCCGGCGGTGGCCGCCCTGATCACCACCGTGCCGAAGGTCGGGGCGCTCGCCGCGGCGTTCCGGCTCGTCGCGGAGCCGTTCGCCGAGGCGCCCGCGGGCCTGGCGCTCGCCGTCGCGCTCGTGGCGGCGGTGAGCATGACGCTGGGGAACCTCGCGGCGTTCTGGCAGAGCTCGCTGCAACGCCTGCTGGCGTACTCCACGATCAGCCAGGTGGGGTACCTGCTGATGATCGTCGCGGTCGCCGGGACGGTGGAGCCGGCCGGCCCGGCGCTGCAGGTCTACCTCGCGGCCTACGCCGTCACCAACGTCGGCGCGTTCGCCGCGGTGGCCGCGGTGCCGCGGCGCAGCACGCCGGCGGGGTGGGCGGCCGGCGTGGCGGGACGACCGTGGCTGGTGGTCAGCCTGGTGGTGTGTCTGCTGGGCCTCGTCGGCACACCGCCGACCGCGGTGTTCGTGGGCAAGGTCGCGGCGTTCACGACCGCGGCCGACGGCGGGTACGCCTGGCTCGTCGTCCTGGCCGCCGCCAACTCGGTGGCCAGCCTCTTCTACTACCTGCGCTGGATCGCCCCGGCGTTCCGGGCGGTGTCCTCCGCCCGCCCGCGCGTGGCCGGCGTGCGGCGGCCGGCGGCCGCGACCCTGCACGTCGCGGCGGCGACGAGCCTGGTGCTGGGGGTGGCCCTCGGCGCGACGATCGGTGGCGCGTAG	MTGDDLAGLLPEGLLLVAAVGGLLLGLWTPQAAQRRVAVVAAVGCLASALAAAAALAGPARTVFAGTWTVDATTGVVRLAVAAATLGVVVLLRTELAGHPRETEAYVLALLVALGADALAAASDALLLVAAYLLASVPAYALTAFRQDARGTEAALKYYLLSALVGVVLLVGVTALVLATGRTGYASAGAGLPDAAPALGALATLGLLAAVLFKAGAVPVHFWVPDAVDGASPAVAALITTVPKVGALAAAFRLVAEPFAEAPAGLALAVALVAAVSMTLGNLAAFWQSSLQRLLAYSTISQVGYLLMIVAVAGTVEPAGPALQVYLAAYAVTNVGAFAAVAAVPRRSTPAGWAAGVAGRPWLVVSLVVCLLGLVGTPPTAVFVGKVAAFTTAADGGYAWLVVLAAANSVASLFYYLRWIAPAFRAVSSARPRVAGVRRPAAATLHVAAATSLVLGVALGATIGGA	PGPT0026860_1778	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343	NA	NA
AK001_00503	450			hypothetical protein	ATGACGAGCTCGGCACCGGGCCCGGCGGATCGCCGGCCACTGCTGCGCGCGCTGCTGCTGGGCGCGGGCGTGGCCCTGCTCGTCGCTGCCCTGGTGCTGCTCGTCGTATCCCACCAGCCCTCGGCCTCCTCGGTGTCCGCGGGACACCTGCACGGGTCCGCCGGTGGCGTGGTCCACGCGGCCCCCGAGCACGCCGCGCCCGTCCCCGGCGACGGCACGGCGCACACGCACGAGAGTCCCGCCGAGGACCACGACCACGGGACCCTGGTGGTCTGCACCCTGCTGGCCGCGGCCGCGCTGCTGGCGCTGGTCGCGCTGCGGGCGCGTGCCGTGCCCTCGCCGGCCCAGGACGCACGGGCTGCGGGTCGACGCCTCGTCGGCGCCCTGGTCGCCACCACGCGCAGCGTCGCCCCGCCGGACCTCCTCGCGCTCGGGATCTCGCGCACGTGA	MTSSAPGPADRRPLLRALLLGAGVALLVAALVLLVVSHQPSASSVSAGHLHGSAGGVVHAAPEHAAPVPGDGTAHTHESPAEDHDHGTLVVCTLLAAAALLALVALRARAVPSPAQDARAAGRRLVGALVATTRSVAPPDLLALGISRT				NA	NA	NA	NA	NA
AK001_00504	1503			hypothetical protein	ATGACCGCCCGTCGCACCGGGGCGGCGCTCCGCGCCGCCCCCGCCCTGCCCGTCCGTCCGCACGGCCGACCCGGCCGCGTCCACCACCCCGAGATCCCGCACCGCCGGATCCTTGCTCCCGCCGGCGCCGTGCTGCTCGGTCTGATGCTCCTGCTGGCCGGGGCCGTCCCCGCGCAGGCGCACACCGACCTCGACACCGTCGAGCCCGCCGACGGCTCCACCGCCGACGGGCCGGTCGAGGAGGTCGTCCTGACGTTCACCCTGCCGGTCACCCCGTTGGGCGAGGCCGTGGAGGTCACCGGTCCGGAGGGGGCCGTACCGGTGCAGGTCACCCCGCAGCAGGACGGCGTGGTCCTGCTCGCCACCCCCGAGGAGCCGCTGACCGACGGCGACTACACGCTCGACTGGAGCGTGGCGGCCGAGGACGGCCATCCTCTGGACGGCACCGTCGCCTTCACCGTCACGGGCGCCGCGCCGGACGGCGGGTCGACCGACGACGGCGACGCGGGCGAGGACGCCGCACCCGACGCGGAGGGCTCGCCGACCGCGGCCCCGGACGCCGAGGCGGCAGCCGACCCGGAGGTCGCGGCCGACGAGGAGGACGCCGCGGGCTTCGCCGCCGTGGTCGCCCGGCTCGCCGGCGCCGCGGTCCTGTGGGGCGCGCTGGTGGCCGGCGGCGGGCTGCTGTTCGCCGCGCTCGTCCTGCGCGGACGCGACCGGGAGGAAGTGCCCGCCGTGCTCACGGCTGTGCGCTGGGTCGGCGTGCTCGCGCTCGTCGGCGTGCCGCTGCGGCTGGCCGCCCGGTCGGTCGTCGTGGCGCAGGGTGACGTCGCCGCCGCGGTCAGCCCGTCCGCGCTCGCCGACGCCCTGACCGGGGACACGGGGCTGGTCCTGGGGCTCCAGGCCGCCGGCGCCCTGGCGGTGCTGCTCGGGGCCCGGCGGACGCTGGCCGGCTCGTGGCTCGCCCTCGTCGGCACGCTGCTGCTCGGCGCGGGCATCGTGCTGGACGGGCACAGCAACAGCGTCGGTCCGCACTGGCTGGTCGTCACCACCGACGTCACGCACCTGCTCGCCGCCGCCGCCTGGGTCGGCGGGGTCGTCATGGTCGGCGTCGTGCTGCGCCGACGCCGGCGCGACGCGCGCCCCCTGGACGCCGGCCTGCTGGGCAGCCGCTTCTCGGTGCTGGCGACCGCGTCCGTCGTGGTGGTGGGGATCGCGGGAGTCGGACTGACCGTCGCGATCCTCGACCGGCCCTCCCAGCTGTGGGAGACCAGCTGGGGCCTGTTCCTGCTGGCCAAGGTCGCGGTGGTCGCGGTGGTCGCGGCGATCGGCGCCCACCAGCACTTCCGGGTGGTGCCCCTGCTGCAGGCGCCCGGCCACGGGGCCCGCCGTGCGCACAAGGCGGGCAGCCTCCTGCAGCGCGGCGCCGGCCACGAGACCGGCTTCATGGTGGTCGTCGTGCTGCTGACCGCGTGGCTGGTCGCCGCCTCGGTGCACGAGTAG	MTARRTGAALRAAPALPVRPHGRPGRVHHPEIPHRRILAPAGAVLLGLMLLLAGAVPAQAHTDLDTVEPADGSTADGPVEEVVLTFTLPVTPLGEAVEVTGPEGAVPVQVTPQQDGVVLLATPEEPLTDGDYTLDWSVAAEDGHPLDGTVAFTVTGAAPDGGSTDDGDAGEDAAPDAEGSPTAAPDAEAAADPEVAADEEDAAGFAAVVARLAGAAVLWGALVAGGGLLFAALVLRGRDREEVPAVLTAVRWVGVLALVGVPLRLAARSVVVAQGDVAAAVSPSALADALTGDTGLVLGLQAAGALAVLLGARRTLAGSWLALVGTLLLGAGIVLDGHSNSVGPHWLVVTTDVTHLLAAAAWVGGVVMVGVVLRRRRRDARPLDAGLLGSRFSVLATASVVVVGIAGVGLTVAILDRPSQLWETSWGLFLLAKVAVVAVVAAIGAHQHFRVVPLLQAPGHGARRAHKAGSLLQRGAGHETGFMVVVVLLTAWLVAASVHE				NA	NA	NA	NA	NA
AK001_00505	849		COG2141	putative protein	ATGTCCCGTCGCATCGGACTCAAGCTCACCCAGGACGCACCGGTCGCCGACTTCGAGCAGGTGTGGCGCACCGCCGACGACGCCGGCTTCGACCACGTGTGGGTGATGGACCACCTCGCCTCCCTCGGACCCGACCCGGCGCGCCCCGTGTTCGACGCCTGGGCGATGCAGGCGGCCATGGCCGCCCTGACCACCCGGGTCCGCATCGGGTGCATGGTCTCCGGGAACTCCTACCGCCACCCCGGGATGCTCGCCAAGCTCGCCACCACGGTCGACCACCTCTCCGGGGGCCGGCTCGAGCTCGGCATCGGTGCCGGCTGGAACGAGCGCGAGCACTCGATGTACGGGCTCGACCTGGGCGACGTGCGCACCCGCATGGACCGTCTCGAGGAGGCGCTGGTCGTCCTGCGGTCGCTGTGGACGCAGCCGACCACCACCTTCCACGGCGAGCACTACCGGCTCACCGACGCCGTCGCCGAGCCGAAACCCGTGCAGCGCCCGCACCCGCCGATCTGGATCGGCGGCTCGGGGCCCCGCCGCACCCTGCGCATGGTCGCGCGGTACGCCGACGCCTGGAACGACACCTCCAGCAGCCCCGAGCGGATCCGCGAGCTCGGCGACGTCCTCGCCCGCCACTGCGAGGACGTCGGCCGCGACCCCGCCGAGATCCGCCGCACGGTCCAGCTCCGGCTGCGCGAGCACGACCTCGCCGACCTGCCCGCGCTCGTGGCGGCCTACGCCGCGGTCGGCGTGAGCGAGTTCGTCGTCGTGCTCCCCAGCGAGGGGGACGTCCGCCCGCACCTCGACGCCGTGGTCGGCGCGCTGCCCCGGCTCCGCGCCGCCGGCTGA	MSRRIGLKLTQDAPVADFEQVWRTADDAGFDHVWVMDHLASLGPDPARPVFDAWAMQAAMAALTTRVRIGCMVSGNSYRHPGMLAKLATTVDHLSGGRLELGIGAGWNEREHSMYGLDLGDVRTRMDRLEEALVVLRSLWTQPTTTFHGEHYRLTDAVAEPKPVQRPHPPIWIGGSGPRRTLRMVARYADAWNDTSSSPERIRELGDVLARHCEDVGRDPAEIRRTVQLRLREHDLADLPALVAAYAAVGVSEFVVVLPSEGDVRPHLDAVVGALPRLRAAG				NA	NA	NA	NA	NA
AK001_00506	1788		COG1132	Putative multidrug export ATP-binding/permease protein	GTGCGACGGAAAGCCCTTACCCACACGTCCGACCTGGAGCGCATCGACGGCGCCCACCCGGTCCGCTCGATCCTGCGCCTGCTGACGGCCCAGCCGGGCAAGCTGGCGCTGGCGCTGTACGCCTTCACGCTCAAGGAGATCCCGCTCTGGTTCCTGCCGGTCATCACCGGTGCCGTCATCGACATCGTCGCCGAGGACGGCCCCGTCGGCTCGGTGATGATCTGGTTCGCCGTCGCCGTGGTGCTGCTCGCGCAGAACTACCCGCACCACATCCTGTACACGCGCAAGTTCATGACCGTGGTGCGCGACACCGGTGTGCGGCTGCGCAACGCGCTGGTCCAGCGGCTCCAGGTGCTCTCGATCGGGTACTACGCACGCTCGAGCGCCGCGCTGGTCCAGTCCAAGGTCGTGCGCGACGTGGAGAACGTCGAGATCATGCTGCAGCAGGTCACCCACCCGCTGCTGTCGGCGCTCATGGTGCTCGTCGGTGCCGTCTCGATGACCGCGATCCGGGTGCCCGAGTTCCTGCCGGTCTACGCCCTGGTCATCCCGACCGCGCTGCTCATCCGGCGCACCATGGCGCGCCGCTCCCAAGCCCGCAACGAGCAGTTCCGCCGCGAGATGGAGGGGTTCGCCTCCCGCGTGGGCGAGATGGCCTCCCTGATCCCGGTGACCCGTGCCCACGGGCTGGAGCAGACGGCCGCCACCCGGGTGGCCACGGGCGCGGACTACGTGCGGCGCGCCGGGCTCAACCTGGACCTGCTCAACGGGCGCATGCAGTCCATGTCGTGGGTGTCCATGCAGTTCCTCGGCGTGTTCTGCCTCGTGCTGGCCGCCGCGGTGTCGCTGTCGGGCGTCATCCCCATCACCCCCGGCGAGGTCGTCGTGCTGTCGACCTACTTCACGCTGCTCACCCAGGGACTGACCCAGGTCCTCAACCTCGTGCCCGTCACGGCCCGCGGCGTGGAGTCCATGCGCTCCATCGCCGAGGTGCTGGCCGAGCCCGACCTGGAGGAGAACGAGGGGCGCCGCCCGGTCGACCGGGTGGAGGGCCTCCTGCAGCTCGACCACGTCTCGCACCGGTACCCCGAGGCCGAGACCGACGCGCTCAGCGGCATCGACCTCGAGATCCGCCCGGGCGAGACCGTCGCCTTCGTCGGGCCCTCCGGATCGGGCAAGTCGACCCTGCTGAACCTCGTGCTCGGCTTCGTCCGTCCCACCGACGGCCGCATCCGGCTGGACGGTCAGGACATGTCCGAGCTCGACCTGCGCACCGTGCGCCGCCACGTCTCGGTCGTGCCCCAGGAGTCGGTCCTGTTCGAGGGGTCGATCCGCGACAACGTCGCCTACGGGCTCGACGAGGCCGACGACGAACGCATCCGCGCCGCGCTGCGCGACGCCAACGCCCTGGAGTTCGTCGACGCGTTGCCCCAGGGGTGGGACACCGTCGTGGGCCAGCGCGGAGCCCGCATCTCCGGCGGTCAGCGCCAGCGGCTGGCCATCGCCCGGGCGATCGTGCGCAACCCGAACATCCTCTTCCTGGACGAGGCCACCAGCGCGCTCGACCCGGAGTCCGAGGTCTCCGTGCGCGACGCGCTGGACCGGCTGATGGCCGACCGCACCACGCTGGTGGTGGCGCACCGGCTGTCCACGGTGCGCCAGGCCGACCGCATCGTCGTGCTGGACCACGGGCGCATCGTCGAGGTCGGGCCGCACACCGAGCTGCTGGGGCGCGGTGGGCGGTACGCCGCCCTGCACGCCGCCCAGGAGGGCGGGCTCAGCGCGTAG	MRRKALTHTSDLERIDGAHPVRSILRLLTAQPGKLALALYAFTLKEIPLWFLPVITGAVIDIVAEDGPVGSVMIWFAVAVVLLAQNYPHHILYTRKFMTVVRDTGVRLRNALVQRLQVLSIGYYARSSAALVQSKVVRDVENVEIMLQQVTHPLLSALMVLVGAVSMTAIRVPEFLPVYALVIPTALLIRRTMARRSQARNEQFRREMEGFASRVGEMASLIPVTRAHGLEQTAATRVATGADYVRRAGLNLDLLNGRMQSMSWVSMQFLGVFCLVLAAAVSLSGVIPITPGEVVVLSTYFTLLTQGLTQVLNLVPVTARGVESMRSIAEVLAEPDLEENEGRRPVDRVEGLLQLDHVSHRYPEAETDALSGIDLEIRPGETVAFVGPSGSGKSTLLNLVLGFVRPTDGRIRLDGQDMSELDLRTVRRHVSVVPQESVLFEGSIRDNVAYGLDEADDERIRAALRDANALEFVDALPQGWDTVVGQRGARISGGQRQRLAIARAIVRNPNILFLDEATSALDPESEVSVRDALDRLMADRTTLVVAHRLSTVRQADRIVVLDHGRIVEVGPHTELLGRGGRYAALHAAQEGGLSA				NA	NA	NA	NA	NA
AK001_00507	1338	abgB	COG1473	p-aminobenzoyl-glutamate hydrolase subunit B	ATGCCAGCGCCGAACCCGCCGAGCACGGCCTACCTGGACCACATCGCCGACGAGACCGACGACCGACGCCACGCGGCCCTGGCCGCCCAGCCCGCCGAGCCGGCGGGCGGGGGAGCGCCCGCGGCGCTGACCGACGCCGCCGAGGCCGCCGCGACGGACCTGGAGCCGGAGCTCGCCGCGATCGTCCGGACCCTGCACGCCCACCCGGAGACCGCGTTCGTCGAGCACGCCAGCGCACGGCTGCTGGTCGAGGTCCTGGCCCGGCACGGCGTCGAGGCCCGCACGGGTGTGGGCGGGGTGGAGACGGCGTTCCGTGCCGAGGCGGGCACCGACGACGGGCCGACGATCGCGGTGCTGGCCGAGTACGACGCCCTGCCCGGCATCGGGCACGCGTGCGGGCACAACGTCATCGCCGCCTCCGCGGTCGGCGCGTTCCTGGCCCTGCGCCGGGTCGTGTCGGCGCCAGGCGCGCCGGCCGGCCGCGTGGTCCTGCTGGGGACCCCGGCCGAGGAGGGGCACAGCGGCAAGGAGGTGCTCGCCCGGGCCGGGGCCTTCGAGGACCTGGACGCCGCGATCATGCTGCACCCCTACGGCGTCGACGTGGCCGACCAGGTGTGGCTGGGCCGCCGGCTGCTGACCTGGACGTTCACCGGCCGCAGCGCGCACGCCTCGGCGCAGCCCTTCATGGGGCGCAACGCGCTCGACGCCGCGAACCTGGCCTACACGGGGATCGGACTGCTGCGCCAGGAGCTGCCGCCCATCGACCGCGTGCACGCGACGATCACCGAGGGCGGGACCCGGCCCAGCATCATCCCCGACCGGGCCGTCATGCGGCTGTACGCCCGCTCGAAGTACCCGGACACGCTGCGCGACCTGTCACGGCGCCTGGACGACGTCGCCCGGGGTGCGGCGCTCATGACGGGCACGGAGGTCGACATCGCCTGGGACGACGGTGCGCACCCGTCGCTGCCCGTGCGCACCAACCAGGCGCTCACGCGGCGGTGGGTCGCGGCGCAGCAGCGGCGTGGCCGCGACGTGCTGCCCGGCGGGGTCGTCTCCGAGACGCTCGCGGCGTCGACGGACTTCGGCAACGTCAGCTTCCGCATCCCGGGCATCCACCCGCTGATCCAGGTCGCCGGCCCGGACGTCGCCCTGCACACGGTGGAGTTCGCCGAGGCCGCCGGTGGGCCCGCGGCGGTGCGGGCCGCCGTCGACGGCGCGGCGGGTCTGGCGGCCACGGCGCTGGACTACCTGGCCGACGACGCCCTGCGCGCGAGCGTGCACGCGGAGTTCGCCGCCCAGGGCGGCGCCATCGACGTCCCGCACTACTTCGACTGA	MPAPNPPSTAYLDHIADETDDRRHAALAAQPAEPAGGGAPAALTDAAEAAATDLEPELAAIVRTLHAHPETAFVEHASARLLVEVLARHGVEARTGVGGVETAFRAEAGTDDGPTIAVLAEYDALPGIGHACGHNVIAASAVGAFLALRRVVSAPGAPAGRVVLLGTPAEEGHSGKEVLARAGAFEDLDAAIMLHPYGVDVADQVWLGRRLLTWTFTGRSAHASAQPFMGRNALDAANLAYTGIGLLRQELPPIDRVHATITEGGTRPSIIPDRAVMRLYARSKYPDTLRDLSRRLDDVARGAALMTGTEVDIAWDDGAHPSLPVRTNQALTRRWVAAQQRRGRDVLPGGVVSETLAASTDFGNVSFRIPGIHPLIQVAGPDVALHTVEFAEAAGGPAAVRAAVDGAAGLAATALDYLADDALRASVHAEFAAQGGAIDVPHYFD				NA	NA	NA	NA	NA
AK001_00508	270	yccX	COG1254	Acylphosphatase	GTGACCACCCGCCTGCGCGCCGTCGTCCACGGACAGGTCCAGGGCGTCGGCTTCCGGTACGCCACCGCCCGGATCGCGGAGCGCGCCGGGGTGGCCGGCGAGGTCACCAACCTCCCCGACGGCACGGTCGCGGTCGAGCTCGAGGGCGACGAGCCGTCCGTCGCGGGTGTCGTGGAGTTCCTGCACCACGGGCCCCCGGCGGCGAGCGTCTCGCGCGTCGAGGTGACCACGGTCGAACCCCTGGGCGACACGGTCTTCCGGATCCGGTGA	MTTRLRAVVHGQVQGVGFRYATARIAERAGVAGEVTNLPDGTVAVELEGDEPSVAGVVEFLHHGPPAASVSRVEVTTVEPLGDTVFRIR	PGPT0001372_3351	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001372-acyP|yccX-K01512	NA	NA
AK001_00509	456	sarZ		HTH-type transcriptional regulator SarZ	ATGCCAGACGTCGGTGCCTCGAAGGTCCTCGACCCGCTGCTGTGCTTCGCCGTGTACTCGTTGGAGCGCCGCATCGGGCGGCTCTACGCCGACCTGCTCGCGCCGTGGCGGCTGAGCTACACCCAGTACCTCGTCGTCGAGATGCTCGGCGCGAACCGGGGCCAGCCGCTGACCGTCGGCGAGCTCGGCCGCCTGCTCGACCTCGACTCGGGGACGCTGTCCCCGCTGCTCAAGCGCCTCGAGGCACGTGACCTGGTCCGCCGGGGGCGTTCCCCCGAGGACGAACGCGTCGTGACCGTCGTGCTGACCGAGGCCGGGCGGGCGATGCACGGCGAGCTGGCGGACGTCCAGCGGTGCCTCGCCGAGCGGCTGCCGCCGGACCACGCCGCCGCGGCCGACCTCCTGGCCCGGCTGCGCGAGGCGAACGACTACCTGGCCCTGCACGCCGACGCCTGA	MPDVGASKVLDPLLCFAVYSLERRIGRLYADLLAPWRLSYTQYLVVEMLGANRGQPLTVGELGRLLDLDSGTLSPLLKRLEARDLVRRGRSPEDERVVTVVLTEAGRAMHGELADVQRCLAERLPPDHAAAADLLARLREANDYLALHADA	PGPT0013155_595	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
AK001_00510	429	ohrB	COG1764	Organic hydroperoxide resistance protein OhrB	GTGCTCCAGAACATCGGCTACACCGCTGACGCGTTGTCCACCGGCGCCGGCCGCGACGGCCACGTGCGCACCGACGACGGGCGCGTCGACCTCGACATGGCCCTCCCGAAGGGCCTCGGCGGGTCGGGCGAGGGGTCGAACCCCGAGCAGCTCTTCGCCGCCGGCTACGCCGCCTGCTTCCACTCGGCGCTGCAGAACGTGGCGAGGCAGCAGAAGATCCGGCTGACCGACACCTCGGTCGGGGCCCGGGTGCACATCGGTGCCGACGACGACGGCGGCTTCGGCCTGGCCGTCGAGCTCGAGGTCGTCGTGCCGGACCTGCCGGCCGCCGAGGCCCAGGCGCTCGCGGACACCGCGGAGAAGGTGTGCCCGTACTCCAACGCCACGCGCGGGAACATCGACCTGACCATCTCGGTCGTCGAGGGCTGA	MLQNIGYTADALSTGAGRDGHVRTDDGRVDLDMALPKGLGGSGEGSNPEQLFAAGYAACFHSALQNVARQQKIRLTDTSVGARVHIGADDDGGFGLAVELEVVVPDLPAAEAQALADTAEKVCPYSNATRGNIDLTISVVEG	PGPT0013160_1338	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063	NA	NA
AK001_00511	2373	nagZ_1		Beta-hexosaminidase	GTGCAGCTGCGGTCCGAGGACGCGTGGATCCCGGAGGGCATGGGCCAGGCGTGTCGCCGGGCCGCCGCCGAGGGCATCGTGCTGCTGACGAACGAGAACGAGGCTCTGCCACTGTCTGGGAGCGCTCCCATCGCGGTGTTCGGCCGCGTCCAGCGCGACTACTTCACCGTCGGCTACGGCTCCGGCGGTGACGTGCGCCCCCCGTACTCGTGGAACCTCGTCGACGCGCTGGCGGCCACCGACCTGCAGGTGGACGCCCCGCTCGCCGAGCGGTACGCGACCTGGTGCGACGAGCACCCCGTCGACCCCGAACCCGCCTGGGGCACCTGGCCCCGCTCCCACCCGGAGATGCCGCTGACCACCGCGGAGGTCGAGGCCGTCGCCGCCCGCACCCCGACCGCCGTCGTCGTCCTCGGCCGTGCGGCGGGCGAGGCGCGCGAGCAGTCGCTCACCGAGGGCGGCTACCACCTCACCGCCGACGAGCGCACGCTGCTGTCGCAGGTCAGTACCGCGTTCGAGCGCACCGTCGTCGTGGTCGACACCGGCAACGTGGTCGACCTCGCCTGGACCCGGGAGTACGACCTCGACGCCGTGCTGCTGGCCTGGCAGGGCGGGATGGAGTCGGGACGCGCCGTGGCCGACGTGCTCACCGGGGCCGTCCCGGCCGGCGGCAAGCTCACCGCCACGATCGCCACCGCCTACGACCGCTACCCGAGCGCCGGACACTTCGGCGGGCACGAGCACAACGAGTACGTCGAGGACGTCTACGTCGGCTACCGGTGGTTCGAGACGTTCGCGGCGCAGGACGTGCTGTACCCGTTCGGCTTCGGACTGACCTACGCGACCTTCGACGTGCGTGCCCAGGACGTGCGCGCCGACGGCGGCGAGGTCGTGGTGCGGGCCGAGGTCACCAACACCCACGCCGTCCACCCCGGCACCGAGGTCGTGCAGGTCTACGTGCGCGCCCCCCAGGGCGTCCTGGGCCGCCCGGCCCGGCACCTGGCCGCCTTCGCCAAGACCCGCGAGCTCGCCCCCGGCGCGTCCCAGACGCTCGAGCTGCGCTTCCGGCTCGAGGACCTCGCCGCGTACGACGACGGCGGGGCGACCGGGCACCGGTCCGCCTACGTGCTCGAGGCCGGCCGCTACGAGGTCCTGCTGGGCACCGACGTGCGCAGCGCCCTGCCGTGCGGCGCCGTCGACGTCGAGGACCTGCGCGTCGTGCGGCAGGTGGCCGAGGCCGCCGCCGTCGAGCCGGCGCACGCCTTCGACCGCGTCGTGGCCCGCACCGGACCCGACGGCGCGCCGCTGGTCGCGCACGCCCCGGTGCCCGTGGCGACCGTCTCGCGCCGCGACCGGGTGCTCGCCGGGCTGCCCGCCGCCGTCGCGCAGACCGGGGACGCCGGGGTCGACCTGGCCGACGTCGCCGCCGGGCGGGCCGACCTCGACACCTTCCTGGCCCAGCTCGACGACGACGAGCTCGAGGCGCTCTCGCGCGGGGACTTCACGATGGACTCGGCCCTGGGCGCCGCGGGCAACGCGGGCGCGCTGGCCGGCACCGTGCCGTCCCTGCGCGCCAAGGGCGTGCCCGCCCTGACCACCACGGACGGCCCCGCCGGGATCCGGCTGGCCACGCACACCGCGCTGCTGCCCTGCGGGACGGCGCTCGCCTCGACCTGGAACGTCGAGCTGGTCACCGAGCTCAACACCCTGCTGGCGGCCGAGATGGCGGCCAAGGGGTCCGACATCCTGCTCTCGCCCGGGATGAACATCCAGCGTGACCCCCTGTGCGGACGCAACTTCGAGTACTTCTCGGAGGACCCGCTGCTCACCGGGCGGATGGCCGCCGCCACCGTGCGCGGCATCCAGTCCGGGGGCCTGGCGGCCTGCCCCAAGCACTTCGCCGCCAACAACCAGGAGGACAACCGCGAGCACCACGACTCGCGCGTGTCCGAGCGGGCGCTGCGGGAGATCTACCTGCGCGGCTTCGAGATCTGCGTCGCCGAGTCCGCGCCGCGGACCGTCATGACGTCCTACAACAAGATCAACGGCGTCTGGGGCCACTACCACCACGACCTGGTCACGACCGTGCTGCGGGGCGAGTGGGGCTTCGACGGTGCCGTCATGACGGACTGGTGGATGCGCGAGGCCGTCGACCCCGACTTCCCGGCGGTCACCAACGACGCCTACCGGGTGCGCGCGCAGGTGGACGTTCACATGCCCGGGGCGTGGGGACGCGAGGACCGCCACGGCGACGGCTCCCTGCTGGCCTCGCTGGCCGCACCCGACGGCCTCACGCGGGGCGAGCTGCAGCGCACCGCCCGCAACGTGCTGCGCCTGGCCCTGACCAGCCCCCGGGTGACCGGCGGCGCCTGA	MQLRSEDAWIPEGMGQACRRAAAEGIVLLTNENEALPLSGSAPIAVFGRVQRDYFTVGYGSGGDVRPPYSWNLVDALAATDLQVDAPLAERYATWCDEHPVDPEPAWGTWPRSHPEMPLTTAEVEAVAARTPTAVVVLGRAAGEAREQSLTEGGYHLTADERTLLSQVSTAFERTVVVVDTGNVVDLAWTREYDLDAVLLAWQGGMESGRAVADVLTGAVPAGGKLTATIATAYDRYPSAGHFGGHEHNEYVEDVYVGYRWFETFAAQDVLYPFGFGLTYATFDVRAQDVRADGGEVVVRAEVTNTHAVHPGTEVVQVYVRAPQGVLGRPARHLAAFAKTRELAPGASQTLELRFRLEDLAAYDDGGATGHRSAYVLEAGRYEVLLGTDVRSALPCGAVDVEDLRVVRQVAEAAAVEPAHAFDRVVARTGPDGAPLVAHAPVPVATVSRRDRVLAGLPAAVAQTGDAGVDLADVAAGRADLDTFLAQLDDDELEALSRGDFTMDSALGAAGNAGALAGTVPSLRAKGVPALTTTDGPAGIRLATHTALLPCGTALASTWNVELVTELNTLLAAEMAAKGSDILLSPGMNIQRDPLCGRNFEYFSEDPLLTGRMAAATVRGIQSGGLAACPKHFAANNQEDNREHHDSRVSERALREIYLRGFEICVAESAPRTVMTSYNKINGVWGHYHHDLVTTVLRGEWGFDGAVMTDWWMREAVDPDFPAVTNDAYRVRAQVDVHMPGAWGREDRHGDGSLLASLAAPDGLTRGELQRTARNVLRLALTSPRVTGGA	PGPT0019110_2048	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_00512	1443			hypothetical protein	GTGCTGATCACCGTCGCCACCCTGCTGCTCGGGATCGTGGTCATCGCGGTCGTCATCGCCTTCAACGGCTACTTCGTCGCCCAGGAGTTCGCCTACATGTCGGTGGACCGCTCCCGGCTGGGGGCGCAGGCCGAGGCGGGCGACAAGGCCGCCGCCAACGCCCTGGCGATCACCCGACGGACCTCCTTCATGCTCTCGGGCGCCCAGCTCGGCATCACCGTGACCGGTCTGCTCATCGGGTACGTCGCCGAGCCCCTCGTCGGCGAGTCCCTCGGCGAGATCTTCGGCGTCGTCGGCGTCCCGGCCGGTGTCAGCGTGGCCGTCGGCACCGTCGCAGCGCTCGCGATCTCCACCGTGGCGCAGATGATCTTCGGCGAGCTGTTCCCCAAGAACCTGGCCATCGCGGCGCCCGACACCCTGGCCCGCCGGCTCGCCCGCTCCACCCGGATCTACCTGGCCGCCTTCGGCTGGCTGATCACGGTCTTCGACCACGCCGCCAACGGGCTGCTGCGGCTGGTGCGCATCGAGCCCGTCGAGGACGTCGACTCCAGCGCCACCGCGCGCGACCTGGAGCACATCGTGGCCGACTCGCGCCAGAGCGGGGACCTGCCCGACGAGCTGTCCATGATGCTGGACCGGATCCTCGACTTCCCCCAGCGCGACGTCGAGCACGCCATGGTCCCGCGCGCCCGCGTCGACACGCTGGCCCCGGACGCCACGGTCGGCGAGGCGCGCGCCGCCATGGCCGCCGCGCACACCCGGTACCCGGTGATCTCCGACGAGGACGAACCGGTGGGGGTGGTGCACCTGCTCGACGTGCTGGCCGCCGGTGAGGACCAGGAGGCACCGGTCAGCGACATCATGCGTCCGGCCACGGTCGTGCCGACCCTGATGCTGCTGCCCGACGCGCTCGCGGAGCTCACGGCACGACGCGACGAGCTGGCCTGCGTCATCGACGAGTACGGGGGCTTCGCCGGCATCCTCACCGCCGAGGACCTGGCCGAGGAGGTGGCCGGGGAGATCACCGACGAGCACGACGTCGAGCAGGCCGAGATCGTCGAGCCCGAGGACGAGACCTCCTGGCGCATGGGCGGTGACGTCCACCTGGACGAGGCCGAGCGCGTCCTCGAGCACGAGCTGCCCCGGGGGGACTACGAGACGATGTCCGGCCTGGTGATCGCCGAGCACGGCCACCTGCCGCAGGTGGGGGAGACCGTGACGGTCGAGCTGGCCACCGAACCCGTCGAGCTCGCCCTGCACGAGCAGGTGCAGCGCCGGCTGACCATCGAGGTGCTCACCGTGGACCGGTACGTCCCGTCCCGGCTCCGGGTGACGCTGCACGAGATCGAGCCGGCGGAGTCCGAGGACCCGGACGACGATCCCGGGGACGAGACGCCCGTGGCGAGCGACGAGGATCTCGAGAGCGAGGGGGAGCGGCGATGA	MLITVATLLLGIVVIAVVIAFNGYFVAQEFAYMSVDRSRLGAQAEAGDKAAANALAITRRTSFMLSGAQLGITVTGLLIGYVAEPLVGESLGEIFGVVGVPAGVSVAVGTVAALAISTVAQMIFGELFPKNLAIAAPDTLARRLARSTRIYLAAFGWLITVFDHAANGLLRLVRIEPVEDVDSSATARDLEHIVADSRQSGDLPDELSMMLDRILDFPQRDVEHAMVPRARVDTLAPDATVGEARAAMAAAHTRYPVISDEDEPVGVVHLLDVLAAGEDQEAPVSDIMRPATVVPTLMLLPDALAELTARRDELACVIDEYGGFAGILTAEDLAEEVAGEITDEHDVEQAEIVEPEDETSWRMGGDVHLDEAERVLEHELPRGDYETMSGLVIAEHGHLPQVGETVTVELATEPVELALHEQVQRRLTIEVLTVDRYVPSRLRVTLHEIEPAESEDPDDDPGDETPVASDEDLESEGERR				NA	NA	NA	NA	NA
AK001_00515	933	thiD	COG0351	Hydroxymethylpyrimidine/phosphomethylpyrimidine kinase	ATGACGACCCATGCCGCCGCCCTGCCGCCGACCGCGCCGCCGAGGGGCCCGGGTGCCCCGCCCCGCGTGCTGGCGGTGGCGGGCTCGGACCCGTCGGGCGGTGCCGGCGTCCAGGCGGACCTGAAGTCGATCGCCGCCGCCGACGGCTACGGCATGGCCGCGCTGACGGCGCTGACCGCGCAGAACACCTGCGGTGTGCGCGACGTCCACGTCCCGCCGCCGGAGTTCCTGGACGCGCAGCTCCGGGCGCTGTCGGACGACGTGGCGATCGACGCCGTGAAGATCGGCATGCTGGCCACCGCCGAGGTGGCCGCGGTGCTCGACGCCTGGCTGCGGCGGATCCCGGCCACCGTGCCCGTGGTCCTCGACCCGGTGATGATCGCGACCTCGGGTGACCGGCTGCTGGACGCGGCCGGGGAGACGGCCGTCCGCGGCCTGCTGTCCCGCTGCGACGTCGTCACGCCCAACCTGCCCGAGCTGGCAGTCCTCCTCGGCGAGCCACCGGCCCGGGACTGGCCGGCCGCCGTCGACCAGGGCGCGCGGCTGGCCGCTCGCGCTCGGCTGCACGTGGTCGTCAAGGGCGGGCACCTGCCCGGGGACCGCGTCCCGGACGCGCTGGTCGGCCCGGAGGGCACGGTGCGCGAGGTCGAGGGCCGCCGGGTCGACACGCCGCACACCCACGGCACCGGCTGCTCGCTGTCGGCCGGGCTGGCCACGCGCTTCGTGCGCGAGGGCGACTGGTACCGGGCCCTGGTGGGCACGAAGGCCTGGCTCACGGCGGCGCTGGCGGGCGGGTCCGACCTCGGCGTCGGGCAGGGCCGCGGACCGGTGGACCACCTCGCCGCCGTGCGCACCGCGGTCCGGGACGGCGGCACGGCGCCGGTCGGGGGCGGGTGGCAGCGCGCGGGGGCCCGGGCGGGCGTGCCCGGCTGA	MTTHAAALPPTAPPRGPGAPPRVLAVAGSDPSGGAGVQADLKSIAAADGYGMAALTALTAQNTCGVRDVHVPPPEFLDAQLRALSDDVAIDAVKIGMLATAEVAAVLDAWLRRIPATVPVVLDPVMIATSGDRLLDAAGETAVRGLLSRCDVVTPNLPELAVLLGEPPARDWPAAVDQGARLAARARLHVVVKGGHLPGDRVPDALVGPEGTVREVEGRRVDTPHTHGTGCSLSAGLATRFVREGDWYRALVGTKAWLTAALAGGSDLGVGQGRGPVDHLAAVRTAVRDGGTAPVGGGWQRAGARAGVPG	PGPT0008915_346	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008915-thiD-K00941	NA	NA
AK001_00516	1908		COG1132	Putative multidrug export ATP-binding/permease protein	ATGCCCGGGGCAACGATGTCGGTGCCTGATGCGAGAATCGTTTCGATGCCCTCCTCCGCGCCCCCCGACCGACCCGACGGAACGCCGGCCCCCGCCGGCTCGCACCTGAGCACGCCGGCCTCGCTGCGACGGCTGCTGCCGTACGTGCGGCCCGCCCTGCCCCGCCTGGTGGCCGGGCTGGTCGCCGCGCTGGGCGCCAGCCTGGCGGCGCTGGCGATCCCGCGTGTGCTCCAGGAGCTGGTCGAGGGACCGCTGGCCTCCGGGGCGGCGGCCGGCGACGTCGGCGCGCTGGTGTGGCCCACCCTGGCCGTGCTCGCCCTCGGCCTGCTGGAGGCCGGGCTGATCCTGCTGCGCCGCAACCTCGTGATGTACCCGGGCACCCGCGTCGAGGCGGCGCTGCGCACCACCTTGTTCCGCCACCTGCTGCAGCTGCCCGCCTCCTTCCACGACCGCTGGGCCGGCGGCCAGCTGCTGAGCCGCTCGATGACCGACCTCGGCCTGCTGCGCCGCTGGCTCGTCTTCGGGCTGCTGCAGCTCGTGGTCAGCACCATCACCATCGTCGTCGGCGTCGGCGTGCTCGTCTCGACCGCGGGGTGGCTGGGGCTCGTCTACCTCGCCGGCGCCGTGCCCGTCACGGTCGTCGCGTACCGGTTCTCGCGCCGCTACCGTGTCATCGCCCGGCTGTCCCAGGACCAGTCCGGGGACCTGGCCACCACCGTCGAGGAGTCCGTGCACGGCATCCGCGTGCTCAAGGCCTTCGGCCGCGGCGGGGACGCCCTGGCCTCGTTCACCGGCCAGGCCGAACGGCTGCGACGCACCGAGATCCGCAAGGCCGGCAACCAGGCCACCGTCACCACCGCCCTGCAGCTCATCCCCGAGCTGACGCTCGCGGTGTGCCTCGTCCTGGGCGTCTGGCTGACCGCCGACGGGCAGATCAGCGTCGGGGCGCTGGCCGCGTTCTTCCTCACCGCCGCCGTCATCAACGGCCCCGTGGTCGACCTCGGCATGACGTTGTCGATGACCCTGAACGCCCGCACCGCCGTCGACCGCTTCTTCGAGGTCGTCGAGACGCCCAACCCGCTGACCGACCCGGCCGAGCCGCGCGAGCTCGGCACGGTCCGTGGCGACGTGACGCTGCGCGACGTGGTGTTCCGCTACGAGGACGACGAGCCGCCCGTCCTGGACGGGGTCGACCTCGACCTGCCCGCCGGGACCACCACCGCCCTGGTCGGCCTGACCGGCTCGGGCAAGTCGACCCTGGCGATGCTGCTGCCCCGCATCCACGACGTCACCGGCGGCTCCGTCCGCCTCGACGGCGTCGACGTGCGCGACCTGCGCCGCCACGACCTGCGCCGCGCGGTCGCCGTCGCCTTCGAGGACCCGACGCTGTTCTCCACCACGGTGTGCGAGAACGTCCTGCTCGGCGTCGACGACACGCTGCCCGCCACCGAGCGCGACCGCCTGCTCGCCGACGCGCTCGAGGTCGCCCGGGCAGAGTTCGTCCACGACCTGCCCCACGGTGTCGACACGCGCATCGGCGAGGAGGGGCTGTCCCTGTCCGGCGGGCAGCGCCAGCGCCTCGCCCTGGCGCGCGCCATCGCCGCGCGGCCCCGCGTCCTCGTGCTCGACGACCCGCTGTCCGCCCTCGACGTGAGCACCGAGGAGGCCGTCACGCGCGGGCTGCGCGAGGTCCTGGCCGGCACGACCAGCCTGGTCATCGCTCACCGGCCCTCCACGGTGGCGCTGGCCGACCGGGTCGCCGTGCTGGCCGACGGACGCGTCACCGCCGTCGGCACCCACCGCGAGCTGCTGGCCCGCGACGCCCACTACCGCTACGTCGTCGCCTCCCTGGAGGAGGACTGGGCGGCCCACGAGCACGACGCCGACGTCACCGAGGAGGTCCGATGA	MPGATMSVPDARIVSMPSSAPPDRPDGTPAPAGSHLSTPASLRRLLPYVRPALPRLVAGLVAALGASLAALAIPRVLQELVEGPLASGAAAGDVGALVWPTLAVLALGLLEAGLILLRRNLVMYPGTRVEAALRTTLFRHLLQLPASFHDRWAGGQLLSRSMTDLGLLRRWLVFGLLQLVVSTITIVVGVGVLVSTAGWLGLVYLAGAVPVTVVAYRFSRRYRVIARLSQDQSGDLATTVEESVHGIRVLKAFGRGGDALASFTGQAERLRRTEIRKAGNQATVTTALQLIPELTLAVCLVLGVWLTADGQISVGALAAFFLTAAVINGPVVDLGMTLSMTLNARTAVDRFFEVVETPNPLTDPAEPRELGTVRGDVTLRDVVFRYEDDEPPVLDGVDLDLPAGTTTALVGLTGSGKSTLAMLLPRIHDVTGGSVRLDGVDVRDLRRHDLRRAVAVAFEDPTLFSTTVCENVLLGVDDTLPATERDRLLADALEVARAEFVHDLPHGVDTRIGEEGLSLSGGQRQRLALARAIAARPRVLVLDDPLSALDVSTEEAVTRGLREVLAGTTSLVIAHRPSTVALADRVAVLADGRVTAVGTHRELLARDAHYRYVVASLEEDWAAHEHDADVTEEVR				NA	NA	NA	NA	NA
AK001_00517	1827		COG1132	Fatty acid ABC transporter ATP-binding/permease protein	ATGAGCACGCCGGCCGCACGGCTGCGCCCCACCGACGCGCGCGCCGACGACGCCACCGACCTGGACCGCGGCACCTCGCACGCCGTGCGCCGCCGGTCCCTGGCCCTGCTCGGCCGGCTGCTGCGTCCCCGGGCCGGCGCGCTCGCCGTGGCCGGCGCCCTGGTCGTGGTCAGCACGGCCGCCCAGGTGGCCGGACCGCTGCTCGTCCAGGCCGCGATCGACACCGCGCTGCCCGCCCTGCGCGACGGGGACCCGGGCCGGCTCGTCGCCGTCGGCAGCGCGTACGTGCTCGCGGCCGTCCTCGGCGGCCTGTGCGCCGGCGCCTACGTGCGCGCCGCCGCCCGGGTGGCCCAGAGCGTCCTGCTCGAGCTGCGGCGTCGCGTCTTCCGGCACACCCAGCGACTGTCCCTGGAGTTCCACGAGTCCTACACCTCCGGGCGGGTGATCAGCCGTCAGACCTCGGACCTGGAGGCGCTGCGCGAGCTGTTCGACGGCGGTCTGACCGGCGTCGTGTCGTCGCTGATGCTCATGGTCTTCACCGCCGGGGCGCTGTTCTACGTCGACTGGCGCTCCGGGCTCGTGCTGCTGGTCGCCCTGCTGCCCGCGTGGTGGCTCACCCGGTGGTTCCAGCGGAGCTCGCAGGTCTCCTACCGCGAGCAGCGCACCGCCTCGGCGCGCCTGATCGTGAAGTTCGTCGAGACCATGACCGGCATGCGCGCCGTCCAGGCGTTCCGCCGCGAGGCCACCGACGACGCCGAGTACGGCCGCCTCGGCGAGCAGTACCGGGACGCGAACCTGCGCATCTTCGGGGTCAACGGCCGCTACCAGCCCGGGCTGGTGCTCATCGGCAACCTGACCGTCACCGCGGCGCTGGCCTACGGCGGCTGGCGGGTCGTGGACGGGACCCTCGAGGTCGGGGCCCTGGTGGCCGTGCTGCTGTACGTCAAGCGGTTCTTCCAGCCGATCCAGCAGCTCGGGATGTTCTACAACGCCCTGCAGTCGGCCGTCGCCGCGCTGGAGAAGGTCTCCGGGCTCCTCGCCGAGGAACCGACCGTCGTCGAGCCGGAGGACCCCACGCCGCTGCCCGCGCCCCGCGGAGAGGTCCGCCTCGACGAGGTCACCTTCGGCTACGGCGACGGCCCGGTGGTGCTGCCCGAGCTGGACCTGACCATCCCGGCCGGCCAGACCGTCGCCCTGGTCGGCTCGACCGGGGCCGGCAAGTCCACGCTGGCCAAGCTGGTCACCCGGTTCTACGACGCCAGCGCCGGGCGGGTGCTGCTGGACGGGGTCGACGTGCGCGACGTCTCCGGCGAGGACCTGCGGCGCGCGGTGGTGATGGTGACCCAGGAGGCGTACCTGTTCAGCGGGTCGGTGCGGGAGAACATCGCGCTGGGCCGCCCGGACGCCACCGACGAGGAGATCGAGGCGGCCGCCCGCGCGGTCGGCGTGCACGAGTTCGTCCAGAGCCTGCCCGAGGGCTACGACACGGACGTCAACAAGCGCGGCGGCCGGGTCTCGGCGGGCCAGCGCCAGCTCCTGAGCTTCGCCCGGGCCTTCCTCGCCGACCCGGCCGTGCTCGTGCTCGACGAGGCGACGAGCTCGCTGGACGTCCCGGGCGAGCGGCTGGTGCAGCACGGTCTGCAGACGCTGCTGGCGGACCGCACCGCGATCATCATCGCCCACCGCCTGTCGACGGTCGACATCGCCGACCGTGTCCTGGTGCTCGAGCACGGGCGCGTCCTGGAGGACGGCTCCCCGGACGAACTGGTGGCTGCGGGCGGGCGGTACGCCGCGATGCAGCGCGCGTGGCAGGACTCGGTGGCCTGA	MSTPAARLRPTDARADDATDLDRGTSHAVRRRSLALLGRLLRPRAGALAVAGALVVVSTAAQVAGPLLVQAAIDTALPALRDGDPGRLVAVGSAYVLAAVLGGLCAGAYVRAAARVAQSVLLELRRRVFRHTQRLSLEFHESYTSGRVISRQTSDLEALRELFDGGLTGVVSSLMLMVFTAGALFYVDWRSGLVLLVALLPAWWLTRWFQRSSQVSYREQRTASARLIVKFVETMTGMRAVQAFRREATDDAEYGRLGEQYRDANLRIFGVNGRYQPGLVLIGNLTVTAALAYGGWRVVDGTLEVGALVAVLLYVKRFFQPIQQLGMFYNALQSAVAALEKVSGLLAEEPTVVEPEDPTPLPAPRGEVRLDEVTFGYGDGPVVLPELDLTIPAGQTVALVGSTGAGKSTLAKLVTRFYDASAGRVLLDGVDVRDVSGEDLRRAVVMVTQEAYLFSGSVRENIALGRPDATDEEIEAAARAVGVHEFVQSLPEGYDTDVNKRGGRVSAGQRQLLSFARAFLADPAVLVLDEATSSLDVPGERLVQHGLQTLLADRTAIIIAHRLSTVDIADRVLVLEHGRVLEDGSPDELVAAGGRYAAMQRAWQDSVA	PGPT0029045_865	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029045-mdlB|smdB-K18890	NA	NA
AK001_00518	1014			hypothetical protein	ATGACGGACGTACCTCCTCCCCCGGCACAGCTCGACCTGACGCGGCTGCGGGTGCTGGCGGCCGTGGCGCGCACCGGGTCGGTGACGGCGGCCGCCCGCGACCTGCACTACGCGCAGCCCTCGGTCAGCCACCACCTGGCCCGCCTCGAGGCGGAGGCCGGCCTGCCGCTGCTGGAGCGCGTGGGCCGCGGTGTCCGGCTGACCGAGGCCGGCCAGCTGCTGGCCGACCGGGCCGAGGAGATCATCGCCCGGGTCGAGGGGGCGCAGCGCGAGCTGGACGCCCTGGCCGGGCTGCGGGCGGGCCGGGCGCGGCTGGCCGCCTTCCCCTCGGCGCTCGCCACGCTCGTGCCCGAGGCGGTGCACCGGCTGCGTGCGGCCCACCCCGCGCTGGGGGTCAGTCTTGTCGAGGCCGAGCCACCGGAGGCCATCGCGGCGCTGCGCGCGGGCGAGGTGGACGTGGCGCTGGTGTTCGACCACGTCGACGTCTCCGACCCGCGCGCGGTGCGCGACCCGTCGCCGTTCACCGCCACCGCCGTGCTCGACGACGAGGTGCACCTGGTCACGTGCCCGGACCGGCCCGCGGGAGCCTCCGGGGGCCCCGAGACCCCCGACGCTCCGGAGGCTGCAGGGACGCCCGAGCCGCCCGAGGCCTCCCTCGGGGCCGGGTCGACACCGGTGCTGCGCCGGTACGCCGACGCCGCCTGGATCGCGGGCTGCGAGCGGTGCCGTGCCGACCTGGTGGCCCGCTGCGCGGTGGCGGGGTATGCCCCGCGCATCGCCTTCGAGACCGACGACTACGTCGCGGTCCAGGCGCTGGTCGCGGCCGGTGCCGGCGTCAGCCTGCTGCCCGGTCTGGCGCTGCGGGCGCACCGCCACCCCGACGTGGCCACGTCGGTGCTGCCCGGCGCACGCCGGGCCGTGCGGGCGCTGACCGTGGGCGAGCCCTCGCCCCCCGTGCGGGCGCTGGTGGACCAGCTCGTCGCGATCGGCGCCGCCGACGCCGCGCCGGTCTGA	MTDVPPPPAQLDLTRLRVLAAVARTGSVTAAARDLHYAQPSVSHHLARLEAEAGLPLLERVGRGVRLTEAGQLLADRAEEIIARVEGAQRELDALAGLRAGRARLAAFPSALATLVPEAVHRLRAAHPALGVSLVEAEPPEAIAALRAGEVDVALVFDHVDVSDPRAVRDPSPFTATAVLDDEVHLVTCPDRPAGASGGPETPDAPEAAGTPEPPEASLGAGSTPVLRRYADAAWIAGCERCRADLVARCAVAGYAPRIAFETDDYVAVQALVAAGAGVSLLPGLALRAHRHPDVATSVLPGARRAVRALTVGEPSPPVRALVDQLVAIGAADAAPV				NA	NA	NA	NA	NA
AK001_00519	996	thadh		L-threo-3-hydroxyaspartate ammonia-lyase	ATGGCATCAGCACCCCCGACCGTCGACGACGTCACCGCCGCCCGCGACCGCCTCGACGGGCTCGTCGTGCGGACCCCGGCCCGCGCCTACCCCGCGCTCGACCGGCTGGTGCACGCCCGGGGCGCCGTCGGGGCCGCCGTCGTGGTCAAGCACGAGAACCTCCAGCACACCGGCGCCTTCAAGGTGCGCGGCGCCCTCCACCTCGTCCAGCGCGGCCGCGGCGTCTCCCGCGGGATCGTGGCCTACTCCACCGGCAACCACGCGCAGGCCCTGGCCTACGCGGCCGCCCGCGCCGACCTGCCGTGCACGATCGTCATGCCGCGGCACCCCAACCCGGTCAAGGAACGAGCCGTCCGCGACCACGGCGCCGAGGTCGTCCTGCACGGCACGGACCTCGCCGAGGCCGCCACCCACGCCCACGAGATCGCCCGGCGCCGCGGCGCCCGGCTGGTCAGCGCCGGGGACGAGCCCGAGCTCGTCGCGGGAGTCGCCACCGCCACCCTGGAGCTGCTGGAGCAGGAACCGCACCTGGACACCCTCGTGGTCCCCGTCGGCGGCGGCTCCGGCGCGGCCGCCGCGTGCCTGGTCACGGCCGCGCTCGCACCCCACGTCGAGGTCGTCGGCGTGCAGTCCGCCGCCGCGCCCGCCGCGCACGACTCCTGGCGCGCCGGCGCGCTGCGCACCCGGCCCAGCCGCACCCGCGCCGAGGGGCTCGCCGTCGGCCGCGGGTTCGCCCTGACCCAGCAGGTGCTGCGCGACCGCCTGCGCGACTTCCTGCTCGTGGACGACGACGCCATCACCCGCGCCCAGCACGCCTACCTCACCGCGGCACGGACCGTCGCCGAGGGTGCCGGCGCCGCGGCGCTCGCGGCCGTCATGTCGCACCCGGAGCGCTTCGCCGGGCGCCGCGTGGCGGTCGTGTGCAGCGGCGGCAACGCCCGCGAGGAGGAGCTGCGGCGCGCGTTGACGTGCGACGCGGCCGGTTCCGCGGCGTAG	MASAPPTVDDVTAARDRLDGLVVRTPARAYPALDRLVHARGAVGAAVVVKHENLQHTGAFKVRGALHLVQRGRGVSRGIVAYSTGNHAQALAYAAARADLPCTIVMPRHPNPVKERAVRDHGAEVVLHGTDLAEAATHAHEIARRRGARLVSAGDEPELVAGVATATLELLEQEPHLDTLVVPVGGGSGAAAACLVTAALAPHVEVVGVQSAAAPAAHDSWRAGALRTRPSRTRAEGLAVGRGFALTQQVLRDRLRDFLLVDDDAITRAQHAYLTAARTVAEGAGAAALAAVMSHPERFAGRRVAVVCSGGNAREEELRRALTCDAAGSAA	PGPT0001960_5528	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754	NA	NA
AK001_00520	621	yciO	COG0009	putative protein YciO	ATGGCGCGCATCGTCGACATCCATCCCGTGGACCCGCAGCCGCGGCTGGTCCGGCAGGTCGTGGACGCCCTCGACTCCGGTGCCCTGGTCGCCTACCCGACCGACTCGGGCTACGCGCTCGGCTGCCGGGTCGGCCAGCACGACGGCGCCGAGAGGATCCGGCGGATCCGTCGGCTCGACGCCAAGCACCACTTCACGCTCGTGTGCGCCGACTTCGCGCAGATGGGCCAGCTCGTCCGGCTGGACAACGCCGAGTTCCGCGCGATCAAGGCGGCCACCCCGGGGCCCTACACGTTCGTCCTGCCGGCCACGGCGGAGGTGCCCCGGCGGCTGGCCCACCCGAAGAAGAAGACGGTCGGGGTGCGGATCCCGGACTCGCGCCTGGTCCAGGCGATCCTGCGCGAGCTGGGCGAGCCGCTGCTCAGCTCGACGCTGATCCTGCCGGACCAGGACGTGGCGATGACCGAGGGCTGGCAGGTCGCCGAGGAGCTGGACAACGACGTGGACCTGGTGGTCGAGTCCGGCGTGGTGACGGCCGCGCCGACGACGGTCGTGGACTTCTCCGGCCCGACGCCGGAGGTCGTGCGCGAGGGTGCGGGGGACCCCGACCCGTTCCTGTGA	MARIVDIHPVDPQPRLVRQVVDALDSGALVAYPTDSGYALGCRVGQHDGAERIRRIRRLDAKHHFTLVCADFAQMGQLVRLDNAEFRAIKAATPGPYTFVLPATAEVPRRLAHPKKKTVGVRIPDSRLVQAILRELGEPLLSSTLILPDQDVAMTEGWQVAEELDNDVDLVVESGVVTAAPTTVVDFSGPTPEVVREGAGDPDPFL				NA	NA	NA	NA	NA
AK001_00521	1410			hypothetical protein	ATGAGCGATCGTGGACTCGAGCTGGCACAGGACAAGATGCGCGCCGCGGGCGTGGCGACCGCGGCGATCGACACCTTCACCCGGTTCTACCGGTTGCTGGAGGAGGGGGCGACGGGGCTCGTCCGGGAGGACGACGTCGAACCGCTGACCGGGCTGACGCGGCACGCCGACCTCGACGTCCCGGACGAGGAGGCCGCCGAGGCGCTCGGCCGGACCGCGATCATCAAGCTCAACGGGGGCCTCGGCACCTCGATGGGGATGGACAAGGCCAAGTCGTTGCTCGAGGTCCGGCGCGACGAGGCGGGGGAGTCGCTGAGCTTCCTCGACGTCATCGTCGGCCAGGTGCGCGCCGCCCGGAGGTCGACCGGGGCCCGGCTGCCGCTGGTGCTGATGAACTCCTTCCGCACCCAGGACGACACGCTGGCGGCGCTCGCCCCCTACGGCGACCTGGCCGTCGACGGGCTGCCGCTGGACTTCCTGCAGAACCGCGAGCCGAAGCTGCGTGCCGACACGCTCGAGCCCGTCGAGTGGCCCGCCGACCCCACCCTCGAGTGGTGCCCGCCCGGCCACGGCGACCTCTACCCCGCGCTGCACGCCGGCGGGGTCGTGCACGCGCTGCTCGAGGCGGGCTTCCGCTACGCGTCGGTCTCGAACTCCGACAACCTCGGCGCGACGCCGGACGGCGAGATCGCGGCGTGGTTCGCCCGCAGCGGCGCCCCCTACGCGGCCGAGATGTGCCTGAAGACGCCGGCCGACGTCAAGGGCGGCCAGCTCGTGGTGCGCCGGTCCGACGGCCGGATCATCCAGCGCGAGACCGCGCAGACCCACCCCGACGACATGGACGTCTCCCTGGACCCGACCCGGCACCGGTACTTCCACACGAACAACCTGTGGTTCGACCTGGAGGCGCTGGCGGCCGAGCTCGACCGGACCGGGGGAGTGCTGGAGCTGCCCCTGATCCGCAACTCCAAGACGGTCGACCCCACCGACGGCGACTCGCCCGAGGTGGTCCAGATCGAGTCCGCGATGGGGGCGGCCGTCGCGGTGTTCGACCGGGCCACGGCGATCGAGGTGAGCCGCGAGCGGTTCCTGCCGGTGAAGACGACGAACGACCTGCTGCTGCTGCGCTCGGACGTGTACGAGCTGACCGACGACTTCCGGCTGCGGGCCACCGCGCCGGCGCCCCTGGTGCAGCTGTCGAAGACCTACAAGACGATCGGCGCGTTCGACGAGCGCTTCGCCGCCGGTCCGCCGTCGCTGCGCGGGGCCGAGGGGCTGGCCGTGGCCGGCGACTGGACCTTCGGCGCGGACGTCACGGTCGTCGGCGACGCCGTGCTCGACGAGCCCGAGGGCGGAGCCGGCACGGTCCCCGACGGCGCGACCGTCGACGCGGAGGGCGTTCGGGCCTGA	MSDRGLELAQDKMRAAGVATAAIDTFTRFYRLLEEGATGLVREDDVEPLTGLTRHADLDVPDEEAAEALGRTAIIKLNGGLGTSMGMDKAKSLLEVRRDEAGESLSFLDVIVGQVRAARRSTGARLPLVLMNSFRTQDDTLAALAPYGDLAVDGLPLDFLQNREPKLRADTLEPVEWPADPTLEWCPPGHGDLYPALHAGGVVHALLEAGFRYASVSNSDNLGATPDGEIAAWFARSGAPYAAEMCLKTPADVKGGQLVVRRSDGRIIQRETAQTHPDDMDVSLDPTRHRYFHTNNLWFDLEALAAELDRTGGVLELPLIRNSKTVDPTDGDSPEVVQIESAMGAAVAVFDRATAIEVSRERFLPVKTTNDLLLLRSDVYELTDDFRLRATAPAPLVQLSKTYKTIGAFDERFAAGPPSLRGAEGLAVAGDWTFGADVTVVGDAVLDEPEGGAGTVPDGATVDAEGVRA	PGPT0014875_715	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963	NA	NA
AK001_00522	666	yigZ	COG1739	IMPACT family member YigZ	GTGTCGTCACCCCTGCCCCGCACCCTGGCCACCGCCGTCGACCACGAGCTGGTCGTCAAGAAGTCACGGTTCCTGGCCCACCTCGCCCCCGCGACGACGGAGGCGGCGGCGGACGCCGTCGTCGCGGCCGTGCGCAAGCAGCACTGGGACGCGCGCCACCACTGCGTGGCGTTGGTCCGCGGCACGCACGCCGACGCGCAGCGCTCCTCCGACGACGGCGAGCCCTCCGGCACCGCGGGCGTGCCGATGCTGGAGGTGCTGCGCCAGCAGCACCTCACCGACGTGGTCGCCGTCGTGACGCGCTACTTCGGCGGCGTCCTGCTCGGCGCGGGCGGCCTCGTGCGGGCCTACTCCGCGGCGGTCGCCGGCGCGCTCGAGGGGGCCGCCACCCGGCACCTGGTCCTCGAGCGCCGCGCGGTGCGCGAGGTCTGGGTGGACGCCCCGCACGCCGACGCGGGCCGCGTCGACCACCTGCTGCGCGACTGGAGCGCGGCGCACGGTGCCGTCGTCGGCGACCCCGAGTACGCCGAGGTCGCCCGGCTGAGACTGCTGGTCCCGCCCACCGAGCTCGACCGGCTCGACGCCGACCTCGCCGCCGCCACCGCCGGGCGGCTGGCCGCGCAGGTCGGCGCCGAGCGGATCGTGGACGTGCCGCCGGCGGACTGA	MSSPLPRTLATAVDHELVVKKSRFLAHLAPATTEAAADAVVAAVRKQHWDARHHCVALVRGTHADAQRSSDDGEPSGTAGVPMLEVLRQQHLTDVVAVVTRYFGGVLLGAGGLVRAYSAAVAGALEGAATRHLVLERRAVREVWVDAPHADAGRVDHLLRDWSAAHGAVVGDPEYAEVARLRLLVPPTELDRLDADLAAATAGRLAAQVGAERIVDVPPAD				NA	NA	NA	NA	NA
AK001_00523	636			hypothetical protein	ATGGCAGACGACACCGTCCCGGCAGGGTCCGGACCCGTGCGGCGTGACGGGCCGCCCACCCCGCCGTTCCCGGTGCGCACCGTCTCCGACCCCCGCGAGCTGCGCGCGCTGGCGCACCCGGTCCGGTTCGCCCTGCTCGACCTGCTCGCCGAAGGCCCCCTGACGGCCACGCAGTGCGCGGAGCGGCTGGGGGAGACCCCGGCGAACTGCTCGTACCACCTGCGACAGCTCGCGAAGTACGGTCACGTCTTCCCGGCCGGCGGCGGCCACGGCCGGGAGCGCCCCTGGAGCGCCCGGGAGGAGGGCATCACCTGGGACGACGCCGGTCCGGCCGGCGAGGCCGCCCGTGCCGCCCTCGACGAGGCGGTGGACGCGTTCCGCTTCGACGCGTGGCGTCGGTTCTGGCGCCGACGGTCCGCCGAGCCCGAGGAGTGGCGCCGTGCGGCGCTGTCCACCGACGTCGTGGCGTGGCTGACGGCCGACGAGCTCGAGCACGTGACGCAGGGCCTGTACGACCTGTTCGCGCCCTACGAGCACCGTGCCGCCGACGCGTCGGCGCGCCCGGCCGGGGCGCGGGCGGTCCGGTTCTTCGCCTACGGCTACCCGGGGGCTCCCGGGGGCCGGTCGGACCGGTGA	MADDTVPAGSGPVRRDGPPTPPFPVRTVSDPRELRALAHPVRFALLDLLAEGPLTATQCAERLGETPANCSYHLRQLAKYGHVFPAGGGHGRERPWSAREEGITWDDAGPAGEAARAALDEAVDAFRFDAWRRFWRRRSAEPEEWRRAALSTDVVAWLTADELEHVTQGLYDLFAPYEHRAADASARPAGARAVRFFAYGYPGAPGGRSDR				NA	NA	NA	NA	NA
AK001_00524	1272			hypothetical protein	GTGAGCGTCCGGGTCCCGGCCACCCTCGACGCGGACACGCTCCGTCGTCGCCTCGTGGCCCTGTCCTTCCTGCGCTGGTTCCCCACGGGGCTGACCCTGCCCGTGACGGTGCTGCTCCTGCAGCAGCGCGGCCTGGACCTGGCGGCGGTCGGGCTGCTGGTGGCGCTGCACAGCGCGGTGACGGTGGCCCTGGAGCTCCCGACGGGCGGCGTCGCCGACGTCGTGGGGCGCCGACCCGTGCTGACCGTCGCGTCGGCGCTGTCCGTCCTCGCCGCGGTCCTGCTGGCCGTGGGCACGTCCCTGCCGGTGCTGGGCGCGGCCATGGTCCTCCTCGGTGCTGCGCGGGCGCTCGACTCCGGCCCGCTGCAGGCCTGGTACGTCGACCACGTGCAGGCGCTCGACGCCGGGACCGACCTGCGCCCCGCCCTGGGGCGCACCGCCACCGCGGAGTCCCTCGGGCTGGGTGCGGGAGCGCTGCTGGCGGGCGGCGTCGCCGCCGTCTCGCTGCCGGCGCCCTTCGTCGTCGCGGCCGTCGTCGGGGTGGTGCACCTCGTCCTGGTGCGCCGCTGGGTGACCGAGGGCGCCCGCCCGGTCCGTGGGTCGGTGCGCGACGTCCTGCGGGACGTGCCGGTCACCGTGGCCCGGGGCGTCACGACGGCGGCCACCCGGGCGCCGCTGCGCCGTGTCGCGCTGGTCATGGGGGCCACGGGCGTCGCCCTGGCGGGGGTCGAGCTGCTCGCGCCGGGCGCCGTGGCCGACGCGACCGGCGGGGAGCAGCGCGCGGCCGCGCCGTACGCCGTGCTGGTGACGCTCGGGTTCTGCGCCTCGGCGGTCGGGTCGGCGCTGGCGGCCCGTGCGGCACGCGTGGCTCGTTCCGGGTCGCGCGCGGCAGCGGTGTCGACGGTGCTGGCAGCCCTCGCGCTGGGTGTCGTCGGGCTGCCCACGGTCGGCGCGGCCGTGACCGGGTTCCTGGCCCTCTACCTGCTGCTCGGGATCGCCGGACCGTTGCTCGACGACCTCACGCACCGTGCCGTCTCGTCCCGGGAGCGCGCCACGGCGCTGTCGGTGAACTCCCTGGTGCTGCAGGCCGGGGGAGCGGCGGCCGCCGTGGGGCTCGGGGTGCTCGTGTCGGCGACCTCCCGGGGTACGGGTCTCGCGACGGCCGGTGCCGTGCTGGCGCTCGGTGCCCTGGCCCTGGTCCGGTGGCCCCGCGCCGGTCGAGGACACGCCGTGGCACATGACGAGAAAAAAGTGTGCCAAGCAGGAGAATGA	MSVRVPATLDADTLRRRLVALSFLRWFPTGLTLPVTVLLLQQRGLDLAAVGLLVALHSAVTVALELPTGGVADVVGRRPVLTVASALSVLAAVLLAVGTSLPVLGAAMVLLGAARALDSGPLQAWYVDHVQALDAGTDLRPALGRTATAESLGLGAGALLAGGVAAVSLPAPFVVAAVVGVVHLVLVRRWVTEGARPVRGSVRDVLRDVPVTVARGVTTAATRAPLRRVALVMGATGVALAGVELLAPGAVADATGGEQRAAAPYAVLVTLGFCASAVGSALAARAARVARSGSRAAAVSTVLAALALGVVGLPTVGAAVTGFLALYLLLGIAGPLLDDLTHRAVSSRERATALSVNSLVLQAGGAAAAVGLGVLVSATSRGTGLATAGAVLALGALALVRWPRAGRGHAVAHDEKKVCQAGE				NA	NA	NA	NA	NA
AK001_00525	651			hypothetical protein	ATGGCACCCGACGAGACCCCCACGACGGCCCCGCACGCCGGCCGCTACCCGCGCCCGCCGGTCTCGCTGGAGGAGGCCGAGCGGGTCTGGCGCGAGCTCGCGGTCGAGGCGTTGCGCCCGGAGGCCAAGCCCGAGACCGTGCGGCTGGCCGTCGTCGCCGGCCTGACCCGCAGCACCGGGGCGCGGTACGGCGACCTGCTCCGCGTCCGGGCGGAGGACCTGGACCTCGGCCCGGACGAGCTGGCCGGGCGGGGCCGTGTCTCCGGCGCACGAGCGACGGGAGAGGGGAGGGTCCTGGTGCGGCACGGCAAGCACCGCACGCCGCGTCGGCACCGTGTGCCGGGGGACGTCGTCGTCGTGCTGCGGCACTGGTCCGTGGTGCGCACCGAGCTGGCGGCCGAGCTCGAGGGGTCGGTGCCGCGGGCGCTGCTGCTCACCGTCCACCACACGCACGACAACGGCACCACGGTCTCGAGCGGTCTGCCCATCACGCGACAGGGCCTCGTGCTCTCCTGGCGGCGCTTCGTCCTGCGGTCCAACGCCCGCCAGGGGGCCACCCGGCCTCCGCTGCCCACCCGGTTCGAGCAGGTGCGGCGCGCCTGGGTCGAGGCCGGCGTCACCGATCCCGGCGTGGTTCTTCAGGAAAAATAG	MAPDETPTTAPHAGRYPRPPVSLEEAERVWRELAVEALRPEAKPETVRLAVVAGLTRSTGARYGDLLRVRAEDLDLGPDELAGRGRVSGARATGEGRVLVRHGKHRTPRRHRVPGDVVVVLRHWSVVRTELAAELEGSVPRALLLTVHHTHDNGTTVSSGLPITRQGLVLSWRRFVLRSNARQGATRPPLPTRFEQVRRAWVEAGVTDPGVVLQEK				NA	NA	NA	NA	NA
AK001_00526	690		COG0454	Putative acetyltransferase OgpAT	ATGGGCGTCGTGACCAGCATCGAGATCCGCTCCTACCGTCCCACCGACCGCTCCGCGCTGGCGGAGGTGTGCGTGCGGACGGCAGCCGGCGGGGGCGACGCCCGCGGGGTGTACTCCGACGACTCGCTGATGCCCGACGTCTACGCGCTCCCCTACGTCGAGCACGCACCCGACCTCGCGTTCGTCGTCGTCGACCACGACGCCGTCGCGCCGGGACCCGACCCGCTCGCCGTGGACGACGGCCGGCTCATCGGCTACATCGTCGCCGCGCCGGACACCGCGGCGTTCGTCGCGTGGTGGCGGCGCGCGTGGACCCCGGGGTTCCTGGCCCGGCACCCCGCTCCCGGGCCCGCGACGGCGGAGACCCCGGCGTACACCGAGGAGTCCCTCGTCCGTGACGGAGCCGACCCCGGACGGATGGTGCGCGGCCTGGACCAGGACGAGCTCCGGACCCACCCGGCACACCTGCACATCGACCTCGTCCCCGAGGCGCAGGGCCACGGGCTGGGCCGTCGACTCGTGCAGACGTTGTGCGACGCCCTCGCGGGTCGCGGCATCCCGGGGGTCCACCTCAGCTACGACCCGGCCAACACCGGCGCTCGCGCGTTCTACGACCGGCTGGGGTTCGTCGAGCTGCCGTCCTCGGCCGACCACCTCCCGCTGCTGGGGATCTCGACCGCCCGGGGTTGA	MGVVTSIEIRSYRPTDRSALAEVCVRTAAGGGDARGVYSDDSLMPDVYALPYVEHAPDLAFVVVDHDAVAPGPDPLAVDDGRLIGYIVAAPDTAAFVAWWRRAWTPGFLARHPAPGPATAETPAYTEESLVRDGADPGRMVRGLDQDELRTHPAHLHIDLVPEAQGHGLGRRLVQTLCDALAGRGIPGVHLSYDPANTGARAFYDRLGFVELPSSADHLPLLGISTARG				NA	NA	NA	NA	NA
AK001_00527	567			hypothetical protein	ATGACGCTGCGGGCCGAGGTGCAGGACTGGCGCCACCGGCGTCACGACCGGCCGCTGCCGTCGGTCCGTGTGGAGCACGGGCCCACCGTGGCGGGCGCCTGGTTGCGCGTGGCCGCCGGGGTGGTCGCCACCGCGCTGGTGCTGCTGGCGGCGAGCCGTACCCCGCTGCTGCTCGACCTCACCCTCGTCGGTGCGGGGGTGCTCGGGGCCTGGTCGGTGGCCCGGCCCGGGCGGGTGCCGGCGCACGTGACCGTCGTGACGTCGGCGCTGGTCCTGCTCGGCGCACGATCGGCGCCCTTCGACCCGGCCGTGCTCGGGCTGGTGCCCGTGGCGCTGCTGACCGTGCGGCTGGGCTGGTGGGCCGAGCACGTCGGCTGGAGCGCACGGGTCGAGCTCGCGGCACTGCGGCGCACGGCAGGCCGGGACCTGTCGATCGTCGCCGTGTCGCTGGTGGCGGCGGCCGGTGCCTGGGCCGCCTCGGGCTGGGCGGTCGGCGGTCTGGTGGTCCTCGGGGCCGTCGCCGTCGTCGTGCTGGCGTGGTGGGCTCTGCCACGATGGGCGTCGTGA	MTLRAEVQDWRHRRHDRPLPSVRVEHGPTVAGAWLRVAAGVVATALVLLAASRTPLLLDLTLVGAGVLGAWSVARPGRVPAHVTVVTSALVLLGARSAPFDPAVLGLVPVALLTVRLGWWAEHVGWSARVELAALRRTAGRDLSIVAVSLVAAAGAWAASGWAVGGLVVLGAVAVVVLAWWALPRWAS				NA	NA	NA	NA	NA
AK001_00528	1398			hypothetical protein	GTGACGTACGGCACGAGCGTCCGGGACCGTGCGCGCGACCGCGGCCTGCGCGCCGCGGAGGACCCCGTCTGGCGCCGGACCCCGACCGCCGTGCTGAGCACCGTCTCCGGCGTCGTCGTGCTCGTCGTCGGACTGCTGGCGGGGCGGGCGGACGTCGGCGTCCTCGGCCTGCCCCTCCTGCTGACCGGCGTCTGGACCGGCCGGCCCGGGGCGCTCGGCGGAGCCTCCCCGCAGGCGCCCACCCGCGCGTCGTTGTCCTCCGAGGACGGCCCCACGGCTCCCGGCGAGCTGTCGGGCACCCTCACCCTCGACCCGCCGCCCGGTGCCGAGCTCGTCGTGCTCCGGGCGGCCGCGCCCGGCCACGAGCCGAGCGACCTGGTCGTCGCGGCGGACCACCGCGAGCTCGCGGTGCGGTCGGCGACCGTGCGCACCGGGCCGCAGCCCACGTTCGTCGTGGACCTGCGCGGCTACGGCGCCGCGGGCACGACGGCGGAGGACCCGGTCCGTGCCGTCGGCCCGACCCGGCTCGTGCTGCCCACCGCCGTCCCCCTCGGCCGGGTCCCGCTGCCGCCACGGATGCGGGGGCTGACCGGACCCCACACCTCCCGGCGTCTCGGCGACGGGGACGAGCTGCGCGACGTGCACCTGTTCACCCCGGGCGACCGGCTGCGACGGATCGACTGGCGCACCACCGCGCGGCGCTCGCCGGAGCTGGACGAGCTCTACGTGCGGCGCACCTACGCCACCGCCGAGGCCACCACGATGCTCGTCGTCGACTCCCGGGACGACGTCGGGCCGGACCTGCGGACCTGGCGCGGCCAGGGCGAGCAGCGGGTGGACGAGGCCACGTCGCTGGACCTCGCCCGGCACGCCGCGGCGTCGGTCGCCCACGCCGTCGTCGACGCCGGGGACCGGGTGGGGCTGCAGGACCTGGGCCGCCGCCGCCGTCCGCTCCCGCCCGCAGCCGGTCGCCGCCACCTGCGCCGGATCCTGCACGGGCTGGCGATGAGCAGCCCGTGGGGCAGCCCGACGCGGCGTCTGCGTCCGCCGCAGCTGCCGGCGGACGCCGCCGTGTTCGTGTTCTCCACGGTGCTGGACGACGAGCCGGTCGACCTGGCGCGGACCTGGCGCGAGCAGGGGCACCGGGTCGTCGTCGTCGACACCCTCCCGGCGGTCCGCCCGGTCGTCGAGCCGCACATGCGGATCGCCTGGCGCGTGACCTCGATGGAGCGTGCGGACCTGTTGCGCCGGCTCGAGGCCGAGGGGACGCCGGTCGTGCCGTGGCGCGCCTCGGAGCGGGCGGGCGCCGCGGCTCGTCTCGAGGCGCTGGTCAAGGCCTCGGAACGTCACCACAGCGCCCACGTGCGACGCGCCCCGGTGGCGGGAGGTGCCCGATGA	MTYGTSVRDRARDRGLRAAEDPVWRRTPTAVLSTVSGVVVLVVGLLAGRADVGVLGLPLLLTGVWTGRPGALGGASPQAPTRASLSSEDGPTAPGELSGTLTLDPPPGAELVVLRAAAPGHEPSDLVVAADHRELAVRSATVRTGPQPTFVVDLRGYGAAGTTAEDPVRAVGPTRLVLPTAVPLGRVPLPPRMRGLTGPHTSRRLGDGDELRDVHLFTPGDRLRRIDWRTTARRSPELDELYVRRTYATAEATTMLVVDSRDDVGPDLRTWRGQGEQRVDEATSLDLARHAAASVAHAVVDAGDRVGLQDLGRRRRPLPPAAGRRHLRRILHGLAMSSPWGSPTRRLRPPQLPADAAVFVFSTVLDDEPVDLARTWREQGHRVVVVDTLPAVRPVVEPHMRIAWRVTSMERADLLRRLEAEGTPVVPWRASERAGAAARLEALVKASERHHSAHVRRAPVAGGAR				NA	NA	NA	NA	NA
AK001_00529	987			hypothetical protein	ATGACCGACACCGCCCCCGCAGCCCTGCCCGTCCCCGACGTCGCCGCCCACGCCCGCGCCGTCCTCGACGAGATCGGCACCGCCGTCGTCGGCATGCGCGAGGCCCTCGAGCTGGCGCTCGCGGCGGTGCTGGCCGGTGGCCACGTGCTGTTCGAGGACGTGCCCGGGCTCGGCAAGACCCTGGCGGCCCGCTCTCTCGCCACGGCGCTCGGCCTCGACTTCGCGCGGCTGCAGTGCACCCCCGACCTGCTGCCCAGCGACGTCACCGGCTCCAGCGTCTTCGACCCCGCCGACCGCGAGTTCGTGTTCCGACCCGGACCGGTCTTCACGGGGCTGTTCCTCGCCGACGAGATCAACCGCACGGCGCCCAAGACGCAGTCGGCGCTGCTCGAGGCGATGGCGGAACGTCAGGTCTCGGTCGAGGGCGGCACCCGTCCGCTGCCGGCACCGTTCCACGTGGTCGCGACGTCCAACCCGGTCGAGTACGAGGGCACCTACCCGCTGCCCGAGGCCCAGCTCGACCGCTTCATGGTGCGCCTCGCCGTCGGCTACCCCGGGGCCGCGCAGGAGCGCGACGTCCTGCTGCGTCGCGTGGCGCGCCGTCAGGAGGCGGCCGAGGTCCGTCGCGTGGTGGACGCCGACCTGGTGCGGGCGATGCAGGCCGGCGTCGAGGCCGTGGCGGTCGACGACGACGTCGTCGACTACTGCGTGGCCCTGACGGCGGCGACCCGCGCCCACCCGGCCCTGGAGGTCGGCGCCTCCCCGCGCGGGTCGCAGAACCTGCTGCTCATGGCGCGCGCCGTGGCCGTGCTGGACGGTCGTGACTTCGCGCTGCCCGAGGACGTCAAGCGCGTCGCGGTGCCCGTCCTGGCGCACCGGCTCACGCTGACCCCGACCGCCTGGGCCGCCGCCACCCGGCCCGAGGACGTGGTGCACGAGCTGCTCGCGTCCGTGCCGGGCCCGGCGACCGTCGGGGCGACCCGGTGA	MTDTAPAALPVPDVAAHARAVLDEIGTAVVGMREALELALAAVLAGGHVLFEDVPGLGKTLAARSLATALGLDFARLQCTPDLLPSDVTGSSVFDPADREFVFRPGPVFTGLFLADEINRTAPKTQSALLEAMAERQVSVEGGTRPLPAPFHVVATSNPVEYEGTYPLPEAQLDRFMVRLAVGYPGAAQERDVLLRRVARRQEAAEVRRVVDADLVRAMQAGVEAVAVDDDVVDYCVALTAATRAHPALEVGASPRGSQNLLLMARAVAVLDGRDFALPEDVKRVAVPVLAHRLTLTPTAWAAATRPEDVVHELLASVPGPATVGATR				NA	NA	NA	NA	NA
AK001_00530	483			hypothetical protein	ATGACCCGCCGTCTGCTGCCCGGTGCCCTGGCCCTGACCACCGCCCTCCTGCTCGCCCTCAGCGGCACCGTCGACCCCGTCCACGCCCTCCTGCTGCCCGCCGGCCTCCTCGCCCTCTGGCACGCCTGGACCTCCCTCGACGACGGCGACCACGCCGAGTGGCCCCAGCCCCCCACCGAGGAACGCCACGGCGCCCGCCGCGACGTCTCCGACCTCGGCTGGGCGGCCTTCACCCGCGACGGCCGCGTCTCACCCCGCGTCACCCGGCGCGTCCGGGCGCTCGCGGCCCGACGCCTCGCCGCCCACGGCGTCGACCTCACCGACCCCGACCAGCGCCCCGACGCCGCCCGGCTCCTCGGCGCGGACACCCTCGCCGGGCTCACCTCCGACGCCCCGCCCACCGCCCGCACCCTGCACCTGTGGCTCGACGCCCTCGACCGCCTCACCACCGACGCCCCGCCACCCGGAAGGCCCACCCGATGA	MTRRLLPGALALTTALLLALSGTVDPVHALLLPAGLLALWHAWTSLDDGDHAEWPQPPTEERHGARRDVSDLGWAAFTRDGRVSPRVTRRVRALAARRLAAHGVDLTDPDQRPDAARLLGADTLAGLTSDAPPTARTLHLWLDALDRLTTDAPPPGRPTR				NA	NA	NA	NA	NA
AK001_00531	717			hypothetical protein	ATGACCCGCCGCTCCCCCGGCACCCGGCCCCTGCTGCTGACGGCGCTCGCCGCCGCGACGCTGCTCGGCGCCGCCGCGGCCACCCCCTGGCACCTCGAGATGCCCGCCTTCGTCGCCGGCTTCGGCGACATGGACCTGCCCGAGCGCCCCACCCCCAGCGTCAGCGCGAGCCCCGCCGCCGACGACCCCCTGCCCGAGGACCCCGGCGACTCGGTGCTCACCGTCCTGCTCCTGCTCGGCGCCGCCGTCGTCGTGCTCCTGCTCGCCCTGGTCGCCCGGCGCGTGCTGACCCTGCTGCGCGACACCCCGCCCGCCCCCGAAGAACCCGACCGGCCCGACGCCGGCACCGCCCTCGCCGGCACCGAGGCCCCCTCCGTACCGCTGCCCGACCTCGACGACGCCGTCACCCGCGCCCTCGGCCGCCTCGAGGCCGCCCGCACCCCCCACGACGCCGTCATCGCCGCCTGGGTCGCCCTCGAGGACGCCGCCGCCGAGCAGGGCGCCCCCCGCGACCCCGCCCAGACCCCCACCGAGTACACCGCGGACCTCCTGGCCCGCACCCCCGCACCCGCCGCCGACGTCACCACCCTGCGCCGCCTCTACCAGCAGGCACGCTTCGCCGACCACCCCACCACCGACGCCCAGGTCGCCGACGCCCGCACCGCCCTGACCCGCATCGCCCGGCACCTGCCCCGGACCACGGACCCCGCGCCATGA	MTRRSPGTRPLLLTALAAATLLGAAAATPWHLEMPAFVAGFGDMDLPERPTPSVSASPAADDPLPEDPGDSVLTVLLLLGAAVVVLLLALVARRVLTLLRDTPPAPEEPDRPDAGTALAGTEAPSVPLPDLDDAVTRALGRLEAARTPHDAVIAAWVALEDAAAEQGAPRDPAQTPTEYTADLLARTPAPAADVTTLRRLYQQARFADHPTTDAQVADARTALTRIARHLPRTTDPAP				NA	NA	NA	NA	NA
AK001_00532	1155			hypothetical protein	GTGACCTGGCGCACCGGCGCCGTGACCGCCACCGGCCGGTCGTGGCACGGCGCCACCGAGCTGCGGGTGCGGCTGGACGCCCCGCTGCCCGCCGCACCGGACGGCACGGACCGGCCGACCGAGGTGCGGGCGCTGGCCTACACCGCGCTGGTCGGGACGCCCGCCGTCGGCGACCGCGTCGCGCTGAACGTCTCCGCCCTCGCCCGCGGCCTGGGCACCGGCGGCTACGCCCTGGTGGTCGCCCCCGCGGATCCGGCGGCGCTGCCGCCCGACCCCGCCCGCGGCCCCGGCCACCTGGTCAAGGCCCGCTACACCCCGCTGCAGGCCCTCGTCCTCGGCGTCGACGAGCAGGAGTCGCCCCACCACGACGCGCTGCGCGAGGCCGACGACCTGCACGGCATGCCCGTCGTCGTCGCCGACCTGCACTCGGCCCTGCCCGCGATCGTCGCCGGTGCCCGGCACGCCGCCGCGCAGGCCGGCCGGCCCGCCCCCCGCGTCGCCTACGTCATGACCGACGGCGGCGCCCTGCCGGCCGCGTTCTCCCGCGCCGTGGCCGCGCTGCGCGACGCCGACTGGCTCACCGCCACCATCACCGTCGGGCAGGCATTCGGCGGCGACCACGAGGCCGTCACGGTGCACACCGGGCTGCTCGCCGCCCGCCACGTCGTCGACGCCGACCTCGCCGTCGTCGCCCAGGGACCCGGCAACCTCGGCACCGGCACCCGTTGGGGGTTCTCCGGCGTCGCCGCCGGCGACGCCGTCAACGCCGCCGCCACGCTCGGCGGACGCCCCGTCGCCTCCCTGCGCGTCTCCGGCGCCGACCCGCGCGACCGGCACCTGGGCGTGTCCCACCACTCCCTGACCGCCTACGGACGCGTCGCCCTCGCCCCCGCCGACGTCGTCGTGCCCCACCCCGACGACGCCCTGCAGGACAGACCCGCCTGGGGCGCCGACCTCACCCGCCGCGTCCACGACCAGGCCGCCGGACTCGCCGACCGGCACCGCCTCGTCGAGGTCCCCGTCGGCACCGACCTGCTCGAGACCCTCGAGCACACCCCCGCGCGCCTGTCCACCATGGGCCGCGGGCTGCACGACGACCCGGCCGCCTTCGTCGCCGTCGCCGCCGCCGGCCGGCACGCCCAGCAGACCGCATGA	MTWRTGAVTATGRSWHGATELRVRLDAPLPAAPDGTDRPTEVRALAYTALVGTPAVGDRVALNVSALARGLGTGGYALVVAPADPAALPPDPARGPGHLVKARYTPLQALVLGVDEQESPHHDALREADDLHGMPVVVADLHSALPAIVAGARHAAAQAGRPAPRVAYVMTDGGALPAAFSRAVAALRDADWLTATITVGQAFGGDHEAVTVHTGLLAARHVVDADLAVVAQGPGNLGTGTRWGFSGVAAGDAVNAAATLGGRPVASLRVSGADPRDRHLGVSHHSLTAYGRVALAPADVVVPHPDDALQDRPAWGADLTRRVHDQAAGLADRHRLVEVPVGTDLLETLEHTPARLSTMGRGLHDDPAAFVAVAAAGRHAQQTA				NA	NA	NA	NA	NA
AK001_00533	1068	pafB	COG2378	Protein PafB	ATGGCTGGTGAGAACGCGGCGGGCGGAACGCCGACACGTCCGGACGAGCGGCTGCTGAACCTCGTCATCGCGCTGGTGAACACCTCGGCGGCGATGACCAAGCAGCAGATCCGTGCCGGCGTGCACGGCTACGACGGCGCGTCCTCGACCGAGGCGTTCGAGCGGATGTTCGAGCGCGACAAGGACACGTTGCGCGCGCTGGGCGTGCCGATCGTCACCGTGGAGGGCACCGGGCACAGCGACGAGGTCGGCTACCGCATCGACAACGAGGCCTACGCCCTGGGCACGGTCGACCTCACCCCCGCCGAGCTCGGGGCGGTCGCCCTGGCGGCCCAGCTGTGGTCGGACAAGACGCTGCGCACCGACATGTCCCGGGCCATGACCAAGCTCGCGGCCGCCGGGGCCGGGGACGCCGTCGGCGACGCGGTCGCCGGGCTGACCCCGCGGGTGCGGGCCGCGGGCGACGCCTACGGCCCGCTGCTGGAGGCGATCTCCGAGCGCCGGGTGGTCACATTCCGCTACCGGGCGGCCTCGACCGGCGAGGTGCGCACCCGGCACGTGGAGCCGTGGCGCATCGCCGCGCGCGGCGGCGGCTGGTACGTGGTCGGCCACGACCGCGACCGCGCGGCCGAGCGCGTCTTCCGCCTCTCGCGCATCGAGGGCCGCGTCCGTCTCGGCGCGACGCCGCACGCCTACGAGCTGCCCGACCGCGTCGACGTCGACGCCGCCCTGGGCGCCCGCGTGCGCCACGACAGCACCGCCCGCCTCGCCGTCGTGCCCGAACGGGCCACCGCGCTGCGCGCCCGGGCGCTGGCCACCCCCGGCGGGGACAGCACGTCCGGGGTCCCGGCACCGCCACCGGGCCGCGACCTGGTCACCGTGCCCTACGGCAGTCTGACCGCGTTCGCCGACGAGGTCGCCGGCTACGGCGCCGCCGTCGTCGTGCTCGAACCCGCCGCGCTGCGTGCCGAGGTGCTGCGCCGGCTGCGCGCGGCGGCCGCCCTGGCCGCCGACACCGACGGTGCCGCAGCTGCCGCCGACCCCGACGAGGAGACCCGCCGTGGCTGA	MAGENAAGGTPTRPDERLLNLVIALVNTSAAMTKQQIRAGVHGYDGASSTEAFERMFERDKDTLRALGVPIVTVEGTGHSDEVGYRIDNEAYALGTVDLTPAELGAVALAAQLWSDKTLRTDMSRAMTKLAAAGAGDAVGDAVAGLTPRVRAAGDAYGPLLEAISERRVVTFRYRAASTGEVRTRHVEPWRIAARGGGWYVVGHDRDRAAERVFRLSRIEGRVRLGATPHAYELPDRVDVDAALGARVRHDSTARLAVVPERATALRARALATPGGDSTSGVPAPPPGRDLVTVPYGSLTAFADEVAGYGAAVVVLEPAALRAEVLRRLRAAAALAADTDGAAAAADPDEETRRG				NA	NA	NA	NA	NA
AK001_00534	975	pafC	COG2378	Protein PafC	GTGGCTGAACGCGCCGACGACCGCCTGGTCCGCCTGCTCGGCATCGTCGCCTACCTCGACGGCGCCGGACCCGTCGACGTCGAGGAGCTCGCCCACCGGTTCGGCGTGACCCCCGCCCGGCTGCGCGAGGACATCGACGCCCTGTGGGTCTCCGGCACCCCCGGCTACATGCCCGACGACCTGATCGACTTCGACGCCTTCTCCCTCGAGGAGGGCCTGGTCAGCCTGACCCAGTCCCGCGGCCTGACGCGCCCGCTGCGGCTGGGCACCCGCGAGGCCGTCGCCCTCGTGGCCGCGCTGCGCGCCATGAGCACCACCCCGGCGGTGCAGGCCGACCCGGGGCGCGCCGCCGTCGTCGCCGCCGCGCTGGACAAGCTCACCGCCGCCACCGGGGAGGCCGCGAGCGCCGTGGACGTGCGGCTGGGCGGTCCGGAGGACGTCGCGACCCTGGAGGTGCTGTCGCGGGCACTGGCGACGGGCCGGCGCGTCCGGCTGCGGTACGTGGACGCCGCGGACGTGACCAGCGAGCGCGAGGTGGACCCGTGGCGGCTGCTGACGCAGTCGGAGGCGACGTACCTGGTGGGCTGGTGCCACCGTGCGGGCGGACGGCGCACCTTCCGGGTGGACCGGGTGCTGTCGGCCGAGCCGACCGACGTGCCGGTCTCGGCGGTGCCCGTCGACGCGGAGGTGGACGTGGCCGCCCAGGTGGTCGCCGACGCCGCGGGCCCCGTGGACGAGGTGCGGGTGCGGTGGGCGTCGGCGGCACGCTGGGTGGCCGAGGAGGTGCCGGTCGAGGAGGTCACGGACCTGCCCGACGGGTCGTTCGAGGTGCGGCTGCGGGTGACGAACCCGGCGTGGCTGCGCCGGCTGCTGCTGACGCACGCGGTGGACGTGCTGGCGGTGGACCCGCCGCAGGTGGCCGCGGAGGTGGCCGCGGCGGCGCGCGCGGCACTGGCCGGCTACGGGCGGGACTAG	MAERADDRLVRLLGIVAYLDGAGPVDVEELAHRFGVTPARLREDIDALWVSGTPGYMPDDLIDFDAFSLEEGLVSLTQSRGLTRPLRLGTREAVALVAALRAMSTTPAVQADPGRAAVVAAALDKLTAATGEAASAVDVRLGGPEDVATLEVLSRALATGRRVRLRYVDAADVTSEREVDPWRLLTQSEATYLVGWCHRAGGRRTFRVDRVLSAEPTDVPVSAVPVDAEVDVAAQVVADAAGPVDEVRVRWASAARWVAEEVPVEEVTDLPDGSFEVRLRVTNPAWLRRLLLTHAVDVLAVDPPQVAAEVAAAARAALAGYGRD				NA	NA	NA	NA	NA
AK001_00535	366			hypothetical protein	GTGGTCGCCGTGTGGGGTTGGATCTGGACGTCGCTGGCGGTGGCCGCCGTGCTGTTCCTGGCGTGGCTGGCCTGGCGCGTGGTGCGCAGCGTCATCGCGCTGGTGCGCGGTGCCGGGCAGGCGGGACGTGTCGCGGGCGAGGCGGCCGAGCGTGTCGGGCAGGCCGCCGCCGCGGCGCAGGCGGACCCGCCGCGGGTGACGGCGACGTGGCACGACGACCCCGCGGTGCTGCGGGCGCGCCGGGACGCGCTGCGCCGGGCGCGCTGGGAGCGTCGCGGTCAGCGCCGGCGGGCGCAGGCCGAGGTGTGGCGCACCTGGTCGCGGAGCACCTGGCTCGAGCGCCGGCAGGCGCAGCGCCGGGGCTGA	MVAVWGWIWTSLAVAAVLFLAWLAWRVVRSVIALVRGAGQAGRVAGEAAERVGQAAAAAQADPPRVTATWHDDPAVLRARRDALRRARWERRGQRRRAQAEVWRTWSRSTWLERRQAQRRG				NA	NA	NA	NA	NA
AK001_00536	327	tatA		Sec-independent protein translocase protein TatA	GTGGGTATCTTCCGCAACCCGGCAGTGATCATCACGCTGATCCTGCTGGTCGTGCTGCTGTTCGGTGCCAAGCGTCTGCCGGACGTGGCGCGCAGCGTCGGCTCGTCGCTGAAGATCTTCAAGAAGGAGATCAAGGACCTGGGCGAGGACGACGACGACACCACGACGTCGCGGCCCGAGGGGTCGGGCACCCACGCCGCGAGCTCGCAGGACGGCAGCACGCCGACCGCGGCCTCGTCGCAGGAGGGGTCGTCGCCGACACCACCGCGCGCGTCGTCGGACGACTCGGCGCAGGTCCCGGGTCGCACCGACCCGCACCAGTCCTGA	MGIFRNPAVIITLILLVVLLFGAKRLPDVARSVGSSLKIFKKEIKDLGEDDDDTTTSRPEGSGTHAASSQDGSTPTAASSQEGSSPTPPRASSDDSAQVPGRTDPHQS				NA	NA	NA	NA	NA
AK001_00537	774	tatC	COG0805	Sec-independent protein translocase protein TatC	ATGGTCCGCACCCCCCGGGATCCCGAGGGGCGCATGCCGCTGCGCGAGCACCTGGTCGAGGCGCGACGGCGCATCGTGCGCATCGCCGTCGGCCTGCTGCTCGGCGCGGTGGTCGGCTGGGTCCTGTACGACCCGCTGCTGGACGCGCTGATGCAGCCGCTGCAGCAGGCCGCCGACCGGCGCGGCGCGCTGATCGGGCTGAACTTCGACGGCGTGGCCACGGCGATCGACATGCGGGTCAAGGTCTCGCTGTTCCTCGCGGTGATCGTGTCCAGCCCGTGGTGGCTCTACCAGGTGTTCGCGTTCGTGACCCCCGGCCTGACCCGCACCGAGCGCCGCTACGTGTTCGGGTTCCTGTCCGCAGCGGTGCCGATGTTCCTGGCGGGGTCGCTGCTGGCCTGGTACGTGCTGCCGTTCGTGGTCGAGGTCCTCAACGACTTCGTGCCCGAGGGCGGCTCGAACCTCATCGGCGCGCAGCTGTACCTGAGCTTCGTGATGCGCCTGATCCTGGCCTGCGGCATCGCGTTCCTGGTGCCGGTGTTCATGGTGGTGCTCAACCTCATGGGCACCGTGCGGGCACGCACCTGGCTGGCCGGGTGGCGCTGGGCGATCCTCATCTCGTTCCTGTTCGCCGCGATCGTGACCCCGACGATGGACGTGCTGAGCATGTTCGGCATCGCGGTGCCGATCGCCGCGCTGTACTTCGTGGCCACCGGCATCTGCTTCGTGCACGACCGGCGGGTCGACCGCCGGCGCGTCGCCCCCGTCGAGTGA	MVRTPRDPEGRMPLREHLVEARRRIVRIAVGLLLGAVVGWVLYDPLLDALMQPLQQAADRRGALIGLNFDGVATAIDMRVKVSLFLAVIVSSPWWLYQVFAFVTPGLTRTERRYVFGFLSAAVPMFLAGSLLAWYVLPFVVEVLNDFVPEGGSNLIGAQLYLSFVMRLILACGIAFLVPVFMVVLNLMGTVRARTWLAGWRWAILISFLFAAIVTPTMDVLSMFGIAVPIAALYFVATGICFVHDRRVDRRRVAPVE	PGPT0029295_2966	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAY	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029295-tatC-K03118	NA	NA
AK001_00538	993	dagK	COG1597	Diacylglycerol kinase	GTGACGCCGGCCCCGGGGCCCGCCGTCCGGAACGTGGGCGTGGCGGTCAACCCCACCGCGGGGGCGGGCCGGGGACGCGTCGTGGCGACCGTGCTGCACGACCGCCTGCGCCGGGCCGGGCACCGTGTCACCGACCTGTCCGGCACGGACGGCGCCGCCACGGCCGCGCGGCTGGCCGCCCGTCACGACCTGGAGGCGCTGGTCGTCGTCGGCGGCGACGGCATGGTGCACCTCGGCGCCGGCGCCACCGCCGGCACGGGCACGCCGCTGGGCGTGGTGCCCGTGGGCACCGGCAACGACTTCGCCGCCGTGCTGGGCCTGCCCGACGACCCGCTGGAGGCCGTCGACCGGGTCGTGCGGTCCCTGCACGACGGCACCGCCCGCACGGTGGACGCCATCGAGGTCACCGGCCCGCACGGCCCGCCGCGTTGGGTCGCCGGCGCGGTCTCGGCCGGGCTGGACGCCGCCGTCAGCGCCCGTGCGCTGGGGATGCGTCGCCCGCGCGGTGCCGCCCGGTACACCGTGGCGGCGCTGGCCGAGATCGCCCGGTTCCGCGCCTGGGACTACGCGCTGGAGCTCACCGGCCTCGTCGACGACGGCGGCCTGCCGGGTCTGGCGGTCCACGACGACGCGAGCGCGACCTGGCAGGGCCGCGCCGCCATGGTCACCGCGGCCAACATCGCCCGCATCGGCGGCGGCATCCGGGTCGCCCCGCACGCGCTGGTCGACGACGGGCTGCTGGACGTGCTCGTCGCCACCGTGACCTCGCGTGCGGCGGCGGCGAGCATCTTCCCCGCCATGTACGCCGGCGCCCACACCCGGCGCCGCGACGTGCACCTGCTGCGCGCCCGGGCCGTGACGATCCGGCCCGCGCCCGGCACGCCCGCCGGCGCCGGCCCACCCGTGGCGCACGGGGACGGCGAGGCGCTGGTGGCGCTGCCGCTGAACGCCCGCGCCGTCGCCGGGGCGCTGCACGTGCTGACCTCCGCCTGA	MTPAPGPAVRNVGVAVNPTAGAGRGRVVATVLHDRLRRAGHRVTDLSGTDGAATAARLAARHDLEALVVVGGDGMVHLGAGATAGTGTPLGVVPVGTGNDFAAVLGLPDDPLEAVDRVVRSLHDGTARTVDAIEVTGPHGPPRWVAGAVSAGLDAAVSARALGMRRPRGAARYTVAALAEIARFRAWDYALELTGLVDDGGLPGLAVHDDASATWQGRAAMVTAANIARIGGGIRVAPHALVDDGLLDVLVATVTSRAAAASIFPAMYAGAHTRRRDVHLLRARAVTIRPAPGTPAGAGPPVAHGDGEALVALPLNARAVAGALHVLTSA	PGPT0024345_443	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029	NA	NA
AK001_00539	2850	helY	COG4581	putative helicase HelY	ATGACGGCAGCACCCAGCCCCGCCGAACGCTACGCCGCCGCCCGGGCCCGCACGGCCCGCGCCCAGGCGGACGCCGGAGAGCTCGGCCGGTTCCGCGACCTGATCGACTTCGAGCTCGACGACTTCCAGGCCGACGCCTGCGCGGCCCTCGAGCGCGGCCGCGGCGTGCTCGTGGCCGCCCCCACCGGCGCCGGCAAGACCGTCGTCGGCGAGTTCGCCGTGCACCTGGCCCTGGCCCGCGGCGGCAAGACGTTCTACACCACGCCCATCAAGGCGCTGAGCAACCAGAAGTACCACGACCTCGTCGAGCGGCACGGCGTCGACGCCGTCGGGCTGCTGACCGGTGACACCTCCATCAACGGCGACGCCCCCGTGGTCGTGATGACCACCGAGGTGCTGCGCAACATGCTCTACGCCGGCTCGACCACCCTGGAGGGCCTGGCCTACGTCGTCATGGACGAGGTGCACTACCTCGCCGACCGGTTCCGCGGCCCGGTCTGGGAGGAGGTCATCATCCACCTGCCCGACCACGTCCAGCTCGTGTCGCTGTCGGCGACCGTGTCCAACGCCGAGGAGTTCGGCGACTGGCTGGCGACCGTGCGCGGCGACACCGCCGTCGTGGTCAGCGAGCACCGCCCGGTGCCGCTGTGGCAGCACGTCATCACCTCGCCCGAGGAGCCGCGCGGACGCCCGCGCCTGTTCGACCTGTACGCCGGCCACGTCGACCCCACCGACCCGGGCACCAACCCGCCGATCGACCCCGACCTGGCGCGGCTGTTCCGCACCCACGGCCGGGCCGGGTCCGCGCCCGGCGCCCGCCGCCGCGGTCGGGGCGACCGCGGCTACCGGGGCCGCGGCGGGCGCGGCGGCGGCCAGGGGGCCGTGCCGCAGCGCCGCGTGCCGCGCCGCTACGGCGTCGTCGAGGCGCTCGACGACGACGCGCTGCTGCCCGCCATCTACTTCATCTTCTCCCGTGCCGGCTGCGAGGGCGCCGTCGAGCAGTGCCTGCGCGCCGGGCTGCGCCTGACCAACGCCGAGGAGGAGGCGGAGATCCGCCGGGTCGTCGAGGAGCGCACCGTGACCGTGCCGCCCGAGGACCTCGAGGTGCTCGGCTTCTGGCAGTGGCAGCACGCGCTGGCGCGCGGCGTCGCCGCCCACCACGCCGGGCTGCTGCCGGTGTTCAAGGAGACCGTCGAGGAGCTGTTCGCCCGCGGTCTGGTCAAGGTCGTGTTCGCCACCGAGACCCTCGCGCTGGGGATCAACATGCCCGCCCGTTCGGTCGTGCTGGAGAAGCTCGTCAAGTTCGACGGCACCGCCCACCAGCCGATCACGCCGGGGGAGTACACCCAGCTGACCGGGCGCGCGGGCCGCCGCGGCATCGACGTCGAGGGGCACGCCGTGGTCGTCGACCACGTGGGCCTGGACCCCGTGGCACTGGCCGGGCTCGCCTCGCGCCGGCTGTACCCGCTGCGCTCCAGCTTCCGCCCGACCTACAACATGGCCGTCAACCTCGTCGGGCAGGTCGGCGCCGAACGCGCCCGCGAGGTGCTGGAGACCAGCTTCGCCCAGTTCCAGGCCGACCGCGGCGTGGTCGACCTGGCCAAGCAGGCCCAGGCCCACGCCGAGGCGCTGCAGGGCTACCGCGGCGCCGCCCGCTGCGAGCGCGGCGACTTCGAGGGTTATCTCGCGGTCCGGCGCGCCATCACCACCCGCGAGAAGGAGCTGTCCAAGGCGGCCAAGGGTGCCCGGCGCGCCGACGCCATCGACTCCCTGACGCGGCTGCGCCGCGGGGACGTGGCCGAGGTGCCGTCCGGACGGCGGCGCGGCTTCGTCGTCGTGCTCGACCCGGGCGCCGACGAGGGCGGCTTCGACGGGCCGCGCCCCACGGTGCTGACCCAGGAGAAGCAGGTCAAGAAGCTCACCGTGGCCGACACCCCCGACGGGGTGCGCACCGTGACGCGGGTGCGCATCCCGAAGGGCTTCAACTCCCGCCGCCCCGCCGACCGCCGCGACCTGGCCTCCAGCCTGCGCAACGCGCTGGGGGAGCGGTCGGCACCCGGGGCGGACGACCCGGGGCGCGCCGCGCGCGGCGACCGCGGCGACGTCGCCTCCGACCGCGAGCTGCAGCGGCTGCGCGCCGACCTGCGCGCCCACCCGTGCCACTCGTGCCCCGAGCGCGAGGACCACGCGCGCTGGGCCCAGCGGGCCGAGAAGCTCTCCCGCGAGCAGGACGCGCTGGTGCGGCGCATCGAGGGACGCACCGGCTCGATCGCGCGGACCTTCGACCGCATCTGCGAGGTGCTGACCGAGCTCGACTACCTGCAGCGCGACCACGACGGGCTGCGCGTGACCGAGTCCGGGCGCCGGCTGGGCAGGCTGTACGCCGAGGACGACCTGCTGATGGCCGAGTGCCTGCGCCAGGGCGTGTGGGACGAGCTGCGGCCCGCCGAGCTCGCCGCCGCGGTGTCGGTGGTGGTGTACTCCGGCCGGCGCGAGGAGCCCGAGACCACGCTGGCGGGCGTACCGGGACGCCGCCTGGCCGACGCCGTGGACGCGACCTTCGACGTGTGGGCGCGGGTGCGCGACCTGGAGGCCGCGCACCGGCTCGACGTCACCGGCACCCTGGACACCGCGCTGGCCGCCCCGGTGCACCAGTGGGCCTCGGGCGCGAGCCTGGACACGGTGCTGCGTGGTACCGACATCGCGGCGGGTGATTTCGTGCGCTGGTGCAAGCAGGTCATCGACGTGCTCGACCAGCTCGCGGCGGCCGCGCAGCCGCCGCTGCGCGGGCGTGCCCGCAGCGCCCAGGACGCCGTGCTGCGGGGTGTGGTGGCGCACTCCACGGTGTGA	MTAAPSPAERYAAARARTARAQADAGELGRFRDLIDFELDDFQADACAALERGRGVLVAAPTGAGKTVVGEFAVHLALARGGKTFYTTPIKALSNQKYHDLVERHGVDAVGLLTGDTSINGDAPVVVMTTEVLRNMLYAGSTTLEGLAYVVMDEVHYLADRFRGPVWEEVIIHLPDHVQLVSLSATVSNAEEFGDWLATVRGDTAVVVSEHRPVPLWQHVITSPEEPRGRPRLFDLYAGHVDPTDPGTNPPIDPDLARLFRTHGRAGSAPGARRRGRGDRGYRGRGGRGGGQGAVPQRRVPRRYGVVEALDDDALLPAIYFIFSRAGCEGAVEQCLRAGLRLTNAEEEAEIRRVVEERTVTVPPEDLEVLGFWQWQHALARGVAAHHAGLLPVFKETVEELFARGLVKVVFATETLALGINMPARSVVLEKLVKFDGTAHQPITPGEYTQLTGRAGRRGIDVEGHAVVVDHVGLDPVALAGLASRRLYPLRSSFRPTYNMAVNLVGQVGAERAREVLETSFAQFQADRGVVDLAKQAQAHAEALQGYRGAARCERGDFEGYLAVRRAITTREKELSKAAKGARRADAIDSLTRLRRGDVAEVPSGRRRGFVVVLDPGADEGGFDGPRPTVLTQEKQVKKLTVADTPDGVRTVTRVRIPKGFNSRRPADRRDLASSLRNALGERSAPGADDPGRAARGDRGDVASDRELQRLRADLRAHPCHSCPEREDHARWAQRAEKLSREQDALVRRIEGRTGSIARTFDRICEVLTELDYLQRDHDGLRVTESGRRLGRLYAEDDLLMAECLRQGVWDELRPAELAAAVSVVVYSGRREEPETTLAGVPGRRLADAVDATFDVWARVRDLEAAHRLDVTGTLDTALAAPVHQWASGASLDTVLRGTDIAAGDFVRWCKQVIDVLDQLAAAAQPPLRGRARSAQDAVLRGVVAHSTV				NA	NA	NA	NA	NA
AK001_00540	1659	nfdA_1		N-substituted formamide deformylase	GTGACCTCCACCCTGTACCGCAACGGTGTCGTCCACTCCGCCGCGGACCCCTTCGCCGAGGCCCTGCTCGTCGACGACGGCGTGGTGGCCTGGCTCGGCGCCGAGGACACGGCCGCCGGCCTGGCCGCGCGTGCCGACGAGGTCGTCGACCTCGACGGAGCCCTGGTCACGCCCGGCTTCGTCGACGCCCACGTGCACACCCTGGAGACGGCGCTGACCGCCGAGGGCACGGACCTGTCCCCGGCCGGCGCCGGAACCCTCGCCGCCGCGCTGGACCGCCTGGCCGCCGCCGCCCGCGACCTGGAGGCCGCCGACCCCGGCGGCGAGCAGGTCCTGCTCGCCTTCGGCTGGGACGAGGGCGCCTGGCCCGAGCGCCGGGCCCCGTACCTGGGCGAGCTGGACGCCGCCACCGGGGGGCGCCCCACGCTGGCGGTGCGGGTCGACGGCCACACCGCACTGGCCTCGTCCTCGTTCGCCGCCCGCACCGGCCTGGACCGCACGCCCTCCTGGGACGGCAGCGGGCTGGTCACCGGGGCGGACTACGCCCGTGCCCGCGCCGTCGTGCACGACCTGGACGCGGCACGCCGCGAGACGCTGTACCGGCAGGCGCTGAGCTCGGCCGCCGCGCGCGGCATCGTGGCCGTGCACGAGATGAGCACCCCCCACGTGGACACCCGCGCCGGCCTGCAGATGCTGACGGGGCTGGCCGCGGACCCGGAGTCGCGGCTGCCGCACGTGACCGCCTACCGGGCCGAGCTGTGCACCGGCGCCGACGACGCTTCCGCGCTGCTGGCCGAGCTGCCGTTCCTGACGGGCATCGCCGGGGACCTGACCGTCGACGGCACCCTCGGCTCGCGCACCGCCGCCCTGACCGCGCCGTACAGCGACCTGGAGCCCGACGCCCGCGAGCGCTCCGGCCGGCTGTACCTGTCGGCGGAGCAGATCGCCACGCACCTGCTGGCCTGCTCGGCCGCCGGGGTCCAGGGCGGGCTGCACGTGGTGGGCGACCGGGCGATGGACGAGCTTGTCGAGGGGCTGGAGATCGCCGTGCAGCGGGCCGACGCCGGCACCCTGCGCGGTGGCCACCACCGCATCGAGCACGCCCTGTTCGTCGACGCCGCGGCGCTGGCCTCGCTGCTGCTGTACGGGGTGGCGCTGTCGATCCAGCCGGCCTACGACTCCACGTGGGGCGGCCCGGACGGGATGTACACCAGCCGCCTGGGCGGGCCCCGGGCGGCGAACCTGTCGCCGTTCGCCGACCTGGCCGGGGCGGGCGTGCCGATCGCGTTCGGCTCGGACAGCCCCGTCACCCCGCTGGCGCCGTGGCAGGCGGTGCGGGCGGCGATCGGCCACGCCGACCCGTCCCAGCGCATCAGCGCCCGGTCGGCCTTCCGCGCCCACTCGCGCGGCGGCTGGCGGCTGGCGGGCCTGGACCACACCGGTGCCGGTGAGCTGCGCGTCGGTGCTCCCGCCCACCTGGCCGTCTGGCGCGCCGAGTCCCTGGCCGTGCAGTCCGCCCCGGGCCGGCTGTCGCAGTGGAACCCCGAGGCGCGCGCGGGCCAGCCGCTCCTGCCGGACCTGTCCGACGACGTCCCCGACCCCGAGTGCCTGCGCACGGTCCGCGACGGCGTCGTGCTGCACGACGTGCTCGACGGCTGA	MTSTLYRNGVVHSAADPFAEALLVDDGVVAWLGAEDTAAGLAARADEVVDLDGALVTPGFVDAHVHTLETALTAEGTDLSPAGAGTLAAALDRLAAAARDLEAADPGGEQVLLAFGWDEGAWPERRAPYLGELDAATGGRPTLAVRVDGHTALASSSFAARTGLDRTPSWDGSGLVTGADYARARAVVHDLDAARRETLYRQALSSAAARGIVAVHEMSTPHVDTRAGLQMLTGLAADPESRLPHVTAYRAELCTGADDASALLAELPFLTGIAGDLTVDGTLGSRTAALTAPYSDLEPDARERSGRLYLSAEQIATHLLACSAAGVQGGLHVVGDRAMDELVEGLEIAVQRADAGTLRGGHHRIEHALFVDAAALASLLLYGVALSIQPAYDSTWGGPDGMYTSRLGGPRAANLSPFADLAGAGVPIAFGSDSPVTPLAPWQAVRAAIGHADPSQRISARSAFRAHSRGGWRLAGLDHTGAGELRVGAPAHLAVWRAESLAVQSAPGRLSQWNPEARAGQPLLPDLSDDVPDPECLRTVRDGVVLHDVLDG				NA	NA	NA	NA	NA
AK001_00541	1764	lnt	COG0815	Apolipoprotein N-acyltransferase	ATGAGCACCGTGACCGATCCCGCCGTGGCCCCGACGCCCGCGAGCGCCCCGGCCGCACCGTCGTCGTGGACGACGTCCCGGCCGGTGACGCTGCTGCTGGGCGTGGCGGCGGGGGTGAGCCTGTGGGCGTCGTTCCCGGACGTGGCCTTCTGGCCGGCGGCGTTCGTGGCGGTGGGGCTGCTGTTCGCGGCCTGGCGGCGCACGGGTCGGCGGGCGGCCGGCTGGAACGCGCTGGTGGGGCTGGTGGCGGGCTGGTCGTTCTGGCTGCCGCACATCTGGTGGGCGAACTTCGCCACGGACACGGTGCCGTGGGTGGCGCTGGCGACGCTGCAGGCGGCGTTCTGGGCGCTGCTCGGCGCGGCGTGGACCGTCGCGCGACGCCTGCCGGTCCTGGCCCTGCCCGCATCGGGCGCCCGGCCGGGGCCGGCGGTGGGTCGCACCCTGGCGCACGCCGCGGCGTTCGCCGTGCTGTTCGTGGCCGTCGAGCAGGCCCGTTCCCAGGTGCCCTTCGGCGGGTTCCCGTGGGGCCGGCTGGCGTGGACGATGGTGGACGCCCCCACGGGGCGGGCGGCCTGGCTGGGCGGCACGGTCGCGGTGTCGCTGCTGGTGGCGCTGGTCGGTGTGCTCGGCGCGGTGGCGGCGGGTCGGCTGGTCGCGGCGGTGCGCGCGGCCCGGGCCGCGCGACCGGTGCGTCCGGCGCTGCTGGGTGCGGGTGCCGCGGTGGTCGGCGGCGCGGTGCTGGTCGTGGCGCCGGCGGCGCTGCCGCTGCCGGCCGGGCCGGACCCGCTGCCGCAGGTGGCGACGGCCGACCTGGACACCGTGGTGGTGGACGCCGGCACGGCGACGCACGAGGGTGACGGGCCGGTGCTGCGGGCCGGGGCGGTGCAGGGCAACGTCGCCGAGCCGGGTCTGGGCTCGTTCGCCAACCGTGCCGAGGTGCTGAACAACCACCTGGACGGCACCGACGTGCTGGCCGACCGCGACGACGACCTGGACGTGGTGCTCTGGCCGGAGAACGGCTCGGACCTGGACCCGCAGGAGGTCACCGAGGTTGCCGGGGCGATCGACGCCGCGGCGACGCGGGTGGGCGCCCCGATCCTGGTGGGTGCCCAGGAGTTCCCCGCCACGGGGGGCCGCTACAACGTCTCGCTGCTGTGGCAGCCGGGGGTCGGGGTGACCGACCGCTACGCCAAGCAGCACCCGGCGCCGTTCGGGGAGTACATCCCGCTGCGCGGCTTCGTGCGGATCTTCTCCGACCAGGTCGACCGGGTCACCAACGACATGCTGCCCGGCACGGAGCCGGCGGTGATCGACCTGCCGCGCGCCGACGGGTCGACGGCACGCCTGGCGACGGCGATCTGCTTCGAGGTCGCCTACGACGAGATCGTGCGCGACGCGGTGCTGCGTGGTGCGCAGGTGCTGGTGGTGCCGACGAACAACGCCTCGTTCGGGTACACGGCCGAGTCGACGCAGCAGCTGGCGATGACCCGCATGCAGGCGATGATCACCGGACGCGCGGCGGTGCAGATCTCCACGGTGGGGGTCTCGGGCGTCGTGGCGCCCGACGGCACGCTGGTGGCGCGCACCGGGTTGTTCACCGCCGACCAGATCGTCGCGGCGCTGCCGCTGCGCACCACCCTGACGCCGGCGGTCCGCGCCGGCGAGTGGCCGGGTGCCGTCGTCGAGGCGGCCGCGGTGCTGCTGGTCGCGGCGGGCGCCCTGTCCCCGATCATCAGCCGCCGCCGCGCGGGAGGAGCTTCGTGA	MSTVTDPAVAPTPASAPAAPSSWTTSRPVTLLLGVAAGVSLWASFPDVAFWPAAFVAVGLLFAAWRRTGRRAAGWNALVGLVAGWSFWLPHIWWANFATDTVPWVALATLQAAFWALLGAAWTVARRLPVLALPASGARPGPAVGRTLAHAAAFAVLFVAVEQARSQVPFGGFPWGRLAWTMVDAPTGRAAWLGGTVAVSLLVALVGVLGAVAAGRLVAAVRAARAARPVRPALLGAGAAVVGGAVLVVAPAALPLPAGPDPLPQVATADLDTVVVDAGTATHEGDGPVLRAGAVQGNVAEPGLGSFANRAEVLNNHLDGTDVLADRDDDLDVVLWPENGSDLDPQEVTEVAGAIDAAATRVGAPILVGAQEFPATGGRYNVSLLWQPGVGVTDRYAKQHPAPFGEYIPLRGFVRIFSDQVDRVTNDMLPGTEPAVIDLPRADGSTARLATAICFEVAYDEIVRDAVLRGAQVLVVPTNNASFGYTAESTQQLAMTRMQAMITGRAAVQISTVGVSGVVAPDGTLVARTGLFTADQIVAALPLRTTLTPAVRAGEWPGAVVEAAAVLLVAAGALSPIISRRRAGGAS	PGPT0024470_161	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024470-lnt-K03820	NA	NA
AK001_00542	753			Undecaprenyl-phosphate mannosyltransferase	GTGAGCACCCTGGTGATCATCCCCACGTACGACGAGCGCGAGTCGTTGCCGGTGACGGTGGAGCGGCTGCGCGCCGCCGTGCCGGACGCGGACGTGCTGGTGGTCGACGACGGCTCGCCGGACGGCACCGGGCGGTGGGCCGAGCGGGCCGCCGCGCACGACGAGCGCCTGCACGTGCTGCACCGGTCCGGCAAGGGCGGGCTCGGCGCCGCCTACGTGGCCGGGTTCGGCTGGGGGCTCGAGCGCGGCTACGACGTGCTGTGCGAGATGGACGCCGACGGCTCGCACCGGCCCGAGGAGCTCGAGCGGCTGCTGGAGCGCGCCGCCGCCGCGGACGCCCCGTCGCTGGTGATCGGCTCGCGCTGGGTGCCCGGCGGGCGGGTCGTGAACTGGCCGTGGCACCGTGAGCTGCTCTCGCGCGGGGGCAACACGTACGTGCGGATGATGCTGGGCATCGCGGTGCGCGACGCCACGGGCGGCTACCGCGCCTTCCGGGCGGACACGCTGCGGGCGCTGGACCTGGCGGCGGTGGAGTCGCACGGCTACTGCTTCCAGGTGGACATGACCTGGCGGGTGCTGCGCGGCGGGGGATCGGTGGCCGAGGTGCCGATCACGTTCGTCGAACGCACGGCCGGCGAGTCGAAGATGTCGCGCGCGATCGTGGTCGAGGCGCTGACGAAGGTGACCCGCTGGGGGCTGCGCCACCGCGGCGAGCAGCTGCGCGGGTTGCTGCGGCGCGCCGACCGCGGCTGA	MSTLVIIPTYDERESLPVTVERLRAAVPDADVLVVDDGSPDGTGRWAERAAAHDERLHVLHRSGKGGLGAAYVAGFGWGLERGYDVLCEMDADGSHRPEELERLLERAAAADAPSLVIGSRWVPGGRVVNWPWHRELLSRGGNTYVRMMLGIAVRDATGGYRAFRADTLRALDLAAVESHGYCFQVDMTWRVLRGGGSVAEVPITFVERTAGESKMSRAIVVEALTKVTRWGLRHRGEQLRGLLRRADRG	PGPT0017834_1853	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721	NA	NA
AK001_00543	345	rbpA_2		RNA polymerase-binding protein RbpA	ATGCCCGACCGCTCCCTCCGTGGCATGAGCATCGGCAGCAAGAGCATGGAGTCCGACGAGGGCGTGGACTTCGCCCCGCGATTCCAGGCGCACTACGACTGCCCCAACGGCCACACGATCATCCTGCCGTTCTCCACCGACGCCGAGGTCCCCCCGATCTGGGAGTGCCAGTGCGGCGGCGAGGCGCTGCTGCGCGACGCCGAGCGTCCCGACGCCAAGCCGAGCAAGCCGCAGCGCACCCACTGGGACATGCTGCTCGAGCGGCGCACCGTCTCCGAGCTGGAGGAGCTCCTGGACGAGCGCCTCGAGCTGCTGCGCGCCGGCAAGCTGCGCCGCTCCGCCTGA	MPDRSLRGMSIGSKSMESDEGVDFAPRFQAHYDCPNGHTIILPFSTDAEVPPIWECQCGGEALLRDAERPDAKPSKPQRTHWDMLLERRTVSELEELLDERLELLRAGKLRRSA				NA	NA	NA	NA	NA
AK001_00544	1161			hypothetical protein	GTGCAGTTCGGCATCTTCTCCGTCTCCGACGTGACGACGGACCCCACGACCGGCCACACCCCGGACGACACCGAACGGGTGCGGTCGATGCTGACGATCGCCCGGCACGCCGACGCGGCGGGGCTGGACGTCTTCGCCACCGGCGAGCACCACAACCCGCCGTTCGTCGCCTCGAGCCCCACCACGATGCTCGGCTACCTGGCGGGCGTGACCGAGAACATCACCCTGTCCACGGCCACCACGCTGATCACCACCAACGACCCGGTGCGCCTGGCCGAGGAGTACGCGATGCTCCAGGTGCTCTCCGGCGGCCGCATGGACCTGATGATGGGCCGCGGCAACACCGGGCCGGTCTACCCGTGGTTCGGCCAGGACATCCGCAACGGCATCCCGCTCGCGATCGAGAACTACGCGCTGCTGCGCCGGCTGTGGACCGAGGACGTCGTCGACTGGAGCGGGCAGTTCCGCACCCCGCTGCAGGGCTTCACCGCGACCCCGCGGCCGCTGGACGGCGTGCCGCCGTTCGTGTGGCACGGCTCGATCCGCTCGCCCGAGATCGCCGAGCAGGCCGCGTACTACGGCGACGGGTTCCTGCACAACAACATCTTCTGGCCCATGCACCACACCAAGCAGATGGTGCGGTTCTACCGCCAGCGCTACGAGCACCACGGCCACGGCCGCGCCGACCAGGCGATCGTCGGCCTGGGCGGACAGGTCTTCGTGCGCAAGAACTCCCAGGACGCGGTGCGCGAGTTCCGCCCCTACTTCGACGTCGCACCGGTCTACGGCCACGGCCCGAGCCTGGAGGACTTCTCCGCCCAGACGCCGCTGACCGTCGGCTCGCCCCAGCAGGTCATCGACCGCTACGGCGCGTTCGTCGAGGACGTCGGCTACTACCAGCGTCAGATGTTCCTCATCGACCACGCCGGCCTGCCCCTGAAGACCGTGCTGGAGCAGATCGACCTGCTGGCCGAGGAGATCGTGCCCGAGCTGCGCAAGATCGTCGAGGCCAAGCGGCCCGCCGACGACGTGCCGCTCAACCCGCCCACGCACGCCGAGCGCGTCGCCGCCGCCCGCACGGCGGGCGCCTCCGGCGCCACCCACGTCGGCGACGGCGGCGACGCCGTCACCGGCACCCGAGCCGAGGAGGCCGTCCGATGA	MQFGIFSVSDVTTDPTTGHTPDDTERVRSMLTIARHADAAGLDVFATGEHHNPPFVASSPTTMLGYLAGVTENITLSTATTLITTNDPVRLAEEYAMLQVLSGGRMDLMMGRGNTGPVYPWFGQDIRNGIPLAIENYALLRRLWTEDVVDWSGQFRTPLQGFTATPRPLDGVPPFVWHGSIRSPEIAEQAAYYGDGFLHNNIFWPMHHTKQMVRFYRQRYEHHGHGRADQAIVGLGGQVFVRKNSQDAVREFRPYFDVAPVYGHGPSLEDFSAQTPLTVGSPQQVIDRYGAFVEDVGYYQRQMFLIDHAGLPLKTVLEQIDLLAEEIVPELRKIVEAKRPADDVPLNPPTHAERVAAARTAGASGATHVGDGGDAVTGTRAEEAVR				NA	NA	NA	NA	NA
AK001_00545	621			hypothetical protein	ATGAGCACCCGCCGCACCCTCGCCGTCGTCACCGCGGGCCTGTCCCAGCCGTCCTCGTCGCGGCTGCTCGCCGACCGGCTGGCCACCGCCACGGCCGACGGGCTGCTCGAGGCCGGCCAGGAGACCGACGTCGAGGTCGTCGAGCTGCGCGAGCACGCCCACGCGATCGTCGACGCCATGCTGACGCGGTTCCCCTCGGGCGAGCTCGCCACCGCGCTGGACACCGTCACCGGCGCCGACGGGCTGGTCATGGTCAGCCCGCTGTTCACCACGACCTACTCCGGGCTGTTCAAGTCCTTCGTCGACGTCATCGACCCCGACGCCCTGACCGGCAAGCCGGTGCTGCTCGGCGCCACGGGCGGCACGTCCCGGCACTCGCTGGCGCTGGACTACTCGATGCGTCCGCTGCTGACGTACCTGCGCACGCAGGTGGTGCCCACGGCCGTGTTCGCGGCCACCGACGACTGGGCGGGCCAGGACGGTTCCGACGCCCTGACGCGCCGCATCTCCCGCGCCGGGCGCGAGCTCGCCGCGGCCGTGGCGTCGCGCCCGGCGGCCACCGGGCAGGACGACCCCTTGGGTGACACCCCGGACTTCGCCCAGCTGCTCGGCGGCTCCTGA	MSTRRTLAVVTAGLSQPSSSRLLADRLATATADGLLEAGQETDVEVVELREHAHAIVDAMLTRFPSGELATALDTVTGADGLVMVSPLFTTTYSGLFKSFVDVIDPDALTGKPVLLGATGGTSRHSLALDYSMRPLLTYLRTQVVPTAVFAATDDWAGQDGSDALTRRISRAGRELAAAVASRPAATGQDDPLGDTPDFAQLLGGS	PGPT0003045_529	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299	NA	NA
AK001_00546	1023	galE_1	COG1087	UDP-glucose 4-epimerase	ATGCGCGTCCTCGTCTCCGGCGGTGCCGGCTACATCGGCTCCCACACGGTCCTGTCCCTGCTGGCCTCCGGTCACGACGTCGTCGTGGTCGACGACTTCTCCAACGCCAAGCCCAGCGTCATCGGCCGGCTCGAGGCCCTGTCGGGCAAGCACGTGCCGGTGCACGCCATCGACCTGACGGACGCCGAGAAGACCGAGCGGCTGTTCGCCCACGAGCGCTTCGACGCCGTGGTCCACTTCGCCGGCTTCAAGGCCGTGGGGGAGTCGGTGGCCAAGCCGCTGGCCTACTACCGCAACAACCTCGACTCCACGCTGTCGCTGCTGGAGGCGATGCGCCGCCACGACGTGCACCGGCTCGTGTTCTCCTCCTCGGCGACCGTCTACGGCGAGCACGCTCCCGTGCCCTACGTCGAGGACTACGAGCACCTGTCCTCCTCCTCGCCGTACGGGCAGACGAAGGTCATGATCGAGCGCATCATGACCGACGTCGCCGCCGCGACCGAGGGGCTGCGCGTGGCGCTGCTGCGCTACTTCAACCCGGTCGGGGCGCACCCCTCGGGCGAGATCGGCGAGGACCCGCAGGGCATCCCGAACAACCTCATGCCCTTCATCGCCCAGGTCGCCGTGGGCCGTCGCGAGAAGCTCACCGTGTTCGGCGACGACTACGCCACCGCCGACGGCACCTGCGAGCGCGACTACCTGCACGTGGAGGACCTCGCCGCCGGGCACGTCGCCGCGCTCGAGCACCTCGACGACATGGCCGAGCCCGTGCGCGCCTTCAACCTCGGCACCGGGACCGGCACCTCGGTGCTGGCCATGCTGCACGCCTTCGAGCGGGCCGTCGGGCGCGAGCTGCCCTACGAGGTCGGGCCCCGGCGGGCCGGGGACCTGCCGGCGTTCTGGGCCGACCCCACCCGGGCGAACACCGAGCTGGGCTGGCGCGCCGAGAAGTCGATCGACGACATGTGCGCCGACACCTGGCGCTGGCAGCAGGCCAACCCGCAGGGCTTCCCGGACGCCTGA	MRVLVSGGAGYIGSHTVLSLLASGHDVVVVDDFSNAKPSVIGRLEALSGKHVPVHAIDLTDAEKTERLFAHERFDAVVHFAGFKAVGESVAKPLAYYRNNLDSTLSLLEAMRRHDVHRLVFSSSATVYGEHAPVPYVEDYEHLSSSSPYGQTKVMIERIMTDVAAATEGLRVALLRYFNPVGAHPSGEIGEDPQGIPNNLMPFIAQVAVGRREKLTVFGDDYATADGTCERDYLHVEDLAAGHVAALEHLDDMAEPVRAFNLGTGTGTSVLAMLHAFERAVGRELPYEVGPRRAGDLPAFWADPTRANTELGWRAEKSIDDMCADTWRWQQANPQGFPDA	PGPT0017825_26	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785	NA	NA
AK001_00547	384			hypothetical protein	GTGCTGGCCGGGTGCCAGTCGGCAGGCCCGGACGACGCCGCCCGTGCCTCGCCCTCCGCGACGGCGGCGGAGACCCAGCGTCACCCGGACGTGCTGGAGGTGGTCGCCGACTGCGCCGGGAAGACGTGCGACCTCGAGGTCACGATCAGCTCGCCGTACGACACCCCGCAGCGGTACGCCGACGGTTGGCGCGTCCTGACCGAGGACGGCGTCGTGCTCGGGGTGCACACCCTGGCCCACGACCACGCCGGCGAGCAGCCGTTCACGCGCACCCAGCGTGGCGTCGAGATCCCGCGGGAGGTCGAGGCCGTCGTCGTCGAGGGCCGGGACCAGGAGCACGGCTTCGGCGGGCGGACCGTGACGGTGACGCTGCCGGACCGGTGA	MLAGCQSAGPDDAARASPSATAAETQRHPDVLEVVADCAGKTCDLEVTISSPYDTPQRYADGWRVLTEDGVVLGVHTLAHDHAGEQPFTRTQRGVEIPREVEAVVVEGRDQEHGFGGRTVTVTLPDR				NA	NA	NA	NA	NA
AK001_00548	1113	ald_2	COG0686	Alanine dehydrogenase	ATGGACGTCGCCGTCCCGAAGGAAGTCAAGAACCACGAAGACCGCGTCGCCATCACCCCGGCCGGCGTCCACGAACTCGCCACACGCGGTCACACGGTGCACGTCCAGGCCGGTGCCGGGCTGGGCGCGGGCATCACCGACGAGCAGTACGCCGCCGAGGGCGCCCGCATCGTCCAGGGCGCCGCCGCGACCTGGGACGCCGGCGAGATGGTGCTCAAGGTCAAGGAGCCCGTGGCCTCCGAGTACGAGCTGCTGCGCGAGGACCTGCTGCTGTTCACCTACCTGCACCTGGCCGCGGACAAGGCCCTGACCGAGGAGCTGCTCGCCCGTCGTGTCACCGCGGTGGCCTACGAGACGGTCCAGCACGCCGACGGCTTCCTGCCCCTGCTGGCGCCGATGTCGGAGGTCGCGGGCCGGCTCGCCACGCAGGTCGGGGCCGCCACGCTGCAGAACGCGGCCGGCGGGCGCGGCGTGCTGCTCGGCGGGGTCCCGGGCGTCCCGGCCGCGCAGGTGGTGATCATCGGCGCCGGCACCTCGGGCATGAACGCCGCCCGCATCGCCGTCGGCATGGGCGCCCACGTCACCCTGCTGGACACCAACGTCGACGTGCTGCGCGCCGCGGACCGCGAGTTCGCCGGCCGCGTGCAGACCCTGACCTCCAACCGGCTCAGCCTGCGCCAGGCCGTGCTCGAGGCGGACCTGGTCATCGGCGCGGTCCTGCTGCCCGGCGCCAAGGCACCCGTGCTCGTGCCGAACGAGCTGGTGGCGCAGATGCGACCCGGCGCGGTCCTCGTCGACATCGCCATCGACCAGGGTGGCTGCTTCGCCGACTCGCGGCCCACCACCCACGACCAGCCCACCTACCCGGTGCACGACACCGTGTTCTACTGCGTGGCCAACATGCCCGGCGCGGTCCCCCGGACCTCCACCTACGCCCTGACGAACGTCACCCTGCCCTACGCGGTGGCGCTCGCCGACTCCGGCTGGCGCGAGGCGCTCGGTGCCGACGCGGCACTGGCGCGCGGGCTGAACACCCACGACGGTCACGTCATGCACGCCGGCGTCGCCGAGGCGCACGGGCTGGACCACCGCGAGGTCGCGGGAGTGCTGTGA	MDVAVPKEVKNHEDRVAITPAGVHELATRGHTVHVQAGAGLGAGITDEQYAAEGARIVQGAAATWDAGEMVLKVKEPVASEYELLREDLLLFTYLHLAADKALTEELLARRVTAVAYETVQHADGFLPLLAPMSEVAGRLATQVGAATLQNAAGGRGVLLGGVPGVPAAQVVIIGAGTSGMNAARIAVGMGAHVTLLDTNVDVLRAADREFAGRVQTLTSNRLSLRQAVLEADLVIGAVLLPGAKAPVLVPNELVAQMRPGAVLVDIAIDQGGCFADSRPTTHDQPTYPVHDTVFYCVANMPGAVPRTSTYALTNVTLPYAVALADSGWREALGADAALARGLNTHDGHVMHAGVAEAHGLDHREVAGVL	PGPT0020070_2525	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ALANINE_DEGRADATION,PGPT0020070-ald-K00259	NA	NA
AK001_00549	531	lrp_1	COG1522	Leucine-responsive regulatory protein	ATGTCTGGGGGACCTCGTTCGCAGGATCTTCGGTCCCGGGTCGACGGCGGCGCCGGCCTGGAGCGTCGTGCGCGCGCGACCGTGCGCCTGGACGGGATCGACCACCGCCTGCTGGCGGCGCTGGCCGAGGACGCCCGCATGCCGAACAACGCCCTGGCGGCCCGGGTAGGGATCGCCCCGTCGACCTGCCTGACCCGCGTGCGCCGCCTGCGCGACGAGGGGGTGATCCGCGGGTTCCACGCCGACGTCGACCCCGCGCTGGCCGGCCGGCCCCTGCAGGCGATCATCGCGGTGCGCATGCAGGGAGCAGCCCGGTCCCACCTGCCGGCCTTCGCCCGCGACCTCGCGCGGTTGCCGGGCGTGCTGGACGTCTACCTCATCGGCGGGGCGCACGACTTCTTCGTGCACGTCACCGCGCCCGACTCCGACGTGCTCAACGACTTCGTCATCGAGAACCTCTCGGCCAACCCGGGCGTGGCGCTGACCGAGACGAACCTGATCTTCCAGCACACCCGGGGCGGCTGGTACTGA	MSGGPRSQDLRSRVDGGAGLERRARATVRLDGIDHRLLAALAEDARMPNNALAARVGIAPSTCLTRVRRLRDEGVIRGFHADVDPALAGRPLQAIIAVRMQGAARSHLPAFARDLARLPGVLDVYLIGGAHDFFVHVTAPDSDVLNDFVIENLSANPGVALTETNLIFQHTRGGWY				NA	NA	NA	NA	NA
AK001_00550	858		COG0596	putative protein	ATGGCCGCGACGCCGCCGCAGCTGGACCGGACCTTCACCTGGCGCGGGCGCGAGATCGCCTGGACGCGCCTCGGCGCGGGCCCGCCGCTGGTGTTCTGCCACGGGACGCCGTGGTCGTCCTGGCTCTGGGCGCCGTACGCGCAGGCCCTGGCCCACGAGTTCACGGTCTACCTGTGGGACATGCCCGGCTACGGGTCCTCGTCGCACCTCCCGGAGCACGACGTGCACCTCGGGGTGCAGGGCGAGGCCTTCGCGGCGCTGCTGGAGCACTGGGAGCAGGAGGCCGGCACCCGGACCGCCGGCTGGCGTCCGCACGTCGTCGCCCACGACTACGGCGGTGCGGTCGCGCTGCGCGCGGCGCTGCTGCACGGTGCCCGGTACCGCTCGCTGTGCCTGGTCGACGTCGTGGCGCTGCGCCCCTGGGGCTCGCCGTTCTTCACCCTCGTGGGTCGGCACGCGGACGTGTTCGCCGCGCTGCCGCCGGCCGTGCACCGCGGTGCGCTGGAGGCCTACGTCCGCAGCGCGGCGTTCCGGCCGCTGGCCGCCGACGACCTGGAGGCGCTGGTCGCGCCGTGGCTCGACGAGGCCGGGCGGGCCGCCTTCTACCGGCAGATCGCCCAGGCCGACGAAGACTGGACGGCGGAGCTCGAGCCGCTGCTGGGGAACCTGGACCTGCCCGTGCACGTCGTGTGGGGCGCCGAGGACACCTGGATCCCGGTCGACCGGGCGCACCGGCTCACCGACGCGCTCGGCGGCGGCCGACCCACGGTGCTGCCCGGGGCCGGGCACCTGGTCCAGCTCGACGCACCGGTCGCCCTGGCGACCGAGCTGCACCGGTGGCTGACGACCGTGCGGTGA	MAATPPQLDRTFTWRGREIAWTRLGAGPPLVFCHGTPWSSWLWAPYAQALAHEFTVYLWDMPGYGSSSHLPEHDVHLGVQGEAFAALLEHWEQEAGTRTAGWRPHVVAHDYGGAVALRAALLHGARYRSLCLVDVVALRPWGSPFFTLVGRHADVFAALPPAVHRGALEAYVRSAAFRPLAADDLEALVAPWLDEAGRAAFYRQIAQADEDWTAELEPLLGNLDLPVHVVWGAEDTWIPVDRAHRLTDALGGGRPTVLPGAGHLVQLDAPVALATELHRWLTTVR				NA	NA	NA	NA	NA
AK001_00551	1029			hypothetical protein	ATGATGACGCAGACTACTCCGCGGGATCCGGACGTCGAGCCCGAGGCCGCGCGATACTCCGCCGACCCGCCGTCGCCGGAGGCCTCCGGGCCGGCCGCTCCCCCGCCACCGGTCACCGCGCGCGACCGCGTGTTCGCCGCGGCCGACGCCCTGCTCGCCGACGACGAGCCCGTCACGGTCAGCACCGTGCGCGAACGGGCCGGCTGCTCCAACGCCACGGCCACCACCCACCTGCGCGCCTGGCGCGAGGCGCGGGCCGCCGCCGAGGCCGACGCGGCGCGGCTGCCCGAGCTGCCGCGGTCGGTGGAGCTGCTCGTCGAGCGGGGCGTGGCCGGGCTGTGGGGTGCGGCCGTGCGTGCGGCGCGCGAGGAGCACACCGCGCAGGCGACCCGGAAGGACGAGGACCTCGCCACCGCACGCGAGGACGCCGACCGGCTCGCCCGCGCGCTGGACACCGCCCGGGACGAGCGCGACGACGCCCGCGCCGCGCTGTCACGGCTGCGCGACCAGACCTCCGACCGGGTGCAGTCGTTGACCGAGCGGCTCGCGCAGGCCGACGACGAGCGCACGCGGGCCGCGGACGCCGCGCACCGGTCCGCGGGTCAGGTCGACGAGCTGCGCGAGACGCTGCAGCAGCTGCGCAGCCAGGCCGAGGAGCCGCGCAGGGACCTGGCCGCCGCCGTGGCGGCACGGACCGACGCGGCCGAGCAGCGTGCCGAGGCGCGGGCCGCGGCCGAGGCCCGGCAGGACGCCCTGGACGAGGCGCGCTCGGCCCTGGAGTCGGTGCGGGCCGACCACCGGCGCGCCGAGGACGAACGGTCGAGCCTGGTCGCCGAGCTGGCGGCGGCCCGTGCCACGGCCGAACGGTCCGCGGCCGAGGTCGGCTCGCTGCGCGAGGAGCTCGCCGCGGCCCGGTCGCGTGCCGAGGAGGCGGTGCACGAGACAGCGGTGCAGACGGCGGCGCGGGCCCGCGCCGAGGGCGAGCTCGCCGGCGTGCGCGCGGCGTCCACCCCCGCGGAGGGGAGCTGA	MMTQTTPRDPDVEPEAARYSADPPSPEASGPAAPPPPVTARDRVFAAADALLADDEPVTVSTVRERAGCSNATATTHLRAWREARAAAEADAARLPELPRSVELLVERGVAGLWGAAVRAAREEHTAQATRKDEDLATAREDADRLARALDTARDERDDARAALSRLRDQTSDRVQSLTERLAQADDERTRAADAAHRSAGQVDELRETLQQLRSQAEEPRRDLAAAVAARTDAAEQRAEARAAAEARQDALDEARSALESVRADHRRAEDERSSLVAELAAARATAERSAAEVGSLREELAAARSRAEEAVHETAVQTAARARAEGELAGVRAASTPAEGS				NA	NA	NA	NA	NA
AK001_00552	1458	xerC_1		Tyrosine recombinase XerC	ATGGCCTACACGGAGAAGCGCACCGGAACCGGCGGCACGACGTCGTACGTGGGGCGCTTCCGGATCGACGGCCGCCTGCGCAGCACCCGGGCGTTCCGGGCCCGGCGCGACGCGCTGGCCGAGGCACGCCGGGCCGAGGAGGCAGGCAAGCGCGGCGACTGGGTCGACCCGAGGTCCGGCATGCTCACCGTGGCCGAGTGGTTCTCCGCGTGGCAGGCCGCCCGCGCGGACCGCGCCCCCCGCACCCTGGAGTCCGAGCGCGAACGGTTCCGCTCCCTGGTCGCCCCCACCTTCGGCGAGGAGCCGCTGCGCCGGGTGTCGCACGACGACGTCGCCCGCTGGGCGGTCGAGATGCGCGGCCCCGGACGCACCGAGCCGGCCTCCTCCGCCCGGCGCCGTGACGCGGTGCGGTTGCTGGTGGCGCTGCTGGACGCGGCGGTGGACGCCCGCCGGCTGACGTCGAACCCGGCGCGCACCCCGTCCGGCCGGGTGCCGTCGCTGCCGCGCGCGCCCAAGACCAAGCCGCACCGGTACCTGTCCCACGAGCAGCTGCGCCGGGTGGCCGACGCGACCACGTCCGCCCAGGCGCGCCCGCTGGTGCTGCTGGCCGGGCTGACCGGGCTGCGCTGGGGCGAGGTCTCGGCGCTGCGCACCGGGGACGTGGACCTGCTGCGCCGTCGTGTCACGGTCGAGCGCGCCTACACCCGCCTGGACGACGGCACCCTGCTGCTCGGCAACACCAAGACCCACGCGCGCCGGGAGGTGCCGGTCCCCCGCGTGCTGGAGCCCGAGCTGGCCGACCGGCTCGGCGGCCGCCCGGGCACCGCGCTGCTGTTCACGGCGCGCGACGGCGGCCCGCTGCGCCGCGAGTCCTTCGACCGGCACGCCTTCCGTCCGGCCGTGCGCGCCGCCGGCGCTGCGGTGAGCACGCTGCAGGAGCTGCTCGGGCTGACCGCGACCGGGATCTACGACACGACGGCCCTGACCGCAGTGCGCCGGGTCCAGGCCGAGCACGAGCTGCCGGTCACCGGGGTCGTGGACCCCGCGACCTGGGCGGTGCTGGTCGCGGCCGACCGCACCCGTCGCGACGGGATGACCCGTGGCGAGAAGATCGCGCGCACCCGTCGCCTCGACGCCGTGGCCCGGGTGACCCTGCGCGCCGGCGCCGAGGACTTCGCCCCGCTGACCCTGCACGACCTGCGGCACACGGCGGCCTCCCTGGCCATCGCCAGCGGCGCGAGCGTCAAGGCCGTCCAGCGCATGCTCGGCCACGAGTCCCCCGTGCTGACGCTGCGTACCTACGCCGGTCTGTTCGAGGACGACCTCGACCGCCTCGGCGAGTCGATGTCCGAGCAGTTCGCGGCGCACGACCCGGCAGACACCGCTCACGATGTGCTCACTGATGGTGCAGAAGCACCTTTTGGCCTGGTCGATCTGACCGCCCGCGTGGCGCGCTGA	MAYTEKRTGTGGTTSYVGRFRIDGRLRSTRAFRARRDALAEARRAEEAGKRGDWVDPRSGMLTVAEWFSAWQAARADRAPRTLESERERFRSLVAPTFGEEPLRRVSHDDVARWAVEMRGPGRTEPASSARRRDAVRLLVALLDAAVDARRLTSNPARTPSGRVPSLPRAPKTKPHRYLSHEQLRRVADATTSAQARPLVLLAGLTGLRWGEVSALRTGDVDLLRRRVTVERAYTRLDDGTLLLGNTKTHARREVPVPRVLEPELADRLGGRPGTALLFTARDGGPLRRESFDRHAFRPAVRAAGAAVSTLQELLGLTATGIYDTTALTAVRRVQAEHELPVTGVVDPATWAVLVAADRTRRDGMTRGEKIARTRRLDAVARVTLRAGAEDFAPLTLHDLRHTAASLAIASGASVKAVQRMLGHESPVLTLRTYAGLFEDDLDRLGESMSEQFAAHDPADTAHDVLTDGAEAPFGLVDLTARVAR				NA	NA	NA	NA	NA
AK001_00553	498	ysnE		putative N-acetyltransferase YsnE	ATGAACATCGCCGTCGACTCCCCCGCCCGCGACGACGTCCGTGCCCTGCTGGACGAGCACCTGACCGAGATGCGCGCCACTTCGCCCGAGGAGTCCGTCCACGCCCTCGCCCCGGCGGCGCTCACAGCCCCCACCATCACGTTCCTCACCGCCCGCAGCGACGAGACCGGCGCCCTGCTGGGGTGCGGGGCCCTCAGCGAGCTCGCCCCGGGCCCGGGCGGGCACGGCGAGATCAAGTCGATGCGCACCGCCCGGAGCGCTCGAGGGCTCGGAGTCGCCACCCGGCTGCTGGGCGAGCTGCTCGCCCTGGCCGCCGAGCGCGGCTACGAACGGGTGAGCCTGGAGACCGGCTCGGAGCAGTTCTTCGCCCCGGCACGGCGGATCTACACCCGCCACGGGTTCGTCGAGTGCGAGCCGTTCGCCGACTACGTGCCCGATCCGAACAGCGTTTTCATGACGTTCGCCTTGCCTGTCCCGCCTCCTGAGGGCGATCGCTGA	MNIAVDSPARDDVRALLDEHLTEMRATSPEESVHALAPAALTAPTITFLTARSDETGALLGCGALSELAPGPGGHGEIKSMRTARSARGLGVATRLLGELLALAAERGYERVSLETGSEQFFAPARRIYTRHGFVECEPFADYVPDPNSVFMTFALPVPPPEGDR	PGPT0007180_28	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829	NA	NA
AK001_00554	792			Tropinesterase	ATGCTGCTCGCCCACGACATCGCCGGTACCGGCCCGCACGTCGTCCTGCTGCACGCCGGCGTCGCCGACCGGAACATGTGGGACCCCGTCATGCACGGGCTGACCCAGGTCTTCCGCGTGCTGCGCCCCGACCTGCGGGGGTTCGGCGAGACTCCGCTGCCCGCCGAGGACTACGTCGACGCCGACGACGTCGCCGAGGTCATGGACGCCTGCGGCATGGACGACGCCGTCGTGGTCGGCAACAGCCTCGGCGGACGCGTCGCTCTCGAGCTCGCTACCCGCCACCCCGCCCGCGTGCGCGAGCTCGTGCTGCTCTCGCCGGCCTACCCCGACCTGCCGCCCAGCGACGCCCTGCACGACTTCATCGCCCGCGAGGAGACCCTGCTCGACGACGGCGACCTCGAGGCCGCCGTCGCGCTCAACGTCGACACCTGGCTCGGGCCCGCCGCCGACGACGACACCCGGGCCGCGCTGGCACGCATGCAGCACCGTGCCTTCGACATCCAGCTCGCCGCCGAGGCCGATGCCGACGTCCGTGGTGCCGCGGTCGGTACACCCCGGCCCGTGCCGATCGACCTCGACCAGATCCACGTGCCCACCCTGGTCGTCTCCGGTGCCCACGACCTCGACCACTTCCGCGCCGTCGCCGAGCGCCTCGTGGCCGCCCTGCCCAGCGCCGAGCACCTCGACCTCGACTGGGCGGGCCACCTGCCCACCCTGGAGAACCCCGACGCCATCGAGCCGCTCCTGCTCGACGTGCTGCGCGACGACCCCACCGTGCACGCACCGTGA	MLLAHDIAGTGPHVVLLHAGVADRNMWDPVMHGLTQVFRVLRPDLRGFGETPLPAEDYVDADDVAEVMDACGMDDAVVVGNSLGGRVALELATRHPARVRELVLLSPAYPDLPPSDALHDFIAREETLLDDGDLEAAVALNVDTWLGPAADDDTRAALARMQHRAFDIQLAAEADADVRGAAVGTPRPVPIDLDQIHVPTLVVSGAHDLDHFRAVAERLVAALPSAEHLDLDWAGHLPTLENPDAIEPLLLDVLRDDPTVHAP	PGPT0004995_2081	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055	NA	NA
AK001_00555	1026			hypothetical protein	ATGGACATGAAGCACATCGGTTTCCTGTCCTTCGGTCACTGGACCGACCACCCGTCCTCGGCCACCCGCAGCGCGGCGGACGTGCTGCACCAGTCGATCGAGCTGGCCGAGGCCGCCGAGGAGCTCGGGGCCGACGGCGCCTACTTCCGGGTGCACCACTTCGCACGACAGCTGGGCAGCCCGTTCCCGCTGCTGGCCGCGGTCGGGGCGCGCACGCGCCGGATCGAGATCGGCACGGGCGTGATCGACATGCGCTACGAGAACCCGGCCTACATGACCGAGGACGCCGGCGCGGCGGACCTCATCGCCGGCGGGCGTCTGCAGCTCGGCATCTCGCGCGGCAGCCCGGAGCAGGTGATCGAGGGCTACCGGCACTTCGACCACGTCCCGGCCGCGGGGGAGTCGGACGCGGACATGGCGCGCCGGCACACCGCGCGGTTCCTGGAGCTGCTGACGGGCGAGGGGTTCGCCGAGCCGAACCCGCGTCCGATGTTCCCCAACCCGCCGGGCCTGCTGCGCCTGGAGCCGCACTCCCCGGGCCTGCGCGAGCGCATCTGGTGGGGTGCGGGTTCGCGGGCGACGGCCGAGTGGGCCGCGACCCAGGGGATGAACCTCATGAGCTCGACGCTGCTGACCGAGGACACGGGGGTGCCGTTCCACGAGCTGCAGGCCGAGCAGATCCAGCGGTTCCGCGACGCGTGGGCGGCGGCCGGTCACGCGCACACCCCGCGGGTGTCGGTGTCCCGGTCGGTGTTCCCGATCACCGACGACCGCGACCGTGCCTACTTCGGCACGGCGACCGGCTCGACGGACCAGGTGGGCATGCTCGACGGCGGCCGGGCTCGGTTCGGCAAGACCTACGCCGGCGAGGTCGACCAGATCGTGGCCGACCTGGCCGAGGACTCGGCCGTCGCGGCGGCGGACACGCTGCTGCTGACGGTGCCGAACCAGCTCGGGGTGGACTACAACGCTCACGTCATCGAGAACGTGGTGCGGCACGTGGCCCCGCAGCTCGGCTGGCGCTGA	MDMKHIGFLSFGHWTDHPSSATRSAADVLHQSIELAEAAEELGADGAYFRVHHFARQLGSPFPLLAAVGARTRRIEIGTGVIDMRYENPAYMTEDAGAADLIAGGRLQLGISRGSPEQVIEGYRHFDHVPAAGESDADMARRHTARFLELLTGEGFAEPNPRPMFPNPPGLLRLEPHSPGLRERIWWGAGSRATAEWAATQGMNLMSSTLLTEDTGVPFHELQAEQIQRFRDAWAAAGHAHTPRVSVSRSVFPITDDRDRAYFGTATGSTDQVGMLDGGRARFGKTYAGEVDQIVADLAEDSAVAAADTLLLTVPNQLGVDYNAHVIENVVRHVAPQLGWR				NA	NA	NA	NA	NA
AK001_00556	1029	cdhR_1	COG4977	HTH-type transcriptional regulator CdhR	ATGTCCGTCCAGCCGGGATCCGGTCCCGCCCGCCGGGCCGACGCCGTCTCCCGGCCCCACCGCGTCGCCGTGCTGGTCCGTCCCGGAGTGATGCCGCTCGAGCTCGGCCTGTGCCACCAGCTGTTCGGCCGGGCCCGCGACGCGGACGGCCGCGCGCTGTACACCGTGACCACGTGCGCGCCCGCACCCGGTCCCGTGCCGACCGACGCCGACTTCACGGTGGACGTCGCCGCCGGGCCGGAGGCGCTGGCAGCGGCGGACACCGTCGTCGTGCTCGCCTCGCACGCCCCGGGCGAGACCGAGACCACCGGCACGCTGGGCCCCGACCTGGCCGCCGCCTGGGACCGGGTGCGACCCGGTGCGCGGCTGGCCTCGATCTGCACCGGCGCGTACGTGCTCGCCGCCGCCGGCGTCCTGGACGGCCGGCGCGCCACGACGCACTGGAACTCCGCCGCCGACCTGGCGCGCCGCTTCCCCGCGGTGCAGGTCGACCCCGACGTGCTGTTCGTCGACACCGGCGACGTGCTCACCTCGGCCGGCGAGGCGGCCGGCATCGACCTGTGCCTGCACCTGATCCGGCGCGACCACGGCGCGGCGGTGGCCAACGACGTCGCCCGTGCCGCCGTCGTGCCGCCGTACCGCGAGGGCGGGCAGGCGCAGTACATCCCGCGCCACGCCGCCTCCCCGCACGGGCCGGTGACCGCGGCGGCGCGCGCCTGGGCGCTGGAGCACCTCGACCAGGACCTCTCGCTGGCCGCCTGGGCCGATGCCCAGGCGCTGAGCGTGCGGACCCTGACCCGCCGCTTCGCCCAGGAGACCGGGCTGTCCCCGTGGCAGTGGCTGACGGCCCAGCGCGTGGCGCGCGCCCGCGAGCTCCTGGAGAGCACCGACCTGTCCGTGGACCGGGTGGCGGCCCAGGTCGGGTTCGGCACGGCGGTGTCCCTGCGCACCCACCTGCACGAGCGCCTCGGGGTGACGCCGTCGGCCTACCGGGCCACGTTCCGCGGCCCGGCGGCCAAGTCGTCCTGA	MSVQPGSGPARRADAVSRPHRVAVLVRPGVMPLELGLCHQLFGRARDADGRALYTVTTCAPAPGPVPTDADFTVDVAAGPEALAAADTVVVLASHAPGETETTGTLGPDLAAAWDRVRPGARLASICTGAYVLAAAGVLDGRRATTHWNSAADLARRFPAVQVDPDVLFVDTGDVLTSAGEAAGIDLCLHLIRRDHGAAVANDVARAAVVPPYREGGQAQYIPRHAASPHGPVTAAARAWALEHLDQDLSLAAWADAQALSVRTLTRRFAQETGLSPWQWLTAQRVARARELLESTDLSVDRVAAQVGFGTAVSLRTHLHERLGVTPSAYRATFRGPAAKSS	PGPT0014658_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
AK001_00557	1296			L-lactate transporter	GTGACCCGCGCGGTGGTCGTGGCCGCCACCGCGTTCGTGGTCATCGTCTGCGCCGGGGTGTTCGTCGGCCTGCCCAACCTGCTCGTGGGCCCGCTGCACGACGAGCTCGGCTGGTCCTACGGCACGATCTCGGTCGCGATCGCGGTCCACACCGTGCTGTACGGGCTCACCGCGCCGTTCGCCGCGGCGGCGACGGACCGCCTGGGCGTACGCCGTGTCGCCGTGGTGGCGCTGCTGCTCGTAGCCGGCGGGGCCGCCGCGACCACGGCCGTGACCGCCCCGTGGCAGCTCGTGCTGACCTGGGGTGTGCTGGTGGGCCTGGGATGCGGCGCGATCGCCACCGCCTTCGGCGCGCTGGTGGCCGAGCGGTGGTTCACCCGGCACCGGGGGCTGGTCACCGGCCTGCTGACGTCGGGGACGATGGTCGGCGGCATGGTGCTGCTGCCGGTGCTGGCCGGGCTGACCACGACGGCGGGCTGGCGGGCGGCGACCTGGGTCGCCGCCGGCGCTGCCGGGGTGGTGGCGCTGGCCGCTGCCGGCCTGCTGCGCGACCGGCCCGGAGCCGACCGCCCCGATCGCCGCGCCTCGGTGGGGGCGCCGTCGGCGGCCGCGTCGGCGCCCCGGGCGGCGGACCCGGCCCCGGGTGCCGTGCGCCGCAGCCTGGCCGCGCTGGCGCGCCTGGCACGCACGGGTCCGTTCTGGCTCGTGGTGGTCACCTTCGCGGTGTGCGGGGCCTCGACCAACGGGGTGATGATGAGCCACTTCGTGCCGGCGGCCGCCGACGTCGGGCTCGGCCCCGCGCTCGCCTCGACGCTGCTGGCGGTGATGGGGGCGGTCAACGTGGCCGGCACGGTCGCGGCCGGGTGGGGCACCGACCGGGTGGACCCGCGCCTGCTGCTCACGGGCACCTACGCCCTGCGGGCGGTGAGCCTGGCGGCGCTGCCCGTGCTGCTCGGGCCGGACCTCACCCCCGCGCTGGTGGTCTTCGCCGTCTCCTTCGGCCTGCTGGACCTGGCCACCGTGCCGCCCACGGTCGCGCTGTGCCGCGAGTACTTCGGCCTCGACGGCGCCGTGGTGTTCGCCTGGCTGACCGGAGCCCACCAGGTCGGGGCCGCCGGGGCCGCGCTGGGCGCCGGCGTCGTGCGCGACCTGACGGGGTCCTACGCCCCGGCGTTCGTCGCCGTGGCGGTCCTGTGCGCCCTGGCGGCGGCCGCCAGCGCGCTGATCCGGCGTCAGCCGACGGCCCCGGCCGCCTCCTCGTCCGCGAGCGCCGCGGCGATCATCCGGTGCCCCTGA	MTRAVVVAATAFVVIVCAGVFVGLPNLLVGPLHDELGWSYGTISVAIAVHTVLYGLTAPFAAAATDRLGVRRVAVVALLLVAGGAAATTAVTAPWQLVLTWGVLVGLGCGAIATAFGALVAERWFTRHRGLVTGLLTSGTMVGGMVLLPVLAGLTTTAGWRAATWVAAGAAGVVALAAAGLLRDRPGADRPDRRASVGAPSAAASAPRAADPAPGAVRRSLAALARLARTGPFWLVVVTFAVCGASTNGVMMSHFVPAAADVGLGPALASTLLAVMGAVNVAGTVAAGWGTDRVDPRLLLTGTYALRAVSLAALPVLLGPDLTPALVVFAVSFGLLDLATVPPTVALCREYFGLDGAVVFAWLTGAHQVGAAGAALGAGVVRDLTGSYAPAFVAVAVLCALAAAASALIRRQPTAPAASSSASAAAIIRCP				NA	NA	NA	NA	NA
AK001_00558	903			hypothetical protein	GTGACGTGCCAGCAGCAGGACCTCGACACCGCCGTGCACGAGCTCGTGGCCGCGTGGCTCGGGCCCGTCCGCGTCGTGGCCGAGCACTCCTCGGGCCTGCTCGGGACCCGCGTGTGGCAGGTCCGGGCCGACGACGGCACCCGGGCGGCCGTCAAGCGCTACGCCGGCGCCGACCGCCACTTCGAGCGCGAGCTGTCCGCGCACACCCAGGTCCTGGCCGACATGACTGGCCGGGCCAGCCACGCCGACCAGGCCGACCAGGACCGCTTCCCGCGGCTGCTCGGCGCCGACCGCGACCACCGCCTGCTCGCGCTCGCCTGGCTCCCGGGACGCCTCGTCGAGCACCAGCCGGCCGAGGAGCAGCCCGACACCTACCGGCAGGCCGGGACGCTGCTGGCCCGGCTGCACGCGGCCGGCTCGCGCGTGGACGGCGACTGGGAGGCGGCCGAGCACTCCCGCGCCCTGGAGCTGCTCGCGGCCGAGCACCGCATCGCCCCGGCGACCGTCGCCCGCCTGCGGGCGGCCCTGGCCCGGCACGAGCACCCGCCGGTCCGGGTGGTGCCCACCCACGGCGACTTCCACCCGCGCAACTGGGTCGTCGACGACGCCGGGACCGTGCGTCTGATCGACTTCGGGCGCCACGCCTGGCGTCCGCCCGTCACCGACCTGGCGCACCTGGACGCCCAGCAGCTCGCCAGCCGGCCGGACCTGACCGCCGCCTTCGTCGCCGGCTACGGCACCGACCCCCGCCGCGGGCCCGGCTGGCGGCGCGTGCGCCTGCGCGAGGCGATCGCCGCAGCGGTCTGGTCCCACCGGGTCGGGGCCTCGTCGCTGGAGGCTCAGGGGCACCGGATGATCGCCGCGGCGCTCGCGGACGAGGAGGCGGCCGGGGCCGTCGGCTGA	MTCQQQDLDTAVHELVAAWLGPVRVVAEHSSGLLGTRVWQVRADDGTRAAVKRYAGADRHFERELSAHTQVLADMTGRASHADQADQDRFPRLLGADRDHRLLALAWLPGRLVEHQPAEEQPDTYRQAGTLLARLHAAGSRVDGDWEAAEHSRALELLAAEHRIAPATVARLRAALARHEHPPVRVVPTHGDFHPRNWVVDDAGTVRLIDFGRHAWRPPVTDLAHLDAQQLASRPDLTAAFVAGYGTDPRRGPGWRRVRLREAIAAAVWSHRVGASSLEAQGHRMIAAALADEEAAGAVG				NA	NA	NA	NA	NA
AK001_00559	1386			NAD-dependent malic enzyme	GTGGCACTGCCCAGCCCCAGCTACACCATCACCCTGCGCGTGCAGGTCCCGGCCTCCCAGCGGGCCTCGAGCACCGTCGTGGCGGCCGTGGCCGACACCGGTGCGGCGGTCACCGGCGTGGACATCGCGCACTCGACCTCGCACGGGCTGGTGGTGGACGTGACCTGCGACACCGTCGACGCCGAGCACGGCGAGCGGGTGGCGGCGGCGCTGGAGGAGATCGAGGGCGTGCACGTGCTCAAGTGGTCGGACTCGACGTTCCTGCTGCACCTGGGCGGCAAGATCGAGGTGGCGCTGAAGTCGCCGATCAAGACCCGCCGGGACCTGTCGCGGGCCTACACCCCCGGGGTGGCGCGGGTGTGCACCGCGATCGCGGACAACCCCGACGACGCGCGCCGGCTGACGATCAAGCGCAACACGGTCGCCGTCGTCACCGACGGCACCGCGGTGCTGGGCCTGGGCGACATCGGCCCGGCCGCGGCGCTGCCGGTGATGGAGGGCAAGGCGGCGCTGTTCAAGCAGTTCGCGGGGGTCGATGCCTGGCCGGTGTGCCTGGACACCACCGACACCGACGAGATCGTCGCGATCGTCAAGGCGATCGCCCCGGTGTACGGGGGAGTCAACCTCGAGGACATCGCCGCCCCGCGCTGCTTCGAGATCGAGGCGCGCCTGCGCGCCGAGCTGGACATCCCGGTGTTCCACGACGACCAGCACGGCACCGCGATCGTGGTGCTGGCCGCCCTGGTCAACGCGCTGAAGGTGGTGGGCAAGGACATCTCGCGGGTGCGCATCGTCGTCTCCGGCGTGGGCGCGGCCGGCAACGCGATCGTGCGGCTGCTGCGCGCCCAGGGCGCCGAGCACATCGTCGCCTTCGGCCGCTCCGGCGCGCTGCGCCCCGGCGCGCCGCAGGACGACCCGCACCGCACCTGGATCGCCGAGCACACCAACCCCGAGGGCTTCACCGGCACGCTGCGCGAGGGCCTGGTGGGCGCCGACGTGTTCGTCGGCGTCTCGGCGGGCGACATCCTCACCGGGGCCGACGTGGCCCGCATGGCCGACGACGCGATCGTGTTCGCGCTGGCCAACCCCACCCCGGAGGTGGACCCCGTCGAGGCCTCGGAGCACGCGGCGGTGGTGGCCACCGGCCGCAGCGACCACCCCAACCAGATCAACAACGTGCTGGCCTTCCCGGGGCTGTTCCGCGGGCTGCTGGACTCCGGGGCGACCGAGATCACCGACGAGCTGATGCGGGTCGCGGCGCTGGCGATCGCCGGGGTGGTGGCCGACGACGAGCTCAACAGCGCGTTCGTCATCCCCGGCGTGTTCGACCACCGCGTGGCCGAGGCGGTGGCCGAGGCGGTGCGCACGGTCACCGGGCAGGACTGA	MALPSPSYTITLRVQVPASQRASSTVVAAVADTGAAVTGVDIAHSTSHGLVVDVTCDTVDAEHGERVAAALEEIEGVHVLKWSDSTFLLHLGGKIEVALKSPIKTRRDLSRAYTPGVARVCTAIADNPDDARRLTIKRNTVAVVTDGTAVLGLGDIGPAAALPVMEGKAALFKQFAGVDAWPVCLDTTDTDEIVAIVKAIAPVYGGVNLEDIAAPRCFEIEARLRAELDIPVFHDDQHGTAIVVLAALVNALKVVGKDISRVRIVVSGVGAAGNAIVRLLRAQGAEHIVAFGRSGALRPGAPQDDPHRTWIAEHTNPEGFTGTLREGLVGADVFVGVSAGDILTGADVARMADDAIVFALANPTPEVDPVEASEHAAVVATGRSDHPNQINNVLAFPGLFRGLLDSGATEITDELMRVAALAIAGVVADDELNSAFVIPGVFDHRVAEAVAEAVRTVTGQD	PGPT0001350_1776	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027	NA	NA
AK001_00560	1152			hypothetical protein	ATGACTTCCTCGACCCGTTCGCGCCGCCTGGTCGCGGCGTCCGCCACCGGCGCCGTCGCCGTGGGCCTGTGCGCCGCGGCCACCGCCCCGGCCGCCGCCGCCGAGCACGAGCTGGAGGAGATCCTCGTGGTCGGCAAGACCCTGGGGTTCCGGCACTCGCACATCGACGAGACCACCCACGCCCTGATCGACCTCGGCGCCGAGCACGGCTTCGACGTCGACGTGTGGGACCCGCCCAACGACTCCGGCGGCTGGTGGGGCCCCGGCTCGCCCGGCCAGCCCGACCTGACGATGGACACCACCCCGTTCACCACCGCCGCCGACCTCGAGCAGTACGACTCGATCGTGTTCGTCTCCCCGGTGGACAACACCAACAACCTCGACCCCGACCAGCCGCGCCTGCTCGACGACGCCGAGCTCGCCGCGCTGCAGGGCTACGTCCACGACGGCGGCGGCGTGGTGGGCATCCACGCCGCCACCGACACGATGCACACCTCGAGCTGGTTCACCGACCTCATCGGCGGCGGGGCGCGGTTCGCCGGGCACCCCCAGCAGCAGACCGCCACCATGCGCGTGGAGAACCCGGCGCACCCGTCCATGGTCGACGTGCCCACCGCCTGGGAGCGCTGGGACGAGTGGTACAACTACACGCTCAACCCCCGCGGGGAGGTCCAGGTGCTGATGACCCTGGACGAGTCCACCTACGACGGCGGCAGCATGGGCGCCGACCACCCGATCGCCTGGTGCCAGAACTTCGAGGGCGGGCGCTCCTGGCACCAGGGCGCCGGGCACGTCGACGAGTCCTGGTCCGACCCGACCTTCCTGACCTCGGTGCTGCGCGGCATCCGCTGGACCGCCGGCACCGTCAGCGGCGGCGGGGACTGCGTCACCTTCGGCGAGGTCGACGCGCTGGTGGCCGAGCTGCCCGCCGACACGGCCCGCGACCGGGTCGCGCTGGCCCAGCTCGAGCAGCGCCTGGACACCGCGCGCGAGCACGCCGAGGCCGGCGAGCACGACGCCGCCGTGCGCACCCTGCGCCCCGCCCGCGCCCTGGCCGGCGCCCTGGTCGCCGACGACGCCGCGGCCGAGCACCTGGCCGGCAAGGTCGCCGACCTGATCACCTGGCAGCAGGCCGTGGCCACCACGTCCTGA	MTSSTRSRRLVAASATGAVAVGLCAAATAPAAAAEHELEEILVVGKTLGFRHSHIDETTHALIDLGAEHGFDVDVWDPPNDSGGWWGPGSPGQPDLTMDTTPFTTAADLEQYDSIVFVSPVDNTNNLDPDQPRLLDDAELAALQGYVHDGGGVVGIHAATDTMHTSSWFTDLIGGGARFAGHPQQQTATMRVENPAHPSMVDVPTAWERWDEWYNYTLNPRGEVQVLMTLDESTYDGGSMGADHPIAWCQNFEGGRSWHQGAGHVDESWSDPTFLTSVLRGIRWTAGTVSGGGDCVTFGEVDALVAELPADTARDRVALAQLEQRLDTAREHAEAGEHDAAVRTLRPARALAGALVADDAAAEHLAGKVADLITWQQAVATTS	PGPT0004005_15	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738	NA	NA
AK001_00561	969			hypothetical protein	ATGTCCGACGCCGCCCCGTCCCACCCGTGGCTGCTGTTCGCCATCACCCCGCCGCGGCGGTCCACCGAGCCGGCCGAGGCCCGCCGCATCGCCGAGCGCACCTGCGCTCGCCTGCGCGACCTGGACCTGGACGCGCTGGTGATCTACGACATCGACGACGAGTCCGACCGCAACCCGCACGAGCGGCCCTTCCCCTACCTGCCCACCCTCGACCCGGGGGACTTCGCCGAGGAGCACCTGGGCTCCTGGGACCGGCCGGTGATCGTCTACCGCAGCGCCGGCAAGCACGACCCGCGGGCGCTGGCGGACTGGTTCGCCGCCCAGGACGCCCGCCGCGTGCGCACGGTGCTGGTGGGGGCCTCCTCCTCGGACAGCGCGGTGCGCACCACGCTGCCCGAGGCCTGGCGGCTGCGCCGCGAGCACGCGCCGGACCTGGCCACCGGCGGGGTGGCGATCCCCGAGCGGCACGCCTCGCGCGGGGGAGAGCACGAGCGCATGCGCGCCAAGCAGGCGGCCGGGGCGAGCTTCTTCGTCACCCAGGTCGTCTACGACGTCGGGGCGGCCAAGTCGATGGTCTCGGACTACCACTACGCCTGCGGCGACGCGGGCAGCACGACGGTGCCGGTGGTGTTCACGCTGTCGGTGTGCGGCTCGGAGCGCACCCTGGCCTTCCTGGAGTGGCTGGGGGTGCACGTGCCGACCTGGATGCGCAACGACCTGCGGCACACCGACGACCCGCTGGCCACCAGCTACGACCAGTGCGTGGCGATCGCCGAGGACCTGGCCCAGTTCTGCACGCGGCACCGGATCCCGTTCGGGTTCAACGTGGAGTCGGTCTCCATCCGGCGCGCCGAGATCGAGGCGTCGGTGCGCCTGGCCGCGCACCTGCGCGACCGCCTCGGCGCGGGGGACGGGGCTCAGGCGGCGGCGGCCAGCGCCGCCAGCACGCCGGGCCAGCCACGGTCGTAG	MSDAAPSHPWLLFAITPPRRSTEPAEARRIAERTCARLRDLDLDALVIYDIDDESDRNPHERPFPYLPTLDPGDFAEEHLGSWDRPVIVYRSAGKHDPRALADWFAAQDARRVRTVLVGASSSDSAVRTTLPEAWRLRREHAPDLATGGVAIPERHASRGGEHERMRAKQAAGASFFVTQVVYDVGAAKSMVSDYHYACGDAGSTTVPVVFTLSVCGSERTLAFLEWLGVHVPTWMRNDLRHTDDPLATSYDQCVAIAEDLAQFCTRHRIPFGFNVESVSIRRAEIEASVRLAAHLRDRLGAGDGAQAAAASAASTPGQPRS				NA	NA	NA	NA	NA
AK001_00562	426			hypothetical protein	ATGAACGTCGAACCCGTCGTGTGCCAGGTCGTCGTGCCCTGCCCACCGGCACGGGCCCACCGCCTGTTCGTCGACGACATCGGTACCTGGTGGCCGCTGGGCGAGCACGGCGTCTTCGGCGCGGGCGGCACCGTGACGGTGACCGAGGGGCGCATCGTCGAGACCGGCCCGGACGGGCGCACCGCCGTGTGGGGCACGCTCACCGACGTCGCCGAGCCCGGCCTGCTGGCCTTCACCTGGCACCCCGGCGCCGACCCCGAGGCCGCGACCCACGTCCGGGTCACCTTCGCCGACGACGGCGCCGGGGGCACGCGGGTCGAGCTCGTGCACACCGGATGGCCGGCGCACCGGGACCCCCGCGCCGCGCGGGAGGCCTACGACCGTGGCTGGCCCGGCGTGCTGGCGGCGCTGGCCGCCGCCGCCTGA	MNVEPVVCQVVVPCPPARAHRLFVDDIGTWWPLGEHGVFGAGGTVTVTEGRIVETGPDGRTAVWGTLTDVAEPGLLAFTWHPGADPEAATHVRVTFADDGAGGTRVELVHTGWPAHRDPRAAREAYDRGWPGVLAALAAAA				NA	NA	NA	NA	NA
AK001_00563	339		COG0640	HTH-type transcriptional regulator	ATGAGCAACCTTGTGTCCGCCCACGCCGTGCTCGACGCCCTCGGAGACCCGACCCGTCGGCAGATCGTCGAGCGCCTGGGCCACGGCCCCCGTCCGGTGGGCGCGCTGGCCGACGCGCTGCCCGTGGGGCGGCCCGCCGTCAGCAAGCACCTGCGCGTGCTGGCCGACGCCGGGCTGGTGCGGCACACCGCCGTGGGCACGCGGCACCTGTACTCCCTGGCGCCGGCGGGCCGCGACGCCGTCCAGGCGTGGCTGGCCGAGCAGTGGGGCGAGGTCCTGGGGGCCTTCGCCGGGCACGTCGAGACCCTCGAGCACGTCGAGCAGCGGAGGTCACCATGA	MSNLVSAHAVLDALGDPTRRQIVERLGHGPRPVGALADALPVGRPAVSKHLRVLADAGLVRHTAVGTRHLYSLAPAGRDAVQAWLAEQWGEVLGAFAGHVETLEHVEQRRSP				NA	NA	NA	NA	NA
AK001_00564	1029	adh_1		Alcohol dehydrogenase	ATGAGCATGAAGGCAGCCGTCGTCACCCAGTTCGCCGCGCCGTTGGAGATCACCGACGTCGCCCTGCCGGAGCCCGGTCCCGGCCAGGCGCTGGTCAAGGTCCTGTACTCCGGCGTGTGCCACACCGACCTGCACGCCGCCCACGGCGACTGGCCGGTCAAGCCCGCCCCGCCGTTCGTGCCCGGCCACGAGGGCGTCGGCGAGGTCGTCGCCGTGGCCGACGACGTCACCCGCCTGGCCGTGGGCGACACCGTCGGCAACGCCTGGCTGTGGAGCGCGTGCGGCGAGTGCGAGTTCTGCGAGACCGGCCGCGAGACCCTGTGCCCGCACCAGACCAACGGCGGCTACAGCGTCGACGGCTCCTTCGGCCAGTACATGCTGGTCGACGCGCGCTTCGCCCCGATCATCCCCGCCGGCGTCGACCTGGCCGCCGCCGCCCCGATCCTGTGCGCCGGGGTCACGGTGTACAAGGGCCTCAAGCAGTCCGAGGTCAGGCCCGGCCAGTGGGTCCTCGTCTCCGGCATCGGCGGACTGGGCCACATCGCCGTGCAGTACGCGCGCGCCATGGGCATGCGGGTCGTGGCCGTCGACGTCGCCGACGACAAGCTCGCCCTGGCCCGCCGGCACGGCGCCGAGGCCACCGTCAACGCCGCCACCGAGCCCGACGTCACCGCCAGGATCCAGGAGGTCACCGGCGGGGGAGCGCACGGCGGTCTCGTCACCGCCGTGGCCGGCCGCGCCTTCGGCCAGGCCGTCGGCGGGCTGCGCCGCGGCGGCACCGTGTCCCTGGTGGGCCTGCCGCCGGAGGAGTTCGGCCTGGACATCTTCTCCACCGTGCTGTTCGGCCTGACCGTGCGCGGCTCCATCGTCGGCACCCGCGCCGACATGGCCGAGGCGCTGGACTTCTTCGCCCGCGGCGAGGTCGACCCGACCTACACGGTGCGCCCCCTGGGCGACATCAACGAGATCTTCGACGAGATGCTGGCCGGCGCCATCGACGGCCGCGTCGTGATGGACATGCGCGACTGA	MSMKAAVVTQFAAPLEITDVALPEPGPGQALVKVLYSGVCHTDLHAAHGDWPVKPAPPFVPGHEGVGEVVAVADDVTRLAVGDTVGNAWLWSACGECEFCETGRETLCPHQTNGGYSVDGSFGQYMLVDARFAPIIPAGVDLAAAAPILCAGVTVYKGLKQSEVRPGQWVLVSGIGGLGHIAVQYARAMGMRVVAVDVADDKLALARRHGAEATVNAATEPDVTARIQEVTGGGAHGGLVTAVAGRAFGQAVGGLRRGGTVSLVGLPPEEFGLDIFSTVLFGLTVRGSIVGTRADMAEALDFFARGEVDPTYTVRPLGDINEIFDEMLAGAIDGRVVMDMRD	PGPT0006365_1649	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953	NA	NA
AK001_00565	639			hypothetical protein	ATGACCACGCCGCCCGCGCCCGCCGACCAGCCGACCGCCCCCACCGCCGTCAAGCACACCCCGTTCGAGGACGCCCTCGGCATCCTGACCGGCACCTTCGTGGTCTCCCTCGGACTGTTCCTGCTCGAGTCCGTCTCGGCCGTCACCGGCGGCACCGCCGGACTGTCGCTGCTGGTCAGCTACGTCGCCCCGCTGCCCTTCGCCGTGCTGTTCGCCGCGGTGAACCTGCCGTTCTTCCTGCTGGCGATCACCAAGAAGGGCTGGAGCTTCACCCTGCGCACCGGCGCCGCCATCGCCCTGGTCTCCGGCTTCTCCGTGCTGCACCCGGCCGTGTTCGGCACCGTGGACCTGCCACCGCTGTACGGCGTCCTGGCCGGCAACGCCCTGGCCGGGGTCGGCCTGCTCATCCTGTTCCGGCACCGCTCCAGCCTCGGCGGGTTCAACATCGTCGCCCTCATCGCCCAGGAGCGCCTCGGCTGGCGCGCCGGGTACGTCCAGATGGCCCTGGACACCGCCGTCGTGCTGGCCGCCTTCGCCGTCGTGCCGGCCACCACCGTGCTGGTGTCCGCCCTCGGCGCCGTGCTGCTCAACCTCGTGCTGGCCATGAACCACCGTCCCGGGCGCTACACCGGCTACTGA	MTTPPAPADQPTAPTAVKHTPFEDALGILTGTFVVSLGLFLLESVSAVTGGTAGLSLLVSYVAPLPFAVLFAAVNLPFFLLAITKKGWSFTLRTGAAIALVSGFSVLHPAVFGTVDLPPLYGVLAGNALAGVGLLILFRHRSSLGGFNIVALIAQERLGWRAGYVQMALDTAVVLAAFAVVPATTVLVSALGAVLLNLVLAMNHRPGRYTGY				NA	NA	NA	NA	NA
AK001_00566	183			hypothetical protein	ATGACCCGCCGCGCCGCTGAGGAGCACCTGGCCGACCTCGCGCTGCTGCGCCGCGTGCGCGACCGCATCGACCGCGACCACGCCCAGCCGCTGGACGTGCCGGCGCTCGCGGCCGGGGTGGGCATGTCGGCGGGGCACCTGTCGCGCCGGTTCAAGGAGACCTACGGGGCTCATCCGATCTGA	MTRRAAEEHLADLALLRRVRDRIDRDHAQPLDVPALAAGVGMSAGHLSRRFKETYGAHPI				NA	NA	NA	NA	NA
AK001_00567	2244			hypothetical protein	ATGACGATCACGCCCGAGTCCCGCCCGCAGCTTCCCGTGGTGGCCATGCCCCACTACGCCCGGGGCAAGCGTGCCGCGGCGACCTGCCACTTCAAGTGCGCCGACGCCTGCGCGCACCCCGCGCCGAACCTCAGCGCCAACGAGTACTTCCGTGACGTGGCCTCGCGGGCCCTGAGCCGCCGCGTGATGCTGGGCGGTGCCGCCGCCGCGGCCGCCGCCGTCGTCGTCGGCGCCCAGGTCATCGGTGCCCAGTCCGCCGCGGCCGCCCCCGTCGCCGGCAAGAAGCCGGTCAAGGGCCTCGCGTTCGGCGCCATCGCCGCGCAGCCCATGGAGCAGGACGACGTCATCGTGCCCGAGGGCTACGCGTGGTCGCCGATCATCCGGTGGGGCGACCCGATCCTGCCGGGCGGACGCGCCTTCGACCCCGCGCACCAGACCCCCGAGCAGCAGGCCAAGCAGTTCGGCTACAACTGCGACTACCTGGACATCCTGCCCGAGGACCCGAAGCACATCCGGTCCATGGTGGAGACCCGCCGTGGCACGAAGGGTGTGCTCGTGTCCAACCACGAGTACACCAACCCGCACATCATGTTCGACGCCTCGTACGACGACGTCACGCGGCGGGCGATCGAGCGGGCCGCGCACGGCATGTCCGTGGTCGAGGTGACCCGCGAGAAGACCGGCACGCCGTGGGAGTACTCCCGCATCGCGCCGCTGAACCGCCGCATCCACCTGGGCACCGAGTTCACGATCGACGGCCCCGCCGCCGGCGACGACCTGCTCAAGACCGTCGACGACCCGACGGGCACGAAGGTCTTCGGGACGCTGAACAACTGCGCCGGCGGCACGACCCCGTGGGGCACCGTCGTCTCCGGCGAGGAGAACTTCCACGGGTACCTGCGCGTGAACGGCCAGGACCCCCGCGACGCCCGCTACGGCCTGCGCGACGCGGCCACCCGCTACGGCTGGGAGCTGGACGACCCGCGCTTCGACGGCAACAACCCCGGCTACGAGAACGAGAACCGCCGCTTCGGCTGGGTCGTCGAGATGGACCCGTACGACCCGACCGCCGCGCCCGTGAAGCACACCGCGCTCGGCCGGTTCAAGCACGAGGGCGCGAACGTCATCATGGCCGACGACGACCGCGCCGTCGTCTACATGGGCGACGACGAGCGCTTCGACTACGTCTACAAGTTCGTCTCGACCGACCGCATGCGCCACGGCAACAGCGACGCCGCCCGCGCGCACAACACCACGCTGCTCTCCTCGGGCGACCTGTACGTCGCGCGGTTCGACGGCGACTCCCCGGCCTCGGAGATCGACGGCTCGGGCGCGGTGCCCTCCGACGGCGCCTTCGACGGCACCGGCCAGTGGCTGCCGCTGGTGCTCGACGGCGCGTCGCAGGTGGACGGCATGTCGCTGGCCGAGGTGCTGGTCTTCACCCGCGTGGCGGCCGACACCGTCGGTGCCACCAAGATGGACCGCCCCGAGGACGTCGAGCCGAACCCGTTCACGGGCCGCATCTACGTCGCCTGCACCAACAACTCCAACCGCGCCCGCGACGGCTACCCGGGCGTCGACGAGGCCAACCCGCGCGGCTCCAACCGCGACGGCCACGTCGTGGAGATCATCGAGGACGGCGGCGACCAGACGGCGACCACGTTCACCTGGAACCTGCTCATCGTGGCGGGCGACCCCGAGGTCAACGACTCGACCTACTTCTCCGGCTTCCCGGCCGACAAGGTGTCGCCGATCTCCTGCCCGGACAACGTCGCCTTCGACGCTGACGGCAACCTGTGGATCTCCACGGACGGCCAGCCGTCGTCGATCCAGAAGAGCGACGGGCTGTTCAAGGTGACGCTCGACGGCGCCGAGCGGGGGCGGGTCGAGCAGTTCCTCGCCCTGCCGCGACGTGCCGAGACCTGCGGACCGGTCGTCGACGTGCGCGACTCGATGGCGTACGTCAACGTCCAGCACCCGGGCGACGACGGCAGCTGGGGCGCGCAGACGTCCTACTTCCCGGACTACCTGGCCGAGGGCGAGACGGTCCCGGCCGGTGCCTGGCGCGGGCCGAGACCGTCGACGATCCAGGTCTTCCCGGCCGGTGCCGGCGAGCACCCTGGTCGCGGGAAGGACTCCGAGCACCAGGGTCCCGGGCCGTTCCCGTCCTCCCGCGGGGGCCAGGGCCGTGGCTCGCAGAACCGCCCGACGTTCGCCGAGACCGGCGAGCAGTTCCGCGGCTGA	MTITPESRPQLPVVAMPHYARGKRAAATCHFKCADACAHPAPNLSANEYFRDVASRALSRRVMLGGAAAAAAAVVVGAQVIGAQSAAAAPVAGKKPVKGLAFGAIAAQPMEQDDVIVPEGYAWSPIIRWGDPILPGGRAFDPAHQTPEQQAKQFGYNCDYLDILPEDPKHIRSMVETRRGTKGVLVSNHEYTNPHIMFDASYDDVTRRAIERAAHGMSVVEVTREKTGTPWEYSRIAPLNRRIHLGTEFTIDGPAAGDDLLKTVDDPTGTKVFGTLNNCAGGTTPWGTVVSGEENFHGYLRVNGQDPRDARYGLRDAATRYGWELDDPRFDGNNPGYENENRRFGWVVEMDPYDPTAAPVKHTALGRFKHEGANVIMADDDRAVVYMGDDERFDYVYKFVSTDRMRHGNSDAARAHNTTLLSSGDLYVARFDGDSPASEIDGSGAVPSDGAFDGTGQWLPLVLDGASQVDGMSLAEVLVFTRVAADTVGATKMDRPEDVEPNPFTGRIYVACTNNSNRARDGYPGVDEANPRGSNRDGHVVEIIEDGGDQTATTFTWNLLIVAGDPEVNDSTYFSGFPADKVSPISCPDNVAFDADGNLWISTDGQPSSIQKSDGLFKVTLDGAERGRVEQFLALPRRAETCGPVVDVRDSMAYVNVQHPGDDGSWGAQTSYFPDYLAEGETVPAGAWRGPRPSTIQVFPAGAGEHPGRGKDSEHQGPGPFPSSRGGQGRGSQNRPTFAETGEQFRG				NA	NA	NA	NA	NA
AK001_00568	1062			hypothetical protein	ATGAGGGTCGCGATCGTCGTCGCCTCGCAGCGCGCCGCCGCCGGCGTCTACGAGGACCGTTCCGGACCGGCCGCCACCGAGTGGTTCACCGCTCGGGGCTGGGACGTGCTGCCCGTCGTCGTCGTGCGTGACGGCGAACCCGTCCGGGACGCCCTGCTCGAGCTGGTCGAGGGGGACGACGCCGCCCCGGACGTCATCATCACGTCCGGCGGGACGGGGATCTCGCCGACGGACGCCACCCCCGAGGCCACCCGCGCCGTGCTGGACCGCGAGGTGCCCGGCATCGCCGAGCTCGTGCGCGCCCGGTCGCTGGCGCCCACGGACCCGGCGAAGAAGGTCGTCCCCGGTGCCGCGCTCTCGCGGGGGACCGCCGGGGTCGCCGACCGCACGCTGATCGTCAACCTGCCGGGGTCGGTCGGGGGAGTGGTCGACGGGCTCGACGCCCTGGCCGACGTGCTGCCGCACGCCGTCGAGCAGCTCGCGGGGCGCGACCACGAGCGCCCCGGGCACGACGGGCAGCACGGGCAGCACGGGCACCATGAGCGCCACGAGCACGACCCGCACGACGAAGAGGTCGCGCACCCGGAGCATCAGCCCGCCGAGACGTCGACGAGCAACGCGACCGTCCTGCGCGCCGACGTGCTCGACACCCCGCTGGACGGCCTGCTCGTCGAGCTGAGCGACCTGGTCCGCGACGACACGTGCGGCGCCGTCGCCACGTTCGTCGGGCACGTCCGCGACCACGACGAGGGGCGCGGCGTGACCGCGCTGCACTACGAGGCGCACCCGCTGGCCGCCGAGGTCCTCCGCGAGGTCGCCGAACGGGTGACCACCCGCACGGCCACGGTCACCGGCGACACCGTGCGCACCGCCGTCGTGCACCGCATCGGCGACCTCCAGGTCGGCGACGTGGCCGTCGTGGCCGCCGTCGCCTCCGGGCACCGCCAGGCCGCGTTCACGTGCGCGAGCGACCTGGTCGAGGAGCTGAAGGCCGAGGTGCCCATCTGGAAGGAGCAGGCGTTCACCGACGGCTCCAGTGAGTGGGTGGCGTCGCTCGGCTGA	MRVAIVVASQRAAAGVYEDRSGPAATEWFTARGWDVLPVVVVRDGEPVRDALLELVEGDDAAPDVIITSGGTGISPTDATPEATRAVLDREVPGIAELVRARSLAPTDPAKKVVPGAALSRGTAGVADRTLIVNLPGSVGGVVDGLDALADVLPHAVEQLAGRDHERPGHDGQHGQHGHHERHEHDPHDEEVAHPEHQPAETSTSNATVLRADVLDTPLDGLLVELSDLVRDDTCGAVATFVGHVRDHDEGRGVTALHYEAHPLAAEVLREVAERVTTRTATVTGDTVRTAVVHRIGDLQVGDVAVVAAVASGHRQAAFTCASDLVEELKAEVPIWKEQAFTDGSSEWVASLG				NA	NA	NA	NA	NA
AK001_00569	480	moaC2	COG0315	Cyclic pyranopterin monophosphate synthase 2	ATGAGCGACCTGTCCCACTACCGCGACGACGGTGCCGCCCACATGGTCGACGTCACCGCCAAGGACGTGACCAAGCGCCGCGCGACCGCCCGGGGCGTGCTGCGCACCCGGGCCGACGTCGTCGACCGGATCGCGTCCGGCGATCTCCCCAAGGGGGAGGCGATCGCCACCGCCCGGATCGCCGGGATCATGGGCGCCAAGCGCACCCCGGACCTCGTGCCGCTGTGTCACCCGCTGCCGCTCTCCGGTGTCGACCTCGACCTCACGCCCATCGGCGACCACGTCGAGATCACCGCGACCGTGAAGACCACCGGCCGCACCGGCGTCGAGATGGAGGCGCTGACCGCCGTCACCGTCGCCGGGCTCACGCTCTACGACATGATCAAGGCCGTCGACAAGGCCGCCGTGCTGACCGACATCGAGGTGGTGGCCAAGTCCGGCGGGAAGTCGGGCGACTGGATCCGGGAGGAGCAGGCATGA	MSDLSHYRDDGAAHMVDVTAKDVTKRRATARGVLRTRADVVDRIASGDLPKGEAIATARIAGIMGAKRTPDLVPLCHPLPLSGVDLDLTPIGDHVEITATVKTTGRTGVEMEALTAVTVAGLTLYDMIKAVDKAAVLTDIEVVAKSGGKSGDWIREEQA	PGPT0008405_3091	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637	NA	NA
AK001_00570	597			hypothetical protein	GTGCCGTTCGCCGTCGTCCTGGACGCCTGTGTCCTCGTTCCGCTCGGTCTCTGCGACTCGCTGCTGCGTCTCGCAGAGACCGGGCTGTACCGGCCGCTATGGTCGGACGAGATCCTCGAGGAAGTGCGTCGCACGCTCGCCAACAAGCTCGGTCTGGGTGACGATCGCGCTCGGCGGCGCGTCGACGCGATGCGTCGGGCCTTCCCGGATGCCCTCGTCGAGAACCACGAGAGCCTCATCGCCGCGATGACCAACGACCCGAAGGACCGGCATGTCTTGGCGGCGGCAGTTCGAGCAGATGCGGCACTGCTGGTGACAGCGAACGTCAAGGACTTCCCGCCGGCCTCCGTCGACCCGTACGACATCGACGTCGTCCATCCGGACGACTTCCTGCTCGACCAGCTCGAGCTTGATCATTCGGGTGTCTTGACCTGCCTCCGCGAGCAGCGAGCGGCCTACCGGGACCCTGCGATGGACGTCCATCAGTTCTACGAGATGCTCTCCGGGACCGTTCCCCTGTTCGCTCGTGCTGCGCGGTCTATCGAGCAGCAACGTCATTCTGCGGACGTCGAGGAGCTGGGGCGTCGAGAACCGTAG	MPFAVVLDACVLVPLGLCDSLLRLAETGLYRPLWSDEILEEVRRTLANKLGLGDDRARRRVDAMRRAFPDALVENHESLIAAMTNDPKDRHVLAAAVRADAALLVTANVKDFPPASVDPYDIDVVHPDDFLLDQLELDHSGVLTCLREQRAAYRDPAMDVHQFYEMLSGTVPLFARAARSIEQQRHSADVEELGRREP				NA	NA	NA	NA	NA
AK001_00571	453			hypothetical protein	ATGACTGCAGTGGTTGAGCACACCGTCCTCCCGCCGCGGCAGGAGAGTGAGCTCGTCGGCCTCCTGGAGGTGCTTGAGTCGACCGATCAGGGAGCGTTGGTCGCGCCCGACGGCACGCAGGTCTCCTTGCCCGGCGAGGTCTACGAAGTCCTCCAGGACGTCGTGCGCGCCATGGTGAGGGGTCAGGCGATCACCGTCGCGCCGCACCACACCGTGATGACGACGCAGGCAGCAGCGGATTTTCTGGGAGTCTCGCGACCCACGTTGGTGCGGATGCTCGAGGAGGGGCAGATCCCCTACACCCAGCCCAGCCGCCACCGTCGTGTCTTGCTTGCCGACCTCGTGGAGTATCAGGAGCGGACTCGCCGAGACCGGCGTGAGCTGCTGGACGAGATGACCCGGGAGTCGGCCGGCGACGCGAACCTCGGTAGCGGGTTCGTCTCAACGCGATAG	MTAVVEHTVLPPRQESELVGLLEVLESTDQGALVAPDGTQVSLPGEVYEVLQDVVRAMVRGQAITVAPHHTVMTTQAAADFLGVSRPTLVRMLEEGQIPYTQPSRHRRVLLADLVEYQERTRRDRRELLDEMTRESAGDANLGSGFVSTR				NA	NA	NA	NA	NA
AK001_00572	1290	moaE2_1	COG0303	Molybdopterin molybdenumtransferase 2	GTGCACGCAGAGTCGAGACGTCGGCCCGTCGACGACCACCGCGAGGCCGTCCGGGCGCTGATCGGGCCGGCGCTCGCCGTTGCGCGGCGCGCCGAGGCGTGCGATCTGGCCGAGGAGCTTGCCGCGGCCGGTCGCGGTTCCGCGGCCGGTGCCCGTGTCGCAGCGGCCGACGTCGCCGCCGTCGTCGACCTGCCCGGCTTCGACAACTCGCAGATGGACGGGTACGCCGTCCGCGCAGCCGACCTGACCGGAGCGGCGCCGTCGGACCCGGTCGAGCTGCCGGTCGGGGCGCCGGTCCCGGCGGGCACCCAGCCGCCGCCGCTCGCGCCCGGCACCGCGGCCCCCGTGATGACCGGCGCCCCGATCCCCGACGGCGCCGACGCCGTCATCAAGATCGAAGAGGTGGACCCGCCAGCCTTCCCGGAGCCCGGAACCGCTGCGACGGTCCGGTTCACCGCACCGGTGGCGCTGGGCACCTTCGTCCGCCGCGCGGGATCCGACGTCGCCGCCGGTGACGTCGTCGTCCTCGCGGGCACCCGGCTCGGTCCGGCACAGCTCGGCGTCCTCGTCGCCGCGGGTGTCTCCGAGGTCGAGGTCGCCGAGCCGCCCCACGTGCTGCTGATCTCCACCGGCTCCGAGCTCGTCGCGGCCGGTGAGCCGCTCGGCCCGGCACAGCTCTACGACGCCAACGGCGCCGCTCTGACCGCCGCCCTGGCCGAGGTGGGGTGCCGTGTCACGCACCGCGTGGTCCCGGACGACCCGGCCGCCCTGCGCACCGTCCTGGCCGAGGCGCCGGACGACGTCGCGCTCGTCGTCACCAGCGGCGGCGTCTCCGCCGGTGCGTACGAGGTGGTGCGCCAGACCCTCACGGACGCCTGGTTCGGGCACGTCGCCGTCCAGCCCGGCGGGCCGCAGGGCCTCGGCACGATCGCGTTGGGTGATCCGACCGCGCCGCGCGACGTGCCGCTGGTCGCGTTCCCCGGCAACCCGGTCAGCGCCCTGGTCTCCTTCGAGCTGTTCCTGCGCCCTGTCCTCGCCGAGGCCACCGGCGCGGTGCCCGCGCACCGGCCCCCCGGCCGGGCGCCGCTCGCCGAGGCGGTCGACTCACCCGAGCATCTGCACCAGGTCCGCCGGGGCCGCCTCGACGCCGACGGCCGTGTCGAGATGGTCGGCGGGCCGGGATCCCACCTCCTGGCCCACCTCGCGATGGCTACGCTGCTGGTACACGTGCCACCCGGCGTCGCGCACGTCGACGCGGGGGACGACGTCGACTACTGGGAGATTCGATGA	MHAESRRRPVDDHREAVRALIGPALAVARRAEACDLAEELAAAGRGSAAGARVAAADVAAVVDLPGFDNSQMDGYAVRAADLTGAAPSDPVELPVGAPVPAGTQPPPLAPGTAAPVMTGAPIPDGADAVIKIEEVDPPAFPEPGTAATVRFTAPVALGTFVRRAGSDVAAGDVVVLAGTRLGPAQLGVLVAAGVSEVEVAEPPHVLLISTGSELVAAGEPLGPAQLYDANGAALTAALAEVGCRVTHRVVPDDPAALRTVLAEAPDDVALVVTSGGVSAGAYEVVRQTLTDAWFGHVAVQPGGPQGLGTIALGDPTAPRDVPLVAFPGNPVSALVSFELFLRPVLAEATGAVPAHRPPGRAPLAEAVDSPEHLHQVRRGRLDADGRVEMVGGPGSHLLAHLAMATLLVHVPPGVAHVDAGDDVDYWEIR	PGPT0008430_1552	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750	NA	NA
AK001_00573	867			hypothetical protein	GTGATCACCGAGCTCAACCGACTGGTCGACCTCGTCGAGAGCCATCTCTGCGACGACATCGACGTCGAGCACCTGTCCACCGACCTCGGCACGACCGAGTACCACCTGCGCCGGATGTTCTCGTCGCTGGCCGGCATGCCGCTGTCCGACTACGTGCGACGTCGACGCATGACCGTCGCCGCGACCGACATCGTCGCCGGGGACCCCGTCCTCGACGTCGCGGTCCGCTACGGGTACGGCTCCGCCGAGGCGTTCGGCCGGGCGTTCCGCGCGGTGCACGGGACCCGGCCCGCCGATGTCAGGACGCACGGTGGCCCCCTTCGATCACAACCACAGCTCAGGTTCCGCCTGACCGTCGAAGGGAGCTCCTCCATGGACACCCGCCTCACCGATCGCCCTGCCTTCCGGCTCGTCGGCCACGCCGCCCGTGTGCCGCTGATCCACGAGGGCGTGAACCCGCACATCCAGGCGCACGTCGCGTCACTGCCCGCCGCCGAGCATGCGCGCCTCCGGGCGCTCGCGGACACCGAACCCGCCGGTCTGCTCCAGGTGAGCGCCGACGTCGACCCGGACTACACGGAGGGCAGCGAGCTCACGTACCTGCACGGGGTCGCCGTCGACGTCGGCACGCACGCCCCGGCGGACCTCGACGTGATCGAGGTCCCCGCGGGGACCTGGGTCGTCTTTCGCAGCTCGGGCGCGTATCCGACCGTGTTGCAGGAGACGTACGCGGCCTCGGCGACGCAGTGGTTCCCGTCGAACCCGTGGCGGCTGCGTCCCGGACCTTCGATCGTGGCGGTCCTGGAGCGGGCCGACGACTTCAGCACCGCCACCACCGAGCTCTGGCTGCCCGTCGAGCGTGCCTGA	MITELNRLVDLVESHLCDDIDVEHLSTDLGTTEYHLRRMFSSLAGMPLSDYVRRRRMTVAATDIVAGDPVLDVAVRYGYGSAEAFGRAFRAVHGTRPADVRTHGGPLRSQPQLRFRLTVEGSSSMDTRLTDRPAFRLVGHAARVPLIHEGVNPHIQAHVASLPAAEHARLRALADTEPAGLLQVSADVDPDYTEGSELTYLHGVAVDVGTHAPADLDVIEVPAGTWVVFRSSGAYPTVLQETYAASATQWFPSNPWRLRPGPSIVAVLERADDFSTATTELWLPVERA				NA	NA	NA	NA	NA
AK001_00574	408			hypothetical protein	ATGCCGCAGATGAGGATCAGCGAGGCCGCCGTCTACCTCGGCGTCAGCGACGACACCGTCCGCCGCTGGGTGGACCGCGGGCTGCTGACGGCCGACCGCGACGACTCCGGCCGCAAGGTGGTCGACGGCTACGAGGTGGCGATGGTCGCCCGCGAGCACGCCACCCCACCCGGGCTGCCCCACGGCATGAAGAGCTCGGCCCGCAACCGGTTCGTCGGGCTGGTCACCGACCTGAAGGTCGACACCGTGATGGCGCAGGTCGAGCTGCAGTGCGGGCCGTTCCGCGTGGTGTCGCTGATGAGCAGCGAGGCCGTCCGCGACCTCGGCCTGGAACGCGGATCGGTCGCCGTGGCCACCATCAAGTCGACGAACGTCGTCATCGAGGCCCCCGACCGAGGCAACCCATGA	MPQMRISEAAVYLGVSDDTVRRWVDRGLLTADRDDSGRKVVDGYEVAMVAREHATPPGLPHGMKSSARNRFVGLVTDLKVDTVMAQVELQCGPFRVVSLMSSEAVRDLGLERGSVAVATIKSTNVVIEAPDRGNP				NA	NA	NA	NA	NA
AK001_00575	807	modA	COG0725	Molybdate-binding protein ModA	ATGACAGCGGCACTCCCCCGCCGCACGACGCGCGCCACCGCAGCGCTGGCCGTCGCCGCGAGCGCCGCCGTCGCGCTCACCGCCTGCAGCACAGGCTCGGCGGCCACCTCGGACGGTGAGGTGGACACCACGCTGACCGTCTTCGCCGCCGCCTCCCTCACCGCGGCGTTCGACGAGACCGCTGCGGACTTCGAGGCCGACCATCCCGGCGTCGACGTCCGGCTCAGCCTCGCCGGGTCTTCCAGCCTGGTCGCGCAGATCCAGCAGGGCGCCCCGGCCGATGTCGTCGCCACCGCCGACACCGCGACCATGAACACGCTCGTCGCGGACGACCTCGTCGACGCCCCGGAGCCCTTCGCCACCAACACGCTGGAGATCGTCGTCCCGCCCGGCAACCCGACCGGCATCGCCAACCTCCAGGACCTGACCGACCCGGGCCTCAACCTCGTGGTCTGCGCCCCGGAGGTGCCGTGCGGCGCCGCCACGACCGCGGTCGTCGACCACGCGGGAATCACGCTGCAGCCGGTCAGCGAGGAGCAGAGCGTCACGGATGTCCTCGGCAAGGTGACCGCGGGCGAGGCCGACGCCGGGCTCGTCTACGTCACCGACGTCGACCGGGCCGACGACCTGGTCGAGGGCATCGGCTTTGACGAGTCCGACGCCGCGGTGAACACCTATCCGATCGCCACGGTCGACCGGACCCGGCAGAGCACCGACCAGGCCGACCTCGCCCAGCAGTTCGTCGACGCCGTCCTCTCCCCCGACGGCCAGACCGTGCTCGCCGACCTCGGGTTCACCGCACCATGA	MTAALPRRTTRATAALAVAASAAVALTACSTGSAATSDGEVDTTLTVFAAASLTAAFDETAADFEADHPGVDVRLSLAGSSSLVAQIQQGAPADVVATADTATMNTLVADDLVDAPEPFATNTLEIVVPPGNPTGIANLQDLTDPGLNLVVCAPEVPCGAATTAVVDHAGITLQPVSEEQSVTDVLGKVTAGEADAGLVYVTDVDRADDLVEGIGFDESDAAVNTYPIATVDRTRQSTDQADLAQQFVDAVLSPDGQTVLADLGFTAP	PGPT0008435_1291	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020	NA	NA
AK001_00576	849			hypothetical protein	ATGAGCGCCCCGGCCACCAGCGAGCGCGCCGCGACCACCCGCACGCAGCGCGACCCGGCCGAGGTCCCCGCCGGTCTCCCGCGCTGGGCCTCCCTGCCCGCCATCGTCGGCGGTCTGTTCGTCGTCCTGCCCCTGGTCGCGATGGGCACCCGCGTCGACTGGTCGAACTACGGGGCCCTGGTCACCAGCGAGTCGGCCCGCGCCGCCCTGGTACTCAGCCTGCAGACGGCGACGGCAAGCACGCTGCTGTGCCTGGTGCTCGGCATCCCCATGGCGCTCGTGCTGGCCCGCGGCCGGTTCCCCGGCCAGCACCTGCTGCGCTCCCTCGTCCTCGTCCCGCTGGTGCTGCCGCCCGTGGTCGGTGGCGTCGCGCTGCTGTCCACGTTCGGCCGCCGCGGGCTGCTCGGCGAGTCGATGGAGGTGCTCGGCCTGCAGATCGCGTTCTCGACGACGGCGGTGGTGCTCGCCCAGAGCTTCGTCGCCCTGCCGTTCCTCGTCGTCAGCCTGGAGGGCTCGCTGCGCACGGCCGGCGAGCGCTACGACGTCGTGGCCGCGTCCCTCGGCGCGAGCCCGACGACGGTGCTGCGCCGCGTCACGCTGCCGCTGGTGTGGCCGGGGCTGCTGTCCGGGACGGTGCTCGCATTCGCACGGGCGCTGGGCGAGTTCGGCGCCACCATCACCTTCGCCGGCAGCCTGCAGGGCGTCACCCGCACGCTCCCGCTGGAGATCTACCTGCAGCGCGAGACCGACCCGGACGCCGCCGTCGCACTGTCGCTGCTGCTGGTGGCCGTCGCCGTCGTCGTCATCGCCGCCACCCACCGCCGGGGCGCTGGAGGTGCCGTGCGATGA	MSAPATSERAATTRTQRDPAEVPAGLPRWASLPAIVGGLFVVLPLVAMGTRVDWSNYGALVTSESARAALVLSLQTATASTLLCLVLGIPMALVLARGRFPGQHLLRSLVLVPLVLPPVVGGVALLSTFGRRGLLGESMEVLGLQIAFSTTAVVLAQSFVALPFLVVSLEGSLRTAGERYDVVAASLGASPTTVLRRVTLPLVWPGLLSGTVLAFARALGEFGATITFAGSLQGVTRTLPLEIYLQRETDPDAAVALSLLLVAVAVVVIAATHRRGAGGAVR	PGPT0008440_378	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018	NA	NA
AK001_00577	1053	modC	COG1118	Molybdenum import ATP-binding protein ModC	ATGACGTTCGAGCTCACCGCCACCGTGCCGTCGCGCGGCCTCGACGTCCGTCTCGACGTCGCCGCGGGCCGCACGCTCGCGCTGCTCGGACCCAACGGGGCCGGCAAGTCCACGGCCCTCGGCCTCGCCGCCGGGACGCTGCGCCCGCACGACGGCGCGATCACCCTGGACGGGCGCACGCTCGCCGGCGCGCGCGACGGTCGCCGCACCGCGTGGGTGGCCCCGCACCGTCGTCGGGTCGCGCTGCTCGCCCAGGACCCGATGCTTTTCCCGCACCTGAGCGTGCGCGAGAACATCGCCTTCGGGCCGCGCGCCCAGGGCACGACCCGCCGCGAGGCCGCCGCCCGGGCCGACCGGTGGCTGGACGCGATCGACCTCGCGGACCTGGCCGACCGCCGTCCGGCCGCGCTGTCCGGCGGGCAGGCGCAGCGCGTGGCGATCGCCCGGTCGCTGGCCGCCGCGCCCCGGCTGCTGCTCCTCGACGAGCCGATGGCGGCCCTCGACGTCGACGTCACCCCCGCGCTGCGCCAGACGCTCCAGCACCTGCTCGCCGAGCAGACGACGATCCTGGCGACCCACGACGTCCTGGACGCGCTGCTGCTCGCGGACGAGGTCGCCGTCGTCGACGGTGGGCGCGTCGTCGAACGCGGCCCGACGGCGGAGGTGCTGTCCCGCCCGCGCAGCGCCTTCGCGGCGTCGATCGCCGGCCTCAACCTGCTGTCCGGGACCTGGACGTCCGACGGCGTCGCGACCGCGGGCGGGGAGGTGGTGCACGGGCACGGCGCCCCCGACGTGGCCCTCGGCGCCGCGATGACGGCGGTGTGCCGCCCGGCGGCCGTCGCCGTCCACCTCGACGCCCCGCACGGGTCCCCGCGCAACACCTTCCGCGCCACGGTGCGGTCCCTCGCGCCCCACGGCGACCTCGTCCGCGTGCGCACAGACCGGCTCGCCGCCGACGTCACGCCCGGATCCGTGGCCGAGCTCGGGCTGGCCCCCGGCCGGGAGGTCTGGCTGGCGGTCAAGGCCGCCGAGGTCGACGTCTACCCGGTGTGA	MTFELTATVPSRGLDVRLDVAAGRTLALLGPNGAGKSTALGLAAGTLRPHDGAITLDGRTLAGARDGRRTAWVAPHRRRVALLAQDPMLFPHLSVRENIAFGPRAQGTTRREAAARADRWLDAIDLADLADRRPAALSGGQAQRVAIARSLAAAPRLLLLDEPMAALDVDVTPALRQTLQHLLAEQTTILATHDVLDALLLADEVAVVDGGRVVERGPTAEVLSRPRSAFAASIAGLNLLSGTWTSDGVATAGGEVVHGHGAPDVALGAAMTAVCRPAAVAVHLDAPHGSPRNTFRATVRSLAPHGDLVRVRTDRLAADVTPGSVAELGLAPGREVWLAVKAAEVDVYPV	PGPT0008445_2106	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017	NA	NA
AK001_00578	318			hypothetical protein	ATGGTGACGCCCGAGACGCTCGCACTGCGCGAGCTCATCGCGTCGCGCCGCGAAGAGTTCCGGCAGCTCCTCGCCGCGTACGGCGCGACGAACCCGAGGCTGTTCGGATCGGTCGCCCGGGGAACGGCAGGGAAAGGCAGCGACATCGACATCCTCGTCGAGATGGACCCTGCGGACGGCAACCTGCTGATGCGGGCATCCGGGCTCATGGAGGAAACCAGAGCCCTGTTCGGCCGCGAGGACGTCGACGTGTTCCCGGTCCAGCTGCTCAAGCAGCCGATCTCGCAGACCGCGCTCCAGGACGCGGTCACGCTGTGA	MVTPETLALRELIASRREEFRQLLAAYGATNPRLFGSVARGTAGKGSDIDILVEMDPADGNLLMRASGLMEETRALFGREDVDVFPVQLLKQPISQTALQDAVTL				NA	NA	NA	NA	NA
AK001_00579	339			hypothetical protein	GTGAGCCGCGGGACCGACCAGCGCATCACCGACATCCTGCGCGCGATCGAGCGCTGCCAGCGTTTCCTCGCAACGCTCGATCAGGACGAGACGGGCGATCTCGTCGACATGGCCGAGGACGCGATCGAGCGGAATCTCCAGATCATCGGCGAGGCGGCAAAGCACCTGCCCGCGGAGGTGACCGATGCTCACCCGGAGATCCCATGGCCGCAGATCCGTGGCTTCCGGAACATCCTCGTCCATCACTACTTCGGTGTGGACCTCGACGTCGTCCGCGATGTGATCGAGTCCCACCTGCCGCCGCTCGCCGACGCGCTGGGCGGACCGGACGACGGCTGA	MSRGTDQRITDILRAIERCQRFLATLDQDETGDLVDMAEDAIERNLQIIGEAAKHLPAEVTDAHPEIPWPQIRGFRNILVHHYFGVDLDVVRDVIESHLPPLADALGGPDDG				NA	NA	NA	NA	NA
AK001_00580	867			hypothetical protein	ATGTCGCTCGCTGAGGCTCCCGTGGCGGAGGCGCCGGCGGCACCCGCCCGCGCGACGGCCCGCCTGCTGCGCAGCGAGCTGCGCCTGGTGTTCGGCCGCGTGCGCAACATCGTGCTGCTGGCGGGCCTGGCGGCCGTCCCGCTGCTCATCGGCACGGTCCTGTTCATCACCCAGGACACGCCCGTGGCCGGGCAGGGGCCGCCGTTCCTGGACCGCGTGACCGGCAACGGCGTGTTCCTCGTGTTCGCGGCGCTGGTGAGTTGCCTGCCGTTCCTGCTGCCGCTGTGCGTGTCGATCGTGTCCGGCGACGCGATCGCGGGGGAGGCGGGCGCCGGCACGCTGCGGTACCTGCTGGTGGTGCCCGTCCCGCGCACCCGCCTGTTGCTGGTCAAGGCGGTCGCCGCCCTGGCGTACGCGGGAGCGGCCGTCGCCGCGATCGCCGTCGTCGGTCTGGTCGCCGGCGCCGCCTTCTTCGGGGTGGGCGACGTCGTGCTGCTCTCGGGGGACACGATCCCGCTGGCCGAGGGCATGGTGCGCACGCTCGGCGTGGTCGCCTACGTCATCGCCTCGCTCACCGGGCTGGTCGCCGTCGGCCTGTTCTTGTCGACGCTCACCGAGGTGCCGGTGGCCGCGATGGCCTCGACGGTGGTCGTGGCCATCGTCAGCGGCGTGCTGGACGCGCTGCCGCAGCTCTCCGCGATCCACCCCGGGCTGCTGACGCACCACTGGCTGGACTTCGGGGAGTTCCTCCGCCTCGAGGTCGACGCCTCGACGCTGCTGGCCGGGCTGGCCGTGCAGGCGGCCTGGGTCGCGATCTTCGGGGCGCTGGCCTGGAGCCGGTTCACGACGGCGGACGTGTCGTCCTGA	MSLAEAPVAEAPAAPARATARLLRSELRLVFGRVRNIVLLAGLAAVPLLIGTVLFITQDTPVAGQGPPFLDRVTGNGVFLVFAALVSCLPFLLPLCVSIVSGDAIAGEAGAGTLRYLLVVPVPRTRLLLVKAVAALAYAGAAVAAIAVVGLVAGAAFFGVGDVVLLSGDTIPLAEGMVRTLGVVAYVIASLTGLVAVGLFLSTLTEVPVAAMASTVVVAIVSGVLDALPQLSAIHPGLLTHHWLDFGEFLRLEVDASTLLAGLAVQAAWVAIFGALAWSRFTTADVSS	PGPT0006730_10671	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_00581	960	bcrA_1		Bacitracin transport ATP-binding protein BcrA	ATGACCGCAGACGTGCCCGCCGCGGAACCCGCGGTGCGCACCCGCGGTCTGACGAAACGGTTCCGGTCGGGGCAGGTCGGCGTCGACGCGATCGACCTGCACGTGCCGCGCGGCGCCGTCTACGGGTTCCTCGGGCCGAACGGGTCGGGCAAGACGACGACGATCCGGATGCTCCTCGGGCTGGTGTCGCCCACGGCGGGGTCCGTGGAGCTCCTGGGTGCGCCGATGCCGCAGGCGGGCCCGGCGGTGCTGCCGCGCGTCGGGGCGCTCGTCGAAGGCCCCGCCTTCCACCCGTACCTGTCCGGGGAGGCGAACCTGCGCCGGCTGGACGCCGCGGACGCGACGGCGTCGCCGGCGACCCGCGCACGCCGGGTCGGCGCGGCGCTGGAACGCGTCGGGCTGACGGCGGCCGCCGGCAAGAAGTACCGGCAGTACTCGCTCGGTATGAAGCAGCGCCTCGGGCTCGCGGCGGCGCTGCTGCGTCCGCGGGACCTGCTGCTGCTCGACGAGCCCACCAACGGGCTCGACCCGCAGGGCACGCGCGAGGTGCGGGCGCTGGTGCGCGAGCTGGCCGACGGCGGTGCCACCGTGCTCGTCTCGTCGCACCTGCTCAGCGAGATCGAGCAGGTGTGCTCCCACGTCGGGATCATGTCGCAGGGGCGGCTGCTGGCCCAGGGTCGTCGCGCCGAGATCGCCGACGACGGCGCACCCGAGGTGCACGTGGCGACGCGGTCCGACCAGCGCGGGCACCTGGCACGGGTCCTGACCGGGCTCGGGATGACGGACGTGCGGGTCGACGGCGAGGTCGTGGCCGCGTCCCTGGGCAGCGTCGCGGTCGAGAAGGTCGCCCAGGCGGTGGTCGGCGACGGCATCGACCTGCTCGGCCTCGAGGTCCGGCGGCCCACGCTGGAGGACGTGTTCGTGCGGCTGACGGGGGAGGGTTTCGATGTCGCTCGCTGA	MTADVPAAEPAVRTRGLTKRFRSGQVGVDAIDLHVPRGAVYGFLGPNGSGKTTTIRMLLGLVSPTAGSVELLGAPMPQAGPAVLPRVGALVEGPAFHPYLSGEANLRRLDAADATASPATRARRVGAALERVGLTAAAGKKYRQYSLGMKQRLGLAAALLRPRDLLLLDEPTNGLDPQGTREVRALVRELADGGATVLVSSHLLSEIEQVCSHVGIMSQGRLLAQGRRAEIADDGAPEVHVATRSDQRGHLARVLTGLGMTDVRVDGEVVAASLGSVAVEKVAQAVVGDGIDLLGLEVRRPTLEDVFVRLTGEGFDVAR	PGPT0006725_5685	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_00582	1221			hypothetical protein	ATGAACACCACGCGCAGCCTCTCGCCCCGGGCGCGGTGGGCGGTCCCGGCCGTCGTGGCCGGCGCCGTCGCCGCCGCCTTCGCCGTCCCCGCCACCGTCGGCGCCGTCGCGAGCGACGACCTGCCGGCCGTCACCGCCGACGAGCTGGTCGACCGCGTCGCGAACGCCGAGCCGGTCCCCGTCTCCGGGACCGTCGTCTACACCGCGCGCCTCGGCCTGCCGGACGTGACCGTCTCCGAGCTGCAGGGCGCCGGCCCGCTGGACCTGCTCGGCGGCAGCACGACGATGCGCGTGTGGTCCGACGGCGAGGACTCCTCGCGCGCCGCGCTGCTCGGCGACGTCTCCGAGTACTCGGTGGTGCGCTCCGGTGCGGAGGCGTGGACCTACTCCAGCGCCGACGACGAGGCCGTGCACTACGTCCTCGACCCGGCGGACCAGGAGCGGTACGACGAGCTCGCGCAGCAGGCGCTCGAGCCGGACGTCGAGGGCGACGTGCCGACGCCGTCGGAGCTGGCGGACGTGGCCCTCGCCCAGGCGCGCATCTCCACCGACGTCGAGACCACCGACCCCGTCGAGGTCGCCGGGCGTGCCGCGTACCAGGTCGAGCTGACGCCGCAGACCGACGCCACCCTGGTCGACCGGATCCGCGTCGCCGTCGACGCCGAGACCTGGGTGCCCCTGCGCACGCAGGTCTGGAGCGTCCAGGACGCCGAGGCACCGGCGCTCGAGGTGGGCTTCACCGACGTCTCCTTCGACGTCCCCGAGGCCAGCGTCTTCGAGTTCTCCGCCCCGGCCGGCGCCGAGGTGCGCGAGGTCGTGGTCCCGCTGCCCGAGCCGGGCACCATGGAGAAGCCGAGCAGCTCCGCGCTGGGCGAGGACGCGGACGTCGCGGTCTCCGGCACCGGCTGGGAGACCGTCGTCGAGGTCTCCGAGGTGGACGTCGAGGCGATCCTCGGCGCGACGGCCGAGGGCCGGCTGCCCGAGGGCAGCACCGGGTCCAGCGGCGCCGACGACCTGTTCGAGGAGTTCACCGACGCCGAGGAGGGCGAGCTGCCGGGCGTCCCCGAGCTGGACACGCAGGCGCTGTACGAGCAGCTCACGACGCCGGTCGACGGCGGTCGCCTGCTGACCTCGGCCCTGCTGACCGTCCTGGTGACCGACGACGGCCGCGTCCTGGCCGGGGCGGTGCCGCCCGCGACGCTCGAGGAGCTCGCCGGATGA	MNTTRSLSPRARWAVPAVVAGAVAAAFAVPATVGAVASDDLPAVTADELVDRVANAEPVPVSGTVVYTARLGLPDVTVSELQGAGPLDLLGGSTTMRVWSDGEDSSRAALLGDVSEYSVVRSGAEAWTYSSADDEAVHYVLDPADQERYDELAQQALEPDVEGDVPTPSELADVALAQARISTDVETTDPVEVAGRAAYQVELTPQTDATLVDRIRVAVDAETWVPLRTQVWSVQDAEAPALEVGFTDVSFDVPEASVFEFSAPAGAEVREVVVPLPEPGTMEKPSSSALGEDADVAVSGTGWETVVEVSEVDVEAILGATAEGRLPEGSTGSSGADDLFEEFTDAEEGELPGVPELDTQALYEQLTTPVDGGRLLTSALLTVLVTDDGRVLAGAVPPATLEELAG				NA	NA	NA	NA	NA
AK001_00583	657	tcrA	COG0745	Transcriptional regulatory protein TcrA	GTGCGCATCCTGGTGGTGGAGGACGAGGCGGTGCTGTCGCGGGCCCTGCGCCGGGGCCTGCAGGCGGAGGGATTCGCGGTCGACGTGGCCGCCGACGGCGAGACCGGCCTGGAGGCCGCGCTCGAGGGCGACCACGACGTCGTCGTCCTGGACCTCATGCTTCCCGGGCGGTCCGGCCTGGAGGTCCTGCGCGAGATGCGGCGCGCGGAGATCTGGACGCCGGTCCTCGTGCTCAGCGCCAAGGACTCCGACGACGACGTCACCCGCGGCCTGGACGTCGGCGCCGACGACTACCTGGCCAAGCCGTTCGCGTTCTCCGTCCTGGTCGCCCGGCTGCGGGCGCTGCTGCGCCGCGGCGCCCCGCCGCGCCCGGCCGTGCTGGAGGCCGGGCGCCTGACCCTCGACCCGGCCACCCGCGAGGTGCGCCAGGACGGCGCGCTCGTCGAGCTCACCACCCGCGAGACGGCGCTGCTCGAGCACCTCATGCGCCGACCCGGCGAGGTGCTGACCAAGGTCGAGCTGCGCGACCACGTGTGGGACGCCGCCGGCGACGACCTCAACGTCGTCGAGGTCTACGTCGGGTACCTGCGCCGCAAGCTCGGCAAGGGCGCGATCGAGACGGTGCGCGGCGCCGGCTACCGGGTGGTCGGGCGGTGA	MRILVVEDEAVLSRALRRGLQAEGFAVDVAADGETGLEAALEGDHDVVVLDLMLPGRSGLEVLREMRRAEIWTPVLVLSAKDSDDDVTRGLDVGADDYLAKPFAFSVLVARLRALLRRGAPPRPAVLEAGRLTLDPATREVRQDGALVELTTRETALLEHLMRRPGEVLTKVELRDHVWDAAGDDLNVVEVYVGYLRRKLGKGAIETVRGAGYRVVGR	PGPT0004105_1585	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665	NA	NA
AK001_00584	1350	mprB		Signal transduction histidine-protein kinase/phosphatase MprB	GTGACCGACGACCGGACCGCGCCCCGGGGCCTGTCTCTGCGCCTGCGGCTCACCCTGGTCGCGGCCGGGCTGACCGGCGCCGCCCTCGTCCTCGGTGCGTTCGCGCTGACCTCGGTGGTCTCGCAGAGCAGGATCGCCGCCACCGACGACGTGCTGCGCGGCACGGCCGAGCAGGTGACCGCGCTCGTCGCCGAGGACCGCCTGCCCCGGGTGCTCGCCGCCGACGAGCCCGGGCAGATCGTGCAGCTCGTCGACCCCTCGGGCCGCGTCGTGGCGTCCTCGCCCAACGCGAGCCGGACCCTGCCCGTGCTGGCCCCCGCGAACCTTGTCTCGACGGCCGACGGCGCCGCGACCCGCCAGGACTCGGCCTACGGGTCCGGGCCGGCCCGCGTGCTGGTCGACACCCTGCCCACCGGCGAACGCGTCGTCACCGCGCTCCCCCTGGCCACCGTCGAGGGGGTGCTCACAGCACTGCGGCTGTCCCTCGGCGTCGTCGTCCCGCTGCTGACCCTCGCGCTGGGGCTGGTGACGTGGGTGCTGCTCGGGCGCGCGCTGCGGCCCGTCGAGGAGCTGCGCGCCGCCGCGGACCGGGTCAGCGGCGTCGGCGGCCCCGGGACGCTGCCGGTGCCCCGCGCCCGTGAGCTGGCCGCGCTGGCGCAGACCCTCAACGCGATGCTCGACCGGCTGGACACCGCGGCGCGGCGCCAGACCGACTTCGTGGCCGACGCCGCCCACGAACTGCGCTCCCCCGTCGCCGCGCTGCGCACCAGCATCGAGGTCGCCGCCGCGCACCCCGAGGCCTACGAGACGGGCGAGCTGATGCCCGACCTCCAGCACGAGGTGGTCCGCCTGCAGGCGCTCGCCGACGACCTCCTCGTCCTGGCCCGGGTCGGCGCCTCCCCGCCGGAGGTGCGCGACGTCGACCTGCGCGACATCGTCCGCCACGCCGCGGGCGACGTCGACCTGCACGGCCAGGGGCGCGCCGTCGTCGACCCGTCCGCCGTCGAGCGGGTCGTGCGCAACCTCGTCGAGAACGCCCGCCGTTTCGCCCGCGACCGGGTCGAGGTCGAGGTGCGCGACGGCGTCGTGACGGTCGACGACGACGGGCCCGGCATCCCGGCGGCGGACCGCGAGCGCGTGTTCGACCGGTTCACGCGGCTCGGGTCCGCGCGGGAGCGGGACGGCGGCGGGACCGGGCTGGGCCTGGCCATCGCGCGGGAGATCGCGCGCGAGCACGGCGGCGAGGTGACGCTGGACGACGGTCCGCTCGGCGGCCTGCGGGCCACGGTGACGCTGCCGATCAGCGGTGCGCCAGCTCCAGCCGGTAGCCGCGCTTCACGACCGTCTTGA	MTDDRTAPRGLSLRLRLTLVAAGLTGAALVLGAFALTSVVSQSRIAATDDVLRGTAEQVTALVAEDRLPRVLAADEPGQIVQLVDPSGRVVASSPNASRTLPVLAPANLVSTADGAATRQDSAYGSGPARVLVDTLPTGERVVTALPLATVEGVLTALRLSLGVVVPLLTLALGLVTWVLLGRALRPVEELRAAADRVSGVGGPGTLPVPRARELAALAQTLNAMLDRLDTAARRQTDFVADAAHELRSPVAALRTSIEVAAAHPEAYETGELMPDLQHEVVRLQALADDLLVLARVGASPPEVRDVDLRDIVRHAAGDVDLHGQGRAVVDPSAVERVVRNLVENARRFARDRVEVEVRDGVVTVDDDGPGIPAADRERVFDRFTRLGSARERDGGGTGLGLAIAREIAREHGGEVTLDDGPLGGLRATVTLPISGAPAPAGSRASRPS				NA	NA	NA	NA	NA
AK001_00585	1173			hypothetical protein	GTGGCGAGCCCGGAGACCCCGTCGTGGGGGGCGCGCGTGGCTGAGACCGCGACCCGACCCGCCCTCGGCCAGGTCATGGCCGGGTGCACCGTGCTCGTCACCGCCGACCGCCGCTCCGGCGAGCTGGCCGCCGCCCTGGAACGCCGGGGCGCGACGATCCGCCACGCCCCCGCGCTGAGCATGGTCCCGCACGTGGACGACGACGCGCTCATCGCGGCGACCGCGGCCCTCGTGGACGACCCGCCCGACGTCGTCGTGGCCACCACCGGGGTCGGCTTCCGGGCGTGGATCGAGGCGGCCGACGCCCACGGGCTGGCCGACGACCTGCTGCGAGTCCTGGGCGAGGCCCGCATCGTGGCCCGCGGTCCCAAGGCGCGCGGCGCCGTGCAGGCCGCCGGGCTGGCCACCGACTGGGTGGCGGAGTCCGAGACGTCGGCCGAGGTGGCCGAGGTGCTGCTCAGCGAGGGCGTCACCGGCCAGCACGTCGCGATCCAGCACCACGGCGCCGGGGCGGACGGCCTGGACGAGGTGTTCGCCAAGTCCGGCGCGCGTGTCTCCCCGCTGGTCGTGTACCGCTGGGGCCCGGCTCCCGACCCGGAGGCCGTCGAGTCCTCGGTGCAGGCCGCCGCCGAGGGAGAGATCGACGCCGTCGTCTTCACCTCCGCCCCCGGCGCCGAGGCGTGGATGGAGTCCGTGGAGAACGCCGGCGTGCTGGACGAGGTGGTCTCCCGCTTCACCACCGGTGAGATGGTCGCCGCCTCCGTCGGCCCGGTGACGTCCCGCCCGCTGGCGGCACGCGGCGTGACGTCGCTGGAGCCCGAGCGCGGCCGCCTCGGGGCGCTGGTGCGCACGCTCGTCGGGCACTACGAGCACATCGACTCCGTCGCGCTGGGCACGGTCGCCGGCCCGCTGGTCATCCGGGCCCGTGTCGCGGTCCTGGACGGCCAGGTGCTGCCGCTGTCGCCGACCGGCGTCGAGGTGCTCCGGCTGCTCGCCGCGGCCGGCGGGCACGTGATCACCCGCGACCAGGTGCTCGAGGTGCTGCCGGGGGTGTCCCGCGACGGGCACGCGGTGGAAGTCGCGATCGCCCGGCTGCGCGAGGCCACCGGACGCAAGGACCTGATCAAGACGGTCGTGAAGCGCGGCTACCGGCTGGAGCTGGCGCACCGCTGA	MASPETPSWGARVAETATRPALGQVMAGCTVLVTADRRSGELAAALERRGATIRHAPALSMVPHVDDDALIAATAALVDDPPDVVVATTGVGFRAWIEAADAHGLADDLLRVLGEARIVARGPKARGAVQAAGLATDWVAESETSAEVAEVLLSEGVTGQHVAIQHHGAGADGLDEVFAKSGARVSPLVVYRWGPAPDPEAVESSVQAAAEGEIDAVVFTSAPGAEAWMESVENAGVLDEVVSRFTTGEMVAASVGPVTSRPLAARGVTSLEPERGRLGALVRTLVGHYEHIDSVALGTVAGPLVIRARVAVLDGQVLPLSPTGVEVLRLLAAAGGHVITRDQVLEVLPGVSRDGHAVEVAIARLREATGRKDLIKTVVKRGYRLELAHR	PGPT0003665_108	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719	NA	NA
AK001_00586	795	cysG_1	COG0007	Siroheme synthase	ATGGCCGCGCACCCCGGACACGTCACGCTCGTCGGGGCCGGCCCCGGCGCGGCCGACCTGCTCACCTACCGGGCCTGGCGGGCGATCGCCCGGGCCGACGTCGTCGTCCACGACCGCCTGGTCCCCCTGGAGGTCCTCGAGGACCTGGGCCCCGACGTCGAGGTGATCGACGTCGGCAAGGCCCCGGGCAAACACAAGGTGCCGCAGCCCGGGATCAACGACCTGCTGGTCGAGCACGCCCGCCGGGGGCGCCGCGTGGTGCGCCTCAAGGGCGGCGACCCGTTCGTGTTCGGCCGCGGCGGCGAGGAGTACGCGGCCTGCCGTGCGGCCGGGGTCGACGTCGACGTCGTCCCGGGGGTGTCCTCGGCCCTGGCCGTCCCGGCCCTGGCCGGGATCCCGTTGACCCACCGGGGGACGACGACGGCCTTCCACGTCGTCACCGCGCACACCCGCACGGGCGAGCAGCAGCTCGACGACACCGCCGTGTCCTGCGTCACGGACCGGACGGCTACGCTGGTGGTACTCATGGGAGTGTCCTCGCTGCCGGCGATCGTGACCAGGTTGCTCGACGCCGGGGCGGACCCGGACATCCCCGTGGCGATCGTGGAGCGAGGCTCGACACCTGACCAGCGGGTCACCCGGACGGGGCTGGACCTGGCGGCCAAGCGGGCCGAGGAGGTCGGGGTCCGAGCGCCCGCCGTGATCGTGATCGGTGACGTGGCGGCACGAGGACTGTTGGAGGGGACGACCAGTGGCGAGCCCGGAGACCCCGTCGTGGGGGGCGCGCGTGGCTGA	MAAHPGHVTLVGAGPGAADLLTYRAWRAIARADVVVHDRLVPLEVLEDLGPDVEVIDVGKAPGKHKVPQPGINDLLVEHARRGRRVVRLKGGDPFVFGRGGEEYAACRAAGVDVDVVPGVSSALAVPALAGIPLTHRGTTTAFHVVTAHTRTGEQQLDDTAVSCVTDRTATLVVLMGVSSLPAIVTRLLDAGADPDIPVAIVERGSTPDQRVTRTGLDLAAKRAEEVGVRAPAVIVIGDVAARGLLEGTTSGEPGDPVVGGARG	PGPT0003685_1385	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0003685-sirA|ylnD|cysG|cobA-K02303	NA	NA
AK001_00587	447			hypothetical protein	GTGACCCCCTTCGCCGTCGCCGACACCCCGACCGACCTCGTCACTCCCACGGAGGCCACCATGACCGCGATCGACACCGCCGCGCCGACCTGGACGGCCGTGTGCCGGCTCACCGACCTGGCGCCCGAGCGGGGTGCCGCCGCCCTGCTGGAGCGTGCCGACGGCTCGCCGGTGCAGGTCGCCGTGTTCCGGCTGCTGGACGACTCCGTCCACGCCGTCCAGCAGCTCGACCCGTACGCCGCCGCGAACGTCATGTCCCGCGGCATCGTCGGCACGCGCGGCGGCGAGCCGACCGTGGCCTCGCCGGTCTACAAGCAGGTCTTCGCGCTGCGTACCGGCGAGTGCCTCGACACCGGCGGCAAGGAGCCGAAGGCCGGGCTCGGCGAGCACCTGGAGTCCTTCCCGACCGAGGTGCGCGACGGCGTCGTGCACGTGCGGGCGACCTGA	MTPFAVADTPTDLVTPTEATMTAIDTAAPTWTAVCRLTDLAPERGAAALLERADGSPVQVAVFRLLDDSVHAVQQLDPYAAANVMSRGIVGTRGGEPTVASPVYKQVFALRTGECLDTGGKEPKAGLGEHLESFPTEVRDGVVHVRAT	PGPT0000455_337	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363	NA	NA
AK001_00588	2778	nasD_1	COG1251	Nitrite reductase [NAD(P)H]	ATGGGTCCGGCTTCTCTCACGCGGGCCCGGGACGGCGTGAGCAAGATGTTCGCATCAGGTAACCCCTCCCTGACGGTCCGGTCACGGTGGCTCCCTACTGTCGACGACATGAGCAGCGAGCCCACTCCCCGCAGCACCCGGCACGTCGTCGTCGTCGGCGGCGGCCCCGTCGCACAGCGCTTCGTCGAGGCGCTGCGTTCGCGCGACACCGACGGCGCGTGGCGCATCAGCGTCTTCGCCGACGAGCCGCGCAAGCCCTACGACCGCGTCGGGCTGACCCGCTACTTCGAGGTCAGCGACCCCGAGGAGCTCACCCTGGGCGACCCGGCGCTGTGGGACGACCCTCTGGTGGAGCTGCACAGCGGCTGCCTCGTCGCGTCGATCGACCGGGAGAACCGGACGGTCACCGACCAGCTCGGCCGCGTGCACCCCTACGACGAGCTCGTGCTGGCCACCGGGTCGAACGCGGCGATGCCGCCGATCCCCGGCAACGACCTGCCCGGCGTCTTCGTCTACCGCACCATCGACGACGTCGCCGCCCTGCGCGGCTGGGTCGAGTCCAAGCGCGAGGCGGGCCGCGTCGAGACACGCGGTGGCGTCGTCGAGAAGCCGGTGCGCGGCGCCGTCATCGGCGGCGGCCTGCTCGGGCTGGAGGCCGCCGGCGCGCTCAAGGCGCTCGGCGCCCAGGCCACGGTCATCGAGTTCGGCACCCACCTCATGGGCGTGCAGTGCGACCTCGGCGGCGGCCAGGCCCTCAAGCGGCTCATCAACGACAAGGGCATCGCCGTGCGTCCGGAGACGGCCACGAAGCAGATGGCGCCGCACCACCGCACCGGCGACGTCGGGCACCTGGACTTCAACGACGGCGGTCGCCTCGACGTCGACGTCGTCGTGGTGGCCACGGGCGTGCGTCCCCGGGACGAGCTCGCGCGGGCTGCCGGCCTGCCGGTCGGCGAGCGCGGCGGCGCCGTCGTCGACCTGACCTGCCGCACCGAGGACCCGAACGTCTGGGCCATCGGCGAGGTCGCCTGCATCGAGGGCCGGTGCCTCGGGCTGGTCGCGCCCGGCAACACGATGGCGGAGGTCGTCGTGGACCGGCTGCTCGGCGGCGGGGCCGAGTTCCCCGGCGCCGACACCGCCACCAAGCTCAAGCTCTCCGGCGTCGACGTCGCCTCCTTCGGCGACGCCCACGGCCGCACGGAGAACTGCGTCGAGGTGGTCTGGGCCGACCCGACCGCCGGCGTCTACAAGAAGCTCGTGCTCTCGGACGACGCCACGACCCTGCTCGGCGGCGTGTTCGTCGGCGACGCCACCCCGTACGCCTCGCTACGCCCGATGCTCGGTGCGCAGCTGCCCGGGGACCCGGCGGCGTTCCTGCTGCCCGAGGGTGCGGGCGCCGCCCCGGACATCGAGCTGCCCGACGACGCGAACGTCTGCTCGTGCAACAACGTCTCGGCCGGCACGATCCGCGGGGCGGTCACCGAGCACGACTGCTCCTCCGTCGGCGACGTCAAGAGCTGCACCAAGGCCGGCACCACCTGCGGCGCGTGCCTGCCGCTGGTCAAGAAGATCACCGAGACCGAGATGGAGCGCGCGGGCATCGAGGTGTCGACCGCGCTGTGCGAGCACTTCGCGATGACGCGCGCCCAGCTCTTCGACGCCGTGCGCGTGGCCGAGCTGCACTCCTTCAGCGACATCATCGAGCGCTTCGGCACCGTCCCCGAGGGCGCGAGCAGCGCGGGCCGCGGCTGCGACATCTGCAAGCCGGTCGTCGCCTCGATCCTGGCCAGCCAGGGCAACGGGCACATCCTGTCCGGCGAGCAGAGCGCCCTGCAGGACACCAACGACCACATGCTCGCCAACATGCAGAAGGACGGCACCTACTCCGTCGTCCCGCGTGTCCCCGGCGGCGAGATCACCCCCGAGGGCCTCATCGTCATCGGCCAGGTCGCCCAGGACTTCGGCCTGTACACGAAGATCACCGGCGGCCAGCGCATCGACATGTTCGGGGCCCGCGTCGAGCAGCTCCCGGAGATCTGGAAGCGGCTGGTGGACGCCGGCTTCGAGTCCGGCCACGCCTACGGCAAGTCGCTGCGCACGGTGAAGTCGTGCGTCGGGTCGACGTGGTGCCGGTACGGCGTGCAGGACTCGGTCGGCATGGCCGTCGAGCTCGAGCTGCGCTACCGCGGTCTGCGCAGCCCGCACAAGCTCAAGCTCGGTGTCTCCGGCTGCGCCCGCGAGTGCGCGGAGGCCCGCGGCAAGGACGTCGGCGTCATCGCCACCGACAAGGGCTGGAACCTCTACGTCGCCGGCAACGGCGGCCAGACGCCGAAGCACGCCCAGCTCCTGGCCGAGGACCTGGACTCCGCGACGCTGCTGCGCACCATCGACCGGTTCCTCATGCTCTACATCCGCACCGCGGACCGCCTGCAGCGCACGGCCCCGTGGGTGGAGGAGTACGAGGGCGGGCTCGAGGCGATCCGCGAGGTCGTCCTGGAGGACTCCCTCGGCATCGCCGACGACCTCGACGCCGCGATGGCGCAGCACGTCGGCGCCTACGAGGACGAGTGGAAGGCCGTCCTGGAGGACCCGGACAAGCTGGCCCGCTTCGGCTCCTTCGTCAACGCGCCGACGACGCCGGACCCGGACCTGGCCTACGTCGCCGAGCGGGGCCAGAAGCGCCCGGCCACGCCCGAGGAGATCGCCGCCGGTGCCGTCGACCCCGCGCTCTCCGGTCCGGTCCTGGTGACCGGTCCCACGCTGGAGGTCCGTGCGTGA	MGPASLTRARDGVSKMFASGNPSLTVRSRWLPTVDDMSSEPTPRSTRHVVVVGGGPVAQRFVEALRSRDTDGAWRISVFADEPRKPYDRVGLTRYFEVSDPEELTLGDPALWDDPLVELHSGCLVASIDRENRTVTDQLGRVHPYDELVLATGSNAAMPPIPGNDLPGVFVYRTIDDVAALRGWVESKREAGRVETRGGVVEKPVRGAVIGGGLLGLEAAGALKALGAQATVIEFGTHLMGVQCDLGGGQALKRLINDKGIAVRPETATKQMAPHHRTGDVGHLDFNDGGRLDVDVVVVATGVRPRDELARAAGLPVGERGGAVVDLTCRTEDPNVWAIGEVACIEGRCLGLVAPGNTMAEVVVDRLLGGGAEFPGADTATKLKLSGVDVASFGDAHGRTENCVEVVWADPTAGVYKKLVLSDDATTLLGGVFVGDATPYASLRPMLGAQLPGDPAAFLLPEGAGAAPDIELPDDANVCSCNNVSAGTIRGAVTEHDCSSVGDVKSCTKAGTTCGACLPLVKKITETEMERAGIEVSTALCEHFAMTRAQLFDAVRVAELHSFSDIIERFGTVPEGASSAGRGCDICKPVVASILASQGNGHILSGEQSALQDTNDHMLANMQKDGTYSVVPRVPGGEITPEGLIVIGQVAQDFGLYTKITGGQRIDMFGARVEQLPEIWKRLVDAGFESGHAYGKSLRTVKSCVGSTWCRYGVQDSVGMAVELELRYRGLRSPHKLKLGVSGCARECAEARGKDVGVIATDKGWNLYVAGNGGQTPKHAQLLAEDLDSATLLRTIDRFLMLYIRTADRLQRTAPWVEEYEGGLEAIREVVLEDSLGIADDLDAAMAQHVGAYEDEWKAVLEDPDKLARFGSFVNAPTTPDPDLAYVAERGQKRPATPEEIAAGAVDPALSGPVLVTGPTLEVRA	PGPT0000450_218	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362	NA	NA
AK001_00589	1680	nasD_2	COG1251	Nitrite reductase [NAD(P)H]	ATGACGCTCCACGTGCCGACGAAGATCGTCGTCGTCGGGAACGGCATGGTCGGTTCCCGGTTGGTCGACGAGCTGGTGCGCCGCAGTGCGGGCGCCTTCGACATCACGGTGCTCGGCGCCGAGCCGTACGAGCCGTACAACCGGGTGCTGCTCAGCGACGTCGTCGCGGGCCGCACCGACGTCGCGGCGATCTCCATGCCGGACGTCGGCGGCGACCACGTCACGGTGCTGCGCGGCGTCTCCGCGGCGTCGGTCGACCGGGTCCGGCGCACGGTCACCGACGACGCCGGCGCCGTGCACCCGTACGACCACCTCGTGCTGGCCACCGGCTCCCGGGCGCGCATCCTGCCGCTGCCGGGTCTGCGGGACGACGACGGCGCCCCGCACCTGCCCGGCGGCGTGCACGCGCTGCGCACGCTCGACGACGCCCGGGACATCGTGGCGGGCAGCGTCAACAGCTCGCGCGCGGTCGTCGTCGGCGGCGGTGTGCTCGGGGTGGAGTCCGCCTACGGGCTGGCCGCCCGCGGACTCGCGGTCACGCTGGTGGACACCGGTGCGGCGCCGATGAACCGGCAGCTCGAGACCGAGGCCGGGGCCGTGCTGGCCGCGGGGCTGGAGTCGCACGGCGTCACGGTCCGCTCCGGGGTGCGGCCCAGCGAGGTGCTGGTCGCCGGCGGCCGCGCGGTCGGCGTGCGCGTCGACACCGGCGACGGGGGTGACGGGGAGGTGCTGGCCGCCGGGCTCGTCGTCCTGACCACCGGCACCGTGCCCGAGACCGGGATCGCGGCCGACGCCGGTCTGCCCACGGACCGGGGCGTCGTCGTCGGGCACGACCTGGCCAGCCCGGCCGACCGGCGCGTCTTCGCGATCGGCGACTGCGCCCAGCCGCCGCAGGGGTCGCGGGGGCTGGTCGCCGAGGGGTGGGACCACGCGCGTCGTCTCGCCGACCACCTGGCCTCCCTCGTGGCGGCTCGCGAGGACGCCTCCCGGCGAGCGGCGGACCGGCCGCGCGAGCACCTGCGCTTCCCCCACGAGGGGGAGCGGCCCTCGATGGCGGTGCGGCTCGGCACGCTGCTCGCCACACGGGCGGCCACCGACGAGGGTGTCGACACCCGGGGCACCGACGTCGTGAAGGTCAAGGCCGGCCCGCTGAGCGTGGTCTCGATGGGCGCGGCCGGCACGGGCCGCGCGACGCGCCCCGGGGAGCGGGCCGTCCGGCTCGCGGACCCCGCCGGCGGGCGGTTCGTCGAGGCCGTCGTGGCCGACGGGCTGCTGGTGGGCGCGACCTGCGTGGGTGACGCCCGGGTCGCGGCCGACCTGACCGCGGCCTACACGCGTCGCACCCCGGTTCCCGTGGACCCGGCGTTCCTGCTCCTGACACCGGTGATGCCGAGCGCGGAGCCCGCCACCTCGCCGGAGCACATGCCCGACGATGCGATGGTGTGCCGCTGCAACGGCGTCTCCAAGCACGACATCACGGCGTGCTGGGACGACGGCGCCCGGAGCGCGGACGACATCGCCGCCGCCACCCGCGCGACCACCGGGTGCGGCAGCTGCACCGAGGCGGTGTGCGGCCTCGCGGACTGGCTCGGGTCGACCCGCGGCGGCGACCCGTCCGGGGCTGAGCCGGCCTCGGAGGCCGACGCGGAGCCCGAACCGGCCGGGCTCGCCACGGTGTGA	MTLHVPTKIVVVGNGMVGSRLVDELVRRSAGAFDITVLGAEPYEPYNRVLLSDVVAGRTDVAAISMPDVGGDHVTVLRGVSAASVDRVRRTVTDDAGAVHPYDHLVLATGSRARILPLPGLRDDDGAPHLPGGVHALRTLDDARDIVAGSVNSSRAVVVGGGVLGVESAYGLAARGLAVTLVDTGAAPMNRQLETEAGAVLAAGLESHGVTVRSGVRPSEVLVAGGRAVGVRVDTGDGGDGEVLAAGLVVLTTGTVPETGIAADAGLPTDRGVVVGHDLASPADRRVFAIGDCAQPPQGSRGLVAEGWDHARRLADHLASLVAAREDASRRAADRPREHLRFPHEGERPSMAVRLGTLLATRAATDEGVDTRGTDVVKVKAGPLSVVSMGAAGTGRATRPGERAVRLADPAGGRFVEAVVADGLLVGATCVGDARVAADLTAAYTRRTPVPVDPAFLLLTPVMPSAEPATSPEHMPDDAMVCRCNGVSKHDITACWDDGARSADDIAAATRATTGCGSCTEAVCGLADWLGSTRGGDPSGAEPASEADAEPEPAGLATV	PGPT0000395_17	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000395-nasB-K00360	NA	NA
AK001_00590	2283	nasC	COG0243	Assimilatory nitrate reductase catalytic subunit	ATGAGCAGCACGTCCGCCGCTCCGGCAGCGCCCGCTGCGACGCACTGCCCCTACTGCGCCCTGCAGTGCGGCATGGAGCTCACGCCCGTCGAGGGAACGGCGTCGTCGACGCCGGCCCCCGGCGGGCGTGAGCCCCTGCCCGTGACCGTGAACCCGCGCGACTTCCCCACCAACGCGGGGCGGCTGTGCCAGAAGGGCTGGACCGCCGCCGCGGTGCTGGACGTCCCGGACCGGATCACGACCCCGCTCGTGCGCGGCGCCGACGGCGAGCTCGCCCCGGCGACCTGGGACGAGGCGCTCGAGCTGATCACCGCCCGGGTCCGCGCGATCCAGGCCGAGCACGGACCCGAGGGCGTCGCGATCTTCGGCGGCGGCGGGCTCACCAACGAGAAGGCCTACGCGCTCGGCAAGTTCGCGCGCACGGTGCTGCGCACGCCGAACATCGACTACAACGGCCGGTTCTGCATGTCGTCCGCGGCGGCCGCGGGCAACCGCGCCTTCGGCGTCGACCGCGGCCTGCCGTTCCCGCTGACGGACCTCGGCGGGGCCGAGGCGATCCTGCTGCTCGGGTCGAACCCCGCCGAGACCATGCCGCCGTTCGTCCAGCACCTGGCCGGCGCTCGCGGTGCCGCGGGCCTCGTCGTCGTCGACCCGCGGCGCTCGGCCACCGCCCGCCTCACCGAGGACGGCCAGGGCGTGCACGTCCAGCCCGTCCCCGGGACCGACCTCGTGGTGCTGCTGGCCCTGCTGCACGTCGTGATCGCCGAGAAGCTCGTCGACACCGCCTACCTGACCGAGCGGACCACCGGGTACGACGACGTCGTGCGGTCCGTCTCGGCCTGGTGGCCGGAGCGCGCCGAGACCGTGTGCGGCGTCCCGGCCGAGGATCTGCGCCGGCTGGCCCGGCGCCTGGCGGCCGCCTCCCCGGCGCGCGGCGGTCGCGGCGCGTACGTGCTCACCGGCCGTGGGGTCGAGCAGTCGGCCCAGGGCACCGCGACGGTGACCGCGGCGATCAACCTCTCCCTCGCGCTCGGCCTGGTCGGTCGCGAGGGTTCCGGCTACGGGTGCCTGACGGGCCAGGGCAACGGCCAGGGCGGTCGTGAGCACGGTCAGAAGTCGGACCAGCTGCCCGGCTACCGCAAGATCGACGACCCGGCCGCCCGCGTCCACGTCGCCTCCGTCTGGGGCGTCGACCCCGACACCATCCCGGGGCCGGGCAAGCCCGCCGTGGCGCTGCTGAACTCCCTGGCCACACCCGGGGGGCCGCAGGCGCTCTTCGTGCACGGCTCGAACGTGCTGGTCTCGGCGCCCAACGCCGACCGGGTCCGTGAGCGCCTGGAGGCGCTGGACCTGCTGGTGGTGTGCGACTTCGTCCCCTCCGAGACCGCCCGGATCGCCGACGTCGTCCTCCCGGTGACGCAGTGGGCCGAGGAGGAGGGCACGATGACGTCCCTGGAGGGGCGCGTCATCCGGCGGCGACAGGCCGTGGACGCGCCGGGCCAGGCGCGCTCGGAGCTGTGGCTGCTGGCCGAGCTGGCCCGACGGCTCGGCTCGGGCGTGCACTTCGGCACGGACCCGGCCGAGGTCTTCGACGAGCTCGCACGGGCCTCCGCCGGGGGGCCGGCAGACTACTCCGGGCTGTCGCACGCCCGGCTGGACGCTCACGAGGACGGCGGCGGCTCCGGGCTGTACTGGCCCTGCCCGGCCCCGGCCGACGCGCCCGCCGACGCCTCGGGCGACGGGCATGCCGGATCCCCGGCCCGCGGCGAGCACCCCGGGACGCCCCGGATGTTCCTGGACACCTTCGGCACCCCGGACGGGCGGGCCCGCATGGTGCCGGTCGACCACGGCGGCCCGGCCGACGACGTGCGCGGCGACGCCCCGACCTACCTGGTCACCGGCCGCGTCCTGCAGCACTACCAGTCCGGCGCCCAGACGCGCCGGGTGCCCGACCTCGACCGGCTGGTCCCCGAGCCGTACGTCGAGCTGCACCCGCAGCTCGGCCTGCGCGTCGGTGTCGCCGACGGCGACCGGGTCCGGCTGACCTCGACCCGCGGCGTGGTCGAGGCGGTCGCCCGCTGGACCGACGCCGTGCGGCCCGAGGTCGTGTTCATGCCGTTCCACTGGGGCGGCCTCGGCGGCGTCAACCGGATCACCAGCGACGCCGTCGACCCGATCAGCTCCATGCCCGAGTTCAAGGTGTGCGCGGTCCAGGTGAGCCCTGCCGGGCCCGCCACCGCGTCCACGCAGGACGACCACGACACCCAGGAGGTGCCGGTATGA	MSSTSAAPAAPAATHCPYCALQCGMELTPVEGTASSTPAPGGREPLPVTVNPRDFPTNAGRLCQKGWTAAAVLDVPDRITTPLVRGADGELAPATWDEALELITARVRAIQAEHGPEGVAIFGGGGLTNEKAYALGKFARTVLRTPNIDYNGRFCMSSAAAAGNRAFGVDRGLPFPLTDLGGAEAILLLGSNPAETMPPFVQHLAGARGAAGLVVVDPRRSATARLTEDGQGVHVQPVPGTDLVVLLALLHVVIAEKLVDTAYLTERTTGYDDVVRSVSAWWPERAETVCGVPAEDLRRLARRLAAASPARGGRGAYVLTGRGVEQSAQGTATVTAAINLSLALGLVGREGSGYGCLTGQGNGQGGREHGQKSDQLPGYRKIDDPAARVHVASVWGVDPDTIPGPGKPAVALLNSLATPGGPQALFVHGSNVLVSAPNADRVRERLEALDLLVVCDFVPSETARIADVVLPVTQWAEEEGTMTSLEGRVIRRRQAVDAPGQARSELWLLAELARRLGSGVHFGTDPAEVFDELARASAGGPADYSGLSHARLDAHEDGGGSGLYWPCPAPADAPADASGDGHAGSPARGEHPGTPRMFLDTFGTPDGRARMVPVDHGGPADDVRGDAPTYLVTGRVLQHYQSGAQTRRVPDLDRLVPEPYVELHPQLGLRVGVADGDRVRLTSTRGVVEAVARWTDAVRPEVVFMPFHWGGLGGVNRITSDAVDPISSMPEFKVCAVQVSPAGPATASTQDDHDTQEVPV	PGPT0000390_1147	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372	NA	NA
AK001_00591	1386	narU	COG2223	Nitrate/nitrite transporter NarU	ATGGTTGCTCCGACGAGTGGCACCACCGAGACCGAGCCGGTGCCCACCGGCCCGGGCACCGACACTGCCGAGGCGCCCGCGCGCCCGGTCCACCGCTCCGGACGGTGGATCGACCACTGGGACCCCGAGGACCCGGTCTTCTGGCGCAACGGTGGACGGACCATCGCGCGTCGCAACCTGTGGATCTCCATCTTCGCGGAGTTCCTCGGGTTCTGCGTCTGGGCCATCTGGTCGATCGTCGTCCCGCAGCTTCCCGACGCCGGCTTCGCGCTGACCACCGACCAGATGTTCTGGCTCGTCGGCGTGCCCGCCCTGGTCGGTGCGTCCCTGCGCGTCCCCTACACCCTGGCCGTGCCGGTGTTCGGCGGGCGCAACTGGACGATGATCTCCGCCGCGCTGCTGCTGATCCCGACGCTGTCGCTGGTGTGGGTCGTCCAGCGGCCCGAGACCTCCTTCGGCGTGCTGCTGGCCATCGCGGCGCTCGCGGGCTTCGGCGGCGGCAACTTCGCCTCCTCGATGGCGAACATCTCGTTCTTCTTCCCCGAGAAGGAGAAGGGCGCTGCCCTCGGCTGGAACGCCGCCGGCGGCAACATCGGCACCGCGGCCGTCCAGTTCGTCGTGCCGGTGGTCATCGTCACCGCGGCCGGTGTCTCCCTGCCGCGGGCGGGATGGGTGTTCATCCCCTTCATCCTGCTGGCCGTGCTCCTGGCCTGGCGCTTCATGGACAACCTGTCCACCGCCAAGGCCGACCCCCGCTCCTTCGGCACCGCCGCCCGGGAGAAGCACACCTGGCTGATCTCCTTCATCTACATCGGCACGTTCGGCAGCTTCGTCGGGTTCGCCGGCGCCTTCCCGACCCTGCTCGACCGGGAGTTCCCCGAGGTCACGCTGTCGCTGGCGTTCATGGGCGCCCTGATCGGCTCGGTCACCCGCCCGCTCGGCGGCTGGATCGCCGACCGCACCGGTGGCGCCGTGATTACCGTGGCGAGCTTCGTCGTGATGATCGTCGGTGCCTTCGGTGCCATCCAGGCGCTCGGCAGCGGCTCCTTCGGGCTGTTCTTCGGATCGTTCATGCTGCTGTTCGTCGCCACCGGCGTCGGCAACGGGTCGGTCTACCGCATGATCCCGGCCACCTTCCGCATCGCCAACGTCGCCGGCGGCGGTGCCGCGACGGCGAAGGCCGCGGCGGGCTGCATCGGCATCGCCGGTGCCGTCGGTGCCTTCGGCGGGTTCCTCATCCCGCGCGGGTTCGCGATGTCGAACACCGCCACCGGCTCCCTGGTGCCGGCCCTGTGGGCGATCATCGGGGTCTACGTGGTGATGGCCCTGCTCACCTGGGCCGTCTACGGTCGCCGCGGCAGCGAGATGGGGGCTGCTCGGGTATGA	MVAPTSGTTETEPVPTGPGTDTAEAPARPVHRSGRWIDHWDPEDPVFWRNGGRTIARRNLWISIFAEFLGFCVWAIWSIVVPQLPDAGFALTTDQMFWLVGVPALVGASLRVPYTLAVPVFGGRNWTMISAALLLIPTLSLVWVVQRPETSFGVLLAIAALAGFGGGNFASSMANISFFFPEKEKGAALGWNAAGGNIGTAAVQFVVPVVIVTAAGVSLPRAGWVFIPFILLAVLLAWRFMDNLSTAKADPRSFGTAAREKHTWLISFIYIGTFGSFVGFAGAFPTLLDREFPEVTLSLAFMGALIGSVTRPLGGWIADRTGGAVITVASFVVMIVGAFGAIQALGSGSFGLFFGSFMLLFVATGVGNGSVYRMIPATFRIANVAGGGAATAKAAAGCIGIAGAVGAFGGFLIPRGFAMSNTATGSLVPALWAIIGVYVVMALLTWAVYGRRGSEMGAARV	PGPT0000300_1388	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575	NA	NA
AK001_00592	1401	moaE2_2	COG0303	Molybdopterin molybdenumtransferase 2	ATGACCAGCGGACCGCGCACCATCGCCGAGCACACCGCGGCGGCGCTCGCGCGCGTGCGGCCGGTGGCCGCCGCGTCCGTGCGGGTCGACGACCCCGCCGTGGTGGGCCTGGTCCTCGCCGCGGACGTCGTCGCCGCGGCGCCCGTACCGGCCTTCGACCATGCGGCGATGGACGGGTACGCGGTGCGGTCCGCCGACCTGCCCGACGACGGCTCGTCGGTGACGCTGGAGGTCCGGGGCGACCGGCGACCCGGCGTCCCCTCCCCCGCATCCGCCGCAGATGCTGTGGGCATGAAATCTGCAGCTCCCGCCCCGCCCGGAGCTGCAGATTTCATACCCACAACGTCCGACGGCGGAGCAGCCGACGGCGGAGCAGCCGACGGCGGAGCAGCCGACGGCGGAGCGGTCCGGATCATGACCGGGGCGCCGTTACCGGCGGGGTGCGACGCCGTCGTCCCGGTCGAGCGGACCTCCACGAGCCGGTTCGTGGCCGGTGAGCCGACGACGGAGCGCACCGTGACCCTGTCCCGGCAGGCCCGCGACCACGTCCGTCGCGCGGGCACGGACCTGCGCCGTGGCGACCCGATCGCCCGCGCCGGGGACGTCGTCGGCCCGGGTCTGGTCGCCACCGCGGCCGCAGCCGGGCTCGTCGAGCTGCCGGTGCGCCGTCGTCCCCGGGTCGCCGTGCTGTCCACGGGCTCCGAGCTCGCCCCGCTCGGGACCACCGAGGCCGGCACGATCGCCGACTCCAACTCCCTCATGCTCGCCGCGCTCGTGCGCGCCGCCGGCGCCGACGTGGTGCGCATCGGCGCGGTCCCGGACGACGCGGACGCCCTGCGCACCGCTCTGGACCACGTTGTGGGCGTGAAATCTGCAGGTCCGGACCGTCACGATCCTGCAGATTTCATGCCCACAACGGGAGGGGTGGACCTGGTCGTCACCTCCGGCGGGGTGTCCGCCGGGGCGAGCGACGTCGTGCGCGAGCTGCTCGCCTCCGGATCGGCGGCCGACGTCGACGTCACCACCGTCGCCATGCGTCCCGGCAAGCCGCAGGCCCTGGCCTCCTGGCGCGGGGCTCCCTGGGTCGCCGTCCCCGGCAACCCCGTCAGCGCCTTCGTCTCGACCGCGCTGTACGCCCTGCCCGCGGTGCGACGCCTCGCCGGCCGTCCGGACCGACCCGCCACGGCCGTCCGCGCCGCCACCGGATGGTCCAGCCCGCCCGACACGGAGCAGGTGGTCCCCGTGGTCACCCGGCCCGACGGCGTCACCCCGGCCGGTCGCGGCGGCCACCAGCTCTCCGCCCTCGCCCACGCCGACGCGCTCGTCGTCGTCCCCGCCGAGGTCGCGCGCGTCGCCCCCGGCGACCCGCTCCCCCACGTCCCGCTCCCGGAGGCTCGATGA	MTSGPRTIAEHTAAALARVRPVAAASVRVDDPAVVGLVLAADVVAAAPVPAFDHAAMDGYAVRSADLPDDGSSVTLEVRGDRRPGVPSPASAADAVGMKSAAPAPPGAADFIPTTSDGGAADGGAADGGAADGGAVRIMTGAPLPAGCDAVVPVERTSTSRFVAGEPTTERTVTLSRQARDHVRRAGTDLRRGDPIARAGDVVGPGLVATAAAAGLVELPVRRRPRVAVLSTGSELAPLGTTEAGTIADSNSLMLAALVRAAGADVVRIGAVPDDADALRTALDHVVGVKSAGPDRHDPADFMPTTGGVDLVVTSGGVSAGASDVVRELLASGSAADVDVTTVAMRPGKPQALASWRGAPWVAVPGNPVSAFVSTALYALPAVRRLAGRPDRPATAVRAATGWSSPPDTEQVVPVVTRPDGVTPAGRGGHQLSALAHADALVVVPAEVARVAPGDPLPHVPLPEAR	PGPT0008430_1918	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750	NA	NA
AK001_00593	882	mobA		Molybdenum cofactor guanylyltransferase	ATGAGGTACGACGCCGTCGTCCTCGCCGGCGGCCGCGCCACCCGGCTGGGCGGTGCCGCCAAGCCGGAGGTCGTCGTCGGCGGCACCCGCCTGCTCGACCACGTGCTGTCCGCGACGACCGGCGCCGACCGCACCGCCGTCGTCGGCCCGGCCGACCTGCGCTCGCTCACCGAGCGGGACGACGTCGTCGTGACCCGCGAGGACCCGCCCTTCGGCGGCCCGGTCGCCGGGCTGGCCGCCGGGCTGACGGCCCTGCAGCGGCCCGACGCGCCCGAGTGGATCCTCCTGCTCGCCGTGGACGTGCCGGGGGCGGCGGCCGCCGTCGGCCCGCTGGTCGAGACCGCCGACGGGTTCACGAACCTCGACGGCGTGCACCTGGAACACGCCGGACGTGCCCAGTGGCTGACCGGCCTGTACCGCCGCGCGGCGCTGACCCGCGCGCTCGACGGACTCGACCCGCACGGGGCGTCCGTGCGCCGACTCGTGGCTCGTCTCGACCTCCTCCCGCTGCCCGACGAGACAGGGATGAGCGACGACGTCGATACCTGGGACGATGTGAACAGGCTCTCGGCGCGCCCGGCCCGGAGCCGCATCGAGGAGGAGACCCCCATGACCGACGACGTCCCCACCGTGCTCGCCAGCTGGGTGTCCGCCGTCGAGCGGGACCTGCAGCTGCCCGCCGACAGCATCGACGTCACGGAGGTGCTCGACCTCGCCCGCGACGCCGCCCACCACGTCGCGCGGCCCGCCGCGCCGGTGACGACCTACCTCGTCGGCTACGCCCGCGGGCTCGCCGCCGCGGCAGGCAAGGCCGCACCCGACGACGACACCGCCGAACGCACCGCCCGCCTGGCCCTGGGCTGGCGGCCCGAGACGACCTGA	MRYDAVVLAGGRATRLGGAAKPEVVVGGTRLLDHVLSATTGADRTAVVGPADLRSLTERDDVVVTREDPPFGGPVAGLAAGLTALQRPDAPEWILLLAVDVPGAAAAVGPLVETADGFTNLDGVHLEHAGRAQWLTGLYRRAALTRALDGLDPHGASVRRLVARLDLLPLPDETGMSDDVDTWDDVNRLSARPARSRIEEETPMTDDVPTVLASWVSAVERDLQLPADSIDVTEVLDLARDAAHHVARPAAPVTTYLVGYARGLAAAAGKAAPDDDTAERTARLALGWRPETT				NA	NA	NA	NA	NA
AK001_00594	1083	moaA		GTP 3',8-cyclase	ATGACGCTCGTCGACCTGGGCATCCCCCGCCTGCCGACCTCGTGGCGCGACGCGACGCTGCCCGCCGACCGGCCGGACACCCCGGGTCTGGTGGACACCTTCGGCCGGGTCGCCACCGACCTGCGCGTCTCGCTCACCGACCGGTGCAACCTGCGCTGCACGTACTGCATGCCAGCCGAGGGACTGCCCGCGCTGGCGCGCGAGAAGGTGATGTCCCGCGACGAGATCGCCCGGCTGGTCGGCGTCGCGGTCCGCGACCTCGGCGTGCGTCAGGTCCGGTTCACCGGCGGCGAGCCGCTGCTGCGGGGCGACCTCGCCGAGATCGTCGCCGACGTCGCAGCCCTCGACCCGCGCCCGGAGATCAGCCTGACCACCAACGCGATCGGGCTCGACTCCCGCGCCGAAGGGCTGCGCGCCGCGGGAGTGGACCGCATCAACGTCTCCCTGGACACGCTCGACCCGGACACGTTCGCCCGCCTGGCCCGCCGCCCCTACCTGGAGCGCACGCTGGCCGGCATCGAAGCGGCGGCCCGCGTGTTCGACCTGGTCAAGATCAACGCGGTGCTGGTGCGCGGCGTGAACCTGGACCACGCCGCCGACCTGCTGTCCTGGTGCCTGGAGCGCGGCTTCGAGCTGCGGTTCATCGAGCAGATGCCCCTGGACGCCGACCACGCCTGGGACCGCACGGCGATGGTGACGGCCGCCGAGGTGCGCGGCCTGCTGGGCGAGCGCTTCGACCTCGGCCCCGACGCCGAGCCGCGCGACGGCGCCCCGGCCGAACGGTTCGTCGTCCGCTCCCGCGACACGGGCGAGCGGCTCGGACGGGTCGGCATCATCGCCTCGGTGACCGAGCCGTTCTGCGGCGACTGCCGCCGCACGCGCCTGACCGCCGAGGGCGGCATCCGCGACTGCCTGTTCGCGCACACCGAGACCGACCTGCTCGGTCCGCTGCGCGAGGGCGCCTCCGACGCGGTGCTGGCCGACCGGTGGCGGACCGCGATGTGGGGCAAGCGGGCCGGGCACGGGATGGACGACCCGTCGTTCGTCCAGCCGGACCGCACGATGAGCGCGATCGGGGGCTGA	MTLVDLGIPRLPTSWRDATLPADRPDTPGLVDTFGRVATDLRVSLTDRCNLRCTYCMPAEGLPALAREKVMSRDEIARLVGVAVRDLGVRQVRFTGGEPLLRGDLAEIVADVAALDPRPEISLTTNAIGLDSRAEGLRAAGVDRINVSLDTLDPDTFARLARRPYLERTLAGIEAAARVFDLVKINAVLVRGVNLDHAADLLSWCLERGFELRFIEQMPLDADHAWDRTAMVTAAEVRGLLGERFDLGPDAEPRDGAPAERFVVRSRDTGERLGRVGIIASVTEPFCGDCRRTRLTAEGGIRDCLFAHTETDLLGPLREGASDAVLADRWRTAMWGKRAGHGMDDPSFVQPDRTMSAIGG	PGPT0008410_684	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639	NA	NA
AK001_00595	243			hypothetical protein	GTGCTGGAGCTGCGCTACTTCGCGGCGGCCCGGGCGGCGTTGGGCCGTGCCGGGGAGACGATGACGGTGGACGACGGCGCGACGGTCGCCGACGTCGTCGGCCGGCTGAGCGCGGGGGCGCCCGAGGCGGCGCCGGTGCTGTCCCGCTGCTCGGTGCTGCTGGACGGCCGGAGGGCCGCGCCGGACGACGTCGTGCCCGACGGCGCCACGCTCGACGTGCTGCCGCCGTTCGCCGGCGGCTGA	MLELRYFAAARAALGRAGETMTVDDGATVADVVGRLSAGAPEAAPVLSRCSVLLDGRRAAPDDVVPDGATLDVLPPFAGG				NA	NA	NA	NA	NA
AK001_00596	978	etfA_2	COG2025	Electron transfer flavoprotein subunit alpha	ATGACGAACCGCACCGTCCTTGTCCTCCTCGACCCCGCGGGCGAGGTCCGTCCCAGCGTCCTGGAGCTGCTGACGATCGGCCGCACGCTCGGTCGCGTCGAGGCCGTCACGCTGGAGGCACCGAGCGTCGAGGCGCTCGCCCAGCTCGGCGCCTACGGCGTCGAGACCGTCCACCAGGCCGAGCTTCCCGCCGACCTGCGCGGGGACGCCCGGCACCTGTCCGCCGTCGTCGCCGCCGTGCTGACCGCCGCCGTGCGGCTCACCGACGCCGACGTCGTGCTGGCGCCCTCGACCTTCGGTGCCAAGGAGGCCGTGGCCCTGGCCGGGCACGCGCTGGGCGCCGGTGTCATCATCGACGCCGCCGGCGTGGCCGAGGACGACGCCGGGCACGTCGTGGGCACCAAGCGGGTCTTCGCCGGCTCCTGGGACACCGTCAGCCGGGTCACCACCGACGTGGCCGCGCTGACCGTCCGGGCCAACGCCGTCGTCCCGCAGCCGGCCGAGGCCGCGGTGGCCACCGAGGTCGAGGGCTTCGCCGTCGCGGTCGACGCCGTGCTGCCGGCCGTCACCGCCCGGACCGAGAAGGCCCGCGACTCCGACCGCCCGACGCTCGAGGAGGCCGCGGTCGTGGTGGCCGGCGGGCGTGGCACCGAGGGCGACTTCGGGCCGGTCGAGGCGTTCGCCGACGCCGTCGGCGGGGCCGTCGGCGCGACGCGCGACGCCGTGTTCGAGGGCTGGTTCGACCGCTACATCGGGCAGACGGGCGTGACGATCGCCCCGCGCCTGTACGTCGGCGCGGGTGTCTCCGGCGCTCCGCACCACCGCGGCGGCATGCAGGCCTCGCAGGTCATCGTCGCGGTGAACAACGATCCCGAGGCGCCGATCTTCGAGATCTGCGACTTCGCCGTGGTCGGCGACCTGTCCGACGTGCTCGGCCAGGCGGCCGAGGTCATCCGCGCCCACAAGCAGCAGGCCTGA	MTNRTVLVLLDPAGEVRPSVLELLTIGRTLGRVEAVTLEAPSVEALAQLGAYGVETVHQAELPADLRGDARHLSAVVAAVLTAAVRLTDADVVLAPSTFGAKEAVALAGHALGAGVIIDAAGVAEDDAGHVVGTKRVFAGSWDTVSRVTTDVAALTVRANAVVPQPAEAAVATEVEGFAVAVDAVLPAVTARTEKARDSDRPTLEEAAVVVAGGRGTEGDFGPVEAFADAVGGAVGATRDAVFEGWFDRYIGQTGVTIAPRLYVGAGVSGAPHHRGGMQASQVIVAVNNDPEAPIFEICDFAVVGDLSDVLGQAAEVIRAHKQQA	PGPT0001040_1911	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522	NA	NA
AK001_00597	804	etfB_2	COG2086	Electron transfer flavoprotein subunit beta	GTGCGCATCGTCGTTCCCGTCAAGTACGTGCCGGACATCAACGCCGAACGGAAGTTCGTGGACTGTCGGGTGGACCGCGACCCGGCCGTGGGGACCCTCAACGAGCTCGACGAGAACGCCCTGGAAGCCGCGCTGCGGATCGTCGAGGCCCTCGACGAGGCCGAGCAGGAGACGAGCGAGATCGTCGCGCTGACCGTCGCCCCGCCCGAGGGCGACGTGGCGTTGCGCAAGGCGTTCCAGATGGGGGTCGACCGCGGCGTGCGGGTCTCGGACGACGCGCTCGCCGGGTCCGACTACTCCGGCACGACGGCGGCGCTCGCGGCCGCGGTGCGACGGCTGGAGACCGAGGGGCCCGTCGACCTGGTGATCACCGGGATGGCGGCCCTGGACGGTCTGGGCTCGGTGGTGCCGGCGCTGCTGGCCGCGACGCTGGGCCGGCCGTCCGTGACGTTCGCCAAGACGGTCGCCGTGGCCGACGGAACGCTGCAGGCCACCCGCGAGACCGACGAGGCGACCGAGTCGCTCACCGCGCCGCTGCCGGCCGTGCTGTCCGTGGCCGACACCGCCAACCGGCCGCGGTTCCCGAACTTCAAGCTCATCATGGCGGCTCGTTCCAAGGAGATCGAGCAGTGGACGGCGGCCGACCTGGGCCTGGAGCCCGGGGCCGTCGGCACGGCCGGCGCCCGGACCGAGACCACGCTGGCTGCGCCGCGCCCGGAGAAGCCGCCGGTCGAGCTCGTCCAGGACAAGGGCGAGGGCGGCAAGGCCCTCGCCGAGTACCTCATCCGCCACGAGCTGGTCTGA	MRIVVPVKYVPDINAERKFVDCRVDRDPAVGTLNELDENALEAALRIVEALDEAEQETSEIVALTVAPPEGDVALRKAFQMGVDRGVRVSDDALAGSDYSGTTAALAAAVRRLETEGPVDLVITGMAALDGLGSVVPALLAATLGRPSVTFAKTVAVADGTLQATRETDEATESLTAPLPAVLSVADTANRPRFPNFKLIMAARSKEIEQWTAADLGLEPGAVGTAGARTETTLAAPRPEKPPVELVQDKGEGGKALAEYLIRHELV	PGPT0001035_563	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521	NA	NA
AK001_00598	2241	glgX_1	COG1523	Glycogen operon protein GlgX	ATGGAGGCCGCCCGACCGAAGGTCACCCCGCTGACCCGACCCACCCGCACCCGCAGCCACGTCCCGCCGCTGGGGGTGCGCACCACGCCCGACGGCGGCATCGACGTCGCGGTGCTCGCCTCGCACGCGCACGGGGTGGAGCTGTGCCTGATCGACGTCGTCGCCCCCGAGAAGGACCAGCACGACCCGGAGCGCTACGCCGAGCGGCGCATCGAGCTGGACGGCCCGACCTACGGCGTCTGGCACGGGCACGTGCCCGACGTCGCCCCGGGACAGCGCTACGGGTTCCGCGTGCACGGTCCGTGGGACCCGGACTCCGGCATGCGCCACAACCGGGCCAAGCTGATCCTCGACCCGTACGCCCGCGGCATCGAGGGCGACCTCGCCTACGTCCCGGCGACGCTGCGCGGGGGCGCGGACGACGACGGCGGCCCCGACCCGGAGGACTCGCTGCCGTTCGTCCCGCACGCCGTGGTCACCGCCGAGCTGCCCGCGCTGCCGCGGATGTCCCGGCCACGGGTCCCCTGGGCCGACACGGTGGTCTACGAGGCCCACGTGCGCGGGCTGACGCTGCAGCACCCGGGCGTGCCCGAGGAGCTGCGCGGCACCTACGCCGGGCTGGCGCACCCCGCGGTCATCGAGCACCTGCAGGCGCTCGGCGTGACCACGCTGGAGCTGCTGCCCATCCACGCCTCGACGGCGGAGCCCTGGCTGGCCGGCCGCGGGCTGACGAACTACTGGGGCTACTCCACGATGGGCTTCTTCGCCCCGCACGCCGCCTACGCCACTGCGGCCGCCCGCGAGGCGGGCCCGGCGGCGGTCGTGGACGAGGTGCGCGGCATGGTGCAGCTGCTACACGAGGCCGGGATCGAGGTGCTGCTGGACGTCGTCTACAACCACACGTGCGAGGGCGGCGACGACGCGCTGCACCTGTCGTGGCGCGGCCTGGACAACACGCTGTACTACCTGCACGACGGCGGCACCCCGGCCCGGCTGGCCGACGTCACCGGCACGGGCAACACCCTGGACTTCCGCCGCACCCGCGTGGTGCAGATGGCCCTGGACTCCCTGCGGTACTGGGCCGAGGTGATCGGCGTGGACGGCTACCGGTTCGACCTCGCCGTCACCCTCGGGCGCGACCACGACGGCTACACCCCCGACCACCCGTTCCTGTCCGCGCTGCGCACCGACCCCGTGCTGTCCGGTCTCAAGCTGGTGGCCGAGCCCTGGGACGTCGGCCCGGGCGGGTGGCAGACCGGGCGGTTCCCCGCCCCGATGGCGGAGTGGAACGACCGCTTCCGCAACGCCACGCGCTCGTTCTGGCTGGAGTCCGCCCGGGCCGGGTCGCACGGCGCGCCGATGCACGGTCTGCGTGAGCTCACCACCCGGCTGGCCGGGTCGGCGGACCTGTTCGGGCACTCGGACCCGCCGCTGATGCGCGGGCCGGTCGCGTCGGTCAACTACGTCACCGCCCACGACGGCTTCACCCTCGCCGACCTGGTCTCGTTCGACCACAAGCACAACCAGGCCAACGGCGAGGACAACCGCGACGGCACCGACGACAACCGGTCGTGGAACCACGGGATCGAGGGTCACGCCCCCGAGGGCGACGACGCCACCACCGAGCCGTGGTCTGCCGTCGTGCCGCTGCGCCGCCGCTCGCAGCGCAACCTGCTGGCGACGCTGCTGCTGGCCGCGGGCACCCCGATGATCACCGCCGGGGACGAGATGGGCCGCACCCAGGGCGGGAACAACAACGCCTACGCCCAGGACACCGAAATCTCCTGGGTCGACTGGGACCTGGACACGGCGAACTCCGAGCTGCTGGCCACGGCGCGCTACCTGGTCGGCCTGCGCGCCGAGCACGCGGCCCTGCGGGCGGAGTCGTTCTTCCTCGGCTCGCCCCGACCGGGCGAGGAGCACCCCGACCTGCTCTGGTACGACGCCGACGGCGCACCCATGGACGGCGAGGCGTGGTCCCACGAGGGACGGCGCATCATCCAGATGCTGCGCCCCGGCCCGGGCGACGACGAGGCCGACGTGCTGTGCGTGCTGCACGGCGGGCTGGAGGACGCCGAGCTCACGCTGCCCGAGACCCTCGACGGGGCAGGACCGTGGCAGCGGGTATGGAGCTCGACGTGGGACGCGCCCGAGGGGCCCGAGCAGGCGGACGAGGAGGAGGCCCCGGGCACGGCGCTGGTGGAGTCGTTGAGCGTGGAGGTGTTCGTGGCACGGCGCTGA	MEAARPKVTPLTRPTRTRSHVPPLGVRTTPDGGIDVAVLASHAHGVELCLIDVVAPEKDQHDPERYAERRIELDGPTYGVWHGHVPDVAPGQRYGFRVHGPWDPDSGMRHNRAKLILDPYARGIEGDLAYVPATLRGGADDDGGPDPEDSLPFVPHAVVTAELPALPRMSRPRVPWADTVVYEAHVRGLTLQHPGVPEELRGTYAGLAHPAVIEHLQALGVTTLELLPIHASTAEPWLAGRGLTNYWGYSTMGFFAPHAAYATAAAREAGPAAVVDEVRGMVQLLHEAGIEVLLDVVYNHTCEGGDDALHLSWRGLDNTLYYLHDGGTPARLADVTGTGNTLDFRRTRVVQMALDSLRYWAEVIGVDGYRFDLAVTLGRDHDGYTPDHPFLSALRTDPVLSGLKLVAEPWDVGPGGWQTGRFPAPMAEWNDRFRNATRSFWLESARAGSHGAPMHGLRELTTRLAGSADLFGHSDPPLMRGPVASVNYVTAHDGFTLADLVSFDHKHNQANGEDNRDGTDDNRSWNHGIEGHAPEGDDATTEPWSAVVPLRRRSQRNLLATLLLAAGTPMITAGDEMGRTQGGNNNAYAQDTEISWVDWDLDTANSELLATARYLVGLRAEHAALRAESFFLGSPRPGEEHPDLLWYDADGAPMDGEAWSHEGRRIIQMLRPGPGDDEADVLCVLHGGLEDAELTLPETLDGAGPWQRVWSSTWDAPEGPEQADEEEAPGTALVESLSVEVFVARR	PGPT0019225_778	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214	NA	NA
AK001_00599	1698		COG3573	KsdD-like steroid dehydrogenase	ATGACAGACGCCGACGTCATCGTCATCGGAGCGGGCCTGTCGGGCCTGGTCACCGCGACCGAGATCACCGCGGCCGGGCGCCGCGTGATCCTGCTGGACCAGGAGCCGGAGGCCTCCCTCGGCGGGCAGGCCTGGTGGTCCTTCGGCGGGCTGTTCCTCGTGGACTCCCCCGAGCAGCGTCGGCTCGGCGTGCACGACTCCGCCGAGCTCGCCTGGTCCGACTGGCTCGGGTCCGCGCGGTTCGCCCCCGGCGCCGAGGACGGCGAGGGTCCCGACCGGCACGGGTACGCCTGGGCCAAGCACTTCGTCGAGGCCGCCGCCGGTGACCTGCGCTCGTGGCTGCACGCCAAGGGGGTGCGCTGGTTCCCGCTCGTGCAGTGGGCCGAGCGCGGCGGGTATCCCTTCGGACCCGGGCACGGGACCGCTCACGGGAACTCCGTCCCGCGGTTCCACGTCACCTGGGGCACCGGCCCGGCCGTCCTCGCACCGTTCGTCGCCGCGGCGCTGGAGGCGCGGTCGGCCGGACTGCTCGACCTGCGCTTCCGCCGGCGGGCCACCGGGCTGGTGGTCACCGACGGCCGCGTCACGGGCGTGCGCACCGAGATCCTGGCCGACGACGGCGCCCTGCGGGGCGAGCCGTCCTCGCGCGAGGTGGTCGGCGGCGAGGAGCTCACCGCCGGGGCGGTGGTGGTGGCCTCCGGCGGCATCGGTGCCAACCACGACCTGGCGCGCGAGCACTGGGACCCCGGGCACGGCGCGCTGCCGGCCCGGATGCTCTCCGGCGTGCCCGACTCGACCGACGGCCTGATGCTCGGCCACGCCGCCCACGCGGGGGCGGCGCTGGTGCACCAGGACCGCATGTGGCACTACCCGGAGGGCATCGCCAACCACTCGCCCGTGTGGACGAACCACGGCATCCGCATCCTGCCCGGGCCGTCCTCGCTGTGGCTGGACGCCGACGGCGGTCGGCTGCCGGCGCCGCTGTTCCCCGGGTTCGACGCCCTCGGAGCGCTGCAGCACGTCACGGGGCGCGGGGACGACCACTCCTGGTTCGTGCTGAACCGGGCGATCATGGAGACCGAGTTCGCGCTGTCCGGCTCCGAGCAGAACCCGGACCTGACCGGCAAGGACGTCCGCCTGCTCGCCCAGCGCGTGCTGCCCGGCGCCGTCGGACCCGTGGCCCGGTTCGCCGAGTCCTCCCCCGAGTTCCTGTGGGCGGACTCCCCCGAGGAGCTCGCGGGCCGGATGAACGCGCTGACCGCGGCGACCCCGGGCTCGGGCGGGCACGTCGACCCGGCGCGGCTCGCCGCCGTCGTCCGCGCCCGCGACGCCCAGGTCGCCTCCGGCCTGGGCAAGGACCCGCAGGTGGTGGCCACGCGCGCCGCCCGCGACTTCCGCGTGGACAGGATGATGCGCGTCAGCCCGCCGCGGCCGCTGACGACCCCGAAGGACGGCCCGCTGCTCGCCGTGCGGCTGTCCGTGCTGACCCGCAAGACCCTCGGCGGGCTGTGGTGCGACCCGTCCGGCCGGGTGCTGCGCGAGGACGGTTCCGTGCTGGACGGGCTCTGGGCGGTCGGGGAGGCCGCCGGGTTCGGGGGTGGCGGCATGCACGGCCACCGGACCCTCGAGGGCACGTTCCTGGGCGGGTGCCTGCACACCGGCCGCGTCACCGGTCGGGCGCTGGCCGCGGACCGGTGA	MTDADVIVIGAGLSGLVTATEITAAGRRVILLDQEPEASLGGQAWWSFGGLFLVDSPEQRRLGVHDSAELAWSDWLGSARFAPGAEDGEGPDRHGYAWAKHFVEAAAGDLRSWLHAKGVRWFPLVQWAERGGYPFGPGHGTAHGNSVPRFHVTWGTGPAVLAPFVAAALEARSAGLLDLRFRRRATGLVVTDGRVTGVRTEILADDGALRGEPSSREVVGGEELTAGAVVVASGGIGANHDLAREHWDPGHGALPARMLSGVPDSTDGLMLGHAAHAGAALVHQDRMWHYPEGIANHSPVWTNHGIRILPGPSSLWLDADGGRLPAPLFPGFDALGALQHVTGRGDDHSWFVLNRAIMETEFALSGSEQNPDLTGKDVRLLAQRVLPGAVGPVARFAESSPEFLWADSPEELAGRMNALTAATPGSGGHVDPARLAAVVRARDAQVASGLGKDPQVVATRAARDFRVDRMMRVSPPRPLTTPKDGPLLAVRLSVLTRKTLGGLWCDPSGRVLREDGSVLDGLWAVGEAAGFGGGGMHGHRTLEGTFLGGCLHTGRVTGRALAADR				NA	NA	NA	NA	NA
AK001_00600	2127	glgE2	COG0366	Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 2	GTGACGACGGACCACCGGGTGTCCGGGCATGTTGGCGCGCACTCCCCGGCCCGTCTGACTAGCGTGGGGGGCGTGACGTCGCCCAAGCCCGCCCCGCCCCATCCCATCGGTCGCATCCCCGTCATCGAGGTCTCCCCCGTCGTCGAGGGCGGACGCTGGCCCGCGAAGGCGACTCCCGGCGAGGTCGTCCCGGTCGAGGCCACCGTCTTCCGCGAGGGTCACGACGCCGTCAGCGCCACCGCCGTGCTGTTCACCCCCGACCGGCGTCTGCACTCGTGGGCCCCCATGCGGGACGTCGCCCCCGGGCTCGACCGGTTCCAGGGGTTCCTGCAGCCCGACGCCCCGGGCGACTGGTCGTTCCGCGTCGAGGCCTGGTCGGACCCGTACGCCACCTGGGCCCACGACGCCACGATCAAGGTCGCGGCCGGGCAGGACGTCGACCTCATGCTCGCCGAGGGCGCGCTGCTGTTCGAGCAGATCGTCGCCCCGCGCCTGCAGCAGCGCCGCAACGCCGAGGACGCGGAACTCCTGGACCGCGTGGCCCGGGAGCTGGCCGACACCACGCGCCCCGCCGAGGCCCGCCTCGCCATGGCCACCCAGCACACCGTGCGCGACGCCCTGCAGCACATCCCGCTGCGCCGCCTGGTCTCGGCGAGCGCCACCTACCCGCTGCAGGTGGACCGCCGGCTGGCCCAGACCGGCGCCTGGTACGAGATCTTCCCCCGGTCCGAGGGGGCCACCCGCGACGCCGACGGCACCTGGCGGTCCGGCACCTTCGCCACCGCCGCGGAGCGCCTGCCCGCCATCGCCGCGATGGGGTTCGACGTCGTCTACCTCACCCCGGTCCACCCCATCGGCACGACGTTCCGCAAGGGCCGCAACAACACCCTCGAGGCCGAGCCCGGGGACCCCGGCAGCCCCTACGCGATCGGCTCGCCCGACGGCGGGCACGACGCGATCCACCCGGACCTGGGCACCGCCGAGGACTTCACCGCCTTCGTGGACGCCGCGCGCGGCCAGGGTCTCGAGGTCGCCCTGGACCTGGCGCTGCAGTGCTCGCCCGACCACCCGTGGGTCGCCGAGCACCCGGAGTGGTTCACCGTCCGCGCGGACGGGTCCATCGCCTACGCGGAGAACCCGCCGAAGAAGTACCAGGACATCTACCCGCTGAACTTCGACACCGACCCGGTCGGGCTCTCCCACGAGGTCCTGCGCATCGTGCGGCTGTGGATCGACCGCGGGGTCACGCTGTTCCGGGTGGACAACCCGCACACGAAGCCGTTGGACTTCTGGGAGTGGCTGCTGGCGGAGGTCCGCGCCACGAACCCGGAGGTGATCTTCCTGTCCGAGGCGTTCACCAAGCCCGCCATGATGCAGACGCTCGGGCGGATCGGGTTCCACCAGTCGTACACCTACTTCACCTGGCGCAACACCGGCGAGGAGATCACGGAGTACCTGGCCGAGGTGTCCGGGGAGCAGGGCGCCGTCATGCGGCCCGCGTTCTGGCCCACGACGCACGACATCCTGCCGCCGTACCTCCAGCACGGCGGCGTCGCCGGGTTCGCCGTGCGGGCCGTGCTCGCGGCGACCGGCAGCCCCACGTGGGGCATCTACTCGGGCTACGAGCTCGTGGAGAACGTGCCCCGCCCGGGCGTCGAGGAGCAGATCGACAACGAGAAGTACGAGTACCGGCCGCGCGACTGGTCGGCCGCCGACGACATCGGCATCTCGACGCTGCTGCGGCGGCTGAACGAGATCCGTCGCGACCACCCGGCCCTGCAGCAGCTGCGCAACCTGACCGTCCATCCCACGACCAACCCCCAGGTGATCGCCTACTCGCGGCGTGTCCGCGCCGAGCACCTGCCCGCGGCCGGCCGTCCCGGGTCCGGCCACGACGACGTCGTGCTCGTGGTGATCAACCTCGACCCCCACCACCCCCAGGAGTCGACCGTGCTGCTCGATCACGAGGCCCTCGGCCTGGACGCTCCCGACGACGTCGAGGACCAGCCCTTCTTCACCGTCCACGACGAGCTGTCCGGTGTCAGCTATCCCTGGGGGCGCCATCCCTACGTCCGTCTCGAACCGCAGGTGCAGGTCGGTCACGTGCTGAAGGTGGTGCCCGCATGA	MTTDHRVSGHVGAHSPARLTSVGGVTSPKPAPPHPIGRIPVIEVSPVVEGGRWPAKATPGEVVPVEATVFREGHDAVSATAVLFTPDRRLHSWAPMRDVAPGLDRFQGFLQPDAPGDWSFRVEAWSDPYATWAHDATIKVAAGQDVDLMLAEGALLFEQIVAPRLQQRRNAEDAELLDRVARELADTTRPAEARLAMATQHTVRDALQHIPLRRLVSASATYPLQVDRRLAQTGAWYEIFPRSEGATRDADGTWRSGTFATAAERLPAIAAMGFDVVYLTPVHPIGTTFRKGRNNTLEAEPGDPGSPYAIGSPDGGHDAIHPDLGTAEDFTAFVDAARGQGLEVALDLALQCSPDHPWVAEHPEWFTVRADGSIAYAENPPKKYQDIYPLNFDTDPVGLSHEVLRIVRLWIDRGVTLFRVDNPHTKPLDFWEWLLAEVRATNPEVIFLSEAFTKPAMMQTLGRIGFHQSYTYFTWRNTGEEITEYLAEVSGEQGAVMRPAFWPTTHDILPPYLQHGGVAGFAVRAVLAATGSPTWGIYSGYELVENVPRPGVEEQIDNEKYEYRPRDWSAADDIGISTLLRRLNEIRRDHPALQQLRNLTVHPTTNPQVIAYSRRVRAEHLPAAGRPGSGHDDVVLVVINLDPHHPQESTVLLDHEALGLDAPDDVEDQPFFTVHDELSGVSYPWGRHPYVRLEPQVQVGHVLKVVPA	PGPT0018610_584	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147	NA	NA
AK001_00601	1785	treS_1	COG0366	Trehalose synthase/amylase TreS	ATGAATGCCTCCGCGCAGACCGGTGGCGTGGACGTCCCGCGCCCCATCACCCGCCAGATCCCCGTCCAGGCGCTGCCGCCGCGGCGCCAGCCGGAACCGCCGCCGCTGCCGAAGCCCGGCCTGGTCGAGGACCCGGACTGGTACCGCAAGGCGGTCTTCTACGAGGTCATGGTCCGCAGCTTCACCGACTCCGAGGGCGCCGGGTCGGGAGACCTGCGCGGGGTCATGGACCGGCTCGACTACCTGCAGTGGCTCGGGGTCGACTGCCTGTGGCTGCCGCCCTTCTACCCGTCCCCCCAGCGCGACGGCGGCTACGACGTCGCGGACTTCACCGCGATCGCCCCGCAGTACGGGTCGCTGCAGGACTTCGGCCGGCTCATCGAGGCGGCGCACGCGCGCGGCATCCGGATCATCATCGACCTGGTCATGAACCACACCAGCGACCAGCACCCCTGGTTCCAGGCGTCCCGCTCCGACCCCGAGGGCCCCTACGGCGACTTCTACGTGTGGTCGGACGACGACTCCGGCTACCAGGACGCGCGGATCATCTTCGTCGACACCGAGACCTCGAACTGGACCTTCGACCCGGTGCGCCGCCAGTACTACTGGCACCGGTTCTTCAGCCACCAGCCGGACCTGAACTACGAGAACCCGAAGGTCGCCGAGGCGATGTTCGACGTCGTCCGGTTCTGGCTGCGCTCCGGCGTGGACGGCTTCCGGCTCGACGCGGTGCCCTACCTGTACGAGGAGGAGGGCACCAACTGCGAGAACCTGCCGCGCACGCACGAGTTCCTGCGGCGGGTGCGGGCGATGATCGACGAGGAGTTCCCCGGCCGGATCATGCTGGCCGAGGCCAACCAGTGGCCGCACGACGTCGTGGACTACTTCGGGACCAGCGAGGACCCGGAGTGCCACATGTGCTTCCACTTCCCGGTGATGCCGCGCATCTTCTACGCCCTGCGCGACCAGCGGGCCACCCAGCTCCTGGACATCATGGCCGACACCCCCGAGATCCCGGCCGCCGGCGGGCAGTGGAGCACGTTCCTGCGCAACCACGACGAGCTCACCCTCGAGATGGTCTCGACCGAGGAGCGCGCCGCGATGTACGGGTGGTACGCCCACGACCCGCGCATGCGCGCCAACGTGGGCATCCGCCGTCGGCTCGCGCCGCTGCTGGACAACTCCCGCAAGGAGATCGAGCTCGCCCACGCCCTGCTGCTGTCCCTGCCGGGCAGCCCGTGCCTGTACTACGGCGACGAGATCGGCATGGGCGACAACATCTGGCTGCCCGACCGCGACGCCGTGCGCACGCCGATGCAGTGGACGCCCGACCGCAACGCCGGGTTCTCCACCGCCGACCCGGGCAAGCTGTACCTGCCGCTGAACCAGTCGCTGGTGCACCACTACCACCACATCAACGTGGAGGCACAGCTCGCGCAGCCGACCTCCCTGCTGCACTGGGTGCACGGAATGCTGGGCGTACGGCGGCTGCACCCGACGTTCGGCACCGGCGACTTCCGCGCCTGCGAGGTGGACGACGAGGCGATCCTCGCCTTCGTGCGGTCCGGCGACGAACAGCTCGTGGTGGCCGCCAACCTGTCCACGACGGCGCGGTCGGCCACGGTCTCGCTGCCCGGCATGGAGGGCTGGACGCTGACCGACCTCTTCGGCGGCGGCCGGTTCCCCCAGGTGTCCGCCGACGGCACGGTGCAGCTGTCCTGGGGCTCGCGCGACTTCTACTGGCTCCTGGCCACTCCCCCGGACCCGAGCGACGACGAAGGGTAG	MNASAQTGGVDVPRPITRQIPVQALPPRRQPEPPPLPKPGLVEDPDWYRKAVFYEVMVRSFTDSEGAGSGDLRGVMDRLDYLQWLGVDCLWLPPFYPSPQRDGGYDVADFTAIAPQYGSLQDFGRLIEAAHARGIRIIIDLVMNHTSDQHPWFQASRSDPEGPYGDFYVWSDDDSGYQDARIIFVDTETSNWTFDPVRRQYYWHRFFSHQPDLNYENPKVAEAMFDVVRFWLRSGVDGFRLDAVPYLYEEEGTNCENLPRTHEFLRRVRAMIDEEFPGRIMLAEANQWPHDVVDYFGTSEDPECHMCFHFPVMPRIFYALRDQRATQLLDIMADTPEIPAAGGQWSTFLRNHDELTLEMVSTEERAAMYGWYAHDPRMRANVGIRRRLAPLLDNSRKEIELAHALLLSLPGSPCLYYGDEIGMGDNIWLPDRDAVRTPMQWTPDRNAGFSTADPGKLYLPLNQSLVHHYHHINVEAQLAQPTSLLHWVHGMLGVRRLHPTFGTGDFRACEVDDEAILAFVRSGDEQLVVAANLSTTARSATVSLPGMEGWTLTDLFGGGRFPQVSADGTVQLSWGSRDFYWLLATPPDPSDDEG	PGPT0014120_749	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-AMYLASE,PGPT0014120-treS-K05343	NA	NA
AK001_00602	1365	mak		Maltokinase	ATGATCGACGTCTCCGTCCAGCACGCAGCCCCCGACCCGAGCGTCGGTGAGCTGCTCGCGGCCTGGCTGCCGACGCAGCGCTGGTTCCCCGGCGGCACGTCCGTGCGCGCCGAGCCCTGGTTGGCGGTGACGTTCGACCAGGAAGGGGCCGACGTCGCCGGGGCCGACGGCGCGCACGGCGACGTCGTGCTGCTGCTCACGCGCCTCGTGGGGCCCGAGCTGCCCGGCGGCGAGCTCCTCGCCCAGGTGCCGCTGGTGCTCAGCGACCCCGAGCACGTCAGCCTGGGGCACATCGGCACGGTGGAGACCGCCTCAGGCGAGATCGCCGTGCACGACGGCGGCGCGAACCCGGCCTGCTGGGTGCTGCTGCTGCGTGCCATGGGCATCGGCGGGGACGCCGCGACCCTGACCGAGCGCGGTCGGGTCCTGGCGGGCGAGCAGTCCAACACGTCGGTGATCCTGCCGGGGGTGCCCTCCCCCGGCGGTGCGGGCGGGATGCTCAAGATCCTGCGCACCATCGCCGACGGGCCCCACCCCGACGTCGTCGTGCCCCAGGCGCTGACGGCCGACGGCTGGGAGGGCGTCCCGCGGTTCCTCGGCGCGCTGGAGATCGACGCCGACGACTCGACCGAGAGCCCGGTGCACCTGGCGATCCTGTCCGAGCTCGTGCCGCACGCCGAGGACGGGTTCGAGCTGGCCTGCGACCTGGCCAGCCGCGGCGAGTCCTTCGCCGAGCACTCCCGCGACCTGGGACGCCTCGTGGCCGAGCTCCACCAGCGGATGGCCAGGCTGCTGCCCGTCGGCCCGCCGCTGGACGCCGCCCGGTTCGTCGCCGGGCTGCGCCGGCGCGCCGACCGCGCCGTGGCCGAGGCCGACGTGCTCGCCCCGCGGGCGGCGGAGATCTCGGCGCTGCTGGACGACCTCGAGCAGCGGCTGGCGGCCCTGCCGGAGCCGGTCGCGACCCAGCGCATCCACGGCGACCTGCACCTGGGCCAGACGCTGTTCGGCGAGGGCTGGAAGGTCCTCGACTTCGAGGGCGAGCCGCAGCGCTCGGTCGACGAGCGGACCGCACCGGACCTGCCCCTGCGCGACGTCGCGGGCATGCTGCGGTCCTTCGACTACGCCGCGGCGGTCGCCGAGGCGCCCGACCCGGCGGCGTGGCAGGCGGAGGCGGCCGAGGCGTTCCTCGCCGGGTACCGCGACGCGGCCCCCGCCCCGTCCGGCCTCGACCCCGAGACCGCCGCGACGGTGCTCGACGCCCTCGTGCTGGACAAGGCGCTGTACGAGGTGGTCTACGAGTCCCACCACCGGCCCACCTGGCTGCCCATCCCGCTGGGTGCGGTGGACCGGCTGCTGCGGGACTGA	MIDVSVQHAAPDPSVGELLAAWLPTQRWFPGGTSVRAEPWLAVTFDQEGADVAGADGAHGDVVLLLTRLVGPELPGGELLAQVPLVLSDPEHVSLGHIGTVETASGEIAVHDGGANPACWVLLLRAMGIGGDAATLTERGRVLAGEQSNTSVILPGVPSPGGAGGMLKILRTIADGPHPDVVVPQALTADGWEGVPRFLGALEIDADDSTESPVHLAILSELVPHAEDGFELACDLASRGESFAEHSRDLGRLVAELHQRMARLLPVGPPLDAARFVAGLRRRADRAVAEADVLAPRAAEISALLDDLEQRLAALPEPVATQRIHGDLHLGQTLFGEGWKVLDFEGEPQRSVDERTAPDLPLRDVAGMLRSFDYAAAVAEAPDPAAWQAEAAEAFLAGYRDAAPAPSGLDPETAATVLDALVLDKALYEVVYESHHRPTWLPIPLGAVDRLLRD				NA	NA	NA	NA	NA
AK001_00603	2220	glgB_1	COG0296	1,4-alpha-glucan branching enzyme GlgB	ATGACGTCCGTGCCATCTGCTGTCGACCCGGAACTCCTGACCGCCGTCGCGCGCGGCACCACGCACGACCCGCACGCGGTGCTCGGCGCGCACCTGCTGCCCGTCGACGGGGACAGTCCGCCGTCGGCGGTGGTGCGGGTGCTGCGCCCCCTGGCCGACGAGGTCGTGGTCCTCGCGGCCGGACCCGACGGGGACGTCGAGCAGCCCGCGACCCACGAGGCCGGCGGAGTGTGGAGCGCGGTCGTCCCGGCCCTGACGGACGACGACGGCACCCGGCACGTGCCCGACTACCGGGTCCGGACCCGCTACGGCGACGACGTCCAGACCGCCGACGACCCGTACCGCTTCCTGCCCTCGCTGGGCGAGGTCGACCTGCACCTGGTGGGCGAGGGCCGCCACGAGGAGCTGTGGCGGGTGCTCGGCGCGAACCGGCACGTCTACCCCAGCGCGCGCGGCGACGTCGTCGGCACCTCCTTCGCGGTGTGGGCGCCCAACGCCCGCGGCGTGCGCCTGGTCGGCGACCACAACCGCTGGACGTCGGTGCACCCGATGCGCTCCCTCGGCTCCAGCGGCGTGTGGGAGATCTTCGTGCCCGGCGTCGGCCCCGGCACCCGCTACAAGTACGAGATCTGCGGCCCGGACGGCACCTGGCGCGCCAAGGCCGACCCGCTGGCGAAGGCGACCGAGGTGCCGCCCGCGACCGCCTCCGTCGTCGTGCACAGCGACTACACCTGGGACGACCACGACTGGATGACCCGACGGGCGTCCCGGGACCAGCACGGCGGCCCGATGAGCGTCTACGAGGTGCACCTCGGCTCCTGGCGCCCCGGCCTCGGCTACCGCGAGCTCGCCGAGCAGCTCACGGAGTACGTCGTCGAGCAGGGCTTCACCCACGTCGAGGTGCTGCCCGTGGCCGAGCACCCGTTCGGCGGGTCGTGGGGCTACCAGGTCACGAGCTACTACGCGCCGACGTCGCGGTTCGGCTCCCCCGACGACTTCCGGTTCCTGGTCGACCGGCTGCACCAGGCCGGCATCGGCGTCATCCTCGACTGGGTGCCCGCGCACTTCCCGCGGGACGACTTCGCCCTGGCGCGGTTCGACGGCACCCCGCTGTACGAGCACGCCGACCCTCGACGCGGCGAGCAGCCCGACTGGGGCACCTACGTCTTCGACTTCGGCCGGCGCGAGGTGCGCAACTTCCTCGTCGCGAACGCCACCTACTGGTTCGAGGAGTTCCACGCCGACGGCCTGCGCGTCGACGCCGTCGCGTCGATGCTCTACCTCGACTACTCGCGCAACGAGGGCGAGTGGACCCCGAACGTCCACGGCGGGCGCGAGAACCTCGAGGCGATCAGCTTCATCCAGGAGGCCAACGCGACCGCCTACCGCCGTACCCCCGGCGTGCTGATGATCGCCGAGGAGTCCACGGCCTTCCCCGGGGTGACCCGGCCCACCGACTCGGGCGGTCTCGGGTTCGGCCTGAAGTGGAACATGGGATGGATGAACGACACGCTGCAGTACGTCGCCAAGGACCCGATGTACCGCAGCCACCACCACGGCGAGCTGACGTTCTCGCTGGTCTACGCGTTCTCCGAGCAGTACGTGCTGCCCATCAGCCACGACGAGGTCGTGCACGGCAAGGGCTCGCTGCTGCGCAAGATGCCCGGCGACCGGTGGCAGCAGCTCGCCGGGGTGCGCTCCTTCCTCGCCTACCAGTGGACCCACCCGGGCAAGCAGCTGCTGTTCATGGGCAGCGAGTTCGCCCAGGAGGCCGAGTGGAACGAGGGCACCGGTCTGGACTGGTGGAGCCTGAAGGACGCCGGGCACGCGGGCGTGCAGCGCCTGGTGCGAGACCTGAACCACCTCTACCGCGCGACGCCGTCGCTGTGGGAACGCGACTTCGACGGGTCCGGCTTCGAGTGGATCGAGGCCGGGGACGCCGGCCGCAACCTGCTGGCCTACGTCCGGCGGGCGGCCGACGGCTCACCGGTCGTGGTGGTCGTGAACTTCGCGGGCGTGCCCCACGAGGGCTACCGGCTCGGTCTGCCGCACGGCGGCGCCTGGACCGAGGTGCTGAACACCGACGCGGTCGAGTACGGGGGCTCCGGCGTGGTCAACGTCGGCGACGTCGTCGCCGAGGAGACCCCCTGGCACGGCCGCGCGCAGTCGGCGGCCCTGCGGGTCCCGCCGCTCGGTGCCCTGGTCCTCGCCCCGCGCTGA	MTSVPSAVDPELLTAVARGTTHDPHAVLGAHLLPVDGDSPPSAVVRVLRPLADEVVVLAAGPDGDVEQPATHEAGGVWSAVVPALTDDDGTRHVPDYRVRTRYGDDVQTADDPYRFLPSLGEVDLHLVGEGRHEELWRVLGANRHVYPSARGDVVGTSFAVWAPNARGVRLVGDHNRWTSVHPMRSLGSSGVWEIFVPGVGPGTRYKYEICGPDGTWRAKADPLAKATEVPPATASVVVHSDYTWDDHDWMTRRASRDQHGGPMSVYEVHLGSWRPGLGYRELAEQLTEYVVEQGFTHVEVLPVAEHPFGGSWGYQVTSYYAPTSRFGSPDDFRFLVDRLHQAGIGVILDWVPAHFPRDDFALARFDGTPLYEHADPRRGEQPDWGTYVFDFGRREVRNFLVANATYWFEEFHADGLRVDAVASMLYLDYSRNEGEWTPNVHGGRENLEAISFIQEANATAYRRTPGVLMIAEESTAFPGVTRPTDSGGLGFGLKWNMGWMNDTLQYVAKDPMYRSHHHGELTFSLVYAFSEQYVLPISHDEVVHGKGSLLRKMPGDRWQQLAGVRSFLAYQWTHPGKQLLFMGSEFAQEAEWNEGTGLDWWSLKDAGHAGVQRLVRDLNHLYRATPSLWERDFDGSGFEWIEAGDAGRNLLAYVRRAADGSPVVVVVNFAGVPHEGYRLGLPHGGAWTEVLNTDAVEYGGSGVVNVGDVVAEETPWHGRAQSAALRVPPLGALVLAPR				NA	NA	NA	NA	NA
AK001_00604	942		COG3118	putative protein	ATGAGCACTCCCACGCCCGAGCCGAGCTTCAGCCCGCGCGGCGCCGTCGACCTGTCGGCCCTGAACCGACCCCAGTCCCCGCCCCCCGGGGAGCCGGGCGGCGCACCGACGGCCGGGGGGTTCGTCGTCGACCTGACCGACGCGAACTTCCAGCAGGTCGTCCAGGACTCGACGACGTACCCCGTCGTCGTCCTGCTGTGGATGCCCACGGACCAGGCGAACGCCGACCTCGGCACCACGCTGGGCCGGCTCGCCGACGAGTACGCCGGACGCTTCCTGCTGGGACGCGTCGACGCCAACGAGTACCCGCAGATCGCGGCGGCGTTCCAGCCGCAGGGCGTCCCCACCGTCGTCGCCGTGCTGCAGGGGCAGCCGCTCCCGCTGTTCGCGGGAGCCGCCTCCGAGGAGCAGATCCGCGGTGTGCTGGACCAGGTCCTCGCCGCCGCCGAGCAGAACGGCGTGACGGGCCGCGTCCCCGGTGCCGGCGCCGAGGAGCCGGAGCAGCCCGCCGAGGAGCCGGAGGAGCCGCTGCCGCCGCTGCACCAGGAGGCCTACGACGCCATCGAGCGCGACGACCTCGACGCCGCGGCGACCGCCTTCTCCCGGGCGGTCACCCAGGACCCCACCGACGCCCAGGCCGTGGCGGGTCTCGCCCAGGTGCGCCTCATGCAGCGCACCCGCGGTGCCGATCTGCAGCAGGTGCGCACCGCTGCGGCGGACGCACCGGCCGACGTCGACGCCCAGCTCGCCGTCGCCGACATGGACATGCTCGGCGGGAAGGTCGACGACGCGTTCGACCGGCTGCTGCAGCTCATGCCCGGCGCCGACGCGGACGACAAGGAGAAGCTGCGGGCGCGGCTCGTCGACCTGTTCGAGGTCGTCGGGACGTCCGACTCCCGGGTCGTCAAGGCCCGCAAGAAGATGATGATGTTCCTGTACTGA	MSTPTPEPSFSPRGAVDLSALNRPQSPPPGEPGGAPTAGGFVVDLTDANFQQVVQDSTTYPVVVLLWMPTDQANADLGTTLGRLADEYAGRFLLGRVDANEYPQIAAAFQPQGVPTVVAVLQGQPLPLFAGAASEEQIRGVLDQVLAAAEQNGVTGRVPGAGAEEPEQPAEEPEEPLPPLHQEAYDAIERDDLDAAATAFSRAVTQDPTDAQAVAGLAQVRLMQRTRGADLQQVRTAAADAPADVDAQLAVADMDMLGGKVDDAFDRLLQLMPGADADDKEKLRARLVDLFEVVGTSDSRVVKARKKMMMFLY				NA	NA	NA	NA	NA
AK001_00605	1089			hypothetical protein	ATGAAGGACTTCACCCGCCGGCCCGGGCGCCGGGCCGCGGCCGCCGCCGGTGCGGCGACCACCGTCGTCCTGCTGGCCGGCTGCGCCGACGAGCTGCCGACGCCCGTCGCCGACGACCCGTTCACGGGACCCGCGCTGACCGCGGCCCAGCAGACGCGTGTCGTCGAGGAGGTGGCCGCGTCGCTCGACCAGGCGAGCGAGAACGAGCAGCCGAAGCAGCTGCGCCCCCGCGTGGAGGGCCCGGCCTTCGAGGTCCGGCGCAGCCAGATCCGGGTCGCCGAGGAGCGGGGCGACAACTCGCTCGTGACGAACATCCCGACGGATCTCGAGGCGATGATCCTGCCGACGACCGAGTCGTGGCCGCGGGTCAGCTTCACCATCACCCAGCCGACCGAGAACCTCGAGGTTCCGCGTCTGGTGGCGTACCAGCAGGACTCCGCCCGCGACAACTACAAGCTCTGGTCCTGGGTGCAGCTCATCCCGGGCACCACCCTGCCGAACTTCGCCGACCCCGAGGCGATCGGCTCGGACGCCGTGGCGCCCGACGACGAGTCCCTCGTGGTGACGCCCAGCACGGCCCTCGCGCGCTACGCCGACCTCGTGGCCGAGGGGCCCGACGACGCCGAGCACGCGGACGCCTTCGAACTGCCCGGCGAGAGCCAGGACCTGGTCAAGCGGGTCCAGGCGGACGCGCGCAACGTGCGCGGTGCCGAGGCGTTCGAGGAGGCCGACGGCGAGTACCGGCTGACGTTCGCCTCGCGCGACGACCAGGTCGTCGCCGTGCGCACCTCGGACGGCGGTGCCGTCGTCATGGGTGTGCTGGACGGCAACATCCGGGTGACGGTCGAGGAGGACGGCGAGATCGGCCCGCTGACCGAGACCCAGAAGGCCCTCATCGGGGACGAGGACAACACCAACGAGCTGTACGTGGAGTACACCGACCAGGTGGCGCTCTACGTGCCGCCCGAGGGGTCCGACGAACCGATCCGGCCGCTGGGCTACTCCCACGTCTCCACGGACGCGGCGACCTCGATCCCCGGCGACCGCAACACCGACCGGGAGTCGAACGACGACGGGTCCGACGGCTGA	MKDFTRRPGRRAAAAAGAATTVVLLAGCADELPTPVADDPFTGPALTAAQQTRVVEEVAASLDQASENEQPKQLRPRVEGPAFEVRRSQIRVAEERGDNSLVTNIPTDLEAMILPTTESWPRVSFTITQPTENLEVPRLVAYQQDSARDNYKLWSWVQLIPGTTLPNFADPEAIGSDAVAPDDESLVVTPSTALARYADLVAEGPDDAEHADAFELPGESQDLVKRVQADARNVRGAEAFEEADGEYRLTFASRDDQVVAVRTSDGGAVVMGVLDGNIRVTVEEDGEIGPLTETQKALIGDEDNTNELYVEYTDQVALYVPPEGSDEPIRPLGYSHVSTDAATSIPGDRNTDRESNDDGSDG				NA	NA	NA	NA	NA
AK001_00606	1542			hypothetical protein	GTGCTGCAACGCATTCTGGGTGTCGTCCTGGTCCTCGCCGGACTGGGCGCCATCGCGTTCGGGGTCGCGACCGCGACCGTCCTGCGCGAGTCCGACACGGTCGCCGCGACGGCCACGCCGACCGGGGACGGGACGTTCGTCGTCACCGACCCGGGGGTGCTCGACCTCGTCGACTCCGAGGTGACCGTCACGGCCTCCGTGCCCGCAGGGCAGCAGGTCGCCGTGGTCGTCGGCCGGGACGTCGACGTCACCGGGTGGATCGGTGACGACCCGTACACACGCGTCACCGGGCTCACCGACTGGGACACCCTGAGCACCGAGCAGGTCGCCGGGTCCGCCGAGGAGGACGCCGACGCCGAGGCCTCGGAGGACGCGGAGGGGGAGGAAGCGGCCGAGCCGCCGCCGAGCCCGGCCGGTTCCGACATGTGGGACACCGAGCTGGTGGACGCCGAGCAGGTCACCCTGCGTTGGACGGACCGGCCCGGCCGGTGGGTCCTGCTCGCCGCGGCGACGGGTCCCGCTCCCGTCGAGGAGGCCGAGGGCGAGGAGGGCGAGCAGGCCGACGCCGAGGAGGCCCCGACCGACGTCGAGGCACCGACTCTCGAGCTGACCTGGGACCGCGAGGTCTCCACGCCGCTGCTGTGGCCCGCCGTCGGCGCGGGTGGCGTGCTGCTCCTCGTGGGCGTGGTGCTGCTGCTCGCCGGCCGCCGGTCGCGCAAGAAGGCGCGCACCCGCCGCGCGGCCGTCGCCGCCTCGTCGTCGTCCGCCACCGCGTCGTCCGCCACCGCGTCGTCCGCCACGTCGTCGCCCACCGTCGGCGACCCCGGCTCCGGGTCCGGCACGTCCGGCTCCTCGGCCGCGTCGCCCTTCGGACCGACCACCGGGGCCGCCGCCGGTGCGGCGGGCGCCGCCACGTGGCGTACGGGCGGGTCGTGGCCCGAGACGGTGAGCACCTCGTCCGACGACGCCACGACCTCGGCGCAGGACGACGCCACGGTCCCGGAGTCGCAGGACGACGACTCGACCGGCACGGCCCCCGTCCCGGTCGCAGGCCGGTTCCGTCGGCGGTCGCGGCTGCGGCGCGACACCGCCCCGGCCGAGGACACCGCGAGCCCGTCCGCCCCGGCCCCCGAGGCGCCGTCCCCTGACGCGCCGGCCGCCGGCGCGCCGGTCCCGGCACCGGCGCCCGCGCTGCCGACCGCTCCGGCGGGTCCGGAGAGCTCGGCGGACACCGACGACACGGCGGCCGACACCGCCGGCCGGCCGCTGACGCGCCGCGAGCTACGGCGCCGCGAGGAGGAGCGTCGGGCCGCCGGCCCGTCGGGCATGGGGCGCGCGCTGCGTGCTCTGACCGGCCAGACCCCCGTGGTCCCGGGGCCCGGCGGGCCGGCCGGTCCGCAGGCTCCCACCGACCCCGGGGAGGCGCCGTCGGCCGAGAGCCGCCGAGCCTCCGCGTGGCGTGAGACCTGGGGCTTCGGCGGCACGACCGGCGGCACGACGCCCGCGGCGGACGACGACACGACTGACGAGGACAAGCGATGA	MLQRILGVVLVLAGLGAIAFGVATATVLRESDTVAATATPTGDGTFVVTDPGVLDLVDSEVTVTASVPAGQQVAVVVGRDVDVTGWIGDDPYTRVTGLTDWDTLSTEQVAGSAEEDADAEASEDAEGEEAAEPPPSPAGSDMWDTELVDAEQVTLRWTDRPGRWVLLAAATGPAPVEEAEGEEGEQADAEEAPTDVEAPTLELTWDREVSTPLLWPAVGAGGVLLLVGVVLLLAGRRSRKKARTRRAAVAASSSSATASSATASSATSSPTVGDPGSGSGTSGSSAASPFGPTTGAAAGAAGAATWRTGGSWPETVSTSSDDATTSAQDDATVPESQDDDSTGTAPVPVAGRFRRRSRLRRDTAPAEDTASPSAPAPEAPSPDAPAAGAPVPAPAPALPTAPAGPESSADTDDTAADTAGRPLTRRELRRREEERRAAGPSGMGRALRALTGQTPVVPGPGGPAGPQAPTDPGEAPSAESRRASAWRETWGFGGTTGGTTPAADDDTTDEDKR				NA	NA	NA	NA	NA
AK001_00607	1530			hypothetical protein	GTGTCCGACGAGCGCACGCTCTTCCCGATCACCATGCGCGGCTACGACCGCGCCGCGGTCGAGAGCCAGATCTCCCGTCTCGAGCAGGCCGTGGAGGAGGCGCGCCGCAACGTCGAGGCCACCGACGCGCGGGCGATGCAGCTCTCCTCCGAGCTCGCCGACGCCCACCGCCAGCTGCGCGAGAACGACAAGCCGTCGTACGCGGGCCTCGGGGCCCGTGCCGAGCGGCTGCTGCGGTCGGCGGACGAGCAGTCCGCGGAGGTCCTCCGCCAGGCGAACCAGCAGGCGTCCGACATCATGGCTCGCGCGAAGCTGTCCGCCGGACAGGTCCGGCAGCGCGCCGAGTCCGAGGCCTCGGAGCTGCTCGCCAGCGCGCGCCGCGAGGCCGAGGAGATCCGGTCCACCACCGCGGCGGAGGCCGAGGGCACGCTGCAGGGCGCCCAGCGCCGCGCCGAGGAGCTCGTCGGTTCCGCCGAGCGCGAGGCCGCGCTGATCACCAGCACCCTCGCCACCGAGGAGAGCGAGCGCCGCGCCGGCCTCGAGCGCGAGGTCGGCACGATGCGCACGACGGCGGAGCGCGAGGTGACCGAGGCCCGCGTCGAGGCCGACCGCGAGATCGCCCAGATGCGCGCCGCGGCCGCCGCCGAGTCCGCCGCCCTGCGCGAGGAGGCCGAGCGCGAGGCCAACGACCTCATGGAGCGCACCCGCAACGAGGCCGCGCGGATCGTGGCCGAGGCCAAGCACCAGGCGGCCGAGTCCGCCCATGCGGTCACCTCCGAGCTCGAGGACCTGCGGGAGCAGGCCCGGACCACGCTCGCCGACGCCGAGCTGCAGGCCGCCCAGACCCGGGAGCGCGTCGAGACCGACGCTGCCCAGCGGCACGAGGCGGCACGAGCCGAGACCGAGCGCGTGGTGCGCGAGGCGGAGGAGCACGCCGCCGAGGCCGAGAAGCGGGTCGCCGCGGCCCTGCAGCAGGCCGACCGCGTCCGCTCCGAGTCGGACGCCTACGTCAAGGAGCTCGTCGCCGACGCCCGGCGGACCGCGGACTCCATCGTCTCCGAGGCGCGGACCTTCGCCGAGCAGACGGTCTCCGACGCCCAGGCCGAGGCCGACCAGAGCCGCACGTCCGCGGAGCGCCAGCTCGAGGACCTCACCCGCCGTCACGACTCGATCAACTCCTACCTGGAGGAGCTGCGCGGGCTGCTCGGCAGCGAGAAGGTCGCCGACCTCGCGGACGAGGCACCGGTCGACACCGGCGACGGCGAGGAGGCCGCGACCCCGGCCGCGGCTTCTGCCACGTCCTCGGCCCCGGCCCCGGCCGAGTCGCCTGTCGGGGACGCAGGCGAGGACGAGGACGCGGAGGCCGACCGGGCCGCGCTGGAGCAGACGCCCGCGCAGGCCGCTCGTGCCGCCTCGACCCAGTCCGCCGCGGCGGACGACTCGGCGTCGGCCGACTCGGGCAGCGCCGCCTCCCCGCCCGCGCCCAGCGACTCGCCCACGGCGGAGAGCTCGACGACGTCGCGGGCCTGA	MSDERTLFPITMRGYDRAAVESQISRLEQAVEEARRNVEATDARAMQLSSELADAHRQLRENDKPSYAGLGARAERLLRSADEQSAEVLRQANQQASDIMARAKLSAGQVRQRAESEASELLASARREAEEIRSTTAAEAEGTLQGAQRRAEELVGSAEREAALITSTLATEESERRAGLEREVGTMRTTAEREVTEARVEADREIAQMRAAAAAESAALREEAEREANDLMERTRNEAARIVAEAKHQAAESAHAVTSELEDLREQARTTLADAELQAAQTRERVETDAAQRHEAARAETERVVREAEEHAAEAEKRVAAALQQADRVRSESDAYVKELVADARRTADSIVSEARTFAEQTVSDAQAEADQSRTSAERQLEDLTRRHDSINSYLEELRGLLGSEKVADLADEAPVDTGDGEEAATPAAASATSSAPAPAESPVGDAGEDEDAEADRAALEQTPAQAARAASTQSAAADDSASADSGSAASPPAPSDSPTAESSTTSRA				NA	NA	NA	NA	NA
AK001_00608	795	carC		2-hydroxy-6-oxo-6-(2'-aminophenyl)hexa-2,4-dienoic acid hydrolase	ATGACGCCCACACCCCTGGCGACGCACGTCCTGCACGACGGGGCGGGCGTCCCTCTGGTCCTGATCCACGGCTTCCCGCTCGACCACCGGATGTGGAGCCCCGTGGTCGCCGAGCTGCCCCCCGGGCTGCGGGTCGTCGCCGTCGACCTGCCCGGTTTCGGCCACAGCGACCTCGGTCACACCGCGCCGACCCTGGAGGCCGCCGCCGACGCCGTGCACGCCGCGCTGCGTCACGCCGGGGAGGGCAACGGCGCGGTCGTCGGCCTGTCGATGGGCGGCTACGTCGCCCTGACGCTCGCCGAGCGCCACCCCGAGGTCGTCCACGGCCTCGGCCTGGTGGACACCAAGTCCACGGCGGACACCGAGGAGGCGCGGGCCGGACGGCTGGCGACCGCGCGCGCCGTCGAGGACACCCAGACCCTCGACGCGGTGATGGGGATGCCGGACAAGCTGCTCGGTCCGACGAGCAAGATGGAGCGCCGCAGCCTCTACCCGACGGTCGACCACTGGATCCGGTCGCAGTCCCCGTCCGCCGTGGCGTGGGCCCAGCGCGCGATGGCGGCACGACCCGACCGCACCGACGTGCTGCACCGGTTCGCCGGCCCCGTGGCCGTCGTGGTCGGGGCGGAGGACACCATCACCCCGATCGACGAGGCCAAGCACATGGTCGACGCCGCGTCGGACGCGACGCTGCACGTCGTGGCGAACGCGGCGCACCTCAGCACCCTCGAGGAGCCCGCGGCCGTGGCGCAGGCACTCACCGAGCTGCACGAGCGGGTCGTCGAGCAGCTCTGA	MTPTPLATHVLHDGAGVPLVLIHGFPLDHRMWSPVVAELPPGLRVVAVDLPGFGHSDLGHTAPTLEAAADAVHAALRHAGEGNGAVVGLSMGGYVALTLAERHPEVVHGLGLVDTKSTADTEEARAGRLATARAVEDTQTLDAVMGMPDKLLGPTSKMERRSLYPTVDHWIRSQSPSAVAWAQRAMAARPDRTDVLHRFAGPVAVVVGAEDTITPIDEAKHMVDAASDATLHVVANAAHLSTLEEPAAVAQALTELHERVVEQL				NA	NA	NA	NA	NA
AK001_00609	780			hypothetical protein	ATGAACGAGGACACCGCCACCGGCCACCAGATCCGCTCGATGACCGTCCTGCCCGCGCGGCGCGAGGATGTCGACCTGCACACCGCGGACGGGCTGACGCTCGTCGGCGAGCTCGCCCTGCCGGCGGACCGTGACCCGGTGGCCACGCTGCTGACCTTCCACCCGCTGCCCACCCACGGTGGCTACATGGACTCGCACGTCTACCGCAAGGCGGCGTGGCGCCTCCCCGAGCTGGCCGACCTGGCGGTCCTGCGCTTCAACACGAGGGGCACGTCGTCGTCGCGGGGGACCTCCGAGGGATCGTTCGACGGCGGGGAGTCCGAGCAGTACGACGTCGCGGCGGCGCTGGAGCTCGCCGAGTTCCGCGAGCTGCCGCGCCCGTGGCTGGTCGGCTGGAGCTTCGGGACCGAGCTCGTCCTCAAGCACGGCGCCGACCCGAGCATCGAGGGCGCGATCCTGCTCTCCCCGCCGCTGCACCGCGCGACGGACGCCGATCTCGACCGCTGGGCGGAGTTCGGCAAGCCGCTCGTCGTCCTGGTCCCCGAGCACGACGACTACCTGCGTCCCGACGAGGCCCGTGCCCGGTTCGCCCGCGTGCCCCAGGCCGAGGTCATCGGTGTCGACGGCGCCAAGCACCTGTGGGTGGGCGAGCCCGCGGTGCGCCGCGTCCTCGACGAGATCGTCCAGCACGTCCTGCCCGGCCACGCCCCCCTGCCGACCCGTTACGCCGGGGAGGTCGAGCACGCCTCGGACCTCCCCTCCGCCCCCACGAGAGGATGA	MNEDTATGHQIRSMTVLPARREDVDLHTADGLTLVGELALPADRDPVATLLTFHPLPTHGGYMDSHVYRKAAWRLPELADLAVLRFNTRGTSSSRGTSEGSFDGGESEQYDVAAALELAEFRELPRPWLVGWSFGTELVLKHGADPSIEGAILLSPPLHRATDADLDRWAEFGKPLVVLVPEHDDYLRPDEARARFARVPQAEVIGVDGAKHLWVGEPAVRRVLDEIVQHVLPGHAPLPTRYAGEVEHASDLPSAPTRG				NA	NA	NA	NA	NA
AK001_00610	240			putative protein	ATGGATCGCGCGCTGGGGGGCGTCCGGCACGAGACCGCCGCGGACGGCGAGTGGACGGTGCGGCGGGTGCGGGGCGGCGACAAGCCCTACGTGTGCCCGGCGTGCCGACAGCAGATCCCGCCCGGGACGGCGCACGTGGTCGCGTGGCAGCGGGACGCCTGGGGTGGCGAGGCGGCGGGCCTCGCCGACCGTCGGCACTGGCACGCCTCCTGCTGGCAGCGTCGCGAACGTCTGCGCTGA	MDRALGGVRHETAADGEWTVRRVRGGDKPYVCPACRQQIPPGTAHVVAWQRDAWGGEAAGLADRRHWHASCWQRRERLR				NA	NA	NA	NA	NA
AK001_00611	978			hypothetical protein	GTGAAGCTCCGTACCCCCGCCGCCCTCGGCGTCGTGCTCGCCACCGCCCTCGTGCTGGGTGGCTGCAGCGACGACGGCGACGCTCCCGACGGCGCGGAACCGTCGGCGTCCGCCTCCGCCGACTCCTCGGCCTCCGCCACCGCACCGGCGCAGGCCGACCCGACCGACGAGGACATCGCCGCCCTGGAGGCCGTCGAGGTCTCCGGAGAGCCGGGGTCCGAGCCGGAGCTGTCCTTCGAGGAGATCGAGGTCTCCGTGCCGACGCACCGGGTCGTGGACGAGGGCGACGGCGACGAGCTCGTCGAGGGCATGAAGGTCCGCATGCAGTACGTGACCTACGACGCCGCCGGCCAGCGGGTGAGCTCGACCTGGGAGGTCGACTCCCCGCAGAGCTTCGTGCTCGGCGACCCCCAGTTCGACCTGCTGACCGAGCCCCTCGTGGGCCAGTCCGTCGGCACCCGCGTGCTGCTGGCGAACCCGATCGTGGACCAGGAGAACAACCCGACCACGGCCGTGAACCTCATCGAGGTCGTCGAGGCGTACGAGATCCCCGACCGCGCCGAGGGCGAGACGGTCGAGCCCGCCGAGGGCCTGCCGACCGTGACGCTGGGCGAGGACGGCGCGCCGTCGATCGAGATCCCCGACGGCTACGAGGGGCCCGAGCAGCTGGTCTCCCAGACGCTGATCCGCGGCGACGGCGACGAGGTGTCGGCCGACCAGACGGTGACCGCGCACTACACGGGCTGGACGCTGGACGGCGAGGTCTTCGACTCGTCCTGGGAGCGCGGCGAGCCCGCGTCCTTCTCCCTGCAGCAGGTGATCCCGGGCTGGACCGACGGGCTGTCGGGCCAGACGGTGGGCAGCCAGGTGCTGCTGGTGATCCCGGCCGAGCAGGCCTACGGTGCCGAGGCCGTCGAGGGCAACGAGCTCGCCGGCGAGGACCTGATCTTCGTCGTCGACCTCCTCGACGTGGAGTGA	MKLRTPAALGVVLATALVLGGCSDDGDAPDGAEPSASASADSSASATAPAQADPTDEDIAALEAVEVSGEPGSEPELSFEEIEVSVPTHRVVDEGDGDELVEGMKVRMQYVTYDAAGQRVSSTWEVDSPQSFVLGDPQFDLLTEPLVGQSVGTRVLLANPIVDQENNPTTAVNLIEVVEAYEIPDRAEGETVEPAEGLPTVTLGEDGAPSIEIPDGYEGPEQLVSQTLIRGDGDEVSADQTVTAHYTGWTLDGEVFDSSWERGEPASFSLQQVIPGWTDGLSGQTVGSQVLLVIPAEQAYGAEAVEGNELAGEDLIFVVDLLDVE				NA	NA	NA	NA	NA
AK001_00612	495	gpt		Xanthine phosphoribosyltransferase	ATGAGCGACGAGCAGCGTGAGGTCCTGACCTGGTCCGACTTCGCCGCGGGGGTGCGACGGCTCGCCGAGCAGGTCGTGGCCGACGGGTTCCGCCCCGACGTGGTGGTCGCCGTGGCGCGTGGCGGCCTGGTGCCCGGCGGCGCCGTGGCCTACGCCCTGGGCACCAAGGGCGTCGGCACGATGAACGTGGAGTTCTACACCGACATCGGCCGCACCCTGCGCGACCCGCGGGTCCTGCCGCCGCTGATGGACACCGCCGAGCTGCCCGGGTCGCGCGTCCTCGTGGTCGACGACGTCGCGGACTCCGGCCGCACGCTCGAGCTGGTGATGCGGATGCTCGCCGAGCAGGGGGCCGACGCCCGGGCCGCCGTGCTGTACACCAAGCCGCGCTCCGTCTACCGGCCGGAGTACTCGTGGCGCGAGACGGACCGGTGGATCACGTTCCCGTGGTCCGCGGACCCTCCCGTCCCGGGGGCCGTCGACTCCCCCGCCTGA	MSDEQREVLTWSDFAAGVRRLAEQVVADGFRPDVVVAVARGGLVPGGAVAYALGTKGVGTMNVEFYTDIGRTLRDPRVLPPLMDTAELPGSRVLVVDDVADSGRTLELVMRMLAEQGADARAAVLYTKPRSVYRPEYSWRETDRWITFPWSADPPVPGAVDSPA				NA	NA	NA	NA	NA
AK001_00613	831	rhaD		Rhamnulose-1-phosphate aldolase	ATGTCCGACGACGACCGTGCCCGACCCGAGCTCGACGAGATCCTGTCCTCCATGGGATCCGGCGGCGCCCGCATCTGCGAGATCGACGCCTCCGAGGCCGGGGCCGGCAACATCTCCGTGTGCCTCGGGTGGGAGGTCGACGTCTCGCGGCGTTTCCCCCGCGCCGAGCAGATCACGCTGCCGCTCGAGGCCCCGGCACTGGCCGGCCGGACCCTGCTCGTGACGGGCTCCGGGCGACGGCTGCGCCAGATCCACGAGGACCCGGAGGCCGCCGTCGGCGCGGTCGTGGTGCACCCCGGCGGGCGCGAGGCGACGCTGCACACGTCGCCGCGCCGGCTGTTCGCGCAGCTCACCAGCGAGTTCAACTCGCACCTGGCGGTCCACCAGGACCAGGTCGCCCGGCGCGGTGTCGACTTCCAGGCCGTCGTCCACGCCCAGCCGATCCACCTGACCTACCTGTCGCACGTCCCCGCCTACGGCGACACGGCCGCGATGAACGCCCGGATCCTGCGCTGGGAGCCGGAGTCCATCGTGGCGCTCTCGGCCGGGGTCGGCGTCCTGGAGTTCATGGTCCCCGGGTCCGAGCAGCTCATGGCCGCGAACGTCGAGGGTCTGCGGGACTTCGAGATCGTGCTCTGGTCCAAGCACGGGGTGATGGCGCGGTCCGACCTGTCCGTGACCCGCGCCGTCGACCGCATGGAGTACGCCGAGACCGGAGCGCGCTACGAGTACATGGACCTCGTCGCCGGCGGGCGCGCCCAGGGCCTGACCGACGCCGAGATGTCCTCGGTCGCTCGGGCGTTCGACGTCGACTCGCCCTGGGTGCGCTGA	MSDDDRARPELDEILSSMGSGGARICEIDASEAGAGNISVCLGWEVDVSRRFPRAEQITLPLEAPALAGRTLLVTGSGRRLRQIHEDPEAAVGAVVVHPGGREATLHTSPRRLFAQLTSEFNSHLAVHQDQVARRGVDFQAVVHAQPIHLTYLSHVPAYGDTAAMNARILRWEPESIVALSAGVGVLEFMVPGSEQLMAANVEGLRDFEIVLWSKHGVMARSDLSVTRAVDRMEYAETGARYEYMDLVAGGRAQGLTDAEMSSVARAFDVDSPWVR	PGPT0017790_212	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017790-rhaD-K01629	NA	NA
AK001_00614	1827	yfkN	COG0737	Trifunctional nucleotide phosphoesterase protein YfkN	GTGTCCACACCCCGCAGCCGACTGCTCCCCGCCACCGCGGCCCTCGGCGTCGTCGCCCTCACGGCCGGGCTCGCGTCGCCGGCCGCCGCCGACGACGGCGACCAGCGCCACGGCCCCGGCAACGCCGACTTCACCCTGACGATCCTGCACAACAACGACGGCGAGTCCAGCCTGCTGCCGACGGCGGTGGACACCGACGCGGACGGCACGGACGACGCCGAGTACGGCGGCATCGCCCGGTTCGTCGGCAAGGTCGACGCGCTGCGGCGGGCCGCGTACGTCGACGGCGACCGCGGCAAGCCGACCAAGCGCGGCGTCGTGACACTGAACTCGGGGGACAACTTCCTGGCGGGCACGACGTTCCAGGCCTCGCAGCAGGAGGGTGCCCCGTTCTACGACGCCCTCGCGCAGAACCTGGTCCGCTACGACGCCCTCGGCGTGGGCAACCACGAGTTCGACTTCGGCCCCGCGGTGTTCGGCGAGCTCGTGGAGGACGTGAAGCGCACCCCCTTCGTCTCGGCCAACCTGGACTACTCCGCCGAGGAGTCCCTGGCCGGGCTGGAGCAGCTCGTCCCCAGCACCGTCATCCGCGAGCGCGGCGAGGAGATCGGCGTGGTCGGGCTGACGACGCCGTCGCTGCCGACCATCTCGTCCTCGGGTGATGTCGAGGTCCTCACCGACCTGGCCGGCATCGCCCAGGAGCAGGTCGACCTGCTCACCGAGCAGGGCATCGAGAAGATCGTCCTCGTCTCGCACCTGCAGGGGCTGAGCAGCGAGATCGATCTCGTCGGTTCGCTGACCGACGTCGACGTGGTCGTGGGCGGCGGCGGCGACGAGATCCTCGCCGACGGCTCGACCCAGCTGTTCCCGGGCGACGTGGACGACGTCTACGGCGAGTACCCCCAGATCGCCACCGACGCCGACGGCGCCGAGGTGCCCGTGGTGACCACGCCCGGCAACTACCGGTACGTGGGTCAGCTCGCGGTGACCTTCGACGCGGACGGTGTCGTCGTCGACATCGCCGACGACTCGGGCATCAAGGTCGTCACCGACACCGGTGCCGAGGCCGTGGGCACGGACCGCAAGGCCGAGCGCACCATCGAGCAGCCGGTCGCCGACTTCGAGGCCGCCCTGGCCGAGGAGATCGTCGCCACGAGCGAGGTCGTCCTCGACTGCGAGCGGAGCGAGGTGCGCGGCGTGGAGGCGAACTGCGGCAACCTGATCGCCGACGCCCACCTGTGGACGGCGCAGCAGGCAGCGGCCGACTTCGGCCTGGACACCCCGCAGGTCGCCGTCCAGAACGGCGGCGGCATCCGTGGCGAGATCGACCAGGAGGCCGGGCCCGTCTCGGTCGCCGACACGTTCCGCCTGCAGCCCTTCGGCAACTTCGTGGCCGTCGCCGAGGACGTGCCCGTCGAGACGTTCCGCCAGATCCTGGAGGAGGGAGCGTTCCGGCTCCCCGAGTCCGGGGACGGCGCCTTCGTCCAGGCGGCGGGCTTCAGCTACACCGTCGACACCTCGTACCCGGCCCGCGACGCGGACCAGAGCACCGGTGAGCAGTTCGCCCCGGGCGAGCGGGTCCGCTCGGTCGTCCTGGACGACGGCACCGTCCTCGTCGAGGACGGCGTGTCGGTCGACGGCACGGTGGACGTCGCCGGGCTGAACTTCTCGCTCAACGGCGGGGACGCCTACCCGACGCTCGAGAACACCACGATCGGTGTCTCCGACCAGCAGTCCCTGGAGAACTTCCTCGTCGACGGTCTCGGCGGGGTCGTCAGCCAGGCCGACTACCCGCGGGGCGGTGAGGGCCGGATCACGATCATGTGA	MSTPRSRLLPATAALGVVALTAGLASPAAADDGDQRHGPGNADFTLTILHNNDGESSLLPTAVDTDADGTDDAEYGGIARFVGKVDALRRAAYVDGDRGKPTKRGVVTLNSGDNFLAGTTFQASQQEGAPFYDALAQNLVRYDALGVGNHEFDFGPAVFGELVEDVKRTPFVSANLDYSAEESLAGLEQLVPSTVIRERGEEIGVVGLTTPSLPTISSSGDVEVLTDLAGIAQEQVDLLTEQGIEKIVLVSHLQGLSSEIDLVGSLTDVDVVVGGGGDEILADGSTQLFPGDVDDVYGEYPQIATDADGAEVPVVTTPGNYRYVGQLAVTFDADGVVVDIADDSGIKVVTDTGAEAVGTDRKAERTIEQPVADFEAALAEEIVATSEVVLDCERSEVRGVEANCGNLIADAHLWTAQQAAADFGLDTPQVAVQNGGGIRGEIDQEAGPVSVADTFRLQPFGNFVAVAEDVPVETFRQILEEGAFRLPESGDGAFVQAAGFSYTVDTSYPARDADQSTGEQFAPGERVRSVVLDDGTVLVEDGVSVDGTVDVAGLNFSLNGGDAYPTLENTTIGVSDQQSLENFLVDGLGGVVSQADYPRGGEGRITIM	PGPT0013400_414	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013400-ushA-K11751	NA	NA
AK001_00615	981	nrdF2	COG0208	Ribonucleoside-diphosphate reductase subunit beta nrdF2	ATGGCACCGACCGGACAGCTCAAGCTCATCGACCGCGTCACCGCGATCAACTGGAACCGTCTGCAGGACGAGAAGGACCTCGAGGTCTGGGACCGCCTGGTCGGCAACTTCTGGCTGCCCGAGAAGGTGCCGGTGTCCAACGACATCCAGTCGTGGAACACCCTGTCCGAGGCCGAGAAGCTCATGACGACCCGGGTGTTCACCGGTCTGACGCTCCTGGACACCATCCAGGGCACCGTCGGCGCGGTCTCGCTCATCCCGGACGCGCTGACCCCGCACGAGGAGGCGGTGTACACCAACATCGCGTTCATGGAGTCGGTGCACGCCAAGAGCTACTCGTCGATCTTCTCCACGCTGATCTCCACCAAGGAGATCGACGACGCGTTCGCGTGGTCGGAGGAGAACCCGCACCTGCAGCGCAAGGCGGAGATCGTCCTCGAGTACTACCGCGGCGACGACCCGCTCAAGCGCAAGGTCGCCTCGACGATGCTCGAGTCGTTCCTCTTCTACTCCGGCTTCTACGCCCCGATGTACTGGTCGAGCCGGGCCAAGCTGACGAACACCGCCGACCTCATCCGCCTCATCATCCGCGACGAGGCGGTGCACGGGTACTACATCGGGTACAAGTTCCAGAAGGGGCTGGCCAAGCTCACGCAGGCCGAGCAGGACGAGATGAAGGCCTACACCTTCGACCTGCTCTTCGAGCTCTACGAGAACGAGGTCGAGTACACCGAGTCGCTCTACGGCGAGCTGGGGCTCACCGAGGACGTCAAGAAGTTCCTGCGCTACAACGCCAACAAGGCGCTGATGAACCTCGGGTACGAGGGCCTCTTCCCCAAGGACGAGACCGACGTCAACCCGGCGATCCTCGCGGCGCTGAGCCCGAACGCGGACGAGAACCACGACTTCTTCTCCGGGTCCGGCTCGTCCTACGTCATCGGCAAGGCCGTCGAGACCACCGACGACGACTGGGACTTCTGA	MAPTGQLKLIDRVTAINWNRLQDEKDLEVWDRLVGNFWLPEKVPVSNDIQSWNTLSEAEKLMTTRVFTGLTLLDTIQGTVGAVSLIPDALTPHEEAVYTNIAFMESVHAKSYSSIFSTLISTKEIDDAFAWSEENPHLQRKAEIVLEYYRGDDPLKRKVASTMLESFLFYSGFYAPMYWSSRAKLTNTADLIRLIIRDEAVHGYYIGYKFQKGLAKLTQAEQDEMKAYTFDLLFELYENEVEYTESLYGELGLTEDVKKFLRYNANKALMNLGYEGLFPKDETDVNPAILAALSPNADENHDFFSGSGSSYVIGKAVETTDDDWDF	PGPT0021345_3015	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526	NA	NA
AK001_00616	2169	nrdE2	COG0209	Ribonucleoside-diphosphate reductase subunit alpha 2	GTGAGCGCCACGACCGCCGAGGCCCCGCAGCCGACCGCGGGCGCCTCTCTGCAGCAGAGCGACATGGACTACCACGCGCTCAACGCGATGCTGAACCTGTACGGGCCCGACGGCGAGATCCAGTTCGACAAGGACCGTGAGGCCGCCTCGGCGTACTTCCGGCAGCACGTGCTGCCCAACACCATCGAGTTCGACACCCTCGACGCCAAGCTCGACCACCTGGTCGAGAACAAGTACTACGACCCGGTCGTCCTCGACAAGTACTCGCGCGCCTTCGTCAAGGAGCTGTTCCAGCGCGCCTACGCCGCGGGGTTCCGGTTCGAGTCGTTCCTCGGTGCCTTCAAGTACTACACCTCGTACACGCTGAAGACGTTCGACGGCAAGAAGTACCTGGAGCGCTTCGAGGACCGCGTCTCGATGGTGTCCCTCGGCCTGGCCGACGGTGACGAGCAGCGTGCGCGCGACATCCTCGACGAGATCATCGCCGGTCGGTTCCAGCCGGCCACGCCCACGTTCCTCAACGTCGGCAAGGCCCAGCGCGGCGAGCCCGTGTCCTGCTTCCTGCTGCGCATCGAGGACAACATGGAGTCCATCGCGCGCAGCATCAACTCGGCGCTGCAGCTCTCCAAGCGGGGCGGCGGCGTCGCGCTGCTGCTGAGCAACGTGCGCGAGCACGGCGCGCCGATCAAGCACATCCAGAACCAGTCCTCCGGCGTCATCCCCGTGATGAAGCTGCTCGAGGACTCGTTCTCCTACGCCAACCAGCTCGGGGCGCGCCAGGGCGCCGGTGCGGTGTACCTGCACGCCCACCACCCCGACATCATGCGGTTCCTCGACACCAAGCGCGAGAACGCCGACGAGAAGATCCGCATCAAGACCCTCTCGCTCGGCGTCGTCATCCCGGACATCACGTTCGAGCTGGCCAAGCGCAACGAGGACATGCACCTCTTCAGCCCGTACGACGTCGAGCGCGTGTACGGCAAGCCCTTCGCGGACGTCTCGATCTCCGAGAAGTACGACGAGCTGGTCGCCGACGAGCGGATCACGAAGACGACGATCAAGGCGCGCGACTTCTTCCAGACGATCGCGGAGCTGCAGTTCGAGTCCGGCTACCCGTACGTGATGTTCGAGGACACGGTGAACCGGGCCAACCCGATCGCCGGACGGATCACGCACTCCAACCTGTGCTCGGAGATCCTGCAGGTCTCCACCGCCTCGACCTTCCACGAGGACCTGTCCTACGACGAGATCGGCCGGGACATCTCCTGCAACCTGGGGTCGCTGAACATCGCCAAGACGATGGACTCGCCGGACCTCGGCAAGACCATCGACACCGCCATCCGTGCGCTGACCGCCGTGTCGGACCAGACGAGCATCGAGTCGGTGCCGTCGGTGAAGAAGGCGAACGAGCTGGGTCACGCCATCGGGCTGGGCCAGATGAACCTGCACGGCTACCTCGCGCGCGAGCGGATCCACTACGGCTCGGCCGAGGGCGTCGACTTCACGAACATCTACTTCTACACGGTCGCCTACCACGCGATCGCGGCGTCGAACCGGCTCGCCGTCGAGCGCGGCCGCGCCTTCGGCGGCTTCGAGGACTCCACGTACGCCTCGGGGGAGTACTTCGACAAGTACACCGAGGCCGCGTGGACGCCGGCCACGGAGCGGGTGGAGCGCCTGTTCGCCGACGCCGGCGTGCACGTCCCGACCCAGGACGACTGGCGGGCGCTCAAGGCGTCGGTCATGGAGCACGGCATCTACAACCAGAACCTCCAGGCCGTGCCGCCGACCGGCTCGATCAGCTACATCAACTACTCGACCTCGTCGATCCACCCGGTGGCGGCGAAGATCGAGATCCGCAAGGAAGGCAAGCTCGGCCGCGCCTACTACCCGGCGCCGTACATGACGAACGACAACCTGGAGTACTACCAGGACGCGTACGAGATCGGGTACGAGAAGATCATCGACACCTACGCCGCGGCGACGCAGCACGTCGACCAGGGGCTGAGCCTGACGCTGTTCTTCCCGGACACCGTGACGACCCGCGACGTCAACAAGGCGCAGATCTACGCCTGGCGCAAGGGCATCAAGACGCTGTACTACATCCGCCTGCGCCAGCTGGCGCTCGAGGGCACCGAGGTCGAGGGGTGCGTCAGCTGCATGCTGTGA	MSATTAEAPQPTAGASLQQSDMDYHALNAMLNLYGPDGEIQFDKDREAASAYFRQHVLPNTIEFDTLDAKLDHLVENKYYDPVVLDKYSRAFVKELFQRAYAAGFRFESFLGAFKYYTSYTLKTFDGKKYLERFEDRVSMVSLGLADGDEQRARDILDEIIAGRFQPATPTFLNVGKAQRGEPVSCFLLRIEDNMESIARSINSALQLSKRGGGVALLLSNVREHGAPIKHIQNQSSGVIPVMKLLEDSFSYANQLGARQGAGAVYLHAHHPDIMRFLDTKRENADEKIRIKTLSLGVVIPDITFELAKRNEDMHLFSPYDVERVYGKPFADVSISEKYDELVADERITKTTIKARDFFQTIAELQFESGYPYVMFEDTVNRANPIAGRITHSNLCSEILQVSTASTFHEDLSYDEIGRDISCNLGSLNIAKTMDSPDLGKTIDTAIRALTAVSDQTSIESVPSVKKANELGHAIGLGQMNLHGYLARERIHYGSAEGVDFTNIYFYTVAYHAIAASNRLAVERGRAFGGFEDSTYASGEYFDKYTEAAWTPATERVERLFADAGVHVPTQDDWRALKASVMEHGIYNQNLQAVPPTGSISYINYSTSSIHPVAAKIEIRKEGKLGRAYYPAPYMTNDNLEYYQDAYEIGYEKIIDTYAAATQHVDQGLSLTLFFPDTVTTRDVNKAQIYAWRKGIKTLYYIRLRQLALEGTEVEGCVSCML	PGPT0021340_4530	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525	NA	NA
AK001_00617	432	nrdI	COG1780	Protein NrdI	ATGAGCTCGCTCGTGTACTTCTCCAGCGTCTCGGAGAACACGCACCGCTTCGTCCAGCGCCTCGGGCTCGAGGAGCGCGGCATGCCGGTGCACCGCATCCCGCTGCGGCCGGCCGACGGCTTCCTCACCGTCGACGAGCCCTACGTCCTCCTGGTCCCCACCTACGGCGGGGGCAACGAGGGCGGTGCGGTGCCCCGCCAGGTGCGCAAGTTTCTCGGGGACGAGGGCAACCGGTCGTTGATCCGCGGCGTCATCGCGGCGGGCAACACCAACTTCGGCGCTGCGTACTGCATCGCCGGTGACATCATCGCGGCGAAGTGCCAGGTCCCGTACCTGTACGCCTTCGAGCTGCTCGGCACGACCGAGGACGCCCAGCGCGTCCGTGACGGATTGGGACGATTTTGGCAACGACAGTCACTGATCTCGGCGTGA	MSSLVYFSSVSENTHRFVQRLGLEERGMPVHRIPLRPADGFLTVDEPYVLLVPTYGGGNEGGAVPRQVRKFLGDEGNRSLIRGVIAAGNTNFGAAYCIAGDIIAAKCQVPYLYAFELLGTTEDAQRVRDGLGRFWQRQSLISA	PGPT0021340_1491	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525	NA	NA
AK001_00618	243	nrdH	COG0695	Glutaredoxin-like protein NrdH	ATGAGCGTCACGGTCTACAGCAAGCCGTCCTGCGTCCAGTGCGACGCGACCTACCGGGCCCTGGACCGCAAGGGCGTCGAGTACTCCGTCGTGGACATCACCGAGGACGCGCAGGCGCTCGAGATGGTCCGTGAGCTCGGCTACCTCCAGGCACCCGTCGTCGTCGCGGGCGACACCCACTGGTCGGGCTTCCGTCCCGACCAGATCAGCGCCGTCGCGGCGCAGCAGGCCGTCTCGGCCTGA	MSVTVYSKPSCVQCDATYRALDRKGVEYSVVDITEDAQALEMVRELGYLQAPVVVAGDTHWSGFRPDQISAVAAQQAVSA				NA	NA	NA	NA	NA
AK001_00619	1266	nagA	COG1820	N-acetylglucosamine-6-phosphate deacetylase	ATGGTCACCGATCCCGCCGATGCTCAGGACAGCCCGCGACCGCCGTCGGTCTTCGCCCTGCGGGGCGACGTCGTCACACCGGACCGGCTGATCCACGACGGCGCCGTCGTCGTGGCCGACGACCGCATCGTGTGGGTCGGCCCCCTCGAGGAGGCCGCTGCCGCCGGCGTCGGTGACGAGGTGGCGCGCGCCGACGAGCCGACACCGGGGGCCCACGTGCTGCCCGGCCTGGTCGACCTGCACAACCACGGCGGCGGGGGAGCGAGCTTCCCCGACGCCACCTCCGTCGACGACGTGATGACCGCCGTGCTGGAGCATCGCCGGCACGGCACGACCACCCTGCTCGCCTCTCTCGTGACCGCCGACCGCGAGACGTTGCTGGACAGGACCCGACTGCTGGCCGAGGTCGCGGACCGGGGCGAGATCGCCGGGATCCACGCCGAGGGTCCTTTCCTGTCGGCCGTGCGGTGCGGCGCCCAGGACCCGCACTGGCTCGTGCCGGGCGACGTGACCCTCGCGCGCGAGCTCGCCGAGGCCGCACGAGGGCACCTGCGCACCATGACCGTTGCGCCCGAGGTCGACGGCGTCACCGGTCCCGGGGGCGCCGCCGCCGCGCTGGTGCGGTCCGGGGTGATCCCGTCGCTCGGGCACACCGACGCCTCGGCCGAGGACGCCGAGGCCCTCCTGCGCCAGGTGGCCGCGGACCTGGGCCGGGGCGAGGGCGCCACCGGCCGGATGACGGCCACGCACCTGTTCAACGGGATGCGCCCCCTGCACCACCGCGACCCGGGCCCGGTCGCGGCGTGCCTGGCCGCGGCCTCGCGCGGTGACCTCGTCGTCGAGCTCGTCGGCGACGGTGTCCACCTCGACCCCGCCACCGTGCGCACGGTGATGCAGACGGTGGGGGTGGACCAGGTCGCGCTCGTGACCGACGCCATGGCCGCCGCCGGGATGGCCGACGGCGACTACGACCTCGGTCCGCAGTCCGTGGTCGTCCGTGACGGCGTCGCCCGGCTGGCCGACCCGGACGAGCCCGCGGGAGGGGCCATCGCGGGCAGCACCGCGCACCTCCTCGACGTCGTGCGCCGCACGGTCCTGGCCGGCGTCCCCCTGGTCCCCGCCGTCCGCTGCGCCTCGTGGGTGCCCGCCGGCGTGCTCGGGATGACCGACGTCGGGGGACTGGTGGCCGGTCGGCGGGCCGACGTCGTGGTCACCGACCGGGACCTGACGGTGCAGCACGTCTGCCGGGGCGGCCGGCCGGTGTGA	MVTDPADAQDSPRPPSVFALRGDVVTPDRLIHDGAVVVADDRIVWVGPLEEAAAAGVGDEVARADEPTPGAHVLPGLVDLHNHGGGGASFPDATSVDDVMTAVLEHRRHGTTTLLASLVTADRETLLDRTRLLAEVADRGEIAGIHAEGPFLSAVRCGAQDPHWLVPGDVTLARELAEAARGHLRTMTVAPEVDGVTGPGGAAAALVRSGVIPSLGHTDASAEDAEALLRQVAADLGRGEGATGRMTATHLFNGMRPLHHRDPGPVAACLAAASRGDLVVELVGDGVHLDPATVRTVMQTVGVDQVALVTDAMAAAGMADGDYDLGPQSVVVRDGVARLADPDEPAGGAIAGSTAHLLDVVRRTVLAGVPLVPAVRCASWVPAGVLGMTDVGGLVAGRRADVVVTDRDLTVQHVCRGGRPV	PGPT0018860_213	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443	NA	NA
AK001_00620	696	nucS	COG1637	Endonuclease NucS	GTGAGACTCGTCGTCGCCCGCTGCTCGGCCCGTTACACGGGTCGGCTGACCGCCCACCTGCCCCTGGCCACCCGACTGCTGGTGGTCAAGGCCGACGGCAGCGTCCTGCTGCACTCGGACGGTGGCTCCTACAAGCCCCTGAACTGGATGAGCCCGCCGTGCTCCACGGCGACGGCCGCTCCGGACGACGACGCCGTCGCCCGCGGCGTGACCGAGGTCTGGACGGTCCAGCACCAGAAGTCCGACGACCGGCTCGAGATCGACCTGCACGAGATCGTGCACGACTCCGAGCACGACCTGGGCGTGGACCCGGGCCTGGTCAAGGACGGCGTCGAGGCGCACCTGCAGGAGCTGCTGGCCGCCCAGATCGAGCTCCTGGGGACCGGCCACTCGCTGGTGCGGCGCGAGTACATGACGGCGATCGGTCCCGTGGACATCCTGGCCCGCGACGCCGACGGCGGCACCGTCGCGGTCGAGATCAAGCGGCGCGGCGAGATCGACGGCGTCGAGCAGCTGACGCGCTACCTGGAGCTGCTGAACCGCGACCCGTTGCTGTCGCCGGTCCGCGGGGTCTTCGCGGCGCAGGAGATCAAGCCGCAGGCCCGGGTGCTCGCCGGGGACCGCGGGATCGACTGCCTCGTCCTGGACTACGACGCCATGCGCGGTGTCGACGACGCCGACTCACGCCTCTTCTAG	MRLVVARCSARYTGRLTAHLPLATRLLVVKADGSVLLHSDGGSYKPLNWMSPPCSTATAAPDDDAVARGVTEVWTVQHQKSDDRLEIDLHEIVHDSEHDLGVDPGLVKDGVEAHLQELLAAQIELLGTGHSLVRREYMTAIGPVDILARDADGGTVAVEIKRRGEIDGVEQLTRYLELLNRDPLLSPVRGVFAAQEIKPQARVLAGDRGIDCLVLDYDAMRGVDDADSRLF				NA	NA	NA	NA	NA
AK001_00621	420			hypothetical protein	GTGGGGTACGTGCTCTGGACGGTCCTCGCCGTCGCGCTCGTCCTCGCTCTCGTGCTCGTCGTCGGGACCTCCCGGCTGCGGACGCTGTCCCACCGCGTCGGCTCGTTCCAGTGCGGTGCCCGCCCCGGCGGCAGCCCGCAGGCCCCCTGGTCGGCGGGCATCGCCCACTACGGCGTCGGCCGGATCGACTGGTGGCGCTGCTGGTCGTTGGCGCCGCGACCGGCGCGCAGCTGGCGGCGCGACCGCCTCGAGGTGACCGGCCGGGCTCCGCTCGACCTCGCCGGCCAGGCCGACCAGTACCTGGTGCGGTGTCGCTACGACGGCACCGACTTCGAGCTGACGATGTCCGCGGACGCCTACGCCGGACTCGCCTCCTGGCTGGAGTCCGCCCCGCCCGGACGACGCGACCTCGTCGTCTGA	MGYVLWTVLAVALVLALVLVVGTSRLRTLSHRVGSFQCGARPGGSPQAPWSAGIAHYGVGRIDWWRCWSLAPRPARSWRRDRLEVTGRAPLDLAGQADQYLVRCRYDGTDFELTMSADAYAGLASWLESAPPGRRDLVV				NA	NA	NA	NA	NA
AK001_00622	288	atpC	COG0355	ATP synthase epsilon chain	ATGGCAGAGCTGAACGTCGACCTGGTCGCGGCCGACCGCAAGGTCTGGTCCGGAGCGGCCCGCGAGGTCAGCGCCCCGTCCGCCGACGGTCAGATCGGCATCCTCGCCGGCCACACCCCGCTGCTCGCGGTGCTGCGGCCGGGCACGATCAAGGTCTCGACCGCGCCTCGAGAGGTCGCCGTCGAGGTCCAGGTCGACGGTGGGTTCCTCTCGGTGGACGACGACGTCGTGACGATCGTCGTCGACTCGATCACCGAGGTCTCCGGACGCGAGTCCACGCTGGCCTGA	MAELNVDLVAADRKVWSGAAREVSAPSADGQIGILAGHTPLLAVLRPGTIKVSTAPREVAVEVQVDGGFLSVDDDVVTIVVDSITEVSGRESTLA	PGPT0014295_4016	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114	NA	NA
AK001_00623	1485	atpD		ATP synthase subunit beta	ATGACCGCCACCACCGCGGAAGCAGCGCACGGCGCCGCCGCGACCGAGCCGGGGACCGGCCGTGTCGCGCGCGTGATCGGCCCTGTCGTCGACATCGAGTTCCCCGAGGACTCGATCCCCGACATCTACAACGCCCTGACGGTCGACATCGACCTGTCGGGCCAGGGCGAGGACGAGAACTCCTTCACCCTGACCCTCGAGACGGCCCAGCACCTGGGCGACTCGCTGGTCCGGGCCATCGCCCTGAAGCCGACCGACGGCCTGGTCCGTGGCGCCGTCGTCTCCGACACCGGCGCGCCGATCTCGGTGCCCGTCGGCGACGTCACCAAGGGCAAGGTCTTCAACGTCACCGGTGAGGCGCTGAACCTGGCCGAGGGCGAGACGCTCGAGGTCACCGAGCGCTGGCCGATCCACCGCAAGCCGCCGGCGTTCGACCAGCTCGAGTCGAAGACGCAGATGTTCGAGACGGGCATCAAGTCGATCGACCTGCTCACCCCGTACGTGCAGGGTGGAAAGATCGGCCTCTTCGGTGGAGCGGGCGTCGGCAAGACGGTCCTCATCCAGGAGATGATCCAGCGTGTCGCCCAGGACCACGGCGGTGTCTCCGTGTTCGCCGGTGTCGGTGAGCGCACCCGTGAGGGCAACGACCTGATCCACGAGATGGACGAGGCCGGCGTCTTCGACAAGACCGCCCTGGTCTTCGGCCAGATGGACGAGCCGCCGGGCACGCGTCTGCGCGTCGCCCTGTCCGCGCTGACGATGGCGGAGTACTTCCGCGACGTCAAGAAGCAGGACGTGCTGCTGTTCATCGACAACATCTTCCGCTTCACGCAGGCGGGTTCCGAGGTCTCCACGCTGCTCGGCCGCATGCCGTCCGCGGTGGGCTACCAGCCGAACCTCGCCGACGAGATGGGTCTGCTCCAGGAGCGCATCACCTCCACGCGTGGTCACTCGATCACCTCGCTGCAGGCGATCTACGTCCCGGCGGACGACTACACCGACCCGGCGCCGGCGACGACGTTCGCCCACCTCGACGCGACCACGGAGCTCTCCCGTGAGATCGCCTCGCAGGGTCTGTACCCGGCGATCGACCCGCTGACCTCGACCTCGCGCATCCTCGACCCGCGCTACGTGGGCCAGGAGCACTACGACGTCGCGACGGCGGTCAAGCAGATCCTGCAGCGCAACAAGGAGCTGCAGGACATCATCGCCATCCTCGGTGTGGACGAGCTCTCCGAGGAGGACAAGACGCTGGTGGCGCGTGCTCGCCGCATCCAGCAGTTCCTCTCGCAGAACACGTACATGGCGAAGAAGTTCACCGGTGTCGAGGGCTCGACGGTCCCGCTGAGCGAGACCGTCGAGGCCTTCAAGAAGATCACCGAGGGCGAGTACGACCACGTGGCCGAGCAGGCCTTCTACAACATCGGTGGTCTCGAGGACCTCGAGCGCAACTGGGCGAGGATCCAGAAGGAGTACGGGGCCTGA	MTATTAEAAHGAAATEPGTGRVARVIGPVVDIEFPEDSIPDIYNALTVDIDLSGQGEDENSFTLTLETAQHLGDSLVRAIALKPTDGLVRGAVVSDTGAPISVPVGDVTKGKVFNVTGEALNLAEGETLEVTERWPIHRKPPAFDQLESKTQMFETGIKSIDLLTPYVQGGKIGLFGGAGVGKTVLIQEMIQRVAQDHGGVSVFAGVGERTREGNDLIHEMDEAGVFDKTALVFGQMDEPPGTRLRVALSALTMAEYFRDVKKQDVLLFIDNIFRFTQAGSEVSTLLGRMPSAVGYQPNLADEMGLLQERITSTRGHSITSLQAIYVPADDYTDPAPATTFAHLDATTELSREIASQGLYPAIDPLTSTSRILDPRYVGQEHYDVATAVKQILQRNKELQDIIAILGVDELSEEDKTLVARARRIQQFLSQNTYMAKKFTGVEGSTVPLSETVEAFKKITEGEYDHVAEQAFYNIGGLEDLERNWARIQKEYGA	PGPT0014296_621	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112	NA	NA
AK001_00624	900	atpG		ATP synthase gamma chain	ATGGCCGGAGGATCCCAGCGCGTCTACAAGCAGCGGATCAAGTCGACGCAGTCGCTGAAGAAGGTGTTCCGCGCGCAGGAGCTGATCGCGGCGTCCCGCATCGGCAAGGCTCGCGGCCGCACGGCAGCCGCGGCCCCGTACGAGCGGGCGATCACCCGCGCGGTGTCGGCGGTCGCCACGCACACGGCGACCGACCACCCGCTGACCACCGAGCGCACCGACACGAACCGGGTCGCGGTCCTCGTGATCGCCTCGGACCGCGGCATGGCGGGGTCCTACTCGGCCTCGATCATCCGCGAGGCCGAGCGGGTCGTGGCCCGGCTGACGGCCCAGGGCAAGGAGGTCTCCCTCTACGCCACCGGTCGCCGTGCGATCTCGTACTTCCGCTACCGCGAGCGTGAGCTGGCGGGCGAGTGGTCGTACGGGTCGGACAGCCCGGAGGCCGAGGTGGCCGGCGAGATCGCCGACACCCTGCTCGGGGCCTTCCTCGCCCCGGCGGCCGAGGGCGGCGTCGGCGAGCTGCACGTGGTCTACACGCAGTTCGTCAACATGGTCAGCCAGAAGCCGCGGGTCGTGCGGATGCTGCCGCTCGAGGTCGTGGAGGGCGTCGCCGTGCCCGGCGAGAACGACGCCCTGCCGCTGTACGACTTCGAGCCGTCGCCCGAGGGCGTGCTCGACGCCCTGCTGCCGCGGTACGTGCGCAGCCGCATCTTCAGCTTCATGCTGGAGGCCGCGGCCTCCGAGCTGGCCTCGCGCCAGCGTGCGATGCACACGGCGACCGACAACGCCGAGGACCTGATCCGTACCTACACGCGCCTGGCGAACCAGGCCCGCCAGGCGGACATCACCCAGGAGATCAGCGAGATCGTCTCGGGTGCTGACGCCCTCGCGGCGTCGTGA	MAGGSQRVYKQRIKSTQSLKKVFRAQELIAASRIGKARGRTAAAAPYERAITRAVSAVATHTATDHPLTTERTDTNRVAVLVIASDRGMAGSYSASIIREAERVVARLTAQGKEVSLYATGRRAISYFRYRERELAGEWSYGSDSPEAEVAGEIADTLLGAFLAPAAEGGVGELHVVYTQFVNMVSQKPRVVRMLPLEVVEGVAVPGENDALPLYDFEPSPEGVLDALLPRYVRSRIFSFMLEAAASELASRQRAMHTATDNAEDLIRTYTRLANQARQADITQEISEIVSGADALAAS	PGPT0014297_1337	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115	NA	NA
AK001_00625	1632	atpA		ATP synthase subunit alpha	ATGGCTGAGCTGACGATCCGGCCGGAAGAGATCCGCGCCGCGCTGGACAGCTTCGTGAAGTCCTACGAGCCCGAGGGCGCGGTGACCGAGGAGGTCGGCCGCGTCACCTTCGCCGCCGACGGCATCGCCAACGTCGAGGGCCTGCCCGGCGCCATGGCCAACGAGCTGCTGCGTTTCGAGGACGGCACGCTCGGCCTGGCGCTGAACCTGGACGTCCGCGAGATCGGTGTCGTCGTCCTCGGCGAGTTCACCGGCATCGAGGAGGGCCAGGAGGTCCGCCGCACGGGTGAGGTCCTCTCGGTCCCCGTCGGCGAGGGCTACCTCGGCCGCGTCGTCGACCCGCTGGGCAACCCGGTGGACGGTCTGGGCGACATCGAGACCGAGGGCCGCCGTGCCCTCGAGCTCCAGGCGCCCGGCGTCATGCAGCGCAAGTCGGTGCACGAGCCGCTGCAGACCGGCATCAAGGCGATCGACTCGATGATCCCGATCGGTCGTGGTCAGCGTCAGCTGATCATCGGCGACCGCCAGACCGGCAAGACGGCGATCGCGATCGACACGATCATCAACCAGAAGGCGAACTGGGAGTCCGGCGACCCCGAGAAGCAGGTGCGCTGCATCTACGTCGCGGTCGGCCAGAAGGGTTCGACCATCGCCTCGGTGCGCGGCGCCCTCGAGGAGGCCGGCGCGCTGGAGTACACGACGATCGTCGCGGCCCCGGCCTCCGACCCGGCCGGCTTCAAGTACCTCGCCCCCTACACCGGCTCGGCCATCGGCCAGCACTGGATGTACGGCGGCAAGCACGTGCTGGTCATCTTCGACGACCTGTCGAAGCAGGCCGAGGCCTACCGCGCCACGTCGCTGCTGCTGCGCCGCCCGCCGGGCCGTGAGGCCTACCCGGGTGACGTCTTCTACCTGCACTCCCGGCTGCTGGAGCGTTGCGCGAAGCTGTCGGACGAGATGGGCGCGGGCTCGATGACCGGTCTGCCGATCATCGAGACGAAGGCGAACGACGTCTCGGCGTACATCCCGACGAACGTCATCTCGATCACCGACGGTCAGATCTTCCTGCAGTCCGACCTGTTCAACGCGGACCAGCGCCCGGCGGTCGACGTCGGTATCTCCGTGTCCCGCGTCGGCGGTGACGCCCAGGTCAAGGCCATGAAGAAGGTCTCGGGCACGCTGAAGCTCGAGCTGGCCCAGTACCGTGCGCTCGAGGCGTTCGCGATGTTCGCCTCCGACCTCGACGCCGCCTCGCGCGGCCAGCTGGCCCGCGGCGCCGTGCTGATGGAGCTGCTCAAGCAGCCGCAGTACACCCCGTACCCGGTCGAGGAGCAGGTCGCCTCCATCTGGGCCGGTACCCGCGGCAAGCTCGACGACGTCCCGGTGGACGACGTCAAGCGGTTCGAGTCGGAGTTCATCGAGCACCTGCGCCGCAACACCGAGGTGTTCACGACGATCACCGAGACCGGCAAGCTGGAGCAGGAGACCGAGGACGCGCTGACCGCCGCGGTCGAGGACTTCCGCGACGGCTTCCTCAAGGGCGACGGCACCCCGCTCGTCGGCGGCGAGGCGGACTCCGAGTCCGCCGCGGACGCCGAGCAGGAGCAGCTCGTCGTGCAGAAGAAGGGCTGA	MAELTIRPEEIRAALDSFVKSYEPEGAVTEEVGRVTFAADGIANVEGLPGAMANELLRFEDGTLGLALNLDVREIGVVVLGEFTGIEEGQEVRRTGEVLSVPVGEGYLGRVVDPLGNPVDGLGDIETEGRRALELQAPGVMQRKSVHEPLQTGIKAIDSMIPIGRGQRQLIIGDRQTGKTAIAIDTIINQKANWESGDPEKQVRCIYVAVGQKGSTIASVRGALEEAGALEYTTIVAAPASDPAGFKYLAPYTGSAIGQHWMYGGKHVLVIFDDLSKQAEAYRATSLLLRRPPGREAYPGDVFYLHSRLLERCAKLSDEMGAGSMTGLPIIETKANDVSAYIPTNVISITDGQIFLQSDLFNADQRPAVDVGISVSRVGGDAQVKAMKKVSGTLKLELAQYRALEAFAMFASDLDAASRGQLARGAVLMELLKQPQYTPYPVEEQVASIWAGTRGKLDDVPVDDVKRFESEFIEHLRRNTEVFTTITETGKLEQETEDALTAAVEDFRDGFLKGDGTPLVGGEADSESAADAEQEQLVVQKKG	PGPT0014298_595	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111	NA	NA
AK001_00626	816	atpH_1		ATP synthase subunit delta	ATGCGAGGCACGAGCGGAGCATCCCTGGCAGCCGCCCAGGAGCGGTTCGAGCCGGTGCTGCGGTCCGCAGGGACCGACGCCGCCACGCTGGGCGAGCAGCTGTTCGCCGTCGTGAGCGCGCTCGACGGGTCGGCCCCGCTGCGCCGCTCGCTCGCCGACCCCTCGCGGGACGGCGAGGACAAGGCCCGTGTCGTCGCGGCGGTGCTGGCCGGCGGGTTCGACGAGCGCGTGGTCGACCTGGTGGCCGGGCTGGCCCGGTCGCGGTGGTCGAGCGACGCCGACCTCGGTGACGCGGTCGAGCGCCTGGCGGTCGACGCCATGCTCGCCGCCGCCGAGTCCCGCGACGCGCTCGAGACGGTCGAGGACGAGCTCTTCGTCCTCACCCGTGCGCTGGTGGGCCAGCGGCAGGCACGTCAGGCGCTCTCCGACGAGACGACGGAGCCCGCGCGGCGCGTCGCCCTGGTCGAGACGCTGCTCGACGGCAAGGCCGACGAGATCACGGTGGCGCTCGCCCGCCGTGCGACGACGTCCCCGCGGGGCCGCCGCTTCGTCCCGACGCTGACCTGGTACGGCGACGTCGCGGCCGAGCGGCGCAACCGCCTGGTCGCGTCGGTGACGAGCGGCTCGGTGCTCTCCGCGGCGCAGGAGGAGCGTCTCGGCGCCCTCCTCGAGCGGGCCTACGGGCGTGCCGTCCAGCTCAACGTCACGGTCGACCCGACCGTGATCGGCGGGCTGCGTATCCAGGTCGGCGCCGATGTCGTCGACTCCACCGTGCTGTCCCGCCTGGCTGACGCCCGTCGCCGGCTGGCCGGCTGA	MRGTSGASLAAAQERFEPVLRSAGTDAATLGEQLFAVVSALDGSAPLRRSLADPSRDGEDKARVVAAVLAGGFDERVVDLVAGLARSRWSSDADLGDAVERLAVDAMLAAAESRDALETVEDELFVLTRALVGQRQARQALSDETTEPARRVALVETLLDGKADEITVALARRATTSPRGRRFVPTLTWYGDVAAERRNRLVASVTSGSVLSAAQEERLGALLERAYGRAVQLNVTVDPTVIGGLRIQVGADVVDSTVLSRLADARRRLAG	PGPT0014299_367	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113	NA	NA
AK001_00627	588	atpF	COG0711	ATP synthase subunit b	ATGGCGGCGGCGCACACCGCCGCCCCGGTCATCGTGGCGGCGGAAGAAACGGCAGCGGAGGGGATCGATCTCTTCATCCCCGCCTGGTACGACATCATCTGGTCGTCGGTCGTCCTCGCCGTCATCGCGGTCGTCTTCTACCGTTACGTCCTGCCTCGGTTCCAGGCGGTCCTGGACGAGCGCACGACGAAGATCGAGGGCGGTCTGGCCAAGGCCGAGCAGGCGCAGCAGGAGGCTGCGGCAGCGCTGGCGGAGTACCACCAGCAGCTCGCCGAGGCCCGCGCCGAGGCTTCCAGGACGCGCGAGGAGGCTCGTGCCGAGGGCACGGCCATCGTCGCCGAGCTGAAGGCCAAAGCCAACGACGAGGCGGCACGCATCGTCGAGACCGCGCACCGGCAGATCGAGGCCGAGCGTCAGTCCGCGGCGGTCTCGCTGCGGACCGAGGTCGGTACGCTGGCCACACAGCTCGCCTCGAAGATCGTCGGTGAGTCCCTCGAGGACAGCGCGCGTCAGTCGCGGGTCGTCGACCGGTTCCTCGACGAGCTGGAGGCCGAGCAGTCGGCGACCACGAGGGTCGAGGAGGGCTGA	MAAAHTAAPVIVAAEETAAEGIDLFIPAWYDIIWSSVVLAVIAVVFYRYVLPRFQAVLDERTTKIEGGLAKAEQAQQEAAAALAEYHQQLAEARAEASRTREEARAEGTAIVAELKAKANDEAARIVETAHRQIEAERQSAAVSLRTEVGTLATQLASKIVGESLEDSARQSRVVDRFLDELEAEQSATTRVEEG	PGPT0014301_956	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109	NA	NA
AK001_00628	237	atpH_2		ATP synthase subunit c	GTGGACGTCACCACCCTCGCCGAGGTCACCGGTAACCTCAACGCTGTCGGCTACGGCCTCGCCGCGGTCGGCCCGGGCATCGGTCTCGGCATCCTCATCGGCAAGACGATCGAGGGCATGGCTCGCCAGCCCGAGGTCGCCGGTCAGCTGCGCGCCACCATGTTCCTCGGTGTCGCGTTCGTCGAGCTGCTCGCCCTCCTCGGCCTCGTCGCCGGCTTCCTGTTCCCGGCCGCGTGA	MDVTTLAEVTGNLNAVGYGLAAVGPGIGLGILIGKTIEGMARQPEVAGQLRATMFLGVAFVELLALLGLVAGFLFPAA	PGPT0014302_2006	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110	NA	NA
AK001_00629	756	atpB	COG0356	ATP synthase subunit a	GTGCCGTCCATCGACGAATTCTTCCCGCCCGCGATCCTCTTCGAGGACACGATCTTCCAGATCGACCGGATCTGGATCATCCGCATCATCGCGATGGCGGTGCTGCTGACCGTCTTCGTGGTGGCCGCCCGGCGCGCGAAGCTCGTGCCGGGACGGTTCCAGGGCGCGATCGAGATGATCCTCGACTTCGTCCGCGTGCAGATCGCCGAGGAGATCCTCGGCAAGACGAACGCCCGGCGTTTCGTCCCGATGCTGACGACGATCTTCCTGGCGATCCTCGCGTTCAACCTCACGGGCATCATCCCGTTCCTCAACATGGCCGGCACCGCCCGCATCGGGCTGCCGATCGTCCTCGCCCTGTGGGTCTTCGTCACCTACTGGTGGATCGGCGTCAGCAAGCACGGGCTCGGCGGCTACCTGAAGAACAACCTCTTCCCGCCCGGCATCCCGTGGCCGATCTACTTCATCGTCACGCCGATCGAGCTGCTGCAGATCCTCGTGGTCCGCCCGGCCTCGCTCGCGCTGCGACTCGCGGCCAACATGATCGCCGGGCACATCATGCTCGTGCTCTGCTTCGCGGCGACGCACTTCTTCCTCCTCGAGGCGTCGTGGGCGCTCAAGCCCATCGGCGCACTGACCCTCGCGGGCGGCTTCGCCGTCACGCTGTTCGAGATCCTGGTCGCTCTGCTGCAGGCGTACATCTTCGCCCTGCTCGCCGCGGTCTACATCAGCCTGTCGCTGGAGGAGGAGCACTGA	MPSIDEFFPPAILFEDTIFQIDRIWIIRIIAMAVLLTVFVVAARRAKLVPGRFQGAIEMILDFVRVQIAEEILGKTNARRFVPMLTTIFLAILAFNLTGIIPFLNMAGTARIGLPIVLALWVFVTYWWIGVSKHGLGGYLKNNLFPPGIPWPIYFIVTPIELLQILVVRPASLALRLAANMIAGHIMLVLCFAATHFFLLEASWALKPIGALTLAGGFAVTLFEILVALLQAYIFALLAAVYISLSLEEEH	PGPT0014303_2179	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108	NA	NA
AK001_00630	480			hypothetical protein	ATGACCGAGCAGAACGCCACACCGGGCACGCCGGACGAACCGGCTGAGGAGGCCGCGGGGCGGTCGTTCGAGGAGGTGCAGTCCTCGGAGCGGGCGATGCTCCGGCAGGCGCTGCGCTCCACCCTGCTGCTCGTCGGGGCGCTCGTGGTGCTCGGCGGTCTCGTGGGGTGGTTCGTCGCGGGAGCGGCCGGCGTGTGGGGCGCCCTGGTGGGCGCCGGCCTGGCGGCCTTCTTCTGCGCGACGACGATCTGGTCGATGCTGCGCACGGTCGGCAAGTCGCCCACGGCGATGGCGGCCGGGGTGATGGGCGCCTGGCTGGCCAAGATCGTGGTGCTCCTGGTCGTGCTGGTGCTGCTGCGCGGCGCCGACTTCTACGACCCGTACGTGCTCTTCGTCGTCCTGGCCCTCGGTGCGGTGGGGTCCGCCCTGCTGGACTACCAGGCGGTGCGCGGGGCACGGATGCCCTACGTGCAGCCCTGA	MTEQNATPGTPDEPAEEAAGRSFEEVQSSERAMLRQALRSTLLLVGALVVLGGLVGWFVAGAAGVWGALVGAGLAAFFCATTIWSMLRTVGKSPTAMAAGVMGAWLAKIVVLLVVLVLLRGADFYDPYVLFVVLALGAVGSALLDYQAVRGARMPYVQP				NA	NA	NA	NA	NA
AK001_00631	1230	wecA	COG0472	Decaprenyl-phosphate N-acetylglucosaminephosphotransferase	GTGAGGGCCTATCTGCTGGTCATGCTCATCGCCGCGGCGGTGACCTACCTGGCCACCCCCGGCGCACGCTGGGTCGCCCGGCGCACGAACGCGATCTCCGCGGTCCGCGCCCGCGACGTCCACGTCCAGCCGACGCCGCGCCTGGGTGGGCTGGCGATGCTGCTCGGGATCGTCGTGGCCGTCCTGCTGGCCTCCCGGATGCCGTTCCTCGCGGGCGTCTTCGACGAGCCGCAGGTCTTCGGCGTCGTCGGCGGCGCCGTCATCGTCTGCCTGCTGGGGTGGGCCGACGACGTCTGGGACCTGGACTGGATGACGAAGCTGGCCGGGCAGATCCTCGCCGCCGGCTTCCTGGCGATCAACCAGGTCCAGCTGACCGCGCTGCCGATGCCGGGCGGGCTGACCATCCCGTCGGCGCGGCTGTCGCTGTTCGTGACGATCCTCGTGATCGTCGTGGCGATGAACGCCGTGAACTTCGTCGACGGTCTCGACGGGCTCGCGGCCGGGATCGTCGCCATCGGCGGGTCCGCGTTCTTCCTCTACACCTACTTCCTCACGCAGCAGGCGAGCCCGGCGGACTACTCGAGCTTCGCCACGATGATGACGGCGGTGCTCGTCGGCGTCTGCCTCGGCTTCCTGCCGCACAACTTCTACCCCTCGCACATCTTCATGGGCGACTCGGGGTCGATGATCCTGGGGCTGGTCTTCGCCGGTGCGGCGATCTCGATCACCAGCAGCTTCGACCCGACCGTCACCGACGCGCTGTCGGGCGCCCAGCGCGCCACGATCTTCATCCCGCTCCTGCTGCCGCTGGCCGTGACGCTGCTGCCGCTGCTGGACATGACGATGGCGGTCGTGCGCCGGCTGGCCGCCGGCAAGTCGCCGATGGCCCCCGACCGCATGCACCTGCACCACCGGATGCTGGCCCTGGGGCACTCCCACCGCCGCGCCGTGCTCATCCTGTACGTCTGGACGGCGGTCTTCGCCTTCGGCACCGCGGCGCTGGTGCCGTGGCGTTGGCAGGTGGTGCTGGCCTGGCTGGTCGTGGCGGTCGTGATCGCCCTGGTGCTGACCCTCGGCCCGCTGCGCACGCGCGGGCGCTTCCTCGACGACGACGTGGCCTCGGGCGCGCACCCGGTCGCCGCGACGTCGTCCTCGCCGACCGTCCCCGAGAAGGAGACCGACCATGACCGAGCAGAACGCCACACCGGGCACGCCGGACGAACCGGCTGA	MRAYLLVMLIAAAVTYLATPGARWVARRTNAISAVRARDVHVQPTPRLGGLAMLLGIVVAVLLASRMPFLAGVFDEPQVFGVVGGAVIVCLLGWADDVWDLDWMTKLAGQILAAGFLAINQVQLTALPMPGGLTIPSARLSLFVTILVIVVAMNAVNFVDGLDGLAAGIVAIGGSAFFLYTYFLTQQASPADYSSFATMMTAVLVGVCLGFLPHNFYPSHIFMGDSGSMILGLVFAGAAISITSSFDPTVTDALSGAQRATIFIPLLLPLAVTLLPLLDMTMAVVRRLAAGKSPMAPDRMHLHHRMLALGHSHRRAVLILYVWTAVFAFGTAALVPWRWQVVLAWLVVAVVIALVLTLGPLRTRGRFLDDDVASGAHPVAATSSSPTVPEKETDHDRAERHTGHAGRTG	PGPT0015240_318	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISM	CE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851	NA	NA
AK001_00632	663		COG0009	Putative threonylcarbamoyl-AMP synthase	GTGCACGACGTGACCGACGAGAACTCCTGGGGCCCCGCGATCGACGAGGCCGTGAACACGATCTCCCGGGGAGGACTCGTCGTCCTCCCGACCGACACGGTGTACGGGATCGGCGCGGACGCCTTCGACGCGGACGCCGTCGCCGCCCTCCTCGCGGCGAAGGGACGGGGCCGGCAGATGCCGCCCCCGGTGCTCGTGCCCGACGCCCGCACCCTGGACGGCCTCGCCGTCGACGTGACCCCGGAGGCGCGGGCACTGGTCGAGGCGTTCTGGCCGGGCGGGTTCACCATCATCCTGCGGTCCCAGCCGTCCCTGCACTGGGACCTGGGGGAGACCCACGGCACCGTGGCGCTGCGCATGCCCGACCACCCGGCCGCCCTCGCGCTGCTGCGCCGGACCGGACCTCTCGCCGTCTCCAGCGCCAACCGCACGGGCCGGCCCGCCGCCACCGAGGCGGCGGACGCGGTCGAGCAGCTCGGTGACGCCGTGGGCTGCTACCTCGACGGCGGCACGGCCCCCGGCGGGGTCGCCTCGACGATCGTCGACGCGACCGGTCCGCGGCTGCGCGTCGTGCGGGCCGGCGCCGTGCCGCTCGAGGCGCTGCGCGAGGTCGCCCCGGTGCTCGGCGTCGACGAGACCGCGGAGGAGGAGACCTCCGGGTGA	MHDVTDENSWGPAIDEAVNTISRGGLVVLPTDTVYGIGADAFDADAVAALLAAKGRGRQMPPPVLVPDARTLDGLAVDVTPEARALVEAFWPGGFTIILRSQPSLHWDLGETHGTVALRMPDHPAALALLRRTGPLAVSSANRTGRPAATEAADAVEQLGDAVGCYLDGGTAPGGVASTIVDATGPRLRVVRAGAVPLEALREVAPVLGVDETAEEETSG				NA	NA	NA	NA	NA
AK001_00633	945	prmC_1	COG2890	Release factor glutamine methyltransferase	ATGCCTGAGCCGGTCGGCGCGCTGCTGCGCGGTGCGACCCAGCGCCTCGCCAGGGCCGGTGTCCCGTCCCCGCGCACCGACGCCGAGCTGCTCCTGGCCCACGTGCTGGCCCTGCCGCGCGGCGAGGTCCGGCGTCTCGCCCTGCTGGACGCCCCGGTACCCGACGGCGGTACGGACGCCGAGGCCGCGGCACGCCGCTTCGCGGGGCTCGTCGACCGCCGTGCCGCCCGGGAGCCGCTGCAGCACCTGACCGGGGCGGCTCCCTTCCGGCACCTGGAGCTCTCCGTCGGCCCGGGGGTGTTCGTGCCCCGGCCCGAGACCGAGCAGGTCGCCCAGGTCGCGATCGACGAGGCGACGGGCGTCGCCGCGACCCGGGGCCGCGCCGTCGTCGTCGACCTGTGCACCGGCTCCGGGGCGATCGCGCTGGCGGTGGCCACCGAGGTGGCCGGTGCCGAGGTGCACGCCGTCGAGCTGGACGGCGCCGCGCACGGGTGGGCCGCCCGGAACGTCGAGGCGGTCGCCGCGGCCGCCGGGACCGAGGTCGACCTGGTCCGCGGGGACGCCCGCACGGCGCTGACCGGCCTGGACGGGACGGTCGACGTCGTCGTCTCGAACCCGCCGTACGTCCCCCCGGACGCCGTGCCCCGCGACCCCGAGGTCGCCGGTCACGACCCGGACGTCGCGCTGTACGGCCTGGGCGCCGACGGCCTGGAGGTGCCGCGCGGGATCGCCCGCGCCGCGGCGCGGCTGCTGCGTCCCGGCGGGCTGTTCGTCATGGAGCACGCCGAGACCCAGGCCTCCGGTGCGCGGTCGCTGGCGGCCGCCGCCGGGTTCGTCGACGTGCGCACCGCGGACGACCTGACCGGCCGCCCTCGCATGGTGGTGGCGCGACGGCCCGCGGACGCCCCGGCCGGGCGGGGAACCGTGACAGACTGGGGCGAGTGA	MPEPVGALLRGATQRLARAGVPSPRTDAELLLAHVLALPRGEVRRLALLDAPVPDGGTDAEAAARRFAGLVDRRAAREPLQHLTGAAPFRHLELSVGPGVFVPRPETEQVAQVAIDEATGVAATRGRAVVVDLCTGSGAIALAVATEVAGAEVHAVELDGAAHGWAARNVEAVAAAAGTEVDLVRGDARTALTGLDGTVDVVVSNPPYVPPDAVPRDPEVAGHDPDVALYGLGADGLEVPRGIARAAARLLRPGGLFVMEHAETQASGARSLAAAAGFVDVRTADDLTGRPRMVVARRPADAPAGRGTVTDWGE				NA	NA	NA	NA	NA
AK001_00634	1092	prfA	COG0216	Peptide chain release factor 1	GTGACCGAGGACTTCGCGGTGGCCCGGCCGCTGCTGGCGGAGCACGCCGAGATCGAGCGTGAGCTCGCCGATCCGGCGGTGCACGCCGACCAGGGCAGGGCCCGCACCCTCGGACGTCGCTACGCCGAGCTGAACCGTGTCGTGGGCGCCTACCGCGCCTGGCGGTCCGCGAGCGACGACGCCACCGCGGCGGCCGAGCTCGCCGCCGAGGACGAGTCGTTCGCGGCCGAGGTCCCCGCCCTGCGCGAGGCCGAGGCCGACGCCGCCGAGCACCTGCGCCGCGTGCTCGTCCCGCGCGACCCGGACGACGGTCGCGACGTCATCCTGGAGATCAAGGCCGGCGAGGGCGGCGACGAGTCCGCGCTGTTCGCCGGCGACCTGTTGCGGATGTACCTGCGGTACGCCGAGCGTCGCGGCTGGGCCACCCAGGTGCTCGAGTCCACCGAGACCGAGCTCGGCGGGTTCAAGGACGTCCAGCTCGCCGTGAAGAGCCGCGGCACGCCCGAGGACCCGGCGGACGGCGTCTGGGCGAACCTCAAGTACGAGGGCGGCGTGCACCGCGTGCAGCGGGTCCCGGTGACCGAGTCCCAGGGCCGGATCCACACCTCCGCGGCCGGCGTGCTCGTGCTGCCCGAGGTCGACGACCCGGGTGAGGTCGAGATCGACCCGAACGACCTGCGCATCGACGTCTACCGGTCCTCCGGCCCGGGCGGGCAGTCGGTCAACACCACCGACTCGGCGGTGCGCATCACGCACGAGCCGACGGGCATCGTCGTGTCCATGCAGAACGAGAAGTCCCAGCTGCAGAACAAGGAGCAGGCGATGCGCGTGCTCCGCGCGCGGCTGCTGGCCGCTCAGCAGGAGGAGGCGGCCGCCGCCGCGGCGGACATCCGCCGGTCCCAGGTGCGCACGGTCGACCGCAGCGAGCGCATCCGGACGTACAACTTCCCGGAGAACCGCATCGCCGACCACCGCACGGGCTACAAGGCCTACAACCTCGACCACGTGCTGGCCGGCGACCTCGACCCCGTCGTGCGGTCCGCGGTGGATGCCGACGAGGCGGCGCGGCTCGCCGCCGCCGGCGATGCCTGA	MTEDFAVARPLLAEHAEIERELADPAVHADQGRARTLGRRYAELNRVVGAYRAWRSASDDATAAAELAAEDESFAAEVPALREAEADAAEHLRRVLVPRDPDDGRDVILEIKAGEGGDESALFAGDLLRMYLRYAERRGWATQVLESTETELGGFKDVQLAVKSRGTPEDPADGVWANLKYEGGVHRVQRVPVTESQGRIHTSAAGVLVLPEVDDPGEVEIDPNDLRIDVYRSSGPGGQSVNTTDSAVRITHEPTGIVVSMQNEKSQLQNKEQAMRVLRARLLAAQQEEAAAAAADIRRSQVRTVDRSERIRTYNFPENRIADHRTGYKAYNLDHVLAGDLDPVVRSAVDADEAARLAAAGDA				NA	NA	NA	NA	NA
AK001_00635	213	rpmE	COG0254	50S ribosomal protein L31	ATGAAGAGCGGTATCCACCCCGAGTACGTCACCACCGAGGTCACCTGCACCTGCGGCAACACTTTCGTCACCCGCAGCACCGAGACCTCCGGCAAGATCAACGCCGACGTCTGCAGCGCCTGCCACCCGTTCTACACGGGCAAGCAGAAGATCCTCGACACCGGTGGTCGTGTGGCCCGGTTCCAGGCTCGCTACGGCAAGAAGAACAAGTAG	MKSGIHPEYVTTEVTCTCGNTFVTRSTETSGKINADVCSACHPFYTGKQKILDTGGRVARFQARYGKKNK	PGPT0014325_3478	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909	NA	NA
AK001_00636	1938	rho		Transcription termination factor Rho	GTGACGAACAGCACCGACAGCCTGAGCTCGATGAAGCTTGCCGAGCTCCAGGCGATGGCGTCCCAGATGGGCGTCAAGGGAACGAGCCGGATGCGCAAGAGCGACCTGGCCGACGCGATCCGCGCCAACCGCGCGTCCGGCGGCAGCCGCCGGGACGACGCCGGCCGTGCGCCCGAGCGTCGGGCCGCGAGCGGGGAGGCCCCCGCCAAGGCGGCCTCCGCCGACCCCGTGGCCGCCGCGTCGACCGCCGCGCCCGCCGTCCGGACCGAGGCTCCCGCCGAGGACGCCCCGCGCCGCCGCCGTGCGGTGCGCACCTCGGGCGCCGCCGCTCCGGAGCAGGGCTCCGGTCGTGCCGGCGGCGCGGAGTCCGCGAGCGACCGCGAGGCCCGGCTGGCCGAGCTCGCCGACGCCGTCGCCGCGCCCAAGGAGCGCCAGCCCCGGTCGGACCGCCAGGACGGCGGCAACCGCGGCGACTCCGCGAACCAGGGCGACGGTGGCGACAACCGCCGTCGCGGGGGCCAGGACGGCCAGGACGGGTCCGGCGACAACCGTGGCGACCAGGGCGGCCAGGGCCGTCAGCAGGGCGACCAGCGCCAGCGCGGCGGCGACCAGCAGGAGCGCTCGGGCTCCCGGCGCCGGCGCGGCCGCGACCGCGGTCGGGACCGTCGCCGCAACCGCGGCGGGCGCGGCGGCAACGGGCCGGACATGCCCCTGGAGGAGCCGGAGGTCCGCGAGGACGACGTGCTGCTCCCCGTCGCGGGCATCCTCGACATGCGCGACAACTACGCGTTCGTGCGCACCAGCGGCTACCTGCCCGGGCCCAAGGACGTCTACGTCTCGATGAACCAGGTCCGCAAGTCGGGCCTGCGTCGCGGTGACGCCGTCGTCGGCGCGATCCGCCAGCCCCGCGACGGCGAGGACCAGTCGAACAACGGCGGCGGGGGCGGCAAGAACAACCCGCGCAACAAGTTCTCCGCGCTCGTGCGCCTCGACTCCGTCAACGGCATGACGCCGGAGGAGGCCCGGCAGCGTCCGGAGTTCACCAAGCTGACGCCGCTGTACCCGCAGGAGCGCCTGCGTCTGGAGAACCCCGAGGCGACCCGGCTGACCCCGCGCGTCATCGACATCGTCGCGCCGGTCGGCAAGGGGCAGCGCGGCCTGATCGTCTCCCCGCCCAAGGCCGGCAAGACGATCATCATGCAGCAGATCGCCAACGCGATCACGGCGAACAACCCCGAGGTCCACCTCATGGTGGTGCTCGTGGACGAGCGCCCCGAAGAGGTCACGGACATGGAGCGGACGGTCAAGGGCGAGGTCATCGCCTCGACGTTCGACCGCCCGGCGTCGGACCACACGATCGTCGCCGAGCTCGCGATCGAGCGGGCCAAGCGTCTGGTCGAGCTCGGCCAGGACGTCGTGGTGCTGCTCGACTCCATCACCCGCCTGTCGCGCGCCTACAACCTGGCGGCCCCGGCCTCGGGCCGGATCCTGTCCGGTGGTGTGGACGCCGCGGCGCTCTACCCGCCGAAGAAGTTCTTCGGTGCGGCCCGCAACATCGAGGAGGGCGGCTCGCTGACGATCCTCGGCTCCGCCCTGGTGGAGACGGGCTCGAAGATGGACGAGGTGATCTTCGAGGAGTTCAAGGGCACCGGCAACATGGAGCTGCGGCTGTCGCGCAACCTCGCGGACCGGCGGATCTTCCCGGCGGTGGACGTCAACGCGTCCGGTACCCGTCGCGAGGAGATCCTCATGTCCAAGGAGGAGCTCGGCATCGTCTACAAGCTGCGCCGGGTCATGGGCGCGCTGGACCAGCAGCAGGCGATCGAGCTGCTGCTCGGCAAGCTCAAGGACACCAAGACGAACGTCGAGTTCCTGCTGCAGGTCCAGAAGACCACGCCGTCCGGCCTCACGGACGACCGTCCCGGCGAGACAGTCTGA	MTNSTDSLSSMKLAELQAMASQMGVKGTSRMRKSDLADAIRANRASGGSRRDDAGRAPERRAASGEAPAKAASADPVAAASTAAPAVRTEAPAEDAPRRRRAVRTSGAAAPEQGSGRAGGAESASDREARLAELADAVAAPKERQPRSDRQDGGNRGDSANQGDGGDNRRRGGQDGQDGSGDNRGDQGGQGRQQGDQRQRGGDQQERSGSRRRRGRDRGRDRRRNRGGRGGNGPDMPLEEPEVREDDVLLPVAGILDMRDNYAFVRTSGYLPGPKDVYVSMNQVRKSGLRRGDAVVGAIRQPRDGEDQSNNGGGGGKNNPRNKFSALVRLDSVNGMTPEEARQRPEFTKLTPLYPQERLRLENPEATRLTPRVIDIVAPVGKGQRGLIVSPPKAGKTIIMQQIANAITANNPEVHLMVVLVDERPEEVTDMERTVKGEVIASTFDRPASDHTIVAELAIERAKRLVELGQDVVVLLDSITRLSRAYNLAAPASGRILSGGVDAAALYPPKKFFGAARNIEEGGSLTILGSALVETGSKMDEVIFEEFKGTGNMELRLSRNLADRRIFPAVDVNASGTRREEILMSKEELGIVYKLRRVMGALDQQQAIELLLGKLKDTKTNVEFLLQVQKTTPSGLTDDRPGETV				NA	NA	NA	NA	NA
AK001_00637	960	thrB	COG0083	Homoserine kinase	ATGCAGCTCGGAACCGATCACGTCCTGGTGCGGGTGCCCGCCACCAGCGCCAACCTCGGTCCGGGGTTCGACGCCATGGGCCTCGCGCTGGGTCTCCACGACGAGATCGAGGTCGACCTCCTGGCCAGCGACGAGATCACGGTCGACGTCGTCGGGGAGGGTGCCGGCCAGGTGCCCGACGGCGAGGACCACCTCGTGGTGCGGGCGCTGCGGCACACGCTCGAGCTCGCCGGCGCGCCGCTGACCGGTCTGCGCATGCGGTGCACGAACCGGATCCCGCACGGCCGCGGCCTCGGCTCCTCGGCGGCCGCGGTCGTCTCGGGCGTCGTGGCCGCGCGGGGGCTGCTCGCGGACCCTCAGTCCCTCGACGTGACGACGATGCTGCGCATCGCCACCGAGTTCGAGGGGCACCCCGACAACGCCGCGCCCGCGCTGCGCGGCGGCGCCACGCTGGCCTGGTCGGGGGCGTCCGGCGCCCAGTCGGTCGACCTGGAGGTGGATCCCCGGATCACCGCGACGGTGCTGGTCCCCGACACCCAGCTCGCCACCAGCCGGGCCCGCGGCGTGCTCCCCGCCCAGGTGCCGCACGCCGACGCGGCCTTCACGGCCGGTCGTGCGGCGCTCCTCGTGGAGGCCCTGGCGCGCCGCCCGGAGCTGCTGCTGGACGCCACCGAGGACCGGCTGCACCAGGGCTACCGGGCCGAGGTCATGGCCGCGACCGCGGAGCTCGTGCGCGCGCTGCGGGCCGAGGGGTACGCCGCGACCGTGTCGGGTGCGGGCCCGACGGTGCTGGTGCTCGCCGCCGAGCGGCAGACCGCCGGCCTGGACGGCGTGCTCGCCGACCTGGTGGACGGCGTCGCAGGCTGGCGTGCCTGGCGGCCGGGGATCGACACCACCGGGGCCGTCTGCAGAAGTGGTAGCATGGACCAAGCCTTCGGGACGGTGGCAGGACGAGCATGA	MQLGTDHVLVRVPATSANLGPGFDAMGLALGLHDEIEVDLLASDEITVDVVGEGAGQVPDGEDHLVVRALRHTLELAGAPLTGLRMRCTNRIPHGRGLGSSAAAVVSGVVAARGLLADPQSLDVTTMLRIATEFEGHPDNAAPALRGGATLAWSGASGAQSVDLEVDPRITATVLVPDTQLATSRARGVLPAQVPHADAAFTAGRAALLVEALARRPELLLDATEDRLHQGYRAEVMAATAELVRALRAEGYAATVSGAGPTVLVLAAERQTAGLDGVLADLVDGVAGWRAWRPGIDTTGAVCRSGSMDQAFGTVAGRA	PGPT0020275_1626	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0020275-thrB-K00872	NA	NA
AK001_00638	1107	thrC	COG0498	Threonine synthase	ATGCCGGCCCATCAGTGGCGGGGTGTCATCGCCGAGTACGCCGACCGGTTGCCGGCCCACGTCGCCGAGAAGATCGTCACCCTCGCCGAGGGCGGGACGCCGCTCGTCGAGGCCCCGGCGCTGTCCCGGCGCACCGGCGCCGACGTCTACGTCAAGGTCGAGGGGATGAACCCGACCGCGTCGTTCAAGGACCGCGGTATGACGACGGCGATCTCCGCCGCCGCCGCCCGAGGAGCCCAGGCCGTCGTGTGCGCCTCCACCGGCAACACCTCGGCCTCGGCCGCCGCCTACGCCACCCGCGCCGGGATGGTCTGCGCCGTCCTGGTGCCGGACGGCAAGATCGCCATGGGCAAGCTGAGCCAGGCGATCGCGCACGGCGCCAAGCTGCTCCAGGTGGACGGCAACTTCGACGACTGCCTCGTGGTGGCGCGCAAGCTGTCCGAGGCCTACCCGGTCGAGCTCGTGAACTCGGTCAACCCCGACCGGATCGAGGGCCAGAAGACCGCCGCCTTCGAGGTGGTCGACGCCCTCGGCGACGCCCCCGACATCCACGCCCTGCCGGTGGGCAACGCGGGCAACATCACGGCCTACTGGAAGGGCTACCGGGAGTACGCCGGGATCCCGACGAGCGAGGAGGGGCCCGGTGCGGCGCCCGAGGCCGTGGCGACGCGGACCCCGGCGATGTGGGGGTTCCAGGCCGCCGGTGCCGCGCCGATCGTCGCCGGGCACCCCGTCGACCCCGAGACCATCGCCACGGCGATCCGCATCGGCAACCCCGCCTCCTGGGCGCAGGCCGAGGCGGCCCGGGACGACTCGGGCGGGTTCATCGAGGCCGTCTCCGACGCCGAGATCCTCGCGGCGCACCGGGTGCTCTCGGCCGAGGTGGGCGTCTTCGTCGAGCCGGCCTCGGCCGCCGGCGTCGCGGGCCTGCTCTCGCGCGCCGAGCGCGGCCTCGTCCCGGCGGGCGCCCGGGTGGTCGTCACCGTCACGGGCCACGGCCTGAAGGACCCGCAGTGGGCCCTGCGCACGCCCGACGGCGGCGACGTGACCCCGACCCGGGTCGGGGCGGACGTCGTCTCGGTCGCCGACGCTCTCGGGCTGGGCTGA	MPAHQWRGVIAEYADRLPAHVAEKIVTLAEGGTPLVEAPALSRRTGADVYVKVEGMNPTASFKDRGMTTAISAAAARGAQAVVCASTGNTSASAAAYATRAGMVCAVLVPDGKIAMGKLSQAIAHGAKLLQVDGNFDDCLVVARKLSEAYPVELVNSVNPDRIEGQKTAAFEVVDALGDAPDIHALPVGNAGNITAYWKGYREYAGIPTSEEGPGAAPEAVATRTPAMWGFQAAGAAPIVAGHPVDPETIATAIRIGNPASWAQAEAARDDSGGFIEAVSDAEILAAHRVLSAEVGVFVEPASAAGVAGLLSRAERGLVPAGARVVVTVTGHGLKDPQWALRTPDGGDVTPTRVGADVVSVADALGLG	PGPT0009175_5390	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733	NA	NA
AK001_00639	1398	hom	COG0460	Homoserine dehydrogenase	GTGCCCGCTGCAGACCACCGGCCCGCCGTGACCGCGACGTCGAACACCGACCGTCGTGAGCAACGCGCCCTGCGGGTCGCCCTGCTCGGGTGCGGCGTGGTCGGCACCGAGGTCGCCCGCGGCCTGCTCGAGAACTCCGCCGAGCTGGCCGCCCGTGCCGGAGCGCCGCTGGAGGTCGTGGGCATCGCCGTGCGGGACGCCTCGCGCGAGCGGCCGGGCATCCCCGCCGACCTGCTGACCGAGGACGCCGAGGCGCTCGTCGACGCCGCCGACGTCGTGGTCGAGCTCATGGGCGGCATCGAGCCGGCGCGCACGCTCATCCTGCGGGCGCTCGAGCGCGGCGCCAGCGTCGTCACGGCGAACAAGCAGCTCCTGGCCGAGCAGGGCCCGGTCCTGTTCGAGGCCGCCGACGCGGCGCGCGCGGACCTGTCGTTCGAGGCCGCCGTCGCCGGCGCGATCCCGATCGTGCGTCCCGTGCGCGAGTCGTTGGCCGGGGACCAGGTCGAGCGGGTCCTCGGCATCGTCAACGGCACGACGAACTACGTCCTGGACGAGATGACCACGCAGGGCATGGACCTCGAGGACGTCGTCAAGCGCGCCCAGGAGCTCGGGTACGCCGAGGCCGACCCGACCGCCGACGTCGACGGCTACGACGCCGCGGCCAAGGCGGCCATCCTCGCCTCGTTGGCGTTCCACACCCGCGTCTCGATCCACCAGGTGGCGCGCGAGGGGATCCGCCACATCACCAGCGACGACGTCGACTGGGCCCGACGTACGGGCTACGTCCTCAAGCTGCTCGCCATCGCCGAGCGCACCGACGAGGGCGTCGCCGCGCGCGTCCACCCGGCGCTGGTGCCGACCGACCACCCGCTGGCCGCGGTGCGCGGCGCGTTCAACGCCGTCTTCGTCGAGGCCGAGGGTGCCGGACCGCTGATGTTCTACGGGCAGGGTGCGGGCGGACGGCCCACGGCCTCGGCCGTGCTCGGCGACGTCGTGTCGGCGGCGCGCGACCGCCTCATCGGGGGCAAGGGGCCCCACGAGTCGGCCTACGCCTCGCTGCCCGTGCTGTCCGCCGACGCCGCCGTCACCCGCTACCAGGTGCGCCTCGAGGTCGCGGACCGCACCGGTGTCCTGGCCCAGGTCGCCGGTGTCCTGGCCGACCACGGCGTGTCCATCGACACCGTGCGGCAGAGCGAGGCGCTCACCGCGCCCTTCGAGGCCGAGCCGGCCTCGGAGCCGGCGCCCGGTGCCGTGCCCGACGAGGGCGAGCCGGTGGCCCGTCTCGTCATCACCACCCACGCCGCCCGCGAGGCGTCGCTCGCCGCGACGGTCTCCGCGCTGCGCGACCTGGAACCCGTTCGTCAGATCACGTCAGTCCTGCGAGTCGAGGGAGTCTGA	MPAADHRPAVTATSNTDRREQRALRVALLGCGVVGTEVARGLLENSAELAARAGAPLEVVGIAVRDASRERPGIPADLLTEDAEALVDAADVVVELMGGIEPARTLILRALERGASVVTANKQLLAEQGPVLFEAADAARADLSFEAAVAGAIPIVRPVRESLAGDQVERVLGIVNGTTNYVLDEMTTQGMDLEDVVKRAQELGYAEADPTADVDGYDAAAKAAILASLAFHTRVSIHQVAREGIRHITSDDVDWARRTGYVLKLLAIAERTDEGVAARVHPALVPTDHPLAAVRGAFNAVFVEAEGAGPLMFYGQGAGGRPTASAVLGDVVSAARDRLIGGKGPHESAYASLPVLSADAAVTRYQVRLEVADRTGVLAQVAGVLADHGVSIDTVRQSEALTAPFEAEPASEPAPGAVPDEGEPVARLVITTHAAREASLAATVSALRDLEPVRQITSVLRVEGV	PGPT0020155_94	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003	NA	NA
AK001_00640	2703			hypothetical protein	GTGCGCATCACCATGCGACGACGCCCGGTCGTGGGCGCGCTCGCCGCGTTCGGCCTCGCTGCCACCACCGTGGCGCTGCCGAGCATCGCGACCGCCGACGACCCGGACGGGCCGGAACCCCTGGCCCCCGTGCACACCGCACCCACGAGCGACCAGGACACGCTGGTCAACGAGACGCCCGGCGCCTGGTTCGTGGAGCTCGAGACCGCCCCGATCGCGCAGGGCGGCAAGGCTGCGGCCGTGCGCAGCGACCACGCGGCGTTCCGCCGTGCGGCCCGCGACGCCGGTGTCGAGTACACCGAGCGCGAAGAGTTCACCACCCTGTTCAACGGCTTCTCCGTCGACATGGACAGCTCGCAGCTCGGCCGCCTGCAGCGGACCGACGGCGTCGCCGCCATCTACCCGATGGTCCAGGTCGCCGTCCCGGAGCCCCAGACCGCCGCGATCCCGGACATGGCGACCGCGCTCGCGATGACCGGCAGCGACGTCGCGCAGAACGAGCTCGGGCTCACCGGCGAGGGCATCAAGGTCGCGGTGATGGACACCGGCATCGACTACGAGCACCCCGACTTCGGCGGCGGCGAGTTCCCGACCGAGCGGATCCCCTACGGCTACGACTTCGTCGGGGACGACTACAACGCCGGTTCTCCCGACCCCGCCGCGCGCGTCCCGCAGCCCGACGGCGACCCGATGGACTGCCAGGGCCACGGCACCCACGTGGCCGGCATCGTCGGTGCCGACGGTGACGTCCTCGGCGTCGCCCCGGGGGTCACCTTCGGCGCGTACCGGGTCTTCGGCTGCGAGGGTTCCACCGAGGCCGACATCATGATCTCGGCCATGGAGAAGGCCCTCGAGGACGACATGGACATCCTCAACATGTCGATCGGCTCGTCCTTCACCTGGCCCGACTACCCGACCGCGACCGCCTCGGACGCCCTGGTGGACGCCGGCATGGTCGTCGTCGCCTCCATCGGCAACTCGGGCCGCACCGGCGTCTACTCCACCGGCGCCCCGGGCGTGGGCGAGAAGGTCATCGGCGTCGCGTCCGTGGACAACACCAACAACGACGCCGCACTGGCCGTCGCCGAGCCCTCCGGCACCGAGGTGCCGTACACGGTGCTCTCCGACGTCGCCGCGCCGCCCACCTCCGGCTCGACCGACCCCATGGTCCACGTCGGTCGCGGCTGCGTGGACACCCTGGGTGACGAGCTCCTCGACGACCCCGCCGGCATGACCGCGCTGGTGGACCGCGGCGACTGCACCTTCGACGAGAAGTACTCCTCCGCGGTGGCCGCCGGCGCGACCGCCGTCGTCATCGCCAACAACATCCCCGGCCTGTTCAACGGCGGCGGCGTCGTGGACGCCGGTGTCCCGGGCATCGGGATCAGCCTGGCCAGCGGCGACGCGCTCAAGGCCGAGATCGACGGCGGGGCCGACGTCACCCTGGCCTGGACCGACCAGACCACGTCCGTCGTCAGCCCGACCGGTGGCGAGAAGAGCGACTTCAGCTCGTACGGGCTCTCCCCCGACCTGACGCTGAAGCCGGACCTGGCCGCGCCGGGCGGGAACATCCACTCGACGTACCCCCTCGCCAAGGGCGGCTACGCCACCCTGTCGGGCACCTCGATGGCCGCTCCGCACGTCGCCGGTGCCGCCGCGCTGCTGCTCGAGGCGGACCCGGAGATCGGCACCACCGAGATGCGGGACCTGCTGCAGAACACGGCCGAGCCGATCCTGTACGCCGGCGCCTACGTCGAGACCGTGCACGGCCAGGGCGCCGGCCTGATCGACGTCCCGGCCGCCTACGCCGCGACGACGTCGGTCACCCCGGCGAAGATCTCGCTCGGCGAGTCCGTGGTGGACCGCGTCGACGGTGCGCCGGTGTTCGAGCCGGTCACCACGACGCTGACGGTGGCCAACGACTCCGACGCCGAGGTGACCTACACCATGGGGCACACCACGGCGCTGGCGACCTACGGCGACACCTTCGCTCCGACGCTCGCGATCCTCGACGGCACGGCGGAGTTCTCGGCCACCGAGGTCACCGTGCCGGCCGGGGAGTCGGCCGAGGTGGACGTCACGATCACCTCGCCCGGCTTCGACGGATTCGAGGTCATCTACGGCGGGTTCGTCGAGATCACCGGCGACGACGGCTCCGAGGTCACGGTGCCGTACGCCGGCTTCGACGGCGACTACCAGGACATCCAGGCGATCACCCCGATCGACCTCGGTGACGGCCAGATGATCGACGTGCCGTGGGTCTCGCGGATCACGGAGTGCGCGGAGTTCGTCGAGTTCGACTGCATCGACCCGGCCGGGACGTTCAGCGAGGCCGGCGGCGACACGTTCACGCTCGAGTGGGTCGACGGCCTGCCCGACTACCCCTACGTGGTGGCGCACTTCAACCACCAGGTCGAGGACTTCGAGATCTCGGTGATCGACAGCAAGGGTCGGACGAAGGGCGCCTTCACGGTCGCCGCCGACCTCGGCTCCCTCGGGCGCAGCGAGACCTCCGCCGGGATCCAGGCGTTCGTCTGGGACGGCACCGCGACCAAGAAGCGGGGCAACACCGAGGTCACCAAGACGCTGAAGGACGGCGACTACCAGCTCCACATCGACGCCCTCAAGGCGAACGGTGACCGGTCGAACCCCGACCACTGGGAGACCTGGACGTCCCCGGTGTTCACCATCGACCGCCACTGA	MRITMRRRPVVGALAAFGLAATTVALPSIATADDPDGPEPLAPVHTAPTSDQDTLVNETPGAWFVELETAPIAQGGKAAAVRSDHAAFRRAARDAGVEYTEREEFTTLFNGFSVDMDSSQLGRLQRTDGVAAIYPMVQVAVPEPQTAAIPDMATALAMTGSDVAQNELGLTGEGIKVAVMDTGIDYEHPDFGGGEFPTERIPYGYDFVGDDYNAGSPDPAARVPQPDGDPMDCQGHGTHVAGIVGADGDVLGVAPGVTFGAYRVFGCEGSTEADIMISAMEKALEDDMDILNMSIGSSFTWPDYPTATASDALVDAGMVVVASIGNSGRTGVYSTGAPGVGEKVIGVASVDNTNNDAALAVAEPSGTEVPYTVLSDVAAPPTSGSTDPMVHVGRGCVDTLGDELLDDPAGMTALVDRGDCTFDEKYSSAVAAGATAVVIANNIPGLFNGGGVVDAGVPGIGISLASGDALKAEIDGGADVTLAWTDQTTSVVSPTGGEKSDFSSYGLSPDLTLKPDLAAPGGNIHSTYPLAKGGYATLSGTSMAAPHVAGAAALLLEADPEIGTTEMRDLLQNTAEPILYAGAYVETVHGQGAGLIDVPAAYAATTSVTPAKISLGESVVDRVDGAPVFEPVTTTLTVANDSDAEVTYTMGHTTALATYGDTFAPTLAILDGTAEFSATEVTVPAGESAEVDVTITSPGFDGFEVIYGGFVEITGDDGSEVTVPYAGFDGDYQDIQAITPIDLGDGQMIDVPWVSRITECAEFVEFDCIDPAGTFSEAGGDTFTLEWVDGLPDYPYVVAHFNHQVEDFEISVIDSKGRTKGAFTVAADLGSLGRSETSAGIQAFVWDGTATKKRGNTEVTKTLKDGDYQLHIDALKANGDRSNPDHWETWTSPVFTIDRH	PGPT0020990_208	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020990-vpr-K14647	NA	NA
AK001_00641	1437	lysA	COG0019	Diaminopimelate decarboxylase	GTGAGCGCCGGCGGCCACCCCACCGCGACGGGGACGACGACGGCGCTGCCGACCGGCGGCGCCGACGCGGCCGGCGTGCCCTGGCCCTCCACGGCGCGGCGTCGCGACGACGGCGAGCTGGAGGTCGGCGGGGTCGGCGTCGGTGATCTCGCGGCCGAGCACGGCACCCCCGCCTACGTGCTGGACGAGGCCGACTTCCGCGCCCGGGCGCGTGCCTACCGCCAGGCCTTCGAGGCGGCGTTCGAGCAGGTCGGTGCCGGCGTCGACGTCTACTACGCGGGCAAGGCGCTGCTGACCGTCGCCGTCGCACGCTGGGCAACCCAGGAGGGTCTGCGCGTGGACACCGCCTCCGGCGGGGAGCTCGCGGTGGCGCTGCGCGCCGGCGTGCCGGGTGCCGCCATCGGCCTGCACGGCAACAACAAGGCGGACGAGGAGATCCTCGCCGCCCTCGACGCCGGGGTCGGACGGATCATCGTCGACTCCCGGGTCGAGATCGACCGCGTGGCCGACCTCGCCGCCGCGCGCGGCGTCGTCGCGCCCGTGATGCTCCGCGTCACGACCGGCGTCCACGCTGGTGGCCACGAGTACATCTCCACCGCCCACGAGGACCAGAAGTTCGGTCTGTCGGTCACGGCGGGGGACGACGGCGGCACCTCCCCGGCGCTCGCGGCGCTGGAGGCGATCGTGGCGCGGCCCGAGCTGGAGCTGCTCGGCATCCATTCGCACATCGGCTCCCAGATCCTCGACCCGTCGGGCTTCGAGGCCGCGGCTCGCGTGGTGCTGCGGCTGCGGGCCGACCTGGCCGAGCGCACCGGCGTCGTCGTCGAGGAGGTCGACCTCGGTGGGGGGTACGGCATCGCCTACCTGCCCACCGACGAGGCGCTCGAGCCCGCCCCGGTGGCGCGCGACGTCGCCGAGGCGGTCGCCGCCGTGTGCAGCGAGCTGTCGATGCCGCTGCCGCGGTTCTCCATCGAGCCGGGCCGGGCGATCGTCGGACCCGCGGGGCTGACCCTCTACACCGTCGGCACCGTCAAGCCCGTCACGGTGTCGGGCGGCTCCGCCGACGACGAGACCTTCACGCGGCTCTACGTGTCGGTCGACGGCGGCATGAGCGACAACATCCGCCCGGCCCTGTACGGCGCCGACTACCACGCGGAGCTCGTCGGCCGGTCCTCGGACGCGGCGAAGGTGCTGGCCCGGGTGGTCGGCAAGCACTGCGAGAGCGGCGACATCGTCGTGCACGAGGTCGTCCTGCCCTCGGACGTGCGCGCCGGGGACCTGCTCGCCGTCGCCGCGACCGGTGCCTACGGCCGGTCCATGGCGTCGAACTACAACGCCCTGACCCGGCCGCCGGTCGTCGCCGCGGCGGACGGGGCCTCGCGGGTGCTGGTGCGCCGCGAGACCGTCGAGGACCTGCTCGCGCTCGACCTCGGCTAG	MSAGGHPTATGTTTALPTGGADAAGVPWPSTARRRDDGELEVGGVGVGDLAAEHGTPAYVLDEADFRARARAYRQAFEAAFEQVGAGVDVYYAGKALLTVAVARWATQEGLRVDTASGGELAVALRAGVPGAAIGLHGNNKADEEILAALDAGVGRIIVDSRVEIDRVADLAAARGVVAPVMLRVTTGVHAGGHEYISTAHEDQKFGLSVTAGDDGGTSPALAALEAIVARPELELLGIHSHIGSQILDPSGFEAAARVVLRLRADLAERTGVVVEEVDLGGGYGIAYLPTDEALEPAPVARDVAEAVAAVCSELSMPLPRFSIEPGRAIVGPAGLTLYTVGTVKPVTVSGGSADDETFTRLYVSVDGGMSDNIRPALYGADYHAELVGRSSDAAKVLARVVGKHCESGDIVVHEVVLPSDVRAGDLLAVAATGAYGRSMASNYNALTRPPVVAAADGASRVLVRRETVEDLLALDLG				NA	NA	NA	NA	NA
AK001_00642	1668	argS	COG0018	Arginine--tRNA ligase	GTGACACCCGACGAGCTCTCCGAAGCACTCAGCGCTGCCCTCGCCTCGGCCGTGGCCGACGGCACCCTCGCCCTCGACGCCGACGCCCTGCCGTCGTCCGTCCACGTCGAGCGACCGAAGCAGCGCGAGCACGGGGACTGGGCGACCAACGTGGCGCTCCAGCTCGCCAAGAAGGCCGGCACGACGCCGCGGGCGCTCGCGGAGGACCTGGCCGGGCGCCTGGGCTCCACGCCGGGGATCAAGGCCGTGGACGTCGCCGGACCCGGCTTCCTCAACATCACCCTGGAGGCCGGCGCCGCGGGCGAGCTCGCCCGGACGATCGTCGAGGCGGGTGCCGAGTACGGCCGGTCCGACGCGCTGGACGGGCAGGTCATCGACCTCGAGTACATCTCCGCCAACCCGACCGGCCCGCTGCACATCGGCCACACCCGCTGGGCGGCCCTGGGTGACTCCCTGGTCCGGATCCTGCGCGCCGCCGGCGCCGACGTCACGGCCGAGTACTACATCAACGACGCCGGCGCGCAGATGGACCGCTTCGGCGCCTCCGTGCTCGCCCAGATCCACGGCACCGAGGTGCCCGAGGGCGGCTACCGCGGCGAGTACGTCGCCGAGCTCGGCCGCCAGGTGCTGGCCGCGAACCCGCAGATCGTCGACCTGCCCGAGGACGAGGCGGTCGCGCTCGCCCGCGACGAGGCCTACCGGCTCCAGCTCGCGGAGATCCGCGACGTGCTGGACTCCTTCGGCGTGCACTTCGACGTCTGGTTCTCCGAGCGCACGCTCCACGACTCCGGCGCGGTGACGACGGCGGTCGAGCGCCTGCGCGAGCAGGGCCACGTCTACGACGACGGCGGAGCGGTCTGGCTGCGCACGACCGACTTCACCGACGACAAGGACCGCGTGCTGATCCGCGCGAACGGCGAGCCGACCTACTTCGCCGCCGACGCCGCGTACTACCTGTCCAAGAAGGACCGCGGGTTCCCGGGCAAGATCTACCTGCTGGGCGCGGACCACCACGGGTACATCAACCGGCTCAAGGCCATCTCGGCCGCCGCCGGGGACGACCCCGCCGCGAACATCGAGATCCTCATCGGCCAGCTCGTCTCCGTCCAGGGCGCCAAGCTCTCCAAGCGGGCCGGCAACATCATCGAGCTGCGCGACCTCGTGGAGTGGATCGGCGCCGACGCGGTGCGGTACTCCCTGTCGCGGTACCCGGCGGACACCCCGCTGGAGCTCGCCGGCGAGGAGATGATCAAGCAGTCCAACGACAACCCGGTCTTCTACGTCCAGTACGCGCACTCGCGCACCTGTGCGGTGGACCGCAACGCGGCCGACCGGGCGGTGCGTCGGGTGCTCGACGACGGCGCCGACGGGTTCGACCCGGCACTGCTCGACCACCCGACCGAGGCCGTGCTCATCGGTCGCCTGACCGAGTTCCCGCGGATCGTCGCCCAGGCGGCCGAGCTGCGCGAGCCGCACCGCATCGCCCGCTACCTCGAGGGGCTCGCCGCCGACTACCACAAGTGGTACGCCGAGTGCCGGGTGCTGCCGTACCCCGACGAGGACGTGCAGGACGTGCATCGCACGCGCCTGTGGCTGAACGACGCCGTCCGCCAGGTCCTGGCCAACGGTCTCGACCTGCTGGGCGTCAGCGCACCGGAGCGGATGTGA	MTPDELSEALSAALASAVADGTLALDADALPSSVHVERPKQREHGDWATNVALQLAKKAGTTPRALAEDLAGRLGSTPGIKAVDVAGPGFLNITLEAGAAGELARTIVEAGAEYGRSDALDGQVIDLEYISANPTGPLHIGHTRWAALGDSLVRILRAAGADVTAEYYINDAGAQMDRFGASVLAQIHGTEVPEGGYRGEYVAELGRQVLAANPQIVDLPEDEAVALARDEAYRLQLAEIRDVLDSFGVHFDVWFSERTLHDSGAVTTAVERLREQGHVYDDGGAVWLRTTDFTDDKDRVLIRANGEPTYFAADAAYYLSKKDRGFPGKIYLLGADHHGYINRLKAISAAAGDDPAANIEILIGQLVSVQGAKLSKRAGNIIELRDLVEWIGADAVRYSLSRYPADTPLELAGEEMIKQSNDNPVFYVQYAHSRTCAVDRNAADRAVRRVLDDGADGFDPALLDHPTEAVLIGRLTEFPRIVAQAAELREPHRIARYLEGLAADYHKWYAECRVLPYPDEDVQDVHRTRLWLNDAVRQVLANGLDLLGVSAPERM				NA	NA	NA	NA	NA
AK001_00644	567			hypothetical protein	ATGCGGAGCGCGGACCGACCCGTGTCGCTCGGTCTCCTGCTCGGTGCGGCCGCCGCGGTCGTCGGCGCGGCGGTCTACGTCACGGCGATCGGGTACCTCGACCTGCGGGCCTCGAGCATCGGTACCGGAGCCCGGCTCGGTGGGGACATGGTCCCCACGATCGTGCCGCCGCGAGCGCCGGTGTGGGAGGGGCTCGCCATCGCCGCCGTGACGGCCCTGGCCGTCTGGCCGCTCTGGCGGTGCCGGCGCACGGCGTCGTCCCGATGGCACCAGCTGCCCGTGTGGACCGCTCTCGTGACGGTGATCGCCCTGACGGCCTGGGCCGCGGTGACCACCGAGCTCCCGTACAGCGCCATGTCCGTCCTGGCCGGCCGACCCTCCGCCTGGGACGGCGGGGTGACCGACCAGCTCGCCGTGGCCTGGACGCGCCAGGGCGCGCTCAGCCCCGCGACGCCGGTCTTCGTCGGTGTCCTCGTCGTGCTCGCGCTCGCGCGCCCGGGGGCCTGCCGAGCAGCGGATCCCGCGACGACGGAGGTCGCGATCGAGGACGATCGGCCGACCCGCTGA	MRSADRPVSLGLLLGAAAAVVGAAVYVTAIGYLDLRASSIGTGARLGGDMVPTIVPPRAPVWEGLAIAAVTALAVWPLWRCRRTASSRWHQLPVWTALVTVIALTAWAAVTTELPYSAMSVLAGRPSAWDGGVTDQLAVAWTRQGALSPATPVFVGVLVVLALARPGACRAADPATTEVAIEDDRPTR				NA	NA	NA	NA	NA
AK001_00645	1311			hypothetical protein	ATGAGCAGTCACGACACCTTCATGCAGACCGTGAACGCCGATCGCCGCTGGGTGGCACCGGCCGTGCTGGCCGCCGTGCTCGGACTGTTCCTGCTGAACTCACCGCTCTCGCGGCCGATCGCCGTGATGTCCTCCTCGCAGGACGGCGTCGTCGGGGCGACAACAGGCAGGACCTCGCTCCTGGTCGGCACAAGCTGGCTCGATACCAGCGGCATGATCAACCTCGTCTCCGTGGCCACCGGGTTGAGCTGCGTGACTGCCGTCGTGCTGGCCCGCCGTCGTCCGTTCACCGCGACGGCACTGGCGGCCTGGCCGTTCGTCACGATCCCGCTGCTGGGCCAGTTCGTCTGGGGCTGGTGGCTCGCGCTGCTGATGATCACCTGCCTGGTCGTGCAGGACTCCTGGCGCCGCGCCGCCGTCCCGCTCGTGGCGACCCTGGCGACCGCGTGGTGGTACGTGGTCAGCGACGTCCCGGCCATGCTGCCGATCGGCCCGGTGACCGCGGGCAGCGCCGACGCCCGGGAGGTCGTGGAAGCAGGTGTGCTCTACACCGTTGCGGTCGCCGTCGTCGTCGGCGCAGCAGCGGCGATCCGCCTCGTCCGCGAGTCCTGGCGCCGCAGCGACCGAGCGGCCGCCGTCGAACAGCACGCGCTCGAGGTGGAGTCCGTCGCGACCGAGCGGGCACGGCTGGCCCGCGACCTGCACGACGTCGTCGCCCACCACGTCTCCCTGGTGGCGGTCCGCGCCGAGTCCGCCTCGTACATCCACCCCGACCTGGACGCGAACGCCCGGCGGGTCCTGGCCGAGATCGCCGACGACGCCCGGTCCGCACTGAGTGAGCTGCGCCAGGTGCTGGGCGTGCTGCAGCGCACCGAGGGAGCTGGTCGGGCGCCTCAGCCGGCCGCGTGCGACGTCGCGGACCTGGTCGACGAGGCACGGGCCGCCGGCCAGGACGTCACGCTGACCGGAAACTGCGACGACGTGCCGGACGCGCCGGGGTACGTCCTCTACCGGGCGGTGCAGGAGGCCCTGACCAACGCCCGTCGACACGCCCCCGGCTCCCCCACCACCGTCGAGCTGACCCACGCGGCACAGGTCGCCGGGCTGCGCGTGACCAACCCCGTCGACCGTGCTGACGGCGTCGTCGTGCCCGGGCGCGGCCTGACCGGCATGCGTGAGCGTGTCGAAGCACTCGGCGGAACGCTCACCGCGGGTGCGGAGGCCTCCGCGTTCGTGCTCGTCGTGACGCTGCCCACCGACCCCGACCACGGGCCGACGGCGTCGCTCCCCCAGCGCGAGGAGGTCGCGTGA	MSSHDTFMQTVNADRRWVAPAVLAAVLGLFLLNSPLSRPIAVMSSSQDGVVGATTGRTSLLVGTSWLDTSGMINLVSVATGLSCVTAVVLARRRPFTATALAAWPFVTIPLLGQFVWGWWLALLMITCLVVQDSWRRAAVPLVATLATAWWYVVSDVPAMLPIGPVTAGSADAREVVEAGVLYTVAVAVVVGAAAAIRLVRESWRRSDRAAAVEQHALEVESVATERARLARDLHDVVAHHVSLVAVRAESASYIHPDLDANARRVLAEIADDARSALSELRQVLGVLQRTEGAGRAPQPAACDVADLVDEARAAGQDVTLTGNCDDVPDAPGYVLYRAVQEALTNARRHAPGSPTTVELTHAAQVAGLRVTNPVDRADGVVVPGRGLTGMRERVEALGGTLTAGAEASAFVLVVTLPTDPDHGPTASLPQREEVA				NA	NA	NA	NA	NA
AK001_00646	642	lnrK_1	COG2197	Transcriptional regulatory protein LnrK	GTGACGCGCGTCGTCGTCGCCGACGACCAGCCCGTCGTCCTGCACGGATTCGCCTCGATCCTGGACTCCGCCGACGACCTGGACGTGGTCGGCACCGCCCGAGACGGGGCCGAGCTGCTGACCGCCGTCGCCCGCGACGCACCGGACGTCGCCGTCGTCGACATCCGCATGCCGGTCCTCGACGGCATCGCCGCGACCGCCCGCCTCGCCGCGGAGCACCCTGCGACCCGCGTGCTCATCCTGACCACGTTCGACCTGGACGAGTACGTCTACGACGCCCTGCGGGCCGGGGCCAGCGGATTCCTGCTCAAGGACGTCACCGGCGATCGCCTCATCGAGGGCGTCCGGCTCGTCGCCGACGGCTCCATGCTCCTCGGCCCCCGGGTGACGCGCCGGCTCGTCGACGACTTCGCCGTCCGCGCTGGGACGCGGGACACCACCGGGCTCGACACCCTCACCGCACGCGAGACCGAGGTGCTCCTCGAGGTGGCCCGCGGCCGATCCAACACCGAGATCGCCACCGAGCTGTACATCGGCGACGAGACCGTGAAGTCCCACGTCTCGGAGCTCCTGCGCAAGCTCGCCTGCCGGGACCGCGTCCAGCTCGTCATCACCGCCGACGAGGCCGGGCTGGTGCGGTGA	MTRVVVADDQPVVLHGFASILDSADDLDVVGTARDGAELLTAVARDAPDVAVVDIRMPVLDGIAATARLAAEHPATRVLILTTFDLDEYVYDALRAGASGFLLKDVTGDRLIEGVRLVADGSMLLGPRVTRRLVDDFAVRAGTRDTTGLDTLTARETEVLLEVARGRSNTEIATELYIGDETVKSHVSELLRKLACRDRVQLVITADEAGLVR	PGPT0012750_183	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0012750-degU-K07692	NA	NA
AK001_00647	1518	prpD2	COG2079	2-methylcitrate dehydratase 2	ATGCTCGACCACACCGTCCGCACCTATCGCGCCGACGAGCCGCTGGCCCGCACCGACCAGCTCGCCTGGAAGATCGCCGACGTCGCGGCGGAGCAGCTCGAGCCGCTCCCGGAGGTCACCGACATGGTGATCAACCGGATCATCGACAACGCCGCGGTGGCCACGGCGTCCCTGGGCCGCGCGCCGATCCTGGCCGCCCGCGCCCAGGCCGAGGCGCACCCGGTCTCGCGCGGCGGCTCCGGGTCGACCGTCTTCGCCTCGCACCACCGCACCAGCCCCGAGTGGGCGGCCTGGGCCAACGGCGTGGCCGTGCGCGAGCTGGACTACCACGACACGTTCCTCGCCGCGGAGTACTCCCACCCGGGCGACAACATCCCCCCGATCCTCGCCGTCGCCCAGCACCTGGGCCGGGACGGCGCCGACCTGCTGCGCGGCATCGTCACCGGGTACGAGATCCAGGTGAACCTGGTCAAGGGCATCTGCCTGCACGAGCACAAGATCGACCACGTCGCGCACCTGGGACCGAGCGCCGCGGCGGGGATCGGCACGCTGCTGGGGCTGCCGAACGAGACCATCTACCAGGCCGTCGGCCAGGCCCTGCACACGACGACGGCGACGCGACAGTCCCGCAAGGGCGAGATCTCCACCTGGAAGGCCCACGCACCCGCCTTCGCCGGCAAGATGGCGATCGAGGCGGTCGACCGGGCCATGCGCGGCCAGACGTCCCCGAGCCCGATCTACGAGGGCACGGACGGGTTCATCGCCTGGATGCTCTCGGGCCCCGAGGCGCGCTACACCGTGCCGCTGCCCACCCGGGGCGAGGACCGCCGCGCCATCCTGGACACCTACACCAAGGAGCACTCCGCCGAGTACCAGGCCCAGGCGTGGATCGACCTGGCACGCCGGCTGGGCACCGAGCGTCCCGAGCTGCGCGAGGCCAAGTCGGTGCGCTCCATCGTGCTGCACACGTCGCACCACACCCACTACGTCATCGGCTCGGGGTCCGGCGACCCGCAGAAGTACGACCCGACGGCGAGCCGCGAGACGCTCGACCACTCGATCCCGTACATCTTCACCGTCGCCCTCCAGGACGGCGCGTGGGACCACGCCGCCAGCTACGCCCCGGAGCGCGCCGGCCGACCGGACACCGTCGAGCTGTGGCGCAAGGTCACCACGGCCGAGGACCCGGAGTGGACGCGCCGCTACCACTCGGCCGACCCGGACGAGAAGTCGTTCGGCGGCCGGGTGGAGATCGAGCTGGCCGACGGCGAGACGATCGTCGACGAGATCGCCGTCGCGGACGCCCACCCCTACGGAGCACGGCCCTTCGGCCGCGAGCAGTACGTGGCGAAGTTCCGCACCCTGGCCGACGGCGTGCTGGCGCCCGAGGAGATCGACCGCTTCCTCGACGTCGCCCAGCGGCTGCCGAAGCTGAGCGCGGAGGAGCTCGCCGGGCTGACCGTCACCCCGGCGTCCGACCCGATGGCCGGCGCCGACCTGCGGGGCGGGATCTTCTGA	MLDHTVRTYRADEPLARTDQLAWKIADVAAEQLEPLPEVTDMVINRIIDNAAVATASLGRAPILAARAQAEAHPVSRGGSGSTVFASHHRTSPEWAAWANGVAVRELDYHDTFLAAEYSHPGDNIPPILAVAQHLGRDGADLLRGIVTGYEIQVNLVKGICLHEHKIDHVAHLGPSAAAGIGTLLGLPNETIYQAVGQALHTTTATRQSRKGEISTWKAHAPAFAGKMAIEAVDRAMRGQTSPSPIYEGTDGFIAWMLSGPEARYTVPLPTRGEDRRAILDTYTKEHSAEYQAQAWIDLARRLGTERPELREAKSVRSIVLHTSHHTHYVIGSGSGDPQKYDPTASRETLDHSIPYIFTVALQDGAWDHAASYAPERAGRPDTVELWRKVTTAEDPEWTRRYHSADPDEKSFGGRVEIELADGETIVDEIAVADAHPYGARPFGREQYVAKFRTLADGVLAPEEIDRFLDVAQRLPKLSAEELAGLTVTPASDPMAGADLRGGIF				NA	NA	NA	NA	NA
AK001_00648	909	prpB	COG2513	2-methylisocitrate lyase	ATGCTGTACTCGGACCTCACCCCTGCCGCCAAGCGCGCCGCGTTCCGCGAGCGCCTGACCTCCGGTGAGCTGCTGCAGCTCCCGGGGGCGTTCAACCCGCTCTCGGCCCGGCTGATCGAGCGCCACGGGTTCGACGGCGTCTACGTCTCGGGTGCCGTCGTCGCGGCCGACCTGGGCCTGCCCGACGTCGGTCTGACGACGCTGAGCGAGGTCGCCGGCCGGGCGAGCCAGATCGCCCGCATGACCGACCTGCCGACGCTGGTGGACGCCGACACCGGGTTCGGCGAGGCCATGAACGTGGCCCGCACGGTCCAGACCATGGAGGACGCCGGCGTCGCCGGGCTCCACATCGAGGACCAGGTCAACCCCAAGCGCTGCGGCCACCTCGACGGCAAGCAGGTGGTCGACGAGGCCACCGCCCTGCAGCGGATCCGCGCGGCCGTCACCGCTCGCCGCGACGAGAACCTGCTGATCATGGCGCGCACCGACATCCGGGCGGGGGCGGGTCTGGACGCCGCGATCGACCGTGCCCGGGCGCTCGTGGAGGCCGGGGCGGACGCCGTCTTCCCGGAGGCGATGCGCGACCTCGACGAGTTCGCCAAGATGACGGACGCGCTCGAGGTGCCGGTCCTGGCGAACATGACCGAGTTCGGCAAGTCCGAGCTGTTCACCGCCGACCAGCTGCGCGACGCCGGGATCGCCCTGGTGATCTACCCCGTCTCGCTGCTGCGCCTGGCCATGGGCGCCGCCGACCGCGGCCTGACGGCGCTGCGGGCCGAGGGGTCGCTCGCCTCGCAGGTCGAGCACATGCAGACCCGGGCCGACCTGTACGACCTGCTCGACTACCCGGCGTACAACACCTTCGACGCTGGGGTGTACGACTTCTCCCTCGAGGGCCACCACCACTGA	MLYSDLTPAAKRAAFRERLTSGELLQLPGAFNPLSARLIERHGFDGVYVSGAVVAADLGLPDVGLTTLSEVAGRASQIARMTDLPTLVDADTGFGEAMNVARTVQTMEDAGVAGLHIEDQVNPKRCGHLDGKQVVDEATALQRIRAAVTARRDENLLIMARTDIRAGAGLDAAIDRARALVEAGADAVFPEAMRDLDEFAKMTDALEVPVLANMTEFGKSELFTADQLRDAGIALVIYPVSLLRLAMGAADRGLTALRAEGSLASQVEHMQTRADLYDLLDYPAYNTFDAGVYDFSLEGHHH	PGPT0001555_339	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417	NA	NA
AK001_00649	1149	gltA_2		2-methylcitrate synthase	ATGACCGAGTCCCGCCGCACCGACGAACCAGAGATCCACAAGGGGCTCGCCGGTGTGTACGCCGACACCACGGCCGTGTCCAAGGTCGACCCGGCGTCGAACTCCCTGCTGTACCGGGGCTACCCCGTGCAGGACCTGGCCGACACCCAGCCCTTCGAGGCGGTGGCCCACCTGCTGTGGCACGGCGAGCTGCCCACGGACGCCGAGCTGGAGACGTTGCGGGCGAGCGAGCGTGCGCACCGCGACCTCGGCGACGACGTGCGCACGGCGATCGACCTGCTGCCCACCGACGCCCACCCCATGGACGACGTGCGCACGGCGCTGAGCGTCATCGGCGCGCGGGAGACCGCCGGGGTCGACCTGCTCGCGCTGGCCGACGCGGGGACGACGGCGGAGCACGCCGTGCGGCTGTTCGCCGAGCTGCCCGCGGTGGTCGCCTACACCCAGCGGCGCCGCCACGGCCAGGAACCCGTCGCCCCACGCGACGACCTGGACCACGCGGCGAACACGCTGTGGATGACGTTCGGCACCGAGCCGGACGAGACCGTCGTGGACGCCTTCAACCGCTCGATGATCCTGTACGCCGAGCACTCGTTCAACGCCTCGACGTTCACCGCCCGGGTGGTGGCCTCCACCCTCAGCGACGTGCACTCGGCCGTCGTCGCCGCCGTCGGCGCCCTCAAGGGGCCGCTGCACGGCGGGGCGAACGAGGCGGTCATGCACGCCTTCACCGAGATCGGCTCGGCCGACCGGGCCGAGGCGTGGCTGGACGAGGCGCTGGCGGCCAAGCGCAAGGTCATGGGCTTCGGCCACCGGGTCTACAAGCACGGCGACTCCCGGGTGCCGACGATGAAGGCCGCCCTGGACGACCTGGTCGAGCACTTCGACCGCCAGGACCTCGGCGACCTGTACGCGGCGCTGGAGTCGGCGTTCGTCGAGCGCAAGGGGATCTACCCGAACCTCGACTACCCGGCCGGGCCCGCCTACCACCTCATGGGGTTCGACACCGAGACGTTCACCCCGCTGTTCGTCGCGGCCCGCGTCACCGGCTGGACGGCGCACATCGCCGAGCAGCAGGCGGCCAACTCGCTGATCCGCCCGCTGTCGTCGTACGTGGGACACGAGCGCCGAGACGTCCCGCGCACCTGA	MTESRRTDEPEIHKGLAGVYADTTAVSKVDPASNSLLYRGYPVQDLADTQPFEAVAHLLWHGELPTDAELETLRASERAHRDLGDDVRTAIDLLPTDAHPMDDVRTALSVIGARETAGVDLLALADAGTTAEHAVRLFAELPAVVAYTQRRRHGQEPVAPRDDLDHAANTLWMTFGTEPDETVVDAFNRSMILYAEHSFNASTFTARVVASTLSDVHSAVVAAVGALKGPLHGGANEAVMHAFTEIGSADRAEAWLDEALAAKRKVMGFGHRVYKHGDSRVPTMKAALDDLVEHFDRQDLGDLYAALESAFVERKGIYPNLDYPAGPAYHLMGFDTETFTPLFVAARVTGWTAHIAEQQAANSLIRPLSSYVGHERRDVPRT	PGPT0001480_843	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659	NA	NA
AK001_00650	627			hypothetical protein	ATGTCCACGGACTACTCAGACTTCGAGTTCGAGCGCCGGTTCCTCGTGCGCGACCTGCCCGACGTGCTGCGCGACGCCCCGTCGCTGATCGTCCAGTCCTACTTCCTGTCCGACGGCGGCTACGCGCTGCGCGTGCGTGCCCAGGCCGGGGGAGTGGACGCCGCCCTTGACGGGCGCAGCGACGCGCGCGACGTCCTCGACGTCTGGCGCGACCGGGTCGACTTCGCGGCGATGACGGTCAAGGGCCCCTCGGCCGGCGGCACCCGGTACGAGGCCGAGCGGCAGCTCGACCCGCTCGTCGCCGTCGAGCTCGTCCGTCGGGGCGGTGCGCGGGTCGTCAAGACCCGTTACGCCGCCTGGCTCGGCGCCGACGGCTGGTCGATCGACGTCTTCGGCGGGGCGAACCATCCCCTGGTCGTCGCCGAGTGCGAGCGGTCGGGGCCGGTCACGGAGCTGCAGATCCCGGACTTCTGCGTCACCGAGATCACCGACGACCGGCGGTTCTCCAACGAGTCGCTGGCCGTGCGGCCCTACGGCGAGTGGGCGGCCTCCTACGCCGAGGAGCTCGCGGCCCACGGCCCCTCGTTCCGCGACGACTTCGGGCCCAACCAGGAGCTGCCCTCCTGA	MSTDYSDFEFERRFLVRDLPDVLRDAPSLIVQSYFLSDGGYALRVRAQAGGVDAALDGRSDARDVLDVWRDRVDFAAMTVKGPSAGGTRYEAERQLDPLVAVELVRRGGARVVKTRYAAWLGADGWSIDVFGGANHPLVVAECERSGPVTELQIPDFCVTEITDDRRFSNESLAVRPYGEWAASYAEELAAHGPSFRDDFGPNQELPS	PGPT0021560_7116	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768	NA	NA
AK001_00651	849			hypothetical protein	GTGGACACGACGTCGCAGGGCGACGCACCCGCTCCGCGCTCCCGCCGTGAGCTCCGCGAGGCCGAGCAGGGCCGCGCCGCACGGTCGTCACGGCGCCGGTCCTCCGGAGGACGGTCCCGGGCCCGTGGCGCGCACGCCGCACCGGCCGGTCACACCTGGGTGACGCGGGCCACCGTGCTGGGCTCCCTCGCCGCCGTGACGATCGCCGGCCCCCTGACCGCCGGCGCCCAGGGCGACGAGCGGTCGCCGTTCGACCAGGAGACGCAGCCGTCCGGCCCGTCCACGCTGTCGCTGCTGCAGTCCGGCACCACGGCGCCCCCGACCGCCTCCGCCATCGCGGCCGTGCCGCGCGAGCGCAACATGGACGTCGCCAGCCGTGCGACCGCCGACCGTGAGCCGCTGCCGGACTGCGACCCGAACGCCCCCGTCGAGGGGAGCAACGGTCGGCTCGCCGACCACTCGCTCTGCGACCTGTGGCAGGGCGGCGAGCAGCTGCGGCCGGACGCCGCCGTCTCGCTGAGCGCGCTCAACGAGGCGTTCACGGCGCGCTTCGGCCGGAACCTGTGCCTCGTCGACAGCTACCGCTCGCTCTCCTCGCAGTACGCCGTCAAGGCCAGCCGCGGTTACCTCGCCGCGACGCCGGGCACGTCGATGCACGGCTGGGGCCTGGCCATCGACCTCTGCTCGAAGGAGACGGGGAGCTCCGAGGTCTACGGCTGGCTCTGGGACAACGCCCCGATGTACGGCTGGGAGAACCCGCCGTGGGCGCAGCGCGGCGGTTCCGGCAAGTACGAGCCGTGGCACTTCGAGTTCCGCCCCGGGGTCGAGGAAGTCTCCACCTGGCACTGA	MDTTSQGDAPAPRSRRELREAEQGRAARSSRRRSSGGRSRARGAHAAPAGHTWVTRATVLGSLAAVTIAGPLTAGAQGDERSPFDQETQPSGPSTLSLLQSGTTAPPTASAIAAVPRERNMDVASRATADREPLPDCDPNAPVEGSNGRLADHSLCDLWQGGEQLRPDAAVSLSALNEAFTARFGRNLCLVDSYRSLSSQYAVKASRGYLAATPGTSMHGWGLAIDLCSKETGSSEVYGWLWDNAPMYGWENPPWAQRGGSGKYEPWHFEFRPGVEEVSTWH	PGPT0024055_556	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_00652	1062		COG1253	putative protein	ATGAGCACCGGGACCGCCCTGCTGATCGGCCTGCTGCTGCTCGTGGGCAACGCCTTCTTCGTCGGCGCGGAGTTCGCCGTGCTGTCCGTGCGGCGCTCGACCATCGAGCCGCGCGCACAGGCGGGGGAGAAGCGCGCCAAGGTCGTCCTGTGGGCGATGGAGAACGTCTCGCTCATGCTGGCGTGCGCCCAGCTCGGCATCACCGTGTGCTCGACCGGTCTGGGCATCATCGCCGAGCCGGCGCTCGCGCACCTGCTCGAGGGCCCCTTCGAGCGGATGGGGATCCCGGAGCAGCTGGTCCACCCGGTGGCGCTGGTCATCGCGCTCGGCATCGTGGTCTACCTGCACGTCGTGCTCGGCGAGATGGTGCCGAAGAACCTGGCCGTCACCGGTCCGGAGCGGGCCGCGCTGTGGTTCGCGCCGCCGCTCGTCTTCATCGCGCGCGTGGTCCGGCCGATCATCGTGGCGCTGAACTGGGTCGCCAACCACGTCATCCGGATGCTCGGGGTCGAGCCGAAGGACGAGGTCGCCTCGGCCTTCACGGTCGAGGAGGTGCAGTCGATCGTCGAGGCCTCCCGCGCCGAGGGGGTGCTGGAGGACGACCAGGGGCTGCTCACCGGCGCGATCGAGTTCTCCTCGCGCACCGCCCGCGACGTCATGGTCCCCGTCGACGCGCTCGTGACGGTGTCGCCCGGCGCGACACCCGACGACGTCGAGCACGAGGTCTCGCGCACCGGCTACAGCCGGTTCCCGATGGTCGAGCCCGAGTCCGAGGAGGACGACGGCGGGGCGGCACGGCTGCTCGGCTACCTGCACCTCAAGGACGTCCTCTACGCCACCAACGGCAACCGGTCGCGGCCGGTGCCGATGTGGCGGGTCCGGGCCATGGCGACGGTCGACCCGACCGACGAGGTCGAGGACACCCTGCGGGCGATGCAGCGTTCCGGCGCGCACCTCGCCCGGGTCGACGACGCGGGCCGCACGGTCGGCGTCGTCTTCCTCGAGGACATCCTCGAGGAGCTGGTCGGCGAGGTCCGTGACGCGATGCAGCGCCGTCGGTGA	MSTGTALLIGLLLLVGNAFFVGAEFAVLSVRRSTIEPRAQAGEKRAKVVLWAMENVSLMLACAQLGITVCSTGLGIIAEPALAHLLEGPFERMGIPEQLVHPVALVIALGIVVYLHVVLGEMVPKNLAVTGPERAALWFAPPLVFIARVVRPIIVALNWVANHVIRMLGVEPKDEVASAFTVEEVQSIVEASRAEGVLEDDQGLLTGAIEFSSRTARDVMVPVDALVTVSPGATPDDVEHEVSRTGYSRFPMVEPESEEDDGGAARLLGYLHLKDVLYATNGNRSRPVPMWRVRAMATVDPTDEVEDTLRAMQRSGAHLARVDDAGRTVGVVFLEDILEELVGEVRDAMQRRR				NA	NA	NA	NA	NA
AK001_00653	1341			hypothetical protein	GTGCTGACCGACGTGCTCATGCTCGGTGTCGGTGTGCTGCTCACGGCCGGTACCGCGATCTTCGTGGCGAGCGAGTTCTCCCTCGTGACCCTGGACCCCGCGGTCGTGGGGGCCGACGACGAGGAGGGCGACAGTCCCTCGCCCGGCCGGACAGGTCCCGATCGTCGGGACCGTATCGTCCGAGCCGGGCTCAAGCACCTGTCCACGGAGCTCAGCTCCGCGCAGGTCGGGATCACCGCCACCACCATCCTGCTCGGCTACACGGCCCAGCCCGCGCTGCTGTCGCTGTTCGGCGCCTCGTTCGCGGCGACGCCGCTGGGCGAGGGCGCCTCCGCCGTGCTCGCCGTCGTGCTCGCGCTCGTCGTGGTCAACGGATTCTCGATGCTCTTCGGCGAGCTGATCCCCAAGAACTTCGCCCTGTCGGCGCCGCACGGCACCGCCCGGGCGGTCGTGCCGCTGCAGCGGGCCTTCACCATCGCGGCGGGCCCGCTCATCCGCGTCCTCAACGGGTCGGCGAACGCCATCCTGCGGCGGATGGGCGTCGAGCCGCGCGAGGAGCTCTCCGGCGCGCGCTCGGCCACCGAGCTGATCTCGCTCGTGCGGCGCTCGGCCCAGGAAGGGACGCTGGAGAAGGGCACCGCGACCCTGCTGGCCAACTCCCTGGAGCTGGACGAGCTGGCCGCACGCGACGTGATGACCGACCGCACCCGCATGGTCGTGGTCAACCGGGACACGAGCGCGACCGAGGTCGTCGGGCTCGCGCACCGCACCGGCCACTCGCGGTTCCCGGTGATCGGCGACGACCGCGACGACGTCGTCGGCCTCGTGCACCTGCGTCGGGCGGTCTCGGTGCCGTTCGACCGGCGCGACGACGTGCCCGCGGGGGCGCTGATGGTCGACGCACCGCGCGTGCCCGAGACCGTCAGCCTCGGCCCGCTGCTCGTCGAGCTGCGCGGGCTCGGGCTGCAGATGGCCGTGGTGGTCGACGAGTACGGCGGCACCTCCGGTGTCGTGACCCTGGAGGACGTCGTCGAGGAGCTCGTCGGCGACGTCACCGACGAGCACGACCGCCGTCGCGGCGGCGTGGCGCGGCTCGCGGACGGCGCCTGGTCCGTCCCCGGCGTCCTGCGGCCCGACGAGCTGGAGGAGTCGACCGGGCTGCGCGTGCCGGAGTCGCCGTCCTACGAGACCCTCGGCGGGCTCGTCATGGAACGGCTGGGCCGGTTGCCGCAGGTCGGTGACGAGGTCGCCTGCGAGGACGTCGTCCTGCGCGTCGACCTGGTCGACGGACGCCGCGTCGAACGGCTGCGCGTGCGATCCGGGCTGGAGGTGACCGCATGA	MLTDVLMLGVGVLLTAGTAIFVASEFSLVTLDPAVVGADDEEGDSPSPGRTGPDRRDRIVRAGLKHLSTELSSAQVGITATTILLGYTAQPALLSLFGASFAATPLGEGASAVLAVVLALVVVNGFSMLFGELIPKNFALSAPHGTARAVVPLQRAFTIAAGPLIRVLNGSANAILRRMGVEPREELSGARSATELISLVRRSAQEGTLEKGTATLLANSLELDELAARDVMTDRTRMVVVNRDTSATEVVGLAHRTGHSRFPVIGDDRDDVVGLVHLRRAVSVPFDRRDDVPAGALMVDAPRVPETVSLGPLLVELRGLGLQMAVVVDEYGGTSGVVTLEDVVEELVGDVTDEHDRRRGGVARLADGAWSVPGVLRPDELEESTGLRVPESPSYETLGGLVMERLGRLPQVGDEVACEDVVLRVDLVDGRRVERLRVRSGLEVTA				NA	NA	NA	NA	NA
AK001_00654	729	phoP	COG0745	Alkaline phosphatase synthesis transcriptional regulatory protein PhoP	ATGACCACCACTGCGAGCGGCCCCGGGCAGGGGCAGCAGAACGCCACGGTGCTCGTCGTCGAGGACGAGCCGGCCATCGCGACGGCCATCGCGCAGCGCCTCTCCGCCGAGGGCTGGCGCGTCGAGGTCGCCCGCGACGGCCTCGCGGGTGTCGACGCCGCCGCCCGGCTCCACCCGGACGCCGTGGTGCTCGACGTCATGCTGCCCGGGATCGACGGGCTGGAGGTCTGCCGGCGGATCCAGGCGGACCACCCGACCCCGATCCTCATGCTCACCGCGCGCGACGACGAGACGGACATGATCATCGGCCTCGGCGTGGGCGCCGACGACTACATGACCAAGCCGTTCTCGATGCGGGAGCTGGTCGCCCGCGTCAAGGCGCTGCTGCGTCGGGTGGAGCGTGCCGCGCAGGCCGCGGCGTCGGCCCCTGCCGAGCCCCCGCTGGTCGCCGGCGACGTGACGATCGACCGCGCCCAGCGGCGGGTCCACCGCGAGGGCGAGGAGGTGCACCTGACGCCGACGGAGTTCGAGCTGCTGGTGATGCTCGCCAGCGCGCCCAAGACGGTCCAGACCCGCGAGAAGCTGCTCGCCGAGGTCTGGGACTGGGCCGACGCCAGCGGGACGCGCACCGTGGACTCGCACATCAAGGCCCTGCGCCGCAAGCTCGGGCCGGAGCTGATCCGCACGGTGCACGGCGTCGGCTACGCGTTCGAACCGCCGGCGGGCTGA	MTTTASGPGQGQQNATVLVVEDEPAIATAIAQRLSAEGWRVEVARDGLAGVDAAARLHPDAVVLDVMLPGIDGLEVCRRIQADHPTPILMLTARDDETDMIIGLGVGADDYMTKPFSMRELVARVKALLRRVERAAQAAASAPAEPPLVAGDVTIDRAQRRVHREGEEVHLTPTEFELLVMLASAPKTVQTREKLLAEVWDWADASGTRTVDSHIKALRRKLGPELIRTVHGVGYAFEPPAG	PGPT0002665_1224	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658	NA	NA
AK001_00655	1095	sasA_1		Adaptive-response sensory-kinase SasA	GTGCCCGCCGCGCGCGACGACGACGGCGGCCGACGGCGGGAGCACCGGCTCCCGGACGTCCGCCCCCTCGACCCGATCCACTCGCTCAAGGCCAAGCTGGGTCTGCTGGTGGTCGCCAGCGTGACCGTCGGGGTGCTCATCACCTGGGTGGGCCTGCGCAACGAGTTCGGGCCCAGCCGGACCTTCCCGCTGGCGATCATCGTCTCGCTGGTGCTCACCCAGCTCCTCGCCCGCGGCATGACGTCCCCGCTGCGGCAGATGACGGCGGCGGCCCAGGCGATGGCGGACGGCGACTACTCCATCCGGGTGCGCTCCACGAGCCGTGACGAGGTCGGCCAGCTCGCCGAGGCCTTCAACACGATGGCGGGCGACCTGGAGTCGTCCGACCGGATCCGCCGCGACCTCATCGCCAACGTCTCCCACGAGCTGCGCACCCCGGTGGCCGCGCTGCAGGCCCAGCTCGAGAACCTCGTCGACGGTGTCTCCGAGCCCACCCCGGCGACCCTCGAGCTGTCGCTGGAGCAGACGGAACGCCTCACCCGGCTGGTCACCTACCTGCTCGACCTGTCACGGGTGGAGGCGGGCGCGTCGGCGCTGACGCTGACGCAGTTCTCCGTGGGCGACTTCCTCGAGGAGTGCGCCGAGTCGATGTCGATGGTCGACGCCGCCAAGGGGCTGCACTACGTCGTCGACGTCACTCCCGACGACCTCGGCCTGGAGGCCGACGTCGAACGGCTGCGCCAGGTGGTGACCAACCTGCTGCAGAACGCGATCCGGCACTCGCCGCACGGCGGCACGGTCCGGCTGGACGCCTACCCGGACCGCGACGACGTCGTGATCGAGGTGAGCGACGAGGGGCCGGGGATCGCCCCGGAGGACCGTGAGCGCGTGTTCGAGCGGTTCGCCAGCGGCGCCCCGAGCGTGCGGTCGCTGGCCAGCACGAGCGGCGGGACGGGGATCGGGCTGGCGATCGTGCGGTGGGCGGTGGACCTGCACGGCGGCCACGTCGAGGTCGCCGACACCGAGGTCGGTGCCACGATGCGGGTCGCGCTGCCCGCGGAGGCTCGCCCCGCTCCCGGGGTCACCACCGAGTAA	MPAARDDDGGRRREHRLPDVRPLDPIHSLKAKLGLLVVASVTVGVLITWVGLRNEFGPSRTFPLAIIVSLVLTQLLARGMTSPLRQMTAAAQAMADGDYSIRVRSTSRDEVGQLAEAFNTMAGDLESSDRIRRDLIANVSHELRTPVAALQAQLENLVDGVSEPTPATLELSLEQTERLTRLVTYLLDLSRVEAGASALTLTQFSVGDFLEECAESMSMVDAAKGLHYVVDVTPDDLGLEADVERLRQVVTNLLQNAIRHSPHGGTVRLDAYPDRDDVVIEVSDEGPGIAPEDRERVFERFASGAPSVRSLASTSGGTGIGLAIVRWAVDLHGGHVEVADTEVGATMRVALPAEARPAPGVTTE	PGPT0003985_9	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-ENVELOPE_STRESS_RESPONSE,PGPT0003985-baeS-K07642	NA	NA
AK001_00656	3870	kgd	COG0508	Multifunctional 2-oxoglutarate metabolism enzyme	GTGGTGTCCCCCAAGGCAGGGTCAGAGTCGATCAGCGCCGAGAGCGCGTCGTTCGGGGCCAACGAGTGGCTCGTCGACGAGCTCTACGAGCAGTACCTGAAGGACAAGAACGCGGTCGACCCCGCGTGGTGGGACTTCTTCGAGGACTACACCCCGGGCGAGAGCAGCGAGGCGTCGGCGAACGGTACGCCGGCCCCGTCCGGCGGGTCGGCGTCGTCGGCGACCACCGCTCCCGCGAAGACCGACACCGGGGCGAGCACCGTCGCCGCCTCGGGCGACGACACCGCGGGCGAGGGCTCCGAGCCCGCCCCGGGCACGTCCTCGGCCGCCTCCGGGACGGCCGCGGCCGAGGCCTCCCAGCAGTCCACCCCCGCGCTCGTGCCGGCCGACCCGGAGATCTCCGCGGCCGACGCACCGGTGGCCGAGGCGCTGCCGGCCACGGCCCCGTACGCCGAGATCGCGCGCACCGAGCCCGAGTCCGACGAGGACGAGGCCACGGACGACGTCCGGAAGCTGCGCGGTCCCGCCGCGCGCGTCGTGACGAACATGGAGGCCTCGCTCGAGGTGCCGACGGCGACGTCGGTGCGTGCGGTGCCCGCCAAGCTGATGGTCGACAACCGGATCGTCATCAACAACCACCTCAAGCGCGGCCGCGGCGGCAAGATCTCCTTCACCCACCTCATCGGGTTCGCCCTCGTCGAGGCGCTGGCGGACATGCCGGTGATGAACGCGCACTACGAGCAGACCGACGGCAAGCCGCACGTCGTCCAGCCCGCGCACGTCGGGTTCGGCCTCGCCATCGACCTCGCCAAGCCGGACGGCTCGCGCCAGCTGCTCGTGCCGAGCATCAAGAAGGCCGAGGAGCTCGACTTCGCGGGCTTCTGGGCGGCCTACGAGGACCTGGTGCGCAAGGCGCGCGGCAGCAAGCTCGGCATGGACGACTTCGCCGGCACCACGATCTCGCTGACCAACCCCGGCGGCATCGGCACCGTCCACTCCGTGCCGCGCCTCATGCAGGGGCAGGGCACGATCATCGGCGTCGGCGCGATGGACTACCCGGCCGAGTTCGCCGGCGCGTCCGAGGAGCAGCTCGCCCGGATGGGCGTCTCGAAGGTCATGACGGTCACGTCGACCTACGACCACCGCATCATCCAGGGCGCCCAGTCGGGCGAGTTCCTCAAGATCCTGGCCGGCAAGCTGCTCGGTCTCGACGGCTTCTACGACCGCGTGTTCGCCGCCCTGCGGATCCCGTACGAGCCCGTGCGCTGGGTCCGGGACAACACCGTCGACTCGGACGTCGAGGCGGCCAAGCCGGCCAAGATCGCCGAGCTCATCCACTCCTACCGCTCGCGCGGTCACCTCATGGCGGACACCGACCCGCTCGCCTACCGCCAGCGCAAGCACCCGGACCTGGACATCCAGAACCACGGCCTGACGCTGTGGGACCTGGACCGCACGTTCCCGACCGGCGGGTTCGGCGGCACCCCGAAGGCCACGCTGCGCGACACCCTCGGCCTGCTGCGCGACTCCTACTGCCGCTCGATCGGCATCGAGTACATGCACCTGTCCGACCCGACCCAGCGCAAGTGGCTGCAGGACCGGCTCGAGCACGGGTACGCCCGCACCCCCCGCGAGGACCAGCTGCGCATCCTGCGCCGGCTGAACTCCGCCGAGGCCTTCGAGACCTTCCTGCAGACCAAGTACGTCGGCCAGAAGCGCTTCTCCCTGGAGGGCGGCGAGGCCGTCATCCCGCTGCTGGACGCGATCCTGTCCAAGGCCGCCGAGAGCGGGCTGGACGAGGTCGGCGTCGGCATGGCCCACCGCGGCCGGCTCAACGTGCTGGCCAACATCGCCGGCAAGAGCTACGGCCAGATCTTCAAGGAGTTCGAGGGCCAGCTCGACCCGAAGTCCGTGCAGGGCTCCGGTGACGTCAAGTACCACCTCGGCACCGAGGGCACGTTCACCGCCGAGACCGGCGCGACGACGAAGGTCTACCTGGCGGCCAACCCCTCCCACCTGGAGGCCGTGGACCCGGTGCTCGAGGGCATCGTGCGCGCCAAGCAGGACCGGATCGACCTCGGCGGCGACGGCTTCTCCGTGCTGCCTCTGCTCATCCACGGCGACGCCGCCTTCGCCGGCCAGGGCGTCGTGCCGGAGGTGCTCAACCTCGCCCAGCTGCGCGGGTACCGCACCGGCGGCACGATCCACGTGGTCATCAACAACCAGGTCGGCTTCACCACGGGCCCGTCCTCGTCCCGCTCGACGACGTACTCGACCGACGTGGCCAAGGGCTACCAGGTCCCGGTCTTCCACGTGAACGGTGACGACCCCGAGGCCTGCGTGCGCGTGGCCGAGCTCGCCTTCGCCTACCGCGAGCAGTTCGACCGCGACGTCATCATCGACATGGTCTGCTACCGCCGGCGCGGCCACAACGAGGGCGACGACCCCTCGATGACGCAGCCGCTGATGTACAACCTCATCGAGGCCAAGCAGTCGGTGCGCAAGCTGTACACGAAGAACCTCGTGGCCCGCGGCGACATCACCGTCGAGGAGGCCGAGCAGGCGCTCAAGGACTACCAGGCCCAGCTCGAGCGCGTCTTCACCGAGACCAAGGGCATGTCCTCGGACCGCCCCTCGGGCACCGAGGAGATCGCCGGGCTGGAGCGTCCGGAGTCCCAGCGCGAGGACGCCGGCACGATGGTCGGCTGGCAGACCGCCGTCTCGCACTCCGTGCTGGAGCGCGTGGGCGACGTCCACGTCCAGCCGCCGGAGGGCTTCACCGTCCACCCGAAGCTCGGCAAGCTCCTGGACAAGCGCCAGATCATGGCCAAGGAGGGCGACATCGACTGGGGCTTCGGCGAGCTCGTGGCCTTCGGGTCGCTGCTCATCGAGGGCACGCCGGTCCGCCTGGCCGGTCAGGACTCCCGCCGCGGGACGTTCACCCAGCGGCACGCCGTGCTGCACGACCGGCACACGGGCGCCGAGTGGACCCCGCTGCTCTACCTCTCCGGCGACCAGGCGAAGTTCTGGGTCTACGACTCCTCGCTCAGCGAGTACGCCGCGCTCGGCTTCGAGTACGGCTACTCCGTCGAGCGCCCCGACGCCCTGGTGCTGTGGGAGGCGCAGTTCGGCGACTTCGTCAACGGCGCCCAGACCGTGATCGACGAGTTCATCTCGTCGGCGGAGCAGAAGTGGGGCCAGAACTCCTCGGTCGTCATGCTGCTCCCGCACGGCTACGAGGGGCAGGGGCCCGACCACTCCTCGGCCCGCCTGGAGCGCTTCCTCCAGCTCGCCGCCGAGAACAACATGACCGTGGCGCAGCCCTCCACCCCCGCGTCGTACGCGCACCTGCTGCGCCGGCAGGCCTACGACCGCCCGCGCCGGCCGTTGGTGGTCATGACGCCGAAGCAGCTGCTGCGCCTCAAGGCCGCGGCCTCGAGCGTCGAGGACTTCACGACCGGCACCTTCGAGCCCGTGCTCGAGGACACCGAGGTGGCCCGCGGGAACCTCGACCCGGCCGGCGTGCGCCGACTCGTGCTCTGCACGGGCCGCGTCTACTACGACCTCGTCGCCGAGCGCAGCAAGCGCGGTGACACCGCCACGGCCATCGTGCGCATGGAGCAGCTCTACCCGTTCCCGGAGGAGCAGCTGCGGGCCGAGTTCGCGAAGTACCCGGACGCCGAGGTCGTCTGGGTCCAGGACGAGCCGCAGAACCAGGGCGCGTGGTCCTACCTGCACCTGGCGATGCCCGAGGACCTGCCCCGCGTGCAGGTCGTCTCCCGGCCGGCGTCGGCGTCCACGGCCGCCGGCACGGCCAAGCGTCACCGCGAGGAGCAGGAGATCCTGCTGGACCAGGTGTTCAGCCGCTGA	MVSPKAGSESISAESASFGANEWLVDELYEQYLKDKNAVDPAWWDFFEDYTPGESSEASANGTPAPSGGSASSATTAPAKTDTGASTVAASGDDTAGEGSEPAPGTSSAASGTAAAEASQQSTPALVPADPEISAADAPVAEALPATAPYAEIARTEPESDEDEATDDVRKLRGPAARVVTNMEASLEVPTATSVRAVPAKLMVDNRIVINNHLKRGRGGKISFTHLIGFALVEALADMPVMNAHYEQTDGKPHVVQPAHVGFGLAIDLAKPDGSRQLLVPSIKKAEELDFAGFWAAYEDLVRKARGSKLGMDDFAGTTISLTNPGGIGTVHSVPRLMQGQGTIIGVGAMDYPAEFAGASEEQLARMGVSKVMTVTSTYDHRIIQGAQSGEFLKILAGKLLGLDGFYDRVFAALRIPYEPVRWVRDNTVDSDVEAAKPAKIAELIHSYRSRGHLMADTDPLAYRQRKHPDLDIQNHGLTLWDLDRTFPTGGFGGTPKATLRDTLGLLRDSYCRSIGIEYMHLSDPTQRKWLQDRLEHGYARTPREDQLRILRRLNSAEAFETFLQTKYVGQKRFSLEGGEAVIPLLDAILSKAAESGLDEVGVGMAHRGRLNVLANIAGKSYGQIFKEFEGQLDPKSVQGSGDVKYHLGTEGTFTAETGATTKVYLAANPSHLEAVDPVLEGIVRAKQDRIDLGGDGFSVLPLLIHGDAAFAGQGVVPEVLNLAQLRGYRTGGTIHVVINNQVGFTTGPSSSRSTTYSTDVAKGYQVPVFHVNGDDPEACVRVAELAFAYREQFDRDVIIDMVCYRRRGHNEGDDPSMTQPLMYNLIEAKQSVRKLYTKNLVARGDITVEEAEQALKDYQAQLERVFTETKGMSSDRPSGTEEIAGLERPESQREDAGTMVGWQTAVSHSVLERVGDVHVQPPEGFTVHPKLGKLLDKRQIMAKEGDIDWGFGELVAFGSLLIEGTPVRLAGQDSRRGTFTQRHAVLHDRHTGAEWTPLLYLSGDQAKFWVYDSSLSEYAALGFEYGYSVERPDALVLWEAQFGDFVNGAQTVIDEFISSAEQKWGQNSSVVMLLPHGYEGQGPDHSSARLERFLQLAAENNMTVAQPSTPASYAHLLRRQAYDRPRRPLVVMTPKQLLRLKAAASSVEDFTTGTFEPVLEDTEVARGNLDPAGVRRLVLCTGRVYYDLVAERSKRGDTATAIVRMEQLYPFPEEQLRAEFAKYPDAEVVWVQDEPQNQGAWSYLHLAMPEDLPRVQVVSRPASASTAAGTAKRHREEQEILLDQVFSR				NA	NA	NA	NA	NA
AK001_00657	993	iolS_1	COG0667	Aldo-keto reductase IolS	ATGCAGAAGCGGGTACTCGGCCGGACCGGTCGGATGGTCTCGGTCGTCGGCCTGGGCACCTGGCAGCTCGGCGCGGACTGGGGCGAGGTGAGCGACGCTGACGCGCGCGCCGTGCTCGAGGCGTCGCTCGAGGCCGGGGTGACCTTCTACGACACCGCGGACGTCTACGGCGACGGCCGCAGCGAGCAGACGGTCGGCGCGTTCCTCGCCGACCACCGCGACGAGGGCCTCACCGTGGCGACGAAGATGGGGCGCCGCGCGGACCAGGTCCCGGAGAACTACGTCCTGGAGAACTTCCGGTCCTGGACCGACCGGTCGCGCGCCAACCTCGGCGTGGACACCCTCGACCTGGTCCAGCTGCACTGCCCGCCGACGCCGGTGTACTCCCGCGACGAGGTCTACGACGCCCTGGACACGCTCGTGGACGAGGGCGCCATGGCCTCCTACGGCGTCTCCGTGGAGACCGTCGACGAGGCCCTGACGGCCATCGCCCGTCCCGGGGTCGCGACGGTGCAGATCATCCTCAACGCCTTCCGGCACAAGCCGCTGGAGAAGGTCCTGCCGGCGGCGTCCGAGGCCGGGGTCGGCATCATCGCCCGGGTCCCGCTGGCGTCCGGCCTGCTGTCGGGCCGGTACACGAAGGACACCACCTTCGCCGAGAACGACCACCGCACGTTCAACCGTGGCGGCGAGGCCTTCGACGTGGGCGAGACGTTCTCGGGCGTCCCGTTCGACGTCGGCGTCGAGGCGGCAGCGTCCTTCACCGAGCTCGCCGAGGGGCTCGAGCAGGACCTCACGCCCGCCCAGGCCGCGATCGCGTGGATCTGGCAGAGCCCGGGCGTCTCGACCGTGATCCCCGGTGCGCGCACCCCGGAGCAGGCCCGGCTCAACGCCGCGGCCGGCGAGGCCGGCAGCCTGGGACCGCTGTTCGCCTCCCGCGTGCGCGACCTCTACGACTCCTCGATCCGCGAGCACGTGCACGACAGGTGGTGA	MQKRVLGRTGRMVSVVGLGTWQLGADWGEVSDADARAVLEASLEAGVTFYDTADVYGDGRSEQTVGAFLADHRDEGLTVATKMGRRADQVPENYVLENFRSWTDRSRANLGVDTLDLVQLHCPPTPVYSRDEVYDALDTLVDEGAMASYGVSVETVDEALTAIARPGVATVQIILNAFRHKPLEKVLPAASEAGVGIIARVPLASGLLSGRYTKDTTFAENDHRTFNRGGEAFDVGETFSGVPFDVGVEAAASFTELAEGLEQDLTPAQAAIAWIWQSPGVSTVIPGARTPEQARLNAAAGEAGSLGPLFASRVRDLYDSSIREHVHDRW				NA	NA	NA	NA	NA
AK001_00658	939	yihR	COG2017	putative protein YihR	GTGACCGTGAACACGAGCCCGAGCACCGAGACGGCACCCACGCCGTCCGGCACCCAGTACCACCTGTCCGCCGGCACCCACCGCGCCACGATCGCCGAGGTCGGAGCCATGGTGCGCGAGTACACCGTCGACGGCCTCGACGTCTTCGTGCCGTTCGCCGAGCACGAGCCCGCACCGGTCTTCAACGCCGCCGTGCTGGTCCCGTGGCCCAACCGTCTGCGCGACGGCCGGTACACCGCCGACGGCGAGACGTACCAGCTCCCGCTGAGCGAGCCCGACCGCGGCACGGCCCTGCACGGGCTCGGCTGCTGGTACCGCTGGTCGGCCGTCGAGGTCGCCGACGACGCGGTCACGCTGGAGCTGGCGCTGCCCGCGCAGAAGGGCTGGCCGTTCCAGCTCACCACCCGCGTGCGCTACTCCCTGGACGCCGAGCGCGGCCTCGAGATCCGGGTGACCACCCGCAACGTCGGCACCGGCACGGCACCCTACGGCGTCGGGTTCCACCCCTGGCTCTCCTCCGGCGGCGCCGACCTCGACGCGTGCACCGTGCGCCTGGACGCCACCGAGCACGTCACCGTCGACGACCGGCTGCTGCCCACCGGCGTCGAACCGGTCACGGGCGACCACGACCTGCGCGCGACGCGCTCGCTGGCCGGGCTCGACCTGGACGACGCCTGGGTCTCGGCCACGCGGGACGACGACGGACTGTCGTGGTGCCGGCTGGGGCGCCCGGACGGGCGGACCGCCGCCGTCTGGATGGACGACTCGATGGACTGCTGGCAGGTCTGCTCGGCGAACCACATCGCCGGCCACGAGCGCTTCGGCCTGGCCGCCGAGCCCATGAGCTGCTACGCCGACGCCTTCAACTCCGGCGACCGGCTCGTCCGGCTGGCTCCGGGCGACTCCCACGAGGTCCGCTGGGGTGCCAGCCTGCTGTGA	MTVNTSPSTETAPTPSGTQYHLSAGTHRATIAEVGAMVREYTVDGLDVFVPFAEHEPAPVFNAAVLVPWPNRLRDGRYTADGETYQLPLSEPDRGTALHGLGCWYRWSAVEVADDAVTLELALPAQKGWPFQLTTRVRYSLDAERGLEIRVTTRNVGTGTAPYGVGFHPWLSSGGADLDACTVRLDATEHVTVDDRLLPTGVEPVTGDHDLRATRSLAGLDLDDAWVSATRDDDGLSWCRLGRPDGRTAAVWMDDSMDCWQVCSANHIAGHERFGLAAEPMSCYADAFNSGDRLVRLAPGDSHEVRWGASLL	PGPT0017825_3786	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785	NA	NA
AK001_00659	591			hypothetical protein	GTGCGCATCTGCGTGGTGGGCGACGAGCTCAGCGTGGGCGTCGGCGACGGCCGCGCCCTGGGCTGGACCGGACGCGTGCTGGCGCGGACCCGGTTCGACCGGCCGGCGATGACCTTCACCCTGGCGGTGCCGGGCGAGACGACGTCGACCCTCGGCGCGCGCTGGGAGGCCGAGACCGAGCCGCGGTTCGGCCCGGAGCAGACCCACGACAACCGTCTCGTGGTCGCCCTGGGCCGCCACGACGTCGACTCCGGCCTGTCGGTCGCCCGGTCGCGGCTCAACCTGGCGAACATCCTCGACGTCGCCGACAACCGGCGCCTGTCGACGTTCGTCGTCGGGCCCCCGCCGGGGCGGCCGGAGGACGGCGGCCGGATCGCCGAGCTCTCCGCGGCCTTCCAGGACGTCGCGAGCCGTCGACGCGTGCCCTACGTGGACACCTACACCCCGCTCGCCCAGCACGAGCAGTGGCTGGCCGACCTCGCCACCACGGGGTCGACCTACCCCGGGCAGGCGGGCTACGGGCTCATGGCCTGGCTGGTGCTGCACACCGGCTGGCACGCCTGGCTCGGCCTGCCGCACGAGACGGAGTGA	MRICVVGDELSVGVGDGRALGWTGRVLARTRFDRPAMTFTLAVPGETTSTLGARWEAETEPRFGPEQTHDNRLVVALGRHDVDSGLSVARSRLNLANILDVADNRRLSTFVVGPPPGRPEDGGRIAELSAAFQDVASRRRVPYVDTYTPLAQHEQWLADLATTGSTYPGQAGYGLMAWLVLHTGWHAWLGLPHETE	PGPT0001840_2344	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804	NA	NA
AK001_00660	801			hypothetical protein	ATGAGCACCGAGTCCTGGGCGATCGCCGCCCCGCAGACCGTCGAGGTCACGGGTGTGGGTGCGTTGACGATCCGGCTCCAGGACGGCCGGGCGGACGTCACGGTCGACCCGGAGACCACCCAGGTCACGCTCGAGGTGCTCGAGGTCGGGGAGAAGCCGCTGCACGTCGACCGCGACGGCGACCGGCTGCGCATCGGCTACGAGCGGAACGCGGTCGAGGCGTTCGTGGCCCGCGTGCGGTCGCTCGGCAGCTCCGAGCGGGCCGTCGTGCACGTCACCGTCCCGCCGCAGGTCCGGGTCGACGTCGGCACGACCGAGGCGGACGTCGAGGTCACCGGCACGTCCGGGACGGTGGTCAAGACGGTCACCGGCACCGTGCGCACGGCCGGCACGCACGGGTCGCTGTACCTGCGGTCCGTCTCCGGCGACGTGGCCTCCTCGGGGCACACCGGCGACGTCTCGGCGCAGGTCGTCTCCGGCGCCCTCGCCCTGGAGGGCACCCTCGGCCGGGTCACCACGAGCAGCGTGTCCGGTGCCGTGGCGGTCACCGCCGTCGGCACCGTGCCGATGGTGTCGGCCAAGTCCGTCTCGGGCGACGTCGCCCTCCGGCTCGACGCCGGCACCCCGGTCAGCCTCAAGGTCCGCGGCGCGGCGGGGCAGGCGGTGCTCGACGGGGAGGCGCTGCCCTCGACCACGCGGACGTTGTCCGTCGACCACGGCGAGACCCCGACGGACGGCCGGAGCATCGCCTACGTGACGGCCACCGTCACCAGCGCGCGGGTCATCGTCTCGCGCGGCTGA	MSTESWAIAAPQTVEVTGVGALTIRLQDGRADVTVDPETTQVTLEVLEVGEKPLHVDRDGDRLRIGYERNAVEAFVARVRSLGSSERAVVHVTVPPQVRVDVGTTEADVEVTGTSGTVVKTVTGTVRTAGTHGSLYLRSVSGDVASSGHTGDVSAQVVSGALALEGTLGRVTTSSVSGAVAVTAVGTVPMVSAKSVSGDVALRLDAGTPVSLKVRGAAGQAVLDGEALPSTTRTLSVDHGETPTDGRSIAYVTATVTSARVIVSRG				NA	NA	NA	NA	NA
AK001_00661	282	rsrA		Anti-sigma factor RsrA	ATGAGCGCGGACGTGACCCCCATCCCGCACGAGCCCGCCGAGGGCGAGAGCGACTGCGAGCACGCGCTGGGGCACCTGTACGAGTACCTCGACTCGGAGATGACCGAGGACGACGAGCACCGCATGCGTGCGCACGTCGCGCACTGCTCGCCCTGCCTGGCCGAGCTGAGCGTCGAGGAGCTCGTCAAGAAGCTCGTCAAGCGGTCCTGCGCGGAGCAGGCACCCGCGACGCTGCGCCTGCGCATCCGTGAGCAGATCACGGTGATGCGCGTCTCGGGCTGA	MSADVTPIPHEPAEGESDCEHALGHLYEYLDSEMTEDDEHRMRAHVAHCSPCLAELSVEELVKKLVKRSCAEQAPATLRLRIREQITVMRVSG				NA	NA	NA	NA	NA
AK001_00662	669	sigR	COG1595	ECF RNA polymerase sigma factor SigR	ATGACCCAGGATGACGACGCGGCGACCACCACCCCTCAGCCGACCGACGACGAGGTCGGCGAGGACACCGAGCGCGCTCCGGACGAGGAGTCGGCGGCGGACCGTGCCGCGCGCTTCGAGCGCGACGCGATGGAGTACATCGACCAGCTGTACTCCGCGGCGCTGCGCATGACGCGCAACCCGGCCGACGCCGAGGACCTCGTGCAGGAGACGTTCGCCAAGGCGTTCGCCGCCTTCCACCAGTACAAGCCCGGCACCAACCTCAAGGCCTGGCTGTACCGGATCCTGACGAACACCTTCATCAACAACTACCGCAAGAAGCAGCGGCAGCCGCAGCAGGCGCAGACCGACGACATCGAGGACTGGCAGATCGCCCGGGCGGCGACCCACACCTCGCAGGGGCTCCGCTCGGCCGAGGCCGAGGCGCTCGACCGGCTCCCGGACTCCGACGTGAAGCGGGCGCTGCAGGAGCTGCCCGAGGACCGCCGGATGGTCGTGTACTACGCCGACGTCGAGGGGTTCCCCTACAAGGAGATCGCGGAGATCATGGGTACACCGATCGGGACCGTGATGTCCCGGCTGCACCGTGGACGACGGCAGCTGCGCGAGCTGTTGGCGGACTACGCCGCGGACCGAGGACTCGCCGGAGCGCGCGGAGGAGAATCATGA	MTQDDDAATTTPQPTDDEVGEDTERAPDEESAADRAARFERDAMEYIDQLYSAALRMTRNPADAEDLVQETFAKAFAAFHQYKPGTNLKAWLYRILTNTFINNYRKKQRQPQQAQTDDIEDWQIARAATHTSQGLRSAEAEALDRLPDSDVKRALQELPEDRRMVVYYADVEGFPYKEIAEIMGTPIGTVMSRLHRGRRQLRELLADYAADRGLAGARGGES	PGPT0014960_2654	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_00663	966	cdhR_2	COG4977	HTH-type transcriptional regulator CdhR	ATGATCGAGAAGGTGGCCGCCGTCGTCGTCCCCGGCGTCGCGCCGTTCGAGATGGGCATCGCCTACGAGGTGTTCGGCATCGACCGCCGCGACACCGGCGGGCCGACGTTCGACTTCACGCTGTGCACCCCCGAGCCCGGACCCGTGCCGACCAAGGGCGGGTTCTCGGTCCACGTCGACGCCGGGCTCGAGGCGACCGAGGACGCCGACGTCGTCGTCGTGGTCGCCTACGACGTCCTCACCGACGCCGAGCACATCGACGTCCCGCCCGCCTACCTCGACGCGATCCGGGCCGCGCACGAGCGGGGCGCCTGGATCGTCTCGCTGTGCTCCGGCGCGTTCGTGCTCGCCGCGGCCGGTCTGCTCGACGGGCGGCGCTGCACCACCCACTGGATGTTCGCCGACCGCCTCGCCGCGGCGGCGCCCCGGGCCGACGTCGATCCCGACGTGCTCTACGTCGCCGACGGTCGGGTGCTCACCAGCGCCGGCACGGCCGCCGGCATCGACGCGTGCCTGCACCTGGTACGCACCGAGCTCGGGGGAGAGGCCGCCCGTGCGGTCGCCCGCCGCATGGTCGTCCCGCCGCAGCGCGACGGCGGGCAGGCGCAGTACGTCGTCGACCCCGTCCCGCAGCAGGGCGACTCGCTGGCCGACCTGCTCGCCTGGATGCGCGGACACCTCGAGCTCGACCACAGCGTGCCGGCGCTGGCGCGGCGCGCGATGCTCTCCGAACGGACCTTCGCCCGCCGCTTCCGCGCCGAGACGGGTACGACGCCGGGTGCCTGGCTGACGCGGCAGCGCGTCGCCCGCGCGCAGGAGCTCCTGGAGCAGCCCGGCGTCCCGGTCGAGGAGGTCGCCCGGCTCGTCGGGTTCGGCAGCGCCGCCGTCCTGCGGCACCACTTCGCGCGCCTGCTCGGGACCAGCCCGACGTCCTACCGACGGCGGTTCGCGGACGTCGCGTCCTGA	MIEKVAAVVVPGVAPFEMGIAYEVFGIDRRDTGGPTFDFTLCTPEPGPVPTKGGFSVHVDAGLEATEDADVVVVVAYDVLTDAEHIDVPPAYLDAIRAAHERGAWIVSLCSGAFVLAAAGLLDGRRCTTHWMFADRLAAAAPRADVDPDVLYVADGRVLTSAGTAAGIDACLHLVRTELGGEAARAVARRMVVPPQRDGGQAQYVVDPVPQQGDSLADLLAWMRGHLELDHSVPALARRAMLSERTFARRFRAETGTTPGAWLTRQRVARAQELLEQPGVPVEEVARLVGFGSAAVLRHHFARLLGTSPTSYRRRFADVAS	PGPT0014658_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
AK001_00664	801			hypothetical protein	ATGGCGAGCTACGTTCTGCTCTCCACTGCTGTGGCCGCGGTGGTCCGGGGGATCGCCGGCGCCGCGGCGCCTTCGGTCGGTGGACAGGTCCTCACGGTGCTGATCTGGGTCGGGCTGCCGCTGCTGCTGGCCGGCGTCCCCGGAGTCGCGCTGATCGTCGCGCTCGTGTGGCACCGTCCGCGATGGGCTCGTCTGACGGCGTTCGCCGTGGCGGGTGTCGCGTTCGGGCTGCTCGTCCGGGGGCGAGGGCTGAGCGTGTACGCGTTGTTCGACAGTCGGTCGTACCGGCTCGTCGGCTGGCTCGACCTCGGGATCGCGGTCACCGCCGCCGCAGCCTGCGCCGTCACCGGGTGTGCCGTCGTCTGGTGGCGCGTGGCGCGGAACGCCGGAGCCGGCTCGACCAGCGGGGGCGAGCAGGTTCGCGGTGCGACGGGAGCGCTAGAGGAGGGCTCCGGGGCGCCCGGTGCCCGGGCGCCCCGTCGCGCGACCGGTGAGGCGGCGTGGGCCGGGCCGCTGGCCTGGCTCGTGGGCGCCGCCGGCATCGTGATGATCCCCGCCTACCTGGCCTTCGCGGCGATGATCACCGCAGCGCCGCTCTTCGGTGTACCGGGCGATCTCGAGGCTGCCGCCGCCTACTTGTGGCGCGGGGCTGCCGTGGCCGGGGCGGCGACAGTGGTGATCGTCGTGGTGGCCTCGGTCGCGGGCCGTCGGGGGGCCGGCGTGCGTGGGCGGGTGGCCCTGGTCGCCGTCGGTGCGGTCGTCACCTTCGTGCTGGTCGGCGCGGCGGCTTCGTCGGCGTGA	MASYVLLSTAVAAVVRGIAGAAAPSVGGQVLTVLIWVGLPLLLAGVPGVALIVALVWHRPRWARLTAFAVAGVAFGLLVRGRGLSVYALFDSRSYRLVGWLDLGIAVTAAAACAVTGCAVVWWRVARNAGAGSTSGGEQVRGATGALEEGSGAPGARAPRRATGEAAWAGPLAWLVGAAGIVMIPAYLAFAAMITAAPLFGVPGDLEAAAAYLWRGAAVAGAATVVIVVVASVAGRRGAGVRGRVALVAVGAVVTFVLVGAAASSA				NA	NA	NA	NA	NA
AK001_00665	147			hypothetical protein	ATGACGATGATCCTGCTGCTGCTCACCCTGCTGATCGCCGGCGTCTGGATGACGGCGCTCGCACGGACCGTCCGGCGCGACGGGCTCGGGAGCCGCCGTCCGCCCCGGTCCCACCTCGAGTGGTGGGAGGGCGCCGAGCCGCGCTGA	MTMILLLLTLLIAGVWMTALARTVRRDGLGSRRPPRSHLEWWEGAEPR				NA	NA	NA	NA	NA
AK001_00666	384			hypothetical protein	ATGTCTGTCGTGCCCTCGACCCTCCGGCGCGCCGCTGCGCCCGCCGCCCTGCTCGCCGCAGCCGGGGTGCTGTCGGGCTGCGGGGGCGTGGGCCTGGCCCCGGAGGAGCCGTCGGACGTGCGGGGCGTGGTGGCCGACGGCGGCGCGCTCGACGACGACGACGCCCGCGCGGGCCAGCCGGTCCTGGTGCGGGCGTCGGACCCCTACTACGAGGGGATGGCGCTGCTCACCGACGGCACGGAGGTGCTGGACGTCGACGGCTCCGCAGCGGACGTGGCCGTGCTCGTCGCCGGGGCGATGGTCGAGGTGTGGGTCGACGAGGTCTGCCAGGAGTCGGACCCCGTGCAGTGCGGCGTCGAGGTCGTGCAGCTCCTCGAGCCGTAG	MSVVPSTLRRAAAPAALLAAAGVLSGCGGVGLAPEEPSDVRGVVADGGALDDDDARAGQPVLVRASDPYYEGMALLTDGTEVLDVDGSAADVAVLVAGAMVEVWVDEVCQESDPVQCGVEVVQLLEP				NA	NA	NA	NA	NA
AK001_00667	732			hypothetical protein	ATGCTGCTCCGACGTCTCGCCCGCCCCCTGCTGGCCGTCCCGTTCGTCTACGACGGCGTCTCCACCGCCCTGCGACCGGCCGAGCACACCGAGGCCGCCCGCCGCGGCGCCGACACCGTCACGGAGGCGCTCGGCGTCGAACCTCTCGACGACACCCAGGTCTCCCTGCTCGTGCGCGCGCACGGCGGCGCGACGGCGCTGGCCGGCCTGCTGCTCGCCGTCGGGCGCACACCGCGGTCCGCCGCCCTCGCGCTCGCCGCGCTCACCGCGCCGCTGGCCGTGGTCAACCAGCCCTTCACCAGCAAGGGCGACGAGCGCAAGGACAAGACCGCCAAGTTCGTCCGCAACCTCGGGGCCGTCGGTGCCGCGGTCATCGCCGGGATCGACCTCGAGGGACGCCCCGGCGTCTCCTACCGCATCGCCCAGAAGAGGGCCTCCGCCTCGAAGTCGGCCCATCACGCAGTCGAGAGCGCGGAGAAGTCCGGGAAGCATGCCGTCGAGAACCTGGAGCGGTCCGGCAAGCACGCCGTGGCGAACGCCAAGCGGTCCGCCACCTACGCCCGCCGGTCCGCCTCGGCGTCGGCCCGGCACGCGACGCAGCAGGTCGAGCGCGAGCTGCGGTCGACCGCCAAGAACGCGAAGGCGAGCGCCAAGAGCGCCAAGGCCACCGCGAAGAGCGCCCGGGCGTCCGCCGAGAAGGCCGCGGCGAAGGCTGCCGCGAAGGTGTCCTGA	MLLRRLARPLLAVPFVYDGVSTALRPAEHTEAARRGADTVTEALGVEPLDDTQVSLLVRAHGGATALAGLLLAVGRTPRSAALALAALTAPLAVVNQPFTSKGDERKDKTAKFVRNLGAVGAAVIAGIDLEGRPGVSYRIAQKRASASKSAHHAVESAEKSGKHAVENLERSGKHAVANAKRSATYARRSASASARHATQQVERELRSTAKNAKASAKSAKATAKSARASAEKAAAKAAAKVS				NA	NA	NA	NA	NA
AK001_00668	1338	aroA	COG0128	3-phosphoshikimate 1-carboxyvinyltransferase	ATGACGTCTGCGCCTGCCTCGACCGATCTGCCCCTGTGGGACGCCCCCGTCGCCGACGGCCCCCTGGAGGCCACGGTCGAGGTCCCGGGCAGCAAGTCGCTCACCAACCGGGCACTCGTCCTCGCCGCCCTGGCCGACGGCCCCGGCACGCTGCGCGGCGCGCTGCGCTCGCGCGACGCCGACCTCATGATCGCCGCGCTGCGCTCCCTCGGCGCCACCGTCACCGAGGGCGAGGCGCCCAGCACCCTGCACGTGACGCCCGGTCCCGTCACCGGGAGCACGAGCATCGACTGCGGGCTGGCCGGCACCGTCATGCGGTTCCTGCCGCCCGTGGCCGCGCTGGCCGACGGCGACGTCCGGTTCGACGGCGACCCGGAGGCACGGGTGCGCCCGATGCAGCCGGTCCTCGCGGGGCTGCACGGCCTCGGCGTCCGCGTCACGGGTGAGGGCGACGAAGCCGGCGCCACGGTGCCGTCGCACCTGCCCTTCACCGTGCACGGCCGCGGGCACGTCGCCGGGGGGTCGGTGGACATCGACGCCTCGGGCTCCTCGCAGTTCGTCTCCGCGCTGCTGCTGGCCGCCCCCCGGTTCGACCGTCCGCTGACGCTGCGGCACATCGGCACGACGCTGCCGAGCCTGCCGCACATCGAGATGACGGTGGCCGCGCTGCGCGAGGTCGGCGTCGCCGTCGACGACTCCCGCGACGGCATCTGGCAGGTCACCCCCGGCCCGATCGCCGCCCGCGACCTGCGCGTGGAGCCGGACCTGTCCAACGCGGCGCCGTTCCTGGCCGCCGCCCTGGTCGCCGGCGGCACCGTGCGGGTGCCGGGCTGGCCGACGTCGACCACCCAGCCGGGCGCCATGGTCCCCGAGCTGCTGGAGCGGATGGGCGGCACGGCCTCGCTGGACGACGGCGTGCTCTCGGTGCGCGGCACCGGCGAGATCCACGGCATCGACGTCGACCTGCGGGCCGGCGGCGAGCTCGCGCCGACCTTCGCCGTGCTCGCGGCGCTGGCCGACTCCCCCACCCGCCTGCGCGGCATCGCGCACCTGCGCGGCCACGAGACGGACCGGCTGGCGGCGCTCGCCGCCGAGATCACGCGGCTCGGCGGCCGGTGCGAGGAGACCCGCGACGGGCTCGTCATCACCCCGCGCCCGCTGCACGGCGGGGTGTTCCGCACCTACGCCGACCACCGCATGGCCACCTCGGCGGCCCTGCTCGGCCTGCGGGTCCCGGACGTGCAGGTCGAGAACGTGGCCACCACCGCCAAGACCCTGCCCGGCTTCGACGGGATCTGGGCACGGATGCTCGGCCGGGGCACGGAGGACCAGGACTGA	MTSAPASTDLPLWDAPVADGPLEATVEVPGSKSLTNRALVLAALADGPGTLRGALRSRDADLMIAALRSLGATVTEGEAPSTLHVTPGPVTGSTSIDCGLAGTVMRFLPPVAALADGDVRFDGDPEARVRPMQPVLAGLHGLGVRVTGEGDEAGATVPSHLPFTVHGRGHVAGGSVDIDASGSSQFVSALLLAAPRFDRPLTLRHIGTTLPSLPHIEMTVAALREVGVAVDDSRDGIWQVTPGPIAARDLRVEPDLSNAAPFLAAALVAGGTVRVPGWPTSTTQPGAMVPELLERMGGTASLDDGVLSVRGTGEIHGIDVDLRAGGELAPTFAVLAALADSPTRLRGIAHLRGHETDRLAALAAEITRLGGRCEETRDGLVITPRPLHGGVFRTYADHRMATSAALLGLRVPDVQVENVATTAKTLPGFDGIWARMLGRGTEDQD	PGPT0012850_1582	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012850-yddE-K00800	NA	NA
AK001_00669	1056	rsgA		Small ribosomal subunit biogenesis GTPase RsgA	ATGGCCCGCCGGGTCCGCGACGAGCACGAACGGTTCGCGCGTCCCTCCAAGCACGGGTCGCGCCCGCGCTCCAAGCAGCGGCCCGACCACGCCGACGCCGTCCCGGCGCTGGTCACCGGCATCGACCGCGGCCGGTACACCCTCGTGGTCGACGACGGCGGTCCGGACGAGCGCGAGATCCTCGCCATGAAGGCCCGCGAGCTCGGGCGGACCCGCACGGTGGTCGGCGACCGCGTCGACGTCGTCGGTGACACGTCCGGCCACGAGGGCACGCTCGCACGGATCGTGCGGGTCACCGACCGCACCTCGACGCTGCGGCGCACCGCCGACGACACCGACCCCTACGAGCGGATCGTGGTGGCCAACGCCGACCAGCTCGTCGTCGTCACGGCGCTCGCCCAGCCCGAGCCGCGCACCGGCATGATCGACCGCTGCGTCGTGGCCGCCTACGACGCCGGCATGGACGTGCTGCTGTGCCTGACCAAGGCCGACCTCGCCTCCCCCGACGAGCTGCGCGACCTGTACGAGCCGATCGGCGTGGACGTCGTGGTGACACGGCGGGACGACGCGGACTCCGTCGAGACGGTCCGCGAGCGCCTGCTGGGGCGGACGTCGGTGCTCGTCGGGCACTCCGGCGTCGGCAAGTCGACGCTCATCAACGCCCTGGTGCCCGACGCCCTGCGGGCGACCGGCGTCGTCAACGACGTCACCGGACGCGGCCGGCACACCTCGACGTCGGCCGTGGCGCTGCGGCTGCCGAGCGGGCCGGGCTCCTCGGTGGACGACGACGGGCACGACGGCTGGGTCATCGACACCCCCGGCGTGCGCTCCTTCGGGCTGGCCCACGTGGAGCCCGAGCACCTGCTGCGTGCCTTCGAGGACCTGGACGCCGCGGCCGAGGAGTGCCCGCGCGGGTGCACGCACCTCGCCGACGCCCCCGACTGCGCGCTGGACGAGTGGGTCGAGGCCGCCGCGGACGACGACACTCGCGCGGCACGCGCGGCACGGCTGGCGTCGTTCCGTCGGTTGCTGGCCTCGCGGACCGACGGCGCGTAG	MARRVRDEHERFARPSKHGSRPRSKQRPDHADAVPALVTGIDRGRYTLVVDDGGPDEREILAMKARELGRTRTVVGDRVDVVGDTSGHEGTLARIVRVTDRTSTLRRTADDTDPYERIVVANADQLVVVTALAQPEPRTGMIDRCVVAAYDAGMDVLLCLTKADLASPDELRDLYEPIGVDVVVTRRDDADSVETVRERLLGRTSVLVGHSGVGKSTLINALVPDALRATGVVNDVTGRGRHTSTSAVALRLPSGPGSSVDDDGHDGWVIDTPGVRSFGLAHVEPEHLLRAFEDLDAAAEECPRGCTHLADAPDCALDEWVEAAADDDTRAARAARLASFRRLLASRTDGA	PGPT0009020_1865	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949	NA	NA
AK001_00670	819	hisN	COG0483	Histidinol-phosphatase	GTGGCCACCTTTCAGCAGACTCCCAGCCCACAGGGGCACGGGCGCACGTACGAGGACGACCTGCGCCTGGCCCACGTGATCGCCGACCAGGTCGACTCGATGACGATGTCCCGGTTCCGCGCGGTCGACCTCCATGTCGAGACCAAGCCGGACCAGACGCCGGTCTCCGACGCCGACCGCGGCGCGGAGGAGTTCATCCGCGCCCAGCTCGCCCGCGCCCGCACGCGTGACGCCATCGTCGGCGAGGAGTTCGGCGAGGCCGGCAGCGGGTCGCGCCGCTGGATCATCGACCCCATCGACGGCACGAAGAACTTCGTGCGCGGCGTGCCCGTGTGGGCGACGCTCATCGCCCTGGCCGACGGCGACGAGGTCGTCATGGGCCTCGTCTCGGCTCCCGCGCTCGGCCGCCGGTGGTGGGCCGCGAAGGGCTCCGGCGCCTGGACCGGCAAGTCCATCGCCGCCGCCACCCGGATGCACGTCTCGGGGGTCTCCTCCCTGGGCGACGCCTCGTTCGCCTACTCCTCCCTGGCCGGCTGGGAGGAGCGCGACAAGCTCAACGGGTTCCTCGACCTGACCCGCGAGTGCTGGCGCACCCGCGGCTACGGCGACTTCTGGTCGTACATGCTGGTGGCCGAGGGCGCCGCCGACATCGCCGCCGAGCCCGAGCTCGAGCTGTACGACATGGCGGCCCTCGTGCCGATCGTCGTCGAGGCCGGCGGCCGCTTCACCTCGCTCGACGGCGAGGACGGTCCGTGGGGCGGCAACGCCGTGGCCACCAACGGGCTCCTGCACGACAAGGCGATGGTCTACCTCGGCTGA	MATFQQTPSPQGHGRTYEDDLRLAHVIADQVDSMTMSRFRAVDLHVETKPDQTPVSDADRGAEEFIRAQLARARTRDAIVGEEFGEAGSGSRRWIIDPIDGTKNFVRGVPVWATLIALADGDEVVMGLVSAPALGRRWWAAKGSGAWTGKSIAAATRMHVSGVSSLGDASFAYSSLAGWEERDKLNGFLDLTRECWRTRGYGDFWSYMLVAEGAADIAAEPELELYDMAALVPIVVEAGGRFTSLDGEDGPWGGNAVATNGLLHDKAMVYLG	PGPT0012270_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-PUROMYCIN_METABOLISM,PGPT0012270-pur3-K12634	NA	NA
AK001_00671	498			hypothetical protein	ATGCGCATCTACGTGCCCGCCACCCTGGACGAGCTCGACACCGCCGTGGTCGGGCGGGTGACCCGCTGGCCCGTCGGCCCGCGGGGTGCGCACGCCGTGACCGGGGCGCTCGCGGCCGAGCTCGCCGACACCGACGAGGAGGGGCGCGAGTACGCGGCCTTCCTCGCGGCCGCCGACGACTCGCTGTCGCTGATCGCGGCCCGGCCGGGCGCGGCGCCCGTGCGCGTGGTCGTGTCGGCGGACGTCGAGGACGACGTCGTGGCGGACGGTGCGGCGGACGGTGCGACGTCGGCGGTGCAGGTGCTGCGGGACGTCCCGGACGTGCCTCTGGCCGCCGTGCACGTCGACGAACCGGCCGCCGCCGAGGACGTCCGTGCGGTCCTGGCGGCCGTCGACGCCGACGACGACGAGGCGCTCGCGGACGCCGTCCAGCGTGTCACCGACCGGGACCTGCTCTGGTACGACCCGAGCGAGGTCCACCAGATCTCGCGCCCCTGA	MRIYVPATLDELDTAVVGRVTRWPVGPRGAHAVTGALAAELADTDEEGREYAAFLAAADDSLSLIAARPGAAPVRVVVSADVEDDVVADGAADGATSAVQVLRDVPDVPLAAVHVDEPAAAEDVRAVLAAVDADDDEALADAVQRVTDRDLLWYDPSEVHQISRP				NA	NA	NA	NA	NA
AK001_00672	1281			hypothetical protein	ATGGCCGCACCCGTCACCGTGCTGTGCGCCGTCGACGGCCCGGAGGAGCCCGACGTCGTCGTCGCGCTCGGCGCCCCGGGGTCGGGTGCCACCGTGACCCGGCGGTGCGGTGACGTGGCCGAGCTGCTCGCCGCCGCGGCCGCCGGGGCGGGCACCGTCGCCGTCGTGACGGCCGACCTCGTCGGGCTCGACCGGGAGGCGGTCGGACGGCTGCACGCCGCCGGGACCCGGGTCGTGGCCCTGACCCACGCCGGCGGCGCGGAGCGGGCGGAGGCGCTGGGCGTCGACGCCGTGCTCACCGGGCCGGGCGACCCCGGGTTCCTCGACGCCGTGCGGGACACCGCCCCGATCGACGACCCGCTGGCCACCGGCGAGCTCGACCTCGCCACCCTCGAGCGCGACGGCGCGACCCCGGGACGTCGTGGCGAGGTGGTCGCGGTGTGGGGGCCGGTCGGGGCGCCGGGACGGTCCACCACCGCGGTGGAGCTCGCGGCCGAGCTCGCCGGGATCGGTGCCGCGCCGCGGCGTCGGGGTCGCCGTCGGGCTACCTCCGGGCGTCCGCCGGGGGAGACCACGCTCCTCGTCGACGCCGACACCTACGGCTCGTGCCTCGCGGCCCGGCTCGGCCTGCTCGACGACGCCCCGGGGCTGGCGGCCGCGGCCCGCGCGGCCTCCCAGGGCAGCCTGGACCTCGCCACGCTCGCCCGGCACTCCCCGGTCGTGGCAGGTCGCCTGCGGGTGCTGACGGGGATCACCCGGGCGTCCCGGTGGCCCGAGCTGCCGGCCAGCGCCGTCGAGGTCGTCCTGGAGCGCGCCCGCGACCTGGCGCGCTGGACGGTGGTCGACTGCGGGCCGCTGGTCGAGGCCGACGAGCTGCTCATGTACGACACGCACGCGCCGCAGCGCAACGGCGCCACCCTGGCCGCCCTGCAGGCCGCCGACGTCGTGGTGGTCGTGGGCGCCGCCGACCCCGTCGGCATCCAGCGGCTGGTGCGGGCGCTGGAGGACCTCGGCGAGGCGCCGGTCCCGGTGGCCGGCCGGCGGGTCGTCGTCGCCAACCGGGTGCGGTCGACGGCGGTCGGGCCGGACCCTGCCGGGGCCGTCGCCGCTGCACTGGCCCGCTACGGCGGGGTGACGGACGTCCACCCCGTGCCCGACGACGCCGCGGCGTGCGACGCCGCCGTGCTCGCCGGTCGCAGCCTGGCCGAGCACGCGCCGTCGTCGTCCGCCCGGGACGGCTTCGCCGCACTGGCCGGCCACGTGCGCGAGCTGGTGGCCTGA	MAAPVTVLCAVDGPEEPDVVVALGAPGSGATVTRRCGDVAELLAAAAAGAGTVAVVTADLVGLDREAVGRLHAAGTRVVALTHAGGAERAEALGVDAVLTGPGDPGFLDAVRDTAPIDDPLATGELDLATLERDGATPGRRGEVVAVWGPVGAPGRSTTAVELAAELAGIGAAPRRRGRRRATSGRPPGETTLLVDADTYGSCLAARLGLLDDAPGLAAAARAASQGSLDLATLARHSPVVAGRLRVLTGITRASRWPELPASAVEVVLERARDLARWTVVDCGPLVEADELLMYDTHAPQRNGATLAALQAADVVVVVGAADPVGIQRLVRALEDLGEAPVPVAGRRVVVANRVRSTAVGPDPAGAVAAALARYGGVTDVHPVPDDAAACDAAVLAGRSLAEHAPSSSARDGFAALAGHVRELVA				NA	NA	NA	NA	NA
AK001_00673	681			hypothetical protein	ATGCGCCCGGCCGAACCGAAGGACCGCTCCGTGAACGACGACGCCCTGCCGACCCCTGTCGCACCCCGCCTGCGCCGGCCCACCTGGCGAGATCCCCGGCTCGTCGTCGGGCTCGTCCTCGTGGCCGGTGCGGTCGCTCTCGGGTCCTGGGTCGTCGCGGACGCGGACCGCACCGTGCCCGTCTACGCCGCGGCCGGCACCCTGACACCCGGCGAACCCGTGGCGGCGGACAGCCTGCGGGTCGTCGACGTCAACCTCGGCACCGAGACCGCCCGGTACCTGCGTGCGGACGCCGGTCCGCCCACCGACCAGGTCGCCCTGCGCGTGGTGGAGGACGGCGAGCTCGTGGCCGCCGCGGCCCTGGGCCCGGCCGACGGCGTCGACGTCCGGGCGGTGGCCGTCCCGATCTCCGCCGGGCTGTCCGAGCGCATCCGCGCGGGCGCCGTCGTCGACCTCTGGTTCGTGCCCGAGGCGCGACCTGGGGCGAAGGGCGACGCGCCCGAGCCCGCGCCGCTCGTCGCGGACGTCGTCGTCGAGCAGGTCGACGTCTCGGACAGCGGCCTGGTCGTGGCCGACGGCGGCACCGTGCACGTCCTGGTCGGCACGGAGGACCTGCCGTCGGTCCTGGCCGCGCTGGGCGCCGACGGGTCGATCGCCGTCGTCCCGGTGGCGGGTGCCTGA	MRPAEPKDRSVNDDALPTPVAPRLRRPTWRDPRLVVGLVLVAGAVALGSWVVADADRTVPVYAAAGTLTPGEPVAADSLRVVDVNLGTETARYLRADAGPPTDQVALRVVEDGELVAAAALGPADGVDVRAVAVPISAGLSERIRAGAVVDLWFVPEARPGAKGDAPEPAPLVADVVVEQVDVSDSGLVVADGGTVHVLVGTEDLPSVLAALGADGSIAVVPVAGA				NA	NA	NA	NA	NA
AK001_00674	210			hypothetical protein	ATGCCCGGTCGTTTCCTCTCCCTCGCCGAGGTCCAGGAGATGCTCAGCATCTCCGCCACCCAGGCCTACTCGCTGGTCCGCACCGGGGAGCTCCCCGCGATCCAGGTGGGCCCCAAGAAGGTCTGGCGCGTCGAGGCCAGCAAGCTCGAGGAGTACATCGAGCAGCAGTACACGCGCACCCGCGAGCGCATCGCCTCCGGCGAGATGTGA	MPGRFLSLAEVQEMLSISATQAYSLVRTGELPAIQVGPKKVWRVEASKLEEYIEQQYTRTRERIASGEM				NA	NA	NA	NA	NA
AK001_00675	546			hypothetical protein	ATGACGCCGTCGGACGCCTCGCGCTGGGCGCTGCTGTTCGCCGACCTCGAGGCCCAGCTCGCGGCCGAGGAGGCTGCTGAGCGCGAGGGTGCTGTCGCCGAGCTCACGCGCGCCGAGCAGGCCTCGGTGGGGCTGACCGACCGGCTGCGCGCCGCGGACGGTCCGCTCCGGGTCGAGCTGCGGGACGGGGAGGTGCTCGAGGGTCGTGTGGCGCACGTCGCCGACACCTGGCTCCAGCTCGACGCGCACGGTGCCCGGGGCCGGGTGCAGCACGTCGTCCCCCTGGCCGGGGTGGCGGGCCTGGTCGGGCTCGGGCCGCACGCGCGGCCCTCGGCGGCGCGCACCGACCGGCTGGGACTGGGGACGGCGTTGCGGGGGCTGCAGCGGGACCGTGCTCGCGTGCAGGTGCGGACCGCGTCCGGTCAGGTCGTGGGTCGCATCGCGCGGGTGGGTGCCGACCACCTGGACGTCGCGGAGGTCGACCGGGCCCGGCCCGTGTCCCGGGTCGTGCCGTTCGCCGCGCTGCTGCGGGTCAGCGAGGCGTGA	MTPSDASRWALLFADLEAQLAAEEAAEREGAVAELTRAEQASVGLTDRLRAADGPLRVELRDGEVLEGRVAHVADTWLQLDAHGARGRVQHVVPLAGVAGLVGLGPHARPSAARTDRLGLGTALRGLQRDRARVQVRTASGQVVGRIARVGADHLDVAEVDRARPVSRVVPFAALLRVSEA				NA	NA	NA	NA	NA
AK001_00676	891			hypothetical protein	ATGTCCGACATCACGACGTATCAACTGCTATCAAACGACATGATCAGAGTGGATCAGATGACAACCTTGAGAAGAGTCGACGTCGAGGGATCGACGGGCGCCGGGCGGTCGCTGGCCGGGCTCGTGGCGTGCGCCGTCGGCGGCGCCGTCGTCCTGGCGCTCCTGGGACTGCGCCTCGGAGCGATCGTCCCGCGCGACGGCGGGACCGCCGCCCGCACCGGGATCGACCGGTGGGTGGAGATCACCGTGCTGACCGTCGGCGCGGCCGCGACCGCGTGGCTGACGCTCGGCGCCCTCGTCGCGCTGGCGTGCGTCGCCGTCGCGCCGCGGTACCGCGCCCGGGCGGTGGGCACCGCCCTCGGGCGGTGGACTCCTCGCGTGGTCCGCCGGCTGGCCCGCGGTGCCGTCGGGCTCGGCGTCGGAGCGGGCCTGGCGCTCGCCCCGTCCGCCGCGCTGGCCGACGAGCCCGTCGACTCCCCCGCGACCGTCCTCGACGTGGGCTGGCGGTCGACGGCGGACGTCGCACCCGACCGGACCGACGTGCCGGAGGACGTCTCGGCCCACCCGATCGCCCTGGAGCCCCGCGCGACGTCTGCGCCGGACCGGCAGGTCGGCGGCACGTCCGACGCCACGTCCGAGGAGGCCTCCGTGGCTGCGACCACGTCCTCCGACACCGCTCCCGCGTCACGGGCTGCCTCGACCACGGACACCGCGGAGGTGGTGGTCCACCGCGGGGACAGCCTGTGGGAGATCGCGGCCCGCGGGCTGCCGGCGTCCGCCACGGACGCGGAGGTCCTCGCCGCGACGACCCGGTGGCACGAGGCCAACCGCGACGTCATCGGCGCCGACCCCGACGTGATCCTGCCGGGCCAGGTCCTGCAGGCCCCCTGA	MSDITTYQLLSNDMIRVDQMTTLRRVDVEGSTGAGRSLAGLVACAVGGAVVLALLGLRLGAIVPRDGGTAARTGIDRWVEITVLTVGAAATAWLTLGALVALACVAVAPRYRARAVGTALGRWTPRVVRRLARGAVGLGVGAGLALAPSAALADEPVDSPATVLDVGWRSTADVAPDRTDVPEDVSAHPIALEPRATSAPDRQVGGTSDATSEEASVAATTSSDTAPASRAASTTDTAEVVVHRGDSLWEIAARGLPASATDAEVLAATTRWHEANRDVIGADPDVILPGQVLQAP				NA	NA	NA	NA	NA
AK001_00677	558			hypothetical protein	ATGACCGTCACGCCCACCGCACCGCCCCGTCAGGACCCGCCGCAGGGCCCCCGGCCGCGCCGGCTCCGCGTCTCGGCGCCTCCCGGCGGCCGGCCGCCCGCGCGCCCGCCCCAGGCGCCGACGCACCGTCCGCCGTCGCGCCGGGTGCGGGTCGGCGCGGACTCCGCCCCGCCGGCTCCGGTCCCCGGGCGCCCGCTCGCCCCGACGGAGCAGCCGGCCGCCCCGCACCCCGCGGACCCGACCGCCCTGTGCTGCTCGGTGGTGCGCGCAGCCGTGGAGGTGCTGCGGGGCGAACGGCCCGTGGCTCAGGTGGCGCGCTGGGTCACGCCGCAGGTGTACGACCAGCTGACGCAGCGTGCCCGCCTGCTGCGGTCACGCCCGGCGGCGGCCGCGACGACGCGGCCCGTCGCCGTGCGGCGGGTGCGCATGGTGCGGCTCGGCGCCGCGACGGCGGAGGCCACGGTCGTGCTCGAGGACCGCGGACGCGTGCGCGCCGCGGCGGCCCGGCTCGAGGTGCACCGGGGCACCTGGCGGGTCGCCGTGCTCGAGCTCGGGTGA	MTVTPTAPPRQDPPQGPRPRRLRVSAPPGGRPPARPPQAPTHRPPSRRVRVGADSAPPAPVPGRPLAPTEQPAAPHPADPTALCCSVVRAAVEVLRGERPVAQVARWVTPQVYDQLTQRARLLRSRPAAAATTRPVAVRRVRMVRLGAATAEATVVLEDRGRVRAAAARLEVHRGTWRVAVLELG				NA	NA	NA	NA	NA
AK001_00678	2970	secA		Protein translocase subunit SecA	GTGCCTGCGATCCTCGAGAAGATCCTCCGCATCGGCGAGGGGCGGACCCTCAAGAAGCTGACCGCGCTCGCCGAGCAGGTGAACCAGCTGGAGGACAGCTTCACCGAGCTCAGCGACACCGAGCTGCAGGAGGAGACCCAGCGGTTCAAGGACCGCCTGGAGCACGGCTCCTCCCTGGACGAGCTGCTCCCGGAGGCCTTCGCCACGGTCCGCGAGGCGGCGCGCCGCACGCTGGGCCAGCGTCACTTCGACGTCCAGCTCATCGGCGGTGCCGCCCTGCACCACGGCAACATCGCCGAGATGAAGACCGGTGAGGGCAAGACGCTGGTCGCCACGACCGCCGCCTACCTCAACGCCCTGACCGGCAAGGGCGTGCACGTCATCACCACCAACGACTTCCTCGCGAAGTACCAGGGCGAGCTGATGGGCCGTGTCTACCGGTTCCTCGGCATGGAGACGGGCATCATCGTCTCCGGGCAGACGCCGGACGAGCGTCGCCGCCAGTACGCCGCCGACATCACCTACGGCACGAACAACGAGTTCGGCTTCGACTACCTGCGCGACAACATGGCCTGGTCGCCGGACGACCTGGTCCAGCGCGGGCACCACTTCGCGATCGTCGACGAGGTGGACTCGATCCTCATCGACGAGGCGCGTACCCCGCTGATCATCTCCGGCCCCTCCTCGGGCGACGCCAACCGCTGGTACGTCGAGTTCGCGAAGGTCGTCAAGCGCCTGCACCGCGACACCGACTACGAGGTCGACGAGAAGAAGCGCACCGTCGGCATCCTCGAGCCGGGTATCGAGAAGATCGAGGACTACCTCGGCATCGACAACCTCTACGAGTCGCTGAACACCCCGCTGATCGGGTTCGTCAACAACGCGATCAAGGCGAAGGAGCTGTTCAACCGCGACAAGGACTACGTCGTGCTCAACGGCGAGGTCATGATCGTCGACGAGCACACCGGCCGTATCCTCGCCGGGCGCCGCTACAACGAGGGCATGCACCAGGCCATCGAGGCCAAGGAAGGCGTGCAGATCAAGGCGGAGAACCAGACGCTCGCCACGATCACCCTGCAGAACTACTTCCGCCAGTACGAGAAGGTCGCCGGCATGACCGGTACGGCCGAGACCGAGGCCGCGGAGTTCCAGGGCACCTACAAGCTCGGCGTCGTCCCGATCCCGACGAACCGGCCGATGATCCGCATGGACCAGCCCGACCTCGTCTACAAGGCCGAGGAGGGCAAGTTCAACGCCGTCGTCGACGACATCGTCGAGCGGCACGCCAAGGGCCAGCCGGTCCTGGTGGGCACCACCAGCGTCGAGAAGTCGGAGCTGCTGTCGACGCTGCTCCAGCGCGCCGGCGTCCCTCACAACGTCCTCAACGCCAAGGAGCACGACCGCGAAGCGGCCGTCATCGCTCAGGCGGGACGCAAGGGCGCCGTCACGGTCGCCACGAACATGGCCGGTCGTGGCACCGACATCATGCTCGGTGGCAACGCCGAGTTCATCGCGGTCGCCGAGATGTCCCAGCGCGGGTTCGACTCCACCGAGGACCCGGAGGCCTACGAGGCCGCGTGGCCCGAGGTGCTGGCCAAGGCCGAGGAGTCCGTGGCCTCCGAGCACGAGGAGGTCGTCGACCTGGGCGGGCTGTACGTGCTCGGCACGGAGCGGCACGAGTCCCGCCGGATCGACAACCAGCTCCGCGGCCGCTCCGGCCGACAGGGCGACCCGGGCGAGTCGCGCTTCTACCTGTCCATGCAGGACGACCTGATGCGGCTGTTCAACTCCGGGCTGGCCGAGTCGATGATGGGCCGCGCCGGCTTCCCGGACGACATGCCGCTCGAGTCGAAGATGGTCACGCGCGGTATCCAGAGCGCTCAGTCGCAGGTCGAGTCGCGCAACTTCGAGATCCGCAAGAACGTCCTCAAGTACGACGACGTCCTGGCCCGCCAGCGCACCGTCATCTACGACGAGCGTCGTCGGGTGCTCGAAGGCGAGGACCTGCACGAGCAGGTCCAGCACTTCCTCACCGACGTCGTCACCGCCTACGTCGAGGGTGCCGCCGACGACGGCAACGCCGAGGGCTGGGACCTGGACTCGCTGTGGACCGCGCTGAAGTCGGTCTTCCCGGTCTCGATCACGGTCGACGACGTCGTGGACGAGGCCGGCGGCCGGGACCGCCTGACCAAGGAGATGCTCCTCGAGGAGCTGCTCTCCGACGCGCGGGTCGCCTACCAGGCGCGCGAGGACTCCCTCGGGTCTCCGGCGATGCGTCAGCTCGAGCGCCGCGTGGTCCTGTCCGTGCTGGACCGCAAGTGGCGTGAGCACCTCTACGAGATGGACTACCTCAAGGAGGGCATCGGGCTGCGCGCGATGGCCCAGCGCGACCCCCTCATCGAGTACCAGCGCGAGGGCTACCAGCTCTTCCAGGCCATGACCGAGGCCATCAAGGAGGAGTCGGTCGGCTACCTGTTCAACCTGGAGGTCCAGGTCAAGCAGCCGGGCGAGGAGGGCGCCGCGGGCGGTGGTCCGCAGGTCTCCGTGCAGTCGGCGGCGGCGACGGCCGGTTCCTCGGCCGCCCAGGGCATCGCTGCCGGCGCGGCCTCGGTGGCCGGTGCCGACGTCGTCGAGGAGGCCCCGGCCGCCGAGGACGAGCCGGTCGAGGCCGAGACGGACACCACCTCGGAGCAGGAGATCCCGGCGGCGTTCGGCGGCTCGGAGGAGCCGACGCTCGTCGCGAAGGGTCTCGAGACGCCGCAGCGGCCGCAGAACCTGCAGTACTCGGCGCCGAGTGAGGACGGGTCCACCTCCCGCACCGGGGACTCCCGGGCGGCGCGTCGTGCGCTGCACGGCGAGGCGAGCGCGGCCAACGCCGACGGGCGCACGTTCCCCGGCACGCCCCGCAACGCCCAGTGCCCCTGCGGCTCGGGCAAGAAGTACAAGGTCTGCCACGGCGCCAACGAGTGA	MPAILEKILRIGEGRTLKKLTALAEQVNQLEDSFTELSDTELQEETQRFKDRLEHGSSLDELLPEAFATVREAARRTLGQRHFDVQLIGGAALHHGNIAEMKTGEGKTLVATTAAYLNALTGKGVHVITTNDFLAKYQGELMGRVYRFLGMETGIIVSGQTPDERRRQYAADITYGTNNEFGFDYLRDNMAWSPDDLVQRGHHFAIVDEVDSILIDEARTPLIISGPSSGDANRWYVEFAKVVKRLHRDTDYEVDEKKRTVGILEPGIEKIEDYLGIDNLYESLNTPLIGFVNNAIKAKELFNRDKDYVVLNGEVMIVDEHTGRILAGRRYNEGMHQAIEAKEGVQIKAENQTLATITLQNYFRQYEKVAGMTGTAETEAAEFQGTYKLGVVPIPTNRPMIRMDQPDLVYKAEEGKFNAVVDDIVERHAKGQPVLVGTTSVEKSELLSTLLQRAGVPHNVLNAKEHDREAAVIAQAGRKGAVTVATNMAGRGTDIMLGGNAEFIAVAEMSQRGFDSTEDPEAYEAAWPEVLAKAEESVASEHEEVVDLGGLYVLGTERHESRRIDNQLRGRSGRQGDPGESRFYLSMQDDLMRLFNSGLAESMMGRAGFPDDMPLESKMVTRGIQSAQSQVESRNFEIRKNVLKYDDVLARQRTVIYDERRRVLEGEDLHEQVQHFLTDVVTAYVEGAADDGNAEGWDLDSLWTALKSVFPVSITVDDVVDEAGGRDRLTKEMLLEELLSDARVAYQAREDSLGSPAMRQLERRVVLSVLDRKWREHLYEMDYLKEGIGLRAMAQRDPLIEYQREGYQLFQAMTEAIKEESVGYLFNLEVQVKQPGEEGAAGGGPQVSVQSAAATAGSSAAQGIAAGAASVAGADVVEEAPAAEDEPVEAETDTTSEQEIPAAFGGSEEPTLVAKGLETPQRPQNLQYSAPSEDGSTSRTGDSRAARRALHGEASAANADGRTFPGTPRNAQCPCGSGKKYKVCHGANE	PGPT0025735_770	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070	NA	NA
AK001_00679	1584	kefC	COG0475	Glutathione-regulated potassium-efflux system protein KefC	ATGGAGACCCTCGCGCTCTATCTCGGCGTGGCGTTCGTCGGCGGTGTGCTGGCCACGCTGGTGCGCCTGCCCCCGCTGGTGGGGTTCCTCGCGGCCGGGTTCGCGCTCGGCGCCGCGGGTGCCCCGGAGCTGCCGGGGCTCGGCACCATCGCCGAGGTCGGCGTGGCGCTGCTGCTGTTCACGATCGGGCTGAAGCTGGACGTGCGCTCCCTGGTCCGGCCCGAGATCTGGCTGACGACGGTGAGCCACATGGTGCTGGCCGTCGCGGTCGGCATCGGGTTCCTCGGCCTGCTCGCCGTGATGGGCATGGCGCTGGTCGCCGGCGACGGGCTCGGCACCCTCGCGCTCATCGCGCTCGCGCTGTCCTTCAGCTCGACGGTGTTCGTGATCAAGGTGCTCGAGGACCGGTCGGACGCCACGAGCCTGTACGGGCGCATCGCCGTCGGCATCCTCATCATCCAGGACATCGTCGCCGTCACGTTCCTCGCGATCGCCGAGGGGCGTCCGCCGAGCCTGTGGGCCGTCGCCCTGCTGCTGTTCATCCCCGGGCGGCGCGTGCTGTACGCGATCTGGTCCCGGGTGGGCCACGGCGAGCTGCAGGCGATCTTCGGCGTCGCGGTCGCCCTCGGTCCCGGCTTCTACCTGTTCGAGCACCTCGGCCTGTCCGGGGACGTCGGCGCCCTGGTCATGGGGGCGCTGCTGGCCGCCCACCCGAGCGCCGGCGAGATGTCCCGTTCGCTGATGACGTTCAAGGACGTCATGCTCGTCGCGTTCTTCCTCGAGATCGGCCTGCACGGGACGCCCGAGCCGCAGCACGTCGCGCTGGCTCTCGTGCTGCTGCTGATGCTGCCGCTGCAGGCCGCCGCCTACGCGGTGCTGCTGTGGACGGCCCGGCTGCGCCGTCGGACGGCCTTCCTCACCGGGCTCGCGCTGGGCAACTACTCCGAGTTCGGCATCATCGTGGTCGCCGTCGGGGTCGAGGTCGGCATGATCGACGACGACTGGCTGATCGTCATCTCCCTGGCCGTCGCGGCGAGCTTCGCGCTCTCGGCGGCAGTCAACCGCCGGGGCGTGGAGATCGCCGCCTGGCTCACCCGGTTCCTGCCGCCCAAGGACCCCTCCCGGCTGCACCCGGACGACCGGGTCGTGGACATCGGCGACGTGGACGCCCTGGTCATGGGGCTGGGGCGCGTGGGGTCGACGACGTGCGCCCGGTTGCGCGACGAGTACGGCCTGCGGGTCGTGGGCGTCGAGCACGACGTCAACCGCGTGTCGTCCCTGCAGGGCGACGGCTTCGAGGTGGTGCGCGCGGACGCCACCGACGTCGAGTTCTGGGCGCGGGTCAAACGGGCCGGGCACGTCCGCCTGGCGGTGCTGGCGATGCCGTTCCACAACGCGAACCTCATCGCCCTGTCCCGCCTGCAGGACGCCGGGTTCGAGGGGCAGGTCGCAGCGATCGCCCGGTACGACGACGACGCCGCCGAGCTGCGTCGGCACGGCGCGGACGCCGTGTTCCACATCTACGGGGCGGCCGGCGCCGAGCTCGCCGACCGGGCCGCCGAGGTGCTCTCGACGGACCGCTGA	METLALYLGVAFVGGVLATLVRLPPLVGFLAAGFALGAAGAPELPGLGTIAEVGVALLLFTIGLKLDVRSLVRPEIWLTTVSHMVLAVAVGIGFLGLLAVMGMALVAGDGLGTLALIALALSFSSTVFVIKVLEDRSDATSLYGRIAVGILIIQDIVAVTFLAIAEGRPPSLWAVALLLFIPGRRVLYAIWSRVGHGELQAIFGVAVALGPGFYLFEHLGLSGDVGALVMGALLAAHPSAGEMSRSLMTFKDVMLVAFFLEIGLHGTPEPQHVALALVLLLMLPLQAAAYAVLLWTARLRRRTAFLTGLALGNYSEFGIIVVAVGVEVGMIDDDWLIVISLAVAASFALSAAVNRRGVEIAAWLTRFLPPKDPSRLHPDDRVVDIGDVDALVMGLGRVGSTTCARLRDEYGLRVVGVEHDVNRVSSLQGDGFEVVRADATDVEFWARVKRAGHVRLAVLAMPFHNANLIALSRLQDAGFEGQVAAIARYDDDAAELRRHGADAVFHIYGAAGAELADRAAEVLSTDR	PGPT0013800_467	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013800-kefC-K11745	NA	NA
AK001_00680	1245			hypothetical protein	ATGGCGGGCGTGGAGACGATGACACGGGCCCAGGCCCGGAGGGTCGCGCTGCGCGCCCAGGCGCTGGACCGGCCCCGGCGCGACGCACCGGTGACCATGCGCCGCCTGACCGGCACGGTCGAGCGCATCAACCTGCTGCAGATCGACTCGGTCACCGTGCTCGCCCGCGCCCACCTGATGCCCCTGTTCTCCCGCCTCGGGCCGTACGACACCGCCCTGCTGGACCGGGCGGCCGGTCGGGCGCCGCGGAAGCTGGTCGAGACGTGGGCGCACGAGGCCTCCTACGTCCCCGCCGCCACCTACCCGCTGCTGGAGTGGCGCCGCCGGGCGGCGCAGCAGGAGGCGTGGGGCGTCATCGCCGGCGCCACCGACGCGCACCCGGTCGAGCTGGACCTGGTGCGCTCGCTGGTGACGGACCTCGGGCCCGTCACCGCCGGCCGGATCCACGCCGAGCTGGAGGCCGCCGGGCGGTCGGGCGGCCGGTCCCGCGAGGCGTGGGGCTGGAACTGGTCGGTGGCGAAACGCTGCCTGGAATACCTGTTCTTCACCGGTGAGGTGCTCTCGGCCCGGCGCAACGGGTCGTTCGAGCGCTGCTACGACCTGGCCGAGCGGGTGCTGCCGCCCGCGGTCCGGGCGACGCCCCCGGTGCCCGACGACGTCGCCGTGCGCCGCCTGCTCGAGCTCGGCGCCCGGGCGCACGGCGTCGGGACGGTCCGGTGCTTCCGGGACTACTTCCGGCTGCGCGGCCCCGCCGTCACCACGGCGCTGGACGAGCTCGTCGACGAGGGCACGCTGGTGCCCGTCGAGGTGCAGGGATGGCCGGAGCGTACCTACCGCCACCGTGACGCCGTCGTGCCCCGCCGGGCCGGGGCCGCCACGCTGCTGAGCCCCTTCGACCCCCTGGTGTGGGAGCGCCGGCGCCTGCTGGCCCTGTTCGACCTGCACTACCGGATCGAGATCTACACCCCGGCCCCGCAGCGCCGCCTGGGTTACTACGTGCTGCCGTTCCTCGAGGGTGAGCGGATCGGCGCCCTGGTGGACCTCAAGGCCGACCGGGCCGGGCGCGTGCTGCGCGTGCTGGCCGCCCACCGCACCGACGACACCGGTCCGGACACCGCCGGCCGCCTCGCGGCCGAGCTGTGGACGCTCGCGGCCTGGCTGGGTCTCGACGACGTCGCCGTGGCCCCGCGGGGCGACCTGTCCGCGGCGCTGGCGGCGACCGCCGGGACCCGGATGACGGACTGA	MAGVETMTRAQARRVALRAQALDRPRRDAPVTMRRLTGTVERINLLQIDSVTVLARAHLMPLFSRLGPYDTALLDRAAGRAPRKLVETWAHEASYVPAATYPLLEWRRRAAQQEAWGVIAGATDAHPVELDLVRSLVTDLGPVTAGRIHAELEAAGRSGGRSREAWGWNWSVAKRCLEYLFFTGEVLSARRNGSFERCYDLAERVLPPAVRATPPVPDDVAVRRLLELGARAHGVGTVRCFRDYFRLRGPAVTTALDELVDEGTLVPVEVQGWPERTYRHRDAVVPRRAGAATLLSPFDPLVWERRRLLALFDLHYRIEIYTPAPQRRLGYYVLPFLEGERIGALVDLKADRAGRVLRVLAAHRTDDTGPDTAGRLAAELWTLAAWLGLDDVAVAPRGDLSAALAATAGTRMTD				NA	NA	NA	NA	NA
AK001_00681	678	hpf	COG1544	Ribosome hibernation promotion factor	ATGAAGTGGAGCGACACGATGGAGATCGCCGTCGTCGGCAGGCACACGGAGGTGACGGACCGGTTCCGTCACCACGTCGAGGACAAGCTCACCAAGATCACCCAGCTCTCGCCGAACACGCGTCGCGTGGACGTCGAGGTCACGCACGAGAAGAACCCGCGGCTGTCGGACGTCAGCGAGCGGGTCGAGCTCACGGTGCGGTCCAAGGGGCCCATCATCCGCGCCGAGGCGGCCGCGGACGACCGGTTCGCCGCGCTGGACCTCGCCATGGAGAAGCTCAGTGAGCGTCTGCGGCGGTCGCGGGACCGGCACAAGAAGGACCACCGGCGTCGGGCCGCGGACGACTCGCGTCCCTTCGCCGACCCGAGCACGGTCGACGAGGTGCTGGCGGAGCGGTCCGAGCCGGAGCACGCCGTGCTGGAGTCGCCGGGTGACGCGATCGAGCACCAGCTCGGTGACTCGCCGGTGGTGATCCGTCAGAAGCTGCACCACGGCGAGCCGATGACCGTCGACGACGCGGTCGAGCGCATGGAGCTCGTGGGCCACGACTTCTTCCTCTTCATCGACAAGGAGTCCGCACGACCGGCGGCGGTGTACCGGCGTCGCGGGTGGTCCTACGGGGTCATCGAGCTGGACACCACCTGCGCGGCGGCGGCCCCCGTCACCGAGCTGACCTGA	MKWSDTMEIAVVGRHTEVTDRFRHHVEDKLTKITQLSPNTRRVDVEVTHEKNPRLSDVSERVELTVRSKGPIIRAEAAADDRFAALDLAMEKLSERLRRSRDRHKKDHRRRAADDSRPFADPSTVDEVLAERSEPEHAVLESPGDAIEHQLGDSPVVIRQKLHHGEPMTVDDAVERMELVGHDFFLFIDKESARPAAVYRRRGWSYGVIELDTTCAAAAPVTELT				NA	NA	NA	NA	NA
AK001_00682	723			hypothetical protein	GTGCTCACCGACCTGGCCCGCCTCGTGGTCCCCGTCGTCTGCCCCGGGTGCGGGCTCCCCGACGTGCCGTGGTGCCCCGGCTGCGCGCGTGCCGCCGTCGGCGGTCCGGCCCGGCGGGTCGAGGCCGGTGCCCCCCGCCTGGACCGGCTGGACGGCGCGGGCCCCCTGCCGACCTGGGCGCTCGCGGACTACGCGGGCGCCGTGCGCGACCTCGTCGTGGCCTGGAAGGACCGCGGGCGCGCGGACCTGGACCGGCTGCTCGTGCCGGCGCTGCGCCGGGCGGCCGGCACGACGGCGCCCCGGCTGCGGGCGGCCGCGGCGTCGCGGCCGGTCGCGGTGGTGCCGGCCCCGTCGGCCCCGGGGGCGCGGTGGCGTCGGGCACGTGAACCGGTGCGGACCCTCGCCGACGCGGTCGCCGACGGGCTCGCGGCGGCAGGCCTGCGGGCGAGGGTCGTGCCCGCCCTGCGCCGGCGCCCGTCGCGCGACCAGGTCGGCCTGGGCGCCCGGGCACGCGGGCGGAACCTCGCGGCGTCGGTCGCCCTGCGGCACGGGCGGCTGCGGCAGCCCACGGTCTGCGTGCTCGTCGACGACGTGCTGACCACGGGGGCGACGCTGGCGGTCGCCGAGCAGGTCCTCGGCCGCGGCGGCCACCAGGTCCTGGGGGCGTTCGTGCTCGCCGCGACACCCCCGCCGGACGGCGCCGCGACACGCCTGGGCACGTGA	MLTDLARLVVPVVCPGCGLPDVPWCPGCARAAVGGPARRVEAGAPRLDRLDGAGPLPTWALADYAGAVRDLVVAWKDRGRADLDRLLVPALRRAAGTTAPRLRAAAASRPVAVVPAPSAPGARWRRAREPVRTLADAVADGLAAAGLRARVVPALRRRPSRDQVGLGARARGRNLAASVALRHGRLRQPTVCVLVDDVLTTGATLAVAEQVLGRGGHQVLGAFVLAATPPPDGAATRLGT				NA	NA	NA	NA	NA
AK001_00683	1737	lpqB		Lipoprotein LpqB	ATGAGCGCGCACGCACCGCTGCGGAGGGTCGCGACGACGGTCGCCGGCCTCGTCGCGACCGCGCTCGTCCTGGTCGGCTGCGCGTCGATGCCGACCTCGGGGGACGTGATGGAGGGCGAGGTCCGCGTCGACAACCCCGTGGAGGTCGGGTTCAACGTCCAGGGGCCGTCGCCCGGCGCCGACCCGCAGCAGATCGTGCAGGACTTCGTCTCGGTGGCGCAGTTCGGGCCGGCCTCGACGAACACCTTCACCGTCGCCCGGGAGTACCTCACGCCGGTCGCCTGGTCGGAGTGGGACCGGGGCGCCCCGGTGCTGGTGCTCGCCGAGTACCCCGACTGGACGGTCGAGGACTTCGACGACTCCTCGGCGACCACGTCGGTGCGGGGCGAGGCGCTCGTGACGGCCACCATCGACGAGACCGGCACGTACACCGAGCTGCCCGCGCCGAGTACGGTCGAGGTCGGCTACGAGCTGTCGCGCGGGACCGACGGCGAGTGGCGCATCACCGAGCTGGACGACGGCCTGCTGGTGCTGGCCAACTTCCTCGCCGACGCCTTCCACCGCACGACCCTGTACTACCCGACCCCGGACCGGCGCTGGTGGGTCCCGGACGTGCGGTGGTACCCCGAGCAGTCCTGGCGGACCGCCGCCACGCAGGAGATCCTGGCCGGTCCTCCGGAACCGTTGCGGCAGTCGGTCGTCTCGGTGGTGCCGGAGGGGACGACCCTCGCGATCGACTCCGTCAGCGTGGACGACCGCGGCGTGATCGGCGTGTCGGTGACGTCGGCCATCTCCGCCGCCCCGGCCGAGGACCGCGCCCTGCTGGTCGCCCAGCTCGAGGAGACCCTGCGCGAGGGCGACGGGCGCAGCGTCGAGCTGTCCGACGGCAACAACCCGCTGGCGGTCGGGCCGGCCGACGCGCCCTCGCGGCCGGTGACCGTCGGGGACGCGCTCGCCGTCGTGGAGGACGCCGAGGGGGCGACCTCGTTGCGGCGCGTGGCCGGCACGGAGCTCGTCGAGCTCGCCGCACCGCTGCGCACCGGCGGTCTCGACCTCACCGCCGTGGGGACGGGGCCCGACGAGGGCCCGGTCGTGGTGCGCGACGGACCCGACCGTCTGCTGCGTGTCACGGCCGAGGAGGCACCGGTGGAGCTGCTGCAGGGCGACGGCGTGCTGCCCCCGTCGGTCGACCGGTTCGGCACGGTGTGGACCGCGGTGGACGGCGAGCTGTGGGTCGTGGGGGCCGCGGGGCGGGCCGCGCCGCTGGAGGCCGAGTGGCTCGTCGACCGGCCGGTGCGGTCGGTGCGGGTGTCCCCGGAGGCCGCTCGCGTCGTCGTCGTGGTCGAGGGGTCCGACGGCCCGGAGGTGTGGGTCGCCGCCGTCCAGCGGGACGCCGACGACGTCCCCACGGGCCTGTCTACGCCGTGGCGGGTCGGTGCGCCGGTGCCGGGCGTGGCCGCGGCCGACTGGTCCGACGAGACGACCGTGGTGCTGCTCGGGCGGGACCCGGACGGGACCCGCGTGCTGTCCGTGGCCGGCGTCGGCGGGCTCGCCGGCACCGCCGACGCCGGGTCGCGGACGCTCGTCACCCCCGGGGCCCCCGTCGCCGTGGCGTCCGGGGTGGGCGCCAGCCCGATGCTGGTGCTCGACGCGGACGGGGTGCTCCAGACGCGCCAGAGCGCTGCGCTCTGGCCGACGGTCGCCGAGGACGTCGTCGCGGTCGCCTACCCCGGCTGA	MSAHAPLRRVATTVAGLVATALVLVGCASMPTSGDVMEGEVRVDNPVEVGFNVQGPSPGADPQQIVQDFVSVAQFGPASTNTFTVAREYLTPVAWSEWDRGAPVLVLAEYPDWTVEDFDDSSATTSVRGEALVTATIDETGTYTELPAPSTVEVGYELSRGTDGEWRITELDDGLLVLANFLADAFHRTTLYYPTPDRRWWVPDVRWYPEQSWRTAATQEILAGPPEPLRQSVVSVVPEGTTLAIDSVSVDDRGVIGVSVTSAISAAPAEDRALLVAQLEETLREGDGRSVELSDGNNPLAVGPADAPSRPVTVGDALAVVEDAEGATSLRRVAGTELVELAAPLRTGGLDLTAVGTGPDEGPVVVRDGPDRLLRVTAEEAPVELLQGDGVLPPSVDRFGTVWTAVDGELWVVGAAGRAAPLEAEWLVDRPVRSVRVSPEAARVVVVVEGSDGPEVWVAAVQRDADDVPTGLSTPWRVGAPVPGVAAADWSDETTVVLLGRDPDGTRVLSVAGVGGLAGTADAGSRTLVTPGAPVAVASGVGASPMLVLDADGVLQTRQSAALWPTVAEDVVAVAYPG				NA	NA	NA	NA	NA
AK001_00684	1767	mtrB		Sensor histidine kinase MtrB	GTGCCGCCCGCTGACGAGCGGGCGGGTCGACCCACCGCGGACGACGACGGCGTCCCCGCGGCGGAGGGACCCGCCACCGGACCGCAGAACCCCGTGGCCGCGGGGGCGCGCTCGCTGGGGCTGCGCTGGCGCTCCTCGATGCAGGTGCGCGTGGTCACCTCGGCCCTCGCCCTGGGCGTGCTGGTGGTGGTGGTCCTGGGCCTGTTCCTGTCCTACTCCGTGCGGGACGGGCTGTTCGAGCAGCGCATCGACCAGATCGAGGCGGAGAACGCCGCGCTCGTCCAGGAGACCCAGTCACGGTTCTCCGCCTCGACGGCCACGACGATCGGCGAGCAGCAGTCGCTCCTGCGCGACGTCATCCTCGGACTCAGCGCGATCGGTTCCAGCGCGCAGGACTACTTCCTGCGCCAGGCGCCCGACCAGAGCCTGCCCCTGGTGGACCCGTCCTCGCGGCAGGACCTGTCGGTGCGCGACGTCGTCAGCCCGGCCATGCGCGAGGCCACGCTGACCACCGACGGCCCCGTGCTGCAGTCGGTGCTCATCCCGGCCGCGTACAGCGAGTCCGGCCAGGACGAGCCCGGCGTCGTCTTCGGCACCACGGTCGAGCTCGCCTCGGCCGGGACGTACGAGCTGTACGCGCTGTACTCGCTCGCCTCCCAGCAGGAGACGCTGCGCTTCGTCCAACGCACGCTGGCGGTCGGCGGCGCGGTGATCCTGGCGATGATCGGCCTGCTCACCTGGACGGTGACCCGCCAGACGGTGGCTCCGGTGCGTCGTGCCGCGACGGCGGCGTCCCGCCTCGGCGAGGGCCACCTGGACGTCCGCATGCCCGGCTCGCGCGGCCAGGACGAGATGGCCACCCTGGCCCGGACCTTCAACGAGATGGCCTCCAGCCTGGAGGACCAGATCGCGCGCATGGAGGAGCTGTCCGCCTCCCAGCGCCGGTTCGTCTCCGACGTCTCGCACGAGCTGCGCACCCCGCTGACGACCGTGCGGATGGCGGGCGAGGTCATCTACGCCGCGCGCGAGGACCTGGGCCCGGCGGCCCGCCGGTCGGCCGAGCTGCTGCAGACCCAGCTCGACCGGTTCGAGGAGCTGCTGACCGACCTGCTCGAGATCAGCCGGTTCGACGCCGGGGCCGCGGTGCTGGACGTCGAGCACCGCGACCTGCGTGACGTGGTGACCGCCGTCGTGGAGACAGCGGCCCCGCTGGCCGAGCGCAAGGGGGTGTTCCTGTCCGTCGACATGCCCGGCGAGGCGGTGCGCGCCGACATCGACCCGCGGCGGGTCGAGCGCGTCCTGCGCAACCTGGTGGTCAACGCCGTCGAGCACGCCGAGGGCAACCCGGTCGAGGTGTCGGTCGGGGCCGACGACGAGGCCGTCGCCGTGGTGGTGCGCGACCACGGGATCGGCCTGACGCCGGACGAGCTCAACCGGGTCTTCGACCGGTTCTGGCGCGCGGACCCGGCCCGTGCCCGCACCACGGGCGGCACCGGACTGGGCCTGGCGATCTCCCAGGAGGACGCGCGGCTGCACGCCGGCCGGCTGCAGGCCTGGGGCAGCCCCGGCGCGGGGGCCAGCTTCCGCCTGACGCTGCCCCGGCGCGCCGGCATCAAGCTGACCGGGTCGCCGCTGCCGCTGGAGGGGCCCGCCCGCTCGACCGGACGCCACGTGCCGACCGGCCAGGTGCCGGTGGTCAACCCGCCCACCGGGCCGACGCCGACCGCGATCCCCGACCTCTCGGTGAGCCAGGAGGAGTCCTCATGA	MPPADERAGRPTADDDGVPAAEGPATGPQNPVAAGARSLGLRWRSSMQVRVVTSALALGVLVVVVLGLFLSYSVRDGLFEQRIDQIEAENAALVQETQSRFSASTATTIGEQQSLLRDVILGLSAIGSSAQDYFLRQAPDQSLPLVDPSSRQDLSVRDVVSPAMREATLTTDGPVLQSVLIPAAYSESGQDEPGVVFGTTVELASAGTYELYALYSLASQQETLRFVQRTLAVGGAVILAMIGLLTWTVTRQTVAPVRRAATAASRLGEGHLDVRMPGSRGQDEMATLARTFNEMASSLEDQIARMEELSASQRRFVSDVSHELRTPLTTVRMAGEVIYAAREDLGPAARRSAELLQTQLDRFEELLTDLLEISRFDAGAAVLDVEHRDLRDVVTAVVETAAPLAERKGVFLSVDMPGEAVRADIDPRRVERVLRNLVVNAVEHAEGNPVEVSVGADDEAVAVVVRDHGIGLTPDELNRVFDRFWRADPARARTTGGTGLGLAISQEDARLHAGRLQAWGSPGAGASFRLTLPRRAGIKLTGSPLPLEGPARSTGRHVPTGQVPVVNPPTGPTPTAIPDLSVSQEESS				NA	NA	NA	NA	NA
AK001_00685	681	mtrA	COG0745	DNA-binding response regulator MtrA	ATGAGGTCCCGTGTCCTGGTGGTCGACGACGACACTGCGCTGTCCGAGATGATCGGCATCGTCCTGGAGTCGGAGGGGTTCGAGACGAGCTTCTGCGCCGACGGCGACGAGGCGATCGGCATGTTTCGCTCCCTGCAGCCCGACCTGGTGCTGCTCGACCTGATGCTGCCCGGCAAGGACGGCATCGAGATCGCCCGGGAGATCCGCGGCGAGTCGGGCGTGCCCATCATCATGCTCACCGCCAAGACGGACACGGTCGACGTCGTCCTCGGCCTGGAGTCCGGTGCCGACGACTACGTGACCAAGCCGTTCAAGCCCAAGGAGCTGGTCGCCCGCGTCCGTGCGCGGCTGCGCCGCTCCGACGAGCCCGGCCCCGAGCGCCTCAAGATCGGTGACGTGGAGATCGACGTCACCGGCCACGCGGTCACCCGCGACGGCGAGCGCATCAGCCTGACGCCGCTCGAGTTCGACCTGCTCGTCGAGCTCGCGCGCAAGCCCTGGCAGGTGTTCACCCGCGAGGTGCTGCTGGAGAAGGTGTGGGGCTACCGCCACAGCGCGGACACCCGCCTGGTGAACGTCCACGTCCAGCGGCTGCGCTCCAAGATCGAGAAGGACCCCGAGAGCCCCGAGGTCGTCCAGACGGTGCGGGGTGTGGGCTACAAGGCCGGTGCCGCCCGCTGA	MRSRVLVVDDDTALSEMIGIVLESEGFETSFCADGDEAIGMFRSLQPDLVLLDLMLPGKDGIEIAREIRGESGVPIIMLTAKTDTVDVVLGLESGADDYVTKPFKPKELVARVRARLRRSDEPGPERLKIGDVEIDVTGHAVTRDGERISLTPLEFDLLVELARKPWQVFTREVLLEKVWGYRHSADTRLVNVHVQRLRSKIEKDPESPEVVQTVRGVGYKAGAAR	PGPT0013765_422	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668	NA	NA
AK001_00687	654			hypothetical protein	GTGACCACGCGCGCGGCCGCGGTGCTCGCCGAGGTCCCCGTCGACCCCGACCGGGAGACGGCGCGCCGCTGGCTCGTCGAGGAGCTCGCCCGGCCCGAGTACGCGCAGGACGAGTCGTGGCTGATGCGCCTGCTGGACTGGTTCCTGGGGCTCTTCGACGGACTCGGCACCGTCGACGGCGACCCCCTCGTGCTGGCCGCCCTCGTCGTCGGCGTCCTCGCCGTCGTGGCGGCGCTGGCGTGGTGGATCTCCGGTCCCGTCCGGCTGCGGCGTCGTGCGCAGGCCCGGTCCGTCGTCGTGCACGACGACGACCCGCGCACCGCCGCCGAGATGCGCGCCGCGGCCGACGCCGCCGCCGCGCGCCAGGACTGGGCCACGGCGGTGCTCGAGCGCTTCCGCGCCGTGGTCCGCGACCTCGAGGAACGCGCCGTGCTCGACGAGCGCCCCGGCCGCACCGCCCAGGAGGCCGCCCGCGACGGCGGCGAGCGCGTGCCGCAGCTCGCCGACCCGCTGCGTTCGGCCGCCCGGCTGTTCGACGGCGTCTGCTACGGGCACCGCCCGGCCGGCCCCGCGGACGACGACCGGCTGCGGGCCCTGGACCAGCAGGCGGCCGGCGCACGACCCGGGGCCACGACGACGGCGGACGCCCCGTGA	MTTRAAAVLAEVPVDPDRETARRWLVEELARPEYAQDESWLMRLLDWFLGLFDGLGTVDGDPLVLAALVVGVLAVVAALAWWISGPVRLRRRAQARSVVVHDDDPRTAAEMRAAADAAAARQDWATAVLERFRAVVRDLEERAVLDERPGRTAQEAARDGGERVPQLADPLRSAARLFDGVCYGHRPAGPADDDRLRALDQQAAGARPGATTTADAP				NA	NA	NA	NA	NA
AK001_00688	1242			putative membrane protein	GTGAGCGCACCCACCACCGAGACCACCGGGACCTGGACGGCGAGCGCCACCGGGAACGGCACCACGTTCGCCTCGCGCAGCCGCCGCCGGTGGCGCACCGCACGCTGGACGCTGCTCGTCCTGGTCAGCCTTGCCGCGCTCGTCGCGCTGCTCGCCGTCCTGCGGCCCCCGACCTCCACCACGCCGTACGACACCGGCAACACCCGGGACGACGGCTCCCGCGCGCTGGCCCAGGTGCTCGCGCGCCAGGGCGTCACCGTCCAGCAGGTCGACCGGGTCGCCGACGCCGTCGCCGCCGCCGGACCCGGCACGACGCTGCTCGTGCCGCCGTCTCCCTACCTGCTGGCCCAGCAGGCCGAGGCGCTCGCCGGGACCGAGGCCGACGTCGTCGTCGCCGACGCCGGGCACGACCTGCTGGACGCCGTCTCCGCGGGCCGGATCGGACGTGCCGAGCGCGGGACCACGCCGCCGACCCCCGTCCCGCCGGACTGCGAGCTGCCCGCCGCCGTCGCCGCCGGCGCCTCGCTCCTCGAACCCGGTCTGGAGGCGCTGTCCGACGGGGTGACCACGTGCTGGCCCGGTCGGATGTCGAACACGGCGGCGCTCGCGACGACCGAGCAGGACGGGCGCACCGTCACGGCGGTGCACGACGCGGCGTTCCTGCGCAACGGCGACGTGCTCACCGAGGGCAACGCCGCGCTCGCGCTGCACCTGCTCGGTCAGCACCGCCGGCTCGTCTGGCTCGTCCAGGACCCCGGCGACCTCAGCGCGACCGACCTGGACGCGCCGTCCGGCCCCGGCTCCCCCGGCGAGTCCGCCGGACTGGCCGACCTGCTGCCGCCGTGGTTCGGCGCCGTGGCCTGGTGGGCCCTGCTCGTGGCGGTCGTCGCCGCGCTGTGGCGAGTGCGTCGCCTGGGCCCGCTCGTGGCCGAGGACCTGCCCGTCGTCGTGCCCGCCGCCGAGTCCACGCGCGGTCGTGGCCGGCTGTACCGGCGCGCGCGCTCGCGCGGCCATGCCGCCGCCGGCCTGCGCGCCGCGGCTGCCGCCCGCGTCGCCCACCGGCTCGGGTTGCCCCGCTCGGCCGACCGCGCCACCGTGGTCGACGCCGTGGTCCGCGCCACGGGCGGCGACCCGCACACCGTCACCGACCTGCTGTACGGACCACCCCCGGCCGACGACGTGGCGCTCACCGAGCTCGCCCGCCGGCTCGACACCCTGGAGAGCGAGGTTCACCGACCGTGA	MSAPTTETTGTWTASATGNGTTFASRSRRRWRTARWTLLVLVSLAALVALLAVLRPPTSTTPYDTGNTRDDGSRALAQVLARQGVTVQQVDRVADAVAAAGPGTTLLVPPSPYLLAQQAEALAGTEADVVVADAGHDLLDAVSAGRIGRAERGTTPPTPVPPDCELPAAVAAGASLLEPGLEALSDGVTTCWPGRMSNTAALATTEQDGRTVTAVHDAAFLRNGDVLTEGNAALALHLLGQHRRLVWLVQDPGDLSATDLDAPSGPGSPGESAGLADLLPPWFGAVAWWALLVAVVAALWRVRRLGPLVAEDLPVVVPAAESTRGRGRLYRRARSRGHAAAGLRAAAAARVAHRLGLPRSADRATVVDAVVRATGGDPHTVTDLLYGPPPADDVALTELARRLDTLESEVHRP				NA	NA	NA	NA	NA
AK001_00689	1182			hypothetical protein	GTGACCCACCCCGACGAGAACCTGCCCGCCGGCACCCCGCGGGACCGGCCGGTCGAGACCGCCGAGCCCACGGAGCGTCCGGCGGAGCGGCCGACCGAGCGCTCCCCCGAGGCACCGGCCGAGCCGGTCGCGGACCCCACGGAGCGGACGGCCGAGCAGCCGACCGATCAGCCGACCGAGCCGGGCGTCCAGGAGACCGCCGCCGCACCCGCCCCGGAGCCCCCGCAGCCCTCGCTCGAGCTGCGCCGCGCGCTGGCGGGCGTGCGCACCGAGGTCGGGCGCGGCGTCGTCGGCCAGGACTCCGCGGTGACGAGCCTGCTCATCGCGCTGCTGTGCTCCGGCCACGTGCTGCTCGAGGGGGTGCCCGGCGTCGCCAAGACGCTGCTCGTGCGCACTCTCGCCGCGGCCCTGGACCTGGACTCCAAGCGCGTGCAGTTCACCCCCGACCTCATGCCCGGCGACGTCACGGGCTCCCTGGTCTACGACGCCCGCACCGCCGAGTTCTCGTTCCGCGAGGGACCGGTGTTCACCAACCTCCTGCTCGCCGACGAGATCAACCGCACCCCGCCCAAGACGCAGGCCTCCCTGCTCGAGGCGATGGAGGAGCGGCAGGTCTCCGTCGACGGCGAGCCGCGGCACCTGCCCGAGCCCTTCGTGGTGATCGCCACGCAGAACCCGGTCGAGCACGAGGGCACCTACCCGCTGCCCGAGGCGCAGCTCGACCGGTTCCTGCTCAAGGTGCTGCTCCCCCTGCCGGAGCGGGACAGCGAGATCGAGGTCCTGGCCCGGCACGCCGCCGGCTTCGACCCGCGCGACCTCGCCGCCGCGGGCGTGCGGGCCGTGGCCGGTCCGGAGACCCTCGCCGCGGCCCGCGCCGAGGTGCGCCGGGTCGAGGTCGCCCCCGAGGTGCTCGGCTACGCCGTCGACATCTGCCGCGCCACCCGCCAGTCCCCGTCGCTGCAGCTCGGTGTCTCCCCGCGCGGCGCCACCGCGCTGCTGGCCACCTCGCGCGCGTGGGCGTGGCTCTCGGGCCGCATGTACGTCACGCCCGACGACGTCAAGGCGCTCGCCTTCCCCACGCTGCGCCACCGCGTCCAGCTGCGCCCGGAGGCCGAGCTGGAAGGGGTGACCGCCGAGACCGTGCTCGGCACCGTGCTCGCCGCCGTCCCGGTCCCCCGCTGA	MTHPDENLPAGTPRDRPVETAEPTERPAERPTERSPEAPAEPVADPTERTAEQPTDQPTEPGVQETAAAPAPEPPQPSLELRRALAGVRTEVGRGVVGQDSAVTSLLIALLCSGHVLLEGVPGVAKTLLVRTLAAALDLDSKRVQFTPDLMPGDVTGSLVYDARTAEFSFREGPVFTNLLLADEINRTPPKTQASLLEAMEERQVSVDGEPRHLPEPFVVIATQNPVEHEGTYPLPEAQLDRFLLKVLLPLPERDSEIEVLARHAAGFDPRDLAAAGVRAVAGPETLAAARAEVRRVEVAPEVLGYAVDICRATRQSPSLQLGVSPRGATALLATSRAWAWLSGRMYVTPDDVKALAFPTLRHRVQLRPEAELEGVTAETVLGTVLAAVPVPR				NA	NA	NA	NA	NA
AK001_00690	1371			hypothetical protein	ATGGTGCTGACCTGGCGGGCCGTCGTCCTGGCGGCCCTCGGCGCGGTGCCGGTGGCGCTCTGGCCGGTGCCCGGCGTCGTGCTGGTCTGGGCGCTGGTCGTCGTGGGGGTGTGCTGCCTCGACGTCGCGCTCGCCGCCTCCCCGCGACAGGTCGCCCTGCAGCGCTCCGTACCCACCGCCGTGCGGCTGGGCACCCCGGTCGACTCCCGGCTCGTGGTCACCAACGCCGCCCGTCGCCGGCTGCGCGCCGTCGTCCGGGACGCCTGGCCGCCGTCGCTGGCCGCGGAGGCCCACGACGCCGGTCGCCGTGCGCACGACGACCCGGCGGCCCCGGTCCGCGCGGCCCGGCACACCGTCGACCTGGCCCCCGGGGACGCGGGGCGCCTGCGCACGCCGCTGCTGCCCACCCGCCGCGGTGACCGGTCGGCGGGACCGGTCACGGTGCGCACGCTCGGCCCGCTGCGCGTGGCCGGCCGCCAGGCGTCGATCCCCGTCGGCGGTCGCCTGCGCGTGCTGCCGGAGTTCACCGCGCGACGCCACCTGCCCAGCCGCCTGGCGCGGCTGCGCGAGATGGACGGCCGCGCCGCCGTCCAGGTACGCGGCGAGGGCACGGAGTTCGACTCGCTGCGCGAGTACGTCGTCGGCGACGACGTCCGCTCCATCGACTGGCGCGCCACGGCCCGGCGCGGCGACGTCGTCGTGCGCACCTGGCGTCCGGAGCGCGACCGGCGCGTCGTCGTCGTGCTGGACACCGGACGCACCTCCGCGGCGCGGATCGGCACGGTGGACGACGGCGCGGTCAACGTCGGCGGCACCCGGCTCGAGGCGAGCGTGGAGGCGGCGCTCCTGCTCGGCACGCTGGCCGACCGCGCCGGCGACCGCGTCCAGGTGCTGGCCTACGACCGGGCGGTGCGCGCCCGGGTCGCCGGCGCCTCCGGCCCGCGGCTCCTGCCCGCGATGGCCGACGCCCTCGCCGCCGTCGAGCCGGTGCTGCTGGAGACCGACTGGACGGGCCTGGTCGGGCAGGTCCGCGCCCGGGTCTCGCAGCGCTCGCTGGTCGTCCTGCTCACCTCGCTGGACCCCGCAGCCGTCGAGACGGGTCTGCTGCCCGTGATCGACGGGCTCGCCGAGACCCACCAGGTCGTGGTGGCCGCCGTCAGCGACGCCGAGGTGGCGGCGCTCGGGGCGGGCCGGGAGTCGGTCGAGGATGTCTACGACGCGGCGGCCGCCGCGCGGGGCGATCTGGACCGGTCCGCGGTGGCGGCGGTGCTGCGCCGCCACGGCGCCGAGGTGGTCGAGGCGCTGCCGGACGAGCTGGCGCCACGGCTGGCGGACACCTACCTCGCGCTCAAGGCCGCCGGTCGGCTCTGA	MVLTWRAVVLAALGAVPVALWPVPGVVLVWALVVVGVCCLDVALAASPRQVALQRSVPTAVRLGTPVDSRLVVTNAARRRLRAVVRDAWPPSLAAEAHDAGRRAHDDPAAPVRAARHTVDLAPGDAGRLRTPLLPTRRGDRSAGPVTVRTLGPLRVAGRQASIPVGGRLRVLPEFTARRHLPSRLARLREMDGRAAVQVRGEGTEFDSLREYVVGDDVRSIDWRATARRGDVVVRTWRPERDRRVVVVLDTGRTSAARIGTVDDGAVNVGGTRLEASVEAALLLGTLADRAGDRVQVLAYDRAVRARVAGASGPRLLPAMADALAAVEPVLLETDWTGLVGQVRARVSQRSLVVLLTSLDPAAVETGLLPVIDGLAETHQVVVAAVSDAEVAALGAGRESVEDVYDAAAAARGDLDRSAVAAVLRRHGAEVVEALPDELAPRLADTYLALKAAGRL				NA	NA	NA	NA	NA
AK001_00691	990			hypothetical protein	GTGGACCTGGACGCCTTCACCGCCGTGCACCGCCCGGAGTGGGACCGCCTGACGGAGCTGACGAAGCGGCGCCGGCTCGACGGTGCCGAGGCCGACGAGATCGTCCGCCTGTACCAGGCCGTGGCCACCCACCTGTCGACGGTGCGATCGACGGCCCCGGACCCGGCGACCGTCACCCGGCTCTCCGAGCTGCTCGCCCGGGCGCGGACCAAGATCACCGGCGCGCACGAGCCCGCCTGGTCCGACGTGGTCCGGTTCACCGTCGTCACCGTCCCCGCGGCCCTGTACCGCATCCGGTGGTGGATCCTCGGGGTGACGGTCGCCTTCCTCGCCGTGGCCGTCACGGCGGGGGTCTGGGTCGCCGTCGACCCCGACGCGCTCGCCGCGATGGGCACGCCCTCGGAGCGCCAGCAGTACGTCGACGAGGCGTTCGCCTCCTACTACGACCCGCAGGCGTCCTTCGCGGCGATGGTGTGGACCAACAACGCCTGGATCGCCGCCCAGATGATCGCCACCGGCATCACGGGGGTCTTCCCCGTGTACGTCCTGCTCAACAACGCCGTCCAGATCGGCGCCACCGGCGGCATGATGGCCGCCCACGGCGAGCTCGCGCTCTTCGGCCAGCTCATCGCCCCGCACGGGCTGCTGGAGCTGACCAGCATCTTCGTCGCCGGGGCCGCCGGTCTGAAGCTGTTCTGGACGTGGGTCGACCCGGGTCCGCGCCGGCGCGGCACCGCGCTGGCCGCCGAGGGGCGCTCGCTGGTGACCGTGGCCGTCGGCCTGGTGGGTGCGCTGGCGCTGTCCGGCCTGGTCGAGGGCTTCGTGACCGGCTCGGCGCTGCCGTGGTGGCTCAAGATCGTGATCGGCGCGTTCGCCCTCGCCGCGTTCCTCGCCTACGCCCTCGTGCTGGGCCGGCGTGCCGCGGCCGCGGGGGAGACCGGCGACCTGGACGCCGACCGCGCCGGTGCCGTGCTGCCCACCGCCGGCTGA	MDLDAFTAVHRPEWDRLTELTKRRRLDGAEADEIVRLYQAVATHLSTVRSTAPDPATVTRLSELLARARTKITGAHEPAWSDVVRFTVVTVPAALYRIRWWILGVTVAFLAVAVTAGVWVAVDPDALAAMGTPSERQQYVDEAFASYYDPQASFAAMVWTNNAWIAAQMIATGITGVFPVYVLLNNAVQIGATGGMMAAHGELALFGQLIAPHGLLELTSIFVAGAAGLKLFWTWVDPGPRRRGTALAAEGRSLVTVAVGLVGALALSGLVEGFVTGSALPWWLKIVIGAFALAAFLAYALVLGRRAAAAGETGDLDADRAGAVLPTAG				NA	NA	NA	NA	NA
AK001_00692	834			hypothetical protein	GTGACCGACGGCATCCTCATCGGCGAAGGCGTGGTGCTGGACGCCCGTCCGGCCTCCTTCGCCTCGCGGTCGGCGGGCGCGCTGATCGACGTCGCCGTGACCGTCGCCGGGTTCGTCCTGGCGTTCTGGCTGTTCGCGGGCGTCCTGGTCTGGCAGACGGACGTCGTGGCCGGGACGCAGTGGGGGCGCGCCGCCCTGATCGCCGTCCTCGTCCTGCTGCTCGTCGTGCTGCCGACGACCGTCGAGACGCTCACGCGGGGGCGCTCGCTCGGCAAGCTCGCCGCGGGCCTGCGCGTGGTGCGCGACGACGGCGGCCCGGTCCGGGTGCGCCACGCCCTGGTGCGGGCGTTGGTGGGGGTCTTCGAGATCTGGCTGACGGCGGGGGCCGGCGCGGTCGTCACGTCGCTGGCGAACCCGCGCGGCAAGCGGCTGGGCGACGTCCTGGCGGGCACCTACGCGGTGCGGGTCCGCGGTGCGCGCGGCTGGGAGCAGCCGCTGATGATGTCCCCGGCCCTGGCGACCTGGGCGCGGACGGCCGACATCCGCCGGCTGCCGGACGGCCTGGCGCTGCGCACGCGGCAGGTACTCGACCGCGCACCACGGCTGGCTCCGGCGTCGCGGGCGCGTCTGACGGACGAGCTGGCCGCCCAGGTGGAGGCCTACGTGGCCCCCGGGCCGCCGTCGGGCACGCCCGCCGAGACGTTCCTGCACGCGGTGCTGCACGAGCGTCGCGACCGGGAGCTGGCCCGGGGCCGCAGCGAGCGCGAGCGCGCGCTGCGCCAGGCCGAGTCGCTGCACCGCCTGCCCTACGGGATCGCCGACCCGCGCGACTGA	MTDGILIGEGVVLDARPASFASRSAGALIDVAVTVAGFVLAFWLFAGVLVWQTDVVAGTQWGRAALIAVLVLLLVVLPTTVETLTRGRSLGKLAAGLRVVRDDGGPVRVRHALVRALVGVFEIWLTAGAGAVVTSLANPRGKRLGDVLAGTYAVRVRGARGWEQPLMMSPALATWARTADIRRLPDGLALRTRQVLDRAPRLAPASRARLTDELAAQVEAYVAPGPPSGTPAETFLHAVLHERRDRELARGRSERERALRQAESLHRLPYGIADPRD				NA	NA	NA	NA	NA
AK001_00693	618			hypothetical protein	ATGGATCTGCGCGAGCGGCGCCGTCGGTCGACGATGCGGCACGTCCAGCAGGTCGCTCTCGACCTCTTCGAGCAGCACGGTTTCGACGCCGTGTCCGTGGCCCAGGTGGCCGCCGCGGCCCAGGTCGCCGAACGCACGGTCTACCGGCACTTCGGCACCAAGGAGATGCTCGTCGTCCACGACGAGGCGGACGACGCCTTCCTCGCGGACCTGCTCCGCCACGCTGCCGTCGTGGGGGCGGTGGACGCCGTCGAGGCGGCGCTCGCGGGACCGGCGGCGCACGGCTGGCGCCGCGGGGGCCCGACGGCGCAGGCCTGGCTGCGCAAGATGCGGCTGCTGCGGGCCACCCCGGCGCTGCGCACCGTGTTCGAGCAGGCCGTCTCCGAGCTCGGCGACGCCCTGGGGGCCGCCGAGCGAGGGGGCTGCGGGGCCGACGCCTTCGCCGCGCGGGTCCGCGGACGCGCGGTGGCCGCGATGCTCGCGGCGGCGGCGGAGGCCTGGGACGCGAGCGACGGCGACGACGACCTCGCGGCGTTCGTGCGGGCCGGCGTCGAGGCGCTGCGCACCCCCGCCCGGCCGGGCGCCGGGACTCAGTCGCGCGGGTCGGCGATCCCGTAG	MDLRERRRRSTMRHVQQVALDLFEQHGFDAVSVAQVAAAAQVAERTVYRHFGTKEMLVVHDEADDAFLADLLRHAAVVGAVDAVEAALAGPAAHGWRRGGPTAQAWLRKMRLLRATPALRTVFEQAVSELGDALGAAERGGCGADAFAARVRGRAVAAMLAAAAEAWDASDGDDDLAAFVRAGVEALRTPARPGAGTQSRGSAIP				NA	NA	NA	NA	NA
AK001_00694	912		COG1131	Multidrug efflux system ATP-binding protein	GTGCCCGACCCCATCATCGACGTCTCCGGCCTCGTCAAGACGTTCGGCTCGTTCCGTGCGCTCGACGGCTTCGACCTCCGCCTCGATCCCGGGGAGGTGCGCGGCTTCCTCGGCCCCAACGGCGCCGGCAAGACCACCACGATCCGCGTGCTGCTCGGGATGATGCGCGCCTCGGGCGGCCGCGTCCGGCTCTTCGGGCAGGACCCGTGGCGCCGGGCGGTCGCCCTGCACCGGCGGCTGACCTACGTCCCCGGCGACGTCGCGCTGTGGCCCGGGCTGACCGGCGGCCAGTGCCTCGACGTGCTCGGGGCGTCGGGCGCGCCGCTCGACCCGGCGCGCCGCGACGAGCTCGTCGAGCGCTTCGACCTGGACCCCACCAAGCGGGTGCGCGACTACTCCAAGGGCAACCGGCAGAAGGTCGCGCTGGTGGCCGCCCTCGCCGCGCGCGCCGACCTGCTCGTGCTCGACGAACCCACCTCCGGCCTCGACCCCCTCATGGAGGAGGTCTTCCGCGAGTGCGTCACGGAGCGGGCCGCCGACGGCGCGGCGGTGCTGCTGAGCAGCCACATCCTGTCCGAGGTCGAGGCGCTGTGCTCGACGGTGACGATCATCCGACGCGGGCGGGCCGTCCGGGCCGGCACGGTCGCCGAGCTGCGGGGCCTGGCCCGCACGACCGTGCACGCCGTCACCCCCGGCGCCCCGCCGGACCTCGACGGCTTCGACCTGCACGACCTGTCGGTCACCCCCGTGGCCGACGGCGGCGCGGGCCACGACGTGACGTTCACCGTGGAGCCCGGCGACCTGGAGAAGGTGCTGCGGCCGCTCGTCGACGCCGGGCTGACGGGCCTGACCGTGCGCCCGCCGAGCCTCGACGAGCTCTTCCTGTCCGAGTACGACGGGGCACCGGCATGA	MPDPIIDVSGLVKTFGSFRALDGFDLRLDPGEVRGFLGPNGAGKTTTIRVLLGMMRASGGRVRLFGQDPWRRAVALHRRLTYVPGDVALWPGLTGGQCLDVLGASGAPLDPARRDELVERFDLDPTKRVRDYSKGNRQKVALVAALAARADLLVLDEPTSGLDPLMEEVFRECVTERAADGAAVLLSSHILSEVEALCSTVTIIRRGRAVRAGTVAELRGLARTTVHAVTPGAPPDLDGFDLHDLSVTPVADGGAGHDVTFTVEPGDLEKVLRPLVDAGLTGLTVRPPSLDELFLSEYDGAPA	PGPT0006725_12463	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_00695	1608		COG3559	Multidrug efflux system permease protein	ATGACGGCCCCGGGCACCGGCACGACGGGGCGCACCGGCGACGGGCTGACCGCGGTGCTGCGGCTGCAGCTGCGCACCGGGTGGAAGGCCCTGCTGGCCTGGGTGGCCGGGCTGGTCGGGGTCTACGCCGCCACGGTCGCGGCCATCGACACGACCTACGGCACGCCGGAGCAGCTCGCGACGTACCAGGCGACCGTGGGCTCGGACCCGACGATGGCGGCGATCAACGGCACCCCCTACGGCGCCGACACGCTCGGCGGGGTGGTGGCCAACGAGTTCGGCTTCATCGCGGCGATCGCCGTGCCGCTCATGGGCCTGCTGCTCGTGACGCGCTCGACGCGGGCCGCCGAGGAGAACGGGCTGCTCGAGCTCCTGCGCTCGCGGGCGATCGGCTCCCGCGCACCGTGGAGCGCCGCGCTGGGCGTCACGGCCGGGGCCCTCGTGCTCGTCGGCCTGGGCATGGCCGGTTCCCTGCTGGCCTACGGCGTCGAGGCCGCCGACGCCGCGCTCTACGGAGCCTCGATGACCGCGCTGGGCCTGGTGTTCGCGGGCGTGGCGACCCTGGCCGGCCAGCTCCTGCGCCGGGCCGCAGGGGTGGTGGCCGTCGGCATCGTGGTGCTGGGTGCCGCCTACGTCTTCCGCGCGATCGGGGACGTCGAGGACAACGGTTGGAAGTGGCTGTCCCCCCTGGCCTGGCAGCAGGAGACCCGCCCCTTCGCCGAGGACCCGCGCGTGTGGCCGCTGCTGCTGGCCCTCGGCGTGGCTGCGACGCTGAGCGGGCTCGGCCTGGCGCTCGTCGGCCGTCGCGACCTGGGCAGCGCCGTCGTGCCGAGCCGTCCCGGGCCCGCCCGGGCGGGCCGGTTCCTGGCGAGCGGTCCAGGGCAGGCCCTGCGCCAGCACGGTGCGACCCTGCTGGCCTGGGCCGTCGGCGCCGCGCTGGTCGGGGCCGTGTTCGGCGCGTTCACCGACGACATCGCCGACGTCGTGGCCGCCAACCCCGACCTGCAGGCCGCCTTCTCGGCGGGCGCCGCCGGCGACCCGACGAGCTGGTACCTGTCCTTCACGCTCGTGCTGGTGATGCTCATGGCCTTCGGCGCGGCCGCGCAGGTCGTGGCCCGGGTGCGCCGCGAGGAGACCGGCGGTCGCCTGGAGGCGGTGCTGGCACGGTCCGTGCGGCGCACGACCTGGCTCGGCACGCACGCCGCGGTCGCGGTGCTCGGCGGCGCGCTGGTCGCGCTGGCCGGCGGCGCCGGGCTGGCGGTGACCGCCTCGCGCGCCACCGGCGACACCGCCGGGGCGTTCACCGCCGCGGCGCAGTACCTGCCCGCGGTGGTCGCCGTCGTCGGCCTCGGGGTGGCGCTGCTCGGCCTGCTCCCCCGGGCCCTGGGGCTGCTCTGGGTGGCGATCGCCTACGTCGCGGTCGTCGAGATGCTCGGCGAGACGCTGAGCATGCCCGACGCCGCGCTCCAGGTCTCCCCGCTGCACGCGATCGGGCGGCTGCCGGCCGAGGACCCGTCCGGCACCGGGGTCCTGGTGGTCGGGGCCGTCGCGGTGGCGCTGCTCGGCGCCGGGCTGGCCGGCTTCCGCCACCGCGACGTGCCCCGCTGA	MTAPGTGTTGRTGDGLTAVLRLQLRTGWKALLAWVAGLVGVYAATVAAIDTTYGTPEQLATYQATVGSDPTMAAINGTPYGADTLGGVVANEFGFIAAIAVPLMGLLLVTRSTRAAEENGLLELLRSRAIGSRAPWSAALGVTAGALVLVGLGMAGSLLAYGVEAADAALYGASMTALGLVFAGVATLAGQLLRRAAGVVAVGIVVLGAAYVFRAIGDVEDNGWKWLSPLAWQQETRPFAEDPRVWPLLLALGVAATLSGLGLALVGRRDLGSAVVPSRPGPARAGRFLASGPGQALRQHGATLLAWAVGAALVGAVFGAFTDDIADVVAANPDLQAAFSAGAAGDPTSWYLSFTLVLVMLMAFGAAAQVVARVRREETGGRLEAVLARSVRRTTWLGTHAAVAVLGGALVALAGGAGLAVTASRATGDTAGAFTAAAQYLPAVVAVVGLGVALLGLLPRALGLLWVAIAYVAVVEMLGETLSMPDAALQVSPLHAIGRLPAEDPSGTGVLVVGAVAVALLGAGLAGFRHRDVPR				NA	NA	NA	NA	NA
AK001_00696	1542	ahcY	COG0499	Adenosylhomocysteinase	ATGACTGACACGATCGCGACGACCGACCGGCCGGCCGGCGGCTTCGACGAGGCGCCGGGCCGCTACAAGGTCCGCTCGCTCGCCCTGGCCGAGGCGGGCCGGCACCAGATCCGGCTCGCCGAGCACGAGATGCCGGGCCTCATGGCGCTGCGTGCCGAGTACGGCGACACGCGCCCGCTGGCCGGCGCGCGCATCGCCGGGTCGCTGCACATGACCGTGCAGACCGCCGTCCTCATCGAGACGCTCACCGCGCTCGGCGCCGAGGTGCGCTGGGCGAGCTGCAACATCTTCAGCACCCAGGACGAGGCCGCGGCCGCCGTCGTCGTCGGCCCGCACGGCACGCCGGACGACCCGCAGGGCGTGCCGGTCTTCGCCTGGAAGGGCGAGACCCTCGAGGAGTACTGGGACTGCACCGAGCAGATCCTCGCGTGGCCCGGCGGGGAGGGCCCGAACTTGATCCTGGACGACGGCGGGGACGCGACCCTGCTCGTCCACCTCGGTCTGCAGTACGAGCGCGTCGGCGCCGTGCCGCCGAACACGCTGCCCGGCGAGCCGGACCACACCCACGAGATGAACGTCGTGCGCGACGTCCTGCGCCGGGACCTCGAGATCGACCCGCTGCGCTGGACCGGGATCGCCGAGCAGATCGGGGGCGTCACCGAGGAGACGACCACCGGCGTGCACCGGCTGTACCACCTGGCCGAGTCCGGCGAGCTGCTGTTCCCGGCGATCAACGTCAACGACTCCGTCACGAAGTCGAAGTTCGACAACAAGTACGGCATCCGGCACTCCCTGCCCGACGGCATCAACCGGGCCACCGACGTGCTCGTCGGCGGCAAGGTCGCGTTCGTGGCCGGCTACGGCGACGTCGGCAAGGGCGCGGCGGAGGCCTTCCGCGGCCAGGGCGCCCGCGTGATCGTCTCCGAGGTGGACCCCATCTGCGCGCTGCAGGCCGCCATGGACGGGTTCCAGGTCGCGCGCCTGGAGGACGTCGTCGGCGAGGCGGACTTCTTCATCACCACCACCGGCAACAAGGACGTCGTCCGGGTCGAGCACATGCTGGCCATGAAGGACAAGGCCGTGGTCGGCAACATCGGCCACTTCGACAACGAGATCGACATGGCGGGCCTCGAGGCCGTGCCGGGGGTCGTCAGGACCGAGATCAAGCCGCAGGTGCACGAGTGGACGCTGCCGGCCGACGACGACGACGGCGACCGCGCCGAGCGGTCGATCATCGTGCTGTCCGAGGGGCGTCTGCTGAACCTGGGCAACGCGACCGGCCACCCGTCGTTCGTGATGTCCAACTCGTTCGCGAACCAGGTCATCGGCCAGCTCGAGCTGTTCGCCGACATGGCCCGGCCGGCCGAGGAGCGGCAGTACGCGCGCCAGGTCTACCGGCTGCCCAAGGTGCTCGACGAGAAGGTGGCCCGGCTGCACCTGGACGCCCTCGGTGTGCGCCTGACCGACCTCAGCACCGAGCAGGCCGAGTACCTCGGCGTCCCGGTCGAGGGGCCGTACAAGCCGGAGCACTACCGGTACTGA	MTDTIATTDRPAGGFDEAPGRYKVRSLALAEAGRHQIRLAEHEMPGLMALRAEYGDTRPLAGARIAGSLHMTVQTAVLIETLTALGAEVRWASCNIFSTQDEAAAAVVVGPHGTPDDPQGVPVFAWKGETLEEYWDCTEQILAWPGGEGPNLILDDGGDATLLVHLGLQYERVGAVPPNTLPGEPDHTHEMNVVRDVLRRDLEIDPLRWTGIAEQIGGVTEETTTGVHRLYHLAESGELLFPAINVNDSVTKSKFDNKYGIRHSLPDGINRATDVLVGGKVAFVAGYGDVGKGAAEAFRGQGARVIVSEVDPICALQAAMDGFQVARLEDVVGEADFFITTTGNKDVVRVEHMLAMKDKAVVGNIGHFDNEIDMAGLEAVPGVVRTEIKPQVHEWTLPADDDDGDRAERSIIVLSEGRLLNLGNATGHPSFVMSNSFANQVIGQLELFADMARPAEERQYARQVYRLPKVLDEKVARLHLDALGVRLTDLSTEQAEYLGVPVEGPYKPEHYRY				NA	NA	NA	NA	NA
AK001_00697	393	tarD	COG0615	Glycerol-3-phosphate cytidylyltransferase	ATGAAGCGAGTCATCACCTACGGCACCTACGACCTGCTGCACTACGGGCACATCGAGCTGCTGCGTCGCGCCCGCGCCCTCGGCGACTACCTGATCGTGGCGCTGTCCACGGACGAGTTCAACGCGGGCAAGGGCAAGGCGTCCTACTTCTCCTTCGAGGAGCGCCGCCGCATGCTCGAGGCGATCCGGCACGTCGACCTCGTCATCCCCGAGCGCACCTGGGAGCAGAAGGCGGACGACATCCGGATGTACCACGTCGACACCTTCGTCATCGGCGACGACTGGACCGGCAAGTTCGACGACCTCAAGCCGCTGTGCGAGGTCGTCTACCTGGAGCGGACCCCGGAGATCTCCACGACGCAGATCAAGGCGGGCCTCGCCTCCAAGAGCTGA	MKRVITYGTYDLLHYGHIELLRRARALGDYLIVALSTDEFNAGKGKASYFSFEERRRMLEAIRHVDLVIPERTWEQKADDIRMYHVDTFVIGDDWTGKFDDLKPLCEVVYLERTPEISTTQIKAGLASKS	PGPT0024325_626	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE,PGPT0024325-tagD-K00980	NA	NA
AK001_00698	1248			hypothetical protein	ATGGGCTCGACGACGCACACGGCATCGCGCATGCACCTCCTCGACCTCCTGCGCTTCGGCGCGGCGATGGCCGTCGTGGTGTACCACTTCACCGCGACGCCGACGGCGAACCGCTACTGGGGCGCGGACGTCACGAGCCTGTTCGAGGGGATCAACCAGGTCACCCGCTACGGCTGGCTCGCCGTCGAGGCCTTCTTCGTGATCAGCGGCTTCGCGATCCTGTGGAGCGTCCAGGGCCGGACGCTCGCCCAGTTCACCGGCTCGCGCGTCGGCCGCCTCTACCCCGCCTTCTGGGCGTGCGTCGTCCTCACCGCGGTGCTGCAGGCCCTGTGGGACGACGGGCGGCACCTGACCGCCGTCGAGACCGTCGCGAACCTGACGATGGCGCCCGACCTGCTGGGGGCCGAACCCTCCCAGGTCGTCTACTGGACCCTGCTGGTCGAGCTCAAGTTCTACCTGCTCGTCGGCCTCGCGCTCGCCGTCGGCCCGCTGACCCGGGGACGGGCCGTCGCCCTGGCGCTGGGCTGGCCCGCCGCCGGCCTGGTCGCCCAGGGCCTCGGAGCGCCCGGACTGGCCGAGGCCCTCGCCGTCCGCCACGCCGTGTACTTCGGCATCGGCATGCTGCTCTTCGTGCTCTGGCAGGACCTGACCGGCCGCGGCGCCGCACCGGTCGCCGGACCCCGGTCGCCCTCCACCCGCGCGGTCGCGGCGGCGCTCGCCGTGCTCGTCGTGGCGGGCGCCGCCCGCGTGGTCCGGTCCGCCCAGCTGGCCCAGGAGCTGCAGGGCGTCCGGGTGGACCCGGCGGTCGCCGTCGGGGTGCTGCTGACCAGCATCGCCCTCGTCGCCCTCGCCACCCACCCGGGCGTCACGGTGCGGCAGCGCTGGGCCGCCGGTGCGTGCGTCACCGCGGGCGCCCTCACCTACCCCGTGTACCTGGTGCACACCCAGTTCGGCTGGGCCGTGACCCAGTGGCTCACCGGGGCCGGAGCGGGCCCCGGCGCGACGCTGGCGGCGGCGACGGCCGTCTCCCTGCTGCTGGCCGCCGCGATCCACCACGGCGTCGAACGGCCGTTCTCGCGCCCGATGCGGCGGGCCGTCACCGAGCGGCTGCAGCGCACGGCACCGGGCCCCGGCACGACCGGACCGGTCCGTCGACCCGCCCGGTCCGAGCTGCTCGGGCTCGGGGAGCACCACCGCGGGGCCGCCCTGCCGGCCGGGGCCCCGATGCCCGACCCCGTCCTGCGCTGA	MGSTTHTASRMHLLDLLRFGAAMAVVVYHFTATPTANRYWGADVTSLFEGINQVTRYGWLAVEAFFVISGFAILWSVQGRTLAQFTGSRVGRLYPAFWACVVLTAVLQALWDDGRHLTAVETVANLTMAPDLLGAEPSQVVYWTLLVELKFYLLVGLALAVGPLTRGRAVALALGWPAAGLVAQGLGAPGLAEALAVRHAVYFGIGMLLFVLWQDLTGRGAAPVAGPRSPSTRAVAAALAVLVVAGAARVVRSAQLAQELQGVRVDPAVAVGVLLTSIALVALATHPGVTVRQRWAAGACVTAGALTYPVYLVHTQFGWAVTQWLTGAGAGPGATLAAATAVSLLLAAAIHHGVERPFSRPMRRAVTERLQRTAPGPGTTGPVRRPARSELLGLGEHHRGAALPAGAPMPDPVLR				NA	NA	NA	NA	NA
AK001_00699	957			hypothetical protein	ATGAGCACTCATCGCAAGCACCTTCGCCGCCGCCAGGGCCTGGCCCTCGTCTCCGCCGCGGCGCTCGGCCTCACCCTGGCCGCCTGCAGCACGGACGACGGCGGTTCGGACGACGCCGGTGCCGAGGGCACCGACGAGTCGACCGAGGAGATGGCCGACGGCGACATGGGCACCATCACGCTCGGCTACCTCCCGGCCTGGACCGACGGTCTGAGCATGGCCTACCTCGCGGACAACCTGCTCACCGAGGCCGGCTACACGGTCGAGCACCAGGACGTCCAGGAGGCCGGCCTGCTCTACACCGCTCTCGCCGAGGGCGACGTCGACATGTACCCGTCCGCGTGGCCCGAGGTCACGCACGCGCAGTACATGGAGGAGTACGGCGACTCGATCGACGACATCGGCACGTACTACGACAACGCCAAGCTCACCATGGCGGTGCCGGAGTACACCGAGGTCGACTCGATCGCCGAGCTGGCCGACAACGCCGACCTGTTCGGCAGCACCATCGTGGGCATCGAGCCGGGCGCCGGTCTGACGGCGGCCGTGCAGGACTCGGTCATCCCGACCTACGGCCTGGACGAGGCGGGCTACGAGCTGCAGACCTCCTCCACCACGGCGATGCTCACCGAGCTGGAGCAGGCCACCGAGGACGAGGAGGACATCCTCGTCACGCTGTGGCAGCCGTTCTGGGCGAACGCCGCCTACCCGGTCAAGACGCTCGAGGACCCGGAGGGTGCGCTCGGTGAGGCCGAGGGCCTGCACTTCCTGGGCACCAGCGGCTTCGCCGACGAGTACCCGGAGGCCGCCGAGATCATCGGTGGCATCCAGCTCGACGACACGCAGTTCGGCACGCTCGAGGACCTCGTCGTGAACGAGAACCCGGACGACCCGGCTGCCGGTGTCGAGGCCTGGCTCGAGGAGAACCCCGACGTGATCCCGATGCCGGAGAGCTGA	MSTHRKHLRRRQGLALVSAAALGLTLAACSTDDGGSDDAGAEGTDESTEEMADGDMGTITLGYLPAWTDGLSMAYLADNLLTEAGYTVEHQDVQEAGLLYTALAEGDVDMYPSAWPEVTHAQYMEEYGDSIDDIGTYYDNAKLTMAVPEYTEVDSIAELADNADLFGSTIVGIEPGAGLTAAVQDSVIPTYGLDEAGYELQTSSTTAMLTELEQATEDEEDILVTLWQPFWANAAYPVKTLEDPEGALGEAEGLHFLGTSGFADEYPEAAEIIGGIQLDDTQFGTLEDLVVNENPDDPAAGVEAWLEENPDVIPMPES	PGPT0013640_2029	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002	NA	NA
AK001_00700	915	opuAB	COG4176	Glycine betaine transport system permease protein OpuAB	ATGGTCCCGATGTCCACCTCTGACGACACTCTGATCCCCAAGGTGCCGGTCGGTGAGGCCGTCGACAGCGGGATCGACTGGATCAACGACAACCTCGAGTGGCTGCTGGACGGCATCACCGCCGTGATGTCGTTCCTCATCGACGGCATCACGGACCTGCTGCTGCTGCCGCCGCCGCTCGTCCTGGCCGCGCTGTTCACGCTGCTCGCGCTCCTGGTGCGGTCGTGGGGCTTCGCCGTCTTCACGCTGATCGGCACGCTGCTGATCATCAGCATGGAGATGTGGGAACCCGCGATGGAGACCCTCAGCCTGGTGCTGGTCGCCACCGTCGTCGCGGTGATCGTCGCGGTACCTGTCGGCATCCTCGCCGCCCGGAACGACGCGGTCAGCGCCTTCGTCCGCCCCATCCTGGACTTCATGCAGACGATGCCCGCCTTCGTCTACCTGGTCCCGGTGGTCATCTTCTTCGGTATCGGCGTCGTCCCCGGTGTCTGCGCGACCATCGTGTTCGCGCTGCCGCCCGGCGTCCGCCTCACCGAGCTGGGCATCCGTCAGGTCGACGGCGAGACCGTCGAGGCGGGCGAGGCCTTCGGCGGCACGCCGTGGCAGATCCTGCGAGGCATCCAGCTGCCGCTGGGCCTGCCGACCATCATGGCCGGCGTCAACCAGGTCATCATGCTGGCCCTGTCGATGGCGGTCGTCGCCGGCATCGTCGGCGCGGGCGGCCTCGGTGGTGAGGTCGTGCAGTCGATCTCCACGCTCGACGTCCCGCAGGGTGTCGAGGGCGGCCTCGCCGTAGTCATCCTGGCCATCTTCCTCGACCGCACCACCGGTGCCATCGGCCAGCCGACGGGCCGCTCGCTCCTCGCGGTCATCAAGAGCCGCAAGCTCGCGGCCGAGACCGCCGCGGCCTGA	MVPMSTSDDTLIPKVPVGEAVDSGIDWINDNLEWLLDGITAVMSFLIDGITDLLLLPPPLVLAALFTLLALLVRSWGFAVFTLIGTLLIISMEMWEPAMETLSLVLVATVVAVIVAVPVGILAARNDAVSAFVRPILDFMQTMPAFVYLVPVVIFFGIGVVPGVCATIVFALPPGVRLTELGIRQVDGETVEAGEAFGGTPWQILRGIQLPLGLPTIMAGVNQVIMLALSMAVVAGIVGAGGLGGEVVQSISTLDVPQGVEGGLAVVILAIFLDRTTGAIGQPTGRSLLAVIKSRKLAAETAAA	PGPT0013635_1215	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001	NA	NA
AK001_00701	1194	opuAA	COG4175	Glycine betaine transport ATP-binding protein OpuAA	ATGCTGAAGGACGGCGCCGACCGCGCCGAGCTCCGCAAGGAGGGGCTGACGGCTGCGGTCATCGATGCCACCTTCGACGTCCAGCCCGGCGAGATCTTCGTCGTCATGGGTCTGTCCGGATCCGGTAAGTCGACGTTGATCCGTATGGTCAACGGTCTGCTCGAGCCGACCGACGGCGTCATCACCATCGACGGACAGGACGTCACCCACCTGTCCGCGAACGCCCTGCGCGAGGTGCGCCGGACCAAGGTGTCCATGGTGTTCCAGCACTTCGCCCTGCTGCCGCACCGCACCGTCGGGGAGAACGCCGCCTACCCCATGCAGCTGCGGGGGGTGAACAAGGCCGAGCGCGAGGCCCGCGCCGAGGAGGCCCTCGGCATGGTGGGCCTGGGCGGCTGGGGCGGCTACATGCCGGACCAGCTCTCGGGCGGTATGCGCCAGCGCGTCGGGCTGGCCCGAGCGCTCGCCGCCGGCACCGACGTCATGCTGATGGACGAGGCGTTCAGCGCGCTCGACCCGCTGATCCGCAAGGAGATGCAGGACCAGCTCCTGGAGCTGCAGTCCGAGCTCGGCAAGACCATCCTGTTCATCACCCACGACCTCAACGAGGCGATGCGCCTCGGTGACCGCATCGCCATGATGCGCGACGGTCGCGTGGTGCAGGTCGGCACCTCCGAGGAGATCCTCAACGAGCCGGCCAACGACTACGTCGCCCAGTTCGTGGCCGACGTCGACCGCTCGCGCGTGCTGACCGCCGGTGCGGTCATGGAGCGCCCGGTGGCCGTGGTGGGCCCGGACTCGGGTCCCAAGGCCGCCCACAAGCTGATGCGCGAGCACCAGACGTCCTCGCTGCTCGTCGTCGGGCGCGACCGCACGGTCGCCGGCGCCGTCCTCGAGAGCGACGTCGCCGACGCGGTGCGGCGCGGTGTCGAGAAGCTGCCGATCAGCCACGTGCCCGTGCCACGGGTGTCGCCCGACGCGGCGCTGGCCGAGCTGTTCCACCACGCGGCCGAGAGCAAGGCTCCGATCGCCGTCGTCGGTGAGTCGGGGCGCCTGGAAGGTGTCATCCCGCGGGTGACCCTGCTCAGCGCGCTGTCCGGCCCCTCGATGGACAGCCCCGACGTGGACGCGGACGGCCAGGGCGAGGGCCCTGCCGACGGTGAGCCCGTTCTCGACCCGGCAGGAGCGAAGTGA	MLKDGADRAELRKEGLTAAVIDATFDVQPGEIFVVMGLSGSGKSTLIRMVNGLLEPTDGVITIDGQDVTHLSANALREVRRTKVSMVFQHFALLPHRTVGENAAYPMQLRGVNKAEREARAEEALGMVGLGGWGGYMPDQLSGGMRQRVGLARALAAGTDVMLMDEAFSALDPLIRKEMQDQLLELQSELGKTILFITHDLNEAMRLGDRIAMMRDGRVVQVGTSEEILNEPANDYVAQFVADVDRSRVLTAGAVMERPVAVVGPDSGPKAAHKLMREHQTSSLLVVGRDRTVAGAVLESDVADAVRRGVEKLPISHVPVPRVSPDAALAELFHHAAESKAPIAVVGESGRLEGVIPRVTLLSALSGPSMDSPDVDADGQGEGPADGEPVLDPAGAK	PGPT0013630_439	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000	NA	NA
AK001_00702	636			hypothetical protein	ATGCTCGCCCTGACCTTCTCCACCGGGGTCGCCGACGCCGTCGGCTTCCTCGGCCTCGACCGGGTCTTCACCGGCAACATGACCGGCAACGTCGTCATCCTCGGTATGGGACTCGCCGGCGCCGACGACCTGCCGGTGGTCGGCCCGCTCCTGGCGTTCGTCACCTTCCTCGCCGGTGCCGCCGCCGGCGGGCTCGTGCTCCGCGCCGACGACGTCGGGTGGACCGGACGGACCACGGCGTGCTTCGGCGCGGTCGGTCTCGTCCTCGTCGCCCTCACCGTGCTGCTGGGGACCTCCGGCGGCGACCTGTCCCACGGCGTCCAGCTCGTCGTCACCGGCCTGCTGGCCGGCGCGATGGGCCTCCAGGCGGCCGCCGCCCGTCACCTGGCGGTCAAGGAGATCACCACGGTGGTGGTCACCAGCGCGATCACCGGACTGGCCATGGACTCGCGGCTGGTCGGCGGTCACGGCCGGCACGTCGGCCGCCGCGTCGCGGCGATCCTCCTGCTCGGGGCCGGGGCCGGCGTCGGCGCGGCACTGCTGCAGATCCACCTGGCCTGGGGCGTCGCCCTCAGCGCGGCCGTCGCGCTGACCGTGACCGCCGTCGGCCACCTCCGCGGACGGGAGACCGCATGA	MLALTFSTGVADAVGFLGLDRVFTGNMTGNVVILGMGLAGADDLPVVGPLLAFVTFLAGAAAGGLVLRADDVGWTGRTTACFGAVGLVLVALTVLLGTSGGDLSHGVQLVVTGLLAGAMGLQAAAARHLAVKEITTVVVTSAITGLAMDSRLVGGHGRHVGRRVAAILLLGAGAGVGAALLQIHLAWGVALSAAVALTVTAVGHLRGRETA				NA	NA	NA	NA	NA
AK001_00703	1788	ywrD	COG0405	Glutathione hydrolase-like YwrD proenzyme	ATGACCTTCACCCCAGCGCCCGCACCGACCACCCGCCCCGACCTGCAGGGCTCGTTCGGCATGGCCGCCTCCACCCACTGGTCGGCCACCGGCAGCGCGCAGTCGGTGCTGGAGCGCGGCGGCAACGCGTTCGACGCCGCCTGCGCCGCGGCGTTCGTGCTGCACGTCGTCGAGCCGCACCTCAACGGCCCGGGCGGCGACCTGGTCGGCCTGTTCGCGACCGCCGACGCACCGGGCCAGCCCCAGGTGCTCAGGGGCCAGGGACCGGCGCCGGCCGCGGCCACGATCGCGCACTACCGCGACACCGAGGGCCTCGACCTGGTGCCCGGTTCCGGTGCCCTGGCCGCCGCCGTGCCGGCCGCCGTCGACGCCTGGCTCGTCCTGCTGCGCGACCACGGGACCTGGACCGTGCGCGACGTGCTGACCTACGCCGTCGGGTACGCCCGCGACGGGCACCCGGTGCTGCCGGCCGTCGCCGCGACGATCGGACGCGTGGCCGACCTCTTCGCCGAGCACTGGCCGACGTCCGCCGCGCGGTGGATGCCGCACGGCCGGCCGCCACGGCCCGGCGAGACGGTGACCAACCCGGCCTACGCCGCCGTCCTGGACCGGCTCGGCGACGCCGCCGACGCCGCACCCTCGCGCACCGCCGGGGTGGAGGCCGCGCGCACCGCCTGGCGAGAGATCGTCGGGCCCGCCGCGGAGGAGTTCGTCGCCACGCCGCACCGGCACTCGGACGGCCGCGACCACGCGGGCGTGCTGACCGCCGCCGACCTGGCCGGCACGGGCGCGGGCTACGAGGAGCCGGCGACGATCTCGTTCCGGGACCGCACGGTCGTCAAGCCCGGTGCGTGGACCCAGGGCCCCGTGCTGCTGCAGTCCCTGCGCCTCCTCGACGGGTTCGAGGACGACCGGCTGGACGTGGCCACCGAGCTCGGCGCCCACACAGTGCTCGAGACGCTCAAGCTCGCGCTCGCCGACCGGGACGTCTGGTACGGCGACACCGACGTGCCGCTCGACCACCTCCTGTCCGCGGAGTACGCCGCGCAGCGCCGGGACCTGATCGGGGACAGGGCCTCGCACGAGCTGCGGCCCGGCAGCGTGCCCGGCCGGACCGCTCCCCCGCTGCCCCCGCTGCGCACGACCGGGGCCGCGTCGTCGGGCACCGGGGAGCCCACCGTCCAGGTGAGCGGCACGACGCGGGGCGACACGTGCCACGTGGACGTCGTCGACCGGTGGGGCAACATGGTCAGCGTGACGCCGTCCGGCGGGTGGCTGCAGTCCTCGCCGGAGATCCCCGCACTGGGGTTCTGCCTCGGCACGCGGCTGCAGATGACCTGGTTGGACGAGTCCTCCCCGTCCCGGCTGGCGCCCGGGGTCCGTCCCCGGACCACGCTGTCGCCCACGCTCGTGCTCGCCGACGGCTTCCCCGTGATGGCCTGCGGCACGCCCGGCGGCGACCAGCAGGACCAGTGGCAGCTGCCCTTCCTGCTGCGCACGCTGGTCGGCGGGTACACGCCGCAGCAGGCGATCGACGCGCCGACCCTGCACACGACGTCGATGGCCGACTCGTTCTGGCCCCGCACCTGGACGCCTGGCGGCGCCGTCGCGGAGTCCCGGCTCGGTACGGACGTGCTCGACGGGCTGGTACGGCGCGGCCACGCGCTGACCGAGGCCGGGCCGTGGTCGCTCGGCCGGCTGTCGGCGGTGACCCGGGACCCGGCGACCGGTCGGCTCGGTGCCGCGGCCAACCCGCGCGGGGCGCAGGGGTACGCGGCCGGGCGGTGA	MTFTPAPAPTTRPDLQGSFGMAASTHWSATGSAQSVLERGGNAFDAACAAAFVLHVVEPHLNGPGGDLVGLFATADAPGQPQVLRGQGPAPAAATIAHYRDTEGLDLVPGSGALAAAVPAAVDAWLVLLRDHGTWTVRDVLTYAVGYARDGHPVLPAVAATIGRVADLFAEHWPTSAARWMPHGRPPRPGETVTNPAYAAVLDRLGDAADAAPSRTAGVEAARTAWREIVGPAAEEFVATPHRHSDGRDHAGVLTAADLAGTGAGYEEPATISFRDRTVVKPGAWTQGPVLLQSLRLLDGFEDDRLDVATELGAHTVLETLKLALADRDVWYGDTDVPLDHLLSAEYAAQRRDLIGDRASHELRPGSVPGRTAPPLPPLRTTGAASSGTGEPTVQVSGTTRGDTCHVDVVDRWGNMVSVTPSGGWLQSSPEIPALGFCLGTRLQMTWLDESSPSRLAPGVRPRTTLSPTLVLADGFPVMACGTPGGDQQDQWQLPFLLRTLVGGYTPQQAIDAPTLHTTSMADSFWPRTWTPGGAVAESRLGTDVLDGLVRRGHALTEAGPWSLGRLSAVTRDPATGRLGAAANPRGAQGYAAGR	PGPT0002935_1073	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681	NA	NA
AK001_00704	1059			hypothetical protein	ATGAGTAAGCAGGATCGGTCGATCGAGCTCAGGGACGACGGGCCCCCGAACGCTATGGATGCCTGCGACGTCTGGAACTCCTGGGTGTTGCCCAACCACAAGGTCGTGTACGTCAACGTCGCGAAGAATGCGAGCACGAGCTTCAAGTGGCTCATGGCCGAACTCTCGGGCAAGGACGCGGAGGGCTTCCATCAGGTCATGAACCTTGCCCCGACGCGTCAACAGACAATCCATCGCAAGTCAGCCTGGACCGGCGTCGATTCGCTCGGAGCGTTGTCACCTGACGAGCGGGCTCTGATCTCGCCAGACAACGGTTGGTTCGTCTTTGCACTGGTCCGTGACCCGCGGCTACGGGTGTGGTCGGCGTGGCAGTCCAAGTTCCTCGTCGGCAACCCTCGTCACTCGTTCGACAAGTTCCGTGAAGCGCCCTGGTTGCCCCGGGTGCCCAGCCAGGACCAGGACGTGATCGACGATTTCGCCGAGTTTGTCCGGATACTGGGGACTCGGCGGGGACGGGCGGTATTTCGCGACGGTCACTTCCATCCGCAGGTGGCGTTGCTCAACGAGAAGACGGTGCCGTATAGCCATCTCTACCAGACCTCCCAGATCCCGACCTTGCTCGCAGATCTCGGCGCGCACCTCCGCGCGCAGGGCTACGACGCAGAGCTTGGTCCGCTCGCCCGCGAGAACGAGACCCCGTTGCCCGTGAAGGGACGGCTGTTTCCCCCTGAGGTCCGCGAGTCGTTGGATCGGCTCTATGCAGATGACCTCGCACGTTTTGGGTACCTGTGGGACTTCGACGAGGTTTTGGCAAGAGACCCCGCCTGGACAGACGCCGCATTCAGAGACATCGCCGCTCGTGTCTCCGCGGGTCAGCGTCTGGCTGATGTCGCGGCGGCCGGACGTCACGCACGACAGGAGCTGAAGGACCGGGACAAGGAAGTCGCAGTGCTGCGGAACCGGGTCGCTGAACTGGAGGCTGCGCTGGAGCGACGAACGCTGCGGGGTGCCCCGCGCGCCGCCCTGGCGCGCATCCGTCGGACCGTCAAGAGCCGCTGA	MSKQDRSIELRDDGPPNAMDACDVWNSWVLPNHKVVYVNVAKNASTSFKWLMAELSGKDAEGFHQVMNLAPTRQQTIHRKSAWTGVDSLGALSPDERALISPDNGWFVFALVRDPRLRVWSAWQSKFLVGNPRHSFDKFREAPWLPRVPSQDQDVIDDFAEFVRILGTRRGRAVFRDGHFHPQVALLNEKTVPYSHLYQTSQIPTLLADLGAHLRAQGYDAELGPLARENETPLPVKGRLFPPEVRESLDRLYADDLARFGYLWDFDEVLARDPAWTDAAFRDIAARVSAGQRLADVAAAGRHARQELKDRDKEVAVLRNRVAELEAALERRTLRGAPRAALARIRRTVKSR				NA	NA	NA	NA	NA
AK001_00705	2580			hypothetical protein	ATGTCGTTGAAGCAGGCGATCGACAAGTCGCGCGAGCGCTACTCGCGCGCACTCGACTTCGAGTCGCATGCTTTCTGGCGGTCCCGCCCGATCGTGCCGGGAACCGTCCTGTACGAGTCCTTCTCCGGCAACGGCATGCTCTGCAATCCCCGGGCCGTCTTCGAGATGCTGCTCGACGACCCCGCCTACCGCTCGTTGACCCACGTCTGGGCGCTCGACTCGACCGAGGCGATCGACGCGGCCCGCTCCCGGTGGCCCGACCGGGTCCGCTTCGTCCTCAAGGAGTCGAGGGCCTACTACCGCGCCCTGGCCACCTCCCAGTACCTCGTCAACAACGCGACCTTCCCCCCGCAGTTCAGCAAGCGGGAGGGCCAGACGTACCTCAACACTTGGCACGGCACCCCGTTGAAGAAGATGGGGTACGACATGGCCGAGGGCGGGAGCAGCTCGCGCAACGTCGTTCGCAACTTCGTCATGGCCGACTACCTGGTCTCCTCGAGCCCGTTCATGACGGAGCAGATGTACGCCACCGGCTACAAGCTGCGCGGGATCTTCCGCGGCGAGATCCTCGAGAGCGGTCAGCCCCGCACCGACGTGCAGCTCACCGAAGGCGCCGGCGGCAGGGCGCGCCGGAAGCTGGCCGAGGCGGGCCTCGACGTCGAGGGGCGCCGAGTCGTGCTCTACGCGCCCACCTGGCGAGGATCGTTCTACGCGCCGGCCGACGAGACGAAGCAGCTCCTCGATGTCGTCGAGTCGTTGCAGACCCGTCTCGGCGACGCGTACCGGGTGCTGCTTAAGACGCACCAGGTCGCCTACGGGTTCGCCCGCTCCTCGGGAACCGGCCGCGACGTCGTCGTGCCGAACGACATCCCCACGAACGTCGTGCTCTCCGCCACGGACCTGCTGGTCACCGACTACTCCAGCATCTTCTTCGACGTGCTGCCGACGCGGACGCCGATCGTCCACTTCGCGCCGGACGCCGCGCACTACGGCGGCGCGCGTGGGCTGTACGAGGATCTGGGCGCCCTTCCCGGTCCCGTGGCGACCACGCGAACCGAGCTCGGCAAGGCCGTGCTGCGGCTGGCCGCGGAGGGGCTCGAAGGGCTCGAACCGGATCGACGGGCGAACTACGACCGCTTCGTGGCCACCTATGCCCCGCACGACGACGGCGGTGCGACGAGGCGCGTCGTCGAGACCGTGTTCGGCGGCCGACCGGCCGGGGTCGTGCACCGTGACCTGGACGACGACGGCCGGACGTCGCTCCTCGTCTACCTCGGAGGGCTTCGGTCGAACGGCATCACGACCTCCGTCCTGAACCTCCTGTCGGCGATCGACCCCGACAGGTACGACGTCTCGGCCTTCTACGGACCGCCGCAGACGCAGGACGAGGTGCAGAACGAGGCACGCATCCCGTCCACGGTCCGGCTGTTCCCCCGCGTCGGCGGATTCAACGGGTCCAAGCGGCTGCGCAATGCCCGGCGCGCGCTGTTCAACGGACTCGACCAGACGCACTCCCGCGTCAGCCGGCAGCGGATGCAGCCCTACTTCGAGGACGAGTGGCACCGCTGCTTCGGCGACTCGCGCTTCGACCACATCGTCGACTTTTCCGGCTACGGGCCGATGTGGCCCAACATCCTGCTCGCCGCGCCGACCGGCCACAAGTCCATCTGGCTGCACAACGACGTCATGGCCGACGCGCAGCGCGAGGTCGACGGAAAGCGAAAACTCGAACATCTGCTGCACGCCGTGTTCTCCACCTACGATCAGTTCGACTCGCTCGTCTCGGTGTCCGAGGAGCTGGCCCGGATCAACGCGTCGAAACTCTCGGACTACGCCCCGGCGGAGAAGTTCACCTTCGCGCGCAACCTCATGGATGCGGAGCGGGTTCGTCGTATGGCCGGCACGGACGTCGACGGCTCGCCGCATCGACAGGTCGGACCGGACGAGCGTCTGGGCAAGAACCTCGCGACAGACCTGCACACGTTGGCCGACCTGTACGGTGCGCGCCAGGTCGACGAGGCGTGGACGCGTCAGCAGGTCGTCCGCGCGGCCTTCGGCCACCGGAAGGGCACCCGGTTCATCACCATGGGCCGGCTGTCGCCGGAGAAGAACCATGCACGGCTCGTCCAGGCGTTCGCCACGGTCGTCGCCGAGGAGCCGGACAGCCAACTGGCGATCCTGGGTGGGGGACCCCTCCTGCCCGCGCTCGAGAACCAGGTCGCGAGCCTCGGCCTCCAGGACAACGTCCGGCTGACCGGCTTCCAACCCAACCCGTACGCGGCACTGGGCGAGGCGGACTGCTTCGTCCTGTCCAGCGACTACGAGGGCCAGCCGATGGTCATTCTCGAGGCGCGCACACTCGGCATCCCTGTCATCACAACCGAGTTCGGGTCCGCAAAGGGAGCGCTCGCCGACGACGAGGGTCTCCGCGTGCCCCGGGACGCCGACGCCCTCGCCCAGGGAATGATGACCTTCATCCGGTCGGGCATCCCCCAGCGTCCGTTCGACACCGCGGCCTACAACCGCGAGGCTCTCCGAGAATTCTTCGACGCGGTCGGTGCGACCAGCCGCGGCCACTGA	MSLKQAIDKSRERYSRALDFESHAFWRSRPIVPGTVLYESFSGNGMLCNPRAVFEMLLDDPAYRSLTHVWALDSTEAIDAARSRWPDRVRFVLKESRAYYRALATSQYLVNNATFPPQFSKREGQTYLNTWHGTPLKKMGYDMAEGGSSSRNVVRNFVMADYLVSSSPFMTEQMYATGYKLRGIFRGEILESGQPRTDVQLTEGAGGRARRKLAEAGLDVEGRRVVLYAPTWRGSFYAPADETKQLLDVVESLQTRLGDAYRVLLKTHQVAYGFARSSGTGRDVVVPNDIPTNVVLSATDLLVTDYSSIFFDVLPTRTPIVHFAPDAAHYGGARGLYEDLGALPGPVATTRTELGKAVLRLAAEGLEGLEPDRRANYDRFVATYAPHDDGGATRRVVETVFGGRPAGVVHRDLDDDGRTSLLVYLGGLRSNGITTSVLNLLSAIDPDRYDVSAFYGPPQTQDEVQNEARIPSTVRLFPRVGGFNGSKRLRNARRALFNGLDQTHSRVSRQRMQPYFEDEWHRCFGDSRFDHIVDFSGYGPMWPNILLAAPTGHKSIWLHNDVMADAQREVDGKRKLEHLLHAVFSTYDQFDSLVSVSEELARINASKLSDYAPAEKFTFARNLMDAERVRRMAGTDVDGSPHRQVGPDERLGKNLATDLHTLADLYGARQVDEAWTRQQVVRAAFGHRKGTRFITMGRLSPEKNHARLVQAFATVVAEEPDSQLAILGGGPLLPALENQVASLGLQDNVRLTGFQPNPYAALGEADCFVLSSDYEGQPMVILEARTLGIPVITTEFGSAKGALADDEGLRVPRDADALAQGMMTFIRSGIPQRPFDTAAYNREALREFFDAVGATSRGH	PGPT0023450_396	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023450-tagF-K09809	NA	NA
AK001_00706	1020			hypothetical protein	ATGTCTGAGCCCCACGTCGAGTTGACGTCCGCCAACGCGCCGACCAACTCGTTCGTCATCCCCGACAAGCGGATCGTCTACATGTCGGTCACCAAGGCGGCGTGCACGAGCGCGCGATGGATGATCGCGGATCTCGCCGGAGAGTCGCCCGAGACGTTCACCCGGTATGCGACGAGCGCGACGCAGACCCAGCTGATGACGATCCATGGCGGCAGGGGACGCTGGAAGCGCACACCGACTCTCGCACAACTGGACGCAGACGAGTTGCGCGAGATCCACCCGGACAACGGGTGGTTCGTCTTCGCGCTGGTCCGCAACCCGTGGAGCAGGCTCTGGTCGGCGTGGCAGTCGAAGTTCCTGGTCCAGCACGCGTTCTACCAGCGCACGTACGGCGATGAGCCGTTTTTCCCGCGTCAGCCGAGACGTCCGGACGACGTGATCGAGGACTTCCGGACCTTCGTGATGGCCCGCCCCTGGCTTGATCACCAGGTGCTGAGCACCGATGCGCACTTCCGCCCTCAGTCACGTTCTCTCGCGCTCAACCGCATGCCGTACAGCCGGATCTATGACGTGCGGGAGATCGATCAGATGACGCAGGACCTTCACGCACATCTCGAAAGACTCGGTGTCGACCAGGAGCTCTACCTGCCGCAGGCGAACGAGACTCCTCTACCACCGGTCCGCGCGATCTTCGAGGGGTCGACGGGTGAGGTGGTCTCGGACGTCTACTCATCGGACTTCAGCGCGTTCCCCGACAGATGGTCCCTGGACCAGCTGAAGTACGTCGAGGACTGGTCGGACGACGCGCTCGCCAACATCCGAGCCCAAGTCGCCGCCAACGAACGCATCGGCGCACTTTCCGTGCGTGCGCGAGAGTTGCAGGGTGAGGTCAAGCGCCTCCAGGCGGAAAGACAGGCGCAGGCACGCGGCGATGGCGAGGCTCGCGTGGATACCGAGCCTCGTCATCTCGTCGGTGCGCTCCGGCGTGTGCTCCGCAGGCTCGCTCCGAACCGGTCGTGA	MSEPHVELTSANAPTNSFVIPDKRIVYMSVTKAACTSARWMIADLAGESPETFTRYATSATQTQLMTIHGGRGRWKRTPTLAQLDADELREIHPDNGWFVFALVRNPWSRLWSAWQSKFLVQHAFYQRTYGDEPFFPRQPRRPDDVIEDFRTFVMARPWLDHQVLSTDAHFRPQSRSLALNRMPYSRIYDVREIDQMTQDLHAHLERLGVDQELYLPQANETPLPPVRAIFEGSTGEVVSDVYSSDFSAFPDRWSLDQLKYVEDWSDDALANIRAQVAANERIGALSVRARELQGEVKRLQAERQAQARGDGEARVDTEPRHLVGALRRVLRRLAPNRS				NA	NA	NA	NA	NA
AK001_00707	1137			hypothetical protein	GTGCTCGATGCATCGTGGGCGGAAGGTTTCACCTTGAATGTCGTGACCGTCAGTACCATTCTCGATACCCCTGCGAACGTGCGGCGCTTCGTCAACTCGAATCTTGCTGCGGGTGTCGACCACATGGTCATTTTCCTTGACGCCGATCTGCCCGATGTCTGTGCTGAGCTGGCGGAGGAGAGCAGGGTCTCCGTCGTTGTGACTGACGATTCCTACTGGAAGGGCGAGCGACCCTCGGCACTCAACGCGCGACAGAAGGTCAATGCCAATCTCGCGCGCGTTGCGGTCTTGACGGCGACCCCGGACGTCTGGCTCTTCCATATCGATGGCGACGAATGCCTCGATGCGTCGCAAGAGGCTCTCGGGACGCTCAGTAGCGACACCAACGTCGTCACCTTGGAGGTCCGGGAAGCCGTCAGCTCGTCCGACGAGAGCAATCTCGGATGGTACAAGCGGCTTCTCCAGGGTGATGAGCTGGCCCTCCTCTATGCGCTGGGGCGGATCGACCGGCCGCAGAACGCGAGTTACTTCCGGGGCTATACGAGCGGCAAGTCGGGCATGCGGCCTTCGCTCGACCTGATCTTCCGGACGCACGACGTCGTCGATGTCTCGGGTGCCGTGGTGGAGGGCCATCGTGATCCATCACTAGGTGTGCTTCACAACGACTCGGTCTCCCTGGATGACTTCGTAGCGAAGTGGACGAGGCATCTCGGCACGACAGCGACGTACCGCCCTGCTCGGGAAGTAGTGCGCGACGCTGTCGGTGCCGTCCTGCGCAACGACGTTGTCGACCGTGCTACTGCAGTCCATCTGCTCGAAGAGATATATCGCCGACGAATAGAGGATCCGGTCGAACTGCTACGGTCTCTCGGATACCTCGAGCTCCGCCGGCAGTCCGGTGATGCTCAGGGTCAGCCGGATCCCGGGCGCAGCGTACGCATCCGTCTGGAGAAGGTCCTGGGAGTTCTGGCACGCGAAGGCGTCAAGGTCTTCCGTCCGAAGGGCTCACCCGACGCGCAGGGCCGACGGATGCGAGCGGCTGCGGTGGCGCCAGGGCTCGACAGTGACTTGGCGTCGCGTCTCGGAAGGCTGGCCGATGCCGCCGGTAGGCACCACCAGTCCGACCTCGACAACTAG	MLDASWAEGFTLNVVTVSTILDTPANVRRFVNSNLAAGVDHMVIFLDADLPDVCAELAEESRVSVVVTDDSYWKGERPSALNARQKVNANLARVAVLTATPDVWLFHIDGDECLDASQEALGTLSSDTNVVTLEVREAVSSSDESNLGWYKRLLQGDELALLYALGRIDRPQNASYFRGYTSGKSGMRPSLDLIFRTHDVVDVSGAVVEGHRDPSLGVLHNDSVSLDDFVAKWTRHLGTTATYRPAREVVRDAVGAVLRNDVVDRATAVHLLEEIYRRRIEDPVELLRSLGYLELRRQSGDAQGQPDPGRSVRIRLEKVLGVLAREGVKVFRPKGSPDAQGRRMRAAAVAPGLDSDLASRLGRLADAAGRHHQSDLDN				NA	NA	NA	NA	NA
AK001_00708	624			hypothetical protein	ATGCCGATCCTGCGGAAGGATGGTCGGGGAATCCTCTTCATTCACGTCCCGAAGACGGGGGGTTCGTCGCTCGACCAGTTGTTCCGGGACGACGGGTGGCGCATGAGCTATCACGATGGTCGCGTGGGTAAAGGGTCGGTGAACCACTATCGTTGGTGCACCCCGCAACATATGCATGGGGAGATGCTGCGGCAGAACTTTCGGATCGACAAGTTCGACGCCGTTTTCATGGTCGTTCGCGACCCGATTGCGAGGTTCCGCTCGGAGTACGCCTGGCGGAACGGTCCCGACGTCGACCCAAGTGCATCGGCCGTCGACGCATGGGCGAACAAGGTCCTCGACACCTATCGCTCACACCCGTTCGTGATGGGGAACCACATACGCCCTCAGTTCGAGTTCCTCGTACCCGGATGCGAGGTCTTCAAGGTTGAGGACGGGCTGGAGTCGGTCATGCGGACCTTGAACGGGAAGTACGAATTCGACCTTCCCCTCCAGGTCGGTCGTGCCCGTACCAGCGAGAAGACAGCCGGGGTCTCCAGCCGCGACGTCGAGATCAGTCCTGAGTTGGAGGCCCGGCTCCGCGAGTTCTATTCGCTTGACTTCACTTGTTTCGACTACGTCTGA	MPILRKDGRGILFIHVPKTGGSSLDQLFRDDGWRMSYHDGRVGKGSVNHYRWCTPQHMHGEMLRQNFRIDKFDAVFMVVRDPIARFRSEYAWRNGPDVDPSASAVDAWANKVLDTYRSHPFVMGNHIRPQFEFLVPGCEVFKVEDGLESVMRTLNGKYEFDLPLQVGRARTSEKTAGVSSRDVEISPELEARLREFYSLDFTCFDYV				NA	NA	NA	NA	NA
AK001_00709	1311	cysNC	COG0529	Bifunctional enzyme CysN/CysC	ATGACCACGACCGAGCACACCACTGCCGAGGCTCTGACCGACGGCTCCATCGACCTGCTGCGTTTCGCGACCGCCGGCTCCGTCGACGACGGCAAGTCGACCCTCATCGGTCGGCTGCTGTTCGACTCGAAGACGATCTTCGAGGACCAGCTCGACTCGGTGGAGAGCGTCTCCAAGGACCGCGGCAACGACTACACCGATCTCTCGCTGCTGACCGACGGCCTGCGCGCCGAGCGGGAGCAGGGCATCACGATCGACGTCGCCTACCGCTACTTCGCGACGCCGAAGCGCAAGTTCATCATCGCCGACACCCCGGGGCACATCCAGTACACCCGGAACATGGTCACCGGTGCCTCGACCGCCGATGTCGCGCTGATCCTCGTCGACGCGCGCAAGGGCGTCATCGAGCAGTCCCGCCGCCACACGTTCCTGGCGACGCTCCTCGGCGTGCCGCACATCGTGGTGTGCGTGAACAAGATGGACCTCGTCGACTACTCCGAGGAGGTCTTCGAGCAGATCCGCTCCGACTTCACGGAGTTCGCCTCGCGTCTGCGCGTGCCGGACCTGACGTTCATCCCGATCTCCGCGCTGGAGGGCGACAACGTCGTCAACCGCTCGGAGAACACCCCGTGGTACGACGGTCCGGCGCTGCTCAGCCACCTGGAGCGCCTGCACGTGGCCTCGGACCGCAACCTCATGGACGTCCGGTTCCCGGTCCAGTACGTGATCCGCCCGCAGTCGCACGACTCCCGCGACTACCGCGGTTACGCGGGCACGGTCGCCTCCGGCGTTATGAAGCCTGGCGACAAGGTCGTGGCGCTGCCGGCCGGTCTCGAGACGACGATCGAGGCCATCGACACGGCCGACGGCCCCGTCGAGGAGGCCTACCCCCCGATGGCCGTCACGGTGCGGCTCGCGGACGAGATCGACATCTCGCGCGGCGACATGATTGCGCGTCCGAACAACACCCCGGCCGCGCTGCAGAACATCGACGCGCAGATCTGCTGGATGGACTCCGAGTCCTCGCTCGTCCAGGGCAAGAAGTACGCCATCAAGCACACCACCCGCTGGGCGCGCGCGATGGTCAAGGACATCAACTACCGCGTGGACGTCAACACGCTGCACCGCGACGAGGAGGCGACCGAGATCAAGCTCAACGAGATCGGCCGCATCCAGCTCCGCGTGACGCAGCCGCTGTTCGTCGACCCGTACCAGCAGAACCCGCAGACGGGCTCGTTCATCCTCGTCGACGAGTCGACCAACAGAACGGTCGCCGCCGGCATGATCGGTGGTCTGCCGCACACTTCCTGA	MTTTEHTTAEALTDGSIDLLRFATAGSVDDGKSTLIGRLLFDSKTIFEDQLDSVESVSKDRGNDYTDLSLLTDGLRAEREQGITIDVAYRYFATPKRKFIIADTPGHIQYTRNMVTGASTADVALILVDARKGVIEQSRRHTFLATLLGVPHIVVCVNKMDLVDYSEEVFEQIRSDFTEFASRLRVPDLTFIPISALEGDNVVNRSENTPWYDGPALLSHLERLHVASDRNLMDVRFPVQYVIRPQSHDSRDYRGYAGTVASGVMKPGDKVVALPAGLETTIEAIDTADGPVEEAYPPMAVTVRLADEIDISRGDMIARPNNTPAALQNIDAQICWMDSESSLVQGKKYAIKHTTRWARAMVKDINYRVDVNTLHRDEEATEIKLNEIGRIQLRVTQPLFVDPYQQNPQTGSFILVDESTNRTVAAGMIGGLPHTS	PGPT0002395_1110	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACID	ADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0002395-cysNC-K00955	NA	NA
AK001_00710	903	cysD	COG0175	Sulfate adenylyltransferase subunit 2	GTGACGTCTCACGTCCTGAGCCAGCTCCGCAGCCTCGAAGCGGAGAGCATCCACGTCATCCGCGAGGTGGCGGCGGAGATGCAGCGACCCGTGCTGCTCTTCTCCGGCGGCAAGGACTCCATCGTGATGCTGCACATGGCGGCGAAGGCCTTCGCCCCGGCACGCATCCCGTTCCCGATCATGCACGTCGACACCGGTCTGAACTTCCAGACGGTGCTCGACTGCCGGGACCGCTGGGTGGAGAACCTCGGGATCCAGCTCGTCGTCGCCTCCGTGCAGGACGCGATCGACCGGGGTCTCGTGCAGGAGGAGCCGAACGGCTCGCGCAACCGCATCCAGACCCCGGTGCTGCTGGAGGCCGTCGAGAAGCACGGCTTCGACGCCGCGTTCGGCGGGGGCCGCCGTGACGAGGAGAAGGCCCGCGCCAAGGAGCGCGTGTTCTCCTTCCGCGACGACTTCGGCCAGTGGGACCCGAAGAACCAGCGCCCGGAGATCTGGAGCCTGTACAACGGGCGGGTCCACCAGGGCGAGTCGATCCGGGTGTTCCCGCTGTCCAACTGGACCGAGCTGGACATCTGGTCCTACATCGCGGCCGAGCAGATCGACATCCCGGACCTCTACCTCGCCCAGGAGCGCGAGGTCGTGGACCGCGAGGGCATGCTGTTCGCCGTCAACGAGTTCACGCCGCTCAAGGAGGGTGAGACCTCCGAGATCCGGTCCGTGCGCTACCGCACGGTCGGCGACGCGAACCTGACGGCCGCCGTCGAGTCGACGGCGACCACCCTCGAGGCCATCGTCGAGGAGGTCGCGGCCGTGCGCGTCACCGAGCGCGGCGCCACCCGTGGCGACGACAAGGTGAGCGAGGCAGCGATGGAGGACCGCAAGCGAGAGGGCTACTTCTAA	MTSHVLSQLRSLEAESIHVIREVAAEMQRPVLLFSGGKDSIVMLHMAAKAFAPARIPFPIMHVDTGLNFQTVLDCRDRWVENLGIQLVVASVQDAIDRGLVQEEPNGSRNRIQTPVLLEAVEKHGFDAAFGGGRRDEEKARAKERVFSFRDDFGQWDPKNQRPEIWSLYNGRVHQGESIRVFPLSNWTELDIWSYIAAEQIDIPDLYLAQEREVVDREGMLFAVNEFTPLKEGETSEIRSVRYRTVGDANLTAAVESTATTLEAIVEEVAAVRVTERGATRGDDKVSEAAMEDRKREGYF	PGPT0002405_2362	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957	NA	NA
AK001_00711	888	cysQ_1	COG1218	3'-phosphoadenosine 5'-phosphate phosphatase	ATGACCAGCCTCTCACCGGCGCAGCCCGAAGCGTCGCAGTCGGACGGCGAGCTCGCGGCCGCACTGGCCGAGCGAGCGGGCCAGGTGCTGCTCGCGCTGCGTGCCGAGGTCGACGCCGCCGGGGGAGAGCACGACCCCCGCGCTCTGAAGGACGCCGGCGACGCCGCGGCCCAGGAATGGCTCGCGGACGCGCTGGCGCATGCCCGGCCGGCCGACGCCGTGCTGTCGGAGGAGGCGAAGGACGGCGCCGCCCGGCTCGACGCCGACCGCGTCTGGATCATCGACCCGCTCGACGGCACCCGTGAGTTCGCCGAGCGGTCCGAGGGGCCCGCCGGCTGGCGCGACGACTTCGCCGTGCACGTGGCGTTGTGGGTCCGCGGGCACGAGGACGCCACTGCCGGCCTCGGGGGCCTCGCGGCCGCTGCAGTGGCCCTGCCCGCTCGCGGGGTCGTGCACACGACCGTGGCGCCTTCGTCGGCCGCCGACCTTGACGAGGCCGCCCGTGCGGTGCTCGCGGGACAGCGCCCGTTGCGTATCGCCGCCAGCCGCTCCCGTCCTCCCGAGTTCGTCGCCGAGCTCGCCCGGCGCGACGACGTCGAGCTCGTGCCGATGGGCTCGGCGGGTGTGAAGGTGGTCTCGACGGTGGACGGTACGGTCGATGCCTACGTCCACGGTGGTGGACAATACGAGTGGGACTCGGCGGCTCCCGTCGGCGTCGCGCTCGCGGCGGGCCACGTGTGCACGCGTCTGGACGCGACGCCGCTCGAGTACAACCGCCAGGACCCCTGGCTTCCCGATCTGTTCGTCTGCCACCCGGCCCTGGCCGCGCACCTGCGCGCGGCGTTGCAGGAGGTCGGCGTGGCGATCAAGGAAGGTGCCCAGTCGTGA	MTSLSPAQPEASQSDGELAAALAERAGQVLLALRAEVDAAGGEHDPRALKDAGDAAAQEWLADALAHARPADAVLSEEAKDGAARLDADRVWIIDPLDGTREFAERSEGPAGWRDDFAVHVALWVRGHEDATAGLGGLAAAAVALPARGVVHTTVAPSSAADLDEAARAVLAGQRPLRIAASRSRPPEFVAELARRDDVELVPMGSAGVKVVSTVDGTVDAYVHGGGQYEWDSAAPVGVALAAGHVCTRLDATPLEYNRQDPWLPDLFVCHPALAAHLRAALQEVGVAIKEGAQS	PGPT0002975_943	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002975-cysQ-K01082	NA	NA
AK001_00712	963			hypothetical protein	ATGATCGACGTCGACCCGGCACTCGTCCTGGGCGGCCTGCTGGTGGGCTTCGTCGTGGGGCTGACCGGCATGGGCGGCGGAGCCCTCATGACACCCATGCTGATCTTCGTGTTCCGGATCGACCCGCTGGTCGCCGTCTCGAGCGACATCGTGGCGAGCCTGTTCATGAAGCCCGCCGGCGCCGTCGTGCACCTGCGGCGCCGGACGGTGAACCTGCGCCTCGTCGCCTGGCTCTGCGTGGGCTCCGTGCCCGCGGCGTTCAGCGGCGTCTTCCTGATCCGCGCCCTGCCGTTCGGCGACTCGCTGGACGAGGCGCTGCGCCTCGTCCTGGGCGTCGCGCTCCTGCTGGCGGCGACCCTGCTGGTCGTGCGCGCGACGATCGGGATGGTGCAGCACCAGCGCGCCCTGGGCGAGGGACCCGTGCGGCCCTCGAACGCGGGCGTGGTGGTCCGCCCGCTGCCCACCGTCGTGCTGGGGCTCGTCGCCGGCCTGCTGGTCGGCATGACCTCCGTCGGGTCCGGGTCGATCGTCATCGTGGCGCTGCTCATGCTCTACCCCGCGCTCAAGGCGTCCAACCTGGTCGGCACGGACCTGGTCCAGGCGGTCCCCCTGGTCGCGGCGGCCGCGGTCGGGCACCTGATGTACGGCGACTTCTCCCTGGACCTGACCACCTCCCTGCTCCTCGGCGCCGTGCCCGGCGCCTGGCTCGGGGCGCACGTCTCGAGCCGCGCCCCCGGCGGACTGATCCGGCGCGCCCTGGCCATCCTTCTCCTGGCCTCCGGGCTCAAGCTCCTGGGGGCACCGCTCGAGATCGTGCTGGCCGCCGCGGTGGTCGCCCTGGTCGGTGGGAACATCGCCTGGGTCGTGGTCCGCGAACGGCTGGCCCGGCACGCCCCACGCACCTCCTCGACGCCGGACCGGGCGTCGACCGCGACGACGAAGGACGACACCGAACGCCCATGA	MIDVDPALVLGGLLVGFVVGLTGMGGGALMTPMLIFVFRIDPLVAVSSDIVASLFMKPAGAVVHLRRRTVNLRLVAWLCVGSVPAAFSGVFLIRALPFGDSLDEALRLVLGVALLLAATLLVVRATIGMVQHQRALGEGPVRPSNAGVVVRPLPTVVLGLVAGLLVGMTSVGSGSIVIVALLMLYPALKASNLVGTDLVQAVPLVAAAAVGHLMYGDFSLDLTTSLLLGAVPGAWLGAHVSSRAPGGLIRRALAILLLASGLKLLGAPLEIVLAAAVVALVGGNIAWVVVRERLARHAPRTSSTPDRASTATTKDDTERP				NA	NA	NA	NA	NA
AK001_00713	1236	cysC		Adenylyl-sulfate kinase	ATGAACCTCCCGGACACCACCCACGTCCTGACGCCCGACGAGCTCGACCTGCTCGAGCTCCACCTCGGCGGCGGTACCGCCACGCTCACCCTGCCGGGCGTCGCGCCCGGCAGGCCGGTGACCCTGACCGACGCGGAGAACACGCCGCTGGCGGTCCTCGACGGTTCCCGCGCGAGCGCCGTCAAGCCCGTCGCCCGAGCGGTCGGGCCGCACTGGGACCCGGCCGTGCGCCGCGGGGCCCACGACGTCGCCCACGAGATCCGCCGCGAGGTCGGACCGGAGGCGGACGTCCTCGCGGTCGTCGTCGACGCCGCGCCGACACGCGAGGAGCTGGACGCCGTCGCCGGCCTCGTCGCCGGCGCGGCCGCCGTCCTGGTGCTGGTCCCGGCCGCCCGGCGCGCCCCCGCCCCCGGCGGCCTCGGGGCTCCCGGCCTCGCCCGGGTCGGCACCGTCGTCCACGCGGCCGTCGCCGCGGCATCCGCCGCGCCGGTGCGCACCGTCGTCGTCCCCTGGGCCCCCGACGCCGGCCTGCGGTGGCACGACGTCGCCGCGCGCCACGGCGCCGACCGGGTGGAGCGGCTGTCCGACCACCGCGGCCCGGGCACGACCGAGCGACTGGCACACCTGGACACGCTGTGGTCGCAGGAGGTGGCGGCCCTGTACCCGCAGGACGTGGCACGCGAGGTCGAGGACGCCGCCCGCGGGGCCCGCCGGACGGGCACCGTCGTGTTCTTCACCGGGTTGTCGGGCTCCGGGAAGTCGACCGTCGCGCAGGCGCTCGCCGCCGAGCTCGACGACGAGGGCCGTCACACGACGCTGCTCGACGGCGACGCCGTGCGTCAGCACCTGTCCAGGGGGCTCGGGTTCGACAAGGCCTCGCGGGAGCTGAACGTCGAGCGGATCGGCTACGTGGCCTCGCTGGTGGCCTACCACGGCGGGACCGCCGTCGCGGCGCCGATCGCGCCGTTCGCGTCCTCGCGCGCGCGGGTCCGCGAGATGGCGGAGGCCGCGGGCCGGTTCCTGCTGGTCCACGTCTCGACCCCGCTCGAGGTCTGCGAGGCCCGGGACCGCAAGGGCCTCTACGCCAAGGCGCGGGCCGGGGAGATCCCCGAGTTCACCGGCATCTCCTCGCCCTACGAGGAGCCGACGGACGCCGACCTCGTGATCGACACGTCGGTGACGTCGGTCGAGGACGCCGTGGCGCAGGTGAAGGAGCGGCTCGCCCGTCAGGCCTGA	MNLPDTTHVLTPDELDLLELHLGGGTATLTLPGVAPGRPVTLTDAENTPLAVLDGSRASAVKPVARAVGPHWDPAVRRGAHDVAHEIRREVGPEADVLAVVVDAAPTREELDAVAGLVAGAAAVLVLVPAARRAPAPGGLGAPGLARVGTVVHAAVAAASAAPVRTVVVPWAPDAGLRWHDVAARHGADRVERLSDHRGPGTTERLAHLDTLWSQEVAALYPQDVAREVEDAARGARRTGTVVFFTGLSGSGKSTVAQALAAELDDEGRHTTLLDGDAVRQHLSRGLGFDKASRELNVERIGYVASLVAYHGGTAVAAPIAPFASSRARVREMAEAAGRFLLVHVSTPLEVCEARDRKGLYAKARAGEIPEFTGISSPYEEPTDADLVIDTSVTSVEDAVAQVKERLARQA	PGPT0002410_551	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002410-sat|met3-K00958	NA	NA
AK001_00714	969	btuD_3		Vitamin B12 import ATP-binding protein BtuD	GTGACTGACGACGTCGTCGAGGCGGACGCCCATCTCGACTTCGACATGGAGGACGAGGCGGACGACGCCGGAGAGCACGCGGAGGCGATCCCGCTCGGTGACCCGTGCCTGGTCGTGGACGACCTGCACGTCGTGTTCCGGGTCTTCGGCGGCAAGAAGCGCGAGAAGGCCCGGCAGCAGGGCCTGCACGTGCAGGAGGCCGCGCCGCCGCGGCAGGGCTTCGTCAAGCGGCTGCTCGGTGCGGGCCGGCAGCACGTCGGCGCCGTCTCCGAGGTCCACGCCGTGCGTGGCGTGTCGTTCACGGCGCGCCACGGGGAGTCGATCGGGATCGTCGGCATCAACGGTTCCGGCAAGTCGACGCTCCTGCGGGCGATCACCGGGCTCATCCCTCCGCACTCCGGGTCGGTCTACGTCGACGGCGAGCCGGCCCTGCTGGGGGTCAACGCGGCCCTCATGCCGCAGATGACCGGTGCGAAGAACATCGAGATCGGTGGCCTGGCCCTGGGGATGACCCCCAAGGAGATCGACGCCAAGTTCGACGAGGTCGTCGACTTCGCCGACATCGGCGACTTCGTCGACATGCCCATGAAGACGTACTCCTCGGGCATGGCCGCGCGGCTGCGGTTCGCGATCAGCTCGGCCGCCGTGCCCGACATCCTCATGGTGGACGAGGCGCTCGCCACCGGCGACGCCGCGTTCAAGGCGCGGTCCAAGGCCCGTATCGCGGAGGTGCGTCAGCAGGCGGGGACGGTGTTCCTGGTCAGCCACTCGATCTCGACGATCGAGGCGATGTGCACCCGGGTGCTCTGGATGCACCAGGGCCAGCTCGTCATGGACGGCCCGGTCGAGCAGGTGACGGAGGCCTACCGGCAGTTTGTCCGGGCGAACCGTCAGGCGCGGTCGGGGGGCCGCAACGGCGGCGAACGCCGCAACCGCGCCCGACGGAACCGCGACGGCGCTCAGGCCTGA	MTDDVVEADAHLDFDMEDEADDAGEHAEAIPLGDPCLVVDDLHVVFRVFGGKKREKARQQGLHVQEAAPPRQGFVKRLLGAGRQHVGAVSEVHAVRGVSFTARHGESIGIVGINGSGKSTLLRAITGLIPPHSGSVYVDGEPALLGVNAALMPQMTGAKNIEIGGLALGMTPKEIDAKFDEVVDFADIGDFVDMPMKTYSSGMAARLRFAISSAAVPDILMVDEALATGDAAFKARSKARIAEVRQQAGTVFLVSHSISTIEAMCTRVLWMHQGQLVMDGPVEQVTEAYRQFVRANRQARSGGRNGGERRNRARRNRDGAQA	PGPT0023470_349	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023470-tagH-K09693	NA	NA
AK001_00715	909			hypothetical protein	GTGCCGACGACGACCTCGGCCGAGCGCCGTGCGATCGCCGAGGAGCACGGCCTGACCAGGATGGGCGTGCGCCCGCCGTTGTGGACGTACGTCAAGGACGTGGCCCGGCGGGGGGCCTTCATCCGCGTGCTCGGCACAGCGAGCGCCTACGCGCGCAACCAGAACACCTACCTGGGCCAGCTCTGGGCGGTCCTCAACCCGATCCTCAACGCCGCGGTCTACGTGCTGATCTTCGGGATGCTGCTCAACGTCAGCCGCGGGGTCGACAACACGATCGCCTTCATCGTCATCGGGGTCTTCCTCTTCCGGTTCGTGGAGCAGTCGGTCAACGGCGGGGCGCAGTCGATCGCCAAGCGGTCGAACCTGATCCGGTCGTTGCACTTCCCCCGCGCGGTGCTGCCGCTGTCGAACGTCATGTCGCACCTGGCGACGCTCGTCCCGGCGCTGGTGGTGATGTGCCTGATCGTCCTGGGCTCGGGCCTGCTGCCCGACTACGAGCCCGTGCCGATCACCTGGGAGTGGCTGCTGCTCGTCCCTGCCGTGGCGATGCTGTGGGTCTTCAACATGGGTCTCGCGTTCATCATGGCCCGGTTGGTCGCGATCACCCCGGACCTGGACAACGTCATCGGCTTCATCCTGCGGCTGGCCATGTACGGCTCGGGAGTCATCTTCCCCGTCGTGCGCTACGTGAGCGAGCTGCCCGAGTGGATGCAGGGCTGGATGGGCACGATCCTGGAGTTCCAGCCCATCGCCGTCTACCTGTACCTGGGCCGGGCCTCGTTGATGAACGAGGACAGCTTCGTGCAGGAGCCGCTGATGTGGGGCCTGGGCGCCGCCTGGGCCGTGGTGTTCTTCGTGGCCGGGTTCATCATCTTCTGGCGCGGTGAGGAGAGGTACGGACGTGACTGA	MPTTTSAERRAIAEEHGLTRMGVRPPLWTYVKDVARRGAFIRVLGTASAYARNQNTYLGQLWAVLNPILNAAVYVLIFGMLLNVSRGVDNTIAFIVIGVFLFRFVEQSVNGGAQSIAKRSNLIRSLHFPRAVLPLSNVMSHLATLVPALVVMCLIVLGSGLLPDYEPVPITWEWLLLVPAVAMLWVFNMGLAFIMARLVAITPDLDNVIGFILRLAMYGSGVIFPVVRYVSELPEWMQGWMGTILEFQPIAVYLYLGRASLMNEDSFVQEPLMWGLGAAWAVVFFVAGFIIFWRGEERYGRD	PGPT0023465_11	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023465-tagG-K09692	NA	NA
AK001_00716	1275			hypothetical protein	ATGCCCGTCACACCTCGCGGCGCCACCCTGAAGCGTCGGCTCCGCTCCCTCGGGGGCGCCGTGATCCGTCGGCTCGGGATGCTCCCGGGAGGGATGCCCGACGGTCTCGGCGAGGACGCCGACCTGCTCGGGACGTCGTGGCCCTACGAGGTGCTCGTCTACTTCGCGGACACGCCCGACGCCCTCTACCAGATCGAGCAGTGGTACAGCACGCTGCGTGCCCTGGACGCCGAGCACCGCGTCGTCGTCGTGACCCAGGACTCCCGCACCACCCGGTCCGTGCGGAGGGACAGCGGCCTGGACGTCCGGACGGTGGCCCACTACACGACCCTCGACGACGTGCTGGGGCGCTCGCCGACCAAGCTGGCTCTCTACGTCAACCACAACCCGCAGAACTTCACGTGCCTGCGCTTCGGGAACCTCGTGCACGCCTCGCTGATGCACGGCGACAGCGACAAGCTCGTCTCCGTCTCGAACCAGACCAAGGCCTATGACTTCTCCTTCGTCGCGGGCCGCGCCGCGGTGGAGCGGATGGACCGGTTCAGCACGCTCTACGACGCGCAGGCTCGCTGCGTCCCGGTCGGGCGGCCGCAGCTCGACGAGCAGCTCCGGCTCCGTGCCGAGACGGCCCGTGGCCCGGTTCCGACGGTCCTGTACGCGCCGACCTGGGAGGGTGGACAGCCGTCGGCCGAGTACGGGTCGGTGGCGACCCTGGGGCTCTCCCTGGTCCGCGCTCTCACGGCGTCGGGCCGGTACCGGGTCCTCTACCGGCCGCACCCGCTGACGGGGGTGCGCGACGCCGGCTACGGCGAGGCCGACCGGGAGATCCGTGAGTTCCTCGCAGCGGAGCCTGCCGTGCCCGGTGCCCCGCCCCACGCCACGGACGTGCACCGGGACGTCTCGCAGGCGTTCGCCGCCGCCGACCTGCTCGTCTGCGACGTCTCCGGGGTGGCGATGGACTGGCTGGTGACCGGCGAGCCGATCGTCGTGACGCGGCCCGGCCACGGCGCTGTCGTGGCGGCGAGCCCTCTGCAGGAGGTCGCTCCGTCGCTGCGACCGGAGGACGTCGAGGGCGTCGTCGCCCTGGTCGACCGCGAGCTGGGCGAGGACCCGACCCGCGAGGAGCGGTTGCGTCTCCGGGAGCACTACCTCGGCGACACCACGCCGGGGGCGTCCACCCGCCGTTTCGTCGACGCCTGCGAGCGCCTGATGAGGATCCGGGACGCCGAGGTCGCCAGGATCGCGGCGGCGAGCGGGACGAGCGACGACGGATGA	MPVTPRGATLKRRLRSLGGAVIRRLGMLPGGMPDGLGEDADLLGTSWPYEVLVYFADTPDALYQIEQWYSTLRALDAEHRVVVVTQDSRTTRSVRRDSGLDVRTVAHYTTLDDVLGRSPTKLALYVNHNPQNFTCLRFGNLVHASLMHGDSDKLVSVSNQTKAYDFSFVAGRAAVERMDRFSTLYDAQARCVPVGRPQLDEQLRLRAETARGPVPTVLYAPTWEGGQPSAEYGSVATLGLSLVRALTASGRYRVLYRPHPLTGVRDAGYGEADREIREFLAAEPAVPGAPPHATDVHRDVSQAFAAADLLVCDVSGVAMDWLVTGEPIVVTRPGHGAVVAASPLQEVAPSLRPEDVEGVVALVDRELGEDPTREERLRLREHYLGDTTPGASTRRFVDACERLMRIRDAEVARIAAASGTSDDG				NA	NA	NA	NA	NA
AK001_00717	1014			hypothetical protein	ATGAGTGCGCTCGTGGAGTCCCCGCTGCAGCTGCTGTGCGCCGTCGAGACGTACGCGTCCGACACGGGCGCCCGGCCGACACGGGTGACCGCACGCGAGGACGTCCCCGCGCTCGCGCGGTCGGTGCGCAGCGTGCAGGGTCTCGGGCTCCCCGATGGTCTCGCGATCGAGACGGGACCGCCCCGGATCGACGTCACGACCGGGGAGACCTGCCTCGTCGGCGACGCCTTCTCGGGGGTCTTCCAGGCGAGCCTGGCGCGAGGCGGCACGCCGGAGCGGATCGTCGTCGTCGACGACGGCCTCGCCACCCTGGAACTGGCGCGACGACTCGTGGACGGGTCGTCGCTCGTGCGGCTCGCCACCCCGACCCGGCCCCTGCGCTACGCCCTGGGCCGCCTCGCGACCCGTCGGCTGCGCAGGCTCGCCCGAGAGGGCCGTGTGACCCTGTCCACCATGCTGCCCCTCGAGCCCGGTCTCCGTGACGACCTCGACGCGCTCGGTGTGGACGTCGTCCGGCACTCGTTCGACTGGCTCGCCTCCCGGGAGCCCCATCGCGGCGCCGACGACTCGATCCAGGAACCGACCGTCGTCGTCGGTTCCGCACTCGTGGCCGACCGCCTCGTCGGCGCCGACCACTATGTCGCCTGGCTCCGTGGGGTCGCCGCCGACGGCCCCGTGCACTACGTGCCCCACCGCAGGCACGACCCGCTCGTGACGGCGTTGTTCCAGCAGCTCCCGGGCGTCACCGTCGCACCGCCCGGCGCAGCCGTGGAGATCCGGCTGCGCAACCTCACCCGCCGTCAACGGGTGGTTGCGCTGCCCTCGACCTCCACCGTGACGCTGACGCGTCTGCTGGCGCCCCGCGGGGTGGCCGTGCTCCCCCACGACGTGCCCGACGAGTGGTGGACGCACCGCGCGGACCCGACGTTGCGCCGGCACCTGGGCACGGCATCGGCGCTCGCTCGCGCCGCGGCCGAGGAAGCACGCTCCACGCAACGGTTCCCGATCCCGTGA	MSALVESPLQLLCAVETYASDTGARPTRVTAREDVPALARSVRSVQGLGLPDGLAIETGPPRIDVTTGETCLVGDAFSGVFQASLARGGTPERIVVVDDGLATLELARRLVDGSSLVRLATPTRPLRYALGRLATRRLRRLAREGRVTLSTMLPLEPGLRDDLDALGVDVVRHSFDWLASREPHRGADDSIQEPTVVVGSALVADRLVGADHYVAWLRGVAADGPVHYVPHRRHDPLVTALFQQLPGVTVAPPGAAVEIRLRNLTRRQRVVALPSTSTVTLTRLLAPRGVAVLPHDVPDEWWTHRADPTLRRHLGTASALARAAAEEARSTQRFPIP				NA	NA	NA	NA	NA
AK001_00718	1203			hypothetical protein	GTGAAGCCCGTCCGCGTCCTGGCCGTCGCCGACTCCGACTCGTACCTCAAGTGGGCCGCCTGGACCCTCGGCCGCCTGGGGACCACCACCCGCGCGGCGGAGACGCACGTGGTCGTGGTCCGGTCCCCGCTGGCACCCACCCCGGAGCAGTCGGAGGCCGCGGTGGCCGGCACCGGCCCGCGGCCACCCGTGACGCTCGGACCCCGTGCGCTCGGACGGCTGGTGCGCCGCACCGCACCCGACGTCGTCCTCGTGGCCGCCACGGGCCCCGTCGCCGAGCTCGTCGCCCGGCACGTGGTGCGGGCCACCGCGCGCGGTCGGCGCCCGGCCCTGGTGACGGGGCTTCCCGGGATGGCCCTGCCCGCCACCCCGCAGGGCACCGGATGGCGGCGCTGGGCGGACGCGTTCGTCGTGCACGGCCCGCACGAGGTCGCACCGTACGCCCGCGCCTTCGCCGCGCACGGGGCCGCGCCCCGGATCGTGGTCGCCCGCCTGCCCTTCCTGGCCGCGCCGGTCACCGCGGCGCGCGCGGCCTCGGAGCGCGTGCCGGGGGTCCCGCACCGCGTGGTCTTCGCCGCGCAGGCGAAGGTCCCGGCGACCCGCGAGGAGCGGGTCCGCCTCCTCGACGGGCTGGCCCGGCTGACGGACGAGGGCCTCGAGGTGACGGTCAAGCTGCGGGCGCGCGCCGGCGAGCGCCAGACGCACAACGATCCGTTCCCGCTGGACGAGCTCTGGGACGCCGAGCACCGCCGTCTCGGTCGGTCGGCGGACGACCTGTCCTTCGCCGTCGGCCCGATGGCCGACCACCTCACGCCGGGGACGGCCCTGGCGACCGTCAGCTCGACCGCGGCGCTGGAGTCGCTGGCCCGGGGGCTGCCCACGGTGATGGTCGAGGACTTCGGCGTCGGCGTGACGCAGCTCAACGAGGCGTTCGCCGCCTCCGGGTGCCTGCGCCACCTCGACGACGTCGCCGACACCCTCCGCCGCGGCGGTCCCGTCCCCGACCCCTCCTGGTGCGCGGAGGGATACCTGCACGACCGGGACGAGCTGCCCGCGGCGGTCACCGAGCTCGCCGACCGGGCCCGACGCGGGACGCTGAGCACCCCGCGCACGGCCCCGTGGTCCTGGCCGCGGCACCTGTGGGTGGTCGGGCGCAGCGCGCTGCCCACCGCCGTGTCCGCACGCCTGCGCCGGCGTCCCTAG	MKPVRVLAVADSDSYLKWAAWTLGRLGTTTRAAETHVVVVRSPLAPTPEQSEAAVAGTGPRPPVTLGPRALGRLVRRTAPDVVLVAATGPVAELVARHVVRATARGRRPALVTGLPGMALPATPQGTGWRRWADAFVVHGPHEVAPYARAFAAHGAAPRIVVARLPFLAAPVTAARAASERVPGVPHRVVFAAQAKVPATREERVRLLDGLARLTDEGLEVTVKLRARAGERQTHNDPFPLDELWDAEHRRLGRSADDLSFAVGPMADHLTPGTALATVSSTAALESLARGLPTVMVEDFGVGVTQLNEAFAASGCLRHLDDVADTLRRGGPVPDPSWCAEGYLHDRDELPAAVTELADRARRGTLSTPRTAPWSWPRHLWVVGRSALPTAVSARLRRRP				NA	NA	NA	NA	NA
AK001_00719	1077			hypothetical protein	GTGGGTGACGCCGACCTGGCCGAGATCCTCCGTCACAGCGAGGCGGTGCCGGAACGATGCGGCGTGACCGTGGTCGCCTGCGTCCGCGACGAGGAGACCTATCTCGAGGCCGCGGCCCGGTCCGTGCTCGGGCAGGACCACGACGGCGACCTCGTGCTCGTCGTCGCCGTCGGACCGTCGCACGACGCGACCGCCGAGATCGCCGCGCGCCTCGCCGCGGACGACGACCGCGTGGTCGTGCTGGACAACCCGACCGGGTCACGCTCGATCGGGCTCAACCTGGCGATCGACCACGCCGAGGAGTGCACCGACCACCCCGTGATCCTCCGCGTCGACGGGCACACCGAGCTGCCGCCCGGCTACGTGCGACGGTGCGTCGAGCTGCTGCGCCGGACCGGTGCGGTCGGCGTCGGAGGCGTGATGCGGCCCGTGGGCACCGGCACCGTCCAGGAGGCCGTGGCCCGGGCGATGAGCCACCCGGCGGGCATCGGCGCGGCCTCGTTCCACGTCGGCGGTGAACCGGGACCGGCCGAGACCGTCTACCTGGGGGCCTTCCGGCGCGCCGCGGTGCATCGGGTCGGCGGCTACGACCCGACGCTGTTCCGCGCCGAGGACTGGGACCTGTGCCTCCGGCTGCGCCGGGCGGGCGGACTGCTGTGGTTCGACCCCTCGCTGGTCGTGGAGTACCGGCCGCGGCGCACGCTGCGGGCCGTGGCCAAGCAGTTCTGGCGCACCGGGATGTGGCGTCGTGAGGTGGTCCGCCGTGACCCGTCCACGGCGGGGGTGCGCTACCTGGCCCCGCCCGCCGTCGTGCTGGCGCTGGGACTGTCGGTGCTGCTCGGGACGGTCGGGCTCGTGACGGCGTCGCCGGTGCTGGTCGCGTCCGGGGCCGTGGTGCCGCTGACGTACGTGCTCGGCGTCCTGGTGGCTACCGCTCATGCGGCCACCCGCCGACCGCGGCTCCCGCTGCGCTCGGCGCTGGCGCTGCCCGCCGTGCTGGTGACGATGCACCTGTGCTGGGGAGCCGGGTTCGTCCGGGGCCTCACGGCGCGCGCCGCGGCCGACCACCGGGCCTGA	MGDADLAEILRHSEAVPERCGVTVVACVRDEETYLEAAARSVLGQDHDGDLVLVVAVGPSHDATAEIAARLAADDDRVVVLDNPTGSRSIGLNLAIDHAEECTDHPVILRVDGHTELPPGYVRRCVELLRRTGAVGVGGVMRPVGTGTVQEAVARAMSHPAGIGAASFHVGGEPGPAETVYLGAFRRAAVHRVGGYDPTLFRAEDWDLCLRLRRAGGLLWFDPSLVVEYRPRRTLRAVAKQFWRTGMWRREVVRRDPSTAGVRYLAPPAVVLALGLSVLLGTVGLVTASPVLVASGAVVPLTYVLGVLVATAHAATRRPRLPLRSALALPAVLVTMHLCWGAGFVRGLTARAAADHRA	PGPT0026525_61	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026525-exoA-K16557	NA	NA
AK001_00720	1422			hypothetical protein	GTGAGCACGGGACCGACGCAGGTGGTCACCGCCTCGACGCTGTTCGGCGCGGCCACCGTCGTGGCGGCGTGGGACGCCGGCGTGCTGCCCCGGCGGGACCGGACGCTGCTGGTGGTGCAGCACAACGTGCCCGCCCCCGAGACGTCCGACGACTTCACGGCGGGTCCGGCGTTCTCGGCGCTGGCCGACCGGTTCGACGACGTCGTGACGTGGAACGACGTCGTCGCCCCCTACCACCCCAAGGAGTGGAGGCCGCGCGCCGCCGACGCCCCGCTGTGGGAACGGCTGCTGCGCCAGCGGTGGGACCTCGGCGACGCACCCGTGGAGCTCGTCGGCGAGTCCGTGGCGACCCCGCCGACGGGCGCGCTCGTGTCGATCTTCGCCTCCGCGGCCGTCACGGTGTACGCCGACGGCCTCATGGTCTACGGGCCGACCCGGTTCGGTCTGGGCCACGACGTCGGCGGCCGCGTCGAGCGCGTGCTGCACCCCGACCTGCTGCCGGGTGTCCGGCCGACGCTGCTCGCGGAGTGGGACGTCCCCGGCGTCGTGGTGCCCGGCGAGTCGTTCCGCAAGGTCGTCGCGGCCCTGACCGACGCCGCCGAGCGGGCCGGGGCCGCGGCCACGGCCACGTTGCCGCCGGCCGGCTCCTACGCGCTCGTCCTGGGGCAGTACATGGCGGCGATCGGGCTGCTCACGCCGGCCGAGGAGGACCGGCTGCACCGGCAGATGGTGGACACCGCCGCCGAGCGCGGTTTCACCCACGTGCTGCTCAAGCCGCACCCCTCGGCTCCCCGCCAGGGGACCGGCGAGCTCGTCGAGCACGCGGCGTCGCGCGGTGTCGACCTGACGGTGGCCCCGGCGGCCGTGCTCGCGGAGTCGACGTTCGCCGAGTCGCCTCCCGGGCTGGTGGTCTCCTGCTTCTCGACGGCGCTGGCCACCGCCCGCGCCCTCTACGACGTGCCCACGGCCGGCGTCGGCACGCGGATGCTGCTGGAGCGGCTCGACCCGTACTCCAACTCCAACCGCGTCCCGGCGGTCGTCGTCGACGCCCAGGCGTGCGGCGACGACCGCTGGGAGGATCCCGCGCAGATGCAGCGGCTGGTGCGGGCGATGTCCTACTGCCAGCAGCCCGAGCGTCTGGCCCGGTTCCGGGACGAGACCGCGGCGCTCCTTCGCGAGCTGGACGACGCCGAGCTGCGGTCGTGGTTCCGCCGCAAGCGTCTGACGGCGCTCGGCCTGCCGGGCGGGTTCCCGGTGCCGTGGTGGCGGTCGACGCGGCTCGTCACGGCGGCCGACGCCGTCGACCGACGGCTGCTCGGGGGACGACTGCGGCGACTGGCGGCCTCGCGTCTCCCCGGCGGGGGCGAGGACCTGCGGGCGGCCGTCGGCGTCGCGAAGGCGACGGTGAGCTCCGGTGGGTGA	MSTGPTQVVTASTLFGAATVVAAWDAGVLPRRDRTLLVVQHNVPAPETSDDFTAGPAFSALADRFDDVVTWNDVVAPYHPKEWRPRAADAPLWERLLRQRWDLGDAPVELVGESVATPPTGALVSIFASAAVTVYADGLMVYGPTRFGLGHDVGGRVERVLHPDLLPGVRPTLLAEWDVPGVVVPGESFRKVVAALTDAAERAGAAATATLPPAGSYALVLGQYMAAIGLLTPAEEDRLHRQMVDTAAERGFTHVLLKPHPSAPRQGTGELVEHAASRGVDLTVAPAAVLAESTFAESPPGLVVSCFSTALATARALYDVPTAGVGTRMLLERLDPYSNSNRVPAVVVDAQACGDDRWEDPAQMQRLVRAMSYCQQPERLARFRDETAALLRELDDAELRSWFRRKRLTALGLPGGFPVPWWRSTRLVTAADAVDRRLLGGRLRRLAASRLPGGGEDLRAAVGVAKATVSSGG				NA	NA	NA	NA	NA
AK001_00721	999			hypothetical protein	TTGATCGAAGGGGAGGTCGCGGACCGGATGACCGACGCACGACCCGAGGTGTCCGTCGTCGTCCCCGCGCGGGACGCCGGCGGGCACCTGCCCGACGCCCTGGGCAGCCTGGAGCGCCAGCAGGTCGACCTGTCACGCCTCGAGGTGGTCGTGGTCGACGACGGGTCGACGGACACGACCGCCGAGGTGCTGGACGCGGCCGAGCCGAGGTTCCCCGCGCTGCGCCGGGTCCACCACGCGACGCCGCAGGGCGTCTCGGCGGCGCGGAACCGGGGCGTCCGGGAGTCCACGGGACGGTGGATCACGTTCCTCGACCCCGACGACTGGTACTTCCCGGGCCACCTGGCCGCGATGCTGCGTGCGGCCGAGCGCCACGACGTCGACTTCCTCGTGTCGGACCAGGTGCAGGCCTACGGCAACAACCGCCGGCTGGTCCGCGCCCCGGAGCCCCGTCGGCACGTCGTCCTCGACCCGCGGTCCGGCATCATGCCGACGTCGCGGTCGACGATGGTGAACTACGTCCAGGTCTCCTCGCGGATGCTCGCGCGCCGCGTGGTCGACGAGGGCCTCGCCGTCTTCGACGAACGGCTGCCCACGGCGGAGGACCGGGAGTGGGCGTGGCGGCTGCTGCTGGGCACCCGCAGCTACGCCGTCGTCGACGCGCCCGGCTACGTCTACCGGCGTGCCGTGGAGGGGTCGCTGACCGACATCGGGGACGCCCGTCAGCTCGGGTTCCTCGAGGCCTACGACACGGTGGTCGACCGGCTGCGCCGGGAGGGCCGGACCGAGTACGAGCCCAAGGTCGTCCGGGACGTCCTGGCCGTGCTGCACCACCACGTCAAGCGTCGCGCGTCGTACGGTGACGAGGTCTGGAGAGCGATGACCGCACGCGCCGGCCAGGTCCTGGCCCGGTTCGACCGCGGCGTCGTCGCCCAGCAGGTCGCCGGGATCGGGCCCGAGCGGGCCCGGGCGATCCGGAAGGAGGGGGTCTCGCTGTGA	MIEGEVADRMTDARPEVSVVVPARDAGGHLPDALGSLERQQVDLSRLEVVVVDDGSTDTTAEVLDAAEPRFPALRRVHHATPQGVSAARNRGVRESTGRWITFLDPDDWYFPGHLAAMLRAAERHDVDFLVSDQVQAYGNNRRLVRAPEPRRHVVLDPRSGIMPTSRSTMVNYVQVSSRMLARRVVDEGLAVFDERLPTAEDREWAWRLLLGTRSYAVVDAPGYVYRRAVEGSLTDIGDARQLGFLEAYDTVVDRLRREGRTEYEPKVVRDVLAVLHHHVKRRASYGDEVWRAMTARAGQVLARFDRGVVAQQVAGIGPERARAIRKEGVSL	PGPT0023435_262	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023435-tarS-K22708	NA	NA
AK001_00722	2100	kdsB		8-amino-3,8-dideoxy-manno-octulosonate cytidylyltransferase	ATGACCGAATCCGTGCTCGTCGTGATCCCCGCCCGTGGTGGGTCCGCCGGCGTGCCGCTGAAGAACCTGCAGCGTGTGGGCGGCACCTCGCTGGTGGCCCGCGCGACGCGCGCCGCGGCGGCCGCCGCCTCGGTGACCGACGTTGTCGTCTCCACCGACCACGACGAGATCGCCCGCGAGGCCGTCGAGCACGGAGCGCGCGTCGTCGAGCGACCGGCCGACCTGTCCGGGGCGACGGCCAGCTCGGAGTCGGCCGTGCTGCACGTGCTCGACGAGCTCGCCGCCCAGGGGCGGCCCGAGCCCGCGGTCACCGTGCTGCTGCAGGCGACCAGCCCGTTCGTGGACCCCGCCGAGCTCGACGCCGCCGTGGGCCAGGTGCTCGCCGGCGACCACGACGTGGTCGTGGCCGTGTCTCCGACGCACGACTTCCAGTGGCGCCTGGACGCCGACGGGCCCGTCCCGGTGGGGCACACCACCGACCACCGGCCCCGCCGCCAGGACCGTGCTCCCCACTTCCGCGAGACCGGCGCGTTCTACGTCATGCGCACCGCGGGCCTGCGGACCGCCGGGACGCGGTTCTTCGGTTCGGTGGGGCTGCAGCCCGTCGCGCCCGAGTGGGCGGTCGAGATCGACGAGCCCCGCGACCTGTGGCTGGCCCGCACGCTGCTGGACCAGCCGGCCGACGGCACCGAGACACGGCCCGAGCCCGGCCGGGCGCCGGTGCCGCTGGACGTCGACGCCCTCGTGACCGACTTCGACGGCGTGCACACCGACGACGGCGTCCTCGTCGACTCCGACGGCGTGGAGTCGGTGCGGGTCCACCGCGGCGACGGCCTCGGCGTCGGCCGCCTGCGCGACGCGGGCCTGCCGATCCTCGTCCTGTCCAAGGAGCGCAACCCGGTGGTCACCGCCCGGGCCCGCAAGCTCGGCGTCGAGGTCCTGCAGGGCGTCGACGACAAGGCCACGGCCCTGCGCGAGTGGTGCGTCGCGCGCGGCGTCGACCTCGACCGCACCGTCTACGTCGGCAACGACGTCAACGACCTCCCCGCCCTGCGCGTCGTCGGCTGGCCCGTGGCCGTCGCCGACGCCCACCCCGACGTCCTCGCCGCCGCGCGGGTCGTCACGGCAGCTCGCGGCGGCCACGGCGCCGTGCGCGAGATCTGCGACCAGATCGTCATCACCCACCGGAAGGACCCCGTCATGACCGCCACGACTGCCACCGCCGAGCCCCAGCCGGTCCACATCGGCGAGCACCTGGTCGGTGCCGGCCGGCCCGTCTACGTGATCGGCGAGATCGGGATCAACCACAACGGCGACGTCGAGATCTCCAAGCAGCTCATCGACGTCGCCGCGGCCGCCGGCTGCCAGGCCGTCAAGTTCCAGAAGCGCACCCCGGAGATCTCCACCCCCAAGGACCAGCGGGACAAGATCCGCCAGACCCCCTGGGGCGAGATGACCTACCTGGAGTACAAGTACAAGGTCGAGTTCGAGCGCGACGAGTACACCGAGATCGACCAGTACGCCAAGGCCCAGGGCATCCAGTGGTTCGCCTCCCCGTGGGACGTCCCCTCCGTCGCGTTCCTCGAGGAGTTCGGGGTGCCCACCCACAAGATCGCCTCGGCCTCGGTCACCGACCACGAGCTGCTGCGCGCGCTGGCCGAGACGGGCAAGCCGCTGATCCTGTCGACGGGGATGTCGACCCTCGAGCAGATCGACGCCGCCGTGGAGATCCTCGGCACCGACGGTCTGGTCATGCTGCACGCGACCTCGACCTACCCCCTCCCGCCGGAGGAGGCCAACCTGCGCACGATCGCCACGCTGCGCGAGCGCTACGGGGTGCCCGTCGGCTACTCGGGCCACGAGACGGGCCTGCAGATCTCGCTGGGTGCGGTCGCCCTGGGTGCCGTCGCGGTCGAGCGGCACATCACCCTGGACCGGGCCATGTGGGGCTCGGACCACGCCGCCTCGGTGGAGCCGAAGGGCCTGAACAACCTGGTCCGCGACATCCGCATCCTGCAGGACGCGCTCGGCGACGGCGAGAAGCGCGTGATGCCCGGCGAGATGGCCCCGATGTCGCGCCTGCGCCGCGTCGAGGGCTGA	MTESVLVVIPARGGSAGVPLKNLQRVGGTSLVARATRAAAAAASVTDVVVSTDHDEIAREAVEHGARVVERPADLSGATASSESAVLHVLDELAAQGRPEPAVTVLLQATSPFVDPAELDAAVGQVLAGDHDVVVAVSPTHDFQWRLDADGPVPVGHTTDHRPRRQDRAPHFRETGAFYVMRTAGLRTAGTRFFGSVGLQPVAPEWAVEIDEPRDLWLARTLLDQPADGTETRPEPGRAPVPLDVDALVTDFDGVHTDDGVLVDSDGVESVRVHRGDGLGVGRLRDAGLPILVLSKERNPVVTARARKLGVEVLQGVDDKATALREWCVARGVDLDRTVYVGNDVNDLPALRVVGWPVAVADAHPDVLAAARVVTAARGGHGAVREICDQIVITHRKDPVMTATTATAEPQPVHIGEHLVGAGRPVYVIGEIGINHNGDVEISKQLIDVAAAAGCQAVKFQKRTPEISTPKDQRDKIRQTPWGEMTYLEYKYKVEFERDEYTEIDQYAKAQGIQWFASPWDVPSVAFLEEFGVPTHKIASASVTDHELLRALAETGKPLILSTGMSTLEQIDAAVEILGTDGLVMLHATSTYPLPPEEANLRTIATLRERYGVPVGYSGHETGLQISLGAVALGAVAVERHITLDRAMWGSDHAASVEPKGLNNLVRDIRILQDALGDGEKRVMPGEMAPMSRLRRVEG	PGPT0019080_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-SIALIC_ACID_MODIFICATION,PGPT0019080-neuB|nnaB-K01654	NA	NA
AK001_00723	882			hypothetical protein	ATGCCGGAGGCGAATCCGGAACGGGCCACGACCCCGCCGACGGTGGCCGTCCATCTCGGCGCCCACGGGCCGACGGCGCGGGCCGTCCGGGACTGGTGCGGCAGCCACCGCGACGACCTGCGCCGACGGCGTGTGGTCGCGCGCACGACCTGGTCGGGGCTGCGCGACGCCGTCCCCGCGCTGGACTGGCGGTCCGACCGCAGCCGTCGGCAGCTGCGCGAGTACCTCACGGGCCGCGGACCGGTGCTGTTCTCCTCCCACGCGCCGCTGGGCCCCGCCTACCGGCACACCGGGGGGCCGCTGTACCCCACGGCCCCGGCCGGGGTCGACGGCGTGGCCGCGGCCCTCGCGGACGTGCCGTGGACCCTGCACCTGACCATCGGCGGCCACGCCGAGACGGTCGTCGAGTCCTGGGTCGCCGCCGTCCGCGGCGGGCACCGTGTGTCGTTCGAGGACTTCCTGCGGGCCACCGCGGAGGGCTCCTGGGTGCCGCTGGTCGAGCACCTGGTGCGGGTCGCGGGCTCCGACCGTGTCACGGTGCACGACGCCGCCGCGGCCGCGGCGTCCGGCCGCCCCGACGCCGGGCCCGCGGTCCTCGCCGCGGCCCTGGGCCAGCTGCTGGGCGAGCCGACCACGCTGGGCTCCGACGCCGCGTCGGAGCCGGAACGGCACTGGTCCGCGCGTCAGGTCGAGGTCGCCCTCACCGCGCTGCCCCACCTGCGCTCGTGGGACGAGCGGCGAGCCCTGCGCGACTTCGTCGACCGGACCGTCGACACCGACGGCGAGCCCGCCCGGCCGCTGACGGGAGCGCAGCGAGAACGGCTGGCCGCGCGGGACGCGGAGGACCGTGCCCGCCTGAGCACCCTGGTGGAGGTCCGATGA	MPEANPERATTPPTVAVHLGAHGPTARAVRDWCGSHRDDLRRRRVVARTTWSGLRDAVPALDWRSDRSRRQLREYLTGRGPVLFSSHAPLGPAYRHTGGPLYPTAPAGVDGVAAALADVPWTLHLTIGGHAETVVESWVAAVRGGHRVSFEDFLRATAEGSWVPLVEHLVRVAGSDRVTVHDAAAAAASGRPDAGPAVLAAALGQLLGEPTTLGSDAASEPERHWSARQVEVALTALPHLRSWDERRALRDFVDRTVDTDGEPARPLTGAQRERLAARDAEDRARLSTLVEVR				NA	NA	NA	NA	NA
AK001_00724	939			hypothetical protein	ATGAGCCTGCTCGACCGCGCCGCCGCCCTGCTGCGGCGGCGACCGGCACCCGACGACCGGCGGGTCGTCCTGCACCTGGGCTCGCAGAAGACGGGCACCACCGCGGTGCAGGCATGGTGCCGCGACCACGCCCCGGAGCTCCTGCGCGCCGGGGTGGTCACGCGCACCACGCAGCCGGAGATCCGCGCCGCGCTGGGCGGCTGGTACGACACCTCCCGGCAGGGGGCGGACGAGATGCTGCGGGGCTTCCTGGAGTCGGCCTGGAGGTCCAGCGGTGCGCCCGGGCTGCTCTACTCGTGCGAGTCGAACGTCGGCCCGGCGTTCACCCCGCGGGACGCGACGCTGTACCCGAAGCTCGCGGAGGCCGTCGCCGGGATCGCGCGGGCGACCGAGGGCGTCGAGCGACACGTGCAGTTCACCGTCCGCAGCTACGGCGACTTCCTCGAGTCCGCCTACCAGCAGCAGCTCAAGCACGGGCAGCCGGTACGGTTCGACGAGCTCGTGCAGCGGGTCGGCGACGGCGTCTCGTGGCGGGACGTCGTGGCCAGGCTGGTGGAGACGTTCGGCGCCGACCACGTCACCGTCTACGACTACGAGCGGTCCCGGACGGCCCCGGAGCGACCGCTGGTGGGACAGGTCCTGGCCGACGCGCTGGAGCGCCTCGGTGCCCGCGGGGTGCAGGTCGGCGACGAGGTGTCCCGCCGGACGAACACCCGCTACACCCAGCGCATGGCCGACCTGTCGGTCGACGTCCTGCCGCTGCTGACCGACGCCGACGAGCGCGCCGCGCTGCACCGGTTCGTCACGGACGCGCTCGGCCGGCGCCCCGCCGTCGACGACGTCCCGGCGTCGTTCCTCGACGCCGGGACCGCCGCACGTCTGGCCGACCGCTACGCCGAGGACGTGGAGTGGATCGCGTCGGTGGTCGAGCTGCGATGA	MSLLDRAAALLRRRPAPDDRRVVLHLGSQKTGTTAVQAWCRDHAPELLRAGVVTRTTQPEIRAALGGWYDTSRQGADEMLRGFLESAWRSSGAPGLLYSCESNVGPAFTPRDATLYPKLAEAVAGIARATEGVERHVQFTVRSYGDFLESAYQQQLKHGQPVRFDELVQRVGDGVSWRDVVARLVETFGADHVTVYDYERSRTAPERPLVGQVLADALERLGARGVQVGDEVSRRTNTRYTQRMADLSVDVLPLLTDADERAALHRFVTDALGRRPAVDDVPASFLDAGTAARLADRYAEDVEWIASVVELR				NA	NA	NA	NA	NA
AK001_00725	777			hypothetical protein	GTGCACGTCTTTCACACCCTGGCCTATCTCGACGTCGAGAAGTCCGGCTCGACCTATGTCTCGCAGTTCCTGCGGGACTTCCTCGACGACGACGAGGTCTGGTGCCGCAAGCACCACGAGATGGAGGACCGTCCCCCGCAGGGCCGGCTGCACGTGCTGTCGGTGCGGGACCCGCTGGACACGTACCTGTCGCTGTACTCCTACGGGTGCCAGCGCAAGGGCGGGCTGTCGGGCAGCCTGCGCGACGCCGGGTTCGGCCATCTGTACGACGGCACCTCCGACGGCTTCGCGCGCTGGATCGACGTCGTGCTGGACCCGGCCCACGCGGCCGCGCTGAACCCGCCGAGCTACGAGCGCCGCGGCGTGGCCGAGCACACGGGTCTGCTCTCGTACCGGGTGGCCCGGCTGGCCGCGCCGCGTCCGGACCGGTGGATGCGCGACGTCGGGTCCGCCGAGGAGTTCGTCGAGGCCTTCCGCCGGCACAGCGTCGTGGACGTGGTGCTGCGCAACGAGACGCTGCCCGAGGACCTCGAGTCGCTGGTGCTGCGCGAGGACCTGGCCTGGCGTCCGTCGCGCGAGGCGGCGCTGACGGCCGTGCGGGCCCAGCGCCGGCTGAACACCTCCGCCCGGCTGGACGCCGGGTCCGGGTTCGACCTGCCGGCCGACGTGCGCGACCGCGTGGCGGCCCGCGAGCGGCTGCTCACGGAGGTCTTCGGCTACGGCGAGGGTCATCGCAGCTCGACCACCGACGCGATCCACTCCACGTCCTCGGCGTAG	MHVFHTLAYLDVEKSGSTYVSQFLRDFLDDDEVWCRKHHEMEDRPPQGRLHVLSVRDPLDTYLSLYSYGCQRKGGLSGSLRDAGFGHLYDGTSDGFARWIDVVLDPAHAAALNPPSYERRGVAEHTGLLSYRVARLAAPRPDRWMRDVGSAEEFVEAFRRHSVVDVVLRNETLPEDLESLVLREDLAWRPSREAALTAVRAQRRLNTSARLDAGSGFDLPADVRDRVAARERLLTEVFGYGEGHRSSTTDAIHSTSSA				NA	NA	NA	NA	NA
AK001_00726	1239	manA_1	COG1482	Mannose-6-phosphate isomerase	ATGCTGATGAACACCTCACCAACGCAACGTTGCGATCTCGATGCTATCCATCTCCTCGACAATTCCGTGCGGGAGTACGACTGGGGATCGCACGACCACATCCAGCGCCTCCTCGGCCTCCCGGTGGACGGCCGACCGGCCGCCGAGCTGTGGCTCGGGGCGCACCCGGTCGCCCCGTCCCGGCTCACCGACGGCACTGCCCTGACCGAGCTCGTCGCGCGCGCACCCGAGGAGGTTCTCGGGCGCCGTACCTCCGACCGGTTCGGACCACGGCTGCCCTACCTGCTCAAGGTGCTGGCGGCACGACGCGCGCTCTCGCTCCAGGTGCACCCGCGACCGCACGCGGCGCGCGCCGGCTATCGCCGGGAGAACGCGGACGGCCTGGCCGCCTCCGACCCCGGGCGGTCCTTCCACGACGAGCAGCACAAGCCCGAGATGATCGTCGCGCTGACGCGGTTCGAGGGGCTGGCCGGCTTCCGCAGCCCCCGCACCGTCCTGGCGCTGCTCGAGGGCCTGGACGGTCGGCTGGTCGAGCAGGTCCGCGACGCCGTCCGGGGTACCCGGTCGGGGCCCGGCCTGCGTGCCGCGCTCGAGCACCTGGTCGCCTCCCGCGACGAGCCGACCTGTGCCCACGACGTCGCGACCACCGTGGCGTCCGTCCGGGCGAGGCTCGCCGCCGGCTCCCCCGACCCGCGGGCCGACGCCACGGTGCTCCGGCTCGACGAGGAGCACCCCGGCGACCCCGGTGCCGTCGCGTCGCTGCTGCTCAACCGCGTCTCGCTGGAACCGGGCGAGGCGATCTTCATCCCCGCCGGCGAGGTGCACGCGTACCTGTCCGGGGTCGGGGTCGAGATCATGGCGGCGTCGGACAACGTGCTGCGCGCGGGGCTGACGACGAAACACGTCGACGCCGACGCGCTGCTGGAGTGCGCCGCGTTCTCCCCTCGGCCCCCCGCACGGCCCGACACCGAGGTGACCGGTGCGCACTCGCTCGTGACCAGCTATCGCGCGCCCGTGAGCGAGTTCGCCCTGCTCACCGCGGACGTCCACCCGGGCGAACCCGTCGCGTTGCCGTCGGAGGGCCCGCGGATCGTGCTCGCGCTGGACGGCGAGCTGCAGCTGCTGACGGGGGCGGGCACCACGTCGCTGCGCCGGGGGCAGTCCTGCCTCGTCCCCGACGCTGCGGGCCAGGTCACCGCCGACGGCGACGGCCGGCTGGTGTGCGCCTGGGTGCCCTAG	MLMNTSPTQRCDLDAIHLLDNSVREYDWGSHDHIQRLLGLPVDGRPAAELWLGAHPVAPSRLTDGTALTELVARAPEEVLGRRTSDRFGPRLPYLLKVLAARRALSLQVHPRPHAARAGYRRENADGLAASDPGRSFHDEQHKPEMIVALTRFEGLAGFRSPRTVLALLEGLDGRLVEQVRDAVRGTRSGPGLRAALEHLVASRDEPTCAHDVATTVASVRARLAAGSPDPRADATVLRLDEEHPGDPGAVASLLLNRVSLEPGEAIFIPAGEVHAYLSGVGVEIMAASDNVLRAGLTTKHVDADALLECAAFSPRPPARPDTEVTGAHSLVTSYRAPVSEFALLTADVHPGEPVALPSEGPRIVLALDGELQLLTGAGTTSLRRGQSCLVPDAAGQVTADGDGRLVCAWVP	PGPT0017860_1708	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809	NA	NA
AK001_00727	2016			hypothetical protein	ATGGACGCCGCTCGGCAGCACGACGTCACGTCCGGGCCGCGGCGCTCGCTCACCGTCGGTCTCCTGCCGGACCGGGTGCGGCTGACCTTCGGCCCCGAGTCGTCGTCCCGCACCACGGCGGTCGGCACCGGCCTGCGCGGACGGCCCGTCGACCGGTGGAGCCCGTCCACCGGGGCCGCGACGGGTGACACGGTCGAGCTCTCCCTGCCGGACCTCGTCGCCGCGTACCCGGACGCCGCCGTCGTCGACCTGTGGCAGCAGGTCGAGACGCCCTCGGGCGAACCTCGGGTGCGGCGTCTCGGCCGCTTCCCGCGCACGTTCCGCGAGGTCGAGTCGACGGAGTGCGTCGTCGACGGCCGGTCGGTGCGCCTGCGCGTGAACGACAAGGGGAACCTCGTCCTCGTCCTGGACGACGCCGTCGCCCCCCGGGGGTTCGCCGTCGACGCCGGCACGGTCTCCCACCAGGACGCGACGCTCGCCGTCGCTCTGACGGTGGCGGCGTTCGACCGCGAGCTCGAGCACGTCGAGCTGCTGGTCTCGTCCCGCCGCACCGCAGCGGAGTCCGGCGTGGTCCTGGCGACGGAGCCGGACCGGAGCGCGTCGGAGCGTCGGTACGGGGCGGTGGTCCACCGCGTCGAGGGCGCCCTGGACCTCAGGGACCTCCTGTCACGGTCGGGTCCCGACGAGACCCGCCTGGACGCCCGACTGGTGCTGACCGACACCAGCGGGCGAGTCCAGACCGTGCGCCTCAACGAGCGGCACGTGGCGCAGGGGACGCTCGAGCCGTCCGCCGTCGTCGTCGACGCCACGGTGCTGCACGTGGTCCCGCACTTCGCCTTTCTCTCGGGCGGTCTCGGCCTGCAGGTGGACCGGTTCACCCCGCGGGCGCACGCCGCGCTCGAGCGCGTCGTCCGACGGCCCTGGTGGACGGCGGCGGCCCGCAGGATCCTCGGCATCTGGTTGATCGGCGAGGTCCCGTACAAGGCTCAGGACAACGGCTACCACTTCTTCCGCTGGGTCCGGACCCGGCGTCCGTGGCGGCTCGCCTTCTACGTCATCGACGCGGACTCGCCCGACCGGTCGCGGGTGGAGCCCTTCGGACGTGTGGTCGAACGGGGCTCGGTCGAGCACGTGTACCTCGCCGCGTGCGCATCGCGGCTGGTCGGCACGCATCATGCCGACTACCTGCTGCCCACGTCCGATCCCCGGATGCAGGCGGCCGCTCCGGGAGTCCAGGTCATGCTCCGGCACGGCGTGCTCGGGATGAGGAACATGGCCGCGACCTACGGAAGCTCCGGTCGGGTCCGTGCCGCGGACGTGGTGCACGTCAGCTCGGATCGCGAGAAGGACATCGTGGTCGGTGACCTCGGATACGAGGCACACCGTGTGCGGGTCACGGGCCTGCCGCGCTTCGACGCGCTCCTCGCTCCGACGGAGACCCGCCCTCGGGGCCTGCTCGTGATCCCGACCTGGCGCAGCTGGCTCGGGAACCGCCGTCAGTTCGACGACAGCGAGTTCCGGGTCCGCTGGCAGGCGTTCTTCGATCATCCGGCGGTCCGCGGGATGATCGACCGAGGTGAGCGTGTCTCGTTCATCCTGCACCCGAACATGCGCCACTTCGCGGACGGCTTCGACGTCACCGGCGTCGAGGTGTACCGCCAGGGGGAGCGCGCGGTGCAGGACCTGATGCGCGAGCACGCGGCGCTGGTGACGGACTACTCGTCGGTCGCGTTCGACTTCGCGCTGCTGGAGCGTCCGACCTTCTACTTCCAGTTCGACCGGGACCGGTTCTTCGGGTCGGGCGGCAGTCATCTCGATCTCGATGCCGAGCTGCCGGGGCCCGTCCTGTACGACGAGGACGCCTTGGCCTCGGCCGTCGCGACCGCCAGTGCCGAGGGGTTCCCCCTGGAGCCGACGTATCGGGAGCGGGCGCTGCGTGTCTTTCCCGCCCATGACCGCAGGAGCACGTACCGGGCCTATCGTTCGGTCCGTGCCGCTCGTCGCCGGGGACGCTAG	MDAARQHDVTSGPRRSLTVGLLPDRVRLTFGPESSSRTTAVGTGLRGRPVDRWSPSTGAATGDTVELSLPDLVAAYPDAAVVDLWQQVETPSGEPRVRRLGRFPRTFREVESTECVVDGRSVRLRVNDKGNLVLVLDDAVAPRGFAVDAGTVSHQDATLAVALTVAAFDRELEHVELLVSSRRTAAESGVVLATEPDRSASERRYGAVVHRVEGALDLRDLLSRSGPDETRLDARLVLTDTSGRVQTVRLNERHVAQGTLEPSAVVVDATVLHVVPHFAFLSGGLGLQVDRFTPRAHAALERVVRRPWWTAAARRILGIWLIGEVPYKAQDNGYHFFRWVRTRRPWRLAFYVIDADSPDRSRVEPFGRVVERGSVEHVYLAACASRLVGTHHADYLLPTSDPRMQAAAPGVQVMLRHGVLGMRNMAATYGSSGRVRAADVVHVSSDREKDIVVGDLGYEAHRVRVTGLPRFDALLAPTETRPRGLLVIPTWRSWLGNRRQFDDSEFRVRWQAFFDHPAVRGMIDRGERVSFILHPNMRHFADGFDVTGVEVYRQGERAVQDLMREHAALVTDYSSVAFDFALLERPTFYFQFDRDRFFGSGGSHLDLDAELPGPVLYDEDALASAVATASAEGFPLEPTYRERALRVFPAHDRRSTYRAYRSVRAARRRGR	PGPT0023450_674	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023450-tagF-K09809	NA	NA
AK001_00728	1137	glf	COG0562	UDP-galactopyranose mutase	ATGAACGCCGACCTCGTCGTCGTCGGGACCGGGTTCTTCGGCCTGACCGTGGCCGAGCGGATGGCCGCGGCCGGGCGCAAGGTGCTGATGATCGACCGCCGGGACCACCTGGGTGGCAACGCGTACTCGGAGGCCGAGCCCAGCACCGGCATCGAGGTGCACCGCTACGGCGCCCACCTGTTCCACACCGCGAACGAGCGGGTGTGGGAGTACGTCAACCGGTTCACGTCCTTCACCTCGTACGAGCACCGTGTGTACACCACCCACCGGGGGGAGGTGTTCCCGATGCCGATCAACCTGGGCACCATCAACCAGTTCTTCCGGTCCGCGTACGGCCCCGCCGAGGCCCGGGCGCTCCTGGCGGAGCAGGCGGCCGAGCTCGGCGACCGGACGCCGGAGAACCTCGACGAGCAGGGCGTCCGCCTGATCGGGCGACCGCTGTACGAGGCGTTCATCCGGGCGTACACGGCCAAGCAGTGGCAGACGGACCCCCGCGACCTGCCCGCCTCGATCATCAAGCGGCTGCCGGTGCGGTACACCTACGACAACCGCTACTTCAACGACCCCCACCAGGGACTGCCCGTGGACGGGTACACCGCGTGGCTCGAGCGCATGGCCGACCACCCGAACATCGAGGTCCGGCTCTCGACGGACTTCTTCGACCCGTCCCAGCCGGTGCACCAGGCCGCCGTGGTCGGCCAGGTCCCCGTCGTCTACACCGGGCCCGTCGACCGGTACTTCGACTACGCCGAGGGCGAGCTGTCGTGGCGCACCCTCGACTTCGAGACCGAGGTCCTCGACGTCGGCGACTTCCAGGGAACGTCGGTCATGAACTACGCCGACGCCGAGGTCCCCTACACGCGGATCCACGAGTTCCGGCACTTCCACCCGGAGCGCGACTACCCGGGCGACCGCACCGTCATCATGCGGGAGTACTCGCGGTTCGCAGCGCGCCAGGACGAGCCGTACTATCCGGTGAACACCGCCGATGACCGCGAGCGCCTGCGGCGGTATCGCGAGCTGATGGCCGGCGAGACCGACGTGCACTTCGGCGGGCGCCTGGGCACCTACCAGTACCTGGACATGCACATGGCGATCGGCTCGGCGCTGTCGATGGTGGACAACCGGCTGTCGTAG	MNADLVVVGTGFFGLTVAERMAAAGRKVLMIDRRDHLGGNAYSEAEPSTGIEVHRYGAHLFHTANERVWEYVNRFTSFTSYEHRVYTTHRGEVFPMPINLGTINQFFRSAYGPAEARALLAEQAAELGDRTPENLDEQGVRLIGRPLYEAFIRAYTAKQWQTDPRDLPASIIKRLPVRYTYDNRYFNDPHQGLPVDGYTAWLERMADHPNIEVRLSTDFFDPSQPVHQAAVVGQVPVVYTGPVDRYFDYAEGELSWRTLDFETEVLDVGDFQGTSVMNYADAEVPYTRIHEFRHFHPERDYPGDRTVIMREYSRFAARQDEPYYPVNTADDRERLRRYRELMAGETDVHFGGRLGTYQYLDMHMAIGSALSMVDNRLS	PGPT0022675_919	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854	NA	NA
AK001_00729	1863			hypothetical protein	ATGTCCGCCGCCCCCGTAGTCGTCGCCGTCGTCGTGTCGTACAACCGGGCCGAGCTGCTCGGCCAGGCGCTCGACGCCCTCGGCGACCAGAGCCGTCCGGTCGACCACGTCGTCGTGGTCGACAACGCGTCGACCGACGAGGCGCTGTTCGTGGCCCGTGAGCACCCCACGGAGCCCCGCGTCGTGCCGCTCGCGCGCAACACCGGTGGCGCCGGCGGCTTCGCGGTCGGCGTCGCGACGGCGGTGACCGACCACGGCGCGGACCTCGTGTGGGTGATGGACGACGACACCGTCCCCACCCCGACGGCCCTGGCCGAGCTGCTCGCGGCGCGGGGCGCCTACGACGGCGAGGTCGTCGCGCTGTGCAGCCGGGTCGTGTGGACCGACGGCTCCGACCACCCGATGAACACCCCGCGCCCGCGCCCGGGCGTCTCGCCGGCCGATGCGGCGCGCGCCCACGAGGCCGGAGCGGTCCCGGTCCGCTCGATGTCCTTCGTGTCCATGCTGATCGACGCCGCGGCCGTCCGCCGCGCCGGTCTGCCGGTCACCGACTACTTCATCTGGAACGACGACTTCGAGTACTCCGCCAGGCTGCTGCGGCACCGCGTGGGTCTCTCCGTCCCGGCGAGCGTCGTCGAGCACCGCACCAAGAAGCTGGGTGCCACCGACGCCGACCCCGGCCCGCGCTTCTACTACGAGGTGCGCAACAAGGTCTGGATGTTCACCCGGTCCGACGCGCTGGGCGCCGGCGAGCGGATCCTCTACGGCGGGTCGACCGTGCGGCGCTGGGCACGGACGTTCTGGCGCTCGCAGGACCGCTCGACCCTCGTCACCGCCGGTGCCCGGGGACTGTGGCACGGCCTGTTCCGCGGACCGCGACCGGACACGGAGGTCCTGTCCGGCGTCGGACCGGCCGCCCTGACGGTCGCCCGGCTGGAGGCCGGGGCGTCGTCGCCGGCCCCGGTCCACGTCAACCGGATCGCGGCCGCCCCCGGGTCCTTCGTCGCCGGGGAGCCGCTGGAGGACCGACGGTTCTCCGTGCTGCTGCCGGTCTACCGGGGGGACGACGCGGCGCACCTCGAGCGGGGCTTCCGCTCGGTGACCGAGGACCAGGAGCTGCGTCCGGACGAGGTCGTCGTGGTCCGCGACGGCCCCGTCGGCGAGGAGCTGGCCGCCGTGCTCGAGCGGCTGCCCGGGCTCACCGAGGTGCCGGTGACCGTGGTGCCGCTGCCGCACAACCTCGGACTGGCGCGCGCCCTGGAGGAGGGGCTCGCCGTGTGCGCGCACGAGATCGTCGCGCGGGCGGACGCCGACGACATCTCGCTGCCGGAGCGGTTCGCCGAGCAGGTGCCGCTGGTGTCCTCCGGGTACGACATCGTCGGCTCGGCCATCTGGGAGTTCGACGAGGACGAGCACGACCGCGGCCTGGTCCGGGTGCCGCCCACCGGTGCCGGCATCGCCGAGGCGGCCCGGTTCCGCGACCCCTTCAACCATCCCTCGGTCGTGTACCGGCGCTCCGCGGTGGCCGCCGTCGGGGGCTACCAGCACCTCGACCTGATGGAGGACTACCTGCTCTTCGCCCGCATGCTGGCGGCGGGTGCCCACGCGCAGAACATCACCGAGCCGCTCGTGCTGTACCGCGTCGGCGCCGGCGCGTACGCCCGGCGCGGGGGACGACGGCTGCTCGCCTCGGAGCTGGCGCTGCAGCGGACGCTGCACTCCGAGGGGTTCGTGTCCACCCCGCAGCTGGTGCGCAACGTCCTGGTGCGGGCCGGGTACCGGCTGGTCCCCGAGCGGGTCCGCGCCGCGGGCTACCGGACCTACACCCGCCGCCGCGGCGGCTACGTCCCCGACGACCTGTAG	MSAAPVVVAVVVSYNRAELLGQALDALGDQSRPVDHVVVVDNASTDEALFVAREHPTEPRVVPLARNTGGAGGFAVGVATAVTDHGADLVWVMDDDTVPTPTALAELLAARGAYDGEVVALCSRVVWTDGSDHPMNTPRPRPGVSPADAARAHEAGAVPVRSMSFVSMLIDAAAVRRAGLPVTDYFIWNDDFEYSARLLRHRVGLSVPASVVEHRTKKLGATDADPGPRFYYEVRNKVWMFTRSDALGAGERILYGGSTVRRWARTFWRSQDRSTLVTAGARGLWHGLFRGPRPDTEVLSGVGPAALTVARLEAGASSPAPVHVNRIAAAPGSFVAGEPLEDRRFSVLLPVYRGDDAAHLERGFRSVTEDQELRPDEVVVVRDGPVGEELAAVLERLPGLTEVPVTVVPLPHNLGLARALEEGLAVCAHEIVARADADDISLPERFAEQVPLVSSGYDIVGSAIWEFDEDEHDRGLVRVPPTGAGIAEAARFRDPFNHPSVVYRRSAVAAVGGYQHLDLMEDYLLFARMLAAGAHAQNITEPLVLYRVGAGAYARRGGRRLLASELALQRTLHSEGFVSTPQLVRNVLVRAGYRLVPERVRAAGYRTYTRRRGGYVPDDL				NA	NA	NA	NA	NA
AK001_00730	1821	glfT2	COG1216	Galactofuranosyltransferase GlfT2	GTGCTCCTTGCCCAGCGACTGGTCCTGTCCGGTAGCCCCGAGCGCCGTCTGCTGTGCCTGCCACCGGGGCCGGGCCGCGCCGTCGACGGCGTGCTCCGGGTCCCCGACGGCACGGTGCAGTCCACGGCGGCGTACCTCAACGGTCTCCCTGCCGCGTACTGGGTCCGGTGGACGGGCGCGCGGCGAGCTCGACTCACGCTCGACGCGACCGGCCAGGGTCAGGTCCGCGTCCTGCGCTCCGACGACGAGGGGCAGGCCCACGAGGTGACCCGTGGTCTGCTCGGGGAGCCGCTCGACGTCGATCTGGCCGGGATGGCCGGTGGCGGCTGGCTGTGGTTCGAGGTGGAGGCCGGCGCGGGCGGTGCGGAGATCTCGGCCGGGGCATGGTGGCTCGACGCGGACCGGCGTCGGTCCGGCGAGGTCGTCGTCTCGATCACCACGATGGACAAGCCCGACTACTGCCTGGCCACGTTGCGCACGCTCGCGGACTGCGCGGAGCTCGTCGACGAGGGCGTCCGGGTCCAGGTGGTCGACCAGGGGACGCGGAAGGTCTCCGCCCAGGACGGGTTCGCCGAGGTGGCCGCCCGGCTGGGCGATCGTCTGCACGTCGTCGACCAGCCGAACCTCGGGGGCTCGGGCGGCTTCTCCCGCGGGATGCTCGAGACGCTCGACGCGGGGGCCGACGCCGTGCTGATCTGCGACGACGACGTCGAGGTCGAGCCGGAGTGCCTCCTGCGAGCCGTGCGGTTCCACCGGGCGGCGACGTCGCCGGTGATCGTGGGTGGGCACATGTTCGACCTGGCGCGCCCGACGGTGCTCAACTCGTTCAGCGAGGTGGTCCACCGGCGCACCTTCAACTGGGGACCACCCCGGATGGACGAGCAGTGGCAGGACCTCGGCGGCGGTCTGCGCACGGCCCCGTGGGTGCACCCGCGGGCCGCGTCGGACTTCAACGGGTGGTGGATGTGCCTCATCCCCACCGAGGTGCTGCGGACCGCCGGGCTGAGCATGCCCTTCTTCCTCAAGTGGGACGACGCCGAGTTCTGCCTCCGCGCCGGCGAGGCCGGCTACCCGACCGTGTCGCTGCCCGGGGCCTGCCTGTGGCACATGGCCTGGACGGAGAAGGACGACTCGGTGGAGTGGCAGGCCTACCTGCACGTGCGCAACCGGGTCGTGACGGCGCTGCTGCACGCGTCGGGCCCCCGCCTCCTCCCGCTCGCCCTGCTCGGCACCGACCTCAAGCTGCTCCTCGCGATGCGGTACTACCCGGTGGACCTGCACCTGCGAGCGCTGCGGGAGGTCGTCGAGGGGCCCGAGCGCCTGCACGCCGAGCTCGGCACCGTCGTGGGTCGGGCGCGCGCCGTGGGTGCCGAGCACCCGGAGACCGTGCGGTACCGGACCGGTGACGCGGTGTTCGACGCCGCCGGGGAGCCGCAGGAGGCCGACGGGGCCAGCCGGACGCGGCCGACGGGGCCGTGGGCCCTGGGCCGGTTCGTCCTGCGCGGGCTCGTCCGGACCCTGCGTCCGCTGCCCGACGCCGCCCGAGAACGTCCCTCGACCGTGCTCGCCCGGGAGTCGGCGTCGTGGTGGGAGGTGCCGGCGCACGACTCCGTGCTCGTCCTGGACGCCGACCGCCGCAGCGGGGTCTGGCTGCGTCGGGACCGCGCGACCTTCTGGCGGCTGGCGGGGTCCGCCGTCGTCGAGCACGCGCGACTGACGTGGCGCTGGCGCTCCCTGGCGCGTCGGTGGCGGACGGCTGCGCCGCGGCTCACGTCCCCGCAGCGGTGGCGGTCGACCGTGGCACCGGACCCGGACCTTTAG	MLLAQRLVLSGSPERRLLCLPPGPGRAVDGVLRVPDGTVQSTAAYLNGLPAAYWVRWTGARRARLTLDATGQGQVRVLRSDDEGQAHEVTRGLLGEPLDVDLAGMAGGGWLWFEVEAGAGGAEISAGAWWLDADRRRSGEVVVSITTMDKPDYCLATLRTLADCAELVDEGVRVQVVDQGTRKVSAQDGFAEVAARLGDRLHVVDQPNLGGSGGFSRGMLETLDAGADAVLICDDDVEVEPECLLRAVRFHRAATSPVIVGGHMFDLARPTVLNSFSEVVHRRTFNWGPPRMDEQWQDLGGGLRTAPWVHPRAASDFNGWWMCLIPTEVLRTAGLSMPFFLKWDDAEFCLRAGEAGYPTVSLPGACLWHMAWTEKDDSVEWQAYLHVRNRVVTALLHASGPRLLPLALLGTDLKLLLAMRYYPVDLHLRALREVVEGPERLHAELGTVVGRARAVGAEHPETVRYRTGDAVFDAAGEPQEADGASRTRPTGPWALGRFVLRGLVRTLRPLPDAARERPSTVLARESASWWEVPAHDSVLVLDADRRSGVWLRRDRATFWRLAGSAVVEHARLTWRWRSLARRWRTAAPRLTSPQRWRSTVAPDPDL	PGPT0024215_476	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLING	CE-REMODELLINGGALACTOFURANOSYLTRANSFERASE_ACTIVITY,PGPT0024215-glft2-K16650	NA	NA
AK001_00731	1317			hypothetical protein	ATGTCTTACCAAGCAGTCCGCCGACTGGCAGCAGCCGCACTCACCGGGTTCCTCGTCCTGGCCGGTGGTGCTGCGACGACGACGCCGGCGTCCGCGGCGAGCTACCCGGACGAGTTCACCGTCACGGGTTCCGGCTACGGCCACGGTGTGGGGATGAGCCAGTTCGGCGCCTACCAGCTCTCCCGCGAGGGCGCCGGGGGGATCAAGATCCTCAAGCACTACTACACGGGTGCCCGCGCCCCGTACACCGCGACGCCGAAGCGCATCAGGGTCCAGGTCTACGGCCCCGACCCGTACGGATACTCGAGCTCGTCCTGGGGCGACGGCGGCCGCACGACCTGGGTCACCATCACCGGGGGTGACTGGAGGATCCGCAAGCCCGGCGTCGGCACCAAGGCGCAGGGCAGCGGCCCCGTCACGATGAAGGTGCGCATCGGCAACAAGGGGGCCGTGCGCGTGAAGGTCGACGGCCGGGTCTACAAGGGCGACATGATGCGCATCCAGTGGTCCGGCACGAGCTACTGGCGGACCCGGGGCGACCAGGCCGTCGCCACGATCGACGGCGCGCACGGGGCGTACCGGCACGGGCGGCTGACCATCGTCAACCGCGAGATGACCCCGAACATCACCCACGACGTCCTGCTGAACACCGAGTACCTGTACGGGATCGCCGAGATGCCGTCGTCGTGGGGCTTCTCGGGCGGGAAGTACGCGCTGCGGGCCCAGGCGATGACGGCGCGGTCCTACGCGATGGCCAAGCACGACGGGAAGCCGGACTGCCGCTGCCACCTCGTCGACGACGTGCGCGACCAGCACTACACCGGCTGGCTCAAGGAGAGCGAGGGGAGCGACGGCCGGTACGGCGCGCAGTGGGTCGCGGCCGTCGACAAGAACACCCGCGGCGCGCGGGAGGCGCGCGCCCTCCAGGTCGGAGGGGAGCCCGTCATCGCCCACTTCTTCTCCTCCAGCGGCGGACGGACGGCGAACTCCGAGGACGTGTGGTCCAGCGCGCTGTCCTACGAGCGCAGCGTGGACGACCCGTACAGCCTGCGCGCGCCGGGCAACTCCTACGCGTCATGGACCCGCACGATCACGCAGCAGGCCGCCCGCGACCTGTTCGACCTGAACAACGTCGCCTCCATCGAGGTGACGCGGACGTGGTCCAGCGGTCAGGTCCGCACGCTGCAGGGCACGCAACCGAACGGGCGCACCGCCACGATCAGCGGCAAGGCGGACCAGATGCGTCACTGGATCGGCCGGGCGACGGAACGCGGCAGCATGCCCGCGGCCTGGATCACGGACGTCCAGGGGAGCTGA	MSYQAVRRLAAAALTGFLVLAGGAATTTPASAASYPDEFTVTGSGYGHGVGMSQFGAYQLSREGAGGIKILKHYYTGARAPYTATPKRIRVQVYGPDPYGYSSSSWGDGGRTTWVTITGGDWRIRKPGVGTKAQGSGPVTMKVRIGNKGAVRVKVDGRVYKGDMMRIQWSGTSYWRTRGDQAVATIDGAHGAYRHGRLTIVNREMTPNITHDVLLNTEYLYGIAEMPSSWGFSGGKYALRAQAMTARSYAMAKHDGKPDCRCHLVDDVRDQHYTGWLKESEGSDGRYGAQWVAAVDKNTRGAREARALQVGGEPVIAHFFSSSGGRTANSEDVWSSALSYERSVDDPYSLRAPGNSYASWTRTITQQAARDLFDLNNVASIEVTRTWSSGQVRTLQGTQPNGRTATISGKADQMRHWIGRATERGSMPAAWITDVQGS	PGPT0024670_409	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE-STAGE_II_SPORULATION,PGPT0024670-spoIID-K06381	NA	NA
AK001_00732	198			hypothetical protein	GTGAGCGACCCGACCCCCCCGATGGACCCGTGGGTGCGCAGCGTGCTGCGCTGCCCCGTCACCGGTGCCGAGCTGGTCGACGCCGTCGGCCCCGAGGGCACCCCGGAGCTCCGCTCCACCGACTCGGAGCGGCCGCTGGCGTACCCGGTCCGCGACGGGATCCCGGTGCTGCTCGAGACCGAGGCACGGGCGCTCTGA	MSDPTPPMDPWVRSVLRCPVTGAELVDAVGPEGTPELRSTDSERPLAYPVRDGIPVLLETEARAL	PGPT0022380_14	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022380-lpxK-K00912	NA	NA
AK001_00733	1428	algC	COG1109	Phosphomannomutase/phosphoglucomutase	GTGACGACGAACCTGGCGAAGATCGTGAAGGCCTACGACGTGCGTGGCCTGGTCCCGGCCGAGCTGTCGCCGCGGGTGGCGTGGGCGCTGGGCGTGGCGTTCGCGGAGGTCGTGGCGCTGCGCGAGGGGGCGTCGCGGGTGGTGGTCGGCCGGGACATGCGGGACTCGGGTCCGGCGCTGGCGCGGGAGCTCGCGGCGGGTCTGACGAGTCGGGGCGTGGACGTCGTCGACGTCGGGCTGTGCTCGACCGACGGGTTGTACTTCGCCTCGGGCAGCCTGGAGGCGCCCGGGGTGATGTTCACCGCCTCGCACAACCCGGCGGAGTACAACGGGCTGAAGCTGTGCCGGGCCGGGGCGCGGCCGGTGGGCCAGGACACGGGCCTGGCGCAGGTGCGCGACCGGGCCCAGGAGATCCTGGACGGTTCCGAGCCGGACGTGGCCGCCACGCCGGGCCACGTGGTCGAGCAGAACGTGCTGGGCGACTACGCGGGGTTCCTGCGTTCCCTGGTGGACCTGTCGGCGGTCCGGCCGCTGAAGGTCGTCGTGGACGCCGGGAACGGCATGGCCGGGCTGACTGTCCCGGCGGTGCTGGGCGAGGCGGCGGGACTGCCGGCCGTGCCCGTCGAGGTCGTGCCGCTGTACTTCGAGCTGGACGGCACGTTCCCGCACCACGAGGCCAACCCGCTGGAGCCGGAGAACCTGCGCGACCTGCAGCGCGCGGTGGTCTCCCACGGCGCCGACCTCGGCCTGGCGTTCGACGGTGACGCCGACCGCTGCTTCGTGGTCGACGAGACGGGCGCGGCGGTGTCCCCGTCGGCGATCACCGCGCTGGTGGGGATGCGCGAGATCGCCCGCGAGCAGGCCGCCGGCCGGGCGGCGACGGTCATCGCGAACCTGATCACCTCCCGGGCGGTGACCGACCTGCTCGGCGAGTCCGCCACCGTGGTGCGCACCCGGGTGGGCCACTCCTTCATCAAGCAGACCATGGCTGAGCACGAGGCCGTCTTCGGCGGGGAGCACTCGGCGCACTACTACTTCCGCGACTTCTGGTTCGCCGACACCGGCATGCTCGCCGCGCTGCACGTGCTGGCCGCGCTCGGCGGCCAGCCCCACCCCGCCAGCGCGCTGTCCGACATGTACACGCCGTACAGCGCCTCGGGCGAGCTCAACTCGACCGTGACCGACCCCGGCGCGACCGTGGAGCGCGTGCGCACCACCTACGAACGCGCCTACCCCGAGGCGGTCGTGGACACCCTCGACGGCCTGACCGTCACGCACTGGGACGACCAGCACCCCAAGTGGTGGTTCAACCTGCGCGCGTCCAACACCGAACCCCTGCTGCGCCTCAACGTCGAGGCCGCCGACCACGACATCATGACCAAGCTGCGCGACGACGTGCTGTCCCTCGTGCACGAGGAGGACCTGTGA	MTTNLAKIVKAYDVRGLVPAELSPRVAWALGVAFAEVVALREGASRVVVGRDMRDSGPALARELAAGLTSRGVDVVDVGLCSTDGLYFASGSLEAPGVMFTASHNPAEYNGLKLCRAGARPVGQDTGLAQVRDRAQEILDGSEPDVAATPGHVVEQNVLGDYAGFLRSLVDLSAVRPLKVVVDAGNGMAGLTVPAVLGEAAGLPAVPVEVVPLYFELDGTFPHHEANPLEPENLRDLQRAVVSHGADLGLAFDGDADRCFVVDETGAAVSPSAITALVGMREIAREQAAGRAATVIANLITSRAVTDLLGESATVVRTRVGHSFIKQTMAEHEAVFGGEHSAHYYFRDFWFADTGMLAALHVLAALGGQPHPASALSDMYTPYSASGELNSTVTDPGATVERVRTTYERAYPEAVVDTLDGLTVTHWDDQHPKWWFNLRASNTEPLLRLNVEAADHDIMTKLRDDVLSLVHEEDL	PGPT0017865_1351	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-COLANIC_ACID_METABOLISM	CE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840	NA	NA
AK001_00734	1209	manA_2	COG1482	Mannose-6-phosphate isomerase	GTGGCCGCGCTGCACCCGCTCGAGAACCCCCTGAGGAGGTACGACTGGGGGTCGCCGACACGTATCCCCGCACTCCTGGGCCTGCCCGCGGACGGCCGTCCCGTCGCCGAGCTCTGGCTGGGAGCGCACCGCAGCGCACCCAGCACCTCGGCGGGCGTCCCGCTGCACGAGATCGTGCGTGCCGACCCCGTCGGCGTCCTGGGCGAACGGGTCGCCGACCGGTTCGGTCCCCGGCTGCCCTACCTGCTCAAGGTGCTGGCCGCCGACCGGTCGCTGTCGCTGCAGGTCCATCCCCGGCCGCACCTGGCCCGCGCGGGCTTCCACCGGGAGAACCGGCTCGGCATCCCGGCCGGCTCGCCCGAGCGGTCCTTCCACGACGACCAGCACAAGCCGGAGATGGTGGTCGCGCTCACCGAGTTCGAGGGGCTCGCGGGTTTCCGCACGCCCCGCAGCGCCCTCGCGCTCCTGGACGGGCTCGAGGGCCCGATCGTCGACGCGGTGCGCGCGGAGCTGCGGGCCGACCGCTCGGAGCGGGGGGTCCGCGCCGCGTTCCGGACGCTGCTGGCGTCCCGGGACTCGACGTCGTGCCCGGAGTCCGTCGAGAAAGCGGTCGCCGACGTTCGTGCCCGGCTGGGGCCCGGGTCCCCGTCCCAGCGGGCCGACGCCACCGTGCTGGCGCTGGCGCAGGAACATCCCGGCGACCCGGGTGTCATCGCCTCGCTGCTGCTCAACCGGGTCACCCTCGACCCGGGCGACGCCCTGTTCCTGCCACCCGGCGAGGTGCACGCCTACCTCGGCGGGACGGCCGTCGAGGTGATGGCGTCCAGCGACAACGTGCTCCGCGCCGGGCTGACCAGCAAGCACGTCGACGTCGAGGCGTTGCTGGAGTGCGCCTCGTTCGCGCCGCGGCGCCCGGCGACCCCCGAGATCACCACGACGGGCACGCGGGGGCACGTGACGACGTACCGCGCCCCGGTACCGGAGTTCGCCCTGACGGTCGCCGACGTCGACCCGTCGGGACCGGTCGACCTCCCGGACGCCGGGCCGCGGATCGTGCTGTGCCTGGACGGCGCGGTCACGCTCACGGCGGAGCACTGCGACACCGGGCCCGCCGACCTGCCCCGAGGGTCGTCGGTCTTCGTCCCGCACGACGCCGGCGACCTCGCGGTGGCCGGCGCGGGGCACGTCGTCTGCGCGTGGGTGCCCTGA	MAALHPLENPLRRYDWGSPTRIPALLGLPADGRPVAELWLGAHRSAPSTSAGVPLHEIVRADPVGVLGERVADRFGPRLPYLLKVLAADRSLSLQVHPRPHLARAGFHRENRLGIPAGSPERSFHDDQHKPEMVVALTEFEGLAGFRTPRSALALLDGLEGPIVDAVRAELRADRSERGVRAAFRTLLASRDSTSCPESVEKAVADVRARLGPGSPSQRADATVLALAQEHPGDPGVIASLLLNRVTLDPGDALFLPPGEVHAYLGGTAVEVMASSDNVLRAGLTSKHVDVEALLECASFAPRRPATPEITTTGTRGHVTTYRAPVPEFALTVADVDPSGPVDLPDAGPRIVLCLDGAVTLTAEHCDTGPADLPRGSSVFVPHDAGDLAVAGAGHVVCAWVP	PGPT0017860_859	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809	NA	NA
AK001_00735	345			hypothetical protein	GTGGCAACCCTCACTTACGTGTACGCGGACTCGACCGCGGTGCTGGGGCCGCTGGCGCAGCGCGCCGAACCGCACAGCTACGACCTGTGCGCCCAGCACGCGGAGCGCCTCACGGCGCCGCGCGGCTGGGAGGTCGTGCGGCTGCAGCCGGAGTTCGAGACGCCGGCCCCTTCCAAGGACGACCTGTCGGCGCTCGCCGAGGCGGTCCGCGAGGCGGGACGCGGCGGGCGGGCGACGCAGCGTCCGGCACCGGCCGAACCCGCCAGCGTCACCGAGACGGCGCGCCGCGGGCACCTCCGCGTGCTGCGCGCCGAGTCCGACGGCGGCCCTGCCGCGGGCGTCTGA	MATLTYVYADSTAVLGPLAQRAEPHSYDLCAQHAERLTAPRGWEVVRLQPEFETPAPSKDDLSALAEAVREAGRGGRATQRPAPAEPASVTETARRGHLRVLRAESDGGPAAGV				NA	NA	NA	NA	NA
AK001_00736	486			hypothetical protein	GTGTCGCGCGGGGACCTGGGCTCCAGGCGCGCCGGGACTGGATACCCTCGGATCGTGAACGACGCCGCACCGCACCACGGCCTCCGTCGCCGCGACCGCCGTGGGCGAGGGCTGCGCGGCCCTCTGGTACCCCCGGGCCTGCCGGGGCACCGCACGCGCGCCGAGCGGTTCGACGACACCGTGCTGGCGGCGGTCGAGTCGATCGAGCGTCGGTGGCCGGCGGTGGGCCGGGCCGAGTTCGGCGTCGAGGACGTGCCCCCGTCGGACCCCGCGCCCTGGGAGTCGAGGGGCGTCCCGCTGGGGCGGCTCTTCCCGGCCGAGGCCGGTCAGCCGGCCCGCGTCGTCGTCTACCGCCGACCGGTGGAGACCCGCGCCGTCGACCCGGAGGACCTCGCCGACCTGGTCCACGAGGTCGTGGTGGAGCAGGTCGCGCACCTGCTGGCCCGGACGCCGGAGGAGATCGACCCGCGGTTCGGCGATCGCTGA	MSRGDLGSRRAGTGYPRIVNDAAPHHGLRRRDRRGRGLRGPLVPPGLPGHRTRAERFDDTVLAAVESIERRWPAVGRAEFGVEDVPPSDPAPWESRGVPLGRLFPAEAGQPARVVVYRRPVETRAVDPEDLADLVHEVVVEQVAHLLARTPEEIDPRFGDR				NA	NA	NA	NA	NA
AK001_00737	1608			hypothetical protein	ATGAGGGGCCGCCGGACCGTGCGCCGGATCGCCCTCGTGACGTCCGGCACCGCCGTCGCCGCGGCGCTCGTCGCCACGGCGGCCGTCGGGGAGCAGTGGGCGCAACGATTCACCGCCCCCGAGTCGACGGCGGTCGCCGCGACCACGCGCCAGGTCGAGGTCGACCCGCCGACCTCGACGTACGTCTGCCCGCGACCGGCCCGCCTGCCCGAGGGCTCGGACGTGGGGGACGACCAGTTCGGTGCGGCACCCGTCGAGACGCGCACCGCCGCGGCCGCGGTCGTGGGCGGAGCGGCCGGCGACCCCGTGCTCGCGCGGCTGGACGGCAGCCGGGGCACCGGCCTGACGGCGGGGCCGGACCTCGACGTGCTGACCCGGGAGGTCTCTGGGACCCGGGTCCTGCTCGCCGACCCCCGCGCCGGGTCGGCGCTGCGTCTCGCGGGAGCCCTCGCGTCCAGCACGGCCGCCGGCGACCTGCGCGGGCTGGCGGCCGCCTCGTGCCGCGCCCCCTCCACCGAGCACTGGCTGGTCGGCGGCGGCAGCCAGGTCGGGCGTACCGCCGTGCTGACGGTCCAGAACCCCAGCGAGTCCCCGGCGACGGTCGGCCTCGCGGTGCACGGGCCGAACGGCCCGGTGTCCATCGGCGGACGGGGCGCGTTCACCGTGGCGCCCGGTGAGCAGGAGGTGCTGCGTCTCGACTCCCTGGCGCCGGAGCAGCGTCGTCTCGCGGTGCGCGTCAGCGCCGCCGGCGCCCGCGTCACCGCCTCCTGGCAGACCCAGGGGATCGACGGGCTCGTCCCGGCGGGCACGGACCTGCTCGAACCGGGGGCTTCGCCGTCACGGACCGTGGCGTTCAGCGGTGTCGTCAGCCGCGGCGAGGCGCCCCTCGAGGACCAGGCCGCGGAGCTGTGGCTGCTCGCCCCCGACGACCGGTCCGGGACGGCCCGGGTCAGCGTCTACGGTCCGCAGGGCCGGGTGACGCTGCGCGGCGCGGACGTCGTCGACCTGGGTGCGGGCGCCGTGACCACCGTGCCCCTGGGCGGGCTCGACCCCGGCACCTACACCGTCGTCGTCGACGCGGACGTGCCCGTGGTCGGTGCGGCCCGCTTCGCGCTGCCGGGGGAGCAGCCCGAGGACTCCGTGGTGGACGGCACCCCGTACGACCTCGCCTGGAACGCCGGCCAGGTCCTGGCGGACGAGCCGGCCGGTGCCGGCCAGGTGGCCCTGCCGGCGGTGGCCGAGGAGGCCACGGTCGTGCTCTCCGCCGTGCCGACGGACCGCTCCGAGGACGCGGACCTCGACGGGACCGTGGCGGTGCGGCTGCGGGGCGTCGACACGGACGGCGGCGTCGCGGGGGAGCAGCAGGTCGACGTCCCGGTCGGGGGGACCGTCGAGGTCCCGGCGGCCGACGTCGGCGCCGCGACGGCGGTGTTCGTCGACCCGGCCACGGACGGCGCGGGCGGCGCCGCGGCGCGGGTGCTCTGGTCGGTCCGGCTCACGGCCTCCGACGGGACCGGCACGGACGGGACGCTCGTGGCGACCCTGGACCCCACGTCGGCCGCCGAGACGGACGGCGTCGAGGAGGTCCGCCGCGTCGACGCGCCGTGA	MRGRRTVRRIALVTSGTAVAAALVATAAVGEQWAQRFTAPESTAVAATTRQVEVDPPTSTYVCPRPARLPEGSDVGDDQFGAAPVETRTAAAAVVGGAAGDPVLARLDGSRGTGLTAGPDLDVLTREVSGTRVLLADPRAGSALRLAGALASSTAAGDLRGLAAASCRAPSTEHWLVGGGSQVGRTAVLTVQNPSESPATVGLAVHGPNGPVSIGGRGAFTVAPGEQEVLRLDSLAPEQRRLAVRVSAAGARVTASWQTQGIDGLVPAGTDLLEPGASPSRTVAFSGVVSRGEAPLEDQAAELWLLAPDDRSGTARVSVYGPQGRVTLRGADVVDLGAGAVTTVPLGGLDPGTYTVVVDADVPVVGAARFALPGEQPEDSVVDGTPYDLAWNAGQVLADEPAGAGQVALPAVAEEATVVLSAVPTDRSEDADLDGTVAVRLRGVDTDGGVAGEQQVDVPVGGTVEVPAADVGAATAVFVDPATDGAGGAAARVLWSVRLTASDGTGTDGTLVATLDPTSAAETDGVEEVRRVDAP				NA	NA	NA	NA	NA
AK001_00738	3276			hypothetical protein	ATGGCGCTCAGGATGACTGCACCGCACCTGACCCGGACGCCGGACGGGGCTGACGTCCACGACGTGGCCCCGGACCCGGTCACGGGCGTGCCCGCGCGGCAGTCCGTGACGGTGGCGGCCGTCGTCGTCACCCGCGGACGGACACCGTTCCTGCCGGACACCCTCGACGCCGTCGCCGCCCAGGTCCGCGCGCCGCAGGACGTGGTCGTCGTCGACGTCGACGCCGCCCCCTCCACCGGCCAGCACCCCGACCTGCGGCTCGGGGACCGGCACTTCGTCGGCGCCGCCGGGTCCCGCACCCTCGGCGAGGCCGTCGACCACGCCCTGACCACGCTGGGGCTCGAGGACACGACCTGGCTGTGGATCCTGCACGACGACTCCGCACCGGCGCCGGATGCGCTCGCCGCGCTGCTGCGGGCCGTGGAGCACTCCGCGGCGGTGGCGGTCGCGGGCTGCAAGCAGCGCCGCTGGCCTCTCGACGAGGACGGGAACCCCCTCACCCCCGACCCCGACCGTCCCGGGCTGCTCGTCGAGGTCGGGTACACCGTCTCGCCGCTCGGGCGGCGGATGACGGGCATCGACGACTCGGAGATCGACCAGGGCCAGCACGACGCCCGCGAGGACGTGCTGGCCGTCGGGCTGGCCGGCGCGCTGGTGCGGCGGTCCGTGTGGAGCGAGCTCGAGGGCACCGACCCCGAGCTGGGCCGGTTCGGCGACAGCCTCGACCTGTGCCGGCGCGCCCGGCTGGCCGGACATCGCGTCGTCGTCGTGCCCGACGCCGTCGTCCACCACGCGCAGGCCTCCCTGCGCGGACTGCGCGGGCCCCGGAGCCACCGCACCCGCGGCAGCCGGGACGCCTCCGCCTACGCCCGCCGGCGCAGCCAGCTCTACGCCCGGCTCGTCACCGTCCCGCTGCCCCTGCTGCCGCTGGCGCTGGTCGCCCTGATCGTCTGGGCGCCCGTCGCCGCGGCCTACCGGCTGGCGCTGACGCGTCCGGCCGAGGCGCGCGACGAGCTCGTCGCCCCCGTGGTCACGGTGCTGCGGGTGGTGCCGCTCGTGCGCGGCCGACGGCGGGCCGCGCGCACCCGCGCGATGCCGCGGCGGGTCCTGCGCCCCCTGCAGGCGGGCTGGCGCGACGTCGCCGCGCGACGTCGCGACGCCCGCCTCACGCGGGCCGAGACCCACCGCTCACGCCGGTCCCTGACCGACCTCGAGCGCGCCGAGCTGCACGCCCTGGCACGCCGACGCCGCGCCGGCCTCGCCGTCGTGCTGACGGCCACCGTGCTGCTCGCCCTGGTGACCTTCGGCCCCTGGCAGGGCGTCCTCGCCGACGGCGGGCGCGTGGTCGGGGGCGCGCTCCTGCCCGCCCCCGCCTCGTTCGCCGAGGTGGCCGACGCCGCCACCTCCGGATGGGTCCACGACGGGCTCGGCACCGGCGCGCCCGCGGACCCGTGGCTCGGCGTGCTGACGCTCCTGACCGTGCTGGCCGGGGGCGCGGCGCAGACGGCGGTGAACGCGCTCGTCCTGGCCGCCCTGCCGCTGGCCGCGGTCGGTGCCTGGTTCGGTGCCGGCGCCGTGTCCCGGTCGGTCTGGGCCCGCCTGGCCGCGGCCCTGGTGTGGACGGCCTGGCCCGGGTTCCTGGAGTCCCTGACCACGGGCCGGCTGGGCGCCGTCGTGGCCCACCTCGCCCTGCCCTGGCTGCTGCTCGCCGCGCTGCGGGCCGTCGGCCACCAGGCGCGTGACGACGTCGGGCCCACGGTCGGCCCCCGTGGCTCCCGCGGCTCCCTGGGCGCGGCCGCGGCCGCCGGCCTGCTGCTGGCCGTCGTGGTCGCCGCCGCCCCCGCGCTCGCGTCCGTCGCCCTCCTGGCCGGGGCGGTCGGGCTCGCCGTCGTCCCCCGGCACTGGCGTCGGGTGCTGGTCGTGCTCGGCCCCGCCGTCGTCGTCGCGCTGCCGTACTGGTGGCACGCCGCCGCGACCTGGACCGCGGGAGGGTGGCGACCTCTGCTGGCCACCCCCGGGGCTCCCGTCGGGGGAGCGGACGTCGACGGCATCACCCTGCTGCTCGGCCACGCGACCACGCCGCAGCCGTGGCTGGCCGGACTCGACCTGCCGACGGGCCCCGTGCTCGACGCCGGTCCGTGGATCCTCGGGGCCGCGCTGACGGTCCTCGCGGTCGCCGGTCTCGTCCTGGGCCGCCGCCCCCTCGCGGCGCGGCTCGGCGTCGGCCTGGCCGCCCTCGGTCTGGTCCTGGCGCTCGTGGCCGAGGGCACCGTGGTGGCGGCCGACAGCGCCGGCGGACCCGTCCACGGCTGGCCCGCGCCGGGACTGTCGGTGCTGCTCCTCGGGCTCGGGGTCGCGGCCCTGGCCGCGGTCCCGAGACCGGGCACCCGACGCGCGCTGCGCGTGGCGGCCGGGGCGCTGGCCGCCGTCGCCCTGCTCGTACCGGTGCTCGGGCTCGGTGCCTGGTGGTACGCCGACGGGCGCGGCCACGCCGTCGGCGACCTGCGGGTCGACGACACCGCGGTGGTGCCCGCCGTCGGCCGTCAGCTACAGTCCGCACCCCAGGCCGCCCGCGTGCTCCAGCTCGACCGGGTCGACGGCGTGGTCGAGTACACGCTGCTGCGCCGCGACGGGTCGAGCGTGCTCGACTCCTCCACGGTGGTCCGCGCACGCGAGGCGGGCCTCGCGCCCGGCGGCGCGCGGGCCGACGTCGCCGCCCTCGACGAGCTGACCGCCCAGGTGGCGGCCGGGCGCAGCCCCGACCTGACCACCCGGCTCACCGCTCTCGGGGTCGGTGCCGTCCAGATGCCGGCCGACGGTGACACCGAGCTCGTCACCACCCTCGACCTGGTCCCCGGCCTGACCCGGGTCACCGAGAGCTCCGTGCTGCTGTGGCGGGTCGACCCCGACGGGCCGGCGCCCGCCTGGGCGACGGTCCTGCGCCGGGCACCCGACGACGGGCAGGCGGGCGCGGCGGTGCGCACCCTCTCCGGCGACGGCCGCACCGTGGACGACACCGTCGGCACCGGCGAGCAGGACCGGATGCTGGTGCTGGCCGAGAGCGAGGGGGCGGGCTGGCGCGCCACGCTCGACGGCCGTCGGCTCCCCGCCACCGCCCTGGACGGGCGCCAGGCGTTCCGGCTCGGGGCCCAGGCCGGCGACGTGCACGTCGAGTACGCCGCGCCGTCGCGCCCGCCGTGGTTCGCGCTGACGGGGCTCGTGCTCGTCGTCTACGTGCTGCTGGCGCTGCCGCTGTCGCGACGGAGGCACCGATGA	MALRMTAPHLTRTPDGADVHDVAPDPVTGVPARQSVTVAAVVVTRGRTPFLPDTLDAVAAQVRAPQDVVVVDVDAAPSTGQHPDLRLGDRHFVGAAGSRTLGEAVDHALTTLGLEDTTWLWILHDDSAPAPDALAALLRAVEHSAAVAVAGCKQRRWPLDEDGNPLTPDPDRPGLLVEVGYTVSPLGRRMTGIDDSEIDQGQHDAREDVLAVGLAGALVRRSVWSELEGTDPELGRFGDSLDLCRRARLAGHRVVVVPDAVVHHAQASLRGLRGPRSHRTRGSRDASAYARRRSQLYARLVTVPLPLLPLALVALIVWAPVAAAYRLALTRPAEARDELVAPVVTVLRVVPLVRGRRRAARTRAMPRRVLRPLQAGWRDVAARRRDARLTRAETHRSRRSLTDLERAELHALARRRRAGLAVVLTATVLLALVTFGPWQGVLADGGRVVGGALLPAPASFAEVADAATSGWVHDGLGTGAPADPWLGVLTLLTVLAGGAAQTAVNALVLAALPLAAVGAWFGAGAVSRSVWARLAAALVWTAWPGFLESLTTGRLGAVVAHLALPWLLLAALRAVGHQARDDVGPTVGPRGSRGSLGAAAAAGLLLAVVVAAAPALASVALLAGAVGLAVVPRHWRRVLVVLGPAVVVALPYWWHAAATWTAGGWRPLLATPGAPVGGADVDGITLLLGHATTPQPWLAGLDLPTGPVLDAGPWILGAALTVLAVAGLVLGRRPLAARLGVGLAALGLVLALVAEGTVVAADSAGGPVHGWPAPGLSVLLLGLGVAALAAVPRPGTRRALRVAAGALAAVALLVPVLGLGAWWYADGRGHAVGDLRVDDTAVVPAVGRQLQSAPQAARVLQLDRVDGVVEYTLLRRDGSSVLDSSTVVRAREAGLAPGGARADVAALDELTAQVAAGRSPDLTTRLTALGVGAVQMPADGDTELVTTLDLVPGLTRVTESSVLLWRVDPDGPAPAWATVLRRAPDDGQAGAAVRTLSGDGRTVDDTVGTGEQDRMLVLAESEGAGWRATLDGRRLPATALDGRQAFRLGAQAGDVHVEYAAPSRPPWFALTGLVLVVYVLLALPLSRRRHR				NA	NA	NA	NA	NA
AK001_00739	339	whiB_1		Transcriptional regulator WhiB	ATGTGGAATTTGCTCGACGGGGACCAGGGGGCCTTCCCGTCTGACGTCCGTCAGGAACCGGACCGGGTCGCTCCGGTCCTTCCGCTCTTCGGCCAGGAGATCGTCGCCGAGGACGAGACCCTGTTGGGGTGGCAGGAGCGAGCCCTGTGCGCCCAGACCGACCCGGAGGCCTTCTTCCCGGAGAAGGGCGGGTCCACGCGCGAGGCCAAGAAGGTCTGCGCCTCCTGCGAGGTCCGGTCGGAATGCCTCGACTACGCGCTCGAGAACGACGAGCGTTTCGGGATCTGGGGCGGGTTGTCCGAGCGGGAACGGCGAAAGCTCAAGCGGCGCGCCGTCTGA	MWNLLDGDQGAFPSDVRQEPDRVAPVLPLFGQEIVAEDETLLGWQERALCAQTDPEAFFPEKGGSTREAKKVCASCEVRSECLDYALENDERFGIWGGLSERERRKLKRRAV				NA	NA	NA	NA	NA
AK001_00740	729			hypothetical protein	GTGAGCACCCCACCCACCACCGTGACCGGCCTCCTTGCCCGACTCGCCGCGCTCGGCGGACGCCCCGCCCTGACGTGGTACGGCGACGACGGCGAACGGATCGAGCTGTCCGGCGCCGTCCTCGACAACTGGGTCGCCAAGACCGTCAACCTCCTCGCCGAGGAGTTCGACACCGAGCCCGGCAGCACCGTCGTCGTCGACCTGCCCGTCGGGTGGCGCCAGCTCGTCTGGGCGCTGGCCGCCGCGCGGTGCGGGGCCGGGGTCGTCCTGCTGGACCCGACGACGGACCCGCCCGGGCACGCGGCGGCGGACGTCGTGGTGACCTCCCGCCCGCTCCGGTGGCCGGACGTCGACGAGATCGTCGCCGTCGCGCTGCCCGCGCTGGCCCGCCGGTTCGACGGCGAGCTGCCCGACGGCGCGATCGACGCGGCGGCGGCGGTGATGACCTACGGCGACGCCATCGGCCTCGACCCGGCCCCCGGTGCCGCGACACCCCTGACCCTGCTGACGGGGGACGGCGGTCCGTCGGCGTCGACGGACGCGGACGCGGCGGGTCGTGTCCTGGTCCGGGGCACGGGCACGGTGGCGCAGGTCCTGTCCGCGTGCGTCGCCGTGTGGTCCGCCGGCGGGTCGGTCGTGCTCACCTCCGCCGCGACGGCGGCCGTCCTGGACGCCGAGCCGGCGCGCCAGGAGCGGCTCGTCGCCACGGAGCAGATCACGCGGCCCTGA	MSTPPTTVTGLLARLAALGGRPALTWYGDDGERIELSGAVLDNWVAKTVNLLAEEFDTEPGSTVVVDLPVGWRQLVWALAAARCGAGVVLLDPTTDPPGHAAADVVVTSRPLRWPDVDEIVAVALPALARRFDGELPDGAIDAAAAVMTYGDAIGLDPAPGAATPLTLLTGDGGPSASTDADAAGRVLVRGTGTVAQVLSACVAVWSAGGSVVLTSAATAAVLDAEPARQERLVATEQITRP				NA	NA	NA	NA	NA
AK001_00741	1308	tuaD	COG1004	UDP-glucose 6-dehydrogenase TuaD	ATGCGGATCTCCGTGGTGGGGCTGGGGTATCTGGGCGCGGTGCACGCGGCCTCGATGGCCGCGCTGGGACACCGGGTCGTGGGCGTCGACGTGGACGAGGCGCGGGTGGAGTCCCTGGCGCTGGGCAAGGCACCGTTCTTCGAGCCTGGGTTCGACGAGCTGTTGTCGCAGGTGGGGGGCACGGGTCGGTTGTCGGTGACGACGGAGACGGCGGCGGTCGAGGGTGCCGGGGTGCACTTCGTGTGTGTGGGGACCCCGCAGCGTGCGGACGGGTATGCGGCGGACCTGACGTATGTGGAGCTGGCGGTGTCGGGTCTGGTGCCGCACCTGGGCCCGGGTGATGTGGTGGTGGGCAAGTCCACCGTGCCGGTGGGGACCGCGGCGCGGCTGGCCGCCCAGGTCGAGGCGGCGGGCGCGACGCTGGTGTGGAACCCGGAGTTCTTGCGCGAGGGCTTCGCCGTGAAGGACACCCTGCATCCGGACCGGATCGTGTACGGCGTGCCGGACGGCGAGGCCGGGGTGCGCGCGGCGGGGGTGCTGGACGAGGTGTACGCGACCCCGCTGTCCGAGGGGATCGCGCAGGTGGTCACGGACTACGCGACCGCGGAGCTGGTCAAGGTGGCGGCGAACTCGTTCCTGGCCACGAAGATCTCGTTCATCAACGCGATGGCCGAGCTGTGCGAGGTCGCCGGGGGTGACGTGACCCGGCTGGCCGACGCGATCGGGTTCGACGAGCGCATCGGGCGCAAGTTCCTCAACGCCGGTCTCGGGTTCGGCGGTGGCTGTCTGCCGAAGGACATCCGGGCGTTCATGGCCCGCGCGGACGAGCTCGGTGCCGGGGAGGCGGTGGCGTTCCTGGGGGAGGTCGACGAGATCAACACCCGGCGCCGGCACCGCATGGTCGAGCTGACCGGTCAGGTCCTGGACGGGGAGGTCACGGGCAAGCGGGTGACGGTGCTGGGGGCGGCGTTCAAGCCGAACAGCGACGACGTGCGTGACTCCCCGGCCCTGGACGTGGCGGCCCGCCTCGGCGAGGCCGGTGCGGACGTGGTGGTGCACGACCCCCAAGCCATCGACAACGCCCGCCGCAAGGCCCCCGCGCTGCGCTACGAGCCCGACCTGGAGACCGCGCTGACCGGAGCCGACGCCGTGCTGGTCCTGACCGAGTGGCAGCACTACAAGGACCTCGACCCGCACTGGGCCGGTGACCTCGTCGCGCAGGCGCACGTCCTCGACGGGCGCAACGCCCTGGACCGCGACACGTGGCTCACCGCCGGCTGGACCTACCGCGCCCTCGGCCGGAGGTGA	MRISVVGLGYLGAVHAASMAALGHRVVGVDVDEARVESLALGKAPFFEPGFDELLSQVGGTGRLSVTTETAAVEGAGVHFVCVGTPQRADGYAADLTYVELAVSGLVPHLGPGDVVVGKSTVPVGTAARLAAQVEAAGATLVWNPEFLREGFAVKDTLHPDRIVYGVPDGEAGVRAAGVLDEVYATPLSEGIAQVVTDYATAELVKVAANSFLATKISFINAMAELCEVAGGDVTRLADAIGFDERIGRKFLNAGLGFGGGCLPKDIRAFMARADELGAGEAVAFLGEVDEINTRRRHRMVELTGQVLDGEVTGKRVTVLGAAFKPNSDDVRDSPALDVAARLGEAGADVVVHDPQAIDNARRKAPALRYEPDLETALTGADAVLVLTEWQHYKDLDPHWAGDLVAQAHVLDGRNALDRDTWLTAGWTYRALGRR	PGPT0017855_4366	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-GLUCURONATE_MODIFICATION,PGPT0017855-ugd|tuaD-K00012	NA	NA
AK001_00742	2166			hypothetical protein	ATGACCGGGTCGCCGATGCGCGTGCTCCGGGCGACACATACCGTCTCCTTCGTGACACCCGCCACACGTGCAGGCCGGCGGACCGCCGTGACCGTCCTGGTCGGCCTGCTGTCGTTCTCGCTGGTCGCCGTCCCCGGCGCGCAGGCCGTCCCCGCGTCCCCGGGCGCGGTCGCCGCCGACTCCTCCGACGCCGCCGGACCATCCGGCGCAGCGCACGGCAGGTCGGCGGAACCGGTCGAGGCCACGACCGAGACCACCGAGTTCTCCCCGGCAGCGCCTGCCGCCGGTTCGCCGGCCTCGCCACGAGCGCAGGACGCCCCGCGGGACTCCGCCGGGCCGCCGGACCGGCCGGAGCACGCCGGCGTCCCGCTCGAGGCGACCTCCGACGTCACGGGGTTCGGCGTCGTGGGCGTCACCTGGTCGAGCCCGGTCGCGCACGACGCCCTCGTGGTCGAGGTGCGTACCTCCGACGACACCGGTGCCGCGCCGGACGACGACGGCGCGTGGAGCGCCTGGGAGCGGGTCGACGTCGAACCGTCGCCGCGCGGGGACCTGGACGGGACCGAACCCGTGGTCGTCGGGGAGGTCGCCCGGGTACAGGCCCGCGTCTCGGGCCCGTCCGCCGGCGCGGTCCGCGACCTGGGGCTCACCGTCATCGACCCCGGCACGTCCCCGGCCGACGACGACGTCCCCGTGCCCTCCGAGGACACCTCGCCCTCCGGGCGGGCCGTGGCCGCGGTCGCCGTCCCGAGCCGTCCCACCATCGCCTCGCGCGCCGCCTGGGGTGCGGACGAGTCGATCATGACCTGGACGCCGCGCCAGGGCGACGTCCGCGGCGCCGCGATCCACCACACCGCGGGCACGAACTCCTACAGCGAGAGCCAGGTGCCCGGGATCCTTCGCGGCATCTACTCGTACCACGCCCAGACCCGCGGGTGGGGCGACATCGGCTACAACTTCCTCGTCGACAAGTTCGGCCGCATCTGGGAGGGCCGGGCCGGCGGTGTCACCCGGGAGACCGTCGGGGCCCACGCCCGCGGGTACAACAGCGGCTCCACCGGTGTCAGCGTGCTGGGCAACTACGAGACCGCCACCGTCTCGAACGCCGCCGTGAGCGCCGTCGTCCGCCTCGTCGCCTGGAAGCTCGCCCTGCACGGCGTGGCCGCGGACGACTCGATCTCCATCGCCGGCACGTCCCTCGCCGCCGTGTTCGGCCACCGCGACGTCGGCTCGACCGCGTGCCCCGGCCGGACGCTGTACCAGCGGTTGGGCGAGATCCGGCGACGGGCCACGGCCAGGCAGGAGGCCGCCGCGGAGCCCGAAGTGGCCGACGGGACGATCGTGCAGAACACGAACGGGAATCTCGCCCTCGTCGAGCGAGGACGCAAGCACAAGGCCTACTGCTCGGTCGTGCGGTCGTACGGCGTCGCGTGCGACGAGGCCGTTGCGGTCACGCGCGCCCAGTGGCGCGCGCTGGACACGTCTGATCGGCTCCAGCGCACGGTGCGGACGACGGACGGCCGGCTCTTCTGGATCGGCCGGGGGACGAAACGCGAGACCTTCGACGAGGCGTCCTTGGCACGGGCGAACAAGTCCTCACCCGAGGTGACCCTCCCGGCGGCAGCGCTGGCACAGCTGCCGTACGGCAAGCCGATCGTGCGGCCCGGGGTGATCGTGGTCAACCGCAGCACGGGACGTCACCGGCTCGTCATCGACGGCCGCAAGCACCACGGGTTCCTGGGCACCTACCTGCGACGCAACACGCCGCTGGGAGGTCTCGACACCGGGTATCTCGACCGGGCCAGCGTGCGACGGATGCCGTCGGTCACCAAGACGACCGGCGTCGTCGAGGGCCGGGGTGGTCGCTCCTACCTGGTCTCGACACGCGGCCTGGTGCGCATCGACGGCAGCGGCGACCTGCAACCCGGCACCAGGTCCCAGGACTGGCGCAAGGCGCTCAAGGCCGAGATGCCCCGTGCCGGACGCTGGTCCCGCATCGTCGCCGTCCGGCAGAACAAGGAGAGCCAGATCTACCTCCTGCGCGACGGCGTGCTGCGTCCGGTGTCCGCGTCCCGCGCCCGGCAGCTCAACGGGGGGACGAAGCCGCCGGTGCACGTCATCCTCAAGGTCACGAAGCGGCAACTTCCGGTGGGCTCACCGCTCTGA	MTGSPMRVLRATHTVSFVTPATRAGRRTAVTVLVGLLSFSLVAVPGAQAVPASPGAVAADSSDAAGPSGAAHGRSAEPVEATTETTEFSPAAPAAGSPASPRAQDAPRDSAGPPDRPEHAGVPLEATSDVTGFGVVGVTWSSPVAHDALVVEVRTSDDTGAAPDDDGAWSAWERVDVEPSPRGDLDGTEPVVVGEVARVQARVSGPSAGAVRDLGLTVIDPGTSPADDDVPVPSEDTSPSGRAVAAVAVPSRPTIASRAAWGADESIMTWTPRQGDVRGAAIHHTAGTNSYSESQVPGILRGIYSYHAQTRGWGDIGYNFLVDKFGRIWEGRAGGVTRETVGAHARGYNSGSTGVSVLGNYETATVSNAAVSAVVRLVAWKLALHGVAADDSISIAGTSLAAVFGHRDVGSTACPGRTLYQRLGEIRRRATARQEAAAEPEVADGTIVQNTNGNLALVERGRKHKAYCSVVRSYGVACDEAVAVTRAQWRALDTSDRLQRTVRTTDGRLFWIGRGTKRETFDEASLARANKSSPEVTLPAAALAQLPYGKPIVRPGVIVVNRSTGRHRLVIDGRKHHGFLGTYLRRNTPLGGLDTGYLDRASVRRMPSVTKTTGVVEGRGGRSYLVSTRGLVRIDGSGDLQPGTRSQDWRKALKAEMPRAGRWSRIVAVRQNKESQIYLLRDGVLRPVSASRARQLNGGTKPPVHVILKVTKRQLPVGSPL				NA	NA	NA	NA	NA
AK001_00743	1383	tagU_1		Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU	GTGACTCCCCCGACCGCCCGCCACGTCGCGCCGCGACACGGCTCCGCGACCGGGCCGGCGCACGCCCGGACGCAGCCGGGAGCCTCGCTCCTGCGCGTCGGCGCGCTGCTCATGACGGCCGTGCTCGCCTTCGTCGGCGTCGGAGCCGCGACCGCGGCCGTCCAGCTCACCGGCAACATCGACGCCGTCGACGCCGAGGCCGCGCTCGGCGAGGACCGACCGGAGAAGGTCGTCCCGGACGACCCGAACGCCGGCGAGCCGCTGAACATCCTCCTGCTCGGGTCCGACTCGCGCGAGGGCGACAACGGCAACGACGCCGACGGCACCGAGGGCGCGCGCTCGGACACCACGATGGTCCTGCACCTGTCCGCGGACCGGTCCCGGGTCGAGCTGATGTCGATCCCGCGGGACACCACGACGAACATCCCGGCCTGCCCGACCACCTCCGGCGGCGAGACCCCGCCGCTGTACGGCGTGAAGTTCAACGCCGCGTTCTCCCAGGGCGTGACCTACGGCGGCGACGTGGAGTCCGGTGCGCTGTGCACCATGAAGACCGTCGAGACGCTGTCCGACGTCCGGATGGACGGGTTCGTCGTCGTCGACTTCTCCGGCTTCCGGGGCATGATCGACGCTCTCGGCGGCGTCGAGATGTGCATCCCGAACGACATCTCGGCGCCCAAGGCGGACGACCTCGTCCTGTCGGCGGGCGTGCAGGAGCTGGACGGCAGGACCGCGCTGCAGTACGCCCGCGCCCGCACCGGCCAGGGGCTCGGCGACGGCTCCGACATCGGGCGCATCGCCCGCCAGCAGGAGCTCATGGCGGCCCTGGCCCGCACCGTCCTGGACCAGAACATGCTGACCGACTCCGCCCGGCTGCTGCAGTTCCTCGGGGCGACGACCGGGTCGTTGACGATGAGTTCCAACTTCGCCTCGGTCCAAGGACTCGCCGGGCTCGCGTACAGCGCCCGCGGGGTGCGGCCTGAGAACATCGCCTTCATGACCGTCCCGTGGCGCTACGACCCGGACAACCCCGCGAACGTCGTGCTCACCGAGGAAGCGGCCACCACGTGGGACGACCTGCGCCACGACCGTCCCCTCAGTGACGTCGTCGCGGGCTCGGAGGAGACCGAGCCCTCCCCCGGGACCGGCGACGGCGAGACCTCCGACGGCGGGACCGAGGAGGACGGGTCGTCCTCGGAGGGCGCCGCGGCCGACGGGGCCGCGGCCGACGCCGCGGCGACCACGGTCGCGCAGACCGTCGTGACGGACGCGGAGACCGACGGGCCGACGGCGACGCCGACCGAGGAGCCCTCCCCCGGACAGACGCGCGACCCGCGCGAGGAAGCCTTCACCGGGGCCGACGTGACCGCGGTGTGCGGGTGA	MTPPTARHVAPRHGSATGPAHARTQPGASLLRVGALLMTAVLAFVGVGAATAAVQLTGNIDAVDAEAALGEDRPEKVVPDDPNAGEPLNILLLGSDSREGDNGNDADGTEGARSDTTMVLHLSADRSRVELMSIPRDTTTNIPACPTTSGGETPPLYGVKFNAAFSQGVTYGGDVESGALCTMKTVETLSDVRMDGFVVVDFSGFRGMIDALGGVEMCIPNDISAPKADDLVLSAGVQELDGRTALQYARARTGQGLGDGSDIGRIARQQELMAALARTVLDQNMLTDSARLLQFLGATTGSLTMSSNFASVQGLAGLAYSARGVRPENIAFMTVPWRYDPDNPANVVLTEEAATTWDDLRHDRPLSDVVAGSEETEPSPGTGDGETSDGGTEEDGSSSEGAAADGAAADAAATTVAQTVVTDAETDGPTATPTEEPSPGQTRDPREEAFTGADVTAVCG				NA	NA	NA	NA	NA
AK001_00744	1371	tagU_2		Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU	ATGACGGACGAACGACGCATCCCCCCGAGCTTCACCCCCGCCGGAGGCCGCAGCGCCCGCCCGGACGCGACGAACGACGCCATCTCGGTCGGCGGCTCCGACCGCACCCCGCGCCCCACGGGCCGGGTCGGCCGACGGGACGACGCGGTGCCGATGGAGAGCCGCGAGCCCCGCGTCCGCCGGCAGTCCTCCCGGGAGATCCCCGTGACGCCCCCGCGTCGCTCCGCCGCGCCCCAGCGCCAGCCGCGCGCCTATCCGCCCGGCGGTGCCGAGCGGTCCGCCCGGCCCGCGTCGCACCCCCCGGCCGGGCGGCAGCAGGCGGCCGCGCGCCAGCAGGGGACCGCCCGTGCCGCCGCTCCGCCCCAGCGCCGCACTCCCCCGCCCTCGGACCCGCCCGCCGGCTCCCGGACCGCCGGGGGCGACGACGGCTTCCGCGTGCGCAAGGGCCGCGTCGCGGTGCTGGTGCTCGCCATGGTGCTCGTGCTGCTGCTCGCCTGGCCGATCGGGCTCGTGGTCTGGGCCAACGGCAAGATCCAGCACACCGAGGCCCTGTCCGACGCCTCCGGGACGCCGGGCACGACCTACCTGCTCGCCGGTTCCGACGCGCGCGGGTCCGGCGGTGTCGACGACGGCACCTCGGGCGCCCGCACGGACACGATCATGGTGCTGCACGCACCGCGCAGCGGGCCGACCGCCCTGATCTCCATCCCGCGCGACACCTACGCGGAGATCCCCGGGGAGGGCGCCAGCAAGATCAACGCGTCCTACGCCTGGGGCGGGCCGCCGCTGCTGGTGGAGACGGTCGAAGGCCTGACCGGGATGACCGTCGACCACTACGCGGAGGTCGGGTTCGGCAGCCTCGAGGAGATCGTCGACGCGGTCGGCGGCGTCGAGCTCTGCTACGACCGGACGGTCCAGGACGAGAAGAGCGAGCTCGACTGGGAGGCCGGCTGCCACGTGTCCGACGGCCAGACGGCCCTCGCGTTCTCCCGCATGCGGTACTCGGACCCCCAGGGGGACATCGGTCGTGCCGAGCGGCAGCGCCAGGTGATCGCCGCCGTCGCCGGGAAGGTGGTCCAGCCCAGTGTGCTGCTCAACCCGATCGACCAGGTCCAGCTCGTGGAGGCCGGCACCGACGCCCTGCTCGTCGACGAGGACACCGGCATGATCGACCTGGGTCGGCTGGCGCTGGCGTTCCGCGACGCGACCGGGCCCGAGGGCGTGACCGGCACCCCGCCGATCGCCGACCCCGGCTACAACCCCGGCAACGGTGTCGGTTCCACGGTGCTGCTCTCGGACGACGCCGACCAGTTCTGGTCCGACGTCCTCTCCGGCGACCTCGAGCCCGGCAGCACGGTCGGCGGCCTCTGA	MTDERRIPPSFTPAGGRSARPDATNDAISVGGSDRTPRPTGRVGRRDDAVPMESREPRVRRQSSREIPVTPPRRSAAPQRQPRAYPPGGAERSARPASHPPAGRQQAAARQQGTARAAAPPQRRTPPPSDPPAGSRTAGGDDGFRVRKGRVAVLVLAMVLVLLLAWPIGLVVWANGKIQHTEALSDASGTPGTTYLLAGSDARGSGGVDDGTSGARTDTIMVLHAPRSGPTALISIPRDTYAEIPGEGASKINASYAWGGPPLLVETVEGLTGMTVDHYAEVGFGSLEEIVDAVGGVELCYDRTVQDEKSELDWEAGCHVSDGQTALAFSRMRYSDPQGDIGRAERQRQVIAAVAGKVVQPSVLLNPIDQVQLVEAGTDALLVDEDTGMIDLGRLALAFRDATGPEGVTGTPPIADPGYNPGNGVGSTVLLSDDADQFWSDVLSGDLEPGSTVGGL				NA	NA	NA	NA	NA
AK001_00745	522	purE	COG0041	N5-carboxyaminoimidazole ribonucleotide mutase	ATGAGCGACACCGCACCCGCCGTCGGCATCGTCATGGGGTCGGACTCCGACTGGCCCGTCATGGAGGCCGCCGCCGACGCGCTGGCCGAGCTCGGCGTGGACTGCGAGGTCGACGTCGTCTCCGCCCACCGCATGCCGACCGAGATGATCGACTACGGCCGGCGGGCCGCCGACCGGGGCGTGCGGGTCATCGTCGCCGGCGCCGGCGGCGCCGCGCACCTGCCCGGCATGCTCGCCGCCGTCACGCCGCTGCCCGTCATCGGGGTCCCGGTGCCGCTCAAGCACCTGGACGGCATGGACTCGCTGCTGTCGATCGTGCAGATGCCCGCCGGGGTACCGGTCGCGACCGTCTCCATCGGCGGAGCCCGCAACGCGGGGCTGCTGGCCGCCCAGATCCTCGGTGCCGGTACCGACGCCGCGTCCCTCGCGCTGCGCGAGCGGATGGTGGAGTTCCAGGAGGGGCTGCGCGAGGTGGCTCAGGAGAAGGGCGCGCGACTGCGCGCTTCGCGTTCCGGTCGCTGA	MSDTAPAVGIVMGSDSDWPVMEAAADALAELGVDCEVDVVSAHRMPTEMIDYGRRAADRGVRVIVAGAGGAAHLPGMLAAVTPLPVIGVPVPLKHLDGMDSLLSIVQMPAGVPVATVSIGGARNAGLLAAQILGAGTDAASLALRERMVEFQEGLREVAQEKGARLRASRSGR	PGPT0021545_776	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588	NA	NA
AK001_00747	486			hypothetical protein	ATGTCCCCGTCGGCCCCCGCCCCCGCCTCCGTCGGGCGACCCGTGTGGCCGGTCCGGCTCGTGGCCGCGCTGTGGCGGCGCCGGCTCGAGCTGCTGCGCTTCGGCACCGTCGGGGGCGTGGCGTTCGTCGTCGACTTCACGCTGTTCAACCTCATGACGCACGGGCCGGTGGACGTCCTCGCCCACAAGCCGGTGACGGTCAACATCATCGCCACCGGAGTCGCCACCCTGGTCTCCTGGGTGGGCAACCGGTACTGGACGTTCGCCACGCGCCGCACCCGGCACCGGGTGCGGGAGCTCCTGGAGTACGGGGCCGTGAACGTGGGCGGCATGGCGATCTCCTCGCTCTGCCTGGCCGTCTCCCGCTACCTGCTGGACCTGGACTCGGTGCTCGCCGACAACACCGCCAAGGTGGTCGGCCTGGTCCTGGGGATGGTGTTCCGCTACGTCCTGTACCGCACGGTGGTGTTCCGCGGCGACGGCTGA	MSPSAPAPASVGRPVWPVRLVAALWRRRLELLRFGTVGGVAFVVDFTLFNLMTHGPVDVLAHKPVTVNIIATGVATLVSWVGNRYWTFATRRTRHRVRELLEYGAVNVGGMAISSLCLAVSRYLLDLDSVLADNTAKVVGLVLGMVFRYVLYRTVVFRGDG				NA	NA	NA	NA	NA
AK001_00748	1347	sasA_2		Adaptive-response sensory-kinase SasA	GTGCGTCGTCGCGTCCTGCAGGCGACGATCTCGGCGGTCGCGGTCGCGGTGATCCTGCTCGGCGTCCCGCTGGGCATCTTCGGCGCGCGCTACGTCGTCGCCGGTGCCGAGCAGCGGATCTCCGACCGGCTCGACGCCTTCACCCTGACGGTGTCGCGCGCGGTCGAACGGGGCGAACGGCCCACCGACGACCAGCTGCAACGCGCCGCCGAGGGACGCGAGGGCGACCTGCCGGCCCGCGTGACCGTCAGCCTGCCCAGCGGCGAGCAGCTCACCTACGGCGAGGAGATGGCCGACCCGGTCGTCGTCAAGGCGCGGCAGACCGAGAGCGGGCGCGCCTGGATCTCCTTCGAGGTGTCCGCCCGGGGCGCCTACATCCAGGCCGCCCAGATCGTCGCCCTCGTCGTCGTGGCCGGGGTCGTGGCCATCGGAGCCGGGGTCGCGATGGCCGTGTGGCAGGCCAACCGGCTCTCCGCGCCCCTGGTGTACCTGGCGGCGTCGGCCGAACAGCTCGGCTCGGGCCAGGTCCGCCCCAGCCTGGATCCCTCCGGCGTGGAGGAGATCGACCTCGTCGCCGCCGAGCTGGCCCGGTCCGGGGACCGCCTGGCGGGCCGGCTGGCCGCCGAGCGCCAGTTCACCCAGGACGCGTCCCACCAGCTGCGCACCCCGCTGACGGCGTTGTCGATGCGGCTGGAGGAGATCATGCTGACCTCCACCGACGAGGAGGTCGTCGACGAGGCACGGGTGTCGCTGGAGCAGGTGGAACGGCTCGTCACCGTCGTCGACGACCTGCTGGCCACCTCGCGCCGCTCGCAGGGCGGCACGACCGAGGCCGTGGTCCTGCTCGACGTGGTGCGCCAGCAGCACGAGGAGTGGGCCGACACCTTCGCGGGGGCCGGCCGCGAGCTCGTGCTCGACGTCGCCGAGGACCACCGGGTGCTCGCCACGCCGGGAGCCCTGGCCCAGGTGATCGCCACCCTGCTGGAGAACTCGCTGAAGTACGGCGACGGGACGACCACCATCCGGTCGAAGCCCTCGGGGCCGAAGAACGCCGTCGCCCTCGAGGTCACCGACCAGGGGCCGGGCGTCGACGACGAGATCGCCCCGCGGATCTTCGAGCGGGGAGCCTCCACGGGGGGCAGCACCGGTCTCGGCCTCGCGCTGGCCCGGGACCTCGTGGCGGCCGACGGCGGACGCCTGGAGCTGGCGCAGCGGCGGCCGCCGGTCTTCCGGATCTTCCTCTCCGGCGTGCCGCGCACCCTCGACCCGCGGGTCGTGCTGCCGCCGGGGACCACGATCTCGTCGCGCGGACGGCGCCGCGGCTGGTTGCACCACCACGAGGACTGA	MRRRVLQATISAVAVAVILLGVPLGIFGARYVVAGAEQRISDRLDAFTLTVSRAVERGERPTDDQLQRAAEGREGDLPARVTVSLPSGEQLTYGEEMADPVVVKARQTESGRAWISFEVSARGAYIQAAQIVALVVVAGVVAIGAGVAMAVWQANRLSAPLVYLAASAEQLGSGQVRPSLDPSGVEEIDLVAAELARSGDRLAGRLAAERQFTQDASHQLRTPLTALSMRLEEIMLTSTDEEVVDEARVSLEQVERLVTVVDDLLATSRRSQGGTTEAVVLLDVVRQQHEEWADTFAGAGRELVLDVAEDHRVLATPGALAQVIATLLENSLKYGDGTTTIRSKPSGPKNAVALEVTDQGPGVDDEIAPRIFERGASTGGSTGLGLALARDLVAADGGRLELAQRRPPVFRIFLSGVPRTLDPRVVLPPGTTISSRGRRRGWLHHHED				NA	NA	NA	NA	NA
AK001_00749	687	regX3_1	COG0745	Sensory transduction protein regX3	ATGACCCACGTACTGCTGGCCGAGGACGACCCGGCGATTGCCGAGCCTTTGGCGCGGGCCCTTTCTCGTGAGGGTTACGACGTCGTCGTGCAAGGAACAGGTCAAGGAGCGATCGATCACGCCGGGGACGCGGACATCGTGGTCCTCGACCTCGGCCTGCCGGACGTCGACGGGCTCGACGTCGCCCGGGAGATCCGCGGCCGCGGCCTGTCCACGCCGATCCTGGTGCTGACCGCGCGCGCGGACGAGGTCGACCTCGTGGTCGGGCTCGACGCCGGCGCCGACGACTACGTCACCAAGCCGTTCCGGCTGGCCGAGCTGCTCGCACGGGTGCGGGCGCTGCTGCGGCGCACGCACGGCGAGGCGACCGAGGACGAGGAGATGCGGGCGCAGGACGTGCGCGTCGACGTCTCCGCGCACCGTGCCTTCCAGGGCGACCGCGAGCTGCACCTGACCACCAAGGAGTTCGACCTGCTCAAGGTGCTCGTGGGCAACGCGGGCTCCGTGGTCGTGCGCGACACGCTCATGCGGGACGTGTGGGGCTCGGACCCCGTCGGCTCGACCAAGACGCTGGACATGCACGTGTCCTGGCTGCGGCGCAAGCTCGGCGACGACGCGAACGCGCCGCGCTACATCTCGACCGTGCGAGGTCTCGGCTTCCGCTTCGAGCTCGGTCAGCAGGCCTGA	MTHVLLAEDDPAIAEPLARALSREGYDVVVQGTGQGAIDHAGDADIVVLDLGLPDVDGLDVAREIRGRGLSTPILVLTARADEVDLVVGLDAGADDYVTKPFRLAELLARVRALLRRTHGEATEDEEMRAQDVRVDVSAHRAFQGDRELHLTTKEFDLLKVLVGNAGSVVVRDTLMRDVWGSDPVGSTKTLDMHVSWLRRKLGDDANAPRYISTVRGLGFRFELGQQA	PGPT0002675_159	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776	NA	NA
AK001_00750	1320			hypothetical protein	ATGGGCTGGTCAGGACGGGTGAACCGGTGGTTCGAGCACCATCGGTTCCTCGTCGACGCCGTCGGGGCCGGGATCCTCGCCCTCGTCGTGCTGCTGACGGCCAGCGACCTGTCGGGGAGCGACCGCGGTCCCGCCGTCGTCGTCTGGTCCGTGGCCCTGGTCGTCCCTCTCGCCTGGCGACGCACGCACCCGGTCGCCTCCGTCGTCGCGGTCTATGCGGTCGCGCTGGCCCACCTCGTCTCCGGGCTGCCGCTGCTGCTGCCCGGGGACCTCGCGGTGCTCGCCGCGCTGTGGGCGGTGACGGTCTACGGACCCCGGTGGGCCCACGTCACGGCGATCGTCTCCGCCGTCGCCGGCTGCTTCCTCCTCGGTCCGGTGCTGGTCCTGCAGGGCGCCTGGTTCTCCGGGCTCGCGGACACTCTCGGGATCAGCCTGTTCTGCTCGACCGTCGCGCTGGCCGTGTGGGCGCTGGCGCTGGTCCGCCGCTACCGTCGGGTCACCGTCGAGGCGCTGCGGGACCGCGCCGAACGGCTCGAGGTCGAGCGCGACCAGCAGGCCCGGATCGCCACCGCCGCCGAACGCGCCCGCATCGCCCGCGAGATGCACGACATCGTGGCCCACTCGCTCTCGATCGTGGTCGCCCAGGCCGACGGCGGCCGCTACGCGGCCTCGTCCGACCCGCAGGCCGCCGTGCGCGCCCTCGACGTCGTGTCGGAGACGGGGCGCGCCGCACTGGCGGACATGCGCCGCCTGCTCGGCGTCCTGCGCGACGACGACGGTCACGTGGTCCGGGCGCCGGCTCTGTCGGGCGCCGGGCCGGCACCGGGCGGGGGCGGGCCCGCGACACCGTCCGGGGCCACCGCACCGCCGTCGTCCCCGGCACCGCTGGCCCCGCAGCCGGACGACGCCGAGCTCGACGGCCTCGTGGTGCAGGCCCGCGAGGCCGGGATGCGGGTGTCGCTGGTGCGTGTCGGGACGCCGCGCCGGCTCCCACCGGGAGCCGGGCTCACCCTGCACCGGGTGACTCAGGAGGCCCTGAGCAACGTCCGCAAGCACGCCGGTCCGCAGCCGCGCGTGACGGTGGTGCTGCGCTGGGAGGCGGAGGCGGTGACCGTCGAGGTGTCCGACGACGGCCGGGGGGCGGCGGCCCTGCCCGGCACGGACGGCTACGGGCTGCTGGGCATGCGCGAGCGCGCCGCTGTGTTCGGGGGCTCGGTCACCGCCGGTCCCCGACCGGGCGGAGGGTGGCGGGTACGGTTCACGATGCCGGTCCCCGCCTCGACCGCGGGGACGTCCGACGAACCCGAGGAGCAGGCATGA	MGWSGRVNRWFEHHRFLVDAVGAGILALVVLLTASDLSGSDRGPAVVVWSVALVVPLAWRRTHPVASVVAVYAVALAHLVSGLPLLLPGDLAVLAALWAVTVYGPRWAHVTAIVSAVAGCFLLGPVLVLQGAWFSGLADTLGISLFCSTVALAVWALALVRRYRRVTVEALRDRAERLEVERDQQARIATAAERARIAREMHDIVAHSLSIVVAQADGGRYAASSDPQAAVRALDVVSETGRAALADMRRLLGVLRDDDGHVVRAPALSGAGPAPGGGGPATPSGATAPPSSPAPLAPQPDDAELDGLVVQAREAGMRVSLVRVGTPRRLPPGAGLTLHRVTQEALSNVRKHAGPQPRVTVVLRWEAEAVTVEVSDDGRGAAALPGTDGYGLLGMRERAAVFGGSVTAGPRPGGGWRVRFTMPVPASTAGTSDEPEEQA				NA	NA	NA	NA	NA
AK001_00751	672	nreC_1	COG2197	Oxygen regulatory protein NreC	ATGACGGCACCGATCCGGGTCGCCCTCGTCGACGACCAGCAGCTCGTGCGCGCCGGCCTGCGCATGGTCATCGACTCCCAGGACGACCTGACCGTCGTCGTCGAGGCCGCCGACGGCGCGCAGGCGCTGCGGCTGCTGACCGACCACCGGGTGGACGTGGTGCTCATGGACGTGCGCATGCCCACCATGGACGGGCTCACGGCCACCGCTCGGCTCACGGCGTCCCCGGACGCGCCGACGGTGGTCGTGCTGACGACCTTCGACCTCGACGAGTACGTCCTGGAGGCGATCCGCGCGGGGGCGTCGGGCTTCCTGCTCAAGGACACCCCGCCCGAGGAGCTGCTCGCCGCGGTCCGGACGGTCCAGCGCGGCGACGCCGTCATCGCGCCGTCGTCCACCCGCCGGCTGCTGGAGCACCTCGTCACCGCGCTGCCGGCGTCGTCCGCCCCCGCCCAGCACGCGGCCCTGGCGGCGCTGACCGAGCGCGAGCGCGAGGTGCTGGTCCTCATGGCGCGGGGCCGGTCGAACACCGAGATCGCGGCGGACCTGTTCGTCGCCGAGGCGACCGTCAAGACGCACGTCGGACGCGTGCTGGCCAAGCTCGGCGCCCGGGACCGCGTCCAGGCCGTGGTGACCGCCTACGAGACCGGGCTGGTGCGGCCCGGCGCCTGA	MTAPIRVALVDDQQLVRAGLRMVIDSQDDLTVVVEAADGAQALRLLTDHRVDVVLMDVRMPTMDGLTATARLTASPDAPTVVVLTTFDLDEYVLEAIRAGASGFLLKDTPPEELLAAVRTVQRGDAVIAPSSTRRLLEHLVTALPASSAPAQHAALAALTEREREVLVLMARGRSNTEIAADLFVAEATVKTHVGRVLAKLGARDRVQAVVTAYETGLVRPGA	PGPT0014870_122	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618	NA	NA
AK001_00752	711			hypothetical protein	GTGTCCCGCCAGTCCCCCGTCGAGCGCGGCTCCTCCGTGACGGAGGAGCCGTCGACCGAGCAGACCCGGCAGACCCGGCAGACCCCGCGGGCCGAGCAGGCAGAGCCGGCAGAGCCGGCAGAGCAGGCCGAGGAGCGCTGGGAACGGCGGTTCGCCTGGCCGGTGATCGTCGCGGCCCTGGCCTCCGTGCCCGCCGTCTGGCTGACCCTGCTCTCCGAGCCCTACGCGACGGTCGGCACCGTCGGCAGCCTGCTCACCGGTGCCGTGCTGCTCGCGGAGACGGTCGTGCTGTTCGCGGTCTCCGGCGACAAGCGGCGGTGGGTGTGGCAGCACCGGTGGCTGGTCGTCGTGACGCTGGCCATCGTGGTCTCGGCGGTGCTGGCCATCGGCCCGACCCAGCTCCTGCGGCTGGTGCGGGCGGTCGGTGCGCTGCGCCTGCTGCGCGCGCGCCACATCGTCCGGGCCGGCCGGCGGGTCATGGACCACTCCCGGCTGGACAAGCGGTGGGAGCGGGTCCTGACCGGGGTGATCATCGCCGTCGTGGCCGCCTTCGTGGCCGTGGTCCTCGCCGACCCGACGTCGCAGAGCCGGGTCCTGCTGGAGAGCCTCGTCGGCGGTCCGGCGTACGTGTGGCTCGTCCTGCTCGCCGGCCTGCTGCTGTCGGCGGCGGTCTTCGTGCTGGTGCGGGCGCGCCTGCGCGACGACGGCTGA	MSRQSPVERGSSVTEEPSTEQTRQTRQTPRAEQAEPAEPAEQAEERWERRFAWPVIVAALASVPAVWLTLLSEPYATVGTVGSLLTGAVLLAETVVLFAVSGDKRRWVWQHRWLVVVTLAIVVSAVLAIGPTQLLRLVRAVGALRLLRARHIVRAGRRVMDHSRLDKRWERVLTGVIIAVVAAFVAVVLADPTSQSRVLLESLVGGPAYVWLVLLAGLLLSAAVFVLVRARLRDDG	PGPT0004175_15	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600	NA	NA
AK001_00753	399			hypothetical protein	ATGGCGACCACTCCCCTGAAGCCCGAGACCGTCGAGCTGCTCCGCCGTCCGAACCCGGCCGTCATGGCCACGGTGACGCCCTCCGGGGCACCCGTGTCGGTGGCCACCTGGTACCTCTGGGACGACGACTCGCAGCGCGTCCTGCTCAACCTCGACGCCGGCCGCGCCCGCCTGCGGCACCTCGAGCACGACCCGCGGGTCTCGCTGACGGTGCTGGACGCGAACTGGTACCACCACGTGAGCCTGCGCGGCGAGGTCGAGCTCGTCGACGACCCGGACCTGGCCGACATCGACCGCCTCGCCCGGCACTACACCGGCAAGCCGTACGTGGTCCGCGACAACCCCCGGGTGAGCGCCTGGATGACGGTCACCTCGTCCCACCTCTGGCCGCCGCGCTGA	MATTPLKPETVELLRRPNPAVMATVTPSGAPVSVATWYLWDDDSQRVLLNLDAGRARLRHLEHDPRVSLTVLDANWYHHVSLRGEVELVDDPDLADIDRLARHYTGKPYVVRDNPRVSAWMTVTSSHLWPPR				NA	NA	NA	NA	NA
AK001_00754	843	btuD_4		Vitamin B12 import ATP-binding protein BtuD	GTGGACACCACCGTGTACGTCCCGATCGACGACGACGCCCCCGGCGCCGTCGCCCCCAGCGACCAGACCCCCGCCGTGCGCGCCCGAGCCCTGACCAAGACCTACGGCACCGGCCAGGCGCAGGTCCGCGCCCTGGACGGCGTCGACGTGGACTTCGCGGCCGGCCGGTTCACCGCGATCATGGGGCCGTCCGGGTCGGGCAAGTCCACGCTCATGCACCTGCTGGCCGGCCTCGACAGCGCCACGCGCGGGCAGGCGTTCCTCGGCTCCACCGACGTGACCGCCCTGGGCGACAAGGCCCTGACGAGGCTGCGCCGCGACCGCGTCGGGTTCGTCTTCCAGCAGTTCAACCTGCTGCCGATGTTCACCGCCGAGCAGAACATCACGCTGCCCGTGGAGCTCGCCGGCGGGACCGTGGACCGCGCCTGGTTCGACACGCTGGTGACCACGCTCGGGCTGTCCGAGCGCCTCACCCACCGCCCGAGCGAGCTGTCCGGCGGCCAGCAGCAGCGCGTCGCCGTCGCCCGCGCGCTCATCGCCCAGCCGGAGGTCGTCTTCGCCGACGAGCCCACCGGCAACCTGGACTCCCGCGCCGGGGTGGAGGTACTGAGCTTCCTGCGCCGGTCGGTGCGCGAGCTGGGCCGCACGATCATCATGGTCACCCACGACCCCACGGCCGCCGCGTACGCGGACCGGGTGGTCCTCATCGCCGACGGCCGCATCGCCGGGGAGATCTCCGACCCGACCCCCGAGGCCGTGCTCGCCGGGCTGGACGCGCTGCGCTCCCTCGAGGCCCCGGTGACCGGGACCCCGTCCGACGACGGCACGCCGGCGGGTGCCTGA	MDTTVYVPIDDDAPGAVAPSDQTPAVRARALTKTYGTGQAQVRALDGVDVDFAAGRFTAIMGPSGSGKSTLMHLLAGLDSATRGQAFLGSTDVTALGDKALTRLRRDRVGFVFQQFNLLPMFTAEQNITLPVELAGGTVDRAWFDTLVTTLGLSERLTHRPSELSGGQQQRVAVARALIAQPEVVFADEPTGNLDSRAGVEVLSFLRRSVRELGRTIIMVTHDPTAAAYADRVVLIADGRIAGEISDPTPEAVLAGLDALRSLEAPVTGTPSDDGTPAGA	PGPT0013345_1612	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
AK001_00755	2571			hypothetical protein	ATGCTGCGGATCACGCTGGCGCAGATGCGCCGCAGCGCGGGCCGGCTCGCCGCGGCCGGTGTCGCGATCGTCATCGGCACGGCGTTCGTGGCCGCCACGCTGCTGGCCTCGGGCGTCATCACGCGCACGACCTACGACTCCATCGCCGCGCAGTACGGTGACGCCGACCTGGTCGTGGGCGCCACGACGGACGACCCGCTCGACCTCGACGCGCTGGCCGCGACCGACGGCGTCGCGGCCGTGGCGCCGGTGACGTCCACGGACGCCGAGCTGACCGACGGGGGCCGCTCGGTCTACCAGAGCATCGTCCCCACCGCCGACGAGCGGCTCATGCCCCTCGAGGTGACCGAGGGCGCGATGCCGTCGGCCGCCGACGAGATCGCGCTGCCCACCGAGGTCGCCGACCGGCTCGGCGTCGGGGTCGGGGAGACGGTCGACGTGCACCGCGACGTCGTCGACGACGGCTCGTGGCAGCAGGTCACCGAGTCCCCGACGGTCGTCGGGCTGCTGGACGACCCGTTCGGGGCGTACGCGCGGACCGGGGGTGCCGCCGTCGTCGACCCCGCGACGTACACGACGTGGCAGAGCGATCGCTGGGGCGAACCGGTCGCCGTGACCGAGGCCGCCGTCGTCGTGGCGGACGGCACGGACGTGGCAGAGACACAAGCCGCGCTCGCCGAGACCGTCGGCGGAAGCACCAGCACGGACGCCCCCCGGTGGGCGGTCACCACCGACGAGCGTGCCGCCGAGTCCGCCGCCGAGCTCACCGGCGGCCAGGACCTGATGTTCCTCGTGTTCGTGCTGACCTTCGCCGCGATCGCCCTGGTGGTGGCCGGGCTGGTCATCGCCAACACGTTCCAGGTGCTGGTGGCCCAGCGGGCGCGCACCCTGGCGCTGCTGCGCTGCGTGGGAGCGGACAAGGCGCAGGTCGGACGCGGCGTGCTCACCGAGGCCGCGATCCTCGGCCTGGTCGCCTCGGTGGCCGGCGTGCTCCTCGGCACGGCGCTCGGGCAGGCGGCCCTGTGGGTGGCGCACGCCCTGGACGTCCCCGTGCCGCTGCCCGGCACGGTGACGCTCACCTGGCAGGTCGTGGTGGTCCCGGTGCTGGTCGGCACCCTGGTCACCGTCGGTGCCGCGCTGGTCCCCGCCCGGGTCGCGACCCGGGTGGCACCGCTGGCCGCGCTCCGTCCGGCCGACTCCCCCACGACGTCGCGCCGCGCCGGAAAGGTCCGCCTGGTGCTGTCGCTGCTGGCCACCGTCGTCGGCTTCGGGCTGCTCGGCGCGGGCGCCGCGCTGGGCACGGCCTGGCAGGAGCCGACGCTCGGCCTCCCGGCCGGGATCGCCGGCGGCGCGCTGTCGTTCGTCGGCGTGGCCGTCGGGGCCGTCTTCTGGCTGCCGAAGGTCGCCGCGGCGGCCGGGCGGCTGGTCGGAGCCTCGGGCCCGACGGCGCGGCTCGCGGCCGCGAACACGCTGCGCAACCCGCGGCGCACGGCGACCACGAGCACGGCGCTTCTCATCGGCGTGACCCTGGTGGCGATGATGACCACGGGGGCCGCGAGCGCCCGGACGTCGCTGACGGCGGCGATGGACGAGCAGTTCCCGGTGGACGTGGTGGTCACGTCGGCGGAGTACGGCGCCGGCGGAGAGCAGGCGGCGCTGGCGGACGAGCTGCGGGCCGACGTGGCCGCCGTGGACGGCGTCGGTGCGACCACCGACGTCTCGGAGATCCTGGTGCAGGCGACGTCCGGCGCCGGGTCGGTCGCGAACTGGCTGCCGCTCACCGCCATCGACCCGGGAGCCGGCGCGGAGGCGTTGAACTCCCCGGACGTCCTGGCGGGCCTCGAGCCGGGCACGGTGCTCGTCGGTCACGACCAGGCGCAGGACCTGGGGCTGGGCTCCGGGGACACCGTGGAGCTCACGGACACCGACGGCGCGGTGACCGTCACCGTGGCGGTCGGAGCGTCGGGCTACACGAACTACCTGACGACCGACGACCTGGCGGCGCTGTCCCCGGACGCGCCCGTGACGGGGATGTACCTGGCGCTGGACGACGACGTGGACGCCGCGTCCGCCGTCGGCGCGATCCAGGACGTCGTGGCGGACTCGGGCGAGTCGGCCCAGGTCACCGGCATCGCGTCCCAGCGCGCCCTGTTCGACCAGGTGATCGACACGATGCTGGGCATCGTCGTCGGGCTGCTCGCGGTGGCCGTGGTCATCGCCCTGATCGGGGTGGCGAACACGCTGTCGCTGTCGGTGATCGAGCGGCGGCGCGAGTCCGCGACGCTGCGCGCGATCGGGCTGTCGAAGGCCCAGCTGCGCGGCATGCTCGCGATCGAGGGCCTGCTCATCGCGGGTGTCGGCGCCGTGCTCGGCGTCGTGCTCGGCCTGGTCTACGGGTGGGCAGGCGCCGCGGCGGCGCTCGGGATCATGGGGGACGTGGCGCTCTCGGTCCCGTGGCTCGAGGTGGGCCTCGTGCTGCTGGTGGCGCTCCTGGCCGGTCTGGTCGCCTCGGTGGCCCCGGCCCGCACGGCGCTGAAGGCCTCGCCGGTGGAGGCGCTCGCCACCGAGTAG	MLRITLAQMRRSAGRLAAAGVAIVIGTAFVAATLLASGVITRTTYDSIAAQYGDADLVVGATTDDPLDLDALAATDGVAAVAPVTSTDAELTDGGRSVYQSIVPTADERLMPLEVTEGAMPSAADEIALPTEVADRLGVGVGETVDVHRDVVDDGSWQQVTESPTVVGLLDDPFGAYARTGGAAVVDPATYTTWQSDRWGEPVAVTEAAVVVADGTDVAETQAALAETVGGSTSTDAPRWAVTTDERAAESAAELTGGQDLMFLVFVLTFAAIALVVAGLVIANTFQVLVAQRARTLALLRCVGADKAQVGRGVLTEAAILGLVASVAGVLLGTALGQAALWVAHALDVPVPLPGTVTLTWQVVVVPVLVGTLVTVGAALVPARVATRVAPLAALRPADSPTTSRRAGKVRLVLSLLATVVGFGLLGAGAALGTAWQEPTLGLPAGIAGGALSFVGVAVGAVFWLPKVAAAAGRLVGASGPTARLAAANTLRNPRRTATTSTALLIGVTLVAMMTTGAASARTSLTAAMDEQFPVDVVVTSAEYGAGGEQAALADELRADVAAVDGVGATTDVSEILVQATSGAGSVANWLPLTAIDPGAGAEALNSPDVLAGLEPGTVLVGHDQAQDLGLGSGDTVELTDTDGAVTVTVAVGASGYTNYLTTDDLAALSPDAPVTGMYLALDDDVDAASAVGAIQDVVADSGESAQVTGIASQRALFDQVIDTMLGIVVGLLAVAVVIALIGVANTLSLSVIERRRESATLRAIGLSKAQLRGMLAIEGLLIAGVGAVLGVVLGLVYGWAGAAAALGIMGDVALSVPWLEVGLVLLVALLAGLVASVAPARTALKASPVEALATE	PGPT0013350_2747	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
AK001_00756	4512			hypothetical protein	ATGCCCGTCCGCCTCACCCTGCACCCCGACGAGGACGTCGAGCTGCCCGACGACGTCCGGCTCGGTGACCTGCGCGCCCCGCTGGCCGATCTCGTGCGCCGCCCGGAGCTGCTGCGCGCCGACCTGCTCGCCGACGACCGCCCCGTGGGTGACGACGCCCGGGTCGGCTCCCGCCCCCTGCTGCCGGGCACGGTGCTGCGCCCCGCACGGTCCGGCGGACGTGCCCTGGGCAGACCCGCCGCCGGCGACCCCACGGACGGTGCGGCGGACGTCGCGGTCCTGCGCAGCCCGTGGTGCGTGGCGGCCACGACCGGGCTCGCCGCGGGGGAGCCCCGGCCCCTGGCTCCCGGCGCACCCCTCACCCTCGCGCAAGGCAGGCACCGGGTCCGGGTGACCGCCGGCGCGCGCGGAGGCGTCCGGGTCCGGCTGCTGTCGCCCGTGCCGCCGACGGGCGGCACCGCACCGGGACGGGCCGGTCCGTGGTGGCCCGGCCTGCCGCGGCCCGGTCTGCCGTGGCCCGGTCTGCCGCGGCCCGGTCTGCCGTGGCCCGGCCGACGGCGGCCCGCCACGCTGGGGCACCCCGGCGTCCGCCGCCGTCGGGGGCTCGGGTGGTGGCCACGCCGCTGGCCGTCCCACCACGAGCTCGACCTCGACGGTGTCCGGTACGCGCTGCACCGGTCCGGCGACGTCGAGGTCTGGCTCGCCCTGGGGGCGGCGCCGACGGACACTGCACCGACCGTCGGGCCGGCGATGCTCGCGACGGGACTGGTGCCCGTGCTCGGTTCGGTCGTGCTCGCGGTGACCCTGCGCCAGCCCCTGTACGCGCTGTTCTCGCTCGTCGCGGTCGTCGCGCTGGTACCGCAGGTCGTCGCGGCCGTGCGTCGTCGCCGACGGGCCCCGCGGACCGTCGGCCCGGACGTCCCGGCGGACGTCGGCGCGGCCCCGGGCCGCACCGCCGCACGGATCGCCGCGGCGCACCAGGCCTCCGACGGTGCCTGGCGCCGGGCCGCGCGGGCGCTCGCCGAACGCGCCACCGCCGGCACCCCGGTACCGCCGCCCACGCCGGGCACGATGCTGCCCGACGGCGCGCTGTGCCTGCGCGGGCCGGCCGCGTCGGTCCGGTCCGTGGCACGCTCCGTCGTGGTCGACCTCGCGACCACGGGCGCCCCGGTGCGCGCCGTGGGCACGGGCCGCGGCGCCTGGCGCTGGTGCCGGTGGCTCGCCCCGGACCCCGCGCCGGCCGCGGACGGCACACCGGGCGTCCTGGTCGCCGACGCCCCGACCGCGGACGACCTCGCGACGGCGGACCGGACGGCGCGCCACGGGGGCGTGGTCGTGCTCTGCCTGCCCGACGACGGCCCCGGCGGTCCGGTGCCCGCCCCGGCCTGGTGCCGCACCACCTGGACGATCGGCCCGGACGGCCGTGTCCTGCGCACCGCCCCCGACGGCAGCGACTCCCTCGCCCCTGCGACCGGGGTGAGCACCGCGTGGGCGGAGCGCACCGCGCGGCGGCTGGCGGGTCTGCGCCACCTGCGCCGCCCCGCGACCGGGCCGTCCGCGCAGGCGGCGACCGCACCGGAGGGCGACGGCACCGACCCCACCGACCCGCGGCTGCCGTCCTCGGTCGCGCTGGCCGACCTCGTGGACCTCGACGACCCCGCCGACCGCTGGGCACGCGCCGACACCTGGCGCGTCCCGCTGGGCCGCGACGCCGCGGGACGCACCGTCGACCTCGATCTCGACACCGACGGGCCCCACCTGCTCGTGGCCGGCACCACCGGGGCCGGCAAGTCGGAGCTGCTGCAGTCCCTCGTGCTCGGGCTGGCCGCCACCCGCTCCCCCGCCGACCTCGCCGTCACGCTCGTCGACTTCAAGGGCGGTGCCTCGTTCGGCCGCTGCGCCGAGCTTCCCCACGTCGTCGGGCAGGTCACCGACCTCGAGGCCGGGCTCGCCGGCCGCGCCCTGGTCGGGCTGCGGGCCGAGCTGCACCGCCGCGAGCGCGTGCTCGCCGACCACGGCGTCGCCGCCTCGCACGATCTCCCGCGCGGAGCCCTGCCCCGGCTGCTGGTGGTCATCGACGAGTTCCGGGCCCTGGCCGACGACCTGCCCGACTTCCTGCCCGGCCTGCTCCGCATCGCTGCCCAGGGCCGCTCGCTCGGGGTCCACCTCGTCCTGGCGACCCAGCGCCCGGCCGGCGCCGTCGGCGCCGACCTGCGCGCCAACGTCTCGGCACGACTCGCGCTGCGGGTCGTCGACCCCGCCGACTCGCGCGACGTCGTCGAGCACCCGGGCGCCGCGGCGATCCGGGTCGGCGAACCCGGCCGCGCCGTGCTGCGCATCGGTTCCGCACCGCCGGTCGCGCTCCAGTGCGCCCACGCGGGAGCACCCGGCGGGGAGTCGACCTCGGCAGTGCGGCGGGTCCCCGGCACGCACCCGACACCGCCGGCCGGAACCGCTGCCGCTCCGACAGCACCCGGTCGGCCCGACGACGCCGACACCGTCGCCGCGGCCGTCACGGTCCTGCGCGAGGCGGCCGCGGCGGGTGGCCACCGCCCCGGCCCGGCACCGTGGCTCCCCGCCCTGCCGGCCCGGGTCACCGTCGCCGACCTGCCCTCGGACGCCCCGGCCGGGCACGACCACCTGCCCCTGGCGCTGGCCGACGATCCCGACCGCCAGCGCCGGACGGCCGCCTGCTGGCGTCCGGCCGACGGCCACCTCGCCGTCCTGGGCCCCGCCCGGTCCGGACGCACCACCGCCCTGGTCACCCTGGCCCGGGCGGCGCTGGAGCGCGGACGCGCCGTGCACGTGCTCGCCCCCGCCGCCGCGCAGCACCGCTTCGCCCCTCTCGCCGACCGTCCCGGGTTCGGCACGCTCGCCGGCGCCGACGACCCGCGCCGGGCGCGCCGCCTGCTGCAGCTCCTCGCCGCACCCGCGCCGTCCGGTGCGGACGACGGCCCGGCGCCCCTCGTCCTGGTCGAGGACGTCGCGGCCCTGCGCGCCGCGCTCGCCGGGACGGACCCCTGGGACCCGCTCGTCACGGCACTCTCCGCGGGCCGCGCGGCGTTCGCGGTCACGGCCGACGGCGCCACCGTGGGCGGGGTGGCCGCGCGCGTGGGACCGCGGCTTGTGCTGCTCGGCACCGACCAGCACACCGACGTCATGCTCGGCGCGCCGGCGCCCTTCGCCGGGACGGGCGGCCCGCCAGGACGTGCCGTCTGGCTCACCCAGGGAACCCCGCTGGCCTGCCAGGTGCTGTCGCCGGAGCCCGTCGCTCCGTCGCGCGACGCGCGGGTCTCCGACGCAGCGGTCGCCGGCACGCCCGTGCGGGTGCTGCCGCTCCCCGCGGACGTGACGCCGGCGCACCTCGGTGGAGGCCCACCTGGCACCCGCCGCACCCTGGGCACCGGCCCGCCGGACGCCGCCGCAACCGACGAGGGGACCGCGGTGACGGTCGGGCTGGGCGGGGACGCCGCCGTCCCGGTCTCCCTCGACGTCGGCGAGGGCGCACTGGTCGTCGGACCGCACGGCTCGGGCCGCACCACCACGCTGCGGACCGTCACCCGCGCCCTCGCCCGGCGCGGTCGGCTCGCCGCGGTCGTCTCCCGCGACCGGACCCTGCGCGAGGACGCCGGGACCGCGCCGACGGCGGGTCTCGCCTCCGCGGCGGTACGGGGGCTCGTCGAGTCCCTGTCGCCCGGGTCGGGCACCGTCGTCGTCGACGACCTGGACGCCGTGGCGCAGACGTGCCCGGTGGAGGCCGAACGACTCGCCGCGCTCGAGCAGGAGGGGCTGCGCGTGGTGGCCTCGGCGACCACCCAGGGGGCGCTGATGGCCCACCGGGGGGTGCTCGCCGAGCTGCGCGGGCGGCGCACCGGGGTGGTGCTGGCGCCGGGCGAGCGGGGCGCGGACGAGGTGCTCGGGACGCCGGTCGCCGACGTCGCGGACCCCGGTCCGCCGCGACCGGGGCGCGGCGCGCTGGTCCGGTCCGGCGAGGCGGTCTGCGTCCAGGTGGCCCGGCCCGTCGCGGCCGGGACGGGCTCAGCCGAGCGTGTGCTCGACGACGCCGCGCGTCATGAGGCAGACCAGGACGCCGGCGGCCAGCGCGAGCACCAGCACCCCGCCGAGCGTCACCACCAGGGACCCACTGGTCAGCAGCGCGATGGCGATCAGCCCCTGGAAGATCTGCCAGCCGGCGACGGGCGACCGGCCGCCCCGGCGGCCCTGCCACAGGGCGCGCGCGGACCAGCCCAGGAGCCAGGCGAGGGCGAGGAAGAAGGCGGCCGTGAAGAGGCTGACGCCGAGGCTCTCCGCCTGGCCCACGACGAGGTCGACGATCATCGCGCCGGCGAAGACCACCATCGCCACGACCTCGAGCCCGACGCCCGCCACGACGGCGAGCAGAGCCCGGGGCATCCCGGCCGGGGACGGGGTGGCGTCGGCCGGGCCCGAGGGGGCGTCAGAGGTGGGCATCGTCGTGATGATACGGCTGACCTGCCCCGTTGTGCAGTGTGA	MPVRLTLHPDEDVELPDDVRLGDLRAPLADLVRRPELLRADLLADDRPVGDDARVGSRPLLPGTVLRPARSGGRALGRPAAGDPTDGAADVAVLRSPWCVAATTGLAAGEPRPLAPGAPLTLAQGRHRVRVTAGARGGVRVRLLSPVPPTGGTAPGRAGPWWPGLPRPGLPWPGLPRPGLPWPGRRRPATLGHPGVRRRRGLGWWPRRWPSHHELDLDGVRYALHRSGDVEVWLALGAAPTDTAPTVGPAMLATGLVPVLGSVVLAVTLRQPLYALFSLVAVVALVPQVVAAVRRRRRAPRTVGPDVPADVGAAPGRTAARIAAAHQASDGAWRRAARALAERATAGTPVPPPTPGTMLPDGALCLRGPAASVRSVARSVVVDLATTGAPVRAVGTGRGAWRWCRWLAPDPAPAADGTPGVLVADAPTADDLATADRTARHGGVVVLCLPDDGPGGPVPAPAWCRTTWTIGPDGRVLRTAPDGSDSLAPATGVSTAWAERTARRLAGLRHLRRPATGPSAQAATAPEGDGTDPTDPRLPSSVALADLVDLDDPADRWARADTWRVPLGRDAAGRTVDLDLDTDGPHLLVAGTTGAGKSELLQSLVLGLAATRSPADLAVTLVDFKGGASFGRCAELPHVVGQVTDLEAGLAGRALVGLRAELHRRERVLADHGVAASHDLPRGALPRLLVVIDEFRALADDLPDFLPGLLRIAAQGRSLGVHLVLATQRPAGAVGADLRANVSARLALRVVDPADSRDVVEHPGAAAIRVGEPGRAVLRIGSAPPVALQCAHAGAPGGESTSAVRRVPGTHPTPPAGTAAAPTAPGRPDDADTVAAAVTVLREAAAAGGHRPGPAPWLPALPARVTVADLPSDAPAGHDHLPLALADDPDRQRRTAACWRPADGHLAVLGPARSGRTTALVTLARAALERGRAVHVLAPAAAQHRFAPLADRPGFGTLAGADDPRRARRLLQLLAAPAPSGADDGPAPLVLVEDVAALRAALAGTDPWDPLVTALSAGRAAFAVTADGATVGGVAARVGPRLVLLGTDQHTDVMLGAPAPFAGTGGPPGRAVWLTQGTPLACQVLSPEPVAPSRDARVSDAAVAGTPVRVLPLPADVTPAHLGGGPPGTRRTLGTGPPDAAATDEGTAVTVGLGGDAAVPVSLDVGEGALVVGPHGSGRTTTLRTVTRALARRGRLAAVVSRDRTLREDAGTAPTAGLASAAVRGLVESLSPGSGTVVVDDLDAVAQTCPVEAERLAALEQEGLRVVASATTQGALMAHRGVLAELRGRRTGVVLAPGERGADEVLGTPVADVADPGPPRPGRGALVRSGEAVCVQVARPVAAGTGSAERVLDDAARHEADQDAGGQREHQHPAERHHQGPTGQQRDGDQPLEDLPAGDGRPAAPAALPQGARGPAQEPGEGEEEGGREEADAEALRLAHDEVDDHRAGEDHHRHDLEPDARHDGEQSPGHPGRGRGGVGRARGGVRGGHRRDDTADLPRCAV	PGPT0030468_201	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466	NA	NA
AK001_00757	249	whiB1		Transcriptional regulator WhiB1	ATGGACTGGCGGCACCAGGCGGCCTGCCTCGACGAGGACCCCGAACTCTTCTTCCCGATCGGCAACACCGGCCCCGCGCTCATGCAGATCGAGGAGGCCAAGGCGGTCTGCCGTCGCTGCGACGTCGTCGACACCTGCCTCAAGTGGGCCATGGAGTCCGGTCAGGACGCCGGCGTCTGGGGCGGGATGAGCGAGGACGAGCGTCGCGCGCTCAAGCGTCGCACCGCTCGCGCGCGCCGCGCCGGCTGA	MDWRHQAACLDEDPELFFPIGNTGPALMQIEEAKAVCRRCDVVDTCLKWAMESGQDAGVWGGMSEDERRALKRRTARARRAG				NA	NA	NA	NA	NA
AK001_00758	1509	pdtaS	COG3920	putative sensor histidine kinase pdtaS	GTGCGGGCCCGTAGGCTGGTGGGCGTGTCCGCCATGAGTGACCTGATCGCCGAGCACGCCGACCTGCACGAGGGGGACGGCGAGTGGCTCCACCTCCTCGTCGGCGACTGGCAGATCGTCTCCGACCTCGCCTTCGCCGACCTCGTGCTCTGGCTGCCGACCCGCGACGGCCGCTTCGTCGCCGTGGCGCAGTGCCGGCCCAGCACCGGTGCCACCGTGCACTACGACGACGTCGTGGGGTCCTTCGCGCCCGACGGGCAGACGCCGCAGCTCACCGCGGCGATGGCCGAGGCGCGCGCCCAGCGGTCCCGCGAGCCCCGGTGGTTCGGCGCGTACGCCGTCCGGGAGGAGGCCGTGCCCGTCGTCCACGAGGGCCGCGCGATCGCCGTCGTCGCCCGGCAGACCAACCTCGGGTCCGGGCGGACGCCCAGCCGCCTCGAGCTCAACTACGTCGAGTCGGCCGACGACCTGCTCGCGATGATCGGGCGCGGGGAGTACCCGTCGCCCAACGCCGCGACGGGGCCGCGGCGGGGCGCGCCGCGCGTCGGGGACGGTCTCATCCGGCTGAACTCCGAGGGCGAGGTGCTCTACGCCAGCCCCAACGCGCTGTCGTGCTTCCACCGGCTCGGCGTCATCGGCCCGCTGGTCGGCCAGTCGCTCGTCGAGGTCACCGCCGGGATCGTCGAGCAGCAGAACACCGTCGACGAGTCCATGCCGCTGGTCGTCATGGGTCGCGCGCCCTGGCGCACCGACATCGAGGCCGGCCGCGTGGCGCTGTCGTTGCGCGCCCTGCCGCTGACCGACCACGGTCAGCGCATCGGCGCCGTCCTGCTGTGCCGCGACGTCTCCGAGCTGCGCCGACGCGAGCGCGAGCTCATGACCAAGGACGCCACGATCCGCGAGATCCACCACCGCGTGAAGAACAACCTGGCCACGGTGGCCGCCCTGCTGCGGCTGCAGGCCCGCCGCATGGACGTCCCGGAGGCGCGGGCCGCGCTGGAGGAGGCGATGCGGCGCGTCGCCACGATCTCGCTGGTGCACGAGTCGCTGTCGCAGACGCTGGACGAGCAGGTCGGGCTCGACGACATGCTCAAGCGCGCGCTGCGCCTCGCCGCGGACGTGGCCTCGACCCACACCTCGGTGCGCACGGAGCAGCAGGGGTCCTTCGGGATGATCCCCGCGCCGGATGCCACGCCGCTGGCGCTGGTGCTCACCGAGCTGGTGACGAACGCCGTCGAGCACGCGTTCCCCGACCGTGAGTCCGGGACCGTGTGGATCGACGTGCAGCGCGAGGCCGCGGGGCTCCGCGTGGTCGTGGCGGACGACGGCGTCGGCATGCGGGAGGGGATCGAGCAGCTCGGGCGGGCGTCGCGCAGCGGGCTCGGCTCGCAGATCGTCAAGACGCTCGTGACGAACGAGCTGCGTGGCACGATCGACTGGCGCCCCCGCGAGGGCGGCGGCACGGAGGTCGTGCTCGCGGTGGAGCTGCGCGAGGACTCCCACCGCTGA	MRARRLVGVSAMSDLIAEHADLHEGDGEWLHLLVGDWQIVSDLAFADLVLWLPTRDGRFVAVAQCRPSTGATVHYDDVVGSFAPDGQTPQLTAAMAEARAQRSREPRWFGAYAVREEAVPVVHEGRAIAVVARQTNLGSGRTPSRLELNYVESADDLLAMIGRGEYPSPNAATGPRRGAPRVGDGLIRLNSEGEVLYASPNALSCFHRLGVIGPLVGQSLVEVTAGIVEQQNTVDESMPLVVMGRAPWRTDIEAGRVALSLRALPLTDHGQRIGAVLLCRDVSELRRRERELMTKDATIREIHHRVKNNLATVAALLRLQARRMDVPEARAALEEAMRRVATISLVHESLSQTLDEQVGLDDMLKRALRLAADVASTHTSVRTEQQGSFGMIPAPDATPLALVLTELVTNAVEHAFPDRESGTVWIDVQREAAGLRVVVADDGVGMREGIEQLGRASRSGLGSQIVKTLVTNELRGTIDWRPREGGGTEVVLAVELREDSHR				NA	NA	NA	NA	NA
AK001_00759	501			hypothetical protein	GTGCACCTGACGGTGGAGCTGACCTACCCGGCGGACACGGCTTCCGTGGCCGCCATGCTCAGCGACCCGGAGTTCCTGCGCTGGCGGGCCCGCGACCCGGGTGCGGCCGCCGCGACCGTGGTGGACCAGTCCGGCTCGCCGCACGCGGGGTTCACCGTGGCCCTGCGCCGGACGCTGCCCACCGACGTCATCCCCGTCCACCTGCGGCACGTGGTGGGCGACCAGCTGGAGATCCGTCAGGCGGAGGCGTGGGAACCCCCGACCGAGGGGCGCTACACGGGCACCGTGGTCGTCGAGATCACCGGCGCCCCGGTCCGTCTCACCGGCACCCTGCTCCTGGCCCCGACGGACGACGGCGGAACCCGGCAGGTCGTCGACGGCGTCGTGCACGCCTCGGTCCCCCTGTTCGCCGCGGCCGTCGAGGACGCCGCGGCCGCAGCCGTCCGCCGTGCCCTGGAGGCGGAGGCGCAGGCCGGCCGTGACTGGCTGGCCCGGTCCTGA	MHLTVELTYPADTASVAAMLSDPEFLRWRARDPGAAAATVVDQSGSPHAGFTVALRRTLPTDVIPVHLRHVVGDQLEIRQAEAWEPPTEGRYTGTVVVEITGAPVRLTGTLLLAPTDDGGTRQVVDGVVHASVPLFAAAVEDAAAAAVRRALEAEAQAGRDWLARS				NA	NA	NA	NA	NA
AK001_00760	1347			hypothetical protein	GTGCTCAGCAGCACCCGCCCGCGCCGGACTCGCCGCCTCGCCGCGGCCACCGCCGGCATCGCGTCCCTCGGCCTTCTCCTCGCCGCCTGCTCCGGCGACGCCGAGGAGCCCGCCGGTGAGGAGACCGCCGCCGAAGAGGACGGTGGCGCGTCGACCGACGAGGAGATCACCCTCACGGTCGCCACCTTCAACAACTTCGGGTACACCGACGAGCTGCTCGCGCAGTACGAGGAGGAGCACCCGAACGTCACCGTCGAGCACACGACGGCAGCGCAGGCCGAGGACGCCCGCACTAACCTGTCCACCAAGCTCGCCGCCGGCGGCGAGGGCCTGGCCGACATCGAGGCCGTCGAGGTCGACTGGCTGTCCGAGTTCATGCAGTACCCGGACCTGTTCGCCGAGATGCCCGCCGTCGACGGCCGCTGGGTCGACTGGAAGGTCGAGCAGGCCACCACACCGGACGGCAAGCTCATCGGCTACGGCACCGACATCGGCCCCGAGGCGATCTGCTACCGCTCCGACCTGCTCGAGGCCGCCGGCCTGCCGTCGGAGCGCGAGGAGGTCGCCGAGTGGATCGGCGGCGACAGCGCCACCTGGGAGAGCTACTTCGACGCCGGCAAGGAGTACGTCGACGCCAGCGGCAACGCCTGGTTCGACGGGGCGGTCGCCACCTACCAGGGCATGATCAACCAGGTCGAGGCCGCCTACGAGGACCCGGAGACCGGGGAGCCGAAGGACCTCGCCTCCAACACCGAGGTCAAGGACCTCTACGACCAGGTCATCACGGCCGCGGTCGACGACAACCTCTCGGCCGGTCTGGAGCAGTGGGGCGACGACTGGTCGGCCGGCTTCCAGAACGACGCCTTCGCCACGATGCTCTGCCCGTCCTGGATGACCGGGCCGATCGAGCAGAACGCCGGTGGCGTCGAGGGCTGGGACATCGCCGACGTCTTCCCGGGTGGCGGCGGCAACTGGGGCGGTTCCTTCCTGACCGTCCCGGCCTCCGGCGACAACGTCGAGGCCGCCCAGGAGCTCGCCGACTGGCTGACCTCCCCCGAGGTCCAGACGCAGGCCTTCGTCGAGGCCGGCACCTTCCCGTCGCAGATCGAGGCCCAGGAGTCCGACGAGGTGCAGTCCTTCGTCAACGACTTCATGAGCGAGGCACCCGCCGGTGCGATCTTCTCCTCGCGGGCGCAGGCCATCGACGGCGCCGTCTACAAGGGGCCGCACTACTTCTCCATCCACCAGGAGGTCCAGAACGGCATCAACCGTGTCGACCTCAACGGTGAGGACCCCGAGGAGTCCTGGGAGACCTCGGTCTCCTCGGTGAACGAGCTGGGTCTCTGA	MLSSTRPRRTRRLAAATAGIASLGLLLAACSGDAEEPAGEETAAEEDGGASTDEEITLTVATFNNFGYTDELLAQYEEEHPNVTVEHTTAAQAEDARTNLSTKLAAGGEGLADIEAVEVDWLSEFMQYPDLFAEMPAVDGRWVDWKVEQATTPDGKLIGYGTDIGPEAICYRSDLLEAAGLPSEREEVAEWIGGDSATWESYFDAGKEYVDASGNAWFDGAVATYQGMINQVEAAYEDPETGEPKDLASNTEVKDLYDQVITAAVDDNLSAGLEQWGDDWSAGFQNDAFATMLCPSWMTGPIEQNAGGVEGWDIADVFPGGGGNWGGSFLTVPASGDNVEAAQELADWLTSPEVQTQAFVEAGTFPSQIEAQESDEVQSFVNDFMSEAPAGAIFSSRAQAIDGAVYKGPHYFSIHQEVQNGINRVDLNGEDPEESWETSVSSVNELGL	PGPT0016430_181	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016430-cebE-K10240	NA	NA
AK001_00761	327		COG1146	Ferredoxin	ATGACCTACGTGATCGCCGAGCCCTGCGTCGACGTCAAGGACAAGGGCTGCCTCGAGGAGTGCCCGGTCGACTGCATCTACGAAGGGCAGCGCTCGCTGTACATCCACCCGGACGAGTGCGTGGACTGCGGCGCCTGCGAGCCGGTGTGCCCGGTCGAGGCCATCTACTACGAGGACGACGTCCCCGAGGAGTGGAGCGACTACTACCGGGCGAACGTCGAGTTCTTCGACGACCTCGGCTCGCCCGGCGGTGCGGCACGGCTCGGCGTCGTGCCCCGCGACCACGCGGTCGTCACCGCGATCCCGCAGGGCGGGGGCGCGTCGTGA	MTYVIAEPCVDVKDKGCLEECPVDCIYEGQRSLYIHPDECVDCGACEPVCPVEAIYYEDDVPEEWSDYYRANVEFFDDLGSPGGAARLGVVPRDHAVVTAIPQGGGAS	PGPT0030810_836	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
AK001_00762	1359	fprA_1	COG0493	NADPH-ferredoxin reductase FprA	GTGACCGGGGGCGTGCGGCCGCTGAGCGTCGCCGTCGTCGGCGCCGGGCCGGCGGGCGTCTACGCGGCCGGGCTCCTCACCGAGCTCGCGCCGGGCACGCGGGTCGACGTCGTCGAGCGTCTCCCCACGCCGTACGGCCTGGTGCGCTACGGCGTCTCCCCGGACCACCCCAAGATCCGGCGGATCGTCGACTCGTTGCACGGCATGCTCGACCACCCCGACGTGCGGCTGCTGGCCAACGTCGAGGTCGGCACCGACATGACGATCGACGAGCTGCGGTCCGTCTACGACGCCGTCGTGGTGGCCACCGGGGCGCAGCGCGACGCCCGCCTCGACGTCCCGGGCGTCGACCTGCCCGGGTCGTTCGGCGCGGCCGACGTCGTCTCCTGGTACGACAGCCACCCCGAGGTCCCGCGCGAGTGGCCGCTGCACGCCGAGACCGTCGCCGTCGTCGGAGCCGGGAACGTCGCCCTCGACGTCACCCGGATGCTGATCCGCCACGCCCGGACGCTCGAGCGGACCGACCTGTCGGAGAACGTCCGCCGGGGCCTGGCCGCGAACGCGGTCCGCGACATCCACGTGTTCGCCCGACGGGGACCCGTCGACGTGCGCTTCTCCCCCGGCGAGCTGCGCGAGCTCGGCGAGCAGGAGGACGTCGACGTGGTCGTCGACCCGGCGCAGATCGTGCGCGACGAGCACACCGAGCGCATGGTGCGGCAGCTCGCCCCGAAGCGGCGAGTCGTGCGGACGTTCGAGCGGTGGGCGGCGGTGCCCGCCGCGGACCGTCGGGCCTCGCGCCGCGTCCACCTGCACTTCCACCGCGCTCCGGCGGCGATCCTCGGCACCGACCGTGTCGAGGGGCTGCGGACCGAGATCACGGCACCGGACGGGTTCGGGCACGCGGAGCCGACCGGTGAGCTCGAGGACCATCCCGTCCAGGCCGTCTACCGCGCCGTGGGCTACGTGGGCTCCCCGGTTCCGGGCGTGCCGTTCGACCCCGTCCGGCACGTCGTCCCGCACACGCGGGGGGCCGTGCTCGACGGCGACGGCGTCCCCGTGCCCGGCCTCTACGCGACCGGTTGGATCAAGCGGGGCCCGGTCGGGCTCATCGGCGCCACCCGGTCGGACGCCAAGGAGACCGTGGAGACGCTGCTCGCCGCCGACACCGGGCAGCGGCGCCCCGGGTCCGAGGCCGCGGACGCGATCCTGCGCGAGCGGGGCGTGCCGGTCGTGGACTGGGAGGGATGGCTGCGCATCGACGCGGCCGAGCAGCGGCTCGGTGCGGCGTCGGGCCGCGAGCGGACGAAGATCGTGGACCGGTCCGAGCTCGTCGCGCTCGGCGCCGGGGTGACGGTCTGA	MTGGVRPLSVAVVGAGPAGVYAAGLLTELAPGTRVDVVERLPTPYGLVRYGVSPDHPKIRRIVDSLHGMLDHPDVRLLANVEVGTDMTIDELRSVYDAVVVATGAQRDARLDVPGVDLPGSFGAADVVSWYDSHPEVPREWPLHAETVAVVGAGNVALDVTRMLIRHARTLERTDLSENVRRGLAANAVRDIHVFARRGPVDVRFSPGELRELGEQEDVDVVVDPAQIVRDEHTERMVRQLAPKRRVVRTFERWAAVPAADRRASRRVHLHFHRAPAAILGTDRVEGLRTEITAPDGFGHAEPTGELEDHPVQAVYRAVGYVGSPVPGVPFDPVRHVVPHTRGAVLDGDGVPVPGLYATGWIKRGPVGLIGATRSDAKETVETLLAADTGQRRPGSEAADAILRERGVPVVDWEGWLRIDAAEQRLGAASGRERTKIVDRSELVALGAGVTV	PGPT0013215_376	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528	NA	NA
AK001_00763	1395			hypothetical protein	ATGCACCGCAGTGACACGACCCCGACCCAGCCCGGGATCGCCCGCCGGCTCCGCCGTCCCGCCGCCCTCGTCGCGACCGGAGTCCTCGCCCTGGCCGGGTGCGCGACGCCGTCGGGCACCGGCGGTCCGGACGGCCAGGTGACGCTCACCTACTGGATGTGGGACGCCAACCAGGTGCCCGGCTACCAGCAGTGCGCCCAGGACTTCGAGGCGGAGAACCCGGACGTGCTCGTGAACCTCGAGCAGTACGGCTGGGACGACTACTGGACCCAGCTCACGGCACGCATGGTGGCCGAGAGCGCCCCGGACGTCTTCGTCGACCACGCCCAGCAGTTCGGCAAGTACGCGAGCTTCGACCAGATCCTCGACATCAGCGATCGCGTGGAGGCCTCCGACATCGACCTGGACCAGTACCAGGACGGTCTCGTCGACCTGTCGCGCGGACCCGACGGCGGGCTCTACGGCCTGCCGAAGGACTGGGACACCGTGGGGCTGTTCTACAACGCCGACATGGTGGCCGAGGCCGGCTACGCGCCCGAGGACCTGTGGGAGCTCGAGTGGAACCCGCGCGACGGCGGGACGTTCGAGGAGTTCCTGGCCCGGATGACCGTGGACGAGAACGGGGTCCGCGGCGACGAGCCCGGGTTCGACCCGAGCCGCGTGGACGTCTACGGCCTCGGGTACAACGAGAGCGGCGGCGGGTTCGGCCAGGTGCAGTGGGCGCCCTACGCGCTGAGCAACGGCTGGACCTACGCCGACACCAACCCGTGGCCGACGTCCTTCGACTACGACGACCCGGCCCTGGCCGAGGCGATCGGGTGGTGGCGCTCCCTGATCGAGAAGGGCTACATGCCGCCCTTGCCCGTGGCGACGTCCGGCATCGGGACGATCGAGTCCCTCGGTTCGGGCGGGTACGCCGCGCTGATCGAGGGCTCGTGGAACTCCCGGGCGATGGCGGAGCTCCAGGGTGTCGACGTCCGGGTGGCGCCCACCCCGGTCGGGCCGACCGGTGAGCGCGCGTCGGTGTTCAACGGGCTGTCGGACGCGATCTACGCCGGCACCGAGCACCCCGACGAGGCCTGGCGCTGGGTCGAGTACCTGGCGAGCCCCGCGTGCCAGGACGTCGTCGCGGCCGAGGGACGGGTGTTCCCCGCCATCTCGAGCTCCTCGGAGAAGGCCGTGGCCACGTTCTCCGAGCTCGGCATCGAGGCCGACGCGTTCGCCGTCCACGTCGAGGACGGGACCGGCACCCTCTCGCCGGTCACGGACCGCTGGTCGGAGGTCCAGTCGATCATGCAGCCCGCGATGGACGAGGTCATGTCCTCGACCGACGACCCGGGTCCGATCCTCGCCGACGCCGACGCCCGGGTGGACCGGGTGATGGCGGACGAGTGA	MHRSDTTPTQPGIARRLRRPAALVATGVLALAGCATPSGTGGPDGQVTLTYWMWDANQVPGYQQCAQDFEAENPDVLVNLEQYGWDDYWTQLTARMVAESAPDVFVDHAQQFGKYASFDQILDISDRVEASDIDLDQYQDGLVDLSRGPDGGLYGLPKDWDTVGLFYNADMVAEAGYAPEDLWELEWNPRDGGTFEEFLARMTVDENGVRGDEPGFDPSRVDVYGLGYNESGGGFGQVQWAPYALSNGWTYADTNPWPTSFDYDDPALAEAIGWWRSLIEKGYMPPLPVATSGIGTIESLGSGGYAALIEGSWNSRAMAELQGVDVRVAPTPVGPTGERASVFNGLSDAIYAGTEHPDEAWRWVEYLASPACQDVVAAEGRVFPAISSSSEKAVATFSELGIEADAFAVHVEDGTGTLSPVTDRWSEVQSIMQPAMDEVMSSTDDPGPILADADARVDRVMADE	PGPT0016545_1703	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_00764	954	dasC_2	COG0395	Diacetylchitobiose uptake system permease protein DasC	GTGTCGACGACGACCACCACCCCCTCCACCGCGACGGGGCCGAGCACGGCCCCGGTCGCCCCCCGACGGAAGGTGCGCCGCCCCGTCCCGTGGGGACGCATCGGCGGCTGGATCTGCCTCGTGGTGATCCTGCTGATCACGATCTTCCCGTTCTACTGGATGCTGCGCACCGCGCTGTCGGACAACCGGGCGCTCGCCCTGGAGGCCGACAGCCTGCTGCCCGCCGAGTTCACCCTCGACGCCTTCCGCCGCGTCTTCGGTCTGACGACGCTCGAGGAGTCGCTCGCCCAGGGCGGTGCCGGTGGCCGGATCAACTTCTGGCTCTACCTGCGCAACTCGGTGATCGTCGCGGCGTCCATCACGCTCGGGCAGGTGCTCTTCTCGGCCATGGCCGCGTACGCGTTCGCACGGCTGCGGTGGCCCGGACGCAACGCCGTCTTCGCGCTGTTCCTGTCGGCGCTCATGGTGCCGGGCATCTTCACCGCGATCCCGAACTTCGTGCTCGTCAAGGAGCTCGGGCTGCTGAACACGTTCCCCGGTCTCATCCTGCCGACGTTCTTCATGACGCCGTTCGCGATCTTCTTCCTGCGCCAGTTCTTCCTGGGGATACCACGCGAGGTGGAGGAGGCGGCGCTCATCGACGGCGCGGGCAGGGCCCGGGTGTTCCTGCGGATCGTGCTGCCCATGACGGCGGCCCCGATCACCACGTTGGCCGTGCTGACGTACATCACGGCCTGGAACGAGTACTTCTGGCCGCTGCTCGTGGGCCAGAGCGACGACGTGCGCGTCCTGACGGTCGCGCTGGGCATCTTCCGTTCGCAGACGCCGCAGGGCAGCCCGGACTGGTCGGGGCTGATGGCGGCGACGCTGGTCGCCGCGCTGCCGATCGTCCTGCTCTTCGTGGCGCTCGGTCGTCGCATCGTCAGCTCCATCGGCTTCTCCGGGATCAAGTGA	MSTTTTTPSTATGPSTAPVAPRRKVRRPVPWGRIGGWICLVVILLITIFPFYWMLRTALSDNRALALEADSLLPAEFTLDAFRRVFGLTTLEESLAQGGAGGRINFWLYLRNSVIVAASITLGQVLFSAMAAYAFARLRWPGRNAVFALFLSALMVPGIFTAIPNFVLVKELGLLNTFPGLILPTFFMTPFAIFFLRQFFLGIPREVEEAALIDGAGRARVFLRIVLPMTAAPITTLAVLTYITAWNEYFWPLLVGQSDDVRVLTVALGIFRSQTPQGSPDWSGLMAATLVAALPIVLLFVALGRRIVSSIGFSGIK	PGPT0016540_1047	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_00765	942	melD_2	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGGCAGTCGTGACACCGCCGGCCCCGCCGGCACCCGGAGCCCGCGCACCGCAACGGCTGCGCCCCTCCGGCCGACCGCGCGGGGACCTGCGCGCGGCGATGGTCTTCCTCATCCCGGCGACGGTCGGGTTCGTGGTGTTCTACCTCGTCCCCGCCGTCCGCGGGGCCTGGTTCAGCCTCACGGACTACTCGGTGCTGGCACCACCGCAGTTCGTCGGACTCGACAACTACCGGCGCCTGGTCGACGACCCGCTCTTCTGGAACGCGATGGGCGTGACCGGCTACTACGTCGTCATCAACATCGTCGTGCAGACGGTCGTCGCCGTCGGCCTCGCGGTGCTGCTGCAGCGGATGACCCGCTCGATCCTCGTGCGGGGTGCGGCGCTGCTGCCGTACTTCGTGGCGAACGTCGTCGTCGCGCTCGTCTGGTTCTTCATGCTCGACTACCAGATCGGCATCGTGAACGTCCTGCTGGGCAAGGTCGGGATCGACCCCCAGGCGTTCTTCGGCGACCCCGCTCTCGCGCTGCCGACGATCGCGCTGATCAACGTCTGGCGGCACATGGGCTACACGGCCCTGCTGGTCTTCGCGGGTCTGCAGACCATCCCGCCGCAGGTCTACGAGGCGGCGTCGCTGGACGGGGCCTCGGCGTGGCGCCAGTTCCGCTCGATCACGCTGCCGCTGCTGCGGCCGGTGCTCGCGCTGGTGCTCGTCGTGACCGTCACCGGGTCGTTCCAGATCTTCGACACCGTGGCCGTGACCACCGGCGGCGGCCCGGTCGACGCCACCCGCGTCATCTACCTCTACATCTACGACCTGGCGTTCGCCCAGCTCGACTTCGGCTACGCGTCCGCGCTGTCCGTCGTCCTGTTCGCCGTCCTGCTGATCGTCGCGCTCGTGCAGCTCCGGCTGCTGCGGGCGGGCGAGTCGGACAACTCCTAG	MAVVTPPAPPAPGARAPQRLRPSGRPRGDLRAAMVFLIPATVGFVVFYLVPAVRGAWFSLTDYSVLAPPQFVGLDNYRRLVDDPLFWNAMGVTGYYVVINIVVQTVVAVGLAVLLQRMTRSILVRGAALLPYFVANVVVALVWFFMLDYQIGIVNVLLGKVGIDPQAFFGDPALALPTIALINVWRHMGYTALLVFAGLQTIPPQVYEAASLDGASAWRQFRSITLPLLRPVLALVLVVTVTGSFQIFDTVAVTTGGGPVDATRVIYLYIYDLAFAQLDFGYASALSVVLFAVLLIVALVQLRLLRAGESDNS	PGPT0016535_4294	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_00766	2226	rafA_1		Alpha-galactosidase	ATGACGATGCAGACAGACCTGGCTGACACCGCTGACACCGCTGAGACGGCGGCCGCCACCATCCCGGGCCCGACCGACGGGCTGTGGCACCTGCGGGCCGCCGGGGTCAGCCTGGTCCTCGAGGTCGCCCGCAGCGCTCTCCCGCAGATCCTGCACTGGGGCGCCGACCTGGGGGACCTGCCCGCGGACGAGCTGGACGCCCTGCGCGCGGCGGCCGTGCCGCCGGTGGCCTCCGGCACCCCCGACGCCCCCGTGCCCCTGACGATCCTGCCCGAGCAGTCCGCGGGCTGGCTCGGCACCCCGGGCGTCACCGGCCACCGGGACGGCGCCGACTTCTCCACGCGGTTCGTCGTGGAGCAGGTGCGGCTCGCGCACGACGTCGAGCGCGACGGCGCACCCGTGGCGCACCGGATGACCGTCGACGCCCGCGACGCCGAGGCCGACCTGGCCCTGCGGATCGAGATCGAGATGCTTCCCGGCGGGCTCGTGCGTGCGCGCGGGCGGCTGCGGAACACCGGCGCCGCGGTCTTCACCGTGGGCTCCCTCGACCTCGCGCTGCCCCTGCCGCGGGAGGCCGACGAGATCCTCGACTTCACCGGCCGCCACCTGCGTGAGCGCAGCCCGCAGCGGCACGACTTCGTGGCCGGGACCCACCTGCGCGAGTCCCGGCGCGCACGCTCCCACGACGGCACCCTGCTGATGACCGCCGGACGCCGCGGGTTCGGCTACCGCTCCGGCGAGGTCTGGGGCGTGCACGTCGCCTGGTCGGGCAACACCCGGACCTTCGCCGAGCAGGGCATGCCCACCGGCGAGCGGCTGCTCGGCGCCGGCGAGCTGCTCCTGGCGGGCGAGGTGCGGCTGTCCGCCGGCGAGGCGTACGAGAGCCCGTGGGTCTACGCCTCCTACGGCGACGGTCTCGACGAGCTCTCCCACCGGTTCCACACCTACCTGCGTTCCCGGCCGCAGCATCCCGGCACCCCGCGCAAGGCGCTCGTGAACGTCTGGGAGGCCGTGTACTTCGACCACGACCTCGACCGGCTCACCGCGCTCGCCGACGCCGCGGCCGCCGCCGGCGTCGAGCGGTACGTGCTCGACGACGGCTGGTTCCGCGGGCGCCGCGACGACACCGCCGGTCTCGGCGACTGGACCGTCGACGACGACGTGTGGCCCGAGGGGCTGCACCCGCTCGCCGACCACGTCACCGGGCTGGGCATGGAGCTGGGCCTCTGGTTCGAGCCGGAGATGGTCAACCCCGACTCCGACCTCGCCCGCGCGCACCCCGAGTGGATCCTGCAGACCGGGAACCGGATGCCGCCGGAGGCGCGCCACCAGCAGGTCCTCGACCTCGCCCACATCGGCGCCTGGGAGCACGTCTACGGCCAGATCGACGCGATCCTCGCCGAGTACCCGATCGGCTTCGTCAAGTGGGACCACAACCGCGACCTGGTCGAGGCCGGTCACACCGCGACCGGCGGGGCCGGTGTCCACGCCCAGACGCACGCCGCGTACCGGCTGCTGGACGCGCTGCGCGCCGCCCACCCGCACGTCGAGTTCGAGTCCTGCGCGGGCGGGGGCGGCCGGGCGGACCTGGGCATCCTCGAGCGCACCGAGCGGATCTGGACCTCCGACTGCATCGACGCGCTCGAACGGCAGACGATCGAGGCCGGTACCGGTCTGCTCGTCCCGCCCGAGATGCTCGGCTCGCACATCGGGTCGCCGACGTCGCACACCACCGGGCGCCGGCACGAGCTGAGCTTCCGCGGGGCCACCGCGTTCTTCGGCCACCTCGGCATCGAGTGGGACCTCACCGCCGCCTCCGAGGCCGAGCGGAGCGAGGTCGCCCGCTGGGTGGCGGCCTACCGGGAGCACCGTGACCTGCTGCACCACGGTCGGAGCGTCCGCACCGACGACCCCGATCCCGCCCTGCGGGTGCACGGCGTCGTCCGCGAGAGCTCCGGCGAGGCGATCTTCGCCGTCGTGCAGCTGACGACCGGCGTGTGGGCCCCACCGGGCCGCGTCCGCCTGCCGGGGCTGGACCCGGACACCACCTACCACGTCCGGCCCCTGGCTCCGGGCGACGAGGTCGAGCCCGGGCACGGCGAGGCGTTGCCTCCGTGGTGGTCCGAGGGCGTGCGGCTCAGCGGGCGGACGCTCGCCGGTGCCGGGGTCCAGCTGCCCCACCAGTTCCCCGAACGGAGCGTCCTGCTCCACGTGACCGCGGTCTGA	MTMQTDLADTADTAETAAATIPGPTDGLWHLRAAGVSLVLEVARSALPQILHWGADLGDLPADELDALRAAAVPPVASGTPDAPVPLTILPEQSAGWLGTPGVTGHRDGADFSTRFVVEQVRLAHDVERDGAPVAHRMTVDARDAEADLALRIEIEMLPGGLVRARGRLRNTGAAVFTVGSLDLALPLPREADEILDFTGRHLRERSPQRHDFVAGTHLRESRRARSHDGTLLMTAGRRGFGYRSGEVWGVHVAWSGNTRTFAEQGMPTGERLLGAGELLLAGEVRLSAGEAYESPWVYASYGDGLDELSHRFHTYLRSRPQHPGTPRKALVNVWEAVYFDHDLDRLTALADAAAAAGVERYVLDDGWFRGRRDDTAGLGDWTVDDDVWPEGLHPLADHVTGLGMELGLWFEPEMVNPDSDLARAHPEWILQTGNRMPPEARHQQVLDLAHIGAWEHVYGQIDAILAEYPIGFVKWDHNRDLVEAGHTATGGAGVHAQTHAAYRLLDALRAAHPHVEFESCAGGGGRADLGILERTERIWTSDCIDALERQTIEAGTGLLVPPEMLGSHIGSPTSHTTGRRHELSFRGATAFFGHLGIEWDLTAASEAERSEVARWVAAYREHRDLLHHGRSVRTDDPDPALRVHGVVRESSGEAIFAVVQLTTGVWAPPGRVRLPGLDPDTTYHVRPLAPGDEVEPGHGEALPPWWSEGVRLSGRTLAGAGVQLPHQFPERSVLLHVTAV	PGPT0018835_894	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407	NA	NA
AK001_00767	1143	mlc_1	COG1940	Protein mlc	ATGACGCCAGCACCGTGGGGACCGCTCAGCGGACCGGGCCACGCCGTCGCGCTCGACGTGCTGCTCGACGGCCCCCTGTCGCGGGCCGAGCTCTCCCGTCGGCTCGACCTCTCCGCCGGGAGCCTCACCCGCCTGACCAAGCCGCTGCTCGACGCCGGTCTCCTGGTGGAGGTCGACGACTCCCCCGCCGGATCGCGGGTCGGCCGACCGTCGCGGCCGCTGGACATCGTCCCCGAGGCGCACCACTTCGTCGGGGTCAAGATCACCGGGGACACCGCCCACGGGGTGCTGACGACGCTGCGCGCCGGCGTGGTGGCCTCCGCCGACGCACCGTTGGACGACCACTCGCCCTTCGCCGTCGCGGACACGGTAGCGGGGCTGATCAGCGACCTGGCCGCCGGGGCGCCGGCCGACGTCACCGCGGTCGGCGTCGCGCTCGGCGGACACGTCGTCGAGGCCTCGGACGTCGTCCGGGCCCCCTTCCTCGGCTGGAACGACGTCCCGCTGGGCGACATGCTGCGCTCGCGCACGGGCCTGCCCGTGGTCGTCTCGAACGACGTCACGGCGCTCACCGAGGCGACGCACTGGTTCGGCGCCGGGCACGGCGCCGCCACGTTCGCGCTGATCACCGTCGGGGCCGGGGTCGGCTTCGGACTCGTGGCGCACGGGCGGCTCGTGACGAACGAGGACGCGAGCCTGGGGCTCGCCAGCCACCACCCGCTCGACCCGTCGGGTCCCCCGTGCTTCGCCGGGCACCGCGGGTGCGCGGTGGCCATGCTGACGATCCGGTCGATCGCCACGCAGGTCTCGGTCGCCCTCGGTCGGGAGGTCGCCTACGACGAGGCGCTCGACCTCGCCGGGGCCGGCGACCCCGCCGCCCGCCGCGTCGTGGACGACGCCGGACGGGCGCTCGGCCGCTTCGTCGCCGCCGCCGCCAACTTCACGATGCCCGAGCGGGTGGTGCTGGGTGGCGAGGGGGTCCGGCTCGCCGACGTCGCGCGGGAGGCGATGCAGGCGGGCCTGCGCGCGGACCGGGACCCGCTCGCGCACGACCCCGTGATCGCGACGCTCAGCCCCTCGTTCACCGAGTGGGCGCGCGGGGCCGCGGTCATCGCGATCCAGACCTTCGTCCTGGGGACCTGA	MTPAPWGPLSGPGHAVALDVLLDGPLSRAELSRRLDLSAGSLTRLTKPLLDAGLLVEVDDSPAGSRVGRPSRPLDIVPEAHHFVGVKITGDTAHGVLTTLRAGVVASADAPLDDHSPFAVADTVAGLISDLAAGAPADVTAVGVALGGHVVEASDVVRAPFLGWNDVPLGDMLRSRTGLPVVVSNDVTALTEATHWFGAGHGAATFALITVGAGVGFGLVAHGRLVTNEDASLGLASHHPLDPSGPPCFAGHRGCAVAMLTIRSIATQVSVALGREVAYDEALDLAGAGDPAARRVVDDAGRALGRFVAAAANFTMPERVVLGGEGVRLADVAREAMQAGLRADRDPLAHDPVIATLSPSFTEWARGAAVIAIQTFVLGT				NA	NA	NA	NA	NA
AK001_00768	780	kdgR		Pectin degradation repressor protein KdgR	GTGGCGGAGTCGAGGCAGCCCGGGAACGTGCAGTCCGTGGCGAGGGCCTTCGGGCTGCTCGAGGTGCTCGGTGAGCGCGGAGGGCAAGCAGGGCTGAGCGAGCTCGCCGAGGCGACGGGCCTCGCGATGCCGACGATGCACCGGCTCCTGCGCACGCTGGTCCAGCTCGGCTACGTGCGCCAGCTGCCGTCCCGCCGGTACTCGTTGGGGCCCGGGCTCATCCGTCTCGGCGACCGGGCGACCCGCCTCCTCGGGACGTGGGCACGGCCGGCGCTCGTCGAGCTCGAGGAGGCCACGCGGGAGACCACCAACCTGGCGCTGCTCGACGGGGACAGGGCGGTCTACGTGGCACAGGTGCCGTCCCACCACCAGGTCCGCATGTTCACCGAGGTCGGACGTCGGGTCTTCGCGCACTCGACCGGCGTCGGCAAGGCCATGCTGGCCCAGCTCGACGACGAGGACGTGGTCGCCCTCCTCCGGCGGGCCGGCATGCCGCGGTACACGGACAACACCCACACGACGGAGGCCGGGCTCCTGGCCGACCTGGAGGAGATCCGCACCCGCGGGTACGCCGTCGACGAGGGGGAGCAGGAGGTCGGCGTGCGCTGCTACGCGGTCCCGGTGCCCGGTGCCCCCACGCCGACCGCGGTCTCCGTCTCCGGTCCGGACACCCGCGTCACGCTCTCCGCCGCGCGATGGATGCTGCCCGCGCTCGAGCGCGCGGCCGACGAGCTCGCCGACGCGCTGAGCTCCACCGAGCCGGACCTCGCGCCGCACTGA	MAESRQPGNVQSVARAFGLLEVLGERGGQAGLSELAEATGLAMPTMHRLLRTLVQLGYVRQLPSRRYSLGPGLIRLGDRATRLLGTWARPALVELEEATRETTNLALLDGDRAVYVAQVPSHHQVRMFTEVGRRVFAHSTGVGKAMLAQLDDEDVVALLRRAGMPRYTDNTHTTEAGLLADLEEIRTRGYAVDEGEQEVGVRCYAVPVPGAPTPTAVSVSGPDTRVTLSAARWMLPALERAADELADALSSTEPDLAPH				NA	NA	NA	NA	NA
AK001_00769	966	ghrA_2		Glyoxylate/hydroxypyruvate reductase A	ATGCGTAGGGCCGCCGAGCGGCGACTCGTCGTCTCCCAGGTCGCGCTGGACGACGAGGCCGTCCGACGTCTGCACGGGCTCGCGACGGACTTCGACGTCGTCGTCGAGCGAGCTCCCTCCGCGGAGCTCCTCGCGTCGGCCGAGGTGGTCGCCGGACGCATCGATCCCGAGCTGGTACCGGCCGCGTCGGCGTTGCGGTGGAACCACCTGTGGACGGCCGGGGCCGACGCCGACCTCTCCGCCGAGATGCGCACGGCCGAGCAGGTCGCGGTGACGTCGTCGGCGGGCAACGGTGCCGTGCCGCTCGCCGAGCACGCCCTGATGCTCATGCTCATGCTGGACCGGGACGCACCCCGGCTGCTGACCGCACAACGCAAGCGGAGCTGGGACCGGTTCCGGCACCCGGAGCTGGCGGGGCAGACGGTCGGCGTCGTCGGCATGGGTGCGGCCGGGCAGGACCTCGTCGGCAAGGCGCGGGCGTTCCACCTGCGGGTCGTGGGCCTGCGCAACCGCCCCGAGGTCGCCGTGCCCGGTGTGGAACGGATGTACGGCCCGGACGACATCCTCGCGTTCGCCGCCGAGTGCGACTACCTGGTCGTCGCCGCGCCGCTGACCCCGCAGACCCGGGGGATGATCGACGCCCGGGTGCTCGCGGCCATGCGGCCCACGGCCGCTCTCGTCAACGTCTCGCGCGGCGAGATCATCGACGACGACGCACTGCTGGCGGCCCTGACCGAGGGCCGGCTCTCCGGGGCCGGCCTGGACGCGCACACCGTCGAGCCCCTGCCGGCCGACTCGCCGTGGTGGACGGCACCGGGGGTCATCGTCACCCCGCACAACGGAGCGACCACGCCCCAGACGCTCGACCGCGCCGTCGCGATCTTCCTGGAGAACGTCGAGCGCTACGTGGACGGCAGACCGCTGCGCAACCTGGTCGACAAGTCGTCGGGGTACGCGCTGGTGTGA	MRRAAERRLVVSQVALDDEAVRRLHGLATDFDVVVERAPSAELLASAEVVAGRIDPELVPAASALRWNHLWTAGADADLSAEMRTAEQVAVTSSAGNGAVPLAEHALMLMLMLDRDAPRLLTAQRKRSWDRFRHPELAGQTVGVVGMGAAGQDLVGKARAFHLRVVGLRNRPEVAVPGVERMYGPDDILAFAAECDYLVVAAPLTPQTRGMIDARVLAAMRPTAALVNVSRGEIIDDDALLAALTEGRLSGAGLDAHTVEPLPADSPWWTAPGVIVTPHNGATTPQTLDRAVAIFLENVERYVDGRPLRNLVDKSSGYALV				NA	NA	NA	NA	NA
AK001_00770	909	garR	COG2084	2-hydroxy-3-oxopropionate reductase	ATGACCACCATCGGATTCATCGGACTCGGAGTGATGGGCGCTCCCATGGCGGCGAACCTCGTGACCGCAGGGTTCGACGTCGTCGGCTACAACCGGTCGGAGCCCAAGCGTGCCGCGCTGGTCGAGGCGGGTGGCCGGGCAGCCGGGTCCGTCGCGGACGCGGTCCGCGGGGCGGACGTCGTCGTCACGATGCTCCCGGACAGCCCCGACGTCGAGACCGTGGTGCTGGGCGAGGACGGGGTGCTCGAGCACGCCGCGCCCGGGACCCTGCTCGTCGACGCCAGCACCATCCGGCCCGACGTGAGCCGGATGGTCGCCGAGCGTGCCCGCGAACGAGGGGTGCGACCGCTCGACGCGCCGGTCAGCGGTGGCGAGGCCGGCGCGGTCGAGGGGGTCCTGTCGATCATGGTCGGTGGCGAGGCGGCCGACTTCGACGCGGCGCAGCCCGTGCTGCGCGCCGTCGGCTCGACCATCGTGCACGTCGGACCCGACGGTGCCGGTCAGACCGTGAAGGCGGCCAACCAGCTCATCGTCGCGGGCAACATCGAGCTCCTCTCCGAGGCCCTCGTCTTCCTGTCGGCGCACGGTGTCGACCTCAAGGCTGCCGTCGACGTGCTCGGGGGCGGGCTGGCCGGCAGCACGGTGCTGCAGCGCAAGGCGCCGGGGATGCTGGACCGCACGTTCGCACCGGGGTTCCGGGTCGACCTGCACCACAAGGACCTCGGTATCGTCCTCGACGCGGCCCGGGCCGCCGGTGTCGCCGTCCCGCTGGGCGCGAGCGTCGCGGACCTCATGGCGTCCCTGCGTGCCCAGGGTGGCGGGTCGCTCGACCACTCGGCGCTCCTGCTGCAGGTCGAGCGGTTGTCCGGCCTCGCCGCGGACGAGCTGGGTGACGGCGCGGATGCGTAG	MTTIGFIGLGVMGAPMAANLVTAGFDVVGYNRSEPKRAALVEAGGRAAGSVADAVRGADVVVTMLPDSPDVETVVLGEDGVLEHAAPGTLLVDASTIRPDVSRMVAERARERGVRPLDAPVSGGEAGAVEGVLSIMVGGEAADFDAAQPVLRAVGSTIVHVGPDGAGQTVKAANQLIVAGNIELLSEALVFLSAHGVDLKAAVDVLGGGLAGSTVLQRKAPGMLDRTFAPGFRVDLHHKDLGIVLDAARAAGVAVPLGASVADLMASLRAQGGGSLDHSALLLQVERLSGLAADELGDGADA	PGPT0018170_90	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042	NA	NA
AK001_00771	837	hyi	COG3622	Hydroxypyruvate isomerase	ATGGACGACGAAGCCCAGGACGCGGGCGGGCGGACGCTCGCCGTGAACTGCTCCCTGCTGATGAAGGACCTCCCGGTCGCCGAGCGCCTGGAGCGCGTGCGGGACGCCGGCGCCACCGCCGTCGAGTTCTGGTGGCCCTTCCCCACGGCCGACCCGGACCCCGTCGAGGTCGACGCCTTCGCCACCGCGATCGAGACCTCCGGTCTGGACCTGGTCGGGCTCAACCTGTTCGCCGGCGACATGGCCGGTGGCGACCGGGGCGTGCTGTCGTGGCCGGGTCGGGAGGACGAGCTGCGCGCGAGCGCCGAGGTCGCCCGCACCCTGGGTCGGCGGCTCGGTGTCCGGCGCTTCAACACGCTCTACGGCAACCGCTCCGACGCCTTCGACCCCGCGGTGCAGGACGCGCACGCCGACCGGATGCTCCGCGAGATCGCCCCGGTGCTCGGGCAGGACGGCGGCATCGCCATGATCGAGCCGGTCAGCGGTGCCGAGGCCTACCCGGTCCGCACCGCCGCCGACGCCGCCGCCGTCGTGGCGCGGGCGCGCGGCTCCGCCGGCCCGACGAACGTCGGCATCCTGCTGGACCTCTACCACCTGGCGGTCAACGGCGACGACGTCGTCGCGGCGATCGAGCGGTACGGCGCCGACGCCGCGCACGTGCAGCTCGCGGACGCCCCCGGCCGCGGAGCGCCCGGGACCGGCGACCTGCCGCTGGCCGACTGGGTCCGGCGGCTGCGGGACGTCAGCTACGCCGGTCACGTCGCGCTGGAGTACGCCGACACCTCGCACGACCCGCTCTCCCTCGTGGACCTCGACGCATGGAAGGACCTGGCATGA	MDDEAQDAGGRTLAVNCSLLMKDLPVAERLERVRDAGATAVEFWWPFPTADPDPVEVDAFATAIETSGLDLVGLNLFAGDMAGGDRGVLSWPGREDELRASAEVARTLGRRLGVRRFNTLYGNRSDAFDPAVQDAHADRMLREIAPVLGQDGGIAMIEPVSGAEAYPVRTAADAAAVVARARGSAGPTNVGILLDLYHLAVNGDDVVAAIERYGADAAHVQLADAPGRGAPGTGDLPLADWVRRLRDVSYAGHVALEYADTSHDPLSLVDLDAWKDLA				NA	NA	NA	NA	NA
AK001_00772	429			hypothetical protein	ATGTCCACGCACACCCTCAGACCCGCCATCACCTACGCGACCGCCGCACGCGCCGTCGAGATCGCCCTCGAGGTCGCGGAGCGCTCCGGCGTGCGCGCGGTCGTCACCGTCGTCGACCCCGCCATGACGCCGGTCGCGTTCGCCCGCGCCGACGGCGCCACTCCCCACAGCCTCGAGACGAGCCGACGCAAGGCGGCGACCGCCGCCTCCACCGGCCGGCCGACCGCGCAGATGTCCCCGGAGCTCGCCGTGGCGCTGGAGCACGGCAGCGGAGGGTTGCTCACCCGGATCAAGGGGGGCGTCCCGCTGGTGTTCGAGGGCCTGCACGTCGGCGGTCTCGGCGTCGCCGGGGGGCACCCGGACCAGGACGCCGAGATCGCGGCCGAGGTGCTGGCCCGCCTCGGCGCCGACCCGGAGGCCGCCCGATGA	MSTHTLRPAITYATAARAVEIALEVAERSGVRAVVTVVDPAMTPVAFARADGATPHSLETSRRKAATAASTGRPTAQMSPELAVALEHGSGGLLTRIKGGVPLVFEGLHVGGLGVAGGHPDQDAEIAAEVLARLGADPEAAR				NA	NA	NA	NA	NA
AK001_00773	2196	glcB	COG2225	Malate synthase G	ATGAGCGGGCAGCGGGCGACGCGCGCCGGGCTGGACGTGGCGGCCGAGATCGTCGCGTTCGTCGAGGAGTCCGCGCTGCCCGGGACCGGGCTCGACCCGGCCCGGTTCTGGCAGGACCTCGCCGTCCTCTTCCACGACCTCGGCCCCGCCAACCGCGCGCTGCTGGCCACACGAGAGCGCCTGCAGGCACAGATCGACCGGTTCCACGCCGATCACCCCGGAGCCCCCGAGCCGGCCGCGTACCGCGCGTTCCTGGAGCAGATCGGCTACCTGGAGCCCGACCCCGGGGAGGTCGCGGTCACGACCGAGCACGTGGACCCCGAGATCGCCACGACGGCCGGACCCCAGCTCGTCGTCCCGGCGCTCAACGCCCGGTTCGCCGTCAACGCCGCGAACGCCCGGTGGGGTTCGCTCTACGACGCCCTCTACGGGACCGACGCCATCCCCGACGAGGGGCCGGAGGCCAGGACGTCGGGCTACAACCCCCGTCGCGGCGCCGCGGCGGTGCGGCGAGGGCGCGAGCTGCTCGACACGGTCGCCCCGCTCGCGCACGGCTCGCACGCCGACGCCGTCGGCTACCGCGTCGAGGGCGAGTCGCTGGTGGTGGTCACCGGCGACGGCCCCACGGCGCCGGTCGACCCCGGTGTGCTCGTCGGCTACCGGGGGAACCGTCGGGACCCGGCCTCGGTGCTGCTGCGCCACCACGGCCTGCACGTGGAGATCGTCCTCGACCGGACCCGTCCGGTCGGGCGGGACGACCCCGCGGGGGTGGCCGACGTCCTCGTCGAGGCGGCGCTGACCACGATCGTCGACCTCGAGGACTCGGTCGCCGCGGTCGACGGGGCCGACAAGGCGCTCGGCTACCGCAACTGGTGGGAGCTCATGCGCGGGTCGCTCGGCGCCGACGTCGCCAAGGACGGGACCACGTTCCGCCGCACCCTGCGCGAGGACCGCCTCTTCACCGCACCCGACGGCGGCACGCTCCGGCTGCCCGGCCGGTCGCTGCTGCTCGTGCGCAACGTCGGGCACCTCATGACCACCGACGCCGTCCGCGACGGCGCCGGGCACGAGGTGCCCGAGGGCATCCTCGACGCCGCGATGACGGCGCTCGGCGCGCTCGCCGACCTGCAGGGCCCCACGGCCGGCGGGAACTCGCGCACCGGCTCCGTGTACATCGTCAAGCCCAAGATGCACGGCCCCGCGGAGGTGGCCTTCACCGTCGACCTCTTCGGCCGCGTCGAGACGATGCTCGGGCTCCGGCCGAACACCCTCAAGATCGGCATCATGGACGAGGAGCGCCGCACCTCGGTCAACCTGCGTGCGTGCCTGCACGCCGCCCGCGAGCGCGTGGCGTTCGTCAACACCGGTTTCCTGGACCGCACCGGGGACGAGATCCACACCTCGCTGCACGCCGGTCCCGTGGTCCCCAAGCGCACGATGCGGGACCAGCCGTGGCTGGCCGCCTACGAGCGGTCGAACGTCGACGCCGGGATCACCAGCGGCCTGCTCGGCCACGGCCAGATCGGCAAGGGCATGTGGGCGATGCCCGACCTCATGCACGCGATGCTCGAGCAGAAGGGCGCGCAGGTGCGGGCCGGGGCGACGACCGCCTGGGTCCCCTCGCCGACGGCGGCGACGCTGCACGCGCTGCACTACCACGAGGTCGACGCCTTCGCGGTCGGCGCGGAGCTCGGCCGCCGTCCCGGCGCGCCGCTCGACGACCTTCTCGTCACGCCGCTGGCGGACGGCGAGATCCCGGCCGACGTCGTGCGCACCGAGCTCGACACGAACGTCCAGTCGATCCTCGGCTACGTCGTGCGCTGGGTCGACCAGGGCGTCGGGTGCTCGAAGGTGCCCGACCTCGACGGGGTCGCCCTCATGGAGGACCGCGCGACGCTGCGCATCTCCAGCCAGTTGCTCGCCAACTGGCTGACCCACGGTGTCGTCGGCGTCGACGACGTCGACGAGAGCCTGCACCGCCTGGCCGGGGTGGTCGACGAGCAGAACGCCCACGACCCCGCGTACGAACCCCTCGTCGGACCCGCGGGGCCCGGCACGGCCTTCCGGACGGCGCGGGCACTCGTCCTCGAGGGCGCCGAGCAGCCCAACGGGTACACGGAGCCCCTGCTCCACCGGATGCGTCGCGAGAAGAAGGCGCAGCAGACCATGGCGACGACAGGAGCGGACGCACGATGA	MSGQRATRAGLDVAAEIVAFVEESALPGTGLDPARFWQDLAVLFHDLGPANRALLATRERLQAQIDRFHADHPGAPEPAAYRAFLEQIGYLEPDPGEVAVTTEHVDPEIATTAGPQLVVPALNARFAVNAANARWGSLYDALYGTDAIPDEGPEARTSGYNPRRGAAAVRRGRELLDTVAPLAHGSHADAVGYRVEGESLVVVTGDGPTAPVDPGVLVGYRGNRRDPASVLLRHHGLHVEIVLDRTRPVGRDDPAGVADVLVEAALTTIVDLEDSVAAVDGADKALGYRNWWELMRGSLGADVAKDGTTFRRTLREDRLFTAPDGGTLRLPGRSLLLVRNVGHLMTTDAVRDGAGHEVPEGILDAAMTALGALADLQGPTAGGNSRTGSVYIVKPKMHGPAEVAFTVDLFGRVETMLGLRPNTLKIGIMDEERRTSVNLRACLHAARERVAFVNTGFLDRTGDEIHTSLHAGPVVPKRTMRDQPWLAAYERSNVDAGITSGLLGHGQIGKGMWAMPDLMHAMLEQKGAQVRAGATTAWVPSPTAATLHALHYHEVDAFAVGAELGRRPGAPLDDLLVTPLADGEIPADVVRTELDTNVQSILGYVVRWVDQGVGCSKVPDLDGVALMEDRATLRISSQLLANWLTHGVVGVDDVDESLHRLAGVVDEQNAHDPAYEPLVGPAGPGTAFRTARALVLEGAEQPNGYTEPLLHRMRREKKAQQTMATTGADAR	PGPT0001445_172	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638	NA	NA
AK001_00774	2202			hypothetical protein	ATGACGACGACCACGCACGCGACGACGCGAGGAACCCGTCTCGACGGGATCACGCGCATCGGTCAGGTCAACCTGACCGAGGACGACGTCCGGCTCCTGGACGTCGACTACTGGGCCGACCTGTGGGCACGCATGCGGCTCGAGGCCGTCCTGCTCAACTGCGGCGGCATCATGGCCTACCACCCGACACGCCTGGCCGGACACCCCGTCGCGCAGGGCGTCCCGGGACGTGACCTGTTCGGCGAGCTGGTCGACGCGGCCCGCGGCCAGGGCGTCGAGGTGATCGGGCGGCTCGACGTCGGTGTCGTGGACCAGCGCTTCCGGGACCTGCACCCGGAGTGGATGATGACCGACGCCGAGGGCCGCTCGCGGACGCTCAACGACGTCACCGGTGGCACCTGGGGCAAGCCCGGCGGCCACCGGCTGGAGAACGAGATGTACTACTCGTGCATCAACTCCGGGCTGTTCACCGAGTACCTGCCGGACCTCCTGAGCGAGGTGGTCGACGGGTACGACGTCGCCGGATTCTTCACGAACGGCTTCCCCACCGTGGCGCTCGCACCCCCGTCCCTGCGCATGGCGTGCTACTGCGACCGCTGCCTCGCCCGGTGGCGCACGTTCAGCGGGTCCGTCGACTACCCGGTCGCCGACGACCCGTCCGACCCGACGTTCCGGCAGTACGTCCGCTTCCTGCGCACGACGGCGCTGGAGCGGATGCGCGACCTGGTGGCGTTCACCCGCCGCCTCGGTCCGGGGCTGTCGTTCAACACCTCCGCGGTGCCGAACCTCGGCGGCGGGCTGCCGTGGAACGAGTGGGCCCGTGAGCTCACGCTCGTCATGTGCGACAACCAGGACCGGTCCGGGGACTACGGACGTACCACCCCCTCGCACGGGCTCTGGGAGGTCGGGCTGAGCTCGGAGGTGGTGCGCTCCGTCGCCGCCGGGCGACCCGCCGGTCGCATCCAGTCGACCGCCCGCCTGCGCGGCGGCGGCCGGCACACCTCGAAGGAGCCGGCCGAGCTGCGGCTGCAGATGGCCGAGGCCCTGGCCCACGGCGAGCTGCCGGTGTGGCACGCCGTCTCCGGCAAGCAGCACAACCGGCGCTGGGTCGACGGCGTGGTGGAGTTCGACGCCTGGCTCGCCGAGAACGCGGAGGTCCTGACGGACCGCCGGTCCGTGGCCGACGTCGGGATCGTCTGGTCCCAGGAGAGCGCCTGGCTGCAGGCGTGGGGCGCGGCGACGCCGGGGCCCGCCGTCGGCGACGCCGTCGCCGGGTGGCACCTCCTGCTGTCCCGCTGCCGCATCCCGAACCAGCTCGTCCTGGCCGACGGCACCGAGTCGCTCGACGGCCTCTCCGCGCTGGTCCTGCCCAGCGGCCTGGCCCTGAGCACGGAGGCCGTGTCCCGCGTCGAGCGGTTCGTGGCGGAGGGGGGCCACCTTCTCGTCGTGGGCACCGCGGGCCTGGTCGACGCCTGGGGCGCGCCGCACCCGGGCGACCCCGTCGGCGCACTCGTGGGCATCCGGCGGACGGCGCCCCCGCCGGACGGGTTCGACCTCGTGTCCTACCTGCACGTGGGCGACGAGCCGTTCGTCCGCCGGATGCTCCCCGAGCTCGCCCCGGACGAGGTCGTCGCCGGCGGGAACTGGCTCGTGGGGTTCGACCGGGTCGACGACACGGTGTCCACGGCGATGGAGTGGAACCGTTCGGAGCACATGATCCCGACCCATGCCGCCGGCCTGCCGCCGGCCGGCGGGCAGCAGGCCCTGGCCTGGCACGAGGACGGCGGTCGACGGGCGTTCCTCGGGGCCGACCTCGACGCCCGGTTCTTCGTGGACCGCGCGACCGAGCACCGGGCGGTCCTCGGCGGCCTCGCCTCCTGGGCGCTCGGGGCCGAGGGACCGACGGTGACGGTCGCGGGCGACGGCGTCGTGGACGTCCGGAGCTGGCGCACCGCCCACGGTCTGGCCGTGGCCCTGGTGAACCTCGACAACCCCGGCGCGCAGGACGAGGCGGTCGAGCGCTTCCGCCCGGTCGGACCCCTGACCGTCCGGGTCCGCGGCGTCGACCCGCGGGCGACGGTCCGCCTCACCCGGGCGGCCGCCGACGTCGCCCCGACGACCACCGACCACCACCTCGAGTTCGTCGTCGACCGGGTGGTCGACTTCGAGCTCGCCCTCCTCTCCACGGAAGGAACGGCATGA	MTTTTHATTRGTRLDGITRIGQVNLTEDDVRLLDVDYWADLWARMRLEAVLLNCGGIMAYHPTRLAGHPVAQGVPGRDLFGELVDAARGQGVEVIGRLDVGVVDQRFRDLHPEWMMTDAEGRSRTLNDVTGGTWGKPGGHRLENEMYYSCINSGLFTEYLPDLLSEVVDGYDVAGFFTNGFPTVALAPPSLRMACYCDRCLARWRTFSGSVDYPVADDPSDPTFRQYVRFLRTTALERMRDLVAFTRRLGPGLSFNTSAVPNLGGGLPWNEWARELTLVMCDNQDRSGDYGRTTPSHGLWEVGLSSEVVRSVAAGRPAGRIQSTARLRGGGRHTSKEPAELRLQMAEALAHGELPVWHAVSGKQHNRRWVDGVVEFDAWLAENAEVLTDRRSVADVGIVWSQESAWLQAWGAATPGPAVGDAVAGWHLLLSRCRIPNQLVLADGTESLDGLSALVLPSGLALSTEAVSRVERFVAEGGHLLVVGTAGLVDAWGAPHPGDPVGALVGIRRTAPPPDGFDLVSYLHVGDEPFVRRMLPELAPDEVVAGGNWLVGFDRVDDTVSTAMEWNRSEHMIPTHAAGLPPAGGQQALAWHEDGGRRAFLGADLDARFFVDRATEHRAVLGGLASWALGAEGPTVTVAGDGVVDVRSWRTAHGLAVALVNLDNPGAQDEAVERFRPVGPLTVRVRGVDPRATVRLTRAAADVAPTTTDHHLEFVVDRVVDFELALLSTEGTA				NA	NA	NA	NA	NA
AK001_00775	765	catD_1	COG0596	3-oxoadipate enol-lactonase 2	ATGACCGACGTGCGATGGACCACCAGCGAGGAGCCCCGCCCCGGGCGCGAGACGGTGCTGCTGAGCAACCCGCTCGGCGCCCCGCTGGAGCTGTGGGACGACGTGACCGACGCGCTGGCCCCGTCCTTCCGGGTCCTGCGCTACGACTCCCCGGGGCACGGGGGGAGCCCGCTGCGCGACGAGATCACGATCGAGACGCTCACCGACGTCGCCCTCGAGGTGCTGGACGCCGCCGAGGTCGAGCGTGCCCACGTGGTCGGCCTCTCGCTCGGCGCGATGGTGGGGCTCTCCCTGGCAGCGCGCGCCCCGGGGCGGACGGCCTCCCTCGCGGTGCTGTGCAGCAGCGCGTACTTCCCCGACAAGCAGGTCTGGCAGGACCGGGCCGCGACCGCACGAGCCGAGGGGCTGGACGGACTGGCCGGGGGCTCCCTCGCCCGGTGGTTCACCCCCGGCTGGGCCGCGGAGCACCCGGACGCGATCGAGGCGGCTCGGGCGATGTTCGTCGGGACCGACCCCGAGGGGTACGCCCGCACGGCCGAGGCGGTCGGGGCGCTCGACCTGCGCCCGTCCCTGCCCGAGGTCGCGGCCGAGACGCTCGTGGTGGCGGGCGACGCGGACCCGTCGACACCTCCGGCGATGCTGCGTGCGATCGCGGACGCCGTGCCGCACGCGCGGTACGAGGAGCTGGCGGGAGCGCACTGGCTCCCGGTCGAGAGGCCCGACGCCGTCGTGGAGCGGTTGGTGCCGTTCCTCACACGAGGGTAA	MTDVRWTTSEEPRPGRETVLLSNPLGAPLELWDDVTDALAPSFRVLRYDSPGHGGSPLRDEITIETLTDVALEVLDAAEVERAHVVGLSLGAMVGLSLAARAPGRTASLAVLCSSAYFPDKQVWQDRAATARAEGLDGLAGGSLARWFTPGWAAEHPDAIEAARAMFVGTDPEGYARTAEAVGALDLRPSLPEVAAETLVVAGDADPSTPPAMLRAIADAVPHARYEELAGAHWLPVERPDAVVERLVPFLTRG	PGPT0004995_745	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055	NA	NA
AK001_00776	669			hypothetical protein	GTGAGCGCTCCGACCTCCCCGATCCCCGTGTCCACCACGACGCTGAGCGACGCCGTCTTCGACTCCCTGCGCCAGCGCATCGCCACCGGGGAGATCGCCCCGGGGGAACGCGTGACCGAGGCGCGCGTCGTCGGGGAGTACGAGATCGCCCGGCCGACGGCGAAGGCGTGCATCGAGCGCCTGGTCGGCGTCGGCCTCCTGCAGCGCGCCACCTACAAGTCGGCGACCGTCACCGAGCTCACGGCCGACGACGTCGACGACCTCTTCCTCGCGCGCACGACCATCGAGGTCACGGCGGCGCGGCTCCTCGCCGACGTCGGCGAGGTGCCGCGCGCCATGCTCGAGGCGCAGCGAGCGCTCGACATCGCCGGCGAGTTCGACGACCGGCCCGGGCTCGTGCGCGCCGACATCGACTTCCACTCCTCCATGGTCCGGGCCAGCGGGAGCAAGCGCCTCGCCCGGATGTACGAGATGGTGACCGGCGAGATCCTGCTGACGATCGGCAGCGCCGGGCACCGGCGCGCGTCGATCGCCGACGTGGCGGCCGAGCACTCCGGCGTCCTGGACGCCCTGCGCTCCCGGGATGCCGACACCGCGGTGCGCCGCCTGACCGACCACCTCGACTCCGCTCACCTGCGCGTGCGCCGCGCCTTCGAGCCGACCTCCTAG	MSAPTSPIPVSTTTLSDAVFDSLRQRIATGEIAPGERVTEARVVGEYEIARPTAKACIERLVGVGLLQRATYKSATVTELTADDVDDLFLARTTIEVTAARLLADVGEVPRAMLEAQRALDIAGEFDDRPGLVRADIDFHSSMVRASGSKRLARMYEMVTGEILLTIGSAGHRRASIADVAAEHSGVLDALRSRDADTAVRRLTDHLDSAHLRVRRAFEPTS				NA	NA	NA	NA	NA
AK001_00777	786	catD_2	COG0596	3-oxoadipate enol-lactonase 2	TTGGCTGAGCTCACCCGCAACCTGCACCGGGCCTTCTACCCGTCCCGGCTGCCGGGCGACCGGGAGCCGCTGCTGCTGCTCAACTCGCTCGCGACCACCACCGAGATCTGGGCACCGATGATGTCGCGGCTGACCGCGTCGACGAGCGTGCTGTGCGTCGACTACCCCGGGCACGGCCTGTCCCCGGCCCGGGAGATGCCGGCCGATCTCGACGACCTTGCGGCCTCCATGCTGGAGGTGCTGGACGAGTTCGGGATCGAGCGCGTCCACGTCGCGGGCGTGTCGATCGGGGGGATGGCGGCGCTGCGCCTCGCCGAGCTCGCCCCGGACCGCATCGCCTCGATCACCGTGATCGGATCGACGCCGGTGATGGACCGCAGGATGTGGCAGGCCCGCAAGGAGCTGGTCCAGCAGTGGGGGACCCGGGGGATCGTCGCCGACGTGCTCGAGCGGTGGTTCACCTCGACCTACGCGACGGCGTACCCGGACGTCGTGGCGCAGTACACGACCATGCTCGAGGGCACGGCGGACAGCGCCTACGCGGCCTTCTGCGACGTCCTGGGCCCGGCCGACCTGCGCAGCGTGCTGTCCGCGATCTCCTGCCCGACGCTGGTGGTCTCCGGGTCCCACGACGCCGCCGCGACCGTCGAGGACGGCCGCACGATCGTGGACGCCGTCCCGCACGCCCGGCACGTCGTCGTCGACGGGGCGGCCCACATGCTGCAGGCCATGGCGACGGACGCGGTGGCCGACCTGATCCTGGAGCAGGTCGGCCGCGGCACCTGA	MAELTRNLHRAFYPSRLPGDREPLLLLNSLATTTEIWAPMMSRLTASTSVLCVDYPGHGLSPAREMPADLDDLAASMLEVLDEFGIERVHVAGVSIGGMAALRLAELAPDRIASITVIGSTPVMDRRMWQARKELVQQWGTRGIVADVLERWFTSTYATAYPDVVAQYTTMLEGTADSAYAAFCDVLGPADLRSVLSAISCPTLVVSGSHDAAATVEDGRTIVDAVPHARHVVVDGAAHMLQAMATDAVADLILEQVGRGT	PGPT0004995_1300	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055	NA	NA
AK001_00778	2052			hypothetical protein	GTGACCACGACCTCCGGACCGACGACGCAGCGGTGGTGGGACTCGCCGTTCCGGCTGCTGCAGACCAACCTGCGCGAGGACGACGTGCTGCTCGACGCCGAGGCGTCGGTCGACCAGCTCGTCGACCTCGGCTACGACACCTGGCTGTGCAACGCGGGCGGGATCTCGTACTTCTACCCGGTGCACGAGCCGTACCAGCGTGCCGCGCCCCGCCTGGCGCAGCGGGCCTCCGGCGACATGGTCGGCGACGTGGTCCGCGCGGCGCACGCCCGCGACGTGCGAGTGCTCTCCCGCTTCGACTTCTCGCGGCTGCCGGCCGACGTCGTCGCGGAGCACCCCGACTGGGCCTTCCTGGACCAGGACGGTCGGTGGTACACCGAGGACGGGTTGACCGCGATCTGTCCCCGCAGCGACTACCACGAGGTGCTCGCTCCGCGGATCCTGCGCGACTTCGTGGAGCGCTACCCGGTCGACGGCGTCTTCTTCAACTGGTTGCAGTACCCCGAGGTCGCCTACAGCGGTCGGTACAAGGGTGTCTGCCAGTGCGACCGGTGCCGTGCGGCCTTCGCGGACGCCCACCCCGGCGTTCCCCACCCGACGGCGCTGGGCGAGCCCGGCTACGACCGGTGGCTCGACGTCGCCCAGCAGCGGCTCACCGAGCTGGCCGAGCGCTACTCGCGGGTCGTCAACGAGGTCCGGCCGGGAACGCCGCTCATGCTCGCCGACGTCCGGATGGACATCGCCTTCCTCGAGATCAACTCCTCGCTGGGCGGGCACGACAGCGACCGCTGGTGGGTCCACACGCCCGGCGAGATGGCGAGCCTGCACCGGACGTCGGACCCCCGGGTCCCGGCGCTGGTCCACGCGTCGGTGAACATGGGCCTGCCCTACCGGCAGATCGCGGAGGAGCCCACGCAGTTCCGGCGCTACGTCGCCCAGGCGCTCTCCCGGGGGGCGCTCCCGTCGTCGGTGGTGGTCGGCACGGTCGACGTCGGCAGGTTCCCCTGCCTGCCCGCGGCCTCCGACCTGCTGGGACTCCTGCGCGAGCGGACGGACCTGTACGCCGACTACCGGTCGGCGTCGACGGTGGCCCTCCTGCGCCCGCGGGGCGGCACGGCGATGAGCGCCATGCAGCACACGGTGGACCACGCCGAGTACCGCGGCGTCTACACCGCCCTGCAGGAGGCCCACGTCCCGTTCGACGTGCTCGGGCTGCAGTACCAGGAGCAGCTCGTCCACGACGACGTCGTGGCGCGCTACGACGTCGTGGTCGTCCCCGGCACGGCCGGGATCGACGAGGCGTTCGCCCGCGCCCTGGACGACTTCGTCCGGGGCGGAGGGTCGCTGGTGGTCACCGGAGACGGGTTCCGTGACGGCCGGCCCGTGCTGGAGTCCGCGCCGGCCGCGGCTCTCGTCGAGCGGTTGTCCGGGATCGCGGAGCTCGGTGGCCGGTACGTCGGTCCGTCCGACGACCGGGTCGACGTCCCCCTGCACCCGGTGATCGGGCACTTCGACCGGGTGGAGACGCAGGACGGCGTCACGTCCGGGGTGCTCGCGCTGAGCACGCAGACGCCGTTCGGGCCGCCGGAGATCACCGGAGGCAACACGACGTCCGGCGGTGATCCCGCGCTGCTGCACGGCACGTTCGGCGCCGGTCGCACGAGCCAGCTGCCGTGGGCGGTCGGCGCCACCGTCCACCGTTCCGGTCTCACGGCCCTCGGCGACCTCGTCGCCCGCGAGGTGGAGGTCCTGCGTCCCCGTCCGGAGATCGTCGGGGTCGACCTGCCGCGCGGCGTGGAGCTGACCGTCGGCGTCAGCCGAGGCCGCGTGGTCCTGCACCTGGTCAACCACTCGGGCGGGCGGGGCGACCGCGTCCGCGAGCCGATCCCGATCACGGGATCGGTGACCCTCACGGGGGCATGGGCGGCGCTGGCCGCGCAGGGCGTCCGCGCGCTGGTCGCCGATCGCCGTGTCGTTCCCCTCGAGGTGACCGACGGCCTGCGGGTCCCCGTCACCGTCGACGACGTCCTGGAGGTAGTCGAAATTGGCTGA	MTTTSGPTTQRWWDSPFRLLQTNLREDDVLLDAEASVDQLVDLGYDTWLCNAGGISYFYPVHEPYQRAAPRLAQRASGDMVGDVVRAAHARDVRVLSRFDFSRLPADVVAEHPDWAFLDQDGRWYTEDGLTAICPRSDYHEVLAPRILRDFVERYPVDGVFFNWLQYPEVAYSGRYKGVCQCDRCRAAFADAHPGVPHPTALGEPGYDRWLDVAQQRLTELAERYSRVVNEVRPGTPLMLADVRMDIAFLEINSSLGGHDSDRWWVHTPGEMASLHRTSDPRVPALVHASVNMGLPYRQIAEEPTQFRRYVAQALSRGALPSSVVVGTVDVGRFPCLPAASDLLGLLRERTDLYADYRSASTVALLRPRGGTAMSAMQHTVDHAEYRGVYTALQEAHVPFDVLGLQYQEQLVHDDVVARYDVVVVPGTAGIDEAFARALDDFVRGGGSLVVTGDGFRDGRPVLESAPAAALVERLSGIAELGGRYVGPSDDRVDVPLHPVIGHFDRVETQDGVTSGVLALSTQTPFGPPEITGGNTTSGGDPALLHGTFGAGRTSQLPWAVGATVHRSGLTALGDLVAREVEVLRPRPEIVGVDLPRGVELTVGVSRGRVVLHLVNHSGGRGDRVREPIPITGSVTLTGAWAALAAQGVRALVADRRVVPLEVTDGLRVPVTVDDVLEVVEIG				NA	NA	NA	NA	NA
AK001_00780	909	lacF_1		Lactose transport system permease protein LacF	GTGACGACGCTCGCACCGAAGGCCCCCGGCCGGAAGAAGCGGAGCTCGCAGGCGCTGGCCGGGTGGCTGTTCTCCCTGCCGTTCGTGACGGTCTTCGCCGTCTTCTTCGCCTGGCCCATCCTCTGGTCGCTCTTCATGAGCCTGACGGACATGACGAGCCGGGACCTGCGCACCCCGTTCAACGTGGAGCTCGTCGGTCTCGACAACTTCGCGGCGGTCCTGAGCGACCCGGTCTTCTGGCGGTCGCTCGGGAACACCGGGGTGGTGGTGCTCGTCGCCGTGCCCGCCGTGCTGGTGATCGCCCTGTTCCTCGCCGTCGCGCTGAACCGCGGCATCCGCCGGGGCAAGGGCTTCTTCCGCACCGTCTACTACGTCCCCGTGGTCACGAGCATCGTGGCGATCGCCGTCGTCTGGAAGTTCCTCTTCGCCGACAACGGCACCGTGAACGCGATGCTCGCGACCATCGGGATCGACGGGCCGGCCTGGCTCGCCGACACCTTCTGGGCCCTGCCGACCATCATCCTGCTCGTCATCTGGCGACTCTTCGGACTGGTCATGGTGCTCTTCCTCGCCGGCCTGCAGGCCATCCCCCAGGACGTCCACGAGGCGGCCCGGGTGGACGGCGCGGGCTCCTGGCGGCGGCTGGTCTCGATCACCGTCCCCATGCTCGTCCCCACCATCCTGCTGGCGAGCGTGCTCATGACCGTCTTCATCGTGCAGGTGTTCGAGGAGCCCTTCGTCATCACCCAGGGCGGTCCGCTCAACTCGACCCAGTCGGCCGTGATGTACATCTACGACGAGTTCGGGTTCGGGCAGTACGGGACCGCTGCGGCCGCGAGCTACATCCTCTTCCTGGTCATCGGCCTGCTGTCGCTGATCCAGTTCCGAGTCCTCAGGAGCCGTACATGA	MTTLAPKAPGRKKRSSQALAGWLFSLPFVTVFAVFFAWPILWSLFMSLTDMTSRDLRTPFNVELVGLDNFAAVLSDPVFWRSLGNTGVVVLVAVPAVLVIALFLAVALNRGIRRGKGFFRTVYYVPVVTSIVAIAVVWKFLFADNGTVNAMLATIGIDGPAWLADTFWALPTIILLVIWRLFGLVMVLFLAGLQAIPQDVHEAARVDGAGSWRRLVSITVPMLVPTILLASVLMTVFIVQVFEEPFVITQGGPLNSTQSAVMYIYDEFGFGQYGTAAAASYILFLVIGLLSLIQFRVLRSRT	PGPT0016535_4432	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_00781	1254	ugpB	COG1653	sn-glycerol-3-phosphate-binding periplasmic protein UgpB	ATGACGACTGCCGCACTGACCGCCACCGCCCTCGTCCTCACCGCCTGCGGTCGTTCCGACGCCGGGACGACCGTCGAGACGGCCGAGGCGATCGACGGCTCGCCCGCCACGGGGGAGATCACCATCTGGGCCGCCGAGAACGAGGGCCGGGCCCTGTCGGCCGCTGCCGAGGAGTTCCAGGCGGCGAACCCCGACGTCACGATCACCGTGACCCCGGTGTCGTTCGACGAGCTCCCCCGCAAGGTGGACACGGCTATCGCCAGCGGCGAGGTCCCGGACATCATCCAGCCGAGCACCGGTCTGCAGTCCTACGTGTCCGCGGGCGGCATCGCCCCCGTCCCCGACGGGGTCACCGACACCTCCGACTTCTTCGACTCCGCGGTCTCCGCCGTCACCTTCGACGACGTCCTGTACGCCGTGCCGTGGTACGTGACCGTGCAGTCCTTCTACTACCGGGCCGACCTGGCCGAGGAGGCCGGGCTGGACGCCCCCACCACCTGGGAGGAGAACCTCGAGTTCGGGGCCGCCCTCCGGGAGGACGGTGCCGACAGCGGGACCTTCGTCGCGCCGTCGGGCACCCTCGCCTGGCAGACGATCCTGCCGATGATCTACCAGGCCGGCGGCTCCGTCATCGACGACGGGGAGTTCACCCTGGACACCCCCGAGGTCGTCGAGGCGCTCGGCCACTACCAGGAGTTCTTCGCCCAGGACATCTCCGACGTGCAGAAGGTGATCACCGCCGCCGGCGAGATCGAGGCCGCCTTCGCCGACGGCAGCATCGGGTCCTACATGACCGGGTCGTACTCCTACGACTTCGCGCTCGACGCCCTGGGCGGCGACGCGTCGAAGATCGGTCTCGCCCCCCTGCCGGAGGGGCCCGTCAACGGGATGGGCTACATCGGCGGTTCCGGGCTCGCGGTGATGGCCGACTCCGACAACCAGGAGTCCGCGTGGAAGTTCGTGCGCCACGCCACGTCCCCGGAGAACGCCGTGGCCGCCTACGAGGTCTCCGGTGTGCTGCCGGCCAACCAGGCCGCCTGGGAGTCCGGGGCGCTCGCGGAGAGCCCGACCGCCGAGACGTTCGCGACCCAGCTCGAGAACAGCGTCCCGCTGCCCCAGGTGCTCACCTGGACCCAGATCCGCGACCTGCTGGCCACCTACGGCGAGCAGCTCGCCCGCGAGGTCATCACGCCCGAGGAGGCCGCGGCGGAGATGCAGCGCGAGGCCGAGGCGATCGGGACGGGAGAGCAGTGA	MTTAALTATALVLTACGRSDAGTTVETAEAIDGSPATGEITIWAAENEGRALSAAAEEFQAANPDVTITVTPVSFDELPRKVDTAIASGEVPDIIQPSTGLQSYVSAGGIAPVPDGVTDTSDFFDSAVSAVTFDDVLYAVPWYVTVQSFYYRADLAEEAGLDAPTTWEENLEFGAALREDGADSGTFVAPSGTLAWQTILPMIYQAGGSVIDDGEFTLDTPEVVEALGHYQEFFAQDISDVQKVITAAGEIEAAFADGSIGSYMTGSYSYDFALDALGGDASKIGLAPLPEGPVNGMGYIGGSGLAVMADSDNQESAWKFVRHATSPENAVAAYEVSGVLPANQAAWESGALAESPTAETFATQLENSVPLPQVLTWTQIRDLLATYGEQLAREVITPEEAAAEMQREAEAIGTGEQ	PGPT0016545_9861	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_00782	393			hypothetical protein	ATGAGCGCAGCCAGCATCCCGACACCGCGGACCGTCGCACGCGCCGTCGCCGGCCTCACCGTCCTCTACGGCCTCTACGCCGTCGGGGCGGTCCTGGCGTCGGCGGTCGGCTGGCCCGTCCCCGGAGGCATTATCGGCATGGTCCTCCTGCTCGCGCTGCTCCGGACACCGTGGGGCGAGCGGCTGGAGCGCTGCCTCGGCGGCATCGGTGCGGTGCTCGTCGCCCTGCTGCCGCTCCTGCTGGTCCCGGTGGCGGTCGGGGTCGTGGCCGAGCTGACCCTCCTGCGCCAGCAGTGGTGGGTGGTCGGGCTGACCGTCGTGGCCAGCTGGGTCGTCGCCGTCACGGTCGTGGCCGCCCTGTCGCGCTGGACGTTCGCCAGGAGGCGGGCATGA	MSAASIPTPRTVARAVAGLTVLYGLYAVGAVLASAVGWPVPGGIIGMVLLLALLRTPWGERLERCLGGIGAVLVALLPLLLVPVAVGVVAELTLLRQQWWVVGLTVVASWVVAVTVVAALSRWTFARRRA				NA	NA	NA	NA	NA
AK001_00783	720	lrgB		Antiholin-like protein LrgB	ATGAGCACACTCGTGACCGACGTCCCGGTGTGGGGCACCGTGCTCACCCTCGGGGGGTGGGTCCTCGCCGTCCTCGTCCTGCGCGCCGTGCCGGCCGCCGCTCGCGTCGTCCCCCCGATCCTCGTCGCGATCGTCGTGGTGGCCGCCGTGCTGCTGGTCTCGGACGTTCCCTACGACCAGTTCGCCCGCACGTCCGCACCGCTCTCGGCACTGCTCGGGCCGGCCGTCGTCGCTCTGGCGCTGCCCGTCCACCGCTACCGGGCCGAGATCGCCGCCGTGCTGCCCGGACTGCTGACCTCGGCCCTCGCCGGAGTCGTCGCGGCGGCCGCCGTGGTGCTCGGGCTCGCCGCGGCGCTCGACGTCGACCCGAGCGTGGTCGCCACCCTGGTGCCGATGCACGCGACGTCCCCGGTCTCCTCGGCGGTGAGCGCCGGCCTGGGCGGGTCGGCGGGGACCGCCGCCGTCGTCGCGATCTTCGCCGGGGTCCTGGGAGCGTCGGTGGGGCCGCGGCTGCTCAGGGCGCTGCGGATCACGGACCCCCGGGCGCGAGGTCTGGCCATCGGCGTCTCGTCGCACGCGATCGGGACCAGCCGCGCCCTCGAGATCGACGCCGAGACCGGGACCTACGCGGCGATCGGCATGGCCTGCGGAGCCGTCCTCGTCGCCACGACCAGCGCTGTCCTCGCCGTCGTCCCCGGCCTCGCCGCGCTCCTGCCCTGA	MSTLVTDVPVWGTVLTLGGWVLAVLVLRAVPAAARVVPPILVAIVVVAAVLLVSDVPYDQFARTSAPLSALLGPAVVALALPVHRYRAEIAAVLPGLLTSALAGVVAAAAVVLGLAAALDVDPSVVATLVPMHATSPVSSAVSAGLGGSAGTAAVVAIFAGVLGASVGPRLLRALRITDPRARGLAIGVSSHAIGTSRALEIDAETGTYAAIGMACGAVLVATTSAVLAVVPGLAALLP				NA	NA	NA	NA	NA
AK001_00784	1191			hypothetical protein	GTGCAACCACGGACCCGCCTCGGCTTCGCCGCCGCCACCGTCTCGCTGGTGGCGGTCTTCGCCGCCTCCGGCTCGCCGATCCCGCTGTACGAGCGGTACCGCGTGCAGGACGGCCTCACCACCGGTGACCTCTCGATCGCGGCGGTGTCGTACTTCGTGGCGGTGATGGTCTCCCTGGTCGTGCTCGGACGCCTGTCGGACCACCTCGGTCGGCGCACCGTGAGCCTGGCGGCCGTCGCGCTGGCGGCGGTGGGCAGTCTCGCCCTGCTCGACGTGACCGGCCTGTCCGTGCTCGTCACCGGCCGGGTGCTGCACGGCGTGGCGTGCGGGCTCGCGTCGTCGGCCCTGACGACGTACGTCGTCGACCTGGCACCGGACCGGCCGCGCTGGCTGGCCGCCGCCACGGCGGCCGGGTCGCCGTTGATCGGTCTCACCCTCGGCGCGCTGGGCACCGGGGCGCTCGCGGAGCACGGCCCGGCGCCCGAGCGGACGCCGTACCTGGTCGTCACGGCCGTGCTCGCGGTCTGTGCCGCGCTGCTGGTCGGCAGCCCCGAGCCGGTCGGACGCCGATCCGGGGCCTTCGCGTCCCTGCGTCCCCGGGTCTCCCTGCCGCCGGCGACCCGGCCGCTGCTGCCCGCAGCGATCGCCGTGTTCTGCGCCACCTGGGCGCTCGGTGGCTTCTACCAGGCGTTCAGCCCGACCATCGCCGCCCGCGACCTCGGCACCGACAGCACGCTGGTCGCGGGGACCGTCTTCGCGGCCTTCATGGCCCCGTACGCGTTCGGGGGGCCGCTGACCGGACGGCTCGCCGCGGGCGCGGCCCAACGGCTCGGCATCGTCGTGTTCGCGCTGGCCGTGACGGGCGTCGTCGTGGGCCTGCACACCGGGTCCGTCGTGACCGTCGTGCTGTGCGGCGTCGTCGCCGGGGCCGGGCAGGGCGCGGCGTTCACCGGGACGATGCGCGGGCTGCTCGCCCGGACGGACCCGGCCGAGCGGGCCGGGCTCATGGCCACCGTCTACCTGTTCTCCTACGGGGGAGCGGCGGTGCCGAGCCTGGTCGCGGGGCGGCTGTCCGCCACGCTCGAGCTGTCCTGGATCGCCGTCGGCTACGCGGCGCTCGCGCTCCTGGCGGTCGGTGTCGTGCTCGGGTCCTCGGCCCGGCCGAGGGCGAGGGTGGGCACCCGTCCGTGA	MQPRTRLGFAAATVSLVAVFAASGSPIPLYERYRVQDGLTTGDLSIAAVSYFVAVMVSLVVLGRLSDHLGRRTVSLAAVALAAVGSLALLDVTGLSVLVTGRVLHGVACGLASSALTTYVVDLAPDRPRWLAAATAAGSPLIGLTLGALGTGALAEHGPAPERTPYLVVTAVLAVCAALLVGSPEPVGRRSGAFASLRPRVSLPPATRPLLPAAIAVFCATWALGGFYQAFSPTIAARDLGTDSTLVAGTVFAAFMAPYAFGGPLTGRLAAGAAQRLGIVVFALAVTGVVVGLHTGSVVTVVLCGVVAGAGQGAAFTGTMRGLLARTDPAERAGLMATVYLFSYGGAAVPSLVAGRLSATLELSWIAVGYAALALLAVGVVLGSSARPRARVGTRP				NA	NA	NA	NA	NA
AK001_00785	972	tdh_2		L-threonine 3-dehydrogenase	ATGCGAGCACTCGGACTGACGACCTACGGCGGACCCGAGGTCCTGCGCCCCGTGGAGCTGCCCGAGCCCCACGCCGGACCCGGCGAGGTCCGCGTGGCGGTCCGTGCGGCCGCGCTCAACCCCGCGGACGTGATGCTCCGCGACGGGTCCCTGGCAGCCGTGTACGAGGGCCTCGAACCGCCGTACGTGCCGGGCATGGACGTCGCCGGGATCGTGGACGAGGTCGGGCCGGACGTCGACCCGGCGCTCGCCGTCGCGCCGGGCACGGCCGTCACCGGCATCGTCGACAACACCGGCAGCCACGGCGCCTACAGCGAGCAGGTCGTGCTGCCGGCCGCGTCCGTCACCGCGGCACCGGAGGGTGCGAGCTTCGCGGAGGCCGCGTCCTTCCTCATGAACGCGCTCACGGCCCGCAACGCCCTCGACGTCCTCGCCCTGCCCGAGGGATCCTCCGTGCTCGTGACCGGTGCGGCCGGGGCGGTCGGCGGCTACGCCGTCGCGCTGGCGCACGCCGAGGGCCTCCGGGTGGTCGCTCTCGCCTCACCCGCCGACGAGGCGGCCCTGCGCGCGGCCGGCGCGGACGAGTTCGTCCCGCGCGGGGACGACGCCGTCGTGGACGTCCTCGGCCTCGTGCCCGGCGGTGTCGACGCCGTGATCGACGCCGCCTGCCTGTACGCCCGGATCACCCCGGCCGTCCGCGACGGCGGCACGCTCGTCGACCTGCGCTTCTGGGACGGCGACCCCGGGCGCGGCATCCACGTCGCGCACGTCAACGTCCGCGAGCGCGCCACCGACCACGCCGCGATCGTCCGGCTGCGCGAGCAGGTCGAGGCGGGCCTGCTGCCGATGCGCGTGGCGGAGACCTTCTCCGCGGCCGACGTCTTCGACGCCCACCACCGCCTCGACCGGGGCGGTCTGCGCGGACGGGTGGTGCTGCTCTTCGGCGACGGTCGCGAGGGGACCACGGCGTGA	MRALGLTTYGGPEVLRPVELPEPHAGPGEVRVAVRAAALNPADVMLRDGSLAAVYEGLEPPYVPGMDVAGIVDEVGPDVDPALAVAPGTAVTGIVDNTGSHGAYSEQVVLPAASVTAAPEGASFAEAASFLMNALTARNALDVLALPEGSSVLVTGAAGAVGGYAVALAHAEGLRVVALASPADEAALRAAGADEFVPRGDDAVVDVLGLVPGGVDAVIDAACLYARITPAVRDGGTLVDLRFWDGDPGRGIHVAHVNVRERATDHAAIVRLREQVEAGLLPMRVAETFSAADVFDAHHRLDRGGLRGRVVLLFGDGREGTTA	PGPT0013255_9511	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_00786	360			hypothetical protein	ATGACGATCCGACTCACGGTCGCGGGCCGTGACCTCACCGCCACCCCGGCGGACGGCGCGGCCGCGCGCGACTTCCTCGCGCTGCTGCCGCTGACCCTCACCCTCGACGACTTCCACGGCATCGAGAAGGTCGCCGACCTGCCGTCCCGCCTCTCCACGGCGGGCGAGCCGGACGGGACCACCGGGAACGCCGGCGACCTCATGTACTACGCGCCGTGGGGCAACCTCGCGATCTTCTACCGCGACTTCGGCCACGCGGCGGGCCTCGTGCGGCTCGGGGCGTTCGACGACGCGGACGCGGCCGCCGTCCTGGGCGCGCTCGACGGTCCGACCGAGGTCACGATCTCGGTCGTCGACTGA	MTIRLTVAGRDLTATPADGAAARDFLALLPLTLTLDDFHGIEKVADLPSRLSTAGEPDGTTGNAGDLMYYAPWGNLAIFYRDFGHAAGLVRLGAFDDADAAAVLGALDGPTEVTISVVD				NA	NA	NA	NA	NA
AK001_00787	393			hypothetical protein	GTGCTCCCGGCCGTCCTGCTGGGGCTGTCCGCCTGCGCTGCCGACCCCGGCCCGTCCCCCGCGGGACCGTCCGCCGCGACCGCGACGCCGGGGCCGACGGGGCCCGCAGCGGCCGACGACGCCGGCGCGTCCGCTCAGGCCGCTGCCGACGTGCAGGTCAGCATCACCGACACCTCGTTCTCCGTGGGTGCGGAGACGATCGCCGCGGGGGAGAGTGTGCTGGTGACCAACGAGGGCCGTCTGGAGCACTCGTGGACCTCCGAGGAGGCCGGTGTGGACACCGGCGTGCTCGGTCCCGGCGAGAGCGTCACGGTCACGGCGGGGACCACGGGGACGTTCACGTTCTCGTGCACCGTGCACCCGCTGATGACCGGGACGGTCACCGTCTCCTGA	MLPAVLLGLSACAADPGPSPAGPSAATATPGPTGPAAADDAGASAQAAADVQVSITDTSFSVGAETIAAGESVLVTNEGRLEHSWTSEEAGVDTGVLGPGESVTVTAGTTGTFTFSCTVHPLMTGTVTVS				NA	NA	NA	NA	NA
AK001_00788	1506	mco		Multicopper oxidase mco	ATGACTCCTCCCGATGCCCCGCTCCTCGACCGTCGATCCTTCCTGGCCCTGGCCGGGGCCGGGATCGGGACCGCCGTCCTGGCCGCCTGCGCTCCCTCGGGACCCGGCACGCCACCGGCCGCCGCCCCGTCGCCGTCCCCCGCCAGCACCCGACCTGCCGGTGCCGGTGGGACCCTCCGCGTCCCCGCACTCCTCACCGGGGCACCCGGACCCGACGGCCCGGTCTTCGACCTCGCCGCACAGGTCGGCCGCACCGAGATCGTCCCCGGGACGTCGACGGAGACCTGGGGGTTCGACGGCCCCGTGCTGGGACCGACGCTGCGGGTGTCGCGCGGCGACCGGGTGCGCATGCGGATCCGCAACGACCTCGCCGAGACCACGACGGTCCACTGGCACGGCATGCACCTGCCGGCGGCGGCCGACGGCGGGCCGCACCAGCCGATCGAGCCCGGCGAGACCTGGGACGTGAGCTGGCAGGTCGACCAGCCCGCCGCGACGCTCTGGTACCACCCCCACCCGCACGGGGCGACGGAGCGGCACGTGTACCGGGGCCTGACGGGACTCCTGATCGTCGACGACGAGGACGAGGCGGCCCTCGGGCTCCCCCGCGAGTACGGGGTCGACGACATTCCTCTGATCGTCCAGGACAAGGAGCTCGACGACACCGGTGCGCTGGTGGAGACCGAGCGCCGCGGACCGGGGATGCTCGGCAGCACGGTGCTCGTCAACGGGGTCGCCGACGCGAGCCTCGAGCTCGCCGCCCGGTCGACCCGGCTGCGGATCCTCAACGGTTCCACGGCCCGCAGCTACGCCTTCGGCCTCTCCGACGGCCGTCCCGTGGACCTCGTGGCCTCCGACGGCGGTCTGCTGCCCGAGCCGGTCCGCACCCCGCGCGTGCAGCTCACCCCGGGCGAGCGGGCCGAGATCGTCGTGCACGTCGAGCCGGGCGAGTCGCTGGTGCTGCGGTCGTTCCCGCAGGACCTCGGGGACGTCGCCGGGACGACGGGCAGGGAGGACGAGCTCGACGTGCTCGCCCTCTCCGCCCCGGCCGGGCTCCCCGCGAGCGCCCCGGTCCCGTCGCGGCTGGTCGAGGTCCCGCGGTACGACCCCGCGGAGGCCGTGCGGACACGCCGGTTCGAGATGCGGACCGACCGCATCAACGAGCAGCCGATGGACATGTCGCGGATCGACGAGGTGGTCACCGTCGACGAGCTCGAGGTGTGGGAGGTGCTGAACACCACGCGCACGCCCCACAACTTCCACGTCCACGACGTCCAGTTCCAGGTCGCCGACCTGGGCGGCGAGCAGCCGCCGCCTCATCTGGCCGGGTGGAAGGACACCGTCTACCTGCCCCCCGGGGTGCCCGTGCGGCTCGCGCTGCGCTTCACGGAGCACACCGACCCGGACCTGCCGTACATGTACCACTGCCACCTGCTGTGGCACGAGGACATCGGCATGATGGGGCAGTTCGTCGTCGTCGGCCCCGAGGAACGGGTCGGGCCCTAG	MTPPDAPLLDRRSFLALAGAGIGTAVLAACAPSGPGTPPAAAPSPSPASTRPAGAGGTLRVPALLTGAPGPDGPVFDLAAQVGRTEIVPGTSTETWGFDGPVLGPTLRVSRGDRVRMRIRNDLAETTTVHWHGMHLPAAADGGPHQPIEPGETWDVSWQVDQPAATLWYHPHPHGATERHVYRGLTGLLIVDDEDEAALGLPREYGVDDIPLIVQDKELDDTGALVETERRGPGMLGSTVLVNGVADASLELAARSTRLRILNGSTARSYAFGLSDGRPVDLVASDGGLLPEPVRTPRVQLTPGERAEIVVHVEPGESLVLRSFPQDLGDVAGTTGREDELDVLALSAPAGLPASAPVPSRLVEVPRYDPAEAVRTRRFEMRTDRINEQPMDMSRIDEVVTVDELEVWEVLNTTRTPHNFHVHDVQFQVADLGGEQPPPHLAGWKDTVYLPPGVPVRLALRFTEHTDPDLPYMYHCHLLWHEDIGMMGQFVVVGPEERVGP	PGPT0004130_454	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_LIGNIN_DEGRADATION|LIGNINASES	PLANT_LIGNIN_DEGRADATION-LACCASES_ACTIVITY,PGPT0004130-cueO-K14588	NA	NA
AK001_00789	588			hypothetical protein	ATGACCAGCACCGCGACCGCGCCGAGGACGTCGGCGCGCGTCTTCCTCCTGGACGACGGCACCGGCCGGGACACGGCGGAGGTCCTGGGCGAGGCCGTGCACCGGCAGGGGGTCGCCGGGACGGCGCTCCAGGGCGTGCGCCACGCGACCTCGGCCACCGCCGAGGCCGTCGCGGCCGAGATCGCGACCGTCGCCGACGGGCTGCTCGACCTCGACCTCGGCGACGTCCTGCTGCGCGGGTGGCGCTCCTCCGCCGACCTCCTGGCGGCGGGCCGTCGCACGGCCCGGTCCCCGGGCCGGGAGGTGGTCGCGCTCGCCACCCACCGCGTCACCGGCAGCCACCACCCGCGGGTCGACCTGATGGTCGACGGGGTGCGGCTGCGCCGGTTCACCTTCGAGCTCTCCGTCGTGCTCGTGCTCACGGGCGTCGCCGCCGTCGTCGAGGGCGGCGCGCTGGTCGCCGTCCGCGGCGGCTCGGCCGAGATCACCGGCACGCTCTCCCTGGACGGCGTGCGGCTGGTGGAACGGCGGCGCACGGTCGACGTCGGGCTCCTGGTCCACCTGCGCCGGCCGCTCGTGCTGGCCTAG	MTSTATAPRTSARVFLLDDGTGRDTAEVLGEAVHRQGVAGTALQGVRHATSATAEAVAAEIATVADGLLDLDLGDVLLRGWRSSADLLAAGRRTARSPGREVVALATHRVTGSHHPRVDLMVDGVRLRRFTFELSVVLVLTGVAAVVEGGALVAVRGGSAEITGTLSLDGVRLVERRRTVDVGLLVHLRRPLVLA				NA	NA	NA	NA	NA
AK001_00790	885			hypothetical protein	GTGGCTCCTCGAGCGGTACGGAGGGTGCTGGGGGTCGTCCTCGGCCTGCTGCTGGGGACCGCGGCCGTCGTCGACTCGAACCCCACGCTGAGCGTCGAACCAGGGGCCGGGGCGCCCGAGACCGAGGTCTCCGTCGTGGTCCAGGGGTTCACCGACTGCCCGGACGACACCACCGACGCCCGGAGGGTCGAGCTGCTGTGGGACGGCGACGAGCTCGTCGGGACGGCCGACCTGCAGGTCGGCTCGGGCGCCACGACGGTCACCGTCCCGGCGGAGTCCTCGCCCGGGCCGCACGTGCTGCTCGCCCGGTGCACCGGGGACCCGGGACTGCAGGCCGAGGCGCGGTTCGACGTCTTCGGGATCTTCGACGTGACCGTGCCCGATGTCCGCGGGATCTCGCCGGCCGAGGCGGAGGCCCGGCTCGCGGAGTCGGGCCTGGTGCTCGGTGAGGTCGTCGGGGAGGGCGACCTGGTGGCGGAGCAGGACCCGCCGGCGGGGACCCCGGTCGAGCCGGAGACCGGTGTGGACGTCGTCCTGGCACCGGTCGGGGTGGACGACCCGGAACCCGCCGACGACGGCCCCGGGGACGGTCCCGGCGACGACCCCGGCGACGTGACCGGCGACGACGATCCGGACCGGATCCTCTGGGCCCTCGGCCTCGGGCTGCTCGTGCTCGCCGGTGCGGCCGGGACCGCGGCGGTGCGACGGGTCCGCCGACGCCGGGCCCGGCGGTGGGTGCGGGAGCACGTGCGTCTGAGCCCCGGCCCGACGTCGGCGCCGGAGGTGAGGGTGGCGGAGGACCCGGGGTCCGACACGACGCTCGTGGTCCGGCTCGTCGGGTCGACCGACGCGCCGGACGAGCACCTGGAGGTGATCGGGAGATGA	MAPRAVRRVLGVVLGLLLGTAAVVDSNPTLSVEPGAGAPETEVSVVVQGFTDCPDDTTDARRVELLWDGDELVGTADLQVGSGATTVTVPAESSPGPHVLLARCTGDPGLQAEARFDVFGIFDVTVPDVRGISPAEAEARLAESGLVLGEVVGEGDLVAEQDPPAGTPVEPETGVDVVLAPVGVDDPEPADDGPGDGPGDDPGDVTGDDDPDRILWALGLGLLVLAGAAGTAAVRRVRRRRARRWVREHVRLSPGPTSAPEVRVAEDPGSDTTLVVRLVGSTDAPDEHLEVIGR				NA	NA	NA	NA	NA
AK001_00791	1266			hypothetical protein	GTGCTGCACGTCCTGACCCGTCGCGTCTACCGCCGGCTCTTCCTCGCCCAGGTGGTCGCGCTCGCCGGCACCGGGCTCGCCACGGTCGCCCTCGGGCTGCTCGCCTACGACCTGGCCGGCGTCGACGCCGGCCAGGTGCTCGGCACCGCGCTCGCGGTGAAGATGGTCGCCTACGTGGTCGTCGCGCCCCTGGCCGCGGCCGCCGTCGCACGGCTCCCGCGACGCGCGGTCATGGTCGGCTCCGACGTCGTCCGGCTGCTGGTCGCCGGGTCGCTGCCGTTCGTCGGCGAGGTCTGGCAGGTCTACGTCCTCGTCTTCGTCCTGCAGGCCGCGTCCGCCACGTTCACCCCCACGTTCCAGTCCGTGATCCCCGACGTGCTCGACGACGAGGAGGAGTACACCGCGGCGCTGTCCCTGTCCCGGCTGGCGTACGACCTCGAGGCCGTGCTCGCCCCCGTGCTCGCGGCGGCCCTGCTGCTCGTCGTGCCCAGCGCGGCCCTGTTCCTCGGCACCGCGGTCGGGTTCGGCGCGTCGGCGCTCCTCGTCGCCGCCACGGTGCTGCCGCGGCGGGGCGCGGAGAACGCCGGGGACGGCCCGCGGATGCCCTTCGGCGAGCGCGTCCGGCACGGGACCCGGCTCGTCGTGCGCACCCCGGCCCTGCGCCCGGTCCTGGCGCTGAACATGGCCGTCGCCGCGGCCGGCGCGTTCGTCATCGTCCAGACGGTGGTCGTGGCGCGCTCGACGTTCGGGCAGGGCGAGGCCGTCGTCGCGCTGCTCCTCGCCGCGAACGGCGTCGGCTCCATGGCGGCGGCCGTCGCCCTCCCGCGCGTGCTCCGCCGTCGGCCCGAGCGGTGGGTCATGGTGGGCGGGGCCGGGCTGCTCACCGCGGCCACCGCCGTCGTCCCGCTCGCCCTCGCCGCGCCGTCCGCCGGGGTCGGGCTCACGGCGGTCGCCGGGCTGTGGGCGCTGGTCGGCCTCGGGTGGGCGTCCGTCGAGACGCCCGTCGGCCGGATCGTGCGCCGCACGATCCCGGCCGCGGACCGTCCGGCCGTCTTCGCGGCCCAGTTCGCGCTGCTGCACGCGTGCTGGCTGGTGACCTACCCGCTGGCCGGATGGCTCGGCACGGCGGTCGGCCTGCCCGCGACCGCCCTGGTCCTCACCGCGCTCGCCGCCTCCGCGACCACGGCGGCGGCCCTGCTGTGGCCGCGGGGTCGCACCCCGGCTGCCGCGGGGCCTGCCCGCGCGGAGCCACCGGTGCGATCATGA	MLHVLTRRVYRRLFLAQVVALAGTGLATVALGLLAYDLAGVDAGQVLGTALAVKMVAYVVVAPLAAAAVARLPRRAVMVGSDVVRLLVAGSLPFVGEVWQVYVLVFVLQAASATFTPTFQSVIPDVLDDEEEYTAALSLSRLAYDLEAVLAPVLAAALLLVVPSAALFLGTAVGFGASALLVAATVLPRRGAENAGDGPRMPFGERVRHGTRLVVRTPALRPVLALNMAVAAAGAFVIVQTVVVARSTFGQGEAVVALLLAANGVGSMAAAVALPRVLRRRPERWVMVGGAGLLTAATAVVPLALAAPSAGVGLTAVAGLWALVGLGWASVETPVGRIVRRTIPAADRPAVFAAQFALLHACWLVTYPLAGWLGTAVGLPATALVLTALAASATTAAALLWPRGRTPAAAGPARAEPPVRS				NA	NA	NA	NA	NA
AK001_00792	351	kmtR	COG0640	HTH-type transcriptional regulator KmtR	ATGAGTCCCGTGGCCACCACCGAGCGCAGCGCACCACCGGACCTGGAGCTCGACCACGCCGTCGACGTCCTCCGCCTGCTCGCGGACCGCACCCGCCTGGCCGTCCTGGCGATGCTCGACGGGACCGAGATGTCGGTGGGCGAGATCGCCAGACGGCTCGACCGTCCCGGCCCGGCCGTCTCCCAGCACCTCGCCAAGCTCCGCGCCGCTCGCCTCGTGACGTCGCGCCGGGACGGCACGACCGTCTACTACGGCCAGCCGGACGAGCACGTCGCGGCGCTCGTCGCGAACGTGCTGCACCACACCGAGCACCTGCTCTACGAGGTGCCGCCGCACCACCGTGCCGACTGA	MSPVATTERSAPPDLELDHAVDVLRLLADRTRLAVLAMLDGTEMSVGEIARRLDRPGPAVSQHLAKLRAARLVTSRRDGTTVYYGQPDEHVAALVANVLHHTEHLLYEVPPHHRAD	PGPT0004305_26	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004305-czrA|yozA-K22043	NA	NA
AK001_00793	1965			hypothetical protein	ATGACCATCCACCACGTCGCCACGACCGGGTCCGACACCGCCGACGGATCCGCGGGCGCACCCCTGCGCACCATCAACCGCGCCGCGGCGCTCGCCCGGCCCGGCGACACCGTCCGCGTCCACGGCGGCGAGTACCGCGAGTGGGTCCGGCCGGCCCGCGGCGGGCTCAGCGACCTGCGCCGCATCACCTACGAGGCCGCCGACGGCGAGCACGTGGTGATCAAGGGGTCCGAGCCGGTGACCGCCTGGCACCGCGAGGACGGTGACGTCTGGCGCGCCGAGGTGCCGAACAGCCTGTTCGGGGACCGCAACCCGTTCGTCGAGACCGTCGACGGCGACTGGCTCGTCCCGCCGGCGACCGGGGAGCGGCAGCACCTCGGCGAGGTCTACCTCGACGGGCGGAGCATGTACGAGGTGCACGACCGCGCCACCGTGTCCGCCCCGGTGGCGCGCACCGAGGCCGTGGACGGCTGGACCGGCACCACCGAGCCCGTCGAGGACCCGGAGTGGACCCGCGCCGTCTGGTACGCGGAGGTCGGCGAGGACACGACGACCATCTGGGCGAACTTCCTGGGGACCGACCCGACCGGCGCGCTGGTCGAGATCAACGTGCGCCCGGCCGTCTTCTACCCGACCGAGCACCACCTCGACTACATCACCGTGCGCGGGTTCGAGCTCGCCCAGGCCGCGACCCCGTGGACCCCGCCGACCGCCGACCAGCCCGGCCTGATCGGGCCCAACTGGGCCAAGGGCTGGGTCATCGAGGACAACGTCATCCACGACGCCAAGTGCTCGGCCGTGTCGCTGGGCAAGGAGATCTCGACGGGCCACAACTACGCCACCGAGCGCGGCGACAAGCCCGGCTACCAGTACCAGCTCGAGTCGGTGTTCGCGGCCCGCCAGATCGGGTGGGACCGCGAGCGCGTCGGCTCCCACGTGGTGCGCCGCAACACGATCTTCGACTGCGGGCAGAACGGCGTGGTCGGCCACCTGGGCGCGGTGTTCTCGACGATCGAGGACAACCACATCCACCACATCGCGACGAAGCGCGAGTTCTACGGCTACGAGATCGGCGGCATCAAGCTGCACGCCGCCGTCGACGTGCAGGTCGTGCACAACCGCATCCACGACTGCACCCTCGGGGTGTGGCTGGACTGGCAGACGCAGGGCACGCGCGTGGCGCGCAATCTGTTCTACGCGAACACGCGCGACCTGTTCGTCGAGGTCAGCCACGGTCCCTACGTCGTGGACCACAACGTCTTCGCCTCGCCGGTCGCGCTGGAGGTGTTCAGCCAGGGCGGCGCGTACGTCAACAACCTCGTCGCGGGCGCGGTGCGCCTGGAGCAGGTCATGGACCGTGCCACGCCGTACCACCGGCCGCACAGCACCGAGGTCGCGGGGTTCGCCGTGGTCTGCGGCGGCGACGACCGCTACGTCGGCAACCTGTTCCTCGGCGGTGACGCCGACCGCGCGTTCGCCCCGGGCAGCAAGGGCCACCGGCTCACGACCTACGGCACGCACGGCTACGACGGCTGCCCGGCGAGCCTCGAGGAGTACCTCGGCGGCATGGACCAGTCCAAGGGCGACCACGAGCGGTTCCACGGCCTGCGTCAGCCCGCGTACGTGCACCACAACGCCTACGCCGGCGGTGCGGCGCCGTACGAGCAGGAGAAGGACGCCCTGGTGCTGGACGACGCCGTGACGTGCGCCGTCGTCGACCAGGGCGACCAGGTCGTGCTCGAGACGAACCTGCCGGAGGCGCTCGTGGCCGCGCACGTCGGCCTGGTCACGGCGGCCGACCTGCCGCGCGTGCGGTACGTCGACGCGGACTTCGAGGAGCCCGACGGGACGCCGCTGGTGGTGGGGACCGACCTGCTGGGCCGGGAGAAGGAGGCCGGTGCGGGCTACCCCGTCGGACCGCTCGCCACGGTCGACGCCGGCCTGTCCCGCGTCCGCGTCTGGTGA	MTIHHVATTGSDTADGSAGAPLRTINRAAALARPGDTVRVHGGEYREWVRPARGGLSDLRRITYEAADGEHVVIKGSEPVTAWHREDGDVWRAEVPNSLFGDRNPFVETVDGDWLVPPATGERQHLGEVYLDGRSMYEVHDRATVSAPVARTEAVDGWTGTTEPVEDPEWTRAVWYAEVGEDTTTIWANFLGTDPTGALVEINVRPAVFYPTEHHLDYITVRGFELAQAATPWTPPTADQPGLIGPNWAKGWVIEDNVIHDAKCSAVSLGKEISTGHNYATERGDKPGYQYQLESVFAARQIGWDRERVGSHVVRRNTIFDCGQNGVVGHLGAVFSTIEDNHIHHIATKREFYGYEIGGIKLHAAVDVQVVHNRIHDCTLGVWLDWQTQGTRVARNLFYANTRDLFVEVSHGPYVVDHNVFASPVALEVFSQGGAYVNNLVAGAVRLEQVMDRATPYHRPHSTEVAGFAVVCGGDDRYVGNLFLGGDADRAFAPGSKGHRLTTYGTHGYDGCPASLEEYLGGMDQSKGDHERFHGLRQPAYVHHNAYAGGAAPYEQEKDALVLDDAVTCAVVDQGDQVVLETNLPEALVAAHVGLVTAADLPRVRYVDADFEEPDGTPLVVGTDLLGREKEAGAGYPVGPLATVDAGLSRVRVW	PGPT0018655_560	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209	NA	NA
AK001_00794	834	ngcG_1	COG0395	Diacetylchitobiose uptake system permease protein NgcG	ATGACCGCGCGCAGCACCCGCACCACCCCGAACGTCCTCGGCGGGCTCGGGGGGTGGCTGTGGCTCCTCGTCGTGATCGTGCCGATCTACTACATCGTGGTCACCAGCCTGCGTCCGCAGGCCGACTACTACACCGAGAACCCCCTGTCGTGGCCGTCCGCGCCCACGATCGACGCCTACCGACAGGTGCTCGAGAACGACTTCCTGCGGTACTTCGCCAACTCGGTGATCGTCACCGGGACCTCGGTGGTCGTCATCCTCGCGGTCTCGCTCATGGCGTCCTACGTCGTGGTGCGCTCCGTCCGGCGCTCGACCTCGCGGCTCTTCCAGGTGTTCCTGCTGGGGATCGCCATCCCGATCCAGGCGACGATCATCCCCGTCTACTACCTCATCGTGCAGCTCGGGCTCTACGACACCCTGCTCGCGCTGATCCTGCCCTCCATCGCCTTCGCGATCCCGCTGTCGGTCCTCATCCTGACCAACTTCCTGCGCGACGTGCCCGGCGAGCTGTTCGAGTCCATGCGGGTCGACGGCGCGGGGGAGTGGCGCACGCTGTGGAGCCTGGCGCTGCCCCTGACGCGCCCGGCCATCGTCACCGTGGGCATCTACGACGGCCTGATGATCTGGAACGGGTTCCTGTTCCCCCTGGTCCTGACCCAGAGCGCCGAGACCCGCGTGCTGCCCCTGTCCCTGTGGGCCTTCCAGGGCGAGTTCTCCGTGAACGTGCCGGCCGTCCTGGCCGCCGTCGTCCTGTCCGTGCTCCCCATCCTGGCCGCCTACGCCGTCGGCCGCCGCCAGCTCGTCTCCGGGCTGACGGCCGGGTTCGGCAAGTAG	MTARSTRTTPNVLGGLGGWLWLLVVIVPIYYIVVTSLRPQADYYTENPLSWPSAPTIDAYRQVLENDFLRYFANSVIVTGTSVVVILAVSLMASYVVVRSVRRSTSRLFQVFLLGIAIPIQATIIPVYYLIVQLGLYDTLLALILPSIAFAIPLSVLILTNFLRDVPGELFESMRVDGAGEWRTLWSLALPLTRPAIVTVGIYDGLMIWNGFLFPLVLTQSAETRVLPLSLWAFQGEFSVNVPAVLAAVVLSVLPILAAYAVGRRQLVSGLTAGFGK	PGPT0016340_1747	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_00795	936	melD_3	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	GTGACTGCCCCCGCCACCACCGACGTGACCCGGGAGGCCCGCCCCGCGCGGCGGGCCCCCCGGGGCCGGGCGGCGGGCCCCAGCCTGTGGATGGCGGGCCCGGCCCTGGCCTTCTTCGGCCTGTTCGCGTTCGTCCCGCTGATCGGTGTCGTGGTGCTGTCCTTCATGAGCTGGGACGGCCTCGGCACCCCGACGTGGGCCGGGCTCGACAACTGGGGCCGCACGCTGACCGACCCGGTCACGCAGAACGCGATGTGGCTGACCGTCGTGCTGACGGTCGGGACCTGGCTCTTCCAGGCGCCCGTCTCGCTGCTGCTCGGCGTCTTCATGGCGGGCCGCCAGCGCTACCGCGCCGTGCTGTCCGTGCTGTTCTTCCTGCCGCTGCTCTTCTCGGCCGCGGCGGTGGCCATCGCCTTCACCGCGCTGCTGGACCCCAACTTCGGGCTCGGCGCCGCACTGGGGGCCGAGTGGCTCGCGCAGGACTGGATCGGCGACCCCGACCTGGCGATGTGGCTGGTGATCTTCGTCATCGGCTGGAGCTTCATCCCGCTGCACTCGCTGCTCTACCAGTCCGGCGTCCGGCAGATCCCGGCCTCGATGTACGAGGCCGCCCTGCTCGACGGCGCCGGCCGCGTGCAGCAGTTCTTCCGCATCACCGTCCCCCAGCTGAAGTACACGATGGTCACGTCCTCGACGCTGATGATCGTGGGCTCGCTGACGTACTTCGACCTGATCTTCGTCCTCACCGGCGGCGGCCCGGGCAACGCGACCCGCGTCCTGCCGCTGGACATGTACCTCACCGGATTCCGCTCCTACGACATGGGCAAGGCGAGCGTCATCGCCGTCCTGCTCGTCGTCGTCGGGCTGCTGGTCTCGCTCGCCCTCAACCGGCTCTCGGGCGCGAACCGCATGGAGTCGCAGCAGGAGGGAGTCTGA	MTAPATTDVTREARPARRAPRGRAAGPSLWMAGPALAFFGLFAFVPLIGVVVLSFMSWDGLGTPTWAGLDNWGRTLTDPVTQNAMWLTVVLTVGTWLFQAPVSLLLGVFMAGRQRYRAVLSVLFFLPLLFSAAAVAIAFTALLDPNFGLGAALGAEWLAQDWIGDPDLAMWLVIFVIGWSFIPLHSLLYQSGVRQIPASMYEAALLDGAGRVQQFFRITVPQLKYTMVTSSTLMIVGSLTYFDLIFVLTGGGPGNATRVLPLDMYLTGFRSYDMGKASVIAVLLVVVGLLVSLALNRLSGANRMESQQEGV	PGPT0016335_1686	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_00796	1302	dasA_1	COG1653	Diacetylchitobiose binding protein DasA	ATGAAGCTGAGGACAGCACGACGCACCGGCGCCATCGCGACCGCGGTGGCGGTCGCCGCGACGCTGGCCGCGTGCGGCGGGGGCAACCAGCCGGGCGGCGCGTCGAGCGACGGTGCCAGCGCGTGGGCGCTGACCGGGGGGAGCGAGGACATGTTCCGCGCGTCCTTCGAGGACTGGAACGCCGAGAACCCCGAGCGGGAGATCGCCGTCGACTGGTTCGCCAACGACGCCTACAAGGAGAAGATCCGTACCGCCGTCGGGTCCGGCAACGCCCCGACGCTGGTCTACTCCTGGGCCGGCGGGACGCTCGCCGACTACGCCGAGAACGGCAACGTCGTCGACATCTCCGACGGCACGCAGGACCTCCTGGACCGGGTCATCCCGTCCGTGGCCGCCAACGGACAGATCGACGGCACGACCTACGCGGTGCCGAACACGCAGAGCCAGCCGGTCGTCCTGTACTACAACCAGGAGGTCCTGGACGCCGCGGGCGTCGAGGTCCCCACCACCTACGACGAGCTGCTCGACGCCGCGGCCGCGCTCCAGGAGGCCGACGTCATCCCCGTCGCCCTGGCCGGACAGAGCGTCTGGCCCGAGCTGATGTGGATCCAGTACCTCACCGACCGCATCGGCGGACCCGAGGTCTTCCAGGCCGTGCTCGACGGCGAGGAGGGTGCGTGGTCGGACCCGGCGATCGTCGAGGCGACCACGCGCATCCAGGAGCTCGTCGACGCGGGCGCCTTCGGGGACGCGTTCGGCTCGGTCAACGCCGACCAGAACGCTGACATCGCGCTCGTGCAGACCGGCAAGGCCGCCTTCGTGCTGCAGGGCAGCTGGGTCTACCCCAACTTCCTCGAGTCGTCGCCCGAGCTGGTCGAGTCCGGAGGCCTCGGCTACACCACCTTCCCCGCGGTCGACGGCGGCGCCGGCGACCCGACGAACATCGTGGGCAACCCGTCCAACTTCTGGTCCGTCTCGGCCTCGGCCTCTCCCGAGGCGCAGGAGACCGCCAAGGAGTACATCAGCACCCAGGTGCTGTCCGACGAGGCGGTCGACGAGCTGCTGGCGATCGGCACCGTGCCCCCGCTGACGGGCCTCGAGGACCGGATCGCGGAGCAGGAGAACCCCGAGTACCTGGAGTTCGTCTACGGCATGGTCCGCGACGCCCCGCACTTCCAGCTCTCCTGGGACCAGGCGCTGCCGGCCGACCAGGCGCAGGCCCTGCTGGACAACCTCAGCCAGGTGTTCCTGGGGCAGATCGACCCGCAGCAGTTCAGCGAGACGATGGACGCGACGCTGTGA	MKLRTARRTGAIATAVAVAATLAACGGGNQPGGASSDGASAWALTGGSEDMFRASFEDWNAENPEREIAVDWFANDAYKEKIRTAVGSGNAPTLVYSWAGGTLADYAENGNVVDISDGTQDLLDRVIPSVAANGQIDGTTYAVPNTQSQPVVLYYNQEVLDAAGVEVPTTYDELLDAAAALQEADVIPVALAGQSVWPELMWIQYLTDRIGGPEVFQAVLDGEEGAWSDPAIVEATTRIQELVDAGAFGDAFGSVNADQNADIALVQTGKAAFVLQGSWVYPNFLESSPELVESGGLGYTTFPAVDGGAGDPTNIVGNPSNFWSVSASASPEAQETAKEYISTQVLSDEAVDELLAIGTVPPLTGLEDRIAEQENPEYLEFVYGMVRDAPHFQLSWDQALPADQAQALLDNLSQVFLGQIDPQQFSETMDATL	PGPT0016330_1953	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117	NA	NA
AK001_00797	1035	degA_2	COG1609	HTH-type transcriptional regulator DegA	ATGACCGCGACGGGACCACCCCGCGCCACGCTGGCGCACGTCGCGCGCCTGGCCGGGGTCTCGAAAGCCACGGCGTCCAAGGTGCTCAACCGACGTCCCGACGTGTCCGCGCGCACCCGCGAACGGGTCGAGCAGGTGATCGACGAGCTCGGCTACGTCCCGAGCACCGGACCGCGCGGGGGCGACACCCTGGAGAAGGTCAACGTCGTCTTCGACACGCTCGTCAACGTGTACTCGATGCAGGTCCTCGACGGCATCATCACCGCCGCCGACGCGCACGGGGTCGAGGTCCTCGTCGACAAGCTCGACCCGGACCCCGAGGGCGACGGACCGCTGTCGGCGACGTGGATCCGACGGCTCGGGGCCCACGGCCGCACCGGCGTGATCGTCGTGACCTCCGAGCTCACGGCCTCCCAGCGCGCGCTGATGCGTCGCCTGGGACTGAGCATCGTCGTGATCGACCCCCTCAACCCGCTCGACGACGACGTGGCCTCCGTGGGCGCCACGAACTTCACCGGAGGGGTGCAGGCCACCCAGCACCTGCTCGACCTGGGCCACCGCCGGATCGGGTTCGCCGGCGGCCTGCCGGCGTCCATGGCGTCCCGCGAGCGCCTGCAGGGGTTCCTCAGCGCCATGAGCTCGGCCGACGCGCCGGTCGACCCGGACCTCGTGCTCGAGCAGGGCTTCACCTTCACCGCCGGGCTGGAGATGACCCGCCGCATGATGGCGAGCCCCGACCCGCCCACCGCGGTCTTCGCCGGCAGCGACGCGTCCGCCCTCGGCGTGCTGGAGGCGGCGCGCCAGCGCGGGCTGCGCATCCCCGAGGACCTGTCCGTCGTGGGGTTCGACGACACGTACGCCGCCGTGTCGACGGCGCCGCCGCTGACGACCGTGCGCCAGCCGATCATCGACATGGGCCGGGTGGCCCTGCGCACCCTGCTGCAGCAGGCGCGGGGGGAGCAGGCCGACTCCCACCACGTCCAGCTCTCGACCCAGCTCGTGGTGCGGGAGTCGACGGCGCCCGCCGTGCCCTGA	MTATGPPRATLAHVARLAGVSKATASKVLNRRPDVSARTRERVEQVIDELGYVPSTGPRGGDTLEKVNVVFDTLVNVYSMQVLDGIITAADAHGVEVLVDKLDPDPEGDGPLSATWIRRLGAHGRTGVIVVTSELTASQRALMRRLGLSIVVIDPLNPLDDDVASVGATNFTGGVQATQHLLDLGHRRIGFAGGLPASMASRERLQGFLSAMSSADAPVDPDLVLEQGFTFTAGLEMTRRMMASPDPPTAVFAGSDASALGVLEAARQRGLRIPEDLSVVGFDDTYAAVSTAPPLTTVRQPIIDMGRVALRTLLQQARGEQADSHHVQLSTQLVVRESTAPAVP	PGPT0017992_2999	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_00798	966	ppsC_1		Phthiocerol synthesis polyketide synthase type I PpsC	ATGACCACGATGACCGCCCTGCAGACCACGCCCGGTGCGGTGCGACCGGAGCTCGTCCGGGTCCCCGTCCCCGCACCCGCCGACGACCAGGTCCTGGTGCGCACCCGGGCCGTGGCCGTGAACAACGCCGACGTCACCGAGGCCGCCGACGTGCGGATCCCCGGGTTCGAGTTCAGCGGCGAGGTGGTCGCCGCGGGCTCGGCCGTCGACCCGGCGGTCGTGGGTACGGCCGTCATGGGCGTGGGCCCGGGCGCCTTCGCCGAGTACGTCGCGGTCCACCACCGCCACGTCATGCCGGTGCCCGACGGCGTGCCCTCCGACGTGGCCGCCGGTCTGCCCACCGCGCTGCTCACCGAGTACGGGGCCCTGCGGCGTGCGCCGCTGTCCGCAGGCGACACCGTGCTGCTCACCGCCGCGACGTCGGCGATCGGGCTGGTGGGCGTCCAGGTCGCCACCGAGCTCGGCGCCGGCCGCGTCATCGCCACGACCCGGAGCGAGGAGCGGCGTCCGCTGCTGGAGGGCGTCGGTGCCCACGACGTCGTCGTGACGGGGACGGAGGACCTGGTGGCCCGCGTGCGCGAGCTGACCGGCGGCACGGGCGCCGACGTCGTCCTGGACCACGTCGGCGGTGCCGTCCTCGACGACGCGATCGCCGCCGTCCGACCGGGCGGGCGTGTCGTCAGCGTGGGCCGGCTGGCCGGACCGACGGCCGAGATCGACCTCTTCGCGCTCGCGCGCAGCGGTGCCGTGCTGCAGTCCGTGTCCTTCGGGTTCACCCCGGTCGAGGTCATCGGGGGCCTCTTGGAGGGCGTGACACGGGACCTGTCGGACGCGGTCTCGCAGGGGCGGGTCGCGCCGGTCGTGGGGCGGCACACCGCCTTCACGGACCTGCCCGCGACGCTCGCGGCGCTGGCCGCGGGCGAGCACGTCGACGGCAAGACCGTCGCGAGCCTCGGCGACGCCTGA	MTTMTALQTTPGAVRPELVRVPVPAPADDQVLVRTRAVAVNNADVTEAADVRIPGFEFSGEVVAAGSAVDPAVVGTAVMGVGPGAFAEYVAVHHRHVMPVPDGVPSDVAAGLPTALLTEYGALRRAPLSAGDTVLLTAATSAIGLVGVQVATELGAGRVIATTRSEERRPLLEGVGAHDVVVTGTEDLVARVRELTGGTGADVVLDHVGGAVLDDAIAAVRPGGRVVSVGRLAGPTAEIDLFALARSGAVLQSVSFGFTPVEVIGGLLEGVTRDLSDAVSQGRVAPVVGRHTAFTDLPATLAALAAGEHVDGKTVASLGDA	PGPT0013255_4206	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_00799	681			hypothetical protein	ATGTCTCGACGACCGCCCCGGTCCCGCGCGCTGCTGCGCGCCGGCGCCTTCGCCGTCGCCGGCTTCGTCCCCATGCTGGTCCTGGCCTGGTTCGTCCGGTCGAGCGCCGCCGTGCAGGACGCCGACCAGTCGGTGGTCGACGCCGCGACCGCGGTCACGCTCGACCACCCCTGGTTGCAGGACTTCTTCGTGGTCTGGTCGGCCGTCACGCAGCCCGGCTGGGTCGTGCTCGCCGGCGCACTGCTCGCGCTGTGGATGTGGCGACGCCGCGGCTACCCCGGGCGCGCCCTGTGGGCCGTGGGCACGCTGCTCGTCTCGTGGGGGCTGGCGAACCTGGCCAAGCTGGCCGTCGGACGGGTGCGGCCGGAGATCGACGAGGTGATCCTCAGCGCCCCCGGGCTCAGTTTCCCGTCCGGGCACGCGACGTCGTCGACGACGGCCGCCGTGACGCTCACCCTGCTCGTCTGGCCCGTCCTCGGCCGCACCGGACGCGTCGTCGTCCCCCTCGCCGCGACGACGTTCGCGCTGATCACCGCCGCCGACCGGATCTTCCTCGGGGTGCACTTCCCCTCCGACGTCCTCGGCGGCATCCTCCTGGGCGTCACCATCTCCGGCGCCTCCTACCTCGGATACCGCGGGTGGTCACCCACGACCCGCACGACAGATGCGGAGCATCGATGA	MSRRPPRSRALLRAGAFAVAGFVPMLVLAWFVRSSAAVQDADQSVVDAATAVTLDHPWLQDFFVVWSAVTQPGWVVLAGALLALWMWRRRGYPGRALWAVGTLLVSWGLANLAKLAVGRVRPEIDEVILSAPGLSFPSGHATSSTTAAVTLTLLVWPVLGRTGRVVVPLAATTFALITAADRIFLGVHFPSDVLGGILLGVTISGASYLGYRGWSPTTRTTDAEHR				NA	NA	NA	NA	NA
AK001_00800	705			hypothetical protein	ATGAACACGTTCGTCCACCGTTACGAGCTCGACACGAGCAGACCGACGGGCAAGTCCGCGGCCCGGGACGCCGCGACGCGGGCGCTGCTGCCCGCCCTGGGCGGCTGGCTCGTGCTGATCGGCGTGGGCTTCCTCGTCGTCGGGCCCCTGGACGACTACCCGGAGGGCAACGCGGTCGAGGAGTGGTTCGCCGCGCACCGGACCCCCACGATGAACACGGTCTCGGAGTGGGTCGGTCGCTTCGGCATGACCGAGGTGGTCATCGGCGTGACGGCACTGACCGTCGCGATCCTGTGGTGGCGCACCCGCCAGTGGTGGTTCGCCGTCGTCCCGGCGCTGGCCGTCTCCCTGCAGTCGCTGCTGTTCATCACGAGCTCGGCCCTGGTGGGTCGCGAGCGCCCCGACGTCGAGAAGCTGGACGACGCGCCGCCGACGTCGAGCTTCCCGAGCGGGCACACCGGGGCCTCCACGGCGCTGTGGCTGACCATGGCGATGCTCGCCCAGCGCATCGAGAACCCGGCGCTGCGCCGGGTGGTCACCGTGGTCTGCGTGACGATCCCGTTCCTCGTCGGCCTCTCGCGGATCTACCGCGGCATGCACGGCCCGCTGGACGTCGTGTTCGGTCTGCTCAACGGTCTGCTGTGCGTGGTCGTGGCCTGGTGGTACCTGCGGCGGGACACGTCGACCGGCACGGCGCGGCGCTGA	MNTFVHRYELDTSRPTGKSAARDAATRALLPALGGWLVLIGVGFLVVGPLDDYPEGNAVEEWFAAHRTPTMNTVSEWVGRFGMTEVVIGVTALTVAILWWRTRQWWFAVVPALAVSLQSLLFITSSALVGRERPDVEKLDDAPPTSSFPSGHTGASTALWLTMAMLAQRIENPALRRVVTVVCVTIPFLVGLSRIYRGMHGPLDVVFGLLNGLLCVVVAWWYLRRDTSTGTARR				NA	NA	NA	NA	NA
AK001_00801	693			hypothetical protein	ATGACTGAAGGAACCGACGCGCGACCGCGCAGCGAGCAGCTCGAGATCACCCGGATCGTGCTCCGGCCGACGGGCAACCCGCTGCCGCTGGGCTTCATGTCCCTCGCGGTGGCCACCGTCGGGTTCAGCTGCCTGCAGCTCGGGATCCTCAGCACCGCCGAGGAGAGCACGGTGGCGCTCGCCGTCCTCGTGCTCACCGTCCCGCTGCAGCTGCTGGCCGCGATCATCGGGTTCGGCGCCCGCGACCCCATCGCGGGTACCGGCATGGCCGTGGTGTCGGGGGTGTGGGCGATGCTGGCCGTGTCGACGCTGACTTCCCCGCCGGGGACGTCGAGCCCCGCGCTCGGCGTCCTGCTCCTGACGGCGGCGCTCGCGATGGTGGTCCCGGCCCTGGCGGCGGGCGGCAAGATCGTCGCGGCCGCCGTCATGATCGGCTCCGGCGTGCGGTTCGCGGTGACCGGCGTCGCGGAGTTCACCGGGTCCGGCGGCTGGGAGACGACCGCCGGCGTCCTCGGCCTGGTCCTGGCCGCGATGGCGCTGTACGCCGCCCTCGGGTTCGTGCTCGAGGAGGTCGACCACCCGGTCCGTCTCCCGGTGCTGCGCCGCGGCGCCGGCCTCAAGCCCCTGCGCGACGACCTCGAGGAGCAGGTCGAGGGCGTCGCGCGGTCGGCCGGCGTCCGCCAGCAGCTCTGA	MTEGTDARPRSEQLEITRIVLRPTGNPLPLGFMSLAVATVGFSCLQLGILSTAEESTVALAVLVLTVPLQLLAAIIGFGARDPIAGTGMAVVSGVWAMLAVSTLTSPPGTSSPALGVLLLTAALAMVVPALAAGGKIVAAAVMIGSGVRFAVTGVAEFTGSGGWETTAGVLGLVLAAMALYAALGFVLEEVDHPVRLPVLRRGAGLKPLRDDLEEQVEGVARSAGVRQQL				NA	NA	NA	NA	NA
AK001_00802	213			hypothetical protein	ATGAGCACGAACCAGTACCAGGTCACCGGCATGACGTGCGGACACTGCGAGATGTCGGTCCGCGAGGAGGTCGGCGCGGTCCCCGGGGTCGAGGAGGTCCAGGTGAGCGCGGAGTCCGGCACGCTCGTCGTCACCGGATCCGACGCTGTCGACGAGTCGAAGGTCCTCGCGGCCGTCGACGAGGCGGGCTACTCCGCGGTCCCCGTCGCCTGA	MSTNQYQVTGMTCGHCEMSVREEVGAVPGVEEVQVSAESGTLVVTGSDAVDESKVLAAVDEAGYSAVPVA	PGPT0004125_1700	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213	NA	NA
AK001_00803	978			hypothetical protein	ATGACCGAGCAGCACCGCACCGACCGGACCGACGCCGAGGGCGCGACGACAGACGGCGGGGACGCGACGCAGGCCGTCCCGGCGCCGACCGGCCGGTTCCCGACCGACCGCTCGACGCCGGACACGCAGGTGCTCGGCGCGGGCGACCCGCAGGAGACCCGGCCGCTCGACGTCGGCGCCGGCGAGGACACGCGGGTCGTCGACGCGGGTGCGGGCCAGGACACCCAGGTCCTCCCCGGTGGGGGCGTACCGCAGACCCGGCCTCTGGCCGGCCGCCCGCACCGGGAGTCCGTGATGCCCGCCGACCGGGGGTACGGCGCCGCCCCGTGGGCGCACCGGTCCGCACCGGAGGGTCCGTCCTCCCCGGCACCGGCGCAGCGCCCCGCACCCTGGCCCGGGACGGCCGCACCGCAGCCGGGGCCCGCGGCGCCGCAGCGTCCGGCACCACCTGCCCCGGCGCAGCGCGCGCAGGCCGGCGGCACGGGCGGACGTCGCGGCACGGAGCCGACGGCGGTCGCGTCCCTGGTCACCGGCCTGCTCGGCATCGTGGTGCCCCTGGTGGGCGTCCTGGCGATCGTGCTCGGCGGGATCGGACTGGACCGCACCCGCCGGCGCGGGACGAACGGCCGCGGCATGGCGCGGACGGGGCTGACGCTCGGGTCGCTGCAGGTGCTGTTCACGACGCTGCTGGTCGTCGGCGGCCTGATGTTCTGGAACGCCTACGGCGAGGACATCGAGGCCGGCCTGGCCCAGGTCGACGCGATCGCCGAGGGCGAGATCAGCGTCCCGGACGTCGTCCTCGGCGGTCTCACCGGGGACTACTCCTTCGACGACCTGCAGGAGCTCGGCGGCCTGGTCGGCGACGCCGACGAGCTGCAGGAGCTCGGCGGTCAGTGCCGCGCGGGCGAGGCCGCGGCGTGCGAGGACCTGCTCGACCGGGTGCCCGACGACCTGCTGCAGAGCTTCGGCGCGCCGTGA	MTEQHRTDRTDAEGATTDGGDATQAVPAPTGRFPTDRSTPDTQVLGAGDPQETRPLDVGAGEDTRVVDAGAGQDTQVLPGGGVPQTRPLAGRPHRESVMPADRGYGAAPWAHRSAPEGPSSPAPAQRPAPWPGTAAPQPGPAAPQRPAPPAPAQRAQAGGTGGRRGTEPTAVASLVTGLLGIVVPLVGVLAIVLGGIGLDRTRRRGTNGRGMARTGLTLGSLQVLFTTLLVVGGLMFWNAYGEDIEAGLAQVDAIAEGEISVPDVVLGGLTGDYSFDDLQELGGLVGDADELQELGGQCRAGEAAACEDLLDRVPDDLLQSFGAP				NA	NA	NA	NA	NA
AK001_00804	1404			hypothetical protein	GTGAGCACGTCACCGGATCCTGGGGCGCCGGCACCGGCGCGCCGCCGTCGTGCCCGCTGGTGGTGGCTCGGGGGCACGCTCGTCCTGCTGCTCACCGGCGCGGCGTTCGTCGTGGCCGAGCTGGAGCACCGCGCCTGGGTCGAGACGGTGGCGGAGTACGAGGCGGAGGTCGCCCGGCTCACCGCGGAGGCCGAGACCTCGCGCTCCGAGGCCGAGGACGCCTACGCCGACGGCCTCGCCACGCTCACCGGGGCGATCGACCAGGCCCGACCGGTCTACCGGGCGAGCGAGGACCAGGTGGCCGACCCCGCGGTGCGGGACCCGCTCGACGACGCCCTGGCCGAGGGCCGCCGGCTCCGCGACGCCGAGGTCGCCTACCCCGTCGAGACCCGCACGGTGGAGGCGGTGACCCGGCCGAACCCGTTCTTCGCCCAGGAGCTCCCCGCGGTGACCGTCGAGGTCGTCGACGCCGCGCAGCCGGACCCGGCAGCGCTCGAGTCGGCGGCGACCGACCTCGTCACGACGGCCGACACCGTGGCGACGGCCCGCCGCGAGTGGGCGGTCGCGGAGCTGCGGCCCGCCACCGACGAGGGGCGCTACGCCCTGACCGGCCTGCGCGCGCAGGACACGGACCTCGGCCTCGGCACCCTCGACGACGCGGTCACCGAGGCCGAGGCCGTCCTGGACGCCGGGGTGGACGCCGTCGACCCGGACGAGGCCGTCGCCTTGCGGGACACCCTGCTCGAGACGTCCGCGTCGCTGTGGCGCACCCGGCTGGACCAGATCACCGCCGAGCGCCGTGCGGCAGCGCGTGCCGACGGCGTCGACTGCCGCGTGGACCAGTGCGTCGCCCTGACCTTCGACGACGGTCCGGTCGCGGAGACCGAACGCCTGCTGCGCATCCTGGAGCGCAAGGACGCGCCCGCCACGTTCTTCATGGTCGGCGACAACGTCGCGAAGAACCCGCAGATCGCCCGGGCGGTGGCCGACGGCGGGCACCTGGTCGCGAACCACTCCTGGAGCCACCCGCAGCTCACCACGCTGGACGACGCCGCGGTCCGCGAGGAGCTGCGCAGCACCTCCGAGGCGATCGCCGACGCCACCGGGACCACCCCGTTCCTGCTGCGGCCGCCCTACGGCGACGTCGACGGCCGGGTCCGCACGCTCGCGACCCGCACCGGGCTCGACGTCATGACCTGGAACCTCGACACGCTCGACTGGCAGACCCGCGACGCGAAGGAGACCCGTCGGGCCGTGCGGCAGCAGGTGGAGCCCGGCAGCAACGTGCTGATGCACGACATCCACGCCACCACCGTCGACGCCGTCGGCAAGATCATCAAGGACCTGCGCGACGAGGACTACGTGCTCGTCACGGCCGACCTGCTCGTCGAGGACGAGGACTGA	MSTSPDPGAPAPARRRRARWWWLGGTLVLLLTGAAFVVAELEHRAWVETVAEYEAEVARLTAEAETSRSEAEDAYADGLATLTGAIDQARPVYRASEDQVADPAVRDPLDDALAEGRRLRDAEVAYPVETRTVEAVTRPNPFFAQELPAVTVEVVDAAQPDPAALESAATDLVTTADTVATARREWAVAELRPATDEGRYALTGLRAQDTDLGLGTLDDAVTEAEAVLDAGVDAVDPDEAVALRDTLLETSASLWRTRLDQITAERRAAARADGVDCRVDQCVALTFDDGPVAETERLLRILERKDAPATFFMVGDNVAKNPQIARAVADGGHLVANHSWSHPQLTTLDDAAVREELRSTSEAIADATGTTPFLLRPPYGDVDGRVRTLATRTGLDVMTWNLDTLDWQTRDAKETRRAVRQQVEPGSNVLMHDIHATTVDAVGKIIKDLRDEDYVLVTADLLVEDED	PGPT0018645_551	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278	NA	NA
AK001_00805	2442			hypothetical protein	ATGAGCAGGACGAGATCAGTCAGGACCGTGACCGCACTTCTCGCCGCGGCCGCCGTCGCCGGGCTCCCGGCCCTGGCGGCCCAGGGTTACGACCCGACCGGAGGGACCGTCTACGAGCTGGGCGACGAGCAGTGCCTGAAGGGCACCGGCAACTGCGCGATCTACCCGAAGTCCGTCCAGCTGCCGTCGGGGCGGCTCGTGATGGCCTTCGAGCGGTCGACCGTCGTGGCGGAGACCGGCAGCGCCGACGGGCAGACCCTGCCGGTCTACGCGAGCGACGACCACGGCGAGTCGTGGCAGCCGCTGTCCGAGGTCGATCCTCCCGCGTACCTGAGCGACGACCCCGAGTACGACCCGTACATCAGCAACTGGACCAACCCCAACCTGTACGTGCTGCCCCAGGACGTCGGTGACCTCGCGGCCGGGACGCTGCTGCTGGCCAGCGTCGTCTCCGGCGACGACCACTACTTCCTCGAGCAGAAGGCCGCGGACCCCTCGTGGGTGCCGGACAACGACGGCGACCGGAGCGACCTGGCGATCGCGCTGTTCGCCTCGACCGACGAGGGCGCCTCGTGGGACGTCGTCGACATCGTCGCCCGGGGCGGGTGGCAGGGAGGCTCGGCCGGCGCGATCGGCGGCCGGATCTCCTCGGCCAACACCTTCGCGCAGGTGGACCCGGTGTGGGAGCCGCAGCTGAGGGTGCACGACGGTCTGCTCGTCGCCTACTACTCCGACGAGAACGACTACCTCGGCTTCGACCCCGCGACGGGCGTGGCGCAGGTCGACCCGGACAACGACACGGCGCCGGACTCGCACGGCCAGATCCTGGTCCACCGGACCTGGGACGGCGTCAGCGCCGAGTGGAGCGACCCGGTCGTGGACACGCCGGGGCTGACGGTCGACCGCGGGGCGGGCAAGACGCAGATCGGTGGCGGCCGGCCCGGCATGACGTACGTCGTGCCGACCAGCGACGACCAGTGGCTGATGACGTTCGAGTACTTCGGCGGCGGGACCGTCGCGCGGTACAAGATCGCCGACGACCCGCTCGCGTTCCACGCCGACGGGACGGCCGCCGGTGCCGGGATCGAGGGGCTGCCGGTGACCCCGGGGTCCGGCACGCTGGCCCCGGGCGGCAGCCCGGTGCTCGAGCGGTTGCCCGACGGCCGGATCCTGTACAACTCCTTCGGCAGCGGCAACATCTGGGTCAACGAGTCCGGGGCGAGCGACGGGACCTGGACGGAGCACCAGGCACCCATCGGCACCGGCTACAGCCGGGCGCTGCAGTACGTCGAGGGCACCGGACGCGTCGCCATCCTCCAAGCCGTCTGGGGCGGCCCGACGAGCGGCGCCGTCGTCCGGCACGCCGAGGTCGACCTCGGCGACTCGGACGGGACCTACTACCGGCTGACCAACCGCGCCTCCGGCCAGGTGATCGGGACCGGCGGCAACACCACGGACGCGAACATCGGCAACGCGGACGTGCCGGACGTCGTCGCCGAGCCGCAGGACGCTGCCGCCGACACCCAGTACTGGCACGTCATGACGCGGCCCGACGGCGCGGAGACCTTCCTCAACAAGTCCGGCGGGCGGGCGGCCGCGGTGTGGACCGGGTTCCCCAGCGTGGGCCAGCGGGTCGGCCAGTGGGTCGACGACCAGGACACGGGCAGCTGGAACCTCGTCGAGACCGGCGACGGGGGCTACCGGATCCAGTCGGCGGGGGCGACCGACCTCTACCTGACCGCCCCGGCGGGGTCCGGCGCGGTGACGCTGCAGAACGCCACCGGGGACGACACCCAGGTGTGGGAGCTGACCCCGCTGGCCCCGACGGGGGAGGACCTGACGGGCACGCACCGCTCGCAGAGCCTGATCGGTGCCGACCCGGAGGGCGCCGGAGCCGAGCTGCCGCTCGACGCCGCCGGGTTCGACCCGGCGGGCGACCCGCTGCGGGCGGACACGACGGGGCACGCCTACGTCCTCACGGACGCCGGCGTCACCTCCCTGGGTCCGGTCGAGCTCGACGCCGCGCAGCAGGGTGTCGTGACCCTTCCCGGCGACCTCGCCGCGGGCACGTCGTTCCGGGTCGCGGTGCTGACCGACGACGCCCCGGTCGTCTGGGACGAGGCGGTCGTCGGAGGTGACGTGTCCGAGCCGACGCTCCCGACGGAGGTGACGGTGAAGCCGCGGTGCATGGCGGGAACGGCCTACGTGGCGGTCCGCGTCCGGAACGTCGGCGACGTCGCGATCGACGTCGAGGTCGTCACGCTGGCCGGCAGCACGACGTTCACCGACGTCGAGCCGGGCCGGCACGCGTACCAGTCGTTCTCGACGGGTGAGCCGTCGGTCCCGGCGAGCACCGTGACGGTCACGGCGTCGGCGCAGATCGCCGGCGACGAGGTCGTCACCACGCACGAGGAGCCCGTGGACCCGATCAGCTGCGGCTGA	MSRTRSVRTVTALLAAAAVAGLPALAAQGYDPTGGTVYELGDEQCLKGTGNCAIYPKSVQLPSGRLVMAFERSTVVAETGSADGQTLPVYASDDHGESWQPLSEVDPPAYLSDDPEYDPYISNWTNPNLYVLPQDVGDLAAGTLLLASVVSGDDHYFLEQKAADPSWVPDNDGDRSDLAIALFASTDEGASWDVVDIVARGGWQGGSAGAIGGRISSANTFAQVDPVWEPQLRVHDGLLVAYYSDENDYLGFDPATGVAQVDPDNDTAPDSHGQILVHRTWDGVSAEWSDPVVDTPGLTVDRGAGKTQIGGGRPGMTYVVPTSDDQWLMTFEYFGGGTVARYKIADDPLAFHADGTAAGAGIEGLPVTPGSGTLAPGGSPVLERLPDGRILYNSFGSGNIWVNESGASDGTWTEHQAPIGTGYSRALQYVEGTGRVAILQAVWGGPTSGAVVRHAEVDLGDSDGTYYRLTNRASGQVIGTGGNTTDANIGNADVPDVVAEPQDAAADTQYWHVMTRPDGAETFLNKSGGRAAAVWTGFPSVGQRVGQWVDDQDTGSWNLVETGDGGYRIQSAGATDLYLTAPAGSGAVTLQNATGDDTQVWELTPLAPTGEDLTGTHRSQSLIGADPEGAGAELPLDAAGFDPAGDPLRADTTGHAYVLTDAGVTSLGPVELDAAQQGVVTLPGDLAAGTSFRVAVLTDDAPVVWDEAVVGGDVSEPTLPTEVTVKPRCMAGTAYVAVRVRNVGDVAIDVEVVTLAGSTTFTDVEPGRHAYQSFSTGEPSVPASTVTVTASAQIAGDEVVTTHEEPVDPISCG				NA	NA	NA	NA	NA
AK001_00806	1365			hypothetical protein	ATGCGCACCACCATCCGTCCACAGGCTCGTCGAGCCTCCGCCGCCGTCGCCGTCGGCCTCCTCGCAGCAGGCCTGCTCAGTGCCTGCGGTGGAGCCGAGACGGGGGCCGACGCCGGATCCTCCGAGCCCGACCCCGAGGCCGCGGCCGACCTCGACGCCGCCCTCGAGGAGGGTGGCGAGCTGACCTACTGGACGTGGACGCCGTCCGGCGAGGACCAGGCCGCCGCGTTCATGGAGCAGTACCCGAACGTCACGGTCGAGGTGGTCAACGCCGGCACCGCGACGGACGAGTACACCAAGCTCCAGAACGCCATCGCGGCCGGCTCGGGAGCCCCCGACGTGGCGCAGATCGAGTACTACGCCCTGCAGCAGTTCGCGATCTCCGACAGCCTCGTGGACCTGAACACCCTGGGGCTCGGCAGCCTCGAGGACCAGTACACGGCCTCGACCTGGGCGCAGGTCAGCGTCGAGGGCGGCCTGTACGGCCTGCCGCAGGACTCCGGCCCGCTCGTCCTGATGTACAACCAGGACCTCTTCGACGAGCACGGCATCGAGGTGCCGACCACCTGGGACGAGTACGTGGCCGCCGCCGAGACGCTGCACGAGGCCGACCCGTCGACGTACATCACCAACGACGCCGGGGACCCCGGCTTCGTCCAGCCGCTCATCTGGCAGGCCGGCGGTCACCCGTACACCGTCGACGGCACGACCGTGAGCATCGACCTGCAGGACGAGGGCTCCCAGCGCTGGGCCGACATGTGGAACCAGATGCTCGAGCCGGGCCTGCTGGCCGACATCCCCACGTGGTCGGACGACTGGTGGAAGGCGCTGGGCAACGACACGCTCGCCACGATCGTCACCGGGGCCTGGATGCCGGGCATCCTCGAGGGCTCCGTGCCCGAGGGCGCCGGCAAGTGGCGCGTCGCCCCGATCCCGAGCTACGACGGTGACCCGACCACGGCGGAGAACGGCGGCAGCTCGCAGGCCGTCATCAAGCAGTCCGAGAACCCCGAGCTCGCGGCGGCGTTCGTGCGCTGGCTCAACAGCTCCGAGGAGAGCGTGGACGTGTTCCTCGAGTCCGGCGGCTTCCCGTCCACGACGGCGCACCTCAACGACCCGGAGTTCCTCGAGGCCGCGCCGGAGTACTTCGGTGGCCAGAAGATCAACGAGGTCCTCGTCGAGGCGTCCGAGAACGTGTCGACCGACTGGCAGTACCTGCCGTTCCAGGTCTACGCCAACAGCGTCTTCCCGGACACCGTGGGCCAGGCCTACACGCAGAAGAGCGACCTCAACGAGGGCCTCGTCGCCTGGCAGGACAACCTCGTCTCGTACGGCAGCTCCCAGGGCTTCACCGTCGAGCAGTGA	MRTTIRPQARRASAAVAVGLLAAGLLSACGGAETGADAGSSEPDPEAAADLDAALEEGGELTYWTWTPSGEDQAAAFMEQYPNVTVEVVNAGTATDEYTKLQNAIAAGSGAPDVAQIEYYALQQFAISDSLVDLNTLGLGSLEDQYTASTWAQVSVEGGLYGLPQDSGPLVLMYNQDLFDEHGIEVPTTWDEYVAAAETLHEADPSTYITNDAGDPGFVQPLIWQAGGHPYTVDGTTVSIDLQDEGSQRWADMWNQMLEPGLLADIPTWSDDWWKALGNDTLATIVTGAWMPGILEGSVPEGAGKWRVAPIPSYDGDPTTAENGGSSQAVIKQSENPELAAAFVRWLNSSEESVDVFLESGGFPSTTAHLNDPEFLEAAPEYFGGQKINEVLVEASENVSTDWQYLPFQVYANSVFPDTVGQAYTQKSDLNEGLVAWQDNLVSYGSSQGFTVEQ	PGPT0016545_2841	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_00807	900	araQ_1	COG0395	L-arabinose transport system permease protein AraQ	ATGGTCCGGTCACGCACGATCAACCCCCGGGTCCGCCGTCGGGCCTTCTCGGTCACCCGGCCGCCGAAGTCCACGGCCCTGACCCTGGTCATGATCCTGTTCCTGTTCTACGCACTGGTGCCGCTGGTGTGGCTGTTCATCAACGCCACGAAGACGCAGGGCGACCTTTTCTCATCGTTCGGCCTGGCGTTCGGCAGCTCGTTCGCGCTGTGGGACAACGTCGTGGCGACGTTCACCTACGACGACGGGATCTACCTCCGCTGGCTCGGGAACACGCTGCTGTACGTCGTCGTCGGCGCCGGCGGGGCGACCCTGCTGGCCACGTTGGCCGGCTACGGGCTCGCGAAGTTCCGGTTCCCCGGGCGCAGCGCCTACTTCGCCGTCGTGCTCGGAGCCGTGGCCGTGCCCGGCACGGCGCTCGCGGTGCCGACGTTCCTGCTGTTCAGCCAGCTGGGGCTGACCAACACGCCCTGGTCGATCATCATCCCGTCGCTGATCAGCCCGTTCGGCCTCTACCTGATCTGGGTCTACACCATCGACTCGGTCCCGACCGAGCTGCTCGAGGCGGCCCGGCTCGACGGCGCCACCGAAATGCGGACGTTCTTCACCGTCTCGATCCGGCTGCTCACGCCGGGCATCGTGACGGTGGCGCTGTTCACCATCGTGGCGACCTGGAACAACTACTTCCTGCCCCTGATCATGCTCAGCGACCCGCAGTGGTTCCCGCTGACGGTGGGGCTCAACCAGTGGAGCTCGCAGGCCGCCGGCGTCGCGGCGGAGCCCATCTTCAACCTGGTGATCACCGGCTCGCTCGTCGCGATCGTGCCGATCATCGCCGTCTTCCTCTTCCTGCAGCGCTTCTGGCAGTCCGGCCTGAGCGCCGGGAGCGTCAAGCAGTAG	MVRSRTINPRVRRRAFSVTRPPKSTALTLVMILFLFYALVPLVWLFINATKTQGDLFSSFGLAFGSSFALWDNVVATFTYDDGIYLRWLGNTLLYVVVGAGGATLLATLAGYGLAKFRFPGRSAYFAVVLGAVAVPGTALAVPTFLLFSQLGLTNTPWSIIIPSLISPFGLYLIWVYTIDSVPTELLEAARLDGATEMRTFFTVSIRLLTPGIVTVALFTIVATWNNYFLPLIMLSDPQWFPLTVGLNQWSSQAAGVAAEPIFNLVITGSLVAIVPIIAVFLFLQRFWQSGLSAGSVKQ	PGPT0016540_1216	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_00808	927	lacF_2		Lactose transport system permease protein LacF	ATGACCACGCTCACCCCCCCGAGGGTGACCCCGGCACGGGTCACCCAGGAGATCCGCACACCGAAGCGTCGCTGGACCGGTTGGCAGTTCACCTGGCCGTTCGCCGCCGTGTTCGTCGTCGCGTTCATCGCGCCGCTGCTCTACGCCCTGTGGCTCAGCCTCTTCCAGAACCAGCTCGTCGGCGGCAACGCGTTCGTCGGCCTCGACAACTACGTCCTGGCGTTCAACGACCCGGCCTTCTGGGCGGGCTTCGGGCGTGTCTTCCTGTTCCTGCTCGTGCAGGTCCCGATCATGCTGCTGCTCGCCCTCGCGGCCGCCCTCGCCATCGACAGCGCACGGCTGTACGCGACCGGGTTCTTCCGCATCGTGATCTTCCTGCCGTACGCCGTGCCCGCCGTCGTCGCCGTGCTCATGTGGGGCTTCATCTACGGCGACAACTTCGGTCTCACCGCGAGCATCAACGACTGGCTCGGCAGCGACGTCCTGGCGCCGTTCGCCCCGCAGTGGATGCTCGTCTCGATCGGCAACATCGTGACCTGGGAGTTCGTCGGCTACAACATGGTGATCTTCTACTCGGCGCTCAAGACGATCCCCACGGACGTCTACGAGGCGGCCGAGATCGACGGGGCCCGGGGCTGGCAGGTCATCAAGGCCATCAAGCTCCCCGCGGCCCGCGGAGCGATCGTCATCGCCACGATCTTCTCGATCATCGGCAGCTTCCAGCTCTTCAACGAGCCGAACGTGCTGCAGCCGTTGGCCAACAACGTCATCACCAGCTCGTACACCCCGAACATGTACGCCTACTCGCTGTCCTTCGCCGGCCAGCAGTACAACTACTCCGCCACCGTCGCCATCATCATGGGCGTCATCACCGCGGCCATCGCCTACGTGGTGCAGCTGCGCGGTTCCCGGAAGGAGGACCGCTGA	MTTLTPPRVTPARVTQEIRTPKRRWTGWQFTWPFAAVFVVAFIAPLLYALWLSLFQNQLVGGNAFVGLDNYVLAFNDPAFWAGFGRVFLFLLVQVPIMLLLALAAALAIDSARLYATGFFRIVIFLPYAVPAVVAVLMWGFIYGDNFGLTASINDWLGSDVLAPFAPQWMLVSIGNIVTWEFVGYNMVIFYSALKTIPTDVYEAAEIDGARGWQVIKAIKLPAARGAIVIATIFSIIGSFQLFNEPNVLQPLANNVITSSYTPNMYAYSLSFAGQQYNYSATVAIIMGVITAAIAYVVQLRGSRKEDR	PGPT0016535_5051	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_00809	2136	bgaA	COG1874	Beta-galactosidase BgaA	ATGGACCCACGCCCCGCGCCCTCGCTCCCGACCGGAGCGCTGTTCGGCGTCGCCTACTACCCCGAGTACCACCAGCGCGACCGGATGATCGAGGACCTCGACCTCATGGTGCAGGCGTCGATCACCGTGATCCGCGTCGGCGAGTCGGTCTGGTCCACCTGGGAGCCGGAGGACGGCCGCTTCGAGCTCGAGTGGCTGGCCCCGGTCCTGGACGCCGCGCACGAGCGGGGGATCGCCGTCGTCCTCGGGACGCCGACCTACGCGGTCCCGCCGTGGCTGCAGACGGCGCACCCCGAGATCGCGGGGGAGCGCCGCACCGGCGAGCCCATCCCGTGGGGCGCCCGGCAGGAGGTCGACTACACCAACCCGACGTTCCGCCACTACGCCGAGCGGATCGTCCGCCGCATCACCGCGCGGTACGCCGACCACCCGGCCGTGATCGGCTACCAGGTGGACAACGAGCCGGGCCTGGAGCTCTTCCACAACCACAGCGTGTTCACGCGGTTCGTCCGGTCGCTCAAGCGGCAGTACGGCGACGTCGGGACGCTCAACCGCGAGTGGGGACTGACCTACTGGTCGCACCGCCTCGCGGACTGGAGCGAGCTGTGGCGGCCCGACGGCAACTCGTTCCCCCAGTACGACCTGGCGTGGCGACGATTCCAGGCCGAGCAGACCTCGGAGTTCATCGCCTGGCAGGCGGGCATCGTCCGCGAGTACGCCCGGCCCGAGCAGTTCGTCACCACGTGCCTGCAGTACCCGCGCCGGGGCCTCGACGACCGCGGGCTCTTCACCTCGCTCGACGTCACCGCCGGCAACCCGTACTACGGGATGCAGGACCGGCTCGACGCCTCGGTGGAGAAGTCCGCGCCGAACTACTGGACCACCACCAGTGTCGCCGGGCTCTTCCGGCAGGCCGACCGGCTCTACTCCTCCCAGCAGGACCGCTACCTCGTCACCGAGACCAACGCCCAGGCCATCGACGACGCGTCGACCAACTTCCCGCCCTACCCGGGCCAGCTCAAGCAGGCCGCGATGGCGTTCGTCTCCCGCGGTGCCGCGATGATCGAGTACTGGCACTGGCACACGCTGCCCTACGGGGCCGAGACCTACTGGGGCGGTGTGCTCCCGCACAGCCTCGTCCCCGGGCGCGTCTACGACGAGGTGTCCGAGATCGGCGCCGAGCTGCGCGAGATCTCGCCGCTGCTCGACGGCTACGAGCCGGACGCCGACGTCGCGGTGCTGTGGTCGAACCCGAGCCGGTACGCGTTGCAGTACATGCCGCCCTTCACGATCGGCGGCACGCCGGACGACGAGTCGTTCGAGCACGTCTTCGACGCCTTCCACGCCGCCGTCGTCGAGACCGGCCGCCAGGCCCGGGTGCTGCACCTGGAGCAGGCCCTCGAGCGCGGCGCGGCCGAGATGGCGCGCCGGTTCCCCGTGCTGGTCGCCGCCGGCCTGTACGTCACGACCGACGCCGAGCTGGCCTTCCTGCGCGAGTACGCCGAGCACGGCGGCCACCTCGTGCTCGGCGTGCGCACCGGGTACGCCGACGACGAGGCCCGGGCCCGGGTCGACGTCGCCCCGCCGGGGCTCGCGGCCGCCGCCGGCGCCTCCTACGAGGAGTTCTCGAACCTGGAGGACGAGGTCACCGTCATCGGGTCCGACGAGCTCCCCCTCCCGCTCTCGGCGATCGGCCGGTACTGGGTCGAGTGCCTGCGGCCCGACGGCGCGACGACGCTCGCGACGTACGCGCACCCCCGGTTCGGCGACTTCGCCGCCGTGACCACCCACGAGCACGGCGCCGGCCGCGTGACGACGGTGGGCTGCGTGCCCGGCCGCGACCTGGCACGCGCCGTCGTCGAGCTCGTCGACCCGCGACCGGACGACGGCGCCACGACCGCGACGCTGCCGGTCACCGTCGCGTCGGGAACGGTGCGGGACGGGCGGCGGGTCCGTTTCGCCTTCAACTGGAGCTGGGACCGGACCGCCGTCGTGCTCGACGAGGACGTCGTCGAACCGGTCGGCGGCACGCGCTACCCGGCCGGCAAGGAGCTGGACCTCGAGCCGTGGGGCTGCCGGGTCTTCGTCTCCGACGGTCCCTCCGACCAGCCGCACCACCCGGGAGACGTCCGATGA	MDPRPAPSLPTGALFGVAYYPEYHQRDRMIEDLDLMVQASITVIRVGESVWSTWEPEDGRFELEWLAPVLDAAHERGIAVVLGTPTYAVPPWLQTAHPEIAGERRTGEPIPWGARQEVDYTNPTFRHYAERIVRRITARYADHPAVIGYQVDNEPGLELFHNHSVFTRFVRSLKRQYGDVGTLNREWGLTYWSHRLADWSELWRPDGNSFPQYDLAWRRFQAEQTSEFIAWQAGIVREYARPEQFVTTCLQYPRRGLDDRGLFTSLDVTAGNPYYGMQDRLDASVEKSAPNYWTTTSVAGLFRQADRLYSSQQDRYLVTETNAQAIDDASTNFPPYPGQLKQAAMAFVSRGAAMIEYWHWHTLPYGAETYWGGVLPHSLVPGRVYDEVSEIGAELREISPLLDGYEPDADVAVLWSNPSRYALQYMPPFTIGGTPDDESFEHVFDAFHAAVVETGRQARVLHLEQALERGAAEMARRFPVLVAAGLYVTTDAELAFLREYAEHGGHLVLGVRTGYADDEARARVDVAPPGLAAAAGASYEEFSNLEDEVTVIGSDELPLPLSAIGRYWVECLRPDGATTLATYAHPRFGDFAAVTTHEHGAGRVTTVGCVPGRDLARAVVELVDPRPDDGATTATLPVTVASGTVRDGRRVRFAFNWSWDRTAVVLDEDVVEPVGGTRYPAGKELDLEPWGCRVFVSDGPSDQPHHPGDVR	PGPT0017815_438	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308	NA	NA
AK001_00810	1119	lacI_1	COG1609	Lactose operon repressor	ATGGACCCGCACACGACGGTGGACGACGCTCCGACCGGCGACGACGTCGGCGGCGAGCTGCCCGGACGCCCCCGGCGGCCCGCACTGTCGACCCTGCAGCGGGCCTCCGCGCCGGGCAGCGACAAGCCCCCCACGATCTACGACGTCGCCAAGGCGGCCGGCGTCTCGCACCAGACGGTGACCCGCTACCTGCGCGGGTACGAGGGCATCCGTCCCGCGACCCGGGACCGCGTCGTCGCGGCGCTGGAGGAGCTCGACTACCGGCCCAACCTCACGGCACGGTCCCTGACGACGGGCCGCTCCCACCGCATCGGCGCCCTCACCCACGAGATCGACAAGCACGGGCCGAGCAACATCGCCCAGGGTGCCGCCGCCGCGGCCCGCCGAGCCGGCTACGTGCTGGACATCTTCACGCTCGACATGAGCGACCCGCGCTCGATCCGGGACACGCTCAAGATGCTCCGGCAGCACGACCTCGCCGGCATCCTGGCGCTGACCTCGACCGACGCGATGACGCGCGCCATCGAGGCGGCGAAGTTCACCGTCCCCGTCTACCTCGGCGGCGAGCCCGACGAGACCCCCACCGAGCACTCCGAGCTCACCGGGATCGGCTTCCCCGCCCTCGTCGACCACCTGGCCGGGCTGGGCCACCGGTCGTTCCTGCACATCGCCGGACCCGCCACCTGGCCCGCCGCGCGCAACCGCACCCAGGCCTACGAGGAAGCCGTCGCCGCCCGGGGGCTGCGGTCCGCCGGCGTCCTGCCCGGGGACTGGACCGCCCGGTCCGGGCACGACGCCGTCGCCGCCCTCGGCGAGGATCTCGGCGCGACCGCCATCGTGGCGGCCAACGACCAGATGGCCCTGGGCGCGATGCTCGCCCTGCGCCGACGGGGCCTCTCCGTCCCCGGCGACGTCAGCGTCACCGGCGTCGACGACATCCCCGACGCCGCCTACTTCGCCCCGCCCCTGACCACGCTCCGGGTCGACTTCGCGGCCCAGGGCCGCAACATCGTCGACGGGCTCCTCGCCCAGATCGACGGGCGGCCCCCCGTGCGGTCCATCACCCCGCACTCCGAGCTCGTGGTCCGGGAGTCCACAGGACCGGTACCCGCGGCCTGA	MDPHTTVDDAPTGDDVGGELPGRPRRPALSTLQRASAPGSDKPPTIYDVAKAAGVSHQTVTRYLRGYEGIRPATRDRVVAALEELDYRPNLTARSLTTGRSHRIGALTHEIDKHGPSNIAQGAAAAARRAGYVLDIFTLDMSDPRSIRDTLKMLRQHDLAGILALTSTDAMTRAIEAAKFTVPVYLGGEPDETPTEHSELTGIGFPALVDHLAGLGHRSFLHIAGPATWPAARNRTQAYEEAVAARGLRSAGVLPGDWTARSGHDAVAALGEDLGATAIVAANDQMALGAMLALRRRGLSVPGDVSVTGVDDIPDAAYFAPPLTTLRVDFAAQGRNIVDGLLAQIDGRPPVRSITPHSELVVRESTGPVPAA	PGPT0017992_8402	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_00811	846	fecE_1	COG1120	Fe(3+) dicitrate transport ATP-binding protein FecE	ATGATCACGACGCGACGGCTGACCGTCCGGTACGGCCGGACGGTCGCCGTGGCGGTCGCGGACCTCGTGGCGGCCGACGGGCGCACGCTCGGCCTGATCGGGCCCAACGGGTCCGGGAAGTCGACGATGCTGCGCGCCGTCCTGGGTGCCGTCCCCGGCGAGGGGACGGTCACCGTCGACGACGACCTGGTCCGCGACCTGACGCCGCGGCAGCGCGCCGACCGGATCGCCGTCGTCGCGCAGGAGGAGCCGAGCGGCATGCCCCTGACCGTCCGGGAGTCGGTGCTGCTCGGGCGGTCGGGGCGCCGGTCCGGCTGGAGCCGCTACCGGCCCGAGGACGAGCACGCCGCCCAGGGGGCCATGACACGCACCGGCGTCACCCACCTGGCGCACCGGCAGGTCGACGGCCTCTCCGGCGGGGAGCGTCAACGCGTCCTCGTCGCGCGGGCGCTGGCCCAGGGCTCCAGCCACCTGCTCCTGGACGAGCCGACGAACCACCTCGACGTGCGCTACCAGCACGAGATCCTGTCGCTGGTGCACGGTCTGCCCCTGACCACCATCACGGTGCTGCACGACCTCAACCTCGCGGCCCGCTACTGCGACGAGCTGGTGCTGCTCTCCGAGGGCCACGTGGTCGCGGCGGGTGTCCCCGCCGAGGTGCTGGTCCCCGAGGTGCTCGAGCCGGTGTACGAGATCGCGGTGCGACGACTGGACGTCGAGGGGGTGCCGCAGCTGGTCTTCGGTGTCGATGCCCGAGGGCGAGGACCGGGGCCTCGTCCACCTCTCGACATGCACGCCCGACGCCCGACCACCGGGGACCTCCCGGAGCGCCGCGGCGCGCGCTGA	MITTRRLTVRYGRTVAVAVADLVAADGRTLGLIGPNGSGKSTMLRAVLGAVPGEGTVTVDDDLVRDLTPRQRADRIAVVAQEEPSGMPLTVRESVLLGRSGRRSGWSRYRPEDEHAAQGAMTRTGVTHLAHRQVDGLSGGERQRVLVARALAQGSSHLLLDEPTNHLDVRYQHEILSLVHGLPLTTITVLHDLNLAARYCDELVLLSEGHVVAAGVPAEVLVPEVLEPVYEIAVRRLDVEGVPQLVFGVDARGRGPGPRPPLDMHARRPTTGDLPERRGAR	PGPT0003760_2229	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_00812	1053			hypothetical protein	ATGTCCCCTGCGACCCTCCGCCGCCGTGGCACCGCCGCGTTCGGCGTGCTCGCCCTCGCCACCCTCGCCGCCTGCTCCGCGGACGCCGACGCCTCGTCCGGGACCGCCGCGGAGTCCACCGCAGCGTCCTCGGAGCCTGCGGACGACGCCGGCACCGCGTACCCGGTGACCGTCCAGAACTGCGGGGAGGAGCTCGAGATCCCGGCCGAGCCGGAGTCCGTGCTGTCCATCGGGACGTCCGCCGTCGCGCTGCTCGACGCCGCCGGCGCCTCGGACCGGATCGTGGCCCGCGCCGGCGAGTTCGGCGCCGACCTGCCGCCCGACCTGACGAACCCGCCCACCGATGCCCCTGTCCTCGACCCGTTCGACCCGACCATCGAGGTGATCGTCGGCGCCGAGGCGGACATCATCGTGGGGTACGGACTGTTCAACGCGGCCGTGCAGGACGTCGAGGCGGCCGGCCTGACGAACGTGGTCATCGACGGCGAGTGCAGCCACGACGCCGCGCTGACGGACAAGACCGACTTCGACGCGATCTTCGCCGACGTGGAGCGTCTCGGCACCATCTTCGACACCCACGCCGAGGCGGCCGAGAACGTCGCCGCGCTGCGCACCGAGCTCGACGATCTGACCGCGGCCGCGGGGGCACAGCCGGACGGTGAGGCGGCTGCCGGCGAGAGTGCCGCCGTCGTCTACTACTTCTCCGAGGACGCCACGATGTCGGCCCGCGGCGGCCAGGGCATCGCCGACGACGTGCTCGCCCGGGCAGGACTCGAGAACACCTACGGCGACGAGCAGTCGGTCTACCTCGAGGCCAACGTCGAGACGCTGCTCGACGCCGACCCGGACGTGATCGTGCTCGCCTACGGCCTCTACGGCGAGAGCTACGAGGACGCCGTGGCCACGTTCATGGACGAGCCGGGCGCCGAGGAGCTCGCCGCCGTGCAGCAGGACCGGATCATCGGCGTCCCGGCGGCCGACCTCGCCCCGGACCCCGGTGCGATCCGCGGTCTGGATGCCGTGCTCGAGGGCACCGGCGCGCTGGAGGAGTGA	MSPATLRRRGTAAFGVLALATLAACSADADASSGTAAESTAASSEPADDAGTAYPVTVQNCGEELEIPAEPESVLSIGTSAVALLDAAGASDRIVARAGEFGADLPPDLTNPPTDAPVLDPFDPTIEVIVGAEADIIVGYGLFNAAVQDVEAAGLTNVVIDGECSHDAALTDKTDFDAIFADVERLGTIFDTHAEAAENVAALRTELDDLTAAAGAQPDGEAAAGESAAVVYYFSEDATMSARGGQGIADDVLARAGLENTYGDEQSVYLEANVETLLDADPDVIVLAYGLYGESYEDAVATFMDEPGAEELAAVQQDRIIGVPAADLAPDPGAIRGLDAVLEGTGALEE	PGPT0003765_7895	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016	NA	NA
AK001_00813	1062	hmuU	COG0609	Hemin transport system permease protein HmuU	GTGGTAGCGACGATCGACCGCCCGGTGGCGGTGTCCCCCGGCGTGACGCGCCGGCGGCACGCCCTCCTCCTCGGAGCTCTCGGTGTCGTCCTGCTCGGCACGTCCGTCGTCGCCGTCGGGATCGGCCCGGTGGCGATCACGCCGTCCGTGGTCACCGACGTCGTCCTCGGTCGCCTGGGGCTGGCCGATCCCGAGGCCGTCAGCGCCACCGACGACTCGATCGTGTGGCTGATCCGGCTGCCTCGAGTGATCCTCGGCGCGACCGTCGGCGCCGCGCTGGCCCTGGCGGGCGTCGTGATCCAGGCGCTCGTGCGCAACCCGCTCGCCGACCCCTACCTGCTCGGCATCTCCTCCGGCGCTTCGGTCGGGGCGGCAGCCAGCATCCTGTTCGGCGTGGGCGGCGGCGTGCTCGCCCTGACCGGCAGCGCGTTCGTCGGCGCTCTGCTCGCGATCGTCCTCGTGCTGTCCGTGGCGCGCATCGGCGGCCGGTTGATCGTCTCGCGGCTCGTCTTCGCCGGGATCGCCGTGGGCTTCGCGCTGACCGCCTTGACGAACTTCCTGGTGTTCGCCAGCGACTCCCGCGAGGGCGCCCGTGCCGTCATGTTCTGGACGCTCGGCTCGCTGGCCCAGTCCCGCTGGTCGTCCGTGCCGCTGGCCGTCGCGGCGGTCCTCGTCGCCGCGGTGGTGTTCATCGCCTGGGCACGACGCCTCGACGCGCTCGCCATCGGTGACGACACCGCGCTGGCGCTGGGCACCGAACCGACCCGCTTCCGGTCGGCCGCCGTCGTCGTCGTCAGCCTGGTCGTCGCCGTCGCCGTCTCGGTCTCCGGGCTCATCGGGTTCGTCGGTCTGGTGGTCCCGCACATCGCCCGCCGCCTGGTCGGCGGGAGCCACCGCATCGTCCTGCCCGTGTCCGCCCTGCTCGGCGCCCTGCTGCTCGTGAGCGCCGACGTGCTGGCACGCACAGCCTTCGCCCCCCGTGAGCTGCCGCTCGGCATCCTCACCGCGCTGATCGGCACCCCGCTGCTCATCGCACTCGTCCGACGGTCCCTCACTCGCTGA	MVATIDRPVAVSPGVTRRRHALLLGALGVVLLGTSVVAVGIGPVAITPSVVTDVVLGRLGLADPEAVSATDDSIVWLIRLPRVILGATVGAALALAGVVIQALVRNPLADPYLLGISSGASVGAAASILFGVGGGVLALTGSAFVGALLAIVLVLSVARIGGRLIVSRLVFAGIAVGFALTALTNFLVFASDSREGARAVMFWTLGSLAQSRWSSVPLAVAAVLVAAVVFIAWARRLDALAIGDDTALALGTEPTRFRSAAVVVVSLVVAVAVSVSGLIGFVGLVVPHIARRLVGGSHRIVLPVSALLGALLLVSADVLARTAFAPRELPLGILTALIGTPLLIALVRRSLTR	PGPT0003770_860	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_00814	1710		COG1132	Putative multidrug export ATP-binding/permease protein	GTGATCCATCTCCGCCTCCTCCGGCTCACGCGGTCCTCGGCCTCGGGCCAGGCCTGGTGCGTCGCCGTCGGGCTGGTCCTCAGCGCCCTGGCGATCACCCAGGCGATCGCCATGTCCCGGCTCTTCGCCGGGATCCTCGACGGCGCCGACCTGACCGCGCTGGCCAGCCCGTTCGCGCTGCTGGCGGCCGCCCTGCTGCTCCGCCCCGCCGCGACCGCGCTGCGAGAGCTCACCGCGCACGCCGTCGCGGGCCGGATGAAGCGCGACCTGCGGGCCGGACTGCTCGACGCCGACGCCGCCCGCGGACCCTTCGCCCGCGCCACGGAGAACCTCGGCGGACGGCACTCCCAGCTCGTCGACGGCGTGGAGAACCTCGAGCCCTACGTCACCCGCTACGTCCCCCAGGTCGTGGTCACCACGGTCACGGCCGTCGTCACCGTCGCCCTCCTCGTGGCCGTCGACCCGGTGGTCGGCCTCGCTGCCGGGCTCACCGCAGCGCTGGTCCCCCTGCTGCCCCGGCTGTGGGACCGCGCGCTGCGGTCGCGCGGCGACGAGCACTGGGACGCCTACGCCGGCATGCACGCCGACGTCGTGGACTCGATGCGCGGCATGGAGACGCTCAAGCTGCTCGGTGCGGCCGGCCGACGCCGCGAGCACCTGGTCACCGCGAGCGCCCGGCTGCTGCACTCGACGCTGCGCCAGCTCCGGCTCTCCCTGGTCGAGTCGGGGCTGACGGGCTTCCTGCTCGTGGCGGGCCCCGCCCTGGTGCTGGCCGTCGGTGTCCTGCGCGTCGACGCCGGTGCGATGGCCGCACCCGCCCTGTTCACCGTGACCCTCGTCGGCTTCGAGGTCTTCCGGCCGTTCCGCGACCTCGCCAACCACTGGCACGCCGGCCACCTGGGCGTCTCGGCCGGCTCCCGGCTGCTGGAACGGCTCGCGGAACCCGACGACACCGAGCCTCCGGCGGCAGCCGGGACCGCACCTGGCGACCCGGCGGTCGCCGTCGCGCTCGACCACGTCCGCGCGCGCTACCCCGGGGCGGAGCGCCCCGCCGTCGAGGACCTCACCCTGCACGTGACCACCGGCAGCGTGACGGCCGTGGTCGGCCCCTCCGGCGCCGGCAAGTCGACCGTCGCCAACCTGGTGCTCGGGCTGCTGCCGCCCGAGACCGGGACGGTCGCGGTCCGAGCCGCCGACGGCGTCCCCCCGGTCACCCTCGTCTCCCAGGAGCCCGTGCTCTTCGCCGGCACCCTGCGGGAGAACCTGGCGCTCGTCGCCCCCGGGGCGTCCGACGCCGAGCTCGTCGACGCCCTGGACCGCGCCCAGGCCCCGGAGCTGGCCGGGGCGGACGGCGCCGGCCTGGACGCCGAGGTCGGCGAGGGCGGCACCCTGCTCTCCGGCGGCCAACGCCAGCGGGTCGCGGTCGCGCGCGCGCTGCTTCGCCGATCCCCCGTCCTCGTGCTCGACGAGGCGTCCTCCGCCCTCGATGCCGACCGCGAGCGCCGGCTGCTCACCGCCCTGCGCACCGGCGCCGACGCCCCGACGCTGCTGATCATCGGCCACCGGCTCAGCGCGGTGCGCGACGCCGACCGGATCGTCGTCGTCGACTCCGGCCGCGTCGTCGAGGCGGGCACCTGGGACCAGCTCCTCGCGCTCGACGGCACGTTCGCCCGGCTGCACGCCGCCCAGACCGAGGAGATCCCGGCATGA	MIHLRLLRLTRSSASGQAWCVAVGLVLSALAITQAIAMSRLFAGILDGADLTALASPFALLAAALLLRPAATALRELTAHAVAGRMKRDLRAGLLDADAARGPFARATENLGGRHSQLVDGVENLEPYVTRYVPQVVVTTVTAVVTVALLVAVDPVVGLAAGLTAALVPLLPRLWDRALRSRGDEHWDAYAGMHADVVDSMRGMETLKLLGAAGRRREHLVTASARLLHSTLRQLRLSLVESGLTGFLLVAGPALVLAVGVLRVDAGAMAAPALFTVTLVGFEVFRPFRDLANHWHAGHLGVSAGSRLLERLAEPDDTEPPAAAGTAPGDPAVAVALDHVRARYPGAERPAVEDLTLHVTTGSVTAVVGPSGAGKSTVANLVLGLLPPETGTVAVRAADGVPPVTLVSQEPVLFAGTLRENLALVAPGASDAELVDALDRAQAPELAGADGAGLDAEVGEGGTLLSGGQRQRVAVARALLRRSPVLVLDEASSALDADRERRLLTALRTGADAPTLLIIGHRLSAVRDADRIVVVDSGRVVEAGTWDQLLALDGTFARLHAAQTEEIPA				NA	NA	NA	NA	NA
AK001_00815	1881	yheH	COG1132	putative multidrug resistance ABC transporter ATP-binding/permease protein YheH	ATGAGCACCACGACACCCACCAGCAGCCTGCTGCGCCCCGTCCTGCGCCTGCTCGGCGAGGTGCGCGAGGAACGCTCGCTGTTCTGGCGCTCCACGGCTGCCATGACCGGCTTCCAGCTCGCCACCGCGGCCGCCGCCGGGATCAGCACGGCCGTCGCCGCCCTCGTGACGTCGTCGGACACCTCGCTCGTGGGTGTCCTGCTGCTGTCCCTCGCCGCCGCCGTCATCGCCGTCGCCGTGTTCACCTGGATCGAGTCGTGGCTGAGTCACGTCCTCGCCTACCGGGTCATCGACGCCCTGCGGGTGCGTGTCTACGACGCGGTCGAGCGGATCGTCCCGGCCCGGTCGGGACGGCGCCGTGCCGGCGAGGTGGCCGGCACGGCCATGAACGACGTCGAGGTCCTCGAGTGGTTCTACGCCCACACCCTCGGCGCCGGGGTCAACGCCGTGCTGTCCCCCCTGCTCGTCTCGGTCGCGCTCGTGGCCATGGTCGGGCCTCGGGGCCTGATCGTCACCGCCGGCGTCGCGCTGCTGATGGGCGTGCCGTGGCTGTTCGCCGGCCTGCAGCAACGCCAGGGTGCGGCCATCCGGCGCGAGCTCGGCACCCTGCAGGCCGTCGCCCTCGAAGGCTCCCAGGCCCGCCGTGAGCTCGCCGCGCTCGACCTCACCGCCCACCACCGCTCCCAGGTGCTCTCCGGCACCGACGCCGTGCAGTCCGCCAAGCGGCGGTTCGCGCTGCGGGCCGCCGGGGAGTCGGCGCTCGCCGACCTGGTCGTGGCCGCCACGAGCCTGCTGTTCCTCGCGTCCCTGGTGCAGGGCGCCCTGGCCGGGACCGTGGATCCCGTCCTCATCCCGCCGGCGACGGTGCTGGTGGCCGCCGCGGTGACCCCGGCGGCCGGCGCCTTCGCGATGGTCCAGCGGCTCGGCGAGATGTCGGCGGCGGCCCAGCGCGTCCTCGACCTCGTCGACGCCGGCGACCGGGCCGACCAGGCCGGGCACGCGGGGGCCGCAGGGGACGCGAGCGGGTCGGGGCCGGACGACGCACCGCGGCCCGGCGCCGGTGCGCCCGGCCCCGTGGCGCCGTCGTCCCGCGGCCACCTGCGCCTCGAGGCCGTGACCTTCGCCTACGACGACGGGCCCCGCGTGCTCGACGGGCTCGACCTCGAGGTGCACCCCGGCGAGCAGGTCGCCCTGGTGGGTGCCTCCGGTGCCGGCAAGTCCACGCTCGCCCGGCTGCTCACCCGACTGTGGACCCCGCAGGCCGGCCGGATCCTGCTCGACGGCGCCGAGACCGGCTCCCTGGACGCCGACGACCTGCGGCGGCGGGTCGCGATGGTGTCGCAGCACCCGTTCGTCTTCCGCGGCACCGTCCGCAGCAACCTGCTGCTCGCCGCCCCCGAGGCCGACGACGCCGCCCTGTGGCGGGCGCTGGAGGACGCCGGGCTCGCCGCGACGATCCGCGCCCGCCCCGACGGGATCGACACCCCGGTGGGTGACCGCGGGGCGACGCTGTCCGGCGGGCAGCGCCAGCGGCTGTCCGTCGCGCAGGCGCTGCTGCGCGACCCGGCGGTCCTCGTCCTGGACGAGGCCTCCGCCCACCTCGACGCGGTGGGTGAGCAGGACCTCGCGGAAACGGTCGCGCGATGGGGCCGCACCACGGTGGTGATCGCCCACCGCGTCTCGACGATCCGGCGCGCCGAGCGGGTGGTGCTGCTGGCCGACGGACGCATCGTCGCCGACGGCACCCACGCGGACCTGCTGCGCACCTCCCCCGACTACCGGCGTCTGCTCGACCTGTCCCCAGGTCGGGGCGCCGGTGTCCCGGAACCGGTCGGTGTGGCCGGTTCGACCCGAGATACAGGAAGGAGTGAGCACCCATGA	MSTTTPTSSLLRPVLRLLGEVREERSLFWRSTAAMTGFQLATAAAAGISTAVAALVTSSDTSLVGVLLLSLAAAVIAVAVFTWIESWLSHVLAYRVIDALRVRVYDAVERIVPARSGRRRAGEVAGTAMNDVEVLEWFYAHTLGAGVNAVLSPLLVSVALVAMVGPRGLIVTAGVALLMGVPWLFAGLQQRQGAAIRRELGTLQAVALEGSQARRELAALDLTAHHRSQVLSGTDAVQSAKRRFALRAAGESALADLVVAATSLLFLASLVQGALAGTVDPVLIPPATVLVAAAVTPAAGAFAMVQRLGEMSAAAQRVLDLVDAGDRADQAGHAGAAGDASGSGPDDAPRPGAGAPGPVAPSSRGHLRLEAVTFAYDDGPRVLDGLDLEVHPGEQVALVGASGAGKSTLARLLTRLWTPQAGRILLDGAETGSLDADDLRRRVAMVSQHPFVFRGTVRSNLLLAAPEADDAALWRALEDAGLAATIRARPDGIDTPVGDRGATLSGGQRQRLSVAQALLRDPAVLVLDEASAHLDAVGEQDLAETVARWGRTTVVIAHRVSTIRRAERVVLLADGRIVADGTHADLLRTSPDYRRLLDLSPGRGAGVPEPVGVAGSTRDTGRSEHP				NA	NA	NA	NA	NA
AK001_00816	111			hypothetical protein	ATGACGACGATCACCCTCGTCGAGGTGGCGACGGAGCGGTCCGAGGACCAGATCCTGGCCCCGAACGCGAACAACCACGGTCACGTCTCGACCGCCTTCGCCTGGTCGTGA	MTTITLVEVATERSEDQILAPNANNHGHVSTAFAWS				NA	NA	NA	NA	NA
AK001_00817	2262			hypothetical protein	GTGCCGACCCCCTCGCTCACCCTCACGCCCCGTGTGGAGGTCCGTCCGCTCGCGGCGGGCCGCAGCATCGTCACCACGCCGGTCGGCACGTCGTTCGTCCTCGACGTGCCCGCCGAGCGGGTGCTGCAGATCCTCGACGCGTGGACCACCGGGCAGGCGAGCCCGGCCCTGCCCGACGGGTGGGACGAGGCCGCGGCCGTGCTGCGCGACGTCCTGGACCGCGACGGCGCGTTCACCCCGAGCGCCGCGTCCGGCCCCGATCTCGGCGAGGCCGCGCCGTCGTACGACGACAGCGACGCGACCGCGGCGCGACCTGGGGACCTGCTGCTCACCGGCGACCCCGGCGTGGTGACGGCGCTGCAGGCGGTCGCCCGGACCGCTGTGGCCCGGACCGCCTACCCGGACGTCGCCGTCCGGGCCGTGCCCGCCGACGACTGGCAGCGGGTGGTCCACCGCGCCTTCCGCACCGGCGAGCTGCTCGTCTACGCGGTGCGGGGCGGCGACGACGCGACGCTCGTCGCCCTGGACCGGCTCTGCGCGGACGCCCGCACCCCGTGGGTGGCGCTCGAGGTGAGCCGGTCGGCCGTCTGGCTGGGACCGTTCGTCACCCCCGGCGTCGGCGCGAGCTACGAGGACCTGGCCGACCGACGTACCGCCGCGGCGTTCGACGCCGAGGCGCACCGGGCGCTGCGCTCCCCCGCCGTCCGCGGCGACGCCGGCGCTCCGCCGCGGCACCTCGCCGACGCGCTGCGCACCGCCCTCGAGCTGCTCTCGGGCGCGGAGTCCGCCGACGCGGACGCGGAGCGCCCCGGGGATCTCGTGTGGGAGATCGCCGCCGACGGCAGCGCGCGCACCCACCCGGTGCTGCCGCTGCCCACGCGGATCCTCAGCGGCTCGAGGCCCCACACCCCCGACGACCTCGTCGACCCGCTGACCGGACTGGTCCAGCGCACCCGCGACGTCACCCATCACCCCAGCATCCCGCCCGCCCTGGCGACCGCCCAGAGCGACGTGTGCAACATGCGGCGCGTGTCGCGGTGGGCCAACAACACCTCTTGCCAGGGCTCGGCGTTCGGCGACCCGGCCCAGGCCCGCGCCAGCGCCGTCGGCGAGGCCGCCGAACGGTACTGCGGGAACCTGCTCGACACCCTGCCGGTGACCGTCGGGAGCTTCGCGGAACTGCGCCGCCGCGGCACCCGCGTGCTGGACCCCGCCGAGCTGGTGCTGTACTCCGACCAGCAGTACGACACCCCGGGCTTCCCGTTCGTCCCGATGACGCCCGACCTGGAGATGCACTGGGTTCCGGGCCGGTCGCTCACCACGGGCGAGGATCTGCTCGTGCCCGCCAGCATGGTGTACGTCAACTGGTTCACGGCCGGGTACTCGGCCGCCCCCGTGACGAACTTCTGCCCGTTCGCCGGGATCGCCGCCGGTCCCACGCTCGACTACGCCGTCACCTCCGCGCTGGAGGAGATCATCGAGCGGCACGTGACCATGGTGTGGTGGCTCAACGCCCACCCGTTCGACGCCACCGATCCCGGAGACCTGGCCCGCGTCTGGGAACACGTCCCGGCCGAGCACGGACAGCGTCCCAGCCTGATCATGCTGGACAACGAGTTCGGCGTGCCGGTCGCGGCGGGCGTGCTGCACAACGACGTCGAGAATCTGGTCAACGTCGGTTTCGCCTGCCGGAACACCCCCGAGGCAGCCGCGGCCAAGGCCTGGACCGAGGCCTGCACCCTGCAGGAGGGAAGCCGCGACCTGCTGCGCGCGGACGGCGCGCACTGGGACGCGATGCAGCGCGGCGAGCTCAACAGCCGATCCTTCAAGCCGTGGCGGGCCGACCGCCGCTACCTCGACTCCTACCGCGCGGACATGCGCGACTGCGACGACCTCATGGTCCAGCAGCAGGTGCACCTGGACCCGCGCGCCGTGGCCCGGGTAGCTCCCCTCCTGGACCGGCCCGTCACCCGCACCTTCGCCGACACGCCCTCGCTGCCCGAGCGGACCCCGGACGTGTACCGGGCGGCACTGGAGGCCGCCGGGCACGAGGTGATCGTCGTCGACATCACCTCCCCGGACGTCGCCTCCACCGGGATGCGCGTCGTCCGGGCCGTCGTACCCGGCACCGTCGGCAACGCCCCCTCGGCCTTCCCGTTCCTGGGCCGACGTCGGGTGCAGGACCTGGCGGTCGAGCTCGGATGGCGCACGACGGCGCTGCCCGAGGACGGCCTCAACCACTTCCCGATCCCGCACGCATGA	MPTPSLTLTPRVEVRPLAAGRSIVTTPVGTSFVLDVPAERVLQILDAWTTGQASPALPDGWDEAAAVLRDVLDRDGAFTPSAASGPDLGEAAPSYDDSDATAARPGDLLLTGDPGVVTALQAVARTAVARTAYPDVAVRAVPADDWQRVVHRAFRTGELLVYAVRGGDDATLVALDRLCADARTPWVALEVSRSAVWLGPFVTPGVGASYEDLADRRTAAAFDAEAHRALRSPAVRGDAGAPPRHLADALRTALELLSGAESADADAERPGDLVWEIAADGSARTHPVLPLPTRILSGSRPHTPDDLVDPLTGLVQRTRDVTHHPSIPPALATAQSDVCNMRRVSRWANNTSCQGSAFGDPAQARASAVGEAAERYCGNLLDTLPVTVGSFAELRRRGTRVLDPAELVLYSDQQYDTPGFPFVPMTPDLEMHWVPGRSLTTGEDLLVPASMVYVNWFTAGYSAAPVTNFCPFAGIAAGPTLDYAVTSALEEIIERHVTMVWWLNAHPFDATDPGDLARVWEHVPAEHGQRPSLIMLDNEFGVPVAAGVLHNDVENLVNVGFACRNTPEAAAAKAWTEACTLQEGSRDLLRADGAHWDAMQRGELNSRSFKPWRADRRYLDSYRADMRDCDDLMVQQQVHLDPRAVARVAPLLDRPVTRTFADTPSLPERTPDVYRAALEAAGHEVIVVDITSPDVASTGMRVVRAVVPGTVGNAPSAFPFLGRRRVQDLAVELGWRTTALPEDGLNHFPIPHA				NA	NA	NA	NA	NA
AK001_00818	1809			hypothetical protein	ATGAGGCTGACGGTCCACCGGCTGGGCGACGACCGCGTCCTGGTGTGCCGGAACGACGGACGGCGCTGGGTGCTCGACGTCGGCGCTGACGAACTGGACGGCGATGCGGCGCGCTCCACGCTGAACACGCTGGCCGCCCCTGACGGCAGCTCGCCGGTTTCCGAGCCGCCTCCGGGCCCCGAGGTCGTGGCGGCGAGCCAGCAGGGGCTGGCGCAGGCCGCGGTCGCGCTGGACCACGAGGAGCCGGGCGACGCTGAGTGCGCAGTCGACCACGTGGTGCGCTGGCCCTTCGCCGGCTCGACCTATCGGATCCGCCTGACCGCCGGCCGGGCGGTCGAGCTGGCCGACACGATCTCAGCGCTGCTGCGGGCCACGATCCCCGACCCGGAGCAGGCCAGAGCACTCGTCGAGGAGCCGGTGGCGATCGTCGCGGGCCGGACGACGGGTGCTGCCTCGTCTCCGGACCGACGCGATCCCGGCCCGGCCGGGGGCGTCCTGGAACGGTGGACCGACGGCGCGTGGCATCCGCACGCCGTCGACCCGCCCGCCGTCGTCGACCCGGTCACCGGGCTCCTGCACCGCGTGGCGCGCCGCCCCGCCGATCCGCGTGTTCCGCGGCCCTTCGTCCACCGGCACGCCGAGCTGCCGCACCTCGCGAGCGTCGACCCACGGTGGCAGCCCGACCTGCTCGCACCCGCCGGCTCGCTCGGCGACGACGCCGGCCTGGCCGCCGTGCTCTCGGGCCTGGCGCACCTGTGCGGCGCACCCCTGGGCCAGGGTGAGCTGCGCCCCGCCTCCACCGCCGAGCTGACCGCCGCCGGCGAGAGGGTGCTGACCCTCGCTGAGTGGCGCCCGCACGATCCTGCTCTCGACGACCTGGCGGGCTTCCCGTTCACGCGCCCCGAACCCGACGACACCCAGTGGTGGCTGCGGGGGACGGAGCACCTCGACGGCGGTACGGCGTCGTGCTGGGTGCCGTTCAGCCTGGTGCACGCGGGCTACCTCGCCGCCGGCCTCGACGGACAGGTGCCCACCAACGGGCACAACCTGGTCGGCCTCGAGGCCGGTCGCGACCCGAGCGAGGCGCTCGACCGGGCCTCCGGACGTCTGCTGGCCCAGGACGCCGTCGCCCGGTGGTGGCACGACTCCACGGATCCGCTCCCGTCCGCCGACGTCCCGCCGGGCCTCCGCGGCGACGGTGCCGCCGTCACCGTGCGGGTGCTGGCCGTGCCGTCGCCGCACGGGGTGCCGGTCCGGCTCGCGGTGGCCGACGACGCCGGCGACGGGGTCGTCGCGCTCGGCTACGGGTGCGCCGCCGACCCGGCCGCTGCCGCCGAGCAGGCGGTGTGCGAGGCGTTGATCCAGCACGCCTCGGCACGCGACCTGGCCGGCGCCGACAGCCTGATCCGGCGAGCACCGGAGCTCGGCAACGGCGGAGTCGCCGGACTGGCCCCGTACGACCCCGACCGACGCTACGGCGAGGCGTTCGCCGACCGGCGGCGCCTGATCGACCCGATGTGCCACGTCCAGTACGGACTGGACCCGGCCGTGGTCGCGCAGGTACGGCAGCGGACCGCGAGCGCCGCCGACACAGCCGGTGACGCGGTGGCCGCGGGAGTCGCGGGGTCGCCGTTCGCGCGGCTGCGCTCCACGCCGGGACGCGCGGTCACCGTCGACGTGACCACCCCGCGCGTGCGGGCCGCCGGCTACAGCGTGCAACGGGTACTCGCCACCGGGCTGCGGCGCCTGACGGTGGCCGCCTTCCCGCAGCACGTCGACGACGGGCGGTCGCCCTACCCTGGCTGGTGA	MRLTVHRLGDDRVLVCRNDGRRWVLDVGADELDGDAARSTLNTLAAPDGSSPVSEPPPGPEVVAASQQGLAQAAVALDHEEPGDAECAVDHVVRWPFAGSTYRIRLTAGRAVELADTISALLRATIPDPEQARALVEEPVAIVAGRTTGAASSPDRRDPGPAGGVLERWTDGAWHPHAVDPPAVVDPVTGLLHRVARRPADPRVPRPFVHRHAELPHLASVDPRWQPDLLAPAGSLGDDAGLAAVLSGLAHLCGAPLGQGELRPASTAELTAAGERVLTLAEWRPHDPALDDLAGFPFTRPEPDDTQWWLRGTEHLDGGTASCWVPFSLVHAGYLAAGLDGQVPTNGHNLVGLEAGRDPSEALDRASGRLLAQDAVARWWHDSTDPLPSADVPPGLRGDGAAVTVRVLAVPSPHGVPVRLAVADDAGDGVVALGYGCAADPAAAAEQAVCEALIQHASARDLAGADSLIRRAPELGNGGVAGLAPYDPDRRYGEAFADRRRLIDPMCHVQYGLDPAVVAQVRQRTASAADTAGDAVAAGVAGSPFARLRSTPGRAVTVDVTTPRVRAAGYSVQRVLATGLRRLTVAAFPQHVDDGRSPYPGW				NA	NA	NA	NA	NA
AK001_00819	987			hypothetical protein	ATGTCCACCGTCCTGGTCACCGGAGCCTCCGGCTTCATCGCCAAGCACGTCCTGCGCGAGCTGCTCTACGCCGGGCACACCGTCCGCGCCACCGTCCGGTCGGAGCGTCGGCGCGCCCAGGTCGAGGCGCTCTTCCCCGGCGCCGGGATCGAGTTCGTCTCGCTGGACCTCACCTCCGACGACGGGTGGGACGAGGCCCTGGCCGGGGTCGACGTCCTGATCCACACCGCCTCCCCCTTCCCGGCCGCCCCGCCCCGGGACCCTCAGGACCTCATCCGGCCCGCGGTGGACGGGACCCTGCGCGCCCTGCGCGCCGCCCGCGCCGCCGGGGTGCACCGCGTGGTGCTGACCTCGACGTGCGGGGCGATCTACAAGCCCGCCGACCACCAGTGGTCGCGGCGCAAGACCCGGGAGGACTGGACCGAGGTCGACGGCCCGAAGACCTCCGCGTACGAGGCGTCCAAGACGCTCGCCGAGCAGGCGGCGTGGCGGTTCGTCGCCGAGCATCCCGAGATGCGGCTGACCGTCGTCAACCCCGGCATGGTGTTCGGGCCCGCGATGGACGAGCACTACGGGTCGTCCCTGGAGACCGTCGAGCAGCTCGTCAGCGGCGCGATGCCGCTGCTCCCGCGGATGAGCATGCCCGTCGTCGACGTCCGCGACGTGGCGCGCATCCACGTGCGGGCGATGGCCGACGACGGCACCGTCGGGCAGCGGTTCCCGGCGAACGCCGGCGTGCTGTCGATCCCCGAGATGGCCGAGGTCCTCCGCGAGGCCTATCCGGACGCGAGGATCGCCCGCCGGGTCGCCCCGGACTGGCTGGTCCGCGGCCTCTCCCGCGTGGTGCCGCTGTTGCGGACCGCGGCCCAGGGTCTCGGCCTCAACCCCGACGTGGACGGCTCCGACGCCCCGCGCGAGCTCGGCGTCGAGTACATCCCCTCCCGCGACGCCCTGCTCGCCGCGGCCGCCTCCGTGCGGCGTCCGTGA	MSTVLVTGASGFIAKHVLRELLYAGHTVRATVRSERRRAQVEALFPGAGIEFVSLDLTSDDGWDEALAGVDVLIHTASPFPAAPPRDPQDLIRPAVDGTLRALRAARAAGVHRVVLTSTCGAIYKPADHQWSRRKTREDWTEVDGPKTSAYEASKTLAEQAAWRFVAEHPEMRLTVVNPGMVFGPAMDEHYGSSLETVEQLVSGAMPLLPRMSMPVVDVRDVARIHVRAMADDGTVGQRFPANAGVLSIPEMAEVLREAYPDARIARRVAPDWLVRGLSRVVPLLRTAAQGLGLNPDVDGSDAPRELGVEYIPSRDALLAAAASVRRP				NA	NA	NA	NA	NA
AK001_00821	942			hypothetical protein	ATGAGGCACGCCCGCGACACGCCTCTGCCCCGCACCACCACCTCCACCACGCCCCGGACCTCGCCCCGCGGCCCGGGGCGGCACGTCGCCTCGTCCGCGGACCGACGACGCCGTTCCGGACCGACCTGGTCCTCCCTCGCGCCCACGAGCTGGCCGCTGAGCATCGGCATCGGGATCGCCGTCACGATGGCGACCACGACGGGCATGGCCGTGGCGGACGGGACCCCGCAGCCGGTGCGCTCGGCCGCGCCGGACACCGCCCCCTCCGGCATCCGGGCCACACCGGAGACGCCGGACGCCGCCGAGACGAAGCGGGACGCCGCCGCCGTCGTGGCCGCGGCCCGCCAGGCCGTGCTGGTCGACCGGGAGCAGGGCGCGTCCCGCAGCGGAGCGCGGACCGCCCGCACGGCGCCGCAGGCCGCCGGCGGCATCGTCGTCCCTAGCGACGCCACGATGACCGGCGAGACGGTGTCGCTCGACGTCGAGTCCGCCCCCGAGCCCCCGGTCCTGCCGGGGTGCGACGGCTACGCCACCGGGGCCGGGTCCAACGGCTACCTCTCCGCCAGCGAGATGTGCACCCTGTGGGACGGCAAGACCCTGGTCCGAGCGGACGCGGCGGTCGCCCTCGCCCGGCTCAACGAGTCCTACCGCGCCACCTTCGGCGAGAACATGTGCATCACCGACGGCTACCGCAGCTACGCCCTGCAGGTCTCGACCCGCGCGGCGAAGGGCTCCCTGGCGGCCCCTCCCGGCACGTCGAACCACGGGTGGGGACTGGCCGTGGACATCTGCCCGGACTCGTACGCCGGCAGCCGCTACGACTGGCTCCGGGCCAACGCCCCGGCCTACGGCTGGGACAACCCGGCCTGGGCGCGACCGGGCGGCTCGAAGTACGAGCCGTGGCACTGGGAGTTCACCGCCGGCGTCGCGCAGATGGGCTAG	MRHARDTPLPRTTTSTTPRTSPRGPGRHVASSADRRRRSGPTWSSLAPTSWPLSIGIGIAVTMATTTGMAVADGTPQPVRSAAPDTAPSGIRATPETPDAAETKRDAAAVVAAARQAVLVDREQGASRSGARTARTAPQAAGGIVVPSDATMTGETVSLDVESAPEPPVLPGCDGYATGAGSNGYLSASEMCTLWDGKTLVRADAAVALARLNESYRATFGENMCITDGYRSYALQVSTRAAKGSLAAPPGTSNHGWGLAVDICPDSYAGSRYDWLRANAPAYGWDNPAWARPGGSKYEPWHWEFTAGVAQMG	PGPT0024055_314	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_00822	762			hypothetical protein	ATGACCGAGACGTTCGACGACCTGCTGCGGGCCGGGGCGTCCGCGGACGTGTCCGGATGGGACTTCGCCTGGCTCGAGGGCCGGGCGAGCGAGGAGCGTCCGCCGTGGGGCTACGCCCGGCTCCTCGCCGATCGGCTCGGCACGGCGACGGCCTCGTTGGACGTCCAGACCGGTGGCGGCGAGGTGCTGGCCGAGGCGCCCGCCTTCCCGCCGACGGCGGTGGCCACCGAGTCGTGGCCGCCGAACGTCGCGCACGCGACCCGGCTGCTCCACCCCCGCGGCGTGGTCGTGGTCGCCGACCCGGACGAGCCGCCGCTGCCGTTCGGCGACGGGGCGTTCGACCTGGTCACGAGCCGGCATCCCGCGACGATCTGGTGGGCCGAGCTCGCCCGCGTCCTGCGCCCCGGCGGCACCTACCTCGCGCAGCACGTCGGGCCGGCGAGCGCCTTCGAGCTCATCGAGTTCTTCCTCGGCCCGCAGCCGGAGGCGCGCCGCGGGCGCCACCCCGACGACGAGGCGGCCGCGGCGGAGGCCGCCGGTCTGGAGGTCGTGGACCTGCGGACGGCCCGGCTGCGCATGGAGATCCACGACGTGGCCGCCGTGGTCTACCTGCTGCGCAAGGTGATCTGGTGGGTGCCGGACTTCACGGTGGACCGGTACCGGGACCGGTTGCGCGACCTGCACGACCTCGTCGCGGCCGAGGGGCCGTTCGTCGCGCACTCGACGCGCCACCTCGTCGAGGCCCGCCGTCCCGACCGCTAG	MTETFDDLLRAGASADVSGWDFAWLEGRASEERPPWGYARLLADRLGTATASLDVQTGGGEVLAEAPAFPPTAVATESWPPNVAHATRLLHPRGVVVVADPDEPPLPFGDGAFDLVTSRHPATIWWAELARVLRPGGTYLAQHVGPASAFELIEFFLGPQPEARRGRHPDDEAAAAEAAGLEVVDLRTARLRMEIHDVAAVVYLLRKVIWWVPDFTVDRYRDRLRDLHDLVAAEGPFVAHSTRHLVEARRPDR				NA	NA	NA	NA	NA
AK001_00823	1533	sucP	COG0366	Sucrose phosphorylase	ATGGCCACGCAGGACCAGGTCCAGCTCATCGCCTATGCCGACAGGCTCGGCGGTGACCTGCGCGGGCTGGCCGGCTTCCTGCGGCGTGACGAGGTCGCCGGCGCGTTCGGCGGCGTGCACGTGCTGCCGTTCTACACGCCGTTCGACGGCGCGGACGCGGGCTTCGACCCGGTCGACCACACCGCCGTCGACCCGCGGTTGGGCACGTGGGACGACGTGCGCGACCTGGCGCGCACGCACGACGTGATGGTCGACCTCATCGTCAACCACGTGTCCGCGGACTCGGCCGCGTTCCTCGACGTCGTCGCCCGTGGGGACGCCTCGCCCTGGGCGCCGATGTTCCTGACGATGTCGTCGGTGTTCCCCGACGGCGCGCGGGAGGAGGAGCTCGCCCGCATCTACCGGCCCCGACCCGGGCTGCCCTTCACGGCGATCCGTCTCGGGGACCGGCTGCGGTACGTGTGGACGACGTTCACGCCCCAGCAGATCGACGTCGACGTCACCTCGGAGCTGGGCCGCGAGTACCTCACCTCGATCCTCGACGCCGCGGCCGGCGCGGGCGTGCGGCTCGTCCGGCTCGACGCCGTCGGCTACGCGGTCAAGACGCCGGGCACCACGTGCTTCATGACGCCCGAGACGTTCGACTTCATCGCGGACTTCGCCGGGCAGGCGCGCCAGCGCGGCGTCGATCTGCTCGTCGAGGTGCACTCGTACTACCGGCGTCAGGTCGAGATCGCTCGCGAGGTCGACCTCGTCTACGACTTCGCCCTGCCGCCGCTGGTGCTGCACGCCCTGTACACGGGCGACGGCACGGCGCTGGTGGACTGGCTGCGCGAGCGTCCGCGCAACGCGGTCACGGTGCTCGACACCCACGACGGCATCGGGGTGATCGACGTCGGACCGGACCAGACGGTCGCCCCGGGCGAGGCCGAGCGGCCGGGGCTCCTCACGCCGGAGCAGGTCGACGCGCTCGTGGAGGGCATCCACGAGCGCACCGGTGGCGCGTCGGCCCGCGCGACCGGCGCCGCGGCGTCGAACCTCGACCTGTATCAGGTGAACTCGACGTTCTACGACGCGCTCGGGCGCGACGACGCCCGCTACCTCGCCGCGCGGACGATCCAGCTCTTCACGCCGGGCATCGCGCAGGTCTACTACGTCGGTCTGCTCGCGGGGGAGAACGACGTCGAGCTGTTGGAACGCACCGGCGTGGGACGGGACGTCAACCGGCACCACTACACGTCCGCCGAGGTCGACGCCGCCCTGGCCACCCCGCTGGTCCAGCGCCTGCTCGCGCTGTGCCGCTTCCGCAGCACCTTCCCCGCGTTCGACGGCGACGTGGACACCGCCCTCGACGGGTCCCGCCTCACGATGGAGCGCCGTGGCGCCGAGGTGCCCGACGCCGTCGCCCGCCTCGAGGTGGACCTGGTCTCCGGCGCGGGGTCGCTGCGTTGGTCCCTCGCGGAGGGTGCCGAGGCCGCGATCGACCTCGGCGGCTTCGCGCCGCAGGACCTCGGCGGGCCTGCCGGCCGGTGA	MATQDQVQLIAYADRLGGDLRGLAGFLRRDEVAGAFGGVHVLPFYTPFDGADAGFDPVDHTAVDPRLGTWDDVRDLARTHDVMVDLIVNHVSADSAAFLDVVARGDASPWAPMFLTMSSVFPDGAREEELARIYRPRPGLPFTAIRLGDRLRYVWTTFTPQQIDVDVTSELGREYLTSILDAAAGAGVRLVRLDAVGYAVKTPGTTCFMTPETFDFIADFAGQARQRGVDLLVEVHSYYRRQVEIAREVDLVYDFALPPLVLHALYTGDGTALVDWLRERPRNAVTVLDTHDGIGVIDVGPDQTVAPGEAERPGLLTPEQVDALVEGIHERTGGASARATGAAASNLDLYQVNSTFYDALGRDDARYLAARTIQLFTPGIAQVYYVGLLAGENDVELLERTGVGRDVNRHHYTSAEVDAALATPLVQRLLALCRFRSTFPAFDGDVDTALDGSRLTMERRGAEVPDAVARLEVDLVSGAGSLRWSLAEGAEAAIDLGGFAPQDLGGPAGR	PGPT0014210_233	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SUCROSE_METABOLSIM,PGPT0014210-gtfA|ycjM-K00690	NA	NA
AK001_00824	219			hypothetical protein	ATGAACTGCTTCGAATGTGCCACCGACCAGCAGACCACGACGCCCGCGGTCACCGTGTGCTCGCAGTGCGGAGCCGCCTCGTGCGTCCGGCACACCCGGGTCGCCCACGCGCACGAGGAGGTCGACTACTCCCCCGGAGCGCCCAGCGAGCTGGACCTCGGACGGCGGATGTTCTGCACGACCTGCGCACCCGCGTCAGCCAAGCAGGTCGGGGCCTGA	MNCFECATDQQTTTPAVTVCSQCGAASCVRHTRVAHAHEEVDYSPGAPSELDLGRRMFCTTCAPASAKQVGA				NA	NA	NA	NA	NA
AK001_00825	1389			hypothetical protein	ATGAACCAGCACATCGGTGTCGCGATCTCCGGCGGTGGGCACCGCGCCACGGCCTGGGGCCTCGGCACGTTGCTCTACCTGGTCGACAGCGGCAAGAACGAGGAGGTCTCCGCGATCTCCTCGGTGTCCGGCGGATCGATCGCCAACGGCGTCGTGGCGCAGGAGACCGACTACACGACCACCGACCCGCCCGACTTCGACCGCAGCATCAGACGGCTGGTGCGGCACCTCGCCGACACCGGCCTCTTCTTCTGGGGTCCGCCCACCAACGCCTACCTGCTGTCGGTGTTCGCCGGGGTCGGTGCCGCCCTGGCCACCCTGCTGTCCGGCGTCGTGTTCGCGTTCCTCGACGGCCTGTCGTGGCGGTCAGGTCTCACGCTGCTCGCCGGGAGCGTGCTCCTGGGGCTCACCGCCCGCTGGTTCGAGCGCCGCTCGCACGTCCTCGACCGCGCGCTGGCCCGGACCCACTTCCACCGGGACGGGAGGTCGACCCGGCTGGAGGACGTCGACCGGCCCCTCGACCACGTGGTGTGCGCGACGGAGCTGCAGTCGGCCGAGCACCTCTACCTCACGCCCCGGTTCCTCTACTCCTACCGGCTGGGGACCGGCTCGCCGAACGGCATGAGGCTGTCGACCGCCGTCCAGGCGTCCCTGAGCATGCCCGGCGCCTTCACCCCGCGGAGGCTGGCGACGGCACCCTACGGTTTCCACGGCGGCCCGCAGGACGGGGGAGTCGCCGAGGACTTCCTGCTCACGGACGGCGGCGTGTACGACAACCTGGCCGACCAGTGGCCCGACGGGCTCGAGACCCGCCTGGAGCGCTCGCCGGACCTGCCCGTCGTGGGTCGCACCATCGACGAGCTCGTCGTCGTCAACGCCACCACCGCGCTGGACTGGAGGCGGCTGCGGTACGCCCGCCGGTTCCTGGTCGGAGAGCTGTTCACCCTCCTGCGGTCCAGCAGCGTCATGTACCAGGTGCCCACCGAACGGCGTCAGCGTGGCCTGGTCCACAACTGGGTCGAGTGCGAGCGCACCGGCCGCGGGCAGCGGGGAGCGATCGTCCAGATCCAGCAGTCCCCGTACCGGATCGCCGACGCCTTCCTGACGAAGGGCGACGAGGACCGGGCCCGGCGAGCCCGCGCCGTGCTCGACCTGCTCGGCGACGACGACGAGTCGCGCCGGGCCTGGCAGGACCGGGCGGAGGCCGACGCGGCGGTGCCCACCGTGCTGCGTCGTCTCGGCAGGACGGCGACGGTCGACCTGCTCGAGCACTCCTACGTGCTCGCGATGTGCAACCTGCACGTCCTGCACGGGTACCCGCTCCTCGAGCTGCCGGGACGCGAGCGGTTCTCGCGTCTCCTCGAGGAGGAGCAGGCGTCGACGGCCTAG	MNQHIGVAISGGGHRATAWGLGTLLYLVDSGKNEEVSAISSVSGGSIANGVVAQETDYTTTDPPDFDRSIRRLVRHLADTGLFFWGPPTNAYLLSVFAGVGAALATLLSGVVFAFLDGLSWRSGLTLLAGSVLLGLTARWFERRSHVLDRALARTHFHRDGRSTRLEDVDRPLDHVVCATELQSAEHLYLTPRFLYSYRLGTGSPNGMRLSTAVQASLSMPGAFTPRRLATAPYGFHGGPQDGGVAEDFLLTDGGVYDNLADQWPDGLETRLERSPDLPVVGRTIDELVVVNATTALDWRRLRYARRFLVGELFTLLRSSSVMYQVPTERRQRGLVHNWVECERTGRGQRGAIVQIQQSPYRIADAFLTKGDEDRARRARAVLDLLGDDDESRRAWQDRAEADAAVPTVLRRLGRTATVDLLEHSYVLAMCNLHVLHGYPLLELPGRERFSRLLEEEQASTA				NA	NA	NA	NA	NA
AK001_00826	1653	treS_2	COG0366	Trehalose synthase/amylase TreS	ATGACGACGCGGCGGAGTGGTGACACGAGCGACGACACGACCGGCGCGCCACCCGGATGGCTGGCCGACGCCGTCATCTACGAGATCTACCCGCAGTCGTTCGCGGACTCGAACGGCGACGGCATCGGGGACCTGCCGGGCGTCATCGAGCACCTCGACCACCTGGAGTGGCTCGGGGTCGACGTCATCTGGTTCAACCCGTGCTTCGCCTCCCCGTTCCGCGACGCCGGCTACGACGTCGAGGACTACCTGACGATCGCGCCGCGCTACGGCACGAACGAGGACATGGTCGAGCTGGTCGAGCAGGCCCGCCGGCGCGGCATCCGGGTGCTGCTCGACCTCGTCGCGGGGCACACCTCGATCGACCACCCGTGGTTCGCGCGGGCCCTGGCCGACCCGACCGACGACCGGTACATCTGGGCCGACCGCGACGGGCCGGCGCTCGTCCCGTCGCCCGGCCCGCGCGAGGGCTGGTACCTGAAGAACTTCTTCGACTCCCAGCCCGCGCTGAACTTCGGCTACGCCCGGCCGCACCCGGACGAGCCGTGGCGGCAGGCGACCGACGCCCCGGGCCCGACGCGCAACCGCGAAGCCCTCAAGGAGATCATCGGGTTCTGGCTGGACCGCGGCGTGGCCGGCTTCCGTGTGGACCTGGCCTTCTCGCTCGTCAAGGACGACCCCGACCTGGAGGCGACCACCGCGTTGTGGCGCGAGATCGCCGGCTGGATGCGCGCGCGGTACCCGGACGCGGTGCTGCTGCCGGAGGCCGACGACGACAACACCGCCGACGCCGGGTTGCGGGGAGGCTTCGACGCGGACTTCGCCCTCGTCATCCAGCGGGAGCACAGCGCGCTGTTCAACAACGGCGCCACCGGCTACCTGACCTGGCAGGACCCGGCGGCGATGGAGCCCTGCTACGTCGATCCCGACGTCGACGAGGCGGCGGGTACCCGCGCGCTGGAGACGTTCCTGCGGGAGTGGGACGAGCGCGAGCGCCAGGCCGGCGCGGACCGGCTGGTCGTTCTGCCGACGGCGGACCACGACTTCTCCCGGCTCGCGACCGGGCCGCGCACGGGGGACCAGCTGCGGCCCGCCTTCACGTTCCTGCTGACCTGGGGATCGCTGCCGTCGATCTACTACGGCGACGAGATCGGGATGCGCAACCTGCCCGAGGCGCCGGAGACGGAGGGGAGCCGCTGGAACCCGGGCTACGACCGCGCGGGCTGCCGCACCCCGATGCAGTGGGACGACGCGCTGGCGAACAGCGGCTTCTCGACGGCACCGGCCGAGCGGCTCTACCTCCCGCAGGACCCGGACCCGTCCCGTCCCACCGTGGCGGCACAGCGGGACGACCCCGGATCACTCCTGCACCACGTGTGCGACCTCGTGCACCTGCGCCGGCGCACCCCGGCCCTGCGCACCGGCGGGCCGCGCACCGTGCTGCACGTCGGGTACCCGTTCGTCTACCTGCGCGGCAAGGAGCACCTCGTCGTCGTCAACCCCCGCCGCGAGGCGGCCCGGGCCACGATCCCGGCGCTCGCGGGCGCGACCGCGGCGACGCTCCTCGGTGACGGCGTCGAGGTCGCCGACGGCGTGGTGCAGGTGGTCGGCGGAGGCCACGCGGTGCTCGCCCTGACGGGACCCGGGAGCTGA	MTTRRSGDTSDDTTGAPPGWLADAVIYEIYPQSFADSNGDGIGDLPGVIEHLDHLEWLGVDVIWFNPCFASPFRDAGYDVEDYLTIAPRYGTNEDMVELVEQARRRGIRVLLDLVAGHTSIDHPWFARALADPTDDRYIWADRDGPALVPSPGPREGWYLKNFFDSQPALNFGYARPHPDEPWRQATDAPGPTRNREALKEIIGFWLDRGVAGFRVDLAFSLVKDDPDLEATTALWREIAGWMRARYPDAVLLPEADDDNTADAGLRGGFDADFALVIQREHSALFNNGATGYLTWQDPAAMEPCYVDPDVDEAAGTRALETFLREWDERERQAGADRLVVLPTADHDFSRLATGPRTGDQLRPAFTFLLTWGSLPSIYYGDEIGMRNLPEAPETEGSRWNPGYDRAGCRTPMQWDDALANSGFSTAPAERLYLPQDPDPSRPTVAAQRDDPGSLLHHVCDLVHLRRRTPALRTGGPRTVLHVGYPFVYLRGKEHLVVVNPRREAARATIPALAGATAATLLGDGVEVADGVVQVVGGGHAVLALTGPGS	PGPT0018560_3294	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
AK001_00827	1029			hypothetical protein	GTGACCCGACGCTCCGGCCGTCCGAGCTCCCTGTGGCGAGGGGTACGGCAATGGGTCGACCCGTTCGTCGTCGCCATCGTCCTCGCCCTCCTGATCGGCGTCGTCGTCCCCGTCCCTGACGACGTGCGCGGCGTGCTCGACGTCGTCACGGACGTCGCGATCGCCCTGCTGTTCCTGCTGTACGGCGCGCGGCTGCCGACGCGGGAGATCTGGCGGTCGCTGACCAACTGGCGCCTCCAGGGCTCCCTGCTCGTCGCGACGTTCGTCGCGTTCCCGCTCGCCGGGCTCGCCCTCTCCGCGGCCGTCGGCCCGCTCGTCGGCCAGGGGATCGCCGTCGGGCTGCTCTGCGTCTCGCTCCTGCCGTCCACGGTGAACTCCGCCGTCGCGTTCACGTCCGTGGCCCGCGGCGACGTCGCGGGGGCGATCTGCGGGGCCACCGTGTCGAACGTCGTCGGCATGGTCGCCACTCCCCTGCTGGTGCTCGGGCTGATGAGCGGGGCGGTCGCCGGTGACGGCGCCGTCGGGGTGGACGGTCTGCAGACGGTGCTGCTGCAGCTCCTCGCGCCGCTCGTGCTCGGCCAGCTCCTGCAGCCCTGGGTGGGCGGGCTCGTGCGGCGGCACAAGGCCGTCACCACGGCCGTGGACCGCGGGACGATCCTGCTCATCGTGTTCACGGCCATCAGCGGCGCGACCGCCGAGGGCATCTGGGCGGACATGACCGTGTGGGTCGTGCTGGTGCTGGTCGGGTCGGCCGGGGTGCTGCTGGGCGTCATGCTGGCCGCCACCTGGTGGGGCGGCCGCGCGCTGGGGCTGCCCCGCGACCAGCGGGTCACCCTGCTGCTCGTCGGAGGGATGAAGTCGCTGGCCACGGGCCTGCCGATGGCCTCGGCGCTGCTGCCCGCCGCCACCCTCGCCGTCGTCGTCGTGCCGCTGGTCGTCTTCCACCAGCTCCAGCTCGTGGTGTGCTCCGTGCTGGCCCGGCGACTCGGGCAGGAACCGGTACCGGCCGAGGCGGGGCAGGGCTCCTGA	MTRRSGRPSSLWRGVRQWVDPFVVAIVLALLIGVVVPVPDDVRGVLDVVTDVAIALLFLLYGARLPTREIWRSLTNWRLQGSLLVATFVAFPLAGLALSAAVGPLVGQGIAVGLLCVSLLPSTVNSAVAFTSVARGDVAGAICGATVSNVVGMVATPLLVLGLMSGAVAGDGAVGVDGLQTVLLQLLAPLVLGQLLQPWVGGLVRRHKAVTTAVDRGTILLIVFTAISGATAEGIWADMTVWVVLVLVGSAGVLLGVMLAATWWGGRALGLPRDQRVTLLLVGGMKSLATGLPMASALLPAATLAVVVVPLVVFHQLQLVVCSVLARRLGQEPVPAEAGQGS				NA	NA	NA	NA	NA
AK001_00828	1632	stp_2		Multidrug resistance protein Stp	ATGACCCAGACCACCGCTGCGCACGAGACCCAGGAGCGGGCCTCGTGGGTCCCCATGATCGGCCTGTTCCTCGCCCAGGTGCTGATGTCGTTCAACGTCGCGGCGCTGCCGATCTCGATCGGCGGCATGGTCGAGGAGTTCGGCGTGCCGCCGACCGTCGTGAGCTCGACGATCGTCACCTACGGCCTCGCGGTGGCGGCGCTCGTGATGACGGGTGCCAAGCTCGGCCAGCGGATCGGCTGGGTCGTGGTCTTCCGGGTCGTCATCGCGACGTTCGCCGGCTCCGCCCTGATGATGATCTTCTCGCCGACGGTCGGCTGGGCGATCGCCGGGCAGGCCGTCGCCGGGGCGTCGGCCGCGATCATCGTGCCGTCCCTGGTGGCGCTCGTCGCGGAGAACTACCACGGGCCCCAGCAGGCGACGGCGATCGGGTCCCTCGGCTCCGCCCGCGCGATCTCCGGCGTCAGCGCGTTCTTCATCGGCGGAACCCTGGGCACGCTCGTGGGATGGCGCCCGGTGTTCGGCATCGTGCTGGGCCTGGCGGTGGTGGTCTTCCTGCTCAGCTTCCGGCTGCGGTCCGACGCCGGCGACCCCGGCATCCGGATCGACCTGGTGGCCGCGGTCCTCATCGGCGCCGCGATCGTGTCGCTGACGCTCGGGTTCAACAACCTCAACGCGTGGGGCCTGTTCTACGCCCGGGAGGATGCGCCGTTCGACCTCCTGGGTCTCTCGCCCGCGCCCCTGCTGGTCGTGCTCGGCGTGGTGCTCGGCCAGGTCTTCTTCGGGTGGACCCGACGTCGGATGGCGGACGGCAAGGTCCCGCTGGTCGACCTGAGCGTCCTGGGCCGCGCCAGCGAGCGGGCCGCGGTGTACGCGATGTTCATCGTCGTCGCGCTCGAGGCGGCACTGAACTTCACCGTCCCGCTGTACATCCAGATCGTGCAGGGGCGGACCCCCTTCGACACGGCGTTGGCGATGATGCCGTTCAACCTGACCGTCTTCGTCACGGCCACGCTCATCGTGCGCTTCTACCGGCGCTACCCGCCCCGCACGATCGGCGTGTTCGGGTTCGTCCTGACCACGGTCGCCCTCGGATGGCTGGCCTTCGTGGTGACGAACAACTGGGAGACGCTCCCCACGATCCTCGGGCTGTTCGTCTTCGGCGTCGGTCAGGGAGCCCTGGTCACGCTCGTGTTCAACGTCCTGGTGACCGCCGCGCCCAAGCGCCTGGCCGGTGACGTCGGCTCGATCCGCGGGACGACGCAGAACCTGGCCTCGGCGGTCGGTACCGCCCTCGCCGGTGCCCTGCTGGTCACGGTCCTCAGCGTGGGGGTGGGACGTGCCGTCGTCGACCACCCCGAGCTCCCGCCGGAGCTGGTGGCCCAGGTGGACCTCGACAACGTCAACTTCGTCAGCAACGACGACCTGCGCGAGGTCCTCGCCGGCACCGACGCGGACGACCAGCAGGTCGAGGCCGCCGTGGCGCTCAACGAGGAGGCGCGGCTCGACACGTTGCGCATCGGGCTGCTGATCCTGGCAGGTCTCAGCGCGACGGCCATCCTGCCGGCCAGCCGGTTGCCCCGGTACCGGCCCGACGAGATCCCCGACCCCCGGCCGACCCCGACGTCGTGA	MTQTTAAHETQERASWVPMIGLFLAQVLMSFNVAALPISIGGMVEEFGVPPTVVSSTIVTYGLAVAALVMTGAKLGQRIGWVVVFRVVIATFAGSALMMIFSPTVGWAIAGQAVAGASAAIIVPSLVALVAENYHGPQQATAIGSLGSARAISGVSAFFIGGTLGTLVGWRPVFGIVLGLAVVVFLLSFRLRSDAGDPGIRIDLVAAVLIGAAIVSLTLGFNNLNAWGLFYAREDAPFDLLGLSPAPLLVVLGVVLGQVFFGWTRRRMADGKVPLVDLSVLGRASERAAVYAMFIVVALEAALNFTVPLYIQIVQGRTPFDTALAMMPFNLTVFVTATLIVRFYRRYPPRTIGVFGFVLTTVALGWLAFVVTNNWETLPTILGLFVFGVGQGALVTLVFNVLVTAAPKRLAGDVGSIRGTTQNLASAVGTALAGALLVTVLSVGVGRAVVDHPELPPELVAQVDLDNVNFVSNDDLREVLAGTDADDQQVEAAVALNEEARLDTLRIGLLILAGLSATAILPASRLPRYRPDEIPDPRPTPTS				NA	NA	NA	NA	NA
AK001_00829	1035	glsA1	COG2066	Glutaminase 1	GTGGATCTCGACGTGACGGATGTCGAGCAGCAGGTGTCGACGGGCGTCCTGCCCGGCGCGAGCAGGATCGACGAGCTGGTCGCGGACGCGCACGCCCGCTACCGGGACCTCGAGGACGGTCGGGTGGCCGACTACATCCCGGTGCTCGCCGGCGTCGACCCGCGCCTCTTCGGGCTGTGCGTCGCCGAGGTGGGCGGCGGCCTCCACGGTACGGGCGACGCGGGGGTGGAGTTCTCGATCCAGTCGATCTCGAAGGCGTTCGTCTACGCCCTGGTGTGCGAGGCCGCCGGGCACGAGGGCGTGCGGGACCGGGTCGGCGTCAACAACACCGGGTTGCCCTTCAACTCGGTGATGGCGGTCGAGCTCAACGACGGACATCCGATGAACCCCATGGTCAACGCGGGCGCGATCGCCACGACGGCCCTGGTCCCCGGGACGACGCCGGCCGAGCAGTGGGAGAACGTGCGCACCGGCCTGTCCCGGTTCGCCGGGCGCCAGCTCGAGCTCGACGGCACCGTCTACCGCTCGGAGTCCGAGACGAACGCGCGCAACAAGGCGATCGCGCGGTTGCTCCAGAGCTACGGACGGATCGACGTCGACCCCCTCGACGCGGTGGACGTCTACACCCGCCAGTGCGCGCTGCGGGTCAGCGCCCAGGACCTCGCCGTCATGGGCGCCACGCTGGCCGACGGCGGCGTCAACCCGCTGACGGGGGAGCGGGTGGTCTCGACGCAGGTGTGCCGGGACACCCTGGCGGTGCTGGCGTCGACCGGCATGTACGAGCGCTCCGGCGAGTGGCTGTTCGAGATCGGCCTGCCCGCGAAGTCGGGCGTCGCGGGCGGCATCGTCGCGGTCGCGCCGGGCAAGGGCGCGATCGGCACGTTCTCCCCGCCCCTGGACCCGGCGGGGAACAGCGTGCGAGGACAGCGCGCCGTCGCCCACCTGTCGCGCAGCCTGGGCCTGAACCTCTTCGCCTCGTCCGTCCACGTCCCCGAACGCGCCGATCCCCCCGACAGGCAGGTGCCCCTCGCATGA	MDLDVTDVEQQVSTGVLPGASRIDELVADAHARYRDLEDGRVADYIPVLAGVDPRLFGLCVAEVGGGLHGTGDAGVEFSIQSISKAFVYALVCEAAGHEGVRDRVGVNNTGLPFNSVMAVELNDGHPMNPMVNAGAIATTALVPGTTPAEQWENVRTGLSRFAGRQLELDGTVYRSESETNARNKAIARLLQSYGRIDVDPLDAVDVYTRQCALRVSAQDLAVMGATLADGGVNPLTGERVVSTQVCRDTLAVLASTGMYERSGEWLFEIGLPAKSGVAGGIVAVAPGKGAIGTFSPPLDPAGNSVRGQRAVAHLSRSLGLNLFASSVHVPERADPPDRQVPLA	PGPT0020215_944	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425	NA	NA
AK001_00830	684			hypothetical protein	GTGACGCAGCGCATCCTCCACGTGGTCACGAACGTGAGTCACTACGACGACCCGTCGCACCCGACCGGGTTGTGGCTGTCCGAGCTCACGCACGCCTGGGAGGTCTTCGCCGAGCGCGGCGTCGAGCAGACGATCGTCAGCCCCCAGGGCGGACGGTCGCCGCTGGAGCCGCGCTCGCTGAAGTTCCCGACCTACGACAAGACCGCCAAGGCCTGGCACGGCGACCCCGACCGGATGGAGCTGCTGGAACGCACCGCCCGCCCCGACGAGATCGACGCCGCCGACTACGACGCGATCTACTTCACCGGTGGTCACGCCGTGATGTACGACTTCCCCGACAGCGAGGGTCTGCAACGCCTCACCCGGGAGATCTGGGAGCAGGGCGGCGTCGTCTCCTCCGTCTGCCACGGGTACTGCGGCCTGCTCAACACCCGGCTCTCGGACGGCACCCTCCTCGTCACCGGGCGCCGGCTCACGGGCTTCGCCTGGACCGAGGAGGTGCTCGCGCGCGTCGACAAGATCGTGCCCTACAACGCCGAGGAGGCGGTGAAGGACCGGGGGGCGCTCTACCAGAAGGCGAAGCTGCCGTTCGTCTCGTTCGTCGTCCTCGACGGGAAGCTCGTCACCGGGCAGAACCCCGGCTCCGCCCGGGAGACCGCCGAGAAGGTCGCCGCGCTCCTCTGA	MTQRILHVVTNVSHYDDPSHPTGLWLSELTHAWEVFAERGVEQTIVSPQGGRSPLEPRSLKFPTYDKTAKAWHGDPDRMELLERTARPDEIDAADYDAIYFTGGHAVMYDFPDSEGLQRLTREIWEQGGVVSSVCHGYCGLLNTRLSDGTLLVTGRRLTGFAWTEEVLARVDKIVPYNAEEAVKDRGALYQKAKLPFVSFVVLDGKLVTGQNPGSARETAEKVAALL				NA	NA	NA	NA	NA
AK001_00831	645	fabR		HTH-type transcriptional repressor FabR	GTGTCAACATCCCGCACGAGCTACCACCACGGCGACCTGCGCGCCGCCCTGCTCCGCGCCGCCGTCGACAGCCTGGAGGCCGGTGAGGCCTTCTCGATGCGCGGCGTCGCGCGGCGCGCCGGGGTCTCGCCCACGGCGCCCTACCGGCACTTCGCCGATCGGGAGGCCCTCGACGCGGCCGTCGCGGTCGAGGCCTTCCACGACCTGCGTCAGGAGCTGGAGCGAGCGGTGGCCGACCTGCCCGCGACAGCAGGTCCCGTCGACGAGATCGCGGCGCTCGGCGTGGCGTACGTGTCCTTCGCGCTGCGCCGCCCGGCGGTGTTCCGCCTGATGTTCGGCCACGAGTGCGACGACGAGAACGACGAGCGCGTCCGGGCGGCCCGCGAGCTGCACGTCGTGCTGGACCGCGTCGTCGAGCGCTCGATCCCGACCGCGGACGTCCCGAGCCTGTCGACGGCGCTGTGGGGCCTGGCGCACGGCCTGGCGTTCCTCCACCTGGACGGCAAGCTTCCGCCCGGGTCCGACGACGAGGTGGCCGCCCGCGTGCGGACCTCGGTCGCCGCGATCCTCGCCGTCGGCGTCGACGACCGACACCCGGAGACCCCGGAGCCCGCGACCCCCGCCCGACAGGAGGCACTCCCGTGA	MSTSRTSYHHGDLRAALLRAAVDSLEAGEAFSMRGVARRAGVSPTAPYRHFADREALDAAVAVEAFHDLRQELERAVADLPATAGPVDEIAALGVAYVSFALRRPAVFRLMFGHECDDENDERVRAARELHVVLDRVVERSIPTADVPSLSTALWGLAHGLAFLHLDGKLPPGSDDEVAARVRTSVAAILAVGVDDRHPETPEPATPARQEALP				NA	NA	NA	NA	NA
AK001_00832	939			hypothetical protein	ATGCAGACCATCCTGGGAGCGAACGGCCAGATCGCCGTCGAGCTCGCGCGCGAGCTGCACCGCTCGCACACCTCCGACCTGCGGCTCGTGAGCCGCCACCCGCGCCCGGTCCACGACACCGAGGCGCTCGTGCGCGCCGACCTGCTCGACGCCGAGCAGACGGCCGCCGCGGTCGAGGGCAGCAGCATCGTCTACTTCACGGCCGGGCTCCCGGCGGACACGGCACTGTGGGAGCGGCAGTTCCCGACGATGCTGCGGAACGCCCTGGACGCCACCCGCGCCGCCGGCGCGAGCTTCGCCTACTTCGACAACACCTACATGTATCCCCAGGACGACCGCCTCCAGACCGAGGACACGCCCTTCGCGCCGGTCGGTCGCAAGGGCCGGGTCCGCGCGGCGATGGCACAGATGGTGCTCGACGAGATCGAGCGGGGCGACATCCCCACCCTCATCGCCCGGGCTCCCGAGTTCTACGGCCCGGGACGGACGCAGAGCATCACGAACACGCTGGTCCTCGACCGGCTCGTCGCGGGACGGAAGCCTCGGGTGCCCGTCCGGGACGACCGGCGTCGGACGCTCGTCTGGACGCCCGACGCGAGCCGCGGCCTGGCCACGCTGGGCAACACCCGGGACGCGTTCGGTCAGACCTGGCACCTGCCCGTCTCGGACGAACGGCCGACCTACCGCGAGCTCGTCGCGACGGCGAACGAGGTGTTCGACCGGGACGCCGGCCACACCGTCGTCCCGCGCTGGGCGCTGACCGCCGCCGGCCTGGCCTCCCCGCAGGTCCGCGAGCTCGCCGAGCTCCTGCCGCGCTACGCCCACGACAACCTCTTCGACGCCACGAAGTTCGCGACCCGGTTCCCCGAGTTCGAGGTCACCCCGTACCGTCGCGGTCTGGAGATCATCCGCGAGGAGACCAGGCCCGACCACGGCTGA	MQTILGANGQIAVELARELHRSHTSDLRLVSRHPRPVHDTEALVRADLLDAEQTAAAVEGSSIVYFTAGLPADTALWERQFPTMLRNALDATRAAGASFAYFDNTYMYPQDDRLQTEDTPFAPVGRKGRVRAAMAQMVLDEIERGDIPTLIARAPEFYGPGRTQSITNTLVLDRLVAGRKPRVPVRDDRRRTLVWTPDASRGLATLGNTRDAFGQTWHLPVSDERPTYRELVATANEVFDRDAGHTVVPRWALTAAGLASPQVRELAELLPRYAHDNLFDATKFATRFPEFEVTPYRRGLEIIREETRPDHG				NA	NA	NA	NA	NA
AK001_00833	759			hypothetical protein	GTGACCGATGCACCCGTGGTGCTGATCTCCCCCGCGATGGCCATCGGTTCGCGCTACTACCGGCCCGTGGTCGCGGCGTTCGAGGACGCAGGGTGGGAGGCGCGCGCCCTGACACGTCGCGGCTTCGAGGACCCGACCATCACGGCCGCCCGCGGCCGGGACTGGAGCTACCGGGACGAGATCGGCGAGATCGCTGCCGCCGTCGCCGCGGCACGCCGCGAACGCCCGGACCGCCCCGTCCTGCTGCTCGGCCACAGCCTCGGCGCCCAGCTCGCAGCGGGCTACCTGCTGACCGGTGGGGCGGTGGACGGACTGATCACCGTCGCGGGGGCTCTGCCCGACCACCGCCACTTCCCGTACGGCGGTCTGCACCTCGTGCTCATGGGTGGTGTCATCGTGCCGGCGCTCACGGCCGTCTTCGGCTACCTGCCCAAACCCGCGTTCGGCGGTCCCGGCGCCCGCACCCTCATGCGCGAGTGGGCGGCGATGGCCCGCAACGGGCGGCCGCCCTTCCCGACTGCGCCACCCATCGGGACGCCGTCGTTCGTCGTCAGCCTCGAGGGCGACACACTGGCGCCCCGCCGGGCGGTCGAGGCGTTCGCCCGGGACCTGTTCGACCCCGAGGTCGTCACCCGCTGGGACTACGCCGACCGCGAGGTGCCCGCCGGAGCGAGCAACGACCACATCCGCTGGGTCCGCTCCCCCGAGCGCGTGGTCTCCGCCGCGGTGCAGTGGTGGTCCGGCCGTCCGCGCGGCTGA	MTDAPVVLISPAMAIGSRYYRPVVAAFEDAGWEARALTRRGFEDPTITAARGRDWSYRDEIGEIAAAVAAARRERPDRPVLLLGHSLGAQLAAGYLLTGGAVDGLITVAGALPDHRHFPYGGLHLVLMGGVIVPALTAVFGYLPKPAFGGPGARTLMREWAAMARNGRPPFPTAPPIGTPSFVVSLEGDTLAPRRAVEAFARDLFDPEVVTRWDYADREVPAGASNDHIRWVRSPERVVSAAVQWWSGRPRG				NA	NA	NA	NA	NA
AK001_00834	1143			hypothetical protein	GTGGTGGTCCGGCCGTCCGCGCGGCTGACCGGCGACGACGTCCCCTCCGGCGGGAGAATCAGGTTCCCTGCCGGCCAGACCCACGGCACGATATCGGTCATGGATCTCGTCTCGCCCCACAAGGCTTCCCCCGGTGACCAAGTCGCCGTCGTCTCGCCGTCGTTCGCCGCGCCCGGGTTCGCCCCCGCGGTGCACGAGCAGGCGATGCAGCGCCTGCAGGAGGTCACCGGCCTGGTCCCCGTCGAGTACCCGACCACCCGACGTCTCGGCGCGACGCCGCAGGACCGCGCTGCCGATCTCAACGCGGCCTTCGCGGACCCCGAGATCCGCGCCGTGCTGGCCACGATCGGCGGCGAGGACCAGATCACCGTGATCCCCCACCTCGACGCCGAGCTCGTGCGCGCGGACCCGAAGCCGTTCCTCGGGTACAGCGACAACACCAACCTCCTCAACTGGCTGTGGATGCACGGCGTCGCGGGCTTCTACGGCGGGTCGACCCAGGTGCACCTCGGGCCCGGGCCCTCCGTCGATCCGGTGCACGCCGCCTCGCTGCGCGCCGCGCTGCTGACCGGCGAGCGCCTGGAGATCACCGAGCCCGGCGAGTCCGAGGACTTCGGCGTCGACTGGCAGGACCCGGCCGCGCTCACCGCGCACGGCGACCGCGAGCGCACCGAGCCGTGGACGTGGGCCGGACCCGAGCGGTCCGTCACGGGCCGCACCTGGGGAGGCTGCCTCGACGTGCTGTCCTGGATCCTCACCGCGGGCCGTTTCCCGGCCGACCCGGGGGTCGTCGACGGCGGGGTGCTGCTGCTCGAGACCTCCGAGGAGCTCCTGCCGGCCCGCGAGGTCGGCTGGATCGTGCGGTCGCTCGGCGAGCGCGGCCTCCTCGAGGCCGTGCACGCCGTCGTCGTCGCCCGGCCCCCGACGTCGTCGTTCGAGGTGGAGCGCACGACGGCGGAGCGCGCCGCCCAGCGTGCCGAGCAGCGCGACGTCGTCGTCGAGACGGTGCAGCGCTACAACCCTGACGCTGTCGTGGTGGTCGGGGTGCCGTTCGGCCACACCCGGCCGCAGTGGATCCTGCCCTACGGGGGCATGGTCACGGTCGACGGTGCGCAGCAGCGCGTCTGGGCGGAGTACGCATGA	MVVRPSARLTGDDVPSGGRIRFPAGQTHGTISVMDLVSPHKASPGDQVAVVSPSFAAPGFAPAVHEQAMQRLQEVTGLVPVEYPTTRRLGATPQDRAADLNAAFADPEIRAVLATIGGEDQITVIPHLDAELVRADPKPFLGYSDNTNLLNWLWMHGVAGFYGGSTQVHLGPGPSVDPVHAASLRAALLTGERLEITEPGESEDFGVDWQDPAALTAHGDRERTEPWTWAGPERSVTGRTWGGCLDVLSWILTAGRFPADPGVVDGGVLLLETSEELLPAREVGWIVRSLGERGLLEAVHAVVVARPPTSSFEVERTTAERAAQRAEQRDVVVETVQRYNPDAVVVVGVPFGHTRPQWILPYGGMVTVDGAQQRVWAEYA				NA	NA	NA	NA	NA
AK001_00835	726			hypothetical protein	ATGATCACGCTCGTCGGCGGCGGGCCGGACACGACACGTTCGCGGGAGGTCGTCGATCCGTACGTCCGTGCCTGTCGCCGTCGGCAGGTCCGGCGGGTCGCGCTCCTCCTGGCCGGGGATCGGGCCGTCGCCGATCACTACGCACCGGACTACGTCTCGCTGCTCAGCCCGATCGCCGACGCCCTCGAGGTCGTCCCGCTCGCCGAGGGCATGAGCGCAGAGACCGTCGGACGGTATGACGGGTTCGTCGTCGGAGGGGGGCCGGTACCGCTCTACCACCACGCGCTGGCCGCTGTGGCACCAGAGATGAGGCTGCTCGTCCAGGCGGGTGCGCCCTATCTCGGCTTCTCGGCCGGCGCGATGGTGGCCGCCGAACCCGCGATCCTCGGCGGCCACCTCTCCGCCGGTGCCCCGGTGTGCCCCGAGGACTGGTCCGAGGGCCTCGACGAGATCGACGTGCGGCCGGGACTCGGCCTCGTGCCGTGGGCGGTCGACTCCCACGCCACGCAGGCCGGCACCCTTGGCAGAGCCGTCGACGTCGTCGCGAACCGGCTCGCTCCCGGCGCTGTGGCCATCGACGAGGACACAGCCCTGTCCGTCGACGGGCAGCACGACCGCCCCGAGGTCGCCGGATCCGGCGGCGCCTGGTGGGTGACCCCGCTGACCCACTCGTCAACCGGCGGGGCGGTCTCGACCGAGGTCCGCGTTCGACGCGCCACCCGGTGA	MITLVGGGPDTTRSREVVDPYVRACRRRQVRRVALLLAGDRAVADHYAPDYVSLLSPIADALEVVPLAEGMSAETVGRYDGFVVGGGPVPLYHHALAAVAPEMRLLVQAGAPYLGFSAGAMVAAEPAILGGHLSAGAPVCPEDWSEGLDEIDVRPGLGLVPWAVDSHATQAGTLGRAVDVVANRLAPGAVAIDEDTALSVDGQHDRPEVAGSGGAWWVTPLTHSSTGGAVSTEVRVRRATR				NA	NA	NA	NA	NA
AK001_00836	1176		COG0628	Putative transport protein	ATGGGACTCTTCGGCCGTCGTGCGCGACGCATCGACCGCAGCCCGGCTCAGGTGACGCCGGTCGAGTCGCGGCCGCCCCGCGATCCCGAGCCGAGCGGCGCCTCGAAGCTGTGGTCCGACGGCGTGGGCCGGGTCGCGACACGCTCGCTGCAGGTCCTCGCGGTGATCGCGGTCGTCGCCGTCCTCGCCTTCGCGGGCACGCGCCTGACCCTCGTCGTGATCCCGCTCCTGATCGCGCTGGTCCTGGCGGCGGCGATCTCGCCGCTGGTGTCCTGGCTGCGCCGCCGCGGGGTGCAGTCGATCCTCGCGACATGGCTCGCGCTCCTCGCGCTGATCGCCATCCTGGCCGCCGTCATGTGGCTGGTGGTGCGTGCCGTCGTCGACCAGTGGGACGAGCTGCAGCAGCAGGCATTGGACGGGTTCGACTCGCTGCAGACCTACGTCCAGGACCTGCCGTTCCAGATCTCCTCCGAGCAGATCAGCTCGGTGCGGGACTCCGCGCTGAACTTCCTGCAGTCCAGCGCGGTGGGGTCCGGTGCGCTCCAGGGCGTGTCGCAGACCGCGGACTTCGTCGCGGGCTTCTTCATCATGATCGTCGTGCTGTTCTTCTTCCTGAAGGACGGCCCGGCCATGTGGGAGTTCCTCCTGCGCCCGTTCGACGGCGAGGCGTACGAGCGCGGTCGGCGTGTCGGGACGGCGACCATCCAGACCCTGGGCAACTACGTCCGCGGGACGGCGATCGTGGCGGCGGCCGACGCCGTCGGTATCGGGATCGGCCTCGCGATCGTGGGCGTGCCCCTGGCGCTCCCGCTGTCGGTCCTGGTCTTCCTGCTCGCCTTCATCCCCCTCGTCGGTGCCACCCTGGCGGGCATACTCGCCGCGCTGGTCGCGCTGGTCGCCGTGGGTCCGGTCGAGGCGCTGATCGTCGTCGCGATCGTCGTCGGTGTGAACCAGCTCGAGGGCAACTTCCTCCAGCCGATCGTCATGGGCCGGACCCTGCAGCTGCACCCGCTGGCCATCCTGTTCGCCCTGACGGCCGGCACGGTGCTCGTCGGCATCACCGGCGCCGTGCTCGCCGTGCCGATCGCGGCGTCGATCTGGCGGGCGATCCAGGTGTGGGACGGCCCGAACCTGCCGGCGAAGTTCGCGCGCCAGAAGCGATCCGAGACCGTCTGA	MGLFGRRARRIDRSPAQVTPVESRPPRDPEPSGASKLWSDGVGRVATRSLQVLAVIAVVAVLAFAGTRLTLVVIPLLIALVLAAAISPLVSWLRRRGVQSILATWLALLALIAILAAVMWLVVRAVVDQWDELQQQALDGFDSLQTYVQDLPFQISSEQISSVRDSALNFLQSSAVGSGALQGVSQTADFVAGFFIMIVVLFFFLKDGPAMWEFLLRPFDGEAYERGRRVGTATIQTLGNYVRGTAIVAAADAVGIGIGLAIVGVPLALPLSVLVFLLAFIPLVGATLAGILAALVALVAVGPVEALIVVAIVVGVNQLEGNFLQPIVMGRTLQLHPLAILFALTAGTVLVGITGAVLAVPIAASIWRAIQVWDGPNLPAKFARQKRSETV				NA	NA	NA	NA	NA
AK001_00837	861			hypothetical protein	ATGTCATTCCGCTCGCTGTTGTCCGCCGTCGTCGCCTGCGTGCTCGCAGCCACGATCGGTCTCGTCGTGCCCACGGTCACCGCCGCACCTGCCGAGGCTGCCGGCGACAAGGTCTCGGCACGCAAGCTGCTGCGGCAGCTACCGGTTCGGTCCGAGACGAACAAGGGCTACGACCGGTCGAAGTTCCGCCACTGGATCGACACCGGCGACAAGGACGTCTGCGACACCCGCGAGGAGGTCCTCATCGCCGAGGCCGTCCGCACGCCCCGCGTCCGCGCGTCGACCTGCGCGATCTCCGGCGGGAAGTGGCGCTCGAAGTACGACCGACGCACCACGACGAACCCGTCGACGTTCGACATCGACCACCTCGTGCCGCTGAAGGAGGCATGGGCCTCCGGGGCGAAGAAGTGGACCAAGAACACGCGCAAGCGGTTCGCCAACGACCTGCGCTACAAGCACTCCCTCATCGCGGTGTCCGCGTCGTCCAACCGGTCCAAGGGCTCCCGCGAGCCGCACCAATGGATGCCCCCGAACAGCTCCTACCGCTGCGTCTACGTCAAGCAGTGGATCGCCGTGAAGTGGCGCTGGAAGATGAGCGTCAACACGAAGGAGAAGCGCTACCTCAACGCGCGGCTGGACAAGTGCAAGAGCGTCCAGGTCCTCAAGCCCACCCGCGCCACGGTCAAGCTCCGGTCGACCAGCACGAGCTCGGGGTCGACCGACCAGCGCAGCGCCCCCTGGAACCAGCCCGGACCCGACCTGGACTGCTCAGACATCCGCAAGAAGGTCCGCGTCTACCCGCCCGACTACCACCGCCTCGACGCCGACGGTGACGGCTGGGGCTGCGAGTCGTACGGCTGA	MSFRSLLSAVVACVLAATIGLVVPTVTAAPAEAAGDKVSARKLLRQLPVRSETNKGYDRSKFRHWIDTGDKDVCDTREEVLIAEAVRTPRVRASTCAISGGKWRSKYDRRTTTNPSTFDIDHLVPLKEAWASGAKKWTKNTRKRFANDLRYKHSLIAVSASSNRSKGSREPHQWMPPNSSYRCVYVKQWIAVKWRWKMSVNTKEKRYLNARLDKCKSVQVLKPTRATVKLRSTSTSSGSTDQRSAPWNQPGPDLDCSDIRKKVRVYPPDYHRLDADGDGWGCESYG				NA	NA	NA	NA	NA
AK001_00838	486			hypothetical protein	GTGGTCACCGCCCGCGGCATCGTCCAGCATGGCGGGATGCGTCCGGATGACGACCTCGAGGAACGTCTCGACCGGCTGGAGTCGACCCAGGCTCTCCACCGCGTGGTCGCGGAGTACGCCCACGGAGCGGACAACCGTGACCTCTCCCGCTTCCTGGCGACGTTCCATCCCGACGGCGCGTGGGACGTCGGCGTAGCCCGCTTCGTCGGCCACGACCAGATCCGGGCCGCCATAGAGCACCAGTGGGACGCGCAGCCGCAGATGCACCACTGGACCAGCAACACCTCCATCACCCTGACCGGGCGGGACGCGGCCGAGGGCGTCTCCAGCGTCGCGGCGTTGACGCGACGGGCCGACGGACGGTGGCTCCTCTCGGCGGGCAGCTACCTGGACTCCTTCGAGCGGCGTGCCGGCAGCTGGGCGATCGCGACGCGCCGTGCCGTCGTGCACTCGAGCTTCGACCTCGCCACAGACGAAACAAGCTAG	MVTARGIVQHGGMRPDDDLEERLDRLESTQALHRVVAEYAHGADNRDLSRFLATFHPDGAWDVGVARFVGHDQIRAAIEHQWDAQPQMHHWTSNTSITLTGRDAAEGVSSVAALTRRADGRWLLSAGSYLDSFERRAGSWAIATRRAVVHSSFDLATDETS				NA	NA	NA	NA	NA
AK001_00839	3069			hypothetical protein	ATGTCGATCGAGGAGCTCGAAGCGGGATACGGAGCGTCGTCGCCCGCCTTCGACCGCACCCCTCCGCAGGACATCCCCGCCGAGATGAGCGTGCTCGGCGGCATGCTGCTGTCCAAGGACGCGATCGCCGACGTCGTCGAGCAGATCCGCGGCGTCGACTTCTACCGCCCCGCCCACGAGGCCATCTACGAGGCGATCATCGACCTCTACGGCCGCGGCGAGCCGGCCGACGCCATCACCGTCGTCGCCGAGCTGACCAAGCGCGGCGAGATCGGACGCATCGGCGGCGCGTCGTACATCCACGACCTCATGGCCGGCGTGCCGACGGCTGCCAACGCCGGCTACTACGCCCGGATCGTCCGCGAGCGGGCCGTGCTGCGCCGGCTCGTCGAGGCCGGGACCAAGATCGTCCAGCTCGGGTACGCCACCGACGGCGGCGAGGTCGAGGCGGTCGTCAACAACGCCCAGGCGGAGATCTACGCCGTCACCGAACGCAAGACCACCGAGGACTACGCGCCGCTGGCCGACATCATCGGCGGCACGATGGACGAGATCGAGGCTGCCGGGAACCGTGGCGAGGGCATGGTCGGCGTGCCCACCGGGTTCGCGGACCTCGACCGGCTGACGAACGGCCTGCACCCCGGGCAGATGATCGTCGTGGCGGCGCGGCCTGCCATGGGTAAGGCGCTTGCGCTCGATACGCCGCTGCCGACGCCGACCGGCTGGACCACGATGGGCGAGGTCGCCGTCGGCGACGAGCTGCTCGCCCCCGACGGCACGCCCACGCGCGTCGTGGAGGCCACCGAGATCATGACCGACCGGACCTGCTACGAGGTGGAGTTCGACGACGGCACGACCATCGTCGCGGACGCCCAGCACGAGTGGGCGACCAGCCCGTCCGGTGACCCCGTCGACACGTCGGTGCGGACGACCCAGGCGATCGTGGCCTCGATGGATCGCGGCGAGGCGCACTCGGTGTCGCGACCCGGTGCGGCGTGGAAGATCGTCGACGTTCGCTCCGTCGCCTCGGTGCCGGTGCGCTGCGTCCAGATCGACCACCCGGAGCATCTGTACCTGGCGAGCCGGGCCATGATCCCGACCCACAACTCGACGCTGGCGCTGGACCTGGCCCGCGCGGCGTCCATCAAGGCCCAGAAGACCTCCGTGGTCTTCTCGCTCGAGATGAGCCGCAACGAGATCACCATGCGTCTGCTGTCGGCCGAGGCGCGTGTGCACCTGCAGAAGCTGCGCAACGGCTCCATGGGCGACGACGACTGGCAGAAGCTCGCCAAGATCATGGGCAAGGTGTCCGAGGCGCCGCTGTTCATCGACGACTCGCCGAACATGTCGCTCACCGAGATCCGCGCCAAGTGCCGACGGCTCAAGCAGAAGCACGACCTCGAGCTCGTCATCGTCGACTACCTGCAGCTCATGACGTCCGGCAAGAAGGTCGAGTCCCGCCAGCAGGAGGTCTCCGAGTTCTCGCGTGCGCTGAAGCTGCTCGCGAAGGAGATCGAGGTCCCGGTCATCGCGCTGTCGCAGCTCAACCGTGGTCCCGAGACCCGCAGCGACAAGAAGCCGCAGATGTCCGATCTTCGTGAATCCGGATGTCTGACCGAGGACACGAGGATCCTCCGCGCCGACACGGGGGCCGAGACGACGATGGGCGAGCTCCACGCCCAGGGCGCCACCGACGTGCCGGTGTGGGCGCTCAACGACCGCCTGCAGTACGTGCGTCGTCACCTCACGCACGTGTTCTCCACTGGGGTGAAGCCCGTGTACCGGCTCCGGTTGGCCTCCGGCAAGGAGATCGAGGCGACGGCGAACCACCCGTTCCTCACCTACGAGGGCTGGACCCCGCTCGGCGAGCTGGAAGTCGGGTCCCGGCTCGGTGTGCCGCGGCACGTCCCGGGACCGGAGCAGAACACCGCGTGGGACGACCGCAAGGTGGTGATGCTGGCGCACCTGCTCGGTGACGGATCGTTCGTCAAGCGGCAGCCCATCCGCTATGCCTCGATCGACGAGCGCAACCTGGACGCGGTCAGCGATGCGGCGACCGCGTTCGGCATCACGCCGGTGCGCGACGACTACGCGGCCGCCCGCGTGACCACGCTCCGTCTGCCGGCGCCATACAAGCTGGCGCGCGGGAAGAGAAACCCCGTGGCCGCATGGCTGGACGACCTGGGGCTGTTCGGCGCCCGGAGCCATGAGAAGTTCATCCCGTCGGGTGTGTTCCACCTGCCCAAGGAACAGATCGCGCTCTTCATCAAGCACATCTGGGCGACCGACGGATCGGTGACGGTTAACAAGAACCAGCGGGGCGGACGTATCTACTACGCCTCCACGTCACGAGAGCTCGTCGACGGGCTCGCGCGCCTCCTGCTGCGCTTCGGCATCTCGACGAGGATTCGGCGCGCCACGCTGAAGGGTGCCTACCGGCAGGGCTACACGCTCGACGTCTCGGGTGTGGACGACCAGCGACGGTTCCTCCAGGAGGTTGGCGTCCACGGTGACCGCGGTGATGCGGCCGCCGAGCTTCTCGGGATCATTCGCGAGACCCAGGCGAACACGAACCGGGACACCGTGCCTCGCCAGGTGTGGGACGACGTCCGTGACCTGCTGGTCGAGCGCGGGATGTCTCACCGGCAGTTCGCCGAAGCGATCGGTACACAGTTCTGTGGCAGCACGCTGTGGAAGCATGCACCGTCGCGGCAGCGGCTCGGTAAGATCGCCGACGTCCTCGAGAGCGAAGAGCTCGAGATCATGGCGGTCAATGACCTGCTGTGGGACGAGGTCGTGTCGATCGAGTCGATGGGGGAGAAGCAGGTCTTCGACGCGACGGTGCTCGACACGCACAACTTCATCGCCAACGGCATCGCTGTCCACAACAGCATCGAGCAGGATGCCGACATGGTGATCCTGCTGCACCGCGAGGACGCCTACGAGAAGGAGTCCCCGCGCGCTGGAGAGGCCGACCTGATCGTCGCGAAGCACCGAAATGGTCCGACCGACACGATCACCGTGGCTTTCCAGGGCCACTACTCGCGGTTCGTCGACATGCAGGTCTGA	MSIEELEAGYGASSPAFDRTPPQDIPAEMSVLGGMLLSKDAIADVVEQIRGVDFYRPAHEAIYEAIIDLYGRGEPADAITVVAELTKRGEIGRIGGASYIHDLMAGVPTAANAGYYARIVRERAVLRRLVEAGTKIVQLGYATDGGEVEAVVNNAQAEIYAVTERKTTEDYAPLADIIGGTMDEIEAAGNRGEGMVGVPTGFADLDRLTNGLHPGQMIVVAARPAMGKALALDTPLPTPTGWTTMGEVAVGDELLAPDGTPTRVVEATEIMTDRTCYEVEFDDGTTIVADAQHEWATSPSGDPVDTSVRTTQAIVASMDRGEAHSVSRPGAAWKIVDVRSVASVPVRCVQIDHPEHLYLASRAMIPTHNSTLALDLARAASIKAQKTSVVFSLEMSRNEITMRLLSAEARVHLQKLRNGSMGDDDWQKLAKIMGKVSEAPLFIDDSPNMSLTEIRAKCRRLKQKHDLELVIVDYLQLMTSGKKVESRQQEVSEFSRALKLLAKEIEVPVIALSQLNRGPETRSDKKPQMSDLRESGCLTEDTRILRADTGAETTMGELHAQGATDVPVWALNDRLQYVRRHLTHVFSTGVKPVYRLRLASGKEIEATANHPFLTYEGWTPLGELEVGSRLGVPRHVPGPEQNTAWDDRKVVMLAHLLGDGSFVKRQPIRYASIDERNLDAVSDAATAFGITPVRDDYAAARVTTLRLPAPYKLARGKRNPVAAWLDDLGLFGARSHEKFIPSGVFHLPKEQIALFIKHIWATDGSVTVNKNQRGGRIYYASTSRELVDGLARLLLRFGISTRIRRATLKGAYRQGYTLDVSGVDDQRRFLQEVGVHGDRGDAAAELLGIIRETQANTNRDTVPRQVWDDVRDLLVERGMSHRQFAEAIGTQFCGSTLWKHAPSRQRLGKIADVLESEELEIMAVNDLLWDEVVSIESMGEKQVFDATVLDTHNFIANGIAVHNSIEQDADMVILLHREDAYEKESPRAGEADLIVAKHRNGPTDTITVAFQGHYSRFVDMQV				NA	NA	NA	NA	NA
AK001_00840	1323	yeeO	COG0534	putative FMN/FAD exporter YeeO	GTGGGTGACATCCGCCGCATCGATCGCGAGATCCTCGCGCTCGCCTGGCCGGCCCTCGGGGCGCTCGTCGCCGAGCCGCTGTTCGTGCTCGTCGACAGCGCCGTCGTCGGCCACCTGGGGACCGCCCAGCTCGCCGGGCTCTCCCTCGCCTCGACCCTGCTGGTCACCCTCGTCGGCCTCTGCGTCTTCCTCGCCTACGCCACCACCGCGGCCGTCGCCCGCCGCCTCGGCGCCGGGCACGACCGCGCCGCGCTCCAGTCCGGCGTCGACGGCATGTGGCTGGCCCTGGGCCTCGGCATCGTGCTCGCGGCGCTCCTGTGGACGGCCGCCCCGTGGGCCGTGGCGGTCATGGGGGCCTCGGACGACGTCGCCACGCACGCGGTCACCTACCTGCGCTGGTCCGCGCCCGGCCTGCCCGGGATGCTGCTGGTCCTAGCCACGACCGGCGTGCTGCGCGGGCTGCAGGACACCCGCACACCCCTGTGGGTGGCCTCGGGCGGCGCCGTCTTCAATGCTGTCGGCTCGGTCACCCTGGTCTACGGCGTCGGCCTGGGCATCGCGGGGTCGGCCCTGGCGACGACGACGGCGCAGCTGCTGATGGCGGTCGTGCTCGCCGTCGTCGTGGTCACCGGGGCCCGAAGCCGGGGTGCCTCGCTGCGCCCGCACCGTGCGGGGATCTGGGCCAACGCCGTCGCCGGGGCGCCGCTGTTCGTCCGGACCGTGTCCCTGCGCCTGGCGATCCTGCTGACGGTGTGGGTCGCGACGGGACTCGGCGCCGTCGCGCTCGGCGGTCACCAGGTCGTCAACAGCCTGTGGGGACTGGCGGCCTTCGCGCTCGACGCCCTCGCGATCGCGGCCCAGGCGCTCGTCGGGTTCGGGCTCGGCTCCGGGGACACCGCGCGTGTGCGGGCCGTGCTGCGGCGCTGCCTGCAGTGGGGCGTCGGTGCCGGGGCGGTCATCGGCGTCGTCCTCGCGGCGTCGTCCTGGTGGATCGCACCGCTGTTCTCCCCCGACCCCGACGTGCGGGTCGCCATCACGGCCGGGCTCGTCGCGTGCGGGGTGTTCATGCCGATGGCCGGCTGGGTGTTCGTGCTCGACGGCGTCCTCATCGGCGCCGGCGACGGCCGGTTCCTCGCGTGGGCCGGCATGCTCACGCTCGTGGTCTACGTGCCCGTCGCACTGGCGGTCCGTGCCTGGGCGCCGGAGGGAGCGGCCGGACTCGCGTGGCTGTGGGCAGGGTTCGCCGGCGTGTTCATGCTGGCTCGAGCCCTGACGACGGGGTTGCGCGCCCGTGGCGAGCGCTGGATGGTCCTCGGCGGCTGA	MGDIRRIDREILALAWPALGALVAEPLFVLVDSAVVGHLGTAQLAGLSLASTLLVTLVGLCVFLAYATTAAVARRLGAGHDRAALQSGVDGMWLALGLGIVLAALLWTAAPWAVAVMGASDDVATHAVTYLRWSAPGLPGMLLVLATTGVLRGLQDTRTPLWVASGGAVFNAVGSVTLVYGVGLGIAGSALATTTAQLLMAVVLAVVVVTGARSRGASLRPHRAGIWANAVAGAPLFVRTVSLRLAILLTVWVATGLGAVALGGHQVVNSLWGLAAFALDALAIAAQALVGFGLGSGDTARVRAVLRRCLQWGVGAGAVIGVVLAASSWWIAPLFSPDPDVRVAITAGLVACGVFMPMAGWVFVLDGVLIGAGDGRFLAWAGMLTLVVYVPVALAVRAWAPEGAAGLAWLWAGFAGVFMLARALTTGLRARGERWMVLGG				NA	NA	NA	NA	NA
AK001_00841	1020			hypothetical protein	GTGCGTTCACCGACACCGCTGCCGTCGCAGGCTCTCACCCTCGCCCGGCGACAGGAGTGGTTGCTCGACACCCGCCAGCTCCAGGCCTGCGGGGTGGACCGATCTCGCATCTCCCGCAACGTCGGCTACGGGCGACTCACACGGGTCGCCCATGGGGTGTACGACCTCGTCGCCTGCCCCGTGCATCAGCGGTCCACGGACCCGGACCCTGTGCGAGCCGACCTCCTGGACCATCGACGCCGCCGGGGCGCGTGGCTCGGGCTGCTCGCGTTCGGTCCCCAGGCGGTAGCGGTCGGACAGACAGCGCTCGTGCTGCACGGTGTCCAGGGCCTGCCCCTCGACCCAGCGGTCGAGATCTCACGGCGGGATCGCCGTGAACGCGCTGCGCGGCCTGGTGTCCGGCTCCGACGGTACGGCTCCTACCGGTACCTCGCCGTCATCCAGGGCCACCTCGTCGCTCCCATCCAGCTGGCGCTCGCCCAGGCGATACCCCAGCTCGAACGGCGCGAAGCCGTCGCCGTGCTCGACAACGCCCTGCATCAGGGACTCGTCGACGAGGTGACCCTCCGCGAGGCCCACGACCTGGCTCGCGGTCGGCGCGGCGTCGAGCGGACGCACTCCTGGTGGGACCTCGCGGACGGGCGTGCCGAGTCGCCGGCGGAGTCGTGGGCGAGGCTGAGCTGTCTCGACGCGGGCGTTCCCCCGGACGCACTGCAGCACGTCTTCCGGTGGCCCGGCGGGGCGGTCGCCGCCCGCGTCGACATGGCCTGGCGCCTCCGCCACGGTCGCTGGCTGATCTGCGAGATCGACGGACGCACCGCCCACGACTCACCGGACGCCCTCTACCGTGACCGAAGCCGACAGAACCCGCTCACGGCCGCCGGGCACACGGTCCTGCGCTTCTCGGGCGCCGACGCCCGCCAGGACCTGCCCGGCCCGGCGATCCGAGCTGTCCTGCGGCGGCATGGATGGCAGATGGGAACCCCGATCCCGAGCATCACGACGCTCGACGCACGATAG	MRSPTPLPSQALTLARRQEWLLDTRQLQACGVDRSRISRNVGYGRLTRVAHGVYDLVACPVHQRSTDPDPVRADLLDHRRRRGAWLGLLAFGPQAVAVGQTALVLHGVQGLPLDPAVEISRRDRRERAARPGVRLRRYGSYRYLAVIQGHLVAPIQLALAQAIPQLERREAVAVLDNALHQGLVDEVTLREAHDLARGRRGVERTHSWWDLADGRAESPAESWARLSCLDAGVPPDALQHVFRWPGGAVAARVDMAWRLRHGRWLICEIDGRTAHDSPDALYRDRSRQNPLTAAGHTVLRFSGADARQDLPGPAIRAVLRRHGWQMGTPIPSITTLDAR				NA	NA	NA	NA	NA
AK001_00842	450	rplI	COG0359	50S ribosomal protein L9	ATGGCAAAGCTGATCCTGACCCACGAGGTGACCGGTCTCGGTGAGCCCGGCGACGTCGTCGAGGTGAAGGACGGGTACGCCCGTAACTACCTCGTCCCGCGTTCGCTGGCCACGCCGTGGACCAAGGGCGCCGAGTCGCAGATCTCCGCGATCCGCAAGGCCCGCAAGGCCCGCGAGATCGCCACGCGCGAGGACGCTCAGGCCGCGGCCGAGTCGATCCAGTCGCGGACCTACACCGTGGAGGCGCACGCCGGCGAGTCCGGCCGCCTGTTCGGTGCGGTCACCACCGCGGACATCGCCGCTGCCGTGAAGGCGGCCGGCGGCCCGTCCGTCGACAAGCGCAAGATCGAGATCGGCCAGCCGATCAAGTCGCTCGGTGAGCACACCGTGTCGATCCGCCTGCACCCCGAGGTGTCGGCGAAGATCGCGCTGGAGGTCGTCGCCGGCTGA	MAKLILTHEVTGLGEPGDVVEVKDGYARNYLVPRSLATPWTKGAESQISAIRKARKAREIATREDAQAAAESIQSRTYTVEAHAGESGRLFGAVTTADIAAAVKAAGGPSVDKRKIEIGQPIKSLGEHTVSIRLHPEVSAKIALEVVAG				NA	NA	NA	NA	NA
AK001_00843	237			hypothetical protein	ATGGCCAAGCCTGTGGTGCGCAAGCCCAAGAAGAAGGCGAACCCGCTCAAGGCCGCGAAGGTCGAGACGGTCGACTACAAGGACACCGCCCTGCTGCGGAAGTTCATCTCCGACCGCGGCAAGATCCGTGCGCGTCGCGTCACCGGCGTGAGCGTGCAGGAGCAGCGTCAGATCGCCAAGGCCGTCAAGAACGCCCGCGAGATGGCCCTGCTGCCGTACTCGTCGTCGGCCCGCTGA	MAKPVVRKPKKKANPLKAAKVETVDYKDTALLRKFISDRGKIRARRVTGVSVQEQRQIAKAVKNAREMALLPYSSSAR				NA	NA	NA	NA	NA
AK001_00844	537	ssb_1	COG0629	Single-stranded DNA-binding protein	ATGGCTGGTGAGACCGTCATCACGGTCGTGGGAAACCTGACCGCGGACCCGGAGCTGCGCTTCACCCCGTCGGGTGCAGCCGTCGCCAACTTCACGATCGCGTCGACACCCCGCACGTTCGACCGACAGTCGAACGAGTGGAAGGACGGCGAGGCGCTCTTCCTGCGTTGCTCCATCTGGCGCGAGGCGGCGGAGAACGTCGCCGAGTCGATGACGAAGGGGATGCGCGTCATCGCGCAGGGCCGCCTTCAGCAGCGTTCGTTCGAGACCCGCGAGGGTGAGAAGCGCACCGTCGTCGAGCTGCAGGTCGACGAGATCGGCCCGTCGCTGCGGTGGGCGTCCGCCAAGGTCGCCCGCGCACAGCGCAGCGGCGGCGGTGGCGGCGGATTCGGTGGTGGCTACGGCGGCAACGCCGGTGGCCAGCCCGGTGGTGGCGGTGGATTCGGTTCCTCCGGCGGCGGACAGCAGAGCGATCCCTGGGCCACGGCTGGCCCGGCGTCCTCGGGCGGCGGGTTCTCCGACGAGCCCCCGTTCTGA	MAGETVITVVGNLTADPELRFTPSGAAVANFTIASTPRTFDRQSNEWKDGEALFLRCSIWREAAENVAESMTKGMRVIAQGRLQQRSFETREGEKRTVVELQVDEIGPSLRWASAKVARAQRSGGGGGGFGGGYGGNAGGQPGGGGGFGSSGGGQQSDPWATAGPASSGGGFSDEPPF				NA	NA	NA	NA	NA
AK001_00845	291	rpsF	COG0360	30S ribosomal protein S6	ATGCGTCAGTACGAACTGATGGTGATCCTGGACCCGGAGGTCGAGGAGCGCTCCGTGGGCCCGACGCTGGACAAGCTGCTCAAGGTCATCACGACCGACGGCGGCAGCGTCGACAACGTGGACATCTGGGGTCGTCGCCGGATGGCCTACGACATCAACAAGCGCTCCGAGGGCATCTACGCCGTCGTGAACTACACCGCGACGCCGGACACCGCGAAGGAGCTGGACCGTCAGCTCGGCCTCAACGAGGGCGTGCTGCGGACCAAGACCCTCCGCGCCGTCGCTCACTGA	MRQYELMVILDPEVEERSVGPTLDKLLKVITTDGGSVDNVDIWGRRRMAYDINKRSEGIYAVVNYTATPDTAKELDRQLGLNEGVLRTKTLRAVAH				NA	NA	NA	NA	NA
AK001_00846	2547	mtgA		Biosynthetic peptidoglycan transglycosylase	GTGGACGTGGCGAGCACACGCAACCGTCGCTTCTGGAACTATCCGCGCCGGGGCAAGGGCCTCGTGCAGCGGTGGCTGCCGTCGTGGCGCATCGTCCTCGGCGCGGCGCTCACGTTCGCCGCCCTCGGCGCCGGGGTGTTCTTCGCCGCGTGGACCTCCACCGCGATCCCGGAGAACCTCGACGACGTCGACCACCAGGCCACGACGGTCTACTACGCCAACGGCAAGGAGATCGGGACGTTCTCGACCGTCAAGCGCGAGATCGTGGCCTACGAGGACCTGCCCTCGCACGTCGGCAACGCCGTCGTGGCGAGCGAGAACGCCTCGTTCTGGGAGGACCCGGGCGTCGACGTCATGGGTCTGGCACGGGCGATGTGGACGAACCTCACCACGGACTCCCGGCAGGGCGGCTCCACCCTGACCCAGCAGTACGTCGAGCGCTACTACCTGGGACAGACGACCGACATCGCCGGCAAGGCCCGCGAGGCGATCATCTCGCTGAAGATCACGCGGGAGCAGCCCAAGGAGCTGGTGCTGGAGCGCTACCTCAACACGATCTACTTCGGGCGCGGCGCCTACGGCGTGCAGGCAGCCGCCCAGGCGTACTTCGACAAGGACGCCGCGGACCTCACCTTCTCGGAGTCGGCGATGCTGTCGGGGATCATCCCGGCGCCCGTGCGCTACGACCCGTCGGAGAACCTCGACATCGCGACCGCGCGGTGGGAGCGCAGCCTGAACCGGATGGCGGCCCAGGGGTACATCACCCAGGCCGAGGTCGACTCGGCGGAGTTCCCCGAGTTCGTGGAGAAGAACGCCAGCGGCAACAGCCTCGGTGGCCAGAAGGGCTACATCATGGAGGCGGTCCGCAAGGAGCTCCTCGCCAGCGGGGAGTTCACGAAGGAGGACCTCGAGTCCCGGGGTCTGCAGATCCACACGACGATCAAGCCGAAGCTCCAGCGCAACGCGGCGAAGATCGTCCGGAACATGCCCGAGGGGGCGAACGAGAACGTCCGGGCGTCCCTGGTGTCGATCAACCCGGAGGACGGAGCGATCTGGGCGCTGTACGGGGGGCCGGACTACCTCGAGCAGCAGATGAACACGGCCACGGACGACGTCGTGCAGGCCGGTTCGACGTTCAAGCCCTTCACGCTCATCGGGGCTCTCGAGGAGGGACGTCAGCTCACCGACAGGTTCGACGGCAACTCGCCGAAGATCTTCCCCGAGGCCGACGACGGCCAGGACTGGACCGTCAACAACTTCGGCGGCTACGACTACGGGGACCAGATCGACCTCGTCGAGGCGACCGCGCACTCGGTCAACACGGCCTACGCCGAGCTCAACATCGACGTCGGCCCCGCCAAGACCGCGGAGGTCGCCCACCGCCTCGGCATCGAGGAGGGTGCGACGAACGACGCGGGCGAAGAGGTGAATCCCCTCGGCACCAACAACTCCAACGTGCTCGGTACCGAGTCGGTCTTCCCCGTGGACCTCGCCTCGGCGTACGCGACGATCGCGGGCGGGGGCTACTACGTGCAGCCGCACGTCATCAAGATGGTCGAGCACATGGACGGCACCCTGCGCTGGGAGCCGGACACCTCGACGGACAAGCGGTTCGAGCCGGACGTGATGAACGCCGCGACGTACGCCATGACGCAGGTCGTCGAGGAGGGCTCCGGACGGGCCGCGCTCGAGCTGACCGGCCCCGACGGCCAGCGCCGACCCGTCGCCGGCAAGACCGGTACGGCGCAGAACAACGAGACCGCATGGTTCGCCGGCTTCACCCCGCAGCTGGCCACGGTGGTCAACCTCCGGCAGTACGAGACCGTCGACCTCGACGCCGGGATCATCAAGGGCAAAGCGCAGATCGACGACTTCGAGCCGTACGGCGAGATCACCGGCTCGACGTGGCCCGCGGACGCCTGGACCGACTTCATGCAGGTGGCGCTCGAGGGCAAGGACGTCGTGGAGTTCCCGTCGTACACGCCGCCCCGGCCGACGTTCTCGCCGTCGCCGTCCCCGAGCGAGAGCACCCCGCAGTGGGTCGAGCTGCCGGACGACCTCATCGGCATGAACATCAACGAGGCCACGGCGCTGCTCGAGGGCATGGGCCTGGTCGTCGCCACCCAGGCGACCGAGAACGAGGCCGAGAAGGGCACCGTGGTGAACTTCTACGACCCGGGCGGTGCCGTGGAGTCCGGCTCGACGATCACGCTCTGGGTCTCGACCGGGGCGGTCGAGGAGCAGGAGCAGGTCGCGGTGCCGAACGTCGTCGGACAGCCCGCCGGGTCCGCCGAGAGCCAGCTCAACCGGGTCGGCCTCGGGGCGGAGGTCGTCCAGGAGCCCAACAACGAGATCCCGCGCGGTCAGGTGATCCGCACCGAGCCCGGTGCGGGCAGCGAGGTCGACCCGGGCACCACCGTGCGAATCGTGGTCTCGACCGGGCCGCAGCCGACGCAGGAGCCCACCCAGGAGCCGACGTCGGAGCCCACGCAGTCGCCGTCGCCCTCCAGCCCGCCGGGCAACGGCAACGGCAACGGCAACGGGTGA	MDVASTRNRRFWNYPRRGKGLVQRWLPSWRIVLGAALTFAALGAGVFFAAWTSTAIPENLDDVDHQATTVYYANGKEIGTFSTVKREIVAYEDLPSHVGNAVVASENASFWEDPGVDVMGLARAMWTNLTTDSRQGGSTLTQQYVERYYLGQTTDIAGKAREAIISLKITREQPKELVLERYLNTIYFGRGAYGVQAAAQAYFDKDAADLTFSESAMLSGIIPAPVRYDPSENLDIATARWERSLNRMAAQGYITQAEVDSAEFPEFVEKNASGNSLGGQKGYIMEAVRKELLASGEFTKEDLESRGLQIHTTIKPKLQRNAAKIVRNMPEGANENVRASLVSINPEDGAIWALYGGPDYLEQQMNTATDDVVQAGSTFKPFTLIGALEEGRQLTDRFDGNSPKIFPEADDGQDWTVNNFGGYDYGDQIDLVEATAHSVNTAYAELNIDVGPAKTAEVAHRLGIEEGATNDAGEEVNPLGTNNSNVLGTESVFPVDLASAYATIAGGGYYVQPHVIKMVEHMDGTLRWEPDTSTDKRFEPDVMNAATYAMTQVVEEGSGRAALELTGPDGQRRPVAGKTGTAQNNETAWFAGFTPQLATVVNLRQYETVDLDAGIIKGKAQIDDFEPYGEITGSTWPADAWTDFMQVALEGKDVVEFPSYTPPRPTFSPSPSPSESTPQWVELPDDLIGMNINEATALLEGMGLVVATQATENEAEKGTVVNFYDPGGAVESGSTITLWVSTGAVEEQEQVAVPNVVGQPAGSAESQLNRVGLGAEVVQEPNNEIPRGQVIRTEPGAGSEVDPGTTVRIVVSTGPQPTQEPTQEPTSEPTQSPSPSSPPGNGNGNGNG	PGPT0023875_1666	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366	NA	NA
AK001_00847	669			hypothetical protein	GTGCGTAGTCGCTCGAACGTTCTCGAGACGGCCGTCCTGGGCCTGCTCAGCTCCGCCCCGCTGCACGGCTACGAGCTGCGCAAGAGGCTCAACCTGCTCCTGGGCTCGTTCCGCGCCTTCTCCTACGGCAGCCTCTACCCGGCCCTGAAGTCCCTGGTCGGGCGCGGGCTGATCGAGACGGTCGACCCCGACCCGGCCGCGGCTCGTCCCGCCGCGACCGGCACGACGGGACGACCGTCGTCGGGCAGCAAGCCGCTCACGGGGCGACGGGGCCGGATCGTCTACCGCCTCACGCCCGAGGGCAAGGAACACCTCCAGACCACTCTCGCCTCCTCCGGCCCCTCGGCCTGGGAGGACGAGAGCTTCGACGTCCGGTTCGCGTTGTTCGCGCAGACGGACGCCGAGACCCGCCTCCGCATCCTCGAGGGCCGGCGCACCCGGCTGACCGAGCGCCTGGAGGCGGTCCGGGAGTCCGCAGCCCGGACCCGCGAGCGGCTCGACGAGTACACTCTCGAGTTGCAGCGGCACGGACTGGAGCAGGTCGAGCGCGAGGTGCGCTGGCTCGACGGGCTCATCACGACCGAGCGCGACCGCGTCAGCGGCCGCGACCGCGACCACGACGCCGGGGCGCACCACGCCCCGGCCCCGAGAAACAAGGAGCGAGGATGA	MRSRSNVLETAVLGLLSSAPLHGYELRKRLNLLLGSFRAFSYGSLYPALKSLVGRGLIETVDPDPAAARPAATGTTGRPSSGSKPLTGRRGRIVYRLTPEGKEHLQTTLASSGPSAWEDESFDVRFALFAQTDAETRLRILEGRRTRLTERLEAVRESAARTRERLDEYTLELQRHGLEQVEREVRWLDGLITTERDRVSGRDRDHDAGAHHAPAPRNKERG				NA	NA	NA	NA	NA
AK001_00848	1092	ino1	COG1260	Inositol-3-phosphate synthase	ATGACCTCCGTCCGCGTTGCCATCGTCGGTGTCGGAAACTGTGCATCGTCCCTGGTCCAGGGTGTGCACTACTACCGCGACGCCGACCCGGCCGACACCGTCCCGGGTCTCATGCACGTGCAGTTCGGCGACTACCACGTGAGCGACCTCGAGTTCGTGGCGGCGTTCGACGTCGACGCGAAGAAGGTCGGCTTCGACCTGGCCGAGGCGATCATTGCCTCGGAGAACAACACGATCAAGATCGCGGACGTGCCGCCCACGGGCGTCATGGTCCAGCGCGGCCCGACCCTCGACGGCCTCGGCGACTACTACGCCGCGACCATCGACGAGGCGGCCGACGAGCCGGTCGACGTCGTGCAGGCGCTCAAGGACGCGAACGTCGACGTCCTCGTCTCCTACCTGCCGGTGGGATCCGAGGAGGCCGACAAGTTCTACGCGCAGTGCGCCATCGACGCGGGCGTGGCCTTCGTCAACGCCCTGCCGGTCTTCATCGCCTCGGACCCCGAGTGGGCGAAGAAGTTCGAGGACGCCGGTGTGCCGATCGTCGGCGACGACATCAAGTCCCAGGTCGGCGCGACCATCACGCACCGCGTGCTCGCGAAGCTCTTCGAGCAGCGCGGCGTCATCCTGGACCGCACGTACCAGCTGAACGTCGGCGGCAACATGGACTTCAAGAACATGCTGCAGCGCGACCGTCTCGAGTCGAAGAAGGTCTCCAAGACCCAGGCCGTGACCTCCAACCTGGAGGGCCCGCTGGCCGGGAAGAAGGACGACCGCAACGTCCACATCGGCCCGTCGGACTACGTCGCCTGGCTCGACGACCGCAAGTGGGCCTACGTGCGCCTCGAGGGCCGCGCGTTCGGCGAGGCGCCGCTGAACATGGAGTACAAGCTCGAGGTCTGGGACTCCCCCAACTCGGCCGGCATCATCATCGACGCCATCCGCGCGGCGAAGATCGCCAAGGACCGCGGCATCGGCGGCCCGATCCTGTCGGCGTCGACCTACTTCATGAAGTCCCCGCCGGTCCAGATGGAGGACACGCAGGGCCGTGCCCAGCTCGAGGCCTTCATCACCGGCGACGTGGATCGCTGA	MTSVRVAIVGVGNCASSLVQGVHYYRDADPADTVPGLMHVQFGDYHVSDLEFVAAFDVDAKKVGFDLAEAIIASENNTIKIADVPPTGVMVQRGPTLDGLGDYYAATIDEAADEPVDVVQALKDANVDVLVSYLPVGSEEADKFYAQCAIDAGVAFVNALPVFIASDPEWAKKFEDAGVPIVGDDIKSQVGATITHRVLAKLFEQRGVILDRTYQLNVGGNMDFKNMLQRDRLESKKVSKTQAVTSNLEGPLAGKKDDRNVHIGPSDYVAWLDDRKWAYVRLEGRAFGEAPLNMEYKLEVWDSPNSAGIIIDAIRAAKIAKDRGIGGPILSASTYFMKSPPVQMEDTQGRAQLEAFITGDVDR				NA	NA	NA	NA	NA
AK001_00849	1353		COG0477	putative MFS-type transporter	GTGGGAGCACTGGGCGAGACCTGGCACGACCTGCGAGCGCTGCTGCGCCTGCAGGGGTTCCGCCGGCTGTTCGCGGTCCGGCTCGTCTCCCAGGCCGGCGACGGCATGTTCCAGGTCGGGCTCGCCTCCCTGCTGTTCTTCTCCCCCGAGCGGGCCGGGACCGCCGTCGGCGTCGCGAGCGCCTTCGCGGTGATGCTCGCGCCGTTCACGATCGTCGGCCCGTTCGCCGGCGTCTTCCTCGACCGGTGGCGACGCCGTCAGGTGCTCGCCTCCGGCAACGCCCTGCGGCTGCTCATCACCGGCGCGATGGCGACGATCATGCTGACCGTCGGACTCGGCGGCAGCGGTGACGTGTGGGTGATCGTCCTGGGCCTGCTCGCCCTGAGCGTCAACCGGTTCCTGCTCGCCGCCCTCAGCGCGGGCCTCCCCCGCGTCGTGGCGGGCCCCTACCTGCTCACGGCGAACTCCCTGACCCCGACCCTCGGCGCAGGTGCCGTGTTCCTCGGCGGCGGCATCGGTCTGGTCCTGGGCCTCGGCATCCCGCCCGGCCGGATCCACGACGCCGCCGCGCTGGTGTGCGCCGCCGTCGTCTTCGGCGTCGCCGGGATGCTCGCGCTGCGGCTGGGACGCGACCAGCTCGGTCCGGAGCACCCCACCCGCGGCCACCTCGCCGCCGAGCTCGCCGCCGTCGCGCGCGGTCTGGTCGACGGTGCCCGCTACCTCACGGCCCGCCGGACCCCGGGTCAGGCGCTGCTGGTCATGGGCGCCCACCGGTTCCTGTACGGCGTGGTCTTCATCGCGGCGATCCTCATCTCCCGCAACCTGCTGGCCGACCCGGGCGACACCACGGCCGGCCTGGCCAACTTCGCCCTCGTGCTGGCCGCGACGGCGGTCGGCGGGGCGGCCGCCGTCGTCGTCACCCCGGTGTTCTCCCGGCTCACCGGTCCGCAGGGCTGGATCGTGTGCATGCTGCTGCTCGCCGCGGCCTCCCAGCTCCTGCTGGCCACGACGCCGTCGCGCACGATCATCTTCCTCGGGGCCGGGCTGCTCGGCCTCGCCGCGCAGAGCGCCAAGATCGCCGTCGACACGATCGTGCAGCGCGACACCCACGACGACTTCCGCGGCCGCGCGTTCGCGTTCTTCGACGTGCTGTACAACGCCGCGTTCGTCGGTGCGGCGCTGCTCGCCGCGTGGGCGGTGCCCGACGACGGCTGGTCGCGCGGCCTGTTCGTCGCCCTCGCGCTGGCCTACGTGGCTGTCGCGGCGGTGCTCGGCCTCACGGGTGCCCGGCACCCGGCCTCCGTGCACCTCTCGGGAGATCCGGCCCGGGTCGACCGCCCGGTCGACCGCTGA	MGALGETWHDLRALLRLQGFRRLFAVRLVSQAGDGMFQVGLASLLFFSPERAGTAVGVASAFAVMLAPFTIVGPFAGVFLDRWRRRQVLASGNALRLLITGAMATIMLTVGLGGSGDVWVIVLGLLALSVNRFLLAALSAGLPRVVAGPYLLTANSLTPTLGAGAVFLGGGIGLVLGLGIPPGRIHDAAALVCAAVVFGVAGMLALRLGRDQLGPEHPTRGHLAAELAAVARGLVDGARYLTARRTPGQALLVMGAHRFLYGVVFIAAILISRNLLADPGDTTAGLANFALVLAATAVGGAAAVVVTPVFSRLTGPQGWIVCMLLLAAASQLLLATTPSRTIIFLGAGLLGLAAQSAKIAVDTIVQRDTHDDFRGRAFAFFDVLYNAAFVGAALLAAWAVPDDGWSRGLFVALALAYVAVAAVLGLTGARHPASVHLSGDPARVDRPVDR				NA	NA	NA	NA	NA
AK001_00850	1497	ribZ		Riboflavin transporter RibZ	ATGTCCGCACGCACCACCGAGGCGCCGCCCGGCGGAGCGTCCCACGACGACGTCTCCGCCCGCGACACCGACAAGCTGTCGCGCGAGCACCTCGGCGTCATCGCGCTGCTGATGGTGTCGGCGTTCATCGTCATCCTCAACGAGACGACGATGGGCGTGGCGCTGCCCGCCGTCATGGACGAGTTCGACATCGAGGCGTCGGCCGGGCAGTGGCTGACCACCGCCTTCCTGCTGACCATGGCCGTCGTCATCCCCACCACGGGGTGGCTGCTGCAGCGGGTCGGCACCCGGAACGCGTTCGTCCTGGGCATGTCGCTGTTCACCCTGGGCACCCTGCTGGCCGGTCTGGCCCCGGTCTTCGGGCTGCTCGTGGCCGCCCGGGTGGTGCAGGCCTCCGGCACGGCCGTCATGCTGCCCCTGCTCATGACCACGGTCATGACGATCGTGCCCCCGCACCACCGCGGTCGCGTCATGGGCAACGTGTCGCTGGTCATCGCCGTCGCCCCCGCGCTCGGACCGACCATGTCCGGCGCGGTGGTCAACGCCCTCGGCTGGCGCGAGGTCTTCTGGGTCATGCTGCCGATCGCGCTGCTCGGCCTCGGCATCGGCCTGTTCCTGGTCCGTGACGTCGCCGAGCGGTCCCGGAAGCACCTCGACGCCCTGTCCGTCGTCCTGGCGGGTCTCGCCTTCGGCGGGCTGGTCTACGGCCTCTCGGCGCTGGGCGAGGCCGCGCGGCACGCCCCGCCGGTCTCCCCCGCCGTCCCGATCGTCGGCGGCCTGGCCTTCCTCGGACTGTTCGTGTGGCGCCAGCTGCGTCTGCAGCGCACCGACGACGCCCTGCTCGACCTGCGCGTCTTCCGCGCCCCCGGGTTCCCCGCCGGTCTGAGCGTGCTCGTGGTCGCCATGATCGCGATGTTCGGCATGATCATCGGCCTGCCGCTGGTGCTGCAGGAGGCCATCGGGCTCGCGCCGCTGGCCAGCGGCCTGGTGATGCTGCCCGGCGGTCTGCTCATGGGTCTGCTCGGCCCGGTCGTGGGCCGGTTGTACGACCGCGTCGGGCCGCGCCCGCTCGTGCTGCCCGGGGTGTCCGCCGTCGGGATCGCGATGGTCCTGTTCGCGACGCTGACGCCGTCCTCGCCGATCTGGTGGGTGATGGCGGGCCACATCGTGCTCAGCCTGGGCCTGGCCTGCGTGTTCACGCCGACCCTCACCTCGGCGCTCGGTGGTCTGCCCCCGCGGCTGTACTCGCACGGGTCGGCGACGATCACCACGCTGCAGCAGCTCGCCGGGGCGGCCGGCACCGCGATGTTCGTCGCGCTGCTCACGCTCCGTTCCGTCGCCCTGCTCGACGACGGCGCCACCGAGGCGGTCGCGACGGCCGGCGGCGCACGGCTCTCCTTCGGGGTGGCCGCCGTGGTGATGATCGGTGCGGTGCTGCTGGCCACGCGGCTGCGCAAGGCGGAGGCGACGACCTCGGAGACGCCCGCCGCGCACTGA	MSARTTEAPPGGASHDDVSARDTDKLSREHLGVIALLMVSAFIVILNETTMGVALPAVMDEFDIEASAGQWLTTAFLLTMAVVIPTTGWLLQRVGTRNAFVLGMSLFTLGTLLAGLAPVFGLLVAARVVQASGTAVMLPLLMTTVMTIVPPHHRGRVMGNVSLVIAVAPALGPTMSGAVVNALGWREVFWVMLPIALLGLGIGLFLVRDVAERSRKHLDALSVVLAGLAFGGLVYGLSALGEAARHAPPVSPAVPIVGGLAFLGLFVWRQLRLQRTDDALLDLRVFRAPGFPAGLSVLVVAMIAMFGMIIGLPLVLQEAIGLAPLASGLVMLPGGLLMGLLGPVVGRLYDRVGPRPLVLPGVSAVGIAMVLFATLTPSSPIWWVMAGHIVLSLGLACVFTPTLTSALGGLPPRLYSHGSATITTLQQLAGAAGTAMFVALLTLRSVALLDDGATEAVATAGGARLSFGVAAVVMIGAVLLATRLRKAEATTSETPAAH	PGPT0028570_230	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028570-lmrB-K18926	NA	NA
AK001_00851	2286			hypothetical protein	GTGCGCCGCATCATATGGATCTCCGGATCGTCCGACGACGTCCCGGTGGAACGTTGGGGGAAGGGTCAGGGCATGCCGCAGTCACCGTCGTCACCGACCGACATCACGACGCTCGCTCGTGACCTGCTTCCCGCGGCCCACGACCCCGAGAAGGTGGTGACCGGCGGCGCCGTGCTCCTGGTCGACACCAGGACCCACGACATCGTCGACACCAACCCCGTCGGGGCCCGCATGGTCGGCGGCCTGGAGCTGCCGACCTCGTTGAGCACCTGGTGCGCGGCGGCGGGCCTGTCGGTGCAGGGCGGGGAGACCTCGGCCAGCGAGGCCCTGGCCGGCGCCGTCGACGGCAGCTCCGGCGTCGCGGTCCTCTCGGCGCGGCACAACACCCCGGACGACCTGTGGGCCGTCGGCGTCCCGCTCGCCGGGGCACCCGGCACGCTGGCGAACCGGGCGATGCTGGTGCTGCTGCCCGGCACCGGCCTGACGGAGGCGGTCCCGGCCAGCGAGTTCGACGGCCTGCAGCGGCGCGCGGCCGTGGCCAGCCATCTCAGCTTCACCATCTCCGACCCGTCGCTGCCCGACGACCCGCTGATCTGGGTCAACCCGGCGTTCTGCCGCGTCACCGGGTACACGACCGACGACGTGCTGGGCCACAACTGCCGGTTCCTGCAGGGCGAGGGCACCGACCGCGACACGGTGGACCGGATCCGCGCCGCGCTGGCGGCGGGCGAGGCGGTCGGTGAGACCCTGCTGAACTACCGCAAGGACGGCACGCCGTTCTGGAACCAGGTGGTCGTCTCCCCCATCCACGACGACGAGGGCAACGTCACCCACCACGTCGGCATCCAGACCGACGTGACCGACCGGGTGCACGCCGACCGGCTCCAGGCCCTCGAGCTCGACGCCGCGAACCGGCAGACCGACCGCCTGCGGCTGCTCGCGTCGATCACCCAGGAGCTCGTCGACCTGTTCGACGAGGAGTCGGGCGCTGCCGTGCTGCCGGCGCTCGTGGCCCCGCACTTCGGGAGCTGGTGCGCCGTGCTCCTCGTCGACGAGTCCGGAACGCCGCGGATCGTCCACGCCGCGGCCCGGGACCCGCAGCGGGCCGACGACATCAGCGCCCTCGAGCGGTCTCACCGCTGGATCGTGGAGTCACCGACGGTCCTCAAGGTGCTGCAGACCGGGACCGACGAGATCTCCGAGCCGTTCCCCGTCGACGTCGACTCGCTCCCGGCGCGCACGGACCCCGCGGAGCTCGCCGCGCTGCGCCGGCTCGGCCTCGGCTCGGCGATGGTCGTCCCGCTGCGCGGCCGCGCCGGGGACATCGGCGTGCTCATCGTGGTCAGCGAGAACGGCGACGTCGGCGCCGCCTTCCCGCCCGCCGACGCCCGCGACATCGTGGCGCTCGGCGCCCGCGCGGGACTCGCCCTCGACAACGCCCGGCTGTACCGCCGCGAGCAGCAGACCGCCCTGACGCTGCAGCACAGCATGCTCCCGGAGATCGTCGAGGCCCCCGGGCTGGACTGCGCCGCGCTGTACGAACCGGCCTCCGTCGGTGCCGACGTCGGCGGCGACTGGTACGACGTCGTGCCGCTGCCGGACGGGCGGGTCGCGATGTCCGTCGGCGACGTCGTCGGGCACGACATCCGGGCCGCCGCGTCGATGGGTCAGCTACGGTCCGTCCTGCGCTCCGAGGCCTGGTCAGGACTGTCGGCCCACGAGGTCGTCGGCGGGATCGACGACCTCGTGCGCGGCCTGCAGATGGCCGACATGGCCACGTGCGTCTTCGCGATCCTCGATCCGCCGGACGACGCCGGGAACCGCCGGATCACCTACACCCGGGCCGGGCACCACGCCCCGCTGCTGCTGCACTCGCGCGGCGAGGTCGAGAAGCTCGAGGGGGCGCTCACCACCCCCGTCGGGGCACCGCTGCTGACCGAGTCGGTGCCGGAGGCCTCGACGGTGCTGCACCCGGGCGACTCCCTGGTGCTGTTCACCGACGGGCTGATCGAACGACGCGACCGGTCCCTGCGCACCCAGCTCGCCGAGCTCCTGTGGTGCGCGGGCGAGGTCGACCCGGACCTGGACGCGGCCGGGATCCGCGACGCGATCGTCGAGGCGTGCGCCGACGGCACCCAGGAGGACGACACGTGCATCCTCGTGGTGCGCAACATCCCGGCAGAGTCGTCGGGCGAGGCCGACGTGGAGCTCGTCGACCCGGGCGAGGACCGCACCGGCTCCCGCCGGGCGCCCGGTCAGTCCTGCCGGCCGGCCCACCAGGACTGA	MRRIIWISGSSDDVPVERWGKGQGMPQSPSSPTDITTLARDLLPAAHDPEKVVTGGAVLLVDTRTHDIVDTNPVGARMVGGLELPTSLSTWCAAAGLSVQGGETSASEALAGAVDGSSGVAVLSARHNTPDDLWAVGVPLAGAPGTLANRAMLVLLPGTGLTEAVPASEFDGLQRRAAVASHLSFTISDPSLPDDPLIWVNPAFCRVTGYTTDDVLGHNCRFLQGEGTDRDTVDRIRAALAAGEAVGETLLNYRKDGTPFWNQVVVSPIHDDEGNVTHHVGIQTDVTDRVHADRLQALELDAANRQTDRLRLLASITQELVDLFDEESGAAVLPALVAPHFGSWCAVLLVDESGTPRIVHAAARDPQRADDISALERSHRWIVESPTVLKVLQTGTDEISEPFPVDVDSLPARTDPAELAALRRLGLGSAMVVPLRGRAGDIGVLIVVSENGDVGAAFPPADARDIVALGARAGLALDNARLYRREQQTALTLQHSMLPEIVEAPGLDCAALYEPASVGADVGGDWYDVVPLPDGRVAMSVGDVVGHDIRAAASMGQLRSVLRSEAWSGLSAHEVVGGIDDLVRGLQMADMATCVFAILDPPDDAGNRRITYTRAGHHAPLLLHSRGEVEKLEGALTTPVGAPLLTESVPEASTVLHPGDSLVLFTDGLIERRDRSLRTQLAELLWCAGEVDPDLDAAGIRDAIVEACADGTQEDDTCILVVRNIPAESSGEADVELVDPGEDRTGSRRAPGQSCRPAHQD				NA	NA	NA	NA	NA
AK001_00852	1428	cca		CCA-adding enzyme	ATGGCGCCGGCCGCCGTCGAGCTCGGCGAGATCTTCTCCGCCGCCGGTCACGAGCTGTCCCTGGTCGGCGGCCCCGTCCGCGACGCCTTCCTCGGCCGGACCAGCGCCGACCTGGACTTCGCGACGTCCGCGACGCCCGACGAGACCCAGCGCCTGCTGGCCCGCTGGGGCGACGCGCACTGGGACATCGGCAAGGAGTTCGGCACCATCGGCGCCCGCCGGTTCGCCCGGGGGGCCGGTGACGGCGACGGCGAGCCCGCCGGCGACGTCGTGGTCGAGGTGACCACCTACCGCTCGGACTCCTACGACCCCGACTCGCGCAAGCCCGTCGTCGCCTTCGGCGACACGCTCGACGGTGACCTGTCCCGGCGGGACTTCACCGTCAACGCGATGGCGGTGCGGCTGCCGGACCTGACGTTCGTCGACCCGTTCGGCGGGCTGACCGACCTCGCCGAGCAGGTGCTGCGCACGCCGATCGAGCCCGAGCGGTCGTTCGACGACGACCCGCTGCGCATGCTGCGGGCCGCGCGCTTCGCCGCCCAGCTCGGCTTCACCGTCGAGCCCGCCACGCGCGCCGCCATCGACGCGATGGCGGGCCGGCTCGAGATCGTGTCCGCCGAGCGGGTCCAGGCCGAGCTGTCCAAGCTGCTCTGCGCCGACCGGCCGCGCGCCGGGCTCCAGGTGCTCGTCGACACCGGGATGGCCGACCACGTCCTGCCCGAGCTGCCGGCCCTGCGCCTGGAGATCGACGAGCACCACCGGCACAAGGACGTCTACGAGCACTCCCTCATCGTGCTCGACCAGGCGATCGCCCAGGAGACCGGGCCGGACGGCGCCGTGCCCGGCCCCGACCTGGTGCTGCGGCTCGCGGCGCTGCTGCACGACATCGGCAAGCCCGCCACGCGCCGGTTCGAGCCGGGCGGCGGCGTCAGCTTCCACCACCACGAGGTCGTCGGCGCGAAGATGACGGCCAAGCGGCTGCGTGCCCTGAAGTACGAGAAGCAGGTGGTCAAGGACGTCTCCCGGCTCGTCGAGCTGCACCTGCGGTTCCACGGGTACGGCGACGGCGCGTGGACCGACTCCGCCGTCCGCCGCTACGTCACCGACGCCGGCCCGCTGCTGGAGCGGCTGCACCGGCTCACCCGGGCCGACTGCACCACCCGGAACCGGCGCAAGGCCAAGCGGCTCGCGGACGCCTACACCGACCTCGAGGAGCGGATCGCCCGGCTGCGCGAGCAGGAGGAGATCGACTCGATCCGGCCCGACCTCGACGGCACGCAGATCATGGAGATCCTGGGTGTCGGACCGGGACCGGTCGTCGGTCAGGCCTACCGGCACCTGCTGGGCCTGCGCATGGAGCACGGGCCGCTGGGCGCGGAGCGCGCCGCCGCGGAGCTTCAGTCCTGGTGGGCCGGCCGGCAGGACTGA	MAPAAVELGEIFSAAGHELSLVGGPVRDAFLGRTSADLDFATSATPDETQRLLARWGDAHWDIGKEFGTIGARRFARGAGDGDGEPAGDVVVEVTTYRSDSYDPDSRKPVVAFGDTLDGDLSRRDFTVNAMAVRLPDLTFVDPFGGLTDLAEQVLRTPIEPERSFDDDPLRMLRAARFAAQLGFTVEPATRAAIDAMAGRLEIVSAERVQAELSKLLCADRPRAGLQVLVDTGMADHVLPELPALRLEIDEHHRHKDVYEHSLIVLDQAIAQETGPDGAVPGPDLVLRLAALLHDIGKPATRRFEPGGGVSFHHHEVVGAKMTAKRLRALKYEKQVVKDVSRLVELHLRFHGYGDGAWTDSAVRRYVTDAGPLLERLHRLTRADCTTRNRRKAKRLADAYTDLEERIARLREQEEIDSIRPDLDGTQIMEILGVGPGPVVGQAYRHLLGLRMEHGPLGAERAAAELQSWWAGRQD				NA	NA	NA	NA	NA
AK001_00853	555			hypothetical protein	GTGCCGGTACCGGTCCCTCCGGGCGGGCATCCGCTCAAGGTCGACCCGGCCCGCCTGCGTCGTCGGACGGCGCCGAGCACCGTGGGGAGCACCGGCCACCTGCCCGTGGTCGACGAGACCTCGGCCGGGGGCCTCGTGGTCGAGCGGCACGTCTCGGGCCACCGGGCGGCGGTGATCCTGCGGCGCAACCGTGCCGGTCGCCTCGAGATGTGCCTGCCCAAGGGGCACCTGGAAGGAGCCGAGACGCCGGAGGAAGCCGCGGTGCGCGAGATCCGCGAGGAGACGGGGATCCAGGGGACGGTCCGCCGCACCCTCGGCGTCATCGACTACTGGTTCAGCGGCGAGGACCGCCGCGTCCACAAGGTCGTGCACCACTTCCTGCTGCGGGCCGACGGCGGGCTCATCACGGCCGCCGGGGACCCCGACGGCGAGGCGGAGGACGCCCGCTGGATCCCGCTGACGGAGCTGCCCGACCGGCTGGCCTACCCGAACGAGCAGCGCCTGGCGACGACCGCCCTGCAGGTCCTGACCCGCACCCCGGACCTGGTCGAGTGA	MPVPVPPGGHPLKVDPARLRRRTAPSTVGSTGHLPVVDETSAGGLVVERHVSGHRAAVILRRNRAGRLEMCLPKGHLEGAETPEEAAVREIREETGIQGTVRRTLGVIDYWFSGEDRRVHKVVHHFLLRADGGLITAAGDPDGEAEDARWIPLTELPDRLAYPNEQRLATTALQVLTRTPDLVE				NA	NA	NA	NA	NA
AK001_00854	2121			hypothetical protein	GTGACCGACACCCGCACGACGGGCGCCCGCAGCCGCGTCCTGCTCCTGCTGCTGTCCGCCCTGCTGCTGGCGGCGCCCCTGGTGCTCGTCCCGCCCGTGCCGGCGTCCGCGCACGAGGACGTCCACGCCGAGATCGTCCGGATCTCCCCCGTCGTGGTCGGTCCCGACGACACCCAGGAGGTCGCCCTCCGCGTCACGAACGACACGGACGCCGAGCTCACGGGGCTGACGGCGGAGCTGGGGGTGGGGTGGCGCCCGGTGACGACCCGTGCGGGCGTGGCCTCGTGGGCCGCCGGGGAGTCCGGGCTGGCCGCCACGCAGCTGCGCGAGCCGCTCGACCCCGTGCCACCGGGTGAGTCGGTGCAGACCACGCTCTCGCTCGACGTCCGGGCCCTCCGCCTCGGCGAGGCCGCGCCCTGGGGGCCGCGGCAGATGTCCGTCCGGGTCGCGGACGGCTCGACCACCCTCGAGCTCCTGCACTCGTTCCTCCTCTACGACCCGGGCACCGGCGCGGCGTCGTCGGACCAGGCACCGCCGCCGCCGGTCTCCCTGACGGTGGCCGCACCGGTGACCGGCCCCGTCTTCGACCCGGCGGCGCCCGAGGACTACGCGGACACCGTGGTCGACCGGTCCGCGCCCGGCGCCCGGTACGACCGGCTCCTCGCGGCGGCCACGTCCCCCGTCGGGGCGCTCTCCCTCGCGGTGGACCCCGCCGTCGTCGCCGCCGCGGAGCAGTCGTCCGACGACGACGCGACCGCGTGGGCGGACCGGCTGCGGCGGTCCGGCGGGCCCGGCGTCGTCACGCTGCCCGTCGGCGACCCCGATCTCGCCGCGCTGACGCACGCCGGCACCGGCGCCTCCACGGTCGCCGAGATCGCGGAGGGCGGCGGCGCGCTGCCCGAGTCGTGGTCCCCGGCGGACGACTGGGGGCCACGGGTCGCCTGGCCCGCCGGCGCGCTGGACGCACCGACGCTCGGGACGGCCGCGCGGGCCGGCGCCGGCGCGGTCGTGGCCGCCGAGGGGGCGACGCTGCCGGACGACGCCGTCGGCGGGGTCGGTGCGGCGACGGCCGCCGGCGGTCAGGTCCCCGTCGCGGCGGCGGACCCCGTCCTCGGCGCGGTGCTCGGGTCCGCGACCGGCTCCGGGCGGTCCGTCGACGAGCCGGCCGCCACGGTGCAGCAGCTGCTCGCCGACACCGCCGTCCTCGCCGCGGACGCGGCCGCGACCGGGGGCGCGACCGCCGTCGTGGCCGCCCTCCCCCGCGGCTGGTCCCCGGACGTGGCGACCTTCGACGCCGTGCTCGGCCCCCTCGCCGAGCAGAGCTGGGTGGAGGTCGTCGACCTCACCGCGGCCCTGGCCGACCCCGCGGCCGAGGACGTGCCGGCCGAGGCCGCCGACGAGGCGGTCGCCGAGGCCGAGCTCGCCCCCGGCGTGGTCCGCGACCTCGTCGCGGCCTCCGACGACGTCGCCGCCTTCGCCACGGTCGCGGCCGACCCGGACGAGCTGACCGCGGGGGTCGACCGCGACCTGTTCGCCCCGATGTCGGTGGCCTACCGCGACGACGTCGAGGCCCGGACGGTCGCCGTCGGTCTCGCCGAGGACCGGGCCCGGCAGGTGCAGTCCGGCATCAGCGTGCTGGACCGTGCGGACGTGCTGCTCATCAGCGACGCCGGCGACCTCCCCGTGCGGGTGCGGAACGAGCTGCCGGTGGACGCCCGGGTCACCGTCCGGCTGCGGCCCGACGACCCGCGGCTCGTCGTCGAGACGGTCCCGGAGATCGTCGTCCCCGCCGGCGAGTCGCGCGACGCGCAGGTGCGGGTGCGCGCCATCGGCTCCGGTGACGTCACCCTCGACGTGGAGGTCACCGCGCCCAGCGGCGTGGAGGTCACCGCGCCGACCGAGTTCGCGCTGAGCGTGCGGGCCGGGTGGGAGACCGTCGGGACGGCGGTGATCGCGGCGGGAGTCGGTCTGCTGTTCCTCACCGGCATCTGGCGCACGGTGCGCCGCGGACGCTCCGACCGGCGCACCACCGGCGAGCAGGTGGCGGAGTCCGCCGTGCCGACCGACCGGCCCCGCACCGTGCCATCCCAGGACGCTTCTCCGGAGGACACCGAGTCATGA	MTDTRTTGARSRVLLLLLSALLLAAPLVLVPPVPASAHEDVHAEIVRISPVVVGPDDTQEVALRVTNDTDAELTGLTAELGVGWRPVTTRAGVASWAAGESGLAATQLREPLDPVPPGESVQTTLSLDVRALRLGEAAPWGPRQMSVRVADGSTTLELLHSFLLYDPGTGAASSDQAPPPPVSLTVAAPVTGPVFDPAAPEDYADTVVDRSAPGARYDRLLAAATSPVGALSLAVDPAVVAAAEQSSDDDATAWADRLRRSGGPGVVTLPVGDPDLAALTHAGTGASTVAEIAEGGGALPESWSPADDWGPRVAWPAGALDAPTLGTAARAGAGAVVAAEGATLPDDAVGGVGAATAAGGQVPVAAADPVLGAVLGSATGSGRSVDEPAATVQQLLADTAVLAADAAATGGATAVVAALPRGWSPDVATFDAVLGPLAEQSWVEVVDLTAALADPAAEDVPAEAADEAVAEAELAPGVVRDLVAASDDVAAFATVAADPDELTAGVDRDLFAPMSVAYRDDVEARTVAVGLAEDRARQVQSGISVLDRADVLLISDAGDLPVRVRNELPVDARVTVRLRPDDPRLVVETVPEIVVPAGESRDAQVRVRAIGSGDVTLDVEVTAPSGVEVTAPTEFALSVRAGWETVGTAVIAAGVGLLFLTGIWRTVRRGRSDRRTTGEQVAESAVPTDRPRTVPSQDASPEDTES				NA	NA	NA	NA	NA
AK001_00855	1737	murJ_2		lipid II flippase MurJ	ATGACCACCGATCCCCCCGAGCCGGGGACCCCCGGGGCCGGTCCGGCCGGGCCGGACGACACCGCGTCCGGGTCGACGGCGGACCCGCAGGGCGTGCGCAAGGCCAGCCTGGGCAGGGGGTCGCTCGCGATGTCGCTGGGCACCGCGGCCTCGCGGGCCTCCGGTCTGGTGCGCACGATGCTGCTGGTCGGTGCCGTGGGCGCCGTCGGCACCGTGGCCAACGCGTTCGACATCGCGAACAAGCTGCCCAACATGCTGTTCGCGCTGATCTCGGCGGGCTTCCTGCAGTCGGTGCTGGTGCCCCAGATCATGAAGGCGATGTCGGCGCGCAACGCGCGCGAACGGCTCGACAAGCTGCTCACGATCTCCGGGCTGGGTCTGCTGTCCGGGACGATCGTCCTGGTGGCGGCCGCTCCGCTGGTCGTGCACATGATGACGCTGAGCGACGCGTGGACCCCGGAGGCCCGTCAGCTCGCCGTGGTCTTCGCCTACTGGTGCCTGCCGCAGCTGTTCTTCTACGGCCTGTACACGCTGCTGGGCCAGGTGCTCAGCGCGCACGGCCGGTTCGCGGCCTACGGGTGGGCGCCGGTGGCCAACAACGTCGTGTCGATCGTGGGGTTCGGGGCGTTCATCCTGCTGTTCGGGCAGGCGCCCGCCGCCGGCCTGGGCGACGTCGAGGCGTGGACGACCCAGCAGACGCTCCTGCTGGCGGGCACCGCGACCCTCGGCATCGCCGCGCAGTCGGCGATCCTCGTGCCGGCCCTGCGCAAGGCGGGCTTCCGGTGGGGGTTCCGGCTCGGCCTGCGCGGCATCGGGCTGCGGTCCGCCGGCAAGGTCGTCGGGTGGACGATCGGCGCCGTCGTGCTGGAGCAGCTCGGGGTCATCTACCTCACCAACGTCACCGGCGCGGCCAGCCAGCTCGCCGAGGACCTCGGCGAGGTCGCCGGCGGTCCGGCGGCCTACACCCAGGCGATGTCGATCTACCTGCTGCCGCACTCGCTCGTCGTCGTCTCCATCGTCACCGTGCTGTTCCCCCGGATGAGCGCCGCGGTGAACGCCGGCGACCTGGCGGCCGTGCGCCGGGACATGTCGCTGGGCCTGCGCTCGGCCGGCATCTTCTCGGTGTTCTCCGCCACGGCGCTCGTCGTGCTCGCGTTCCCGCTGACGAAGGCGCTGCTGCCGTCGGCCTCCGAGATCGAGGTCGAGGCGATCGCGCCGATCCTGCGGGCGATGGCCGTCGGCACGATCGCGCTCGGCGGCACGGTGCTCGTGCGCCGCATGTACTTCGCCTTCGAGGACGGGCGCAGCATCTTCGTCATCCAGGTGATCGCCACCGTCGCGCTCGTCGCCGGGCTGTTCGTCGCGACCCAGACGCTGCCGTTCTCGGCCTGGGCCACGGCGGCGGGCGGCTCCTTCGCGCTGGCGACGTGGATCTCGCTGCTGCTGCGGATCCGCGGCATGAACCGCAAGCTGCACGGCATGGACGGCCCGCGGGTGCTCCGGCTCTACGTCCGGGCGTCGCTCGCCGCGCTCGTGGCCGGCGGCCTGGGATGGCTGACCATCCACCTGATGGACGCCTCGGCCTCCTCCTCCTGGCCGTTCGCCCTGCTCGGGACGGCGGTCGGGGGCCTGGTCATGGGCGTCGTCTACCTCGGGCTGCTGAAGCTGATGCGGGTGCGCGAGCTCGACGACGCCCTGGCCCCGATCACCCGTCGGCTCCGCCGAGGCGCCGCATGA	MTTDPPEPGTPGAGPAGPDDTASGSTADPQGVRKASLGRGSLAMSLGTAASRASGLVRTMLLVGAVGAVGTVANAFDIANKLPNMLFALISAGFLQSVLVPQIMKAMSARNARERLDKLLTISGLGLLSGTIVLVAAAPLVVHMMTLSDAWTPEARQLAVVFAYWCLPQLFFYGLYTLLGQVLSAHGRFAAYGWAPVANNVVSIVGFGAFILLFGQAPAAGLGDVEAWTTQQTLLLAGTATLGIAAQSAILVPALRKAGFRWGFRLGLRGIGLRSAGKVVGWTIGAVVLEQLGVIYLTNVTGAASQLAEDLGEVAGGPAAYTQAMSIYLLPHSLVVVSIVTVLFPRMSAAVNAGDLAAVRRDMSLGLRSAGIFSVFSATALVVLAFPLTKALLPSASEIEVEAIAPILRAMAVGTIALGGTVLVRRMYFAFEDGRSIFVIQVIATVALVAGLFVATQTLPFSAWATAAGGSFALATWISLLLRIRGMNRKLHGMDGPRVLRLYVRASLAALVAGGLGWLTIHLMDASASSSWPFALLGTAVGGLVMGVVYLGLLKLMRVRELDDALAPITRRLRRGAA	PGPT0024200_684	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980	NA	NA
AK001_00856	1893			hypothetical protein	GTGACCACCGCCCAGCCCGGGACCGTCATGGTCGACCGTTACCGGCTGAACCAGCCCGCCGCCACCGACCTGGCGGCAGCGGAGGCCTGGGACGCCCACGACCAGATCCTGGACCGTCCGGTCCGCGTCACGTTCGTCGGGGGGCCGCAGGCACCGGCCGCGCTGGACGCCGCCCGGCGCGCCGCCCTGGTGGCCGACCCGCGGCTGTGCCGCGTGCTCGACGTCGGCACCACCGACCTCGGGACCGGTGAGCAGTCCTACGTCATCACCGAGCCGTACGCCGGAGAGTCCCTGACGCACATCGTCTCGCGCGGGCTGGTCGACGCCCAGCAGGCCCGCGCCCTCATGGGCGAGGCCGCCACCGCTCTCGAGGCCGCTCGGCAACGGGGCGTGCACCACCTCGCCCTGCGCCCGGAGGCCGTGCGGGTGGACGGCCACCGCGTCGTCGTCACCGGGCTCGGGATCGACGCCGGGCTGGCCGGGGTCGAGGCCACGGAGAGCGACGCCGCCGCCCGCGACGCCCGTGGTGTCGTTGCTCTGGGCTACTACGCGCTGACGGCGCGGTGGCCCGGCGAACCCCTCGACGTGGACTGGATCGCCCCGGACGCCGTCCGCCCGCTGCCCGCCCAGACCGGGCCCGACGGCGTGCTGGCCGTGTCCGAGCTGGTGCCGCACGTCGACGAGCAGATCGACGACCTCGTGCGCCGCACCTTCGGGACCGGTGGCGGGGCGCCGGAGGGGCCCGGCGACGTCGTCGCCGCCCTCGAGCCGTGGGGCCAGGTCTCGGTCCTGGGATCGCTGCCGCAGTTCGTCCAGCCGACGCCGGAGCGCCCGGTCCGGTCCTCCGTGCTCGGCGCGGGCAGCCCCGCCGGTGCCGAGAGCCTGCCCGGCACACCGCCGCCGGCACCCCCGGTCCGTCGTCCGTCCACCGGGCGCATCGCCCGGGGTGCCGCCGTCGGGACGGCCGGTGCCGCAGCGGGCGCCGCCTACGCCGCGAACGGCGGCCACCCGACCGCGCCCGCGCCCGGGTACGGTCAGCAGGCCCCCTACGGTCAGCAGGCCCCCTACGGTCAGCAGGCTGCCTACGGACAGCAGGCCCCCCCGGCCGCACCGGGGAAGGCTCCCGGTCAGGTGCCTCCGCCGCCTCCGGGCCCCGGGTACGCACCGGCCGCCGCGACCGGAGCGCCGCCGTCCGGTGCGAGCCCGGCCACGGGTTCGTTCGGCTCGACGGCGGCACCGAAGCGACGCGGCGTGAACCCCACCCCGATCGTGCTGGCACTCATCCTCGTCGGCGTGGTGATCGCCGCCGTGTGGGCCGTCGGCCAGGCGCTCAGCCCGTTCGACACGAGCCCGCCGCCGGCCGCCGAGGCCTCGCAGACCCCGACCGCGGACCCGAGCGAGGGCTCCGGCGAGCAGTCCGGCGAGGAGTCGGCCGAGCCGGAGCCGACCGAGGAGGAGAGCCCCGAGGTCCGCCCGATCATCGAGGCAGGCAGCGAGATCGACCCGCTCGGCAACGGCGAGAAGCCGGAGAAGGTCGAGTTCGCCTACGACTCCGACCCCTCGACGTTCTGGCACACGTACACCTACCAGAACGACCCGGTCTTCGGCGGCTTCAAGGAGGGCCTCGGCTACGAGGTCGAGCTGCGCGAGCCCGCCCCCGTCACCGAGGTCGAGCTGAACACGAACAGCGAGGGCGGGTCCTGGGAGCTGCGGCGCGTCACCGCCGACGACCCGGAGGGCGGTGAGGTGCTCGCCTCGGGTGCCTACTCCCCCGACACCGTCATCGAGCTCGACGAGCCCGTCGTCATGGACGGCTTCGTGCTGTGGACGACGGAGCTGCCGACGTCGGCGGGCGAGTTCCGTCTCGAGCTCAACGAGATCACCGTGTCCTGA	MTTAQPGTVMVDRYRLNQPAATDLAAAEAWDAHDQILDRPVRVTFVGGPQAPAALDAARRAALVADPRLCRVLDVGTTDLGTGEQSYVITEPYAGESLTHIVSRGLVDAQQARALMGEAATALEAARQRGVHHLALRPEAVRVDGHRVVVTGLGIDAGLAGVEATESDAAARDARGVVALGYYALTARWPGEPLDVDWIAPDAVRPLPAQTGPDGVLAVSELVPHVDEQIDDLVRRTFGTGGGAPEGPGDVVAALEPWGQVSVLGSLPQFVQPTPERPVRSSVLGAGSPAGAESLPGTPPPAPPVRRPSTGRIARGAAVGTAGAAAGAAYAANGGHPTAPAPGYGQQAPYGQQAPYGQQAAYGQQAPPAAPGKAPGQVPPPPPGPGYAPAAATGAPPSGASPATGSFGSTAAPKRRGVNPTPIVLALILVGVVIAAVWAVGQALSPFDTSPPPAAEASQTPTADPSEGSGEQSGEESAEPEPTEEESPEVRPIIEAGSEIDPLGNGEKPEKVEFAYDSDPSTFWHTYTYQNDPVFGGFKEGLGYEVELREPAPVTEVELNTNSEGGSWELRRVTADDPEGGEVLASGAYSPDTVIELDEPVVMDGFVLWTTELPTSAGEFRLELNEITVS				NA	NA	NA	NA	NA
AK001_00857	1014	trxB	COG0492	Thioredoxin reductase	GTGACCGACCAGTCGAACAGCCAGGACGCCCCGGTGCGCGACATCGTCATCGTCGGGTCCGGCCCCGCCGGGTACACCGCAGCGATCTACGCCGCCCGCGCCGGCCTCGCGCCCGTCGTGGTCGCCGGCTCGGTGACCGCCGGTGGTGCGCTAATGAACACCACCGAGGTGGAGAACTACCCGGGCTTCCCGCCCGGCATCCAGGGGCCCGACCTCATGGACGCGATGCGCGAGCAGGCCGAGCGTTTCGGTGCCGAGGTGCTGTGGGACGACGCCGAGACGCTCGAGCTCGACGGCGACGTGAAGACCGTGGTCACCGGCGGCGGCAAGACCTTCCGGGCCCGCGCCGTCGTCCTCGCCACGGGCTCGGCCTACCGCGAGCTCGGCCTGCCGGAGGAGAAGCAGCTGTCCGGCCGCGGCGTCTCCTGGTGCGCCACCTGCGACGGGTTCTTCTTCCGCGACCAGCACATCGCCGTCGTGGGCGGGGGCGACTCCGCCATGGAGGAGGCGACCTTCCTCACCCGGTTCGCCGCCAAGGTGACGGTGGTGCACCGCCGCGACGCCCTGCGCGCCTCCAAGATCATGGCCGACCGCGCCATGGCCGACCCGAAGATCGAGTTTGCCTGGAACAGCGAGGTCGTCGGCATCGAGGGCGAGAACAAGGTCTCCGGCGTCCGGCTCCGGGACACCGTCACCGGCGAGGAGCGCGACCTCGACGTCACCGGTCTGTTCGTCGCGATCGGGCACGACCCGCGCAGCGAGCTGCTGGCCGGACAGGTCGACCTGGACGAGGACGGCTACGTCCTCGCCGAGGGCCGTTCCACCCGCACCAACCTGCCGGGTGTCTTCGCCTGCGGCGACCTCGTCGACCACACCTACCGCCAGGCCATCACCGCCGCCGGGTCCGGTTGCGCCGCGGCGCTCGACGCCCAGGCGTACCTCGCCGAGCTCGCCGACATGTCCGAGACGGACCCGGAGGACCTCCCGGCCGCGCTCGACGCCGTCGCCGGCTGA	MTDQSNSQDAPVRDIVIVGSGPAGYTAAIYAARAGLAPVVVAGSVTAGGALMNTTEVENYPGFPPGIQGPDLMDAMREQAERFGAEVLWDDAETLELDGDVKTVVTGGGKTFRARAVVLATGSAYRELGLPEEKQLSGRGVSWCATCDGFFFRDQHIAVVGGGDSAMEEATFLTRFAAKVTVVHRRDALRASKIMADRAMADPKIEFAWNSEVVGIEGENKVSGVRLRDTVTGEERDLDVTGLFVAIGHDPRSELLAGQVDLDEDGYVLAEGRSTRTNLPGVFACGDLVDHTYRQAITAAGSGCAAALDAQAYLAELADMSETDPEDLPAALDAVAG	PGPT0013060_2788	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384	NA	NA
AK001_00858	327	trxA	COG0526	Thioredoxin 1	ATGCCTACCGTCGCCGTCACCGACGACACCTTCCAGACCGACGTCCTGGAGTCCGACATCCCCGTGCTGGTCGACTTCTGGGCGACCTGGTGCGGCCCGTGCCGCATGGTCGCGCCGATCCTCGAGGAGCTGTCCGACGAGTACGCCGGCAAGGTGAAGATCGCCAAGCTGGACACGGACGCGAACCAGGCCACCGCCATGGCGTACGGGATCACGTCGATCCCCACGCTGAACGTCTACGCGGGCGGCGAGGTCGTGAAGTCGATCATCGGCGCCCGCCCCAAGCGCGCCCTCACCGACGAGATCGAGAGCGTGCTCGCTTCCTGA	MPTVAVTDDTFQTDVLESDIPVLVDFWATWCGPCRMVAPILEELSDEYAGKVKIAKLDTDANQATAMAYGITSIPTLNVYAGGEVVKSIIGARPKRALTDEIESVLAS	PGPT0013055_5212	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671	NA	NA
AK001_00859	1344	lysN	COG1167	2-aminoadipate transaminase	GTGGCGTGGGACACTGGCGGGGTGACTGAGCAGAATCGCCTCACCGAGCAGACCTCCGGCACGCGCCTCGACCCCTGGTTCGGCGCGTACGCAGAGCGCACGCGCGGGATGCGAGCGTCGGAGATTCGCGCACTGTTCTCGGTCGCCAACCGCCCGGAGGTCGTCTCGCTGGCCGGCGGCATGCCCTTCATCGAGGGGCTCCCCCTCGACGTCATCGGCGAGGCGATGGACCGACTGGTCCGGACCAAGGGCACCAGGGCGCTGCAGTACGGCTCGGGCCAGGGCGAGGAGTCCCTGCGCGAGCGCATCACCGAGGTCGTGGCGCTGGAGGGTGTCGAGGCGCACCCCGACGACATCACCGTGACCACCGGCTCCCAGCAGGGCCTGGACCTGGTCACCCGGATCTTCATCGACCCCGGTGACGTAATCGTCGCCGAGGCCCCCTCGTACGTCGGCGCGCTCGGCGTGTTCCGGTCGTACCAGGCCGACGTCGTCCACGTGGAGCTCGACGCCGACGGTCTCGTGCCCGCCGCCCTCGAGTCGACGCTGACGGAGCTGGAGGCCGCGGGCCGCCGGGTCAAGATGCTCTACACGATCCCCAACTTCCACAACCCGGCCGGCGTGACCATGTCGGTGGAGCGTCGCCCCCAGATCCTCGAGATCTGCCGACGCCACGGGGTCCTCGTCGTCGAGGACAACCCCTACGGCCTCCTCGGCTTCGAGGCCGACCCCTACCCCGCGCTGCGGTCGTACGACGACGACGGCGTGATCTACCTGGGCTCGTTCTCCAAGACGTTCGCCCCCGGGTACCGCGTGGGCTTCGTCATCGCCCCGCACGCGGTCCGCGAGAAGCTCGTGCTCGCCTCGGAGTCGGCGATCCTGTCGCCGTCGAACGCGTCGCAGCTCGCCGTCGAGACCTACCTCGACACCTGCGACTGGCGCGCCCAGATCAAGGACTACCGGGAGATGTACCGCGAGCGACGCGACGCCCTCGTCGGCGCGCTGGCCGAGCACATCCCGTCGGCCAGCTGGAACGTGCCGGTCGGCGGCTTCTTCGTCTGGGTCAAGCTCCCCGAGGGACTGGACGCGAAGTCGATGCTGCCCCGCGCCGTCACCGAGCGCGTCGCCTACGTGCCGGGCACCGCCTTCTACTTCGACGGCCAGGGTGCGGACCACATGCGCCTGTCGTTCTGCTTCCCGACGCCGGACCGCATCCGGGAGGGTGTGCGCCGCCTGGCCACCGTCGTCAACGCCGAGTCCGAGCTGGTCCAGCTCTTCGGCACGACGGCGCAGCCCGACGACGACCCGACGGACGTCGAGAACCCCTCGCCCAACCTCGCGTGA	MAWDTGGVTEQNRLTEQTSGTRLDPWFGAYAERTRGMRASEIRALFSVANRPEVVSLAGGMPFIEGLPLDVIGEAMDRLVRTKGTRALQYGSGQGEESLRERITEVVALEGVEAHPDDITVTTGSQQGLDLVTRIFIDPGDVIVAEAPSYVGALGVFRSYQADVVHVELDADGLVPAALESTLTELEAAGRRVKMLYTIPNFHNPAGVTMSVERRPQILEICRRHGVLVVEDNPYGLLGFEADPYPALRSYDDDGVIYLGSFSKTFAPGYRVGFVIAPHAVREKLVLASESAILSPSNASQLAVETYLDTCDWRAQIKDYREMYRERRDALVGALAEHIPSASWNVPVGGFFVWVKLPEGLDAKSMLPRAVTERVAYVPGTAFYFDGQGADHMRLSFCFPTPDRIREGVRRLATVVNAESELVQLFGTTAQPDDDPTDVENPSPNLA	PGPT0007135_78	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007135-lysN-K05825	NA	NA
AK001_00860	993	ddlB	COG1181	D-alanine--D-alanine ligase B	ATGACTGCCCCCGCGTCCGACGCCTCCCCCGTGACGCCCTCGTCCGGAACTGTCGGACCTGTCGTGATTCTCGCCGGCGGACTGTCGCACGAACGCGACGTCTCCGTCCGGTCGGGACGTCGCGTCGCCGACGCCCTGCGCGAGGCCGGCGTCGAGGTCCTGGTGCACGACGTGGACGCCGACCTCCTCCGCTTCCTGCGGGACACCGACCCGGCCCTGGTCTGGCCGGTGCTGCACGGGGCCAGCGGCGAGGACGGTTCCCTGCAGGACGTCCTCGCGCTGGCCGGCGTCCCCACCGTCGGGACCGGTCCGCGCCAGAGCCGCCAGGCCTGGAGCAAGCCCGTCGCCAAGGCGGAGCTGCTGCAGGGCGGACTCAGCACGCCCGACTACGTAACCCTCCCCCAGGCACTGTTCCGGGACCTCGGTGCGCAGACCGTGCTCGACATGATCGTCGACCGCCTGGGCCTCCCCCTCGTGGTCAAGCCCGTGCAGGGCGGATCGGCGCTCGGCGTGACCCGTGTGGACGACGCCGGCCGCTTCCCTCGCGCGATGGTCGACTGCTTCTCGTACGGAGACACGGCCCTCATCGAGCGCGCCGTGGACGGGATCGAGGTGGCCGTGTCGGTCGTGGACGGTCCCGACGGGCTCGAGGCGCTGCCGGCTGTCGAGATCGTCACCAGCGGCTCCTACGACTACGACGCGCGCTACAACCCCGGTCCGGTCGAGTACTTCACGCCGGCTCGCCTCGACGCCGAGGCCGGACGAAAGGTCGCCGAGGTCGCGCGGCGTGCGCACGAGATCCTCGGGCTCAAACACCTCTCGCGGACCGACATCATCCTCGACGCCGACGGCACGCCGCACGTGCTCGAGGTCAACGTCTCCCCCGGTCTCACCGAGACGTCGCTGCTCCCCCAAGCCGCCGAGGCCGCCGGGTATTCGTTGTCCGCGCTCTACCGCCGGATCGTGGAGCACGCGCTCGTCCCCGCCGGCTGA	MTAPASDASPVTPSSGTVGPVVILAGGLSHERDVSVRSGRRVADALREAGVEVLVHDVDADLLRFLRDTDPALVWPVLHGASGEDGSLQDVLALAGVPTVGTGPRQSRQAWSKPVAKAELLQGGLSTPDYVTLPQALFRDLGAQTVLDMIVDRLGLPLVVKPVQGGSALGVTRVDDAGRFPRAMVDCFSYGDTALIERAVDGIEVAVSVVDGPDGLEALPAVEIVTSGSYDYDARYNPGPVEYFTPARLDAEAGRKVAEVARRAHEILGLKHLSRTDIILDADGTPHVLEVNVSPGLTETSLLPQAAEAAGYSLSALYRRIVEHALVPAG	PGPT0020050_4019	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921	NA	NA
AK001_00861	1293	noc_1		Nucleoid occlusion protein	ATGAGCCAGAAGAAGCGCGGGCTGGGCCGGGGGCTGGGTGCGCTGATCCCCCAAGGGCCGGCCCAGGAGAACCCGACCGACGTCTTCTTCTCGGGTGGGGAGGACGGCCGCACGGGCGACGTGCTGACGGCCTCGGCCGGGAGCGCGACGGACTCCGAGGAGTCCGGCGCGGGACGCACCGGTCGTCGATCGGCGTCATGGGACTCGGCCATCGCCGGCGGACGGCTGTCGATCAGCTCGACCCCGACGCGCCCTGGAGGAACGACGGGTGAGGACCCCCCCGCCGAGGCGGACCGGACGGTTCCCCAGTACGAGGTGTCCGAGCACGATGCCCCCGACGACCCCGCCTCGGCGTTCGACGCGGGGGAGTCGGACCGGTCGGAGGATCGCGGGGCATCGAGCGCCGGCGACAGCGGGTCCGTCGATGCTTCCGGACCGGACGACGGTCTGGTGCCGGTGCCCGGCGCGCAGTTCGCCGAGGTTCCGCTGCGTGCGATCCGCCCGAACGCTCGGCAGCCGCGGACGGTCTTCGACGAGGGAGAGCTCGACGAGCTCGTCGACTCGATCACGGAGATCGGCATCCTTCAGCCGATCGTCGTGCGCCCCGATCCGGAGACCGACGGCGGCTTCGAGCTGATCATGGGTGAGCGTCGGTGGCGTGCTGCCGAGCAGGCCGGCTTGGAAACGATCCCGGCGATCGTGCGACGGACCGACAACCAGCAGATGCTGCGAGACGCACTGCTGGAGAACCTGCACCGTGCGGCGCTCAACCCGCTCGAAGAGGCCGCGGCCTACCGCCAGCTGCTGGACGACTTCGGATGCACGCACGACGAGCTCGCGGCGAAGATCGCTCGCTCCCGCCCGCAGATCTCGAACACGTTGCGCCTGCTGCGTCTGCCGCCGCTCGTGCAGCGGCGTGTGGCGTCCGGTGTGCTGTCGGCCGGTCACGCCCGCGCGCTGCTGGGTCTCACTGACGGCGCGGAGATCGAGCGGCTCGCGCAGCGCATCGTGTCGGAAGGTCTGTCCGTCCGGGCGACGGAGGAGATCGTCACCCTCATGCAGGCCGCGGACGACGAGGCCCCTCGTCGGAAGAAGCCGCGGGCCGGACAGCGGGTCGAGGCGATGGACGAGCTGTCGTCGCGGTTGTCCGACCGCTTCGAGACGCGGGTGAAGGTGAACCTGGGGAAGACGAAGGGACGGATGACGGTCGAGTTCGCCTCGGTCGAGGACCTCAACCGCATCCTCGAGGTGATGGCGCCGGAGGACCCGGGAGTCCTGAAGACCTCGGAGTAG	MSQKKRGLGRGLGALIPQGPAQENPTDVFFSGGEDGRTGDVLTASAGSATDSEESGAGRTGRRSASWDSAIAGGRLSISSTPTRPGGTTGEDPPAEADRTVPQYEVSEHDAPDDPASAFDAGESDRSEDRGASSAGDSGSVDASGPDDGLVPVPGAQFAEVPLRAIRPNARQPRTVFDEGELDELVDSITEIGILQPIVVRPDPETDGGFELIMGERRWRAAEQAGLETIPAIVRRTDNQQMLRDALLENLHRAALNPLEEAAAYRQLLDDFGCTHDELAAKIARSRPQISNTLRLLRLPPLVQRRVASGVLSAGHARALLGLTDGAEIERLAQRIVSEGLSVRATEEIVTLMQAADDEAPRRKKPRAGQRVEAMDELSSRLSDRFETRVKVNLGKTKGRMTVEFASVEDLNRILEVMAPEDPGVLKTSE	PGPT0014815_1462	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497	NA	NA
AK001_00862	1080	nifH		Nitrogenase iron protein	GTGAACATGAGCTCCGATCGGCCGCCCTACCCGTCCGACGACGGTCGAGACGGATCTGCGTCCGGTGACGGGCAGGCCTTCGTTTCACGTGAAACAGGGGACGGGGCGTGGGCGATCGACGACATCCCGGCCCCGTCGCCGGAGTCCCACCGAGAGGCACTGATGGATTCCGTGCCCGAGATGGACGACAGCACACCGCTCGCGGCGCAACTGGCTCTCGACGCACGTCGACGGATCGAGCTGGACGGGCGTCGTTTTCCCCGACCGGAGCGGACGCGCATCCTCACGGTCGCGAACCAGAAGGGCGGCGTCGGCAAGACGACGACGACGGTGAACCTCGCCGCGGGTCTGGCACGTGCCGGGCTGAAGGTGCTCGTCATCGACAACGACCCCCAGGGCAACGCGTCGACCGCGTTGGGACTGGAGCACCGGGCCGGGACGCCGTCGATCTACGAGGTACTCGTCGAGGAGGCTCCGTTGTCCGGTGCCGTCCAGGCGTGCCCTGACGTCGAGGGCCTCTGGGGAGTGCCGGCGACGATCGATCTCTCCGGTGCCGAGATCGAGCTCGTCTCTCTCGTCTCCCGCGAGACCCGGCTGCGCAAGGCTCTCGACACCTATCTCGACGAGCGTGCCGCCCGCGGCGAGGACCCGATCGACTACGTCTTCGTCGACTGCCCGCCGAGCCTCGGACTGCTCACGGTGAACGCCTTCGTCACCGGTCGGGAAGTGCTGATCCCGATCCAGTGCGAGTACTACGCACTGGAGGGTCTGAGCCAGCTGCTGAAGACGATCGAGCTCATCAAGTCCCACCTCAACCGGGACCTGATCGTCTCGACGATCCTGCTGACGATGTACGACGGTCGGACGAACCTGGCGCAGCAGGTCGCCGCGGAGGTCCGGACGCACTTCCCGGAGCAGACGCTGCGCACCACGGTGCCGCGGTCCGTCCGCATCTCCGAGGCGCCGTCGCACGGGCAGACCGTGATGACCTACGACCCGGGTTCGACCGGTGCGCTGGCCTACCTCGAGGCCGCTCGGGAGATGGCGGAGCATGCCGTTCAACGCGCTGACCTGCGGTGA	MNMSSDRPPYPSDDGRDGSASGDGQAFVSRETGDGAWAIDDIPAPSPESHREALMDSVPEMDDSTPLAAQLALDARRRIELDGRRFPRPERTRILTVANQKGGVGKTTTTVNLAAGLARAGLKVLVIDNDPQGNASTALGLEHRAGTPSIYEVLVEEAPLSGAVQACPDVEGLWGVPATIDLSGAEIELVSLVSRETRLRKALDTYLDERAARGEDPIDYVFVDCPPSLGLLTVNAFVTGREVLIPIQCEYYALEGLSQLLKTIELIKSHLNRDLIVSTILLTMYDGRTNLAQQVAAEVRTHFPEQTLRTTVPRSVRISEAPSHGQTVMTYDPGSTGALAYLEAAREMAEHAVQRADLR				NA	NA	NA	NA	NA
AK001_00863	639	rsmG	COG0357	Ribosomal RNA small subunit methyltransferase G	ATGACGGATGCGGACGAGGTGCTGGGGACCAGCGCGGCGGTGCGTGACTTCTTCGGTGACCGCTACGACCTGGTGGCCGGCTACCACCGGCGGCTGCTGGAGGAGGGGGAGCTGCGCGGGCTCATCGGGCCGCGCGAGGTGGACAGGTTGTGGGAGCGGCACATCCTCAACTCGGCCGCCGTGGTTCCCTTCCTGTCGTCCGCCTCCTCGGTGGCGGACATCGGTTCGGGCGCGGGTCTGCCCGGCATCGTCGTCGCCATCATGCGTCCCGACGCCGAGGTGTTCCTCGTCGAGCCGATGGAGCGACGGACCACGTGGTTGTCGGAGATCGCCGAAGATCTCGGGCTCTCCAACGTCGTGGTCAAGCACGGGCGGGCCGAGGAGTACGACGGTGCGTTCGAGGTGGACGCCGTGACGTCCCGTGCGGTGGCGGCGCTGTCGAAGCTGGCACGGATGTCTCTGCCCCTGGTCCGCCCCGGCGGTGAGATGGTGGTCCTGAAGGGACGGAGCGTCGAGCGAGAGATCGAGCCCGCGCGGAAGGTCCTCCGCAAGTACAAGGCGGCCGAGCCCGAGATCCTCGAGGGACGGACGGTCGAGGGCGCGGAGTCGACGACGGTGGTGCGCATCCGTCGCCGCTGA	MTDADEVLGTSAAVRDFFGDRYDLVAGYHRRLLEEGELRGLIGPREVDRLWERHILNSAAVVPFLSSASSVADIGSGAGLPGIVVAIMRPDAEVFLVEPMERRTTWLSEIAEDLGLSNVVVKHGRAEEYDGAFEVDAVTSRAVAALSKLARMSLPLVRPGGEMVVLKGRSVEREIEPARKVLRKYKAAEPEILEGRTVEGAESTTVVRIRRR				NA	NA	NA	NA	NA
AK001_00864	525			hypothetical protein	ATGACCACGGACACGACGCCGGAGGGCACCTCCGATCTCGTCCCGCGCCTCGAGGAGGAGGGCGAGATCGCGGCCGACTACCTCGAGGAGTTCCTCGACATCGTCGACCTGGACGGCGACATCGACCTGGACATCAAGCACGACCGGGCTGTCGTCGAGGTCGTCTCCGAGGACGGGCCCGAGGCGCTGGACGTGCTGGTCGGCCGGGACGGCGAGGTGCTGGACGCCCTGCAGGACCTCACTCGCCTCGCGGTGCAGGCCCGCACGGGGGACCGTAGTCGCCTCATGCTCGACATCGCCGGCTTCCGGGCTCGGCGTCGTGACGCCCTGCAGCAGCGGGCCGCCGAGGCGATCGACCAGGTGCGCAGCTCGGGCGAGCCGCTCTCGCTGGAGCCGATGAACGCCTTCGAGCGCAAGGTCGTCCACGACGCGGTCGCCGAGGCGGGCCTGGTGAGCGACTCGGCCGGTGTCGAGCCCCACCGGCACGTCGTGGTGCATCCGCCCCGGGCTGCGGACCAGGGCTGA	MTTDTTPEGTSDLVPRLEEEGEIAADYLEEFLDIVDLDGDIDLDIKHDRAVVEVVSEDGPEALDVLVGRDGEVLDALQDLTRLAVQARTGDRSRLMLDIAGFRARRRDALQQRAAEAIDQVRSSGEPLSLEPMNAFERKVVHDAVAEAGLVSDSAGVEPHRHVVVHPPRAADQG	PGPT0024530_1367	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217	NA	NA
AK001_00865	948	yidC	COG0706	Membrane protein insertase YidC	ATGGGGTTTTTCGACACCATCCTGTACCCCATCCAGTGGGTCGTGGCCTGGATCATGTACGGGTCGCACCAGCTGTTCATGGCGCTGGGATTCCAGGACGGTCCGGGTTTCGCCTGGGTCCTGTCCATCGTCGCGCTCGTGATCGTCATCCGGATCCTGCTCATCCCGCTGTTCTTCAAGCAGATCAAGGCGTCCCGCGGGATGCAGATGATGCAGCCGGAGCTGCAGGCGATCCAGAAGAAGTACAAGGGCAAGACCGACCCGTCGTCCCGTGAGGCGATGGGCCGGGAGACGATGGAGCTGTACCGCAAGCACGGCACCAACCCGATGGCGTCCTGCCTGCCGATCCTGCTGCAGTCGCCGATCTTCTTCGCCCTGTTCCGCCTGCTCTACAACCTGGGCAACATCGCGTCCGGCACGCAGGACCCGATCGGTCCCATCGACCAGCCGGTCGCTGCGGACATCGAGAACTCCGACCTGTTCGGTGCTCAGCTCTCCGACGTCTTCCTGCAGACGGACGACTGGAGCGTCCGGATCGTCATCCTGTTCCTCATCGTGGCCATGAGCGCCACGACGTTCTTCACCCAGCGTCAGCTGACGATGAAGAACATGCCGAAGGCCGCGCTCGAGGGCCCGATGGCGAACACGCAGAAGATGCTGCTGTACGTCCTGCCGCTGATCTTCCTGATCTCGGGCGTGAACTTCCCGGTCGGTGTGCTGATCTACTGGACCACGACCAACCTCTGGTCGATGGGGCAGCAGTTCTACACGATCAAGCGCATGCCGGCCCCGGGTTCCGAGGCGGAGCGTCTGCTCAAGGAGAAGCGGGCTGCCAAGGCGGCGAAGAAGGGCATCGTCGTCGAGGAGGAGAAGGCTCCCGAGCCCCCGAAGCCGCAGGGTCAGCGTCAGCAGCCCGTGCGCAAGAACCGCCAGAAGAAGAAGAAATGA	MGFFDTILYPIQWVVAWIMYGSHQLFMALGFQDGPGFAWVLSIVALVIVIRILLIPLFFKQIKASRGMQMMQPELQAIQKKYKGKTDPSSREAMGRETMELYRKHGTNPMASCLPILLQSPIFFALFRLLYNLGNIASGTQDPIGPIDQPVAADIENSDLFGAQLSDVFLQTDDWSVRIVILFLIVAMSATTFFTQRQLTMKNMPKAALEGPMANTQKMLLYVLPLIFLISGVNFPVGVLIYWTTTNLWSMGQQFYTIKRMPAPGSEAERLLKEKRAAKAAKKGIVVEEEKAPEPPKPQGQRQQPVRKNRQKKKK	PGPT0024530_5130	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217	NA	NA
AK001_00866	294	yidD		Putative membrane protein insertion efficiency factor	ATGAGTAGCGCCGTGCTCTCCCGCGGTCGCGAGATCGCCCGTGCCCTGCCGGTGGCCGTGCTCGTCGGGGCGATCCGCGTCTACCAGGCAGTCGTCTCCCCGTGGACGGGGCCGACGTGCAAGTACTTCCCCTCCTGCTCGCAGTACGCGGTGGTCGCGATCCGGCGTCACGGTCCGCTGCGCGGAACCGGGATGGCCCTGTGGCGGATCCTGCGGTGCAACCCCTGGAGCCTGGGCGGCGTCGACGACGTGCCGCCGGCTCGGCACGAGCACCGCGGCGCCCACACGCACTGA	MSSAVLSRGREIARALPVAVLVGAIRVYQAVVSPWTGPTCKYFPSCSQYAVVAIRRHGPLRGTGMALWRILRCNPWSLGGVDDVPPARHEHRGAHTH				NA	NA	NA	NA	NA
AK001_00867	360	rnpA	COG0594	Ribonuclease P protein component	ATGCTTCCCGCGGCGCACCGCATGCGCCGTTCCGTCGATTTCGAACGGGCGGTGCGCCGCGGCGCGCGCGCGGGCCGATCGACCGTGGTCGTCCACCTCACCCGGGTCCCCGGGGAGGACGGAGGGCCGCTGGTCGGTCTTGTCGTGTCCAAGGCCGTGGGCAATGCCGTTCGTCGAAACCTCGTCAAGCGCCGGCTGCGCAGCGCAGCGTCCGGGCAGCTCGAGCATCTCCCGCAGGACGCCCTCGTCGTCCTGCGGGCTCTGCCGCGCGCCGCGACGGCCGACTACGCCCACCTCGCGTGGGACGTGGAGCGGGCGACCGCCACGGTGCTGCGGCGCGCCGACGAGCGTGTGCGATGA	MLPAAHRMRRSVDFERAVRRGARAGRSTVVVHLTRVPGEDGGPLVGLVVSKAVGNAVRRNLVKRRLRSAASGQLEHLPQDALVVLRALPRAATADYAHLAWDVERATATVLRRADERVR				NA	NA	NA	NA	NA
AK001_00868	168			hypothetical protein	GTGCCTCCCCGACGTTTCTTGGAGTACCTCGTGAGCAAGCGGACCTTCCAGCCGAACACCCGCCGTCGTGCGAAGACCCACGGCTTCCGTCTGCGCATGCGCACCCGCGCCGGCCGCAGCATCCTGGGCAACCGCCGCCGCAAGGGCCGCGCCCAGCTCTCTGCCTGA	MPPRRFLEYLVSKRTFQPNTRRRAKTHGFRLRMRTRAGRSILGNRRRKGRAQLSA				NA	NA	NA	NA	NA
AK001_00869	1431	dnaA	COG0593	Chromosomal replication initiator protein DnaA	GTGCCCCAGCCTGACGAGAACATCACCGACGTCTGGAACCAGACGTTGGCGACCCTCGAGGCGCGGCCCGACATGACCGCACGCCAGCTCGCCTTCATCAAGCTGGCCAAGCCGATGGCCATCCTCGACGACACCGTGTTCATCGCGGTGCCCCACGAGCAGACCCGCGCGTACCTCGAGACGAGCGTGCGCGACCAGCTCATGTCCGCCATGTCGGCGACGCTCGGGCGCGACACCCGGTTCGGCATCACCGTCGACCCGGAGCTGAGCCACGAGGCCCTCACCGGCCCCGCCCAGGACTACACGCCGCCGCCCAGCGCCCACGAGCCCGAGCCGACGCCGCCCGGCCCTCCCCCGGGCCGGCTGCCCGACGAGCGTCCCGCGGACAGCGAGCCGACGCGTCTGAACCCGAAGTACATCTTCGAGTCGTTCGTCATCGGCTCCTCCAACCGGTTCGCCCACGCGGCCGCGGTGGCCGTCGCCGAGGCCCCGGCCAAGGCCTACAACCCGCTGTTCATCTACGGCGACTCCGGACTGGGCAAGACCCACCTGCTGCACGCCATCGGCCACTACGCCAACAACCTCTACCCGCACGTGCGGGTGCGGTACGTAAACTCCGAGGAGTTCACCAACGACTTCATCAACTCCATCGGTGAGGGCCGCACGGGGGCGTTCCAGCGGCGCTACCGGGACGTGGACGTCCTGCTCATCGACGACATCCAGTTCCTGCAGGGCAAGGAACAGACGATGGAGGAGTTCTTCCACACCTTCAACGCGCTGCACAACGCGGACAAGCAGGTGGTCATCACCTCCGACGTGCCGCCCAAGCAGCTCGACGGGTTCGAGGACCGTCTCCGCTCGCGGTTCGAGTGGGGACTCATCACCGACGTCCAGCCGCCGGACCTCGAGACCCGGATCGCGATCCTGCGCAAGAAGGCCGCCAGCGAACGCCTGGACGTGCCGGCCGACGTCCTCAGCTACATCGGCTCGCGCATCTCGACCAACATCCGCGAGCTCGAGGGCGCCCTGATCCGGGTCACCGCCTTCGCGAACCTCAACAAGCAGCAGGTCGACCTCGCGCTGGCCGAGATCGTCCTCAAGGACCTCATCACCGACGACGACCAGGCCACCGAGATCACGCCGGCCGTCGTCATCGCCCAGACGGCGGCGTACTTCGGCCTGACGATCGACGACCTGTGCGGCTCGTCCCGGTCCCGGGTGCTGGTGACGGCCCGGCAGATCGCCATGTACCTGTGCCGTGAGCTGACCGACCTGTCGCTGCCCAAGATCGGGCAGCAGTTCGGCGGCCGCGACCACACCACGGTCATGCACGCGAACAAGAAGATCGCCGGCCAGATGGCCGAGCGACGCTCGACCTACAACCAGGTCACCGAGCTCACCAGCCGGATCAAGCAGCAGCACCGCGGCTGA	MPQPDENITDVWNQTLATLEARPDMTARQLAFIKLAKPMAILDDTVFIAVPHEQTRAYLETSVRDQLMSAMSATLGRDTRFGITVDPELSHEALTGPAQDYTPPPSAHEPEPTPPGPPPGRLPDERPADSEPTRLNPKYIFESFVIGSSNRFAHAAAVAVAEAPAKAYNPLFIYGDSGLGKTHLLHAIGHYANNLYPHVRVRYVNSEEFTNDFINSIGEGRTGAFQRRYRDVDVLLIDDIQFLQGKEQTMEEFFHTFNALHNADKQVVITSDVPPKQLDGFEDRLRSRFEWGLITDVQPPDLETRIAILRKKAASERLDVPADVLSYIGSRISTNIRELEGALIRVTAFANLNKQQVDLALAEIVLKDLITDDDQATEITPAVVIAQTAAYFGLTIDDLCGSSRSRVLVTARQIAMYLCRELTDLSLPKIGQQFGGRDHTTVMHANKKIAGQMAERRSTYNQVTELTSRIKQQHRG	PGPT0014800_1671	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-PILUS|FIMBRIAE_SYSTEM	MOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313	NA	NA
AK001_00870	1134	griR		Beta sliding clamp GriR	ATGAAGTTCCGCGTCGAGCGCGACGTCCTGGCCGAGGCCGTGACCTGGACGGCCCGCACCCTGCCCACGCGCCCGCCCGCCCCGGTCCTGGCCGGTGTGCGCATCGAGGCCGACGCGTCCGGCTCCATCGTGCTCGCGAGCTTCGACTACGAGGTCTCGGCACGGTCCGAGATCGCCGCCGAGGTCTCCGAGGCCGGCACGGTGCTCGTCTCGGGCCGCCTGCTCGCCGAGATCTCCCGCGCCCTGCCCAACAAGCCGGTCGACGTGACCGTCGAGGGCAACAAGGTCGTGCTGACCTGCGGAGCCTCCCGCTTCACGCTGCTGACCATGCCGGTCGAGGACTACCCCGCGCTGCCCGCCATGCCGGAGCTGTCCGGCACGGTCGCCGGGGACGCCCTGACCCACGCGGTCGCGCAGGTCAGCGTCGCCGCCAGCCGCGACGACACGCTGCCGCTGCTGACCGGCGTCCGCATGGAGATCGAGGGCGAGCGCATCACGCTGCTGGCCACGGACCGCTACCGGCTCGCCCTGCGCGAGCTGACCTGGACGCCGGCCACACCGGGGTTCAGCTCGGTGGCGCTCGTCCGTGCCCGGACCCTCAACGACGTCGCGAAGTCGCTCGGCTCGGGCGGCGGCCTGGTGAACATCGGGTTGTCCACCGGGGAGGGCGTTGACCTCATCGGGTTCGAGGCCGGCGGCCGGCACACGACCTCCCAGCTCGTGGACGGGGACTACCCGGCGGTCCGGCGACTGTTCCCGGACGCCACGCCGATCCACGCCGTCGTGCCGACGCAGGCGCTCATCGACGCGGCCAAGCGCGTCTCCCTGGTCGCCGAGCGCAACACCCCGATCCGGCTGGCGTTCTCCGAGGGCCAGGTCGTCCTCGACGCAGGCCAGGGCGACGACGCGCAGGCGTCCGAGGCCCTCGAGGCCGTGCTGGTCGGCGAGGACATCCAGGTGGCGTTCAACCCGCAGTTCCTGCTCGACGGGCTCGGCGCCCTGGGGACGGACTTCGTGCGGATGTCGTTCACGCACCCGAACAAGCCGGTGGAGTTCACCGGGCAGGAGTCGCTGGACGGCGAGGACTCCTCGGAGTACCGCTACCTGCTGGTGCCGATCCGCTTCTCCTCCTGA	MKFRVERDVLAEAVTWTARTLPTRPPAPVLAGVRIEADASGSIVLASFDYEVSARSEIAAEVSEAGTVLVSGRLLAEISRALPNKPVDVTVEGNKVVLTCGASRFTLLTMPVEDYPALPAMPELSGTVAGDALTHAVAQVSVAASRDDTLPLLTGVRMEIEGERITLLATDRYRLALRELTWTPATPGFSSVALVRARTLNDVAKSLGSGGGLVNIGLSTGEGVDLIGFEAGGRHTTSQLVDGDYPAVRRLFPDATPIHAVVPTQALIDAAKRVSLVAERNTPIRLAFSEGQVVLDAGQGDDAQASEALEAVLVGEDIQVAFNPQFLLDGLGALGTDFVRMSFTHPNKPVEFTGQESLDGEDSSEYRYLLVPIRFSS				NA	NA	NA	NA	NA
AK001_00871	897		COG1023	6-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylating	ATGGTCACCCACATGGGTCTCGTCGGTCTGGGCAAGATGGGCGACAACATGCGCGAGCGCCTGCGCCGCGCCGGGATCGGGGTGACGGGGTACGACCCGCGCCCGGAGGTCTCGGACGTCGGCTCGCTGGCCGAGCTCGTCCAGGCCCTGCCCGGGCCGCGTCGCGTCGTGTGGGTCATGGTGCCCGCCGGGGAGCCGACGCGGGAGGTCGTCAGCGCGCTCGCGGGTCTGCTCGACGAGGGCGACGTCGTCATCGAGGGCGGCAACTCCCACTACCCCGACGACCAGGAGCGGGCCGCCGAGCTCGCCGAGCGTGGCGTCGGGTACGTCGACGTCGGGGTCTCCGGCGGCGTGTGGGGCCTGGAGAACGGCTACGGCCTGATGTGCGGCGGGTCCGACGCCGACGTCGCGTTCCTCATGCCCGTCTTCGACGCGCTGCGCCCCGAGGGCCCGCGCGAGGAGGGCTTCGTGCACGCCGGCCCCGTGGGTGCCGGCCACTTCGCCAAGATGGTCCACAACGGCATCGAGTACGGCCTCATGCAGGCCTACGCCGAGGGCTACGAGATGCTCGCCGCCAAGGACATCGTCACCGACGTGCACGGCACGATGCGGGCCTGGCAGCGCGGCACCGTCGTGCGGTCCTGGCTGCTCGAGCTCATGGTCCGGGCCCTCGAGGACGACCCGCGCTTCGACGCGATCGACGACTGGGTCGCGGACTCCGGCGAGGGCCGCTGGACCGTCGACGAGGCGATCGACAACGCCGTGCCCCTGCCGGTGATCTCCGCGGCCCTGTTCGCGCGGTTCTCCTCGCGCCAGGAGGAGTCCCCGGCGATGAAGGCGGTCGCGGCGCTGCGCCAGCAGTTCGGCGGTCACGCCACCAAGCCGTCCGCCGAGTAG	MVTHMGLVGLGKMGDNMRERLRRAGIGVTGYDPRPEVSDVGSLAELVQALPGPRRVVWVMVPAGEPTREVVSALAGLLDEGDVVIEGGNSHYPDDQERAAELAERGVGYVDVGVSGGVWGLENGYGLMCGGSDADVAFLMPVFDALRPEGPREEGFVHAGPVGAGHFAKMVHNGIEYGLMQAYAEGYEMLAAKDIVTDVHGTMRAWQRGTVVRSWLLELMVRALEDDPRFDAIDDWVADSGEGRWTVDEAIDNAVPLPVISAALFARFSSRQEESPAMKAVAALRQQFGGHATKPSAE	PGPT0017385_4603	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033	NA	NA
AK001_00872	1272	recF	COG1195	DNA replication and repair protein RecF	ATGTACGTCTCGCACCTGTCCCTGCTCGACTTCCGGTCCTACGAGTCCGTCGACGTCGAGCTCGAGCCCGGACCGAACGCGTTCGTGGGTCGCAACGGGCGGGGCAAGACGAACCTCGTCGAGGCCGTGGGCTACGTGGCGACCCTCGGCAGCCACCGGGTCGCGAACGACACCCCGCTGATCCGTGCGGGGGCCCGGCGGGCCGTCGTGCGCACGCGGGTCGTCCGCGGGGACCGCGCCTCGACCGTGGAGCTCGAGATCACCGCCGGCAAGGCGAACCGGGCCCGCATCAACCGTGGTCAGCTCGGCCGTGCGCGCGACGTGCTGGGGATCCTGCGCACGGTGCTGTTCGCCCCGGAGGACCTGGCCCTGGTCAAGGGCGACCCCGACGGCCGGCGTCGCTTCCTGGACCAGCTCGTGGTGCAGCTCCTCCCCCGCGCCGCCGGCGTGCTGGCCGACTACGAGCGGGTCCTGCGGCAGCGGTCCGCCCTGCTCAAGTCGTTGCGCGGTCACCGTGCGGCGGGCCGCGACGTGGACACCTCCACCCTGGAGGTGTGGGACGGGCGCCTGGCGCAGCTCGGCGGGCAGGTCCTCGCCTGGCGGACCGCGCTCGTGCGCGCGCTGCAGCCCGTCGTCGCCACCGCGTACGAGCAGGTCAGCGACGCCGACAGCGCCGCCGAGCTCGTCTACCGCTCCACGGTGGTGCCCGACGGCGGCGCGGCGGTGCCGCCGTCGGCCCCCGACGGCGAGGGCTCGCCCGCTGGGCCCGTTGAGCCTGCTGAGCCCGACGGGCCTGCTGAGCCCGGCGGACCGCCCACGGCGGCGGAGGACCTGGAGAAGCTGATGCTGGCGGTGATCGAGGAGCGGCGCCCGGCCGAGATCGAGCGCGGCCAGAGCCTCGTGGGTCCGCACCGGGACGACCTGGAGCTCGTGCTCGGCGGGCTGCCCGCGAAGGGGTACGCGAGCCACGGCGAGTCGTGGTCGTTCGCGCTGGCGCTGCGGCTGGCGGCCTTCCGTCTGCTCGGCGGCGGAGCCGAGCCGTCCGCGCCGGACGACGTGTTCTGGGATCCCGACCACGGCTCGGACGCGGACCCGGTGCTGATCCTCGACGACGTCTTCGCCGAGCTGGACGTGCGGCGGCGGGAGCGCCTGGCCGAGCTGGTGGCCGAGGCGCGGCAGGTGCTCGTCACGGCGGCGGTCCCGCAGGACGTGCCGGACCGGCTGCTGGGCGCCCGGTTCGAGGTCGGCGACGGGCAGGTCGTCCGTGTCTGA	MYVSHLSLLDFRSYESVDVELEPGPNAFVGRNGRGKTNLVEAVGYVATLGSHRVANDTPLIRAGARRAVVRTRVVRGDRASTVELEITAGKANRARINRGQLGRARDVLGILRTVLFAPEDLALVKGDPDGRRRFLDQLVVQLLPRAAGVLADYERVLRQRSALLKSLRGHRAAGRDVDTSTLEVWDGRLAQLGGQVLAWRTALVRALQPVVATAYEQVSDADSAAELVYRSTVVPDGGAAVPPSAPDGEGSPAGPVEPAEPDGPAEPGGPPTAAEDLEKLMLAVIEERRPAEIERGQSLVGPHRDDLELVLGGLPAKGYASHGESWSFALALRLAAFRLLGGGAEPSAPDDVFWDPDHGSDADPVLILDDVFAELDVRRRERLAELVAEARQVLVTAAVPQDVPDRLLGARFEVGDGQVVRV				NA	NA	NA	NA	NA
AK001_00873	606			hypothetical protein	GTGTCTGAGCACGGGCCCGACGGCCCGGGTGCGCCCGGCGGCGAGAGTGCGGACGAGGCCGACGGGCCGCGCCGCCGCGACCCCCGGCCGGTCGTCGACCGCACGGAGCTGACGCCGCCGTCCGAGGTCGCCCGCGAGGCCCTGAACCGTGCCAAGGCGGCCGCGCGGGCGAAGGGCCTGCGTCCGGGCTCCCCGTCGCGGCGCTCACCGCTGGCGGAGCCGCGCAAGGACCCGGGCCGGGGCCCCAATGCCCGGGACCCGCGGCTGATGTCGGACGTCGTGGCCCGGCTGCTGCGGGACAAGGGCTGGACGGCCGAGGTCTCGGTGGGCGGCGTCGTCGGTCGCTGGCGCGAGATCGTCGGCGACCAGGTGGCGGACCACTGCACGCCGGAGACCTTCGAGGACAAGGTGCTCGTCGTCCGCACCGACTCGACCGCGTGGGCCACCCAGGTGCGCCTGCTCGTCCCCACGCTCCTGCGGCGGCTGGCCGAGGAGGTCGGCGAGGGCGTCGTGGAGCAGGTCACGGTGCTCGGGCCGTCGGGTCCGAGCTTCCGCCGCGGACGCCGGACGGTGCGCGGACCGGGCCCCGGAGACACCTTCGGCTGA	MSEHGPDGPGAPGGESADEADGPRRRDPRPVVDRTELTPPSEVAREALNRAKAAARAKGLRPGSPSRRSPLAEPRKDPGRGPNARDPRLMSDVVARLLRDKGWTAEVSVGGVVGRWREIVGDQVADHCTPETFEDKVLVVRTDSTAWATQVRLLVPTLLRRLAEEVGEGVVEQVTVLGPSGPSFRRGRRTVRGPGPGDTFG				NA	NA	NA	NA	NA
AK001_00874	2094	gyrB_1	COG0187	DNA gyrase subunit B	GTGGCTCAGCGATCCGACGGCGGTTACGACGCCGGGAACATCACCGTCCTCGAGGGACTCGAGGCCGTCCGCAAGCGACCCGGCATGTACATCGGGTCGACGGGCGAACGCGGTCTGCACCACCTGGTCTACGAGGTCGTGGACAACTCGGTGGACGAGGCCCTGGCCGGGCACGCCGACCGGATCGACGTGACCCTGCTGGCCGACGGCGGTGTGCGGGTGACGGACAACGGCCGCGGCATCCCGGTGGCCATGCACCCCACCGAGGGGCGTCCCACCGTCGAGGTCGTCATGACGATCCTGCACGCCGGCGGCAAGTTCGGCGGTGGCGGCTACGCCGTCTCCGGTGGCCTGCACGGGGTGGGCATCTCGGTGGTGAACGCGCTGTCCAGCCGCGTGGTCACCGAGGTCGAGCGCGACGGCTTCGCGTGGCGCCAGGAGTTCGCCGACGGCGGCGCCCCGGTGGGCGAGCTGCAGCGCCTCGGCGAGACCGACCGCACCGGCACCACGCAGACGTTCTGGGCCGACCCGGCGATCTTCGAGACCACGGACTACGACTTCGAGACGCTCCGCGCCCGGTTCCAGCAGATGGCGTTCCTCAACAAGGGCCTGCGCATCACGCTGACCGACGAGCGCACCGAGCACGTCTCGGGTCCCGACGAGGTGACCGGCGCGCTCGACTCGCGCGCCGTCGTGGCCGCCCTCGAGGGTGCCGACGCCACCGACGGCCAGGACGCCGCCTCCTCGCCGGACGACGAGGTGCACGACTCCGAGTCCGCCTCGGGTGCGGTGCGCACCGTGACGTACAAGTACGACGGCGGGCTGCGGGACTACGTCGCGCACATCAACACGGCCAAGAAGGCCGAGATCATCCACCCCGAGATCATCGACCTGGAGGCCGAGGACACCGACCTCAAGGTCTCGGTCGAGATCGCGATGCAGTGGACGACGGCGTTCAGCGAGTCCGTCCACACCTTCGCCAACACGATCTCCACCACCGAGGGCGGCACCCACGAGGAGGGCTTCCGCGCGGCGCTGACGAGCCTCGTGAACTCCTACGCCCGGGACAAGGCGATCCTCAAGGACAAGGACGAGAACCTCACGGGCGACGACATCCGCGAGGGTCTCACCGCGGTGCTCAGCGTGAAGCTGTCCGAGCCGCAGTTCGAGGGCCAGACGAAGACGAAGCTCGGCAACACCGGGGCCAAGACCTTCGTGCAGCGCATCGTGCGCGAGCGGCTGACGGACTGGTTCGACGCGCACCCCAACGAGGGCCGCGACATCATCCGCAAGGCGATCTCGGCGTCGCAGGCGCGTATCGCCGCCCGCAAGGCGCGCGAGGCGACCCGGCGCAAGGGGATCCTCAGCTCGGGCGGCATGCCCGGCAAGCTCAAGGACTGCCAGTCGAACCGCCCGGACGAGTGCGAGATCTACATCGTCGAGGGCGACTCCGCCGGCGGTTCGGCCGTGCGCGGCCGCGACCCGCACCACCAGGCGATCCTGCCGATCCGCGGCAAGATCCTCAACGTCGAGCGGGCACGCCTGGACAAGGCGCTGTCCAACAACGAGGTCCAGGCGCTCATCACGGCGTTCGGCACCGGTATCGGCGAGGACTTCGACATCACCAAGCTGCGGTACCACAGGATCGTGCTCATGGCCGACGCCGACGTCGACGGCCAGCACATCTGCACCCTGCTGCTGACGCTGCTGTTCCGGTACATGCGCCCGCTCATCGAGCACGGGCACGTCTACCTGGCCCAGCCCCCGCTGTACCGGCTGAAGTGGTCGAACGCCCCGCACGACTACGTGTACTCGGACCGGGAGCGTGACGCCTTCCTCGAGCAGGGCATCGCGGCCGGCAAGCGGATCCCGAAGGACAACGGGATCCAGCGCTACAAGGGTCTGGGCGAGATGGACTACTCCGAGCTCTGGGACACCACCATGGACCCGGAGCACCGGACGTTGCTGCAGGTCACGATGGACGACGCGGCCGCGGCGGACGAGATCTTCTCGGTGCTCATGGGCGAGGACGTCGAGTCCCGCCGCAGCTTCATCCAGCGCAACGCCAAGGACGTCCGGTTCCTCGATATCTGA	MAQRSDGGYDAGNITVLEGLEAVRKRPGMYIGSTGERGLHHLVYEVVDNSVDEALAGHADRIDVTLLADGGVRVTDNGRGIPVAMHPTEGRPTVEVVMTILHAGGKFGGGGYAVSGGLHGVGISVVNALSSRVVTEVERDGFAWRQEFADGGAPVGELQRLGETDRTGTTQTFWADPAIFETTDYDFETLRARFQQMAFLNKGLRITLTDERTEHVSGPDEVTGALDSRAVVAALEGADATDGQDAASSPDDEVHDSESASGAVRTVTYKYDGGLRDYVAHINTAKKAEIIHPEIIDLEAEDTDLKVSVEIAMQWTTAFSESVHTFANTISTTEGGTHEEGFRAALTSLVNSYARDKAILKDKDENLTGDDIREGLTAVLSVKLSEPQFEGQTKTKLGNTGAKTFVQRIVRERLTDWFDAHPNEGRDIIRKAISASQARIAARKAREATRRKGILSSGGMPGKLKDCQSNRPDECEIYIVEGDSAGGSAVRGRDPHHQAILPIRGKILNVERARLDKALSNNEVQALITAFGTGIGEDFDITKLRYHRIVLMADADVDGQHICTLLLTLLFRYMRPLIEHGHVYLAQPPLYRLKWSNAPHDYVYSDRERDAFLEQGIAAGKRIPKDNGIQRYKGLGEMDYSELWDTTMDPEHRTLLQVTMDDAAAADEIFSVLMGEDVESRRSFIQRNAKDVRFLDI	PGPT0027710_1728	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622	NA	NA
AK001_00875	2634	gyrA_1	COG0188	DNA gyrase subunit A	GTGACGGACGAGACCCCCGGCCCGGACATGACCGACGGTATCGACGGCGGCAGCCCGGAGGCCCTGGCGGCGGTCGCGCACGGACGCATCGAGCAGGTCGACCTGCAGCTCGAGATGCAGCGCAGCTACCTCGACTACGCGATGAGCGTCATCGTCGGTCGCGCGCTGCCCGACGTGCGCGACGGGCTCAAGCCGGTGCACCGGCGCGTGCTCTACGCGATGTACGACGGCGGCTACCGGCCGGACCGGTCGTTCTCCAAGTGCTCTCGCGTCGTCGGCGACGTCATGGGCAAGTACCACCCGCACGGTGACACGGCGATCTACGACGCCCTGGTCCGCCTCGTGCAGGACTGGTCGATGCGCTACCCGTTGGTGGCCGGCCAGGGGAACTTCGGCTCCCCCGGCAACGACCCGGCGGCCGCCCCGCGGTACACCGAGTGCAAGATGGACCCGCTCGCGCTGGAGATGGTGCGGGACATCGAGAAGGACACCGTCGACTTCCAGGACAACTACGACGGGCGCACCCAGGAGCCCACGGTCCTGCCGTCGCGGATCCCGAACCTCCTGGTCAACGGTTCGGCCGGCATCGCCGTCGGCATGGCGACCAACATCCCGCCGCACAACCTGCGCGAGGTCGCCGCGGGCGTGCAGTGGCACCTCGAGCACCCGGACGCCTCCAAGGAGGAGCTGCTCGCCGCGCTGATGCAGCGCATCAAGGGCCCCGACTTCCCCACCGGTGCCCAGATCCTCGGTACGTCCGGCATCGAGGAGGCCTACCGCACGGGGCGCGGCTCGATCACGATGCGCGCCGTGGTGAACGTCGAGGAGATCCAGAACCGGATCTGCCTGGTCATCACCGAGCTGCCGTACCAGGTCAACCCCGACAACCTGGCCACGAAGATCGCCGACCTGGTCAACGACGGCCGGATCGCCGGCATCGCGGACATCCGCGACGAGACCTCGGGCCGCACGGGTCAGCGCCTCGTCATCGTGCTCAAGCGCGACGCCGTCGCGAAGGTCGTGCTGAACAACCTGTACAAGCACACCTCGCTGCAGGAGAACTTCAGCGCCAACATGCTGGCGCTGGTCGACGACGTCCCCCGCACGCTCAGCCTCGACGCCTTCGTGCGGCACTGGACCACCCACCAGATCGAGGTCGTACGGCGCCGCACCGAGTACCTGCTGCGCGAGGCGCAGGACAAGATCCACATCTACGAGGGCTACCTCAAGGCCCTGGACGCCCTCGACGAGGTCATCGCCCTCATCCGTCGCTCGCCCGACGCCGACCAGGCGCGGACCGGGCTGATGGACCTGCTCGACATCGACGAGCAGCAGGCCAGCGCGATCCTGGCTCTCCAGCTCCGCCGGCTCGCGGCCCTGGAGCGGCAGCAGATCCTCGAGGAGCACGCGAAGCTCCAGGCGCAGATCATCGACTACCAGGACATCCTGGCCCGGCCCGAGCGGCAGCGGTCGATCGTCGGCGAGGAGCTGGACGCCGTCGTCGAGCGCTGGGGCGACGAGCGCCGGACCCACATCCTGCCCTTCGACGGCGACATGTCGGTCGAGGACCTCATCCCTGAGGAGGACGTGGTCGTCACGATCACCCGCGGCGGCTACGCCAAGCGCACGCGGACGGACTCCTACCGGGCCCAGCGTCGCGGCGGCAAGGGGATCCGGGGCGCGCAGCTGCGCGAGGACGACATCGTCGACCACTTCTTCGTCACGACGACGCACCACTGGCTGCTGTTCTTCACCGACGCCGGCCGCGTGTACCGCGCCAAGGGGTACGAGATCCCCGAGGGTGCGCGCGACGCCAAGGGTCAGCACGTCGCCAACCTGCTGGCGTTCCAGCCGGGCGAGCAGATCGCGCAGGTCCTGGCCCTGCGGGACTACGACGACGCGGAGTACCTGGTGCTCGCCACCCGCCGCGGCCTGGTGAAGAAGACCCGCCTGGGCGACTACGACTCCCCGCGCAGCGGCGGGCTCATCGCCATCAACCTGCGCACGGACGACGACGGCACGCCGGACGAGCTCGTGTCCGCCCGGCTGGTCGACGCCGACGACGAGCTGATCCTCGTCTCGCGCAAGGGGCAGTCCATCCGGTTCGCGGCCGACGACGACACGCTGCGCCCGATGGGACGCGCCACCTCGGGCGTGACGGGCATGAAGTTCCGCGCGGACGACGAGCTGCTCGTGGCCGACGTCGTCGAGCCGGAGACCGACCTGTTCGTCGTCACCGAGGGCGGGTTCGCCAAGCGCACCCGCATCGACGAGTACCGCCTCCAGGGCCGCAACGGTTACGGCATCAAGGTCGCGAACCTCGTCGAGGCGCGCGGCGACCTCGTCGGTGCGCTCGTCACCGAGCCCGACACCGAGGTGCTGGTGATCATGTCCAAGGGCAAGATCGTCCGCTCCCGCGTCGACGAGGTGAACCTGACCGGACGCACGACCCAGGGCGTGACCTTCGCAAAGCCGGACAAGGGCGACCGGATCATCGCCGTCGCGCGGAACGTCGAGCGTCGCGCGGAGGCCGAGTCGGTTAGCGTGGAACAACCGGCCGACGACGTCGAGCCGGCCGAGGAGGCGACGGCGAGCACGCCGGAGCAGGACGAGACCGGGGACGGGAACATCTGA	MTDETPGPDMTDGIDGGSPEALAAVAHGRIEQVDLQLEMQRSYLDYAMSVIVGRALPDVRDGLKPVHRRVLYAMYDGGYRPDRSFSKCSRVVGDVMGKYHPHGDTAIYDALVRLVQDWSMRYPLVAGQGNFGSPGNDPAAAPRYTECKMDPLALEMVRDIEKDTVDFQDNYDGRTQEPTVLPSRIPNLLVNGSAGIAVGMATNIPPHNLREVAAGVQWHLEHPDASKEELLAALMQRIKGPDFPTGAQILGTSGIEEAYRTGRGSITMRAVVNVEEIQNRICLVITELPYQVNPDNLATKIADLVNDGRIAGIADIRDETSGRTGQRLVIVLKRDAVAKVVLNNLYKHTSLQENFSANMLALVDDVPRTLSLDAFVRHWTTHQIEVVRRRTEYLLREAQDKIHIYEGYLKALDALDEVIALIRRSPDADQARTGLMDLLDIDEQQASAILALQLRRLAALERQQILEEHAKLQAQIIDYQDILARPERQRSIVGEELDAVVERWGDERRTHILPFDGDMSVEDLIPEEDVVVTITRGGYAKRTRTDSYRAQRRGGKGIRGAQLREDDIVDHFFVTTTHHWLLFFTDAGRVYRAKGYEIPEGARDAKGQHVANLLAFQPGEQIAQVLALRDYDDAEYLVLATRRGLVKKTRLGDYDSPRSGGLIAINLRTDDDGTPDELVSARLVDADDELILVSRKGQSIRFAADDDTLRPMGRATSGVTGMKFRADDELLVADVVEPETDLFVVTEGGFAKRTRIDEYRLQGRNGYGIKVANLVEARGDLVGALVTEPDTEVLVIMSKGKIVRSRVDEVNLTGRTTQGVTFAKPDKGDRIIAVARNVERRAEAESVSVEQPADDVEPAEEATASTPEQDETGDGNI	PGPT0027705_992	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621	NA	NA
AK001_00876	990			hypothetical protein	ATGGCGAGCCAGAAGACGACGTCGCAGGCGGGCACTCCCCTGTCCGCGCCTGCTGACAGCACCCAGCCCATCACGCCGGTGTCCGAGACGACGGACCGGTCCACCGGGTCCGAGCGGCCCGCTCCGGCGCAGCCTGCACCGGCGCAGCCCGCATCCGCCGAGCCCGAGCCCCGGGACGAGAGCGCCGCCGAGGCGCCCACGAACGGTGCGGCGTGGTCCTCCTCCGCCGAGGCTTCGTCCGACGCTGCCTCGTCCGACGGTGACGCCGTCGCGCCCTCGGACGAGGAATCGCCGAAGCACGGGACCGAGACCTCGGGCGCGGCCAAGAACGGTGCCGTGAAGGCGGCCGCGGCCGCGCTGGCCGCCGCCCGCACCGCCGCGAAGAAGGTGCAGTCCGCCGGGTCGGCCGCCTCCGGTGCCACCCCGGGCGGCACGCAGCCGGGCGGCTCGACGGCCGGCACGAGCTCGTCCGCGCCGCCGCCGCCCCCGGACGCGACGTCGTCGGGGCCGCGCCCGGAGATGCACTACTCGGCCGGCGGCGTGCACGGCAGCGCCCAGCAGGTGCCGCTCTCCGGCGACGGTTCGCCCCAGACGGGTGCGCAGCCGGCCGTCGCGGCGGAGGGCCTCGGCAGCCCGCGCCGCGTGCGGCTGTCCGTGTCGCGCATCGACCCGTGGTCGATCATGAAGCTGGCGTTCCTGCTCTCGGTGGCGATCGGGATCATGACCGTGGTCGCGACGGCCGTCGTCTGGTACTCGCTCAACTCCGTCGGCACCTTCGCGACCGTGCAGGACTTCCTCATCAGCACGCTGGGCCCGCAGGCGGTCGACATCACGCAGATCGTGCAGCTCGAGCGCACCGTCTCCCTGGCGACGCTGATCGCCCTGGTCAACGTGGTGCTGTTCACGGCCATCGCGACCATCATGGCGATGCTGTACAACATCACCGCCGCGCTCGTCGGCGGTGTGCACCTGACCCTGACGGACGAGTGA	MASQKTTSQAGTPLSAPADSTQPITPVSETTDRSTGSERPAPAQPAPAQPASAEPEPRDESAAEAPTNGAAWSSSAEASSDAASSDGDAVAPSDEESPKHGTETSGAAKNGAVKAAAAALAAARTAAKKVQSAGSAASGATPGGTQPGGSTAGTSSSAPPPPPDATSSGPRPEMHYSAGGVHGSAQQVPLSGDGSPQTGAQPAVAAEGLGSPRRVRLSVSRIDPWSIMKLAFLLSVAIGIMTVVATAVVWYSLNSVGTFATVQDFLISTLGPQAVDITQIVQLERTVSLATLIALVNVVLFTAIATIMAMLYNITAALVGGVHLTLTDE				NA	NA	NA	NA	NA
AK001_00878	123			hypothetical protein	ATGTTGAAGAAGATCATCGTCGCCGTGCTGGCCGCGGTCGCCGGCTATCTGGTCTGGCGCCGCCTCTCCGAGGACGCCGCGGACCGTGACCTGTGGACCGAGGTCACCGACTCACTCGACTGA	MLKKIIVAVLAAVAGYLVWRRLSEDAADRDLWTEVTDSLD				NA	NA	NA	NA	NA
AK001_00880	1287	xerC_2		Tyrosine recombinase XerC	ATGACAGGGGCCGCTCGACGCCGCGGCACGCGCGGTGACGGCTCCGTCTATTGGGACGTGGGAAAGCAACGCTGGGTGGCCGCCAAGATCGTCGGGTACGACGGACAAGGTCGGCGGATTCGCAAGATCGGCACAGGCAAGTCGGAGACCGCGGCGCGCAGATCATTGCGCGAACAGGTCAAGGCTTACGAGGCTGGTCTCGTCGGCGGTTGGGAGACCATCACCGTCTCCCGCGCCGTCGAGCAGTGGCTCGAAGCCGACCGCTCGACGGTCAGCCCCAAGACCCGCAAGGGGAACGAGGAGCACTTCGCCAACCACATCAAGCCCCACCTCGGTGGCCGCAAGGTCAAGGACCTACGCGTCGAGGAGGTCGACCGGTGGCTGCGCACCCTTGCACCGAACCTGTCGACGTCGACCCTCAAACAGATCCGTTCCGTCCTCCGGCGTTCGATCACACTGGCGATGAAGCGCGGCTACGCAGACCGCAACGTCGTCGAGCTGTCGACGCTCCCCCAGGGACGGGTCGGCCGCCCGTCGAAATCTCTGACGTTCGAGCAGGCACAGGACGTCCTCGGCAAGACGCGCTCCCACCACATGTACCCGTACATCGCGGTGTCTCTGCTCACCGGCCTGCGACCTGAGGAAGTTCGCGCTCTGACCTGGGACCACGTCCACGTCGAGTTCAACGACCAAGGGAGGGAAGACCAGGCGTACATCGAGGTCTGGCGCGCCGACCGTTTCGGCGGCGACACCAAGACCGTCAAGTCCCGGCGCACCCTGGCGATCTCCACCGCCGTCGTCGAAGCCCTCGCCATTCAACGCGACTACCTCGCCGACGCGCGCGATCGAGCCGGAGCCGACTGGCGGGAACACAACCTCGTCTTCCCATCCCAGGTCGGGAGCATCCAGGACCGGCACAACATCCTGCGCATGTTCCGCGACGCCCTGAAACTCGTCCCCGGCATTACCCCTGGCGAGTGGACCACCCGCGAACTTCGGCACTCGTTCGTCTCGATCCTGTCGATGCACGGCATGCCCATCGAAGAGATCTCCCGCCTCATGGGTCACGCGACGATCACCGTCACCGAGCTCGTCTACCGCAAGGAGCTCCGGCCCGTCCTCCAGGGCGGAGCAAGGCTCATGGACAACGTCTTCCAGACGGCCCGTCCCGACGCGTCGACACCCACCGACACGCGACGACGCGGGGCAGTTCTGCCACCCGATAAGCCACCAGTTAAGCCACCGGAGGCACCTCCGGACAAAGAAGATGACCCGGGCTCCGAGTAA	MTGAARRRGTRGDGSVYWDVGKQRWVAAKIVGYDGQGRRIRKIGTGKSETAARRSLREQVKAYEAGLVGGWETITVSRAVEQWLEADRSTVSPKTRKGNEEHFANHIKPHLGGRKVKDLRVEEVDRWLRTLAPNLSTSTLKQIRSVLRRSITLAMKRGYADRNVVELSTLPQGRVGRPSKSLTFEQAQDVLGKTRSHHMYPYIAVSLLTGLRPEEVRALTWDHVHVEFNDQGREDQAYIEVWRADRFGGDTKTVKSRRTLAISTAVVEALAIQRDYLADARDRAGADWREHNLVFPSQVGSIQDRHNILRMFRDALKLVPGITPGEWTTRELRHSFVSILSMHGMPIEEISRLMGHATITVTELVYRKELRPVLQGGARLMDNVFQTARPDASTPTDTRRRGAVLPPDKPPVKPPEAPPDKEDDPGSE				NA	NA	NA	NA	NA
AK001_00881	207			hypothetical protein	ATGACCGCCAAGTCCGAGACGACGCCCGTCGTCGCGATCGCCTACACCGTCGCCGAAGCCGCACAGGCCCTGCGAATCTCCCGCGACGGCATCTACGACCTCATCCGCTCCGGACGACTCCGCACCGTCAAGCTCGGCACCCGGCGCCTCGTCCCCGTCGCCGAGCTCCACGCCTACATCGAGGCCGAGGTCGGGAGGGTGTCATGA	MTAKSETTPVVAIAYTVAEAAQALRISRDGIYDLIRSGRLRTVKLGTRRLVPVAELHAYIEAEVGRVS				NA	NA	NA	NA	NA
AK001_00882	234			hypothetical protein	ATGAGGACCCAGACCAACAGGGGGTTGCCGTTCGCGCGCCGTTGCGACTCGTGCGACGCCGCCGCCGTCGGGACCATCACCTTCATCGCCGTTGACCGCGAGCACCGATACGCCGTCTGTCTCGACTGCGCTATCGACGCGCTCACGCACCCCGCCAGGCAGGTCCGTCTGCGCTTCACCGTCGCCCGGACCGGCGCCGAGGTCACCCGAGGCGTGAGCGGCGGTGCGGCATGA	MRTQTNRGLPFARRCDSCDAAAVGTITFIAVDREHRYAVCLDCAIDALTHPARQVRLRFTVARTGAEVTRGVSGGAA				NA	NA	NA	NA	NA
AK001_00883	267			hypothetical protein	ATGAGCACGCCCACCTTCGGTACGGCAGACGTCCTAGCAGCGCTGGAGCGCATGACCAGCGATCAGCGCGCCGAGTGGGTCGCACTGGTCAAGAGCGCTTCGGTGAACCTGTCGAACGCCGCGTACGCATTCGCTGGCAACGTCCCCGAGGCGACGCCCGATCCCGACACGTGGGCGGCGGACTCCTTCTGGCTCGGCACCTACCAGCTCGGCCGCGCCGTCGGGCAGACCACGCCGGACCCGAACACCGGGAGGGTAGAGCCGTGA	MSTPTFGTADVLAALERMTSDQRAEWVALVKSASVNLSNAAYAFAGNVPEATPDPDTWAADSFWLGTYQLGRAVGQTTPDPNTGRVEP				NA	NA	NA	NA	NA
AK001_00884	1149			hypothetical protein	GTGACGACCCCTGCTGCACTGCGACGCGACGGGGCCGAGATCCTCGACGACGTCCGCGACGCCTTGGCCCGCTACTGCATCCTCCCGGGCCGCCACGCCTACACCGCGGTCACGCTGTTCTGCGCGTATACCCATGCGGCGGCGGTGTTCGACTTCGCCCCACGCCTGGTGCTGACGAGTCCGGAGAAGCGCAGCGGCAAGACGCGCTGCTTGGAGATCATTCACCAGCTGGCCCACAAGCCGCTGTCGACGGCGAACGCCTCGACCGCCGCGCTGTACCGCTCCCTCGCCGAGCCGCGCACCGTTCTGCTCGACGAGGCCGACACGATCTTCGGCAACCGGCTCAAGGCCGAGCAGCACGACGACCTGCGCGGCCTGCTCAACGCCGGGTTCCAACGCGGCACCCCCGTCGTGCGCTGGGACGCGTCCAAGCGCGAGGTCGAACAGTTGCACACCTTCGCCCCCGTCGTGCTGGCCGCCATCGGCCGGCTGCCCGACACCATCACCGATCGGGCCATCAATATCGCGATGCGGCGGCGCAAGCCCGCCGAGAGGGTCGAGCCGTTCCGCATCTCTCGCGACGCCGAGCCGCTGCGGTCACTGGCGTACGAGCTGTGCGTGTGGATCGAGGACAACTCCGCGGCCCTCAAGCGGGCGCGACCCGGCATGCCCGTCGTCGACCGTGCCGCCGACCTGTGGGAGCCGCTGGTCGCGGTGGCAGACCTCGCAGCCGGGCCCTGGCCCACTGCTGCCCGGGCGGCCGCCGTCGCGCTCACCGAGGACGCCGCCCACGCCGACGCCGACCACTCTGCCGCCCATGAACTGCTCGCCAACGCCCGCGACGTCCTGGCCACGACGCGTGGAGAGTTCATCCCCACCGAGACCCTCATCGCCGCACTGATCGCCCTGCCCGAGTCCCGGTGGGCCGACGAGGGACTGACCGGCCGGCGCCTGGCGATGATGCTCAAGGGCTACGGCGTGCCCGTGGGCCGTAACCCCTCGACGTCCAAGCGCGAGCGCGGGTACCGACGCGCCGACTTCACCGACGCGTTCGAGCGCTACCTCAAACCCGCCGAGAACCCCGCCGAGCACAGCGTTCCGGGTACCCATGCGTCCGAACCCGTCCGATCCGGCCCGCGCCCCTCGTGA	MTTPAALRRDGAEILDDVRDALARYCILPGRHAYTAVTLFCAYTHAAAVFDFAPRLVLTSPEKRSGKTRCLEIIHQLAHKPLSTANASTAALYRSLAEPRTVLLDEADTIFGNRLKAEQHDDLRGLLNAGFQRGTPVVRWDASKREVEQLHTFAPVVLAAIGRLPDTITDRAINIAMRRRKPAERVEPFRISRDAEPLRSLAYELCVWIEDNSAALKRARPGMPVVDRAADLWEPLVAVADLAAGPWPTAARAAAVALTEDAAHADADHSAAHELLANARDVLATTRGEFIPTETLIAALIALPESRWADEGLTGRRLAMMLKGYGVPVGRNPSTSKRERGYRRADFTDAFERYLKPAENPAEHSVPGTHASEPVRSGPRPS				NA	NA	NA	NA	NA
AK001_00885	180			hypothetical protein	ATGGCCTCTTACGTCTGCTCCACCTGCGATGTCGACTTCGGCTACCCGCAGGGATTGTCTATCCATCAGGATCTCGGCTGTGATTGGGGCGACGACGATACAGGTGGTGCCAAGTACTGCTGCGGCATCCTCTACGAGGACGGCGAGTCGACCTGCATGAGCTGCGGTGAGGCGCTGTAA	MASYVCSTCDVDFGYPQGLSIHQDLGCDWGDDDTGGAKYCCGILYEDGESTCMSCGEAL				NA	NA	NA	NA	NA
AK001_00886	186			hypothetical protein	GTGGCAAGGAACACCGGCAAGGGCAAGCGGATCGGGCTTGTCAAGGATCGCTACCAGAAGAGGAACTCTCGAACCGGGCTCTGGGACAAGTACAACAAGCGCGGCGACTACATCGGCACTAAGAAGACCGGTGGACCGTTCAAGAGCATCGTCAAACTCATCGGTCGTAACCCGCGCCGCCCCTAA	MARNTGKGKRIGLVKDRYQKRNSRTGLWDKYNKRGDYIGTKKTGGPFKSIVKLIGRNPRRP				NA	NA	NA	NA	NA
AK001_00887	870			hypothetical protein	ATGACGACACTGACCCCAGCCCGGCCGACCGACGCAGCCGCTTCCTCGGCGCGCGATGACGAGATCGGCGCCAGTGTGCTCGCGCTGGCTGCCGACGTCGAAGGCTATGTGCACCGGCGTCTTCGCACCGCCGGAACCACCGCCGTCGTGCGCGATGAGCTCGGCGACCTCGCCAGTGCCACGAGCGAGGTCGGCGGCGACGTCGTCGAGGTCCTGTGGACCAAGCGCGACCAGTGGACCGCGCTGTGCGGCGAGGACCGGCGGCGCTGGACGTTCGCCGTCGCCCGCAACCTCGTCGCCCGGCGCGTGAAAAAGGCCTACGTAACCCACGTGCACAGGAGCGAGTTCGTCCCGCTTCTGGACGGCACCAGCGAACCGGCTGCTGTCGACCCGCGACTGGCCGCGCTCGCCGAACTACGCCTGCACCTCGAGTCGCGGCTCGGCGACGCGGCGTGGGCGACGATCGCTGCGGCCATCGGTCGCAACCACTCAATGCACCTGCGCGCCGACGTCGCCGACGCGCTGCAGGCAGTGGCCGCAGGGCGCGTGCCGTCGACCCGAGCCATCGTGCGTCGCTGCCGCGTCGACTGGCGCCCCTGGGCCCTGGCACGCCTCGACGCAGGCCAATCGCTGCGTCCAACCGACGGCGTCGACCTCGGCCTGTTCGCGACCCTCACCGAAGCGACCTCGGTCCTGACGGGTTGGTGGGTCGAGCAGCGCACCGCGTTCAACCAACCCATCGACGCCGCCACGCTGGTCGCTTCTGGTCTGGTCGAGCATCTCGGTCGAACGGAGCGGGCCCGCCGCGAGGCTGCCTCCGACGTGCTCGTGTGGATCTCGCACACTGGCCACGCGACCGAAGCAGCGTAG	MTTLTPARPTDAAASSARDDEIGASVLALAADVEGYVHRRLRTAGTTAVVRDELGDLASATSEVGGDVVEVLWTKRDQWTALCGEDRRRWTFAVARNLVARRVKKAYVTHVHRSEFVPLLDGTSEPAAVDPRLAALAELRLHLESRLGDAAWATIAAAIGRNHSMHLRADVADALQAVAAGRVPSTRAIVRRCRVDWRPWALARLDAGQSLRPTDGVDLGLFATLTEATSVLTGWWVEQRTAFNQPIDAATLVASGLVEHLGRTERARREAASDVLVWISHTGHATEAA				NA	NA	NA	NA	NA
AK001_00888	768			hypothetical protein	GTGAGCGGGCGCCGACCCCTAGCGGGTGCGTTGTGGCCGGGCGTGCTGCTGTGCACCGTCGCGGCGGTCATGGCGTTCACGCTGTCGTTCAATGCACTGCGGGCCGTCGGTATCGCGTCGGGCATCACCCCGTGGCTGGCGTGGATGTTCCCGCTGACGATCGACACCGTCATTCTGTTCGGCACGTGGGCGGCGTTCCGGTTCCGCGCCCGCGGCGCAGCCGGCACCTGGTACGCCTGGGTGCTGCTGGTCGTGTTCGCGGCCGCCTCGTGGACCGGGAACTTCTTACACGCTGAGCCGGTTCCCGTCGGACACATGGAGCTCTCGCGGCCGGTCGCATCGTTGTTCTCCTCCGTGCCGTCACTGTCGCTGCTGCTGACTACTCACATGCTCGTCCTGATCGCCGTACGGCGCGGCGAAGAACGCGACCACGAACCCACCGCCGAACCGGCCGCTGTCGCCGTCTCCGCGCAGACCAGGGATCCGAACGTTCCCGCGCGGGCGCAGATCGCCGCCCCCGAAGCCCGTGACAGGTCCCCGCGCGCCCTCGTCGAGCCAGTCGCGGAGCCGCCGGACACCGACGTCGAACCGGCTGGCGGAAGGACCGGCGGCTTCGCCGCGTGGGTGTCAGCCCAGGAACAGGCGGGGGTCCGCCCGACCGGACGGATGGTCGTCGAAGCGGGGTTCGCCGGCTCCGAGGCGACCGGGCGGCGATGGCTACGAAACCTGCGATCGCAGATGGCACACCGTCAGGAGGTTGAGACATGA	MSGRRPLAGALWPGVLLCTVAAVMAFTLSFNALRAVGIASGITPWLAWMFPLTIDTVILFGTWAAFRFRARGAAGTWYAWVLLVVFAAASWTGNFLHAEPVPVGHMELSRPVASLFSSVPSLSLLLTTHMLVLIAVRRGEERDHEPTAEPAAVAVSAQTRDPNVPARAQIAAPEARDRSPRALVEPVAEPPDTDVEPAGGRTGGFAAWVSAQEQAGVRPTGRMVVEAGFAGSEATGRRWLRNLRSQMAHRQEVET				NA	NA	NA	NA	NA
AK001_00889	450			hypothetical protein	ATGGCCTCGACCGAACTGCGAGAGCAGATCCACGCGCTGCTCGCCGCCGGGCTGAAACAGCGGCAGATCGCTGTCTACTTGGGGATCGGGCAGGCGACCGTCTCGGATCACAAGCGCGCACTGGTCGCGGCCGGGCACCTGCCGGCCCGCACGCCTGTCGGGGCGCGCGGCCCGGGCGGCCCGGTCGTCGACCTGGTGTCATCAGATCCGACGTCCGGACGGTCCAGGGTCGAGATCCTCTGCGAGCATGCCGAGCTGAAGGCGTCGACGCTGCGCTCCGCGGCGCGCACGTTCGCCGAGCACATCGTCGGCGCCGACGAGTGGGTCACCGACAGCGCCTACCGGGAGCAGGTGCGTGGCATCGCGGCGGATACCGTGGGTGAGGCCATCGCCGACCTCGATCGGATCGCCGTCGACCTCGGCCTTCGAGCTGCAGGGTCGGCGCGGTGA	MASTELREQIHALLAAGLKQRQIAVYLGIGQATVSDHKRALVAAGHLPARTPVGARGPGGPVVDLVSSDPTSGRSRVEILCEHAELKASTLRSAARTFAEHIVGADEWVTDSAYREQVRGIAADTVGEAIADLDRIAVDLGLRAAGSAR				NA	NA	NA	NA	NA
AK001_00890	525			hypothetical protein	ATGTGCCGCCTCGCAGAAACGCTGCTCGGGTCCGATCAGGTCGTCGGCGCATTCGTTGTGACGATGGTGTGGGGCCACGGCGACACCGGGTACGGCCCATTCCGCACACGCCAGGCCCTCACCGGCCAGGAGAAACCGCAAGGTTTCGCACTCAGCACAGGAGTGGCGGAGCGGCTGACCGAGTCGGTGGCCATCGCGCGTCGCGATGGGCCCGTGGAGGGCTTTCGCTACTTGGCCAACGACTCACGCGGGCGGATCAAGCACTTGGGTCCGGCGTTCTTCACGAAGTGGCTGTACGCCGCCACGGCACGCGGCGTGCACGACCGTGAAGGGGCCGCACCGGTGCTAGATGATCGGGTGCTGACCTGGGTCAACTCCCACACCGACTTGGCACTACGGCCGTGGCGAACCGACGACTACGCCGCCTACATTGAGGCGCTGACGGCATGGGGAGCGAACGCACAACCGTCACGGACGGCCGTCGGGGTCGAGGAAGCGATCTTCGCAGCGACCGTCGAGGAGTGA	MCRLAETLLGSDQVVGAFVVTMVWGHGDTGYGPFRTRQALTGQEKPQGFALSTGVAERLTESVAIARRDGPVEGFRYLANDSRGRIKHLGPAFFTKWLYAATARGVHDREGAAPVLDDRVLTWVNSHTDLALRPWRTDDYAAYIEALTAWGANAQPSRTAVGVEEAIFAATVEE				NA	NA	NA	NA	NA
AK001_00891	567			hypothetical protein	GTGACTGCCGACTGGATCAGCGCCCTGGCGACGTTCGCCGCCGTCGTCCTCGCTATGCTGCTTGCGCTTCGTGACGGGATGCAGCAACGCCGTGCGCGCACGCTGGCGGCAGCCGCGGATCGAGCGCGCACACTCGGCGAACAACAGCTCGCATGGGAGCGCCGGCGCGCCCAAGCCCAAGGTGTCATCGGCTGGTTTCAGTACAGCAGCAACTCAGGGCGTGCCCTGGAGGCCGGGCCGACGAAGTACCAGAAGGTCGTCCCAAGAGTGCTCGTGGCCAACTACTCGTCACACCCCGTCTTCGACGTGCGTGTAGAGCTCTACAGCACCGACCCTGGGGTCAGCGAGTTGCTCGACGTCACCAGGTGGCAGGTGCTCGGCCCGACACCGGACCGCCCGATGAGGATCAACCCTGAGTTCTTCCACGACAACCAGGACGGCGTCCTCGTCACCGTGAAGTTCCGCGACCTGGCGGGAAACTACTGGCTTCGCAGGCAGGATGCGACGCTCGAGCGGCTTGACACGCACTGGAGACCAATGGCGGATCCGATTCCGACGTCTGGGTGA	MTADWISALATFAAVVLAMLLALRDGMQQRRARTLAAAADRARTLGEQQLAWERRRAQAQGVIGWFQYSSNSGRALEAGPTKYQKVVPRVLVANYSSHPVFDVRVELYSTDPGVSELLDVTRWQVLGPTPDRPMRINPEFFHDNQDGVLVTVKFRDLAGNYWLRRQDATLERLDTHWRPMADPIPTSG				NA	NA	NA	NA	NA
AK001_00892	303			hypothetical protein	GTGACACTCAGTCAGGATGCGACCGAGCGCATCCGTGAGCTCGAGGCGGGCGAGGCCGCGATCGCCCGACAGCTCGCGGATCTCGAGGAGATCGCCGTCGGGCACGAGCAGAACGCGCAGCAGCTGGCCCGGTGGCTGTGGCACCTGGCCGCTGTCTACGGCGATCGCCTCGTTGTCGACGAGCGCGTCCAGACCCTGCTGCGCCACTACCTGCCCGAGCTCGCCGACCCCACCCGCGACCACCAGCACGCCAACGACGACGACGGAGCTCCGTCCGCGATACCACGCTCCGAGGGCTGGTGA	MTLSQDATERIRELEAGEAAIARQLADLEEIAVGHEQNAQQLARWLWHLAAVYGDRLVVDERVQTLLRHYLPELADPTRDHQHANDDDGAPSAIPRSEGW				NA	NA	NA	NA	NA
AK001_00893	5079	dnaG_2		DNA primase	ATGAACCTGACGAAGATCACCGCTGTCGCCGGCGTCGCCTACCTGCTCAAGTCCGTCGTCAACCGTGACGCCAAGCCCGCCGCGTCGGGCGCCATCGGGTACTACACGCACCCTGGCACGCCCGCGGGCATCTGGGTCGGCTCGGCCGTGTCCGGACTGGGACTCGCCGTCGGCGACGAGGCGACCCGCGAACAGGCCGAGCGGTTGTTCTCCCGGTTCACCCACCCGGTGACCGGGACACCGTTGGGCACCCCGCCCCGTCAGCTCCACGAGGCCCGCGCCCAGGAGTCACCCGAACAGGTCTCGGGGTTCGACCTGACGTTCAGCATCCCCAAGTCGGTGAGCGTCATCTGGGGCGTCGCCGACCGCGAAACGCAGGCGGCGATCATGACCGCTCACCGCGACGCGATCACCCGCACGCTCGACTGGTTCGAGACCGAGGTCGCGTCCACCCGATCGGGCCGCGCGGGCGTCGCTGCGGCGAGCGTGCGCGGGGTGATCGCGATCGCCTACGACCACTTCGAGACCCGCGACGGCGACCCGCACCTGCACACGCACGTCGCGCTCGCCAACCGTGTGCGCCGCTCGTTCGACGGCAAGTGGCTCACCCTCGACGGTCGCACCATCTACCGGTCGGCGGTCGCGATGAGCGAGCTCCACCAGAACGCGCTGCTCGACCTGCTCCATGAACGCTTGGGCATGTCGTTCGTCGAGCGCGAGCGGCCCGATGCGCGCTCAGCCCGCTCGGTCGTGGCCGACGTGGCCGGGTTCCCGCCCGACCTCGTCGACCGGTTCTCCACCCGCCGGTTCGCCCTACGGCAGCGCCGCGACACACTCGAGCGCCAGTGGCTGTCCGACCACCCCGACCTCGACACCGTCCCCTCGCCGGTGAAGGCGGCCATCGACGCGCAGGCCTGGCGCGAGACACGCAAACCGAAAGACGCCATCGCCGCACCCCTGTCCGCGCTCACGCGCCGATGGCGCGACCAGCTGCGCGATCTCGGCCACGACGCCCGCGACCTGATCGCCCGCGTGCTCGGCCACGAACGCGCACCTGCCGCCGCCCGGCAGATCCGCGGCGACGTCGTCGAGCAGCTCGCCCGCCTGGCGATCGCGCACCACCTCACCGACAACCCGGGCGTCGACCGCGAATACCTGGCCCGTGTCACCGACGTCGACGTCGAGACCTGGCTGGCGGATCACGACGACGGCGCCACCCGGGACGTGCTCGCCCATGCCGTCCACGACACCCTCGCGCGCCGTCGGGCGACGTGGTCGCGGTTCAACGCCCGCGCTGAGGTCGAACGCCTCACCCGCCTCGTCCGCTTCCGCCCCGACGAACGCCAACAGGTGATCGACGACATCACCGACGCCGCGATCGGGCTGTGCGTCCCGATCACTCCGCACCGCTACGAACTACCTGCGGGCGCCGCCGCCGACCCGCGCCTGGCCTACGGCGGCCACACGGTGTTCGACAACCCCAACCTGCGGCTGTTCACCGCTCAAGAGGTCCTCGACGCCGAAGCATTCCTGGCTTCCCTCACCGGCCGCGACGGCGCCCGCGTGCCGCCCGACGGCATCGAGACCGCGCTCGCATCCTGGCAGGGGCAAGCCTTGGCCGGCGACCAGGCCGCCGCCGTCCGGCACCTGGCCGGCGACCGGCACACGCTGACTGCGTTGGTCGGCCCGGCCGGTTCGGGCAAGACCACGACGATGCGCGCACTCCACGATGTCTGGACGGCCGCCTACGGCCCCGGATCGGTGCTGGGCGTCGCCCCGTCCGCGCGCGCCGCCCATGAACTGTCGGCCTCGGTCGGGATCGACGCCCACACCTTGGCCATGCTGCTCACCCGCAACTCCCCCGACGCGCGTGCCCGGCGCACCGCACGCCGCGATGACTTCACCGCAGCGCTCAGCTCCGCCCACCCGCGCCGTCGTGCAGCGGCAGCACGCGGCCTTGCCGCCCTGGACGCCGAGGAGGCCTCGTTCACGCTGCGGCCCGGCACCCTCGTCGTCGTCGACGAGGCCTCAATGTGCTCCACGCACGACCTCGCCGCGCTCGGGCGCCTGGCCGTAGCAGGCGGGGCGAAGGTCGCACTGGTCGGCGACCCGTCCCAGCTCGACTCCATCGACGCTGGCGGGATCCTCGGCTGGCTCGACCGCCAAGGCAAAGCCGCCCACCTGTCCTCCCTGTTCCGGTTCGACGCCCCGTGGGAGGCCGCCGCTTCACTGCGGTTGCGCGAAGGCGACGCCACCGTCCTGTTCCCCACCGACGGCGACGGCGGTCCGCCGTCGTACGCCGACGCCGGCCGCATCCACGACGGGGAATCCACCGCCATGCTCGACGCCGCGTACGACGCCGTGCGCACCGCCCACCGCGCCGGGCGCACCGCCGTCCTGGTCGCTGCCACCAACGACCACGTCGCCGATCTGAACCTGCGCACCACCCTGGAGCGCCGCCAGGCCGGCGAGGTCGACACCACCCACGTCGTCACGCTCCGAGCCGGGCAGGACGCCGGGGTCGGCGACCTGCTCTACGCCCGCCTCAACGACTACCGCACCCTGCGCGACGACACGGGCGTCGCCATCCACAACGGAGACCTGCTGCGCATCACCGCCATCGACGACCACGGCTCCGCAACCTGCCAGCGCGTCGACACCGGAGCACGCATCACCCTCCCGCCCGGATACCTCGCCCGCCACTGCGACCTCGGATACGCCCTGACCGCCCACCGCGCCCAGGGCATCACCGTCGACGAAGCCCACCTGTTCGTCCCCTACGGCGCCCGGATGACCCGCGAGCTGCTCTACGTCGCCATGACCCGCGGCCGGGCCAACAACACCGCGTGGGTCGGGCTGCCCGACGCCGACGACCTCGCCCACGAGAACCGCTCCGCATTCGAGACCGGCGACGACGGCGTCCCGCGCCTCGCGATGCCGACCGGCGCGTCGATCCTCGCCCGAGCGCTGGCCGCCGTCGGCGCCGAACAGACCGCCCACGAGCAGCGAGACGCCGAAGTCGCGGCGCACAGCAACCTCGGACGCCTGGTCGCTGAGCATGAGGCCCTCGCCTCGCACGCCGTAGCACCCCTTATGGCCGCCCACCTCGCCCGACTCCACCCCGAGATCGACTTCACCACGTCCCCAGCCTGGGACGCCCTCGTGTCCACCTTCCGGCACGCCTACGCCGTCAACCCCGACCGTGCCTTGCGCCTGCTGCGCATCCCACCCAGCTGCGGCGCCCGCACGGCGTTCCAGGGCATCCTCGATCTGTGGGACGCGGGCACCGAGGAAGACCCACGCGACACGAGCGGCGACCCTGCGGGACGCGTCGACCCGTCCGCAATCGTGCAGTGGCGTCTGGCAGGCGCCCTCGTCGACCCCGCCCCGGTCGCCGCCGACGACCCCGCCTACGTCCACGGCCTCGTCGTGAGAATCCAGACCGACGACGCCCCGCTGGCGGACCTCGCCAGCCAGTGCGAAGCGTTGATCTCCGCGCGCGTCGCCGACCTCGCGCGCCAACTCGACGACGACCCACCACCCTGGATGCTCGACGCCCCGCCAGCCCCCGACCCCGACGCCGCACCGGAGCTGCACGACGCATGGCGTCAGGCGATGCTCGCCGTCGCGATCTACCGCGACACCTGGCAGGTCACCGCACCCACACCGCTCGGCCCCGTCCCCGTCGGTGACCGACGCCGGCTGCGGCACTACGAGCAGACCCACGACCTGCTCGCCCACTGGCACGACGGGGGCCCCCACCCCGGACCCGACCTGTCCCGGCCCATCGAGACCGACCCCTACGCCGACATCGACTTCGAGGCCATCGACCCCGGCGACCACGACCTCGAGGTCCCCCAGGGCGCACGGTTCATCGACGACGCCGGCGTGCCGCCGGCGGACCCCGAGACCTGGACACACGGCGCCGACCACTCCCCCACGGCGCCATCATGGCGCGACGAGGTCCGCGAACCCCGCCCATCCGACCCGGCAGCGAGCGACCGGATCACCGCAACCAACGCCGCCGCCTGGGACTACTGGCAGACCTGCGCCGCCACCCCGTCATCCTGGGTACCCGCCTACCTCACCGATCGGGGCGTGGACGACGTCGTCCCCCACGCGCACGCCCCCGCAGGCTGGACCACGACGATCGACCACCTACGCAGCACCGGCTTCAGCGACGACGACCTCCTCGACGCCGGACTCGCGACCCGCGCACGCACAGGCCGCCTCATCGACCGGTTCCGCGACCGCCTGCCCATGCGCGTCTACGACGACGCCGGGCACATCGCCGGGTTCACCGCCCGCGCCAACCCCGCCGAGGCCGCCATCCGTCCGGACACCCCGAAATACCTCAGCACCCCCGCCACCGCGGCGTACGACAAGAGCCGCCTGCTCTACGGCCTCACGCCCGAGGCCCGGCAGCGCCTGGTCGACGGCGCCACCCCCGTCCTCGTCGAAGGCCCCATGGACGCCGCCGCCATCGACGCCATCGGCCACGACGACCTCGTCGCACTGGCCGCCTGCGGCACGGCCGTCACCGCGAACCACCTTGCCGCCATCGCCCGCGACGCCGGGAGCCTCGACGGTCTGGTTGTCGCCTTCGACGCCGACGCCGCCGGACAAGCCGCGGCCGCCCGCTTGTGGTCGCTGCTCGGGCCCCGGGAGGCGGGACCTGTACGCCAAGCGACCTGGTCAGGAGCGAAGGACCCGGGCGAGCTTGTCCAGTCTGGCAAGACTGAAACTCTTGCCCGATCTCTTGCCCACCCGCGCCCGCTCGCCGGCGCCGTGGTCGACCACCTCGCGGCGTCAGCCATAGCACCGGAAACCATCGAGGGGCGCATCTTCCTGCTGCGCGCGGTGGCGGCCGAGGTCGCCCCCACGCGCAATACCGCGGCGATCACGGCGGCCAAGGACGCCCTCGACGACCGCTTCGGCCCGGACAGTCCCATCGACCGCACGATCATCGACGACGAGTTCGCCGACGCGAACCAGAGGACCGGCCGGATGGACGGCCCCGCTCTCGGAGACCCACTGCCCGGCGTCGATCTCACGGACCAGGCGGCCACATTGACATAG	MNLTKITAVAGVAYLLKSVVNRDAKPAASGAIGYYTHPGTPAGIWVGSAVSGLGLAVGDEATREQAERLFSRFTHPVTGTPLGTPPRQLHEARAQESPEQVSGFDLTFSIPKSVSVIWGVADRETQAAIMTAHRDAITRTLDWFETEVASTRSGRAGVAAASVRGVIAIAYDHFETRDGDPHLHTHVALANRVRRSFDGKWLTLDGRTIYRSAVAMSELHQNALLDLLHERLGMSFVERERPDARSARSVVADVAGFPPDLVDRFSTRRFALRQRRDTLERQWLSDHPDLDTVPSPVKAAIDAQAWRETRKPKDAIAAPLSALTRRWRDQLRDLGHDARDLIARVLGHERAPAAARQIRGDVVEQLARLAIAHHLTDNPGVDREYLARVTDVDVETWLADHDDGATRDVLAHAVHDTLARRRATWSRFNARAEVERLTRLVRFRPDERQQVIDDITDAAIGLCVPITPHRYELPAGAAADPRLAYGGHTVFDNPNLRLFTAQEVLDAEAFLASLTGRDGARVPPDGIETALASWQGQALAGDQAAAVRHLAGDRHTLTALVGPAGSGKTTTMRALHDVWTAAYGPGSVLGVAPSARAAHELSASVGIDAHTLAMLLTRNSPDARARRTARRDDFTAALSSAHPRRRAAAARGLAALDAEEASFTLRPGTLVVVDEASMCSTHDLAALGRLAVAGGAKVALVGDPSQLDSIDAGGILGWLDRQGKAAHLSSLFRFDAPWEAAASLRLREGDATVLFPTDGDGGPPSYADAGRIHDGESTAMLDAAYDAVRTAHRAGRTAVLVAATNDHVADLNLRTTLERRQAGEVDTTHVVTLRAGQDAGVGDLLYARLNDYRTLRDDTGVAIHNGDLLRITAIDDHGSATCQRVDTGARITLPPGYLARHCDLGYALTAHRAQGITVDEAHLFVPYGARMTRELLYVAMTRGRANNTAWVGLPDADDLAHENRSAFETGDDGVPRLAMPTGASILARALAAVGAEQTAHEQRDAEVAAHSNLGRLVAEHEALASHAVAPLMAAHLARLHPEIDFTTSPAWDALVSTFRHAYAVNPDRALRLLRIPPSCGARTAFQGILDLWDAGTEEDPRDTSGDPAGRVDPSAIVQWRLAGALVDPAPVAADDPAYVHGLVVRIQTDDAPLADLASQCEALISARVADLARQLDDDPPPWMLDAPPAPDPDAAPELHDAWRQAMLAVAIYRDTWQVTAPTPLGPVPVGDRRRLRHYEQTHDLLAHWHDGGPHPGPDLSRPIETDPYADIDFEAIDPGDHDLEVPQGARFIDDAGVPPADPETWTHGADHSPTAPSWRDEVREPRPSDPAASDRITATNAAAWDYWQTCAATPSSWVPAYLTDRGVDDVVPHAHAPAGWTTTIDHLRSTGFSDDDLLDAGLATRARTGRLIDRFRDRLPMRVYDDAGHIAGFTARANPAEAAIRPDTPKYLSTPATAAYDKSRLLYGLTPEARQRLVDGATPVLVEGPMDAAAIDAIGHDDLVALAACGTAVTANHLAAIARDAGSLDGLVVAFDADAAGQAAAARLWSLLGPREAGPVRQATWSGAKDPGELVQSGKTETLARSLAHPRPLAGAVVDHLAASAIAPETIEGRIFLLRAVAAEVAPTRNTAAITAAKDALDDRFGPDSPIDRTIIDDEFADANQRTGRMDGPALGDPLPGVDLTDQAATLT				NA	NA	NA	NA	NA
AK001_00894	2358			hypothetical protein	ATGGACGGGTTGTTGGACGACGAGCGTCTCGAGGGCGCGCACGAGGCCCACATCTCGTACCGGCCCGCCCGGCTCGGCCTGCCTGTGCGCCCGGGTGAGTTTCGGACACAACTAGAGCAAACGTGCCAGATCTGGGGAGGTGCTGGGCGGCCCCTCCTGCCGATCGGCCCCGACGACCGCGTTTCCCGCCTCTGGGCTAGGCTCCTGCCAGGGTCGGCGGTCGACGGGATCGCCGCGACCCACACAGGCGATATCAGCAGGCCTGATGAGCTGCGTGTCCCGGCACAATCACCAGCGGCGCCGAGTTACGGCGACCAGCTCGCCATCGCCTTGCTGCCCTACAAGCCCGAGAGTGGAGCACCGAGGCTGGAGGTCGTCACGCTCGCGCACGACGATCCTTGGGAAGGGATCTATGCCGCGTGCCTCGGGTCTCTGCCGCTGGCGCCTGACGAGGAGCACCTGCGCATCCACGGCTATAACCCGGATCTGTCGTTCGACGACTTCGCCGAGGTCAATCGGGTCGAGGCAACAGGATCGCTCAGCGACCTGCTCTCCAGGTTGGACAGCCGCTTCGCGGTGACGCCGCGCCGTCTATCGATGCTCCACCTTTCCTACGGCACGACGGGGAGCACCTCGATACGCACGAGGTCGAAGGTCTTCCCTGACCCAGGGTTCGCCCGACGGGACGCAGGGCCCAACGTCGTCGTGATCTGCACGCCGGGAGACATCCACGACCTAGCTTTGCTGTGGAACCTGCGCGCCGCGAACGGCGACGGCTTCTCAGTGCCGATCGGTATCCCGGCGTCCGAACTCAGCTCGAGTGTGCTGTGGAAGATCCAGACTGACGGGTCCCTGGCCATAAACGGGTTCGCCCACAAGTCAATATACGTGACGAGCACGAGCGTCCCTGCTGCGGAACTGGCGAGCGCTCTGGGAGAGCAGGATTTCGCAGAGGTGGTTGAGCCGGAACGGCTCGCGGACCTAGGGCGGCCGGCAGAGATCGGACGCGACGAGGTGTTGGTGTGGTCCGAAGGCAGGGCCCGACTCCAGATGATCCCCGGAAACACGGTCCAGAAGATCTTCGATCGCGGGACGCCGAGCCACCTGGCACGCATGCACGTCGATGTCCAGGTATACGACAGCCCGCTGCCCCAAGCGACCGACTACAGGACTCACCCCTTCAACGGGTCTTTCTATGCGGGCTCGCGCACAACGTTCGTCGCTCTCGACCGAGCGTCACGCGTTGAAGAGATCGAATGGCCGTCGCGCCTTCTGGCGGCACAGTCGTTGGCCGTAGCCCGAGGCTACGAGCTGAAGGAGTCCGAACCCGGACGCGCCGGCCGCTTCGCGCTGGTAGGGCTCGGCAGCGTCTACGCGCTCGACCTGTTGGCCCACGCTCCGTTGCTCGGACTGCTTGAGGAGATGTCCGCGCGCCAAGGCTTCGGCTGGTACAAGGAGCGCCTGCGAGCTAGTGCTGTCGCGGCAGACCCGTTGGACAGCGTCGGCCCGACCGTCGACGAGATTCCCCGCAAGACGTTCAACGACTTCAAGAAGGTTCTCGGCAGGAACGAGCGCGCGACACGTCAGTGGCTGATGTGGGCAGAGAAGTCGAACGTCGTCGTGAAGGGCTTCGAAATCGCGTGCCCCGTCTGCAGAGCCAAGCAGTGGATCCCGGTGGCGGCGTTTACGCCGCCGATCACGTGCCGAGGCTGCGCGAGCGTTATCGATCATCCCTTCGGCGACCAGACGAGCGTGAGCTTCCAGTACCGCCTGTCCGAGCGCATGCGGCGGGTCTTCGAGTCCGACGCGATGGGTCACCTACTCCTTGCCCGATTCTTCCGATACCTGTTCCATCCCACACCCGGCGGCGGCGGAAATCTCGTCGGGATGAGCCCAGGGATGGAGGTCCGTGCCCGCGGCTCCGTTGACGCACTGGGTGAGGCAGACCTCCTGATGCTCAACTGGGCCGGGGAGTTCATCCCTGCCGAGTACAAGCGGTCGGTGAGCGGGCTGACGGGGAAGGAGATCGCCAAGCTCGACCTGCTGTGCGACACCATCCAAGCACCCTGGTCGGTCGCCGCGTTTGGGGCCTACAACAAGGATGTCGAGCAGGATCCGTTCGACCTAGAGCGCCGAGACGAAAGTGGCGTGCGGACACGCGCCGTCCTGTCGTACGACCTCCTACTCGAACCCCACCCGGTCTGGGCCTTGGGCGCCGATCCGCTCGAGATCCGCGCGATGAGTTTGGAAGAGGTCAGCGAACGCGAGAACGCTTTTGTCCAGCGGCTCGCCGGACTCGGGACGGACGATGGCGCAAGCTGGTTTGAACAGAGCCTCCTTCGACCACTGGAGGAGTGA	MDGLLDDERLEGAHEAHISYRPARLGLPVRPGEFRTQLEQTCQIWGGAGRPLLPIGPDDRVSRLWARLLPGSAVDGIAATHTGDISRPDELRVPAQSPAAPSYGDQLAIALLPYKPESGAPRLEVVTLAHDDPWEGIYAACLGSLPLAPDEEHLRIHGYNPDLSFDDFAEVNRVEATGSLSDLLSRLDSRFAVTPRRLSMLHLSYGTTGSTSIRTRSKVFPDPGFARRDAGPNVVVICTPGDIHDLALLWNLRAANGDGFSVPIGIPASELSSSVLWKIQTDGSLAINGFAHKSIYVTSTSVPAAELASALGEQDFAEVVEPERLADLGRPAEIGRDEVLVWSEGRARLQMIPGNTVQKIFDRGTPSHLARMHVDVQVYDSPLPQATDYRTHPFNGSFYAGSRTTFVALDRASRVEEIEWPSRLLAAQSLAVARGYELKESEPGRAGRFALVGLGSVYALDLLAHAPLLGLLEEMSARQGFGWYKERLRASAVAADPLDSVGPTVDEIPRKTFNDFKKVLGRNERATRQWLMWAEKSNVVVKGFEIACPVCRAKQWIPVAAFTPPITCRGCASVIDHPFGDQTSVSFQYRLSERMRRVFESDAMGHLLLARFFRYLFHPTPGGGGNLVGMSPGMEVRARGSVDALGEADLLMLNWAGEFIPAEYKRSVSGLTGKEIAKLDLLCDTIQAPWSVAAFGAYNKDVEQDPFDLERRDESGVRTRAVLSYDLLLEPHPVWALGADPLEIRAMSLEEVSERENAFVQRLAGLGTDDGASWFEQSLLRPLEE				NA	NA	NA	NA	NA
AK001_00895	420			hypothetical protein	ATGAGCGAGCGTCGACACTGGACCGTGGCCGCTGACGTCGTGCTCGCGGCCAGCGGGCTGGTCTGGCTGCTCGGCATGGGTGCGGAACCGCCCGAAGATGCCGTGGCCGTCGGTGCCGCGTGGGTGTTCCTCATCGTCGGGGCGCCCTGGGCCGTCGTGCGGATCGTCCGGCTGCACCGGCGCTGGCGCGACGACGGCCGACCGTTCGCCCAGGCGCCCCGCACTGTGGTGCTGACGGTGTGCCTGACCGTGGCGCTCGTCCTGGCCGGCATGACCATCGGCGGCCCTATCGGTGGCACGGTCGTCAACCTCGCAGGACTCGCGCTGCTGGCCTTCGGCGTCTTCGCGTTCCTGGCGGCGTTCACGCCGCTCGGTGGGATGCTCGCCGCTCGAGCGAGGCGCCGCTCGACCGAGCGATGA	MSERRHWTVAADVVLAASGLVWLLGMGAEPPEDAVAVGAAWVFLIVGAPWAVVRIVRLHRRWRDDGRPFAQAPRTVVLTVCLTVALVLAGMTIGGPIGGTVVNLAGLALLAFGVFAFLAAFTPLGGMLAARARRRSTER				NA	NA	NA	NA	NA
AK001_00896	2541			hypothetical protein	GTGACCTATGGGCAGAGCGCCGCGGGGTTGCGGGACGCGCTGGGCCGACTGCTCGCGGTCCAGCGGGTGCGCGCCGCCTTGGACGGGCGTGACCCGCGCCGCGAGCTGGCCGGCAGGCTGTTCGCGGACGGCTACTCGTGGTATGAGATCGAGCGCTCCCTCGGTATCGGTCGCGAGCTGCTGCGCGAGTACCACGCGGCGTTCCGCGACGACGGCCGGTTGGCAGCGGGCCCGCGCCGTACGGCGAGCGAGGCGCTCCAGGACGCTGGGTTCGTTGTGCGTCCCTTCGCTGAGCGCGAGCAGGAGCGGCAGCGCGCCATGCGCGACGCCGTCGCGCTCCTGGTCGAGCGCGGCTACGAACACCAGCAGATCGCGGTCGCCGTCGCCGCTGACGTCCACACCGTGCTGCGATACCGCCGGCTGTTGGAGGCAGAAGGCTGGACACCGACCGTCGTCACCGCCGCCAGCGCTCTGGAAGAGGCGAGGCTCGAGGTGCCCGACCGGGCAACGACACCCCGCGGGACTGAGCGCTCGGCCGCGTACCGGCGTCTGATCGGCTTCCTGCGCGGGCGCGGCCACGAGCAGCAGGAGATCGCCGACACCCTCGGCCTGAACGTCACCACGGTCCGCACCTATCAGCGGCGCCTCGAAGCGTCCGGGTGGACTCCTGAGCCGCGACCCGACCCGGCCGAGGTGCTCGCCGACCACGGCATCGATCTCGCCGCGACCCGCCTCGCCGACGAGACCCGCGAGATGGTCACCTTCCTCACCGAGCGCGGCTACACCCAGGACGAGATGGCGGACGCCCTCGGCCTGGACCGCACTTCGGTTGCCTACCACCAGTCCGTGCTGCGCGACGGCGGGCAGATCGTGCCACGCGACTCTGGACCCGAGGTGCCGATCGAGCAGGCCATCGCCAACCTGGCCATCGAGATCCCCGACCGGGCTACGCCCGAGCAGCGCATCGCCACCGCCGAGCTGATCATGCGCTACCGCGCCGAGGTGATCGCCTACCTCGCCGTCGTCGTCGAGCAGGCTGTCGAAGGCCGCTTTGCGACGACGGCGATCGGTGCCGCGAACCCCGCCTACCGACTACTCGCCGCACTCCTGGAATTGCGCGACGCCGAGGACATGCGAGCTTCCGCCGCCGACCTTGGCACCCCGCAGCCGATCCGCGCCGTCGAGCTGTGGCGGCAGGCCGCGGTCGCCGCCGTGGCGGGGCGTGAACGCGACCTGCCGACGTCACTGACCCGCGACCAGCGCGTCGCAGCCCTGAGAGACACGGTCGCCGCCCTGCGCTCACTGGTCGCCCTCGACGAGCGATACGCCGCAGCCCGAGGCTGGCGACGCCTCCCCACGACGGTCGGACCGAAGACCGACGAGTGGGCCCTGCCCGCCGTTGTGCTCGACGCCGCTGCATGGGCCTCCGAGGTCCCCACCGCGGACTACGCCATCGACCGCCACGGGCCGACAGCGACAGACCGGCCGCCAGGTCCGCCGCCAGCAACTCTCGGGGCTGCCGCCGCCGCGCTCGACCGGGCCGCCGCTCATCTGGCGGGCGAGCCCGAGCCGGTCAAGGCCACTGTGATGCGCTGGCTCGTCGATGCCCAACGCCGCATCGCCACCTACGCCCGCCACCAGGCACTCGCCCTGGACCTGGACGAAGTCACCGGCGTCCACGAGAAGCGCTACCGCTGCTACGACCACATCGACGCCCTCCTGACCGACGTCGCCGGCACCGCAGGCTGCGAGTCGCTGGCCGTCGTCGAGATCGCCGAGGCCGTGCGCATCCTCAAGCACACCCGTCGCGGCACCGAACCCGAGCTGGCCGACCTGGCCTTCGCGAGCCAGGCCCTCGACGCCACCATCTCGCGGATGCTGCGCCTCGGGGCGGCCGGCTACTACTTCCAGCGCACCGAGCGCCTCGCCGTCGAACGACCGGGCAGCTCACTGGTGCGGCGTGCCGTCGCCGTCTACGAACCCATCACGCCCGGGAACAACCCCGGCTACGGTCCCGCCTGGCTCGAGCTCGAACGGTTGGCGGCTCCGCGCGAGATCGCCCGGTCGCCCGAGCGCGAGGCATTCACCGCTCGCCTGGACAGCCTGGCAGCAGACACCCTCGCTGTCGCCCAAGCACGCAACCACGCCCTCTACCCGGACGACGACGGCCACCGCGCGCTTGCCGATCACGCGGCCGCCGAGGTGATCGCTGGCATCGACACCCTCGACGCGGCCGGGGCCGCGTTCACCGAAGCCCGAGCACGACTGGCAGGAGCACTCGCGGCGACCGACGGCACGCTCGCCGAACTCGGCGAGCGGTGCGGACTGGCCCCCGGGGAGATCGCGTGGCTCATCGAACCCGCCCGCGCCATCGGCGCCGAATCCGTTGCTGCAGGCGGGGTTGATCGCGACGGAGGAGAGCTCGCGTTCGACGGCCGTGTCGGTGGGGCGGAGCAGACTGAACTCGAGACCGGAAGGGACGACCAGCCGGGGATGCTCGTGGGTGGGGGACCGGCCAGCACGGAAGGACCAGGGCTATGA	MTYGQSAAGLRDALGRLLAVQRVRAALDGRDPRRELAGRLFADGYSWYEIERSLGIGRELLREYHAAFRDDGRLAAGPRRTASEALQDAGFVVRPFAEREQERQRAMRDAVALLVERGYEHQQIAVAVAADVHTVLRYRRLLEAEGWTPTVVTAASALEEARLEVPDRATTPRGTERSAAYRRLIGFLRGRGHEQQEIADTLGLNVTTVRTYQRRLEASGWTPEPRPDPAEVLADHGIDLAATRLADETREMVTFLTERGYTQDEMADALGLDRTSVAYHQSVLRDGGQIVPRDSGPEVPIEQAIANLAIEIPDRATPEQRIATAELIMRYRAEVIAYLAVVVEQAVEGRFATTAIGAANPAYRLLAALLELRDAEDMRASAADLGTPQPIRAVELWRQAAVAAVAGRERDLPTSLTRDQRVAALRDTVAALRSLVALDERYAAARGWRRLPTTVGPKTDEWALPAVVLDAAAWASEVPTADYAIDRHGPTATDRPPGPPPATLGAAAAALDRAAAHLAGEPEPVKATVMRWLVDAQRRIATYARHQALALDLDEVTGVHEKRYRCYDHIDALLTDVAGTAGCESLAVVEIAEAVRILKHTRRGTEPELADLAFASQALDATISRMLRLGAAGYYFQRTERLAVERPGSSLVRRAVAVYEPITPGNNPGYGPAWLELERLAAPREIARSPEREAFTARLDSLAADTLAVAQARNHALYPDDDGHRALADHAAAEVIAGIDTLDAAGAAFTEARARLAGALAATDGTLAELGERCGLAPGEIAWLIEPARAIGAESVAAGGVDRDGGELAFDGRVGGAEQTELETGRDDQPGMLVGGGPASTEGPGL				NA	NA	NA	NA	NA
AK001_00897	336			hypothetical protein	GTGAGCACCCACCGCGGCGCCAGCGAGAACGCCCGGGCGGAGGCGTACCGGGCGGCTCGCTCGAACCTCGCGGCCCTGCAGGCGACGTTGCCGGACTTCTCGACGCTGTCGTACACCGAGGTGCTCCTGGCTCTCGAAGCTGCGACAGACCTTCCGGTTCCGGCAGCCGGTCCTGTCGGGTCCGGGGGCCGCGCCAGCATGTATGTGCGGGCCCGGACCGCCGTCGAGCGCCTCGCCGAGTACGGCGAACGCCTGGGACTTGAGCTCGTGATCGCCGACCTCGACGCCGTCTGGTCCGACGACGTGCGTACCGGCGGGGCCGGGGACCTGCCGTGA	MSTHRGASENARAEAYRAARSNLAALQATLPDFSTLSYTEVLLALEAATDLPVPAAGPVGSGGRASMYVRARTAVERLAEYGERLGLELVIADLDAVWSDDVRTGGAGDLP				NA	NA	NA	NA	NA
AK001_00898	636			hypothetical protein	ATGACCGATACCGACGACGGCGCAGACCCCGACGCCGAGCCCACGGCTCCGCCGAGCGAGCAGCAGGTGACCGGCGCGCGCGACCGCACCGCTGAGGTCTACCCCCGCGCCGAGCAGCGCCACCTGCGAGCACTGGCTGACGACTCGGCTGTCCGGGTGATCGTCGGCCGCGACTCCCTGTCCGGCGTTGGCGCCGGATATCGGGTCGCCACCCAGGACGCGGCTCAGGCCAACGAAGAGGTGACCCACGCCGAAGCACGCCTGGTCGGCGCGCTGGCAACGTCGGACGGCACGCTGCGCGAGCTGGCCGACGCCACGGGCTTGAGCGTCGACGAAATCGCCCGGGTGCTGGGGCGCGACAAGGTCACCGTGCTGTCCAAGCCCGGATGCGTCCAGTGCGACGCCACCGTGCGGGCCCTGGAGAAGAAGGGCATCGACTTCGTGCGGGTCGATGTCACCGACGACGCCGAGGCTCTCGATCTTGCTCACGGGCTCGGCTACCTGACCGCACCGGTCGTGGTGACCCCCGACGGCGAGCACTGGGCGGGATTCCGGCCCGACCGGATCGCCGACCTGGACGCCGGCCCTGGCCAGGAGCCTCCCGCCGCACCCACGCTCGTCGGGCCGGGACAGTGA	MTDTDDGADPDAEPTAPPSEQQVTGARDRTAEVYPRAEQRHLRALADDSAVRVIVGRDSLSGVGAGYRVATQDAAQANEEVTHAEARLVGALATSDGTLRELADATGLSVDEIARVLGRDKVTVLSKPGCVQCDATVRALEKKGIDFVRVDVTDDAEALDLAHGLGYLTAPVVVTPDGEHWAGFRPDRIADLDAGPGQEPPAAPTLVGPGQ				NA	NA	NA	NA	NA
AK001_00899	1392			hypothetical protein	ATGACCGTGCTCGACACCCACGCCACCCAGATGGCGGATCAGACGCGGACGCTGCGCGACGTCGCACAGCACCAGCTGCGGCACACCACGACGGTCGGTGAGGCCCTCTACCACCAGGCCACCGCCAAGGCAGCGGCGCTGGCCATCTGGGCCGAGTTCCCGGCCGCGACCTACCTCGAGCTCGTGCCCTCCGACCAGGACGGGGTCGACTTCGAGACCGGAGCGATCCTTGACGCAACCGGTACACCGATCGCCGCAGACCTTCACAACGCCCCGGTCGACGCCGCAGAACGGTGGGACGCCGTCGTCGGCCCCCACTACGGCCCACTGACCGACCTGCCCAGCGACTTCACCTACGACGTCGAGACACGTGAAGCGGTACCGCCCTACCCGTGGCTCCTCTCCAGCAGCGACCGCGTCGACCGCCTGGACCTGCGCGCAGCGGCCGAACTCGACCTGTCCGCCGCGATCGCCGCAGCCTTCCCCGAGCCGGTGCCACCCACCGAAGACCTGGGGGCGCTGGCGACCGACGGCGTCGTCGTGCCCACAGCGTTGATCGACACCGGGGCGCGGCACCACCCGCCGCTACCCGAGTGGCCCGCGGACCTCGCCACCCCGGACGTGACCGGGAAGCGCGCCGCCGACGGCGAGACTCGCCTGACCGTCAACGTGGGCGGGGTCGAGCTGCTCACCGTCGCCGGAGTCTGGACCGGCGAGGCGTACACCGAGGACGTCGACTGGCACAGTGCCAGCAGCCTGAGCGATGCCCAGCGGGACCAGGTCGAGGCGTGGGCGCGTCAGGTGTGGATCCGGCTGACCGACGCCCTGGACAACGTCGTCGACCACGCCATCACCGCGACGATCGAACCCACCCTGGAGCGTGTCACCACCGACCACCCGAGCCCGTCCGCCGCGCTCCTCGGCAGCCTGTCCGCCCAGCCCGTCGCGGGGCCCGCCGCACCGATGCACGGCCGCGAACGTCCCCCGCAACCGGGCGGTCCGGCGTCCGACATGCCACGGTTCACGCACCCGGCGTTCGACGGCGCCACCTTCGCCGCCGTGGCCTACCACCAGGGATGGAACGGCTGGGCGGCGCCCGTCGTCGACCGGGACACGCTCGAAGCCCTCCTGGGCCTCCTGGACCCCCAGTGGCTGCGCGGCTGGATCGACGGCAACGAGGTCTTCCACCTCGAACACCTCGAGAACGGATCACCGACCGACCACGACGCCGTCGCCCCGAACCTCGACGGCACCTACGACCTCGGCCTCCTCGGCTGGACGTTCGAGATCGCCGACGAACCGGCAACCGAACCGGCGAGCCAGGCACCCCCGTCGCCGGTGATGCCCGACGTCAGCCCTACCGCCGCCCCCGACCTTCAGCTCGGGTGGTGA	MTVLDTHATQMADQTRTLRDVAQHQLRHTTTVGEALYHQATAKAAALAIWAEFPAATYLELVPSDQDGVDFETGAILDATGTPIAADLHNAPVDAAERWDAVVGPHYGPLTDLPSDFTYDVETREAVPPYPWLLSSSDRVDRLDLRAAAELDLSAAIAAAFPEPVPPTEDLGALATDGVVVPTALIDTGARHHPPLPEWPADLATPDVTGKRAADGETRLTVNVGGVELLTVAGVWTGEAYTEDVDWHSASSLSDAQRDQVEAWARQVWIRLTDALDNVVDHAITATIEPTLERVTTDHPSPSAALLGSLSAQPVAGPAAPMHGRERPPQPGGPASDMPRFTHPAFDGATFAAVAYHQGWNGWAAPVVDRDTLEALLGLLDPQWLRGWIDGNEVFHLEHLENGSPTDHDAVAPNLDGTYDLGLLGWTFEIADEPATEPASQAPPSPVMPDVSPTAAPDLQLGW				NA	NA	NA	NA	NA
AK001_00900	1341			hypothetical protein	ATGGCCCGCAAGGTCCGCACCAGCAAGACTCCCGAGCAGCGCCGCGCGGAGGCCGAGGCCCTGCACGCGACCATCGCGACCGAGGTGGAGAACCTGCGCGACTCGACCAACTGGACGCGGTTCCTCGACTTCTCCCGCCACATGAACGGCTACTCGATCAACAACCTCCTGCTGATCCTCGCGCAGAACCCCGACGCGACCGCCGTCGCCGGCTACCGCACCTGGCAGGACCGCGGCTACCAGGTCCGCAAGGGCGAGAAGGCCATCCGCATCTTCGGCGGACGCTCGGTGACCGAGGCCGTCGAGGACCCCGACACTGGAGAGGAGACCGAGCAACGCCGCACGCTCTTCTTCGCCGTCCCGGTCTTCGACATCACGCAGTGCGACCCGATCGACCCCGAGAACGCGATCACGCCCGTCGTTTCGACGCAGCTCGACGGCGACGACCCGGCCGGGATCTACAACGCCGTAGCCGACTACCTGACCGCGCAAGGCTGGACCGTCACCCGCGAACCCATACCCGGTGAGACCAACGGCCGCACCATGATGGACGGCTCACGCCGCATCATCATCGACTCTGGTCTGTCACCGGCGATGTCCGCCAAGGTCGCGCTCCACGAGGCCGCGCACGCGACCCTGCACGTCGAGGACGGGATCGAGGAGTACGTCGCACACCGCGGCCTCAAGGAGACGGAAGCCGAATCGGTGGCCTATGTGACCGCCGGTCTCCTGGGCCTCGACACCGCCGAGTACTCCATCGGATACGTCGCCGGGTGGTCCGACTGCGACCCCCAGCTCATCAAGGACACAGCCAACCGCGTGCTGCGCTGCGCCCACACCCTCGCCGATGCGCTCACAAGCGACGCCGCGGACGACGTCGAGGAACCAGATACACCGAGCGTCCAGCACGAGCGGACTGCGGAGCCGGTTGCCGTGGCCTCCGCGCCGCACGCTGCTGCAATGGCCGACACGTCGGTCGGCCAGGAACGCCACCAGCCGCCCGGCCGGCCAACCACACCGGCGACCATCGACGACGTCGCCGAGGCCCTCGCGACCCACCTGGCCACGCACGCCCGCGAGCTCGCCCAAGCCGTCGTCTACCTCGGTGCCAACACTCGGTGGGACTCGTCCGCGATCGAGGTGCTCGCCGACCCCATCCAACGTGCGGCGGTCGACGCCGGCCTTCCTGCGTTCGGCTCTACCGGCGCGCACGGCCAGGCGCATGCCTTCTACGGGTTCCTCGCCCATGCGGCCGGCGTGGACACCGACTGGGGTGGTGACCCCGCACCCGATCCGAGCCCTTCGCACGGTTCGGACGTGGGCTGGAGCCTCGGCCGCTGA	MARKVRTSKTPEQRRAEAEALHATIATEVENLRDSTNWTRFLDFSRHMNGYSINNLLLILAQNPDATAVAGYRTWQDRGYQVRKGEKAIRIFGGRSVTEAVEDPDTGEETEQRRTLFFAVPVFDITQCDPIDPENAITPVVSTQLDGDDPAGIYNAVADYLTAQGWTVTREPIPGETNGRTMMDGSRRIIIDSGLSPAMSAKVALHEAAHATLHVEDGIEEYVAHRGLKETEAESVAYVTAGLLGLDTAEYSIGYVAGWSDCDPQLIKDTANRVLRCAHTLADALTSDAADDVEEPDTPSVQHERTAEPVAVASAPHAAAMADTSVGQERHQPPGRPTTPATIDDVAEALATHLATHARELAQAVVYLGANTRWDSSAIEVLADPIQRAAVDAGLPAFGSTGAHGQAHAFYGFLAHAAGVDTDWGGDPAPDPSPSHGSDVGWSLGR				NA	NA	NA	NA	NA
AK001_00901	240			hypothetical protein	ATGACCGGAGAAGGCGGGCGGCGCCTGTCTGAGCGCGGCATCGAGACGGTCCCGATGCGCGACGCGGCGCACCGCGCCCCGAAGGAGCAGCGTGCCGGACAGGGGGTCGTCGAGCCTCTCGACCCGATCTCAGTGCGGGTGTGGATCGAGGCTCGGCAGTCCGGCAACCACGAGCACCCGTCACCCGTGATGCTCACCCCAATCTCTGGCGCCACGACCGGTTGCTGGCCTGGGATATGA	MTGEGGRRLSERGIETVPMRDAAHRAPKEQRAGQGVVEPLDPISVRVWIEARQSGNHEHPSPVMLTPISGATTGCWPGI				NA	NA	NA	NA	NA
AK001_00902	1146			hypothetical protein	ATGAACTTCGGCTCCAAGACCGTGGGCGCGACATCTGGGGAAACGTTCACGATCCATGCGCTCAACAACTACACGCACATGGGTCTGTCGAACCTCGCCGACCACTTCGATCTCCGGCCTGGCCAGCTGCAAGCGATTATCCATTCAGCACACCATGATCTGGTGCTCGCACTAACCGCCGCAGGCATCGACTATAACGGGCTCGCCCCCGCGCTAGTGCCCAGACCGCGACGCCACGAGGTGGCCTTCCTCTTCGACTCCACTCAAATCCAGAACGGCATGTACGGGTACTCGCTCGCAGAGCAGTGGATACCTGCCGTGAAGGCATATGGGCCCGACAAGACCGTCATGCGAGTCGGAGACGTCCTGGACTTGCCCAGCGAATTTGTCTGGGGCCAACTTGCGGAACGTCTGGTAGGCTCTCGTGGCTTCCCGCGGATCGCATGCGAGCTCTACTTCGCCGTATACCTGACGAACCTGTCCACCAGGCAGTTGAAAAAGCTAGATGCGGCACTCACATCGGCTATGGACGCCTACCTCGGGTATGTCGACTGCTCCACTTGGAATCCGTTGAAAGCGGGGCTGTTCTTGCCTCAGGTCGGCCTGCGGCTACGCGACCAGATCATCACTGATGCCGACGACTTCGGCACCCCCAATCAAGTTGGATATCCGTTTGACGAGTCCGGATTCCAGGTCGTCGGGATCCCCGAGGAACTGTACGGCCCGTTCCTCGGTCACAGAATCGACAACGGCGTACCGGCATGGGCCGATCAAGACAGCGCAATCTCGCTGACAGTCCTTGGTGGCGACCTCCAGCCAACTACGACGACAGCCGTCGTAATCGACGAGAACCGCGTCAAGTATCTGGGAACCCAACACGAGGCGTCCCTTAGCCGCGCTGGACTGGCCAATCTAAACAACGACGAGCTGGCCGAAGCGATCAGGCAGAAGTTCGTCAACGGGCTCATCTACAACTTGCGGTTCGTCGAGGGCTCACGAGATGGCACGCCAGCACCTGAACTGAACGCGATGATGTACAGCGTCCAGGTGGAGTTTCCGGACGAAACCAACGAGGTCAGGCGATACCAGGTTGGCCTCAAGTACAGGTCAGACGCTCACACCAGCGAGGTGGTTACCTTCTTCTAG	MNFGSKTVGATSGETFTIHALNNYTHMGLSNLADHFDLRPGQLQAIIHSAHHDLVLALTAAGIDYNGLAPALVPRPRRHEVAFLFDSTQIQNGMYGYSLAEQWIPAVKAYGPDKTVMRVGDVLDLPSEFVWGQLAERLVGSRGFPRIACELYFAVYLTNLSTRQLKKLDAALTSAMDAYLGYVDCSTWNPLKAGLFLPQVGLRLRDQIITDADDFGTPNQVGYPFDESGFQVVGIPEELYGPFLGHRIDNGVPAWADQDSAISLTVLGGDLQPTTTTAVVIDENRVKYLGTQHEASLSRAGLANLNNDELAEAIRQKFVNGLIYNLRFVEGSRDGTPAPELNAMMYSVQVEFPDETNEVRRYQVGLKYRSDAHTSEVVTFF				NA	NA	NA	NA	NA
AK001_00903	936			hypothetical protein	ATGTGCCGGGCCGAGAAGATCTTCAGACAGCATGACGTCGCTCCCGATGTGACGTCGTCGGCGCTCTACCGGCAGCTCGTCCAGGACTGGGTGTGGACGCAGTCCCGCCCGACGGCGACCGCTTCCCTACTGCGCTGGGGTCGTGCCGAGCCGCACTTCGAGGGCTTCTCCCGACCCGCTGACGTCGTGGACGCGATCGACGCCAGCAACCACCAACGCAAGGACACCCTCCTGCTCGCGTTGCTTCGACTCATGCAGGCAGGGGAACCGCTCGCAAACCAGACCGTGCTCCACGCGATGCTCCCCGGGCTCGCCGGACTGGCCGCGCGCACCACCCCTAAGCTGCCCGCCCGCGAACCGAACCGCGCTGAGGCCGCGCGCCAGCTCGTCGTCGAGGAGTTCCTGGAGTCCGCAGCGGCGTTTCCAGTCCTCCGACGCCGCCAGCGCGTCGCATCGAACCTCCTGCTCGACACCGTCAAGCGCGTCACGAGCCACATTCGTCAGGCCGTGCCGAGGCCGTTCGATCCCGCCGCGCTCTACATCGACGCCGTGCCAGAGAGAGACCGCGACGTCTACCGAGCGGTCCGCGCCCAAGCAGACGTCGGAACCCCCAGGCTTGTCGACGGGATCGACCCCGACTCCGACCTACTCACCGTGCTCACGTGGGCAGTCTCCGAGGGTGTCATCACCACAGCGGAGGCACAGATGCTTGCCGACGTCTACCTCCCGACGACGCCGGACGGCTGGGGCTTCGACCACGTCGCAGAGGCCGTCGGAGTGTCGCGCTCGGCAGTTAAGATGCGATGCTCCCGCGCAGTCGCCAAACTGAGCGCGGCCGTCCACACTGAAGTCCAACCCGCCGGAAGTTCTGCCGGTGTTGTGCCGCGCACGGAACGGCCGACCACGTCGTTGCCTTCACTGTCTGGCGCCGCCTAG	MCRAEKIFRQHDVAPDVTSSALYRQLVQDWVWTQSRPTATASLLRWGRAEPHFEGFSRPADVVDAIDASNHQRKDTLLLALLRLMQAGEPLANQTVLHAMLPGLAGLAARTTPKLPAREPNRAEAARQLVVEEFLESAAAFPVLRRRQRVASNLLLDTVKRVTSHIRQAVPRPFDPAALYIDAVPERDRDVYRAVRAQADVGTPRLVDGIDPDSDLLTVLTWAVSEGVITTAEAQMLADVYLPTTPDGWGFDHVAEAVGVSRSAVKMRCSRAVAKLSAAVHTEVQPAGSSAGVVPRTERPTTSLPSLSGAA				NA	NA	NA	NA	NA
AK001_00904	1482			hypothetical protein	GTGCGCCTCAAGGTACGCCTGGTTGTGCTTGCCATCCTGCTGGCGGCGTTCACCCATACTTCCGCGGGACCGGCCGCGGCTGACTACCGCCTGTACTGCAATCCAGAAGGCGACTCCCGACAGGTCGTGATCCTCGTTCACGGTTTCAGATCCGCCGAAACCACGTGGAGCGAAGATTCGGCTGAGATCCTCAGTGGCGGCGGGACAGACACTTGTGTCACTCGATTTGACTACTCCGACCATGCCACCCGGTGGGTCACCAACGACCGCATCGGGCCCGCACTCGCCGACTACGTCGTGGACTGGGCGGAGAAGTCCGAGGCGGGTGGCGGCACCGGACGCATCGTCATCGTCGCCCATTCCATGGGCGGGCTCGCCACCCGCTGCGCACTCAGTCCCGAATGCGGCGGCGTTGAAGAAGTAGCCGAGAAGGTCGCACACGTCACCACTTTCGGCACACCTAACCTCGGATCGTTCTGGCGCGGTCCCGGCGGCACGATGTCTGCGGCAATGGAACGCGTGGTCGATCTGGTCTGGCTGCAGTGCAAAGCGCGCCATACGGTTACCACAGCCAGCCTCGGATGGTCCGGAGACTGCGACTTTATCAATGGTCTCGCACGCTCCGAGGCCAGTCAGGCATTCACGCCCGGTAGTTCCGAACTTGCCGATCTTCCACACTTTCCTAGGGACTTTCCGGTCTTCGCCGCAGCTGGCAACGTCAACGTCCGTACGTCCGTCTTCGACTTCACGACGCAGCTCGGCTCGGCCGGCGACCTTGTTGTCGGCGTCGACTCCGCTCACGACGAGGCCGAGCACATCGCCACATCCAGTCCTTCGGACACAACAACCGTCCAATGCGGCACGATCGACCTGAGCAACCTGGCCCGCGTCCGTGTGGACGACGGAGGCGTCGCGATCGAAACCGTGCTCGATGACGTCACCTGCACCCACATGGACGAACCAACCAACGAGAACTTCCTGAATCGGGCGCGCTGGCGCATCAACGACACGATCGCGATCAGCGCATCTACCCCCCTGATCAGCGCCAGGGGAGTCGGTCGATTCACAATCGGCAGCCCGCTGGCCGACTACGCAGACGAAGACCCGAACTACAGCGGAGAGGGGTGCCCCGCGGTCTACGTACGCGGCGACGACTTCAACGCAACCGTCACGTTGGTCGGGTGGGAGAACGTGACGTCGTCCCGACTCATCACCCAGATCTACCTCTACATGGCGCACGACGGCGAACCTCAAGCGACTACCGCGGAGGGCATCGGGCTAGGGTCGACGGTCGAAGAGCTCCTGGCCGCCTACCCACATGCGGAGCACGTCCAGCAGGAGCACCTCTCCGACCCTGGGTACTACTCCGACTGGTACATCGTCCGCCTCAGCGGCGTCCCGATTACCTTCAGTATCGACGAAGGCGCCGTGAAGGAGATCGGCGTTGGCGTGGAGGGCATCCCGTACGAGATCTGTGGCTGA	MRLKVRLVVLAILLAAFTHTSAGPAAADYRLYCNPEGDSRQVVILVHGFRSAETTWSEDSAEILSGGGTDTCVTRFDYSDHATRWVTNDRIGPALADYVVDWAEKSEAGGGTGRIVIVAHSMGGLATRCALSPECGGVEEVAEKVAHVTTFGTPNLGSFWRGPGGTMSAAMERVVDLVWLQCKARHTVTTASLGWSGDCDFINGLARSEASQAFTPGSSELADLPHFPRDFPVFAAAGNVNVRTSVFDFTTQLGSAGDLVVGVDSAHDEAEHIATSSPSDTTTVQCGTIDLSNLARVRVDDGGVAIETVLDDVTCTHMDEPTNENFLNRARWRINDTIAISASTPLISARGVGRFTIGSPLADYADEDPNYSGEGCPAVYVRGDDFNATVTLVGWENVTSSRLITQIYLYMAHDGEPQATTAEGIGLGSTVEELLAAYPHAEHVQQEHLSDPGYYSDWYIVRLSGVPITFSIDEGAVKEIGVGVEGIPYEICG				NA	NA	NA	NA	NA
AK001_00905	249			hypothetical protein	GTGGGGCGGGCGCGGGCTAATCTGAAGGGGGCGCGCGCCCCGCGGCAGATCGCAGGACGGTCGCGCCTGGAGGCCTGGGACGACACGGTGGCAGTGATGAAGCACTCGCCCGACACCGAGGGCCGCACGGTCGGCCACGAGGCGATGTACCAGTATGTCTACGCGCTGATCAAGTGCGAGCTTGCGAAGCATGGCATCGTGCTGCGCTCCAAACGTTTTCCGGCGCCAGGCTTGCGGGTCGGCTGGTGA	MGRARANLKGARAPRQIAGRSRLEAWDDTVAVMKHSPDTEGRTVGHEAMYQYVYALIKCELAKHGIVLRSKRFPAPGLRVGW	PGPT0030610_795	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482	NA	NA
AK001_00906	357			hypothetical protein	GTGACCCCGGCGGTCACGATCGTGACGGACAACGGCGGCCCGTTCCGCTCGTTCCGGTTCGAAGCGTTCATCATCGCCCACCTCGAGCTGCGGCACGTTCGCACGAGGGTCAAGACCCCCGGACAGAGCGACTCACGCGAACGCGGCTTCCAGTCGTTGAAGTACGAGCGCCTCTACCTCGAGGAGATCGACGACGTCCTGGCCCTGGTCGCCCGCGCCGACGACTACCGAGCTGAGTACAACACCGTGCACCCCCACGAGGCCATCGCCTGGAACCGGCCCCTGGAGGTTCACCTCGGCTACGCCGACCCCCTCATCCCCAACTCTCCCGAGACCCAGAATCTGCCAGCAGCTTGA	MTPAVTIVTDNGGPFRSFRFEAFIIAHLELRHVRTRVKTPGQSDSRERGFQSLKYERLYLEEIDDVLALVARADDYRAEYNTVHPHEAIAWNRPLEVHLGYADPLIPNSPETQNLPAA				NA	NA	NA	NA	NA
AK001_00907	249			hypothetical protein	GTGTTGTCGGTCGTGGCCGGCGAGGTCACCGTCGCCGAGGCGGCCCGGCGGGCGAAGGTGTCCGAGCAGTCGGTGGGGAACTGGAAGCGGCAGTTCCTCGAGGCCGGCAAGGCGGGGCTGGCTGCCGTGTCCCCGACCGCGAACCAGCACGACGCGATCGCGGCGATCGAGGCGGCGCTGGCGGACTACGAGGCGATGTTCGGCAGCCCGCTGATCGCCACGTGCTCACGTGACGCCGAGGGCAAGTGA	MLSVVAGEVTVAEAARRAKVSEQSVGNWKRQFLEAGKAGLAAVSPTANQHDAIAAIEAALADYEAMFGSPLIATCSRDAEGK				NA	NA	NA	NA	NA
AK001_00908	939			hypothetical protein	ATGCGGTACGCAGTCAGGGTCGTCTTCGCCGCAGTGGCCGCGGCGATGACTCTGCTGCTTGCCGTCGCGATCCCGGCGTCAGCCGCCGACCCCGTGACGTGTCCGCCGGGCCAGACACCTATCGGCGGCACCTGCTACATCACGATCACCGACCCCGGTGAGAGCGGCGGTGGCGGCAGCGGGGGAGACGACTCGGGTGGTGCCGAGAACGTCAGCCATGAGCCGGCTACATGCCACTACGGGCCGCACGAGGTGCCGTGCGCCGTCGAGGGCTACGTCTGGAACGCCTCGCGCATGTGCTACGCGCGGCTCGCGGACCCCCAACCGGGGCCTGACGACCCGGTCTGGGAGGGCCGCACCGAGGGCGTGATCGTCTCGTGCACGCCGCCGTACTGCATCGTCGATGGCGTCGGCATGGATGACTGCTACAACGACCTCTACTGGGCAGCCACCGTCCCTGACGCCACCGGACCATCGCCGCGTGAGCTCGCTGACCGCGCCGTCGAGGCGATGAACCTGCGCGCGATCACGATCGGAATCGTCCCGGAACCCGTGGCCGGAAGCGTGGGCCTGGTCGGCATGCCCACCTGGATGTGGGCGGCTGAGCCCTCGGAGTCGTCGACCGGGCCGATCACGAGATCGGCCTCGGCGGGCGGGACGACGGTGACGGCGACCGGGCGGCTCGACCGGATCGTGTGGTCGATGGGCGACGGAACCACGGTCGCCTGCGGCCTCGGGACGCCCTACGCGGACTCGTACGGCAAGGCGTCGTCGCCAGACTGCGGACACCACTACACCGAGCAGGGTCGCTACACCGTCACCGCGACGTCCTACTGGACCGTCGAGTGGTCCGGCGGCGGTCAGAACGGGTCGATCCCGCTGGAGTTCGCCGACTCCACGCAGATCACGATGGGCGAGGCCCAAGTACTCGTCCAATAG	MRYAVRVVFAAVAAAMTLLLAVAIPASAADPVTCPPGQTPIGGTCYITITDPGESGGGGSGGDDSGGAENVSHEPATCHYGPHEVPCAVEGYVWNASRMCYARLADPQPGPDDPVWEGRTEGVIVSCTPPYCIVDGVGMDDCYNDLYWAATVPDATGPSPRELADRAVEAMNLRAITIGIVPEPVAGSVGLVGMPTWMWAAEPSESSTGPITRSASAGGTTVTATGRLDRIVWSMGDGTTVACGLGTPYADSYGKASSPDCGHHYTEQGRYTVTATSYWTVEWSGGGQNGSIPLEFADSTQITMGEAQVLVQ				NA	NA	NA	NA	NA
AK001_00909	621			hypothetical protein	ATGCCGAGGCCACTGGCTCTGGCGGCGGGCGCCGTCGGGCTCACCGTGCTTCTCGCCGCCTGCACCGACGGCGGCAACAGCCAGCCCACGCCAACGGCGACCACGCCGCCTTCGGCGACCGCATCCGCGACGCCGTCACCCAGCCCGACGCCGACCCTGAGCGAGGAAGAAGCCGCCCAGCAGGCCAACGTCGAGGACGCGCAGGGCCGTTTCGCGGAGTACCTCGAGGTGAGCGATCGGATCCTCGCCGAGCCGGGCAACGGTGATCCCCTCCGCACTGTGCGCCCCTACATCGGCTCGGAGGAGATGGTGGCGTGGTGGCAGTCCGTGCCGCAGCAGTTCAGCGACCAAGGGCTCCACCAGACTGGGACGTCCACCCTGGTGTCCGTGGACGTCACCGACTACGAGGGTGCTCCCCTGGGCGAGGGCACGCAGATCGTGACGATGGAGGCGTGCGTCGACTTCACGGACGTCGAGGTCGTCGATGCCGACGGCAACCCGGCCGAGTCGAGCCATACGGCGACGACGCCGGTTGTCCAGGACGTCGTCATGCAGCGGCAGCCGGATGATCGCTGGACCGTCCAGGAAGCCGCGACCAGGCAGCCGTTCACGGAGTGCTGA	MPRPLALAAGAVGLTVLLAACTDGGNSQPTPTATTPPSATASATPSPSPTPTLSEEEAAQQANVEDAQGRFAEYLEVSDRILAEPGNGDPLRTVRPYIGSEEMVAWWQSVPQQFSDQGLHQTGTSTLVSVDVTDYEGAPLGEGTQIVTMEACVDFTDVEVVDADGNPAESSHTATTPVVQDVVMQRQPDDRWTVQEAATRQPFTEC				NA	NA	NA	NA	NA
AK001_00910	3051			hypothetical protein	GTGAACGCGCGACGTCGTCTGCTCGGCCTGGCCGCCCTGGTCGCGATCCTCGCGATCATCATCGGCCTGCCCGTCGTGCTCTTCGCCGTCGGGGCCAACCCGTTCGCCGATGATTTCTCCTGGGGAGACCTGACCCGGCCCGACGACGGATCCCTCGCCCTGGCCGCGATCAAGGTGATCGCGTGGATCGCCTGGGCCGCCCTCACGGTCTCGTTGCTCGTCGAGATCGTCGCCCGGGTGCGCGGCATCCACCCGCCGCGCCTGCCCGGACTCGCGCTGCCGCAGGGCTGGGCGCAGGGACTGGTGGGTGCCGCCGTTGCGCTGTTCGCCGCAGCCGGGTCGACGGCGGTCGTCACGTCACCCGCGCACGCCGTTCCGGTTGTCACGGTCGAGCCAGACGTTGTTGCCGCCGACGCCGATCGCGCGGCCACCGATGTTGCGGCCCGCCCGCAGGAGCAGACGGAGGACGGCGACGCACCAGCGACTGTCGCCTACACGGTGCAGCCGAACGACTCTCTGTGGTCCATCGCGGAGAAACGCCTCGGGGACGGTCACCGGTTCACCGAACTCGTCGCCCTCAACGCCGACCTGCTCGGCGGCAAGGCCGACTTCCTCAAACCCGGCTGGGTTCTCACCCTCCCCGCGCCGCCCGAGCCTCCCGCCGCGCCTGCCGGCGACAGGCGCACGGTGACGGTCCAGCCCGGCGACTCCCTGTCCTCGATCGCCGCCGCCGAACTGGGCGACCCCGACCGGTACCGCGAGATCTTCGACGCCTCGACGAACATCACCCAACCCGATGGGGCGCGCCTGGCGGACCCCGACCTGATCCAGCCCGGCTGGACACTCGTCATCCCCGCCGTGCGCGACGCCGAGGAAGACGCCGGGCCCGGCGCCGCGCCTGCGACACCGGAGCCGGCTGAGACACCTGCCGCCGAGATGCCGACCGCAGAACCGGAGGCCTCGGAAACGGTGGACACCGCACCGCGACCCGAGCGCGGACCCGGGGCATTGTCCGCTCTGCCCGGCGAGGCACCGACACCTCCGGCTGCCGCGCAGAACCCTCGCGACGTCGGAGCAGCCGAGACGGCGGCAAGTGGCGGCGTCGACGAGCCGGACTCGGTCGACGCATGGAAGGTGGCGACGGGCTCGGGTATCGGGACGATCTTGGCGGCCGGAGCGATCGCGGTCGTCGCACGCCGGCGAGGCGCCCAGCAACGCCGCCGCAGGCCGGGCCAGACGATCCCGATGCCCGAGGGCAGCGCCGCGTCCCTGGAACAAGAGCTGCGGACGGCCGCTGACGAGTTCGCCGTCCAGAGAGTCGATGATGCCCTGCGGGGACTGGCGCACCAGTGCTCCGAGACCGGTGAGCCCTTGCCGGGTGTGCGGGCCGCGAGGCTCACGGTCGACCGGTTCGAGCTCTACCTCGAGGAACCCGAGCACCTCCCGGCGCCCTGGCGCTACCTCGGCGACGGCTCCATCTGGGCTCTCGACGCAGGCACGACACTCGCCGCGGACTCGGCGTCCACCTCGGTCCCGGCCCCGTACCCGGCACTCGTCACCGTCGGTCACGACGACAGTGCCGGCCACATCTTCCTCAACCTCGAACGCATCGGGGCGCTCGGTGTCACCGGTACCGAAGAGAACGCACGCGCGATCGTCGCGGCCCTGACCCTCGAACTGGCCACGTCGGTGTGGGCGGACGACCTCCAGGTCACCGTCGTGGGCTGGTTCGCCGACGTCGAAGGCGTCCTGCGCAGCGGCCGGATCCGGTGGGTCCCGACCATCGACCGCCTGCTCGACCAGTTCGCCGAACGCGCCGAATCCGACCGCCAAGCGATCGCCGAGGCAGGCGTGCGCGACCTTGGTGCCGCTCGCTCCGCAGGCTTGGTGCCAGACGCCTGGACGCCGGAGATCGTCGTCGTCGCCGACTTCATGACCGAAGCGCAGAAGTCCAGTCTCGCGGCGCTCACTGCTCAGACGCCGAAGGTCGCCGTCGCAGCCATCACTAGCGGCGTGAGCGTCGGGCAGTGGGCGATCCGAACGTCGCCCGGGGAGTCACGCGCGACCCTCGACCCCATCGCCATGCCGCTCACACCGCAACGCCTGGCCCTCGACCAGTACGACGACCTCCTGGGGCTCGTCGCACTCGCCGACCCGGCGGGCTTGGTCGGCGACGGTGATCCAGAACCGTCCGTCGCGCAGGTCGAGACCGTGGAACCAGTTCCGGAGCCTGAGCTCGATGCGGACGACGGCGAGCCCGGCGGACATGACGAGGCACCGACCACGCCGAGTGCACCGCGGCTTCTCGTCCTCGGGCCTGTCGACCTCGTCGGTGCTACCGGGACGGTCGAGGACTCCCGGAAGGCGCGACTGCTCGAACTGGCCGCCTACCTCGTGCTGCACCCGAACGCGACCGCCCCCGCGATCGACGATGCCATCTGGCCCGACCGCAGAACCGAGGACAACCTCAACACCCGCAACACCGCGACGTCGAAGCTGCGCCGGTGGGTCGGGCAGGACGAGTCCGGTCAGGACTTCCTCCCGCGTCACGCCGCCGGCGGCGGGTACGGGTTCACCACCGACGTCACGAGCGACGTCGGCGACTGGGACGCCTTGCTGGGCGGAGACCCGCTGAACGCCTCGACCGAGAATTTGGAGGCAGCTCTCGAACTCGTGCGCGGCACTCCCTTCGAGGGCACGCACCGCAGGCGCTACGCATGGTCGGAGCCGATCCGTCAACGCCTCGTGTCGGAGATCGTCGATGCCTCGTACGCCCTCACCAAGCGCCGGCTCATGGAGGGTCACTGGCGCGCCGCCGAGGCCGCTGTCAGTGTCGGCCTCCTGGTCGACCCCGCCCAGGAAGCCCTGTGGCGGCTGCGCATCCTCGCCGCCCACGAATCCCGCAACCCAGCCGCCGAGGCTGAAGCCATCGACCGCCTGCTGGCCATCACCGAAGAGCTCGAAGTCGACCTCGAACCCGAGACCGAACAACTCCTCGCCGAGCTCAAGAACCCCGGCCAGCCGACCAAGACCCGCCTTCGTGCCCTGTGA	MNARRRLLGLAALVAILAIIIGLPVVLFAVGANPFADDFSWGDLTRPDDGSLALAAIKVIAWIAWAALTVSLLVEIVARVRGIHPPRLPGLALPQGWAQGLVGAAVALFAAAGSTAVVTSPAHAVPVVTVEPDVVAADADRAATDVAARPQEQTEDGDAPATVAYTVQPNDSLWSIAEKRLGDGHRFTELVALNADLLGGKADFLKPGWVLTLPAPPEPPAAPAGDRRTVTVQPGDSLSSIAAAELGDPDRYREIFDASTNITQPDGARLADPDLIQPGWTLVIPAVRDAEEDAGPGAAPATPEPAETPAAEMPTAEPEASETVDTAPRPERGPGALSALPGEAPTPPAAAQNPRDVGAAETAASGGVDEPDSVDAWKVATGSGIGTILAAGAIAVVARRRGAQQRRRRPGQTIPMPEGSAASLEQELRTAADEFAVQRVDDALRGLAHQCSETGEPLPGVRAARLTVDRFELYLEEPEHLPAPWRYLGDGSIWALDAGTTLAADSASTSVPAPYPALVTVGHDDSAGHIFLNLERIGALGVTGTEENARAIVAALTLELATSVWADDLQVTVVGWFADVEGVLRSGRIRWVPTIDRLLDQFAERAESDRQAIAEAGVRDLGAARSAGLVPDAWTPEIVVVADFMTEAQKSSLAALTAQTPKVAVAAITSGVSVGQWAIRTSPGESRATLDPIAMPLTPQRLALDQYDDLLGLVALADPAGLVGDGDPEPSVAQVETVEPVPEPELDADDGEPGGHDEAPTTPSAPRLLVLGPVDLVGATGTVEDSRKARLLELAAYLVLHPNATAPAIDDAIWPDRRTEDNLNTRNTATSKLRRWVGQDESGQDFLPRHAAGGGYGFTTDVTSDVGDWDALLGGDPLNASTENLEAALELVRGTPFEGTHRRRYAWSEPIRQRLVSEIVDASYALTKRRLMEGHWRAAEAAVSVGLLVDPAQEALWRLRILAAHESRNPAAEAEAIDRLLAITEELEVDLEPETEQLLAELKNPGQPTKTRLRAL				NA	NA	NA	NA	NA
AK001_00911	453			hypothetical protein	ATGCGCCCCCTCCCCGTGCTCATCTCGCCCTGGTCCCCCCGTCAGGAGGCCGAGCGCGGATCCATGTCCGCGTGGGCGGCCGTCACGACGCTCGCGATGCTGCTCTTCGTCGGTATCGGCGTCGACTTCGGAGGCCAGCTCCAGACCATCCAGAACACCCGCGCAGTCGCCGCCGAGGCCGCCCGCATCGGCGGGCAACAGCTCAACGCTCCCCTCGCGATCCGCGGGCAGGGCACCGAGGCCTCCCCGGCCGCAGCACGGGCCGCCGCCGCGGCCTACATCGAGGGTGCCGGGCTGACCGGGTCCGCTTCGATCATCGAGGGGCACATCGTCGTCGACACGAGCGCCACCTACCGGACGAAGATCCTGTCCCTGGTCGGCATCGATAGCCTGCCAGCGAGCGGGCACGCCAGCGCCCGGATCGCACGCGCCGTCGAAGGGGTCGAACAGTGA	MRPLPVLISPWSPRQEAERGSMSAWAAVTTLAMLLFVGIGVDFGGQLQTIQNTRAVAAEAARIGGQQLNAPLAIRGQGTEASPAAARAAAAAYIEGAGLTGSASIIEGHIVVDTSATYRTKILSLVGIDSLPASGHASARIARAVEGVEQ				NA	NA	NA	NA	NA
AK001_00912	462			hypothetical protein	ATGAGGACGGCGCCGCGCCATGCGCGACGACGGCACACCCGGTCGGTCGATGACCGTGAGCGGGGCTCGACGAGCCTCGAGCTCGCCGTGCTCGCCCCCGCGCTGCTCGTGCTGCTCGCCCTCATCGTGGTGGCGGGCAGAGTGGCCGTCGCGCACCAGGCGGTCGATGGCGCGGCGGCGCAGGCTGCCCGTGCCGCGTCACTAGAACGCACCCCGGGGGCGGCCGCCGACCGCGCGCACGCCGTCGCCGACGCGACCCTCGACAACTCCAGACTGCACTGCACCGGTACCTCGGTCTCGGTCGACACAGGCGGTTTCGCTTCGGCGGTCGGAACGCCGGCCAGCGTCTCGGCGACCGTGGCGTGCACCGTCGACCTCGCCGGGCTGCCCGTGCCCGGCGTCGGGCCGCGGACCATCACCAAGACCGCGTCCAGCGCCCTCGACACCTACCGGGAGAGGTGA	MRTAPRHARRRHTRSVDDRERGSTSLELAVLAPALLVLLALIVVAGRVAVAHQAVDGAAAQAARAASLERTPGAAADRAHAVADATLDNSRLHCTGTSVSVDTGGFASAVGTPASVSATVACTVDLAGLPVPGVGPRTITKTASSALDTYRER				NA	NA	NA	NA	NA
AK001_00913	321			hypothetical protein	ATGCCCGTAGTGCTGACCCTGTTCTTCCTCGGGCTCCAGGCAGCACTGCTGTACATGGGGCGCACGGCGGCACTCGCCGCAGCCCAGGAGGGGGTGCAGGTCGCCGCGGGGGAGACCGGGACCATCGCCGGGGGGATCGCAGCAGCCCAAGGGCTCGCTGAGGCCTCGGTCATGGTCCTGGAATCGACGTCCGTCACCGGCTCCAGGACCGCGACGGAGGCGCACCTGACCGTCTCGGTCCGGGTCGCCTCGCTCGTGCCGGGGTGGCAGCCGAACGTCACGGCCTCCGCCGCGATGCCCGTGGAGGAGGTGACCGGATGA	MPVVLTLFFLGLQAALLYMGRTAALAAAQEGVQVAAGETGTIAGGIAAAQGLAEASVMVLESTSVTGSRTATEAHLTVSVRVASLVPGWQPNVTASAAMPVEEVTG				NA	NA	NA	NA	NA
AK001_00914	204			hypothetical protein	ATGAGCAAGTTCATCGCCACCGTCTACCTGTTCGGCCTCGACGTCGCCGACGGCGTCAAACGCCGGATCGGCCCCGACGAACGCGAGCGCGGCTCGGTGAGCATCGAGCAGGTCGTCATCACGGCCGCCCTGCTCATCGCCGCCGTCGCGTTGGTCGCGATCATCGGCAATGCGATCAGCAACCGGGCTGCCGAAATCAGCTGA	MSKFIATVYLFGLDVADGVKRRIGPDERERGSVSIEQVVITAALLIAAVALVAIIGNAISNRAAEIS				NA	NA	NA	NA	NA
AK001_00915	912			hypothetical protein	ATGACGACGGGACTGCAGATCGCACTGGCCGGCGGCGCCCTGGTGGGACTCGGCGTCGCGCTGCTCCTGTGGCGCCTGGCGCCCGCGCGGCCCGACGCCGCGGACGTCGTGCGGCGCTACTCCCCGCAGGGCGTCCGTGATCGCGAGGCCACCGTAAGCGCCGCCATGAGCACCACGAGCGCGACAGAACGCCTCGGCGTCTGGGCCCTGCGCACCGTCCCCGCCCCTTGGTGGGGCCGAACACCGACGCGTGAGCTCGCCCTGCTGCAGATCCCGCTGCATCGCCACTACGGCAGCAAGATCCTCTACGCGCTCATCGGGCTCATGATCCCGCCCGTCGGGGTTTACGTGCTGTCCGTCGTCGGGATCACCCTGCCGATCGCCGTGCCCGCGGCCGGATCGCTCCTGGCCGCCGCGGTGCTGTTCTGGCTCCCTGACTTCAATGCCCGCGACGACGCCCGCAAAGCACGGGCGGAGTTCAACCGGGCGCTGGGCGCCTATATCGACCTCGTCGCACTCGAACGCCTCGGCGGATCAGGCAGCCGCGAGGCCATGGAACTGGCCGCGAAGGTCGGCGACAACTGGGTCTTCCGCCGGATCAGCGAGGAGCTCGCCCGTTCGCGATGGTCCGGCGTCGCCCCGTGGGACGCCCTGCACGTGCTTGCTGACGAGCTCGGCCTGCCCGACCTGGCCGACCTCGGCGACGTCATGCGCCTGACCAGCGAGGGCTCACAGGTCTACGACCAGCTCAGAGCCCGGTCCGAGTCGGTGCGAGCCGCGATGCTCGCGGCCGAGCTGTCCAAGGCCAACGCCGCCGGCGAACGCATGACACTGCCGATGTCGCTGCTGTCCGTGGTGTTCCTCGTGATCCTCGTCGTTCCCGCGCTCCTGCAACTGACAGGAGGCGCGTAA	MTTGLQIALAGGALVGLGVALLLWRLAPARPDAADVVRRYSPQGVRDREATVSAAMSTTSATERLGVWALRTVPAPWWGRTPTRELALLQIPLHRHYGSKILYALIGLMIPPVGVYVLSVVGITLPIAVPAAGSLLAAAVLFWLPDFNARDDARKARAEFNRALGAYIDLVALERLGGSGSREAMELAAKVGDNWVFRRISEELARSRWSGVAPWDALHVLADELGLPDLADLGDVMRLTSEGSQVYDQLRARSESVRAAMLAAELSKANAAGERMTLPMSLLSVVFLVILVVPALLQLTGGA				NA	NA	NA	NA	NA
AK001_00916	906			hypothetical protein	ATGCCGTTGCTCATCCCCGCCCTCGGCGGCGCACTCATCGTCGCCGGAATGATCGGCGTCATCGTGGGCCTGACCCCGCGATCTCCCGCCGACCCAGCGCCGCGGCCCGCACGCCCCTCGCCGCTGGCGGCCCGATGGCGGCGGCTCACCAAGCGCACCAAGGTGCTGCTCGCCGTCGGCCTCGCCGCAGGCGTCGTCGCGTGGCTCATCACCGGGTGGGCGATCGCCATCGTCCTCGGCCCCCTGGCCGTCGCAGGGCTCCCTGCACTCCTGTCTGCCCCGGGCACCGACGAGCAGATCGCCAAACTGGAGGGCCTCGAAGAGTGGACACGGGGGCTCGCGAGCGTGCTGACCGTCGGTGTCGGGCTCGAAGAAGCCATCCGAGCCACCCTGCGATCGGCCCCCGAGGCGATCCGGCCCGAGGTGACTGCGTTGGTCGCCCGGCTGCGTGCCCGCATGGGCACCGAGGCCGCGCTGCGGGCCTTCGCCGACGATCTGGACGACACCACCGGCGACATGGTCGCCGCGTTCCTCATCCTCGGCGCCCGCAAGCGTGGCCAGGGCTTGGCCGACGTGCTCACCTCGCTCGCCGAGTCCGTGTCGTCGGACGTCCGTGCGCGGCGCGCCATCGAGGCCGATCGCGCCAAGCCCCGCACCACCGCCCGCTGGGTCACACTCATCACCATCGCGGTGCTCGCCTACCTGCTGATCTTCACCGGCGAGTACGTCGCTCCCTACGGCACGGCTCTGGGCCAGCTGCTGCTCACCCTCCTGCTCAGCATCTACGTCCTGCTGCTGTGGTGGATGCGCCAGATGGCCAAGGGCGAGAGGCTGCCCCGGTTCCTGGGCCTGTCAGGCCTCGCCGGGACAGAGTCCCGGACGATCGCAGGGGCAGGTGCGCGATGA	MPLLIPALGGALIVAGMIGVIVGLTPRSPADPAPRPARPSPLAARWRRLTKRTKVLLAVGLAAGVVAWLITGWAIAIVLGPLAVAGLPALLSAPGTDEQIAKLEGLEEWTRGLASVLTVGVGLEEAIRATLRSAPEAIRPEVTALVARLRARMGTEAALRAFADDLDDTTGDMVAAFLILGARKRGQGLADVLTSLAESVSSDVRARRAIEADRAKPRTTARWVTLITIAVLAYLLIFTGEYVAPYGTALGQLLLTLLLSIYVLLLWWMRQMAKGERLPRFLGLSGLAGTESRTIAGAGAR	PGPT0022290_2134	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510	NA	NA
AK001_00917	1584			hypothetical protein	GTGAACGAGTTCCTCGAAGGCGCGACATCCGACGGTGCCGACGACCCGACGAACCTGCCGATCTTCGGCGTCCGGCCGAGAGACACCACCGATCCGCCAGTTGCGGCTCCGCCCATGCAGCCCGCGGCGCACTCGCTCGCCGGACGACTCGGAGTGCCGAGTGCGCCCGTGCCCGAGGAAGCAGGCTCCGAGACACGGCATGTGGCGGACCCGACGTCGGAGGCTCAAGCGCCGTCGGGCAGCCTCGACTGGCAGCTCGTCGCCGAGCTGCGAACCCAGGCCTCGGACCTCCTGATGGCGTCCCTGGGCGACGAGCGCGGCCAGGACGTCGAGGCCGAGCGTGAGCGCGGTCGGGCGATCATCCACGAGCTGCTCGCCACCACCGCCGCCGACCGGATCCACGACGGCGAGCCCGCATGGAGCCTGGAGGTTCAGGCGCGGCTGGCCGAGGCCGTCTACAACGCGCTGTTCGGCCTCGGGCGGTTGCAGCCCTACGTGGACGACGACTCGGTGGAGAACATCATCATCACCGGGGCCGACACGGTGTTCCTGGAGAAGACCGACGGCGACCTCGTGCGCGTCGAACCGGTCGCGGAATCGAACGCCGAGCTGCTGGAGTTCCTCCAGTTCGTCGCCGCTCGCCAGGAGTCAACCGCCCGGTCGTTCTCCGCGGCGTCCCCGACGATGCACATGCGCCTGGACGGTGGGCCCCGCCTGGCGGCGGCCGCGTGGATCACCGCGTTCCCCGTCGTCGTCATCCGTCGCCACCGCCTCGTGCGTGTGACGCTCGACGATCTCGTCGCCCGAGACATGCTCACCCCGGTCCAGGCGTCGCTGCTGTCGGCGGCGGTTAAGGCGGGTCTGTCGATCGTCGTCGCCGGCCCGCAGGGAGCGGGCAAGACGACTATGGTCCGCGGCCTGTGCGCCGAGATCCCCCAGCACGAGAAGCTCGGCACCTTTGAGACCGAGTACGAGCTGCACCTGCACGATCTCAGGGACGTCCACCCCATCGTCGTCCCGTTCGAGGCGCGCCCCGGCTCGGGCGAGGTCGGCCCCGACGGCAAACGGGCGGGGGAGTACACCCTCGACGAGGCGCTCTACGACTCGTTCCGCATGGCCCTCTCTCGGCAGATCGTCGGCGAGGTTCGCGGCTCGGAGGTCTGGGCGATGCTGAAGGCGATGGAGTCCGGCGCCGGGTCGATCTCCACCACGCACGCCGCCGACGGCGAAGCGGCGATCCGCAAGCTCGTCACCTGCGGGATGGAGGCCGGTCAGGCGAAGGACGTCGTCACCGCGAAGCTGGCCGAGGCGATCGACCTCGTCGTCCAGGTCCACCTGGAGACCACCGAGGTCGGCCCGAACGAGTGGCATCGGACCCGGTGGGTGTCCGAGATCCTTCACGTGACACCGGGCGAGGAAGCCAAGGGCTACGCGACCACGCGTGTCTACGTGCCGAATCCCGACGGCGGACCGGCCCTGCCCGGAACCTTGCCCGACGAGCTGCGACGTCTCGAACGCCACGGGTTCGACCTGGCCGGGTACATCGCCTCCGCACCCGGCGCGACGCAAGCGGGGGCCGCCTGA	MNEFLEGATSDGADDPTNLPIFGVRPRDTTDPPVAAPPMQPAAHSLAGRLGVPSAPVPEEAGSETRHVADPTSEAQAPSGSLDWQLVAELRTQASDLLMASLGDERGQDVEAERERGRAIIHELLATTAADRIHDGEPAWSLEVQARLAEAVYNALFGLGRLQPYVDDDSVENIIITGADTVFLEKTDGDLVRVEPVAESNAELLEFLQFVAARQESTARSFSAASPTMHMRLDGGPRLAAAAWITAFPVVVIRRHRLVRVTLDDLVARDMLTPVQASLLSAAVKAGLSIVVAGPQGAGKTTMVRGLCAEIPQHEKLGTFETEYELHLHDLRDVHPIVVPFEARPGSGEVGPDGKRAGEYTLDEALYDSFRMALSRQIVGEVRGSEVWAMLKAMESGAGSISTTHAADGEAAIRKLVTCGMEAGQAKDVVTAKLAEAIDLVVQVHLETTEVGPNEWHRTRWVSEILHVTPGEEAKGYATTRVYVPNPDGGPALPGTLPDELRRLERHGFDLAGYIASAPGATQAGAA	PGPT0016025_336	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283	NA	NA
AK001_00918	795			hypothetical protein	ATGGCCCTGATCGCGCTCACCTCAGCCAACGGCTCTCCAGGGGTCACGACGACGGCGCTCGGCCTCGCCCTGTCCTGGCCGCGGCCGGTAGTACTCGTCGATGCCGACCCGACCGGGACGCGAGCCGTCCCCGCCGGGTACCTGCGCGGCGGTGAGCTGCCGACGACTCGCACTGTCGTCGACCTCGCCGTCTCCCTGCGGGCTGGCACCCTCGTCGCCGACCTTCCGAAGTCGGTCTTCGCCCTGCCCGACTCGCAGGTGCAGGTGCTGGCCGGCCCTCTCAACCACCTGCAATCCCAGGTGCTCGGACCCTTGTGGGAGCCGCTGGCGGCCGCCTTGAAGGCTCTGGAAGGCAACGGCCAGGACGTCATCATCGACGTCGGCCGCCTCGGCCTGGACGGCAGCCCCACCCCGCTGCTCACCGCCGGGGATCTCGCGCTCCTGGTCACGCGATCGAGTCTGCCCGCACTCGTCGGGGCGTCCTCCTGGGCACCGACGGTCCGCGAATGGTTCGAGCGGTCTGGTGCGGGCGCCAGCCTGGGGGCCCTCGTCGTCGGACCGGGTCGTCCCTATGGCGAACGCGACGCCGCCAAGGTGCTCGGCATGCCCGTGGCCGCATCGCTGGCGTGGGACCCCGAGTCGGCGTCCGTCTACTCCGACGGCGCCACACCGGGGCGCAAGTTCCAGACCGGAGCGCTGGCCAAGTCGCTGCGCGCCGCAGTCCAAGGGCTCGGCTCCACGCTCGCGGCCGTACGCACCGATCTCGGCCTGGCCGTCGAAGGGAGCTGGTCGTGA	MALIALTSANGSPGVTTTALGLALSWPRPVVLVDADPTGTRAVPAGYLRGGELPTTRTVVDLAVSLRAGTLVADLPKSVFALPDSQVQVLAGPLNHLQSQVLGPLWEPLAAALKALEGNGQDVIIDVGRLGLDGSPTPLLTAGDLALLVTRSSLPALVGASSWAPTVREWFERSGAGASLGALVVGPGRPYGERDAAKVLGMPVAASLAWDPESASVYSDGATPGRKFQTGALAKSLRAAVQGLGSTLAAVRTDLGLAVEGSWS				NA	NA	NA	NA	NA
AK001_00919	693			hypothetical protein	ATGACGACAACGACACAACAGCGCTCCACCGACGCCAGTGCCAGCGTCGCCAGCGAGCCTGGGGCCGACCAGATCGCCCCGCCGCCGAAGTATCGGCGGCGCCCGCTTCTCGTCATCGCTTCGATGGCCGCCGTGGCGCTGGGTGCCCTGGCGTCCGTGTGGGCCTATCAGGGTGCGTCGGAGGCTCAGGACGTGCTCGCCGTGCGCACGACGGTGGAGCGCGGGCAGGTCATCGAGTCCGACGACCTCATGACGGTGCCCATGACGGTCGACCCAGCCCTGCACCCGCTCCCGGCCTCGCAGCGCGACACGGTCGTCGGACAGCGAGCCGCCTTCGACCTCGTCGCCGGGGGAGTCGTCACCGCGGACCAGGTCGCCGAGACGGCGCTACCCGCCGCAGGGATGTCCGTCGTCGGCCTCAACCTCACTGCCTCCGCACTGCCCGCGGACCAGGTACGCGTCGGAGACCGAGTCCGCGTCATCCTCACCTCCGATCCGGTGACGGGCACCGGCTCGACGCCGGAAGGTCCAGCGGCGATCGACGCGGAGATCACCGGTTCCGGGATCGATGACGCCTCGGGCAACACGATCCTCAATGTCCAGGTCGCCCACGACGACGCCCCACTCGTCGCCGACAAGGCCGCGGCGGGCCAGGTTGCTGTGGTCCTCGACGAGCCGGGCGACCAGGAGTGA	MTTTTQQRSTDASASVASEPGADQIAPPPKYRRRPLLVIASMAAVALGALASVWAYQGASEAQDVLAVRTTVERGQVIESDDLMTVPMTVDPALHPLPASQRDTVVGQRAAFDLVAGGVVTADQVAETALPAAGMSVVGLNLTASALPADQVRVGDRVRVILTSDPVTGTGSTPEGPAAIDAEITGSGIDDASGNTILNVQVAHDDAPLVADKAAAGQVAVVLDEPGDQE				NA	NA	NA	NA	NA
AK001_00920	753			hypothetical protein	ATGGGCTACGACGGCAACGAGCAGGCCTGGGGTCCCGACACTCGTCGAGACGCAACACGGGTGAGCCGGCCGCCGCAGGTGTCGCACGGCGACGGCGGGCCGCCCGCCAACGATCCGTTCAGCAGGTCCGGCGGACTGGGGCCGTTCGCGAAGGCCAAGGGCGGCGGTTGGGCGCGCGCAGATGCGATGTTCCCGATCCACCATGACCCTGGCGTCTTCTCCTGGATGGACGCCGACGTCGCCACCCGCGCCGCGGCGATGCAGCGCCTGGACAGGTTCGTCGAGTGGCTGTGCGCCACCTTCGCATTCGGTGAGGTCATCACCCCGTGCTGGAGCCTGCACCCCGCGATCGTTCAAGAGCTGTGGGCGCTGGAGCGCTATCACCGTCTCGCCCACGACGACGGCGCGAACCTCGCCGAGCCCGTCCGCTGGCTCAACCAGCTCGCCTCGACCCGCACCCGACTCGGCGCCGAGTGGAGGGCGCGGGCCTGCGACTACCAGCACGTCGAGCCCATCGCCGAGGCCGACAGCCGCATCGCAGAGCGTCGCGGCTACTACCTCGCCGACTACTGGCCCGACGGAGAGATCCCGCTCGAGGACCCGCCCGGCGGGTTCGCCTGGCAGCGCTGGTCGTGGCCCGACGCCGACGAGTCCGGCGCCGAGATCACTCCGCCCGACCACGTCGGGACCGACAGAGCCCGCAGTCGCCAAGCAAGTGGTGCGCAGAACGGCAGGCGAGGGGGTCCGGCATGA	MGYDGNEQAWGPDTRRDATRVSRPPQVSHGDGGPPANDPFSRSGGLGPFAKAKGGGWARADAMFPIHHDPGVFSWMDADVATRAAAMQRLDRFVEWLCATFAFGEVITPCWSLHPAIVQELWALERYHRLAHDDGANLAEPVRWLNQLASTRTRLGAEWRARACDYQHVEPIAEADSRIAERRGYYLADYWPDGEIPLEDPPGGFAWQRWSWPDADESGAEITPPDHVGTDRARSRQASGAQNGRRGGPA				NA	NA	NA	NA	NA
AK001_00921	1986			hypothetical protein	GTGAGCCAGGAGTACGTACCGCAGCGCCGTGAGCGCTCCGACCGGCTCGGTGGCGCCGCGGCCACGCTGTTCGGCCGCCCCGACGACGGGGACTCGGCAGGCGCGAGGGCCGAGGATCAGCAGCGCGGCCCAGCCTGGCTCGAGCGCGTCGAGCACCGACTCCGGACGACGAGGTACGCGTGGTGGCTGCGGCGGTACGGCAGTGCCTACCGGCGCTTGGCTGCGCTCAACGACGCCGAGGTCGCCCAGGCGCTCGGTATCGCGTGGCTCGCCTACGCGTGTGCGGCGGTGATCGCTGCGCTCGTTGTCGGCCCGTGGTCCATCGTCGTCGCCGTCCCGCTCGGCGTCGTCGGACTGGCGGCCACGGCCGGCGTGCTGGTCTGGTGGTTCGGGTACCGGCGCTCGGGGGCGCAGCTGCGCCATCAGATGCTCGCCCGCGACGGTCTCGCACGCGGCCGAGAGGTCGCCGAACAGGTAGGGGCGGTCGTCCATGTCGCCGCTGCCGAGACGGTTCGCCCGACGTACTCCGCCCAGGCGCAGACCGAGGGCCGCACAGTGAACCCCGATGACGTCGCGTTCTTGCTGGGCCACACCTACGGCGAGGAGGTCTGGGTCAGCCTGGAGCGGCCGGTCTATGTCCTCGGCCCGGCGCGGTCGGGAAAGGGCGTCGGCGTCGTCGTCCCGGCGATCCTCGCCGCGCCCGGTGCGTGCATCACGACGTCGACACGCACCGACAACCTCGAAGCCACCGCTCTCTGCCGGGCCGAGCGCGGCCCGGTCGAGGTGTTCAACCTCGAGGCGTCAGGCGGTCGCCCGCACACGATCCGGTGGAGCCCGCTGGAAGGCTGCGAGGTCCCGCGCATCGCGATGAAGCGCGCCAAGCTCCTGGTCGGCGCCTCCGGGCTGGGAGGGGACAACGCCGTGTGGGCCACGAGCGCGGGCGGCATCGTCATGGCTCTGCTGTACGCGGCGGCGATCTCGGGACGGACCATCGCCGACGTCTACCGGTGGTCCAAGAGCCCGGACGCCTGCAAGGAGGCCATGCAGGTACTCGAACGCGCCGCCCACCTGCCCGAGTACTGCTCGGCCTCGGGCGAGCAGGTCGACTGGCACACCACGATCCGCTACGTCATGGGCGAGGAAGTGCGGATGAAGGCGAACAAGTGGTTCGGCGTCGAGAACGCGTTCGTACCGCTCATGGACCCGCACGTACGCGACCGCCTCGCCATCCGGCTCACCGACGACGCCGGCCACCGCGTCCCGGGCACCTTCGACACCGAGGCGTTCCTGCGCAAGCGCGGCACCTGCTACATGATCTCGGCCGGCACCTCGACCACCGCAGAGACCTCCGGCACCGTCGGTACCTTCTACTCGCTGTTCCTCGACCACGTCACCGATATCGCCCACGAACTCGCCCAGCGCTCGCCGGGCGGACGCCTCGACCCGCCGTTGACACTGGTCCTGGACGAGCTCGCGAACATCCACCCCTGGCCGGGCGCCGCGCGGATGAGCTCGGCCGGCTCGGGGGAGGGCATCCAACTCGTCGCGGTCTTCCAGTCCCGCTCCCAGGGGCAGGACGCCTACGGCGACGACGTCGAGGAGACGATCTGGAACAACTGCCTCAACGTGCTGCTCCCAGGCGTCAAGGCACCCGAGGTGCTGTCTGCGCTCTCGCAGACCCTCGGGGCCGAGGACCGCTCCACCACCTCGGCGAGTTACAGCCTCCGTGAACCCTTCAGCCGCTCCTGGCAGACGCAGACCGCCCAGCAGGCCACGGTCGAGCCGGGCGAGATGCGCCGCCTACCCAAGGGTCACGCGCTCGTCATCGAAGCGGCGATGCGTCCGATGCTCGTCGACCTCATCCCGTACTGGCACGGGCCCCACGCCGAGGCCGTCGCCCGGAGCCGGGCCTGGTACGCAGAGCATCACGGGCGTGCCGTCCCGCTCGCGACCACGGCACGTCGCGAATCTGGCGAGGTGGCGTGA	MSQEYVPQRRERSDRLGGAAATLFGRPDDGDSAGARAEDQQRGPAWLERVEHRLRTTRYAWWLRRYGSAYRRLAALNDAEVAQALGIAWLAYACAAVIAALVVGPWSIVVAVPLGVVGLAATAGVLVWWFGYRRSGAQLRHQMLARDGLARGREVAEQVGAVVHVAAAETVRPTYSAQAQTEGRTVNPDDVAFLLGHTYGEEVWVSLERPVYVLGPARSGKGVGVVVPAILAAPGACITTSTRTDNLEATALCRAERGPVEVFNLEASGGRPHTIRWSPLEGCEVPRIAMKRAKLLVGASGLGGDNAVWATSAGGIVMALLYAAAISGRTIADVYRWSKSPDACKEAMQVLERAAHLPEYCSASGEQVDWHTTIRYVMGEEVRMKANKWFGVENAFVPLMDPHVRDRLAIRLTDDAGHRVPGTFDTEAFLRKRGTCYMISAGTSTTAETSGTVGTFYSLFLDHVTDIAHELAQRSPGGRLDPPLTLVLDELANIHPWPGAARMSSAGSGEGIQLVAVFQSRSQGQDAYGDDVEETIWNNCLNVLLPGVKAPEVLSALSQTLGAEDRSTTSASYSLREPFSRSWQTQTAQQATVEPGEMRRLPKGHALVIEAAMRPMLVDLIPYWHGPHAEAVARSRAWYAEHHGRAVPLATTARRESGEVA				NA	NA	NA	NA	NA
AK001_00922	594			hypothetical protein	ATGGACTTCTTTCGGGACGTTCTGGTGCAAGTGCTCGCAGCGGTTGTGGTGGCCAGCCTGGGCGCGCTGACCCTGCTCGCGTTCTGGGACAAGGTTCGACGTCGACTGCTTGTCGATCCGAATCGCGTGCCGCTGGTAGAGCTCGACAACGAGCAGCAGGTCGTGCGCAATATCGGCGAGGAGACGGCCGTCAATGGGCGGCTCTATCACGTGTTCGTGCCCAGCATCGTCCACCGTCGGGAGAAGGGCACCGTGCGCGTCTCGTTCGTGACATCTTTGCCCAACCTCATGAGCGGCGAGGAGAAGCCTGTCGAGGCGTCCATGCTCTGCGGGGTCGTGAACAAGGAGGTGTTCCTACTCCAGTACCAAAATGCTGCAGGGTCAGTGTTCCAAGCTGTCATTGAGCCCGTGTCACCGCGCGGAGACGCAGAGGTCCTCCATCCGCCGAGGCGGATCCGCTGGCGCGAGCGTCGGTTCATGCTCCCCTCCGATCCTGACCTGGCGAGCGATCTGAGGCTCGCGAGGCGGATCAAGGGAGACATTGGGGTGACGCAGATGCTCGTCGATGCAGCCGGCCTCGGCGCGAGCGACTGA	MDFFRDVLVQVLAAVVVASLGALTLLAFWDKVRRRLLVDPNRVPLVELDNEQQVVRNIGEETAVNGRLYHVFVPSIVHRREKGTVRVSFVTSLPNLMSGEEKPVEASMLCGVVNKEVFLLQYQNAAGSVFQAVIEPVSPRGDAEVLHPPRRIRWRERRFMLPSDPDLASDLRLARRIKGDIGVTQMLVDAAGLGASD				NA	NA	NA	NA	NA
AK001_00923	561			hypothetical protein	GTGACCCTGCAATCCCGCGAGGCGTACCAGGTGCTAGCCCGTGACGGCGTCCTGTGCGGCGCCCCGATGCCGGGGGATCCGGACTTCAGCTGGGCCTACGGCTGGATGGCCGAGCAGATGCGCCACCGACTTCCGACCACCGGCAACGGCATGCTCTGGGCCTGGGCTCGAACACCGCGTACCGCCGTCATCGAACAGGCTCGCCAAGCTCCGGGCTCCGTTCTGCTGACCCTCCGGGTCGCACGCGACCGGGTGCTGTTGTCGGACTACCTCGACTGGCACCAGGTGCTCAACCGGTGCCTCAACATCGCCCCGCTTCCCGGCGAGTCCGATGTTGAGTGGGAACGGCGATTCGACCTCGAGTGGGGCACGTGGGAAGAGCGCACCCGAGGCTTCGAACACATGCCGCTCGATCTGTGGCCGCTCGACCTGCGCGCCGAGATCGCAGCGTCGTGGGAGGCGATCTTCGACCTGGCCACGATCCCGTCCCACAGGTCCCTGCAGGCGACGGTGCACGAACTGACCGAGCAGGACGTCGTGCGGGCGGTTCGCATCAGCTGA	MTLQSREAYQVLARDGVLCGAPMPGDPDFSWAYGWMAEQMRHRLPTTGNGMLWAWARTPRTAVIEQARQAPGSVLLTLRVARDRVLLSDYLDWHQVLNRCLNIAPLPGESDVEWERRFDLEWGTWEERTRGFEHMPLDLWPLDLRAEIAASWEAIFDLATIPSHRSLQATVHELTEQDVVRAVRIS				NA	NA	NA	NA	NA
AK001_00925	723			hypothetical protein	GTGGTCCAGGACAAGGTTCTGCTCGAGAGCGGTCGGGTGGAGCGACGCCCCGATACCCAGACCGTCCAAGCTCTGGCGAACCGCGGCGCCAGTATCATCACCGTCGGGCAGCTGTGCACGGCATGCCTGGTGGGCGACTGGCCGGTGTCGATGTTCCGGCAGGCCCAGACCTTGTGCGACACGTGCTCGGCCTTGGACCGTGAGGTCACCAGAAGGTCCGGCTTGGCGGAGGGCACCCGCGCCGGACGCTTCCCCGGAAAGGCAGCGAGAATTGGTGGCCTGGACGACCTACACGACCCAGACTGGGAGCCCATCCGGCAGGCGCACGATTACCGGCGGGTGAAGTTGGCAGAGGTCTTTCTGCGCGCTCGTTCGCTTGACCTCGTCCAGCTCGAGGATCGGCGCCCCGGCCAGGCGCCGGTCGAGGTCATCCCGATCGACGTCCTGCGCCGCCACGGCCTGATCCCGGCGGGCATGCCCAGCCGAATCCGCAGGTTCACCGACTGGTTGCAGGCACTCGACCCGGCGGGATACCGACCGCGCTCTGCCACCCTGTCCGACGTAGACACCCTCAGTAACGTGCTGATCGCCCACGAGCGACAGCGGCAGCGCGTCCGGTCCCGCGCCGAGCTCGACCGAGCCGTCCGTGACGTCGCGCGCCTCCCCCGTGCGCTCGCAAACTCAGCAGCGGGGGTGATCGGGTCTTGGCGCTGCATCGGGTAA	MVQDKVLLESGRVERRPDTQTVQALANRGASIITVGQLCTACLVGDWPVSMFRQAQTLCDTCSALDREVTRRSGLAEGTRAGRFPGKAARIGGLDDLHDPDWEPIRQAHDYRRVKLAEVFLRARSLDLVQLEDRRPGQAPVEVIPIDVLRRHGLIPAGMPSRIRRFTDWLQALDPAGYRPRSATLSDVDTLSNVLIAHERQRQRVRSRAELDRAVRDVARLPRALANSAAGVIGSWRCIG				NA	NA	NA	NA	NA
AK001_00926	1674			hypothetical protein	ATGACCACGACGGCGGAACGCCACCAGGTTACCGAGCCCGCCGTCGACCCCGGCACGACGGCGCCGGACGCGCAGTGCTCGCGACCTTCCCGACGGCGGTGGGGTCGCAAGCGCACGACGGCGGACTCGACGTCGGGCAGGGAGCAACCCGCGGCGCAGCCCGAGAGCGCGCGTCCCAGCGTGCGACCGGGTGGGGTGTCGTCGGAATCTGGCGAGCGGACCTACGAGGTCACGGCCTTCGCCGGCACGGGCGACCGCGCCACCCGCAAGGCCGCCCGCCGTGCGGCAAAGGAGGCCCGCACACGACTCGCCCACGCCGACCTGCCGACGTCGAACGCCGACGCCCTGCCGAGGCTGTCCCGGCGCCGCGTGTGGGGACGACTGACCCGCGGCGGCATGTGGGGTCCGGCCGGGGTCGGGGTGCCGAGGCACGTTACGTCCGCGGCGCGGATCGGCGTGCTCACCCCGTTCGTCGCACCCGCGACGACGTCGGTCCCCGGGCCGGTCATCGGGATCGAGGCGACCAGCGGCCAGCCGTTCACCTTCGACCCGTGGGGTGCGGTGCAGAGCAAGCATGCGGCGTCCCCGGGCGTCGTCGCGTTCGGGCTGCAGGGCACCGGCAAGTCCTTCTGCGTCAAGACCGCCATGCTGCGCGAGATCGGCTGGGGCCGACAGGTCATCGCCTCCTCCGACCCCAAGGGGGAGTGGGTGCCGTTGGCCGGGGCGCTCGGCGGGCAGGTCGTCGCCGTCGGACCGGGCAGCGGCAACGTCATCAACCCGCTCGACGAGGGCACCCGCCCACCCGACGTCGACCCGGCCACATGGCGTGGGCTCGTCGGCTCCAGGCGATCGCTCGCCCTGGAATCGATCTGCACGACCCTCCGACCAAGCCGGGTGCTCGACGAGTTCGAACGCACCGTCCTGGACCGCGCCGTCGAAGCCATCTCTTCCGGCGCCGTGGCGGCGACCGTCGCGGCCGTCGTCGACTGGCTCGAGCAACCCCCGTCGACCCTGCGCGACGAGCTCGGCGACGCCGGCGCCGAGGCGCCGACGGCGCTCCGCCTCGTGCTCGGCCGCCTCCTCCGCGGGCCGCTGGCAGGCATGTTCGACGGCGACTCCACCGTGGAACTCGACCCGACGGCACCGATCACCGTCATCGACACCTCCGCCATCGTCGGCGCCGCGCCCGAGCTGCGGGCGATCGCCCAGGCCGCGACCTCCGCGTGGATCGACGCGACCCTGCGCTCGGGGGACGGCCGCTGGAGGTGCGTGGTGTCCGAGGAGGGCTGGGACGAGCTGCGCAACCGCGCCCAGGCGCAGGCGATGGACGAGCGACTGCGCATGACGAGCCAGTGGCGGTGCTCCAACTGGCTGATCTTCCACGAGCTCGCCGACATCACCCAGTTCGGCGAGGCAGGTTCAGCGCACCGCAACCAGGTCAAGGGCATCATCACCAAGTCGGCGATCAAGATCCTCTACAACCAGTCCGCCGCCTCGATGGCGCTGCTCGACGAGATCGTGCGTCCCACCCAGGCCGAGGCTGGCCTGCTCGCCTCCCTGCCGCAGGGCGTCGGTGTCTGGCACATCGGTGAGACAACCCCGGTCCTCGTTGCCCCTGTCGCTGGTCCCACCGCGTACAACCTGATCAACACCAGCGCCGGGCGCGAGGGCTGA	MTTTAERHQVTEPAVDPGTTAPDAQCSRPSRRRWGRKRTTADSTSGREQPAAQPESARPSVRPGGVSSESGERTYEVTAFAGTGDRATRKAARRAAKEARTRLAHADLPTSNADALPRLSRRRVWGRLTRGGMWGPAGVGVPRHVTSAARIGVLTPFVAPATTSVPGPVIGIEATSGQPFTFDPWGAVQSKHAASPGVVAFGLQGTGKSFCVKTAMLREIGWGRQVIASSDPKGEWVPLAGALGGQVVAVGPGSGNVINPLDEGTRPPDVDPATWRGLVGSRRSLALESICTTLRPSRVLDEFERTVLDRAVEAISSGAVAATVAAVVDWLEQPPSTLRDELGDAGAEAPTALRLVLGRLLRGPLAGMFDGDSTVELDPTAPITVIDTSAIVGAAPELRAIAQAATSAWIDATLRSGDGRWRCVVSEEGWDELRNRAQAQAMDERLRMTSQWRCSNWLIFHELADITQFGEAGSAHRNQVKGIITKSAIKILYNQSAASMALLDEIVRPTQAEAGLLASLPQGVGVWHIGETTPVLVAPVAGPTAYNLINTSAGREG				NA	NA	NA	NA	NA
AK001_00927	1494			hypothetical protein	ATGACCCGGACCAGCGATCGCACTACGGAGGACCTCGTGCCGTCGGCGTCGTTCGCGCCGCTGTCACGCTCGGGCGTGATGCTCGGGCTGTCCGGACCGCAGCTCGCACTCGTCGCGATCGCGATCGCCCGGCCGATGTGGCAGCTCACCGTCGGCAAGGATCTGCCAGGAGCCATGTGGTCGCTCGCGTGGTGGACGACGCCGATCGCGGTTGTCGCCGTGGGCTCCTGGGGTGGGCGATCGTTCCTCGAGCGGCTCACCACCGTGGGCCTGTTCACCCTACGCAGGGTGTTCCGCCAGACCTCGACGGTCGTCAAGGTCAACGCCGCCCACGTCGAGGGGCGTATCGCGATCCCTGGCGCAGCGGGGGAGCGGCTGCACTCGTTCGCGCTGGTCGGTGTCGAGTACGGCCAGGGAGCGGCGTTCGCGTGGGACGCCGTCGCGCAGACCGCGACCGCAGCCCTGCGGTTTACCACCGACGCGTGGGACCTCGCGGACGACCAGGTCAAGGCCGCCCGGGCGGCCGCCGTCGGCGACCTGTGTCAGAGGCTCACCACGGCCGACGGCGTGCAGCGCGTCGCCGTGTATGCCCGCTCGTACCCGGGAGCGGACACCCGCCTTCCGGACCCGCGCATTCCAACCTCGACGGCGGCCGGAGCGCTGCTCGCCGACGAGCATGCCGAATTCCTCGCCACGCCCGCCGTCGGGCAGATCCTGCACCGCGACGTCGTCGTGACGGTCACCCTCGCCGCAGGCGCTGTCTCCCGGGATGTCGATGCCGCGGGCGGTGGGATCACCGGCGTCTCTCACGTGTTGGCCGACCGGGTCCAGCAGGTCGCGGCCGGGCTGCCCGCCTGCGGCGTGCGCGTCGAGGACGCGACCTGGATGAACGAGGCCCAGATGCGCGGGGCCATCCGCCTGGCCTACGACCCCGACGCCGCACCGTGGCTCGCAGAGCAGGACTGGCAGCTCCCGCCCGATGCCTTGCTCGCCCAGGTCGTCACCGAACGCCTCGACCACCTGGTCACCGACTCCGCCGTGCACCGGTGCTGGTGGGTGGAGCGGATGCCGGCCCTGCCCGCCCGGGCCGGAATCCTCGCCCCGCTCATCAGCGGCGGGCGGATACCACACACAGTCACCCAGGTGTGGGAAGCCGTGGACGTGCACCGCGCCGAGAAGCGCCTCAACAACGCCGAGGCCTCGCGCGCGACCGCCGAGAAGGTCAACGAGTTCCTCGGCCGGCCCACTACGACCACGCACACCGCCGAGGGCAAGGAGCTCGCCAAGCGCCGCGCCGAGCTCGAGCTCGGCTATGGCGACGTGCGCTACTCCGCCTGGATCACCGTCCACGCCCCGTCACTGGACGAGCTGGAACGCTCCGACCTGTGGGTCGCCGCCTCGACGCCCGGGATGAAGGTCAAGCTCCTGCGCGGCGACCAGTGGGCCGCGTTCAACACTGCCGTCCTGCCGCTCGGGATCGGAGCTCGCGCATGA	MTRTSDRTTEDLVPSASFAPLSRSGVMLGLSGPQLALVAIAIARPMWQLTVGKDLPGAMWSLAWWTTPIAVVAVGSWGGRSFLERLTTVGLFTLRRVFRQTSTVVKVNAAHVEGRIAIPGAAGERLHSFALVGVEYGQGAAFAWDAVAQTATAALRFTTDAWDLADDQVKAARAAAVGDLCQRLTTADGVQRVAVYARSYPGADTRLPDPRIPTSTAAGALLADEHAEFLATPAVGQILHRDVVVTVTLAAGAVSRDVDAAGGGITGVSHVLADRVQQVAAGLPACGVRVEDATWMNEAQMRGAIRLAYDPDAAPWLAEQDWQLPPDALLAQVVTERLDHLVTDSAVHRCWWVERMPALPARAGILAPLISGGRIPHTVTQVWEAVDVHRAEKRLNNAEASRATAEKVNEFLGRPTTTTHTAEGKELAKRRAELELGYGDVRYSAWITVHAPSLDELERSDLWVAASTPGMKVKLLRGDQWAAFNTAVLPLGIGARA				NA	NA	NA	NA	NA
AK001_00928	1956			hypothetical protein	ATGATCCCCGCCGTCGTCGCCGTGGCCACCCTGACCAGCGGATCGTGGTGGAACCCGCTGGACTGGGAGGGCTTCGTCGACGGGATCATCGAGGGCATGGGCGATGCCCTGGTCTGGCTGCTCAACCTCGCGTTCAACAACCCGCTGACGGTCATCTCGGCCTCGGAGTGGCAGGCCGCGTTCGGCCAGGCGGCCAAGTGGGGCGGGGTGTTCGCCGTCGTCGCCGTGGCGATGTGTGCGGTGGAGATCATCGCGGGGATGATCTCCTCCGACCACGGCCGCATCCTGCGCGGTTGGGTGTGGGCGATCCTCGCCTGGCCCCTGACGGCTGCGAGCCTACTGGTCTACTCCCGGCTGGTGAACGCCTCGGACTGGCTGACCACCGGGATCCTCAACTCGATCACCGCGCCCGAGGTTGTCGCCGGGTCTGCCGCCGTCACCGGGGCGACGTCGGCCGCGACGACGGCGATGGTGTCGATGCTGCTCGGGGTGGGGACTCTGTCGACGTGGTGGCTCGCGCTCATCTTCGTCGGACTCGCATTGCTGCCCGTGATCGGCTTGGTGATCGTGCTCGGCATCGTGACCTTCGGGCAGATCGCCCTGGCCGCGTTCGCACCGGTCGCGCTGATGCTCATCGGTTTCCGCGGCACCCGGGCGATGTCGAGCAAGTGGCTGCAGATGGCCGTCGCGCTGCTGCTGACCAAACCCATCGCGGCGGGCATCGTCGCACTGGGATGCGCACTCGGCTCCGAGGGCGGAGCGGACGGCCTCATCCTCGGGATCATCGCGGTCACCATGGCTGTGGGATCGCCGGCGCTGGCGTTCTCGTTCGTCGGGTTCGCTGGAGCGCAGCTCGGCGGGGCGATGACCGCGCACGCGGACAAGCTCAAGGGGCTGACGAGCTCGATGACGCATGCCGGTGCGAACCAGGGGATGGCCGCGCTGCGCGAGCGACTCGGAGGCTCGGCCAAGGCCGCTGCCGCGACCGTAGGAGCAGGATCAGCGGGAGCCGACGGCGTGGACTTCGGTGGTTCCGGGCCGACGCCAGCGCCCGGCGCGGGTTCGCCGCGCCCGACGGCGAGCGATCCTCACTCGAACACGGCCAACACGGCCAAGGGCCACGGTCAGGGGCGCGGCGCTGGGCAGCGTGTGGCAACCGGTTCGGGCAAGGGCTCGGGCGAGTCCGGCAGGGGCGCCGCTCGTGGTTCAGCCGATCCGACAAACGGCGGCAGCGCCACCCGCGGACAGGAAAACCAGGTCGGCGGTGGGGCAAGCACCGCCGACCCGGCAGCGGCAGGTTCTCACGACGTCGCTGGACCGAGCGTGGCCGACACCGGCTATGACGGGGCAGGGCTCGATCCTGCCGGCGTCCCGGCTCAGAACGGCTGGCCCGACGGCACCGTTCCGGCGGTCGGTGACGGTCAGGAGAGCGGTGATGCGTCTCGCCTCGCGGGAACTGTCGGCGATTCTGCCGAGCCTCTTGCGGGACAGGCCGGCAGCAGCGAGACGACCGGACAACCTGCCGACCCAGCCGGGGCGGCAAGTGCACCGACATCCGCCGCGAGGGGTGCCGCTTCAGCCTTCGATGGTGGCGGTTCACCGGCGCTGTCCGGCGAGTCTGGCACTGCGGCGTCGGCTGGACGCAACGACACAACGTCCAGTGCCAGCCGTCCCGCTGGCGGCACGACCCCTCGTCGGCAGGGGGCAGGAGATGCCGAGGCGACGGCCTCGGGACCGGGCTCCTCGCAGACCAGGACCGAGCCTGGTCCCACAACTGCCGGACCATCAGCACCGTCCGGCCAAGCGTCCACACCCCCAACCCCTGCCTACGAGCAGCCGGACGAACCCGAGCGCCCGGGCCGACCGCCGTCGGGCACCCCCAAGACGCCGGATCCCGCGCCGCCCGCTGAGCCGGAGACCGAGTCCGGGCCCAACCCGTTCGGAGGCGACCGATGA	MIPAVVAVATLTSGSWWNPLDWEGFVDGIIEGMGDALVWLLNLAFNNPLTVISASEWQAAFGQAAKWGGVFAVVAVAMCAVEIIAGMISSDHGRILRGWVWAILAWPLTAASLLVYSRLVNASDWLTTGILNSITAPEVVAGSAAVTGATSAATTAMVSMLLGVGTLSTWWLALIFVGLALLPVIGLVIVLGIVTFGQIALAAFAPVALMLIGFRGTRAMSSKWLQMAVALLLTKPIAAGIVALGCALGSEGGADGLILGIIAVTMAVGSPALAFSFVGFAGAQLGGAMTAHADKLKGLTSSMTHAGANQGMAALRERLGGSAKAAAATVGAGSAGADGVDFGGSGPTPAPGAGSPRPTASDPHSNTANTAKGHGQGRGAGQRVATGSGKGSGESGRGAARGSADPTNGGSATRGQENQVGGGASTADPAAAGSHDVAGPSVADTGYDGAGLDPAGVPAQNGWPDGTVPAVGDGQESGDASRLAGTVGDSAEPLAGQAGSSETTGQPADPAGAASAPTSAARGAASAFDGGGSPALSGESGTAASAGRNDTTSSASRPAGGTTPRRQGAGDAEATASGPGSSQTRTEPGPTTAGPSAPSGQASTPPTPAYEQPDEPERPGRPPSGTPKTPDPAPPAEPETESGPNPFGGDR				NA	NA	NA	NA	NA
AK001_00929	324			hypothetical protein	ATGGTCCTTCCCAGTCACACTCCCGGCATCGCGGCCGCCGACGGCGACGACGTCGACCTCGGCGTCGAGCTCGACTTCGACGCGTTCCCCTTCATGGCCCAGCTCCAGGAGTGGGCGGGCGGCATCCAGGCGGTCTGCCTCATCGTGCTGGGCATCTTGTTTGTCGTCGCGATCGTCGCGTGGATCGCCGGCAAGGCCTCGGCCAGCCAGCAGGTGCAGCGCGTCTCGGTCGGTGCCCTCATCGTCTGCGCGATCGGCGCGGCCCTCACCGGCGCGGCATTCGCGATCACCGGGTACTTCGCGGGCTTCGACCTCGGGTTCTGA	MVLPSHTPGIAAADGDDVDLGVELDFDAFPFMAQLQEWAGGIQAVCLIVLGILFVVAIVAWIAGKASASQQVQRVSVGALIVCAIGAALTGAAFAITGYFAGFDLGF				NA	NA	NA	NA	NA
AK001_00930	588			hypothetical protein	GTGACCGACGTCGGGCGTGCAGCGGCGTTCGCCGAGCGGATCGTCTGCGAAGTGCGGCCGAGCTGGCGGCCGATCGCGGCCCTCGCCGTCGTCGCCGTCGTCTGGGCGGTGTGGCTGACCGGACCAGGACGGGCGGCGACTCCCGCGTTTGTTGTCGCCGCGCTGGCGGGGGCGGCTCTGGGCGTGATCGACGTGCGAGACCAGCGCCTCCCGGACGTGATCGTCTACCCGGCCATGTGCGCATGCGCGGCACTGCTGGTGGCGGCCGCCGTGGTGACAGGGGCGTGGGAGAACCTCGCTCGCGCGGGCCTGGGCGCCGCCGCGCTCGGCATCGTGTACCTCGTGCTGAGCCGTATCGGTCCCCGGGGGCTCGGCCTCGGAGACGTCAAGCTCGCCGTGCTCCTGGGGATGCTCGCCGGCTGGCAGGGCTGGCAGGCCGTCCTCTGGACGGGAGTGCTGCCGTTCATGCTCGGCGGCCTCGCGGCTGCCATCCTGCTCGTCACCCGTCGAGCGACCCGCCAGACGATGCTCCCGTTCGGTCCTCTCATGCTCGTGGGCGCGGCCGTCGCGATGACGTGGGTGCGATAG	MTDVGRAAAFAERIVCEVRPSWRPIAALAVVAVVWAVWLTGPGRAATPAFVVAALAGAALGVIDVRDQRLPDVIVYPAMCACAALLVAAAVVTGAWENLARAGLGAAALGIVYLVLSRIGPRGLGLGDVKLAVLLGMLAGWQGWQAVLWTGVLPFMLGGLAAAILLVTRRATRQTMLPFGPLMLVGAAVAMTWVR	PGPT0015925_2623	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654	NA	NA
AK001_00931	372			hypothetical protein	ATGACGATCACCTGGAAACGAACCGCCGACGGCGACGACACGGTGACGATCCCGGTCCTCGACTTCGGCTGGCTGGACGGCGCCGGCACCGGAGCGGCTGGGACGACGCTGCGTGAGATCGCGGGCGGCGTGCTCGCCGTCGGGCTGCTCCTGTGCGCGATCGTGTTCGTCATCGGCGTGGCCTTCTGGGTCGCCGCCCGGGCCTCGGGCGGAACGTTCGGTGGCCAGAACTCCTCGTTATTCGCCGGCGGCGCCGGGGCAGCGCTGCTGGGAATGGTCCTGCTCGGCTCCTTGGTGGGCGCGACCGGCTGGGGCGCGGATACGGTCGGCCAGTGGGTGACAACGATCCTGCCGATCGAGTTCGGCGGTTGA	MTITWKRTADGDDTVTIPVLDFGWLDGAGTGAAGTTLREIAGGVLAVGLLLCAIVFVIGVAFWVAARASGGTFGGQNSSLFAGGAGAALLGMVLLGSLVGATGWGADTVGQWVTTILPIEFGG				NA	NA	NA	NA	NA
AK001_00932	492			hypothetical protein	ATGGCCGCCGAGGCCGGTGACGCCGGACGAGTGGGTGACGGCGATGCCGCAGACCCCGCCGTCGGCCCCGCCGAGCTCACGGACGCGGATCTCGCGGCCGCGCGAGGCTGGCTCACGGCCGCCCTGGCCTGGCGGGAGGGCGAGGCCGCCCTCGGGCCCTGGGGCCGTGCGGTCGAACGGGCGAACGCCGAGTGGGCGCACCCCGACGTGCAGGTGACGGTCGTTCCCTCGACCGCGCTCGAGGCGATCGCTTCGGACGCGACGGTCCACGGCGCGCTGCCTCGCGTCGTCGAGCTCGTCGACGAGACCGACCCGGAGTGGGCTGCACGCGGTGAGGTCACGCTGCGCGCCGACGTCGTGTTCGGCGCCGACAGCGGCTGGACCCGGCCGGGTCTGCGGCTGCTCGTCGGCCTCGAGATCGCAGACGGCGAGGTGACGGCCGTGTTCATCGACGACGGGTACGTCGTCTCCGATCCGGAGCTCCTGCCATGA	MAAEAGDAGRVGDGDAADPAVGPAELTDADLAAARGWLTAALAWREGEAALGPWGRAVERANAEWAHPDVQVTVVPSTALEAIASDATVHGALPRVVELVDETDPEWAARGEVTLRADVVFGADSGWTRPGLRLLVGLEIADGEVTAVFIDDGYVVSDPELLP				NA	NA	NA	NA	NA
AK001_00933	1041			hypothetical protein	GTGGCAGGAGCATTGGCGGCAGGAGCGGCGCGGGGCTTGGCCATCCGCGCTGCGCGCAGCCGTCGGGGTCGGCGTATCGCGGTCGCGGTCATCGTGGCCGTGGTCGCCGCCGTCGTCGCGCCGTTGGCCGCCATCGTCCTGCTGATCGCGGTCGTTGTCACCGCGGTAACCGGCACTGCCGATACCGGCACGATGCAGGTCGCCGACGGTGGCACGGTGTCGTACACCGTGGACGGCTCGACGTTCGTCGACAACGACCCGTCCGCGAACGCGTGGGGCGGCTACGCCAACGGCCGCATCCCCGCCTCGGAGCTGTGCCCAGTGCCGGCCGCGCCTGGTCATCAGGCCCGCTGCGACGCCTCGGAAGCGTTCGGCGACCTCACGGCAGCCTTCAAACAGGAGTCCGGGCACGACATCGCCGTGACGGACGCCTACCGCTCCTATTCCGAGCAGGTGTGGACGAAGGCATCGAAGGGGTTCCTGGCGGCGACGCCGGGATACTCGAACCACGGCTGGGGGCTCGCGTTCGACCTCGGCAGCGAGATCAACGACTACGGCAGCGCGTCGTACGCGTGGATGAAGGCCAACGGCTACCGGTTCGGGTTCTTCCACCCCACGTGGGCCGAGCCCGACTCGCCGGACTTCAGCAAGGCCGAGCCGTGGCACTGGCAGTTCGTCCCCTCGGCGTTGCAAGTGCAGCGGCAGGCGACCACGGGCGCCTCGGACGGCACACCCGACGGCAACCGCGCACTGGGTCGCTCGATGGCCGCCACCCAGGGCTGGACGGGCTCGCAGTGGGGGTGCCTGGAGAAGCTGTGGACCGCCGAGTCGGGCTGGAACCACCGCGCCGCGAACCCGACCTCGAGCGCGTACGGCATCCCGCAGTCCCTACCCGGGAAGAAGATGGCGGCCGCCGGCGCCGACTGGCGCACCAACCCGGCCACCCAGATCGCCTGGGGCCTGGACTACATCGCCGACCGCTACGGCACCCCGTGCCAGGCGTGGGCCTTCTGGAACAGCCACGCCCCGCACTGGTACTGA	MAGALAAGAARGLAIRAARSRRGRRIAVAVIVAVVAAVVAPLAAIVLLIAVVVTAVTGTADTGTMQVADGGTVSYTVDGSTFVDNDPSANAWGGYANGRIPASELCPVPAAPGHQARCDASEAFGDLTAAFKQESGHDIAVTDAYRSYSEQVWTKASKGFLAATPGYSNHGWGLAFDLGSEINDYGSASYAWMKANGYRFGFFHPTWAEPDSPDFSKAEPWHWQFVPSALQVQRQATTGASDGTPDGNRALGRSMAATQGWTGSQWGCLEKLWTAESGWNHRAANPTSSAYGIPQSLPGKKMAAAGADWRTNPATQIAWGLDYIADRYGTPCQAWAFWNSHAPHWY	PGPT0024055_190	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_00934	906			hypothetical protein	ATGTCGGTACCCTCTGCGAACCTGTCAGCCGTGACGGACTACGGCCTCGACGCAACTGACCCTCTGTACGCCTCGGGCAAGCGGGAGAGTGGAACGTCTTGGACGGTCCTCAACGGCGACAGCAAGGAGGTTGCTACGACGCTTGCACCTAGCTCGATCAACTGCGTCATCACCAGTCCGCCCTACTACTGGCAGCGTGATTATGAGGTAGATGGCCAGTTCGGGCTAGAGCCCACCATCGACGGCTACGTAGAGAACCTGCGCGATACGTTCGCCGCCATCAAGCCAGCACTGACCGACGACGGCGTTGCCTTCTTGAACCTCGGCGACACCTACTACAACGCCAAGGGCCGACCCCACGGCAAGGACGACAAGCACCGTAGCCGCCGCCTGCCCGGTCTCCGAGCGGTGGATGGTCCGGGGCTTGGCCTGCCTCGGAAGTCTCTCATCGGCATCCCGTGGCGCGTAGCTCTGGCGATGCAGGAGGACGGTTGGACGCTGCGTAGCACCATCATCTGGGTGCGGAAGACCGCAGTGCCCGAGCCGACGAGCAAGGACCGCCCGTGGCGGAAGTACGAGCACATCTTTCTGTTCTCGAAGTCGCCCCGGTACTTCTTCAACCGCGAGGGGCTCGAGGGCGAGGAGGACGTCTGGTTCATCGAACCCGACCGCCGATCCCTCGCCCGCGGCACGCACTACGCGCCCTACCCACGCAAGCTCGTTGAGCGGTGCGTCGCTGCTGGGTGCCCAGAGGGCGGCACCGTCCTCGACCCCTTCGTCGGCGGAGGAACCACAATGTATGTTGCCGACGAGATGAACCGATCCTCGGTGGGGATTGAGCTCAACCCGGACTTTTGCTCGCTGATCTCGGAGAACATGGAGAAGCTCGGCGAGACAGGTCAGTAG	MSVPSANLSAVTDYGLDATDPLYASGKRESGTSWTVLNGDSKEVATTLAPSSINCVITSPPYYWQRDYEVDGQFGLEPTIDGYVENLRDTFAAIKPALTDDGVAFLNLGDTYYNAKGRPHGKDDKHRSRRLPGLRAVDGPGLGLPRKSLIGIPWRVALAMQEDGWTLRSTIIWVRKTAVPEPTSKDRPWRKYEHIFLFSKSPRYFFNREGLEGEEDVWFIEPDRRSLARGTHYAPYPRKLVERCVAAGCPEGGTVLDPFVGGGTTMYVADEMNRSSVGIELNPDFCSLISENMEKLGETGQ	PGPT0027220_10	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0027220-EC_2_1_1_113-K00590	NA	NA
AK001_00935	1701			hypothetical protein	ATGGTCACCCTGCCCGCGCTGCTCCGCGAAGCGAAGCGGCGGGGAGTCGACCCCACTGCCGTCCAAGTCCCGTACGGTGGCGGCGACGAGAAGCAGTACCTCGAGGACTTCTACAAGTTGTCCGGCGCTCCGGACCCCGATCGTCCCTATCGCGCGATCTGGGCCACGGACTACCCGTGGCAGACGGAGAAGTTTGCCGGCGGCGGGCTCCAGCGGCAGCGCACCATGCGCTCGGGTCGCGGCAAGGTACTGGTGCAGCGAAAGGCCGATCCGAAGAATGGCCGGGCGCGGGACGAATGGGGACTGACTCCGACCGCCGGCGCGGACCTGATGTCCGAGTCTGGCATGGTGCGGGTTCGCCTAATTGACCTGGCGCTCTGGGCCGGCCGGGACGTCGACACCGCAGCGATCGCCCCTGCGGTCCTCAGCGCCGCAGGACTCGGGTCCGACGCGGAGGAGATCGACAAGATCAACGCCTGGTTCCTGCACGAGTTTGAGCCCAAGCGCGGCGACCTGGTCGGGACGGTCTTCAGCGACGAGATCCCGGCCGACTACCGAAGTATCGCGTTCTCCGCAGACCCCGTCTCCAATGAGACCTACCAGCAACTCGGAGTGCTGCCTCCTGCACCGACGGTCACGGATCCGCTGTCGACCGTCGTCATGAACCTGGAGAAGCGAATCGCGGCAAAGGGCTTCCAGCTCCCGCCTGGCCTAGTCGAACGAGTGCTCACCGCTTGGCTCCGAGGCGACCTGGTCGTGCTCGTCGGCCAGCCCGGGACCGGGAAGACGATGTTCGCCACCCTGCTGGGAAGCGCAATGGAGCAGGAGTTTGACCTCGACGCGCCGCTGCTGATCCCCGTGAGGGCGGACTTTGACGAGGCGGAACTGATCGGTTACGAGCGTCTCGACGGCACGGTCCATCTCCAGGACTTCGCACGTGAGGTCCTCCTCGACGACGCGCCCCTCGAGGCTCGGGTCGTGATCTTCGAGGAGTTCAACCTCGCCTCGGTCGAGACTTACATGTCCGCCGTTCTCGTCGCCACCCAGGAGCGCGAGCGGATCGTTCGCCTTCCGGACGGAGCGGTGAGGAACCTGCCTATCGACACGTTCGTCATCGCGACGTGCAACTCCTTCCGCGACGAGCCCGAAACTCGCACCCGGGTGAGTTCGCCGACGAAGCGCCGGTCGACCACGATCACCATGCCGAACGTGCTCGGAGACCGCTACGAGTTTGACCCGTCGACCGCCGTGGCCAGCGTCGTGCAGACGATGATCGCAAATGAGCGGGAGCGCGTCGAGGACCGGGCGAGCGCCGGTCGCGCGTCGCAGTTCGACTCACTCAGGCTCACCGCGCTCCGCTCCGTCTCGGACATCGGCGATTTCAGCCAGGAGGCGCAGAAGGCGCTCGTGGACGTGGCTAACGCCGTCCTCGAGACCACGAGCGGCCGTTCATGGTTCACGCTCGGGATCCTACGAGACGTCGTCATGGCCCTCGTCATGTCGGAGCGGCACGCGGCATCGGAGCTAGCCGCCCTGGGGAACGCGGTCGCCGACAAGATCGTGCACCAACTGCGGGGGTCGCACTCCGACGCCCAGCCGCTGCTCGCAGCATCGGCCGCGCTGCCTAACGCGGAGGAGATCGGCCGCCTCATCGACCAGACCATGTCTGGTCCCTCGGACGAGCTCCTACCTCTGCTCTGA	MVTLPALLREAKRRGVDPTAVQVPYGGGDEKQYLEDFYKLSGAPDPDRPYRAIWATDYPWQTEKFAGGGLQRQRTMRSGRGKVLVQRKADPKNGRARDEWGLTPTAGADLMSESGMVRVRLIDLALWAGRDVDTAAIAPAVLSAAGLGSDAEEIDKINAWFLHEFEPKRGDLVGTVFSDEIPADYRSIAFSADPVSNETYQQLGVLPPAPTVTDPLSTVVMNLEKRIAAKGFQLPPGLVERVLTAWLRGDLVVLVGQPGTGKTMFATLLGSAMEQEFDLDAPLLIPVRADFDEAELIGYERLDGTVHLQDFAREVLLDDAPLEARVVIFEEFNLASVETYMSAVLVATQERERIVRLPDGAVRNLPIDTFVIATCNSFRDEPETRTRVSSPTKRRSTTITMPNVLGDRYEFDPSTAVASVVQTMIANERERVEDRASAGRASQFDSLRLTALRSVSDIGDFSQEAQKALVDVANAVLETTSGRSWFTLGILRDVVMALVMSERHAASELAALGNAVADKIVHQLRGSHSDAQPLLAASAALPNAEEIGRLIDQTMSGPSDELLPLL				NA	NA	NA	NA	NA
AK001_00936	876			hypothetical protein	GTGCTGACGGTGGCCGGCAAGGAGTACAACCCGACACGCGTGGTGGCGCGCCGACGCCGGCGCACGGTCGACACCGTGGCCAACCGTCGCGCAGTGCACCTGCTCGGCCTCATCCACCATCTTCTGTCCGAACTACTGCGATCTGATCTTCCTTCGGGGCTGCGAGCACGCTGCCGTCTCTGGAGGGAGAGGGTCGGGCGGCTGTCAGCACAGCCCCTCGCAGTCGCTCTCAGGACGAAACCGAGCGCCCTGGCCGCCCCGCGCCATGGTCCGGAGTACACCGATCACAGCTACATCCGGCTCTTCGACATCTCCAGGGCCCTTGATCAGTTTGGGTGGTCGGTAAGTGCGAACCCGGCGCGCCGCTACAGCTACATCGAGAGCGCGGACAGGATCTACCAGGTCTACGCCGCGCACCGGGTCGCGTCGGTGCTCGGACTCGCCCAGGCGCCGGGCCCGTTCGGGTCCAGCCCGCTCGCGTTCACGGGCGCGGACTTCGACATCTATTACGACACCGTGCCGCCTGCAGAGGTCATCGCCTCGTGGAGAACCCGGACCTCGGTGCCGGACGCGTCAAAGCCTGACCTTCTCCTGCACGAGAGGGCGACCGGCCGGGTCGCGGTCCTCGACGCGAAGTACAGAGTCGGCAACGACGGCCACGCCTCCGAGGACAGCCGGAAGGACGTCGCCGCCTACCAGAGCCTCTACGGCCTGTCCTCCGTTGCGATCCTCTACCCAGGCGTGGAGAACGAGGCGAGGGTCATCGAAGCCCACGGACAAAGCGTGATCGAGATCCCCGTCGCAGGCCCGGACGACGGCCTTGAGGAGGCCATGGCCCACGTCCTGGCTCGTCTGGAGTCGCCCCCGTACGCGTAG	MLTVAGKEYNPTRVVARRRRRTVDTVANRRAVHLLGLIHHLLSELLRSDLPSGLRARCRLWRERVGRLSAQPLAVALRTKPSALAAPRHGPEYTDHSYIRLFDISRALDQFGWSVSANPARRYSYIESADRIYQVYAAHRVASVLGLAQAPGPFGSSPLAFTGADFDIYYDTVPPAEVIASWRTRTSVPDASKPDLLLHERATGRVAVLDAKYRVGNDGHASEDSRKDVAAYQSLYGLSSVAILYPGVENEARVIEAHGQSVIEIPVAGPDDGLEEAMAHVLARLESPPYA				NA	NA	NA	NA	NA
AK001_00937	144			hypothetical protein	ATGCAAGACTCCTCGACGCCGCACATGGTCTTCGGCGTCGGGGTGTTCCGCAACCCGCCGGTGGGGCTGCATGAGGGCGACGAGGTCGCCGTCGAGATCGAGGGCATCGGCCGGCTCGCCAACCGTGTCCGCCTCGTGCCCTGA	MQDSSTPHMVFGVGVFRNPPVGLHEGDEVAVEIEGIGRLANRVRLVP				NA	NA	NA	NA	NA
AK001_00938	270	xecE		2-(S)-hydroxypropyl-CoM dehydrogenase	GTGGACCTGGGGGCGGACGGCATCCGCTGCAACGCGGTCGCCCCGGGGTGGATCTCCTCCGACCTCAGCGAGACGTACCTGGACTCCATGCCCGACCCCGCGGCCGCGCGCCGGTCGCTGGACGGGCTGCACCCCGTGGGCCGGACCGGGCGGAGCACCGACATCGGCGACCTCGTCGTCTTCCTCGCCGGTACACGCTCGGCCTTCATCACCGGGGCGGTGATGGTCGCCGACGGCGGCCGGACGGCGCGGCTGCCGCAGCCGCACTGA	MDLGADGIRCNAVAPGWISSDLSETYLDSMPDPAAARRSLDGLHPVGRTGRSTDIGDLVVFLAGTRSAFITGAVMVADGGRTARLPQPH	PGPT0008190_883	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008190-budC-K18009	NA	NA
AK001_00939	834			hypothetical protein	ATGGTGCAGACTCCGAAGATCGACCCCGCCAAGGTGAAGGACTCCACCGCGGAGGTCGCGGCCGCGCTCGTCGGCGCGGGCGCCCGCGCCGCGGACAGCGCCAAGGATGCCGCCGGTCAGGCCAAGGACTGGGCCGGACCTCGTGCCGACGCCTTCCTCGAGTGGCTCCGGCCTCGCGTCGAGAAGGCATGGAACGACAGCGTCCAGGCTGCGGCACCCCGCGTGGAGGACGCGGCCGGCAAGGCCGGACCCCTCATCGACACCGCCCACGACAAGCTCGTCGACGACTATCTCCCGCAGCTCGTCACCGCCTTCAACGCGGCGGCCGCCAAGGCTGCGGCCACCGCCGACGAGGCCAGCAAGGCCGCGAAGCAGGCGGCGAAGTCCGCCGAGAAGTCGGCACGCAAGGCCCAGCGCCGGTCCAGCCGCCGCAAGGCGTTCGGCTGGACCGTGGTCATCGGTGGCCTGACCGCCGTCGGGTACGCGTTCTACCGCCGGGCCCAGCCGCAGAACGACCCCTGGGCCGAGCCGTGGGAGCAGTCCTCGACGCCGGACTTCGACGGCGTCGCGCGCGACGCACGGCACGCCGTCGGTGACGCGGCCGAGGCGGTCGGCGAGGCCGCCGGCTCCGCCGTCGCCAAGGGCAAGGAGGCCGTCTCCGAGGCGCGCGAGAAGGCGTCCTCGCGGACCGCGAAGTCGCGCCAGAAGGCGGGCGAGGCGGCCGAGGAGACCGGTGACGCCGCCGAGAAGGCCGGCGAGGCGGCGGCGGACGCTGCCGAGGACGCCAAGAACTCGGCCGGCCAGGCCTCCCCGGCCGACGACAAGAAGGAGTAG	MVQTPKIDPAKVKDSTAEVAAALVGAGARAADSAKDAAGQAKDWAGPRADAFLEWLRPRVEKAWNDSVQAAAPRVEDAAGKAGPLIDTAHDKLVDDYLPQLVTAFNAAAAKAAATADEASKAAKQAAKSAEKSARKAQRRSSRRKAFGWTVVIGGLTAVGYAFYRRAQPQNDPWAEPWEQSSTPDFDGVARDARHAVGDAAEAVGEAAGSAVAKGKEAVSEAREKASSRTAKSRQKAGEAAEETGDAAEKAGEAAADAAEDAKNSAGQASPADDKKE				NA	NA	NA	NA	NA
AK001_00940	552	cypB		Peptidyl-prolyl cis-trans isomerase B	ATGATGGGTCCCATGTTCGCAACCCTCCACACCTCCGCCGGTGACATCCGCCTCGAACTGCTGCCGAACCACGCGCCGAAGACCGTCGCGAACTTCGTCGGTCTCGCCCGGGGCACGACGACGTGGACCGACCCGCGGACGGGCGCCGAGCGCAACGACCCGCTCTACGACGGCGTCATCTTCCACCGTGTCATCGAGAACTTCATGATCCAGGGCGGCGACCCCCTGGGCACCGGCACCGGCGGCCCCGGCTACACCTTCGACGACGAGATCCACCCGGAGCTGTCGTTCGACCGCAAGTACCTGCTCGCCATGGCCAACGCCGGCAAGCGCCGCAACCCCGTGACCGGCGCGGTCGAGGGCACCAACGGCTCCCAGTTCTTCATCACCACCGCCGAGACGCCGTGGCTCAACGGCAAGCACACCATCTTCGGCGAGGTGGCCGACGACGAGTCCCGCGCGGTGGTCGACGCCGTCAACTCCACCGCGACGCGTCCCGGCGACCGTCCTGTCGAGGACGTCGTCATCCAGAGCGTGACGATCGAGGACTGA	MMGPMFATLHTSAGDIRLELLPNHAPKTVANFVGLARGTTTWTDPRTGAERNDPLYDGVIFHRVIENFMIQGGDPLGTGTGGPGYTFDDEIHPELSFDRKYLLAMANAGKRRNPVTGAVEGTNGSQFFITTAETPWLNGKHTIFGEVADDESRAVVDAVNSTATRPGDRPVEDVVIQSVTIED	PGPT0015110_2107	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767	NA	NA
AK001_00941	816	glpG		Rhomboid protease GlpG	GTGTCGTACGTGCGCTGCCAGCGCTGCGGCCGTCCGGCCTGCCCGGAGTGCCAGCGCCCGGCCGCGGTCGGCGTCCAGTGCGTCGACTGCGTGGCCAGCGCGCAGCGCAGCACGCGCAGCGCCCGGACGGTCTTCGGGGCCACGGTGCGGGGCGGCCGGCCGGTCGTCACGCTGACGATCATCGGGCTGTGCGCGGTGAGCTGGATCCTGCAGCTCGCCACCGGCGGCGCCTGGACCCAGGAGTGGGCGTTCTCCCCCGCCACCGGTCAGGTGGAGCCGTGGCGGTTCCTCACCGCGGCGTTCCTGCACTCCACGACCCCGCTGCACATCCTGTTCAACATGTACGCGCTGTGGCTCGTGGGACCGTTCCTCGAGCAGGCGTTCGGGCGCGGTCGCTTCATCGCGCTGTACGTGCTGGCCGCCGTCGGCGGGCAGGTGGGCGTGCTGCTGCTCGCGGACCCGACGCAGGACAGCTGGTTCATCGGGGTGGTCGGCGCCTCCGGGGCCGTCTTCGGCCTCTTCGGCGCGATCATCCCCGTGCTGCGACGGCTGGGGAAGAACGCCGGGCAGATCGTCGTGCTCATCGTCATCAACATGGCCCTGCCGCTGTTCGTGCCGAACATCGCGTGGCAGGCGCACCTCGGCGGCCTCGCCGTCGGTCTGGTCATCGGCGCCGGGTACGCGCTGGCCCCGCGCGAGCGGCAGCGCCTCGTGGGCTGGGCGCTGCCGACCGCCGTCGGCGTGGTGCTGGTCGCCGCGGCGACCTGGAAGTACTCCACGGTGCCGACGGTGGCCGGGCTGCTGGGGCTGTTCTGA	MSYVRCQRCGRPACPECQRPAAVGVQCVDCVASAQRSTRSARTVFGATVRGGRPVVTLTIIGLCAVSWILQLATGGAWTQEWAFSPATGQVEPWRFLTAAFLHSTTPLHILFNMYALWLVGPFLEQAFGRGRFIALYVLAAVGGQVGVLLLADPTQDSWFIGVVGASGAVFGLFGAIIPVLRRLGKNAGQIVVLIVINMALPLFVPNIAWQAHLGGLAVGLVIGAGYALAPRERQRLVGWALPTAVGVVLVAAATWKYSTVPTVAGLLGLF				NA	NA	NA	NA	NA
AK001_00942	258	crgA		Cell division protein CrgA	GTGTCCGAGAAGTCCGAGAAGCCCCAGAAGAAGTCCGCCGCCTCGGAGCCGGCGCTGCCGCAGAAGTCCTCGGCCAACCCGCGCTGGCTCGTGCCGACGATGCTGACGCTCATGCTCGCGGGCCTCGCCTGGATCGTCACCTACTACCTGACGAGCCAGAACCTCGGCCTGCCGGTGCCGGCGCTGGGCAACTGGAACCTGCTCGTCGGCTTCGTCCTCATCATCGCCGGGTTCTCGCTGACCACGCGCTGGAAGTGA	MSEKSEKPQKKSAASEPALPQKSSANPRWLVPTMLTLMLAGLAWIVTYYLTSQNLGLPVPALGNWNLLVGFVLIIAGFSLTTRWK				NA	NA	NA	NA	NA
AK001_00943	732			hypothetical protein	GTGTCATCTCGCATCCGATCCGGGATCACCGTCGCGGTCGTCCTCGCGCTGTCCGGGGTGCTCTTCACCGTCAGCGCGCAGCTCAGCAGCGGCGACGAGAGCCGCCACGCGGAGGACCTGTCCGCGCTCGTCGCCGAGGAGGCCGACCGCGTCGACGCGCTCACCGAGCAGGTGGCCGCCCTCGACGCCGAGATCCAGGCGCTGAGCGAGGCGGTCCCCGGAGACGTGCCGCGCCGCTCCGCCGAGCTGCGGTCGGAGGAGGGCGTCGTCTCCGGCGCCTGGCCGGTCGAGGGCCCCGGGATGCGGGTCGCCCTCGAGGACGCGCCGTCGTCGTCCCTGTCCATCGAGAACGTCACGGCCGACGACCTCGTCGTCCACCAGCAGGACGTGCAGCACGTCATCAACGCCCTGTGGGCGGGCGGCGCCGAGGCGATGACGCTCCAGGGCGAACGGGTGACGCCGACCAGCGCCTTCCGCTGCTCGGGGAACATCATGCTGCTGCACGGCAAGGTGTTCTCCCCGCCGTACGTCGTCGAGGCCGTGGGTGACCCGGACCGCCTGCAGGCCGCCCTCGACTCCTCGCCCGGCGTGGCCATCTATCAGGACTACGTGGACTGGATCGACCTCGGGTACGCGGCCGAGCCGCTCGACCGCATCGAGATCCCCGCGGCGTCCGGCGGTCAGGACGTGCAGTTCGCCGACGTGCCCGACGGCACGGACGTGTTCTCGTGA	MSSRIRSGITVAVVLALSGVLFTVSAQLSSGDESRHAEDLSALVAEEADRVDALTEQVAALDAEIQALSEAVPGDVPRRSAELRSEEGVVSGAWPVEGPGMRVALEDAPSSSLSIENVTADDLVVHQQDVQHVINALWAGGAEAMTLQGERVTPTSAFRCSGNIMLLHGKVFSPPYVVEAVGDPDRLQAALDSSPGVAIYQDYVDWIDLGYAAEPLDRIEIPAASGGQDVQFADVPDGTDVFS				NA	NA	NA	NA	NA
AK001_00944	816	srtE1	COG3764	Sortase SrtE1	GTGAGGCACGCGCACGCCGACGCCGGCCGTCGCGGCGGCGGCGCGGTCAGCGCGACGATCGGCGTCGTCGGCGAGCTGCTCATCACGGCCGGTGTCGTGCTCGGTCTGTTCGTCGTGTGGCAGCTGTGGTGGACGGACGTCCAGGCCGAGCGCATCCACAGCCAGGTGCTCGCCGAGCTGGACTGGCCCGAGCCCCCCGTCGAGGTGCCGTCCGGCAGCTCCGTCGAGGGGCCCGCCGTGGCGGGCGAGCACCGTGACGAGCCGCCCGCCGTCGACGACGCGGCCTTCGCCGAGGTCTTCGCACAGTTCTACGTCCCCCGGTTCGGCGCCGACTACGTCGAGCCGATCGCCGAGGGGATCGACAAGGCCGAGGTGCTGGACCGGCTCGGGATCGGGCACTACCCGGACAGCGCCGGACCCGGCGAGCTCGGCAACTTCGCCGTGGCGGGCCACCGCACCACCTACGGACGTCCCTTCCACCGGATCGCCGAGCTCCAGGAGGGCGACGCGATCGTCGTGCGCACCGAGAACACCTGGTACGTGTACCGGATGAGCTCGTCCCAGATCGTCTGGCCGAACCAGGTCGAGGTCGTCTCCCCGGTCCCCGGCGTCCGGCCCGGCGAACCCCTGCCGGAGCTCACCGAGCGCTTCCTGACGATGACGGCCTGCCACCCCATGTACTCGGCCGCCCAGCGCTACATCGTGCACGCCGAGCTCGACTACTGGGTCCCGGTGGACGAGGGGATCCCGGCCGAGCTGCTCGACGCCGGTGTCGAGATCCAGGCACTGGCCGACGACGACGCGGGGGTGCGATGA	MRHAHADAGRRGGGAVSATIGVVGELLITAGVVLGLFVVWQLWWTDVQAERIHSQVLAELDWPEPPVEVPSGSSVEGPAVAGEHRDEPPAVDDAAFAEVFAQFYVPRFGADYVEPIAEGIDKAEVLDRLGIGHYPDSAGPGELGNFAVAGHRTTYGRPFHRIAELQEGDAIVVRTENTWYVYRMSSSQIVWPNQVEVVSPVPGVRPGEPLPELTERFLTMTACHPMYSAAQRYIVHAELDYWVPVDEGIPAELLDAGVEIQALADDDAGVR	PGPT0024075_911	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_SORTASE,PGPT0024075-srtA-K07284	NA	NA
AK001_00945	171			hypothetical protein	ATGATGTACGGCCTGCTGTGGCGCGCCCTGCCCGGTCCGGCCTGGTTCCGCGCGCTCCTGCTCCTGGCACTGTTCGTGGCGGCCGTCTGGGTCTGCTTCGAGTGGGTCTTCCCCTGGTTCTCCGAGTACGTCCCCATCAACGACAACACCGTCGAGGCGCACGCACCATGA	MMYGLLWRALPGPAWFRALLLLALFVAAVWVCFEWVFPWFSEYVPINDNTVEAHAP				NA	NA	NA	NA	NA
AK001_00946	654	trpG	COG0512	Anthranilate synthase component 2	ATGACCTCCATCCTCGTCGTGGACAACTACGACTCCTTCGTCTACACGATCGTCGGCTACCTGGACCAGCTCGGCGCGAGCACCACCGTCGTGCGCAACGACGCCGTGCCGGAGCCCGACGACCAGGGCCGCTTCCTCGGTGAGGACGGCACGGTCTACGACGGCGTCCTCGTCTCGCCCGGACCCGGTACGCCGAAGGAGGCCGGGGCGTCGGAGGACGTCATCCGGGCCTGCGCGCGGTCCGCGACCCCGATGCTCGGCGTCTGCCTCGGGCACCAGGCGCTCGCCGAGGTCTACGGCGCGACCGTCTCCCACGCTCCCGAGCTGATGCACGGCAAGACCAGCGAGGTCGAGCACCAGGGCACCGGCGTGCTCGCCGGTCTCGGGTCGCCGTTCACCGCGACGCGGTACCACTCGCTCGCCGTCGAGCCGCACACGGTGCCGGCCGAGCTCGAGGTCACCGGGTCCACCGCCGGCGGTGTGGTCATGGGTCTGCAGCACCGTGACCTGCCGCTGCACGGCGTGCAGTTCCACCCCGAGTCGGTGCTGACCGTGGGCGGTCACCGGCTGCTCGCCAACTGGCTGGCCGTGTGCGGCGACGCCGACGCCGTGGAGCGCTCGGCCGGCATGGCACCCCTGGTGCACACGGCCTGA	MTSILVVDNYDSFVYTIVGYLDQLGASTTVVRNDAVPEPDDQGRFLGEDGTVYDGVLVSPGPGTPKEAGASEDVIRACARSATPMLGVCLGHQALAEVYGATVSHAPELMHGKTSEVEHQGTGVLAGLGSPFTATRYHSLAVEPHTVPAELEVTGSTAGGVVMGLQHRDLPLHGVQFHPESVLTVGGHRLLANWLAVCGDADAVERSAGMAPLVHTA	PGPT0008000_211	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008000-pabA-K01664	NA	NA
AK001_00947	2094	pknB	COG0515	Serine/threonine-protein kinase PknB	GTGGAGAACACGCCCCGAGTACTCGCCGGCCGCTACGAGGTCGGTGAGCTCATCGGCCGTGGCGGCATGGCCGAGGTCCACATCGGCCACGACGCACGCCTCGGCCGCACGGTCGCGATCAAGGTGCTGCGTTCCGACCTGGCGCGCGACCCGTCCTTCCTGGCCCGCTTCCGGCGCGAGGCGCAGTCCGCCGCCGCGCTCAACCACCCGGCGATCGTCGCGGTCTACGACACCGGGGAGGACACCTCCACCGACGCCACCGGCCAGTCGGTCCACATCCCCTTCATCGTCATGGAGTACGTCGAGGGCCACACGGTCCGCGACATCCTCGCCGACGGCGCGGCCGTGCCGATCGAGGAGGCCGTCGAGATCACGGTCGGCGTCCTCAGCGCGCTGGAGTACTCCCACCACGCGGGCATCGTGCACCGCGACATCAAGCCGGCCAACGTCATGATCACGCCCACGGGGGCCGTGAAGGTGATGGACTTCGGCATCGCGCGTGCCGTCGCCGACTCCGCCGCGACCATGACGCAGGGCCAGGGCGTCATCGGCACCGCGCAGTACCTCTCGCCGGAGCAGGCCCGTGGCGAGCAGGTGGACGCCCGCAGCGACCTGTACTCCACCGGCTGCGTGCTGTTCGAGCTGCTGACCGGACGTCCGCCGTTCATCGGCGACTCGCCGGTCGCGCTGGCCTACCAGCACGTGGGGCAGGCCGCGCAGCGCCCGAGCGAGTTCGCCAACGACGTGCCCGAGGTGCTCGACCGCATCGTGCTCACGGCCCTGACGAAGGACCGCGACCAGCGCTACTCCTCGGCCGCCGAGTTCCGCTCCGACCTGGAGGCTGCGATGCGCGGCGGCGCGATCGGCGCGCCCGCCATCGGCGCGCTGGCCGCCGGGGCCGGCGCCGGCTACGCCGCGACCCAGGTCCTCGGCGACCCCGGCTCCACCCAGGTGATGGACCCGGCCCAGCAGTCCCCGTGGGGCCCGACGGGCCTGCCCGCGGACCAGACCGCGACCGGTGCCGCGGTGCCGCCCGAGGAGGAGAAGCCGAGCCGCAAGGGCCTGATGTGGACCCTCATCGTCATCGGCGTGCTCGCGATCGCCGCGATCCTGTTCTTCCTGCTGCGCGGCGGCGACACCGCGCCGGAGACGGTCACGGTGCCCGAGCTCACCTCCGACATGAGTCCGACCGAGGCGGAACGGGCCCTGGAGGCCGTCGGGCTCGTGTTCTCCCAGCGCATCGACGAGGACTCCGACGAACCCGAGAACACCCTGACCCGGTCCGACCCGGAGTCGGGGGCCGAGGTCGAGGAGGGCTCGACCGTCCAGGTCTTCTTCTCCGGCGGTCCGGAGACCTTCGCGATGCCCGACCTCACCGGGTCCACCCTGAGCGAGGCGGAGGACCAGATCGAGGAGGCCGGTCTCGTCGTCGGGGACGTGTCGCGCGAGGCGAGCGCCGACTTCGCCGAGGACGAGGTGATCGCGACCGATCCGGGACCGCGCGAGGCCGTCGAGCCCGGCGACTCGGTCAACCTCACGGTCTCCAACGGCCAGGTCGAGCTGCCGAACCTCATCGGCCAGGAGCGCGACGCCGCGGAGCAGACGCTCGACGACCTGGGCTTGGACTCGACCATCGAGACCCAGGAGGTCGACGACCAGAACGACGTCGGGCTCGTGGTCGACCAGTCGCCCTCCGAGGGCGCGGTCGCCCAGGACACCCGCGTCACGCTGACGATCGGCGAGGCGCGCGAGGTCGAGACCGTCCAGGTGCCCGACGTCGTGGGGATGTCGGCCGACGAGGCGCAGCAGGCGCTCGGGAGCCAGGCCAACCTCAACGCCGTGCAGACCACGGCGTCCTCGGCCGACTACTGCCCGGGCTTCGTCTCGGCGCAGGACCCGGCGGCGGGGACCGAGGTGGACGAGGGCTCCGAGGTCACGATCACGGTCTCGACGGGCGAGTCGGGCCAGAACTGCACCGGCGGGCCGACACCGGAGCCCGCCGATCAGCAGCCGGGGCAGGGCAACGCCGGCGGGTCGAACGACGGGTCCGACGACGGCGCCTGGCTGCCGGTGGAGCCCGACCCGACCGACTGA	MENTPRVLAGRYEVGELIGRGGMAEVHIGHDARLGRTVAIKVLRSDLARDPSFLARFRREAQSAAALNHPAIVAVYDTGEDTSTDATGQSVHIPFIVMEYVEGHTVRDILADGAAVPIEEAVEITVGVLSALEYSHHAGIVHRDIKPANVMITPTGAVKVMDFGIARAVADSAATMTQGQGVIGTAQYLSPEQARGEQVDARSDLYSTGCVLFELLTGRPPFIGDSPVALAYQHVGQAAQRPSEFANDVPEVLDRIVLTALTKDRDQRYSSAAEFRSDLEAAMRGGAIGAPAIGALAAGAGAGYAATQVLGDPGSTQVMDPAQQSPWGPTGLPADQTATGAAVPPEEEKPSRKGLMWTLIVIGVLAIAAILFFLLRGGDTAPETVTVPELTSDMSPTEAERALEAVGLVFSQRIDEDSDEPENTLTRSDPESGAEVEEGSTVQVFFSGGPETFAMPDLTGSTLSEAEDQIEEAGLVVGDVSREASADFAEDEVIATDPGPREAVEPGDSVNLTVSNGQVELPNLIGQERDAAEQTLDDLGLDSTIETQEVDDQNDVGLVVDQSPSEGAVAQDTRVTLTIGEAREVETVQVPDVVGMSADEAQQALGSQANLNAVQTTASSADYCPGFVSAQDPAAGTEVDEGSEVTITVSTGESGQNCTGGPTPEPADQQPGQGNAGGSNDGSDDGAWLPVEPDPTD				NA	NA	NA	NA	NA
AK001_00948	1416	pknD_2		Serine/threonine-protein kinase PknD	ATGAGGCCGACCACCGGACTGTCCCTCGGGGACCGCTACCTCCTGACCCGGCGCATCGCCGTCGGGGGCATGGGCGAGGTCTGGGTCGCCGACGACAAGTACCTCGGCCGGGACGTGGCCGTGAAGGTGCTCCGCGAGGAGTACACCGGCAACGAGGACTTCCTGCGCCGGCTGCGCACGGAGGCCCGCAACAGCGCCTCGCTGTCCCACCGCAACATCGCCCAGATGTACGACTACGGCGAGCAGGACGGCGCCGGCTTCCTCGTCATGGAGCTGGTGCTGGGCGAGCCGCTGGCCGACCTGCTCGAGCGGGAGCCCGTGGTGGCGCCGCGCAAGCTGCTGCCGATCCTGTCGGCCACCGCCCGCGGCCTGCACCACGCGCACAAGGCCCAGGTGGTCCACCGCGACGTCAAGCCCGGCAACATCCTCCTCGAGCACGACGGCGGGGTGAAGATCACCGACTTCGGCGTCTCGCTGGCGGCCAACCAGGTGACGATGACCGCGACCGGCATGGTGATGGGCACGGCCCAGTACCTCTCGCCGGAGCAGGCCGTCGGGCAGGCCGCCACCCCGGCGTCCGACCTGTACGCGCTGGGCATCGTGGCCTACGAGGCGACGGCGGGGAAGCGTCCCTTCACGGGCTCGACGCCGGTCGACATCGCCGTCGCGCACGTCAACAACGCCGTGCCGCCGCTGCCGCAGGCCGTGCACCCGGGGCTGGTGGACGTCGTCATGCGGATGCTCGCCAAGGACCCGGGCAAGCGACCCGCTTCGGGGGCCGAGCTGGCCGACGAGCTCGACGCCCTGGCGGGCGAGATCGCCGAGGACCCCCTCGGCGCCCGGTCCCGGTCGGCGCGACGGGCGGCACGCAACGGCCGCCCGGCACCGGTACGGCACGCCCGCACCGAGGAGCCGGAGCGCACCCCGCGGGCGACCGAGCGCCGCCCGACGCCGCCGCGCCCGGAACCGGACTCCGCCGGCACCTCGACGCCCGACCAGCCGGAGATGCCGGCCCGGACCCGCCGTGACCTCGGCCGCCCGCCGGTGCCGCGGACCTACCCCGCGCGGCGTGACGTGCACGGCGCGGGACGCACCACCCCCGCGCAGGGCGAACGGAACAGCGGCGCGACGCGGGCGGGCACCCGCTCGGGGGCCTCGCGCACGTCCACGACGACGGGGCGCCGGCTCGGAGCGCTCGGCCGGATGTCCTGGCCGCTGCTGGCTCTGCTCGGGCTGCTCGGGGTGCTGCTGGCGGCGACGCTCATCAGCGGCCTGACCGGTGGGGACGACGGCGAGGCGGCCGCCAGCGCGACACGGCCCGCGACCCTGCGGGCGATGACCGTGACCGACTCTGGGATGATGCTCCCAGACCCGCCGCGCCCAGCCGGTGCGGCCACGACCGAGAAGGACGACTGA	MRPTTGLSLGDRYLLTRRIAVGGMGEVWVADDKYLGRDVAVKVLREEYTGNEDFLRRLRTEARNSASLSHRNIAQMYDYGEQDGAGFLVMELVLGEPLADLLEREPVVAPRKLLPILSATARGLHHAHKAQVVHRDVKPGNILLEHDGGVKITDFGVSLAANQVTMTATGMVMGTAQYLSPEQAVGQAATPASDLYALGIVAYEATAGKRPFTGSTPVDIAVAHVNNAVPPLPQAVHPGLVDVVMRMLAKDPGKRPASGAELADELDALAGEIAEDPLGARSRSARRAARNGRPAPVRHARTEEPERTPRATERRPTPPRPEPDSAGTSTPDQPEMPARTRRDLGRPPVPRTYPARRDVHGAGRTTPAQGERNSGATRAGTRSGASRTSTTTGRRLGALGRMSWPLLALLGLLGVLLAATLISGLTGGDDGEAAASATRPATLRAMTVTDSGMMLPDPPRPAGAATTEKDD				NA	NA	NA	NA	NA
AK001_00949	1458	pbpA	COG0768	Penicillin-binding protein A	GTGAACACGACCGCACGTCGGCTGGCCTCCATCGTCATGGTCATGTTCCTCGCGCTGCTGGTCTCCACCACGTGGATCCAGTTCTTCGCCGCGGACTCGTTGAACAGCGACCCGCGCAACGCGCGCACGCTGTACGAGCAGTTCGGCACCGACCGCGGCCCCATCGTCGTCGGCGGCGAGGCCGTGGCGGACTCCGTCCCGGTCGACGACGAGTGGAACTACCAGCGCGAGTACACCCAGGGCCGGTTGTACGCCCCGCTGACGGGCTACTACTCGCTGGTCAGCGGCACCTCCGGCATCGAGCGGGCCGAGAACGACTTCCTCGCCGGCTCCGCCGACGCCCTGTGGGTGGACCGGCTGCGCAACCTGCTGACCGGCACGGACCCGCAGGGTTCCGCCGTCGAGCTCACCGTGGACCCGGCGGCCCAGCAGGCCGCCTGGGACGCTCTCGGCGACCAGCGGGGCGCCGTCGTCGCGCTCGAGCCCTCGACCGGCCGGATCCTGGCACTGGTCTCCAAGCCGACGTTCGACCCGAACGACCTGGCGACCCACTCGACCAAGGACGCGAACGACGCCTACCTCGAGCTGTCCAACGCCGAGGACAAGCCGCTGAACAGCCGCGCGACCGCGGAGATCTACCCCCCGGGGTCGACGTTCAAGCTGGTCACCGCCGCCGCGGCCCTCGAGAGCGGCGACTACACCGCCGACACGGTCGTCGACGCCCCCGACACGTACACCCCGCCCGGGACGGACCGCTCGATCAACAACTACGGCGGCACCTCCTGCTCGTCCTCCGGGGAGCAGAGCCTGGCCGACGCGCTGCGGATCTCCTGCAACACCGCGTTCGCCGAGCTCGGCGTCACCCTCGGCGACGAGGCCCTCCAGGAGCAGGCGGAGGCCTTCGGGTTCGGGTCCGGCATGACCGTGCCCTTCGGCACCGCCGCCAGCGTGTTCCCCGCACCCCCGATCGACCCCGCGTTCGTGGCGCAGTCCGCCATCGGGCAGTGGGACGTGGCCGCCACCCCGCTGCAGATCGCGATGGTCTCGGCCGCGATCGCCAACGACGGCGAGGTGATGGAGCCCTACTCGGTGGACCGGGTGCGCGACCAGAACCTCGACGTCGTCTCCGAGACGCGGTCCAACAGCCTGGGCCGGGCGGTCTCGACCGACACCGCCGACCAGCTCACCGACATGATGGTCGGCGTCGTCGAGGGCGGGTCCGGCACGGCGGCGCAGATCTCCGGGGTTTCGGTCGCCGGCAAGACGGGGACCGCCCAGACGACGACCGACGCACCGCCGCACACCTGGTTCACCGGGTTCGCCCCGGCCGACGACCCGCAGGTGGCGGTCGCCGTCTTCGTGGAGAACGGCGGATCGATCGGCACCTCCGAGGCCACGGGCGGTCAGGTGTCGGCACCGATCGCCCGGGTCGTCATGGAGGCGGTGCTGAACGGATGA	MNTTARRLASIVMVMFLALLVSTTWIQFFAADSLNSDPRNARTLYEQFGTDRGPIVVGGEAVADSVPVDDEWNYQREYTQGRLYAPLTGYYSLVSGTSGIERAENDFLAGSADALWVDRLRNLLTGTDPQGSAVELTVDPAAQQAAWDALGDQRGAVVALEPSTGRILALVSKPTFDPNDLATHSTKDANDAYLELSNAEDKPLNSRATAEIYPPGSTFKLVTAAAALESGDYTADTVVDAPDTYTPPGTDRSINNYGGTSCSSSGEQSLADALRISCNTAFAELGVTLGDEALQEQAEAFGFGSGMTVPFGTAASVFPAPPIDPAFVAQSAIGQWDVAATPLQIAMVSAAIANDGEVMEPYSVDRVRDQNLDVVSETRSNSLGRAVSTDTADQLTDMMVGVVEGGSGTAAQISGVSVAGKTGTAQTTTDAPPHTWFTGFAPADDPQVAVAVFVENGGSIGTSEATGGQVSAPIARVVMEAVLNG	PGPT0023920_510	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023920-pbpA-K05364	NA	NA
AK001_00950	1623	ftsW_1		peptidoglycan glycosyltransferase FtsW	GTGAGCGCGGACTCCACGGTGGCGCCTCGCCAACGTCGCCCCCTGCGCCTGGCCGAGGTCTTCCTGCTCCTGCTCGCGCTCGCCGGCGGGATGGGCGGCTACGCGATGGTCGGGCTGTCGATCCGCGACGAGCTGCCCGACAGCTTCTGGTGGCGCAGCGCCCTGCTGGCCGCGACCGCGCTCGTCGCCCACCTCGTCCTGCGGTTCCGGGCACCGTGGTCGGACCAGGTGATCCTGCCCGCCGTCGTGCTGCTCAACGGCATCGGGCTGTCGATGATCTGGCGGCTGGAGATCTCCGGCGCCTCCGGCATGGCCCCGGCCGACGCCGCCGGCAACATGACGGCGTCGCTGCTGGGCGCCGTCGTCGCGTTCACGCTCCTGTGGCTGCTGCGCGACCACCGCTGGCTGCGCCGGTACACCTACATCTTCATGCTCGTCGGTCTGCTGCTGGTGTCCCTGCCGCTGATCCCCGGCCTCGGCGAGCAGATCAACGGCGCCCGCATCTGGATCTCCGTGGGCGGCTTCTCGCTGCAGCCCGCCGAGTTCGCCAAGATCGCGCTGGCCGTCTTCTTCGCGGGCTACCTCGTCGTCAACCGGGACACGCTCGCGCTGGCCGGGCCGAAGGTCCTGGGCCTGCACCTGCCGCGGCTCAGCGACCTCGGCCCGATCATGCTCGTCTGGGGCGTCTCCCTGGTGATCCTGGTCTTCCAGCGCGACCTGGGGACGTCGCTGCTGTTCTTCGGCCTCTTCGTCGCCATGCTGTACCAGGCCACCGCCCGCTCGAGCTGGATCGTGCTCGGCATGACCCTGTTCGCGGTGGGAGCGGTCTCCGCGGCCCGGCTCTTCCCGCACGTCGGCGCCCGTATCGACGTGTGGCTGCACCCCCTGGACGCCGAGCAGTACGACCGGGAGGTCGGCGGTTCGTTCCAGCTCGTCCAGGGCATGTTCTCGATGGCCAACGGCGGTCTGTTCGGCACCGGCTGGGGCGAGGGTCGCCCCTTCCAGATCCCGTACGCCTACTCGGACTTCATCTTCGCCGCCCTCGGCGAGGAGCTCGGGCTGACGGGCCTGGCCGCCATCCTGCTGACCTACCTGCTCATCGTCCAGCGCGGCTTCAAGTCCGCCCTGACGGTGCGGGACGGCTTCGGCAAGCTGCTGGCCGCCGGCCTCGCCTTCGTCATGGCCCTGCAGATCTTCGTCGTGGTCGGCGGCATCACGCGCATCATCCCGCTGACCGGCCTGACCCTGCCGTTCATGGCCCAGGGCGGTTCGTCGCTGCTGGCCAACTGGATCGTCATCGCCCTGCTGCTGCGCATCTCCGACAGCGCACGCCGCCCGTCCGACCTGCCGGTGCGCGGCCAGGTCTCGCACGAGCGCGAGCCCGTGCTCGTGGGCGCCGGTGCCGGGCCCGACGACGGCACCCCGGTGGCGGGCACCCCCGCCGTCGGCAGCCCCTCGCCGGTGCCCGACGACGGCACCCCGGCGGCCGGCACCGCACTGCCGCGCCGCAGCGTCTCCGAGCGCGACGGCGGAGGGCCCACCGGCACCACCGGTTCGTCGGACCCCACCGAACAGCTCGACCCGACCGATCCCGAGTCCCCGCGAGGAGGTGACCGCCCGTGA	MSADSTVAPRQRRPLRLAEVFLLLLALAGGMGGYAMVGLSIRDELPDSFWWRSALLAATALVAHLVLRFRAPWSDQVILPAVVLLNGIGLSMIWRLEISGASGMAPADAAGNMTASLLGAVVAFTLLWLLRDHRWLRRYTYIFMLVGLLLVSLPLIPGLGEQINGARIWISVGGFSLQPAEFAKIALAVFFAGYLVVNRDTLALAGPKVLGLHLPRLSDLGPIMLVWGVSLVILVFQRDLGTSLLFFGLFVAMLYQATARSSWIVLGMTLFAVGAVSAARLFPHVGARIDVWLHPLDAEQYDREVGGSFQLVQGMFSMANGGLFGTGWGEGRPFQIPYAYSDFIFAALGEELGLTGLAAILLTYLLIVQRGFKSALTVRDGFGKLLAAGLAFVMALQIFVVVGGITRIIPLTGLTLPFMAQGGSSLLANWIVIALLLRISDSARRPSDLPVRGQVSHEREPVLVGAGAGPDDGTPVAGTPAVGSPSPVPDDGTPAAGTALPRRSVSERDGGGPTGTTGSSDPTEQLDPTDPESPRGGDRP				NA	NA	NA	NA	NA
AK001_00951	1347	pstP	COG0631	PP2C-family Ser/Thr phosphatase	GTGACCCTCGCCCTGCGCTACGCCGCGCGCTCCGACGTCGGGCTGGTGCGCCACGACAACCAGGACTCGGCCTACGCCGGCCCGAACCTCCTGGTCGTCGCCGACGGGATGGGCGGGCACGCCGGCGGCGACATCGCCTCCAGCCTGGCGATCTCGGCCCTCGCCCCGCTGGACACCCCCGAGCACGGTCCCGACCAGGCGCTGCACGACCTGGAGGAGACCGTCGAGCGCGCCCGGCAGGACCTCGTGCACGCCTCGGAGATCGATCCCGACCTGGCCGGCATGGGCACCACCGTCACCGCCCTGCTGCGCTCGGGCAACACGCTGGCGATGGCGCACCTCGGCGACTCGCGCGCCTACCTGCTGCGCGACGGCACCCTCACGCAGGTCACGGTCGACCACACCTTCGTCCAGCACCTCGTGGACACCGGCCGGATCTCGCCGGACGAGGCGGAGACGCACCCGCAGCGCAACGTCGTGATGCGGGTCCTCGGCGACTTCGACGTCGACCTGACGCCCGACATGTCCATCCGCGAGGCCCGCGCGGGGGACCGGTGGCTGCTCTGCTCCGACGGCCTGTCCGGGTTCGTCCCCGTCGACCAGATCACCGAGGTCCTCGGTGAGTGCGAGTCGCCCGACGAGGCGGCCGACCTGCTCATCACCCTGGCGATGACGGCCGGCAGCACCGACAACATCACGGTCGTGGTCGCGGACCTCGTCGACGACGAGGTCGTCCCGCCGCCGGCCGACACCACCCAGGTCGTGGGGGCCGCCGCCACCGACGTCGCCGCGCCCGTCACCCGCGAGGCCGGCCCGGAGCCCGCGGCCGCCGAGGCCGCACCGGCCGCCCCCGCTCCCCACGACGAGGACGAGGAGGAGGAGGACGAGTCGGGCGACGACGTCCGACCCCGTCGTCGCCCGTGGGTCGGCGTGCTCGTCGCGCTGCTCGTCCTGGCCGGCCTGGGGTTCGGCGGCTGGTGGGCCTACGGCTGGACGCAGGACCAGTACTACCTCGGCGTGGCCGACGGCCAGGTCGCCGTCTACCAGGGCATCCCGCAGGACGCGGGCCCGATCTCCCTGTCGCGGGCCGTCGAGGTGACGAGCACGTCCGTCGACGACCTGCCGGCCTACTGGATCGAGCGGCTCGACGGCTCGATCCGCGCCGAGTCCCTGGACGAGGCCCTGGAGCGGGCCGACCGCCTCGCCGAGGAGGCCGCACCCACGCCCGTCCCGGCCCCTTCCCCCAGCAGCTCCCCGTCACCGAGCCCCTCCGACGGGCCCAGCGCACGTCCCGACTCCTCGCCGAGCCAGGAGCCGGCGCAGGCCGCGGGGGAGGGTGACGCGTGA	MTLALRYAARSDVGLVRHDNQDSAYAGPNLLVVADGMGGHAGGDIASSLAISALAPLDTPEHGPDQALHDLEETVERARQDLVHASEIDPDLAGMGTTVTALLRSGNTLAMAHLGDSRAYLLRDGTLTQVTVDHTFVQHLVDTGRISPDEAETHPQRNVVMRVLGDFDVDLTPDMSIREARAGDRWLLCSDGLSGFVPVDQITEVLGECESPDEAADLLITLAMTAGSTDNITVVVADLVDDEVVPPPADTTQVVGAAATDVAAPVTREAGPEPAAAEAAPAAPAPHDEDEEEEDESGDDVRPRRRPWVGVLVALLVLAGLGFGGWWAYGWTQDQYYLGVADGQVAVYQGIPQDAGPISLSRAVEVTSTSVDDLPAYWIERLDGSIRAESLDEALERADRLAEEAAPTPVPAPSPSSSPSPSPSDGPSARPDSSPSQEPAQAAGEGDA				NA	NA	NA	NA	NA
AK001_00952	480	fhaB	COG1716	FHA domain-containing protein FhaB	ATGAGCGAGCTGACGTTCACCCTGCTGCGGCTGGGATACCTGGTGCTGCTCTGGGTGTTCGTGCTCTCCGCGGTGGCCGTGCTCCGCCGCGACCTCGCGCTGCGCGGCACGCCCCGTGCGCGCAAGAAGTCCGACGACGGCGCCCCGGCGGCCGCGCCGGCGCCCTCCTCCCGCGGCGCCGCACCGTCGGGTCCCACCCGCCTGGTCGTGACGCAGGGACCGCTGACCGGCACGACGCTGCCGCTGTCCGGCTCGTCGATCCTCATCGGCCGCGCCCCGAGCTGCACGCTCGTGCTGGACGACGACTACTCCTCCTCCCGGCACGCGCGGATCTTCCCGCAGGGCGACCAGTGGTACGTCGAGGACCTGGGGTCGACGAACGGCACCTACCTCGGTGACCAGCGCGTCTCGGCGCCGACCCGCCTGGGTCCCGGCGTCGGCGTGCAGATCGGCCGGTCCGTCGTCGAGCTGCAGGGGTGA	MSELTFTLLRLGYLVLLWVFVLSAVAVLRRDLALRGTPRARKKSDDGAPAAAPAPSSRGAAPSGPTRLVVTQGPLTGTTLPLSGSSILIGRAPSCTLVLDDDYSSSRHARIFPQGDQWYVEDLGSTNGTYLGDQRVSAPTRLGPGVGVQIGRSVVELQG				NA	NA	NA	NA	NA
AK001_00953	720			hypothetical protein	ATGGGAGCGCTGGACCGCTTCGAGAAGAGCGTCGAGCGGGTCATGAACAACGCGTTCGCGAAGGTGGGACGCGGCAGCGAGGTCAAGGCGGTCGAGCTGGCGAGCCGGCTGCGGCGCGAGATCGACGACCGTGCCGCCGTCGTCGGCCACGACCGGACCGTCGCACCGAACGAGTTCACCATCGAGCTCGGGCCGGAGGACTTCGACCACGTGCAGTCGTGGGGTGCGGAGACCCTGGCGGACGAGCTCGCCACCAACCTCACCGAGTACGCGTCGTCCCAGCACTACGCGTTCGTCGGTCCCGTCAGCGTGTCCTTCGAGCGCGACGAGCAGCTCACCCGCGGACGGTTCCAGCTGCGCTCGGCCACGGTCCGCGGCAACGTCGCGCCGGCGACCAACCCCGCGCCCAGCACCCGCCACCCCCTCATCGACATCGACGGTCAGCGCTACCTGCTCACCGGCCCCGTCACGGTCATCGGCCGCGACGCCGAGGCCGACATCGTCGTCGACGACCCGGGGGTCTCCCGGCGCCACCTGGAGATCCGGGTGACCCCCGAGGGCGTCGTCGCCACCGACCTCGGATCCACCAACGGGCTCTTCGTCGAGGGTCATCAGGTTCCCGCAGCCACCCTGCTGGACGGCAACACCCTGACCATCGGCCGGACCCGGATCATGTTCTGGACCGGCACCTCGGCCGGACGCACGAACGAGGAGTGGTGA	MGALDRFEKSVERVMNNAFAKVGRGSEVKAVELASRLRREIDDRAAVVGHDRTVAPNEFTIELGPEDFDHVQSWGAETLADELATNLTEYASSQHYAFVGPVSVSFERDEQLTRGRFQLRSATVRGNVAPATNPAPSTRHPLIDIDGQRYLLTGPVTVIGRDAEADIVVDDPGVSRRHLEIRVTPEGVVATDLGSTNGLFVEGHQVPAATLLDGNTLTIGRTRIMFWTGTSAGRTNEEW				NA	NA	NA	NA	NA
AK001_00955	1260	tyrS	COG0162	Tyrosine--tRNA ligase	GTGACCGACGTTCTCGACGAGCTGCACTGGCGAGGCCTGGTGGCGCAGTCCACCGACGAGGCCGCGCTGCGCGACGCACTCTCGAAGGGGCCGGTCACCTACTACTGCGGGTTCGACCCGACGGCTCCGAGCCTGCACCACGGCCACCTGGTCCAGCTGATCCTGCTGCGGCACCTGCAGCTGGCCGGACACCGCGCGATCGCACTGGTCGGCGGCGCCACCGGCATGATCGGGGATCCGCGCGAGTCCGGAGAGCGGGTCCTCAACACCAAGGAGACCGTCGCGGAGTGGACCGAGAAGATCCGCGCCCAGGTGTCCCGGTTCCTCGACCTGACGGGGGACAACCCCGCCCGCGTCGTGAACAACCTCGACTGGACGTCCGGGCTGTCGGCGATCGACTTCCTCCGGGACGTCGGCAAGCACTACCGGCTCGGCACGATGCTCGCCAAGGACACCGTCGCGCGGCGTCTGCGCAGCGACGAGGGCCTGTCGTTCACGGAGTTCAGCTACCAGATCCTGCAGGGCATCGACTTCCGCGAGCTGTTCCGCCGGTACGACTGCACCCTGCAGACCGGCGGCAACGACCAGTGGGGGAACCTGCTCTCGGGCGTCGAGCTCATCCGCCGCACCGAGGGCGCGGCGGTGCACGCGATGACGACGCCGCTGATCACCAAGGCCGACGGCACGAAGTTCGGCAAGACCGAGGGCGGCGCCGTCTGGCTCGACCCGGAGCTCATGAGCCCGTACGCCTTCTACCAGTTCTGGCTGAACCAGGCCGATGCCGACGTCGTGCGGTTCCTGAAGATCTTCACCTTCCGCACGCGGGAGGAGATCGAGGAGCTCGAGCGTGAGGTCGCCGAGCGGCCCTTCGCCCGCGTGGCCCAGAAGACGCTCGCCACCGACGTGACGACGCTCGTGCACGGACAGGAGGCCACCGACGCGGTCATCGCCGCCAGCCAGGCGCTGTTCGGCCGCGGTGAGCTGACCGAGCTGGACGCCGGCACCCTGGGTGCCGCCACCGCCGAGCTGCCTCGCGCCACGGTCCGACCGGGTGTCAGCGTGCTCGACGCGCTCGTCGAGAGCGGGTTGGTGCCGTCCAAGGCGGCCGGCCGACGGGCGATCGCCGACGGCGGCGCCTACGTCAACAACGTCAAGGTCGGCGGCGACGAGGACGTGCTGCGCGACGAGCACCTGCTGCACGGTCGCTACGCCGTGCTGCGCCGCGGCAAGAAGACCCTCGCGGTCGCCGTCGTGGAGTGA	MTDVLDELHWRGLVAQSTDEAALRDALSKGPVTYYCGFDPTAPSLHHGHLVQLILLRHLQLAGHRAIALVGGATGMIGDPRESGERVLNTKETVAEWTEKIRAQVSRFLDLTGDNPARVVNNLDWTSGLSAIDFLRDVGKHYRLGTMLAKDTVARRLRSDEGLSFTEFSYQILQGIDFRELFRRYDCTLQTGGNDQWGNLLSGVELIRRTEGAAVHAMTTPLITKADGTKFGKTEGGAVWLDPELMSPYAFYQFWLNQADADVVRFLKIFTFRTREEIEELEREVAERPFARVAQKTLATDVTTLVHGQEATDAVIAASQALFGRGELTELDAGTLGAATAELPRATVRPGVSVLDALVESGLVPSKAAGRRAIADGGAYVNNVKVGGDEDVLRDEHLLHGRYAVLRRGKKTLAVAVVE				NA	NA	NA	NA	NA
AK001_00956	801		COG2200	putative signaling protein	ATGATCGAGCATTTCACGTACGGACTCCTGACCCCCGCACTGTCGTTCGTGCTCTCGTGCCTCGGGTGCGCCGCAGGGCTGTCCTGCACCGCCCGAGCGCGCCTCTACACCGGCCGGGCGCGGCGGTGGTGGCTCTGGATGGGCGCCGTCGCCATCGGGGGCACCGGCATCTGGGTCATGCACTTCGTGGCCATGCTCGGGTTCTCGGTCGAGGGCGCCGAGATCCGCTACGACATCCCGCTGACCGTGGCGAGCGCCGTGCTCGCGATCGGCGTCGTCGCGATCGGCCTGTTCATGGTGGACCGCAGCGGTGGACGGACGGGAGCCGTCGTCGTCGGCGGGACGGTCGCCGGCCTCGGGGTGTCGAGCATGCACTACCTCGGCATGCGCGCCATGCACACGGACGTGGCGATCGACTACGACCCGTGGCTCGTGACGCTCTCCGTCGCGATCGGCGTCGTGGCGGCATCGGCGGGCCTCTGGCTCGCGTTCATCGTCCGGACCACCGCCGCCGGGGCGGCAGCAGCCGTCGTGATGGGTGTCGCCGTCTCCGGGATGCACTACACCGGGATGGCCGCGATGAACGTCGAAGGGCACGCCGACCACGGCATGAGCGCTCCGGACGGACTCACGACCGGCGAGCTCCTCGTCCCGCTGATCATCTTCCTCACGCTGTCGACGCTTGCCCTCGTCGTCACGGTCGTCCTCGCCCGGAGCCCCGGCGAGATCACGGCCGACCGCGCCTTCGACGAGTGGCGGAACGAGCTGCGCCGCTCGACCGACGACGTCGACTCCCGGTAG	MIEHFTYGLLTPALSFVLSCLGCAAGLSCTARARLYTGRARRWWLWMGAVAIGGTGIWVMHFVAMLGFSVEGAEIRYDIPLTVASAVLAIGVVAIGLFMVDRSGGRTGAVVVGGTVAGLGVSSMHYLGMRAMHTDVAIDYDPWLVTLSVAIGVVAASAGLWLAFIVRTTAAGAAAAVVMGVAVSGMHYTGMAAMNVEGHADHGMSAPDGLTTGELLVPLIIFLTLSTLALVVTVVLARSPGEITADRAFDEWRNELRRSTDDVDSR	PGPT0026010_1612	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
AK001_00957	672		COG2094	Putative 3-methyladenine DNA glycosylase	ATGAGCGAGACGACCCACGAACAGGCCGCCGCGGTCCCGTGGCAGGTGCCCGGCACGTCCTGGTACGCGCGCAGCGTGCACGACGTGGCCCGTGACCTGCTCGGTGCGTACCTCGTGCGGCGACGTCCCGACGGTGACGTCACCCTGCGCATCACCGAGGTCGAGGCGTACGGCGGTGCCGACGACCCCGCCTCCCACGCGTTCCGCGGCCCGACCGCCCGCAACCGCTCGATGTTCGGCCGTCCGGGCAGGCTCTACGTCTACCGGCACCTGGGCCTGCACCACTGTGTCAACATCGTCTGCGGGTCGGTCGGCGACGCGGGTGCCGTGCTGCTGCGTGCCGGCGAGGTCGTGGAGGGCCGAGTGGTGGCACGAGAGCGGCGCGAGGCCGCCGGCCGCTGCGACTCGGAGCGGCAGATCGCCCGCGGGCCCGCCCGGCTCGCCGTGGCGCTCTCGCTCGACCTGCAGGACGACTCGTGCGACGTCACCGAGCCGTCCGGTGCGGTGGCCGTCCAGCTCCCGGTGGACCCGCTGCCCCGCACGATCGCGACGGGACCCCGCGTCGGCGTCGGGGGAGAGGGAGCCGACCCCGCCCGGTTCGGCTGGCGCTCCTGGCTCGTCGACGAGCCCACCGTCTCCTCCTACCGTCCGGTGGCCGGCCGGGTGCGCTGA	MSETTHEQAAAVPWQVPGTSWYARSVHDVARDLLGAYLVRRRPDGDVTLRITEVEAYGGADDPASHAFRGPTARNRSMFGRPGRLYVYRHLGLHHCVNIVCGSVGDAGAVLLRAGEVVEGRVVARERREAAGRCDSERQIARGPARLAVALSLDLQDDSCDVTEPSGAVAVQLPVDPLPRTIATGPRVGVGGEGADPARFGWRSWLVDEPTVSSYRPVAGRVR	PGPT0014885_595	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652	NA	NA
AK001_00958	618			hypothetical protein	GTGACCGTCCCCCCGCAGGTGCTCGACGTCGTCGTGCACCGCGTCCACGCCGCCTCCGCGCGGCTGCCCGGGCCGGGTGCGTCGCCGTCGTGGCGACGCACCCGGCTCGTGTGCGTCGACGGACCGGCCGGGTCCGGCAAGACCTCGCTCGCCACCCAGCTCGCGGTCGAGCTGTGCTGCCAGGTCGTGCACCTGGACGACCTGTACGAGGGCTGGGAGGACGGCCCGGACGGCGGTGCCCGGCGGCTCGCCCGACGGGTCCTGGAACCGCTGGCCCGCGGAGGGGCGGGGGAGTACCGCCGCTACGACTGGCCGGCGGGCGCCTGGGCGGAGACGCACCCCGTCGAGCCGGCGCCGTTCCTGGTCGTCGAGGGGTGCGGAGCAGCCGCCCGCAGCGCCGACCCGTGGGCCGCCCTGCGCATCTGGGTCGCCGCCGACGACGACGAGCGTCTGCGCCGGGGACTGGCGCGGGACGGCGAGGAGGCCCGGGAGCACTGGTTGCGCTGGATGGCCGACGAGGCCGAGCATTACGCTGCGGAGCAGACGCGCGAGCGGGCCGACGTCTGGCTGGACGGTGTCGGACGGTTGCGCGGCCCGGACCGGGCGGAGGAGGCGTGA	MTVPPQVLDVVVHRVHAASARLPGPGASPSWRRTRLVCVDGPAGSGKTSLATQLAVELCCQVVHLDDLYEGWEDGPDGGARRLARRVLEPLARGGAGEYRRYDWPAGAWAETHPVEPAPFLVVEGCGAAARSADPWAALRIWVAADDDERLRRGLARDGEEAREHWLRWMADEAEHYAAEQTRERADVWLDGVGRLRGPDRAEEA	PGPT0008010_552	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008010-pabAB-K13950	NA	NA
AK001_00959	1443	argH	COG0165	Argininosuccinate lyase	ATGAGCGACGAGACCCTGCCCGACGGCGTGTCGAGCGACGGACCGGTCGCCCTGTGGGGCGGCCGGTTCGCCGGGGGGCCCGCCCCCGAGCTGGCACGGCTGAGCAAGTCGACGGACTTCGACTGGGCGCTGGCGCAGTACGACATCCGCGGCTCGCGCGCCCACGCCGAGGTGCTGCACGCCGCGCGTCTGCTGACCGACGACGAGCTGACCGCCATGCACGAGGCGCTGGACCGGCTGTCCGAGGACGTCGCCTCAGGGGTGTTCGTGGCCGCCCCCGAGGACGAGGACGTGCACACGGCCCTCGAGCGCGGCCTGCTGCAGCGGGCCGGCGACGACCTCGGCGGCAAGCTGCGGGCGGGTCGTTCGCGCAACGACCAGATCGCGACGCAGGTGCGCATGTACCTGCGCGACCACGCCCGCGTCATCGCCGAGCAGCTCGTCACGGTCGTCGACGAGCTCATCACGCAGGCCGAGGCCGCCGGCGAGGCCGTCATGCCGGGACGCACCCACCTGCAGCACGCCCAGCCCGTGCTGCTGGCGCACCACCTGCTGGCGCACGCCTGGCCGCTCCTGCGCGACGTCGACCGGCTCATCGACTGGGACGTGCGGGCCGCGCGCTCGCCGTACGGGTCCGGGGCGCTCGCGGGCTCGTCCCTCGGCCTCGACCCGGCGGCCGTCGCCGCCGGGCTCGGGTTCGACGGTCCCGTGGAGAACTCGATCGACGGCACCGCGGCGCGCGACGTCGTGGCCGAGTTCGCGTTCGTGGCGGCGATGATCGGCATCGACCTGTCGAGGATCTCCGAGGAGATCATCCTGTGGAACACCAAGGAGTTCGGGTTCGTCCGCCTGGACGACGCCTGGTCGACCGGGTCGAGCATCATGCCGCAGAAGAAAAACCCGGACATCGCCGAGCTGGCGCGGGGGAAGTCCGGCCGGCTCGTCGGTGACCTGACGGGTCTTCTCACCACGCTCAAGGGCCTGCCGCTGGCGTACAACCGCGACCTGCAGGAGGACAAGGAGCCGGTCTTCGACCAGGTCGGCACCCTGACGGTCCTCCTGCCGGCCTTCGCCGGCATGGTGCGCACGCTGACCTTCGACACCGCACGCATGGCCGAGCTGGCGCCGCAGGGGTTCTCCCTGGCCACGGACGTCGCCGAGTGGCTGGTGCGCGAGGGCGTGCCCTTCCGGGTCGCCCACGAGGTCGCCGGGTCCTGCGTGCGCGTGTGCGAGGAGCGCGGCATCGAGCTGTGGGACCTGTCGGACGACGACCTCGCGGAGATCTCGGAGCACCTGACCCCGGGCGTGCGCGAGGTGCTCTCCGTGCCCGGGTCGGTGGCGTCCCGGGACGCCGTCGGCGGGACCGCACCGGTGCGCGTGGCCGAGCAGCTCGAGGCGGCGAAGGAGCGGGCCACCGAGTTCCGCTTCTGGGCCGAGGGCTGA	MSDETLPDGVSSDGPVALWGGRFAGGPAPELARLSKSTDFDWALAQYDIRGSRAHAEVLHAARLLTDDELTAMHEALDRLSEDVASGVFVAAPEDEDVHTALERGLLQRAGDDLGGKLRAGRSRNDQIATQVRMYLRDHARVIAEQLVTVVDELITQAEAAGEAVMPGRTHLQHAQPVLLAHHLLAHAWPLLRDVDRLIDWDVRAARSPYGSGALAGSSLGLDPAAVAAGLGFDGPVENSIDGTAARDVVAEFAFVAAMIGIDLSRISEEIILWNTKEFGFVRLDDAWSTGSSIMPQKKNPDIAELARGKSGRLVGDLTGLLTTLKGLPLAYNRDLQEDKEPVFDQVGTLTVLLPAFAGMVRTLTFDTARMAELAPQGFSLATDVAEWLVREGVPFRVAHEVAGSCVRVCEERGIELWDLSDDDLAEISEHLTPGVREVLSVPGSVASRDAVGGTAPVRVAEQLEAAKERATEFRFWAEG	PGPT0014242_83	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681	NA	NA
AK001_00960	1230	argG	COG0137	Argininosuccinate synthase	ATGACTGATCGCGTCGTGCTCGCCTACTCCGGCGGCCTGGACACCTCCGTGGCCATCGGCTGGATCGCCGAGGCCACCGGGGCCGAGGTCGTCGCCGTCGCCGTCGACGTCGGCCAGGGAGGCGAGGACCTCAACGTCATCCGGCAGCGCGCTCTCGACTGCGGCGCCGTCGAGGCCTACGTGGCCGACGCCCGCGACGAGTTCGCCACCGAGTACTGCATGCCGGCCCTGCAGGCCAACGGCCTCTACCTCGACCGGTACCCGCTCGTCTCGGCGATCTCGCGCCCCGTCATCGTCAAGCACATGGTCCGCGCCGCGCGCCAGTTCGGCGCCAAGACCGTCGCGCACGGCTGCACCGGCAAGGGCAACGACCAGGTCCGGTTCGAGGTGGCCACCACCTCGCTCGCCCCGGAGCTGACCTCGATCGCCCCGGTCCGGGACCTCGCGCTGACCCGCGAGAAGGCGATCGACTACGCCGAGAAGCACGACCTGCCGATCGCGACGACGAAGAACAACCCGTTCTCCATCGACCAGAACGTCTGGGGCCGCGCCGTCGAGACGGGCTTCCTCGAGGACATCTGGAACGAGCCCACCAAGGACGTCTACTCCTACACCGACGACCCGACGTTCCCGCCGGTCGCCGACGAGGTCGTCATCACCTTCGAGCAGGGCGTCCCGGTGGCCCTCGACGGCGTCGCGGTCACGCCGCTGCAGGCCATCGAGGAGATGAACCGCCGCGCCGGCGCCCAGGGCGTGGGTCGGATCGACATCGTCGAGGACCGGCTCGTGGGCATCAAGTCGCGCGAGGTGTACGAGGCGCCGGGCGCGATGGCGCTCATCGCCGCCCACCAGGAGCTCGAGAACGTCACGCTCGAGCGGGAGCAGGCGCGCTTCAAGAAGGGCGTCGAGCAGCGCTGGGGCGAGCTCGTCTACGACGGCATGTGGTTCTCGCCGCTGAAGAAGAGCCTCGACACGTTCGTCGCCGACACCCAGAAGTACGTCTCTGGCGACATCCGCCTCGTGCTGCACGGGGGCCGCGCCACGGTCACGGGCCGTCGCTCGGAGGCCTCGCTGTACGACTTCAACCTCGCGACCTACGACGAGGGCGACGCCTTCGACCAGTCGCACGCCAAGGGGTTCATCGAGATCTACGGCCTGGCCGCCAAGCAGGCCGCCGCCCGTGACGAGCGGTTCGGCAACGGCCCGGACTTCGGCGTGGGGACCCTCTGA	MTDRVVLAYSGGLDTSVAIGWIAEATGAEVVAVAVDVGQGGEDLNVIRQRALDCGAVEAYVADARDEFATEYCMPALQANGLYLDRYPLVSAISRPVIVKHMVRAARQFGAKTVAHGCTGKGNDQVRFEVATTSLAPELTSIAPVRDLALTREKAIDYAEKHDLPIATTKNNPFSIDQNVWGRAVETGFLEDIWNEPTKDVYSYTDDPTFPPVADEVVITFEQGVPVALDGVAVTPLQAIEEMNRRAGAQGVGRIDIVEDRLVGIKSREVYEAPGAMALIAAHQELENVTLEREQARFKKGVEQRWGELVYDGMWFSPLKKSLDTFVADTQKYVSGDIRLVLHGGRATVTGRRSEASLYDFNLATYDEGDAFDQSHAKGFIEIYGLAAKQAAARDERFGNGPDFGVGTL	PGPT0020130_2233	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940	NA	NA
AK001_00961	534	argR	COG1438	Arginine repressor	ATGACCACGCCGTCCGGTCACGCCCCCGCCACCAAGGCGGCCCGCCAGGCCCGTATCACCGAGATCCTGCACCGCACCGCGATCCACTCCCAGGCCGAGCTCGCCCGCGAGCTCGCCGCCGAGGGCCTGTCCGTCACGCAGGGCACGCTGTCCCGCGACCTCATCGAGCTGCGGGCCGAGAAGGTGCGCAGCGCCTCCGGCGCCCTCGTCTACGCCGTCCCCGGCGAGGGCGGTGACCGCACCGTGCGCGCCGCCGGCGTGGACGGGTACGACGGCGGCTACCTGGCCGCCCGGCTGGCCCGGCTCTGCGCCGACCTGCTCGTCTCCGCCGAGGCGTCGGGCAACCAGGTGGTGCTGCGCACCCCGCCCGGGGCGGCGAACTACCTCGCCTCGGCCATCGACCACTCCGTCTTCCCCGGGGTCCTCGGCTGCATCGCCGGGGACGACACGATCCTCGTGATCGCCCGGGACCCGGCCGGGGGCGACGATCTCGCCCACCGGTTCCTCGAGCTCACCGCGCCCCAGGACGCCTGA	MTTPSGHAPATKAARQARITEILHRTAIHSQAELARELAAEGLSVTQGTLSRDLIELRAEKVRSASGALVYAVPGEGGDRTVRAAGVDGYDGGYLAARLARLCADLLVSAEASGNQVVLRTPPGAANYLASAIDHSVFPGVLGCIAGDDTILVIARDPAGGDDLAHRFLELTAPQDA	PGPT0020105_222	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020105-ahrC-K03402	NA	NA
AK001_00962	933	argF	COG0078	Ornithine carbamoyltransferase	ATGCCCCGCCACTTCCTGCGCGACGACGACCTCACGCCCGCCGAGCAGCGCGAGGTGCTCGGTCTGGCGCTCGAGCTGCGGGCCGAGCCGTTCGCGCGCACCCCGCTGGCCGGTCCGCAGAGCGTCGCGCTGCTGTTCGACAAGCCCACGCTGCGCACGCAGGCCTCGTTCTCGGCCGGGATCGCCGAGCTCGGCGGCTTCCCGATGGTGGTCGACGGCAGGCTCGCCCAGGTGGGCGTGCGCGAGTCCGTCGCGGACGTCACGCGCGTGCTGGACCGGCAGGTCTCGGCGATCGTGTGGCGCACCTTCGGCCAGGAGCGCCTCGACGAGATGGCCGCCGTCTCCGCCGTCCCCGTGGTCAACGCGCTGACCGACCAGTTCCACCCGTGCCAGATCCTGGCCGACCTGCTCACCGTCGCCCAGCACCGCGGCGGTCTCGACGCCCTGCCCGGGCAGCGGCTGGCCTACGTCGGCGACGCGGCGAACAACATGGGCGCCTCGTACCTGATCGGCGGCGCGACGGCCGGGTTGCACGTGCTGGTCGGCGGGCCCGAGGGCTACCAGCCGGACGCCGACGTCGTGCGCCGCGCCGAGGAGATCGCGGCCACCACGGGTGGCTCGGTCACGGTGACGACCGACCCGGCCGCGGCGGTCGCCGACGCGGACGTCGTGATGACCGACACGTGGGTCTCGATGGGCGACGAGGAGTCCGCGGCGCAGCGCGTCCAGGACCTCTCGCCGTACCAGGTGACGCCGGAGCTCATGGACCGCGCGCGGTCCGACGCGATCTTCCTGCACTGCCTGCCGGCCTACCGGGGCAAGGAGGTGGCCGCGGAGGTCATCGACGGGCCGCGGTCGGCCGTGTGGGACGAGGCGGAGAACCGCCGGCACGCCCAGAAGGCCGTCCTGACGTTCCTGCTGGAGCAGCGATGA	MPRHFLRDDDLTPAEQREVLGLALELRAEPFARTPLAGPQSVALLFDKPTLRTQASFSAGIAELGGFPMVVDGRLAQVGVRESVADVTRVLDRQVSAIVWRTFGQERLDEMAAVSAVPVVNALTDQFHPCQILADLLTVAQHRGGLDALPGQRLAYVGDAANNMGASYLIGGATAGLHVLVGGPEGYQPDADVVRRAEEIAATTGGSVTVTTDPAAAVADADVVMTDTWVSMGDEESAAQRVQDLSPYQVTPELMDRARSDAIFLHCLPAYRGKEVAAEVIDGPRSAVWDEAENRRHAQKAVLTFLLEQR	PGPT0020080_3394	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611	NA	NA
AK001_00963	1254	argD	COG4992	Acetylornithine aminotransferase	ATGAACGAGATGGCCACCCGTCGCGAGCTGACCACCGCCGAGTGGCAGGACGCCTACACCGGCGCCGTGATGGACACCTTCGGCCCGCCGCAGCGCATCCTCGTGCGCGGCGAGGGCGCCTACGTCTGGGACGCCGAGGGCACGCGCTACCTCGACCTGCTGGCCGGGATCGCCGTCAACTCCCTGGGGCACGCCCACCCCACGCTGACGGCGGCCGTCAGCGCCCAGCTCGGCACGCTCGGGCACGTGTCGAACTTCTTCGGCACGCCCACGCAGATCACGCTCGCCGAGCGGCTGCTGGCGCTCGCCGAGGCGCCGTCGGGGTCGAAGGTGTTCTTCGCCAACTCCGGGACCGAGGCCAACGAGGCCGCATTCAAGATGGCGCGGCGCACGGGCCGCACCCGGATCCTCGCGCTCGAGGGCGGCTTCCACGGCCGGACCGTCGGCGCGCTCGCCCTGACCCACAAGCCCGCCTACCGCGAGCCGTTCGAGCCGCTCCCCGGCGGGGTCGAGCACGTCCCGTTCGGGGACACGGCCGCGCTGGAGGAGGCCTTCTCGCCGGCCGCCGTGGCCGAACGCGGCGAGGTCGCGGCGCTGGTCGTCGAACCCGTCCAGGGCGAGGCCGGGGTGCGCGAGCTGCCCGCCGGTTACCTGGTGCTGGCCCGCCGGCTGACGCACGACGCCGACGCGCTGCTCGTCCTCGACGAGGTGCAGACCGGCGTGGGACGCACCGGGTCGTGGTTCGCCTACCAGCAGCCGGAGATCGGCGGCGGCATCGTGCCCGACGTCGTCACCCTCGCCAAGGGCCTGGGCGGCGGCTTCCCGGTCGGCGCCGTCGTCGCCTACGGCGAGCGTGCGGCGACGCTGCTGGGCCGCGGCCAGCACGGGACGACGTTCGGCGGCAACCCGGTGGCGGCCGCCGCGGCGCTGGCGACGATCGGCGTCATCGAGCGGGACCGGCTGCTGGCCCAGGTGCGTCAGGTCGGCGAGACCCTGCGCCGGGCGATCACCGCCGCGGGCAACCCCCTGGTCGCCGAGGTGCGGGGCCGAGGGCTGCTGCTGGCGGTCCGACTCACCCGTCCGGTGGCGGCCCAGGTGGCGGCTGCGGCGCTGGAGGCCGGGTTCATCGTCAACCCCGTCGCCCCCGACGCCGTCCGCCTCGCCCCGCCGCTGATCCTCACCACGGACCAGGCCCTGGACGCCGCACGGTTCTTCGCCGAGGTCACCGTGCCCGAGACCCCGAAAGAAGGCTGA	MNEMATRRELTTAEWQDAYTGAVMDTFGPPQRILVRGEGAYVWDAEGTRYLDLLAGIAVNSLGHAHPTLTAAVSAQLGTLGHVSNFFGTPTQITLAERLLALAEAPSGSKVFFANSGTEANEAAFKMARRTGRTRILALEGGFHGRTVGALALTHKPAYREPFEPLPGGVEHVPFGDTAALEEAFSPAAVAERGEVAALVVEPVQGEAGVRELPAGYLVLARRLTHDADALLVLDEVQTGVGRTGSWFAYQQPEIGGGIVPDVVTLAKGLGGGFPVGAVVAYGERAATLLGRGQHGTTFGGNPVAAAAALATIGVIERDRLLAQVRQVGETLRRAITAAGNPLVAEVRGRGLLLAVRLTRPVAAQVAAAALEAGFIVNPVAPDAVRLAPPLILTTDQALDAARFFAEVTVPETPKEG	PGPT0014253_476	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821	NA	NA
AK001_00964	951	argB	COG0548	Acetylglutamate kinase	ATGAGCGACACGAACCCCGCGACCCCCGACGACGCGTTCACCTTCGACACCCGCACCGACCTGCGCCCCGACCAGAAGGCCGAGGTGCTGATCGAGGCGCTGCCCTGGCTGCAGGAGTTCGCCGGCGCGCTCGTCGTGGTCAAGTACGGCGGCAACGCCATGGTCGACGACGAGCTCAAGGCGGCCTTCGCCCAGGACATGGTCTTCCTGCGCCAGGTCGGCCTGCACCCCGTCGTCGTGCACGGCGGCGGCCCGCAGATCTCCACGATGCTCGACCGCGTCGGCATCCACTCCGAGTTCCGCGGCGGTCTGCGCGTCACGACGCCCGAGGCGATGGACGTCGTGCGCATGGTGCTGACCGGCCAGGTCCAGCGCGACCTCGTCGGCCTGCTCAACGCCCACGCCCCGCGCGCCGTCGGCCTGTCCGGGGAGGACGCCGGCCTGTTCGGCGCGGTGCGCCGGCACGCCATGGTCGACGGGTCCCCGGTCGACGTGGGTCTCGTCGGTGACGTCGTGCGGGTGAACCCCGGTGCCGTGCAGGACCTGCTCGACGCCGGGCGGATCCCGGTGGTGTCCACCGTCGCCCCCGACGTCGACGACCCCACCCAGGTGCTCAACGTCAACGCCGACACCGCGGCCTCGGCGCTCGCGGTCGCGCTGGGCGCGAAGAAGCTCATCGTGCTGACCGACGTCGAGGGTCTGTACACCGACTGGCCGGACCGCGGCTCGCTCGTCGAGGAGATCACCGCCGGCGACCTGCACCAGCTCCTGCCGACGCTGAGCGCCGGCATGGTGCCCAAGATGGAGGCCTGCCTGCGCGCCGTGCAGGGCGGCGTGCCCAAGGCGTCGGTCATCGACGGACGCCAGCCGCACTCGGTGCTGCTGGAGGTCTTCACCACGCGCGGCAACGGCACGATGGTCGTCCCCGACCCGACGGGGGAGGCGGCATGA	MSDTNPATPDDAFTFDTRTDLRPDQKAEVLIEALPWLQEFAGALVVVKYGGNAMVDDELKAAFAQDMVFLRQVGLHPVVVHGGGPQISTMLDRVGIHSEFRGGLRVTTPEAMDVVRMVLTGQVQRDLVGLLNAHAPRAVGLSGEDAGLFGAVRRHAMVDGSPVDVGLVGDVVRVNPGAVQDLLDAGRIPVVSTVAPDVDDPTQVLNVNADTAASALAVALGAKKLIVLTDVEGLYTDWPDRGSLVEEITAGDLHQLLPTLSAGMVPKMEACLRAVQGGVPKASVIDGRQPHSVLLEVFTTRGNGTMVVPDPTGEAA	PGPT0014249_226	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930	NA	NA
AK001_00965	1191	argJ	COG1364	Arginine biosynthesis bifunctional protein ArgJ	GTGACCGTCACCACCCCCCAGGGTTTCCGCGCCGCCGGCGTCGCCGGCGGGCTGAAGTCCTCCGGCGGGCGCGACGTCGCCCTCGTCGTCAACGACGGTCCGCTGCGCACGGCCGCCGCCGTGCTCACCGGCAACCGGGTGCAGGCCGCGCCCGTGGTGTGGACCCGGCAGGCCGTCTCGGACGGCGCCGCCCGCGCCGTCGTGCTGAACTCCGGCGGTGCCAACGCCTGCACGGGTCCGGAGGGCTTCGCCGACACCCACCGCACCGCCGAGCACGTCGCGGCGGTGCTGTCCGCCGCGGCCACCGCGCCGCAGGACGAGGTCGGGGCCGGGGACGTGCTCGTCTGCTCGACCGGTCTCATCGGCGTCCGGCTGGACATGCCCGCCCTGCTCGGCGGGATCGACTCCGCCGCCGGGTCGCTGGCCGCCGACGGCGGCGCGGACGCCGCGCACGCCATCATGACCACCGACACCGTCGCCAAGACCGCCGTGGCCGAGCGTGACGGCTGGAGCGTCGGCGGCATGGCCAAGGGCGCCGGGATGCTCGCCCCCGCGATGGCCACCATGCTCAGCGTCGTCACGACCGACGCCGTCGTGGACCCGGAGACCGCCCGGGCCGCCCTGCGCGCGGCAACCGGCCGGACCTTCGACCGGGTCGACTCCGACGGGTGCCAGTCCACCAACGACACCGTGATCCTGCTCGCCTCCGGCGCGTCCGGCGTCGAGGTCGACGAGGACGAGCTGACCGCGGCGCTCACGGAGGTGTGCGCCGACCTGTCGCGTCAGCTCGTCGCCGACGCCGAGGGGGCCGGCCACGACGTCGCCGTCACGGTGGTGAACGCGAGCACGGAGGACGCCGCGGTCGCGGTCGCGCGCGCGGTCACCCGCTCCAACCTGTTCAAGACGGCGATCTTCGGCAACGACCCCAACTGGGGCCGGATCGTCGCGGCCGTCGGCACCGTGCCCGAGGACGTCGCCCCGTACGACCCGCTGGCCCTCGACGTCTCCGTCAACGGCGTCCAGGTGTGCCGCGCCCAGGGCGTCGGCGAGCCCCGCGAGCTCGTCGACCTCGCCGCCGACCGCGAGGTCCAGGTCGAGATCGACCTGCACGCCGGTCCGGCGAGCGCCACGGTCTGGACCAACGACCTGACCCACGACTACGTCCACGAGAACAGCGCGTACTCCTCATGA	MTVTTPQGFRAAGVAGGLKSSGGRDVALVVNDGPLRTAAAVLTGNRVQAAPVVWTRQAVSDGAARAVVLNSGGANACTGPEGFADTHRTAEHVAAVLSAAATAPQDEVGAGDVLVCSTGLIGVRLDMPALLGGIDSAAGSLAADGGADAAHAIMTTDTVAKTAVAERDGWSVGGMAKGAGMLAPAMATMLSVVTTDAVVDPETARAALRAATGRTFDRVDSDGCQSTNDTVILLASGASGVEVDEDELTAALTEVCADLSRQLVADAEGAGHDVAVTVVNASTEDAAVAVARAVTRSNLFKTAIFGNDPNWGRIVAAVGTVPEDVAPYDPLALDVSVNGVQVCRAQGVGEPRELVDLAADREVQVEIDLHAGPASATVWTNDLTHDYVHENSAYSS	PGPT0014244_2749	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620	NA	NA
AK001_00966	1104	argC	COG0002	N-acetyl-gamma-glutamyl-phosphate reductase	ATGTATAGTGGCGCCATGGCCAGCACGCACCCCTCGCAGAAGCCGCTGCGCGTCGCCGTCGCCGGTGCCTCCGGGTACGCCGGCGGGGAGTTCCTCCGTCTCGCCGTGCAGCACCCGCACCTCGAGATCGGGACGCTCACCGCGCACTCCAACGCCGGCAGCCGCCTCGGCGCGCTGCAGCCGCACCTGCGCTCGCTGGCGGACCGCGTGCTCGAGCCCACCGCGGCCGAGGCGCTCGCCGGGCACGACGTCGTCGTCCTCGGTCTGCCGCACGGCGCCTCGGGCGAGATCGCGGCCCAGCTGCCCGACGACGTGCTCGTCCTCGACCTCGGGGCGGACCACCGCCTCGCCTCGGCCGCGGACTGGCAGGCCTTCTACGGCTCCGAGCACGCCGGCACCTGGCCCTACGGGCTGCCCGAGCTCGTCCTCGACTCCTCCGACGGCGACACCGGGACCCAGCGGGACCTGCTCGTCGGTGCCCGCCGCATCGCCGTGCCGGGGTGCAACGTCACCGCGGTGACCCTCGGCCTGCAGCCCGGGGTGGCCGCCGGGCTGCTCGACCCGACCGACCTCGTGGCCGTGCTGGCGAACGGGTTCTCGGGGGCCGGCAAGGCGCTCAAGCCGCACCTGCTCGCCGCCGAGGGGCTCGGGGCCGCGTCCCCGTACGCCGTCGCCGGCACGCACCGCCACATCCCCGAGATCACGCAGAACCTGCGCACGGCCGGCGCGTCGGAGGTGTCGATCAGCTTCACCCCGACGCTCGTGCCGATGTCGCGCGGCATCCTGGCCACCGCGACCGCGCGGATCGCCCCCGGGCGGGTCGCGGACGCCGACGCCGTGCGGGCCGTCTGGGAGGCCGCCTACGCCGACGAACCGTTCGTCGAGCTCCTGCCCGCCGGCCAGTGGCCCTCCACCGCGGCCACGCTCGGCAGCAACTCGGCCCTCGTCCAGGTCGCCCTCGACGCCGCTGCCGGCCGCGTCGTCACCGTCACGGCGATCGACAACCTCGTCAAGGGCACCGCCGGGCAGGCGGTGCAGGCGATGAACATCGCGCTCGGCCTGCCCGAGACCGCCGGCCTCGTCACCGAAGGAGTCGCCCCGTGA	MYSGAMASTHPSQKPLRVAVAGASGYAGGEFLRLAVQHPHLEIGTLTAHSNAGSRLGALQPHLRSLADRVLEPTAAEALAGHDVVVLGLPHGASGEIAAQLPDDVLVLDLGADHRLASAADWQAFYGSEHAGTWPYGLPELVLDSSDGDTGTQRDLLVGARRIAVPGCNVTAVTLGLQPGVAAGLLDPTDLVAVLANGFSGAGKALKPHLLAAEGLGAASPYAVAGTHRHIPEITQNLRTAGASEVSISFTPTLVPMSRGILATATARIAPGRVADADAVRAVWEAAYADEPFVELLPAGQWPSTAATLGSNSALVQVALDAAAGRVVTVTAIDNLVKGTAGQAVQAMNIALGLPETAGLVTEGVAP	PGPT0014251_253	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145	NA	NA
AK001_00967	567			hypothetical protein	GTGCACGGCGCTCACGTCGTCGGTGCGTGCCACGATGGGGCCGTGATCACCGACCCCTCGCCCGGTGCGCCGCCCCTGACGATCCGGACGGCCCGCCCGGACGACTGGCCCGCCCTGTGGCGGATCGTCGAACCGGTCGTGCGCGAGGGGGAGACGTACACCTATCCCACGGACCTGACGAGCGACGAGGCGCTCGACCTGTGGCTCGCCGCGCCACCCGCCCGCACGGTGCTCGCGGAGGCCGACGGCGTGGTGCTGGGGACGGCCCGCATGGGCCCGAACAAGCCCGGGCACGGCGACCACGTCGGCACCGCAGCGTTCATGGTCGCGCCGGCCGCACGGGGGCGCGGCGTCGCCCGTGCGCTGGCCGAGCACGTGATCGCCTGGCACCGTGCCGAGGGCTACCGCGGCATCCAGTTCAACGCGGTCGTCGAGACCAACACCGCCGCCGTGCGGTTGTGGCACTCCCTGGGGTGGCGGACGGTGGGGACCGTGCCGGGCGCGTTCCGCAGCCCGGCCCACGGCGACGTGGGGCTGCACGTGATGTTCCGGTCCGTGGACACCTAG	MHGAHVVGACHDGAVITDPSPGAPPLTIRTARPDDWPALWRIVEPVVREGETYTYPTDLTSDEALDLWLAAPPARTVLAEADGVVLGTARMGPNKPGHGDHVGTAAFMVAPAARGRGVARALAEHVIAWHRAEGYRGIQFNAVVETNTAAVRLWHSLGWRTVGTVPGAFRSPAHGDVGLHVMFRSVDT				NA	NA	NA	NA	NA
AK001_00968	228			hypothetical protein	GTGCTGCGCCCCGGCGGGCGCGCGGTCATGGCCACGTTCCGGATCGCGGACCGCCCGGCGGGAGCCCGCGGCTTCCCCACGTTCCACACGCGGACGGCCTCGCCGGCCGCGCTCTCCCGGACCGTCGCGCCCACGGGCCTGCGCGTGACGCGGCACCGCACCTGGGACCACGACGGCGGCGACTCGCTGCTCCTGGCCGAGCTCGAGCCGGTCCCCCGCACCGCCTGA	MLRPGGRAVMATFRIADRPAGARGFPTFHTRTASPAALSRTVAPTGLRVTRHRTWDHDGGDSLLLAELEPVPRTA				NA	NA	NA	NA	NA
AK001_00969	984			2-haloacrylate reductase	ATGCGCGCAGTGGTGGCCCGCGCCGCGGGTGGTCCCGAGGTCCTGGAGTACACCGAACGCCCCGACCCGGGGCCGGGTCCGGACGACCTGCTCGTGCGGGTCGCCGCCGCCGGCGTCAACTTCATCGACACCTACCGACGGTCGGGCGCCTACCCGATGGAGTTCCCGCACGTCGTGGGCGTCGAGGGCGCCGGCACGGTCGAGTGGGTCGGCGACGACGTCGTCGGGTTCGCCGTCGGCGACCGCGTCGCGTGGCACGCCGCACCCGGCTCGTACGCCGAGCTGGCCCGCGTCCCGGCCGCGGGCGCCGTGCACGTCCCGGCCGAGCTGGACCTCACGACGGCGGCCGCCCTGCCCCTGCAGGGGATGACGGCGCACTACCTGGTCGCCTCCACCTTCGAGGTCGGGCCGGGGCACGACGTGCTGCTCACCGCCGGCGCGGGCGGTGTCGGGCTGCTGGCGACCCAGCTCGCCGTCGCCCGCGGCGGTCGCGTCCTGACGACCGTCTCCTCCCCCGAGAAGGCCGCCCTGTCGTCCGCCGCCGGGGCCGCGCACACCGTCGACTACGCCGCCATGGCGGACCTGACCGCCGAGCTGCCCGCCGTCGTGCGCCGCCTGACCGACGGCGAGGGGGTGCACGTCGTCTACGACGGCGTCGGTGCCGCGACCTTCGACGCCTCCCTCGCCGCGCTGCGCCCCCGTGGCACGCTGGCGCTGTTCGGCGCCGCCTCGGGTCCCGTGCCGCCGGTCGACCCGCAACGCCTCAACGCGGCCGGGTCCGTCTACCTGACCCGGCCCTCGCTCGTGCACTACACGGCCGGCCGGTCCGAGCTGGAGTGGCGGGCCGCCGAGGTGTTCGACGCCGCGGTGGCCGAGGACCTGGACGTGCGGATCGGCGCGACGTACCCGCTGGCCGACGCCGCGCAGGCGCACCGTGCCCTGGAAGGACGCCGCACGACCGGCAAGGTGCTGCTCATCCCCTGA	MRAVVARAAGGPEVLEYTERPDPGPGPDDLLVRVAAAGVNFIDTYRRSGAYPMEFPHVVGVEGAGTVEWVGDDVVGFAVGDRVAWHAAPGSYAELARVPAAGAVHVPAELDLTTAAALPLQGMTAHYLVASTFEVGPGHDVLLTAGAGGVGLLATQLAVARGGRVLTTVSSPEKAALSSAAGAAHTVDYAAMADLTAELPAVVRRLTDGEGVHVVYDGVGAATFDASLAALRPRGTLALFGAASGPVPPVDPQRLNAAGSVYLTRPSLVHYTAGRSELEWRAAEVFDAAVAEDLDVRIGATYPLADAAQAHRALEGRRTTGKVLLIP	PGPT0013255_4864	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_00970	792	fgd_2		F420-dependent glucose-6-phosphate dehydrogenase	ATGACCTCCACCACGCCCGAGCGACCCGTGCGCGTCGCCGTCCAGCTCCAGCCCCAGCACGCCGACTACGGCCAGATCCGCGACGCCGTGCTGCGCGCCGAGGACCTGGGCGTCGACGTGGTCTTCAACTGGGACCACTTCTACCCGCTGTCCGGCGACCCCGACGGCAAGCACTTCGAGTGCTGGACCATGCTCGGTGCCTGGGCCGAGCAGACCGAGCGCGTCGAGATCGGCGCCCTGGTCACCGGCAACGGCTACCGCAACCCCGACCTGCTGGCCGACATGGCCCGCACGGTCGACCACGTCTCCGGCGGCCGGCTGATCCTCGGGATGGGCGCCGGCTGGTTCGAGAAGGACTACCGGGAGTTCGGCTACGAGTTCGGCACGGCCGGCTCGCGCATCGCCGGCCTGGCCGAGGCGATGCCGCGCCTCCGCCACCGGCTGGCCGTCGGCAACCCCGCGCCCACCCGCGAGATCCCGATCCTCATCGGTGGCGGCGGGGAGAAGAAGACCCTGCGGATCGTGGCCGAGCACGCGGACGTGTGGCACTCCTTCGGCGACGTCGACACGCTGCGCCGCAAGTCGGCGATCCTGGACGAGCACGGCGCCGCCGTCGGCCGGGACACCGCCCGGCTGGTCGAGCGCTCGGTCGGGGTCCACGGGGCGCCCGACGCGACCGGTCCCGACCTGGTCGCGGCCGGAGCGACCCTGCTGACGATCGGCGTCGGCGGCCCCGACTACGACCTGAGCACCGTCGCGGACTGGGTCGCCTGGCGCGACGCCCAGGGCTGA	MTSTTPERPVRVAVQLQPQHADYGQIRDAVLRAEDLGVDVVFNWDHFYPLSGDPDGKHFECWTMLGAWAEQTERVEIGALVTGNGYRNPDLLADMARTVDHVSGGRLILGMGAGWFEKDYREFGYEFGTAGSRIAGLAEAMPRLRHRLAVGNPAPTREIPILIGGGGEKKTLRIVAEHADVWHSFGDVDTLRRKSAILDEHGAAVGRDTARLVERSVGVHGAPDATGPDLVAAGATLLTIGVGGPDYDLSTVADWVAWRDAQG				NA	NA	NA	NA	NA
AK001_00971	840			hypothetical protein	GTGGCTGAGCCGCACCAGGTCCCCGCGGCGCGGACCGCGCTGGTCACCGGGGCGACGCGCGGCATCGGCCGGGCCGTCGCGCTGGGTCTGGCCGAGGCCGGCCTCGACCTGGCGCTGCTGGCCCGCGACGCCGACCGGCTGGCCGAGGTCGCCGGGCTCGTCCGGGCCGCGGGCCGCACGGCGCTCGTCCTGCCGTGCGACGTGACGGACCCGCGGGCCGTCTCCGCCGCGGTGGGCCGTGCCGAGGACGAGCTCGGCCCGATCGACCTGCTGGTCAACAACGCCGGGCGCATCGACGCCGAGGTCCCCGTGTGGGAGGCGGACGCGGAGGAGTGGTGGTCGGTCATGGCCACCAACCTGCGCGGCCCGTTCCTCCTCGTGCGGAACCTCGTGCCGGCGATGCTCGCCCGCGGGGGCGGCCGGGTGATCGACCTCAACAGCGGGGCGGGGTCGCACGACATGACCTACTCCAGCGCCTACAACCTGTCCAAGACCGCGCTGATGCGCCTCGGCCAGCAGCTGCACGCCACGGGCCACGACCAGGGCCTGCGGACGCTCGAGCTCGCGCCGGGCGTGGTGGCCACGGACATGACCGCCGGGATGCGGACCCACGAGGGGCGCACGGAGTGGACCCCCGTGGAGCGCACCGTGGACGTCGCGGTCGCCTTCGCCCGCGGCGAGCTCGACGACTGCTCGGGCTGGTTCGTGCGCGTCTCCGACGACACCCCGGAGTCGTTGCGGGCGGTCGCCGCCGAGGCGACGGCCGCCGTGCCGCGCCGGCTGCGCGTGCTGCCCGCCGGTGACGGCGACCCGCTGCGTCAGACGCTCACGGAGCGCTGA	MAEPHQVPAARTALVTGATRGIGRAVALGLAEAGLDLALLARDADRLAEVAGLVRAAGRTALVLPCDVTDPRAVSAAVGRAEDELGPIDLLVNNAGRIDAEVPVWEADAEEWWSVMATNLRGPFLLVRNLVPAMLARGGGRVIDLNSGAGSHDMTYSSAYNLSKTALMRLGQQLHATGHDQGLRTLELAPGVVATDMTAGMRTHEGRTEWTPVERTVDVAVAFARGELDDCSGWFVRVSDDTPESLRAVAAEATAAVPRRLRVLPAGDGDPLRQTLTER	PGPT0003180_1250	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_00972	2607	pheT	COG0072	Phenylalanine--tRNA ligase beta subunit	ATGCCCCGCATCGTTGCTGACTGGCTCGCCGACCACGTCGAGCTGCCGGCGGACCTGAGCGCCGAGCAGCTCGCCGCCGACCTCGTCCGGGTCGGCCTGGAGGAGGAGGAGATCCACCCCGCCGCGGTCACCGGGCCGCTCGTGGTGGGTCGCGTCCTCGAGCTGACGCCCGAGGAGCAGAAGAACGGCAAGACGATCAACTGGTGCCTGGTCGACGTCGGCGGCGAGCACAACGCGGCGCAGATCGCGGGCGTCGACGACGCCGACGTGCCCGCCGGGGGAGCGCGGGGCGTCGTGTGCGGCGCGCACAACTTCGGCGTCGGGGACCTGGTGGTGGTCTCGCTGCCCGGCACGGTGCTGCCGGGCGGGTTCGCGATCGCCTCGCGCAAGACCTACGGGCACGTCTCGGACGGCATGATCTGCTCGACCAAGGAGCTCGGTCTGGGCGAGGACCACGCCGGCATCCTGGTGCTGACGGAGGCCGGCTTCGACGCCGCGGACCTCACCCCCGGCCAGGACGCGGTCGCGCTGCTCGGCCTCGGGGACGAGGTGCTCGAGATCAACGTCACCCCGGACCGCGGCTACGCGTTCAGCTACCGGGGCGTGGCGCGCGAGTACGCCCACTCCACGGGTGCCGCGTTCACCGACCGCGGCCGGCCGGACGCGCTGCCGACGGCACCGCCGGCCGCCACGGACGACGGCTTCGCCGTCGAGGTCGACGACGCCGCCCCGATCGACGGGCAGGTCGGCTGCGACCGGTTCGTCACGCGCGTCGTGCGCGGCATCGACCCGGCCGCGCCCACCCCGCCCTGGATGAAGCGCCGGCTCGAGGGCTCGGGCATGCGGTCGATCTCCCTGGCGGTGGACGTCACGAACTACGTGATGCTCGACCTCGGCCAGCCGCTGCACGCCTACGACCTGGCGCAGGTCGCCGCACCGATCGTGGTCCGCCGGGCCACGCCGGGGGAGCGGCTGACCACGCTCGACGACGTCGACCGCGCCCTGCACGCCGAGGACCTGCTCATCACCGACTCGCCCGACGGCGCCCGGGGAGCACGCGTGCTGGGCCTGGCCGGCGTCATGGGCGGGGCCTCCTCGGAGGTGTCCGACGCGACGACCGACGTCCTCGTCGAGGCCGCGCACTTCGACCAGGTCACCGTCGCCCGCACGGCACGCCGGCACAAGCTGCCCTCCGAGGCGGCCAAGCGCTTCGAGCGCGGCGTCGACCCGCTGCTGGCGCCCGTGGCCGCGCAGCGCGTCGTCGACCTGCTCGTCGAGCTCGGCGGCGGGACCGCGGACCCGGCGGTGAGCGACCTGGACACCACCACGTCGCCCACGCCGATCGAGATGGACGTCGCCCTGCCCGCGCGCACCTCGGGCGTGTCCTACTCGCGCGCGCAGGTCGTGGGCATCCTCGAGCAGATCGGCTGCACGGTGACCGGCGAGGAGACGCTGACCGTCACCCCGCCGACCTGGCGCCCGGACCTCACCGAGCCGGCCGCCCTGGTCGAGGAGGTCGTGCGCATCGCCGGCTACGACCAGATCGCCTCCGAGCTCCCGGCGGCCCCCGGCGGCCGGGGCCTCACGCCCGAGCAGCGTGTGCGACGGTCGGTGGCCCGCGCGCTCGCGGACGCCGGCCTGGTCGAGGTGCTGTCGTACCCGTTCGTCGGCCCGCAGGACCTGGACGCGCTCGGGCTGCCCGCCGACGACGCGCGTCGCCGGGCGCTGCGGCTGGCGAACCCGCTGGCGGACGACCGTCCCCTGATGCGGACCAACCTGCTGGTCAGCCTGCTCGAGACCGCGCGACGCAACGTCTCGCGCGGGATCGACGACGTCGCCGTCTTCGAGGTCGGCCAGGTGACCCGCCCGGCCGTCGACGCCCCGGCGGCTCCGCAGCTGCCGGTGGGCGTGCGGCCCTCGGCGGACCAGCTCGACGCGCTGGCCGCCGCCACGCCGGACCAGCCCCGCCGTGTCGCCGGCGTCCTGGCCGGGAACCGCGCGCCGGCCGGCTGGTGGGGCGAGGGGCGTCCCGTCGACTGGGCCGACGCGGTCGAGGCGGCCCGGACGGTGACCGACCTCGTGGGCGTGGAGGTCGTGGTCGCGAACGACCCCGAGCACATGCCGTGGCACCCCGGGCGGTGCGCCCGGTTCGCCGTCGCCGACGGTGACGGATCGCTGCGGACCGTGGGTCACGCCGGCGAGCTGCACCCCAAGGTCCTGGAGGAGCTCGGCCTGCCGCGCCGCACGGCCGCGTTCGAGCTCGACCTGTCGGCGCTGGTCGCGGCGGCGGACACGGCGCCCCGCACGGCCGCACCGGTGTCGGCGTTCCCTGCGGCCAAGGAGGACTTCGCCCTCGTCGTCGACGCCGGGGTCCCGGCCGCCGAGGTCGAGGCCGCGGTCGTGGCGGGTGCCGGGGACCTGCTCGAGCGCGTGGAGCTCTTCGACCTCTTCACCGGCGAGCAGGTCGGCGCGGGCAAGAAGTCGCTGGCCTACTCCGTCCGGCTGCGCGCCGCGGACCGGACCCTGACCGCCGACGACGTGCGCGCCGTCCGCGACGGCGTCGTGCGCGCCACCGCCGAGCGCGTCGGGGCGGTCCTCCGTGGCTGA	MPRIVADWLADHVELPADLSAEQLAADLVRVGLEEEEIHPAAVTGPLVVGRVLELTPEEQKNGKTINWCLVDVGGEHNAAQIAGVDDADVPAGGARGVVCGAHNFGVGDLVVVSLPGTVLPGGFAIASRKTYGHVSDGMICSTKELGLGEDHAGILVLTEAGFDAADLTPGQDAVALLGLGDEVLEINVTPDRGYAFSYRGVAREYAHSTGAAFTDRGRPDALPTAPPAATDDGFAVEVDDAAPIDGQVGCDRFVTRVVRGIDPAAPTPPWMKRRLEGSGMRSISLAVDVTNYVMLDLGQPLHAYDLAQVAAPIVVRRATPGERLTTLDDVDRALHAEDLLITDSPDGARGARVLGLAGVMGGASSEVSDATTDVLVEAAHFDQVTVARTARRHKLPSEAAKRFERGVDPLLAPVAAQRVVDLLVELGGGTADPAVSDLDTTTSPTPIEMDVALPARTSGVSYSRAQVVGILEQIGCTVTGEETLTVTPPTWRPDLTEPAALVEEVVRIAGYDQIASELPAAPGGRGLTPEQRVRRSVARALADAGLVEVLSYPFVGPQDLDALGLPADDARRRALRLANPLADDRPLMRTNLLVSLLETARRNVSRGIDDVAVFEVGQVTRPAVDAPAAPQLPVGVRPSADQLDALAAATPDQPRRVAGVLAGNRAPAGWWGEGRPVDWADAVEAARTVTDLVGVEVVVANDPEHMPWHPGRCARFAVADGDGSLRTVGHAGELHPKVLEELGLPRRTAAFELDLSALVAAADTAPRTAAPVSAFPAAKEDFALVVDAGVPAAEVEAAVVAGAGDLLERVELFDLFTGEQVGAGKKSLAYSVRLRAADRTLTADDVRAVRDGVVRATAERVGAVLRG				NA	NA	NA	NA	NA
AK001_00973	1101	pheS	COG0016	Phenylalanine--tRNA ligase alpha subunit	ATGACTGCGCCCGAACCGCTGCCCGACCCGCTGGACGTCGCCGCCCTGGACGCGGCGGTGGACGCCGCGCTGGCCGACGTCGCCGCAGCGACCCGGCTCGACGAGCTGAAGACCGTCCGTACCCGGCACACCGGCGACAAGAGCCCGCTGGCCCTGGCGAACCGTGCCATCGGCGGCCTGCCCGGCCCCGACAAGGCCGCCGCGGGCAAGAACGTCGGCCCCCGGCGCGGACGGATCAACCAGGCGCTGGCCGCCCGCCAGACCGAGCTCGAGGCCGAGCGGGACGCCCGCGTGCTGGTCGAGGAGACCGTGGACGTCACTCTCCCGACGCACCGGGCCCCGGTCGGTGCCCGGCACCCGATCGAGCTCGTCCAGGAGCGCGCCGCCGACTTCTTCGTCGGGATGGGGTGGGAGATCGCGGACGGTCCCGAGGTCGAGGCCGAGTGGTTCAACTTCGACGCCCTCAACTTCGGGCCCGACCACCCGGCCCGGCAGATGCAGGACACCTTCTACGTCGCGGGCACCGACGGACCGGGCACCGACGGCACGGACGCCGGCGAGGATCCGTCCGCGGCGCCGAACCTGGTGCTGCGCACGCACACCTCGCCGGTGCAGGCGCGCTCCCTGCTGGCGCGCGGCGTGCCGCTCTACATCGCCTGCCCGGGCAAGGTGTTCCGCACCGACGCCCTGGACGCCACACACACCCCGGTGTTCCACCAGGTCGAGGGTCTCGCCGTCGACAAGGGACTGACGATGGCCAACCTCGTCGGCACGCTGGACGCCTTCGCCCGGGCGATGTTCGGGCCGGAGGCCAAGACCCGCCTGCGGCCGAGCTTCTTCCCGTTCACCGAACCCAGCGCCGAGATGGACCTGTGGTTCCCGCAGAAGAAGGGTGGGGCCGGCTGGATCGAGTGGGGCGGCTGCGGCATGGTGCACCCCAACGTGCTGCGGGCCGCCGGCGTCGACCCCGAGGAGTACTCCGGGTTCGCGTTCGGCATGGGGATCGAGCGCACGCTGATGCTCCGCCACTCGATCGCTGACATGCACGACATCGTGGAGGGCGACGTGCGCTTCTCCACGCAGTTCGGGACGGAGATCTGA	MTAPEPLPDPLDVAALDAAVDAALADVAAATRLDELKTVRTRHTGDKSPLALANRAIGGLPGPDKAAAGKNVGPRRGRINQALAARQTELEAERDARVLVEETVDVTLPTHRAPVGARHPIELVQERAADFFVGMGWEIADGPEVEAEWFNFDALNFGPDHPARQMQDTFYVAGTDGPGTDGTDAGEDPSAAPNLVLRTHTSPVQARSLLARGVPLYIACPGKVFRTDALDATHTPVFHQVEGLAVDKGLTMANLVGTLDAFARAMFGPEAKTRLRPSFFPFTEPSAEMDLWFPQKKGGAGWIEWGGCGMVHPNVLRAAGVDPEEYSGFAFGMGIERTLMLRHSIADMHDIVEGDVRFSTQFGTEI				NA	NA	NA	NA	NA
AK001_00974	624	thpR		RNA 2',3'-cyclic phosphodiesterase	GTGCGACTGTTCACGGCGGTGTACCCGCCCCGGGAGGTGCTCGAGCACCTCGACCTGGCGCTGGGCGGGGTCGGAGGACCGTCGGCGTCCGCACCGGGCAGCGGGCTGCGCTGGGTCCCGTCCGCGCAGCGGCACGTGACGCTCGCCTTCCACGGGGAGGTCCCCGACGGCGCCGTGGAGGACTACGTCGACGAGCTCGCCACGGTGGTGGCACGCGCTGCGCCGTTCGAGACGGCGCTGGTCGGCAGCGGCACGTTCGGGGGTCGCACGCTGTGGGTCGGCGTCGGCGGTGAGGTGGACCGGCTGCGGGCGCTGTCGCACGAGGTGGCCCGCGCGGCGGACGCCGTGGGGATCGCAGGTGCCGACCGGGCCGGCGGCCGCCCGCACCTGACCGTGGCGAGGGTCTCGGCCGCGCGGCGAGGCAGGGACCGGCACGGTCGCGGCCGAGGCGCCCCGCGCGAGACGGACCCGGCGACGCCGTTCGCCCGCTGGGCCCGCGCGCTGGCGGTCTACCGGGGTCCGACCTGGCCGGTCCGCACCGTGCACGTGGTCGCCTCGCGCCTCGGGGCGGGTCGCTCGGGCGGTCCGGCCCACGAGGACGTCGCGGTGCTGCCCCTCGGGTGA	MRLFTAVYPPREVLEHLDLALGGVGGPSASAPGSGLRWVPSAQRHVTLAFHGEVPDGAVEDYVDELATVVARAAPFETALVGSGTFGGRTLWVGVGGEVDRLRALSHEVARAADAVGIAGADRAGGRPHLTVARVSAARRGRDRHGRGRGAPRETDPATPFARWARALAVYRGPTWPVRTVHVVASRLGAGRSGGPAHEDVAVLPLG				NA	NA	NA	NA	NA
AK001_00975	360			hypothetical protein	ATGAAGCGCATCGCGGTCGCCGGCGTGTCCGCGGCCCTCGCCGCCCTGGCCACGGTGGGAGCCGCCGGTTCGGCCTCCGCCGCCGCCCCGGTCGGAGCGGGAGACGGCGGCAAGCCCACCGGCATCGAGTGCCAGCAGTTCGGCATCGGCGTGCTCCAGGACACCGGAGTCCTGAGCGGCGTGGCCGCGAACGGGCTGGAGTGGCCGATCGGGAGCGGCGACTACCTGCCCTTCAGCACCGTGCTCCAGATCCACCGCACCGACCCCGGTACCGCGAACGTGGTGCTGAAGGCCTACGCGGACGTGCTGCTGCCCGGCGCGGACGTCGACGGCGCCATCGACGCCGCCTGCCCGGCCTGA	MKRIAVAGVSAALAALATVGAAGSASAAAPVGAGDGGKPTGIECQQFGIGVLQDTGVLSGVAANGLEWPIGSGDYLPFSTVLQIHRTDPGTANVVLKAYADVLLPGADVDGAIDAACPA				NA	NA	NA	NA	NA
AK001_00976	855	aviRb		23S rRNA (uridine(2479)-2'-O)-methyltransferase	ATGCCCCGCATCCCCGACGTGACGCTCGCCAACCCGCGAGCAGGTCGCGTCAAGCAGGTCAGGGCGCTGTCCGGGCGTTCTGCGCGTTCCAAGCACGGCCAGTTCCTCGTCGAGGGCCCGCAGGGCGTCCGGGAGGTCGTGCGGCACGCCCCGCAGGACGTGCGCGACCTCTACCTCACCGCGGACGCGGCCCGCCGCTATCCCGAGATCCTCGACGCGGCGCAGCACGCCGACCTGTACGTCCACGTCGGGACCCCCGAGGTGCTCGACGCCATGAGCGCCGACGCCCAGGGCGTGCTCGCCGTCGTCCGCGTCCGGGCTCCCGAGCTGGAGCCCGCGCTCGCCGCGGCCGGGTCGCCGGACCGCGCCCTGCTCGTGGCCGTGCTGGCCTCGGTGCGGGACCCGGGCAACGCCGGCACCGTGATCCGCGCCGCCGACGCCGCCGGGGCGGACCTGGTGGTGCTGGCCGGCGACAGCGTCGACGTCCACAACCCGAAGGTCGTCCGCTCCACCGCGGGGTCCCTCTTCCACCTGCCGGTCGTGACGGGGGTGACGCTGGCGCAGACCGTCGACGCGGCCCGCGCCGCGGGCTGCACCGTGCTCGCCGCCGACGGGACCGGCCGCCACGACCTCGACGACCTGCTCGACGTCGCCGGCAGCGACGCCGCGGACGCGCCGGACCTGGCGCGCGGCACGGCCTGGGTCTTCGGCAACGAGGCGTGGGGCCTGCCGGCGCCGGACCGCGCGCTGGCCGACGCCGTCGTCCGCGTCCCGATCCGCGGGCGGGCCGAGTCCCTCAACCTGGCGACGGCCGCGACGGTCTGCCTCTACGCCTCGGGACGCGCCCACCGCTGA	MPRIPDVTLANPRAGRVKQVRALSGRSARSKHGQFLVEGPQGVREVVRHAPQDVRDLYLTADAARRYPEILDAAQHADLYVHVGTPEVLDAMSADAQGVLAVVRVRAPELEPALAAAGSPDRALLVAVLASVRDPGNAGTVIRAADAAGADLVVLAGDSVDVHNPKVVRSTAGSLFHLPVVTGVTLAQTVDAARAAGCTVLAADGTGRHDLDDLLDVAGSDAADAPDLARGTAWVFGNEAWGLPAPDRALADAVVRVPIRGRAESLNLATAATVCLYASGRAHR				NA	NA	NA	NA	NA
AK001_00977	384	rplT	COG0292	50S ribosomal protein L20	GTGGCACGCGTGAAGCGGGCGGTCAACGCCCACAAGAAGCGCCGTACGACCCTCGAGCGCGCCAGCGGCTACCGCGGCCAGCGTTCCCGTCTGTACCGCAAGGCCAAGGAGCAGGTCACCCACTCCTTCGTCTACTCGTACCGTGACCGGAAGGCCAAGAAGGGCGACTTCCGCAAGCTGTGGATCCAGCGCATCAACGCTGCGGCCCGCCAGCAGGGTCTGACCTACAACCGGTTCGTCCAGGGCCTCAAGGCCGCGGGCGTCGAGGTCGACCGTCGCATGCTCGCCGAGCTCGCGGTCAACGACACCGCCGCGTTCAACGCGCTGGTCCAGGTCGCCAAGGACGCCCTGCCCCAGGACGTCAACGCGCCGAAGGCCGCCTGA	MARVKRAVNAHKKRRTTLERASGYRGQRSRLYRKAKEQVTHSFVYSYRDRKAKKGDFRKLWIQRINAAARQQGLTYNRFVQGLKAAGVEVDRRMLAELAVNDTAAFNALVQVAKDALPQDVNAPKAA				NA	NA	NA	NA	NA
AK001_00978	195	rpmI	COG0291	50S ribosomal protein L35	ATGCCGAAGAACAAGACGCACTCCGGCGCCAAGAAGCGCTTCCGGACGACCGGCAAGGGCAAGCTCATGCGCGAGCAGGCGAACCGTCGCCACCTGTTCGAGCACAAGCCGACCAAGCGCACCCGCCGGCTGGCCTCCGACGAGCCGGTGGCCAAGGCCGACGTCCAGCGAATCAAGAAGATGCTCGGTAAGTGA	MPKNKTHSGAKKRFRTTGKGKLMREQANRRHLFEHKPTKRTRRLASDEPVAKADVQRIKKMLGK				NA	NA	NA	NA	NA
AK001_00979	657	infC		Translation initiation factor IF-3	GTGGTCGCCACGGGAGTCGCCCTGAAGCTTGCCCAGGACGCGGACCTCGACCTCGTCGAGGTCGCCCCGGCAGCCCGTCCTCCCGTCGCCAAGCTCATGGACTTCGGCAAGTACAAGTACGAGTCGGACATGAAGGCGCGCGAGGCGCGGCGCAAGCAGGCGAACACTCTCCTGAAGGAGATCCGCTTCCGCCTCAAGATCGACCCGCACGACTACGCCACCAAGAAGGGGCACGTCGAGCGGTTCCTCGCGGCCGGCGACAAGGTCAAGGTCATGATCATGTTCCGTGGTCGTGAGCAGTCCCGCCCGGAGGCCGGCGTGCGCCTGCTGCAGCGGCTCGCGGACGACGTCGCCGAGCTCGGCTTCGTCGAGTCGATGCCGAAGCAGGACGGGCGCAACATGACCATGGTCCTCGGACCGGTCAAGAAGAAGTCCGAGGCCAAGAGCGAGCAGCGCAAGCGGTCCGCCGAGGTCAACGCCCAGCGCAAGACCAAGTCGGAGGTCAAGGCCGAGCGGCGCGCCGCGGAGGGCCAGCCCGAGCCGGAAGAGGCACCGGAGGTGGCCTCGGAGCAGGCCCCGGAGCCGACGGTCTCCGAGTCCGGCGCCGGTGCGTCCGGACCCAAGCCGGGTCCGAAGCCCGGTCCGCGCCAGGGCTGA	MVATGVALKLAQDADLDLVEVAPAARPPVAKLMDFGKYKYESDMKAREARRKQANTLLKEIRFRLKIDPHDYATKKGHVERFLAAGDKVKVMIMFRGREQSRPEAGVRLLQRLADDVAELGFVESMPKQDGRNMTMVLGPVKKKSEAKSEQRKRSAEVNAQRKTKSEVKAERRAAEGQPEPEEAPEVASEQAPEPTVSESGAGASGPKPGPKPGPRQG				NA	NA	NA	NA	NA
AK001_00980	438	furA	COG0735	Transcriptional regulator FurA	ATGAGCACCACACCGGCCGACACGTCGACGGAGCGCCGCCTGCTGCGCGACGCCGGTCTGCGCGTGACCGGTGTGCGCCTCGCCGTCCTGCGCGCGCTCGGCGAGCACCAGCACTCGACCGCCGACACCGTGGCGCGGGCCGTGCGCGCCGAGCTCGGCTCCGCCTCGGTGCAGGCGGTCTACGACTCCCTGCACACCCTGACCGACGCCGACCTGCTGCGCCGCGTGGAGCCCGCCGGGCACCCCGCACGCTACGAACGGCGGGTCGGCGACAACCACCACCACGTGGTCTGCCGCGGGTGCGGCGCCGTCGCCGACGTCGACTGCGCCGTCGGCCCGGCTCCCTGCCTCGTGCCCGGCGACGCCCACGGCTTCTCCGTCGACCTCGCCGAGGTGACGTTCTGGGGCCTGTGCCCCGAGTGCACCGACGCCTCCTGA	MSTTPADTSTERRLLRDAGLRVTGVRLAVLRALGEHQHSTADTVARAVRAELGSASVQAVYDSLHTLTDADLLRRVEPAGHPARYERRVGDNHHHVVCRGCGAVADVDCAVGPAPCLVPGDAHGFSVDLAEVTFWGLCPECTDAS	PGPT0003880_810	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711	NA	NA
AK001_00981	1449	katA	COG0753	Catalase	ATGACGACCCCCCACACGACGACGCAGACCGGCAGCCCGGTCGCGAGCGACCAGTACTCGCTCACCGTCGGCTCCGACGGCCCCACCGTGCTGCACGACCGCTACCTGGTCGAGAAGCTCGCGTCCTTCAACCGCGAGCGCGTCCCCGAGCGCAACCCGCACGCCAAGGGCGGCGGCGCGTTCGGCGAGTTCGTGGTCACCGAGGACGTCTCGCGGTACACCTCCGCGGCCGTGTTCCAGCCGGGTGCGACCTCCGAGACCCTGCTGCGGTTCTCGTCCGTGGCCGGCGAGCAGGGCTCCCCCGACACGTGGCGCGACGTGCGCGGGTTCGCGCTGCGCTTCTACACCGAAGAGGGCAACCTCGACGTCGTCGGCAACAACACGCCGGTGTTCTTCCTGCGCGACGCGATGAAGTTCCCGGACTTCATCCACTCCCAGAAGCGTCTCGGCGCCTCCGGGCTGCGGGACGCGGACATGCAGTGGGACTTCTGGACCCTGTCGCCCGAGTCCGCCCACCAGGTGACCTACCTCATGGGCGACCGCGGGCTGTCGCGGTCGTGGCGGCACCTCAACGGCTACGGCTCGCACACCTACCAGTGGATCAACGCCGAGGGCGAGCGCTTCTGGGTGCAGTACCACTTCATCGCGAAGCAGGGCGTCGAGATGATGAGCAACGCCGACGCCGAGCGCATCGCCGGCGAGGACGCGGACTACTACCGCCGCGACCTGTACGAGGCGATCGAGCGCGGCGAGCACCCCTCGTGGGACGTCAAGGTCCAGGTCATGCCGTACGAGGACGCCAAGACGTACCGCTTCAACCCGTTCGACATGACGAAGGTCTGGCCGCACGCGGACTACCCGCTCATCAAGGTCGGCACGTTCACCCTGAACCGCAACCCGCGCAACTTCTTCGCGGAGATCGAGCAGGCCGCGTTCTCCCCGGGCAACCAGGTGCCCGGCACCGACATCTCGCCCGACAAGATGCTCATGGCGCGCGTGTTCTCGTACAACGACGCGCACCGCCACCGCATCGGTGCGAACTTCAACCAGCTGCCGGTGAACCAGCCGCACGCCTCCGAGGTGCACACCTACATGCACCAGGGGCCGATGCAGTACCACTTCAACGGTCCCGAGCACCCGGTCTACACGCCGAACTCGTTCGGCGGCCCGGCCGCGGACCCGGCGCGCGCCTCCGAGGGCAGCTGGGAGACCGACGGCGAGCTCATGCGCTCGGCCTACACCCTGCATGCCGAGGACGACGACTTCGGCCAGGCCGGCACCCTGTACCGCGAGGTCTTCGACGACGCGGCCAAGGCGCGCTTCCTCGAGACGCTGACCGGCCAGGGCAAGGCCATCACGATCGACGAGATCCGTGAGCGGTTCTTCCAGTACTGGACGAACGTGGACGCCGAGCTCGGGGCGAAGCTGCGCTCCGAGGTCGCCGCGTGA	MTTPHTTTQTGSPVASDQYSLTVGSDGPTVLHDRYLVEKLASFNRERVPERNPHAKGGGAFGEFVVTEDVSRYTSAAVFQPGATSETLLRFSSVAGEQGSPDTWRDVRGFALRFYTEEGNLDVVGNNTPVFFLRDAMKFPDFIHSQKRLGASGLRDADMQWDFWTLSPESAHQVTYLMGDRGLSRSWRHLNGYGSHTYQWINAEGERFWVQYHFIAKQGVEMMSNADAERIAGEDADYYRRDLYEAIERGEHPSWDVKVQVMPYEDAKTYRFNPFDMTKVWPHADYPLIKVGTFTLNRNPRNFFAEIEQAAFSPGNQVPGTDISPDKMLMARVFSYNDAHRHRIGANFNQLPVNQPHASEVHTYMHQGPMQYHFNGPEHPVYTPNSFGGPAADPARASEGSWETDGELMRSAYTLHAEDDDFGQAGTLYREVFDDAAKARFLETLTGQGKAITIDEIRERFFQYWTNVDAELGAKLRSEVAA	PGPT0014380_3249	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781	NA	NA
AK001_00982	366			hypothetical protein	ATGGACCCCATGAACGCCAGCACCGACCCCCTCGACGCGACCGGGGCCACGCGCGACATCGCCGACGTGGCCGCCGTCGAGGTCATCACCACCTCCGCGGTCCACCTCATGAGCGCCGCGGCGGTCAAGTGCGGCCTCGCCGCCGAGGACGACGCCCCCGAGCACCTCGACCTCGACGAGGCCCGCAAGCTCATCACCGCCCTGGCCGCGCTCGTCACGGCCAGCGCCCCCGACATCGGGAACCAGCACGCCCGCTCGCTGCGCGACGGCCTGCGCTCCCTGCAGCTCGCCTTCCGCGAGGCCTCCGTCGTCCCGGACGCCCCCGGCGAGGGGCCCGGGGAGGCCTTCACGGGCTCCGTCGTCTGA	MDPMNASTDPLDATGATRDIADVAAVEVITTSAVHLMSAAAVKCGLAAEDDAPEHLDLDEARKLITALAALVTASAPDIGNQHARSLRDGLRSLQLAFREASVVPDAPGEGPGEAFTGSVV				NA	NA	NA	NA	NA
AK001_00983	597			hypothetical protein	ATGACCTCCCCCACGCCGTCCTGGGAGGCCGCGGGGCCGGTGCACCGGCCCGAGGACCCCGCACCGGGACGTCGCGCGCCCCGCCGTCCCGGCCGCGGGGCGCGCGTCACCGCCGTGGTCCTCGGGATCGCCCTCATCGTGACCCTCGCGACCGCGGGCTACCTGTGGCAGACCACGACGGCCTGGGAGGACCACGCCGCCGAGTGGGAGTCCGAGGCCCAGCGGTACGCCGACGAGGTCGCGGCGCTGCAGGTCGAGCTCGACGGCGTCACGGCCGAGCTCGTCGCGGCCCGCGAGCAGCTCGACACGGCCACGGAGCGGATCACCGAGCTGGCCGACGAGAAGGCCCAGCTCGGCGACGAGAACGTCGCCAGCCAGCAGTACCTCGACTACCAGCGCCGGGTCAGCGAGGCCGCGGGGGTCGTGGCCACGGCGCTCGAGCAGTGCACCCAGGCCCAGTTCCAGCTCATCGGCTACCTGGAGAACCGGGAGGCCTACGACCCGGCCGACCTCGACCGGTTCGGCGACGACGTGCAGGCGCTGTGCAACGAGGCCGGCGAGGCCAACGAGCAGCTGCAGCAGGAGCTGGCCCAGTGA	MTSPTPSWEAAGPVHRPEDPAPGRRAPRRPGRGARVTAVVLGIALIVTLATAGYLWQTTTAWEDHAAEWESEAQRYADEVAALQVELDGVTAELVAAREQLDTATERITELADEKAQLGDENVASQQYLDYQRRVSEAAGVVATALEQCTQAQFQLIGYLENREAYDPADLDRFGDDVQALCNEAGEANEQLQQELAQ				NA	NA	NA	NA	NA
AK001_00984	729			hypothetical protein	GTGAGGGCGCCGGTGCGGGGCGCCCTGGCGGCGGCGGGCGTCGCCGTCGTCGCGGCGTGCGGCACGCTGCCGGACATGCCCCCGTCGGTGCCGGCCGACATCGTCCCGAGCGTGGCGGCACCGTCGCTCGACGCGGCCGAGTCCGGACGGCTCTCCCCCGACGGCTTCGACGCCGTGCAGCGCATGGCGGTGCGGATCCGCAACGTGGGCTGCGAGGGGCTGTCCACCGGGTCCGGGTTCGCCCTCGACGCCACGACGCTGATCACCAACCGGCACGTCGTGGCGGACTCGGAGTCGTTGCAGGTCAACACCTACGACGGCCGCGACATCGACGTCTCGGCGGCGAGCACCGCGACGCTCGCCGACCTCGCCGTGGTCCGCACCGAGGACGAGCTGCCGTCCTCCCCCGAGCTCGCCGAGGCGGACCCCGAGCCGGGTGCCCGGGTGAGCGTCGTCGGCTACCCGTCGGGCGGCAGGCTGACCGTGACCGCGGGCGAGGTGATCGGCACCACGACCGACCCGCTCAACGAGAACCTCGGCGAGGTGCTCGTCACCGACGCCCCCGTCGAGCCCGGGTCCTCCGGCTCCGCGGCCCTGGACGAGTCCGGCCGGGTCATCGGCGTGGTGTACGCCAAGACGACCGACGGACGCTCCCTGGTGGTGCCGCAGTCGACGCTGCGCGAGATGCTCGACGACACCAGCGCGTTCACGCCGCTACCGGCCTGCTGA	MRAPVRGALAAAGVAVVAACGTLPDMPPSVPADIVPSVAAPSLDAAESGRLSPDGFDAVQRMAVRIRNVGCEGLSTGSGFALDATTLITNRHVVADSESLQVNTYDGRDIDVSAASTATLADLAVVRTEDELPSSPELAEADPEPGARVSVVGYPSGGRLTVTAGEVIGTTTDPLNENLGEVLVTDAPVEPGSSGSAALDESGRVIGVVYAKTTDGRSLVVPQSTLREMLDDTSAFTPLPAC	PGPT0015105_7168	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771	NA	NA
AK001_00985	738			hypothetical protein	ATGAGGTCGATCCAGCCCACGAGCCAGTTCTCCGGCGACGACGGCTCCGCGGACGTCGAGCTGGTCCGCCGGCTCGACGGCTGGCGCGCCGGCACGGTCCCGCTGCGCGACGTCGTGGCCCGGCTGGCCGAGACCCGCGTGCTCGTCCCGGTGCTGGCGGAGGTCGAGTCCGAGGCCACCGTGCAGCACGACGGCGAGGAGCTCACGGTGGACAAGGAGGCCTCGGCCGGCGTCGTGGCGCTCGAGTCGCCCGACGGCCGCCGGGCCCTGCCGGTCTTCTCCTCCGTGGCGGCGATGCAGGCCTGGCGCCCCGACGCCCGACCGGTCCCGGCCGAGGCGGTGCGCGCCGCGCTGTCGGCGGTGAACGAGAAGTGGTCCCTGCTGGTGCTGGACCCGTCGGGTCCGGTCACCGTCCAGATCCCGCGACCGGCGGTCTGGGCGCTCGCCCAGGGCGTCGAGTGGCGTCCCGCGCTGGTCCCGACCGACGACGGCCTCGAGGTGGACGCGGAGGTGTCCCGGGCCATCGCCGACGCGGCCGCCCCGGTGCAGCACGTCGTCCGCGCGACGGCGGTCCCGGGTCGGTCGGCGGAGGTGGCCGTCCGGCTGGAGCTGAACCCGGGCCTGGACCGGGCCGGTCTCGACACCGTGCTGGGCCAGGTCAACGCCCGTCTCGCCGCGGCCAAGGTCGTCGCCGAGCGGGTGGACTCCCTCGAGCTGCGGATCGCCGCCGCCCGCTGA	MRSIQPTSQFSGDDGSADVELVRRLDGWRAGTVPLRDVVARLAETRVLVPVLAEVESEATVQHDGEELTVDKEASAGVVALESPDGRRALPVFSSVAAMQAWRPDARPVPAEAVRAALSAVNEKWSLLVLDPSGPVTVQIPRPAVWALAQGVEWRPALVPTDDGLEVDAEVSRAIADAAAPVQHVVRATAVPGRSAEVAVRLELNPGLDRAGLDTVLGQVNARLAAAKVVAERVDSLELRIAAAR				NA	NA	NA	NA	NA
AK001_00986	732	hisA	COG0106	1-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomerase	ATGACCGAACGCCTCGTGCTGCTGCCCGCCGTCGACGTCGCCGACGGCCAGGCCGTCCGCCTCGTCCAGGGCGAGGCCGGCTCCGAGACCTCGTACGGCGACCCGCTGTCCGCCGCGCTCGACTGGCAGACCGGCGGCGCCGAGTGGATCCACCTCGTCGACCTCGACGCCGCCTTCGGGCGGGGCTCGAACGCCGACCTGCTGGCCCGCGTCGTGGGGGAGGTCGACGTCCAGGTCGAGCTGTCCGGCGGCATCCGGGACGACGCCTCGCTCGAGCGGGCGCTCGCGACCGGTGCGCGGCGCGTCAACATCGGCACCGCCGCGCTGGAGGACCCCGAGTGGACCGCGCGGGTGATCGCCGAGCACGGTGACGCCGTGGCCGTCGGCCTCGACGTGCGCGGCACGACGCTGGCCGCGCGGGGCTGGACCCGCGAGGGCGGTGACCTGTGGGAGGTCCTCGAGCGCCTCGACGCGGCCGGCTGCGCACGCTACGTCGTCACCGACGTCACCAAGGACGGCACGCTGCGCGGTCCGAACGTCGACCTGCTGCGCGAGGTCGCCTCGCGCACCCCGGCCAAGGTGGTCGCCTCGGGCGGCATCTCCTCCCTCGACGACCTCGCCGCGCTGCGCACCCTGACCGGTGACGGCGTCGAGGGCGCCGTCGTCGGCAAGGCGCTGTACGCCGGTGCCTTCACGCTGCCGCAGGCGCTCGACGTGGCGGGCCGGCCATGA	MTERLVLLPAVDVADGQAVRLVQGEAGSETSYGDPLSAALDWQTGGAEWIHLVDLDAAFGRGSNADLLARVVGEVDVQVELSGGIRDDASLERALATGARRVNIGTAALEDPEWTARVIAEHGDAVAVGLDVRGTTLAARGWTREGGDLWEVLERLDAAGCARYVVTDVTKDGTLRGPNVDLLREVASRTPAKVVASGGISSLDDLAALRTLTGDGVEGAVVGKALYAGAFTLPQALDVAGRP				NA	NA	NA	NA	NA
AK001_00987	747	hisH		Imidazole glycerol phosphate synthase subunit HisH	ATGGAGTCCTCCGAGAGCTCCGGGCTGCTGCCCGACGACGGGGCGGCGGCCGAGCTGAACGCGCGCCCGGCCCCCGCCGCCCGCAGCACCCACCGCCCGAGCGTCGTCGTGCTCGACTACGGGTTCGGCAACGTGCGCTCCGCGGTGCGCGCCCTGGAGCGCGTCGGCGCGGACGTCGAGCTGACGGCCGACCGGCACGCGGCCGGCGAGGCCGACGGGCTCGTCGTCCCGGGTGTCGGCGCCTTCGCCGCGTGCATGGCCGGACTGCGCGAGGTGCGCGGCGACCAGGTGGTGGACCGGCGGCTCGCCGGCGGACGCCCGGTGCTGGGCATCTGCGTCGGCATGCAGGTCATGTTCGACGCCGGGGTCGAGCACGGCGTGCGGGCCGAGGGGCTGGGGGAGTGGCGCGGCGTCGTCGACCGCCTGGACGCCCCGGTGGTGCCCCACATGGGGTGGTCGCGGGTGGAGGCCGCCGCGGGCTCGACCCTGTTCCGCGGGGTGGAGGACGAGCGCTTCTACTTCGTCCACTCCTACGCGGCGCAGTCCTTCACCCAGGGCCACGACGACGGCGCCGACCCGCGCTTCACCCCGCCGCGCGTCACCTGGTCCTCCCACGGCCCGGCCGGGTCGGCGGCGCGGTTCGTCGCCGCCGTCGAGGACGGCCCCCTGTCCGCCACGCAGTTCCACCCCGAGAAGTCCGGCGACGCCGGCGCGACCCTGCTCGAGAACTGGGTGCGCTCGCTCTGA	MESSESSGLLPDDGAAAELNARPAPAARSTHRPSVVVLDYGFGNVRSAVRALERVGADVELTADRHAAGEADGLVVPGVGAFAACMAGLREVRGDQVVDRRLAGGRPVLGICVGMQVMFDAGVEHGVRAEGLGEWRGVVDRLDAPVVPHMGWSRVEAAAGSTLFRGVEDERFYFVHSYAAQSFTQGHDDGADPRFTPPRVTWSSHGPAGSAARFVAAVEDGPLSATQFHPEKSGDAGATLLENWVRSL				NA	NA	NA	NA	NA
AK001_00988	537			hypothetical protein	GTGCCCGACTACCCCGAACCCGACCAGCCCGGCCGGTCCGAGCCCGAGCTGCCGGACGACCTGGAGATCCCGGACGACCTGTCCGGCCTGACCGGCTCCGACGAGCCCGAGATCGCGGTGCTCATCACCCAGGTCGCCGACGCCGAGGCGCTGGCGGCGGCCTGCGTGCTGGCGCAGATCGAGGTCGACGCGGTGCCCACCCCCGTGGGGTCCCTGGCCGTCCTGCGCGACCGCACCGGCGACGCGCCGCGCACGGCGGCGGCCCGCATCTCGCGGGTCGTCAAGGGCGTGCCGCTCGTGCTGGTGACGCGCGACGGCGAGCAGCTGACCTGCCACCGGTACGCCGACGGCGCCGACGACGGCGAGCTGCCGCCCGGTCTCGTGCTCGGCGGTGCACCGGAGGCGCTGGAGGACCTGCTCACCGGCCACCTGAGCCTCGACGAGCTGCCCGGCGTGGTCTCCTCCGACGGCATCGGCCGGCTCAAGGCCGTCCGCATGCTCTCCGCCGTGTCCCGCAAGGTCCGGAAGAAGAAGTGA	MPDYPEPDQPGRSEPELPDDLEIPDDLSGLTGSDEPEIAVLITQVADAEALAAACVLAQIEVDAVPTPVGSLAVLRDRTGDAPRTAAARISRVVKGVPLVLVTRDGEQLTCHRYADGADDGELPPGLVLGGAPEALEDLLTGHLSLDELPGVVSSDGIGRLKAVRMLSAVSRKVRKKK				NA	NA	NA	NA	NA
AK001_00989	603	hisB	COG0131	Imidazoleglycerol-phosphate dehydratase	ATGACAGGCCGCACCGCGCGCATCGAGCGCGCCACGAGCGAGTCCACCGTCGTCGTCGAGCTGGACCTCGACGGGACCGGGCGCACCGACATCTCCACCACGGTGCCTTTCTACGACCACATGCTCACCGCGCTGGGCAAGCACTCGCTGATCGACCTGACCGTGCGGGCCACCGGCGACACCGAGATCGACGCGCACCACACGGTCGAGGACACCGCGATCGTGCTGGGCGAGGCGCTCAAGCAGGCGCTGGGCGACAAGAGGGGCATCGCCCGGTTCGGCGACGCCCTGGTCCCGCTGGACGAGGCGCTCGCCCAGGCCGTGGTCGACGTCTCCGGGCGCCCCTACCTGGTGCACTCCGGCGAGCCGGCGGGGCAGGAGTACCACCTCATCGGCGGTCACTTCACGGGTTCGCTGACCCGGCACGTGCTCGAGTCGATCGCCCACCACGCCGACATCTGCCTCCACGTGCGCGTCCTGGCCGGCCGGGACCCGCACCACGTCGTCGAGGCCCAGTTCAAGGCCCTGGCCCGCGCGCTGCGGGCCGCCGTCGCCCTCGACCCGCGGGTCGAGGGCATCCCGTCGACCAAGGGAGCGCTGTAG	MTGRTARIERATSESTVVVELDLDGTGRTDISTTVPFYDHMLTALGKHSLIDLTVRATGDTEIDAHHTVEDTAIVLGEALKQALGDKRGIARFGDALVPLDEALAQAVVDVSGRPYLVHSGEPAGQEYHLIGGHFTGSLTRHVLESIAHHADICLHVRVLAGRDPHHVVEAQFKALARALRAAVALDPRVEGIPSTKGAL	PGPT0020305_15	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
AK001_00990	1134	hisC	COG0079	Histidinol-phosphate aminotransferase	GTGTCCACCCCCGATGCACCGGTCCTGCCGCTGCGCCCCGAGCTCGCCGACGAGGTGCCCTACGGCGCCCCGCAGCTCGAGGTGCCCGTGCTGCTGAACGTCAACGAGAACCCGTACCCGCCCTCGGAGCAGGTCGTGGCGAGCATCGCCGCCGGCGTCGCCGACGCCGCGCGATCGCTCAACCGCTACCCGGACCGCGACTTCCCCGCGCTGCGCCAGGACCTCGCCGACTACCTGGCCGTGGAGTCGGGCGTGCGCGTGGCGCCGGAGCAGATCTGGGCGGCGAACGGGTCGAACGAGGTCATGCTGCACCTGCTGCAGGCGTTCGGCGGCCCCGGGCGCACGGCGCTGTCCTTCGCCCCGACCTACTCCATGTACCCGGAGTACGCCCGGGACACCCACACCCGCTGGGTCACGGGCCGCCGGGCCGAGGACTTCACCATCGACCCGGACGCCGCGGCCGCGCTGGTCGAGGCCGAGCAGCCGTCGGTGATCCTGCTGGCCAGCCCCAACAACCCGACGGGGACCGCGCTGCCGCGCGAGACCCTCGAGGCGGTCCTGGACGCCGCGGCACGGGTCCCCGCCGTCGTCGTGGTCGACGAGGCGTACGCCGAGTTCCGGCGCGCGGGCACGCCGTCGGCCCTGGAGCTGCTGGAGGCGTACCCGCACCTGGCGGTGACCCGCACGATGTCCAAGGCGTTCGCCGCGGCAGGCCTGCGGCTCGGCTACCTCGCGGCGTCGACGGCGCTCGTCGACGCCCTGCGCGTGGTGCGGCTGCCGTACCACCTGTCGGCCGTCACCCAGGCGACCGCGCGGGCCGCGCTCGCCCACCGCGACGCCCTGCTGGCTCAGGTCGCGGACCTGCGTGCGGAGCGTGACGCCCTCGTGGCATGGTTGCGTCGGCAGCGCAGCGCCGCGGGTCCGGTGCAGGTGGCCGAGAGCGACGCCAACTTCGTGCTCTTCGGGACCTTCGCCGACCGGCACGCCGTCTGGCAGGGCCTGCTGGACCGTGGCGTGCTGATCCGTGAGACCGGCCCGGACGGCTGGTTGCGCGTCTCGGTCGGCACCCGCGAGGAGACCCAGGCGTTCCAGGACGCGCTGACCGACGTGATCGCCGAACAGGAGCAGGGATGA	MSTPDAPVLPLRPELADEVPYGAPQLEVPVLLNVNENPYPPSEQVVASIAAGVADAARSLNRYPDRDFPALRQDLADYLAVESGVRVAPEQIWAANGSNEVMLHLLQAFGGPGRTALSFAPTYSMYPEYARDTHTRWVTGRRAEDFTIDPDAAAALVEAEQPSVILLASPNNPTGTALPRETLEAVLDAAARVPAVVVVDEAYAEFRRAGTPSALELLEAYPHLAVTRTMSKAFAAAGLRLGYLAASTALVDALRVVRLPYHLSAVTQATARAALAHRDALLAQVADLRAERDALVAWLRRQRSAAGPVQVAESDANFVLFGTFADRHAVWQGLLDRGVLIRETGPDGWLRVSVGTREETQAFQDALTDVIAEQEQG	PGPT0020305_1133	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
AK001_00991	447	petC		Cytochrome b6-f complex iron-sulfur subunit	ATGACCTCGTCCACCCCGTCCTGCTGCTCGCGCCGCCAGCTGCTGCGCGGCGCGGGCGCCGTCGCCGGCACCGCGGCCGTCGGCGGTGTCCTCGTGGCCTGCAGCGAGGGCACGGACCCGGCGGAGTCCGTGGACGACGTCGCCTCGACCGGTGCGGGGGAGGCGATCGTGGCGCTGGCCGACGTGCCGGTCGGCGGCGCGGTGAGCGCCGAGGTCGGGGGCGTCCCGGTCCTGGTCACGCAGCCGGCGGAGGGTGAGGTGCACGTCTTCAGCGCCGTGTGCACCCACCAGGGCTGCACCGTCACGCCGGGCGACGGCGTGCTCGAGTGCCCCTGCCACCGCTCGGTGTTCTCGCTCACCGACGCCGCCGTGCAGTCGGGGCCCGCGCCCGAGCCGCTGGGCGAGATCTCCGTCGAGGTGTCCGGGGGCGACGTCGTGGTCGCCTGA	MTSSTPSCCSRRQLLRGAGAVAGTAAVGGVLVACSEGTDPAESVDDVASTGAGEAIVALADVPVGGAVSAEVGGVPVLVTQPAEGEVHVFSAVCTHQGCTVTPGDGVLECPCHRSVFSLTDAAVQSGPAPEPLGEISVEVSGGDVVVA				NA	NA	NA	NA	NA
AK001_00992	420			hypothetical protein	ATGACCATCATGGACGCACCCACCGGACCGGGGCCAGCGACGCGCGGCACGCCGAGCGTCGCCTGGGTGTGGCGTTCCCTCGCGGCCGTGAGCGTGGCCGTCTCCGCCGTGGTGCACCTGGTGCTGTGGAGCGACGGGTACCGGGACCTGGACGTCGTCGGCCCGCTGTTCCTGCTCAACGCCGTCGGAGGCTTCGCGCTCGCCGTGCTGCTCGTCGTCTGGCGGCACTGGCTCCCCTTGGTGGGCGGCATCGCGTTCGGCGCGCTCACGCTGCTGGCGTTCGTGGCCTCGGGCACCGTGGGCTTCTTCGACGTGTCCGGTCCGCTGATGTTCGGCCGCAACGAGACGATCGCGGCCGTCGCCGAGGTGCTGGCGGTGGTCGCCTCGACCGTGGCGCTGCTGCGCGAGCCGTCCCGCTGA	MTIMDAPTGPGPATRGTPSVAWVWRSLAAVSVAVSAVVHLVLWSDGYRDLDVVGPLFLLNAVGGFALAVLLVVWRHWLPLVGGIAFGALTLLAFVASGTVGFFDVSGPLMFGRNETIAAVAEVLAVVASTVALLREPSR				NA	NA	NA	NA	NA
AK001_00993	2460	rhlE_1		ATP-dependent RNA helicase RhlE	GTGACCTCCTCCGACGACCCGTACGCCGGCCTCGAGCCGGTCTGGACCGACGCCGACGTGCCGCCGGACGACGACGTCCCGCCGCCCGAGGACGAGCTCGACCCTCCCGCGGACGCGCACCTGGCGCGCCCGGCCGCCGTCCCGGCACCCGCGGCGGCCGCGGCCGGGGCACCGGGAACCGGCGCGGGTGACCGGGCCGAGGCCGCCCGGCGCGCGAAGCTCGCGATGCTGCGGGGCCTGATGGACACCGCCGGCAGCGGCGACGGATCGAGCACGCTGCGCGAGGAGGCCGCCACGGCCCTGCGCGCGCTGGTCGGGCGCGACGACGCCGAGCTGCGCGAGGACCAGTGGAGCGCCATCGAGGCGCTCGTCGCCTTCCACCGCCGGGCGCTGGTCGTCCAGCGCACCGGCTGGGGCAAGTCGGCGGTCTACTTCGTCGCCACCCGGCTGCTGCGCGCCCGCGGCGCCGGGCCGACCGTCATCGTCTCGCCGCTGCTGGCGCTCATGCGTGACCAGATCGCCGCCGCCGAGCGGGCAGGCATCCACGCGGTGACGATCAACTCCTCGAACGTCACCGAGTGGGACGCGATCCACGCCCAGATCGCCGCGGGCGAGGTGGACGTGCTGCTGTGCTCCCCCGAGCGGCTCAACAACCCGGCGTTCCGCGACGAGGTGCTGCCGCGCCTGGCTGCGGACGCCGGCCTGGTGGTCGTCGACGAGGCGCACTGCATCTCCGACTGGGGGCACGACTTCCGGCCCGACTACCGGCGTATCCGCACGCTCCTGGCCGACCTGCCGCCGGGCATCCCGGTACTGGCGACCACCGCGACCGCCAACGAGCGCGTCACGCGCGACGTGGCCGAGCAGATGGCCGTCCACGGCGAGGGGGTCACCGCCGTCGACGGCGCCCTGGCGACCAGCGACGACGTCCTCGTGCTCCGCGGTGGCCTGGACCGGGAGTCGCTGCACCTGGCGGTCCTGGAGCTCGGGGACCAGCCGACCCGCGTGGCCTGGCTCGTCGAGGCGCTGCAGGAGATCGACGGGTCCGGGATCGTGTACTGCCTGACGGTCTCGGCCGCGGAGGAGGTCGCCGCCCAGCTCCGGGCCGCGGGTCTGGCCGTGGCGGCGTACACGGGGCGCACCGACCCGACGCAGCGCGCCCAGCTCGAGGAGGACCTCAAGGCCAACGAGGTCAAGGCGCTGGTGGCGACGTCGGCGCTCGGCATGGGCTTCGACAAGCCGGACCTGGCCTTCGTCGTGCACGTCGGCGCCCCGTCGTCGCCGATCGCCTACTACCAGCAGGTCGGCCGCGCCGGTCGCGGTGTCGACGACGCCGTCGTGGTGCTGCTGCCCGGCCACGAGGACAAGGCCATCTGGGACTGGTTCGGCGCGCAGGCCTTCCCCGCCGAGGCGCAGGTCCGCGCGACGCTGTCCGCCCTGAGCGACGCCGGCGCGGCGATGTCGACCGCCGCGCTGGAGACCCACGTCGACCTCAAGCGGTCGCGGCTGGAGACGATGCTCAAGGTGCTCGACGTCGACGGGGCCGTGCGCCGCGTCCAGGGCGGCTGGGTCGCCACCGGCGTCGAGTGGGTCTACGACGCCGGTCGCTACGCCCGCGTGGCCGAGACCCGCCGCACGGAGCAGCAGGCGATGCTCGACTTCATCGCCACGCCGGGCTGCCGCATGCGGTTCCTGCGCGAGCAGCTCGACGACCCGGAGCTGCCGGACGGCTGGACGTGCGGACGCTGCGACCGCTGCGGCGGGGTGACGCTGCCCCCGCCGCCCTCGGCCGACACCGTCGCCGAGGCACGGTCCGAGATGGACCGGCCCGGGGTCGCGGTCGAGCCCCGCAAGATGTGGCCGTCGGGCCTGGCCACGCTGGGGCTGGACCTGAAGGGCAAGATCGGCGACGCCGAACGCGCCGAGCCCGGACGGGCCGTGGCGCGCTTCGACGGACTGGGCTGGTCGAACCCGGTGCGCGAGCTGTTCGCCCCCACCACCGCCGACGGCGAGACCCCGGTCCCGCTGCGCGGCGCGGCGGCACGCGTGCTGGACGACTGGGACGCGTTGCGCGCCGAGGCCGCGGAGGAGGGGGCGGACCGGCCGCTGCTCGTCGAGGGCGTCGTCGCCGTGCGGTCGGTGACCCGACCGCAGCTGACCTACCACCTGGCCCACGGCCTGGCCGCGTATCTCGGCGTGCCGCTCATCGGCGCCGTCGGCCCCGCCCCGGGGGCCGAGGAGCCCGGCCGGCACGACGTCAACTCGGCCATGCGCCTGGCGGGGGTGGCCCGCCGCCTCCGGCTCGAGCTGAACGAGGCGGCCCTGGCGGGCCTGCCGGGGCGCCGTGTGCTCCTCGTCGACGACTGGACCGAGTCCGGGTGGACCCTGACGGTCGCCGCACGGCTGCTGCGCCAGGCGGGCGCGGAGGCGGTGCACCCGTTCGTGCTCGGCGTGCGCTGA	MTSSDDPYAGLEPVWTDADVPPDDDVPPPEDELDPPADAHLARPAAVPAPAAAAAGAPGTGAGDRAEAARRAKLAMLRGLMDTAGSGDGSSTLREEAATALRALVGRDDAELREDQWSAIEALVAFHRRALVVQRTGWGKSAVYFVATRLLRARGAGPTVIVSPLLALMRDQIAAAERAGIHAVTINSSNVTEWDAIHAQIAAGEVDVLLCSPERLNNPAFRDEVLPRLAADAGLVVVDEAHCISDWGHDFRPDYRRIRTLLADLPPGIPVLATTATANERVTRDVAEQMAVHGEGVTAVDGALATSDDVLVLRGGLDRESLHLAVLELGDQPTRVAWLVEALQEIDGSGIVYCLTVSAAEEVAAQLRAAGLAVAAYTGRTDPTQRAQLEEDLKANEVKALVATSALGMGFDKPDLAFVVHVGAPSSPIAYYQQVGRAGRGVDDAVVVLLPGHEDKAIWDWFGAQAFPAEAQVRATLSALSDAGAAMSTAALETHVDLKRSRLETMLKVLDVDGAVRRVQGGWVATGVEWVYDAGRYARVAETRRTEQQAMLDFIATPGCRMRFLREQLDDPELPDGWTCGRCDRCGGVTLPPPPSADTVAEARSEMDRPGVAVEPRKMWPSGLATLGLDLKGKIGDAERAEPGRAVARFDGLGWSNPVRELFAPTTADGETPVPLRGAAARVLDDWDALRAEAAEEGADRPLLVEGVVAVRSVTRPQLTYHLAHGLAAYLGVPLIGAVGPAPGAEEPGRHDVNSAMRLAGVARRLRLELNEAALAGLPGRRVLLVDDWTESGWTLTVAARLLRQAGAEAVHPFVLGVR				NA	NA	NA	NA	NA
AK001_00994	3300			hypothetical protein	ATGGACGCCATGCCCGCCGCCCCGCCACGCCTCGATCCGCTGGAGATCGGCGCCCTCGTCGGGACGGCGACGTTCCGGCGGGCGCAGGGGTACGAGCGGGGCGGCATGGTCGTCGCCTGGAGCTGGGACGAGGACGAGCGTGTCCTGTCCGCCCGGGTCGCGGGCAGCGAGACCCGGCCGTACGGGTGCCGGGTGCGCTTCGGCCTCGACGCCGACGGCCGGTACGCGTTCGGTTCCTCGACGTGCAGCTGTCCGGTCGGTGCGGACTGCAAGCACGTCGCCGCCGCGCTGCTGCACGTGGGCCGGGACGGCGTCGACGGCCCGGACGGGCCGCCGGCGCCGTCCGGGTGGCGTGGCCGTCTCGCCGCCGTCACGGCCCCCGACCCGGGGTCCGGCGCGGGCGACGGGACGGTCCTGCCCGTCGGCCTGCGCTTCCGGGTGGACGGCGCCTTCGGCGACGAGCCGCCCGAGCTCTCGGTCCGACCCGTCGTACCGGCGCGCCACGGCGGGTGGCGGACCGCCCCGGAGGCGAGCTGGGACGCCCTGGCCCGCGGGCTGTACGCGTTCGCCGACGTCCGCGCCACCCCCGCCCCGGCGGTGCGGCGCTGGTTCGCCGACCTCGGCGCCGCGACGAGCGACGGGTCCTCCCGGGTCCGCGAGGTGTGGCGACCGCTGGCCACGGCGGGGCGTGGGCTCTGGCCCCTCCTCGCCGAGGCGGCCGCGCTCCAGATCCCGTTCGTGGGTCAGGGGAGCCGCGACGAGGTGCTGCTCGCCGGGTCGGCCTCGGTGCGCCTCGTGGCCGCGCAGACCCAGGACGGTGTCCGGCTCGATCCCGTGGTGCGCATGGACGACACGGACGTCGAGGCTCCCGACCGGCAGGGCGCCGTCGGCACGACCGGCCTGTTCACGGTCGAGGCACGGCGCGGGGGCACCGTGCTGCGCCTGGGACCCAGCTCCCGCCGGCTGTCCGACGGCGCGCGGCGGCTCGTGGCCGGCGGTCCCGTCGACGTGCCGGCCGCCGACGTCGACGAGCTCCTCGCGGAGCACCTGCCCGGGCTGCGCCGTGCCGTGCCGGTCGTGTCGGACGGCAGCGTCCGGCTGCCCGAGCCCGCGCGCCCGGTGCCGGTGGCGCGCGCCGAGTTCGCGTCCCCGCAGCGGGCGCTGCTGCGGTGGTCGTGGCGGTACCCCCGGCCGTCGCCGGGCGAGGCGCGGGAGGTGCCCTGGGAGGGGTCCGCCCACGACCCGGCCCGTGACCCCGCGGCGGAGGACGAGCTGCGCTCCAAGGCGGTCGCGGCCGTACGGGCGCTGCCCGGCTTCGAGCGCTTCGACCCCGTCGACCGGCAGTCCTTCACCGGTCTGGAGGCCCTCGACCTCGCCGGCGAGGTGCTGCCCGCCCTCGCCGGCGCCGGCGTCGTCGTCGAGGCGCCCGACCTGCCCGACTACCGGCACCTGGACGCCCCGCCCCGCGTCGTGGTCGACGGGGCACCGTCCGGCGACGCCGACTGGCTCGACCTCGGCATCTCGGTCACGGTCGCCGGTCGGGAGATCCCCTTCACCCGGCTGTTCACCGCCCTGGCCCGCGGCCAGCAGCGGCTGCTGCTCACCGACGGCTCGTGGCTGCGCCTGAACCACACCTCGTTGCGGCGCCTGCGCCACCTCATCGACGAGGCCTCCGCCCTCGACGACGGCTCGCGCACCCTGCGCGTCAGCCGGTACGACGCCGAGCTCTGGGGCGACCTGGAGGACCTGGCCGACACCGTCGACGTCTCGCAGGAGTGGCGGCGCACGGTCGCCGACCTACGCGCCCTCGCGGCCGGGGAGCGGACCGTCGCCCCGGTCCCGCCACCGCCGGGGCTGCGGTCCGAGCTGCGTCCCTACCAGCACCAGGCGTACGAGTGGCTGACCTTCCTGCACCGCCACGGCCTGGGCGGGATCCTCGCCGACGACATGGGGCTGGGCAAGACCCTCGAGGTGCTCGCGTTCGTCGCGGGCGCCCGCGCCCGGGCCGCGACCGAGGACGCGCCGCTGCGGCCCGTCGTCGTGGTCGCTCCCGCCTCCGTCGTCGGCAACTGGGTCGACGAGGCGAGCCGGTTCACTCCCGACCTGCGGGTCGTCACGGTGCCCACCACGACGGCGAAGCGCGGCCGGCCGCTGGGCGAGCTCTGCGCCGGCGCCGACGTCGTCGTGGTCTCCTACGCCGTGTTCCGGCTGGACTTCGCCGCCTTCCAGGACCTGCCGTGGGCGGGTCTCGTCCTCGACGAGGCCCAGTTCGCCAAGAACCCCCGCACCCGCGCCCACCAGACGGCACGGCGCCTGCGCGCGCCCTTCAAGCTGGCCGTCACGGGCACCCCGCTGGAGAACAACCTCACCGAGCTCTGGGCGATGCTCGCCGTCGTCGCCCCGGGGCTGTACCCGTCCTCGCACCGGTTCCGGGCCGAGGTGGTCCGTCCGGTCGAGGCGGCGGGCCGCGACGACGACCCGCAGGTCGTCGCCGCCGGGAACCGTGCGCTGTCACGGCTGCAGCGGCGGCTGCGCACCCTCATGCTGCGGCGCACCAAGGAGCAGGTCGCCCCGGAGCTGCCGGCGCGGACCGAGCAGGTGCTGCGGGTGCCGCTCACGGCCGACCACCGCAAGGTCTACGACACCCACCTGCAGCGCGAGCGGCAGCGCCTCCTCGGCCTGCTCACCGACTTCGAGGCCAACAAGGCGGCGATCTTCCGTTCGCTGACGACGCTGCGGCGGCTGGCCCTGGACGCCGCCCTCGTCGACGACGCCTACACCGGGGTCACGTCGGCCAAGCTCGACCTCGTGGTCGACCAGCTCGTCGAGATGGCCGCCGAGGGGCACCGGGCCCTGGTCTTCTCCCAGTTCCCCTCGTTCCTGCGCCGGGTCGAGGCGCGCTGCGAGGAGGCGGGACTGCCGACGGCGTTCCTCGACGGCGCCACCCGCGACCGGGCCGGGGCGATCGCCGGCTTCACGGACGGGGCGACCCCCGTGTTCCTCATCAGCCTCAAGGCCGGCGGGTTCGGGCTCAACCTCACCGAGGCCGACCACGTCTACCTGCTGGACCCGTGGTGGAACCCGGCGGTGGAGGCGCAGGCGATCGACCGCACGCACCGGATCGGCCAGACGCGACCGGTGCAGGTCACCCGGCTGGTCGCCGCCGACACCGTCGAGGAGAAGGTCATGGCCCTGGCGGCCCGCAAGGCGGCACTCTTCGACGCCGTCGTCGACGACGCGACGGGCCGGTTCGCCGGCGGTCTCGACGCCGACGACGTGCGCGGTCTGCTGGGGGAGTAG	MDAMPAAPPRLDPLEIGALVGTATFRRAQGYERGGMVVAWSWDEDERVLSARVAGSETRPYGCRVRFGLDADGRYAFGSSTCSCPVGADCKHVAAALLHVGRDGVDGPDGPPAPSGWRGRLAAVTAPDPGSGAGDGTVLPVGLRFRVDGAFGDEPPELSVRPVVPARHGGWRTAPEASWDALARGLYAFADVRATPAPAVRRWFADLGAATSDGSSRVREVWRPLATAGRGLWPLLAEAAALQIPFVGQGSRDEVLLAGSASVRLVAAQTQDGVRLDPVVRMDDTDVEAPDRQGAVGTTGLFTVEARRGGTVLRLGPSSRRLSDGARRLVAGGPVDVPAADVDELLAEHLPGLRRAVPVVSDGSVRLPEPARPVPVARAEFASPQRALLRWSWRYPRPSPGEAREVPWEGSAHDPARDPAAEDELRSKAVAAVRALPGFERFDPVDRQSFTGLEALDLAGEVLPALAGAGVVVEAPDLPDYRHLDAPPRVVVDGAPSGDADWLDLGISVTVAGREIPFTRLFTALARGQQRLLLTDGSWLRLNHTSLRRLRHLIDEASALDDGSRTLRVSRYDAELWGDLEDLADTVDVSQEWRRTVADLRALAAGERTVAPVPPPPGLRSELRPYQHQAYEWLTFLHRHGLGGILADDMGLGKTLEVLAFVAGARARAATEDAPLRPVVVVAPASVVGNWVDEASRFTPDLRVVTVPTTTAKRGRPLGELCAGADVVVVSYAVFRLDFAAFQDLPWAGLVLDEAQFAKNPRTRAHQTARRLRAPFKLAVTGTPLENNLTELWAMLAVVAPGLYPSSHRFRAEVVRPVEAAGRDDDPQVVAAGNRALSRLQRRLRTLMLRRTKEQVAPELPARTEQVLRVPLTADHRKVYDTHLQRERQRLLGLLTDFEANKAAIFRSLTTLRRLALDAALVDDAYTGVTSAKLDLVVDQLVEMAAEGHRALVFSQFPSFLRRVEARCEEAGLPTAFLDGATRDRAGAIAGFTDGATPVFLISLKAGGFGLNLTEADHVYLLDPWWNPAVEAQAIDRTHRIGQTRPVQVTRLVAADTVEEKVMALAARKAALFDAVVDDATGRFAGGLDADDVRGLLGE				NA	NA	NA	NA	NA
AK001_00995	1242	hisD	COG0141	Histidinol dehydrogenase	GTGGAGCAGGCGACCGACGCCGTCGCCCCGGTCCTCGCCGACGTCCGGTCCCGCGGTGCTGCCGCGCTGCGCGACCTGGCCGAGCGTTTCGACGGGGTGCGCCCGGAGCATCTGCGGGTCCCGGCCGAGGCGCTGCGCACCGCGCTGGCCGAGCTGGACCCGGCGATCCGGGCCGGGCTGGAGGAGTCCGTGCGCCGGGTGCGGGCGGTGCACGCCGACCAGGTCCCGCGCGAGCACACCACGGTGCTGGCCGACGGCGCGGAGGTCCGCCAGCGCTGGGTCCCGGTCCAGCGCGTCGGCCTGTACGCGCCGGGCGGGCTCGCGGTCTACCCCTCGTCGGTGATCATGAACGTCGTCGCCGCCCAGGAGGCGGGCGTGCCCGGTCTCGCCGTCGCCTCCCCGCCGCAGCGGGACGCCGGCGGGCTGCCGCACCCGACGATCCTGGCCGCCTGCGAGCTGCTCGGCGTGGACGAGGTCTACGCCGTCGGCGGCGCCCAGGCGGTCGCGATGTTCGCCTACGGCGCGGTCGGCTCCGACCCGGTCGACGGCGAGCAGCTGTGCGAGCCGGTGGACGTCGTCACCGGCCCCGGCAACGTCTACGTCGCCGCGGCGAAGCGCCTCGTGCGCGGCGTCGTGGGGATCGACGCCGAGGCCGGGCCGACGGAGATCGCCGTGCTGGCGGACGACACCGCCGACGCCGGTCACGTCGCGCTCGACCTGATCAGCCAGGCCGAGCACGACCCGATGGCCGCCGCGGTACTGGTCACCCCGTCGCCGGAGCTGGCCGGGGCGGTGGAGTCCAAGCTGGTCGACCTCACCGAGGCCACGAAGCACACCGAGCGGGTGACCACCGCGCTGTCGGGACCGCAGTCCGCCGTGGTGCTCGTCGACGACCTCGAGCAGGGTCTCGCGGTGGTGGACGCCTACGGCGCCGAGCACCTGGAGATCCAGACGGTCGACGCCGCCGCACGGGCCGAGCGGGTGCGGTCCGCCGGCGCGATCTTCGTCGGGCCCTTCGCCCCGGTGTCGCTGGGGGACTACCTGGCCGGGTCGAACCACGTGCTGCCCACGGGCGGCACGGCGCACTTCGCCAGCGGGCTGGGCGTGCACGCCTTCCTCAAGTCCGTCCAGGTCGTCGAGTACAGCCGCGAGGCCCTCGCGGAGGTGGCCGACCGGATCGTCGCGGTCGCCGACGACGAGGACCTGCCCGCGCACGGCGAGGCGGTCCGCGGGCGGTTCTGA	MEQATDAVAPVLADVRSRGAAALRDLAERFDGVRPEHLRVPAEALRTALAELDPAIRAGLEESVRRVRAVHADQVPREHTTVLADGAEVRQRWVPVQRVGLYAPGGLAVYPSSVIMNVVAAQEAGVPGLAVASPPQRDAGGLPHPTILAACELLGVDEVYAVGGAQAVAMFAYGAVGSDPVDGEQLCEPVDVVTGPGNVYVAAAKRLVRGVVGIDAEAGPTEIAVLADDTADAGHVALDLISQAEHDPMAAAVLVTPSPELAGAVESKLVDLTEATKHTERVTTALSGPQSAVVLVDDLEQGLAVVDAYGAEHLEIQTVDAAARAERVRSAGAIFVGPFAPVSLGDYLAGSNHVLPTGGTAHFASGLGVHAFLKSVQVVEYSREALAEVADRIVAVADDEDLPAHGEAVRGRF				NA	NA	NA	NA	NA
AK001_00996	228			hypothetical protein	ATGGACACCCCGATCGAGGTCCCGATCCGTGACGACGTCATCCGGCTGGGACAGTTCCTCAAGCTGGCCGGCCTGGCCGAGTCGGGCACGCACGCCCGCGACCTGGTCGCGGACGGCGACGTGAGCGTCGACGGCGAGGTGGAGACGCGCCGCGGCCGTCAGCTCGCCCGGGGGACGCGGGTCACCGTGGCCGGCCCGGAGGGGGACGAGACCGTCGTCGTGGCCTGA	MDTPIEVPIRDDVIRLGQFLKLAGLAESGTHARDLVADGDVSVDGEVETRRGRQLARGTRVTVAGPEGDETVVVA				NA	NA	NA	NA	NA
AK001_00997	408			F420H(2)-dependent biliverdin reductase	GTGAAGCGACTCAACCCCGAACAGCTCGTGTTCGTCACCGAGCGGCACCTGGCCACCCTGACGACCCTGCGCGCGAACGGGACCCCGCACGTCGTGCCGGTCGCCTTCACGTGGGACCCCGACCTCGGCATCGCTCGCATCACGGCGCGACGCGGATCGGTCAAGGCGCGGAACGCCCGGCGCCCCGGCCCGGACGGCGAGCCGCCGCGGGCCGCGCTGTGCCAGGTCGACGGCGGCCGCTGGCTGACGCTGGAGGGCACGCTGGAAGCCGTCGAGGACCCGGACGCGGTGGCCGAGGCCGTCCGCCGCTACGCCCAGCGGTACCGCCAGGTCCAGTACGACCCGGACCGGATCGTGCTGCACCTGCACGTCGACCGGACGATGTCCTCCGCCTACATGGCGTCCTGA	MKRLNPEQLVFVTERHLATLTTLRANGTPHVVPVAFTWDPDLGIARITARRGSVKARNARRPGPDGEPPRAALCQVDGGRWLTLEGTLEAVEDPDAVAEAVRRYAQRYRQVQYDPDRIVLHLHVDRTMSSAYMAS				NA	NA	NA	NA	NA
AK001_00998	489			hypothetical protein	GTGACCGGCACCGGGGACGACGGCAGCGCCGACCACCGGTTCCGGGTGGTCCCGGCGGCGTACCTGCTGCTGCGCCGGGAGGGCCAGGCGCTCCTGCAGCTGCGCCGGGGCACGGGGTTCATGGACGGGTACTGGGCGGCCGGCGCGGCCGGGCACGTCGAGCCGGGGGAGTCCGCGGTGGCCGCGGCGGTGCGCGAGGCGGCCGAGGAGCTCGGCGTCACCGTCGCGCCGTCGGACGTGGTGCCGCTGACGGCGCAGCACCGGGGCGTCCCCGGCGGCCCCGCGCTCGAGCAGCGCGTCGACTTCTTCTTCGCGGCCGACCGCTGGACCGGCGAGCTGCAGGTCCGCGAGCCGGCCCGGACGGCGGACCTGCGCTGGTTCCCCCTGGTCGCGCTGCCCGAGCCGGTCGTCCCGCACGAGCTGCCCGTGCTGCGCGGCCTGCACGACGGCGTCCTGCCGGCCGTGATGACCTTCGGGTTCGGCCCGTAG	MTGTGDDGSADHRFRVVPAAYLLLRREGQALLQLRRGTGFMDGYWAAGAAGHVEPGESAVAAAVREAAEELGVTVAPSDVVPLTAQHRGVPGGPALEQRVDFFFAADRWTGELQVREPARTADLRWFPLVALPEPVVPHELPVLRGLHDGVLPAVMTFGFGP	PGPT0007945_13	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287	NA	NA
AK001_00999	3570	dnaE1	COG0587	DNA polymerase III subunit alpha	ATGCCGGACGCCGCCACCTCGAAGACCGACGACTTCGTCCATCTGCACGTGCACACCGAGTACTCCATGCTCGACGGCGCCGCGCGGATGGACGACCTCTTCTCCGAGGTGGCGCGGCTCGGCCAGAAGGCCGTCGCGATCACGGACCACGGCTACCTGTTCGGCGCCTTCGACTTCTGGAGCACGGCCCGGAAGTACGACGTCAAGCCGATCATCGGCGTCGAGGCGTACGTCACGCCGGGCACCAGCCGTCACGACCGCACGAAGGTCCAGTGGGGCGAGCAGCACCAGAAGCGCGACGACGTCTCCGCCGGCGGTGCCTACACCCACATGACCCTGTGGTCGCGGAACAACACCGGGATGCACAACCTCTTCCGGGCGTCCTCGCTGGCCTCGCTGGACGGCCAGATGGGCAAGTGGCCCCGCATGGACCGCGAGCTGCTGGAGACGTACTCCGACGGGCTGATGGCCACCACGGGCTGCCCCTCGGGGGAGATCCAGACCCGGCTGCGGCTCGGCCAGTGGGACGAGGCGGTCCGGGCCGCCGGCGAGTACCAGGACATCTTCGGCCACGAGAACTACTTCGTGGAGCTGATGGACCACGGGATCGAGATCGAGTCCCGGACCTCGAAACAGCTCCTCGAGCTCGCGAAGCACATCGGTGCCCCGCTGGTGGCCACCAACGACCTGCACTACACCAAGCGCGAGGACTCCCACGCCCACGAGGTGCTGCTGGCGGTCAACTCGGGCTCGACCCTGGACGAGCCCACCTACGACCAGGGCGGCAGCCGGTTCGCGTTCAGCGGCGACAACTTCTACGTCAAGTCCGGCGCCGAGATGCGCCGGCTCTTCGCCGAGATGCCCGAGGCGATCGACAACACCCTGCTCATCGCCGAACGGTGCGAGGTCTCCTTCGACACCGGGGCGAACTACATGCCCAACTTCCCGGTGCCCGCCGGGGAGGACGAGGTCTCCTGGTTCGTCAAGGAGGTCGAGAAGGGTATGCACGTGCGGTACCCGCAGGGCGTCCCCGACCCCGTGCGCGCCCAGGCGAAGTACGAGACCGAGGTCATCGTCCAGATGGGCTTCCCCGGGTACTTCCTCGTGGTGGCCGACTTCATCAACTGGGCCAAGGAGCAGGGCATCCGCGTCGGCCCGGGCCGTGGCTCGGCCGCCGGGTCGATGGTCGCCTACGTCATGGGCATCACGGAGCTCGACCCGATCGAGCACGGCCTGATCTTCGAGCGCTTCCTCAACCCCGAGCGCGTGAGCATGCCCGACGTCGACGTGGACTTCGACGAGCGCCGGCGCTCCGAGGTCATCCGCTACGTCTCCGACAAGTACGGCGACGACCGCGTGGCCATGATCGCCACCTACGGGTCCATCAAGGCCAAGCAGGCGCTCAAGGACGCCTCGCGGGTGCTCGGGTTCCCGTTCGCGATGGGGGAGAAGCTCACCAAGGCGATGCCGCCGCCCGTCATGGGCAAGGACATCCCGCTGTCCGGCATCTTCGACCCGGACCACGACCGGTACTCCGAGGCCGGCGAGTTCCGCCAGCTGCACGACACCGACCCCGAGGCCCAGCGCGTCGTCGAGACCGCGCGCGGCATCGAGGGGCTGAAGCGGCAGTGGGGCGTGCACGCGGCCGGCGTGATCATGTCCAGCGACCCGCTGATCGACGTCATCCCCATCATGCGGCGCCCGCAGGACGGCGCGGTCATCACGCAGTTCGACTACCCGACCTGCGAGGGCCTCGGCCTGATCAAGATGGACTTCCTCGGGCTGCGCAACCTCACGATCCTCGAGGACGCCCTGGAGATCATCGAGGCCAACGGCAAGGACCCTGTCCAGATCGAGACGGTGGCGCTGGACGACAAGGCGTCCTACGACCTGCTCGCCCGCGGCGAGACCCTCGGCGTGTTCCAGCTCGACGGCGGGCCCATGCGCTCGCTGCTGCGCCAGATGCGGCCCGACAAGTTCGACGACCTCTCCGCCGTCATCGCCCTGTACCGACCCGGTCCGATGGGCATGAACTCGCACGTCAACTACGCGCTGCGCAAGAACGGCATGCAGAAGATCGAGCCGATCCACCCCGAGCTCGCGGAGCCGTTGTCGGAGGTGCTCGACGAGACCTACGGCCTCATCGTCTACCAGGAGCAGGTCCAGCGTGCCGCGCAGGTGCTCGCCGGGTACTCGCTGGGCCAGGCCGACCTGCTGCGCCGCGCCATGGGCAAGAAGAAGCCCGAGGTGCTCGCCAAGGAGTTCGTGAACTTCGAGGCCGGCTGCAAGGAGCGCGGCTACTCGGACGCCGCGATCCAGGCGGTGTGGGACGTGCTGGTGCCCTTCGCCGGGTACGCCTTCAACAAGGCGCACTCGGCCGGCTACGGCCTGGTCGCCTACTGGACCGCCTTCCTCAAGGCGAACTACCCGACCGAGTACATGGCGGGTCTCCTGCAGTCGGTGCGGGACGACAAGGACAAGATGGCGCTCTACCTCAACGAGTGCCGTCGCATGCGCATCACGGTGCTGCCGCCGGACGTCAACGACTCCGCGGCCAAGTTCACCGCCGTCGGCGAGGACATCCGCTTCGGCCTGACGGCGGTGCGCAACGTCGGCGCCAACGTGGTGGACGCCATCGTCGCGGCCCGCGAGGAGCACGGGGCCTTCACCTCGTTCACCGACTTCCTGGACAAGGTGCCCGCCGTGGTGTGCAACAAGCGCACCATCGAGTCGCTGATCAAGGCCGGAGCCTTCGACTCCCTGGGCCACCCGCGGCGGGCCCTGCTCGTCGTGCACGAGCAGGCCGTGGACTCGGTGATCTCGGTCAAGCGCAAGGAGGCGGAGGGGCAGTTCGACCTCTTCGCCGACTTCGGTGCGGACGGTGCCGCGGACGACGCCGTGTCGTTCGCCGTCGACGTGCCGGACCTGCCCGACTGGGACAAGAAGCAGCGGTTGTCCTTCGAGCGGGAGATGCTCGGCCTGTACGTCTCGGACCACCCGCTGTCCGGGCTGGAGCACGTCCTGGCCCGCGCCGCCGACACCTCGATCGCGCTGCTCATGGCCGACGAGACCCGGGCCGACGGGTCCTCGGTCACCGTCGCCGGCCTGCTGACGTCGGTGCAGCGCAAGATCAGCAAGAACGGCAACCCGTGGGCCGCGGTGACGATCGAGGACCTCGAGGGCGGCGTCGAGGTGATGTTCTTCGGCGAGACGTACCTGGCCTACTCCACGGTGCTGGCCGAGGACCAGGTCGTCACGATCCGTGGCCGCGTGCGGCGCCGGGACGACCAGATGCAGCTGCAGGCGCAGGAGGTCTCCCTGCCCGACACCTCGGCGGTGGCGGACGCCCCGGTGCACGTCACCGTGCCGCACACCCGGTGCGTCGAACCGGTGATGCTGCGCCTGCGCGAGGTGCTGTCGACCCACCCGGGGTCCTCGGCCGTGCACGTCGCCGTCGCCGAGCCGGGCAAGAAGACCCTGGTGCAGGCCGGTGACGGGCTGCGGGTCGAGAGGTCGCCCGCCCTGTTCGGCGACCTCAAGGCGCTCCTCGGCCCGAGCTGCCTGTCGTGA	MPDAATSKTDDFVHLHVHTEYSMLDGAARMDDLFSEVARLGQKAVAITDHGYLFGAFDFWSTARKYDVKPIIGVEAYVTPGTSRHDRTKVQWGEQHQKRDDVSAGGAYTHMTLWSRNNTGMHNLFRASSLASLDGQMGKWPRMDRELLETYSDGLMATTGCPSGEIQTRLRLGQWDEAVRAAGEYQDIFGHENYFVELMDHGIEIESRTSKQLLELAKHIGAPLVATNDLHYTKREDSHAHEVLLAVNSGSTLDEPTYDQGGSRFAFSGDNFYVKSGAEMRRLFAEMPEAIDNTLLIAERCEVSFDTGANYMPNFPVPAGEDEVSWFVKEVEKGMHVRYPQGVPDPVRAQAKYETEVIVQMGFPGYFLVVADFINWAKEQGIRVGPGRGSAAGSMVAYVMGITELDPIEHGLIFERFLNPERVSMPDVDVDFDERRRSEVIRYVSDKYGDDRVAMIATYGSIKAKQALKDASRVLGFPFAMGEKLTKAMPPPVMGKDIPLSGIFDPDHDRYSEAGEFRQLHDTDPEAQRVVETARGIEGLKRQWGVHAAGVIMSSDPLIDVIPIMRRPQDGAVITQFDYPTCEGLGLIKMDFLGLRNLTILEDALEIIEANGKDPVQIETVALDDKASYDLLARGETLGVFQLDGGPMRSLLRQMRPDKFDDLSAVIALYRPGPMGMNSHVNYALRKNGMQKIEPIHPELAEPLSEVLDETYGLIVYQEQVQRAAQVLAGYSLGQADLLRRAMGKKKPEVLAKEFVNFEAGCKERGYSDAAIQAVWDVLVPFAGYAFNKAHSAGYGLVAYWTAFLKANYPTEYMAGLLQSVRDDKDKMALYLNECRRMRITVLPPDVNDSAAKFTAVGEDIRFGLTAVRNVGANVVDAIVAAREEHGAFTSFTDFLDKVPAVVCNKRTIESLIKAGAFDSLGHPRRALLVVHEQAVDSVISVKRKEAEGQFDLFADFGADGAADDAVSFAVDVPDLPDWDKKQRLSFEREMLGLYVSDHPLSGLEHVLARAADTSIALLMADETRADGSSVTVAGLLTSVQRKISKNGNPWAAVTIEDLEGGVEVMFFGETYLAYSTVLAEDQVVTIRGRVRRRDDQMQLQAQEVSLPDTSAVADAPVHVTVPHTRCVEPVMLRLREVLSTHPGSSAVHVAVAEPGKKTLVQAGDGLRVERSPALFGDLKALLGPSCLS				NA	NA	NA	NA	NA
AK001_01000	933		COG0564	putative RNA pseudouridine synthase	ATGGCGCTGCGTACGCTGCCGGTGCCCGACGGCCTGGCCGGCGAACGGGTGGACGTCGCCCTGGGCCGCATGCTCGGGTTCTCCCGCAGCCAGGCGGCCGAGCTCGCCGCGTCCGGCGCGGTGCGCGCGGACGGGCGCACCGTGGGCAAGTCGGACCGGCTGGTGCCCGACACGCTGCTCGAGGTGGACGTCCCGGACGCCCCGTCCGAGGCCGTGGAGGTCGTCGCCGAGCCGGTGGAGGGCATGTCGATCGCCTACGACGACGACGACGTCGTGGTCGTGGACAAGCCGGTCGGGGTGGCTGCGCACCCGTCGCCGGGGTGGACCGGCCCGACCGTGGTCGGCGCGCTGGCCGCCGCCGGCTACCGCATCGCCACGTCCGGCGCCGCCGAGCGCCAGGGGATCGTGCACCGCCTCGACGTCGGCACCTCCGGCCTGATGGCGGTGGCCAAGTCCGAGGCCGCCTACACGGGGCTCAAGCGTGCCTTCAAGGAGCGCACGGTCGACAAGGTCTACCACGCGCTCGCCCAGGGCCACCCGGAGCCGACGACGGGCACGATCGACGCCCCGATCGGCCGGCACCCGCACCACGACTACAAGTTCGCCGTGGTCGCCGACGGCAAGCCCTCGGTGACCCACTACGAGGTGCTCGAGATGCTGCCAGCCGCGTCCCTGGTCGAGGTGCACCTGGAGACGGGCCGCACCCACCAGATCCGGGTGCACTTCGCCGCGCTGCGCCACCCGCTCGTCGGCGACCTGACCTACGGGGCCGACCCCACGCTCGCCGCCCGCACGGGGCTGCAGCGGCAGTGGCTGCACGCGATGCGCCTGGGGTTCACCCACCCCGTCACGGGCCGGGACGTCATGGTGGAGTCCGAGTACCCGCAGGACCTGGCCGACGCCCTGCGGACGCTGCGCGACGCCTACCTGTGA	MALRTLPVPDGLAGERVDVALGRMLGFSRSQAAELAASGAVRADGRTVGKSDRLVPDTLLEVDVPDAPSEAVEVVAEPVEGMSIAYDDDDVVVVDKPVGVAAHPSPGWTGPTVVGALAAAGYRIATSGAAERQGIVHRLDVGTSGLMAVAKSEAAYTGLKRAFKERTVDKVYHALAQGHPEPTTGTIDAPIGRHPHHDYKFAVVADGKPSVTHYEVLEMLPAASLVEVHLETGRTHQIRVHFAALRHPLVGDLTYGADPTLAARTGLQRQWLHAMRLGFTHPVTGRDVMVESEYPQDLADALRTLRDAYL				NA	NA	NA	NA	NA
AK001_01001	630	lspA	COG0597	Lipoprotein signal peptidase	ATGTCCACGACGCCCGCCGGGTCCGACCCGGTCCCCGACCCTCCCCACGAGACCGCGTCCTCCGCGCCCCAGGACGCCGACGACGCCGTCGCTACGCACGACGCCGCGGCGGCCGCCCGCCGCCGTCGGCTCGGCGTCGGTGCGCTGAGCCTCGCCGCCGTCGTGCTGGTCGCCGACCAGCTGACGAAGTGGTGGGCGCTGGCCGCGCTGACCGAGGGCGAACGGATCGCGCTGCTCGGCGACCTGCTGGGGCTGACCCTGGTGTTCAACCCGGGCGCCGCGCTGTCGTTCATGGCGAACGGCTACACCTGGGTCCTGACGATCGTCGTCGTGGTGGTCGTCGTGGTGATCCTGCGGGCGATGCGTCGCATCGGGTCGCTCGGCTGGGCCGTCGCGCTGGGCCTGCTCCTGGGCGGTGCGCTGGGCAATCTCGTCGACCGGATCTTCCGGCAGCCGGGCTTCGCCCGCGGTGAGGTGGTCGACATGATCGCCTACGCCGACTTCTTCGTCGGCAACGTCGCGGACATCGCCATCGTCGTCGCCGCGGGGCTGATCATCCTGCTGTCCTTCCGGGGTGTCGGGCTCGACGGCACGCGCCAGACCTCCGACGAGACGGAGGGCGAGGACTGA	MSTTPAGSDPVPDPPHETASSAPQDADDAVATHDAAAAARRRRLGVGALSLAAVVLVADQLTKWWALAALTEGERIALLGDLLGLTLVFNPGAALSFMANGYTWVLTIVVVVVVVVILRAMRRIGSLGWAVALGLLLGGALGNLVDRIFRQPGFARGEVVDMIAYADFFVGNVADIAIVVAAGLIILLSFRGVGLDGTRQTSDETEGED	PGPT0004770_713	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101	NA	NA
AK001_01002	462	dksA_1		RNA polymerase-binding transcription factor DksA	ATGTCCAAGCTCTCCACCTCCCAGCGGGCGACGATCCGCGAGGAGTTCCCGAACCTGACGCGTGACGTCAAGGAGTTCCCCGTGCGCGACGGCGAGGAGCCGTGGACCCTCCAGGAGGTCTCCGAGCTCGCGCTGCTGCTCCTGGAGGACAAGGAACGCTTCACCGCCGAGCTGGCCGCTGCCGACGCCGAGCTGTCCGACCTCCTGCGCAACTCCGGCGACGGCGCCGGTGACGACCAGGCCGACTACGGTTCCAGCGCGCTCGAGCGCGAGCAGGAGCTCACGCTCGTGAACAACCTGCGCGACCTGCTGGACCAGACGACCCACGCGCTGGACCGCATCCGCAACGGCGCCTACGCCACCTGCGAGGTCACCGGGGCGCCGATCGGCAAGGCACGGCTGCAGGCCTTCCCGCGAGCCACCCTGTCGGTCGAGGCGAAGGCACGCGAGGAGCGTCGGTAG	MSKLSTSQRATIREEFPNLTRDVKEFPVRDGEEPWTLQEVSELALLLLEDKERFTAELAAADAELSDLLRNSGDGAGDDQADYGSSALEREQELTLVNNLRDLLDQTTHALDRIRNGAYATCEVTGAPIGKARLQAFPRATLSVEAKAREERR	PGPT0014560_543	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204	NA	NA
AK001_01003	654		COG3599	Cell wall synthesis protein Wag31	ATGGCACTGCTGACGGCAGAGGACATCCTCAACAAGAAGTTCTCGGCGACGAAGTTCCGCGAGGGCTATGACGTCGAAGAGGTCGACGACTTCCTGGACGAGGTCGTCCGGACTCTGACGGCGGTGCAGGAGGAGAACGACGACCTGCGGTCGAAGCTGTCCGCGGCCGAGAGCCGGGTCGCGGAGCTCAGCCGCAACGAGGCCGCGGCGCAGTCGGCCGAGAAGCCCGAGGCCCCGGCTCCGGCTCCGGCCGCCGCTCCTGCTCCTGCGCCGGCCCTGGCCGAGGCGGCCGCCGGCAAGCAGGGCGCCGAGCCCGAGTCCGCCACGGGCATGCTGCAGCTCGCCCAGAAGCTGCACGACGACTACGTCCGCTCCGGCCAGGAGGAGGGCGACCGGCTCATCGCCGAGGCGAAGGCCGAGGGCTCCCGCATCGTCCGCGAGGCCGAGGAGACCAGCCACCGCACGCTGTCGCAGCTGGAGCAGGAGCGTTCGCTGCTCGAGCGCAAGATCGACGAGCTGCGCCTGTTCGAGCGGGACTACCGCACCCGCCTGAAGAGCTTCCTGCAGAACCTGCTCGGCGACCTGGACGCCCGCGGCTCGGCCCTGCCGCCGCAGCGTCAGAACGCCGCGGCGGGTCGTTCGCAGGACGTCTGA	MALLTAEDILNKKFSATKFREGYDVEEVDDFLDEVVRTLTAVQEENDDLRSKLSAAESRVAELSRNEAAAQSAEKPEAPAPAPAAAPAPAPALAEAAAGKQGAEPESATGMLQLAQKLHDDYVRSGQEEGDRLIAEAKAEGSRIVREAEETSHRTLSQLEQERSLLERKIDELRLFERDYRTRLKSFLQNLLGDLDARGSALPPQRQNAAAGRSQDV	PGPT0014806_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NA	NA	NA
AK001_01004	297			hypothetical protein	GTGAGCGTGATCTTCAGCCTCGTCGGCTTCGTCCTGCTGCTGTTCCTGCTGTGCCTCATCGTCCGGCTGGTCTTCGACTGGGTGCAGTTCTTCGCCCGTGACTGGCGTCCGCGGGGCGTCGTCCTCGTGATCGCCGAGGGTGTGTACACCGTCACAGACCCGCCGCTGCGCGCGCTGCGCCGGATCATCCCGCCGCTGACTCTCGGCAGCGTGCGCCTGGACCTCGCCTTCCTCGTCCTGTTCCTGGCGACGTCGATCCTCATGCAGGTCGCGAACGGTCTAGCCGCGAGCCTCTGA	MSVIFSLVGFVLLLFLLCLIVRLVFDWVQFFARDWRPRGVVLVIAEGVYTVTDPPLRALRRIIPPLTLGSVRLDLAFLVLFLATSILMQVANGLAASL	PGPT0013730_1997	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IVa_PILUS_HOMOLOG_PROTEIN,PGPT0013730-yggT|ylmG-K02221	NA	NA
AK001_01005	477	sepF		Cell division protein SepF	ATGGGCGGAGCGCTTCGCAAGACGATGCTGTACCTGGGGCTGGCCGACGACCAGCGTCCCGACGGGGAGTACCTCGACGACTACGACGAGGAGCTGGAGCCGGTGCGTGACGACGACTACCAGGCCGAGGTCACGCCGCTGCACCGTGACGGGGTGCCGGCCGACGCGCTCGTCGGCGGCGACCTGCGTCGCATCACCACCATCCACCCGCGGTCGTACAACGACGCGCGGCTGATCGGCGAGGCCTTCCGCGGCGGGACGCCGGTCATCATGAACCTGTCGGACATGGACGACTCCGACGCCAAGCGGCTCGTCGACTTCTCGGCGGGACTGATCTTCGGCCTGCGGGGCTCCATCGAGCGGGTCACGAACAAGGTCTTCCTGCTCTCGCCCGAGCACGTCGAGATCACGGGCGAGGAGCAGGTCGCCCCGCGGCCGACCGAGGCCCGTGCGGGAGCCTTCTACAACCAGAGCTGA	MGGALRKTMLYLGLADDQRPDGEYLDDYDEELEPVRDDDYQAEVTPLHRDGVPADALVGGDLRRITTIHPRSYNDARLIGEAFRGGTPVIMNLSDMDDSDAKRLVDFSAGLIFGLRGSIERVTNKVFLLSPEHVEITGEEQVAPRPTEARAGAFYNQS				NA	NA	NA	NA	NA
AK001_01006	774		COG1496	Polyphenol oxidase	ATGTTGCCCGAGGACTTCGGCGCGGGTCTGCTGCGGGCAGACCTGGGCGAGGGCGTGGTGGCGGGGTTCACCACGCGCCACGGTGGCGTCTCGCCGGCGCCGTGGTCGTCCCTCGACCTGGCCGACACCACGGGTGACGACAGCGCGCGCGTCCAGCGCAACCGCGACCTCCTGGCCGAGTGGGTCGGGGCCCCCGTGGCCTTCGCCACGCAGGTGCACGGCGCGGACGTCCTCGAGCTCGGACCGGCCGAGCGTGCCGAGTGGTCCGGTGCGCCCCCGATGAGCGCCGGTACCGCGGACGGCCTGGTCACCGCGGAACCGGGGCTGGGGCTCGGCGTGCTCGTCGCGGACTGCGTCCCGGTGCTGCTCGCCGACCCCGTGGCCCGGGTGGTCGGGGTCGCCCACGCCGGACGACGGGGACTCGTCGCCGGTGTCGTGGAGCGTGTCGTCGACCGCCTGCTGGCGCGCGGCGCCGAGGTGGACCGGCTGCGCGCCGCCGTCGGGCCGGCGGTGTGCGGGGCGTGCTACGAGGTGCCGGAGGACCTGCGCGACGAGGTCACCGCCGTCGTGCCCGAGAGCTGGTCGACCACGGCGCGCGGCACCGCCGGGCTGGACCTGCCGGCCGGGGTGACGGCCCGGCTCGCCGCGCGGGGCGTCGTCACCACACGGGTCGATCGCTGCACGATGACCGACGCGGACCTGTTCTCGCACCGTCGGGCCTCGGCCGCCGGCGAGGTCGCGGGACGCCAGGCAGGTGTCGTCGTCCTGTCGTGA	MLPEDFGAGLLRADLGEGVVAGFTTRHGGVSPAPWSSLDLADTTGDDSARVQRNRDLLAEWVGAPVAFATQVHGADVLELGPAERAEWSGAPPMSAGTADGLVTAEPGLGLGVLVADCVPVLLADPVARVVGVAHAGRRGLVAGVVERVVDRLLARGAEVDRLRAAVGPAVCGACYEVPEDLRDEVTAVVPESWSTTARGTAGLDLPAGVTARLAARGVVTTRVDRCTMTDADLFSHRRASAAGEVAGRQAGVVVLS	PGPT0019965_1709	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_LIGNIN_DEGRADATION|LIGNINASES	PLANT_LIGNIN_DEGRADATION-POLYPHENOL_OXIDASE,PGPT0019965-yfiH-K05810	NA	NA
AK001_01007	1344	ftsZ		Cell division protein FtsZ	GTGGCAACTCCGCAGAACTACCTGGCAGTGATCAAGGTGGTCGGCATCGGCGGTGGCGGCGTGAACGCCGTGAACCGCATGATCGAGGTCGGCCTCAAGGGTGTCGAGTTCATCGCCATCAACACCGACGCGCAGGCCCTGCTGATGTCGGACGCCGATGTCAAGCTGGACGTCGGCCGCGAGCTGACGCGCGGGCTCGGCGCGGGGGCGGACCCCGAGGTCGGCCGCAAGGCCGCCGAGGACCACGCCGAGGAGATCGAGGACGTCCTGCGCGGGGCGGACATGGTCTTCGTCACGGCGGGCGAGGGCGGCGGCACCGGCACCGGCGGCGCGCCGGTCGTGGCCCGCATCGCGCGGTCGCTGGGCGCGCTGACCGTGGGCGTGGTCACCCGGCCGTTCACCTTCGAGGGGCGTCGCCGCTCGGTGCAGGCCGAGCAGGGGATCGAGCAGCTCCGCGAGGAGGTCGACACGCTCATCGTGATCCCGAACGACCGGCTGCTGTCGATGTCGGACCGGAACGTCTCGGCGATCGCCGCGTTCCACTCCGCCGACCAGGTGCTGCACTCCGGCGTCCAGGGGATCACCGACCTCATCACCACCCCCGGCCTGATCAACCTCGACTTCGCCGACGTGAAGTCTGTGATGCAGGGGGCCGGGTCCGCCCTCATGGGTATCGGATCGGCCCGCGGGGAGGACCGCGCCGTCCAGGCCGCCGAGCTCGCGATCTCCTCGCCGCTGCTGGAGGCCTCCATCGACGGCGCGCACGGCGTCCTGCTGTCGATCCAGGGCGGCAGCGACCTCGGCCTGTTCGAGGTGCACGAGGCGGCACGCCTGGTGCAGGAGGCGGCCCACCCCGAGGCGAACATCATCTTCGGCACGGTCATCGACGACGCGCTCGGCGACGAGGTCCGGGTCACGGTCATCGCCGCCGGCTTCGACGGCGGGCTGCCCAAGGCGCGCGAGGACTCCCGGGCGCTCGGGCAGGTCACCGGCAGCTCCGCGGCCGGCCGTCCGGCCGTCGACGACGGTGCGGCCGCGCGACCGGCCCCGGCCTCCGCGTCGAGCCCGGCGTCGCCGGCCGGTGGTCAGGGCGTCTCCCCGGCGACCGCCCCGGTGCCCGCCGCCGAGCCCGCGCACGCCCGTCCGCGGCCGATCCCGGCGGACCCGGACGACGTGCCGGCGAGCCTGGAGCCGGTGGGCGGCAGCCCGCGCCCGGCGCAGTTCGGCGTCGTCGAGGAGGGCAACGGCGAGGGCGTGACGGTCGAGCGTCCGGTGGACGTGCCCCGGATGGTCGACCAGTCCCGTCCCGCCGAGGACCTCGACGTCCCCGACTTCCTCAAGTGA	MATPQNYLAVIKVVGIGGGGVNAVNRMIEVGLKGVEFIAINTDAQALLMSDADVKLDVGRELTRGLGAGADPEVGRKAAEDHAEEIEDVLRGADMVFVTAGEGGGTGTGGAPVVARIARSLGALTVGVVTRPFTFEGRRRSVQAEQGIEQLREEVDTLIVIPNDRLLSMSDRNVSAIAAFHSADQVLHSGVQGITDLITTPGLINLDFADVKSVMQGAGSALMGIGSARGEDRAVQAAELAISSPLLEASIDGAHGVLLSIQGGSDLGLFEVHEAARLVQEAAHPEANIIFGTVIDDALGDEVRVTVIAAGFDGGLPKAREDSRALGQVTGSSAAGRPAVDDGAAARPAPASASSPASPAGGQGVSPATAPVPAAEPAHARPRPIPADPDDVPASLEPVGGSPRPAQFGVVEEGNGEGVTVERPVDVPRMVDQSRPAEDLDVPDFLK	PGPT0027695_1461	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027695-ftsZ-K03531	NA	NA
AK001_01008	723	ftsQ	COG1589	Cell division protein FtsQ	ATGGCGGAACGGCGGGCCGAGCGGTCGGCGATGCGCCGTCACCGGTCGTGGCGCACCGTGCTCGTGGTCGTGCTGGTGCTCCTGCTCGCCGGGGGAGCCGGCTGGGTGGTCGGGTGGTCCGACCTGCTGGCGCTCGAGGCCGGTGAGGTGGCCGTGACGGGGGCCGACTCGTCCGTCGTCGACGGCGAGCGGGTCCACGAGATCGCCGTCGCGGCCGCCGGCACGCCGCTGGCGCGGCTGGACGCCTCGGGCATGGCGGAGGAGATCCGCGGATTGCGCGGTGTCAAGGACGTCGCGCTGGAGCGGTCGTGGCCGCACGGTCTGCAGGTGTCCGTCGTGGCGCGCGAACCGGTCGCCGCGGTCCCGGACGACGGTGACTTCGTGCTGCTCGACGACGAGGGGGTCCGCCTCGGCCGTCGCGGCGCGGTGCCGGAGGGGCTCCCGGTGGTCTCCGTGCCGCTCGAGCAGGAGTCCGTCCGCGCGCTGCGGGCGGCGCTGGCCGTGGTCGCGGCGCTGCCGCCCGGTCTGGCCGCCCGCGTGGAGACGGTGAGCGCCCGCACCCAGGACGACGTCGAGACCGTGCTCCGCGACGGACTGAGCGTCCGGTGGGGCGGCGCGGAGCGGCTGCCGCTGAAGGTGGAGGTCGTGCGCACCCTGCGTCAGGTCGGCGGCGACGTCGCCGTCATCGACGTGTCCTCGCCCGAGCTTCCCGTGACCCGTTGA	MAERRAERSAMRRHRSWRTVLVVVLVLLLAGGAGWVVGWSDLLALEAGEVAVTGADSSVVDGERVHEIAVAAAGTPLARLDASGMAEEIRGLRGVKDVALERSWPHGLQVSVVAREPVAAVPDDGDFVLLDDEGVRLGRRGAVPEGLPVVSVPLEQESVRALRAALAVVAALPPGLAARVETVSARTQDDVETVLRDGLSVRWGGAERLPLKVEVVRTLRQVGGDVAVIDVSSPELPVTR				NA	NA	NA	NA	NA
AK001_01009	1497	murC	COG0773	UDP-N-acetylmuramate--L-alanine ligase	ATGAGCGCCCCGTCCGCCGTCGCCGCGCTCGGGCGCGTCCACCTCGTCGGCGTCGGCGGAGCCGGGGTGTCCGTCGTCGCCCGTCTGCTCGCGGCCCAGGGCGCCCCGGTCCAGGGGTCGGACGCCGTCGAGAGCCCCGCGCTGTCCGCGCTGCGGGCCGACGGCGTGACCGTGTGGGTCGGGCACGACGCCGACCACGTCGTCGCGCCGGACGGCACCCCGCGGGTCGACACCGTCGTCGTCTCCACCGCCGTGCGGGAGAGCAACCCCGAGCTGGCCGCCGCGCGTGCGGCGGGCCTGCGGGTCCTGCACCGCTCCCAGGCGCTCGCCGCCCTCATGCAGGGGCGGCGCACCGTGGCGGTCGCCGGCGCGCACGGCAAGACCACGACCTCGGCCATGGTGGCCACCGTGCTCGCCGCGGTCGGGGTGGACGCCTCGTTCGCGATCGGGGGCACGGTCCGACGGCGGGACGCGACGGGGGAGCGGACCGTGCCGGGCGGCCACGCCGGCAGCGCGGACGTGCTGGTGGCCGAGGCCGACGAGTCCGACGGGTCGTTCCTCAACTATGCCCCGACGGTGGCGGTGGTGACCAACGTCGAGGCTGACCACCTCGACCACTACGGCTCCCAGGAGGCGTTCGAGCAGGCGTTCGTGGACTTCGCCGCGCGGATCACCCCCGACGGGGCGCTCGTCGCCTGCGCGGACGACGCCGGCTCGGCCCGGTTGGCCGCCGCGCACCGCGAGGCCGGCCGACGCGTGGTCACCTACGGCACCGCGGACGGTGCCGACGTCCGCGTGCGGGACGTCGTCGTCGGCGCCGGGACCGTGCGCGCCGTCGTGTCCGGCGGGCCCCTGGGTGCGACGGACCACGTGCTGGCCCTCGACGTGCCGGGGGCGCACAACGCCCTGAACGCCACCGCCGCGGTCGTCGCCGCCGTGCTGCTCGGGGCGGAGCCGGCGGCCGCCGTGGCGGGCGCCGGCACGTTCGTGGGGACGGGTCGACGCTTCGAGCCGCGCGGCGAGGTCGCGGGCGTGCGGGTGTTCGACAGCTACGACCACCACCCGACCGAGGTCGAGGCGCTGCTGCGTGCGGCCCGCCCGGTGGCCGGCGACGGACGCGTGGTCGTGCTGTTCCAGCCCCACCTGTACTCACGCACGCGGATCTTCGCCGACCGGTTCGCCGCGGCCCTGGCGCTCGCCGACGAGGTCGTAGTGACCGGGGTGTACCGGGCGCGGGAGGACGTCGACCCGCAGGTGACGGCGCGGACCATCACCGACCGGGCCGGCGCGACGGTCTCCGGGGGGCGGGTCCGCCCGGTCGAGGACCGGCTCGCGGCCGCGCACGCCGTGGCGGAGCTGGCCCGTCCCGGTGACGTCGTCCTGACCGTCGGCGCCGGCGACGTCACCGAGCTCGGCCCCGTCGTCCTCGCGGTCCTGGCGGCCCGTCACGGCGTGGCGGACCCCTCGGGGCCCGCGCCGGACGCGACCATGGGGTGA	MSAPSAVAALGRVHLVGVGGAGVSVVARLLAAQGAPVQGSDAVESPALSALRADGVTVWVGHDADHVVAPDGTPRVDTVVVSTAVRESNPELAAARAAGLRVLHRSQALAALMQGRRTVAVAGAHGKTTTSAMVATVLAAVGVDASFAIGGTVRRRDATGERTVPGGHAGSADVLVAEADESDGSFLNYAPTVAVVTNVEADHLDHYGSQEAFEQAFVDFAARITPDGALVACADDAGSARLAAAHREAGRRVVTYGTADGADVRVRDVVVGAGTVRAVVSGGPLGATDHVLALDVPGAHNALNATAAVVAAVLLGAEPAAAVAGAGTFVGTGRRFEPRGEVAGVRVFDSYDHHPTEVEALLRAARPVAGDGRVVVLFQPHLYSRTRIFADRFAAALALADEVVVTGVYRAREDVDPQVTARTITDRAGATVSGGRVRPVEDRLAAAHAVAELARPGDVVLTVGAGDVTELGPVVLAVLAARHGVADPSGPAPDATMG	PGPT0024120_274	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924	NA	NA
AK001_01010	1143	murG	COG0707	UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase	GTGAAGACTTCCTCCGTGCGCTCTGTCGTGCTGGCCGGTGGAGGGACCGCCGGCCACGTCAACCCGCTGCTCGCCGTGGCCGACGAGCTGCGGGCCCGTGACCCCGAGACGTCGTTCCGGGTGCTGGGCACCGCGGCCGGCCTGGAGGCCGACCTCGTCCCCGCCGCCGGCTACCGGCTGCACGAGATCCCCCGGGTCCCGCTGCCGCGCCGGCCGAGCGTGGACCTGCTGCGGCTGCCGGGCCGCCTGCGCGCGGCCGTGCGGTCGGCGCAGGACGCCATCACCGAGATCGACGCCCGGGCCGTGGTCGGCTTCGGTGGCTACGTGTCCACCCCGGCCTACCTGGCGGCGCGACGTCTCGGCGTGCCGGTGGTGATCCACGAGCAGAACGCCCGCCCGGGTCTGGCGAACCGGCTCGGGTCCCGCTGGGCGGCCGCCGTGGGCACCACCTTCGCCGACACGACGATCGCCGGGGCCACCTGCGTCGGGCTGCCGCTGCGCCCGGCGATCGCCGCCCTGGTCGACGAGCGCCGGGCGGACCCTGCCGGTTCCCGGAACCGCGGGGCCGCCGCGCTCGGCCTCGACCCCGACCTGCCGACCCTGCTGGTCACCGGGGGGTCCTCGGGCGCCCTGAACGTCAACCGGGCGGTGACGGGTGCCGCCGCCGCGCTCCTGGACGCGGGCCTGCAGGTGCTGCACCTGACCGGCCGGGACAAGGACGCCGAGGTGCGCGAGGCCGTGGCGGCGCTGGCCGGCGACCACGACGTGTCCCGCTACCACGTGCGCGAGTACCTGTCGGACATGCAGCACGCGCTGGCCGCCTGCGACCTCGTCGTCGCGCGCTCCGGGGCCGGGACGGTCTGCGAGCTCGCCGCGCTGGGGTTGCCCGCGGTGTACGTCCCGCTGCCGATCGGCAACGGCGAGCAGCGGCTGAACGCCCGCGACGTCGTCGGGGCCGGCGGCGGGATCGTGATCGACGACGCCGCGTTCACCCCGGAGCGGGTCGCGGCCGAGGTGCCCGCCCTGCTCCAGGACCGGGCACGGCTGGCCGCCATGGCCGAGGCCGCCGGCTCGGTCGGGGTCCGCGACGCGGCGGCCCGGGTCGCCGACATGGTCGAGGCGGCCGCGGGGGCGGCACGATGA	MKTSSVRSVVLAGGGTAGHVNPLLAVADELRARDPETSFRVLGTAAGLEADLVPAAGYRLHEIPRVPLPRRPSVDLLRLPGRLRAAVRSAQDAITEIDARAVVGFGGYVSTPAYLAARRLGVPVVIHEQNARPGLANRLGSRWAAAVGTTFADTTIAGATCVGLPLRPAIAALVDERRADPAGSRNRGAAALGLDPDLPTLLVTGGSSGALNVNRAVTGAAAALLDAGLQVLHLTGRDKDAEVREAVAALAGDHDVSRYHVREYLSDMQHALAACDLVVARSGAGTVCELAALGLPAVYVPLPIGNGEQRLNARDVVGAGGGIVIDDAAFTPERVAAEVPALLQDRARLAAMAEAAGSVGVRDAAARVADMVEAAAGAAR	PGPT0024150_692	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563	NA	NA
AK001_01011	1239	ftsW_2	COG0772	putative peptidoglycan glycosyltransferase FtsW	ATGGCGGTCACGCCCGCGGCGCGCACGCGCAGCACCGACCGGCCGTGGCTGGGGCAGTGGAACTCCGCGGTGACGAGCTACTACCTCGTCGTCGGGGCGACCGGGCTGCTGCTGCTCATCGGTCTGGTCATGGTGTTCTCCAGCACGGCCGTCACCTCGATCGCCGCGGGCGAGTCCCCCTACGCCGCCGGGCTGACGCAGGCGCGCTTCGCCCTGATCGGACTGCCCGTGCTGCTGGTCGCGGCCCGGCTGCCGGTGCGGTGGTACAAGCGGCTGGCCTGGCCGGCCCTCGCCGTGGCCGTCGTCCTGCAGTCGCTGACGCTCGTGCCGGCGCTGGCGCGCGCGCAGGGCGGCAACGTCGGCTGGATCTCCCTCGGCGGCGTCACGGTGCAGCCGGCCGAGGTGAGCAAGCTCGCCCTGGCCGTCTGGCTCGGGGTCGTGCTCGGGCGCAAGCAGCACCTGCTCGGGTCCTGGGCCCACGCCATCGTGCCCGCCGTGCCCGGGGCGCTGATCGTCCTGGGACTGGTCATCGCCGGGAACGACCTGGGCACGATGCTGGTCATCGCCGGGCTCGTGGCGGGAGCGCTGTGGGTCGCCGGTGCGCCGTGGCGCATGCTCGCGCTGGGCGGTGCCGCCGCCGTGACGGCGATCGTCGGGCTCTTCGTGCTCGGCAACTCCAACCGCATGGGGCGCATTCTGGCGACCTACGGCGAGTGCACCGACGCCGAGGGCCTGTGCTACCAGTCCCTGCACGGCATGTACGGCCTGGGTACCGGCGGGCTGTTCGGCGTCGGGCTCGGGGCCAGCCGCGAGAAGTGGCGGTACCTGCCCGAGGCGCACAACGACTTCATCTACGCCATCATCGGCGAGGAGCTCGGCCTCCTCGGCACCCTGCTCGTGCTGTCCCTGTTCGTGGTGCTCGGGGTCGCCATGGCACGGATCGTGCGGCGGCACGACGACCCGTTCGTCAAGATCACCACCGCCGCCGTGGCGTGCTGGATCGTGGGCCAGGCGTTCGTCAACATCGGCGTCGTGCTGGGGCTGCTGCCGGTCATCGGCGTGCCGCTGCCGCTGGTGTCCGCCGGCGGGTCGGCCCTGGTGACGACCATGGCGGCCCTGGGCATGGTCATCAGCTTCGCGCGCTCCGAGCCGGGTGCCGCGGAGGCGCTCGCGGCGCGCCCGAGCGTCGTGCGCCGCTCGCTCACCGTGCTGAGCGGTGCGCGCCGCCGGGGCCGGTAG	MAVTPAARTRSTDRPWLGQWNSAVTSYYLVVGATGLLLLIGLVMVFSSTAVTSIAAGESPYAAGLTQARFALIGLPVLLVAARLPVRWYKRLAWPALAVAVVLQSLTLVPALARAQGGNVGWISLGGVTVQPAEVSKLALAVWLGVVLGRKQHLLGSWAHAIVPAVPGALIVLGLVIAGNDLGTMLVIAGLVAGALWVAGAPWRMLALGGAAAVTAIVGLFVLGNSNRMGRILATYGECTDAEGLCYQSLHGMYGLGTGGLFGVGLGASREKWRYLPEAHNDFIYAIIGEELGLLGTLLVLSLFVVLGVAMARIVRRHDDPFVKITTAAVACWIVGQAFVNIGVVLGLLPVIGVPLPLVSAGGSALVTTMAALGMVISFARSEPGAAEALAARPSVVRRSLTVLSGARRRGR	PGPT0014810_1136	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588	NA	NA
AK001_01012	1443	murD	COG0771	UDP-N-acetylmuramoylalanine--D-glutamate ligase	GTGGGTCGTCAGTTGAGCCCTCGGGCGCGCGACGTCGACCTGGCCGGCGCCCGGGTCGTCGTCGCCGGGCTGGGCGTCACCGGCCGCGCCGTCGTCGAGGCGCTCGCCGGCCGGGCCGGCACGGTGACCACCGTGGACGGCCGTGCCGCGGACGCGGACGTGACCGGCGCGGACGCGGCCGACCCGGCGGTGGCCGCCGACCTGGTCGCGCGGTCCGACCTCGTCGTCGCGTCCCCGGGGTGGGCACCGACGACCCCGCTGCTGGCCGCGGCGCAGCGGGCCGGCGTCCCCGTGTGGAGCGAGGTCGAGCTAGCCTGGCGGCTGCGCAGCGGGGCCCCGTGGCTCGCCGTCACCGGCACCAACGGCAAGACCACGACCGTGCAGATGCTGGCGTCGATCCTGACCGCCGCCGGGCTGCGCACCGCGACGGTCGGCAACGTCGGCACCCCGGTGCTGACCGCGGCGCAGGACTCCGACCTGGACGTGCTGGCCGTGGAGCTGTCCAGCTTCCAGCTGCACCACACCCTCACGATGGCGGTCGAGGCCGGCGCGGTGCTCAACGTGGCCGACGACCACCTGGACTGGCACGGGTCGGCCGCGGCGTACGCGGCCGACAAGGGCCGGATCTACCACGGCGCGCAGGTGGCGTGCGTGTACAACGTGGCGGACCCGCGCACCGAACGACTCGTGCGCGAGGCCGACGTGGCCGAGGGCGCCCGGGCGGTCGGCTTCACCCTCGGAGCGCCCGGCCCCGGCCAGCTCGGCGTGGTCGAGGACGTGCTGGTCGACCGCGCCTTCCACACGGCCGCCGACGCCCCCGACCGGCACCGCACGGCCGCGGAGCTGGGCACGCTCGCCGACCTGGCCCACCTGGGCGGTCCGCAGGGTGCGCCCCCGCACGTCGTGGCCAACGCCCTGGCCGCCGCCGCCCTCGCCCGCGCCCACGGGGTCAAGGCCCGGGCCGTGCGCGACGGTCTGCGCCGCTTCTCCGCGGACGCGCACCGCGCCGCCGTCGTGCGCACGCTCGACGGGGTGACCTACGTCGACGACTCCAAGGCGACCAACGCCCACGCCGCGGCCGCCTCGCTGGCCGCCTGCGCTCCCGGCACCGGCGTGTGGATCGCCGGCGGTCTGGCCAAGGGGGCGACCTTCGACGACCTGGTGGCGAGCCGGGCCGACCGGCTGCGTGCCGCCGTCGTCATCGGCACCGACCCGGAGCCGTTCACCGACGCACTGGCCCGACACGCGCCCGAGGTGCCGGTCCGCGTGATCGATCCCGGCGACACTGGCAGCGTGATGCGTCGCGCGGTGTCCGCGGCGCGGCAGGCCGCCCGGGAGGGCGACACCGTGCTGCTGGCCCCGGCCGGCGCGTCCATGGACCAGTTCGCGTCCTACGCGGCGCGGGGGGAGGAGTTCGCCTCCGCGGTGCAGGACCTGACGTAG	MGRQLSPRARDVDLAGARVVVAGLGVTGRAVVEALAGRAGTVTTVDGRAADADVTGADAADPAVAADLVARSDLVVASPGWAPTTPLLAAAQRAGVPVWSEVELAWRLRSGAPWLAVTGTNGKTTTVQMLASILTAAGLRTATVGNVGTPVLTAAQDSDLDVLAVELSSFQLHHTLTMAVEAGAVLNVADDHLDWHGSAAAYAADKGRIYHGAQVACVYNVADPRTERLVREADVAEGARAVGFTLGAPGPGQLGVVEDVLVDRAFHTAADAPDRHRTAAELGTLADLAHLGGPQGAPPHVVANALAAAALARAHGVKARAVRDGLRRFSADAHRAAVVRTLDGVTYVDDSKATNAHAAAASLAACAPGTGVWIAGGLAKGATFDDLVASRADRLRAAVVIGTDPEPFTDALARHAPEVPVRVIDPGDTGSVMRRAVSAARQAAREGDTVLLAPAGASMDQFASYAARGEEFASAVQDLT	PGPT0024125_796	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925	NA	NA
AK001_01013	1083	mraY	COG0472	Phospho-N-acetylmuramoyl-pentapeptide-transferase	ATGATCGCCGTCCTCGCCGCCGCCGGCGTCTCCCTCCTGGTCGCCCTGCTGGGCACCCCGCTGTTCATCCGGTTCCTCGTGCACCGCAACTACGGCCAGTTCGTCCGGCAGGACGGTCCCACGGCGCACTTCACCAAGCGCGGCACGCCCACCATGGGCGGGGTCGTCATCATCGCCGCCACCCTGCTGGGCGTCGCGGCGTCGATGATCTGGGCCGGCCGCCCGCCGAGCGCCTCGGCGCTGCTCGCGCTGTATCTCATGACGGGGCTGGGGCTCGTCGGCTTCCTGGACGACTTCACCAAGATCCGCAAGCAGCGGTCCCTGGGGCTGACCGCGAAGGCGAAGATCGTCGGCCAGGGTTTCGTGGGCATCTCGTTCGCGGTGCTGGCGCTGCAGTTCCCCAACGCGAACTCCCGCACGCCCGCCTCGACGAAGATCTCGTTCCTGCGGGACACCGACCTGGACCTCGCCTTCGCGGGGACGACCATCGGGCTGATCCTGTTCGTGATCTGGGCGAACTTCCTCATCACCGCGTGGTCGAACGCCGTGAACCTCACCGACGGCCTGGACGGCCTCGCGACCGGGTCGTCCCTCATCGTCTTCGGCGCGTACATCCTGGTGGGCATCTGGCAGCTGAACCAGTCCTGCCAGCGGCTCGCGGCCGCCGGACCCGGCTGCTACGAGGTGCGCGACCCGCAGGACCTCGCGATCGTCGCGGCCGCCGTCATGGGCGCCTGCTTCGGCTTCCTGTGGTGGAACGCCAGCCCGGCCAAGATCTTCATGGGGGACACCGGGTCCCTCGCCCTCGGCGGCGCGCTCGCGGCGCTGTCGATCCTGACGCGCACCGAGATCCTCGCCGCCGTCATCGGCGGCCTGTTCGTCATCATCGTGCTGTCGGACATCATCCAGATCGGCTCGTTCAAGCTGACCGGCAAGCGGGTGTTCAAGATGGCCCCGCTGCACCACCACTTCGAGCTGTCCGGGTGGGGCGAGGTCACCATCGTCATCCGGTTCTGGCTCATCGCGGGACTGTTCTCCGCCCTCGGCATGGGCATCTTCTACGCCGAGTGGGTCGTCAGTTGA	MIAVLAAAGVSLLVALLGTPLFIRFLVHRNYGQFVRQDGPTAHFTKRGTPTMGGVVIIAATLLGVAASMIWAGRPPSASALLALYLMTGLGLVGFLDDFTKIRKQRSLGLTAKAKIVGQGFVGISFAVLALQFPNANSRTPASTKISFLRDTDLDLAFAGTTIGLILFVIWANFLITAWSNAVNLTDGLDGLATGSSLIVFGAYILVGIWQLNQSCQRLAAAGPGCYEVRDPQDLAIVAAAVMGACFGFLWWNASPAKIFMGDTGSLALGGALAALSILTRTEILAAVIGGLFVIIVLSDIIQIGSFKLTGKRVFKMAPLHHHFELSGWGEVTIVIRFWLIAGLFSALGMGIFYAEWVVS	PGPT0024105_2548	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024105-mraY-K01000	NA	NA
AK001_01014	1410	murF	COG0770	UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligase	ATGATCGAGCTCACCGCCGCCGAGGTCGCCGCCGCGACCGCCGGGTCGCTGCACGGCGCCGGGGACGACGCCGTCGTCACCGGTCCCGTGGTCGTCGACTCCCGGCAGGTGTCACCCGGCGCGTTGTTCGTCGCGCTGCCCGGCGAGCACGTCGACGGGCACGACTTCGCCGCCTCCGCGGTCCGGGACGGCGCGTCCCTGGTGCTGGCCGCCCGCGCCGTCGACGGCGTGCCGTGCGTCGTCGTCGACGACGTCCAGACGGCCCTCGGCGAGCTCGCCCGGGCCGTGCTGGCCCGCCTGCGCGAGGCCGCCGAGGTCCGCGTCGCCGCCGTCACCGGCTCGGTGGGCAAGACGACCACGAAGGACCTCCTGGGGCAGCTGCTCGTGCCCGCGCTCGGCGAGGACGCCGTGGTGGTGCCCCTGGGCTCGTTCAACAACGAGATCGGGCTGCCCCTGACGGTGCTGCGGGCGACCGCGGACACCCGCCTGCTGGTGCTGGAGATGGGCGCCGACCGGCCCGGCAACATCGCGGACCTGACCCGGATCGCGCCCCCGGACGTCGGCATCGTCCTGGCGGTCGGCACGGCCCACCTCGGGGTCTTCGGCGACGTCGAGACCATCGCGCGCACCAAGGGCGAGATGGTCTCCGGCGTGCGTCCGGGCGGCGTCGTGGCCCTCAACGTCGACGACACCCGTGTCGCGGCGATGGCCGACCGTGCCGAGCCCGGCACCGAGGTGGTCGGCTTCGGCACGATCTCCTCGGCCGACGTGCGCGCCCAGGACGTCACGGTCGACGGCGGCCGGGCGCGGTTCACGCTCCGCGCCGGCGGCGAGACCGCCGACGTCGCGCTCCGGCTCGTCGGCGCGCACCACGTCACCAACGCGCTCGCGGCCGCGACGGCGGCCCTGCGGCTCGGCGTCGACCTGGCGGTCGTGGCCGAGCGGCTGTCGGCGGCGACGCCGCAGAGCCCGCACCGCATGGCGGTCACCGAGCGGGCGGACGGCGTGACGGTGGTCGACGACTCGTACAACGCCAACCCCGACTCGATGCGGGCCGCCCTGCGTACCCTGGCCGTGATGGCCGGTCGCTCGCGGCGGTCGGTCGCCGTGCTGGGGGAGATGCTCGAGCTCGGGGACGTGTCGCGGACCGAGCACGACGCCATCGGCCGCCTGGCCGTGCGGCTCAACGTCAAGCTGCTGGTCGTGGTGGGCGAGGGGGCCTACCACATCCACGAGGGAGCCCAGCAGGAGGGATCCTGGGGAGAGGAGTCGGTGTTCGTGCCCGATCTGGCGACGGCGCGCTCGCTGCTGGCCGAGACCCTCACCGACGGTGACGTCGTCCTGGTCAAGGCCTCGCACGGCTCCGGCCTGTGGAGCCTGGCCGACGAGCTGGTGGAGGTCGCCGGATGA	MIELTAAEVAAATAGSLHGAGDDAVVTGPVVVDSRQVSPGALFVALPGEHVDGHDFAASAVRDGASLVLAARAVDGVPCVVVDDVQTALGELARAVLARLREAAEVRVAAVTGSVGKTTTKDLLGQLLVPALGEDAVVVPLGSFNNEIGLPLTVLRATADTRLLVLEMGADRPGNIADLTRIAPPDVGIVLAVGTAHLGVFGDVETIARTKGEMVSGVRPGGVVALNVDDTRVAAMADRAEPGTEVVGFGTISSADVRAQDVTVDGGRARFTLRAGGETADVALRLVGAHHVTNALAAATAALRLGVDLAVVAERLSAATPQSPHRMAVTERADGVTVVDDSYNANPDSMRAALRTLAVMAGRSRRSVAVLGEMLELGDVSRTEHDAIGRLAVRLNVKLLVVVGEGAYHIHEGAQQEGSWGEESVFVPDLATARSLLAETLTDGDVVLVKASHGSGLWSLADELVEVAG	PGPT0024145_1864	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024145-murF-K01929	NA	NA
AK001_01015	1599	murE	COG0769	UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligase	GTGACATCCCCGACCGATCGCATCCGGCCCGCGGTGCTCGTCCCGCGACGCGTGGCCGACCTCGTGGCCCGGTTCGACCTGACCACCGCCGTCCCCGGCCCGGACGCCGCGGCGGAGGTGACCGCGGTCGCCAGCGACAACCGTGCCGTGGCCGCCGGCGACCTCTTCGTGGCGCTGCCCGGCGCGCGCGCCCACGGCGCGGCCTTCGCCGCCGACGCCGTGTCCCGCGGCGCCCACGCCGTGCTGACCGACCCGGCGGGCGCCGACCGGCTGCGCGACCTGACGGTGCCCGTGCTCGTGACCGACGACCCGCGCACCCTGCTCGGTCCCGTCGCCGCGTGGGTGCACGGTGCCCCCGCCGAGCGGCTGACCACGTTCGGCATCACCGGCACCAACGGCAAGACCACCACGACCTACCAGCTCGACCACCTGCTGCGCTCCCTGGGACGCCGCGGCGGTCTCGTCGGCACGGTCGAGACGCGGTCGGGCGACCGGGTGCTGCCCAGCCGGCTGACCACCCCGGAGGCCTCCGACCTGCAGGCGGTGCTCGCCGCGATGTGCGAGGACGGCGTCGACTCGCTGTCGATGGAGGTCTCCTCGCACGCCATCGCGATGCACCGCGTCGACGGCGTGGTCTACGACGTCGCCGGCTTCACCAACCTCAGCCAGGACCACCTCGACTTCCACGGGGACCTGCCCACGTACTTCGCCGCCAAGGCCGAGCTCTTCACGCCGGCCCGCGCCCGCCGGGGTGTCGTCGTGGTCGACGACGCGTGGGGCGAGCGCATGGCCGCCGCGGCCACGGTCCCGGTCGAGACCGTCCGGACCACGGCGCCCGCACCGGACTTCCCGGCGGCCGACTGGACCGTCTCCGAGGTCGTCCCGCACGGCACCGGCTCGGCCTTCACCCTGACCCGGACCGACGGGCTCTCCCTGCGGACGTCCACGTCCCTGCCGGGACACTTCAACGTCGCCAACGCCGCGCTGGCCGTGGTGATGGTGCTCGCCTCCGGCGTCGCCCCGCAGGACGTCGTGGCCGCGCTCGAGGCGGGGGACGGGCTGTCCGCGCGGGTACCCGGCCGGATGGAGGTCGTCGGCCCCGGGGGCGACGGCCACCCCCGCGTCGTCGTCGACTTCGCGCACAACACCGACGCCCTCGAGCTGGCCCTCGCGGCGCTGCGCCCGACGACGACCGGGCGCCTGGCCGTCGTGTTCGGCGCCACCGGCGACCGTGACCCGGGCAAGCGCCCGGCGATGGGTGCGGCCGCCGTCGCGGGTGCCGACGTCGTGGTCATCACCGACGACGACCCGCACGACGAGGACGCCGCCGCGGTCCGTGCCGCCGTGCGCGCCGGCGCCGAGGCGGCCCGCGAGAGCGCGGCGGCCGCCGGCCGCGAGGTGACCGTGACGGAGGTCGCCCCGCGCGGCGAGGCCGTCCGGCGCGCCGTGCTGGAGGCCGCCGGCACCGACACGGTGCTCGTCGCCGGCCGCGGGCACGAGACCTTCCAGGAGGTCCGCGGCGTGGACCTCGAGCTGGACGACCGCGTCGAGGCGCGCGCCGCGCTGCGCGCCCGCGCAGAGAGGACCCCCACCGCATGA	MTSPTDRIRPAVLVPRRVADLVARFDLTTAVPGPDAAAEVTAVASDNRAVAAGDLFVALPGARAHGAAFAADAVSRGAHAVLTDPAGADRLRDLTVPVLVTDDPRTLLGPVAAWVHGAPAERLTTFGITGTNGKTTTTYQLDHLLRSLGRRGGLVGTVETRSGDRVLPSRLTTPEASDLQAVLAAMCEDGVDSLSMEVSSHAIAMHRVDGVVYDVAGFTNLSQDHLDFHGDLPTYFAAKAELFTPARARRGVVVVDDAWGERMAAAATVPVETVRTTAPAPDFPAADWTVSEVVPHGTGSAFTLTRTDGLSLRTSTSLPGHFNVANAALAVVMVLASGVAPQDVVAALEAGDGLSARVPGRMEVVGPGGDGHPRVVVDFAHNTDALELALAALRPTTTGRLAVVFGATGDRDPGKRPAMGAAAVAGADVVVITDDDPHDEDAAAVRAAVRAGAEAARESAAAAGREVTVTEVAPRGEAVRRAVLEAAGTDTVLVAGRGHETFQEVRGVDLELDDRVEARAALRARAERTPTA	PGPT0024130_322	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928	NA	NA
AK001_01016	1920	pbpB	COG0768	Penicillin-binding protein PbpB	GTGAGCCCGACACGCCCGGTGCGCCGCCGCGGCGGACGGCCGTCGGGGGCGCAGGATCGTGCTGTGCAGACCAGACGACCCGGGGGAGCCCGGGCCGGTGCGGCGGGCGCGTCGCGCGGTGCGGCGACGGCCGGCCGCGGGCGGACGCCCCGGGCGCAGGGACGCCTGGCCGGCGACCCCGAGCGTCGGCAGCGCTGGCTGATCGCCCTGGCGGCCCTCGTGGTGACGGTGTTCGTGGGCCGGCTGGTGGACGTCCAGGTCGTCCAGGGACCCGCGCTGGCGTCCACGGCCCAGCAGGCCCGGCTCGCCACCCAGGTCACCCAGGCCCACCGCGGCGACATCCTCGACGCCGAGGGGCGCGTGCTGGCGACGTCCGTGGACCGCTATCGGATCGTGGCCGACCAGGTGAACATCCAGGGGTTCCGCGGCAACGGCCGCCGCGACGCGGACGGCGACCCCGTGCAGGACGGCGCCCTGGGCATCGCCCAGCTGCTGGCCCCGGTCCTGGGCGAGAGCGAGGCCACCCTCGGTGCCCGGCTGAACGGCGAGGACAGGTACGTGGTCCTGGCCCGCGACGTCGTGCCGGAGGTGCAGCGCGCCGTCTCGGCCCTCGGCCTGTACGGCTCGGTGTTCTCCCACCTGACGTCGGAGCGCACCTATCCCGCCGGCACCGTGGCCGGCCCGCTGCTCGGGCACGTCAACAGCGAGCAGGTCGGCGTGGGCGGTCTCGAGGCCACCTTCGACGACGTGCTCGACGGCACCGACGGCACGTTGACCTACGAGCGCGGCCGGGACGGCGCCCGGATCCCGGCGTCCGAGCTGGAGTCCGTCCCCGCCGAGCCCGGCGAGGACGTCCAGCTGACCCTCGACTCGGACGTGCAGTGGAAGGCGGAGGAGCTGCTCGACCAGGCGGTCTCGGACACCGGGGCGAGCTACGCGATCGCCGTCGTCCAGGACCTGCGGACCGGGGACGTCGTGTCGATGGCCGACTCCGGCGAGGTCGACCCGAACGGGACCTCCGGCGACGTCGCCGACGGCTCGCGGGCGGTGAACGTCGTCTTCGAGCCGGGGTCGACCGGCAAGGTCATCTCGATGGCCGCCGCGCTCGAGGGCGGCTACTGGGAACCCACGGACGAGTTCGAGGTGCCGGACCGCTACACGGTCGACGGCGAGACGTTCCGCGACTCCCACCCGCACCCCGTCGAGCGCTGGACCCTCGCGGGCATCCTCGCCCAGTCCTCCAACGCCGGCACCGTGATGATGGGCGAGGAGATCCCGTTCGCGGTGCGCTACGACTACCTGCGCAAGTTCGGGTTCGGCCAGCGGACGGCGCTCGGGCTGCCGGGGGAGAGCGCGGGCATCCTGCCCGACGAGAACATCGACGAGATCGAGAACCGCACGCCCTACACGGTGCTGTTCGGACAGGGCGTCGCGGTCAGCGCCATGCAGGCCACCCAGGTGTTCTCGACCATCGCCAACGACGGCGTGCGCATGCCGGCCACCCTGGTCGCCGGCACCCGCACCGCGACCGGCGAGCTCGTCCCCGTCGAACGCGACGAGGGCACGCGCGTGGTGTCCTCGCAGACCGCGAACGACGTGCTGACCATGATGGAGGCCGTCACCGCCGAGGACGGCACGGGGACGGCGGCCCAGGTCCCGGGATACCGGGTGGCGGGCAAGACCGGCACCGCCCAGATGTTCGAGGGCGGCGGCACCACCTACGTGGCCTCGTTCATCGGCGTGGCGCCCGTCGACGACCCCCGCTACACGGTGTCGGTGTTCCTCAAGAGCCCCCGGTCCTCGATCTACGGCGGGGTGGTGGCCGCTCCGGTCTTCAGCGAGCTGATGGGCTACGTGCTGCGTGCCGACGGCGTCCCGCCGTCCGACGATCCGGCCGACCTGTTCCCGCTGACCTGGTGA	MSPTRPVRRRGGRPSGAQDRAVQTRRPGGARAGAAGASRGAATAGRGRTPRAQGRLAGDPERRQRWLIALAALVVTVFVGRLVDVQVVQGPALASTAQQARLATQVTQAHRGDILDAEGRVLATSVDRYRIVADQVNIQGFRGNGRRDADGDPVQDGALGIAQLLAPVLGESEATLGARLNGEDRYVVLARDVVPEVQRAVSALGLYGSVFSHLTSERTYPAGTVAGPLLGHVNSEQVGVGGLEATFDDVLDGTDGTLTYERGRDGARIPASELESVPAEPGEDVQLTLDSDVQWKAEELLDQAVSDTGASYAIAVVQDLRTGDVVSMADSGEVDPNGTSGDVADGSRAVNVVFEPGSTGKVISMAAALEGGYWEPTDEFEVPDRYTVDGETFRDSHPHPVERWTLAGILAQSSNAGTVMMGEEIPFAVRYDYLRKFGFGQRTALGLPGESAGILPDENIDEIENRTPYTVLFGQGVAVSAMQATQVFSTIANDGVRMPATLVAGTRTATGELVPVERDEGTRVVSSQTANDVLTMMEAVTAEDGTGTAAQVPGYRVAGKTGTAQMFEGGGTTYVASFIGVAPVDDPRYTVSVFLKSPRSSIYGGVVAAPVFSELMGYVLRADGVPPSDDPADLFPLTW	PGPT0023865_365	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587	NA	NA
AK001_01017	432			hypothetical protein	ATGAGTGCTCTGCGAGCCTCCACCGTCCACCAGGTGCCCCGTGGCGAGCCCACCCCGCGCCGCGCGCCCCTGCGCGCCGTCGAGGGAGGAGCCGGCCGTCGCTTCGACGCCGTCCGGGCGCCGTTGCAGGCCACCTCCGGGGTCCCCTTCATGCTGCTGTGCGCCCTGGTGCTGGTCGCCGCCCTGCTGGCGGCGCTGCTGCTCAACACCACGATGGCGCGCGGGTCCTACGAGATGTCCCGGCTGCAGCGCGAGGCGGGCCTGGTCGCGCAGGACGTCCAGGAGGTGCGGTCCGAGCTGCGGGCCGCCGAGGCCTCGCTGCCGCAGCAGGCCGAGCGGCTCGGCATGGTGCCCGCCGAGGAGATGACCATGCTGTCCGCCGCCGACCGGGCCGTCGTGCCGGGACCCACGGAGCCCGCGGAGGAGCCGTGA	MSALRASTVHQVPRGEPTPRRAPLRAVEGGAGRRFDAVRAPLQATSGVPFMLLCALVLVAALLAALLLNTTMARGSYEMSRLQREAGLVAQDVQEVRSELRAAEASLPQQAERLGMVPAEEMTMLSAADRAVVPGPTEPAEEP				NA	NA	NA	NA	NA
AK001_01018	1023	rsmH	COG0275	Ribosomal RNA small subunit methyltransferase H	GTGGTGGACGAACGACCGGACGACGCGGCACGGCCGACGAGCGACCGCCACCTGCCGGTGCTCCTCCAGCGGTGCGTCGACCTGCTCGCCCCGGCCCTGGCCGAGCCCGGCAGCGTCCTGGTGGACTGCACGCTCGGGATGGGCGGGCACACCGAGGCCGTGCTCGAGCAGGTCCCGACCGCCCGGGTGCTCGGTATCGACCGGGACCCGCAGGCCCTCGAGCTCGCCGGGCGGCGGCTGGCCCGCTTCGGCGACCGGTTCACCCCGGTGCACGCCGTGTACGACGAGATCGCCGACGTCGTCGACGAGCACGCCGACGGCGCGGTCCAGGGCGTCCTGATGGACCTGGGCGTCTCCTCGCTCCAGCTCGACGAGCCGGAGCGCGGGTTCTCCTACGCCCAGGACGCCCCGCTGGACATGCGCATGGACCCCTCGCGGGGCATCACGGCCGCCGACGTGCTGAACACCTACGACGAGGCGGACATCGCCCGCGTCCTGCGTCGCTACGGCGAGGAGCGGTTCGCGCCGCGGATCGCCCGCGCGGTGGTCCGACGCCGGGAGCGCGAGCCGTGGGCCCGGACCGCCGAGCTCGCCGACGCGGTCCGCGCCGCCATCCCGGCGGCCGCGCGGCGCACCGGGGGCAACCCGTCCAAGCGGACGTTCCAGGCGCTGCGGATCGAGGTCAACGGCGAGCTCGAGGTGCTCGAGCGGGCCGTCCCCGCCGCGATCGAGGCGCTCGCGGTCGACGGCCGCATCGTCGTGGAGTCCTACCACTCGTTGGAGGACCGCATCGTCAAGCGGGCCATCACCCGCGGCACCACGTCCAGCGCGCCGCCCGACCTCCCCGTCGAGCCGGAGACTCACCGGCCCTACCTCGAGGCCCTCACCCGCGGCGCCGAGGAGGCCGACGAGGCCGAGCGGGAGCGCAACCCGCGGTCGGCCTCGGTCCGCCTGCGCGCCGCCCGCCGACTGCGACCCACGCCCGCCCACCTGCTCGGCCCGACCCGGAAGGAGTCACGATGA	MVDERPDDAARPTSDRHLPVLLQRCVDLLAPALAEPGSVLVDCTLGMGGHTEAVLEQVPTARVLGIDRDPQALELAGRRLARFGDRFTPVHAVYDEIADVVDEHADGAVQGVLMDLGVSSLQLDEPERGFSYAQDAPLDMRMDPSRGITAADVLNTYDEADIARVLRRYGEERFAPRIARAVVRRREREPWARTAELADAVRAAIPAAARRTGGNPSKRTFQALRIEVNGELEVLERAVPAAIEALAVDGRIVVESYHSLEDRIVKRAITRGTTSSAPPDLPVEPETHRPYLEALTRGAEEADEAERERNPRSASVRLRAARRLRPTPAHLLGPTRKESR				NA	NA	NA	NA	NA
AK001_01020	474	mraZ	COG2001	Transcriptional regulator MraZ	GTGGCAGGAGCGCTGGGGGACCAGTTCCCGGGTACCGGGCTGCTGCTCGGGACGTACACCCCGAGGCTCGACGAGAAGGGACGGCTGATCCTGCCGGCGAAGTTCCGTTCCCGACTCGCCGCCGGGCTCGTCATGACCAGGGGGCAGGAACGCTGCGTGTTCCTGCTGCCGATGGACGAGTTCTCCCGCATGTACGAGCAGGTCCGGCAGGCGCCGGTCACCAGCCGGCAGGCACGCGACTACCTGCGCGTGTTCCTGTCGGGGGCGAGCGACGAGGTGCCGGACAAGCAGGGCCGCGTGGTCATCCCCGCGAACCTGCGCGAGTACGCGGGCCTCGGCCGGGACGTCGCCGTCATCGGCGCCGGCACCCGGGTCGAGGTCTGGGACGCCGGTGCGTGGGAGAGCTACCTGTCCGCGCAGGAGGCGGACTACTCCGACGTGGCCGAGCAGATCTTCCCCGACCTGCAGTTCTGA	MAGALGDQFPGTGLLLGTYTPRLDEKGRLILPAKFRSRLAAGLVMTRGQERCVFLLPMDEFSRMYEQVRQAPVTSRQARDYLRVFLSGASDEVPDKQGRVVIPANLREYAGLGRDVAVIGAGTRVEVWDAGAWESYLSAQEADYSDVAEQIFPDLQF				NA	NA	NA	NA	NA
AK001_01021	1059			hypothetical protein	GTGCAGACCGACCACGTCACCGGCACCCTGCCGCAGACGCCGCCCGACGGCGGGCAGGAGGCCCTGCGGGCCGGGCTGGGCGAGCTGGTGGCCACCACGGCCCGCGTACGCGACCAGGTGGAGAGCGTCGTCACCGGACGCCCCGACCTGGCGCGGCTGACGGTCGCGGTCCTGCTCGCCGGGGGGCACCTGCTGGTCGAGGACGTGCCCGGCGTGGGCAAGACCACGCTCGCCAAGGCGCTGGCGCGCACGATCGACTCCCGCGTCGGCCGGGTGCAGTTCACCCCGGACCTGCTGCCGAGCGACCTCACCGGCGTCAACGTGTACCGGTCGACCACCGGGGAGTTCGAGTTCCGGCCGGGCCCGGTGTTCAACAACGTCGTGATCGGCGACGAGATCAACCGCGCCTCGCCGAAGACGCAGTCGGCGCTGCTGGAGTGCATGGAGGAGGGCCAGGTCACCATCGACGGGTCCACCTACGCCCTGCCGCAGCCCTTCCTGGTGGTCGCCACGCAGAACCCGGTCGAGATGGAGGGCACGTACCCGCTGCCCGAGGCGCAGCGGGACCGGTTCATGGCCCGGCTGTCGGTGGGCTACCCCGACAACCAGGCCGAGATGCGCATGCTCGACGCCCAGACGTCGGCGGACCCCCTGGCGCACCTGGAGACGGTCACCCACGCCGACACGATGCTGCGCTTCGCGGGCTGGATCCGTGCCGTGCACGCGGCACCCGCGGTCAAGCAGTACATCCTGGACCTGGTGGGACGGACCCGCGAGCACCCCGGGCTGCGCCTCGGGGCCTCGCCGCGCGCGTCGCTGCAGCTGCTGAAGGTCGCCAAGGCGCACGCCGCCATGGCCGGCCGGATGCACGTGCTCCCGGACGACGTCCAGGCGCTGGCGGTCCCCGTGCTCGCGCACCGCCTCGTGCTGTCGACCGAGTCCCGTCTCAGCGGCCTCGACGCCTCCGGCATCGTCGAGGAGGTCGTCCGGCAGACCCCGGTGCCGCCCCGCGCGGACGTCCCCGTCGGCGGCGCCGCCGCCCACCACCAGCCCCGCTGA	MQTDHVTGTLPQTPPDGGQEALRAGLGELVATTARVRDQVESVVTGRPDLARLTVAVLLAGGHLLVEDVPGVGKTTLAKALARTIDSRVGRVQFTPDLLPSDLTGVNVYRSTTGEFEFRPGPVFNNVVIGDEINRASPKTQSALLECMEEGQVTIDGSTYALPQPFLVVATQNPVEMEGTYPLPEAQRDRFMARLSVGYPDNQAEMRMLDAQTSADPLAHLETVTHADTMLRFAGWIRAVHAAPAVKQYILDLVGRTREHPGLRLGASPRASLQLLKVAKAHAAMAGRMHVLPDDVQALAVPVLAHRLVLSTESRLSGLDASGIVEEVVRQTPVPPRADVPVGGAAAHHQPR				NA	NA	NA	NA	NA
AK001_01022	1326			hypothetical protein	ATGGCGGTCGAGCAGGTCCGGGACGCGCTCCGGCGTCTCGTGCGGGTGCGCCCGACCGCACGGGGAGCCCTGCTGGTCTGCGCCGGCCTCGTCCTCGCCGTGGTCGGCGTCGTGCTCGACCTGCCGGACCTCGTCGGCCTCGGGGCCGCGGCCCTGCTCGTCGTGGCGGCCGCCTGGGTCTCCCTGGGACTGCAGCGCCTGGACGCCGGCCGCGGCGCCCTCGACGTGGAACGGCACCTGGCACCCCACCCCGTGGTCGCGGGGCAGCAGGCCACCACCCGTCTGGTCGTGCGCGCCCGCGCCCGCACCGGGGCAGCCTTCGAACGGCTCGCCCGGCTGCGGCTGTCCGAGCAGGCCGCGCACGAGCTGGCCGGGCCGCACGGCATCCGCGCGCAGGTGCGCGCGCACCCCGACCATGTGGCGGTGCAGTACGCGATCGCGCCGGTGCGACGCGGGCGCTGGGCGCTGGGTCCGGTGCTGACCACGCGGACCGACGTCTTCGGGCTGGCCCGCACCACGCAACCGCTCGGGACCAGCACCGCGGTGTCGGTGTGGCCCCGGACCACCCGGGTGGCCGCGCGCAACGCCGCCCTGGGCGACGTCGACCGCGCCGCCGCCGGTGCACGCCTCGCCTCCTCCGACGACTCGGTGATCCGGGAGTACGTAGCCGGCGACGACCCGCGCCGCGTCCACTGGGCCGGCTCGGCGCGCCAGGGACGCCTCATGGTGCGGGCCGACGAGAGCGCGGGGCTGCGCCCGGTGACCGTCCTGCTCGACAGCGGCCTGCTCGCGCCGGCCGCGGAGGACCGTCCCGGCGGCCGGGCGCCGACGCACGCCGCCGTCGCCGACGGCGAGTGGGCGGTCGAGCTGGCGGCGTCGATCGCCACCTCGTTCCTCGAGGCGGGCCACCCGACCCGCCTGGCCGCCACCGGCGGCGCGCACCACCCGCTCACGCACGTCACCGGCGTGCAGACCGGACGGGCCGTGGTGCTGGACGCCACCGTGGACCTCAGCGGGCTGCGGGGCACCGCGGCCGAACGCGCCCTCGAGCAGTCCGTGGCGGCCCTGCGCGCCGACCGGACGCAGTCCGAGATCACCGTCGCGGTCCTCGGCCCGACCGCGGGCGCGGCACGGCACGCGATCGCCTCCCTCGGGGCGGACGGGGTGTCGTGGGCGCTGCTCGTCGTCCCGCGGGCCGAGGGGATGCGCCACGACGTCGACCCGACGGCGGACGACCTGCGGGCCGCCGGCTGGCGGGTGACCACCTGCGCACCGGGCACCCCGCCGGAACGGGTGTGGTCCGCCGTCACGGAGCGTGTCGCATGA	MAVEQVRDALRRLVRVRPTARGALLVCAGLVLAVVGVVLDLPDLVGLGAAALLVVAAAWVSLGLQRLDAGRGALDVERHLAPHPVVAGQQATTRLVVRARARTGAAFERLARLRLSEQAAHELAGPHGIRAQVRAHPDHVAVQYAIAPVRRGRWALGPVLTTRTDVFGLARTTQPLGTSTAVSVWPRTTRVAARNAALGDVDRAAAGARLASSDDSVIREYVAGDDPRRVHWAGSARQGRLMVRADESAGLRPVTVLLDSGLLAPAAEDRPGGRAPTHAAVADGEWAVELAASIATSFLEAGHPTRLAATGGAHHPLTHVTGVQTGRAVVLDATVDLSGLRGTAAERALEQSVAALRADRTQSEITVAVLGPTAGAARHAIASLGADGVSWALLVVPRAEGMRHDVDPTADDLRAAGWRVTTCAPGTPPERVWSAVTERVA				NA	NA	NA	NA	NA
AK001_01023	2265			hypothetical protein	ATGATCCCCCCGTACACCGGTCCGGTCGTGCGGCTCGTGGCCACCGGCCTCCTCGTCGCGCTGGCCGTCGCCGCGTCGATGACGGCGCTGACCGAGCTGGTGCTGCCCGGCCCGTGGGTGCGGACCGGCCTGCTCGGGATCGTGCTGGTCTCGGTCGCCACGACCGTGACCCGCGGGCTGACGGACGCACGGGCCCGCCGTCGCGGGACCACCGAGACCGGGTCCGGGTCGGCGCTGCCCACCCTCGCCGGGGCCGCGGTCGCCGGCTGGTTCGTCCTGTCGCGCTTCGGGGCGCCGACGTCGGACCCCGACCTGCTCGTCGGACCCGAGCACCTCGGCCGGGTGGTGGCGCGCCTGGGCGAGGCCGGGGAGATCATCCGCTCCCAGGTCGCGCCCGTGCCGGGCACGCTGCCGATCGCCCTCCTCACCGTCGGAGGAACGCTCGCGGTGCTGCTGCTGGCCGACGCCCTCGCCGGCGGGCTGCACTGGTACGCCGGGGTCGGGCTGCCGCTGCTGGCCCTGTGGGCACCGCCCCTGGTGCTGGTCGGCGAGGTGCCCCGCACCGTCTTCGTCGTCGTGGTGGCGGCGCTGCTGCTCCTCCTGACGGTCTCGCCGCGCGGGGGCCCACGGCCACGCCGCCCCGAGCGCCCCCCGGCCTCCGTGCGCCGCGCCGAGGGGTTCCGCTCGGTGGTCACCACCGCGGTGGCCGTCGTGGTGGCCCTCGGCGCCGGGCTCGTGGCCAGCGCCTCGGACTCGTTGCCGGGGTACGCGGGCGCCTGGTACCAGGCGTTCACCACCTCCGGCGACGCCATCCAGCTCTCCGAGGACCTGGACGTGCTCGGGAGCCTCACCGAGCGGTCGGGCGAGGTGGTGCTGACCTACACCGGGCCGTCCGAGGGCGTCGGCCCCTGGCGCACCTACACGACCTCCGCGTTCGACGGCCGCCGCTGGCAGCGGGGCGACGAGCGCACCGGCGAGCCGTTCGGCCCGGACGACCTGCTGTGGCCCGACGACGTCGACCAGGGCGACCTCGCCGGAGCGCGTGACGTGGCGGTCACGATCGGGTCGCTGCGCGACGACCAGCTCCCGGTGCCCGGCGAGCCGCGCCGGGTGGACGCCACCGGGACCTGGGGCTACGACGGGATCCGTGACGAGGTCGTCGGGGACCGGACGGACGAGGGCGAGACCTTCGCCGTCTCGGTCCGCCCCCGCGACCTCGACCCCGAGCGGCTGCGCGCCGCCGGCCCCGGCACGGCCGTCGACGCCTACCTGCTGGTGCCCGAGACGGAGCACTCCGCCGACGTCGCCGCGCTCGCCGCGGAGGTGGCGGGCGAGGCCCCCACCGCCTACGACCAGGCGGTCGCGCTGCAGCAGTGGCTGCGGGACCCGTCGTCCTTCACCTACTCGACCGAGCTCCCGCGGGGCGGGACGGGTGACCCCGTGTGGGACTTCCTGCAGCACCGCACGGGCTACTGCGTCCAGTTCGCCACCACGATGACGATGATGGCCCGCACGCTGGACATCCCCGCCCGCCTCGGCGTCGGGTTCCTGCCCGGCGACACCGTCGAGGAGTCCGAGGACTCCTCGACCTGGCAGGTCACCGGGCAGGACTCGCACGCCTGGCCCGAGCTCTACTTCGAGGGAGCCGGCTGGGTCCGGTTCGAGCCGACGCCGGCGATCCAGACGGGCGCCCCGCCCGAGCACACCACGCCGCGGGACGACGGCACCTCCGCCCAGGAGCAGGCCGACCAGGTCCCGCCGGTGCCCGAGCAGGTGCCGCCCGAGGAGCGCCAGGAGCAGCAGCCGGCGGCGTCCGCACCCCCGATCGCGGTCTCCGGCGGCGCCGACGCCGACGGTCCGTCCGTCTGGGTGTGGGCCGTCGTCGGTCTCGTGGTGCTCGGTGCCGCGGCCGCCGGCGTCGTCCTCCTGCGTCGCCGTCGCGACGACGGCCCGGTCGACGCCGAGAGGGCGTGGGAACGGGTCCTGGCGGCGCTCGCCCGCGACGGTGTGACGCTGCCTCCCCCGACCACGCCCCGGCAGGCCCCGGAGGCCATCGTCACGGCGGTCACCGCGGCGCACGGCCGCGAGCCCTCCCCCGAGGTGCGCGACGGCCTGCACCGCATCGCCGAGGCCGTCGAGCACAGCCGGTACGCCGCCCCGGACGAGGCCGAGACCGACACCGACCTCGCGGCCCTGGCCGAGACCGTGACCGACGGACTGGCCGAGGCGCGGCGTGCGCGGCGGGGCGTGACCTCGGGGCGCTGA	MIPPYTGPVVRLVATGLLVALAVAASMTALTELVLPGPWVRTGLLGIVLVSVATTVTRGLTDARARRRGTTETGSGSALPTLAGAAVAGWFVLSRFGAPTSDPDLLVGPEHLGRVVARLGEAGEIIRSQVAPVPGTLPIALLTVGGTLAVLLLADALAGGLHWYAGVGLPLLALWAPPLVLVGEVPRTVFVVVVAALLLLLTVSPRGGPRPRRPERPPASVRRAEGFRSVVTTAVAVVVALGAGLVASASDSLPGYAGAWYQAFTTSGDAIQLSEDLDVLGSLTERSGEVVLTYTGPSEGVGPWRTYTTSAFDGRRWQRGDERTGEPFGPDDLLWPDDVDQGDLAGARDVAVTIGSLRDDQLPVPGEPRRVDATGTWGYDGIRDEVVGDRTDEGETFAVSVRPRDLDPERLRAAGPGTAVDAYLLVPETEHSADVAALAAEVAGEAPTAYDQAVALQQWLRDPSSFTYSTELPRGGTGDPVWDFLQHRTGYCVQFATTMTMMARTLDIPARLGVGFLPGDTVEESEDSSTWQVTGQDSHAWPELYFEGAGWVRFEPTPAIQTGAPPEHTTPRDDGTSAQEQADQVPPVPEQVPPEERQEQQPAASAPPIAVSGGADADGPSVWVWAVVGLVVLGAAAAGVVLLRRRRDDGPVDAERAWERVLAALARDGVTLPPPTTPRQAPEAIVTAVTAAHGREPSPEVRDGLHRIAEAVEHSRYAAPDEAETDTDLAALAETVTDGLAEARRARRGVTSGR				NA	NA	NA	NA	NA
AK001_01024	414			hypothetical protein	ATGCCTCTGTCGGAGTACGAGCAGCGCGTTCTGGAGCAGATGGAGCGCGCGCTGGAGAGCGACGACCCCCGGCTCGCGACCACCCTCCAGCAGTCGCGGCGGCGTTCCCCGCTGCGTTTCGTGCTCGCCGGGGTCGGTGTCGTCCTCGGCCTGCTGCTCCTCGTGATCGGTGCCGCCTCGCAGATGGCGTGGCTCGGGGTGGTCGGCTTCGCGCTGATGTTCGCCGGTGTCGCGTTCGTCTTCGCCGCGCCCCGCAAGAAGGGCCCCCAGGGCGTCGTCAAGGACGACGGCAACGTGACTCCCTCGGCGGCGGCGTCCGGCGGTACCCGGACCGCCAAGCCCAAGCCCAAGAGCGCCGGGTTCCTCGACCGGCTCGAGGAGCGCTGGAACAAGCGTCGCGACGAAGGTCGCTGA	MPLSEYEQRVLEQMERALESDDPRLATTLQQSRRRSPLRFVLAGVGVVLGLLLLVIGAASQMAWLGVVGFALMFAGVAFVFAAPRKKGPQGVVKDDGNVTPSAAASGGTRTAKPKPKSAGFLDRLEERWNKRRDEGR				NA	NA	NA	NA	NA
AK001_01025	1263	dinB1	COG0389	DNA polymerase IV 1	ATGAGCCGCGGTCCCCGCTCCGCCGCCGTCCGCCGGGACTGGGGGACGGACGAGGAGGGCGCGACGGTCCTGCACGTGGACATGGACGCTTTCTTCGCCTCGGTGGAGCTGGCGCGCCGGCCGGAGCTGCGTGGTCGACCGGTGATCGTGGGCGGGCGGGACCGGGGCGTCGTGCTCGCCGCCACCTACGAGGCCAGGGCCTACGGCGTGCGGTCCGCGATGTCGATGACGCAGGCCCTGCGGCAGTGCCCCCAGGCGGTGGTGGTCCGCCCGGACCACCACGCCTACCGTGACGTCTCCCGGTCGGTCATGGAGATGCTCGGCGACATCACCGCGGTCGTGGAGCAGGTCTCCGTCGACGAGGCCTATCTCGACGTGGCGGGTGCTCGCCGTCGGCTCGGGCCCCCGACGGCGATCGGGGCGGCGCTGCGCGAGCGCGTGCGCGCCGAGCACGGGGTGACGTGCTCGGTCGGGATCGGGCGGAACAAGCTCGTCGCCAAGCTGGCCTCCACGCACGCCAAGCCCGACGGCATGCTCCTCGTGCCCCGGGACGCGACGGAGCCGTTCCTGCGCGCCCTGCCCGTGGGGGCCCTGAACGGGGTCGGGGACAAGACCGAGGCGGTGCTGGCGCGGTGGGGGATCACCACGGTCGCCCAGCTGGCCGACACCGAGGTGGACGTCCTGCGGGCCGCCGTCGGGCCCGTGGCGGGGCAGCACCTGCACGACCTCGCCTGGGGTCGGGACCCACGGCCGGTGGTGGCCGGCCGCGCGGAGCGGAGCATCGGCGCGGAGACGACCTTCGAGCGTGACGTGGCCGACCGCGAGGAGCTCGTGCACCGGCTGCACGAGCTGGCCGACCGCGTGGCCGCCCGGCTGCGTCGCCACGAGGTCGTCGCCCGGACGGTCACGCTGAAGGTGCGCACCAGCGACTTCCGCACCGTGACCAGGTCCCGGACGGTGGAGACCCCGACGGACGTGGCCCAGGAGCTGTTCACCGTGGCCCGCGAGCTGCTCGTCGGTGTCGACCTGGGCGGGCTGGCCGTGCGGCTCGTCGGGGTGCGCGGGGAGAACCTGCGACCCCGGACGGGGCTCTCGAGCCAGCCGACCCTGTTCGACGCCGAGGACGACCGCAGCGGGGCCCGTCGCGAGGCCGAGCTCGCCGTCGACGCGGTGCGCGCGCGCTTCGGGACGTCCGCCGTGGCGCTCGGTGCGTCGTTCGCCCCCTCGTCGACTACCATCCATGGTTCAGCGGGCATATCCTAG	MSRGPRSAAVRRDWGTDEEGATVLHVDMDAFFASVELARRPELRGRPVIVGGRDRGVVLAATYEARAYGVRSAMSMTQALRQCPQAVVVRPDHHAYRDVSRSVMEMLGDITAVVEQVSVDEAYLDVAGARRRLGPPTAIGAALRERVRAEHGVTCSVGIGRNKLVAKLASTHAKPDGMLLVPRDATEPFLRALPVGALNGVGDKTEAVLARWGITTVAQLADTEVDVLRAAVGPVAGQHLHDLAWGRDPRPVVAGRAERSIGAETTFERDVADREELVHRLHELADRVAARLRRHEVVARTVTLKVRTSDFRTVTRSRTVETPTDVAQELFTVARELLVGVDLGGLAVRLVGVRGENLRPRTGLSSQPTLFDAEDDRSGARREAELAVDAVRARFGTSAVALGASFAPSSTTIHGSAGIS	PGPT0014881_1158	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ADAPTIVE_MUTATION	CE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346	NA	NA
AK001_01026	438			hypothetical protein	ATGTCCGCACGTGACGGAGTCCCGGCGCCGGAGCGCGTCCAGCAGCTGCTCGCCCGCGCCGACGCCGAGCTCGCGGCCGCCGTGGAGGCGCACGACGCCGGCGACCGTTTCGTGCATGCCCACCTCGCCGCGCTGCGTGCTGCGGCCGCCGTCGTGGCCTGGCACGGGGACGCACCGCGCAGGGGTCGTGCACGGCCCGTGTGGGAGCTGCTGAGCGGGGTCGAGCCCGAGCTGGCCGCGTGGAGCGTCTACTTCGCCTCGGGGGCGCGGCTGCGTGCCGTGGTCGACTCCGGCCACGGGGACGAGGTGCCGGCTCGTCGCGCCGACGAGCTGCTGGCCTGCGCCGAGGACTTCCGCGACGAGGTCGGTCTCCGGCTCGACCCGCAGGCCGGCTTCACGCTCACCGGCGTGCACGGGCCGTCGACGGCGGCGTCATGA	MSARDGVPAPERVQQLLARADAELAAAVEAHDAGDRFVHAHLAALRAAAAVVAWHGDAPRRGRARPVWELLSGVEPELAAWSVYFASGARLRAVVDSGHGDEVPARRADELLACAEDFRDEVGLRLDPQAGFTLTGVHGPSTAAS				NA	NA	NA	NA	NA
AK001_01027	906			hypothetical protein	ATGGCCAGACGCTCCCGCCGCGCCCGTCGCGACCGATCCTCCCGCGAGGCACCGACACTGCCCCGGGAGGAGGTGCCGATCGACACCGGCACGGCGCGCGTCGAGGTCGACCCGGAGGACCCGCAGCGCCTGACCCTGCACGTCAACGGCGTGCCGAGCTCCTGCCTGGACCTGGCCGACCCCGGCTTCCTCGCCTTCGAGTACCTGCAGCAGATGGCCGCCGTCGTCGACGCGCTGCCCGCCGGACCGGTGCGGGCCGTCCATCTCGGAGCGGCCGGCTGCGCCCTGCCCCGGTACGTCGAGCACACGCGGCCCGGGTCGCGGCAGATCGGCGTGGACATCGACGCCGAGCTCCTGCGGCTGGTGCGCGACTGGTTCGACCTGCCCCGCTCCCCCGCCCTGCGCCTGCGCGCCGACGACGCCGGCCGCGCGCTGTCCGGCCTCACGCCCGGCCTGGCCGACGTGGTGGTCCGCGACGTCTTCGACGGCGACACCACCCCGGAGCACCTGGTCGGCAGGGCGTTCGCGGACGCGTGCGTCCGGGCGCTGCGACCGGGCGGGCTGCTGCTGGCCAACTGCGCCGACCGGCCACCCCTGACGACGGCCCGGCGCGAGGTGGCGTCCGTCGCGGACGCGCTCGGGGACGACCCGATCGGTCAGGGCCGGCTCGCCCTGGTCGCCGAGCCGGCGATCCTCAAGGGGCGCCGGTACGGCAACGTGACGATCGTCGCCGTGACCTCGCCGGAGCAGGACGCCGCGCCGGACGCCGCGCCGGACGCACCGGGGTCGCTCGACGTGCGGGCCGCCGACCTCGGGCGCGCGCTGCGGTCGCTGGCCGTCCCCGCCCACGTCCTCGCCGGAGCGGAGCTGTCCCGGTTCGTCGCGGGGGCCGCGCCGCTGCCCTGA	MARRSRRARRDRSSREAPTLPREEVPIDTGTARVEVDPEDPQRLTLHVNGVPSSCLDLADPGFLAFEYLQQMAAVVDALPAGPVRAVHLGAAGCALPRYVEHTRPGSRQIGVDIDAELLRLVRDWFDLPRSPALRLRADDAGRALSGLTPGLADVVVRDVFDGDTTPEHLVGRAFADACVRALRPGGLLLANCADRPPLTTARREVASVADALGDDPIGQGRLALVAEPAILKGRRYGNVTIVAVTSPEQDAAPDAAPDAPGSLDVRAADLGRALRSLAVPAHVLAGAELSRFVAGAAPLP				NA	NA	NA	NA	NA
AK001_01028	204	scoF	COG1278	Cold shock protein ScoF	ATGGCGCAGGGTTCCGTGAAGTGGTTCAACGCTGAGAAGGGCTACGGGTTCATCGCCCAGGACGGCGGCGGTGCCGACGTCTTCGTGCACTACTCGGCGATCCAGACGCAGGGGTACCGCACCCTGGACGAGGCCCAGCGGGTCGAGTTCGAGATCACCCAGGGTCCGAAGGGCCCGCAGGCGGAGCAGGTCGTCCCTCTCTGA	MAQGSVKWFNAEKGYGFIAQDGGGADVFVHYSAIQTQGYRTLDEAQRVEFEITQGPKGPQAEQVVPL	PGPT0014675_7814	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
AK001_01029	933			hypothetical protein	GTGCAGGACCCGCAGAGCATCTACGAGGTGGATCACGACGCGGTGGAGCGCACCCTGGGGACGTCCGAGGACGGCGGGCCCGCGTCGGCGCCCGTGCTCGTGCACGCCGTGCGGGGCTTCGTCGACGCCGGCGCCGCCGGTGAGCTGGCGGCGGAGCACCTGCTGGAGCGGTTCACGGCGACCCGGCTGGTCACCTTCGACGTCGACCGGCTCGTCGACTACCGCTCGCGACGGCCTCCCATGACGTTCGACGCGGACCGGTGGGCCGGCTACGACGCCCCCGAGCTCGTCGTCGACCACCTGGTCGACGACGAGGGCACGGGCTTCCTGCTGCTGCACGGCGTGGAGCCGGACCTGCAGTGGGAGCGCGCCGCGGCGGCGGTGCGCGGGATCGTCGACGAGCTGGGCGTCTCCCTGACCGTCGGCCTGCACGGCATCCCGATGGCGGTGCCGCACACGCGCCCGCTCACGCTGACGGTGCACGGGACCCGCGAGGGTCTGGTCGACGACCACGCCTCCTACTTCGGCCGGGTCCAGGTGCCGGGGTCCTGGGAGGCCCTGCTCGAGTACCGGCTCGGGGAGACCGAGCACGACGCCATGGGGTTCGCGGTGCACGTGCCGCACTACCTGGGGCAGTCGCGCTACGTGCCGGCGGCCGTGGTGGCCCTGCAGCAGCTCGAGAAGGCGACGGGGCTCGCCCTGGCCACGGGCGGGCTCGACGAGGCCGCCGGGCAGGCCCGTGTGGAGGTGGCCGAGCTGGTCGCCGACAACGAGGAGGTCGCCACGGTCGTGCACCAGCTCGAGGAGCAGTACGACGCCTTCGCCCGGTCGGTGGGGCGCACGAACCTGCTCGCGGAGGACTCCGCGCTGCCCACGGCCGACGAGCTGGGCGCCGAGTTCGAACGGTTCCTCGCCGAGCGCGGGGACGAGTAG	MQDPQSIYEVDHDAVERTLGTSEDGGPASAPVLVHAVRGFVDAGAAGELAAEHLLERFTATRLVTFDVDRLVDYRSRRPPMTFDADRWAGYDAPELVVDHLVDDEGTGFLLLHGVEPDLQWERAAAAVRGIVDELGVSLTVGLHGIPMAVPHTRPLTLTVHGTREGLVDDHASYFGRVQVPGSWEALLEYRLGETEHDAMGFAVHVPHYLGQSRYVPAAVVALQQLEKATGLALATGGLDEAAGQARVEVAELVADNEEVATVVHQLEEQYDAFARSVGRTNLLAEDSALPTADELGAEFERFLAERGDE				NA	NA	NA	NA	NA
AK001_01030	441	rcp1		Response regulator rcp1	ATGACGGATCAGCAGGTCGGAATCGAGGTCCTCCTGGTCGAGGACGACCCGGGTGACGTGCTCATGACCCGGGAGGCCTTCGCCGAGCACAAGGTCGCCAACCGCCTCTGGGTGGTGTCCGACGGCGTCAGCGCGCTGCAGTTCCTGCGCAAGGAGGGGGAGCACGCCGAGGCGCCCACCCCCGACCTGGTCCTGCTGGACCTGAACCTGCCGCGCATGGACGGCCGCGAGGTGCTGGCCGAGGTCAAGCAGGACGCGGCGCTGCGGCACATCCCCGTGGTCGTCCTGACCACGTCGGAGGCGGAGGAGGACGTCCTGCGCTCCTACAGCCTGCACGCCAACGCGTACGTGACGAAGCCGGTCGACTTCGAGCGCTTCATCGACGTCGTGCAGCAGATCGACGAGTTCTTCGTCTCGGTCGTGCGCCTGCCGCAGCGCTGA	MTDQQVGIEVLLVEDDPGDVLMTREAFAEHKVANRLWVVSDGVSALQFLRKEGEHAEAPTPDLVLLDLNLPRMDGREVLAEVKQDAALRHIPVVVLTTSEAEEDVLRSYSLHANAYVTKPVDFERFIDVVQQIDEFFVSVVRLPQR				NA	NA	NA	NA	NA
AK001_01032	1317			hypothetical protein	ATGAGCAGCGGCGACGGGGGTCACGACGGCGCCGAGCCGGCGGACGGGTCGCCGCCGTGCGTCCTGCTGGTCGAGGACGACGACGGCGACGCGGTGCTCGTCGACGAGCTGCTCGCCGACGCCGAGATCGACGTCGAGCTGCGCCGTGTCGTCTCGGTCTCCGAGGCCGAGGACGAGGTCGCCACCGGCGCGGTGGACTGTCTCGTGGTCGACCTCGGGCTCCCGGACGCCGTCGGTCTGGACGCCGTGCAACGGCTGCGGCGGGCGGGCACCCGGCACGCCGCGCCGCCCGCCCTGGTGGTGCTGACCGGTCTCGGCAGCGTGGACCGGGGCGTCGAGGCGGTCGCGGCCGGCGCCGACGACTACCTCGTCAAGGGCGAGGTCGGACCGGACCTGCTCGGGCGGTCGTTGCGGTACGCCCTGCAGCGGCGCCGGTCGGTGGCCCAGGAGCGCGCGCTGTACCGCAGCGAGGTGCGGGCGGCGGAGACCGAGCGGCTCGAGAAGGCGCTGCTGCCCCGGCCGCTCGTCGAGGACCCCGCGGTCTCGGTGATGGTGGGCTACCTGCCCGGCGGGGAGGGGTTGCTGGGGGGCGACTTCTTCGACACGGTGGAGACGGCGGACGGCCGGGTGCTCTCGGTCATCGGCGACGTGGCGGGTCACGGGCCGGACGAGGCGGCGCTCGGGGCGACCCTGCGCACGGCGTGGCGGACGCTGGTGCTCACCGGGACGCCGCCCGAGGAGATCTTCGCGGGGCTGGAGACGGTGCTGCGCACCGAGCGGGCCCGGCCGGAGATCTTCGTGACGCTGTGCCAGGTGACGATCGCCGCCGACCGGTCCACCGTCGACGTCTGCCTCGCCGGGCACCTGGCGCCCATGCTGCTCACGGGGCCCGTCGGCGCCGTGCGCTGCACCGTCGTGCGTCCGGTCGAGCGCGGCCGGGCGCTGGGCGTCCCGGTGCCCGGGGAGTGGCCGACGCAGCGGATCCCCCTCGGCGAGCCCTTCGCCGTGCTGACCTACACCGACGGGCTCGTGGAGGCGTCGCTGGCCGCCGAGGATCCTCCCGGTCCCGCGGCGGGCGGACGACGGCGCGGGGCGCTGCGCGTGGGCGTGGCCGGCCTGGCCGACCTGGTCCAGGACGAGCTGGACACCGACGGGATCGTCGGGATCGTCGAGCGCGTCCTGCGCCGGGTGCGGCGGCTGCACGGCGGCCCGCTCGTCGACGACGCCGCGATGCTGGTCGTCGGGTGGACCGGTGCCGACGACGTGCCGGGGGAGCGGTCCTCGACCCTGGCCGACTCGGTGGAGTGGGCCCGATGA	MSSGDGGHDGAEPADGSPPCVLLVEDDDGDAVLVDELLADAEIDVELRRVVSVSEAEDEVATGAVDCLVVDLGLPDAVGLDAVQRLRRAGTRHAAPPALVVLTGLGSVDRGVEAVAAGADDYLVKGEVGPDLLGRSLRYALQRRRSVAQERALYRSEVRAAETERLEKALLPRPLVEDPAVSVMVGYLPGGEGLLGGDFFDTVETADGRVLSVIGDVAGHGPDEAALGATLRTAWRTLVLTGTPPEEIFAGLETVLRTERARPEIFVTLCQVTIAADRSTVDVCLAGHLAPMLLTGPVGAVRCTVVRPVERGRALGVPVPGEWPTQRIPLGEPFAVLTYTDGLVEASLAAEDPPGPAAGGRRRGALRVGVAGLADLVQDELDTDGIVGIVERVLRRVRRLHGGPLVDDAAMLVVGWTGADDVPGERSSTLADSVEWAR				NA	NA	NA	NA	NA
AK001_01033	2262			hypothetical protein	GTGGCGGGCAGGCACGACGAGCTGGCGCGCGAGCAGGTGGTCGTCGACCGCCTCTACGAGCGACTGGACGAGCTGCGCGCCACCGCGCGCGAGCGGCTCGCGGTGGTCCGGCGCGAGGGGCCGTCGGGATCGCCGCAGAACCGCAGCGAGCGCGACGCCTTCGCCACCATGTACGCGGACCGGGCGGCCCGCCTGGACGCCGTCGAGGACCGGCTCGCCTTCGGACGGCTGGACCTCGAGACCGGCGAGGAGCGGTACATCGGCCGGATCGGCCTGACCGACGACGAGCACCGCACGCTGCTCACCGACTGGCGCGCGCCCGCCGCCCAGGCCTTCTACCGCGCCACCGCACGGCACCCGGACGGCGTGCGTCGGCGCCGTCACGTCGTGACCACGGGGCGGACCGTCACCGGACTGGAGGACGAGGTCCTGGACCTCGACGCCGTGGACGACGGGCTCGACGTCTCCACGCTGTCGGGCGAGGGCGCGCTGCTCGCGTCGCTGGCGCGGCGCCGGACCGGCCGGATGTCCGACATCGTGGCGACGATCCAGGGCGAGCAGGACCGCATCGTGCGCGACGAGCTCGGCGGGGCCGTGGTCGTGCAGGGCGGGCCCGGCACCGGCAAGACCGCCGTGGCCCTGCACCGCGCCGCCTACCTGCTGTACGCCCACCGCCGGCTCCTCGAGCGCTCCGGCGTGCTGCTCGTCGGTCCCAGCCGCGCGTTCCTGCGCTACATCGACCAGGTGCTGCCCTCCCTCGGCGAGACGGGCGTGGTGTCCACCACCATCGCCGAGCTGCTGCCCGGGCTGACCGCGGACGGCGTCGAGACGCCCGCCGCCGCGGAGATCAAGGGCCGGCTGCTGTGGCGCGCGGCGATCAAGCGGGCCGTGCGCGCCCGCGAGCGCGTCCCCGCGCAGGACGTGCCGGTGCGCATCGACGGTGTCGAGCTGCACGTGCGCCGCCGGGACGTGCGCGACGCGATGGCGCGCGCCCGCCGCACGCACAAGCCGCACAACGAGGCGCGCGCGACCTTCGTGCGCGAGATGCTCGGCAAGCTGGTCGAGCAGTACCGCGAGCGCACCCAGCGCGAGGTGACCGAGCACGACCTCGCGGTGCTGACCGAGGACCTGCGCTCGGACCGGGACGTGCGGGTGGCGATCAACCTCGCGTGGTTCCCGATCACGCCCGAGCGGCTCGTGGCCGACCTGTGGGCCAAGCCGCACCGGCTGGCGGAGGCAGCACCGGAGCTGACGGAGGACGAGCGGGCCGCGCTGCGCCGCGACCGCGGCGCCCGCTGGACCGAGTCCGACGTGCCGATCCTCGACGAGGCGGCCGAGCTGCTCGGCGAGGACGACACCGTCGCGCGGGCCGAGGCCCAGGCCGCCGAGGCACGCCGCGCGGCCGAGGTCGAGTACGCCCGCCAGATGCTGGAGAGCTCCGGCGCGGGCCAGGGCATGGTCGACGCCGAGACCCTGGCGGCGCGGTTCGCCGAGTCCGGACCCACCCTGACGACGGCGGAGCGCGCGGCGTCGGACCGGTCGTGGACCTACGGGCACGTCGTGGTCGACGAGGCGCAGGAGCTCAGCCCGATGGCGTGGCACACCCTGGTGCGCCGGGTGCCCAGCCGCTCCCTGACGATCGTCGGGGACGTCGCGCAGACCTCGTCCGCGGCCGGGTCCCGCTCGTGGCAGAAGACCCTCGGGTCGGTCCTGCGCGACGGCTGGCGCCTGCACGAGCTGACGGTCTCCTACCGGACCCCGGCCGAGGTCGCCACGACCGCGCAGCGCGTCGCGGTCGAGGCCGGGCTGCCCGTGTCCCCGCTCACGGCCGCCCGCGACGTGGCCGACGCCCTCGTCGTCGCGCCGACCGACGACCTCGTCGCCGAGACCGCACGCCGCGTCGCCGCCGAGGCGCGCGAGCACGTCGACCCCGACGGCGCCGGACGGGTGGCCGTCATCGCCCCCGAGGACGCCGTCGCAGGACTGCGCGCACCGGTCGCCGCCGCGGTGGCCGACGCCCTCGGCGCCGACGAGGCCGCACGGCTGGACCGGCAGCGCCCCGAGGACGCCCAGGTCCTCGTCGCACCGCCGCGGGAGATCAAGGGGCTCGAGTTCGACGCGGTCGTGGTCGTCGAGCCGGCGGCCGTGGCCGCCGGGGCCGGCGGCTGGGGAGACCTCTACGTGGCCATGACGCGCCCCACCCAGCGTCTGGTCGTCGTGCACGCCGCGGACCTGCCGGCGGGGCTCGTGCACGAGGGGTGA	MAGRHDELAREQVVVDRLYERLDELRATARERLAVVRREGPSGSPQNRSERDAFATMYADRAARLDAVEDRLAFGRLDLETGEERYIGRIGLTDDEHRTLLTDWRAPAAQAFYRATARHPDGVRRRRHVVTTGRTVTGLEDEVLDLDAVDDGLDVSTLSGEGALLASLARRRTGRMSDIVATIQGEQDRIVRDELGGAVVVQGGPGTGKTAVALHRAAYLLYAHRRLLERSGVLLVGPSRAFLRYIDQVLPSLGETGVVSTTIAELLPGLTADGVETPAAAEIKGRLLWRAAIKRAVRARERVPAQDVPVRIDGVELHVRRRDVRDAMARARRTHKPHNEARATFVREMLGKLVEQYRERTQREVTEHDLAVLTEDLRSDRDVRVAINLAWFPITPERLVADLWAKPHRLAEAAPELTEDERAALRRDRGARWTESDVPILDEAAELLGEDDTVARAEAQAAEARRAAEVEYARQMLESSGAGQGMVDAETLAARFAESGPTLTTAERAASDRSWTYGHVVVDEAQELSPMAWHTLVRRVPSRSLTIVGDVAQTSSAAGSRSWQKTLGSVLRDGWRLHELTVSYRTPAEVATTAQRVAVEAGLPVSPLTAARDVADALVVAPTDDLVAETARRVAAEAREHVDPDGAGRVAVIAPEDAVAGLRAPVAAAVADALGADEAARLDRQRPEDAQVLVAPPREIKGLEFDAVVVVEPAAVAAGAGGWGDLYVAMTRPTQRLVVVHAADLPAGLVHEG				NA	NA	NA	NA	NA
AK001_01034	1239	serA	COG0111	D-3-phosphoglycerate dehydrogenase	GTGCTGCGCGCCCTCCTTCTCGAGAACATCCACCCTGACGCCGTCGCCATCCTGGAAGCGGCGGGCATCGAGGTCGAGACCCGACCCGGTGCCCTCGACGAGTCCGAGCTGATCGAGACTCTCGCGGACTTCCATATCCTCGGCATCCGGTCCAAGACCCAGGTCACCCGCCGGGTGATCGAGGCCTCCCCCGGTCTGCTGGCGGTCGGGACGTTCTCGATCGGCACCAACCAGATCGACCTCGAGGCCGCCGCCGGCCACGGCGTGGCCGTGTTCAACGCCCCGTTCTCCAACACCCGCTCGGTCGTCGAGCTGGCGGTCTCGGAGATCATCGCCCTGACCCGCCGGCTGACGGTGCGCGACAAGGCGCTGCACGACGGCGTGTGGGACAAGACGGCCGACGGGTCGCACGAGGTCCGCGGCCGCACGCTGGGCATCATCGGCTACGGCAACATCGGCTCCCAGCTGTCGGTGCTGGCCGAGAACCTCGGCATGAACGTGGTCTTCTTCGACACCTCCGAGAAGCTGGCCCTCGGCAACGCCCGCCGGGTCGAGACCCTCGGCGAGCTGCTCGAGGTCTCCGACACCGTGACGATCCACGTCGACGGACGCGCCGGGAACGCCGGGCTGTTCGGGGACGACCTGTTCGCCCGCATGAAGCCGGGCGCGATCTTCCTCAACCTCTCGCGCGGTTTCGTCGTCGACGTCGAGGCGCTGCGCGAGCACATCCTCAGCGGCCACCTCTCCGGTGCGGCCGTCGACGTCTTCCCGACCGAGCCGAAGAAGCGCGGGGACCACTTCGAGTCGCCGCTGCGCGGCCTGGACAACGTGATCCTCACCCCGCACGTGGGCGGGTCGACCGAGGAGGCCCAGCAGAACATCGGTCTGTTCGTGGCCAAGAAGCTGCGTGACTACCTGCTCACGGGATCGACCACGCTGTCCGTCAACCTGCCCAACCTGCAGCTCGAGCACACCGGCGTGGGCCGCATCGCCCTGCTGCACCGCAACGTGCCGGGTGTGCTGGCGGCCGTCAACCAGGTCTTCGCCGACCACGGCGCGAACATCGAGGCCCAGATGCTGGCCACGCACGGCGAGCTCGGCTACGTGGTCACCGACATCTCCGACGTGACCCACCGCGGCGCCTCGAGCAAGCTCATGGCGATGGACACCACGGTGCGCCTGCGGATCCGGGACGCGTTCGACCGGCCGGAGTTCCCTCCGGGTCCGGCCGCGCACTGA	MLRALLLENIHPDAVAILEAAGIEVETRPGALDESELIETLADFHILGIRSKTQVTRRVIEASPGLLAVGTFSIGTNQIDLEAAAGHGVAVFNAPFSNTRSVVELAVSEIIALTRRLTVRDKALHDGVWDKTADGSHEVRGRTLGIIGYGNIGSQLSVLAENLGMNVVFFDTSEKLALGNARRVETLGELLEVSDTVTIHVDGRAGNAGLFGDDLFARMKPGAIFLNLSRGFVVDVEALREHILSGHLSGAAVDVFPTEPKKRGDHFESPLRGLDNVILTPHVGGSTEEAQQNIGLFVAKKLRDYLLTGSTTLSVNLPNLQLEHTGVGRIALLHRNVPGVLAAVNQVFADHGANIEAQMLATHGELGYVVTDISDVTHRGASSKLMAMDTTVRLRIRDAFDRPEFPPGPAAH	PGPT0009155_3318	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058	NA	NA
AK001_01035	486	nrdR	COG1327	Transcriptional repressor NrdR	ATGCACTGCCCTTTCTGTCGGCACGCCGACTCGCGCGTCGTCGACTCGCGGACCTCGGACGACGGTGCGTCGATCCGCCGACGCCGTCAGTGCCCCGAGTGCCAGCGCCGGTTCACGACGATCGAGACCGCGAGCCTGTCGGTCGTCAAGCGCTCCGGCGCGACCGAGCCGTTCAGCCGCGAGAAGGTCGTCTCCGGGGTCCGCAAGGCCTGCCAGGGCCGGCCCGTCAGCGGCGACGACCTCGCGCTGCTCGCGCAGCGGGTCGAGGAGACGTTGCGCTCCAGCGGCAGCGCCGAGATCGATGCCTACGAGATCGGTCTGGCGATCCTCGGACCGCTGCGGGAGCTGGACGAGGTGGCGTACCTGCGGTTCGCCTCGGTCTACCAGGACTTCGACTCCCTGGAGGACTTCGAGGCGGCGATCACCTCGCTGCGGGCGGAGCGACTCGAACGCGAGTCGTCCGCCGCGCAGCGTACGGAGGGGTGA	MHCPFCRHADSRVVDSRTSDDGASIRRRRQCPECQRRFTTIETASLSVVKRSGATEPFSREKVVSGVRKACQGRPVSGDDLALLAQRVEETLRSSGSAEIDAYEIGLAILGPLRELDEVAYLRFASVYQDFDSLEDFEAAITSLRAERLERESSAAQRTEG				NA	NA	NA	NA	NA
AK001_01036	342			hypothetical protein	ATGACCACGATGACGGCACACCCGAGCAGCGTGCAGGACAGGTGGGGGCTGACCGGGCTGCGGCTGACGGTCCGCGGACGCGTCGTGCTGGCGGTGCTGGCGCTGGCGGTCAGCCTCCCGCTGGCCTTCGCCGGGGGGCAGGCGGTGGCGGGCTCGCCCGGCGAGCCGCTGGAGGTCCGCCTGCACACGGTCGCGCCCGGGGAGACGCTCTGGGACTTCGCGACGCCCCTGACCGATCCCGGCCAGGACGTGCGTGACGTCGTCGCCGAGCTCCGTGACCTGAACGGTATGACGGAGTCGTCCCTGCGGGTGGGGCAGGTGCTGGTGCTGCCGAGGTCGTAG	MTTMTAHPSSVQDRWGLTGLRLTVRGRVVLAVLALAVSLPLAFAGGQAVAGSPGEPLEVRLHTVAPGETLWDFATPLTDPGQDVRDVVAELRDLNGMTESSLRVGQVLVLPRS				NA	NA	NA	NA	NA
AK001_01037	753	lexA	COG1974	LexA repressor	ATGACGACGCGACAGCACAACGACGGGACGGGCACCGGCGACGGCCTGGCGTCGGTCTCGGAGCTCGCCCCCGGACCGGACCGGCTCACCGCGCGCCAGCGCGGCGTGCTCACCACGATCCGCGAGTCGGTCGAGTCACGGGGCTACCCGCCCACCATGCGGGAGATCGGCGAGGCCGTCGGCCTGGCGAGCCCCTCGTCCGTCAAGCACCAGCTCACCGTGCTCGAGCGCAAGGGCTACCTGCGCCGCGACCCGAACCGGCCGCGCGCGATGGAGGTCGTCGACCCGGACACCGGCCGGACCGCCAGCACCACAGCGCCCCCCGCACCGCCCGTGCCCGCCGCGCCGACGCCGGACGGCGAGGGCGAGGAGACGCCGGCACCGTCCTACGTCCCCCTCGTCGGCCGGATCGCCGCCGGTGGGCCGATCCTGGCCGAGCAGGTCGTCGAGGACGTCTTCCCGCTGCCGCGCCAGCTCGTGGGCGACGGGGAGCTGTTCCTGCTCAAGGTCGCCGGCGACTCGATGGTGGACGCCGCGATCTGCGACGGGGACTGGGTCGTGGTCCGACGCCAGAACGTCGCGGAGCAGGGCGAGATCGTGGCCGCCATGATCGACGGCGAGGCGACGGTCAAGACCTTCAAGCAGGCGGACGGGCACACCTGGCTCCTGCCGCAGAACCCCGCCTACTCCCCCATCGCCGGCGACGAGGCGCAGGTCCTGGGTCGCGTGGTGGCGGTGCTCCGCAGCCTCTGA	MTTRQHNDGTGTGDGLASVSELAPGPDRLTARQRGVLTTIRESVESRGYPPTMREIGEAVGLASPSSVKHQLTVLERKGYLRRDPNRPRAMEVVDPDTGRTASTTAPPAPPVPAAPTPDGEGEETPAPSYVPLVGRIAAGGPILAEQVVEDVFPLPRQLVGDGELFLLKVAGDSMVDAAICDGDWVVVRRQNVAEQGEIVAAMIDGEATVKTFKQADGHTWLLPQNPAYSPIAGDEAQVLGRVVAVLRSL	PGPT0014895_306	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356	NA	NA
AK001_01038	996	ldh2	COG0039	L-lactate dehydrogenase 2	GTGCACTGCGGCGGCTCGACACATAGTCTGTCCTGCGTGAACGCACCCCGCAGCACGACCAAGCTCGCCGTGGTCGGCGCCGGTTCCGTCGGCGCCACCCTCGCCTACGCCGCGCTGGCGCGCGGTACCGCGCGGACCGTCGCGCTGATGGACGTGAACAAGTCCAAGGTCGACGCCGAGGTGCTCGACCTGCAGCACGGCGGCATGTTCGTCCCGGAGGCCGAGGTGATCGGCTCGGACGACGTCGAGGTGTGCCGCGGCGCCGACGTGGTCGTCGTGACCGCCGGGGCGAAGCAGCAGCCGGGGCAGTCCCGCCTGGACCTCGCCGAGGCCACCATCGGCCTCACGCGCAAGATCCTGCCCGGTCTGGTCGAGGTGGCCCCCGACGCGATCTACCTGATGGTCACCAACCCGGTCGACGTCGTCACCTACGCGGCCCAGCAGATCTCCGGCCTCCCGCCGGAGCGGGTCTTCGGGTCGGGCACCGTCCTGGACTCCTCGCGGCTGCGTGCCGCGCTGGCCGAGCACTGCGGCGTGGCGACGGCCAACGTGCACGCCTACGTCGCGGGCGAGCACGGCGACTCGGAGATCGCGCTGTGGAGCTCGGCGCGCATCGCGGGCGTCCCGCTGCTGGAGTGGGAGCACCTGCCGGGCCGGCCGCCGCTGGACGACGCGGCGCGGGCAGCCATCGCCCGCGACGTCGTGGAGTCGGCGTACAAGGTCATCGCCGGCAAGGGGGCCACCAACTACGCGGTCGGTCTCGCGGCGACCCGCATCGTCGAGGCGGTGCTGAAGAACGAGCACCGGGTCATGCCGGTCTCGACCCGCGTGGACGGGTTCCACGGGATCGACGGCGTCTGCCTGTCGATGCCCACGCTGGTCGACTCGCGCGGCGCGACCACCGTGATCGACACGCCGGTCTCCGACGAGGAGGCGGCCGGTCTGCGTGCCTCGGCCGAGAGCGTGCGCGCCGTGCTGCACCGCTTCGGGCTCTGA	MHCGGSTHSLSCVNAPRSTTKLAVVGAGSVGATLAYAALARGTARTVALMDVNKSKVDAEVLDLQHGGMFVPEAEVIGSDDVEVCRGADVVVVTAGAKQQPGQSRLDLAEATIGLTRKILPGLVEVAPDAIYLMVTNPVDVVTYAAQQISGLPPERVFGSGTVLDSSRLRAALAEHCGVATANVHAYVAGEHGDSEIALWSSARIAGVPLLEWEHLPGRPPLDDAARAAIARDVVESAYKVIAGKGATNYAVGLAATRIVEAVLKNEHRVMPVSTRVDGFHGIDGVCLSMPTLVDSRGATTVIDTPVSDEEAAGLRASAESVRAVLHRFGL	PGPT0001760_1539	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001760-ldh-K00016	NA	NA
AK001_01039	2037	dinG_1	COG1199	putative ATP-dependent helicase DinG	GTGACCTCGTCCGACCCCGCCGCCGCACCCGACGTCTCGACGCTGCTCGACCGCGCGGTCGGGGCCCTCGGAGGCAGCCCGCGCGAGGGCCAGCGGGAGATGGCCTCGGAGGTCGCGCGGGCCATCGACGACGGGCGGCACCTGCTCGTGCAGGCCGGCACCGGCACCGGCAAGTCCCTCGGCTACCTCGTGCCCGCCGTGCGCCACGCGGTGACGCAGGACGAGCGGGTCGTGGTGTCGACCGCCACGCTCGCCCTGCAGCGCCAGGTCATCACCCGGGACCTGCCCCTGGTGGCCGACGCCGTGGCGCCGGCCTTGCCGCGGCCGCCGCGGGTCGCCCTGCTCAAGGGGTGGCACAACTACCTGTGCCGGCACAAGATCACCGGCGGCTACCCGACGGACGACGCCACGCTGTTCGACCTGCCGCCCGACCCCGGCCCGGGCGAGGGGGCGGCCGCCGAGCAGCACCCGGCCACCCCGCGCGGCGGGGACGCGGCGTCGGACCGGCTGGCCGACCAGGTGCGCCGGCTGCACGCCTGGGCCGAGGAGACCGACACCGGGGACCGGGACGACCTGGTCCCCGGCGTCCCGGACCGTGCCTGGCGGCAGGTGTCGGTCACCTCCCTGGAGTGCCTCGGCCAGCGGTGCCCGGTCTTCGACGAGTGCTTCGCCGAGCAGGCGCGCGCCACCGCCCGCGAGGCCGACGTCGTGGTCACCAACCACGCCATGCTGGGGATCGCCGCGTCCGGGAACCAGCACGTCCTGCCGGAGCACGACGTGCTGGTGGTCGACGAGGCCCACGAGCTCGCCGACCGCATCACCTCCGCCGCGACGGTCGACCTGTCGGCCGGCACGGTCGAGCACGCGGCCCGGCTCGCCCGCCGCCACGGCGGCCGGACCACGGACGACCTCGACGCCGCCGCCCAGGGCCTGGCGCAGGTGCTCGCCACGGTCCCGGCCGAGCGCTACCCCCAGGGGCTGCCGGAGTCGTTGCACACCGCCGTGTCCGCGGTGCGCGACGCCGCCCGCGGCCTGCTCGCCGAGCTGCGGCCGGAGCCCGGGGCCGAGCCCGACGCCGGCATCCGCATGGCGCAGTCGGCGATCCAGCAGCTCTTCGACGTGGCCGAACGCATGGCGGCCGAGGACACCAGCGACGACGTCCTGTGGTGCTCCCGACCGCCCGCCGACGCGCCCTGGGGTGACGGGGTCGCCCGGCTGCACGCCGCGCCGCTGGCCGTCGCGGGGCTGATCAGCTCCCAGCTGCTCACCGAGCGCACCGGCGTCCTGACCTCGGCCACGCTGACGCTGGGCGGCAGCTTCGACCCGCTGGCACGGTCCCTCGGGCTCGCCGCCTCCACCGGCGACGACGACGGCGACTGGCGCGGCATCGACGTCGGCAGCCCGTTCGACTACCGCCGCCAGGGCATCTGCTACGTGGCCAAGCACCTGCCCGCGCCCGGGCGCGAACCCACCACCGAGGCGCAGCTCGACGAGATCGCCGGCCTGATCGAGGCGGCCGGCGGGCGCACGCTGGGGCTGTTCTCCTCCCGCCGCGCCGCGACGGCCGCGGCCGAGGCCATGCGTGAGCGCCTGGACGTCCCGGTGCTGTGCCAGGGCGACGACCAGCTGCCGAGCCTGGTGGCACAGTTCGCGGCCGATCCGGCGACCTGTCTGTTCGGCACGCTGTCGTTGTGGCAGGGGGTGGACGTGCCGGGGGACGCGTGCCGGCTGGTCCTGATCGACCGGGTGCCGTTCCCGCGCCCCGACGACCCCGTCAAGGCGGCCCGTGCCCGCGCGGTCGAGCAGTCCGGCGGCAACGGGTTCATGCAGGTCGCCGCGACGCACGCCGCGCTGCTGCTGGCGCAGGGAGCCGGTCGGCTCATCCGCTCCCAGGAGGACAAGGGCGTCGTGGCGGTCCTGGACCCCCGCCTGGTCACGGCCCGGTACGGATCCTTCCTCACCCGGTCCCTGCCCGACTTCTGGCGCACCACCGACCAGGATCTGGTCCGCGGTGCACTGCGGCGGCTCGACACATAG	MTSSDPAAAPDVSTLLDRAVGALGGSPREGQREMASEVARAIDDGRHLLVQAGTGTGKSLGYLVPAVRHAVTQDERVVVSTATLALQRQVITRDLPLVADAVAPALPRPPRVALLKGWHNYLCRHKITGGYPTDDATLFDLPPDPGPGEGAAAEQHPATPRGGDAASDRLADQVRRLHAWAEETDTGDRDDLVPGVPDRAWRQVSVTSLECLGQRCPVFDECFAEQARATAREADVVVTNHAMLGIAASGNQHVLPEHDVLVVDEAHELADRITSAATVDLSAGTVEHAARLARRHGGRTTDDLDAAAQGLAQVLATVPAERYPQGLPESLHTAVSAVRDAARGLLAELRPEPGAEPDAGIRMAQSAIQQLFDVAERMAAEDTSDDVLWCSRPPADAPWGDGVARLHAAPLAVAGLISSQLLTERTGVLTSATLTLGGSFDPLARSLGLAASTGDDDGDWRGIDVGSPFDYRRQGICYVAKHLPAPGREPTTEAQLDEIAGLIEAAGGRTLGLFSSRRAATAAAEAMRERLDVPVLCQGDDQLPSLVAQFAADPATCLFGTLSLWQGVDVPGDACRLVLIDRVPFPRPDDPVKAARARAVEQSGGNGFMQVAATHAALLLAQGAGRLIRSQEDKGVVAVLDPRLVTARYGSFLTRSLPDFWRTTDQDLVRGALRRLDT				NA	NA	NA	NA	NA
AK001_01040	1602	hflX		GTPase HflX	ATGGGCTTCGTCGGGACGAAACCGCGTGGGATCCTTGTTGACGACGGAGAACCCATCGAGAGGACCGACTTGACCCACACCCCCACCGACCCCGAGCAGACCGCGACGGGCGCCGAGGCGACCGAGGAGCCCCGGGACGCGCAGTCGATCGCTCACGACGTGGTCGCACGCGTCCTCGCGAGAGCAGGGACGGCGCGGGCCGAGGGCGGGACCGTGCACTCCGCGTACGACGGCGACCAGCTCGACCTGGCCGAGCGCTCGGCGCTGCGCCGCGTCTCCGGGCTGTCCACCGAGCTCGACGACGTCACCGAGGTCGAGTACCGCCAGCTCCGGCTGGAGAAGGTCGTCCTCGTCGGCCTGCACTCCGGGGGCGAGGTCGCCTCCCGCGACGCCGAGATCTCGCTGCGCGAGCTCGCCGCGCTGGCCGAGACCGCCGGCTCCCAGGTCCTCGACGGGCTGCTGCAGAAGCGGGCCACGCCCGACCCGGGCACGTTCCTCGGCTCCGGCAAGGCGGCCGAGCTCGCCGACATGGTCGCGGCCAGCGGCGCCGACACCGTCGTCGTCGACTCCGAGCTCGCCCCGTCCCAGCGGCGTGCGCTGGAGGACATCGTCAAGGTCAAGGTCGTCGACCGCACCGCGCTGATCCTGGACATCTTCGCCCAGCACGCCAAGTCGCGGGAGGGCAAGGCGCAGGTCGAGCTCGCCCAGCTCGAGTACCTGCTGCCGCGTCTGCGCGGCTGGGGCGAGTCGATGTCCCGGCAGGCCGGTGGCCAGGTCGGCGGCACGGGCGCCGGCATGGGCTCGCGCGGCCCCGGTGAGACGAAGATCGAGCTCGACCGCCGCCGGATCCGCAACCGCATGGCCAAGCTGCGCCGCGAGATCGCCGCGATGGCGCCCGCCCGGGAGACCAAGCGCCTCGAGCGTCGTCGCCACGCGGTGCCCAACGTCGCGATCGCCGGGTACACCAACGCCGGGAAGTCCTCGCTGCTCAACGTCCTCACCGACGCCGGGGTGCTGGTCGAGAACGCCCTGTTCGCGACGCTCGACCCCACGGTGCGGCGCGCCCGCACCGAGGACGGCCGCCTGTACACGCTCGCCGACACCGTCGGGTTCGTGCGGCACCTGCCGCACCAGCTCGTCGAGGCGTTCCGGTCCACCCTCGAGGAGGTGGGCGACGCGGCGCTGCTGCTGCACGTCGTCGACGCCTCCCACCCCGACCCCGAGGGGCAGATCGACGCCGTCCGCGAGGTGCTGTCCGACATCCCCGGGGTGGAGGACGTCCCCGAGATCGTCGTGCTGAACAAGGCCGACCTCGCCGACCCCGTCACCGTGGGCCGGATCCAGCGCCGCGAACGGCGCACCGCCGTCGTCTCGGCGCACTCCGGCGAGGGGATCGCCGAGCTCAAGGCGCTGATCGCCGACGCGCTGCCGCGCCCGGCCGTGGAGATCGACCTGGTCGTGCCGTACTCGCGCGGCGACCTCGTGCACCGGGTCCACGAGCACGGCGAGCTCGCCGATGAGGAGTACCTCGCCGAGGGCACGCGCCTGCGCGGACGGGTCGACGCGGCGCTCGCGGCCGAGCTGGACGCCGCGGCCGTCTGA	MGFVGTKPRGILVDDGEPIERTDLTHTPTDPEQTATGAEATEEPRDAQSIAHDVVARVLARAGTARAEGGTVHSAYDGDQLDLAERSALRRVSGLSTELDDVTEVEYRQLRLEKVVLVGLHSGGEVASRDAEISLRELAALAETAGSQVLDGLLQKRATPDPGTFLGSGKAAELADMVAASGADTVVVDSELAPSQRRALEDIVKVKVVDRTALILDIFAQHAKSREGKAQVELAQLEYLLPRLRGWGESMSRQAGGQVGGTGAGMGSRGPGETKIELDRRRIRNRMAKLRREIAAMAPARETKRLERRRHAVPNVAIAGYTNAGKSSLLNVLTDAGVLVENALFATLDPTVRRARTEDGRLYTLADTVGFVRHLPHQLVEAFRSTLEEVGDAALLLHVVDASHPDPEGQIDAVREVLSDIPGVEDVPEIVVLNKADLADPVTVGRIQRRERRTAVVSAHSGEGIAELKALIADALPRPAVEIDLVVPYSRGDLVHRVHEHGELADEEYLAEGTRLRGRVDAALAAELDAAAV	PGPT0007245_630	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665	NA	NA
AK001_01041	609	rsmC		Ribosomal RNA small subunit methyltransferase C	GTGAGCGACCACTACTTCACGGCCCGACCGGCCTCCGACGACGAGCGTCGCACCCTCGACGTGCGGCTCGCCGGACGCGAGGCGACCGTCGAGGTCGCCGCCGGCATCTTCTCCCCCGGCGGGGTCGACAAGGGCACCCGGATCCTGCTCGACGAGGTGCCCGCCCCGCCGGCGGGCGACCTGCTGGACCTCGGGTGCGGCTGGGGCCCGATCACGCTCACGGCGGCCCTGGAGAACCCGGCGAGCACCGTCTGGGCCGTCGACGTCAACGAGCGCGCGCTGGACCTGGTGCGCCGCAACGCCGACCGGCTCGGGGTCTCCGACCGGGTCCGGGCGGTGACGCCGGACGGGGTGCCCGACGACGTCACGTTCGCCGCGATCTGGTCGAACCCGCCGATCCGCGTGGGCAAGCAGGTGCTGCACGACATGCTGCGACGCTGGCTGCCGCGGCTGACGGCGCCGTGCCCGCCCGACGGCGGCGCGTGGCTGGTGGTGCAGAAGAACCTCGGCGCCGACTCCCTGGCCCGGTGGATCGAGGCCGAGCTCGGGCAACCCACGCGGCGCGCGGCCTCGTCGAAGGGCTTCCGCGTCCTGCACGTGACGCGCTGA	MSDHYFTARPASDDERRTLDVRLAGREATVEVAAGIFSPGGVDKGTRILLDEVPAPPAGDLLDLGCGWGPITLTAALENPASTVWAVDVNERALDLVRRNADRLGVSDRVRAVTPDGVPDDVTFAAIWSNPPIRVGKQVLHDMLRRWLPRLTAPCPPDGGAWLVVQKNLGADSLARWIEAELGQPTRRAASSKGFRVLHVTR				NA	NA	NA	NA	NA
AK001_01042	933	dapF	COG0253	Diaminopimelate epimerase	ATGACCGTACGTTTCACCAAGGGGCACGGCACGCAGAACGACTTCGTGCTCGTCGCCGACACCCGCGGCGACATGGACCTCACGGCCGAGCAGGTGCGGCGTCTGGCCGACCGGCGCAGCGGCATCGGCGCCGACGGCGTCATCCGCCTGGCGCCGACGGCCGCGGTCGCCCAGGCGGGCGAGCAGGTGGCCGACGACGTGCTCGCGGCCGCCCCGGAGGCCATCTGGTTCATGGACTACCGCAACGGTGACGGCAGCCCGGCCGAGATGTGCGGCAACGGCGTGCGGGTCTTCACCGCGTTCGCCGAGAGCCTGGGGCTCGCCGACCTGTCCGACGGCGCCGAGCTGGCGCTGGGCACCCGCGGGGGCGTCAAGCGGGTCCGGCGCGAGCAGAACGGCTGGTACGCCGTCGACATGGGGCCGTGGTCCCTCACCGGGGGCGACGACGCGGCCGCTGCCGGAGCCGACGCCATGGTGCTCACGGCGGGCTGGGACGCCCCGCGTCCGGCGCTGAGCCTCGACCTGGGCAACCCGCACACGGTGGTGGCGCTGTCCGACGTCGCCGAGCTCGACGCGCTGGACCTCACCCGGGCCCCGGCCGTCGAACCCGTCCCGCCGCACGGCACCAACGTCGAGCTCGTCGTCCCGCTCGGGGAGGAGGCCGGTCCCGAGGGGCGGCCCGTCGGGCGGATCCGCATGCGGGTGCACGAGCGCGGCGTCGGCGAGACGCGGTCGTGCGGCACCGGTGCGTGCGCGGCGGCGCTCGCGGTGCGCACCTGGGCGGCGCACGGCGTGGACGACCCCCACGGGGTGCCGTCGACCTGGTTCGTCGAGGTGCCCGGCGGCGAGGTCCGCGTCCGGCTGCTGCACGGCGGGCACGTGGAGCTCGCCGGTCCCGCCGAGCTCGTCTTCAGCGGCGAGATCGACCTGTAG	MTVRFTKGHGTQNDFVLVADTRGDMDLTAEQVRRLADRRSGIGADGVIRLAPTAAVAQAGEQVADDVLAAAPEAIWFMDYRNGDGSPAEMCGNGVRVFTAFAESLGLADLSDGAELALGTRGGVKRVRREQNGWYAVDMGPWSLTGGDDAAAAGADAMVLTAGWDAPRPALSLDLGNPHTVVALSDVAELDALDLTRAPAVEPVPPHGTNVELVVPLGEEAGPEGRPVGRIRMRVHERGVGETRSCGTGACAAALAVRTWAAHGVDDPHGVPSTWFVEVPGGEVRVRLLHGGHVELAGPAELVFSGEIDL	PGPT0007230_576	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778	NA	NA
AK001_01043	984	miaA	COG0324	tRNA dimethylallyltransferase	GTGATCGTCGCCGTCGTGGGACCCACCGCCACCGGGAAGTCGGACCTCGCCCTGGACCTCGCCGAGGCGCTGTCCGGACCGCGGGCGCCGGCCGAGATCGTCAACGCCGACGCCTTCCAGCTCTACCGCGGCATGGACGTCGGCACCGCCAAGGTGCCGCCGGCCGAGCGCCGGGGGATCGTCCACCACCAGCTCGACGTGCTGGACCCCACCCAGGACGCCTCCGTGGCGCACTACCAGGCGGCGGCCCGCGCGGACCTCGACGCGATCGCGGCCCGCGGCGCCCGCGCCGTCGTCGTCGGCGGTTCCGGGCTCTACGTGCGCGCACTGCTGGACGAGATGAACTTCCCGGGCACCGACCCGCAGGTGCGCGCCCGCCTCGAGGGGCGCGCCGAGACCGAGGGGCGCCGCGCGCTGCACGCCGAGCTGGTGCGCCGCGACCCCGATGCCGCCGCGTCCATCGGCCCGGAGAACACCCGGCGCCTCGTACGTGCGCTGGAGGTGATCGAGATCACCGGGCAGCCGTTCACCGCCAACCTGCCCCGCCAGGAGTACGTCCGTCCCGCCGTCCAGATCGGTCTCGACTGCGACCGACCCACGCTCGACGCCCGGGTCGCGGGGCGGGTGGACCGCATGTGGTCCGCCGGGCTCGTCGACGAGGTGCGGTCGTTGGCCTCGCCCGCGCAGGGCGGGACCGGTGCCGGACTCGGCACGACGGCGGCGCGCGCCGTGGGGTACGCCGAGCTGCTGCGCTGGTTCGCGGGCGACCTCACCGAGGACGCCGCGCGCGAGGCCGTGGTGACCGACACCCGGCGGCTCGCGCGCAAGCAGATGGGATGGTTCGGCCGCGACCCGCGCGTGCAGTGGCTCGACGCCGGTTCGCCGACCCTGCTGGCCGACGCCCTCGCCGTGGTCCGGGCCGCCGATGCGGAGACCCTCCCGGCGCCGGAGGACCGACCCGTGCGCCGTAGTCTGGGCTCATGA	MIVAVVGPTATGKSDLALDLAEALSGPRAPAEIVNADAFQLYRGMDVGTAKVPPAERRGIVHHQLDVLDPTQDASVAHYQAAARADLDAIAARGARAVVVGGSGLYVRALLDEMNFPGTDPQVRARLEGRAETEGRRALHAELVRRDPDAAASIGPENTRRLVRALEVIEITGQPFTANLPRQEYVRPAVQIGLDCDRPTLDARVAGRVDRMWSAGLVDEVRSLASPAQGGTGAGLGTTAARAVGYAELLRWFAGDLTEDAAREAVVTDTRRLARKQMGWFGRDPRVQWLDAGSPTLLADALAVVRAADAETLPAPEDRPVRRSLGS	PGPT0007210_1173	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791	NA	NA
AK001_01044	468			hypothetical protein	GTGCTGCTGCTGTCCGTGCTCGCCGTGAGCCTGCTGTCCGGGCTCGTCCCGGTGGTCAGCATCGAGGTGTACCTCGGGGGCGTCGCGGCGGTGACGGACGCGGCGTCGGACCCGGTCCGGGTGGCGCTGATCGCTCTCGTGGCCGGGATCGGCCAGACCGTGTCCAAGGTGGTGTGGTACCTCGGCGCGGCCCGGTCGATGGAGACGCGGTGGGTGCGCGAGAAGCTGGCCGTCAAGCGACGCCGCGAGACCTTCGACCGGTGGCAGGACCGCATCCAGGGCCGGCCCTGGCTCAGCGCCGCGGTGCTTCTCGCGTCGGCCTCGGCGGGCTTCCCGCCGCTGATGATCATGGCCGTCGTGGCCGGCTCGCTGCGGGTGCCCATGGCCGTCTACGTCCCGACCCTCCTGGTCGGCCGCACGGTGCGGTTCTGGCTGCTGCTCGCCGGCGTCGGCTGGTTCGCCGGGTGA	MLLLSVLAVSLLSGLVPVVSIEVYLGGVAAVTDAASDPVRVALIALVAGIGQTVSKVVWYLGAARSMETRWVREKLAVKRRRETFDRWQDRIQGRPWLSAAVLLASASAGFPPLMIMAVVAGSLRVPMAVYVPTLLVGRTVRFWLLLAGVGWFAG				NA	NA	NA	NA	NA
AK001_01045	597			hypothetical protein	GTGCCCGCTCGTGCCGTCGTCCTGCCCGCGACCCCGCTCCTGGTCCCCGGTGCCGCCGGGACGGCACGGCCCCTGGGCGACCTGCGTGCCGCCGTCGCGGACGCCCTGGCCGCCGTCCGGACCCCGCACGGAGCCGTCCCGCAGCGCTGGGGGGTGCTCGCGCCCGGTCCGCGCACCGCCGCCGGCGCCCGGCGGGCCTCCCTCGCCGCGGCCGGCGTCCACGACCGCTGGCTGCCTGGTCCCCCCACGGGCGTCACGCTCCCGGCGGCACACGTTCCCGCCTCGGTGGCGCTGCTGGTCCTGGCCCGCGCGCTGGGCGACGACGTCGCGGCCGGGGCGCACGTCGTCGAGGTCGCCGACGACGATCCCGGGGCCGTGCGCGTCGGCCTGCGCGAGCTCGCCGGGGTCGACGCGCTCGTCGTGGCCGGCGGTTCCCCCGCCGACCCGGCGGCCGGACCCACGGCCTGCACGACGGCGGTCGCCGGCGTCCTGGCCGGGCTCGCGGACCGCGGCGGCTGGTCGGCGACCACCCGGACCGTCGCCGCGTCCGGGGACCACCTGCCGGGTGCCTACGACGTCGTGACCTGGGCCGACTGA	MPARAVVLPATPLLVPGAAGTARPLGDLRAAVADALAAVRTPHGAVPQRWGVLAPGPRTAAGARRASLAAAGVHDRWLPGPPTGVTLPAAHVPASVALLVLARALGDDVAAGAHVVEVADDDPGAVRVGLRELAGVDALVVAGGSPADPAAGPTACTTAVAGVLAGLADRGGWSATTRTVAASGDHLPGAYDVVTWAD				NA	NA	NA	NA	NA
AK001_01046	576			hypothetical protein	GTGGGTGGTGTGAGGTTCTTCGGGTCGCGCCGGATCGCCAGATCGTCAGCCGCATCGCGTGAGGAGCCCCTCGACGCGGACCTGTTGCGCAGCGACGTCGAGAACGTGCTGCTGGCCGGGCCCGTCGGGCAGCTCGCCGGGGCGACCCCCCGCCCCGTGACGCGAGAACGGGTCAGTGCCTGGCTGGACTCCTCGGGGTTCACCTACGCCGTCGACAACGACGGCGACCCGGGCGGCATCTGGCACGGACGGCAGTTCTCCTTCCTCGTGCTGGGCGACGAGGGCGAGGTCCTGCAGGTGCGCGGCCAGTGGCACCGCCAGGCCACCATCGAGCGGCTCAGGGAGATCCTCGACGTGTGCAACGCCTGGAACGCCGAGCGCATCTGGCCGACGACGTACGCGCGGGTGCGCGACGACGGCGCGGTCGTGGTCTGCGCCGAGGTCACCACGAGCCTCGAGCACGGCGCCACCGACGACCAGCTCGGCCAGCTCCTGGAGTGCGGGCTGTCGACCGGGGTGATGTTCTTCGAGCACCTGGACTCGGTGTTCCCGGACCCGCTGCAGGTGGCACCGTGA	MGGVRFFGSRRIARSSAASREEPLDADLLRSDVENVLLAGPVGQLAGATPRPVTRERVSAWLDSSGFTYAVDNDGDPGGIWHGRQFSFLVLGDEGEVLQVRGQWHRQATIERLREILDVCNAWNAERIWPTTYARVRDDGAVVVCAEVTTSLEHGATDDQLGQLLECGLSTGVMFFEHLDSVFPDPLQVAP				NA	NA	NA	NA	NA
AK001_01047	510			hypothetical protein	GTGAGCGGGCCGCTGCGACGAGCCGCGACGGCGGTGCTGCAGGTGGCGCGCCGTCGGCGCGCCGACGACACCGAGCCCCCGGCCGCACGCCCCACCCCGGTGACGGCCCGACGCATCGGCGCCGACCTCGCGCGGCGCGGCTACCGGTTCCGCACCGACGACGACGGCGACCTCACCGGGACGTGGGACGGCCACCGGTTCTGGTTCCTGCTGCTGGGCGACGCCGGAGAGATCCTCCAGGTCCGCGGACGCTGGTCGGGAACCGTGCCCGACTCGGCACGGCCGGCGGTGCTGCAGGCGTGCAACGACTGGAACCGCGAGCGCATCTGGCCGAAGGTCTACACGCGCCCCGAGCAGGGCGGCCTCGCCCTCTACGGCGAGGTGTCCGTCGACCTGGAGCACGGCGCGACCGACGAGCAGCTCGCCGAGACGCTGTCGTGCGGCCTGGTGACGACGTCCCAGTTCTTCTCGGGGCTCGGCGCCCTGGTCGGCCCGGAGGCCGAGGACTGA	MSGPLRRAATAVLQVARRRRADDTEPPAARPTPVTARRIGADLARRGYRFRTDDDGDLTGTWDGHRFWFLLLGDAGEILQVRGRWSGTVPDSARPAVLQACNDWNRERIWPKVYTRPEQGGLALYGEVSVDLEHGATDEQLAETLSCGLVTTSQFFSGLGALVGPEAED				NA	NA	NA	NA	NA
AK001_01048	1641	miaB	COG0621	tRNA-2-methylthio-N(6)-dimethylallyladenosine synthase	ATGTCCACCACCATGCCGTCACCCCGCGAGACCGTCACACCCCAGCCCTCCGACGGGGCCGGCCGGACGTACACGGTCCGCACCCTGGGGTGCCAGATGAACGTCCACGACTCCGAGCACATGGCCGGGATGCTCGAGCAGGCCGGCTACACGCGGGCGTCGGCCGCCGACGAGGCGGCCAGCAACGCCGACGTGGTGGTCATCAACACCTGCGCGGTGCGCGAGAACGCCGCCACCCGCCTCTACGGCAACCTCGGCCAGCTCGCCGGGCTCAAGGCGGAGCGGCCCGGCATGCAGATCGCCGTCGGCGGCTGCCTGGCGCAGAAGGACCGCGGCGAGATCGTCGACAAGGCGCCCTGGGTCGACGTGGTCTTCGGCACCCACAACCTGGACGCGCTGCCGGTGCTCCTCGAGCGGGCACGGCACAACGCGGCCGCGCAGGTCGAGATCGCCGAGTCCCTGCAGGTCTTCCCCTCCACGCTGCCGACCCGCCGCGAGTCGGTGTACGCCGGCTGGGTCTCCATCTCCGTGGGCTGCAACAACACCTGCACCTTCTGCATCGTCCCGCACCTGCGGGGCAAGGAGCGCGACCGCCGGCCGGGGGAGGTCCTCGCGGAGGTGCAGGCCCTGGTGGACGCCGGAGCCGTCGAGGTCACGCTGCTGGGTCAGAACGTCAACAGCTACGGTGTCGAGTTCGGCGACCGGGGGGCGTTCGCCAAGCTGCTGCGCGCCTGCGGGAACATCGAGGGACTGGAGCGCGTGCGCTTCACCTCGCCCCACCCGGCCGCGTTCACCGACGACGTCATCGAGGCGATGGCGGAGACCCCGAACGTCATGCCGCAGCTGCACATGCCGCTGCAGTCGGGCTCGGACCGCGTCCTGCGCGCCATGCGCCGCAGCTACCGGTCGACCAAGTTCCTCGGGATCCTGGACCGCGTGCGCGCCGCGATGCCCGACGCCGCGATCACCACCGACATCATCGTCGGCTTCCCCGGGGAGACCGAGGAGGACTTCGCCGAGACGCTGCGCGTCGTCGAGGAGTCGCGATTCAGCTCGGCCTTCATGTTCCAGTACTCCCCGCGCCCCGGGACGCCGGCGGCGGAGATGGACGACCAGCTGCCCAAGGAGGTCGTCCAGGAGCGCTTCGACCGGCTGCTGGCGCTCCAGGAGCGGATCAGCGCCGAGGAGTCCGCGCGACAGACCGGCCGGACCCTCGAGGTGCTCGTCTCGGAGGGCTCGGGGAAGAAGGACGGTGCCACCCACCGGCTGTCGGGCCGGGCCCCGGACAACCGCCTGGTCCACCTCGCGGTGCCGGCCGGCGTGCTGCCCGAGGGCGGCCTGGCCGACCAGCCGGCCTCCCTCGACGACCCGCGGCTCGTCGACGTCGCCGACCTGGACCCTGCGCTCCCGCGCCCGGGGGACATGGTGACCGTCGAGGTCACGCGGGCGGCGCCGCACCATCTCATCGCCGACTCCGCGCTCGACGGCGGCACCTACACGGTGCGGCGCACGCGGTCCGGCGACGCCTGGGTGCAGCGGGAGTCCGCCCGCCTCGGCGGCGGCCACGACGACCACTCCCACGGCGGCGGTGGCGAGCCCGGCGCGCCGGTCACCCTGGGGATGCCGACGCTACGTCGCTGA	MSTTMPSPRETVTPQPSDGAGRTYTVRTLGCQMNVHDSEHMAGMLEQAGYTRASAADEAASNADVVVINTCAVRENAATRLYGNLGQLAGLKAERPGMQIAVGGCLAQKDRGEIVDKAPWVDVVFGTHNLDALPVLLERARHNAAAQVEIAESLQVFPSTLPTRRESVYAGWVSISVGCNNTCTFCIVPHLRGKERDRRPGEVLAEVQALVDAGAVEVTLLGQNVNSYGVEFGDRGAFAKLLRACGNIEGLERVRFTSPHPAAFTDDVIEAMAETPNVMPQLHMPLQSGSDRVLRAMRRSYRSTKFLGILDRVRAAMPDAAITTDIIVGFPGETEEDFAETLRVVEESRFSSAFMFQYSPRPGTPAAEMDDQLPKEVVQERFDRLLALQERISAEESARQTGRTLEVLVSEGSGKKDGATHRLSGRAPDNRLVHLAVPAGVLPEGGLADQPASLDDPRLVDVADLDPALPRPGDMVTVEVTRAAPHHLIADSALDGGTYTVRRTRSGDAWVQRESARLGGGHDDHSHGGGGEPGAPVTLGMPTLRR	PGPT0007215_30	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168	NA	NA
AK001_01049	801	glnQ_2		Glutamine transport ATP-binding protein GlnQ	ATGGATCACAGCGGAACGACTCCGGCGGACGACCAGCACCCGCCGGCGGACGACTCGCACCTGGGCGCCCCGCTCGTCGAGCTCGAGGCGGTCGACAAGTACTTCGGGGACCTGCACGTGCTGCAGGACATCAACCTGACGGTGCGACGCGGCGAGGTGCTCGTCGTCATCGGCCCGTCGGGCTCCGGCAAGTCGACGCTGTGCCGTGCCATCAACCGGCTGGAGACGATCGACAGCGGCGACATCTCCATCGACGGGCAGCCGATGCCGGCCGAGGGCCGCCAGCTCGCCCGGCTGCGCGCCGACGTCGGCATGGTCTTCCAGGCGTTCAACCTCTTCGCCCACAAGACGGTGCTGGACAACGTCACGCTCGGCCCGCGCAAGGTCCGCGGGCTGAGCAAGTCCGACGCCGAGGCCGAGGCCCTGCGGCTCCTCGACCGGGTTGGGGTCAAGAACCAGGCGGCGAAGTTCCCCGCCCAGCTCTCCGGCGGGCAGCAGCAGCGCGTGGCGATCGCCCGCTCGCTGGCCATGCACCCCAAGGTGATGCTCTTCGACGAGCCGACGTCGGCACTCGACCCCGAGATGATCAACGAGGTGCTCGACGTGATGGAGCAGCTCGCCAAGGAGGGCATGACGATGATCGTCGTCACGCACGAGATGGGGTTCGCGCGCAAGGCGGCCGACCGGGTGGTGTTCATGGCCGACGGCCAGATCGTCGAGGAGGCCACCCCCGAGGAGTTCTTCCACCACCCGCGCAGCGACCGCGCCAAGGACTTCCTGTCGAAGATCCTCACCCACTGA	MDHSGTTPADDQHPPADDSHLGAPLVELEAVDKYFGDLHVLQDINLTVRRGEVLVVIGPSGSGKSTLCRAINRLETIDSGDISIDGQPMPAEGRQLARLRADVGMVFQAFNLFAHKTVLDNVTLGPRKVRGLSKSDAEAEALRLLDRVGVKNQAAKFPAQLSGGQQQRVAIARSLAMHPKVMLFDEPTSALDPEMINEVLDVMEQLAKEGMTMIVVTHEMGFARKAADRVVFMADGQIVEEATPEEFFHHPRSDRAKDFLSKILTH	PGPT0000785_218	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000785-gluA-K10008	NA	NA
AK001_01050	891	glnH_1	COG0834	ABC transporter glutamine-binding protein GlnH	ATGCGACGCACACGCACCACCGGGGTGATCGCCCTGGCCGCCACGGCCGCGCTCGCGCTGGCCGCCTGTTCCTCCGACGACGGCGGAGGAGACACCGACGCCGACGCCGGCAGCGAGACGACCGACACCATGGAGGAGGAGGAAGGTGCCGGCGGTGAGGGCCTCACCATCGGTATCAAGTTCGACCAGCCCGGCCTCGGCTTCATGGACGGCGACACGCCCTCCGGGTTCGACGTCGACGTCGCCAAGTACGTCGCGAGCGAGCTCGGCTACTCCGAGGACCAGATCGAGTGGGTCGAGGCCCCGTCCGCCCAGCGCGAGACGCTGCTCTCGACCGGCCAGGTCGACATGATCTTCGCCACCTACTCGATCACCGACGAGCGCCGCGAGCAGGTCTCCTACGCCGGCCCGTACTTCGTGGCCGGCCAGGACCTCCTCGTCGCGGCCGACAACACCGACATCACCGGCCCGGACGCCCTGGACGGCAAGAACCTGTGCTCGGTCACCGGTTCGACGTCCGCCCAGCGCATCAAGGACGAGTACTCCGAGGGCGTCAACCTCCTCGAGCAGCCCGGGTACGCCGAGTGCGTCACCGCGCTCACCTCGGGGCAGGTCGACGCCGTGACCACCGACGACATCATCCTCGCCGGCCTGGGCGCCCAGCCCGCCAACGCCGGCCAGGTGAAGGTCGTGGGCAACACGTTCTCCGAGGAGCGCTACGGCGTCGGCATCCCGCAGGAGTCCGAGCAGTGCGAGGACATCAACGCGGCGCTGACGCAGATGATCGAGGACGGCTCGTGGCAGGAGTACATCGACGCCGCCACCGAGGGCACCGGCTACACGCCGAACTCCGACCTGAACCCGCCGGAGTTCGACCCCTGCGACATGTGA	MRRTRTTGVIALAATAALALAACSSDDGGGDTDADAGSETTDTMEEEEGAGGEGLTIGIKFDQPGLGFMDGDTPSGFDVDVAKYVASELGYSEDQIEWVEAPSAQRETLLSTGQVDMIFATYSITDERREQVSYAGPYFVAGQDLLVAADNTDITGPDALDGKNLCSVTGSTSAQRIKDEYSEGVNLLEQPGYAECVTALTSGQVDAVTTDDIILAGLGAQPANAGQVKVVGNTFSEERYGVGIPQESEQCEDINAALTQMIEDGSWQEYIDAATEGTGYTPNSDLNPPEFDPCDM	PGPT0000770_570	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000770-gluB-K10005	NA	NA
AK001_01051	678	glnM	COG0765	putative glutamine ABC transporter permease protein GlnM	GTGGAGGAGTATCTCGACATCGTCCGCCAGTACGACGTGCTGGGGGCGTTCTGGGTCAACATCCAGCTCGCCTTCTGGGCGGCGCTGCTCTCCCTGGCCCTGGGGTCGGTGCTGGCGCTGTTCCGCATCTCCCCCATCGGGAGCCTGCAGTGGGCCGGGTCCGCGTACGTGACGATCCTGCGGAACACCCCGCTGACGATCATCATGGTCTTCATGGTCCTCGGGGCCTGGGGTCAGCTCGAGCTGACGCTGGCGACCGACTTCGACCTCAACTTCTTCTGGCTCGCGGTCGTGGGGCTGTCGATCTACCACGCGGCCTTCGTGTGCGAGGCGATCCGCTCCGGCGTCAACACGGTGCCGGTCGGCCAGGCCGAGGCGGCACGCTCCATCGGCCTGTCGTTCCTGCCCTCGGCCCGGCTGGTCATCCTGCCGCAGGCCTTCCGCGGCGCGATCGCCCCGCTCGGCAACGTCCTCATCGCCCTCATCAAGAACACCACGGTCGCGGCGGCCGCCTCGGTGGCGACCGAGACCTCCTCGGTGATGCGGACGATGATCGAGTTCCGGCCCGACTACATCTACGCGATCTTCTTCACCTTCGCGATCGGCTACGTGATCCTCGTGACCCCCGTCGGACTGCTGTCCACCTCGTTCTCGCGTCGACTGGCGGTGGCCCGATGA	MEEYLDIVRQYDVLGAFWVNIQLAFWAALLSLALGSVLALFRISPIGSLQWAGSAYVTILRNTPLTIIMVFMVLGAWGQLELTLATDFDLNFFWLAVVGLSIYHAAFVCEAIRSGVNTVPVGQAEAARSIGLSFLPSARLVILPQAFRGAIAPLGNVLIALIKNTTVAAAASVATETSSVMRTMIEFRPDYIYAIFFTFAIGYVILVTPVGLLSTSFSRRLAVAR	PGPT0000775_211	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000775-gluC-K10006	NA	NA
AK001_01052	948			hypothetical protein	ATGAGCGCCCAGACCGTCCTCTTCGACGCGCCCGGTCCCCGTGCCAAGCGCCGGATCCTGCTGGGCAACATCGTCGGTGCCGTCGTCGTCGCCGGCATCGCGGCTCTCGTGCTCGCCCGTCTGGCCGACAAGGGCCAGCTCGACGCGGACCTGTGGCTCGCCGCGGTGGACGCCGATGCCTGGGCCTACTACTACTGGCCGGGGTTCCTGGCCACCATGCGCGCGGCCGCCGTCGCGATCGTCGGCGCCTTCGCCTTCGGCCTGCTCTTCGGCGTGGGCCGGCTCTCCGCGCTGCTGCCGGTCCGGGTGGTGTGCGGCGCCGTCGTGGAGTTCTTCCGCGCCGTGCCGGTGCTGCTCATGATGGTGTTCTTCTGGCTGCTGCTCGCCAACGCCGGCGTCGACGACTCGGACTTCTGGGGGGTCGTCATCGGGCTGATCCTCTACAACGGGTCCGTCGTGGCCGAGCTGGTGCGTTCCGGTGTCCACGGCCTGCCCTCGGGTCAGCGCGAGGCCGCGCTGTCGACGGGACTGACGCGGGGCCAGTCGCTGCGGTCCGTCGAGGTCCCCCAGGCCCTCATCGCCATGCTGCCCGCGCTGCTCTCCCAGCTCGTGGTCGTGCTCAAGGACTCCGCCCTCGGCGCGATCATCACCTACCGCGAGCTCCTGCAGGAGGCCCGGCGCCTCGGCTCCGGCGAGGGCAACATCCTGCAGACCCTGGCCGTCGCCGCCGTGCTGTTCATCCTCATCAACTGGAGCCTGACCAAGCTGGCGGAGCGGCTGGGCAACTCCTTGCGGCGCACCTCGGGGCGGACCGGGACGATGGCGGCCGGTCTGGACGCCGGTGTCGGGGTGGGCGCGACGGCCCAGGCCGCCGAGCGCCCGCACGGGGTCGACGAGGGACCCGACGCCGGTCCCGGGGACCCCGGCCGACCGGGACGGTGGACCTGA	MSAQTVLFDAPGPRAKRRILLGNIVGAVVVAGIAALVLARLADKGQLDADLWLAAVDADAWAYYYWPGFLATMRAAAVAIVGAFAFGLLFGVGRLSALLPVRVVCGAVVEFFRAVPVLLMMVFFWLLLANAGVDDSDFWGVVIGLILYNGSVVAELVRSGVHGLPSGQREAALSTGLTRGQSLRSVEVPQALIAMLPALLSQLVVVLKDSALGAIITYRELLQEARRLGSGEGNILQTLAVAAVLFILINWSLTKLAERLGNSLRRTSGRTGTMAAGLDAGVGVGATAQAAERPHGVDEGPDAGPGDPGRPGRWT	PGPT0000780_71	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000780-gluD-K10007	NA	NA
AK001_01053	951			2-haloacrylate reductase	ATGCGCGCTGCCGTGCACGATCGGTACGGGCCGCCCGAGGTCGTGCGTGTCGAGGAGGTGCCCGACCCGGCGCCGGGCCCCGGTGAGATCCTCGTCCGGGTCCGGGCGACGACCGTGAACCGCACCGATACCGCGTACCGTGCGGGCCGTCCCTGGTTCGCCCGGGCGATGTACGGGCCGCGGCGCCCGCGGGCACGAGTGCTGGGGTGCGAGTACGCGGGCACAGTGGAAGCCGTCGGGGACGGCGTGCACGACCGCGGTGTCGGGGACCGCGTCTACGGCTACGTCGAAGGTCCCTTCGGGGCGCACGCCGAGCTGATGACGGTCCGCAGCGACGGTTGGGTCGAGACGATCCCCGACCACCTCTCCTTCGCGGAGGCGGCCACGGTGACCGAGGGCCCGCACTACGCCTGGGCGTTCTGCGAGCGGCTCCAGATCGGCCCGGACACGGACGTGCTCGTGCACGGCGCGACCGGGGCGATCGGTGCGGCTGCCGTCCAGCTGGCGGCGTCCTGCGGTGCGACGGTGACGGCGGTCTGCGACGCCGCGCACGCGGATCTCGTGCGCAGCCTGGGCGCCGACCGGGTCATCGCGCGCGACGAGGTGGACTTCACCCGCGACGCCGCCCGCTTCGACGTCGTCATGGACGCCGTGGGCAAGAGCTCGTTCGCCCGGTGCCGACGTCTGCTGCGTCCGCACGGCGTGTACGCCTCGTCAGAGCTCGGTCCCGGCGGCGTCAACCTCCTGCTCGCGCTGGCGCCGTGGGCCCGCGTGCGCTTTCCGGCGCCTGTCCCGGACGGACCCACGCGCCGCGTGCTGCACGAGCTGGTCACGGCTGAACGTCTCGTCCCGGTCGTCGATCGGCACTACGCGCTGGAGGACATCACGGCGGCGCACCGGTACGTCGAGTCCGGCCGCAAGGTGGGCAGCGTCGTCGTCGACGTCTCCTGA	MRAAVHDRYGPPEVVRVEEVPDPAPGPGEILVRVRATTVNRTDTAYRAGRPWFARAMYGPRRPRARVLGCEYAGTVEAVGDGVHDRGVGDRVYGYVEGPFGAHAELMTVRSDGWVETIPDHLSFAEAATVTEGPHYAWAFCERLQIGPDTDVLVHGATGAIGAAAVQLAASCGATVTAVCDAAHADLVRSLGADRVIARDEVDFTRDAARFDVVMDAVGKSSFARCRRLLRPHGVYASSELGPGGVNLLLALAPWARVRFPAPVPDGPTRRVLHELVTAERLVPVVDRHYALEDITAAHRYVESGRKVGSVVVDVS				NA	NA	NA	NA	NA
AK001_01054	498	recX	COG2137	Regulatory protein RecX	ATGGAGCTGACGCGGGAGGCCGTCCTGCGCACGCTCACCGCTGCGCCGAAGAGCCGGGTCGAGCTGGCACGGTCCCTCGCGCGCAAGGGGTACCCGGAGGATCTGGCGGAGCAGGTGCTCGACCGCCTTGAGGACGTCCACCTCGTCGACGACGCCGCGTACGCCGAGATGATCGTGCGGACCCGGCACGCGGAGCGTGGGCAGGCCCGGCGGGCGATCTCCGCCGAGCTGCACCGCCGGGGCGTCGACACCGAGACGGCGGCCACCGCCCTCGAGCAGATTGACGGCGACGACGAGCGCGCCGCCGCGGCCGAGCTGGCCCGCAAGCACGTCGCGCGGACGCAGGGTCTGGACCGGGACAAGCGCGTCCGGCGTGCCGTGGGGGCGCTGAGCCGGAAGGGGCACAACCCGTCGGTGGCCTTCGCCGCGGTCAAGGAGGCCCTGGCCACCGAGGGCGAGAATGACGACCTGGACGACATGGTGTCGTTCGACGACTAG	MELTREAVLRTLTAAPKSRVELARSLARKGYPEDLAEQVLDRLEDVHLVDDAAYAEMIVRTRHAERGQARRAISAELHRRGVDTETAATALEQIDGDDERAAAAELARKHVARTQGLDRDKRVRRAVGALSRKGHNPSVAFAAVKEALATEGENDDLDDMVSFDD	PGPT0007240_1471	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565	NA	NA
AK001_01055	1236	recA	COG0468	Protein RecA	ATGTCGGTGGCGGCGCGTAGCGTCGTCGTCGACATGAGCAGCAGACCGAAGACGCGCGGCCGCGCGCAGAACACGAAGGTGACCGACATGCCAGCACCGGAAGACCGTGAGAAGGCCCTCGAGGCCGCGCTCGCCCAGATCGACCGCAGCTTCGGCAAGGGCTCGGTCATGCGGCTCGGCCAGGAGGGGCGCGCCCCGGTGGACGTCATCCCCACCGGCTCCATCGCCCTCGACGTGGCCCTCGGCATCGGCGGCCTGCCCCGTGGCCGCGTGATCGAGGTCTACGGCCCCGAGTCCTCCGGCAAGACGACCGTCGCCCTGCACGCGGTCGCCAACGCCCAGAAGAACGGTGGCATCGCCGCCTTCGTCGACGCCGAGCACGCCCTGGACCCCGAGTACGCCAAGAAGCTCGGCGTGGACACCGACGCGCTGCTCGTCTCCCAGCCCGACACCGGTGAGCAGGCCCTGGAGATCGCGGACATGCTGATCCGCTCGGGCGCGCTCGACATCATCGTCATCGACTCCGTCGCCGCCCTGGTGCCCAAGGCGGAGATCGAGGGCGAGATGGGTGACAGCCACGTCGGTCTGCAGGCCCGCCTGATGTCGCAGGCGCTGCGCAAGATCGCCGGTGCGCTGAGCTCGTCGGGCACCACGGCGATCTTCATCAACCAGCTCCGCGAGAAGATCGGCGTGTTCTTCGGCTCTCCCGAGACGACCACGGGTGGTAAGGCGCTGAAGTTCTACGCCTCGGTGCGTATGGACATCCGCCGCATCGAGACCCTCAAGGAGGGCACCGACTCCGTCGGCAACCGCACCCGCGTCAAGGTCGTCAAGAACAAGATGGCGCCCCCGTTCAAGCAGGCCGAGTTCGACATCCTCTACGGGGTCGGGATCTCCCGCGAGGGCGGTCTGATCGACATGGGCGTCGAGCACGGGTTCGTGCGCAAGTCCGGGTCGTGGTTCACCTACGGCGGGGACCAGCTCGGTCAGGGCAAGGAGAACGCCCGCTCGTTCCTGCGGGACAACCCGGACCTGGCGAACGAGCTGGAGAAGAAGATCAAGGAGAAGCTCGGCGTCGGCCCGCAAGTGGATGCCCCGGCCGACGGTGACGCCCCCGCGGGCGAGACCGCAACGGCCGGCGCGGCCGGCGCGGCCGACGAGAAGGCGCCGGCGAAGGCGCCCGCGGCGAGCAAGAGCGCCGGCCGCATGGCCGCGAAGAAGAAGGCGCCCTTCTGA	MSVAARSVVVDMSSRPKTRGRAQNTKVTDMPAPEDREKALEAALAQIDRSFGKGSVMRLGQEGRAPVDVIPTGSIALDVALGIGGLPRGRVIEVYGPESSGKTTVALHAVANAQKNGGIAAFVDAEHALDPEYAKKLGVDTDALLVSQPDTGEQALEIADMLIRSGALDIIVIDSVAALVPKAEIEGEMGDSHVGLQARLMSQALRKIAGALSSSGTTAIFINQLREKIGVFFGSPETTTGGKALKFYASVRMDIRRIETLKEGTDSVGNRTRVKVVKNKMAPPFKQAEFDILYGVGISREGGLIDMGVEHGFVRKSGSWFTYGGDQLGQGKENARSFLRDNPDLANELEKKIKEKLGVGPQVDAPADGDAPAGETATAGAAGAADEKAPAKAPAASKSAGRMAAKKKAPF	PGPT0007235_376	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553	NA	NA
AK001_01056	234			hypothetical protein	GTGCTCTACTCCGACTTCACCCAGCTCGTCGACGAGGTGTTCGGCCGGGCCTACGGGCGCACCCTCGTGCGCGAGCAGGTGCTGCCCCGCCTCGGCGACCGGACGCCCGCCGAGGCGCTCGACGCCGGGACGGACCCCCGCGACGTGTGGCACGCCCTGTGCGACGCCCTGGACGTCCCGGACCGCGAGCGGTGGGGGACCGACGAGCACCGGCAGGCCCCGCCGCCGCGCTGA	MLYSDFTQLVDEVFGRAYGRTLVREQVLPRLGDRTPAEALDAGTDPRDVWHALCDALDVPDRERWGTDEHRQAPPPR				NA	NA	NA	NA	NA
AK001_01057	4704	rhlE_2		ATP-dependent RNA helicase RhlE	GTGCACCATGGGCTGGTGGCCACCGACCCGCTCGCCCGCTTCGCCCCCGCGACCCGGGCCTGGTTCCGCGACGCGTTCGCGGGCCCCACGACGGCGCAGGTGGGCGCCTGGGAGGCCGTCGAGGCGGACCGGCACGCGCTCGTGGTCGCGCCCACGGGCTCGGGCAAGACGCTGGCCGCGTTCCTCTGGGCGATCGACCGCCTGACGTCCACGCCACCGCCGGCGGAGCCCGCGCACCGCTGCCGGGTGCTGTACGTCTCCCCCCTCAAGGCGCTGGCGGCCGACGTCCAGCGCAACCTGCGCGCTCCCCTGACGGGGATCCGCCGGGCCGCCGACCGGCTGGCGGTCGGTGCCCACGAGGTGCACGTGGGGATGCGCACCGGCGACACGCCTCCCGCCGAGCGCCGCGCCTTCGCCACCCGTCCCCCGGACGTCCTCGTCACGACGCCCGAGTCGCTGTTCCTCGTGCTGACCTCGGCGGCCCGCGCCGGCCTGGCCGGCGTCGAGACGGTGATCGTCGACGAGATCCACGCGCTGGCGGGCACGAAGCGTGGCGCGCACCTGGCCGTCAGCCTCGAGCGGCTCGACGCCCTGCTGCCGCGCCCCGCCCAGCGCATCGGCCTGTCGGCCACCGTGCGTCCGGCCGAGGAGGTCGCCGGGTTCCTCGGCGGGAGCCGTCCGACGACGGAGGGCGGCCGCGAGGTCGTCGTCGTCCAGCCGCCGTCCGAGAAGCGCTGGGACCTGGACGTCGCCGTCCCCGTCCCCGACCTGACCGACCTCGGCGGCGACGAGGAGCCCGACCTGTCCGGGGCCGCGAGCGGTCCGCAGCGGCAGGCCTCGATCTGGCCGCACGTGACCGACCGGGTCGTCGACCTCGTCACCGACCACCGCTCGACCCTGGTGTTCACCAACTCCCGGCGCGGGGCGGAGCGGCTCACCGCCCGCGTCAACGAGACCTGGGCGGAGCGCGAGGGGACGGCCGCGCCCGACGCCGGGGCGGAGCAGGCGGCCGGGACACCCGGCCAGTCGGGCACGGCGGCGGCCCTGGAGCCCGGGGTCCCGGTCCTCGCCCGCGCCCACCACGGCTCGATGAGCCGGACCGAGCGCACGCGGACCGAGTCCGACCTCAAGGCGGGGCTGCTGCCCGCCGTGGTCGCGACGTCGTCCCTGGAGCTCGGCATCGACATGGGGGCGGTGGACCTCGTCGTCCAGGTCGGCGCCCCGCCGTCGGTGGCCAGCGGCCTGCAGCGCATCGGTCGGGCCGGGCACCAGGTCGGGGCCGTCTCGCGCGGCGTGGTCCTGCCCACGCACCGGGGCGACCTCGTCCCGGCGACGGTGGTCACCCAGCGCATGCGCTCCGGCGACATCGAGCCCCTGCGGGTCGTGTCCACGCCGTTGGACGTGCTCGCCCAGCAGGTCGTGGCCGCGCTCGCCGTCGACGACTGGGACGCCGACGAGCTGCTCGGCACGTTCCGTCGGGCCGCGCCTTTCGCCGCCCTCGGCGACGCGACGTGGCACGCGGTGCTCGACATGCTGGCCGGGCGCTACCCCAGCGAGGAGTTCGCCGAGCTGCGGCCGCGGATCGTGTGGGACCGGGCCACGGGGCGGCTCACGGCCCGTCCCGGTGCCCTGCGGCTGGCCGCCACCAGCGGCGGGACCATCCCCGACCGCGGCCTCTACGGCGTCTACCTGGCCGGCGACGACGGCGGGCGCGGCGGCAAGCGTGTCGGCGAGCTCGACGAGGAGATGGTCTACGAGTCCCGCGCCGGGGACACCTTCACCCTCGGGTCCTCGACCTGGCGGGTCGAGGAGATCACCCCGGACCGCGTGCTGGTCACCCCGGCACCGGGCCTGCCCGGCCGCCTGCCGTTCTGGCGGGGCGACTCCCCCGGCCGTCCTGTCGCTCTGGGGCGGGCCGTCGGCGCGTTCCTGCGGGAGGCCGACGAGCACCTCGCCGACGACGCCGAGAAGGGCCGCGCCCACCTGCGCGAGGCGGGCCTGGACGCGTGGGCCGCCGACAACCTCGCCGGCTACCTCACCGAGCAGCGCGCCGCGACCGGTCGCGTCCCCGACGACCGCACCGTCGTCGTCGAGCGCTTCCGCGACGAGCTCGGCGACTGGCGGGTCGTGGTCCACTCCCCGCTGGGCGCCCGCGTCCACGAGCCCTGGGCGCTGGTGGTCGGCGCGCGGCTGCGGGAGCGCCTGGGCACCGACGTCGCCGCCATGGCCGCCGACGACGGGATCGTGCTGCGCCTGCCCGGCGACTCGCCGTGGGACCTCGACGCCGCGACGGCACGGCCCGAGGTCACCACGGCCGACCTCCTCGTCGAGCCGGACGAGGTCGACGCGGCCGTCCGTGCCGAGCTCGGTTCCTCGGTGCTGTTCGCGTCCCGGTTCCGCGAGGCGGCGGCCCGCGCCCTGCTGCTGCCCCGCCGTCGTCCCGACCGCCGCGCCCCGCTGTGGCAGCAGCGCCAGCGGGCCGCCCAGCTGCTGCAGGTCGCCTCGGCCTACCCGGACTTCCCGATCATGCTCGAGGCGGCCCGCGAGTGCCTGCAGGACGACTTCGACGTCGCCGCCCTGCGCGCGCTGATGACCGACCTGGCCGCGGGAGACGTCCGGCTCGTCGAGATCTCCACCGAGGGACCCTCGCCGTTCGCCCGGTCGCTGCTGTTCGGGTACACCGCCCAGTTCCTGTACGACGGCGACGCGCCGCTCGCCGAGCGCCGGGCCGCCGCGCTCTCGCTGGACCCGACGCTGCTGGCCGAGCTGCTCGGCGAGCAGGGCGCGACCGACCTCTCCGACCTGCTGGATCCCCAGGTGGTCGAGCGGACCGAGGCCGAGCTGCAGGGGCTCGCCCCCGACCGCCGTGCGACCGACGCCGAGGGGGTCTGGGACCTGCTGCGCCGCACCGGACCGCACGGGCTCGAGGAGGTGCGCCGCCGGGTGGCCGACGACGTCACCGGCGCGGTCCCCGACTGGCTCGCCGCGCTGGAACGGGACCGCCGGGCCATCCGGGTCCGCGTCGCCGGCACCGAGCAGTGGGCGGTCGCCGAGGACGCCGGCCGGTTGCGCGACGCGCTCGGGGTGGCACCGCCCGCGGGCCTGCCGGACGCCGTCATGGCGCCCGCCGCCGACCCGCTGACGGACCTGCTGCGCCGCCACGCCCGCACGCACGGGCCGTTCACGGCGGCCGGGGCCGCGCACCGGTTCGGGCTCGGCATCGCCGTGGTGACCGCGGTGCTGTCCCGGCTGGAGCGGGACGGCCGGCTGACCCGCGGCGCCCTGCGGCCCGAGGTGATCGGCGGCACCGGCGACGAGTTCTGCGACCCGCAGGTGCTGCGGACCCTGCGGCGGCGTTCCCTGGCCGCGCTGCGCGCCGAGGTCGAACCCGTGGAGCCGGAGGCGCTGGGCGTGTTCCTGCCCCGCTGGCAGGGCACCACCGGACCGCGGCTGCGGGGCACCGACGGTCTGCTCCGGGCGGTCGAGCAGCTCGCGGGTGCCGCGGTGCCCGCCTCGGCGCTGGAGACGCTGGTGCTCCCCGCCCGGGTCGCCGACTACTCCCCCGCGCTGCTGGACGAGCTGACCACCACCGGCGAGGTCGTCTGGGCCGGCCACGCCGCGCTGCCCGGCACGGACGGCACCGTGAGCCTGCACCTGGCCGAGGACGCCCCGCTGACGCTGGCGCAGCCGGCGCCCCTGGGTCCCGAGAGGACGCTGGACACCGACCTGCACCGGGTGCTGCTCGACCTGCTCACGTCGTCGGGCGGCTTCTTCCTGCCCCGCCTCGTCGAGCTCGCGGACGCCTCGGCCGAGGACGTGCTCGAGGCGCTGTGGGACCTCGTCTGGGGCGGGCACGTCACCAACGACGGGCTGGCCGTGCTGCGGGCGCGGCTCGGCACGGGCGGTGGCGCGCACCGGGCACCCCGGCAGCCGGGGCGCGCCCGCCCCGTGCGGCGGTCCCGCTTCGCCATGGCCCGCTCCACCGTGCCGCCGGCGGGAGCCGGCCGCTGGTCCGCGCTGCCGACCCGAGAGCAGGACGCGACGGTGCGCACGCACGCCCTGGCCCAGGTGCTGCTGGACCGGCACGGCGTCCTGACGCGTGCCGTCGCGCCGTCCGAGCACGTGGCCGGACAGTTCCGGGAGGTCTACCGGGTGCTCACCGGGCTCGAGGAGCGCGGGGCGGTCCGGCGCGGGTACTTCGTCGAACGGCTGGGCGGCGCGCAGTTCGCCCTGCCCGGTGCGGTCGACCGGCTGCGCGTGGACGCCGGGGACCGCGACCGGGTCCGCGACGACCCCGACGCCGCACCGCCCGGCCTGCTGCTCGCCGCGACCGACCCCGCCAACCCGTACGGGGCGGCGCTGCCGTGGCCGGGCACCACCCCGGGGCCGGGTGACGCCCCCGGCGGCCACCGGCCCGGCCGCAAGGCGGGGGCCGTGGTGGTGCTGACGAACGGCGAGCCGGCGATCTACGTCGAACGGGGCGGCCGCACGGTGCTGACGTTCACCACGGAGCCGGCCGCCCTCGAGGTCGCGGCGGCGACGCTGGCCGACCATGCGCGCCAGGGGCGGCTGGGCCGGCTCGTGGTGCAGCGGATCGACGGCGTGGCGTCCCTGGAGGCCGTCCGGACACCGTCCGCGGCCGTCGGGGCGCTGCTGGGGGCGGGTTTCTCGGTCACGCCCCGCGGCCTGCGGGTGGCGGTCTGA	MHHGLVATDPLARFAPATRAWFRDAFAGPTTAQVGAWEAVEADRHALVVAPTGSGKTLAAFLWAIDRLTSTPPPAEPAHRCRVLYVSPLKALAADVQRNLRAPLTGIRRAADRLAVGAHEVHVGMRTGDTPPAERRAFATRPPDVLVTTPESLFLVLTSAARAGLAGVETVIVDEIHALAGTKRGAHLAVSLERLDALLPRPAQRIGLSATVRPAEEVAGFLGGSRPTTEGGREVVVVQPPSEKRWDLDVAVPVPDLTDLGGDEEPDLSGAASGPQRQASIWPHVTDRVVDLVTDHRSTLVFTNSRRGAERLTARVNETWAEREGTAAPDAGAEQAAGTPGQSGTAAALEPGVPVLARAHHGSMSRTERTRTESDLKAGLLPAVVATSSLELGIDMGAVDLVVQVGAPPSVASGLQRIGRAGHQVGAVSRGVVLPTHRGDLVPATVVTQRMRSGDIEPLRVVSTPLDVLAQQVVAALAVDDWDADELLGTFRRAAPFAALGDATWHAVLDMLAGRYPSEEFAELRPRIVWDRATGRLTARPGALRLAATSGGTIPDRGLYGVYLAGDDGGRGGKRVGELDEEMVYESRAGDTFTLGSSTWRVEEITPDRVLVTPAPGLPGRLPFWRGDSPGRPVALGRAVGAFLREADEHLADDAEKGRAHLREAGLDAWAADNLAGYLTEQRAATGRVPDDRTVVVERFRDELGDWRVVVHSPLGARVHEPWALVVGARLRERLGTDVAAMAADDGIVLRLPGDSPWDLDAATARPEVTTADLLVEPDEVDAAVRAELGSSVLFASRFREAAARALLLPRRRPDRRAPLWQQRQRAAQLLQVASAYPDFPIMLEAARECLQDDFDVAALRALMTDLAAGDVRLVEISTEGPSPFARSLLFGYTAQFLYDGDAPLAERRAAALSLDPTLLAELLGEQGATDLSDLLDPQVVERTEAELQGLAPDRRATDAEGVWDLLRRTGPHGLEEVRRRVADDVTGAVPDWLAALERDRRAIRVRVAGTEQWAVAEDAGRLRDALGVAPPAGLPDAVMAPAADPLTDLLRRHARTHGPFTAAGAAHRFGLGIAVVTAVLSRLERDGRLTRGALRPEVIGGTGDEFCDPQVLRTLRRRSLAALRAEVEPVEPEALGVFLPRWQGTTGPRLRGTDGLLRAVEQLAGAAVPASALETLVLPARVADYSPALLDELTTTGEVVWAGHAALPGTDGTVSLHLAEDAPLTLAQPAPLGPERTLDTDLHRVLLDLLTSSGGFFLPRLVELADASAEDVLEALWDLVWGGHVTNDGLAVLRARLGTGGGAHRAPRQPGRARPVRRSRFAMARSTVPPAGAGRWSALPTREQDATVRTHALAQVLLDRHGVLTRAVAPSEHVAGQFREVYRVLTGLEERGAVRRGYFVERLGGAQFALPGAVDRLRVDAGDRDRVRDDPDAAPPGLLLAATDPANPYGAALPWPGTTPGPGDAPGGHRPGRKAGAVVVLTNGEPAIYVERGGRTVLTFTTEPAALEVAAATLADHARQGRLGRLVVQRIDGVASLEAVRTPSAAVGALLGAGFSVTPRGLRVAV				NA	NA	NA	NA	NA
AK001_01058	801	nei	COG0266	Endonuclease 8	ATGCCCGAGGGGGACGTGCTGCGGCTGACGGCCGAACGCCTCGACCAGGCGCTGCGGGGCGGGCCGCTGGTGCGCGCCGAGCTGCGCTGGCCGAACGTCGGCGGGGCCGAGCTGACGGGTCGGACGGTCACGGGCTGCGTCTCGTACGGCAAGCACCTGCTGACCCGCTTCGACGACGGCCGCACCCTGCACACCCACCTGCGGATGGAGGGCGCGTGGCGGGTGGTGCCGACCGACGGCCGCACCTCGGCCGCGGGCCATCCGCAGGTGCGCGCCGTGCTGTCGACCGCCCGCTGGACCGCCGTGGGGTGGCGGCTCGGCATGCTGGACCTGCTGCGGACCCGGGACGAGCCGCGCCTGCTCGCTCATCTGGGACCGGACGTGCTCGCCGACGACTTCGGCACCCACGGGCTGCCCGAGGCCCTCGACCGGTGGCATGCCCAGGGGGACCGCCCGCTGTGCGACGTCCTGCTGGACCAGGCCGTCGTGGCCGGGCTCGGGACGATCTGGATGGCGGAGTCGCTCTTCGCGCGACGGCTGCACCCGTGGATCCCGGCCGACTCCCTGTCCGAGGACGAGGTGCGCGGCCTGCTCGTCACGGCGCGCCGGCTCGTGGGGGGCAGCGTCGAGATCGGCCGCCGCCGTGGTCTGGGCGAGGTGCCGCGGTCCGTGCACGGGCGACTGGGCCGACCCTGCCGACGGTGCCGGACGCCGATCGCCGTCGGGCAGGCCAACGAGCCGCCGTACGAGCGGCCGGTGTTCTGGTGCCCCACGTGCCAGGCGGTCAGCCGACCGGCGTGA	MPEGDVLRLTAERLDQALRGGPLVRAELRWPNVGGAELTGRTVTGCVSYGKHLLTRFDDGRTLHTHLRMEGAWRVVPTDGRTSAAGHPQVRAVLSTARWTAVGWRLGMLDLLRTRDEPRLLAHLGPDVLADDFGTHGLPEALDRWHAQGDRPLCDVLLDQAVVAGLGTIWMAESLFARRLHPWIPADSLSEDEVRGLLVTARRLVGGSVEIGRRRGLGEVPRSVHGRLGRPCRRCRTPIAVGQANEPPYERPVFWCPTCQAVSRPA				NA	NA	NA	NA	NA
AK001_01059	330			hypothetical protein	ATGGTCGTCCTGCGACAGGAGATCGGTGACGTGCTGCGCGACGCGCGGCAGCGTCAGGGGCGCACCCTGCGAGAGGTGTCCTCGGCCGCACGGGTCTCGCTCGGCTACCTCAGCGAGGTCGAGCGCGGGCAGAAGGAGGCCTCCTCCGAGCTGCTGGCCTCCATCTGCGAGGCCCTCGACATCCCGCTGTCCCTCGTGCTGCGCGAGGTGAGCGACCGGATCGCGGTCGCCGAGGGGCTGCTGGTCCCGGACACGATCCCCACGGACGTGCTCGCCGGGATGCTCTCCCGCGGCGCCGTCGAGCGCGAGGACCTCACGCCGGTCGGCTGA	MVVLRQEIGDVLRDARQRQGRTLREVSSAARVSLGYLSEVERGQKEASSELLASICEALDIPLSLVLREVSDRIAVAEGLLVPDTIPTDVLAGMLSRGAVEREDLTPVG				NA	NA	NA	NA	NA
AK001_01060	474	cinA	COG1058	Putative competence-damage inducible protein	ATGACGGCCCGCGAGGTCCTGGCGGCGGTGGCCGCGAGGGGATGGACGCTCGGCGTCGCCGAGTCGCTGACCGCGGGCATGGTCGCGGCCGAGCTCGCCACGGTGCCGGGCGCCTCCGCCGTCCTGCGCGGCGGTGTCGTCGCCTACGCGACGGACCTGAAGGCGTCGTTGCTGGGGGTGGACGCGGACCTGCTGGCCGCCCGGGGGGCCGTGGACCCCGACGTCGCCGGTGCGATGGCCACGGGCGCGCGTTCCGCGACGGGGGCGGACGTCGGGCTCGCCACGACCGGGGTCGCCGGGCCGGACCCCCAGGACGGCCGGGCTCCCGGGCTCGTCTTCGTCGCCGTGGCCACGCCGACGACCATCGAGGTGCGCCGGTGCGACCTGGACGGCGACCGCGCCGCGGTCCGTGCGGGGGCGGTCGCGGCGGTCCTGGACCTCTGCGCAGCGGTGCTGGGTGACGCAGCCGCGTGA	MTAREVLAAVAARGWTLGVAESLTAGMVAAELATVPGASAVLRGGVVAYATDLKASLLGVDADLLAARGAVDPDVAGAMATGARSATGADVGLATTGVAGPDPQDGRAPGLVFVAVATPTTIEVRRCDLDGDRAAVRAGAVAAVLDLCAAVLGDAAA	PGPT0013460_3010	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743	NA	NA
AK001_01061	648	pgsA		CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase	ATGCCGGACGCCGCACCTTCGCCCTGGAACATCGCGAACATCGTCACGATGATCCGCATCGCTCTCGTCCCCGTCTTCGCGGCGGCCCTGCTGGTCGACGGCGGCGAGTCGATGCTCTGGCGCCTCGTGGCGACGGGCATCTTCCTGCTGGCCGCGCTCAGCGACAAGGTCGACGGCCACCTGGCGCGGTCGCGCGGGCTCGTGACGGACCTGGGCAAGCTCCTGGACCCGATCGCCGACAAGGCCCTGGTGGGGACCGCGCTCGTCCTGCTGTGGTGGCCGCTCGGCGAGCTGCCCTGGTGGGTGCCGACGATCATCCTGGCGCGCGAGCTGGGGATCACGCTGATGCGCATGGCCGTCCTGAAGTACGCGGTGATGCCGGCCTCGCGCGGCGGCAAGATCAAGACGGTGCTGCAGGTCGTGGCGATCTCGCTGTTCCTGCTGCCCCTGGCCCACCTGCCGGCCGAGGTCCGGGACGTCGCGTGGGTCGCCATGTGGGCGGCGATCGCGGTCACCGTCGTGACCGGTGTCGACTACGCCGTCCAGGGGCTGCGCCTGCGGCGCCGAGCCCGGCAGGAGGGCACGGACTCCGCCCCCGAGGACGGGCCGGCCGACGGTGCGTCGGGAGCGCCCCGGACCGAGGGATGA	MPDAAPSPWNIANIVTMIRIALVPVFAAALLVDGGESMLWRLVATGIFLLAALSDKVDGHLARSRGLVTDLGKLLDPIADKALVGTALVLLWWPLGELPWWVPTIILARELGITLMRMAVLKYAVMPASRGGKIKTVLQVVAISLFLLPLAHLPAEVRDVAWVAMWAAIAVTVVTGVDYAVQGLRLRRRARQEGTDSAPEDGPADGASGAPRTEG	PGPT0007705_3138	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995	NA	NA
AK001_01062	1287			hypothetical protein	GTGGCCGACGACGTCCCACGCAGGGTCACCCTGCGGGTCCTCGTGGTCGCCGCCGTGGCGGCGACGACGGCCTGCGGCCTGGTCGCACCGCCGGAGCCCGCACCGGCGCCCACGACGACGGTCGCGCCGTCCACCGCCCGTGCCAAGATCGCTCCCCCGGACCCCGTCCTGCCGGCGGTCTTCACGGTGCTCGCCGCCGGTGACCTGCTCCCGCACGGGCCGGTCGTGCGCTCCGCCCGCGGGGGCGACCGCTTCGGCCGGCTGCTGGCCGACCTGGACCCGTGGGTGGCCGGGGCCGACCTCGCCCTCTGCCACCTCGAGGCGCCCGTCGCGCCGCGAGGCACCGCACCGAGCGGCTACCCCGTCTTCGGTGCTCCGCGACAGCTGGTCCCGGCTCTGGCCGCGCAGGGGTGGGACGGCTGCTCGACGGCGTCGAACCACGCCCTCGACCGGGGCTACACCGGCGTCGTGACCACCCTGGACGCGCTCGACGACGCCGGGATGGGCCATGCCGGCACGGCCCGCTCACACCGCGAGCAGAGGTCGGCCCAGCACTACCGCCTCCAGCGGTCCGACCGGGACCTGGTCGTGGCGCACCTGTCGGCCACCTACGGCCTCAACGGCTTCCCGGTGCCGGCCGAGGCGCCGTGGGCGGTCGACCTCATCGAGGCGGAGGCGCTCGTCACCGCTGCGCGCACCGCCCGGCGTGACGACGGTGCCGACGTCGTGCTCGTCAGCCTGCACGCCGGCACCGAGTACACCGAGCGGCTCACCGCCCAGCAGGAGGACGTGGCCGCCGCCCTGGCCGCCTCGCGTGCGGTCGACCTCGTCGTCGGGCACCACGCGCACGTACCCCAGCGGATCGAGCGGCTCGACGGCGGGCCGCACCGGGCCGGCATGTGGGTCGCCTACGGGCTGGGCAACCTGCTGTCGAACCAGAGCGCGTCCTGCTGCGACCCCCGGAGCAGCAGCGGTGTGCTGCTGACCGCCACCGTCACCGAGGAACGGCCGGCCGAGCCGGCACTCGTCACCGACGTCCGCTGGACGGCCACGACCGTGGACATCCCGGCGGGGCACCGCGTGCACGCGTTGGGACGCCGGCTCGACGCCGGGGCCACGACGCTGGACCGCCGCGAGCTGAGGACCCGCCACGACCGGGTCGCCGAGGCGGTCGGTCCGCAGGCCCGTGAGCGTCGGCGCCCGCCGGAGCCGACCGGCGGGACCCCCGCCGTCATGCCCCGGGACCCCGCCGTCCTGCCCCGGGACCCCGCCGTCCGGGACCGCTGA	MADDVPRRVTLRVLVVAAVAATTACGLVAPPEPAPAPTTTVAPSTARAKIAPPDPVLPAVFTVLAAGDLLPHGPVVRSARGGDRFGRLLADLDPWVAGADLALCHLEAPVAPRGTAPSGYPVFGAPRQLVPALAAQGWDGCSTASNHALDRGYTGVVTTLDALDDAGMGHAGTARSHREQRSAQHYRLQRSDRDLVVAHLSATYGLNGFPVPAEAPWAVDLIEAEALVTAARTARRDDGADVVLVSLHAGTEYTERLTAQQEDVAAALAASRAVDLVVGHHAHVPQRIERLDGGPHRAGMWVAYGLGNLLSNQSASCCDPRSSSGVLLTATVTEERPAEPALVTDVRWTATTVDIPAGHRVHALGRRLDAGATTLDRRELRTRHDRVAEAVGPQARERRRPPEPTGGTPAVMPRDPAVLPRDPAVRDR				NA	NA	NA	NA	NA
AK001_01063	2568			hypothetical protein	ATGGTGCGCGGCGCCTACCTGGGCGTCGCGCACGGCCTGGGTGCCCTGACCCGCACGATCACCAAGGGAGCGAGAGACCTGGAACCCGAGCACCGCCGAGACGGCGTCGCCTTCTTCCTCATCGCGATCGCCCTCGTCGTGGCGGCCCGCGAGTGGTGGGGCATCCCCGGGGCCTTCGGCACCTGGGTCCACGCGGTCGTCGCCGGGACGGTCGGGCTGGCGGGCGTCGCGATCCCCGTCCTGCTCATCTGGATCGGCGTGCGGATCATGCGTCACCCCGAGCGGGGCCACGCCAACTCCCGCGTGGCCATCGGGGTGAGCCTGCTCGTGGTCTCCGTCTGCTCGCTGGTGGCCATCGCCGAGGACACCCCGTCCCCGCGGGACGGGTTCGACCAGGTGCAGGACGCCGGCGGCATCATCGGCTACCTCGCGGCGACGCCCGTCGTCATCGGCGTCACGGCGTGGGTGGCCGTGCCGCTGTTCCTGCTGCTCGGCTTCTTCGGGCTCCTCGTCGTCACCGCGACCCCCGTGCACCGCATCCCCGAACGGGTGCGGGGGCTGTACGACCGCCTCACGGGCAACCACGGCTCCGCCGCGGACGACGGCGGGCTCGAGCTCGCCGACGGCGTCTCCCAGCACGACGGCACCGACGAGAAGCCCGCCCGCAAGAAGCGCACCAAGCGGGTGCGCTCCACCCGCGCCGAGCGCGCCGCGAAGGCGGCCGCCGGCGACCTCGACGAGTACGCCGGCGACCAGGCCTTCGACAAGGCGGCCACCCTCGACCCGGCCGGCCCGTCGGCGCCGGCCGGCGCCGACGACCCGGGGGCGACCCAGGTGATCGCCACGGGGGCGACGGCGTCGCCAGCCCCGGCGGACAGCGCCCCAGCGGCGCCGTCGGGGCCGGCCGCACCGGAGCCGTTGCCCGCTCCCCAGGGGCGGGCGGAGCAGCCGATGCTCTCCGGCGACACGGTCTACCTGCTGCCGTCGGAGGACGCGCTGGTCCAGGGCGCGCCGCACAAGAGCCGCTCGGCGGCCAACGACCGCGTGGTGGCCGCCCTCGAGCAGACCTTCGAGCAGTTCGGCGTGGACGCCCAGGTCACCAACTTCACCCGGGGGCCCACGGTCACCCGGTACGAGGTGGAGGTCGGCCCGAAGACCAAGGTCGAGCGCATCACCGGGCTGAGCAACAACATCGCCTACGCGGTCGCCAGCGCCGACGTGCGGATCCTGTCGCCGATCCCCGGCAAGTCCGCGATCGGCATCGAGATCCCGAACACCGACCGCGAGACGGTCGTGCTCGGGGACGTGCTGCGATCGTCGGCGGCCCGCCGCACCGAGCACCCGATGGTCATGGGTGTGGGCAAGGACGTCGAGGGCGGTTTCGTCGTGGCGAACCTGGCCAAGATGCCGCACATCCTCGTCGCCGGTGCGACCGGCGCCGGCAAGTCGAGCTTCATCAACTCGATGATCACCTCGATCCTCATGCGTGCCACCCCCGAGCAGGTGCGACTGATCCTCGTCGACCCCAAGCGGGTCGAGCTCACGCTGTACGAGGGCATCCCGCACCTGATCACGCCGATCATCACGAGCCCGAAGAAGGCGGCCGAGGCGCTGGACTGGGTCGTGCGCGAGATGGACGCCCGGTACGACGACCTGGCGACGTTCGGGTACAAGCACATCGACGACTTCAACGCCGCCGTGCGGGCCGGCAAGGTGACGCCGCCGCCGGGCTCCGAGCGCAAGGTCGCCGCCTACCCGTACCTGCTGGTCGTCGTGGACGAGCTCGCCGACCTGATGATGGTCGCGCCGCGGGACGTCGAGGCCGCGATCCAGCGCATCACCCAGCTCGCGCGGGCCGCGGGCATCCACCTCGTGCTGGCCACGCAGCGTCCCTCCGTGGACGTCGTGACCGGTCTGATCAAGGCGAACGTGCCCTCGCGGCTGGCGTTCGCGACGTCGTCCCTGGCCGACTCCCGCGTCGTGCTCGACCAGCCGGGCGCCGAGAAGCTCATCGGTCAGGGTGACGCGCTGTTCCTGCCGATGGGCGCCTCCAAGCCGATGCGCGTCCAGGGGGCGTGGGTCAGCGAGTCGGAGGTGCACGCCGTCACCGAGCACGTGAAGTCGCAGCTCAAGCCGATCTACCGCGAGGACGTCACCGCCCCGGCGGCCGCCAAGAAGCAGATCGACGAGGACATCGGCGACGACCTCGACGTGCTGCTGCAGGCGACCGAGCTCGTGGTGTCGACGCAGTTCGGTTCGACGTCGATGCTGCAGCGCAAGCTGCGCGTCGGGTTCGCCAAGGCCGGCCGGCTGATGGACCTGCTCGAGTCGCGCGAGATCGTCGGACCCTCCGAGGGGTCGAAGGCGCGCGAGGTGCTCGTCCAGCCCGAGTCCCTGTCGTCCGCGCTCGCCCTGATCCGCGGGGAGACGCCGTCCGCCTACGACCAGGACGCCGAGACCGCGGCCTCGGGGGACCGGTACTCCGACGGCACCGACGGTCACCGGCCGCCCACGGCGACCGACTACCACGACGGCGCCGACACCGACGCCGAGCACCCCGTCCGCTGA	MVRGAYLGVAHGLGALTRTITKGARDLEPEHRRDGVAFFLIAIALVVAAREWWGIPGAFGTWVHAVVAGTVGLAGVAIPVLLIWIGVRIMRHPERGHANSRVAIGVSLLVVSVCSLVAIAEDTPSPRDGFDQVQDAGGIIGYLAATPVVIGVTAWVAVPLFLLLGFFGLLVVTATPVHRIPERVRGLYDRLTGNHGSAADDGGLELADGVSQHDGTDEKPARKKRTKRVRSTRAERAAKAAAGDLDEYAGDQAFDKAATLDPAGPSAPAGADDPGATQVIATGATASPAPADSAPAAPSGPAAPEPLPAPQGRAEQPMLSGDTVYLLPSEDALVQGAPHKSRSAANDRVVAALEQTFEQFGVDAQVTNFTRGPTVTRYEVEVGPKTKVERITGLSNNIAYAVASADVRILSPIPGKSAIGIEIPNTDRETVVLGDVLRSSAARRTEHPMVMGVGKDVEGGFVVANLAKMPHILVAGATGAGKSSFINSMITSILMRATPEQVRLILVDPKRVELTLYEGIPHLITPIITSPKKAAEALDWVVREMDARYDDLATFGYKHIDDFNAAVRAGKVTPPPGSERKVAAYPYLLVVVDELADLMMVAPRDVEAAIQRITQLARAAGIHLVLATQRPSVDVVTGLIKANVPSRLAFATSSLADSRVVLDQPGAEKLIGQGDALFLPMGASKPMRVQGAWVSESEVHAVTEHVKSQLKPIYREDVTAPAAAKKQIDEDIGDDLDVLLQATELVVSTQFGSTSMLQRKLRVGFAKAGRLMDLLESREIVGPSEGSKAREVLVQPESLSSALALIRGETPSAYDQDAETAASGDRYSDGTDGHRPPTATDYHDGADTDAEHPVR	PGPT0030468_3205	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466	NA	NA
AK001_01064	1686	rnj	COG0595	Ribonuclease J	GTGAGTCACCCTCACCCCGAACTTCCCCTGCCCCCCGAGCTGCCGGCCGACGGTCTGCGGATCGTCGCCCTCGGCGGGCTGGGAGAGGTCGGCCGCAACATGGCCGTCCTCGAGCACCGCGGACGGCTGCTCATCATCGACTGCGGCGTCCTCTTCCCGGAGGACCACCAGCCCGGCGTCGACCTCATCCTGCCCGACTTCGAGTACATCGCCGACCGCATGGACGACGTCGAGGCGATCGTGCTCACCCACGGCCACGAGGACCACATCGGTGCCGTGCCGTACCTGCTGCGCCTGCGCCGCGACATCCCGATCTACGGCTCGCAGCTGACGCTGGCGTTCATCGAGGCCAAGCTCAAGGAGCACCGCATCAAGCCGGTCACCCACGTGGTGGCCGAGGGCGACTCCGTGCAGCTCGGGGAGTTCGGCTGCGAGTTCGTGGCCGTCAACCACTCCATCCCGGACGCGCTCGCCGTGGCCGTCACCACGGCCGCCGGTACCGTGCTGCACACGGGCGACTTCAAGATGGACCAGCTGCCCCTGGACGGTCGCGTCACCGACCTGCGGGCCTTCGCCCGGCTCGGCGAGAAGGGGGTCGACCTGTTCATGGTCGACTCCACCAACGCGGAGGTCCCCGGCTTCGTCACCAACGAGGCGGAGATCGGACCGGTGCTGGACAACGTCTTCGCCCAGGCGGAGAAGCGCATCGTCGTCGCCTCGTTCTCCTCCCACGTGCACCGCGTCCAGCAGGTCCTCAACGCCGCGCACGCCCACGGGCGCAAGGTCGCGTTCGTCGGCCGCTCGATGGTGCGCAACATGGGGATCGCCGCCGAGCTCGGCTACCTCGACGTCCCGCCCGGTGTGCTCATCGAGCTCAAGCAGGCCACCAACCTGCCCGACGACCAGGTGGTCTACATGAGCACCGGGTCGCAGGGCGAGCCCATGGCGGCGCTGAGCCGCATGGCGAACGGCGACCACAAGGTCAACGTCGGCCACGGCGACACCGTGATCCTCGCCTCGTCGCTCATCCCGGGCAACGAGAACTCCGTGTTCCGCGTCATCAACGGACTGACCCGGCTCGGCGCGCGCGTGGTGCACTCCGGCAACGCCAAGGTGCACGTCTCCGGGCACGCCAGCGCCGGCGAGCTGCTGTACTGCTACAACATCCTGCGGCCCAAGAACGTCATGCCGGTGCACGGCGAGGTGCGCCACCTCGTGGCCAACGCGGCGCTCGCGGTCAAGACCGGGGTCCCCGCCGACCGCGTCGTGCTCGCCGAGGACGGCGTCGTCGTCGACCTCGTGGACGGCAAGGCCGCCGTGGTGGGCGCGGTCCCGTGCGGGTACGTGTTCGTGGACGGCTCCTCGGTCGGCGAGGTGACCGAGAGCGAGCTGAAGGACCGTCGCACGCTCGGCGAGGAGGGCTTCGTGTCCGTCTTCGCCGTGGTCGACACCGCCACGGGCAAGGTGCTCGCCGGGCCGCAGCTCCTGGCGCGCGGCATGGCCGAGGACGACGCCGTGTTCTCCGAGATCCAGCCGGACGTGGTCCAGGCCCTCGAGGACGCGATCGCCGGCGGCGCCACCGACACCTACCAGCTCCAGCAGATCATGCGGCGCGTCATCGGCCGCTGGGTCAACCGGCGTCTGCGCCGCCGCCCGATGATCGTCCCCGTCGTCGTCGAAGCCTGA	MSHPHPELPLPPELPADGLRIVALGGLGEVGRNMAVLEHRGRLLIIDCGVLFPEDHQPGVDLILPDFEYIADRMDDVEAIVLTHGHEDHIGAVPYLLRLRRDIPIYGSQLTLAFIEAKLKEHRIKPVTHVVAEGDSVQLGEFGCEFVAVNHSIPDALAVAVTTAAGTVLHTGDFKMDQLPLDGRVTDLRAFARLGEKGVDLFMVDSTNAEVPGFVTNEAEIGPVLDNVFAQAEKRIVVASFSSHVHRVQQVLNAAHAHGRKVAFVGRSMVRNMGIAAELGYLDVPPGVLIELKQATNLPDDQVVYMSTGSQGEPMAALSRMANGDHKVNVGHGDTVILASSLIPGNENSVFRVINGLTRLGARVVHSGNAKVHVSGHASAGELLYCYNILRPKNVMPVHGEVRHLVANAALAVKTGVPADRVVLAEDGVVVDLVDGKAAVVGAVPCGYVFVDGSSVGEVTESELKDRRTLGEEGFVSVFAVVDTATGKVLAGPQLLARGMAEDDAVFSEIQPDVVQALEDAIAGGATDTYQLQQIMRRVIGRWVNRRLRRRPMIVPVVVEA				NA	NA	NA	NA	NA
AK001_01065	924	dapA	COG0329	4-hydroxy-tetrahydrodipicolinate synthase	ATGACGCTGCCCGGTACCCCTGCGCGCCCTTTCGGCGCCGTGCTCACCGCAATGGTCACGCCCATGTCGGGGTCGGGCGCGATCGATCTCGACGCCGCTGCGCAGCTCGCGACGCGGCTCGTGGACGCAGGCAACGACGGCCTCGTGCTGTCGGGCACCACGGGCGAGGCGCCCGTGACGCACGCCCCGGAGAAGGCCGACCTGGTGCGCGCCGTCGTCGAGGCCGTCGGTGACCGGGCGACCGTCCTGTCCGGTGCCGGTTCGAACGACACGGCGCACGCCGTGCGCATGGCCGAGCAGGCGGCCGAGGCCGGCGCCGACGGGCTCCTCGTCGTCTCGCCGTACTACTCCCGCCCCACCCAGGAGGGGCTGTACCAGCACTTCGCGACGGTGGCCGACTCCACCGACCTGCCGGTCATGCTCTACGACATCCCCGGCCGGGCCGGGGTGCGCATCGCACCCGCGACGTACGAGCGGATCTCCGCCCACCCCCGCGTGGTGGCCACCAAGGACGCCACCGGGGACGTGGGCTCGGTGCCCGCGCTGCAGCGGCTGACCGGCCTGGCCTGGTACTCCGGCGACGACGGGCTCCTGCTGCCCTTCCTCGCCCACGGCGCGGCGGGGATCGTCTCGGTCTCCGCGCACCTCGTCGGCGACCGGTTCGCCGAGGTCGTGCGGCGCTTCGACGCCGGCGACCACGTCGGTGCGCTCGAGGTCTTCAACACGACGATGCCCGTGCTGGCCGCCATGAACGGCGCCGGCGCGCAGGCCGTCATGGTCAAGGCCGCCCTCGAGCTGCTCGGCGTCCACGACAACCGCGAGCTGCGCCTGCCGAACGTCGCCGCCACGGACGACGACGTCGCCGCGGTGCGCGCCGCCCTCATCGCCGGCGGGGTCATGGAACCCGCCACCACACCCCAGTAA	MTLPGTPARPFGAVLTAMVTPMSGSGAIDLDAAAQLATRLVDAGNDGLVLSGTTGEAPVTHAPEKADLVRAVVEAVGDRATVLSGAGSNDTAHAVRMAEQAAEAGADGLLVVSPYYSRPTQEGLYQHFATVADSTDLPVMLYDIPGRAGVRIAPATYERISAHPRVVATKDATGDVGSVPALQRLTGLAWYSGDDGLLLPFLAHGAAGIVSVSAHLVGDRFAEVVRRFDAGDHVGALEVFNTTMPVLAAMNGAGAQAVMVKAALELLGVHDNRELRLPNVAATDDDVAAVRAALIAGGVMEPATTPQ	PGPT0002080_290	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714	NA	NA
AK001_01066	1470	sad		Succinate-semialdehyde dehydrogenase	ATGACTGCGACGACGCCGACCACCTCTCCCGTCCGTGACGTCCCGACCGAGGTGCTCGTCGACGGCCGCTGGCGTGCGGCCACCGGCGGCGGCACGTTCGAGGTCGTCGACCCGGCGACCGAGGAGACCCTGTGCTCGGTGGCGGACGCCGGTCCCGAGGACGGCGAGGCGGCCCTGGCCGCGGCGCACGCGGCCGCCCCGGAGTGGGCGCGGGTCGCCCCGCGCGAGCGCGCCGAGCTGCTGCGGGCCGCCTTCGAGACCGTCACCGCCCGCGCCGAGCAGCTGGCCGCCCTCATCACCGCCGAGTGCGGCAAGACCCTCGCCGAGTCGCGCGCCGAGGTCGCCTACGGCGCCGAGTTCCTCCGCTGGTTCGCCGAGGAGGCGGTGCGCGCGCCCGGCCTGCTGCGCCGCGCACCGGCCGGCGCGAACCAGCAGCTCGTCCACCGGCGGCCGGTGGGGCCGGCGCTGCTCATCACCCCGTGGAACTTCCCCATCGCGATGGCGACGCGCAAGATCGGTCCCGCCCTGGCCGCCGGGTGCCCGGTCGTGATCAAGCCGGCCCAGCTCACCCCGCTGACCACCCTCGCCGTGGCCGAGATCCTGCGTGACGAGCTGGAGCGCCGCGGGCTGCCCGCCGGCGTCGTCAACGTCGTCCCCACCTCCTCGGCCGGGGACGTCACGGGCCCGCTGCTGGCGGACGACCGGTTGCGCAAGCTGTCGTTCACCGGTTCCACGGGTGTCGGGCGGCGGCTGCTGGCCCAGGCGGCCGACCAGGTTCTGTCCTGCTCGATGGAGCTGGGCGGCAACGCGCCGTTCGTCGTCTTCGGCGACGCCGACCTCGAGGCCGCCGTGGACGGTGCGGCCGTGGCCAAGCTGCGCAACGGCGGCCAGTCGTGCGTGGCGGCCAACCGCTTCCTGGTGCACGAGTCGCTGGCCACCGAGTTCGCCGACCGCCTCGGTGCGCGCTTCGCCGACCTGACCGTGGGGCCCGGCGCCGAGGGCAACGACGTCGGGCCGCTCATCGGTGCCGACGCGGTGGACTCCGTGCACGCGCTGGTCGCCGACGCCGTGGACCACGGCGCCCGCGTGGTCACCGGGGGGCAGCGCCCCGCCGGTCCCGGCTACTTCTACCCGCCCACGGTGCTCGCCGACGTCGCCCGGGACGCGCGCTGCGTGCACGAGGAGATCTTCGGGCCCGTGGCCCCCGTGGTCGCGTTCGCCGACGACGACGAGGGCATCGCCCTGGCCAACGACACGCCCTACGGGCTGGCGGCCTACGCCTACACCCGCGACCTGGACCTGGCGATGCGCGCGGCGCACGAGCTGGACGCGGGCATGATCGGGGTGAACCGGGGCATGGTCAGCGACGCGAGCGCGCCGTTCGGCGGCACCAAGCAGTCCGGGCTGGGCCGCGAGGGCGGCGAGGCCGGTCTCGAGGAGTACCTCGAGACCGTGTACGTGGCGATGTGA	MTATTPTTSPVRDVPTEVLVDGRWRAATGGGTFEVVDPATEETLCSVADAGPEDGEAALAAAHAAAPEWARVAPRERAELLRAAFETVTARAEQLAALITAECGKTLAESRAEVAYGAEFLRWFAEEAVRAPGLLRRAPAGANQQLVHRRPVGPALLITPWNFPIAMATRKIGPALAAGCPVVIKPAQLTPLTTLAVAEILRDELERRGLPAGVVNVVPTSSAGDVTGPLLADDRLRKLSFTGSTGVGRRLLAQAADQVLSCSMELGGNAPFVVFGDADLEAAVDGAAVAKLRNGGQSCVAANRFLVHESLATEFADRLGARFADLTVGPGAEGNDVGPLIGADAVDSVHALVADAVDHGARVVTGGQRPAGPGYFYPPTVLADVARDARCVHEEIFGPVAPVVAFADDDEGIALANDTPYGLAAYAYTRDLDLAMRAAHELDAGMIGVNRGMVSDASAPFGGTKQSGLGREGGEAGLEEYLETVYVAM	PGPT0001580_2082	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
AK001_01067	705			hypothetical protein	GTGTCCCGCCCCCGCTCCCCCGCGGTCTCGGCCGCCGTCCGCCAGGGCGTCAGCGTCTCCGTGGCCACCGGGCTCTACGGCGTCTCCTTCGGCGCGCTGGCGGTGGTCGCCGGTCTGACCGTGGCCCAGACCGCCGCGCTGAGCCTGCTGCTCTTCTCGGGCGGTTCGCAGTTCGCCCTCGTCGGGGTCGTGGCCGCCGGCGGCTCCCCGCTGGCCGCCGTGGCGACGTCGAGCCTGCTCGGCGTGCGCAACACGCTCTACGGCGCTGTCGTCTCCCCGCTGCTCGACGTGCGCGGGTGGCGCCGCTGGGCGGCCGCGCAGGTCACGATCGACGAGTCGACCGCGGTCGCGGTGGCCCAGCGCGACCCGCAGGCCGTACGGGTCGGGTTCTGGGCCACCGGGCTGGGCGTCTTCGTGCTGTGGAACGTCTGCAGCCTGCTCGGGGCGCTGGCCGGCGACGCGCTCGGGGACCCGCGGGCCTGGGGTCTGGACGCGGCCGCCGGGGCCGCCTTCCTCGCGCTCGTCTGGCCGCGCCTGGCCTCCCGCGACGCCCGCCTGGTGGCCGGTCTCGCCGTCCTCGTCTCCGCCGCCCTGGTCCCGGTGGCTCCCGCGGGCATCCCCGTGCTGGGTGCGGCCGCCGCGGCGATCGCGGCCGGGCTCCTCGCCCCGGCGCCCCGTGCCCCGCGACGCGGAGGGACGCGATGA	MSRPRSPAVSAAVRQGVSVSVATGLYGVSFGALAVVAGLTVAQTAALSLLLFSGGSQFALVGVVAAGGSPLAAVATSSLLGVRNTLYGAVVSPLLDVRGWRRWAAAQVTIDESTAVAVAQRDPQAVRVGFWATGLGVFVLWNVCSLLGALAGDALGDPRAWGLDAAAGAAFLALVWPRLASRDARLVAGLAVLVSAALVPVAPAGIPVLGAAAAAIAAGLLAPAPRAPRRGGTR				NA	NA	NA	NA	NA
AK001_01068	321			hypothetical protein	ATGACCCCGACCGTGCTGTGGGCGACCGTGCTGGTCGCCTCCGTGGCGAGCTTCGCCCTGAAGCTCGCGGGCCACCTCGTCCCGCAGCACTGGCTGGCCACCGACCGGGTGCAGCGCACCTCGGGGCTGGTCACGGTAGCGCTGCTCGTGGCCCTCGTGGTGGTGCAGACCTTCGCCACCGGCCCTGCTCTCACGGTGGACGCGCGCGTGCCGGCGCTGGCCGCCGCGGCGGCCGCGCTCGCGCTGCGCGCACCCTTCGTCGTGGTCATCGTGGTCGCCGCCGCCGTGGCCGCGGGCCTGCGCGCGCTCGGCTGGGGCTGA	MTPTVLWATVLVASVASFALKLAGHLVPQHWLATDRVQRTSGLVTVALLVALVVVQTFATGPALTVDARVPALAAAAAALALRAPFVVVIVVAAAVAAGLRALGWG				NA	NA	NA	NA	NA
AK001_01069	507			hypothetical protein	ATGGCACTGTTCCAGGAGACCGCCGACGTCTCGGTGCGCCCCGCCGTCCCCGGCGACGAGGAGGCCGTCACCCGCATCCAGGTCGAGGCCTGGCGCACCACGCACGCCGACGTGCTCGGGGGCGCCGTCGACGCCCTGGACACCACGGCGATGACCGACCGGTGGGCCGACGCGATCTCCCGGCCGCCGGGTCCCGGCTTCGCCGTGCTCGTCGCCCTCGACGGACCGACGGTCGTCGGCTTCGCCGCCGTCGCCCCGGGCCAGGTGATGTCCCTGGAGGTGGCGCCCCACGCCCGGCGCGGCGGTCACGGCTCACGGCTGCTGGCCGCGGCCGTGGACCGGCTCCGGACCGACGGCGAGTCCGAGGTCGTCACCTGGGTGCTCGACGGGGACGACGGCCGCGAACGGTTCCTGTCCTCCTCGGGCCTCGGCCCCGACGGCACGGAGCGCGCCCTGGCCACCGGGGTCCGCGACGTCGTCGAACGGCGCTGGTCCGCCACGATCTGA	MALFQETADVSVRPAVPGDEEAVTRIQVEAWRTTHADVLGGAVDALDTTAMTDRWADAISRPPGPGFAVLVALDGPTVVGFAAVAPGQVMSLEVAPHARRGGHGSRLLAAAVDRLRTDGESEVVTWVLDGDDGRERFLSSSGLGPDGTERALATGVRDVVERRWSATI				NA	NA	NA	NA	NA
AK001_01070	1011			hypothetical protein	ATGGCACGCGACGACGGATCCCCGCAGGACGAGACGGTCGACGAGGCGCCGGCGGTGGCGCGCAACCCCTTCCGGCGGGTGTGGTGGCTGCCGGTCCTGCGGGGCGTCGCCTACATCGTGCTGGGTCTGCTGCTCATGATCGAGCCGCTCGGAGAGCTCGAGATCCTGCGCCTGCTCATCGGGATCTTCCTCGCCTTCGACGGTGTGCTGGCCCTGGTGCAGTGGCTGGTGCACCGCCGTCAGGTCGGCTCGGCCTGGTGGCTCGCCCAGGCCGGGGTCAACCTCGGCTTCGGCGCCGCCGTCGCGCTGTGGCCCGAGCTGTCGCCGACGCCGTTGTACTACGTGCTCGCGGTCTGGACGATCGTGCTGGGCATCGTGGCGATCATCGGCGGTGCGGCGCTGTCGCGGAACCGGGACCTCGGCTGGCCGTGGATGGTCGCGTTCGGCATCACGGCCGCCCTCTTCGGCCTCCTGCTCGTGACGCGACCGCTGGACTCCCTCGAGGTGCTGCGGCTGGTGACGATCGTCTTCGCGCTGTTCGCGTTCGTGGCCGGATCGCTGAACATCGTCTCCGGGTTCGCTGTCCGCTCGGTGTCGCGCGAGCTGCAGGGCCTGCGCGAGCAGGCCGAGCGCGTGGGGGTCGTGGTCACCGGTGGGTCCGTGCTCGGCGCCGCGAACCCGCAGGCTGCGCCCGCCCGTGCCGCCGGTCCCCGTCCCGCGCCCGGCGGCCAGGAGGTCGGCGCGACGTCGGCCGGTGACGCTCCCGGGGCGACGTCGGCGCCCCGGGACGAGGCGTCCTCGCCGACCGCGGCACCGGACGGCGGTACCGGTGCTCCCGTTGCCGAGGGGACGGGGACGCCCTCCGCCGTCGGCACCTCGCCCGACGCCCCGTCCGGCCCGGGCGGACCGTCCGGAGAGGGCGGCCCCGCGACGGGCACACCCGCGGACGGCGAGGACCCGGGCGCGGGGGCGCCCGGAGGGACCACCGGCCGGTGGCGCCGCCGCCCCTGA	MARDDGSPQDETVDEAPAVARNPFRRVWWLPVLRGVAYIVLGLLLMIEPLGELEILRLLIGIFLAFDGVLALVQWLVHRRQVGSAWWLAQAGVNLGFGAAVALWPELSPTPLYYVLAVWTIVLGIVAIIGGAALSRNRDLGWPWMVAFGITAALFGLLLVTRPLDSLEVLRLVTIVFALFAFVAGSLNIVSGFAVRSVSRELQGLREQAERVGVVVTGGSVLGAANPQAAPARAAGPRPAPGGQEVGATSAGDAPGATSAPRDEASSPTAAPDGGTGAPVAEGTGTPSAVGTSPDAPSGPGGPSGEGGPATGTPADGEDPGAGAPGGTTGRWRRRP				NA	NA	NA	NA	NA
AK001_01071	657			hypothetical protein	ATGACGACCACGGGTACGACACCCCAGGCCAGCGGCTCGCGGGCCGGTGGCTACGCGCGCGGTCGCCGGAAGCGCGAGCAGATCCTGCAGGCCGCGATCGCGCTGTTCGGCGAGGCCGGCTTCCACGGGACCTCCCTGCGCGACATCGCCGCGGCCGCGGGGATCTCCCACCCCGGGCTGCTGCACCATTTCCCGACCAAGGCGGCGGTGCTGGAGGCGCTGCTGGAGCACCGGGACGAGGTCGACGAGGCGGACCTCGAGGCGGAGCTGGACCGGGGCACCGACTTCTTCAGCGCGATCATCCACCTCGTGGAGCGCAACGCGATGCGCCCGGCGATCGTCGACCTCTACACCTCCGTCGCCGCCGAGGCGACCTCCCCGGACCACCCCGCGCACGCCTACTTCGAGCAGCGGTACGCCGTCACGGTCGCGCGGATGCTCGAGGAGCTGGAGACCCGGCGGGACGCCGGCGGCCTGCGCCCCGGCCTCGACCTGGAGGCCGCCGCCCGGTCGATCGTCGCCCTCATGGACGGGATGCAGCTGCAGTGGCTGCTCGCCCGCGACCTCCCGCGGGCACAGCGTCCGGACATGGCCGGTGCCCTGCGGGCCTACCTCGACCTGGTCCTCGTGCCGGAGGGTGCCCGCGCGGCGGACTGA	MTTTGTTPQASGSRAGGYARGRRKREQILQAAIALFGEAGFHGTSLRDIAAAAGISHPGLLHHFPTKAAVLEALLEHRDEVDEADLEAELDRGTDFFSAIIHLVERNAMRPAIVDLYTSVAAEATSPDHPAHAYFEQRYAVTVARMLEELETRRDAGGLRPGLDLEAAARSIVALMDGMQLQWLLARDLPRAQRPDMAGALRAYLDLVLVPEGARAAD				NA	NA	NA	NA	NA
AK001_01072	1281			hypothetical protein	ATGACCGCCACCCCCACCCCGGCCGACGGCCGGGCACTGTCCCAGGACCCCGGTCCGGCGACGACGCCGCGCGGCTACGGATCCGGCCTGACGCTCGCCGCGTTCGGCGTGTACTTCGCGCTGTTCACGCCGGTGATGGTCGCCATGGCGTTCAAGATCCAGCACATCGACCCCGAGGGCGCCGTCGGCAGCCTCGGGCTCGTGCTCGGCGTCGGCGCGGCGTTCGCCCTCGTCGCGAACCCGCTGGCCGGCCGGCTGTCGGACCGCTCCACGGCGCGCTTCGGCAAGCGGCGGCCGTTCATCGTCGGCGGCTCTCTCGTCGGGACCCTGGCCATGGCGGTGATCGGCGTGACCGAGTCGGTGCCGATGGTCCTGGTCGCGTGGTGCCTGGCGCAGGCCGCCTACAACGGGGCGCTGGCGGCGATCATCGCGACCCTGCACGACCAGGTCGCCCCCGCCCGCCGCGGGCGCTACTCCGCGCTCATCGGCATCGGTACGCCGCTGGCCATCCTCGGCGCCTCGGTGCTCGCCAACCTCGTGGCCGCCGACCTGTGGCGGTTCCTGCTGCCCGGCCTGGTCGCCACCGTGGCCAGCATCGTCTTCGCCGTCGTGCTCGACGACGTCGTGCGCACCGTCCCGCCCGTGGAGCCCTTCCGCGTCAAGGAGTTCTTCGGCTCCTTCGTCTTCGACCCCCGCACCCACCGGGACTTCGGCTGGACCTGGCTGACCAAGTTCTTCGTCATGTTCGGCTACGCCGGCATCGCGACCTACATCCCCTACTACCTGACCGACACCTTCGGCCTGGCCGAGGCCGAGGCGACCGAGGTCATCCTCGCGGCCAACATGGCGTCCACCGTGGCCATGCTCGTCTCGAGCCCGCTGGGCGGCTGGCTGTCGGACAAGCTCGGCAAGCGCCGCCCCTTCGTCACCGCCGCCGGTCTGGTGATGGTGCTGGGTCTGCTGCTCCTCGCGCTGGCCCCGTCGGTGGCGATGGTCGTGGTCGCCCAGGGCGTCGTCGGCTTCGGCGCGGGCTCGTTCCTCTCGGTGGACCAGGCCCTGGCCACCCAGGTGCTGCCGAACGCGGAGGACGCCGCCAAGGACCTCGGGGTGCTCAACATCGCCAACGCCCTGCCCCAGTCGCTCGCCCCGGCGATGGCGCCCAGCATCATCGCCGTCGGCACGGCCGTCGGCATCGGCGGCTACACCGCCTGGTTCCTCTTCGGAGCGTTCGTCGCCTTCTTCGGCGCCGTGCTCGTCTACCGCATCAAGGGCGTGCGTTGA	MTATPTPADGRALSQDPGPATTPRGYGSGLTLAAFGVYFALFTPVMVAMAFKIQHIDPEGAVGSLGLVLGVGAAFALVANPLAGRLSDRSTARFGKRRPFIVGGSLVGTLAMAVIGVTESVPMVLVAWCLAQAAYNGALAAIIATLHDQVAPARRGRYSALIGIGTPLAILGASVLANLVAADLWRFLLPGLVATVASIVFAVVLDDVVRTVPPVEPFRVKEFFGSFVFDPRTHRDFGWTWLTKFFVMFGYAGIATYIPYYLTDTFGLAEAEATEVILAANMASTVAMLVSSPLGGWLSDKLGKRRPFVTAAGLVMVLGLLLLALAPSVAMVVVAQGVVGFGAGSFLSVDQALATQVLPNAEDAAKDLGVLNIANALPQSLAPAMAPSIIAVGTAVGIGGYTAWFLFGAFVAFFGAVLVYRIKGVR				NA	NA	NA	NA	NA
AK001_01073	1872			hypothetical protein	TTGAGAACCGCGACCGACGACGCCGTGGGGACCGGGGCCGTCCCGGCGGACGCCCCGTACCGGGACCGGACCCGCCCCGTCGGCGAGCGCGTCACCGACCTGCTGGGTCGCATGACCCTCGCCGAGAAGGCCGGTCAGCTCTTCCACACGATGATCGAGACCGGCCCCGGCGGCACCCTCGCCGAGGAGCCCTCGCCCATGGGCGTGCCCGCCACCAGCGACATGCTCCTGGGTCGGCACATGACGCACTTCAACGTGCTCGCCTCGCCGTCGACCGCCGAGGAGTTCGCCCGCTGGCACAACCGGCTCCAGGAGCTCGCCGCCTCGACGCGGCTCGGCATCCCGGTGACGGTGTCCAGCGACCCGCGCCACGCGTTCACCGACAACCCCGGCACGGCGCTGCTGGCCGGCCCGTTCTCGCAGTGGCCCGAGACACCGGGCCTGGCGGCCGTCGGCGACCCCGGGCTCGTGGAGGAGCAGGCCGACGCCGTGCGGCGCGAGTACCTGGCCGTGGGGATCCGCACCGCGCTGCACCCGCAGGTCGACCTCGCCACGGAACCCCGCTGGTCGCGGGCCGCGGGGACCTTCGGCGAGGACCCCGAGGCCGCCGGACGGCTCGGCGCCGCCGCCGTCCACGGGCTGCAGGGCACCGGTGCGGTCGCACGTCGTGCCGGACTGCCCGGGACCTTCGGCCCGTCCTCCGTGTCGACCATGACCAAGCACTTCCCCGGCGGCGGCCCGCAGGCCGACGGCGAGGACCCCCACTTCGCCTACGGGCGCGAGCAGGTGTACCCCGGCGGGGCGTTCGCCACGCACCTCGCGCCGTTCACCGAGCTCATCGCCGCCGGCACCCGCCAGATGATGCCCTACTACGGCATGCCGGTGGGCCTCGAGGTCGACGGCGACGCGGTCGAACCCGTCGGCTTCGCCTTCAACCGGCAGGTCCTCACCGGGCTGCTGCGCGAGCGTCTCGGGTTCGACGGCATCGTCTGCACGGACTGGGGCCTGGTCAACGACGCCGAGATCCTCGGCACCGAGTACCCCGCCCGCGCGTGGGGCGTCGAGGACCTCGACCCGCTCGAGCGGGTCGAGAGGATCCTCGCCGCCGGAGCCGACCAGCTCGGCGGCGAGGCCTGCCCCGAGCTCGTCGTCGAGCTCGTCCGCACGGGCCGGGTCCCCGAGGAGCGGCTGGACGTCTCCGTCGCCCGCCTGCTGCGCGAGAAGTTCGTCCTCGGGCTGTTCGACGACGCACGGTACGTGGACGTCGACGCTGCGAGCGCCGTCGTCGGGCATCCCGAGCTCGTCGCGGCAGGGCGCCGGGCCCAGTCCCGGTCGGTGACGGTCCTGTCCGCCGCCCGGAGCGGTCCGGCGGCACTGCCGGCCGCTCGCGGCCTGCGCGTCTGGCTCGAGGGAGCCGACGACGTCACCGACGTCTCCCCCGGCCTGGTGACTCTCGTCGACTCCCCGGAGGAGGCCGACGTGGCGCTGCTGCGCCTCAAGGCACCCTACGAGGCACGCGGGGACGGCTTCGAGGCGTTCTTCCACGCGGGGTCCCTGGACTTCCCCGCCGAGGTGCTCTCCCACGTCGCCGCGCTCTCGTCCCGGGTCCCGACCGTCGTGGACGTCTACCTCGACCGCCCGGCGGTCCTCGCCCCCGTGCTCGACGCCCTGGGGCCGACGGGGTCGCTCGTGGCGAACTTCGGGGCCTCCACCGGCGCGCTGCTCGACGCCCTGACCGGCGTCGTGCGGCCCGAGGGCAGGCTGCCGTTCGACCTGCCCCGCTCGATGGCCGCCGTCGAGGCCTCCCGGGAGGACGTGCCGTTCGACACCGCGGACCCGCTGTTCCGCTGCGGTCACGGCCTGTCGGTCTGA	MRTATDDAVGTGAVPADAPYRDRTRPVGERVTDLLGRMTLAEKAGQLFHTMIETGPGGTLAEEPSPMGVPATSDMLLGRHMTHFNVLASPSTAEEFARWHNRLQELAASTRLGIPVTVSSDPRHAFTDNPGTALLAGPFSQWPETPGLAAVGDPGLVEEQADAVRREYLAVGIRTALHPQVDLATEPRWSRAAGTFGEDPEAAGRLGAAAVHGLQGTGAVARRAGLPGTFGPSSVSTMTKHFPGGGPQADGEDPHFAYGREQVYPGGAFATHLAPFTELIAAGTRQMMPYYGMPVGLEVDGDAVEPVGFAFNRQVLTGLLRERLGFDGIVCTDWGLVNDAEILGTEYPARAWGVEDLDPLERVERILAAGADQLGGEACPELVVELVRTGRVPEERLDVSVARLLREKFVLGLFDDARYVDVDAASAVVGHPELVAAGRRAQSRSVTVLSAARSGPAALPAARGLRVWLEGADDVTDVSPGLVTLVDSPEEADVALLRLKAPYEARGDGFEAFFHAGSLDFPAEVLSHVAALSSRVPTVVDVYLDRPAVLAPVLDALGPTGSLVANFGASTGALLDALTGVVRPEGRLPFDLPRSMAAVEASREDVPFDTADPLFRCGHGLSV	PGPT0019110_6622	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_01074	1167	sotB_1		sugar efflux transporter	GTGGAACACCGCACCGTCCGCGACGCCCTGGCAGGGATCACGATCCTGGCGGTCGCGAACTTCGTCGCCATCACCACCGAGGTGCTCCCGGTCGGGCTGCTGCCGCAGCTCGCGGCCGGCCTCGGGGTGCCGGAGTCGACGGCCGGGCTGCTCGTGTCCGTGTACGCGTTCGTCGTGGCGGCGTGCGCGGTCCCGCTGACGCTGCTCACCCGGCGCCTGGCCCGCAAGCCGCTGCTGCTCACCACGGTGGTCGTCTACGCCGTCGCCAACGTGCTGGCCGCCGTCGCACCGTCGTTCGGCGTCGTCGTCGCGGCACGGACGCTCGGCGGGCTCGGGCACGCGCTGTTCTTCTCGGTCTCGATCGCCTACGCGGCGCGACTGGTCTCGCCGCTGTACACCGGCCGCGCGGTGACGCTGGTGACCACCGGCGGCACCTTCGGGTTCGTGCTCGGCGTGCCGCTGTCCACCTCGCTCGGCGCGGCCGTCGGGTGGCGGTGGTCCTTCGCGGTGCTCGCCGGCGTGTGCGCGCTGACCGCCCTCCTCGTCGCGCGGCTCCTGCCCCCGGTCGGGGTCGAGCAGGTCGCGCCGGGCGGCTCGCCGCACCGCGGGCGGTCGCGTCTCGGGATCGTCGTGGGGACCAACACGCTGCTGTTCGTGGGCCAGTACACGGTGTACACCTTCGTCTCCCTGCTGCTGCTCGCGACCGGCCTGACCGAGGCCGCGGTCGGCCCGGCCCTGCTCGTCTTCGGCGCGCTGGGGATCGTGGGGCTCTGGGCGGCAGCGCGCTACCTGGACCGCCGCCCGCGCGCCCTGACGCTCGCCACCGTCGGCGTGATGGTGCTCGCGCTGGTCGTCGTCGGGCTGGCACTGCCGCAGCGGCTCCCCGTGCTGGTCGCGGCGGCGGTGTGGCTCGCCGCGTTCGGGGCCGTGCCCGCCGCGTTCCAGACCCTGGCGCTGCGGGCCCGCGGCGCGAGCGCGGACGTCGCGGGCGCGTTCGTCAACGCCACCTCGAACCTCGGCATCGGTCTCGGGGCGGCCGTCGGGGCCGTCGTCGTCGCCGGCCCCGGACTGCCCGCCCTCGCCTGGACCGGGGCGGCGGCCATGGCCGCCGCCGGCGTCGTGGTGCTGGTCGCCCGGCGAGCGTTCCCGCGCGACCCCGCACGGTAA	MEHRTVRDALAGITILAVANFVAITTEVLPVGLLPQLAAGLGVPESTAGLLVSVYAFVVAACAVPLTLLTRRLARKPLLLTTVVVYAVANVLAAVAPSFGVVVAARTLGGLGHALFFSVSIAYAARLVSPLYTGRAVTLVTTGGTFGFVLGVPLSTSLGAAVGWRWSFAVLAGVCALTALLVARLLPPVGVEQVAPGGSPHRGRSRLGIVVGTNTLLFVGQYTVYTFVSLLLLATGLTEAAVGPALLVFGALGIVGLWAAARYLDRRPRALTLATVGVMVLALVVVGLALPQRLPVLVAAAVWLAAFGAVPAAFQTLALRARGASADVAGAFVNATSNLGIGLGAAVGAVVVAGPGLPALAWTGAAAMAAAGVVVLVARRAFPRDPAR	PGPT0028991_609	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577	NA	NA
AK001_01075	462			hypothetical protein	ATGCTCACCGACTACTTCGCCGCGCCGTCCGACGCGCTCGCCGCGACGGTGCTGCACGTCGAGACCGGGCCGAGCACGCCGACGCGAGGGTCCGGCGAGCCGCTCTTCGACACGGTGGCGCTGCCGTCGATCGACCCCTTCGTCGCGCTGGCCGTGCTGGCGGAGGTGACCTTCGGCCTCCCCTACGGCGAGGTGACGGCCGATCCCCGGCACGGTCAGGTCGTCGGCGGGCAGGACGAGGGTCCGTTCGTCGTGACGGTGGCCGCCGAGCTCGCCGACCACTTGGCGGCCGCCTCCCCGCAGCAGCTCGCCGAGGCAGCCCGCGAGTGGGCACGGCGCGTCGAGCACACGGGCGACGCCGCGGCGCTGGCCCGCTCCCTCGAGGACCTGGGCGAGCTCGCCTGGCGGGCCGCCGACGTCCGCCACGAGCTGTACTGCTGGACCCGGTGGCCGTCCGGCTGA	MLTDYFAAPSDALAATVLHVETGPSTPTRGSGEPLFDTVALPSIDPFVALAVLAEVTFGLPYGEVTADPRHGQVVGGQDEGPFVVTVAAELADHLAAASPQQLAEAAREWARRVEHTGDAAALARSLEDLGELAWRAADVRHELYCWTRWPSG				NA	NA	NA	NA	NA
AK001_01076	483			hypothetical protein	GTGACCACCGAGGACGGCTCCTCGCCGCCCGCCCGGAGGCGTCCGCCACGGGGACTGGTCGGCGCGCTGGCGGTGACGTTCCTGCTGGCGATCTACGTCTGGGCGATCGCCGGGCGCGGCGTGGCGATGGTGGCCAGCGGGGAGCCCGTGCTCGTCGCCATCGGTGCCGCGGCGCTGGTCGTCCCGCTGCTGGTCGTGGGGCTCATCGCGCGCGAGTTCTGGCTCGCGGCCCGCGTGCAGCGGATGGCCGACGTCCTCGCCGACGCCGGCGAGCTCCCCGTCGACGACCTGCCCCGGTCCCCGGGAGGGCGGATCGACCGCGACGCCGCCGACGCCGCCTTCACCGAGGCGCAGGCCGCCGTCGAGGCCGAGCCGGAGAGCTGGCGGGCCTGGTACCACCTGGCCTTCGCCTACGACGCCGCCCGCGACCGCCGTCGGGCCCGGGCCGCCCTGCGCCGGGCCTCCTCGCTCTTCACGGGCTGA	MTTEDGSSPPARRRPPRGLVGALAVTFLLAIYVWAIAGRGVAMVASGEPVLVAIGAAALVVPLLVVGLIAREFWLAARVQRMADVLADAGELPVDDLPRSPGGRIDRDAADAAFTEAQAAVEAEPESWRAWYHLAFAYDAARDRRRARAALRRASSLFTG				NA	NA	NA	NA	NA
AK001_01077	774	dapB	COG0289	4-hydroxy-tetrahydrodipicolinate reductase	ATGAGCAGCGCGACCAGGGTGGCCGTCATCGGTGCGGCCGGACGGATGGGCAGCCAGACGTGCGCCGCGGTCGAGGCCGCCGAGGACCTCGAGCTCGTGGCCCGCGTCGACGCTGGTGACGACGTCGCGGCGGCGGTCCGCGACTCCGGCGCTCAGGTGGCCGTGGACTTCACCGTCCCGGCGGTCACCGAGGCCAACGTGCACGCGGCGCTCGACGCCGGTGCCCACGTCGTGGTCGGGACGACCGGCTGGGACGACGACTCGCGGGGCCGGGTCACCGAGCACCTCGAACGGCTCGCCGTCGAGCAGGAGGGCGACGGGCCGGGTGTGCTCATCGCGCCGAACTTCGGCCTCTCCGCCGTGCTGGCCATGACGTTCGCGGCCAAGGCGGCCCGCTACTTCGAGTCCGCCGAGGTCGTCGAGCTGCACCACCCGAACAAGGTCGACGCCCCGTCGGGCACGGCCCGGCACACGGCGGCCGCGATCGCCGCGGCGCGCGCGGACGCCGGTCTCGGGGCCTCGCCCGACGCGACCCAGGACGGCTGGGAGGCGCGGGGTGCCGACGTCGACGGCGTGCGGGTGCACGCCGTCCGGCTGCGCGGCCTGGTGGCCCACGAGGAGATCCTGTTCGGCAACGCCGGCGAGCAGCTGACGATCCGCCAGGACTCGTTCGACCGGGCCTCGTTCATGCCGGGCGTGCTGCTGGCGGTGCGCGAGGTCGGGTCTCGTCCGGGTCTGACGGTCGGGCTCGAGCACGTGCTGGACCTGTCGTGA	MSSATRVAVIGAAGRMGSQTCAAVEAAEDLELVARVDAGDDVAAAVRDSGAQVAVDFTVPAVTEANVHAALDAGAHVVVGTTGWDDDSRGRVTEHLERLAVEQEGDGPGVLIAPNFGLSAVLAMTFAAKAARYFESAEVVELHHPNKVDAPSGTARHTAAAIAAARADAGLGASPDATQDGWEARGADVDGVRVHAVRLRGLVAHEEILFGNAGEQLTIRQDSFDRASFMPGVLLAVREVGSRPGLTVGLEHVLDLS				NA	NA	NA	NA	NA
AK001_01078	1341		COG0612	putative zinc protease	ATGAGCCAGCACCTGCCGCTCGTCGGAGCGGATCAGCCGGGTGCGGAGCTGACCGCCGGGCAGGACGGTGCGACGATCCGTCGCACCCTCCTGCCCGGCGGTGTGCGTGTGCTCACCGAGCACATGCCGGGGCTGCGCTCGGCCACCGTCGGCGCCTGGGTCGGCGTCGGGTCCCGCGACGAGACGGACGGGCACCACGGGTCGACCCACTTCCTGGAGCACCTGCTGTTCAAGGGCACGGCACGACGCACGGCCCTGGACATCGCCGAGGCGTTCGACGCCGTCGGGGGCGAGGCCAACGCGGCGACCGGCAAGGAGCACACGTGCTACTACGCCCGGGTGCTCGACGCCGACGTCCCGATGGCGGTCGACGTCGTCAGCGACATGATGACGTCGGCCCGGCTGGACCCGGACGAGCTCGAGACGGAGCGGGGAGTCATCCTCGAGGAGCTCGCCATGGCCGAGGACGACCCGGGCGACCTCGTGCACGAGCGGTTCGCCGCCGCCGTGCTCGGCAGCCACCCGCTCGGCCGTCCCATCGGTGGCACCCCCGAGGCGATCCGCGGCGTGCCGCGCGACGCCGTCTGGGAGCACTACCGGTGGCACTACCGTCCCGAGACCCTCGTCGTCGCGGCGGCCGGCGGGGTGGACCACGACCGGCTCGTCGGTCAGGTCGGCGAGGCGCTGTCCGCCGGCGGCTGGGACCTGTCCGGCACCGCGGGCCCGCGGGAGCGCCGCTCCGGCGCTCCGGAGTCCGACGGCGTGCCGGCCGAGGGCGCCGAGGTCACGGTGCGGCGCCCCACCGAGCAGGCGAACGTGATCCTGGGCACCACCGGGCTCAGCGCGACCGACGAGCGCCGCTTCACCATGACGGTGCTCAACGCGGTGCTGGGCGGCAGCATGTCGTCGCGGCTGTTCCAGGAGATCCGCGAGAAGCGGGGTCTGGCGTACGCGACCTACTCCTTCGCCCAGGGGCACGGCGGCCTGGGGACCTTCGGGCTCTACGCCGGGTGCGCTCCGGCCCGTACCGACGAGGTCGTGGCGATGCTCGGCGCCGAGCTCGACCGACTGGCCGAGGACGGCATCACCGCCGCCGAGCTCGAGCGCTCGGTGGGCCAGCTCTCCGGCGGGCTCGTGCTCGGCCTGGAGGACACGGGGTCGCGGATGAGCCGGCTGGGCAGGTCGGAGCTCGTCCTCGGCGAGCTGATGACCGTCGACGAGTCGCTGCAGCGCATCCGGGCCGTCACCCGCGAGGACGTCCGGGAGCTGGCCGCCGACCTGGCCGGGCGTCCGCGGTCGGTCGTGCGGGTGGGACCTTTCGCAGAACAGGGAGAGCAGTGA	MSQHLPLVGADQPGAELTAGQDGATIRRTLLPGGVRVLTEHMPGLRSATVGAWVGVGSRDETDGHHGSTHFLEHLLFKGTARRTALDIAEAFDAVGGEANAATGKEHTCYYARVLDADVPMAVDVVSDMMTSARLDPDELETERGVILEELAMAEDDPGDLVHERFAAAVLGSHPLGRPIGGTPEAIRGVPRDAVWEHYRWHYRPETLVVAAAGGVDHDRLVGQVGEALSAGGWDLSGTAGPRERRSGAPESDGVPAEGAEVTVRRPTEQANVILGTTGLSATDERRFTMTVLNAVLGGSMSSRLFQEIREKRGLAYATYSFAQGHGGLGTFGLYAGCAPARTDEVVAMLGAELDRLAEDGITAAELERSVGQLSGGLVLGLEDTGSRMSRLGRSELVLGELMTVDESLQRIRAVTREDVRELAADLAGRPRSVVRVGPFAEQGEQ				NA	NA	NA	NA	NA
AK001_01079	2253	pnp	COG1185	Polyribonucleotide nucleotidyltransferase	GTGGAGGGTCCCGAGATCCAGTTCGCCGAGGCCGTCATCGACAACGGCCGCTTCGGCACCCGTACCGTCCGCTTCGAGACCGGCCGACTGGCCCGGCAGGCCGCCGGCGCCGTGTCCGCCTACCTCGACGGCGAGACCATGCTGCTGTCGACCACCGCGGTCGGCAAGCACCCCAAGGACCAGTTCGACTTCTTCCCGCTGACGGTGGACGTCGAGGAGCGGATGTACGCCGCGGGCCGCATCCCCGGCTCGTTCTTCCGCCGTGAGGGCCGCCCGTCGACCGAGGCGATCCTGACCTGCCGCCTCACCGACCGCCCGCTGCGCCCGCTGTTCGTCAAGGGCCTGCGCAACGAGGTCCAGATCGTCATCACGGTCATGGCCCAGCACCCGGACGACGCCTACGACGTCCTGGCGATGAACGCGGCCTCCGCGTCCACCCAGATCTCCGGCCTGCCGTTCTCCGGTCCGGCCGGTGCCGTGCGCATCGCGCTCATCGACGACCAGTGGGTCGCCTTCCCGAAGTACTCGGACAAGGAGCGCGCCGTCTTCGAGATGGTCGTCGCGGGCCGCAAGGTCACCGCCGCCGACGGTTCCGAGGACGTCGCCATCGCGATGATCGAGGCCGAGGCGACCGACGACGCGTGGAACCTCGTCAAGAACGAGGGCGCCACCGCCCCGACCGAGCAGGTCGTGGCCGAGGGCATCGACGCGGCCAAGCCGTTCATCGCCGCCCTGTGCGACGCCCAGCTCTCCCTGGCCTCGCAGTCGGCCAAGGACGTCGCCGAGTTCCCGCTCTTCCCGGACTACGCCGACGACGCCTACGCCGCCGTCGAGTCCGCGGCGTCGGCCCCGGCCGCCGAGGCGCTGGCGATCGCCGACAAGCAGCAGCGCGAGAGCCGTCTCGACGAGATCAAGGCCGGCGTGCTCGAGCAGCTCGGCGAGCAGTTCGAGGGCCGCGAGAAGGAGCTGTCGGCCGCCTACCGCAGCCTGCAGAAGCAGCTCGTGCGTCAGCGCGTGCTCACCGAGGGCGTGCGCATCGACGGCCGCGGTCTCGCGGACATCCGCACCCTGTCGGCCGAGGTCGAGGTGCTGCCCCGCGTGCACGGCTCGGCGCTGTTCGAGCGCGGCGAGACCCAGATCCTGGGTGTCACCACGCTGAACATGCTGCGCATGGAGCAGCAGATCGACTCCCTCGGGCCGGTCACGCGCAAGCGCTACATGCACAACTACAACTTCCCGCCGTACTCGACCGGTGAGACCGGCCGGGTCGGCTCGCCGAAGCGTCGCGAGATCGGCCACGGCGCGCTCGCCGAGCGTGCCCTGGTGCCGGTGCTGCCGAGCCGCGAGGAGTTCCCCTACGCGATCCGCCAGGTCTCCGAGGCCCTCGGGTCCAACGGGTCGACCTCGATGGGCTCGGTCTGCGCCTCGACGCTGTCCATGCTCAACGCCGGCGTGCCGCTCAAGGCCCCCGTCGCGGGCATCGCGATGGGCCTGGTGTCCGACACGGTCGACGGGGAGACCCGCTACGCGGCCATGACGGACATCCTCGGTGCCGAGGACGCCTTCGGCGACATGGACTTCAAGGTCGCCGGCACCCGCGAGTTCGTCACCGCCATCCAGCTCGACACCAAGCTCGACGGCATCCCCGCCTCGGTGCTGGCCGCCGCGCTGGGCCAGGCGCACGACGCCCGCCTGACGATCCTCGACGTCATCGCCGAGGCCATCGACACGCCGGACGAGATGTCGCCGTACGCGCCGCGGGTCATCGCGGTCAAGGTCCCCGTGGACAAGATCGGCGAGGTCATCGGGCCCAAGGGCAAGATGATCAACCAGATCCAGGAGGAGACCGGCGCCGACATCTCCATCGAGGACGACGGCACGGTCTACATCGGCGCCACGGACGGTCCGAGCGCGGAGGCGGCGCGCGCGTCGATCAACGCGATCGCCAACCCGCACGTGCCGGAGGTCGGCGAGCGCTTCGTCGGCACCGTGGTCAAGACGACCTCCTTCGGCGCGTTCATCTCGCTCGCGCCGGGCAAGGACGGCCTGCTGCACATCAGCCAGCTGCGCAAGCTGGTCGGCGGCAAGCGCGTGGAGAACGTCGACGACGTGCTCTCCATCGGCCAGAAGATCCAGGTCGAGATCGGTGAGATCGACTCCCGCGGCAAGCTGTCGCTGGTCGCGATCACCGAGGAGGACGACAAGGCGGCCGACGCCGACGAGGCGCCGGCCACCGAGGCGAGCGAGGCCTGA	MEGPEIQFAEAVIDNGRFGTRTVRFETGRLARQAAGAVSAYLDGETMLLSTTAVGKHPKDQFDFFPLTVDVEERMYAAGRIPGSFFRREGRPSTEAILTCRLTDRPLRPLFVKGLRNEVQIVITVMAQHPDDAYDVLAMNAASASTQISGLPFSGPAGAVRIALIDDQWVAFPKYSDKERAVFEMVVAGRKVTAADGSEDVAIAMIEAEATDDAWNLVKNEGATAPTEQVVAEGIDAAKPFIAALCDAQLSLASQSAKDVAEFPLFPDYADDAYAAVESAASAPAAEALAIADKQQRESRLDEIKAGVLEQLGEQFEGREKELSAAYRSLQKQLVRQRVLTEGVRIDGRGLADIRTLSAEVEVLPRVHGSALFERGETQILGVTTLNMLRMEQQIDSLGPVTRKRYMHNYNFPPYSTGETGRVGSPKRREIGHGALAERALVPVLPSREEFPYAIRQVSEALGSNGSTSMGSVCASTLSMLNAGVPLKAPVAGIAMGLVSDTVDGETRYAAMTDILGAEDAFGDMDFKVAGTREFVTAIQLDTKLDGIPASVLAAALGQAHDARLTILDVIAEAIDTPDEMSPYAPRVIAVKVPVDKIGEVIGPKGKMINQIQEETGADISIEDDGTVYIGATDGPSAEAARASINAIANPHVPEVGERFVGTVVKTTSFGAFISLAPGKDGLLHISQLRKLVGGKRVENVDDVLSIGQKIQVEIGEIDSRGKLSLVAITEEDDKAADADEAPATEASEA				NA	NA	NA	NA	NA
AK001_01081	270	rpsO		30S ribosomal protein S15	ATGCCGCTCGACGCTGCCACGAAGCAGTCCATCATCACCGAGTACGCGACTCACGAGGGCGACACCGGCTCGCCGGAGGTGCAGATCGCTCTGCTGACCCGGCGGATCACCGATCTGACCGAGCACCTCAAGGAGCACAAGCAGGACCACCACTCCCGTCGTGGTCTGCTCCTCCTGGTCGGTCAGCGTCGCCGTCTGCTGAGCTACCTGCAGAAGGTCGACATCCAGCGCTACCGCGCGCTCATCGAGCGCCTCGGTCTGCGTCGCTGA	MPLDAATKQSIITEYATHEGDTGSPEVQIALLTRRITDLTEHLKEHKQDHHSRRGLLLLVGQRRRLLSYLQKVDIQRYRALIERLGLRR				NA	NA	NA	NA	NA
AK001_01082	978	ribF		Bifunctional riboflavin kinase/FMN adenylyltransferase	GTGCAGGTGTTCACGGACCTCGCCGAGGTCCCCGACGACTTCGGCCCGTCGGTGGTGACGATCGGCAACTTCGACGGCGTCCATCGCGGCCACCAGGCCGTCCTGGGACGTCTCGTCCGGCTCGCCCGGGCGGACTCCCGCGCCGCCGTCGCCGTGACCTTCGACCCGCACCCGGCGCTGGTGCACCGCCCGGAGTCGGCCCCGGAGCTGATCACGGGCCTCGCCGACCGCCTCGAGCTGCTGGCGCGGACGGGCCTGGACGCGGTGCTCGTCGTCCGCTACTCCCTGGAGTTCGCGGAGCAGAGCCCCGAGGAGTTCGTCACCCGCTACCTCACCGGGGCGCTCGGCGCGCGCAGCGTCGTCGTGGGCCACGACGTGCGCTTCGGCCGGGCCAACGCCGGGACGCTGGCCACCATGGTCGACCTCGGCGGGCGCCACGGCTTCGAGGTCGTGGCCGTCGACGACGTCGGCGAGTGCGCACCGCAGGACGACGGCGCCGGGGAGCGCTGGTCGAGCTCGGCCGCCCGCGCCCTGATCGCCGAGGGCGACGTGGCGCAGGCCGCCGACGTCCTGGGCCGGCCTCACCGGGTGCGCGGCGTCGTCGTGCACGGCGACGCCCGCGGCCGCGAGCTCGGGTTCCCCACGGCGAACCTGGGCGGCATCGACGGCATGGTGCCCGCCGACGGCGTCTACGCCGGATGGCTGCGCCGGCCGGGTCTGGCCGACCGCGAGCCCGACCACCCCGACGTCGTGCTGCCGGCGGCGATCTCCATCGGCACCAACCCGACGTTCGACGGTGTCGAGCGCCGCGTCGAGGCGTACGTCCTGGACCGGACCGACCTCGACCTGTACGGCGAGGAGGTCGTGCTCGAGATGGTCCAGCACCTGCGTCCCACCGTCCGGTTCGACGGCATCGACGCCCTGGTGACCCAGATGACCGACGACGTCGTGCGCGCACGGGCCGCCCTGCTCTCCTGA	MQVFTDLAEVPDDFGPSVVTIGNFDGVHRGHQAVLGRLVRLARADSRAAVAVTFDPHPALVHRPESAPELITGLADRLELLARTGLDAVLVVRYSLEFAEQSPEEFVTRYLTGALGARSVVVGHDVRFGRANAGTLATMVDLGGRHGFEVVAVDDVGECAPQDDGAGERWSSSAARALIAEGDVAQAADVLGRPHRVRGVVVHGDARGRELGFPTANLGGIDGMVPADGVYAGWLRRPGLADREPDHPDVVLPAAISIGTNPTFDGVERRVEAYVLDRTDLDLYGEEVVLEMVQHLRPTVRFDGIDALVTQMTDDVVRARAALLS	PGPT0008625_759	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008625-ribF-K11753	NA	NA
AK001_01083	972	truB	COG0130	tRNA pseudouridine synthase B	GTGGCCGAGGAGAGCTCCGGCCGTCCCGCGCGGCGCCCGACGGCGCCCGACGGTCTGCTGGTCGTCGACAAGCCGGCCGGCTGGACCAGCCACGACGTCGTCGGGCGGTGCCGTCGGTTGGCGGGGACGCGCAAGGTCGGCCACGCCGGCACGCTGGACCCGATGGCCACGGGCGTGCTGGTGATCGGCGTCGGGCGGGCCACCAAGCTGCTCACCTACGTCGTGGGGGCCGACAAGGCCTACACCGCGACGATCCGTCTCGGCGTCGCGACCACCACGGACGACGCCGAGGGAGACGTCGTCGACGCCCCCGGCGTGGACGACGGTGTGGACGACGGTGTGGACCCGGCGGCGCTGGACCGCGAGATCGGCCGGCTCACCGGGGACATCCAGCAGGTGCCGACCACCGTCAGCGCGATCAAGGTGGACGGCCGGCGCGCCTACGCGCGGGCCCGGGCCGGCGAGGACGTGGAGCTCGCCGCCCGCCCGGTGACCGTGAGCACCTTCGAGGTGACCGCCACCCGGCCCGCGACGTCCCACGACGGGACCGCGGTCCTCGACCTCGACGTCGTCGTGGTCGTCTCCTCCGGCACGTACGTGCGCGCCCTGGCGCGGGACCTCGGGGCGGCGCTCGGCGTCGGCGGGCACCTGACGGCGCTGCGGCGGACGCGTGTGGGCGGCTACACGCTCGACCGGGCCGCCACCCTCGACGAGCTCGAGGCGCAGGCCGACGCGGACGGCGTGCTCGCCACGCTGCCGCTCGGCGACGCGGCGCGCAGCACCTTCCCGGTGCGTGAGCTGACCGAGGCCGAGACCCGCGCCCTGGGCTACGGGCAGTGGGTGACGCCGACCGGGATGCGCGGGACCGTGGCGGGCCTGGGCCCGGACGGCACCCTGGTCGCCCTGCTCGAGGACACGACCCGGCGTGGCGAGCGCCTGGCCAAGCCGGTGCTGGTGCTCGCCCCGGCCTGA	MAEESSGRPARRPTAPDGLLVVDKPAGWTSHDVVGRCRRLAGTRKVGHAGTLDPMATGVLVIGVGRATKLLTYVVGADKAYTATIRLGVATTTDDAEGDVVDAPGVDDGVDDGVDPAALDREIGRLTGDIQQVPTTVSAIKVDGRRAYARARAGEDVELAARPVTVSTFEVTATRPATSHDGTAVLDLDVVVVVSSGTYVRALARDLGAALGVGGHLTALRRTRVGGYTLDRAATLDELEAQADADGVLATLPLGDAARSTFPVRELTEAETRALGYGQWVTPTGMRGTVAGLGPDGTLVALLEDTTRRGERLAKPVLVLAPA				NA	NA	NA	NA	NA
AK001_01084	438	rbfA	COG0858	Ribosome-binding factor A	ATGAGCGAGAACCCGCGGGCGCGCCGGTTGGCGGACCGCATCAAGGAGATCGTCGCGCAGATGCTCGACACGCGGATCAAGGACCCCCGCCTCGGGTTCGTCACGGTCACGGACGTGCGTGTCACCGGCGACCTGCAGCAGGCGTCGGTGTTCTACACGGTCTTCGGCAGCGACGAGGAGCGGACCGGGACCGCCGCCGCGCTGGAGAGCGCCAAGGGGATGATCCGTTCCGAGGTCGGCAAGCAGACGGGCGTGCGGCTCACGCCGACCATCGAGTTCCACCTGGACTCGGTGCCGGAGACCGCGGCGCACCTCGACGCGGCGCTGTCGCAGGCCCGCCTGCGCGACGCCGAGCTGGCGGCGCTGCGCGAGGGCAAGTCCCCGGCGGGCGACGCGGACCCGTACCGCACGAGCGACGAGCGCGCCGACGACGAGTGA	MSENPRARRLADRIKEIVAQMLDTRIKDPRLGFVTVTDVRVTGDLQQASVFYTVFGSDEERTGTAAALESAKGMIRSEVGKQTGVRLTPTIEFHLDSVPETAAHLDAALSQARLRDAELAALREGKSPAGDADPYRTSDERADDE				NA	NA	NA	NA	NA
AK001_01085	2877	infB		Translation initiation factor IF-2	GTGGCGAAGATCCGCGTCCACGAGCTGGCGAAGCAGCTCGGGGTGGAGAGCAAGACCCTGCTGGCCGAGCTGAAGGCCTCAGGTGAATTCGTCCGGTCGGCGTCCTCGACGCTCGAGGCACCGGTCGAGCGCATGATGCGCGGCAAGTTCGCGTCGTCCGACGGCGGCGCGTCGAAGGGCGACAAGCCCGCCAAGCCGGCGCCCAAGAAGTCGGCCGCGCCCAAGCCGGGTGCGCCGAAGCCGGGAGGCGAGAAGGCCCCGAAGCCGGGTGCCCCGACGCCCGCGGCGGCGCCCAAGCCCGGTGCCGCCACGGCCCCGAGCGCCGAGACGGCCCCGCCGGCCGCCCCGAAGCCGGCCGGCGAGCAGGCCCCGACGTCCGGCGCCCCCACGCCGGGTGCGCCCACGCCGGGCACGGCCCCGAAGCCCGGTGGCGCGCCCAAGCCGGGTGGTGCCCCCAAGCCGGGTGGCGCGCCCAAGCCGGGTGGTGCCCCCAAGCCGGGCGGCCAGCGCTCCGGCGGACGCGGTGGCCCGCGTCCGGGCAACAACCCGTACTCCTCCCAGCAGGGCATGCAGCGTTCGGGCGGTGGCCCGCGTCCGGGCAACAACCCGTACTCCTCCCAGCAGGGCATGCAGCAGCGTCCCGCACGCGGTGAGGGCAAGCAGGGCGAGCGCTCCGGCGGTCCCCGTCCGGGCGCTCCGCGTCCGGCGGCCCCGCGTCCGGGCGCCCCGCGCCCCAACCCGGGCATGATGCCCGGCAAGACGAGCATGCCGCGTCCGGGCGAGCGTCCCGGCGGCGGCGGTCGTGGCGGCCGTGGCCGCGGCGGCGGTCCGGGCGGTCCCGGTGGTGCGGGCGGTCCCGGGGGTCCCGGCGGCGGTCGGGGCGGTTTCCGCCCCGGTGGCGGCGGCGGCTTCCGCGGTCGTGGTGGCGCCGGCCGCGGCAGCACCCAGGGTGCGTTCGGTCGCGCCGGCGGCAAGCCGGTCCGGGGCCGCAAGTCGAAGCGGGCGAAGCGTCAAGAGTTCGAGCAGATGCAGGCCCCCACGCCGGGTGGCGTGTCGGTCCCTCGGGGCAACGGCAACACCCTGGTGCGCCTGCGCCACGGCTCGTCGCTGAACGACTTCGCGGACAAGATCGACGCGAACCCCGCCGCGCTCGTCACGGTGCTGCTGCACCTCGGCGAGATGGCGACCGCGACCCAGTCGCTGGACGAGGAGACCTTCGTCACGCTCGGGTCCGAGCTCGGCTACAAGATCGAGATGGTCTCGGCCGAGGAGGAGGACCGCGAGCTGCTCGAGTCCTTCGCCATCGACCTGCAGGCCGAGGAGGCCGAGGAGACCGACGAGGACCTCGTCGCCCGGCCGCCGGTCGTGACCGTCATGGGTCACGTCGACCACGGCAAGACGAAGCTCCTGGACGCCATCCGGTCCACGGACGTCGTCGCGGGCGAGGCCGGCGGGATCACCCAGCACATCGGTGCGTACCAGGTGCACACCGAGCACGAGGACATGGACCGTGCGGTCACGTTCATCGACACCCCGGGTCACGAGGCCTTCACGGCCATGCGTGCCCGTGGTGCCAAGGCGACGGACATCGCGATCCTCGTGGTGGCCGCGGACGACGGCGTGATGCCGCAGACGATCGAGGCGCTGAACCACGCCCAGGCGGCCGACGTGCCCGTCGTGGTCGCGGTGAACAAGGTGGACAAGGAGGGGGCCAACCCCGCCAAGATCCGCCAGCAGCTCACCGAGTACAACCTGGTGGCCGAGGAGTACGGCGGCGACACGATGTTCGTCGACGTCTCGGCGCTGCAGCGCAAGGGCATCGACGACCTGCTCGAGGCCGTGCTGCTGACGGCGGACGCGGCCCTCGACCTGCGGGCGAACCCGACCAAGGACGCCCGTGGTGTGGCGATCGAGGCGCACCTGGACAAGGGCCGCGGCTCCGTGGCCACCGTCCTGGTGCAGTCCGGCACCCTGCACGTCGGCGACGCCATCGTCGCCGGCACCGCGCACGGCCGGGTGCGGGCCATGTTCGACGAGCACGGCGAGTCGGTCACCGAGGCGGGCCCGGCGCGTCCGGTCCAGGTCCTGGGTCTGGCGTCGGTGCCGAGCGCGGGGGACACCTTCCTCGCGGCGCCCGACGAGCGCACCGCCCGGCAGATCGCCGAGAAGCGCGAGGCCGCCGAGCGCGCCGCGCTGCTGGCCAAGCGGCGCAAGCGCATCAGCCTCGAGGACTTCACCAAGGCGCTCGAGCAGGGCAAGGTCGAGACCCTCAACCTGGTCCTCAAGGGCGACGTCTCCGGTGCCGTCGAGGCGCTGGAGGACGCCCTGCTCAAGATCGACGTGGGCGACGAGGTCGACCTGCGCGTCATCCACCGCGGTGTCGGTGCGATCACGCAGAACGACGTCAACCTGGCCACGGTCGACAACGCCGTGATCCTCGGCTTCAACGTCCGCTTCGGCGAGCGTGTCGAGGACCTCGCCGAGCGCGAGGGCGTCGAGGTCAAGTTCTACTCGGTCATCTACCAGGCGATCGACGACATCGAGGCGGCCCTCAAGGGCATGCTCAAGCCGGAGTACGAGGAGGCGAAGCTCGGCAGCGCCGAGATCCGCCAGGTCTTCCGGTCCTCGAAGTTCGGCAACATCGCCGGTTCGATCGTCCGGTCGGGCACGATCCGTCGCAACACCAAGGCCCGCGTGCTGCGCGACGGCCGCGTGGTGGGCGACGAGCTCACGGTCGAGTCGCTGCGACGCGAGAAGGACGACGTCACCGAGGTCCGCGAGGGCTTCGAGTGCGGTATCGGTCTCGGGTCGTACAACGACATCGTCGAGGGCGACATCATCGAGACCTTCGAGATGCGCGAGATCCCGCGCGACTGA	MAKIRVHELAKQLGVESKTLLAELKASGEFVRSASSTLEAPVERMMRGKFASSDGGASKGDKPAKPAPKKSAAPKPGAPKPGGEKAPKPGAPTPAAAPKPGAATAPSAETAPPAAPKPAGEQAPTSGAPTPGAPTPGTAPKPGGAPKPGGAPKPGGAPKPGGAPKPGGQRSGGRGGPRPGNNPYSSQQGMQRSGGGPRPGNNPYSSQQGMQQRPARGEGKQGERSGGPRPGAPRPAAPRPGAPRPNPGMMPGKTSMPRPGERPGGGGRGGRGRGGGPGGPGGAGGPGGPGGGRGGFRPGGGGGFRGRGGAGRGSTQGAFGRAGGKPVRGRKSKRAKRQEFEQMQAPTPGGVSVPRGNGNTLVRLRHGSSLNDFADKIDANPAALVTVLLHLGEMATATQSLDEETFVTLGSELGYKIEMVSAEEEDRELLESFAIDLQAEEAEETDEDLVARPPVVTVMGHVDHGKTKLLDAIRSTDVVAGEAGGITQHIGAYQVHTEHEDMDRAVTFIDTPGHEAFTAMRARGAKATDIAILVVAADDGVMPQTIEALNHAQAADVPVVVAVNKVDKEGANPAKIRQQLTEYNLVAEEYGGDTMFVDVSALQRKGIDDLLEAVLLTADAALDLRANPTKDARGVAIEAHLDKGRGSVATVLVQSGTLHVGDAIVAGTAHGRVRAMFDEHGESVTEAGPARPVQVLGLASVPSAGDTFLAAPDERTARQIAEKREAAERAALLAKRRKRISLEDFTKALEQGKVETLNLVLKGDVSGAVEALEDALLKIDVGDEVDLRVIHRGVGAITQNDVNLATVDNAVILGFNVRFGERVEDLAEREGVEVKFYSVIYQAIDDIEAALKGMLKPEYEEAKLGSAEIRQVFRSSKFGNIAGSIVRSGTIRRNTKARVLRDGRVVGDELTVESLRREKDDVTEVREGFECGIGLGSYNDIVEGDIIETFEMREIPRD				NA	NA	NA	NA	NA
AK001_01086	234			hypothetical protein	ATGCGTGACCTGCGGTCGCAGCTCCTGCGGCTGGTCCTCGCGACGTCGGACGACGCCCAGCGTGTCGTCGTGGACGTCCGTGGGAGCCTGCCGGGGCGGGGTGCCTGGCTCCACGAGGACCTCGCCTGCTGGGAACGTGCTGTCCGGCGACGGGCCGTCCCGCGCGCACTGCGTGCGGACGGGCCGGTGGACCTGGACCCGGTCCGGGCATATCTGGAGCACCAGGACCGTTGA	MRDLRSQLLRLVLATSDDAQRVVVDVRGSLPGRGAWLHEDLACWERAVRRRAVPRALRADGPVDLDPVRAYLEHQDR				NA	NA	NA	NA	NA
AK001_01087	1041	nusA	COG0195	Transcription termination/antitermination protein NusA	GTGGACATCGACATGAGCGCGCTGCGGATGCTGGAGCGCGAGCGGGAGATCAGCCTGGACCTGCTGGTCGGGGCGATCGAGGACGCGCTGCTGTCCGCCTACCACCGCACCCCGGACGCCTACCACCACGCGCGGGTCGAGCTGGACCGCACGTCCGGTCACGTCACCGTGTGGGCGCGCGAGCAGATCCGCACGCCCGACCCGGAGGACCCGGAGGGGCGGGGCACGGTGGAGCTGGGCCCGGAGATCGACGACACGCCGGAGAACTTCGGGCGCATCGCCACCGCCACGGCCCGCCAGGTGATCGTGCAGCGGCTGCGGGACGCCGAGGACGACCAGGTGCTGGGCACCTTCCGCGGCAAGGAGGGCGAGATCCTCGCGGGGGTGATCCAGCAGGGTCACGACCCGCGCACGGTGCTGGTCGACGTCGGCGAGACCGAGGCGGTGCTCCCGCACCACGAGCAGGTGCCCGGAGAGAAGTACGTCCACGGTGAGCGCCTGCGCGGCTACGTGGTGGAGGTCGCCCGCGGCATGAAGGGCGCCAAGGTCACGCTCAGCCGGACCCACCCGGGCCTGGTACGCAAGCTGTTCGAGCTGGAGGTCCCCGAGATCGCGGACGGCTCGGTCGAGATCACCGCCGTCGCCCGCGAGGCCGGGCACCGCTCGAAGGTCGCGGTGCGCTCGCGGGTGCCCGGCCTGAACGCCAAGGGTGCCTGCATCGGACCGATGGGGTCCCGCGTGCGCGCCGTGATGGCCGAGCTGCACGGGGAGAAGATCGACATCGTCGACCACAGCGACGACCCGGCCCGGTTCGTGGCGAGCGCCCTGTCGCCGGCGCGTGTGAGCTCGGTCACCGTCGTGGACGCCGAGGCCAAGGCCGCGCGCGCCGTCGTGCCCGACTACCAGCTCTCCCTCGCGATCGGCAAGGAAGGGCAGAATGCTCGGCTTGCGGCCAAGCTCACGGGGTGGCGGATCGACATCCGGTCCGACGAGGGCACACCCGGGGCGGTGGCCGACGGTGACCGGGTCGAGGGCGCCTGA	MDIDMSALRMLEREREISLDLLVGAIEDALLSAYHRTPDAYHHARVELDRTSGHVTVWAREQIRTPDPEDPEGRGTVELGPEIDDTPENFGRIATATARQVIVQRLRDAEDDQVLGTFRGKEGEILAGVIQQGHDPRTVLVDVGETEAVLPHHEQVPGEKYVHGERLRGYVVEVARGMKGAKVTLSRTHPGLVRKLFELEVPEIADGSVEITAVAREAGHRSKVAVRSRVPGLNAKGACIGPMGSRVRAVMAELHGEKIDIVDHSDDPARFVASALSPARVSSVTVVDAEAKAARAVVPDYQLSLAIGKEGQNARLAAKLTGWRIDIRSDEGTPGAVADGDRVEGA				NA	NA	NA	NA	NA
AK001_01088	525	rimP		Ribosome maturation factor RimP	ATGGCAGCAGGAGAGGACCGGACCGCGGACGGTCGCGTCCGAGCGGTGGTCGCTCCGGTGGTCGACGACGTCGGCCTGTCCCTCGAGGACGTCCGGGTGACCCGGGCGGGAAGCCGCTCGGTGGTCCGCCTGACGATCGACCTGCCCGAGGACGCGGTGGGCAGCCTCGACTCCGACACCCTCGCCGAGGCCTCGCGGTCGCTGTCCGCGGCCCTGGACGACGCGGACGCGGTGCGCGGCCAGTACACGCTGGAGGTCTCCACCCCGGGTGTCTCGCGGCCGCTGACGGAGCTGCGGCACTATCGTCGGGCGCGGACGCGCCTGGTGCGTCTGACGCTCGACGACGGCCAGGTGGTCACCGGGCGGCTGACGGACGTGGACGGCGGCGGCGACGACGCCGTGCTCGTCCTGGACGACGAGCGACGTGTCGGGCTCGGGCAGGTGCGGCGCGGCCGTGTCGAGGTGGAGCTGGACCGGCGCGAGGACGACGAGGCGGGGACCTCCCGCCAGGGCGAGGAGAGCTGA	MAAGEDRTADGRVRAVVAPVVDDVGLSLEDVRVTRAGSRSVVRLTIDLPEDAVGSLDSDTLAEASRSLSAALDDADAVRGQYTLEVSTPGVSRPLTELRHYRRARTRLVRLTLDDGQVVTGRLTDVDGGGDDAVLVLDDERRVGLGQVRRGRVEVELDRREDDEAGTSRQGEES				NA	NA	NA	NA	NA
AK001_01089	1236			hypothetical protein	ATGACGCTGCAGCCTGCCCCCGACCCGACCCGCCGCCGGAGCCGGGGCGTGGTCGGCGGCCTGCTCGTGGTGCTCCTGCTCGCCGGCTGCGGGCTCCGGCTGGAGACCCCTCCGCCCGCCGAGCCGGAGCCCGACACGCTCGAGATCGTGCGTCGCACCGCCGTCACGGACGCCCTGTTCGTCGCCGAGCAGGCCGACGCCGCGATCGAGGAGCTGGGCGACCGGCGCCGGCGGCTGGTCGCCGAGCTCGAGCGGGTCGCGGCCGACTCCCGCGAGCAGGCGGACCAGCTCGGCGGCGTGTACGTCTCCGGGCTGCAGGAGCCCGCCGACCCGCCGAGCGGGTCGCCGCAGAGCACGCCGGCCGACGAGCCGGTGCTGACCCGGGACGTCGTCGACGCGCTGACGAACGCCTCGGGACGCAACCGGACGGCGGCCGGCACCACGGCCGACGGCTCCCTGGCGAGGCTGCTGGCCTCGGTGGGCGCGGCGCAGGCCGTCTCGGCCGCCCGCGTGGGCGGGTTCACCGACGACGGAGACCCGGCGCCGGTCGTGCCGCGGCTGCCCGGACCCGACGAGGTGACGGCCGACGCCCCGTCGGGCGCGTCGCCGGCCGGCGACGACGCCGGGCAGGCGGCCGACCGGTCGGGGTCGGCCGCGCTCACCGCTCCCTCCGACGCCGAGGAGCCCCCGGCCACCGAGGAGCCCGGCGAGGACGGCGTCTCGAGCACGTCACCGGACTCCGACGAGCCCCCCGTGGTGCCGGTCGGCCTGACGGCGGCCGACCTGCGCACCCTCGTGACCTCGGAGCACGGGGCGGGCTACGCCCTGCGGCTGCGTGCCGCGCTCCGGCCCGAGGACGAGCGCGCCCGCCTCGCCGGCCGTGCCGACGTGCACACCGCGCGGGCCCAGGCCTGGGCCGTCGTGGCCGGCACGGACGGGACGGCCCAGGACCCGCGCCAGGTGGCCTACGCGGTCCCCCGCGGTCCCGGCGACCGGGCGCTGGTCCGCGCGGTCGAGGACGACCTGGCCACGACCTACGCGACGCTGGTCGGCTCGACCGCGGCGGGCACGCGCGCCGTCCTGGTCGACCTGCTCGTCGAGACCGCCCTCACGCTCGACGCGTGGGGCGCCGACCCCGTGCCGTTCCCCGGGCTGCCGGAGCAGGCGCCGCAGGAGACCACCGACGGCGAGGACGCCGCGGAGGACCAGGGCGAGCAGTCCGACCAGGACGGCTGA	MTLQPAPDPTRRRSRGVVGGLLVVLLLAGCGLRLETPPPAEPEPDTLEIVRRTAVTDALFVAEQADAAIEELGDRRRRLVAELERVAADSREQADQLGGVYVSGLQEPADPPSGSPQSTPADEPVLTRDVVDALTNASGRNRTAAGTTADGSLARLLASVGAAQAVSAARVGGFTDDGDPAPVVPRLPGPDEVTADAPSGASPAGDDAGQAADRSGSAALTAPSDAEEPPATEEPGEDGVSSTSPDSDEPPVVPVGLTAADLRTLVTSEHGAGYALRLRAALRPEDERARLAGRADVHTARAQAWAVVAGTDGTAQDPRQVAYAVPRGPGDRALVRAVEDDLATTYATLVGSTAAGTRAVLVDLLVETALTLDAWGADPVPFPGLPEQAPQETTDGEDAAEDQGEQSDQDG				NA	NA	NA	NA	NA
AK001_01090	1827	proS	COG0442	Proline--tRNA ligase	ATGTCGATCGCGTCCCACCGCAGCGGTGACCTGCTGCGCCTGTCCTCCCTCTTCGTCCGCACCCTGCGCGAGGATCCCGCCGACGCCGAGGTCGCCAGCCACCGGCTGCTGGTACGCGCGGGCTACATCCGGCGGGCGGCCCCGGGCGTGTACTCCTGGCTGCCGCTGGGACTGCGCGTGCTCGCCAAGGTCGAGCAGGTGGTGCGCGAGGAGATGGCCGCGATCGGGGCGCAGGAGGTGCACTTCCCGGCGCTGCTGCCGCGCGAGCCCTACGAGGCCACCGGCCGCTGGAGCGAGTACGGTCCCAACCTGTTCCGGCTCAAGGACCGCAAGGACGCCGACTACCTCCTGGCGCCGACGCACGAGGAGATGTTCACGCTGCTGGTCAAGGACCTGTACTCCTCGTACAAGGATCTGCCGCTGGCGCTGTACCAGATCCAGACCAAGTACCGCGACGAGGCCCGTCCGCGGGCCGGGCTGATCCGCGGCCGCGAGTTCATCATGAAGGACGCCTACTCCTTCGACCTGGACGACGACGGTCTCGCCGCGGCGTACGACAAGCAGCGCGGCGCCTACCAGCGGATCTTCGAACGCCTCGGGCTCGACTACGTCGTCGTCGCGGCGACCTCGGGCGCCATGGGCGGTTCGCGCTCGGAGGAGTTCCTCTCCCCGTCGCCGATCGGCGAGGACACCTTCGTGCGCTCGGCCGGCGGCTACGCGGCCAACGTGGAGGCCGTCACCACGCCGGTGCCCGAGCCGGTGCCGTACGACGACGCCCCCGCGGCCCACGTCGAGGACACCCCGGACACCCCGACGATCGAGACGCTGGTGGACGTGGCCAACGCCCGTCACCCGCGTCCGGACCGGGCGTGGACCGCCGCGGACACGCTGAAGAACGTCGTGCTCGCCGCGACGCACCCCGACGGGCGGCGCGAGCTCGTCGTCGTCGGCGTGCCCGGCGACCGCGAGGTGGACGTCAAGCGGCTGGAGGCGTCCATGGCCCCGGCCGAGGTGGAGCCCGCCACGGAGGCGGACTTCGCGGCCCACGCCGAGCTCGTCAAGGGCTACATCGGGCCGGGCGTGCTGGGACCGCAGGGCAAGCAGGTGACCGACGTCGAGACCGGCGAGGCCCGCTCGGCGATCCGGTACCTGCTCGACCCGCGGGTGGTCACGGGGACCCGCTGGATCACCGGCGCCGACGAGACCGGCAAGCACGTGTTCGACCTGGTGGCGGGCCGTGACTTCACCGCGGACGGCACCGTCGAGGCCGCGGAGGTCCGTGCCGGCGACCCCGCGCCCGACGGCTCGGGGCCGCTCGAGCTCGCGCGTGGCATCGAGATCGGTCACATCTTCCAGCTGGGCCGCAAGTACGCCGAGGCCCTCGACCTGAAGGTGCTCGACCCGAACGGCAAGCAGTCCGTGGTGACCATGGGGTCCTACGGCATCGGCGTGAGCCGCGTGCTGGCCGCCCTGGCGGAGGCGAACCACGACGAGCGCGGGCTCGCGTGGCCGGCTCAGGTCGCCCCGGCGCACGTCCACGTGGTCGCCACCGGCAAGGGGGCCGAGGTCTTCGAGGCCGCCGACGCCCTGGCCTCGCAGCTCGCGGCCGAGGGCGTCGAGGTGGTCTACGACGACCGCCCGAAGGTCTCGCCCGGGGTGAAGTTCGCCGACGCCGAGCTCTTCGGCGTGCCGCTCGTGGTCGTCGTGGGCCGGGGCCTGTCCGACGGCGTGGTGGAGGTCCGTCCCCGCGTCGGGCCGGCGGAGCAGGTCGCCGTGGACGACGCCGTGGCGGAGGTCACGCGTCGGGTCGGCGAGCTGCTGGCCTGA	MSIASHRSGDLLRLSSLFVRTLREDPADAEVASHRLLVRAGYIRRAAPGVYSWLPLGLRVLAKVEQVVREEMAAIGAQEVHFPALLPREPYEATGRWSEYGPNLFRLKDRKDADYLLAPTHEEMFTLLVKDLYSSYKDLPLALYQIQTKYRDEARPRAGLIRGREFIMKDAYSFDLDDDGLAAAYDKQRGAYQRIFERLGLDYVVVAATSGAMGGSRSEEFLSPSPIGEDTFVRSAGGYAANVEAVTTPVPEPVPYDDAPAAHVEDTPDTPTIETLVDVANARHPRPDRAWTAADTLKNVVLAATHPDGRRELVVVGVPGDREVDVKRLEASMAPAEVEPATEADFAAHAELVKGYIGPGVLGPQGKQVTDVETGEARSAIRYLLDPRVVTGTRWITGADETGKHVFDLVAGRDFTADGTVEAAEVRAGDPAPDGSGPLELARGIEIGHIFQLGRKYAEALDLKVLDPNGKQSVVTMGSYGIGVSRVLAALAEANHDERGLAWPAQVAPAHVHVVATGKGAEVFEAADALASQLAAEGVEVVYDDRPKVSPGVKFADAELFGVPLVVVVGRGLSDGVVEVRPRVGPAEQVAVDDAVAEVTRRVGELLA				NA	NA	NA	NA	NA
AK001_01091	879	mutM		Formamidopyrimidine-DNA glycosylase	ATGCCGGAGCTGCCCGAGGTGGAGGGGCTGGCGCGCTTCCTCGACGAGCGCACGCGCGGTCGGACCGTCGTGGCCGCCGACGTCGCCGCCGTCGCCGCGCTCAAGACCCACGACCCGCCGGTGTCGTCCCTGGTGGGCGCCGCGGTGCGCGGGTGGACGCGCCGGGGCAAGTGGCTGGTGCTCGGCACCGACGGCCCCGTGCTGGCGGTGCATCTGGCCCGCGGCGGCTGGGTGCGGTGGCGGGAGGACGCACCGACGACGCCGGTGCGTCCGCGGCTGGGCGGCTCGTCCCGGGGTGCGGCGCTCGCGCTGCGGCTGCGGTTCGACGACGGCGCGGGTGCGGACGTCACCGAGGCCGGCACGCGCAAGCGCCTCGCCGTGCACGTGGTCCACGCGGCCGAGGACGTCGAGGCGATCCGGACCCTCGGCGTCGAGCCCCTGTCCGAGGCCTTCACCCCGGCGGTGCTGGAGGACCTGATGCGGGGGCGCAACCAGCAGCTCAAGGGGCTGCTGCGGGACCAGCACGCGATCGCCGGGATCGGCAACGCCTACTCCGACGAGATCCTGCACGCCGCCCGCCTGTCCCCCTTCGCCCTGACCCGGTCGTTCGACGCCGCCGGGGTGGCGGCGCTGCACACGGCCGTGGTGGGCACGCTGGCCGCTGCGGTGGACGCGGCGACGGGTCGCCCCGCGGCCGAGCTCAAGGACGCCAAGCGGCGCGGCATGCACGTGCACGGCCGCACCGGCGAGGCGTGCCCCGAGTGCGGCGACGTGGTGCGCGAGGTGTCGTTCGCCGACCGCTCGCTGCAGTACTGCGCGACCTGCCAGACCGGCGGTCAGGTGCTGGCCGACCGGCGGATGTCCCGGCTGCTGCGCTAG	MPELPEVEGLARFLDERTRGRTVVAADVAAVAALKTHDPPVSSLVGAAVRGWTRRGKWLVLGTDGPVLAVHLARGGWVRWREDAPTTPVRPRLGGSSRGAALALRLRFDDGAGADVTEAGTRKRLAVHVVHAAEDVEAIRTLGVEPLSEAFTPAVLEDLMRGRNQQLKGLLRDQHAIAGIGNAYSDEILHAARLSPFALTRSFDAAGVAALHTAVVGTLAAAVDAATGRPAAELKDAKRRGMHVHGRTGEACPECGDVVREVSFADRSLQYCATCQTGGQVLADRRMSRLLR				NA	NA	NA	NA	NA
AK001_01092	924			hypothetical protein	ATGGGATGGCGACCGGCGCTGCGCAGCCGGTCGGCCGCGCCCGGGGACGGCTCCGGGGCCGGCGCTCGGGTCCTGGGACCCGACGACCTGGTCGAGGCACGCCGGGTCTGCACGCGCGACCCGGTGGCGTCCGTGCTCGCCGCCGCCCGGCTCGACGTGGCCCTGCACGTCGGGCTGGCCGCGGCCGGCGGGCAGGTGTGGGGCTACCCGGCCACCGGCGAGCTGCGCGCCGTGTGCTGGGCCGGGGCCAACCTCGTCCCGGTGGTGCCGTCGTCGGTGGACCCCGCCGAGGCCGACGACGCCGTGGCGTCCTTCGCGGCCCTGGCGCGTCAGCAGGGCCGCCGGTCCAGCTCGGTCGTGGGAGAGCAGCGCACCACGCTGCGCCTGTGGGAGCTGCTCTCGCGGGTCTGGCCCCCGCCGCGCGAGGTGCGCACCGACCAGCCCTCCCTCGTGCTCGACCGCGACCCGCTCGTCGCGCCCGACCCGGGCGTGCGGCACGCGGACCTGTCCGAGCTGGAGCTGGTCCTGCCCGCCTGCGTCCGCATGTTCACCGAGGAGGTGGGCTACTCCCCGGTGGCGGGCGGCGGCAGCGCCTATGCCGCCCGGGTGCGGTCGCTGGTGGCCGAGCGGCGCTCGTTCGTGCGCATCGAGCCCGACGACGACGGCGCGCCCCGGGTGGTCTTCAAGGCGGAGCTGGGCGCGGTGTCCGGCGGCGTGGCCCAGGTCCAGGGCGTCTGGGTCGACCCGGAGCTGCGCGGGCGGGGGTTCTCCGTCCCGGGGATGGCCGCCGTGGTCGCCCTGACCCGGCAGCACGTCGCCCCCGTGGTCTCGTTGTACGTCAACGGGTTCAACGCCCCTGCGCTGGCCACCTACCGCCGGGTGGGCTTCGAGCAGGCCGGGACCTTCGCGACCGTCCTGTTCTAG	MGWRPALRSRSAAPGDGSGAGARVLGPDDLVEARRVCTRDPVASVLAAARLDVALHVGLAAAGGQVWGYPATGELRAVCWAGANLVPVVPSSVDPAEADDAVASFAALARQQGRRSSSVVGEQRTTLRLWELLSRVWPPPREVRTDQPSLVLDRDPLVAPDPGVRHADLSELELVLPACVRMFTEEVGYSPVAGGGSAYAARVRSLVAERRSFVRIEPDDDGAPRVVFKAELGAVSGGVAQVQGVWVDPELRGRGFSVPGMAAVVALTRQHVAPVVSLYVNGFNAPALATYRRVGFEQAGTFATVLF				NA	NA	NA	NA	NA
AK001_01093	1140	ispG	COG0821	4-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)	ATGCCCGCACCCCCCGCGCCCACGCTCGCCCCGCGCCGGAAGACCCGCAAGATCAAGGTCGGTGACGTCTACGTCGGTGGCGACGCCCCGATCAGCGTCCAGTCGATGACGACGACCAAGACCACCGACATCAACGGCACCCTCCAGCAGATCGCGGAGCTGACGGCCGCCGGCTGCGACATCGTCCGTGTCGCGTGCCCCACCCAGGACGACGCCGACGCGCTGCCGATCATCGCGAAGAAGTCCCAGATCCCCGTCATCGCGGACATCCACTTCCAGCCGAAGTACGTGTTCGCGGCCATCGAGGCCGGTTGCGCCGCCGTGCGGGTCAACCCGGGCAACATCCGCCGCTTCGACGACCAGGTCAAGGAGATCGCCCAGGCGGCGAAGGACCACGGCACCTCGTTGCGCATCGGCGTCAACGCCGGGTCGCTGGACAAGCGCCTCATCGAGAAGTACGGCAAGCCGACCCCCGAGGCGCTGGTCGAGTCGGCCGTGTGGGAGGCGAGTCTCTTCGAGGAGCACGACTTCCACGACTTCAAGATCTCCGTCAAGCACAACGACCCCGTGGTCATGGTCGAGGCGTACCGGCAGCTGTCCGAGCGGGGTGCGTGGCCCCTGCACCTCGGGGTCACCGAGGCGGGACCGGCCTTCCAGGGCACGATCAAGTCCGCCACGGCCTTCGGTGCGCTGCTCAGCGAGGGTATCGGCGACACCATCCGCGTCTCGCTGTCGGCGCCTCCGGTCGAGGAGGTCAAGGTCGGTACGCAGATCCTGCAGTCGCTCAACCTGCGCCCCCGCAAGCTCGAGATCGTCTCCTGCCCGTCCTGCGGGCGGGCGCAGGTGGACGTCTACGAGCTCGCCGACAAGGTCACCGCGGGTCTGGAGGGCATGGCGGTCCCGCTGCGCGTGGCCGTGATGGGCTGTGTCGTCAACGGTCCCGGCGAGGCGCGCGAGGCCGACCTGGGTGTGGCGTCCGGCAACGGCAAGGGGCAGATCTTCGTCAAGGGCGAGGTCATCAAGACCGTCCCGGAGGCCCAGATCGTCGAGACGCTGATCGACGAGGCGAACCGCATCGCCGCGACCATGGACGCGCCGGAGAACGACGACCAGGCCGGCGCCGTGGTGACGGTCTCCTAG	MPAPPAPTLAPRRKTRKIKVGDVYVGGDAPISVQSMTTTKTTDINGTLQQIAELTAAGCDIVRVACPTQDDADALPIIAKKSQIPVIADIHFQPKYVFAAIEAGCAAVRVNPGNIRRFDDQVKEIAQAAKDHGTSLRIGVNAGSLDKRLIEKYGKPTPEALVESAVWEASLFEEHDFHDFKISVKHNDPVVMVEAYRQLSERGAWPLHLGVTEAGPAFQGTIKSATAFGALLSEGIGDTIRVSLSAPPVEEVKVGTQILQSLNLRPRKLEIVSCPSCGRAQVDVYELADKVTAGLEGMAVPLRVAVMGCVVNGPGEAREADLGVASGNGKGQIFVKGEVIKTVPEAQIVETLIDEANRIAATMDAPENDDQAGAVVTVS	PGPT0007580_1817	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526	NA	NA
AK001_01094	1287	rip1	COG0750	Zinc metalloprotease Rip1	ATGGTCGCCTACCCTGCTGGTGTGGACATCCTTCCTCTCGTCGTCGGCATCGTCGTCATCGTGCTCGGCATCCTCGTCTCGATCGCCCTGCACGAGGTGGGGCACATGGTGCCCGCCAAGAAGTTCGGCGTGCGCGTGAGCGAGTACATGGTGGGTTTCGGGCCCACCCTCTGGTCGCGTCGCAAGGGCGAGACCGAGTACGGCCTCAAGGCGATCCCGCTGGGCGGCTACGTGCGGCTGGTCGGCATGATGCCGCCCGCCCCGGCGGGCCGTCGTCCGCGCGGCGGGTTCTTCGGCCAGGTGATCGCCGACGCCCGCGACGCCAGCGTCTCCGAGATCCGACCCGGCGAGGAGCACCGCGCGTTCTACCGGCTGTCCACGCCGAAGAAGCTCGTCGTCATGCTCGGCGGTCCGGTGATGAACCTCGTCATCGCCGTCGTGCTGCTGGCGGTCGTGTTCCTGGCGATCGGCATGCCGACGGCGACGACCACCGTCGCGCAGGTCGGCGACGACTCCGCCGCGTCGTCCGCCGGGGTCGAGGCCGGTGACGAGGTGGTCGCCTTCGACGGGGTGCCCGTCGAGGAGTGGAACCAGCTCGTGGGCATGGTCAACGGCTCGGCCGGCGAGGCCGTGCCGATGGTCGTCGAGCGGGACGGCGAGCAGGTCGCCCTGACCGTCACGCCCGTGCCGGCGGAGCGGCCGGCGACCGACGACCAGGGCTACCCGGTCCTCGACGACGACGGCGAGCCCGTGATGATCGACGGCGCCCTGCTCGGCGTCACCTCCAGCGTCGAGCGTCAGGCCCTGCCGGTTTCGTCGGTGCCCGAGGCCGTCTGGCTCCAGGTCTCGGAGACCGCCCGGGCGATCGTCACCCTGCCGGTGCGCATCTACGACGCCGCCTACGAGGCGTTCACCGACGCCCCGCGCTCGCAGGACTCGGTGATGTCGGTGGTCGGCGTGGGCCGTGCCGCGGTGGACACCGCGGGGGCCGAGGACTACTCGGTGCTCGCCCGGGTCCAGCTCATGCTCATGCTCCTGGCGTCGCTGAACGTCGCGCTGTTCATGTTCAACCTCATCCCGCTCCTGCCTCTCGACGGCGGCCACGTGGCGAACGCGCTCTACGAGGGCGGACGGCGCCAGGTCGCCCGGGTCCGCGGTCGCGCCGTGCCGGGACCGGCCGACGTGGCCCGGATGATGCCCGTGGCGTACGTGGTCTTCGTGCTGCTCATCGGCGTGGGTGCGGTACTCATGGTCGCCGACCTGGTCGATCCCGTCCGGCTGTTCTGA	MVAYPAGVDILPLVVGIVVIVLGILVSIALHEVGHMVPAKKFGVRVSEYMVGFGPTLWSRRKGETEYGLKAIPLGGYVRLVGMMPPAPAGRRPRGGFFGQVIADARDASVSEIRPGEEHRAFYRLSTPKKLVVMLGGPVMNLVIAVVLLAVVFLAIGMPTATTTVAQVGDDSAASSAGVEAGDEVVAFDGVPVEEWNQLVGMVNGSAGEAVPMVVERDGEQVALTVTPVPAERPATDDQGYPVLDDDGEPVMIDGALLGVTSSVERQALPVSSVPEAVWLQVSETARAIVTLPVRIYDAAYEAFTDAPRSQDSVMSVVGVGRAAVDTAGAEDYSVLARVQLMLMLLASLNVALFMFNLIPLLPLDGGHVANALYEGGRRQVARVRGRAVPGPADVARMMPVAYVVFVLLIGVGAVLMVADLVDPVRLF				NA	NA	NA	NA	NA
AK001_01095	1185	dxr	COG0743	1-deoxy-D-xylulose 5-phosphate reductoisomerase	ATGCCCCACGCTGCACGGACCCTGACCCTGCTCGGATCCACCGGATCGATCGGCACCCAGGCCCTCGACGTCGTCGACGCCCACCCGGGCCGGTTCGCCGTCGAGGCGCTCAGCGCCGGCGGGTCCGACGTCGATGCGCTCGCCGCCCAGGCCGCCCGGTACGGGGTGCGTGCCGTCGCGGTCGCCGACGCCGGTCGTGCGGACGCGCTGCGCGAGGCGTTGGTCGGGACGATGGGTCCGCGGGCGGCCGACGTCGAGGTCCTCGCGGGCCCGCACGCCGCCACCGAGGTGGCCGGGCGCGGCAGCGACGTCGTGCTCAACGGCATCACCGGGTCGGTCGGCCTGCGGCCCACCCTCGCGGCGCTGGGCGCCGGGTCGACCCTGGCGCTGGCGAACAAGGAGTCGCTGGTCGTCGGCGGCGCCCTCGTCAAGGCGGCCGCCGCCCCGGGGCAGATCGTCCCGGTCGACTCCGAGCACTCCGCCATCGCCCAGGCGCTGCGCGGCGGGGCCCGCGAGGAGGTCCGCCGGATCGTCCTGACGGCCTCCGGCGGGCCGTTCCGCGGCCGGAGCCGGGACGAGATCGAGGCGGTGACCGCGGACGAGGCGCTCGCCCACCCCACCTGGGCGATGGGACCGGTGGTCACGGTCAACTCGGCGTCCCTGATGAACAAGGGCCTCGAGCTCATCGAGGCGCACCTGCTGTTCGACGTCCCCACCGACGACATCACCGTCGTCGTGCACCCGCAGTCGGTCGTGCACTCGATGGTCGAGTTTCGCGACGGCTCGACGATCGCGCAGGCCTCGCCGCCGGACATGCGCCTGCCCATCGCGCTGGGCCTGTCGTGGCCCGAGCGCCTCGACGTCGTCTCTCCGCCGTGCGACTGGACGCAGGCGGCGAGCTGGACCTTCGAGCCGCTGGACGAGCACACGTTCCCGGCCGTCGGGCTGGCGCGGGCGGCGGCTGCGGCCTCGGCGACCCACCCGGCGGTCTACAACGCCGCCAACGAGCAGGGCGTGGCCGCCTTCCTCCAGGGGCGGATCGGGTTCCTCGACATCGTGGGCACGGTCGAGCGGGTGCTCGGCGAGCACGACGGCGCGGCGGCCGCGGAGGTCACGCTCGAGGACGTCGAGGAGACCGAGACCTGGGCGCGTGCCCGGGCGGACGAGCTGCTCGTCCGCCGCTGA	MPHAARTLTLLGSTGSIGTQALDVVDAHPGRFAVEALSAGGSDVDALAAQAARYGVRAVAVADAGRADALREALVGTMGPRAADVEVLAGPHAATEVAGRGSDVVLNGITGSVGLRPTLAALGAGSTLALANKESLVVGGALVKAAAAPGQIVPVDSEHSAIAQALRGGAREEVRRIVLTASGGPFRGRSRDEIEAVTADEALAHPTWAMGPVVTVNSASLMNKGLELIEAHLLFDVPTDDITVVVHPQSVVHSMVEFRDGSTIAQASPPDMRLPIALGLSWPERLDVVSPPCDWTQAASWTFEPLDEHTFPAVGLARAAAAASATHPAVYNAANEQGVAAFLQGRIGFLDIVGTVERVLGEHDGAAAAEVTLEDVEETETWARARADELLVRR	PGPT0007585_1954	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099	NA	NA
AK001_01096	552			hypothetical protein	GTGAGCACGCTCTTTTCCACCGTGTCGAAGATGCGACAGGGTTATGAACCGGACGAGGTCGACGAGTTCTTCGACCACGCCCGGCAGGCGTACGAGGGGCAGACCCCCGAGCCGATGACGAACGCGGACGTCGCGGCGTCCACGTTCGAGCTGGTGCGCGGTGGCTACAACACTCACGAGGTCGACGCGGCGCTGGACCGCCTGGAGGGTGCCTTCATCGCCCGCCAGCGGGCCGACTTCGTCAACGAGCACGGCCAGGACGCCTGGATGGCGGCGCTGGCCGAGCGTGCCCGCACGCTGTACGGCCGGCTGGGCCGCCCCGACGGGCTGAAGTTCGCCCCGGCGGAGCGCGGGCAGCAGGGCTACGACATGGACGACGTCGACGCCCTGTGCGACCGGCTCGTGGGCTACTTCGACCGGCAGGAGCCGCTGACGGCGGCCGAGCTGCGGTCGGCCACGTTCAGCCGCGCCAAGGGCAAGGACGCCTACGCCGAGGGTGCGGTGGACAAGTTCCTCGCCCGGGCGATCGAGGTGCTCCTCGGGGTCGAGTGA	MSTLFSTVSKMRQGYEPDEVDEFFDHARQAYEGQTPEPMTNADVAASTFELVRGGYNTHEVDAALDRLEGAFIARQRADFVNEHGQDAWMAALAERARTLYGRLGRPDGLKFAPAERGQQGYDMDDVDALCDRLVGYFDRQEPLTAAELRSATFSRAKGKDAYAEGAVDKFLARAIEVLLGVE	PGPT0014806_9	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NA	NA	NA
AK001_01097	1191	rlmN	COG0820	Dual-specificity RNA methyltransferase RlmN	ATGGCATCACCGACCGCGCCCTCCGGCGCCGGCGCCGACCTCGGCATCCCCGCGGTGCGGCCGTCCGACGAGACCCGCCCGATCCCCCTGCAGATGGCGCCCCGGCGCCGGGGCAAGCCGCCGAAGCACTTCGCCGACCTCACCGCCGACGAGCGGGTCGCCAGCGTCACCGAGATGGGGGAGAAGGCGTTCCGGGCCAAGCAGCTCGCGGCGCACTACTTCACGCACTACACCTCCGACCCGGCGGAGATGACCGACCTGCCGAAGGCGACCCGCGACCAGCTGGCCACCACGATGTTCCCGCCGCTGATCCGGCCCACGCGCCGCATGGAGGCGGACGGCGGCACCACCGTCAAGACGCTGTGGCACCTGTTCGACGACGCCAAGGTCGAGTCGGTGCTGATGCGCTACCCGCACCGCACCACGCTGTGCGTCTCGTCCCAGGCCGGCTGCGGCATGGCCTGCCCGTTCTGCGCCACGGGCCAGCTCGGGCTGACCCGCAACCTGTCGACGGCCGAGATCCTCGAGCAGGTCCGCGACGCCTTCCGTGCCCTGGACCGCGGGGAGATCCCGGGCGGCCCGGCCCGGCTGAACAACCTCGTGTTCATGGGGATGGGGGAGCCGCTGGCGAACCCGCGCGCCGTCATCGAGACGGTCAAGGCCCTGGTGGCGCCCGCTCCCGAGGGGTTCGGGATGTCGGCGCGCAACATCACGGTGTCGACCGTCGGACTCGTGCCGGCGATGCGCAAGCTCGCCGACCTCGGCATCCCCGTCACGCTGGCCCTGTCGTTGCACGCCCCGGACGACGACCTGCGCAGCGAGCTGGTGCCGATCAACACGCGCTGGAGCGTCGACGAGGCGATCGACGCGGCGCGGCACTACTACGAGGTGACGGGCCGGCGCGTGTCCATCGAGTACGCGCTCATCAAGGACATGAACGACCACGGCTGGCGCGCTGACCTGCTCGCGGAGAAGCTCAACGCCCGCGGCCGGGGCTGGGTGCACGTCAACCCGATCCCGCTCAACCCGACCCCCGGCTCGATCTGGACGGCGTCCGACCGTTCCGTGGAGGACGAGTTCGTGGCACGATTGCGCGGGCACGGGATCCCCACCACGATCCGTGACACCCGCGGGAGCGACATCGACGGCGCCTGCGGGCAGCTGGCCGCCGAGGAGGACGACGACGAGTGA	MASPTAPSGAGADLGIPAVRPSDETRPIPLQMAPRRRGKPPKHFADLTADERVASVTEMGEKAFRAKQLAAHYFTHYTSDPAEMTDLPKATRDQLATTMFPPLIRPTRRMEADGGTTVKTLWHLFDDAKVESVLMRYPHRTTLCVSSQAGCGMACPFCATGQLGLTRNLSTAEILEQVRDAFRALDRGEIPGGPARLNNLVFMGMGEPLANPRAVIETVKALVAPAPEGFGMSARNITVSTVGLVPAMRKLADLGIPVTLALSLHAPDDDLRSELVPINTRWSVDEAIDAARHYYEVTGRRVSIEYALIKDMNDHGWRADLLAEKLNARGRGWVHVNPIPLNPTPGSIWTASDRSVEDEFVARLRGHGIPTTIRDTRGSDIDGACGQLAAEEDDDE				NA	NA	NA	NA	NA
AK001_01098	834	cdsA	COG0575	Phosphatidate cytidylyltransferase	ATGTCCCCCGTCGACGCGCAGCGCCGGCCGTCCCGCGCCGGGCGCAACCTGCCGGCCGCCGTCGCGGTCGGGGTCGGGCTGCTCCTGCTGCTCGCCGCGTCCCTCTGGTTCCGTCCCGAGCCCTTCGTGGCGTTCGTGGTCGTGGCCCAGAGCGCGGCCCTGTGGGAGCTGCGCGTCGCCTTCGCCCGACGGGAGATCCACGTCCCGCTGACCCCGCTGCTCGTGGGCGGGGCCGGTATGGCCGTGTCGGCGTACGTCGCCGGGCCCGAGGCGCTGCTCGTGGCGTTCATGCTCACCGTGGGCGCCGTCGTCGTGTGGCGCGTGCTGGACGGCTCGGGACCGCAGGCGCTGCGGGACGCGGCCGCCGGCGTGTTCGCCGCCACGTACCTGCCGTTCCTGGCCGGGTTCGTGCTGCTCGTCCTGGACCAGCCGGACGGCGAGCTGCGGGTCGTGCTGTTCGTGCTGCTCGCGGTGGCCAACGATGTCGGCGGCTACGTCGCCGGGGTGCTCTTCGGGCGGCACCCGATGGCGCCCTCGGTCAGTCCCAAGAAGAGCTGGGAGGGACTGGCCGGCTCGGTGGCCCTGACCACCGCCGTCGGCGTCGCCGGGGCGCTGTTCGTCCTGGACGCCCCCTGGTGGCTGGGCGTCGCGCTGGGGGTGCTGACCGCCGTCACCGCCACGGCGGGGGACCTGGCCGAGTCCCTCATCAAGCGCGACCTCGACCTCAAGGACATGGGGTCGTTGCTGCCGGGCCACGGGGGCGTGCTCGACCGTCTCGACTCCCTGGTCATCACCGCCCCGTTCGTCTACCTGGTCCTGGCCGCCACCGTCTGA	MSPVDAQRRPSRAGRNLPAAVAVGVGLLLLLAASLWFRPEPFVAFVVVAQSAALWELRVAFARREIHVPLTPLLVGGAGMAVSAYVAGPEALLVAFMLTVGAVVVWRVLDGSGPQALRDAAAGVFAATYLPFLAGFVLLVLDQPDGELRVVLFVLLAVANDVGGYVAGVLFGRHPMAPSVSPKKSWEGLAGSVALTTAVGVAGALFVLDAPWWLGVALGVLTAVTATAGDLAESLIKRDLDLKDMGSLLPGHGGVLDRLDSLVITAPFVYLVLAATV	PGPT0007685_4019	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981	NA	NA
AK001_01099	558	frr	COG0233	Ribosome-recycling factor	GTGATCGACGACACCCTCCTCGAGGCCGAGGAGAAGATGGACACGGCGATCGAGGTCGCCAAGGAGCAGTTCGGCTCGATCCGCACCGGGCGCGCGAACGCCGGCATGTTCTCCTCGCTCGAGGTGGACTACTACGGCGCGCCGACGCCCCTGCAGCAGCTGGCCTCGTTCAACATCCCCGACGGCCGCACGGTGCTGATCTCCCCGTTCGACAAGAGCTCGATGTCGGCGATCGAGAAGACGCTGCGCGAGTCCGACCTCGGCGTCAACCCGTCCAACGACGGCAACGCGATCCGCGTCATCATGCCGACGCTGACCGAGGAGCGCCGCCGCGACTACGTCAAGCTGGCCAAGACCAAGGCGGAGGACGCCCGGATCTCGGTCCGCGGCGTGCGCCGCAAGGCCAAGGAGCAGCTGGACAAGCTGGTCAAGGACGGCGACGTCGGCGAGGACGAGGGCGCCCGGGCGGAGAAGGAGCTCGAGGCGCTCACCAAGAAGCACGTGGAGCTGGTCGACCAGCTGCTCGCCCACAAGGAGAGCGAGCTGCTCGAGGTCTGA	MIDDTLLEAEEKMDTAIEVAKEQFGSIRTGRANAGMFSSLEVDYYGAPTPLQQLASFNIPDGRTVLISPFDKSSMSAIEKTLRESDLGVNPSNDGNAIRVIMPTLTEERRRDYVKLAKTKAEDARISVRGVRRKAKEQLDKLVKDGDVGEDEGARAEKELEALTKKHVELVDQLLAHKESELLEV				NA	NA	NA	NA	NA
AK001_01100	765	pyrH	COG0528	Uridylate kinase	ATGACGCAGATCGACCAGACCCAGACGGCGACCGGGCACGTCCCGCCGAAGGACCCCGACACCCGGCGCGTCCTGCTCAAGCTGTCCGGCGAGACCTTCGGCGGCGGCGCCGTCGGGCTGGCCAGCGACGTCGTGCGCCGGGTCGCCCAGGAGATCGGTGAGGCGGTCCGTCAGGGGATCCAGGTCGCCATCGTCGTCGGCGGGGGCAACTTCTTCCGCGGCGCCGAGCTGTCCCGGGCCGGTCTGGACCGGGCCCGCGCCGACTACATGGGCATGCTCGGCACGGTGATGAACTGTCTGGCCCTGCAGGACTTCCTCGAGCAGGACGGCGTCAAGACCCGCGTCCAGACGGCGATCACCATGGGGCAGGTCGCCGAGCCGTACATCCCGCTGCGCGCGATGCGTCACCTGGAGAAGGGCCGTGTCGTCATCTTCGGCGCGGGGGCCGGGATGCCCTACTTCTCCACCGACACGGTCTCGGTCCAGCGCGCGCTGGAGACGCACTGCGACGAGGTCCTCATGGGCAAGAACGGGGTCGACGGCGTCTACACCGCCGACCCCCGCACCGACCCCGAGGCCGAGAAGCTCGACCACCTCACCTACACCGACGCCCTCGTGCGCGGGCTCAACGTCATGGACGCCACCGCGCTGTCGATGTGCCGGGACAACGACGTGGCCATGCGTGTCTTCGGCCTGGAGGAGACCGGTAACGTGACCCGTGCACTGCTCGGCGAGAAGATCGGTACCTCCGTCACGACCCGCTGA	MTQIDQTQTATGHVPPKDPDTRRVLLKLSGETFGGGAVGLASDVVRRVAQEIGEAVRQGIQVAIVVGGGNFFRGAELSRAGLDRARADYMGMLGTVMNCLALQDFLEQDGVKTRVQTAITMGQVAEPYIPLRAMRHLEKGRVVIFGAGAGMPYFSTDTVSVQRALETHCDEVLMGKNGVDGVYTADPRTDPEAEKLDHLTYTDALVRGLNVMDATALSMCRDNDVAMRVFGLEETGNVTRALLGEKIGTSVTTR	PGPT0021205_263	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903	NA	NA
AK001_01101	840	tsf	COG0264	Elongation factor Ts	ATGGCGAACTACACCGCCGCTGACATCAAGGCGCTGCGCGAGCGCACCGGCGCCGGCATGCTCGACGTCAAGAAGGCGCTCGACGAGGCCGACGGCAACGCCGACCAGGCCATCGAGATCATCCGCAAGAAGGGCCTGGCCAAGGCCGCCAAGCGTGAGGGCAACACCGCCTCCGAGGGTCTCGTCGCCGCGACGATCACCGACGCGGGTGACGGCCAGGTCGCCACGCTGATCGAGCTGAACGCCGAGACGGACTTCGTCGTCAAGAACGAGAACTTCGTCGCGCTGGCCGACACCGTCCTCGCGGCCGCCGCCGCGGCCGGTGCCACCGACGCCGAGTCGGCGCTGGCCGCCCCGGCCGCCGACGGCACGGTCGCCGACACCATCGCCGCCCAGGGCGCGACCATGGGCGAGAAGGTCGTCCTGCGCCGCGTCGCTCGCGTCGAGGGCCCGAAGGTCACCGCCTACCTGCACAAGACCGCCAAGGACCTGCCGCCGTCGATCGGCGTGCTGGTCGTGACGGACGCCGCGGGCGAGGCCGTCGCCAAGGACGTCGCGCAGCACGTCGCCGCGCTGGCGCCGCAGTACCTCACCCGTGAGGACGTCCCGGCCGAGGTCGTCGACAAGGAGCGCGAGATCGCCCGTGAGCGGTCCATCGCCGAGGGCAAGCCCGAGGCCGCGCTGCCGAAGATCGTCGAGGGTCGTCTCAACGGCTTCTTCAAGGAGGCCGTGCTGGTGGACCAGCCGCTGGCCAAGGACACCAAGACGACCGTGGGCAAGCACGTCGAGGCCGCCGGCGGCGAGCTGCTCGGCTTCGTCCGCTTCCGCGTCGGCAGCTGA	MANYTAADIKALRERTGAGMLDVKKALDEADGNADQAIEIIRKKGLAKAAKREGNTASEGLVAATITDAGDGQVATLIELNAETDFVVKNENFVALADTVLAAAAAAGATDAESALAAPAADGTVADTIAAQGATMGEKVVLRRVARVEGPKVTAYLHKTAKDLPPSIGVLVVTDAAGEAVAKDVAQHVAALAPQYLTREDVPAEVVDKEREIARERSIAEGKPEAALPKIVEGRLNGFFKEAVLVDQPLAKDTKTTVGKHVEAAGGELLGFVRFRVGS				NA	NA	NA	NA	NA
AK001_01102	894	rpsB	COG0052	30S ribosomal protein S2	ATGGCCGTCGTGACCATGCGTCAGCTCCTCGAGAGCGGTGTCCACTTCGGGCACCAGACCCGTCGTTGGAACCCGAAGATGAAGCGGTTCATCTTCACCGAGCGCAACGGCATCTACATCGTCGACCTGCAGCAGTCGCTGTCGTACATCGACCGCTCCTACGAGTTCGTCAAGGAGACCGTCGCCCACGGCGGCACGATCCTGTTCGTCGGCACCAAGAAGCAGGCCCAGGAGGCCATCGCGGAGCAGTCCTCCCGCGTCGGCATGCCCTACGTCAACCACCGTTGGCTCGGCGGCATGCTCACCAACTTCACCACCGTGCACAAGCGGCTCCAGCGTCTCAAGGAGCTCGAGGAGATCGACTTCGACGACGTCGCCGGCTCCGGCCTGACGAAGAAGGAGCTCCTCGTCCTGCGCCGCGAGAAGGACAAGCTCTCGCGCACGCTGGGTGGCATCCGCGACATGGCCAAGACGCCGTCGGCCGTGTGGATCGTGGACACCAACAAGGAGCACCTCGCCGTGGACGAGGCCCGCAAGCTGGGCATCCCGGTCGTGGCGATCCTGGACACCAACTGCGACCCCGACCTGGTCGACTACGCGATCCCGGGCAACGACGACGCGATCCGCTCCGTCACGCTGCTCACGCGGGTCATCGCCGACGCCGTCGCCGAGGGCCTCATGCAGCGCGCCGCCGGCAAGAAGGGCGAGTCGGCCCCCGAGGAGTCCGAGCCGCTGGCCGAGTGGGAGCGCGAGCTCCTCGCCGGTGCCGAGGGCGAGCAGGCCGCGGACGCCGCGCAGCCGGTCGCCCCGGCCGAGGACGCCGCTGCCGAGCAGCCCGCCGCGGAGGCCGCCCCGGCCGAGCAGCCGGCGGAGACCGCCGAGAAGTCCGAGTGA	MAVVTMRQLLESGVHFGHQTRRWNPKMKRFIFTERNGIYIVDLQQSLSYIDRSYEFVKETVAHGGTILFVGTKKQAQEAIAEQSSRVGMPYVNHRWLGGMLTNFTTVHKRLQRLKELEEIDFDDVAGSGLTKKELLVLRREKDKLSRTLGGIRDMAKTPSAVWIVDTNKEHLAVDEARKLGIPVVAILDTNCDPDLVDYAIPGNDDAIRSVTLLTRVIADAVAEGLMQRAAGKKGESAPEESEPLAEWERELLAGAEGEQAADAAQPVAPAEDAAAEQPAAEAAPAEQPAETAEKSE				NA	NA	NA	NA	NA
AK001_01103	618			hypothetical protein	ATGACGCCCGACCGCCACCCCGACCGCCGTACGCGACGGCCCGGTCGTCGCCCGCGACGGTCGCGGCCGGGCGCGGCCCTGCCCGTGGCCCTGCTCGCCGGTGCGGCCGTCGTGCTCACGACCGGACCGGCGGCGCCCGCTCCCCCGCCGCGCGCGGTCGTGGTCGCGGCCGGCGAACCCGCAGCAGCCCTCGAGCGGCCCGGGGCCGCCGACGGGTGGCGTCTCCCCCTGCCCGGCCCGGTCCGGACGGTCGTCGACCTGCCGGCCGAGCCCTGGCGGCCCGGACATCGCGGCGTCGACCTGCCCGCCGCTGCCGGCTCGACCGTCCGCGCCCCGCGGGCCGGGACGGTCACGTTCGCCGGCCAGGTCGGCGGTAAGCCCGTCGTCGTCCTCGCGCACGGTGCGCTGCGGTCGACGTTCGAGCCGGCCGAGGCCCTGGTGGAGGTGGGCGGCACCGTCCGCGCGGGCCGCCCGGTGGCCGTCGTCGCCGACGAGGGCGCGGGGCACTGCGCTCCCGACCGGTGCCTGCACTGGGGCGTCCGACGCGGGGACCGCTACCTCGACCCGCTGGTCCTGGTCGGACGAGCCGTGCCCGTGGTGCTGCTCCCCCACGGCTGA	MTPDRHPDRRTRRPGRRPRRSRPGAALPVALLAGAAVVLTTGPAAPAPPPRAVVVAAGEPAAALERPGAADGWRLPLPGPVRTVVDLPAEPWRPGHRGVDLPAAAGSTVRAPRAGTVTFAGQVGGKPVVVLAHGALRSTFEPAEALVEVGGTVRAGRPVAVVADEGAGHCAPDRCLHWGVRRGDRYLDPLVLVGRAVPVVLLPHG				NA	NA	NA	NA	NA
AK001_01104	945	xerC_3	COG0582	Tyrosine recombinase XerC	GTGACCGACCCCGACGTCCCGCCGCTGCCCGCCGCGCTCGCCGGCGCGGTGGACGGGTTCTCGCGGCACCTGGCCACCCGCCAGGGCCACTCGGCGCACACCCGGCGTGCCTACCGGGCGGACGTCACCGCGCTGCTGCGGTACGCCGTCCGGCACGGTGCCGACGGTCTCGACGGCCTCGACCTGACCATGCTGCGCGGCTGGCTCGGTGCGCAGGCCGACCGCGGTCTGTCGCGCGCGACGCTCGCGCGGCGGGGTGCGGCGGCGCGGGCCTTCCTGCGCTGGGCCCATCACGAGGGCCTCGTGGCGAGCGACCCGTCCGTGCGGCTGGCCACCCCGCGCACCCCGCGGACGCTGCCGACCGTGCTCTCGACCCGGGCCGCGGCGCGGCTGCTCGACACCGCACGGTCCGACGCGGAGGCGGCCGAGCCCGAGCACCGGCCCGCAGCGCTGCGTGCCTGGGCGGCGGCCGAGCTGCTCTACGGGTCCGGCGTGCGGATCGGGGAGCTGACGGCGGCCGACCTGACCGACGTCGACGTCTCCGAGCGGATCGTGCGCGTCCTCGGCAAGGGCGGCAAGGAACGCGTCGTGCCGTTCGGCGTCCCGGCGGCCCGCGCGCTGCAGGCGTGGGTCTCGGACGGCCGGCCCGCCCTCGTGCGTGCCGCGAGCCCGGCGGCGCTCTTCCTCGGTGACCGGGGCGGACGCTGGGGGCAGCGGCAGGCCCGCGACGCCGTGCACCGCCTGGCCGCCCGGGCCGAGGTGGACGACGTGGCCCCGCACGCCCTGCGGCACTCGGCCGCGACGCACCTGCTCGCCGGCGGGTCCGACCTGCGGTCCGTGCAGGAGGTGCTCGGGCACGCCGACCTGGGCACGACCCAGCGGTACACCCACGTGGACGCCGACCGGCTACGGCAGGTGTTCGAGCAGGCGTTCCCCCGCGCCTGA	MTDPDVPPLPAALAGAVDGFSRHLATRQGHSAHTRRAYRADVTALLRYAVRHGADGLDGLDLTMLRGWLGAQADRGLSRATLARRGAAARAFLRWAHHEGLVASDPSVRLATPRTPRTLPTVLSTRAAARLLDTARSDAEAAEPEHRPAALRAWAAAELLYGSGVRIGELTAADLTDVDVSERIVRVLGKGGKERVVPFGVPAARALQAWVSDGRPALVRAASPAALFLGDRGGRWGQRQARDAVHRLAARAEVDDVAPHALRHSAATHLLAGGSDLRSVQEVLGHADLGTTQRYTHVDADRLRQVFEQAFPRA	PGPT0021995_1515	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733	NA	NA
AK001_01105	1284			hypothetical protein	GTGGCTGATCACCTCCTCGACCGCACCGGCCCCGCCCGCACGGGGGTGCGCTTCGACGTCGACGACCCGGTGCTGGCCGCGGCGGCCTGGAGCCGGCTGGCCGAACCCGGCGACGTGGTGGCCGGGGCCGTGGTGGAGCACCTGGGCGCGTCCGGGGCCCTGTCCTGGCTCGTGGACGCCACCACCGACCCGGTCGGGGCCCGCCGTGCCGCCGGCCTCGACGGCCTGGCGCTGCCCGACCCGCCGTCCGTCCCCGGCGGCCTCGCTGCACCGCCTCGCGCCGAGGCCGGTCAGGACGCCGCCGCCCGGCTCGGTGCCGCCGTGCGCCGGTGGGCCCCTCGCCTGGAGAGCCTCGACCCGCGCCGCGAGCTGCGCGTGCTCGACCGGTGCCAGGGGACGCTCCTGACCCCGCAGGACGACCGGTGGCCGCGGACGCTCGGCGACCTGGGTACGGCGGCGCCGTTCGCCCTGTGGGTGCGCGGACGCGCCGACGTCGCGACCTGGGCGGCCCATGCGGTGGCGCTCGTGGGGTCCCGCGCCTCGACCCGGTACGGCGAGCGCGTCGCCGAGGACCTCGCCGCCGGTGTCACCGACCGCGGCTTCGCCGTCGTGTCCGGGGGTGCCTACGGCATCGACGCCGCCGCTCACCGCGGGGCGCTCGCGGCGGCCGGTGCGACGTGCGCGGTGCTGGCCGGCGGCGTGGACCGCTACTACCCGCAGGGCAACGACGGCCTGCTGCGGCACCTGGTCGCGCAGGGCGGGGCCGTGCTCAGCGAGGTCCCTCCGGGATCGGCCCCGTACCGTCGGCGCTTCCTGGCCCGCAACCGCGTGATCGCCGCGCTGACGGGGGCGACGGTCGTCGTCGAGGCCGCGCGGCGGTCCGGTGCCCTGTCGACGGCGCGGCGGGCGGCCGAGCTGCTGCGTCCTCTCGGCGCAGTGCCGGGGCCGGTGACGTCGATCGCGTCGTCCGGGTGCCACGGTCTGCTGCGGGACGGCGCCGCCGTCTGCGTGACCGACCCGGCCGAGGTGGCCGAGCTGGCGGGGCGGCTGGGCGAGGACGCGGTGCCGGAGGACCCGCTGCCCGGGTCGCACGACCGGCTCGACGGGCTCGGACCGGACGAGCGCGCACTCTGGGACGCGCTGCCGCTGCGCTCGGGGGCGACCGTCGACGCCCTGGCGCGCAGCGCCGGTCTCTCGCCGCGCCGGGTGATGACCCTGGTGGGCGGCCTCGAGCGCCGCGGGCTGGCGCGCTGCGATGCCGGACGGTGGCTGCGGGGCACCTGA	MADHLLDRTGPARTGVRFDVDDPVLAAAAWSRLAEPGDVVAGAVVEHLGASGALSWLVDATTDPVGARRAAGLDGLALPDPPSVPGGLAAPPRAEAGQDAAARLGAAVRRWAPRLESLDPRRELRVLDRCQGTLLTPQDDRWPRTLGDLGTAAPFALWVRGRADVATWAAHAVALVGSRASTRYGERVAEDLAAGVTDRGFAVVSGGAYGIDAAAHRGALAAAGATCAVLAGGVDRYYPQGNDGLLRHLVAQGGAVLSEVPPGSAPYRRRFLARNRVIAALTGATVVVEAARRSGALSTARRAAELLRPLGAVPGPVTSIASSGCHGLLRDGAAVCVTDPAEVAELAGRLGEDAVPEDPLPGSHDRLDGLGPDERALWDALPLRSGATVDALARSAGLSPRRVMTLVGGLERRGLARCDAGRWLRGT				NA	NA	NA	NA	NA
AK001_01106	1539	comM	COG0606	Competence protein ComM	ATGGGGTACGCCACGACCACCGGCGTCGCGCTCGCCGGGATGGAGGGCCACCTGGTGGAGGTGCAGGCACAGCTCGCCCGGTCCGTGCCGGGGTTCACCCTCGTGGGGCTCCCCGACACGGCCCTGGCGGAGTCGCGCGACCGGGTGCGCGCCGCCGTGCTGTCGACCGGGATCGAGTGGCCGCAGCGCAAGGTCACGGTCAACCTCTCGCCCGCCTCGCTGCGCAAGTCCGGCTCGGGCTTCGACCTCGCCATCGCGGTGGCCGTCCTGGCCGGTCACGGCGTGATGCCGGCCGCCGGGCTGGGCGCGGTGGTGCACCTGGCCGAGCTGGGCCTCGACGGCCGGCTCCAGCCGGTCCGCGGGGTGCTCCCGGCGGTCGCCGCGGCGGTCGCCGCGGGCCACCGAGACGTCGTGGTGGCCGCCGGCGACGAGGCCGAGGCGGCGCTGGTCCCGGGTGCCCGGGTCCACGGAGCGGCCCACCTCGGTGACGTCGTGCTCCGCCACGGCGGCCGGCTGCGCTACCACCGTCGCGTCGAGCCCGTGGCCCCGGCGCGCTCCGCAGTGCCGCGTCGACCCGGGGGAGACCTGGCGGACGTCGTCGGGCAGACCGAGGCACGGACGGCGCTCGAGATCGCGGCCGCCGGCGGGCACCACCTGGCCATGGTCGGCCCGCCGGGTGCGGGCAAGACGATGCTGGCGGCCCGCCTGCCCGGCCTCCTGCCGGACCTCACCGACGCCGAGGCCGTGGAGGTCACCGCGGTGCACTCGGTGGCGGGCACCTTCGACCCGGGCGGCGGGCTCCTGCGCCGACCACCCTTCGAGGACCCGCACCACACCGCCACCCCGGTCGCGATCGCCGGCGGCGGCACGGGCCTGGCCCGCCCGGGTGCGGTGTCCCGCGCGCACCGGGGGGTGCTCTTCCTCGACGAGGCGCCCGAGTTCGCCCCGCGGGTGCTGCAGACGCTGCGCCAGCCGCTGGAGGCCGGAGAGCTCGTGCTGCACCGCAGCGGTGGCGCGACCCGCTACCCGGCGCGCTTCCAGCTGGTCCTGGCGGCCAACCCCTGCCCGTGCGGGATGGCGGACACCCGCGCCGGCCAGGACTGCACCTGCTCGGTGACGGCACGACGCCGGTACCTGGGTCGGGTGTCGGGGCCGCTGCTGGACCGGGTCGACCTCCAGGTCCACCTGCCCGGACCGAGCCGGGCCGACCGGGTGCTCGGCGCCGCGGGCGAGCCGACCCGCGTCGTGGCCGCCCGCGTGGCCGCCGCCCGGGACCGGGCGCGCGAGCGCCTGCGGGACACGCCGTGGTGCACCAACGCCGAGCTGCCGGGCCCGTGGCTGCACGAACGGCTCCGCGGCGAGCGCGCGGTGCTCGGCCCCGTCGAGCGGCAGCTCGACGAGGGTCGGCTGTCGATGCGCGGTGCCCACCGGGTGCTGCGGGTCGCGTGGACGGTCGCCGAGCTGGACGGACGAGACGTCCCCCGCGCCGACGACGTCGACACCGCGACCGTGCTGCGGACGGAGGGGTCCCGTGGCTGA	MGYATTTGVALAGMEGHLVEVQAQLARSVPGFTLVGLPDTALAESRDRVRAAVLSTGIEWPQRKVTVNLSPASLRKSGSGFDLAIAVAVLAGHGVMPAAGLGAVVHLAELGLDGRLQPVRGVLPAVAAAVAAGHRDVVVAAGDEAEAALVPGARVHGAAHLGDVVLRHGGRLRYHRRVEPVAPARSAVPRRPGGDLADVVGQTEARTALEIAAAGGHHLAMVGPPGAGKTMLAARLPGLLPDLTDAEAVEVTAVHSVAGTFDPGGGLLRRPPFEDPHHTATPVAIAGGGTGLARPGAVSRAHRGVLFLDEAPEFAPRVLQTLRQPLEAGELVLHRSGGATRYPARFQLVLAANPCPCGMADTRAGQDCTCSVTARRRYLGRVSGPLLDRVDLQVHLPGPSRADRVLGAAGEPTRVVAARVAAARDRARERLRDTPWCTNAELPGPWLHERLRGERAVLGPVERQLDEGRLSMRGAHRVLRVAWTVAELDGRDVPRADDVDTATVLRTEGSRG				NA	NA	NA	NA	NA
AK001_01107	357			hypothetical protein	GTGCGAGCCAAGGATGCCGTCGGACGGCACGGCGAACGGGTGGCGGCGCGCTACCTGACCGAACGCGGGTACGAGGTCCTGGACCGCAACTGGCGGGGGACCGGCGGTGAGCTGGACCTGGTCCTCGGCGACCGGGGACGCGTGGTCGCCGTCGAGGTCAAGACGCGCCGCGGCACCGGCTACGGCCACCCGGCCGAGGCGGTCACCGGGGCCAAGCTGCGCCGGGTGCGGCGGCTGACCGCCGAGTGGCTGCGCACCCACCCGGGCCCGTGGCGCGAGGTTCGGGTCGACGTGGTGGCGGTGCTGCTGCCCCGCTCCGGCGCCGCCCGGGTCGAGCACCTGCGGGGAGTCCTCTGA	MRAKDAVGRHGERVAARYLTERGYEVLDRNWRGTGGELDLVLGDRGRVVAVEVKTRRGTGYGHPAEAVTGAKLRRVRRLTAEWLRTHPGPWREVRVDVVAVLLPRSGAARVEHLRGVL				NA	NA	NA	NA	NA
AK001_01108	300			putative protein	GTGAGCGCTGAGGACCTCGAGAACTACGAGAACGACGCCGAGCTGGCCCTCTACCGCGAGTACCGGGACGTCGTGGGCCTGTTCTCGTACGTGGTGGAGACCGAACGCCGGTTCTACCTCGCCAACCAGGTCGACCTGCAGGTCCGGTCCGCCGCGGGCGAGGTGTACTTCGAGCTGCGGCTGACCGACGCGTGGGTGTGGGACGTGTACCGCTCCGCACGCTTCGTCAAGGCCGTGCGGGTGGTGACGTTCAAGGACGTCAACGTCGAGGAGCTCGCCAAGGCCGAGATCGCCCTGTAG	MSAEDLENYENDAELALYREYRDVVGLFSYVVETERRFYLANQVDLQVRSAAGEVYFELRLTDAWVWDVYRSARFVKAVRVVTFKDVNVEELAKAEIAL				NA	NA	NA	NA	NA
AK001_01109	813	rnhB		Ribonuclease HII	ATGACGACCCGGAACGGACGCCGGAGCCCGACCCTGCGGGCCGAGCGGTCCCTGCTGTCCGACGGCGCACGCCTGGTCGGGGGGATGGACGAGGTCGGCCGGGGCGCCCTGGCGGGCCCGGTCAGCGTCGGCCTGGTCGTGGTCGACGCCGGCACCCGGACCGCGCCGCGCGGGCTGACCGACTCCAAGCTGCTGGCCCCGAAGGTCCGCGAGGCGATGGTCGACCCGCTGCGGCGGTGGGCGGTGGCCTGGGCCGTGGGGCACGCCGGCCCCGCCGAGATCGACGCGCACGGCATCGTCGCGGCGCTGCGGCTGGCGGGACGCCGGGCGCTGGCGCAGATCCGGCGCACCCACGGCGACGTCGACGTCGTGCTCCTGGACGGGTCGCACGACTGGCTCAGCCGGCCGGGGGCGGACCTCTTCGAGGCGGCCGACCTCGATCCGGGCGGGGCGCTCGACGCCCCCGAGCCCGGGGTGCGCACGATGGTCAAGGCCGACCTGCAGTGCTCGTCGGTCGCCGCGGCCAGCGTGCTGGCCAAGGTGGAGCGCGACGGCCTGCTCAGCCGGCTGGCCGCCCAGTACCCGCACTACGCCTGGGAGCAGAACAAGGGCTACTCGGCCCCGGCCCACCTGGACGGCCTGCGCCGCCTCGGCCCGACGCCGCAGCACCGGCGGTCCTGGAACCTGCGGGTGCTCGACGACACCCCCGCCGCGCCGGAGACCCCCGGGACGACGGGCGAACCGGCGGACGTGGTCACCCTCGAGGCGGCCGCGGCGCCCGAGGAGGCAGCCTCGCGCTACCGGGTGGGATGA	MTTRNGRRSPTLRAERSLLSDGARLVGGMDEVGRGALAGPVSVGLVVVDAGTRTAPRGLTDSKLLAPKVREAMVDPLRRWAVAWAVGHAGPAEIDAHGIVAALRLAGRRALAQIRRTHGDVDVVLLDGSHDWLSRPGADLFEAADLDPGGALDAPEPGVRTMVKADLQCSSVAAASVLAKVERDGLLSRLAAQYPHYAWEQNKGYSAPAHLDGLRRLGPTPQHRRSWNLRVLDDTPAAPETPGTTGEPADVVTLEAAAAPEEAASRYRVG				NA	NA	NA	NA	NA
AK001_01110	834			hypothetical protein	ATGACCTCCGCGCCGGACCGACCCGAGGATCAGGGCGACGCGACCGACGACGTCGTGGGACGGTCCGACGAGGCCGAGCGCTCCGTGCGTGCGGACGGCCCCCCGGCGCACGCCGCCGCCGTCGCCGACGACTCGCGCGGCCGCGGTCTCGGGCTGCTGCGCGAGACGGCGATCATCGTCGTCTCGGCGCTGGTGCTGTCGTGGCTGATCAAGACCTTCCTCGTCCAGGCCTTCTACATCCCCAGCTCCTCGATGGAGGACACCCTCCAGATCGGGGACCGCGTGATGGTGTCCCGCCTGGTCCCGGACGCGTTGGACGTGAACCGCGGCGACGTCGTCGTCTTCCAGGACCCGGGCGGGTGGCTGCCGCCCTACGAGGAGCCGGACCGCGGACCGGTCGGCAACGCCCTGCGCGGGGCCGCGACCTTCGTCGGGCTGCTCCCGCAGGACGCCGGCGACCACCTCATCAAGCGGGTCGTGGGCACGCCGGGCGACACCGTGGCCTGCTGCGACGACGACGGCCGGGTCACGGTCAACGGCGAGCCGGTCGACGAGAGCGAGTACCTGGCCGACGGCGCCGTGCCGAGCCAGACGACCTTCGAGCACGAGGTCCCCGAGGGCATGCTGTTCGTCATGGGGGACAACCGGCAGAACTCCCAGGACTCCCGCTACAACACCGGCAAGCCGGGCGGGGGGTTCGTCCCGCTCGACAACGTCGTGGGCAACGCGTTCGTCATCATGTGGCCGTTCGAGGACGCCCGGCTGCTGCGCAACCCGGCCGACGTCTTCGCCGACGTCCCCGCGGCCGACGGTGCCGAGGAGCCGGCGCCATGA	MTSAPDRPEDQGDATDDVVGRSDEAERSVRADGPPAHAAAVADDSRGRGLGLLRETAIIVVSALVLSWLIKTFLVQAFYIPSSSMEDTLQIGDRVMVSRLVPDALDVNRGDVVVFQDPGGWLPPYEEPDRGPVGNALRGAATFVGLLPQDAGDHLIKRVVGTPGDTVACCDDDGRVTVNGEPVDESEYLADGAVPSQTTFEHEVPEGMLFVMGDNRQNSQDSRYNTGKPGGGFVPLDNVVGNAFVIMWPFEDARLLRNPADVFADVPAADGAEEPAP	PGPT0030468_59	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466	NA	NA
AK001_01111	357	rplS	COG0335	50S ribosomal protein L19	ATGAAGACGCTCGACTCCGTCGACGCAGCCACGCTGCGCTCCGACATCCCGGACTTCCGCGCCGGTGACACCGTCAAGGTCAACGTCAAGGTCATCGAGGGCAACCGCTCGCGCATCCAGGCGTTCCAGGGCGTCGTGATCGCGCGCCGCAACGCCGGTGTCGGCTCGACCTTCACCGTCCGCAAGATCAGCTTCGGCGTCGGCGTGGAGCGCACCTTCCCGGTGCACGCCCCGACGGTCGAGTCCGTCGAGGTCGTCAGCCGCGGTGACGTGCGACGCGCCAAGCTCTACTACCTGCGCGAGCTGCGCGGCAAGAAGGCCAAGATCCGCGAGAAGCGCGAGACCCCCAAGAAGTGA	MKTLDSVDAATLRSDIPDFRAGDTVKVNVKVIEGNRSRIQAFQGVVIARRNAGVGSTFTVRKISFGVGVERTFPVHAPTVESVEVVSRGDVRRAKLYYLRELRGKKAKIREKRETPKK				NA	NA	NA	NA	NA
AK001_01112	789	trmD	COG0336	tRNA (guanine-N(1)-)-methyltransferase	GTGCGCATCGACGTCGTCACGATCTTCCCGGAGTACCTGGCCGCCCTCGACCTGTCGCTCGTGGGCAAGGCTCGCCGCGCAGGCCTGCTCGACCTGCGGGTCCACGACCTGCGCGACTGGACCGACGACCGCCACCGCACCGTCGACGACACCCCGTTCGGCGGGGGCGCCGGGATGGTCATGCGGGCCGACGTGTGGGGTCGTGCGCTCGACGAGCTGCTGGCCGCGGACGGCCCGGCCCGGCTCGTGGTCCCCGCGCCGTCGGGCGAGGTCTTCACCCAGCGCCGCGCCGAGGCGCTGGCTACCGAGGAGCACCTGGTCGTGGCCTGCGGCCGCTACGAGGGCATCGACGCCCGGGTGGTCGAGCACTACCGCGACCGCGGCGTGGCCGTCGACGAGCTCTCGCTCGGTGACTACGTGCTCAACGGCGGGGAGGTGGCCGCGCTGGTCATGGTCGAGGCCGTGGGGCGGCTCCTGCCCGGCGTCGTCGGCAACCCGCACTCGCTGGTCGAGGAGTCGCACGGGGAGGCCGGGCTCCTCGAGTACCCGGTCTACACCAAGCCCCCGGTCTGGCAGGGGCGCGAGGTCCCGGACGTCCTGCTCTCGGGCCACCACGCGCGGATCGAGCGCTGGCGGCGCGACGAGGCGCTGCGGCGCACCGCCCGGCGGCGTCCCGACATGATCGCGGCGCTGGGGGACGGGGACCTGGACGCCCGCGACCGCGAGGTCCTGGCCGAGTCGGCCGAGGACCTGCCGGACGGTGGCGCGCCTCACGAGCCGCGCGGCTGA	MRIDVVTIFPEYLAALDLSLVGKARRAGLLDLRVHDLRDWTDDRHRTVDDTPFGGGAGMVMRADVWGRALDELLAADGPARLVVPAPSGEVFTQRRAEALATEEHLVVACGRYEGIDARVVEHYRDRGVAVDELSLGDYVLNGGEVAALVMVEAVGRLLPGVVGNPHSLVEESHGEAGLLEYPVYTKPPVWQGREVPDVLLSGHHARIERWRRDEALRRTARRRPDMIAALGDGDLDARDREVLAESAEDLPDGGAPHEPRG	PGPT0007595_14	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770	NA	NA
AK001_01113	537	rimM	COG0806	Ribosome maturation factor RimM	ATGGAGCTGGTGGTGGCCCGCGTGGGCCGCGCGCACGGACTGCGCGGCGAGGTCGCGCTCGAGATGCGCACCGACGTCCCCGAGGAGCGGTTCACCGTCGGGGCCGTGCTGGCGACCGAGCCGGCCGCGGCGGGGCCGCTGACGGTGGAGAGCACCCGGGTGCACCAGGGGCGCTGGCTGGTCCGCTTCGCCGAGACCGCCGACCGCACGGCCGCCGAGGCCCTGCGCGGCACCGAGCTGCTCGTCGACGTCGAGGAGTCCGACGAGGAGGACGCCTGGTACCCGCACGAGCTGACGGGCCTGCGGGCCGAGCTCGTCGACGGCACCGTGGTCGGCGAGGTCGCCGGGCTCGAGCACCTGCCCGCGCACGACGCGCTCGTGGTGCGCGAGGACGGCGGGGCCCGCACGCTCGTCCCGTTCGTGCGCGCCATCGTGCCGACCGTCGACGTGGCCGGCGGACGCGTCGTGCTGGACCCGCCCGGCGGTCTGCTCGCCCGCGAGGTCGCGGACGAGGCCGCCGACGAGCCGGAGGCCTGA	MELVVARVGRAHGLRGEVALEMRTDVPEERFTVGAVLATEPAAAGPLTVESTRVHQGRWLVRFAETADRTAAEALRGTELLVDVEESDEEDAWYPHELTGLRAELVDGTVVGEVAGLEHLPAHDALVVREDGGARTLVPFVRAIVPTVDVAGGRVVLDPPGGLLAREVADEAADEPEA				NA	NA	NA	NA	NA
AK001_01114	240			hypothetical protein	ATGCTGGCAGACGCCCTCGAGCACCTGGTGCGCGGCATCGTGGACAACCCGGACGACGTCCAGGTGTCCGCCCGCACGCAGCGCCGGGGCGATCTGCTCGAGGTCCGGGTGCACCCCGACGACCTCGGCCGAGTGATCGGGCGGGGCGGCCGGACCGCCAAGGCGCTGCGCACCGTCGTCGGTGCGCTCGCCACCGACGGTCCGGTGCGGGTCGACGTCGTGGACGTCGACCGGCGCTGA	MLADALEHLVRGIVDNPDDVQVSARTQRRGDLLEVRVHPDDLGRVIGRGGRTAKALRTVVGALATDGPVRVDVVDVDRR				NA	NA	NA	NA	NA
AK001_01115	414	rpsP	COG0228	30S ribosomal protein S16	GTGGCCGTCAAGATTCGTCTGAAGCGTTTCGGCAAGATTCGCAGCCCCTTCTACCGTGTCGTCGTCGCCGACTCGCGCACCAAGCGCGACGGTCGTGTGATCGAGGAGATCGGCAAGTACCACCCCACCGAGGAGCCCTCGTTCATCGAGATCGACTCCGAGCGGGCGCAGTACTGGCTCGGTGTCGGCGCCCAGCCGACCGAGCAGGTCGCCGCTCTGCTCCGCGTCACGGGCGACTGGCAGAAGTTCAAGGGTCTCCCGGGCGCCGAGGGCACCCTGAAGACCAAGCAGGCCGCCTCCGACTCCACCTCGGCCGTCGACGCGGTCAACGCCGAGGCGGAGAAGGCCAAGGCGAAGGCCTCCGCCGAGAAGGACGCCACGTCCTCCGACGACGAGGCCGAGGCCGAGGCCTGA	MAVKIRLKRFGKIRSPFYRVVVADSRTKRDGRVIEEIGKYHPTEEPSFIEIDSERAQYWLGVGAQPTEQVAALLRVTGDWQKFKGLPGAEGTLKTKQAASDSTSAVDAVNAEAEKAKAKASAEKDATSSDDEAEAEA				NA	NA	NA	NA	NA
AK001_01116	1113		COG1228	putative protein	ATGTCCGTCCCGCACGTCCCGCTGCACGTCACCGGCCGGATCCTGCTCGACGGCGAGCGCGAGGTCGGCGAGATGTGGGTCCGCGACGGACGCCTCAGCCTGCTGCGCCCGACGCCGCAGGGCAGCTCCGCCACGGAGCTGGAGGGGTGGGTCGTCCCCGGCCTCGTCGACGTGCACTGCCACGTCGGGCTCGACGCCGGGGGAGCGACGGACCCCGCGACCGCCGCCAAGCAGGCGCTGGCCGACCGCGACTCCGGCGTGCTGCTGATCCGCGACGCCGGGTCCCCGCTGGACACCTCGTGGGTGGCCGACCGCGCCGACCTGCCCCGCCTGGTGCGGGCCGGTGCCCACCTGTCCCGGCCCAAGCGGTACCTGCGGCGCTACGGCCTCGAGCTCGACGACGTCGCCGACCTCCCGCGCGTCGTGCGCGAGCAGGCCCGCGCCGGTGACGGCTGGGTCAAGCTCGTCGGGGACTGGATCGACCGCGACCTGGGCGCCGACGGCGACCTGCGACCGCTGTGGCCGGCGGACGTGCTGACCGAGGCCGTCGCCGCGGCGCACGCCGAGGCCGCCCGGGTGACGGTGCACGCCTTCTCCGAGGAGGTCGTGCCGGACCTGCTCGCCGCCGGAGTCGACGGCATCGAGCACGGCACCGGGCTGACGGCGGACCAGATCGTCGAGGTCGCGCACCGCGGCATCCCGGTCACGCCGACCCTGCTGCAGGTGAACCAGTTCGAGAACATCGCCGCCCGGGCCGACGGCAAGTACCCCGTCTACGCCGCCCGGATGCGGCGCATGCACGCCCGCCGCCACGAGCAGGTGCGCGCCCTGCACGAGGCGGGGGTCCCGCTGCTGGTCGGCACGGACGCGGGCGGGACCATCGACCACGGTCGGATCGCCGACGAGTGCGCCGAGCTCGTCGCGGCGGGGATCCCGGCGGCCGAGGTGGTGGCCATGGCCACGTGGCGCGCGCGGGCGTTCCTGGGCCAGGCCGGGATGGTCGAGGGGGCCAGCGCGGACTTCGTCGTCTACCCGGCCGACCCCCGGGAGGACATCGAGGTGCTGCGCCACCCGACGGCGATCGTGCTGCGGGGACGGGTCGTCGCGCCGTAG	MSVPHVPLHVTGRILLDGEREVGEMWVRDGRLSLLRPTPQGSSATELEGWVVPGLVDVHCHVGLDAGGATDPATAAKQALADRDSGVLLIRDAGSPLDTSWVADRADLPRLVRAGAHLSRPKRYLRRYGLELDDVADLPRVVREQARAGDGWVKLVGDWIDRDLGADGDLRPLWPADVLTEAVAAAHAEAARVTVHAFSEEVVPDLLAAGVDGIEHGTGLTADQIVEVAHRGIPVTPTLLQVNQFENIAARADGKYPVYAARMRRMHARRHEQVRALHEAGVPLLVGTDAGGTIDHGRIADECAELVAAGIPAAEVVAMATWRARAFLGQAGMVEGASADFVVYPADPREDIEVLRHPTAIVLRGRVVAP				NA	NA	NA	NA	NA
AK001_01117	1635	ffh	COG0541	Signal recognition particle protein	GTGTTCAACTCCCTGTCGGACCGTCTCGCTGCGACGTTCAAGAACCTGCGCGGCCGGGGACGGCTGTCCGAGGCGGACATCGACGCGACCGTGCGGGAGATCCGGCGCGCGCTGCTCGATGCCGACGTCGCCGTCCCCGTCGTGCGGGAGTTCACGCGCGCCGTGCGCGAGCGTGCGCTCGGCGCCGAGGTCTCGGCCGCGCTGAACCCTGCCCAGCAGGTCGTCAAGATCGTCAACGACGAGCTCGTTGAGATCCTCGGCGGGCAGACCCGCCCGCTGTCGCTGGCCAAGAACCCGCCGACGGTCATCATGCTGGCCGGTCTGCAGGGCGCCGGGAAGACGACGCTGGCCGGCAAGCTGGCGCTGGCGCTCAAGGAGCAGGGGCACACCCCGCTGCTGGTCGCCGCCGACCTGCAGCGGCCCAACGCCGTGACCCAGCTCTCGGTGGTCGCCCAGCGGGCCGGGGTGCCGGTCTTCGCGCCGCACCCGGGCAACACCTCCGCCGAGGACACCGACGCCGTCATCGGCGACCCGGTCGGGGTCGCGCGCGACGGCGTCGGCGAGGCGCGCGCCAAGCAGCACGACGTGGTCATCGTCGACACCGCGGGCCGGCTGGGCATCGACCAGGTGCTCATGCAGCAGGCCGCGGACATCCGCACGGCGATCGACCCGGACGAGGTCCTGTTCGTCATCGACGCGATGATCGGCCAGGACGCCGTCAGCACGGCCAGCGCGTTCGCCGAGGGTGTCGACTTCACCGGTGTCGTCCTGTCCAAGCTCGACGGCGACGCCCGCGGTGGCGCGGCGCTCTCCGTCGCGAAGGTCACGGGCCGTCCGATCATGTTCGCCTCGACCGGTGAGAAGCTCACCGACTTCGAGGTCTTCCACCCGGACCGCATGGCCTCGCGCATCCTCGACATGGGTGACGTGCTCACCCTCATCGAGCAGGCCGAGAAGGCGTTCGACGCCGAAGAGGCCGAGAAGATGGCCGCCAAGGTGGCCGGCGGCGAGGACTTCACGCTCAGCGACTTCCTGGTGCAGATGCAGCAGATGAAGAAGCTCGGGTCGATGAAGAAGATGCTCGGGATGATGCCCGGCATGGCCCAGATGCGCGAGCAGATCGAGAACTTCGACGAGCGCGAGGTCGACCGTGTCCAGGCGCTGATCCAGTCGATGACGCCCGCCGAGCGGGACAACCCCAAGATCATCAACGGCTCGCGCCGGGCGCGCATCGCCCGCGGTGCGGGGCAGACGACGGCGGCGGTCAACGGCCTGCTGGACCGCTTCGCCCAGGCGCAGAAGATGATGCGCCAGATGTCCTCGGGCGGCGGTATGCCGGGCGGTGGCCCCGGTGGCATGCCGGGGATGCCCGGGATGCCGGGCATGCCGGGCGGCGGCAAGAAGTCCCGGGGCAAGCAGGCCCCCAAGAAGAAGGTCAAGGGCAAGTCCGGCAACCCCGCCAAGCGGGCGCAGCAGGAGCGCGAGGCCATGCAGCGGGCGCTCGGCGGGGGCGGCAAGAAGCCGGCCGCGTCCGGGTCCGCGTTCGGCATCGGTGGCGACCAGCCCGAGGCCCAGGACGTGGAGAACCTCGAGCTGCCGTCGGACGTCAGCAAGCTCCTGGGTGGCGGACGCTGA	MFNSLSDRLAATFKNLRGRGRLSEADIDATVREIRRALLDADVAVPVVREFTRAVRERALGAEVSAALNPAQQVVKIVNDELVEILGGQTRPLSLAKNPPTVIMLAGLQGAGKTTLAGKLALALKEQGHTPLLVAADLQRPNAVTQLSVVAQRAGVPVFAPHPGNTSAEDTDAVIGDPVGVARDGVGEARAKQHDVVIVDTAGRLGIDQVLMQQAADIRTAIDPDEVLFVIDAMIGQDAVSTASAFAEGVDFTGVVLSKLDGDARGGAALSVAKVTGRPIMFASTGEKLTDFEVFHPDRMASRILDMGDVLTLIEQAEKAFDAEEAEKMAAKVAGGEDFTLSDFLVQMQQMKKLGSMKKMLGMMPGMAQMREQIENFDEREVDRVQALIQSMTPAERDNPKIINGSRRARIARGAGQTTAAVNGLLDRFAQAQKMMRQMSSGGGMPGGGPGGMPGMPGMPGMPGGGKKSRGKQAPKKKVKGKSGNPAKRAQQEREAMQRALGGGGKKPAASGSAFGIGGDQPEAQDVENLELPSDVSKLLGGGR	PGPT0025750_307	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106	NA	NA
AK001_01118	1863	glnD	COG2844	Bifunctional uridylyltransferase/uridylyl-removing enzyme	ATGGCCGACCACCCGATCCCGGGCGGCGGCCCCGCGCAGCAGGCCCCGCACCCCACCACCGGGGTGCGGGGCCCTGTCGTCGGGCTCCGCGAAGACCTGCTCACCACCGCCCGGGACCTCACCGGACCGGGACGCTCGGGCGTCGCGCGTCGCGCCATGCTCCAGCAGCTCGTCACCGACCGCCTCGGCGTCCTGTACGCCGAGGCCACCGCCGACGTCGACCCCGCGGGGCTGGCGCTGGCCGCCGTCGGCTCCCTGGGCCGCGGGGAGCTGGGTCCGCTGTCCGACCTGGACCTCGTGCTCGTGCACGACGGGCGCACGCACAAGCCCGACGAGCTCGCCCAGGTCGCCGAGCGCCTCTGGTACCCGCTGTGGGACTCGGGCGTCGACATCGACCACGCGGTGCGTTCGTTGAACCAGACCCGCCAGCTCGCCATGCGCGACCTGCCGGCCGCCGTCGGCTGGCTGGACGTGCGCCCCGTGGCGGGCGACGCCGTCGTCGTGCACCGGGCCGCGTCGGGGATCCTCACCGACTGGCGCTCCGCCGCCCGCCGCCGGCTGCCCGAGCTGCTCTCCAGCGTGCGCGAGCGTGCCGAACGGTCCGGGGACCTGGCCTACCTCATCGAGCCCGACCTCAAGGAGGCCCGTGGCGGCATCCGGGACGCCGTCGTCGTCTCGGCGCTCGCCGCGACCTGGCTCACCGACCGGCCCCACGGACGGGTCGACTCGGCCTACGCCCACCTGCTGGACGTCCGCGACACGCTGCACGTCGTGACCGGCCGGCGGGCCACCCGGCTGCTCCTGGCCGACCTGGACGAGGTCGCGGCCCGGTGCGGCTACGACGACCCGGACGAGCTGCTGGCGAGCCTGGCGGCCGCCGGCCGGGAGATCTCCTTCGCCCTCGACTCCACCGTGCGACGTGCGCGCCAGGCCCTGCAGCGGCCCGCGGCCCGGCGTCCGATGGTGGTGCGCGGCCGCCGGCAGCCGCCCCGGCTGCGCTCGGTCGGCGACGGGCTGGTCGAGCACGACGGCGAGCTCGTGCTCGGCGTCAACGTCTCGCCGCGCGAGGACCCCCAGCTCTCGCTGCGCGCCGCCGCGACGGCCGCGCGCACGGGGCTCGTGCTCTCCCCGGTGACCATGCACTCGCTGGGCGAGTGCCCGCCCATCCCGGAGCCGTGGCCCCAGACGGCGCGCAGCCACCTGTTGACCCTGCTGGCCTCCGGACCCGCGCAGATCCACGTCTGGGAGGCGCTCGACCTGGCCGGCGCGGTGACCACGTGGATCCCCGAGTGGGCCGACGTGCGCAACAAGCCGCAACGGGCCGCCATCCACCGCCACACGGTGGACCGGCACCTGGTCGAGACGGCGGCGCTGGCCACGGCGGTGCGCAAGCGGCAGATCGCCGACGGCGTCCCCGCGCGCCTGCTGCCCGCGGACCTGCTGCTCGTCACCGCGATCCTGCACGACATCGGCAAGCGACGGCGCGCGACCAGCGGCGACCACTCCGTCGAGGGCGCGGCGATCGCTCCGCCGATCGTGCGGCGCATGGGCTTCTCCGAGGAGTTCACCGCCGACGTCGAACGGCTGGTGCGCCACCACCTGACGCTGTCCGGTCTCGCCACGCGCTCCGACCCCGAGGACCCGGCGACCGTGCGGGCGCTGCTCGAGGCGGTCGACCACCGGCCCGACCTGCTCGAGGTGCTGCGGGCGCTCACCGAGTGCGACGCGACCTCCCTGGGACCCGCCGGCTGGACCGGCTGGCGGGGCAGCCTCGTCGACCAGCTCACCGACCTGGCGCGTGCCGCCCTGGCCGAGGAGGGCGCCCCGGCCGACGGTCCGACCGACGGTGAACCCCGCCGGTAG	MADHPIPGGGPAQQAPHPTTGVRGPVVGLREDLLTTARDLTGPGRSGVARRAMLQQLVTDRLGVLYAEATADVDPAGLALAAVGSLGRGELGPLSDLDLVLVHDGRTHKPDELAQVAERLWYPLWDSGVDIDHAVRSLNQTRQLAMRDLPAAVGWLDVRPVAGDAVVVHRAASGILTDWRSAARRRLPELLSSVRERAERSGDLAYLIEPDLKEARGGIRDAVVVSALAATWLTDRPHGRVDSAYAHLLDVRDTLHVVTGRRATRLLLADLDEVAARCGYDDPDELLASLAAAGREISFALDSTVRRARQALQRPAARRPMVVRGRRQPPRLRSVGDGLVEHDGELVLGVNVSPREDPQLSLRAAATAARTGLVLSPVTMHSLGECPPIPEPWPQTARSHLLTLLASGPAQIHVWEALDLAGAVTTWIPEWADVRNKPQRAAIHRHTVDRHLVETAALATAVRKRQIADGVPARLLPADLLLVTAILHDIGKRRRATSGDHSVEGAAIAPPIVRRMGFSEEFTADVERLVRHHLTLSGLATRSDPEDPATVRALLEAVDHRPDLLEVLRALTECDATSLGPAGWTGWRGSLVDQLTDLARAALAEEGAPADGPTDGEPRR	PGPT0000660_2672	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	GLN-NITROGEN_REGULATORY_SYSTEM,PGPT0000660-glnD-K00990	NA	NA
AK001_01119	339	glnB	COG0347	Nitrogen regulatory protein P-II	ATGAAGCTCGTCACCGGAGTCATCCAGCCCCACCGTCTCGACGACGTGAAGTCGGCGCTCGAGGCCTCGGGGGTCCGGGGTATGACCGTCAGCGAGGCCAGCGGCTACGGCCGGCAGAAGGGCCACACCGAGGTCTACCGCGGTGCCGAGTACACCGTGGACCTGGTCCCCAAGGTCCGGATCGAGATCCTCGTCGGGGACGAGGACGCCGCCTCGATCGTCGACGTCGTGGTCAACGCGGCGCAGACCGGCAAGATCGGTGACGGCAAGGTCTGGACGGTCCCCGTCGACGACATCGCCCGGGTCCGCACCGGCGAGCACGGCGACTCCGCTCTCTGA	MKLVTGVIQPHRLDDVKSALEASGVRGMTVSEASGYGRQKGHTEVYRGAEYTVDLVPKVRIEILVGDEDAASIVDVVVNAAQTGKIGDGKVWTVPVDDIARVRTGEHGDSAL	PGPT0000650_2361	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000650-glnB|glnY-K04751	NA	NA
AK001_01120	1287	amt		Ammonia channel	ATGGAGCTGGATACCGGAGTGACCGCATGGATGCTGACGTCAGCATCCCTCGTGCTCCTGATGACGCCTGGTCTGGCGTTGTTCTACGGAGGCATGGTTCGCGGCAAGTCCGTCCTGAACATGATGATGATGTCGTTCGGCGCCATGGCGGTCGTCGGTGTCATCTATGTCCTGTGGGGCTGGTCGATGTCCTACGCCACGGGCGTGGGGCCGGAGGGCTACTCGCTCTTCGCCAACCCGTTCGAGCAGTTCGGCCTCGGCGGCGGCGCGATCATGGACGACGCCGGTGAGTTCGTCGGCGAGGGCCTGCCCGTCGTCGTCGACGTCGGCTTCCAGGCGACGTTCGCGATCATCACCGTCGCGCTCGTCTCGGGTGCGATCGCCGACCGCGTCAAGTTCGGCACGTGGATGGTCTTCGCGGGCCTCTTCGCCACGCTGTCGTACTTCCCGCTGTCGCACATGGTCTGGGGCGGCGGCCTGCTGTCCGACGCCGGCCCGTTCGTCTTCGGCGACGCCGCACCGATCGACTTCGCCGGTGGCACCGTGGTGCACATCAACGCCGGTATCGCCGCGCTCGTGCTGGCCCTGATCGTCGGCAAGCGCAAGGGCTTCGGCTCCGAGCCGATGCGCCCGCACAACCTGCCGTTCGTCATGCTGGGCGCCGCCCTGCTGTGGTTCGGCTGGTTCGGCTTCAACGCCGGTTCCGCCTACGGTGCCGACGGCGCCGCGGGTCTGGCCTGGGTCAACACCACCACCGCGACCGCCGCGGCCATCATCGGCTGGCTCGTCACGGAGAAGCTGCGCGACGGCTCGGCCACCTCGCTCGGTGCCGCCTCGGGCGTCGTCGCCGGTCTGGTCGCCATCACCCCGGCCGCGGGCGACGTCTCGCCGGTCGGCGCGATCTTCGTCGGTCTGATCGCCGGTGCGCTGTCCGCCTTCGCGGTGGGCCTGAAGTTCAAGTTCGGCTACGACGACTCGCTCGACGTCGTCGGCATCCACCTCGTGGCCGGCCTGTGGGGCACGCTGTCCCTCGGCTTCTTCGCCACCAGCACGGGCCTCTTCTACGGCGGCGACTTCGCCCAGCTCGGCGTCCAGGCGGTCATCGCCCTCGTCGCGATGATCTTCGCCGGCGTCGTCACCCTGGTCATCGGCGTGGTGCTGAAGGCCACGATGGGCTGGCGGATCTCCGAGGAGGCCGAGGTCAGCGGTATCGACCTCGCCGTGCACTCCGAGACGGCGTACGAGACCATCGCTCAGGGTTCTGTCATCAAGGAGGTCCGTTCATGA	MELDTGVTAWMLTSASLVLLMTPGLALFYGGMVRGKSVLNMMMMSFGAMAVVGVIYVLWGWSMSYATGVGPEGYSLFANPFEQFGLGGGAIMDDAGEFVGEGLPVVVDVGFQATFAIITVALVSGAIADRVKFGTWMVFAGLFATLSYFPLSHMVWGGGLLSDAGPFVFGDAAPIDFAGGTVVHINAGIAALVLALIVGKRKGFGSEPMRPHNLPFVMLGAALLWFGWFGFNAGSAYGADGAAGLAWVNTTTATAAAIIGWLVTEKLRDGSATSLGAASGVVAGLVAITPAAGDVSPVGAIFVGLIAGALSAFAVGLKFKFGYDDSLDVVGIHLVAGLWGTLSLGFFATSTGLFYGGDFAQLGVQAVIALVAMIFAGVVTLVIGVVLKATMGWRISEEAEVSGIDLAVHSETAYETIAQGSVIKEVRS	PGPT0000840_5593	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-AMMONIUM_ASSIMILATION|USAGE	N-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320	NA	NA
AK001_01121	1149	ftsY	COG0552	Signal recognition particle receptor FtsY	GTGACTGACTTTCTGTGGCTCTACATCCTTCTCGGTGTCGTCCTGGTCGTGGGGCTCGGCTCCGCTCTCGTCGTCCCGCGCCTGCGTCGGGGCCGGTCCGACGACGGGACCACGCTCGCGCCGCCTCCGTCCGACGTCGAGGACGAGCCCGCCGACGCGGGTGCCGCCGACCAGGGGACCGGCACCGCGACGGCGGTCCTCGAGCGCCCGGAGCCGGCCGCCGGCCGGATGGTGCGCCTGCGCGACCGGCTCGCACGCTCCGGGTCGCCGCTGGGCGCCCGGCTGCTGACGATGCTCTCGCGCGACCAGCTCACCGAGGACGACTGGGACGAGATCGAGGAGACCCTGCTGCTGGCCGACCTCGGCACCGGTCCCGCCGAGGAGCTGCTGGAGTCGCTGCGGACCCGGGTGCGCGTGCTGGGGGTGCGCGAGCCGTCGGCGGTGCGCGACCTGCTGCGCGACGAGCTGCTCAAGGTCGTCGACCCCACCCTCGACCGCTCGCTCGCGCTGGACCGTCCCGTGGTCGACGGCGAGACGAAGCCGGCGGTCCTGCTCGTGGTCGGCGTCAACGGCACGGGCAAGACCACGACGGTGGGCAAGCTGGCCCGCGTGCTGGTGGCGGAGGACAGGTCCGTCGTGCTGGGTGCGGCCGACACGTTCCGCGCCGCCGCGGCCGACCAGCTGCAGACCTGGGGCTCGCGCGTGGGCGTCGAGACCGTCCGGTCCGACCGGGACGGCGCCGACCCGGCCGCCGTCGCCTTCGACGCGGTGCGCACCGGCGCGGCGAACGACACGGACGTGGTGGTCGTGGACACCGCCGGCCGGCTGCAGAACAAGGCGGGGCTCATGGACGAGCTCGGCAAGATCTCCCGCGTCATCACGCGCGAGGCGCCGCTGTCCGAGGTCCTGCTCGTGCTGGACGCCACGACGGGGCAGAACGGCATGCAGCAGGCGAAGGTCTTCTCCGAGGTCGCGGGGGTGACGGGCATCGTGCTCACGAAGCTGGACGGCACGGCCAAGGGCGGGATCGTCGTGGCGGTCCAGCGCGAGCTCGGCGTGCCGGTCAAGCTCGTGGGCCTCGGCGAGGGGCCCGACGACCTCGCCCCCTTCGACGCGGAGGACTTCGTGGACGGGATCCTCGGGGGCTGA	MTDFLWLYILLGVVLVVGLGSALVVPRLRRGRSDDGTTLAPPPSDVEDEPADAGAADQGTGTATAVLERPEPAAGRMVRLRDRLARSGSPLGARLLTMLSRDQLTEDDWDEIEETLLLADLGTGPAEELLESLRTRVRVLGVREPSAVRDLLRDELLKVVDPTLDRSLALDRPVVDGETKPAVLLVVGVNGTGKTTTVGKLARVLVAEDRSVVLGAADTFRAAAADQLQTWGSRVGVETVRSDRDGADPAAVAFDAVRTGAANDTDVVVVDTAGRLQNKAGLMDELGKISRVITREAPLSEVLLVLDATTGQNGMQQAKVFSEVAGVTGIVLTKLDGTAKGGIVVAVQRELGVPVKLVGLGEGPDDLAPFDAEDFVDGILGG	PGPT0025740_2699	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110	NA	NA
AK001_01122	330			hypothetical protein	GTGGTCACGTTCATCGTCTGGTTCGGCGTCTCGCTGCTGCTGTGCGCAGCGGTGTTCCTCGTCGCGAGCGTGATGGACCGCGGCGACGACGAGGGCGAGGGCCTGCGCGGGTTCGTCCGCGACTTCCGGGCCGGCCTGAGGCGCCGGGGCGGCACGTCCCGGCCGGTGGACACCGACATGGACGACTTCTTCGCCGCCAACCTCGAGTCGGCCCCGGGCTACGTCGACGCCGACGAGCTCTCGGGTGCGCTGCAGCGCGCGCAGGGCCGGGTGCGCCCGCACGGGCAGGCGCCGGGAGCGGCGTCGGACGGCGGGGCGTCGCCGCGCTGA	MVTFIVWFGVSLLLCAAVFLVASVMDRGDDEGEGLRGFVRDFRAGLRRRGGTSRPVDTDMDDFFAANLESAPGYVDADELSGALQRAQGRVRPHGQAPGAASDGGASPR				NA	NA	NA	NA	NA
AK001_01123	3567	smc_2	COG1196	Chromosome partition protein Smc	GTGCACCTCAAGACGCTCACCCTGCGGGGCTTCAAGTCGTTCGCCTCGGCGACGACGCTGAGCTTCGAGCCGGGGATCACGTGCGTCGTCGGGCCGAACGGCTCCGGCAAGTCCAACGTCGTGGACGCCCTGTCGTGGGTCATGGGGGAGCAGGGCGCCAAGTCCCTGCGCGGCGGCAAGATGGAGGACGTCATCTTCGCCGGCACGTCCGGCCGACCGCCCCTGGGGCGCGCCGAGGTCGCCCTGACCATCGACAACACCGACGGCGCCCTGCCGATCGACTACACCGAGGTGACGATCTCGCGGACCCTGTTCCGCAGCGGTGGGTCGGAGTACGCCATCAACGGCAGCGCCTGCCGCCTCCTCGACGTCCAGGAGCTGCTCAGCGACTCCGGCATCGGCCGCGAGATGCACGTCGTCATCGGCCAGGGCCAGCTCGACGCCGTGCTGCGCGCGACGCCCGAGGAGCGGCGCGGCTTCATCGAGGAGGCCGCGGGGGTCCTCAAGCACCGCAAGCGCAAGGAGAAGGCGCTGCGCAAGCTCGAGGCGATGGCCGGCAACCTCGCCCGGCTCACCGACCTGACCACCGAGCTGCGACGCCAGCTCGGTCCGCTCGGCAAGCAGGCCGAGGCCGCCCGCAAGGCCCGGGCCGTCCAGAGCGAGGTCCGCGACGCGCGCGCCCGGCTGCTGGCCGACGACCTCGCCCAGCTCGGCGCCCGGCTGGAGCAGGAGCGGGCCGACGAGGCCGCGCTCGCGGAGCGCCGGCGCACCACCGAGGACGAGCTGGCCGCGAGCCGACGGCGCCTGACCGGCCTCGAGGCCGCCGCCGCCGAGACCGGACGCGCGGCGGCCCGCGCCGCCGAGACGGTGCACGCCCTGGACGGGCTGCGCGAGCGGCTGCGCGGCCTGGGCTCCCTGGCCGACGAACGCGTGCGGCTGCTCGGCGCGGCCGAGCCGGAGCACCGGGGCCAGGACCCCGACGAGCTCGAGGCCCAGGCGGAGCGTGCCCGCGTCTCGGAGTCGGAGCTGACCCGGGAGGTCGAGCTGGCCCGCGAGGCGCTCGAGACGGCCGAGGAGAGGCGGGCCGAGGCCGAGCGGGCGGCCCAGCAGGCCGAGCGCGAGCTCGCCACCCTGCACCGCGGTGCGGCCGACCGGCGCGAGGGTCTGGCCCGGCTGGCCGGCCAGGTGTCCACCTGCCGCAGCCGCGTCGAGGCCGCCGACGCCGAGATCGAGCGGGTGCGCGACGGCCTGGCCGAGGCCGAGCGGCGCGCGCAGGAGGCGGCGCGGGAGTTCGCGGCGCTCGAGACCGAGGCCGTCGGGGCCGAGGCCGGCGAGGAGGGGCTGGACGCCGACCACGAGCACGCCGTCGAGGAGCTGGCCGGGGCGCGCGACGCCGTCGCCCGCCTCGAGGAGCTCGTCGCCGCCGCCGAGAAGGACCGTGCGACCTGGTCGGCCCGGGTCGAGGCGCTCGAGCTGAGCCTCGACCGCAAGGACGGGGCCGGCGCGCTGCTCGCAGCCGACCAGCCGGGCGTGCTCGGTTCGGTCGCGGCGCTGCTCGGCGTGGAGCCCGGGTACGAGGAGGCGGTCGCCGCCGCCCTCGGACCGCTGGCCGACGCCGTGGCCGTCGAGAGCCTCGAGGCGGCGGTGGACGCCCTGCGGCTGCTGCGGGACGACGACGGCGGCCGCGCGGGTCTCGTCGTCGGCGGATCGTCGGCCGGGACGCCGCGCGACCTGGGAGAGCTGCCCGGGGGAGCCCGGCCCGCCGTCGACGTCGTCACGGCGTCGGGAGGGGCCGCCGCGGCGGTGCGCTCGCTGCTGGCCGACGTCGTCGTCGTGCAGGACCTGGCCGAGGCGCGCGCCCTCGTCGCGGCCCGCGCCGACGTCGTCGCCGCCACCCGGGCGGGCGACCTGCTCGCCGCGACCCGCGCCTCGGGCGGGTCGGCGGGGGCCCCGAGCGTGCTGCACCTGACCAGCGCCCTGGACGAGGCGCGCGCCGGCCTCGAGGACGCCGAGCGTCGCGGCGAGCGCTCGGGGAGCGAGCTGACCGACGCCCGCCGGGCCCGCGAAGCCGCCCAGCAGCGGCACGACGAGACCCTGGAGCGCCTGCACGAGTCCGACGCCGCGCTGGCGGCGGTGGCCGAGCAGCTCGGCACCCTCGGCGCCGCCCGCCGTGCGGCCCAGACGGAGGCCGAGCGTCACCGCGCGACGATGGAGGATGCGACGGAGCGCCGGCGGACCGCCGAGGAGGAGCTGGTCGACCTGCAGCGCCGGCTCGAGGTCGCCGAGGCGGAACCGGCGCGTTCCGAGGAGGACGTCGAGGCCGCGACGGCGGACCGGGACGCCGCGCAGCAGGCGGCGACGACCGCTCGTCAGGCCGAGACCGAGACCCGCCTCGCGCTGCGGACCGCCGAGGAGCGGGCCCGCGCCGTGACCGGCCGGGCCCAGGCGCTGGCGCACGCGGCCGAGCAGGAGCGCCGCGCCCGTGAGGAGGCGGCCGCCCGCGCCCGTCGGCGGGCCGCCCAGGCGCACCGTGCGGCGGAGGTGCGCGAGGACGTGGCCACGGCGCTCGGCGCGATCTCGCGGTCGATCGAGCGTGCCCGTGACGAGCAGGCCCGCGCGCGGGCGGACCGGGACCGCCAGCGGCGCGAGGTCGACGACGTGCGCACCGACGTCGACCGGCTGACCGGCGAGCTGCGGGACCTGACGGACGTGGCCCACCGGGACGAGGTGGCCCGCGCCCAGCAGCTCGCGCGTCTGGAGCAGCTGCGGACCCGCGCCGTCGACGAGCTCGGCACGGACCCCGAGGTGCTCGTCGAGGAGTTCGGTCCGCACCACCCGGTGCCGGTGGCCCGGCCGGCGGACGCCGCCGAGGACGACCCGGACCCGGACCCCGTCCCGTACGTGCGCGCCGAGCAGGAGAAGCGGCTGGCGTCGGCGGAGCGCGCCCTCAAGCGCATCGGGACCGTCAACCCCCTCGCGCTGGAGGAGTTCGCGGCCCTGGAGGAGCGGCACCAGTTCCTCGCCGACCAGCTCGCGGACCTGAAGAAGTCGCGCGAGGACCTGCTCCAGATCGTCGCCGACATCGACGACCGCGTGCAGCAGGTGTTCGCCGAGGCGTTCCGGGACACGGCCGAGCAGTTCGAGGGCGTGTTCTCCCGGCTGTTCCCCGGGGGCGAGGGGCGCCTGGTGCTCACCGACCCGAGCGACCTGCTGACGACCGGTCTCGAGATCGAGGCCCGGCCGGCGGGCAAGAAGGTCAAGCGCCTGTCGCTGCTGTCCGGGGGCGAGCGGTCGCTCACGGCGGTCGCGTTCCTGGTCTCGATCTTCAAGGCGCGCCCGAGCCCGTTCTACGTGATGGACGAGGTCGAGGCCGCCCTGGACGACGTCAACCTGGGCCGCCTGCTGGAGATCTTCCGCGAGCTGCGCGACGACTCCCAGCTCATCGTCATCACCCACCAGAAGCGCACCATGGAGATCGCCGACGCCCTGTACGGCGTGACCATGCGCGGCGACGGTGTGACGACGGTCATCTCCCAGCGGCTGAGCGAAACCGCCGAGACGGGGTGA	MHLKTLTLRGFKSFASATTLSFEPGITCVVGPNGSGKSNVVDALSWVMGEQGAKSLRGGKMEDVIFAGTSGRPPLGRAEVALTIDNTDGALPIDYTEVTISRTLFRSGGSEYAINGSACRLLDVQELLSDSGIGREMHVVIGQGQLDAVLRATPEERRGFIEEAAGVLKHRKRKEKALRKLEAMAGNLARLTDLTTELRRQLGPLGKQAEAARKARAVQSEVRDARARLLADDLAQLGARLEQERADEAALAERRRTTEDELAASRRRLTGLEAAAAETGRAAARAAETVHALDGLRERLRGLGSLADERVRLLGAAEPEHRGQDPDELEAQAERARVSESELTREVELAREALETAEERRAEAERAAQQAERELATLHRGAADRREGLARLAGQVSTCRSRVEAADAEIERVRDGLAEAERRAQEAAREFAALETEAVGAEAGEEGLDADHEHAVEELAGARDAVARLEELVAAAEKDRATWSARVEALELSLDRKDGAGALLAADQPGVLGSVAALLGVEPGYEEAVAAALGPLADAVAVESLEAAVDALRLLRDDDGGRAGLVVGGSSAGTPRDLGELPGGARPAVDVVTASGGAAAAVRSLLADVVVVQDLAEARALVAARADVVAATRAGDLLAATRASGGSAGAPSVLHLTSALDEARAGLEDAERRGERSGSELTDARRAREAAQQRHDETLERLHESDAALAAVAEQLGTLGAARRAAQTEAERHRATMEDATERRRTAEEELVDLQRRLEVAEAEPARSEEDVEAATADRDAAQQAATTARQAETETRLALRTAEERARAVTGRAQALAHAAEQERRAREEAAARARRRAAQAHRAAEVREDVATALGAISRSIERARDEQARARADRDRQRREVDDVRTDVDRLTGELRDLTDVAHRDEVARAQQLARLEQLRTRAVDELGTDPEVLVEEFGPHHPVPVARPADAAEDDPDPDPVPYVRAEQEKRLASAERALKRIGTVNPLALEEFAALEERHQFLADQLADLKKSREDLLQIVADIDDRVQQVFAEAFRDTAEQFEGVFSRLFPGGEGRLVLTDPSDLLTTGLEIEARPAGKKVKRLSLLSGGERSLTAVAFLVSIFKARPSPFYVMDEVEAALDDVNLGRLLEIFRELRDDSQLIVITHQKRTMEIADALYGVTMRGDGVTTVISQRLSETAETG				NA	NA	NA	NA	NA
AK001_01124	441	ndk	COG0105	Nucleoside diphosphate kinase	ATGACCGAACCGACCACGCCTGCCATCGAGCGCACCCTGATCCTCGTCAAGCCCGACGGCGTCCGCCGCGGCCTGACCGGTGAGATCCTGCGGCGCGTCGAGGCCAAGGGCTACACGCTCGCCGCCGTCGAGCTCCAGCACGCCACCCCCGACCAGCTCGCCACGCACTACGCCGAGCACGAGGGCAAGCCCTTCTACGCCCCGCTGGTGGAGTTCATGCTCTCCGGGCCGACCCTCGCGGTGATCGCCGAGGGCCAGGGCGTCATCGCCGGGTTCCGCTCCCTCGCCGGCGCCACCGACCCGACGGCCGCCGCCCCGGGCACCATCCGCGGCGACATGGCCCGCGACTGGGGCCTGAAGGTCCAGCAGAACCTCGTGCACGGGTCGGACTCCCCGGAGTCGGCCGAGCGCGAGATCGCGATCTGGTTCCCCGGCCGCTGA	MTEPTTPAIERTLILVKPDGVRRGLTGEILRRVEAKGYTLAAVELQHATPDQLATHYAEHEGKPFYAPLVEFMLSGPTLAVIAEGQGVIAGFRSLAGATDPTAAAPGTIRGDMARDWGLKVQQNLVHGSDSPESAEREIAIWFPGR	PGPT0021210_2480	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940	NA	NA
AK001_01125	447			hypothetical protein	GTGAGCCGTACGAAGGACGACCGCCCCCGCCCGGGCGACCGCATCGCACCGCGCAAGCCGGCGAAGGTGCAGTTCGCCGCGACCATGCTCCAGCTCGAGGCGTTCGTGGTGGTGTTCGCCGCGCTCGCCCTGTACGGGCTGCGCGACTCGCCCTACGAGCGCGGGCCGCTGGTCATCGAGTCGATGCCGGCGATGTGGACCGTCACCGGCGTGCTGTTCGTCGTGCTGATCGTGCTCTCGCGCCTCGTGGGCAAGCCGGGCGGCTTCCTGGCGGGGTCCGTGGTGCAGGTACCGGTCCTGGCCCTCGGGCTGCTGCTGCCGATGATGTTCCTCGTGGCGGGGATCTTCGTGATCCTGTGGGTCGTGGCGCTGCGCCTCGGAGGCCGGATCGACGCCGAGCGCGCCGCGTACGACGCCGAGAACCCGGATACGGCGCCCAACGCCTGA	MSRTKDDRPRPGDRIAPRKPAKVQFAATMLQLEAFVVVFAALALYGLRDSPYERGPLVIESMPAMWTVTGVLFVVLIVLSRLVGKPGGFLAGSVVQVPVLALGLLLPMMFLVAGIFVILWVVALRLGGRIDAERAAYDAENPDTAPNA				NA	NA	NA	NA	NA
AK001_01126	1704	bmr3_1		Multidrug resistance protein 3	ATGGCACACGCCCCCGCACCCGCGCCGGAGAAGCCGGTCGTCGTCCTGACGCAGCGCACCGTCTGGCTGATCTTCAGCGCCCTGCTGGCCTCGATGTTCCTCGCCTCGCTGGACCAGACGATCGTCGGCACCGCGATGCCGACGATCGTCGGCGAGCTCGACGGGGTCGCCCACCAGGGATGGGTCATCACCGCCTACATCCTGGCCGTCGCGATCGGCATGCCCCTGTACGGCAAGTTCGGCGACCTGTACGGGCGCCGGTGGCCGTTCCTCGTCGCCATCGGGCTGTTCACCGTGTCCTCGGCCGGGGCGGCCCTGGCCGACGGGATGCTGGCCCTGGTGCTCTGGCGTGCCGTGCAGGGTCTCGGCGGCGGCGGGCTGATGATCCTGTCGCAGTCGATCATCGCCGACATCGTGCCCGCCTCCGAGCGCGGCAAGTACATGGGTCCGCTGGGTGCGCTGTTCGGGATCTCGGCCGTGCTCGGACCGCTCCTGGGCGGCTGGCTCACCGAGGGGCCGGGCTGGCGCTGGGCCTTCTGGCTGAACATCCCGATCGGTCTGGCGGCCTTCGCCGTCGCCTGGTTCGCGCTGCGGCTGCCGTCGTTCCGCTCGTCGCGGCCGGTCGACTGGCCCGGCATCGTCTCGATGGCCCTGGCGACCACGGGCATCGTGCTCGTGACCAGCTGGGAGTCCCTGGCCGACGGCGGCTACGACTGGTCCGACTGGCGCCTGGGTGCGCTCGTGGTGGGCACCCTGGCCGCGATCGCGGTGTTCGTCGTGGCCGAGAACCGTGCCGCCGAGCCGCTGCTGCCGCTGCGCCTGTTCACAAACCGCACCTTCACGCTCTCCACGCTGATCGGGCTGGTCCTCGGCATGGGGATGTTCTCGGCGATGGCCATGCTGCCGACGTTCCTGCAGATGTCCACCGGGGCCGGGATCACCGAGTCCGGCTGGCTGATGCTGCCGATGATGGCGGGCATGATGATCACCTCCATCGGCTCGGGACTGGCGATCACGCGGACCGGCCGGTACAAGGCCTTCCCGGTCGTCGGACTGGTCGTGGTGGGCCTGTCCATGGTCTGGCTGACGACCTTGACCGGGGACATCTCGATGTGGACCTTCGGCGCGATGATCTTCACGCTCGGTGCCGGCATGGGGCTGGTCATGCAGGTCGTCGTGCTCGCGGTGCAGAACGCCGTCGACCCCCACGAGCTGGGCACTGCGACCAGCGCCAACAACTTCTTCCGGGAGATCGGCGCCGCGGTCGGCTCGGCGCTGTTCACCACGATGTTCACCTCGCGCCTGACGGACAACCTCGCCGAGGTGTTCGCCGGGGCGCCCGGCGGTGCGGCGGAGGCCGAGGCGGGCCTGACGCCGGAGGTCGTGCACCAGCTGCCCGAGCCCGTGCGCTCCGGCGTCGTCGACGCCTACGCCGACTCGCTGGCGCCCTCGTTCTGGTACCTGGTGCCGCTCGTGGCGTTCGGGCTGGTGCTGGCGCTGTTCCTGCCCGCGCTGAAGCTCTCCGACGTCGCCGGCATGGTCGCCCGCGGCGAGGCCGTGACCGACGAGAGCGAGCTGCCGCTGCCGCGGGCCGCCGTCGTCGCGCCGTCCGCCGGAGCGGGCGACGGGCCGACCGGCGACGGGACCGACGCCGACGACGACGGACCCGCCGGGGTCCGGGCAACGGATACCCTGGAGCGGTGA	MAHAPAPAPEKPVVVLTQRTVWLIFSALLASMFLASLDQTIVGTAMPTIVGELDGVAHQGWVITAYILAVAIGMPLYGKFGDLYGRRWPFLVAIGLFTVSSAGAALADGMLALVLWRAVQGLGGGGLMILSQSIIADIVPASERGKYMGPLGALFGISAVLGPLLGGWLTEGPGWRWAFWLNIPIGLAAFAVAWFALRLPSFRSSRPVDWPGIVSMALATTGIVLVTSWESLADGGYDWSDWRLGALVVGTLAAIAVFVVAENRAAEPLLPLRLFTNRTFTLSTLIGLVLGMGMFSAMAMLPTFLQMSTGAGITESGWLMLPMMAGMMITSIGSGLAITRTGRYKAFPVVGLVVVGLSMVWLTTLTGDISMWTFGAMIFTLGAGMGLVMQVVVLAVQNAVDPHELGTATSANNFFREIGAAVGSALFTTMFTSRLTDNLAEVFAGAPGGAAEAEAGLTPEVVHQLPEPVRSGVVDAYADSLAPSFWYLVPLVAFGLVLALFLPALKLSDVAGMVARGEAVTDESELPLPRAAVVAPSAGAGDGPTGDGTDADDDGPAGVRATDTLER				NA	NA	NA	NA	NA
AK001_01127	630			hypothetical protein	TTGCACCGGCTGCAGAATGTGACGGTGACACCGACCGACCCGCCCGCCGGGCTGCGCGCCCGCAAGAAGCAGGCGCGCGCCGACGCCATCGTCGACGCCGCCCAGCGGCTCGTGCTCGACCGCGGCCTGGACGCCGTCACCGTCGAGGGGATCGCCGAGGCGGCGGGGATCTCCCCGCGGACCTTCTTCAACTACTTCGACTCCAAGGACGACGCCGTGCTCGGCCAGCGCGGTCTGGACGTCGACGACGCGGCCGTGGCGACCTTCGTCGCCGGCGGACCGACCGGCGACTTCCTCGACGACGTCGAGGCGCTCGTGACCGCCCTGGTCGCCGCGATGGCCGGCGGGCACGACCGGGCCGAGCGCGCCTTCGGCCTGATGGAGTCCGAGCCCCGGCTGCTGGCCGGTCATGTCACGTGGCTGGAGAAGCACCGCACCGAGATCGCGGCGCTCTTCGCCCGCCGGGCCGAGCATGCCTCTGGCCCGGCCGACCCGGACTTCTGCTCGATGACCGTGTTCCTGCTCGTCCGGGCGACCGGCGAGCGCTGGGAGCGGTCCGGCCGCACGGGCGAGCTGACCGACCACGTGCCCGGTGCCGTCGCGGCGCTGCGCGCCCTCTCCCGGGCCTGA	MHRLQNVTVTPTDPPAGLRARKKQARADAIVDAAQRLVLDRGLDAVTVEGIAEAAGISPRTFFNYFDSKDDAVLGQRGLDVDDAAVATFVAGGPTGDFLDDVEALVTALVAAMAGGHDRAERAFGLMESEPRLLAGHVTWLEKHRTEIAALFARRAEHASGPADPDFCSMTVFLLVRATGERWERSGRTGELTDHVPGAVAALRALSRA				NA	NA	NA	NA	NA
AK001_01128	762	dhaM	COG1080	PEP-dependent dihydroxyacetone kinase, phosphoryl donor subunit DhaM	GTGAGCGTGGCCCTGGTGCTCGTCTCCCACTCGCCGCGGCTGGTCGACGGCCTCGCCGAGCTGACGGCCCAGATGGCCCCGGACGTCGTGGTGCGCTGCGCGGCGGGCGACGTGGACGGCGGCCTGGGCACCTCGCTCGACCGCGTGCAGGAGGCGCTCGAGGCGGCGCTGGCACGGGCCGGCTCCGTCGTCGTGCTGGCCGACCTCGGGTCCGCGGTGCTCGTGGTGGAGTCGGTGCTGGAGCTGGACCCGGACCTGCCGCCGCGGGTGCGGATGGTCTCGGCACCCTTCGTGGAGGGTGCCGTCGCGGCGGCCGTGAGCGCCCAGCAGGGTGCGGACCTGGACGGGGTGGCGGCCGCCGCGGAGGACGCCGCACGGTCGATCGGGCCGGAACCGGTCTACCAGTTGGTGGAGGCCGCCGGCACCGGCAGTCCGCCGATCGCGGGGACGTGGGCGCAGGGCGAGGTGGTGCCGGAGCCGGGGGCGCCGTCGTCGGGCGCCGCGGACGAGGTCAGCGCGACCGTCGAGATCCGCAACGCGCTCGGGCTGCACGCGCGGCCGGCGGCGGTGGTGGCCCGGGCCGCGGCCGACCTGGGGGTGCCGGTGACGATCGAGGGGGCGGACGCCACGAGCGTGCTCGCCCTGATGTCCCTCGGGACGACGGCGGGGCAGCGGGTGACCGTGACGGCCCGCGGGGACGGCGCGCAGGGCGCGGTCGCGCTGGTGTCGGGGCTGATCGAGGGCGGTTTCGGCGAGGCGTGA	MSVALVLVSHSPRLVDGLAELTAQMAPDVVVRCAAGDVDGGLGTSLDRVQEALEAALARAGSVVVLADLGSAVLVVESVLELDPDLPPRVRMVSAPFVEGAVAAAVSAQQGADLDGVAAAAEDAARSIGPEPVYQLVEAAGTGSPPIAGTWAQGEVVPEPGAPSSGAADEVSATVEIRNALGLHARPAAVVARAAADLGVPVTIEGADATSVLALMSLGTTAGQRVTVTARGDGAQGAVALVSGLIEGGFGEA	PGPT0018450_174	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018450-dhaM-K05881	NA	NA
AK001_01129	606	dhaL	COG2376	PEP-dependent dihydroxyacetone kinase, ADP-binding subunit DhaL	ATGCGTCAGGCGGCGAGCGACCTGAAGGCGGGTCGTGACGAGCTGACCGAGCTGGACCGCCGCATCGGCGACGGTGACCACGGCAACAACATGGACCGCGGCTTCACCGCCGTCGTCGCGAAGCTGGACGACGCGGGCTCGCCGGAGACCGTGGGACAGGTGCTGAAGCTGGTCGCCACGACGCTGATGTCCACCGTCGGCGGGGCCTCGGGCCCGCTGTACGGCACGGCGTTCCTGCGTGCGTCGAAGGTGGTGGACCGGGCCACGGTCGACCCGGCCTGCCTGGTCTCGCTCGCCGAGGCGGCGACCGAGGGGATCGTGGCCCGCGGTCGCGCGCACGTGGGGGAGAAGACGATGGTCGACGCGTGGCAGCCGGCCGTCGAGGCGGCCGAGCAGGCGGCCGGGTCGGGGGACGTCCTGGACGTGCTCCGCGCGGCGGCCGAGGCGGCCGAGGCCGGTGCGGTCGCGACGATCCCGCTGGTGGCCACCAAGGGCCGCGCGTCCTACCTGGGCGAGCGCAGCGCCGGCACCGAGGACCCGGGCGCCCGGTCGACGGCGATGCTGCTGGCAGCGGCGGTGACCGCCGCCGAGGAGGTGGCCGGGTGA	MRQAASDLKAGRDELTELDRRIGDGDHGNNMDRGFTAVVAKLDDAGSPETVGQVLKLVATTLMSTVGGASGPLYGTAFLRASKVVDRATVDPACLVSLAEAATEGIVARGRAHVGEKTMVDAWQPAVEAAEQAAGSGDVLDVLRAAAEAAEAGAVATIPLVATKGRASYLGERSAGTEDPGARSTAMLLAAAVTAAEEVAG	PGPT0018455_635	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018455-dhaL-K05879	NA	NA
AK001_01130	996	dhaK	COG2376	PEP-dependent dihydroxyacetone kinase, dihydroxyacetone-binding subunit DhaK	ATGAAGAAGTTGCTCGACGACCCGTCACAGGCCGTCACTGACTCGCTCCGGGGGTTCGGTCTGGCGCACGCCGACCAGGTCTCGGTGCACCACGATCCGAACTACGTCGTCCGGGCCGGTGGGACGCCGCCCGGCCAGGTCGCCGTCGTCAGCGGCGGTGGCTCCGGGCACGAGCCGCTGCACGCCGGGTTCGTCGGGGCCGGCATGCTGGACGCCGCGGTCCCGGGCGAGGTGTTCACCTCGCCGACACCGGACCAGGTCCTGGCGGCCGTGCAGGCCGCCGACGGCGGCGCCGGCGTCCTGCTGATCGTCAAGAACTACACCGGCGACGTGCTCAACTTCGAGACGGCCGCCGAGCTCGCCGAGGCCGAGGACGTCGAGACCACCAGCGTGCTGGTGAACGACGACGTCGCGGTCGAGGACTCGCTGTACACGGCCGGACGCCGCGGCGTCGCCGGCACGCTGTTCGTCGAGAAGGTCGCCGGTGCCGCGGCGGCCCGGGGCGACTCGCTCGCACAGGTCACCGCGCTGGCCGAGCGAGCGGCGTCCGCGGTGCGCTCCATGGGGGTGGCCCTGACCGCGTGCACGGTGCCCCACGTCGGCAAGCCGAGCTTCGACCTCGGCGAGGACGAGGTCGAGATCGGCATCGGCATCCACGGCGAGCCCGGTCGTCACCGGGTGACGGCGAGCGGCGCGAGCGACATCACGCGGCGCCTGGTCGACTCGGTCCTGGACGACATCGAGCTGGCCGAGGGCGCTCGCGTGCTGCTGTTCGTCAACGGCATGGGCGGCACGCCCGCGAGCGAGCTCTACGTCGTGTACGGGATCGCCCGGCAGATGCTGGTCGACCACGGGGCGCAGGTGGAGCGCTCGCTGGTGGGCAGCTATGTGACGTCGCTGGAGATGCAGGGGGTGTCGGTGACCGTGGCGGTGCTCGACGACGAGCTGATCGAGCTCTGGGACGCGCCGGTCCGGACCCCGGCCCTGACGTGGTGA	MKKLLDDPSQAVTDSLRGFGLAHADQVSVHHDPNYVVRAGGTPPGQVAVVSGGGSGHEPLHAGFVGAGMLDAAVPGEVFTSPTPDQVLAAVQAADGGAGVLLIVKNYTGDVLNFETAAELAEAEDVETTSVLVNDDVAVEDSLYTAGRRGVAGTLFVEKVAGAAAARGDSLAQVTALAERAASAVRSMGVALTACTVPHVGKPSFDLGEDEVEIGIGIHGEPGRHRVTASGASDITRRLVDSVLDDIELAEGARVLLFVNGMGGTPASELYVVYGIARQMLVDHGAQVERSLVGSYVTSLEMQGVSVTVAVLDDELIELWDAPVRTPALTW	PGPT0018460_1095	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018460-dhaK|dak-K05878	NA	NA
AK001_01131	786	yclP	COG4604	Petrobactin import ATP-binding protein YclP	ATGACGGCACCGACCGAGGTCCGGCGCGCCATCGCCGTCGAGGGCCTGACCAAGCGCTACGGGCGGACCGTCGTCGTCGACGACGTGAGCCTCGAGCTCCCGGCCGGTGGCGTGGTCTCGATCATCGGCCCCAACGGGGCCGGCAAGTCGACGCTGCTCGGCATGGTCTCGCGCCTGCTGCCTGTGGACGCCGGCCGGGTGGTCGTGGACGGGGACGACCTCGCCCGCACGCCGGGGGACGTGATGGCCCGGCGCCTGGGCATCCTGCGCCAGGACAACCACCTGGCGGTGCGCCTGACGGTGCGCGAGCTGGTGACCTTCGGCCGGTATCCCCACAGCAAGGGGCGCACGACCGCGGAGGACCGGCGCCACGTCGACGCCGCGCTGGAGTACCTGGACCTCACGGGGCTCGCGGGGAGGTTCCTCGACGAGATGTCGGGCGGGCAGCGTCAGCGTGCCTTCGTCGCGATGGTCCTCGCCCAGGACACGGACTACGTGCTGCTGGACGAGCCGCTGAACAACCTCGACATGGTGCACGCCCGCGCCATGATGCGGCTGGCCCGTCGCGCGGCGGACGACCTCGGCAAGACGGTCGTGACGGTGCTGCACGACATCAACTTCGCCGCTGCCTGGTCGGACCGCGTCGTGGCCATGAAGGACGGTCGCGTCGCGGCGCACGGCACCCCGGCCGAGATCATGCGGCCCGACGTCCTGGGTGCGGTCTTCGACATGGACGTGGCCGTGCACGAGGTCGACGGCCGACCGGTCGCGTTGTACTACACGTGA	MTAPTEVRRAIAVEGLTKRYGRTVVVDDVSLELPAGGVVSIIGPNGAGKSTLLGMVSRLLPVDAGRVVVDGDDLARTPGDVMARRLGILRQDNHLAVRLTVRELVTFGRYPHSKGRTTAEDRRHVDAALEYLDLTGLAGRFLDEMSGGQRQRAFVAMVLAQDTDYVLLDEPLNNLDMVHARAMMRLARRAADDLGKTVVTVLHDINFAAAWSDRVVAMKDGRVAAHGTPAEIMRPDVLGAVFDMDVAVHEVDGRPVALYYT	PGPT0003760_3375	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_01132	1047	yclO	COG4605	Petrobactin import system permease protein YclO	ATGTCGGTTGACACCCACCCGCTCGACGCGGTGCCGGGCGCCCGGTCCGACGCCGGGACTCCCGTCGCCGCGAGCGACCCGACCGAGCGGGCCCTGCGCCGTCGCGCCCTCGGCGTGCTGGGCGGGCTCGGCGTGCTCGCGCTGGCGGTGACCGTCCTGTACCTGACCGTGGACGTGCGCGCGGGCTGGGAGTTCACCCTGCCCTTCCGCGGGCGACGCGTGGCGGCCATGGTCGTCGTCGGGGTGGCGGTCGCCGCGTCGACGGTCGTCTTCCAGACCCTGACGACGAACCGCATCCTGACCCCGTCGATCCTCGGGTTCGACTCCCTGTACCAGCTGCTGCAGACCACGCTGGTGTTCGTGCTCGGCTCGTACGCCCTCGCCTCGGTCGGGGTGGTCGAGCAGTTCGGTCTCGCGGTCGCCCTCATGGTGGGTGCCTCCCTGGCCCTCTTCCTCGGCCTGTTCGGCGGCGCGCGCCGGTCCCTGCACCTGGTGCTGCTCATCGGCGTCGTGCTCGGCACGCTGCTGCGCTCGGCCACCGCACTGATGCAGCGGATGATGGACCCGAGCGAGTTCCAGGTGCTGCAGTCGCGGCTCTTCGCCAGCTTCACCGGGGTCGACGAGCGACTCCTGGGTGTCAGCGCCGTCGTCGTCGCGGTCTGCTGCGGCGTGCTGTGGGGCCTGCGCCGCCGTCTCGACGTCGTCGCACTGGGGCGCGACACGGCCGTGTCCTTGGGGGTGGACCACCGCCGCACGTCCTTGCTGGTGCTGGTCGTGGTCGCCGTCCTGGTCTCGGTCTCCACCGCGCTGGTCGGGCCGATCACGTTCTTCGGCCTGCTGGTGGCCAACCTGGCCTACGCGCTGCTCGGCACCCAGCGGCACGCCCTGACCCTGCCCGTGGCGGCGCTGCTGTCCGTCGTGACCCTGGTCGGGGGCCAGACCGTGCTCGAGCACCTGCTCGGCATGGAGACCGTGCTGTCCGTCGTCATCGAGTTCTGTGGAGGCATCGTGTTCATCGCCCTGCTCGTCGCCGGGGGGCGGCGATGA	MSVDTHPLDAVPGARSDAGTPVAASDPTERALRRRALGVLGGLGVLALAVTVLYLTVDVRAGWEFTLPFRGRRVAAMVVVGVAVAASTVVFQTLTTNRILTPSILGFDSLYQLLQTTLVFVLGSYALASVGVVEQFGLAVALMVGASLALFLGLFGGARRSLHLVLLIGVVLGTLLRSATALMQRMMDPSEFQVLQSRLFASFTGVDERLLGVSAVVVAVCCGVLWGLRRRLDVVALGRDTAVSLGVDHRRTSLLVLVVVAVLVSVSTALVGPITFFGLLVANLAYALLGTQRHALTLPVAALLSVVTLVGGQTVLEHLLGMETVLSVVIEFCGGIVFIALLVAGGRR	PGPT0003770_10338	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_01133	1005	yclN	COG4606	Petrobactin import system permease protein YclN	GTGAGCGTCACGACCGCACCCGCCGGGACGGCGTCGCACCGCGGCGCCGTCCTCGGCGTCCCCCTGGCGCTGCTCGGGCTGGCCCTCGGGGCCGTCGCCTCGGTGTTCATCGGCGTCAGCGATGTCTCGCCGGCCACGCTGTGGGCGGACGACGGGCACGCCCGCCAGCTCCTGACGGTGTCGCGGCTGCCGCGCACCGTCGCGATCCTGCTCGCCGGTGCCTGCACCGCCGTCGCCGGTGTCGTGATGCAGATGCTGGTGCGCAACCGGTTCGTCGAGCCGTCCACCGTCGGCACCTCGGAGTCGGCCGCCCTGGGCCTGCTGATCGTCACCCTCTGGGCGCCCGGCATGGCGCTGCCCGGCAAGATCGGCGTCGGGGCGGTGTTCGCGGTGGCCGGGACCCTGCTGTTCCTGTGCGTGCTGCGGGCCGTGCCGATCCGGTCGGTCGTCACCGTGCCGCTGGTCGGCCTCATGCTCGGCGGCATCATCGGCGCCGTGGCGGCGTACATCGCGTTCCGGTACGACCTGATGCAGACGCTGTCCGCCTGGCTGACGGGGGACTTCTCCGGCGTGACGGCCGGCCGGTACGAGATGCTCTGGGTCGTCGCGGCCCTGACCGTCGTCGTCTACGTCCTCGCCGACCGGTTCACCGTCGTCGGGCTCGGGCGGGACACCGCCACCGCCCTCGGCCTCGGCTACCGCGGCGTGATGGCCCTGGGGCTGGGCGTAGTGGCGGTCACGAGCGCGGTCGTGGTCGTGGTGGTCGGTGCGCTGCCGTTCCTGGGGCTGGTCGTGCCGAACGTCGTCAGCCTGCTGCGCGGCGACAACCTGCGCCGTTCCCTGCCGTGGGTCGCCATCGGCGGTGCGGCCCTCGTGCTCGTGTGCGACGTCGTCGGCCGCGTCGTCCGCTACCCCTACGAGATCCCGATCGGCGTCGTCATGGGCGTGGTCGGCGCGGCCGTGTTCCTGTGGCTGCTGCTGCGGAAGGCTCCCGATGTCGGTTGA	MSVTTAPAGTASHRGAVLGVPLALLGLALGAVASVFIGVSDVSPATLWADDGHARQLLTVSRLPRTVAILLAGACTAVAGVVMQMLVRNRFVEPSTVGTSESAALGLLIVTLWAPGMALPGKIGVGAVFAVAGTLLFLCVLRAVPIRSVVTVPLVGLMLGGIIGAVAAYIAFRYDLMQTLSAWLTGDFSGVTAGRYEMLWVVAALTVVVYVLADRFTVVGLGRDTATALGLGYRGVMALGLGVVAVTSAVVVVVVGALPFLGLVVPNVVSLLRGDNLRRSLPWVAIGGAALVLVCDVVGRVVRYPYEIPIGVVMGVVGAAVFLWLLLRKAPDVG	PGPT0003770_8158	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_01134	981	yclQ	COG4607	Petrobactin-binding protein YclQ	GTGAGCATTCGCTCCCTGCGTCGCGCGGCCGTCGTCGCGGCGCCCGCCGCCGTCCTGGCGCTGTCCCTCTCGGCCTGCGCCGACGCCGACGAGACCGAGGCCGGCGCGGCCGAGGCGGACACCGCTGCCGGGGCCACGACCCTCACCATCGAGCACGCGCAGGGCACCACCGAGCTCGACGGCGTCCCGGAGAAGATCTTCACCTTCGACTACGCGGCGCTGGCGGTCCTCGACGCGCTGGACGTCGACGTCGCCGGCGTCGCCAAGTCGAACCTGCCCGACGTGTTCTCCGAGTACGCCGGGGACGACGTCACCGACATCGGCACGATCTTCGAGCCCGACTACGAGACGGTCGCCGCCGAGCAGCCCGACCTCATCATCGTCGCGGGCCGTTCCTCCACCGCGTACCCGGACCTGTCGGAGATCGCCCCGACCATCGACCTGTCCAACGACTGGGCGACCTTCCACGACTCCGTGGTCGCCAACACCGAGCTGCTCGGCGAGGCGGTCGGTGCCGAGGAGGGCGTCGACGAGCTGGTCGCCGACCTCGACGAGTCCGTCGCCGCCGCGCGGGAGGTCGCCGCCGACGCCGGGACGGGCCTGATCGTCCTGACCTCGGGCGGCGAGGTCACCGCGTACGGACCGGGGTCCCGCTTCGGGTACCTGCACGACGCGCTCGGTGTCACGCCGGCTGTCGAGGACGTCGAGGCGGAGACGCACGGCGAGGCGGTCTCCTTCGAGTTCATCCTCGAGGCCGACCCCGACTGGCTCTTCGTGCTGGACCGGGACGCCGCGATCGGCGAGGGCACCGACAACGCCGAGCAGGTGCTCGACAACGCCGTGGTGCACGAGACGACCGCCTGGTCCGAGGACCAGGTCGTCTACCTCGACCCGGTGGCCTGGTACATCGTCAACGGTGGCGTGCCCACCCTGACGGGGATGGCCGACGAGGTCGCCGCCGCGCTGCAGGACGCCTCCTGA	MSIRSLRRAAVVAAPAAVLALSLSACADADETEAGAAEADTAAGATTLTIEHAQGTTELDGVPEKIFTFDYAALAVLDALDVDVAGVAKSNLPDVFSEYAGDDVTDIGTIFEPDYETVAAEQPDLIIVAGRSSTAYPDLSEIAPTIDLSNDWATFHDSVVANTELLGEAVGAEEGVDELVADLDESVAAAREVAADAGTGLIVLTSGGEVTAYGPGSRFGYLHDALGVTPAVEDVEAETHGEAVSFEFILEADPDWLFVLDRDAAIGEGTDNAEQVLDNAVVHETTAWSEDQVVYLDPVAWYIVNGGVPTLTGMADEVAAALQDAS	PGPT0003765_3419	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016	NA	NA
AK001_01135	1473	folC	COG0285	Dihydrofolate synthase/folylpolyglutamate synthase	GTGAGCGACGAGCAGGGCAAGACCAAGAAGCAGAAGGCCGACGAGCGCAAGGCGGCCCGCGCCGCGGCGGAGGACGCCGCCGCGCGCGAGGACCTGGAGCGCATCTACGCCCACATCGTGTCCCGGGCGCCGGAGCACGACATCTCGCCGACCCTCGACCGGGTCGCGCGGCTGCTCGAGCTCCTCGGGGACCCGCAGCACACCTTCCGGGCGATCCATCTGACCGGCACGAACGGCAAGTCGTCGACCGCCCGGATGGCAGAACGGCTCGTGCGCGAGCACGGGCTGCGCTCGGGACTGTTCACCTCGCCGCACCTGAGCAGCGTCACCGAGCGCATCCAGGTCGACGGCGAACCGCTCAGCCCCGTGCGCTTCGTCGAGATCTGGAACGACGTCCACCCCTACATCCAGGTCGTCGACGCCGAGCTGATCGAGGCCGGGCAGTCGCGCCTGAACTTCTTCGAGGTCCTGACGGGTCTGGCCTTCGCGGCGTTCGCCGACGCCCCGGTCGACATCGCCGTGCTCGAGGTCGGGATGGGCGGCACCTGGGACACCACCAACACCGTCGACGCCGACGTCGCCGTGATCACGCCGATCAGCGTCGACCACGAGAAGTGGCTCGGCTCCACGCCGGCCGAGATCGCGGCGATCAAGGCCGGCATCATCAAGCCCGGCGCGACGGCGTTCTCGGCCGTCCAGCGCCCCGAGGTCGACGAGGTCCTGGTCGAGCGGGCCCTCGAGGTCGGCGCCCGGCTGCTGCGCGAGGACGTCGACTTGGAGGTCGTGGCGCGCCAGGTCGCGGTGGGCGGCCAGATGGTCAGCCTGCGCACCCCGCTGGCCACCTACACCGAGATCTTCGTCCCGCTGCACGGTGAGCACCAGGCCCACAACGCCCTGCTGGCGCTCGCGGCGGCGGAGCAGGCCCTGGGCGGTCGCGCCCTGGACGGGGGAGCGGTCGAGACGGCCTTCGCCGACGTCGCCGTCCCCGGCCGGCTGGAGCTCGTCCGCTCCAGCCCGACGGTCCTGGTCGACGTGGCGCACAACCCGCACGGCGCGGAGTCGCTGGTGGCGGCGCTGGACGAGGCGTTCACGCTGCGCACCGTGGTCGGCGTGGTCGGCCTGATGGCCGACAAGGACGCCGAGGGACTCCTCACCGCGCTGGAGCCGGGGCTGTCCCAGGTGGTGCTGACGCGGAACTCCTCGGTGCGCTCGGCGGACCCCTTCGCGGTGGCGGAGATCGCCCGCGAGATCTTCGGCGACCACCGGGTCCAGGTCACCGAGCGCCTCGACGAGGCGCTGCAGGTGGCGACCGACCTGCTCGAGTCGGCGGACTCGGTCGGCGTCGGGCACGGCACCGGCGTCGTCGTCACGGGCTCCGTCGTCACGGTGGCGGACACCCGGATCCTTCTCGGGCGCGGCTTACCGGGGCCGACAGGGCTGCCGCCGCGGCGGCGCCCGGGCCGCGCGCTGTGA	MSDEQGKTKKQKADERKAARAAAEDAAAREDLERIYAHIVSRAPEHDISPTLDRVARLLELLGDPQHTFRAIHLTGTNGKSSTARMAERLVREHGLRSGLFTSPHLSSVTERIQVDGEPLSPVRFVEIWNDVHPYIQVVDAELIEAGQSRLNFFEVLTGLAFAAFADAPVDIAVLEVGMGGTWDTTNTVDADVAVITPISVDHEKWLGSTPAEIAAIKAGIIKPGATAFSAVQRPEVDEVLVERALEVGARLLREDVDLEVVARQVAVGGQMVSLRTPLATYTEIFVPLHGEHQAHNALLALAAAEQALGGRALDGGAVETAFADVAVPGRLELVRSSPTVLVDVAHNPHGAESLVAALDEAFTLRTVVGVVGLMADKDAEGLLTALEPGLSQVVLTRNSSVRSADPFAVAEIAREIFGDHRVQVTERLDEALQVATDLLESADSVGVGHGTGVVVTGSVVTVADTRILLGRGLPGPTGLPPRRRPGRAL	PGPT0007975_551	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754	NA	NA
AK001_01136	3324	ileS	COG0060	Isoleucine--tRNA ligase	ATGGCCTACCCGCTGCACCGCACCCCCGACGCGTCCGCGTCCACGCCCGGCGAGGCGTTCGGCATCGCCGGCGTCCCCGCGTCCCCGCAGCTGCCGCAGATCGAGCGCGAGGTGCTGGCCCACTGGGAGGCCGACGACACGTTCCGCGCCTCGGTCGCCAAGAACCCGGCCGGCGAGAACGGCGAGAACGAGTTCGTCTTCTACGACGGCCCGCCGTTCGCCAACGGTCTGCCGCACTACGGCCACCTGCTGACCGGCTACGTCAAGGACGTCGTGCCGCGGTACCAGACGATGCGCGGCAAGCACGTCGAGCGCCGCTTCGGCTGGGACACCCACGGCCTGCCCGCCGAGCTCGAGGCGATGAGCCAGCTCGGCATCAAGACCAAGGACGAGATCCTCGACCTCGGCATCGAGACGTTCAACGACGCCTGCCGCTCCTCGGTGCTGAAGTACACCGCCGAGTGGCGCGAGTACGTCACCCGCCAGGCGCGCTGGGTGGACTTCGACCACGACTACAAGACGTTCAACCCCGACTACATGGAGTCGGTGATCTGGGCGTTCTCCGACCTGTACCGCAAGGGCCTGGTGTACGAGGACTTCCGCGTCCTGCCGTACTGCTGGAACGACCAGACGCCGCTGTCCAACCACGAGCTGCGCATGGACGACGACGTCTACCAGAACCGGCAGGACCCCGCGGTGACCGTGGGCCTGGACGTGACGTCCGTGCCCGACGGCGGCACCGACGTCGTGCGCCCCGGCGACAAGCTGCTCGTGTGGACCACCACGCCGTGGACCCTGCCGTCGAACCTCCTGGTGATGGTCGGCGCGGACATCGACTACGTCGTCGTCGAGGCCTCGCCGACCGGGACGCCGCAGCGGTTCGTGCTCGCCGAAGCACTGGTGGGCGCCTACGCCCGCGAGCTGACCGACGACGGTGCGGAGGAGCCGCGCGTCGTGGGTCGCCTGACGGGCCGCGACCTGCTCGAGACCACCTACGCCCCGCCGTTCTCCTACTACGCCGGGCGCGAGCGGGCGCACCGCGTCGTCGAGGCGGACTTCGTCACCACCACGGACGGCACCGGCCTGGTGCACTCCGCGGGCGCGTTCGGCGAGGACGACAAGGTCGTCTGCGACCGCGAGGGCGTGGCGAGCGTCATGCCCGTCAAGGCCGACGGCACGTTCACCGCCCCCGTCACCGAGTACGCGGGCCTGCAGGTGTTCGACGCCAACGCCCCGATCATCGACCACCTCAAGGCCCGCACCCGCGCGGAGGCCGACGCCGGGTCCGTCAGCGCCGGGACGGTGCTGCTGCGGCGCGAGTCCTACGACCACGCCTACCCGCACTGCTGGCGCTGCCGGCAGCCGCTGATGTACATGGGCGTGTCCTCCTGGTTCGTCGAGGTCACGAAGATCAAGGAGCGGATGCTCGAGCTCAACGAGCAGATCGCCTGGACGCCGGACCACATCCAGCACGGCCAGTTCGGCAAGTGGCTGGAGAACGCCCGCGACTGGTCGATCACCCGCAACCGGTTCTGGGGCTCCCCGGTGCCGGTGTGGAAGTCCGACGACCCCGCCTACCCGCGCGTCGACGTCTACGGCTCCTTCGCCGACCTCGAGCGCGACTTCGGCACCCTGCCGCGCAACGCGGCGGGCGAGCCGGACCTGCACCGCCCGTTCGTCGACGACCTGACCCGGCCGAACCCGGACGACCCGACGGGCAGGTCCACGATGCGGCGCGTCGAGGACGTGCTCGACGTCTGGTTCGACTCCGGCTCGATGCCGTACGCCCAGGTGCACCACCCCTTCGAGAACCGGGAGTGGTTCGAGGACCACTACCCGGGCGACTTCATCGTCGAGTACATCGGCCAGACCCGCGGCTGGTTCTACACGCTGCACATCCTGGCCACCGCCCTGTTCGACCGGCCCGCGTTCCGCTCCGCCGTCTCGCACGGCATCGTGCTCGGCTCGGACGGTCGCAAGATGAGCAAGTCGCTGCGCAACTACCCGGACGTCAACGAGGTCTTCGACCGGGACGGCTCGGACGCCATGCGCTGGTTCCTCATGGCCTCGCCGATCCTGCGCGGCGGCAACCTCGTGGTCACCGAGGACGGCATCCGCGACGCCGTGCGTCAGGTGCTGCTGCCGCTGTGGAGCACGTACTACTTCTTCACCCTGTACGCGAACAGCGCGAGCGGTTCCGAGAGCTCCGCGGCGGGATACCTCGCGAAGCCCGTGACGGCCGACCGGGTGCCCGGCCTGCCCGCCCTGGACCGCTACCTGCTGGCCCGCACCCACGACCTCGTGGGCCGCGTGACCGACCAGCTCGACGCGTTCGACGTCGCGGGTGCCTGCGAGACCGTGCGTGAGCACCTCGACGTGCTCACCAACTGGTACGTGCGCACCCAGCGGGACCGGTTCTGGGCGGAGGACGCGGACGCGTTCGACACCCTGTACACGGCTCTCGAGGTGCTGTGCCGCGTCATGGCACCGCTCGCCCCGCTGGTGACCGAGGAGATCTGGCGCGGGCTGACCGGGGAGCGCTCGGTGCACCTGGCCGACTGGCCGACGGCGGACACGCATCCCGCACTCGTCGCCGACGACGCGCTCGTGGCCGCCATGGACGAGGTGCGCGCCGTGGTCTCGTCCACGCTCGCGCTGCGCAAGGCGAACCAGCTCCGCGTCCGACAGCCGCTGGCCCGGCTCACCGTCGCCGTGCCGGACCCGGAGGCGCTGGCCGACTACACCGGTCTCCTGACCGGCGAGCTCAACGTCAAGGCCGTCGACCTGGTCGTGGCGGACGCCGCGGCCTCCGAGCGGTTCGGGATCACCGAGCGGCTCGCCGTCAACGCGCGGGCCGCCGGTCCGCGGCTCGGGCGCGGCGTGCAGGCGGTCATCAAGGCGGCCAAGACCGGTGCCTGGCACCAGGTCGACGGCGAGGTCGTGGTGACCACCGACGACGGCGAGGTGCCGCTGCTGCCTGCCGAGTACGAGCTGACCACCGTCGTCGGCTCCGAGGCCGGCGCCGACGTGGCCGCCTCCGTGCTGCCCGGCGGCGGGTTCGTCGTCCTCGACCTGGCCCTCGACGACGCGCTGCGCGCCGAGGGGTACGCCCGCGACGTCGTCCGCGACGTCCAGGACGCCCGCAAGGCCGCCGGGCTCGAGGTGAGCGACCGCATCGACCTGTCGCTCGGGGTGCCGGCCGAGCACGTGGCCGCCGTCGAGGCGCACCGCGACCTGGTGATGCGCGAGACCCTGGCGACGTCCCTGGACGTGACCGCCGTCGACGGCGGCGAGCGTTCGGTCGACGTCGCCCGCGCGAAGTAG	MAYPLHRTPDASASTPGEAFGIAGVPASPQLPQIEREVLAHWEADDTFRASVAKNPAGENGENEFVFYDGPPFANGLPHYGHLLTGYVKDVVPRYQTMRGKHVERRFGWDTHGLPAELEAMSQLGIKTKDEILDLGIETFNDACRSSVLKYTAEWREYVTRQARWVDFDHDYKTFNPDYMESVIWAFSDLYRKGLVYEDFRVLPYCWNDQTPLSNHELRMDDDVYQNRQDPAVTVGLDVTSVPDGGTDVVRPGDKLLVWTTTPWTLPSNLLVMVGADIDYVVVEASPTGTPQRFVLAEALVGAYARELTDDGAEEPRVVGRLTGRDLLETTYAPPFSYYAGRERAHRVVEADFVTTTDGTGLVHSAGAFGEDDKVVCDREGVASVMPVKADGTFTAPVTEYAGLQVFDANAPIIDHLKARTRAEADAGSVSAGTVLLRRESYDHAYPHCWRCRQPLMYMGVSSWFVEVTKIKERMLELNEQIAWTPDHIQHGQFGKWLENARDWSITRNRFWGSPVPVWKSDDPAYPRVDVYGSFADLERDFGTLPRNAAGEPDLHRPFVDDLTRPNPDDPTGRSTMRRVEDVLDVWFDSGSMPYAQVHHPFENREWFEDHYPGDFIVEYIGQTRGWFYTLHILATALFDRPAFRSAVSHGIVLGSDGRKMSKSLRNYPDVNEVFDRDGSDAMRWFLMASPILRGGNLVVTEDGIRDAVRQVLLPLWSTYYFFTLYANSASGSESSAAGYLAKPVTADRVPGLPALDRYLLARTHDLVGRVTDQLDAFDVAGACETVREHLDVLTNWYVRTQRDRFWAEDADAFDTLYTALEVLCRVMAPLAPLVTEEIWRGLTGERSVHLADWPTADTHPALVADDALVAAMDEVRAVVSSTLALRKANQLRVRQPLARLTVAVPDPEALADYTGLLTGELNVKAVDLVVADAAASERFGITERLAVNARAAGPRLGRGVQAVIKAAKTGAWHQVDGEVVVTTDDGEVPLLPAEYELTTVVGSEAGADVAASVLPGGGFVVLDLALDDALRAEGYARDVVRDVQDARKAAGLEVSDRIDLSLGVPAEHVAAVEAHRDLVMRETLATSLDVTAVDGGERSVDVARAK				NA	NA	NA	NA	NA
AK001_01137	1371	rfnT		Riboflavin transporter RfnT	ATGTCCGCCGCACCGGCCCCCACCCGTCCCGTCGCCGCGGTGCAGCGGCGCACCCTGCGCGTCCTGGTGCTGGCCCAGGTGCTGTCCGGTGCCGGGCTCGCGGCGGGCATCACCGTCGGTGCCCTGCTGGTGACCGACCTGCTCGGGTCCGCGCGGTTCGCGGGCCTGCCCGCGGCGCTGTTCACCGGCGGGTCGGCGCTGGCCGCGCTGGCCGTCGGACGGCTGTCGCAGCGCCACGGGCGTCGCGCCGGGCTCGCGGCCGGCTACGTCGCCGGCGCCGTGGGCGCCTTCGTCGTCGTGGTCGCGGCGGCCGCGGAGAACGTCTGGGTCCTGATGGGCGCGTTCGCCCTGTACGGCGCCGGGACGGCCACCAACCTGCAGGCCCGCTACGCCGGGGCGGACCTCGCCGCGCCGGACCGCCGCGCCCGCGCCCTGAGCACCGTGCTCGTCGCCACCACGCTGGGTGCCGTCGCCGGCCCGAACCTCGTGGGCGTCATGGGGGACGTCGCCGCCGGCTGGGGCCTGCCGGCGCTCACCGGCCCGTTCATCCTCGGCGGGGCGGCCTACGCGGCGGCCGGGATCGTGCTCTGGGTCGCGCTGCGGCCCGACCCGCTGCAGCTGGCCCGCCAGCGGGACGAGGCCGCGGTCGAGAGCGCGACGGTGCCCGCGGCGGAGAAGGCCGTGGACGCGACCGCGGACCACGCGGACGACGACGGCGGAACCGCCGACTCGACGGCACCGGACGTCGTCGAGGAGGACGCCGGGGACCCCGGGGCGGTGCGCCGCGCGGTGCTGGTCGCCGGGACGGTCATGGTCCTCACGCAGGCCGTCATGGTCGCGATCATGACGATGACACCGGTGCACATGGCCGACCACGGCCACGCGGTGTCCACGGCGGGGTTCGTCATCGCCGTGCACGTGGGGATGATGTACCTGCCCTCGCCGCTGTCGGGCTGGCTGACCGACCGGTTCGGGCCGCTGCGGGTGGCGGTCGCCGCCGCGGTGACGCTGCTGGCCTCGGGGCTCGTCGCGGGTCTCGTGCCGTCGTCGTCGGTGGTCGGGCTCGTCGCGGGTCTCGTGCCGTCGTCGTCGGTGGTCGGGCTCGCCGTGGGCCTGGGTCTGCTGGGGCTGGGCTGGAGCCTCGGGCTGGTCTCCGGCACCGCGATGCTCACGTCGTCGCTGCCCCTGGCGACCCGGGCCCGGACCCAGGGCGCCGTCGACCTGGCCCTCGCCCTGGCGGGTGCGGCCGGCGGGCTCGGGTCCGGGTTCGTCGTGGCGTCCACCAGCTTCGCGACGCTCTCGCTCGGCGGCGGGCTGCTGGCCCTGGCCGTCCTGCCCGTGGTGGCGGTGACCGCCCGGTCCCGCACCTGA	MSAAPAPTRPVAAVQRRTLRVLVLAQVLSGAGLAAGITVGALLVTDLLGSARFAGLPAALFTGGSALAALAVGRLSQRHGRRAGLAAGYVAGAVGAFVVVVAAAAENVWVLMGAFALYGAGTATNLQARYAGADLAAPDRRARALSTVLVATTLGAVAGPNLVGVMGDVAAGWGLPALTGPFILGGAAYAAAGIVLWVALRPDPLQLARQRDEAAVESATVPAAEKAVDATADHADDDGGTADSTAPDVVEEDAGDPGAVRRAVLVAGTVMVLTQAVMVAIMTMTPVHMADHGHAVSTAGFVIAVHVGMMYLPSPLSGWLTDRFGPLRVAVAAAVTLLASGLVAGLVPSSSVVGLVAGLVPSSSVVGLAVGLGLLGLGWSLGLVSGTAMLTSSLPLATRARTQGAVDLALALAGAAGGLGSGFVVASTSFATLSLGGGLLALAVLPVVAVTARSRT				NA	NA	NA	NA	NA
AK001_01138	786		COG4221	putative oxidoreductase	ATGAGCACCACCCCCACGCCCGCCCGCCGCGCCCTGGTCACCGGGGCGTCCTCCGGCATCGGCGCCGCCGTCGTCCGCCGCCTGCGCGCCGAGGGCTGGCAGGTCGTCGCGTCCGCCCGTCGCGCGGACCGCCTGGAGGCCCTGGCCGCCGAGACCGGGGCCGAGGCCTACCCGCTGGACGTGACCGACGAGGCGGCCGTGGCCGCGCTGGCCACGCACCTGGAGGCGACCGGCGGGCTGGACGCCGTGGTGAACAACGCCGGCGGTGCGCTCGGCCTGGACCGTGTCGAGGACGGCGACCTGGACGGCTGGCGGCAGATGTACGAGCTCAACGTGCTCGGCACGCTGCGCGTCACGCAGGCGGTGCTGCCGCTGCTGCGCGCGTCGGCGCGGGCGCAGGGGTCCGACGGCGGCGCGGACGTCGTGGTCGTGACTTCCACCGCCGCGCACGGCGCCTACGAGGGCGGTGCCGGGTACACCGGCGTCAAGCACGCCGAGCGGATGCTGACCACGACGCTGCGCTGGGAGATCGCGGGTGAGCCGATCCGCGTCATGGAGATCGCGCCCGGCAACGTCGCGACCGAGGAGTTCTCCCTGGTGCGGTTCGACGGCGACGCCGAACGGGCGGCCGCGGTCTACGAGGGCTACCAGCCGCTGGTCGCGGACGACATCGCCGACGCGGTCACCTGGGCCCTGACCCGGCCCGCGCACGTCAACACCGACCTGATGGTCATCCGACCGCGCGCCCAGGCGCACAACCAGAAGATCGCGCGCACGGGAGTCTGA	MSTTPTPARRALVTGASSGIGAAVVRRLRAEGWQVVASARRADRLEALAAETGAEAYPLDVTDEAAVAALATHLEATGGLDAVVNNAGGALGLDRVEDGDLDGWRQMYELNVLGTLRVTQAVLPLLRASARAQGSDGGADVVVVTSTAAHGAYEGGAGYTGVKHAERMLTTTLRWEIAGEPIRVMEIAPGNVATEEFSLVRFDGDAERAAAVYEGYQPLVADDIADAVTWALTRPAHVNTDLMVIRPRAQAHNQKIARTGV	PGPT0021285_1141	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066	NA	NA
AK001_01139	1344	tpa	COG0161	Taurine--pyruvate aminotransferase	ATGACCGCCACCGAACCGCTGACCGGCGCGGCGCTCGACGCCGCCGTCGTCGAGGCCGACCACCGGCACGTGCTGCACTCCTGGTCCGCCCAGGCGCACCTGCCGTCCTTCGTCGTCGCCGGCGGGGCCGGCTGCCGGGTCTGGGACCACGCCGGGACCACCTGGCTGGACTTCTCCAGCCAGCTCGTCAACACCAACATCGGCCACCAGCACCCGGCGGTCGTGGCCGCCATCGCCGAGCAGGCCCGCACCCTGACCACGATCTCGCCCGCCATCGCGAACCTGGCCCGCGGCCGGGCCGCCGAGCGCATCCTGGCCCGCGCCCCGGAGGGCTTCGCCAAGGTCTTCTTCACCAACGGCGGCGCCGACGCCAACGAGAACGCCGTGCGCATGGCCCGCCTGCACACCGGCCGCGACAAGGTGGTCTCCACCTACCGCTCGTACCACGGCAACACCGGGGCCGCCGTCGTCGCCACGGGGGACTGGCGGCGCGTGCCCAACGAGTACGCCCGCGGCCACGTGCACGCCTTCGGGCCCTACGCCTACCGCTCGGAGTTCTGGGCGACGTCGGAGGCCGAGGAGTGCCAGCGCGCCCTGCACCACCTCGAACGGGTGGTGCAGTGCGAGGGGTCCGCGTCGGTCGCCGCGATCCTGCTCGAGACGGTCCCCGGCACGGCGGGCGTGCTCGTGCCGCCGCCCGGCTACCTCGCCGGGGTCCGCGAGATCTGCGACCGGTACGGCGTCCTGCTGATCCTCGACGAGGTGATGGCCGGGTTCGGCCGCACCGGGACCTGGTTCGCCTTCGACGACCACGGCGTCGTGCCCGACCTGGTCACCTTCGCCAAGGGGGTCAACTCCGGGTACGTGCCCGCCGGCGGCGTCCTCGTCAGCGCCGACGTCGCCGCGACCTTCGACGAGCGGGTCTTCCCGGGTGGGCTGACCTACTCGGGCCACCCGCTGGCGATGGCCGCGATCGTGGCCGCCCTGGACGCCATGGAGGCCGAGGGGGTGGTCGAGAACGCCGCCTGGGTCGGGCGCGAGGTGCTCGGCCCCGGCCTGGCGGCACTCGCGGCCGAGAACCCGCTCGTCGGGGAGGTGCGCGGCACCGGGGTGTTCTGGGCGGTCGAGCTCGTCGCGGACCGGGCCTCGCGCGAGCCGCTGCCGGCCGCCGACATGGCCCGGATCAAGACACTCTGCCTCGAACGTGGTTTGCTGCCCTTCGTGGCCGAGAACCGCGTCCACGTCGTGCCGCCGTGCGTCGTCACCGACGACGAGGCGCGCGAGGGCCTGGCGATCCTCGCCGGCGTCCTGCGCGACGTCGCCGCCGACCGACCGTCCGCCTGA	MTATEPLTGAALDAAVVEADHRHVLHSWSAQAHLPSFVVAGGAGCRVWDHAGTTWLDFSSQLVNTNIGHQHPAVVAAIAEQARTLTTISPAIANLARGRAAERILARAPEGFAKVFFTNGGADANENAVRMARLHTGRDKVVSTYRSYHGNTGAAVVATGDWRRVPNEYARGHVHAFGPYAYRSEFWATSEAEECQRALHHLERVVQCEGSASVAAILLETVPGTAGVLVPPPGYLAGVREICDRYGVLLILDEVMAGFGRTGTWFAFDDHGVVPDLVTFAKGVNSGYVPAGGVLVSADVAATFDERVFPGGLTYSGHPLAMAAIVAALDAMEAEGVVENAAWVGREVLGPGLAALAAENPLVGEVRGTGVFWAVELVADRASREPLPAADMARIKTLCLERGLLPFVAENRVHVVPPCVVTDDEAREGLAILAGVLRDVAADRPSA				NA	NA	NA	NA	NA
AK001_01141	1149			hypothetical protein	ATGAAGCACACAGCACGCACCGTCGTCCGGACGGGGGCCGTCGTCGCGAGCACAGCGCTCGTGCTGTCCGCCTGCGGCGGCGAGACCGAACCCACCGGGTCCGCCGACGGCGAGGAGCTGACCCCGGTCACGCTCCAGCTCCAGTGGGTCGCCCAGGCCCAGTTCGCCGGCTACTACGCCGCCGTCGACCAGGGCTTCTACGAGGAGGAGGGGCTGGACGTCACGATCCAGGAGGCCGGGACCGACACCGTCCCCATCGACGTGCTCGCCGCCGGCGAGGCCGACTACGCCATCTCCTGGGTGCCGAAGGTGCTCGGGTCGATCGAGCAGGGCACCGAGGTGACCAACGTCGCGCAGGTGTTCGAGCGCTCCGGCACCCTGCAGGTCGCCATGGCCGACTCCGGGATCGAGGGCCCCGAGGACCTGGCGGGCAAGAACGTCGGTTCCTGGGGCTACGGCAACGAGTGGGAGCTGTTCGCCGGCATGCAGCAGGCCGGGCTCGACACCAGCGAGGACATCACCCTGGTCCAGCAGGCGTTCGACATGAACGGGTTCCTCGCCGGAGACATCGATGCCGCCCAGGCGATGACGTACAACGAGTACGCCCAGGTGCTGGAGACCGTGAACCCCGACACCGGTGAGCTCTACCAGCCCGAGGACCTGACGGTCATCGACTGGAACGAGGTCGGCACGGCGATGCTGCAGGACGCCATCTGGGCCGACGCCACCCGCCTGGCCGACGACGAGGCCTACGCCGAGACCACCGTCGACTTCATCAAGGCGTCCCTCAAGGGCTGGGTGTACGCCCGCGACGACGCCGAGGCGGCGGCCGACATCGTCACCGCCGCCGGGTCCACGCTCGGCACGAGCCACCAGCTCTGGCAGACCAACGAGACCAACAAGCTCATCTGGCCGTCCACCTCGGGCGTCGGCACCATCAACGCCGACCAGTGGGACCAGACCGTCGACATCGCGATGAACACCCAGAACGAGACCGGTTCGACGATCATCACCACCGAGCCGCCGGAGACGGCCTACTCCAACGAGTACGTCGAGGAGGCCCTGGCCGAGCTCACCGAGGAGGGCGTCGACGTCATGGGCGAGGACTTCGCCCCGATCGAGGTCACCCTCACCGAGGGCGGCGCGTAA	MKHTARTVVRTGAVVASTALVLSACGGETEPTGSADGEELTPVTLQLQWVAQAQFAGYYAAVDQGFYEEEGLDVTIQEAGTDTVPIDVLAAGEADYAISWVPKVLGSIEQGTEVTNVAQVFERSGTLQVAMADSGIEGPEDLAGKNVGSWGYGNEWELFAGMQQAGLDTSEDITLVQQAFDMNGFLAGDIDAAQAMTYNEYAQVLETVNPDTGELYQPEDLTVIDWNEVGTAMLQDAIWADATRLADDEAYAETTVDFIKASLKGWVYARDDAEAAADIVTAAGSTLGTSHQLWQTNETNKLIWPSTSGVGTINADQWDQTVDIAMNTQNETGSTIITTEPPETAYSNEYVEEALAELTEEGVDVMGEDFAPIEVTLTEGGA	PGPT0001135_762	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051	NA	NA
AK001_01142	783	ribX_1		Riboflavin transport system permease protein RibX	ATGACCCGATCAGCGACGACCACCTGGCGCCGCGCCGAGGTCGTCCTCGCCCCCGTCCTGCTCGGGCTGCTCGCCCTGGCGCTGTGGGAGACCGCCGTCGTCGTGCTCGAGCTGCGACCGTTCGTCGTCCCCAGCCCGACCAGCATCGGCGCCGAGCTCACCGGCAACGCCGGCATCATCGCCACCGCCGCGCTCTCCACGGCCCTCAACGCCTGGTGGGGACTGGTGATCGGCGTGGTCGTCGCGCTGGTCGCGGCCGCGGTCTCGGCCGCCGTGCGCACGATCGACGAGATGTCGGCGCCCCTGGCCGCCGCCGCGGCCGTCGTGCCGATCGTCGCCCTCGCCCCGGTGCTCTACACGATGTTCGGGGCGAGCACGCAGACCGCCCGGGTCGCCGTGGCCGCGATCGTGTCCTTCGTCCCGGTGTACGTCAACACCCTGCGGGGCCTGCGCACCGTGGCCCCGGTGCACCGCGACCTGCTGCGCGCCTACGCCGCGACGCGCCGGCAGGCGACGCTCACCGTCACCCTGCCCGGCGCGCTGTCGTTCTTCTTCAGCGGCCTGCGGGTCGCCACCTCGCTGGCCGTGATCTCCGCCCTGGTCGCCGAGTACTTCGGCGGGCCGGTGGACGGGCTCGGCAAGGCGATCACCTCGGCCGTGTCGTCCAGCAACTACCCGCTCGCGTGGGCCTACGTCGTGGGAGCCGTCGTCGTCGGGCTCCTGTTCTTCTGCGGCAGCTCCGGGCTGGAGCGGGCGGTCCTGCACCGCCGCTCCCAGCGCTGA	MTRSATTTWRRAEVVLAPVLLGLLALALWETAVVVLELRPFVVPSPTSIGAELTGNAGIIATAALSTALNAWWGLVIGVVVALVAAAVSAAVRTIDEMSAPLAAAAAVVPIVALAPVLYTMFGASTQTARVAVAAIVSFVPVYVNTLRGLRTVAPVHRDLLRAYAATRRQATLTVTLPGALSFFFSGLRVATSLAVISALVAEYFGGPVDGLGKAITSAVSSSNYPLAWAYVVGAVVVGLLFFCGSSGLERAVLHRRSQR	PGPT0001145_4142	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
AK001_01143	888	btuD_5		Vitamin B12 import ATP-binding protein BtuD	ATGAACTCGTCCGCGCCCACCCGCGCCATCGCGACGTCGGCCGGCCCGGCCGGCACCCCGGTCGGGACCGCCCCCGACGCGCACGCCGCGGCCGCCGTCGAGGTCCGCGGCGTCACCCGGCGCTTCACCTCGCGGTCCGGTGAGGTCGTCGCGCTGTCCGACGTCGACCTCACCGTCCGCGCCGGGGAGTTCGTCTCGCTCATCGGCCCGTCGGGCTGCGGCAAGTCCACGCTGCTGCGGCTGATCGCCGACCTCGACGAGCCCACCGCCGGCGAGCTGTCCGTCTTCGGCCGGCCGCCCCGGGTGGCCCGGCAGAACCACGACTTCGGCATCGCCTTCCAGCAGGCCGGGCTGCTGCCGTGGCGCAGCGTGCGCACCAACGTCGAGCTGCCGCTGCAGCTGCACGGCACCGGGCGCGGCGCTCGCCGCGCCCGGGCCACCGAGCTGCTGGAGATGGTCGGGCTGGCCGACTTCGCCGAGCACCTGCCGCACCAGCTCTCCGGCGGGATGCAGCAGCGCGTCGCCATCGCCCGGGCGCTCGCCGAGCGGCCCAGCCTGCTGCTGATGGACGAGCCCTTCGGTGCGCTGGACGAGATGACCCGCGAGCACGTCCAGACCGAGCTGCTGCGGCTGCGCGCCGAGACCGGGGCCGCCGTCGTGTTCGTCACCCACTCCATCCCGGAAGCGGTCTACCTCTCGGACCGCGTGGTCGTGATGTCCGCCCGGCCCGGCCAGGTGCGCGAGGTCGTGCCGGTCGGCCTCGGCGAGGCCCACGACCGCAGCGACGACGTCCGCGAGGACGACGCCTTCTTCGACCGGGTGCGGGCCGTGCGCGAGGCGCTGCACGGCGCCGACGGCACCACACCGCGGGGGGTGGACCGGCGATGA	MNSSAPTRAIATSAGPAGTPVGTAPDAHAAAAVEVRGVTRRFTSRSGEVVALSDVDLTVRAGEFVSLIGPSGCGKSTLLRLIADLDEPTAGELSVFGRPPRVARQNHDFGIAFQQAGLLPWRSVRTNVELPLQLHGTGRGARRARATELLEMVGLADFAEHLPHQLSGGMQQRVAIARALAERPSLLLMDEPFGALDEMTREHVQTELLRLRAETGAAVVFVTHSIPEAVYLSDRVVVMSARPGQVREVVPVGLGEAHDRSDDVREDDAFFDRVRAVREALHGADGTTPRGVDRR	PGPT0001140_853	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049	NA	NA
AK001_01144	861			hypothetical protein	ATGAGACGCCAGGTGCTCCTGGGCGCCGCCGGCGTCGGCGCGCTGGCGCTGCTGTGGGAGGGGTACAAGCTGGTGGCGCCCGACGACGGCGTCGTGGTCGGCGGGCTCACCGTCCTGCCCCGCACGAACGACATCGCCATGCCGCACCTGTGGGACATGGCGGCCCGGGCGGCCGAACCGGTGAACTCCGCCACGGACGCCCTGCCGCTGTGGGTCGCCGTGCTGATCGCCGCCGCGTTCACCCTCGGGGTGGCCGCCGTCGGCTGGGTCGTCGGCGTCGTCGTCGGGCTGGGCACCGCCACCCTCATGCAGCGCTTCCGCACCGCCGAGTCCGCGCTGCTGCCCTGGGTGGTGCTGTCCCAGACGGTGCCGCTCATCGCGCTCGCGCCGCTGGTGCGGCGGTGGGGCAGCCAGCTCGAGGTCGGCACCTTCGACTGGCAGGACTGGATGTCGGTCGCCGTGATCGCGTCTTACCTGGCGTTCTTCCCCGTCTCGGTCGGCGCGCTGCGCGGGCTGTCCTCCCCGGACGCCGTGCACCTGGACCTCATGCGTTCCTACGGGGTCGGGTGGTGGCGCACCTACCGCAGCCTGCGCCTGCCGGCCGCAGTGCCCCACCTGATCCCCGCCCTGCGCCTGGCGGCGGCGAACGCGGTCATCGGCACCGTCGTCGCGGAGGTCTCCATCGGCCTGCGCGGCGGGATCGGCCGGATGATCGTCGAGTTCGGCGCCAGCGCCAGCGCCGACCCCGCCAAGCAGTGGTCGCCGATCTTCGGCGCCGTCCTCGTCGGTCTCGTCGCCGCGGGCGTGTGCGCCCTGATCGCCCGCGGCCTGGCCCGCTACCGCGTCTCGGAGGTCTCATGA	MRRQVLLGAAGVGALALLWEGYKLVAPDDGVVVGGLTVLPRTNDIAMPHLWDMAARAAEPVNSATDALPLWVAVLIAAAFTLGVAAVGWVVGVVVGLGTATLMQRFRTAESALLPWVVLSQTVPLIALAPLVRRWGSQLEVGTFDWQDWMSVAVIASYLAFFPVSVGALRGLSSPDAVHLDLMRSYGVGWWRTYRSLRLPAAVPHLIPALRLAAANAVIGTVVAEVSIGLRGGIGRMIVEFGASASADPAKQWSPIFGAVLVGLVAAGVCALIARGLARYRVSEVS	PGPT0001145_1555	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
AK001_01145	1032	fgd_3		F420-dependent glucose-6-phosphate dehydrogenase	ATGGACTTCGGTGTCGTCCTGCAGACCGACCCGCCCGCCTCCCGCGTCGTCGAGCTCACGCGCCAGGCCGAGAACCACGGCTTCGACTACGCGTGGACCTTCGACTCCCACCTGCTGTGGCAGGAGCCGTTCGTCATCTACTCGGCGATGCTCGCCGCCACCCGCAAGATCACCGTGGGGCCGATGGTCACCAACCCGGCCACCCGCGACTGGACGGTCCTGGCCTCGCTGTTCGCCACGCTCAACGACATGTACGGCAACCGCACCGTCTGCGGCATCGGTCGCGGCGACTCGGCGGTGCGCACCCTCAACGGCCGGCCCTCGAACCTGGCGACCCTGCGCGACGCCGTCCACGTCATCCGTGAGCTCGGCAACTCCCGCGAGGCCGAGGTGGGGGAGCGGACCGTCCGCTTCCCGTGGAGCCACGGCTCCGAGCTGGACGTCTGGGTCGCCGCGTACGGGCCCAAGGCGCTCGCCCTGACCGGTGAGGTGGGTGACGGGTTCATCCTGCAGCTCGCCGACCCGGACATCGCCGCGTGGATGATCAAGGCCGTCCGCGACTCCGCCGAGGCCGCCGGGCGGGACCCCGACGACGTGACGTTCTGCGTCGCCGCCCCGGGGTACACGGGTGACGGGTCCTCGCCGGCCGCCCGGGCGCACATGCGCGAGCAGTGCCGGTGGTTCGGCGGCATGGTGGGCAACCACGTCGCGGACATCGTGCGCCGCTACGGCACCGACTCGGCGATCCCGCAGGCCCTGACCGACTACGTCCGCGACCGCGAGGGCTACGACTACAACGAGCACGGCCGCGCCGGGAACTCGCACGCCGCGTTCGTCCCCGACGAGATCGTCGAGCGGTTCTGCCTGCTCGGCTCCCCGCACGAGCACGTCGAGAAGCTCCAGGCGCTGCGCGAGCTCGGCGTCGACCAGTTCGCCCTCTACCTGCAGCACGACAACAAGGACGACACGCTGCGCACCTACGGCGAGCGCGTCATCCCGGCCATGCGCGAGCCGGTGGTGGCGAGCGCATGA	MDFGVVLQTDPPASRVVELTRQAENHGFDYAWTFDSHLLWQEPFVIYSAMLAATRKITVGPMVTNPATRDWTVLASLFATLNDMYGNRTVCGIGRGDSAVRTLNGRPSNLATLRDAVHVIRELGNSREAEVGERTVRFPWSHGSELDVWVAAYGPKALALTGEVGDGFILQLADPDIAAWMIKAVRDSAEAAGRDPDDVTFCVAAPGYTGDGSSPAARAHMREQCRWFGGMVGNHVADIVRRYGTDSAIPQALTDYVRDREGYDYNEHGRAGNSHAAFVPDEIVERFCLLGSPHEHVEKLQALRELGVDQFALYLQHDNKDDTLRTYGERVIPAMREPVVASA				NA	NA	NA	NA	NA
AK001_01146	1434			D-hydantoinase	TTGAAGACCCTCATCACCGGCGGCACCGTCGTCAACGCCAGCGGCCGCTCGCGGGCCGACGTGCTCATCGACGGCGAGCAGATCGTCGCCCTGCTGGAACCCGGATCCACCCTGTTCGGCGTCGACCTCGCGGCCTCCGTCGACAAGGTCGTGGACGCCACGGGCAAGTACGTCGTGCCCGGTGGGATCGACGCCCACACCCACATGGAGATGCCGTTCGGCGGCACGTTCGCCGCCGACACCTTCACCACCGGCACGACGGCGGCCGCCTGGGGCGGGACGACGACGATCGTCGACTTCGTGGTCCAGTACCCCGACCAGAACGTCCTCGACCAGTACGCCCTGTGGCACGACAAGGCCGCCGGGAACTGCGCCGTCGACTACGGCTTCCACCAGATCCTGTCCGACGTGCAGGACTCGTCGCTGGCCGCGATGGACGAGCTCATCGACGAGGGCGTGACCAGCTTCAAGCTGTTCATGGCCTACAAGGGCGTGTTCCTCTCCGACGACGGCCAGATCCTGCGGGCCATGCAGAAGGCCGCCGACAACGGCGCCATGATGATGATGCACGCCGAGAACGGCGCCGTCATCGACGTCCTCGTCCAGCAGGCGCTCGCCGCCGGCAACACGTCCCCGTTCTTCCACGGCACCACCCGCCCGTGGCAGGCCGAGGCCGAGGCCACGAGCCGGGCCATCATGCTCGCCGACCTCACCGGTGCCCCGCTGTACGTCGTGCACGTCTCGGCCAAGCAGGCCGTCGAGCAGATCGCCCTGGCCCGCGACAAGGGCCAGAACGTGTTCGGCGAGACGTGCCCGCAGTACCTCTACCTGTCCCTGGAGGAGCAGCTCGGCGCCGTGAGCGAGCAGTGGGGCGACTTCGAGGGCGCCAAGTGGGTGTGCTCCACCCCGCTGCGCTCGAAGCACGAGGGCCACCAGCACCACATGTGGCAGGCCCTGCGCACCAACGACCTGCAGCTCGTCTCCACCGACCACTGCCCGTTCTGCATGGCCGACCAGAAGGAGCTCGGGCGCGGCGACTTCTCCAAGATCCCCAACGGCATCGGGTCGGTCGAGCACCGTATGGACCTGATGTACCAGGGCGTGGTCACCGGTCAGATCTCGCTGGAGCGCTGGGTGGAGATCACCTCGGTCACCCCGGCGCGGATGTTCGGCATGTACGGCCGCAAGGGCGTGCTCGCCCCGGGCGCCGACGCCGACGTCGTGGTCTACGACCCGGCCGGCCACACCTCCATCGGCCTGGGCAAGACGCACCACTCGAACCTCGACTACTCGCCCTGGGAGGGCTTCGAGATCGACGGCCACGTCGACACGGTGATCTCGCGCGGGCAGGTCCTGGTCGCCGACGACGAGTTCGTCGGCCGCGTCGGGCACGGCAAGTACGTCAAGCGCGACCTGTCCCAGTACCTCGTCTGA	MKTLITGGTVVNASGRSRADVLIDGEQIVALLEPGSTLFGVDLAASVDKVVDATGKYVVPGGIDAHTHMEMPFGGTFAADTFTTGTTAAAWGGTTTIVDFVVQYPDQNVLDQYALWHDKAAGNCAVDYGFHQILSDVQDSSLAAMDELIDEGVTSFKLFMAYKGVFLSDDGQILRAMQKAADNGAMMMMHAENGAVIDVLVQQALAAGNTSPFFHGTTRPWQAEAEATSRAIMLADLTGAPLYVVHVSAKQAVEQIALARDKGQNVFGETCPQYLYLSLEEQLGAVSEQWGDFEGAKWVCSTPLRSKHEGHQHHMWQALRTNDLQLVSTDHCPFCMADQKELGRGDFSKIPNGIGSVEHRMDLMYQGVVTGQISLERWVEITSVTPARMFGMYGRKGVLAPGADADVVVYDPAGHTSIGLGKTHHSNLDYSPWEGFEIDGHVDTVISRGQVLVADDEFVGRVGHGKYVKRDLSQYLV	PGPT0008880_1074	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008880-dht|hydA-K01464	NA	NA
AK001_01147	849			N-carbamoyl-D-amino acid hydrolase	ATGAGCGTGGTACGCGTCGCATTCACCCAGGCCCGCTGGGCCGGCGACAAGGAGTCGATGATCGCGCTGCACGAGCGCTGGACGCGCGAGGCCGCCGAGCAGGGCGCGCAGGTCGTCGCCTTCCAGGAGCTGTTCTACGGCCCCTACTTCGGCATCACCCAGGACACCGAGTACTACGACTACGCCGAGTCCGTCCCCGGCCCTACCGTCGACCGCTTCGCCGCGCTGGCGAAGGAGCTCGGCGTCGTGATGGTGCTCCCCGTCTACGAGGAGGAGCAGCCGGGCGTGCTGTACAACACCGCGGCCGTCATCGACGCCGACGGCACCTACCTCGGCAAGTACCGCAAGCACCACATCCCGCACCTGCCGAAGTTCTGGGAGAAGTTCTACTTCCGCCCCGGCAACCTCGGCTACCCCGTCTTCGACACGAGCGTGGGCAAGATCGGCGTCAACATCTGCTACGACCGGCACTTCCCCGAGGGCTGGCGCGTGCTGGCCCTGAACGGCGCCGAGATCGTGTTCAACCCGAACGCCACCGCCCCCGGCGTCTCCAACCGGCTGTGGGAGATCGAGCAGCCCGCCGCGGCGGCCGCCAACGGCTACTTCATCGTCGCGAACAACCGCGTCGGCCTGGAGGACAACGAGTACGGCGACGAGGCGGTCCAGTTCTACGGCAGCTCGTACGCCGTAGGCCCCGACGGCAACTACGTGGGCGACGTCGCCAGCGACAGCGACGACGAGCTCGTGATCCGCGACCTCGACCTCGGCCAGATCCGTGAGGTCCGCCGGCGCTGGCAGTTCTTCCGCGACCGCCGGCCGGACGCCTACGGCCCGATCGTCGCCCCGTGA	MSVVRVAFTQARWAGDKESMIALHERWTREAAEQGAQVVAFQELFYGPYFGITQDTEYYDYAESVPGPTVDRFAALAKELGVVMVLPVYEEEQPGVLYNTAAVIDADGTYLGKYRKHHIPHLPKFWEKFYFRPGNLGYPVFDTSVGKIGVNICYDRHFPEGWRVLALNGAEIVFNPNATAPGVSNRLWEIEQPAAAAANGYFIVANNRVGLEDNEYGDEAVQFYGSSYAVGPDGNYVGDVASDSDDELVIRDLDLGQIREVRRRWQFFRDRRPDAYGPIVAP	PGPT0008885_530	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008885-UPB1_like|pydC-K01431	NA	NA
AK001_01148	1419	ptsJ	COG1167	Vitamin B6 salvage pathway transcriptional repressor PtsJ	ATGCCTCAGGATCAGCAGCCCGAGCACGACCTCGACGCCGCACGGCTCGCCGCACGGGTCACCGACCCCAGCCCCCGCGGCATCGCCGCCACGCTGTCCCGGGTGGTGCGCTCCGGCGAGCTCCGGCCCGGCGACCGCCTGCCGACCGTGCGCGACCTCGCCGCGGCCCTCGGCGTCAGCCCGGCCACGGTCAGCGGCGCGTTCCAGGCGCTGTCCGCCGTCGGGCTCGTCACGTCCCGGGGCCGTGCCGGGACCGTCGTACTGCCCGAGCCGCGCGGCTGGCTGCCCCCGCGGTACCGGTCGATGGCCGACGGCGGTCCGCGGTCCGGGGCCCCGTCCGCCGCGCAGGGCGACGCCCGCCGTCTCGACCTGTCCGGCGGGACGCCCGACCCGGCCCTGCTCCCCCGCCTGGGCGCCGCGCTGCGCCGCGCCGCCGCCGACGACCCGGCCGCCGACACCGGCAGCTACCTCGACGCGCCCCTGCTGCCGGACCTCGAGACGCTGCAGCGCGAGACCTGGCCGTTCCTGCCGCAGCGCGTCACCGTCGTCGACGGCGCCCTGGACGCCATCGAGCGCACGCTGGAGCAGGTGGCGGGGTTCGGCGACCGGGTCGCGGTCGAGGACCCCGGGTTCCCGCCCGTGTTCGACGTGCTGGACCAGCTCGGGCTGGAGCGGGTCCCGCTCGCGCTCGACGGCCACGGCGTGCGCCCGGAGTCCCTGGCGGAGGCCCTGCGGCGCGGGGTGCGCGCCGTCGTGCTCCAGCCGCGCGCGCAGAACCCGACCGGACGCAGCCTGACCTCGACGCGGGCCCGCGAGCTCGCGCGACTGCTGCGCGCGCACGGCCCCGACGTCGTCGTCCTCGAGGACGACCACTCGGGCCTCATCGCCTCGGCCCGGGACGTCAGCCTCGGGTCCTACCTGCCCGACCGCGTGGTGCACGTGCGCTCGTACTCCAAGTCGCACGGCCCCGACCTGCGCATCGCGACCGTCGGCGGACCGGCCACGGTGCTCGACCCGCTGGTGGCCCGGCGCATGCTCGGGCCCGGCTGGACCAGCCGCCTGCTGCAACGCGTCCTGGCCGACCTGCTCACCGACTCCGAGGCCATCGCGGCCGTCGAGCACGCCCGCCGGATGTACTTCGCCCGCCAGCGCGGGTTCGTCGCCGCCCTGGAGCGGCACGGCGTGGTGGCACAGGCCGGCGACGGGGTGAACCTGTGGCTGGCGGTGGCCGACGAGGACACCGCGCTCGTCCGCCTGGAGGCCGCGGGGATCCGGGCCGCCCCCGGGTCACCGTTCCACGCCGGCCGGGAGGGCTCGGCGGCCGACGGCGGCCCGCACGTGCGGCTCACCGTCGGGATGGTGCGCGACGACGTCGAGGAGGTGGCCGCAGCCGTCGCCCTGGCCGTCGGGGGCGCGTGA	MPQDQQPEHDLDAARLAARVTDPSPRGIAATLSRVVRSGELRPGDRLPTVRDLAAALGVSPATVSGAFQALSAVGLVTSRGRAGTVVLPEPRGWLPPRYRSMADGGPRSGAPSAAQGDARRLDLSGGTPDPALLPRLGAALRRAAADDPAADTGSYLDAPLLPDLETLQRETWPFLPQRVTVVDGALDAIERTLEQVAGFGDRVAVEDPGFPPVFDVLDQLGLERVPLALDGHGVRPESLAEALRRGVRAVVLQPRAQNPTGRSLTSTRARELARLLRAHGPDVVVLEDDHSGLIASARDVSLGSYLPDRVVHVRSYSKSHGPDLRIATVGGPATVLDPLVARRMLGPGWTSRLLQRVLADLLTDSEAIAAVEHARRMYFARQRGFVAALERHGVVAQAGDGVNLWLAVADEDTALVRLEAAGIRAAPGSPFHAGREGSAADGGPHVRLTVGMVRDDVEEVAAAVALAVGGA				NA	NA	NA	NA	NA
AK001_01149	1605	msrP		Protein-methionine-sulfoxide reductase catalytic subunit MsrP	ATGAGCACCCGAGGAAACGGCTGGTGGGCCGCCCTGGCCGGCGTCGTCGCCGCCGGCGCCGGTCTGGCGCTGGCCGAGCTGATCGCCGCCTGGGTCGACCCGGCCTCCTCGCCGGTGCTCGCCCTGGGCGGGGTGGTGGTCGACTCGGTCCCGCCGTGGCTCAAGGACGTCGCCGTCGAGTGGTTCGGCACCGCGGACAAGCTCGTGCTGCTGTCCACGATGGGCGTCGTGCTGGCCGCGGGCGCGGCGCTGTCCGGGTGGCTGGAGCTGCGTCGGCCCCCCGCGGGCCGGGTCCTGCTGGGTGCGGTGGGCGCCGTCATGGCGCTCGTCGCCGCGACCCGGCCCGAGGCCACGCCGCTGTGGGCCGTCCCGGCGGTCGTCGGCGTCGGCGCCGCGGTGGTGCTGCTGCGGCTCCTCGTCGCGCGCGTGCCGACGCCCGCCACCGCCGCCGCGCCGGCCGGAGGGACCGACGCCGGCACCCCGGCCGGCACCCCGACCGACACGGCGGCCGAGAGCACGGAGGCCGAGACCGGCGCCTCGCGCCGCACCTTCCTGGTCTGGACCGGTGCGACCGCCGTCGGCGGTGTCCTGGCCCTGGCGGCCTCGCGCACCCTGGCCGCCGGCAGCCGAGCGGTCGAGGTGGTCCGCGAGGCCATCCGTCTGCCGGGCGCGGCGTCCCCCGCGCCCGCCGTGCCGTCCGGCGCTGACCTGGGCGTCGAGGGGCTCACGCCCTACGTCACACCGAACCCGGACTTCTACCGCATCGACACCGCCCTGCGGGTGCCGAAGGTCGACCCGGCGACCTGGTCGCTGCGGGTCACCGGTCTCGTGGACGAGCCGTTCGAGATCTCCTGGGACGAGCTGCTCGACCTGCCGATGACCGAGCACCACGTGACGTTGTGCTGCGTGTCCAACCAGGTCGGCGGCGACCTCATCGACAACGCGCTGTGGCTCGGCTACCCGGTCCGCGAGCTCCTGGCCCGCGCCGGCCCGCAGGCCGACGCCGACATGGTGCTGTCCTCCTCCGTCGACGGCTGGACGGCGGGGACACCCTTGGAGGCGCTGACCGACCCCGACCGGGAGGCCCTGCTCGCGATCGGCATGAACGGCGAGCCCCTGCCCGAGGAGCACGGTTTCCCGGCGCGCCTCGTCGTGCCGGGACTGTACGGCTACGTCTCGGCGACCAAGTGGGTCACCGAGCTGAAGGTCACCCGCTTTGCCGACGACGAGGGCTACTGGACCCCGCGCGGCTGGTCGGCGCGAGGGCCGGTCAAGCTGCACTCGCGCATCGACGTGCCGCGCCCCGGCACCCCGCTCGAGCCGGGCCCCGTCACGCTCGCCGGGGTCGCGTGGGCCCAGCACACTGGTATCGCCGGAGTCGAGGTGCGCGTGGACGACGGCGACTGGATGCCCGCCGAGCTCGCCGACACCGTCGGCCCGGACACGTGGCGCCAGTGGCGGTACGTCTGGGACGCCACCGCGGGCGACCACACCGTCCTCGTCCGCGCGACCGACACCGACGGGCAGGTGCAGACCGAGGAGGAGGCGCCACCGGCACCGGACGGCGCGACCGGCCACCACTCGTTCGGCCTCTTCGTCGGCTGA	MSTRGNGWWAALAGVVAAGAGLALAELIAAWVDPASSPVLALGGVVVDSVPPWLKDVAVEWFGTADKLVLLSTMGVVLAAGAALSGWLELRRPPAGRVLLGAVGAVMALVAATRPEATPLWAVPAVVGVGAAVVLLRLLVARVPTPATAAAPAGGTDAGTPAGTPTDTAAESTEAETGASRRTFLVWTGATAVGGVLALAASRTLAAGSRAVEVVREAIRLPGAASPAPAVPSGADLGVEGLTPYVTPNPDFYRIDTALRVPKVDPATWSLRVTGLVDEPFEISWDELLDLPMTEHHVTLCCVSNQVGGDLIDNALWLGYPVRELLARAGPQADADMVLSSSVDGWTAGTPLEALTDPDREALLAIGMNGEPLPEEHGFPARLVVPGLYGYVSATKWVTELKVTRFADDEGYWTPRGWSARGPVKLHSRIDVPRPGTPLEPGPVTLAGVAWAQHTGIAGVEVRVDDGDWMPAELADTVGPDTWRQWRYVWDATAGDHTVLVRATDTDGQVQTEEEAPPAPDGATGHHSFGLFVG				NA	NA	NA	NA	NA
AK001_01150	981			ISL3 family transposase ISPfr6	GTGCGCTGGGCCTTGGTCGCCCTGGTGACGCAGCATCTGACGGTCGCCAGGATCGCCGAAGCTCTTGACGTGTCGTGGGACACCGCGAACGACGCCGTCCTGGCCGAAGGCCGCCGGCTGCTGATCGACGACGAGACACGGTTCAACGGCGTGACCACGGTGGGCGTGGACGAGCACGTGTGGCGGCACACCCGCCGCGGCGAGAAGTACGTGACCGTGGTCATCGACCTGACCCCGACCCGCGACGGCACCGGACCCGCCCGCCTGCTCGACATGGTCGAAGGGCGATCCAAGAGCGCGTTCAAGACCTGGCTCGCCGCCCGCCCAAAGACCTGGCGCGATCAGGTGGAGGTGGTCGCGATGGACGGGTTCACCGGCTTCAAGACCGCGGCAGCCGAGGAACTGCCCGACGCGACCGCAGTCATGGACCCCTTCCACGTCGTGCGCCTCGCCGGTGACGCCCTGGACCGCTGCCGCCGCCGAGTCCAACAAGACCTGCACGGCCACCGCGGCCGCGCCAAGGATCCGCTCTACCGCGCCCGGCGGACCCTGCACACCGGCGCCGACCTGCTCACCGACAAGCAGAAGACCAGGATCGAGGCGCTGTTCGCCCGCGACGAGCACGCCGAGGTCGAGGCGACCTGGGGCATCTACCAACGCATGATCACCGCCTACCGCCACCCCGACCGCGCCACCGGCCGCGAGCTCATGGCCGCCGTCATCGCCTCCGTCAGCCGCGGCGTCCCGGCCGCGCTGAGCGAACTCGTCACGCTCGGGCGGACCCTCACCAAGCGCGCCGACGACGTGCTCGCGTTCTTCGACCTGCCCGGCACCAGCAACGGCCCCACCGAGGCCATCAACGGCCGCCTCGAACACCTACGCGGCTCCGCCCTCGGCTTCCGCAACCTGACCCACTACATCGCCCGATCACTCCTCGAAGCCGGAGGCTTCAGACCACGACTACACCTTCGGATCGGATGA	MRWALVALVTQHLTVARIAEALDVSWDTANDAVLAEGRRLLIDDETRFNGVTTVGVDEHVWRHTRRGEKYVTVVIDLTPTRDGTGPARLLDMVEGRSKSAFKTWLAARPKTWRDQVEVVAMDGFTGFKTAAAEELPDATAVMDPFHVVRLAGDALDRCRRRVQQDLHGHRGRAKDPLYRARRTLHTGADLLTDKQKTRIEALFARDEHAEVEATWGIYQRMITAYRHPDRATGRELMAAVIASVSRGVPAALSELVTLGRTLTKRADDVLAFFDLPGTSNGPTEAINGRLEHLRGSALGFRNLTHYIARSLLEAGGFRPRLHLRIG	PGPT0030630_416	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030630-tnpA-K07485	NA	NA
AK001_01151	639			hypothetical protein	ATGAAGTACCCCCGACCCTCCACGAGGTTCGCAGCGTTCGCGCTGGCGGGCGCTCTCGTGCTCATGGCGGGTGCCTGCTCGACCGCCCCTGAGGTCGAGGCTGCCCCCGAGGACACCTACACCCCGCCTGCCACGACCGCTCCGTCCGTCGAGGCGGCTGAGGACGAGTCCAGCCCCGAGCCGTCCGAGACCGAGGAAGAGGCTGTGCGCGGCTCCCGCGGCAACCCGATGGTTCCCGGTGAGGCCCGCAAGCTCTCGAACGAGTCCGCGTGGAAGGTCTCCATGAAGGAGACCGAGAAGCATGACGGCTGGATCGCCGCCCCGTTCACGATTCAGGTGGACTGGGAGTCGCTCGAAGACCAGGGCGTCCCGAAGGACGAGCCGCTCTACGTGACGGGCAGCGTCTTCGTCCAGTTCGTGACGAAGGACGGCAAGACCTACGACATGCTCGACCAGTACGAGAAGTTCGACAACGTGTACGGCTACAAGTCCGACTGGACCTACGAGTCTGAGATTTACCACCCGGCCAAGAAGGTCTCCGGCATCGTCGCGGTCTCCGTGCCGAAGGGCGAGGTTAAGGGCGGACTGTGGTCGATCGCCAACGGCTTCGGTGACCGCGTGTTCATTGCCCAGAAGTGA	MKYPRPSTRFAAFALAGALVLMAGACSTAPEVEAAPEDTYTPPATTAPSVEAAEDESSPEPSETEEEAVRGSRGNPMVPGEARKLSNESAWKVSMKETEKHDGWIAAPFTIQVDWESLEDQGVPKDEPLYVTGSVFVQFVTKDGKTYDMLDQYEKFDNVYGYKSDWTYESEIYHPAKKVSGIVAVSVPKGEVKGGLWSIANGFGDRVFIAQK				NA	NA	NA	NA	NA
AK001_01152	1338			hypothetical protein	GTGGGCGCTGCGCTGGCCGCGCTGGTGACACTGCTCGGTGCCATCGTCGGGTGGGCCGGGGCTCTGATGTTCCTGGCGGTGTACGTCATGCTCTCGGCCCTGATCGGCGTAATCGTCGGCTGGACCTGGTGGGGCACGCGGGGGCGGGGCAAGCTCGCTGGCATCGCCGGTATCGCGTTGATTGCCGTGGTCGGCACGGCGCTGGCCGCTCCGCCGGTCGAGGTCGAGGACCCGGCTCCCGTCGCCGCCGATGTCGTCGAGGCGTCTCCGGTCGTCGAGGAGCCGACGCCTACACCTTCACCAAGCCCGGAGCCCTCACCCACACCCTCGCCGAGCGAGAAGATCGAAGCGGCGGACGCCAACGCGGATAAGAGCACCATCATCAAGGCCGGCAAGGGCACCGCGCTGGCAGCGCTGGACGATCTCAAGATCAAGGGGCGCGCGCCGAAGACCGGGTACGACCGCGACAAGTTCGGGCCGTCGTGGGCTGACGTGGACGGCAACGGTTGCGACACCCGCAACGACATCCTCACCCGTGACCTGACCGAGGAGACCTACGAGTCCAACGGCTGCGTCGTCCTGACCGGAGTCCTGGCCGACCCGTACACCGCGACCCAGATCGACTTCCAGCGGGGCCAGGACACCTCGATCGAGGTGCAGATCGATCACGTCGTCGCGCTCTCGGACGCCTGGCAGAAGGGGGCCCAGAAGATCAACGCGAACGCCCGCAAGAAGTTCGCCAACGACCCGCTGAACCTTCTCGCGGTCGATGGGCCGGCGAACGCTCAGAAGGGCGACGGTGACGCTGCCACCTGGCTGCCGTCGAACAAGGCGTTCCGCTGCCAGTACGTCGCTCGCCAGGTTGCGGTGAAGAAGACGTACAAGCTCTGGGTCACCCAGGCTGAGCACGGCGCGATCGAGCAAGTCCTGTCCAAGTGCGAGGACCAGCCCCTGCCCAAGGGTGGCCTTGCCCCGACGGTGAAGGTCAAGAAGCCGAAGCCGTCCCCGACGCCCACACCGGAGCAGAAGAGCGAGTACTACGAGAACTGCGACGCGGCCCGCGCGGCGGGAGCGGCTCCGGTCTACAAGGGCGAGCCCGGGTACGGCTCGCACCTCGACCGCGACGGCGACGGAGTCGGCTGCGAGTCCGGATCTGGATCGAAGCCAGAACCCGAGCCAGAACCCGAGCCCGAGCCCGAGCCCGAGCCTGAGCCTGAGAGCGTCTACTACAAGAACTGCGACGCAGCCCGAGCCGCTGGAGCAGCACCCGTCTACCGGGGCGACCCCGGCTACGCCAGCCACCTCGACCGCGACGGGGACGGGGTTGGCTGTGAGTAG	MGAALAALVTLLGAIVGWAGALMFLAVYVMLSALIGVIVGWTWWGTRGRGKLAGIAGIALIAVVGTALAAPPVEVEDPAPVAADVVEASPVVEEPTPTPSPSPEPSPTPSPSEKIEAADANADKSTIIKAGKGTALAALDDLKIKGRAPKTGYDRDKFGPSWADVDGNGCDTRNDILTRDLTEETYESNGCVVLTGVLADPYTATQIDFQRGQDTSIEVQIDHVVALSDAWQKGAQKINANARKKFANDPLNLLAVDGPANAQKGDGDAATWLPSNKAFRCQYVARQVAVKKTYKLWVTQAEHGAIEQVLSKCEDQPLPKGGLAPTVKVKKPKPSPTPTPEQKSEYYENCDAARAAGAAPVYKGEPGYGSHLDRDGDGVGCESGSGSKPEPEPEPEPEPEPEPEPESVYYKNCDAARAAGAAPVYRGDPGYASHLDRDGDGVGCE				NA	NA	NA	NA	NA
AK001_01153	270			hypothetical protein	ATGGAGATGGTGAAGTACCGCGCGCGCCTAGTAGTCGTATCAGCCGCCGCCCTGGCGCTCGCAACGGCCTGCCAGGAACAGGGTGGTGCCGAGCTCGACGACTCGTCGCCTTACGCGGCGTTCCAGGAGGCGTTCGACACGGGTGCCGATTGCCCTGAGCTCTTTGAGCTCCGCAACCGTATGGACCCTGACGACCCCTTGATCGAGGACATGAACGAGGACCTGCAGTCCGTCGAGTGCTACTCCAGCACGTCTCAGAGATCAGGCTAA	MEMVKYRARLVVVSAAALALATACQEQGGAELDDSSPYAAFQEAFDTGADCPELFELRNRMDPDDPLIEDMNEDLQSVECYSSTSQRSG				NA	NA	NA	NA	NA
AK001_01154	1260			hypothetical protein	GTGACTACGAAGCTCGACCTCACCGGCTACACGAACGAGAAGACCGTCATGGCGCAGCGGTTCCGTCGTGGTGTCCACTGGGTCTACACGATCGCACTTCCTCTGCACCTCGTGCCTTCCCACCTGCCCGTCCCGGACCCTGACAACAAGCTCCCCGGCAATCGGCGTGTCGACCGGCGCCGTGCTCAGAAGTTCGGCGACTACTGGAGGTCGAAGGACAAGCGGGTCGCCCCTCCGCTGCTGCTCGACACGACGTATCCGCTGAGCAATCCGGGCAACTTCGACGTCAAGTACGAGGTTGCAGGGGTGGAGGTGGGCATCCTCACCATCCCCCACAACATGGCAGCCGAAGTCGACATCCTCGACGGTCAGCACCGGACGCTCGGCTGGACGCTCGCTCTGCAGGACATCGCCGACGAGCTCAAGCACGCCCGCACCTCGCTTCTGGGGAGCAAGAGTGCAGAGGACGAGATCGGCATCGCGACGTGGCAGGAGAAGGTCGACAGGCTGACCGAGGAGCAGAAGAGGTTCACCAGCGAGTACGCCACGCTTGAGATCCTGGAGGGCGTCACCGAGGACGACCACAAGCAGCTCTTCACTGACATCGCGGTTAACGCCAAGGGCATCACCAAGTCCATCACCACCTCCTTCGACCGCCGGAGCAAGCTCAACCGCGTCGCCATGGACGTTGCAGAGACGCTCGATCTCCTCGACGGCCGCGTCGACTTCGAGAAGGACCGCGTCACCGGCAAGAACGAGAACTTCATCTCCGCCAGCAACCTCGTCGACATCGTCCGCCACGTCGCTGTGGGAATCGACGGACGCATGACGACCGGTCGTGAGGACCGGATGAAGGACGGCGCGATCGCCGACCTGACTGAGCTGTTCTTCCAGGCGCTGGAAGCGAGCTTCGACGAGATCCAGAACCTCGCGGACGACGAGATCGACCCGATCGAGCTTCGCAACAAGAGCCTGCTCGGCTCGATCACGATCCTGCGCGTCCTCGCCGGCGCCTACCACACCCTTGCGGTCGACATCTCCGACGATTCCCATCCGCGGGTTACCAAGGAGGGCGACCAGCGCGCTCGCAAGCTGTTCGAGAGCATGAACGGCCACATGGGCTTCCCGATCGAGAAGGGCTGGCTCAAGACCGGATACTTCGACGACAAGGACTCGCGGGCGCCCTCCTCCCGTGCACAGGACCTCAAGGGTCTGTCGGCAGTCATCGCCAAGTGGGCCGACGTCGGCGTGCCGTTCTGA	MTTKLDLTGYTNEKTVMAQRFRRGVHWVYTIALPLHLVPSHLPVPDPDNKLPGNRRVDRRRAQKFGDYWRSKDKRVAPPLLLDTTYPLSNPGNFDVKYEVAGVEVGILTIPHNMAAEVDILDGQHRTLGWTLALQDIADELKHARTSLLGSKSAEDEIGIATWQEKVDRLTEEQKRFTSEYATLEILEGVTEDDHKQLFTDIAVNAKGITKSITTSFDRRSKLNRVAMDVAETLDLLDGRVDFEKDRVTGKNENFISASNLVDIVRHVAVGIDGRMTTGREDRMKDGAIADLTELFFQALEASFDEIQNLADDEIDPIELRNKSLLGSITILRVLAGAYHTLAVDISDDSHPRVTKEGDQRARKLFESMNGHMGFPIEKGWLKTGYFDDKDSRAPSSRAQDLKGLSAVIAKWADVGVPF				NA	NA	NA	NA	NA
AK001_01155	300			hypothetical protein	GTGAGGCCCCGCACCGCATACCGCCAGCCCGACGCCCTGGGCGATTTCGCGAAGATCCTCGAACGGGTCAGGGACACCAACGCCAGCTGGAGCCTCGCGGGCAGCACCCAGGCCGAGCCGACGCCCGAGCCGGAGCACCCAGGTCCCCGACCGGAGTCGGCCCGCCTGTGCCTCAGCTGCGGCGCGGACCTGGAGGCCGTGGACCAGCGCGCGGTCAACCCGAACGGCGAGCGGATCACCTGCTCCAGCAAGTGCCGCCAGAGGCTCTACCGCCAACGGCAGCAGACCGTGACGCCGTGA	MRPRTAYRQPDALGDFAKILERVRDTNASWSLAGSTQAEPTPEPEHPGPRPESARLCLSCGADLEAVDQRAVNPNGERITCSSKCRQRLYRQRQQTVTP				NA	NA	NA	NA	NA
AK001_01156	1002			hypothetical protein	TTGAGCAACACCAAGAAGAAGACCACTGCCGTCGACGAGTTCGCACAGCACGCTGCCAACGCGAGCGAGTCGCGCGCCCGCGCGGTCGCTGCCCTCGAGCAGCTCACGACGGCGCGCGAGGAGCTGGCGCGAACCAGGGCCTCGGCACTGACCGGCGATGAGTCCCTGACCCCTGAGCAGCTGGCGACGGCTCGCGCTGCCGTAGAGCTGGCAGAGCTGCGCGCCGTCGGCGCGGACAAGCGCGCCGCCGCCGTCCACGCCGCCGCACCGTTCCGACCCGTCCTAGCCGAGACCGTGGCGAACGCGCTGCAGGACGTCCTGGAAATCCCTGCCTCGGTCGTCGAGAAGGTCCCTGCCGATGCGCAGGCGCCGCACTTCTACGTCGTGCAGGATCGTGCTGCGTCCCGGGCGATGTGGGGCCGGGGCTACGCCGGGCAGGTGAAGGTGACCTACAAGCGCGCCAGCATCCACCGAGAGATGACCCGCGACGACTACGTCGACGCCCTGGACAAGCGTGGCGTCACCGTCACGGACGTCATGTTGGCCGGCGGCCCGGCCACCCTGAAGGTGGTCGCCCAACCCACGCTCCCGTACGTGGCCGCCCTGCCCAACACGATTGGTCAGCGTGTGGCGGACGACCTCGCCGGCTACCTGCGCGGTGGCCACGGGCGCGGCGGCGAGGTCGAGTCCGAGGAGACCACGGGCAACACCAGGATCACCGCGATGGACGTCTGGTTCGAGACGGACGAGCTATTCGGGCGCGTCAGCGACCTGCTCCACAAGACCACCGCCGCTGGCCGCGTCGTCGCTGCCGAGAAGCTGTCGTCCGGCTACCACCAGGATCCCGTGCCCCTGCCGAACGGCGACTTCGGCGTCACCCCGGAGTACCACCGGGTGGGTGTCCGCCTCACCCTGCACTCCACCACGACTCCCTACGACCACGTGCTCGCCACCGAGGCATACGAACCCGTGCTCCCGGCCGACCCGATGCACGCCGCGTGA	MSNTKKKTTAVDEFAQHAANASESRARAVAALEQLTTAREELARTRASALTGDESLTPEQLATARAAVELAELRAVGADKRAAAVHAAAPFRPVLAETVANALQDVLEIPASVVEKVPADAQAPHFYVVQDRAASRAMWGRGYAGQVKVTYKRASIHREMTRDDYVDALDKRGVTVTDVMLAGGPATLKVVAQPTLPYVAALPNTIGQRVADDLAGYLRGGHGRGGEVESEETTGNTRITAMDVWFETDELFGRVSDLLHKTTAAGRVVAAEKLSSGYHQDPVPLPNGDFGVTPEYHRVGVRLTLHSTTTPYDHVLATEAYEPVLPADPMHAA				NA	NA	NA	NA	NA
AK001_01157	1131			hypothetical protein	TTGGCTGACGTGAAGACGCCCTTCCGGTTCCGGTGGGAGCACGAGCTGCGAGATCGAGCCGGAGAGACGGGACTGCCGCTGCAGGCGATCGGCGTGCTGACGCTGATGGCGACCTACGCGGACATCGACGGCAAGCGTGTCTTCGTCTCCGACGTCGCGATGGCCCAGCGGGTCGGCTGTTCGCGGAAGACCTGGCTGAAGTGGCGCACTTGTGGGGCCGCGGCCGGCTGGATCCGGCTGGTCGAGGAGCGGCCCGGGCGGTCGAACGTCTACGACCTCAGCATCCCCGTCGCAGGGAGTGGACACGCTGACCGTGCCACCGGACAGGGACAAGTCCCGGGTGTCCGAGGGCTGTCCGTGGCGATGGACAGGTGTGTCCCTGCAGTGACACACCCGGTGTCCCCGGTCTCGGACACGACCAGCGTAGGTACCAGTACACCCACCAACACCTCGACGTGCTCCGGCGAGGTCGTCGTCGACGGCGACCAGGTGGTCCTGGGCAGCGGCGAGGTGGTGACGGTCCCCTCGTTCGACAGCGAGGGTGACACGGAGACGACACCGCGAGGGCTGCCCGAGGACAGGCCGATTGCGGACCTGTCTGACCTTCGAGTCGCCGGTGCAGCTGCTCCTGTCGCCGCTAGCGCGGCTCGGTCGCCCGGGCTGTCTGGACGGGTCAACAACTCGACGGAGTTCGTCGCCGGTGCATGCCCGTGCCGGGACGCCGCCGAGCACTACAACGCGGTCGTCGAGCTGCCGCCTTACCCGACCGACAACGACGGCAACCTGCTGTCGTCGTGGGGGCAGCTCGGGTACGCCTTCAACCGCGAGGACCGCATGAAGTTCGAACGCATCGCCTACCTACGAGACGCGCACGACACACAACGGACCCCGGACCACTCGCCATCGTTCTACACCCCGGCCCAGCGAGCCAAAGACCGAGCCCGGCACCAGGGCTTCCACGACCGAACCACGAGCGAGGAGAACCCGATGGAGGCCTACGAGAGCGACCCCAAGATGCAGCACTACATCGAGATGGTCCACACCGGCGAGATCCGCGACTGGAACGAGGTCCCGCCGCCTCTGCAGCAGTGGGCCGCCGGCTACCTCGAACGTCGTGGGCACGGCTACTAG	MADVKTPFRFRWEHELRDRAGETGLPLQAIGVLTLMATYADIDGKRVFVSDVAMAQRVGCSRKTWLKWRTCGAAAGWIRLVEERPGRSNVYDLSIPVAGSGHADRATGQGQVPGVRGLSVAMDRCVPAVTHPVSPVSDTTSVGTSTPTNTSTCSGEVVVDGDQVVLGSGEVVTVPSFDSEGDTETTPRGLPEDRPIADLSDLRVAGAAAPVAASAARSPGLSGRVNNSTEFVAGACPCRDAAEHYNAVVELPPYPTDNDGNLLSSWGQLGYAFNREDRMKFERIAYLRDAHDTQRTPDHSPSFYTPAQRAKDRARHQGFHDRTTSEENPMEAYESDPKMQHYIEMVHTGEIRDWNEVPPPLQQWAAGYLERRGHGY				NA	NA	NA	NA	NA
AK001_01158	1713			hypothetical protein	GTGACCCACCCCGAGAAGGCAGCCGCGATCTACGTCCGGCGCTCCAGCGGCAAGGCCGACACCAACCGGACCTTGGACGAGCAGGAGCAAGAAGCGCGAGCCCTCGCCGAGCGCGTCGGACTTGATGTCGTCGAGGTGTACCGAGAGCGCGAAGGCACAGGCGCCAGCGCGCGCAGCGGCAAGCGTCGCCCGCAGTGGGAGGCGGCGCTGGCGGAGCTCGACCTAGGCGAGCGATTCCATACCGTGATCGTCTGGGCCCTCGACCGTGCTGATCGCCGTGGGTCGGACACGCTCGGCGCGATGCTGTCCCGCCATGCTGCGACAGGGCGTCGGATTCTTGGCGTCGACGGCACCGACACCGGCGACTCGAACCAGCGACTGAACATCATCATTCGAGGAGAGATCGCCAGAGAGTACTCCGAGAAGTTGGGGGACAACGTCGCCCGCACCAAGCGGTACCGGCGCGAGGATGGGCTGTGGCTCGGCGGGAAGCCCCCGTGGGGACTGAGGGTCGGTGGAGACGGCCGTCTTGAACACGACCCTGCGACCTACCTCGAGGCGCGGAGGGCAGCCGAAGCACTGCTCGGAGGTGCCACCCTCTACGCCGTAGTCGCTGACCTCAACTCTCGCGAGGTCGCGTTGCCGAGTGGCAAGGCGTGGGGGTCGACCGTGGTACGCAAGGCCCGGGGGCTCGACCTCGACGTCGAGAGCCAGCCGCAGAAATGGCGCATCCCGACCCTGTCGGCGATCGTCCGCTCTCCGGGCTGGGCTGGCCTCCAGAGCATTCGGACTAGACCAACGAACGTTGACGGAACCAAGGGGGGATGGCCCGCGGTGGCGGAGGTCTACCGCTCGATCGAGACCGGAGAACCGGTCCGCGTAGGCGACGGAGTGATCACCCCCGACGAGAGAGCTGTCATCCTTGCGCGGGTCGAAGGACGCACTGCCAAGGCCGACGGGCGCAAGGGTGGCCGAAAGCCCCGCCAGTCGTTGCTGGGATCGAGGCTGAGGTGCGCCGAGTGCGGCGAGCTCGGGGTGCGAAGCGGGCGTGGGGCCAAGGCGTCGTACCGCTGTGGGAACGCCACTCTCGGAGCGGGTCGGTGCGGCGGGTTCAGTTGTCCGGTGGAGGGTCTGGACGAGTACGTCATCGGGCGGGCCTTGATCTTCGTGTCCGGCCTCAATCCGTCGGACCGCGTGGTCAGGTCTGCCTTTTCTGTGTGGGCCGGTGAGGCCGACGACAGCATTCGTGCGGAGCGGCGCGCGCAGGTGGCAGCAGTCGAACTTGCGAAGTCGGAACTCGCTCGCGCACGTCGTCTCGCTGTCATGGGTGTCCTCAACGAGTCGGAAGCTGCTGAGGAGATGCCGCGTCTACGCGCCGCCCTGGAGGCAGCTGAACTCCAACTCGCGGAGCGTGAGGCTGGAATCGATCTGACAGCCGACGCTCTTCAAGACCTTCAGTATCTCGCCGAAGCCTGGGACGACCTTGACGGGGCTGTGCAGCGGCAGCTCATCGAGACGCTGGTACGACGCATCGACGTCTACCGTGCTCCCTACCGGGGCGCGAGGTTCCTGCCGGCTGAGCGCGCAGTGATCACGTTCGTCGACGGCTCAACCTGGCCCTGGAGCGGTGCGCCGGTACCTCACCTTGGTAGACGACCCGACACCGTGCGCAAGGCCACGGCCCGTGCGCGGCGCAGCATCGGCGCGCCGTAG	MTHPEKAAAIYVRRSSGKADTNRTLDEQEQEARALAERVGLDVVEVYREREGTGASARSGKRRPQWEAALAELDLGERFHTVIVWALDRADRRGSDTLGAMLSRHAATGRRILGVDGTDTGDSNQRLNIIIRGEIAREYSEKLGDNVARTKRYRREDGLWLGGKPPWGLRVGGDGRLEHDPATYLEARRAAEALLGGATLYAVVADLNSREVALPSGKAWGSTVVRKARGLDLDVESQPQKWRIPTLSAIVRSPGWAGLQSIRTRPTNVDGTKGGWPAVAEVYRSIETGEPVRVGDGVITPDERAVILARVEGRTAKADGRKGGRKPRQSLLGSRLRCAECGELGVRSGRGAKASYRCGNATLGAGRCGGFSCPVEGLDEYVIGRALIFVSGLNPSDRVVRSAFSVWAGEADDSIRAERRAQVAAVELAKSELARARRLAVMGVLNESEAAEEMPRLRAALEAAELQLAEREAGIDLTADALQDLQYLAEAWDDLDGAVQRQLIETLVRRIDVYRAPYRGARFLPAERAVITFVDGSTWPWSGAPVPHLGRRPDTVRKATARARRSIGAP				NA	NA	NA	NA	NA
AK001_01159	177			hypothetical protein	ATGTGGTGGGGGCCGTCCAGGCGCTGTGACAATGGGGCGGTGAGCACCACCCCCGCCCTGCCCAAGGTCCGCGCGTCGGAGCTCGTCGGCCGTGGCTGGTTGAACACCGGCGGCCGCGACCTGGACCTGGCCGCCCTGCGCGGCAAGATCGTCGTGCTGGACTTCTGGACGTTCTGA	MWWGPSRRCDNGAVSTTPALPKVRASELVGRGWLNTGGRDLDLAALRGKIVVLDFWTF				NA	NA	NA	NA	NA
AK001_01160	222			hypothetical protein	ATGGCCACGATCGACCAGGCCCGTGCCGCCAAGCGGTCGCTGCGGGAGCGCATCGCGCAGGTCGACGGCGTGTGCGGAGTCGGGCTCGCCCAGCGCGGCGACGCCCACGACTGGGTGCTGCAGGTGAACGTCACCACGGTCGGCGCCCGCAAGGACGTCCCGCCGGCGGTCGAGGGCGTGCCGGTGCGGGTGCATGTGGTGGGGGCCGTCCAGGCGCTGTGA	MATIDQARAAKRSLRERIAQVDGVCGVGLAQRGDAHDWVLQVNVTTVGARKDVPPAVEGVPVRVHVVGAVQAL				NA	NA	NA	NA	NA
AK001_01161	888		COG0656	putative oxidoreductase/MSMEI_2347	GTGACGACGATTCCCACCGTGACCCTGAACAACGGCGTCCCGATCCCCCAGCTCGGCTTCGGGACCTACAAGATCGGCGACGACGAGACCCGCGACGCCGTGCTCAGCGCCCTCGAGGCGGGGTACCGGCACATCGACACCGCGCAGATGTACCGCAACGAGCGCGGCGTCGGCGACGCCATCGCAGCCTCCGGCCTGCCGCGTGGCGAGGTCTTCGTGACCAGCAAGCTGAACAACGGCCACCACGCCTACGACGACGCCCTGGCCTCCTTCGACCGGACCCTGTCCGAGCTGCAGCTCGAGTTCGTGGACCTGTTCCTCATCCACTGGCCGCTGCCCGCCGTCGGGCGGTACCTGGAGGCGTGGCGGGCCCTGGAGGAGATCCTGCGCTCCGGCCGCGCCCGCGCCATCGGGGTCTCGAACTTCCAGCCCGCCCACCTGCGCACCCTCCTGGACGAGTCCACCGTCGTGCCCGCGGTGAACCAGATCGAGATGCACCCGTGGTTCACGAACGCCGACGTGCGCTACTTCGACGAGAGCCACGGCATCACCACCGAGGCCTGGTCGCCGCTCGGTCGCGGCGCCGTGCTCGAGGACCCGGTGATCACCGGGATCGCGGAGGACCACGGCGCCACGCCGGCCCAGGTCGTCCTCGCCTGGCACCTGGCCCGCGGCGTCGTCGTCATCCCCAAGTCCGTGACGCCGTCGCGGATCGCCTCGAACCTGCGCGCCGTGGACGTCGCGCTGAGCGAGGACGAGGTCGCGGCGATCACCGCCCTGGACCGCGGCGAGCGGCAGGGTTCCCACCCCGACCGGGAGAACAGGACCGACCGCGTAAACCCCCCCCCACCCCCGGCCCGGGGTTGGGGGAATCACCTCGCCAGGTGA	MTTIPTVTLNNGVPIPQLGFGTYKIGDDETRDAVLSALEAGYRHIDTAQMYRNERGVGDAIAASGLPRGEVFVTSKLNNGHHAYDDALASFDRTLSELQLEFVDLFLIHWPLPAVGRYLEAWRALEEILRSGRARAIGVSNFQPAHLRTLLDESTVVPAVNQIEMHPWFTNADVRYFDESHGITTEAWSPLGRGAVLEDPVITGIAEDHGATPAQVVLAWHLARGVVVIPKSVTPSRIASNLRAVDVALSEDEVAAITALDRGERQGSHPDRENRTDRVNPPPPPARGWGNHLAR	PGPT0001320_1413	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221	NA	NA
AK001_01162	285	ptsH		Phosphocarrier protein HPr	ATGGAGCGCCACACCGTCGTCGCGATCCGCGAGGGGCTGCACGCCCGCCCGGCGGCCCTGTTCACCCGCCTCGCGGCGTCCCAACCCGTCCCCGTCCGGATCGCCCGGGACGGCGGCGACCCCGTCGACGCCGCGAGCATCCTCGCGGTGATGACGCTCGGGGCCGACGCCGGCACCTCGGTCACGCTCTCGGTCGACGACGGCGCACCGGGGACCGACGAGGACGCCGCCGCCGCGGCGCTGGACCGGCTCGAGGAGTTCCTCAGCGACCCCGAGCCGTCCTGA	MERHTVVAIREGLHARPAALFTRLAASQPVPVRIARDGGDPVDAASILAVMTLGADAGTSVTLSVDDGAPGTDEDAAAAALDRLEEFLSDPEPS	PGPT0016875_472	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0016875-ptsH-K02784	NA	NA
AK001_01163	1674	ptsI	COG1080	Phosphoenolpyruvate-protein phosphotransferase	ATGAGCACCACTCTCTCAGGAGCGCCGGTCAGCCCCGGCCGGGCCGCCGGCCCGGCCGCGACCATGCCCCCGCCGGTGCCCGAGCCCCGCACCACGCGGCTCGGCGGCGAGGACGTGGAGGCCGCCGTCGGGCACCTCACCGCGGCCGCCCGCGCCGTGCGGGACGAGCTCACCGACCGGGCGGGACGGGCGACCGGCACCGCGGCCGACCTGCTCGCCGTCACCGCGGCGATGGCGGCGGACCCGGCCCTGGTGGCGGACGCCGAGCGCCGCATCCGGAACGACCACCTCACCCCGGAGCGCGCGATCTGGGACGCCGCGCGCGGCCTGATCAAGCAGTTCGAGAAGCTCGGCCCGCCGCTCGCCGAGCGCGCCCGCGACGTGGGGGACGTCCGCGACCGCATCGTCGCCGAGCTCATCGGCGTCCGCCCGCCCGGCGTCCCCCGCCTGGACCACCCGTTCGTGCTCGTCGGGGACGACCTCGCCCCGGCCGACACCGCCACGCTCGACCCCGAGGTCGTCCTCGGCGTGGTCACCAGCGGCGGCGGGCCGACCTCGCACACCGCCATCCTCGCCCGGGCGCTGGGGATCCCGGCCGTCGTGGCGGTCCGCGGCGCCGAGGAGATCGCCGACGGCGACACGGTGCTGCTCGACGGGTCCGCGGGGGTCGTGGTCCTCGACCCCGACCCCGACACCGTCGCGGCCGCGCAGCAGCACGAGGCGGAGCGGCGGGTGTTCGACGGCACCGGGCGCACCGCCGACGGCACGCGCGTCGAGCTGCTCGCCAACGTCGCCGACCCGGCCGGGGCGCAGGCCGCGCTCGAGGCGTCGGCCGAGGGCGTCGGGCTGTTCCGCACGGAGTTCTGCTTCCTCGGCCGCAGCACCGAACCGGGCGTCTCCGAGCAGGTGGCCGCCTACCGCCAGGTGCTCTCCGCCTTCCCGCGGCGCAAGGTCGTGGTGCGCACCCTCGACGCGGGGGCCGACAAGCCGCTGCCCTTCGTCACCGCCGACGGCGAGCCGAACCCGGCGCTCGGGGTCCGCGGCCTGCGCACCGCGGCCACGCGGCCCGGGGTGCTCGACCGGCAGCTGCAGGCGATCGCCGTGGCGGCCGAGGCCGAGAACGCCGAGGTGTGGGTGATGGCCCCGATGGTCGCCACCGCCGGCGAGGCCGCCGACTTCGTCGCCGCGTGCGAGGCGCACGGGCTGCGGACCGCCGGGGTGATGGTCGAGGTGCCCGCCGCGGCGCTGCGGTCCGCCGACGTGTTCGCGCACGCCGCCTTCGGCTCGGTCGGCACCAACGACCTCATCCAGTACACGATGGCGGCCGACCGCATGCTCGGCGAGCTCGCCGCCCTGTCCACGCCGTGGCAGCCCGCGGTGCTGGATCTGATCCGCGCGACCTGCGCCGGTGCCGCCCGGCACGACCGTCCCGTCGGGGTGTGCGGCGAGGCGGCGGCGGACGCCACCCTCGCGCTCGTGCTCGTCGGCCTCGGCGTGCGGTCGCTGTCGATGACGCCGCGGGCGCTCGCCGACGTCGCGGCGGTCCTCGAGCGGGTCACGTTCGACGAGTGCGTCGACCTCGCGCGGCTGGCCCTGGCCGAGTCCGACCCGATGGTGGCGCGGCACGCGGTGCGGGACGCGATCCGGCCGGTGCTCACCGACCTCGGGCTCTGA	MSTTLSGAPVSPGRAAGPAATMPPPVPEPRTTRLGGEDVEAAVGHLTAAARAVRDELTDRAGRATGTAADLLAVTAAMAADPALVADAERRIRNDHLTPERAIWDAARGLIKQFEKLGPPLAERARDVGDVRDRIVAELIGVRPPGVPRLDHPFVLVGDDLAPADTATLDPEVVLGVVTSGGGPTSHTAILARALGIPAVVAVRGAEEIADGDTVLLDGSAGVVVLDPDPDTVAAAQQHEAERRVFDGTGRTADGTRVELLANVADPAGAQAALEASAEGVGLFRTEFCFLGRSTEPGVSEQVAAYRQVLSAFPRRKVVVRTLDAGADKPLPFVTADGEPNPALGVRGLRTAATRPGVLDRQLQAIAVAAEAENAEVWVMAPMVATAGEAADFVAACEAHGLRTAGVMVEVPAAALRSADVFAHAAFGSVGTNDLIQYTMAADRMLGELAALSTPWQPAVLDLIRATCAGAARHDRPVGVCGEAAADATLALVLVGLGVRSLSMTPRALADVAAVLERVTFDECVDLARLALAESDPMVARHAVRDAIRPVLTDLGL	PGPT0002025_3088	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0002025-ptsI-K08483	NA	NA
AK001_01164	450			hypothetical protein	ATGACCCTGCTCGTCAGCTCGCCCGTCGCCGGGACCGTCGTCGAGGTCGGCGAGGTCCCGGACCCGGTCTTCTCCGCCGGCCTGGTCGGCCCCGGCACCGCCGTCGAGCCCGCGGGGTCGCAGGTCCTGGCACCGGTCGACGGGCGGGTGGTCAAGCTGCACCCGCACGCCTTCGTGGTGCAGCCGCCGTCCGGTCCGGCGGTGCTGGTGCACCTGGGGATCGACACCGTCCAGCTCGGCGGGGCGGGGTTCACCGTCCACGTCGCCGAGGGCGACGCGGTGGTCACGGGTCAGCTCCTGGTCGAGTGGGACCCGGCGGAGGTGCGTGCCGGCGGACGTTCGGCAGTCTGCCCGGTGGTGCTGCTGGAGGCGTCCCCGGAGCAGGTGGAGCTGCGCGCCGCGCCCGGTGCGGCGGTCGAGCCCGGGGACCCCCTGCTCGCCGTGCCGTGA	MTLLVSSPVAGTVVEVGEVPDPVFSAGLVGPGTAVEPAGSQVLAPVDGRVVKLHPHAFVVQPPSGPAVLVHLGIDTVQLGGAGFTVHVAEGDAVVTGQLLVEWDPAEVRAGGRSAVCPVVLLEASPEQVELRAAPGAAVEPGDPLLAVP	PGPT0014090_1512	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0014090-crr-K02777	NA	NA
AK001_01165	747	nagR	COG2188	HTH-type transcriptional repressor NagR	ATGGCGACGCGCCCCGCCGGCCGGCACGGCACCGGTCAGAAGTACCGCGTGGTCCGCGCCTACCTGGCCGAGCTCGTGGATCAGCTCGCCGTGGGCGACGCGATCCCGTCCGAGCGCGCCCTGGGGGAACGCTTCGACGTCTCGCGCATGACGGTCCGGCAGGCGATCGACGCCCTCGTCGCCGACGGGCTGCTGGAGCGGGCGCAGGGCCGCGGCACGTTCGTGGCGCCCCCGCCGGCCGACCTCGAGATGCGCCTGACGACCTTCGGCGAGGAGGTGCGGCGCCGCGGCATGACGCCCGGCTCGCAGGTGCTCGAGGCCGCGACACGGCCCTGCCCGGCCGCGGTGGCGGACGTCCTGGCGCTGCGGCCCGGCGACGACGCGCACCGGGTGCTGCGGGTCCGCACCGCCGACGGTGAGCCCTGGGCGGTCGAGGACGCCTGGATCCCGGCCGGTCTCGCGCCCGACCTGCTCGACGACGGGGTGCCGGAGAGCCTCGACGCCGAGCTGCGGCGCCGCGGCCACGTCCCGACCGGGGGCGACGAGACGATCACGGCCGCCGACGCCACGGACACCGAGTGCCGGCTGCTGAGCATGACGGGCACGCACGCCGTGATGCGGATCGAGCGGCGCACGTACGCCGCGCAGACGCCGCTCATCCACTCGCGGTTCTCCTACCGGGGCGACCGCTACAGCGTGTTCGTCCCGCTCGGCGAGGCCCGCTCGCCCGTCCCCGTGTGGTCCTGA	MATRPAGRHGTGQKYRVVRAYLAELVDQLAVGDAIPSERALGERFDVSRMTVRQAIDALVADGLLERAQGRGTFVAPPPADLEMRLTTFGEEVRRRGMTPGSQVLEAATRPCPAAVADVLALRPGDDAHRVLRVRTADGEPWAVEDAWIPAGLAPDLLDDGVPESLDAELRRRGHVPTGGDETITAADATDTECRLLSMTGTHAVMRIERRTYAAQTPLIHSRFSYRGDRYSVFVPLGEARSPVPVWS				NA	NA	NA	NA	NA
AK001_01166	1152			hypothetical protein	ATGGATCTGACCCAGGCGCGCGAGATCAAGGCCCAGCTCACCGGCTACGCCCGTGACCTGGCGGAACGCTACGTGGTCGCCGTCTGTCCGCAGTCCGCGGCCACGACGGCCCCCGACCCGGTGCGTGCCCCCACGCTCGCGATCGGCCTGGCCCCCGCCGGACGGTCCGGCGAGTTCGAGATCGCCGTGCGCTACCGGCTCGGCCTGCCGGCGGCCCGCGCCGTCGTCCGCCGGATCGCCGCCGAGGCGGGGCCGTCGCCCGACGTGCGCCGCACCGGCCGCATCCGCCGGCTCGGCCCCGGACGGCGGGGGTCCACCCGCGACCCCGGCCTCGACCCGCAGCCGCCGGTCGCCACCGCCCTCGCCGTCGGGGAGACGGGCCGCGTGCGTCCGCTGCGCCCCGGGGTGTCGCTCGCGCACGTCGACGTCACCGCCGGCACGCTCGGCGCGTTCGTGGTGGCCGACCCGGCGTGCTCGGCCGGCGGGCACCTGCCCGGCGGCCCGGGCGCCATCTACGCGCTGTCGAACCGCCACGTGCTCGACGGCGTCCCCGGCGACGGGGTGCTCCAGCCCGGGCCCGCGGACGGCGGGCGCGATCCCGTCGACCGCGTCGGCGCCGTCGCGGCCGTGGTGCCGCTGGCCGCGGGGGAGCGTGCGGCGGTCGACGCCGCCGTCGCCCTGCTGGACTCCGCGGAGGTGGACCCGACCTACCCGGTAGGTCCCGTGACGACGACGGCGGAGGCGGTGCCCGGCGACGCGGTCGAGAAGATCGGGCGGACCACCGGCCACACGCACGGGCGGGTCAGCGCCGTGGAGATGGACGACGTGCTGGTCGGGTACGGGCCCGAGCTCGGCGTCCTGGCGTTCGACGGCCAGATCGAGGTGGAGTCGACCGGCACCGGGCCGTTCTCCCGGGGCGGGGACTCCGGGTCGCTCGTGTACCGCCACGACGCCGCCGCCCTGGGGCTGCTGTTCGCCGGCTCGGAGACCGGAGGGCCCCACGGGACCGGGCTGACGTACGTGAACCCGATCGGCGCCGTCGTCGGTGCCCTGGGTGTGCGCCTGGTCGGAGCGGCCGGTCAGGACCACACGGGTCAGGACCACACGGGGACGGGCGAGCGGGCCTCGCCGAGCGGGACGAACACGCTGTAG	MDLTQAREIKAQLTGYARDLAERYVVAVCPQSAATTAPDPVRAPTLAIGLAPAGRSGEFEIAVRYRLGLPAARAVVRRIAAEAGPSPDVRRTGRIRRLGPGRRGSTRDPGLDPQPPVATALAVGETGRVRPLRPGVSLAHVDVTAGTLGAFVVADPACSAGGHLPGGPGAIYALSNRHVLDGVPGDGVLQPGPADGGRDPVDRVGAVAAVVPLAAGERAAVDAAVALLDSAEVDPTYPVGPVTTTAEAVPGDAVEKIGRTTGHTHGRVSAVEMDDVLVGYGPELGVLAFDGQIEVESTGTGPFSRGGDSGSLVYRHDAAALGLLFAGSETGGPHGTGLTYVNPIGAVVGALGVRLVGAAGQDHTGQDHTGTGERASPSGTNTL				NA	NA	NA	NA	NA
AK001_01167	255			hypothetical protein	ATGGATCCCGTCCTGCACCCTCTCTTGGGTGTGATGAGGAATCCGACGGTCACCGACGTGCGCGCCGCTGTCCGCTGGGCTCTGAGCCACGACCTCGCCGCGCTGAGGGACTACCGCGAGGTCGCCCTGCTCGAGCCGAGCGCCCGGTGGCAGGCCGACGCGACCCTGGTCGCCCGCTGGCAGCAGGCCACGGGCAACGCCGTGACGGTCGCCTGGACGCGTGACCCGGTGCCGCTGCCCCGGGCCACACGCTGA	MDPVLHPLLGVMRNPTVTDVRAAVRWALSHDLAALRDYREVALLEPSARWQADATLVARWQQATGNAVTVAWTRDPVPLPRATR				NA	NA	NA	NA	NA
AK001_01168	2610			hypothetical protein	ATGAACCGCGTCAGGCAGAACCCGTGGGCGGTCGCAGCGGTCGCCCTCCTCCCCGTCCTCGTGCTGGGCATCCTGCTGGCGTCCCTGTGGAACCCGGTCGACCGCCTCGACACTGTCCCCGCCGCGATCGTCAACGACGACGAACCCGTCGAGATGGACGGCCAGACCGTCCCGCTCGGCCGCCAGCTCGCCGCCGGGCTGGTCGGCGGTGCCGAGGACTCGGACGTGAACTACGACTGGACCATCACCGACACCGAGCAGGCGGCCGAGGGGCTCGACGACGGCACCTTCGCCGCCGTGGTGACGATCCCCGAGGACTTCTCGGCCGCCGCGACGTCGTTCGGGTCCGAGGACCCGACCGAGGCACGCCAGGCGACGATCGACGTGTCCACGCCCGCCGGCGGCCGCGTGGTCGACGACGCGCTGGCCCGCATCGTCGCCACCACGGCCACGACGGTGCTCGGGTCCTCCCTGACCGAGACGTACGTGGACAACGTGCTGATCGGCTTCAACGACCTCTCCGACGGGATCGGGGAGGCCGCCGACGGGGCGAACCAGCTCGCCGACGGTGTCGACGAGACCGCCTCCGGGGCCGACGACCTGGCCGACGGCGCCCGGCAGTACGCCGACGGTGTCGGCCAGTTCGCCTCCGGTGTGGGCGAGGCCGCGGACGGTGGCTACGCGCTGGCCGACGGCGCGAGCCAGTTCGCCTCCGGTGTCGGTCAGGCGGCCGACGGCGGTTATGCGCTGGCCGACGGCGCGGACCAGTTCGCCTCCGGTGTCGGTCAGGCGGCCGACGGCGGTTATGCGCTGGCCGACGGCGCGCAGCAGTACGCCGCCGGTGTCGGCCAGGCCGCCTCCGGGGCGGACGAGCTCGCGACCGGCGCCGACCAGTACGCGGCCGGCGTCGGGTCGGCGGCGACGGGTGCCGAGGAGCTGGCCGCCGGTGCCGGGCAGGTCGCCGACGGCGTCGACGGCATCACCGGAGGCATCGTGGAGAGCGCCGACGGGGCCGACGACCTGGCCGCCGGCGGCTACGAGGTGGCCGACGGCGCGGACCAGGTGGCCACCGGGGTGCGCCAGCTCGCCGACCAGGCCGGCCAGATCGACGCGCAGGTGCCCACCGAGGACCAGATCCAGGCCGGGCTCGACGAGATCTCCGCCGGCTACGAGGCCAACGCCGCCGAGATCGCCGCCGCCCTGGACGACGCCGCAGCGGCCCTGGGCTGCGCGACGACGCCGGAGAGCGACGCCTGCCAGCAGCTCGAGACGATCCGGACCGTCCTGGCCAGCCTGGACAGCGGGGTCACGGGCGAGTTCGACGAGCTCGCCGACCAGCTGCTCGGTGCCCGCGGGCAGCTCACCGACCTCGCCGAGGGGACCGACCAGCTCGCCACGGGGGCCGAGGGCGTCGCGACCGGTTCCCGCGGGATCGCCGACGGGACGGCCGAGCTCGGTGACGGGCTGCAGGACCTGGCCGACGGCAACCGACAGGTCGCCGCCGGTGCCGACGGCGTGGCTGCCGGCGCCTCCGAGCTCGCCGCCGGGGTGAACCAGCTCGACTCCGGGGCCCAGCAGCTCGCGGGCGGCGTGGACGACCTGGCCGACGGCGTCGGGCAGCTCGACGCGGGCGCCCAGGAGCTGGCGACCGGGGTGACCGGGTTCGCCTCGGGCGTGGGGCAGCTGGACTCCGGTGCGCAGGAGCTGGCGACCGGCGTCAGCGGGTTCGCCTCGGGCGTGGGGCAGCTGGACTCCGGTGCGCAGGAGCTGGCGACCGGCGTCAGCGGGTTCGCCTCCGGTGTGGGGCAGCTCGACTCCGGTGCGCAGCAGCTCGTGACCGGTGCCGACGGCGTGGCCGACGGCTCGGGGCAGCTCGCGGACGGCGTCGACCAGCTCGCCGACGGCGCCGACGAGCTCGCCGTCGGGCTGGACGAGGCCGCCGCGGGGATCCCGACCTACTCCGAGGACGAGCGGGAGAACCTCTCGGGCGTCGTCGCGAACCCGGTCTCGGCACCGGGGGTCGACGACCTGTCCACCGGTGCCACGGGACCGCTGTTCGCCGTCGTGGCCCTCTGGCTCGGGGCCCTCGGGCTGCTGACCGTGTACCCGCCGGTGGCAGCGCACGCGCTCGGCTCGACGCGGTCCTCGGTGCGGCTCACCCTCGAGGCTCTCGCCCTCCCGGCCGCGATCGGCGCCGGCACGGGTGCGCTCGTGGGCGGGATCCTCGCCGCGGTCGAGGGGGCGTCGCTCCTGGGCTGGGTCGGCGCGATCGCCATCGGCGTCCTGGTCTCGGTGTGCTTCGTCGCGGCGCACCTCGGCTTCCTCGGCTGGCTCGGCCACGTCGGGCGCGGCATCAGCCTGCTGATGGCGGTGCTGCTCATCGGCACCGGCGTCGTGGCCACCGTGCCGGACGCCCTGGTCTCGCTGGTGGAGTTCCTGCCCACCGGTGCCGGTCGGGACGCCTTCGCCGCGGTGCTGCTGCCCGCGGTGGGCGGACTGGGGCTGGCCCTGACCGCCCTGGTGCTGTGGACCGGCGTCGGGCTCGTGCTCGGGATCGCCGCCGCGGCACGCGCGCGGCGCACGCGGGTGGCGGCGCTGCTGCCCGCGTAG	MNRVRQNPWAVAAVALLPVLVLGILLASLWNPVDRLDTVPAAIVNDDEPVEMDGQTVPLGRQLAAGLVGGAEDSDVNYDWTITDTEQAAEGLDDGTFAAVVTIPEDFSAAATSFGSEDPTEARQATIDVSTPAGGRVVDDALARIVATTATTVLGSSLTETYVDNVLIGFNDLSDGIGEAADGANQLADGVDETASGADDLADGARQYADGVGQFASGVGEAADGGYALADGASQFASGVGQAADGGYALADGADQFASGVGQAADGGYALADGAQQYAAGVGQAASGADELATGADQYAAGVGSAATGAEELAAGAGQVADGVDGITGGIVESADGADDLAAGGYEVADGADQVATGVRQLADQAGQIDAQVPTEDQIQAGLDEISAGYEANAAEIAAALDDAAAALGCATTPESDACQQLETIRTVLASLDSGVTGEFDELADQLLGARGQLTDLAEGTDQLATGAEGVATGSRGIADGTAELGDGLQDLADGNRQVAAGADGVAAGASELAAGVNQLDSGAQQLAGGVDDLADGVGQLDAGAQELATGVTGFASGVGQLDSGAQELATGVSGFASGVGQLDSGAQELATGVSGFASGVGQLDSGAQQLVTGADGVADGSGQLADGVDQLADGADELAVGLDEAAAGIPTYSEDERENLSGVVANPVSAPGVDDLSTGATGPLFAVVALWLGALGLLTVYPPVAAHALGSTRSSVRLTLEALALPAAIGAGTGALVGGILAAVEGASLLGWVGAIAIGVLVSVCFVAAHLGFLGWLGHVGRGISLLMAVLLIGTGVVATVPDALVSLVEFLPTGAGRDAFAAVLLPAVGGLGLALTALVLWTGVGLVLGIAAAARARRTRVAALLPA				NA	NA	NA	NA	NA
AK001_01169	2871			hypothetical protein	GTGTCCTCCGTCCTCTACTCCCTCGGCCACTGGGCCGCCGGCGCCCGCCGCCTCGTGGTCGTCGCCTGGGTCGGCGTCCTCGTGGTGGTCGGTGGTGCCGGAGCTCTCGTCTACCAGGGCTTCGACAACTCGATCACCATCCCCGGGACGGAGTCCCAGCAGGCGCTCGACCAGCTCTCGGCGACGTTCCCCGAGGTCAGCGGCTCCTCCGCGCAGATCATCGTGGTCGCCCCCGAGGGCGGCACCATCGAGGACGACGACGTGCGCGACCCGGTCGAGGACGCCGCCGAGGACATCGAGGCGCTCGACGAGGTGCGCGTCGTGTCCACCCCCTACGACGAGATGCTGAGCGCCGCGGTCAGCGACGACGACCGCGCCACGATCCTGCAGGTCCAGCTCGACGGCGACGCCTTCTCCATCAGCGACGCCACCAAGGACGAGCTGCACGGCATCACCGACGAGCTCGCCGCGGCCCTGCCCGACGGCAGCCATGCCTCGCTCGGCGGTGAGCTCTTCTCCACCGAGCTGCCCGCGCTGAGCATCGTCGAGGCGATCGGTGTGGCCGTGGCGCTGATCGTCCTGATGATCACGCTCGGTTCGTTCGTCGCCGCGGGGCTGCCGCTGGTGAACGCGCTGGTCGGCGTCGGCGTCTCGATGCTGCTGCTCCTGGCCGCCACCGTGTTCGGCCCCATCAACTCCACGACCCCGATGCTCGGGCTGATGCTCGGCCTCGCCGTCGGCATCGACTACGCGCTGTTCATCGTCTCGCGGCACCAGGAGCTGCTGCGCGAGGGTGTCGAGGTGCGCGAGTCCGTGGCCCGCGCCACCGCGACGGCCGGGTCCGCCGTCGTCTTCGCCGGGCTGACCGTGATGATCGCCCTGGTGGGCCTCAGCGTCGCCGGCATCCCGTTCCTGTCGATCATGGGTGTCGCCGCGGCCGTGTCCGTGGGCCTCGCCGTCGTCGTCTCCCTGACGCTGCTGCCCGCGCTGCTCGCCATGGCCGGGGACCGGCTGCGGCCCCGGCCGAAGAAGGCCCGCCGCGGCAAGCGGTCCGGGCAGGCGCCCGCCGCGGACGCCACCGGGCACGAGAACCGGTTCTTCGCCGGGTGGGTCAAGGTCGTCACCAAGAAGCCGATCGTGACGATCGTGCTGGTCGTGGTCGCCCTCGGCGCCCTGGCGTTCCCGGCGACGAACCTGCGCCTCGCGCTGCCCGACGCCGGCTACCTGCCGGAGGACAACGAGGCCCGCCAGACGTACGACCTGGTCGGCGAGTACTTCGGCGACGGGTTCAACGGCCCCCTGATCGTCACCGGGTCCATCATCGAGTCCACCGACCCGCTGGGTCTGATGGACGACCTCGCCGCCGAGATCGAGGACCTGCCCGGCGTCGCGGACGTGCCCATGGCCACCCCGAACCAGACCGCCGACACCGGCATCATCCAGGTGATCCCCGAGGGCGCCCCGGACTCCGAGGCGACCAAGGCGCTCGTGGCCGAGATCCGGGACATGGAGGACTACTGGCTCAGCGAGTACGGCGTCGAGCTCGCCGTCACCGGCTTCACCGCCGTCGGCATCGACGTGTCCGACAAGCTCGGCGAGGCGCTGCTCCCGTTCGGGTTCGTCGTCGTCGGCCTGTCGCTGCTGCTGCTCATGATGGTGTTCCGGTCCATCTGGGTGCCCGTCAAGGCCACCGTCGGGTTCCTGCTGAGCGTCGGGGCGGCGTTCGGCGCCGTCACGCTCGTGTTCGAGCACGGGCTGTTCGCCGACGCGCTGCACGTGACCAAGCTCGGCCCCGTCATCAGCTTCATGCCCATCATCCTCATGGGCGTCCTGTTCGGCCTGGCCATGGACTACGAGGTCTTCCTCGTGTCCCGCATCCGCGAGGACTTCGTCCACAACGGCCGCCGCGCCCGCCGCGCGGTGCTCACCGGGTTCCAGGGCGCGGCCAAGGTCGTCACGGCCGCCGCCGTCATCATGTTCTCCGTGTTCGTGGCGTTCGTGCCCGAGGGTGACATGACGCTCAAACCCATCGCGCTGGGGCTCGCCGTCGGCGTGGCCGTCGACGCCTTCGTGGTGCGGATGGTGCTGGTGCCCGCGGTGCTCGCCCTGCTCGGCGACCGGGCCTGGTGGATCCCGCGCTGGCTCGACCGCGCCCTGCCGACGTTCGACGTCGAGGGCGAGGGCATCGCCCGCGAGCTGCGCCTCGCCGACTGGCCCGGGCCGCGGCCCGACGGCCGCGAGGACGCCGTCGCCGCGCACGAGGTCACCGTCGCCGGGCCGCACGCCCGCCCCGGCGACGCGCCGCTCGTCGGCCCGGTGAGCGTCCGGGTCCCCGCGGGCGGGGCGCTCGCCGTGCACGGTGACGCCACCGCGGCCGTCAACGCCCTGCTGCTGGCCGTCGCCGGCCGCATCCACCCGGACGACGGCGTGGTCAAGACCGCCGGGTACGTCCTGCCCGAACGGGCCCCGGCCGTCCGGTCCCGCGTCGCCGTCGTCGACGCCGCCGCCCCCGACGCGCCGGCCGCCGGTGCCGTGACGCAGGCCGTGCGCGAGGGCGCGCGCGTCGTCGTCGTCGACCGGACCGACGTCGTCGCCGACCGTGCCGACCGCGAGGCGCTCGCCCACGCGCTGTCGGCCGCCGCCGGCACCGGGACGACGCTGCTCGTCGGGTCCACCGGGGTCGCCGCGACCGACCTGCTGCCGACCGGGACGCCCGTCCTCGACGTCGGTTCCGGCTGGGGCTCCCCCGGCACGTTGCACGGCGGGGAGACTCCGCCACCGCCGCCGGCCGAGGAGCACGGCGCGGACGACGAGCACGCCGGGCACCCCGAGCACGACCAGAACTCCACCACCCAGGAGGTGCGGGCATGA	MSSVLYSLGHWAAGARRLVVVAWVGVLVVVGGAGALVYQGFDNSITIPGTESQQALDQLSATFPEVSGSSAQIIVVAPEGGTIEDDDVRDPVEDAAEDIEALDEVRVVSTPYDEMLSAAVSDDDRATILQVQLDGDAFSISDATKDELHGITDELAAALPDGSHASLGGELFSTELPALSIVEAIGVAVALIVLMITLGSFVAAGLPLVNALVGVGVSMLLLLAATVFGPINSTTPMLGLMLGLAVGIDYALFIVSRHQELLREGVEVRESVARATATAGSAVVFAGLTVMIALVGLSVAGIPFLSIMGVAAAVSVGLAVVVSLTLLPALLAMAGDRLRPRPKKARRGKRSGQAPAADATGHENRFFAGWVKVVTKKPIVTIVLVVVALGALAFPATNLRLALPDAGYLPEDNEARQTYDLVGEYFGDGFNGPLIVTGSIIESTDPLGLMDDLAAEIEDLPGVADVPMATPNQTADTGIIQVIPEGAPDSEATKALVAEIRDMEDYWLSEYGVELAVTGFTAVGIDVSDKLGEALLPFGFVVVGLSLLLLMMVFRSIWVPVKATVGFLLSVGAAFGAVTLVFEHGLFADALHVTKLGPVISFMPIILMGVLFGLAMDYEVFLVSRIREDFVHNGRRARRAVLTGFQGAAKVVTAAAVIMFSVFVAFVPEGDMTLKPIALGLAVGVAVDAFVVRMVLVPAVLALLGDRAWWIPRWLDRALPTFDVEGEGIARELRLADWPGPRPDGREDAVAAHEVTVAGPHARPGDAPLVGPVSVRVPAGGALAVHGDATAAVNALLLAVAGRIHPDDGVVKTAGYVLPERAPAVRSRVAVVDAAAPDAPAAGAVTQAVREGARVVVVDRTDVVADRADREALAHALSAAAGTGTTLLVGSTGVAATDLLPTGTPVLDVGSGWGSPGTLHGGETPPPPPAEEHGADDEHAGHPEHDQNSTTQEVRA	PGPT0028595_2	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-TOXINES_NEUTRALIZATION_YDF_SYSTEM,PGPT0028595-ydfJ-K11625	NA	NA
AK001_01170	648			hypothetical protein	GTGACCGCTGCACTGCCGGTGCAGACCACCAGCGTGCGCTCGTCCCGGCGCGAGCGCACCCGCGAACGGCTGCTCGACGCCGCCTTCGAGGTGTTCGCCGAGCACGGCATCGCCGGCGGGTCGATCGAGGCCGTCTGCGAGGCCGCCGGCTTCACCCGAGGCGCGTTCTACTCGAACTTCGCCTCCAAGGAGGAGCTCTTCCACGCGATCGTCGACCGCGAGGCCCGGCGCCACCTCGACGCGCTCGAGCGGGCCGCGGCGGAGATCGACACCTCGGCCGTCGCCACGGCCGAGGGCTTCCGCGAGGCCGTCACCGAGCTGGTCGCCGCCGTCGGACTCGACGAGGCGGGCCACCGGGCGTGGACCCTGATGAACGCCGAGTTCGAGCTGCTCGCCCTGCGCGAGCCCGAGGTCGCGACCCGCTACGTGGCCGAGCAGCAGAGACTGCGCGCCGAGGTGATGCGGGCGATCGAGGCGCTGCTCGAACGGTTCGGCCTGACCTTCGCCGTCGACACGGCCACCGCCGTCGACCTGCTCATGGACTCCGCCGAGTCGAGCACCCGTGCCGCCATGCTGGGCGCCCCGGCGGAGCAGCACCCCGTCGCCCGGCTGCAGGCCGTCGTCGACCTGCTCGTCCAGCCCTGCTGA	MTAALPVQTTSVRSSRRERTRERLLDAAFEVFAEHGIAGGSIEAVCEAAGFTRGAFYSNFASKEELFHAIVDREARRHLDALERAAAEIDTSAVATAEGFREAVTELVAAVGLDEAGHRAWTLMNAEFELLALREPEVATRYVAEQQRLRAEVMRAIEALLERFGLTFAVDTATAVDLLMDSAESSTRAAMLGAPAEQHPVARLQAVVDLLVQPC				NA	NA	NA	NA	NA
AK001_01171	885	dasC_3	COG0395	Diacetylchitobiose uptake system permease protein DasC	ATGACCGCCACCGCACCCCCTCGTGACGCCGGCGCGCCGGCGGCCCGCGCCCCGCGCCGCGACCCCGCGACGCGTCGCCGCTCCACGGGCATGCTGCTCACCACGCTGACCTGGATCCTCGCCGTCGGGTTCTTCTTCCCGGTGGCCTGGCTCGCGATGACCGCCTTCAAGCAAGAGGCCGAGGCGCAGTCCGACCCGCCGACCTTCTTCTTCACCCCGACGCTGGACCAGTTCCGGGCCGTCGTGGAGGGCGGTTCGGGTACCTACGTGCTCAACTCCGTCATCGCCACCGGGGTGTCGACCCTCCTGGTGCTGCTGCTCGGTATCCCCGCGGCGTACGCGCTGTCGATCCGTCCGGTCGAGAAGGTCAGCGACGTGCTGTTCTTCTTCATCTCCACCAAGATGCTGCCGGTCGTGGCGGTGATCGTGCCGATCTACGTGATCGCCGGCGAGATCCACGCCCTGGACAACATCTGGACCCTGGTCGTGCTCTACACCGCCATGAACCTGCCGCTGGCCGTGTGGATGATGCGGTCGTTCTTCCAGGAGGTCCCCGCCGAGGTGCTCGAGGCCGCCGCGATGGACGGCGCGGGGCTGCTCAAGACGCTGCGTTCGGTGCTCATGCCGATGGTGGCGCCGGGCATCGCCGCGACGGCGCTGATCTGCGTGATCTTCGCGTGGAACGAGTTCTTCTTCGCCCTGAACCTCACGGCGTCGCGGGCGGCGACCGTCCCGCTGTTCATCGTCTCGACGATGACCAGCGAGGGCCTGTTCCTGGCGCGGCTGTGCGCTGCAGCCCTGCTGGCCTCCCTGCCGGTGATCCTGGCGGGCTGGATCGCGCAGAAGCAGCTGGTCCGTGGGCTGTCGATGGGAGCGATCAAGTAG	MTATAPPRDAGAPAARAPRRDPATRRRSTGMLLTTLTWILAVGFFFPVAWLAMTAFKQEAEAQSDPPTFFFTPTLDQFRAVVEGGSGTYVLNSVIATGVSTLLVLLLGIPAAYALSIRPVEKVSDVLFFFISTKMLPVVAVIVPIYVIAGEIHALDNIWTLVVLYTAMNLPLAVWMMRSFFQEVPAEVLEAAAMDGAGLLKTLRSVLMPMVAPGIAATALICVIFAWNEFFFALNLTASRAATVPLFIVSTMTSEGLFLARLCAAALLASLPVILAGWIAQKQLVRGLSMGAIK	PGPT0016390_249	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016390-smoG|mtlG-K10229	NA	NA
AK001_01172	954	sugA	COG1175	Trehalose transport system permease protein SugA	ATGACGACGACGACCGTGGGCCACGCGCAGAGCCTGCGCCGCGCCCAGAGCAGCCGGGCCGCGAAGGACCGGCACACGCTGCCCCGTGCCGAGCGCTGGCGCCGTCGTGGCCCCCTGCTGCCGGCCCTGATCTTCACGATCGTGGTCACCCAGATCCCGTTCCTCGTGACGATCTGGTACTCGTTGCGCTCGCGGAACCTCCTCAACCCGGGCAGCGACCAGTTCGTGGGCCTGGCGAACTACGGCGACATCGTCCTGGACTCCACGTTCCGCCAAGCCGCCGTGAACTCGGTGGTCATCACGCTCGGGTGCGTCGTCGTGGCGATGGCGCTCGGCATCGGGCTCGCGCTGCTGCTCGACCGGTCGTTCCCCGGCCGCAGCGTGGCACGGACGCTGCTCATCACGCCCTTCCTGCTGATGCCCGTGGCGTCGTCGGTGCTCTGGTCGATGGCGATCCTCAACCCGACGTTCGGGCTGTTCAACTGGACGATCGGGCTGGTGGGCATCGACCCGGTGGACTGGACGTCGACGTTCCCCGTCCTGTCGATCGTCATGGCGCTGGTGTGGCAGTGGACGCCCTTCATGATGCTGCTGGTCCTCGCCGGGCTGCAGGCGCAGCCCAAGGACGTGCTCGAGGCGGCGCAGATGGACGGCGCAGGGCCGGGCCGGACCTTCGTGTCCATCACGCTGCCGCAGTTGCGGCGCTACATCGAGCTCGGCCTGCTGCTGGGGATCATCTACGTGGTCAACACGTTCGACCAGATCTACCTCATGACCGCCGGCGGGCCCGGGACGGCCAGCGCCAACCTGCCCTTCTACATCTACCAGCGCGCCTTCCTCGGGTTCGACGTGGGGCAGGCCGCCGCGATGGGCGTGGTCGTCGTCATCGCCACGATCATCGTCGCCTCCGCCGCGCTGCGCCTCATCTTCCGCAGCTTCGACGTCAAGGAGTGA	MTTTTVGHAQSLRRAQSSRAAKDRHTLPRAERWRRRGPLLPALIFTIVVTQIPFLVTIWYSLRSRNLLNPGSDQFVGLANYGDIVLDSTFRQAAVNSVVITLGCVVVAMALGIGLALLLDRSFPGRSVARTLLITPFLLMPVASSVLWSMAILNPTFGLFNWTIGLVGIDPVDWTSTFPVLSIVMALVWQWTPFMMLLVLAGLQAQPKDVLEAAQMDGAGPGRTFVSITLPQLRRYIELGLLLGIIYVVNTFDQIYLMTAGGPGTASANLPFYIYQRAFLGFDVGQAAAMGVVVVIATIIVASAALRLIFRSFDVKE	PGPT0016385_197	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016385-smoF|mtlF-K10228	NA	NA
AK001_01173	1389			hypothetical protein	ATGTTCGAGCCGCATCGCGTGCGACGGCGACCGAGGAGCGGTGGCGGACGGTCCCGCGCCGCCGCCGGGACCGTCGCGCTGACCCTGGGCCTCGGGGCCTGTGCCGGGGCCGGGGCCATCGGCGGCGACGGCGAGCAGATCGTCGTCGCCATCGTCTCCAACCCCCAGATGCAGGACGCGATCTCCCTGCAGGACCACTTCCGTGCCGAGCACCCCGGCGTCGACGTCCGGTTCGTCAGCCTCCCGGAGAACGAGGCCCGCGCCAAGATCACCGCCTCCGTCGCCACCGGCGGCGGCGAGTTCGACGTGGTCATGATCTCCAACTACGAGACGCCCATGTGGGCGGAGAACGGCTGGATCGAGAACCTCCAGCCGTACGCTGACGCCACCGACGGCTACGCGCCCGACGACTTCGTCCCGTCGGTCCGTGAGGCGCTCTCGGTGGACGGGGACCTCTACTCGGTGCCGTTCTACGGCGAGTCCTCGTTCCTCGCCTACCGCGCGGACCTCTTCGAGGCCGAGGGGCTCGAGATGCCGGAGCGGCCCACATGGGGCGACGTGCGCGAGCTCGCCGCCGAGCTCGACGACCCCGCGGACGACTTCTCCGGCGTGTGCCTGCGCGGCCTCGCCGGCTGGGGCGAGGTCATGGCGCCGTTGGACACGGTCATCAACACCCACGGCGGCAGCTGGTTCGACGAGGACTGGAACGCGACGCTCGACAGCCCGGAGGTCCGGCAGGCCGTGGAGACCTACGTCGACACCGTGCAGGAGTACGGCCAGCCCGGCGCGGCGACCTCGGGGTTCGGGGACTGCCTGACCCGGTTCTCCCAGGGCAACGCGGCCATGTGGTACGACGCGACCTCGATGGTCTCCAGCGTCGAGGACCCTGCCTCGTCCACCGTCGCCGGTGACGTCGGGTACGCGCCGGCGCCGGTGGCCGAGACCGACGCCGCGGGGTGGCTGTACTCGTGGTCGCTCGCGATCCCCTCGACCAGCGAGCACAAGGACGCGGCGTGGGACTTCGTCTCCTGGATGACGGACCGCGACTACATCCGCCTCGTCGGCGAGGAGCTGTCCTGGGAGCGGGTCCCACCGGGCAGCCGCCTCTCCACCTACGAGATCCCCGAGTACGCGGAGGTCTCCGAGGCCTACGCGGAGGCCACGCTCGCCTCGATGGGGGAGGCCACCCAGGACAACACGATGGTCCGGCCGGTGCCGTACCCCGGGATCCAGTTCGTCGGCATCCCCGAATTCCAGGATCTCGGCACGCGCGTCGGTCAGCAGATGTCGGCGGCCATCGCGGGGCAGCAGAGCGTCGCCGAGGCGCTCGAGCAGTCGCAGCGCTACGCCGAGACCGTGGCCGAGACCTACCGCGACGGAGGTTCGTGA	MFEPHRVRRRPRSGGGRSRAAAGTVALTLGLGACAGAGAIGGDGEQIVVAIVSNPQMQDAISLQDHFRAEHPGVDVRFVSLPENEARAKITASVATGGGEFDVVMISNYETPMWAENGWIENLQPYADATDGYAPDDFVPSVREALSVDGDLYSVPFYGESSFLAYRADLFEAEGLEMPERPTWGDVRELAAELDDPADDFSGVCLRGLAGWGEVMAPLDTVINTHGGSWFDEDWNATLDSPEVRQAVETYVDTVQEYGQPGAATSGFGDCLTRFSQGNAAMWYDATSMVSSVEDPASSTVAGDVGYAPAPVAETDAAGWLYSWSLAIPSTSEHKDAAWDFVSWMTDRDYIRLVGEELSWERVPPGSRLSTYEIPEYAEVSEAYAEATLASMGEATQDNTMVRPVPYPGIQFVGIPEFQDLGTRVGQQMSAAIAGQQSVAEALEQSQRYAETVAETYRDGGS	PGPT0016380_23	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016380-smoE|mtlE-K10227	NA	NA
AK001_01174	951	deoR_1	COG2390	Deoxyribonucleoside regulator	GTGAACGACGCCGCGCACGCACGCCTCCTCGTCGAGGTGAGCACCGACTACTACCTGGACAACCTGTCCAAGGTCGAGATCGCCAAGAACCGCGAGATCTCCCGCTTCCAGGTCGCCCGCCTGCTCACCGAGGCCCGGGAGGCGGGCGTCGTCCGCATCGAGATCGCCGCCCCCGCGCACCTCGACGCCGGACGGGCCCGGGCGCTCGCCGAGGAGCTGGGCGTCGAGGAGGTCGTCATCGTGCCGCGCGGCGCGGACCGCGACACGACCCGCGAGGGGCTCGCCCGCGAGCTGGCGCGCGTCACCGCGGCCCGCGTGAGAGCCGGCTCGACCGTGGGCGTGTCGTGGTCCCGCACCATCGAGACGGCCGTCCGCTTCCTCGGCACCCTCCCCCCCTGCGACGTGGTCCAGCTCGTCGGCGCCCTGCCCGTCGACGGCAGCGGCAACTCGCTCGAGCTCATCCAGCGCTTCCGGGGCATGGACGGCGTCCGGACCTGGCCCGTGTGGTCGCCGCTGCTCGTGGGCGACCCGACCACCGCCGCCGGCATGCGCCAGCAGCCGGAGATCGCCGCTGCCCTGGACCGTGCCGACGCTCTCGACCTCGCCGTCGTCGCCGTCGGCGCCTGGAACGCGACAGGATCGACGGTCTACCCCCAGGTCACGGCCGCCGAGCGGGAGGCCGCCGCTGCGGGCGGCACGGTGGCCGAGTGCTCCGGACGCCTCTTCGACGCCGCCGGACACCCGGTGCAGACCCCGCTGGACGACCGCGTCGTGGGCGTCACGCTCGACCAGCTCGTCCGCACTCAGGACGTCGTCGTGATCGGCTACGGCGCGGAGGCAGCCGTCGGCCTCCGGGCCGCCGCGGTCGGCGACATCGCGACCGTGCTCGTCATGGACGACGGCGCAGCGGTCGAGCTGGAACGGCTCACCGCCGCGCCGCGACCCGCCTGA	MNDAAHARLLVEVSTDYYLDNLSKVEIAKNREISRFQVARLLTEAREAGVVRIEIAAPAHLDAGRARALAEELGVEEVVIVPRGADRDTTREGLARELARVTAARVRAGSTVGVSWSRTIETAVRFLGTLPPCDVVQLVGALPVDGSGNSLELIQRFRGMDGVRTWPVWSPLLVGDPTTAAGMRQQPEIAAALDRADALDLAVVAVGAWNATGSTVYPQVTAAEREAAAAGGTVAECSGRLFDAAGHPVQTPLDDRVVGVTLDQLVRTQDVVVIGYGAEAAVGLRAAAVGDIATVLVMDDGAAVELERLTAAPRPA				NA	NA	NA	NA	NA
AK001_01175	1497	mtlK	COG0246	Mannitol 2-dehydrogenase	ATGACCGCACTCACCGACGAGACCGTGGGCCGCCTGCCGGGCGCCGCCGGCGAACCGCTGGCCGTCCCCGGCTACGACCGCAGCAGGTTGCGGGCGGGGATCGTGCACCTCGGGGTGGGCGGGTTCCACCGCGCCCACCAGGCGATGTACCTCGACGCGCTGATGGCGCGGGGCGAAGCCCTGGACTGGGGGATCTGCGGTGTGGGCGTGCTGCCGCACGACGCGCGGATGCGCGACGCGCTCATGGCGCAGGACGGGTTGTACACCCTGGTCCTGAAGCACCCGGACGGGACGCTCGACGGTCGCGTCGTCGGCTCGGTCGTGGACTTCCTGCACGCCCCCGAGGACCCGGAGGCGGTCGTCGAGAAGATCGCGTCGCCCGAGATCCGCATCGTCTCCCTGACCGTCACCGAGGGCGGCTACAACGTGCACCCCGTGACCGGGGAGTTCGACGACTCCGACCCGGCCGTGCAGGCCGACCTCGTCGACGGCGCCGTCCCCGCGACGTCGTTCGGCCTGGTCACCGAGGCGCTGCGGCGCCGGCGCGACCGGGGGGTGGGCCCGCTGACCGTGATGAGCTGCGACAACATCCAGGGCAACGGCGACGTCGCCCGCCGGATGTTCACCGCGTTCGCCCGGCTGAAGGACCCCGCGCTGGCCGCCTGGATCACGGAGCACGTCCCGTTCCCGAACTCGATGGTCGACCGCATCACCCCGGTCACCACGGACGCGGACCGCGCCCTGGTCGCGGAACGGTTCGGGATCGACGACGCCTGGCCCGTCGTCGCCGAACCGTTCTGCCAGTGGGTCCTCGAGGACCGCTTCGCCGCGGGCCGGCCCCCGCTCGAGCAGGTCGGCGTCCAGGTCGTCGACGACGTCGAGCCCTACGAGCTCATGAAGCTCCGCCTGCTCAACGCCAGCCACCAGGCGCTCTGCTACCTCGGTTACCTCAGCGGGTACCGGTACGCGCACGAGGTCTGCCAGGACGAGGTGTTCGTGCGGTTCATCCTCGACTACATGGAGCGCGAGGCGACGCCCACGCTGCAGGAGGTCCCCGGCATCGACCTCGACGACTACCGCCGCACGCTCGTCGAGCGGTTCGCCAACCCCGCCGTCCGCGACACGCTCGCCCGGCTGTGCGCCGAGTCCTCGGACCGCATCCCGAAGTGGCTCCTGCCGGTGGTGCGCCAGAACCTGGCCGCCGGGGGCGAGGTCCACCGGGCGGCGGCCGTCGTCGCCGCGTGGGCGCGCTACGACGAGGGGGTCGACGAGCAGGGCGCGCCGATCGAGATCGTCGACCGGCTGGCCGGGCGGCTGCACGCCGCCGCCTCCTCCCAGCACGACGACCCCCTCGCGTTCCTGCGCGACCGCGAGCTGTTCGGCGACCTCGTGGACGACCGGCGGTTCACCGAGCACTACCTCGCGGCCCTGGCGGCGTTGCACGACGCCGGCGCGCACCGGCTGGTCGAGCGCCTGGCGGCCGGAGAGGTGCTCTGA	MTALTDETVGRLPGAAGEPLAVPGYDRSRLRAGIVHLGVGGFHRAHQAMYLDALMARGEALDWGICGVGVLPHDARMRDALMAQDGLYTLVLKHPDGTLDGRVVGSVVDFLHAPEDPEAVVEKIASPEIRIVSLTVTEGGYNVHPVTGEFDDSDPAVQADLVDGAVPATSFGLVTEALRRRRDRGVGPLTVMSCDNIQGNGDVARRMFTAFARLKDPALAAWITEHVPFPNSMVDRITPVTTDADRALVAERFGIDDAWPVVAEPFCQWVLEDRFAAGRPPLEQVGVQVVDDVEPYELMKLRLLNASHQALCYLGYLSGYRYAHEVCQDEVFVRFILDYMEREATPTLQEVPGIDLDDYRRTLVERFANPAVRDTLARLCAESSDRIPKWLLPVVRQNLAAGGEVHRAAAVVAAWARYDEGVDEQGAPIEIVDRLAGRLHAAASSQHDDPLAFLRDRELFGDLVDDRRFTEHYLAALAALHDAGAHRLVERLAAGEVL	PGPT0018400_204	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0018400-mtlK-K00045	NA	NA
AK001_01176	2130	dpp5	COG1506	Dipeptidyl-peptidase 5	GTGACTCAGGACACCTCCGCGGAGACCCCGCGCACCCCCTTCGACGACCTCGACGACTACCTGGCCCTCGGCCGCCTCGGCGGCCTCGCCCTCAGTGCGGACGGGCGGCGGCTCGTCACGACCGTGCAGACCCTCGACCCGGAGCGCACCGGCTCCGTCTCGGCGCTGTGGGAGATCGACCCGACCGGCGCCCGGCCGGCGCGACGCCTGACCCGCAGCGCGGCCGGCGAGTCCGCCGCGGTCTTCACCGCCGGCGGCGACCTGCTCTTCACCTCCGCCCGCCCCGACCCCGAGAGCACGGGGTCCGACGACGAGAAGAAGGCGGCCCTGTGGGCGCTGCCCGCGGACGGCGGCGAGGCGCGCGTGGTGGCGACGACGCCGGGCGGCGTCGGCGGTGTCCTCGCCGCCCGGGACGCCGACGTCGTCTCCCTGTCGACCGCCGTGCTGCCCTCGGCCGACGACCTCGAGGCCGACGCCGAGCTCCGCACGGCGCGCCGTGACACGAAGGTGAACGCGATCTGGCACACCGGCTACCCGGTGCGGCACTGGGACCACGACCTGGGTCCGGACGCGCCGCGCCGGTTCGTGCTGGGCACGGACGAGGTGGCCGAGGGCGAGCGGGCCGACCTGCACCAGCTCACCGGTCCCGGCCCGCAGCTCGTGGAGCACGGCGCGGCGCTCTCCCCGGACGGGACCACGCTGGTCACGACGTGGGCGGTCGCGGACCCGGGGGCCGCGCGCCGCGAGATCCTCGTGGCGATCGACACCGCCACCGGCGAGCGCCGCACCCTGGTCGACGACCCGGACGCCGAGATCGGCTCCCCGAAGGTCTCCCCGGACGGCCGGTGGGTCGCCTACGTCACCTCGACGATCACCACGCCGACCGACCCGCCCGTGGTGCGCGCCGGCCTCGTGGCCCTCGACGGGTCGGGCGACCCCGAGGTGCTGGCCGACGACTGGGACCGCTGGCCGGGCTCCCTGACCTGGCTGCCGGCGTCGGACGGGCTGCTCGTCACGGCGGACGACGACGGTCGCGGCCCGGTCTTCCTGCTCACGTTCGACGGCGGTCCCGGCGAGGGGCCGGTGACCGTGGAGCGGGTGACCGCCGACGACGCCGTGTTCACGGACGTCTGCGTGGCGCCCGACGCCTCGGCGGTGTTCGCGCTGCGCAGCTCCTACGCGGCTCCGGCCGAACCCGTGCGGGTCGACCTGGCGGCGTTCGTCGCGTCCGGGCCGGCGGGGGAGCGCGAGCCGGTGGCCGCCGTCGTGCTGCCGTCGCCGGCCGCGGCTCCCGAGCTGCCGGGCTCGCTGACCGAGGTGGAGACCGTCGCCGACGACGGGGCCCGTGTGCGGGCCTGGCTGGCGCTGCCCGCCGGTGCCTCGCCGTCGGACCCGGCGCCGCTGCTGCTGTGGATCCACGGCGGGCCGCTCGGCTCGTGGAACGCGTGGTCGTGGCGGTGGAACCCGTGGCTGATGGTGGCCCGCGGGTACGCCGTGCTGCTGCCGGACCCGGCGCTGTCGACCGGGTACGGGCAGGAGTTCGTCCGCCGCGGGTGGGGTGCGTGGGGAGACGCGCCGTTCACCGACCTCATGGCGGTGCAGGACGCCGCCGAGGCACGCGACGACGTCGACGCCTCGCGCACGGCCGCGATGGGCGGCTCGTTCGGCGGGTACATGGCCAACTGGGTCGCCGGGCACACCGACCGGTTCCGCGCGATCGTCACGCACGCGTCGCTGTGGGCGCTGGACGGGTTCGGCCCCACCACGGACCACGCCTACTACTGGGGCCGCGAGATGACCCCGGAGATGAACGAGGCGCACAGCCCGCACCGGTTCGTGGGGGAGATCCGCACCCCGATGCTGGTGATCCACGGCGACAAGGACTACCGGGTGCCGATCGGCGAGGGCCTGCGGCTGTGGCGCGAGCTGCTGGCCGACTCGGGGCTGCCGGCCGCCGACGACGGCACGACGGTGCACCGGTTCCTGTACTTCCCCGACGAGAACCACTGGATCCTGACCCCGCAGCACGCCAAGGTCTGGTACGCGGGGGTGCTGGCGTTCCTGGCCGAGCACGTCCTCGAGGTGCCGGCCGGCGAGGGCGACCGGGTGCTGCCCGACGTGCTGGGCTGA	MTQDTSAETPRTPFDDLDDYLALGRLGGLALSADGRRLVTTVQTLDPERTGSVSALWEIDPTGARPARRLTRSAAGESAAVFTAGGDLLFTSARPDPESTGSDDEKKAALWALPADGGEARVVATTPGGVGGVLAARDADVVSLSTAVLPSADDLEADAELRTARRDTKVNAIWHTGYPVRHWDHDLGPDAPRRFVLGTDEVAEGERADLHQLTGPGPQLVEHGAALSPDGTTLVTTWAVADPGAARREILVAIDTATGERRTLVDDPDAEIGSPKVSPDGRWVAYVTSTITTPTDPPVVRAGLVALDGSGDPEVLADDWDRWPGSLTWLPASDGLLVTADDDGRGPVFLLTFDGGPGEGPVTVERVTADDAVFTDVCVAPDASAVFALRSSYAAPAEPVRVDLAAFVASGPAGEREPVAAVVLPSPAAAPELPGSLTEVETVADDGARVRAWLALPAGASPSDPAPLLLWIHGGPLGSWNAWSWRWNPWLMVARGYAVLLPDPALSTGYGQEFVRRGWGAWGDAPFTDLMAVQDAAEARDDVDASRTAAMGGSFGGYMANWVAGHTDRFRAIVTHASLWALDGFGPTTDHAYYWGREMTPEMNEAHSPHRFVGEIRTPMLVIHGDKDYRVPIGEGLRLWRELLADSGLPAADDGTTVHRFLYFPDENHWILTPQHAKVWYAGVLAFLAEHVLEVPAGEGDRVLPDVLG				NA	NA	NA	NA	NA
AK001_01177	1173	mnmC_1		tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmC	GTGAGTCACGACAGCGCCCCGCCTCCCCTGCCCGCCAAGGTCGACCTCGTCGTCGTCGGTGCGGGCATCGTGGGGCTGGCGCACGCCGTCGAGGCCCACGCCCGGGGCCACTCGGTGCTCGTCCTGGACGGCGCCGCCCGGCCCGACGGGTCCACCGCCCGGCGCAGCGGGCACGTGGCCGTCACCACCCAGGACTCGACCGCGCTGGCCTGCGCCCTGGCCTCCCGGGAGCGCTGGCTGAAGCTCGGCCGCGACGCCGGCTTCGGGGTGCGCGAGAGCGGCGCGGTCGTCGTCGCCCAGCACGCCGACGAGCTCGCCGTGCTCGACGACCTCGTCGCCGCGCGGGCCGGCGACGCCGAGCTGCTCGACCACCGCAGCGTGGCCGACCGGACCCCGGTCGCGCACGCCGTCGGGGGCGTGTGGCTCCCCCTCGACCTGCGGCTGGACCCCTACGCCGCGCTGCTGGCGATCTGCGACTGGCTCTCCTCGCGCCCCCAGGCGGACGTCGCCTGGCGGACCGCCGCCCAGACCTTCGACGCCGGCAGCGGCTGCACCCTGGTGCGCACCTCCCGGGGCGAGGTCGTGGCCAAGCGGGTCGTGGTCGCCGCGGGGCAGGCGGTCGGCTCCCTCTTCTGGGCCGCCGGGGCCGACCTGACCCCCGTGCGCCGCCAGCTCCTGCGCGTCGCACCGCCCACGCCCGACGACGTCGCCGCGCAGGCCCGGCTCGCCTCCGGGCCCGTCGTGCTCGGCGGCACGACCGTGCTGCGCGACGCCGCCTACCTGCACTCGCGGGCCCTCGGCGAGGTGCGCGACCGGTGGCGCCGGCACCGGCCGGACCTGCTCGCCGCGGAGATCCACCTGTCGCTGCACTCCCAGGCCGACGGCTCCGTGGTCGTCGGCGACGGACGGGCGCCCGCCGACGTGCCGGGCCGTTCCGAGGCGGTGGACGGGCTGCTGCTCGACGCGACCGCCGAGCTGCTCGGCACCGGTCCGCTCACGGTGCTCGGCCGCTGGACCGCGACGGAGCCGGTGCGCGCCCGCACCACGCCGGCCGCCGACCCGTTCGTCGTCACCGAGCCGCTGCCCGGCGTGCGGACCGTCAACGTCACCGACGGGCTGGCCACGACGACGGCGCTGGGGCTGGCCCCGCGGGTGCTCGACGAGCTCTTCTGA	MSHDSAPPPLPAKVDLVVVGAGIVGLAHAVEAHARGHSVLVLDGAARPDGSTARRSGHVAVTTQDSTALACALASRERWLKLGRDAGFGVRESGAVVVAQHADELAVLDDLVAARAGDAELLDHRSVADRTPVAHAVGGVWLPLDLRLDPYAALLAICDWLSSRPQADVAWRTAAQTFDAGSGCTLVRTSRGEVVAKRVVVAAGQAVGSLFWAAGADLTPVRRQLLRVAPPTPDDVAAQARLASGPVVLGGTTVLRDAAYLHSRALGEVRDRWRRHRPDLLAAEIHLSLHSQADGSVVVGDGRAPADVPGRSEAVDGLLLDATAELLGTGPLTVLGRWTATEPVRARTTPAADPFVVTEPLPGVRTVNVTDGLATTTALGLAPRVLDELF	PGPT0020390_135	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061	NA	NA
AK001_01178	1299			putative sugar-binding periplasmic protein	ATGCGTAGCGGACGACTCGTGTCAGCGACGGCGGGTGCCGCCGTCCTCGCCCTGGGCCTGGCGGCCTGCGGCGGATCCGGAGACACCGGCGACACCTCCGACGGGAGCACCGGCGGCGAGGACATGGCCGGTGGCGAGGTCGAGGTCTTCACCTGGTGGGCCGCCGGCTCGGAGAAGGCCGGGCTCGACGCCCTGGTGGGGGTGTTCGAGGAGCAGCACCCCGACTTCACCTTCGTCAACGGCGCCGTGGCGGGCGGCGCGGGCTCCGCGGCGAAGGACCTGCTGCAGTCGCGGCTGCAGGCGGGCGACCCGCCGGACACGTTCCAGGCGCACGCCGGAGCGGAGCTGCAGGACTACATCGACGCCGCGCAGATCGAGGACGTCTCGGCCCTGTACGACGAGTTCGGCCTGACCGACGCGTTCCCGCCCGACCTCGTCGACCGGCTGACCACCGAGGACGGGGCGATCTACTCGGTCCCGTCGAACATCCACCGCGCGAACGTGGTGTGGGCCAACCCCACCGTGCTCGAGGACGCGGGGCTGGACCCCGAGGCCGAGTACGCCGACCTCGACGCCTGGTACGAGGCGCTCGACGCCGTGCAGGAGTCCGGCGCGACCGCGCTGTCGATCGCGACGACATGGACGCAGGTCCACCTGCTGGAGACCGTGCTGCTCTCCGAGCTCGGCCCCGAGGCCTACACCGGGCTGTGGGACGGGACCACCGACTGGGAGGGCCCCGAGGTGACGGCCGCGCTCGAGCACTTCGAGCGGCTGATGAGCTACACCAACGGCGACCGGGACGGCCTCGACTGGCCCGACGCGACCCAGCAGGTCATCGACGGCGACGCCGGCTTCAACGTGATGGGCGACTGGGCCGAGGCGGCGTTCCAGGAGGCGGGCTCGATGGCGCCCGACGACTACGTCTACTTCCCGGTCCCGGGGACCGACGGGGAGTTCGACTTCCTGGCGGACTCGTTCACCATGCCGGTCGGGGCCCCGAACCCCGACGGGACGCGCGCCTGGCTGGACACCGCCGGGTCGACCGAGGGCCAGGAGGCGTTCAACAAGGCCAAGGGGTCCATCCCGGCCCGCACGGACGCCGACACCTCGGACTTCTCCGAGTACCAGCAGACGGCCGTCGAGGCGTTCGCCAGCGACACCATCGTGTCCTCGCTCGCGCACGGCGCCGCGACACCGGTCGCCACGCTCAACGCGATCTCGGACGCCACGAGCAAGTTCACCACCGGCGCCTCGGACCTGGCCACGTTCCAGTCCGAGCTGGCCGCGGCGACCATGTGA	MRSGRLVSATAGAAVLALGLAACGGSGDTGDTSDGSTGGEDMAGGEVEVFTWWAAGSEKAGLDALVGVFEEQHPDFTFVNGAVAGGAGSAAKDLLQSRLQAGDPPDTFQAHAGAELQDYIDAAQIEDVSALYDEFGLTDAFPPDLVDRLTTEDGAIYSVPSNIHRANVVWANPTVLEDAGLDPEAEYADLDAWYEALDAVQESGATALSIATTWTQVHLLETVLLSELGPEAYTGLWDGTTDWEGPEVTAALEHFERLMSYTNGDRDGLDWPDATQQVIDGDAGFNVMGDWAEAAFQEAGSMAPDDYVYFPVPGTDGEFDFLADSFTMPVGAPNPDGTRAWLDTAGSTEGQEAFNKAKGSIPARTDADTSDFSEYQQTAVEAFASDTIVSSLAHGAATPVATLNAISDATSKFTTGASDLATFQSELAAATM	PGPT0016570_117	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016570-gtsA|glcE-K17315	NA	NA
AK001_01179	903			hypothetical protein	ATGAGACACCGTCTGCGGCGGTTCGGAGCACCGCTCCTGCTGCTCGCCCCGTCGCTGATCCTGCTGGCCGTGTTCGTCTACGGTCTCATCGCCGCGAACTTCCGGACCTCGATCACGGACAACCACAACGCGGCCCAGGCCACCGGTCAGGAGCCCGTGACGACGGTCTGGTTCGAGAACTACGTCGCCCTGCTGGGCAGCGACGACTTCCAGCACTCGCTGACGAACCTCGTGCTGTTCACGGTCGCGTTCCTCGTCGGGACCATGGTGATGGGGTTCGGCTGGGCCTGGATGCTCGACAAGCCGGACCGCGGCGAGGGGTTCTTCCGCTCGATCTACCTGTTCCCCATGGCGGTGTCGTTCGTGGCCTCCGGCGTCGTGTGGCGGTGGCTGCTGAACTCCAACCAGGGCGAGGGCGCCAGCGGCCTCAACCGCCTGTTCCAGATGGTCGGGCTGGACTTCCTGCAGAACAACTGGTGGAACAACATCACGTTCGGCATCCTGGCGATCGCCCTGCCGGCGATCTGGCAGCTCTCGGGGTACGTGATGGCCCTGTTCCTCGCCGGCTTCCGCGGCATCCCCGACGAGCTGCGGGAGGCCGCCCGCGTGGACGGCGCCCGCGAGTGGCAGCTCTACCGGCTGGTGCTCTTCCCGCAGCTGTCGCCGATCGCCCTGTCCGCGCTGATCATCATCGGTCACATGTCGCTGAAGTCGTTCGACCTCATCATGTCGATCTCCAAGCCGGCGAACTACCAGACCAAGGTGCCGGCGGTCGACATGTACGTGTTCAAGTCGAGCTTCAACTACGCCGACGCGGCCGCCGTCGGGACGATCCTGCTGGTCATCGTCGCGCTGGTCGTCGTGCCCTACCTCGTCCGGACCCACAAGGCGGAGAAGCGATGA	MRHRLRRFGAPLLLLAPSLILLAVFVYGLIAANFRTSITDNHNAAQATGQEPVTTVWFENYVALLGSDDFQHSLTNLVLFTVAFLVGTMVMGFGWAWMLDKPDRGEGFFRSIYLFPMAVSFVASGVVWRWLLNSNQGEGASGLNRLFQMVGLDFLQNNWWNNITFGILAIALPAIWQLSGYVMALFLAGFRGIPDELREAARVDGAREWQLYRLVLFPQLSPIALSALIIIGHMSLKSFDLIMSISKPANYQTKVPAVDMYVFKSSFNYADAAAVGTILLVIVALVVVPYLVRTHKAEKR	PGPT0016575_565	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016575-gtsB|glcF-K17316	NA	NA
AK001_01180	894	ycjP	COG0395	Inner membrane ABC transporter permease protein YcjP	ATGAGCACCCACGTCTCCACCCCGCCGGGCGTCACGGGCGAACCCGTCGAGCTCCGGGACGACAGAGCGCGCCCCCGGTTCACGGTCGGCCGCACCGCCAAGTACGCGGCGATGATCGTGTTCGTCCTCATCGTGCTGATCCCCGTCTACGTGCTGTTCGTGACGAGCTTCAAGGGGGCCGGCGACGCCTCCCCGGCGCGCGCCTGGAACCTGCCCACCGACTGGACCCTCGACAACTGGGTCGGCGCCTGGAACGCCCTGTCCCCCGCCATCGGGCGCACCTTCCAGATGGTCGTCCCGGCCGCGATCATCTCGGCGATGCTCGGGTCGATGAACGGGTTCGTGCTGTCGCGCTGGTCGTTCCGCGGCGCCGACGTCGTCTTCACGCTGATCCTGTTCGGCATGTTCATCCCGTACCAGGCGGTGATGATCCCGCTGCTGGAGCTGATGCTCGGGGCAGGGGTCCCCAGCGGCGTCCCGTCGCTGATCATCCTGCACGTCATCTACGGCATCCCGATCACCACGCTGATCTTCCGCAACTACTACCAGACCGTCCCGCACGAGCTGGTCGAGGCCGGACGGGTCGACGGCGCGGGGATGCTGCGCACCTACTGGTCGATCATCCTGCCGATCTCGGTGCCGAGCTTCGTCGTCGTGCTCATCTGGCAGTTCACCAACGCGTGGAACGACTTCCTGTTCGCGGTGTTCTTCTCCTCGAGCCAGAACGGCCCGGTCACCCTGGCGCTGAACAACCTGGCCAACGGCGCGCTGCTGCAGGACTACGGCGTCTCGATGGCGGGCGCCCTGCTCGCGTCGCTGCCGCCGCTGCTGGTGTACATCCTGCTCGGCAAGTACTTCGTCGGGGGGCTGATGTCGGGGTCGGTCAAGGGCTGA	MSTHVSTPPGVTGEPVELRDDRARPRFTVGRTAKYAAMIVFVLIVLIPVYVLFVTSFKGAGDASPARAWNLPTDWTLDNWVGAWNALSPAIGRTFQMVVPAAIISAMLGSMNGFVLSRWSFRGADVVFTLILFGMFIPYQAVMIPLLELMLGAGVPSGVPSLIILHVIYGIPITTLIFRNYYQTVPHELVEAGRVDGAGMLRTYWSIILPISVPSFVVVLIWQFTNAWNDFLFAVFFSSSQNGPVTLALNNLANGALLQDYGVSMAGALLASLPPLLVYILLGKYFVGGLMSGSVKG	PGPT0016580_249	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016580-gtsC|glcG-K17317	NA	NA
AK001_01181	2040			hypothetical protein	GTGACCGCGCCCGCCGCCCCGACGACCCGCCCCGCCCCGGCGCCCACGTCGGCGCGCCCCTGGTGGCTGATCGCCGCCGGGCCGGGCGCCGTCGTCGTCGCCCTGCTCGCCCTGCTGGCCGCCGGCTCCTACTCGGGCGCCTTCGACCCGCTGGGGACCTTCAGCGACCCGGGGCCGGCGGTGCGCTGGGGGCTGCCGGCCGCGACGGTGCTGTCCGAGCTCGCGCTTGCCGTGACCGTGGGCGGCCTGTTCGCGGTCGCGTTCCTGCTGCCGCGCGGACGGCACACCGACCGCGTCCTGCTCGTGGCCGGCTGGGCGTCGAGCCTGTGGGCGGTCGCCGCCGTCGTCCAGCTCGTCCTCAGCTACTCCTACGTCTCGACGATCTCCCTCGCCGCGGAGACCTTCGGGCAGGGCCTGTGGCAGTTCGTGCTCGACGTCGAGCTGGGGCAGATCGGGCTGTGGACGATCCTGCTGGCTGCGGTCACGTCGGCCCTCGCGCTGGGGGTGCGGGGTCCGGTCGGAGCCCTGTGGACGGCCGTGCTGCCCGGGGCGGCGCTCGCCCTGCAGTCCACGACCGGGCACGCCGCCGGGGCCGTCAACCACGACCTGGCCGTCGGGGCGATGCTGCTGCACCTGGTCGGCGCGGCGCTGTGGGTCGGGGGGCTCGCGGCGCTGCTCGTCGTGGTGCTCACCCGCACCAGGAGGCGCCGGGACGACGACCTCCTCGCCGCGAGCGCGGTCGCCCGGTTCTCCCCGGTCGCGGCCTGGTGCTTCGTCCTGGTCGCCCTGTCCGGCCTGATGAGTGCCCTGATCCGCATGCAGCACCTGGACGACCTCGTCACCCGGTGGGGCGTCCTGCTGCAGGCCAAGGTGCTCCTGCTGCTCGCGCTCGGTGCCTTCGGCTGGGCCCACCGGCGCTGGGTCGTCGGTCGGCTCGCCACCGACCCCGGCCGCGTGCGACGGCTGTTCTGGCAGCTCCTCGCCGCCGAGCTCGTCACCATCGGGGCGGTCTCCGGCGTCGCGGTGGCGCTCGGGTCGACGGCGCCGCCGGTGCCGGACGAGGAGCTCGTCGACGCCTCGCCCGCCTTCCAGCTCACCGGCTACGCCCTGCCGCCCGAGAACACGCTGGGCAACTACTTCACGCAGTGGAGCTTCGACCCCCTGTTCGCCGTCGCCAGCGTCGCCGGGGCGCTGGTCTACGTCACCTGGGCGCTGCGGCTGCGCCGCCGCGGCGACCGCTGGCCCCTCGGTCGCACGATCTCCTGGTGCGCCGGCATGGCGATCATGGTCTGGGTGACGAACGGCGGCCCCTCGGTGTACGGCCACGTGATCTTCTCCGGGCACATGACCCAGCACATGATCCTGGCGATGGTCGTCCCGCTGCTGCTGGTCCTCGCGGCCCCCGTGACGCTGCTGCTGCGGGCGGTCCCGGCCCGCAAGGACGGCTCCCGCGGGCCCCGGGAGTGGGTGCTCGCGATCGTGCACTCCCGCGTCGGCAGCTTCGTGGCGAAGCCGGTCGTGGCGGCGGTGGTCTTCGCCGGCGGCATGATCGCCTTCTACTTCACGCCGGTGTTCGGGTGGGCGCTGTCCAACCACGCCGGGCACGTGTGGATGATCATCCACTTCACGCTCGCCGGGTACCTGTTCGCCAACGCTCTCGTCGGCATCGACCCCGGTCCGCAGCGCCCGCCGTACCCGCAGCGGCTGCTCCTGCTGTTCGCCACCATGGTGTTCCACGCCTTCTTCGGGGTCGTGCTCACCACCGGCACGTCGCTGCTCGTGGCCGACTGGTTCGGGAACATGGGACGGCCGTGGGGTCTGCCCGCGATCGACGACCAGCAGCTCGGCGGCGCCATCGCCTGGGGGATCGGGGAGCTGCCCACGCTGGTGCTCGCCGTCGTCGTGGGCGTGCAGTGGGCCCGGTCCGACGAGCGCGAGGCCCGACGCAGCGACCGCCGGGCGGAGCGGGACGACGACGCCGAGCTGCGGGCCTACAACCGGATGCTGGCCGACATGGCCGAGCGCGACGGGCGGGACTGA	MTAPAAPTTRPAPAPTSARPWWLIAAGPGAVVVALLALLAAGSYSGAFDPLGTFSDPGPAVRWGLPAATVLSELALAVTVGGLFAVAFLLPRGRHTDRVLLVAGWASSLWAVAAVVQLVLSYSYVSTISLAAETFGQGLWQFVLDVELGQIGLWTILLAAVTSALALGVRGPVGALWTAVLPGAALALQSTTGHAAGAVNHDLAVGAMLLHLVGAALWVGGLAALLVVVLTRTRRRRDDDLLAASAVARFSPVAAWCFVLVALSGLMSALIRMQHLDDLVTRWGVLLQAKVLLLLALGAFGWAHRRWVVGRLATDPGRVRRLFWQLLAAELVTIGAVSGVAVALGSTAPPVPDEELVDASPAFQLTGYALPPENTLGNYFTQWSFDPLFAVASVAGALVYVTWALRLRRRGDRWPLGRTISWCAGMAIMVWVTNGGPSVYGHVIFSGHMTQHMILAMVVPLLLVLAAPVTLLLRAVPARKDGSRGPREWVLAIVHSRVGSFVAKPVVAAVVFAGGMIAFYFTPVFGWALSNHAGHVWMIIHFTLAGYLFANALVGIDPGPQRPPYPQRLLLLFATMVFHAFFGVVLTTGTSLLVADWFGNMGRPWGLPAIDDQQLGGAIAWGIGELPTLVLAVVVGVQWARSDEREARRSDRRAERDDDAELRAYNRMLADMAERDGRD				NA	NA	NA	NA	NA
AK001_01182	1518	pdhC_1	COG0508	Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complex	ATGAGCACCCAGCGTTTCCCCCTGCCGGACGTCGGTGAGGGGCTGACCGAGGCCGAGATCGTCGAGTGGAAGGTCGCCGTCGGCGACACCGTCGAGGTCAACCAGGTCGTCGTCGAGATCGAGACCGCCAAGTCCCTCGTGGAGCTGCCCAGCCCGTGGGCCGGCACCGTGACCGCGCTGCTGGCCGAGGAGGGCACCACGGTCGACGTGGGCGCCCCGATCCTCGAGATCGGCGACGGCGCGGCACCGGCCACCGAGCCCGCGGCACCGGCCGCGCCCGTCGAGGGGACCGCCGCGCCGCAGAGCCCGTCGAACGGGGAGTCCTCCGGGTCGGTGCTCGTCGGGTACGGCACCGCCGACGCCGGGGCGGGCGGACGGCGCCGGCGTCGGCGCGGGGGGACCCCTGCGCCGACGGCCGAGGCCGCCGCGACGCCGCCCCCGGCTCCGGCTGCCCCGGCCGCTCCGGCTGCTCCGGCTGCCCCGGCACCGGCCGCCGCCGCGACGCCGGCCCCGACGCCGGAGCCCCCCGCGCCGTCCGGCCCCTCGATCGACCGCGCGATGGTGAGCGTGCCGGCGGCCTCGTCCCCGGCCGACGCACCGTCGTCGACCCGGGTGCGGGTGCTGGCCAAGCCGCCGGTGCGCAAGCTGGCCCGCGACCTGGGGGTCGACCTGGCCTCCGTGCACCCCACCGGCCCCGGCGGGATCGTCACCCGTGAGGACGTCACCGCCCACGCGGCGGCCGCCGAACCGCGGGCGCTCGCGACCTACCCCGGTGACGACCAGCCCTGGATGGCCTCGGGCGGCGTCTCCGACGACGGTCGCACCACCCGCGTCCCGGTCAAGTCCGTGCGCCGGCGGACCGCGGAGGCGATGGTGGCCAGCGCGTTCACCGCCCCGCACGTGACGGTCTTCCACACCGTCGACGTCACGAAGACGATGAAGCTCGTCGAGCGGCTCAAGAGCGACCGTGACTTCGCCGACGTGCGGGTGACGCCGCTGCTCATCGCGGCGAAGGCGGCGCTGCTGGCCATCCAGCGGCACCCGGAGATCAACGCGAGCTGGGACGACGAGGCGCAGGAGATCGTCTACCAGCACTACGTGAACCTCGGGATCGCCGCGGCGACCCCCCGGGGCCTCGTGGTGCCCAACGTCAAGGACGCCCACCGCCTCGAGCTGCTCGGGCTCGCCCAGGCGCTCGGCGAGCTGACGGCGACCGCGCGGGCCGGACGCACGACGCCGGTGGACATGTCCGGGGGCACGTTCACCATCACCAACGTGGGCGTGTTCGGCATCGACACCGGGACGCCGATCCTCAACCCGGGGGAGTCGGGCATCCTCGCGTTCGGCGCGATCCGCCAGCAGCCGTGGGTGCACAAGGGCAAGATCAAGCCGCGCTGGGTCACCCAGCTCGCGCTGAGCTTCGACCACCGGCTCGTCGACGGCGGGCTGGGCTCGCGCTTCCTGTCCGACGTCGCGAAGGTGCTGGAGGACCCCGCGCAGGGGCTCGTCTGGGGCTGA	MSTQRFPLPDVGEGLTEAEIVEWKVAVGDTVEVNQVVVEIETAKSLVELPSPWAGTVTALLAEEGTTVDVGAPILEIGDGAAPATEPAAPAAPVEGTAAPQSPSNGESSGSVLVGYGTADAGAGGRRRRRRGGTPAPTAEAAATPPPAPAAPAAPAAPAAPAPAAAATPAPTPEPPAPSGPSIDRAMVSVPAASSPADAPSSTRVRVLAKPPVRKLARDLGVDLASVHPTGPGGIVTREDVTAHAAAAEPRALATYPGDDQPWMASGGVSDDGRTTRVPVKSVRRRTAEAMVASAFTAPHVTVFHTVDVTKTMKLVERLKSDRDFADVRVTPLLIAAKAALLAIQRHPEINASWDDEAQEIVYQHYVNLGIAAATPRGLVVPNVKDAHRLELLGLAQALGELTATARAGRTTPVDMSGGTFTITNVGVFGIDTGTPILNPGESGILAFGAIRQQPWVHKGKIKPRWVTQLALSFDHRLVDGGLGSRFLSDVAKVLEDPAQGLVWG				NA	NA	NA	NA	NA
AK001_01183	1008	bkdB_1	COG0022	3-methyl-2-oxobutanoate dehydrogenase subunit beta	ATGAGCACCCAGACCATGCCGCTGGCCAAGGCGGTCACCGCCGGCCTGCGTGCCGCCCTCGAGGCCGACCCGTCGGTGATGCTCATGGGCGAGGACATCGGCCGGCTCGGCGGCGTCTTCCGCGTCACCGACGGGCTCCAGAAGGACTTCGGCGAGCACCGGGTCGTCGACACCCCGCTGGCGGAGTCCGGCATCGTCGGCACGGCCATCGGCCTCGCGATGCGCGGCTACCGGCCCGTGTGCGAGATCCAGTTCGACGGCTTCGTCTTCCCCGCCTACGACCAGATCACCACCCAGCTCGCCAAGATCCACAACCGCTCCCGCGGGCGGATCCAGGTGCCCGTCGTCATCCGGATCCCCTACGGCGGCGGGATCGGCGCCGTCGAGCACCACTCGGAGTCGCCGGAGGCGCTGTTCGCGCACACGGCCGGCCTGCGGGTCGTCTCCCCGGCCACGCCGCAGGACGCCTACGACATGATGCGCGCCGCCGTCGCCTCCCCGGACCCGGTGATCTTCCTCGAGCCCAAGGGGCGCTACTGGTCCAAGGGTGACGTCGACCTGGACAGCCCCGTGCCGTCCCTGGACGACGCCGCCGGCCCGGACCCGCTCGGGACGGCCCGGGTCGCCCGGTCCGGGACCGACGTGACCCTGGTCGCCTACGGACCGACGGTCGCCACGGCGCTGTCCGCCGCCGAGGCGCTCGCCGCCGAGGGCACGAGCGCCGAGGTCGTGGACCTGCGGTCGGTCTCCCCGCTGGACGTGCCCACCGTCGCGGAGTCGGTGCGCCGCACCGGTCGCTGCGTCGTCGTGCACGAGGCGCCGTCGTTCTTCGGCTCGGGGGCGGAGCTCGCCGCACGCCTGACCGAGGAGTGCTTCTACTCCCTCGAGGCACCCGTGCTGCGGGTCGGCGGGTACCACGCGCCCTACCCGGTGGCGAAGCTCGAGCACGAGTACCTGCCGAGCGTCGACCGCGTCCTGGACGCCGTCGACCGCACCCTGGCCCACTGA	MSTQTMPLAKAVTAGLRAALEADPSVMLMGEDIGRLGGVFRVTDGLQKDFGEHRVVDTPLAESGIVGTAIGLAMRGYRPVCEIQFDGFVFPAYDQITTQLAKIHNRSRGRIQVPVVIRIPYGGGIGAVEHHSESPEALFAHTAGLRVVSPATPQDAYDMMRAAVASPDPVIFLEPKGRYWSKGDVDLDSPVPSLDDAAGPDPLGTARVARSGTDVTLVAYGPTVATALSAAEALAAEGTSAEVVDLRSVSPLDVPTVAESVRRTGRCVVVHEAPSFFGSGAELAARLTEECFYSLEAPVLRVGGYHAPYPVAKLEHEYLPSVDRVLDAVDRTLAH	PGPT0008862_1569	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167	NA	NA
AK001_01184	1197	bkdA_1	COG1071	3-methyl-2-oxobutanoate dehydrogenase subunit alpha	GTGCCGCACCAGGTCATCGACGGGTCCGACGTCGGGTCCGCCGACGTCACCCCGCTCGTCCAGCTCGTCGCCCCCACCGGGGAGCGCGTCCACGAACCCGACAACGACGGTGACCATCCCGGTTACGCGGCACGGGTCGCCCACCTGACCGGTGACGACCTGCGCGCGATGTACCGCGACATGGTCCTGACGCGCCGGTTCGACGACGAGGCCACCGCGCTGCAGCGACAGGGCGAGCTCGCCCTGTACGCCCAGGCGACCGGCCAGGAGGCCGCGCAGGTGGGGCCCGCCCACGCGCTGGCCGCCCCGGACATGGTGTTCCCCTCGTATCGCGAGCACGGCATCCTGCACGTCCGCGGCGTCGACCCGGTCGACCGGCTGCGGCTGTACCGCGGCCAGGACCACGGCGGCTGGGACCCCGCGGAGCACAACGTCGCGCTGTACACGCTCGTCATCGGCTCCCACGTGCTGCACGCCACCGGGTACGCCATGGGCGTCCAGCGCGACGGCGCCGTCGGGACCGGCGACCCGGAACGGGACACCGCCGTCGTCGCCTGCTTCGGCGACGGCGCGACGAGCCAGGGCGACGTCAGCGAGGCGCTCGTGTTCGCCGCCGTCAACGACGCCCCCGTCGTGTTCTGGTGCCAGAACAACCAGTGGGCCATCTCCGAGCCGACCACCCGTCAGTCCAGCGTCCCGCTGTACCGCCGCGGCGAGGGCTTCGGCGTGCCGAGCGTGCGCGTGGACGGCAACGACGTCCTCGCCTGCTACGCCGTGATGGCCGAGGCGCTGGAACGGGCCCACGCCGGTCACGGACCCACGTTCGTGGAGGCGTACACGTACCGGATGGGTGCCCACACCACCTCCGACGACCCCACCCGGTACCGCGAGCGTGCCGAGGAGGAGTACTGGCGCCAGCGCGACCCCATCGACCGGCTCGCGGCCCTGCTGCGCGCCGAGGAGCACTGGGACGACGACTGGGCGGCCGGCGTCGCCGCCGAGGCCGACGCGCTCGGCGAGACCCTGCGGGCCGGCGTCCGCGCCCTGGGCGCCCCGGAGACCACGTCGATGTTCGACCACGTCTACGCCACGCCGCACGCGCAGGTCGCCGCCGAGCGCGCCTGGTTCGAGCGGTACGAGGCCGAGACGGCCGAGCAGACCGCGCAGGACGCCGAGACCGCGGAGGTGGCCCGATGA	MPHQVIDGSDVGSADVTPLVQLVAPTGERVHEPDNDGDHPGYAARVAHLTGDDLRAMYRDMVLTRRFDDEATALQRQGELALYAQATGQEAAQVGPAHALAAPDMVFPSYREHGILHVRGVDPVDRLRLYRGQDHGGWDPAEHNVALYTLVIGSHVLHATGYAMGVQRDGAVGTGDPERDTAVVACFGDGATSQGDVSEALVFAAVNDAPVVFWCQNNQWAISEPTTRQSSVPLYRRGEGFGVPSVRVDGNDVLACYAVMAEALERAHAGHGPTFVEAYTYRMGAHTTSDDPTRYRERAEEEYWRQRDPIDRLAALLRAEEHWDDDWAAGVAAEADALGETLRAGVRALGAPETTSMFDHVYATPHAQVAAERAWFERYEAETAEQTAQDAETAEVAR	PGPT0008861_1204	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166	NA	NA
AK001_01185	2067	caiT		L-carnitine/gamma-butyrobetaine antiporter	GTGACCTCCACACCGCCGACACAGGACTCCGCCACCTCGTCGGAGCACGACCCGGACTCCGAGGGCCGTCGCTCGGCGATCCTGAGGCCCGTCTTCATCCCGGCCTCCATCATCATCATCGGGCTGATCGTCGCCACGATCGTCTTCGCCAACGTGGCCGGCGACGCGCTCGAGGAGGCCACGACGCAGCTCAACACCTGGATCACCGACGGTGTCGGCTGGTGGTACGTCATCGCCGTCAACATCTTCCTGGTGTTCGCGCTCTACTGCGCGTTCTCCAGGATCGGGCTCATCCGGCTCGGCCGGGACGGAGAGGGCCCGGAGTTCGGGGTCGTCTCCTGGTTCCTCATGCTCTTCAGCGCCGGCATGGGCATCGGGCTCGTCTTCTTCGGCGTCGCCGAGCCGCTGTGGCACTACGTGGCCCCGCCCGAGGCCTTCGGCAACACCCCGGAGTCGGACGCCGCCGCGCGCGAGTCGGTCGGCCTGATGATGCTGCAGTGGGGCTTCCACCCCTGGGCCATCTACGCCGTCGTCGGCCTGGGCCTGGCATACATGTCCTTCCGGCGCGGACGCCCGCTGGCCGTGCGCTGGCTGCTCGAGCCGCTCATCGGCCGCAAGCGCGTCGAGGGCTGGATGGGCCACACCGTGGACACCGTCGCCATCGTGGGCACCCTGTTCGGCGTCGCGACCTCGTTCGGGTTCGGCATCAGCCAGATCCTCGGCGGCCTGGAGTTCCTCGGCTGGGCCGAGACGTCCGACCCGCTGATCATCGGACTGATCACGGGCATCACGGCGGTCGCGGTGTGGTCCGTGGTCTCCGGCGTCCACAAGGGCCTGAAGTGGCTGTCGAACTTCAACATGTCCGTGGCCGCGCTGCTGGCCCTGGTGGTCTTCCTGCTCGGCCCGACGATCTTCCTGCTGAAGTCGATCCCGGAGAACGCCGGCGTCTACCTCTCGCTGCTGCCCGAGACGATGTTCCACGCCGGCCCGTTCTCCAGCGACGGCTGGGAGGCCGCCTGGACCATCGCCTACTGGGGCTGGTGGACCAGCTGGGCGCCCTTCGTCGGCATGTTCATCGCCCGCATCTCCCGCGGGCGCACCATCCGCGAGTTCGTCGTCGGCGTGCTCCTCGCGCCGACCATGGCCTCCCTGCTGTGGTTCACGATCTTCGGCGACTCGGGAATCCTGCAGCAGCGCGAGCAGGGCACGATGCTGGTCGAGGACCCCGAGACGGGCGACATGGTGGTCAACAGCACCACGGCGCTGTTCCAGCTCTTCGAGTCGTTCCCCGGCGGTCTGCCCGTCCTGCTGTCCGTGGTCGCGATGCTCGTGGTCGTGCTGTTCTTCGTCACGTCCTCCGACTCCGGCTCTCTGGTCATCGACATGCTCGCCTCCGGTGGCAGCACCCAGACCTCCGCCACGACCCGCGTCTACTGGGCCGTGCTGGAGGGCGTGGCCGCCGCGGTGCTGCTCGTGGTCGGCGGCAACGTCGCCCTGACGGCGTTGCAGACGTTGTCGATCTCGACCGCCGCACCCTTCTCGATCATCCTCGTCCTGGCGTGCATCTCCCTGATCAAGGCGTTCCGCCACGAGGTGGCCACGATGCCGAGCTACATCCAGGTCCTGCCGCAGTCCGAGGAGGCCGAGCCCGAGCCGCCACCGCTGGCCTCCGCGCTGCGCCACCGTCCGCAGCTGGGCGACGTCTCGATGACCCTCGACGGGCTGTCGACGACGCGCTCGAACGGACGGCCGGCGGCCGCACCGGAACCGGAGCCCGAGGCGGAACCGGAGCCGCAGATCATCACCTACCGGACGCTGCACCCGAGCGACGTCGTCCTCGACCCGGAGACGGGCGACCCCGTCGAGGTCGAGCAGGTCGAGGACCCGCTGGCCGGTGAGGTGTTCGACACCCCGGAGTTCGAGTCCTCCCAGGAGTTCCTCAACCAGGGCGGCCAGCTCGACGAGGACGGGAACCCGATCCCGCTGGACACCGACGAGGACGGCACCGGGGAGGACGGGGACCCGGCGGACCGGTCGGAGGAGCCGGAACCGCGCTCGACGTCCTGA	MTSTPPTQDSATSSEHDPDSEGRRSAILRPVFIPASIIIIGLIVATIVFANVAGDALEEATTQLNTWITDGVGWWYVIAVNIFLVFALYCAFSRIGLIRLGRDGEGPEFGVVSWFLMLFSAGMGIGLVFFGVAEPLWHYVAPPEAFGNTPESDAAARESVGLMMLQWGFHPWAIYAVVGLGLAYMSFRRGRPLAVRWLLEPLIGRKRVEGWMGHTVDTVAIVGTLFGVATSFGFGISQILGGLEFLGWAETSDPLIIGLITGITAVAVWSVVSGVHKGLKWLSNFNMSVAALLALVVFLLGPTIFLLKSIPENAGVYLSLLPETMFHAGPFSSDGWEAAWTIAYWGWWTSWAPFVGMFIARISRGRTIREFVVGVLLAPTMASLLWFTIFGDSGILQQREQGTMLVEDPETGDMVVNSTTALFQLFESFPGGLPVLLSVVAMLVVVLFFVTSSDSGSLVIDMLASGGSTQTSATTRVYWAVLEGVAAAVLLVVGGNVALTALQTLSISTAAPFSIILVLACISLIKAFRHEVATMPSYIQVLPQSEEAEPEPPPLASALRHRPQLGDVSMTLDGLSTTRSNGRPAAAPEPEPEAEPEPQIITYRTLHPSDVVLDPETGDPVEVEQVEDPLAGEVFDTPEFESSQEFLNQGGQLDEDGNPIPLDTDEDGTGEDGDPADRSEEPEPRSTS	PGPT0013600_838	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020	NA	NA
AK001_01186	1035	fas3		putative 33.6 kDa protein in fasciation locus	ATGAGGGGCCCCGGCACGAGCGCCGGCCCGGACCTCGACATGCGCACCCGTTTCTACGCCGAGCTCGACCCGCTGCTGGACGCCCACCCGGACCTGGACGTCGTCCTCGCCGTCATCGGCGCCGCCCAGCTCGCCCGGGTGGCGGATCGTCACCCCGGCCGCGTGGTCGACGTCGGCATCCGCGAGCAGGCCATGATCGGCGTCGCCGGCGGGCTGGCGCTGACCGGACGGCGCCCCGTCGTGCACACGTACGCCCCGTTCCTCGTCGAACGCCCCTACGAACAGCTCAAGATCTCGCTCGGTCACCAGGACGTCGGCGCGATCCTCGTCAGCATCGGCGCGTCCTTCGACGCGAGCGCCGCGGGACGCACCCACCAGGCCCCGGCCGACGTCGCCCTCGTCGCAGCACTGCCCGGCTGGACGGTCCACGTGCCCGGGCACCCGGACGAGGTCGCCGCGATCCTGCGGGCCGAGGCCGGCCGGACGGGACGCGTCTACGTCCGGCTGTCCGGGCAGCGCAACGAGCGGCCACGGCCCACCGACGGACGGGTCCACCTGGTGCGCGACGTCGCCGACGGACCCGGCGCCGCTCCCGCGCCGCTCGTGCTCGCCGTCGGGCCGATGCTCGACACGGTGCTCGCCGCCACCGCCGACCTGCCGGTGCGGGTCGCGTACACGGCGACGCCGCACCCCCTGGACGCGGTCGGGCTGCGGCGGCTGGCCGGGCCGACGCCGGCGCTCGCCGTCGTCGAGCCGTACCTGGAGGGCACGAGCGCGGCCGCCGTGGCGGCGGCGCTCGCCGACCGGCCGGCGCGCGTCGTCCACGTCGGGGTGCCCCGGGACGTCGAGCTGCGGCGGTACGGCTCGCCGGACGACCACGCCGCGGCGCACGGGCTGGACGTGGCGGGCGTGCGCCGTCGGGTCGAGACGTTGGTCCCTCGTCGCGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGCGGCCCCCCCCCCCCCCCCCCCCCCCCCCCGCCCGGCCGACGAGATCGGCGGTCGCTGA	MRGPGTSAGPDLDMRTRFYAELDPLLDAHPDLDVVLAVIGAAQLARVADRHPGRVVDVGIREQAMIGVAGGLALTGRRPVVHTYAPFLVERPYEQLKISLGHQDVGAILVSIGASFDASAAGRTHQAPADVALVAALPGWTVHVPGHPDEVAAILRAEAGRTGRVYVRLSGQRNERPRPTDGRVHLVRDVADGPGAAPAPLVLAVGPMLDTVLAATADLPVRVAYTATPHPLDAVGLRRLAGPTPALAVVEPYLEGTSAAAVAAALADRPARVVHVGVPRDVELRRYGSPDDHAAAHGLDVAGVRRRVETLVPRRGGGGGGGGGGAAPPPPPPPPRPADEIGGR	PGPT0011200_8990	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615	NA	NA
AK001_01187	729	fas2		Ferredoxin fas2	ATGACGACGACACGGCTCGGGCCCGCCCACCGGCTGGACGCCGGCAGGGTCCGTGACCTCGTGGCCCGCGTGACCGGCGACGAGAAGCACGATCCCAGCGCCCACTCCACGCTCGACGTCGTGCGGGTCCTGTACGACCAGGTGCTGCACGTCGATCCCGACGCGCCCGACGACCCGGACCGCGACCGGTTCGTGCTGTCCAAGGGCCACGGGCCCGCGTCCACCTACGCCGTGCTGGCCGCCCGCGGCTTCTTCCCCGAGTACTGGCTGGACGACGTCGCCTCGTGGGACTCGGCGCTCGGGCACCACCCGGACCGCACCCTCGTGCCCGGCGTCGAGATCGGCAGCGGCTCGCTGGGCCACGGGCTCCCGCTCGCCGTCGGCATGGCTCTCGGTCTGCGGGTACGCTCCCCGGCACGCGTCGTGGTGCTCGTCGGGGACGCCGAGCTGGACGAGGGCAGCAACGCCGAGGCGATCCAGGTCGCGGGGCGGTTCGCGCTGGGCAACCTCACCTGCGTCGTCGTCGACAACCGCAGCGACGGGCACGGCTGGCCGGGCGGCGTCGCGGCACGGTTCGCCGTCGAGGGGTGGACGACGACGGACGTCGACACCCGCTCGGACGACGGGCTCGCGGCCGCGTTGCGCCGGGCCGAGCCCGACCGGCCCACCGCCGTCGTCGTCGACACGACGCGGGTCGCCACGGCCACGGGACGGACGGTGACGGCATGA	MTTTRLGPAHRLDAGRVRDLVARVTGDEKHDPSAHSTLDVVRVLYDQVLHVDPDAPDDPDRDRFVLSKGHGPASTYAVLAARGFFPEYWLDDVASWDSALGHHPDRTLVPGVEIGSGSLGHGLPLAVGMALGLRVRSPARVVVLVGDAELDEGSNAEAIQVAGRFALGNLTCVVVDNRSDGHGWPGGVAARFAVEGWTTTDVDTRSDDGLAAALRRAEPDRPTAVVVDTTRVATATGRTVTA	PGPT0011200_11173	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615	NA	NA
AK001_01188	474	soxR	COG0789	Redox-sensitive transcriptional activator SoxR	GTGGTGGTCGAGCGCTACCTGACGATCGGGGACGTCGCGCGCCGCAGCGGCGTCGCGCCGTCGGCCCTGCGCTTCTACGAGGAACGAGGCCTCATCGCGGCCCGTCGCACGGGCGGGAACCAACGCCGCTACGAGCGCACGACGCTGCGCCGCGTGGCCTTCATCCGCACGGCGTCGCGGCTCGGACTGACGCTCGAGCAGATCGGGGACGCCCTGGCGACGCTGCCCGACGGGCGCACCCCCACCGCCGCGGACTGGCGGCTGCTGTCGCAATCCTGGCGCAGCCTGCTCGACGAACGGATCGCCGTCCTCGAACGGTTGCGCGACGACCTCGACTCCTGCGTCGGCTGCGGCTGCCTGTCCCTGGACCGGTGCGCGCTGCAGAACCCCGACGACCGGGCCGCGGCCCTGGGCCCGGGGCCGCGCTACCTCGAGGGCGACTCGCCCTCCGACGTCGTGGGCGAAGGTCGGTGA	MVVERYLTIGDVARRSGVAPSALRFYEERGLIAARRTGGNQRRYERTTLRRVAFIRTASRLGLTLEQIGDALATLPDGRTPTAADWRLLSQSWRSLLDERIAVLERLRDDLDSCVGCGCLSLDRCALQNPDDRAAALGPGPRYLEGDSPSDVVGEGR	PGPT0012955_129	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	NITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012955-soxR-K13639	NA	NA
AK001_01189	393			hypothetical protein	ATGCCGTCACGTCGCGACGGTGTGACATCGGCGCGTCCCGGCTACGGTCGGGGGATGGACGCGACCGCGGACGAGCTCATGGTGACCGAGCGACGACTCGCGCGGGGCGCCGGCGGCGACTACGCCGAGGTGCTGCACCCGGACGCCGTGGTCGTCGTCCCGGGCGCTGTGCTCGACAAGGCGGCTTGTGTCGCGGCGATGGACTTCTCGCCGGGCTGGGACGAGGTGGATCTCGGCGACGTGCAGCTCGTGCGGAGCGCCGACACCGCGACGGTGGTCTACCGGTTCACGGGGCGCCGGGGTGGGGACACCTACGCGGCGACGCTGGCCAGCACGTACGTGAGCACCGACGACGGCTGGCGACTGCTCGTCCACCAGCAGACACCCGACTGA	MPSRRDGVTSARPGYGRGMDATADELMVTERRLARGAGGDYAEVLHPDAVVVVPGAVLDKAACVAAMDFSPGWDEVDLGDVQLVRSADTATVVYRFTGRRGGDTYAATLASTYVSTDDGWRLLVHQQTPD				NA	NA	NA	NA	NA
AK001_01190	681	yhfK	COG0702	putative sugar epimerase YhfK	ATGAAGGTCGTCGTCATCGGCGCGCTCGGCAAGGTCGCCCGCCAGCTGGTCCCCCTCCTGGCCGACGGCGGGTCCGGCCCCGCGGTCGACGTCGTCGGTGTCGTGCGCAAGGAGGAGCAGATCGACCGGGTCGCCGACATCGGCGGCGAGCCGCTGCTCCTCGACGTCGAGCACGCGAGCACCGAGGAGATGGCCCAGGCGTTCGACGGCGCCGACGCCGTGATCTGGTCCGCCGGCGCGGGCGGCGGCAACCCCGACCGCACCTACGCCGTCGACCGGGACGCCGCGATCCGCTCCATGGACGCCGCCGCCGCCGCGGGCGTGCGCCGCTACGTGATGGTGTCGTGGGTCGGTTCCGTGCCGGACCACGGCGTCCCGTCCGACGCGAGCTTCTACCCGTACGCGGACGCCAAGCTCGCCGCCGACGACCACCTGCGCACCACCGACCTGGACTGGACGATCCTGGGTCCGGGCAGCCTGACCGACGACCCGCCCACCGGACGGATCCGGGTCCTGGGCGCCGACGAGCGGGTCGAGCGCGGGGAGCCCTCGCAGGTGCCGCGCGCCGACGTCGCCCAGGTCGCGGCCGCGTCGCTGCGCATCGACACCACGATCGGGCAGTTCGTACGCTTCACGACCGGTGACGAGACGATCCCGGCGGCGCTCCGAAACCTGGACTAG	MKVVVIGALGKVARQLVPLLADGGSGPAVDVVGVVRKEEQIDRVADIGGEPLLLDVEHASTEEMAQAFDGADAVIWSAGAGGGNPDRTYAVDRDAAIRSMDAAAAAGVRRYVMVSWVGSVPDHGVPSDASFYPYADAKLAADDHLRTTDLDWTILGPGSLTDDPPTGRIRVLGADERVERGEPSQVPRADVAQVAAASLRIDTTIGQFVRFTTGDETIPAALRNLD				NA	NA	NA	NA	NA
AK001_01191	201			hypothetical protein	ATGAGCGAGGAGGACGACGCCGAGCAGGTGCTGCTGGCCGACGACCACGGCGTGCGGTGGCCTCTGTGGACCGAGGGGGAACCTGCCGCCGAGAACCGCTTCGCCCTGACAGCCCCGGTGCGACGACGGCTGCGTCGTGGGGCCGCGGACTTCAACGCCTCCGACGACTCCTTGACGGGCTGGCCTCGTCGCGAGGCCTAG	MSEEDDAEQVLLADDHGVRWPLWTEGEPAAENRFALTAPVRRRLRRGAADFNASDDSLTGWPRREA				NA	NA	NA	NA	NA
AK001_01192	1740	poxB	COG0028	Pyruvate dehydrogenase [ubiquinone]	ATGGCTCGCACCGTCGCCGAACGCCTCGTCGACCAGCTCGTCGCCGCCGGTGTCGAACGCATCTACGGCATCGTCGGGGACTCCCTGAACCCTGTCGTGGACGCGGTCCGCCGCACCGACGGCATCGACTGGGTGCACGTGCGCCACGAGGAGGCTGCCGCCTTCGCCGCGGCCGCCGAGGCCGAGGTCACCGGGAAGCTCGCCGTGTGCGCCGGCTCCTGCGGCCCCGGCAACCTGCACCTGATCAACGGGCTGTACGACGCGAACCGGTCCGGCGTGCCGGTCCTGGCCATCGCCTCGCACATCCCCAGCGCGCAGATCGGCACGAAGTTCTTCCAGGAGACCCACCCGGACCGGCTGTTCACCGAGGCCTCGGTGTTCTCCGAGATGATCTCGACGGCCGCCCAGCTCCCCCGGGTCACGCGCTCGGCGATCCAGCACGCCCTGGCCGAGCCGGGCGTCGCGGTCCTCACCCTGCCCGGCGACGTCGCCGACGAGGAGGTGCCCGACGACGACGCACCCATCCCCATCCCGGGCGCCTGCCCCGCGCGCGTCGTCCCGCACGACGCGGACGTCGCCGCGCTGGCCGACGCGATCAACGCCGCCCGCAAGGTGACGCTGTTCGTCGGTGCCGGTGCGCGCGACGCCCGCGCGGAGGTCCTCGAGCTCGCCGACCTCGCGGCGGCCCCGGTGGGGCATTCGCTGCGCGGCAAGGAGATCATCCAGTACGACAACCCGCACGACGTCGGGATGTCCGGCCTGCTCGGCTACGGCTCCTGCCACGAGGCGGTCCACGACGCCGACCTGCTGATCCTCGTCGGCACCGACTTCCCGTACGACTCGTTCCTGCCCGACGACGTCCCCACCGCGCAGATCGACATCGACGCCTCGCACCTGGGCCGGCGCACACGCCTGGACCTGCCGGTGCACGGCGACGTCGGCGAGACGCTGCGGCTGCTCAACCCGCAGATCGAGCGCAAGAGCGACCGGAAGTTCCTCGAGGCGATGGTCGACCGCCACGCCAAGGTCATGACCAAGGTGGTCGGCGCGTACACCCGCAAGGTGGAGAAGCACACGCCGATCCACCCGGAGTACGCCGCCGTGCAGCTCGACGAGGCCGCCGCCGAGGACGCCGTGTTCACCGTCGACACCGGCATGAACAACGTGTGGGCCGCCCGGTACCTCACGCCGAACGGTCGGCGCCGCGTGATCGGGTCGTTCATCCACGGGTCGATGGCGAACGCTCTGCCGCACGCCATCGGGGTGTCGATGTCCCAGCCCGACCGCCAGGTGGTGGCGCTGGCCGGCGACGGCGGGCTGTCGATGCTGCTGGGCGAGCTGATCACCGTCCGGGCCTACGACCTGCCCGTGACGGTCGTCGTCTTCAACAACTCCACCCTCGGCATGGTGAAGCTGGAGATGCTCGTCGAGGGGCTGCCCTCGCACGGCACCGACTCGCCCGAGGTGGACTACAGCGCGATCGGCACCGCCGTCGGCATCCCCTCGCAGCGCGTGACCAAGCCGAAGGACCTCGCCAAGGCCTTCTCGAGCGCGCTGGACTCCGACGGCCCCGCCCTGGTCGAGGTCATGACCGACCCGCGGGCGCTGTCCATCCCGCCGTCGATCACCACCGGTCAGATCCGGGGGTTCACCACGGCGATGACGAAGGAGATCTTCGGCGGCGGCATGGGCGAGGTCATGTCCATGGCGCGCTCGAACCTGCGCAACCTGCCCCGCTGA	MARTVAERLVDQLVAAGVERIYGIVGDSLNPVVDAVRRTDGIDWVHVRHEEAAAFAAAAEAEVTGKLAVCAGSCGPGNLHLINGLYDANRSGVPVLAIASHIPSAQIGTKFFQETHPDRLFTEASVFSEMISTAAQLPRVTRSAIQHALAEPGVAVLTLPGDVADEEVPDDDAPIPIPGACPARVVPHDADVAALADAINAARKVTLFVGAGARDARAEVLELADLAAAPVGHSLRGKEIIQYDNPHDVGMSGLLGYGSCHEAVHDADLLILVGTDFPYDSFLPDDVPTAQIDIDASHLGRRTRLDLPVHGDVGETLRLLNPQIERKSDRKFLEAMVDRHAKVMTKVVGAYTRKVEKHTPIHPEYAAVQLDEAAAEDAVFTVDTGMNNVWAARYLTPNGRRRVIGSFIHGSMANALPHAIGVSMSQPDRQVVALAGDGGLSMLLGELITVRAYDLPVTVVVFNNSTLGMVKLEMLVEGLPSHGTDSPEVDYSAIGTAVGIPSQRVTKPKDLAKAFSSALDSDGPALVEVMTDPRALSIPPSITTGQIRGFTTAMTKEIFGGGMGEVMSMARSNLRNLPR	PGPT0001371_912	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156	NA	NA
AK001_01193	1161	pat	COG0079	Putative phenylalanine aminotransferase	ATGAAGTTCATGGCGGTCATCGTGGCAGGTCTCGCGCCGTACGGCACCCCCGTGCCGCGCGAGATGGCATCCTGGACCGCTGTGAGCTCACCGGCATCCGACCAGACCGTCCCGCTGCGCGCCGCCGTCGCGGCCCTGCCCGCCTACGTCCCCGGCGCCCGCCCGTCGGGGCAGGCGTGGAAGCTGTCCTCGAACGAGAACCCGTACCCGCCGCCGTCGGCCGTCGTCGCGGCGATCACGGAGGCCGCCACGGAGGTCAACCGGTACCCGGACATGTTCGCCACCGAGCTGGTCGAGGCGCTCGCGACGCACGTCGGCGTCGAGCCCGAGCAGGTCGTGGTCGGCAACGGCTCGGTGGCGGTGCTGCAGCACGTGCTGGAGGCCGTCCTCGAGCCGGGCGACGAGGTCGTCTACCCGTGGCGGTCCTTCGAGGCGTACCCGATCATCACCACGATCGCCGGGGGCACCTCGGTCACCGTGCCCGTCGCGGCCGACGGGCGGCTCGACCTGCCCGCCATGGCCGCCGCCGTCGGGCCGCGGACCCGCGCGGTGCTCGTGTGCACGCCCAACAACCCCACCGGCCCCGTGGTGCACGCCGACGAGCTGGAGACGTTCCTGGCCACGGTGCCGCGGGACGTGCTCGTCGTCGTGGACGAGGCCTACCTCGAGTTCATCCGCGACCCCGAGGCCCCGGTCGGCATCGACCTGCTGCGCCGGCACCCGAACGTCGTACTCGTGCGCACGATGTCCAAGGCGTCCGGGCTGGCCGGTCTGCGCGTCGGGTACGCCGTCGCCGCACCGCGCCTCGCCACGGCGGTCCGCTCGACGTCGACGCCGTTCGGCGTCAACCACGTCGCCCAGCGGGCGGCGCTCGCCACCCTGCAGCCCGCCGTGCAGGCCGAGCTCGCCGAACGCGTCGAGCACCTCGTGACCGAACGCACCCGCGTGTGGGACGCGCTGCGCGCGCAGGGCTGGGAGGTGCCGGCCACCCACGCGAACTTCGTGTGGCTCGCCACGGGGGAGCGGACGGCGGAGCTCGCGGCCGAGGCCGCGGCGGCCGGGGTGCTCGTGCGCCCGTTCGCCGGCGAGGGCATGCGCGTGAGCATCGGTGAGGTCGAGGCGAACGACGCGTTCCTGGAGCTCGCGGCCGGCTGGCTCTGA	MKFMAVIVAGLAPYGTPVPREMASWTAVSSPASDQTVPLRAAVAALPAYVPGARPSGQAWKLSSNENPYPPPSAVVAAITEAATEVNRYPDMFATELVEALATHVGVEPEQVVVGNGSVAVLQHVLEAVLEPGDEVVYPWRSFEAYPIITTIAGGTSVTVPVAADGRLDLPAMAAAVGPRTRAVLVCTPNNPTGPVVHADELETFLATVPRDVLVVVDEAYLEFIRDPEAPVGIDLLRRHPNVVLVRTMSKASGLAGLRVGYAVAAPRLATAVRSTSTPFGVNHVAQRAALATLQPAVQAELAERVEHLVTERTRVWDALRAQGWEVPATHANFVWLATGERTAELAAEAAAAGVLVRPFAGEGMRVSIGEVEANDAFLELAAGWL	PGPT0020305_3809	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
AK001_01194	369			hypothetical protein	GTGACGTCGCTGGCCCTGTGGATCTGCGACCTGATCTTCGACAGCTTCGAGATCTTCGGCGGTGACGACGTCCTCGGGCGCGTCCTCGCCATCGTCGGCGTGGGGCTGATCTTCACGCTGGTGAGCTCGATCGTGAAGCCGATCGTCAGCATCGTGTCGATCCCGCTGCTGATCCTCACCCTCGGGCTGTTCTACCTGATCATCAACGCCGGGATGCTGTGGCTCACGGAGTGGCTGACCAGCCAGAACTGGCTCGGCAACTGGGGCCTGGAGATCGAGGGCGGCTTCTGGTGGTACCTGTGGATCGCGCTGATCCTGGCGATCCTGCAGACCGTCATCGGCTGGGTCGTCCCCGGCGACAAGAGCTGA	MTSLALWICDLIFDSFEIFGGDDVLGRVLAIVGVGLIFTLVSSIVKPIVSIVSIPLLILTLGLFYLIINAGMLWLTEWLTSQNWLGNWGLEIEGGFWWYLWIALILAILQTVIGWVVPGDKS				NA	NA	NA	NA	NA
AK001_01195	1560			hypothetical protein	GTGAGCCGCGACCCCCGGGACACGCTGCGCATCGTCGGCGGCGCCGTCGTCACCCGCGTCGACGCCGGGTCCGTGCGCGCCGCCGCGGGCCGGCTGGCCGACGCGGCGGCCTCGTTGCACGCGGCCGCCGGCGACTGCGTCCGCGCAGGCCGTGCGCTGGAGCGTGCGCGGTGGGCTCCGGCGCCGCTCGGGGAGACGGACCCCGGCCACTCCGCCCGGCTGGCCCGGGCCGGTGCGCTCGCCGACGACGCCGCGGCGGCGCTCGGGGGGCGGGCCGACGAGTGCGCACTGCTCGGTGAGCGGCTGCTGCGTGCCGCCGGGCTGTACGAGTACACCGAGTCGCTGGCCGAACGGGTGCTCGGTGCGGGTGTGACCGGTGCGGCCGGTCTGCTGGGGCTCGGCGTGACCGGGTTCCTGCGGACGCCCGCCGGGCGGCCCCTCCTGCTGACCGGGGCGGCGGGTCTGGTCGGGCTGTCCGCCCTCGCGCCCGACCCGGACGCCCCGCGCCCGGCACCGCGGGCCGTGTCGCACGGTGCGCCCGACCCGGTCGGGGACGCCGACGGGCCGGGAGGTTCCGTGCTGCGCACCGTCGCGCCGGTCGTCGACGAGGCGCTGACCGGCCTGGGCGTCGGGGTGGCGCTCGGTGCCCCGGGGCTGTCCGGCGGCGACTTCTCGGTCACCGGGGGAGCGAGCGTGCTGTCGAGGGCCGTCGAGGCGGTGCTCGGGACCCGTGCGGTGCTCGTCGACGCCGTCGACCCGGCCGCGTTCGCCGGTGGCCCGCCGGACCGGGACGGCCGCCCCGCCGGGAGCGTCGCGGAGGCGCTGGCCCGCACGGCGGACCTCTACCCGCACGGCAGCGGGATCCCGGGACGGCCGGCCCCCGGGCCCCCGCCCGGGACGATCGCGGTCGAGCGGGTCACCCGCGCCGACGGCAGCGTCTCCTGGACGGTGCTGATCCCGGGCACCCAGGCCCTGCTGTCCCCGCGCAACCCCTTCGACGTCGACACCGACCTCGACCTCGTGGCGCGACGGGCGGCCGACGTCGCCGAGGGCGTCGGGCAGGCGCTGGCGGCCGCCGGGGCCGGGGAGGACGAGCCGGTCGTGCTGGTCGGGCACTCGCTCGGCGGGATCGCCGCGGTGTCGCTTGCCGCGTCGCCGGCGTTCCGGCGGCGGCACCCGGTGGGCGGAGTCGTCACCGCCGGCGCCCCGACGGCGACCTTCCGCACGCCGCCGGGGGTGCCGGTGCTGCACCTGGAGAACACCGAGGAGCTCGTCTCGCCGCTGGACGGTCGCTCCAGCACCGAGAACCCGGCCACGGCGGACCGGGTCACCGTCGGGCGCGACCTGGCGGACTCCCGGGACCCGGCCGACCGGACGGCGTCGGGCGGCGTCGCCGCGGCGCACTCCGTCCGCACCCACCTGCGCACGCTGGCGCACGCGCGGGACGCGGGCAGCGTCCAGGCCGCCTCGGTCACCGGCCGGCTCGACCGTCTCCTGGACGGCGAGCGGGCCGAGACCCGCTACTACCGTCTCCGGCGCGCCCGCGCCGGGGACGGGTGA	MSRDPRDTLRIVGGAVVTRVDAGSVRAAAGRLADAAASLHAAAGDCVRAGRALERARWAPAPLGETDPGHSARLARAGALADDAAAALGGRADECALLGERLLRAAGLYEYTESLAERVLGAGVTGAAGLLGLGVTGFLRTPAGRPLLLTGAAGLVGLSALAPDPDAPRPAPRAVSHGAPDPVGDADGPGGSVLRTVAPVVDEALTGLGVGVALGAPGLSGGDFSVTGGASVLSRAVEAVLGTRAVLVDAVDPAAFAGGPPDRDGRPAGSVAEALARTADLYPHGSGIPGRPAPGPPPGTIAVERVTRADGSVSWTVLIPGTQALLSPRNPFDVDTDLDLVARRAADVAEGVGQALAAAGAGEDEPVVLVGHSLGGIAAVSLAASPAFRRRHPVGGVVTAGAPTATFRTPPGVPVLHLENTEELVSPLDGRSSTENPATADRVTVGRDLADSRDPADRTASGGVAAAHSVRTHLRTLAHARDAGSVQAASVTGRLDRLLDGERAETRYYRLRRARAGDG				NA	NA	NA	NA	NA
AK001_01196	297			hypothetical protein	GTGGGTGTCCACAGTGCGGGCGACGGGGCGGACGACGGTGCGGCGACCGCCCCTAGCGTCCCCGGCATGCCCCTGCACACCTCCGACGTGGCCGACGCCGTGGCCCGGCTCCGTGACGCCCGTCGTCGTCTCGCCGACGCCGTGGCGACCCTGCACGTGGCCCGGGGCCCGGGCTGGGACTCGCCCGCGGCGGACGCGTGCCGAGAGGCCGTGGCCGAACGGCTCGCCGCGCTCGACACCGACCGCGGGACCGTGGACCAGGCCGTGCACCTCGTCGACGGGTGCCTCGGTCCGTGA	MGVHSAGDGADDGAATAPSVPGMPLHTSDVADAVARLRDARRRLADAVATLHVARGPGWDSPAADACREAVAERLAALDTDRGTVDQAVHLVDGCLGP				NA	NA	NA	NA	NA
AK001_01197	1476	purB	COG0015	Adenylosuccinate lyase	GTGACCTCCACTGCGCAGCCCACCCGTGTGTCCCTGGCCGACGTCACCCCGCCGATCGCCCTCGGCCCTCTCGACGGCCGCTACCGCTCCGCCGTCGGCCCGCTGGTCGACCACCTCAGCGAGGCGGCCCTGAACCGCGAGCGCCTGCACGTCGAGGTCGAGTGGCTGATCACGCTGTGCAACGGCACCGAGTCCGCCCAGGGTGTCGTCCCCGGCCCCGTGGTGCCCGGCGCCCCGACGCTGACCGACACCGAGATCACCTACCTGCGCGCGATCCCCGCGACGTTCGGCGCCACGGAGATCGCCGAGCTCGGCGCCATCGAGCGCGAGACGGTGCACGACGTCAAGGCGGTCGAGTACTTCATCAAGCGCCGCATCGCCGACGCCCCCGAGGTCCTCGGCGAGACGAACCTGCCCGCCGTGAGCGAGCTGGTGCACTTCGCCTGCACCTCCGAGGACGTCAACAACCTGTCCTACGCGCTCATGGTGCGCGACGCCGTCACCGAGGTGTGGCTCCCGGCCGCCACCGCGCTGGCCGACCAGCTCGCCGACATGGCCCGCGAGCACGCCGAGGTGCCGATGCTGAGCCGCACCCACGGCCAGCCGGCCACCCCGACCACGATGGGCAAGGAGCTCGCGGTGCTCACGCACCGCCTGCGCCGCCAGCTGCGCCGCATCGAGGGGGCCGAGTTCCTCGGCAAGCTCAACGGCGCCACCGGCACCTTCGGCGCGCACACGGTCGCCGTCCCGGACGCCGACTGGCCGGCGGTCTCGCGCGGGTTCGTCGAGCACCTCGGGCTGACCTGGAACCCGCTGACGACGCAGATCGAGTCCCACGACTGGCAGGCCGAGGTCTACGCGGACGTCGCGCGGTTCAACCGGATCCTGCACAACCTGGCCACCGACGTGTGGACGTACATCTCGATGGGCTTCTTCACCCAGATCCCCGTCGCGGGGGCCACGGGGTCCTCGACGATGCCGCACAAGGTCAACCCGATCCGGTTCGAGAACGCCGAGGCGAACCTCGAGATCTCCTGCTCGCTCCTCGACACGCTCAGCGCCACGCTCGTGACGAGCCGCCTGCAGCGCGACCTGACGGACTCCACGACGCAGCGCAACATCGGTCCCGCGTTCGGCCACTCGCTGCTCGCCATCGACAACGTGCGCCGCGGTCTGCAGGCGCTCGCCGTCAACGCCGACCTCATGGCCGCCGACCTCGACGAGAACTGGGAGGTCCTGGGCGAGCCCGTGCAGTCGGCGATGCGCGCGGCGTCCGTGGCCGGCGTCGAGGGCATGGAGAACCCGTACGAGCGCCTCAAGGAGCTCACCCGCGGGAACCGGGTCGACCAGGAGCGCATGCGCGAGTTCGTCGGCGGTCTCGGGCTGCCCGACGACGTCGCGGCGCGGCTGGCCGAGCTCACCCCGGCGGCGTACACGGGCATCGCGGCGCGGCTCGTGGACGACTACCTGGACTGA	MTSTAQPTRVSLADVTPPIALGPLDGRYRSAVGPLVDHLSEAALNRERLHVEVEWLITLCNGTESAQGVVPGPVVPGAPTLTDTEITYLRAIPATFGATEIAELGAIERETVHDVKAVEYFIKRRIADAPEVLGETNLPAVSELVHFACTSEDVNNLSYALMVRDAVTEVWLPAATALADQLADMAREHAEVPMLSRTHGQPATPTTMGKELAVLTHRLRRQLRRIEGAEFLGKLNGATGTFGAHTVAVPDADWPAVSRGFVEHLGLTWNPLTTQIESHDWQAEVYADVARFNRILHNLATDVWTYISMGFFTQIPVAGATGSSTMPHKVNPIRFENAEANLEISCSLLDTLSATLVTSRLQRDLTDSTTQRNIGPAFGHSLLAIDNVRRGLQALAVNADLMAADLDENWEVLGEPVQSAMRAASVAGVEGMENPYERLKELTRGNRVDQERMREFVGGLGLPDDVAARLAELTPAAYTGIAARLVDDYLD	PGPT0021555_292	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756	NA	NA
AK001_01198	1221			hypothetical protein	ATGGTCCAGCTCAGCAGTCTCTCGCGCAGGAGTGCCGCCCTGCTGCTCGCAGCCGCCGTCGTGCTGGCGCCCGCCGCGGTGGACGTCGCGGTGGCACCTCCCGCCGACGCCGCCGCGAGGCCGGTGGCGGCTCCGCTGAAGAACGACACCTACGTGCTGTCCTCGTACTACGGCCCGCGGTGCATGCCGGTGCGTTCGGCCTCGGCGTTCCACCGGGGCCAGGACCTGGGGGCCGCCCGCGGCACCGACGTCCGGGCCGTGGCCCGGGGAACGGTGCGGCACGCCGGCGCCGTGCGTGGCTTCGGTCAGTGGGTCGTCGTCGACCACACGATCGACGGCGTGCGGTTCTCCTCGCTGTACGCGCACCTGATCGACGGCGACCGGCGCGTGAAGGCAGGTCAGCGGGTCAGCAAGGGACAGCACATCGGCGACGTCGGCTCGACGGGCACGTCGACCAGCCCCCACCTGCACCTGGAGATCTGGCGCGGGGGCTACGGCACCGGCCGGACCGTCGACCCCCTGCGGTTCCTCGAGAGACGGGGCATCGACCTGACGACGAGGTCGATCCGCAACTACTCCCGGTCGGTGCCTTCGTCCTGCCGGTACTACACCGCCGCCAAGGTCAACTTCCGCACCGGCCCCGGGACGGGGTACCGGGTGATCCGCGAGCTGCAGTCCAACGTGACCCTCGGGGCGCTGCCCGGTGACGAGTCGGGCGTCTGGCGCAAGGTCACCCGCTCCGGGCGCACCGGGTGGATCCACCGCGACTACGTCTCCCCGGGCTACACGTCCCAGGGGACCCGCTACGTCCTGGCCGGGTCGCTCAACCTGCGTTCGGGGCCCTCGACGTCGCACCGGGTCAAGCGTGCTCTGCCCCACGACGCGAAGGTCGCCCTGCTGCGCACCGGATACCGCAACGGCGTGTGGCAGCGGGTCCGCCACGGCGGCACCAACGGCTGGGTGTCGGCGCGCTACCTGGCCCTGAACCGCGACGGGGCCCGCATCGTGCCGAAGTCGTCGGGACGCACGTACGCCTGGGTCGACACCAGCACGCTCAACCTGCGGTCCGGCCCCTCGGCCTCCGACCGGGTGCGGCTGAAGCTCCGTCGCGACGAACGCGTGCGCCAGCTGGAGCGGGTCAGGGACGGCTGGGTGAAGGTGCGCCACGACGGCAGGACGGGCTACGTGGCAGCGCGCTACCTGACCTCGTCCCGGCCCTGA	MVQLSSLSRRSAALLLAAAVVLAPAAVDVAVAPPADAAARPVAAPLKNDTYVLSSYYGPRCMPVRSASAFHRGQDLGAARGTDVRAVARGTVRHAGAVRGFGQWVVVDHTIDGVRFSSLYAHLIDGDRRVKAGQRVSKGQHIGDVGSTGTSTSPHLHLEIWRGGYGTGRTVDPLRFLERRGIDLTTRSIRNYSRSVPSSCRYYTAAKVNFRTGPGTGYRVIRELQSNVTLGALPGDESGVWRKVTRSGRTGWIHRDYVSPGYTSQGTRYVLAGSLNLRSGPSTSHRVKRALPHDAKVALLRTGYRNGVWQRVRHGGTNGWVSARYLALNRDGARIVPKSSGRTYAWVDTSTLNLRSGPSASDRVRLKLRRDERVRQLERVRDGWVKVRHDGRTGYVAARYLTSSRP				NA	NA	NA	NA	NA
AK001_01199	192			hypothetical protein	ATGACGACCCACGCGCCGGAGCAGGAGCCGCGGCACGACCGGCCCGCCCGACACATCCCGCCCAACGCGTTCGCACGGCTGCTGCTGGCCCACGACCCGAAGGTGACGGACCCGCGGTTCAAGGGACCCCAGGTCGAGGTGGACGCGGGCTACGAGGAGACCGACGAGCACGACCGGTTCGACGCCGGCTGA	MTTHAPEQEPRHDRPARHIPPNAFARLLLAHDPKVTDPRFKGPQVEVDAGYEETDEHDRFDAG				NA	NA	NA	NA	NA
AK001_01200	1602			hypothetical protein	GTGCTCGAGAACTACCCGATCCTGACGCTCGTCCCACCGGTGCTGGCCATCGCCCTGGTGATCCTCACCAAGAGGGTGCTGCTGAGCCTCGGCGCCGGTGTCCTGGCGGCCGCGCTGCTCGTCGCCGACCTGAACCCGCTGGAGACGCTCCGCCTGGTCGCGGAGTCCTTCGCCGTCATCTTCTGGGTCGACGGCGCGGTGAACACCTGGTACGTCTACATCCTGGTGTTCACGCTGGTCCTCGGGGTGATCGCGGCGCTGATCATGATGTCCGGCGGCACCAAGGCCTTCGCCGACTGGGCCGTCGAACGCATCCGGACCCGCCGCGGCGCCCAGCTGCTGCCGGCGATCATGGGCATCGTCATCTTCATCGACGACTACTTCAACGCGCTCGCCGTGGGGCAGGCCTCGCGCCCGGTCACGGACCGCCACCGCGTCTCGAGGGCCAAGCTGGCGTACATCATCGACTCGACGTCGGCGCCGGTCGCGGTGCTCGCGCCGTTCTCGAGCTGGGGCGCCTACATCATGGGGATCCTCGCCCCGATCGTCGCGGCCTCGGCGATCACCGCCTCGAGCGTGCAGGCCTTCCTCGGCGCGGCCGCGGCGAACTACTACGCGATCGCCGCGGCGGTGACCGTGTGGCTCGCCGTCCTGCTGCGGCTCGACGTCGGCCCGATGCGCCGCGAGGAGCACCGTGCCGTCCACGAGGACCAGCCGTTCGACCCCGACGCCGACATCCCCGGCCGGCTCGCCGAGGACCTGCCCGTCCACCATCCCGGTGCCAAGCGGGCGCTCGTGGTCCCGTTCGTGCTGCTGGTCGTCGGTGTCTTCGCCGGCATCGTGTGGACCGGGTACGCCGCGGCCGGCACCTGGGACCCCGTGGAGATCCTCGCCGCGACGGACACGAGCGCCGCGCTGCTCGTCGGCGGCGTGCTCGGTCTGGCCGCCGCCGTCTTCTACTACCTGCGCTACACGGGCCCGAACCCGGCGTTCGCGGCCCGGCACTTCGGCCGGGGCTGGGTCGAGGGTCTGCGCTCGATGTGGCCGGCCGTGAGCATCCTCGTCCTGGCCTGGATGCTCACCGGCCTCATCGACCAGCTCGGCACCGGCGCCTACCTGGGGGGCCTCGTCGAGGACGCGAACCTGGCGGCCTCCTGGCTGGCGCCGGTCGTGTTCGTGCTGGCGGCGGCGATGGCTTTCGCCACCGGCACCTCGTGGGGCTCGTTCGCCCTCCTGCTGCCCCTGGTGGGCGGCATCATGAACAGCCTGGGCGAGCCGGACCTGCTGCTGCCGGCCCTCGGCGCCGTGCTGGCAGGCGCCGTCCTCGGCGACCACAGCTCGCCGATCTCCGACACGACCATCCTGTCCTCCACCGGCGCCGGGGCGAACGTCATCACGCACGTGCTGACCCAGCTGCCGTACGCCGGCGGCGCGGCCGTGGCGGCGCTGACCGGCTACGTCGCGATCGCCCTCGGGGCCGGGACCGCCCTCGGGCTCCTCGTGACGCTCGTGGTGCTCCTCGCGCTGGTGCTGGTCACCCGGGCGCTGCGGCGGCCCGTCGAGACGGACGCACCGGCCCGTGGCCGCGTCGAGGAGTCCTGA	MLENYPILTLVPPVLAIALVILTKRVLLSLGAGVLAAALLVADLNPLETLRLVAESFAVIFWVDGAVNTWYVYILVFTLVLGVIAALIMMSGGTKAFADWAVERIRTRRGAQLLPAIMGIVIFIDDYFNALAVGQASRPVTDRHRVSRAKLAYIIDSTSAPVAVLAPFSSWGAYIMGILAPIVAASAITASSVQAFLGAAAANYYAIAAAVTVWLAVLLRLDVGPMRREEHRAVHEDQPFDPDADIPGRLAEDLPVHHPGAKRALVVPFVLLVVGVFAGIVWTGYAAAGTWDPVEILAATDTSAALLVGGVLGLAAAVFYYLRYTGPNPAFAARHFGRGWVEGLRSMWPAVSILVLAWMLTGLIDQLGTGAYLGGLVEDANLAASWLAPVVFVLAAAMAFATGTSWGSFALLLPLVGGIMNSLGEPDLLLPALGAVLAGAVLGDHSSPISDTTILSSTGAGANVITHVLTQLPYAGGAAVAALTGYVAIALGAGTALGLLVTLVVLLALVLVTRALRRPVETDAPARGRVEES	PGPT0027895_149	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-TETRACYCLINE_RESISTANCE,PGPT0027895-tet35-K18218	NA	NA
AK001_01201	1686	pgm	COG0033	Phosphoglucomutase	ATGGATCCCCGCGCCGGCCAGGTGGCCCAGCCCGACGACCTCATCGACGTCGACCAGGTGGTCGGCGCCTACTACGACCGCAAGCCCGACGTCGACGACCCGGCCCAGCAGGTCGTGTTCGGCACGTCCGGGCACCGCGGGTCCTCCCTCGACGGCGCCTTCAACGAGGCCCACATCGCCACGATCACGCAGGCGATCGTCGAGTACCGCGCGCTCGAGGGCATCGACGGGCCCCTGTTCCTCGGCCGGGACACGCACGCGCTGTCCCTGCCGGCGTGGCAGACCGCCATGGAGGTGCTCGCGGGGGCCGGCGTCACGGTGATGATCGACGCGCGCGACGCGTACACCCCGACCCCGGCGGTGTCGCAGTCGATCCTCATCCACAACGGCGCGGCCGCCGAGGGCGGGGTGCGGACCTCGGGTCCGGGGCAGGCGGACGGCATCGTCGTGACGCCGTCGCACAACCCGCCGCGCGACGGCGGCTTCAAGTACAACCCGCCGCACGGCGGTCCCGCGGACTCCGAGGCGACCCGCTGGATCGCCGACCGCGCCAACGACCTGCTGCGGGCCGGAGGCCTCTCCCGGGTCCACCGGGTGTCACTCGACGTCGCGGTGGCCGCCTCGACGACGCACCGGCACGACTACCTGTCGACCTACGTCGACGACCTCGCCAACGTGCTCGACCTGGACGCCATCCGTGAGTCCGGCGTCCGCATCGGCGCCGACCCGCTGGGCGGAGCCTCGGTGGACTACTGGGGCGAGATCGGCGAACGGTACGGCCTGGACCTGACGGTCGTGAACCCGCAGGTCGACCCGCGCTGGGCGTTCATGACCCTGGACTGGGACGGCAAGATCCGCATGGACTGCTCGTCCCCGCACGCGATGGCCTCGCTCGTGCAGGCCATGCGCCCGGAGGACGGCGGCAGCGCGCCGTACGACGTCGCGACCGGCAACGACGCGGACGCGGACCGCCACGGCATCGTCACCCCGGACGCCGGGCTGATGAACCCGAACCACTACCTCGCGGTCGCGATCCAGTACCTGTACGGCGGTGCGCGGCCGGACTGGCCGTCGACGGCCGCCGTCGGCAAGACCCTGGTGTCCAGCGCGCTGATCGACCGCGTGGCGGCCGGCCTGGACCGCCGCCTCGTCGAGGTGCCGGTCGGGTTCAAGTGGTTCGTGCCCGGGCTGCTGACCGGCGCGGTCGGGTTCGGCGGCGAGGAGTCGGCCGGCGCGTCGTTCCTGCGCCGCGACGGCCGCGTCTGGTCCACGGACAAGGACGGCATCCTGCTGGCCCTGCTGGCCTCGGAGATCATCGCCACGACCGGCCGGACGCCCTCGGAGCACCACGCCGACCTCGTCGCGCGGTACGGGGAGTCCTGGTACGCCCGGGTCGACGCCCCCGCGTCCCGCGAGGAGAAGGCCAGGCTCGGCGCACTCTCCCCCGACCAGGTCGCCTCGACCAGCCTCGCCGGCCAGGACATCACCGCCAAGCTCACCGAGGCTCCCGGCAACGGGGCGGCGATCGGCGGGCTGAAGGTCACGACGTCGGACGCCTGGTTCGCGGCCCGCCCCTCGGGCACCGAGGACGTCTACAAGATCTACGCCGAGTCGTTCGTGTCCGCCGACCACCTGGCCGAGGTGCAGGCCGAGGCGAAGCAGGTCGTCTCCGACGCACTGTCCTGA	MDPRAGQVAQPDDLIDVDQVVGAYYDRKPDVDDPAQQVVFGTSGHRGSSLDGAFNEAHIATITQAIVEYRALEGIDGPLFLGRDTHALSLPAWQTAMEVLAGAGVTVMIDARDAYTPTPAVSQSILIHNGAAAEGGVRTSGPGQADGIVVTPSHNPPRDGGFKYNPPHGGPADSEATRWIADRANDLLRAGGLSRVHRVSLDVAVAASTTHRHDYLSTYVDDLANVLDLDAIRESGVRIGADPLGGASVDYWGEIGERYGLDLTVVNPQVDPRWAFMTLDWDGKIRMDCSSPHAMASLVQAMRPEDGGSAPYDVATGNDADADRHGIVTPDAGLMNPNHYLAVAIQYLYGGARPDWPSTAAVGKTLVSSALIDRVAAGLDRRLVEVPVGFKWFVPGLLTGAVGFGGEESAGASFLRRDGRVWSTDKDGILLALLASEIIATTGRTPSEHHADLVARYGESWYARVDAPASREEKARLGALSPDQVASTSLAGQDITAKLTEAPGNGAAIGGLKVTTSDAWFAARPSGTEDVYKIYAESFVSADHLAEVQAEAKQVVSDALS	PGPT0017710_2135	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835	NA	NA
AK001_01202	297			hypothetical protein	ATGACCGACACCCCTGCCGTGACCGTCCGCGACGACCCGGAGCGGGGCGTCTTCCTGGCCGTGCTCGACGACGGCACCGAGGCCGGCGGGGCGTACTACCGCCACGCCGACGGCGTCGTGACCTTCACGCACACCGAGGTGCCCTCCGACTACGAGGGCCAGGGCGTCGGGTCCACGCTCGCCCGCGGTGCCCTGGACGCCGTGCGCGAGCGCGGCGAACGGGTCGTGGCGGAGTGCCCGTTCATCAAGGCCTACGTCGAACGGCACCCCGAGTACCAGGACCTGCTCGCCGCGTAG	MTDTPAVTVRDDPERGVFLAVLDDGTEAGGAYYRHADGVVTFTHTEVPSDYEGQGVGSTLARGALDAVRERGERVVAECPFIKAYVERHPEYQDLLAA	PGPT0014881_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ADAPTIVE_MUTATION	CE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346	NA	NA
AK001_01203	333			hypothetical protein	GTGGACATCCACCACGACCCCGAGCACGGACGGTACGAGGCACGGATCGCCGGTCCCCCGGGTTCGGCCGCGGAGGACGCGCACGCGGTCGGCGTCCTGCGCTACCACCGCGAGGGCGACGTCGTGGTGATCCCCGGGACCGTCGTCGTCCCCGAGCACCGCGGTCACGGGGTCGCCGACGCCCTGGTCCGGCGCGCGCTGGACGACGTCGCCGCCGCGGGAGCGACGGTGCGACCGGACTGCTGGTTCGTCGAGACGTGGCTGCGGCACCACCCCGACTACCAGCACCTGCGGTGGCCGCAGGACTCGTCCGGCGGCAGCATGGACGCATGA	MDIHHDPEHGRYEARIAGPPGSAAEDAHAVGVLRYHREGDVVVIPGTVVVPEHRGHGVADALVRRALDDVAAAGATVRPDCWFVETWLRHHPDYQHLRWPQDSSGGSMDA				NA	NA	NA	NA	NA
AK001_01204	1089			hypothetical protein	ATGGACGCGACCACGCCTGCCCGCACGCCGGCCGAGATCCGCCGGTGGCGACGCTACCTCGCCGCCGAGCGCGCCGAGGCCGCCGTCTACCGCGACCTCGCCTCGCGGCGCACCGGCGAGGATCGCGAGATCCTGCTCGCCCTCGCGGCGGCCGAGAAGCGGCACGAGCAGCACTGGCTGGACCTGCTCGGCGACGACGTCGGCATGCCGCTCCAGGGCGACCTGCGCACCCGGACGCTGGCCTTCCTGGCGCGCCGGCTGGGCGGGGTCTTCGTGCTGGCGCTCGTGCAGCGCGCCGAGTCGCGGTCCAGCTACGCCGACGACGACCACGCCACCGCGCAGATGGCCGCCGACGAGCAGATCCACGAGGAGGTCGTGCGCAGCCTGGCGACCCGGGGCCGCAACCGGCTCTCGGGCTCCTTCCGGGCCGCCGTCTTCGGGGCCAACGACGGTCTCGTGTCCAACCTCGCGCTCGTGCTCGGCATCGGCGCCGCCGGCGTGACGACCGGGACGGTGCTGGTGACCGGTCTCGCCGGCCTCCTCGCCGGCGCGCTCTCCATGGGCGCCGGCGAGTACGTGTCGGTGCGCTCCCAGCGCGAGCTGCTGCAGGCCTCGACACCGGACCCGTCGGCCACCGAGGCGCTGCCGGACCTCGACGTCGACGCCAACGAGCTCGCGCTCGTCTACCGCGCGCGGGGGATGGAGGCGTCCGAGGCCGAGGCGCGGGCCGACCGCGTGCTGGCCCGGCTGGAGGCCACGGGCGTCGTCGAGGGGATCGCGGACGACGAGGAGCCCGACGACCACGAGACGCACGGCACCGCCTGGGGCGCGGCCGTGTCCAGCTTCCTCTTCTTCGCCTCCGGTGCGATCGTCCCCGTCCTGCCGTACCTGTTCGGGCTCGAGGGGACCGTCGCCGTCGTGGTCGCCAGCGTGCTCGTCGGCGTGTGCCTGATCGTCACCGGTGCGGTGACGGGGCTGCTGTCGGGGACGTCGCCGATCACCCGGGCGGTGCGTCAGCTGCTCATCGGCTTCGGCGCCGCCGGTGCCACCTACCTGCTCGGCCTGGCGTTCGGCACGAGCGTCGCCTGA	MDATTPARTPAEIRRWRRYLAAERAEAAVYRDLASRRTGEDREILLALAAAEKRHEQHWLDLLGDDVGMPLQGDLRTRTLAFLARRLGGVFVLALVQRAESRSSYADDDHATAQMAADEQIHEEVVRSLATRGRNRLSGSFRAAVFGANDGLVSNLALVLGIGAAGVTTGTVLVTGLAGLLAGALSMGAGEYVSVRSQRELLQASTPDPSATEALPDLDVDANELALVYRARGMEASEAEARADRVLARLEATGVVEGIADDEEPDDHETHGTAWGAAVSSFLFFASGAIVPVLPYLFGLEGTVAVVVASVLVGVCLIVTGAVTGLLSGTSPITRAVRQLLIGFGAAGATYLLGLAFGTSVA				NA	NA	NA	NA	NA
AK001_01205	591	rnhA_2		Ribonuclease H	GTGATCATTGTCAGCACCGACGGCTCCTGCCCGACCGACGGCGACGCGATCGGCTGGGCATGGGTCGCCCATGGCTCCGGCCGCTTCGACTCCGGCGGCGCCGCCGACGGGACGGCGCAGGTCGCCGAGCTGACCGCGCTGCGCCACGCCGTCGAGGCCCACCCGGGCGACGAGCCCCTGTTCGTCGAGTCGGGGTCGCAGTGGGCGATCCGGTGCGCCTCCGAGTGGCTGGAGGGCTGGAAGGCGCACGCGTGGCGGACGGCCTCCGGCGAGGAGGTCCCGCACCGCGACGCCGTCCAGGCGCTCGACGAGGCGATCTCCGCCCGACCGGGGCCGGTCCGGTTCCGCTGGGTCCGGGGCCACGTCGACAGCCCCTTCACCACCCGTGCGCGCGAGCTCGCCGCGCTGGCGGCCCACGACTGGGCCGCGGGACGCGGCGGTCTCGACGGGCTGCTCCTGGACGACTCCGCGGCCCGCGAGACGTCGCTCGGGCCCGTGGACGGCCCCGAGCCCGAGCCCGTCGGCGCGCGACGTGCGTCGTCGACGCCGACGAGCGGCCCGGGCTGGGAGCTCGGCACCCTGTTCGACTGA	MIIVSTDGSCPTDGDAIGWAWVAHGSGRFDSGGAADGTAQVAELTALRHAVEAHPGDEPLFVESGSQWAIRCASEWLEGWKAHAWRTASGEEVPHRDAVQALDEAISARPGPVRFRWVRGHVDSPFTTRARELAALAAHDWAAGRGGLDGLLLDDSAARETSLGPVDGPEPEPVGARRASSTPTSGPGWELGTLFD				NA	NA	NA	NA	NA
AK001_01206	1458	yqiK	COG2268	Inner membrane protein YqiK	ATGGACAGCTCCACCAGCTTCGTGACCACCCTCGCCGTGGCCGCCGTCGTCGTCGCCTTCCTGGCGATCGGCGTCTTCGTGGCCCAGCGGATCCGCCGCGTCCCGCCGAACCAGGCCCTCGTCATCGTCGGCCGAGGCGCCGGACGCAAGGACATGGCCGGCCAGAAGGTCGTCATCGGCGGACGCACGTTCGTCTGGCCGATCCTCCAGCAGGGCTTCGCCATCTCGCTCGAGCAGCGCCAGATCGGGATCACCGTCGAGGGCGTAGACTCGAACCGCATCAAGATCGCCATCAAGGCGTCCATCAACTTCAAGGTGCGCGGTGACGACGAGGGCGTGCGCCGTGCCGCGCAGCGCTTCCTGTCCCAGCAGGAGCTCCTCACCGAGATCATCGCCGAGTCCCTCGAGGGCTCGCTCCGCTCGATCGTCGGCGACATGTCGATCGAGGAGATCATCTCCGACCGCAAGGGGCTCTCGGACCGCGTCGTGGAGTCCACCAAGCGGGACCTGGCGGAACAGGGCCTGCAGGTCGACATCCTCAACATCTCCGACATCTCCACGCCCGGCTCGGACTACCTGGAGAACCTCGGTCGCGCCGAGTCGGCCCGCGCCCTGCAGGTGGCCGAGGTGTCCGAGGCCGAGGCGCGTCGCGCCTCCGAGTTCGCGTCCATCGAGGCGGCCGAGCAGATCGCCGAGCGGCAGAAGGCGCTGGACCTGAAGAAGGCCGCCATCCAGGCCGACACGGACAAGGCCCAGGCGGAGGCCGAGGCGGCCGGTCAGCTCGCCCGGGCCGAGCAGGACCGCATCGTCGCCCTCCAGGAGCGTGAGGCGCTGTCGGAGAAGGCCCGTGTCGAGCAGGAGCGCCTCGACATCGAGGTGCGCAAGCCGGCCGAGGCCCAGGCCTACGCCGAGGTCCAGGAGGCGACCGCGCGGCGCGACTCGCAGAACGCCGCCACGGAGGCCGAGGCGTTCAAGCGGACCACCATCGCCGAGGCGAACAAGTCCGCCGCGATCCAGGACGCCGAGGCGGCCGCGGAGGCCGTGCGCCGTGCCGGTGAGGCCGACCGCGACAAGCAGGTCGCGCTCGCCGCGGGTATCCGTGCCGAGGGCGAGGCCCGCGCCGCCGCGACCGAGGCCGAGGGCCGTGCGGAGGCGTCCGCCACCGACGCCAAGGCCGAGGCGCTCAAGAAGTACGGCGAGGCCGCGCTGGTGCAGGAGCTCATCGAGCGCCTGCCGGAGATCGTGCGGGCCGCGGCGGAGCCCGTGGCTTCGATCCAGGGGATGACGGTCGTGTCCACCGACGGGGCGTCCGCGGTGACCAAGAACGTCAGCAGCGTGCTCGGTGAGGGCCAGGCGGTCGTCAAGGAGCTGACCGGCATCGACCTCAATAAGTTCCTCAGCGGGCTGGCCGACCAGCAGGAGCGGGGCTCGTCGGTCACCGCGTCCAACGGCAGCTGA	MDSSTSFVTTLAVAAVVVAFLAIGVFVAQRIRRVPPNQALVIVGRGAGRKDMAGQKVVIGGRTFVWPILQQGFAISLEQRQIGITVEGVDSNRIKIAIKASINFKVRGDDEGVRRAAQRFLSQQELLTEIIAESLEGSLRSIVGDMSIEEIISDRKGLSDRVVESTKRDLAEQGLQVDILNISDISTPGSDYLENLGRAESARALQVAEVSEAEARRASEFASIEAAEQIAERQKALDLKKAAIQADTDKAQAEAEAAGQLARAEQDRIVALQEREALSEKARVEQERLDIEVRKPAEAQAYAEVQEATARRDSQNAATEAEAFKRTTIAEANKSAAIQDAEAAAEAVRRAGEADRDKQVALAAGIRAEGEARAAATEAEGRAEASATDAKAEALKKYGEAALVQELIERLPEIVRAAAEPVASIQGMTVVSTDGASAVTKNVSSVLGEGQAVVKELTGIDLNKFLSGLADQQERGSSVTASNGS				NA	NA	NA	NA	NA
AK001_01207	471			hypothetical protein	GTGCTCGTCTTCGCTCTGATCGGTGCCGCCGGTCTCGTCCTGCTCCTGCTGTCGCTCGTCGTCGGGGAGATCCTCGACGTCGGGGACGGTGCCCTGTCCGGGACCTCCCTGGGCGTGGGTGCCGTCGTCTTCGGGGCCGTGGGCTCCGTCGTCACCGTCAACGGGTGGGCCCCGTGGATCGCCTACGTGGCCTCGGCCGTCGTGGGCCTGCTGGCCGTGCTCGTGGCCCAGCTGCTGATCCGACGTCTCAGCGCCACCGAGGACAACGCTCGCGTCGACCTGGTCGGGGTGCAGGGCACGGCCACGACGGACATCTCCCAGTCCTCGGGCGAGGTCGCCCTCGATGCGGTGAGCGAGCTCGAACGTCGTCTGGCGTGGTCGATGGAGCCCATCGCTTCCGGGACCCGCGTCGTCGTCCTCGAGCACCAGCCCAACAGCGTGCGCGTCGGGCCGTACCGACCCGAGGACTGA	MLVFALIGAAGLVLLLLSLVVGEILDVGDGALSGTSLGVGAVVFGAVGSVVTVNGWAPWIAYVASAVVGLLAVLVAQLLIRRLSATEDNARVDLVGVQGTATTDISQSSGEVALDAVSELERRLAWSMEPIASGTRVVVLEHQPNSVRVGPYRPED				NA	NA	NA	NA	NA
AK001_01208	657	gpm2	COG0406	Acid phosphatase	ATGGCCCTCCCCGCGACGGACTCGCCCCGGCTCGTCCTCCTCCGGCACGGCGACACCGAGTGGGCGCTCGCCGGGCGTCATACCGGACGGACGGACGTCCCCCTGACCCCGGACGGTGAGGAGCAGGCACGTGCCGCGGGACGGCGGCTGGCCGGGCTGGCGCCGGTGGCGGTGTTCTGCTCGCCCCTGACCCGTGCACGCCGCACGGCCGAGCTGGCCGGCTTCACCGACGGCGTCGTCGACCCCGACCTGGCCGAGTGGGACTACGGACCGGTGGAGGGACGCACCTCGGCCGAGGTGGGCGAGGCCCTGGGACGCCCGTACGAGATCTTCCACGACGGCGTGGACGTCCCCGGGCCGGTCGACCCGGTCACGGGCGACCCCGGCACGACCGGACCTCGCGGGGAGACGCTGGCCGAGGTCCGCGCGCGCACCGACCGATTCCTGGCGCGCGCCCGCCCGGTCCTCGCCGGAGGCGGCAGCGTGCTCGTCGTCGCCCACGGTCACCTGCTCCGGGTGCTGGCCACGAGCTGGCTCGACGTCGACGCCTCGTTCGGTGTCCACCTCGAGCTCGGCTGCGCGGCGATCTGCGCGCTCGGCAGCGCGCACGGCCGCCCCACGATCGAAGCGTGGAACCTCGTGGGAGACGATCTCTAG	MALPATDSPRLVLLRHGDTEWALAGRHTGRTDVPLTPDGEEQARAAGRRLAGLAPVAVFCSPLTRARRTAELAGFTDGVVDPDLAEWDYGPVEGRTSAEVGEALGRPYEIFHDGVDVPGPVDPVTGDPGTTGPRGETLAEVRARTDRFLARARPVLAGGGSVLVVAHGHLLRVLATSWLDVDASFGVHLELGCAAICALGSAHGRPTIEAWNLVGDDL				NA	NA	NA	NA	NA
AK001_01209	1542			hypothetical protein	GTGTCGCTCATGGCCCGGTCCGTCGGCGCCGTCGCGGGCGTGATCAGCCCCGTCCGCGGGTCGGCACGGCGCTCCGGACGCGCCCCCGAGCTGTGGTGGGAATCGGCAGCGGTGCCCGCGTCGGTCGGCTCCGTGGCGGTCGACACCGTCGGGGCCGGCACTGTGGCCGAACGATCCGCCGAACCGATGCCTGCGTCGGCCGACGCCCCGCTGCACGCCCTGCTCGACGCACCGCCCGGCCCGGAGGCCGCCCGCGGCCTCGCCGCTCTCGATCCTGCCGACCTCGACGACCTGTCCCTGGTGGAAGCACTGGCCGCATGGGAGCGTCTCGCGGCCTGGGCCCAGGCAGGGTCGGCACGGATGCTCGCCGAGTCCCTGGAGCGGACGAGGGGATCGTCCCGGCACGAGTTCGTCGTCGACGAGGTCGCGGCCCGGCTCGGTCTCAGCCGCGCGGCCGCCGAGCAGCACGTCACGGTCGCCCACGGGGCGCACGCCCTGCCCGAGGTGGCCGACGCCCTGGCCGAGGGCGCCGTGGACCGGCGCAAGGCCGAGGCGCTCGTGGCGACGGGTCGGCTCCCCGACGACCGGCGTCGCGAGGTCGTGCGGGAGCTGCGACCCGAGCTCGAGCACCTCACCGTCCGGCAGATCCGCGACCGGCTCCGCCGTGCGGAGATCGCCGCGGATCCCGAGGGTGCCGCCGAGCGCCACGAGTCCGCCCGGCGCGCCCGGCACGTGACGCTCGAACCGGTCGACGATGCCATGGCCTACCTCACCGCGTACCTGCCCGCGGACGACGCCGCTCGGGCGTTCGCGCGGATCGACGACCAGGCTCGACGTGCGCGGAGCGGGGCGGGGGAGGCTCGCGGCCTCGGCGAGTGCCGAGCCGACGCGATGGTGGGTCTGCTCACCGGAACGGCCGGCAGCACGGACAGCACCGACGTCCCGGACGACGCCCGCGGCCGGGCCGTGCCCTCGAGCCCGGTCGTGCCCGGCGGCGCGCCCGGCACTGCTCGTGTGCACGTGACCGTCGCGGCGTCCACGCTGCTCGGCACCGACGACCTGCCCGCGATCCTCGCCGGCCACGGTCCGATCCCGGCGGCGATGGCTCGCACCCTCGCCACCGACCCGGACGCCGTCTGGCAGCGGATCCTCACCGACCCGGTCACGGGGGTGCTCACCGACACCTCGTCCCGGAGCTACCGACCGGGACGGGCGCTGCGCGCGGCCGTCGTCGCGCGGGACGCCACGTGCCGGTTCCCCGGCTGCCAGGTGCCGGCCCGCTACGCCGACCTCGACCACATCGAGCCGTTCGACCCGGCCGACGACCGTGCGCAGACGACCGGGGACAACCTGCACGTGCTGTGCCGCACCCACCACCGCGCCAAGACGGTCGGCGGGTGGGACGTCGTGCGCGACCCGCACTCCGGGGTCACGACCTGGACGTCCCCGAGCGGCCGGCGCTACCGGCGGTCCCCGCATCCGGCCGATCCTGCTGCCGGGTCGCGGGCGGATCCTGGACCCGACCCGCCGGCTCGGTGCTGA	MSLMARSVGAVAGVISPVRGSARRSGRAPELWWESAAVPASVGSVAVDTVGAGTVAERSAEPMPASADAPLHALLDAPPGPEAARGLAALDPADLDDLSLVEALAAWERLAAWAQAGSARMLAESLERTRGSSRHEFVVDEVAARLGLSRAAAEQHVTVAHGAHALPEVADALAEGAVDRRKAEALVATGRLPDDRRREVVRELRPELEHLTVRQIRDRLRRAEIAADPEGAAERHESARRARHVTLEPVDDAMAYLTAYLPADDAARAFARIDDQARRARSGAGEARGLGECRADAMVGLLTGTAGSTDSTDVPDDARGRAVPSSPVVPGGAPGTARVHVTVAASTLLGTDDLPAILAGHGPIPAAMARTLATDPDAVWQRILTDPVTGVLTDTSSRSYRPGRALRAAVVARDATCRFPGCQVPARYADLDHIEPFDPADDRAQTTGDNLHVLCRTHHRAKTVGGWDVVRDPHSGVTTWTSPSGRRYRRSPHPADPAAGSRADPGPDPPARC				NA	NA	NA	NA	NA
AK001_01210	597	idi	COG1443	Isopentenyl-diphosphate Delta-isomerase	ATGAACGCCACGCACGCCCCCACCACGGCCGACCACGTCGTCCTCTGCGACGACGCCGGCCACCGGACCGGCACGTTCCCGCGGGCCGAGGTCCACACCACGGACACGCCGCTGCACCTGGCGTTCTCCTGCTACCTGCTCGACGCCGCGGACAACCTGCTGATCACCCGCCGGGCACTCGTCAAGCGCACGTGGCCCGGGGTGTGGACGAACTCGTTCTGCGGCCACCTGCGGTGGACCGAGGAGATCGAGGACTCGATCGCGCGGCACGCGGAGCACGAGCTGGGCGGGGCCGTCGCCGACGTCGCCGTGGTGCTGCCCGACTTCCGCTACCGCGCCGTGGACGCCTCGGGCGTCGTGGAGAACGAGATCTGCCCGGTGTACGTCGCGCGCGTCGACGGCGGGCTGACGCCGAACCCGGACGAGGTCTCCGAGCACGTGTGGGCGCCGGCGGCGCAGGTGCGGTCCGCCGTGACCGCGGCGCCGTGGGCGTTCAGCCCGTGGATCGGGTGGCAGCTCCAGGCGCTCGCGGCGGTCCCGGTCGCGGAGCGGACCCCCGGTGCGCAGGTGCTGGCCGGGGCGCTCGGGCTCGACTGA	MNATHAPTTADHVVLCDDAGHRTGTFPRAEVHTTDTPLHLAFSCYLLDAADNLLITRRALVKRTWPGVWTNSFCGHLRWTEEIEDSIARHAEHELGGAVADVAVVLPDFRYRAVDASGVVENEICPVYVARVDGGLTPNPDEVSEHVWAPAAQVRSAVTAAPWAFSPWIGWQLQALAAVPVAERTPGAQVLAGALGLD	PGPT0007530_2240	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007530-idi-K01823	NA	NA
AK001_01211	666			hypothetical protein	ATGGCTGACCTCCTCGCCGTGTGCCGCGTGCACGAGCTGCACCCCGACCCCGGCACCGTGGGCGTGACGGCGATCGACAAGCGACCGGTCGACGGGCGCGTGCGTGCCGGACGGTTCGGCCTGTACGCGGACGTGCAGGCGGACCGGGCGAACCACGGCGGCGCGGACCAGGCGGTGTACGCCTATGCCGAGGAGGACGCCCGCTACTGGGCCGAGGCGCTGGGCCGCGAGGTGACCCCGGGGCTGTTCGGGGAGAACCTGCGCACCCGCGGCCTCGACGTCTCCGGCGCCCTGATCGGCGAGCGGTGGCGGGTCGGCTCGGCGGTGCTCGAGGTGACGCAGCCGCGCACCCCCTGCGCCACGTTCGCACGGCGGCTCGGGTCGCCCGAGCGATGGGTGCGGCGCTTCACCGAGGCCAACCGCACCGGCGCCTACCTGCGGGTGGTGGAGGCCGGCGAGCTCGGCGCGGGCGACGCGGTGGAAGTGGTGCGGCGGCCGTCGCACGGTGTCTCCGTCGCCGGCTGGTTCGGCGCCTGGAACGCCGGCCCCTCGGGGTTCGCCGAGGCGGCCCGCCTGGCGACCGCGCTGCGGCGCTCCGCGGACGACGACGAGCTACGACTGAGCGAGGACATGGACACCCGGACGACGAAGGCGATGAACCGATGA	MADLLAVCRVHELHPDPGTVGVTAIDKRPVDGRVRAGRFGLYADVQADRANHGGADQAVYAYAEEDARYWAEALGREVTPGLFGENLRTRGLDVSGALIGERWRVGSAVLEVTQPRTPCATFARRLGSPERWVRRFTEANRTGAYLRVVEAGELGAGDAVEVVRRPSHGVSVAGWFGAWNAGPSGFAEAARLATALRRSADDDELRLSEDMDTRTTKAMNR				NA	NA	NA	NA	NA
AK001_01212	1452	gabP	COG1113	GABA permease	GTGACCACGACACCCGGCGACGGCCCCGACGAGGCCGTCGCGCCGCTGCACGAGCCGCTGGCGCACCGGCTGCGTCCCCGGCACCTGACGATGATGGGTCTCGGCTCCGCGATCGGCGCCGGCCTGTTCCTGGGGTCCGGCGAGGCGATCGCGACCGCGGGCCCGGCGGTGCTGATCAGCTACGCCGTCGCCGGCGCGATCGTCGTGGCCGTCATGCGCATGCTCGCCGAGATGGCCTCGGCCCTGCCCGCCTCCGGGTCGTTCTCCGTGTACGCCGAGGTGGCGCTCGGCCGGTGGGCCGGGTTCCTGCTCGGGTGGCTCTACTGGTTCATGCTCATCATGGTCCTCGGCGTGGAGGTCACCGGCGTCGCCGAGATCGTCACCGCCTGGTGGCCGGCCGTCCCGCAGTGGGTGGTCGCGGGCGTCGTCGTCGCCGTCTTCGGCGGCATCAACCTGGTCGGGGTGCGGCAGTTCGGCGAGGCCGAGTTCTGGTTCGCCCTGGTCAAGGTCGCCGCCATCGTGGCCTTCCTCGCCGTCGGCCTGCTCGTCGTCCTCGGGGTGGTCCCCGTGGCGGGCAGCGTGCTCGGCGACTGGGCGGCGCACGGCGGCTTCGCACCCGCCGGGGTCCCGGGGATCGCCGCCGGGCTGCTCGCCGTCGCCTTCGCGTTCGGCGGGATCGAGATCGTGGCGATCGCCGCGGCCGAGGCCCGCGACCCGCGTGACGCCGTCGCCCGCGCCACCCGCACGATCCTGTGGCGCATCGTGGTCTTCTACCTCGGGTCCGTCGCGATCATCGTGGCGCTGGTGCCCTGGGACGACGCCGACGCCCTGACCTCGCCCTTCGTGGCGGTCCTGGAGCTCGCCGGGTTCGACGGCGCAGCGCGGCTCATGGAGGTCGTCGTGGTCCTGGCGCTGCTCAGCGCCTTCAACGCCCAGATCTACGGGACCTCGCGGATGCTGTTCTCCCTCGCCGAGCGCCGCGACGCGCCGGCCGCCGCGACGAAGGTGTCGGCGCGCGAGGTGCCGTGGGTGGCGGTGCTGGTGTCGGTGTTCTTCGGCGTCGTGGCGGTCCTGCTCAACTGGCTGCTGCCGGAGGTGCTGCTGTCCGTCCTGCTCAACGCCGTCGGCTCCGCCCTGTTCGTGGTCTGGCTGCTCATCACCGTCTCCCAGCTGCGGCTGCGGCCGCGCCTGGAGGCCGAGGCGCGGCGCACCGGGGTGCCGCTGCGCCTGCGGATGTGGGGGTTCCCGTGGCTGACCTGGCTCACCCTGGCGTCGCTCGTCGGCCTGGCCGCCCTCATGCTGTCCGACGACGCGGCGCGCGCCCAGCTCGTCGCCACCGCCGGGCTCGTGGCCGTCGTCCTGGCGGCGTACGGACTGCTCGCCCGGCGCCGACGGGGTCGTCCGGGTACCCCGACGCCGCCGGAAGAGTGGGAGCATGACGTCCATGGCTGA	MTTTPGDGPDEAVAPLHEPLAHRLRPRHLTMMGLGSAIGAGLFLGSGEAIATAGPAVLISYAVAGAIVVAVMRMLAEMASALPASGSFSVYAEVALGRWAGFLLGWLYWFMLIMVLGVEVTGVAEIVTAWWPAVPQWVVAGVVVAVFGGINLVGVRQFGEAEFWFALVKVAAIVAFLAVGLLVVLGVVPVAGSVLGDWAAHGGFAPAGVPGIAAGLLAVAFAFGGIEIVAIAAAEARDPRDAVARATRTILWRIVVFYLGSVAIIVALVPWDDADALTSPFVAVLELAGFDGAARLMEVVVVLALLSAFNAQIYGTSRMLFSLAERRDAPAAATKVSAREVPWVAVLVSVFFGVVAVLLNWLLPEVLLSVLLNAVGSALFVVWLLITVSQLRLRPRLEAEARRTGVPLRLRMWGFPWLTWLTLASLVGLAALMLSDDAARAQLVATAGLVAVVLAAYGLLARRRRGRPGTPTPPEEWEHDVHG	PGPT0020806_44	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020806-ycgH-K16237	NA	NA
AK001_01213	642			hypothetical protein	GTGACCCGCACCTACCACCACGGCAACCTGCGCGCCGCCCTGCTCGACCGCGCGGAGGAGGTGCTGGCCGAGGACGGCGTCGACGGGCTCTCGCTGCGCGGGCTGGCCCGCGACCTCGGCGTCAGCCACGGCGCCCCGGCCCGGCACTTCCGCGACCGGCAGGCGCTCCTGGACGCCCTGGCGCTGCGCGGGTTCGAGCGGCTCGACGCGGCGCTGGCCGCCACCGGCGGCACGTGGCAGGAGCGGCTGCGCGGGCTGGCGCGCACCTACGTCGACTTCGCCGCCGCGCACCCCGCCCTGCTCGCCGTGATGTACGACGTCAAGCACGACCCCGACGCCACCGCGGCGCTCCGGGCCGAGGCCGGCCGCGGCCAGGAGCTGCTGCGCGACACGCTGCGCGCCGGTCAGCGGGTCGGCGAGGTGGTCGAGGGCGACGCCGACGAGCTCGGGGTCGTGCTCTTCGCCGCCGTGCACGGGGTCGTCCAGCTCGCCGCCGGCGACCTCCTCGGCGGAGCCGACGTCGACGACGTGCTCGTGGCCACGGTCGCGGTGTGCCTGCGCGGGATCGCGCCGTCTGCGGGGTCCGTCCCGCCTGCCGGGGCCGTCCCGCCCGTCGGGGCGCCGTCGTCGGACGCGGGCTAG	MTRTYHHGNLRAALLDRAEEVLAEDGVDGLSLRGLARDLGVSHGAPARHFRDRQALLDALALRGFERLDAALAATGGTWQERLRGLARTYVDFAAAHPALLAVMYDVKHDPDATAALRAEAGRGQELLRDTLRAGQRVGEVVEGDADELGVVLFAAVHGVVQLAAGDLLGGADVDDVLVATVAVCLRGIAPSAGSVPPAGAVPPVGAPSSDAG				NA	NA	NA	NA	NA
AK001_01214	789			hypothetical protein	ATGACCCTCGACCTGCACGGCTCGTCCGCCGTGGTGACCGGCGCCAGCTCCGGCATCGGCGCCGTCGTCGCGGCCCGCCTCGCCGCCCGGGGCGCCGACCTCGTGCTCGTGGCCCGCCGGACCGACCGCCTCGAGGAGCTCGCGGCCCGGCTGCGCGCCGAGCACGGCGTCGAGGCCGACGTCGTCCCGGCCGACCTGCGCACGTCCGACGGCGTCACCGCGGTCGTCAAGGCCGCCCGGGCGGCCACGAAGCCGGTCGGCACCCTCGTGAACAACGCGGGGTTCGGCACCCACGGAGCCCTCCTGGAGGAGGACCCCGAGCGCATCGAGGACGAGGTCGCCCTCAACGTGGCGGCCCTGACCGACCTGACCCGCGCGCTGCTGCCCGACCTGGTCGCCCACGGCTCCGGGGCCGTGGTCAACGTGGCCAGCACGGCAGCGTTCCAGCCCGTCCCGCGCATGGCCGTCTACGGCGCGACCAAGGCCTACGTCCTCAGCTTCACCGAGGCGCTGTCGGTCGAGCTGCGCGGGACCGGCGTGCACGCGATCACGCTCTGCCCGGGCGCGACGCGCACGGAGTTCTTCGACGTCGTCGGGACCGAGGACGCCGCCGTCGGGCGCTTCCAGACCCCCGAGCAGGTCGCCGACACGCTCTTCCGCGCGCTGGACCGCCGTCGGCCGCCGGCCACGGTCGTGTCCGGCCGCGCCAACGCCCTGGCCGGCGCCGTGGTGGGCGCGCTGCCGCGCCGGCTGGTGCTGGCGGCGGCAGCGCGCCTCACGGCCGGCTGA	MTLDLHGSSAVVTGASSGIGAVVAARLAARGADLVLVARRTDRLEELAARLRAEHGVEADVVPADLRTSDGVTAVVKAARAATKPVGTLVNNAGFGTHGALLEEDPERIEDEVALNVAALTDLTRALLPDLVAHGSGAVVNVASTAAFQPVPRMAVYGATKAYVLSFTEALSVELRGTGVHAITLCPGATRTEFFDVVGTEDAAVGRFQTPEQVADTLFRALDRRRPPATVVSGRANALAGAVVGALPRRLVLAAAARLTAG	PGPT0030485_2508	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-OXIDOREDUCTASE_ACTIVITY	PUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK001_01215	1665		COG3559	Multidrug efflux system permease protein	ATGAGCACCGCCGTCGCCCCGCCCGCCGTCCGGACCGCCGAGCCCACCCGGTGGGCCACCCTGACCGGCACCGGGGCCCTCGTCCGCTTCATGCTGCGTCAGGACCGGGTGCGCCTGACCGTGTGGGCCGTCTCGGTCGTGTTCTTCTACACCTACTTCACGTTCGCGCTGAACCTGTTCTTCGACGACACCGCCGCGATGCAGGGACGCGCGGCCCTCATGGAGACACCCGTCGGGATCGTCATGGGCGGGCCGGGCTACGGTCTCGACGACTACTCGACCGGCGTGGCGATGTCGAACGAGGGCATCACCTGGATGGTCCTGGCGCTCGCGATCCTGTCGATCCTGCACGTCGTGCGCCACACCCGCGCCGAGGAGGAGTCGAACCGCTCGGAGCTCGTCCGGGCCGCCGTCGTCGGACGCCACGCGCCGGCCGTGGCGGCCGTCGTCACGCTCGTGCTCGCGCAGGCCGTCATCGCCGTGCTGTCCGCCGGGGCTCTCGTCGCGGTCGGCGACCTGGCCGTGGCCGACTCGTTCGCGCTCACGGTCGGGTCCGGGCTCAGCGCGATGGTGTTCGGAGCGGTCGCTCTCGTCGTGTGCCAGGTGGTCGGCCACGCCCGCACCGCGACCGGCGCGAGCCTGGCGGTGTTCGCCGTCGCCTTCGTCGTCCGGGCCGTGGGGGACATCCGCGAGCTCGGCGGGTCGACGCTGTCCTGGTTCTCGCCGATCGCGTGGGCCCAGCAGATGCGCGCCTTCGTCGACCTGCGCTGGTGGCCGATCGCCCTGAGCGTCCTCGCGATCGCCGTCCTGCTGGTCGTCGCCGCCCTCCTCGCCTCGCGGCGCGACTTCGGCGGGAGCCTCGTCGAGACCCGTGCCGGTCGGGCGGACGCCGGGCCCGCGCTGCGCGGCCCGCTCGCCATGGCGTGGCTGCAGCAACGCTGGGCGCTGCTGTGGAGCTGCCTGGGCCTCGGGCTGATGTGGTTCGCCTCGGGCACGATGCTCCCGGGCATCGGCGACATGATCGGCGACATGGTCGTCGACAACCCGATGCTCGCCCAGCTCTTCGGGGCCGACCCGTCCCAGCTCGCCGTCGGGTTCATCAGCGTGCTGGTGCTGTACGGCGCGGTCTGCTGCGCGGCCTACGCCGTCGTCATGGCGCAGCGGCCCAAGGCCGAGGAGTCCTCGGGGCGCGCGGAGGTCGTCTTCTCCCACCCGGTCTCCCGGCACCGCTGGCTCGGTGCCCAGGTCGCGGTCGCAGGGGTGGGCACGGCGGTGCTGCTCGCCGTCAGCGTCTACGCGCTGTGGGGCGGCGCCGTGATCGCCGGCTGGGGCGATCAGACCTTCACCGACTACTCCGTCGTGGTGTGGACCTACCTGCCGGCGCTCGCCGTCTTCCTCGGGCTGGTCCTGGCGCTGTACGGCTGGGCACCGCGCCTGACCGGCATCGGGTGGGCCCTGGTGGCCTACACCTTCGTCGTCGGGATGTTCGGCCAGGTCTTCGACCTGCCGGACTGGGTCTACCGCGTCTCGCCGTTCGACTGGGTGCCCGAGGTGTTCTCCGGCGAGCCGTACGCCGGTGACGTCGCGGTCCTGTGGGCGGTCGCCGTCGGGCTCGGGGTCCTCGGGTTCGTCGGGTTCCGCCGCCGCGACCTCGCCACGGGGTAG	MSTAVAPPAVRTAEPTRWATLTGTGALVRFMLRQDRVRLTVWAVSVVFFYTYFTFALNLFFDDTAAMQGRAALMETPVGIVMGGPGYGLDDYSTGVAMSNEGITWMVLALAILSILHVVRHTRAEEESNRSELVRAAVVGRHAPAVAAVVTLVLAQAVIAVLSAGALVAVGDLAVADSFALTVGSGLSAMVFGAVALVVCQVVGHARTATGASLAVFAVAFVVRAVGDIRELGGSTLSWFSPIAWAQQMRAFVDLRWWPIALSVLAIAVLLVVAALLASRRDFGGSLVETRAGRADAGPALRGPLAMAWLQQRWALLWSCLGLGLMWFASGTMLPGIGDMIGDMVVDNPMLAQLFGADPSQLAVGFISVLVLYGAVCCAAYAVVMAQRPKAEESSGRAEVVFSHPVSRHRWLGAQVAVAGVGTAVLLAVSVYALWGGAVIAGWGDQTFTDYSVVVWTYLPALAVFLGLVLALYGWAPRLTGIGWALVAYTFVVGMFGQVFDLPDWVYRVSPFDWVPEVFSGEPYAGDVAVLWAVAVGLGVLGFVGFRRRDLATG				NA	NA	NA	NA	NA
AK001_01216	1053		COG1131	Multidrug efflux system ATP-binding protein	ATGACCAGCACCGCAGCGACCCGCAGCACCGGGGCACCCCCGATCGAGATCCACGACCTGCACAAGCACTTCGGCCCGACGCGCGCCCTGGACGGCCTCGACCTCACCGTGGCCGAGGGCGAGGTCGCCGGCTTCCTCGGCCCCAACGGCTCCGGGAAGTCCACCACCATCCGGGTGCTGCTCGGGCTGCTGCGCGCCACGGCCGGCGACGCCCGGCTGTTCGGCGCCGACCCGTGGCGCGACGCCGTCGACCTGCACCGCCGGCTCGCCTACGTCCCCGGGGACGTGACGCTCTGGCCCCACCTCACCGGCGGCGAGGCCATCGACTTCCTCTCCCGGCTGCGGGGCAAGCCCGACCCGCGCCGGAAGGCCGAGCTCCTGGAGGCCTTCGAGCTCGACCCGACGAAGAAGGCCCGCACCTACTCCAAGGGCAACCGGCAGAAGGTCGCGCTCGTGGCCGCCTTCGCCACCGAGGTGCCGCTGCTCATCCTCGACGAGCCCACCGCCGGTCTCGACCCCCTGATGGAGGCCGTCTTCACCGAGCACGTGCGCCAGGCCGCCGCGCAGGGCACCTCGGTGCTGCTGAGCAGCCACATCCTGTCCGAGGTCGAGAAGGTCTGCGACACGGTGACGATCATCCGTGCCGGCCGGGCCGTCGAGTCCGGGACGCTGGACGAGCTCCGGCACCTGACGCGGTCCAGCGTCACCGCCGTCGTCGAGGGCGACCCGGCCGCCGTGGCCCGGATCGACGGGGTGCACGACGCCGTCGCAGCGCCCGACCCCGAGGGCACGCGGCTGACCTTCGACGTCGACAACACCGCGATGGGCGCCGTGCTCACGACGCTGTCCGGCCTCGGCGTGCGCTCGTTCACCGCCGCGCCGCCGTCGCTGGAGGAGCTGTTCCTGCGCCACTACGGCGACGACGTGTCCGACGACGGAGCGTCCGACGACGGCGACGCCGCGGACGGGGCAGGCTCCCGGTCCGGTACGGGCGCGGGGCCCGGCGCCGGTCGGCACGCCGCGGCCACGACGAGCGAGGCGGGTGCGCGATGA	MTSTAATRSTGAPPIEIHDLHKHFGPTRALDGLDLTVAEGEVAGFLGPNGSGKSTTIRVLLGLLRATAGDARLFGADPWRDAVDLHRRLAYVPGDVTLWPHLTGGEAIDFLSRLRGKPDPRRKAELLEAFELDPTKKARTYSKGNRQKVALVAAFATEVPLLILDEPTAGLDPLMEAVFTEHVRQAAAQGTSVLLSSHILSEVEKVCDTVTIIRAGRAVESGTLDELRHLTRSSVTAVVEGDPAAVARIDGVHDAVAAPDPEGTRLTFDVDNTAMGAVLTTLSGLGVRSFTAAPPSLEELFLRHYGDDVSDDGASDDGDAADGAGSRSGTGAGPGAGRHAAATTSEAGAR	PGPT0006725_12174	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_01217	837			hypothetical protein	ATGTTTAGTCTGGTGAACATGAGTTCAGTCGAGGGCGCCGACGGCGTCGCGGACCCTGCCGAGCCGACGGCGTCGGCCGCCCGGCCGTCGGCGGCCGGGTCGTCGGCGGCCGGGTCGTCGGCGGCCGGGTCGTCGGCGGCCGGGTCGTCGGCGGCCGGGTCGACGCGCGAACGCCTCCGCGACGCCGCCGTCCTGCGGTTCGCCCGCTCCGGGTTCGGCACGACGGTCCGCACCATCGCCGCCGACGCCGGGGTCAGTCCCGCTCTCGTCATCCACCACTTCGGGTCCAAGGAGGCCCTGCACCGGGAGTGCGACGAGCACGTGCTCGCCTGGATCGTCGAGTCCAAGCGGCAGAACATGGGCCGCGCCACGAGCGGCCAGCTCCTGCAGGTGCTCGCCGAGGCCGACGAGTACGCGCCCCTGCTCGGCTACGTGATGCGCTCCCTCCAGGCCGGGGGCGACGTCGCCCGCACCTTCGTGCAGCACATGATCGACGACGCCCGCGTCTACACCCGTGAGGCCGTCGCCGACGGCATCGCCAAGCCGTCGGTGGACGAGGACGCGCGGGCCCGGTACCTGACGCTCTCCGCCCTCGGCACGCTCTCGCTGTCCCTCACCCTCGACCCGCCCGAGGACCCCGAGGACTTCGCCGCGACGCTGCGCGCCTTCCTGGCCGAGCAGTACCTGCCCATGATCGAGATGTTCGCCCAGGGCTTCCTCACCAGTCGCCAGATGCTCGACGACTACCTGCTCTACCTCTCCGATCCTCCCGCGGACGGCGCTCCCGACGACGCGACGACAGAGACCGCCCCCGAGACCCCGAGCGAGGAACCATGA	MFSLVNMSSVEGADGVADPAEPTASAARPSAAGSSAAGSSAAGSSAAGSSAAGSTRERLRDAAVLRFARSGFGTTVRTIAADAGVSPALVIHHFGSKEALHRECDEHVLAWIVESKRQNMGRATSGQLLQVLAEADEYAPLLGYVMRSLQAGGDVARTFVQHMIDDARVYTREAVADGIAKPSVDEDARARYLTLSALGTLSLSLTLDPPEDPEDFAATLRAFLAEQYLPMIEMFAQGFLTSRQMLDDYLLYLSDPPADGAPDDATTETAPETPSEEP	PGPT0029255_634	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029255-cecR|ybiH-K23777	NA	NA
AK001_01218	1137	acr3	COG0798	Arsenical-resistance protein Acr3	GTGACCGCCACCCCGACGGACGCGCCCGTCCGCGCCCGCCTGTCCACCCTCGACCGCTGGCTACCGCTGTGGATCGGCCTGGCGATGCTCGGCGGACTGCTCCTCGGCCGGTACGTGCCCGTGCTCGGCGAGGCGCTCGAGGCGATGGAGGTCGGCGGCATCTCGCTGCCCATCGCCCTCGGCCTGCTGGTGATGATGTACCCCGTGCTCGCAGGCGTCCGCTACGACCGCGTCGCCGCCGTCACCGGGGACACGAAGCTGCTCGTGAGCTCCCTGGTGCTGAACTGGCTCGTCGGCCCGGCACTGATGTTCACCCTCGCCTGGATCTTCCTGCCCGACCTGCCCGAGTACCGCACCGGACTCATCATCGTCGGCCTCGCGCGCTGCATCGCCATGGTCGTCATCTGGAACGACCTCGCCTGCGGCGACCGCGAGGCCGCCGCCGTGCTCGTCGCGATCAACTCCGTGTTCCAGGTCGTCATGTTCTCGGTGCTCGGATGGTTCTACCTCGTCGCCCTGCCGCAGTGGCTCGGGCTCGGCGACGGCACCGGACTCGGGATCTCCACGGGGTTGATCGCCCTCAACGTCCTCGTCTTCCTCGGCATACCGCTCGCCGCCGGGTTCGCCTCCCGCGCCCTCGGCGAACGCACCCGCGGCCGCGACTGGTACGAGAACACCTTCCTGCCGCGCATCGGCCCGTGGGCGCTCTACGGGCTGCTGTTCACGATCGTGCTGCTCTTCGCCCTCCAGGGCGAGCAGGTCTCCTCCCACCCGGGCGACGTCGCCCGGATCGCCCTGCCCCTCCTGGCCTACTTCGGCCTCATGTGGGCGATCGGCATGGTCGTCGGCAAGACCGTCGGCCTGGGGTACGCCCGCACCGCCACGCTCGCCTTCACGGCAGCCGGCAACAACTTCGAGCTCGCCATCGCCGTCGCCGTCGCGACCTTCGGCGCCACGTCCGGCGAGGCCCTCGCCGGCGTCGTCGGGCCGCTCATCGAGGTCCCCGTCCTCGTGGGCCTCGTCTACGTCACCCTGTGGGTCGGACGCCGATGGTTCGGCGTCGACCCGCGCGCCACCCCGGCCGGCGCCGACGCCGGCACCGGGGCGACGCCGTCGGACACGGAGGTCCGCTCATGA	MTATPTDAPVRARLSTLDRWLPLWIGLAMLGGLLLGRYVPVLGEALEAMEVGGISLPIALGLLVMMYPVLAGVRYDRVAAVTGDTKLLVSSLVLNWLVGPALMFTLAWIFLPDLPEYRTGLIIVGLARCIAMVVIWNDLACGDREAAAVLVAINSVFQVVMFSVLGWFYLVALPQWLGLGDGTGLGISTGLIALNVLVFLGIPLAAGFASRALGERTRGRDWYENTFLPRIGPWALYGLLFTIVLLFALQGEQVSSHPGDVARIALPLLAYFGLMWAIGMVVGKTVGLGYARTATLAFTAAGNNFELAIAVAVATFGATSGEALAGVVGPLIEVPVLVGLVYVTLWVGRRWFGVDPRATPAGADAGTGATPSDTEVRS	PGPT0004705_522	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325	NA	NA
AK001_01219	1074	arsC_1		Arsenate reductase	ATGACCACCCTCACCCCCGCACCCGGCACACCCGACGCCGCCGGCTGCGCCCCGCGGCACAGCAGCTCCGACCACGCGATCGGCAGCGATGCGGCCGACGCCGTCTCGGCAGCCCTCAAGGCGCTCGCCGACCCGCTCCGGCTGCGCATGCTGTCCGCCGTCGTCACCGCACCCGACGGCCAGGCCTGCGTGTGCGACCTCGCCGAGCTCACCGACGTCTCCCAGCCCACCGTCTCCCACCACCTCAAGGTGCTGCGCGACGTCGGCATCCTCACCTCCCAGCGTCGCGGCACCTGGGTCTGGTACCGCGTCGCCCCCGGCTACCGGGGCGCCGTCACCACGCTGCTCGACCGGTTCGCCCCGGCGGCGCTCGCCGTCGGGTCCGGTGCCGACACGCGCCGGACCGCGATGGGCGGGCTGACCGATGTCGACCCGGCGCTCGACCGGCTCGTCGACTCCCTCGCCGGACGCCACCCGGGGGTCCCGGCCGACCAGGTGCGCCGGACGGTCCGCGAGTCGTACACGGGTCTCGCGCGGCGTGGCGGCATGCCGCTGCACCTGGTCGCGCTCACCGAGCACTTCGCCGGCCAGCGGCTCGCCGACCTCGAGCGGGCCGCCGCCGCCGAACGCGCGCAGCACGACGACGGGACCGCCGCCGCCCACCCGCCGCAGGTGCTGTTCGTCTGCGTCGGCAACGCCGGCCGCTCCCAGCTCGCCGCCGCGTTGCTGCACCGCTACGCCGGGACACGGGTCGTCGTCCGGTCGGCCGGGTCGATGCCCGTCGGCGACGTCCACGACACGGTGCGTCCCCTGCTCGCCGAGCTCGGAGCGGACGGCGAGGAGGTCTTCCCCAAGCCGCTCACCGACGACGCCGTGCGTGCCGCCGACGTCGTGGTCACCATGGGCTGCGGCGACGCGTGCCCCGTGCTGCCCGGCAAGCGGTACGAGGACTGGGTGGTGGGCGACCCTGCCCTCGCCTCGCCCCAGGGGGCGCGCGCCATCCGCGACGAGATCGACCGTCGCGTGCGCGCCCTGCTCGCCGACTTCCTGCCCGACCTCGACCTGCCCCGGTGA	MTTLTPAPGTPDAAGCAPRHSSSDHAIGSDAADAVSAALKALADPLRLRMLSAVVTAPDGQACVCDLAELTDVSQPTVSHHLKVLRDVGILTSQRRGTWVWYRVAPGYRGAVTTLLDRFAPAALAVGSGADTRRTAMGGLTDVDPALDRLVDSLAGRHPGVPADQVRRTVRESYTGLARRGGMPLHLVALTEHFAGQRLADLERAAAAERAQHDDGTAAAHPPQVLFVCVGNAGRSQLAAALLHRYAGTRVVVRSAGSMPVGDVHDTVRPLLAELGADGEEVFPKPLTDDAVRAADVVVTMGCGDACPVLPGKRYEDWVVGDPALASPQGARAIRDEIDRRVRALLADFLPDLDLPR	PGPT0004705_1938	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325	NA	NA
AK001_01220	414	arsC2	COG0394	Arsenate-mycothiol transferase ArsC2	ATGGCCTCCGTCCCGTCCGCCCTGTTCGTCTGCGTCCACAACGCCGGCCGGTCCCAGATGGCCGCCGGGTTCCTGCGCACCCTCGGCGGCGACGCCGTCGAGGTCCGGTCCGCCGGTTCCGCCCCGAAGGACGCGATCAACCCCGTGGCCGTGGAGGCCATGGCCGAACGCGGCATCGACATCGCCGCCGAGCAGCCGAAGGTGCTCACCGACGACGCCGTGCAGGCCTCCGACGTCGTCATCACCATGGGCTGCGGCGACGCCTGCCCCGTCTACCCCGGCAAGCGGTACGAGGACTGGCAGCTCGACGACCCCGCCGGTCAGGGCATCGAGGCCGTCCGCCCCATCCGCGACGAGATCGAGCAGCGCGTCCGCACGCTGCTCGCCTCGCTCGATGTCGAGGCGGTGGCCTGA	MASVPSALFVCVHNAGRSQMAAGFLRTLGGDAVEVRSAGSAPKDAINPVAVEAMAERGIDIAAEQPKVLTDDAVQASDVVITMGCGDACPVYPGKRYEDWQLDDPAGQGIEAVRPIRDEIEQRVRTLLASLDVEAVA	PGPT0004715_1927	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741	NA	NA
AK001_01221	1707	cdr_1		Coenzyme A disulfide reductase	ATGGGCGCCCGCCTCAAGATCGTCGTCGTCGGCTCCGTCGCTGCCGGGACGTCCGCGGCCGCCAAGGCCCGCCGCGGCTCGGAGGACGCCGAGATCGTCGTCTACGAGCGCGACACCGACATCTCCTACTCCGGGTGCGGCCTGCCGTACTTCCTGGGCGGACAGGTGGAGTCCATCGACGAGCTCACCCCGCGCGACGCGGCGTGGTTCGCCAAGCGCTACGGCATCGACGTGCGCACCGGCCACGAGGTCACCGACGTGGACACGGCCGCGCGCACCGTCACCGTCCGCGACTTCGCCTCGGGCGAGACCTTCACCGACGACTACGACGAGCTCGTGCTCGCCACCGGTGTCTCCCCCGTCGTCCCACCGCTGCCCGGCATCGACGCCGACGGCGTCCTCACGCTGCGCAACCCGTCCGACGCGACCGCGATCCGCGAGTGGATCGAGACCCACGACGTCGAACGAGCGGTGATCGTCGGCGCCGGGTACATCGGCCTCGAGACGGCCGAGCAGCTCACCGAGCGCGGCCTCGACGTCACCGTGGTGGAGATGGAGGCGCACTCCATGCCGCGACTGGACGCCGACGTCGCCGACCGCGTCGACGACGAGCTGCGCGGCCACGGCGTCGAGCTGCTCACCGGCGCCCGGGTGACGGCGATCGAGACGACCGACGACGCCGCGGCGCGGGCCGTGCGGGTGGCCCACGCGGGCGCAGGGTCCGACGACGAGCGCACCGTCGAGGCCGGCCTGGTCGTCGTCGCGGTCGGGGTGCGCCCGAACCTGGACCTGGCCCGCGCGGCCGGTGTGCGCGTCGGCAAGACCGGGGCGATCGCCGTCGACCGGACCGGGCGCACCGACGTCGAGCACGTGTGGGCCGTCGGGGACGTCGCCGAGAGCTTCGACCTGATCACCGGCGAGCCGACCTGGGTACCCCTCGGCTCGACCGCCAACAAGACGGGCCGCATCGCCGGGGACGCGCTGACCGGCGGGGACCTGGAGCACCGCGGGATCCTCGGCACCTCGATCGTGCGCGTCTTCGACCTCGCGGTCGCCCAGACCGGGCTCACCGAGGACCGGGCCCGCGCGGCCGGGTTCGACCCCGTCGTCGTGCACAACATCAAGCCGGACCGCCCGGCCTACCTGGGCGGGCAGGAGATGCTGATCAAGGCGGTCGCCGACCGCGGGACGGGGCGGCTGCTCGGGGCGCAGGCCGTGGGACCCTCCGGTGTCGACAAGCGGATCGACGTGCTCGCCACCGCGATCACCTTCGGGGCGAAGGCCGCCGACCTGTTCCACCTCGACCTCGCCTACGCCCCCACCTACGCGACCACCAAGGACCCGGTGCACTACACGGGTATGGCGCTCGACGGCGCGATCAACGGCCGGGCCCCCCTGATGTCCGCGACCGAGCTGGACCGACGGCGTTCCGACGGCGAGAAGATCCAGGTCGTCGACGTCCGGTCGGCCAAGGACCGCGCGAAGTCGGCCGTCGACGACTCCGTGCACATCCCCCTGGCCGAGCTGCGGGACCGCGCCGGCGAGCTCGACCCCGCCCTGCCCACGGTGACCTACTGCAACAAGGGCGTGACCGGCAACGCGGGGCAGAACGTGCTGCGGGGCCGCGGGTTCGCCGACGTCGCGAATCTGTCCGGTGGGAACAAGACCTACCAGCGCCACGTCCGCTCCCGCGAGGTGTCAGGATGA	MGARLKIVVVGSVAAGTSAAAKARRGSEDAEIVVYERDTDISYSGCGLPYFLGGQVESIDELTPRDAAWFAKRYGIDVRTGHEVTDVDTAARTVTVRDFASGETFTDDYDELVLATGVSPVVPPLPGIDADGVLTLRNPSDATAIREWIETHDVERAVIVGAGYIGLETAEQLTERGLDVTVVEMEAHSMPRLDADVADRVDDELRGHGVELLTGARVTAIETTDDAAARAVRVAHAGAGSDDERTVEAGLVVVAVGVRPNLDLARAAGVRVGKTGAIAVDRTGRTDVEHVWAVGDVAESFDLITGEPTWVPLGSTANKTGRIAGDALTGGDLEHRGILGTSIVRVFDLAVAQTGLTEDRARAAGFDPVVVHNIKPDRPAYLGGQEMLIKAVADRGTGRLLGAQAVGPSGVDKRIDVLATAITFGAKAADLFHLDLAYAPTYATTKDPVHYTGMALDGAINGRAPLMSATELDRRRSDGEKIQVVDVRSAKDRAKSAVDDSVHIPLAELRDRAGELDPALPTVTYCNKGVTGNAGQNVLRGRGFADVANLSGGNKTYQRHVRSREVSG				NA	NA	NA	NA	NA
AK001_01222	1293		COG0531	putative transporter	GTGACCCAGCTCGCCCGACGCCTCGGCACGAAGGACGCCGTCGCGATCGGCCTCGGCTCGATGGTCGGGGCCGGCGTCTTCGCCGCCTTCTCCCCTGCCGCCCGCGCCGTGCTGCCCGCCGGGACCGGGTGGGCCCTGCTCGCCGCGCTCGCCCTCGCCGCCCTGGTCGCTTACGCGAACGCCACGAGCTCCGCCCAGCTCGCCGCGCAGTACCCCGTCGCGGGGGGCACCTACGTGTACGGCCGCGAGCGTCTGGGCGCCTGGTGGGGCTACCTCGCCGGGTGGGGTTTCGTCGTCGGCAAGACGGCGAGCTGCGCGGCGATGGCGTTGACGTTCGCCACGTACGCGGCGCCACCCGGGTGGGAGCGACCCGTCGCGGCGACGGCGGTCGTGGCCCTGGCGGCGGTGAACTACCGAGGGGTCACGCGCACGGCCCGCCTGACCCGGTGGATCGTCGCCGTCGTGCTGCTCGTGCTGGCCACGTGGACGGCCGTGGTGTGGTCCTCCGGGCCGGTATCGTCGCTGTCCGACGGCGGCACCCCGGCCGACGGCGGCGCCCCGGCCGACGGCGGCAGCGCGGCCGCGTACGGCGTCCTGCAGGCGGCGGGCCTGCTGTTCTTCGCCTTCGCCGGCTACGCGCGCATCGCCACGATGGGCGAGGAGGTGCGCGACCCGCGGCGCACGATCCCGCGGGCCGTGCTGCTGGCTCTGGCGGGCGCCGTCGTCGTCTACACGGTCGTCGCCGTCACGCTGCTGGGGTCGCTCGGGCTCGAGGGGATCGCGGGGACGACGGCACCGCTCGCGACCGCGGTCCAGGACTCGGCCTGGGCCGGCGTCGTCGTGCGGGTCGGCGCGGCGGCGGCGTCGCTGGGCGCGCTGCTGGCCCTGGTGGCCGGCATCGGGCGCACCTCGCTGGCGATGGCCCGCGAGGGTGACCTGCCGCGCTACCTCGCGGCCGTGCACCCCCGCTTCGGGGTGCCGCACCGGGCGGAGGTGACGCTGGCGGCGCTCGTCGTGGTGCTGGTGCTCACCGTCGACCTGCGCGGAGCGATCGGGTTCTCGAGCTTCGGCGTCCTGCTCTACTACGCGGTCGCCAACGCCGCAGCGTGGACCCAGACCGGCGAGCACCGCCTGTACCCCCGGCTGCTGCAGGGATTCGGGCTGGTGGCGTGCCTGGTGCTCGTGGTGACGCTGCCCCTCGGGGCGGTGCTCGTCGGGGCGGGCGTGCTCGCCGTCGGGCTGGCCGTCCGCGCGGTCCGGCTGCGGCGCGGGCCGGCAGCGCAGCGACGCTGA	MTQLARRLGTKDAVAIGLGSMVGAGVFAAFSPAARAVLPAGTGWALLAALALAALVAYANATSSAQLAAQYPVAGGTYVYGRERLGAWWGYLAGWGFVVGKTASCAAMALTFATYAAPPGWERPVAATAVVALAAVNYRGVTRTARLTRWIVAVVLLVLATWTAVVWSSGPVSSLSDGGTPADGGAPADGGSAAAYGVLQAAGLLFFAFAGYARIATMGEEVRDPRRTIPRAVLLALAGAVVVYTVVAVTLLGSLGLEGIAGTTAPLATAVQDSAWAGVVVRVGAAAASLGALLALVAGIGRTSLAMAREGDLPRYLAAVHPRFGVPHRAEVTLAALVVVLVLTVDLRGAIGFSSFGVLLYYAVANAAAWTQTGEHRLYPRLLQGFGLVACLVLVVTLPLGAVLVGAGVLAVGLAVRAVRLRRGPAAQRR	PGPT0020810_6223	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294	NA	NA
AK001_01223	963		COG1262	Formylglycine-generating enzyme	ATGACAGCAGACGCGACGACCCGCGGCACGACGGCGGACCTTGTCCGCGTCGACAGCGCCACCTTCCGCATGGGGTCCGTGCGTTTCTACCGCGAGGAGGCGCCCGTGGTGGAGGTGACGGTCGACGCCTTCGAGATCGCGCGCACCCAGGTCACCAACGCCGAGTTCGCCCGTTTCGTGGCCGAGACCGGCTACGTGACCACCGCCGAGCGACGGCTGGACCCGGCCGAGTTCCCCGGCGCCGACCCGGCGATGCTCGAACCCGGTTCGCTGGTCTTCACCCCGACGACCGGGCCGGTCGACCTGCGCGACTGGCGGCAGTGGTGGCGGTGGCAGCCGGGAGCGTGCTGGCACCGGCCCGCCGGGCCCGGGTCGGGCCTCGACGGGCTCGACGATCATCCGGTCGTGCAGGTCTCGTTCGACGATGCCGCCGCCTACGCCGACTGGGCGGGGCTGCGGCTGCCCACCGAGGCCGAGTGGGAGCTGGCCGCCCGCGGGGGACTCGACGGCGCGACCTACACCTGGGGCGAGGAACCGCAGGACGGGACCCGGGCCAACACCTGGCAGGGCGCCTTCCCCTACCGGAACACCGGTGCCGGTACGGGCCGCTGGGTCGGGACGTCTCCCGTCGGGGCGTTCGCGCCGAACGGGTTCGGTCTCGCGGACATGGCGGGCAATGTCTGGGAGTGGACCACGACGCCGTGGAGCGCCGGCCACCGGCGGCCGGCGACACCGTTGCCGACCGAGGGCCCCGCCTGCGCCTGCGGGTGCAGCCCGGACCCGGCGGGGGCCCGTGACGGCCGGAGCGCCGGACCCGCGGACGTACCTCCGCAGCAGCGTGTGCTCAAGGGAGGTTCCCACCTCTGCGCCCCCGAGTACTGCCTGCGCTACCGGCCTGCGGCGCGGTCGCCTCAGACGCCGGACTCCGCGACCACGCACCTCGGGTTCCGCTGCGCGCGCTGA	MTADATTRGTTADLVRVDSATFRMGSVRFYREEAPVVEVTVDAFEIARTQVTNAEFARFVAETGYVTTAERRLDPAEFPGADPAMLEPGSLVFTPTTGPVDLRDWRQWWRWQPGACWHRPAGPGSGLDGLDDHPVVQVSFDDAAAYADWAGLRLPTEAEWELAARGGLDGATYTWGEEPQDGTRANTWQGAFPYRNTGAGTGRWVGTSPVGAFAPNGFGLADMAGNVWEWTTTPWSAGHRRPATPLPTEGPACACGCSPDPAGARDGRSAGPADVPPQQRVLKGGSHLCAPEYCLRYRPAARSPQTPDSATTHLGFRCAR				NA	NA	NA	NA	NA
AK001_01224	339			hypothetical protein	GTGACGGCAGGCCCCCCCTTCGACCCGGGTCTGCAGCCCGAACGGACACTGCTCGCCTGGCGTCGGACCTGCCTGGCGTTCGGCGTCGCGGTCGCCATAGCCGTCCGGTTCGCCGCCGAGGTGCTGGGCCCCTGGATCGCCGTGCTCGGTGCCGCAGGGCTGGTCACGGCCGTGGCGGCGTATCTGGTCGCGGCCCGGCGCTACCGTGTCGCCCATGACCGGCTGACGGCGGGCGGGGACCTTCCGGTCGACGGGACCGCTCTGGGCCTGCTCACCGTGACCGGCCTGGTCGTCGGCCTGGCCAGCGCAGCTTTCGTGACGGGAGCGATGTGGAGATGA	MTAGPPFDPGLQPERTLLAWRRTCLAFGVAVAIAVRFAAEVLGPWIAVLGAAGLVTAVAAYLVAARRYRVAHDRLTAGGDLPVDGTALGLLTVTGLVVGLASAAFVTGAMWR				NA	NA	NA	NA	NA
AK001_01225	363			hypothetical protein	ATGAGTGCCGAGACACGATTTCCCCGGTCCGTGTACGACGTGGGGACCGAACCCGATCCGCGATTCAGCCTGGCCAACGAACGCACCTACCTGGCGTGGGTACGCACGGCGATCGCGATGTTCGCCGCCGGGGTGGCGCTCGAGGCCCTGGCGGTGCCCGTCGCCGCCGGGTTCCGGCTCGCGTCGGCCGGCGTCTTCGTGCTGCTCGGCCTCCTCGCTCTCGTCCAGGGATTCCGCAACTGGGTGCGCACCGAGCGGGCCCTGCGCCGTCACCGCACATTGCCCGGCCCGTCGATCGGGATCCTCCTCGGCTCGGGGACCGGGCTCGCGATGCTCCTGCTCGTGGCGGGAGTGTTCGTGTGA	MSAETRFPRSVYDVGTEPDPRFSLANERTYLAWVRTAIAMFAAGVALEALAVPVAAGFRLASAGVFVLLGLLALVQGFRNWVRTERALRRHRTLPGPSIGILLGSGTGLAMLLLVAGVFV				NA	NA	NA	NA	NA
AK001_01226	1044	degA_3	COG1609	HTH-type transcriptional regulator DegA	ATGGAGCATCGTTCCGCCCGGCTGGTCGACGTCGCCCGGGCCGCCGGGGTCTCGACCGCCACCGCGTCGAGGGCTCTCAACCCGAGCAGCCGATCCGTGCGCGACGCAAACCGCGCACGGGTGCTCGCCGCCGCCGAAAAGCTCGGCTACACGACGAACCTCGCGGCCCAGACCGTGGCGCGCGGCCGGACGCGCGGCGTAACCCTGCTGCTCAAGACCATGCCGGAGGACTACGCAAACCCGATGGTCGCCGGCGTGGTCAACGCCGCACACCGGGAAGGACTCCCGATCAACCTGGTCGTCGCAGGATCGGGGGCACAGGACCTCGTCCGGGAGGTCGACGCCGCTCGCGGCCAACGCACCCAGATCCTCATGACCATGGGCGGCCGCGCCATCGACGACCGAGGGACCCCCGACCTGGTCACCGCGCTGCAACGCTACGAGGCCGACGGCGGCCGCGTCGTGCTCATCACCCAACCCGGCCTTCCGTTCGACACGGTCGCCTACGCCAACCGGGAGGGCGCCCGCGAGCTCGCCCGCGAGCTCGTCGGCCTGGGGTACGAGCACTTCGCGATCCTTGCCGGGTACGCCAACGGGATGACACAGCGGGACCGCACCCAGGGGTTCGTCGAAGGACTTACGTCGTGCGGTGTCGAGATGTCCGCCGACCGCGTGGTCACCGGCGACTTCAGCCGCGACGCCGCCTACGCCGCGGCAGGCGACCTCCTACGGCGCGGCATCCGGCTCGACGCGATCTTCGCCGTCAACGACGCGATGGCGCTCGGCGCCCTCACCCTCCTCCGCGACGCCGGCCCCCGCGGCCGGGGTGTCGCCGTGGCCGGGTTCGACGACATCAAGGCCCTCCGCGACGTCACCCCCGGGCTGACCACCGTGCACCTGCCCTGGGACGACGTCGCCGCCGAGGCGCTCCGCCTCGCCCTGAGCGAGCGCCCCGACGAGCCTCGCGTCAGCATCATCGAGGGGCACGTCGTCGTGCGCGAGAGCACCCCCGACCGACACATGGCACCCGCACTGCAGCCCTGA	MEHRSARLVDVARAAGVSTATASRALNPSSRSVRDANRARVLAAAEKLGYTTNLAAQTVARGRTRGVTLLLKTMPEDYANPMVAGVVNAAHREGLPINLVVAGSGAQDLVREVDAARGQRTQILMTMGGRAIDDRGTPDLVTALQRYEADGGRVVLITQPGLPFDTVAYANREGARELARELVGLGYEHFAILAGYANGMTQRDRTQGFVEGLTSCGVEMSADRVVTGDFSRDAAYAAAGDLLRRGIRLDAIFAVNDAMALGALTLLRDAGPRGRGVAVAGFDDIKALRDVTPGLTTVHLPWDDVAAEALRLALSERPDEPRVSIIEGHVVVRESTPDRHMAPALQP	PGPT0017992_5236	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01227	1062			Formate dehydrogenase, mitochondrial	ATGACCCGGCTGGATCTGCCGAGCGTCCCGGCCGGTACCGCCCCGGCCCTCGACGGCCCGGACGGCGACACCGCGCTCGGGCGGTACGCCCTGGCCATGTCGTCCGACGACCTGGCGCGGCGGCTCTTCGGCGCCGACCTGGAGCTGCTGCGCGACGTCCCCGGGACGGCGGCGCTGCCGGTCGTCTCGCGGTTCGACGACGCCACGCTGGACCGCATCGCCGACGTCGAAGCGCTCGTGACGGGCTGGGGGACGCCCCAGGTCACTGCCGAGGTGCTGGAGCGACTGCCGCGGTTGACCACCGTCATCCATGCGGGCGGCAGCACCGAGTCGGTGATCGCGGCCGATGTCCGGCCGCGGCTGCAGCGGTCGAACGCCGGGGCGGTGAACGCCGTCCCGGTCGCCGAGTACTCGCTCGCGATGATCCTGCTCGCCTGCAAGCAGGTGTTCGCCGCGCAGCGGATCTACCGGCAGCGTCGCGAACGGATCGACCGGGAGGAGGCGTTCCCCGACGCCGGGGTCTTCGGTCAGACCGTGGGGATCGTCGGCGCCTCGCGCATCGGGCGCCGCACGCTGGAGCTCCTGCGTCCGTTCGACCTGCGGATCCTGGTGTCCGACCCGTTCGTCTCGGCGGAGGAGATCGCCGCCCTGGGCGCCGAGAAGGTGTCGTTGGCGGAGCTGCTCGGCCGCAGCGACGTCGTCTCGATCCACGCGCCGCTGAACGAGGCGACCCGCGGGATGATCGGCGCGGACGAGCTCGCACTCATGCCCGCCGGTGCGACGTTGCTGAACACCGCCCGTGGCGGGGTCGTCGACCTTCCGGCGTTGGAGACCGAGCTGGTCTCCGGCAGGCTCGAGGCGATCCTCGACGTGACCGACCCGTTCGAGCCGTTGCCGGCCGACTCCCCGCTGTGGGAGTGCGAGAACGTGGTGATCACGCCGCACGTCGCCGGGTCGATGGGGACCGAGCTGCAGCGCATGGGCCGCCACGTGGCCGCGGAGCTCGGGCGGGCGCTCCGGGGGGAGCCGCTCGCGGTCAGCGAGTCGTCGGCGGGGCGCTGA	MTRLDLPSVPAGTAPALDGPDGDTALGRYALAMSSDDLARRLFGADLELLRDVPGTAALPVVSRFDDATLDRIADVEALVTGWGTPQVTAEVLERLPRLTTVIHAGGSTESVIAADVRPRLQRSNAGAVNAVPVAEYSLAMILLACKQVFAAQRIYRQRRERIDREEAFPDAGVFGQTVGIVGASRIGRRTLELLRPFDLRILVSDPFVSAEEIAALGAEKVSLAELLGRSDVVSIHAPLNEATRGMIGADELALMPAGATLLNTARGGVVDLPALETELVSGRLEAILDVTDPFEPLPADSPLWECENVVITPHVAGSMGTELQRMGRHVAAELGRALRGEPLAVSESSAGR	PGPT0009155_4970	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058	NA	NA
AK001_01228	918	araQ_2	COG0395	L-arabinose transport system permease protein AraQ	ATGGCCGCTGAGACGACGCGGTACCTGGTTACCACCACGAAGCGCAAGAAGAAGTCTCCTGCCGCCAGGGTCGGATGGGCCCTGTTCTACGTCGTGCTGACGCTGGCTGCTGTCGCGATGGTCGTGCCCTTCGTCTGGATGGTGCTGACGTCGCTGAAGTCGCCGGACGAGGTGAACACCTTCACCTGGCTGCCCTCGGAGCTGCACTGGGAGAACTACGTCGACGCCATGTCGGCGGCCCCGTTCGTCACCTACTTCCGCAACAGCTTCATCCTGGCGATCTCGCAGACGCTGCTCGCGATCGTGTTCGCGACCGCGGCCGGCTACTCCATCGCCAAGCTGCCGATCCCGGGCAAGAAGTATGTCCTGTGGTACGTCATCACGCTGCTGATGGTGCCGTTCCAGGTCGTGATCGTGCCGCTGTTCCTCGTGGTCAAGTCGATCCCGCTGGCCGGTGGCAACGACATCCTCGGTCAGGGCGGCAACGGGTGGCTCGACACCTGGGCCGGTCTGATCATCCCGCTGTCGATGGGTCCGCTGTTCATCTTCCTGTCGCGCCAGTTCTTCACCTCGTTGCCGAGCGAGCTCGCCGAGGCGGCGCGGATCGACGGCGTGAGCGAGTACGGGATCTTCGGCCGCATCATGCTGCCGCTGGTCAAGCCGGCGCTCGTGACCATCGCGGTGTTCCAGATCGAGGCGGCGTGGAACAGCTTCCTGTGGCCCCTGATCGTGACCACCTCGCCGGACCTGCGCCCGCTCCAGCTGGGCCTGGCGATCTTCTCCCAGGACGAGCTCAACGTGCAGTGGAACTACCTGATGGCCGGCGCCACACTGGCGACGGTACCGATGATCCTGCTGTTCATCGTGGCCCAGCGCTACTTCGTGCAGGGACTGGCGAGCTCGGGGCTCAAGGGATGA	MAAETTRYLVTTTKRKKKSPAARVGWALFYVVLTLAAVAMVVPFVWMVLTSLKSPDEVNTFTWLPSELHWENYVDAMSAAPFVTYFRNSFILAISQTLLAIVFATAAGYSIAKLPIPGKKYVLWYVITLLMVPFQVVIVPLFLVVKSIPLAGGNDILGQGGNGWLDTWAGLIIPLSMGPLFIFLSRQFFTSLPSELAEAARIDGVSEYGIFGRIMLPLVKPALVTIAVFQIEAAWNSFLWPLIVTTSPDLRPLQLGLAIFSQDELNVQWNYLMAGATLATVPMILLFIVAQRYFVQGLASSGLKG	PGPT0016540_2051	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_01229	981	melD_4	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGACGAAGAGCATGCACACGACGGCTGAGTCGGCCGACGCGGCCGGACCGGCCGGGCCGACCACGCCACCCCAGGAACCCGCACCGCGGCGCCGGCGGGGCACGAACGGCATGATGCGCGCACAACGACGCGCGGGTCTGATCATGATGGCGCCGGCCCTGCTCAACGTCTCGATCTTCCTCGGCATCCCGCTGGTGCTGGCGTTCGTCCTCAGCTTCACCGACTACGGCTTCTTCGCCTCGCCGCAGTTCATCGGCCTGGACAACTACACCGAGATGTTCGCCGACCCGGACTTCCAGATCGCCGTGGTCAACACGATCATCTACACCCTCCTGGTGGTCCCGTTCGCCATGGGGCTGGCCCTCATCGTCGCGCTCGCGCTCAACATGCCGATCCGCGGTCGCGGCGTCTACCGCGTGATGTTCTACGTCCCGGTCGTGACCGCGACCGTGTCGGTGGCCACGGTCTGGCTGTGGATCCTCAACCCGAGCTTCGGGCTCGCGAACCAGATCCTCGGCCTGTTCGGCCTGCCGCCCTCGCAGTGGCTCACGGACCCGGACACCGCCCTGGTCAGCCTCGCGATGGTCGGGATCTGGCAGGGGCTCGGCACCAAGATGGTGATCTACCTCGCCGCCCTGCAGGGCGTCGACCCGGCGCTCGTCGAGGCGGCACGTCTCGACGGGGCGAACCGGTGGCAGGTCTTCTGGAACGTCACCTGGCCGTCGCTCGGTCCCGCGCACTTCTTCGTGTTCATCACGTCGATCATCGCCTCGTTCCAGGTCTTCGACCTCGTCTACGTCACGACGGAGGGCGGACCGGCGAACGCGACCCGGGTTCTCGTGTACGACATCTACCAGAACGCCTTCTCGCGCCTCGACCTCGGTTATGCGTCGGCGGAGTCGGTGTTCATGTTCGGCCTGATGGCGGTCTTCATCGCGGCCGGACTGTACCTGCAGAGGAGCAGCTCCGATGGCCGCTGA	MTKSMHTTAESADAAGPAGPTTPPQEPAPRRRRGTNGMMRAQRRAGLIMMAPALLNVSIFLGIPLVLAFVLSFTDYGFFASPQFIGLDNYTEMFADPDFQIAVVNTIIYTLLVVPFAMGLALIVALALNMPIRGRGVYRVMFYVPVVTATVSVATVWLWILNPSFGLANQILGLFGLPPSQWLTDPDTALVSLAMVGIWQGLGTKMVIYLAALQGVDPALVEAARLDGANRWQVFWNVTWPSLGPAHFFVFITSIIASFQVFDLVYVTTEGGPANATRVLVYDIYQNAFSRLDLGYASAESVFMFGLMAVFIAAGLYLQRSSSDGR	PGPT0016535_4597	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_01230	1272			hypothetical protein	GTGGGTACACGCAAGAAGGCCATGGCGGCCGTTGCGGCGATCAGCGCGACCGCGCTGACCATTGCTGGTTGCTCGGGCGGCGGGGATGCCGGTTCCGAGGAGAGCTCGACCGAGGCTACGGGCACCCTGCGCGTCCTGACCCCGGGATATCCCGCCTCGAACGAGGGGACCGAGGCGTTCGACGCCGTCGTCGCCGCGTTCCAGGAGGAGTACCCGAACGTGGAGGTCGAGCCCGACTTCGCCACGTTCGGCAACCTGAACGAGAAGATCTCCACATCGCTCGCCGGTGGCCAGCCCTACGACATCATCGTCACGGGGATCGGCTGGGTCCCGCCGTTCGCGTCCCAGGGGGCCTTCCTCGACCTGGCCGAGTTCGGCGTCGACCAGGACACGGTCTCCGAGGCGACGACTCCGGCCGCCGTGCCGGCCGTCACCTACGACGAGAGCGTGTACGCCTGGCCGCTGATCATGGGCGCCAAGCCGGCCGCGCTGAGCAAGTCGGCCTTCGAGGAGGCGGGACTCGACCCGAACTCGCCGCCGGAGACGCTCGACGAGCTCATGTCCGTGGCCGAGCAGCTCACCGAGTACGACGACAACGGCACGGTCACCCGCGCCGGGTTCGACTTCTGGGGAGTGGGCTACCGACACGTGTTCACCACGCTCCTCGGTGCGCTCGGCCCGGACCTGTACGAGAACGGCGAGCCGGGCTTCGCCGGACCCGAGGGGGAGGAGGCGCTGCAGTGGATGGTGGACGCCGTCAACGACTCGCACGTGACCGAGTACGGCCTCGAGTCGGCCTCGGGCGCGCCGCTGATGTACTCCGGTGAGGCCGCGATGGGTCTCGTGGGTGGCCACATCGACTGCGAGGACGTCGGTCAGGACGTCTGTGACGACATGGTCTTCTTCAGCGTCACCGACGAGCAGCCCTCGATGTTCACCGGTGGTCAGGTCGCCTCGATCGGGGCGGGCACCGAGCTGCCGGACGCCGCGTGGGCCTTCATCGAGGCCATGTCGACGCCGGAGGCCGAGGCCGAGATGGCTGCCATGAACTTCGCGGTCCCGGCGATCGCCGGGTCGGAGGACTCGGAGGCCGTGACCGGCAATCCGGCCAGCACGTTCGTCTACGAGAACCTGGACGACGTCGTCTTCGAGGGCGGTGCGGCCAACTGGCTCGACTTGCGCGGGGACTTCGACACCGAACTGCAGCGGGCGCTCCTGGAGGAGGCCACTCCGGCCGAGGTGCTCGAGACCCTGGCTGCCCAGTCAGAGTGA	MGTRKKAMAAVAAISATALTIAGCSGGGDAGSEESSTEATGTLRVLTPGYPASNEGTEAFDAVVAAFQEEYPNVEVEPDFATFGNLNEKISTSLAGGQPYDIIVTGIGWVPPFASQGAFLDLAEFGVDQDTVSEATTPAAVPAVTYDESVYAWPLIMGAKPAALSKSAFEEAGLDPNSPPETLDELMSVAEQLTEYDDNGTVTRAGFDFWGVGYRHVFTTLLGALGPDLYENGEPGFAGPEGEEALQWMVDAVNDSHVTEYGLESASGAPLMYSGEAAMGLVGGHIDCEDVGQDVCDDMVFFSVTDEQPSMFTGGQVASIGAGTELPDAAWAFIEAMSTPEAEAEMAAMNFAVPAIAGSEDSEAVTGNPASTFVYENLDDVVFEGGAANWLDLRGDFDTELQRALLEEATPAEVLETLAAQSE	PGPT0016545_7853	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_01231	609			hypothetical protein	GTGGACGCCTCCGACACCCCCGACCGCCGACGATCGCGACCGACCCTGCTCGGGGTCTTCACCGTGGTCGGCGATCTCCTGACCATCTCTCTGCTGCTCCTGGTTCTCTCGATCCCCCTGGTCACCGCGGCACCCGCGGCGGCGGCGGCCATGGAGGCACGGGCCGCCGTCGACCCCGGCTACCCCTCGAACCCCGCCAGGACGATCCTCACGGGGGTGCGCTCCCGTTTCCGTAGCTCGTGGTACGTCGGTCCCGCCGTCCTGGCCCTCGGCGTGGCCGGTTGGGTCGCAGTCGCCTTCTGGATCACCGCGCCCGCACCGCTGAGCGTCGCCATGCTGGCGCTCGTGCTGGCGATCGTCATGTGCGCCGCCCTGCTGACCCTCGCCCTGCCGACGGCGATGACCCGCACCGTCGGGACCCGGGCGGCGCTCGTCGAGGCGGCGCGACTGGTGGCCTCCGGCCCGTGGCGGAGCGTCGTCGCGCTGGCCGCGGCGGGGGCCGCCGTCGTCCTGGCCCGGACGTACCCGACATTCGGCATCGCGCTGCTGGGCGCCGCACTGGTCGAGATCGCCTGGCGGACGTGGAACAACCCCGCGCAGCAGAGGTAA	MDASDTPDRRRSRPTLLGVFTVVGDLLTISLLLLVLSIPLVTAAPAAAAAMEARAAVDPGYPSNPARTILTGVRSRFRSSWYVGPAVLALGVAGWVAVAFWITAPAPLSVAMLALVLAIVMCAALLTLALPTAMTRTVGTRAALVEAARLVASGPWRSVVALAAAGAAVVLARTYPTFGIALLGAALVEIAWRTWNNPAQQR				NA	NA	NA	NA	NA
AK001_01232	1374	atsA_1	COG3119	Arylsulfatase	ATGCCCACCCGGCCGAACATCATCCAGATCGTCGTGGACGACATGGGAGTGGGAGACCTCTCCTGCGAGAACGCCGGAGCGTCCTCGACCCCACGGCTCGACACCCTCGTCGAGGAGGGGGTCCACCTGCAGCAGCACTACTCCGGCTCCCCCGTCTGCGCGCCCGCCCGTGCCGCCCTCCTGACCGGCCGTTACCCGCACCGCACCGGCGCCATCGACACCACCGAGGCGCGCGGGCTCGACCGGCTCGGCGTCGGCGAGACGACCCTGGCAGACGACCTGCGGGCCGGCGGCTACGCCACCGGGCTCGTCGGCAAGTGGCACAACGGGGCCTTCGACGCCGCCTACCACCCTCGGTCCCGCGGGTTCGACGAGTTCACCGGGTTCCAGGGCGGCTGGCGCGACTACTGGAACTGGCGTATCGAACGTGGCGGCACCGTGCTCGACGCCGACGGTCGCCACCTCACCCAGGTCTTCACCACCGAGGCGATCGACTTCGTGCGACGCCACCGCGACGCCCCGTTCTTCCTCCACCTGGCCTACAACGCCCCGCACTACCCGCTCCAGGCACCCGAGCACCTCGTGCAGCGATTCCTCGCCCCGGGGCGCACCCGCGCCGTCGCCACGATCTACGCGATGCTCGCGATGGTCGACGAAGGCGTCGAGCGTCTGCTGACCGAGGTGGACCGCCTCGGGCTGACCGACCACACGATCGTCATGTTCACCAGCGACAACGGCCCCGAGGCCAACGGCGTCGGCGAGGACGCCACCCACCGGTTCAACGTCGGCATGCGCGGCTCCAAGACGCACGTGTTCGAGGGCGGCATCCGGGTCCCGCTGATCATGCGCTGGCCGGACGGCCTGCCGGTCGGTATCGAGTCCAGCGACCTGGTCCACTTCGTGGACTGGCGTCCCACGCTCGCCGCGGCCGCGGGCGTGGGGCGGGCCGGTGACCGGGAGCTCGACGGCTCCGACGCCTGGGACCGGCTGCGCGGCGAGGGGACCGACCCCGGGGCGCGGTTCTGGCAGTGGACCCGGTACGTGCCGGAGCGCGAGTCCAACTGCGCCATGCGGGACGGCCGCTGGAAGATCGTGTGGCCCGACTGGCCCGGTTCGTTGGACGTCACCCCCGAGGACGCCCGACGGGACGTGGAGATCAAGACCACGCCGCCGACCACCCTCGACACCACCCCGTATCCGCAGGTCCCGCGACCCGACCACGTCGCACCGCTGCTGTTCGACCTCGAGGCCGACCCGCACGAGACCACCGACCTCGCCGCGACGCACCCCGAGCGGGTCCGCACCATGACCGACGCCGTCCGCACCTGGTTCGACGACGTCGAAAGATCCCGGCACGCCGGGGCGGCCGCCTGA	MPTRPNIIQIVVDDMGVGDLSCENAGASSTPRLDTLVEEGVHLQQHYSGSPVCAPARAALLTGRYPHRTGAIDTTEARGLDRLGVGETTLADDLRAGGYATGLVGKWHNGAFDAAYHPRSRGFDEFTGFQGGWRDYWNWRIERGGTVLDADGRHLTQVFTTEAIDFVRRHRDAPFFLHLAYNAPHYPLQAPEHLVQRFLAPGRTRAVATIYAMLAMVDEGVERLLTEVDRLGLTDHTIVMFTSDNGPEANGVGEDATHRFNVGMRGSKTHVFEGGIRVPLIMRWPDGLPVGIESSDLVHFVDWRPTLAAAAGVGRAGDRELDGSDAWDRLRGEGTDPGARFWQWTRYVPERESNCAMRDGRWKIVWPDWPGSLDVTPEDARRDVEIKTTPPTTLDTTPYPQVPRPDHVAPLLFDLEADPHETTDLAATHPERVRTMTDAVRTWFDDVERSRHAGAAA				NA	NA	NA	NA	NA
AK001_01233	396	rhaM_1		L-rhamnose mutarotase	ATGACGACGTCTGAGGACGCGCGGGAGACCCAGGACGTGAGCCCCGCGGACGGGCCGCAGGACGGCGCGACGGTCCGCCGTGTCGCCTCGGTGATCGGGCTGCCGCCCGAGCACCGCGAGGCCTACGAGCGCTACCACGCCGAGGCGTGGCCCGGCGTGCTCGCTGCGTTGCGGCGTCACCGGGTGCGCAACTACTCGATCTACCGCTACGGCGACCTGCTGTTCTCCTACCTCGAGTACGTGGGGGACGACTTCGAGGCGGACATGGCGGGCATCGCCGCCGACCCGGTGACGCAGGAGTGGTGGTCGGTGGTGAACCCCCTGCAGCGTCCCCTGGACGACCGGGCCGAGGGCGAGTGGTGGCACGAGATCCCGGAGATCTTCCACACCGACTGA	MTTSEDARETQDVSPADGPQDGATVRRVASVIGLPPEHREAYERYHAEAWPGVLAALRRHRVRNYSIYRYGDLLFSYLEYVGDDFEADMAGIAADPVTQEWWSVVNPLQRPLDDRAEGEWWHEIPEIFHTD	PGPT0017795_743	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534	NA	NA
AK001_01234	738	lutR_1	COG2186	HTH-type transcriptional regulator LutR	ATGTCGCAGACCGACAATGCGATCGACGCCATCAAGCGGATGATCCAGTTCGGCGAGCTGCGTCCGGGGGACCGGCTGCCCCCGGAGCGGGAGCTCGGCGAGCGGCTGGGCGTGTCCCGCAACTCGCTGCGGGAGGCCGTGAAGTCGCTCGAGACCATCAACGTCCTCGCGGTGCGACGCGGGGACGGCACCTACGTGACCAGCCTCGAACCGAGTCTGCTGCTGGAGGGCATCGGCTTCCTCGTCGACATCCACGACGACGCCACCCTGCTGGAGATGTTCGGCGTGCGGCGGATCCTGGAGGCCGCCGCCGCGCGCACCGCGGCGACCCGTGCGACCCCGGAGCTGATCGACCGCCTCGAAGCCGTCGCGGAGAGCTCCCAGCACGCGACGACGGTGGACAGCCTGGTGGACCACGACACCGAGTTCCACCGGGAGGTCGCCTCGGCCGCGGAGAACCGGTATCTGTCCGGGATGCTCGACACGCTCTCGTCCTCCACGGTGCGGGCACGCGTGTGGCGGGGGCTCTCGCAGGGCGGGGCGGTGGAACGCACGCTCGCCGAGCACCGCGCCATCCTGGACGCGGTGCGTGCGGGGGACGCCGAGCTGGCCTCGGCCCTGATGACCGCGCACATCGCGGGGGTCGAGACGTGGCTCCGTGGGGCGGCCCGGGGGTGGCACCCCGATCGCGAGGACGACGGTGACGACGAGGAGGAGAACACCGATGACGACGTCTGA	MSQTDNAIDAIKRMIQFGELRPGDRLPPERELGERLGVSRNSLREAVKSLETINVLAVRRGDGTYVTSLEPSLLLEGIGFLVDIHDDATLLEMFGVRRILEAAAARTAATRATPELIDRLEAVAESSQHATTVDSLVDHDTEFHREVASAAENRYLSGMLDTLSSSTVRARVWRGLSQGGAVERTLAEHRAILDAVRAGDAELASALMTAHIAGVETWLRGAARGWHPDREDDGDDEEENTDDDV				NA	NA	NA	NA	NA
AK001_01235	2022			hypothetical protein	ATGCATCGCGCTGCGTCGGTGGCCACGCGGACGGCACCCGGTGGTGCCTACCTCCCGCACCGCTCGGTCCACCTGGACTTCCACACCTCACCGCTGATCACCCCGATCGCGCAGGAGTTCGACCCCGAGGAGTTCGCGGCACGGTTCGCCCGCCTCGGTGTGGACTCGGTGACCCTGTTCGCCAAGTGCCACCACGGCCGGCTCTACTACGACACGGCGCGCGAGGAGCGGCACCCGGGTCTGGGCGGTCTGGACCTGCTGCGGTCACAGGTCGAGGCGCTGCGCCCGCTCGGCATCCGCACCCCGATCTACGTCAGCGTGCTGTTCGACGAGCACGCCGCCACCACCCACCCGGAGTGGGTGGCCCTCGACGCCGACGGAGCACCGGTCCGCGTCCGCCCGGACGGTGTGCCGGGCTGGCGGGTCCTCGACATGACGAGCGACTACCGCCACTATCTCGCCGACCAGGTCACCGACGTCCTGGAGCACTTCGACGACGCCGACGGGTTCTTCTTCGACATCTGCTTCGACCAGCCGGGCTTCACGGGGACGGCCCGTGCCGCAGCGAGGGCGGCGGGATTCGACCCGGAGACCGAGGACGGTCGCCTCGGCGCCTCGCGTGCCGTCTCGCACGAGTACATGGCCCGCCTGCGCGACATGGTCGCCGGTCCGGGTCACGACGGCGTCCCGCGCAGCGTGTTCTTCAACTCGCGCCCGCGGCTGCTGCTGGCCGACGAGCTGGGCTTCAGCACGCACGACGAGATCGAGGCGCTGCCCACCGGCGGATGGGGCTACGCGTACGCCCCGACGGTGGCGCGCAGCGTCCTGCCCGTCCAGCCGCGGGCGATGGGGATGACCGGCCGGTTCTTCGGCAGCTGGGGCGACAGCGCGAGCCTGCATCCCACGGCGGCGCTGGCGTACGAGTCGCTGCAGATGGTCTCCCTCGGCATCGGGATCAGCATCGGGGACTCGCTGCCGCCGGCCGGACGCTCGCATGACGCCGTCACCGACCGCCTGGAGCGGACCTTCCGCGTGGTGCGCGAGGTGCAGGAGGCCACCGCGGGCGCGGAGCGCGTGGCCGAGGTCGCCGTCGTGCGCCCCGGTGGTGCCGCCTCCGGCGAGGTCATGGACGCCGACGCGCCCGGCGCCGGCGAGCTGGCGGCGTTGCGTCTGCTGACCTCGCGGGGCGTGGACTTCGACTTCGTGGCCCCGGGGGACGACCTGGCCGGCTACCGTGCCGTCGTCGTGCTCGCGGACGTCGACCTGGACGACGCGACGGTCCGGGCCCTGACGGCGCACGTCGCGGCGGGCGGGTCGCTGCTGCTCTCGGGGCTGTCCCGCGGCGCGGACGCGCTCGCTGGCCTGACCGGTCTGGAGCCGACCGGTGAGCCCGGACACCGTCGTGAGTTCGCCCGGCCCGCGCCCGTCACCGGGTTGCCCGACTTCGACCACGTCCTGCCCGGCGGCGTGCCCCGGGTGCGGGCCGCCGACGACGTCCAGGTGCTCGCCACCGTCACCGAGCCGTACTTCGACCGGACCGAGGACCGGTTCAGCGGCCACGAGTACACGCCGGCCGGCCGTGCGACCGACCACCCGGCCGTGGCCGTGCGGGGCCGGGTGGCGACGGCGGCCTTCCCGCTGCTGGAGGCTTTCGGCTCCACGGGGGTCCCGGAGCTCGCCGAGCTCGCCGGGGTCGCGTTCGCGGGTGCCTACCCGCGTCCTGCCCTGCGGGTCGACGGTCCAGCGCACCTGGAGGCCACGCTGCAGCGTCGGGGGACGACGGCGTTCGTGCACCTGCTCAGCTATCTGCCGTCCCGCCGGACCCAGGCGGACGTGGAGACGGTGCTCGACCCGGTGCCCGTGGTCGGCGCCGAGGTGGCCGTCCGGGTCGACGGCGCGACACCGCGCCGGGTGCGCACGCTCGCGGGCGCCGAGCTCCCGTTCGAGGTCTCGGACGGCTATGTTCGCTGCACCGTGTCGTTCGACGCCGGGCACTGCCTCGTCGTCGTTGAAGGGGAGTGA	MHRAASVATRTAPGGAYLPHRSVHLDFHTSPLITPIAQEFDPEEFAARFARLGVDSVTLFAKCHHGRLYYDTAREERHPGLGGLDLLRSQVEALRPLGIRTPIYVSVLFDEHAATTHPEWVALDADGAPVRVRPDGVPGWRVLDMTSDYRHYLADQVTDVLEHFDDADGFFFDICFDQPGFTGTARAAARAAGFDPETEDGRLGASRAVSHEYMARLRDMVAGPGHDGVPRSVFFNSRPRLLLADELGFSTHDEIEALPTGGWGYAYAPTVARSVLPVQPRAMGMTGRFFGSWGDSASLHPTAALAYESLQMVSLGIGISIGDSLPPAGRSHDAVTDRLERTFRVVREVQEATAGAERVAEVAVVRPGGAASGEVMDADAPGAGELAALRLLTSRGVDFDFVAPGDDLAGYRAVVVLADVDLDDATVRALTAHVAAGGSLLLSGLSRGADALAGLTGLEPTGEPGHRREFARPAPVTGLPDFDHVLPGGVPRVRAADDVQVLATVTEPYFDRTEDRFSGHEYTPAGRATDHPAVAVRGRVATAAFPLLEAFGSTGVPELAELAGVAFAGAYPRPALRVDGPAHLEATLQRRGTTAFVHLLSYLPSRRTQADVETVLDPVPVVGAEVAVRVDGATPRRVRTLAGAELPFEVSDGYVRCTVSFDAGHCLVVVEGE				NA	NA	NA	NA	NA
AK001_01236	840	lacG		Lactose transport system permease protein LacG	ATGGCCACACACACCCAGGAAGAACGTCTTCCCCTGCACCTGCGTCGCCTCGACCGGGTCCTGATCTATGCGCTCCTCACGGTCTTCGCGCTGGGCTTCGCCTGGCCGCTCATCCATGCCGTGCAGATGTCGGTGGCCGTCGGGGGCATCGGGAACTACTGGGCCGTCCTGACCCGGGACCTCAACGGGATCTCCATCCCGTTGACGTTCGTCAACAGCGCCGTCATCGCGGTCATGCACGCCGGGCTCGTCTGCGGGATCGGCGTGCTCGCGGCCTACGCGTTCTCCTTCATCGAGTTCCGCGGCCGCGAGGCCCTGTACTACGGCGTCCTGCTCTTCCTCGCGGTGCCGGCGACCGCCATCCTGGTCCCGGTCTACTTCCTGAGCGGCACGCTCGGCCTGTTCAACACCCACCTCGGCGTCGCCCTGCCCGAAGCCGTGCTGACCTTGCCGTTCGCCGTGCTCCTGCTGCGCAACCGGATGGACGACATCCCGCGACAGCTCGTGGAGGCCGGAGTGATCGACCGTGCCCACCACGGGCACCTCTTCTGGCACATCGCCCTGCCGCTCACGCGTGGTCCGCTGGCCAACCTCGCCGCGTTGAGCATCATGTGGTCGCTGCAGGACTTCATCTTCCCCTCGGTGCTGCTGCGGTCGCCCGAGCTGACGACGGCGGCTCAGGCGGTCCAGAACATCCGGAGCGCCTTCGCCCCGACGCCGCTCGAGTCGTCCCAGTACTTCGCCGCCCTCGTCCTGCTGGGTCTCCCGGCGCTGGTCATCATCCTGTTCGCGTTCCGGTTCGTGACGAAGGGGCTGACCGGAGGCGGCCTGAAGGAGTGA	MATHTQEERLPLHLRRLDRVLIYALLTVFALGFAWPLIHAVQMSVAVGGIGNYWAVLTRDLNGISIPLTFVNSAVIAVMHAGLVCGIGVLAAYAFSFIEFRGREALYYGVLLFLAVPATAILVPVYFLSGTLGLFNTHLGVALPEAVLTLPFAVLLLRNRMDDIPRQLVEAGVIDRAHHGHLFWHIALPLTRGPLANLAALSIMWSLQDFIFPSVLLRSPELTTAAQAVQNIRSAFAPTPLESSQYFAALVLLGLPALVIILFAFRFVTKGLTGGGLKE	PGPT0016340_1779	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_01237	861	lacF_3		Lactose transport system permease protein LacF	ATGCGGGGGCCGTGGTTCGCGGTCCTGTTCCTCGCGCCGCTGGTGCTGTTCTACAGCGTCTACTACCTCTACAGCTTCGGCGTCCTGGGCGTGGTGAGCACCCAGACCGTCGGGCTGACGTTCACCAACGCGGTGGACGTCGGTCTGCAGAACTTCGAGCTGGTGATCACCGACCCGTCGTTCCAGCGTTCGCTGTTCAACACGATCTTCTTCGCGCTGTTCCTCGTCGGGATGTCGCTGACTCTCGGCTACTTCCTCGCGATGCTGATCGCGTCTGGCGTCCGGATGCGCCGGTGGTACTACACGATCTTCCTTCTTCCCTCGCTCATCCCGATGTCGCTGTTCGCGACCGTGTTCGGCCGGATGCTCGAGACGAGCGACGGCGCGATCAACGAGATGCTGCGCACCGTCGGCCTCGGATTCCTCGCGCAGGACTGGCTCGGCGACCCGACCGCCGCCTACATCGCGGTCCTGGTGCTGATCACCTACACGATCGGGCTGCCGATCATGTACTACACCACCGACGTCGGGCAGGTGAACACCTCCGTCATCGAGTCCGCCACCCTCGACGGCGCGTCGGTGTGGCAGATCTACCGCATCATGCTCTACCCGTTGCTGAAGTCCACACACATCACGGTTCTGCTGTCCGTCATCCTGGGCAGCTTCCGGGCGTTCGACATCATCTTCTTCTCCACCGCCGGACAGCCCGGGGGCCGCACCGACATCACCGGGACGTACATCTACACCGCCACTCTCGGTGTGGACCGTGTCGGCTTCGCGGCGGCAGCATCCATCATCGTGCTCGTGATCGCGCTGGCGATCTCGATCGTCCAGATTCTCGTGCGGCGGAGGATGAGCTGA	MRGPWFAVLFLAPLVLFYSVYYLYSFGVLGVVSTQTVGLTFTNAVDVGLQNFELVITDPSFQRSLFNTIFFALFLVGMSLTLGYFLAMLIASGVRMRRWYYTIFLLPSLIPMSLFATVFGRMLETSDGAINEMLRTVGLGFLAQDWLGDPTAAYIAVLVLITYTIGLPIMYYTTDVGQVNTSVIESATLDGASVWQIYRIMLYPLLKSTHITVLLSVILGSFRAFDIIFFSTAGQPGGRTDITGTYIYTATLGVDRVGFAAAASIIVLVIALAISIVQILVRRRMS	PGPT0016335_1349	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_01238	1338			hypothetical protein	ATGACTATGCGCAGAGCTCTGATCACCCTCGGCGGGGCTGTCTCCGCCGTGGCTCTGGCCGCCGGGTGCGGCTCGTCGGGAGGCGTCGGCGGGTCCGAGGAGACCGAGCCCGTCGAGCAGGACACGAGCGAAGAGGTCGAGCTGACCTACTGGACCTGGTTCCCGCCGGAAGACACCCTGAACGCGGCCATCGAGGCGTTCGAGGAGGAGAACCCGAACATCTCGATCGACCTCCGGGTCTTCGTCAACACCGACTACCAGCAGCAGCTGCCGCTGGCGCTCAGCGGCGACGAAGACCTCGACGTGGTCGGAGTCCAGGTGGCTGCGATGACCGACAGCGTCCGCGAGTTCCTGCTGCCGGTGGACGACTGGGCCGGGGACTGGCTGGACGAGCTCAACGAGCCGATGCTCCAGCAGACCCAGGACATCGCCTCCGACGACGTCCTCTACTCGGTCCCGATGGGGTCGATCGCCTCACCGATCATGTACTACAACGCCGACATGCTCGACGAGGCCGGCGCGGAGGTGCCGACCACGGTCGACGAGTGGAAGACCGCCGTCGACGCCGTCTCCGCCACGTTCCCCGACGTCACGCCGGTGGTCTTCCAGGGGGAGCCCTACTGGCAGTCCGAGATGCTCTTCGGGTTCGCCGAGCAGACGTCTCCCGGGTTGTCGGACGACATCAACCTCGACGGCGGGTCGTGGGACCAGCCCGGCGTCGTCGACGGGCTGAACGCGTACAAGTCGATCTTCGATGCCGGCGTCGTCGACACCGACGTGCTGAGCCTTCTCGGGGCACGGCCGAGCGAGATGTTCTCCGCGGGCGAGGCGGCGTTCTTCATCGACGGGTCGTGGCAGGACTCGCTGCTGTCGCAGCCGTTCCGCGAGGAGAACGGCATCTCGTTGACGGATGTCGGCGCTGCGGCCCTGCCGCTGGCCGACGGCGGGTCGCACACCGTCCGCGCGTTCGCCGAGGGCGGTCTGGCCATCCCGAGCTCGTCGGACAACGTCGCGGCGGCATCGACCTTCATCGAGTTCATGGTCGGGGAGTCGGGCGCCGACGTCTGGGCACCCGACTTGGTGCTGGTGCCCAGCCTCGAGGGCTACGAGCTGCCGGACACGGTGCTGGCGACGGAGGCCTCGCAGCAGGGCTACTCCGAGGTCGCCGAGCTCATCGGCGACCCGAGCTCTGCGCGGACGGCGCAGCCGGACTTCAACCCCGTGATGGGCAACATGATCCTCGACATGCTGCGGGGCGAGGCCACCGTCGAGGAGACGGCTGCCGCCATGCAGGAGGAATGGACCTCGGGCCGCTACCCACAGGGTGGTGAGGGGTGA	MTMRRALITLGGAVSAVALAAGCGSSGGVGGSEETEPVEQDTSEEVELTYWTWFPPEDTLNAAIEAFEEENPNISIDLRVFVNTDYQQQLPLALSGDEDLDVVGVQVAAMTDSVREFLLPVDDWAGDWLDELNEPMLQQTQDIASDDVLYSVPMGSIASPIMYYNADMLDEAGAEVPTTVDEWKTAVDAVSATFPDVTPVVFQGEPYWQSEMLFGFAEQTSPGLSDDINLDGGSWDQPGVVDGLNAYKSIFDAGVVDTDVLSLLGARPSEMFSAGEAAFFIDGSWQDSLLSQPFREENGISLTDVGAAALPLADGGSHTVRAFAEGGLAIPSSSDNVAAASTFIEFMVGESGADVWAPDLVLVPSLEGYELPDTVLATEASQQGYSEVAELIGDPSSARTAQPDFNPVMGNMILDMLRGEATVEETAAAMQEEWTSGRYPQGGEG				NA	NA	NA	NA	NA
AK001_01239	1086	purR_1	COG1609	HTH-type transcriptional repressor PurR	GTGGCGAACATCCGGGACGTCGCGCGTCACGCGGCGGTGGCGCCCATGACGGTCTCGCGGGTGCTCAACCAGCCCGATGCGGTGTCCGCCGAGACCCGGGCGCGTGTCGAGGCCTCGATCGCTGAGCTCAAGTACGTCCCGAACATGGTGGGCCAGGGGTTGCGCAAGCGCCGGACCATGGCCCTCGGGCTCCTGGTCAGCGACATCACCAACCCGTTCGCCATCCAGCAGATCCAGGGTGTCACCCGGGCGGCCCGCCAGGGCGGCTACACCGTGATCTTCGGTCACACCGAGTCGAGCGCCGACGAGGAGATGCGGCAGCTCCGCTCGCTGGTCGAACGCCGCGTCGACGGGATCCTGCTCTCACCGGTGTACAACACCCCGGACGCCGTCGAGTTCATCCAGGGCCAGCAGCTGCCGATCGTGGTGCTCGACTACGCGATGCCCGACGCTGATGTCGACGTCGTCCGCTGCGACACGTGCGTCGCGAGCCGCGACCTCACCCGCTACCTGCTCGAGGGCGGCCATCGCCGGATCGCGATGCTGAGCGGGGACGAGGCCATCATCACCGCGAGGGACCGCGCCGAAGGCTTCCGGCAGGCGATGGCGGAGGCGGGGCTACCCGCGCCGGTCTCCTTCGGGCGGTACACCCCGGAGTCGGGGCGCGAGCAGGCACATGCTGCGCTTGCGGCGCCGGACCGCCCGACCGCGCTAGTGACGGCCAGCAACTTCCTGGCGATGGGGGCCGCGGAGGCTGCCGGCGACCTGGGGCTGTCGGTACCCGACGAGCTGTCCGTCGTGACCTTCGACAACGCGCGCACCGACATGGTGCACGACCCGTTCTTCACCGGCGTCGTGCAACCGGTCACCGAGATGTCCAGCGCGGCGGCGCGCATGCTTCTCGACCGGACCATGGGCCGCTACGACGGACCCGGTCGCGACCTGATCTTCCCGACCGACTTCGAGGTGCACCGTTCGACCGCACCGTGGGGAGGGAGAGGGGATGCGTCAGCGCGCGTCCCGGATGCTGCGCCCAGCCGAGAGCGCGGCCATCACGATGAAGTGAAAGGAAGCACAGCATCATGA	MANIRDVARHAAVAPMTVSRVLNQPDAVSAETRARVEASIAELKYVPNMVGQGLRKRRTMALGLLVSDITNPFAIQQIQGVTRAARQGGYTVIFGHTESSADEEMRQLRSLVERRVDGILLSPVYNTPDAVEFIQGQQLPIVVLDYAMPDADVDVVRCDTCVASRDLTRYLLEGGHRRIAMLSGDEAIITARDRAEGFRQAMAEAGLPAPVSFGRYTPESGREQAHAALAAPDRPTALVTASNFLAMGAAEAAGDLGLSVPDELSVVTFDNARTDMVHDPFFTGVVQPVTEMSSAAARMLLDRTMGRYDGPGRDLIFPTDFEVHRSTAPWGGRGDASARVPDAAPSRERGHHDEVKGSTAS	PGPT0017992_10790	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01240	1362			Sulfatase	ATGACGAGCAGGTGCGAGGGAATCGACAGGCCGAACGTCGTCCTGGTGTTCATGGACGACATGACGCACTGGTCGCTGCGCAGCGAGCAGGTGGCCACTCCCCATCTCGAGCGTCTGCGCGAACGCGGTGTGACGTTCACCCAGGCGTACACGCAGGGCTCGCTGGAACCTGCGGTGTGCATCCCGGCCCGGCGGATGCTGCTGACCGGACTCACGCTGTTCGAGTCCCAGCCGCGGTTCATGGAGGTGGAGCGGCTGGGCCGGGCGCTGACCTCCCGGGGATACGACACGTTCTTCACCGGCAAGTGGCACAACGAGGCGGCGGCGCTGCCCGAGGACTACGAGACGGTGGGTCCCTGGGCGGGCGGGATGCTGGGCACGATCGACGGCGAGGACGAGGCATACGGGCGTCCGCGTCGGGACGACCGGTGGGACCCGGCCGACGAGGGGCGCGGCGGTCACTGGATGACGCTGCCGGACGGGCGCGTCCAGCACTCGTCGGAGCGCTGGACGGACGCGGCGCTGTCGCACCTGGCCCGGTCCGACGGTGACCGGCCGGTCTTCGTCCACGTGGCCTACCACGCGCCGCACGACCCGCGGCAGGCGCCCCGCGAGCACCTCGACCGGTACCCGTCGGAGACGATCGCGGTGCCGCCGAACGCGTTGCCGCGCCACCCGTTCGACAACGGCGCCCTGGACATCCGCGACGAGCTGCTCGCCCCGCACCCGCGCACCGACGACGCCGTGCGGCTGCACCGGCGCGAGTACTTCGCGATGATCACGCACGTCGACCAGCAGATCGGTCGTCTCCTGGACGAGGTCGACCGCGTCGAGGCGGACACGGGCCGACCGACGATCGTCGTCTTCTCGGGCGACCACGGCCTCGCACTGGGCGAGCACGGACTGATGGGCAAGCAGAACGTCTACGAGCACAGCACACGGGTGCCGCTGGTGGTGGCCGGACCCGGGCTGCCGGGAGGTGCGACGCGCGAGCAGTGCGTGTACGCGGGGAGCATCTACCCGACCGTTCTCGATCTGCTCGGCGGGGAGCCGCCGGTTCATCTGCAGTTCCGGAGCCTGCGCGAGGTCCTCGTCGAGGATGCTCCGGGCGAGCCGGAGATCTTCACGGCCCACGCAGGGAACCAGCGTGCGCTGCGTCGTGGGCGCTGGAAGCTCATCCGGTACGCCGGCGACGAGCGCCACGACCAGCTCTTCGACCTCGACACCGATCCGTGGGAGCTCGACAACCGCATCGACGATCCCGCGGTCGGTGCGGTGGCCGCGTCGCTGGCCGCGGGGCTCGAGGCCGCGCAGCGCACATTGGGAGATCCGGGACGGAGACCCGAGAGGTCCGATGCCTAG	MTSRCEGIDRPNVVLVFMDDMTHWSLRSEQVATPHLERLRERGVTFTQAYTQGSLEPAVCIPARRMLLTGLTLFESQPRFMEVERLGRALTSRGYDTFFTGKWHNEAAALPEDYETVGPWAGGMLGTIDGEDEAYGRPRRDDRWDPADEGRGGHWMTLPDGRVQHSSERWTDAALSHLARSDGDRPVFVHVAYHAPHDPRQAPREHLDRYPSETIAVPPNALPRHPFDNGALDIRDELLAPHPRTDDAVRLHRREYFAMITHVDQQIGRLLDEVDRVEADTGRPTIVVFSGDHGLALGEHGLMGKQNVYEHSTRVPLVVAGPGLPGGATREQCVYAGSIYPTVLDLLGGEPPVHLQFRSLREVLVEDAPGEPEIFTAHAGNQRALRRGRWKLIRYAGDERHDQLFDLDTDPWELDNRIDDPAVGAVAASLAAGLEAAQRTLGDPGRRPERSDA				NA	NA	NA	NA	NA
AK001_01241	837	dasC_4	COG0395	Diacetylchitobiose uptake system permease protein DasC	GTGATCAAGAAGGTTCAAGCCGTCGCGGCGCAGTTCCCTTTGGTCCTCTGGACCATTATCACGATCGTGCCTTTCGTCTTTCTCATGTTGCTCTCGTTCCGGAGCCAGAAAGACATTTTCGCCTACCCGCTCGGGTTCGGTGGCGACTTCACGCTCGAGAACTTCGTCGTGGCATGGAACGGCCCGTCGGGAGGGTCCGGGCTCTCCGTCTATTTTGCCAACACGTTGATCGTCGCGGTGTGCGGGTTGGTTGTGAACCTTGGTGCAGGCCTCCCGGGCTCGTACTTCTCCACGCTGCTGCCGGAGCGCATCCGAGGGGTCTTTCTGAAGATCTTCCTGGTGGGAACCATCGTGCCCATCGTGCTGCTGGTCGTGCCCTACTTCCAGATCTTCGACATGTTCTACTTGACGAGTAGCCCGGTCGCGCTGGGTGTCGCCTACGGAGTCTTGTCCTTGCCGACCACGATTCTCGTGCTGCACTCCTTCTTCATCGACTTTCCTTCCGAGCTGACTGAGGCCGCGTCGATCGACGGTCTCGGGCGCTGGTCGTCGTTCTGGAGGATCGTGGTCCCGCTCTCGATCGGGCCCATGGTCGGTGTCGGTCTTCTGGTCCTCGTCTTCATGTGGGGCGAAGCACAACTGGGCATCGTGCTTCTCCAGGAGTCGAGTTCGCAGACGGTTCCGGTGGGACTGCTGGGATTCCAGGGCATGTTCTACACCTCGCTGGGACCGATCTTCGCCGGTCTGGCCCTCGCGTCCGTGCCGATCGTCGTGGTCTACCTGATCCTGCACCGCCATATCACCAAGGGAATTGCTCTTGGTGGTGTGTTCCGATGA	MIKKVQAVAAQFPLVLWTIITIVPFVFLMLLSFRSQKDIFAYPLGFGGDFTLENFVVAWNGPSGGSGLSVYFANTLIVAVCGLVVNLGAGLPGSYFSTLLPERIRGVFLKIFLVGTIVPIVLLVVPYFQIFDMFYLTSSPVALGVAYGVLSLPTTILVLHSFFIDFPSELTEAASIDGLGRWSSFWRIVVPLSIGPMVGVGLLVLVFMWGEAQLGIVLLQESSSQTVPVGLLGFQGMFYTSLGPIFAGLALASVPIVVVYLILHRHITKGIALGGVFR	PGPT0016340_1154	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_01242	930	ugpA	COG1175	sn-glycerol-3-phosphate transport system permease protein UgpA	ATGTCAACCACCGTGAATACCGCATCGCGGCCCGCAGCCGCAGCCAAGAGCGGCAAGAAATCGCGCGTCGACAAGACGCCGAGGATTGCCTGGCTCATGATTCTCCCCGCTTTGGCTCTCGTGGTGGCCTTCTACGTCGTGCCCACGGCCCAAGCGGTTCGGATGAGCTTCTCTGACTGGGGCGGAATCGGCGAGATATCGTTCGACGGGTTCGGAAACTACGTCGAGGTTCTGACCGGTTCGCAGCTCTACGAGTCGCTGTGGATCACGATTGTGTTTGCCTTCTTCTCGGCTTTCGGCCGGGTGGCAATCGCGACGCTGCTGGCGGCAGCGATCAGCCACGGGGTTCGCGGATCCAAGTTCTACAGGATCATCTGGTTCATCCCGGCGGTAGCGCCCTCGGCTGCCGTCGCCGTGTATTGGTCCACTGCCTTTCAGCCGGGGGTCGGAACATTCAATGCGGTCTTGGGGCTCTTCGGACTCAATGACCGCACCGCCTTTCTTGCCGACCCGGCGACAGCACTCTTCCCGATCATCTTCGTCGACATCTGGGTCGGAGTAGGGTTCGCGTTCCTGCTCATCCTGGGCTCGATGGAGCAGGTTCCGGTCTCGGTCTACGAGGCCGCGCGAATCGACGGAGCCAGTCGAGTGCGCCAGTTCTTCTCGATGACGCTGCCGTTGATCCGCCCGGTGCTGGTCGTCGTGACGATCCTCCAGCTGGTCTGGGCGTTCAACAACTTCACCATCGTCTGGGGCATGACGCAAGGCGGCCCCGGTTCGGCGACGACGACCTTGCCGGTCCTGGTGTACCGGGCGGCCTTCGTCGAGGGGGACTACGGCACCGCGACGACGGTGGCGGTTCTCTCCGGCATCGTGCTGATGGCCGTCGGTTTCTTTGCCATGCGTTTCAACCAGTCGGAGCAGAAGTGA	MSTTVNTASRPAAAAKSGKKSRVDKTPRIAWLMILPALALVVAFYVVPTAQAVRMSFSDWGGIGEISFDGFGNYVEVLTGSQLYESLWITIVFAFFSAFGRVAIATLLAAAISHGVRGSKFYRIIWFIPAVAPSAAVAVYWSTAFQPGVGTFNAVLGLFGLNDRTAFLADPATALFPIIFVDIWVGVGFAFLLILGSMEQVPVSVYEAARIDGASRVRQFFSMTLPLIRPVLVVVTILQLVWAFNNFTIVWGMTQGGPGSATTTLPVLVYRAAFVEGDYGTATTVAVLSGIVLMAVGFFAMRFNQSEQK	PGPT0016335_2449	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_01243	1344			hypothetical protein	ATGAAGCTCATCGGAAGAACGCTCCCCGCCCGGGCCAGGGCGGCAGGAGTGCTCGGCGGCGCCTCTGTGGCTGCCCTGGCGCTCTCGGCCTGCTCGGGTCCCGGCGACAGCAGCGACGGTACGACGACGATCGTCGTCCAGCAGCAGGCCAACTGGACGGCGATGATGGACGTCCTCGTTCCTGCGTTCGAAGAGGCGCACCCCGACATCACTGTCGAGCTGTCGACGATCGACCAGGACACACGCAGCTCGACCAACACGCAGATCATCGCCGGAAACAATCCGCCCGACGTCGCGCTGGTCTCCGGCAACTCGCCGGTCTATCTCGAGACGGTCGAGAACGACCAGTTGCTCGACGTCTCCGACGTGTGGGAGGCGGCGGACCTCGATGAGCGCTACGACGCCGAGACGGCTGAGGCGCTCCAGTACGGCGAGACCCCGTACTTGGTCGGGATCGCCGGGATCAACTACGACATCGTGTACTACAACCAGCAGATCTTCGACGAACTCGGGCTGGAGGCGCCGGCCGACCATCGTCTCGACAGTGATGAAGAGCTCTTCGAACTCGTGAACGCGACACGTGATGCAGGCTACGATCCGCTCGCGGTCGGCGGCGCGGACCCGTTCCAGTGGGCGTGGCAGGTGAGCCAACTGCTGCAGAGCTACGCGACCTCGGACGAGATCGCCAACTATCTGACGTCGTGGAACCCCGATGTCGAACCGACCGTCGCGTACACCGACCCTCCCTTCGTCGACACCGTTCAGCGGATCCAGGACTGGGCCGATGCGGGCCTCTACCAGGACGGATACCTCGGCCAGGACTACGACGCCGCGCAGGGTCTGTTCTTCCAGGGGCAGGCTGCGATGCTCCTCGGCGGGAACTTCACGGCTGGTGCGATCAACGACTCCGGCGCGGGGTTCGACTACGGCTGGTTCCTGCTTCCGTCCGGTACCGAGGAACGCCCGTCCCAGCTCATGACCTATCTCGGGGAAGCGATGGCCATCCCCGCCGGAGCCGAGAACCCCGACGAGGCGAAGCTCTTCCTGGAGTTCTGGATGTCGAACGACATGCAGGCCGACGCGGTTGCCAACTCCGGGTTCGCTCTACCTTCCGTCAACAGTCTCGACATCGATGAACTGCCTGGTGTGACAGGCGTCGTCAGCGAGCTCGTCGAGGACGCGGGCGCCAACGGTGCCCCCATCGGATGGGGATCCGCGACCCCGGGAGCTTTCGCGCAGCAGCCCCTCGGCACCGATATCGCCGCGATGCTGTCGGGCCAGATGACCGTCAGCGAGGTCGCCGAGGCGCAGCAGGCACGTCTCGACGAGACGCGGGCCGAATAG	MKLIGRTLPARARAAGVLGGASVAALALSACSGPGDSSDGTTTIVVQQQANWTAMMDVLVPAFEEAHPDITVELSTIDQDTRSSTNTQIIAGNNPPDVALVSGNSPVYLETVENDQLLDVSDVWEAADLDERYDAETAEALQYGETPYLVGIAGINYDIVYYNQQIFDELGLEAPADHRLDSDEELFELVNATRDAGYDPLAVGGADPFQWAWQVSQLLQSYATSDEIANYLTSWNPDVEPTVAYTDPPFVDTVQRIQDWADAGLYQDGYLGQDYDAAQGLFFQGQAAMLLGGNFTAGAINDSGAGFDYGWFLLPSGTEERPSQLMTYLGEAMAIPAGAENPDEAKLFLEFWMSNDMQADAVANSGFALPSVNSLDIDELPGVTGVVSELVEDAGANGAPIGWGSATPGAFAQQPLGTDIAAMLSGQMTVSEVAEAQQARLDETRAE				NA	NA	NA	NA	NA
AK001_01244	1134			hypothetical protein	ATGAGCGTGGTGGCGGTCCACGGACGGGTCGCCGACGGCTACGAGGAGCTCGCCGAGGCGTTCGCCACCACGATCGTCGACCCCGACCGCACCGGAGCGGCCCTGTCCGTCTGGCACGACGGCCAGGAGGTCGTCGACCTGCGGGCCGGGACGGCGGACGGCCGCACCGGACGCCCGTGGACCCGGGAGACCCCGGCGATCGCGTTCTCGGCGAGCAAGTGCCTCGCCGCCCTGGCCGTCGCGCTGCTCGTCCAGGACGGCGAGGTCTCCTACGACCAGCCCGTCGCCGAGATCTGGCCCGAGTTCGCCGCGCACGGCAAGGGCAGCGTGACCGTGGGCGACCTGCTCGCCCACCGCGCCGGGCTCTCGGCACCCGTCGGTCCGCTCCCGCGCGAGGTCGTGCTCGACAGCCGCGCCTGGGCCGAGACGATCGCGCAGCAGGAGCCCCTGTGGGGCCCCGGCACCGCGCACGCCTACCACGCCCTCACCCTGGGCCCCCTGGTGGCGGAGATCGTCCGCCGCCGCACCGGGACCGAGCTCGCCGACGTCGTCCGCTCCCGCCTCGCCGCGCCCCTGGGAGCCGCGACCACGTTCGCCCCCACCGCCGCCGACCTGGCGGCCGTCGCCCGCATCGAGACCTCCGACCGGTGGGACGAGGCCGCCCGCACCGCCGACGACGAGCGCGTGGCCCGGGCGGCGACCCTCGGCGGTGTCCTTCCCCGCGGGCTCGTCGAGGGCGACCGCGGGTTCAACGACCCGCAGGTCCAGGCCGCCGGCCTCGCCGCCGCCGGAGCCGTGACCACCGCCTCCGGGCTCGCCCGCATCCTGTCCGCCGTCGTCACCCCCACCCAAGGCGTGCGCCTGCTCGACGACGCGACCCTCGCGGCGCTGTGCCGCCCGCGGTCCTCGGGGCCCTGGGTCTTCGCCACCCCCGGTCCCCACCCGACCTGGGGCGCGGGGGTCCAGCTGGTCTCCGACGCCTTCCCCGGACCGTCGCCGTCGTCGTTCGGCCACGGCGGCGCCGGCGGGCAGGTGGCGCTCGCGGACCCCGATCGTCGTATCGGGCTGGCCTACGTCCGCAACCGCATGGACACCGAGAACCCGGCGCCCGCGCTGGTCAGCGCACTTCGATGA	MSVVAVHGRVADGYEELAEAFATTIVDPDRTGAALSVWHDGQEVVDLRAGTADGRTGRPWTRETPAIAFSASKCLAALAVALLVQDGEVSYDQPVAEIWPEFAAHGKGSVTVGDLLAHRAGLSAPVGPLPREVVLDSRAWAETIAQQEPLWGPGTAHAYHALTLGPLVAEIVRRRTGTELADVVRSRLAAPLGAATTFAPTAADLAAVARIETSDRWDEAARTADDERVARAATLGGVLPRGLVEGDRGFNDPQVQAAGLAAAGAVTTASGLARILSAVVTPTQGVRLLDDATLAALCRPRSSGPWVFATPGPHPTWGAGVQLVSDAFPGPSPSSFGHGGAGGQVALADPDRRIGLAYVRNRMDTENPAPALVSALR				NA	NA	NA	NA	NA
AK001_01245	1509		COG3119	N-acetylgalactosamine-6-O-sulfatase	ATGAGCACTGTCACCGCCGCGCGACGACGCGCACGACCGAACGTCGTCCTGATCCTGGCCGACGACATGGGATGGGGCGACCTCGGGTGCTACGGCGCCACAGCGATCCCCACGCCGCGCATGGACGCGATGGCACGCGACGGCGTCCGGTTCGACGACGCGCACTCCTCCTCGGCGGTGTGCACCCCCAGCCGCTACTCGATCGTGACCGGCCGCTACGCCTGGCGCAGCCCGCTCAAGCAGCACGTCCTGCACAGCCACGCCCCGGCCATCATCGAGTCCGAACGCCCCACCGTCGCCTCCGAGCTGCGCGAGCACGGCTACGCCACCGGCGTCTTCGGCAAGTGGCACCTCGGCCTGGACTGGACCCGCAAGGACGGCACCCGCGTCACCGCGTTCGGCGCGGACGCCGACGACGACATCCTCGACAGGCCCGACCAGTACCCGGCCGACGAGATCGACTACACCCAGCCGTTCGCCGGCGGGCCCTGCGACCTCGGATTCGACCGCTACTTCGGCATCGCCGGATCGTTGAACATGCCGCCGTCGGCCTTCCTCTCCCAGGACCGTGTCGTCGGAGTGCCGTCCCTCGAGCGCCCCGTGTACCAACCCGGGATCAACCCGGGACTGATGACGGAGGGCTGGCGTGACGACGAGGCGGACGTCCGGTTCACCCAGGAGGCGGTGGGCTGGCTGAAGGAGCAGGCCGAGGCCGAGCAGCCCTTCTTCCTCTTCCTCTCCACCGCCGCTCCGCACCGCCCCTGCGTTCCTCCGGAACAGTTCCACGGCATGTCGCAGGCCGGCCTGCGCGGCGACGCCGTCTGCCTGGTCGACTGGATGGTCGGGCAGATCGACGACGCGCTGGCCGAGACCGGCGTCGCCGACGACACGGTCGTCATCATCACCAGCGACAACGGGGCGCCGACCATGTTCCCCGAGGACGGGGACACCGAGCACCACCGGCCCAACGGCCCCTACCGCGGGCAGAAGGGCGACATCTGGGACGGCGGCCACCGCGAACCGTTGATCATCCGCTGGCCCGCCGGGCTCGCCGCCGGCCAGGTCCGCGAGGACCTGGTGTGCCTGACCGACCTGTATCCGACGATCCTCTCCGCCGCGGGGCTCGACCCGACGCCCGGAGCCGCCGAGGACGCCGTCGACATCCTTGCCCGCCTCGACAGTCCCGAACCCACCCCGCGCGGCGTGCCCGTCGTCCACCACTCCATGGGCGGATCGTTCGGGCTGCGCATGGACCGCTACAAGGTGAACTTCTGCACGGAGTCGGGCGGCGGGTTCTCGGCCCGCGTGCGCGACGACGACGGCACCACCTTCGGTGCCGAGGCGCCGATCGGCCGCATCTACGACCTCGAGACCGACCCGGCCGAGACCACCGACCTGTGGGACAGCCGGCCCGACCTCGCCGCCGCCGCCCACGAAGCCCTGCGCCACCTCACCACCGGGGCGGAGGCCGGGTTCCCGCGCGACGTCGTCCCCGAACCCAGCGCATGA	MSTVTAARRRARPNVVLILADDMGWGDLGCYGATAIPTPRMDAMARDGVRFDDAHSSSAVCTPSRYSIVTGRYAWRSPLKQHVLHSHAPAIIESERPTVASELREHGYATGVFGKWHLGLDWTRKDGTRVTAFGADADDDILDRPDQYPADEIDYTQPFAGGPCDLGFDRYFGIAGSLNMPPSAFLSQDRVVGVPSLERPVYQPGINPGLMTEGWRDDEADVRFTQEAVGWLKEQAEAEQPFFLFLSTAAPHRPCVPPEQFHGMSQAGLRGDAVCLVDWMVGQIDDALAETGVADDTVVIITSDNGAPTMFPEDGDTEHHRPNGPYRGQKGDIWDGGHREPLIIRWPAGLAAGQVREDLVCLTDLYPTILSAAGLDPTPGAAEDAVDILARLDSPEPTPRGVPVVHHSMGGSFGLRMDRYKVNFCTESGGGFSARVRDDDGTTFGAEAPIGRIYDLETDPAETTDLWDSRPDLAAAAHEALRHLTTGAEAGFPRDVVPEPSA				NA	NA	NA	NA	NA
AK001_01246	1581	xynB		Beta-xylosidase	ATGGTCGATCTCCGCGCCGCCGCGGACGGACCCGGCGAACGCTTCGCCCACCACTGGAACCTCGTGGTCGGTGCGGGCCGCGCGAACGAAGGGCTCCGGGCCGACTGGCAGGGCCAGCTCCGCGAGGTCGTCGACGTCCATGGCTTCCGCTACGTGCGCTTCCACGGTCTGTTCCACGACGACATGTTCGTCTACCGCGAGAACGCCGACGGCGACGTCGAGCCCTCCTTCCAGTACGTCGACGTCCTGTTCGACGCCCTCCTGGACGCCGGCATCCGGCCCTTCGTCGAGCTCGGCTTCATGCCGCGCGAGATCGCCACCGAGACCGCCACCGCGTTCTGGTGGGGAGCCCACGGCTCGCCCCCCACCGACCTCGACAAGTGGGAGCACCTCGTCGCCCGCACCGTCGAGCACTGGCGCGACCGCTACGGCATCGACGAGATCCGCACCTGGTACTACGAGGTCTGGAACGAACCCAACCTGCGCCCGTTCTTCCGCGGCACCAGATCGCAGTACATGGACATGTACCGCACCGCCGCGCGGGCCGTGAAGAGCGTCGACGACCAGCTGCGCGTCGGCGGGCCGGCCACCAGCAACTTCGTGCCCGACACCCGGTTCGACGGCGAGACCGAGGACACCTCCGCCCAGGCCGACACCCTGTCGGCCGCCGACCTGGACGACCTCGACTGGCAACCCGTGTGGCTGCAGGAGTTCCTCGACGTCGCCCACCGCGACGGACTGCCCGTCGACTTCGTCTCCACGCACCCCTACCCCACCGACTGGGCGTTCGACGAGCACGGTCAGGGAGCACGCCTCACCCGCGGGGTCGACGCCACCGCGACCGACCTCGCCCTGCTGCGCCGCCTCGTCGACGCCGGCCCCTTCCCCGCCGCGGAGATCCACCTGACCGAGTGGTCGTCGTCGTCCAGCTCACGCGACCGCACCCACGACTACCCCCAGGCCGCGACCTACGTCGTCAAGGCCAACCTCGACTCCATCGGCCTGGTCGACTCGCTGTCCTACTGGACCTTCACCGACATCTTCGAGGAGGCCGGTGGCGGGCAGCTGCCGTTCCACGGCGGCTTCGGGATGCTGAACCACCACGGGATCCCCAAGCCCACCTACCACGGCTACCGGTTCCTGGCCGCGCTCGGCGACGAGCTCCTCGCCCGCACCGACGTCGGCGTCGTCACCCGGCACACCGGCGACCAGCGCCTCAGCGCCGTGCTCTACCACTACCCCGCCGAGGTCGCCGAGACCGTTCCCGCCTCGATCGACACCCGTGAGCACGCCGACCGGACCCTGGCGACCGGCTCCGCGCGCACCGTCCGGCTCCAGGTCGACGACGTCGCCCCCGGCACCCGGTTCCGCGTCGAGACCGTCTCCCCCGAGTCCGGCGACGTCGTGTCCGCCTGGCACGCCCTCGGCTCCCCGGTGAACCTGCGCCGCGACGACGTCACCGCGCTCACCGAGCACGGGCGGAGACTGGCCACGACCGAGCTCGTCGCCGGCGACGACGGCCTCTCGGCCGAGATCACGCTGCCCACCTGGGCCGTCACCCTGATCGACCAGGTGGCCTGA	MVDLRAAADGPGERFAHHWNLVVGAGRANEGLRADWQGQLREVVDVHGFRYVRFHGLFHDDMFVYRENADGDVEPSFQYVDVLFDALLDAGIRPFVELGFMPREIATETATAFWWGAHGSPPTDLDKWEHLVARTVEHWRDRYGIDEIRTWYYEVWNEPNLRPFFRGTRSQYMDMYRTAARAVKSVDDQLRVGGPATSNFVPDTRFDGETEDTSAQADTLSAADLDDLDWQPVWLQEFLDVAHRDGLPVDFVSTHPYPTDWAFDEHGQGARLTRGVDATATDLALLRRLVDAGPFPAAEIHLTEWSSSSSSRDRTHDYPQAATYVVKANLDSIGLVDSLSYWTFTDIFEEAGGGQLPFHGGFGMLNHHGIPKPTYHGYRFLAALGDELLARTDVGVVTRHTGDQRLSAVLYHYPAEVAETVPASIDTREHADRTLATGSARTVRLQVDDVAPGTRFRVETVSPESGDVVSAWHALGSPVNLRRDDVTALTEHGRRLATTELVAGDDGLSAEITLPTWAVTLIDQVA	PGPT0018665_1373	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASES	PLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198	NA	NA
AK001_01247	2196	rafA_2		Alpha-galactosidase	GTGGGCGGATCCAGCGCGCAGCCCACGACCATCCATCACCTGCGTGCCGCCGGCACGAGCCTGGTGCTCGACGCCCGCGGCACGGCCGTGCCCGTCGTCGTCCACTGGGGGGCGGACCTCGGACCGCTCGACGACGTCGCGCTCGCGGCCCTGGCCGACGCCCAGACGCCGACCGTGCCACCGAGCTCGATCGACACGCCGCGGCGCAGCCGCCTGGTCCCGCTGCCCGCCGACGGGTGGCCGGGTCGTCCGGGACTCGGCGGATGGCGTCCGACCGTGGACGCGGGCGCCGACGCCCGCCGACCTGGGCTGTCGCTCGACGCCGTCACCGCGCAACCCGGGGCCACGGACGCCGGCGGCCGCCTCACCGTCGTGCTGCGCGACGACGCGGCGCAGCTGGCCGTCGAGGTCCGGCTCACGCTGGATCAGCACGGGATGCTCGAGGTCGTGGGATCGGTGACCAACCTCGGTCCGGCCCCGTACGCGCTGGACGGGCTGCACTCGACGCTGCCGCTCCCCGCCCGGGCCGCCGAGGTGCTCGACCTGTCGGGCCGCTGGAGCGGCGAGCGACGGCCCCAGCGCCAGGCGCTGCGCGACGGTGTCTGGCAGCGCGTCGCCCACCACGGCCGCCCGGGCCACGACGCGCCGTTCGCGACGGTGGTCGGCACCTCCGGGTTCGGCTTCCGGCACGGCGAGGTCTGGGCGCTGCACCACGCCTGGAGCGGGGACTCCGACGTGCGGGTCGAGCACCACCCCACCGGGCACACGGTGTTCGGCGCCGGGGAGCTGTGGGGCCCGGGCGAGGTCGTCCTGGCCCCCGGGGAGTCGTACACCACGCCGCGCACGCTCGCCGCCTGGTCGGCGGACGGGCTCGACGGCATCTCCGCGCGCTTCCACGCCTGGGTGCGGAGCAGACCCGGACGAGCGAACCGGCCACGACCGTTGACCCTCAACACGTGGGAGGCCGTGTACTTCGACCACGACCTCGACCGTCTGCGCCGGCTCGCCGACACCGCCGCGGAGATCGGCGTCGAGCGTTTCGTGCTCGACGACGGATGGTTCCACGGTCGCCGCGACGACACGAGAGCGCTCGGCGACTGGACCGTCGACACCACGGTCTGGCCCGACGGCCTGCACCCGCTGGTCCACCACGTCCGGTCCCTCGGCATGGAGTTCGGCCTGTGGGTCGAACCGGAGATGGTCAGCCTGGACTCCGACCTGGCCCGGGCCCACCCGGAGTGGGTGCTGCAGGGGGCCGCGGACCGGATGCCGTTGTCGGCGCGCCACCAGCAGGTGCTCGACCTGACCGTGCCCGACGCGTACGCGCACGTGCGCGACGCGCTGGTCGCGCTGCTGGACGAGTACCCGATCGCCTACCTCAAGTGGGACCAGAACCGCGACGTCCTCGACGGCCCCTCCCGGGGCCAGGTGCTCGCGACACGCCGCCTCATGGCCGAGCTGCGGTCCCGGTTCCCGGGACTGGAGATCGAGTCCTGCTCGGCCGGCGGTGGCCGGGTGGACCTCGACGTGCTCGACCACGCGGACCGGGTCTGGGCGTCGGACACCAACGACGCGCTCGAGCGACAGGCGATCCAGCGCTGGACCGGGCTGCTGCTCCCGCCCGAGCTCGTCGGCAGCCACGTCGGCGAGGCGCACTCGCACACCACGGGCCGCACCCACGACCTGGGGCTGCGCCTGATCACCGCCCTGTTCGCCCACGCCGGGATCGAGGCGGACGTCTCCCGGACCGACGAGTCCACCCGGGAGGCGTTGCGGGCCTGGGCAGAGCTCGTCCACGCGGTCCGAGGTCTGGTCGCCACCGGCACCACGGTGCGGTCCGACCGCCCCGACGACACCTGGTTGCACGGTCTGGTCGCCCCCGACCGGGACGAAGCCCTGTTCGCCGTCGTCGGGCGGACCGCCAGCCCCGACACGACCCCCGCACCGCTCCTCCTGCCGGGTCTGGACGACGAGCGCACCTACCGGGTCGAACGCGTCCACGTCGGCTCCGAACCCGTCGTCGTCCAGGACGCCGCACCCCCGTGGTGGACCGCGAGGGGCGGCGAGCTACCGGGCCTCGAGCTGCCGGGCGTCGCGCTGCGGGAGGTCGGTCTGCCACTACCGTGTCTCGCCCCGGAACAGGCGGCACTGCTGCGTGTCACCGCCGTCGGACCCGCCCGGTCTCAGGAGGCCTGA	MGGSSAQPTTIHHLRAAGTSLVLDARGTAVPVVVHWGADLGPLDDVALAALADAQTPTVPPSSIDTPRRSRLVPLPADGWPGRPGLGGWRPTVDAGADARRPGLSLDAVTAQPGATDAGGRLTVVLRDDAAQLAVEVRLTLDQHGMLEVVGSVTNLGPAPYALDGLHSTLPLPARAAEVLDLSGRWSGERRPQRQALRDGVWQRVAHHGRPGHDAPFATVVGTSGFGFRHGEVWALHHAWSGDSDVRVEHHPTGHTVFGAGELWGPGEVVLAPGESYTTPRTLAAWSADGLDGISARFHAWVRSRPGRANRPRPLTLNTWEAVYFDHDLDRLRRLADTAAEIGVERFVLDDGWFHGRRDDTRALGDWTVDTTVWPDGLHPLVHHVRSLGMEFGLWVEPEMVSLDSDLARAHPEWVLQGAADRMPLSARHQQVLDLTVPDAYAHVRDALVALLDEYPIAYLKWDQNRDVLDGPSRGQVLATRRLMAELRSRFPGLEIESCSAGGGRVDLDVLDHADRVWASDTNDALERQAIQRWTGLLLPPELVGSHVGEAHSHTTGRTHDLGLRLITALFAHAGIEADVSRTDESTREALRAWAELVHAVRGLVATGTTVRSDRPDDTWLHGLVAPDRDEALFAVVGRTASPDTTPAPLLLPGLDDERTYRVERVHVGSEPVVVQDAAPPWWTARGGELPGLELPGVALREVGLPLPCLAPEQAALLRVTAVGPARSQEA	PGPT0018835_1598	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407	NA	NA
AK001_01248	1062	iolG_1		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGACGGCCGCGGGGTACTTCGCGCCGGTGACCGGTGCGGCGCCCGTGCGGATCGTGCTCGTGGGCGTCGGCGTGATGGGACGGCGCTGGTTGGAGGTGGTCGAGGCACACCCGGACGCCGAGCTCGTGGGTGTGGTCGACCTGGACGCCGACGCGGCGGCGTCCGCGGCGGCCTCGGCGCACGGTGAGGTCGCCTCGGGGGCCGACCTGACCGAGGTGGCGCGGCGGACGGCGGCCGACGCCGTGGTCGACGTGACGAGTGTGGCCGCGCACCATCCGGTGACGACCCAGGCGTTGGAAGCAGGCCTGGCCGTGCTGGGCGAGAAGCCGTTGGCTGCCGATCTCACGCAGGCAGCCGATCTGGTCGTGCAGGCGCGGCGTCACGGCCGGCTGTTCATGGTGAGCCAGTCGCGCCGGTACCACCGGGGGCTGCACACGCTGCGGGCGGCCACGGAAGGTCTGGGGCCGGTGGCGGACGCGACCGCGATGATGTTCCGGGCGCCGCGGTTCGACGGCTTCCGCGTCGAGATGGACAGCCCGCTGATCGTGGACATGGCGATCCACGCGTTCGACGCCGCCCGGTTCGTCCTGGGCCAGAACCCGGTGGCGGTCTACGCCGAGGAGCACAATCCGCAGTGGAGCTGGTACCGCGGCGCGGCGAGCGCCACGGCGATCTTCACGATGTCCGGCGGCGCCCGGTTCACCTTCACGGGGAGCTGGTGCACCCCGGGGATGCCGACGTCGTGGAACGGGCAGTGGCGTGTCAACGCCCGCGACGGCGCCGCCGTCTGGGACGGCGAGGACTCCGTCCGCACGGGACGGGGCGAGGAGCCGGGTGACGAGGTCGCGATCGGCGGGACGCCGGACCGCGAGGACATCGCCGGTGCGCTGGACGAGTTCCTGGGAGCCCTGCGGAGCGGCGCGACCCCGGACGGGGACGCCGGGGAGAACATCGCCTCGTTGGCGATGGTCACCGGCGCGGTGGAGTCGGCGCGCACGGGTCGACGGGTCGACCTGGTCCACCTGCTCGACGAGGCACGGCGCGAGGGTCAGGCCTCCTGA	MTAAGYFAPVTGAAPVRIVLVGVGVMGRRWLEVVEAHPDAELVGVVDLDADAAASAAASAHGEVASGADLTEVARRTAADAVVDVTSVAAHHPVTTQALEAGLAVLGEKPLAADLTQAADLVVQARRHGRLFMVSQSRRYHRGLHTLRAATEGLGPVADATAMMFRAPRFDGFRVEMDSPLIVDMAIHAFDAARFVLGQNPVAVYAEEHNPQWSWYRGAASATAIFTMSGGARFTFTGSWCTPGMPTSWNGQWRVNARDGAAVWDGEDSVRTGRGEEPGDEVAIGGTPDREDIAGALDEFLGALRSGATPDGDAGENIASLAMVTGAVESARTGRRVDLVHLLDEARREGQAS				NA	NA	NA	NA	NA
AK001_01249	759			hypothetical protein	ATGGAGACACCGCAGGCTCCGGTCCGGGTGACCGTGTGGAACGAGAACTGGCACGAGCAGCACGAGGAGCACGTCTCCGCGATCTACCCCGACGGGATCCACGGGGCTGTCGCCGACGGCCTGCGGGCCGAGCTGGGCGACGCCGTCGTCGTGCGCACCGCGACGCTCGACGACCCGGAGCACGGTCTGAGCGAGGAGGTGCTCGCCGAGACGGATGTGCTCCTGTGGTGGGGGCATCAGCGGCACGCGGATGTCTCCGACGACGTCGTGGACCGGGTCATCGACCGCGTGCACGCCGGGATGGGGTTCTTGGTGCTGCACTCGGGGCACTACTCCAAGCCGTTCGTCCGGCTGATGGGCACCACCTGCTCGCTGCGTTGGCGGTCGGCGGACGACCGGGAGCTGGTATGGACGGTGGATCCGACCCATCCGCTCGCGCAGGGCGTCCCGCACCCGATCGTCATCGACCAGCAGGAGATGTACGGCGAGCAGTTCGACGTGCCGGCTCCGGACGAGCTGGTGTTCCTGAGCACGTTCACCGGCGGTGAGGTGTTCCGTAGTGGTTGCACCTACCGGCGGGGCAACGGGCGGATCTTCTACTTCAGCCCGGGGGACCAGGACTATCCGGTCTACCACCACCCGGACATCCGTCGGGTGCTGGCCAACGGCGTGGTGTGGGCGCGTCCGGCGGGATCGCAGGGGGTGCCGGAGCTGCTGGAGAGCCACACCGGCTGGTTCGAGAACGGGGTCTCGGCATGA	METPQAPVRVTVWNENWHEQHEEHVSAIYPDGIHGAVADGLRAELGDAVVVRTATLDDPEHGLSEEVLAETDVLLWWGHQRHADVSDDVVDRVIDRVHAGMGFLVLHSGHYSKPFVRLMGTTCSLRWRSADDRELVWTVDPTHPLAQGVPHPIVIDQQEMYGEQFDVPAPDELVFLSTFTGGEVFRSGCTYRRGNGRIFYFSPGDQDYPVYHHPDIRRVLANGVVWARPAGSQGVPELLESHTGWFENGVSA				NA	NA	NA	NA	NA
AK001_01250	4047			hypothetical protein	ATGGCCGTCGGGCTCGCGGTGGCAGTGATGCCGCCGGCGGCCGCCGAGGAGCCCGAGAGCGAGACCACCGCGCTCGCGCCGACCACCGACCTCTTCGTCCAGGGAGGTGATGCACAGATCACCGAGTCCCTGCTCGCGGGGCGTGGGCGCGAGACGCTGATGCGCTTCGACCTGGCCGAGATCTCCGACGACGACGTGGTCACGGCCGCGACGCTCGACCTGACCAAGTACCACGGTTCCGGCAACACGATCATCGTCAGCGACGTCGTCGGCACCTGGGACGAGACCGTCGCACGGGACTCGATGCCGGAGCTCGGAGCCGAGGTCGGACGCGGTGACGTGCCGAGCGGCCAGGCAGAGGTGTCCTTCGACCTGGCCGAAGCCGTCGCCGAGGCGGTCGCCGCCGGGGAGGACGACTTCGACCTGCACCTCGACCAGCTCGGCGAGTGGGCCTCGGAGTTCCGGTCCACCCGCTACGGCGTCGAGGGGGATCGCCCCGTGCTGGCGATCACGACGATGACGACCGACGCCCTCGTCGACGCCGACGCCGAGAGCCTCGCCTCTTTGGTGAACAACCCGGTCTACACCGACGTCGAGCTGCCCGGGACGGGCGAGCGGGGATCGCAGATCACCTGGAGCAGCAGCGACCCCGACGTCGTCGCCGCCGACGGCACGATCACCCGGCCCGACGCCGCCGAGGACGCCACCGCGGTCCTGACCGCCGAGGTCACGTACGGTGACTCCAGCACGACGGCGCAGGTCGAGGTCGTGGTGCGCGGCCGGTACGACGTCGAGCCGGAGCATCCGCAGGTCCTGGCCGGCCAGGAGACCGACCAGCGGGTCGAGGACCTGGTGGCGAGCGAGGACTGGGCCGCCGAGTCGTTCGACGCCATCGTCGAGAAGATCGAGCCCTACGCCGACCGGCACCAGGACGACCCCGAGTGGATCCTGTCGCGCATGGCGATGTTCTGGGAGGACGGCGAGCGGTACACGCAGGTCTACATCAAGGACCAGCGTTTCGACTACGCCGAGGGCAACGCCCCGGTACCGACGCTGCGCTTCCCGGCGATGCGCATCTGGAACGACAACAAGAACGCGCCGCTGGAGGACCGCCTGCCGTACAGCGAGGACGGTTCCATGATCAACCAGCACGGTGAGGTCGTCCCCTACGAGGAGACCGGCCACATGATTCGCCTCAACAACGAGGAGATCCTGTCGCTGGCCGAGGAGGCCGCGTTCCTCTACCACCACACGGGTGAGGAGAAGTACGCGAAGTTCGGTGCCGACATCTACTGGCAGTGGCTCATGGGTGTGTACTACATGAACCCTGCGCTCGACCCGGGAGAGTCCATGGGCGGACCGGGCGGCTACGCGCCGGGCGGCAACATGGGCTACTACGACTACGAGGTCATCCACGACCCGATGGGCGGCCAGGCGGCGATCGTCTACGACTACCTGTTCGACTACCTGCAGGAGCACCCCGACCCGCACCTGGACGTCATCGGTGAGGACATGGTCGACGTGTCCAGCGAGGTGTTCAAGCGGTTCATCGACATCGGGATGGTCCGTGGCGCCCAGTCCAGCAACTGGAACGTCAACGGCTGGAAGTGCATCCTCGACGCGATCCTCGCGCTCGAGCCGAACGACTACTACGCCGACGGCAAGGGCCGGGAGCACTACCTGCACTACTACACGACCGAGACCACGCAGTACCACAACGCGTTGCCCGAGATCTTGCAGGAGTACGACCAGACCACCGGCCTGTGGCCCGAGTCCTCCGGCTACGCCACCGGCATGGTCGGGGCGCTGCTCGACTTCGCGGCGCCCGTCTACAACAACGGCGTCGACACCATCGGGGAGAACCCGATGCTCGAGAAGGCGGCGCTGGCCGTCGGCGCCTGGCTGGACGACCGCGGCAACCTGGTCGTCTTCGGTGACGGGCGGGGCGGGCAGCCGAGCTACTCGCCGTTCGAGCGGCTGAACTGGTACTACCAGGAGGTCGGCGACGCCGAGGGCGCGGCCGCCGCGTCGACGGTGATCCGCAACGCCATCGAGGCGGGGGTGTACGAGCGCTCGTCCATGTCCTATCTCGACCTGCAGTACTCGGCCCCGCTCGTCGAGTCCACGGGTGCGGGGACGGACGTGTCGCAGATGGCGTACTCGCCGCACCATCGCCACCTCGTGCAGCGCAACGGCCAGGGCGCCGAGAACGCCCTGATGGCCACGTTGTACGGCGGCTGGAGCGGCAACTACCACCTGACGGCCAACGGTCTGGCCGCGCAGATCTACGGCAAGGGCTGGGCCACCGGACCGCAGGCCAAGTCGTACGAGTCCTACTGGTCGGACGACATCACGTACTCGCGTCACGAGGCGGGTGCCAACACGGTCGTCCCCGGCTACAACCACGGGGAGATCACCGTCAACGCCCTCGACCCCGAGGTGCCGGACGACGCGCTGACCAACGTGGACACGGTCTCGCCGTGGAACTCGTTCAGCGACGTGTCGGCGAACGACCACCGCCGGCAGCTCGCGATCGTGCGGACCTCGCCGACGACCGGCTACTACGTCGACGTGTTCCGTGCGGACCAGGAGGAGTCCGACTACCTCTGGCACAGCCTCGGCGACCGCGTCGAGCTGACCGGGGCGGAGGGCGAGCCGCTCGAGCTCGCCGCGGCGGACGACCTCGGGTCCCCGGTGCCGACGTACCGGTTCTTCAGCGATCCGGCCAAGGTCGCCCACGAGGAGGACCTCCGTGCTCGGTGGACCGTCGACGACGGCGTGTCCGACGGCGTGGACCTGGTCACGGACATGTGGATGGCCGGAGGTGAGGGCCGCGAGGTCTTCACCGTGACGGCGCCGCCGACCACGGCCCGCGACAACATCACGCCGGGCAACGTCAACGCGCACGACGACCCGACCGAGGCCGTGGTCGTGCGGCAGAACGGGACGAACGCCGCCGAGACGCCGTTCGCGGCGGTGTTCGAGTCGACCGGTTCCGACGAGCTCAGCGTCACCGACGTGGACGAGTTCGGCGACACGGCCGGCTTCACCGGTCTGGAGGTCCTCAGCGCGGACCTGGACGGGCGCTCCGACCGCGTGTTCACCAGCACCGGTGGCGGTGCGGTCGAGCCGGTCGAGGGTGCCGAGTTCGCCGGCCTGTACGGCGTGCACTCCACCGACGACGACGGCTTCGTGAGCCTGTACCTCGGGTCGGGCACGCAGCTGGTCGACGGCGGCACGGGTGTCACGCTCGACGAGTCCGGCGCCGCGTGGCTGGACACGACCGAGGACGGGTACACCTACACCGCGACGCAGTCGGGCACGCTCCGGCTGCCGCTGGGGACGCCGGACGGCGAGCCGACCGTCGAGATCGACGCCGGCGACGGTTGGACGTCCGTCGACTCGGCGGTCGACGGGGACAGCCTGCTGGTCGACGTCCCGGCCGGTGAGGAGCTGCAGCTCCGCATCACCTCGCCGGAGCCGCAGGACTCCGAGCGTCCGGTGGTCGAGCTGGTCTCGCCGTCGGGTGCGGGTCCGTTCTCGCAGGTGTCGGTGCAGGTGGACGCCACTGATGACACCGGGCTGAAGCGGATCGTGGCGAACGTCTACCGGGACGGTGAGCTGGTGGAGTCCACGCAGTCGGCGGTGGCCGACGGCGCGACCTCGGGTTCGCACACGGCGCAGGTGTCGTTGCCGGACGGGGAGTACTCGATGAAGTACAACGCCGAGGACCTGGCGGGCAACATCGCTCGCACGGGTCGGGTGGAGTTCTCGGTCGACGGCACGGCGCCGCGGGCGACGGTGAAGTCGGCGGAGCGTTTCACGGTCGGTGCCGGTCCGTACGACAAGGTGTCGTTCAAGCTGTTCGACGCCGGCAAGGTCGATCGGGTCGAGATCAACGGTGTGGTCAAGAACCTGTCGGACAACAAGTGGTCGGACGTGAACTTCCTGACGCCGGGCACGTTCGGTGCCGTGCAGGGGGCCAACGTGCTGGAGGTGTTCGACGTGGCGGGCAACTCTGCCACGGTGGAGTTCACGTTGAACTGA	MAVGLAVAVMPPAAAEEPESETTALAPTTDLFVQGGDAQITESLLAGRGRETLMRFDLAEISDDDVVTAATLDLTKYHGSGNTIIVSDVVGTWDETVARDSMPELGAEVGRGDVPSGQAEVSFDLAEAVAEAVAAGEDDFDLHLDQLGEWASEFRSTRYGVEGDRPVLAITTMTTDALVDADAESLASLVNNPVYTDVELPGTGERGSQITWSSSDPDVVAADGTITRPDAAEDATAVLTAEVTYGDSSTTAQVEVVVRGRYDVEPEHPQVLAGQETDQRVEDLVASEDWAAESFDAIVEKIEPYADRHQDDPEWILSRMAMFWEDGERYTQVYIKDQRFDYAEGNAPVPTLRFPAMRIWNDNKNAPLEDRLPYSEDGSMINQHGEVVPYEETGHMIRLNNEEILSLAEEAAFLYHHTGEEKYAKFGADIYWQWLMGVYYMNPALDPGESMGGPGGYAPGGNMGYYDYEVIHDPMGGQAAIVYDYLFDYLQEHPDPHLDVIGEDMVDVSSEVFKRFIDIGMVRGAQSSNWNVNGWKCILDAILALEPNDYYADGKGREHYLHYYTTETTQYHNALPEILQEYDQTTGLWPESSGYATGMVGALLDFAAPVYNNGVDTIGENPMLEKAALAVGAWLDDRGNLVVFGDGRGGQPSYSPFERLNWYYQEVGDAEGAAAASTVIRNAIEAGVYERSSMSYLDLQYSAPLVESTGAGTDVSQMAYSPHHRHLVQRNGQGAENALMATLYGGWSGNYHLTANGLAAQIYGKGWATGPQAKSYESYWSDDITYSRHEAGANTVVPGYNHGEITVNALDPEVPDDALTNVDTVSPWNSFSDVSANDHRRQLAIVRTSPTTGYYVDVFRADQEESDYLWHSLGDRVELTGAEGEPLELAAADDLGSPVPTYRFFSDPAKVAHEEDLRARWTVDDGVSDGVDLVTDMWMAGGEGREVFTVTAPPTTARDNITPGNVNAHDDPTEAVVVRQNGTNAAETPFAAVFESTGSDELSVTDVDEFGDTAGFTGLEVLSADLDGRSDRVFTSTGGGAVEPVEGAEFAGLYGVHSTDDDGFVSLYLGSGTQLVDGGTGVTLDESGAAWLDTTEDGYTYTATQSGTLRLPLGTPDGEPTVEIDAGDGWTSVDSAVDGDSLLVDVPAGEELQLRITSPEPQDSERPVVELVSPSGAGPFSQVSVQVDATDDTGLKRIVANVYRDGELVESTQSAVADGATSGSHTAQVSLPDGEYSMKYNAEDLAGNIARTGRVEFSVDGTAPRATVKSAERFTVGAGPYDKVSFKLFDAGKVDRVEINGVVKNLSDNKWSDVNFLTPGTFGAVQGANVLEVFDVAGNSATVEFTLN				NA	NA	NA	NA	NA
AK001_01251	714			hypothetical protein	GTGCTCGGCACGGGAGTGCAGACCGCCCGGGCGGTGGTCGACGGCGGGGAGATCGGCACGCCGGTCTCGGCGGCGGCGATGTGGGTCTCGCCGGGGCACGAGGGGTGGCACCCGCAGCCGGACTTCTACTACCGGCCGGGTGGTGGTCCCTTGTTCGACATGGGGCCGTACTACCTCACCTCGCTGGTGCAGCTGCTGGGGCCGGTGACCGCGGTGTCCGCAGCGTCGTCGCGTTCCCGGGACACGCGCGAGATCGGTACGGGGCCGCGTGCCGGCGACCGAGTGGGGGTGGAGGTCGACACGCATCTGGCCGGGATCCTGCAGCACGCGTCCGGAGCGATCTCGACCCTGACCGTCAGCTTCGACGGGGTGGCGACCACGGCGGCGCCGATCGAGGTGCAGGGGACGGGCGGCGCGTTGTCGGTGCCCGACCCGAACGGCTTCGCGGGCGAGGTGGTCCTGCGGCCGCTCGGCGGCGAGCCGCGCGTCGTCGAGCCGCGTGCGGGCTACGTGGACGCCTCCCGGGGTGCGGGGCTGCTCGACTTCGTCGCGGGGTACGAGCGCGCCGGCGGCGCGCTCGCGCTGCACGTGCTCGAGGTGATGAGCGCGTTGCAGGGCGCCGCGGGGTCCGGTGACCGGGTGCGTCCGTCGACGACGGCCGAACGCCCGGCGCTGGTGCCGCTGACACCGGCGCAGGTGTGGTCGGCCTGGTAG	MLGTGVQTARAVVDGGEIGTPVSAAAMWVSPGHEGWHPQPDFYYRPGGGPLFDMGPYYLTSLVQLLGPVTAVSAASSRSRDTREIGTGPRAGDRVGVEVDTHLAGILQHASGAISTLTVSFDGVATTAAPIEVQGTGGALSVPDPNGFAGEVVLRPLGGEPRVVEPRAGYVDASRGAGLLDFVAGYERAGGALALHVLEVMSALQGAAGSGDRVRPSTTAERPALVPLTPAQVWSAW				NA	NA	NA	NA	NA
AK001_01252	699			hypothetical protein	ATGACCCGATCAGCACTGATCGTCCGGGGTGGTTGGGAGGGCCACCACCCTGTGGCGACCACGGAGCTGTTCCGGCCGTTCCTGGCGGAGCAGGGGTTCGCGGTGGAGGTCCACGACTCGCCGGAGGTCTACGCGGACGCCGACCGGATGGCACGGACCGACCTGGTCGTCCAGAGCGTCACCATGTCGGAGATCTCCGCCGACGCCGTGGCGGGGCTGCGTGCCGCCGTCGCCGCCGGCACCGGGCTGGCCGGGTGGCACGGCGGCATCGCGGACTCGTTCCGGGCCAGCAACGACTACCTGCAGCTCGTCGGAGGCCAGTTCGCGGCGCACCCGGCCAGACCGGTGGGCGACCACGTCGGCACGGAGGCCGACAACTTCCTCGAGCACTCCGTGGAGATCACGGAGCTCGGCCGGTCCCACGAGATCACCGACGGTCTCGCCGGCTTCTCGCTGCACACCGAGCAGTACTGGGTGCTGCACGACGAGCTCATCGACGTGCTCGCCACGACCACGCACCCGGTCCGAGCGGACCAGCCGTGGCACCGTCCCGTCACGTCGCCCGCGGTCTGGACCCGGTCCTGGGGCGAGGGCAAGGTCTTCGTGGCCACGCCGGGCCACGACGTCGAGACCCTGCAGGTCCCCACGGTCCGGACGATCGTCGAGAGGGGGATGCTGTGGGCAGCCCGCACCGCGTAG	MTRSALIVRGGWEGHHPVATTELFRPFLAEQGFAVEVHDSPEVYADADRMARTDLVVQSVTMSEISADAVAGLRAAVAAGTGLAGWHGGIADSFRASNDYLQLVGGQFAAHPARPVGDHVGTEADNFLEHSVEITELGRSHEITDGLAGFSLHTEQYWVLHDELIDVLATTTHPVRADQPWHRPVTSPAVWTRSWGEGKVFVATPGHDVETLQVPTVRTIVERGMLWAARTA				NA	NA	NA	NA	NA
AK001_01253	168			hypothetical protein	GTGCGCTGGGCCTGGGGGTCCGGCGGGACGTCGAGCGGGTATGCGCGCAGCCTCGACCTCGCGACCGGCACCGCGTCGACCCGGGCGCGGCAGGGTGCGGCGAGCTTCGGCACCCTGCTGTCCGTGAGCTTCATCAAGGGGATGTCGATCGGGGCGGTCAAGGGATGA	MRWAWGSGGTSSGYARSLDLATGTASTRARQGAASFGTLLSVSFIKGMSIGAVKG				NA	NA	NA	NA	NA
AK001_01254	1335		COG4948	L-fuconate dehydratase	ATGGCGAGGATCACCAGCGTCGAGATCGAGGACGTCCGCTTCCCGACGTCGCTCGAGAAGGACGGCTCGGACGCGATGAACAAGGACGCGGACTACTCCGCGGCCTACGTCGTCCTGCGCACCGACGACGTCGACGCCCACGGCGACCCGCTGGCCGGGCACGGCCTGACGTTCACGATCGGGCGCGGCAACGACATCGTGGCCGAGGCCGCCCGCCAGCAGGCGTCCACCCTCGTGGGCCGCGACGTCGACGAGATCGCCGGCGACATGGGCGGCCTCTACCGCGAGCTGACCTCCGACTCCCAGATGCGCTGGCTCGGCCCCGAGAAGGGCGTCGTCCACCTGTCGCTCGCCGCCGTCCTCAACGCCGCCTGGGACCTCGTCGCACGCCGTGCCGACAAGCCGCTGTGGCGCCTGCTCGCCGACATGACGCCCACCGAGCTCGTCGCCGTCGCCGACCTGCGCTACCTGTCCGACGCCCTCACCACCGACGAGGCCGTCGCCCTGCTCGAGGCCAGGGCGGACACCAAGGCCGAGCGCATCGCCCACCTGGAACGCACCGGCTACCCGGTCTACACGACGTCGGCCGGCTGGCTCGGCTACGGCGACGACAAGCTGGAGCGGCTCTGCCAGGAGGCCGTCGACGAGGGCTACGGGCACATCAAGCTCAAGGTCGGCGCCGACCTCGACGACGACGTGCGGCGCCTGTCCATCGCGCGGCGCGTCATCGGCCCGGACCGCAAGCTCATGATCGACGCCAACCAGGTGTGGGACGTCCCCCAGGCCGTCGAGTGGATGCAGGCCCTCGCGCCGTTCGAGCCGCTGTGGATCGAGGAACCCACCTCCCCCGACGACGTGCTCGGGCACGCCGAGATCCGCCGCTCCGTGGCCCCGGTCGGCGTCGCCACCGGCGAGCACTGCCACAACCGGGTCATGTTCAAGCAGTTCCTGCAGGCCGACGCCATCGACTTCTGCCAGCTCGACACCGGCCGCCTCGCCAGCATCAACGAGATCGTCGCCGTGCTGCTCCTCGCGGCGAAGTTCGGCGTCCCGGTCTGCCCCCACGCCGGCGGGGTCGGCCTCTGCGAGATGGTCCAGCACGTCTCCGTGCTCGACTACGTCGCCGTCGCCGGCGACCTCGACGGACGCGTGACCGAGTTCGTCGACCACCTGCACGAGCACTTCACCGACCCCTGCGTGGTCACGGACACCGGTGCCGGCAGCGGGTACGTGCTGCCGTCGCGCCCCGGCTACTCCACCCAGATGCACGAGGCCTCGGTGGCGCGCTTCCGCTACCCCGACGGGACCTACTGGGCCGACGCCGCCCCCCGGTGA	MARITSVEIEDVRFPTSLEKDGSDAMNKDADYSAAYVVLRTDDVDAHGDPLAGHGLTFTIGRGNDIVAEAARQQASTLVGRDVDEIAGDMGGLYRELTSDSQMRWLGPEKGVVHLSLAAVLNAAWDLVARRADKPLWRLLADMTPTELVAVADLRYLSDALTTDEAVALLEARADTKAERIAHLERTGYPVYTTSAGWLGYGDDKLERLCQEAVDEGYGHIKLKVGADLDDDVRRLSIARRVIGPDRKLMIDANQVWDVPQAVEWMQALAPFEPLWIEEPTSPDDVLGHAEIRRSVAPVGVATGEHCHNRVMFKQFLQADAIDFCQLDTGRLASINEIVAVLLLAAKFGVPVCPHAGGVGLCEMVQHVSVLDYVAVAGDLDGRVTEFVDHLHEHFTDPCVVTDTGAGSGYVLPSRPGYSTQMHEASVARFRYPDGTYWADAAPR	PGPT0017495_63	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017495-fucD-K18334	NA	NA
AK001_01255	702	lutR_2	COG2186	HTH-type transcriptional regulator LutR	ATGTCACGCACCGACCAGGTCGTCGACGGCATCCGACGGATGATCCTCGACGGCGAGCTCGGCCCCGGTGACCGCCTCCCCGTGGAGAAGGAGCTCGCCGAGACCCTCGACGTCTCGCGCGGGTCCCTGCGCGAGGGCGTGCGCGCCCTGTCGGTCCTCGGCATCGTCGACACCCGCCAGGGGGACGGCACCTACGTCACCAGCCTGGATCCGGCCCGTCTGCTCTCCCCGATGGGGTTCGTCGTGGACCTGCAGGGCGACGGCAGCGCCCGCCCCTTCCACGGCGTGCGCCGGATCCTCGAGACGGAGGCCGCGGCGCTGGCCGCCACCCGCATCACCCCCGAGGCGCTGGCCGAGGCCCGCGACGTCCTCGACACGGTCGACGACATCCTGCGCCAGCCCGACGTCGACCACGAGGGTTTCATCGAGGCCGACATCGCGTTCCACCGGATCATCGCCGCCCACACGGGCAACCCCGTGATGGCCGCCCTCATCGAGTCCCTCGCGACCCGCACGGTGCGCGAACGACTCTGGCGCGGTCTGCACGAGGAAGGCGCCGAGGAACGCACCCACGGCGAGCACCGTGCCATCTGGCGCGCGCTGTCCGCCGGCGACCCGGAGAGCGCACGGATCCGCATGGCCAACCATCTGCTCGGCGTGCAGGAGGCCCTCCCGGCGATCCCCGCCGACGACGGCGCCTGA	MSRTDQVVDGIRRMILDGELGPGDRLPVEKELAETLDVSRGSLREGVRALSVLGIVDTRQGDGTYVTSLDPARLLSPMGFVVDLQGDGSARPFHGVRRILETEAAALAATRITPEALAEARDVLDTVDDILRQPDVDHEGFIEADIAFHRIIAAHTGNPVMAALIESLATRTVRERLWRGLHEEGAEERTHGEHRAIWRALSAGDPESARIRMANHLLGVQEALPAIPADDGA				NA	NA	NA	NA	NA
AK001_01256	849			Ureidoglycolate lyase	ATGCACCTGCTCCGCCTGGGCCCTGCCGGCCAGGAGATCCCCGCCGTCGACCGCGACGGCACCATCTACGACCTGCGAGGGGTCACCGCCGACATCGACGGCGACTTCCTCGGCGGCGACGGCGTGGCCCGCGTGCGCGCCGCGCTGGAGGACGGCGCCCTGCCCGTGCTCGACGCCGCCGCCGACCTGCGCCGCGGGGCGCCCGTGACCCGGCCGACCGCCGTGATCTGCATCGGGCAGAACTACGCGGCGCACGCCGCCGAGTCCGGCGCCCAGCCGCCGTCGGCACCGATCGTGTTCTTCAAGCACCCCAACACCGTGGTCGGTCCCGACGACACGGTCCCGGTGCCGCCCGGCGCCGAGAAGCTCGACTACGAGGTCGAGCTCGGCGTGGTCATCGGGCGGCGTGCCAGCCGCCTGGCCTCGCCGCAGGAGGCGCTGGAGCACGTAGCCGGCTACACCGTGGTCGACGACGTCAGCGAGCGGACGTGGCAGATCGAGGACTCGCTCGGCCAGTGGTCCAAGGGCAAGTGCGGGCCGGCGTTCGCCCCGACGGGTCCGGCCCTGGTGCCGGCCGACGAGCTCGACTCCTCGGGTCTGTCGCTGCGGTCCTGGGTCAACGGCGAGCCCCGTCAGGACTCGACGACGGCCGACATGATCTTCGACGTGGCGACCATCGTCCACGACCTGTCGCAGTACATGGATCTCGAGCCGGGTGACCTGATCTGCACCGGCACGCCGGAGGGCGTCGCCTTCTCCGGGCGGTTCCCGTTCCTGCGCGACGGGGACGTCGTGGAGGTCGAGATCGACGGCATCGGGCGCCAACGGCACGTGGTGCGCGACGCCTGA	MHLLRLGPAGQEIPAVDRDGTIYDLRGVTADIDGDFLGGDGVARVRAALEDGALPVLDAAADLRRGAPVTRPTAVICIGQNYAAHAAESGAQPPSAPIVFFKHPNTVVGPDDTVPVPPGAEKLDYEVELGVVIGRRASRLASPQEALEHVAGYTVVDDVSERTWQIEDSLGQWSKGKCGPAFAPTGPALVPADELDSSGLSLRSWVNGEPRQDSTTADMIFDVATIVHDLSQYMDLEPGDLICTGTPEGVAFSGRFPFLRDGDVVEVEIDGIGRQRHVVRDA	PGPT0001745_132	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336	NA	NA
AK001_01257	1020	fdh_1		D-threo-aldose 1-dehydrogenase	ATGCCCGAGACCACACCGACCGTCCTGCCCGCACGCCAGGTGCGCGACACCCCCGTCCACCTGACCACGCTGGGCTACGGCGCCGCGCAGGCCGGCAACCTCTACCGCACGAGCACCGACACCGAGACCGCCGCGGCGTTCGACCTCGCCTGGGACCTCGGCGTCCGGTACTTCGACACCGCCCCGCACTACGGCCTCGGTCTGTCCGAGCGACGCCTCGGCGACGCGCTCCGGGGTCGCCCGCGCGAGGAGTTCGTCGTGTCCACCAAGGTCGGACGGCTCCTCGAACCGTCCCCGGAGACGGCGCACCTGCGCGACACCGAGGGGTTCGACGTCCCCGCCGACACCCGGCGGGTGTGGGACTTCTCCCGCGACGGCGTGCTGCGCTCGCTCGAGGCCAGCCTGGAACGCACCGGACTGGACCGCCTCGACGTCGTCTACCTGCACGACCCGGACGAGCACTGGGAGGCCGCCTCCCGCGAGGCCGTGCCCGCGCTCGTCGAGCTGCGCGACCAGGGCGTGATCGGGGCCATCGGCGCGGGGATGAACCAGTCGGCCATGCTGGCCCGGTTCGTCCGCGAGACCGACGTCGACGTCGTCATGTGCGCCGGACGGTTCACCCTCCTGGAGCAGCCCGCGCTCGGCGACCTGCTGCCGGCCGCCGCGGAGCGCGACGTCGCCGTCGTCGTCGCCGGCGTCTACAACTCGGGGCTGCTCGCCCGCGAGACGCCTCCCGACGACGCCACCTACAACTACACCCAGGCGCCCGCCGAGCTCATCGAGCGCACCCGGCGGATCGCCGCCGTCTGCGGCGAGCACGGCGTCACCCTGCCCGAGGCGGCGCTCGCCTACGTCCGGACGCACCCGTCCGTGGCCAGCACCGTCATCGGGGTGCGCAACCCCGACCAGGTGCGCCAGTCCGTCGAGCGCCATGCCGCCACGGTCCCCGACGAGCTGTGGACGACGCTCGTCGAGGAGGGGCTGCTGGCCGAGGACGCCGCCCCGGACGCGCTGCGCTGA	MPETTPTVLPARQVRDTPVHLTTLGYGAAQAGNLYRTSTDTETAAAFDLAWDLGVRYFDTAPHYGLGLSERRLGDALRGRPREEFVVSTKVGRLLEPSPETAHLRDTEGFDVPADTRRVWDFSRDGVLRSLEASLERTGLDRLDVVYLHDPDEHWEAASREAVPALVELRDQGVIGAIGAGMNQSAMLARFVRETDVDVVMCAGRFTLLEQPALGDLLPAAAERDVAVVVAGVYNSGLLARETPPDDATYNYTQAPAELIERTRRIAAVCGEHGVTLPEAALAYVRTHPSVASTVIGVRNPDQVRQSVERHAATVPDELWTTLVEEGLLAEDAAPDALR	PGPT0017915_141	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064	NA	NA
AK001_01258	777	bacC		Dihydroanticapsin 7-dehydrogenase	GTGACCACCAGCACCCCAGCCCGCGAGCTCGACGGCCTGCGCGCCGTCGTCACGGGCGGCGCCTCCGGCATCGGCGCCGCGATCGCGGCCGCCATGCTCGCCCGCGGCGCGCACGTGACCTCGATCGACCGGTCTGCCGACGGTGTGCCCGACGGCGTGCACGCCGAGGTCGCCGACGTCACCGACGATGCAGCGGTCCGTCGCGCGGTCGAGGGCGCCGCGGCCGCCATGGACGGCATCGACGTCGTCGTCAACAACGCCGGGATCGGTGCGCAGGGCACCGTCGCCGACAACGACGACGCCGAGTGGCTGCGGGTCCTCGACGTCAACGTGCTCGGCATCGTCCGCGTCACCCGTGCCGCCCTGCCTTACCTGCAGGCCTCGAACCGTGCCGCCGTCGTCAACACCTGCTCCATCGCCGCCTGGACGGGGCTGCCCGCACGGGCGCTGTACTCCGCCTCCAAGGGTGCGGTGCAGTCGCTCACGCTGGCGATGGCGGCCGACCACGTGCGCGAGGGCATCCGCGTCAACTGCGTCAACCCCGGCACCGTGGACACCCCGTGGATCGGCCGGCTGCTCGACCAGGCCGACGACCCCGCCGCCGAGCGGGCTGCGCTCGAGGCGCGCCAGCCCACCGGTCGGCTCGTCAGCCCCGACGCCGTGGCGCACGCCGTGTGCTACCTCGCCAGCCCGCTCGCCGACGCCACCACGGGTGAGGCGCTGGCCGTCGACGGCGGGATGCACGGTCTGCGCGTCCGCCCCCCGAGCGCCTCATGA	MTTSTPARELDGLRAVVTGGASGIGAAIAAAMLARGAHVTSIDRSADGVPDGVHAEVADVTDDAAVRRAVEGAAAAMDGIDVVVNNAGIGAQGTVADNDDAEWLRVLDVNVLGIVRVTRAALPYLQASNRAAVVNTCSIAAWTGLPARALYSASKGAVQSLTLAMAADHVREGIRVNCVNPGTVDTPWIGRLLDQADDPAAERAALEARQPTGRLVSPDAVAHAVCYLASPLADATTGEALAVDGGMHGLRVRPPSAS	PGPT0008190_497	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008190-budC-K18009	NA	NA
AK001_01259	903			hypothetical protein	GTGCCGGGACACGACGTCGTGGACGCCCACCACCACCTGTGGGTGCGCGCTCGCACGCCGCAGGACTGGATCGACCCGGAGACCATGGCGGCGATCGACGCCGACTTCGTCCCGGCCGACCTGCCCGCCGTCGACCACGGCGTCTCGGCGACGGTCGTGGTGCAGACCGCGAGCCGGTGGTCCGAGTCCGAGGAGCTGCTCGCCCTGTGCGACTCCGCCGAGGGGCGAGCCGCGGGGCTGGCCGGCGCCGTCGTCTGGGCCGACCTGCACGCCGAGGACCTCCCGGCACGGTTGACCGACCTGCGCGAGCGGCCCGGCGGAGCGCACCTCGTCGGGGTGCGGACCATGATCCAGGCCGAACCCGATCCCGGCTACCTCGACCGCGCCGACGTGCGGGCCGGTATCGCCGCCGTCGGCGCCGCCGGACTGCCGTTCGACCTGGTGCTCCACGACGGGCAGATCGCCGCCGCGGCCCGGTTGGCCGCCGCCCTGCCCGACGTGACCTTCGTGCTCGACCACCTCGGCAAGCCCCGCCTCGACCGCCACGCCGACGGCGGCGCCGACGAGATCGCTGCCTGGCGCAGCGACCTGGCGGACCTGGCCGCGCGACCGAACGTCGTCGCCAAGCTGTCCGGCCTCGTCACCGAGGCGCACTGGGACTCCTGGACCACCGACGACCTGCGACCCGCCGTCGACCACGCGTTGTCCACCTTCGGGCCGGACCGGCTGATGTTCGGCTCGGACTGGCCCGTCTGCCTGCTGGCCAGCGGCTACGGCCGCTGGCTCGACACCGCGCGCGAGCTGCTCGCCCCGCTGAGCACCGCCGAGCAGGCCGCGATCTGGGCCGGGACGGCCCGCCGCGTCTACTCCCTGCCCTCGCACCCGAAGGAGAACCCCTCGTGA	MPGHDVVDAHHHLWVRARTPQDWIDPETMAAIDADFVPADLPAVDHGVSATVVVQTASRWSESEELLALCDSAEGRAAGLAGAVVWADLHAEDLPARLTDLRERPGGAHLVGVRTMIQAEPDPGYLDRADVRAGIAAVGAAGLPFDLVLHDGQIAAAARLAAALPDVTFVLDHLGKPRLDRHADGGADEIAAWRSDLADLAARPNVVAKLSGLVTEAHWDSWTTDDLRPAVDHALSTFGPDRLMFGSDWPVCLLASGYGRWLDTARELLAPLSTAEQAAIWAGTARRVYSLPSHPKENPS				NA	NA	NA	NA	NA
AK001_01260	345			hypothetical protein	ATGAGTCCGGTCCCCGCAGAGCCAACCCACGGCTCCGCCTCGGCACCGGCCCCCGGGCTCCGCCTCGCGCTCAGCCGCGACCTGGCCGAGTCCACGGCCGCCGTGCTGCGCGTCGTCTCGGACCCCACGCGGCTGCAGATCCTCAGCCTCGTCCACGCCTCGACCGACGGCCGCGCCCGCGTCGCCGACCTGACCGAGGCCCTCGGACTACGCCAGCCCACGGTCTCCCACCACGTCAAGGTCCTGACCGAGGCCGGCATCCTGACCCGCGAACCCGCCGGCCGTGAGGTCTGGTACGCGGTGGAAGCGACGCGCATCTCCGCCATCGCCGACCTGCTGCGCTGA	MSPVPAEPTHGSASAPAPGLRLALSRDLAESTAAVLRVVSDPTRLQILSLVHASTDGRARVADLTEALGLRQPTVSHHVKVLTEAGILTREPAGREVWYAVEATRISAIADLLR	PGPT0004735_1236	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892	NA	NA
AK001_01261	933	arsC_2		Arsenate reductase	GTGGCACCCCACGACCTGCGCCTGCACCAGATCCGCGTGCTCGCCGACCCTGTCCGCCTGCAGCTGCTCTGGGCGGCGGTGACCGACCCCAGCGGCGAACCGACGCACGCCGCGCTCACCGGATCGACGCAGGACCACGCCGCGGCCGCGGAGCACGTCGACGCCCTCACCGGAGCCGGACTGCTCTCCCGGCTCGGCACCGGCCCCGACGCCAGGTACCGGCCCACGCCGGACGCCCTGGCGCGCTTCGGCGGCGCACTCCTCCACACCCCGAGCACCACCAGCCACGCACCGGGAGAGGTCGACCCCGAGCACGTCGCCCGGCTACGCCACATCACCGACGACCTGACGCGACGGTTCGCCGCGACGTTCGCGCGCGAGACCGTGGACCGGTTCGTCTCGGAGAGCTACGAGCTGCTCGCGTCCCGCGCCCGCGTCCGCCAGCACCTGCCCACGCTCACCGCCCGGTTCGCGGCCGAACGCCTCGGTGCGCTCGCGGCCGGAGCGGACCGCACCCATCACCCGATGGACGACCGCCACAGCGTGCTGTTCGTCTGCGTGCACAACTCGGGGCGCTCCCAGATCGCCGCCGCGGCCCTGCGGTCCACCGCGGGTGACAGGTTCCGCGTCCGGACCGCCGGGTCGACACCGGCCGCGGCGCTCGACCCCCGGGTCCGCGCCGAGCTGGACCGGCGCGGACTCGGTGCGCTCACGGAGTTCCCGCGACCCCTGACCGACGAGGTGGTCCAGGCGGCCGGGACCGTCGTGACGATGGGCTGCGGCGACGCGTGCCCCGTGCTGCCGGGGCGGCGCTACCTCGACTGGCCGATCGCGGACCCGCGGGGCCGCTCCGAGGTGGAGGTCACGCAGATCATCGACGACATCACGTTCCGGGTCGGAGAGCTGATCGCCGACATCGACGAGTCGCGCTGA	MAPHDLRLHQIRVLADPVRLQLLWAAVTDPSGEPTHAALTGSTQDHAAAAEHVDALTGAGLLSRLGTGPDARYRPTPDALARFGGALLHTPSTTSHAPGEVDPEHVARLRHITDDLTRRFAATFARETVDRFVSESYELLASRARVRQHLPTLTARFAAERLGALAAGADRTHHPMDDRHSVLFVCVHNSGRSQIAAAALRSTAGDRFRVRTAGSTPAAALDPRVRAELDRRGLGALTEFPRPLTDEVVQAAGTVVTMGCGDACPVLPGRRYLDWPIADPRGRSEVEVTQIIDDITFRVGELIADIDESR	PGPT0004705_2951	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325	NA	NA
AK001_01262	801	arlR	COG0745	Response regulator ArlR	ATGACCAAGATCGCTCTGGTGGACCCGGACCTGTCCGGTGCCGAGGAGCTGGCGGCGCGCCTGCGCGAGCGCGGCGTGGCCCTGGAGTCCTTCACCGAGCCCTTACGGGCGCTGGTTCATCTGGGCCGGGTGCGTGCGGACGCCGTGGTTCTCGCAGCCCGGGCCGGAGCGGCCACCGCGACCCAGGTCACCTCGGTCGTGCGCGACGAGCTGAACCTGCCCGTGCTCCTGGCGCACGACGCCGCGGACGTCGATCTCATCGGCTCGCCGGTGCTGGCCGGAGCCCGGCCGCTGGTCGGGCTGCCCTACGACGCGGACCAGCTGGAACGCGTCCTCAAGGAGGTGTGTCCGCCGACGCCCTCGGCGGAGCAGGTCCGGGTGGGGACGTTGCGTCTGGACCCGTCGGGGTTCGGGGCGCGGCTCGACGGTCACGGTCTGGACCTGTCCGTGCTGGAGTTCGAGGTGCTGCTCGTGCTGGCGGAGCAGCCGGACCACGTGGTGCGCCGGGCGGCACTGATGAGCCGCTGGCCGGAGTCTGCCGACCCGGACGAGCGGCTCGTGGCCGTCGTCAGCCGGTTGCGCCGCAAGCTCGAGCGGATCGGCCGGTCGGGGGTGATCCACACCGTGCGCGGTCTGGGATACCGGCTCGAGTCCCGGGCGCTGAGCCCGATGGTGGGACGTCAGCGCGACTCGTCGATGTCGGCGATCAGCTCTCCGACCCGGAACGTGATGTCGTCGATGATCTGCGTGACCTCCACCTCGGAGCGGCCCCGCGGGTCCGCGATCGGCCAGTCGAGGTAG	MTKIALVDPDLSGAEELAARLRERGVALESFTEPLRALVHLGRVRADAVVLAARAGAATATQVTSVVRDELNLPVLLAHDAADVDLIGSPVLAGARPLVGLPYDADQLERVLKEVCPPTPSAEQVRVGTLRLDPSGFGARLDGHGLDLSVLEFEVLLVLAEQPDHVVRRAALMSRWPESADPDERLVAVVSRLRRKLERIGRSGVIHTVRGLGYRLESRALSPMVGRQRDSSMSAISSPTRNVMSSMICVTSTSERPRGSAIGQSR				NA	NA	NA	NA	NA
AK001_01263	843	pstB		Phosphate import ATP-binding protein PstB	ATGACCGAGCCGGCCACCCGATCCACCGCCTCCGCCGCGAGGGGCACCACCGCAGCGGCTCCGGAGCCCGTGATCTCCACCCAGGACCTCAACGTCCACTACGGGACGTTCCACGCGGTCACGGACGTCTCGATGGACTTCGGCAAGAACGAGGTCACCGCGCTCATCGGGCCGTCCGGCTGCGGCAAGTCGACCGTGCTGCGCTGCCTGAACCGCATGAACGACCTGGTCCCCACGGCCCGGGTCAGCGGCGAGGTGCGCTACCACGGCATCGAGCTGTACGGGCCGAAGATCGACCCGATCGAGGTCCGGCGCCGCATCGGCATGGTGTTCCAGAAGGCCAACCCGTTCCCGAAGTCGATCTACGACAACATCGCCTACGGCCCCAAGGTCACCGGGATGCAGGTCGACAGCATGGACGACCTGGTCGAGCAGACGCTGCGTCGTGCCGCGCTCTGGGACGAGGTCAAGGACAAGCTGAAGCAGAACGCCTACGGGCTCTCGGGCGGACAGCAGCAGCGGCTGTGCATCGCCCGGGCGATCGCCACCGACCCGGACGTCGTCCTGATGGACGAGCCGTGCTCCGCCCTCGACCCGATCGCCACGTTGCGGATCGAGGAGCTCATGGCCGAGCTGCGCGACAAGTACACGATCGTGATCGTCACGCACAACATGCAGCAGGCGGCCCGGGTGTCCGACCGGACGGCGTTCTTCACCGTGAAGGTCAACGAGGAGACGGGTGACCGCACCGGCGGGCTCGTCGAGTACGCACCGACGTCCACGATCTTCGAGAACCCTCGGGACGAGCGGACCGAGGGGTACATCAGCGGACGGTTCGGATGA	MTEPATRSTASAARGTTAAAPEPVISTQDLNVHYGTFHAVTDVSMDFGKNEVTALIGPSGCGKSTVLRCLNRMNDLVPTARVSGEVRYHGIELYGPKIDPIEVRRRIGMVFQKANPFPKSIYDNIAYGPKVTGMQVDSMDDLVEQTLRRAALWDEVKDKLKQNAYGLSGGQQQRLCIARAIATDPDVVLMDEPCSALDPIATLRIEELMAELRDKYTIVIVTHNMQQAARVSDRTAFFTVKVNEETGDRTGGLVEYAPTSTIFENPRDERTEGYISGRFG	PGPT0002615_244	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036	NA	NA
AK001_01264	921	pstA	COG0581	Phosphate transport system permease protein PstA	ATGAGACAGTCGGGCCGCACCAGGATCGCGGTCGACGCGGCACGCGTCGACGTCAGCTCGTTGCAGCGCCGAGGGATCGACGTCAAGGGCGAGCTGTTCCGCGCGCTCCTGCTGCTCTGCATCGTCGTCGGCGTCGTCATGCTGGCGACGCTGCTCATCTACGTGACCGTGGCGGGATGGCCGCGCCTCGACCTCAACCTGTTCACGCAGATGCCGTCGACCCGTGACCCGGAGACCTCGGGGTTCCTGCCGGCGATCATCGGCACCATCTACGTGATGTTCGGCGTGCTCGTCACCACGGTTCCCATCGGCGTCAGCGCGGCGATCTACCTCGAGGAGTACGCCGATCCGAGCCGTTGGTACAACCGGCTCATCGAGATCAACATCCAGAACCTCGCGGCGGTGCCGTCGATCGTGTTCGGCATCCTGGGCCTCGCTTTCGTCGTCCGGGGTCCCTGGGGGCTCGGGTTCGTCGCCTTCGCCGGCTCGTTGACGCTGATGATGATGGTCCTCCCGACGGTGATCATCGCCTCGCGCGAGGCGATCCGCGGGGTGCCGAGCACGTTGCGGCACGCCTCCTACGGGCTCGGCGCCACACGGTGGCAGACCGTGTCGCGCCAGGTGCTGCCGGTCGCGTTCCCCGGGGTGCTGACGGGCACCATCCTGGCGATGTCGCGGGCCATCGGTGAGACGGCACCCCTGCTGCTGGTCGGGGCGACCACGTTCGTGCGGTTCCTGCCCGAGGGACTGTTCGACGGGGCGTACTCGGTGATCACCGTGCAGATCTTCCAGTGGGCGATGCGCCCGCAGGACGAGTTCCGGACGCTGGCGGCGGCCGGCTCCCTCGTGCTCGTGCTGCTGCTGCTGCTCATGAACTCCGTGGCCATCTGGCTGCGCAACCGGTACAGCCATGAGTACTGA	MRQSGRTRIAVDAARVDVSSLQRRGIDVKGELFRALLLLCIVVGVVMLATLLIYVTVAGWPRLDLNLFTQMPSTRDPETSGFLPAIIGTIYVMFGVLVTTVPIGVSAAIYLEEYADPSRWYNRLIEINIQNLAAVPSIVFGILGLAFVVRGPWGLGFVAFAGSLTLMMMVLPTVIIASREAIRGVPSTLRHASYGLGATRWQTVSRQVLPVAFPGVLTGTILAMSRAIGETAPLLLVGATTFVRFLPEGLFDGAYSVITVQIFQWAMRPQDEFRTLAAAGSLVLVLLLLLMNSVAIWLRNRYSHEY	PGPT0002610_2243	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038	NA	NA
AK001_01265	972			hypothetical protein	ATGGCTTCCGCCTCCGTCCCGACCGTGCCGCCGCCGGTCGACCCGCCGCTCTCCCTCGAGCCGTCGAGCCGACGCCTCGGGGAGAAGGTCATCGCCGGTTGGCTCTTCGCGGCCGCCGCGCTCGCCGTCCTGATCACGGTGGGCATCGTGCTCGCCATCATCGGACCGACCATCGAGTTCTTCCGCGAGGTGCCGTTCTCCCGGTTCTTCTCCGCCGAACCGTGGGCACCGAACTTCGTGCCGGACGGGTTCGGGGTCTACAACATCCTCGCCGGCTCGGTCGCGATCGTGCTCTACTCGTGCGTCATCGCGTTGCCGGCCGGTCTCGGCGCCGCCATCTATCTCAACGAGTACGCGAGCCACCGCGCCCGGCGGATCCTCAAGCCGGTGCTCGAGGTGCTCGAGGGGATCCCGACCGTGGTCTACGGGCTCTTCGCCCTGGCGTTCGTGGCACCCGTGCTCCAGACCATCTGGCCCGAGTTCCTCCCGGGCAAGCTGGGCGAGCCGCCCGGGTTCCAGTTCGTGCTCAGCGCCGGCGTCGTCCTGGGGATCATGATCATCCCGACGGTCGCCTCCGTCTCCCAGGACTCCATGGGTGCGATCCCGCGCGGTCTGCGCGAAGCGGCCTACGGCCTGGGCAGCACCAAGAGGCAGGTCGCCACCAAGATCGTGGTGCCGGCGTCGTTCTCGGGCATCGTCGCGTCGTTCGTCCTCGGTCTCTCGCGTGCCGTCGGCGAGACCATGGTCGTCCTCATGGCCGCCGGCGCCATCGCGAACCTGACATTGTGGCCCAACGACGCGGTCCTGACGATGACGGCCTTCATCGGCCGGACCGCCACCGGTGACGTCTCGACCGGCACGATCACCTACTACACCGTGTTCGCCGTCGCGGCACTGCTCTTCGTCATCACGCTCGTCATCAACATGATCAGCATCGCGCTGGTCCGCAAGTTCCGAGAGGTCTACGAATGA	MASASVPTVPPPVDPPLSLEPSSRRLGEKVIAGWLFAAAALAVLITVGIVLAIIGPTIEFFREVPFSRFFSAEPWAPNFVPDGFGVYNILAGSVAIVLYSCVIALPAGLGAAIYLNEYASHRARRILKPVLEVLEGIPTVVYGLFALAFVAPVLQTIWPEFLPGKLGEPPGFQFVLSAGVVLGIMIIPTVASVSQDSMGAIPRGLREAAYGLGSTKRQVATKIVVPASFSGIVASFVLGLSRAVGETMVVLMAAGAIANLTLWPNDAVLTMTAFIGRTATGDVSTGTITYYTVFAVAALLFVITLVINMISIALVRKFREVYE	PGPT0002620_2334	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037	NA	NA
AK001_01266	996	sphX	COG0226	Protein SphX	GTGCTCAAGAACCACAAGCGCGCGGCCGCAGCGATCGGAGCGGTCGGGCTGGCACTCACTCTCGGGGCTTGCAGCGGGTCCGAGACCGCCGGCAGCGAGTCTGACGCCTCCATGGAGGAGAACGGCGAGGCCATGGAGGGCGAAGCCCTCTCCGGCTCCGTCGTCATCGACGGCTCCTCGACCGTGGCCCCGAACACCGAGGTCGCGGCGGAGCTCTTCGGCGAGGAGTACCCCGAAGTACGCGTCTCGGTGGGTGTCTCCGGCACCGGCGGCGGCTTCGAGAAGTTCTGCAACGGCGAGACGGACATCTCCGAGGCCTCCCGGCCGATCGCCGACGACGAGGCCGAGCGGTGCGCCGACGCCGACATCTCCTACGCCGAGCTCGGAATCGCGAACGACGGCCTGGCCGTCGCCGTGAACCCCGAGAACGACTGGGCGCAGTGCCTCACCATCGAAGAGGTCAGCTCCATGTGGACGCCGGAGAACCCGGTCGACTCCTGGGCCGACGTCCGCGACGGCTTCCCCGACGAGCCGATCACGCTCTACGGTCCCGGCTCCGACTCGGGCACCTTCGACTTCTTCACCGAGGAGGTCAACGGGGAGAGCGGTGCCATCCGCGCCGACTACAACGACATCGGTGAGGACGACTTCGGTGCCGTCCAGGGCGTCGAGGGTTCGACCGGCGCGACGGCGTTCATCCCGCTGTCCTTCGTCGAGGAGGCCGGCGACGCCGTCCGTGCGGTCGAGATCGAGAACGAGGCCGGCGACTGCGTCGCCCCGTCGCTCGACACGGTCATGGACGCGTCGTACAACCCGCTGGGTCGCCAGCTGTACATCTACCCGAGCGACACGGGCCTCGAGAAGCCCGAGGTCCAGACCTTCATCGAGTTCTACATCGAGAACCAGGCGCAGATCGCCGAGGAGGCGGGCTTCATCCCGCTGAACCCGGACCAGGAGCAGGTCGCGACCGACGCCCTGGCCGAGCTGGTCGGCTGA	MLKNHKRAAAAIGAVGLALTLGACSGSETAGSESDASMEENGEAMEGEALSGSVVIDGSSTVAPNTEVAAELFGEEYPEVRVSVGVSGTGGGFEKFCNGETDISEASRPIADDEAERCADADISYAELGIANDGLAVAVNPENDWAQCLTIEEVSSMWTPENPVDSWADVRDGFPDEPITLYGPGSDSGTFDFFTEEVNGESGAIRADYNDIGEDDFGAVQGVEGSTGATAFIPLSFVEEAGDAVRAVEIENEAGDCVAPSLDTVMDASYNPLGRQLYIYPSDTGLEKPEVQTFIEFYIENQAQIAEEAGFIPLNPDQEQVATDALAELVG	PGPT0002625_4292	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040	NA	NA
AK001_01267	372			hypothetical protein	ATGCACGAAGATACGCAGTCATGCACCTTCGGGGTCCGGTCGCAGTACGTCGACCTCGCGGTCGAGGTGTTCACCTTGCTCGCCGACGCGACGCGGGTCCGGATCGTCCTCGCACTGCGCGACGGGGAGATGCCGGTCAACCGCCTGGCCGAGGTCGTGGACAGGACGCCGACGGCCGTGTCCCAGCACCTGGCCAAGCTGCGTTGGGGACGCATCGTCACGGCGCGCCACGAGGGCAACCGCGTCTTCTACTCGCTGGTCGACGAGCACGCCCGACAGCTGGTCACCCAGGCCGTCTTCCAGGCCCAGCACGCCGTCGACGACCGCCCCGCCCACCACGTCGACGGGGTCCACCCGGAGCAGGCGCGATGA	MHEDTQSCTFGVRSQYVDLAVEVFTLLADATRVRIVLALRDGEMPVNRLAEVVDRTPTAVSQHLAKLRWGRIVTARHEGNRVFYSLVDEHARQLVTQAVFQAQHAVDDRPAHHVDGVHPEQAR	PGPT0004305_26	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004305-czrA|yozA-K22043	NA	NA
AK001_01268	1023		COG0053	putative cation efflux system protein	ATGAACGGGCCCACCACCACCGACCACGCCCACCACACGCACGACCACACCCACCCGACCGGGCTGCGCGGCTGGCTCCACGAGATCTTCGTGCCGCACTCGCACGACACCGCCAGCTCGATCGACGACGCGATGCAGGCCAGCGGTCACGGCATCCGTGCGGTCAAGATCAGCCTGCTCGTGCTCGGCCTCACCGCACTCGCCCAGCTCGCCATCGTCGCGATCAGCGGCTCGGTCGCTCTCATGGCCGACACCATCCACAACTTCTCCGACGCGTTGACCGCCGTCCCGCTGTGGATCGCGTTCGTCCTCGGCCGCCGCCGGGCCACGGACCGCTACACCTACGGCTACGGCCGCGCGGAGGACCTCGCGGGGCTGTTCATCGTGGCGATGATCGCCCTGTCCGCCGTCGTCGCCGGTGTGGAGTCGGTCCGGCGACTGGCCGACCCCCAGCCCCTGGAGAACCTGGGCTGGGTCCTGGCGGCCGGCGTCGTGGGATTCGCCGGCAACGAGGCGGTCGCCGTGTATCGCATCCGGGTCGGGCGCCGCATCGGCTCGGCCGCCCTGGTCGCCGACGGTGTCCACGCCCGCACGGACGGGTTCACCTCCCTGGCCGTCGTCCTCGGCGTGATCGGCGTCTGGGCCGGGTTCCCCCTGGCCGACCCGCTCGTCGGCCTGCTCATCACCGCCGCCATCCTCGTGCTGCTGTGGGGCACCGCGCGCGACGTCGGCCGACGCCTCCTGGACGGGGTCGACCCGGACCTCACCCGTCGGGCCCGACAGGCGCTGGAGCAGCAACAGCAGCTCGGTCACCTCGAGGATCTCCGGCTGCGCTGGAGCGGTCACCGGCTCCAGGTCGAGGCCACGGTGACGATGCCGCCGGGAACCACCCTGGACCGGGCGGCCGCCATCACCGCCGAGGCCCGGACGGCGCTGCACGCCGCCCTGCCGGCCCTCGGCGACGTCCGGGTGATGCCGCGCGCGGCCCACCCGACCGTGGCCGAGCAGGCGGCGCGGACGTAA	MNGPTTTDHAHHTHDHTHPTGLRGWLHEIFVPHSHDTASSIDDAMQASGHGIRAVKISLLVLGLTALAQLAIVAISGSVALMADTIHNFSDALTAVPLWIAFVLGRRRATDRYTYGYGRAEDLAGLFIVAMIALSAVVAGVESVRRLADPQPLENLGWVLAAGVVGFAGNEAVAVYRIRVGRRIGSAALVADGVHARTDGFTSLAVVLGVIGVWAGFPLADPLVGLLITAAILVLLWGTARDVGRRLLDGVDPDLTRRARQALEQQQQLGHLEDLRLRWSGHRLQVEATVTMPPGTTLDRAAAITAEARTALHAALPALGDVRVMPRAAHPTVAEQAART				NA	NA	NA	NA	NA
AK001_01269	1350			Ferredoxin--NADP reductase	ATGGGGACGACGGAGCACCCGGTCGTGGTGATCGGTGCCGGACCGGTCGGGCTCGCGGCGGCGGCACACCTGCTCGAACGCGGGCTCGAACCGCTCGTCCTGGAGGCCGGTGACGGACCCGGCGCGTCGGTGGCGCAGTGGGGGCACGTGAGCCTGTTCTCCCCGTGGCGCTACTGCCTCGACCCCGCCTCTCGTCGACTCCTGGAGCCCGCCGGCTGGACGTCTCCCGACCTGGACACCCTGCCCACCGGCGGCGATCTCGTGCGCGACTACCTCGCGCCCCTCGCCGCGACGCCGGCCCTGCGCGACCGCATCCGGTACGGCAGCCGCGTCACCGCCGTCGTGCGCGACGGCGCGGACCGCACGCGCTCCCTCGGCCGCGAACGCCGCGCCTTCCGCGTCCGGACGGTCGGGGCCGACGGCGGCACGCACGACGTGCTGGCCCGCGCGGTCGTCGACGCCTCCGGCACCTGGACCCGACCCAACCCGGTCGGGGCCCACGGCATCCCGGCGATCGGCGAGGAGCAGGCCGCCGACCACCTGACCGGGCCGCTGCCCGACGTCCTGGGCGCGGACAAGGACCGCTTCGCCGGTCGTCGCACGCTGGTGGTGGGGATGGGGCACTCGGCCGCCAACACGCTGCTGGCGCTGGTCACGCTCGCCGAGGAGGTGCCCGCCACCCGCATCACCTGGGCCATCCGCGGCGGGTCGCCGCGGCGCCTCTTCGGCGGAGGCGCCGACGACGAGCTCCCGGCCCGTGGGCTGCTGGGGACCCGACTGCGCGAGGCGGTCGACGCCGGGCACGTCGACCTGGTGACCCGTGCCGAGATCGACGAGATCGAGCCGGCCGCCGGCGGTGTCGTCGTGCGCGGCACGGGGCGTCGGGACGGTGCCGACGGCCCGCTCGACGTGACGGTCGACCAGATCGTGGGGGCCACCGGGTTCCGGCCGGACCTGGACATGCTGCGCGAGATCCGGCTCGACCTCGACCCGGTCGTCGAGGCCCCCGCCCGGCTGGCCCCGCTGATCGACCCGAACCTGCACTCGTGCGGGACGGTCGAACCGCACGGCGAGGCGGTGCTGTCGCACCCGGAGGAGGGGATGTACGTGGTCGGCATGAAGTCCTACGGCCGCGCACCGACGTTCCTGCTGGCCACCGGCTACGAGCAGGTGCGTTCGGTGACCGCCGCTCTGGCGGGCGACCGTGCGGCGGCCGAGGCCGTCGAGCTCGAGCTGCCGGCCACGGGTGTCTGCTCGACGGACCTCGAGGACGACGACGGCGGCGCGTGCTGCGGCACGACGGCGGATCCCGGTCCGCAGCCGGTCGAGCTGTCTCTCGCGCCTCGCTGA	MGTTEHPVVVIGAGPVGLAAAAHLLERGLEPLVLEAGDGPGASVAQWGHVSLFSPWRYCLDPASRRLLEPAGWTSPDLDTLPTGGDLVRDYLAPLAATPALRDRIRYGSRVTAVVRDGADRTRSLGRERRAFRVRTVGADGGTHDVLARAVVDASGTWTRPNPVGAHGIPAIGEEQAADHLTGPLPDVLGADKDRFAGRRTLVVGMGHSAANTLLALVTLAEEVPATRITWAIRGGSPRRLFGGGADDELPARGLLGTRLREAVDAGHVDLVTRAEIDEIEPAAGGVVVRGTGRRDGADGPLDVTVDQIVGATGFRPDLDMLREIRLDLDPVVEAPARLAPLIDPNLHSCGTVEPHGEAVLSHPEEGMYVVGMKSYGRAPTFLLATGYEQVRSVTAALAGDRAAAEAVELELPATGVCSTDLEDDDGGACCGTTADPGPQPVELSLAPR				NA	NA	NA	NA	NA
AK001_01270	348			hypothetical protein	ATGACCACGACCGACGCCCCTGCCGCCGGCACGGCGACCTGCTGCACGGACAGCGCCTCGACCGGCCTCGGCGTCGAGCGCTCCCAGGAGCTGGCCCGGGCGTTCAAGGCCCTCGGCGAACCGGCCCGCGTCCGCCTGCTCTCCCTGGTGGCCGCTCAGCAAGGGAGCGAGGCGTGCGTCTGCGACCTCACCGAACCCGTCGGGCTGAGCCAGCCGACCGTCAGCCATCACCTCAAGGTGCTCGTCGACGCCGGCCTCCTCACCCGCACCCAGCGCGGACGGTGGGCCTACTACGCCGTCGCCCCCGGGGCCCTCGACCGGATGGCCGAGAGCCTGCGCGGCCTCTGA	MTTTDAPAAGTATCCTDSASTGLGVERSQELARAFKALGEPARVRLLSLVAAQQGSEACVCDLTEPVGLSQPTVSHHLKVLVDAGLLTRTQRGRWAYYAVAPGALDRMAESLRGL	PGPT0004735_616	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892	NA	NA
AK001_01271	1782			hypothetical protein	ATGCGTACGAACGCGCGCCGAGTGCTGCAGACGGCACTCGTCACGAGCGGCCTGCTGGTCGCCGGGGCCTGGTCGGCCCACGCTGCCGAGGACGACGTCGTCGACGTCGAGATCGGCGAGAACACCTCGGTCGAGGCGAACTTGTCCGAGGTCACCGAGGAGACGAACGACGCCTCCCTCGACACCCCGATCGACCTGCCCGAGGTCGACACCGAGTCCGTCGAGGACGTCGTCGACGACGTCCTCGGCGAGGACGGCCCGGTCGACGACGTGGTCGGTGCCGACGAGCCGACCGAGACCACGACGGACGACGTCGTGGACCATGTCGCCGAGGACGTCAGCCGGACCGTCGAGGACGCCACCGCGGGTGACGTCGAGGCGGTCGTGGAGGACGTCGCCGACGACGACGGGATCGTCGACGACGTGATCGAGGACGGCGGGTCCGACTCGGCCGCCGGGAACTCGGCCGAGACGGTCACCGAGGCCGTCGAGGACACCGCCGAGACCGTCACGAAGACCACGGAGTCGGCCGACGGGGCCACCGGGTCCGACGGCGGCGTGTCGGGCACGGTCGACGCCGTGCTCGGTGAGGACGGGATCGTCGACGACGTCGTGGGGGCCGACGAGCCCTCGGAGGGCGTGACCGACGAGGTCGTCTCCGAGACGCTCGACAACGTCGAGACCACGGTGGACGACGCCCTGGAGGGTGACGTCGATGCCGTGGTGGACGCCGTCGTCGCCGACGACGGCGTGGTCGACGAGGTCCTCGAGGACGGCGGGGTCGATGCCGCGCTGGACGAGGTCGACGCCGTGGTCACGGACGTCGACGGTGCGCTCGGCGCCGACGGCGGCCTGTCGGGCACGGTCGATGCCGTGGTCGGTGAGGACGGGATCGTCGACGACGTCGTGGGGGCCGACGAGCCCTCAGAAGGCGTGACCGATGAGGTCGTCTCCGAGACGCTCGACAACGTCGACGGGACCCTCGACGAGCTGCTCGAGGGTGACCTCGACGGTGTGGCCCGCGAGGTCCTCGACGAGGACGGTGTCGTGGACGACGTCCTGGAGGACGGTGGCGTCGACACGGTCGTCGCCGACGTCGTGGACTCCACGGGCACGGTCGACGACCTACTCGGCACCGGTGATCTGGTCGGCGGCACCGTCGATGGCATCGTCGGCGAGGACGGTCTGGTCGACGACATCGTCGGCCCGGACGAGCCCGAGCAGGGCGTCGCCGACGGCCTGCTCGACGAGCTGCGCAACGACCTGAACGAGACCGTGACGGAGCTGCTCGAGGGTGACCTCGTCGGCGTCGTCGACTCGGTGCTCGCCGAGGACGGCCTGGTCGACGACATCCTCGAGAACGGTTCCGGGGACGGCTCTGACGGTTCCGACGGCAGCGACGGCTCGGACGGTTCCGACGGCTCTGACGGCTCTGACGGTTCCGATGGCAGCGACGGTTCGGATGGCAGCGACGGTTCGGACGGTTCCGACGGCTCTGACGGTTCCGATGGCAGCGACGGCGCTGACGGTTCCGACGGCTCTGACGGTTCCGACGGCTCGGCGGGCGGCATGACGACCGGCGGATCCGCCGGGTCCTCGGGCGGCGTGCTCATGTCGTCGACCGGGGGGTCCGTCCCGCCGGCCGCTTCCTCCGGCACGCTCCCGCAGACGGGTGCCGGAGCCGGCCTGCTCGGCCTGGCCGGTCTGCTGGCCGTGCTGGGAACCGTCCTGGTGGCGCTGCGTCGTCGGACGTTCCACCTGGACGCCGTGAGGGTCCGATGA	MRTNARRVLQTALVTSGLLVAGAWSAHAAEDDVVDVEIGENTSVEANLSEVTEETNDASLDTPIDLPEVDTESVEDVVDDVLGEDGPVDDVVGADEPTETTTDDVVDHVAEDVSRTVEDATAGDVEAVVEDVADDDGIVDDVIEDGGSDSAAGNSAETVTEAVEDTAETVTKTTESADGATGSDGGVSGTVDAVLGEDGIVDDVVGADEPSEGVTDEVVSETLDNVETTVDDALEGDVDAVVDAVVADDGVVDEVLEDGGVDAALDEVDAVVTDVDGALGADGGLSGTVDAVVGEDGIVDDVVGADEPSEGVTDEVVSETLDNVDGTLDELLEGDLDGVAREVLDEDGVVDDVLEDGGVDTVVADVVDSTGTVDDLLGTGDLVGGTVDGIVGEDGLVDDIVGPDEPEQGVADGLLDELRNDLNETVTELLEGDLVGVVDSVLAEDGLVDDILENGSGDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGSDGADGSDGSDGSDGSAGGMTTGGSAGSSGGVLMSSTGGSVPPAASSGTLPQTGAGAGLLGLAGLLAVLGTVLVALRRRTFHLDAVRVR				NA	NA	NA	NA	NA
AK001_01272	1617			hypothetical protein	ATGTGCGACACGCAGGGGGAATGCATGACGCGCGCGGACAGCGTCCCGCAGGCACGGTGCCTGCGCCGCTGGACGCTGCGCGCCCTCGGGGTCGCCGTCGGCGCCGTGACCACCACCCTCTGCCTCACCTCGACGGCCGCTGCCGCCGACGACACCGGGTCCGACGACGGCTCCGGCGGTCTGCTCGGTGGGGTCGTCTCCACCGTCACGGACACGACCGGGACGATCGTCGACGACGTCGTGGAGCCGGTGACGACCACGCTCGAGAAGACCGTGGAGCAGGCGACCCAGCCGGTCGAGGCCCCCGAACCCGCACCCGAGCCGGAGCCTGCACCTGAGCCCGAGCCCGAGCCCGCACCTGAGCCGGAACCTGCACCCGAGCCCGAGCCGGAGCCCCAGCCGGCCGAGACCTCGGCGCCCGCCGAGCAGGAGCCGGCCGGGACGAGCAGCTCCGGGACCTCCGACGAGCAGCAGAGCGGCTCGTCGACGCAGCCCGCCGCCGCGGAGCAGGACGAGAGCACCCCGGAGGCGGAGTCCTCCACGGCTGGCTCTTCCGAGACCGAGTCCTCCGAGATCGGGTCCTCCGCCGCGCTGCCGTCCGAGGACACCGGCGGGAGCGTCCTCGGTGACGTCGTCGGGAGCGTGACCGACCCCGTCGAGGACGTCACCTCCCCGGTGGGCGATCTGGCGGGTGAGGTCGTGACCGGTGTGACCGAGCCGCTCACGGATCCGGTGCTCGACCCCGTCACCGAGACGGTCACCCCGGTGACCGACACGGTGGGGGAGGCCCTCGCGCCGGTCACCGACGCCGCCGCTCCGGTGCTCGACCCCGTCGGGTCGGTCGTCGGCACCGTCGCGGACACGGCGTCCCCGGTCCTGGAGCCCCTCGGTCCCGTCCTCGACCCGCTCGGCCCCGTGCTGACCGACGTCACCGAGCCCGTCGCCGGTGTCGTGGACCCGGTGCTGGAGCCCGTCCTGGAGCCGCTCGATCCCGTGCTGTCCTCGCTGGACCCCGTGGTCGGCGTGCTGGACCCGGTCGTCGACACGCTGGACCCTGTGCTCGACCCCCTCGACCCCCTCGACCCCGTGGTCGACACCGTGCTGCCCGGACGGGACGAGGACCCCTCCACGGGCGACGGCTCGGTGCCCGGACCGGTCACCGACGGGCCCGGCGTCGTCGCGCCGACGGACCCCGCGCCCGCCGGCCCGACGCCCGCCGTCGAGGACGCCCCGGCGGCTCTCGAGGCGGCGGAGCCCGCGCCGGCGGCGGCTGCCGACCGCGCCGCGCAGCAGGTCGAGCCTCGTCCGGAGACCACGCCGGCCTTCGCCGCCGTCGTCCCGGCGCCGGCCGTCACCGTCGAGCACCCCGGCGCGACCGTCCGTTCGACGACCGCCGCCCCGGCGGCCGGCGGACCGGCCGCGTCGGCTCCGCAGCTCAGCACGAGCGCGGCGGGCGGCGCCTCGAGCAGCCTGCGCGGTGCGTCGGGCGCCGGTGACGCCGGGGCCCAGCTGGCCGGCCGCCCGCTCGCGGGCGCCACCACCTACCTGGTGCCCGCCGTCGACGCCTTCGTCCACCTCCCCACCCCCCACTCCGAGATCCCTGTCTCTCCTGCCTGA	MCDTQGECMTRADSVPQARCLRRWTLRALGVAVGAVTTTLCLTSTAAAADDTGSDDGSGGLLGGVVSTVTDTTGTIVDDVVEPVTTTLEKTVEQATQPVEAPEPAPEPEPAPEPEPEPAPEPEPAPEPEPEPQPAETSAPAEQEPAGTSSSGTSDEQQSGSSTQPAAAEQDESTPEAESSTAGSSETESSEIGSSAALPSEDTGGSVLGDVVGSVTDPVEDVTSPVGDLAGEVVTGVTEPLTDPVLDPVTETVTPVTDTVGEALAPVTDAAAPVLDPVGSVVGTVADTASPVLEPLGPVLDPLGPVLTDVTEPVAGVVDPVLEPVLEPLDPVLSSLDPVVGVLDPVVDTLDPVLDPLDPLDPVVDTVLPGRDEDPSTGDGSVPGPVTDGPGVVAPTDPAPAGPTPAVEDAPAALEAAEPAPAAAADRAAQQVEPRPETTPAFAAVVPAPAVTVEHPGATVRSTTAAPAAGGPAASAPQLSTSAAGGASSSLRGASGAGDAGAQLAGRPLAGATTYLVPAVDAFVHLPTPHSEIPVSPA				NA	NA	NA	NA	NA
AK001_01273	1398	pcaB	COG0015	3-carboxy-cis,cis-muconate cycloisomerase	ATGATCGTCGCGCCGTTCGGGCGTTTCACCGAGGGTCGGGTCCCCGACCCCGGCATCGCCGCGCTGTTCACCCGGGAGAACCGGTGGCAGGCCCGGCTCGACGTCGAGGCCGCGCTGGCGCTCGCCGAGGCCGACGCCGGGGTCATCCCCAAGGAGTCCGCGCGCGCGATCGCGCTCACCGCCCGCATCGAGAAGCTGGACATCAAGCGCGTCCTCGCCGCGACGGCCGAGGCCAGCCACCCGCTGGTGCCGCTCATCGAGGAGTTCGCCCGCGCCGTCGGCTCCAAGCACGGCGGCTGGGTGCACTGGGGCGCCACCACCCAGAACATCACCCAGACGGCCGACGTGCTGGTGCTGCGCGACGCGCACCGGGTGCTGCTGCGCCAGCTCGGCGGCGTGCTGCGCGCGGCCGCGGCGCTGGCCGAGGGGGCCGCCGACCTGCCCATGGCGGGGCGCACGCACTCCCAGCACGCGGTGCCGGTCACCTTCGGCTTCAAGGTGGCGGTGTGGATCGACCAGCTCGTGTCGCACACCGAACGGCTCGAACGCCTGGACGACCGGCTGTTCTGCGTCCTGATGGGCGGAGCGGCCGGCACCTTCGCCTCCTTCGGGGACGCCGGGCGCGTCATCGAGGCGGGCGTCGCCCAGCGGCTGACGCTGCACCCGATGCGCGTGCCGTCCCGGTCGGTCAACGACGGCATCGTCGAGCTCGTCCTGGTCCTCGCCCAGCTCGCGGGCACGATCGGCAAGATCGGCAAGGACGTCTACGCGCTGATGCAGCCGGAGTTCGCCGAGGCGTTCGAGCCGGTCCCGGACGGGACCGTCGGGTCCTCGACCATGCCGCACAAGCGCAACCCGCAGCTCGCCCTGGACCTGCTGACGATGTCCTCCGAGCTGCGCGCCCTGGCGACACCGGCGCTGGAGTCGATGCTGCACGACCAGGAGGCCAACGGGGCCATGACGGCGCTGCTCGAGGACGTCTCGGCGTCCGCGGCGGTGCTCGCGGGCGACATGCTGGCCCGGCTGCAGGTCATCATGGCCGGTCTCGAGCTCGACCCGGCCCGGATGCGGGCCAACATCAAGCTGTCCGAGGGCATGATCGGATCCGAGGCGCTGATGCTCGCGCTGGGCGAGAAGATCGGTCGGCAGAAGGCGCACGACGTCGTCTTCGAGGTCGCCCAGGCGGCGGCCACGCAGGACCGCCCGTTCCTGGAGCTGCTGCAGGCGGACCCGCTCGTGGGTGGTGCCTTCGACCCCGACGAGCTGCGCGAGCTCATCGATCCCGCGAGCTACCTGGGGCTGTCCTCGCAGATCGCGGCGGACCTGGCCGAGTGCGCGATCCTCACGGCCGACCGGCTCGACCGGCTGCCCGAGCGCGCCCCGGTGATCACGCGCTGA	MIVAPFGRFTEGRVPDPGIAALFTRENRWQARLDVEAALALAEADAGVIPKESARAIALTARIEKLDIKRVLAATAEASHPLVPLIEEFARAVGSKHGGWVHWGATTQNITQTADVLVLRDAHRVLLRQLGGVLRAAAALAEGAADLPMAGRTHSQHAVPVTFGFKVAVWIDQLVSHTERLERLDDRLFCVLMGGAAGTFASFGDAGRVIEAGVAQRLTLHPMRVPSRSVNDGIVELVLVLAQLAGTIGKIGKDVYALMQPEFAEAFEPVPDGTVGSSTMPHKRNPQLALDLLTMSSELRALATPALESMLHDQEANGAMTALLEDVSASAAVLAGDMLARLQVIMAGLELDPARMRANIKLSEGMIGSEALMLALGEKIGRQKAHDVVFEVAQAAATQDRPFLELLQADPLVGGAFDPDELRELIDPASYLGLSSQIAADLAECAILTADRLDRLPERAPVITR	PGPT0005000_157	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005000-pcaB-K01857	NA	NA
AK001_01274	621			hypothetical protein	GTGCGTGCCGATCCCCTGACCGTCGACGGCGTGGTGAGCCACGTCGTGGACCGGGTGCTGGCCCGTGGCGCGGAGCGGCCGGTGCGTCTCCTGGTCGACGGCCATCCCTCCACGCGGCCCGAGGACCTCGCCGACGCGCTGGTCCCGCCGCTGCAGGTCGCCGGACGCCCCGTGGGGCGGGTCCGGGTCCGGGACTTCTGGCGCCCCGCCTCCCTGCGGCTCGAGCAGGGGCGGCGGGACCCGGACGCGCTGCTCGACGACTGGATCGACGTCGACGGCCTCAACCGGGAGGTGCTGACGTCCGTCGTGCGGCGCGGCCGCTGGCTGCCGTCCCTTCGCGACCCGGACGTCGACCGCCCGACCCGCGCGGCGTACGTCGAGGCGGCGCCGGGCACGGTGGTCGTGCTCGACGGGTCGCTCGCCCTCGGCCGGGGGCTCGACGTCGACCTCGCCGTCCACCTCGCGCTGCGCCCGGCCACCGAGACGCGTCGCACCCCGCTGGACGAGGCGTGGACGCTCGCCGCGTACACCCGGTACCGGCGCGAGGCGGCGCCCGAGCGGCGGGCCGACGTCGTCGTCCCGTTCGACCACCCGGACCGGCCCGCGCTCCTGGGCCGTTGA	MRADPLTVDGVVSHVVDRVLARGAERPVRLLVDGHPSTRPEDLADALVPPLQVAGRPVGRVRVRDFWRPASLRLEQGRRDPDALLDDWIDVDGLNREVLTSVVRRGRWLPSLRDPDVDRPTRAAYVEAAPGTVVVLDGSLALGRGLDVDLAVHLALRPATETRRTPLDEAWTLAAYTRYRREAAPERRADVVVPFDHPDRPALLGR				NA	NA	NA	NA	NA
AK001_01275	360	dksA_2		RNA polymerase-binding transcription factor DksA	ATGTCCGACGGCGGTGGTCCGGACCCGGCCGCGGCGTTGCGCGCACGCCTGGCCGCGGCCGAGGAGCGCATCGGCCGGCAGCGGGCCGTCGTGGACGGCATCGTCGCCTCGGTGCGGGGCGAGAACGTCGACGACGAGCACGACCCGGAGGGCGCCACGCTCGCCTGGGAGCGCCAGCAGGCCGCTGCGCTGCTCGCCGAGGCGGAGCACGAGCGCGACGCCCTGCGGGCCGCCCTCGGCCGGGTGGAGGCCGGGACGTACGGCGTGTGCGAGGTGTGCGGGCGGGCCATCCCGGCGGGCCGGCTCGAGGCGCGGCCGGCGGCGACGCGGTGCGTCGAGCACGCCGCCGGCCGGCGCTAG	MSDGGGPDPAAALRARLAAAEERIGRQRAVVDGIVASVRGENVDDEHDPEGATLAWERQQAAALLAEAEHERDALRAALGRVEAGTYGVCEVCGRAIPAGRLEARPAATRCVEHAAGRR	PGPT0014560_3680	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204	NA	NA
AK001_01276	1554	nfdA_2		N-substituted formamide deformylase	GTGACCGTCCTGCACCTCGCGAACGCCCGCCTGGCCGGGCATCCCGACCGCCCCGTGGACGTGCTGCTCACCGACGGGCGGGTCGCCGCCGTCGTGCCCACGGGCGCTCCGCTGCCCGGCGCGCTCGGCCTCCGGCGTGGTGCCGCGGAACGTGTCGACACCGGCGGTCGCACGGTGGTCCCCGGGCTGTGGGACGCCCACACCCACCTGACGCAGTGGGCGATGGTGCGCCGCCGGCTCGACGTCTCGACCGCCACGGGCCCCGCGCACGCCGCCGCCCTGGTCGGCGCCGCGCTCACCGACGTCCGCCGCCACCCGGCACCCGGCCGCCCCTTCGTCGGCTTCGGGTTCCGCTGGGCCACCTGGGACGACGAACCCACCTCCGACGTCCTGGACGCCGTCGCCGGCGAGATCCCCGTCATCCTGCTCTCCGGCGACCTGCACTCGGCCTGGGCCTCGACCGCCGGGCTGCGCTACCTCGGCATCGCGCACCACCCCACCGGGCTGCTGCGCGAGGAGGAGTGGATGCCGGCGTCCCCGGCGATCGTCACCGTGTCCGACGCCGACGCCGACGAGCTCGTCTCCGACGCGGCCCGCGCCGCCGCCGAGCGCGGGGTCGTGGGGGTGGTCGACTTCGAGGTCGACGACAACCTCACCGCCTGGCGGCGCCGGGCCGCGGCCGGCTGGGACCGGCTGCGGGTGCGTGCCGCCGTGTGGGAGCAGCACCTCGACGCCGTCCTCGAGGCCGGGCTGCGCCACGGCGAAGCCCTCGTCCCGGACGGCGGGCCGACGGCGGAGCTCGTCACCCAGGGCCCGCTGAAGGTGATCTCCGACGGGTCGCTCAACACCCTGACCGCCTTCTGCTTCGACGACTACGTCGGGTTCGCCGGCCCCGACGCGCACGGCATCCTCAACGTCGCGACCGACCACCTCGTCCCGCTCATGTCCCGCGCGCACGAGGCCGGTCTGCGCTGCGCCATCCACGCCATCGGCGACCATGCCAACGCCCTGGCCCTGGAAGCCTTCGCGGCCTCCGGCGCCCGCGGCTCCGTGGAGCACGCGCAGCTGCTGCACCCCGACGACGTCGCCCGCTTCGCCGCGCTCGGCGTCGTCGCCAGCGTGCAGCCCGAGCACGCCATGGACGACCGCGACGCCTCGGACGAGCTGTGGGCGGGCCGCACCGACCGCGCCTTCCGGCTGGCCGACCTGCACGCGGCCGGGGTGCCGCTCACCCTCGGCTCCGACGCGCCGGTCGCCCCGCTGGACCCGTGGTTCGCCGTCGCCTCGGCCGTCACCCGGTCCCGCGACGGCCGCGACCCGTGGCACCCCGAGCAGCGCATCGACCTGGCCACGGCGCTCGCGGCCTCGACCGACGGCCGTGGGGTGCGGGTGCGGCCGGGAGACCCCGCCGACCTGGCCGTGCTCGAGCTGGACCCGCTCACGCTGTCCGACGACGGCACCCGGACCGGTGCGGCGACGCTCGCCGAGGCGCTGCGCGACCTCCCGGTGGCCGGCACGCTCGTGGCCGGCCGATGGACCTACCGGGGCTTCTGA	MTVLHLANARLAGHPDRPVDVLLTDGRVAAVVPTGAPLPGALGLRRGAAERVDTGGRTVVPGLWDAHTHLTQWAMVRRRLDVSTATGPAHAAALVGAALTDVRRHPAPGRPFVGFGFRWATWDDEPTSDVLDAVAGEIPVILLSGDLHSAWASTAGLRYLGIAHHPTGLLREEEWMPASPAIVTVSDADADELVSDAARAAAERGVVGVVDFEVDDNLTAWRRRAAAGWDRLRVRAAVWEQHLDAVLEAGLRHGEALVPDGGPTAELVTQGPLKVISDGSLNTLTAFCFDDYVGFAGPDAHGILNVATDHLVPLMSRAHEAGLRCAIHAIGDHANALALEAFAASGARGSVEHAQLLHPDDVARFAALGVVASVQPEHAMDDRDASDELWAGRTDRAFRLADLHAAGVPLTLGSDAPVAPLDPWFAVASAVTRSRDGRDPWHPEQRIDLATALAASTDGRGVRVRPGDPADLAVLELDPLTLSDDGTRTGAATLAEALRDLPVAGTLVAGRWTYRGF				NA	NA	NA	NA	NA
AK001_01277	153			hypothetical protein	ATGAGCGCACCGACGCCGTACCTCGCTCTCGCCGGCACCGCCCGGGAGGCGCTGACCTTCTACGCACAGGTCTTCGGCGGCAGCGCCCAGCTGCACACCTTCGCCGAGTTCGGCCGGACCGACGGGCCCGCGGACGCCGTCGCGCACGGCTAG	MSAPTPYLALAGTAREALTFYAQVFGGSAQLHTFAEFGRTDGPADAVAHG	PGPT0030505_3307	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK001_01278	240			hypothetical protein	GTGGACCTCTTCGCCGCCGACGCGGCCGAGGGGGAGACGCCCCTGCACTGCGAGGGCATGATGCTGTCGCTCCTGGGAGCGGCTGCCCCGTCCACCCTGCGGGACTGGTTCGCCGGGCTGTCCGTGGGAGGTCGGGTCGTCGAGGACCTGCAGACCCGCCCGTGGGGAGCGTCGGACGGACAGGTCGTCGACCGGTTCGGCCTGCACTGGCTGATCGGGTTCGAGGGCGACGAGGACTGA	MDLFAADAAEGETPLHCEGMMLSLLGAAAPSTLRDWFAGLSVGGRVVEDLQTRPWGASDGQVVDRFGLHWLIGFEGDED	PGPT0030505_3307	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK001_01279	861	mltF		Membrane-bound lytic murein transglycosylase F	ATGCCATCCATCAACATCTTCGATCATTTCCGGGAGACCCCCATGCGACGCTCGTCCGCCCTCATCGCCACCGCCACGGCCACCCTGACCGCGCTGGCGCTCGCGGCGTGCGGCGCGGCCGACGACGGCGCGTCGGGCGGCAGCACCGCCGCCGAGGGCTCCGGCGACCTGAACCTCGTGGCGGACGGCACGCTCACCGTCGCCACCGAGGGCACCTACCGGCCGTTCACGTTCCACGACGCCTCCGGCGAGCTCGTCGGGTACGACGTCGAGGTGGCCGAGGCCGTCGCCGAGGAGCTCGGTCTGGAGATCGAGTTCGCCGAGACTCAGTGGGACGCGATCTTCGCCGGGCTGGACGCCGGCCGGTTCGACACCATCGCCAACCAGGTGTCGATGACCCCGGAGCGCCTCGAGGACTACGCGTTCTCCCAGCCGTACACCGTCTCCCGGGGTGCCGTCGTCGTGCCCGAGGGCGACACCTCGATCACGAGCTTCGACGACCTGGACGGCCTGACCGCCGCGCAGTCGCTGACCAGCAACTGGCGGGCGCTCGCCGAGGAGTCCGGCGCCGAGATCGAGGCCGTCGAGGGCTGGGCCCAGTCCGTCGAGCTGCTCGGTACCGGCCGCGTCGACGCCACGATCAACGACTCGCTGACCGTGCTCGACTACCAGGCCGAGAACCCGGACGCGCCGATCCAGATCGCCGCCGAGACCGAGGAGAGCTCCGAGATGGGGTTCGTCGTCACCCCGGAGCGGGCGGCGCTGGCCGAGGCGATCGACGGGGCGCTGGACACCCTGCGTGAGGACGGGACGCTCACGGAGCTGTCGGAGAAGTACTTCGGGGCCGACGTCACCAGCTGA	MPSINIFDHFRETPMRRSSALIATATATLTALALAACGAADDGASGGSTAAEGSGDLNLVADGTLTVATEGTYRPFTFHDASGELVGYDVEVAEAVAEELGLEIEFAETQWDAIFAGLDAGRFDTIANQVSMTPERLEDYAFSQPYTVSRGAVVVPEGDTSITSFDDLDGLTAAQSLTSNWRALAEESGAEIEAVEGWAQSVELLGTGRVDATINDSLTVLDYQAENPDAPIQIAAETEESSEMGFVVTPERAALAEAIDGALDTLREDGTLTELSEKYFGADVTS	PGPT0015635_721	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0015635-fliY|tcyA|yckK-K02424	NA	NA
AK001_01280	654	tcyB	COG0765	L-cystine transport system permease protein TcyB	ATGGACGTCCAGCTCTTCGCCGACTCGTTCTGGCCGCTCGTCCTGGGTGGCCTGACCGGGACGATCCCGCTCGCGCTCTCCTCGTTCGCGATCGGTCTCGTCCTCGCCCTCGGCGTCGCGATGCTGCGCCTCTCGGCCCACCCGGTGCTCGCCTGGGTGGGCCGGGCGTACGTCTCGGCGATCCGCGGCACCCCGCTGCTCGTGCAGCTCTTCGTCATCTTCTACGGGCTGCCGTCGCTCGGGCTGACCATCGACCCGTGGCCGAGCGCCGTCGTCGCGTTCTCCCTCAACGTCGGCGGGTACGCCGCCGAGGTGATCCGCGCGGCGATCCTGTCGGTGCCGACCGGCCAGTGGGAGGCCGGCTACGTCGTCGGGATGTCCCGCCGTCGGACGCTGCGGCGCATCATCCTGCCGCAGGCCGCCCGCGTGTCCGTGCCGCCGCTGTCCAACACGTTCATCTCCCTGGTCAAGGACACCTCGCTCGCGTCGCTGATCCTCGTGACCGAGCTGTTCCGCGAGGCCCAGGAGATCGCCGCGTTCACCAACGACTTCCTGCTGATCTACACCGAGGCGGCGATCGTGTACTGGATCTTCTGCACGGTGCTGTCGTTCGGGCAGTCCCGCCTCGAGAGGAAGCTGGAGCAGTATGTCTGA	MDVQLFADSFWPLVLGGLTGTIPLALSSFAIGLVLALGVAMLRLSAHPVLAWVGRAYVSAIRGTPLLVQLFVIFYGLPSLGLTIDPWPSAVVAFSLNVGGYAAEVIRAAILSVPTGQWEAGYVVGMSRRRTLRRIILPQAARVSVPPLSNTFISLVKDTSLASLILVTELFREAQEIAAFTNDFLLIYTEAAIVYWIFCTVLSFGQSRLERKLEQYV	PGPT0020715_1370	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020715-tcyB|yecS-K10009	NA	NA
AK001_01281	807	tcyC_1	COG1126	L-cystine import ATP-binding protein TcyC	ATGTCTGAGGCCCCGCTGCTGACCGCCACCGGGCTCCACCTGTCCTTCGGCGAGAACCACGTGCTGCGCGGCATCGACCTCACGGTGCACCGTGGCGAGGTCGTCGCCCTCATCGGCCCCTCCGGGTCCGGCAAGACCACGCTGCTGCGCTCGCTCAACGGCCTGGCCACGCCCGACGCCGGGCGCATCGTGGTCGACGGCGGACCCGGCGAGCAGGTCGACCTGACCTTCGACGGCGGTCCCCGGCGCGCCTGGGGACGAGCGGGACGCCGTGCCCGCGCCCAGCGGGAGTCCCTGCGCGACCGGTCGGCGATGGTGTTCCAGCACCACCACCTGTTCCCGCACCTGACGGTGCTGCAGAACGTCGTCGAGGGACCGGTGCAGACACGTGGCGCACCCCGCACCGAGGCCGAGGACCGGGCGCTGGCCCTGCTGGACCGGGTGGGGCTCGCGGACAAGCGCGACGCCTACCCCCGCGAGCTGTCCGGCGGGCAGCAGCAGCGCGTCGGCATCGTGCGGGCGCTCGCCCTGCAGCCCGACCTGCTGCTCTTCGACGAGCCGACCTCGTCGCTGGACCCGGAGCTCGTCGGCGAGGTGCTGACCGTGATGAAGGAGCTCGCCGAGGAGGGCTGGACGATGGTCGTGGTCACCCACGAGCTGGAGTTCGCCCGCGCCGTCGCCGACGAGGTGCTGTTCCTCGACGACGGCGTCGTGGTCGAGCGTGGTGCGCCCGCGCAGCTGTTCTCGGCACCGCGCCGGGGCCGGACCCGGGAGTTCCTGCACCGGATCCTGCACCCGCTCGACTGA	MSEAPLLTATGLHLSFGENHVLRGIDLTVHRGEVVALIGPSGSGKTTLLRSLNGLATPDAGRIVVDGGPGEQVDLTFDGGPRRAWGRAGRRARAQRESLRDRSAMVFQHHHLFPHLTVLQNVVEGPVQTRGAPRTEAEDRALALLDRVGLADKRDAYPRELSGGQQQRVGIVRALALQPDLLLFDEPTSSLDPELVGEVLTVMKELAEEGWTMVVVTHELEFARAVADEVLFLDDGVVVERGAPAQLFSAPRRGRTREFLHRILHPLD	PGPT0020720_36	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020720-tcyC|yecC-K10010	NA	NA
AK001_01282	1251		COG1373	putative protein	GTGACCAGCACCATCGAACGCCATGTGCGGGGACGCGCCCTCGAAGGGCTGGACGACACCCGCGTCGTCGTCGTCCAGGGTGCGCGCCAGGTGGGCAAGACCACCCTCGTCCGGGACCTCGTCCGGGCCAGAGAGGGCCGACTGGTCACACTGGACGATGAGCTCACGCGTCTCGCGGCACGATCCGACCCGACGACGTTCCTGCGGCAGAGCCCGGACCGCCTCCTCGCGATCGACGAGGTCCAGCGAGCCCCGGAACTCGTTCTCGCCCTCAAGGCCGCCGTCGACGAGGACCCTCGACCGGGAAGGTTCCTCCTGACCGGCTCTGCAGACCTCCTGCGGCTGCCCGCCGCCGAGGACAGCCTGGCCGGCCGGGCCGAGAGCATCGAGCTCCTCGGCTTCAGCCAGGGTGAGCTCACAGGCCATCGGGAGCGCTTCGTCGACCGACTCCTGTCCGGTGAGCTCTTCCTCGACCACGGCGGCGCACTGGAACGTCGCGACTACCTGGACCGTGCCGTCGCCGGCGCCTACCCCGAGGCCCTCGCCCGGACCACGGCTCGACGCCGGAACCAGTGGCTGGACAACTACCTGGCTCGCATCGTCGAACGGGACGCTCGGGACGTCTCCGCGATGCAGACGCTGGACCGGCTCCCGGACGTCCTGAGGATCCTGGCGGCACGCAACGCCGAAGAGCTCAACGTGAGCGGCCTGGCGAACGCCCTGAACATCCCGGCCACGACCCTGACCCGCCAGCTCGACCTGCTCGAGACCCTGTACCTCGTGCACCGCGTACCTGCCTGGTCGACCAATCTGTCCAAACGCGTCGTCGCACGCCCCAAGTCGATGCTCCTGGACTCCGGACTGGCAGCCCGCCTCATCAACGTCACGACGGACGGCCTCGCGCCGGGTGCCCACGGGAACGTGGCGGGGCATCTCCTCGAAGCGTTCGTGTCGGCCGAGATCCGTCGGCACCAGGGGTGGGCGGACGAGTCGTTCCGCATCAGCCACTATCGCGACCGGGCCGGCGGTGAGGTCGACCTCATCCTCGAGACGGGCGACGGCCGTGTCGCCGGGCTCGAGATCAAGGCCACCGCACGCGTCACAGGTGGTGACTCACGATGGCTCACGCGGCTGCGGGATCACCTGGGGAAGCGATTCGTCGCCGGCATCGTGCTCCACACCGGCCCGACGAGCGCCCCGCTGGGTGACCGCCTCGCCGCCGTTCCGCTCGACGTCCTCTGGCGAACCTAA	MTSTIERHVRGRALEGLDDTRVVVVQGARQVGKTTLVRDLVRAREGRLVTLDDELTRLAARSDPTTFLRQSPDRLLAIDEVQRAPELVLALKAAVDEDPRPGRFLLTGSADLLRLPAAEDSLAGRAESIELLGFSQGELTGHRERFVDRLLSGELFLDHGGALERRDYLDRAVAGAYPEALARTTARRRNQWLDNYLARIVERDARDVSAMQTLDRLPDVLRILAARNAEELNVSGLANALNIPATTLTRQLDLLETLYLVHRVPAWSTNLSKRVVARPKSMLLDSGLAARLINVTTDGLAPGAHGNVAGHLLEAFVSAEIRRHQGWADESFRISHYRDRAGGEVDLILETGDGRVAGLEIKATARVTGGDSRWLTRLRDHLGKRFVAGIVLHTGPTSAPLGDRLAAVPLDVLWRT				NA	NA	NA	NA	NA
AK001_01283	918	aao	COG0665	putative D-amino-acid oxidase	ATGGCGGACGTGACGGTGGTCGGGGCAGGGGTCATGGGGCTGACCTGCGCGGTCCGGCTCCTCGAGGCCGGGCACCGGGTCGAGGTGCTCGCCCGCGACCTGCCGCAGGACACCACCTCCGCGGTCTCGGCCGCCCTCTGGTACCCGTACCTCGCTTTCCCGCAGGACCGGGTCACCGCCTGGTCGGCCCGCTCGTTCACCGCCTTCGCGGACCTCGCCGCGACGGATCCCGGGTCCGGCGTCCGGATGCGTGCCGGCACCGAGGTCTTCACCGAGCGACCGGCCGAACCGTGGTGGCGCGACGCCGTGCCGGAGCTCGCGCGCACGGCCGACGTGCCGCCGTCGTACACCGACGGCTGGACCTTCACCGCCCCCGTGATCGACATGCCCGTCTACCTGGGCTGGCTCGCAGCACGCGTGGCGGCGCGGGGCGGCACGATCGCTCGGCGCGACCTGACCGCGCTGCCCGACGGCGACGTCGTGGTCCACACGTCCGGGCTGGGGGCGCGCGACCTGGTCGGCGACGACACCGTCCACCCCGTGCGCGGGCAGGTCGTGGTGCTCGAGCAGTGGGGGCTGGACCGCTGGTGGCTCGACGCCGCCGGGCCGACCTACGTGGTGCCGCGCCTGCGCGAGGTGGTCGTCGGCGGCACCGACGACGACGGCGCCTGGTACCGCGAGCCCTCGCCGACGACGGCGGCGGACATCCTCGAGCGCGCCGCCCGGCTCGTGCCCGCCGTGCGGGAGGCCCGGGTGCTGCGGCACGTCGTCGGGCTGCGTCCTGCGCGTCCGCAGGTGCGGGTCGAGCGCGAAGGCCGGGTGGTGCACTGCTACGGGCACGGCGGCGCGGGTCTCACCCTGAGCTGGGGCTGCGCCGACGAGGTACGAACGCTGGTGGACACGGCGGTCACCGCATGA	MADVTVVGAGVMGLTCAVRLLEAGHRVEVLARDLPQDTTSAVSAALWYPYLAFPQDRVTAWSARSFTAFADLAATDPGSGVRMRAGTEVFTERPAEPWWRDAVPELARTADVPPSYTDGWTFTAPVIDMPVYLGWLAARVAARGGTIARRDLTALPDGDVVVHTSGLGARDLVGDDTVHPVRGQVVVLEQWGLDRWWLDAAGPTYVVPRLREVVVGGTDDDGAWYREPSPTTAADILERAARLVPAVREARVLRHVVGLRPARPQVRVEREGRVVHCYGHGGAGLTLSWGCADEVRTLVDTAVTA	PGPT0020475_857	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020475-aao-K00273	NA	NA
AK001_01284	906			hypothetical protein	ATGACGCGCCTCGTCCTCCTGCCCGGCCGGGACACCGGTGGCCTGGATCCGGAACGGCTCGAAGCCGAGTGGCTCGCCGCGCTGAACACCGGCCTCGCCCGCGCGGGCTCGCCGCTGCGCCTCGCCGACGCCGACGCCACGTTCGTGTTCTACGGCGACGCGCTCGACGCCGTCGTCGGCGGCGACGAACCACCGCCGATCACCACCCACGGCCTGCCGGGGATGAGCGAGGACGCCGCACGGTTCGCGCTCGGCGTGGCGCGGGAGGTGCTCGCGACCACCGGGACCATGACGGCGGCACCCGCCGTCACCCCCGCCGCGCTGGCGGGTGGCTCGCTCTGGGCTGCGCTGTCCGCGGCGCTCGCCGCGATCGACCGCTGGGTTCCCGGACTCAGCAGCGCCGTGCTGCTCCTGTTCGTCCGGGACGTGTACGTCTACCTGACCGACGCCGAGGCACGCGCCACGATCGACGCCGGTGTGGCCGCGGCGATCGCCGGTGACGGGCCGGCCGTCGTCGTCGCCCACTCGTTGGGGTCGGTCATCGCCTACGACGTGCTGCGGTCCACCACCCCGGGGCTGGACGACGTGCCCCTGCTGGTCACGCTCGGCTCGCCGCTGGCGATCACGGCGGTCCGCGACGCGGTCGAGGCGGTCGCTCCCCTGACCTGGCCGCCACCCGTGCAGCGCTGGGTGGCGCTGCGGGATCCCCGCGACCTGCTCACGCTGCGCGACCTGGACGCCGACGGGTTCCCGCTGCCCGGCCCGCTGACCATCGAGAACGCGCACGTGGACAACCCTGTGCCGGGTCACCACGCCGCAGCGACGGTGCTGGAAGGAGTACCGGCGGGCTACGCGGCGGTCGTCGAGGTCGGCAGGCTGCTCGACGAGGCGCTGGGCCCCTGCTGA	MTRLVLLPGRDTGGLDPERLEAEWLAALNTGLARAGSPLRLADADATFVFYGDALDAVVGGDEPPPITTHGLPGMSEDAARFALGVAREVLATTGTMTAAPAVTPAALAGGSLWAALSAALAAIDRWVPGLSSAVLLLFVRDVYVYLTDAEARATIDAGVAAAIAGDGPAVVVAHSLGSVIAYDVLRSTTPGLDDVPLLVTLGSPLAITAVRDAVEAVAPLTWPPPVQRWVALRDPRDLLTLRDLDADGFPLPGPLTIENAHVDNPVPGHHAAATVLEGVPAGYAAVVEVGRLLDEALGPC				NA	NA	NA	NA	NA
AK001_01285	426			hypothetical protein	GTGAGCGACGACTGGGCCCGACAACGCACCGAGGCCGCCCACGAGCACGCGGCGCGGCTCGCCGCGCGGCAGGACGCCGAGCACCGGCAGGCCGAGGAGCTCCTCGCGCGGTTCGTCGAGGCGGCCCGCGCCGCGGACCTGCCGGCCGAGGCACTCCAGGTCAAGGGCTACGGCGGGCGCGGGACCGCCCGGACGCCGCTGCATGGCTGGTACCTGCGCGCCGACAGGACGGCCGCCGTCGCGACCGACGGCGCCTTCTACGTGCTCACCGCCCCGCTGACCCTGCTCGACCGGGTCCGCGGCCTGCGTCCGGAGCCGAAGCGTCCGCCGCTGGTGCTCGGCGCCGGCGGCAAGGACGGCGACTCCATCGACCTCGTCGACGCCCTCGAGCGGCTGCTGCCGGGCTGGCAGGACCGCACGACGTAG	MSDDWARQRTEAAHEHAARLAARQDAEHRQAEELLARFVEAARAADLPAEALQVKGYGGRGTARTPLHGWYLRADRTAAVATDGAFYVLTAPLTLLDRVRGLRPEPKRPPLVLGAGGKDGDSIDLVDALERLLPGWQDRTT				NA	NA	NA	NA	NA
AK001_01286	759	tipA		HTH-type transcriptional activator TipA	ATGAGCCGTTCCATCCAGGACGTCGCCCGCCTCGCGGGTGTCTCGAGCCGCACCCTGCGGCACTACGACCGCATCGGCCTCCTGCCGCCGTCGGGCACGGGGCACGGCGGGCTGCGCCACTACGACGACGGAGCGATCCGCCGGCTGCAGCGCATCCTGCTGCTGCGCGAGCTCGGGCTGCCGTTGGCCGAGATCGCCGACGTCCTGGACGCCCAGACCGACGAGACCGCCGCGCTGCGGCGGCATCTCGACGTGCTGCACGACGAGCGCCGCCGGATCGACCGGCAGATCGCCTCGGTGGAACGCACGCTCACCGCACTGACCGAGAGGAGGCCCATCGTGGCCGAGGAGATGCTGGACGGGTTCGACCACACGCAGTACCGCGACGAGGTGACCGAGCGCTGGGGCGCCGACACCTACGCCGAGTCCGACGCCTGGTGGCGCGGGCTGGGCGTGGACGGGCAGGCCGACTTCCGCGAGAAGACGGAGGCCCTGGGCCGGGCGTGGACCGACGCGGCCGGGCGCGGCGTCGACCCGACGTCCGACGAGGCGCAGGTGCTCGCCGCGCGGCACGCCGAGTGGCTGGGGTCGATCCCGGGGACGCCCGGGTCCGACGTCGGGCGCCCGCCGAAGGAGTACGTCGTCGGGCTGGCCGAGATGTACGTCGCCGACGAGCGGTTCGCCGCGAACTACGGCGGCGTGGACGGGGCGACGTTCGTGCGCGACGCGCTGCTGGCCTACGCCGAGCGCGAGCTCTGA	MSRSIQDVARLAGVSSRTLRHYDRIGLLPPSGTGHGGLRHYDDGAIRRLQRILLLRELGLPLAEIADVLDAQTDETAALRRHLDVLHDERRRIDRQIASVERTLTALTERRPIVAEEMLDGFDHTQYRDEVTERWGADTYAESDAWWRGLGVDGQADFREKTEALGRAWTDAAGRGVDPTSDEAQVLAARHAEWLGSIPGTPGSDVGRPPKEYVVGLAEMYVADERFAANYGGVDGATFVRDALLAYAEREL	PGPT0003175_15	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003175-mta|ywnD-K21743	NA	NA
AK001_01287	1128		COG0628	Putative transport protein	ATGGACAACTCCTCGCCGCCGCGCACGGCCGCGGCCCTGTGGAACGACCGGCTCGGGCGCCCGGCGGTCCGCGCCGCGCAGGTGCTCCTGCTGCTCGCGCTGGCCACGTGCGTGGTCTTCGCCCTGACCCGGCTGTCGCTGCTGGTGATCCCCGTGCTCATCGCGATGGTCGTGGCCGCGGCCCTGGCCCCGCTGGTCGGCATCCTGCGCCGGCTGGGGTGGCCGGCCCTCCTCGCGACGTGGACCACGCTCCTGACCGGGCTGCTCCTGCTGGCGCTGGTGGTGTGGCTGGTGACCCTGGCCTTCCAGGACGAGTGGCCGCGCCTCGTCGACGAGGCCGGTCGCGGGATCGAGGAGCTCGAGCGGTTCGTCACCGACGGCCCGCTGGGGATCAGCCCGGACCAGATCGAGTCCGTGCGGCAGTCGGCCATGGACGCGCTGTCCAGCGACCAGGTGCAGTCCGGGGCGATCCGTGGCGCGACCGCCGCCGTGGAGGCGGTCGCCGGGCTGCTGCTCGGCGTCGTCGTCCTGTTCTTCCTGCTCAAGGACGGGCGGCGGATGTTCACCTTCCTCATCACGCCGCTGCGCGCGGCGACCCGGCGGCGGGCGCTCCAGGTCGGGGAGCGCTCGGTCGAGGTGCTCGGCGGGTACCTGCGCGGCACGGCGATCGTCGCGGCCGTCGACGCCGTCTTCATCGGTGTCGGCCTGATGATCGTCGGCGTCCCGCTCGCGCTGCCGCTGGCCGCGGTGGTGTTCCTCGGCGCGTTCATCCCCCTGATCGGCGCCGTGCTCGCGGGCGTCCTGGCCGCACTGGTGGCCCTGGTGACCAACGGCCCGATCGCGGCCCTGATCGTCGTCGCGATCGTCATCGCGGTGAACCAGCTCGAGGGCGACCTGCTGGCCCCCGTGGTCATGGGCAAGGTGCTGTCGCTGCACCCGCTGGTCGTGCTGTCGGCCCTGACGGCGGGCACGGTCCTCGCCGGGATCGTCGGCGCGCTGCTGGCCGTCCCCCTCACCGCCGTCGCCTGGGCGGCGGCCAAGGAGTGGAACGCCACGGCGCCGCCGGGTCAGCAGATCGTGGCGGATCAGCCGGACGCCGGGACCGGCTCCGGTGCGGAGACCGACTGA	MDNSSPPRTAAALWNDRLGRPAVRAAQVLLLLALATCVVFALTRLSLLVIPVLIAMVVAAALAPLVGILRRLGWPALLATWTTLLTGLLLLALVVWLVTLAFQDEWPRLVDEAGRGIEELERFVTDGPLGISPDQIESVRQSAMDALSSDQVQSGAIRGATAAVEAVAGLLLGVVVLFFLLKDGRRMFTFLITPLRAATRRRALQVGERSVEVLGGYLRGTAIVAAVDAVFIGVGLMIVGVPLALPLAAVVFLGAFIPLIGAVLAGVLAALVALVTNGPIAALIVVAIVIAVNQLEGDLLAPVVMGKVLSLHPLVVLSALTAGTVLAGIVGALLAVPLTAVAWAAAKEWNATAPPGQQIVADQPDAGTGSGAETD				NA	NA	NA	NA	NA
AK001_01288	900	rhaR_1		HTH-type transcriptional activator RhaR	ATGGCACGCATGGACGAAACGACGGCGTCGGGGGCCGAGGCGCTGCGCGAGGGGTTCGCGGGGCAGCGGATGGTCGTCGTCCCCCGGCCCGCGGTGCGCGCGGCCCGCGCACGACCGGTCACCGACCGTCTGCTCGTGACCGACGCCGGCGTGTTCCCGCACGCCGCACGGCACGCCCGCACCCGGCCCGGCGGCGCCGCCGAGCACGTCCTGCTCGTGTGTACCGGCGGGGCCGGCTGGTGCCGCACCCCGGATGGACGTTCCGCCGTCGGGCGCGGCGACGTCGTGCTGCTGCCCGCGCGGGTGGCGCACGAGTACGGTGCCGCGGCCGACGACCCCTGGTCCCTGTGGTGGCTGCACGCCGTCGGACCGGACGCCGACGAGCTCGTCGCCGCCGCCCGCGACCTCGCCGGCGGCCCCGTCGTCCACCTGCGCGACCCCGCCCCCGTGGCCAGCCTCGTCGGGCAGGCCGTCGACGCCCTGGACACCGCCACCGCCGGCGGCCTGGTGCAGGCGGCCGGCTGCGCCTGGCACGCCCTGGCCCAGGTGGTCGCCGCCGGCCGGCGCCCGCCCGGACCCGCCCCCGACCCCGTCGAGCGCGCCCTGGCGCACCTGCGGGCCACGACGCCGCGACGCACGTCGGTGGCGGCGCTCGCGGCGCTCGTCGGCCTCAGCACGTCCCAGCTCGGGGCCGCGTTCCGGGCCCGCGTCGGCACCTCGCCGCTGCGCTACCAGACCGACCTGCGCATGGCCCGCGCCCGCGAGCTGTTGGACGCGACCGCGCTGCCCGTCTCCGCCGTCGGGCAGGCCGTGGGGTACGCGGACCCGCTGTACTTCTCGCGGCAGTTCTCCCGGGTGCACGGACAGTCCCCGACGGCGTACCGCGACCGGGTGCGGTGA	MARMDETTASGAEALREGFAGQRMVVVPRPAVRAARARPVTDRLLVTDAGVFPHAARHARTRPGGAAEHVLLVCTGGAGWCRTPDGRSAVGRGDVVLLPARVAHEYGAAADDPWSLWWLHAVGPDADELVAAARDLAGGPVVHLRDPAPVASLVGQAVDALDTATAGGLVQAAGCAWHALAQVVAAGRRPPGPAPDPVERALAHLRATTPRRTSVAALAALVGLSTSQLGAAFRARVGTSPLRYQTDLRMARARELLDATALPVSAVGQAVGYADPLYFSRQFSRVHGQSPTAYRDRVR	PGPT0017485_371	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017485-araC-K02099	NA	NA
AK001_01289	3348			hypothetical protein	GTGCCGTCCGAAGCCTCCACCCCGCCGTCCCGCCTCGTCCTGCCGCCCGCCCCGGAGCGGCTCGCGGACCGACCGGTCCGCGTCTGGCGCGAGGCCGTGCCGATCGACACCTACGCCGTCGCCGAGCCGGACCGGTTCCCCGCCTACCTGGACCAGCGCGTGTACCAGGGCTCCTCGGGGGCGGTGTACCCGATGCCGTTCGTGGACCGGGTCGCCGAGACCAAGGCCACGCGCCGCTGGCAGGCAGTGCACCTGGAGAACGCCTTCGTGCGGCTGATGATCCTGCCCGAGCTGGGCGGGCGGATCCACGTGGGCCTCGACCGCACCCGCGGCTACGACTTCTTCTACCGCAACGACGTGATCAAGCCCGCCCTGGTGGGGCTGACCGGCCCGTGGGTCTCCGGCGGGGTGGAGCTGAACTGGCCGCAGCACCATCGTCCGGCCACGGCCCTGCCGGTGGAGACGCACCTCGAGACCGACGACGACGGCGCGGTGACGGTCTGGTGCTCCGACCACGACCCGCTGCGCCGCATGCAGGGCATGCACGGCATCCGGCTCGCCCCGGACAGCGCGCTGATCGAGCTGCGCGGCCGGCTGGTGAACCGCACCGACGACGTGCAGACGTTCCTGTGGTGGGCGAACGTCGCCGCCGCGGCGGGCGACGACTACCAGGCGTTCTTCCCCACGGACGTCACCGTGGTGGCCGACCACGCCAAGCGCGCGGTCACCACGTTCCCCGCCGCCTCCGGCCGCTACTACGGGGTCGACTACCCGGCACGGCGCACGCCGGAGCGTCCGGACGGCGACCGGCTGGACCGGTACCGCAACATCCCGGTGCCGACGTCGTACATGTGCCTGGGGACGCAGGACGACTTCTTCGGCGGCTACGACCACGGTGCGCGCGCCGGGTTCGTGCACTGGGCCGACCACCGCGTGGCACCGGGCAAGAAGATGTGGACGTGGGGCGACGCCCCGTTCGGGTGGGCGTGGGACCGCCACCTGACGGACACCAACGGTCCGTACGTCGAGCTCATGGCCGGGGTGTTCACCGACAACCAGCCGGACTTCGCCTTCCTGTCGCCCGGGGAGACCAAGACCTTCTCCCAGTACTGGTACCCGATCCAGGACATCGGCCCGGCCCACCAGGCCACCCGGGAGGTCGCCGTCAGCCTGACCGTGCCCGCGGACGGTCCGGACGGTCCCGACCGGGTGCGGCTCGGGGTCGCGGTGACCGCGCCGCGACCCGGCGCCCGGATCGTGCTGCGCGCCGAGGACCGGGTGCTCCTGGACGAGACGGCCGACGTCGCGCCGGGCGCGCCGCTGGTGCGCGAGCTGCCGGCCGTGCCCGGGGTGCCGGCGACCGCCCACGAGCTCACCGTCACGCACGGCGAGGAGGTCATGGTGCGCTGGCGGCCGCGGGCCGTCGAGCCCCCGGCGGACGTCGAGGCCGCCGTCGACGGGCTCGTGGCGACGGAGCCCCCGCCGCCCGAGGAGATCGGCTCGACCGACGAGCTGTACCTGACAGGCCTGCACCTGGAGCAGTACCGGCACGCCACCCGTTCCCCGGAGCCGTACTGGCTCGAGGCGCTGCAGCGCGACCCGGGTGACGCCCGCTGCGCCACGGCGCTGGCGGCCCGCCGGCTGCACGCCGGTCGCCTCGACGACGCCGAGGACCTGCTGCGCCGTGCCGTGGCCCGGCTGACAAGCCGCAACCCCAATCCGCGCGACGGCGAGACCCACTACCGGCTCGGCGTCGTGCTGAGGCGGCAGGGACGCCCCGCCGAGGCCCGCGAGGCGTTCGGCACCGCCCTGTGGGACCAGGCCTGGCGCGACGCCGCGACCGTGGCCACGGCCCGGATCGACCTGGCCGCGGGGCGGGACACCGAGGCCGACGCCGCGCTCGGCGAGCTGCTGGCCCGCAGCCCGCAGGACACCGCGGCGCGCAACCTGGCCACGATCGCCGCGCGGCGGCTCGGCGACGACGCCCGGGCCCACGACCTGGTCCGAGGCAGCCTGGCGACGAACCCGCTGGACGCCTGGGCACGGGACCTCGCGGCGCGTCTGGGCCAGGACGTCGTGCGCACCGACGACCCGACGATCGCCCTCGATGTCGCCCGGGAGCACGCCTCGGCGGGCGAGACCGACGCCGCCCGCGACCTGCTCGACGAGGTCGCGGCCGCCGGGACGCTGCCCGGCCGGCGCAACGTCGCCCCGCTGGCCCTGCTGCACCGGGCGGACCTCGACCTCGCCGCCGGTGCCGCGGCGTCGGCCCGCGCGAGCCTCGACGCGGCCGCGCACCGCGAGAGGCGGTGGTGCTTCCCCGACGCCGGGGACCTGGACGTGCTCGCCCGGCTGCGGTCGGCGTGGCCGCGCGACCCCTTCCTGGCCGCGCTGGCCGGGCACGCCCTGTACGCCGTCGGACGCCGGCACGAGGCGGTCGCGGCGTGGGAGGTGGCGGCGGCCGAGGACGGCACCGACCCCGTCGTGCTGCGCAACCTCGGCGTCGCGGCGGTCAACGTGCTCGGCGACCTCGACCGCGCGGCCGAGCACTACGCGGCGGCCCGGACGCTCGCCCCGGACGACGCCCGGCTGCTGTACGAGGCGGACCAGCTCGCCGGCCGCCGCGGTCGCGGTGCCGACGAGCGGCTCGCGACGCTCCTCGCCCGGCGCGACCTGGTCGACGCGCGGGACGACCTGTCGGTCCAGCTCGCCGAGCTGCTCACCGCCGTCGGGCGCCCCGCCGAGGCCGTCGCGGTGCTGGCCGGCCGGTCCTTCCAGCCGTGGGAAGGCGGCGAGGGCCGCGTGCTCGCCGCCTGGGAGGAGGCCCACCGGACCCTGGGCCGCGCGGCGCTGGCCGACGGCGACGCGACCGCCGCCGTCGGTCACGCCGAGGCCGCGCTGGACCCACCGGAGTCACTCGGCGAGGCGCGCCACCCGCTGGCCAACACCGCCGACCTGCACCTGCTGCTCGGGGACGCCCGCGCGGCGGCCGGCCGGGACGCGGACGCCCGCGCGGCGTGGACCACGGCGGCCGACCAGCAGGGAGACTTCCAGGTGATGCAGGTCCAGGAGCACTCCGAGGCCACGGCCGCGTCGGTGCGGGCGCTGCGCCGGCTCGGGCGGCACGCGCAGGCCGCCGCGCTGCGCGACGGGCTGGCCCGGTACGTCGAGGCCGAGGCCGGACGCACCGCGACCGTCGACTACTTCGCCACGTCGCTGCCGACGATGCTGCTGTTCACCCAGGACGTCCAGGCCGACCACGACGCCCGCGTGACGGTGCTGCGCGACCGGCTCGCGGCCCTCGACGCGGAGCACGACGCGGAGCACGACGCCGAGGCCGTGCGATGA	MPSEASTPPSRLVLPPAPERLADRPVRVWREAVPIDTYAVAEPDRFPAYLDQRVYQGSSGAVYPMPFVDRVAETKATRRWQAVHLENAFVRLMILPELGGRIHVGLDRTRGYDFFYRNDVIKPALVGLTGPWVSGGVELNWPQHHRPATALPVETHLETDDDGAVTVWCSDHDPLRRMQGMHGIRLAPDSALIELRGRLVNRTDDVQTFLWWANVAAAAGDDYQAFFPTDVTVVADHAKRAVTTFPAASGRYYGVDYPARRTPERPDGDRLDRYRNIPVPTSYMCLGTQDDFFGGYDHGARAGFVHWADHRVAPGKKMWTWGDAPFGWAWDRHLTDTNGPYVELMAGVFTDNQPDFAFLSPGETKTFSQYWYPIQDIGPAHQATREVAVSLTVPADGPDGPDRVRLGVAVTAPRPGARIVLRAEDRVLLDETADVAPGAPLVRELPAVPGVPATAHELTVTHGEEVMVRWRPRAVEPPADVEAAVDGLVATEPPPPEEIGSTDELYLTGLHLEQYRHATRSPEPYWLEALQRDPGDARCATALAARRLHAGRLDDAEDLLRRAVARLTSRNPNPRDGETHYRLGVVLRRQGRPAEAREAFGTALWDQAWRDAATVATARIDLAAGRDTEADAALGELLARSPQDTAARNLATIAARRLGDDARAHDLVRGSLATNPLDAWARDLAARLGQDVVRTDDPTIALDVAREHASAGETDAARDLLDEVAAAGTLPGRRNVAPLALLHRADLDLAAGAAASARASLDAAAHRERRWCFPDAGDLDVLARLRSAWPRDPFLAALAGHALYAVGRRHEAVAAWEVAAAEDGTDPVVLRNLGVAAVNVLGDLDRAAEHYAAARTLAPDDARLLYEADQLAGRRGRGADERLATLLARRDLVDARDDLSVQLAELLTAVGRPAEAVAVLAGRSFQPWEGGEGRVLAAWEEAHRTLGRAALADGDATAAVGHAEAALDPPESLGEARHPLANTADLHLLLGDARAAAGRDADARAAWTTAADQQGDFQVMQVQEHSEATAASVRALRRLGRHAQAAALRDGLARYVEAEAGRTATVDYFATSLPTMLLFTQDVQADHDARVTVLRDRLAALDAEHDAEHDAEAVR				NA	NA	NA	NA	NA
AK001_01290	2316			hypothetical protein	ATGAGCGCGACGATCCGCGTCACCGACCGCTGGATCGAGCGGGACGGCCGGCCCTGGTTCCCGGTCACCGGGGAGATCCACTACGGGCGGGTCCCGCGCGAGCGGTGGTCCGAGGTGCTGGGGCACGCCCGCGCCGGCGGCCTGGACTCCGTGGCGAGCTACGTGTTCTGGCAGGCCCACGAACCGGCCCCCGGTCACTTCCGCTGGGACGGGAACCTCGACCTGCGGGCCTTCGTCGAGCTGGCCGGCGCGCACGGGCTGGAGGTCGTGGTGCGCCTCGGCCCGTGGTCGCACGGCGAGGCGCGGCACGGCGGCTTCCCGGACTGGCTGGTCGCCACCGACCTCGCCCTGCGCACCGACGACCCCGGCTACCTGGCGCTGGTGCGGCGGCTGTACGGCGAGATCGCCGCCCGGCTCGACGGGCTGCTGCACGCCGACGGCGGACCGGTGGTCGGCCTGCAGGTCGAGAACGAGCTCGCCGACCGCCCCGAGCACCTGGCCACGCTGCGCCGGATCGCCGAGGAGGAGGGTCTGCACGTCCCGCTGTGGACGGCGACCGGCTGGGGCGGCGCACAGGTCCCCGACTCCCTGCTGGACGTCTACAGCGGGTACGCGGACGGCTTCTGGGCCGAGGCGGAGGACGACTGGCCCGACTGGGCCGCGTCGCACTTCCGGTACTCGACCGTGCGCGACGACCTCGGGGTCGGGGCGGACGTGCGGGCGGCGCTGGCCGACGGCGGCACCGTGGACGGTGCCGGGGACGGTGCCGGGGACGGGGGGACCGTGCCGACCCGGCCCGCCACCCCGTTCGCCACCTGCGAGCTCGGCGGCGGCATGCACGTCGCCTACCACCGCCGGCCGCTGGTGACCCCGCGGGACGTGGCCGCCCTGGCGCTGGCCACGATCGGCAGCGGGTCGGTCTGGCAGGGCTACTACGTCTACGCGGGCGGCACGCAGCGCGTCGGGCCGACCGGCACCGAGCAGGAGTCCCAGGCCACCGGCTACCCCAACGACGTGCCGACCCTCAGCTACGACTTCGGCGCCCCGGTCGGCGAGCACGGCCAGGTCCGCGCGCACCACCACCTGCTGCGCCGCCAGCACCTGTGGCTCGCCGCCGACGGCGCGGCGCTGGCCACGATGCCGGCCGCCGTGGGCGGCGGGTCGCCGGACCCGGACGAGCTGCGCTGGGCGGTGCGGTCCGACGGGCGGCGCGGGTACGTCTTCGCCACGACCTACCAGCCCGCGCACTCCCCGCTGCCCGCGCAGCGCGACGTGCAGCTCGCGGTGGCGCTCGACGACGGCCCGCTCCAGGTGCCGTCCCGTCCGGTCGACCTGCCCGCCGGGGTGTCCGTCGTCTGGCCGGTGCGCTACCCCCTGACGGACACGCTCGTGCTGCGCAGCGCGACGGCCGCGCTGCTGACCCGTCTCGAGGAGGGTGGCCCCGACGGGACGCCGCTGGTCGTCCTGACCGCGACCGACGGCGTGCCGGTCGAGCTCGTGCTCGAGGGCGAGGTGCCGGTCGCCGGACCGGTCGCGGCCGGGACGCTCGACGGCGGCACCGTCGTCACGCTCACCACGGCGCCCGGTCCCGGCACCACGGTCGACCTGCCGGGCGTCCGCCTGCTCGTGCTCGACGAGGCGAGCGCCGACCAGCTCTACCGGTTCGAGCTCGGCGGCCGCCCGCGGCTGCTGCTGTCGAACGTCCCGCTGTCGGTGTCCCCCGACGCCCGTCACCTGGTGGCGCAGACCGAACATCCCGACGTCCGGATCGCGTGCTGGCACCCCGCGCAGGGCTGGGTGTCGCGCACCGGGGCCGCCCCGCGCGCCGGCCGCCACCGTCTCGCCGTCGACCCGGCGCCGCACGCCCCGGCACCGCCGGCCCCGCGGCGCGGAGGCCCCGCGCACCGGCTCGCGGCACCGACCGAGTTCTCCGGGGCCGCCCGGGTCCGCCTGGACGTCCCCGCCGGGCTCCTCGACGCCCCACCGGGTGACCGGGTCCTGCTGCGGGTCGCCTGGTCCGGCGACGTGGGCCGGGCCGTGGTCGGCGGCCCGGACGCCGCCGGCGGCACGGTGATCAGCGACCACTTCTGGCACGGCCGCGACTGGGACGTCGACCTCACGCCCTGGCGCGAGGAGGTCGCCCGCGACGGGCTCACCCTCGAGCTGCTGCCCTGGCGGCGCGGGACCGGCGTGCGGGTCGACCCCGCCGTGCGGGACGTCCCCGACGGCGTGCGGATCCGTTCGGTCGACGTGGTGCACGTCGCCCGGGTCGAGCTCGCCGTGCCCCCCTCCGACGACGAGCAGGAGACCCGATGA	MSATIRVTDRWIERDGRPWFPVTGEIHYGRVPRERWSEVLGHARAGGLDSVASYVFWQAHEPAPGHFRWDGNLDLRAFVELAGAHGLEVVVRLGPWSHGEARHGGFPDWLVATDLALRTDDPGYLALVRRLYGEIAARLDGLLHADGGPVVGLQVENELADRPEHLATLRRIAEEEGLHVPLWTATGWGGAQVPDSLLDVYSGYADGFWAEAEDDWPDWAASHFRYSTVRDDLGVGADVRAALADGGTVDGAGDGAGDGGTVPTRPATPFATCELGGGMHVAYHRRPLVTPRDVAALALATIGSGSVWQGYYVYAGGTQRVGPTGTEQESQATGYPNDVPTLSYDFGAPVGEHGQVRAHHHLLRRQHLWLAADGAALATMPAAVGGGSPDPDELRWAVRSDGRRGYVFATTYQPAHSPLPAQRDVQLAVALDDGPLQVPSRPVDLPAGVSVVWPVRYPLTDTLVLRSATAALLTRLEEGGPDGTPLVVLTATDGVPVELVLEGEVPVAGPVAAGTLDGGTVVTLTTAPGPGTTVDLPGVRLLVLDEASADQLYRFELGGRPRLLLSNVPLSVSPDARHLVAQTEHPDVRIACWHPAQGWVSRTGAAPRAGRHRLAVDPAPHAPAPPAPRRGGPAHRLAAPTEFSGAARVRLDVPAGLLDAPPGDRVLLRVAWSGDVGRAVVGGPDAAGGTVISDHFWHGRDWDVDLTPWREEVARDGLTLELLPWRRGTGVRVDPAVRDVPDGVRIRSVDVVHVARVELAVPPSDDEQETR	PGPT0017815_60	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308	NA	NA
AK001_01291	1329			hypothetical protein	ATGACATCCACGACGAGGACCACGATGGTCACCGGCAACGACGCCCCCCGCACCCGGTCCGCGGGCCGGGTGCCCGACCACCTGCCCGACCGCCTGGCGATCACCCTGTGGGACTTCTCCTGGTACGTGCGCACCGGCCCCGGGGAACCGTTCGAGGACCTCGACGCCGCCTTCACCGCCGCGGCCGAGCGCGGCTACAACGCCGTACGGATCTGCGCCATGCCGTTCCTGCTGTTCCGCAGCGGGCTGGACTCCTCGGCGCTGCGGCTCGGCCCGATCGGCGGCGGGTACGCCTCCCGGGTGCGGTGGTACGACGTCGCGCGGCCGACGACGATCGACGCCCGCGCCCACCTGCTCGCGTTCTTCCGGGCCGCCGACCGGCACGGGTTCGCCGTCGTCGTCTCCTCCTGGGAGTACCAGCAGAGCCCGGCGTTCGCCGCCGAGCGGGACTGGTACGACGCGCTGACGGCCGTGCCGCCGGCCGACCGGCCGGTGGTGCTCGCCGAGGCGCTCGCCGACCTGGTCGATCTGCTGGTCGCCGAGGGGCTGGACCACACCGTGGCGCTGGTCGAGCCGCACAACGAGGTACAGGCCGGTCACCTCACCGCGGGCCTGCCCGGCGTGGAGGACCCGGTGGTCGAGCTGCGCGACCGCCTCGAGGCCGCCATCGACGTGTTCGCCGCACGGCACCCGGCCGTGCTGTGCGGTCCGAACTACGCCGCGGTGCCGGTCACCGCCATGCGCGGCGTGCCCCGCAACGCCCAGGTGCTGGGCGTGCACCCGTACGTCTACGGCGTTCTGGACCAGCTCGTCGAGGAGTTCGCCCTGCGCGGCGACCCCGCCGACTTCCCGCAGGAGCGGGCCGACGCCGAGCTGCTGCGCCCCGGCGCACCCCGGCTGGCCGCGTGGGCCCCGCCCGCGGACGAGGAGTGGAAGCGGCACGCCTCGATCGTCGGGCACGCCGAGATCTACGTGCACGACTGGTGCGACCCCGAGGCGGTGGACCGCTGGCTGTACGACCGCTACGGCGCGCACCGCATCGCGATGGCGAACCGGCTGCGCGAGTGGATCGGCGTCGCGGCGGACACCGCGGCGCGGATGGGTGTCCCGCTCGTCCTCGGCGAGGGATGGGTCGGCTACACCCCGCGCGACGGCCGGTTCGAGGAGGGGCCGGTCGGGGCGCAGATCTGCCGCGACGCGGTCCGGCTGGCCGACGCCGTCGATGCGTGGGGCTCGGTCGTGTGCTCCAACGCCGCGCCGCACCACGCGATGTGGCAGGACGTCGCGCTGCAGCGCGAGTGCACGGACGTCATCAGCGGCCGGACGTGA	MTSTTRTTMVTGNDAPRTRSAGRVPDHLPDRLAITLWDFSWYVRTGPGEPFEDLDAAFTAAAERGYNAVRICAMPFLLFRSGLDSSALRLGPIGGGYASRVRWYDVARPTTIDARAHLLAFFRAADRHGFAVVVSSWEYQQSPAFAAERDWYDALTAVPPADRPVVLAEALADLVDLLVAEGLDHTVALVEPHNEVQAGHLTAGLPGVEDPVVELRDRLEAAIDVFAARHPAVLCGPNYAAVPVTAMRGVPRNAQVLGVHPYVYGVLDQLVEEFALRGDPADFPQERADAELLRPGAPRLAAWAPPADEEWKRHASIVGHAEIYVHDWCDPEAVDRWLYDRYGAHRIAMANRLREWIGVAADTAARMGVPLVLGEGWVGYTPRDGRFEEGPVGAQICRDAVRLADAVDAWGSVVCSNAAPHHAMWQDVALQRECTDVISGRT				NA	NA	NA	NA	NA
AK001_01292	597			hypothetical protein	GTGGACACCCCGGGCATCCTCGACGTCGTGCTGCGGCTCGCCGTCCTCGTCCTGGTGCTCGGCGGGACCGTGGCTCACGCCCTGCGTTCGCGCCGTCGGCGGCTGCGTGCCGGCGCCCGGTACGCCACGACGCTCGCCCGGCCCCTCGCCCCGGCCCCGACCGTGGTCCGTGCGCTGCTGTCCTTCGTGGCGCTGGGACTGCTCGGGTACGGGCTGCAGTCCTTCACCGGGTCCGGGGACGGGCTGTGGATCCCCGTGCTCGCGGGAGTCTCCGCGCTCGGGCTGCTGTGGGTCACGGTCGTGCCGCTGCTGCGGGACGTCGCCGACGCCGTGCGCCCCGCCGTCGTGGTCGGGACCGTGACCGACCGGCGCCGGCACGTGTACCGCGCGTTCGGGCACGACGGTCCGTACGAGCTGGCGTCGTTCTTCGTCACGGTCGTGGACGACGTCGGGACGATCCGCGAGTTCCAGCTCCACCAGCACGCCTACCGGCGCTTCGCGCCGGGCGACCAAGTGCGCCTGGCCGTGGCGGCGGCCAGCGGCTACGTGCACTCGATCGCGCCCGCGCCGGTGGGGACGGTCACGTCCGGCCGCTGA	MDTPGILDVVLRLAVLVLVLGGTVAHALRSRRRRLRAGARYATTLARPLAPAPTVVRALLSFVALGLLGYGLQSFTGSGDGLWIPVLAGVSALGLLWVTVVPLLRDVADAVRPAVVVGTVTDRRRHVYRAFGHDGPYELASFFVTVVDDVGTIREFQLHQHAYRRFAPGDQVRLAVAAASGYVHSIAPAPVGTVTSGR				NA	NA	NA	NA	NA
AK001_01293	465			hypothetical protein	ATGGCCGCGATCCGGATCGAGAAGCGCAAGCCCTGCGGGACGGTGCGCCGCGTCTGGCGGGCCGAGGTCCTGGGCTTCGACGAGTGGGGCGACTGGTTCTCCGTGCCCGACGGCGCCGGTGTGCTCCTGCTGCCCGTGGCGGACCCGTGGGCCGCGTGGTTCCGCCACGACGGCTCGGTGCGGGTCGACATCGCCACCGAGGTGATCGCCGCCGCGCCGGTCAGCTCGTTCGTCGACCTCGACCTCGACGTCGTGCGGGACGCCGGCGGGGCCGTGCACGCGCTGGACCGCGACGACTTCGTCCGCCGCTCGCCGTCGTACCCCCGGGCCTGGGTCGACCTGGCCTGGGAGGCGTGGGAGGACGTCCAGCAGGACGTGACCCGGTTCACCGAGCCGTTCGGGACCGCGGCGGACCGCTGGCTCGAGCACGCGCCGCGCGCCGTGGCGCGGCGCCTGTCCGCCTGA	MAAIRIEKRKPCGTVRRVWRAEVLGFDEWGDWFSVPDGAGVLLLPVADPWAAWFRHDGSVRVDIATEVIAAAPVSSFVDLDLDVVRDAGGAVHALDRDDFVRRSPSYPRAWVDLAWEAWEDVQQDVTRFTEPFGTAADRWLEHAPRAVARRLSA				NA	NA	NA	NA	NA
AK001_01294	756	linC	COG1028	2,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenase	ATGACGTTCGACGGCAAGGTCGCCCTGGTGACCGGAGGCGGCTCGGGACTCGGGGCGGCGATCAGCAAGCAGCTCGCCGCCCGCGGTGCGCGGATCGTGAACACCGACATCAACCTCGAGGCGGCGCAGCGTGTCGTCGACGAGATCACGGCCGACGGGGGCGAGGCGACGGCCGTCCAGCAGGACACGGCGAACGCCGACGACGCGGCCAAGGTCGTCCAGGCCGCCCAGGAGGCCTACGGCGGGCTGCACTACGCCGTGAACAACGCGGGGATCGGCGGCAACCAGGCGCCCGCGGGCGAGCTCGACGTCGAGGACTGGAACCGGGTCATCGACATCAACCTCAACGGCGTGCTCTACGGCATGCGCGCGCAGATCCCGGCGATGCTCGAGCAGGACCCGACCGCCTGCGCCATCGTCAACATGGCGTCCATCCACGGCACCGTCGCCGCCATCGGCAACGGGGCGTACACGGCGGCCAAGCACGGCGTGGTCGGCATCACGAAGAACGCCGCCGCCGAGTACGGGCCGGCGGGGCTGCGGATCAACTGCGTCGGGCCGGGCTACATCCGCACGCCCCTGCTGGAGGGCCTGCTGACCCCGGAGATCGAGGAGGTGCTCGTCTCCAAGCACGTGCTCGGCCGGCTGGGCCGTCCCGACGAGGTCGCCTCCGTGGTCCGGTTCCTGCTGTCCGACGAGGCGTCGTTCGTCACCGGTGCCTACTGGCTCATCGACGGCGGGTACACGACCGTCTGA	MTFDGKVALVTGGGSGLGAAISKQLAARGARIVNTDINLEAAQRVVDEITADGGEATAVQQDTANADDAAKVVQAAQEAYGGLHYAVNNAGIGGNQAPAGELDVEDWNRVIDINLNGVLYGMRAQIPAMLEQDPTACAIVNMASIHGTVAAIGNGAYTAAKHGVVGITKNAAAEYGPAGLRINCVGPGYIRTPLLEGLLTPEIEEVLVSKHVLGRLGRPDEVASVVRFLLSDEASFVTGAYWLIDGGYTTV				NA	NA	NA	NA	NA
AK001_01295	1377			putative protein	ATGGGCCAGGCCCTCGAGACGGACTATCTCGTCGTCGGCGCGGGCGCCACGGGGATGGCGTTCGCGGACGCGTTGCTGGACCACGAGGACGTGCACGTCACGCTCGTCGACCGCCGGGACGCACCGGGCGGCCACTGGCGCGACGCCTACCCGTTCGTGCGGCTCCACCAGGCCTCCTCCTTCTACGGGGTGGCGTCCACGTCGCTCGACGGCGGCGTGCAGACCTCCGGCCCCGAGGCCGGGCTGCACGTCCGCGCCACGGGCGCCGAGGTGTGCGCCTACTACGACCGGGTGCTGACGGAGCGGTTCGTGGCGAGCGGACGGGGGACGTTCCTCGGCGGGTACGACGCGGCCGACGACGGCACCCTCGTCGAGCGCGCCACGGGCGCCGTGCGGCCGGTGCGGGTCCGCCGTCGGGTCGTCGACGCGCGCTACCTCGCACCGACGATCCCGGCGCTGACGCCGCCGCCGTTCGTCGTGGACGAGCAGGTGCGGTGCGTGCCGGTGGGCGAGCTCCCGACGGTGGCCGACGACGCCCGGTCGTTCGTGGTCGTCGGGTCTGGCAAGACGGCCACGGACGCCGTCGTGTGGCTGCTCGAGCGCGGCACCCACCCGGACCAGATCACCTGGGTACGGCCGCGCGACCCGTGGATGCTGGACCGTGCCGTCGTCCAGCCCGACGCCGCCGTGTTCCGGACCATGGTCGCCGAGCTCCTGGAGGCGGCGGCCGAGGCACCGACCGTGGACGCGTTCTTCACGCGCCTCGAGGACGTCGGCGTGATGCTGCGCCTGGACCCCGGGGTCCGGCCGACCATGGCCCGGGTCCCCACGCTCGCCCGCTGGGAGCTGGAGCTGCTGCGCTCGGTGGAACAGGTCGTGCGCCGTGGTCACCTGCGCCGGGCGTCGCCGGGCGTGCTCCACCTGGACGCGGGGGACGCGGCGGTGCCGCGGGACGCCGTCGTCGTGCACTGCGCCGCCGAGGGGCTCCGGGTCCGGCCCGTCGTGCCGATCTGGTCGCCCGGGCGGATCGTCGTGCAGCCGGTGCGCGCCGGGTTCCCGTGCTTCGGCGCCGCGCTGATCGGGCACGTGGAGGCCACCCGGGGCGACCGGTCGGACGCCGGGCTCAACGCGCTGTGCCCGTCGACGGGATACTTCTCCACACCGCGCGAGTGGGTCGCCGGACAGGCCGCCGGGGCGCTGTCGACCGCGGCGTTCATGGCCGACCACGACCTCGCCCGCTGGTCGCACGGGACGACCCTCAACCCGAGCCGGATCTCGCCCGAGGACCGCGAGCGCCCCGAGGTGCAGGCGGTCCAGGACCGGCTGCGCGCGGCGACCGAGCCCGGAGTGCGGGGCCTGCTGCGGCTGGCCGCCTAG	MGQALETDYLVVGAGATGMAFADALLDHEDVHVTLVDRRDAPGGHWRDAYPFVRLHQASSFYGVASTSLDGGVQTSGPEAGLHVRATGAEVCAYYDRVLTERFVASGRGTFLGGYDAADDGTLVERATGAVRPVRVRRRVVDARYLAPTIPALTPPPFVVDEQVRCVPVGELPTVADDARSFVVVGSGKTATDAVVWLLERGTHPDQITWVRPRDPWMLDRAVVQPDAAVFRTMVAELLEAAAEAPTVDAFFTRLEDVGVMLRLDPGVRPTMARVPTLARWELELLRSVEQVVRRGHLRRASPGVLHLDAGDAAVPRDAVVVHCAAEGLRVRPVVPIWSPGRIVVQPVRAGFPCFGAALIGHVEATRGDRSDAGLNALCPSTGYFSTPREWVAGQAAGALSTAAFMADHDLARWSHGTTLNPSRISPEDRERPEVQAVQDRLRAATEPGVRGLLRLAA				NA	NA	NA	NA	NA
AK001_01296	1629			hypothetical protein	ATGACCGCTGACCACGACGGGCTCGACGCCGCGCGACGCGCCTGTTCGGACCGTCGGTGGGCCGCCGCCCGTGCCCTCTATCTCGAGCTGCACGCCGCACGACCTCTCGAGGCCGACGACCTCGCGGCGCTCGCCGACTGCTGCTGGTGGCTCGGGGACATCGACGAGTACGTCGCCACGGCCGCGCGGGTCGTCGAGCTGCGGCTCGCCGGAGGCGACCTCCCGGGTGCCGGGATGGCGGCGCTCGAGATCGGGGTCCCCGAGGTCGTGCGGGGGCGCCTCACCGCCGGGGCGGGCTGGCTGGCCCGTGCGCGCCGGGTCCTCCACGAGGTCCCCGACGCCGTCGAGCACGGGTACCTGCTGGTCCTGGACGCCTACGCGGCGCTGGAGGCCGACGACGCCCCGACGGCCGACGACCTCGCCGCCCGGGTCCTCGCCCTCGCGGACCGGCACGCCGAACCGACGTTGCAGGCGCACGCCCTGTTCCTGCGTGGCCGGTGCGCTCTGCACCGCGGCCGGGTCCCGCAGGCGCGATCGTTCCTCGACGAGGCGATGGTGCCCGTGCTGGGCGGCCGGACGGCGCCGCAGTGGGCGGGCGACCTGTACTGCCGGATGATGCAGGTCTGCCACGACCTCGGCGACTTTCCACGCGCCGAGCACTGGACGCGGGTCACCGAGGAGTGGTGCCGCGGTCTGGCTCCGGCCACGCTGTTCTCCGGCATCTGCCGCGTGCACCGCGTGCAGCTGATGCAGGTGCACGGCCAGTGGCGGCGCGCGCTCGACGAGGCGGGCCGGGCTGCCGCGGACCTCGAAGGCCTCGACGTCACCGCCGCCGCCGAGGCGCACTACCGCGCCGGTGAGGTGCACCGGCTGCGCGGCGACCCGGAGTCGGCGCGGCAGGCGTACGACCGGGCGCGCGCACGGGGGCGGGACCCGTTGCCCGGGCTGGCGCTGCTCGAGCTCGAGCAAGGACACCGTGCCGGTGCGGCCGCGATGCTCGACGCCGCCCTGCGTTCGACGGCGGACCCCCTCGCGCGCGCTCCCCTGCTGGCCGCGCGCGTGGAGGTCGGCCTGGCCGAGCCCGTGGCCGAACCGTCGGACGTACTCGTGGACGAGCTGGGCGAGATCGCCGACCGGCACGACAGCCCGTGCTGGCGGGCGGAGGCCTGCCGGTGGCGCGGCGCGCTGCACGCCGCGCACGGTCGCGACGCGCTGGCGCTCCCGGAGCTGCGCGAGGCGCTGGACCGGTGGCGGCAGATCGACGCGCCGCACGAGGTGGCGCGTGTCCGCGTCGAGATCGCCGACGTCCTGGACGCTCTGGGTGACCACGACTCCGCACGTGCCGAACGCGACCTCGCAGCCTCGGGCCTCGAGGCGCTCGGGGCGGACCACGCGGCGCGACGACTGGCAGCACGCGGGCGTCGCCGGGCTGCGTCGGACGAGCTGTCCCCGCGGGAGGTCGAGGTCCTCGCGGCCGTCGCCGACGGCGCGACGAACCGGGACGCGGGGCGACGGCTGCACATCAGCGAGCGCACGGTCGCGCGACACCTCGCCAACATCTACCTCAAGCTCGGCACGGCCTCCCGGACGGGGGCGGTGGCGTGGGCGCGGGACCACGCCCTGCTCTGA	MTADHDGLDAARRACSDRRWAAARALYLELHAARPLEADDLAALADCCWWLGDIDEYVATAARVVELRLAGGDLPGAGMAALEIGVPEVVRGRLTAGAGWLARARRVLHEVPDAVEHGYLLVLDAYAALEADDAPTADDLAARVLALADRHAEPTLQAHALFLRGRCALHRGRVPQARSFLDEAMVPVLGGRTAPQWAGDLYCRMMQVCHDLGDFPRAEHWTRVTEEWCRGLAPATLFSGICRVHRVQLMQVHGQWRRALDEAGRAAADLEGLDVTAAAEAHYRAGEVHRLRGDPESARQAYDRARARGRDPLPGLALLELEQGHRAGAAAMLDAALRSTADPLARAPLLAARVEVGLAEPVAEPSDVLVDELGEIADRHDSPCWRAEACRWRGALHAAHGRDALALPELREALDRWRQIDAPHEVARVRVEIADVLDALGDHDSARAERDLAASGLEALGADHAARRLAARGRRRAASDELSPREVEVLAAVADGATNRDAGRRLHISERTVARHLANIYLKLGTASRTGAVAWARDHALL				NA	NA	NA	NA	NA
AK001_01297	1125	tam		Trans-aconitate 2-methyltransferase	ATGACCACCACCACGACACCGACCACCACGGGCGCCCCTGGGCGGGCCGAGCAGTCCGAGAGGCCAGCACCCGACGCCGACCGGGTCGCGGAGTTCGCCGGCGAGATGCTCACCACGCTCGCGCGCGGGGCCACCGCGCTCATGACGAGCGTCGGGCACCGCACCGGACTCTTCGACACCCTGGCCGGGCTGCCGCCGTCGACCAGCGACGAGATCGCGACGGCCGGCGGCCTCCAGGAGCGCTACGTGCGCGAGTGGCTCGACGCGATGACCGTCGCGGGCATCGTGCTCCATGACCGCGCGGGCGACGCCTATCACCTGCCCGTCGAGCACGCGGCGCTGCTGACCCGGGCCGCGGGGGCCGACAACCTGGCCTCCCAGCTGCAGTTCATCCCGATGCTCGCCCGGGTCGAGGACGGCATCGTGCGCTGCTTCGCCGACGGCGGCGGACTGGGGTACGACGCGTTCGAACGTTTCGACCGGCTCATGGCCGAGCAGAGCGCCCAGACCAACGACGCCGCGCTGCTGGACCGGATCGTCCCCCTCGTGGACGGGCTGGACGAGCGGCTGCGTGCCGGGATCCGGGTCGCCGACATCGGCTGCGGACAGGGACACGCCCTGAACCTGCTGGCGCAGGCCTACCCCGACAGCGACTTCCACGGCTTCGACTTCCAGCCCGACGCGATCGACGTCGCACGCCGCGAGGCCGACGAGCTCGCGCTGGGCAACGTGCGCTTCGACGTCCGGGACGTGGCCGACCTGTCGGGGACCGGCGTGTTCGGCGCGATCACCGCGTTCGACGCCGTCCACGACCAGGCGCACCCGGCTCGGGTGCTCGAGCAGGTCGCCGAGCACCTCGATCCGGACGGCGTGTTCCTCATGGTGGACATGGACGCGTCCAGCGTCGTGGACGACAACGTCGACCTGCCGTGGGCCCCGTTCCTGTACACCGTCTCGACGATGCACTGCATGACGGTCTCCCTCGCCGAGGGTGGTGACGGTCTCGGCACGGCGTGGGGACGGCAGACCGCACTGCGGATGCTGGCGGCCGCGGGCTTCTCCGACGTGCGGATCGCGTCCTTGCACGACGACTTCATCAACGCCTACTACGTGGCCCGGCCGTGA	MTTTTTPTTTGAPGRAEQSERPAPDADRVAEFAGEMLTTLARGATALMTSVGHRTGLFDTLAGLPPSTSDEIATAGGLQERYVREWLDAMTVAGIVLHDRAGDAYHLPVEHAALLTRAAGADNLASQLQFIPMLARVEDGIVRCFADGGGLGYDAFERFDRLMAEQSAQTNDAALLDRIVPLVDGLDERLRAGIRVADIGCGQGHALNLLAQAYPDSDFHGFDFQPDAIDVARREADELALGNVRFDVRDVADLSGTGVFGAITAFDAVHDQAHPARVLEQVAEHLDPDGVFLMVDMDASSVVDDNVDLPWAPFLYTVSTMHCMTVSLAEGGDGLGTAWGRQTALRMLAAAGFSDVRIASLHDDFINAYYVARP				NA	NA	NA	NA	NA
AK001_01298	918	rbsK		Ribokinase	ATGACCTCGATCGTGGTCGTCGGCTCCGTCAACGCCGATCTCGTCGCCCGTGTCCCGAACCTGCCCGTCCCCGGGGAGACGGTGCTCGCCGACTCGATGACGGTGATCCCGGGGGGCAAGGGCGCCAACCAGGCGGTCGTGGCCGCTCGGCTCGGCGGCGAGGTCGCGTTGATCGGGGCCATCGGCTCGGACGCCTTCGCCGACAGCGCGCTCGTCGGCCTGCGTGACGCGGGGGTCCGGCTGGACGGCGTCGAGACCGTCGACGGCCCCACGGGCGTGGCCCAGATCTGGGTCGACGACCAGGGCGAGAACTCGATCGTCGTGGTCCCCGGGGCCAACCGCGCGGTCGACGCCGACGTCGTGGCCCGTCATGTGGACCTGGTCGCCGGGGCCGACCTCGTCGTCCTGCAGGGCGAGATCCCGCTGCGCGGCACCGAGGCCGCCGCGCGCGCCTGCGGGGGACGGATCCTGCTCAACCTCGCCCCGGTCGTGCCGGTCGCCGCCGACGTGCTCGCCCTGGCCGACCCTCTCGTGGTGAACCACGGGGAGGCCGAGCGGCTGCTGGAGGAGTCGGAGCGCCCGGTGCCCGAGTCCCCGTTCGCGGTCATCACCGAGCTGCTCGCGCTCGGACCGCGGTCCGTCGTGCTCACCCTCGGCCCCGCCGGTGCCGTCGTGCTCGAGCCCGCCGCGGGGGACGAGGGGCCGGTCGTGGTCCCCACCCCGCACGTCGAGGCGGTCGACACCACCGGTGCCGGGGACGCCTTCGTCGGGGCGCTCGCGTATCGCATCAGCCAGGGCGACACCCTCGTCGACGCCGCCCGCACCGCGGTGCGCGTCGGGGCGTTCTCCGTCGCGACACCCGGCGCCCAGCCGTCGTTCCCCACGGTCGACGACGTGCTGCCCTCCCTGCGGGGCTGA	MTSIVVVGSVNADLVARVPNLPVPGETVLADSMTVIPGGKGANQAVVAARLGGEVALIGAIGSDAFADSALVGLRDAGVRLDGVETVDGPTGVAQIWVDDQGENSIVVVPGANRAVDADVVARHVDLVAGADLVVLQGEIPLRGTEAAARACGGRILLNLAPVVPVAADVLALADPLVVNHGEAERLLEESERPVPESPFAVITELLALGPRSVVLTLGPAGAVVLEPAAGDEGPVVVPTPHVEAVDTTGAGDAFVGALAYRISQGDTLVDAARTAVRVGAFSVATPGAQPSFPTVDDVLPSLRG	PGPT0017405_3459	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852	NA	NA
AK001_01299	882			hypothetical protein	ATGACGACCACCACCCGCACTCTCGACGTGCCCGGGGCCGTGCTGACCTTCGACGTCCACGCACCGCGCCGTGAGGCCGGCTGCCCGCCGCTCCTCGTGATCGGCAACCCGATGGCGGCCGACGGGTTCGCCGAGCTCGTCGCCGAGCTCGGCGACCGCACGGTGATCACGTACGACCCGCGCGGCACGGCCCGTTCCCCGCGCGAGCGGCCGACCGACGAGGTCACGGTCGACGACCACGCCGCCGACCTGCACGCCGTCGCCCGAGCCGTCGACCGGGGCCCGCTGGACGTCCTCGGCTCCTCCGGCGGCGGCGTGACGGCGGTGTCCTGGGCGGCCGCGCACCCCGGCGAGGTCCGGCGGCTCGTCGCCCACGAGCCGCCGCTGACGGCGCTGCTGTCCGACCGGGACGTGGCGGTGCGCGCCCAGCAGGACGTCGTCGACACCTACCACCGCTCCGGGACCGGTCCCGCGACCGCCAAGTTCCTGCGCCTGGTGTCCGCCACCGAGCCCCTGACGCCGGACTACCTCGACCAGCCCGACCCGGATCCCGCCGCGTTCGGGCTGCCGACCGAGGACGACGGCCGGCGCGACGACCTGATGCTCGGCACGTCGCTGGCCACGATGCCCCGGTGGGAGCCACCGCTGGACGACCTGCGCGCGGGCGTCCGCAGCACCGACCTGCGGGTGCTGCCCGCTGTCGGGGCCGCCTCGCCGCCGGGCGGGCTCGCGTACCGCGGCGCGGTGGCCCTGGCCGAGGCGCTCGCGGTGCGTCCCGTCGTCTTCCCCGGGGACCACGGCGGGTTCGCCCGGCACGCGGGGGCCCCGGACAACGATCCGGCTGCGTTCGCGGCCCGGCTGCGTGACCTGTTGGCCTGCTGA	MTTTTRTLDVPGAVLTFDVHAPRREAGCPPLLVIGNPMAADGFAELVAELGDRTVITYDPRGTARSPRERPTDEVTVDDHAADLHAVARAVDRGPLDVLGSSGGGVTAVSWAAAHPGEVRRLVAHEPPLTALLSDRDVAVRAQQDVVDTYHRSGTGPATAKFLRLVSATEPLTPDYLDQPDPDPAAFGLPTEDDGRRDDLMLGTSLATMPRWEPPLDDLRAGVRSTDLRVLPAVGAASPPGGLAYRGAVALAEALAVRPVVFPGDHGGFARHAGAPDNDPAAFAARLRDLLAC	PGPT0010060_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-CLOROBIOCIN|COUMERMYCIN_METABOLISM,PGPT0010060-cloN7|couN7-K12724	NA	NA
AK001_01300	480			hypothetical protein	ATGTCTGACTCCACGACGCGACCCACGCCGCGCACCTACCCGCCGACGCCCACCAGCGAACCGGTCAGCGACGAGCTCCTCGTGGTCCACCTCAAGGGTCGAGACACCGAGTACTTCCGGCGTCCCGAGCTGGTCGAGCACGAGGTCGCGGACGGCGTGCTGACGATCACCCTCGCCGGCGACGACGAGAGGCCGCGCCGCACCCGCCACTTCCCCCTGGGCGAGGTCGCCGAGTACGTCGTCGAGGCCCCCAGCCCCGCCTACGAGACGGCCTTCGACGCCTGGACGCGGAACGAGTTCGGCGTCGATGCCGAGACGTACCGCTCCATGCGGGACACCTCCCAGGGCGTGGCCATGGCCGAGAAGATGCGGCTGCAGATCGCCCAGGGTCTCGGTGTCGACCCCGACCAGGTGCACTTCGGCGGCTCCTTCACGATCGACGAGGACGACGACTGGGACTCCTCGGCCGACGACGAGTAG	MSDSTTRPTPRTYPPTPTSEPVSDELLVVHLKGRDTEYFRRPELVEHEVADGVLTITLAGDDERPRRTRHFPLGEVAEYVVEAPSPAYETAFDAWTRNEFGVDAETYRSMRDTSQGVAMAEKMRLQIAQGLGVDPDQVHFGGSFTIDEDDDWDSSADDE				NA	NA	NA	NA	NA
AK001_01301	621			hypothetical protein	ATGCCGACACCGACCCTGCCCGCCCGCCGGTTCACCCACCCCGAGCTGGTCGACCTGACGACCGCCTGGCGGGCCGAGGAGCGGCTCGCCGCCGACCCGGACGCGAGGCACCACTGGTGCGCCGACCGGCACGGCTGGCTGCTGCGTCGCGGGCTCGACGAGGTGCTGGGCCCGGTGCTGATGCCGGACGCCTGGGGCGCGGCGTCGTTCTACCGGTTCGTCGACCTCGACGCCTCGGTCGCCACCGCCCTGCTCGACCGGCTCGACCCGCCGTACCTCGCCGCCGAGCGCCAGAACGACGGTCCGAGCCTGGGCACGGTGCTGCGCGCCGTGGTGGCGCACCCGGACCGGCTGCGCGCGCACGGCTACGTGGTGGGCCCGGGCCGGTGCGACGAACGCGTCACGGTCGAGGGGGTGCTGGTCCGCACGGACGACGCGTTCGTCCTCGGGGACCACCACGGTCCCGGCTGCCAGTGCGACGAGCTCGAGCGGGTCGTCGCCGCGCTGGGCGTGGACGACGCGCACGTGCCGCCGCACGAGGTGACGCGGTGGTGGGGACGACCCGGCGACCTGTCCCCGCAGGAGTCCGGCGAGCACTGGTACCGGCTGTGGTGGGACTGA	MPTPTLPARRFTHPELVDLTTAWRAEERLAADPDARHHWCADRHGWLLRRGLDEVLGPVLMPDAWGAASFYRFVDLDASVATALLDRLDPPYLAAERQNDGPSLGTVLRAVVAHPDRLRAHGYVVGPGRCDERVTVEGVLVRTDDAFVLGDHHGPGCQCDELERVVAALGVDDAHVPPHEVTRWWGRPGDLSPQESGEHWYRLWWD				NA	NA	NA	NA	NA
AK001_01302	396			hypothetical protein	ATGGCGCACCTCGACCTCGACACCGACGACCTGGCGACGGCCGCACGCCACGCGCACGCCGCCGCCGAGCTGCTCGACGCGACCGCCGGCACCGGCCTCACCGGGACCGTCGACGCCACCCGGGCGGCCGGCGAGAGAACGCTGGCGGCCGCGATCGACGACCTCGCCGCGGCCTGGGCGCCGACGTCCCGGTCGCTCGCCACGACGCTGACCGGGCTGGGCGACCGGCTCGCGACCACCGCGGCGACGTTCGACACCGCCGAGGGCGCCGTCGCGCGGCGGGTCGCCGCGGCGGTGCTGGGCGACCTCGTGCCGGGTGGCCTCGTGCCAGGCGGCCCCGTGCCAGGCGGCCCCGTGCCGGGCGGCCCCGCGCGACGGGTGGGCGAGGGCGGGTGA	MAHLDLDTDDLATAARHAHAAAELLDATAGTGLTGTVDATRAAGERTLAAAIDDLAAAWAPTSRSLATTLTGLGDRLATTAATFDTAEGAVARRVAAAVLGDLVPGGLVPGGPVPGGPVPGGPARRVGEGG				NA	NA	NA	NA	NA
AK001_01303	2130			hypothetical protein	GTGACGACCGACCGGCCGTTCGAGCCCCTGTCCGGGTCGCCGGCGTCGCTGGAGGAGCTCGCGGGCGCCGCGGCACGTGCCGCCTCGGCCCTGTCGGCGCTGCGCGCCGACCTGATCGTGCTGGACCGGTCGATGATGCGGCACCGGTCCGGAGCGGTCGACGCCGCGCGGGAGGCCGTCACCGCACTGATCGGCCGCGGGAGCCTGTGCTACCAGGTGCTGCGCGAGTCCGCGCGGGTGCTGACCGGGCGGGCGGCCGCGCTGGAGGGCGAGCAGCGCGACGCCCTGGACGCGCTCGAGCGCCGGACCGCGGCGACGGAGCGGGTGCGCCGGGCCGAGGCCGACGAGGACGCCGCCTGGCTGCTGGCCCTCGATCCCGTCGACCCGCAGCACGTCGAGGCGGGGCGGCTCGCCGCCGCGGCCCGCGCCCGCCGGGACGCCGCACTGGGTGACGTCGCCGAGGCCGAGGCGCGGTGGCACCGCGCCCGAGACGCCAAGGAGGCGGGTTCGCGCCGGGCCGCCCGACGGCTGGACGGGCTCGGGCACGTCGAGGCCGTGCGCTGGGCGGTGTCCGCGGGGGTCGGCCTGACCGGCTTCCGGGACCGCTGGGCCGACGGCGCCCGGGTGGCCGCCCGGGTGGACGCCGCAGCCCGCGCGGCCCGGTCGGGCGCCGCGCGCGACGGAGCCCTCGACGAGCTCGTCGCGGCGCTGCGCGCGACGGGCGACGACCCGGTGCGGTGGACGGCGTTCTGGGACCACGTGACCCCGGCCGACCTCTACGCCGCGCTCGGGGTGGGCGTGACCGACCCGGACGTCGTCGAGCTCCTGGCCGCCGGGCTGGCTGCCTGGGCCGAGCACGCCGGCCCGGCCGAGCAGCACGCCCTCGGCCACGCCCTCGTGGCCGACCTGCCCCGGGCCGCCGTCGAGCTGGGCGGCCGGGCCGACCTCGCGGCCGGACTGCTGGCGCCGGCCCTGCCGGCCACCCTGCCGGCCGCCGTGCACGCCGGGGCCGCGGAGGCCCTGGTAGAGCGCCGCACCACGAGCCGCGACTCCCACGCCGACACGACGGCCACGGGCGCTCTCACCGTCGCGGTCGCCCAGGGCCTGGCCGCCGACCCGCCGGCGGCCCTGGACCACCTGGTGCCGCCGGACGCCACCGGCGACACGGCCGTGCACCGCGCTCGCGCCTGGTTCGGCGTCGCCCCGCCCGACGGCTGGCCGGACGGCGGGACCGCCGTCGCGGGGCTGCTCGCCGCCGCCGTCACCGCCGGGGTCCGTGCCGAGGACGGCGAGGGTCGGCACCGGGCCGCGTTCCTGTCCTCCGCCGCGACCCGACAGCTCGTCGCTCCCGGCGGGCTGCTGGCCGGGCGCTACCCCGTGGCCGACGCGACCGGGGCGCGCATCGCCGTGGCCTACGCCCCCTTCCTGGCCTCGGCGAGCGACGCCGCGGAGCGGCAGGCCGGCGCCCCGCCACCGCGGGAGCCGGGGGTGCGGGACCGCCCCGAGCTGGCCGAGGGCACCGACAGGTTCGCCGCCGTGGTGCAGCCGGACCTGGACGTCCTCGACCTGCGGGACGTCGTCGCCGCCACCTCCACCACGGAGACCTCCGCGGGGTACTGGCTGTCCGCGGTGGACGACTACGTGGCCGGGGCCGCCGTCGACCTGGCCGACCCCGCCGTCGACGACGCCGACGCGGAGGCCCTCGCGCGGGCCGCGGTGCGGGACGCCGGCGTGGTCGTCGGCGCGATCCGCTCCCGGGAGATCGCCGTCGCGCGGCGGCAGGACGCCGACGCCGGCCTGGCCGTCGCCCTCGGGGTCGACGCCCTGACGGCGACCACGCGCCTCGCGCCGACGATGGTGACCACCGGGGTGCGCGGTCTGCTGCCACCGCCGCCCGGCGCCCTGCCCGACGCGCGCGATCGGGTCCTGGCGGACGAGGACGTGCTGTGCGAGCGCTTCACGACGCCGTTCGTCCGGGAGCGACGACGACACCTGACCGCGGCGGGCCGGTCCCCCGCGGAGGTCGAGGACGCCGTCGCGCGACTGCGTCCGGAGTCGGCCGACATGTCCGCCGCGTTCGGCACCGGTTACACCCTCGCCGCGGGGGTCGGCCGGCGGCTGGGCGAGTAG	MTTDRPFEPLSGSPASLEELAGAAARAASALSALRADLIVLDRSMMRHRSGAVDAAREAVTALIGRGSLCYQVLRESARVLTGRAAALEGEQRDALDALERRTAATERVRRAEADEDAAWLLALDPVDPQHVEAGRLAAAARARRDAALGDVAEAEARWHRARDAKEAGSRRAARRLDGLGHVEAVRWAVSAGVGLTGFRDRWADGARVAARVDAAARAARSGAARDGALDELVAALRATGDDPVRWTAFWDHVTPADLYAALGVGVTDPDVVELLAAGLAAWAEHAGPAEQHALGHALVADLPRAAVELGGRADLAAGLLAPALPATLPAAVHAGAAEALVERRTTSRDSHADTTATGALTVAVAQGLAADPPAALDHLVPPDATGDTAVHRARAWFGVAPPDGWPDGGTAVAGLLAAAVTAGVRAEDGEGRHRAAFLSSAATRQLVAPGGLLAGRYPVADATGARIAVAYAPFLASASDAAERQAGAPPPREPGVRDRPELAEGTDRFAAVVQPDLDVLDLRDVVAATSTTETSAGYWLSAVDDYVAGAAVDLADPAVDDADAEALARAAVRDAGVVVGAIRSREIAVARRQDADAGLAVALGVDALTATTRLAPTMVTTGVRGLLPPPPGALPDARDRVLADEDVLCERFTTPFVRERRRHLTAAGRSPAEVEDAVARLRPESADMSAAFGTGYTLAAGVGRRLGE				NA	NA	NA	NA	NA
AK001_01304	477			hypothetical protein	ATGGACCTCGCCACCCGGCTGCTGCACTCCCGCCGGCTCGTCCGCGCGCCGATCTGGCTGTTCCGGATCGGCGGTGGTGTCCTGTTCGGCGGTCGCCTCCTCCTGCTCCAGCACCGGGGCCGCACCACCGGCGCGCGGCGCTTCGCGGTCCTGGAGGTCTCGGGCCGGCCGGAACCGGACCGCCTGGTCGTCGTCGCCGGGCTGAACGCTCGCCCGCAGTGGTACCGCAACGTCCTCGTCGAGCCGCGGGTGCTGGTCTCCGTGGGCCGGCGCCGGGATGCCCGTGCCCTCGCCGAGCCCCTGGACCCCGACGCCGCCGCGGCACGGCTGCGCGAGTACGCCGACCAGCACCCCGCGGCCTGGGCGCGGTTGGAGCAGGTCGTGACCGCGTGGGCCGTCCCGCTGGCCGCCGCGCAGGGGGAGCGGGACTGGCGGCGCGTCGTGCCCGTGGTCGAGCTGCGGCTCCTGGACGGCTAA	MDLATRLLHSRRLVRAPIWLFRIGGGVLFGGRLLLLQHRGRTTGARRFAVLEVSGRPEPDRLVVVAGLNARPQWYRNVLVEPRVLVSVGRRRDARALAEPLDPDAAAARLREYADQHPAAWARLEQVVTAWAVPLAAAQGERDWRRVVPVVELRLLDG				NA	NA	NA	NA	NA
AK001_01305	1911	cadA	COG2217	Cadmium, zinc and cobalt-transporting ATPase	ATGGCGGGGCAGCTCGTGCGCCGCTACCCGTGGGTGGCGTCCTCCCTGGTGGTGCTGGCGGTCGTGCTCGGCCTCCTGGCCGGTGGCGAGCCGGACGTCGCGCGCTGGGTCGGTTCCGGGTGGGCGCTCCTGGTGGGTGCGCGCGTCGCCGTGGGCATGGTGCGTGACCTGATCGCGGGCCACTGGGGCGTGGACCTGCTCGCGCTGACCGCAATCGTGGCGACCGTCGTCGTCGGCGAGTACGTCGCGTCGCTGGTCGTGGTGCTCATGCTGACCGGCGGGCAGGCGCTGGAGGACTTCGCGGCACACCGCGCCCGGCAGGAGCTGCGCGCCCTGCTGGAGCGGGCGCCGACGCGTGCCCACCGCCTGGACGCCGCCGGCGGCGTCGTCGACGTCGACGTGGCGGACGTCCGGCCCGGCGACCTGCTGCTCGTCCGACCCGCCGAGGTGGTGCCCGTCGACGCCGAGCTCGTGGACCCCGAGACCGACTTCGACGAGTCGTCGCTGACCGGCGAGAGCCTGCCGGTCACGCGCGGCGTCGGCGACCCGGTGCTGTCCGGGGTGCTGAACACCGAGCAGGCGGTCACCCTGCGTGCCACCGCCGCCGCGGCGGACAGCCAGTACGCGCGGATCGTGGCGATGGTCCGCGAGGCCGCCGAGTCCCGGGCCCCCGTGGTCCGGCTGGCCGACCGCTACGCCGTGCCGTTCACGCTCTTCGCCTTCCTCGTGGCCGGCGCCGCCTTCGTCTACCACCGCGACCCCACCGTCGTGGCCGAGGTGCTCGTCGTGGCCACCCCCTGCCCGCTCCTCCTCGCCGCCCCCGTGGCGTTCCTCGGCGGCATGAGCCGGGCCGCGCGCCACGGGCTCATCGTCAAGGACGCGGGCACCCTCGAGCGCCTGGCCGCGGTGCGCACGGCGGCCTTCGACAAGACCGGCACGATCACCGTCGGTCGGCCCGCCCTGCTGGCGGTCCGGGCGCGCCCCCCGTGGGGGAGCGACGAGCTGCTGCGGCTCGCGGCGTCCGCCGAGCAGTACTCCTCGCACGTGCTCGCCACGACCGTCCGGGAGGCCGCCGTCGCGCGCGGGCTGGCGCTCGACAGCGCTCAGACCGCCCGGGAGGAGGCGACCCACGGCGTCGCGGCGCGCGTCGGCGGGCACGACGTCGTCGTGGGCAAGCTCCGGCGGGTCGCCCGGTCCGCGCCGGACGCCGTCGAGGAGCCCCTGGAGCAGGGGGAGCTGGCCGTCTACGTCGCGGTGGACGGCCGGTTCGCCGGCACGCTCGTCATGAGCGACCCCGCGCGGCCGGACGCCCGCGAGACGATGGAGGAGCTCGCCCGGCTGGGGGTCACCGAGACGCTCATGCTCAGCGGCGACTCCACGGCCACCGCCGAGCACGTCGCCGCCGCCGTCGGCATCGCCCGCGTGCACGCCGAGTGCCTGCCCGCCGACAAGGTCCGCCTCGTGCAGGAGCTCCCGGACCGGCCCGTCCTCATGGTCGGGGACGGCGTCAACGACGCGCCCGTCCTGGCCGCCGCCGACGTCGGGGTGGCCATGGGCGCTCGCGGGTCGACGGCGGCCAGCGAGTCCGCCGACGTCGTCATCCTCACCGAGGACCTTCGGCGGACGGTCACGGCGGTGCGCGTCGGACGGCGGACCATGTCGGTCGCGCTGCAGAGCATCTGGCTCGGCATCGCGCTGTCGGTGGTGCTCATGGGCGTGGCGGCCACCGGCGTGATCCCCGCCGTCGTCGGCGCGCTGAGCCAGGAGGTCGTGGACCTGCTGGCCATCCTCAACGCGCTCCGGGCGCTCCAGGACGACCGGCCCGAACGCCACGACGTGCCGGGACGGCCCGCCGAGCGGGCGGAGGGCGCCGCCCGGGCAGGTGGGGCCCTGCGGCCACGGCTACGGTGA	MAGQLVRRYPWVASSLVVLAVVLGLLAGGEPDVARWVGSGWALLVGARVAVGMVRDLIAGHWGVDLLALTAIVATVVVGEYVASLVVVLMLTGGQALEDFAAHRARQELRALLERAPTRAHRLDAAGGVVDVDVADVRPGDLLLVRPAEVVPVDAELVDPETDFDESSLTGESLPVTRGVGDPVLSGVLNTEQAVTLRATAAAADSQYARIVAMVREAAESRAPVVRLADRYAVPFTLFAFLVAGAAFVYHRDPTVVAEVLVVATPCPLLLAAPVAFLGGMSRAARHGLIVKDAGTLERLAAVRTAAFDKTGTITVGRPALLAVRARPPWGSDELLRLAASAEQYSSHVLATTVREAAVARGLALDSAQTAREEATHGVAARVGGHDVVVGKLRRVARSAPDAVEEPLEQGELAVYVAVDGRFAGTLVMSDPARPDARETMEELARLGVTETLMLSGDSTATAEHVAAAVGIARVHAECLPADKVRLVQELPDRPVLMVGDGVNDAPVLAAADVGVAMGARGSTAASESADVVILTEDLRRTVTAVRVGRRTMSVALQSIWLGIALSVVLMGVAATGVIPAVVGALSQEVVDLLAILNALRALQDDRPERHDVPGRPAERAEGAARAGGALRPRLR				NA	NA	NA	NA	NA
AK001_01306	1293			hypothetical protein	GTGCCCGCCCCGCCGGCCCCCGACGGTGTCGCCGACGTCGACGACGCCGTCCTCACCCGTGTCCCGGGACGGGGCGCCCGGTGGGTCGACGTCGCGGCCGCGGCCGGGACGGCGCTCGGGCTGTCGGGGCTGCTCGTCCTGGACCCCGCGACGCCGCCGGTCGGGTACGCGGCGGCCACCGGGTTCGGGGCGCTGGTGCTGCTGCGCCGTCGGGCACCGCTGCCGATGCTCGTGCTCACCCTTGTCGGCGCCACCGTCTGCGCGGTGGCGGACCTCGGTGTCCTCGGCACCCCGCTGGCGGCCGCGCCGGCGCTGTGCGCCGCCGCGGCACAGGGCCGCCCGGGGTGGGCGTCGGCGACCGGGGGCGCCCTGGTCCTGGTGGTCTCGGCGCTGCGTCCCGCCCGTCCGGGCACCGGTGCGGACGTCGTCACCCTGCTGCTCGGCGACCTGGCCGTCGTGGTCGCGGCCGTCTGCGTGGGCGTCCTGGTGCGGTCGCGCCGGCAGGACCGCCCCGACCGGGTCGTGCCCGACCCGCGGCCGCCGGCGTCCGACCCGACCCCACCGGACCGTCCCGGCCCGGTCGAGCCCGGACCGGTCGAACCCGGACCGGTCGAGCCCGGCCCGGGGGCCGAGCGTCTCCGGGTCGCCCTGGACCTCCAGGACGTCGTCGGGCACCACCTCTCGCTCGTGGCCCTGCACACCGACGTGGCCGCGGGCGCCGTGGGGCGCGACGACGACGCGGCCCGCACGGCCCTGCGGCACGTCCGGGAGGCGACGTCGGCCACCGTGCACGAGCTGCGCGCCACCGCCCTGCTGCTGCGCCACGCGGAACAGGGCACGGAGCAGAGCGCGGACGCCTCGGCGGCGGTCCCCGGGGCGCGCGACCACCTGCCGGCGGTGACCGGTCCGGCCGGGCTGGCCGCCCTCGTCCAGCCGGTGCGGGCGGCCGGGATCCGCGTGACCACCCGGGTCGACGTCCCGCGGGGCTCCCTGGACGCGACGGTCGACGCCGCGGCCTACCGCATCGTCCAGGGCGCCCTGGCGCGCGTGGGTGCGGACGCCGCGGCGTCGACCGTCCGCGTCGAGCTGGGTGTCTCGGCAGGGCGCCTGCGGGTCGTCGTGGCCGACGACGGGCCCGGACCCGCGCCGGACGGGGCCGACGGCGCGCGCCTGGCCGCGATGCGCGACCGGGCGACGCTGCTCGGCGGCCGCCTCGACGTCGTCGACGGCGCGGACGGCGGGCTCGTCGTCACGGCCGACCTGCCGGCCCGCCTCGCCGAGTCCGTCCCGTAG	MPAPPAPDGVADVDDAVLTRVPGRGARWVDVAAAAGTALGLSGLLVLDPATPPVGYAAATGFGALVLLRRRAPLPMLVLTLVGATVCAVADLGVLGTPLAAAPALCAAAAQGRPGWASATGGALVLVVSALRPARPGTGADVVTLLLGDLAVVVAAVCVGVLVRSRRQDRPDRVVPDPRPPASDPTPPDRPGPVEPGPVEPGPVEPGPGAERLRVALDLQDVVGHHLSLVALHTDVAAGAVGRDDDAARTALRHVREATSATVHELRATALLLRHAEQGTEQSADASAAVPGARDHLPAVTGPAGLAALVQPVRAAGIRVTTRVDVPRGSLDATVDAAAYRIVQGALARVGADAAASTVRVELGVSAGRLRVVVADDGPGPAPDGADGARLAAMRDRATLLGGRLDVVDGADGGLVVTADLPARLAESVP				NA	NA	NA	NA	NA
AK001_01307	903	czcD		Metal cation efflux system protein CzcD	ATGGCCCACGACCACGGCACGCACGAGACCCACCGCGGACGGCTGGGCGCGGCCTTCGGCATCACCGCGGGCATCGTCGTCGCCCAGGTGGTCGGCGCCGTCGTGACCGGCAGCCTCGCCCTGCTCGTGGACACCGCGCACCTGCTCACCGACGCCGCCGGGCTGGGGATGGCGCTGTTCGCGGCGCACGCCTCGCTGCGCCCGCCGACGGCGCGGCGCACCTGGGGGCTGCGGCGCGCGGAGGTGCTCGCCGCGCTGGCCCAGGCCGCGCTGCTGCTCGCCGTCGGGGTCTTCGTGCTGGTCGAGGCCGTGCAGCGGCTGCAGGACCCGCCCGAGATCCCGGGGACCGAGCTCGTGGTGTTCGGCGTCGTCGGTCTGGTCGGCAACCTCGCGGCCCTGGCGGTGCTGGCCGGACGCCGCGGCGCCAGCCTCAACCTGCGGGCCGCGTTCCTCGAGGTGCTCAACGACGCGCTCGGGTCGCTGGCCGTCGTCGTCGCCGCCGTCGTCATCACCACGACGGGGTGGCAGCAGGCCGACTCGGTCGCGGCACTGCTCATCGGTGCGCTGATCCTGCCGCGCGCGCTGGTGCTGCTGCGCGACACCACCGCCGTGCTCCTCGAGTCGACGCCGCCCGGCCTCGACCTGGACGACGTCCGCGCCCACCTGCTGCGCGTGGAGCACGTCCACGCGATCCATGACGTGCACGCCTCGCTCATCGCGACGGGGCTGCCGCAGCTCTCGGCGCACGTCGTCGTCGACGCCGCGTGCTTCCGCGACGGGCACGCCGGGCAGATCCTCGACGAGCTGCAGGAGTGCGTCCGCGACCACTTCGGCGTCGAGCACTCGACCTTCCAGGTCGAGCCCGAGACCCACCCAGCCCACGAGCATCCGACGCACGACTGA	MAHDHGTHETHRGRLGAAFGITAGIVVAQVVGAVVTGSLALLVDTAHLLTDAAGLGMALFAAHASLRPPTARRTWGLRRAEVLAALAQAALLLAVGVFVLVEAVQRLQDPPEIPGTELVVFGVVGLVGNLAALAVLAGRRGASLNLRAAFLEVLNDALGSLAVVVAAVVITTTGWQQADSVAALLIGALILPRALVLLRDTTAVLLESTPPGLDLDDVRAHLLRVEHVHAIHDVHASLIATGLPQLSAHVVVDAACFRDGHAGQILDELQECVRDHFGVEHSTFQVEPETHPAHEHPTHD	PGPT0004255_2252	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COBALT_RESISTANCE	COBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004255-czcD|zitB|yrdO-K16264	NA	NA
AK001_01308	1008	degA_4	COG1609	HTH-type transcriptional regulator DegA	ATGGTTGAGTCGACGGTGACGATCCACGACGTCGCCCGGCACGCCGGTGTCTCGGCGGCGACGGTGTCGAACTACTTCAACTGGCCGGACAAGCTGTCCGACCGGATGAAGAAGCGTGTCGCTACGGCGGTCACCGACCTGGGGTTCGTCCCCAGCATGCCGGCGCGGCAGCTGCGCCGGCAGCGCAGCGGCATCGTCGGGCTCAGCGTGGTCAACGCCTCCAACCCGTTCTTCGGCGGCATCGCGACCGCCGTCGAGCAGGTGGCCGAGGACGCCGGGCTGTCGGTCGTGGTCGGGTCGTCCCACGAGTCGCCCGTCCAGCAGGAGAAGTTCCTGACCCTGTTCGAGCAGCTCCGGTTCGACGGCGTGGTCGTGGCGCCGTCGGACGACCAGCTCGAGCCGCTGCGCAAGCGCCACGACCGCGGGACGCCCGTGGTGCTCGTCGACCACGAGGACCCGGACGGCCGGTTGTCGTCGGTGTCGCTGGACCATCGCGAGGGCGGCCGGATCGCGGCCAGCCACCTGGTGGACTCCGGCCGCCGCCGGCTGCTGTTCGCCGCCGGTCCGGAGGGCGTGCGGCAGGTGGCACGCCGCCTGGAGGGGGCTCGTGAGGCCGTCGCCGAGCGCGACGACGTCCGCCTGGACGTGGTGCGCTCCTCCGACCTCGACATCACCGTCGGGGAGGAGACGGGCCGGTGGATCGCCGCGCTCGACCCTCCCGAGCGCCCCGACGCGGTGTTCGCCGGCAACGACCTGCACGCCATCGGTCTCGTGGACGCCCTGGTCAAGGCGGGGATCCGGGTGCCCGAGGACATCGCCGTGGTCGGGTACGACGACATCCCGTTCGCCCGGCGGGCTGCCGTCCCCCTGACCACCGTGCGCCAGCCCATCGCCGAGATGGGCCGGGCCGCGGCCCGGTTGCTGCTGGACGAGATCGCCGAGCCGGGACGTCCGCCGCGGGACGTCGTCTACCCGCCCGAGCTCGTGGTGCGCGCCTCGGCTCCCTGA	MVESTVTIHDVARHAGVSAATVSNYFNWPDKLSDRMKKRVATAVTDLGFVPSMPARQLRRQRSGIVGLSVVNASNPFFGGIATAVEQVAEDAGLSVVVGSSHESPVQQEKFLTLFEQLRFDGVVVAPSDDQLEPLRKRHDRGTPVVLVDHEDPDGRLSSVSLDHREGGRIAASHLVDSGRRRLLFAAGPEGVRQVARRLEGAREAVAERDDVRLDVVRSSDLDITVGEETGRWIAALDPPERPDAVFAGNDLHAIGLVDALVKAGIRVPEDIAVVGYDDIPFARRAAVPLTTVRQPIAEMGRAAARLLLDEIAEPGRPPRDVVYPPELVVRASAP	PGPT0017992_12478	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01309	1293			hypothetical protein	ATGGACCCGTCCCGCCGTCGCCTGCTCGTCGCGGCGCTCGCCACCGTCGTCCCGGTCGTGGTGCTCGCGGTCGTCGCCCCCGCGGTGGTCACCCCGTACTTCCTGGGCATGCTGCCGACCGTCGTCGCGGGAGTCGCCTCGCTGCGCCGGGCCTGGGTGCTCGCCGGCCTGACGGGTGCCCTCGCGCTCGTGGCCCCCCTGGCCGGGGCGCAGGTGTGGTCGGCGGTGGTGCTGATGACGCTCGTCGCCGCGGCCCTGGGACTGGCGGCCGGGCGGGGCTGGAGCTCGGGCGGGGCGCCCGCCGCGGTGACCCTCGCGGCCCTGACCGTCTCGCCCCCCGCGCTGGTCGCCGCGGACCCGCGGACCCTGGCCGGTGCCTGGCCCCTCGCCGCCGCCGTGCTGGCCGGCGGCGTGGTGACCGCGCTCGTCCTCACCCTGCTCTCCCGCGGGGTGCCCCGCCCGGACCACGACCCGCTGACCGGCCCCGAGCTGAGGTTCTACGTGTCCGCCCTGGTCGTGGTCACCGCCGTGGGGACGTGGTGGGCGACGACCTGGTTCCCCGACACGCACTCGTGGTGGCTGCTGCTGACGTTCTACCTGGTGATGGTGCCGCGCACCGGGGACATCACCGCCCGCGCGCTGGCCCGGGCCGGCGGCACCGTCCTGGGCGGGCTGGTCGTCGTCGTCCTCGTCGCGCTCGACGTCGCGCCGCAGGCCATGTCGCTGGTGGTCGCGGTCGGCGTGGTGGGCTGCGTCGTGACCATGCTGACCGCCCCGTACTGGGTCTACACGATCTTCCTCACGCTGACCGTCGTCGGGACCACGACGGGCGACGCCCCCGTCGCCGGTGCCCTCGAGCGGGTGGGGCTCACCCTGCTGGGTGCCGGGACGGCCGCGGGCATCCTGCTGCTCGCCCGGCTGCTGAGCCACCGCAGCGGGCGCCGTGCCGACCGACCTGCCGACCGACCTGTGGACCGACCTGTCGGCCGACCTGTCGACCAGGACGTGGTGCCGGCCGGGTCAGGCGACGCCGGTGGTGCCCAGCAGCGAGCCGACCGCGAACGTCGCCCCCAGGGCGAGCGCGCCGCCGACCACGACCCGCAGCACGGCCCGGTCGATCCGGGCGCCACCGATCCACGCGGCGACGCCGCCGGTCAGGGCCAGCGCGACGAGCACGGCGACGAACGTGGCCGCGACCTTGGCGGGCTCGGGCACCAGCAGCACCGTCGCGAAGGGCAGCAGACCGCCGATCGTGAACGCGACGAACGAGGCGACGGCCGCGTGCCACGCTGA	MDPSRRRLLVAALATVVPVVVLAVVAPAVVTPYFLGMLPTVVAGVASLRRAWVLAGLTGALALVAPLAGAQVWSAVVLMTLVAAALGLAAGRGWSSGGAPAAVTLAALTVSPPALVAADPRTLAGAWPLAAAVLAGGVVTALVLTLLSRGVPRPDHDPLTGPELRFYVSALVVVTAVGTWWATTWFPDTHSWWLLLTFYLVMVPRTGDITARALARAGGTVLGGLVVVVLVALDVAPQAMSLVVAVGVVGCVVTMLTAPYWVYTIFLTLTVVGTTTGDAPVAGALERVGLTLLGAGTAAGILLLARLLSHRSGRRADRPADRPVDRPVGRPVDQDVVPAGSGDAGGAQQRADRERRPQGERAADHDPQHGPVDPGATDPRGDAAGQGQRDEHGDERGRDLGGLGHQQHRREGQQTADRERDERGDGRVPR				NA	NA	NA	NA	NA
AK001_01310	1356	dapE_2	COG0624	Succinyl-diaminopimelate desuccinylase	ATGAACCGACCTGAGGTGGCGTCCGTCACACCGCGCCCGGACGCCGCCGAGCGCCTGGCTCGCCTGATCCGGATCCCCACCGTCTCCGCCGAGATCGAAAGCCGGGGGCACGAGCCGTTCGAGAGCCTCGTCGACCTCCTGGCCGAGCTGTACCCCCTCGTGCACGAGCACCTGAGCAGGGAACGGCTCGGCGACCTTGGCCTCCTCTTCCGCTGGCGCGGCCGCGGGGACGCCGACGACGGGCCGCTCGTGCTCATGGCGCACTTCGACGTCGTGCCCGTGGACGAGTCCGACGGCTGGACCCACCCGCCGTTCTCCGGTCGGATCGCCGACGGCTGGGTCCACGGCCGCGGCGCGCTCGACGACAAGGGGCCGCTCGTCGTCCTGCTGGAGGCCGTCGAGAACCTGCTGGCGGCCGGGTTCGTCCCGGCCCGCGACGTCTACCTCTCCCTCGGCGGGGACGAGGAGTGCCACGGCCCGTCGGCCGAGACGATCGCCGCGACGTTCGAGGCCCGCGGGATCGTGCCCTGGATGGTCCTCGACGAGGGCGGCGCCGTCGTCGACTCCCCGCTGCCCATGGTGACCGGCACCGCCGCGATGGTCGGCGTCGGGGAGAAGGGGGTGCTCACCGCCCGGCTCTCCACGCGCGGCGACGGCGGCCACGCCTCCATGCCCCCGACCCTCACGGCGGTGCGGCGGATCGCCCGGGCCGTCGACCGCCTCGGGCCGCGCACGTTCCCCGCGCGCACGCCCCGGGCGATCAGCGAGCTGCTGCGGCGGTTCGCCGAGCGCGCGAACGGGGCGAGCCGCACGGCGCTGCGCGCCCTGGCCGCGTCCCCGCGGGCGACCGCGCAGGCGTTCGTGGCCCGCGGCGGCGAGACGGCGGCCCTGGTGCGCACCACCGTGGCGGCGACCATGCTCGACGGCGGCACCGCCGCGAACGTGCTGCCCTCGCAGGCGTCCGCGACGCTCAACCTGCGCATCGCCCTCTCCGAGACGGTGGAGGGCACCGTCGCCCGGATCCGACGCCGGATCGCCGACGACCAGGTCGACGTCGAGGTGCTCGAGGCCAGCGAGCCGTCCCCCGAGTCGCCGACCGACGACGAGCGTTTCACCCGGATCGCCGACGCCGTCGCGGTCTCCCACCCCGGTGCCGCCACGGTGCCCTACGTCGTCTTCGCCGCCACCGACGCGCGGTACTTCCACCGCTTCGCGCCGGCCGTCTACCGGTTCGCGCCGCTGACGATGTCGGCGGCGCAGCGCGCGTCGATCCACGGCGTCGACGAACGGGTCGAGATCAGCGAGCTGGAACGCGGCGAGCTCTTCCACCGCACGCTGCTGGAGCGGCTCGGATGA	MNRPEVASVTPRPDAAERLARLIRIPTVSAEIESRGHEPFESLVDLLAELYPLVHEHLSRERLGDLGLLFRWRGRGDADDGPLVLMAHFDVVPVDESDGWTHPPFSGRIADGWVHGRGALDDKGPLVVLLEAVENLLAAGFVPARDVYLSLGGDEECHGPSAETIAATFEARGIVPWMVLDEGGAVVDSPLPMVTGTAAMVGVGEKGVLTARLSTRGDGGHASMPPTLTAVRRIARAVDRLGPRTFPARTPRAISELLRRFAERANGASRTALRALAASPRATAQAFVARGGETAALVRTTVAATMLDGGTAANVLPSQASATLNLRIALSETVEGTVARIRRRIADDQVDVEVLEASEPSPESPTDDERFTRIADAVAVSHPGAATVPYVVFAATDARYFHRFAPAVYRFAPLTMSAAQRASIHGVDERVEISELERGELFHRTLLERLG				NA	NA	NA	NA	NA
AK001_01311	1470			hypothetical protein	ATGAGCGCCGGGACCGCCGCGCGCCGGCCGACGACCGGCGCGTCGATGACCGTCGTCGTTGGCTTCCTCGCCTTCGTCGAGCTGACCAGCGGCGTCATCCAGGGCTACTACACGCCGCTGCTCACCGACGTCGCCCGCCACCTCGGGGTGCACGACGCCGACGTCAACTGGCTCGAGGGCAGCCAGCTCATGCTGTCGGCGCTGGTGGTGCCGGCCCTGGCCAAGCTCGGCGACATGGTCGGCCACCGGCGCATCCTGCTGTGGTCCACCGCCGTGACAGCCGCGGCCTCGCTGGTGCTGCCCTTCACCGACTCGTTCGCCGTGTTCCTCGTCGCCTGGGCGCTGCAGGGCTTCTACGTCGTGTGGCTGCCGCTGGAGATCGCGCTGGTCTGGCTGCGCACCCGGGACCTGCCGAACCGCTCCGCCGTCACCGCGAAGGCCGCCGGGATCCTCGTGGCCGCGCTGCAGGCCGGCGCGATCGCCGGGGCGCTCGCCGGCGGGGCGCTCGTGGACTCGTTCCCCCTGTGGGTCGTGCTCCTCGTGCCCGCGCTCCTGGTCTGCGCGTGCTTCGTCGTCGTCTGGCTGGGCGTCGCCGAGACCCCGGACCCGGTGGGCGGCCGCCTCGACACCCGCGGGCTGGTGCTGGTCTCGCTCGCCCTGCTCGCCTTCACCGGCGGGCTGAGCCTGCTGCGGCTGGAGGGCGTCGCCTCGCCGGTCGCCTGGGCCGCCGTCGCCGCCGGGCTGCTCCTGCTCTGGCCCTTCGTACGCTGGGAGCTGCGCCACGACGACCCGCTGATCGACGTGCGGATGTTCCGCTCCCCCGCCCTGGCCCCCGTGTTCCTCACCGCGGGACTGTTCGGCGTCTCCGTGCTCGGCGCGCAGGCACCGCTGTCCACGTTCGCCCGCACCGACCCCGCGGTGTACGGCTACGGGCTGGGCACCACCGGGTTCCAGACGTCGCTGCTCATCGGGGTGTACCTGATCGCCATGATCGTCGGGGCGCTGTCGTTCCCGCGCGTGGCCGCGCTGGTCTCGCCGCGGCTCACCCTGTTCGTGGCCGCCCTGGCCGTCGCCGTCGGCTTCGGGCTGTTCCTGCCGTTGCACGACACCTACGTCCAGGTGGCCACCAACATGGTGATCGTGGGGCTGGGATCCGGCACGCTGGTGGCCGCGCTGCCCGCCGCGGCCGCGGCCGCGGCGCCACCGACGCAGACGGGCGTGGCCACCGGCCTGACCAACTCGGTCAAGACCGTCGGCGGGGCGATCGCCTCGTGCGTGTTCGGCATCGCCCTGCTCGGCGCGGCCGGCGCGAACGCCGCCGAGTCGGTCACCGGCACCGCCGGCACGCTGACCGGCTACATGACGGTCTGGGTCGTGTGCGGCGGGACCGCACTCGTGGCGGCCGTGCTGCTGCTCGTCGTGCCGAAGGAGGCGTTCACCGACCGCGGGGCCCACGCACCCGCCGCCTGA	MSAGTAARRPTTGASMTVVVGFLAFVELTSGVIQGYYTPLLTDVARHLGVHDADVNWLEGSQLMLSALVVPALAKLGDMVGHRRILLWSTAVTAAASLVLPFTDSFAVFLVAWALQGFYVVWLPLEIALVWLRTRDLPNRSAVTAKAAGILVAALQAGAIAGALAGGALVDSFPLWVVLLVPALLVCACFVVVWLGVAETPDPVGGRLDTRGLVLVSLALLAFTGGLSLLRLEGVASPVAWAAVAAGLLLLWPFVRWELRHDDPLIDVRMFRSPALAPVFLTAGLFGVSVLGAQAPLSTFARTDPAVYGYGLGTTGFQTSLLIGVYLIAMIVGALSFPRVAALVSPRLTLFVAALAVAVGFGLFLPLHDTYVQVATNMVIVGLGSGTLVAALPAAAAAAAPPTQTGVATGLTNSVKTVGGAIASCVFGIALLGAAGANAAESVTGTAGTLTGYMTVWVVCGGTALVAAVLLLVVPKEAFTDRGAHAPAA				NA	NA	NA	NA	NA
AK001_01312	1284	lhgD	COG0579	L-2-hydroxyglutarate dehydrogenase	GTGGGGACGACGCAGGACGGTGCGGTCGGTGTGGTCGGCGGCGGGATCGTCGGGCTCGCCGTGGCGCGCGAGATCGTGCGGCGACGACCGGGGACCCCGGTGACGGTCCTCGAGGCGGAGGACCGCCTGGGCGCCCACCAGACCGGGCACAACTCCGGCGTCGTGCACGCGGGGATCTACTACCGGCCCGGCAGCCTCAAGGCGACGCTCTGCACGCGCGGCCGGAGCCTGCTGCAGGAGTACTGCGCCGAGCACGACCTCCCGTTCGACGAGGTGGGCAAGCTCGTGGTCGCGGTCGACGAGTCCGAGCAGGGCCGCTTCGACGCGCTGGAGGCCACGGCCCGCGAGAACGGGGTCCCGGGGCTGCGCCGGCTCGACGCGGGCGCGATCGCCGACGTCGAGCCGCGCGCCGTCGGCCGGGCGGCGCTGCACTCGCCGCGCACCGCGATCACCGACTTCGGTGCGGTCGCGCGGCGGCTCGGGGCCGACATCGAGGCCGCCGGCGGTCGAGTCCTGCTGAACACCGCCGTCACCGGGATCCGGCAGGGTGCCGGTGACGTCACGGTGTCGACGCGGCACGGGGCCCGGTCCGGCACCGCCGGCACCGCCGGCACCTCCGGCGACGGCGGTGCCGGCGCCGAGCGCGGCCGGCACACCGTGAGCCGGCTGGTGGTGTGCGGGGGCCTGCAGTCCGACCGGCTCGCCGGCCTCGTCGGGGGAGGGCGGAACCCCGCCATCGTCCCGTTCCGGGGCGAGTACATGGCGGTGCGGCCCGAGAAGCAGGACCTGGTCCGGGGCATGGTCTACCCGGTGCCGGACCCGCGGTACCCGTTCCTCGGCGTGCACTTCACCCGGACGGTCGACGGCGGGCTGGAGGTCGGGCCCAACGCCGTCCTCGCGCTGCACCGCAGCTCCTACCGGCGTCTCGCCGTCGGGCCCCGCGACCTCGCCGCGACGCTCACCTGGCCCGGTTTCTGGCGGATGGCTGCGGAGCACTGGGTCACGGGCGTCCGGGAGATGTACGGGTCGGCCGTGCCGTCCGCGTTCCTGCGCGCCGCGCAGCGCTACGTCCCGGCGATCGGCGCGACCGACGTCGTGCGCGGGCGCTGCGGCCTGCGTGCCCAGGCGGTGGCGCGGGACGGGTCCCTCGTCGACGACTTCGTCGTCGAGTCCTCGGACCGCGTCACCGTGGTGCGCAACGCCCCGTCGCCGGCGGCCACCTCCGGGCTGGCGATCGCCGAGCACGTCGTGGACCGTCTCGGGGGATTCGACGGTTCCGGGTGA	MGTTQDGAVGVVGGGIVGLAVAREIVRRRPGTPVTVLEAEDRLGAHQTGHNSGVVHAGIYYRPGSLKATLCTRGRSLLQEYCAEHDLPFDEVGKLVVAVDESEQGRFDALEATARENGVPGLRRLDAGAIADVEPRAVGRAALHSPRTAITDFGAVARRLGADIEAAGGRVLLNTAVTGIRQGAGDVTVSTRHGARSGTAGTAGTSGDGGAGAERGRHTVSRLVVCGGLQSDRLAGLVGGGRNPAIVPFRGEYMAVRPEKQDLVRGMVYPVPDPRYPFLGVHFTRTVDGGLEVGPNAVLALHRSSYRRLAVGPRDLAATLTWPGFWRMAAEHWVTGVREMYGSAVPSAFLRAAQRYVPAIGATDVVRGRCGLRAQAVARDGSLVDDFVVESSDRVTVVRNAPSPAATSGLAIAEHVVDRLGGFDGSG	PGPT0013225_818	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_GLUTARATE_UTILIZATION,PGPT0013225-lhgO|ygaF-K15736	NA	NA
AK001_01313	417			hypothetical protein	ATGATCCGACTCCTCGCGCGCACCGCCGTCTTCCTCCTCGCCGCGGCGATCGGTGTCGTCCTGACCGACGTCCTCTTCGACGCCTTCGGCTGGGAGACCTTCGACGTCGTCTGGGGCGACCCGCTGGGCTTCGTCCTGGCGGTGGTGATCTTCGCGCTGGCACAGGCCGTGCTGTCGCCGTTCTTCGCCCAGCTCGCCCGCCGCAACGCCCCGACCCTCGTCGGCGCGGTCGGGCTCATCACGACCTACGTCGCGCTGCTGGTGGCCTCGCTGGCCTCCGACGGCCTGACGATCTCCGGGTGGCAGGGCTGGGTGATCGGCCCGATCGTCGTCTGGCTCGTCACGATGCTCGCCACCTTCCTGCTGCCGGCCTTCATCCTCAAGCAGGCCGTCGAGGAGCGCCGCGACCGCGACTGA	MIRLLARTAVFLLAAAIGVVLTDVLFDAFGWETFDVVWGDPLGFVLAVVIFALAQAVLSPFFAQLARRNAPTLVGAVGLITTYVALLVASLASDGLTISGWQGWVIGPIVVWLVTMLATFLLPAFILKQAVEERRDRD				NA	NA	NA	NA	NA
AK001_01314	1152	galE_2	COG1087	UDP-glucose 4-epimerase	ATGCGGGTCCTGGTCACAGGTGGGGCCGGCTACCTGGGTTCTCACGTCGTGCTGGCCCTGCTCCAGGCAGGGCACGCGGTCGACGTCGTCGACGACTTCAGTGCGGGCAGCCCCGCCGCGCTCACCCGCGCCGAGGGAGTCTCCGGCCGGCAGGTGACGACGCACGCCGCCGACGTCGCCGACATCGACGCGATGGAGCGGGTCTTCGCCACGGCCCGCTTCGACGCCGTCGTGCACCTGGCGGGTCTGCGGTCCGCGCGACTGAGCGACAGCCGTGTGCTGGACACCTACGAGACGAACCTGTCGACGCTCTTCACCCTGCTGCGCTGCATGACCTGGTACGCGGTGCACCGCCTCGTGCTGTCCTCGTCCGCCGCGGTCTACGGCCCGTCCGACGACGGCGGTCGGCTCGCGGAGTCGGCAGCCCTCGCGCCGGTCTCGCCCCTGGGTCGCAGCCTGGCCACGAACGAGCACCTGCTCACCGACCTCGTCGGCCAGGACCCGGCGCTGCGGGTGGCGGTGCTGCGCTGCTTCACCACGGCGGGCGCCCACCCCTCGGGCCGGCTCGGCGAGGACGGCGCCTCCTCGGCGACGGGGCTGCTGACCCGTGTCGGGCAGGTCGCGGCCGGACGCCGGGACGCCGTCGAGGTGTTCGGCGGACGGCACCCCACCGCGGACGGCACGCCGGTGCGCGACGTCGTGCACGTCGCCGACGTCGCCGACGGGCACGTCGCCGCGCTGGAGGGCCTGGACACGGCCGCCCGGCCGATGACCACCTGGAACCTCGGGACCGGACGCGCCGCGAGCGTCCTCGAGGTGATCCGCACGTTCGAGCGGGTCACGGGACGGACGGTGCCGTACCGCGTCGTCGCCGCCGGGCCCCCGACGGCGGCCTCGGCGGTGGCGGACCCGGAGCGCGCCGCGACGGAGCTCGGATGGCGGGCCCGCCGCGGGCTCGACGAGATCTGCCGGGACCACTGGCGCTGGCAGCGCACGAACCCGGACGGCTACCCGCCCACGGTGACGCCGGAGACGCCCTGGCGCGGCGGGGTCGGGCACCGGCTCCGGATGGTGCCCCCGCTCCCCGAGGCCGCGCCCGCCGGGTCCCTGGCCCGCCGCGCGGTCGGTCAGTCCTTGACCTCGCGGAAGTAG	MRVLVTGGAGYLGSHVVLALLQAGHAVDVVDDFSAGSPAALTRAEGVSGRQVTTHAADVADIDAMERVFATARFDAVVHLAGLRSARLSDSRVLDTYETNLSTLFTLLRCMTWYAVHRLVLSSSAAVYGPSDDGGRLAESAALAPVSPLGRSLATNEHLLTDLVGQDPALRVAVLRCFTTAGAHPSGRLGEDGASSATGLLTRVGQVAAGRRDAVEVFGGRHPTADGTPVRDVVHVADVADGHVAALEGLDTAARPMTTWNLGTGRAASVLEVIRTFERVTGRTVPYRVVAAGPPTAASAVADPERAATELGWRARRGLDEICRDHWRWQRTNPDGYPPTVTPETPWRGGVGHRLRMVPPLPEAAPAGSLARRAVGQSLTSRK				NA	NA	NA	NA	NA
AK001_01315	963			hypothetical protein	ATGAGGCGCACGATCGGTGCCGTGACCGCTGCCCTGCTGGCCCTCGGCACGCTGGCCGGGTGCTTCGGCGGCGAGGACAGCTCCTGGTCCGGCCGCCTGCCCGACCGCCTCACGATCGCGACCGGCGGCACCACGGGCATCTACCACGGCTACGGCCAGGCGCTGGCCGACGTGCTGGCCGAGCAGCACGGCGTCGAGGCCGAGGTGCTGTCGACCGGCGGGTCGGTGGAGAACCTCGCGCTGCTGGCGGACGGCGAGGCGCAGCTCGCGTTCAGCGCGGCCGACGCCGTGGCCGACGCCGTGCACGGCACGGGGGCCTTCGACGCGCCGGTGGACCTGCGTGCGCTGGGCCGCGTCTACGACGACTTCGCCCACCTGGTGGTCCCTGCCGACTCACCGGTCGAGGAGCTGGCGGACCTGCGGGGACGTCGCGTGTCGGTCGGTGCCACCGGGTCGGGCACGTCGCTCATCGCCCGCCGGGTGCTCGCCGCCGGCCCTCTGCCGGAGTCCGACCTGCGGGTGGTCGAGCTGGGCATCACCGAGTCGCTCGACGCGCTGAGCACCGGCCGCATCGACGCGTTCTTCTGGTCCGGCGGGCTGCGGACCCCGGGCCTGGTCGAGCTCGCCGAGGAGACCCCGATCCGGCTGGTCCCGCTCGACGGCGTCGTCGACGAGCTCCGCGACCGGTACGGTCAGGGCTACCGGCACGGCACGGTCCCCGAGGGCATCTACGGGCTCGAGGCCGACGTCGAGACGCTCGCCGTGCCGAACATCCTGGTGGTGCCGACCGACCTGCCGGACGACGCCGCCCACGGGCTCGTGGCGACGCTCTTCGGTGCGCGCACCGCCCTCGCCGAGCGGGCCGCCGCCGCCCAGCTGCTCGACCGGACCCGTGTGATCTACACCGAGCCGGCCCCGCTGCACGACGGGGCGCTGCGCTACTTCCGCGAGGTCAAGGACTGA	MRRTIGAVTAALLALGTLAGCFGGEDSSWSGRLPDRLTIATGGTTGIYHGYGQALADVLAEQHGVEAEVLSTGGSVENLALLADGEAQLAFSAADAVADAVHGTGAFDAPVDLRALGRVYDDFAHLVVPADSPVEELADLRGRRVSVGATGSGTSLIARRVLAAGPLPESDLRVVELGITESLDALSTGRIDAFFWSGGLRTPGLVELAEETPIRLVPLDGVVDELRDRYGQGYRHGTVPEGIYGLEADVETLAVPNILVVPTDLPDDAAHGLVATLFGARTALAERAAAAQLLDRTRVIYTEPAPLHDGALRYFREVKD				NA	NA	NA	NA	NA
AK001_01316	1374	sasA_3		Adaptive-response sensory-kinase SasA	GTGAGGGCGCGGCTGACGGCGCTCGTCTACGTGCCGGTCGCTCTGGTGCTGGTCCTCGTCGGTCTGCTGTACGCCGCGAGCGTCACCCGTGCCCAGCAGCAGGACGTCTTCTTCGACCGGGTGCGGGACGCCTCGTACCTCACCATCACCGCCCGCCAGGCGATCCTCGCCGACGACCCCGGGATCGTCGCCGTCGACCTCGAGCGCTACCGGCAGGTGTACGGCATCCGGTCCGCCGTCGTCGACCAGGCCGGGGTGACCCTGGCCGCCGCCGGCCTCGAGGTCGAGGACTACCCGCAGCGGCACACGGCGATCGCCGGACGGCCCAGCGAGATGACGACGAGCTTCTGGCCGTGGGACGTCGACGAGGTCGTCGTGGCCGAACCCGTCCACGACGGCGAGGACGTCGTCGGGGCGCTGGTGACCGTCTCGGACACGCAGGCCCTGGAGCGCAACATCTGGCTGAGCTGGGGGCTGCTCACCGCCGGTGGCGTCGCCGTCGCGCTGCTGGCCGTGCTCATCGCGGACCGCACCGCCGGCTGGGTGCTGCGCCCCGTGCGCGTGGTGGACGCCGCGATGGAGCGGATGGGTTCGGGCCGCCTCGACGAGCGCATCCCGCCGTCGACCGGGCCGCCCGAGCTGCGGGAGGTCGTCACCCGGTTCAACGAGATGGCCGAACGCGTCGAGCAGCTGATGCGGCGCCAGCAGGAGTTCGTCGCCAACGCCTCCCACGAGCTGCGCAACCCGCTCAACGCCCTGATGCTGCGCATCGAGGGACTCGCGCTGACCGTGCCGCCCGACCAGGTCGACGAGGTCGAGCACGTGCGTGCCGAGGCCGAGCGCATGGCGCAGATCCTCGACGCCCTGCTGCTGCTCGCCGACGACGCCGGCACGGGCCCCGCCCAGCCGGTGGACCTGGTCGAGCTCGCGGAGCGGCGCATCGAGGGCTGGCGGCTCGTGGAGCGCGGTCGCGAGGTGCGGCTCACCGCCCCCGACCGGCCGGTGTGGGCCGGCGTCGACCCGACCGCGCTCGGCACCGCCCTGGACACCATCGTGGACAACGCCCTGAAGTTCTCCCCGCCCGAGGAGCCGCTGGAGATCGTCGTGCACGACGAGCCCGGGCGGCTCGAGATCGTGGTGCGGGACCACGGGCCCGGCGTCGCCCCGGACCACCTGGCCCGGCTCACCGAACGGTTCTGGCGCAGCCCGGGCCACAGCAACGTGCGCGGGTCCGGCCTCGGGCTCGCGATCGCCTCCGAGCTGCTGTCCTCCGCCGGCGGCAGGCTCCGGCTCGAGCTGCCCGACGACGGCGGGCTGCGGGCCCACCTGCAGGTGCCGGCCTGGGACGACGAGCGCGAGGAGGAGCCCGCATGA	MRARLTALVYVPVALVLVLVGLLYAASVTRAQQQDVFFDRVRDASYLTITARQAILADDPGIVAVDLERYRQVYGIRSAVVDQAGVTLAAAGLEVEDYPQRHTAIAGRPSEMTTSFWPWDVDEVVVAEPVHDGEDVVGALVTVSDTQALERNIWLSWGLLTAGGVAVALLAVLIADRTAGWVLRPVRVVDAAMERMGSGRLDERIPPSTGPPELREVVTRFNEMAERVEQLMRRQQEFVANASHELRNPLNALMLRIEGLALTVPPDQVDEVEHVRAEAERMAQILDALLLLADDAGTGPAQPVDLVELAERRIEGWRLVERGREVRLTAPDRPVWAGVDPTALGTALDTIVDNALKFSPPEEPLEIVVHDEPGRLEIVVRDHGPGVAPDHLARLTERFWRSPGHSNVRGSGLGLAIASELLSSAGGRLRLELPDDGGLRAHLQVPAWDDEREEEPA				NA	NA	NA	NA	NA
AK001_01317	681	regX3_2	COG0745	Sensory transduction protein regX3	GTGCAGCTGTTGGTCGTGGAGGACAACGAGCACGTCGCCGGCGCGCTCGTCTCGGTCCTGGGGAAACACGGGTACGACGTCATCCGTGCCGGGGACGGGTCGACGGCGCTCGACGAGCTGAGCCAGCACACCGACCTGGTGCTGCTGGACCTCGCGCTGCCGGACATGGACGGCTTCGAGGTCTGCCGCCGTATCCGCAAGGTGTCCGACACCCCGATCATCATGGTCACGGCCCGCACGCAGCTCGACGCCCGGATCCGCGGGCTGGAGCTCGGGGCGGACGACTACGTCACCAAGCCCTACGACATCCGCGAGGTGCTGGCCCGCATCGACGCCGTGCTGCGCCGCGGCCGCGCCCGCGAGTGGGACGGCCGCCAGGAAGCCGCTCGGGTCGAGGTCGCCGGCCTGCACATCGACCTCGCGGCCCGCGAGGTGCGTCGCCCGGACGACTCCACCGTCTCGCTCACCCGCAAGGAGTACGACCTGCTCGCCCTGCTCGTGCGGCACCGCGGCACGGCGCTGGCCCGGGAGCGGATCCTGCGGGAGGTCTGGGGGTCGAGCTGGAAGGGGCTCGGGCGCACCCTGGAGGTGCACGTCGCCTCGCTGCGCCGCAAGCTCGGTGACCCGACCGTCGTCGAGACGGTGCGGGGCGTCGGCTACCGCGTCGCCGGGTCCGCGTGA	MQLLVVEDNEHVAGALVSVLGKHGYDVIRAGDGSTALDELSQHTDLVLLDLALPDMDGFEVCRRIRKVSDTPIIMVTARTQLDARIRGLELGADDYVTKPYDIREVLARIDAVLRRGRAREWDGRQEAARVEVAGLHIDLAAREVRRPDDSTVSLTRKEYDLLALLVRHRGTALARERILREVWGSSWKGLGRTLEVHVASLRRKLGDPTVVETVRGVGYRVAGSA	PGPT0002675_406	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776	NA	NA
AK001_01318	996			hypothetical protein	GTGAGCGACGGGCCGACGGCGGACGGGGCCGTCGACGTCGTCCCCGCGCGCCGGGCGTCGGGACAGGTCCGGGCCGTGTGGGTCGTGCGGGCCGTCGCCGTCGGGGGCCTGGCCGTCGTGGCCTGGGCCCTCGCGACGGCGTGGGGAGCCGTCGTGCACGGACATCCCGCCTACGCCGTGCTGCTCGTCCTGACGGTGCTGGGCTGCGTCGCGGCCCTGTGGCGCAGCAGACGCCCGACGACGGCGCGAGGGCGGGCCCGCCGCGTGCTGGGCGTCGTGCTCACCGTCGCCGCGATCGGCTGGATCGGGGCGATCGCCTGGCTGCGCCCGTTCGTCGCCGTCGAACCCGCCCTGGAGGCGACGGGGTCCGACGACGTCGTCACGGTGACGCAGACCCCGACCCGGGTCGAGCTGACACCCGTCGGGGAGTCCAGCGGCACGGCCGTCCTGTTCCAGCCGGGCGCCAAGGTCGAGGCCCGCGCCTACGCCGCCGTGCTGCGCCCCCTGGCCGAGGCCGGCCACACCGTGGTGATCGTCAAGCAGCCCCTGAGCATCGGTTTCCTGGCCACCGGTGCGCTCGACGCCGCACGGGCGGACCTGCCCGCCGTCGAGCGCTGGGTCGTGGGTGGGCACTCGCTCGGCGGGGTGGTGGCGGCCATGGAGGCCGACGCGGCCGACACCGACGCCACGGCCCCCGCCGTCGGGCTCCTGCTCTACGCCTCCTACCCGGCCGGCGACGTCGGCGACACCCTGACCGCGGCGGTCGAGTCCGTCTCCGGCACCGAGGACGGCCTGTCCACCCCGGAGGCGATCGAGGCCTCCCGGGCGGACCTGCCCGCGGGCAGCTCGTTCACCGTGGTCGACGGCGCCGTGCACGCCTTCTTCGGCGACTACGGCCCGCAGCCCGGGGACGGGACCCCGACCATCTCCCACGACGACGCGCGGCAGCAGATCTCTGCCGCGAGCAGGGCGTTCGTCGACGGACTGAGCGGCTGA	MSDGPTADGAVDVVPARRASGQVRAVWVVRAVAVGGLAVVAWALATAWGAVVHGHPAYAVLLVLTVLGCVAALWRSRRPTTARGRARRVLGVVLTVAAIGWIGAIAWLRPFVAVEPALEATGSDDVVTVTQTPTRVELTPVGESSGTAVLFQPGAKVEARAYAAVLRPLAEAGHTVVIVKQPLSIGFLATGALDAARADLPAVERWVVGGHSLGGVVAAMEADAADTDATAPAVGLLLYASYPAGDVGDTLTAAVESVSGTEDGLSTPEAIEASRADLPAGSSFTVVDGAVHAFFGDYGPQPGDGTPTISHDDARQQISAASRAFVDGLSG				NA	NA	NA	NA	NA
AK001_01319	669			hypothetical protein	GTGCCGTCACCGTCGCAGAAGCAGCCCGCCCCGCCCGTCGTCGACCCGGTCGTGCTGACCGACCTCGACCCCGGTGAGGCGGCCGAGCTCGCCCCCGGTGCCGACCTCGAGGGCCGCGCCCACGCCGGGATCGACGTCGACCGCCTCGAGCTCCGCGGCGCGCAGGCCCACACCTCCCGGCTCGACGGCCTGCGGGCCGGCGAGGCCGACCTGCGCCACCTCACGCTGACCGAGGTCGTCATGACCCAGGTCGACGTCCCGGTCGTCGCGGGCATCCGAGGCCGGTGGCGGGACGTCGAGGTGCGCGACGCCCGGGTCGGGTCCGCCGAGCTGTACGAGTCCACCTGGCAGTCCGTGCGGTTCGTCGGCTGCAAGCTGGGTTACGTCAACCTGCGCGGGGCCACCCTGCAGGACGTCGTGTTCACCGACTGCCAGATCGACGAGCTCGACCTCGTCCAGGTCCGGGCGACCCGGGTCGCGTTCGAGGGCACGAGCGTCCGCCGGCTCGACGTGCAGGCGTCCACGCTGCACGACGTCGACCTGCGCGGCGCCGACCTCACCGAGCTGGTCGGGACCGACGCGCTGCGCGGCACCACGGTCACGAGCGAGCAGCTCGCCCAGATCGCCCCGGTGCTCGCGGCCAACCTCGGCATCACGGTGACGGGGTGA	MPSPSQKQPAPPVVDPVVLTDLDPGEAAELAPGADLEGRAHAGIDVDRLELRGAQAHTSRLDGLRAGEADLRHLTLTEVVMTQVDVPVVAGIRGRWRDVEVRDARVGSAELYESTWQSVRFVGCKLGYVNLRGATLQDVVFTDCQIDELDLVQVRATRVAFEGTSVRRLDVQASTLHDVDLRGADLTELVGTDALRGTTVTSEQLAQIAPVLAANLGITVTG				NA	NA	NA	NA	NA
AK001_01320	648			hypothetical protein	ATGATTTCATACATCGGGCGCGGCTACTATGGCCGCATGGCATCCCGTGGCCCCTACGCGAAGGGTCTCGCCAAGCGCGAGGAGATCCTCGACGTCGCCCTCGACGAGTTCGCGCGCCGCGGGTACGACCGGACCTCGATGCGGGAGATCGCCCGGCAGTCCGGACTGAGCCAGGCGGGCCTGCTGCACTACTTCAGCGCCAAGGAGGAGCTCTTCCTCGCCGTGCTGCGCCGGCGGGACGACCGGACCACCGCACCGGACGAGTACAGCCACTCCCACTCGGTCGGCGAGCTGCTCGGGGCCGTCGAGCGGAACGCCGACGAGCCGGGTCTCGTGCGGCTGTTCGTCTCGATGTCGGCCGAGAGCGCCGTCGGGGACGGCAGCGTCGCCCACGACTTCTTCGTGGAACGGTACCGGTGGCTGACCGAGGAGATCGCGACCGACATCCGGGCCCAGCAGGAGGCCGGCGAGTTCTCCACCTCCGTCGACCCCGAGGACGCGGCGTCGATCCTCGTCGCCGTCGCCGACGGCCTGCAGCTCCAGTGGCTGCTCCGTCCCGAGAGCGTCGACATGGGTGCGCGGATCAGCATGTTCTGGTCGCTCCTCAAGGCCGGGGCGTCGGTCCGTCAGGACGACTTCCTAGACTGA	MISYIGRGYYGRMASRGPYAKGLAKREEILDVALDEFARRGYDRTSMREIARQSGLSQAGLLHYFSAKEELFLAVLRRRDDRTTAPDEYSHSHSVGELLGAVERNADEPGLVRLFVSMSAESAVGDGSVAHDFFVERYRWLTEEIATDIRAQQEAGEFSTSVDPEDAASILVAVADGLQLQWLLRPESVDMGARISMFWSLLKAGASVRQDDFLD				NA	NA	NA	NA	NA
AK001_01321	2436			hypothetical protein	ATGGACGACGAGACCAGGACACACCTGCGCACGCTGCGCGAGTCGCTGTCGTTGGACGAGAAGGTGCGGCTGCTGACGGGGCAGGACTCCTGGTCCACGGCCGCGCTGCCCTCCGTCGGGCTGCGCTCCATGGTGCTCTCCGACGGCCCCGCGGGCGTCCGCGGGCAGCTGTGGGACGAGCGCTCGCCGTCGGTCAACTTCCCGTCGCCCACCGCGGTCGCTGCCTCGTGGGACCGGGACATGGTCGAGCGCGTCGGCCGCGGGCTCGGCGGGGAAGCGGTGCGCAAGGGCGCCGACGTCGTGCTCGCCCCGACGATCAACATCCAGCGCACCCCGTACGGCGGACGCCACTTCGAGGCCTTCAGCGAGGACCCGCTGCTGACCAGCGAGCTGGCGACCTGCTACGTGCGCGGCATCCAGGCGTTCGGCGTCGGCGCGACGGTCAAGCACTACGTGGCCAACGACTCCGAGACGGAGCGGTTCACGGTCGACGTCCGCGTCGCGGACCGCACGCTGCGCGAGGTCTACCTCGCGGCGTTCGAGGGTCCCGTCGTGGACGGTGGCTGCCGGCTCGTCATGAGCGCCTACAACTCGGTCAACGGCCGCACCGCGTCGGAGAACGACCTGCTGACGACCCCGCTGAACGACGAGTGGGGGTTCGACGGCGTCGTGGTCAGCGACTGGACGGCGGTGCGGACGCTCGAGAGCGCACGGCACCCCCAGGACCTCGTCATGCCGGGCCCCGACGGGCCGTGGGGTGCGGAGCTGGTCCGCGCCGTCGACGACGGGCGCATCCCGGTCGAGGCCGTGGACCGGAAGGTCGACCGGCTGCTGGCCCTCGCCGCCCGGGTGGGCGCGCTCGAGAGCCTGCCCGCCCCGACGCGGCCGGCGGCCGACGACGCCCACGCGACGGCGCACGCCGCCTCGGTCGCCGGGACCGTCCTGCTGCACAACGACGGGCTCCTGCCCCTGGCGTCACCCCGCTCGATCGCGCTCGTCGGCGAGGGCGCGCGCGTCGCCCGCACCCAGGGCGGCGGGAGCGCGACGGTGATCCCGCCGTCGGTCAGCACACCGGTCGACGGCCTCGCGCGGCGCTGGCCGGACGCCGACGTCACCTGGTCGCTGGGCGCCGTCGTGCAGCGCGGCGTCGCGGACCTGCCGGACGAGGACGTCACGACCCCCGACGGGGACCCGGGCATGACGGTGCGGTACCTCGACGCCGACGGCACGGTGACGCTGGAGGAGGACCGCCGGGCATCCCGCGTGGTCGGCTTCGCGTGGGACTCGCCGGTGGCCCAGGCCGACCGGGTGGAGATGAGCTTCCGCTGGCGCACGGACGACGCCGTGACGCGACTCGGGATCGTGGGCGTCGCCGGCTACACCGTGACGGTGGACGGCGTCGAGGTCGCCACCGGCGAGCAGCACCTCCGGCCCGACGACGACCCGGCGGCGACGGTCCTGCACCCCCCGAGCGAGTCGGTCGAGATCCCCACACCGGCCCCGCACACGCTGGTGACCGTCACGTTCCGACCCTTCGCCGAAGGCATCCCCGACGCCCTCACGCTGGGGGTCGGCGTGCCGCCCACCACACGTGACGCGGACGCCCTGATCGCCGAGGCGGCGGACGCCGCGGCCGCCGCCGAGGTCGCCGTCGTCGTCGTCTCGACCTCCGGCGAGGTCGAGTCCGAGGGGTTCGACCGCGCCTCGCTGTCCCTCCCCGGACGGCAGGACGACCTCGTGCGGGCCGTGGCCGCCGCGAACCCGCGGACCGTCGTCGTGGTGAACTCCGGCGCGCCCGTGCTGCTGCCCTGGCGCGACGACGTGGCCGCGGTCCTGGTCAGCTGGTTCCCGGGCCAGGCGTTCGGCGACGCCCTGGCGGAGGTCCTCGGCGGCGACGCCGAGCCGGGCGGCCGCCTGCCGGTGACGTGGCCGGACGTCGAGGACGAGGTGCCGGTGTCGGACACCCGCCCCGTGGACGGTGTCCTCGAGTACGCCGAGGGCGTGCACGTGGGCAGCCGCGCCTGGCTGCGGGCCGGCGTCGCGCCGGCGTACCCGTTCGGTCACGGGCTGGGTTACACGTCCTGGAGGCTCGACCACGTCGACGCACCCGCCACGCTGACGGCCGGCGACGACGCCGTGCTGCGCGTCGGGCTCACCAACCAGGGCGACCGCGCCGGCAAGACCGTGGCGCAGGTGTACCTCGAGCGCGCGACGCCGTCCGAGGTGGACCGGCCCGTGCGCTGGCTGGGCGGCTTCGCGACGGCGACGGCGGGTCCGGGCGAGACCGTCGTGGTCGACGTCCCGGTCGCCGCCCGGGCCTTCCAGCACTGGGACGACGGATGGCGCACCGAGCCCGGCACCTACGTGGTGCGCGCCGGGTTCTCGGTCGAGGACCTGCCGGCCGAGGTCGACCTGTCCGTCGAGACGGCGCGATGA	MDDETRTHLRTLRESLSLDEKVRLLTGQDSWSTAALPSVGLRSMVLSDGPAGVRGQLWDERSPSVNFPSPTAVAASWDRDMVERVGRGLGGEAVRKGADVVLAPTINIQRTPYGGRHFEAFSEDPLLTSELATCYVRGIQAFGVGATVKHYVANDSETERFTVDVRVADRTLREVYLAAFEGPVVDGGCRLVMSAYNSVNGRTASENDLLTTPLNDEWGFDGVVVSDWTAVRTLESARHPQDLVMPGPDGPWGAELVRAVDDGRIPVEAVDRKVDRLLALAARVGALESLPAPTRPAADDAHATAHAASVAGTVLLHNDGLLPLASPRSIALVGEGARVARTQGGGSATVIPPSVSTPVDGLARRWPDADVTWSLGAVVQRGVADLPDEDVTTPDGDPGMTVRYLDADGTVTLEEDRRASRVVGFAWDSPVAQADRVEMSFRWRTDDAVTRLGIVGVAGYTVTVDGVEVATGEQHLRPDDDPAATVLHPPSESVEIPTPAPHTLVTVTFRPFAEGIPDALTLGVGVPPTTRDADALIAEAADAAAAAEVAVVVVSTSGEVESEGFDRASLSLPGRQDDLVRAVAAANPRTVVVVNSGAPVLLPWRDDVAAVLVSWFPGQAFGDALAEVLGGDAEPGGRLPVTWPDVEDEVPVSDTRPVDGVLEYAEGVHVGSRAWLRAGVAPAYPFGHGLGYTSWRLDHVDAPATLTAGDDAVLRVGLTNQGDRAGKTVAQVYLERATPSEVDRPVRWLGGFATATAGPGETVVVDVPVAARAFQHWDDGWRTEPGTYVVRAGFSVEDLPAEVDLSVETAR	PGPT0019110_1993	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_01322	1149			hypothetical protein	ATGAGCCACGACGTGCTCCGGGGCGGGTGCGACCCGGCCTTCCGGTCCGTCGCCGACCGCTTCGCCGCCCTGGTCGAGGCGGACCCGACCCTCAGCGCCCAGCTGAGCGTGCGGGTCCGCGGCGAGCCCGTCCTCGACCTCGCCGGCGGTCCGCACCTGACCGTCGACGCGGTCACGGGGGTCTACTCGGCCACCAAGGGGGTCGCCGCGCTCGTCGTCGCCCACCTCCTCGACCGCGGCCTGCTCGACCCCGACCGGGTCGTCGCGGACTACTGGCCCGAGTTCGGCGCGGCGGGCAAGGACCAGGTCACCGTCCGGCAGCTGCTCTCGCACCAGGCGGGACTCCCGCTCGTGGAGCGACCGCTGGGCGTGGCGGACGTCGTCGACTCCCGGGCCGCCGCCGCGGTCCTCGCCGCGCAGCGGCCGCTGTGGCGTCCCGGGTCGGCGTTCGGCTATCACGCGCTGACCATCGGCATCCTCGTCGAGGAGCTCGTGCGGCGGGTCACGGGGCGCACCCTGCAGACGGTGTACGAGACGTCGGTCCGCGGTCCGCTCGACGCGGACTTCCACCTCGGCCTGCCCGAGGCACTGGACGGCCGCTACGTCCCGGTCCAGGACCCGGAGCTCACCGCGGAGCAGGCGGCCGAGGTCGCCGCCCGACCGCCGGCCGACGCGATCGCCGAGGCGGTGTTCTCGAACTTCTCCGTGCCGGACGACCGCTCGCAGGAGGGCGCCAGCACGAACAACCCCGCGGTGCGCCGGGCCGGCTTCGCGGCGATCGGCGGCGTCGGCTCGGCGAGAGGCCTCGCGCAGGTCTACGCGGCCGCGCTCCCGGGCGGCGGGGTGCACGTCGCCGCCCCCGAGGTCTTCGCCGAGATGGCGCAGCAGCACGCGTGGGGCACCGACCGCGTGCTCGGCGTCCCGAACTGCTTCGGCATGATGTTCATGCTGCCGCAGCCGCGGCAGCCGTTCGCCGGCCTCGGCGCGTTCGGCCACGACGGCGCCGGCGGCGCGCTCGCGTTCGCCGATCCCCGCACGGGAGTCGCCTTCGGCTACGTCCCCTCCCCCATGCAGCATCCCGGCGGCGCCGACCACCGCGCGGTGGAGCTCGCGCGGCTCGCCGTCGCCGTGGCGCGAGCCGCCGGCTGA	MSHDVLRGGCDPAFRSVADRFAALVEADPTLSAQLSVRVRGEPVLDLAGGPHLTVDAVTGVYSATKGVAALVVAHLLDRGLLDPDRVVADYWPEFGAAGKDQVTVRQLLSHQAGLPLVERPLGVADVVDSRAAAAVLAAQRPLWRPGSAFGYHALTIGILVEELVRRVTGRTLQTVYETSVRGPLDADFHLGLPEALDGRYVPVQDPELTAEQAAEVAARPPADAIAEAVFSNFSVPDDRSQEGASTNNPAVRRAGFAAIGGVGSARGLAQVYAAALPGGGVHVAAPEVFAEMAQQHAWGTDRVLGVPNCFGMMFMLPQPRQPFAGLGAFGHDGAGGALAFADPRTGVAFGYVPSPMQHPGGADHRAVELARLAVAVARAAG				NA	NA	NA	NA	NA
AK001_01323	2247			Alpha-L-rhamnosidase	ATGACGACCGATCCCCTCGACGGCGCGCGCTTCCTCGGCTCGGACGCCGACCGCGAGGCGGCGGCCCGCTTCTGGGTCGAGCGCGAGCTCGACCGGCCCCGCACCGAGATCACCGGCGCGGTGCTGCGCGCCACCGCCCACGGCGTCTACGAGGCCCGCGTCGACGGCTCGCCCGTGTCGGACTCGGTGCTGGACCCGGGCTGGACCTCGTACGAGTGGCGGCTGGCGTACCAGGAGCACGACGTGCGCGCGCTGGTCGCCGACGGCGACGGACCGCTGCGCATCGACCTCCTGCTGGGCAACGGCTGGTACCGGGGCGACCTCGGCTTCGCCGACGCGCGGGCGAACTACGGCGAGGAGATCGCCGTCGCGGCGGTCCTGGACCTCACCTACCGGGACGGCTCCACGCAGCGTGTCGCGACCGGGGACGGCTGGTCGGCCGAGACGACGGAGGTCCCGCGCAACTCCCTCTACGACGGCCAGACGATCGACGCGCGCCTGCGCGGGCGCCCGTCGCCGCTGACGGTGCACGAGGTGGACGTCGACCGCTCGACCCTCGTCGCCCCGGTGGGCCCGCCCGTGCGGCGCCAGGAGACGCTCCGTCCGGTCGAGATCTGGCCGGCACCGGGCGGAGGCACGCTCGTGGACTTCGGCCAGAACCTCGTCGGCTGGCTCCGGTGCACGGTGCAGGGTCCCGCCGGCACCGAGATCGAGATCCGCCACGCCGAGGTGCTGGAGCACGGCGAGCTCGGCACCCGACCGCTGCGGGGCGCCGCCGCCCGCGACCTGTTCGTCCTCTCGGGCGGCGTGGACACGTTCGAGCCGACGCTCACCTTCCACGGGTTCCGCTACGCCCTGGTGACCGGATGGCCCGGCGAGCTGACCACCGACAGCCTCGAGGCGGTCGTCGTGCACTCCGAGATGGCCCGCACCGGGACCTTCGCCTGCTCCGACCCCGACGTGAACCAGCTCGTCCACAACTCGGTGTGGGGCCAGAAGGGCAACTTCCTCTCCGTCCCGACCGACTGCCCGCAGCGCGACGAACGGCTGGGCTGGACCGGCGACATCGCCGCCTACGCGGCGTCCGCGGCCTTCCAGTTCGACTCGGCCGACTTCCTGCACGACTGGCTCGCCGACCTGCGCGTCGAGACCGAGCACTCGGCCGATCGCGGCGTGCCGCTCGTCGTGCCCGACGTGCTCAAGTACGAGCGCTGGCCCGAGGACTTCAGCCTGCCCCCGTGGGCCGCCACGGCGATCTGGGGCGACGCGGCCGTCTGGGTCCCCCAGGCGCTGTGGACGGCCTACGGCGACGCCGGACGCCTGGCCGAGCACTACCCGGCCATGAAGATGCACCTCGAGTCCGTCGAGCCCTACATCTCGCCCACGGACCTGTGGGACCTGGGCAACCAGCTCGGCGACTGGCTGGACCCCGACGCCCCGCCGGAGGACCCGGGCGCCGGCAAGGCCGACCCGTCGGTCGTGGCCACGGCGTGCCTCGTCCGGACGGCGCGGTTCGCCGCCGAGGCGGCCGCCGTCGCCGGCGAGACGGCCGACGCCGAGCGGTGGGCGCGGCTGGCGGCCCGCACGCGCGCGGCGTTCAACGAGCACTACGTCGAGAACGGCGTCGTGCGGTCGGACTGCACCACCGTGTACGCCCTCGCGATCGCGTTCGACGTCCTCGACGACGCCGACCGGGCCGTCGCGGGCGACCGCCTTGCCGAGCTGGTGCGGGCGGCGGGATACACGGTGACGACGGGGTTCGCGGGCACGCCCTTCATCACGTGGGCCCTGTCGGAGACCGGGCACGTCGACGACGCGTACGCCCTCCTGCTGGAGAAGTCGTGCCCGTCGTGGCTGTACCCGGTCACGATGGGCGCGACCACGGTGTGGGAACGCTGGGACTCGATGCTGCCCGACGGGTCGATCAACCCGGGCGAGATGACGAGCTTCAACCACTACGCGCTCGGTGCCGTGGCCGACTGGATCTACCAGGTCGTCGGCGGCCTCCGTCCCGCCGCCCCCGGCTACGACCGCGTCCGGGTCGAGCCCGTGCCCGGCCCGGGGATCGACTGGGCCGAGACCGCGTACGAGACCCGGCACGGTCGGGTCTCGGTCGCGTGGCGGCGCGACGACGACGGCTTCACCCTCGATGTCGCGCTGCCCGACGGGCTCCCCGCCGAGATCGTCCTGCCGGACGGCCGCGTCGAGGAGGTCGTGGGCGGCACCCACCACCTGACCGCGGCCTGA	MTTDPLDGARFLGSDADREAAARFWVERELDRPRTEITGAVLRATAHGVYEARVDGSPVSDSVLDPGWTSYEWRLAYQEHDVRALVADGDGPLRIDLLLGNGWYRGDLGFADARANYGEEIAVAAVLDLTYRDGSTQRVATGDGWSAETTEVPRNSLYDGQTIDARLRGRPSPLTVHEVDVDRSTLVAPVGPPVRRQETLRPVEIWPAPGGGTLVDFGQNLVGWLRCTVQGPAGTEIEIRHAEVLEHGELGTRPLRGAAARDLFVLSGGVDTFEPTLTFHGFRYALVTGWPGELTTDSLEAVVVHSEMARTGTFACSDPDVNQLVHNSVWGQKGNFLSVPTDCPQRDERLGWTGDIAAYAASAAFQFDSADFLHDWLADLRVETEHSADRGVPLVVPDVLKYERWPEDFSLPPWAATAIWGDAAVWVPQALWTAYGDAGRLAEHYPAMKMHLESVEPYISPTDLWDLGNQLGDWLDPDAPPEDPGAGKADPSVVATACLVRTARFAAEAAAVAGETADAERWARLAARTRAAFNEHYVENGVVRSDCTTVYALAIAFDVLDDADRAVAGDRLAELVRAAGYTVTTGFAGTPFITWALSETGHVDDAYALLLEKSCPSWLYPVTMGATTVWERWDSMLPDGSINPGEMTSFNHYALGAVADWIYQVVGGLRPAAPGYDRVRVEPVPGPGIDWAETAYETRHGRVSVAWRRDDDGFTLDVALPDGLPAEIVLPDGRVEEVVGGTHHLTAA	PGPT0019195_1336	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-RHAMNOSIDASE,PGPT0019195-ramA-K05989	NA	NA
AK001_01324	1002	gpr_1	COG0667	L-glyceraldehyde 3-phosphate reductase	ATGAAACATCGATACCTCGGCAGCTCCGGACTGAAGATCTCGGAGATCACGCTCGGCAACTGGCTGACGCACGCGTCCCAGGTCGAGGACGACGCGGCGGCCGCGTGCGTGCACGCGGCGCTCGACGCCGGCATCACCACCTTCGACACCGCCGACATGTACGCCGACACCGAGGCCGAGCGGGTTCTCGGCGACGCCCTGCGAGGGCAGCGCCGGGAGTCGCTCGAGATCTTCACCAAGGCCTACTACCCCGTCGGTCCCCAGGGTCCGAACGACGGGGGGCTGTCCCGCAAGCACCTGATGGAGTCCATCGACGGGTCGTTGCGGCGCCTCGGCACCGACTACGTCGACCTCTACCAGGCGCACCGCTGGGACAACGCGACGCCCCTGGAGGAGACGATGGTGGCCTTCGCCGACATCGTCCGGTCGGGCAAGGCGCTCTACATCGGCGTGAGCGAGTGGACCGCCGACCAGCTGCGCGCCGGGGCCGCGCTCGCCCGCGAGCTGCGGATCCCGTTCGTCTCGAACCAGCCGCAGTACTCGGCCCTCTGGCGCATCATCGAGGCGGAGGTCGTCCCCGCCTCGCGCGAGCTCGGCATCTCGCAGATCGTCTGGTCGCCCGTGGCCCAGGGCATCCTCACCGGCAAGTACCGGCCCGGTCACCGGCCGCCGTCGGGCAGCCGCGCCACCGACGGCAACGGCGGTGCCCAGATGATCACCCGCTTCCTGCGGGACGAGGTCCTGGAGCGTGTCGAGAAGCTGCGGCCCGTCGCCGACGAGCTCTCGCTCACCATGGCGCAGCTCGCCGTGGCCTGGGTGCTCCAGAACGACAACGTCTCCGCGGCGCTCATCGGGGCCTCGCGTCCCGAGCAGGTCGCCGAGAACGTCGCGGCGTCCGGCGTCGTCATCCCCGCCGAGCTCATGGCGCGGATCGACGAGGCGCTCGGCGACGTCGTCGAGCGCGACCCGGCGAAGACCGCCGCGGAGTCCCCCGTGCGCTGA	MKHRYLGSSGLKISEITLGNWLTHASQVEDDAAAACVHAALDAGITTFDTADMYADTEAERVLGDALRGQRRESLEIFTKAYYPVGPQGPNDGGLSRKHLMESIDGSLRRLGTDYVDLYQAHRWDNATPLEETMVAFADIVRSGKALYIGVSEWTADQLRAGAALARELRIPFVSNQPQYSALWRIIEAEVVPASRELGISQIVWSPVAQGILTGKYRPGHRPPSGSRATDGNGGAQMITRFLRDEVLERVEKLRPVADELSLTMAQLAVAWVLQNDNVSAALIGASRPEQVAENVAASGVVIPAELMARIDEALGDVVERDPAKTAAESPVR	PGPT0010570_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	TUMORICIDAL_COMPOUNDS	TUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967	NA	NA
AK001_01325	831	melC_1	COG0395	Melibiose/raffinose/stachyose import permease protein MelC	GTGAGCCGCACCGTCTCGCGCCACGTCTACGGCGCCGTCGCCGTGCTGTTGTCGGCGGCCATCTTCCTCGTCCCGTTCGCGTTCATCGTCCTGCAGTCGCTCAAGACGGGTCCGGACTCGGCGGGCCTGGAGTTCTCCTGGCCGGTCGACATCGTCTTCTGGGAGAACGTCGTCGCCGTCTTCCAGGCACGCGACTACATGCTCATCACGGCGTTCATCAACAGCACGATCCTGACGGTGCTGTCGGTGTCGATCATGGTGGTGCTGGCGGCGATGATCGGCTGGGTGCTCGCCCGGCGACCGTCGCGCTGGAACGGGGTGATCACGTTCTTCGTGCTGGCGGGGCTGATCGTGCCGCCGGCCATCGTCCCCACCGCCCGGCTCATGCAGACCCTCGGCATCTTCAACACGATCGGCGGACTCGTCCTCATCGAGGTCGCCTTCGGCATGTCGTTCTGCGTCCTGCTCTTCCGGGCGTTCGTCTCGAACGTCCCGCGGGAGCTCGACGAGGCGGCGACGATCGACGGCGCCGGACCGATCCGGCTGTTCTTCAAGATCGGCTTCCCGCTGATGAAGAGCGTGATCGTCACGGCCATCGTGGTGCAGTCGGTGACGGTGTTCAACGACTTCGCGAACCCGTTGTACTTCGCCCCGGGCGAGGAGAACGCCACCGTCCAGCTGACGCTGTTCAACTTCCAGAGCCAGTTCCAGACGACCTGGAACCTGCTGTTCACCGACATCCTGCTCATCACCATCCCGCCGTTGGTGATGTACATCTTCTTCAACCGTCAGATCGTGGCCGGGATGACCTCCGGCGCCGTCAAGGGGTGA	MSRTVSRHVYGAVAVLLSAAIFLVPFAFIVLQSLKTGPDSAGLEFSWPVDIVFWENVVAVFQARDYMLITAFINSTILTVLSVSIMVVLAAMIGWVLARRPSRWNGVITFFVLAGLIVPPAIVPTARLMQTLGIFNTIGGLVLIEVAFGMSFCVLLFRAFVSNVPRELDEAATIDGAGPIRLFFKIGFPLMKSVIVTAIVVQSVTVFNDFANPLYFAPGEENATVQLTLFNFQSQFQTTWNLLFTDILLITIPPLVMYIFFNRQIVAGMTSGAVKG	PGPT0016340_1861	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_01326	933	melD_5	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGGCGACACTCGCCCCTCCTGACGCATCGGACACCGCGGCACGGACGCCCGGACGGCGCTCGTCCTCGCGCAAGTACGCGCACCGCATGTACCCGCACTGGTTCCTCCTGCCCGGAGCCGCGGTCTTCGTCGTGCTGTTCATCGTGCCGACGTTCGCGTCGTTCTACTACGCGTTCACCCGCTGGACGCTGTTCGACGTCGAGTTCATCGGCTTCGACAACTTCGTCACGTTCTTCAGCGACCCGCAGCTGAGCAAGGGTTTCACGAACACCCTGATCTTCGGCGCCCTGACCTCCGGCCTGAAGATCGTGCTCGGGCTGCTCCTCGGCGTCCTGCTCACCTCCAACATCTGGGCACGCGGGTACCTCCGGGCCGTGGTCTTCTTCCCCGTGCTCGTGAGCGTCGTCGGCGTGGGGATCACCTTCCAGGCGCTGATGGACCCGTACGACGGCGTCATCAACGAGTTCCTGGCGATCTTCGGCATCGACGGTCCGGGATGGCTGACGAACCCGGACCTCGCCCTCTACTCGATCATCCTGGTCGACGTGTGGCGCGGGGTCGGGCTGGCAGCGCTCATCTACATGGCAGGACTCGTCGCGATCCCCCAGGAGTACTACGAGGCGGCGCGGGTGGACGGTGCCACGGGATGGCACCGGTTCTGGAACGTCACCGTGCCGCTCGTCCGCCCGGCGACCACCACGGTCATCATCCTGTCCCTCATCGGCGGGCTCCGGGAGTTCCAGCTGATCTGGGTCATGACCGGTGGCGGACCCGGGTTCGCCAGCGACGTGCTCGCGTCGGTCATCTACAAGCAGTACGCCTACGGCTTCTTCGGCCTGTCCACCGCGGGCAACGTCGTCCTCTTCGTGGTCGTGAGCACTGTCATCCTGCCGCTGTTCTGGTGGCTCAACCGAAAGCAGACAGAACTGTGA	MATLAPPDASDTAARTPGRRSSSRKYAHRMYPHWFLLPGAAVFVVLFIVPTFASFYYAFTRWTLFDVEFIGFDNFVTFFSDPQLSKGFTNTLIFGALTSGLKIVLGLLLGVLLTSNIWARGYLRAVVFFPVLVSVVGVGITFQALMDPYDGVINEFLAIFGIDGPGWLTNPDLALYSIILVDVWRGVGLAALIYMAGLVAIPQEYYEAARVDGATGWHRFWNVTVPLVRPATTTVIILSLIGGLREFQLIWVMTGGGPGFASDVLASVIYKQYAYGFFGLSTAGNVVLFVVVSTVILPLFWWLNRKQTEL	PGPT0016335_588	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_01327	876	sseB	COG2897	Putative thiosulfate sulfurtransferase SseB	GTGACGCCGCCCGGGGCGGAGCACCGGGGCAAGGTCCTGGTCGACGCGGACGTGCTGGCCGCCGACCTGCAGCTCGGTGGGCTCGAGGACCCCTTCGGCGGGGCCCCGGTGCTGCTCGACGTGCGCTGGGCGCTGGGCCGGACGGACGGCCGGGACCGCTACGAGGAGGGGCACCTGCCCGGGGCGGTGTACGTCGACCTGGAGACCGAGCTCGCCTCGGTGCCCTCCCCGGCGAGCGGTCGTCACCCGCTGCCCTCGGCCGCGGAGTTCCAGCGCACGGCCCGCTCCTGGGGTGTGGGGACGGACTCGCGGGTCGTGGTGTACGACGACGTCGGCGGGACGTCCGCGGCGCGCGCCTGGTGGCTGCTGCGCTGGTTCGGGCACCACGCGGTGCGGATCCTCGACGGCGGTCTCGAGGCGTGGCGGCGGGCGGGCCACCCGCTCGAGGTCGGCCTGACCACGCGCGTGCCGGGCGACGTCGTCGTGCACCCGGGCGGGATGCCCGTGCTGGACGCCGACGACGCGGCCGACCTGGCGACGTCGGGCGTGCTGCTCGACGCGCGGGCCGCCGAGCGCTACTGGGGCGAGGTGGAGCCGGTCGACCCGCAGGCCGGGCACATCCCCGGTGCCGTCTCGGCGCCCACGACGGGCAACCTCGACGACGACGGCACGTTCCGGTCGCCGCACGAGCTGGAAGCGCGGTTCGCCGCCCTCGGCGTGACGAGGTCCGCCCCGGTCGGGGTGTACTGCGGGTCGGGCGTCACCGCCGCGCACGAGGTCGCGGCGCTGGCCTCGGTCGGCGTGACGGCGGCGTTGTACCCCGGGTCGTGGTCGCAGTGGTCGAACGACCCGGGCCGACCCGTCGCCACCGGCTGA	MTPPGAEHRGKVLVDADVLAADLQLGGLEDPFGGAPVLLDVRWALGRTDGRDRYEEGHLPGAVYVDLETELASVPSPASGRHPLPSAAEFQRTARSWGVGTDSRVVVYDDVGGTSAARAWWLLRWFGHHAVRILDGGLEAWRRAGHPLEVGLTTRVPGDVVVHPGGMPVLDADDAADLATSGVLLDARAAERYWGEVEPVDPQAGHIPGAVSAPTTGNLDDDGTFRSPHELEARFAALGVTRSAPVGVYCGSGVTAAHEVAALASVGVTAALYPGSWSQWSNDPGRPVATG	PGPT0002045_2426	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011	NA	NA
AK001_01328	558	rimI	COG0456	N-alpha-acetyltransferase RimI	ATGACGCAGCGTCCGGTGTCCGTGCGGCTGCGACCGCTGGCCAGCGCCGACTTCGACCGCATCCTGCAGCTCGAGCACGAGCTCTTCGGTCCGGGCGCCTGGACCTACGGCATGCTCGCCGACGAGCTGGCGGGGCTCGGACGCTGGTACGTCGTCGCGGAGCTCGACGGACCCGACGCGTTGGGTCTCGGCCCGGGTCGGCGGCCCGTGGTGGGCTACGCCGGCCTGTGGTTCGACGGCGACGTCGCCCAGGTCATGACGATCGGCACGGCGCGGGAGTACCAGGGCCGCGGCGTGGGCCGACAGCTCCTGCAGGCGCTGGTGGACCGCTCCCGGCAGCTGCGGTCGAGCGCGCTGCTGCTCGAGGTCGCCGTCGACAACGACCGCGCGCTGGCGCTGTACGGCCGGTTCGGGTTCGAGCAGCTCGGCCTGCGCAAGCGCTACTACCAGCCCGAGGACAAGGACGCCTACACGATGCGGCTGGACCTGTCGGCCGCGGCCGCGTCCACCGCTCCGGAGGCCCGCACCTCGTCCGGACCCGCCGGCGGCGCCGCGTGA	MTQRPVSVRLRPLASADFDRILQLEHELFGPGAWTYGMLADELAGLGRWYVVAELDGPDALGLGPGRRPVVGYAGLWFDGDVAQVMTIGTAREYQGRGVGRQLLQALVDRSRQLRSSALLLEVAVDNDRALALYGRFGFEQLGLRKRYYQPEDKDAYTMRLDLSAAAASTAPEARTSSGPAGGAA	PGPT0002045_46	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011	NA	NA
AK001_01329	741		COG1214	putative protein	GTGGCAGTTCTCGCGATCGACACGTCCGCCGCCGTCTCCGTCGCCCTGGTCGACGACGACGGCGGCCGCCTCGCCGTCCGCACCGCCGACGAGCGCCGTCGGCACGCCGAGTCCCTCGCCCCGCTGATCGCCGAGGTGCTGGCCGCGGCAGGGCTGGAGCGGACCGACCTGACCGCCGTCGTCGGTGGCACCGGGCCCGCGCCGTTCACCGGTCTGCGGGTCGGCCTGGTCACGGCCCGCACGCTGGCGCTCGCCCTGGGCATCGAGGTCCTCGGCGTCCCGAGCGTCGACGCGCTCGCCGTCGAGGCCGTCGCCGACCTGGGACTGGACCCCGGTGACGAGGTCCTCGTGGCGACCGACGCCCGGCGCAAGGAGGTCTACTGGGCCCGGTACCGCGTCGTCGCGCACGAGGGGCCGCACGGCCTCCCCGTCGTCGAGGTGCTGAGCGGACCCGAGGTCGCCACGGCCGCCGCCGTCGCGGACGCCCACCTCGACGCTCCCGCGGCGGACGGCGCACGGCTCGCCGTCGTGGGGGAGGGCACCAGCCTCTACCCGGACCGCCTACCGGCCGAGGAGGACGCCCCCGTCCTGCCGGACGCGACCGTGCTCGCCCGGCTGGCGCTGGCCCGCCGCGCCGCGGGCGTGGAGCAGCCGACGGAGCCACTGTACCTGCGGCGCCCGGACGTCCAGGAGCCCACCGGGAACCGGAGCATCCTGCGTGCCGCCGGGAGCGGGGCATGA	MAVLAIDTSAAVSVALVDDDGGRLAVRTADERRRHAESLAPLIAEVLAAAGLERTDLTAVVGGTGPAPFTGLRVGLVTARTLALALGIEVLGVPSVDALAVEAVADLGLDPGDEVLVATDARRKEVYWARYRVVAHEGPHGLPVVEVLSGPEVATAAAVADAHLDAPAADGARLAVVGEGTSLYPDRLPAEEDAPVLPDATVLARLALARRAAGVEQPTEPLYLRRPDVQEPTGNRSILRAAGSGA				NA	NA	NA	NA	NA
AK001_01330	549			hypothetical protein	GTGAGTGACGTCGTCGCGCAGGTCGAGCTGGACCTGCCCGAGGCCGCGGACGCGCGGGCGCTGGGCGGGGCGCTGTCGGGGATCCTGCGGGCCGGGGACCTGGTGATCCTCACCGGCGATCTCGGCGCGGGCAAGACCACCCTGACCCAGGGGCTGGGCCGTGCGCTCAACGTGCGCGGCCAGGTCGCGTCCCCCACCTTCATCGTGGCGCGCGAGCACCCGCCGCTGCCGCGCCAGGACGGGACCCTCGGCCCGGCGCTGGTGCACGTGGACGCCTACCGCCTCGGCGGCCTGGACGAGCTGGACGCCCTCGACCTGGACTCGTCGCTCGACGAGTCCGTCACCGTCGTCGAGTGGGGCCGCGGGCTGGCCGAGGCGCTCACCGACGACCGGCTCGAGGTCGACCTGCAGCGTCCGCGCGGCGGCGACGTCGACACCGAGCACCCCGAGGCCGGCGTCCGGCGCGCGACCGTGCGCGCCGTCGGCCCGCGCTGGCAGGGCGTCGACCTGACCCGGCTCGTGCCGCGCCCGCGCCCCAGCGAGGTCTGA	MSDVVAQVELDLPEAADARALGGALSGILRAGDLVILTGDLGAGKTTLTQGLGRALNVRGQVASPTFIVAREHPPLPRQDGTLGPALVHVDAYRLGGLDELDALDLDSSLDESVTVVEWGRGLAEALTDDRLEVDLQRPRGGDVDTEHPEAGVRRATVRAVGPRWQGVDLTRLVPRPRPSEV	PGPT0024095_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798	NA	NA
AK001_01331	1242	alr	COG0787	Alanine racemase	GTGACGACTCCCGCCTTCGACGACGGCACCCCGGCCCGCGCGATCGTCGACCTCGACGCGATCCGCGACAACGTCTCCGCGCTGCGCGACCACGCGCCGTCGGCCGACCTGATGGCCGTCGTCAAGGCCGACGGCTACGGCCACGGCATGCTCCCCGCGGCCCGGGCGGCGCTCGCGGGCGGGGCGCACTGGCTCGGGGTGGCGACCGCCGAGGAAGCCCTCGCCCTGCGTGCCGGGCTGGGCCCCGACGTGCCGGTGCTCGTCTGGCTCCTCACCCCGGGGGCGCCGTTCGCCCAGCTGATCGCGGCCGGCGTCGACGTCACCGTGGCGGCCCCCTGGGCGCTGGACGAGGTCGCCGCCGGAGCGCGGGCGGCCGGACGGGTCGCCCGGGTGCACGTCAAGGTCGACACCGGCCTGTCGCGCAACGGCGTCGCGATGGGCGACCTGCCGCGGGTGGCCCGCCGGGCGGCCGGGCTGGAGTCCTCGGGGGAGATCCACGTCGTCGGGGTGTTCTCGCACCTGGCCTGCGCCGACGAGCCCGGCCACCCGTCGATCGACCGCCAGGCGGCGGCCTTCGACGCCGCGCTGGAGGAGATGGCCGGTGCCGGGTTGCGGCCCGAGGTGCGGCACCTCGCGAACTCCGCGGCCACGCTCACCCTGCCGGGGTTGCACTACGACCTGGTGCGGCCCGGGATCTCGGTCTACGGCAACTCGCCCGGTCCGCTCCTCGGGCCACCCGGCCGGTACGGGCTGCGCCCGGCCATGACGTTCGAGGCACGGCTGGCGAACGTCAAGCACGTCGCCGCCGGCGAGGGCGTCTCCTACGGCCACCTGTACACCACGACCCAGGACACGACCGTGGGCCTGGTCCCGGTGGGCTACGGCGACGGCGTCCCGCGGCACGGCTCGGGCGGCGCGGCCGGTCCCGGCGGACCGGTCGCCGTCGGCGCGGACGGCTCCGGCCGGGTGCTGCGCGTGGCGGGCCGGGTCTGCATGGACCAGTTCGTCCTCGACCTCGGACCGGGGGCCGCCGAACGAGCGGGCGACGTGGTGACCCTGTTCGGCGCGTCGGACGGCGTGGCGCACGGGGCACCGCTGCCGAACGCCCAGGACTGGGCCGACGCCGCGGGGACCATCAGCTATGAGATCGTGACGCGTCTGGCTCCGCGGGTGCCGCGGACGTACGTCGGCACCGCCGGGTCGGACACGGACCGCACGACCGAAGGAGAGGCACAGCAGTGA	MTTPAFDDGTPARAIVDLDAIRDNVSALRDHAPSADLMAVVKADGYGHGMLPAARAALAGGAHWLGVATAEEALALRAGLGPDVPVLVWLLTPGAPFAQLIAAGVDVTVAAPWALDEVAAGARAAGRVARVHVKVDTGLSRNGVAMGDLPRVARRAAGLESSGEIHVVGVFSHLACADEPGHPSIDRQAAAFDAALEEMAGAGLRPEVRHLANSAATLTLPGLHYDLVRPGISVYGNSPGPLLGPPGRYGLRPAMTFEARLANVKHVAAGEGVSYGHLYTTTQDTTVGLVPVGYGDGVPRHGSGGAAGPGGPVAVGADGSGRVLRVAGRVCMDQFVLDLGPGAAERAGDVVTLFGASDGVAHGAPLPNAQDWADAAGTISYEIVTRLAPRVPRTYVGTAGSDTDRTTEGEAQQ	PGPT0020040_279	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775	NA	NA
AK001_01332	966			hypothetical protein	ATGCCGTCCCCGCGCAAGCACGTCCCGCCCCTGCCGGTGCGCGACGGCCTGAACCCCACCCGGCTCGTGCTGCCGCACGACGCGGCCTCCGTGGCACGGTTCGCGACGGCCGCCCAGTACCTGCTGGACCGCTTCCCGCACGACGCGGCCCGCCTGCGCGAGAAGATCGCCGCGGGGGAGGTCGTCACCGGTGACGGCACCCGGGTCACGGACGACACGCCGTACCGGCCGCGGGGCTTCGTCTACCTCTACCGCGACCCCCCGGCCGACGAGCCCGACGTCCCGGCGCTGGCCGAGATCGAGGTGCTGCACCGCGACGAGGACCTGCTCGTGGTGGACAAGCCGCACCGGGTCGCCACGATGCCGCGCGGCCGGTGGGTCACCCGCACCGTGCTGACCCACCTGCGGCGCCAGCTCGACCTGCCGGAGCTCGTCCCCGCGCACCGCCTCGACCGGCCGACCGCCGGCGTCCTCGTGCTCACGGTCCGGCCCGAGGTCCGGGGCCCGTACCAGCTCGTCTTCCAGGAGCGCCGCGCGCACAAGGTCTACGAGGCGGTCGCCCCGCTCCCCGCGGCCGACGACGGCGGCACCGCCTTCCCGCGGACGGTCCGGTCGCGCATCGTCAAGCGCCGCGGGTCGGTGCGGGCCGAGGAGGTGCCCGGCGAGGTCAACGCGGAGTCGTGGATCGACCTCGTCGACCGGGACCCGGACCGCGGGCTCGGCCTGTACCGTCTCGAGCCGCGCACGGGCAAGACGCACCAGCTCCGGCTGCACATGGCGGGCCTCGGCCTGCCGATCAGTCACGACCCGTTCTGGCCCGTGCTGCGCGCCGGGTCCGACGACGACGCCGACGTGGGCCCGCCGCTGCAGCTCCTGGCCCGCACGCTCACCTTCGCCGACCCGCTGACCGGCCGGTCGCGCCGCTTCACCTCCCGGCGCGACCTGTCCGCCTGGCACTCCCGCTGA	MPSPRKHVPPLPVRDGLNPTRLVLPHDAASVARFATAAQYLLDRFPHDAARLREKIAAGEVVTGDGTRVTDDTPYRPRGFVYLYRDPPADEPDVPALAEIEVLHRDEDLLVVDKPHRVATMPRGRWVTRTVLTHLRRQLDLPELVPAHRLDRPTAGVLVLTVRPEVRGPYQLVFQERRAHKVYEAVAPLPAADDGGTAFPRTVRSRIVKRRGSVRAEEVPGEVNAESWIDLVDRDPDRGLGLYRLEPRTGKTHQLRLHMAGLGLPISHDPFWPVLRAGSDDDADVGPPLQLLARTLTFADPLTGRSRRFTSRRDLSAWHSR				NA	NA	NA	NA	NA
AK001_01333	624			hypothetical protein	ATGCGAACCACACGAGGGGCGGCGACGGCCGCCGCGACCCTGGCCCTGCTGCTCGTGGCCGGCTGCGCCGCCGAGGAGACGCCGACCGGCGCCGGCTCGACCGCGGACACCACGACGGCCTCCGAGGAGCCGATGGACGACGAGACGCTGATGGACGACGAGACGTCGGGCTCCGACGACACGTCCGCGGACGAGAGCGCCGACAGGGCGGACGACGCGGACCTGCCCGCCGTCTACGACTTCTCCGCGACGACGCTCGAGGGCGGCACCTTCGCCGGCTCCGAGCTCGCCGACGCGCCCGCCGTGCTGTGGTTCTGGGCGCCGTGGTGCCCGACCTGCCGGGCCCAGATCCCCACGGTGACCGGCCTGGCGGAGACCTACGGCGAGGACGTCGCGGTCGTGGCCGTCGGCGGCCTCGACGACGCGGAGGCGATCAGCGACATGGCCGCGGACGACATCGCCGGACCCACCCACCTCGTCGACGACGCGGGCGAGGTCTGGCAGCACTTCGGCATGACGCAGCAGTCGACCTTCGTCGTGCTCGACGCCGACGGCGAGATCGTCCTCGAGGGGTCCGTGCCGGAGTCCGAGCTCGAGTCCGTCGTCGCCGACCTCGCGGGCTGA	MRTTRGAATAAATLALLLVAGCAAEETPTGAGSTADTTTASEEPMDDETLMDDETSGSDDTSADESADRADDADLPAVYDFSATTLEGGTFAGSELADAPAVLWFWAPWCPTCRAQIPTVTGLAETYGEDVAVVAVGGLDDAEAISDMAADDIAGPTHLVDDAGEVWQHFGMTQQSTFVVLDADGEIVLEGSVPESELESVVADLAG				NA	NA	NA	NA	NA
AK001_01334	840			hypothetical protein	GTGGGCGAGGGGTTCGCGCTCGCCCTCGGGGCCGGCCTGGTGGCGGCGGTCAACCCGTGCGGGTTCGCGCTGCTGCCCGCCTACCTCGCCACCCTGGTGCGGCCCGACGACGGCCGGGCGTCCGCCGTCGGCCGCGCCCTGCGCTCGACGGCGGCGCTCACCCTCGGGTTCGTCGCCGTGTTCGGCACCTTCGGGCTCGTCGTGGCGCCGGTGGCCAGCTCGGTCCAGCGCTGGCTGCCCGTGTTCACCCTCGTGCTCGGCGTCGTGCTCGCCGCCGCCGGCGCGTGGGTGGTCGCCGGGCGGGAGCTGCCGGGACTGCGGGTGCTGCGCACCGGGACGGGTCGTCCCCTGACGGACCGCTGGTGGTCGGTGGTGGGGTTCGGCGCCTCGTACGCCCTGGCGTCGCTGACCTGCACCATCGCGCCGTTCCTCGCCGTCGTCGTCACCGCGTTCCGCGCCGGGTCCGTGGGGCAGGGCGTCGCGCTGTTCGCCACCTACGCGGCCGGGATGGCGCTGCTCGTCGGCACGGCCGCCGTCGTCGTGGCCGTCGCGGGGGCCGGTGTCGTGGGTCGCGCCCGCCGTGCCGGACCGGTCCTGGCCCGCGTCGGCGGCGCCATCCTCCTCGTCGCGGGGCTGTACGTGGCCTGGTACGGGTTCTGGGAGCTGCGGGTCCTGTACGGCGGGGCCGGCACCGACCCGGTCGTCGAGGGTGCGGCCGCCGTCCAGCGCTGGCTGGCCTCGACCGCGGAGAGCCTGGGCTGGGTCGGTCTGCTGGCGGTGCTCGTCGTCGTGCTCGGGTCCGTGGCAGGCCTGACCTGGTGGCGTCGACACCGGGCATGA	MGEGFALALGAGLVAAVNPCGFALLPAYLATLVRPDDGRASAVGRALRSTAALTLGFVAVFGTFGLVVAPVASSVQRWLPVFTLVLGVVLAAAGAWVVAGRELPGLRVLRTGTGRPLTDRWWSVVGFGASYALASLTCTIAPFLAVVVTAFRAGSVGQGVALFATYAAGMALLVGTAAVVVAVAGAGVVGRARRAGPVLARVGGAILLVAGLYVAWYGFWELRVLYGGAGTDPVVEGAAAVQRWLASTAESLGWVGLLAVLVVVLGSVAGLTWWRRHRA				NA	NA	NA	NA	NA
AK001_01335	495	btuE	COG0386	Thioredoxin/glutathione peroxidase BtuE	ATGATGGGACGCATGGACATCTACGAGATCCCGTTCGACCGGATGGACGGCACGACCGCGACGCTGGCCGAGCACCGCGACGACGTGGTGATGGTCGTCAACGTCGCCTCGCGCTGCGGCCTGACCCCGCAGTACACCGCCCTGGAGCAGCTCCAGCAGAAGTACGCCGAGCGCGGGTTCACGGTCGTGGGGTTCCCCAGCAACCAGTTCCTGCAGGAGCTGTCCACCGACGAGAAGATCGCGGAGTTCTGCTCGGCCACCTACGGGGTGACGTTCCCCGTGGTGTCCAAGGTCAAGGTCAACGGCAGGAACGCCCACCCGCTGTACGCCGAGCTGACGAAGACCCCGGACGCCGGCGGCCACGACGGCCGCATCCGGTGGAACTTCGAGAAGTTCCTCGTGCTGCCCGGTGGCGAGGTCCGCCGCTACTCCCCCAAGACCGTGCCGGACGACCCGGAGATCGTCGAGGTCATCGAGTCCCACCTGCCGCGCTGA	MMGRMDIYEIPFDRMDGTTATLAEHRDDVVMVVNVASRCGLTPQYTALEQLQQKYAERGFTVVGFPSNQFLQELSTDEKIAEFCSATYGVTFPVVSKVKVNGRNAHPLYAELTKTPDAGGHDGRIRWNFEKFLVLPGGEVRRYSPKTVPDDPEIVEVIESHLPR	PGPT0013115_4757	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432	NA	NA
AK001_01336	534	mshD_2		Mycothiol acetyltransferase	ATGATGCCGCTGACCGCGCCGGACGGCCCCGCGGGCGTGTCGGTGCGACGGGCCCGCGCGGCGGACCTGCTCGCGATCGAGGACGTCCAGGAGGCCGCGGGCCGCGGTGAGCTCCTCGACGGGGTGCGGGCGGCCCTGCACGACCCGCAGCGGCTGGTGGTGGTCGCCGAGGCCGCCGGCGCCGTCGTCGGCTGGGCCAAGACCCACGTGCACGCGACGTTCGACGGCGTCGCCCCGGCGGGCCACTACCTCGGCGGGGTGACCGTCGAGCCGACATGGCGGCGCCGCGGTGTCGGGACGGCGCTGACCGCCGTGCGGATGGACTGGCTGGCCGAGCGCGCCGGGCGGGTGCACTACATGGTCAACGCCGCGAACACCGCGTCGATCGCGCTGCACGCACCGTGGGGGTTCCGGGAGGTGGTGCGCTCCTCCGCGCTGCACGGGGTGCGGTTCGCGGGCGGCGTCGGGGTGCTGCTGGGCGCCGACCTGCCGGCACCCGCCCCGCCGGTCAGCGCGGCAGGTGGGACTCGATGA	MMPLTAPDGPAGVSVRRARAADLLAIEDVQEAAGRGELLDGVRAALHDPQRLVVVAEAAGAVVGWAKTHVHATFDGVAPAGHYLGGVTVEPTWRRRGVGTALTAVRMDWLAERAGRVHYMVNAANTASIALHAPWGFREVVRSSALHGVRFAGGVGVLLGADLPAPAPPVSAAGGTR	PGPT0028640_42	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028640-aac6_I|aacA7-K18816	NA	NA
AK001_01337	1644	nnr	COG0062	Bifunctional NAD(P)H-hydrate repair enzyme Nnr	ATGATCGAGGACATGATCTCCGCCTGGACCGCCGCCGACGTCCGCGCCGCCGAGGAACCGCTCCTGGCGGCCGGCGAACCTCTCATGGAGCGCGCCTCGTTCGCCCTGGCGGTGCAGGTCCTGGCCGACCTGCGCGCCCGACGGCGGCACGTGCGCGGGGCGCGCGCGGTCCTGCTGGTCGGGGCGGGCAACAACGGCGGCGACACCCTGCACGCCGGCGCGGTCCTCGCGCGCCGCGGTGTCGCGGTGACCGCGGTCCTCACCTCCGAGAAGGTCCACGCGGGAGGGCTCGCCGCGCTGCGCGGCGTCTCCGGGACCGTCGTCGACCTCCCCGCCGTCCCGGAGCGGACCGAGGCCGTGGCCGCCGACGTTGCCGGCGCCGACGTCGTCCTCGACGGGCTGCTCGGGATCGGCGCCCGGGGCGCGCTGCGCGGGCTCGCCGGAGACCTCGTCTCCGCCCTCGTCTCCCGGGGTGCTGTGGGCGTGAGATCCGCAGGATCGGAACGTCCCGAGCCTGCAGATTCCACGCCCACAGCATCGGGGGGCGGCCGAGAGCGGGCGCGGCGCCCGTGGGTGGTGGCCGTCGACCTGCCCTCCGGCATCGGGGTCGACGACGGCACGCTGCCCGGCCCCGTGCTCGCGGCCGACCGCACCGTCACCTTCGGCGCCGCCAAACCGGGCCTGCTGCTCCCGCCGGCCGCCCGCGTCGTCGGGGAGGTGACGGTGGTCGACATCGGCCTGGATCCCAGCGGGCCGCCCGCCGTCCGCCGCCTGGAGCCCGCCGACGTCGGCGCGCGCTGGCCGGTGCCCGGCCCGGCCGACCACAAGTACACCCGCGGTGTCGTCGGAGTGGTGGCCGGCACCGCCACCTACCCGGGGGCCGCCGTCCTCGCCGCGTCGGCCGCGGTGCGCACCGGCACCGGCATGGTGCGCTACCGCGGCTCGGCCCCCGTGGCGCGGGCCGTCCTCGCCGCCCGCCCCGAGGTCGTCACCGCGACGGGGCGCGTCCAGGCGTGGGTGGTCGGCCCCGGGATCCCCACCACCCGCGACCGCGACGACCCCGCCGACGACGGGCAGCACGACCGCGGGCGGGGCGGCCTCGCCGTGGCCGCCGGGAACCTGCCGGGGACGTCGTACGGGCCGGTGCCCGCCGTCGTCGACGCGGGCGGGCTGCCGCTGCTCGCGGAGTCGAGCCCGCCCTGGTTCGTCCTGACCCCGCACGCCGGCGAGCTCGCCGGGCTGCTGCGCTCCCGCGGCGAGGACGTCCACCGCGACGACGTCGAGGCGGCTCCGCTGCACTGGGCCCGGCGCGCCCACGAGCTCACCGGTGCCACGGTGCTGCTCAAGGGCGGCGTGACCCTCGTGGTCGGCCCCGACGGTGCCTGGGCCCAGGCCGACGCGCCCGGCTGGCTGGCCACCGCCGGCGCCGGCGACGTGCTCGCGGGGATCCTGGGCACGATGATCGCCGCCCGGTCGGAGGAGATCGTCGCCGAGCCGGCGCTCGCGGCCCAGGTCGCGGCGGGTGCCGCGCTGGTGCACGGGCTCGCGGCCGAGCGGGCGAACCCCGGCGGCCCCGTCGCCGCCCTGGACGTCGCCGCGGCGGTGCCCGCCACCGTGGCCGGGCTGCTCGAGCAGCGAGGATGA	MIEDMISAWTAADVRAAEEPLLAAGEPLMERASFALAVQVLADLRARRRHVRGARAVLLVGAGNNGGDTLHAGAVLARRGVAVTAVLTSEKVHAGGLAALRGVSGTVVDLPAVPERTEAVAADVAGADVVLDGLLGIGARGALRGLAGDLVSALVSRGAVGVRSAGSERPEPADSTPTASGGGRERARRPWVVAVDLPSGIGVDDGTLPGPVLAADRTVTFGAAKPGLLLPPAARVVGEVTVVDIGLDPSGPPAVRRLEPADVGARWPVPGPADHKYTRGVVGVVAGTATYPGAAVLAASAAVRTGTGMVRYRGSAPVARAVLAARPEVVTATGRVQAWVVGPGIPTTRDRDDPADDGQHDRGRGGLAVAAGNLPGTSYGPVPAVVDAGGLPLLAESSPPWFVLTPHAGELAGLLRSRGEDVHRDDVEAAPLHWARRAHELTGATVLLKGGVTLVVGPDGAWAQADAPGWLATAGAGDVLAGILGTMIAARSEEIVAEPALAAQVAAGAALVHGLAAERANPGGPVAALDVAAAVPATVAGLLEQRG	PGPT0024095_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798	NA	NA
AK001_01338	1071	fgd_4		F420-dependent glucose-6-phosphate dehydrogenase	ATGCGATTCGGACTCTTCATCCCGCAGGGCTGGCGGATGTCCCTCACGGACGTCCCGCCGGAGCAGCACTGGGAGACGATGCTGTCTCTCCTCCACTACGCCGACAACGCCGCGGCCGGCGAGGCGGTACCGGGCGGTGAGTTCGCCTGGGAGTCGGTGTGGGTCTACGACCACTTCCACACCGTGCCCGTGCCCAGCACCGAGGCGACCCACGAGGCCTGGTCGCTGATGGCCGCCTTCGCGGCCGCGTCCCAGCGCGTCCGCCTGGGGCAGATGTGCACGTGCATGGCCTACCGCGAACCCACCTACCTCGCCAAGGTCGCCTCCACCGTGGACGCGATCTCCGGCGGCCGCGTGGAGATGGGGATCGGCGCCGGCTGGTACGAGCACGAGTGGCGCGCGTACGGGTACGGCTTCCCCACCGCCGGGGAGCGCCTGCGCGCCCTGGACGAGGGCGTGCAGATCATGGCGAACATGTGGCGCACGGGGTCCTCGGGCACGTTCACCGGCGAGCGGTACCAGGTCGACGGGGCGCTCTGCTACCCGCAGCCGCTGCAGCGGTTGGCCGTCGGCCCTTCAGACGGCTCGGGCGACGCCGACCTCGTTCCGTCCATCCCGCTGTGGATCGCCGGCGGCGGGGAGCGGAAGACCCTGCGCACGGCTGCGAAGTACGCCCAGTACACGAACTTCGCCGGCGACCCGGAGGGCTTCGACCACAAGTCGCGCATCCTGGAGCAGCACTGCGCCGACGTCGGCACGGACTTCGAGGCGATCACGCGGTCGGCCAACTACAACGTGGTCATCGGCGAGAACCAGGCCGAGGTCGACGACAAGCTGGCCTGGGTGGCCTCGCACTTCTCGCGGTACGCCCCGGGCGAGCCGGGCGAGCGCGAGATCGCCAACTGGCGCAACGGCCCCCTGGTCGGCACCCCGGAGCAGATCGTCGAGACGCTGCAGGACCTGAGGTCCCGCGGCATGACGTACGCGATCACCTACTTCGCGAACGCCGTCGGCGACCGCGAGCAGATCGAGCTGTTCCAGCGTCAGGTCATCCCCGAGCTCCAGGGCTGA	MRFGLFIPQGWRMSLTDVPPEQHWETMLSLLHYADNAAAGEAVPGGEFAWESVWVYDHFHTVPVPSTEATHEAWSLMAAFAAASQRVRLGQMCTCMAYREPTYLAKVASTVDAISGGRVEMGIGAGWYEHEWRAYGYGFPTAGERLRALDEGVQIMANMWRTGSSGTFTGERYQVDGALCYPQPLQRLAVGPSDGSGDADLVPSIPLWIAGGGERKTLRTAAKYAQYTNFAGDPEGFDHKSRILEQHCADVGTDFEAITRSANYNVVIGENQAEVDDKLAWVASHFSRYAPGEPGEREIANWRNGPLVGTPEQIVETLQDLRSRGMTYAITYFANAVGDREQIELFQRQVIPELQG				NA	NA	NA	NA	NA
AK001_01339	351	acpS		Holo-[acyl-carrier-protein] synthase	GTGATCATCGGGGTGGGCATCGACGTCGTGGACGTCGAGCGGTTCATGGCGACCCTGGAGCGCACGCCCCGGTTGCGCGAGAAGCTGTTCACCGAGGCCGAGCGGGAGCTGCCGGCGTCGTCGTTGGCGGCCCGGTTCGCGGCCAAGGAGGCCATCGCCAAGGCGCTCGGCGCGCCGGGGACCATGCACTGGCACGACGCGACGGTGCACCGTGTGGTCGGCGGGCCGCCCCAGGTCGAGCTGCGCGGCTCGGTGCAGGCGCGGGCGGACGAGCTCGGGGTGCGGCACTGGCACCTGTCGATCTCGCACGACGCCGGGATCTCCTCGGCGATGGTGGTCGCCGAGGGCTGA	MIIGVGIDVVDVERFMATLERTPRLREKLFTEAERELPASSLAARFAAKEAIAKALGAPGTMHWHDATVHRVVGGPPQVELRGSVQARADELGVRHWHLSISHDAGISSAMVVAEG	PGPT0008840_3575	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0008840-acpS-K00997	NA	NA
AK001_01340	1887	glmS	COG0449	Glutamine--fructose-6-phosphate aminotransferase [isomerizing]	ATGTGTGGCATCGTCGGATACGCCGGGACTGGTACTGCCGTCGCCGGAGGCCCGGACGCGAGCGAGCGTCCGCTGGAGGTGGCCCTGGCCGGGCTGAAGCGACTCGAGTACCGCGGGTACGACTCCGCGGGCGTGGCGCTCGTCGGCCCCGGCCGCCCCGAGGCGGCGTTCGCCAAGAAGTCCGGCAAGCTCGACAACCTCGTCGCGGAGATCGCGGCGCACCCGCTGCCGGCCGCGACGGCCGCGATCGGGCACACGCGGTGGGCGACCCACGGCGGCCCCACCGACACCAACGCCCACCCGCACCTGGCAGACGGCGACCGTCTCGCGGTCATCCACAACGGCATCATCGAGAACTACAGCGAGCTGCGCGACTCCTTGACGACCGACGGCGTCACGTTCCTGTCCGACACGGACACGGAGGTCGCCGCCCAGCTCCTGGCGCGCGAGTACCGGGCGGCCGGTGACCTCGCCACCGCGATGGCCGCCACCGCCCGCCAGCTCACCGGGACCTTCACCCTGCTCGCCGTGCACGCCGACGACCCGCAGACCGTGGTGGGCGCCCGGCACGACTCGCCGCTCGTCGTCGGCCTCGGCGCGGGGGAGAACTTCCTCGGCTCCGACGTCGCGGCCTTCGTGGAGCACACCAAGGAGGCGCTCGAGCTCGGCCAGGACCAGATCGTCACGATCACCCCGGACGCGGTGACCGTCACCGACTTCGACGGCGCGCCGGCCGAGGGCAAGCGGTTCACCGTCGACTGGGACGCGGCCGCCGCCGAGAAGGGCGGCTTCGACTCCTTCATGGACAAGGAGATCCACGACCAGCCCCACGCCGTCGCCGACACCCTGCTCGGCCGGACGGACTCCTCGGGCCGGATCATCCTCGACGACCTGCGCATCGACGAGTCCGTGCTGCGCAGCGTGAACAAGATCATCGTCATCGCCTGCGGGACGGCGGCCTATGCCGGGCACGTGGCCAAGTACGCCATCGAGCACTGGTGCCGCATCCCGGTCGAGGTCGAGCTCGCGCACGAGTTCCGCTACCGCGACCCGATCGTCGACGAGCGCACCCTGGTGGTGGCGATCTCGCAGTCCGGCGAGACCATGGACACCCTGATGGCGGTGCGCCACGCCCGCGAGCAGGGCGCCAAGGTGCTCGCCATCGTCAACACCAACGGCTCCACCATCCCGCGCGAGTCCGACGCCGTGCTGTACACGCACGCCGGTCCGGAGATCGCGGTGGCCTCGACCAAGGCCTTCCTGGCCCAGATCACCGCCGCCTACATCCTCGGGCTGTACCTGGCCCAGCTGCGCGGCAACAAGTTCCCCGACGAGGTCGCCCAGCTCTTCGACGAGCTGCGCGACATGTCCCGCAAGGTGCAGACCGTCATCGAGCGCGGCGAGTACGTCCGGGCCACCGCCCGGTCGATGCAAGCCGCCGACAAGGTGCTGTTCCTCGGCCGCCACGTCGGGTACCCGGTGGCGATGGAGGGTGCGCTGAAGCTCAAGGAGCTCGCCTACATCCACGCCGAGGGCTTCGCCGCGGGCGAGCTCAAGCACGGGCCGATCGCCCTGATCGACGAGGGCCAGCCGGTGTTCGTCGTGGTGCCCTCCCCGCGGGGCCGCGACCAGCTGCACTCCAAGGTCGTCTCCAACATCCAGGAGATCCGGGCGCGCGGGGCGCGCACGCTGGTGATCGCCGAGGACGGCGACGACGCGGTGCGGCAGTACGCCGACGAGATCTTCTGGATCCCGCAGGCCCCGTCGCTGCTCCAGCCGCTGCTCGCCGTGGTGCCGCTGCAGATCTTCGCGATGGCGCTCGCCGGCGCCAAGGGGCTCGACGTCGACCAGCCCCGCAACCTGGCCAAGTCGGTCACCGTCGAGTGA	MCGIVGYAGTGTAVAGGPDASERPLEVALAGLKRLEYRGYDSAGVALVGPGRPEAAFAKKSGKLDNLVAEIAAHPLPAATAAIGHTRWATHGGPTDTNAHPHLADGDRLAVIHNGIIENYSELRDSLTTDGVTFLSDTDTEVAAQLLAREYRAAGDLATAMAATARQLTGTFTLLAVHADDPQTVVGARHDSPLVVGLGAGENFLGSDVAAFVEHTKEALELGQDQIVTITPDAVTVTDFDGAPAEGKRFTVDWDAAAAEKGGFDSFMDKEIHDQPHAVADTLLGRTDSSGRIILDDLRIDESVLRSVNKIIVIACGTAAYAGHVAKYAIEHWCRIPVEVELAHEFRYRDPIVDERTLVVAISQSGETMDTLMAVRHAREQGAKVLAIVNTNGSTIPRESDAVLYTHAGPEIAVASTKAFLAQITAAYILGLYLAQLRGNKFPDEVAQLFDELRDMSRKVQTVIERGEYVRATARSMQAADKVLFLGRHVGYPVAMEGALKLKELAYIHAEGFAAGELKHGPIALIDEGQPVFVVVPSPRGRDQLHSKVVSNIQEIRARGARTLVIAEDGDDAVRQYADEIFWIPQAPSLLQPLLAVVPLQIFAMALAGAKGLDVDQPRNLAKSVTVE	PGPT0017630_928	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820	NA	NA
AK001_01341	975	coaA	COG1072	Pantothenate kinase	GTGCCGCCGCGGCCGCTGAGCGAGCACCTGTCCCGGTTCGCCCCCGCCTCGCCGTACGTGGACTTCGACCGCGCGGCGTGGAGCCGGCTGTCGGAGCAGACGCCGCTGCCGCTGACCGACGCCGACGTCGAGCGCCTGCGCGGCCTGGGCGACCCGATCGACCTGGCGGAGGTCGACGCCGTCTACCGGCCGCTGTCGCGGCTGCTGAACCTGTACGTGACGGCGACGGGCGGGCTGCACCGGGCGACCTCGACGTTCCTCGGCGAGGACCCGCCCCGGACCCCGTACGTCATCGGGGTGGCGGGCTCGGTCGCGGTCGGCAAGTCGACGACGGCGCGCGTCCTGCGCGAGATGCTGGCGCGCTGGCCGGAGACGCCGCACGTCGAGCTGATCACCACCGACGGGTTCCTCTACCCGAACGCGGAGCTGGAGCGGCGCGGGCTGATGACGCGCAAGGGGTTCCCCGAGTCGTACGACCGCCGCAAGCTCATCCGGTTCCTGTCCCGGATCAAGGCCGGTCAGGCCGAGGTCCGCGCCCCGGTCTACTCCCACGTCACCTACGACATCGTGCCGGGCGAGGAGACGGTGGTGCACCGTCCCGACGTGCTGATCGTCGAGGGGCTGAACGTGCTGCAGCCGGCGCGGTACTCCTCCATCGACGAGTCGACGGTGGCGGTGAGCGACTTCTTCGACTTCTCGATCTACGTCGACGCCCGCACGCGCACGATCCGCCAGTGGTACGTCGACCGCTTCCTCAAGCTCCGGCGCACGGCGTTCAGCCGGCCCGAGTCGTACTTCCGGCGCTACGCCGAGCTGTCCGACACCGAGGCGACGGACCGCGCCCTGCACATCTGGGAGACCATCAACGCGGTCAACCTCGAGCAGAACGTGCTGCCGACCCGTAGCCGGGCCACGCTCGTCATGAGCAAGGGGGCGGACCACGCGGTCCAGCGCGTCCGGCTACGCAAGCTCTGA	MPPRPLSEHLSRFAPASPYVDFDRAAWSRLSEQTPLPLTDADVERLRGLGDPIDLAEVDAVYRPLSRLLNLYVTATGGLHRATSTFLGEDPPRTPYVIGVAGSVAVGKSTTARVLREMLARWPETPHVELITTDGFLYPNAELERRGLMTRKGFPESYDRRKLIRFLSRIKAGQAEVRAPVYSHVTYDIVPGEETVVHRPDVLIVEGLNVLQPARYSSIDESTVAVSDFFDFSIYVDARTRTIRQWYVDRFLKLRRTAFSRPESYFRRYAELSDTEATDRALHIWETINAVNLEQNVLPTRSRATLVMSKGADHAVQRVRLRKL	PGPT0008770_13	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008770-coaA-K00867	NA	NA
AK001_01342	696			hypothetical protein	GTGCCGGGTCTGACGACGCTGCTGGAGCAGCTCGAGGGATGGATCCTCGAGGTCGCCGCGTCGCTGTGGATCTACCCGGCGATGTTCGCGTCGGCGTTCATCGACGGCTTCTTCCCGCCGGTCCCCAGCGAGTCCGTCCTGGTGACCCTCGTCATCTCCGCCCAGGCCACCGGCCTGCCGTGGCTCTGGCTCATCGTGCCCATCGCCGGCGTCGGCGCCTGGCTCGGCGACAACCTGGCCTACGTCCTGGGCCGCCGGGTCGGGACCGACCGCATCGGCATGCTGCGCTCGCAGCGCGGCCGCAAGGCGGTCTCCTGGGCGCGCCGCGCGCTCTCGCGGCGCGGTGCCGTGTTCATCATCGCCGCCCGCTACATCCCGGTCGGCCGGGTCGCGGTGAACATGACCGCCGGCGCCGTGGCGTACCCCCAGCGCCGGTTCATGATCTTCTCGGCGATCGCCGCGGTGCTCTGGTCCGCCTACTCCACGCTGATCGGGGTGGCCGCCGCCGGCGTGCTCGGCCACGACCCGTTGCTGGCCATGGCCGTCGGCGTCGTCGGCGGCGGGCTGCTGGGCCTGCTGGTCGACCGGGTCGTGCAGGTCTTCACCCCGCGCGAAGAGGTGCTGGAGGAGATGCGCGAGCAGGCGCCGCTGCCGCAGGAGGTCGGCGTCGGCCGCGACGACTCAGAGCTTGCGTAG	MPGLTTLLEQLEGWILEVAASLWIYPAMFASAFIDGFFPPVPSESVLVTLVISAQATGLPWLWLIVPIAGVGAWLGDNLAYVLGRRVGTDRIGMLRSQRGRKAVSWARRALSRRGAVFIIAARYIPVGRVAVNMTAGAVAYPQRRFMIFSAIAAVLWSAYSTLIGVAAAGVLGHDPLLAMAVGVVGGGLLGLLVDRVVQVFTPREEVLEEMREQAPLPQEVGVGRDDSELA	PGPT0004890_341	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_SELENIUM_RESISTANCE	SELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975	NA	NA
AK001_01343	675	def_2		Peptide deformylase	GTGACCGGCTGGTCGGGTCCGGTCCGGCCGGAGCTCGCCGAGGCCGTCGCCGACCTGCTCGACGTGGCCGAGCGGCGCACGGACCACCCCGGCGTGCTGCCGATCGTGCAGGCCGGCGACCCCGTGCTGCGGCGTCCGGCCGCGCCGTACACCGGACAGCTCGGCGACGTGCTGCCGCGGCTGCTGGACGCGATGCGTCGCACCATGCACGCGGCTCCCGGCGTCGGGCTGGCCGCCCCGCAGGTCGGGATCGGGCTGGCGATCGCCGTGTGCGAGGACGCCGGAGTCCCGGACGACCCGAGGGACCGGCACCCCCTGCCCTTCCGCGTGCTGGTCAATCCCCGCTACGCACCCGAGCCCGTCGACGACGCCCCCGACGTCCCCTTCTACGAGGGGTGCCTGTCCGTGGCGGGCTGGCAGGCCGTCGTCGCGCGTCACCGCCGGGTCCGGCTGACGGGTCAGGACGAGCACGGGGCGGCGCTCGACGAGGTGCTGTCGGGCTGGCCCGCGCGGATCGTGCAGCACGAGACCGACCATCTGCGCGGTCGCCTCTACCTCGACGCGGCGGTCCCGCGGTCGCTGACCTCGAACGAGAACCTGCTGCGGCACTTCGCCGGGGACCCGGACCCCGGCCGGGCCGCGCTGGAGCTCGGGTTCGACTTGCCCGGCGCCTGA	MTGWSGPVRPELAEAVADLLDVAERRTDHPGVLPIVQAGDPVLRRPAAPYTGQLGDVLPRLLDAMRRTMHAAPGVGLAAPQVGIGLAIAVCEDAGVPDDPRDRHPLPFRVLVNPRYAPEPVDDAPDVPFYEGCLSVAGWQAVVARHRRVRLTGQDEHGAALDEVLSGWPARIVQHETDHLRGRLYLDAAVPRSLTSNENLLRHFAGDPDPGRAALELGFDLPGA				NA	NA	NA	NA	NA
AK001_01344	1365	glmM	COG1109	Phosphoglucosamine mutase	ATGGGACGACTTTTCGGTACGGACGGTGTCCGTGGCCTGGCCAACCGCGACGTGACCGTCGAGCTGGCGCTCGACCTGGGCAGCGCCGCCGCGGACGTGCTCGGACGTCGCACCGACACCGTGGGGCACCGCCCCAAGGCCGTCGTGGGGCGCGACCCCCGGGCGTCCGGCGAGTTCCTCTCGGCCGCCGTGAGCGCAGGTCTGGCCGGCTCCGGCGTCGACGTCGTCGACCTCGGCGTCGTGCCGACCCCGGCCCTCGCCTTCCTCGTGAGCGCCATGCAGGCCGACCTCGGCGTCATGGTCTCCGCCTCGCACAACCCGATGCCCGACAACGGCATCAAGTTCTTCGCCCGCGGCGGGCTCAAGCTGGACGACGGCGTCGAGGACGAGATCGAGGCGTTGCTCGGCACGGGCCGCGAACGCCCGACCGGTGCCGACGTCGGCCGGATCCGGGCCGACCAGGGCATCGCCGTCCGCCAGTACGTCGACCACGTCACCGCCAGCATCGGCACCACGCCCGACCACCGGCCGCTGGAAGGCCTGCGCATCGCCGTGGACGCCGCCAACGGTGCCGCGAGCCAGGTCGGCCCGGAGGCGTTGCGCCAGGCCGGGGCCGACGTCGTGGTCATCAACGCCAGCCCGGACGGGCGCAACATCAACGAGAAGGCCGGCTCGACCCACCCCGAGCAGCTGCAGGCCGTGGTCGTCGCTGCCGAGGCCGACTTCGGCGTCGCCTTCGACGGCGACGCGGACCGCTGCCTCGCCGTCGACCACGGCGGGGTGCTCGTCGACGGCGACCAGATCCTCGGCATCCTGGCCAAGTCGCTGCGCGTGGACGGCCGTCTGCCGCAGGACACGCTCGTGGTCACCGTGATGAGCAACCTCGGTCTGCTGCTGGCGATGCGCGACGCGGGGATCGCCACCCGGCAGACCGCCGTCGGCGACCGCTACGTCCTGGAGGACATGCGCACCGGCGGCTTCGGTCTCGGCGGGGAGCAGTCCGGCCACATCATCCTGGCCGAGCACGCGACGACGGGGGACGGCGTCCTGACCGCGCTGCACCTGGCGGCGCGGGTCAAGGCCTCCGGTCAGCGGCTGGCCGACCTGGCCACGGAGATCCCGCGGCTGCCCCAGACCCTCATCAACGTCAAGGACGTCGACAAGAACCGCGCCAGCACGGACGAGCGCGTGGTCGAGGCCGTCGAGGCCTCCGAGGCGGTGCTCGGCGAGACGGGGCGTGTGCTGCTGCGCCCCTCGGGCACCGAACCGGTCGTGCGGGTCATGGTCGAGGCGGCCAGCCAGGCGCAGGCCGACGGCGTCGCGGAGCGGCTCGCGGCCGTGGTCCGGGAGCAGCTCGCCCTGTGA	MGRLFGTDGVRGLANRDVTVELALDLGSAAADVLGRRTDTVGHRPKAVVGRDPRASGEFLSAAVSAGLAGSGVDVVDLGVVPTPALAFLVSAMQADLGVMVSASHNPMPDNGIKFFARGGLKLDDGVEDEIEALLGTGRERPTGADVGRIRADQGIAVRQYVDHVTASIGTTPDHRPLEGLRIAVDAANGAASQVGPEALRQAGADVVVINASPDGRNINEKAGSTHPEQLQAVVVAAEADFGVAFDGDADRCLAVDHGGVLVDGDQILGILAKSLRVDGRLPQDTLVVTVMSNLGLLLAMRDAGIATRQTAVGDRYVLEDMRTGGFGLGGEQSGHIILAEHATTGDGVLTALHLAARVKASGQRLADLATEIPRLPQTLINVKDVDKNRASTDERVVEAVEASEAVLGETGRVLLRPSGTEPVVRVMVEAASQAQADGVAERLAAVVREQLAL	PGPT0018950_561	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018950-glmM-K03431	NA	NA
AK001_01345	489	rpsI	COG0103	30S ribosomal protein S9	GTGGCTGACACCACCGTCGACACCGAGCTGGACGAGAACACGCCCAGCAACTACACCTCCGAGACCGAGGCCCCCGTGGCCAACAGCGGTCAGTCCATCACCGCCCCGGGGCAGGCCCTCGGCCGCCGCAAGGAGGCCGTGGCGCGCGTTCGCCTCGTGCCCGGCTCCGGTGAGTGGAAGATCAACGGTCGCACCCTCGAGCAGTACTTCCCGAACAAGGTGCACCAGCAGCTCGTCAACGACCCGCTGAAGCTGGTCGAGGTCGAGGGCCGCTTCGACGTCATCGCCCGCATCGCGGGTGGTGGCCCCTCGGGCCAGGCCGGCGCGCTGCGTCTCGCGATCGCCCGTGCCCTCAACGAGATCGACCGCGAGGCCAACCGCGACGCTCTCAAGAAGGCCGGCTTCCTCACCCGCGACGCGCGCGCGGTGGAGAGCAAGAAGGCCGGTCTCAAGAAGGCCCGCAAGGCTCCGCAGTACTCGAAGCGCTGA	MADTTVDTELDENTPSNYTSETEAPVANSGQSITAPGQALGRRKEAVARVRLVPGSGEWKINGRTLEQYFPNKVHQQLVNDPLKLVEVEGRFDVIARIAGGGPSGQAGALRLAIARALNEIDREANRDALKKAGFLTRDARAVESKKAGLKKARKAPQYSKR				NA	NA	NA	NA	NA
AK001_01346	450	rplM	COG0102	50S ribosomal protein L13	GTGCGTACTTACACCCCGAAGCCCGGCGACATCCAGCGTGACTGGTACGTCGTCGACGCCTCCGACGTCGTGCTGGGCCGTCTGGCCAGCCAGGTCGCCACGCTCCTGCGCGGGAAGCACAAGCCGACCTTCGCCCCGCACGTGGACGGCGGCGACTTCGTCGTCGTCATCAACGCGGAGAAGGTGGCCCTCTCCGGCAACAAGCACGAGAACAAGCGGGCCTACCGCCACTCCGGGTACCCGGGTGGTCTCAGCTCGATCTCGTACGGCGAGCTGCTCGAGAAGAACCCCGAGCGCGCCGTCGAGAAGGCTGTGCGCGGCATGCTTCCCAAGACCAAGCTCGCTCGCGAGCAGCTCAAGAAGCTGAAGGTCTACCGCGGCGCGGAGCACCCGCACGCGGCGCAGAAGCCCCAGCCGTTCGAGATCACCCAGCTTTCGCAGCAGGCCTGA	MRTYTPKPGDIQRDWYVVDASDVVLGRLASQVATLLRGKHKPTFAPHVDGGDFVVVINAEKVALSGNKHENKRAYRHSGYPGGLSSISYGELLEKNPERAVEKAVRGMLPKTKLAREQLKKLKVYRGAEHPHAAQKPQPFEITQLSQQA				NA	NA	NA	NA	NA
AK001_01347	414			hypothetical protein	ATGAGCGAGGACACCTCGGGCACGAGACCCGACCCGGAGAACGGAGCCGAGGGCGACAACGACCAGCTGTCGGCGGAGGACACCCTGGTCGACCGCGGCACGCAGGACGTCCTCGACGAGGGCTACTCGCCGCCGGAGCGCCCCCGGGCGAACCACTGGGGCGAGACGGCCTGGGAGGAGCTGACCGGGGAGCCGCTCGACCGTCGGCTGGCCGAGGAGCAGCCCGACTACTGGGAGGTTGACCCCCTCACCCATCCCGACACCACGCGGGCCGGACGCCTGGTCGCCGACGACGAGGCCGACCCCAACCAGGACGGTGGCCGGTCCAACGACCTCTACGGCACCGACGCGGGCGTCGACGGGGCGGGCGCGAGCGCCGAGGAAGCGGCGGTCCACTGGGTCGAGGAGCCGTAG	MSEDTSGTRPDPENGAEGDNDQLSAEDTLVDRGTQDVLDEGYSPPERPRANHWGETAWEELTGEPLDRRLAEEQPDYWEVDPLTHPDTTRAGRLVADDEADPNQDGGRSNDLYGTDAGVDGAGASAEEAAVHWVEEP				NA	NA	NA	NA	NA
AK001_01348	921	truA	COG0101	tRNA pseudouridine synthase A	GTGAGCATCACGAACGCGCCGGTGACGCCCGACGACGCGACCGTGCGGGTCCGTCTGGACCTCGCCTACGCGGGGACCGGCTTCGCCGGCTGGGCCGCGCAGCCCGGGCTGCGCACCGTCCAGGGCGTCCTGGAGGAGGCGCTGGCCACGATCCTGCGCACGGAGCCGCTGGGCCTGCCGCGGCCGCGGCTCACGGTCGCCGGACGCACCGACGCCGGGGTGCACGCCCGGGGCCAGGTGGCCCACGTGGACGTGCCCCGCGACCGCTGGGACGCGATGCCGGGGCGCTCGGACCGCACGCCGGCCCGCGCCCTCGTCGACCGGCTGGCGGGAGTCCTGCCGAGCGACGTCGTGGTGCACGAGGCCGAGGTCGCGCCCCCGGGCTTCGACGCCCGCTTCTCGGCGCTGTCGCGGACCTACCGCTACCGCATCGCCGACGAGCACCCGCTGCGCGACCCGCTGCAGCGCGAGTGGGTGCTGTGGCACCGGCGGTCGCTGGACGTCGCCGCGATGGACGCGGCGGCGGCCCCGCTGACGGGCCTGCACGACTTCGCGGCCTTCTGCAAGCCGCGCGCGGGAGCGACCACCATCCGCGAGCTCACCCGGTTCTCCTGGTCGCGGCCCGACGGCGGCCCCGATGCCGGCCTGGTGGTCGCCGAGGTCGTGGCGGACGCGTTCTGCCACTCGATGGTGCGCGCCCTGGTCGGGATGTCGCTCGCCGTGGGGGAGGGGCGGCGTCCGGCCGCGGACGCCGCGACGGTCCTCGCCGGCGGCGACCGGGGCGCGGCCGCGGCCGTCGCGCCGGCGTGCGGTCTGACGCTCGAGCACGTGGCCTACCCGGTGGCGGAGGCCGAGCTGGGTCGCAGGGCGCTGCGGATCCGGGCCCGCCGTCGGGCCGACGAGGTCGACGGGCGGCGGTGA	MSITNAPVTPDDATVRVRLDLAYAGTGFAGWAAQPGLRTVQGVLEEALATILRTEPLGLPRPRLTVAGRTDAGVHARGQVAHVDVPRDRWDAMPGRSDRTPARALVDRLAGVLPSDVVVHEAEVAPPGFDARFSALSRTYRYRIADEHPLRDPLQREWVLWHRRSLDVAAMDAAAAPLTGLHDFAAFCKPRAGATTIRELTRFSWSRPDGGPDAGLVVAEVVADAFCHSMVRALVGMSLAVGEGRRPAADAATVLAGGDRGAAAAVAPACGLTLEHVAYPVAEAELGRRALRIRARRRADEVDGRR				NA	NA	NA	NA	NA
AK001_01349	744	ppgK_2	COG1940	Polyphosphate glucokinase	ATGACCCTCGCCGTGGACTGCGGCGGCGGTGGCATCAAGGCCACCGTCCTGGACGACGCGGGGACGGCGCACGCCGACCCGGTCCGTGTACCGACCCCGTACCCGCTGCCGCCCGACCTGCTCGTGGACACGGTGGCCGCGATCGCGGCGGGACCGCCCCGCCCCGACCGCGTCACGGTCGGGCTGCCCGGGATGATCCGGCACGGGGTGGTCGTGCACACCCCGCACTACGTCACGCGCGCCGGCCCGCGCACCCGCGTCGACCCGGACCTGGTCGAGCGGTGGCGCAACGTCGACCTGCGCGCGGCGCTGCACGCGCGGCTCGACGTGCCCGCGCTGGTGCTCAACGACGCCGAGATGCACGCCGCCGGGGTCGTCGCGGGCAGCGGGATCGAGCTGGTGCTGACCCTGGGGACCGGCCTCGGCTCCGCCCTGTTCGACGGCGGCCGGCTGGCGCCGCACCTGGAGTGGTCCCGGGCACCCGTACGCCGCGGCACCACCTACGACGCGTACGTCGGCGAACCCGAGCGCCGGCGGCTCGGCAACGGTCTGTGGTCGCGCCGCGTGGTCACCGTCGTCGACGGGCTGCGACCGGTGTTCTGGTGGGACCGGCTGTACCTCGGGGGCGGGAACTCACGGTGCCTGACGCCGGCCGCGCTGGACCGGCTCGGCGACGACGTCGTCGTCGTGCCGAACACCGCCGCGCTGGTCGGCGGGGTCCGCGCCTGGGACCTGGTCGGCTGA	MTLAVDCGGGGIKATVLDDAGTAHADPVRVPTPYPLPPDLLVDTVAAIAAGPPRPDRVTVGLPGMIRHGVVVHTPHYVTRAGPRTRVDPDLVERWRNVDLRAALHARLDVPALVLNDAEMHAAGVVAGSGIELVLTLGTGLGSALFDGGRLAPHLEWSRAPVRRGTTYDAYVGEPERRRLGNGLWSRRVVTVVDGLRPVFWWDRLYLGGGNSRCLTPAALDRLGDDVVVVPNTAALVGGVRAWDLVG	PGPT0017750_618	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886	NA	NA
AK001_01350	813	menH_1		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	GTGGTGCTCCTGCACGGCTCGCGCACCTCGCACACGATGTGGCGACGGCAGCTGGTGAGCCTCCGGGCGGCGGGTGTCCCCGCCGTCGCTCCCGACCTGCCCGGGCACGGCGCCCGTCGCGCGACGCGCTTCGAGCTGGACGAGGCCGTCGAGACGGTGCGCGAGGCCGTCGACGCGGCGGGCGGCCGCGCGCTGGTCGCGGGGCTGTCCCTCGGCGGGTACGTCGCGATCGAGCACCGCGCCCGGTACCCGGGGCAGAGCGCCGGGCTGCTCGCCGCCTCCTGCAGCACGAGCCCGGACACCCCGCTGCGGGCCGGATGGCTCGTCCTCGCCCGGTGGATCGAGCGGTGGCCGGACCGCGGAGCGCGTCTCAACGACCTCTTCGTCCGCGGCCTGCTGGACCCGGAGTCCGCGCGCGACGTCGGGGACGGCGGCTTCGCGCTGGAGGTGATGGTGGACGTGCTCGAGCAGGTCGGCCGGCTCGACACGCGGGCCGCCCTGCGGCGCGCGTACAGCCCGGTGCGCCTGGTGAACGGCCAGTGGGACCACTTCCGCGGCCAGGAACGCTCGATGCTGGCCGCGGCGCGGTCCAGCGGGGCGGACGCCCGGCTCGTCGTCGTGCCGCGGGCCCGGCACCTGGTGAGCCTGGACGCCCCCGTGGCCTTCTCGCGCGCGCTGCTCGAGGCGCACGCGGCGGCGTCGTCAGCCGACCAGGTCCCAGGCGCGGACCCCGCCGACCAGCGCGGCGGTGTTCGGCACGACGACGACGTCGTCGCCGAGCCGGTCCAGCGCGGCCGGCGTCAGGCACCGTGA	MVLLHGSRTSHTMWRRQLVSLRAAGVPAVAPDLPGHGARRATRFELDEAVETVREAVDAAGGRALVAGLSLGGYVAIEHRARYPGQSAGLLAASCSTSPDTPLRAGWLVLARWIERWPDRGARLNDLFVRGLLDPESARDVGDGGFALEVMVDVLEQVGRLDTRAALRRAYSPVRLVNGQWDHFRGQERSMLAAARSSGADARLVVVPRARHLVSLDAPVAFSRALLEAHAAASSADQVPGADPADQRGGVRHDDDVVAEPVQRGRRQAP	PGPT0013125_2952	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433	NA	NA
AK001_01351	528			hypothetical protein	ATGCCTACCCCCACCAAGGGTCCGCGGCTCGGCGGGAGCCCGGCTCACGAGCGGCTGATGCTCGCGAACCTGGCGACCGCTCTCTTCGAGCACGGCCGCATCACGACCACCGAGACGAAGGCGAAGCGCCTGCGCCCGGTCGCCGAGCGTCTGATCACCTTCGCCAAGCGCGGTGACCTGCACGCCCGCCGTCGGGTCCAGACCGTCGTGCGCGACAAGTCCGTCGTGCACACCCTGTTCACCGAGATCGCCCCGGCCATGGCCGAGCGCAACGGTGGCTACACGCGCATCACGAAGGTCGGCAACCGCAAGGGCGACAACGCCCCGATGGCGGTCATCGAGCTCGTGACCGAGCCCGTGAGCCCGAAGCAGGCGGTCGTCAAGGAGGCCACCAAGGCCGCCGAGAAGTCCGCGAAGTCGTCGAAGGCCGAGAAGCCGGCCGACACCGCCGAGGAGACCCCGGCCGCCGAGGCGCCCGAGGCCACCGAGGACAAGGCCGCCGAGTCCGAGGAGTCCAAGGAGGCCTGA	MPTPTKGPRLGGSPAHERLMLANLATALFEHGRITTTETKAKRLRPVAERLITFAKRGDLHARRRVQTVVRDKSVVHTLFTEIAPAMAERNGGYTRITKVGNRKGDNAPMAVIELVTEPVSPKQAVVKEATKAAEKSAKSSKAEKPADTAEETPAAEAPEATEDKAAESEESKEA				NA	NA	NA	NA	NA
AK001_01352	1014	rpoA		DNA-directed RNA polymerase subunit alpha	GTGCTCATCGCACAGCGCCCCTCGCTGACCGAAGAGGTCATCTCGGAGTACCGTTCGCGCTTCTCCATCGAGCCGCTCGAGCCCGGCTTCGGCTACACGCTCGGCAACTCGCTGCGTCGCACGCTGCTGTCGTCCATCCCGGGCGCGGCGGTCACCTCCATCCGCATCGACGGTGTGCTCCACGAGTTCACCACCGTGCCGGGTGTCAAGGAGGACGTCACCGAGATCATCCTCAACATCAAGAACCTCGTCGTCTCCTCGGAGAACGACGAGCCGGTCGTGATGTACCTGCGCAAGCAGGGCGCCGGTGCGGCGACCGCGGCGGACATCGTCCCGCCCGCGGGCGTCGAGGTGCACAACCCCGACCTGCACATCGCCACGCTCAACGACGAGGGCCGGCTCGAGATCGAGCTGACCGTCGAGCGGGGTCGTGGCTACGTGTCCGCCGCGCAGAACAAGACCCTGGACGCCGAGATCGGCCGCATCCCCGTGGACTCGATCTACTCGCCCGTCCTCAAGGTCACGTACAAGGTCGAGGCGACCCGTGTCGAGCAGCGCACCGACTTCGACAAGCTGATCGTCGACGTCGAGACGAAGAACGCGATCGCCCCGCGCGACGCGCTCGCCTCGGCCGGCAAGACGCTCGTCGAGCTCTTCGGCCTCGCCCGCGAGCTGAACGTCGAGGCCGAGGGCATCGAGATCGGCCCGTCGCCGACGGACTCCGCGCTGGCCGCGGACCTGGCGCTGCCGATCGAGGAGCTCAACCTCACGATCCGTTCGTACAACTGCCTCAAGCGTGAGGGCATCCACCAGGTGGGTGAGCTCGTGGCGCGCAGCGAGGCGGACCTGCTCGACATCCGCAACTTCGGTGCCAAGTCGATCAACGAGGTCAAGGAGAAGCTCGCGGAGCTGGGCCTTGCTCTCAAGGACTCGCCGCTCGACTTCGACCCCTCGGCGCAGTACTTCGCCGGCGGGGACGACGAGGCGTCGTACACCGACGAGCAGCCGTACTGA	MLIAQRPSLTEEVISEYRSRFSIEPLEPGFGYTLGNSLRRTLLSSIPGAAVTSIRIDGVLHEFTTVPGVKEDVTEIILNIKNLVVSSENDEPVVMYLRKQGAGAATAADIVPPAGVEVHNPDLHIATLNDEGRLEIELTVERGRGYVSAAQNKTLDAEIGRIPVDSIYSPVLKVTYKVEATRVEQRTDFDKLIVDVETKNAIAPRDALASAGKTLVELFGLARELNVEAEGIEIGPSPTDSALAADLALPIEELNLTIRSYNCLKREGIHQVGELVARSEADLLDIRNFGAKSINEVKEKLAELGLALKDSPLDFDPSAQYFAGGDDEASYTDEQPY				NA	NA	NA	NA	NA
AK001_01353	405	rpsK	COG0100	30S ribosomal protein S11	ATGCCTCCCAAGTCCCGCTCGACCGCCGCGCGCAAGCCGCGTCGCAAGGACAAGAAGAACGTCCCGCACGGCCAGGCGCACATCAAGAGCACCTTCAACAACACGATCGTGTCGATCACCGACCCGTCGGGCGCCGTGATCTCGTGGGCCTCCGCCGGCCACGTCGGCTTCAAGGGCTCGCGCAAGTCCACGCCCTACGCCGCCCAGCTCGCCGCCGAGTCCGCCGCGCGCCGCGCCCAGGACCACGGCGTCAAGAAGGTCGACGTCTTCGTCAAGGGCCCGGGTTCGGGTCGTGAGACCGCGATCCGTTCGCTGCAGGCGACCGGCATCGAGGTCGGCTCGATCCAGGACGTCACGCCCCAGGCGCACAACGGCTGCCGTCCCCCGAAGCGTCGCCGCGTCTGA	MPPKSRSTAARKPRRKDKKNVPHGQAHIKSTFNNTIVSITDPSGAVISWASAGHVGFKGSRKSTPYAAQLAAESAARRAQDHGVKKVDVFVKGPGSGRETAIRSLQATGIEVGSIQDVTPQAHNGCRPPKRRRV				NA	NA	NA	NA	NA
AK001_01354	375	rpsM	COG0099	30S ribosomal protein S13	ATGGCACGTCTGATCGGCGTCGACCTCCCGCGCGAGAAGCGGGTCGTCGTCGCACTCACCTACATCTACGGCGTCGGTCGCACCCGCGCCGAGCAGACCGTCGCGGCCACCGGGATCTCCCCGGACACGCGCGTGAAGGACCTCGGCGACGCCGAGCTCGTCGCGCTGCGCGACCACCTCGAGGGCAACTTCCAGCTCGAGGGTGACCTCCGCCGCGAGGTCGCGGCCGACATCCGCCGCAAGGTGGAGATCGGCACCTACCAGGGTCTGCGTCACCGTCGCGGACTGCCGGTGCGTGGCCAGCGCACCAAGACCAACGCGCGTACCCGCAAGGGCAAGAAGCGCACCGTCGCGGGCAAGAAGAAGGCCCGCTGA	MARLIGVDLPREKRVVVALTYIYGVGRTRAEQTVAATGISPDTRVKDLGDAELVALRDHLEGNFQLEGDLRREVAADIRRKVEIGTYQGLRHRRGLPVRGQRTKTNARTRKGKKRTVAGKKKAR				NA	NA	NA	NA	NA
AK001_01355	114	rpmJ	COG0257	50S ribosomal protein L36	ATGAAGGTCAAGCCGAGCGTCAAGAAGATCTGCGACCAGTGCAAGGTGATCCGCCGGCACGGTCGCGTCATGGTGATCTGCTCGAACCAGCGCCACAAGCAGCGCCAGGGCTGA	MKVKPSVKKICDQCKVIRRHGRVMVICSNQRHKQRQG				NA	NA	NA	NA	NA
AK001_01356	222	infA	COG0361	Translation initiation factor IF-1	ATGGCAAAGAAGGACGGTGTCATCGAGATCGAGGGCAGCGTGATCGAGGCGCTGCCGAACGCGATGTTCCGCGTGGAGCTGAGCAACGGTCACAAGGTCCTCGCCCACATCTCGGGCAAGATGCGGCAGCACTACATCCGGATCCTCCCCGAGGACCGCGTCGTGGTGGAGCTCAGCCCGTACGACCTGTCCCGTGGCCGGATCGTCTACCGCTACAAGTAG	MAKKDGVIEIEGSVIEALPNAMFRVELSNGHKVLAHISGKMRQHYIRILPEDRVVVELSPYDLSRGRIVYRYK				NA	NA	NA	NA	NA
AK001_01357	873	map-1	COG0024	Methionine aminopeptidase 1	GTGTTCCGTTCCCGTCCCCGGATCGAGCTGAAGTCGCGCGCCGAGATCCGGCTGATGCGCCGTGCCGGCCTGGTCGTCGCCGACGCGCTGTCCGCGGTCCGGGCCGCAGCGCGCCCCGGGGTGACGACGGGTGACCTCGACCGGGTGGCGGCCGACGTGATCGCCGCCGGGGCGACGCCCTCCTTCCTGGGCTACCACGGCTTCCCCGCGACGATCTGCACGTCGGTGAACGACGAGATCGTCCACGGGATCCCGGGGACCCGCTCCCTGGCCGTGGGTGACGTGGTGTCCGTCGACTGCGGTGCGATCGTGGACGGCTGGCACGGCGACTCGGCCGTCTCGTTCCAGATCGGCCCGGACGGCGCCCTGGGGCCCGACGACCCGCGGGCCCGGGAGCTGGACGCCGACGACGCCGCGCTCGTGCTGGCGGCCCGCAGCGCGATGTGGGCGGGCGTCGCGGCCCTGGCGTCCGCACGGCGCGTGGGCGAGGTCGGCGACGCCGTCGAGATGGCCGCCGAGACCGCGGGCGGGCTGGTCGGTACCTCCTACGGCATCGTCGAGGAGTACACGGGCCACGGCATCGGGACGGCGATGCACCAGCCGCCGGACGTGCTCAACTTCCGGGCGACCGACCGCGGGCCCCGGGTCCGAGCGGGCATGTGCCTGGCCGTGGAGCCCATGCTGACGCGGGGTACCGAGGTGACCCGGGTGCTGGGGGACGACTGGACCGTGGTGGCCGCCGACGGTGCCCGCGCCGCGCACTGGGAGCACACGGTCGCGGTGCTGGACGACGGCATCGCGGTGCTCACCGCCGCCGACCTCGGTCGCGAGGGCCTGGCGGCCTTCGACGTCGTCCCCGTCGACCTCGACTGA	MFRSRPRIELKSRAEIRLMRRAGLVVADALSAVRAAARPGVTTGDLDRVAADVIAAGATPSFLGYHGFPATICTSVNDEIVHGIPGTRSLAVGDVVSVDCGAIVDGWHGDSAVSFQIGPDGALGPDDPRARELDADDAALVLAARSAMWAGVAALASARRVGEVGDAVEMAAETAGGLVGTSYGIVEEYTGHGIGTAMHQPPDVLNFRATDRGPRVRAGMCLAVEPMLTRGTEVTRVLGDDWTVVAADGARAAHWEHTVAVLDDGIAVLTAADLGREGLAAFDVVPVDLD	PGPT0020010_2222	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265	NA	NA
AK001_01358	642	adk		Adenylate kinase	TTGACCGAGACGACCACCCCGACCACCCGTCGCGAGCTCCACGGCTCCCAGCGTCCCGAGGCACGGGTGACCCGCCTGGTGATCATGGGACCGCAGGGCGCGGGCAAGGGCACCCAGGCCGCCCGGCTCGCCGAGGTCTTCGGGATCCCCGCCATCTCGACCGGTGACATCTTCCGGGCGAACATCAAGGGCGGCACCGAGCTCGGCCGGCTGGCCCAGGAGTACTCCGCGAAGGGCGAGCTCGTCCCCGACGAGGTCACGGACTCCATGGTCCGCGACCGCCTCGCGGAGGACGACGTCAAGGGCGGCTTCCTGCTCGACGGGTACCCTCGCAACGCCCACCAGGTCGAGGCGCTGGACGGCATCCTCGGCGAGCTCGACTGGGAGCTGGACGGCGTGATCGAGCTGACGGCGGACCGCGAGGAGCTGCTGCAGCGCATCGCCAAGCGTGCCGAGGTCGAGGGCCGCGAGGACGACACCCCGGACGCGATCGCCCGCCGGCTCGACATCTACGAGGCCGAGACGGCGCCGCTGACGGCCGCCTACGCCGAGCGCGGCCTGCTGGTCCAGGTCGACGGGATCGGCGAGATCGCCGAGGTCACCGACCGGATCGTCGCCGCCCTCGAGCAGCAGTTCGGCTGA	MTETTTPTTRRELHGSQRPEARVTRLVIMGPQGAGKGTQAARLAEVFGIPAISTGDIFRANIKGGTELGRLAQEYSAKGELVPDEVTDSMVRDRLAEDDVKGGFLLDGYPRNAHQVEALDGILGELDWELDGVIELTADREELLQRIAKRAEVEGREDDTPDAIARRLDIYEAETAPLTAAYAERGLLVQVDGIGEIAEVTDRIVAALEQQFG	PGPT0009040_5543	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939	NA	NA
AK001_01359	1299	secY	COG0201	Protein translocase subunit SecY	GTGCTCAGCGCATTCGGCCGGGCTTTCCGGACACCGGACCTGCGGCGCAAGCTGCTGTTCACGATCGCGATCATGGCGCTGTTCCGCGTGGGGTCGTTCGTCCCGACGCCGGGCGTCGACTACGGCAACGTCCAGCAGTGCGTGGCCTCCCTGGAGGACAGCACCTCGCTGCTCGGCCTCGTCAACACCTTCAGCGGCGGAGCCCTCCTGCAGCTGTCGGTGTTCGCGCTGGGGATCATGCCCTACATCACCGCCAGCATCATCACGCAGCTCCTGCGTGTCGTCATCCCGCGGTTCGAGGCCCTCCACAAGGAGGGGCAGTCCGGCCAGTCGAAGCTGACGCAGTACACGCGGTACCTGACGATCGCCCTGGCGATCCTGCAGTCGACGACGATCGTGACCACGGCTCGTACCGGCCTCCTCTTCCCCGGCTGCAACCTCGACGTCGTCGTCGACGACAGCTTCTGGACCGCCGCCCTGATGGTGATCACCATGACGGCGGGCACCGGTCTGGTGATGTGGCTCGGCGAGCTCATCACCGAGCGCGGCATCGGCAACGGCATGTCGCTGCTGATCTTCACCTCGATCGTCGCCAGCTTCCCGACGGCCCTCTGGTCGATCGCCGGCGGTGCGAACGGCCCCCTGAACTTCATCATCATGATCGGCGTGATCGTGCTGGTCATCGGCATGGTCGTCTTCGTCGAGCAGTCCCAGCGCCGCATCCCGGTCCAGTACGCCAAGCGGATGGTCGGCCGCCGGATGTACGGGGGGACCAGCACCTACATCCCGATCAAGATCAACATGTCCGGCGTCATCCCGGTCATCTTCGCGGCGTCGATCCTCGCGATCCCCGCGCTGATCGCCCAGTTCGGCGACCAGACCGCGGACTGGGTCGTCTGGATCTCGAACAACCTGGCCCAGCAGGACCAGGCGCTGTACATCGTGCTCTACGTCGCGATGATCATCTTCTTCGCCTTCTTCTACACCTCGATCACGTTCAACCCGGACGAGGTCGCGGACAACATGAAGAAGTACGGCGGCTTCATCCCGGGCATCCGTGCCGGGCGCCCCACGGCCGAGTACCTGGACTACGTGATCACCCGCATCACGTCGGCCGGTTCGCTCTATCTCGCCATCGTCGCGCTGATCCCGACGTTGGTGCTGGTGTTCCTCGGCGTCACGACGAACATCCCGTTCGGCGGGACGTCGATCCTCATCATCGTCGGTGTTGGGCTGGAGTTCGTGAAGCAGGTGAACTCCCAGCTCCAGCAGCGCCACTACGAAGGGTTCCTCCGTTGA	MLSAFGRAFRTPDLRRKLLFTIAIMALFRVGSFVPTPGVDYGNVQQCVASLEDSTSLLGLVNTFSGGALLQLSVFALGIMPYITASIITQLLRVVIPRFEALHKEGQSGQSKLTQYTRYLTIALAILQSTTIVTTARTGLLFPGCNLDVVVDDSFWTAALMVITMTAGTGLVMWLGELITERGIGNGMSLLIFTSIVASFPTALWSIAGGANGPLNFIIMIGVIVLVIGMVVFVEQSQRRIPVQYAKRMVGRRMYGGTSTYIPIKINMSGVIPVIFAASILAIPALIAQFGDQTADWVVWISNNLAQQDQALYIVLYVAMIIFFAFFYTSITFNPDEVADNMKKYGGFIPGIRAGRPTAEYLDYVITRITSAGSLYLAIVALIPTLVLVFLGVTTNIPFGGTSILIIVGVGLEFVKQVNSQLQQRHYEGFLR	PGPT0025725_3852	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076	NA	NA
AK001_01360	477	rplO	COG0200	50S ribosomal protein L15	ATGGCCGACAGCACCCAGGACAAGGGCGCGCAGTCGCAGCCGCTGAAGGTCCACCACCTGCGTCCGGCTCCCGGCGCCAAGAAGGCCAAGACCCGTGTGGGTCGTGGTGAGGCGTCGAAGGGCAAGACGGCGGGTCGCGGCACCAAGGGCACCAAGGCTCGTTACCAGGTGCCCGCGGGCTTCGAAGGTGGGCAGATGCCGCTGCACATGCGTCTGCCGAAGCTGCGTGGCTTCAAGAACCCGTTCCGCGTCGAGTACCAGGTCGTCAACCTGGACAAGCTCGCCGCGCTGTACCCGGAGGGGGGCTCCGTCACGGTCGACGATCTCGTCGCCAAGGGCGCGGTCCGCTCCGGCCAGCCGGTGAAGGTTCTCGGCACGGGGGAGATCACCGTCAAGCTGGACGTCGCGGTCGACGCGATCTCCGGCTCCGCCAAGGACAAGGTCCTGGCGGCCGGCGGCTCGGTCTCCGAGGACTGA	MADSTQDKGAQSQPLKVHHLRPAPGAKKAKTRVGRGEASKGKTAGRGTKGTKARYQVPAGFEGGQMPLHMRLPKLRGFKNPFRVEYQVVNLDKLAALYPEGGSVTVDDLVAKGAVRSGQPVKVLGTGEITVKLDVAVDAISGSAKDKVLAAGGSVSED				NA	NA	NA	NA	NA
AK001_01361	183	rpmD	COG1841	50S ribosomal protein L30	ATGGCCCGTCTCAAGGTCACCCAGGTCAAGTCCGCCATCGGCGGCAAGCAGAACCAGCGTGACACGCTGCGGACCCTCGGCCTCAAGCGGATCGGCGACATCGCCGTGAAGGAGGACCGTCCGGAGATCCGTGGCATGGTCACCACGGTGGCGCATCTCGTCACCGTCGAGGAGGTCGACTGA	MARLKVTQVKSAIGGKQNQRDTLRTLGLKRIGDIAVKEDRPEIRGMVTTVAHLVTVEEVD				NA	NA	NA	NA	NA
AK001_01362	666			hypothetical protein	ATGGCTGCAGGGCAGCGCAACACCGGCGCCCCCCAGGGCGCCAACGAGTCCAAGAACGACGGTCGCCGCTCCAACCGGCGCGACGACCGCCGCAACAACCGCGGCGACGACCGCAACGCCTTCGTCGAGCGCGTGGTGACCATCAACCGCGTCGCCAAGGTCGTCAAGGGCGGCCGCCGCTTCAGCTTCACCGCGCTGGTCGTGGTGGGCGACGGCGACGGCACCGTCGGTGTCGGCTACGGCAAGGCGAAGGAGGTGCCCTCGGCGATCGCCAAGGGTGTCGAGGAGGCGAAGAAGAACTTCTTCCGCGTCCCCCGCATCCAGGGCACCATCCCGCACCAGGTCCAGGGCGAGGAGGCGGCCGGTGTCGTCTTCCTGCGTCCGGCCTCCCCGGGTACCGGTGTGATCGCCGGTGGTCCGGTGCGCGCCGTGCTGGAGTGCGCCGGGATCCACGACGTGCTGAGCAAGTCGCTCGGCTCGTCGAACGCGATCAACATCGTGCGCGCCACCGTCGCGGCCCTCCAGGGCCTCGAGGAGCCGGCCGCCGTGGCCGCTCGTCGTGGTCTGCCGCTCGAGGACGTCGCCCCGGCTCCGCTGCTGCGTGCGCAGGCCGCCGGCCTGGCCGCGCAGTCGGAGAAGAAGGCCGACGAGAAGGTGGGTGCGTGA	MAAGQRNTGAPQGANESKNDGRRSNRRDDRRNNRGDDRNAFVERVVTINRVAKVVKGGRRFSFTALVVVGDGDGTVGVGYGKAKEVPSAIAKGVEEAKKNFFRVPRIQGTIPHQVQGEEAAGVVFLRPASPGTGVIAGGPVRAVLECAGIHDVLSKSLGSSNAINIVRATVAALQGLEEPAAVAARRGLPLEDVAPAPLLRAQAAGLAAQSEKKADEKVGA				NA	NA	NA	NA	NA
AK001_01363	372	rplR	COG0256	50S ribosomal protein L18	ATGGCTCTCAAGGTTCTCGGCAAGGGCAAGAGCGTCGCTCGTCAGCGTCGTCACCTTCGCCTGCGCAAGAAGATCAAGGGCACCGCGGAGCGTCCCCGCCTCGTCGTGACCCGTTCGTCGCGTCACATGGTGGCGCAGGTCGTGGACGACACGGTCGGCAAGACCGTGGCCTCCGCCTCGACGCTCGAGGCCGACCTGCGTGCGCTGGACGCCGACAAGACCGCCAAGGCCCGCAAGGTCGGCGAGCTCGTCGCCGAGCGTGCGAAGTCCGCCGGTGTCGACGCCGTGGTCTTCGACCGTGGCGGCAACAAGTACCACGGTCGGGTGGCTGCGGTCGCCGACGGCGCACGGGAAGCGGGGTTGGCTCTGTGA	MALKVLGKGKSVARQRRHLRLRKKIKGTAERPRLVVTRSSRHMVAQVVDDTVGKTVASASTLEADLRALDADKTAKARKVGELVAERAKSAGVDAVVFDRGGNKYHGRVAAVADGAREAGLAL				NA	NA	NA	NA	NA
AK001_01364	537	rplF	COG0097	50S ribosomal protein L6	ATGTCTCGAATCGGCAAGCTCCCCGTTCCGGTCCCGTCCGGCGTGGAGATCACCATCAGCGGCGCGCTGGTGACCGTCAAGGGGCCCAAGGGCACCCTGGAGCACACGGTTCCCGCGCCGATCACCGTCGAGCAGACCGAGGACGGCATCAAGGTCTCGCGTCCCGACGAGGAGCGCGAGTCCCGGTCGCTGCACGGCCTGACCCGCACCCTGCTGTCCAACATGGTCACCGGTGTGACCAACGGTTACGAGCGCAAGCTCGAGATCGTCGGTACCGGTTACCGCGTGGTGGCCAAGGGCCAGGACCTCGAGTTCGCGCTCGGGTTCTCGCACCCCGTCACGGTCTCGGCGCCGGAGGGCATCACCTTCGCGGTCGAGAGCCCGACGAAGTTCTCGGTCGCCGGCATCGACAAGCAGCAGGTCGGCGAGGTCGCTGCGAACATCCGCAAGATCCGCCGCCCCGAGCCCTACAAGGGCAAGGGTGTGCGGTACGCCGACGAGGTCGTCCGTCGCAAGGTCGGAAAGGCTGGTAAGTGA	MSRIGKLPVPVPSGVEITISGALVTVKGPKGTLEHTVPAPITVEQTEDGIKVSRPDEERESRSLHGLTRTLLSNMVTGVTNGYERKLEIVGTGYRVVAKGQDLEFALGFSHPVTVSAPEGITFAVESPTKFSVAGIDKQQVGEVAANIRKIRRPEPYKGKGVRYADEVVRRKVGKAGK				NA	NA	NA	NA	NA
AK001_01365	393	rpsH	COG0096	30S ribosomal protein S8	ATGACCGACCCGATCGCAGACATGCTGACGCGTCTGCGCAACGCGAACTCGGCGCACCACGACACGGTCACGATGCCGTTCTCGAAGCTGAAGTCGCGCATCGCGGAGATCCTGCAGGCCGAGGGTTACATCACCGGCTGGACCGTCGAGGACGCTCAGGTGGGCAAGAACCTCACCCTGACCCTCAAGTACGGCCCGAGCCGTGAGCGCGCGCTGACCGGCGTGCGCCGTGTGTCCAAGCCCGGTCTGCGCGTCTACGCGAAGTCCACCAACCTCCCGAAGGTCCTCGGTGGCCTCGGCGTGGCCATCCTGTCCACCTCGTCCGGCCTCCTGACCGACCGTCAGGCGCAGGACAAGGGCGTGGGCGGCGAAGTCCTCGCCTACGTCTGGTAA	MTDPIADMLTRLRNANSAHHDTVTMPFSKLKSRIAEILQAEGYITGWTVEDAQVGKNLTLTLKYGPSRERALTGVRRVSKPGLRVYAKSTNLPKVLGGLGVAILSTSSGLLTDRQAQDKGVGGEVLAYVW				NA	NA	NA	NA	NA
AK001_01366	186	rpsZ	COG0199	30S ribosomal protein S14 type Z	ATGGCGAAGAAGGCCCTGATCAACAAGGCGAACGCCAAGCCGAAGTTCGCCGTGCGTGCCTACACCCGGTGCCAGCGCTGCGGCCGGCCGCACTCGGTCTACCGCAAGTTCGGCCTGTGCCGGATCTGCCTGCGGGAGATGGCCCACCGTGGCGAGCTCCCCGGCGTCACCAAGAGCAGCTGGTAA	MAKKALINKANAKPKFAVRAYTRCQRCGRPHSVYRKFGLCRICLREMAHRGELPGVTKSSW				NA	NA	NA	NA	NA
AK001_01367	573	rplE	COG0094	50S ribosomal protein L5	ATGACCGAGACGACTCTCGAGGCCCCGGCCCTGCCGCGCCTCAAGCAGAAGTACCGCGAGGAGATCCTCTCCGCCCTCAAGGACGAGTTCGACCACCAGAACGTCCAGCAGGTCGCCGGTCTGACCAAGATCGTCGTCAACATGGGTGTCGGGGACGCTGCGCGCGACTCCAAGCTCATCGAGGGCGCGATCCGCGACCTGACCGCGATCACCGGCCAGAAGCCGGCGATCAACCGTGCCAAGAAGTCCATCGCGCAGTTCAAGCTGCGCGAGGGCATGCCGATCGGCGCGCACGTCACCCTGCGTGGTGACCGCATGTGGGAGTTCCTCGACCGCCTGCTCTCGATCGCGCTGCCGCGCATCCGCGACTTCCGCGGACTGAGCCCGAAGCAGTTCGACGGCCACGGCAACTACACGTTCGGTCTCACGGAGCAGTCGATGTTCCACGAGATCAACCAGGACAAGATCGACCGTGTCCGGGGCATGGACATCACGATCGTGACGACGGCGACGACCGACGACGAGGGCCGCTCCCTGCTGCGCCGTCTCGGTTTCCCCTTCAAGGAGAACTGA	MTETTLEAPALPRLKQKYREEILSALKDEFDHQNVQQVAGLTKIVVNMGVGDAARDSKLIEGAIRDLTAITGQKPAINRAKKSIAQFKLREGMPIGAHVTLRGDRMWEFLDRLLSIALPRIRDFRGLSPKQFDGHGNYTFGLTEQSMFHEINQDKIDRVRGMDITIVTTATTDDEGRSLLRRLGFPFKEN				NA	NA	NA	NA	NA
AK001_01368	342	rplX	COG0198	50S ribosomal protein L24	ATGGCGAAGATCAAGAAGGGCGACCAGGTGATCGTCACCGCCGGTCGCGACAAGGGCAAGACGGGTCGCGTGCTCGAGGTGCTCACGGACTCGGACCGCATCGTGGTCGAGGGCATCCAGCGCGTGACCAAGCACGTGAAGGCCGGCCAGTCGGCTCGCGGCACCCGCACGGGTGGCCTCGAGACCGTCGAGGCCCCGATCCACGTGTCCAACGTGATGCTGGTCGACCCCGAGACGAAGAAGCCGACCCGCGTCGGCTTCCGCCTCGAGGAGGTGGAGCAGGACGGTCGCACCCGCACGGTGCGCGTCCGCTACGCCAAGCGCTCCGGGAAGGACATCTGA	MAKIKKGDQVIVTAGRDKGKTGRVLEVLTDSDRIVVEGIQRVTKHVKAGQSARGTRTGGLETVEAPIHVSNVMLVDPETKKPTRVGFRLEEVEQDGRTRTVRVRYAKRSGKDI				NA	NA	NA	NA	NA
AK001_01369	369	rplN	COG0093	50S ribosomal protein L14	ATGATCCAGCAGGAGTCGCGACTGCGTGTCGCCGACAACACGGGTGCCAAGGAGATCCTCACCATCCGTGTTCTCGGTGGCTCCGGCCGTCGCTACGCCGGTATCGGCGACACCATCGTCGCCACCGTCAAGGACGCGATCCCGGGCGGCAACGTGAAGAAGGGCGACGTCGTCAAGGCCGTCATCGTCCGGACCGCCAAGGAGCGCCGTCGTCCCGACGGTTCCTACATCAAGTTCGACGAGAACGCCGCCGTCATCCTCAAGGGCGACAGCGAGCCCCGTGGGACCCGCATCTTCGGCCCGGTCGGCCGTGAGCTGCGCGACAAGCGGTTCATGAAGATCATCTCGCTGGCTCCGGAGGTGCTCTGA	MIQQESRLRVADNTGAKEILTIRVLGGSGRRYAGIGDTIVATVKDAIPGGNVKKGDVVKAVIVRTAKERRRPDGSYIKFDENAAVILKGDSEPRGTRIFGPVGRELRDKRFMKIISLAPEVL				NA	NA	NA	NA	NA
AK001_01370	285	rpsQ	COG0186	30S ribosomal protein S17	ATGAGCGAGAACACCGAGACGGTGACCACCGAGGAGCGGGCCAGCCGCAAGGTGCGCCGCGGATACGTCGTCAGCGACAAGATGGAGAAGACCATCGTCGTCGAGGTCGAGGACCGCAAGAAGCACCCGCTCTACGGCAAGGTCATGCGCCGTACGAACAAGGTGAAGGTGCACGACGAGGAGAACACGGCCGGTATCGGCGACCTCGTCGTCATCATGGAGACCCGCCCGCTGTCCGCGACCAAGCGGTGGCGCCTGGTGGAGATCCTCGAGAAGGCCAAGTAA	MSENTETVTTEERASRKVRRGYVVSDKMEKTIVVEVEDRKKHPLYGKVMRRTNKVKVHDEENTAGIGDLVVIMETRPLSATKRWRLVEILEKAK				NA	NA	NA	NA	NA
AK001_01371	240	rpmC	COG0255	50S ribosomal protein L29	ATGGCTATCGGTACCCAGGGCCTGGCCCCCGCCGACCTCGACGGCTTCGACGACGAGACCCTCGTCGCGAAGCTCAAGGAGCAGAAGGAAGAGCTCTTCAACCTTCGCTTCCAGGCCGCCACCGGCCAGCTCGAGTCGCACGGCCGCCTCAAGGCGGTCAAGCGCGACATCTCGCGGATCTACACGGTCCTGCGGGAGCGCGAGCTCGGCATCCGTACGGCCCCGAGCGTGAGTGAGTGA	MAIGTQGLAPADLDGFDDETLVAKLKEQKEELFNLRFQAATGQLESHGRLKAVKRDISRIYTVLRERELGIRTAPSVSE				NA	NA	NA	NA	NA
AK001_01372	420	rplP	COG0197	50S ribosomal protein L16	ATGCTGATCCCGCGCAGGCTCAAGCACCGCAAGCAGCACCACCCCAAGCGCTCCGGCGTGGCCAAGGGTGGCACCACGATCTCGTTCGGCGACTACGGCATCCAGGCCCTCGAGCCCGCCTACGTCACGAACCGCCAGATCGAGGCTGCTCGTATCGCGATGACCCGTCACATCAAGCGTGGCGGCAAGGTCTGGATCAACATCTACCCGGACCGCCCGCTGACCAAGAAGCCGGCTGAGACCCGCATGGGTTCCGGCAAGGGCTCGCCCGAGTGGTGGGTCGCCAACGTCAAGCCCGGCCGCATCGTCTTCGAGCTGGCCGGCGTCCCCGAGGACTTGGCACGCGAGGCCCTGCGCCGCGCGATGCACAAGCTTCCGATGAAGTGCCGTTTCGTGGTGCGCGAAGGTGGTGCGAACTGA	MLIPRRLKHRKQHHPKRSGVAKGGTTISFGDYGIQALEPAYVTNRQIEAARIAMTRHIKRGGKVWINIYPDRPLTKKPAETRMGSGKGSPEWWVANVKPGRIVFELAGVPEDLAREALRRAMHKLPMKCRFVVREGGAN				NA	NA	NA	NA	NA
AK001_01373	834	rpsC	COG0092	30S ribosomal protein S3	GTGGGGCAGAAGATTCACCCGCACGGGTACCGCCTCGGCATCACCACCGACCACCGGTCGCGCTGGTTCGCCGACAGCACCAAGCCTGGTCAGCGGTACCGCGACTACGTCCGCGAGGACGTCGAGATCCGCAAGCTCATGAGCACCGGTCTCGAGCGCGCCGGCATCGCCAAGGTCGAGATCGAGCGCACCCGTGACCGCGTCCGCGTGGACATCCACACGGCGCGTCCCGGCATCGTCATCGGCCGCCGCGGCGCCGAGGCGGACCGCATCCGCGGCGAGCTCGAGAAGCTGACGGGCAAGCAGGTCCAGCTCAACATCCTCGAGGTCAAGAACGCCGAGATCGACGCGCAGCTCGTCGCGCAGGGCATCGCCGAGCAGCTGGCGAGCCGCGTCTCCTTCCGTCGCGCCATGCGCAAGGGCATCCAGTCCGCGCAGCGTGCCGGCGCGAAGGGCATCCGGGTCCAGGTCTCGGGCCGTCTCGGCGGCGCCGAGATGAGCCGGTCGGAGTTCTACCGCGAGGGTCGCGTGCCGCTGCACACCCTGCGCGCGAACATCGACTACGGCTTCTTCGAGGCCCGTACCACCTTCGGTCGCATCGGCGTGAAGGTCTGGATCTACAAGGGCGACCTCACCGAGAAGGAGTTCGCTGCTCAGCAGGCGGCCTCCGCGCCCCGACAGGGCCGTGGTGGCGGCCGTGGCGGCGAGCGTCGTGGTCGTCGCAACGACCGCAACGAGCGTCCGTCGCAGCCGAAGCAGAGCTCCGGCGAGGCGTCCGACGCGCCGGCCCCGGCCGAGCAGGCCGCGGCCCCCGAGTCCGGAACGGAGGCCTGA	MGQKIHPHGYRLGITTDHRSRWFADSTKPGQRYRDYVREDVEIRKLMSTGLERAGIAKVEIERTRDRVRVDIHTARPGIVIGRRGAEADRIRGELEKLTGKQVQLNILEVKNAEIDAQLVAQGIAEQLASRVSFRRAMRKGIQSAQRAGAKGIRVQVSGRLGGAEMSRSEFYREGRVPLHTLRANIDYGFFEARTTFGRIGVKVWIYKGDLTEKEFAAQQAASAPRQGRGGGRGGERRGRRNDRNERPSQPKQSSGEASDAPAPAEQAAAPESGTEA				NA	NA	NA	NA	NA
AK001_01374	369	rplV	COG0091	50S ribosomal protein L22	ATGGAAGCCAAGGCGCAGGCGCGGTTCGTCCGTGTCACGCCCATGAAGGCCCGGCGCGTCGTCGACCTCATCCGTGGCAAGCAGGCCGCTGAGGCCGTCGCGGTGCTGAAGTTCGCGCCGCAGGCGGCGAGCGAGCCCATCCGCAAGGTGGTCGAGTCCGCTGTGGCCAACGCCCGGGTGAAGGCCGACCGCGCGAACGAGCGCTTCGACGAGGCCGACTACGTGGTCTCCGTGGCGTACGTGGACGAGGGCCCGACCCTCAAGCGGTTCCGCCCCCGTGCGCAGGGGCGTGCCAGCCGCATCCTCAAGCGCACCAGCCACATCACCGTGGTCGTCGCACCGCGCGAGCAGAAGGAAGGGGCCCGATAG	MEAKAQARFVRVTPMKARRVVDLIRGKQAAEAVAVLKFAPQAASEPIRKVVESAVANARVKADRANERFDEADYVVSVAYVDEGPTLKRFRPRAQGRASRILKRTSHITVVVAPREQKEGAR				NA	NA	NA	NA	NA
AK001_01375	282	rpsS	COG0185	30S ribosomal protein S19	ATGCCTCGTAGCCTGAAGAAGGGCCCCTTCGTCGACGACCACCTGCAGAAGAAGGTGGACGGTCAGAACGAGAAGGGGACCAAGAACGTCATCAAGACCTGGTCCCGTCGGTCGGTCATCACGCCCGACTTCCTCGGCCACACCTTCGCCGTCCACGACGGTCGCAAGCACGTCCCGGTCTTCGTGACCGAGGCCATGGTGGGTCACAAGCTGGGCGAGTTCGCCCCCACGCGGAACTTCCGCGGCCACGTGAAGGACGACAGGAAGGGTCGCCGCCGCTGA	MPRSLKKGPFVDDHLQKKVDGQNEKGTKNVIKTWSRRSVITPDFLGHTFAVHDGRKHVPVFVTEAMVGHKLGEFAPTRNFRGHVKDDRKGRRR				NA	NA	NA	NA	NA
AK001_01376	837	rplB	COG0090	50S ribosomal protein L2	ATGGGAATCCGTAAGCACAAGCCGACGACGCCCGGCCGCCGTGGCTCGAGCGTTGCCGACTTCGTCGAGGTCACCCGCTCGGAGCCGGAGAAGTCGCTGGTTCGTCCGCTGTCCAAGACCGGCGGCCGCAACAGCTCCGGCCGGATCACCACCCGGCACAAGGGCGGTGGCCACAAGCGCGCCTACCGCGTGATCGACTTCCGTCGTCACGACAAGGACGGCGTGCCGGCGAAGGTCGCGCACATCGAGTACGACCCGAACCGCACCGCGCGCATCGCGCTGCTGCACTACGCCGACGGCACGAAGCGCTACATCATCGCGCCGAACAAGCTGGCGCAGGGCGACACGGTCGAGGCCGGCGCGGGTGCCGACATCAAGCCCGGCAACAACCTGCCGCTGCGCAACATCCCGACGGGTACCGTCATCCACGCCGTCGAGCTCCGCCCCGGTGGCGGCGCGAAGATCGCCCGCAGCGCGGGCGCTTCGGTCCAGCTCGTCGCCAAGGACGGCCCCTACGGCCAGCTGCGCATGCCGTCCGGCGAGATCCGGAACGTCGACCTGCGCTGCCGCGCGACCATCGGCTGGGTCGGCAACGCCGAGCAGTCGAACATCAACTGGGGCAAGGCCGGCCGCATGCGCTGGAAGGGCGTCCGCCCGACCGTCCGCGGTGTCGTGATGAACCCCGTCGACCACCCGCACGGTGGTGGCGAGGGCCGCACGTCCGGTGGCCGTCACCCGGTGAGCCCCTGGGGCCAGCCCGAGGGCCGGACCCGCCGTCCGAACAAGCCCAGCGACAAGCTGATCGTCCGCCGTCGTCGCACCGGCAAGAAGCGCTGA	MGIRKHKPTTPGRRGSSVADFVEVTRSEPEKSLVRPLSKTGGRNSSGRITTRHKGGGHKRAYRVIDFRRHDKDGVPAKVAHIEYDPNRTARIALLHYADGTKRYIIAPNKLAQGDTVEAGAGADIKPGNNLPLRNIPTGTVIHAVELRPGGGAKIARSAGASVQLVAKDGPYGQLRMPSGEIRNVDLRCRATIGWVGNAEQSNINWGKAGRMRWKGVRPTVRGVVMNPVDHPHGGGEGRTSGGRHPVSPWGQPEGRTRRPNKPSDKLIVRRRRTGKKR				NA	NA	NA	NA	NA
AK001_01377	303	rplW	COG0089	50S ribosomal protein L23	GTGACCGCCGTGACGAAGGACCCGCGCGACATCCTGATCGCGCCGGTCGTCTCCGAGAAGTCCTACAACCTCCTCGACGAGGGCAAGTACACCTTCGTCGTGGACCCGGGCGCCAACAAGACCGAGATCAAGATCGCGGTCGAGAAGGTCTTCGGTGTCAAGGTCGCCTCGGTGAACACGATCAACCGCAAGGGCAAGGCGCGTCGTACGCGCTACGGCCTGGGCAAGCGCAAGGACACGAAGCGTGCGATCGTCACCCTCCGCGAGGGGTCGATCGACATCTTCGGCGGTCCGGTCGGCTGA	MTAVTKDPRDILIAPVVSEKSYNLLDEGKYTFVVDPGANKTEIKIAVEKVFGVKVASVNTINRKGKARRTRYGLGKRKDTKRAIVTLREGSIDIFGGPVG				NA	NA	NA	NA	NA
AK001_01378	699	rplD	COG0088	50S ribosomal protein L4	ATGGCTAACCTGACCGTCGACGTGCTCGACGCCTCGGGCAAGAAGGCCGGCACCGCCGAGCTCCCCGCCGAGGTGTTCGACGTCGCCACGAACGTCCCGCTGATCCACCAGGTGGTCGTCGCGCAGCGCGCGGCCTCCCGCCAGGGGACGGCCGCCACCAAGACCCGCGCCGACGTGCGCGGCGGTGGCAAGAAGCCCTACAAGCAGAAGGGCACCGGCCGCGCCCGCCAGGGTTCGACCCGCGCCCCGCAGTTCGCCGGCGGTGGCACCGTCCACGGCCCGCAGCCGCGCAAGTACGACCAGCGCACGCCGAAGAAGATGAAGGCCGCCGCCCTGCGCGGTGCCCTCTCCGACCGCGCTCGCGCCGGCCGTGTCCACGTGGTCGCCGGGTTCGGCGTCGACGACAAGCCGTCCACCAAGGCGGCCCTCGGCACGCTCGCCGCGCTCACCGACCGCACGCACGTGCTGGTCGTCACCGAGCGCTCGGACGAGCTGACCGTCAAGTCGCTGCGGAACCTGGAGCAGGTCCACCTGCTCACCGCGGACCAGCTGAACACCTACGACGTCCTCGTCTCCGACGACGTCGTCTTCACCTCCGGCGCGCTCGAGGCGTTCCTGGCCGGCCCGGCGACGGGCAAGTCGGCGAAGGCCGTCGCGACCGAGACCGAGGCCGCGTCCGAGAAGGAGGCCACCAAGTGA	MANLTVDVLDASGKKAGTAELPAEVFDVATNVPLIHQVVVAQRAASRQGTAATKTRADVRGGGKKPYKQKGTGRARQGSTRAPQFAGGGTVHGPQPRKYDQRTPKKMKAAALRGALSDRARAGRVHVVAGFGVDDKPSTKAALGTLAALTDRTHVLVVTERSDELTVKSLRNLEQVHLLTADQLNTYDVLVSDDVVFTSGALEAFLAGPATGKSAKAVATETEAASEKEATK				NA	NA	NA	NA	NA
AK001_01379	654	rplC	COG0087	50S ribosomal protein L3	ATGACCAACCAGCAGAAGAACGTGACCGCGGTGCTCGGCACCAAGCTCGGCATGACCCAGACGTGGAACGAGGACGGCAAGCTCGTCCCGGTCACCGTCGTCGCCGTCCCCACCAACGTGGTGACGCAGGTCCGCAACGCGGAGTCCGACGGCTACGCGGCCGTCCAGCTCGCCGCCGGCCAGATCGACCCGCGCAAGGTCACCAAGCCGCTCAAGGGCCACTTCGAGAAGGCCGGCGTCACGCCGCGCCGCCACGTGGCCGAGATCCGTACCGACGACTCCGCCGAGTACACGCTCGGCCAGGAGATCACCGCCGAGGCCTTCGAGGCCGGCGTGGTGGTCGACGTCGTCGGCACCACCAAGGGCAAGGGCACCGCCGGTGTCATGAAGCGCCACGGCTTCTCCGGCGTCGGCGCCTCGCACGGTGCGCACCGCAACCACCGCAAGCCGGGTTCGATCGGTGGCGCGGCCACGCCGTCGCGCGTGTTCCGCGGCATGCGGATGGCCGGTCGCATGGGCCACGCCCGCAAGACCGTCCAGAACCTGACCGTCCACGCGGTCGACGCGGAGAAGGGCCTGCTGCTCGTCAAGGGCGCGGTCCCGGGTCCGAAGGGCGGCATCGTCCTCGTCCGTACCGCCGCGAAGGGAGCCTGA	MTNQQKNVTAVLGTKLGMTQTWNEDGKLVPVTVVAVPTNVVTQVRNAESDGYAAVQLAAGQIDPRKVTKPLKGHFEKAGVTPRRHVAEIRTDDSAEYTLGQEITAEAFEAGVVVDVVGTTKGKGTAGVMKRHGFSGVGASHGAHRNHRKPGSIGGAATPSRVFRGMRMAGRMGHARKTVQNLTVHAVDAEKGLLLVKGAVPGPKGGIVLVRTAAKGA				NA	NA	NA	NA	NA
AK001_01380	309	rpsJ	COG0051	30S ribosomal protein S10	ATGGCGGGACAGAAGATCCGCATCCGGCTCAAGTCCTACGACCACGAGGTGATCGACAGCTCGGCGCGCAAGATCGTCGACACGGTCACTCGCGCTGGTGCGACGGTCGTGGGCCCGGTGCCGCTGCCGACGGAGAAGAACGTCTTCACCGTCATCCGGTCGCCTCACAAGTACAAGGACAGCCGTGAGCACTTCGAGATGCGTACTCACAAGCGGCTGATCGACATCATCGACCCCACGCCGAAGGCTGTCGACTCGCTGATGCGCATCGACCTGCCGGCCGACGTGAACATCGAGATCAAGCTCTGA	MAGQKIRIRLKSYDHEVIDSSARKIVDTVTRAGATVVGPVPLPTEKNVFTVIRSPHKYKDSREHFEMRTHKRLIDIIDPTPKAVDSLMRIDLPADVNIEIKL	PGPT0015245_5632	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	TRIGGERED_IMMUNITY	PAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTI	PTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358	NA	NA
AK001_01381	1047			hypothetical protein	ATGACACGCCCCGACCGACCCGCGGACGGCTGGACCTACTGCGACGTCCGACCGCAGTCCCGCCCCGCGCTCCCCCCGGACCTCAACCCGCGCCGCGCCTCCCTCATCCACGTCACGCGGGCGAAGTGGGTCAACGGCACCGTCCTGCACTACTGGCTCGAGCCGGCGGCACCGCAGGCGCAGCACCAGGCGGTGCGCGACGCCTTCCGCACGTGGGAGGACCTCGGCATCGGCCTGCGCTTCGTCGAGGTCGACGACGCCGACCGCGCCGAGGTGCGCATCGCGTTCGACCAGGGCGCCGGCAGCTGGTCCTACGTCGGCAAGGACGTGCTGGGGATCCCGCAGCACGAGGCCACGATGAACTTCGGCTGGGACCTGACGACGTCGTGGGGGGCCGTCACCGCGCTGCACGAGATCGGGCACACGCTCGGCTTCCCCCACGAGCACCAGAACCCGAACGCGGGCATCGTGTGGGACGAGCAGCGCGTGCTCCAGGAGTTCACGGGCCCGCCGAACAGCTGGACCGAGGACCAGGTGCGGCACAACATCCTGCGCAAGCTCTCCCCCGAGCAGGTCGAGGGGTCGGCGTGGGACCCCGAGTCCGTCATGCACTACCCCTTCGACCCGGGCCTCATCGTCTCCCCGGAGCAGTACGGCCGCGACGGGATCCCCGCCCCGGACGGGCTGTCGGACGACGACCGCGAGTGGGTGCTGCGCTGGTACCCGGGGCTCGAGCCCGACCTGCCCACGCTCGAACCGGGCCGCTCGGTACCGCTGGAGCTCGCGCCCGCCGGGCAGGCCGACCTCGTGGTCCGCCCCACGGCCACCCGGGAGTACCGCGTGGGTACGTTCGGCGACGCCGACACGCTGCTGGTCCTCTTCGAGGAGGTCGACGGCGAACCGGTCTTCCTCGCGGGCGACGACGACAGCGGGACCGACCGCAACGCCCTGGTCACCGTGCGGCTCCGCGCCGGCCGCAGCTACGTCGTCCGGGTGCGCCTGTACTGGGCCTGGGCGGCGGGGACGACGGCCGTCATGCTCTGGTGA	MTRPDRPADGWTYCDVRPQSRPALPPDLNPRRASLIHVTRAKWVNGTVLHYWLEPAAPQAQHQAVRDAFRTWEDLGIGLRFVEVDDADRAEVRIAFDQGAGSWSYVGKDVLGIPQHEATMNFGWDLTTSWGAVTALHEIGHTLGFPHEHQNPNAGIVWDEQRVLQEFTGPPNSWTEDQVRHNILRKLSPEQVEGSAWDPESVMHYPFDPGLIVSPEQYGRDGIPAPDGLSDDDREWVLRWYPGLEPDLPTLEPGRSVPLELAPAGQADLVVRPTATREYRVGTFGDADTLLVLFEEVDGEPVFLAGDDDSGTDRNALVTVRLRAGRSYVVRVRLYWAWAAGTTAVMLW				NA	NA	NA	NA	NA
AK001_01382	1197	tuf	COG0050	Elongation factor Tu	GTGGCTAAGGCCAAGTTCGAGCGGACCAAGCCGCACGTCAACATCGGCACGATCGGTCACGTCGACCACGGCAAGACGACGCTGACCGCCGCGATCTCGAAGACGCTCGCTGAGACGTACCCGGACCTGCCGGCGAACCAGCTCAAGGCGTTCGACGAGATCGACGCCGCGCCGGAGGAGAAGCAGCGCGGTATCACGATCAACATCGCGCACATCGAGTACGAGACGCCGAACCGTCACTACGCGCACGTCGACGCGCCGGGTCACGCCGACTACATCAAGAACATGATCACCGGTGCCGCCCAGATGGACGGTTCGATCCTCGTGGTCGCCGCCACCGACGGCCCGATGGCGCAGACGCGCGAGCACGTCCTCCTGGCCCGCCAGGTGGGCGTTCCCTACCTGCTCGTGGCGCTGAACAAGGCCGACATGGTCGACGACGAGGAGATCCTCGAGCTCGTCGAGATGGAGGTCCGCGAGCTGCTGTCGTCGCAGGACTTCGACGGTGACAACGCCCCGGTCATCCGCGTCTCCGGTCTGAAGGCCCTCGAGGGCGACCCCGAGTGGACCAAGAAGATCCTGGAGCTCATGGAGGCCGTGGACGAGAACGTCCCCGAGCCGCAGCGCGACCTCGACAAGCCGTTCCTCATGCCGATCGAGGACGTCTTCACCATCACCGGTCGCGGCACCGTCGTCACCGGCAAGGTGGAGCGTGGCTCGCTCGACATCAACTCCGAGGTCGAGATCGTCGGTATCCGTTCGCCGCAGAAGACGACCGTCACCGGTATCGAGACCTTCCACAAGCAGATGGACCAGGCCCAGGCGGGCGACAACACCGGTCTGCTGCTGCGTGGTCTCAAGCGTGAGGACGTCGAGCGCGGCCAGGTCGTCGTGAAGCCGGGTTCGATCACGCCGCACACCAACTTCGAGGCCCAGGTCTACATCCTGGCCAAGGACGAGGGCGGCCGTCACAACCCGTTCTACTCGAACTACCGTCCGCAGTTCTACTTCCGGACCACCGACGTCACGGGCGTCATCGAGCTGCCCGAGGGCACCGAGATGGTCATGCCGGGCGACAACACCGAGATGACGGTCGAGCTGATCCAGCCGATCGCCATGGAGGAGGGCCTCGGCTTCGCCATCCGTGAGGGTGGCCGCACGGTCGGTTCCGGCCGGGTCACCAAGATCCTCAAGTGA	MAKAKFERTKPHVNIGTIGHVDHGKTTLTAAISKTLAETYPDLPANQLKAFDEIDAAPEEKQRGITINIAHIEYETPNRHYAHVDAPGHADYIKNMITGAAQMDGSILVVAATDGPMAQTREHVLLARQVGVPYLLVALNKADMVDDEEILELVEMEVRELLSSQDFDGDNAPVIRVSGLKALEGDPEWTKKILELMEAVDENVPEPQRDLDKPFLMPIEDVFTITGRGTVVTGKVERGSLDINSEVEIVGIRSPQKTTVTGIETFHKQMDQAQAGDNTGLLLRGLKREDVERGQVVVKPGSITPHTNFEAQVYILAKDEGGRHNPFYSNYRPQFYFRTTDVTGVIELPEGTEMVMPGDNTEMTVELIQPIAMEEGLGFAIREGGRTVGSGRVTKILK	PGPT0015245_1579	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	TRIGGERED_IMMUNITY	PAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTI	PTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358	NA	NA
AK001_01383	2106	fusA	COG0480	Elongation factor G	GTGGCACTCGACGTGCTGACCGACCTGAAGAAGGTCCGCAACATCGGCATCATGGCTCACATCGATGCCGGCAAGACCACCACCACCGAGCGCATCCTGTACTACACGGGTGTGAACTACAAGATCGGTGAGACGCACGACGGCGCGTCGACGATGGACTGGATGGAGCAGGAGCAGGAGCGCGGCATCACGATCACGTCGGCCGCGACGACCTGCTACTGGAACGACAACCAGATCAACATCATCGACACCCCGGGCCACGTCGACTTCACGGTCGAGGTGGAGCGGTCGCTCCGCGTCCTGGACGGCGCCGTCGCCGTCTTCGACGGCAAGGAGGGCGTCGAGCCCCAGTCGGAGACCGTCTGGCGTCAGGCCGACAAGTACGACGTCCCGCGCATCTGCTTCGTCAACAAGATGGACAAGCTGGGCGCCGACTTCTACTTCACGGTCAAGACGATCGTCGAGCGCCTCAAGGCCAAGCCGCTGGTGCTCCAGCTCCCGATCGGTGCCGAGAACGACTTCATCGGCGTCGTCGACCTGCTGAGCATGAAGGCGCTGGTCTGGCACGGCGAGACCAAGCTGGGCGAGACCTACGAGGTCGAGGAGATCCCCGCCGACCTGCAGGCCAAGGCCGAGGAGTACCGCAACGAGCTCATCGAGGCCGTCGCGGAGTCCGACGAGGACCTGCTCGAGAAGTACCTCGGCGGCGAGGAGCTCACGACCGACGAGCTCAAGGCCGGCATCCGCAAGATGACGGTCAACTCCGAGGCCTTCCCGGTGCTGTGCGGCTCGGCGTTCAAGAACAAGGGCGTCCAGCCCATGCTCGACGCCGTCATCGACTACCTGCCCTCCCCGTTCGACGTCCCGGCCGTCCAGGGCCACGACGTCAAGGACGAGGAGAAGGTCATCGAGCGTCACGCGGACGCCTCGGAGCCGTTCTCGGCCCTGGCGTTCAAGGTCGCCGTGCACCCGTTCTTCGGCAAGCTCACCTACGTCCGCGTGTACTCCGGCAAGGTCGAGCAGGGCGCCCAGGTGCTCAACACCACCAAGGGGAAGAAGGAGCGCATCGGGAAGCTCTTCCAGATGCACTCCAACAAGGAGAACCCCGTCCCCGAGGCGCAGGCCGGTCACATCTACGCCTTCATCGGCCTGAAGGACGTCACCACCGGTGACACCCTCAGCGCCTCCGACTCCCCGGTCATCCTCGAGTCGATGACCTTCCCGGAGCCGGTCATCGACGTGGCCATCGAGCCGAAGACGAAGGCCGACCAGGAGAAGCTCTCGACGGCGATCCAGAAGCTCGCCGACGAGGACCCCACCTTCCGCGTCAAGCTCGACGAGGAGACCGGCCAGACCGTCATCGGCGGCATGGGCGAGCTCCACCTCGACATCCTCGTGGACCGCATGAAGCGCGAGTTCAAGGTCGAGGCGAACGTCGGCAAGCCGCAGGTCGCGTACCGCGAGACGATCCGTCGCAAGGCGGAGAAGATCGACTACACGCACAAGAAGCAGACCGGTGGTTCGGGTCAGTTCGCGAAGGTCATCGTGAACTTCGAGCCGCTGGAGACCACCGCCGAGGGCGAGCTGTACGAGTTCGCCAACGAGGTCACCGGTGGTCGCGTGCCGCGCGAGTACATCCCGTCGGTGGACGCCGGTATCCAGGCGGCCATGCAGCAGGGTGTCCTGGCCGGCTTCCCGGTCGTCGGCGTCAAGGCCACGCTCCTCGACGGTGCGTACCACGACGTCGACTCCTCGGAGATGGCGTTCAAGATCGCCGGATCCATGGTGTTCAAGGAGGGCGTCAAGCGGGCCGACCCGGTTCTGCTCGAGCCCGTCATGGCCGTCGAGGTGCGCACGCCCGAGGAGTACATGGGCGACGTCATCGGCGACATCAACTCGCGGCGTGGACTCATCCAGTCCATGGAGGACGCGACCGGCGTCAAGGTCGTGCGCGCCCAGGTACCGTTGAGCGAGATGTTCGGGTACATCGGTGACCTGCGTTCCAAGACGCAGGGCCGCGCCGTGTACTCGATGCAGTTCGACAGCTACGCCGAGGTCCCCAAGGCCGTGGCTGACGAGATCATCAAGAAGACCCGGGGCGAGTGA	MALDVLTDLKKVRNIGIMAHIDAGKTTTTERILYYTGVNYKIGETHDGASTMDWMEQEQERGITITSAATTCYWNDNQINIIDTPGHVDFTVEVERSLRVLDGAVAVFDGKEGVEPQSETVWRQADKYDVPRICFVNKMDKLGADFYFTVKTIVERLKAKPLVLQLPIGAENDFIGVVDLLSMKALVWHGETKLGETYEVEEIPADLQAKAEEYRNELIEAVAESDEDLLEKYLGGEELTTDELKAGIRKMTVNSEAFPVLCGSAFKNKGVQPMLDAVIDYLPSPFDVPAVQGHDVKDEEKVIERHADASEPFSALAFKVAVHPFFGKLTYVRVYSGKVEQGAQVLNTTKGKKERIGKLFQMHSNKENPVPEAQAGHIYAFIGLKDVTTGDTLSASDSPVILESMTFPEPVIDVAIEPKTKADQEKLSTAIQKLADEDPTFRVKLDEETGQTVIGGMGELHLDILVDRMKREFKVEANVGKPQVAYRETIRRKAEKIDYTHKKQTGGSGQFAKVIVNFEPLETTAEGELYEFANEVTGGRVPREYIPSVDAGIQAAMQQGVLAGFPVVGVKATLLDGAYHDVDSSEMAFKIAGSMVFKEGVKRADPVLLEPVMAVEVRTPEEYMGDVIGDINSRRGLIQSMEDATGVKVVRAQVPLSEMFGYIGDLRSKTQGRAVYSMQFDSYAEVPKAVADEIIKKTRGE				NA	NA	NA	NA	NA
AK001_01384	471	rpsG	COG0049	30S ribosomal protein S7	ATGCCTCGTAAGGGTCCGGCCCCCAAGCGGCCGCTCATCGTCGACCCCGTCTACGGGTCGCCCGTCGTCACGCAGCTGATCAACAAGGTCCTGCTCGACGGCAAGAAGTCCACCGCCGAAGCGATCGTGTACGGCGCCCTCGAGGGCGTGCGGACCAAGACCGACCAGGATCCGGTCGTCGTGCTCAAGCGCGCGCTGGAGAACGTCCGTCCGGCCCTCGAGGTCCGCTCCCGCCGCGTCGGCGGTGCGACCTACCAGGTGCCGGTCGAGGTCCGTCCCTCGCGCTCCACGACTCTCGCGCTGCGGTGGCTCACCGACTTCTCGCGGGCCCGCCGCGAGAAGACGATGACCGAGCGACTCATGAACGAGATCCTCGACGCGTCGAACGGCCTGGGCGCCGCGGTCAAGCGTCGCGAGGACATGCACAAGATGGCCGAGTCCAACAAGGCCTTCGCGCACTACCGTTGGTGA	MPRKGPAPKRPLIVDPVYGSPVVTQLINKVLLDGKKSTAEAIVYGALEGVRTKTDQDPVVVLKRALENVRPALEVRSRRVGGATYQVPVEVRPSRSTTLALRWLTDFSRARREKTMTERLMNEILDASNGLGAAVKRREDMHKMAESNKAFAHYRW				NA	NA	NA	NA	NA
AK001_01385	375	rpsL		30S ribosomal protein S12	GTGCCTACGATCCAGCAGCTCGTCCGCAAGGGCCGGACCTCGAAGGCCGGGAAGTCGAAGACTCCGGCGCTCAAGGGTTCCCCGCAGCGGCGCGGCGTGTGCACCCGTGTGTACACCACCACCCCCAAGAAGCCGAACTCGGCGCTCCGCAAGGTTGCGCGTGTGAAGCTCTCCTCCGGCATCGAGGTCACCGCCTACATCCCCGGTGTCGGCCACAACCTCCAGGAGCACTCGATCGTGCTCGTCCGCGGCGGTCGTGTGAAGGACCTCCCCGGTGTCCGCTACAAGATCGTGCGCGGCGCCCTCGACACCCAGGGTGTCAAGGGCCGCCAGCAGGCGCGTTCCCGGTACGGCGCGAAGAAGGAGAAGGCCTGA	MPTIQQLVRKGRTSKAGKSKTPALKGSPQRRGVCTRVYTTTPKKPNSALRKVARVKLSSGIEVTAYIPGVGHNLQEHSIVLVRGGRVKDLPGVRYKIVRGALDTQGVKGRQQARSRYGAKKEKA				NA	NA	NA	NA	NA
AK001_01386	3882	rpoC	COG0086	DNA-directed RNA polymerase subunit beta'	TTGCTCGACGTCAACGTCTTCGACGAGCTGCGTATCGGCCTGGCCACGGTCGACGACATCCGTTCCTGGTCGCACGGTGAGGTGAAGAAGCCCGAGACCATCAACTACCGCACCCTGAAGCCGGAGAAGGACGGACTCTTCTGCGAGAAGATCTTCGGCCCCACCCGGGACTGGGAGTGCTACTGCGGCAAGTACAAGCGCGTGCGCTTCAAGGGCATCATCTGCGAGCGCTGCGGCGTGGAGGTCACGCGCTCCAAGGTGCGCCGTGAGCGCATGGGCCACATCGAGCTGGCCGCCCCGGTCACGCACATCTGGTTCTTCAAGGGTGTGCCGTCCCGCCTCGGCTACCTGCTCGACCTCGCCCCGAAGGACCTGGAGAAGGTCATCTACTTCGCGGCCTACATGATCACGTGGGTCGACGACGAGGCGCGCCAGGAAGACCTCCCGAACCTCCAGAACGAGATCGACCTGGAGAAGAAGGAGATCACCGACCGGCGCGACAACGACATCAACCTGCGTGCCACGAAGCTCGAGAGCGAGCTCGCCGAGCTCGAGGCCGAGGGTGCCAAGGCGGACGCGCGCCGCAAGGTCCGCGACGCCGCCGAGCGCGAGATGGCGCAGCTGCGCAAGCGTGCGGACCAGGAGCTCGACCGCCTCGAGCAGGTCTGGGACCGGTTCAAGAACCTCAAGGTCGCCGACCTCGAGGGCGACGAGATGCTGTACCGCCAGCTGGTGGACCGCTACGGCACGTACTTCGAGGGCGCCATGGGTGCCCAGGCGATCCAGAAGCGCCTGGAAAACTTCGACCTGGACGCCGAGGCCGAGTCGCTGCGCGAGACCATCCGCACCGGCAAGGGGCAGCGCAAGACGCGTGCCCTCAAGCGGCTCAAGGTCGTCAACGCGTTCCTGACGACGACGAACTCGCCGACGGCCATGGTGCTCGACGCCGTGCCGGTCATCCCGCCGGACCTGCGCCCGATGGTGCAGCTCGACGGTGGCCGCTTCGCGACGTCGGACCTCAACGACCTGTACCGCCGCGTCATCAACCGCAACAACCGCCTCAAGCGGCTGCTGGACCTGGGCGCGCCGGAGATCATCGTCAACAACGAGAAGCGGATGCTCCAGGAGGCCGTCGACTCGCTGTTCGACAACGGCCGTCGTGGCCGTCCGGTCACGGGTCCGGGCAACCGCCCGCTGAAGTCGATCTCCGACATGCTCAAGGGCAAGCAGGGCCGGTTCCGTCAGAACCTGCTCGGCAAGCGCGTCGACTACTCCGGCCGTTCGGTCATCGTCGTCGGCCCGCAGCTCAAGCTGCACCAGTGCGGCCTGCCGAAGCAGATGGCGCTCGAGCTGTTCAAGCCGTTCGTCATGAAGCGTCTGGTCGAGCTCAACCACGCCCAGAACATCAAGTCGGCCAAGCGCATGGTCGAGCGCACCCGCCCCGTGGTGTGGGACGTCCTCGAAGAGGTCATCACCGAGCACCCGGTGCTGCTCAACCGTGCGCCCACGCTGCACCGTCTGGGCATCCAGGCGTTCGAGCCGCAGCTCGTCGAGGGCAAGGCCATCCACCTGCACCCGCTCGTGTGCGGCGCGTTCAACGCCGACTTCGACGGTGACCAGATGGCGGTCCACCTGCCGCTGAGCGCCGAGGCGCAGGCCGAGGCCCGCATCCTCATGCTCTCGAGCAACAACATCCTCAAGCCGTCGGACGGCCGTCCGGTGACCATGCCCTCGCAGGACATGATCATCGGTCTGCACCACCTGACGGCCGAGCGGCCCGGTGCCGTCGGCGAGGGTCGCGTGTTCGGCACCCAGGCCGAGGCCATCATGGCCTTCGACCGGGACGAGCTCGACATCAACGCGACGATCAAGATGCGGATGTCGGACCTCGTGCCGCCGCGCCGCGGCTTCGAGGCCCCCGAGGGCTGGGAGCCCGGCCAGCAGCTGCTGTTCGAGACCACCCTCGGTCGCACCCTGTTCAACGAGGCCCTGCCGACCGACTACCCGTTCCAGAACGAGGTCGTCGGCAAGAAGGAGCTCTCGACGATCGTCAACGACCTCGCCGAGCGGTACCCCAAGGTGGACGTCGCCACGTCGCTGGACGCGCTGAAGGACGCCGGCTACCGGTGGGCCACGCGCTCCGGCGTGACGATCTCGATCTCCGACGTCGCCATGCCGGTGGAGAAGAACGAGATCCTCGACGAGCACGAGGCGCGCGCGCTGAAGGTGCAGGGCCAGTACGAGAAGGGCCTCATCACCGACGACGAGCGTCGTCAGGAGCTCATCGAGATCTGGACCCAGGCGACCGACAAGATCGCCGCGGTCATGCGCGACAACCTCGAGAACGACACGCGCAACACGCTGTACCGGATGGTGTCCTCCGGTGCTCGCGGTAACTGGATGCAGGTGCGTCAGATCGCCGGTATGCGCGGTCTGGTGGCCAACCCGAAGGGCGAGATCATCCCGCGCCCGATCAAGTCCAACTACCGCGAGGGCCTCTCCGTCCTCGAGTACTTCATCGCCTCGCACGGTGCCCGCAAGGGTCTGGCCGACACGGCGCTGCGTACCGCGGACTCCGGCTACCTGACCCGTCGTCTCGTGGACGTCTCCCAGGACGTCATCATCCGCGAGGAGGACTGCGGGACCGAGCGCGGCCTGATGCTGCCGGTCGCCGAGCGCATCGGTGACCAGCTCGTCCCGGACGGCCGCGTGGAGACGTCGATCTACTCGCGCACCTTCGCGACCCAGGTCGTGGCGCCCGACGGCACGGTGCTCGCCGAGCCGGGCAGCGACGCGGGCGACGTCATCATCGACCAGGTGATCGCCGCCGGCATCGAGGAGGTCAAGGTCCGCTCGGTCCTGACCTGCGAGTCGCGCGTCGGCACCTGCGCCAAGTGCTACGGCCGCTCCCTGGCCACGGGCAAGCTCGTGGACATCGGCGAGGCCGTGGGCATCATCGCCGCGCAGTCCATCGGTGAGCCCGGTACGCAGCTGACCATGCGGACCTTCCACACCGGTGGTGTGGCCTCCGCGGACGACATCACGCAGGGTCTGCCCCGTGTGACCGAGCTCTTCGAGGCCCGTACCCCGAAGGGTGAGGCGCCGATCGCCGAGTACACCGGTCGCGTGTCCATCGAGGACACCGAGCGGACCCGGCACATCGTGCTCACCCCGGACGACGGCGGCGAGGAGATCAAGTACCCGGTCACCAAGCGTGCGCGCCTGCTGATCGCCGACGGCGACCACGTCGCGGTCGGTACCCAGCTGGTCCAGGGCGCCGTCGACCCGAAGAAGGTGCTGCGCATCCTCGGCCCGCGTGCCGCGCAGAAGCAGCTCGTGGACGCGGTCCAGGAGACCTACCGGTCGCAGGGCGTGGACATCCACGACAAGCACATCGAGGTCATCGTGCGCCAGATGCTGCGCCGCGTGACCGTGCTCGACGCCGGTGACTCGGACCTGCTGCCCGGCGAGCTCGCCGAGCGTGTCCGGTTCGAGGACGCCAACCGCGCGGCCGTGGCGGAGGGTGGCCAGCCGGCCGCCGGCCGTCCGGAGCTGATGGGTATCACGAAGGCTTCGCTCGCCACCGACTCGTGGCTCTCGGCGGCCTCCTTCCAGGAGACCACCCGGGTGCTCACCGAGGCGGCGATGAGCGGTCGTCGCGACCCGCTGCTGGGCCTCAAGGAGAACGTCATCATCGGCAAGCTCATCCCGGCCGGTACGGGGCTCGCCCGGTACCACAACATCGAGGTCGAGCCGACCGAGCAGGCCAAGGCGGAGCTCTACCCGAGCTTCGGCTACGACGAGATCGACTTCCCGACGCTCGGCATGGGCTCGGGCGAGGCGATCCCGCTGGAGGACCTGGACTTCGGCGACTTCCGCTGA	MLDVNVFDELRIGLATVDDIRSWSHGEVKKPETINYRTLKPEKDGLFCEKIFGPTRDWECYCGKYKRVRFKGIICERCGVEVTRSKVRRERMGHIELAAPVTHIWFFKGVPSRLGYLLDLAPKDLEKVIYFAAYMITWVDDEARQEDLPNLQNEIDLEKKEITDRRDNDINLRATKLESELAELEAEGAKADARRKVRDAAEREMAQLRKRADQELDRLEQVWDRFKNLKVADLEGDEMLYRQLVDRYGTYFEGAMGAQAIQKRLENFDLDAEAESLRETIRTGKGQRKTRALKRLKVVNAFLTTTNSPTAMVLDAVPVIPPDLRPMVQLDGGRFATSDLNDLYRRVINRNNRLKRLLDLGAPEIIVNNEKRMLQEAVDSLFDNGRRGRPVTGPGNRPLKSISDMLKGKQGRFRQNLLGKRVDYSGRSVIVVGPQLKLHQCGLPKQMALELFKPFVMKRLVELNHAQNIKSAKRMVERTRPVVWDVLEEVITEHPVLLNRAPTLHRLGIQAFEPQLVEGKAIHLHPLVCGAFNADFDGDQMAVHLPLSAEAQAEARILMLSSNNILKPSDGRPVTMPSQDMIIGLHHLTAERPGAVGEGRVFGTQAEAIMAFDRDELDINATIKMRMSDLVPPRRGFEAPEGWEPGQQLLFETTLGRTLFNEALPTDYPFQNEVVGKKELSTIVNDLAERYPKVDVATSLDALKDAGYRWATRSGVTISISDVAMPVEKNEILDEHEARALKVQGQYEKGLITDDERRQELIEIWTQATDKIAAVMRDNLENDTRNTLYRMVSSGARGNWMQVRQIAGMRGLVANPKGEIIPRPIKSNYREGLSVLEYFIASHGARKGLADTALRTADSGYLTRRLVDVSQDVIIREEDCGTERGLMLPVAERIGDQLVPDGRVETSIYSRTFATQVVAPDGTVLAEPGSDAGDVIIDQVIAAGIEEVKVRSVLTCESRVGTCAKCYGRSLATGKLVDIGEAVGIIAAQSIGEPGTQLTMRTFHTGGVASADDITQGLPRVTELFEARTPKGEAPIAEYTGRVSIEDTERTRHIVLTPDDGGEEIKYPVTKRARLLIADGDHVAVGTQLVQGAVDPKKVLRILGPRAAQKQLVDAVQETYRSQGVDIHDKHIEVIVRQMLRRVTVLDAGDSDLLPGELAERVRFEDANRAAVAEGGQPAAGRPELMGITKASLATDSWLSAASFQETTRVLTEAAMSGRRDPLLGLKENVIIGKLIPAGTGLARYHNIEVEPTEQAKAELYPSFGYDEIDFPTLGMGSGEAIPLEDLDFGDFR				NA	NA	NA	NA	NA
AK001_01387	3513	rpoB	COG0085	DNA-directed RNA polymerase subunit beta	TTGGCTGCCTCGCGCACCCCTTCTGCTCCGTCCGCCGACGCTATCGCGAACCGTACCGCCTCCCGCCGACTCTCGTTCGGCCGGATCCACGAACCCCTCCAGGCGCCGGACCTGCTCGGCCTCCAGCTCGAGAGCTTCGACTGGCTGCTGGGCAACGAGTCCTGGCAGGCCCGGGTCGAGGCCGCGATCGAGGCCGGACGCCACGACGTCCCCGAGTCCTCCGGTCTGGAGGAGATCTTCGAGGAGATCTCCCCGATCGAGGACTTCGGCCAGTCGATGTCCCTGTCCTTCGCCAACCACCGCTTCGAGCCCCCGAAGTACACGGTGGAGGAGTGCAAGGAGAAGGACTTCACCTACTCGGCGCCGCTGTTCGTGACGGCCGAGTTCGTCAACTACACGACGGGTGAGATCAAGAGCCAGACGGTGTTCATGGGCGACTTCCCGCTCATGACCGACCGCGGCACCTTCGTCATCAACGGCACCGAGCGCGTCGTCGTCTCGCAGCTCGTCCGTTCCCCCGGCGTCTACTTCGAGCGCACGCCCGACAAGACCAGCGACAAGGACGTCTTCTCCGCGAAGATCATCCCGTCCCGCGGTGCCTGGCTGGAGTTCGAGATCGACAAGCGCGACGCCGTCGGCGTCCGCGTCGACCGCAAGCGCAAGCAGCCCGTGACGGTGCTGCTCAAGGCGCTCGGCATGACCGAGTCGGAGATCCGCGAGGAGTTCGGCGAGTTCCCCACGATCCTGGACACCCTGGAGAAGGACCACGTCCACACCCAGGACGAGGCCCTCGTGGACCTGTACCGCAAGATCCGCCCGGGTGAGCCGCCGACGGTCGAGGCGGGCCGCGCGCTCGTGGAGAACTTCTACTTCAACCCCAAGCGCTACGACCTGGCGAAGGTCGGCCGCTACAAGCTGAACAAGAAGGTCGGGGTCACCGCCGAGCTCAGCGACAGCACGCTGTCGCTGGCCGACGTCGTCGCCACCATCAAGTACCTCGCCGCGCTGCACGCCGACAAGTCCTCCCTCCCGGGCACGCGGGACGGGGAGCCGTACGACGTGCGCGTCGAGACCGACGACATCGACCACTTCGGCAACCGCCGCATCCGTGCGGTCGGCGAGCTCATCCAGAACCAGGTGCGCACCGGGCTGTCCCGGATGGAGCGTGTGGTCCGCGAGCGGATGACCACGCAGGACGTCGAGGCGATCACGCCGCAGACCCTGATCAACATCCGCCCGGTCGTGGCCTCGATCCGCGAGTTTTTCGGCACCTCGCAGCTGTCGCAGTTCATGGACCAGAACAACCCGCTGGCCGGCCTGACGCACAAGCGGCGTCTGTCCGCGCTCGGCCCGGGTGGTCTGTCCCGCGACCGCGCCGGCATGGAGGTCCGCGACGTCCACCCGTCGCACTACGGCCGCATGTGCCCGATCGAGACGCCGGAAGGCCCGAACATCGGTCTGATCGGCTCGCTCGCCTCGTTCGGCCGGATCAACGCGTTCGGCTTCATCGAGACGCCGTACCGCAAGGTCCTCGCCGGCAAGGTGACCGACGAGGTCGTCTACCTGACCGCGGACGACGAGGACAGCTACGTCATCGCCCAGGCGAACACCACGCTGAACGAGGACGGCTCCTTCGCCTTCGACCGCGTGCTGGTCCGCACCAAGGGCGGCGAGACCGACGACGTCCCGGCCTCCGAGGTCGACTACATGGACGTCTCGCCGCGGCAGATGGTCTCCGTCGCGACGGCGCTCATCCCGTTCCTCGAGCACGACGACGCCAACCGTGCGCTCATGGGCGCCAACATGCAGCGCCAGGCCGTGCCGCTGGTCCGCTCCGAGGCCCCGCTGGTGGGTACCGGCATGGAGCGTCGCGCCGCGATCGACGCCGGCGACGTCATCGTCGCCACCAAGCCCGGTGTCGTCACCCAGGTCTCGGCCGACCTCATCACGGTCGAGAACGACGACGCGACGACGACCACGTACCGCGTGGCCAAGTTCCGCCGCTCGAACCAGGGCACGAACTACAACCAGCGCGTGCTGGTCGACGCCGGCCAGCGGGTCGAGGTCGGGTCCGTCCTCGCCGACGGTCCGGCCACGGACGAGGGCGACCTCGCGCTCGGCCGCAACCTGCTCGTGGCGTTCATGTCCTGGGAGGGTCACAACTACGAGGACGCGATCATCCTGTCGCAGCGCCTCGTGGAGGACGACGTCCTGTCCTCGATCCACATCGAGGAGCACGAGGTCGACGCCCGCGACACCAAGCTCGGGCCCGAGGAGATCACCCGGGACATCCCGAACGTCTCCGAGGACGTGCTGGCGGACCTCGACGAGCGCGGCATCATCCGCATCGGTGCCGAGGTCGGCGCCGGCGACGTGCTGGTCGGCAAGGTCACCCCGAAGGGCGAGACCGAGCTGACCCCGGAGGAGCGCCTGCTGCGCGCCATCTTCGGCGAGAAGGCCCGCGAGGTCCGCGACACCTCCCTGAAGGTGCCGCACGGCGAGTCCGGCACCGTGATCGGCGTGCGCGAGTTCAACCGCGAGGACGGCGACGAGCTGCCCGCCGGCGTGAACCAGCTCGTGCGGGTCTACATCGCCCAGCGCCGCAAGATCACCGTCGGCGACAAGCTCGCCGGCCGTCACGGCAACAAGGGCGTCATCGCCAAGATCCTGCCGCAGGAGGACATGCCGTTCCTGCCCGACGGCACCCCGGTCGACATCGTGCTCAACCCGCTCGGTGTGCCCGGCCGCATGAACGTCGGTCAGGTCCTCGAGACGCACCTGGGCTGGGTCGCCAGCCGTGGGTGGGACGTCGAGCTGGCCGAGGGCGACGACCTCGAGTGGCGCGACGAGCTGCCCGAGCACGCGCGCAGCTCCGAGCCCGGCCGCCCCGTGGCGACGCCGGTGTTCGACGGTCTGGAGGAGCACGAGCTCCGCGGGCTGATCTCGACCACGCTGCCGAACCGCGACGGCGACCGCATGGTCGGCCTGGACGGCAAGGCGCCGCTGTTCGACGGTCGTTCCGGCGAGCCGTTCCCGGACCCGGTCGCGGTGGGCTACATGTACATCCTGAAGCTCCACCACCTGGTCGACGACAAGATCCACGCGCGGTCGACCGGTCCGTACTCGATGATCACCCAGCAGCCGCTGGGCGGTAAGGCGCAGTTCGGTGGTCAGCGCTTCGGCGAGATGGAGGTGTGGGCGCTCGAGGCGTACGGCGCCGCGTACACCCTCCAGGAGCTGCTGACGATCAAGTCCGACGACATCCCGGGCCGCGTCAAGGTCTACGAGGCGATCGTCAAGGGCGAGAACATCCCCGACTCGGGCATCCCGGAGTCCTTCAAGGTCCTCCTCAAGGAGATGCAGTCGCTCTGCCTGAACGTCGAGGTGCTGTCCAGCGACGGCTCCTCGATCGAGATGAAGGAGTCCGACGACGAGGTGTACCGCGCCGCGGAGGAGCTCGGCATCGACCTCTCCCGCCGTCCGAACTCGGCGACCACCGTCGACGAGATCTGA	MAASRTPSAPSADAIANRTASRRLSFGRIHEPLQAPDLLGLQLESFDWLLGNESWQARVEAAIEAGRHDVPESSGLEEIFEEISPIEDFGQSMSLSFANHRFEPPKYTVEECKEKDFTYSAPLFVTAEFVNYTTGEIKSQTVFMGDFPLMTDRGTFVINGTERVVVSQLVRSPGVYFERTPDKTSDKDVFSAKIIPSRGAWLEFEIDKRDAVGVRVDRKRKQPVTVLLKALGMTESEIREEFGEFPTILDTLEKDHVHTQDEALVDLYRKIRPGEPPTVEAGRALVENFYFNPKRYDLAKVGRYKLNKKVGVTAELSDSTLSLADVVATIKYLAALHADKSSLPGTRDGEPYDVRVETDDIDHFGNRRIRAVGELIQNQVRTGLSRMERVVRERMTTQDVEAITPQTLINIRPVVASIREFFGTSQLSQFMDQNNPLAGLTHKRRLSALGPGGLSRDRAGMEVRDVHPSHYGRMCPIETPEGPNIGLIGSLASFGRINAFGFIETPYRKVLAGKVTDEVVYLTADDEDSYVIAQANTTLNEDGSFAFDRVLVRTKGGETDDVPASEVDYMDVSPRQMVSVATALIPFLEHDDANRALMGANMQRQAVPLVRSEAPLVGTGMERRAAIDAGDVIVATKPGVVTQVSADLITVENDDATTTTYRVAKFRRSNQGTNYNQRVLVDAGQRVEVGSVLADGPATDEGDLALGRNLLVAFMSWEGHNYEDAIILSQRLVEDDVLSSIHIEEHEVDARDTKLGPEEITRDIPNVSEDVLADLDERGIIRIGAEVGAGDVLVGKVTPKGETELTPEERLLRAIFGEKAREVRDTSLKVPHGESGTVIGVREFNREDGDELPAGVNQLVRVYIAQRRKITVGDKLAGRHGNKGVIAKILPQEDMPFLPDGTPVDIVLNPLGVPGRMNVGQVLETHLGWVASRGWDVELAEGDDLEWRDELPEHARSSEPGRPVATPVFDGLEEHELRGLISTTLPNRDGDRMVGLDGKAPLFDGRSGEPFPDPVAVGYMYILKLHHLVDDKIHARSTGPYSMITQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQELLTIKSDDIPGRVKVYEAIVKGENIPDSGIPESFKVLLKEMQSLCLNVEVLSSDGSSIEMKESDDEVYRAAEELGIDLSRRPNSATTVDEI				NA	NA	NA	NA	NA
AK001_01388	393	rplL	COG0222	50S ribosomal protein L7/L12	ATGGCGAAGCTCAGCACTGACGAGCTCCTGGCCCAGTTCGAGGAGCTGACCCTCATCGAGCTCTCCGAGTTCGTGAAGGCCTTCGAGGAGAAGTTCGACGTCACCGCCGCCGCCCCGGCCGCCGCGGTCGTCGCCGGCGCCCCGGCCGGTGGCGGCGACGCCGCCCCCGCCGAGGAGGAGCAGTCCGAGTTCGACGTCATCCTCGAGGGTGCCGGCGACAAGAAGATCCAGGTCATCAAGGAGGTGCGCGCGCTCACGTCCCTCGGTCTCAAGGAGGCCAAGGACCTGGTCGACGGCACGCCGAAGCCGGTCCTGGAGGGTGTCGACAAGGACGCCGCCGAGAAGGCCAAGGAGGCCCTCGAGGGCGCCGGTGCTTCCGTCACCCTCAAGTGA	MAKLSTDELLAQFEELTLIELSEFVKAFEEKFDVTAAAPAAAVVAGAPAGGGDAAPAEEEQSEFDVILEGAGDKKIQVIKEVRALTSLGLKEAKDLVDGTPKPVLEGVDKDAAEKAKEALEGAGASVTLK				NA	NA	NA	NA	NA
AK001_01389	531	rplJ	COG0244	50S ribosomal protein L10	ATGGCGAGGCCGGACAAGGCAGCCGCCGTCGCGTCGATCGCGGACAAGCTCCGTGACTCCAACGCGGCCGTGCTGACCGAGTACCGCGGGCTCTCCGTCGCTCAGCTCCAGGAGCTGCGTCGGTCGCTCAGCGGCAACGCAACCTACGCCGTGGTGAAGAACACGCTGACCAGCATCGCGGCCAAGGAAGCCGGTGTCGAGGGTCTCGACGCCGACCTCCAGGGTCCGTCCGCGATCGCGTTCGTGACCGGTGACCCGGTCGAGGCCGCGAAGGGTCTGCGTGACTTCGCCAAGGCGAACCCCGCACTGGTCATCAAGGGCGGTGTCCTCGAGGGGAACGCCCTGACCGCTGCGGAGATCACGAAGCTCGCGGACCTCGAGTCCCGCGAGGTTCTGCTGGCCAAGGCGGCCGGCGCGATGAAGGCCAAGATCAGCCAGGCTGCCTACGCCTTCAACGCCAAGCCGACCCAGGTCGCCCGAGTCATCGATGCCCTGCGTCAGAAGCAGGAATCGGCGGGCGCTGCCGCCTGA	MARPDKAAAVASIADKLRDSNAAVLTEYRGLSVAQLQELRRSLSGNATYAVVKNTLTSIAAKEAGVEGLDADLQGPSAIAFVTGDPVEAAKGLRDFAKANPALVIKGGVLEGNALTAAEITKLADLESREVLLAKAAGAMKAKISQAAYAFNAKPTQVARVIDALRQKQESAGAAA				NA	NA	NA	NA	NA
AK001_01390	2505			hypothetical protein	GTGTCGCCGCTCGACCCCGCCCTGCACGGCGCCTGGGTGGTCGACCTGCGGGTGCGGGCGCTCGTGGGCGAGGCCTCCTGCACCTACGGGCTCTCCGGAGACCTCGACGGTGCCCGACGGCTCGTGGCCGAGGCGCGCGTGGTGGGCGACCCAGGCGGCCCCCCCCAGCAGGACGCCGGGGCGCCCCGCCCGGCCCGTCGGCTCCAGCAGAGGTCCCGCGGCGCGCGAGGTGCCGCCGCCGCCTTCGACCGCGCGTTGTCGGCGGCCGACCCCGAGAACCACCGCGACCTGGCCGTCCTGCACATCAACCGCGGTGCGGCTGCCGGCGAGCTGCGCGACCTCGACGCCGACCTGCGCCACCACCAGATCGCTCTCCACCACGCCCGCCTCGACGGCAACGACCGCTATGCCGCGTTCGCGTTGTTCAACATCGGTTTCGCCTACTACCTGCGCGGAGACTTTCACCGCGCGCTGCGGAACATGGAGGAGTCGTCGGCGCTCCAGCCCGAGGGGCCGGACGGCTGGTCCGAGGTGGGGCGCGCCCAGGTCCTCCTCGACGCGGGACTCGTCACCGAGGCGGAGAAGGTGCTCGCGGACTCCGCCGACATCCTCTCGGCCGAGGACCTGACCGGCGAGATGGCCGACGCTCTCCTGGCGCGGGCGCGCTGTGCGATCCTGCTGCGCCGACCGGAGGAGGCGCTGCGGTGGGCCGGGCGGTCGCGCCGGGCGTTCGCGCGCGTGGGCAACGACTCCTGGGCTCTGGCGGCACGGATCACGGCGTTGGAGGCCAGGCTCGCCCTGGACCGTGAGCGCGGGACGGCGCGCCGCACCGCGTTGCGTCGACGGCGGGACGACGCCCTCGCCCTGGCGTCGGAGGGCGGCGACGAGTCTGCGGCACCGAGCCGCGAGGCCGCCGTGGCGGCCCGGCTGCTCGCCGCGGAGTGGTCGCTGCTCGCCGGCGACCACGACCGGGCGGCCGAGATCGTGGGCGAGGTGCCGCGGCTCGGGAGCAGCCCGCTCCCGCTGCGCATCCATCACGAGTCGGTCCGCGCCCAGGTGGCCTTCGCCGGCGGCGACCGGCGTCGCGGCCTGCTGGCCGTCCGCCGCGGCCATCGCGTGCTCGCCGACCACCGGGCCCGCCTCGGCTCGGTCGACACGGTCACCGCCGCGGCAGCGCACGGGACCCGGATCGCGCGCGTCGACGTCGAGGCGGCGCTGGCCACACGGCGACCGCGGGCCGTCTTCGACGCCCTGGAGAGAGGGCGAGCGGCGTACGCGGGAGCCGCTCGGGTGCGCCCACCCGACGACGAGCAGCTGGCCGAGCTCCTGACGATGGCCCGTGCGGCCGCGGAGGACGCCCGGGAGCTCGCGACGAGCACGGACCCCGGCGACCGGGCGCGGGCCGCCAAGCGGTCGGCGGACGCCCATCGGCTGCAGCAGCGGGCGCGACGACGCTCGTGGCAGCTCGCGGGGACGGGAGACCGGACGATGCCCGAGCCCACGACCGCCCGGGGCCTGGTCCGAGACCTGCGTGCGGCCCGCTCGGACGCCGTCGTCGTGTCCTACCTGCTGACCGAGCGCGTGACGGCGGTCCGGCTCGACGCGACGGGTGCGCGGCTGGTCGAGCTCGGCTCGTCGGCCGAGGCGGCCGAGCTGGCCCGCCGGGTCCGGCAGGACGTCGACGTGCTGGCGAACGGGCTCATCCCCGCCCCGATGCGCGAGGTGGCCGCGACCTCGGCCCGGCGGTCCCTCGAGCGACTCGACGACCTGCTGCTGGGGCCGCTGGAGGTGCACGGACCGCTGCACGTCGCGGCGCGCGACGGCCTGCTGGCGGTGCCGTGGGCGTCCCTGCCGTCCCGCGCGGGGATCGCGACCAGCGTCGACTCGTGGGTGGCACGCTACGAACCGGTCGACGGCGGGGACCGGGCCCGGGCAGCGCGAGCGCTGGTCGTCGCGGGGCCCGGTCTCGCCGCGGCGGACGACGAGGCGCGGCTCGTCGCCGAGGAGTGGGTGGCGGCCGATCCGCGGACCGGGGAGCGCGCGACGTGCGCGGCGGTCCGGGAGTCCCTCGCCGACGTCCAGGTGGTGCACCTCGCCGCGCACGGCGTCCACGAGCCCGACAACCCGCTGTTCTCCTTCGTCCGGCTCGCGGACGGACCGTTGTACGCGCACGAGCTGGACGGCGTGGACCTGCGGGGGACGGTCGTCGTGCTGTCCGCCTGCGAGGTCGGACGTGCTTCCGTGCGTCTGGGCGGCGAGCCGCTCGGGCTGACGAGCGTCCTGCTGCGCCTCGGGGCGCGAGCGGTCGTCGCGGCGGTCGCGCCGCTGCGGGACGAGGTCGCGGCACGCGTCATGCCGCGGCTGCACTCAGCGCTGCGCGACGGCCGGGAACCGGCCACGGCGTTGGCCCTCGCCGTGGCGCCGGAGCCCGAGCCCGTGCCCCTCGTCTGCTTCGGCCCGCTGGCCGTCGAGCGCGACGTGCAGGAAACGACCGCCACGGTGTGA	MSPLDPALHGAWVVDLRVRALVGEASCTYGLSGDLDGARRLVAEARVVGDPGGPPQQDAGAPRPARRLQQRSRGARGAAAAFDRALSAADPENHRDLAVLHINRGAAAGELRDLDADLRHHQIALHHARLDGNDRYAAFALFNIGFAYYLRGDFHRALRNMEESSALQPEGPDGWSEVGRAQVLLDAGLVTEAEKVLADSADILSAEDLTGEMADALLARARCAILLRRPEEALRWAGRSRRAFARVGNDSWALAARITALEARLALDRERGTARRTALRRRRDDALALASEGGDESAAPSREAAVAARLLAAEWSLLAGDHDRAAEIVGEVPRLGSSPLPLRIHHESVRAQVAFAGGDRRRGLLAVRRGHRVLADHRARLGSVDTVTAAAAHGTRIARVDVEAALATRRPRAVFDALERGRAAYAGAARVRPPDDEQLAELLTMARAAAEDARELATSTDPGDRARAAKRSADAHRLQQRARRRSWQLAGTGDRTMPEPTTARGLVRDLRAARSDAVVVSYLLTERVTAVRLDATGARLVELGSSAEAAELARRVRQDVDVLANGLIPAPMREVAATSARRSLERLDDLLLGPLEVHGPLHVAARDGLLAVPWASLPSRAGIATSVDSWVARYEPVDGGDRARAARALVVAGPGLAAADDEARLVAEEWVAADPRTGERATCAAVRESLADVQVVHLAAHGVHEPDNPLFSFVRLADGPLYAHELDGVDLRGTVVVLSACEVGRASVRLGGEPLGLTSVLLRLGARAVVAAVAPLRDEVAARVMPRLHSALRDGREPATALALAVAPEPEPVPLVCFGPLAVERDVQETTATV				NA	NA	NA	NA	NA
AK001_01391	1740			hypothetical protein	GTGAGCGAGACGACCATCGAGGACGCGGCCGGCGGGCGGCGCCCGGTCCGTCACCTGGACCCCGACCGGGTCCGACGGAGCCCGGGCGCGTCCCGGGTCGGGGAGACCGACTACGTGGCCGACCGGCTCATCGTCCGGGGCGGGCTGCCCGAGGACCTGCGCCGCCGTGTCATCCCGGAGGCCGCCGCGCTCGGTGCCGGCGGGCAGGGAGCGATGGTCGCCCTGGACGACTGGGCCGGTGAGGGCGAGCCGACGAGCTGGTTCGACGGCGTGCGGCGGATCGCGACCGAGATGGGGTACCGCGTCGTCTACGACGGCACCTTGGGCGACCTCGCCGGGGACGAGGTCGACGACGAGACGTTCGGCTACGCGCTGCGCCTGGTCCCGCTGCGGGACGACGACGTCGAGGTCGACGTCTGGCAGGTCCTGGAGCGGATCGTCGGCGAGCTCGGTGCGCTCGACGAGCGTGACGACGCCGACGAGGGAGACCGTCCGACCCCTCGCGTCGGCCTGGACCACGTGCTGCGGGCGCAGCGTCACCGCTCCACCCCGCTGCCGTTCGTGCCGGTCGCGCGGCCACGGAGCACCCCGCTGCCGTTCGGCGCGATCGACGAGTACGGGGTCGCCGGCAGCGGCGGTCTGACACCGGTGGGATACCTGGGAGCGCCGCCCCGGCGGTCGCTGGCCGACGGGCCGACGCCGTGGCACGCCGCCGACGGGACGCGGCGACCCGTGGTCGCCGTCGTCGACACGGGTGTCGGGTCGCACGAATGGTTCGGCGACTACGACCCGCACGACCCGCAGGACAGCGCCGTCGTGGTGCGCACGGCGACGCTCGACGGCCGTCCGGTGGGCACCTTCCCCGTGCCGCGACACGCCACCGCGGACGCGGACTTCGGCGGCCTGAGCGTCGACCCGTTGACGGGTCCGCTCGATCCCGTGGCCGGTCACGGCACCTTCATGGCCGGTGTGGTGCACCAGGTGTGCCCCGACGCCGTGCTGATGGCCGTGCGCGCGTTCGGTGGGTCCGGCGACATCCCCGAGTGGGAGGTGCTGCACACCCTGTGGCGGCTCCTGCGGTTCCACCGGCGCGGCGTCGCCGGCGACCCGGGTTACCACCAGGTCGACGTCGTCGTGCTGGCGATGGGCTACTACCACGAGCAGCCGGAGGACTACGGCTACGACGGGCCTCTGCGCCGCGTGCTGCGCGCGTTGCGCCGGGCCGGAGTGGTCGTCGTGCTCGCCTCGGGCAACGACGGGACCACCCGGCCGATGTTCCCGGCAGCCTGGGCCCCGCACCTGCAGCAGGACCCCGACGCGCTTCGACCCGTGGACGGAGGCCAGCTCTCGGACCGGCACCCACCGCTGCTCGTCGCCGGTGCCGCCAACCCTGACGGCACGACCGCCATCTTCAGCAACGACGGTCCGTGGGTGACGTGCATCCGCCCGGGGGCCGCCGTGCTGTCGACGATGCCCACGACGCTCGACGGCCCCGAGACCCCGGAGGCCTCGGTCGCCGAGCTTCTCCGGCCGGGGACCCGGGCCACGGTCGACCCCGACGACTTCACCGGTGGTTTCGCCACGTGGAGCGGGACGTCGTTCTCGGCCCCTTACCTCGCGGGCGAGGTCGCTGCCGCCCGGCTGCGGACGGGCGCCCGCGGCGAGGTGGGGGTCGACGGCGCGTGGGATGCTGTGACCAGGACGGTCGCACTCGACCGGGCGGGCGGGGACGGTGCGTAG	MSETTIEDAAGGRRPVRHLDPDRVRRSPGASRVGETDYVADRLIVRGGLPEDLRRRVIPEAAALGAGGQGAMVALDDWAGEGEPTSWFDGVRRIATEMGYRVVYDGTLGDLAGDEVDDETFGYALRLVPLRDDDVEVDVWQVLERIVGELGALDERDDADEGDRPTPRVGLDHVLRAQRHRSTPLPFVPVARPRSTPLPFGAIDEYGVAGSGGLTPVGYLGAPPRRSLADGPTPWHAADGTRRPVVAVVDTGVGSHEWFGDYDPHDPQDSAVVVRTATLDGRPVGTFPVPRHATADADFGGLSVDPLTGPLDPVAGHGTFMAGVVHQVCPDAVLMAVRAFGGSGDIPEWEVLHTLWRLLRFHRRGVAGDPGYHQVDVVVLAMGYYHEQPEDYGYDGPLRRVLRALRRAGVVVVLASGNDGTTRPMFPAAWAPHLQQDPDALRPVDGGQLSDRHPPLLVAGAANPDGTTAIFSNDGPWVTCIRPGAAVLSTMPTTLDGPETPEASVAELLRPGTRATVDPDDFTGGFATWSGTSFSAPYLAGEVAAARLRTGARGEVGVDGAWDAVTRTVALDRAGGDGA				NA	NA	NA	NA	NA
AK001_01392	498			hypothetical protein	ATGGACATGACCGAGTTCGACGACGTGCCCGGTGCGGACGCACCGCTGGACGCGTCCGACGTCGCGCTGCTCGTGCGCGTCGCGGAGCTGGACGACCGTCTCGACCCCGTCCCCGACGGACTCGCCGAGCGTGCGCTGTTCGCCATGACGCTCGCCGGCCTGGAGGCCGAGGTCATGGAGCTGCAGGTCGTCGAGACCCCGGTCGGGTCGGTCCGCAGCGACACCCCGGTGGAGACGCGCACCATCACGTTCACCCACGAGCGGCTGACGGTCATGATCGCCCTCTCGGTGGGCGCAGCGCCCGGGACGGTCCGGATCGACGGCTGGATGGCACCGGCCGAGGCTCTGGAGATCGTGCTGCGCCGGCCTGACGAGGAACGCGCCACGATGTCCGACGAGGACGGCCGATTCGTCCTCGAGGACGTCCCCCGGGGGCCGGCGAGCCTCCTGGTGCACCAGGGCGAGACGCCGGTGACGACGCCCGTCATCGAGCTGTAG	MDMTEFDDVPGADAPLDASDVALLVRVAELDDRLDPVPDGLAERALFAMTLAGLEAEVMELQVVETPVGSVRSDTPVETRTITFTHERLTVMIALSVGAAPGTVRIDGWMAPAEALEIVLRRPDEERATMSDEDGRFVLEDVPRGPASLLVHQGETPVTTPVIEL				NA	NA	NA	NA	NA
AK001_01393	723			hypothetical protein	ATGGGTGCGGGCACGGGGGAGCGTGGGCGGCGGGACGCCGCCCTAGGCTCGTCGGGTCCGCCTGAGTCGGGTACCACCGGGTCGGGGAACATCACGCACACCACGCGAGGAGCCATGACGCGTCCAGCCGAGACGTCCAGCCTGGGGGACCGCGCCGCCGTGGCGGTGATCGAGTACCGCGAGGGGCGGCCGGGTGCGATGACCGACTTCGTCCGAGAGGCGTCGCCGTTGCTGTGGCGGACGGTCAGGTCGCAGGGCGTCTCGCGGGAGGCGGCCGACGACGTGGTGCAGCAGACGTGGGCCGCGCTCGTGCGCCACGTCGACTCGATCAGCGAGCCGAAGGCGACCCTGAAGTGGCTACTCGTCACGGCACGCCGCGCGGCGTGGGAGGCCGTCCGCAAGGACCGGACGGACGACAGGCGCCGCACCGGGCTGCCGGACGACGACGCCGAGACCGCGACGACGCTCCCGGACCCGGCGCCGGGTCCCGAGGCGGAGCTGCTGCGCAACGAGCGCGACCGCACGCTGTGGGCCGCGCTGCGTGAGCTGCCGGAACGGTGCCAGGAGCTGCTGCGACTCGTCTCGCTCGCCGACCGCCCGGACTACAGGTCCATCTCCGCCGCGATCGGGATGCCGATCGGGAGCATCGGCGCTACCCGGGGGCGGTGCCTGGCCAAGCTGCGCGCCGTCCTCACCGACCGAGGGGAGACCTCATGGACATGA	MGAGTGERGRRDAALGSSGPPESGTTGSGNITHTTRGAMTRPAETSSLGDRAAVAVIEYREGRPGAMTDFVREASPLLWRTVRSQGVSREAADDVVQQTWAALVRHVDSISEPKATLKWLLVTARRAAWEAVRKDRTDDRRRTGLPDDDAETATTLPDPAPGPEAELLRNERDRTLWAALRELPERCQELLRLVSLADRPDYRSISAAIGMPIGSIGATRGRCLAKLRAVLTDRGETSWT				NA	NA	NA	NA	NA
AK001_01394	708	rplA	COG0081	50S ribosomal protein L1	ATGGCACAGCGCAGCAAGGCGTACCGCGCCGCCGCGGCGAAGATCGACCGCGACAACCTGTACACCCCCCTCGAGGCCGTGAAGCTCGCCAAGGAGACCGCCTCGAAGAACGCCGACTCGACCGTCGAGGTCTCGTTCCGGCTGGGTGTCGACCCGCGCAAGGCGGACCAGCTGGTCCGTGGCACGGTCAACCTGCCGCACGGCACCGGCAAGACCGCTCGCGTGATCGTCTTCGCGAACGCGGCCAAGGCCGAGGAGGCCGCCGCGGCCGGTGCGGACGAGGTCGGCGGCGACGAGCTCATCGCGAAGGTGGCCGGTGGCTACACCGACTTCGACGCGGCCGTCGCGACCCCGGACCTCATGGGCAAGGTCGGTCGTCTCGGCAAGGTGCTCGGCCCCCGCGGCCTCATGCCGAACCCCAAGACCGGCACCGTGACCATGGACGTCACCAAGGCCGTGTCGGACATCAAGGGCGGCAAGATCGAGTTCCGCGTCGACAAGCACGCGAACCTGCACTTCATCATCGGCAAGGCCTCGTTCGACGAGACCGCGCTGGTGGAGAACTACGCGGCGGCGCTGGACGAGGTCCTGCGTCTGAAGCCGTCCTCCTCGAAGGGCCGCTACATCTCGAAGGCGACCCTCGCGACGACGTTCGGCCCGGGCATCCCGGTCGACCCGTCGAAGACGGCGAAGCTCACCGAGGCCTGA	MAQRSKAYRAAAAKIDRDNLYTPLEAVKLAKETASKNADSTVEVSFRLGVDPRKADQLVRGTVNLPHGTGKTARVIVFANAAKAEEAAAAGADEVGGDELIAKVAGGYTDFDAAVATPDLMGKVGRLGKVLGPRGLMPNPKTGTVTMDVTKAVSDIKGGKIEFRVDKHANLHFIIGKASFDETALVENYAAALDEVLRLKPSSSKGRYISKATLATTFGPGIPVDPSKTAKLTEA				NA	NA	NA	NA	NA
AK001_01395	432	rplK	COG0080	50S ribosomal protein L11	ATGCCTCCCAAGAAGAAGGTCTCCGGCCTCATCAAGCTCCAGATCCAGGCCGGGGCGGCGAACCCGGCCCCGCCGATCGGCCCCGCGCTGGGTCAGCACGGCGTGAACATCATGGAGTTCTGCAAGGCCTACAACGCGGCGACCGAGTCGCAGCGCGGCAACGTCATCCCGGTGGAGATCACGGTCTACGAGGACCGCTCCTTCACCTTCATCACGAAGACGCCGCCGGCCGCGGAGCTCATCAAGAAGGCCGCCGGTGTGGCCAAGGGCTCGGCGACCCCGCACAGCGCCAAGGTCGCCCAGCTCACGCAGGACCAGGTCCGCGAGATCGCCGAGACCAAGATGCCGGACATCAACGCGAACGACATCGAGGCCGCGAAGAAGATCATCGCCGGCACCGCCCGCTCCATGGGCATCACCGTCCAGGACTGA	MPPKKKVSGLIKLQIQAGAANPAPPIGPALGQHGVNIMEFCKAYNAATESQRGNVIPVEITVYEDRSFTFITKTPPAAELIKKAAGVAKGSATPHSAKVAQLTQDQVREIAETKMPDINANDIEAAKKIIAGTARSMGITVQD				NA	NA	NA	NA	NA
AK001_01396	804	nusG	COG0250	Transcription termination/antitermination protein NusG	GTGTCCCAGGATCCTCTGGAGCAGACGGAGAACGTCGACCCCACCCAGCCCGACGCCGACGGCGCCGAGGCTGACCTCGACGTGCCCGCGGACGCGGACACCACCGAGCAGGCCGAGGAGACCGAGGCGGAGGCCGCGGAGCCCACGCAGGACGAGGGCGCGGCGGACGCCGACGGCGACGTGATCGAGGACCCGGCCGAGGAGCTGCGCCGCACGCTGCGCGGCCAGCTGGGCGACTGGTACGTCATCCACTCCTACGCCGGCTACGAGAACCGTGTGAAGGTCAATCTGGAGAACCGCACCCAGAGCCTGAACATGGAGGACTACATCTTCCAGGTCGAGGTCCCCATGGAGGACGTCACCGAGATCAAGAACGGGCAGAAGAAGTCCGTCCGCCGCGTGCGGATCCCGGGGTACGTCCTGGTGCGCATGGACCTCACCGACGAGTCGTGGGGCGCGGTGCGCCACACGCCGGGCGTGACCGGGTTCGTGGGACACACCCACCAGCCGGTCCCGCTGTCGCTCGACGAGGTGTTCGGCATGCTCGCGCCGACCATGCTCGAGGAGGCCCCGGCGAAGCCCGCCGCGGCCGCCGAGAAGGGTGGCGGCGCGGCTGCGCAGCCCGCCATCGAGGTCGACTTCGAGGTCGGCGAGTCCGTCACCGTCACCGATGGTCCGTTCGACACGCTGCCCGCGACGATCTCCGAGATCAACGCCGAGGCCCAGAAGCTCAAGGTCCTCGTGTCCATCTTCGGCCGGGAGACCCCGGTCGAGCTGTCGTTCAACCAGGTCGCCAAGATCTGA	MSQDPLEQTENVDPTQPDADGAEADLDVPADADTTEQAEETEAEAAEPTQDEGAADADGDVIEDPAEELRRTLRGQLGDWYVIHSYAGYENRVKVNLENRTQSLNMEDYIFQVEVPMEDVTEIKNGQKKSVRRVRIPGYVLVRMDLTDESWGAVRHTPGVTGFVGHTHQPVPLSLDEVFGMLAPTMLEEAPAKPAAAAEKGGGAAAQPAIEVDFEVGESVTVTDGPFDTLPATISEINAEAQKLKVLVSIFGRETPVELSFNQVAKI				NA	NA	NA	NA	NA
AK001_01397	255	secE		Protein translocase subunit SecE	GTGAGCGAGTTGCCGGCTGAGGCCAGCACGCACGACACCGGTTCGGGCAAGGAACGTCGCAACGTCTTCGCCCGGATCGCTCTGTTCGTCCGCCAGGTGGTCGGCGAGCTCCGCAAGGTGGTCACCCCGACCCGGTCGGAGCTGATCAACTACACCATCGTCGTCATCGTGTTCGTCACGATCGCGATGCTGTTCGTGACCGCGCTCGACTACGTCCTCGGCCTCGGAGCCTTCTGGCTCTTCGGGGACGGCTGA	MSELPAEASTHDTGSGKERRNVFARIALFVRQVVGELRKVVTPTRSELINYTIVVIVFVTIAMLFVTALDYVLGLGAFWLFGDG	PGPT0025715_2024	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073	NA	NA
AK001_01399	1143		COG1816	Aminodeoxyfutalosine deaminase	ATGGTGATCGTCAACCACCGAGGGACTACTGTACGCGACGCGGGACGCTGGGTCGAACCACGAACGAGGGACCGGTTCGTCACAGCCCCGACGCCGGCGTGGGGCAGACTGTCCCGGGTGCGTGACCTGGCATCGCTCCCCAAGGCCCACCTGCACCTGCATTTCACCGGATCGCTGCGGGTGTCGTCGCTGCGCGAGCTCTCCACCGCGTACGGCCTGCGGCTCCCGTCGGCGCTGACCGACGGCGTCGCCCTGCGCGTCCCGGCCACGGAGCGGGGCTGGTTCCGGTTCCAGCGCCTCTACGACGCCGCCCGGCACTGCGTGCGCTCCGAGGCCGACATGCGCCGGCTCGTCGACGAGGCGGCCGCCGACGACGCCGCCGAGGGGTCCGGACGCCTGGAGATCCAGGTGGACCCGACGTCGTACGCGCCCTTCGTGGGCGGCATCACCCCGGCGGTGGAGATCGTCCTGGACGAGGCGCGGGCCGCGAGCGCCCGGCACGGGCTGGAGGTCGCCGTCGTCGTCGCCACCTCCCGCATGAAGCACCCGCTGGACGCCCGCACGCTGGCGCGGCTGGCCGCCCGGTACGCCGGGGAGGGGCCGGGCGAGGTCGTCGGCTTCGGCCTGAGCAACGACGAACGGCGCGGCGACACGCGCGAGTTCGCGCGGGCCTTCGCGATCGCGCGGCGCGCCGGACTGGCCTCGGTCCCCCACGGCGGTGAGCTGCTGGGGCCGACGCACGTGCGCGAGGTCGTCGCCGCGCTCGACCCGGACCGGCTCGGCCACGGGGTGCGCTCGATCGAGGACCCGGCGCTGCTGGGCTCGCTGGTCGAGTCCGGCGTCGCCCTGGAGGTGTGCCCGGCCTCCAACGTCTCCCTCGGCGTCTACGAGCACGACGAGGACGTCCCGCTGCGGCCGCTCGTCGAGGCGGGGGCGCAGGTGGCCCTCGGCGCCGACGACCCGTTGCTGTTCGGCTCCCGCCTGCTGGACCAGTACGAGACCGCCCGCACCGTGCACGGGTTCAGCGACGCCGAGCTGGCCGACCTGGCCCGGGCCTCCATCCGCGCCTCGCGAGCCTCCTCGGCCACGCGTCGGCGACTCCTGGACGGCGTGGACGACTGGCTGGCGGACGGGCCGGCCTGA	MVIVNHRGTTVRDAGRWVEPRTRDRFVTAPTPAWGRLSRVRDLASLPKAHLHLHFTGSLRVSSLRELSTAYGLRLPSALTDGVALRVPATERGWFRFQRLYDAARHCVRSEADMRRLVDEAAADDAAEGSGRLEIQVDPTSYAPFVGGITPAVEIVLDEARAASARHGLEVAVVVATSRMKHPLDARTLARLAARYAGEGPGEVVGFGLSNDERRGDTREFARAFAIARRAGLASVPHGGELLGPTHVREVVAALDPDRLGHGVRSIEDPALLGSLVESGVALEVCPASNVSLGVYEHDEDVPLRPLVEAGAQVALGADDPLLFGSRLLDQYETARTVHGFSDAELADLARASIRASRASSATRRRLLDGVDDWLADGPA	PGPT0021520_1527	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488	NA	NA
AK001_01400	1038			hypothetical protein	ATGACGGGACCGGGTCGCCCGCCGGGGCGCCGAGCGGCCGCGGCGGCCGCCGTCGTCGCGCTGCTCCTGCTCGGGGCGTGCGGGCCCGCGACGAGCGAGCCGACCGACACCGCCGCGTCCGCGACGCCGACGCCGCCGTCGCCGGTGGCAGACCCGTCGGCCGCCGCGTCCATGACACCGTCCGCGGTCCCGTCACCCGAGGCGAGCCCCGACGCCACCCCCTCGGTCGGGGCCTCGCCGGAGCCCGAGCCCTCGCCGTCCATGACCACGGAGACCTCGCCGGCGTCCACGGCGGACCCTTCGGACGGGACGGCCGAGCCTGACGCCGCCGACGACGAGTCCGACGGGACCCAGGACGGCGCGTCGTCCGACACGCAGAAGCCCGACGAGAGGAAGATCGAGAAGAAGCCGGAGAAGAACGCTCCTGCCCCGGAGCCGGACTACGTCGAGGTCGGCTCCCGGGGTGCGGAGGTCCGTGAGCTGCAGGAGCGGCTGGTCGAGCTCGGCTACTTCCTGCCGAGCGTCGACGGGGTGTTCGGCCCGCAGACGCAGCAGGCCGTCTGGGCGCTGCAGAAGGCGGCGGGCCTGTACCGCGACGCCGTCGTCGGCCCGCGGACCGAGTCGGCCCTGGACGACGGCGTCCGCCCCCGCACGGTCTCGTCGTCGGGCAAGGTCGTCGAGATCGACCTGGACCGGCAGCTGCTGCTCGCCGTGCAGGACGGCAGGGTCGTGCGCGCGTTCAACGCCTCCTCGGGCAACGGCGAGACGTTCGAGGCCAAGGGTCGCTCCTACCGGGCCACGACGCCGCGCGGGACCTTCGCCGTCTACATGGAGCGCGACTACCTGCACGAGTCCACGCTGGAGCTCGGGGCGATGTACCGGCCGAAGTACTTCACCGGCGGCATCGCCGTGCACGGTTCACCCTCGATCCCGCCGGTGCCGGCCTCGCACGGGTGCATCCGGGTGTCGAACGCGGCGATGAACTGGCTGTGGGACTCCTGGGGGATGCCGAAGGGCACGACCGTCGTCGTGCACTGA	MTGPGRPPGRRAAAAAAVVALLLLGACGPATSEPTDTAASATPTPPSPVADPSAAASMTPSAVPSPEASPDATPSVGASPEPEPSPSMTTETSPASTADPSDGTAEPDAADDESDGTQDGASSDTQKPDERKIEKKPEKNAPAPEPDYVEVGSRGAEVRELQERLVELGYFLPSVDGVFGPQTQQAVWALQKAAGLYRDAVVGPRTESALDDGVRPRTVSSSGKVVEIDLDRQLLLAVQDGRVVRAFNASSGNGETFEAKGRSYRATTPRGTFAVYMERDYLHESTLELGAMYRPKYFTGGIAVHGSPSIPPVPASHGCIRVSNAAMNWLWDSWGMPKGTTVVVH				NA	NA	NA	NA	NA
AK001_01401	1236	murB	COG0812	UDP-N-acetylenolpyruvoylglucosamine reductase	GTGAGCCAGACCGCCGCGAAGCCCGCCGCCGGAGGCGCCCTGCCGCACCCCGCGCTCGGACCGGATGCCGCCCCGAACCTGTCCGACCTGACCACGCTGCGCGTCGGCGGACCGGTCGACCGCTACGTGGAGGCGACCACCGAGGCCGAGCTGATCGACGCCGTCCGGTCGGCCGACGACGCCGAGGTCCCGCTGCTCGTGGTCGGCGGCGGCTCCAACCTGCTCGTCTCGGACGCGGGCTTCGACGGGCTCGTCGTGCGCGACGTGCGTCAGGGCCTGGACGCGGACCTGTCCGCCTCCTGCGACGTGGAGGAGGGCGCCTGCGGCGGCGCCACGATCACGTTGCCGGCCGGGCAGGACTGGGACGCCTTCGTCGCACAGGCGGTGGCGAACGAGTGGGTCGGCGTCGAGGCGCTCTCCGGCATCCCCGGCACGATGGGCGCCGCCCCGGTGCAGAACATCGGCGCCTACGGCCAGGAGGTCTCCGGCGTCGTGGCCGCGGTGCGCGTCTGGGACCGCGACACGGGCCGGCGGCGCACCCTGACGCTGTCCGAGCTCGGCTTCGGGTACCGCACCAGCCTGCTCAAGCGGTCGATGCGCGGCGACCGCGCCGCCGGGGAGGACATCTGGTACCCGACGCCGCGCTACGTCATCCTCGACGTCCGGCTGCAGATGCGCATGGGCTCGCTCTCCGCCCCGGTCGGCTACGCCGAGCTGGCCCGGCGGCTCGACGTCGAGGTCGGCACGCGCGCCCCGTCGGTCGAGGTGCGTGACGCCGTGCTCGAGCTGCGGGCGGGCAAGGGGATGCTGCTCGACGGCGTGGGCGGCGCCCCGACGCCCGACCACGACCGCTGGTCGGCGGGGTCGTTCTTCACCAACCCGGTCGTCCCGGCCGAGGAGGCCGCGGACCTGCCCGACGACGCGCCGCGCTTCCCCGTGCGCTCCGCCACGCCGACCACGTCGACGGGGCCCGCGCTCGGGGAGATCGACCCGCGCTGGGTGAAGACCTCAGCGGCGTGGCTCATCGAGCACGCCGGGTTCACCAAGGGGTTCGGGCTGGCCGGCGAGCACTCGCCCGCGCGGCTGTCGACCCGGCACACGCTCGCCCTGACCAACCGCGGGGGAGCGACGGCGCAGGACCTCGTGGCCCTCGCCCGTGCCGTGCGCGACGGCGTCCGCGACGAGTTCGGCGTCGAGCTGGAGCCGGAACCGGTGCTGGTGGGCCTCGCGCTCTGA	MSQTAAKPAAGGALPHPALGPDAAPNLSDLTTLRVGGPVDRYVEATTEAELIDAVRSADDAEVPLLVVGGGSNLLVSDAGFDGLVVRDVRQGLDADLSASCDVEEGACGGATITLPAGQDWDAFVAQAVANEWVGVEALSGIPGTMGAAPVQNIGAYGQEVSGVVAAVRVWDRDTGRRRTLTLSELGFGYRTSLLKRSMRGDRAAGEDIWYPTPRYVILDVRLQMRMGSLSAPVGYAELARRLDVEVGTRAPSVEVRDAVLELRAGKGMLLDGVGGAPTPDHDRWSAGSFFTNPVVPAEEAADLPDDAPRFPVRSATPTTSTGPALGEIDPRWVKTSAAWLIEHAGFTKGFGLAGEHSPARLSTRHTLALTNRGGATAQDLVALARAVRDGVRDEFGVELEPEPVLVGLAL	PGPT0024115_87	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075	NA	NA
AK001_01402	1284	ybjJ		Inner membrane protein YbjJ	ATGGATCGTCGAAGGGTGAACTCCTCCGCCCCCACCCGGGCCGTCCCCCGCCCGGTCCGCGGCGCCGTCGTGGCGGTCTACGGCGTCTTCGTCGCCGCCGGCTTCGGCATGGCCACCTGGGCCTCGCGCATCCCCGCCGTCCGGGACGGGCTCGACTTCACCGAGGCGCAGATGGGGGTGCTGCTGCTCACCGCCTCGATCGGGTCGATCTGCGCCCTGCCGCTGTCGGGGATGATCACCTCCCGTCTCGGCGCCGCCCGCACCGTCCTGGGCTTCGCCGTGCTCTCCGCCGCCGGGTTCGCCGTCGCGACCCTGGCCATCGACGCCGGGCTGCCCTGGCTGGTCCGCGTCGGCCTCTTCCTCGCGGGCACGGGCATGGGCGTGTGGGACGCCGCCATGAACCTCGAGGGCGCCGTCGTCGAGCAACGGCTCGGCAAGGCGATCATGCCCCGGTTCCACGCCGCGTTCTCCTTCGGCACCGTCGCCGGCGCGGGCGTCGGGGCGCTCGCGGCCTGGGCGCAGGTGCCGCTCACGGCGCACCTCGTGTCCGTCGTCGTCCTCGACGCCGTCGTCGTGGCGCTGTGCGTGCGGGCGTTCCTGCCCGCGCACGAGGCCGGCGCCGTCGTGACCGACGCCGGGGACCAGGACGCCGCCGCCGACCCGGCCACCGCCGTCGAACCCTACCGGGGCCACTCGGTCAAGGACACCCTGGCGACCTGGCGCGAGCCGCGCACCCTGCTCATCGGGCTCGTCGTGCTGGCCGCCGCCCTGACCGAGGGGGCCGCCAACGACTGGGTCGGCCTGGCCACGGTCGACGGCTTCGAGACCGGGGACGGCATCGGGGCGCTGGCCCTGGCCGTTTTCCTCGTCGCGATGACCGTCACCCGGTTGGTCGGCACGGAGATCATCGACCGCTTCGGGCGCGTCGTCGTGCTGCGCGGCGGCGGGATCGCGGCGCTCGTCGGCGTGAGCGTCTTCGCCCTGGTGCCGAACCTGCCCCTGGCGCTGGCCGGGGTGTTCCTGTGGGGGGTCGGCACCGGGCTCGGCTTCCCGATGGGGATGTCGGCCGCCGCGGACGACCCGTCGCGTGCCGCCCTGCGGGTCGCCGTCGTCTCGACGATCGGCTACTCCGCCTTCTTCGTGGGGCCCGCCCTCATCGGTTTCCTCGCCCACTACACCGGGTACCGCCTCGCCCTGCTCGTGCTGGCCGTGCCGGTGGTGGTCGGCCTGTTCGTCGCGGGCGCGGCACGACCCCCGCAGCGCGCGTCTACGCTGGACCCGTGA	MDRRRVNSSAPTRAVPRPVRGAVVAVYGVFVAAGFGMATWASRIPAVRDGLDFTEAQMGVLLLTASIGSICALPLSGMITSRLGAARTVLGFAVLSAAGFAVATLAIDAGLPWLVRVGLFLAGTGMGVWDAAMNLEGAVVEQRLGKAIMPRFHAAFSFGTVAGAGVGALAAWAQVPLTAHLVSVVVLDAVVVALCVRAFLPAHEAGAVVTDAGDQDAAADPATAVEPYRGHSVKDTLATWREPRTLLIGLVVLAAALTEGAANDWVGLATVDGFETGDGIGALALAVFLVAMTVTRLVGTEIIDRFGRVVVLRGGGIAALVGVSVFALVPNLPLALAGVFLWGVGTGLGFPMGMSAAADDPSRAALRVAVVSTIGYSAFFVGPALIGFLAHYTGYRLALLVLAVPVVVGLFVAGAARPPQRASTLDP				NA	NA	NA	NA	NA
AK001_01403	1080	ipsA		HTH-type transcriptional regulator IpsA	ATGGGCCGCACACCGAGCAACCGACCGACGCTCGCACGGGTCGCCGAGCGCGCCGGGGTGTCCGTCTCGACGGCTTCCCTCGCCTTCTCCGGCTCGGGCCCGATCACCCCCGAGACCCGCGACAAGGTGTTCGCCGCCGCGACCGACCTCGGCTACACCGGCCCCAACCCGCTGGGCCGCCAGCTGCGGCGCGGGCGGTCGGGCATCGTCGGCGTCGTCATCGGCGACCACCCCGGACGCGCGTTCCGCGACCCGGTGGCCGTGCAGGTGCTCGACGGCCTGGTCGACGTGCTGGGCACCGAGGGGCTCGGGGTCCTGCTCATCCCCGGGGTCGACCTCGGGGAGGACTCGGTCGACCCGTTGCTGGAGACCGCCGCGATGGACGTCGCGGTGCTGGTGTGGGGCGTCCTGACCGACGACCCGACGCTGGCGGCGCTGCAGCGACGCGACGTTCCCGTCGTCGTCGGCGAGGGACGGGCGATCGAGGGCTCGCCGCTGGTCGCGCTGGAGGACCGCGCCGGGGCCGCCGAGGCGGTCCGGCACCTCGTGGACCTGGGGCACACGCGCATCGCGGAGATCTCCCTGCCCTTCGGCCGGGGAGAACGCTCCGGGCCCGTGGACGCCGAGCGGCTGGCCTGCGCCGACCGCACCCCGACGGCGCACCGCATGGCAGGCATCCGCGACGTCGTCGACCCCGTGATCACGTGGGAGACGCCCGCCTCGCTGGTGGAGCACGGGCGCGACGCCGCCACGGAGATCCTCGGGACGTGGGTGCCGGCCGACGAGCGGCCGACGGCGATCGTGGCGCACTCCGACCTGCTCGCGGCCGGCGCCGTCATCGCGGCCCGTGAGCTCGGGCTGCGCATCCCCGAGGACGTGTCGGTCGCCGGGTTCGACGGCCTCGACCTGCCGTGGCTCTCCCCCGACGTGCTCACGAGCGTGCATCAGCCGCTGCGGGACAAGGGCACGAGGCTCGGGCAGGCGGCCATCGACCTCATCGCCGGGCGGGAGCCGACGTCGGTGTCCCTGCCGGTCGGGCTCGTTCCCGGCACGACGACGGGCCCGGCCCCCGCGAGGTAG	MGRTPSNRPTLARVAERAGVSVSTASLAFSGSGPITPETRDKVFAAATDLGYTGPNPLGRQLRRGRSGIVGVVIGDHPGRAFRDPVAVQVLDGLVDVLGTEGLGVLLIPGVDLGEDSVDPLLETAAMDVAVLVWGVLTDDPTLAALQRRDVPVVVGEGRAIEGSPLVALEDRAGAAEAVRHLVDLGHTRIAEISLPFGRGERSGPVDAERLACADRTPTAHRMAGIRDVVDPVITWETPASLVEHGRDAATEILGTWVPADERPTAIVAHSDLLAAGAVIAARELGLRIPEDVSVAGFDGLDLPWLSPDVLTSVHQPLRDKGTRLGQAAIDLIAGREPTSVSLPVGLVPGTTTGPAPAR	PGPT0014791_72	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_01404	591			hypothetical protein	ATGAGCGAGCGGATGCTCACGGGGGAGCGGGGCGCCGAGGTGTGGCGCCATGGCGAGGTCGCGGTGCACGTGCTCGACCCGGCCGCCGACGTCGACGTCCTGCACGCGTGGGTGACGCGTCCGAACGCCGGCTTCTTCGGGCTCGGGGGCCTCGCTCGGGACGAGCTGCGCGAGACGTACGAGTTCGTCGACTCCCTGCCCACCCATCACGCCTACCTCGTGCGCGTGGCCGGGGAGCCGGTGGCGCTGGTGCAGCTCTATCACCCGGAGGACGACCCGCTGGCGGCGGCGTACGACGTGCAGCCGGGGGACGTGGGCATGCACTTCTTCAAGGGCAGCGAGGCCGTGGGGTGGCCCGCCCTGGGCGCCGCGCTGGCCCGGTTCGGGTTCACCGCTCCGGGTGCCCGGCGGGTCGTCGTCGAACCGGACGTGCGCAACCGGGCTGCGATCGCGCGGATGGTCGCCATGGGCTTCGAACCGGCCGGCGAGATCCACTTCGAGTCCCCGCACGGGCCCAAGGACGCGATGCTGGCGTTCCTCACGCGCGACCGCGCCACGGCACTGCTCCCCGAGGATCCTCTGCCGAGGTAG	MSERMLTGERGAEVWRHGEVAVHVLDPAADVDVLHAWVTRPNAGFFGLGGLARDELRETYEFVDSLPTHHAYLVRVAGEPVALVQLYHPEDDPLAAAYDVQPGDVGMHFFKGSEAVGWPALGAALARFGFTAPGARRVVVEPDVRNRAAIARMVAMGFEPAGEIHFESPHGPKDAMLAFLTRDRATALLPEDPLPR	PGPT0028075_110	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434	NA	NA
AK001_01405	2205	acyII		Penicillin acylase 2 proenzyme	ATGACGTTCGAGGTGTTCCGCGACGACTCGGGGGTGCCGCACGTGCGGGCTGCCACCGAGCCGGACCTCGCCCGCGGGCAGGGCTACGTCACCGCCCGCGACCGCGGCTGGCAGCTCGAGTCCGACCGGTGGCGTGCCGAAGGGCGCCTCGCCGCGCGGTTCGGGCCGAGCGGGTTGGCGTGGGACCGGTTCGCCGTCCGCGTGCGGCTCGCGGACACCGCCCGCCGGGTCCACGCGGCGCTCGCGGAGCCCGAACGCGACTGGCTCGCCGCCTATGTGGCCGGGGTGAACGCCGGGCTGTCCGACGGCGGTCGCGACGTCCCGGAGATGCACGCCCTGGCCGCGGCTCCCGGCGACCTGCCGGAGCACGGGCCGTGGCCGGACTGGATGCCGCTCGGGGTGTTCCTCACCAACCACGTCCTGTTCGGCACCTGGCCGCACCTGCTGTGGCGCGAGCACGTGGTCCGGACGCTCGGGCCCGACCATCCGCTGACGGTGATCCTGTCGGGGGCCGACGACGGCGCGGGATCCGGGTCGAACGCCTGGGCCCTCGCCGGGGTCCGGACGGTGAGCGGCGCCCCGCTGCTGGCCGGCGACCCGCACCGGCTCCTCGAGCTGCCCGGGATCTACCAGCAGATCCGGCTCGCGTGCGACGCCTACGACGTCGTCGGCCTGGCGTTCCCCGGGGTGCCCGGCGTGCTGCACTTCGGGCAGACCATGACGCCCGGCGCAGCACCCGGCCGCGGTAGATCCGACGACGGCGAGCCCGGCGCGGGCGGGTCCGTCGCGTGGGGGATCACCAACGCCCTGGCCCACGCCGCCGAACTGTTCGTCGAGACCACGGAGACTCTGGCCGGCGCGGCCGGACCGGTCGAGACCGGCGTCGAGACCGTGCCGGTGCGCGGCGGCGACGCCGTCGAGGTGACCTGGACCGAGACGCCCCGGGGGCCGCTGGTCACCGACACCCACGCACTGCGCTGGCCCGTGCGGGTCGACGCCGACCTCGGGGTCGCGTCCTGGCGGGCCCTGCAGGGGGTCCGCTCCGCGGCGGACGTCGCCGCGGTGTTCGCCGGCTGGGTGGAGCCGGTCAACCGGGTGCTGACCGCCGACTCCGACGGGACCGTGCTCAGCCTGACGGCCGGCCGGGTGCCCGACCGGTCGCGCGCCGAGCGGGTCCTGCCTCACGCCGTCGTGCCGCGGGAGTCCGGCGTGTCGGAGCCGGCGCTCCCGCCGTGGCGTCCGCCGTCGTCCCCGGTGCCGGTACGCGACCTGGCCGTGGACGCCAACGAACGCCCCGACACCTCGGGCCGGGTCCCGGACCTCGGGCTGACCTACGCGCCGCACCGCGCGGGCCGGATCCGCGAGCTCCTGGCCACGCCCCCGGACGGTGGTGAGCGGCCCGAGGAGCAGGCCCGGGTGCACGGCGACGTCTCGGACCAGGGCGCGGCGCACCTCGTGCGGTGGCTGGACGACGTCGGCGGGCCCCGTGTCGGCCCGGCGGCCGCCCGGGTCCGGGCCTGGGCCGCCGGCGGTGCGCGCATGGACCCCGACTCCCGAGAGGCGGCGCTGTTCGCGGTGTGGCGGGACCTCCTGACGCGGCGGGTGGCGGCGCACCCCGCGCTGGCCCCGGTCGCCGCCCCGCACGGGATGCCGGCCGTGCTGGACCCGTGGCTGGACCTGTCGGCGAGGGTCGGCCAGGTGCTCGACGCGGTGCTGGGGGCGGGCGAAGCCCTGACGCCCCCGCTGGACGCCCGGGCCGAGGCGCGTGCCGCCCTGGCGGACGCCCGCGCCGAGCTCTCCGGGTGCCGGCGGGTGGTGCGCCGGGGGACGGCGGAGGGCACCTGGGGCGCGCGGCACCCCGTCGTGCCCCTGCACGCCCTGGGGGACGCGACCGGTGTCGACGCAGCGGCGGTGCCGCGGGTCCCTCGCGACCTGCGGGTCCCGATCGGGGGCGCCGCCGACACCGTGTGCTGCACGGGGTCGGTGCCGGGGGTGTCGCTGGCGTCGTGGCGCGGGTCGGTGGCGCGCTGGGTGTGGGACCTGTCCGACCGACGCCGCAGCCGCTGGGGGGTGCCGTTCGGTGCCTCGGGCGACCCGCGGTCGGCGCACTTCGCCGACCAGCACCCGCGGTGGGCGCGGGCCGGCACGGACGAGATCGAGACGGACTGGGCGCGTCTGCGCCGCGAGACCTGGGGGGACGCATGA	MTFEVFRDDSGVPHVRAATEPDLARGQGYVTARDRGWQLESDRWRAEGRLAARFGPSGLAWDRFAVRVRLADTARRVHAALAEPERDWLAAYVAGVNAGLSDGGRDVPEMHALAAAPGDLPEHGPWPDWMPLGVFLTNHVLFGTWPHLLWREHVVRTLGPDHPLTVILSGADDGAGSGSNAWALAGVRTVSGAPLLAGDPHRLLELPGIYQQIRLACDAYDVVGLAFPGVPGVLHFGQTMTPGAAPGRGRSDDGEPGAGGSVAWGITNALAHAAELFVETTETLAGAAGPVETGVETVPVRGGDAVEVTWTETPRGPLVTDTHALRWPVRVDADLGVASWRALQGVRSAADVAAVFAGWVEPVNRVLTADSDGTVLSLTAGRVPDRSRAERVLPHAVVPRESGVSEPALPPWRPPSSPVPVRDLAVDANERPDTSGRVPDLGLTYAPHRAGRIRELLATPPDGGERPEEQARVHGDVSDQGAAHLVRWLDDVGGPRVGPAAARVRAWAAGGARMDPDSREAALFAVWRDLLTRRVAAHPALAPVAAPHGMPAVLDPWLDLSARVGQVLDAVLGAGEALTPPLDARAEARAALADARAELSGCRRVVRRGTAEGTWGARHPVVPLHALGDATGVDAAAVPRVPRDLRVPIGGAADTVCCTGSVPGVSLASWRGSVARWVWDLSDRRRSRWGVPFGASGDPRSAHFADQHPRWARAGTDEIETDWARLRRETWGDA	PGPT0028075_1765	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434	NA	NA
AK001_01406	2547			hypothetical protein	GTGACCGCCGCGACCACCGCCCGCGCCGCCGTGGACAGCGTGTTCGCCGCCGGCACGCGCCGGGGAGAGCTCACGTTCTCCCCGGTGGACCCCGACCACGACGCGGTGGTCGTCCAGGCCTGGCTGGCCCACCCGGCGTCGTCCGCGTGGCACATGACCGACCTCGGTGTCGACGACGTCCGCGACTACCTGGGCGTGCTCGCGGCCGACGACGCCCAGGACGGCTGGCTCGTCCGCCTCGACCACGAACCGGTCGCCTACGTCGAGACCTACGACCCGGCCCGCGTGCTGCTCACCGCGGTCCACGACGCCGCTCCCGGGGACGTCGGCATGCACCTGCTCGTCGCGCCGGCGCCCGCGGACCCGGCCGCGCGCCGCCGGGGTCTGACCGACGCGGTCATGTCTGCCGTCGTGCGCTTCTGCCTCGCCGACGCCGCGGACGGCGGACGCGGGGGAGCGCGGGTCGTCGTCGAGCCCGACGTGCGCAACGCACCGATCGCGGCGAAGAACGCCGCGGCCGGGTTCCGGGTGCTGGGCGAGGTCGAGGTCACCGACGGCGGGCACACCAAGACCGCCGCGCTGAGCGTGTGCACCCGCGCCGACTTCGCCGCGTCCCCGCTCGGTGCCGGGGTGGACCCGGCACCCCACCTGCGCGCCGACCTCGCCGCCCACGCCCACCGCCACCTCGCCGCCAAGGCGATCGCCGAGCTCACCCACGAACGGCTCTTCGCGCCGGTCGCCGACGGGACCGCCGACGGCACCTCCGGAGCAGGCGGTGCGACGCGCTACCGCCTCGACCTCGACGGCGCCACCTACACCTTCGACGCCCGCACCTTCGCCCTCGAGCACTGGGTGATCGACCCCGCCTCGATCGTCCGCACCGCGCGCGGGGCAGGACCCGACCGCGAGCAGGGCGGCACCGCGCTGCCGGTCGACGTCCTGGAGCTGGTCGCCGAGCTGCAGCCGTCGTTGCAGATCCCCGACGACCTGCTCGCCACCTATCTCGAGGAGCTCTCCAGCACCCTGGCGGCGGCCATGGCCAAGCGGGACCGTGAGCTGGCCGGTCGCACCCCCGACGCCGCGGGGCTGGTCGCGGGGCTCACCGCGCCGGCACCCGGTGGACCCGGAGGGGCCGACCCGGACCGGGACCTTGCTGACCAGGACCCCGCTGACCGGGCCGCGGACCGCCGTCGGACCGCCGAGACGTTCCAGGCCGTCGAGGCCGCGATGTCCGAGGGGCACCCGGGCTTCGTCGCGAACAACGGACGCATCGGCTTCTCGCTGCCCGACTACGAGGCGTTCGCCCCCGAACGGGGCGGTCGGCTGCGGCTGCAGTGGGTCGCCGCCCGGCGCGAGCACACCCACCTGGCGCTCGCGGACGACCAGACCGAGGCGGGGCTGTACGACGCCGAGCTGTCCGGCGCCGAACGGGCGGCGTTCGCGGACCGGCTGGCCCGGCGCGGGCTGGACCCGGCCGACTACCTGTACCTGCCGCTGCACCCGTGGCAGGCCGAGCACCGGCTGCCGATCACGTTCGCCGCCGACGTCGCGCGCGGCGACCTCGTCCCGCTCGGCCCCGGCGCGGACGAGTACACCCCGCAGCAGTCGATCCGCACGATGTTCAACCGGACCCGTCCGGAGCGGCACTACGTCAAGGTGGCCCTGGCCATCCAGAACATGGGGTTCCTGCGCGGGCTGTCCCCGGCGTACATGCGGGCCACGCCCGCGATCAACGACTGGGTCGCCGACCTGGTCGACGGCGACGCGACCCTGGGCACGGCCGGCTTCGGCGTGCTGCGCGAGCTCGCCGCGGCCGGGTACACCGGCGACGTCTACCACCGCACCCCGCGCCCCAACGCCCACCGCAAGATGCTCGCGGCGCTGTGGCGCGAGTCCCCGCTGCCGCGCACCGCGCCCGGCGAGCGGCTGGCCACCATGGCCTCGCTGCTGCACCGCGACGCCGGGGGCCGGGCGCTGGTCACCGAGCTGGTGCGGGCCTCCGGCACCGACCCCGCCGACTGGGTGCGGGCCTACCTCGACGCTTACCTCTACCCCCTGGTGCACTGCCTGCGCGCCCACGACCTGGCGTTCATGCCGCACGGGGAGAACCTCGTGCTCGTGCTGCGCGACGGCGTCGTCCGGCGGGCGTTCATGAAGGACATCGGCGAGGAGGTCGCCGTGCTGTCGGACCGGGCACTGCCGGAGCAGGCGGCCCGGATCGCCGCCCCGGTGGACGACGCCGAGAAGGCGCTGGCGATCTTCACCGACGTGTTCGACGGCGTGCTGCGCCACCTGGCCGGGATCCTCGCCGTCGACGGGGTGCTGGGCGAGGACCGGTTCTGGGCGCTGGTCGGCGAGTGCCTCGACCGGCACGAGGCCGAGCACCCGGACCTGGACTCCGGTGTGGACCTGCGTGCCGCCGGGTTCGCGCACTCGTGCCTGAACCGCCTGCAGCTGCGCAACACCCTGCAGATGGTGGACCTCGCCGACCAGTCGAGCTCCCTCATCTACGCCGGCACCCTGGCCAACCCGGTCGGGCGCCGATGA	MTAATTARAAVDSVFAAGTRRGELTFSPVDPDHDAVVVQAWLAHPASSAWHMTDLGVDDVRDYLGVLAADDAQDGWLVRLDHEPVAYVETYDPARVLLTAVHDAAPGDVGMHLLVAPAPADPAARRRGLTDAVMSAVVRFCLADAADGGRGGARVVVEPDVRNAPIAAKNAAAGFRVLGEVEVTDGGHTKTAALSVCTRADFAASPLGAGVDPAPHLRADLAAHAHRHLAAKAIAELTHERLFAPVADGTADGTSGAGGATRYRLDLDGATYTFDARTFALEHWVIDPASIVRTARGAGPDREQGGTALPVDVLELVAELQPSLQIPDDLLATYLEELSSTLAAAMAKRDRELAGRTPDAAGLVAGLTAPAPGGPGGADPDRDLADQDPADRAADRRRTAETFQAVEAAMSEGHPGFVANNGRIGFSLPDYEAFAPERGGRLRLQWVAARREHTHLALADDQTEAGLYDAELSGAERAAFADRLARRGLDPADYLYLPLHPWQAEHRLPITFAADVARGDLVPLGPGADEYTPQQSIRTMFNRTRPERHYVKVALAIQNMGFLRGLSPAYMRATPAINDWVADLVDGDATLGTAGFGVLRELAAAGYTGDVYHRTPRPNAHRKMLAALWRESPLPRTAPGERLATMASLLHRDAGGRALVTELVRASGTDPADWVRAYLDAYLYPLVHCLRAHDLAFMPHGENLVLVLRDGVVRRAFMKDIGEEVAVLSDRALPEQAARIAAPVDDAEKALAIFTDVFDGVLRHLAGILAVDGVLGEDRFWALVGECLDRHEAEHPDLDSGVDLRAAGFAHSCLNRLQLRNTLQMVDLADQSSSLIYAGTLANPVGRR	PGPT0031210_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-DESFERRIOXAMINE-BIOSYNTHESIS,PGPT0031210-desD-NA	NA	NA
AK001_01407	1389	iucD	COG3486	L-lysine N6-monooxygenase	ATGAGCACCTACGACGTCGTCGGCATCGGCATCGGCCCCTTCAACCTCGGCCTCGCGGCGCTCGCCGACCCCCTGGAGGACGTGGACGCCGTCTTCCTGGACCAGCGCCCCGGCTTCTCCTGGCACGCGGGCATGATGCTCGAGGGCGCCACGATCCAGGTGCCGTTCCTGGCCGACCTGGTCACCATGGCCGACCCGACCTCGCCGTACTCGTTCCTGGCGTTCCTCAAGGAGACCGGGCGGCTCTACCCCTTCTACATCCGCGAGTCGTTCTACCCGCTGCGGGCCGAGTACGACGAGTACTGCCGCTGGGTCGCGGCCCGGCTGGACACCCTGCGCTGGGGGCGGCGCGTCGTCGCGGTCGAGCACGACGCCGCGAGCGACACCTACCTCGTCACCGCGGAGGTCGCCGACGACGACGGAGTCAACCGCGAGCAGTACCGGACCCGCCACGTGGTGCTCGGCGTCGGCACGTCGCCGCGCCTGCCGTCCCCGCTCGCCGACCTGGCCGAGGAGGCCGCCGGGACCTCGGGCGCCGGACCGGTGGTCCACACCGCCGACTACCTCACCCACCGCGACGCCCTGCAGGCCTCCGGCGCGGTGACGGTCGTGGGATCGGGCCAGTCCGCGGCCGAGGTCTACCGCGACCTGCTCGAGGACGCCGGCACCTACCGGCTGGACTGGGTGACCCGCTCGTCGCGGTTCTTCCCGATGGAGTACACCAAGCTGACCCTCGAGATGACGTCCCCGGAGTACACCGCGCACTTCCACGGGTTGCCGACCGAGCTGCGTGACCTGGTGGGGCGCGAGCAGCGCAGCCTGTACAAGGGGATCAGCGGCGACCTGATAGACGACATCTACGACACGCTGTACCGGCGCACGGCCCTGGGTCGCGAGGTCCCCACGACCCTGCTCACCGACACCGAGGTGGTCGCCGCCCGCGCGGAGCGGACCGACGACGGCGGGACGGAGTACGTGCTGACCCTGCGGCACGGTCAGCTCGGGACGACGGCGGAGCACCGCACCCGCGCCGTCGTCGCGGCGACCGGGTACGCCGCCGGGGTCCCGGCCGTGCTGGATCCGGTGCGCGACCGCCTGCTCCTGGACGACCAGGGCCGGTTCGCCGCGACCCAGGACTACACCGTGAGCTCCGACGCCCGGATCCACACCCTCAACGGCGAGGAGCACTCCCACGGGGTCACCGCGCCGGACCTCGGGTTCGGTCCCTGGCGCAACTCCGTGGTGCTCGCGAAGATCACCGGCCGCGAGCCGTACCCGATCGAGCGACGGATCGCCTTCCAGCAGTTCGGTCTGCCGGGCGGGGCACCCGCGCCCGACGCCGGTGCCCCGGCCGGGACCGCGCGCACCGCACCGGAGGGCGCCCGGTGA	MSTYDVVGIGIGPFNLGLAALADPLEDVDAVFLDQRPGFSWHAGMMLEGATIQVPFLADLVTMADPTSPYSFLAFLKETGRLYPFYIRESFYPLRAEYDEYCRWVAARLDTLRWGRRVVAVEHDAASDTYLVTAEVADDDGVNREQYRTRHVVLGVGTSPRLPSPLADLAEEAAGTSGAGPVVHTADYLTHRDALQASGAVTVVGSGQSAAEVYRDLLEDAGTYRLDWVTRSSRFFPMEYTKLTLEMTSPEYTAHFHGLPTELRDLVGREQRSLYKGISGDLIDDIYDTLYRRTALGREVPTTLLTDTEVVAARAERTDDGGTEYVLTLRHGQLGTTAEHRTRAVVAATGYAAGVPAVLDPVRDRLLLDDQGRFAATQDYTVSSDARIHTLNGEEHSHGVTAPDLGFGPWRNSVVLAKITGREPYPIERRIAFQQFGLPGGAPAPDAGAPAGTARTAPEGAR	PGPT0031000_4	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	ALCALIGIN_IRON_RESISTANCE_METABOLISM,PGPT0031000-alcA-NA	NA	NA
AK001_01408	1566	ddc	COG0076	L-2,4-diaminobutyrate decarboxylase	GTGTCCACCACTCCGCCCGACACGCGGTCGACGCGCGTCGACACCCTGCTGCGCGGTGCCACCGCGGGTGCCTACGCCCGCACGGTCCGCCGCGTCGTCGACGACGTCGCCTCCCGGTTCGCCGCGGTCACCCAGCCCTGGAGCGGTGCGAGCCGCCGTGAGCTGACCGAGCTCGTCGACCGCGTCGACCTCGACGGCCCCGGCATCGGCACCGACGACGCCCTGCACGAGACCGCCGACCTGTACGCCAGCCACGCGGTCTGGTTCCACGACCCCGGCTACGCCGCGCACCTCAACTGCCCCGTGGCGATCCCCGCCGTCGGCGCCGAGGCCATGCTCGCGGCGATCAACACCTCGGTGGACACCTACGACCAGTCCACCGTCGCCACCCTCATGGAGCGGCGGCTGGTCGCCTGGACCACCGCCCGGATCGGGTTCGCCGCCGGCGACGGCGTCTTCACCTCGGGCGGCACGCAGTCCAACCTGCACGCCCTGCTCGCCGCCCGCGAGCGTGCCCTGACCGACCCCGACGGCGCCCGCCTGACCGGAGCCGACCGCGCCGAGCGTCAGGGCCGGTTGCGGATCCTGGCCACCGCCGCCAGCCACTTCTCCGTGGCGAAGTCCGCGATGATCCTCGGCCTGGCCGACGACGCCGTGGTCCCGGTCGCCACCGACGCCGACGGCCGGATGGACCCCGCCGCCCTCACCGAGGCGCTCGCGGCCACCGCCCGGACCGGCGGCGTCGCCATGGCGGTCGTCGCCACGGCCGGCACCACCGACCGGGGCACGATCGACCCCCTGGCCCGGATCGCGGAGCGGTGCGACGCGGCCGACGTGTGGCTGCACGTCGACGCGGCCTACGGCGGCGGTCTGCTCGTGTCCCCGACCCGTCGGCACCTGCTCGCGGGCATCGAGCGGGCGCGCAGCGTGACCGTCGACTTCCACAAGACCTTCTTCCAGCCGGTCTCGGCCAGCGCGGTCCTGGTCCGCGACCCGGCGGACCTGGCCCGTACGGCCTGGCACGCGGACTACCTCAACCCGGTCGAGGACTCCGCCGAGATCAACCAGGTCGACCGCTCGCTGCAGACCACCCGCCGCTTCGACGCCCTCAAGCTGTGGACGACGCTGCGCGCGATCGGCCCGGACGGCATCGGCGCGATGCTCGACGCCGTGTGCGACCTGGCCGCCGCCGTGCACGCCGACCTGTCCGACGACCCGGAGCTGCAGCTGGTCTGCGGCACCGACCTGTCGACGGTGATCTTCCGCTACCAGCCCGACGGCGTCACCGACGCCGAGGCGGACGCCCTGGTCCCCGCCGTGCGCCGGGTGCTGTTCGACTCCGGGCGGGCCGGGGTCGCCAAGACCGTCGTCGACGGCCGGCCCTGCCTCAAGCTCACCCTGCTCAACCCCGAGGTCACCCTCGACGACGTGCGCCGGGTGCTGACCCTGGTCCGCGACGCCGCCCACGGGATCCTCGCCGGGCGGGAGCTGGCGGACCTCACCGCACCGCCCTGCCGGGACGTCCACCCGCACCTGCAGCGCACCACCGAGGGGGAGCCCCGATGA	MSTTPPDTRSTRVDTLLRGATAGAYARTVRRVVDDVASRFAAVTQPWSGASRRELTELVDRVDLDGPGIGTDDALHETADLYASHAVWFHDPGYAAHLNCPVAIPAVGAEAMLAAINTSVDTYDQSTVATLMERRLVAWTTARIGFAAGDGVFTSGGTQSNLHALLAARERALTDPDGARLTGADRAERQGRLRILATAASHFSVAKSAMILGLADDAVVPVATDADGRMDPAALTEALAATARTGGVAMAVVATAGTTDRGTIDPLARIAERCDAADVWLHVDAAYGGGLLVSPTRRHLLAGIERARSVTVDFHKTFFQPVSASAVLVRDPADLARTAWHADYLNPVEDSAEINQVDRSLQTTRRFDALKLWTTLRAIGPDGIGAMLDAVCDLAAAVHADLSDDPELQLVCGTDLSTVIFRYQPDGVTDAEADALVPAVRRVLFDSGRAGVAKTVVDGRPCLKLTLLNPEVTLDDVRRVLTLVRDAAHGILAGRELADLTAPPCRDVHPHLQRTTEGEPR	PGPT0013725_159	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-1|3-DIAMINOPROPANE_BIOSYNTHESIS,PGPT0013725-ddc|dfoJ|desA-K13745	NA	NA
AK001_01409	1761	thiC	COG0422	Phosphomethylpyrimidine synthase	ATGCAGAACGACGCACCGTCGCGCGCGCTCGCCGTCGAGCGGGACGCCCAGTCCGGGATCACGGTCCCGGTCACCGAGATCACCCTGGCCGACTCGCCCGACGGGTCGGCCAACGCCCCGGTGCGGGTCTACCGCACCGAGGGCCCCGGCGGGGACCTGACCCGCGGCATCCCCGCGCTGCGGGAGGCCTGGATCGCCGAGCGCGGCGACACCGAGGAGTACGACGGCCGGGACCGCACCCTGGCCGACGACGGCCGCGGGGCCGCCCGCCGGGGAGCGGCCTCCGCCGAGTGGCAGGGGGCGCGCCGTCGTCCTCGCCGCAGCGCCACCGGGAAGCCCATCACCCAGATGGCCTACGCCCGCCGGGGCGAGATCACCCCGGAGATGCGCTTCGTCGCGGTCCGCGAGGGGGTCGACGTCGAGCTCGTGCGGTCCGAGGTCGCGGCCGGCCGGGCGATCATCCCGAACAACGTCAACCACCCCGAGTCGGAGCCGATGATCATCGGCAAGGCGTTCACCGTGAAGGTCAACGCCAACATCGGCAACTCCGCCGTGCACTCCTCGATCGCCGAGGAGGTGGAGAAGCTGCAGTGGGCCACGAGGTGGGGCGCGGACACGGTCATGGACCTGTCCACCGGCGACGACATCCACACCACCCGGGAGTGGCTGCTGCGCAACGCCCCCGTGCCCATCGGCACCGTGCCGATCTACCAGGCCCTGGAGAAGGTCGACGGCGACGCCTCCCGGATGAGCTGGGAGGTCTACCGGGACACGATCATCGAGCAGTGCGAGCAGGGCGTGGACTACATGACCGTCCACGCCGGGGTGCTGCTGCGCTACGTCCCGCTCACGGCGAACCGGGTGACCGGCATCGTCTCGCGCGGCGGGTCGATCATGGCCGGCTGGTGCCTGGCCCACCACCAGGAGAACTTCCTGTACACGCGGTTCGACGAGCTGTGCGAGATCTTCGCGGCCTACGACGTCGCGTTCTCCCTCGGTGACGGGCTGCGGCCGGGGTCGATCGCGGACGCCAACGACGCCGCTCAGTTCGCCGAGCTCGACACCCTCGCCGAGCTGACGAAGCGGGCCTGGGAGCACGACGTGCAGGTCATGGTCGAGGGGCCCGGGCACATCCCGCTGCACCTGGTGCGCGAGAACGTCGAACGCCAGCAGGAGCTGTGCGACGGCGCCCCGTTCTACACGCTGGGTCCGCTGGTCACCGACATCGCCCCGGGCTACGACCACATCACCTCGGCGATCGGGGCGACGGAGATCGCCCGGTACGGCACCGCGATGCTCTGCTACGTCACGCCCAAGGAGCACCTGGGGCTGCCGAACCGGGACGACGTGCGCACCGGCGTCGTCACCTACAAGATCGCCGCGCACGCGGCCGACGTCGCCAAGGGGCACCCGGGGGCGACGGCGCGCGACGACGCGCTGAGCAAGGCCCGCTTCGAGTTCCGGTGGCGCGACCAGTTCAACCTGTCCCTGGACCCGGAGCTGGCCGAGTCCTACCACGACGAGACGTTGCCGGCCGAGGCGGCCAAGACGGCGCACTTCTGCTCCATGTGCGGGCCGAAGTTCTGCTCGATGCGGATCTCGCAGGACATCCGCGACGAGTTCGGAGACGCCGCGGCCCAGGAGCGCGTCGTGGCCGCCTCGCAGCAGCAGGTCGAGGCGGGGATGGCCGAGAAGGCGGCGGAGTTCCGTGCCGCCGGGGGAGAGGTCTACCTGCCCACCCCCACGGTCCCCGCGCGGTAG	MQNDAPSRALAVERDAQSGITVPVTEITLADSPDGSANAPVRVYRTEGPGGDLTRGIPALREAWIAERGDTEEYDGRDRTLADDGRGAARRGAASAEWQGARRRPRRSATGKPITQMAYARRGEITPEMRFVAVREGVDVELVRSEVAAGRAIIPNNVNHPESEPMIIGKAFTVKVNANIGNSAVHSSIAEEVEKLQWATRWGADTVMDLSTGDDIHTTREWLLRNAPVPIGTVPIYQALEKVDGDASRMSWEVYRDTIIEQCEQGVDYMTVHAGVLLRYVPLTANRVTGIVSRGGSIMAGWCLAHHQENFLYTRFDELCEIFAAYDVAFSLGDGLRPGSIADANDAAQFAELDTLAELTKRAWEHDVQVMVEGPGHIPLHLVRENVERQQELCDGAPFYTLGPLVTDIAPGYDHITSAIGATEIARYGTAMLCYVTPKEHLGLPNRDDVRTGVVTYKIAAHAADVAKGHPGATARDDALSKARFEFRWRDQFNLSLDPELAESYHDETLPAEAAKTAHFCSMCGPKFCSMRISQDIRDEFGDAAAQERVVAASQQQVEAGMAEKAAEFRAAGGEVYLPTPTVPAR	PGPT0008905_2374	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0008905-thiC-K03147	NA	NA
AK001_01411	1455			hypothetical protein	ATGCCACGACCCCGCACCGCCCCCGCCCCCGCCGACGGGCTGCTCGCCCGCGCCGCGGACGACCGGATCGCCGCCGTCTCGCGCCGCGGCGTGCTCATCGCCGGTGCTGCCGGGGCGCTCACGCTGGCCTCCGGTGCCGAGGCCTGGGCGAGCCGGACGGCGCTCGCCACGACCCCGCGGACCGCGACCTCCGCCGTCGGCTCCGTCGAGCGGGCGCACTCGTTCCTCGGGGCGATGACCGACGCCTACCCCGAGGTCAACACCGGGCCGCGCATGGCCCAGTCCTACGCCGACCAGCTCGGGCTGTTCTCGACCGCGTTCGTCTACGACGTCGCGCTGACGATCTGCGCCTCCCTCGCCGGCGGCCACGTGGCCCGTGCCGCCACCCTGGCCGACGGGCTGCTGTTCGCCCAGCAGCACGACCCCGCCTACGACGACGGCCGGCTGCGGCAGGGCTACAACACCGGTCCGTACACCTTCTACGACGGCTCGCCCCAGCCGTACGGCCTCGAGCTGCCCGACGGCACCGCCAACATCGGCTGGCAGTTCGGTTTCCTCGGCACGGCCGTGGGCGACATGGCCTGGCCGGGCATCGCCCTGCTGCACACCTTCAGCGCCACCGGGGACCCCCGGTACCTCGACGGCGCGGTGCGCATCGGGGAGTGGATCCTCGACAACACGTGGTCCGAGCGCCCGCTCGGCGGGTTCTCCTTCGGCGTCGACGGCGGCAACAACCCGATCCCCAACGGGTCGACCGAGCACAACATCGACTGCGTCGCGTTCTTCCGCCAGCTCGAGGCCCTCGCCGGCGGCGACCGCTGGCGCCGTGCGCAGGAGCACGCCCGCGCGTTCGTCGACCTCGTGTGGGACCGCGAGGGCGGCTTCTTCTACACCGGCACGAACGACGGCGTGGAGATCAACCGCGACCCGCTGCCCCTCGACCCCGCGACGTGGGGCTGGCTGGCGCTGCAGGCCGAGCGGTACGGGCGCTCGGTCGACTGGGCGGCCTCCGACCTGGCGACGACCGACGTCGCCGGCGAGGGGAACTCGCAGCTGCCCGGCGACGTGACGATCTCCGGGGTGACCTTCTCCAGCGCGAGCCTGGAGTCCACGGCGTCCTACAACGGGCTGCCCGTGCATCCGGACGGCGTCTGGCTCGAGGGGACCGGCCAGCTCGCCTGCGCCATGGCGGACCGGGGCCGCGGCTCGCGCGACGGGCGCCGGGCGGCCGGTCTGCTCGCCCAGATCCGGCGGACGCAGGACCTTGTCGGTGCGGGCCAGACCGTGGGCGGCACGCCGCTGCCGGACCGGTCCGGCGTCGTCGCCGCCTCCAGCCTCATCGACACCGGGTTCGGGTTCGGCTACTTCCAGATCCAGCACACCGGCGCGACGTCCTGGTACGTCATGGCGGCCGAGGGTGTGAACCCGCTGCAGGTCGGCGGTCTCGGCGTCTGA	MPRPRTAPAPADGLLARAADDRIAAVSRRGVLIAGAAGALTLASGAEAWASRTALATTPRTATSAVGSVERAHSFLGAMTDAYPEVNTGPRMAQSYADQLGLFSTAFVYDVALTICASLAGGHVARAATLADGLLFAQQHDPAYDDGRLRQGYNTGPYTFYDGSPQPYGLELPDGTANIGWQFGFLGTAVGDMAWPGIALLHTFSATGDPRYLDGAVRIGEWILDNTWSERPLGGFSFGVDGGNNPIPNGSTEHNIDCVAFFRQLEALAGGDRWRRAQEHARAFVDLVWDREGGFFYTGTNDGVEINRDPLPLDPATWGWLALQAERYGRSVDWAASDLATTDVAGEGNSQLPGDVTISGVTFSSASLESTASYNGLPVHPDGVWLEGTGQLACAMADRGRGSRDGRRAAGLLAQIRRTQDLVGAGQTVGGTPLPDRSGVVAASSLIDTGFGFGYFQIQHTGATSWYVMAAEGVNPLQVGGLGV				NA	NA	NA	NA	NA
AK001_01412	426			hypothetical protein	ATGGCCCGTCCGCAGCTCGCCGACCTGACCGTCGGGGACGTCGTCGCCACCCGCACCGTCGAGATCGACCGTGCCGCGCTGGTCCGTTACGCCGGCGCCAGCGGTGACTTCAACCCCATCCACTGGGACGAGCGGTTCGCCACCGAGGTCGGGCTGCCCGGGGTGATCGCCCACGGCATGTGCACGATGGGTACCGTCGTCGACGTCGTGACCGACTGGGTCGGGGACCCGGGCGCGATCGTGCGGTACGGCACCCGCTTCACCAAGCCCGTCCCGGTGCCCGCCGGTGGGGCGGCCGCCGTCGAGGTGACGGCCACCGTCGGTGCGGTCGACGCCGACGCCGGGACCGCCCGGATCGACCTGACCGTGACGCACGAGGGCACCAAGGTCCTCGGTCGTACGCAGGTCCTCGTCCGCCTCTCCTGA	MARPQLADLTVGDVVATRTVEIDRAALVRYAGASGDFNPIHWDERFATEVGLPGVIAHGMCTMGTVVDVVTDWVGDPGAIVRYGTRFTKPVPVPAGGAAAVEVTATVGAVDADAGTARIDLTVTHEGTKVLGRTQVLVRLS				NA	NA	NA	NA	NA
AK001_01413	474			hypothetical protein	GTGGCGACCGCCGTCGATCCCGCGTTCGCCGGGCGTGAGTACCCGGCCACCGCGCCGTACTCGGTCGGCCGCGAGAAGATCCGCGAGTTCGCCGTCGCCGTCGGAGCCTCCCACCCCGCGCACCACGACCTCGTGGCAGCGCGGGGTCTCGGCTATCCGGACCTCGTCGCGCCGCCGACGTTCGCCGTCGTGATCGCCCAGCGCGCCGAGCAGCAGTACGTGGCCGACCCCGACGCCGGGATCGACTTCTCGCGGGTCGTGCACGCCGACGAGACGTTCACCCACCACCGCCCGATCGTGGCCGGTGACGAGCTGGCGACGGTGCTGCACGTCGACTCGGTGACGCAGCGTGCTGGCATCTCCATGGTGACCACGCGCTGCGAGCTGTTCGCCGTCGACGCCGAGGGCGGCGATCCGGGCGAGCACGTCGCGACCGTCACCTCGAGCCTCGTCGTCCGCGGGGAGGACTCCTGA	MATAVDPAFAGREYPATAPYSVGREKIREFAVAVGASHPAHHDLVAARGLGYPDLVAPPTFAVVIAQRAEQQYVADPDAGIDFSRVVHADETFTHHRPIVAGDELATVLHVDSVTQRAGISMVTTRCELFAVDAEGGDPGEHVATVTSSLVVRGEDS				NA	NA	NA	NA	NA
AK001_01414	171	rpmG2_1	COG0267	50S ribosomal protein L33 2	ATGGCTGCCAAGAGCGCTGACGTCCGCCCGAAGATCACGCTGGCCTGCGTGGACTGCAAGGAGCGGAACTACATCACGAAGAAGAACCGCCGGAACAACCCGGACCGCCTCGAGATGGCGAAGTTCTGCCCGCGTTGCGGCAAGCACACCGCGCACCGCGAGACCCGCTGA	MAAKSADVRPKITLACVDCKERNYITKKNRRNNPDRLEMAKFCPRCGKHTAHRETR				NA	NA	NA	NA	NA
AK001_01418	939	rarD	COG2962	Protein RarD	GTGACCCCTCCTGCCGCCACGGACCGCTGGGGCCTGCCGCTCGGGCTCTCCGCGTTCCTCCTGTGGGGCGCGATGCCCCTCTTCTTCCCCCTGCTCGAGCCGGCCGGCGCCCTCGAGATCATCGCCCACCGCATCGTGTGGTCGCTGGTGTTCTGCGTGGTGCTGCTCGCGGCGACCCGGAGCCTGGGCTCGTTCCTGGCCGTCCTGCGCCGGCCGCGCACGATGGGGCTGCTGACCCTCGCGTCGGCGCTGATCATCGTCAACTGGACCACCTACGTCTACGCGGTCCTGACCGGGCACGTCCTGGACGCCGCCCTGGGCTACTTCATCAACCCGCTGCTGACCGTCGCCCTCGGCGTCGTCGTGCTGCGCGAACGCCTGCGCCCGGCGCAGTGGATGGCGCTCGGGCTGGGGGGCGCCGCCGTCGTCGTGCTCTCGACCGGCGTGGGCGGCATCCCCTGGATCTCGCTGGTGCTGGCCGGGGCGTTCGGCCTGTACTCGCTGGTCAAGAACCGGGTCGGGCGCGGCGTCGGCGCCCTGCCGGGCCTGGCGGCCGAGACGGCGGTAGCCACGCCGCTCGCCCTCGGCTACCTCGGGTGGCTGGCCGCCACCGGCGTGGGCACCTTCTCCACCCAGGGCGTGGGGCACGCCCTGCTGCTCGTCTCGTGCGGCGTCGTGACCGGCCTGCCGCTGCTCCTCTTCTCCGCGGCGGCCCGACGTCTGCCCCTGTCGGTCGTGGGCATGCTGCAGTACCTGACGCCGTTCCTGCAGTTCCTGCTGGGCCTGCTGGTGTTCGGCGAGCACATGCCGCCGGTGCGCTGGGCCGGGTTCGTGCTGGTGTGGGTGGCGCTCGTGGTGCTCACCGTGGACGGGGTGCGCCAGTCCCGGGCGACGCGTCTGGCCGCCGCCGCACCGGCTACCGTGGACCTCGAACCCTGA	MTPPAATDRWGLPLGLSAFLLWGAMPLFFPLLEPAGALEIIAHRIVWSLVFCVVLLAATRSLGSFLAVLRRPRTMGLLTLASALIIVNWTTYVYAVLTGHVLDAALGYFINPLLTVALGVVVLRERLRPAQWMALGLGGAAVVVLSTGVGGIPWISLVLAGAFGLYSLVKNRVGRGVGALPGLAAETAVATPLALGYLGWLAATGVGTFSTQGVGHALLLVSCGVVTGLPLLLFSAAARRLPLSVVGMLQYLTPFLQFLLGLLVFGEHMPPVRWAGFVLVWVALVVLTVDGVRQSRATRLAAAAPATVDLEP	PGPT0003906_488	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786	NA	NA
AK001_01419	495			hypothetical protein	GTGGCCGACTCGTCCTTCGACATCGTCTCCAAGGTGGACCGCCAGGAGGTCGACAACGCCCTCAACCAGGCGGCCAAGGAGATCAACCAGCGCTACGACTTCCGCGGCGTCGGCGCCTCCATCGCCTGGAGCGGCGAGGCGATCGTCATCACGGCCAACAGCGCCGAGCGGGTCAACGCCGCCCTTGACGTCTTCCAGACCAAGCTCATCAAGCGCGGCGTCTCCCTCAAGGCCCTCGACACCGGTGAGGGCGAGCCGCAGGCCTCCGGCAAGGAGTACCGGCTCGTCGCCTCCCTCAAGGAGGGCCTGAGCAGCGAGAACGCCAAGAAGATCACCAAGCTGATCCGCGACGAGGGCCCCAAGGGCGTCAAGACGCAGATCACCGGCGACGAGGTCCGCGTGACCTCCAAGAAGCGGGACGACCTGCAGGACGTCATCGCGATGCTCAAGGGCGCCGACCTCGACGTCGCCCTGCAGTTCACGAACTACCGGTGA	MADSSFDIVSKVDRQEVDNALNQAAKEINQRYDFRGVGASIAWSGEAIVITANSAERVNAALDVFQTKLIKRGVSLKALDTGEGEPQASGKEYRLVASLKEGLSSENAKKITKLIRDEGPKGVKTQITGDEVRVTSKKRDDLQDVIAMLKGADLDVALQFTNYR	PGPT0012210_275	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767	NA	NA
AK001_01420	2796	yoaB	COG0474	Calcium-transporting ATPase 1	ATGAGCGAGAACGTCTCCGTCACGTCCCCGACCCACGACCAGCAGTGGTACGCGCAGAGCGTGGAGTCCGTGCTCGAGGCGCTCGGCTCCGACCCCGCGCAGGGGCTGACGGCCGAGGAGGCCGAGCGGCGACGAGCCCGCTACGGACCGAACGAGATCACCAGCGAGCGGCCGCCGTCCGTGTGGGCCGTGGCGGCCGTCCAGCTGCGCGATCCGATGAACCTGATGCTCGTCGCCGTCGCCGGCGTGAGCTTCGTCATCGGCGAGATCTCGACGGGGATCATCGTCGCACTGCTGGTCGCTCTCAACGTCTTCCTCGGGTCGCGGCAGGAGCTCAAGGCGCGGGAGAGCGTCGACGCCCTCTCGAGCATGCAGGTGCCGAGGGCCCGCGTCCTCCGCGGTGGGCAGGTGTCGCTGCTCCCCGCCGTCGACATCGTCCCGGGGGACCTCACGATGCTCGAGGCCGGCGACATCGTGCCGGCCGACGGCCGGATCGTGCGCTCCGCGACCGTCGAGACCCAGGAAGCGGCGCTCACCGGTGAGAGCACCCCGGTCCCGAAGGGCGCCGTCGCCCTGCCGGCCGGCGAGATCGCGCTGGGCGACCGGTCCAACATGCTCTTCCAGAACACGTCGGTGACCCGGGGGACCGCCACCCTCGTCGTCACCGACACCGGGATGAGCACGCAGATGGGCCGGATCGCCACGATGCTCACGCAGGTGTCCCGCTCCCGCAGCCCGTTGCAGCGCGAGCTCGACAGCCTGACCAAGGTGCTCGGCATCATCGCCTGGGGCGCCGTGGCGCTCATCGTCGTGGTCGGCCTCCTCAGGGGCACGGGCGCCCAGGAGCTCTTCCTCCTGGGCACCGCGATGGCGATCTCCGCGATCCCGACCGGTCTGCCCGCCTTCGTCTCGGGTCTGCTCTCGATGGGTGCCAAACAGCTGGCGGAGGCCAAGGCGGTCGTCAAGAACCTCACCGACGTCGAGACGCTCGGTGCGACGAGCGCCATCAACTCCGACAAGACCGGCACGCTGACCCTGAACGAGATGATGGTCTCGACCGTCTACACGAACGGCTCCTGGTTCGATGTCGAGGGCGAGGGCTACCGCAAGAGCGGGGCGATCCTCGGGGTGGCCGGGTCCCCGGTCCCCGACTTCTCCCGGCTCGCCCTCGGGCTGGTGCTCGACAGCGACGCGACCGTCGGCGACGACGGCACGGTGATCGGCGACCCCACCGAGGCCGCCCTCGTCGTGCTCGCCGCGAAGCTCGGGGTCAGCGCGGAGGAGACCCGCCGGGCGCACCCTCGGCTCGCCGAGGTGCCGTTCGACTCGGAGTACAAGTTCATGGCGACGTTCCACCGGATGCAGATCGACGGTGTCGAGCGGGTCGTCGAGCTCGTCAAGGGCGGGCCCGACGTCGTGCTGGCCCGGTGCACCCGGGCCGGCGGCCCGCTGCGCAGCGAGCCCGTCCCGATGCCGGACGTCCGACGGGACATCGAGCAGGCGAACGCGCGCATGGGAGAACGTGGCCTGCGCGTCCTCGCGTTCGCCTATCGGCTCGTCGAGGAGAGCGAGCTCGACCGCATGACGAGCGACCCGATGGCGCTCGCGGACGATCTCCTGTTCGTCGGGATGGTCGGCATCATCGACCCGCTGCGTCCGTCGTCCAGGGAGGCGGTCCGGATCGCTCGGCGGGCAGGCATCGACGTCCGCATGATCACCGGCGACCATGCGGTGACCGCGCAGGCGATCGGCGCCGACCTCGGGCTCGGGCCGGGAGCCATCAGCGGCACGGAGCTGGCCCGGCTCTCGGACGACGAGCTCCGTGACAGGCTGCCGCAGCTCCACGTCTTCGGACGGGTGACCCCCGAGGACAAGCTGCGCCTGGCACGCGTCATGCAGGAGACGGGTCTCGTCGTCGCGATGACCGGGGACGCGGTCAACGACGCCGCCGCGCTCAAGCAGGCCGACATCGGTGTGGCGATGGGCAGCGGGAGCGAGGTGACGAAGCAGGCCGGCCGGATGATCCTCACCGACGACAACTTCGGCACTCTCGTGCACGCCGTCGAGCTCGGCCGCCGGGTCTACGACAAGGTCGTCGCGTACGTGCGGTACCAGATGACCCAGCTGCTGTCCCTCGTCATGCTCTTCGTCGCTGCGACGGTCTTCGACATCAACGGCGGGGTCGCGCTGACGCCCTCGATGATCCTCTTCCTGCTGTTCTTCTTCACCTCGGCGGGCGTCGTCATCATCGCGGTCGACCCGGGGGACCCCGAGATCATGGACCGGAGGCCACGCGACCCGCGGGTGCCGATCGCCAGCCGTACCGCCGTCCTGTCCTGGGTGCTGTACGCAGCCGTCCTCTTCGCCGCCGCCCTGGTCCCGCTGGTGGCCGGGCCCGACGAACCGAGCCTCACGACCGCGAGCACGTCCATGACGATGGCCTTCGTCGTCATGGGCCTGGGCACCGTCCTCAACGCCGTGGCCAACCGCCGTGATCCCAGCAGCGGGCTCACCGCGCCGGTGCTCAAGGCGATCGCGATCGGCCTGGTCCCGGTGCTCGTCCTGGTGCTCTCGACCCAGCTGCCGTCGCTCCGGTCGGCGTTGTCCACCGTGCCCCTCACCGGCGGCCAGTGGCTCGCGTCGATCGGGCTCGCGCTCCTGCTGCCGCTCGTCGTCGAGGTGCGCAAGTGGGTGCGCCGACGTCGCGGGGCCGCGCGGGGTGCGCGACTCGACGTCGGCTCAGCGACTGCGCCGGCGCACACCCCGAGCGGTTCGCATGGCTCAGCTCACCGGTAG	MSENVSVTSPTHDQQWYAQSVESVLEALGSDPAQGLTAEEAERRRARYGPNEITSERPPSVWAVAAVQLRDPMNLMLVAVAGVSFVIGEISTGIIVALLVALNVFLGSRQELKARESVDALSSMQVPRARVLRGGQVSLLPAVDIVPGDLTMLEAGDIVPADGRIVRSATVETQEAALTGESTPVPKGAVALPAGEIALGDRSNMLFQNTSVTRGTATLVVTDTGMSTQMGRIATMLTQVSRSRSPLQRELDSLTKVLGIIAWGAVALIVVVGLLRGTGAQELFLLGTAMAISAIPTGLPAFVSGLLSMGAKQLAEAKAVVKNLTDVETLGATSAINSDKTGTLTLNEMMVSTVYTNGSWFDVEGEGYRKSGAILGVAGSPVPDFSRLALGLVLDSDATVGDDGTVIGDPTEAALVVLAAKLGVSAEETRRAHPRLAEVPFDSEYKFMATFHRMQIDGVERVVELVKGGPDVVLARCTRAGGPLRSEPVPMPDVRRDIEQANARMGERGLRVLAFAYRLVEESELDRMTSDPMALADDLLFVGMVGIIDPLRPSSREAVRIARRAGIDVRMITGDHAVTAQAIGADLGLGPGAISGTELARLSDDELRDRLPQLHVFGRVTPEDKLRLARVMQETGLVVAMTGDAVNDAAALKQADIGVAMGSGSEVTKQAGRMILTDDNFGTLVHAVELGRRVYDKVVAYVRYQMTQLLSLVMLFVAATVFDINGGVALTPSMILFLLFFFTSAGVVIIAVDPGDPEIMDRRPRDPRVPIASRTAVLSWVLYAAVLFAAALVPLVAGPDEPSLTTASTSMTMAFVVMGLGTVLNAVANRRDPSSGLTAPVLKAIAIGLVPVLVLVLSTQLPSLRSALSTVPLTGGQWLASIGLALLLPLVVEVRKWVRRRRGAARGARLDVGSATAPAHTPSGSHGSAHR	PGPT0013990_3230	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CALCIUM_TRANSPORT,PGPT0013990-yloB|ctpA-K01537	NA	NA
AK001_01421	891	cof		HMP-PP phosphatase	GTGACCGCGCCGGACCGCCTCCCCCGCCTGGTCGCGACCGACCTGGACGGCACGCTGCTGCGGTCGGACGGCACCGTGTCCGCCCGGACGCGGGCCGCGCTGCGCGCCGTCGAGGACGCCGGCGTCGAGGTGGTCTTCGTCACGGCCCGCCCGCCGCGCTGGCTGGACGTGCTGGCCGACTGCGTGGGCGGGCACGGCCGGGTGGTGTGCCTCGGCGGAGCCGCCGTGTGGGACCTGGCCTCGGGCTCCGCGCACGAGATCGGCGGGTTCGCCGACGACGCCCTGCGCGGCATCGTCGCGGACCTGCGCGAGGCCGTGCCCGACGTCGCCCTCGGCCTCGAGCGGCACGACGGCCCCTCCTTCGACCCCTGGTTCCCCCGCGACGAGCCGGGGCTCGACCCGGCCGTCCGCGCGGTGCCGGTCGAGGAGACCCTGGCCGACGCCGGCACGGACCGCAGGCGGCCGTCCCCGGTGGGCAAGCTGCTCGCCGTCCGGCCGGGCACCCGACCCGCGACGCGGCCCGGGGACGTCCACGGCGGCACGAGCGACGACGCCGCGCAGGAGGAGTTCTTCGCCACGGTGCGGTCCGTCGTCGGCCGGCGGGCGCACCTGGCCTACTCCGGGGCGGCCGGGCTGGCCGAGCTCCTGGCCCCCGGGGTGACCAAGGACGCGGCGCTGGCGCGCTGGTGCACCCGCCTCGGGATCGACGCCGCGGAGGTCTGGGCGTTCGGCGACATGCCGAACGACCTGCCGATGCTGCGCTGGGCCGGTCGCGGGCACGCGGTCGCCGACGCGCACCCGGACCTGCTGGCCGGTGCGGACGTCGTCGTCGGGCCCGGGGACGACGACGGCGTGGCCGCGGCCCTGGAGGCCGCCCTGCGCGGCCGCTGA	MTAPDRLPRLVATDLDGTLLRSDGTVSARTRAALRAVEDAGVEVVFVTARPPRWLDVLADCVGGHGRVVCLGGAAVWDLASGSAHEIGGFADDALRGIVADLREAVPDVALGLERHDGPSFDPWFPRDEPGLDPAVRAVPVEETLADAGTDRRRPSPVGKLLAVRPGTRPATRPGDVHGGTSDDAAQEEFFATVRSVVGRRAHLAYSGAAGLAELLAPGVTKDAALARWCTRLGIDAAEVWAFGDMPNDLPMLRWAGRGHAVADAHPDLLAGADVVVGPGDDDGVAAALEAALRGR	PGPT0017726_3	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017726-yigL-NA	NA	NA
AK001_01422	831			hypothetical protein	ATGACCGACCACACGCCGCCTCCGCCCCGCTCCCTGCGTCCCGTCCTCGACGAGGACCCTCGCGTCGCCGCGTGGGAGCGGCGGATGGAGTGGCCCCTGCTCGTCGTCGCGGGCCTGTTCCTCATCGCCTACGCGATCCCGATCGTGTGGCCCGACGTCCCGCCCGAGATCCGTCGGGCGTGCCGGTTCGGCGTGACGGCCACCTGGATCGTGTTCGCCGTCGACTACGTCGCCCGGCTCGTGCTGTCCCGCCAGCGCTGGTACTTCGTGCGGCACAACCTGCTCGACCTCGCGATCGTCGTGCTGCCGGTGCTCCGGCCGCTGCGGCTGCTGCTGCTCGTGTCCGCGATCAAGCGGCTCAACCGTGCCGGCGCCAGCGCGATGCGCGGTCGCGTGGTGCTCTACGCGGCCGCCGGGTCGGCCCTGCTGGTCCTGGCCGGGTCGCTGGCCGTGACCGAGGCCGAGCGCGGCGCCGAGGGCAGCACGATCGTCAACGTCGGCGACGGGTTCTGGTGGGCGCTGGTGACCATGGCGACCGTCGGCTACGGCGACACCTACCCGGTCACGATCACCGGCCGGTTCGTGGCGGTGGGCATGATGCTCGGCGGCATCGCCGTGCTGGGTGTGGTGACCGCGACGCTGTCCTCGTGGCTCGTGCAGAACGTCGAGGCCGGCACCGAGGAGCCCCGCGCCGAGCGTCGGGACTCCACCGACGACCTGTGGGCCCGGCGCGGCGACGTCGAGAGCCTGGTCACCGAGGTCCGGGCCCTGCGCGAGGAGGTCGCGCGGCTGCGCACCGAGGACGTCGGCACGCGCCGCGCCGGCGACTGA	MTDHTPPPPRSLRPVLDEDPRVAAWERRMEWPLLVVAGLFLIAYAIPIVWPDVPPEIRRACRFGVTATWIVFAVDYVARLVLSRQRWYFVRHNLLDLAIVVLPVLRPLRLLLLVSAIKRLNRAGASAMRGRVVLYAAAGSALLVLAGSLAVTEAERGAEGSTIVNVGDGFWWALVTMATVGYGDTYPVTITGRFVAVGMMLGGIAVLGVVTATLSSWLVQNVEAGTEEPRAERRDSTDDLWARRGDVESLVTEVRALREEVARLRTEDVGTRRAGD	PGPT0002715_4245	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716	NA	NA
AK001_01423	894	htpX	COG0501	Protease HtpX	GTGGGTCATCGCCACTTCAACGGTCTGAAGACCGTCCTGCTCTTCGGTGTGCTGTGGGCCGTGCTGCTCGGGCTCTGGGCGGTGTTCTTCCGCGGCAGCCAGGGGATGCTGTTCCTGTTCACCGCGATCGGCCTCATCGGCACGTTCGTCGGCTACTGGAACTCGGACAAGATCGCGATCAAGGCGATGCACGCCTACCCGGTCACCGAGCTCGAGGCCCCGGAGATGTACCGGATCGTGCGCGAGCTGTCCACGGTGGCCCGGCAGCCGATGCCGCGGCTCTACATCTCGCCCACCCAGGCGCCCAACGCGTTCGCCACCGGCCGCAACCCCAAGAACGCGGCCGTGTGCTGCACCGAGGGCATCCTGCGCATCCTCGACGAGCGCGAGCTGCGCGGGGTGCTCGGCCACGAGCTGATGCACGTCTACAACCGGGACATCCTCACCTCGTCGGTCGCCTCCGCGCTGGCGGGCGTCATCACCTCGCTGGCGCAGTTCCTGCTGATCTTCGGCGGGGGAGACCGGCGCGAGGGCGGCAACCCGCTCGCGGCGCTGGCGCTGGCGCTCCTGGCCCCGTTCGCCGCGATGCTCATCCAGATGGCGATCTCGCGCACCCGCGAGTACGACGCCGACGAGGACGGCGCCAAGCTCACCGGCGACCCGCTGGCGCTGGCCTCCGCGCTGCGCAAGCTGGAGCAGGGCACCAAGGCCGCCCCGCTGCCGCAGACGCAGTCGCTGGAGAACGTCTCGCACCTGATGCTCGCGAACCCGTTCCGCGGCGGCGGCATGGCCAAGCTCTTCGCGACGCACCCCCCGATGGACGACCGCATCGCGCGCCTGGAGAAGATGGCCGGCGGCACCGGGTTCGGCCCGGGCGGCATCACGCGCTACTGA	MGHRHFNGLKTVLLFGVLWAVLLGLWAVFFRGSQGMLFLFTAIGLIGTFVGYWNSDKIAIKAMHAYPVTELEAPEMYRIVRELSTVARQPMPRLYISPTQAPNAFATGRNPKNAAVCCTEGILRILDERELRGVLGHELMHVYNRDILTSSVASALAGVITSLAQFLLIFGGGDRREGGNPLAALALALLAPFAAMLIQMAISRTREYDADEDGAKLTGDPLALASALRKLEQGTKAAPLPQTQSLENVSHLMLANPFRGGGMAKLFATHPPMDDRIARLEKMAGGTGFGPGGITRY	PGPT0014605_1839	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799	NA	NA
AK001_01424	1413	fprA_2	COG0493	NADPH-ferredoxin reductase FprA	GTGAGCAGCACCCGACCTCTGCGCGTCGCGATCGTCGGCGCAGGCCCCGCGGGCATCTACGCCGCGGACATCCTGTCCAAGACCGACCTCGACGTCAGCATCGACCTCTTCGAGCGTCTGCCTGCCCCGTTCGGACTCGTCCGCTACGGCGTCGCCCCCGACCACCCGCGGATCAAGGGCATCATCAACGCCCTGCACAAGGTCCTGTCGCGGGGTGACGTGCGGCTGCTCGCCAACGTCAACTACGGCGTCGACCTCAAGCTCGAGGACCTGCGCCAGTACTACGACGCCGTGGTCTTCTCCACCGGCGCCATCAAGGACGCGGCGCTGGGGATCCCGGGCATCGACCTCGACGGCTCCTACGGCGCCGCCGACTTCGTGTCCTGGTTCGACGGGCACCCCGACGTGCCGCGCACCTGGCCCCTGGAGGCCCAGCACGTCGCGGTCCTCGGCGCCGGCAACGTGGCTCTCGACGTCACGCGGATCCTGGCCAAGCACCCGAAGGACCTGATGTCGACGGAGATCCCGGCGAACGTGCAGGCGGGCCTGGAGGCCTCGCCGGTCACGGACGTCCACGTCTTCGCCCGCCGCGGCCCGGCCCAGGTGAAGTTCTCCCCGCTGGAGCTGCGCGAGCTGGGCCACGTGCCCGACGTCGACATCGTCGTCTACCCCGAGGACTTCGACTTCGACGAGGGGTCGATGGAGGCGATCGAGGCGACGAACCAGACCAAGCAGGTCGTCAAGACCCTCACGGACTGGACGCTGGTCGAGCCGTCGCAGCAGAAGGCCTCGCGGCGCATCCACCTGCACTTCCTGCACTCCCCGTCGGAGGTGCTCGGCGAGGACGGCAAGGTGGTCGGGCTGCGGACCGAGCGCACCGCCCTGCAGGGCGACGGCACCGTCCAGGGCACCGGCGAGTTCCACGACTGGCCCGTCCAGGCCGTCTACCGGGCCGTGGGCTACTTCGGGTCCCCGCTGCCGGAGATCCCCTTCGACGACCTCAAGGGCGTCATCTCGAACCGCGAGGGCCGCGTCGTCGACCTCGACGGCGAGCACCTGCCCGGCGTCTACACCACCGGTTGGATCAAGCGCGGCCCGGTCGGCCTGATCGGCCACACCAAGTCCGACGCCTCGGAGACGATCCGCCACCTGGTCGAGGACGTCACCGGTGTCTCGGGTGGCGCCGCGGACGGTGACCCTCAGGGGTCGCTGGAGGGCGGCCGCACCGCCCCGCACGGCGAGCCGCAGCAGGTGCTGGACTTCCTGTCCGAGCGCGGCGTCGACGTCATCACCTGGGACGAGTTCACGCTGCTCGACACCCACGAGCTGGGCCTCGGCGAGGCGGCCGGCCGCGAGCGCATCAAGGTCGTCCCGCGCGAGGAGATGATCGACATCGCCAAGGGCCGCGCCTGA	MSSTRPLRVAIVGAGPAGIYAADILSKTDLDVSIDLFERLPAPFGLVRYGVAPDHPRIKGIINALHKVLSRGDVRLLANVNYGVDLKLEDLRQYYDAVVFSTGAIKDAALGIPGIDLDGSYGAADFVSWFDGHPDVPRTWPLEAQHVAVLGAGNVALDVTRILAKHPKDLMSTEIPANVQAGLEASPVTDVHVFARRGPAQVKFSPLELRELGHVPDVDIVVYPEDFDFDEGSMEAIEATNQTKQVVKTLTDWTLVEPSQQKASRRIHLHFLHSPSEVLGEDGKVVGLRTERTALQGDGTVQGTGEFHDWPVQAVYRAVGYFGSPLPEIPFDDLKGVISNREGRVVDLDGEHLPGVYTTGWIKRGPVGLIGHTKSDASETIRHLVEDVTGVSGGAADGDPQGSLEGGRTAPHGEPQQVLDFLSERGVDVITWDEFTLLDTHELGLGEAAGRERIKVVPREEMIDIAKGRA	PGPT0013215_564	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528	NA	NA
AK001_01425	582			hypothetical protein	ATGGCGACGACGCTGCTGGACCGCACCCGCTCCGAGCTCACGCCGGTGCGCCGCGCCGTCGGCGTCGCCCTGGGGCCCGCCGTCGGCTGGGCGGTGTGGGTCAGCGGGCCGGGATGGGCGGCCCCGGCCCTCGCGGTCGCGGCGGTCGCCGGAGTGGCCCTCGGCGCCGTCGACCGCCGCACCCACCGGCTGCCCGACGCCGTCACCTACCCGACCACCGCCGTCGTCGGTGCGCTGCTCGCCCTGGCCGCGCTCGTCGACGGCGACGTCGCACCGCTGCTGCGTGCGGCGGCCGGGGCGACCGTGCTCGGCGGCACCTACCTGCTGCTGCACCTGGTCAACCGCTCGGGCCTCGGGCTCGGGGACGTCAAGCTCGCCGTGCTGCTCGGGCTGGTGACCGGCTGGTTCGGATGGTCCGCGCTGTGGGCGACGGCGGTCCTGCCCTTCCTGCTCGGCGGCACGATCGCGATCGTCCTGCTCGTGGCGCGACGTGCGACACGCTCCACCGCGATCGCGTTCGGCCCGTTCATGCTGGCCGGGGCCGCCGTCGCGCTCACCGCGCAACGCCTGCTGGCGGGCTGA	MATTLLDRTRSELTPVRRAVGVALGPAVGWAVWVSGPGWAAPALAVAAVAGVALGAVDRRTHRLPDAVTYPTTAVVGALLALAALVDGDVAPLLRAAAGATVLGGTYLLLHLVNRSGLGLGDVKLAVLLGLVTGWFGWSALWATAVLPFLLGGTIAIVLLVARRATRSTAIAFGPFMLAGAAVALTAQRLLAG	PGPT0015925_2674	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654	NA	NA
AK001_01426	1044	hepT	COG0142	Heptaprenyl diphosphate synthase component 2	GTGACCCGTGCTTCTGACGCGCCGTCCGGCGCCGCACCGACCCTGCCGACCGGCGTCCCGCTCTCGGACCCCGCGCTGGCCGACCGGGTCGCGCAGCGGCTCGCCGAGGTCGACGCGACGCTCGACGAGGCCGTGGCCTCGACCGACGCCCTCGCCGACGACGCCGCCCGTCATCTGGTGACGGCGGGCGGCAAGCGGTTCCGCCCGCTGCTGACGCTCCTCGCCGGGGAGCTCGGCGACGGGGCGCAGCCGCAGATCGTCGACGCCGCCGTGGTGGTCGAGCTGACCCAGGTCGCCTCGCTGTACCACGACGACGTCATGGACTCGGCGCCGGTGCGCCGTGGCGCCCCGGCCGCTCACACCGTGTGGGGCAACACCGTGGCCATCCTCGTGGGGGACCTGCTGTTCGCCCGCGCCTCGGCCCTGGTGGCCGGCCTCGGCCCGGAGGCGGTCGTGCTGCAGTCGCGCACGTTCGAGCGGATGTGCCTCGGTCAGCTCCACGAGACCACCGGTCCCGGGCCGGACGACGACCCGGTCGAGCACTACCTGCAGGTGCTCAGCGACAAGACGGCCTCGCTGCTGGCCACGTCGGCTCGTCTGGGCGCGATGTTCGGCGGCTGCCCGGACGAGATCGTCGAGGCGGTCGCGGCCTACGGCGAGAAGGTCGGCATGGCCTTCCAGCTCGCCGACGACGTGCTCGACATCGCCTCCTCCGGCGCCGTGTCCGGCAAGACGCCGGGGACGGACCTGCGCGAGCACGTCCCCACGATGCCGGTCCTGCTGCTGCGCCAGCGGGTCACGCAGGGGGAGGGGACGCCGGCGGACGCGGAGCTGCTGGGTCGGCTCGACGGCGACCTGTCCGACGACGCCGCGCTGGCGGCCGTGGTGGCCGACCTGCGCGAGCACGACGTGCTCGCCGAGACCCGTGCGCTCGCCGTGCGCTGGGCACGGGAGGCTGCCGCCGAGCTGGAGGTCCTGCCCGACGGTCCCGTCAAGGAGGCGCTGACGGACCTGGCCACCGCGCTGGCCGACCGGACCGTCTGA	MTRASDAPSGAAPTLPTGVPLSDPALADRVAQRLAEVDATLDEAVASTDALADDAARHLVTAGGKRFRPLLTLLAGELGDGAQPQIVDAAVVVELTQVASLYHDDVMDSAPVRRGAPAAHTVWGNTVAILVGDLLFARASALVAGLGPEAVVLQSRTFERMCLGQLHETTGPGPDDDPVEHYLQVLSDKTASLLATSARLGAMFGGCPDEIVEAVAAYGEKVGMAFQLADDVLDIASSGAVSGKTPGTDLREHVPTMPVLLLRQRVTQGEGTPADAELLGRLDGDLSDDAALAAVVADLREHDVLAETRALAVRWAREAAAELEVLPDGPVKEALTDLATALADRTV				NA	NA	NA	NA	NA
AK001_01427	1734	nuoN_2	COG1007	NADH-quinone oxidoreductase subunit N	GTGAACGAGTTCGTCGCACCGGAGATCGACTGGGCGGTCCTGTCGCCGATCCTGGTGGTCCTGGCCGCCGGCGTGGTGGGGGTGCTGGTCGAGGCCTTCGTCCCGGCCCGCGCCCGCCGTCTGACCCAGCTCGTGCTGACCCTCGGTGCCCTGGCGGGCACCCTGGTCGCGGTGGCGCTGCTGTGGGACCGGGTGAGCACCGACGGGTTCGCCTTCGTCGTGGACGGCACCGTGGTCCTCACGCCGTTCACGCTGGGCATCCAGGCCGTGGTGGCCGTGCTCGCGATCCTCGGCGTGCTCGTCGTGGCCGACCGCACCAGCACCGGCCAGGACGCGTTCGCCCCCACCGCCGCCGCCGTGCCGGGCACCGCCTACGAGGACGCCGCCCGGGAGGCCGGGCTGCAGCAGACCGAGATCTACCCGCTGATGCTGTTCGCCACGGGCGGGATGCTGCTGTTCCCGGCCACGGACAACCTCATCGTGCTGTTCATCGCGCTGGAGGTGCTGTCCCTGCCGCTGTACGTGCTCTGCGCGACGGCCCGCCGTCGGCGGCTGCTCAGCCAGGAGGCCGCGTTCAAGTACTTCCTGCTCGGGGCGTTCGCCAGCGCGCTGATGCTGTTCGGCATCGCGCTCGTGTACGGCTTCGCCGGGTCCGTGAGCCTGGAGACCGCCGTCTACGTGCTGGCCCACCCTGACAGCCAGGTGCTGGCGATGATGCCGGGGCTGGTCATCGCCGGCGTGCTGCTCGTGTCCGTGGGGCTGCTGTTCAAGATCGGCGCCGCGCCGTTCCACACCTGGACGCCCGACGTGTACCAGGGCGCCCCCACGCCGATCACCGCGTTCATGGCGGCCTGCGTCAAGGCGGCCGCCATCGGGGCGATGGTGCGGGTGCTCTTCACCCTCGCCGCCGGTCTCGACGAGCCGCTGCGGCAGGACCTGGAGACCGGGCTGTGGGTCGCCGCGATCCTCACGATGCTCGTCGGTACCGTCGCCGGTGCTGTGCAGACCGACGTCAAGCGGATGCTCGCCTACTCCTCGATCGCGCACGCCGGGTTCCTGCTGGTGGCGATGGTCGGCTTCGACCAGGTCGGGGCGCGGGCGGTCCTGTTCTACGTGCTGGCCTACGGGCTGGCCACGCTGGGCGCCTTCGCCGTGGTGACCCTCGTGCGCGAGCAGGACGCCGACGGCGTGGTGCTCGGCGAGGCGACGCACCTGTCCCAGTGGGCCGGGCTCGCACGGCGTTCCCCGCTGCTGGCGACGGCATTCTCGCTGTTCCTGCTGTCCATGGCGGGCATCCCGCTGACGGCCGGGTTCCTGGCGAAGTTCAGCGCGTTCTCGGCGGCGGTGGAGGCCGGGGCCTGGCCGCTGGCGGTCATCGGTGTCCTCGCCTCGATCGTGGCCGTGTTCTTCTACGTCCGTCTCATCGTCCTGATGGTGCTCACCCCGCCGGTGGAGGACACGGCCGACGACGGCGCGTCCGGCGCCGGCGGAGCCACGGCGGGCTCCGGGGCCGGGACGTCGGACGCGGGGACCGGGGCCGAGGACACCCCGGAGCGTGCGGGCACCCTGACGGCGGCCCGCGCGGCGACCGAGCGGGCCGCGGTGGTCGTCATCTCCTCGCAGGGTCCGACGGCGGTGGCGATCACCGTCTGCGCCGTCGGGGTGGTGCTGCTCGGGCTCGTCCCGGGGCCGGTGCTGGACTGGATGACGCAGGCGGCCGCGTTCCGTCCGTGA	MNEFVAPEIDWAVLSPILVVLAAGVVGVLVEAFVPARARRLTQLVLTLGALAGTLVAVALLWDRVSTDGFAFVVDGTVVLTPFTLGIQAVVAVLAILGVLVVADRTSTGQDAFAPTAAAVPGTAYEDAAREAGLQQTEIYPLMLFATGGMLLFPATDNLIVLFIALEVLSLPLYVLCATARRRRLLSQEAAFKYFLLGAFASALMLFGIALVYGFAGSVSLETAVYVLAHPDSQVLAMMPGLVIAGVLLVSVGLLFKIGAAPFHTWTPDVYQGAPTPITAFMAACVKAAAIGAMVRVLFTLAAGLDEPLRQDLETGLWVAAILTMLVGTVAGAVQTDVKRMLAYSSIAHAGFLLVAMVGFDQVGARAVLFYVLAYGLATLGAFAVVTLVREQDADGVVLGEATHLSQWAGLARRSPLLATAFSLFLLSMAGIPLTAGFLAKFSAFSAAVEAGAWPLAVIGVLASIVAVFFYVRLIVLMVLTPPVEDTADDGASGAGGATAGSGAGTSDAGTGAEDTPERAGTLTAARAATERAAVVVISSQGPTAVAITVCAVGVVLLGLVPGPVLDWMTQAAAFRP	PGPT0026860_37	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343	NA	NA
AK001_01428	1614	nuoM	COG1008	NADH-quinone oxidoreductase subunit M	ATGACGATGTCGACATTTCCCTGGCTGACGGCGCTCGTCGCCTGGCCGCTGGTGGCCGCGCTGGCCACCGCACTGACCGGCGTCGGCCGGGGACGGCCGGCCGCCGGTGCGGCCACGGGCGGCGGCGCGTTCAGCGCGGGTGCCGCGCGGACGGTCGCCCTGGTCGGTGCCCTGGTGGAGGCCGCCCTGGTGGTGGGGGCGTTCCTCGCCTTCGACACGGGCGCGGCGGGCACCCACCAGCTCACCGAGACCTACGCGTGGATCCCGGCGCTCGGCGCGAGCTACGCCGTCGGGGTCGACGGGGTGGCGCTGCTGCTCGTCGCGCTGTCCGTGGGCCTGGTGCCGCTGGTGATCCTCGCGGCCTGGCACGAGCAGGGCGGTGACGCCGTGCGGCTGCGGCGCTACCTGGCCACGGTGCTGGTGCTGCTCAGCTTCATGGTGCTGGTCTTCACCGCGCGGGACGTGTTCCTGTTCTACGTGGTCTTCGAGGCCATGCTGATCCCCGCCTACTTCCTCATCGGAGGGTTCGGCCAGGGTGCCCAGCGCCGGTACGCGGCGGTGAAGTTCCTCATGTTCTCCCTCGGCGGGGGACTGATCATGCTGGCCGCCGTCGTCGCGCTCTACCTGCAGGTGCCGGTGGACCCCGCCACGGGGCTGCGTCCCGAGGACGCCTTCCTCACCGACAACCTCACCGGCCTGGCGCTCGACCCCACCGCCGAGCGGCTGATGTTCGCCGCGTTCTTCCTGGCGTTCGCCATCAAGGCGCCGATGTTCCCGGTGCACACCTGGTTGCCGGACGTGACCCAGAACGCCACCCCGGGAACCTCGACGCTGCTCATCTGCGTGCTGGACAAGGTGGGCACCTTCGGGATGCTCACGCTGTGCCTGCCGCTGTTCCCGGAGGCGAGCCGCTGGGCGGCGCCGTTCGTCGTCGTGCTCGCGGTGATCTCGATCCTGTACGGCGCGATCCTGGCGATCGGCCAGTCCGACGTGCTGCGCCTGATCGGCTACACCTCGGTGTCCCACTTCGGGTTCATCATCCTGGGCATCTTCACCTTCACCTCCGTGGGCGTCTCGGGCTCAAGCTTCATGATGCTGAACCACGGCATCTCCACCGGTGCGCTGTTCCTCCTGGCGGGCTTCGCCATCGCCCGCCACCCGCGGCACAGCCAGCTGGTCTCCGACTACGGCGGCATGCGCACCGTCGCCCCGGTGCTCGGCGGCACGTTCCTCGTCGCGGGTCTGTCGGCCCTCGCGCTGCCGGGTCTGGCGACCTTCGTCTCGGAGATCATGGTGTTCCTCGGGGCCTACGGCCGGTGGCCCGCCGCGGTGCTGGTGGCCGTGCCCGCCGTCGTCCTGGCCGCGACCTACGTGCTGCTGACCTACCAGCGCATGTTCACCGGCCCCGTCGGGGCGGAGATCACCGGGGCGAAGGACCTGGGCGGCCGGGAGAAGACGGTCGCCGGCGTGCTGGTGGCCGCGCTGGTCGTGCTGGGCCTGGTGCCCGGACCGGCGCTCGACTACGTCCGTGAACCCGCGTCGGTCTCCGTCGAGCTCGTCGGCGCCACCGATCCGGAACCCGTGCTCGGCGCGGCAGAGGGGAGCGAGCAGTGA	MTMSTFPWLTALVAWPLVAALATALTGVGRGRPAAGAATGGGAFSAGAARTVALVGALVEAALVVGAFLAFDTGAAGTHQLTETYAWIPALGASYAVGVDGVALLLVALSVGLVPLVILAAWHEQGGDAVRLRRYLATVLVLLSFMVLVFTARDVFLFYVVFEAMLIPAYFLIGGFGQGAQRRYAAVKFLMFSLGGGLIMLAAVVALYLQVPVDPATGLRPEDAFLTDNLTGLALDPTAERLMFAAFFLAFAIKAPMFPVHTWLPDVTQNATPGTSTLLICVLDKVGTFGMLTLCLPLFPEASRWAAPFVVVLAVISILYGAILAIGQSDVLRLIGYTSVSHFGFIILGIFTFTSVGVSGSSFMMLNHGISTGALFLLAGFAIARHPRHSQLVSDYGGMRTVAPVLGGTFLVAGLSALALPGLATFVSEIMVFLGAYGRWPAAVLVAVPAVVLAATYVLLTYQRMFTGPVGAEITGAKDLGGREKTVAGVLVAALVVLGLVPGPALDYVREPASVSVELVGATDPEPVLGAAEGSEQ	PGPT0026850_421	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342	NA	NA
AK001_01429	1914	nuoL_2	COG1009	NADH-quinone oxidoreductase subunit L	ATGACGACGCAGACGCTCTCCCTCGCGCCCTGGCTGGTCGCGACCCCGCTGATCGGTGCCGCTCTGCTCCTCCTGGTCGGCCGGCGCAGCGACCGCTGGGGGCACTGGCTCGGGGTGCTCGCCTCGACGGCGACGTTCGTGATCGGCCTGGTGATCCTGCTCGACATGCTCGGCGTGGACGCCGAGCAGCGGGTGGCGACCTCCTCGGTCGGCACCTGGATCGACGCCGGGGCCTTCACGGTCGACCTCGGGTTCCAGCTCGACCCGCTGTCCATGACGTTCGTGATGCTGGTGTCGTTCGTCGGCACGCTCATCCACGTCTACTCCGTGGCCTACATGTCGCACGACCGCGACCGCCGCCGGTTCTTCGCGTACCTCAACCTGTTCGTCGCGGCGATGCTGCTGCTGGTGCTCGCGGACAACTACCTGCTGCTCTTCGTCGGCTGGGAGGGTGTCGGTCTGGCCTCGTACCTGCTCATCGGGTTCTGGGACCACAAGCTGCCGAACGCCGTGGCCGGCAAGAAGGCGTTCCTGATGAACCGGGTCGGCGACATGGGGCTCATCGTGGCGATGATGCTCATGCTCGCCACGTTCGGGGCGCTGGACTTCGGCACCGTGCTCGGGTCGGCGGAGGCGGCCGACCAGGGCATCACGACGGCGATCGGGCTGATGCTGCTGCTGGCGGCGTGCGGCAAGTCCGCGCAGCTGCCGCTGCAGGCCTGGCTCGGGGACGCGATGGCCGGCCCGACGCCGGTGTCCGCGCTCATCCACGCCGCCACGATGGTCACCGCGGGCGTGTACCTGCTCGTGCGCTCCGGCCCGCTGCTCGAGGCGGCCCCCGACGCCCAGCTCGTCGTCGCCATCGTCGGTGCGCTGACGCTGCTCTTCGGGGCGATCGTCGGTTGCGCCAAGGACGACATCAAGAAGGCGCTCGCCGCCTCGACCATGTCGCAGATCGGCTACATGATGCTGGCCGCCGGGCTCGGACCGGTCGGCTACGCGTTCGCGATCTTCCACCTGGTCACCCACGGCTTCTTCAAGGCCGGCCTCTTCCTCGGCGCCGGGTCGGTGATGCACGCGATGGACGACGACGTGGACATGCGCCGCTTCGGCGGCCTGGCGCGCCTGCTGCCCGTCACGGCCATCACCATGGGGCTGGGCTGGCTGGCGATCCTCGGCGTGCCGCCGTTCTCCGGCTTCTACTCGAAGGACAAGATCATCGAGACGGCGTTCGTGGGCGAGGGCTGGCAGCCCTGGGTGTTCGGTACCGCGGCCCTGCTCGGCGCGGGCATCACCGCGTACTACATGTCGCGCCTGTTCTTCATGACCTTCGCCGGGCGCCGGCGCTGGCTCATCGGGGAGGGGGCCGAGGCCCGCCACCCGCACGAGTCCCCGGCCCTGATGATCTGGCCGATGATCATCCTCGCCGTCGGCTCGGTCGGTCTGGGCTTCGCGCTCAACGCCGGGGACCGGTTCGTGCACTGGCTGGAGCCCGTCACCGGGCACGCCGAGCACGAGGAGCCGGTGCTGCCGATCTGGCTGATCGTGTCGCTGACCCTCCTGCTGGTCGTGGTCGGCGCGGCCATCGCGTTCCGCCAGTACGCGGTGGCGAAGGTCCCGACGACCCCACCACCGGCGCCGGCGCTCGTCCGGGCCGCCCGGGTGGACCTGCACCAGGACGACGTCAACGAGACGCTCGTGATGCGTCCGGGGCAATACCTGACCCGGTCGATGGTCTTCGCCGACCGGACCGCGGTCGACGCGGGCTGGCTGGGGCTGGCCGGAGGGGTCGGCCGGCTCGGCAGCTGGCTGCGGGGCTGGCAGTCCGGGTACGCGCGGCAGTACGCCGCGATCACACTGGGCGGGCTCGGAGTGATCGTGCTGGTGATCTGGCTCGTGGCGACGGCGGGCTGA	MTTQTLSLAPWLVATPLIGAALLLLVGRRSDRWGHWLGVLASTATFVIGLVILLDMLGVDAEQRVATSSVGTWIDAGAFTVDLGFQLDPLSMTFVMLVSFVGTLIHVYSVAYMSHDRDRRRFFAYLNLFVAAMLLLVLADNYLLLFVGWEGVGLASYLLIGFWDHKLPNAVAGKKAFLMNRVGDMGLIVAMMLMLATFGALDFGTVLGSAEAADQGITTAIGLMLLLAACGKSAQLPLQAWLGDAMAGPTPVSALIHAATMVTAGVYLLVRSGPLLEAAPDAQLVVAIVGALTLLFGAIVGCAKDDIKKALAASTMSQIGYMMLAAGLGPVGYAFAIFHLVTHGFFKAGLFLGAGSVMHAMDDDVDMRRFGGLARLLPVTAITMGLGWLAILGVPPFSGFYSKDKIIETAFVGEGWQPWVFGTAALLGAGITAYYMSRLFFMTFAGRRRWLIGEGAEARHPHESPALMIWPMIILAVGSVGLGFALNAGDRFVHWLEPVTGHAEHEEPVLPIWLIVSLTLLLVVVGAAIAFRQYAVAKVPTTPPPAPALVRAARVDLHQDDVNETLVMRPGQYLTRSMVFADRTAVDAGWLGLAGGVGRLGSWLRGWQSGYARQYAAITLGGLGVIVLVIWLVATAG	PGPT0026845_1883	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341	NA	NA
AK001_01430	300		COG0713	NADH-quinone oxidoreductase subunit 11	ATGGAGCTGACGAACTACCTCTACCTCGCCGTCGTCCTCTTCGCGCTCGGCGCGACGACGGTGCTGCTGCGGCGCAACACCATCGTGGTGTTCATGGGCATCGAGCTGATGCTCAACGCCACGAACCTCGCGCTGGTCACGTTCGCGCGGATGCACGGCGACATCACCGGACAGGTCCTGGCCTTCTTCGTCATGGTCGTCGCCGCCGCCGAGGTCGTGGTGGGCCTGGCGATCATCGTGACGATCTTCCGTGCCCGCCGGTCGGCCTCGGTCGACGACGTCAACCTGCTCAAGAGCTAG	MELTNYLYLAVVLFALGATTVLLRRNTIVVFMGIELMLNATNLALVTFARMHGDITGQVLAFFVMVVAAAEVVVGLAIIVTIFRARRSASVDDVNLLKS	PGPT0026840_2550	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026840-nuoK-K00340	NA	NA
AK001_01431	825			hypothetical protein	ATGACCGTCTCCGGCGGCGAGACCGTCCTGTTCTGGGTGCTGGCACCGCTCATGGTGATCGCGGCCGCCGGCCTGCTGGTCGTGCGCCGGGCCGTGCACGCCGCGGTGTGCGTCGTGTTCGTCATGATCTCCCTGGCGGTGCTCTACGTGGCCCAGGAGGCCCCGTTCCTCGGCGTGGTCCAGGTCGTGGTCTACACCGGCGCCGTGATGATGCTCTTCCTCTTCGTGCTGATGCTCGTGGGGGTGGACGCGGCCGACTCGCTGACCGAGACCATCCGCGGCCAGCGCTGGATCGGGCTGCTGCTCGGGGCGGGCCTGGCGTCCGTGCTGTGCGGGGTCATCGCCCAGTCGACGTTCCCGCCGCCGCAGGGGCTGGCCGAGGCCAACGCGGTGACCAACCCCGTGGCGCTGGCCCGGGTCGTCATGGAGCACTACGTCGTGGCCATGGAGGTCGTCGGCATCCTGCTCGTCACCGCCGCGCTGGCCGGCCTGGTGCTCACGCACCGGCGCCGGATCGGCAACAAGCCCACCCAGCGGGCCCTGGCCGAGGCGAAGATCGCCGCGGTGCCCACCGGGCGGCACCTGAGCCCGTTGCCGGCACCCGGCGTCTACGCGCAGAACAACGCGATGGACACCCCGGCGCTCGACCACACGGGCCGCCCGCTGGAGCACTCCGTGCCGCGCGTGCTGCGCATCCGCGGCCAGCAGCGCGAGGCCGCCGAGCTGCTCACCGCCGAGCAGACGCTGGTCCACCGCGAGCTGGAGGGCCCCGACGACCCGGTGCCGAGCGTCGGACCGGACAGCAGCGAGGGGGAGACCCGCTGA	MTVSGGETVLFWVLAPLMVIAAAGLLVVRRAVHAAVCVVFVMISLAVLYVAQEAPFLGVVQVVVYTGAVMMLFLFVLMLVGVDAADSLTETIRGQRWIGLLLGAGLASVLCGVIAQSTFPPPQGLAEANAVTNPVALARVVMEHYVVAMEVVGILLVTAALAGLVLTHRRRIGNKPTQRALAEAKIAAVPTGRHLSPLPAPGVYAQNNAMDTPALDHTGRPLEHSVPRVLRIRGQQREAAELLTAEQTLVHRELEGPDDPVPSVGPDSSEGETR	PGPT0026835_329	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339	NA	NA
AK001_01432	783	ndhI		NAD(P)H-quinone oxidoreductase subunit I, chloroplastic	ATGAGCGACCAGCCCTACGAGCCGCTGCGGCCGAAGAAGGGACCTCTCGGGGAGCTGTTCGCTCCCGTGGCCGGCTTCGGCGTGACGTTCTCGTCGCTGTTCAAGCCGACCGTCACCGAGGAGTACCCCCGCAAGAAGACGCCGCCGCAGACCCGGTACCACGGCCGTCACCAGCTCAACCGGTACGCCGACGGGCTCGAGAAGTGCATCGGCTGCGAGCTGTGCGCCTGGGCCTGCCCCGCCGACGCGATCTACGTCGAGGGGGCGGACAACGCCGCCGCCGTCGACGGCGCCCCCGAGGCGCACATGAGCCCCGGAGAACGCTACGGACGCGTCTACCAGATCAACTATCTGCGCTGCATCTTCTGCGGGCTGTGCATCGAGGCGTGCCCCACCCGGGCGCTGACGATGGGCAGCGACTACGAGCTGGCCGGGCCGTCCCGCGCGGGGATGATCTACGAGAAGCAGGACCTGCTGGCCCCGTTGGCCGAGGGGATGCTCTCCGCGCCGCACCCGATGGCCGAGGGCACCACCGACACCGAGTACTACCGCGGCGAGGTCACGGCACCCACCGCCGAGCAGGTCGACTGGGTACGGGAGCACCGTCCGGACGACCCGACGCTCGACGCCGCGTCCGCCGTCGTGGCCGGGGACGCGCCGCCGCCGGTGCCCGACACGCACCACCTGCGTCCGGACCAGGACCGTGCCGAGGCGACCCGCGCCGCGGCGACGCAGTCCAACCTGGACCACCGTCCCGTGCAGACCGAGGAGGCACGCCCATGA	MSDQPYEPLRPKKGPLGELFAPVAGFGVTFSSLFKPTVTEEYPRKKTPPQTRYHGRHQLNRYADGLEKCIGCELCAWACPADAIYVEGADNAAAVDGAPEAHMSPGERYGRVYQINYLRCIFCGLCIEACPTRALTMGSDYELAGPSRAGMIYEKQDLLAPLAEGMLSAPHPMAEGTTDTEYYRGEVTAPTAEQVDWVREHRPDDPTLDAASAVVAGDAPPPVPDTHHLRPDQDRAEATRAAATQSNLDHRPVQTEEARP	PGPT0026830_30	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026830-nuoI-K00338	NA	NA
AK001_01433	1326	nuoH_2	COG1005	NADH-quinone oxidoreductase subunit H	ATGATCCCCGGCGTCGCCGCCGACTTCAGCGCGGACACGATCTGGGTCTCGGTCGTCAAGGCCGTGCTCATCGTCGTCTTCCTGCTGACCAGCGTGCTGTTCGCGATCTGGTTCGAGCGCAAGCTCGTCGCCCGGATGCAGCTGCGCCCCGGACCGAACTGGCACGGTCCGTTCGGTCTGCTGCAGTCACTCGCCGACGCGATGAAGCTGCTGCTCAAGGAGGACGTGACGGTCACGAACGCCGACCGGCGGGTCTACCTGCTCGCCCCGATGATCTCGGTGTTCTGCTCGCTGCTCGTGTTCGCCGTCATCCCGTTCGGTCCCTCGGTGACGATCCCGTTCACGGACTTCACCACCCCGGCCCAGCTCACCGACTTCCCGGTGGCGGTGCTGTACATCCTGGCCTGCGCCTCGATCGGCGTGTACGGCATCGTGCTCGGCGGCTGGTCGTCGGGCTCGACGTACCCGCTGCTCGGCTCGGTCCGGTCCACCGCCCAGGTCATCAGCTACGAGCTGGCGATGGGGCTGAGCCTGGTCAGCGTGTTCATCATGGCCGGGTCGATGTCGACCTCGTCCATCGTGGAGTCCCAGACGAGCCTGTGGTGGTTCATCCCGCTCGCACCGGCGTTCGTCATCTTCCTCATCTCGATGGTGGGGGAGACGAACCGGCTGCCGTTCGACCTGCCGGAGGCCGAGGGCGAGCTGGTCGGCGGGTACATGACCGAGTACTCCTCGATGAAGTTCGCCTGGTTCTTCCTGGCGGAGTACATCGCGATGCTCAACGTCTCGGCCGTGGCGACGACGCTGTTCCTGGGCGGCTGGCGCGCTCCGTGGCCGCTGTCCCTGGTGGGCGACGGGATGTTCAACACCGGCTGGTGGCCGCTGCTGTGGTTCCTGGCCAAGGTGTGGCTGCTGATGTTCGCCTTCGTGTGGGTGCGCGGCACGCTGCTGCGACTGCGCTACGACCAGTTCATGGTCTTCGGCTGGAAGGTCCTCATCCCGTTCGCGCTGGCCTGGGTGGCGATCCTGGGCACCTTCCAGTGGGCGGGGCTCGCCGGGGTCACCCAGACCCAGATGATCGTCGGGATCCTCGTGGCCCTCGCCGTCGTCATGGCGGTGCTGTGGCTGTGGCCCGAGCGGAGACCGGCGGACGACACGACGGCGCAGGGCGACCAGCCGTTCGACGCCTTCGCCGGCGGCTACCCGGTCCCGCCCGTCCCCGGTCAGAGCCTGCCGCCCTCGCCGCGGGCCCGGCGCACCGTGCCGCCCGCCGAGGACGTGGAGACCACCACCGCGACCGCTGTCGACGACGAGGAGACGCGATGA	MIPGVAADFSADTIWVSVVKAVLIVVFLLTSVLFAIWFERKLVARMQLRPGPNWHGPFGLLQSLADAMKLLLKEDVTVTNADRRVYLLAPMISVFCSLLVFAVIPFGPSVTIPFTDFTTPAQLTDFPVAVLYILACASIGVYGIVLGGWSSGSTYPLLGSVRSTAQVISYELAMGLSLVSVFIMAGSMSTSSIVESQTSLWWFIPLAPAFVIFLISMVGETNRLPFDLPEAEGELVGGYMTEYSSMKFAWFFLAEYIAMLNVSAVATTLFLGGWRAPWPLSLVGDGMFNTGWWPLLWFLAKVWLLMFAFVWVRGTLLRLRYDQFMVFGWKVLIPFALAWVAILGTFQWAGLAGVTQTQMIVGILVALAVVMAVLWLWPERRPADDTTAQGDQPFDAFAGGYPVPPVPGQSLPPSPRARRTVPPAEDVETTTATAVDDEETR	PGPT0026825_121	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337	NA	NA
AK001_01434	2619	nuoG	COG1034	NADH-quinone oxidoreductase subunit G	ATGACCGCCACCACAGGCACACCGACCGATGCCGCGCCGGTGGAGACCGTGACCTGCACGATCGACGACGTCCAGGTCACCGTGCCCAAGGGCACGCTGGTGATCCGCGCCGCCGAGCAGGTCGGGATCGAGATCCCGCGGTTCTGCGACCACCCGCTGCTGGAGCCCGCGGGGGCGTGCCGGCAGTGCCTGGTCGAGGTCGAGATGCCGGACCGCGAGGGCAACCTGCGCCCGATGCCCAAGCCGCAGGCCTCGTGCACGATGACCGTCGTGCCGGGCATGGTCGTGCGCACCCAGCACACCTCCGCCGTGGCGGACAAGGCCCAGCAGGGGGTCATGGAGCTGCTGCTCATGAACCACCCGCTGGACTGCCCCGTCTGCGACAAGGGCGGCGAGTGCCCGCTGCAGAACCAGGCGATGAGCAACGGCCGGGCGGACTCGCGCTTCACCGACGTCAAGCGGACGTTCCCCAAGCCGATCCAGGTCTCCACCCAGATCCTGCTGGACCGCGAGCGCTGCGTGCTGTGCCAGCGGTGCACGCGGTTCAGCGAGGAGATCGCCGGGGACGTGTTCATCGACCTGCAGGAGCGCGGCGCCCACCAGCAGATCGGGCGGTTCGACGAGGACGTGCTCGACTTCGCCCCGCCGTGCGGCGGGCACCGGGACGCGCCCGCGGCGTCCGACGGCGTCCGGGCCGACGGTCCGGTGGACGTGCCGCAGGGGGTCGCCCTGCCCGACGCCTCGGGCCAGCCCTTCGCGTCGTACTTCTCCGGCAACACGGTCCAGATCTGCCCCGTAGGAGCGCTGACCGGGGCGCGGTACCGCTTCCGCGCGCGTCCGTTCGACCTGGTCTCCACCCCGAGCATCGGCGAGCACGACTCCTGCGGGTCCGCGATCCGCGTCGACCACCGCCGCGGCTCGGTGATGCGGCGGCTGGCTGGCGACGACCCCGCGGTCAACGAGGAGTGGATCACCGACAAGGACCGCTTCGCCTTCACCTGGCAGAGCGCGCCGGACCGCATCACGACCCCGCTCGTGCGCGAGGACGGCGACCTGCGGCCGGCGTCCTGGGTCGAGGCCCTCGAGGTCGCCGCCCGCGGCCTGGCCGCCGCCCGCGACGACGGCGGGGTGGGGGTGCTGCCGGGCGGCCGGCTGACGGTGGAGGACGCCTTCGCCTGGTCGCGCTTCGCCCGCACCGTGCTGCGCACCGACGACATCGACCAGCGCGTCCGGGTGCACTCGGTCGAGGAGGCGGACTTCCTGGCCCACACGGTGGCGGGCTCCGGCGTCGGCGTCACGTTCGCCGACCTCGAGTCCGCGCCGGCCGTGCTGCTGGCGGGGCTCGAGGCCGAGGAGGAGGCCGGGGTCACGTTCCTGCGCCTGCGCAAGGGCGTGAAGCAGGGCACCCGCGTGTTCTCCGTGGCGCCGTTCGTCAGCCGCGGGCTCGCCCGGCTGGACGGCACGCTGCTGCCGGCCGCCCCGGGCACCGAGGCGGAGTGGCTCGGCGCGGTGGCGCGGCAGGCGTCCGGCAGCACCAGCCGGGCCGACGTCGACGACGCCCGCGTGCCGGAGGCCGCCGAGGCGCTGGCGCAGCCGGGGGCCGTGCTGCTCGTCGGCGAGCGGCTGGCCGGGTCGCCCGGTGCGTACGCCGCCGTCCTCGAGCTGGCCCGCACCACCGGGGCCAGTCTGGCCTGGATCCCGCGCCGCGCCGGTGAGCGCGGCGGCGTGGAGGCCGGCCTGCTGCCGGGTCTGCTGCCCGGCGGACGTCCGCTGGAGGACGGGGCCGCCCGCGCGGAGGTCGCCGCCGCCTGGGAGGTCGACGTCGCGGACCTGCCCGACACCCGGGGCCTCGACACCGCCGGCATCCTGGACGCCCTCAGCGTGGGCCAGCTCGCCGGGGCGCTGGTCGGGGGCGTCGAGCTCGCCGACCTGCCCGACCCCGAGCACGCCCGTCGGGCGCTCGCCACGGCCGGGTTCGTCGTCTCGATGGAGGTGCGCCGCACCGAGGTCACCGAGCTGGCCGACGTCGTGCTGCCCGTCGCACCGCCCGTCGAGCGCGCCGGGTCGTACTGGAACTGGGAGGGCCGCGTGCGGGCCTTCGGCCAGGCGCTGGACTCCACGGCGCTGCCGGACCACCGGGTCCTGCACGAGCTCGCGAGCCTGCTCGACCGCGACCTGGGCCTGGCCGAGCCGGTGCGTGCGCACCGGGCGATCGCCGCGCTACCCGCTTGGGGCGGGCCCCGGCCCGCGCCGCCGCAGCACACCACCGACGACCCGCCCGCCGTGCCGCCGGGGTCCGCGGTGCTGGCGAGCTGGCGCCTGCTGCTCGACGACGGCGCGATGCAGGACGGCGAGGAGTTCCTCGCCGGGACCGCCAAGACACCGGTGGCCCGGATGAGCGCCGCCACCGCGGCCGGGTTCGACGTCTTTGACGGCGACCAGGTCACGGTGGCGACCGAGCGCGGCGCGGTCACCGTGCCGGTGGCGATCACGGAGATGGTCGACCACGTGGTGTGGCTGCCCTTGGCCTCGCGCGGCTGCCGGGTGCACGACACCCTCGGCGTCTCCCCGGGCCGAACCGTCCGGGTCTCCCCGGCCGAGAAGGGAGTCCAGGCATGA	MTATTGTPTDAAPVETVTCTIDDVQVTVPKGTLVIRAAEQVGIEIPRFCDHPLLEPAGACRQCLVEVEMPDREGNLRPMPKPQASCTMTVVPGMVVRTQHTSAVADKAQQGVMELLLMNHPLDCPVCDKGGECPLQNQAMSNGRADSRFTDVKRTFPKPIQVSTQILLDRERCVLCQRCTRFSEEIAGDVFIDLQERGAHQQIGRFDEDVLDFAPPCGGHRDAPAASDGVRADGPVDVPQGVALPDASGQPFASYFSGNTVQICPVGALTGARYRFRARPFDLVSTPSIGEHDSCGSAIRVDHRRGSVMRRLAGDDPAVNEEWITDKDRFAFTWQSAPDRITTPLVREDGDLRPASWVEALEVAARGLAAARDDGGVGVLPGGRLTVEDAFAWSRFARTVLRTDDIDQRVRVHSVEEADFLAHTVAGSGVGVTFADLESAPAVLLAGLEAEEEAGVTFLRLRKGVKQGTRVFSVAPFVSRGLARLDGTLLPAAPGTEAEWLGAVARQASGSTSRADVDDARVPEAAEALAQPGAVLLVGERLAGSPGAYAAVLELARTTGASLAWIPRRAGERGGVEAGLLPGLLPGGRPLEDGAARAEVAAAWEVDVADLPDTRGLDTAGILDALSVGQLAGALVGGVELADLPDPEHARRALATAGFVVSMEVRRTEVTELADVVLPVAPPVERAGSYWNWEGRVRAFGQALDSTALPDHRVLHELASLLDRDLGLAEPVRAHRAIAALPAWGGPRPAPPQHTTDDPPAVPPGSAVLASWRLLLDDGAMQDGEEFLAGTAKTPVARMSAATAAGFDVFDGDQVTVATERGAVTVPVAITEMVDHVVWLPLASRGCRVHDTLGVSPGRTVRVSPAEKGVQA	PGPT0026820_637	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026820-nuoG-K00336	NA	NA
AK001_01435	1338	nuoF	COG1894	NADH-quinone oxidoreductase subunit F	ATGACTGACCCGTTGACCCCGGTCCTGACCGACACCTGGGACGCGGAGAGCTCCTGGAAGCTCGCCACCTACGAGGCGGCGGGCGGCTACGCCGGGCTCCGGGCCGCGCTGGGCACCGACCCGGCCGACCTGGTCCAGCTCGTCAAGGACTCCGGCCTGCGCGGGCGCGGCGGCGCCGGGTTCCCCGCCGGGATGAAGTGGGGATTCCTGCCCCCGCCCGACGGCGGCCCGCGCTACCTCGTGGTCAATGCCGACGAGTCCGAGCCGGGCACCTGCAAGGACATCCCGCTGATGATGGCCAGCCCGCAGCACCTGGTCGAGGGGGTGGCCATCACCAGCTACGCCATCGGGTGCCACCACGCGTTCATCTACGTGCGCGGCGAGGTGCTGCACGTCTACCGCCGGCTGCTCGCCGCCGTGCGGGAGGCCTACGAGGCCGGTCACCTGGGGACGAACATCCACGGCTCCGGCTTCGACCTCGAGGTCACCGTGCACGCCGGTGCCGGCGCCTACATCTGCGGCGAGGAGACCGCGCTGCTGGACTCGCTCGAGGGCCGGCGCGGCCAGCCGCGGCTCAAGCCGCCGTTCCCCGCCGTCGCGGGGCTGTACGCCCGGCCCACGGTCGTCAACAACGTGGAGTCCATCGCCTCCGTGCCCGGCATCGTCGCGCACGGCGCCGACTGGTTCTCCTCGATGGGCACCGAGAAGTCCACCGGGCACGGCCTGTTCTCCCTGTCCGGCCACGTGACCCGCCCCGGGCAGTTCGAGGCCCCGCTCGGCATCACGCTGCGCGAGCTGCTCGACCTGGCCGGCGGGGTCCGAGAGGGCCACGAGCTGAAGTTCTGGACCCCGGGCGGCTCCTCGACGCCGCTGTTCACCGCCGAGCACCTCGACGTCCCGCTCGACTACGAGTCCGTCGGCGCGGCCGGGTCGATGCTCGGTACCCGCGCGCTGCAGATCTTCGACGAGACGACCTGCGTCGTCCGCGCCGTCAGCCGGTGGACGGACTTCTACGCGCACGAGTCGTGCGGCAAGTGCACCCCGTGCCGCGAGGGCACCTACTGGCTCAAGCAGATCCTGCACCGCATCGAGGCCGGCGCGGGCGAGGCGGGAGACATCGACGTCCTGCTCGACCTGTGCGACAACATCCTCGGCCGGGCGTTCTGCGCGCTCGGCGACGGCGCGACGTCCCCGATCACGTCGTCCATCGAGTACTTCCGCGACGAGTACGAGGCGCACCTCGACGGGCGTGGGTGCCCGTTCGACCCGGCCCGGTCCACGCTGTTCGACGACACGCCCCAGGCGCCGCCGGCGCTCGCGGGTGCAGGAGGCCACTGA	MTDPLTPVLTDTWDAESSWKLATYEAAGGYAGLRAALGTDPADLVQLVKDSGLRGRGGAGFPAGMKWGFLPPPDGGPRYLVVNADESEPGTCKDIPLMMASPQHLVEGVAITSYAIGCHHAFIYVRGEVLHVYRRLLAAVREAYEAGHLGTNIHGSGFDLEVTVHAGAGAYICGEETALLDSLEGRRGQPRLKPPFPAVAGLYARPTVVNNVESIASVPGIVAHGADWFSSMGTEKSTGHGLFSLSGHVTRPGQFEAPLGITLRELLDLAGGVREGHELKFWTPGGSSTPLFTAEHLDVPLDYESVGAAGSMLGTRALQIFDETTCVVRAVSRWTDFYAHESCGKCTPCREGTYWLKQILHRIEAGAGEAGDIDVLLDLCDNILGRAFCALGDGATSPITSSIEYFRDEYEAHLDGRGCPFDPARSTLFDDTPQAPPALAGAGGH	PGPT0026815_1403	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026815-nuoF-K00335	NA	NA
AK001_01436	837			hypothetical protein	ATGACGGCCGAACCGGTGGGCGCGCGTTCGCGCACGGGGTACGACGCCGAGACCCTGGCCGCGCTCGTGGCCGACGCCGAGGAGATCAAGGGGCGCTACCCGGACCCGCGGTCGGGGCTGCTGCCGCTGCTGCACCTGGTGCAGTCCGTCGAGGGTTACGTCAGCCGCGACGGGATCGTCTTCTGCGCCGAGCAGCTCGGGCTGACCGCCGCGGAGGTCTCCGCGGTGGCCACCTTCTACACCCAGTACAAGCGCCACCCCAACGGCGAGTACACGGTGGGGGTCTGCACCAACACGCTGTGCGCGGTCATGGGCGGGGACGCGATCTTCGACCGGCTGAGCCAGCACCTGGACGTCGGGCACGACGAGACCACGCCGGACGGGTCCGTCACGCTGGAGCGCGTCGAGTGCAACGCCGCCTGCGACTACGCCCCCGTGGTGATGGTCAACTGGGAGTTCTTCGACAACCAGACCCCGGAGTCCGCCACCGAGCTGGCCGACCGTCTGCGCAGCGGGGAGCAGGTCACCCCGACCCGGGGCGCCGACTCGGTCTGCTCGTTCAAGCAGATGAGCCGGGTCCTGGCCGGGTTCGACGACGGCCGCGCCGACGAGGGCGCCGGTGCCGGCGGGCCGACCCTCGAGGGGCTGCGCATCGCGCGCGAGCGCGGCTGGACCGCTCCGGGCGGCGAGCAGGCCGGGGCCCCCGGGACACCGCGCGTCGAGGTGACGCCCGAGACGGGCACCGGCCAGTCCAGCGCGGAGCGGAAACCGACCACGCCGTCGGACGACACCGGACCTGCCGGGCAGGCCGACGCGAAGGAGGGCGACGATGACTGA	MTAEPVGARSRTGYDAETLAALVADAEEIKGRYPDPRSGLLPLLHLVQSVEGYVSRDGIVFCAEQLGLTAAEVSAVATFYTQYKRHPNGEYTVGVCTNTLCAVMGGDAIFDRLSQHLDVGHDETTPDGSVTLERVECNAACDYAPVVMVNWEFFDNQTPESATELADRLRSGEQVTPTRGADSVCSFKQMSRVLAGFDDGRADEGAGAGGPTLEGLRIARERGWTAPGGEQAGAPGTPRVEVTPETGTGQSSAERKPTTPSDDTGPAGQADAKEGDDD	PGPT0026810_270	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026810-nuoE-K00334	NA	NA
AK001_01437	1353	nuoD	COG0649	NADH-quinone oxidoreductase subunit D	ATGACCGCGCCGGCACACGACGCGCCGCACGCGACCGGACCGGCCGCCGACGACTACGGGCCCGGCGTCGCCGGGTTCGAGGCCTCCGGCGGCGACTGGGACGAGATCGCGCGCGAGGCGATCGGCGAGGAACGCATCGTCGTCAACATGGGTCCCCAGCACCCGTCCACCCACGGCGTGCTGCGCCTGATGCTGGAGATCGACGGCGAGACGGTGACCGAGGCCCGCTGCGGCGTCGGCTACCTGCACACCGGCATCGAGAAGAACATGGAGTACCGCACCTGGACGCAGGGCACCACGTTCTGCACCCGGATGGACTACCTGGCGCCGCTGTACCAGGAGGCCGGGTACTGCCTGGGCACCGAGCGGCTGCTGGGCATCACCGACGACGTCCCGGAGCGCGCCAGCGTGATCCGGGTGCTGATGATGGAGCTCAACCGGGTCGCCTCCCACCTGGTCTGCCTGGGCACGGGCGGCAACGAGATGGGCGCCACCACGATCATGACGCTCGGGTTCACCGCGCGCGAGGAGATCCTGCGCCTCTTCGAGGCGGTGACGGGCCTGCGGATGAACCACGCGTTCATCCGTCCGGGCGGCGTCGCCCAGGACGTCCCCGAGGGGTTCACCGACCAGGTGCGCGACATGCTGCCCAGCCTGCGCAAGTACATCGGCATGCTCGGCGACCTGATGCTGGCCAACCCGATCTTCAAGTCCCGCCTGCAGGGCGTGGGCGTGCTGAACCTGTCCGGCTGCTTCGCCCTCGGGATCACCGGTCCGGTGCTGCGGTCCGCCGGGCACCCGTACGACGTGCGCAAGGCGTTCCCGTACAGCGGCTACGAGGACTACGACTTCGACGTCCCCACGGACACCGCCGCCGACTGCTACGCGCGGGTCGTGATCCGCATCGAGGAGTGCTACCAGTCGCTGCGCATCGTCGAGCAGTGCCTCGCGCGGCTGGACGACACCGTCGGCGCGCCGATCATGGTCGCGGACAAGAAGATCGCCTGGCCGGCCCAGCTCGCCGTCGGCTCCGACGGCCAGGGCAACTCCCTGGACCACATCCGCCAGATCATGGGCACCTCGATGGAGGCCCTCATCCACCACTTCAAGCTGGTGACCGAGGGCTTCGGGGTGCCGGCCGGACAGGCGTGGCAGACGGTCGAGCACCCGCGCGGCGAGCTCGGCGTGCACGTGGTGTCCGACGGCGGCACGCGGCCCTACCGGGCGCACTTCCGCGACCCGTCGTTCAACAACCTCCAGGCCGTGTCGGTGATGTGCGAGGGCGGCCAGGTGGCCGACGTCGTCGTCGCTGTCGCGTCCCTGGACCCGGTGCTGGGAGGGGTGGACCGATGA	MTAPAHDAPHATGPAADDYGPGVAGFEASGGDWDEIAREAIGEERIVVNMGPQHPSTHGVLRLMLEIDGETVTEARCGVGYLHTGIEKNMEYRTWTQGTTFCTRMDYLAPLYQEAGYCLGTERLLGITDDVPERASVIRVLMMELNRVASHLVCLGTGGNEMGATTIMTLGFTAREEILRLFEAVTGLRMNHAFIRPGGVAQDVPEGFTDQVRDMLPSLRKYIGMLGDLMLANPIFKSRLQGVGVLNLSGCFALGITGPVLRSAGHPYDVRKAFPYSGYEDYDFDVPTDTAADCYARVVIRIEECYQSLRIVEQCLARLDDTVGAPIMVADKKIAWPAQLAVGSDGQGNSLDHIRQIMGTSMEALIHHFKLVTEGFGVPAGQAWQTVEHPRGELGVHVVSDGGTRPYRAHFRDPSFNNLQAVSVMCEGGQVADVVVAVASLDPVLGGVDR	PGPT0026805_114	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026805-nuoD-K00333	NA	NA
AK001_01438	747	nuoC	COG0852	NADH-quinone oxidoreductase subunit C	ATGAGCGAGCGCTCCGGCGAGGTCGAGCGCCGGCAGCAGGGGCCCACGGCCGAGGTCGTGCGCGAGCGCACCGGCATGTTCGGGGTGCACGGCTCCGGCGACACCTCCGGCTACGGCGGACTGACCCGCACGGTGACGATGCCGGCCGCGGCCTCGCGCCCCTACGGGTCCTGGTTCGACGAGGCGGTGGACGTCCTGGCCGAGGTGCTGGGGGACGCCGGCGTGGCCTTCGCCGACGCGGTCGAGCGGGTGGTGATCACCGACCCGCGCCGCCCGGCCGAGGGCGAGGGGCCGAGCCGCGACGCCGAGCTGACGCTGTACGTCGCCCGCGAGCACCTGCTCGCCGTGTGCCGGGCCCTGCGCGACGACCAGGACCTGCGCTTCGAGCTGTCCCTGGGCGTCTCGGGGGTGCACTACCCGGACGACGTCGGTCGTGAGCTGCACGCCGTCTACCACCTGACCTCCGTGACGCACGGCCGGCGTCTGCGTCTCGACGTCGCCTGCCCCGACGAGGACCCGCACGTCCCGTCCACGACGACGGTCTACCCGGCCAACGACTGGCACGAGCGCGAGACCTGGGACTTCTTCGGGATCGTCTTCGACGGCCACCCCGCGCTGGCGCGGATCGAGATGCCGGACGACTGGCCCGGCCACCCGCAGCGCAAGGACTACCCGCTCGGCGGCATCCCCGTGGAGTACAAGGGCGCCACGGTGCCACCGCCGAACCAGCGGAGGGAGTACTCATGA	MSERSGEVERRQQGPTAEVVRERTGMFGVHGSGDTSGYGGLTRTVTMPAAASRPYGSWFDEAVDVLAEVLGDAGVAFADAVERVVITDPRRPAEGEGPSRDAELTLYVAREHLLAVCRALRDDQDLRFELSLGVSGVHYPDDVGRELHAVYHLTSVTHGRRLRLDVACPDEDPHVPSTTTVYPANDWHERETWDFFGIVFDGHPALARIEMPDDWPGHPQRKDYPLGGIPVEYKGATVPPPNQRREYS	PGPT0026790_398	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026790-nuoC-K00332	NA	NA
AK001_01439	552	nuoB	COG0377	NADH-quinone oxidoreductase subunit B	ATGGGTCTGGAGGAGTCCCCCTCGGGGTTCCTGCTGACGACGATCGAGGACCTCGCCGGCTACCTGCGCAAGGCGTCGGTGTGGCCGGTGACGTTCGGCCTGGCGTGCTGCGCCATCGAGATGATGGCGGCCGGCGCCTCGCGGTTCGACCTGTCACGGTTCGGCATGGAGGTCTTCCGGGCCTCGCCGCGCCAGGCGGACCTGATGATCGTGGCAGGTCGGGTCAGTCAGAAGATGGCTCCCGTCGTGCGGCAGGTCTACGACCAGATGAGCGAGCCCAAGTGGGTGCTCTCGATGGGCGTGTGCGCCTCCAGCGGCGGCATGTTCAACAACTACGCGATCGTCCAGGGCGTCGACCACGTGGTACCCGTCGACATCTACCTGCCGGGCTGCCCGCCGCGCCCGGAGATGCTCATCAACGCGATCCTGGCGCTGCACCAGCAGATCCTGGACGAGCCGATGGGCGTCAACCGTGTCGAGGCGGCCAAGGCCGCCGAGGCTGCGGCCCTCGAGGCGACGCCGACCTCCCAGATGCCGGGACTGCTGCGATGA	MGLEESPSGFLLTTIEDLAGYLRKASVWPVTFGLACCAIEMMAAGASRFDLSRFGMEVFRASPRQADLMIVAGRVSQKMAPVVRQVYDQMSEPKWVLSMGVCASSGGMFNNYAIVQGVDHVVPVDIYLPGCPPRPEMLINAILALHQQILDEPMGVNRVEAAKAAEAAALEATPTSQMPGLLR	PGPT0026785_1691	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026785-nuoB-K00331	NA	NA
AK001_01440	363	nuoA	COG0838	NADH-quinone oxidoreductase subunit A	ATGAGCAACCCGTACGTCCCGGTGCTGGTCCTCATGGGGATCGCCGCCGTGCTGGCCCTGGGCGGGGTCGGGGCGAGCGCCGTCATCGGCCCGAAGCGGTACAACCGCGCGAAGCTCGACGCCTACGAGTGCGGCATCGAGCCCACCCCGCACGCCACCGGGGGCGGCAGGCTCCCGATCAAGTACTACCTGGTGGCGATGACGTTCATCGTCTTCGACATCGAGGTCGTCTTCCTCTACCCGTGGGCGGTCGACTTCGCGGTGCTGGCCGGGTTCGGGTTCGCGGCGATCCTCGTGTTCCTGGCCCTCATCACCGTGCCGTTCGTCTACGAGTGGCGGCGCGGCGGGTTCGACTGGGTCTGA	MSNPYVPVLVLMGIAAVLALGGVGASAVIGPKRYNRAKLDAYECGIEPTPHATGGGRLPIKYYLVAMTFIVFDIEVVFLYPWAVDFAVLAGFGFAAILVFLALITVPFVYEWRRGGFDWV	PGPT0026780_2164	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330	NA	NA
AK001_01441	1314	menJ	COG0644	Menaquinone reductase	GTGCGAGCGGTCGATCGTGACGACGCCGACGTCATCGTCGTCGGTGCCGGTCCCGCCGGGGCCTCGGCCGCGCACTGGTGCGCGACCGCCGGGCTCGACGTGCTGGTCCTCGAGAAGTCCGCCTTCCCCCGCGACAAGATCTGCGGCGACGGGCTGACGCCCCGCGCGGTCGCCGAGCTCGCCCGCATGGGTGTCGACACCCGCCCCGAGGACGGCTGGATCCGCAACGACGGGCTGCGGGTCGTCGCCGGCGGCCGCTCCTGGGAGCTGGCCTGGCCCGAGCTGACGACCTACCCCGGCTACGGCCTCGCCCGGTCGCGCACGACGCTCGACCACCTCCTCGTCCAGCACGCCCAGGCCTCGGGCGCCAAGCTCGCCGAGCGCACCAAGGTCACCGGCCCGCTCACCGACGAGCGCACCGGCCGGGTCGTGGGCGTCCACGCCCAACCGCTGGACGCCCGCGGGCGGGCCGACGGCGCGCCGCGCACGTTCCGGGCACCGGTCGTGGTGGCCGCCGACGGCGTCTCCTCCCGGTTCGCGACGGCGCTCGGCCTGACGCGCCGTGACGACCGGCCGATGGGCACCGCCGTGCGCACCTACTACCGCACCGAGGGCACACCCCGGCACGCGGACGCCTTCATGGAGTCGCACCTGGAGCTGTGGGACGGCACCCCGGGGCAGTCGAACCTGCTGCCCGGCTACGGCTGGATCTTCGCCCTCGGCGACGGCACCGCCAACGTCGGGCTCGGGTCGGTCGCCTCGACCCCGGCTCGCCAGTCCGCCCAGGGCCACGACTACCGGGCCATGATGAAGGCCTGGACGGCCAACACCCCGCCCGAGTGGGGGTTCACCCCCGAGAACCAGATCGGGCCCGTCCGGGGCGCCGCACTGCCGATGGGTTTCAACCGCAGCCCGATGTACTGCGACGGCACCGTGCTGGTCGGGGACTCCGCCGGGATGGTCAGCCCGTTCAACGGCGAGGGCATCGCCTACGCGCTGCAGGCCGGCCGCGTCGCCGCCGACGCGATCGCCCAGGCCCGCACCCGGCTGACCGACGACGCCCGCGAGCGCACCCTGGCCACGTACACCGACCGGATGCGTGCCGACCTCGGCGGCTACTACACGTTGGGCCGCTGGTTCGTGCGGCTCATCGAGCACCCCGCGGTGATGCGGGTGTGCGTGAAGTACGGGCTGCCGCAGCCGGTGGTCATGCAGTTCGTGCTCAAGCTGCTGTCCGACTGCTACGAACCCCGCGGCGGCGACTGGGTCGACCGGGTCATCGCGGGGCTGACGAAGGTGGTTCCGAACGCATGA	MRAVDRDDADVIVVGAGPAGASAAHWCATAGLDVLVLEKSAFPRDKICGDGLTPRAVAELARMGVDTRPEDGWIRNDGLRVVAGGRSWELAWPELTTYPGYGLARSRTTLDHLLVQHAQASGAKLAERTKVTGPLTDERTGRVVGVHAQPLDARGRADGAPRTFRAPVVVAADGVSSRFATALGLTRRDDRPMGTAVRTYYRTEGTPRHADAFMESHLELWDGTPGQSNLLPGYGWIFALGDGTANVGLGSVASTPARQSAQGHDYRAMMKAWTANTPPEWGFTPENQIGPVRGAALPMGFNRSPMYCDGTVLVGDSAGMVSPFNGEGIAYALQAGRVAADAIAQARTRLTDDARERTLATYTDRMRADLGGYYTLGRWFVRLIEHPAVMRVCVKYGLPQPVVMQFVLKLLSDCYEPRGGDWVDRVIAGLTKVVPNA				NA	NA	NA	NA	NA
AK001_01442	171			hypothetical protein	ATGAAGGCCGTGACCGCGCTCGCCGTCGGCATCGCACTGGGGTACTACCTCGGCACCGAGAAGGGCCGCGAGCAGATCGACCAGGCGAAGAAGCTCGCCGTGGACACGTGGAACGACCCCCGCGTGCAGGAGAAGGTCAGCGAGGTGCAGGAGAAGGTCGCCAAGAACTGA	MKAVTALAVGIALGYYLGTEKGREQIDQAKKLAVDTWNDPRVQEKVSEVQEKVAKN	PGPT0015027_261	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0015027-ytxH-NA	NA	NA
AK001_01443	699	menG	COG2226	Demethylmenaquinone methyltransferase	ATGTCGCGCGCCAGCCTGGAGAAGAAGCCCGTCGAGGTCGCCTCGATGTTCGACGGGATCGCCGAGCGCTACGACCTGACCAACGACATCGTCTCCCTCGGCCAGGACCGTGCCTGGCGCCGGGCGACGGTGGCCGCTGTCGGGGCGGGGCCGGGGGAGCGGGTGCTCGACCTCGCGGCCGGGACCGGCACGTCGAGCGAGCCGTTCGCCGCGGCCGGGGCCGTCGTCGTGCCCTCGGACTTCTCGATGGGGATGCTGCAGGTCGGCAAGGCCCGTCGGGCCGATCTGCCGTTCGTGGCCGGTGACGCCACGCGGCTGCCGTTCGCCGACGCCGCGTTCGACGCCGTGACCATCAGCTTCGGGCTGCGCAACGTGGTGGACACCTCGGCCGCGCTGCGCGAGATGCTGCGGGTGACCCGGCCCGGCGGCCGGGTGGTGATCTGCGAGTTCTCCCACCCCACGTGGGCGCCGTTCCGGCAGGTCTACCTCGAGTACCTGATGCGGGCGCTGCCGCCCGTGGCCGGGCTGGTCACGCGCGACCAGGGCTCCTACGAGTACCTGGCCGAGTCGATCCGGGCCTGGCCCGACCAGGAGGGTCTCGGGCGACTCATGCTCGGTGCGGGATGGGAGCGGGTCGGCTACCGCAACCTGACCGGCGGCATCGTGGCGCTGCACCGCGGGACCCGCCCGGCCGCCTGA	MSRASLEKKPVEVASMFDGIAERYDLTNDIVSLGQDRAWRRATVAAVGAGPGERVLDLAAGTGTSSEPFAAAGAVVVPSDFSMGMLQVGKARRADLPFVAGDATRLPFADAAFDAVTISFGLRNVVDTSAALREMLRVTRPGGRVVICEFSHPTWAPFRQVYLEYLMRALPPVAGLVTRDQGSYEYLAESIRAWPDQEGLGRLMLGAGWERVGYRNLTGGIVALHRGTRPAA	PGPT0009535_3419	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183	NA	NA
AK001_01444	1371	pchA	COG1169	Salicylate biosynthesis isochorismate synthase	ATGTCCGCCACGCCCCACCCGGCGCCGGTCCCGCCGTCGGGCGCGTCCGCCGGCACCCCCGCTGCAGCACCCGAGCCCCCGCCGCTCGTGGTCCGCACCACCCGCCTGGACCCGTTGCCCGGCGACCTGACCGCCCTGGTCGACCTCCTGCCCGACGAGCGCCCCCTGACCTGGGTGCGCCGCGGCGACGGAATCGTCGGCTGGGGGGAGGCCCTCCGCCTGGACACGTACGGTCCGGGGCGGTTCGCCGACGCGGAGGCCGCCTGGCGCGCCACGCTGGCCCGCGCCGTCGTCCGCGACGAGGTGGGGCTGCCCGGCAGCGGCCCCGTCGCCTTCGGCACGTTCGCGTTCGACGACGGCGGTACCGGCGAGGCCTTCGACGGTTCCAGCCCGCAGGGCTCCCTCGTCGTGCCGCGCGTGGTCGTCGGCCGACGCGGGGACGTCGCCTGGATGACCACCATCGCCGTCGACGGCACGCTCGAGCCCCCGGGCGACGCCGGCCTGGCGGCCACCGAGCGCACGCCGGTGCACGACCCCGGCCGGGTCACGCTGACCGACGGCGCGGTCGGTGCCCGGGACTGGCCGGCCGTCGTCGCCGAGGGCGTGGCCCGCATCCAGGCGGGCGAGCTGGAGAAGGTGGTGCTGGCCCGCGACGTCGTCGCCACCGCCGAGCGGCCCGTCGACCCGCGCTGGCTGCTGCGCCGTCTGGCCGCGCGCTACGAGTCGTGCTGGACCTTCTCGGTGGCCGGGATGATCGGGGCCACGCCGGAGCTCCTGGTGCGCAGCGAGAAGGGTCTGGTGACCTCGCGCGTGCTGGCCGGCACCATCCGGCGCGAGCCCGGGATGAGCGACGACGACGCGCTGCTGCACGCGGCGCACCTGGCCCGCTCGTCGAAGGACCTGGAGGAGCACGAGTTCGCTGTGGCCTCGGTCGCGCGGTCCCTGGCCCCGTTCTGCTCGTCGATGAACGTCCCGGACGCGCCGTTCGTGCTGCACCTGCCGAACGTCATGCACCTGGCCTCCGACGTCACGGCGGTGCTGGACCCCGCCACGCGGGCGAGCTCGCTGTCGCTCGCCGCGGCGCTGCACCCCTCGGCGGCCGTGTGCGGCACACCGACCGTGGCGGCGCGCGACCTCATCCGCGAGATCGAGGGGATGGACCGCTCCCGGTACGCGGGCCCGGTCGGCTGGGTCGGCGCCGACGGCGACGGCGAGTGGGGCATCGCACTGCGGTCCGCGGAGATCGCCGACGACCCGCGCCACCTGCGGCTGTTCGCCGGGTGCGGGATCGTCGCGGCCTCCGACCCGGAGGCGGAGCTCGCCGAGTCGGAGGCCAAGCTCGTCCCGATGCGGTGGGCGCTCGGCGTCTGA	MSATPHPAPVPPSGASAGTPAAAPEPPPLVVRTTRLDPLPGDLTALVDLLPDERPLTWVRRGDGIVGWGEALRLDTYGPGRFADAEAAWRATLARAVVRDEVGLPGSGPVAFGTFAFDDGGTGEAFDGSSPQGSLVVPRVVVGRRGDVAWMTTIAVDGTLEPPGDAGLAATERTPVHDPGRVTLTDGAVGARDWPAVVAEGVARIQAGELEKVVLARDVVATAERPVDPRWLLRRLAARYESCWTFSVAGMIGATPELLVRSEKGLVTSRVLAGTIRREPGMSDDDALLHAAHLARSSKDLEEHEFAVASVARSLAPFCSSMNVPDAPFVLHLPNVMHLASDVTAVLDPATRASSLSLAAALHPSAAVCGTPTVAARDLIREIEGMDRSRYAGPVGWVGADGDGEWGIALRSAEIADDPRHLRLFAGCGIVAASDPEAELAESEAKLVPMRWALGV	PGPT0009360_485	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009360-menF-K02552	NA	NA
AK001_01445	1662			hypothetical protein	ATGAGCACCGACCACACCCCCGCACCGCAGCAGCCGTCGGGCCCGCAGCACCCCGTCGAGCAGCCGACCACCCCGCTGCCGACGACGGCGGCCCCGCAGCGCGACACCGAGGCCGCGGAGCAGACGACGGCGTCCGCGGAGCCGGCGACAGCGCCTGCGCAGCCGAGCGCGCAGCACGCGCAGCAGTCGGCCGCCCAGCAGGCTCCGCAGCAGCCGAGCACTCCGCACGCCCCGCAGCAGCCCGCTGGCACGTTCGGTGCACCGGCGTACCAGGCGGCTCCCGCGTACGGCGGGCACGGTGGCGGCCCGACGTCCTACCCGCCGGCGCACCAGCAGAACCTACAGCCGGTCCCGGAGCGGCGTCGCACCCCGTGGGTGCCGATCGTGGCCGTGGCCGCCGGGGCGGCCGTGATCGCCAGCGCGGCCACCGCCGGTGCCATCACGCTGCTCGACGACGACGCGGCCGGCTCCTCGCTCGCCGAGGTCGGCACCTCGCAGAGCTCCGACGCGGCCCCCGTGGCGAGCTCCACGAGCGAGAACCCGGACTGGCAGGCGGTCACCTCCGCAGTGGCGCCCTCCGTCGTCGCGATCCAGGTCACCAGCCAGGCCGGCGGGTCCGAGGGCTCCGGCGTCGTCCTCGACGAGTCGGGGCACGTCCTGACGAACAACCACGTGGTCTCCGGCGCCTCGAACGACACCGTGCAGGTCACGCTGTCCGACGGCCGGCTGTACGAGGCGACCATCGTGGGGACCGACGCCACGACGGACCTCGCCGTGGTCCAGCTGACCGACCCGCCGGACGACCTGCAGCCCGCGGCGTTCGGTGACTCCGACAGCGTGCAGGTGGGCGACTCCGTGCTGGCCGTCGGCAACCCCCTGGGCCTCGCGAACACGGCGACCACCGGCATCGTCTCGGCCCTGGACCGCCCGGTGGCGGCCTCGGGCGAGGACGGCAGCGACGTCGTGGTCACCAACGCGATCCAGATCGACGCCGCGGTGAACCCGGGCAACTCCGGTGGCCCCCTGTTCGACGCCCAGGGCCGGGTCATCGGCATCACCTCGTCCATCGCGACGATGTCGAGCGGCATGAGCAGCTCGTCCGGGTCGATCGGGCTGGGCTTCGCGATCCCGGTGAACCTGGCGACCACCGTCTCCGACCAGCTCATCGAGGACGGCACGGCCGAGCACGCGTTCCTGGGCGTCTCGCTGACCGACGCCACCGCGACGGCCGACGGCGTCACCCGTCGCGGCGCGGAGGTCGTCGAGGTCGTCTCCGGGTCCCCGGCCGCGGAGGCCGGCCTGCAGGCCGGTGACGTCATCGTCGCCATCGACGACGACGCCGTGAACGGTGCCGAGTCCCTGACCGCCTACGTGCGTGAGCGCACCGCCGGCGAGCAGGCGTCCGTCACCGTCGTGCGCGACGGGCAGGCGACCTCGGTGGACGTGTCCTTCGCCGTGCGCGAGGAGGCGACGTCCGGGTCCCAGGGTCAGGGCGGGTCCGGGCAGATGCCGGGCTCCGGCCAGGGCCGGCAGGACCAGGAACAGGAGCGGGACCAGGACCAGGACCGTCAGCAGGACCAGGACCAGCAGCAGGACGGGTCCTCCGACCCGACGCAGCCGGACAACATCCCGGACTGGCTGCGCGAGCTGTTCGGCAACTGA	MSTDHTPAPQQPSGPQHPVEQPTTPLPTTAAPQRDTEAAEQTTASAEPATAPAQPSAQHAQQSAAQQAPQQPSTPHAPQQPAGTFGAPAYQAAPAYGGHGGGPTSYPPAHQQNLQPVPERRRTPWVPIVAVAAGAAVIASAATAGAITLLDDDAAGSSLAEVGTSQSSDAAPVASSTSENPDWQAVTSAVAPSVVAIQVTSQAGGSEGSGVVLDESGHVLTNNHVVSGASNDTVQVTLSDGRLYEATIVGTDATTDLAVVQLTDPPDDLQPAAFGDSDSVQVGDSVLAVGNPLGLANTATTGIVSALDRPVAASGEDGSDVVVTNAIQIDAAVNPGNSGGPLFDAQGRVIGITSSIATMSSGMSSSSGSIGLGFAIPVNLATTVSDQLIEDGTAEHAFLGVSLTDATATADGVTRRGAEVVEVVSGSPAAEAGLQAGDVIVAIDDDAVNGAESLTAYVRERTAGEQASVTVVRDGQATSVDVSFAVREEATSGSQGQGGSGQMPGSGQGRQDQEQERDQDQDRQQDQDQQQDGSSDPTQPDNIPDWLRELFGN	PGPT0021000_163	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372	NA	NA
AK001_01446	156			hypothetical protein	GTGACCAGCCGCACGACTGCGCAGGCCTTCCGGGGCGCGGAGCTGACGACCCTGGTCGTCGCGGCGATCACCGTCGCCGGCGCGGGCGGACTGCTCGTGCTCGTGGGAGCCGGTTCGGTGCTGGCCTCGGCCCTGGCCCGCCACCGCGTCGACTAG	MTSRTTAQAFRGAELTTLVVAAITVAGAGGLLVLVGAGSVLASALARHRVD				NA	NA	NA	NA	NA
AK001_01447	1833	menD	COG1165	2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthase	ATGAGCGCCGCGGCCTCCGGGAGTCCCGCCGTGGACTCCGCCCGTGCCCTGGTGGCCGACCTCGCCGCCCAGGGCGTGCACGACGTCGTCCTGGCACCCGGTTCCCGGTCGGCCCCGCTGGCGTACGCCCTGGCCGAGGCGGCCGCCGCCGGGCGGGTGCGGCTGCACGTGCGGATCGACGAGCGGTCGGCGGCTTTCCTCGCCCTCGGGCTGTCGCGCGGGTCGGCCCTGCCGGGCGCCGTCGCGGACGGTGCCCCGGAGGTCGCGGACGCCCCGGCCGCTCCGGCACCCGTGGCGGTGGTGACGACGTCGGGCACGGCGGTGGCCAACCTGCACCCGGCGGTCCTCGAGGCCTCGCACGCCGGCCTGCCGCTGGTCGTGCTGACCGCGGACCGCCCCCACGAGCTGCGCGGGACCGGGGCCTCGCAGACGACCGACCAGGTCGGGATCTTCGGCACCGCGGTGCGGTACGCCGTCGACGTCCCGGCACCCGACGGCCGCGACGGCGAGGTCCGCGACCTGCTGGCCACGGCCCGGCGGGCGCTGGCCGCCGCCCGGGGGCTGCGCGACCGGCGTCCCGGCCCCGTCCAGCTCGACCTGGCCTACCGCGACCCGTTGCACCCCACGGACGGTCCGGAGCCACCGGCCGCCCCGGAACCCTCGCCCGGGGTCGAGGTGGTGCCGCCCGCACCCGGCCCCGGCGCGGACCCGGCCCTGCCCGGGGACCCCGCCCGCACCCTGGTCGTCGCCGGCGACGGCGCGGGACCCGACGCGCGGCGGCTCGCCGAGGCCCGCGGCTGGCCCCTGCTCGCCGAACCGACGTCGGGCGCCTGCGGGGGACCGCGGGCCGTGGCCGCCTACCGCTCCGTGCTGGGCGCCGACGGCATCGCCGCGGACGTCGAGCACGTCGTCGTCCTCGGCCGCCCCACGCTGTCCCGGCCCGTCCAGCGGCTGCTCGCTCGCCCGGACGTCACCGTCACCGTCGTCGCGCCCGGCGGCGGTCCCTGGCCCGACCCCGCGCGGCATGCCGCCCGCGTCGTCGAACGGCTCGCCGAGCGGTGGTTCGTCCCGGCCGACCCCTCCGACGGCGGGACCTTCGCCGCCCGCTGGGCGGCGGCGAGCCGGGCCGCCGCCGGGCAGGTCGACGCCGCCACGCGGGATCCGGCGGTCGGCGCCGACCTGTCCATGGGGCCGCACGCGGCGCTCGCGGTGGCGCGGGCCGTCGTCGCGGCGACCGGTCCCGAGGACGTCCTGGTCGTCGGGGCCTCCAACCCGGTGCGGGACGTGGACCTCGTCGTCGGGCTGGACGTCGCCGAGGACGCCCCGCCGCCGCAGATCCTGGCCAACCGCGGGCTGGCCGGCATCGACGGGACGGTCGCCACGGCCACCGGCGTCGCGCTGGCCGCCGCGCGCCGTGGGCTGCGCACCCGGGCGCTCGTCGGCGACCTGACGTTCCTGCACGACGTCGGCGGCCTGCTGCGCGGTCCGGACGAGGACCCCGTCGACCTGCAGGTCGTCGTCGCCAACGACGACGGCGGCTCCATCTTCGCCACCCTCGAGCACGGGCAGCTCGCCCAGGACGGGCCGACGGCGGCCGCGACCTTCGAGCGGGTGTTCGGCACCCCGCACGGCGCCGACCTGGGGGCGCTGTGCGCCGGCTACGGCGTGGCTCACCGACGGGTCGGGGACGTGGCCGCGCTGCGTGCGGCGCTCGCGGAGCCGCCCGCCGGGGTGAGCGTGGTCGAGGTCCGGCTGCCGCGGGCCGACCGGCTCGCCGAGTCCCGCGGTCTGGCTACGCGGGTCGCCGAGGCGGTGCGCGCGGCGACCCGCTAG	MSAAASGSPAVDSARALVADLAAQGVHDVVLAPGSRSAPLAYALAEAAAAGRVRLHVRIDERSAAFLALGLSRGSALPGAVADGAPEVADAPAAPAPVAVVTTSGTAVANLHPAVLEASHAGLPLVVLTADRPHELRGTGASQTTDQVGIFGTAVRYAVDVPAPDGRDGEVRDLLATARRALAAARGLRDRRPGPVQLDLAYRDPLHPTDGPEPPAAPEPSPGVEVVPPAPGPGADPALPGDPARTLVVAGDGAGPDARRLAEARGWPLLAEPTSGACGGPRAVAAYRSVLGADGIAADVEHVVVLGRPTLSRPVQRLLARPDVTVTVVAPGGGPWPDPARHAARVVERLAERWFVPADPSDGGTFAARWAAASRAAAGQVDAATRDPAVGADLSMGPHAALAVARAVVAATGPEDVLVVGASNPVRDVDLVVGLDVAEDAPPPQILANRGLAGIDGTVATATGVALAAARRGLRTRALVGDLTFLHDVGGLLRGPDEDPVDLQVVVANDDGGSIFATLEHGQLAQDGPTAAATFERVFGTPHGADLGALCAGYGVAHRRVGDVAALRAALAEPPAGVSVVEVRLPRADRLAESRGLATRVAEAVRAATR	PGPT0009365_459	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009365-menD-K02551	NA	NA
AK001_01448	1017	menC	COG4948	o-succinylbenzoate synthase	GTGTCCGCCTCCCTGTCCGCGACGCTGCAGCGCCGGTTCGTCTGGTCCACGCCGCTGCGCACGCGCTTCCGTGACCTGACCAGCCGCGACGGCCTGCTGCTGCGCGGCGACGCCGGCTGGGGCGAGCTGAGCCCCTTCTGGGAGTACGACGACGCCGAGTCGGCCACATGGCTGCGCGCGGCCCGGGAGGCGGCGGACCTCGACTTCCCCGCCCCGGTCCGCGACCGCGTGCCGGTCAACGTCACCGTGCCCGCGGTCGACGCGGAGCGCGCTCGCGAGATCGTGCTCGCCTCGGGCGGGTGCACGACGGCGAAGATCAAGGTGGGCCAACGGCTCGCCGACGGGTCGGTGGAACCCGTCGAGGCGGAGGTCGAGCGGGTGCAGGCCGTGCGCGAGGTGCTCGACACGCTGCACGGCCCCTCCGTCGGCCGGATCCGGGTCGACGTCAACGGCACCTGGGCCGTCGACGAGGCCCGGCGACGCATCCCCCGGCTCGACGCCGCGGCCGGCGGGCTGGAGTACGTCGAGCAGCCGTGCCGCACCGTCGACGAGCTCGCGGCCGTGCGTCGGAGCGTCGACGTCCCGGTCGCCGCCGACGAGTCCATCCGCCGCGCCGACGACCCGCTGCGGGTCGTGCGTGCCGAGGCGGCCGACGTCGTCGTGCTCAAGGTCCAGCCGCTGGGCGGCGTGCGGGCCTGCCTCGACCTGGCCGAGCAGGTCGGGCTCCCGGTCGTGGTGTCCTCCGCGCTGGAGTCCTCGGTGGGGCTGGCGGCCGGGGTGGCGCTCGCCGCGGCGCTGCCGGAGCTCCCGCACGCCTGCGGCCTGGCGACCTCGCAGCTGCTCACCCGGGACGTCACCGACGACCCGTTGCGGCCGGTGGACGGGGCCCTGCCCGTGCGCCGGGTCGCCCCCGACGCCGGTGCGCTCGCGGCCGTCGCCGCGCCGCCGGACCTCGAGCAGCGCTGGCTCGAACGCCACGACCGGCTCGCCGCCGTCCTCGACCGGGCTCGCGCATGA	MSASLSATLQRRFVWSTPLRTRFRDLTSRDGLLLRGDAGWGELSPFWEYDDAESATWLRAAREAADLDFPAPVRDRVPVNVTVPAVDAERAREIVLASGGCTTAKIKVGQRLADGSVEPVEAEVERVQAVREVLDTLHGPSVGRIRVDVNGTWAVDEARRRIPRLDAAAGGLEYVEQPCRTVDELAAVRRSVDVPVAADESIRRADDPLRVVRAEAADVVVLKVQPLGGVRACLDLAEQVGLPVVVSSALESSVGLAAGVALAAALPELPHACGLATSQLLTRDVTDDPLRPVDGALPVRRVAPDAGALAAVAAPPDLEQRWLERHDRLAAVLDRARA	PGPT0009375_1073	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009375-menC-K02549	NA	NA
AK001_01449	180			hypothetical protein	ATGACGCGATCCCACAGCTCCGAGGTCGCTGACCCGGACGAGGTCGTGGACGAGCTGATCGCCTACGACGCGGCCGAGGTACGGCGTGCCACCGCCACGACGCAGGCCCTGCCCGTCACCACCGTGAGCGCGCCCGGGGCCTGGACGTTCCGCACCACGCCGGACGAGTTCACGGACTGA	MTRSHSSEVADPDEVVDELIAYDAAEVRRATATTQALPVTTVSAPGAWTFRTTPDEFTD				NA	NA	NA	NA	NA
AK001_01450	1053	menB	COG0447	1,4-dihydroxy-2-naphthoyl-CoA synthase	ATGACGCGCACATCTCGGGTGATCGGTGTGTCGAGCCGCGACTACCCTGAGGCCGTGAGCCGATCCGACAGCACGCCCGACGTCCCCGCGCAGGTCTCGCACACCTTCGACCCGAGGCGATGGCGCACGGTCGCCGGGTTCGAGGACCTGACCGACCTGACCTACCACCGGGGTGTGGAGCGGTCGACGGCGGACGACGGGACCGAGCAGGTGCGCGACCTGCCCGTGGTGCGGGTCGCCTTCGACCGCCCCGAGGTGCGCAACGCGTTCCGGCCGCACACCGTCGACGAGCTGTACCGGGTGCTCGACCACGCCCGTATGACCTCCGACGTCGGCACCGTGCTGCTCACGGGCAACGGACCGAGCCCCAAGGACGGCGGCTGGGCGTTCTGCTCCGGCGGCGACCAGCGCATCCGCGGACGGTCGGGCTACCAGTACACGACGGCCGACGAGGCGGGACGCCTCGGTGTGGACGCGGACGCCGTCGACCCGGCGCGGGCCGGACGCCTGCACGTCCTCGAGGTGCAGCGGCTGATCCGCACCATGCCCAAGGTGGTGATCGCCGTCGTCGACGGCTGGGCCGCCGGGGGCGGGCACTCGCTGCACGTGGTCGCCGACCTGTCCATCGCCTGCCGCGAGCACGGGCGGTTCAAGCAGACCGACGCCGACGTCGGCTCGTTCGACGGCGGCTACGGCTCGGCGTACCTGGCCAGGCAGGTGGGTCAGAAGCGCGCCCGGGAGATCTTCTTCCTCGCCCGGGAGTACTCCGCCGACGACGCCGAACGCTGGGGCGGCGTCAACGAGGTCGCCGAGCACGCCGACCTGGAGTCCCTGGGCATCGAGTACGCCCGCACCGTCGCCGGCAAGTCGCCGCAGGCGATCCGCATGCTGAAGTTCGCGTTCAACCTGGCCGACGACGGCCTGATGGGGCAGCAGGTGTTCGCCGGGGAGGCCACACGCCTGGCGTACCTCACCGACGAGGCCGTGGAGGGCCGCGACGCGTTCCTGGGCAAGCGCGAGCCCGACTGGAGCCGGTTCCCCTACGCCTACTGA	MTRTSRVIGVSSRDYPEAVSRSDSTPDVPAQVSHTFDPRRWRTVAGFEDLTDLTYHRGVERSTADDGTEQVRDLPVVRVAFDRPEVRNAFRPHTVDELYRVLDHARMTSDVGTVLLTGNGPSPKDGGWAFCSGGDQRIRGRSGYQYTTADEAGRLGVDADAVDPARAGRLHVLEVQRLIRTMPKVVIAVVDGWAAGGGHSLHVVADLSIACREHGRFKQTDADVGSFDGGYGSAYLARQVGQKRAREIFFLAREYSADDAERWGGVNEVAEHADLESLGIEYARTVAGKSPQAIRMLKFAFNLADDGLMGQQVFAGEATRLAYLTDEAVEGRDAFLGKREPDWSRFPYAY	PGPT0009385_176	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009385-menB-K01661	NA	NA
AK001_01451	1083	yerB_1		Putative lipoprotein YerB	ATGCGGCACGGTGCGCACGGACGGACGACGGCGGCGGTCGCCGGGCTGCTGGTGTTCTCTGCGGGACTGGTCGGCTGCACCGGCGGCGAGCCCGCCCCGGCCCCGACCACGACGGTCGCGGCCTCGACGGGACCCGTGGCGAAGGGGCTGCCGCCCGACCCCGACGTCGCGACCGTGTGGCCCCTGACCGGGGTGGAGACGGACACGGTCGCCGACCGGCCCGCCCTCGGCGTCAAGATCGAGAACTCGCCGCAGGCGCGCCCCCAGGCCGGTCTCGAGGACGCCGACCTGGTCTGGGAGGAGGTCGTCGAGGGCGGCATCTCCCGGTTCCTGGCCGTGTACCACTCCCAGATCCCCGAGGCGGTCGAGCCCGTGCGGTCCGTGCGACCCATGGACCCGGCCATCGTCGCCCCGCTGGACGGCATCCTCGCCTACTCCGGCGCCCAGCCGCCCTTCATCGCCGACGTCCGCGACTCCGGGACGCAGTCGGTGATCATGGACGCCGGCGACCCGGGCTTCCGGCGCGACCCGGCCCGGCCCGCGCCGCACGACGTCATCGGTGACCCCGAGACCTTCCTCGCCCAGGACGACGGGCAGCGCACGACGCCGCCCCCGCAGCTCTTCCGGTACGCCCCCGAGGCGTCGCGGGCCACCGCCGCGGGGGACGCCTCCTCGTCGGTCGAGATCGACGTGCGGCTGTCCCCGGCGCAGCGCACCCGCTGGGCCTGGGACGCCGGCTCCGGCACGTGGCTGCGCAGCGAGGGGTCGAGCCCGTCGATGTCCACGTCCGGCGTGCAGCACGCCGCGACGAACGTCGTCGCGCTGCGGGTCGAGGTCGTCGACACCCCGTACCGGGACGCCTCCGGCGCGGCGGTGCCGGAGACGCAGCTCGTCGACTCCGAGGGCGTCGCCCTGGTCGCCAGCGCCGGCGGGTACGTCGCGGCGCAGTGGTCCAAGGGCTCGCTGTCCGACCCGATCGAGCTCACCCGCGACGGCGAGCCCGTGGAGCTCGCCCCGGGCAGCACCTGGATCGAGCTCGTGCCGCGCGACGGCGGCTCGTGGACCGCCGGGCCCCCTCAGTAG	MRHGAHGRTTAAVAGLLVFSAGLVGCTGGEPAPAPTTTVAASTGPVAKGLPPDPDVATVWPLTGVETDTVADRPALGVKIENSPQARPQAGLEDADLVWEEVVEGGISRFLAVYHSQIPEAVEPVRSVRPMDPAIVAPLDGILAYSGAQPPFIADVRDSGTQSVIMDAGDPGFRRDPARPAPHDVIGDPETFLAQDDGQRTTPPPQLFRYAPEASRATAAGDASSSVEIDVRLSPAQRTRWAWDAGSGTWLRSEGSSPSMSTSGVQHAATNVVALRVEVVDTPYRDASGAAVPETQLVDSEGVALVASAGGYVAAQWSKGSLSDPIELTRDGEPVELAPGSTWIELVPRDGGSWTAGPPQ				NA	NA	NA	NA	NA
AK001_01452	1083	yerB_2		Putative lipoprotein YerB	GTGGCCGCACGACGTCCCGTGGCGCTCGCCCTGGTGCTGGCGCTGCTCGCGCTGGGCGCGTGCTCCGACCAGCCGCCGCTCGAGGCGCCCACGGTCACGGTGGCGCCGGACGTGTCGCGGGCGAAGATCGCGCCGCCGTCGCCGCCGGCGCCGGAGCCCACGCCGTCGCCGACCCCGGAGGTGCCGCGCTGGCCGCTGACCGGCCAGCGCACGGACAAGGTGCCGAAGCGACCGGCGGTCGCGGTGAAGATCGAGAACTCCCCGGCCGCGCGTCCGCACACCGGGCTGCACCGCGCCGACGTCGTGTGGGAGCAGGTCGTCGAGGGCGGCATCACGCGGTTCGTGGCCGTCTACCACTCGGACTACCCGGACGAGGTGGGCCCGATCCGGTCGGTGCGGCCGATGGACCCGGCGACGGTCGCCCCGATGCGTGGCCTCCTGGCGGCGTCCGGGGGGATCGGCTCGTACCTGCGGAACGTCGAGCGCCGGGGCACCCAGCTGGTGATCAACGACGACGGCGACCCGGGGTTCTGGCGCTGGTCCGGCCGGTACGCCCCGCACAACGTGTACGGCAACGTGCGGACCTTCGCCCGGCAGGCGGACCGCCGCCGCGCCGAGCCGCCGCCCGCCCAGTTCCGGTACGCCCCCGGGGCGAAGAAGGCCACGGCCCGGACCGAGGGGAAGCGGGCCCGGACGGCCGACGTGCGGCTGTCCGCGGCCCAGCGGACCACCTGGACGTGGAACCGTGGCGACGGGGCGTACCGCCGCAGCGACAACGGGACCCCCTCGATCTCCTCCGGTCAGCGGGTCACCGCCCGCAACGTCGTGCTGCTGCGGATGAAGGTCAGCCTGACCTCCCAGCGGGACGCCTCCGGAGCCCGGGTGCCGAAGACCGAGCTGGTGGGCACCGGCACCGGCCGCGTGCTCAGCGGCGGCCGGTCCGTCGCGGTCGAGTGGTCCAAGAAGGGCCCGCGCAAGCCGCTGCGCCTGACCCGGCCGAACGGCGACCCGGTGCGCCTGGCCCCCGGGACGACGTGGGTCGAGCTCGTCCCGCGCGGGGACGGGTCCTGGTCCGTGTCCTGA	MAARRPVALALVLALLALGACSDQPPLEAPTVTVAPDVSRAKIAPPSPPAPEPTPSPTPEVPRWPLTGQRTDKVPKRPAVAVKIENSPAARPHTGLHRADVVWEQVVEGGITRFVAVYHSDYPDEVGPIRSVRPMDPATVAPMRGLLAASGGIGSYLRNVERRGTQLVINDDGDPGFWRWSGRYAPHNVYGNVRTFARQADRRRAEPPPAQFRYAPGAKKATARTEGKRARTADVRLSAAQRTTWTWNRGDGAYRRSDNGTPSISSGQRVTARNVVLLRMKVSLTSQRDASGARVPKTELVGTGTGRVLSGGRSVAVEWSKKGPRKPLRLTRPNGDPVRLAPGTTWVELVPRGDGSWSVS				NA	NA	NA	NA	NA
AK001_01453	1167	menE_1	COG0318	putative 2-succinylbenzoate--CoA ligase	GTGACCTGCGTGCTCCACCCCGAGGTGTCCGCGTTCGTGGACCGCGCGCGCCGCGCCCTGGACGACGGCCCTCCGGTCGTGCCGCTGCCCCGGCTGAGCGACGCGGAGGCACCGCCGGGCACCGCGGCCGTCGTCCGCACGTCCGGGTCGACGGGCACGCCGCGCGAGGTGGCGCTCAGCGCCGCGGCGCTGCGGGCCTCCGCGGCCGCCACGGCGGAACGGCTCGGGTCTCCGGGCCGATGGGTGCTGACCCTGCCGACCACGCACGTCGCCGGGGTCCAGGTCGTGGTGCGCTCGGTGCTGGCGGGCACGCCGCTGGTCGCGGCGCCGCCGGAGGCGCCGTTCACCCCGGCCGGCCTCGCGGACCTGCTCGCCGAGGCGCTGTCCGGGCACGACCCCGTGCACGTCTCGCTCGTCCCGACCCAGCTGCACCGGGTCGTGCAGGCCGCCGACGACGGCGCCCCGGCCGCCCTGCGGGCGCTGGCCCGGTGCGGGGCCGTCCTGCTCGGCGGGGCCGCCGCGCCGGCCCCCCTGGTCCGCCGGGCGCGCGAGGCCGGCGTCCCCGTGGTGCGGACCTACGGCATGTCCGAGACGTCGGGCGGCTGCGTGTACGACGGCGTCCCGCTGCCCGGCGTGCGCGTCCGGGTCGACCCGGTCACCGGCGGGCAGGGTGTGGTCGAGCTCGCCGGGCCGGTGCTGGCCACCGGGTACCTGGGGGACGACGCCGCGACGGCCGCCGCGTTCGGTGACGGGCCTGACGGCCGCTGGTTCCGCACCAGCGACCTGGGCCACCTCCAGGCCGGCGTGCTGCAGGTGCTCGGCCGGGCGGACGACGTCGTGGTCACCGGGGGCGAGAACGTCGCGCCGGCCGCCGTGGAGGCGGTGCTGGCCGAGCTGCTCGACGGCGAGGTCTGCGTCGTCGGCGTGCCGGACCCGGAGTGGGGCCAGGCCGTCGTGGCGGTCGTCGGCCGCCCGGGGACCCCGGCGGGCACGTGGCTGCCGACGGAGCGGCTGACGTCGGCACGGTCCGAGGTCGCGGCTAGGCTGGGCCGGCCCGCGGCCCCGCGACGGATCCTGCAGGTCCCCGAGCTCCCGCGGCGCGGACCCGGCAAGGTCGACCGCGCCGCCGTCGTCGATCTCGTGCGTCGTCACGACGCGCGCCGCTGA	MTCVLHPEVSAFVDRARRALDDGPPVVPLPRLSDAEAPPGTAAVVRTSGSTGTPREVALSAAALRASAAATAERLGSPGRWVLTLPTTHVAGVQVVVRSVLAGTPLVAAPPEAPFTPAGLADLLAEALSGHDPVHVSLVPTQLHRVVQAADDGAPAALRALARCGAVLLGGAAAPAPLVRRAREAGVPVVRTYGMSETSGGCVYDGVPLPGVRVRVDPVTGGQGVVELAGPVLATGYLGDDAATAAAFGDGPDGRWFRTSDLGHLQAGVLQVLGRADDVVVTGGENVAPAAVEAVLAELLDGEVCVVGVPDPEWGQAVVAVVGRPGTPAGTWLPTERLTSARSEVAARLGRPAAPRRILQVPELPRRGPGKVDRAAVVDLVRRHDARR	PGPT0009380_1408	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009380-menE-K01911	NA	NA
AK001_01454	870	menA	COG1575	1,4-dihydroxy-2-naphthoate octaprenyltransferase	ATGGCCACCGCCGCCGAATGGGTCGCCGGCGCCCGCCCCCGCACGCTGCCGGCCGCCGCGGCCCCCGTCGCCGTCGGGACCGGCGCGGCCGCGCAGGTCGACGCCTTCGGCTGGCTGCCCGCCGTGCTCGCCCTCGGCGTCGCGCTGGCGCTGCAGATCGGGGTCAACTACGCCAACGACTACTCCGACGGCGTGCGCGGCACCGACGTCGACCGGGTCGGCCCGCTGCGGCTCACGGCCGCCGGCCTGGCCCGCCCGGAGCACGTCAAGGCGGCCGCGTTCGGGTCGTTCGGCCTCGCCGGCGTGCTGGGGATCGCCCTGTGTGCCGTCTCCGGGCACTGGTGGCTGATCGCCGTCGGTGCGCTGAGCATGGCGGCCGGCTGGTACTACACCGGTGGGAAGCGGCCGTACGGTTACGCGGGGCTCGGCGAGGTCGGGGTCTTCGTGTTCTTCGGCCTGGTCGCCACGCTCGGCACCACGTACACCCAGGCCGACCGGATCACGTGGCCCGCCGTGCTGGGCGCCGTCGGCGTCGGCCTGATCGCCTGCGCGATCCTCATGGCCAACAACCTGCGCGACATCCCCACCGACGTCCTGGCGGGCAAGCGCACGCTCGCGGTGCGCGTCGGCGACCACCGGGCCCGCCGGCTGTACGCGCTGTGGCTGGTCGTGGCGGTGCTGCTCGGCCTCGCCTGCGCGGTGTGGAACCCGTGGGCCTTCCTGGTGACCCTGCTCCTGCTGCCGACGGTGCTGCTCGTGGTCCCGGTGCTGGCCGGGGCGCAGGGGCGCGCACTGGTCCCGGTGCTGGCCGGGACCGGCCTGTTCGAGCTCGCCTACGGGGTGCTGCTGGGGCTCGGTCTGGCGCTCTGA	MATAAEWVAGARPRTLPAAAAPVAVGTGAAAQVDAFGWLPAVLALGVALALQIGVNYANDYSDGVRGTDVDRVGPLRLTAAGLARPEHVKAAAFGSFGLAGVLGIALCAVSGHWWLIAVGALSMAAGWYYTGGKRPYGYAGLGEVGVFVFFGLVATLGTTYTQADRITWPAVLGAVGVGLIACAILMANNLRDIPTDVLAGKRTLAVRVGDHRARRLYALWLVVAVLLGLACAVWNPWAFLVTLLLLPTVLLVVPVLAGAQGRALVPVLAGTGLFELAYGVLLGLGLAL	PGPT0009395_2543	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009395-menA-K02548	NA	NA
AK001_01455	333			hypothetical protein	GTGCCTCTGCTCATCTACTCCGCGCTGCGGCTGCTCATCCTCGTGGCCGTGCTCGTCCTCGGCTACGTCGTCGGTCTGGGCGGGTGGCTCCTGCCGCTGGTGGCCCTCGTCGTGGCGTTCGCCGTCTCCTACCTCGCCCTGCCCCGGCAGCGCGAGGCGGCCGCGCTCTGGCTCGCCGAGCGTGACCGCGAGCGCAAGGAACGCCGACAGCGGCTGGTCGACGAGGACGCCGCCGCCGAGGACGCCGCGCTCGACGGCGATCCGGCGGCGCGGACGGACGGCCCGGCCGAGCGGACGGACGACCCGGCCGACAGCCCGCAGCAGCGCTCCTGA	MPLLIYSALRLLILVAVLVLGYVVGLGGWLLPLVALVVAFAVSYLALPRQREAAALWLAERDRERKERRQRLVDEDAAAEDAALDGDPAARTDGPAERTDDPADSPQQRS				NA	NA	NA	NA	NA
AK001_01456	363			hypothetical protein	ATGTTCCGCGTCGTGGTGGTCCTCCTCGTGATCGGCCTGATGGTCTACAGCCTCGCCGACCTGGCCGGGTCGGAGGAAGAGGATCGTGGCGGCCTGCCCACCTGGCTGTGGCTGATCATCATCGTGTTCCTGCCGGTCTTCGGTCCGATCACCTGGATCGTCACCAAGCGCACGCGTCGTCGCGGGTCCGGCGGCCTCACGGGCCGTCCAGGACGCGGACCGCGGCGCCCGTCCGGACCCGTCGCGCCGGACGACGACCCGGACTTCCTGTGGCGCATCGAGCAGGAGAAGCGCCGTGAGGAACGTCGCAGGAAGAAGAGCGACGGCGAGGGGCCCGACTCCCCGCCCGCCGACGACGCCTGA	MFRVVVVLLVIGLMVYSLADLAGSEEEDRGGLPTWLWLIIIVFLPVFGPITWIVTKRTRRRGSGGLTGRPGRGPRRPSGPVAPDDDPDFLWRIEQEKRREERRRKKSDGEGPDSPPADDA				NA	NA	NA	NA	NA
AK001_01457	978	ccsA		Cytochrome c biogenesis protein CcsA	ATGGAGATCGGCGACCTGAGCGACCTGCTCGTGTGGGCGGCGGCGACGACCCTCGCCCTCGCGATGATCGCGTTCGCGATCGACCTGGGACGTCGCACCGACGAACGCCTCGAGGCGCGCACCGAGACCCGGGCCGCCATCGGTGCCGGGGTCGGCGCGCCGGAGGCGGGGTCGGCGTCGGGCGGCGGCTCCGTGCCCGCCGAGTCCTCCGCGCCTCCTCGCCGGGCCGCCGGGATCGGCATGTCGACGTCCTGGCTCGGCACGATCCTGCTCGGTGTCGCGATCCTGCTCCGCGGCGTCGCGGCCGGACGAACGCCGTGGGCCAACATGTACGAGTTCACGCTCGTGGGGTCGTTCGTGGCGATGACGGTGTTCCTGGTGTGGAACCTGCGCCGCGACGTGCGGTTCCTCGGTGCGTTCGTCACCGGCCTGGTCACCCTGTTCATCGTCGTGGGGCTGAACTCGTTCCACGTCGCGGCGACCGGCGTGCAGCCTGCGCTGCAGAACTACTGGCTGGTCATCCACGTCGGCGTCGCGATCGCGGCGACCGGGATCTTCACGATCGCCTTCGTGCTCTCCGCCCTGCAGCTGCTGCGGGACGCGCGCGACACCGGGTCGCCGTTCCTGACCCGGCCCGGGTTCCGTTGGCTCGACCGGATGCCGACCCCGACGTCGCTGGAGTCGATGTCGTTCCGGCTCAACGCGGTCGGCTTCGTGATGTGGACCTTCACGATCATCGGCGGCGCGATCTGGGCCGAGGACGCCTGGGGCCGCTACTGGGGCTGGGACCCCAAGGAGGTCTGGAGCTTCATCATCTGGGTCGTGTACGCGGCCTACCTGCACGCGCGCACGACGCGGGGCTGGTCCGGACGGCGGGCCGCCTGGTTCGTCGTCGTCGGCTACGCCTGCGTGCTGTTCAACTTCACCGGCGTGAACCTGATCTTCAACGGCAAGCACTCGTACTCGGGCATCAGCTGA	MEIGDLSDLLVWAAATTLALAMIAFAIDLGRRTDERLEARTETRAAIGAGVGAPEAGSASGGGSVPAESSAPPRRAAGIGMSTSWLGTILLGVAILLRGVAAGRTPWANMYEFTLVGSFVAMTVFLVWNLRRDVRFLGAFVTGLVTLFIVVGLNSFHVAATGVQPALQNYWLVIHVGVAIAATGIFTIAFVLSALQLLRDARDTGSPFLTRPGFRWLDRMPTPTSLESMSFRLNAVGFVMWTFTIIGGAIWAEDAWGRYWGWDPKEVWSFIIWVVYAAYLHARTTRGWSGRRAAWFVVVGYACVLFNFTGVNLIFNGKHSYSGIS				NA	NA	NA	NA	NA
AK001_01458	1734	ccs1		Cytochrome c biogenesis protein Ccs1	ATGAGCGAGCGGACCTACCGTCCCGAGGGAATCGCGGACGACTTCACCACCGGTGCGCCGACCTCGACGGCGGACGCGGTGCCCGGAGCGGCCGGGCAGCCGCCGTCGGCCCCCCGCGCCCCGCAGCTCGGCTGGCGCGGGATGCTCCGCTGGACCTGGCGCCAGCTGACGAGCATGCGCGTGGCGCTGATGCTGCTCATGCTGCTGGCCGTCGCGGCTCTGCCGGGGTCGATCCTGCCGCAGCGCGACCAGGACCCCTCCGCCGTGGTGGAGTACCTCGGCGAGCACCCGACGGCGGGGGAGTGGCTCGACCGCTTCGGCTTCTTCGACGTCTACACCTCGGTCTGGTTCTCGGCCATCTACCTGCTGCTGCTCGTCTCCCTGGTGGGCTGCATCGTGCCGCGCACGATCGCGCACGCCCGGGCGCTGCGGGCCCGGCCCCCGCGGACCCCCGTCCGGTTCGAACGGTTCCCGGTCCACGTCACCGGGACGACGGCGGAGAGCCCGGACGAGGTCGCCGCGGCGGCCGCCGCGCACCTGCGCGGCCGGTGGCGCCGGATGCCCACGTTCCGCGTCGAGGCCGGGGCCGAGGACGCCCGGCCCGCACGGGGCAAGGTCCCGGCGCGCCCGGCCACGCGGACCGTCGCCGCCGAGCGGGGGTACCTGCGCGAGACCGGGAACCTGCTCTTCCACCTGGCGCTGGTGGGCCTCGTGATCTCCGTCGCCGTGGGCCAGCTCCTGCACTACCGCGGCCAGGCGATCATCACCGAGGACCGCGGCTTCGCCAACGCCGTCGTCGACTACGACACGTTCGAGTCCGGCGCGTGGTTCTCCCCGGAGTCCCTCGTGCCGTTCGCGATGACGCTGGACGCCTTCGAGTCCGAGTTCGCCACCGACACCGTGGCGTTCGCCCAGTCGCGCGACTTCACCGCCGAGGTCACCGTGCACGAGCCGGACGGGTCGTCGCGGGCCGAGACCATCAAGGTCAACCACCCGCTCGACGTCGACGGCGCGAAGATCTACCTGCAGGGCAACGGCTACGCCCCGGAGATCAGCGTCACCGACGCCGAAGGCGCCACGGCGTTCGACGGACGCGTGCCCTTCCTGCCCGAGGACCAGGTGTACACCTCGCGCGGCGTGGTCAAGGTCCCGGACGTCTCGCCGGGTCTCGACCAGATCGGGCTCATCGGGTACTTCCTGCCCACGGCGGTGCTCAACGACGACGGGACCGCCGAGTCGGTGTTCCCGCTGCCGGAGGACCCGCTGCTCGTGCTCGAGGTGTACCGCGGCGACCTGGGGCTCGACGAGGGCGTCCCGCAGAACGTCTACCGCCTGGACACGGCGAACCTCACCGCCTCGGTGGACGACGACGGCGAACGGGTCACGCTGCTGCTCGAACCCGGCGACACCGTCGAGCTGCCCGACGGGCTGGGTACGGTCACCCTCGGTGAGGACGTGCCCCGGTTCGTCGCCCTGGACCTGCGCCACGACCCGTCGCTGGCGTGGGTGCTGTCCTTCGCGCTGCTGGCGCTGCTGGGCCTGACGGGCTCGCTGTTCCTGCCGCGGAGGCGTGTCTGGGTGCGATCATGGACGTCCGACGGCGTCACGCAGGTAGAGGTCGCCGGCCTGGCCCGCGGGGACGACGCCGGGCTGGAGCCCGAGGTCGACCGGCTGCTGACCGCGCTGCCCGGCCTGGAGCGGGCCCGACCGACGAGAACGAGCGAGGAAGACTGA	MSERTYRPEGIADDFTTGAPTSTADAVPGAAGQPPSAPRAPQLGWRGMLRWTWRQLTSMRVALMLLMLLAVAALPGSILPQRDQDPSAVVEYLGEHPTAGEWLDRFGFFDVYTSVWFSAIYLLLLVSLVGCIVPRTIAHARALRARPPRTPVRFERFPVHVTGTTAESPDEVAAAAAAHLRGRWRRMPTFRVEAGAEDARPARGKVPARPATRTVAAERGYLRETGNLLFHLALVGLVISVAVGQLLHYRGQAIITEDRGFANAVVDYDTFESGAWFSPESLVPFAMTLDAFESEFATDTVAFAQSRDFTAEVTVHEPDGSSRAETIKVNHPLDVDGAKIYLQGNGYAPEISVTDAEGATAFDGRVPFLPEDQVYTSRGVVKVPDVSPGLDQIGLIGYFLPTAVLNDDGTAESVFPLPEDPLLVLEVYRGDLGLDEGVPQNVYRLDTANLTASVDDDGERVTLLLEPGDTVELPDGLGTVTLGEDVPRFVALDLRHDPSLAWVLSFALLALLGLTGSLFLPRRRVWVRSWTSDGVTQVEVAGLARGDDAGLEPEVDRLLTALPGLERARPTRTSEED				NA	NA	NA	NA	NA
AK001_01459	795			hypothetical protein	ATGGGGGAGATCTTCGCGACGACGGCGGTGAGCGGCTCGATGCTGCTCGCCGTCCCGGTCGCGCTGGTCGCGGGGCTGGTCTCCTTCGCCTCGCCCTGCGTGCTGCCGCTGGTTCCCGGGTACGTCGGCTACGTGGGCGGCATGGCCGCGGCGAACGCCGGCCCGGCACCGGCCTCCCGGGGCGGCACGACGACGGCGGCACCGCCGGCCGCACCGGCCCGCGGTCGCGTCGTGGCCGGGGTCGGGCTCTTCGTGCTCGGCTTCACCGCCGTGTTCGTCGCGCTCATGGCCGCCGCGGGCGCCGTCGGGGCGTACCTGGTGCGCTACGAGGACCTCCTGACGCGGGTGCTCGGCGTCGTCGTCATCCTCATGGGGGTGGCGTTCCTCGGCGGGATCGGCTGGTTGCAGCGCGAACGCCGTCTGCACGTCAGCCCGAGGACCGGGCTGTGGGGGGCTCCGCTGCTCGGCGTGGTCTTCGGGCTGGGCTGGACGCCCTGCCTGGGGCCGACGCTGGCCGCCGTGCAGTCCCTCGCCCTCGACGAGGCCTCCGCCACGCGCGGCGTCGTCCTCGGCATCGCGTACTGCGTCGGCCTCGGCGTGCCCTTCCTGCTGGTGGCGCTCGGCCTGCAGTCGTCGCAGCGGATGCTCGGCTTCCTGCGCGACCACCGCCGCACGATCATGCGCGTCGGCGGCGGACTGCTCATCGTGATCGGCCTGGCGATGGTGACCGGCCTGTGGGGGGCGACCACCAGCCTGCTGCAGAGCTGGATCAGCGGATACACGACGGTGGTGTGA	MGEIFATTAVSGSMLLAVPVALVAGLVSFASPCVLPLVPGYVGYVGGMAAANAGPAPASRGGTTTAAPPAAPARGRVVAGVGLFVLGFTAVFVALMAAAGAVGAYLVRYEDLLTRVLGVVVILMGVAFLGGIGWLQRERRLHVSPRTGLWGAPLLGVVFGLGWTPCLGPTLAAVQSLALDEASATRGVVLGIAYCVGLGVPFLLVALGLQSSQRMLGFLRDHRRTIMRVGGGLLIVIGLAMVTGLWGATTSLLQSWISGYTTVV				NA	NA	NA	NA	NA
AK001_01460	582	resA		Thiol-disulfide oxidoreductase ResA	ATGCGGCGCCGCCACGCGGCGGGCCTCGCGCTCGCCCTCGGCGCGGCCGTCGGCCTGGCCGGCTGCGGTGCCGCCGACTCCGGCGCGGGCGACGTCGTCGGCCAGGGCTTCGTCTCCGGCGACGGCACCGTCCAGCAGTGGGAACCGGACGACCGCACCGACACGGTGGTCGTCGAGGGAACCAGCTTCGAGGGCGACGAGGTCTCCACCGCCGACTGGCGCGGCGACGTCGTCGTGCTCAACACCTGGTACGCCGGCTGCGCGCCCTGCCGCGCCGAGGCGCCGGCCCTGGTCGAGATCGCCACCGAGCGCGCCGACGAGGGCGTGCACCTGCTGGGGATCAACACCGAGGACGAGGCCGGTGCCGCGTTGGCCTTCCAGCGCACCTTCGAGGTGCCCTACCCGTCCGTCGAGGACCGCAGCGGCCAGGTCGTGGCCGGCCTCTCCGGCGTCGTGCCCCTGCAGGCCGTCCCGTCCACGGTGGTGCTCGACGCCGAGGGCCGGGTGGCGGCACGCGTCGTCGGCGAGGTCTCCGGCACCACCCTGAACGGTCTGATCGACGACGCGCTGGCGGACGCCTGA	MRRRHAAGLALALGAAVGLAGCGAADSGAGDVVGQGFVSGDGTVQQWEPDDRTDTVVVEGTSFEGDEVSTADWRGDVVVLNTWYAGCAPCRAEAPALVEIATERADEGVHLLGINTEDEAGAALAFQRTFEVPYPSVEDRSGQVVAGLSGVVPLQAVPSTVVLDAEGRVAARVVGEVSGTTLNGLIDDALADA				NA	NA	NA	NA	NA
AK001_01461	645		COG0406	putative protein	ATGGCCACCACCACCGTCCATCTGTTGCGGCACGGCGAGGTCCACAACCCCGACGGCGTCCTGTACGGACGCATCCCCGGGTACCGGCTGTCCGACCGCGGCCAGCAGATGGCCCGGCGTGTCGCGGAGCACCTGTCCGGCGCGGGCCGGGACGTCGCCGCCGTCGTGGCGAGCCCCCTCCAGCGTGCCCAGGAGACGGCGCAGCCGATCGCCGACGCCTTCGCGCTCGACCTGGCCACCGACGACCGCCTGATCGAGGCGGGCAACCGCTTCGAGGGCACGACGATCGGCAAGAACCCGGGCCAGCTCGCGCACCCGCGGTTCTGGAAGCTGCTGTGGAACCCGCTGCGGCCGTCGTGGGGCGAGGCCTACGCCGACCAGGCCGTGCGCATGCGGGCCGCCGTCGACGACGCACGCCGCGCCTTCGCCGGGCACGAGGTCGTCCTGGTCAGCCACCAGCTCCCCGTCTGGCTGACGCGTCGGTCCTACGAGGGGCGCCGACTGGCGCACGACCCGCGACGCCGGCAGTGCTCCCTCGCCTCGCTGACGTCGTTGACCTTCACCGACGACCGGTTCGCCGCCCTGCACTACGCGGAGCCCGCGGCCGACCTGCTCGTCGGCGCCAACCCCACCCCGGGCGCCTGA	MATTTVHLLRHGEVHNPDGVLYGRIPGYRLSDRGQQMARRVAEHLSGAGRDVAAVVASPLQRAQETAQPIADAFALDLATDDRLIEAGNRFEGTTIGKNPGQLAHPRFWKLLWNPLRPSWGEAYADQAVRMRAAVDDARRAFAGHEVVLVSHQLPVWLTRRSYEGRRLAHDPRRRQCSLASLTSLTFTDDRFAALHYAEPAADLLVGANPTPGA				NA	NA	NA	NA	NA
AK001_01462	552			hypothetical protein	ATGGCCACGCCCCTGCCTTCGGACCTGTCCACCGGTACCTACACCGTCGACGCCGGCCACTCCACCGCGTCGTTCTCCGTCCGCCACGCCGGGATCTCGAAGGTCCGCGGGACCATCGGCATCACCGCCGGCACCATCACCGTCGGCGAGGACCTCGAGTCCTCCGCCGTCGCCGTCGAGCTCGACGCCGCCGCGATCAACACCGGTGACGAGAACCGTGACCAGCACCTCAAGAGCGCAGACTTCTGGCACGCCGAGGAGCGCCCGACCTGGACCTTCAACTCGACGGCCGTCACCGCCGACGACGACGGCTACGTCGTGACCGGCGACCTGACGATCAACGGCGTGACCCAGAGCATCGACCTGCCGGTCGCCTTCGAGGGCGCCGCGGTGGACCCGTTCGGCAACAAGCGTGCCGGTTTCGAGTCCGAGCTGGTCATCAACCGCAAGGACTTCGGCCTGACCTGGAACGCCGCGCTCGAGACCGGCGGCGTCCTGGTCGGCGAGAAGGTCAAGATCGCCCTCGACGTCTCCGCGATCGAGCAGAACTGA	MATPLPSDLSTGTYTVDAGHSTASFSVRHAGISKVRGTIGITAGTITVGEDLESSAVAVELDAAAINTGDENRDQHLKSADFWHAEERPTWTFNSTAVTADDDGYVVTGDLTINGVTQSIDLPVAFEGAAVDPFGNKRAGFESELVINRKDFGLTWNAALETGGVLVGEKVKIALDVSAIEQN				NA	NA	NA	NA	NA
AK001_01463	693	rex	COG2344	Redox-sensing transcriptional repressor Rex	GTGATCGAGATCGGCGAGGTGACGGTGCCCGCGGCGACGGTGTCGCGGCTGCCGTACTACTTGCGCGCCCTGCGCGACCTGCTGCGGGACGGGGTGACCACGACGTCGTCCTCGGCGCTGGCGGAACGCTCCGGCGTGGGCTCCGCGCAGCTGCGCAAGGACCTGTCCTACCTGGGGTCGTTCGGGACGCGCGGCGTGGGCTACGAGGTCGAGACGCTCGCGTCCTCGATCAGCACGGCGCTGGGTCTGGGCTCGGAGCACCGGCTCGCGATCGTCGGCGTCGGCAACCTCGGCAACGCGCTGGCGAACTACTCGGGCTACGCGGCGAGGGGGTTCCGGCTCGTGGCGCTGATCGACGCCGACCCCGACGTCGTCGGTCGACGCGCGGCAGGTCTGGAGGTGGAGCACTCCGACGGGCTCGAGGAGATCCTGGCCGCGCGGGGAGTGTCCATGGTGATCCTGGCGACCCCCGGCGCGGCGGCGCAGGTCGTCGCCGAGCGGATCGTGGCGTGCGGTGTCCGGGAGATCCTGTCGTTCTCCCCGGTGGCGCTGCAGCTGCCCGACGACGTCGTCGTGCGCAGCGTCGACGTCGCCGGCGAGCTGCAGATCCTCGCGTTCCACGCGGCGGCACGCCACGCGCAGGAAGGCGCGACGGTCGACGGCCGGGCCGCCCCGGCCGCCCCCGCGAGGTAG	MIEIGEVTVPAATVSRLPYYLRALRDLLRDGVTTTSSSALAERSGVGSAQLRKDLSYLGSFGTRGVGYEVETLASSISTALGLGSEHRLAIVGVGNLGNALANYSGYAARGFRLVALIDADPDVVGRRAAGLEVEHSDGLEEILAARGVSMVILATPGAAAQVVAERIVACGVREILSFSPVALQLPDDVVVRSVDVAGELQILAFHAAARHAQEGATVDGRAAPAAPAR				NA	NA	NA	NA	NA
AK001_01464	249			hypothetical protein	GTGGTGATGTACACCCGCCCCGGCTGCCACCTGTGCGACGACGCACGGGAGGTCGTGGCCTCGGTGTGCGAGCGGGCGGGCGCGGCCTGGCGGGAGATCGACATCGAGACCGATGCCGCGCTGACCGAGCGGTACGGCGACTACGTGCCCGTCGTCGAGGTGGACGGCGTGCAGCAGGGGTTCTGGCGGGTGGACGCGGCGAGGCTGGCGCGACGTCTGGCGGCACCTGCGGGAGGGAAGCGGACGTGA	MVMYTRPGCHLCDDAREVVASVCERAGAAWREIDIETDAALTERYGDYVPVVEVDGVQQGFWRVDAARLARRLAAPAGGKRT				NA	NA	NA	NA	NA
AK001_01465	816	serB1	COG0560	Phosphoserine phosphatase SerB1	ATGCCGTCTCATGCCGACTCCCCGGCCAGCCCACCGGCGGCAGCCTTCTTCGACGTCGACAACACGATCATCCGCGGCGCCAGCTCGTTCCACCTGGCCCGCGCGCTCTACCGGCGTCGGTTCTTCGGGACCGTGGACCTGCTGAGGTTCGGGGTGATCCAGGCCAAGTACCTGCTCTTCGGCGAGTCGCGCTCCCAGATCGAGACCGTCCGCAGCCGCGCGCTGTCCCTCATCGCGGGCCGCTCGGTCGCCGAGATCACCGCCGTCGGCGACGAGGTGTACGACACCGTGCTGGAGCTGCGGATCTTCCCCGGCACCAAGCGACTCCTCGACGAGCACCTGGCCGCCGGCGACCAGGTCTGGCTCGTCACCGCCACCCCCGTGGAGATCGGCGGCCTCATCGCCCGCCGGCTCGGGGCGACCGGCTGCCTCGGGACGATCGCCGACCACGAGGGCGGGTACTACACGGGAGCCCTCGTGGGAGACCTCATGCACGGCGAGGCCAAGGGCGCGGCGGTGCGCGAGCTCGCCGAGCGCGAGGGCCTGGACCTGGAGGGGTCCTACGCCTACGGCGACTCGCTGAACGACCTGCCGATGATGCGGTCGGTCGGGCACCCGTGCCCGATCAACCCGGACGCACGCCTGCGTCGGTACGCCAAGGAGGTCGGCTGGCCGATCCGGGAGTTCCGCGGGCGGGGACAGCGCGTCGCCCACCGCGGGGTGCGGACGGCGTCCTGGGCCGGCGCGGCCTGGGTCGCCGGCCTCGTGCTCCGGGCGGCGCAGCGCACCGTGCGCCGACGCATCCGGGGCCGCTGA	MPSHADSPASPPAAAFFDVDNTIIRGASSFHLARALYRRRFFGTVDLLRFGVIQAKYLLFGESRSQIETVRSRALSLIAGRSVAEITAVGDEVYDTVLELRIFPGTKRLLDEHLAAGDQVWLVTATPVEIGGLIARRLGATGCLGTIADHEGGYYTGALVGDLMHGEAKGAAVRELAEREGLDLEGSYAYGDSLNDLPMMRSVGHPCPINPDARLRRYAKEVGWPIREFRGRGQRVAHRGVRTASWAGAAWVAGLVLRAAQRTVRRRIRGR				NA	NA	NA	NA	NA
AK001_01466	99			hypothetical protein	ATGGGCTCCGTCATCAAGAAGCGCCGCAAGCGCATGGCGAAGAAGAAGCACCGCAAGCTGCTGCGCAGGACGCGACACCAGCGTCGCAACAAGAAGTGA	MGSVIKKRRKRMAKKKHRKLLRRTRHQRRNKK				NA	NA	NA	NA	NA
AK001_01467	1176	acuC		Acetoin utilization protein AcuC	ATGTCGGTCGCCCAGTTGCTGTGGAGTCCCGAGCTGCTGCGCTACGACTTCGGCCCCGGTCATCCCATGGCACCGGCGCGACTCGACCTGACGATGCGCCTCGTGGAGGCTCTCGGGCTGCTCGACGCGCCCGGTCTCGAGGTCGTCGACCCGGTCTGCGCGCCCGACGAGGTCGTCGAGACGGTGCACGACGCCGAGTACGTCGCCGCCGTGCGGCGGGCGGCCGAGACGGGGGAGCCGGACGTCGCCCGCGGGCTCGGGACCGAGGACGACCCCGTGTTCCCGGCCATGCACGAGGCCGCTGCCCGTCTCGTCGGCGCCTCCGTCGCCGCCGCGGACGCCGTGTGGGAGGGCCGCGCCCAGCACGCGCTGAACATCGCGGGCGGCATGCACCACGCCCAGCGAGGTGCGGCGTCGGGGTTCTGCGTCTACAACGACGCCGCGGCCGCCGTGCAGCGCCTCCTCGACCGGGGTGCCGAGCGTGTCGCGTACGTCGACCTCGACGCCCACCACGGCGACGGCGTCGAGGCCATCTTCTGGGACGAACCGCGGGTGCTGACCTTCTCGATCCACCAGGACGGCCACACGCTCTTCCCGGGCACCGGGAACCCTGCCGACACGGGCGCCGGTCTGCACCACTGCACCGCGGTCAACGTGGCGGTCCCGCCGCGGACCGACTCCGCGCGCTGGCTGCGTGCCGTCGACGCGGTGCTGCCGACCGTCCTGCGCGAGTTCGCCCCCGACGCCATCGTGTCCCAGCACGGCGCCGACGCCCACGGCAACGACCCGCTCACCGACCTGTCGGTGGGGGTCCACGCCCAGAAGACGGCGGCGCACTGGGTGCACGACCTGGCGCACGAGCTCTGCGACGGCCGGTGGGTCGCCCTGGGCGGCGGGGGCTACGCCGTCGTCGACGTCGTCCCCCTCGTCTGGGCCGCCCTCGTGGCCGAGGCGGCGCACGCGCCGCTCACGACGGGGATGCCGCTGCCGACGGCGTGGCGCGAGGCGGCCGAGGAGATGTCGGGGCTGCGGGCGGCCTCGATGCTGGGCCGGGGCGAGGTCTCCTGGCAGCCCTGGTCGCAGGGGTACGACCCCTCGGACCCGATCGACCGGGCCGTCCTGGCCACCCGACGGCACGTCTTCCCCGAGTTCGGGCTGGACCCGTACCTGGACTGA	MSVAQLLWSPELLRYDFGPGHPMAPARLDLTMRLVEALGLLDAPGLEVVDPVCAPDEVVETVHDAEYVAAVRRAAETGEPDVARGLGTEDDPVFPAMHEAAARLVGASVAAADAVWEGRAQHALNIAGGMHHAQRGAASGFCVYNDAAAAVQRLLDRGAERVAYVDLDAHHGDGVEAIFWDEPRVLTFSIHQDGHTLFPGTGNPADTGAGLHHCTAVNVAVPPRTDSARWLRAVDAVLPTVLREFAPDAIVSQHGADAHGNDPLTDLSVGVHAQKTAAHWVHDLAHELCDGRWVALGGGGYAVVDVVPLVWAALVAEAAHAPLTTGMPLPTAWREAAEEMSGLRAASMLGRGEVSWQPWSQGYDPSDPIDRAVLATRRHVFPEFGLDPYLD	PGPT0008225_309	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008225-acuC-K04768	NA	NA
AK001_01468	1395	ktrB	COG0168	Ktr system potassium uptake protein B	GTGGCACGATCGGTGCAGGACCGCGCGACCTCGGTCCGCGAATGGGTGGACCGGACGGCACGGGAGTACCCGGCACGTCTGGCCATGACCGTCTTCGCCGCCGTCATCACGCTGTTCACGCTGCTGCTCCTGCCGCCGTGGGCGACCGCGTCCGACACCGGGGCGCGGTTCGTGGACGCGTTGTTCACCGCGACGTCCGCGGTCTGCATCACCGGCCTGACGGTGGTGGACACCGCCACGTACTGGTCGGAGTACGGGCGCGCCGTCATCCTCGTCGGGATCAAGGTCGGAGGCCTGGGCGTCATGACGCTCGCCTCCCTGCTCGGGCTGGCGGTCTCGCGGCGCATCGGTCTGACGCAGAAGCTGCTGACCGCCTCGGAGACCAAGACCGGTACCACGCGGCTCGGTGAGGTCGGTTCCCTGATCCGGCTGATCATCGTGGTCTCCACCTCGATCGAGCTGGCGATCGCCCTGATCCTGCTCCCCCGCTTCATCGCCCTCGACGAGCACCTGGGGCTCGCCGTCTGGCACTCGACGTTCTACGGCATCTCGGCCTTCAACAACGCCGGCTTCGTGCCCACCGTGGACGGTCTGACGCCGTACGCCTCGGACTGGCTGGTCATCGTGCCGATCGTCGTGGGGGTGTTCATCGGCGCCCTCGGGTTCCCGGTGATGCTGAACCTCCTGCAGGCGCGCCGGTACGGGCGCCGGTTCGTGCGGCACCTGTCGCTGCACACCAAGCTGACGATCACGACCAGCGTGGCTCTCATGGTCGCGGGGTTCGTGACGATCGGGGCGATGGAGTGGGCGAACCCGGCCACGCTCGGCGGTCAGGACCTGCACACCAAGTTCCTCTCGGCCCTCACGGCGGCGGTGATGCCCCGCTCCGGCGGCTTCAGCACCTTCGACGTCGGCGAGATGCGGGCGGAGTCGTGGCTCATCACCGACGCACTGATGTTCGTCGGTGGCGGGTCCGCGTCCACGGCCGGCGGCATCAAGGTCACCACCCTGGCCGTCATGCTCCTGGCGATCGTGGCCGAGGCGCGCGGCGACCGGGACGTCGACGTCTTCGGCCGACGCATCCCGCGGGACACCCTGCGCCTGTCCATCGCGGTGGTGTTCATCGGCGCCACGATGGTGCTGGTGTCCTGCATCGCGCTGGTCCGGCTCACCGACTTCTCGCTCTCGCAGATCCTGTTCGAGGTCATCTCCGCCTTCGCGACGGTGGGACTGTCGACGGGGATCACCGGTGACCTGCCGGACGGGGCGAAGTACTGGTTGAGCGCCCTGATGTACCTCGGACGCGTCGGCACGATCTCGGTGCTCGGTGCGCTGGCGCTGCGCGACCGGCGCCGCGTCATACGCTTCCCCGAGGAGCGCCCCATCATCGGGTGA	MARSVQDRATSVREWVDRTAREYPARLAMTVFAAVITLFTLLLLPPWATASDTGARFVDALFTATSAVCITGLTVVDTATYWSEYGRAVILVGIKVGGLGVMTLASLLGLAVSRRIGLTQKLLTASETKTGTTRLGEVGSLIRLIIVVSTSIELAIALILLPRFIALDEHLGLAVWHSTFYGISAFNNAGFVPTVDGLTPYASDWLVIVPIVVGVFIGALGFPVMLNLLQARRYGRRFVRHLSLHTKLTITTSVALMVAGFVTIGAMEWANPATLGGQDLHTKFLSALTAAVMPRSGGFSTFDVGEMRAESWLITDALMFVGGGSASTAGGIKVTTLAVMLLAIVAEARGDRDVDVFGRRIPRDTLRLSIAVVFIGATMVLVSCIALVRLTDFSLSQILFEVISAFATVGLSTGITGDLPDGAKYWLSALMYLGRVGTISVLGALALRDRRRVIRFPEERPIIG	PGPT0002735_3394	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498	NA	NA
AK001_01469	669	ktrA	COG0569	Ktr system potassium uptake protein A	GTGGCAGAGAAGAAGGACGACCGCGACGCCGGCGTGCTGGTCATCGGGCTGGGCCGCTTCGGCTCGTCGTTGGCGACGACCCTGGACCGGCTCGGCCAGGACGTCCTCGCCGTCGAGAGCGACGACCGCCTCGTCACGCAGTGGTCGGGGCGCCTGCCGCTGGTCCAGGCGGACGCGTCCAACCCGGAGGCGCTCGAGCAGCTCGGTGCGCAGGACTTCGGCGTCGCGGTGGTCGGCGTGGGCACGGAGCTCGAGGCGTCGGTCCTCATCACCGGCAACCTCGTCGACCTGGGCACGCCGCAGATCTGGGCGAAGGCCGTCTCGGCCGAGCACGGCCGCATCCTGACCCGGATCGGCGCCCACCACGTCGTCTACCCCGAGTCCGACGCCGGTTCGCGGGTCGCGCACCTGGTCAGCGGCAAGATGCTCGACTACATCGAGGTGGAGGACGGCTTCACGATCGTCAAGATGCGTCCGCCGCGCGAGATGCAGGGCTTCACCCTGGCCCAGTCGGACATCCGCAAGAAGTACGGCATCACGGTGATCGGCGTGAAGTCGCCGGGCATCGAGTTCACCTACGCGACCCCGGAGACGCGGGTCAGCGCGAACGACCTGCTGGTCTGCTCCGGCCACGCCGACCTGCTGGAGCGGTTCTCGGCGCGGCCGTGA	MAEKKDDRDAGVLVIGLGRFGSSLATTLDRLGQDVLAVESDDRLVTQWSGRLPLVQADASNPEALEQLGAQDFGVAVVGVGTELEASVLITGNLVDLGTPQIWAKAVSAEHGRILTRIGAHHVVYPESDAGSRVAHLVSGKMLDYIEVEDGFTIVKMRPPREMQGFTLAQSDIRKKYGITVIGVKSPGIEFTYATPETRVSANDLLVCSGHADLLERFSARP	PGPT0002710_3509	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499	NA	NA
AK001_01470	1062	ybhR	COG0842	putative multidrug ABC transporter permease YbhR	GTGCGCGCGATGATCGTCAAGGAGTTCCGCGAGCTGCGCCGGGACCGGCGCACCGTCGCGATGCTCGTCGCCCTGCCCCTGCTGATGCTGGTGATCTTCGGGTACGCCGCGAACTTCACCGTCGACGAGCTGAGGGTCGCCGTCGTGGGCGACCTGGCCGAGCAGGCCGAGCAGCAGATCACCCAGCAGGTGCCCGCCGACGCGCCCGCCACGCTGGACCTGGTCGACGTCGACCCGGACGCCGGCGCGCAGCAGGCACGCGACGCGCTCCGCGACGACGAGGTCGACCTCGCCATCCTCACCGGGGACGCGTCGGACGCCGACGGCGGCCGCCCCACCGTCCTCGTCGACGGCTCCAACCTCTTCGCCGCCCAGAGCGCGTCGGTCCTGGTCGCCCAGCTCGGCGACCGCGTCGAGTCCGAGATCCTCTACAACCCGGACCTCGAGACCTCCTGGGTGATGGTCCCGGCGATCATCGGCCTGATCCTGACCTTCATCGGGACGATCATCACGAGCATCGGGCTCGTCAGGGAACGGGAGGCGGGCACCCTCGAGCAGCTCGCGGTGATGCCGCTGTCCCCGACGTCGGTCGTGACGGGCAAGATCTCGCCGTACTTCCTGCTCGCCTGCTTCGACATGGTCCTGGTGACCCTGCTCGGCGTCTGGCTGTTCGGGGTCCCGTTCCGCGGCTCGGTGCTGCTCTTCGCCATCGGCGCGGCGATCTTCCTGTTCGCCGTCCTCGGCATCGGCGTGCTCATCTCGACGGTCTCGCAGACCACCGGCCAGGCCGTGCAGGTCGCCCTGATGACGATGCTGCCGCAGATCCTGCTGTCCGGGATGATCTTCCCCCTGGACGCCATGGCCGCGGGCGTGCGCTGGATCGGCTACCTGCTGCCGCTGACGTGGTTCGTCAAGCTCTCCCAGGGCGTCATGCTGCGCGGCGCCGGCTGGGAGTCGATGTGGCTGCCCGTCGTCGTCCTGACCGGGATGGCGATCCTCGTCTTCGGCGTCGCGGTGATCCGCCTGCGCCGCGACATCGCCCCGGCACGGGGAGCCCGCTGA	MRAMIVKEFRELRRDRRTVAMLVALPLLMLVIFGYAANFTVDELRVAVVGDLAEQAEQQITQQVPADAPATLDLVDVDPDAGAQQARDALRDDEVDLAILTGDASDADGGRPTVLVDGSNLFAAQSASVLVAQLGDRVESEILYNPDLETSWVMVPAIIGLILTFIGTIITSIGLVREREAGTLEQLAVMPLSPTSVVTGKISPYFLLACFDMVLVTLLGVWLFGVPFRGSVLLFAIGAAIFLFAVLGIGVLISTVSQTTGQAVQVALMTMLPQILLSGMIFPLDAMAAGVRWIGYLLPLTWFVKLSQGVMLRGAGWESMWLPVVVLTGMAILVFGVAVIRLRRDIAPARGAR	PGPT0006730_8092	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_01471	813	btuD_6		Vitamin B12 import ATP-binding protein BtuD	ATGCCCGGCGCCCGCGACCTCACCGTCGAGCTGGCCGGCACGACGGCGCTGTCCGGCGTGAGCGTCGACCTCCCCGCCGGCCAGGTGACCGCCGTCGTCGGCGGCGACGGAGCCGGCAAGACGACGCTGCTGCGTGCCCTGCTGGGCCGCGTCGCCACCAGCGGCGGCACGGTGGACGTCCCGCCCCCGGAGCGCATCGGCTACGAACCGTCCACGTCCGGGGTCTGGCCCACCCTGTCGGTCAGCGAGAACGTCGAGTTCGTCGGCTCCGCCTACGGGCTCTCCGGCGACCGGCTCCGCTCCCGCGCCGCCACGCTGCTGGCGACGGCCGGGATCGACGACGTGCCCGACCGTCTCGGTCGGGACCTGTCCGGCGGGATGCGGCAGAAGCTCGGGTTCTGCCTGGCGATGCTGCACTCCCCCGACCTGTTGCTGCTGGACGAGCCGTCGACCGGCGTCGACCCGGTCAGCCGGGTCGAGCTGTGGCGGCTCGTCACGGCCGCGGCCCGGGACGGGGCCTCTGTCCTGATGACCACGACCTACCTCGACGAGGCCGAGCGGGCCGCGACGGTCGTGGCCCTGCAGGAGGGCCGTGTCCTCGCGTCCGGCGGGCCCGACGACGTCGTCGGCACCGTGCCGGGGACGGTCTCGGTCGGCGACGCCCCGCCCGGTGGGCGCCGTGCCTGGCGGCGCGGGCGCTCGTTCCACAGCTGGACGCCCGACGGCGAGGAGCCTCCGGGCCGACCGGTCGTGCCGGACCTCGAGGACACCCTCATCGCCCTGACGCTCGCCCGATCCGAGGAGCCCCGATGA	MPGARDLTVELAGTTALSGVSVDLPAGQVTAVVGGDGAGKTTLLRALLGRVATSGGTVDVPPPERIGYEPSTSGVWPTLSVSENVEFVGSAYGLSGDRLRSRAATLLATAGIDDVPDRLGRDLSGGMRQKLGFCLAMLHSPDLLLLDEPSTGVDPVSRVELWRLVTAAARDGASVLMTTTYLDEAERAATVVALQEGRVLASGGPDDVVGTVPGTVSVGDAPPGGRRAWRRGRSFHSWTPDGEEPPGRPVVPDLEDTLIALTLARSEEPR	PGPT0006725_273	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_01472	876	btuD_7		Vitamin B12 import ATP-binding protein BtuD	ATGACCGTCCTCGTCCGCGCCGACGACGTCACCAAGCGCTTCGGCCGCTTCGCCGCCGTGGAGGACATGTCCCTGGAGGTCCGTCCCGGGGAGATCGTCGGCCTGCTCGGGTCCAACGGCGCCGGCAAGACCACCCTCCTGCGCGTGCTGCTCGGGCTCGAGGCCGCCGACGCGGGCCGCGTCGAGGTCCTCGGCGACCCGCCGGCCGACGCCGACCGGCACGCCCTCGGCTACGTGCCCCAGGGGCTCGGGCTCTCGCAGTCGCTCAGCGTGCGGCAGAACGTCGAGTTCATGGCCGCCACCTTCTCGGTGCGCCACGCCCCGGCGCTGCCCGCGGCCCTGCAGGCCGTCGCCGACGAACCCGTCGGGCGCATCGGCCTCGGTCGCCAGCGCCAGCTCGCCTTCCACTGCGCCCTGCTGCACTCCCCGCGGCTGCTCGTGCTCGACGAGCCGACCTCCGGCGTCGACCCGCTCGCCCGGGCGCGGCTGTGGGACACGATCCACGCCCAGGCCGAGGCAGGGACCGGTGTGCTCGTCACGACGCACTACATGCAGGAGGGCGAGCAGTGCGACCGCCTGGTGATCATGTCCCGGGGACGCGGCGTGGCCCGCGGCACGGTCGACGACATCACGGCGTCCTCGCGGACCGCCGTCGTGCGCGCCGAGGACTGGGCCGCGGCCTTCGCCGCGCTGGACGACGCCGAGCTGCCCGTCGTGCTCGCGGGCCGCACCAGCCGCGTGGCCGGCACGGATCCCGGGGACGTGCGGGCCGTGCTGGACGCGGCGGGCGTGGACGCCGAGGTCACCGCGGAACCGGCCACCCTCGAGGAGGCGATGGTGCTCATCGAGCAGTCGTCGCGTCCAGGTCCCCGGTGA	MTVLVRADDVTKRFGRFAAVEDMSLEVRPGEIVGLLGSNGAGKTTLLRVLLGLEAADAGRVEVLGDPPADADRHALGYVPQGLGLSQSLSVRQNVEFMAATFSVRHAPALPAALQAVADEPVGRIGLGRQRQLAFHCALLHSPRLLVLDEPTSGVDPLARARLWDTIHAQAEAGTGVLVTTHYMQEGEQCDRLVIMSRGRGVARGTVDDITASSRTAVVRAEDWAAAFAALDDAELPVVLAGRTSRVAGTDPGDVRAVLDAAGVDAEVTAEPATLEEAMVLIEQSSRPGPR	PGPT0006725_273	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_01473	612	betI		HTH-type transcriptional regulator BetI	ATGTCCGACCAGCCGCGCCGCGGACGCCGTCCTGCCGGTCACAGCACCCGCAGGACGGTGCTGGAGGCCGCCCGGGCGGAGTTCGACGAGCGGGGCTACGAGGCCGTGTCCGTGCGCGGCGTGGCCCGGCGGGCCGGTGTCGACCCGGGCACCGTGCGGCACTGGTTCGCCGGCAAGACCGAGCTGCTCGCCGCCACGCTGGGCCTGACCGACATCGACCCGTCGGCCATCACGCGGTCCGCCGCCGAGGGCCCGGTCGAGGACCTGGGCGAACGGCTCGTGCGGGCGGTCGTGCGGGCGTGGGACGCCGACGGCGGCGCGACGGTGCGCATGGTGGTCCCGGCGATCATGGCCGACCCGGGGCTGCGGACCCTGCTGCAGCGGTTCCTGGGCGCCGAGGTGCTCGGGCCGATCGTGCGGCGGCTGGACGTCTCGGACGCCGAGCTGCGCACCACGCTGGCCGGGTCGCAGGTGGCCGGGCTGATGATGCTGCGCTACGTGGTCGGCGTCGAACCGCTGGCGTCCCTGCCGGCCGACGAGCTCGCGCCGCTGGTGGGCCCGACGCTGCAGCGCTATCTCACCGGGGACCTGGACGCGACGACTGCTCGATGA	MSDQPRRGRRPAGHSTRRTVLEAARAEFDERGYEAVSVRGVARRAGVDPGTVRHWFAGKTELLAATLGLTDIDPSAITRSAAEGPVEDLGERLVRAVVRAWDADGGATVRMVVPAIMADPGLRTLLQRFLGAEVLGPIVRRLDVSDAELRTTLAGSQVAGLMMLRYVVGVEPLASLPADELAPLVGPTLQRYLTGDLDATTAR				NA	NA	NA	NA	NA
AK001_01474	828	proC	COG0345	Pyrroline-5-carboxylate reductase	GTGAGTACGCAGATCGCCGGGACGAGGGTCGCCGTCGTGGGGACCGGGACGATGGCGGAGGCCGTCCTGGCCGGTGCCCTGGCCTCGGGACTCGAGCCGGCCGACGTCGTGGCCACCGCGCGGCGCGAGGCCCGCGGGGCCGAGCTGGCCCGGACCTACGGCGTGGCCACCACGACGGACAACGCCGCCGCCGTGGCCGACGCACGGGTCGTCCTCGTCGGGGTCAAGCCCAAGGACGTCGCCGCGGTGCTCGACGAGATCGGTCCGGCCCTGCCCGCGGACGCCGTGGTCGTCAGCGTCGCCGTCGGCCTGCCGCTGTCCCTGTACGCCCGGCACCTGCCCGACGGCCAGCCCGTGGTGCGCACCATGCCCAACACGCCGGCGCAGGTCGGCGCCGGGGTCACCGCCGTCGTGCCCGGACCGACGACCGCCGAGCCCGACGTCGCCCTCGTCGAGGCCCTGCTGGCCGGGACCGGGCAGACCCTGCGCATCACCGAGAAGGAGATCGACGCGTTCGGCGCGCTCGCCGGGTCCGGCCCCGCCTACGTGTTCTACGTCGTGGACGCCATGGCCGAGGCCGGCGTGCTCATGGGCCTGACCCGCGAGGTGGCGCGCAGCCTGGCCGTGCAGACGGTGCTCGGCTCCGGGCGCCTCCTCGCCGAGACGGGGGAGCACCCGGCGATCCTGCGCGAGAAGGTCTCCTCGCCCGGCGGCACCACGATCCAGGCGCTCAAGCGGCTCGACGACGGCGGCGTCCGGGCGGCCTTCCTCACCGCCCTGGAGGCGGCACGGGACCGCTCGGCGGAGCTCGGTCGCGAGCTCGGCTGA	MSTQIAGTRVAVVGTGTMAEAVLAGALASGLEPADVVATARREARGAELARTYGVATTTDNAAAVADARVVLVGVKPKDVAAVLDEIGPALPADAVVVSVAVGLPLSLYARHLPDGQPVVRTMPNTPAQVGAGVTAVVPGPTTAEPDVALVEALLAGTGQTLRITEKEIDAFGALAGSGPAYVFYVVDAMAEAGVLMGLTREVARSLAVQTVLGSGRLLAETGEHPAILREKVSSPGGTTIQALKRLDDGGVRAAFLTALEAARDRSAELGRELG	PGPT0014225_2001	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286	NA	NA
AK001_01475	663			hypothetical protein	ATGGCCGACCGCAAGCCGGGGTACATGACCCCGGGATTCCGGACACCGGGGGAGAAGGTGCACCAGAAGAGCTCACGTGCGGCGCAGGTGCGCCGCCGCCGCGTCGTCCTGGCCGTCGTGCTCCTCGTCGTGGCAGTCGTCGCCGTCGTCACCGCGTTCTTCTGGCCCGGGTTCGCCCGGCAGGAGGCCGAGCCCCTCCCGGAGGTCACCGTCACCGCGGCCCCGCCGACGCCCACGGCCGAGGCGAGCCCGCTGCCCGAGGACGCCACCGACTTCCTGTCCGCGATGCCGGACTCCGCGCTGCAGCTCGTGCGTCTCGACACCGCCGAGGGCGGGTGGATCGAGGAGGTCGACGCCGTCGAGGCGTGGGAGATCGTGTACGCCGACGGGTCCGAGGGCGGTGAGCAGGTCGACCTCGTCACCGGTCAGTGGCCCGACGGGGACGCGGCAGCCGAGGTCTACACCTCCTTGCTGCAGGCCGCCGGCGAGCCGGTCGCCGAGGGGGACGTGACGGTCGGCGGCGAGGCGGTCGGCGACTACGCCGTCACCCCCGGGTCGGCGGCGGGCGAGTCCGTGGTCACCTGGCGCAACGACACGGCCGTCTTCCAGGCCACCGGCCCCGACCAGCTCGTCCAGGACTTCTACGAGACCTTCCCGATGTGA	MADRKPGYMTPGFRTPGEKVHQKSSRAAQVRRRRVVLAVVLLVVAVVAVVTAFFWPGFARQEAEPLPEVTVTAAPPTPTAEASPLPEDATDFLSAMPDSALQLVRLDTAEGGWIEEVDAVEAWEIVYADGSEGGEQVDLVTGQWPDGDAAAEVYTSLLQAAGEPVAEGDVTVGGEAVGDYAVTPGSAAGESVVTWRNDTAVFQATGPDQLVQDFYETFPM				NA	NA	NA	NA	NA
AK001_01476	1455	radA	COG1066	DNA repair protein RadA	GTGGCGCCGCCTAGCGTGACCTTCGTGAGCACCACGACCTCCTCGCGCGCGGGCCGCGCCAAGAGCTCCCGGCCGACCTTCCGCTGCACCGAGTGCGGCTGGACGACGGTGAAGTGGGTGGGTCGCTGCGGAGAGTGCCAGGCGTGGGGCACCGTCGCCGAGGAGGGTCCGGCGGCCGCCGGGCCGCGCACGACGGCGGTGAACCCGGTGCGCTCGGCCGCCCGGCCGATCGCGGAGATCGACGTCGACGCGGCACGCGCCACCCCGACGGGCGTGGCGGAGCTGGACCGCGTCCTGGGCGGCGGGCTGGTGCCGGGAGCGGTCGTCCTGCTCGCCGGCGAGCCCGGCGTCGGCAAGTCCACGCTGCTGCTGTCCGTCGCCTCGAACGCGGCGCGCGGCGCCGACGGCGAGGGCCCGCGCACGGTGCTGTACGTGACCGGCGAGGAGTCGGCCGGTCAGGTGCGGCTGCGCGCCGAGCGGATCGGCGCGCTGGCCCCCACCCTGCTCCTGGCGGCGGAGACCGACCTGGCCACCCTGCTCGGCCACCTGGACGCCGCCGACCCCGCGCTGCTCGTCGTGGACTCGGTGCAGACGATCGCCTCCGCCGAGGTCGAGGGGGTACCCGGCGGCGTCAGCCAGGTGCGCGAGGTCGCCGGCGCGCTCATCGCCGCCGCGAAGGAGCGGCAGGTCCCGGTGCTCCTGGTCGGGCACGTGACGAAGGACGGCGCCGTCGCCGGCCCGCGGACCCTGGAGCACCTGGTCGACGTCGTCTGCCAGTTCGAGGGGGACCGGCACTCCCGGCTGCGGATGGTCCGGGCGGTCAAGAACCGTTTCGGCCCGACCGACGAGGTCGGGTGCTTCGACCTGTCCGAGTCGGGCATCGAGGGGCTGAGCGACCCGAGCGGGCTGTTCCTCTCCCACCTGGGGGCCGGCGTGCCGGGCACCTGCGTGACGGTCACGCTGGAAGGACGTCGTCCGCTGGCGCTGGAGATCCAGTCGCTCGTGGCGCCGTCGCCCCTGGCCAACCCGCGCCGAGCGACCAGCGGCGTCGAGTCGCAGCGGCTCGCGATGATCCTCGCGGTGCTGCACCGGCACGCCGGCCTGCGCCTCGCCGACGCCGACGTGTACGCCTCCACGATCGGCGGGGCCCGGGTCACGGAGCCCGCCGCCGACCTGGCCACCGCCCTGGCGATCGTCTCCGCACGCAACGGCGAGGCGCTGCCCGCCGGCACCGTCGCCGTCGGGGAGGTCGGGCTCGCCGGCGACATCCGTCCGGTGACGGGTCTGGAGCGGCGGCTCACCGAGGCGGCCCGGCTCGGGTTCAGCCGCGCCGTCGTCCCGGCAGGCGTCTCGGTCCGCGCGCCGGCGGGTCTGCGGCTGGCAGAAGCGCGGCACATCGCCGAGGCCGTCGAGCTGGCCTCCGCCGCGCCGGCCGAACCCGGCCGTAGCCGCTGA	MAPPSVTFVSTTTSSRAGRAKSSRPTFRCTECGWTTVKWVGRCGECQAWGTVAEEGPAAAGPRTTAVNPVRSAARPIAEIDVDAARATPTGVAELDRVLGGGLVPGAVVLLAGEPGVGKSTLLLSVASNAARGADGEGPRTVLYVTGEESAGQVRLRAERIGALAPTLLLAAETDLATLLGHLDAADPALLVVDSVQTIASAEVEGVPGGVSQVREVAGALIAAAKERQVPVLLVGHVTKDGAVAGPRTLEHLVDVVCQFEGDRHSRLRMVRAVKNRFGPTDEVGCFDLSESGIEGLSDPSGLFLSHLGAGVPGTCVTVTLEGRRPLALEIQSLVAPSPLANPRRATSGVESQRLAMILAVLHRHAGLRLADADVYASTIGGARVTEPAADLATALAIVSARNGEALPAGTVAVGEVGLAGDIRPVTGLERRLTEAARLGFSRAVVPAGVSVRAPAGLRLAEARHIAEAVELASAAPAEPGRSR	PGPT0014905_543	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485	NA	NA
AK001_01477	1086	disA	COG1623	DNA integrity scanning protein DisA	GTGGCCCCCTCCATCGCGCAACCCGACGCCCTGCTGCGGGAGACGCTTGCCGCCGTCGCGCCGGGCACCGAGCTCCGCGACGGTCTGGAGCGCATCCTGCGGGGCCGCACCGGCGCCCTGATCGTGCTCGGCCTGGACAAGACGGTCGAGGAGATCTGCTCCGGCGGGTTCGAGCTGGACGTCGAGTTCTCCGCGACGCGCCTGCGCGAGCTGTCCAAGATGGACGGCGCGGTCGTGCTCGACCGGGACGCCACCCGCATCCGCCGCGCCGCCGTCCAGCTGCTGCCGGACCCGACCATCGAGACCAGCGAGTCGGGCACCCGGCACCGGACCGCCGAGCGGGTCGCGAAGCAGACGGGGTTCCCCATCGTCTCGGTCAGCCAGTCGATGCGGATCGTGGCGATCTACACCGGGTCGGTGCGTCACGTGCTGGAGGACTCCGACACCATCCTGGGCCGCGCCAACCAGGCCCTGGCCACCCTCGAGCGCTACCGCTCCCGCCTCGACGAGGTCTCCGGCACGCTGTCCGCGCTGGAGATCGAGGACCTGGTCACCGTGCGGGACGTCTGCGCGGTGGTCCAGCGCCTCGAGATGGTCCGGCGCATCTCGGACGAGATCGACGGCTACGTGGTCGAGCTCGGCACCGACGGGCGCCTGCTCGCGCTCCAGCTCGACGAGCTGCTCGGCGGCATCGGCTCGGACCGCGACCTCGTCGTGCGCGACTACGTCGACGTCGAGCGCACCGGCCGCAGCCTGACGGCCGTGCACGCCGACCTGGCGCGGCTCGACTCCTCCCAGCTCCTCGACCTGTCGGAGATCGGCCGGGTCCTGCGGATGCCCGGTGCGGGCGTCGCGCTCGACGCCGCCGTGGCGCCGCACGGCTACCGGCTGCTGTCCAAGGTCCCGCGCCTGCCCGGCACCATCGTCGAGCGTCTGGTCGCCCACTTCGGGGGCCTGCAGAAGCTGCTCGCCGCGAGCGTCGACGACCTCATGAGCGTCGAGGGCGTCGGGGACCACCGGGCACGCGCCGTCCGCGAGGGCCTGTCGCGTCTGGCGGAGTCCAGCATCCTCGAACGGTACGTCTGA	MAPSIAQPDALLRETLAAVAPGTELRDGLERILRGRTGALIVLGLDKTVEEICSGGFELDVEFSATRLRELSKMDGAVVLDRDATRIRRAAVQLLPDPTIETSESGTRHRTAERVAKQTGFPIVSVSQSMRIVAIYTGSVRHVLEDSDTILGRANQALATLERYRSRLDEVSGTLSALEIEDLVTVRDVCAVVQRLEMVRRISDEIDGYVVELGTDGRLLALQLDELLGGIGSDRDLVVRDYVDVERTGRSLTAVHADLARLDSSQLLDLSEIGRVLRMPGAGVALDAAVAPHGYRLLSKVPRLPGTIVERLVAHFGGLQKLLAASVDDLMSVEGVGDHRARAVREGLSRLAESSILERYV	PGPT0014770_217	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067	NA	NA
AK001_01478	891			hypothetical protein	GTGACGACCAACGGGCTGGTGGCCCCCGGGAGCACGCCGCGACCCCGGTCGCGCACGGCCCCGGCGAAGCGTCGACGGCGCACCCACCGCGGGTTCGCCGTCGTCCTGCTGGTGATCGGGCTGCTCGTCGGCACCGGGACGGCGGCGGGCTACGGCATCGGCCGGGCCGTGGACTGGGTCCGTGACGCCTGGCCCGAGCCGCCGCTGGAGCTGGTGGCCGACAAGGCCGCGCCGCCCGAGGCGCTCGACCCCGCGGGTGTCGCCGAGACCTGCGACCCCTCGGCGGTCCGCGCCGAGCTCACCGGGAACCGGACCTCTCTCGTGCTGGACGAGGCGATGTCGATGACGATGAGCGTGACCAACGGGGGACGGGTGCCGTGCCTGCTGGACGGGCACCGCTCGAGCATGCAGGTCGTCGTCACGGAGGCGGACGGCGGCGACCGTGTCTGGTCCTCGGCGGACTGCGTCGGAGGGGGCGAGGAGCTCGTCCTGCTCGGTACCGACCAGCGCTGGGAGCTGACGGTCCGGTGGACCGGCAGCGGCTCCACGCCCGACTGCGCGTCGGTGGGTGACGTCCCGGCCGGCGCCTACACGGCCTCGGTCCGGCTCGACGACGTCCCCGGGGTGCGGGGCGAGCCGCTCACGATCGCGGTGGAGGAGGCGCCGGAGCCCGAGCCGCAGGACGAGGAGGGCGCCCAGGCGGCCGACGGCGAGGCGTCCGGGGACACGGCGGACGGTACCCAGGAGCAGGCCGACGGCGAGACCTCCGAGCAGGACGGCCCCGGGGACAAGGCGTCCGAGAAGTCGGGCGGCCGGTCCGAGTCCGGGCAGAAGAAGGGGGACAAGCAGGACGGCGAGGCGTCCGACCGCGGCGGCCGGGGCGGGGACTGA	MTTNGLVAPGSTPRPRSRTAPAKRRRRTHRGFAVVLLVIGLLVGTGTAAGYGIGRAVDWVRDAWPEPPLELVADKAAPPEALDPAGVAETCDPSAVRAELTGNRTSLVLDEAMSMTMSVTNGGRVPCLLDGHRSSMQVVVTEADGGDRVWSSADCVGGGEELVLLGTDQRWELTVRWTGSGSTPDCASVGDVPAGAYTASVRLDDVPGVRGEPLTIAVEEAPEPEPQDEEGAQAADGEASGDTADGTQEQADGETSEQDGPGDKASEKSGGRSESGQKKGDKQDGEASDRGGRGGD				NA	NA	NA	NA	NA
AK001_01479	909	mutY	COG1194	Adenine DNA glycosylase	GTGCCGGACACGCCGGGCGAACAGGCACAATGGGCGATCGTGGATGCTCTGGTCGAACGAGTCACGGCATGGTTCGCCGACGTCGCACGCGACCTGCCCTGGCGCGCCCCGGACCGGACGCCCTGGGGCGTGCTCGTCAGCGAGGTCATGCTCCAGCAGACCCCCGTGGTCCGCGTCGAGCCGGTCTGGCACGAGTGGATGGGACGCTGGCCGAGCCCGGCCGACCTCGCCGCGGCGCCGACGTCCGAGGTGCTGCGCGCCTGGGGCCGGCTCGGCTACCCCCGCCGGGCGCTGCGGCTGGCCGACTGCGCCCGGGCGATCGTCGAGCGCCACGGCGGCGCCGTGCCGTCCGACGAGAAGGCGCTGCGAGCGCTGCCGGGTGTCGGCGAGTACACCGCCGCGGCGGTCCGGGCCTTCGCCTTCGGGCGCCGGGCCGTCGTGGTGGACACGAACGTGCGCCGCGTGCAGGCACGCGCGGTCACCGGCGACGCCCTCCCGGCGCCGTCGTACACGGCGGCCGAGCGTCGGCTCGCCGCGTCCCTGGTGCCCGACGGCGACACGGACGCCGCCGCGTGGGCCGCGGCCTCGATGGAGCTCGGTGCCGTGGTGTGCACGGCCCGTGTCCCGCGGTGCGACGTCTGCCCGGTCCGCGACCTGTGCGCCTGGCGTGTGGCGGGCTTCCCCCCGGACGAGCACGCCCACCGCCGGCGCACCCAGTCGTGGGACGGCACCGACCGACAGGTGCGTGGTCGGGTGATGGCGGCGCTGCGCGGCGCCGACGGTCCGGTCCCCCGCGAGCTGCTCACCGACGCCGGCCCCGAGGCCCAGCTCGACCGGTGCCTGGCCGGGCTCGTCGAGGACGGGCTCGCCGAGACCGACGAGGCGGGTCGCTTCATGCTCCCGGTCTGA	MPDTPGEQAQWAIVDALVERVTAWFADVARDLPWRAPDRTPWGVLVSEVMLQQTPVVRVEPVWHEWMGRWPSPADLAAAPTSEVLRAWGRLGYPRRALRLADCARAIVERHGGAVPSDEKALRALPGVGEYTAAAVRAFAFGRRAVVVDTNVRRVQARAVTGDALPAPSYTAAERRLAASLVPDGDTDAAAWAAASMELGAVVCTARVPRCDVCPVRDLCAWRVAGFPPDEHAHRRRTQSWDGTDRQVRGRVMAALRGADGPVPRELLTDAGPEAQLDRCLAGLVEDGLAETDEAGRFMLPV	PGPT0014770_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067	NA	NA
AK001_01480	2043	beta-galIII		Beta-galactosidase III	ATGACCGACGCACGCCGTCTGCTCGGCGGTTCCGAGCTCGACATCCCGCCACGGATCGGCTTCGGCGCCGACTACAACCCCGACCAGTGGCCGCGCGAGGTGTGGGCCGAGGACGCCCGGCTCATGCAGGCTGCCGGTGTCAACGTCGTCTCGCTCGCCATCTTCTCCTGGGCTCGGCTGCAGCCCGGGCCGGACGAGTGGGACTTCGAATGGCTCGACGAGGTCATGGACCTGCTGCACGCCCACGGCATCAGCGTCGACCTCGCCACCGCGACGGCCTCGCCTCCGCCGTGGCTGACCGCGCTGCACCCCGAGATCCTGCCCGTGACCCGGACCGGGGAGACCCTGTGGCCGGGCGGCCGCCAGCAGTGGCGGCCCACCTCGCCGGTGTTCCGCCGGTACGCCCTGGCCCTGGTCGAGAGGCTGGCCGAGCGCTACGGCGACCACCCGGCGCTCGCCGGGTGGCACGTCAGCAACGAGCTCGGGTGCCACAACGCGCACGACTACTCCGACGACGCCGCGCGTGCCTTCCGGCACTGGCTCCAGGAGCGCTACACGACGCTGGACCGGCTCAACGAGGCCTGGGGCACGGCCTTCTGGTCGCAGCGGTACACGGACTGGGAGCAGATCCTGCCTCCGCGGCTCGCGGCGTCGTACCCGAACCCCACCCAGCAGATCGACTTCAAGCGGTTCTCCTCGGACGCCCTGGTCGAGCACCTGCGCGTCGAGCGCGACGTGCTGCGCCGCATCACGCCCGGGATCCCCGTGACCACCAACTTCATGGTGATGGGCGAGACCCAGGCCATGAACTACCCGACCTGGGCGCCCGAGATCGACTTCGTGTCCAACGACCACTACCTCCACCCCGGCCCGCAGGGCATGGACGAGTTGTCGTTCTCCGCGAACCTCACCAGCGGCGTGGCCGGCGGAGACCCCTGGTTCCTCATGGAGCACTCCACGTCAGCCGTGAACTGGCAGGAGATCAACACTCCCAAGCTGCCCGGCGAGCTCGCGCGGGACTCGCTCACGCACGTGGCGCACGGTGCCGACGCCGTCTGCTTCTTCCAGTGGCGGCAGTCCGCGGCCGGGGCCGAGAAGTACCACTCGGCGATGGTCCCGCACGCCGGCGAGGACAGCCGGCTGTTCCGGGACGTCGTCGCGCTCGGCGAGACACTGGCCGACCTCGCCCCCGTCGTGGGTGCGGGTCGTGCCCGAGCACGGGTGGCGATCCTGTTCGACTGGGAGTCCTGGTGGGCGAGCGAGCTCGACTCGCACCCCACCGAGCGGCTCCGCTATCGCCAGGAGGCCCTGGACTGGTACTCCGCGTTCCTCGCCGCGGGCCACCGGGCGGACGTGGTCCCCGCGGCGACGGACGTCGACGGGTACGACGTCGTCGTGGCCCCGGTGCTGCACATGGTCTCGGCCGAGCGCGCCGCGAGCCTGCGGGAGTTCGTCGAGCAGGGCGGCCACCTGGTCACCACCTACTTCTCGGGCGTCGTGGACACCGACGACCACATCTGGCTGGGCGGCTACCCCGGTGCCTTCCGCGACCTGCTCGGCATCCGTGTCGAGGAGTTCGCGCCGCTGCGCGACGGGGACGACGTCCGCCTCGACGACGGCTCGGTCGGCACGCTGTGGGCCGACCCGGTCGACCTGGTCGCCGAGGACGTCGAGGTGCTCGCGTCCTACGCCGACGGCCGGTACGCCGGCCGACCGGCGATCACCCGCCGTCCGGTCGGCCAGGGCTCGGCCGCCTACGTCGCCACGCGGCTCGGGCGCCACGGGCTCGTGCCCGTCGTCGAGCGGCTGCTCGCCGACGCCGGCGTGACCAGCGAGCTGCCGACGACGCTGCGGGGGAAGGTCGAGCTCACGATGCGACGCCGGGACGACGTCACGTTCTGGTTCCTCGTCAACCGCACCGCGGAGCCGCTCCCGCTGGCGGGGATCGAGGGAGAGGTCCTGGTCAGCACCGGGGCCGGGGACGACGTCGGACCCGACCACCTGCAGCCCCGCGGCGTCGTCGTACTGCGCCGACCCGCCTGA	MTDARRLLGGSELDIPPRIGFGADYNPDQWPREVWAEDARLMQAAGVNVVSLAIFSWARLQPGPDEWDFEWLDEVMDLLHAHGISVDLATATASPPPWLTALHPEILPVTRTGETLWPGGRQQWRPTSPVFRRYALALVERLAERYGDHPALAGWHVSNELGCHNAHDYSDDAARAFRHWLQERYTTLDRLNEAWGTAFWSQRYTDWEQILPPRLAASYPNPTQQIDFKRFSSDALVEHLRVERDVLRRITPGIPVTTNFMVMGETQAMNYPTWAPEIDFVSNDHYLHPGPQGMDELSFSANLTSGVAGGDPWFLMEHSTSAVNWQEINTPKLPGELARDSLTHVAHGADAVCFFQWRQSAAGAEKYHSAMVPHAGEDSRLFRDVVALGETLADLAPVVGAGRARARVAILFDWESWWASELDSHPTERLRYRQEALDWYSAFLAAGHRADVVPAATDVDGYDVVVAPVLHMVSAERAASLREFVEQGGHLVTTYFSGVVDTDDHIWLGGYPGAFRDLLGIRVEEFAPLRDGDDVRLDDGSVGTLWADPVDLVAEDVEVLASYADGRYAGRPAITRRPVGQGSAAYVATRLGRHGLVPVVERLLADAGVTSELPTTLRGKVELTMRRRDDVTFWFLVNRTAEPLPLAGIEGEVLVSTGAGDDVGPDHLQPRGVVVLRRPA	PGPT0017815_313	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308	NA	NA
AK001_01481	1071	lacI_2	COG1609	Lactose operon repressor	GTGACCGAGCGGATCACCGAGGACTCGGGCCCTGCTGCGCCCGCAGCCGTCCGCCCGCTCCCGCCCGCGCCCGTCCGACGGGTCTCGATGGCCGACGTCGCACGCCGCGCCGGCGTGTCCTCGCAGACGGTCTCCCGCGTGTCGAACGGGTACCCCGGCGTCGTCGAGGCGACGCGGCGCCAGGTCCTCGACGCGATGGCCGAGCTGGGCTACCGACCGAACAGCGCGGCGCGGGCGCTGCGCAGCGGCCGGTTCCGCACGATCGGCGTCATCCTCTTCTCCCTGTCGACCACCGGCAACGTGCGCACCCTCGAGGCCATCGCGACGTCCGCCGCCGCCCAGGGCTACGCCATCACGGTGATCCCGGTCGAGGCCCCGACCCAGGGCGGCGTCCGCGGCGCCTTCACCCGGCTCGGCGAGCTCGCCGTGGACGCCGTCATCCTGCTGATGGAGGTGCACCTGCTCGACGCGGCCGACCTCACCCTGCCGGACGGCGTCCCCGTCGTCGTGGCCGACTCCGACGCCGACGATCGGTATCCCGTCATCGACACCGACCAGGCGGACGGCAGTCGCACGGCCGTGCAGCACCTGCTCGACCTCGGTCACCGCACGGTCGTGCACCTGGCGGGCCCGGAGCAGTCCTTCGCCGGCCAGCGTCGCGAGGACGCGTGGCGGCGCACCCTCACCGACGCCGGGTGCGAGGTCCCCGAGGTCTACCGGGGGGACTGGAGCGCCTGGTCCGGGTACGAGGTGGGCCGCGAGATCGCGCGCACCGACGCCACCGCCGTCTTCGCCGCCAACGACCAGATGGCGCTCGGGCTGATGCGTGCCCTCGCCGAGTCGGGACGCGCGGTCCCCGACGACGTCAGCGTCGTCGGGTTCGACGACGTCCCCGACGCCGTGGCCTACCGACCGCCGCTGACCACCATCCACCAGGACTTCGCCGAGGTCGGACGGCGGTGCGTCGAGCTGGTCCTGCAGCGGCTCGACGCCGGTGCGGCCGACCACGGGACCACCCTGGTCCCGGTGCGGATCGTCGAGCGGGCGAGCACGGCCCCGCCGCCCTCCTGA	MTERITEDSGPAAPAAVRPLPPAPVRRVSMADVARRAGVSSQTVSRVSNGYPGVVEATRRQVLDAMAELGYRPNSAARALRSGRFRTIGVILFSLSTTGNVRTLEAIATSAAAQGYAITVIPVEAPTQGGVRGAFTRLGELAVDAVILLMEVHLLDAADLTLPDGVPVVVADSDADDRYPVIDTDQADGSRTAVQHLLDLGHRTVVHLAGPEQSFAGQRREDAWRRTLTDAGCEVPEVYRGDWSAWSGYEVGREIARTDATAVFAANDQMALGLMRALAESGRAVPDDVSVVGFDDVPDAVAYRPPLTTIHQDFAEVGRRCVELVLQRLDAGAADHGTTLVPVRIVERASTAPPPS	PGPT0017992_8402	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01482	519	argA	COG1246	Amino-acid acetyltransferase	GTGCCCGACCACCAGAACGCGCCCTTCCGCATCCGGCCCGCGCTCCCTGCGGACATCCGCGGCGTGCGCGACCTGGTGGCGCCCTACGCCGCCGAGCGGATCCTGCTGGCCAAGGAGCTGGTCGGCTACTACGAGTCGGTGCAGGAGTTCCTGGTGGCCGACGCCGGGCCGGACGGGCTGGTCGGCTGCGGTGCCCTGCACGTGATGTGGTCCGATCTCGCCGAGATCCGCACGCTCGCCGTCGACCCGACGTGGAAGGGGCGCGGGCTCGGGCACGCGCTGGTGGAGGAGCTGATCCTGCGGGCGCGCCAGATGGGTCTGCAGCGCCTGTTCTGCCTGACCTTCGAGGTGGAATTCTTCGCCGCGCACGGGTTCCACGAGATCGACGGCACGCCCGTGACCGGCGAGGTGTACACCGAGCTGCTGCGGTCGCACGACGACGGTGTCGCCGAGTTCCTCGACCTCGCGCGGGTGAAGCCGAACACCCTCGGCAACACCCGCATGCTCCTGGACCTCTGA	MPDHQNAPFRIRPALPADIRGVRDLVAPYAAERILLAKELVGYYESVQEFLVADAGPDGLVGCGALHVMWSDLAEIRTLAVDPTWKGRGLGHALVEELILRARQMGLQRLFCLTFEVEFFAAHGFHEIDGTPVTGEVYTELLRSHDDGVAEFLDLARVKPNTLGNTRMLLDL	PGPT0014241_319	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014241-argA-K00619	NA	NA
AK001_01483	924	deoR_2	COG2390	Deoxyribonucleoside regulator	ATGGCGGCGACCATGTACTACCTGCAGGACATGAAGATGGAGTCGATCGCGAGGCACCTGCGCACCTCGCGGTCGACGGTCTCGCGGCTGCTCAAGAGGGCGCGGGAGACCGGCGTCGTCGAGATCACGCTGCGCCCGACGCACACGCGTGCACCCGGGCTGGGGCAGCGGCTCGCGGCGGAGCACGACATCGACACCTACGTCGTGCCTGTCCCGGACGCCGCCGACGACGCGGAGCGGCTCCGGCAGGTGGCCCGCACGACGGCGCGACTCGTGACCCGGTGGTTCGACTCCGACATGGTCCTGGGCATCGCCTGGGGCACGACGCTGGCCGCCGTCGCGGAGCACCTCATGGACAAGCCCACGCGAGGGTCCGCCGTCGTCCAGCTCAACGGCGCGGCCAACAACCGCACCTCGGGGGTCGCCTACGCCGGCGACCTGCTCGACCGGATCGCGGCGACCTTCGAGGCCCAGGCGCACCCGTTCCCGGTGCCCGCCTTCTTCGACTTCGCCGAGACCCGCGACGCGATGTGGCGGGAGCGGTCGGTGCGCCGCGTGCTGGACGTGCAGGCCCGGACCGACCTCGCCGTGTTCTCCGTCGGGGCGCTGACCGGCGGCGTCCCGTCGCACGTGTACACCGCGGGCTACCTCGAGCCCGAGGACGTGGCGGCGCTGGAGGCCGCCGACGTCGTCGGGGACGTCTGCACGGTGTTCCTGCGCCCCGACGGGTCGTTCCGCGACATCGCCATCAACGCCCGGGCGACGGGCCCCACGCCCGACCAGCTGCGGCGGTTCCGTCGTCGCCTGTGCGCCGCCGCGGGCGACAACAAGGTCGCACCGCTGCGGGCGGCGCTCGCCGCCGGCGTCGTCACCGACCTGGTGATCGACGAGATCACCGCAGCGCGGCTCGTCGGCCAGGACTGA	MAATMYYLQDMKMESIARHLRTSRSTVSRLLKRARETGVVEITLRPTHTRAPGLGQRLAAEHDIDTYVVPVPDAADDAERLRQVARTTARLVTRWFDSDMVLGIAWGTTLAAVAEHLMDKPTRGSAVVQLNGAANNRTSGVAYAGDLLDRIAATFEAQAHPFPVPAFFDFAETRDAMWRERSVRRVLDVQARTDLAVFSVGALTGGVPSHVYTAGYLEPEDVAALEAADVVGDVCTVFLRPDGSFRDIAINARATGPTPDQLRRFRRRLCAAAGDNKVAPLRAALAAGVVTDLVIDEITAARLVGQD				NA	NA	NA	NA	NA
AK001_01484	1743	glpD2	COG0578	Glycerol-3-phosphate dehydrogenase 2	ATGGCCTCCCGACTCACTGCCGAGTCACGCACCCGCGCCCTGGCGGCGCTCGAGAGCTCGCAGGACTCCGCCACCGAGCTCGACGTCCTCGTCATCGGCGGCGGCGTCACCGGCGCCGGCATCGCGCTCGACGCCGTCACCCGCGGCCTGTCCACCGCGATCGTCGAGGCCCAGGACTGGTCCGCCGGCACCTCGAGCTGGTCCAGCAAGCTCGTCCACGGCGGTCTGCGCTACCTGCAGATGCTCGACTTCTCCCTCGTCCACGAGGCCCTGACCGAGCGCGACCTGCTCCTCAAGGAGCTCGCCCCGCACCTCGTCAAGCCGGTCCCGTTCCTGTACCCGCTCGAGCACCGCATGTGGGAACGCGCCTACGTCGGCGCCGGCATCGCCCTGTACGACACCCTCGCCTCGGTCGCCCCCGGCAAGCGCGCGATGCCGCTGCACCGGCACCTGACGCGCCGGCAGATCAGCCGCAAGTTCCCCGACCTGGCGCACGAGGCCGCCATCGGCGCCGTCCAGTACTGGGACGCGTCGGTGGACGACTCGCGCCTGGTCGCGACCCTCGTGCGCACCGCCGTCGACTACGGCGCCCACGCCGCGACCCGCACCCAGGTCGTCGAGCTCACCAAGAGCGCCACGGGCACGGTCAACGGGGCCGTCGTCGTCGACCTGGAGACCGGTCGCGAGATCACCGTCCGCGCGCGGCACGTCATCAACGCCACCGGCGTGTGGACCGAGGACACCGAGGCCCTCGCCGGCGACGAGGGGGGCCTGCACGTGCTGGCCTCCAAGGGCATCCACATCGTCGTCCCCCGGGAGCGCATCAAGGGGCAGGTCGGCCTGATCCTGCAGACCGAGAAGTCGGTGCTGTTCATCATCCCCTGGTCCCGGTACTGGATCATCGGCACCACGGACACCCCGTGGGAGCTGGACCCGGTGCACCCGGTGGCCACGGCCGCCGACATCGACTACGTGCTCGACCACGCCAACGCCGTGCTGGCCCACCCGCTCACGCGCGAGGACGTCATCGGCACCTACGCCGGCCTGCGCCCGCTGCTGCAGCCGGGCACCAAGGAGGGCACGAGCTCGGCGAAGGTCTCGCGCGAGCACACCGTCGCCTCCCCCGCGCCCGGCCTGACCGTCATCGCCGGCGGCAAGCTGACCACCTACCGCGTCATGGCCAAGGACGCCGTGGACTTCGCCATCGGCCAGCGGGCGCACGCCCTGCCGTCGGTGACCCACCAGATCCCGCTCGTCGGCGCGGTCGGGCTGTCCGCCGTCCGGCGCCAGGCCCGGTCGTGGGCGCAGCGGTACGGCTGGAGCCCGGCGATGGTCGACCACCTCCTGCACCGGTACGGCTCCGCGCTGCGCGAGCTCGTCACGCTGTGCGAGGAGGACCCCACGCTCGCCGAGCCGCTCGAGCACGCGCCGGCCTACCTGCGCGCGGAGATCCACTACGCCGTCAGCCACGAGGGCGCGCTGCACCTGGAGGACCTGCTGGTCCGCCGGACGCGGCTCGTCTACGAGGTGGCGGACAAGGGCCGGGCCGCGCTGCCCGAGATCGCCGACGTCGTCGCACCCCTGCTGGGCTGGGACGACGCCACGAAGCAGAGCGAGATCGACAGCTACACCGCCCGGGCCGAGGCCGAGGACGCGGCAGCCGCCGCGCCCGACGACGAGGGCGCTGCCGCCGCGCGCGGCAGGGCCGGTGACGTGGCGTCGATGCGGCCGCTGCGCACCTGA	MASRLTAESRTRALAALESSQDSATELDVLVIGGGVTGAGIALDAVTRGLSTAIVEAQDWSAGTSSWSSKLVHGGLRYLQMLDFSLVHEALTERDLLLKELAPHLVKPVPFLYPLEHRMWERAYVGAGIALYDTLASVAPGKRAMPLHRHLTRRQISRKFPDLAHEAAIGAVQYWDASVDDSRLVATLVRTAVDYGAHAATRTQVVELTKSATGTVNGAVVVDLETGREITVRARHVINATGVWTEDTEALAGDEGGLHVLASKGIHIVVPRERIKGQVGLILQTEKSVLFIIPWSRYWIIGTTDTPWELDPVHPVATAADIDYVLDHANAVLAHPLTREDVIGTYAGLRPLLQPGTKEGTSSAKVSREHTVASPAPGLTVIAGGKLTTYRVMAKDAVDFAIGQRAHALPSVTHQIPLVGAVGLSAVRRQARSWAQRYGWSPAMVDHLLHRYGSALRELVTLCEEDPTLAEPLEHAPAYLRAEIHYAVSHEGALHLEDLLVRRTRLVYEVADKGRAALPEIADVVAPLLGWDDATKQSEIDSYTARAEAEDAAAAAPDDEGAAAARGRAGDVASMRPLRT	PGPT0006775_1022	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111	NA	NA
AK001_01485	735	glpF	COG0580	putative glycerol uptake facilitator protein	ATGTCAACAGGCGAACTCTTCGTCACCGAGATGCTCGGGACCGGGATGCTGCTGCTCCTCGGTGCCGGCGTGGTGGCGAACGTCATCCTGCCCAAGAACAAGGGCTTCAACGGGGGATGGCTGCTCATCAACTTCGGATGGGGCCTGGGTGTGTTCTCCGGTGTGTACGTCGCCTTCGCGAGCGGCGCGCACATCAACCCGGCCGTCACCTTCGGCATCTGGGCCAGCGGCGCCGCGGAGTTCGGCCCCGGTATCCCCGTCACGCTGGCGAACGGCGTCACCTACATCGGTGCACAGATCGTCGGCGCGGCGCTCGGTTCGGCGATCGCGTTCCTCGCCTACAAGAAGCACTTCGACGAGGAGGCCCCGGCGGCGACGAAGCTCGCGGTCTTCTCCACCGGACCGGAGATCCGCTCCTACCCGTGGAACTTCGTCACCGAGGTCATCGGCACCTTCGTGCTGGTGTTCGTGGTGCTGAACTTCGGCAACTGGCCCGGTGACATCGGACCGCTCGCCGTCGCCCTGCTGGTGGTCGGGATCGGTGCAAGCCTCGGTGGCCCCACCGGCTACGCCATCAACCCGGCCCGTGACCTCGGTCCCCGCATCGCGCACGCGCTGCTGCCGATCAAGGGCAAGGGATCCAGCGACTGGGGCTACTCCTGGGTGCCGGTCCTCGGCCCGATCGTCGGCGGCGTGCTCGCCGGCTTGCTCGCCCCCGTGGTCGCCTTCGGCTGA	MSTGELFVTEMLGTGMLLLLGAGVVANVILPKNKGFNGGWLLINFGWGLGVFSGVYVAFASGAHINPAVTFGIWASGAAEFGPGIPVTLANGVTYIGAQIVGAALGSAIAFLAYKKHFDEEAPAATKLAVFSTGPEIRSYPWNFVTEVIGTFVLVFVVLNFGNWPGDIGPLAVALLVVGIGASLGGPTGYAINPARDLGPRIAHALLPIKGKGSSDWGYSWVPVLGPIVGGVLAGLLAPVVAFG	PGPT0004760_1986	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLYCEROL_UPTAKE,PGPT0004760-glpF|pduF-K02440	NA	NA
AK001_01486	1515	glpK	COG0554	Glycerol kinase	ATGGCTGACTACGTCCTCGCGATCGACCAGGGCACCACGAGCTCCCGGGCGATCATCTTCGACCACTCCGGCCGGATCGTCTCGACCGGCCAGCTCGAGCACGACCAGATCTTCCCGCAGGCGGGCTGGGTCGAGCACAACCCCGAGCAGATCTGGAACAACGTCCGCGAGGTCGTCGGCCTCGCTCTCACCCGCGCGAACCTCTCGCACGACGACATCGCCGCCGTCGGCATCACCAACCAGCGCGAGACCACCGTCGTGTGGGACAAGAACACCGGCAAGCCGGTCTACAACGCCATCGTCTGGCAGGACACGCGGACGCAGGCGATCGCCGACCGCCTGGCCGGCGACGAAGGGCCCGAGAAGTACAAGTCGATCGTCGGCCTGCCCCTGGCGACCTACTTCTCCGGACCGAAGATCGCCTGGATCCTCGAGAACGTCGAGGGCGCCCGCGAGGCCGCCGACCGCGGCGACCTGCTGTTCGGCAACACCGACACCTGGGTGCTGTGGAACATGACCGGCGGGACCGAGGGCGGCGTCCACGTCACCGACGTCACCAACGCCTCGCGCACGATGCTCATGGACCTCGACACGCTCTCGTGGCGCGAGGACATCGCCGCGGACATGGGCGTCCCGCTGTCGATGCTGCCGGAGATCCGCTCGTCGTCCGAGATCTACGGCCACGGCCGGGCCAAGGGCATGGTCCCGGGAGTGCCCATCGCCGGCATCCTCGGCGACCAGCAGGCCGCCACCTTCGGCCAGGCGTGCTTCGAGGTCGGTACCGCGAAGAACACCTACGGCACCGGCAACTTCATGCTGCTCAACACCGGCACGGAGAAGGTGGCCAGCGAGAACGGCCTGCTCACCACGGTCTGCTACAAGGTCGGCGACGCTCCCGCCGTCTACGCCCTCGAGGGAGCCATCGCCGTCACCGGGTCGCTGGTGCAGTGGCTGCGGGACAACCTCGGCCTGTTCGACGACGCCCCGGACGTCGAGTACTACGCGAGCAAGGTCGACGACAACGGCGGGGCGTACTTCGTCCCGGCGTTCTCCGGCCTGTTCGCCCCGTACTGGCGCCCCGACGCCCGCGGTGCCCTCGTCGGTCTGACGCGGTACGTCAACCGCAACCACGTCGCCCGCGCCGCCCTCGAGGCCGTCGCGTTCCAGACCCGCGAGGTCATGGACGCCATGCGCGCCGACTCCGGGGTGGACCTGACCGAGCTCAAGGTCGACGGCGGCATGGTCGCCAACAACCTGCTCATGCAGTTCCAGGCCGACCAGGTCGGGGTCGACGTCGTGCGGCCCGAGGTCGCCGAGACCACCGCCCTCGGCGCCGCCTACGCCGCCGGCATCGCCGTCGGCTTCTGGCAGGGAGAGCAGGACGTCCGCGACAACTGGGTCGAGGGCCAGCGGTGGACGCCGTCCATGCCGCAGGACGAGCGCGAGCGGCTGTACCGCGAGTGGAAGAAGGCCGTCACGAAGACCTTCGACTGGGTCGACGCCGACACCAAGTAG	MADYVLAIDQGTTSSRAIIFDHSGRIVSTGQLEHDQIFPQAGWVEHNPEQIWNNVREVVGLALTRANLSHDDIAAVGITNQRETTVVWDKNTGKPVYNAIVWQDTRTQAIADRLAGDEGPEKYKSIVGLPLATYFSGPKIAWILENVEGAREAADRGDLLFGNTDTWVLWNMTGGTEGGVHVTDVTNASRTMLMDLDTLSWREDIAADMGVPLSMLPEIRSSSEIYGHGRAKGMVPGVPIAGILGDQQAATFGQACFEVGTAKNTYGTGNFMLLNTGTEKVASENGLLTTVCYKVGDAPAVYALEGAIAVTGSLVQWLRDNLGLFDDAPDVEYYASKVDDNGGAYFVPAFSGLFAPYWRPDARGALVGLTRYVNRNHVARAALEAVAFQTREVMDAMRADSGVDLTELKVDGGMVANNLLMQFQADQVGVDVVRPEVAETTALGAAYAAGIAVGFWQGEQDVRDNWVEGQRWTPSMPQDERERLYREWKKAVTKTFDWVDADTK	PGPT0018435_2060	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864	NA	NA
AK001_01487	1317	pip		Proline iminopeptidase	GTGAAGAGCACCGTCACGAGCGAGTCCTCGTACACGATCCCCGGCGTCCACGTCACCGACCGCACCCTCACGGTCCCCCTCGACTGGACCGCTCCCGCCGACGACCGCACGCTGAGCGTGTTCGTCCGCGAGCTGGTCGCCCCGACCAAGCGGTCCGAGGACCTGCCTCTGCTGGTGTTCCTCCAGGGCGGCCCGGGCGGCAAGGGGCCGCGCCCCACCGGCGCCGAGGGCTGGGTCGGCGAGGCGTTGAAGAGGTTCCGGGTGGTGCTGCTCGACCAGCGCGGCACGGGACGCTCGACGGCGGTGCGCGCCGGCGCGCTGCAGCGGCTCGGCTCGCCGGAGGCGCAGGCGGAGTACCTCACCCACTTCCGCGCCGACTCGATCGTGCGCGACGCCGAACACGTGCGGAACACCGTCTACGGCGGTCGGCGGTGGTGCAGCCTCGGGCAGTCCTACGGCGGGTTCATCACCCTGACCTACCTCTCCTTCGCCCCCGAGGGCCTGGCGGCCTGCTACGTCACGGGCGGCCTGGCCGGCCTGCACGACAGCGCCGAGCAGCTCTACGAGCGCACGCAGGCGCGCGTCGTCGCGAAGAACGCGCAGTACCGCGAGCGCTACCCCGCCGACGTCGAGCGGATCGCGCGGATCGCCGACCGGATCGCCGTCGGTGACGTGCACCTGCCCGGCGGTGACCTGCTGAGCGTGGAACGCTTCCAGTCCCTGGGCATGGCCTTCGGGATGGGCCCCGGGTTCGAGCGGGTGCACTGGATCGTCGACGAGGCGTTCGACGACGTCGCCCCGGACGAGCTGACCGACACCTTCCTGGCCGAGGTGGAGGCCGCGACGTCGTTCGCGACGAACCCGCTGTACGCCGTCCTGCACGAGTCCATCTACGCCGAGGGCGGGGCGTTCGTCCCCTGGGCCGCCGCGGAGGTCCGCGCCACCGACGGCGCGTTCGGACCCGACGAGCGCCCGCTGCTGTTCACCGGCGAGATGATCTACCCCTGGATGTTCGACCAGATCAGCGCCCTCCGCCCCTTCCGGGACGCGGCACACGCGCTCGCAGCCCGACGCGACTGGCCCGCGCTGTACGACATGGAGGTGCTCGCCGCCAACGACGTGCCCCTGGAGGCCGCGGTGTACTTCGACGACATGTTCGTCGACGCCGACCTGTCCCTCGACACCGCGGATCACGTGCGCAACGCCCGGGCCTGGGTGACCAACGAGTTCGAGCACGACGGGCTGCGCGCCGGGAACGTGTTCACCACGCTCCTGGACCGGCTCGACGCCCGCGGCGGCCCCCTCCCCGCGAGGTAG	MKSTVTSESSYTIPGVHVTDRTLTVPLDWTAPADDRTLSVFVRELVAPTKRSEDLPLLVFLQGGPGGKGPRPTGAEGWVGEALKRFRVVLLDQRGTGRSTAVRAGALQRLGSPEAQAEYLTHFRADSIVRDAEHVRNTVYGGRRWCSLGQSYGGFITLTYLSFAPEGLAACYVTGGLAGLHDSAEQLYERTQARVVAKNAQYRERYPADVERIARIADRIAVGDVHLPGGDLLSVERFQSLGMAFGMGPGFERVHWIVDEAFDDVAPDELTDTFLAEVEAATSFATNPLYAVLHESIYAEGGAFVPWAAAEVRATDGAFGPDERPLLFTGEMIYPWMFDQISALRPFRDAAHALAARRDWPALYDMEVLAANDVPLEAAVYFDDMFVDADLSLDTADHVRNARAWVTNEFEHDGLRAGNVFTTLLDRLDARGGPLPAR				NA	NA	NA	NA	NA
AK001_01488	426			hypothetical protein	ATGAGCGTCCTGACCCGACCGCGCGTCGTGCTGCGTCTCGAGGGCCTGGTCCTCGCCGTCGCGCTGCTCGGGGCGGCCGTGTGGCTGGTCCCGGACTGGTGGTGGGTGCTGCCGGCCGGCTTCCTGCTGGTCGACCTGTCGGCGCTCGGGTACCTGCGCGGTCCCCGAGCGGGGGCCGCCTGGTACAACGCCGGGCACTCGACCGTCGGACCGGTCCTCCTCGGCCTCGTGGCGGGCGGCCTGGCCGTGAGCGGCGCGGACGGCACGGCGCAGGTGGTGTGCACGACGACGGCGCTCACCTGGGGTTTCCACGTCGGGGTCGACCGGGCGTTCGGCTACGGGCTCAAGGAGCCCGACTCCTTCCACCACACGCACCTGGGGTGGTTGGGGGGCCGGTCGTCGCGGAGTCCCGAGGAGCGGGCGTGA	MSVLTRPRVVLRLEGLVLAVALLGAAVWLVPDWWWVLPAGFLLVDLSALGYLRGPRAGAAWYNAGHSTVGPVLLGLVAGGLAVSGADGTAQVVCTTTALTWGFHVGVDRAFGYGLKEPDSFHHTHLGWLGGRSSRSPEERA				NA	NA	NA	NA	NA
AK001_01489	1326			hypothetical protein	GTGGACGCGGAGACCTGGTGGAACATCGCCCTGGTGCTGGGCTTCGTGCTGCTCGGCGGGGTGTTCGCCGGGACCGAGTTCGCGCTCGTCTCGCTGCGCGAGGGGCAGATCGACGAGCTGGAGCGCCACGGGTCGCGCGGACGCCGGGTGGCCGCGGTCGCACGGGACCCGAACCGGTTCCTGGCCGCCGTGCAGATCGGCGTCACCGTGGCCGGCTTCTTCTCCGCGGCCTACGGGGCCTCGACCCTGGCGCCCGACGTCGCTCCGTCGCTGGAGGCGCTGGGACTGACGCCGGGCGCGGCCTCGACCGTCGCCCTGGTCCTGCTGACGCTGCTGGTCGCGTACGCCTCGCTCGTGCTGGGCGAGCTGGTGCCGAAACGCCTGGCGCTGCAGCGCTCGGTCCAGGTGTCGCTCGTCGTCGGACCACCGCTGGACCGCTTCTCCCGCCTGATCCGACCGGTCATCTGGCTGCTGTCCCGGTCCACCGACGCCGTGGTCCGGCTGCTCGGCGGCGACCCGGGCGTGCGTGCGCCGCAGATGTCGGACGAGGAGCTGCGTCGCATCGTGCTCGAGCACCCGGGACTCTCGCGCGAGGAGCGCGACATCGTCACGGACGTCTTCACCGCCTCCGAGCGCCGGCTCACCGAGGTCATGCGCCCCCGCACCGACGTGACGTTCCTGGTCTCGACCCTCGACGTCGCCGAGGCGGTCGACGCGGTGCACGACCAGCCGTACTGGCGGTTCCCCGTCGTCGGCGAGGGTGTCGACGACGTGGTCGGGTTCGTCCATCTGCGCGACCTCGTGCGCGAGCTGCGCGCGCCCACGGGCCGACGACGGCGGACCGTGCGCGACCTCGCCCGGCCCGCCCTGGAGATGCCGGGCACGAACCGGCTCCTGCCCTCGCTGACGACGATGCGCGAGGACGGCGTGCACCTCGCCGTCGTGCGGGACGAGTACGGCGGGACGGACGGGATCGTCACGCTGGAGGACCTCGTCGAGGAGCTCGTGCGGGACATCCGCTCCGAACCGGACCCGGGCCGCCCCGAGCTCGGTGCCGACGAGGTCGACGCCGGCCTGTCCCTCGAGGACTTCGCCCGGGAGACCGGTGTCGTGCTGGCCGAGGGACCGTACGAGACCGCCGCCGGGTTCGTGCTCGCGACGCTCGGACGTCTCGCGGTCCCGGGCGACGTCGTCGAGACCGACGGGGCCACGCTGACGGTGACCGCCGTCGACCGCCAGCGGATCCGGGCGGTGCGGGTCGAGCGTCCTGGTCCTGCGGACGACCCCGGCACCACGGACGACCCCGACGCCGCAGGTGACGTCTAG	MDAETWWNIALVLGFVLLGGVFAGTEFALVSLREGQIDELERHGSRGRRVAAVARDPNRFLAAVQIGVTVAGFFSAAYGASTLAPDVAPSLEALGLTPGAASTVALVLLTLLVAYASLVLGELVPKRLALQRSVQVSLVVGPPLDRFSRLIRPVIWLLSRSTDAVVRLLGGDPGVRAPQMSDEELRRIVLEHPGLSREERDIVTDVFTASERRLTEVMRPRTDVTFLVSTLDVAEAVDAVHDQPYWRFPVVGEGVDDVVGFVHLRDLVRELRAPTGRRRRTVRDLARPALEMPGTNRLLPSLTTMREDGVHLAVVRDEYGGTDGIVTLEDLVEELVRDIRSEPDPGRPELGADEVDAGLSLEDFARETGVVLAEGPYETAAGFVLATLGRLAVPGDVVETDGATLTVTAVDRQRIRAVRVERPGPADDPGTTDDPDAAGDV				NA	NA	NA	NA	NA
AK001_01490	1482			hypothetical protein	ATGACCGTCGAACCGTCGTCGGAGGCCCCGGACCTCATCACCCTCGGCCGTCGCATCCGGCACGCGCGCACCGCCCGCGGCCTGACCCTCGAGGCCCTGGGCAAGCAGGTGGAGTCCGCCCCGAGCCTGCTGTCGCTGGTGGAGAACGGGCGCCGCGAGCCCCGGCTCTCGCTGCTGCGGTCCCTGGCCGAGGCGCTCGAGGTGCCGCTGGCCGACCTGCTCGCCGACGAGCCGCCGTCGCGCCGGGCCGCCCTGGAGATCGCGCTGGAGCGGGCGCAGCGCGGGCCGCTGTTCGGCGCGCTCGGCCTGCCCGTCGTCAAACCCAGCCAGCGGCTGCCGGTGCCCGTCCTGGAACATCTCGTCGGGCTGCACGAGGAGCTGGCACGCCGCGAGGAGGAGGCGATCGCCACCCCGGAGGAGGCGCGCCGCGCCAACACGGTGCTGCGTCACGAGCGCCAGGAGCGCGACAACCACTTGCCGGAGATCGAGTCCCTGGCCGAGGACATGACCCGGCGTGCCGGGTACACCGGGGGCGCGCTCACGCACCGCACCGTGGCGCAGATGGCAGGCGCTCTCGGGCTGACGATCCTGCACGTGGACGACCTGCCCCGGTCGGCCCGGTCGGTGACCGACTGGAAGAACGGGCGCATCTACCTGCCGCCCGCGTCCATCCCGGGCGGGCACGGGCTGCGGTCGCTGGCGCTGCAGGCGATCGCGCACCGGGTGCTCGGGCACGAGCGACCCCGGTCGTACGGCGACTTCCTGCGCCAGCGCGTCGAGATCACCTACTTCGCCGCGGCGTGCCTCATGCCGCAGACGGCGGCGGTGGCCTTCCTCGAGCAGCGCAAGCGGGCCAAGGACCTCGCCGTCGAGGACTTCCGGGACTCCTTCGGGGTCACCCACGAGGCGGCGGCGATGCGGTTGACCAACCTCGCCACCGTCCATCTCGGCATCCCGCTGCACTTCCTGCGGGTGGGGGACGACGGCGCACTCTTCCGCGGCTACGCGAACGACGGGCTGCCCCTGCCGCAGGACGTCACGGGTGCCATCGAGGGTCAGCTCGTGTGCCGGTGGTGGCCCGGGCGGGAGGCCTTCACCCGGCGCGACCGGGCCACGGAGTCCTACCAGTACACCGACACCCCGGCCGGGACGTTCTGGGACTCGGTGCAGACCGGCACCGCCGCGGACGGGCGGCAGTTCTCCATCACGGTGGGGGTGCCGTACGCGCACGCCAAGTGGTTCCGCGGGAGGGACACCCGGGTGCGGCGGACCTCGACGTGCCCCGACCCGGCGTGCTGCCGCCGCCCGCCGGAGGACCTGAGCGACCGGTGGGAACGGGCCTCCTGGCCGAGCGCCCGCATGCACCAGCAGATCCTCGCCGCGCTGCCCCGCGGGGTGTTCCCCGGCGTCGACGACACCGACGTCTACCGGTTCCTCGAACGGCACGCCCCGGACTCGGAGGACGGCGGCGCGGGAGCCTAG	MTVEPSSEAPDLITLGRRIRHARTARGLTLEALGKQVESAPSLLSLVENGRREPRLSLLRSLAEALEVPLADLLADEPPSRRAALEIALERAQRGPLFGALGLPVVKPSQRLPVPVLEHLVGLHEELARREEEAIATPEEARRANTVLRHERQERDNHLPEIESLAEDMTRRAGYTGGALTHRTVAQMAGALGLTILHVDDLPRSARSVTDWKNGRIYLPPASIPGGHGLRSLALQAIAHRVLGHERPRSYGDFLRQRVEITYFAAACLMPQTAAVAFLEQRKRAKDLAVEDFRDSFGVTHEAAAMRLTNLATVHLGIPLHFLRVGDDGALFRGYANDGLPLPQDVTGAIEGQLVCRWWPGREAFTRRDRATESYQYTDTPAGTFWDSVQTGTAADGRQFSITVGVPYAHAKWFRGRDTRVRRTSTCPDPACCRRPPEDLSDRWERASWPSARMHQQILAALPRGVFPGVDDTDVYRFLERHAPDSEDGGAGA				NA	NA	NA	NA	NA
AK001_01491	1917	pckG	COG1274	Phosphoenolpyruvate carboxykinase [GTP]	ATGACCTTCACCGCGAACCCCCGACGGACCCGGCTGGCCCTCGCCGAGCTCACCCCGGACATCCTCGACCGCACCGACGGCTTCGGCCTCACCGCGACCGACGCCGGACCGGCAGGCCACCCGTCGCCGCGGGACGTGCGCGCGTGGGTCGCCGAGATCGCCGAGCTCACCCAGCCCGACCGGATCGTGTGGTGCGACGGGTCGGCCGCGGAGAAGCAGCGCCTGATCGACGAGATGGTCGAGGCCGGGACCCTGGTCAAGCTCGCCGAGGACAAGCGCCCGAACTCCTACCTCGCCCGGTCGAACCCGTCCGACGTCGCCCGGGTCGAGTCCCGGACCTTCATCTGCTCCGAGCACGAGGAGGACGCGGGCCCCACCAACAACTGGTGCGACCCGGCGACCATGCGCGACGAGCTCGACGGCGTCTTCGAGGGATCGATGCGGGGCCGCACGATGTACGTCGTGCCGTTCTCCATGGGCCCCGTGGGCGGCCCGATCTCCCAGGTCGGCGTGGAGATCACCGACTCGCCCTACGTCGTCGTCTCCATGCACGTGATGACCCGCGTCTCGCCCCGGGTCGTCGACCTGATCGACGGCGGGCAGCAGTGGGTCCCGGCCGTGCACTCCGTCGGCGCCCCGCTCGCCGAGGGCGAGGAGGACGTCGCCTGGCCGTGCAACGACGACAAGTACATCGTCCACTACCCCGAGAGCCGCGAGATCTGGTCCTACGGCTCCGGCTACGGCGGCAACGCGCTGCTCGGCAAGAAGTGCTTCGCGCTGCGCATCGCCTCGGCCATGGCGCGCGACGAGGGCTGGCTGGCCGAGCACATGCTGCTCATCCGGGTCACCTCCCCCGAGCAGCGGCAGTACCACCTGGCCGCCGCCTTCCCCAGCGCCTGCGGCAAGACGAACCTCGCCATGCTGCAGCCGACGGTCCCCGGCTGGACGGTGGAGACCCTGGGCGACGACATCGTGTGGATGCGGCCCGGTCCCGACGGCTCCCTGCGGGCCATCAACCCCGAGGCCGGCTTCTTCGGCGTCGCGCCGGGGACGGGGCCCGAGACCAACCCGACCGCGATCGAGACGCTGACGCACGACGTCATCTTCACCAACGTGGCCCTGACCGACGACGGCGACGTGTGGTGGGAGGGGCTGACGCCCGAGCCGCCGGAGCACCTGATCGACTGGCGGGGCGACGACTGGACGCCGGACTCCGACCGGCCCGCGGCCCACCCGAACTCCCGGTTCACCGTCGCGGCCGCGCAGTGCCCGACGATCGCCGACGGCTGGGAGGACCCGGCCGGCGTCCCCGTCGACGCGATCGTCTTCGGCGGCCGCCGGGCGTCGAACGTGCCCCTGGTGACCCAGGCGACCAGCTGGGAGCACGGCGTCTTCATGGGGGCCACCATCAGCTCCGAACGGACCGCGGCCGCCGAGGGCGCCGTCGGCGAGCTGCGCCGCGACCCGTTCGCCATGCTGCCCTTCTGCGGCTACAACATGGCCGACCACTGGGCCCACTGGCTGCGGGTCGCGGGTCTCGTCGACGACGCCCGGCGGCCCAAGATCTTCCAGGTCAACTGGTTCCGCAAGGACGCCGACGGCGCGTTCGTCTGGCCGGGCTTCGGGGAGAACTCCCGCGTGGTGAAGTGGATCGCCGAGCAGATCGACCGCTCGCGCGGCATCCGCACCGACCGCGGCGCGGTGACCTCCCCCCTCGGCCTGCTGCCGGCGCCCGGCGCGCTCGACACGACCGGCCTCGACCTCACGGACGCCGAGCTCGACGCGCTCTTCGACGTCCCGGCCGAGGCGTGGCTGGCCGAGACCGACCTCACCGAGGAGTTCTTCGCCCGGTTCGGCGACCACCTGCCCGAGGAGATGACGCGTCAGCTCGAGCGGCTGCGCAGTCGACTCCGCTGA	MTFTANPRRTRLALAELTPDILDRTDGFGLTATDAGPAGHPSPRDVRAWVAEIAELTQPDRIVWCDGSAAEKQRLIDEMVEAGTLVKLAEDKRPNSYLARSNPSDVARVESRTFICSEHEEDAGPTNNWCDPATMRDELDGVFEGSMRGRTMYVVPFSMGPVGGPISQVGVEITDSPYVVVSMHVMTRVSPRVVDLIDGGQQWVPAVHSVGAPLAEGEEDVAWPCNDDKYIVHYPESREIWSYGSGYGGNALLGKKCFALRIASAMARDEGWLAEHMLLIRVTSPEQRQYHLAAAFPSACGKTNLAMLQPTVPGWTVETLGDDIVWMRPGPDGSLRAINPEAGFFGVAPGTGPETNPTAIETLTHDVIFTNVALTDDGDVWWEGLTPEPPEHLIDWRGDDWTPDSDRPAAHPNSRFTVAAAQCPTIADGWEDPAGVPVDAIVFGGRRASNVPLVTQATSWEHGVFMGATISSERTAAAEGAVGELRRDPFAMLPFCGYNMADHWAHWLRVAGLVDDARRPKIFQVNWFRKDADGAFVWPGFGENSRVVKWIAEQIDRSRGIRTDRGAVTSPLGLLPAPGALDTTGLDLTDAELDALFDVPAEAWLAETDLTEEFFARFGDHLPEEMTRQLERLRSRLR	PGPT0019595_161	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019595-pckA-K01596	NA	NA
AK001_01492	1365	nhaP2		K(+)/H(+) antiporter NhaP2	ATGGGAATCGAGGTGCTCGCCCCGTTCGCCGTCCTGGTGCTCGCCTGGGCGCTCCTGTCCGGCGCTCTGCGGCGCCGGGAGGTGACCGGGCCGCTCGTCTTCGTCGCCGCGGGGGCCCTGCTCGCCAACGACGCCTGGGGCCCGTTCCCGGTGAACATCGAGACGGCCTCGGTCCACACCCTCGCCGAGATCACGCTGGCCCTCGTGCTGTTCACCGACGCCGCCCGCATCGACCTGCGCAACCTGCGCCGCAACGCGACCCTGCCGCTGCGTCTGCTCCTCGTCGGCTTCCCGCTCACGCTGCTGCTCGGGCTCGGGGCCGCGGTGCTGATCCTCTCCGACCTGCCGTGGGAGCTGGCGCTTCTCGTCGCCGCGGCGCTGGCCCCGACCGACGCCGCGCTCAGCGCCCAGGTGATCGGCGACCGGCGGGTGCCCGGACGGCTGCGCATCGCCGTCAACGTCGAGTCCGGGCTCAACGACGGCCTCGTCACCCCCGTGGTGACGCTCGCCGTCGCCCTGGCGGCGACGACGCTCGGGGTGGGGTCGCTCGAGCGCACCGGACCCGGCGACGCCCTGCTGGAGCTCGGCCTCGGCGTGCTGGTCGGCGGCGGGTTCGGCCTGCTCGGAGCATGGGGTGTCACGGCCTCGGCCCGGCGCGGGTGGGCCGAACCCGGTGCGCTGCCGATCGGGACGCTGGCCACCGGGGTCGCGGCCTTCTCCGTGTCGCTCTCCCTCTCCGGCAACGGGTTCGTGGCCGCGTTCGTGGGCGGCCTGGTCTTCGGTCTGGTCGTCGACCGCGAGCAGGGCGACGAGCACGAGCTCACCGAGCTGGCCGAGCTCGGCGGCGAGCTCATGACCCTGGTCGTGTGGTTCCTGTTCGGCGCCGCCCTGGTGCCGATCGCCCTGGAGCACCTGAGCCCGGCGACCGTGGGCTACGCCCTGCTGAGCCTGACGGTGGTACGCATGCTGCCCGTCGTGCTGGCGCTCGTGGGCACGGGGCTACCGCGCCGGGACGTGCTGTTCCTCGGCTGGTTCGGGCCGCGTGGTCTCGCCTCGGTGGTGTTCGCCCTCCTGGCGGTCGAGAGCCTCGGCGAGTCCGAGCCGGTGACGTCGGCCGTCGCGACGATCGCCACGACCGTGGTGCTGTCGGTCCTGCTGCACGGCGGGTCGGCGGGGCCGGTCGCCGCCCGGTACGGGATGCGGGACGACGTGCACGTGCGGGCACGGTCGAGCAGGCTCGGTCCGCCGCACGGACGCCGGTGCCCCGACGGCGTCAGTACGCGCCGGGCGGCACGGGCGCCTGGGCGACCAGCACGTGCTCCAGGTCGGAGGCGTCCACGAGCGGGTCGTCCAGGTCGACGGTGA	MGIEVLAPFAVLVLAWALLSGALRRREVTGPLVFVAAGALLANDAWGPFPVNIETASVHTLAEITLALVLFTDAARIDLRNLRRNATLPLRLLLVGFPLTLLLGLGAAVLILSDLPWELALLVAAALAPTDAALSAQVIGDRRVPGRLRIAVNVESGLNDGLVTPVVTLAVALAATTLGVGSLERTGPGDALLELGLGVLVGGGFGLLGAWGVTASARRGWAEPGALPIGTLATGVAAFSVSLSLSGNGFVAAFVGGLVFGLVVDREQGDEHELTELAELGGELMTLVVWFLFGAALVPIALEHLSPATVGYALLSLTVVRMLPVVLALVGTGLPRRDVLFLGWFGPRGLASVVFALLAVESLGESEPVTSAVATIATTVVLSVLLHGGSAGPVAARYGMRDDVHVRARSSRLGPPHGRRCPDGVSTRRAARAPGRPARAPGRRRPRAGRPGRR	PGPT0013856_978	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160	NA	NA
AK001_01493	1059		COG3938	Protein	ATGCACCGTGAGCGCACGCTGCACCTGATCGACACGCAGTCCGGCGGCGACGTGTCGCGCATCGTGACCGCCGGCGTCGAACCCCTGCCCGGGGCCACCGTGCTCGAGAAGGCCCGGTACCTGCAGCACGAGGGTGACGGGCTGCGGCGGCTGCTGCTGTCCGAGCCGTACGGCGACCCGGCGATGTCGGTGGACCTCATCGTCGAGCCGAGCCACCCCGAGGCCCAGGCCGGGTACATCATCATGGAGGCGATGGGCTACCCGTTGTACTCCGGGTCCAACACGATCTGTACAGCGACGGCGCTGCTGTCCAGCGGCATGATCCCGATGGTCGAGGGTCGGCAGGACGTCGTCCTGGAGTCCCCGGCCGGCCTCGCCCGGGTCTCCGCGCGCAACGAGGGCGGCCGGGTCCGGTCCATCACCACCCAGGGCGAGCCCGCCTACGTGGCCGACGAAGGGCTGTCCGTCGAGGTGCCGCACTACGGCCACGTCGAGTTCGACCTCGTGTGGTCCGGGGCCTACTACGCGCTCATCGACGCCGGGCGGTACGGGTTCACCATCGACGCCGAGAGCCAGATCGCGCTCACCGCGTTCGGCGACGCCTTCGTGCGGGCCGCGCGGCCCGGGCTGCGCGAGGAGCACCCCGAGCTGGGCCACGTCGGCCCGCTGCCGTTCGCCCACTTCATGGGCCCGGTCCGGCAGCTCGGCGAGGGGCGCTACGAGTCGCCGTCGGCCACCTACGTGCACCCGGGCGTGCTGTGCCGCAGCCCCACCGGGACAGGGACCTCGGCGCGCCTGGCCCTGATGGCCCGTCGCGGCCAGATCGCCCGCGGGGAGTCCCTCGAGACGATCTCGCCCCGGGGCAACCGGTTCGTCGGCACCGTGCTGGACGAGGCGCGGGTGGGCGAGTACGGGGCGCTGCACTCGACGATCACCGGCGGTGCCCGGCTGCTGGCGCACTCGCAGATCACCGTCGACCTGGACGACCCGCTCGTGGACGCCTCCGACCTGGAGCACGTGCTGGTCGCCCAGGCGCCCGTGCCGCCCGGCGCGTACTGA	MHRERTLHLIDTQSGGDVSRIVTAGVEPLPGATVLEKARYLQHEGDGLRRLLLSEPYGDPAMSVDLIVEPSHPEAQAGYIIMEAMGYPLYSGSNTICTATALLSSGMIPMVEGRQDVVLESPAGLARVSARNEGGRVRSITTQGEPAYVADEGLSVEVPHYGHVEFDLVWSGAYYALIDAGRYGFTIDAESQIALTAFGDAFVRAARPGLREEHPELGHVGPLPFAHFMGPVRQLGEGRYESPSATYVHPGVLCRSPTGTGTSARLALMARRGQIARGESLETISPRGNRFVGTVLDEARVGEYGALHSTITGGARLLAHSQITVDLDDPLVDASDLEHVLVAQAPVPPGAY				NA	NA	NA	NA	NA
AK001_01494	1110	ppsC_2		Phthiocerol synthesis polyketide synthase type I PpsC	ATGGAGCCGATCCCAGCCCAGATGAAGGCGGTCCAGCTCGTGGGTCACGGAGGCCTGGACCAGCTCGTGTTCCGTGACGACGTCCCCACCCCGACGCCCGGGCCCGGCGAGGTCCTCCTCGACGTCCACGCGTGCGGGATGAACAACACCGACGTGTGGGTGCGCGAGGGTGCCTACGGCACCGAGACCGACGCCGCGGAGGTCTCCACGTGGCGGCGCGGCCGGTCGACGCTCGCGTTCCCCCGCATCCAGGGCACCGACACCGTCGGGGAGATCGTCGCCGTCGGCGAGGGCGTCCCTGCCGAGCGGGTCGGCGAGCGCGTCATGGTCGACTTCTCGATCTACAACCGCCCCGAGGGCGACGACTCCCTGGCCGACATCGACTACATCGGCCACGGCCGCGACGGCGGGTACGCCGAGTACCAGACGGTGCCGGCCGAGAACGCCTACGAGATCACCAGCGACATCACCGACGCCCAGCTCGCCACCTTCTGCTGCGCCTACCTGACGGCCGAGCAGATGCTCGACCGGGCCCGGCTGGCCGACGGCGAGCGCGTCCTGGTCACGGGGGCCTCGGGCGGCGTGGGGTCGGCCATCGTGCAGCTCGCCCGGGTCCGCGGCGCGATCCCCTACGCGGTCACCAGCGCCGGCAAGGAGGACGCCCTGCGCGAGATCGGCGCCGAGGACGTGATCCTGCGCGACGCCGACGACCTCGTGTCCGAGGTGGCGCGCGTCGTCGACGGCCCGGTCGACGTCGTGGCGGACCTCGTGGCCGGACCGATGTTCAACGACCTGCTGCGCATCCTGCGCCCGGAGGGCCGGTACACCACGGCCGGGGCGATCGGCGGGCCGGTCGTGAACCTGGACCTGCGCACGATGTACCTCAAGCAGCTCGAGCTGCACGGGTCCTCGCAGGGCACCCGCACGGCGTTCCGGCGGCTGGTCCGGTACATCGAGAACGGTGACATCGAGCCGCTGCTGGATCGGACGTTCCCGCTGTCCGACTTCCACGACGCGCAGCGCACGTTCATGAGCAAGACCTACATCGGCAAGCTGGTCGTGGTTCCTGACCGGCACTGGGAGACCGTGGGGGCGTCCTATGCACCGTGA	MEPIPAQMKAVQLVGHGGLDQLVFRDDVPTPTPGPGEVLLDVHACGMNNTDVWVREGAYGTETDAAEVSTWRRGRSTLAFPRIQGTDTVGEIVAVGEGVPAERVGERVMVDFSIYNRPEGDDSLADIDYIGHGRDGGYAEYQTVPAENAYEITSDITDAQLATFCCAYLTAEQMLDRARLADGERVLVTGASGGVGSAIVQLARVRGAIPYAVTSAGKEDALREIGAEDVILRDADDLVSEVARVVDGPVDVVADLVAGPMFNDLLRILRPEGRYTTAGAIGGPVVNLDLRTMYLKQLELHGSSQGTRTAFRRLVRYIENGDIEPLLDRTFPLSDFHDAQRTFMSKTYIGKLVVVPDRHWETVGASYAP	PGPT0006375_793	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001	NA	NA
AK001_01495	492	trmL	COG0219	tRNA (cytidine(34)-2'-O)-methyltransferase	GTGCCCGCCCCAGACCAGCCCACCGCGCCGTTCGCCCACATCGTCTACTTCGAGCCGCGCATCCCCGGCAACACCGGCTCGGCGATCCGGCTCGCCGCGGTGACCGGCGCGCGGCTGCACCTGGTCGAGCCCCTCGGTTTCGACCTGTCCGAGGCGAAGCTCAAGCGGGCCGGCCTCGACTACCACGACCTGGCCGTCATGGACGTGCACCCCAGCCTGGACGCCGCCCTCGACGCCCTCCCCGACGCCCGCGTCTTCGCCTTCTCCACCCGCGCCACGACGTCGTACACGGACGTGACCTACGCGCCCGGCGACGTGCTCCTCTTCGGCCCCGAGCCCACCGGTCTCCCGGAGGAGGTGCTGGCGCACCCGCGGGTCACCGACCAGCTGAAGATCCCGATGCTGCCCGGACGCCGCTCGCTGAACCTCACGAACTCGGCCTCGATCGCCATCTACGAGGCATGGCGGCAGACCGGCTTCGCCGGGTCCTGA	MPAPDQPTAPFAHIVYFEPRIPGNTGSAIRLAAVTGARLHLVEPLGFDLSEAKLKRAGLDYHDLAVMDVHPSLDAALDALPDARVFAFSTRATTSYTDVTYAPGDVLLFGPEPTGLPEEVLAHPRVTDQLKIPMLPGRRSLNLTNSASIAIYEAWRQTGFAGS				NA	NA	NA	NA	NA
AK001_01496	720			hypothetical protein	GTGACGACGACGCGCGACGACCGCTCCCACCGGATCCTCGTCCTGGCCGGCCGCGGCCGCTACGAGGACCCGTGGCACGACCACGCCGCCACGAGCCACCGCCTGGCCGAGGTGCTGGGGGACCTCACCGTGCATGGCCGCTCGACCTCCGTGGTCGTGCGGTCCACCTTCCCGGACGCGCTCGACGACCTGGACGCGGTCGACCTGCTGGTCGTCAACTCCGGGACGTCCTGGCCGGGGTTCCTCGAGGCCGGTATCGGGCCCGACGACGAGGCGTGGCGGCCCTTCCACTCCGCGCTGTCCCGCTGGGCCCGGGACGGCGGCCGCGTGCTGGCCGTGCACCAGGCGGCGAACACGTTCGCGGACTCGGAGGACTGGCGGGACCTGCTGGGCGGCCGCTGGGTCCCGGGGGAGTCGTACCACCCGCCGTTCGGCCCGGCCACGGTGCGGCTCGCCACCGGCGGGCACCCCATCGTCGCCGGGGCGCCCGACACGGTCGAGCTGGAGGACGAGCGCTACTGCGACCTGCGGGTCGCGGAGTCCTCGGAGGTGCTGGGCTGGGTGCCGGACGACGAGGGCGCCTCGCAGCCGGTGCTCTGGGCGACCGAGGAGCACGGCGGCCGGACCGTGTACTGCGGGCTGGGCCACGACGTCCGGGCCTACGACTCGCCGTCGTACCTGCGGCTGCTGGCGCGGGCGGCCACCTGGCTGCTGTCCTGA	MTTTRDDRSHRILVLAGRGRYEDPWHDHAATSHRLAEVLGDLTVHGRSTSVVVRSTFPDALDDLDAVDLLVVNSGTSWPGFLEAGIGPDDEAWRPFHSALSRWARDGGRVLAVHQAANTFADSEDWRDLLGGRWVPGESYHPPFGPATVRLATGGHPIVAGAPDTVELEDERYCDLRVAESSEVLGWVPDDEGASQPVLWATEEHGGRTVYCGLGHDVRAYDSPSYLRLLARAATWLLS				NA	NA	NA	NA	NA
AK001_01497	600	tdk_2	COG1435	Thymidine kinase	GTGGAGCTGTCGCTGGTGCTCGGCCCGATGAAGTCCGGCAAGTCGCTCGACCTCATCGCGCAGATGGCGCCGCTGGCCTACTCGCGGCTCAGCTGCGCGGTGGTGCAGTCGTCCCGCCACGTGCGCGACGACAAGATCGTCTCGCGCACGGGCGCGTCGGTGCCGACGATCAAGCTGGAGACCCTCGAACCGCTGCTGCACACGACCGAGGACGTCGTGGCCATCGACGAGGTCCACATGTTCACCCCGGCCGACGTGCGGGTCGTCGAGGAGCTCGTGCTGCGCGGCACCCGGGTGCTGGCCTGCGGCATCGACCTGGACCACCGCGGCGAGCTGTTCGCCACGATCCGCGCCCTGCTGGAGCTCGGGCCGACCGACGTGCGCTACCGGCGGGCGGTGTGCGACCGCTGCCAGGACCTGCACGCCGCGTTCACCCAGGTGCTGCGCGACGGCGTGCCCTTCCTGGAGCCGCTCGGCGCGTCCGAACCGCTGCCCGACGACGGCACCTTCACCTACGAGGCGCTGTGCCGACGCTGCTTCGTGCTGCCGGAGACGGCGATCGTCACCGGTTCCACCGTGCCGCGCCCGTCCCGTCCGTGA	MELSLVLGPMKSGKSLDLIAQMAPLAYSRLSCAVVQSSRHVRDDKIVSRTGASVPTIKLETLEPLLHTTEDVVAIDEVHMFTPADVRVVEELVLRGTRVLACGIDLDHRGELFATIRALLELGPTDVRYRRAVCDRCQDLHAAFTQVLRDGVPFLEPLGASEPLPDDGTFTYEALCRRCFVLPETAIVTGSTVPRPSRP	PGPT0021390_1527	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857	NA	NA
AK001_01498	867	citE	COG2301	Citrate lyase subunit beta-like protein	ATGAGCCCGCGACCGTTCACCCTCGGCCCGGCGCTGCTGTTCTGCCCCGCCGACCGTGCCGACCGGTACGCCAAGGCCGCCGAGCGGGCCGACGCCGTCATCCTCGACCTGGAGGACGGCGTCGACCCGGCGGCCCGCGCCGACGCGCGCCGGGCCGTGCGCGAGCATCCCCTCGACCCGGCACGCACGATCGTGCGGGTCAACCCCGTCGGGACCGCGGACCACCAGCGCGACCTCGACGCGCTGGCCGACACCCCCTACCGGGTGCTCATGCTGCCCAAGGCGGACGGCCGGTACGTCGGACCCCTGCTGCGGCCCGACGGCGGCCCGTACGCGATCGTCGCGCTGTGCGAGACGGCGGCCGGCGTGCTGGCGGCCCCGGCGCTCGCCGCGCGGCCGGACGTGGTGGCACTGGCCTGGGGTGCCGAGGACCTCGTGGCCTCGCTCGGCGGGACCTCGAGCCGACGGGCCGACGGCGGCTACCGGGACGTGGCCCGGCACGCCCGGTCGGCGGTGCTGCTGGCCGCCGGGGCGGCGGGCAAGGCCGCGATCGACGCCGTGCACCTGGACCTGGAGGACCTCGACGGGGTACGGGCGGAGGCCGAGGACGCGGTCGCCGTGGGCTTCGCGGCGACGCTGTGCGTGCACCCCTCGCACGCCGCCGCGGTGCGCGAGGCCTACGTGCCGTCGCCGGACCAGGTGGCCCACGCGCGTGCCGTGCTCGCGGCGGCGGCCGGCTCGCCGGAGGCGGCGTCGTCGGGCAGCGGTGCGACCCGTGTGGACGGCCAGATGGTCGACGCGCCGCTGCTGCGGCACGCCGAGTCGGTGCTCGCCCGGGCCGAGGGGGTCACGAGCGGCGGGCGTTAG	MSPRPFTLGPALLFCPADRADRYAKAAERADAVILDLEDGVDPAARADARRAVREHPLDPARTIVRVNPVGTADHQRDLDALADTPYRVLMLPKADGRYVGPLLRPDGGPYAIVALCETAAGVLAAPALAARPDVVALAWGAEDLVASLGGTSSRRADGGYRDVARHARSAVLLAAGAAGKAAIDAVHLDLEDLDGVRAEAEDAVAVGFAATLCVHPSHAAAVREAYVPSPDQVAHARAVLAAAAGSPEAASSGSGATRVDGQMVDAPLLRHAESVLARAEGVTSGGR	PGPT0019480_2157	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644	NA	NA
AK001_01499	537	mch	COG2030	Beta-methylmalyl-CoA dehydratase	ATGCGTGAGGAGACCCAGCGCGGGTACTACTACGACGAGCTGGAGCCGGACGTGCGCTACGTGCACCGGCCCGGGCGCACGATGACCGAGGCCGACGACGTGCTGTTCACCTCGGTGACGATGAATCCGCAGGCCCTGCACCTCGACGCGGCGTGGGCGGCGACCCAGCCGTTCGGGCGGCCCCTGGTCAACTCGATGCTCACCCTCGCCACGCTCGTCGGGCTGTCGGTGGCGCACCTGACCCGGGGCACCATCGTGGCCAACCTCGGGTTCACCGACGTCCGGTTCCCGGCCCCGATGTTCCACGGGGACACCCTGTACGGCGAGACCGTCGTGACGGGCCGGCGCCTCTCGGCGTCGCGCCCGGGCCAGGGCATCGTCACCCTGGAGCACACCGGACGGAACCAGGACGGGGACGTGGTCGCGACCGCGACCCGGTCGGTGCTGATGTGGACCCGCGCCGCCCACGAGGCCGACGCCGCCGACCGGGCGGAGGACGACGGGTCGGGCGGGTGGCCCGCCGTGGAGACGCCATGA	MREETQRGYYYDELEPDVRYVHRPGRTMTEADDVLFTSVTMNPQALHLDAAWAATQPFGRPLVNSMLTLATLVGLSVAHLTRGTIVANLGFTDVRFPAPMFHGDTLYGETVVTGRRLSASRPGQGIVTLEHTGRNQDGDVVATATRSVLMWTRAAHEADAADRAEDDGSGGWPAVETP				NA	NA	NA	NA	NA
AK001_01500	1182	acdA	COG1960	Acyl-CoA dehydrogenase	ATGATCGCCGATACCTCGTCCACCGCCCTGACCGACCGTCAGCGCAAGCTCAGCCAGACCGTCCGCGAGTTCGCCGACGAGGTCGTCGCGCCGGCGGCGTACCAGTACGACACCGAGCGGCGCCTGCCGATCGAGATCATCCACCAGATGGGCGAGCTCGGGTTGTTCGGGCTGCCGTTCCCCACCGAGGTCGGCGGGCAGGGCGAGGACTACGTCTCGCTGTGCCTCGCGGTCGAGGCGCTCGCCCGCGTCGACCAGTCCATCGCCGTCACGCTCGAGGCCGGCGTCGGGCTCGGCATCATGCCGATCTACCGGCACGGCACCGACGCCCAGCGCGAGCAGTGGCTGCCCGACCTCGTCTCGGGCCGCGCGCTGGGCGCGTTCGGGCTCACCGAGGCCGGTGCCGGGTCCGACGCCGGAGCCACCCGCACCACTGCCCGCCTCGAGTCCGGAGCGGCAGGCGACGAGTGGGTCATCGACGGGTCCAAGCAGTTCATCACCAACTCCGGGACCCCGATCACCAGCGTCGTGACCATCACCGCCGTCACCGACCGGCGCGACGACGGGACGCCCGAGCTGTCCACCATCCTCGTCCCGGCCGGCACCCCGGGCCTGACGGTCGGGGAGAGCTACGACAAGGTCGGCTGGCACACCTCGGACACCCACCCCCTGACCCTCGAGGGCGTGCGGGTGCCGGCGTCGAACCTGCTCGGCGAGCGCGGGCGCGGGTACGCGAACTTCCTGCGGGCGCTCGACGAGGGGCGCATCGCCTTCGCGGCGCTGGCCACCGGTGCCGCCCAGGGCTGCCTCGAGGAGGCCGTGCGGTACGCGACGGAGCGCGAGGTGTTCGGCCACGCCATCGGGCAGAACCAGCACATCGCGTTCACCATCGCGCGCATGCAGGCCCGCGTGCACGCCGCCCGGCTGTGCTGGCTCGACGCCGCCCAGAAGCTCATCCACGGCAAGCCCTTCAAGGCCGAGGCGTCCGTCGCCAAGCTGACCTCCGGCGAGGCGGCGATGGCCAACGCCCGCGACGCCTCGCAGATCTTCGGCGGCTACGGGTTCCTCAACGAGAACCCCGTGGCCCGGCACTACCGCGACGCCAAGGTGCTCGAGGTCGGCGAGGGCACCACCGAGGTGCAGCTCATGATCATCGCCCGCGACCTCGGGCTCACCGCCTGA	MIADTSSTALTDRQRKLSQTVREFADEVVAPAAYQYDTERRLPIEIIHQMGELGLFGLPFPTEVGGQGEDYVSLCLAVEALARVDQSIAVTLEAGVGLGIMPIYRHGTDAQREQWLPDLVSGRALGAFGLTEAGAGSDAGATRTTARLESGAAGDEWVIDGSKQFITNSGTPITSVVTITAVTDRRDDGTPELSTILVPAGTPGLTVGESYDKVGWHTSDTHPLTLEGVRVPASNLLGERGRGYANFLRALDEGRIAFAALATGAAQGCLEEAVRYATEREVFGHAIGQNQHIAFTIARMQARVHAARLCWLDAAQKLIHGKPFKAEASVAKLTSGEAAMANARDASQIFGGYGFLNENPVARHYRDAKVLEVGEGTTEVQLMIIARDLGLTA	PGPT0002285_547	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248	NA	NA
AK001_01501	2106	accA1	COG4770	Acetyl-/propionyl-coenzyme A carboxylase alpha chain	ATGTTCTCCACCGTCCTGGTCGCCAACCGCGGCGAGATCGCCTGCCGCGTCATGACCACCCTGCGCCGCCTCGGCATCCGCTCCGTGGCCGTGCACACCGGCGCCGACGCCGACGCGCGCCACGTGCGCGAGGCCGACGTCGCCGTGTCGCTCGGCGAGGGACCCGCCGGCTACCTGGACCCGGACGCCGTCGTGGCGGCCGCCGTCGCCTCCGGTGCGGAGGCGATCCATCCCGGGTACGGCTTCCTGTCCGAGAACCCGGCCCTGGCCCGGGCCTGCGACGCCGCCGGGATCGTGTTCGTCGGTCCGCCCGTCGCGGCGATCGAGACGATGGCCGACAAGGTCGCCGCCAAGCGCCTCGTCGCCCAGCACGAGGTCCCGGTGCTGCCCGGGACGCTGGACGCCTCGCTGCCCGACGACGCCCTCGTCGCCGCGGCCGACGACGTCGGCTTCCCGCTGCTGGTCAAGCCCGTCGCGGGCGGGGGCGGCAAGGGCATGGTCGTCGTGCGGTCCGCGGGCGAGCTCCCGGACGCGCTGGCCTCGGCCCGTCGCGTGGCGACCTCCGCGTTCGGCGACGACGGCCTGCTGCTGGAGCGGCTCGTGGACACCCCGCGGCACGTCGAGGTCCAGGTGCTCGCCGACTCCGCGGGGACCGTCGTCCACCTCGGCGAGCGCGAGTGCACCCTGCAGCGCCGGCACCAGAAGATCGTCGAGGAGGCCCCCTCCCCGGCGCTGGACGACGTCGCCCGCGACCGGATGGGGCGGGCCGCCTGCGAGGTCGCCCGCTCGGTCGGGTACGTCGGCGTCGGCACGGTGGAGTTCCTCGTGCCGGCCGGTGCGCCCGAGGCGTTCTCGTTCATCGAGATGAACACCCGCCTGCAGGTCGAGCACCCGGTCACCGAGATGGTTACCGGCCACGACCTGGTCGAGGCCCAGCTCCGGGTCGCCGCGGGGGAGAAGCTGTGGTTCGCCCAGGACGACGTGCACCTGACCGGGCACGCGATCGAGGCGCGGATCTACGCCGAGTCCCCGGCGCGGGACTTCCTGCCCTCGGTCGGGGACGTCCTCGTCCTCGACGACGCCGGGGTGGCGGCCGGGCCGTCCGCGATGCCGCTGCGGCTGGACGCCGGCGTCGCCGCGGGGGACGCCGTCTCCGGCCACTTCGACCCGATGATCGCCAAGGCGGTCGCGCACGGGGCCGACCGCGACGAGGCCCTGGCCCGCCTGGACGGTCTGCTGTCCCGGCTGACCGTGCTCGGCGTGGAGACCAACACCGGGTTCCTGCGGGACCTGCTGGCCGACGCCGACGTGCGGGCCGGCCGCCTGCACACGGGGCTGGTGGACCGGCTCACCGCGCGTCCGGCCGGGACCGACGACGCGGCCGGGACCGACGACGCGGCCGGGACCGGTGACGCAGCCGGGACCGTCGGAGCCGGTGGGGCGGGCCAGGTGGCTGCGGCGCTGCTCGCCGGACTGCCGTCACCGGCCGACGGTGGCGTGCCCGACCCGTGGGCCGCCGACGGCTGGCGCCTCAACGCCGGGGCCGCACCGCGCCGGATCGGCCTGCGCGGCCCGGACGGCACGGTGGCCGACCTCGAGCTCGCCGGTGCGCGGGACGGCGCCACCCTCGTGCCCGACGACGGTGACCCCGTCGACGCCGCGCTCCGGCCCGCCGGCGGTCCGGCGCACCGGTGGCTGCTCACCACGGCCGGGCGGACCCGGCCGGTCTCGGCGCTGCGGGTCATCGCCGGCGACACCGACACCGTGTGGGTGGCCGTCGACGGCCGCACCTCCGCGTGGACGGTGCTCGACCGTGCCGCCCGGGCGAGCCTGCGCCGCGCCGAGCGGGTCGCCGGCGCCGCACCGGACGGCGGTACCGCCGTCGGACCTCTCGAGCTCCGGGCGAAGATGCCCGGCACGGTCACCGCGACCCACCCCGCAGGACCCGTCGACGCCGGCGCCGCCGTCGTCGTCGTCGAAGCCATGAAGATGGAACACCCCCTCACCGCACCGGCCGCAGGGACCCTGCGCGTCCTGGTGCGCCCCGGCGACCAGGTCCGCCTCGACCAGGTGGTCGCCGTCGTCGAACGCGAAGGAGCGTCATGA	MFSTVLVANRGEIACRVMTTLRRLGIRSVAVHTGADADARHVREADVAVSLGEGPAGYLDPDAVVAAAVASGAEAIHPGYGFLSENPALARACDAAGIVFVGPPVAAIETMADKVAAKRLVAQHEVPVLPGTLDASLPDDALVAAADDVGFPLLVKPVAGGGGKGMVVVRSAGELPDALASARRVATSAFGDDGLLLERLVDTPRHVEVQVLADSAGTVVHLGERECTLQRRHQKIVEEAPSPALDDVARDRMGRAACEVARSVGYVGVGTVEFLVPAGAPEAFSFIEMNTRLQVEHPVTEMVTGHDLVEAQLRVAAGEKLWFAQDDVHLTGHAIEARIYAESPARDFLPSVGDVLVLDDAGVAAGPSAMPLRLDAGVAAGDAVSGHFDPMIAKAVAHGADRDEALARLDGLLSRLTVLGVETNTGFLRDLLADADVRAGRLHTGLVDRLTARPAGTDDAAGTDDAAGTGDAAGTVGAGGAGQVAAALLAGLPSPADGGVPDPWAADGWRLNAGAAPRRIGLRGPDGTVADLELAGARDGATLVPDDGDPVDAALRPAGGPAHRWLLTTAGRTRPVSALRVIAGDTDTVWVAVDGRTSAWTVLDRAARASLRRAERVAGAAPDGGTAVGPLELRAKMPGTVTATHPAGPVDAGAAVVVVEAMKMEHPLTAPAAGTLRVLVRPGDQVRLDQVVAVVEREGAS	PGPT0019850_31	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TERPENE_UTILIZATION	vCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777	NA	NA
AK001_01502	1623		COG4799	Methylmalonyl-CoA carboxyltransferase 12S subunit	ATGACCGTGCTGACCTCCGCCGTCGACCCGGCCACCGAGGAGGTCCGGGCCAACGCCGACGCGCAGCGGGCGCTCGCGGCCACCCTGCGCGAGCGCACCGCCGTCGCCGCGCGCGGCGGTCCCGAGCACGCGCGGGCCAAGCACGTCGGGCGCGGCAAGCTGCTGCCGCGCGAACGGGTCGAGCGGCTGCTGGACCCGGGCAGCGCGTTCCTGGAGATCTCCCCGCTGGCGGCGTACGGCGTGGACGACGCGGCGGGCGGCCGGGGCGAGTGGCCCGGCGCCGGCGTGGTCGCCGGCATCGGCAGGGTCGCCGGGCGGCAGGTGATGGTCGTGGCCAACGACCCCACGGTCAAGGGCGGCACCTACCACCCGCTGACCGTGAAGAAGCACCTGCGTGCCCAGGAGATCGCGCTGGAGAACCGGCTGCCGTGCGTCTACCTCGTCGACTCCGGCGGGGCGTTCCTGCCCCGCCAGGACGAGGTCTTCCCCGACCGCGACCACTTCGGGCGGATCTTCTACCACCAGGCCCGGCTGTCCGCGGCGGGGATCCCGCAGCTGTCCGCCGTGCTCGGGTCGTGCACCGCCGGGGGCGCCTACGTCCCGGCGATGAGCGACGAGACCGTCATCGTGCGCGGCCAGGGAACCATCTTCCTCGGCGGCCCGCCGCTGGTGAAGGCGGCCATCGGCGCCGACGTCACCGCCGAGGAGCTCGGCGGCGGCGAGCTGCACGCCCGCCGCTCCGGCGTCGTCGACCACCTCGCCGAGGACGACGAGGACGCGCTGGACCGGGTGCGGCGCATCGTCGCGACGCTGCCGCCGGACCCGGACCCCGTGTGGGCCGTGCACCCCGCCGAGGAACCTGCCGCGGACCCGGCCGGGCTCTACGACGTCGTGCCCGTGGACGTCCAGCAGCCGTACGACCCGCGCGAGGTGATCGCCCGGATCGTCGACGGCAGCCGCCTGGACGAGTTCAAGGCCGAGTACGGCACCACGCTGGTGTGCGGGTTCGCGCGCATCCACGGGCACCCGGTCGGGATCCTGGCCAACCACGGGGTGCTGCTCGGCGAGTCCGCGCTCAAGGGCGCCCACTTCGTCGAGCTGTGCGACCAGCGCGGCGTGCCGCTGCTGTTCCTGCAGAACATCTCCGGGTTCATGGTCGGCCCGGACGCCGAGGCCGGCGGCATCGCCAAGGACGGCGCCAAGATGGTCACCGCCGTGGCCACCACCCGGGTGCCGAAGCTGACCGTCGTCGTCGGCGGGTCCTTCGGCGCCGGCAACTACGCGATGTGCGGACGCGCCTACTCGCCCCGGTTCCTGTGGACCTGGCCGAACGCCCGCGTGTCCGTGATGGGCGGCGAGCAGGCCTCGGCCGTGCTCGCCACCGTCAAGCGCGACCAGCTCGCCGCCCGCGGCGAGGAGTGGGACGCCGACGAGGAGGCCACGTTCCGCCGCGGCATCCGCGACACCTACGAGGCCGCCGGCGAGGCGTACCACGCCACCTCGCGCCTGTGGGACGACGGCATCCTCGACCCGCCCGACACCCGCCGGGTGCTCGGCATGGCGCTCGCGGTCTGCGCGCGCACCCCGCTGCCCGAGCCCGCCTTCGGGCTCTTCCGGATGTGA	MTVLTSAVDPATEEVRANADAQRALAATLRERTAVAARGGPEHARAKHVGRGKLLPRERVERLLDPGSAFLEISPLAAYGVDDAAGGRGEWPGAGVVAGIGRVAGRQVMVVANDPTVKGGTYHPLTVKKHLRAQEIALENRLPCVYLVDSGGAFLPRQDEVFPDRDHFGRIFYHQARLSAAGIPQLSAVLGSCTAGGAYVPAMSDETVIVRGQGTIFLGGPPLVKAAIGADVTAEELGGGELHARRSGVVDHLAEDDEDALDRVRRIVATLPPDPDPVWAVHPAEEPAADPAGLYDVVPVDVQQPYDPREVIARIVDGSRLDEFKAEYGTTLVCGFARIHGHPVGILANHGVLLGESALKGAHFVELCDQRGVPLLFLQNISGFMVGPDAEAGGIAKDGAKMVTAVATTRVPKLTVVVGGSFGAGNYAMCGRAYSPRFLWTWPNARVSVMGGEQASAVLATVKRDQLAARGEEWDADEEATFRRGIRDTYEAAGEAYHATSRLWDDGILDPPDTRRVLGMALAVCARTPLPEPAFGLFRM	PGPT0008345_131	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008345-accD-K01970	NA	NA
AK001_01503	1413	pdhC_2		Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complex	ATGAGCGCCCAGGAGATCTTCCGCCTGCCGGACCTCGGCGAGGGCCTGACGGAGTCCGAGATCGTCGAGTGGAAGGTGTCCGTGGGCGACACGGTCACCCTCAACCAGGCGATCGCCGAGGTCGAGACGGCCAAGGCGATGGTCGAGATCCCGTCGCCGTTCGCCGGGACCGTGGCCGCGCTGCACGCCGCGGAGGGCGACGTCGTCGAGGTCGGCGAGCCGCTGGTCACCTTCGGCACCGGCGACGGCGACGACGCGGGCGACGACGCCCCCGCCGGTGCCTCGGCCGACGATGTCGCCTCCGCCCCCGAGCCGGCGCCCGAGTCGACGGCACCCGGGCCCACGGTCCCCGCGACGACGCCGGAGCCGAGCCCCGCCACCGGGTCGCCGTCCTCGCCGTCCTCGGCGTCGGCGAACGGGACGTCGGGGGAGTCCTCCGGCGCGAACCTCGTCGGCTACGGCACCCGCGCCGCCCGCAAGGGCAGGCCGACGCGACGGCCCCGCACACCCGTCGAGGCCCCGCCCGCCCCGGTGCGGAACACCGGACCCAGCGCCGGGCAGGCCACCGCCCCGGCCGCCACCTCGACCACCGGGAGGCCGGCCGAGCACCGCGTGAAGGTGCGCAGCGTGCGCAAGCACACCGCGGCCGCGATGGTCGCCAGCGCGCGGGTCCCGCAGGCCACGGTCCACCTCACCTGCGACGTGACCGAGACGCTCGCCCTGGTGGCCCGCCTGCGCGAGCACCCGCGCACCCGGCACACGAAGGTCGGGCTGCTCACGGTCGTCGCCCGCGCGGTCTGCGGGCTGGTCCCGCAGCACCCGGCGCTCGTCACCCGCTGGGAGGAGCACGACGACGGCGCGGCCGAGCTCGTCCGCTCGCCGCACGTCAACCTGGGCATCGCGGTCGCGACCGACCGGGGCCTGGTGGTGCCGCACGTCCCGCGGGCCGACGAGCTGTCGCTGGTGGGGATGGCGCGCGCCCTGCGCGAGCTGACCACGACCGCCCGGTCCGCGCGCACCCGTCCGGACCGCCTCACCGGCGGCACCCTGACGCTGACCAACGTGGGGGTCTTCGGCGTCGACGCGGGCAGCCCGCTGCTCAACCCGGGCGAGTCGGCGATCCTCGGCATCGGGCAGATCGCCCGCCGGCCGTGGGAGCACGACGGCGAGATCGCGCTGCGCGACGTGGTGACGTTCAGCCTGACCTTCGACCACCGGGTCGTGGACGGCGAGCAGGGCGCCCGGTTCCTCGCGGACCTGGGCGGGCTGCTCACCGACCCGGCGCTGGCGGTGCTGCTGGGTGGCCGCGACGAGCCCGCGCCCGACGCGACGGAGCAGGACGACGCGGAGCCCCACGACGGCGCCGCGGGGCGCAACGGTACGGCCGCGCCGCGCGAGGCGGTGACCGTATGA	MSAQEIFRLPDLGEGLTESEIVEWKVSVGDTVTLNQAIAEVETAKAMVEIPSPFAGTVAALHAAEGDVVEVGEPLVTFGTGDGDDAGDDAPAGASADDVASAPEPAPESTAPGPTVPATTPEPSPATGSPSSPSSASANGTSGESSGANLVGYGTRAARKGRPTRRPRTPVEAPPAPVRNTGPSAGQATAPAATSTTGRPAEHRVKVRSVRKHTAAAMVASARVPQATVHLTCDVTETLALVARLREHPRTRHTKVGLLTVVARAVCGLVPQHPALVTRWEEHDDGAAELVRSPHVNLGIAVATDRGLVVPHVPRADELSLVGMARALRELTTTARSARTRPDRLTGGTLTLTNVGVFGVDAGSPLLNPGESAILGIGQIARRPWEHDGEIALRDVVTFSLTFDHRVVDGEQGARFLADLGGLLTDPALAVLLGGRDEPAPDATEQDDAEPHDGAAGRNGTAAPREAVTV				NA	NA	NA	NA	NA
AK001_01504	1038	bkdB_2	COG0022	3-methyl-2-oxobutanoate dehydrogenase subunit beta	ATGACCGACATGACCCTGGGCCAGGGCCTCAACACCGGCCTGCGGCAGGCCCTCGGCGACGACGACAAGGTCGTGCTCCTCGGGGAGGACATCGGCACCCTCGGCGGCGTGTTCCGCGTGACCGACCAGCTCCAGCGCGAGTTCGGCCCGCACCGCGTGATCGACACCCCGCTGGCCGAGTCCGGCATCCTGGGCACCGCCGTCGGGATGGCCTGGCGCGGGTTCCGGCCGGTGGTGGAGATCCAGTTCGACGGGTTCGTCCAGCCGGCCTGGGACCAGATCGTCAACCAGGTCGCCAAGATGCACGCCCGCACCGGCGGGGCCGTGCGGATGCCGATCACCGTGCGCATCCCCGTGGCCGGGGGCATCGGCGCCGCCGAGCACCACTCGGAGTCGCCGGAGGCGTACTTCGTGCACACCGCCGGGCTGCGCGTGGTGTCGGTGTCGAACCCGCAGGACGCCTGCACGGTGCTGCGCCAGGCGATCGCCAGCGACGACCCGGTCGTCTTCTTCGAGCCGAAGCGGCTGTACCACGTCAAGGGTCCGGTGGAGGTGGAGGACCTGACCGCCGTCCGTCCGATGGGCGCGGCCCGCGTGGTCCGCCCGGGCGAGGACGTCACCGTCGTCACCTGGGGCTCGCACGTGTCGACGTCCCTGGACGCGGCCGAGGCGATGGCCGACGACGGCGCCTCGGTCGAGGTCGTCGACCTGCGCTCGCTGTCGCCCTGGGACTCCGACGCCGTGGTGGCGTCGGTGCGCCGCACCGGTCGGCTCGTCGTCGTGCACGAGGGTCCCCGCCAGGGTGGCGTCGGCGCGGAGATCTGCGCGGCCGTCACCGAACGGTGCTTCGCCGAGCTGGCGATGCCACCGGTGCGGGTGACCGGCCACGACGTGCCCTACCCGCCGGCGAAGGTCGAGGGGCACTACGTGCCCGACCTGGACCGGGTGTGCTTCGGCATCGACCAGGCGCTCGGCCGGGTGCCGCTGGAGACCTTCGCACCCGCCCCGACCATGACGACCGGAGAGGTGGCCGCATGA	MTDMTLGQGLNTGLRQALGDDDKVVLLGEDIGTLGGVFRVTDQLQREFGPHRVIDTPLAESGILGTAVGMAWRGFRPVVEIQFDGFVQPAWDQIVNQVAKMHARTGGAVRMPITVRIPVAGGIGAAEHHSESPEAYFVHTAGLRVVSVSNPQDACTVLRQAIASDDPVVFFEPKRLYHVKGPVEVEDLTAVRPMGAARVVRPGEDVTVVTWGSHVSTSLDAAEAMADDGASVEVVDLRSLSPWDSDAVVASVRRTGRLVVVHEGPRQGGVGAEICAAVTERCFAELAMPPVRVTGHDVPYPPAKVEGHYVPDLDRVCFGIDQALGRVPLETFAPAPTMTTGEVAA	PGPT0008862_46	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167	NA	NA
AK001_01505	1365	bkdA_2	COG1071	3-methyl-2-oxobutanoate dehydrogenase subunit alpha	ATGCCCAGCACCACGGATCCGAGGACGCACCACGACCTGTCACGAGCGGGAGAATCGGTGTCCTCGGCGGACAGTGCCCACGGCGGCGCACGTGACCACGTGCCGGCCGGGTGGGTGCAGCACGAGAACGGCCGGTCCGACGACGTCCCGGCCGACGGCGGGACGGCGCCGGAGGCCGGCACGCGGCCCGACGGCGGGAGCACCGCCGAGCCCGTGCGGCTCCTGGACCCGGACGGCACCCGGCACGGCGACCCCGACCTGGACCGCTGGCTCGAGGACGTGGACGACGCCGCGATGCTGCGGCTGTACACCGACATGATGGTCGCGCGCCGGATCGACACCGAGGCGACCGCCCTGCAGCGCCAGGGCCAGCTCGGCCTGTGGCCGCCGCTGCTCGGCCAGGAGGCCGCGCAGATCGGGTCGGCCCGCGCCCTGCGGCCCGACGACTTCGTGTTCTCCAGCTACCGCGAGCACGGCGTGGCGCACGTGCGCGGCGTCGCGCCCACCGACCTGCTGCGCGTGTGGCGCGGTGTCTCCGGCTCCGGGTGGGACCCGTACGAGCACCGCATCGCCCCGATGCAGGTCATCATCGGCGCCCAGACCCTGCACGCCGTCGGCTACGCCGTCGGGATGCTCATCGAGAACGCCACGGCCGATGGAGGGCCGGACGGCGGGATCGGCATCGCCCCGCCCGCGGCGGGCGACCAGGACGCTCCGGAGCGGACCGCGGCCACGATCTCCTACTTCGGCGACGGTGCGACGAGCCAGGGCGACGTCCACGAGGCGATGACCTTCGCCGCCACGTGGGCCGCCCCGACCGTGTTCTTCTGCCAGAACAACCAGTGGGCGATCTCCGAGCCGGTGGCCCTGCAGTCCAAGGTGCCGCTGGTCGAGCGCGCCCGCGGCTACGGGATGCCCGGCGTGCGCGTCGACGGCAACGACGTGCTCGCCTGCCTGGCGGTCACGCGCGAGGCCCTGCACCGGGCCCGCACCGGCGGCGGACCGACCCTCGTCGAGGCCGTCACCTACCGGATGGGCCCGCACACCACGGCCGACGACCCCACGCGGTACCGCACCCCCGACGACCTGGAGGCGTGGGCCGAGCGGGACCCGATCGACCGGCTGGCCGCCCACCTGAGCGAGCGCGGCGTGCTGGACGACGACGCCCGGGCCGCGGCGCAGCAGGCTGCGGACGACCTGGCCGCCGAGCTGCGTGCCGGCATCACCGAGATCCCCGACCCGTCGTGGACCACGGTCTTCGACCACGTCTACGCCGAGCCGCACGCGCCGCTGGACGCCGAGCGGGACGCCTACGGGCGCTACCTCGACGGCTTCGCCGACGCCCCCGAGGAGGCAGCCCGATGA	MPSTTDPRTHHDLSRAGESVSSADSAHGGARDHVPAGWVQHENGRSDDVPADGGTAPEAGTRPDGGSTAEPVRLLDPDGTRHGDPDLDRWLEDVDDAAMLRLYTDMMVARRIDTEATALQRQGQLGLWPPLLGQEAAQIGSARALRPDDFVFSSYREHGVAHVRGVAPTDLLRVWRGVSGSGWDPYEHRIAPMQVIIGAQTLHAVGYAVGMLIENATADGGPDGGIGIAPPAAGDQDAPERTAATISYFGDGATSQGDVHEAMTFAATWAAPTVFFCQNNQWAISEPVALQSKVPLVERARGYGMPGVRVDGNDVLACLAVTREALHRARTGGGPTLVEAVTYRMGPHTTADDPTRYRTPDDLEAWAERDPIDRLAAHLSERGVLDDDARAAAQQAADDLAAELRAGITEIPDPSWTTVFDHVYAEPHAPLDAERDAYGRYLDGFADAPEEAAR	PGPT0008861_333	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166	NA	NA
AK001_01506	474	asnC	COG1522	Regulatory protein AsnC	GTGCACAGCATCGACGCCGTGGACCTGGACCTGCTGCGGGCGCTCGCCGACGACCCCCGCGCGACCACGGTCGCCCTCGCCCAGAACCTGGGGATCTCCCGCAACACCGTGGCCGCCCGGCTGGCGCGGCTGGAGGACGCGGGCGCGTTCCTCTCCTTCGACCGCCGCATCGACCCCGCGGTGCTGGGCCACCCGCTGCTGGCCTTCATCGAGATCACCGTCCACCAGCGCGACCTGGCACGGATCGTCGAGCACCTGGCCCGGATCCCCGAGGTCGTGCAGGCCTACGGGCACAGCGGCACCGCCGACCTGCGGGTGCACGTCGTGTGCCGGGACACCGACCACCTGTTCCGCATCGACGCGGCGATCCTGCGCGTCGACGGGGTGGAGCGGACCGAGACCTCCCTGGCCATGGGCGAGCTCATCCCCTACCGGGTGCAGCCGCTGGTGGAGAAGCTGCGCCGCGAGGTCTGA	MHSIDAVDLDLLRALADDPRATTVALAQNLGISRNTVAARLARLEDAGAFLSFDRRIDPAVLGHPLLAFIEITVHQRDLARIVEHLARIPEVVQAYGHSGTADLRVHVVCRDTDHLFRIDAAILRVDGVERTETSLAMGELIPYRVQPLVEKLRREV				NA	NA	NA	NA	NA
AK001_01507	1590	qacA	COG0477	Antiseptic resistance protein	GTGCCGGACCGCCGTCGATGGCTCGCGCTGGTGACCGTGTCGGTCGCCGTCTCGCTCATCATCGTCGACTCGACGATCGTCAACGTGGCGATCCCGTCGATCGTCGACGACCTGGGGATCGACTCCACCCAGGTCCAGTGGGTCCAGGAGTCCTACACCCTCGTCTTCGCCTCGCTCCTGCTCGTGCTCGGCGTGCTCGCCGACCGCTGGGGCCGGCGCCGCATGATGATGACCGGCGTCGTGGTCTTCGCCGCGTCCTCGCTGCTGGCCGCCACCGCACCCGACGGCACCGTCCTCGTCGGCGCCCGCCTCGTCCAGGGCCTGGGCGGCGCGATGATCCTGCCGACGACGCTCTCGATCATCAACGCGACCTTCCGCGGCCGCGAGCGCGGCATCGCCTTCGCCGTGTGGGGATCGACCATCGGCGGCATGGCCGCCGTCGGCCCGCTGCTGGGCGGCTGGCTCACCACCGACTACTCGTGGCGCTGGGCGTTCGGCATCAACATCCCGCTCGGGGCGCTGATCCTCGTGGCCGCGGCGCTCGTGGTGACCGAGTCGCGGGCGGACGAACGACGCGGGACCGACGGCGTCGCGGCGCTGCTGTCCGTCGTGGCCTTCGGCGGCCTCGTCTTCGGACTCATCGAGGGGCGCTCGCTCGGCTGGTGGACCACCCTCGACGACGCCGCCACCTGGTGGCCGTGGGCGCTGTCGCCCGTACCCGTCGCGCTGGGCGTCGGGGTCGTCGCGGCAGCGCTGTTCGTGCGCCGCGGCCTGCGCCGCGCCCGACAGGGGCGCCCGACGCTGATCCCCCTGGACCTGTTCGCCATCGCCTCCTTCCGCAACGGCAACGTCGCCGCTCTCGTGGTGTCCCTCGGCGAGTTCGGCATCCTGCTCTCGTTGCCGATCTGGCTGCAGAACGTCCTCGGCTACGACGCGCTGGCCACCGGCTGGATCCTCGTCGCGCTGGCCGGCGGGTCCTTCCTGGCCAGCGGCGCCGCCCAGGCGCTCACGGTCCGGTACGGCGCCGTGCCGATCGTGCGCCTGGGCATCGCGGCCGAGATCGTCGGCGTCGTGGGCCTCGGCGTCGTGGCCCGTCCTGACTCGACGTGGGTGTCGGTGGTGCCGTTCCTGGTCGTGTACGGCTTCGGCGTCGGACTGGCCACGGCCCAGCTCACCGGGGTCGTGCTGGCCGACGTGCCCGTGCGGGTCTCGGGCGCGGCGTCGGGGACCCAGAGCACCGCACGTCAGGTCGGGTCCGCCCTCGGCATCGCGATCCTGGGCACCATCCTGTTCACCACCACCGCGGCGGACCTCGACGCACGGCTCGCGGACCAGGGCGTTCCCGAGGCGCAGCGCGCCACCACGGTCACGGCGGTGGTGGACAGCGCCGGCGGCGCGATCGCCGGGCTCGAGCAGGACCCGGCCACGGCCTCGGTCGCCGACGACGCCCGGGCGGCCCTGACCCAGGGCACCCGGTGGTCGGCGTGGGCGGCCGGCGGGTTCCTGCTGCTCGGGCTCGGGGCGACCCTGACGCTGGGCCGACGCTCCCGGGAGACGACGGAGGCCCCGGTGGCCGACGACCGCGCCTGA	MPDRRRWLALVTVSVAVSLIIVDSTIVNVAIPSIVDDLGIDSTQVQWVQESYTLVFASLLLVLGVLADRWGRRRMMMTGVVVFAASSLLAATAPDGTVLVGARLVQGLGGAMILPTTLSIINATFRGRERGIAFAVWGSTIGGMAAVGPLLGGWLTTDYSWRWAFGINIPLGALILVAAALVVTESRADERRGTDGVAALLSVVAFGGLVFGLIEGRSLGWWTTLDDAATWWPWALSPVPVALGVGVVAAALFVRRGLRRARQGRPTLIPLDLFAIASFRNGNVAALVVSLGEFGILLSLPIWLQNVLGYDALATGWILVALAGGSFLASGAAQALTVRYGAVPIVRLGIAAEIVGVVGLGVVARPDSTWVSVVPFLVVYGFGVGLATAQLTGVVLADVPVRVSGAASGTQSTARQVGSALGIAILGTILFTTTAADLDARLADQGVPEAQRATTVTAVVDSAGGAIAGLEQDPATASVADDARAALTQGTRWSAWAAGGFLLLGLGATLTLGRRSRETTEAPVADDRA				NA	NA	NA	NA	NA
AK001_01508	630			hypothetical protein	GTGACGGGGACGACGGCGGAGCTCGTCGGGCGTGCGCGGGCGCTCGCGGTGCCGGGCCGGCGGGCGATCCTCGGGATCGTCGGGGCGCCCGGCTCCGGCAAGTCCACGCTGGCCGCGGCACTCGGCGAGGCGCTGGGACCGGACCTCGCCGTCGTCGTCGGGATGGACGGTTTCCACCTGTCGGACGCGGTGCTGGCGGCCCACGGCAGCCGGGGGCGCAAGGGTGCGATCGACACGTTCGACGACGGCGGCTACGCGGCGCTGGTCGACCGGCTCGCGGACGCCCGGCCCGGCGACCCGCCGGTCTACGCCCCGGTGTTCCGGCGCGAGATCGAAGAGCCGGTCGCGGCCGGCGTCGAGGTGCCCTCCGACGTGTCCCTGGTGGTGACCGAGGGGAACTACCTGCTGGCGCCCTCGGGTGCCTGGCCGCGGGCACGGGCCTGCATGACCGAGGTCTGGTACGTCGAGGTGCCCGACGACGTCCGGCTGGCCCGGCTGGAGGCGCGGCACCGGGCGTTCGGCAAGAGCCCCGCCGACGCGTCCCGGTGGGCGCGGGGCTCGGACCAGGTCAACGCCGAGCTGATCGAGAGCACGCGGGACGCCGCGGACCTCGTCGTCACACCCGGCTGA	MTGTTAELVGRARALAVPGRRAILGIVGAPGSGKSTLAAALGEALGPDLAVVVGMDGFHLSDAVLAAHGSRGRKGAIDTFDDGGYAALVDRLADARPGDPPVYAPVFRREIEEPVAAGVEVPSDVSLVVTEGNYLLAPSGAWPRARACMTEVWYVEVPDDVRLARLEARHRAFGKSPADASRWARGSDQVNAELIESTRDAADLVVTPG				NA	NA	NA	NA	NA
AK001_01509	888	yihV		Sulfofructose kinase	ATGCGCACCTGCTGGTTCGTCGGACTGACGACCCTCGACGTCGTGCACCGCGCCGCCGGGCGACCGGGCCGCGACGAGAAGGTCACCGCCTCGCGCCAGGACGTCGCCGCGGGCGGCCCGGCCGCCAACGCCGCCGTCACCGCCGCCGCCCTCGGGGCCCGGGCCGTCCTCGTCACCGCCCTCGGCAGCAGCCCCGTCGCCCGGGCCGCCCGCGCCGACCTGGAGGCCTGCGGCGTCGAGGTGCACGACGTCGTGGCCCCCGGGGAGGACTTCCCGCTCGCGGTCTCGGCGGTGCTGGTCGACGACGCGACCGGCGAGCGGTCGGTCGTCTCGGCCGACGCGGCGTTGGCCGAGGCCCCGCCGCCGACGTTCCTGCGCGACCTGCCCGCGCCCGACGTCGTCCTGTTCGACGGGCACCACCCGGTGATCGCGGGTGCCGCCGTCGGGCACCTCGAGAACCGTGACCCGCGGCCGCAGGTGCTGCTCGACGCCGGACGCTGGCGGCCGTTGTTCGCCGAGCTGCTGCCCGTCGCGGACGTGGCGGCGGTCTCCGCCCGGTTCACGGTGCCCGGGCACGACGACGTCGTGTCCGGGACGCACGCCCTCGGCGCGCGTGGCGTGGTGGTCACCCACGGCGGCGGGCCGGTCGAGTGGTCCACCGGCGGCGAGGCCGGGACCGTCGCCGTGCCGCCGGTCGACGCCCGCGACACCCTCGGCGCGGGGGACGCGTTCCACGGGGCGCTCGCCGTCGAGCTGGCCGACGGCGCCACGCTGCCCGTGGCCTGCGCGGCCGCGAACGAGGTCGCCTCGACCCGCGTGGCGCACGTCGGGCCGCGCGCCTGGCTCACCGAGGTGCGCGCCGAGACGCGTGCCGAGGCCCCCCGGTGA	MRTCWFVGLTTLDVVHRAAGRPGRDEKVTASRQDVAAGGPAANAAVTAAALGARAVLVTALGSSPVARAARADLEACGVEVHDVVAPGEDFPLAVSAVLVDDATGERSVVSADAALAEAPPPTFLRDLPAPDVVLFDGHHPVIAGAAVGHLENRDPRPQVLLDAGRWRPLFAELLPVADVAAVSARFTVPGHDDVVSGTHALGARGVVVTHGGGPVEWSTGGEAGTVAVPPVDARDTLGAGDAFHGALAVELADGATLPVACAAANEVASTRVAHVGPRAWLTEVRAETRAEAPR	PGPT0017405_453	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852	NA	NA
AK001_01510	1062	gpr_2	COG0667	L-glyceraldehyde 3-phosphate reductase	ATGCCCCTCGCACCGCGATATCTCGCCGCCGAGACCCGCTACGAGTCCATGACCTACCGCCGCACCGGCCGCTCGGGGCTCGACCTGCCCGCGTTGTCGCTGGGCCTGTGGCACAACTTCGGCGACGTCAACCCGTTCGAGACGCAGCGCGCCATCCTGCGCCGCGCGTTCGACCTCGGGGTGACGCACTTCGACCTGGCGAACAACTACGGCCCGCCCTACGGCTCGGCCGAGGAGAACTTCGGGCGACACCTCGCCGCCGACCTCGCGCCCTACCGGGACGAGCTGGTGATCTCGACCAAGGCCGGGTACGACATGTGGCCCGGCCCGTACGGCGACCACGGCTCGCGCAAGTACCTGCTGGCCTCGCTCGACCAGTCGCTGGGACGCCTGGGGCTCGACTACGTCGACATCTTCTACCACCACCGCCCGGACCCCTCGACGCCGCTCGAGGAGACCATGGGGGCGCTGGCCTCGGCGGTGCAGCAGGGCAAGGCGCTGTACGTCGGGGTGTCCAACTACTCCCCGGCGCGCACCCGTGAGGCCGCGCGCATCCTGGCGGACCTGGGCACGCCGCTGCTCATCCACCAGCCCAGCTACTCGATGTTCAACCGCCACGTCGAGGACGCGCACCGCGAGGACCGCTACGACGGACGGCAGAGCGAGTCGCTGCTCGACGCCGTGGAGGACCTGGGCGTGGGCACCATCGTGTTCTCCCCGCTGCAGCAGGGCCTGCTGACGGGGCGGTACCTGTCGGGTGACGCTCCGGCGGGCTCCCGCGCGGCGCGCTCCGACTCGCCGTTCCTGTCGAGCGACGCCCTGAGCGAGACGTACCTGACCCGGGCGCGGGCCCTGCACGAGATCGCGGCCGGACGGGGCCAGAGCCTCGCCCAGCTCGCGCTGTCCTGGGTGCTGCGCGACCCGCGGATCACCTCGGCCCTCGTCGGCGCCTCGTCGGTGGAACAGCTCGAGGACAACCTCGGGGCGCTGGCCGCCGGGCCGCTGACCGAGGAGGAGATCGCCGCCGTCGAGCCCTACGCCGTCGACGGCACCGGACGCTGA	MPLAPRYLAAETRYESMTYRRTGRSGLDLPALSLGLWHNFGDVNPFETQRAILRRAFDLGVTHFDLANNYGPPYGSAEENFGRHLAADLAPYRDELVISTKAGYDMWPGPYGDHGSRKYLLASLDQSLGRLGLDYVDIFYHHRPDPSTPLEETMGALASAVQQGKALYVGVSNYSPARTREAARILADLGTPLLIHQPSYSMFNRHVEDAHREDRYDGRQSESLLDAVEDLGVGTIVFSPLQQGLLTGRYLSGDAPAGSRAARSDSPFLSSDALSETYLTRARALHEIAAGRGQSLAQLALSWVLRDPRITSALVGASSVEQLEDNLGALAAGPLTEEEIAAVEPYAVDGTGR	PGPT0008285_127	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265	NA	NA
AK001_01511	804			hypothetical protein	ATGTTGTCCATCGGAGCGTTCGCGCAGATCGGCCAGGTGACCCACCGCATGCTGCGGCACTGGGACGCCACCGGGCTGCTCGTGCCCGCCCACGTGGACGAGCTCACCGGGTACCGGTCCTACGACCCGTCCCAGCTCGCCCGGCTGCACCGGATCGTGGCGCTGCGCGAGCTCGGGTTCGGGATCGACGACGTCGCGGCGGCCCTCGCCGACGGCGTCGCGGACGAGCGGCTCACCGAGCTGCTCGAGACCCGGCGGGAGGCGGTCGAGCGCGAGCATGCGCTGGCCTCCGCCCGGCTCGCGGACGTGGAACGGCGGCTCCGGCTCATCAGTGAGGAGAAGACCATGTCCACCATCGAGATCGTCGTCAAGCCCCTGCCCGCGCTGCGTCTGGCCGCGCGTCGGGCCCACGTGACCGAGCAGCCCGAGATCGGCGCCGTCGTCGGGCCGCTGTTCGGGGCGGTCGCGGAGGCGCTGCAGCCGAACCGCGGCCTGCTCGAGACCCCGGTCGCGCAGTACGCGATCGGCGAGGACGGGATCGACGTCGTCGTCGGGTACGCCTACGACGGCGAGCCGCGCGACGGGTTCGAGATCGTCACCCTGCCGGCGGTCGCCCAGGCGGCGTGCGCCGTCCACCTCGGGCCGATGGAGCGCATCCCGGCCAGCTGGCAGTCGCTGCACGGCGAGGCGGCGGCGCGCGGACTCGCACCGGACGCACCGTGCCGCGAGCTCTACGTCCGGGCCGAGGGCACCGACCAGGCCGACTGGGTCACCGAGCTGCAGCAGCCCGTCGCCCCGGCCTGA	MLSIGAFAQIGQVTHRMLRHWDATGLLVPAHVDELTGYRSYDPSQLARLHRIVALRELGFGIDDVAAALADGVADERLTELLETRREAVEREHALASARLADVERRLRLISEEKTMSTIEIVVKPLPALRLAARRAHVTEQPEIGAVVGPLFGAVAEALQPNRGLLETPVAQYAIGEDGIDVVVGYAYDGEPRDGFEIVTLPAVAQAACAVHLGPMERIPASWQSLHGEAAARGLAPDAPCRELYVRAEGTDQADWVTELQQPVAPA	PGPT0003907_48	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003907-bmrR-NA	NA	NA
AK001_01512	279			hypothetical protein	ATGCAGGACGACGGTACGCGGCACGGTGCGCCACGGTCCTGCGAGTGGGCCCTCGCTCTGGGGATCGCGGCGCTGGCCTGCGCGGTCGTGCCGGTCGTCGGGGACTGGGTGTCGGCGCCGCTCGGTGTGGCCGCGCTCGGACTCGGTTCGTTCGGCAGCCACGTCGCCGACCGGGACGGCCTGCCCGGCATGTGGCACGGGCTCGTCGGGGCGCTGCTCGGCCTGACCGCGCTCGCGGCCGTGCTGTTCTCCGTGGTGATCGGCGCTCTCGGCCCCTGA	MQDDGTRHGAPRSCEWALALGIAALACAVVPVVGDWVSAPLGVAALGLGSFGSHVADRDGLPGMWHGLVGALLGLTALAAVLFSVVIGALGP				NA	NA	NA	NA	NA
AK001_01513	2973	srmB_1		ATP-dependent RNA helicase SrmB	GTGAGTGCTGACTTCGTCTGGCGCGACCAGTTCGAGCTCGACCTCGACTATGGATTCCTCAGCAGAGCCACGCATGGAGCTCCCCGCAGCCACAACCCACGCGTCGTCTTGAATGACGACGGCAGCACCGTCCTGCGTGCGATTCGGGCCGAACTGCACCGATGCAGGTCGTTTACCTTCTCTGTGGCATTCGTGGCCCCAGCAGCGATCGCCCTCCTCAAGCAGGACCTCGTGGATTTCGAAGGGGTCGGTCATATCGTGACCTCCGACTACCTCGGATTCAACTCCCCGGAAGCGTTCGCCGAACTCCTCAACCTCCAGCAACTCGGAATCGACGTCCGACTACATAACGCCAGCGGTTTCCATCCCAAGGGCTATGTTTTCGAGCATGCCGAAGCCGTGACGACCATGATGAGAAGCTCAAACCTCACACCAAGCGCACTCCTCAGGAACCATGAGTGGAACCTCAAGGTATCGGCTGCTCCCGACAGCGACCTTGCTGCCCAGCTGAATGACCTTGCCGCTCGGCAGATCGAAGACTCGGTGCCCCTCTCATCCGCATGGATCGAGCGGTACGCCGAGACGTATTCCCGCCCAGGTGAACGCCCACCTAGGGTTCCGCGCGACATCTCGACACTTCTGCCATCAGGCGTTGAGCCAATACCCCCGCTGAGTGAGCAGGAGGTTCCGAGCGGCGCCACGCAGTCGGAAACCACGGCGCCCGAGATCGCGCCAAACACTATGCAGTGCGATGCACTGGACGCCCTCGCTCTCGTCCGCGCAAGCGGCGAGAGACGCGCAATCGTCATCTCCGCGACCGGTACAGGAAAGACGATCCTGTCCGCCCTCGACGTCCGCGCCGTCAACCCTCGGCGGCTACTCTTCGTTGTCCACCGCGAGCAGATCCTGGACCGAACCATCATGGAGTACCACAAGGTGCTCGGCGGCGCGTTGAGCGACTACGGCAAACTGACCGGATCGTCGAAAGACTTCGGCGCACGGTACCTATTCGCCACCGTCCAGACGGTAAGTCAGCCAGAAATCTTAGCGCGATTCGCCCCCGACGTCTTCGACTACGTGATCATAGACGAGGCCCACCGAGCAGGGGCATCCAGGCACCGGCGCGTGCTGCAACATTTCGATCCCGTATTCCTGCTTGGCATGACAGCGACCCCCGAGCGCACCGACAACTTCAATGTTTTCGAGCTCTTCGACTACAACGTTCCTTACGAGATTCGTCTCAATCACGCGCTCGAAGAGGACATGCTTGCTCCGTTCCACTATTACGGTGTGACGGATGTCACGTTCGACGACAACACCACCGTAGACGCTGCCAGCGATCTCAACCAGCTCATTTCTGCGGATCGAATATCACATCTTCTCCAAACCATAGAGACCTACGGCCATGCGGGCATTACGCCAAAAGGTCTGGTATTTTGTAGCCGCAAGGACGAGGCGCGACAACTATCCCAGGCGCTCAATTGCTCCACTCTTCGGGGACGTCCACTACGAACGGAAGCACTCACCGGTGAGGACTCGATAGAACAGCGAGAGCAGGCTGTCGATCGTCTTGAACGCGGGGAGCTTGACTACATTCTGAGTGTGGATGTATTTAATAAGGGCGTTGACATCCCTTCTGTCAACCAGGTTATCATGCTGCGACAGACCCAATCAGCAATCGTGTTTGTCCAGCAGTTGGGTCGCGGGCTACGGAAACACCCTATGAAGCAGTATCTTGTCGTCATTGACTTCATCGGGAACTACGCGAACAACTTCCTGATCCCGATTGCCCTCTTCGGCGACGATTCACTGAACAAGGAATCATTGCGCCAGAACCTCATTTCGGCCGAGGAGGCCGGGGCTCTGCCGGGTCTGTCGAGCGTCCAATTTGACAGGATCGCACAGGAGCGAGTGCTCAACTCAATCCGTGACACAAAGCTTGACGAAATGTCCCGGCTCAAAGCGGCGATCCTCGCGATGCGGAACCGTGTAGGCGGTACCCCGAAACTCTGGGACTTCTTCCGGTTTGAGTCGGTCAATCCGGTTGTGCTGGCGACGAAGAAGGATCACTTCCATGCGCTTACCGCCAAGGTACTCCGCGAGTCAGTTGCGCTGTCCGCGGACGAGGACCGCGCACTGCATCTCCTTTCGCACGAGGTCCTGCCCGCCAAACGTCCTCACGAACTAGTTCTGCTCGGTGCTCTACTGGAAGATGCCCGTATTCCCACCTCGCGCGTGCCAACTCTCTGGCAAGACCGCGGGCTACCCGCAACCTCCTCCCACGTCACTAGCGCAATCGATACCTTCACCCTTGAAGGCTTCGCGGAGGCTGACGTGAAACGCTACGGCGGCGGCATCGTTGAGCAAGACGGTTCCGCCATCTCACTCCGACCCGAGATCGTTCGCGGCTACCAAGAAAATCCTGCTTTCAGAGATGCGGTCGATGATCTCTTGGAGACAGGCTTGGCTCTCGTTGCCAAGCAGTATGACGCGTCGTCGCCGTTCACTCCCGCGAGACAGTACTCACGCAAGGAGGTACTGCGTCTCCTGTGCTGGCCACGGAAATGGGTGTCGACTCTCTACGGATATAAGGTCGACCAATCGACTGGTCCTGTGCCGGCCTGCCCAATTTTCGTCACCTTACACAAATCTACGGAGATCTCGGCCAGTACCGCCTACGAAGACACCCTGCTCGACCCGTCATCGATGCTTTGGTATACAAGGAGCCGCAGAACCCTCTCCAGCGGCGAAGTTCAACCGATTGTCAACAATGACGTGAAACTGTTTGTATTTGTCAAGAAGGATGATGCCGAAGGTTCGGACTTTTATTTTCTCGGCGACGCGACGTCGCACGATGCCGAGCAGACGACAATGAAGGAGACTGGTGCCTCTGTTGTCCGCATGAAGCTCCGGTTCACTGACCCGATCGAGGCGGCACTGTTCGACTACTTCCACCCCACCATCGTCGAGTAG	MSADFVWRDQFELDLDYGFLSRATHGAPRSHNPRVVLNDDGSTVLRAIRAELHRCRSFTFSVAFVAPAAIALLKQDLVDFEGVGHIVTSDYLGFNSPEAFAELLNLQQLGIDVRLHNASGFHPKGYVFEHAEAVTTMMRSSNLTPSALLRNHEWNLKVSAAPDSDLAAQLNDLAARQIEDSVPLSSAWIERYAETYSRPGERPPRVPRDISTLLPSGVEPIPPLSEQEVPSGATQSETTAPEIAPNTMQCDALDALALVRASGERRAIVISATGTGKTILSALDVRAVNPRRLLFVVHREQILDRTIMEYHKVLGGALSDYGKLTGSSKDFGARYLFATVQTVSQPEILARFAPDVFDYVIIDEAHRAGASRHRRVLQHFDPVFLLGMTATPERTDNFNVFELFDYNVPYEIRLNHALEEDMLAPFHYYGVTDVTFDDNTTVDAASDLNQLISADRISHLLQTIETYGHAGITPKGLVFCSRKDEARQLSQALNCSTLRGRPLRTEALTGEDSIEQREQAVDRLERGELDYILSVDVFNKGVDIPSVNQVIMLRQTQSAIVFVQQLGRGLRKHPMKQYLVVIDFIGNYANNFLIPIALFGDDSLNKESLRQNLISAEEAGALPGLSSVQFDRIAQERVLNSIRDTKLDEMSRLKAAILAMRNRVGGTPKLWDFFRFESVNPVVLATKKDHFHALTAKVLRESVALSADEDRALHLLSHEVLPAKRPHELVLLGALLEDARIPTSRVPTLWQDRGLPATSSHVTSAIDTFTLEGFAEADVKRYGGGIVEQDGSAISLRPEIVRGYQENPAFRDAVDDLLETGLALVAKQYDASSPFTPARQYSRKEVLRLLCWPRKWVSTLYGYKVDQSTGPVPACPIFVTLHKSTEISASTAYEDTLLDPSSMLWYTRSRRTLSSGEVQPIVNNDVKLFVFVKKDDAEGSDFYFLGDATSHDAEQTTMKETGASVVRMKLRFTDPIEAALFDYFHPTIVE				NA	NA	NA	NA	NA
AK001_01514	1740			hypothetical protein	GTGAATCGTCACACCAACTCTTGGAACGTCCGTGACCTGAACCGATTCGTCGAGTACGAAGGAAGCATGCCGCGCACGTACCCCTCGACGCCTGACTTCCCGGACGACGGCGGAGCCGAGCGAGCGGTCTGGGAGGCGCTGCGCGCGGAGCTCCCGGACGACGTCGTCGTCTGCCACGGTGTGAACCTGCAGGAGTACGACCAGGAGTACGAGATCGACCTGCTCGTCGCATGGCCCGGCGTCGGCATCGCCGTCATCGAGGTCAAGGGCGGGTACATCGAGCGGTCCGGCGGGTCCTGGTACCAGGGCAGCGGCGACGCGCGGCATCGCATCCAGCCGGTCCGGCAGGTGCAGAGCGCCCGTCACGTGCTGCAGGCGCTGCTGCGCGAGCGGGGCGAGCCCGCGTCGTCGTCGCGCACCGCACACCTCGTGGCGTTCCCGCACCGCTACGTCTCGGGCGGGTGGTACTCGTTCGACCTGCCACGGGACATGGTGATCGGGCGCGACGACCTCGAGAGCCCCGGCGGCGCGGCGGAACGTGTCAAGCACGCGATCGAGCGGCACGGCCAGGGATACGCACCGCTCGACGAGGACGCGCTGGACGGGCTCGTCGCCTGCGTGGCCGGCGGGTTCCCCAGCCAGTCGGAGCACCTCACGCGCGCACTGGAGCACGAGACCCGGCTCGAGCAGATGACCCGTGACCAGGTGCAGATCCTGCGTGCCCTGTCGCAGGTACGGCGGATGCGGGTGGTCGGCGGCGCCGGCTCGGGCAAGACCTACCTGGCGCTGGAGCAGGCCCGACGGCGGACCCGGGCGGGAGAGCGGGTGGCGCTGCTGTGCTACTCGCGGGGCCTCGGCCGGTACTTCCAGCGGATCACCGCGACCTGGCCCCGCCGCGACCAGCCCGCCTACGTCGGGCTGTTCCACGAGCTGCCGGTCTCCTGGGGTGCCGTCGGCGGGCGCGACGACGACCCCGACTATTGGGAGCGGCACCTGCCGACCGAGCTGGGGCGGCTCGCGGCGCTGCGCGGACCGGACGAGCTGTTCGACGCCGTCGTCGTCGACGAGGCGCAGGACTTCGGCGACCTGTGGTGGCCCTCCCTGCTGCGGTGCCTGCGCGACGCCGACACCGGTGGGGTGTACGTGTTCCTCGACGACGCGCAGCGGGTCTTCCCGCGCGACGGGCAGGTGCCGCTGGAGCTCACGCCGGTGACCCTGGACGAGAACCTGCGGTCCACGAAGCAGATCGCGCAGGTCTTCGGGGCGCTGTCCGACGACGTGGTGAAGCCCCGAGGGCTCGACGGACCACCCGTGCGGGTGGTCGACGTGCCCGCCGAGGCCGCGGTCGAGGCGGCGGACGACGCCGTCGAGGCGCTGCTCGCCGAGGGCTGGGAGCCCGGCTCGGTGGCGCTGCTCGCGACCGGACGCCGGCACCCCGAACAGGTCAACGAGGTGGAACTCGGCGGGTACGCCGAGTACTGGGACGCGTTCTTCGCCGAGCAGGACGTGTTCTACGGGCACGTCCTCGGGTTCAAGGGGCTCGAGCGGTCCGTGGTGGTGCTGGCCGTCAACGGCGTGCGGGACCTCGAGCGGGCACGGGAGATGCTGTACACCGGGCTGTCGCGGGCGCGGACGCAGCTCGTCGTGGTCGGGGACCGGGCCTGGATCGAATCCGTGGGTGGTGAAGGGGTGCGGCGGCGGCTGGAGAAGGCCGAGATGTGGAGCATCGGCGGCTCCTGA	MNRHTNSWNVRDLNRFVEYEGSMPRTYPSTPDFPDDGGAERAVWEALRAELPDDVVVCHGVNLQEYDQEYEIDLLVAWPGVGIAVIEVKGGYIERSGGSWYQGSGDARHRIQPVRQVQSARHVLQALLRERGEPASSSRTAHLVAFPHRYVSGGWYSFDLPRDMVIGRDDLESPGGAAERVKHAIERHGQGYAPLDEDALDGLVACVAGGFPSQSEHLTRALEHETRLEQMTRDQVQILRALSQVRRMRVVGGAGSGKTYLALEQARRRTRAGERVALLCYSRGLGRYFQRITATWPRRDQPAYVGLFHELPVSWGAVGGRDDDPDYWERHLPTELGRLAALRGPDELFDAVVVDEAQDFGDLWWPSLLRCLRDADTGGVYVFLDDAQRVFPRDGQVPLELTPVTLDENLRSTKQIAQVFGALSDDVVKPRGLDGPPVRVVDVPAEAAVEAADDAVEALLAEGWEPGSVALLATGRRHPEQVNEVELGGYAEYWDAFFAEQDVFYGHVLGFKGLERSVVVLAVNGVRDLERAREMLYTGLSRARTQLVVVGDRAWIESVGGEGVRRRLEKAEMWSIGGS				NA	NA	NA	NA	NA
AK001_01515	696			hypothetical protein	ATGGCCGCCATGCCGTCCTGCCCTGCTCACCGCATCGCCCCGGCCCGACGGGCGGCACGCACGGCCGCCGTCGTCGCGACAGCCCTCGCCCTCGCAGCCTGCTCCGCCGACGGGGCACCCGCTCCGGACGCCGCCACGCCGGCTACCACCCCCGCGGCGACGACGCCCAGCCCGAGCAGCACGCCGACCGAACCGTCGGCGGACCCCAGCCCGTCGCCGTCGGACACCCCGAGCCCGCAGGCCGAGGAGCCCGCGCCGACCGACACCCCCACCTACCCGTCGTTCGACCCGCACACCGACCGCGCCCTGCAGACCATCGCCGCGATGGAGGCGACCTACGGTGCGGGCGCCTTCAAGGTCGAGGGCGACGACGACGGCACGCGCTGGAAGCTGGAGCTGACGCAGGGCGGCGACCGGCTCAAGGTCAAGGCCGAGGCGAACGACGCCGGCATCGCGACGACGGACACGAAGCGCGACGACCTCGGCGACGACGACCGCGAGGCCCTCGGACGCGCGCAGGTCAGCCTGAGCGAGGCGATCGTCCGTGTCGTCGAGTCCTCGGGCGGCGTCCTGGACAAGGCCGAGCTCGAGGAGGACGACGGCATCGCCTACTGGGAGGTCGAGGTCGACCTCGGGGACGACGACGAGCACTACCGCGTCGACGTCGCCACCGGCACGCTCTCGCGGGACGCGTAG	MAAMPSCPAHRIAPARRAARTAAVVATALALAACSADGAPAPDAATPATTPAATTPSPSSTPTEPSADPSPSPSDTPSPQAEEPAPTDTPTYPSFDPHTDRALQTIAAMEATYGAGAFKVEGDDDGTRWKLELTQGGDRLKVKAEANDAGIATTDTKRDDLGDDDREALGRAQVSLSEAIVRVVESSGGVLDKAELEEDDGIAYWEVEVDLGDDDEHYRVDVATGTLSRDA				NA	NA	NA	NA	NA
AK001_01516	291			hypothetical protein	ATGTTTCCCGAGCTCGACGAGCAGGTCCTCGCCCGGCTGCCATGGGAGATCCACGAGCAGCACAGGAACTCGTACCACCTGGCGATGTTGAGCTGTGCGGTGCGCGACCAGGCTGGGCTCGGGCTGCGGTGGGTGGACCGGCACCGCCTGGCGTCGTGGCGTGGGAGTCTGCGGGAGGTCAACGCGGTCGTCGTCTACGACTGGAAGACGCCCGACGGCTTCTACGTCGTCCCCAGGCTTGAGGGCGACGGCGACCTCACGCGCCCGCCGATGGTGGGGGAGGCCGCGTGA	MFPELDEQVLARLPWEIHEQHRNSYHLAMLSCAVRDQAGLGLRWVDRHRLASWRGSLREVNAVVVYDWKTPDGFYVVPRLEGDGDLTRPPMVGEAA				NA	NA	NA	NA	NA
AK001_01518	792			hypothetical protein	ATGTCCGACCAGCAGCAGCACCCCGCGTGGTCTCCGCAGACCCCGCAGCAGCCCGCCCCGCAGGGCCAGGTCCCGCAGCAGCCCGTTCCGCCGGGCGGGTCCGGAGCGCCGCAGGCTCCCGAGCCGGGACCGCAGAAGAGCTGGTTCGCGCGCCACAAGGTCCTCACCGGCCTCGGCGTGCTCGTCGGGATAGCCGTCGTCGGCGCCGCGTTCGGCGGTGGCGGCGACGAGGCGCCGGCGGACGCGGGCACGACGGCGGAGGTCGCCTCCGAGGACGCCGCGACGACCGAGGACTCCGGTCAGGACGCCGGGACCGACGACGGCGCGGCCGCGGACGGTCAGGACGCGGCCGATGCCGAGGAGCAGGCGGAGGATCCGGGCACCGACGCCGCGGACCTGCCGGGGCTCGGCGACGCCGCGCGCGACGGCAAGTTCGAGTTCACCGTGACCGAGCTCGAGGACGGCGTGGCGCAGATCGGGAACGAGTACCTCAACACCGAGGCGCAGGGGCAGTTCGTGCTCGTCCACATGGCGGTGGAGAACATCGGCGACGAGGCGCAGTACTTCGACGGCAGCAGCCAGAAGCTCGTCGACACCGAGGGCCGCACGCACTCGGCGGACTCCGAGGCGGCGATCTACCTCGACGACTCGAACAGCTTCCTCAACGAGATCAACCCGGGCAACACCGTGGACGGCGTCGTCGTCTTCGACGTCCCGACGGACGCGACGCCCGCGACGCTCGAGCTGCACGACTCGGCGTTCTCCGGCGGTGTCGAGGTCTCGGTGCAGTGA	MSDQQQHPAWSPQTPQQPAPQGQVPQQPVPPGGSGAPQAPEPGPQKSWFARHKVLTGLGVLVGIAVVGAAFGGGGDEAPADAGTTAEVASEDAATTEDSGQDAGTDDGAAADGQDAADAEEQAEDPGTDAADLPGLGDAARDGKFEFTVTELEDGVAQIGNEYLNTEAQGQFVLVHMAVENIGDEAQYFDGSSQKLVDTEGRTHSADSEAAIYLDDSNSFLNEINPGNTVDGVVVFDVPTDATPATLELHDSAFSGGVEVSVQ				NA	NA	NA	NA	NA
AK001_01519	1455			hypothetical protein	GTGCCGGGCTACCCCGGCTCCCACGAGGGAGCCGCCGCGCCCGATCCGTACGCCGACTCGTCCGCGGCGCCCTCCCCGGCCTCGTACGCCGGTGGGGCAGCGTCGTCGCCGTACCCGCCGTCGCCCTACCCCGGCCCGACGCCGTACCCGGGTCCGATGCCGCACACGCCCTACCCCGGGCCCCCGCCCACCGGACCGGCACCGAGGCCGCCCGGCCAGGGGCGTCGCACGGCGAGCCGGTGGGGATCGATCGGCGCCGTGGCGGTCACCTGGTTCTGCGCCGTCACGGGCGCTGCCTTCGCGGCACCGGCCGAGCTCACCAACACCCAGGTCGCCGTCTTCCTGCTCTGGTTCGTCGTCGCGGCCGGGGTGGCGGCAGCCGTGTGGTGGCGCACCACCCACCCGGTCGCGGTCTGCCTGGCGACCGCCGCGGTCGGGATCGTCAGCCCGCTCGGCGCCGTCGCCCCGCTCCTCGCCCTGCCCTGGGTGGTGGCGCGCACCGACCTGCGGCGCAGCCTGCTGTGCGGTGGCGCGACGACGCTGGCGCTGATCGCGACGTTCTGGCGCGACGGCGCGCGCGAAGGGGAGAACGTCATCTTCTCCGCGACCGCGGAGGACGGCGGCGCGACCTCCTCCATGACGCCCCTCGGCTACCTGATCCTCGGCGTGCTGGCCCTGGGGCTCGCCGTCGGCGTCGGGCTGCTGCGACGGGTCGCCACCCGGGCCGGGGCCGACGCCGACGCCGCCCGTTCCGTCGCCACCGCCGAGTCGCGACGGGCTGCGACGTTCCAGGCGCGGTCCGAGACGCTGCAGACCGAGCTCTCGCGGCAGGAGGAGCGCGACCTCATCGCCCGCGAGATGCACGACACGGTGGCGCACCAGCTCTCCCTGATGTCGCTGCAGGCCTCGGCCCTGGAGGTGTCGTCGGAGGACGCCGAGACCGGGGACGCCGCCCGGTCGATGCGGTCCTCGGCGCACCGCGCGCTGGAGGAGATGCGCACGCTCATCACGTCCCTGCGCGAGGGCGCCGAGGACTATGCGGGCCGGGACTGGACCCTGGACGACCTGGCCGACCTGCTCGACGGCGCCGGGGACCGGGGCGTGGACCTGGTGGCGACGGTGTTCGTGACCGACGGTGACGCCGCGCCGCCGACCCTGACCCGCACGGTGTACCGCGTGGTGCAGGAGTCGCTGACCAACGCGGCCAAGCACGCCCCCGGCGCGCGGGTCGCGGTCAGCGTCCGGGCGCGACCGGTCGACGGCATCGACGTCTCCGTACGCAACCCCGCCGGCCCTCCCGCCGGGCCCACGGCGGCGCCGGGGAGCGGCTCCGGCCTGCGCGGGATGCGGGAACGCTGCGAGGCTCTCGGTGGCACCTTCGACGCCGGCCGCCAGGACGACGATTCGTTCCTGGTCCGCACCCACCTGCCCTGGTCGCCGACGCCGGAGGCGTAG	MPGYPGSHEGAAAPDPYADSSAAPSPASYAGGAASSPYPPSPYPGPTPYPGPMPHTPYPGPPPTGPAPRPPGQGRRTASRWGSIGAVAVTWFCAVTGAAFAAPAELTNTQVAVFLLWFVVAAGVAAAVWWRTTHPVAVCLATAAVGIVSPLGAVAPLLALPWVVARTDLRRSLLCGGATTLALIATFWRDGAREGENVIFSATAEDGGATSSMTPLGYLILGVLALGLAVGVGLLRRVATRAGADADAARSVATAESRRAATFQARSETLQTELSRQEERDLIAREMHDTVAHQLSLMSLQASALEVSSEDAETGDAARSMRSSAHRALEEMRTLITSLREGAEDYAGRDWTLDDLADLLDGAGDRGVDLVATVFVTDGDAAPPTLTRTVYRVVQESLTNAAKHAPGARVAVSVRARPVDGIDVSVRNPAGPPAGPTAAPGSGSGLRGMRERCEALGGTFDAGRQDDDSFLVRTHLPWSPTPEA				NA	NA	NA	NA	NA
AK001_01520	669	liaR_1	COG2197	Transcriptional regulatory protein LiaR	ATGTCGCAGGTCACCAGTAGTGTCGAGGCCGTGACACGGGTTCTGGTCGTCGACGACGACACGATGGTGCGGCAGTTCCTGCGACAGATCCTCACCGCACGCGGCCTGGAGGTCGTCGGCGAGGCGGCCGACGGGGACGAGGTGGTCGCCGCCGTCCGGGCGCACCGTCCCGACGTCGTGCTCATGGATCTGCGCATGGCACGCCTCGACGGTGTGCGCGCGACCGCCGCCGTCACCGCGCTGCCCGACCCGCCGGGCGTGGTCGCCATGACGTCGTTCGACACCGAGTCGGCCATCCTCGACGCCGTCCACGCCGGTGCCGCGGGCTTCCTGGCCAAGGACTCCGGCCCCCACGAGCTGGTCGCAGCCGTCGAGGCTGTCGCCGCCGGGGACGGGGCCCTGTCGCCACGGGCCGCCCGGGTGGTCGTGGAGCAGGTCGGCCAGGCGTCGGGCGCCCGCGGGCGGGACGAGGCCCGCGCGGAGCTGGCACGGCTCACCGACCGCGAGCGCGAGATCGCGCAGCAAGCGGCCCGGGGCCTCACGAACGCCCAGATCGGCGCCGAGCTCTACCTCGGGGCGGCCACCGTGAAGACCCACCTCGGCACGGCCTGCCACAAGCTCGGGGTGAACCGGGTGCAGCTCGCGGTCCTCGTGGACCGCGCGGCCTGA	MSQVTSSVEAVTRVLVVDDDTMVRQFLRQILTARGLEVVGEAADGDEVVAAVRAHRPDVVLMDLRMARLDGVRATAAVTALPDPPGVVAMTSFDTESAILDAVHAGAAGFLAKDSGPHELVAAVEAVAAGDGALSPRAARVVVEQVGQASGARGRDEARAELARLTDREREIAQQAARGLTNAQIGAELYLGAATVKTHLGTACHKLGVNRVQLAVLVDRAA	PGPT0014870_135	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618	NA	NA
AK001_01521	396			hypothetical protein	GTGGACGACGCGACCCGCTGCCCCTGCCTGTCCGGCCTGCCGTACGGGGAGTGCTGCGCCCCGCTGCACCGCGGCGAGCGCACCGCCCCGACCGCCGAGGCGCTGATGCGGTCCCGCTACAGCGCCTTCGCCGTCGGCGACGCCGACTACCTGAGCGCGACCTGGCACCCGGGCACCCGCCCGTCGTCGCTGGACCTGGACCCGGGCCGCCGCTGGCGGCGCCTGGACATCCTCGGCACCAGTGCGGGCGGACCGTTCGACGACGCCGGCGAGGTCGAGTTCGTCGCGACGTTCGCCGACGACGACGGCGGCGGCCGCGGCCGGTTGCACGAGCTCAGCCGGTTCGTGCGCGAGGGCGGCACGTGGCTCTACGTCGACGGCGACGTCCGGCCCTGA	MDDATRCPCLSGLPYGECCAPLHRGERTAPTAEALMRSRYSAFAVGDADYLSATWHPGTRPSSLDLDPGRRWRRLDILGTSAGGPFDDAGEVEFVATFADDDGGGRGRLHELSRFVREGGTWLYVDGDVRP				NA	NA	NA	NA	NA
AK001_01522	303			hypothetical protein	ATGACCTTCGTGAACGTCGGCACCCTCGGTGCCGCTCCCGGCCGGCGCGACGAGCTGGTCGCCCACCTGACGGCCCGGAGCGACGAGCTCGCCGACGCCGGCTGCCTGACCTACGAGGTCGGCGTGAACGACGAGCACCCCGACACCGTCTACGTCGCCGAGATCTGGACGTCGGCGGAGGCGCACCGCGCCTCGCTACAGCTACCCGGTGTGCAGGCGTCCATCGCGGCGGCCAGGCCGCTGCTGTCCGGGGAGATGGGCGGGTTCCGGTTCGACGTCGTCGGCTCCCCGCTGCGCGACTGA	MTFVNVGTLGAAPGRRDELVAHLTARSDELADAGCLTYEVGVNDEHPDTVYVAEIWTSAEAHRASLQLPGVQASIAAARPLLSGEMGGFRFDVVGSPLRD				NA	NA	NA	NA	NA
AK001_01523	420	hspX	COG0071	Alpha-crystallin	ATGACTGCCACCCTGACCCGCACCCCGCTGACCGACGCGCTGTTCCGCGACCTGTGGACCCCGCGCCCGGCAGCCCCCACCGATGCCAAGCCCGCCGCGGACGTGTACCGCGAGGGCGAGGACCTCGTCGCCCGCCTCGACCTGCCGGGCATCGACCCGGCCGAGGACGTCACCGTCGAGGTCGAGGGCCGCAAGCTCGTCGTCCGTGGCGAGCGCAAGGACCAGCGCGGCGAGGAGTCCGAGGGCCGCCGCGTCTCGGAGGTGCGCTTCGGCGCCTTCCGCCGCGTCGTCACGCTGCCGAAGGCCGTCGAGGCCGACGCGGTGACGGCGTCCTACGACGCCGGTGTCCTGACGGTCACCGTGGCCGGCGTGTTCGCCGGCACGACCCCGCAGCGCATCGAGGTCACCACCGCGGCCTGA	MTATLTRTPLTDALFRDLWTPRPAAPTDAKPAADVYREGEDLVARLDLPGIDPAEDVTVEVEGRKLVVRGERKDQRGEESEGRRVSEVRFGAFRRVVTLPKAVEADAVTASYDAGVLTVTVAGVFAGTTPQRIEVTTAA	PGPT0014635_7792	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993	NA	NA
AK001_01524	534			hypothetical protein	ATGGAAGGCGAGGAGTCGGCCGTCGAGCATGCGTTCGCGGACTATCTGGCAGGTCTGGGATCCCGTGCGGACGACCTGCGCGCCGAAGCGAGCCGGACGCTGGAACGCGGTGTCCGCCAGGCGCATGATCTCGGGTGGAGCCAGCGCCGGATCGCGCGGTCGTTGGGGCGCAGCCAGCCTGAGGTCAAGCGCCTCCTGGGCCGTGCCGTCGCCTCGGAGGCCGTAGCTCTTACCGAGGCGGGGGGCAGCAGCATGCTCGACGCGGTCCTTCGGCAGCATCGGGACGACGTCGTCGATGCAGCGGCCAGGCGCGGAGTGCGTCACCTGCGCGTCTTCGGCTCCGTCGCTTCCGGCGAGGACGGCCCGGAATCGGACGTGGATCTGCTGGTCGACGTCGACGACGGCGTGGGCCTGTTCGCGCTGGGCGCGTTGGAGGCCGAGCTCTCGGCCATCCTGGGCCGGCCCGTGGACATCGTCCCCGAGCAGTCGCTCCGTCCCGCGGTGCGAGCATCCGTCGTGGCGATCCCGCTGTGA	MEGEESAVEHAFADYLAGLGSRADDLRAEASRTLERGVRQAHDLGWSQRRIARSLGRSQPEVKRLLGRAVASEAVALTEAGGSSMLDAVLRQHRDDVVDAAARRGVRHLRVFGSVASGEDGPESDVDLLVDVDDGVGLFALGALEAELSAILGRPVDIVPEQSLRPAVRASVVAIPL				NA	NA	NA	NA	NA
AK001_01525	1230			hypothetical protein	GTGACCGAGAGGCAGGACATCGTGCTGCGCAGCACCGACCGCATCGAGACCACCCACGCCGGCTCCCTGCCGCGCACCGCCGAGCTGCTCGCCGCCAACGCGGCCCGCGAGAGCGGGGACGCCGACGGCGACTTCGGCCCGTTGCTGCGCGACGCCGTCGCCGACGTCGTGCGCCGCCAGCAGGACGCCGGGATCTCCGTGGTCGGCGACGGCGAGTACGGCAAGTCGATGTCCTCGCCGATGGACTTCGGCGCCTGGTGGTCGTACTCGTTCCAGCGCACCGGCGGGCTCGAGCTCGACGCCGACGCGCAGTGGGTGCTGGCGGACGTGCAGTCCGCGCCCGGCGACGTGCGGCTGACCGGGTTCGGCAACCGTCGCGACCAGGCGCGGTTCCGCGAGGCGTACACCGACCCGACGTCGGGCATCTTCCACGGCGAGGGGCCGGGGCAGTTCCCGAAGGTCACCGGGCCGCTGACGTACACCGGGCAGGCCGCCGTCGCGCAGGACGCCGCGAATCTGCGGGCCGCCGCCGACGCCGCCGGGGTGACCGACGCGTTCGTCACCTCGATCGCGCCCGGGTCGGCGACGCGGATCCACAACGAGCACTACGCGACGCACGAGGAGTACGCCTACGCGTGGGCCGACGTCCTGCGCGAGGAGTACCTCGCGATCGTCGACGCCGGGCTCATCGTGCAGATCGACGACCCGGGGCTGGCCGAGTCCTGGGACCAGGTCACGCCGGAGCCGACCGTCACCGACTACCTGGACTTCTCGCGGATCCACGTCGAGGCGCTCAACCACGCGCTGCGCGGCATCCCGGCCGAGAAGGTGCGGTACCACCTGTGCTGGGGCTCGTGGCACGGGCCGCACTCCACGGACCTGCCGATGCGCGACATCGTCGGGCTCATGCTCGACATCGACGCCGGGGCGTACTCCTTCGAGGCGGCGAACGTGCGGCACGAGCACGAGTACCGCGTCTGGGACGACGTCGAGCTGCCCGAGGGCAAGCTGATCCTGCCCGGCGTGGTCTCGCACGCGACCAACGTGCTGGAGCACCCCGAGCTCGTCGCCGAGCGCATCGAGCGGTTCGCGCGGCGGGTCGGCCGGGAGAACGTGCTGGCCTCGACCGACTGCGGGCTCGGTGGGCGCGTGCACCCGCAGATCGCGTGGGCGAAGCTCGAGTCGCTGGCTGCCGGTGCGCGGATCGCGTCGGAGCGGCTCTGGGGCTGA	MTERQDIVLRSTDRIETTHAGSLPRTAELLAANAARESGDADGDFGPLLRDAVADVVRRQQDAGISVVGDGEYGKSMSSPMDFGAWWSYSFQRTGGLELDADAQWVLADVQSAPGDVRLTGFGNRRDQARFREAYTDPTSGIFHGEGPGQFPKVTGPLTYTGQAAVAQDAANLRAAADAAGVTDAFVTSIAPGSATRIHNEHYATHEEYAYAWADVLREEYLAIVDAGLIVQIDDPGLAESWDQVTPEPTVTDYLDFSRIHVEALNHALRGIPAEKVRYHLCWGSWHGPHSTDLPMRDIVGLMLDIDAGAYSFEAANVRHEHEYRVWDDVELPEGKLILPGVVSHATNVLEHPELVAERIERFARRVGRENVLASTDCGLGGRVHPQIAWAKLESLAAGARIASERLWG				NA	NA	NA	NA	NA
AK001_01526	726	COQ5_2		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	ATGCCCGCCACCGTCCGCCTGATCGACGACGTCCGCCCCGAGGAGTCCGACCACGACTTCCTGCCCGGCATGCGGCGCGCCTGGCTCATGCCCTGGTACGACCTGACCGCCCGCCTGCGCGGCGTGCACCGCCTCTACCGGCGCACGGTCGAGATCGCGGGGATCACCGCGGGGCAGCACGTGCTCGACGTCGGCTGCGGCACGGGCAACCTGAGCCGCGAGGTGCTGCGTGCCACGCCGGACGCGGTCGTCACCGGGCTGGACCCCGACGGCGACTCCCTGCGCCGCGCGGCCCGCAAGCTGCGCCGTCGGCGCTCCGGCGACGTGACGTTGATCCGCGGGTTCGCGCACCGCCTGCCCGTGCCGGACGCCAGCCAGGACCACGTCGTCTCGTCCCTGGCGCTGCACCACGTCCCGCTGGCCGAGAAGCAGCAGCTCGCCGCGGAGCTGGTGCGGGTGCTGCGGCCGGGCGGGCTCGTGACGATCGCCGACTTCGCCGGCGACCACGCCGGCGACCACGCCGCCGGTCACGGACGCGGGCACCGCCACGGCGGCGAGGGGCACCAGCCCGGGCACGGTCCCGGCAGCACGGCCTACGACGCCGACAACGCCGACGGGGGCATCGAGAAGCTGCTCACGGCGGCCGGGCTGGAGGACGCCCGGGCGCTGGAGCGAATGCCGCTGCTGGGCGACTCGGTGGTGTTCGTCCAGGCACGGCGGGCCTGA	MPATVRLIDDVRPEESDHDFLPGMRRAWLMPWYDLTARLRGVHRLYRRTVEIAGITAGQHVLDVGCGTGNLSREVLRATPDAVVTGLDPDGDSLRRAARKLRRRRSGDVTLIRGFAHRLPVPDASQDHVVSSLALHHVPLAEKQQLAAELVRVLRPGGLVTIADFAGDHAGDHAAGHGRGHRHGGEGHQPGHGPGSTAYDADNADGGIEKLLTAAGLEDARALERMPLLGDSVVFVQARRA				NA	NA	NA	NA	NA
AK001_01527	1248			hypothetical protein	ATGACGATGCGACGCCGCACCCTGTCCGCCGCCACGGCCACCGCCGTGGCCCTGACCGCCTGTCTCGTCCCGGCCGCCGCGCACGCCGCCGACCCCGGCCGCTCCGGCGACGCCCCCGGGCAGCAGTCCCTGCGCGTGGCGACCTACAACCTGTCGCTGAATCGCGGCACCGAGGGCGAGCTGGTCACCGATCTCTCGACCCCGACGAACCCGCAGGCCCGCACGGTCGCGGAGATCATCCAACGCACGGACCCGGACGTCGTGCTCCTCAACGAGTTCGACGTCGATGCCGCGGGCGAGGCCGTCGACCTGTTCCGCGAGCACTACCTGGAGGTCTCCCAGGGTGGCGCCGCCCCGGTGGAGTACCCGTACGCCTACACCGCGCCGTCGAACACGGGCGTGGCCAGCGGGTACGACCTGAACAACGACGGCTCGGTCGGCGGGCCGGACGACGCGTTCGGCTTCGGGTTCTTCCCGGGCCAGTACGGCATGGCGGTGCTGTCGAAGCACCCGATCGCGACGGACGAGGTGCGCACCTTCCAGAACTTCCTGTGGAAGGACATGCCGGGCGCCCTGCTGCCCGACGACCTCGACACCCCGGAGCCGGCCGACTGGTTCAGCGCGGAGGAGCTCGAGGTGGTGCGGCTGTCCAGCAAGTCGCACTGGGACGTGCCGGTGGAGGTCGACGGCACGACGGTGCACGTGCTCGCCTCGCACCCCACGCCGCCCACGTTCGACGGTCCGGAGGACCGCAACGGTCGCCGCAACCACGACGAGACCCGGTTCTGGGCGGACTACGTCACCCCGGGCCAGGCCTCGCGCTACATCTACGACGATGACGGCGGTCGCGGCGGTCTGCAGCCCGGCGCACCGTTCGTGATCCTCGGCGACCAGAACGCCGACCCGCACGACGGCGACTCCTACGACGCCGCGATCGACCAGCTCCTGGAGCACCCGCGGATCACCGACCCGCTGCCGACGTCGGAGGGAGCCGTCGAGGCCGCGGCCCTGCAGGGCGGCGCGAACGACGACCACACCGGCGACCCCGCCTACGACACCGCGGACTTCGCGGACGGAGCGCCGGGCAACCTGCGCGTCGACTACGTGCTGCCCTCACAGCACCGGCTGCGCGTCCAGGACGCGGGCGTCTTCTGGCCGGTGCAGGCCGACCCGCTGTCGGCGCTGACCGGCACCTACCCGTTCCCGAGCAGCGACCACCGGCTGGTCTGGGTCGACCTGGCCCTCTGA	MTMRRRTLSAATATAVALTACLVPAAAHAADPGRSGDAPGQQSLRVATYNLSLNRGTEGELVTDLSTPTNPQARTVAEIIQRTDPDVVLLNEFDVDAAGEAVDLFREHYLEVSQGGAAPVEYPYAYTAPSNTGVASGYDLNNDGSVGGPDDAFGFGFFPGQYGMAVLSKHPIATDEVRTFQNFLWKDMPGALLPDDLDTPEPADWFSAEELEVVRLSSKSHWDVPVEVDGTTVHVLASHPTPPTFDGPEDRNGRRNHDETRFWADYVTPGQASRYIYDDDGGRGGLQPGAPFVILGDQNADPHDGDSYDAAIDQLLEHPRITDPLPTSEGAVEAAALQGGANDDHTGDPAYDTADFADGAPGNLRVDYVLPSQHRLRVQDAGVFWPVQADPLSALTGTYPFPSSDHRLVWVDLAL	PGPT0002580_13	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATASE_ACTIVITY	P-SOLUBILISATION-PHYTASE_PRODUCTION,PGPT0002580-phy|phyA|phyB|phyC-K01083	NA	NA
AK001_01528	507			hypothetical protein	ATGCCGATGGTCCTGCGCCCGCCCCACCCCGACGACGAGGCCGCCCTGCGCCGCATCCACGCCGAGATGCTGGACGAGGGCTTCTCCTTCCTGCTCGCCGAGGGCACGTGGGACGAGATCCTCGATCGCGTCGCCCGGGACGCGGCCGGCGAGGACCTCCCGCCGGGGTGGGTGCGCGCGGACTGGCTCGTCGCCGAGGTCGACGGCGTGCCCGTGGGCCGGGTCTCGATCCGTCACTCGCTCGGTACCGGGTTCCTGCGGGAGGTCGGCGGGCACGTGGGCTACGGCGTCGCGCCGGAGCACCGTCGCCGCGGGTACGCCACCGCGATGCTGCGGCTCGCCGTCGAGCGGCTGGCCGGCCTGGGCGTCGAGGAGGTGCTGGTCACGTGCGACGACGACAACGTCGGCTCCGCCGCCGTCATCGAGGCCTGCGGCGGCGTGCTCGAGGGGCTGCGCCCAATCGCGGGGGAGTCGCCCAAGCGCCGTTACTGGATCACCGCGCGGTGA	MPMVLRPPHPDDEAALRRIHAEMLDEGFSFLLAEGTWDEILDRVARDAAGEDLPPGWVRADWLVAEVDGVPVGRVSIRHSLGTGFLREVGGHVGYGVAPEHRRRGYATAMLRLAVERLAGLGVEEVLVTCDDDNVGSAAVIEACGGVLEGLRPIAGESPKRRYWITAR				NA	NA	NA	NA	NA
AK001_01529	1002	oleD	COG0451	2-alkyl-3-oxoalkanoate reductase	ATGACCGTGCTGGTCACGGGCGCGTCCGGCATGCTCGGCACGGGCGTGGCGCGCGCGTTGGTCGCGCGCGGCGTGTCCGTGCGCACCCTGCAGCGCCGTCCCTCCGGGGTGCCGGGCGTCGAGGACGTCGCCGGGTCGCTGACCGACCCGGTCGCGGTGGCCGACGCCGTCGACGGGGCCGACGCCGTCGTGCACCTCGCCGCGAAGGTGTCGCTGGCCGGGGACCCGGACGAGTTCACCGCCGTGAACGTCGACGGCACGCGCACCCTGCTGGACGCCGCCGAGCGGGCCGGGGTGCGGCGGTTCGTCCAGGTGTCCTCGCCGTCGGTGGCGCACGCCGGGACGTCGCTGGTGGGCGTCGGGGCGGGACCGGCCGACCCCGAGCGCGCGCGCGGCGAGTACGCCCGGACCAAGGCCGTCTCCGAGCTGCTGGCCCTGGCGCGGGACGGCGCGGGGTCCGACGGCGGGCTGCGGGTCGTGGCCGTGCGGCCGCACATCGTGTGGGGCCCGGGGGACACCCAGCTCGTCGAGCGGGTCGTCGATCGCGCGTCGTCGGGGCGCCTGCCGCTGCTCGGGCACGGCGCCGCGCTCATCGACACGACGTTCCTGGACAACGCGGCCGACGGGATCGTCGCCGCCCTGGACCGGCTGGACGACACCCCCGAGGCCGTCCACGGCCGGGCGTACGTGATCACCAACGGGGAGCCGCGCCCGGTGGCCGACCTGCTGGCCGGCATCTGTCGCGCCGCCGGGGTGGAACCGCCCCGGTGGCGGGTGCCTGCCGGCCTGGCGAGGGTCGCGGGTGGCGCCGTCGAGGCCGTGTGGCGCGTGCGCCCCGGTACCGACGAGCCGCCGATGACGCGGTTCCTGGCCGAGCAGCTCTCCACGGCGCACTGGTTCGACCAGCGTGAGACCTGGGCCGACCTGCGGTGGCGTCCCGCCGTCAGCATCGACGAGGGGTTCCGGCGGCTGGCCGCCTACTACGGCGGTACGGCGCCCTGA	MTVLVTGASGMLGTGVARALVARGVSVRTLQRRPSGVPGVEDVAGSLTDPVAVADAVDGADAVVHLAAKVSLAGDPDEFTAVNVDGTRTLLDAAERAGVRRFVQVSSPSVAHAGTSLVGVGAGPADPERARGEYARTKAVSELLALARDGAGSDGGLRVVAVRPHIVWGPGDTQLVERVVDRASSGRLPLLGHGAALIDTTFLDNAADGIVAALDRLDDTPEAVHGRAYVITNGEPRPVADLLAGICRAAGVEPPRWRVPAGLARVAGGAVEAVWRVRPGTDEPPMTRFLAEQLSTAHWFDQRETWADLRWRPAVSIDEGFRRLAAYYGGTAP				NA	NA	NA	NA	NA
AK001_01530	2736	dhmA		Haloalkane dehalogenase	GTGACGCTGCGCCCCGCGAGCACCGTCCCGCCGGACCTGCCCGGCCTCGAGTCCCGGTTCAGCCACGTCCGTGGCGACTGGCACTACCTGGACAACGGCGCCGAGCTGTCGGCGCACGGCATCGAGCCGGTCGGCACCGTGCTGGCCGTGCACGGCAACCCCACGTGGTCCTACCTGTGGCGGGACCTGATCGAGACACTCACGGAGCGGGCGATCGAGACCTCCGCCGCCGTCGGTGAGTACCCCGACGGCGTCCGGGGCGCCTGGCGCGTCGTCGCCGTCGACCAGCTCGAGATGGGGCTGTCCGCCCGCACGGGACGACGCCGCACCCTGGCCGATCGCGTCGCCGACCTGTCCGCCTTCACCGCCGACCTCGGCCTGGACGGGCCGGTCGTCACGCTCGGGCACGACTGGGGCGGCGTCGTCTCGCTCGGCTGGGCCGTCGACCACCCCGACCGGCTCGCCGGGGTCGCGCTGCTCAACACCGCCGTGCACCAGCCCGACGACGTCGCGATCCCCGCCCCGCTGCGCCTCGCCCTGGCCCGGGGCGTCCACCGCTGGGGCACGCGCACCACGCGCGCCTTCCTGGAGACCACGCTGGGCCTCGCGCGCCCGCGGCTGGACCGCGACGTCGCCGACGCCTACCGGCTGCCCTACCGCTCCGCCGACGACCGCGACGGCATCGAGCAGTTCGTCGCCGACATCCCCGCCGCGCCGGACCACGTCAGCCGCCCCGAGCTGGACCGCATCGCCGACGGCGTGGCCGCGCTCGACGTCCCGGCGCTGCTGCTCTGGGGAGCCCACGACCCGGTGTTCTCCGACCGCTATCTCGACGACCTGCTGCGTCGGCTCCCGCACGCCGGGGTCCACCGGTTCGAGGACGCCGGGCACCTGATCGCCGAGGACGTCGACTACGCCGGGCCGGTGCTGAGCTGGTTGGGCTCGGCGGCGGCGGTTCCCGAGGGCTCCGGCGGAGACGCGTTCACGGGCCCTGGGGGTCCCTCCACTTCGGGGACGACGTCCCCGCCGGAGCCCTCGGGAACCACCGCGTCGTCGACGGCACCGGACAGCACGGAGTTCCGGCCGATCTGGGCCGGGCTCGACGAGCGCGCCGCCGACCCCGTGTCGCGCACCGACCAGGCCGTCCTGGACCTCACCGCCACCGGCGCCGGACGCTTCGTGAGCTGGGGAGCGCTGGACCGGCAGGTGCGGCGCCTCGCCGCCGGCCTGCACGAGATCGGGGTGCGCCGCGGCGACCGGGTGTCGCTGCTGGTCCGGCCCGGGCCCACGCTGACCGCGCTGGTGTACGCCTGCCTGCGGATCGGTGCGGTCGTCGTCGTGGCCGACGCCGGCCTGGGCCTGCGCGGGCTGACCCGCGCGCAGCGTGGGGCGTGGCCGCAGTACCTGATCGGGCAGACGACGGCGCTCGCGGCCGCCCGCGCGGCCGGCTGGCCCGGCGTGCGGATCGCCGTCGACCCTCTCGACCCGGTGCGACGCCGGGCGCTGGGCGTGGACCACGAGCTGATCGACGTCGCGCGCGCCGGCGAGGGCCTCGAGCTGCCGCCGGAACCCGGGCCGGACGACGACGCGGCCGTGCTGTTCACCTCCGGGTCGACGGGTCCGGCCAAGGGCGTGCTGTACACGCACCGCCGGTTGTCCGCGTTGCGCGACGTCCTGGCCGAGCACTTCGCGGTCGGCCCGGACACCGGGCTGGTCACCGGGTTCGCGCCGTTCGCGCTGCTCGGTCCGGCGCTCGGTACCCGCTCGGTGACGCCGGACATGGACGTCTCCGCGCCGCGCACGCTGACGGCTCGTGCGGTGGCCGACGCCGTGAAGGCCACCGACGCGCGCATGGTGTTCCTGTCCCCGGCGGCGATCCTGCACGTCGTCGACACGGCGGACCGGCTCACCGCCGTCGACCGGGAGGCGCTGGGGCGCGTCGAGACGTTCCTGTCCACGGGTGCGCCGATCGGCGCCGCGCTGCTCGAGGCCGCGCAGTCGCTCATGCCGGCGGCCGAGGCGCACACCCCGTACGGGATGACCGAGTGCTTGCTGGTCACCGACATCACGCTGGCTGGCATCCGCGACGCCGCGGGCGCGCCCGACACCGGCGTCTGCGTGGGCCGGCCGATCGTCGACCCGGCCGACGGCGGCGTCCTGATCAGCGCGCTGGACGACGACGGCGCGGCCACCGGGCCGCCGTCGGCCGACCCCGGGGCGCTGGGCGAGGTGCTGGTCAGCGCGCCGCACCTCAAGGAGCGGTACGACCGGCGGTGGCTCACCGACGTCGCGGCCGAGCGGGACACCCCGCCGGGGCACTGGCACCGCACGGGCGACGTCGGCCACCTGGACGACGCCGGGCGGCTGTGGATCGAGGGGCGGCTCGCCCACGTGCTGACGACGTCGGCGGGTCCGCTGGCCCCGGTCGGTCCGGAGCAGTCGATCGAGCGGGTCGACGGCGTGCGCCGCGCCGCCGTCGTCGGTGTCGGACCGGCCGGGGTCCAGCAGGCCGTGGCCGTCGTCGAGCCGGAGCGCGCGAGCGGTCGGGTGCGGCCGGGGCTGGCGCCCGAGGATCTCGACGCCGCGGTGCGGGAGTCCTCGTCCGTGCCGCCGGCCGCGGTGCTCGTGGTGCCGGAGATGCCGACCGACGTCCGCCACAACTCCAAGATCGACCGGGCCCGGCTCGCGGACTGGGCGTCCGGCGTCCTGGCGGGCGGCCGGGTGACCGCGCCATGA	MTLRPASTVPPDLPGLESRFSHVRGDWHYLDNGAELSAHGIEPVGTVLAVHGNPTWSYLWRDLIETLTERAIETSAAVGEYPDGVRGAWRVVAVDQLEMGLSARTGRRRTLADRVADLSAFTADLGLDGPVVTLGHDWGGVVSLGWAVDHPDRLAGVALLNTAVHQPDDVAIPAPLRLALARGVHRWGTRTTRAFLETTLGLARPRLDRDVADAYRLPYRSADDRDGIEQFVADIPAAPDHVSRPELDRIADGVAALDVPALLLWGAHDPVFSDRYLDDLLRRLPHAGVHRFEDAGHLIAEDVDYAGPVLSWLGSAAAVPEGSGGDAFTGPGGPSTSGTTSPPEPSGTTASSTAPDSTEFRPIWAGLDERAADPVSRTDQAVLDLTATGAGRFVSWGALDRQVRRLAAGLHEIGVRRGDRVSLLVRPGPTLTALVYACLRIGAVVVVADAGLGLRGLTRAQRGAWPQYLIGQTTALAAARAAGWPGVRIAVDPLDPVRRRALGVDHELIDVARAGEGLELPPEPGPDDDAAVLFTSGSTGPAKGVLYTHRRLSALRDVLAEHFAVGPDTGLVTGFAPFALLGPALGTRSVTPDMDVSAPRTLTARAVADAVKATDARMVFLSPAAILHVVDTADRLTAVDREALGRVETFLSTGAPIGAALLEAAQSLMPAAEAHTPYGMTECLLVTDITLAGIRDAAGAPDTGVCVGRPIVDPADGGVLISALDDDGAATGPPSADPGALGEVLVSAPHLKERYDRRWLTDVAAERDTPPGHWHRTGDVGHLDDAGRLWIEGRLAHVLTTSAGPLAPVGPEQSIERVDGVRRAAVVGVGPAGVQQAVAVVEPERASGRVRPGLAPEDLDAAVRESSSVPPAAVLVVPEMPTDVRHNSKIDRARLADWASGVLAGGRVTAP				NA	NA	NA	NA	NA
AK001_01531	1071	oleA	COG0332	Acyl-CoA:acyl-CoA alkyltransferase	ATGTCGTCGTTCCGGCGCCGCACGGGCGTCCGGATGTCTGGAGCTCGTGTGTCTGGAAACGCCACCACCCGGTTCGGCAACGTCGCGCTGCTGTCCGTGACGCGCCGACTGCCGTCACGGGTCACGTCGTCGTCCGAGATCCAGCAGCGGCTCGCTCCCGCGCTGAAGCGGTTGCGGCTGCCGCGCAACCTGCTCGAACGGGTCGCGGGCGTCGAGGAGAGGCGCAACTGGGGACCCGATGAGGACGCCGACGCGGCCACGATCGCGGCCGGCCTGGACGCCCTCGACCGGGCCGGCGTCGAGCCGGACGAGGTCGGGCTGCTCATCAACACCTCGGTGACACGCAAGCACCTCGAGCCCTCGGTCGCCGTCGGCCTGCACCACGGGCTGGGGCTGCCGAGCTCGGCCGTGAACTTCGACGTCGCCAACGCCTGCCTCGGGTTCATCAACGGCATGACGCTGGCCGCCGGCATGATCGAGTCCGGGCAGATCCGCTACGCGGTGATCGTCAACGGCGAGGACGCCGACGACATCCAGCACCACACCGTCGACCGGTTGCTCTCCCAGGACGTCGGCCGCGAGGGCTTCATGGAGGAGTTCGCGTCGCTGACCCTGGGCTCCGGGTCCGCGGCCGCCGTGCTCGGCCCGGCCGACGCCCACCCCGAGGGCCACCGTGTGCTCGGCGGCGTGACGCGCGCCGGCACCCAGCACCACCGGTTGTGCGTCGGCAGCCCGGAGGGCATGTTCACCGACGCCGAGGGGCTGCTCGAGGGTGGCCTGGAGCTGGTCGTGGACGCCTGGAAGGACGCCATCGCCGAGTGGGACTGGGAGGCGATGGACCGCTACGTCACCCACCAGGTCTCCCGGGTGCACACCAACGCGATCGTCGAGGCCGTCGGCCTGGACCGCGCCAAGGTCCCCACGACGTACCCGACGCTCGGCAACGTCGGCCCGGCGTCGGTGCCCATCACCCTCGTCCAGGAGGCCGAGACCCTCAGCCGCGGCGACCGTGTGCTGCTCATGGGCGTCGGCTCCGGCATCAACACCGCCATGCTGGAGCTGGCCTGGTGA	MSSFRRRTGVRMSGARVSGNATTRFGNVALLSVTRRLPSRVTSSSEIQQRLAPALKRLRLPRNLLERVAGVEERRNWGPDEDADAATIAAGLDALDRAGVEPDEVGLLINTSVTRKHLEPSVAVGLHHGLGLPSSAVNFDVANACLGFINGMTLAAGMIESGQIRYAVIVNGEDADDIQHHTVDRLLSQDVGREGFMEEFASLTLGSGSAAAVLGPADAHPEGHRVLGGVTRAGTQHHRLCVGSPEGMFTDAEGLLEGGLELVVDAWKDAIAEWDWEAMDRYVTHQVSRVHTNAIVEAVGLDRAKVPTTYPTLGNVGPASVPITLVQEAETLSRGDRVLLMGVGSGINTAMLELAW				NA	NA	NA	NA	NA
AK001_01532	1233	ltaE		Low specificity L-threonine aldolase	GTGCCCGAGACACCCACCGCCCTCCCGCCGTTCGCCTCCGACAACTACGCCGGCACCCACCCCGAGGTGCTCGCGGCCGTCGCCGCGGCCAACGACGGGTTCGCCGTCGCCTACGGGGACGACCCGTGGACCGCGCGCCTCGACGCGCGGGTGGCCGAGGTGTTCGGCCCCGGGGCGCTGGCGTTCCCGCTGGTCAACGGCACCGGGGCGAACGTGGTCTCCCTCATGGCGCTGTCCGAGCGGTGGGGCGGCGTCGTCGCCTCCGACCTCGCGCACGCCAACACCGACGAGAACGGGGCGCCCGAGCGGGTCGGCGGGCTGAAGATCCTCGCCTGCCCATCGCGCGACGGACGGATCGTGCCCGACGACGTCGCCCGCTGGGCCGGGCAGCGCCACGACGTGCACCGCGCCCACCCCGGCGTGCTGACGCTGACGCAGTCGACCGAGCTCGGCACCGTCTACTCGATCGACGCCACCCGCGCCCTCGTCGAGGCCGCGCACGGGCTCGGCATGGCCGTGCACGTCGACGGCTCCCGCCTGGCCAACGCCGCCGCCTCCCTCGGCTGCTCCCTGGGCGCCCTGACCCGCGACCTCGGCGTCGACGTCGTCTCCCTCGGTGCCGCGAAGAACGGCGGGATGCTCGGCGAGGCCGTCGTCGTCCTGGACCCCGACGACGCCCCGCACGTGCCGGGGTCCGGGTACGACGGCGCCCGGCTGCGTCAGGCGGCGGCCGGTGCGGTGCCGTACCTGCGCAAGGCGACGATGCAGCTCGTGTCCAAGACGCGGTACGTCTCGGCCCAGCTCCTGGCGCTGCTCGGCGAGCCGGGAAGCCCGGTGGACACCGCGAACGCCGAGGCCGCGAGCACCGAGGCTGCGTCGGCGCCGCTGTGGCACCGCAACGCCGCCCACGCCAACGCGATGGCCCGCCGGCTCCGCGACGGGCTCGAGGCCGCCGACGCCCTGGACGTCACCACGCACGGACCGGACGCGGGCGAACCCGGCGAGCTCGTCGTCCCCCAGGGGGTCCGGGTGACCCGGCCCGTGGAGGCCAACGCCGTCTTCGCCACGCTGCCGCGCGAGGCCGCCGACCGGCTGCGGGCGCGGGCGCGGTTCTACGACTGGGCGCCCGGGGAGACCCCCGACCGGGTCGAGGTGCGGTGGATGTGCTCGTGGGACACCCCGGCCGACGCCGTCGACGCGTTCGTCGCGGCCGTCGCCGCCGAGGTGGCGTGA	MPETPTALPPFASDNYAGTHPEVLAAVAAANDGFAVAYGDDPWTARLDARVAEVFGPGALAFPLVNGTGANVVSLMALSERWGGVVASDLAHANTDENGAPERVGGLKILACPSRDGRIVPDDVARWAGQRHDVHRAHPGVLTLTQSTELGTVYSIDATRALVEAAHGLGMAVHVDGSRLANAAASLGCSLGALTRDLGVDVVSLGAAKNGGMLGEAVVVLDPDDAPHVPGSGYDGARLRQAAAGAVPYLRKATMQLVSKTRYVSAQLLALLGEPGSPVDTANAEAASTEAASAPLWHRNAAHANAMARRLRDGLEAADALDVTTHGPDAGEPGELVVPQGVRVTRPVEANAVFATLPREAADRLRARARFYDWAPGETPDRVEVRWMCSWDTPADAVDAFVAAVAAEVA	PGPT0020465_180	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620	NA	NA
AK001_01533	450			hypothetical protein	ATGACCGACGCAGGCACCACCGGACACACCGCCACCGCGTCCACGCACATCGCCGAGCCCCCGGAGCGGGTCTGGGCCGAGCTCATGCACCCCGGGGCCCGCTGGATGCTGGGCGCCAACATCGAGACCGACTTCCGGCCCGGCAGCCCGGTCACCTTCGAGGGGCACTTCTTCGGCCGGCAGTTCGCCGACAAGGGCCAGGTGATCGCCGTCGAGCGGCCCCGCCTGCTGCACTTCACGCACTTCTCCCCGCTCGGCGACCTGCCGGACGTGCCGGAGAACTACCACGAGATCCGTATCACCCTCGAGCCCGACGACGGCGGCACCCGGGTCTCGGTGGTCCAGCAGAACATCGACACCGCCGAGCACGCCACGCGGTCCGAGCAGCACTGGTGCGAGGCGCTCGCGACGCTCGCCCACCGCGACGCCGCCCCGACCCCGGGGTCATGA	MTDAGTTGHTATASTHIAEPPERVWAELMHPGARWMLGANIETDFRPGSPVTFEGHFFGRQFADKGQVIAVERPRLLHFTHFSPLGDLPDVPENYHEIRITLEPDDGGTRVSVVQQNIDTAEHATRSEQHWCEALATLAHRDAAPTPGS				NA	NA	NA	NA	NA
AK001_01534	1239	nagZ_2		Beta-hexosaminidase	ATGACGGGCGCTCGCCGGCGCGCGACGGTCCTGCTCACGACGGCCGTGCTCGCGCTGGCGGCCTGCAGCACCCCGGGCACGACGCCGGACCCCAGCGCGGGCCCGTCGCGCACGCCCGGACCGTCGGTGTCGCCGTCCGCCGCGCCGAGCCCGTCACCGAGCCCGGCGCCGTCGCCCACGCCCGGTCCGTCCGACGGCGCCGCCCCGGAACCCGACGACCCCGCCGCAGCCCTGTCGCTGGAGGAGAAGGTCGGCCAGCTGCTCGTCGCGGGCACGCCCGCCGCGGACGACGCCGTCAGCCCGGCGACACGGACCGCCGTCGTCGACCACCACGTCGGCAACGTGTTCCTGCACGGCCGCAGCGAGGCGGGTCTCGACGCCACGCGCGAGCTGGTGGACGCCGCCACGGCGCTCGCTCCGCCGTCGGCCCCGCCGATGCTGGTCGCGACCGACCAGGAGGGCGGCCTGGTCCAGGTGCTGCGCGGGCCGGGGTTCTCCGAGCTCCCCCGCGCGACCGAGCAGGCGACGTGGACGCCGGCGCGGCTCGAGCGGGAGGCGACCGCCTGGGGCACCGAGCTCGCCGACGCGGGCATCAACCTCAACCTCGCCCCCGTGATGGACCTCGTCCCGGCGGCCAACCAGTCCGCGAACGCGCCGATCGGCTACTTCTCGCGCAACTACGGCACCACGGCCCGCTCGGTGGTCGACTCCGCGACGGCGTTCTCGGCCGGCATGCAGGCCGCCGGTGTCGAACCGGTGATCAAGCACTTCCCCGGGCTCGGCCGGGTCACCGAGAACACCGACACCACCGAGGACGTCGTCGACGACACCATCACCGCAGGATCGGCGGACGTCGAGGTGTTCGGCGCCGGGATCGACGCCGGAGCCCGGTTCGTCATGCTGTCCAACGCGGTCTACACGCAGATCGACCCGGACCGCCCCGCGACGTTCTCCCCCGCGGTGGTGCGGATCCTGCGCGACGACCTCGGGTTCGACGGCGTCATCATCACCGACGACGTCTCGGCGGCCGCCGCGGTCGACGACCGGCAGCCGGCCGACCGTGCGGTGTCGGCCATCGAGGCCGGGGTCGACCTCGTGCTGGCCTCCGCCGACCCGTCCGTCGTCCCGGAGATGGCCGACGCCCTGGTGGCCCGGGCGCAGGACGACCCGGAGTTCGCGGCACAGGTCGACGCCGCCGTCGAGCGCGTCCTCGCCGTCAAGGCCGACCTCGACGGTTGA	MTGARRRATVLLTTAVLALAACSTPGTTPDPSAGPSRTPGPSVSPSAAPSPSPSPAPSPTPGPSDGAAPEPDDPAAALSLEEKVGQLLVAGTPAADDAVSPATRTAVVDHHVGNVFLHGRSEAGLDATRELVDAATALAPPSAPPMLVATDQEGGLVQVLRGPGFSELPRATEQATWTPARLEREATAWGTELADAGINLNLAPVMDLVPAANQSANAPIGYFSRNYGTTARSVVDSATAFSAGMQAAGVEPVIKHFPGLGRVTENTDTTEDVVDDTITAGSADVEVFGAGIDAGARFVMLSNAVYTQIDPDRPATFSPAVVRILRDDLGFDGVIITDDVSAAAAVDDRQPADRAVSAIEAGVDLVLASADPSVVPEMADALVARAQDDPEFAAQVDAAVERVLAVKADLDG	PGPT0012175_2165	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207	NA	NA
AK001_01535	2217	dapb1		Dipeptidyl aminopeptidase BI	GTGCACGACGACGCCGCCACCGCGAGCCCGCACGAGCTCGCCGCCCCGCCGACCGCCGACCGCCGACCGATCTCCCGGACCCACCACGGCCACACGGTCGTCGACGAGTACGAGTGGCTGCGCGCCAAGGAGGACCCGGAGGTGCTGGCGCACCTGGAGGCCGAGAACTCCTGGACGCAGGACCAGCTCGCCGGGCTGCGACCGCTGCGCGAGCGGATCTTCACCGAGATCAAGGACCGCACCCAGGAGACCGACCTGTCGGTCCCGACCCGTCTCGGCGACCACTGGTACTACGGGCGGTTCACCGCGGGGCAGCAGTACCCGGTGCACGCCCGCGTCCCGGTGACCGATCCCGACGACTGGACGCCGCCCGCGCTCGAGCCGGGGGAGGTCCCCGCCGGCGAGCAGGTGCTGCTCGACCAGAACGCGGCCGCGGCGGGTCACGACTTCTTCTCCCTGGGCTCGTTCTCCGTGGCCCCGCAGGGGGAGCGGCTCGCCTACGCCGTCGACACCACGGGCGACGAGCGCTACACGCTGCGCGTCCGGGACCTGCGCACCGGTGCCGACCTGGCGGACGAGGTCGTCGGCACGTTCCCCGGCGCCGTGATCACCCCCGACGGCCGGTACGTCTTCTACCCGACCGTCGACGAGGCGTGGCGGCCGTGCACCGTCTGGCGGCACGAGGTCGGCACGCCGGTGGCCGACGACGTCCAGGTCTTCCACGAGCCCGACGAGCGGTTCTGGGTGGGGGTGGGGCTGTCCCGCTCCCAGCAGTACCTGCACGTCGAGCTCGGCTCGAAGATGACCAGCGAGTGCTGGGTGCTGGAGGCCGCCGACCCGACCGGTGCTTTCCGCCCCGTGTGGCGCCGCCGCGAGGGGGTCGAGTACACCGTCGAGCACGCCGTCCTGCCCGGGCGCGGCGACGCGCTGCTCGTGCTGCACAACGACGGCGCGCAGAACTTCGAGCTCGCCGTGACCGACGTGCCCCCGCGCCCGGCCGCGGGCGACGCCGGGGCGGCCGACGCGCTCGACCCGGGCGCGGCGAGCGTCGTCGTGGCTCACGACCCGCAGGTGCGGCTCGAGTCGGTGGACGCCTTCGCCGACCACGTCGTGCTCGGTGTGCGGCGGGACGCCACCCCGCGCGTCGCCGTCGTCACGCTGGCGACCCTCGCCCCGGACGCGCCCTGGACGCCGCGCGAGCTCGACTTCCCCGAGGCGCTCTACAGCGCGGTGCCGGGCGAGACGCCGGAGTTCGCGGCCCCGCAGGTGCGCGTCGAGTACACCTCGTTCGTCACGCCCGCCACCGTCCTGGACGTGGAGGTCGCCACCGGGGAGCGCACCGTGCGCCGCCAGCAGCCCGTGCTGGGCGGCTACGACCCCGCCGACTACGTGCAGCAGCGGGAATGGGCGACGGCCGAGGACGGCACCCGCATCCCGGTCTCGTTGGTGTGGAAGCGCGACGCCGTGACGCTGGACTCGGCCGGGACCGGCGCCGACCCCGCGCCGCTGCTGCTGTACGGGTACGGCGCCTACGAGATCAGCGTCGACCCGTACTTCACGGTGCCGCGGCTGTCGCTGCTGGACCGTGGCGTCGTCTTCGCCGTCGCGCACGTCCGCGGCGGCGGCGAGATGGGCCGGGCCTGGTACGAGGGCGGCCGGCTGGAGCACAAGCGCAACACGTTCACCGACTTCGTCGCGTGCGCGCACCACCTGGTCGACGCCGGCTGGACGACGCCGCAGCGCATGGTGGCCGACGGCGGCAGCGCGGGCGGGCTGCTCATGGGCGCGGTGACGAACCTGGCGCCGGAGATGTTCGCCGGGGTGCTCGCCGGCGTGCCGTTCGTCGACGCGCTGACGTCCATCCTCGACCCCTCCCTGCCGCTGACGGTCGTCGAGTGGGAGGAGTGGGGGAACCCGCTGGCGGATCCCGAGGTGTACGCGTACATGCGCTCGTACAGCCCGTACGAGAACGTGCCCGACGACGCCTCGCACTACCCGCGGATCCTCGCGGTGACCTCGCTGCACGACACGCGCGTGCTGTACGTCGAACCGGCCAAGTGGGTCGCCCGGCTGCGGGCCGCGGGGGCTCCCGCGCTGCTGAAGATCGAGATGTCGGCCGGCCACGGCGGCGTCTCGGGGCGGTACGCGCGCTGGGAGGAGATCGCCTTCGAGCACGCCTGGACGCTGGACGTGCTGGGGCTGGCCCAGGAGGACTGA	MHDDAATASPHELAAPPTADRRPISRTHHGHTVVDEYEWLRAKEDPEVLAHLEAENSWTQDQLAGLRPLRERIFTEIKDRTQETDLSVPTRLGDHWYYGRFTAGQQYPVHARVPVTDPDDWTPPALEPGEVPAGEQVLLDQNAAAAGHDFFSLGSFSVAPQGERLAYAVDTTGDERYTLRVRDLRTGADLADEVVGTFPGAVITPDGRYVFYPTVDEAWRPCTVWRHEVGTPVADDVQVFHEPDERFWVGVGLSRSQQYLHVELGSKMTSECWVLEAADPTGAFRPVWRRREGVEYTVEHAVLPGRGDALLVLHNDGAQNFELAVTDVPPRPAAGDAGAADALDPGAASVVVAHDPQVRLESVDAFADHVVLGVRRDATPRVAVVTLATLAPDAPWTPRELDFPEALYSAVPGETPEFAAPQVRVEYTSFVTPATVLDVEVATGERTVRRQQPVLGGYDPADYVQQREWATAEDGTRIPVSLVWKRDAVTLDSAGTGADPAPLLLYGYGAYEISVDPYFTVPRLSLLDRGVVFAVAHVRGGGEMGRAWYEGGRLEHKRNTFTDFVACAHHLVDAGWTTPQRMVADGGSAGGLLMGAVTNLAPEMFAGVLAGVPFVDALTSILDPSLPLTVVEWEEWGNPLADPEVYAYMRSYSPYENVPDDASHYPRILAVTSLHDTRVLYVEPAKWVARLRAAGAPALLKIEMSAGHGGVSGRYARWEEIAFEHAWTLDVLGLAQED	PGPT0020980_257	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020980-ptrB-K01354	NA	NA
AK001_01536	1422			hypothetical protein	ATGACAGCGGACCGACTCGACCTCGCGAGGAGGACGCGGCGCGCCATCACCGCCGTCGCCCTCGCGTTGCTACCGGCGATGCTCGTCGCACCACCTGCGACGGCGAGCACCGACGACGCCACCTGCCAGCCCGACGCCGACACGGCCTGCGTGGCCGGCATGGTGCTCAACGAGGACAACGACCAGGTCGGGGGTGTGGACCTCACCGTCACCGGCGAGGGCTTCACCGCGGACCTGGTCACCACGGACGAACGCCCCGTCGCGGTCGCCGTGCCCGACGTCGGCAGGTACGTCGTCGCCATCGACGCCTCGACGCTCCCGGACGACCAGCCGCTGCCGGAGGGCGCCGAGACCGAGATCGAGGTCGTCGCCCAGACCGGCGCCACGGCCCGCGCGGCCTTCCGCGTCGGTGCCGGCGTCGAGGCACCGGCCGCTCCGTCGGAGACGGCCGAGGACGGCGAGACCGCCGGAGCCGGCACCACGGGTGGCGACGACGGCGTGGGAGCCGCCCCCGAGGGCGACGCCTCCCTGGTGGACGTCAACTGGGGCCAGGTGTGGCAGCAGATGGGCTCCGGACTCCGGTTCGGGCTCCTGCTGGCGCTGGCCTCCATCGGACTGAACCTCGTGTTCGGCACGACCGGGTTGTCGAACTTCGCCCACGGCGAGCAGTTCGCGCTCGGCGCCGCGCTCGGGTTCATCACCGTCAACCAGATGGGCATGCCGCTGTGGCTCGGCGGGATCGTCACGATCGCCGTGTGCGGGCTGAGCGGCTACGCCCAGGACGCCGGCATCTGGCGGCCGCTGCGCAAGCGCAACGTGCCGGTGATGCAGCTGATGATCGTCTCGATCGGTCTGTCGATCACGCTGCAGTACGTGATCCAGCTGCTGATCGGCGGCGGGTCGGAGCGGATCCTCTCGTCGAACCCGCGGCCGCTCACCATCGCGGGCGTCACGCTGAGCGCCGCGTCGTGGATCTCCATGGTCGTCGCGCTGGTGTGCGTGCTCGGCATCGCCTGGTTCCTCACCCGGACCCGCATCGGCCGCGCCACGCGCGCCGTGTCGGACAACCCGGCGCTGGCCTCCGCGACCGGCATCGACCCCGACAAGATCATCCGCATCGTGTGGGTCATGGCGACCGGCTTCGCCGCCCTGGCCGGCCTGATGTGGGGCGCCTCGTTCGGGTCCTTCAACTGGCAGCTCGGCGTCCAGCTCCTGCTGCTCATGTTCGCCGCCGTCACCCTGGGCGGCCTCGGCACCGCGCTCGGCGCGTTCGTCGGGTCGCTGCTCATCGGGCAGGTCGTCGAGCTGTCGAACCTCTTCATCCCCAGCGACCTGCGGTACGCCTCGGCGCTGGTGATCCTCATCCTGGTGCTCCTGTTCCGGCCCCAGGGCATCCTCGGCCGCCGCGAGCGGATCGGCTGA	MTADRLDLARRTRRAITAVALALLPAMLVAPPATASTDDATCQPDADTACVAGMVLNEDNDQVGGVDLTVTGEGFTADLVTTDERPVAVAVPDVGRYVVAIDASTLPDDQPLPEGAETEIEVVAQTGATARAAFRVGAGVEAPAAPSETAEDGETAGAGTTGGDDGVGAAPEGDASLVDVNWGQVWQQMGSGLRFGLLLALASIGLNLVFGTTGLSNFAHGEQFALGAALGFITVNQMGMPLWLGGIVTIAVCGLSGYAQDAGIWRPLRKRNVPVMQLMIVSIGLSITLQYVIQLLIGGGSERILSSNPRPLTIAGVTLSAASWISMVVALVCVLGIAWFLTRTRIGRATRAVSDNPALASATGIDPDKIIRIVWVMATGFAALAGLMWGASFGSFNWQLGVQLLLLMFAAVTLGGLGTALGAFVGSLLIGQVVELSNLFIPSDLRYASALVILILVLLFRPQGILGRRERIG	PGPT0020770_402	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997	NA	NA
AK001_01537	1005			hypothetical protein	ATGGACGAGTTCCTGCGCATCCTCACCCAGTCGCTCGGCGAGATCCTCGCCCCGACGACGGCCGCGATGGCCATCGCCGCGATCGGGCTCAACCTGCACTTCGGGTACACCGGACTGCTCAACATGGGTCAGGCCGGGTTCATGCTGCTCGGCGCCTACGGCTTCGGCATCACGCTGACCCTCGGCGGACCGATCTGGCTCGCCTTCCTCATCGCCGTCGCCGCCGGCGTCATGTTCGCGCTGCTGCTGGGCATGCCCACGCTGCAGCTGCGCGGCGACTACCTGGCGATCGTGACGATCTCCGCGGCGGAGATCGTCCGATGGTTCGGCCGCTCCACCCTCTGGCAGGAGTGGACCGGCGGCGCGTCGGGCCTCCAGGGTCGCTACTTCAAGGACCCGTTCCACGCCCTGTCGTTCCTGCCGGAGGGGCGGTTCGCCCTCGGGCCGTTCGAGTACATCAACACCGGCTCGGACTCCTGGTTCACCCGGATCTTCGCCTGGGGCCTGGTCGCGCTGCTGCTGCTGTTCGTCTGGCTCATCACGCGCAGCCCGTGGGGCCGCGTCCTCAAGGGCATCCGTGAGGACGAGGACGCCGTGCGCGCGCTCGGCAAGAACGTCTACTCGTACAAGCTGCAGGCCCTGGTCATCGGTGGCGCGATCGGCGCCCTCGGCGGCGTCGTCTACGCCATCCCGACGGCGATCTCGCCGGACGCGATGGGCGGCCGCACGATGACCTTCTTCGTGTGGACGATCCTGCTGCTCGGTGGCGCCGCGACCGTGTTCGGTCCGGTCCTCGGGTCGATGATCTTCTTCACCGCCTACATGTTCATGCGCACCGGCATGCGCACCCTGTCCGAGGACACGGCGCTCGGGAACGTCATCTCGACCACCCAGGTGGAGTTCATCGGCGGCATGCTGGTCGGCATCACCCTGATGTGCCTGGTGATCTTCCGACCTCAGGGCATCCTCGGGAACAAGAAGGAGCTGGCGTTCAATGTCCGTTGA	MDEFLRILTQSLGEILAPTTAAMAIAAIGLNLHFGYTGLLNMGQAGFMLLGAYGFGITLTLGGPIWLAFLIAVAAGVMFALLLGMPTLQLRGDYLAIVTISAAEIVRWFGRSTLWQEWTGGASGLQGRYFKDPFHALSFLPEGRFALGPFEYINTGSDSWFTRIFAWGLVALLLLFVWLITRSPWGRVLKGIREDEDAVRALGKNVYSYKLQALVIGGAIGALGGVVYAIPTAISPDAMGGRTMTFFVWTILLLGGAATVFGPVLGSMIFFTAYMFMRTGMRTLSEDTALGNVISTTQVEFIGGMLVGITLMCLVIFRPQGILGNKKELAFNVR	PGPT0020570_100	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020570-natC-K11955	NA	NA
AK001_01538	915	lptB_2	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGTCCGTTGACGAGACGACGACGGCGGCCCGGAGCGAGGCTCTGGCGCACGTCGCCCACAAGCCCGGCGCCGCCAAGAACGACCCCATCCTCAAGGCCGACCACGTCGTGCGCCGGTTCGGCGGCATGACCGCGGTCGACGTCGACCACCTGGAGGTCCAGGAGGGCGTCATCACCGCCCTCATCGGGCCGAACGGCGCCGGCAAGACCACGCTGTTCAACCTGCTCACCGGGTTCGACACCCCGAACACCGGCGAGTGGAGCTTCCAGGGCCACTCGCTGAGCGGCAAGAGCGGCGCGGCCGTGGCCAAGGCCGGCGTGGTGCGCACCTTCCAGCTCACCAAGGCGCTGGGCCGCCTGACGGTGCTGCAGAACATGCTGCTGGCGTCGCCGAACAACCCGGGCGAGAAGCTCGGGCTGTCGTGGCTGCCGTTCCTGTGGAAGAAGCACGAGGCCGAGGCCACCGAGAAGGCCATGGAGATCCTGGCCCGGTTCAAGCTGGACGCGAAGGCGGCCGACTACGCCGGCTCGCTCTCCGGCGGTCAGCGCAAGCTGCTTGAGATGGCCCGCGCCCTGATGACCGACCCCACGATGATCATGCTGGACGAGCCGATGGCGGGGGTGAACCCCGCCCTGGTGCAGTCCCTGCTGGGACACGTCCAGGCGCTGCGCGACGAGGGCATGACCGTGCTCTTCGTCGAGCACGACATGCACGCCGTGCGGCACATCTCGGACTGGGTCGTGGTGATGGCCGAGGGCCGCATCGTGGCCGAGGGCCCGCCCAGCACCGTGATGAAGGACCAGGCCGTGGTGGACGCCTACCTCGGCGCGCACCACGACACCGACCTCGGGGACGATGCCCTGCTCGATCCCGAGGTCCTCGCCCGGCTCGAGGCCGAGGAGGAGAAGCGATGA	MSVDETTTAARSEALAHVAHKPGAAKNDPILKADHVVRRFGGMTAVDVDHLEVQEGVITALIGPNGAGKTTLFNLLTGFDTPNTGEWSFQGHSLSGKSGAAVAKAGVVRTFQLTKALGRLTVLQNMLLASPNNPGEKLGLSWLPFLWKKHEAEATEKAMEILARFKLDAKAADYAGSLSGGQRKLLEMARALMTDPTMIMLDEPMAGVNPALVQSLLGHVQALRDEGMTVLFVEHDMHAVRHISDWVVVMAEGRIVAEGPPSTVMKDQAVVDAYLGAHHDTDLGDDALLDPEVLARLEAEEEKR	PGPT0020580_145	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020580-natA-K11957	NA	NA
AK001_01539	846	livF_2	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	ATGAGCCAGACCACCACCGCGCCGCAGGAGACGTCGATCGACGACGTGCCCGCGGACGAGCTGCTGCTCCACGCCGACAACCTCGTGGCCGGCTACCTGCCCGGGGTGAACATCCTCAACGAGTGCTCGCTGAAGGTCCGCCAGGGCGAGCTCGTGGGGATCATCGGCCCCAACGGCGCCGGCAAGTCGACCTTGCTCAAGGCGCTCTTCGGGCTGGTGAAGATCCACTCCGGCACCGTGACGCTGCAGGGCAAGGACATCACCGGGATGAAGGCCAACAAGCTGGTCGCCCAGGGTGTCGGGTTCGTGCCGCAGAACAACAACGTGTTCCCCTCGCTGACCGTCGAGGAGAACATGCGGATGGGCACGTTCCTCAAGCCGAAGATCTTCGCCGAGCGCTGGCAGTTCATCGGGGACCTGTTCCCGGTGCTGCACGACCGCCGGTCGCAGCGGGCGGGCGCCATGTCGGGCGGTGAGCGTCAGATGGTCGCCATGGCCCGGGCGCTCATGATGAACCCGTCGGTCCTGCTGCTCGACGAGCCGTCGGCCGGCCTGTCGCCGGTGCGTCAGGACGAGACGTTCCTGCGCACGCGGATGATCAACAAGGCGGGCGTCTCGGTCATCATGGTCGAGCAGAACGCGCGCCGCTGCCTGCAGATCTGCGACCGGGGGTACGTGCTCGACCAGGGCACGGACGCCTACTCCGGTCCGGGCCGCGAGCTGCTCAACGACCCGAAGGTCATCTCGCTCTACCTGGGCACGCTGGCCGACGACGTCGAGGAGGCCGAGGCCGCTGCGGAGGCGGACGCCGAGTCCCGCGACCCGGGCGACACCCCCGCGAAGTAG	MSQTTTAPQETSIDDVPADELLLHADNLVAGYLPGVNILNECSLKVRQGELVGIIGPNGAGKSTLLKALFGLVKIHSGTVTLQGKDITGMKANKLVAQGVGFVPQNNNVFPSLTVEENMRMGTFLKPKIFAERWQFIGDLFPVLHDRRSQRAGAMSGGERQMVAMARALMMNPSVLLLDEPSAGLSPVRQDETFLRTRMINKAGVSVIMVEQNARRCLQICDRGYVLDQGTDAYSGPGRELLNDPKVISLYLGTLADDVEEAEAAAEADAESRDPGDTPAK	PGPT0020785_868	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996	NA	NA
AK001_01540	1032			hypothetical protein	ATGGCCCCTCGCGAACCCGCCCACGCACCCGCCGTCCGCCGTCTGACGACGATCCTCGCGCAGATGCGAGCACCGGACTCGCCGTTGCGCGGGATGCTCGCAGCCGACCGGCTGCCGCCGCAGGTGCCGTTGACCGTCGAGCCGGCGCTGGCGGACGTGGCCGCGATCCGACGACGTCTCGAGACCGGTCACCTGTCGGCCGTCCGCGGGTCGCTCGTCGCGGCGTCGCCTGACGACGGTCACGAGGAGCTCATCCTGCGCGAGGTGCGTGGCCTCGCCGCCTCGGCGCGCGGCGAGCACTGGTTCAGCCACTCCACGGCGGCCCTGCTGCACGGCGCCTGGACCTACGCGACTCCGCCGCTCGTGCACGTCACGCACGAGGCCAACCCGCACGTCCGACGGCGGCTCGAGCCCGACGTGCGGCGTCACCACACGCGGCTCCTGCCCCGCGATCGCGACGTCGTCGACGGGATCCCCGTCACGTCGAAGGAGCGGACGCTCGTCGACTGCCTCCGGACGATGCGGCCCCCGGCGGCACTGGTCGTCGCCGACTCCCTGTTCCGGCTGCGGGCCGACCCGGCCGAGGTGGGCCGGATCATGGCCGACTCGGTCGGCAAGCGTGGGATGGTGCAGGCTCGCCGGCTCCTCGAGCTGTGCGACCCGCGCTCCGGGTCCCCCGGCGAGACGGTGGCCCGCCTGGCTGCCATCGACGACGGTCTGCCCCGCCCGGTGTGCCAGATGCCGGTGGAGACGCGCTCGGGGACCCGGTACGTGGACTTCGGGTGGCCGGAGGTCGGGGCCGGGGTGGAGTTCGACGGCGACGTGAAGTACTCCGGCGGCGAGTACGGCCTGCCCGACGATGTGCTTCGTCGGCAGCAGCAGCGGCACGAGGACATCGAGGCCGCCGGCGTCGACCTCGTGCGCGTCAGCTGGCCGGCACTGCGCGACACCGAGCAGCTCGGCCTGCGGCTCCGGAGCCTGTACGACACGGCGCTGTTCCGCACGCGCGAGCGCCGCCGTCGGACCACGTGA	MAPREPAHAPAVRRLTTILAQMRAPDSPLRGMLAADRLPPQVPLTVEPALADVAAIRRRLETGHLSAVRGSLVAASPDDGHEELILREVRGLAASARGEHWFSHSTAALLHGAWTYATPPLVHVTHEANPHVRRRLEPDVRRHHTRLLPRDRDVVDGIPVTSKERTLVDCLRTMRPPAALVVADSLFRLRADPAEVGRIMADSVGKRGMVQARRLLELCDPRSGSPGETVARLAAIDDGLPRPVCQMPVETRSGTRYVDFGWPEVGAGVEFDGDVKYSGGEYGLPDDVLRRQQQRHEDIEAAGVDLVRVSWPALRDTEQLGLRLRSLYDTALFRTRERRRRTT				NA	NA	NA	NA	NA
AK001_01541	1308			hypothetical protein	ATGACTCGACGCATGACGGCCGCCAAGGGCCTCGCCCTCGCTGCGGCTCTCAGCCTGGGCCTCACGGCCTGCGGCTCCGACGAACCGGCCGAGGAGACCTCCTCGGACGAGTCGACCGAGGAGTCGATGGACGAAGGCTCAGCCGAGCCTCTGACCATCGGCACGATCCTGCCGGTCACCGGCACGCTGTCCTTCCTCGGGCCCCCCGAGATCGCCGGCGTCGGTCTGGCGATCGACGACATCAACGAGGCCGGGGGCGTGCTCGGCAACGACGTCGTGGTCGAGTGGGGCGACTCGGGTGACAACACCGACATGACGGTGGCCAACTCGACCGTGACGGACCTCGTGAACAAGGGTGCCGATGCGGTCATCGGTGCGGCCTCCTCGTCCGTGTCGCTCGGTGTCGTCGACGCCTTCGCCGAGGCCCAGATCATGCAGATCTCCCCGGCGAACACCGCCGCGGACCTGTCGGGCTACGGAGACTTCTACACCCGCACCGCGCCGCCGGACACCGTCCAGGGCGCCGCCCTCGGCTCGCTGATCCTCGACGGCGGTCACCAGAGCGTCGCGATGATCGTCCTCAACGACGCCTACGGCACCGGCCTGCGCGACCACACGCAGGACGCGATCGAGGCCGGCGGCGGCGAGGTCGTCTACGGCGCCAACGGCGCCGGCGAGGAGTTCCCTCCCGGTGAGACGAACTTCGGCTCGCAGGTCTCGGCCGCTCTGGCGACCGAGCCCGACGCCCTCGTCATCATCGCCTTCGAGGAGACGGTGGCCGCGGTGAACGAGCTCGTCGCCCAGGGCTGGGACTTCGACGGCACCACGTACTTCACGGACGGCAACCTGTCCGACTACTCCGAGGACTTCGACGAGGGCACCCTCGCCGGCATCCAGGGCACCCTGCCGGGCGCTCAGGCCGACGACGACTTCAAGGAGCGCCTGAACACCTGGCACTCCGAGAACGAGGGCGCGGAGCTCGACGGGTTCTCCTACTCCGCCGAGTCGTACGACGCCACGATCCTCGCGGCTCTGGCCGCCGTGCGTGGCGAGGGCACCGACGGTGTGACCATCTCCGAGAACATCCGCGCCGTCTCCGGCTCGGAGGGTGGCACCGAGGTCACCACGTTCGCCGAGGGCGTCGAGGCGCTCGAGGCCGGCGAGGAGATCAACTACACCGGTCCGTCCGGCACGGGCCCGCTGAACGAGGACAACGACCCGTCGTCCGCGTTCATCGGCATCTACGAGTACGACGGCAGCAACGCGTACTCCTACGTGCGGCAGATCGAGGGCCAGATCGGCGGCTGA	MTRRMTAAKGLALAAALSLGLTACGSDEPAEETSSDESTEESMDEGSAEPLTIGTILPVTGTLSFLGPPEIAGVGLAIDDINEAGGVLGNDVVVEWGDSGDNTDMTVANSTVTDLVNKGADAVIGAASSSVSLGVVDAFAEAQIMQISPANTAADLSGYGDFYTRTAPPDTVQGAALGSLILDGGHQSVAMIVLNDAYGTGLRDHTQDAIEAGGGEVVYGANGAGEEFPPGETNFGSQVSAALATEPDALVIIAFEETVAAVNELVAQGWDFDGTTYFTDGNLSDYSEDFDEGTLAGIQGTLPGAQADDDFKERLNTWHSENEGAELDGFSYSAESYDATILAALAAVRGEGTDGVTISENIRAVSGSEGGTEVTTFAEGVEALEAGEEINYTGPSGTGPLNEDNDPSSAFIGIYEYDGSNAYSYVRQIEGQIGG	PGPT0020565_75	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020565-natB-K11954	NA	NA
AK001_01542	870		COG0656	putative oxidoreductase/MSMEI_2347	ATGACGTCGCACCAGCACAACGGCAAGATTGCTGGCATGAGTGTCCCCAACATCACCCTCGACAACGATGTGAAGATCCCTCAGGTCGGTCTCGGCGTCTTCCAGGTGCCCGACGACGGCACCCAGCGGTGCGTCGAGAGCGCCCTGGAGCTCGGGTACCGGCACATCGACACGGCGGCCGGCTACGGCAACGAAGCCGGCGTCGGTGCGGCGCTGCGCGCCTCGGGACTGCCGCGCGAGGAGGTCTTCGTGACCACGAAGCTCCGCAACGGCGACCAGGGGTACGACAGCGCCCTGCAGGCGTTCGAGCACTCCCGCCGCGAGCTCGGGCTCGACCAGGTCGACCTGTACCTCGTGCACTGGCCGGTGCCGAGCCTCGACCGCTACGTCGAGACGTGGAAGGCCTTCGAGAAGCTGCTCGCCGACGGCGCGGTCCGGTCGATCGGCGTGTCGAACTTCCTGCCCGAGCACCTCGAACGCCTGGTCAGCGAGACGGACGTCGTCCCGGCGGTCAACCAGATCGAGATCCACCCACGGTTCCAGCAGGCCGCGGTGCAGGCCGCGTGCCGCGAGCACGGGATCGCCGTCGAGGCCTACTCGCCGCTCGGCCGCGGCGCCGATCTCGAGGCGCCGGCGGTGGCCTCGGTCGCCGCCGAGCTGGGCGTCACGCCGGCCCAGGTGGTGCTGCGGTGGGAGGTGCAGCAGGGGATCGTCGTCATCCCCAAGTCGGTCTCCGCGCAGCGCCAGGAGACCAACCTCGACCTGTTCTCGTTCGAGCTGAGCGACGAGCAGATGGCCGCCCTGACGGCTCTCGAGGCGGGCACCGAGGGCCGTACCGGAGCCGACCCCGCGACGATGGCGGCCGCGTAG	MTSHQHNGKIAGMSVPNITLDNDVKIPQVGLGVFQVPDDGTQRCVESALELGYRHIDTAAGYGNEAGVGAALRASGLPREEVFVTTKLRNGDQGYDSALQAFEHSRRELGLDQVDLYLVHWPVPSLDRYVETWKAFEKLLADGAVRSIGVSNFLPEHLERLVSETDVVPAVNQIEIHPRFQQAAVQAACREHGIAVEAYSPLGRGADLEAPAVASVAAELGVTPAQVVLRWEVQQGIVVIPKSVSAQRQETNLDLFSFELSDEQMAALTALEAGTEGRTGADPATMAAA	PGPT0001320_1043	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221	NA	NA
AK001_01543	204	cspA	COG1278	putative cold shock protein A	ATGGCCACCGGTACCGTGAAGTGGTTCAACAGCGAGAAGGGCTACGGCTTCATCGCCCCCGAGGACGGCACCGCTGACGTGTTCGTCCACTTCTCCGCGATCCAGACGCAGGGCTACCGCACCCTGGACGAGGAGCAGAAGGTCGAGTTCGACGTCACGCAGGGCCCGAAGGGCCCGCAGGCGGAGAACGTCCGCCCGCTCTGA	MATGTVKWFNSEKGYGFIAPEDGTADVFVHFSAIQTQGYRTLDEEQKVEFDVTQGPKGPQAENVRPL	PGPT0014675_7748	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
AK001_01544	789			hypothetical protein	ATGGGATTCCTCGACCGACTCCTCGGCAGCTCACGTGACGAGCGCTCCATCCCCGGCATGACCGGCGGAGGCACTCCGCGCGGGTACGGCCCGCCCACACCCTCCGGCTCCGGGCCGGGCGCCGCGCCCGCGGCGTCGACGCACCGCTCGCCGGACGACGTGGCGATCGACCGCTACCGCTACCTGCTGCGCACCGCTCCCCCGGACGCCGTCGAGCAGGCGCACGCCGAGGCGTTCGCCCAGCTCACCCCGGAGCAGCGGCGCCAGGTCCTCTCGGAGGTCGGCGCCACGGTGCCCGCGTCCGAGCGCGCCACCTCCGACGACCCGCAGTCGCTGGCCCGGATGGCCACGCGTGCCGAGATGCGCAGCCCCGGCACCCTGGAGAACACGTTCCGCTCCGGCGGCCCCGGTGCGATGGCGGGCGCCGGCGGCCCGAGCTTCGGGTCGATGATGGGGTCCAGCCTGCTCGGGACCGTCGCCGGTGTCGTCATCGGGTCCGCCGTGGCCAACGCGATGTTCGGCCCGGCGTTCGGCGACCCGACGACGCCGGTGGCGGAGGACGCGGCGGCCGGCGGTGACGCCGGCGGCGAGGGCGATCCCGGCGCCGGGGATCCTGGAGCCGACGGCGGGGACGGCGGAGCCTTCGCGGACGGCGGGGCCGACGCCGGTGGAGCCGACGCGGCCGGCGACGGCGGCATGTTCGGTGGCCTCTTCGGCGGCGACGACGGCGGCGGCGGTGGCCTCGGGGACTTCTTCGGGGGCGACGGCGGAGGCGGGTTCGACTTCTGA	MGFLDRLLGSSRDERSIPGMTGGGTPRGYGPPTPSGSGPGAAPAASTHRSPDDVAIDRYRYLLRTAPPDAVEQAHAEAFAQLTPEQRRQVLSEVGATVPASERATSDDPQSLARMATRAEMRSPGTLENTFRSGGPGAMAGAGGPSFGSMMGSSLLGTVAGVVIGSAVANAMFGPAFGDPTTPVAEDAAAGGDAGGEGDPGAGDPGADGGDGGAFADGGADAGGADAAGDGGMFGGLFGGDDGGGGGLGDFFGGDGGGGFDF				NA	NA	NA	NA	NA
AK001_01545	3678			hypothetical protein	ATGTTCCTCCTGGACGGTCCGGACGGGTCCCGGCTCGTGCACTCGGCCAGCGACCTGGTGGTCGCCGCCGAGTGCGAGCACGCGTTGCTGCGGCGGCTCGACGAGGTCCTGGGGCGGGTCCCGCAGCGGCCGCGCGAGACCGACGAGATGCTGGCGCGCACCGTCGCTCTCGGTGAGGCGCACGAGCAGGCCGTCCTGGAGGACTTCCGGTCGCGGTACGGCACGGCGTCCGACGACGGCGGCCCGGGCGGGGTGCTGGAGGTCCCGCCGCCGCAGCACCTGACGTACGACGGGCTGGTCGCGGCGCACTCGGCGACGCTCGCCGCGCTCGAGCAGGGGGCCGACGTCGTCTACCAGGCGGCGTTCTTCGACGGGCGGTTCCACGGCCGGGCGGACTTCCTGGTGCGCGACGCCGGTGCGGCCCGGGACGGGCGGCCGCGCTACGCCGTGTGGGACACCAAGCTCGCCAAGCGGGAGAAGGTGCGCGCGGTGCTGCAGCTCGCGGCGTACGCCGACCAGCTCCTGGCCGCGGGGATCGACCCGACCGAGCACGCCCACCTGGTGCTCGGCACGGGCGAGCTGACCGAGCACGCCCTGGCCGAGGTGCTGCCGGTGTTCCGGGCTCGGCGCGACCGGCTGCTCGACGTCGTCGCCCGGCACGTCGACGCCGAGGCACCGGTGGCGTGGGACGCCCCGGGGCACGCGGCCTGCCAGCGGCTCGGGGCCTGCCCGGACTGCGCCGAGTCCGCGGCGGCGCACGACGACGTGCTGCTCGTGGCCGGGGTGTACGCCCCGCAGCGGGCGCGACTGGCGGCGTCCGGTCTGACGACGATGAAGGACCTGGCCGGCGCGGAGCAGCCGCCGGCGGGGATGACGGCGGACCGGTTCGCCGGCCTGCAGCGGCAGGCCGCGCTGCAGCTGGGCACCGACCCGGGTGACGGCTCGGTGCTGCTGGAGACGCCCGAGGGCCCCCGCGAGCTGCGCTGGGCGCTGACCGACCCCGCGCCGGTGGAGCGGCTGCCGCCGCCGAGCGAGGGTGACGTGTTCTTCGACTTCGAGGGCGACCCGCTGTGGACGCCCGACGACGCCCTGACGCCGGGGGAGTCGGGGATCGACTACCTGTTCGGCTGGGTCACCCGCGACCTCGACGCCGAGGGTCGGCCAGCCTTCCACGCCCTGTGGGCGGACACCTGGGCCGAGGAGGCCGAGGCGCTGGTGCGGTTCGTCGACGACATGGCCGAGCGCCGTCGTCGGTGGCCGGACATGCACGTCTACCACTACGCCGCCTACGAGCGGACGCACCTGCTGTCCATCGCCGCCCGGCACGGGGTCTACGAGGACGAGGTCGACGAGCTCCTGCGCTCCGGGGTGCTCGTCGACCTGTACGCGACGGTCCGGTCGGCCATCCGGATCTCGGACCGGTCCCGCTCGATCAAGAAGCTCGAGCCGTTGTACATGGGCGACGAGGCGGCGCGCTCCGGGGTGACCGACGCGGCGACGTCGGTGGTCGAGTACGCGGAGTACTGCGACCTGCTCGCCGCGGGGGACCAGGAGGAGGCGGCCCAGCGTCGCGAGGAGATCCTCGACTACAACCGCTACGACTGCCTGTCCACGCTGCGGCTGCTGGACTGGCTGCGCTGGGCGCACGACGAGGTCGTCGGACCCGTCGAACGTCCCGTCGCCGAGCCGCTGCCCCTGGAGGAGCCGCCAGAGAACCCGGAGAAGGCCGCCCGCGAGGCGCTCGAGGCCGAGATCCGTGACGCCGTCGCGCACGCCCATCCCCACGAGCCCGCCGACCGCGCGGCCGCACGCGCACTGAGCCTGCTCGGTGCCGCCGTTGGGTACCACCGGCGCGAGAGCAAGCAGTTCTGGCAGGCGCACTTCTCCCGCATGCAGCTCCCGCCCGCCGAGTGGCCGGGTCGCCGCGCCGCCGTCGTCGTCGAGAGCGGTCGGGTCCTGAGCGACTGGGAGAAGGAGCCCGGACGCCGGGCGCCGTCGCGGATGCTGGCCCTGCGGTGCGCGGCCGTCGAGGGCAGCGAGCTGCGCGCCGGGGCGAACGCCTTCCTGCTCTACGACGTGCCGTGCCCGCCGGTGGTGACCGGCGTCGGACCGCTGGCGGAACGCTGGTTCCACAGCAAGATGGCGATCACCGACGTCGAGCGGGTCGCCGACGGTGAGCAGGAGTGGGAGGTGTTCACGGTGCGCGAGCACGTGGGCAGCGGCCAGGAGACGCACGACGACCTGCCGTGCGCGCTGAGCGTCAACAGCCACGTGCCGCCCGGCCCGTTGGAGACGGCGACGGCCGAGGCCGGCCGGGCCGCGTTGGAGGCCTGGCGTGCCGGGGAGACGGCCGGCGCGCCGTTGGCGGACCGGCTGCCCGCCGGGCCGATGACGGACCTGCTGCAGCGACGTCCCGCCCGGGTGGCCGGTGGCCTGCCCGCGGCACCCGTCGGTCCCGACGGCGAACCCGACGTCGTCGCCGCCGTCGAGCGGGCGGTGCGGGCGCTCGACCGGTCCTACCTCGCCGTGCAGGGACCGCCCGGGACCGGCAAGACGTACCTGGCCTCGCACGTCATCGCGGCGCTGGTCGCCGACGGCTGGCGGGTCGGGGTCGTGGCCCAGTCGCACGCCGTGGTGGAGAACCTCCTGCACGGCGTGCTCGGGGCAGGGGTCCCGCCCGAGCAGGTCGCCAAGAAGCGGCCGTCGACCGTCTCGTCGGCCCGGGCCGACTCCCCCTGGCAGGACGTCACCGCCGACGGGCTCGAGACGTTCGCGGCCGAGGCCGACGACGCCGGGCGCGGCTGCGTCGTCGGGGGTACGGCCTGGGACTTCGCGCACGAGCGCTGGGCGCCCGACGGGCTCGACCTGCTCGTCATCGACGAGGCGGGCCAGTTCGCGATCGCCAACACCGTCGCCGTCGCGCGGGCCGCGTCGAGGCTGCTGCTGCTCGGCGACCCGCAGCAGCTCCCGCAGGTCTCCCAGGGCGCGCACCCCGACCCCGGGGTCGCCGGGTCGGCGCTCGGGTGGCTGGCCGACGGCCACGAGACGCTGCCCGAGGAGTTCGGCTACTTCCTGCCGGCGTCGCGGCGCATGCACCCCGACCTGTGCTCCGCGGTCTCCGAGCTCGCCTACTCCGGGAAGCTGCACGCCCACGCCACGGTCCACGGCCGGACGCTGGACCCGGTGGCGCCCGGCGTGCACGAGGTGCTGGTCGACCACGCGGGTCGCGCGGTGTCGTCTCTCGAGGAGGCGGACGAGGTGGTCCGGCAGGTCCGGGCGGTGCTCGGGCGCCCGTGGGTCCGGTCCGCCGGGGCGGAGCCGCGCGCGCTCGGGCCCGCGGACGTCATCGTCGTGGCGGCCTACAACGCGCAGGTCCACACGATCCGGCGTGCGCTGGCTGCGGCCGGGCTGGAGGACGTCCGGGTCGGCACGGTCGACAAGTTCCAGGGGCAGGAGGCGCCGGTCGCGGTGCTGTCCATGGCGGCGTCGTCACCGGACGAGGTGCCGCGCGGCATGGGCTTCCTGCTCAGCCGGAACCGGCTCAACGTGGCGGTCTCGCGGGGCCAGTGGTGCGCCGTCGTCGTCCGCTCACCGCGGCTGACGGACTACCTGCCGACGTCGGTCACGGACCTGGAGCAGCTGGGCGCGTTCCTGCGCCTCACCTCCCCGCCGAGGTAG	MFLLDGPDGSRLVHSASDLVVAAECEHALLRRLDEVLGRVPQRPRETDEMLARTVALGEAHEQAVLEDFRSRYGTASDDGGPGGVLEVPPPQHLTYDGLVAAHSATLAALEQGADVVYQAAFFDGRFHGRADFLVRDAGAARDGRPRYAVWDTKLAKREKVRAVLQLAAYADQLLAAGIDPTEHAHLVLGTGELTEHALAEVLPVFRARRDRLLDVVARHVDAEAPVAWDAPGHAACQRLGACPDCAESAAAHDDVLLVAGVYAPQRARLAASGLTTMKDLAGAEQPPAGMTADRFAGLQRQAALQLGTDPGDGSVLLETPEGPRELRWALTDPAPVERLPPPSEGDVFFDFEGDPLWTPDDALTPGESGIDYLFGWVTRDLDAEGRPAFHALWADTWAEEAEALVRFVDDMAERRRRWPDMHVYHYAAYERTHLLSIAARHGVYEDEVDELLRSGVLVDLYATVRSAIRISDRSRSIKKLEPLYMGDEAARSGVTDAATSVVEYAEYCDLLAAGDQEEAAQRREEILDYNRYDCLSTLRLLDWLRWAHDEVVGPVERPVAEPLPLEEPPENPEKAAREALEAEIRDAVAHAHPHEPADRAAARALSLLGAAVGYHRRESKQFWQAHFSRMQLPPAEWPGRRAAVVVESGRVLSDWEKEPGRRAPSRMLALRCAAVEGSELRAGANAFLLYDVPCPPVVTGVGPLAERWFHSKMAITDVERVADGEQEWEVFTVREHVGSGQETHDDLPCALSVNSHVPPGPLETATAEAGRAALEAWRAGETAGAPLADRLPAGPMTDLLQRRPARVAGGLPAAPVGPDGEPDVVAAVERAVRALDRSYLAVQGPPGTGKTYLASHVIAALVADGWRVGVVAQSHAVVENLLHGVLGAGVPPEQVAKKRPSTVSSARADSPWQDVTADGLETFAAEADDAGRGCVVGGTAWDFAHERWAPDGLDLLVIDEAGQFAIANTVAVARAASRLLLLGDPQQLPQVSQGAHPDPGVAGSALGWLADGHETLPEEFGYFLPASRRMHPDLCSAVSELAYSGKLHAHATVHGRTLDPVAPGVHEVLVDHAGRAVSSLEEADEVVRQVRAVLGRPWVRSAGAEPRALGPADVIVVAAYNAQVHTIRRALAAAGLEDVRVGTVDKFQGQEAPVAVLSMAASSPDEVPRGMGFLLSRNRLNVAVSRGQWCAVVVRSPRLTDYLPTSVTDLEQLGAFLRLTSPPR				NA	NA	NA	NA	NA
AK001_01546	921			hypothetical protein	ATGACCGTGCGATTCAACCCCCCGCCCGGCTGGCAGGTCCCCCCGGGATTCCGGCCCGACGCCGGCTGGACGCCCGACCCTGCGTGGCCGCCGGCGCCCCCGGGATGGCAGTACTGGGTGGAGGACGCCGCCCCCGCGCCGCAGCCTGCCCGCACCTCGACGATCCGCCCCGCGGGTGCCCCGCCCGCCGGTCGCGCACCCGACCCGTCGGCGACGACCGTCATGGCGCCCGTGCCCTCCGGGCCGACGCCGGCCGCGGCCGCCCCGCCGCCGCCCGGTCCGCCGTCGGGCGGAGACCCGCACCCGACGCTCCGCGGGACGGCTCCCGTCCCCCCGCCGCAGCAGGCCGCCCGACCCGCACCCGCGGCCGCCCCGCAGCAGCCTGCGGCGACCCGCACCGAGTCGCGCGGCACCCGGTCGCGGCGTCCGACCAACGTTCTCGTCGCCGGGGTGGCGGTCGCCTGCCTCGCGCTGGGCGTCATCGTCGGGGTGATGTTCTCGATGGTGCAGACCTCCGACGCACGGCAGGCCGTCGCCGACGCCGAGCGCGAGGTGGAGGCCGCCGCGGCGCTGGAGGCCGAGGTCACCGAGGACAAGGCGGCGCTCGACGAGCGGGCCGCCTCCCTGGACGAGCGGGAGAACCAGCTCAAGGACCGCGAGTCCGCGGTCGCCGAGAAGGAGTCCCAGCTCGTCAGCCGCCAGAACGAGCTCGACGAGCAGGCGGCCCAGGCCGAAGAGGATCGGCAGCAGCGCGAGCAGCAGGAGCAGCGCGACGACGACGGTGGCGGCGGCCAGTGGTGGTACTGGAGCTGCGACGACGCGCGGAAGGACGGTGCGGCCCCGATCCGGCAGGGCGAGCCCGGCTACCGCGGCGGTCTCGACCCGAACGGCAACGGCATCGCCTGCGAGGGCGGGGAGTAG	MTVRFNPPPGWQVPPGFRPDAGWTPDPAWPPAPPGWQYWVEDAAPAPQPARTSTIRPAGAPPAGRAPDPSATTVMAPVPSGPTPAAAAPPPPGPPSGGDPHPTLRGTAPVPPPQQAARPAPAAAPQQPAATRTESRGTRSRRPTNVLVAGVAVACLALGVIVGVMFSMVQTSDARQAVADAEREVEAAAALEAEVTEDKAALDERAASLDERENQLKDRESAVAEKESQLVSRQNELDEQAAQAEEDRQQREQQEQRDDDGGGGQWWYWSCDDARKDGAAPIRQGEPGYRGGLDPNGNGIACEGGE				NA	NA	NA	NA	NA
AK001_01547	459			hypothetical protein	ATGCACCGCAACCGCACGCTCGCCGTCGCCGGGTCCGTGGCGCTCGCCGCCGGAGCCGTCCTGGTGCCGGCCGCGGCCGCCCAGGCCGGGGTCAGCGAGGGCACCGCGTTCTACGTCGACGGCGTCGCCTACCGCACCGTCGCGACGCCGAACGACCTGTCCGGCACGGGGGCGCCGGACCACTCGTTCGACGTCATCTACGCCCTGGGCACCGACACCCAGGCCAACGTCGCCGAGGCCGCGCCGGGCGACACCGACTACAACGGCGGCCGGTGGCAGGTCCACGCTCTGGTGTACGACGACTTCGACGCCGTGCTGGCCGCCGGGGACACCGACGGGGACGGCATCCTCGGGTCCGTCGAGGAGGTCCACGCCGCGATCGACGCCGGGGTGGCGTCCGACGGCGGCGTCGTCGCGTCGTTCACCTGCCCGGTCATCCCGTTCCCCGGCGGGCGCTGA	MHRNRTLAVAGSVALAAGAVLVPAAAAQAGVSEGTAFYVDGVAYRTVATPNDLSGTGAPDHSFDVIYALGTDTQANVAEAAPGDTDYNGGRWQVHALVYDDFDAVLAAGDTDGDGILGSVEEVHAAIDAGVASDGGVVASFTCPVIPFPGGR				NA	NA	NA	NA	NA
AK001_01548	804	walR_1	COG0745	Transcriptional regulatory protein WalR	ATGGTCCGGGTCCTCGTGGTCGACGACGACACCACCGTCGCCGACGTGGTGGTCGCCTACCTGGAGCGCGCCGGGATGACGGCCGAGCACGTGGCCGACGGCGTCGACGCCCTCGTCGCCGCCCGCGAGCGCCCGCCGGACGCCGTCGTCCTGGACCTCATGCTGCCGGGCCTGGACGGCATCGAGGTGTGCCGGCGGCTGCGCGCGGACCGCCCCCGGCTGCCGGTGCTCATGCTCACCGCCCGCGGCGAGGAGGACGACCGCATCACCGGCCTGGAGGTCGGCGCCGACGACTACGTGACCAAACCGTTCAGCCCCCGCGAGCTGACCCTGCGGGTGCAGTCGGTGCTGCGGCGCGCGGGCACCCCGGCCGACGGCGGCACGCGGCCCGACGACGGCACCCCGGCGGGCGGCACCCCGGCCACCGCCGGACCGGGCGCCACCCACCCGGCGCCCGCCGCGCCGTCGGGCACCCTGAGCGACGGCGACCTGACCCTGGACGTCGCCGCCCACCGGGTGCTGCGCGGCGGCGACGAGCTGGCGCTCACGGCCCGCGAGTTCGACCTGCTGGCCTGGTTCCTCGCCCACCCCGGCCAGGTGCACGACCGCGAGGCGCTGCTGCGCGAGGTGTGGGGCTGGGAGTACGGCGACCGGTCCACGGTGACGGTGCACGTGCGGCGCCTGCGCGAGAAGGTCGAGGCCGACCCGTCGGCCCCGACGCGGCTGGTGACCGTGTTCGGGGTCGGCTACCGCTGGGACGCCCGCGAACCGTCCGTCCAGGCGCAGCCCGGGAGCGCCCCGTGA	MVRVLVVDDDTTVADVVVAYLERAGMTAEHVADGVDALVAARERPPDAVVLDLMLPGLDGIEVCRRLRADRPRLPVLMLTARGEEDDRITGLEVGADDYVTKPFSPRELTLRVQSVLRRAGTPADGGTRPDDGTPAGGTPATAGPGATHPAPAAPSGTLSDGDLTLDVAAHRVLRGGDELALTAREFDLLAWFLAHPGQVHDREALLREVWGWEYGDRSTVTVHVRRLREKVEADPSAPTRLVTVFGVGYRWDAREPSVQAQPGSAP	PGPT0013765_39	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668	NA	NA
AK001_01549	1020	sasA_4		Adaptive-response sensory-kinase SasA	GTGACCCCGCTGGAGGGTGTCGTCCTCTCGGCCGGGGTCGCCGCCGCCGTCGGGCTCGCCGGGGCGGCCGGGGTGCTGGCGCTGGGACGACGGCGCCCCTCGGCGGCCGCCGTGCTGGCCCCGCTCGTGGTGGTCGCCTCGGTCGCGGCCGGCGTCTACGCCAGCGCGCGGGCGATGTTCCTGTCCGAGCAGGACTCCACCACCGTGCTGTGGCTGCTGCTGGCCACGGTGCCGGTCGCGCTCGTCATCGGCCTCGCGCTCGCACGGCGCACGCACCATCTCGCCACGGAGCGGGCCGCGGCGGTCGCCGCCCGCGACCGGGACCGGGAGGTGGAGGCCCGACGCCGCGAGCTGGTGGCGTGGGTGTCCCACGACCTGCGCACCCCGCTGGCCGCCGTGCGCGCGCTGGCCGAGGCGATGGAGGACGAGGTGACCCGCCCCGCCGACGCCGCGACCGGCATCCTGGCGGAGAACCGCCGCATGAGCGACATGGTCGACGACCTGCTCGCCCTGTCCCGGCTGCAGTCGCCCGGGTTCGAGCTGACCCGCACCCCGACCGACGTCGGCGACCTCGCCTCCGACGCGCTCGCGGCCGCCGGACCGGCCGCCGAGGCCGCCGGGGTGCGCCTCACCGGGGAGGTGGCTGCCCCCGTCGTCGTACCCGTGGACGCCCGCGAGGTCGCCCGGGCGCTCGGCAACCTGCTGTCCAACGCGGTGCGGCACACCCCGGCCGGCGGCACCGTCCACGTGCGGGTGTCCACCCGCGACACCGACGGCCCCGCCGCCGTCGTCGAGGTCACCGACGGCTGCGGCGGCATCCCCGCCGACGACCTGCCGCGCGTGTTCGAGGCCGGCTGGCGCGGCACCGCCGCCCGCACCCCCGGCTCGGGCGGGGCGGGCATCGGGCTGTCCATCGTGCGGTCGGTCGCCGCGACGCACGGCGGCGGCGTCGAGGTCCACAACGTCGAGCTGGCCGACGGCGGAGGCGGCTGCCGCTTCACCCTCACCCTGCCGGCCTGA	MTPLEGVVLSAGVAAAVGLAGAAGVLALGRRRPSAAAVLAPLVVVASVAAGVYASARAMFLSEQDSTTVLWLLLATVPVALVIGLALARRTHHLATERAAAVAARDRDREVEARRRELVAWVSHDLRTPLAAVRALAEAMEDEVTRPADAATGILAENRRMSDMVDDLLALSRLQSPGFELTRTPTDVGDLASDALAAAGPAAEAAGVRLTGEVAAPVVVPVDAREVARALGNLLSNAVRHTPAGGTVHVRVSTRDTDGPAAVVEVTDGCGGIPADDLPRVFEAGWRGTAARTPGSGGAGIGLSIVRSVAATHGGGVEVHNVELADGGGGCRFTLTLPA				NA	NA	NA	NA	NA
AK001_01550	810			hypothetical protein	ATGAGGTCACCGCTGCTGGACGACCTGAGCGGCCTGGACCCGGCACGGCACCTGCGTGCCCCGGGACACCCCGACGACCCCGCCCTGGCACGGGTGCTGGCCGCCGACCGGACCGTGCCGGACCGGTACCGCGCCCCGGTGCGGCGCTCGCGGACCGCGGTGGCCACCGGCGCCGTCGCGGGGGTCGCGGTGGCCGTGGCCGCGGGGGTCGTGGTGACGACGACGTTCGGGGGCCCCGAGGCGTACGCGTCGTGGACGCCGACCCCGCAGGTCGTCGACCCTGCCGCCGCGGTGCAGGACGCGGCCTCGTGCCCGACGGCGGCCCACGCCGTCGACGAGGACGCCGCCGACCAGGGGTCGCCGATCACCGAGATCCCGGTGGACCCGGTGCTGGCCGAGGTGCGCGGCGACTACACCTACGTGCTGCTGTCCGGGGACGGGGCGCTGGCGGAGTGCTTCGTGACGACGACGGACGGCTCCTCCCAGGTGTACTCCTCGGAGTCCGTCGGCGGTACGCCCGTCCCGCAGCCGGGACCGCGCGAGCTGGTCGTGGCGGAGTCCGGGACGGCGTCCTGGTCGGACGGTCCCAACGGGGAGGGCGCGGTGACCGCCGCGTTCGGCCGCGTCGGCGACGAGATCGAGGCGGTCACGGTCGCCACGGCCGACGGCGAGCAGGTCGCGGCGTCGGTGGACGACGGCTGGTTCGCGCTGTGGGCGCCGGGGGAGGAGACCTTCTCCGCGCTCGCGCAGGTCACCTACGCCGACGGCACGACGGAGGAGGTCCCGCTGGAGGTCAGGCCGGCAGGGTGA	MRSPLLDDLSGLDPARHLRAPGHPDDPALARVLAADRTVPDRYRAPVRRSRTAVATGAVAGVAVAVAAGVVVTTTFGGPEAYASWTPTPQVVDPAAAVQDAASCPTAAHAVDEDAADQGSPITEIPVDPVLAEVRGDYTYVLLSGDGALAECFVTTTDGSSQVYSSESVGGTPVPQPGPRELVVAESGTASWSDGPNGEGAVTAAFGRVGDEIEAVTVATADGEQVAASVDDGWFALWAPGEETFSALAQVTYADGTTEEVPLEVRPAG				NA	NA	NA	NA	NA
AK001_01551	537			hypothetical protein	GTGGACGACGCCTCGGCCCGCGAGCGCCTGACGCGCCTGTGGGTGGACCATCGCGAGCAGGTGGTGCGGTTCGTCGCGCGCCGGGCCGCGCCGGAGATCGTCGACGACGTCGTCTCGGAGACCTACCTGGTCGCCTGGCGGAGGGTGGAGGACGTGCCGACCGAAGCGCGCGCGTGGCTGTTCGGCGTCGCGCGCAAGGTCCTGTCCACCCAGGTCCGCACGCGGGGCCGCTGGCAGGCCCTCGGGGTGCGGCTGGAGCGGGAGCCGACGGCGCAGGTGCCGGGGGCGGACGACACCGCGGCCGAGCGCGCCGACCTGCGCCGCGCCTGGGACCTGCTCAGCGACGCCGACCGGGAGGTCCTGGCGCTGGTGGCCTGGGACGGACTCTCCGCGCGGGAGGCCGCCCAGGTGCTGGAGTGCCGCCCCTCCACGTTCTCGGTGCGGCTCACCCGCGCCCGCAAGCGGCTGCTGGCGTACTCCGAGGTGCGCCGCGACACCGCGACCGTGCTGCGCAGACTGCAGGAGGAGAGGCCATGA	MDDASARERLTRLWVDHREQVVRFVARRAAPEIVDDVVSETYLVAWRRVEDVPTEARAWLFGVARKVLSTQVRTRGRWQALGVRLEREPTAQVPGADDTAAERADLRRAWDLLSDADREVLALVAWDGLSAREAAQVLECRPSTFSVRLTRARKRLLAYSEVRRDTATVLRRLQEERP	PGPT0014960_10167	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_01552	780			hypothetical protein	ATGCGCACGAGACTTTCCCGGACCGTGGCTGCCGGCGTCGGCGCGACGGTGCTGGCCCTGGGGACGGGCCTGGTCGCCACGGCACCGGCGACGGCGGACATCGGCGAACCGATCGGCACGATCGGCGAGGGGTCGTCCGACGGCGAGAACCTGCCCGACGGGAACCTGCCCGGCGTGCCCGAGCCCGGCAGCGCCGCGGACGAGTGGGTCGCCTGGGCCGCCGCGGAGCGCGCCGAGGCCGAGGCCACCGACTGGGAGGCCGACTCGGCCGCCCGCGGGTGCGAGCTGGTGGAGGTCTCGATCGTCGACGAGGTCGACGCCGCCTACAACGAGGCGATGGGCGCCCCGGCCGACCTGGCCACGCACCGGGTCGAGATGGTGGAGAGCTGCGAGGGCCCGGCCGAGTCGGGCGGGATGACGCTCGAGACCGGGGACGGTACGGCGAGCACGACCGCGATCGGGTCCGGCAGCGACTGCGACAGCACCAAGGGCCCGGGCACCATCTGTATCTACAAGTCCAGCGGGCGGATCTACTCCTCGTGGAAGTACCGCGGGTCGGGCAGCGTCTCGGGGTTCCTGCGGATCTACCAGATCTCGACGTCGGCCTCGAGCTGCTACCGCGGCAGCACGTGGCTCACGGGCCCGTCGCGGACGTGGAGCAGCGGCATGACGCGCAGCATCTCCAAGACGCGCACGACGTACTCGGGCTACTCGGCGCACATCTGGAAGAAGGTGTGGCACGGGCACACCGACTGGGGCAGCACCTGCTCGAAGCTCTGA	MRTRLSRTVAAGVGATVLALGTGLVATAPATADIGEPIGTIGEGSSDGENLPDGNLPGVPEPGSAADEWVAWAAAERAEAEATDWEADSAARGCELVEVSIVDEVDAAYNEAMGAPADLATHRVEMVESCEGPAESGGMTLETGDGTASTTAIGSGSDCDSTKGPGTICIYKSSGRIYSSWKYRGSGSVSGFLRIYQISTSASSCYRGSTWLTGPSRTWSSGMTRSISKTRTTYSGYSAHIWKKVWHGHTDWGSTCSKL				NA	NA	NA	NA	NA
AK001_01553	822	tcyC_2	COG1126	L-cystine import ATP-binding protein TcyC	ATGAGCGCGACGACCGCTTCGCCGTCGGACGCGACACCGTCGGACGCGACGCCGATGGTCGAGGCACGCGGCGTCCACAAGGTGTTCGGCCAGGGTGCCGACGCGCTGCACGTGCTGCGGGGGGTCGACCTCGTGGTGCCGCCGGGGTCGGTGACCGTGGTGCTCGGCCCGTCGGGCTCCGGCAAGTCCACCCTGCTGCGCTGCCTCAACGAGCTGGAGCAGATCACCGCCGGTTCCGTGCACGTCGACGGCGAGCTGCTCGGCTACCGCCACGACGCCCAGGGCGTGCTGCACCGGCTGCACCCCCACCGCATCGCCGCGCAGCGCTCGCGGATCGGGATGGTGTTCCAGCGGTTCCACCTGTTCGGGCACATGACCGCCCTGGAGAACGTGGCCGAGGCGCCGGTGCAGGTCCGCGGGCTGTCGAAGGCCGCGGCGCGCGAGCGGGCGGCCGAGCTGCTCGATCGGGTGGGGCTGTCCGACCGGGTCGACCACTACCCGGCCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTCGCCATCGCGCGGGCGCTGGCGATGGAGCCCGAGCTGATGCTCTTCGACGAGCCCACCTCGGCGCTCGACCCCGAGCTCGTCGGCGAGGTGCTGGCCGTCATGCAGGACCTCGCCCGGTCCGGGATGACGATGGTCGTCGTGACGCACGAGATCGGGTTCGCCCGCGAGGTCGCCGACCACGTCGTCTTCATGGACGACGGCGTCGTGGTCGAGCAGGGGCCGCCGGGTGCCGTGCTGGAGAACCCGACCGAGCCGCGGCTGCAGGAGTTCCTCGCCCACGTCCTGTGA	MSATTASPSDATPSDATPMVEARGVHKVFGQGADALHVLRGVDLVVPPGSVTVVLGPSGSGKSTLLRCLNELEQITAGSVHVDGELLGYRHDAQGVLHRLHPHRIAAQRSRIGMVFQRFHLFGHMTALENVAEAPVQVRGLSKAAARERAAELLDRVGLSDRVDHYPAQLSGGQQQRVAIARALAMEPELMLFDEPTSALDPELVGEVLAVMQDLARSGMTMVVVTHEIGFAREVADHVVFMDDGVVVEQGPPGAVLENPTEPRLQEFLAHVL	PGPT0020790_934	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028	NA	NA
AK001_01554	1041			hypothetical protein	ATGACCACGCACGTCACCGGCTCCCCGCACACCGGGGCGCCGTCGTCGGACCTGCCCGCGCCCCTGCGCGCCCGGCCCGTCCCGCGTCCCGGGCGCTGGCTGTCGGCCGCCGTGCTGCTCGTGCTCGCCGCGATGGTGGTGCACGCGCTGGTCACCAACCCGAACTTCCGCTGGGACACCGTCTGGCTGTACCTGCGCGACGTCAACGTCGTGCGCGGGGTGGGCTGGACGCTCGTGCTGACCTTCGGCTCCATGGCGATCGCCGTCGTGCTCGCGGTGCTGCTCGCGATCATGCGGCGCAGCGACAACCCGGTGATGCGCGCGGTCTCCTGGGCCTACATCTGGTTCTTCCGCGGCACCCCGATCTACACCCAGCTCGTGTTCTGGGGACTGGTCTCGGTGCTGTACCCGCGCCTCAGCCTCGGCATCCCGTTCGGGCCCGAGTTCTTCGTGTTCGACACCCGCGACGTCATCACCGCCTTCTGGGCGGCGCTGATCGGGCTGGCCCTCAACGAGGCCGCCTACCTCGCCGAGATCGTGCGCGCGGGGCTCGGCTCGGTCGACCCCGGCCAGGCCGAGGCGGCCCGCGCCCTGGGGATGAAGGAGCCGCGGATCCTGCGTCGCATCGTGCTGCCGCAGGCGATGCGCGTCATCGTGCCGCCCACCGGCAACGAGACGATCTCCATGCTCAAGACGACGTCCCTGGTGGTCGCCGTGCCGTTCACGCTGGAGATCACCTACGCCACGTCCGCGATCGGCACCCGCACCTTCCAGCCCATCCCGCTGCTCATCGTGGCAGCGCTGTGGTACCTGCTCATCACGTCGGTGCTCATGGTCGGCCAGTACTACGTCGAGCGGTACTACGGGCGCGGGTTCGACGGCGGCGCCACCGGACCGCGGCGCGCTGCCGGACGGCGCGGCCCCGGCAGCGCCGGCGGCTCCGGCAGCTCCGGCCGGCGTGCCGGGCGACTGAGCCGGCAGGCGGCGATCCGCGGTGCCGGCACCACGAAGGACGACCCGTTCGCGGAGGTGACCCCATGA	MTTHVTGSPHTGAPSSDLPAPLRARPVPRPGRWLSAAVLLVLAAMVVHALVTNPNFRWDTVWLYLRDVNVVRGVGWTLVLTFGSMAIAVVLAVLLAIMRRSDNPVMRAVSWAYIWFFRGTPIYTQLVFWGLVSVLYPRLSLGIPFGPEFFVFDTRDVITAFWAALIGLALNEAAYLAEIVRAGLGSVDPGQAEAARALGMKEPRILRRIVLPQAMRVIVPPTGNETISMLKTTSLVVAVPFTLEITYATSAIGTRTFQPIPLLIVAALWYLLITSVLMVGQYYVERYYGRGFDGGATGPRRAAGRRGPGSAGGSGSSGRRAGRLSRQAAIRGAGTTKDDPFAEVTP	PGPT0020795_780	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029	NA	NA
AK001_01555	936			hypothetical protein	ATGCGCGCCCGTACCGTCCTGCCCCTGTCCGCCGTCGCCGTCGTCGCCCTGCTCGCCGGCTGCACCACCGCCTCGGAGGACCTCGGCTCCGCCACCGGCGACGCCGCGTCGGACGGCTCCTCGGCCGCGCCGGCCGCGGCGTTCGACGCCTCGACGGTCGAGGCCGACGACGAGCTGGCCGCGCTGGTCCCCGCCGCGGTCGGCGAGGACGGCGTGCTCACCGTCGGCGCCGAGCTGTCCTACGCCCCGGCCGAGTTCCTCGCGTCCGACGGCGTCACCCCGGTCGGGTTCGACGTCGACATCGCCCACGCGGTCGCCGCCACCCTCGGCCTGGAGGCCGAGATCGAGCCGTCCACGTTCGACGCGATCATCCCGGCCGTCGGCACCAAGTACGACGTCGGCATCTCCGGCTTCACCATCGACGCCGAGCGGCTGCAGGTCGCCCACATGGTCAGCTACTTCGACGCCGGCTCCCAGCTCGCCGTCGCCACCGGCAACCCGGACGGCGTGGACCCCGCCGACCTGTGCGGCGTCACCGTGGGCGTCCAGACCGGCACCGTCCAGCAGGGCGCGCTCGAGGACGTCTCGGCGAGCTGCGAGGCCGACGGCGCGGAGCCCGTCGAGGTGCTGCCCTACGACTCCCAGGCCGACGTCACCACCAACCTCGTCGGCGGCAAGGTCCAGGCCATGTACGCCGACTCCCCGGTGACGGCCTACGCCGTGGAGCAGACCGAGGGCTCGATCGAGACGCTCGGCGAGATCGCCGACGCCGCGCCGTACGGGGTCGTCGTGGCCCAGGACGACGACGCGCTCGCCGAGGCGGTCCAGGGCGCGCTGCAGCAGCTCATGGACGACGGCACGCTCACCGAGATCCTCGCCGGCTGGGGCAACGCCGAGGGCGCGCTGGCCACCGCTGAGCTCGACCCCGGCGTCTGA	MRARTVLPLSAVAVVALLAGCTTASEDLGSATGDAASDGSSAAPAAAFDASTVEADDELAALVPAAVGEDGVLTVGAELSYAPAEFLASDGVTPVGFDVDIAHAVAATLGLEAEIEPSTFDAIIPAVGTKYDVGISGFTIDAERLQVAHMVSYFDAGSQLAVATGNPDGVDPADLCGVTVGVQTGTVQQGALEDVSASCEADGAEPVEVLPYDSQADVTTNLVGGKVQAMYADSPVTAYAVEQTEGSIETLGEIADAAPYGVVVAQDDDALAEAVQGALQQLMDDGTLTEILAGWGNAEGALATAELDPGV	PGPT0020800_2581	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030	NA	NA
AK001_01556	168			hypothetical protein	ATGAGCACCACCGCGATCATCATGATGGCGGTCGCCCTGATCGTCGTCTGGGGCGGCCTGATCCTCGCGATCGTGGCCCTGCGCGCCCGGCCGGAGCGGACGGAGTTCCCGCCCGGCGGCGAGGACGACCACCGCGAGGACATGGGGATCATCGAGCACGACACGTAG	MSTTAIIMMAVALIVVWGGLILAIVALRARPERTEFPPGGEDDHREDMGIIEHDT				NA	NA	NA	NA	NA
AK001_01557	1575			hypothetical protein	GTGAGTGCACAACACAAGTCCGCCCCGCGGGAGCAGTTCACCGGGCAGGTGGGGTTCATCCTGTCGGCGATCGGCTCGGCCGTGGGCCTCGGCAACATCTGGCGGTTCCCCGGCGTGGCCTACGAGAACGGTGGCGGCGCGTTCCTCGTGCCCTACCTCATCGCGCTGCTGACGGCGGGCATCCCGATCCTCTTCCTCGACTACGCGATCGGCCACCGGTTCCGCGGCGGCGCCCCGCAGGCGTTCCGCCGGATCAAGGGCTGGCTGGAGACCCTGGGCTGGTTCCAGGTGATGATCTGCATCGTCATCGCCGTCTACTACGCCGCGGTCGTGGCGTGGGCGGCGAGCTTCTTCGTCTACTCCTTCGGCCTCGACTGGGGCGACGACCCGCAGGGCTTCTTCTTCGGCGAGCACCTGCAGCTCGCCGACGTCGGCGGTGCCGACCCGTGGCTCACCTTCGACTTCGTGGCCGCCGTGCTGATCCCCCTCGTGCTGGTGTGGGTCGTCGTCATCGCGGTGCTCGCCGCCGGCGTGGTCAAGGGCGTCCAGCGCGCCAACATCGTCTTCATCCCGCTGCTGCTGGTGGCGTTCGGCGCCCTCGTGGTCCGTGCCCTCACGCTCGACGGGGCCGCGGACGGGCTCAACGCGCTGTTCACCCCGCAGTGGGACGCCCTCGGCGACCCGGACGTGTGGATCGCCGCCTACGGCCAGATCTTCTTCTCGCTGTCCGTGGCGTTCGGCATCATGATCACCTACGCCTCGTACCGGCGCCGTCGGTCGAACATGACGGGCCCCGGTCTGGTGGTGGCGTTCTCCAACTCCGGCTTCGAGATGCTGGCCGGTCTCGGCGTGTTCTCCGCCCTCGGGTTCCTCGCGCTGGAGCAGGGGGTCGGCGTCGGTGAGCTCGGGATCGCCGGCGTCGGGCTCGCGTTCGTCACGTTCCCGGCGATCGTGTCCGAGATGCCGGCCGGCGCCCTGTTCGGCGCGCTCTTCTTCGGCTCGCTGGTGATGGCCGGGTTCACGTCGCTGGTCTCGATCCTCCAGGTCGTCTCGGCGGCCCTGCAGGAGAAGTTCGCCCTGTCCCGGACCGCCGCCGTGCTGTGGCTCGGCGGTGTGCTGGGCGTGGTGTCCGTGCTGGGCTTCAGCACCACGACGGGCCTGATCCTGCTCGACACCGTCGACTACTGGGTCAACAACATGGGCATCGTCGCCTCGGCGATCCTCATGTGCGTGCTCGTCGTGTGGATCTACCGGCGGGCGCCCGAGCTGCGCTACCACCTCAACGCCGTCTCGACGACGCAGCTCGGCGCGTGGTGGTACGCCTGCGTCGGCGCCATCATCCCGGTGATGCTCGGGATCATGCTGGTCCAGACGATCCTCATCCGCATCGACGAGCCCTACGGCGGATACGATGAGACGTACCTGCTCTATGCAGGCTGGGGCACCGTGGCGCTGCTGGTGGTCGGCTCGCTCGTGTTCTGGGCGTTCCGCTGGCGCGGACCGGGTCTGTACCGCGCCTGGCCGCCGTACCCGCCGGTCGAGGACCCCGCCGTGCGGAAGGAGGCGTCGCGATGA	MSAQHKSAPREQFTGQVGFILSAIGSAVGLGNIWRFPGVAYENGGGAFLVPYLIALLTAGIPILFLDYAIGHRFRGGAPQAFRRIKGWLETLGWFQVMICIVIAVYYAAVVAWAASFFVYSFGLDWGDDPQGFFFGEHLQLADVGGADPWLTFDFVAAVLIPLVLVWVVVIAVLAAGVVKGVQRANIVFIPLLLVAFGALVVRALTLDGAADGLNALFTPQWDALGDPDVWIAAYGQIFFSLSVAFGIMITYASYRRRRSNMTGPGLVVAFSNSGFEMLAGLGVFSALGFLALEQGVGVGELGIAGVGLAFVTFPAIVSEMPAGALFGALFFGSLVMAGFTSLVSILQVVSAALQEKFALSRTAAVLWLGGVLGVVSVLGFSTTTGLILLDTVDYWVNNMGIVASAILMCVLVVWIYRRAPELRYHLNAVSTTQLGAWWYACVGAIIPVMLGIMLVQTILIRIDEPYGGYDETYLLYAGWGTVALLVVGSLVFWAFRWRGPGLYRAWPPYPPVEDPAVRKEASR	PGPT0013950_245	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308	NA	NA
AK001_01558	1254	xyoA	COG0277	putative xylitol oxidase	ATGCGGAACTGGGCCGGGAACCTCGCCTACGCCGCGCACGACCTCGTGCGCCCGACATCCCTGGAGGAGCTCGCTGACGTACTGGCGGTCGGCGGGCCCGTGCGCGCGCTGGGGTCGCGCCACTCGTTCAACGACCTGGCCGACACGACCGGGACGCACGTGCAGGTCGACGGGCTGGACGACGGCCGTCCGGCCGTGGACCTGGACACCGGTACCGGCGTCGTCTCCGTCAACGCGGGACTGCGGTACGGCGAGCTGTCGCGCGCCCTGGAGGTCGAGGGGCGCGCGGTGACCCAGCTGGCCTCCCTGCCGCACATCTCCGTGGCCGGGGCGGTCGCCACGGCCACGCACGGGTCCGGGGACGCCAACCGGTCGCTGGCGAGCGCCGTCGTGGGGCTCGAGCTGATGACCACCGCCGGGGAGCTGCGCCGGATCACCCGGGACACCGACCCGGAGGTCTTCGCCGGCACGGTCGTGTCCCTCGGTGCGCTCGGCATCGTCACGCGCCTGGAGCTCGCCACGGTGCCCGCGTTCCAGGTGCGCCAGGACGTCGCCCTCGACCTGCCGTGGCAGACGGTGCTCGAGCACTTCGACGCCGTGACCGGGTCGGCCTACTCCGTCAGCCTCTTCACGAGCTGGGACGAGCCCACCGTCCGGGCGGCCTGGTTCAAGTCCGTCGTGGCCGACGGCGCGGGCCGTCGCCCCGAGCCCGTGCCCGGGCTGCGGTGGGCCGACGAGGACGTGCACCCGGTCCCGGGCGTCGACCCGGCCGCCTGCACCGCGCAGCACGGCGTACCGGGGCCCTCGCACGAGCGGCTCAGCCACTTCCGGCTCGACCACACGCCGTCGGCCGGGGAGGAGCTGCAGAGCGAGTACCTGCTGCCGCGGCGGTACGCCGCCGAGGCGATCGAGGCGATGCGCGCCCTCGGGCCCCGGGTCGGGCCGCTGCTGCTGACCGGGGAGATCCGCACCGTCGCCGCCGACGATCTCTGGCTCAGCCCCTTCGGCGAGGACTCGATCGGCCTGCACTTCACCTGGCACCCCCGGGGTGCCGAGGTCGCGGGGCTGCTGCCGGTGATCGAGGACGCCCTGGCGCCGTTCGGCGCCCGGCCGCACTGGGGCAAGGTGTTCGCCGCGGACCCCGTCGCCCTGCGCGCGGCGTACCCGCGGTTCGAGGACTTCCGCGCGCTGGCCGACCGGTTCGACCCGCAGGGCCGGCTGCGCGGCGGGTACGTCGCGCGACTGCTCGGCTGA	MRNWAGNLAYAAHDLVRPTSLEELADVLAVGGPVRALGSRHSFNDLADTTGTHVQVDGLDDGRPAVDLDTGTGVVSVNAGLRYGELSRALEVEGRAVTQLASLPHISVAGAVATATHGSGDANRSLASAVVGLELMTTAGELRRITRDTDPEVFAGTVVSLGALGIVTRLELATVPAFQVRQDVALDLPWQTVLEHFDAVTGSAYSVSLFTSWDEPTVRAAWFKSVVADGAGRRPEPVPGLRWADEDVHPVPGVDPAACTAQHGVPGPSHERLSHFRLDHTPSAGEELQSEYLLPRRYAAEAIEAMRALGPRVGPLLLTGEIRTVAADDLWLSPFGEDSIGLHFTWHPRGAEVAGLLPVIEDALAPFGARPHWGKVFAADPVALRAAYPRFEDFRALADRFDPQGRLRGGYVARLLG				NA	NA	NA	NA	NA
AK001_01559	1536	abf2	COG3534	Intracellular exo-alpha-L-arabinofuranosidase 2	ATGCCGCAGGACCAGTCCACCGCCATCATCGACCTCGACGTCCCGGGCCCGCGCATCTCCCGGCACGTCTACGGCCACTTCGCCGAGCACCTCGGCCGCTGCATCTACGACGGCTTCTACGTCGGGGAGGACGCCGACGTCCCGCACGTCCGGGGGATCCGGACCGACGTCGTCGAGGCGCTGCGGGCCCTGCAGATCCCCAACCTGCGGTGGCCCGGCGGCTGCTTCGCCGACGACTACCACTGGCGCGACGGCATCGGCCCGCGCGACCAGCGTCCCCGCATGGTCAACTCCCACTGGGGCGACGTCGTCGAGGACAACTCGTTCGGCACGCACGAGTTCATGGACCTGTGCGAGCTGCTCGGTGCCGACGCCTACATCAGCGGCAACGTCGGGTCGGGATCCGTCGCCGAGATGAGCGAGTGGATCGAGTACCTCACCCGCGCCGACGACTCGCCGATGGCGGCCCTGCGCCGCGAGAACGGGCGCGACGAGCCGTGGAAGGTGCCGTTCTTCGGCATCGGCAACGAGGCCTGGGGCTGCGGCGGCAACCTGCGGGTCGAGCAGTTCGCCTCGCTGGCCCGCCAGTACTCCACCTACGTGCGCAACCACGGCGAGAACACGACGTACCGGATCGCCGCGGGCGCCTCCGACGCCGACCTGCACTGGACCGAGGTCCTCATGCGGTCGTTCGACGCCCTGGACGACCCCGCGGACGCGGACAAGCCCGGCGACCCGTTCCAGGCGATCTCGCTGCACTACTACACGATGACCGGGCCGTGGCAGGACAAGGGTAGCGCGACCGAGTTCAGCGAGGACGAGTGGTACCTCGCCCTGCAGCGCGCCGCCTTCATGGAGCGCCTGCTCACCCGCCACGGCCAGGTGATGGACCGCTACGACCCGCACCGGCGCATCGGGCTGGTCGTGGACGAGTGGGGCACCTGGTGGAACGTGGAGCCGGGGACCAACCCCGGGTTCCTGTACCAGCAGAACACCCTGCGCGACGCGCTGGTCGCGTCGGTGCACTTCGACGCCTTCCACCGGCACGCCGACCGTGTGGTGATGACCAACATCGCCCAGACGGTCAACGTGCTGCAGGCGATGCTGCTCACCGACCCCGAGACGGGCGCCCTCGTGCGGACCCCGAGCTACCACGTCTTCGCGATGAACACCCCGCACCACGACGCGGACTCGCTCGCCGTCCACCTGCAGGGGGTGCCCACGCGGACGACGGACGGCGCGGAGCTGCCGCTGGTCTCGGCGTCGGCCTCGGTCTCGGGGGACCGTGCAACCGTGTCGCTGACCAACCTGGACGCCGAGGCCGAGCGCACGATCGTGCTCGACCTGCGCGGTCGTGAGGTCACGGGGCACGAGGGTCGGGTCCTGACCGCGCCGGAGCTGGCCACGCACAACAGCCCGGACGCGCCCGACGCCGTCGCCCCGGTGGCCCTGGAGTCGGTCCGCCCGCACGAGCGCGGGCTCGAGGTGACGCTCCCGGCGCACTCCTACGCCACGGTGTCGCTCACGCTCGCCTGA	MPQDQSTAIIDLDVPGPRISRHVYGHFAEHLGRCIYDGFYVGEDADVPHVRGIRTDVVEALRALQIPNLRWPGGCFADDYHWRDGIGPRDQRPRMVNSHWGDVVEDNSFGTHEFMDLCELLGADAYISGNVGSGSVAEMSEWIEYLTRADDSPMAALRRENGRDEPWKVPFFGIGNEAWGCGGNLRVEQFASLARQYSTYVRNHGENTTYRIAAGASDADLHWTEVLMRSFDALDDPADADKPGDPFQAISLHYYTMTGPWQDKGSATEFSEDEWYLALQRAAFMERLLTRHGQVMDRYDPHRRIGLVVDEWGTWWNVEPGTNPGFLYQQNTLRDALVASVHFDAFHRHADRVVMTNIAQTVNVLQAMLLTDPETGALVRTPSYHVFAMNTPHHDADSLAVHLQGVPTRTTDGAELPLVSASASVSGDRATVSLTNLDAEAERTIVLDLRGREVTGHEGRVLTAPELATHNSPDAPDAVAPVALESVRPHERGLEVTLPAHSYATVSLTLA	PGPT0018655_1126	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209	NA	NA
AK001_01560	825	melC_2	COG0395	Melibiose/raffinose/stachyose import permease protein MelC	ATGACCACGGCCCTCTGGCGGCGCACGCTGCTGAGCATCGGGATGATCGCTCTCGCGCTGATCATCGGCGTGCCCCTGTACTACATCGTCATCAACACGTTCAAGACCCAGGCCGACATGGTGTCCTCGCCGCTCGGTCTGCCGGAGACCTGGTCGTTCGCGAACTGGTCGTCCGCCCTGGGCGACATGTCGATCTACCAGGCCTTCGGCAACACCCTGTACGTGACGGTCCTGGCGGTGCTGGCGCAGCTCCTCGTGGGGGCGATGGCCGCGTACGCCATGATCATCGCGCGCAACCGGACGACCAGGATCCTCGGCAGCCTGCTGCTCGTCGGGTTCATCATCCCGCCGCAGTCCACGATGATCCCGCTCTACCGGACCCTCGTCGGCTTCGAGCTGGTCGACAGCCTGAACGGCCTGGTCATCATGTACATGGGCGGGGCGATCTTCTGCTTCTTCCTCATCCAGGGCTACATGCGCACCCTGCCGTACGAGGTGATCGAGGCCGCGCGGATCGACGGGGCCGGGACCAACCAGATCTTCTGGCGGATCGTCCTGCCCCTCATCAAGCCGATCCTGGTGACCGTGGGCGTGTTCCAGACCATGTGGGTCTGGAACGACTTCCTCCTGCCGACGGTCTTCCTGTCCTCGCCGCAGAAGGAGACCATCGTGCTCCAGGTGTACAGCGCCGTCTCGGAGTTCACGACCGACTGGCCGGCCTTCATGACGATCACGGTGATCGCCCTGATCCCGATGGTGATCTTCTTCGTCTTCACCCAGCGACACATCGTCAGCGGACTGCTCGCGGGAAGCGTCAAGGGCTGA	MTTALWRRTLLSIGMIALALIIGVPLYYIVINTFKTQADMVSSPLGLPETWSFANWSSALGDMSIYQAFGNTLYVTVLAVLAQLLVGAMAAYAMIIARNRTTRILGSLLLVGFIIPPQSTMIPLYRTLVGFELVDSLNGLVIMYMGGAIFCFFLIQGYMRTLPYEVIEAARIDGAGTNQIFWRIVLPLIKPILVTVGVFQTMWVWNDFLLPTVFLSSPQKETIVLQVYSAVSEFTTDWPAFMTITVIALIPMVIFFVFTQRHIVSGLLAGSVKG	PGPT0016340_2106	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_01561	960	melD_6	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGACGACACTGACGACTCCGACGTCGAGCGGCGCGCCCGCGCCCACCGCCAGGCAGCGCCGACGCCGATCCGTCGAGGGCGGCTGGAAGCAGATCACGATCAACAGGGCGTTCCTGATCCCTGCGATCGTCGTCTTCGTCTTCCTGTTCGTGGTCCCGCTGCTCCAGGGCCTGTACTGGAGCTTCACGGACTTCACCGGCTACAGCCCCGAGGCGAACTTCATCGGCTGGGACAACTACGTCCAGATCCTCAACGACCCCTCGATGCTCTCGGGGCTGACCTTCACGCTGCTGTTCGCCGTCGGCACCACCCTGCTGGTCACCTGCCTGGCCATCCCCCTCGCGGTGCAGCTCAACAAGGCCTTCGTCGGGCGCAACGTCGTGCGCTCGCTCTGGTTCTTCCCGGCGGTGCCCAGCATGGCCATCCTGGGCCTGGTCTGGAGCTACATCCTGTCCCCGCTGCCGTCCGGGGTGCTCAACACCCTGCTGTCCAACTGGTTCGGCATCGAGGCGGTCTCGTGGCTGTCGGACAACACCCTGGCGCGGTTCTCGGTGATCATGGTCGGCGTGTGGGCGCAGACCGGCTGGCACGCCGTGCTCTACCTCGCCTACCTCCAGTCGATCCCGCAGGAGTACTACGAGGTCGCGAAGATCGACGGTGCGTCGCCGCGCCAGCAGTTCTTCGCCATCACCCTGCCGCTGCTGATGCCGGCGATGGTGGTCAGCTCCTTCCTGCTGCTCACCAACGGTCTGAAGGTGTTCGACCTGCCGTACACGCTGACCAACGGCGGACCCGGGTTCGCGACGTACACCATCACCCAGTCGCTCGTCGTCACCGGCGTCGGCCAGGGGGAGTACGGGCTGTCGTCGGCGCTCGCCGTGATGTTCACCGTGGCGGTCGGCGTCATCGGGTTCACCCAGCTCCGCATCACGAGCCGCATCGGGAGGCGATTCGCATGA	MTTLTTPTSSGAPAPTARQRRRRSVEGGWKQITINRAFLIPAIVVFVFLFVVPLLQGLYWSFTDFTGYSPEANFIGWDNYVQILNDPSMLSGLTFTLLFAVGTTLLVTCLAIPLAVQLNKAFVGRNVVRSLWFFPAVPSMAILGLVWSYILSPLPSGVLNTLLSNWFGIEAVSWLSDNTLARFSVIMVGVWAQTGWHAVLYLAYLQSIPQEYYEVAKIDGASPRQQFFAITLPLLMPAMVVSSFLLLTNGLKVFDLPYTLTNGGPGFATYTITQSLVVTGVGQGEYGLSSALAVMFTVAVGVIGFTQLRITSRIGRRFA	PGPT0016335_446	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_01562	1245			hypothetical protein	ATGAAGTCACCCATGCGGATGGTGGTCGCAGGTATCGCCGTGACGGCGCTCGCAGGCTCGCTCGGTGCCTGCAGCGGCGACTCCGGCGAGGCCGACGGCACCACCACGGTCTCGTTCCTCTCCTGGACCGGCCAGGAGCAGATGGAGCCGATGATCGAGGCGTTCGAGGCGGAGAACCCCGACGTCACGATCGAAGCCTCCTACTCGCCCCCGGTGGCCGAGTACATCCAGACCCTCCAGACGCGGGTGCTGTCCGGCACCGCGCCGGACGTGTTCGTCGTGGCGGCCGAGAACAAGACCAACCTCATCGAGGCCGGCGCCGTGGTGGACCTGAGCGGCGAGCCCTTCATGGAGGGCATCCAGCAGTTCAACCTCGACACCTACGGCAGGGACGGAGCCGAGTACGGTCTGTCCCTGTCCTCCTGGGCGGCGGGCTACGCCTACAACAAGGAGATGCTCGCCGACGTCGGGTACGACGGCATCCCCGAGACCTGGGACGAGTTCCTCGTCATGCTCCAGGACCTCCAGGACGCCGGCTACACGCCGTTCCTCGAGAGCGTCGACCAGATGCCGACCACCGTCTCGGCGATGCTCGGCGCGAAGACCTCGCAGAGCGACCCGAGCGTGGACGACCAGATCTTCGACGGCTCGTCGACCTTCGCGGAGCAGTGGACGCCCATCCTCGAGGAGTACAACCGCCTCTACACCGAGGGGCTCGTCTCCGCGGACGTCGTCGCGCTCGACGGCGACCAGGTGCGCGACGAGTTCGCCAACGAGCGGGTCGCCATCATCAACGCCGGTCCGTGGATCATCAACGCCGTCCAGGAGGCCAACCCGGAGCTGGACTGGGAGTTCGGTCAGGTCCCCGGGCTGCCCGACGGGATGCCGTTCCAGGCGGGAGCCGCGGCCCCCGGCTACGCGATCAGCGCGAGCTCGGACGAGGACACGCAGGAGGCGGCCAAGACGTTCCTGACCTGGCTCGCCTCCGAGCAGGGCGTGGAGATGTTCCACGAGGCGACGAACGACGTGACGGTGACCGAGAACTTCACCCCGGAGGTCGACCCGGTCTTCGAGCCCATGGTGGAGCCGATCCGGGACGGCGACCTCTACCTGCCGATGATCGCCTGGCAGCGTGACGAGGACGTCCTGAACGTCGAGGCCGTGGCGCAGGTCCAGCGCATGATCCAGGGGCAGATCGGCCCCGAGGACGTCGCGGCTGCGCTCGACGCGAAGCTCTCGAGCTGA	MKSPMRMVVAGIAVTALAGSLGACSGDSGEADGTTTVSFLSWTGQEQMEPMIEAFEAENPDVTIEASYSPPVAEYIQTLQTRVLSGTAPDVFVVAAENKTNLIEAGAVVDLSGEPFMEGIQQFNLDTYGRDGAEYGLSLSSWAAGYAYNKEMLADVGYDGIPETWDEFLVMLQDLQDAGYTPFLESVDQMPTTVSAMLGAKTSQSDPSVDDQIFDGSSTFAEQWTPILEEYNRLYTEGLVSADVVALDGDQVRDEFANERVAIINAGPWIINAVQEANPELDWEFGQVPGLPDGMPFQAGAAAPGYAISASSDEDTQEAAKTFLTWLASEQGVEMFHEATNDVTVTENFTPEVDPVFEPMVEPIRDGDLYLPMIAWQRDEDVLNVEAVAQVQRMIQGQIGPEDVAAALDAKLSS	PGPT0016330_486	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117	NA	NA
AK001_01563	1023	ccpA_2	COG1609	Catabolite control protein A	ATGCCCACGATGAGCGACGTCGCCCGTGCCGCCGGCGTCTCCGTCATGACCGTCTCGAACGTGCTGAACGGCAAGCCGCGGGTGGGAGCCGAGACGCGTCTGCGCGTGCTGGAGGTGGTCGACGAGCTGGGCTACGAGATCAACCTCAGCGCGCGGCGGCTGCGCTCAGGACGCACGGGGGCGATCGGGCTCGTCGTCCCGCGGTTCGACCACCCGTACTTCGGCGATCTCGCCGCGCGGCTGTCGTCGGCGCTCGCGTCCACAGGACGCCACCTCGCCGTCGAGCAGAGCGACGCGAGCAAGGAGGGCGAGCTCGCCGCGCTCTCGCTCGCGCGCCTGCAGACCTACGACGGCGTCATCCTCAGCGTCGTCGGCCTGGGCTACGACGACATCGACCGGATCCGCCCGTCGTTCCCGGTGGTGCTCCTGGGCGAGCAGCACATGCCGCCGCGCTTCGACCAGATCCACATCGACAACATCACGGGCGCCCGGCTGGCGACGGAGCACCTGCTCGACCGCGGCGCACGACGGATCGTCATGGTCGGCGGCGGCGACGAGGGCCACGCCTCGATGGTCACGCTCAGGACGCGGGGCTGGGAGCTCGCGCAGCAGGAGCGGGGCGTACCCGTGGACGACGCCGCGGTCCTCCCCCTCGACCGCTTCGAGATGTCGAGCGCCCGGATCGCGGTGCGGGCGCTCCTCGCCCGCGACCCGTCGATCGACGCGTTCTTCGCCATCACGGACCAGGTCGCGATGGGCGTGCTGGCCGGCATCCACGACGCGGGCCTCCGCGTCCCGGACGACGTCCAGGTCGTCGGCTTCGACAACCTCGCGCTCGGGGAGTTCACGATGCCGGGCCTGACGACGATCGACCCCAGCAACGCCTGGATCGTCGAGAACGCGGTGGCAGCGCTCGACCGTCGGATCGCCGACCGGGACAGCGCGCCCCAGCATCTCGTCAGCCCGGTGCACCTGGTCGAGCGGGGGACGTCGCGCGCATCGCGGGCGGCCCCGTCGCCGTGA	MPTMSDVARAAGVSVMTVSNVLNGKPRVGAETRLRVLEVVDELGYEINLSARRLRSGRTGAIGLVVPRFDHPYFGDLAARLSSALASTGRHLAVEQSDASKEGELAALSLARLQTYDGVILSVVGLGYDDIDRIRPSFPVVLLGEQHMPPRFDQIHIDNITGARLATEHLLDRGARRIVMVGGGDEGHASMVTLRTRGWELAQQERGVPVDDAAVLPLDRFEMSSARIAVRALLARDPSIDAFFAITDQVAMGVLAGIHDAGLRVPDDVQVVGFDNLALGEFTMPGLTTIDPSNAWIVENAVAALDRRIADRDSAPQHLVSPVHLVERGTSRASRAAPSP	PGPT0021075_317	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499	NA	NA
AK001_01564	372			hypothetical protein	ATGGATATCGACAGCGCGACGGATCTGGACCCTGACGCAGGGTCCGGTATCTCCTGCCAGCACGATGAGAACGGGACCCTGCTGACGCTGTGGGGCGAGGTCGACGCTGCCCTGCGCGAGTCGGCCAGCGACGCCATGGCCTCGGTGGCGGCCCGGCCCGGGGCGGCCCCGATCGTGCTCGACGCCCGCGACGTGAGCTTCATCGACTCCTCGGGCGTCGCCTTCGTCCTGCAGATCTACATGTTCGGCCAGGAGATGGGTGCTCCGGTCCAGCTCCTCGCACCGTCGGAGGCCGTGACCGAGGTGCTCGAGATGGTCGGGATGGCGGGGCGGATCCCCGTGATCCCCGAGGAGCAGCCCGCCGGCACCTGA	MDIDSATDLDPDAGSGISCQHDENGTLLTLWGEVDAALRESASDAMASVAARPGAAPIVLDARDVSFIDSSGVAFVLQIYMFGQEMGAPVQLLAPSEAVTEVLEMVGMAGRIPVIPEEQPAGT	PGPT0024655_110	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE-STAGE_II_SPORULATION,PGPT0024655-spoIIAA-K06378	NA	NA
AK001_01565	498			hypothetical protein	GTGACCGGGGGCGAGCCGGAGCCGGAACGCCGCGCGCGGGAAGCCCTCGAGGCGTCCGGCGCGGAGTTCGTCATCACCCGCCACGGACGCGTGGGTTCCCTGGCCGAGGCGGCGGCCGCGCGCGGCGTCGCACCGGACCGCCTGCTCAAGACGATCGTGGTGCGCCGGGCCGCCGACGACTACCTCTTCGTCCTCGTCCCCGGGGGCCGGACGATCTCCTGGCCGCGGCTGCGGGCGCTGCTGGGGGTGAACCGGCTCTCCCTGCCGGACGCCGAGGTGGCCCGCGAGGTGACGGGCTACGAACGCGGCACGATCACGCCGTTCGGGTCGTGGCACCGCTGGCCGGTCGTGGCCGATGCGAGCATCCCGGCAGGGGGTACCGTGTCTGTCGGGGCCGGCGGTCACGGTGTCGGGGCGACGCTGGACGCGGATGTCCTGCTACGGGTGCTCGACGCACGGGTGGCGGACGTGACCGACCCCGAGGCATCACCCGCGTGA	MTGGEPEPERRAREALEASGAEFVITRHGRVGSLAEAAAARGVAPDRLLKTIVVRRAADDYLFVLVPGGRTISWPRLRALLGVNRLSLPDAEVAREVTGYERGTITPFGSWHRWPVVADASIPAGGTVSVGAGGHGVGATLDADVLLRVLDARVADVTDPEASPA				NA	NA	NA	NA	NA
AK001_01566	330			hypothetical protein	ATGGGCCATGCCGACGACCCGCGGCGGTTCCTCGTCGACGGACGCCTCGACCGCAGCCCGCGCCGGTGGCGCGACAAGGTGGCGGTGACCCGGTACCTGGCGACCGTGGCGATGCCGCGGCTGCTCGAGCCGATCTCCGAGCGGGACCTGACCGATCGCCTCGCCGAGCTGGCGCGCGACCCGGTCGCGCTGCGCCGTGCCATGGTCGACCTGGGGCTCGTGAGCCGGACCCGGGACGGTGCCGAGTACTGGCGCACGGAGCGGACCGAGCACGACCCGGAACCCGACGCGGTGGAGATCGCCGACCGCGCGCTCGGCGAGTCCCCGTGA	MGHADDPRRFLVDGRLDRSPRRWRDKVAVTRYLATVAMPRLLEPISERDLTDRLAELARDPVALRRAMVDLGLVSRTRDGAEYWRTERTEHDPEPDAVEIADRALGESP				NA	NA	NA	NA	NA
AK001_01567	2466			hypothetical protein	GTGGCGGACGAGGGCGAATCGACGGAGATCGACGGCGGGCACGCGGTGCGGGCGGAAGCGCCCCGCGACGCCCGCGCCGTCGCCTCGCGTCGAGGTGCCCCGCGCCGGGGCTGGCGTGTCGTCGGCGCCGGTGCCGGCGCCCTCGTCCTCGCAGCCGGTTTCATGGTCGGCTCCGTGGCGAGCACGCCCTGGAACGACTTCTCCCAGCACCCCACCTTTACCGCGCCGGTCGAGACGGAACCGCTCGAGCTCGGCGTGGTCGGCGGTGCCTCTCCGACGGGTCCGACGTCGATCGACCAGCTCCTCGGCGTGATCGAGGACGCCGAGCTCGCCGCTCTCGAGAGCGGCCGTGAGCTCGGCCCCGAGGTGCAGCAGGCGGCCGCCGAGCTGGGGGCCCTCCTGACCACCTACGTCGCCCAGCAGCAGGCCGACCACGTCCCGGGTCTCGGCGACCTGGACCTGCCGCAGGCTCCCGACCCGGCGACCCCCGCGGTACCGGACGAGATCCCGCCGGCCGGACCGCCGTCGTCGGACGACCAGCACCTCGACCCGCCGGAGAGCCCGCCCGGAGACCCGCTGCGCCCGCCGGCCGAGGCCATGCCGACGCCGTCCCCGTCACCCTCGCACGCACCGGCACCCTCAGCATCTGCGGCCCCGTCGGCGGAGCCGTCCGTCGCCCCGGAGCCGTCGGCCGCGCCCGACGACGACGCTGACGTGCTGCAGGCCGGCGGCCCGCGCGGACCGGTCGACGACGCACCCGCCGACCCGCCCGCCGAGGTGGACGACCTGGACCCGCTGCCGCAGGAGGTCGGCACGTTCCAGGGCGCCGGGCTGCAGCTGCCCACCTGGGAGGGTCTCGTCGGGGGCGACGGCACGTTCCAGGTCGGCAACGGGTTCGACCAGGACGTCGCCACCGACGACGGGACGACGTCCGACGCCGCGCTGGAGCTCGCGCACGCCGAGGACGGCGAGGAGCACGACCACGCGCACGGCGACGAGCGCATCACCTTCGACGACATCGTCGTGGCGGCGACCCACCTGGCCTCGCTGCTGAACCCCGCCACCGCCTCCGTCGTCGTCGACGTCCGACCCGCGGTCACCCAGCTGCCCGACGGCAGCTTCGTCTCCGACGACGGCGTGGCCGTGGCCTCGAACGGCCTGCCGCTGGCGAGCGGTGCCGCCGGCAGCGGCTCGCTGTCCGCGACCCTGCAGGCGGTCGTGGGCCAGCACGCCTCCTCGACCGCCGGCTACAGCAACGGACGGATCCCGACCTCGGTGCTGTGCAGCATCACCACGGCCCCCGGGCACATGCTCCGGTGCGACGCCGCGGCCCAGTTCGCCGCGCTCAACGCGGAGTACCGGGACCGCTTCGGCGTGGACATCCCGCTCACCGACTCCTACCGGTCGTACGACGCGCAGGTCGCGGTCCGCGCCGCGAAGCCGCACCTGGCGGCCGTGCCCGGCACGTCGAACCACGGCTGGGGCCTGGCCCTGGACCTGAGCACGCCGATCTCCGGCGGGTACTCCGCCGAGTACGTCTGGCTGCGGGTGCACGCCCCGGACTTCGGGTGGGACAACCCCGTCTGGGCCCGTCCGAACGGCAGCAAGCCCGAGCCGTGGCACTGGGAGTTCTTCGCCGCGGGCCCGGTCCCCGACCGCGCCACGTCGCACGCCGACGTCACCACCGCCGGCGGGTCCGGATCGTCCGGCGGCTCGTCGACCGGGTCCGGCTCGTCGAAGGGTTCCGGTGCGAAGGCCCCGAGCGGGAAGGGCGACGGCGGCGCGAAGGGAACCTCGCAGGGCGACACGACGGGCAAGGGCTCGAAGGGCGACAAGGCCGACGGTGAGAAGCCGAAGCCGAAGCCGACTCCGAAGCCGTCCACGAGCCCGAGCCCGAAGCCCTCGGCGAGCCCGTCGCCGTCGCCGAAGCCGTCGGCCGAGCCGGAGCCGTCCACGAGCCCGAGCCCGAAGCCCTCGGCGAGCCCGTCGCCGTCGCCGAAGCCGTCGGCCGAGCCGGAGCCGTCCACGAGCCCGAGCCCGGAGCCCTCGGCCAGTCCGTCCCCGGGGACGGACTCCTCGCCGGAGCCGTCCTCGGAGCCGTCGCCGACGGCGGGGGCCGGTGACGAGGGCAGCACCGAGCTGTCGGACCCGGAGTCGTCGAGCACGGAGACCTCGGGCACCGAGTCGTCGAGCTCGACCACGTCGAGCACCGAGTCGTCGAGCACCGAGTCGAGCACGGCGACCTCGAGCACGGAGTCCTCGACCTCGGGTGAGGACGCGACGGCGCCGACCGGCGACAGCGAGGTGGCGCAGCGCGAGGACGAGATGCTCGGCTCGCGGACCGACGGCAGCGGTGACGAGGGCGACGCGCTTCCCTCCGGGGACGGCGACGACTCGTCCGGCGACGGGTCCGTGGACAGCACCGACGACGGTGCCGTGGCGTACGGGGCCGACGGGACCGAGTGA	MADEGESTEIDGGHAVRAEAPRDARAVASRRGAPRRGWRVVGAGAGALVLAAGFMVGSVASTPWNDFSQHPTFTAPVETEPLELGVVGGASPTGPTSIDQLLGVIEDAELAALESGRELGPEVQQAAAELGALLTTYVAQQQADHVPGLGDLDLPQAPDPATPAVPDEIPPAGPPSSDDQHLDPPESPPGDPLRPPAEAMPTPSPSPSHAPAPSASAAPSAEPSVAPEPSAAPDDDADVLQAGGPRGPVDDAPADPPAEVDDLDPLPQEVGTFQGAGLQLPTWEGLVGGDGTFQVGNGFDQDVATDDGTTSDAALELAHAEDGEEHDHAHGDERITFDDIVVAATHLASLLNPATASVVVDVRPAVTQLPDGSFVSDDGVAVASNGLPLASGAAGSGSLSATLQAVVGQHASSTAGYSNGRIPTSVLCSITTAPGHMLRCDAAAQFAALNAEYRDRFGVDIPLTDSYRSYDAQVAVRAAKPHLAAVPGTSNHGWGLALDLSTPISGGYSAEYVWLRVHAPDFGWDNPVWARPNGSKPEPWHWEFFAAGPVPDRATSHADVTTAGGSGSSGGSSTGSGSSKGSGAKAPSGKGDGGAKGTSQGDTTGKGSKGDKADGEKPKPKPTPKPSTSPSPKPSASPSPSPKPSAEPEPSTSPSPKPSASPSPSPKPSAEPEPSTSPSPEPSASPSPGTDSSPEPSSEPSPTAGAGDEGSTELSDPESSSTETSGTESSSSTTSSTESSSTESSTATSSTESSTSGEDATAPTGDSEVAQREDEMLGSRTDGSGDEGDALPSGDGDDSSGDGSVDSTDDGAVAYGADGTE				NA	NA	NA	NA	NA
AK001_01568	789	pxpA	COG1540	5-oxoprolinase subunit A	ATGAGGACGTCCGACGCGACCGCCCCGCGGAGCATCGACCTGAACAGCGACCTCGGCGAGGGCACCGACCCCGCGGAGCACGCCGGCGACGCCCGCATGCTCGAGATCGTCTCGAGCGCCAACGTCGCCTGCGCCTTCCACGCCGGCGACCCGGCGACGATCCACCGCACGGTGCACGCCGCCGTCCGGCGCGGGGTGTCCGTGGGCGCGCACGTCGCCTACAACGACCGCGAGGGGTTCGGGCGCCGGGACCTCGCCGTCCCCAGCGACGAGCTGCGCGCGGACCTCGTCTACCAGCTCGGCGCGATCCGCGAGATCGCCCGCACCGCCGGCACCTCGGTCCGCTACGTGAAACCGCACGGCGCCCTCTACAACACGGCGGCCGTCGACCCGCAGGTCGCCGAGGACGTCGCCGCCGCGATCGTCACGGTGGATCCCGAGCTCGTCCTGCTGGGCCTGCCCGGCAGCGTCGCGCTCGACGCCGCCCGCGCGGCCGGCCTGGTCACGGCGAGCGAGGCGTTCGCCGACCGGGCCTACACCGCCGAGGGCCGGCTCGTGCCCCGCGGCGTCGAGGGCGCCGTCCTGCACGACCCCGAGGAGGTCGCCGCCCGCATGCTGCGGCTCGTCCACGAGGGTGTCGTCCGCTCGATCGAGGGCACCGACGTGCAGGTCGTCGCCGACTCCATCTGCGTGCACGGCGACACGCTCGGCGCCGCCGCGATGGCGGCCCGCCTGCGCGAGGTGCTGACCGGGGCCGGGGTGAGCCTGCGGCCCTTCGTCACGCCATGA	MRTSDATAPRSIDLNSDLGEGTDPAEHAGDARMLEIVSSANVACAFHAGDPATIHRTVHAAVRRGVSVGAHVAYNDREGFGRRDLAVPSDELRADLVYQLGAIREIARTAGTSVRYVKPHGALYNTAAVDPQVAEDVAAAIVTVDPELVLLGLPGSVALDAARAAGLVTASEAFADRAYTAEGRLVPRGVEGAVLHDPEEVAARMLRLVHEGVVRSIEGTDVQVVADSICVHGDTLGAAAMAARLREVLTGAGVSLRPFVTP				NA	NA	NA	NA	NA
AK001_01569	1584			hypothetical protein	ATGACGTCGCAGGTCCGCCCCGCCGGCGACGACGCGCTGCTGGTCACGCTGGACACCGCCGAGGCCGCCGTGGCGCTGCACCGGTCCCTGCGCGCCCGTCCGGTGCCCGGCGTCGGCCCCACGGTGCCGGGGGCGCGCACGCTGCTCGTCCCGTTCACCCCGGGACGCACCGACCCCGCCCGGCTCGCCCGGGAGCTGCGGGCCCGCATCGCGGAGCCCGCCTCCGCGGGGGCCGCGCAGGTCCGCCGGCACGAGATCGCGGTGGTGTACGACGGCGAGGACCTCGCCGTCGCGGCCGAGCTGCTCGGCTGGTCGGCGGACGAGCTCGTCCGTCGGCACACCGCGGCCACCTGGCGGGTGGCGTTCATGGGGTTCGCCCCGGGGTTCGGCTACCTGAGCGGGGACGACCCGGCACTGGAGCTCCCGCGCCGCTCCTCGCCGCGCACGCGGGTCCCCGTCGGGGCGGTCGCGATGGCCGGCGGCTACAGCGGCGTCTACCCGCGCGAGAGCCCGGGCGGGTGGCAGCTCCTGGGCCGGACCGACGCCGTCGTCTGGGACGTCGCCCGCGAGGCACCGGCGCTGTGGGCACCCGGCGACGCCGTCCGCTTCCGGCCGGCCCGCGAGCTCGTCACGGTGGCCCGGCCCGCGGCGTCCGCCCCGCCGTCGACCCCCTCGCCCGCCGACCCGGTGCTCGAGGTGGTGTCCCCGGGCCTGCAGACCCTGGTGCAGGACCTCGGCCGCCCCGGGAGCGTCGACCTGGGCGTGTCCGCCTCCGGGGCGGCCGACCCCCGCAGCGCCCGGGCCGCGCAGCGGGCCGTCGGCAACCGCACCGACGCCGCCGCGCTGGAGACGCTCGGCGGGCTCCGCCTGCGGGCCCTGCGGACCGTCGTCGTCGCGGTCACGGGCGCCCCGGCCGACCTCGAGGTGGTGTCCGACGACGCGCCCCCGCGGAGGCCGCCCCTCGGCCGGCCGTTCGTGCTGGGCGCCGGTCAGGAGCTGTTGCTGGGGTCCCCCCGCCGGGGCCTGCGCACCTACGTGGCGGTGCGTGGCGGCCTGGACGTGGCGCCGGTGCTGGGATCGCGCTCGGCGGACGTCCTCGCCGGTCTGGGTCCGGCCGCCCTGGCCACCGGGGACGTCCTGGGCGCGGCACCGGACGACGTCGGCGCCGTCGCGACCGCAGACCCGGGGGCCCCGGACCCGGACCGCCTGCCGGCCCCCGGCGAGGTCGTCACCCTGCCCGTCGTGCCGGGCCCGCGCGCCGACTGGTTCCCGGCCGACGCCCTCGCCCTGCTCACGAGCCAGGAGTGGGAGGTCACGCCCCGGTCGGACCGCATCGGGCTGCGGCTGCACGGGGAGCGCCCGCTGACGCGGACGGCCGCCACGCGGGACGCCGAGCTGCCCAGCGAGGCCGCCGTGACCGGGGCGTTCCAGGTCCCGCCCGACGGGCAGCCGGTGCTGTTCGGTCCCGACCACCCCCTGACCGGCGGCTACCCGGTGATCGCCACGGTCGCGGCGTCGCACCGGTGGCTGCTCGGGCAGATCCCGCCGGGGGCACGGATCCGCTGCCGGGTGGTCGAGGCGTGA	MTSQVRPAGDDALLVTLDTAEAAVALHRSLRARPVPGVGPTVPGARTLLVPFTPGRTDPARLARELRARIAEPASAGAAQVRRHEIAVVYDGEDLAVAAELLGWSADELVRRHTAATWRVAFMGFAPGFGYLSGDDPALELPRRSSPRTRVPVGAVAMAGGYSGVYPRESPGGWQLLGRTDAVVWDVAREAPALWAPGDAVRFRPARELVTVARPAASAPPSTPSPADPVLEVVSPGLQTLVQDLGRPGSVDLGVSASGAADPRSARAAQRAVGNRTDAAALETLGGLRLRALRTVVVAVTGAPADLEVVSDDAPPRRPPLGRPFVLGAGQELLLGSPRRGLRTYVAVRGGLDVAPVLGSRSADVLAGLGPAALATGDVLGAAPDDVGAVATADPGAPDPDRLPAPGEVVTLPVVPGPRADWFPADALALLTSQEWEVTPRSDRIGLRLHGERPLTRTAATRDAELPSEAAVTGAFQVPPDGQPVLFGPDHPLTGGYPVIATVAASHRWLLGQIPPGARIRCRVVEA	PGPT0001010_841	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATION	XENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457	NA	NA
AK001_01570	489			hypothetical protein	ATGACGTCAGTGCCGACCACTCAGACCGCCCCGACGAGGCAGCGCGGGGCCACCACCCGGTTCGCCGCCGCCAGTCTCGTCGCCCTGGCGATGATGCTCGGCGCCTGCTCCGCCCCGACGGACGTGCAGCAGTTCATCGACGACGCGCAGGGCCAGGCCGAGGCCATCGAGGGTGACCTGCGCGAGCTCGAGGAGCAGGTGACCGGTGTCCCCGACGAGCTGCAGGGGTCCGTGACCGACGCCGTCGCCTCGGCGCAGGCCGCGACGGACGAGGCGCGCGGCGCTCTCGAGCAGGCCGCCGAGTCCGAGGACGGCGCGATGGTGGCGCTGCAGGACGCCCAGGTGGCGCTCGAGGCCGCCTCGGCCGAGGTCAAGCACGTCACCGAGGAGGCCCGCACCGCCGGCGCCGACCAGGTGGCGGACCTGCTGGCGCAGCTGCAGACCCAGATCGACGAGCTGCGCGGCGAGACCGAGGACGCCGCGGCCTGA	MTSVPTTQTAPTRQRGATTRFAAASLVALAMMLGACSAPTDVQQFIDDAQGQAEAIEGDLRELEEQVTGVPDELQGSVTDAVASAQAATDEARGALEQAAESEDGAMVALQDAQVALEAASAEVKHVTEEARTAGADQVADLLAQLQTQIDELRGETEDAAA				NA	NA	NA	NA	NA
AK001_01571	1248			N-acetyldiaminopimelate deacetylase	ATGAGTGCGCTGACCACCGCCGAGCTGACGGCCGTCTACACAGACCTGCACGCCCACCCCGAGCTCGCCTTCGCCGAGCACCGCACCGCGGGCATCGTCGCGGACCGGCTGCGCCGCGACGGCTTCACGGTGCACACCGGGATCGGCGGCACGGGTGTCGTGGGCGTGCTGGCCAACGGCGACGGCCCGACGGTGCTGCTGCGCGCCGACATGGACGGGCTGCCGGTCACCGAGGACACCGGGCTGCCGTACGCCTCGCGCGAGGCCGGCACCATGCACGCCTGCGGCCACGACGTGCACGTCACCTGCCTGCTGGGCGCGGCCACCGAGCTGGCCGGGCGCCGGGCGGAGTGGTCGGGCACGCTGCAGGTGCTGTTCCAGCCCGCCGAGGAGGTCGGGGCCGGCGCCCGGGCGATGCTCGCCGACGGCCTGTACGACCGCGTCGGGACCCCCGACGTCGTGCTCGGCCAGCACGTCATGCCGTTCCCCGTGGGCACGGTGAGCCTCACGCCGGGGCCCGCGATGGCCGCCGCGGACTCGCTGCGCATCACGTTGCACGGCAAGGGCGGGCACGGCTCGTCCCCGGAGGGCACCGTCGACCCGGTGCTGATGGCCGCCGCGACGGTGCAGCGGCTGCAGGGCATCGTGTCCCGCGAGGTCGGGGCGGGGGAGAAGGCGGTGGTCACCGTCGGGTCGCTGCGGGCAGGGACCCAGGCGAACATCATCCCCGACCGGGCCGAGCTGCTGGTCAACGTCCGCTCCTTCGACGAGGGCGTGCGCGAGCGGGTGCTCGCGGCGGTCCGCCGGATCGTCGACGCCGAGGCCGCGGCCTCCGGCGCCCCGCGTGCCCCGGAGTACGAGGAGATCGCCACGTTCCACCTGCTGGTCAACGACCCGGCGGCCTCCGAGCGCACGGGAGCGGTCCTGGCCTCCGCCCTCGGTGCGCACCGCGAGGCGATCCAGGAGGCCGGCAACGTGCCCACCGTCGTCGCGCTGCCGCCGCTGGCGGGGTCGGAGGACGTCGGCGACCTGGCCACCGCCGCGGGGGCGCCGCTCGTCTACTGGCACCTGGGCGGGTTCGACCCGGCCCTGTTCGCCGGCTTCGACCCCGGGGCGGCGACCGGGATGGGATCCCTGCCCGACGGCGTCGCCCCGAACCACTCCCCGCGGTTCGCGCCCGTGGCGGGACCGACGCTCGGGCTCGGCGTCGCGCTGCTGGTCGCCGCGGCGACCGAGTGGCTGGACTGA	MSALTTAELTAVYTDLHAHPELAFAEHRTAGIVADRLRRDGFTVHTGIGGTGVVGVLANGDGPTVLLRADMDGLPVTEDTGLPYASREAGTMHACGHDVHVTCLLGAATELAGRRAEWSGTLQVLFQPAEEVGAGARAMLADGLYDRVGTPDVVLGQHVMPFPVGTVSLTPGPAMAAADSLRITLHGKGGHGSSPEGTVDPVLMAAATVQRLQGIVSREVGAGEKAVVTVGSLRAGTQANIIPDRAELLVNVRSFDEGVRERVLAAVRRIVDAEAAASGAPRAPEYEEIATFHLLVNDPAASERTGAVLASALGAHREAIQEAGNVPTVVALPPLAGSEDVGDLATAAGAPLVYWHLGGFDPALFAGFDPGAATGMGSLPDGVAPNHSPRFAPVAGPTLGLGVALLVAAATEWLD	PGPT0019000_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSAMINIDASE,PGPT0019000-csxA-K15855	NA	NA
AK001_01572	279			hypothetical protein	GTGCCCCAGGACGACGACCTCATCCTGCGCATCGGCCACGAGGAGCTCGTGGTGCGGCAGCGCTACGAGACCCTCAGCATCGTCAACGACATCCTCATCGGCCTGTGGTTCGTGGTCGGCTCGGCCCTGTTCTTCTCCGAGTCCACGGCCACCGCCGGCACGTGGCTGTTCCTCCTCGGCAGCGTGCAGATGCTCCTGCGGCCCGCCATCCGGCTCCGGCGGCGCCTGCACCTGCAACGGCTCGGGTCGCCGCACGCCGAGACCGCGCGGGACTTCTGA	MPQDDDLILRIGHEELVVRQRYETLSIVNDILIGLWFVVGSALFFSESTATAGTWLFLLGSVQMLLRPAIRLRRRLHLQRLGSPHAETARDF				NA	NA	NA	NA	NA
AK001_01573	849			hypothetical protein	ATGTTCTCCCGCCCTCGGACATCGTTCGACCTCGTCCCCCGACGGGTCCGCGTGCACGCCGTGCGCGAGTTGACCGGCTCGCTGGTCCGCACCACCTTCCGCGACGTGCCCGGCGCGGACCCCGACGCGCCGTCGTCCCTCGCCGCGCTGCGGGCCCCCGGCCCGGAGGACCACGTCACCGTCTTCCTGCCGGACCCGGCCACCGGGGAGCTGCACGCACCGACGCTCGCCCCCGACGGCGGGCTGCAGCGCACCAGCACGGGCGTGTCGATCTCGCGGGACCTCACGGTCCGGGACGTGCGCACCGTCGACGGCGTCGCCGAGGTCGACCTGGACTGGGTGGTGCACGACGGCGGCGGGCAGGCCGCGGCGTGGGCGTCCCGCGCCGCCGCCGGCGACGAGATCGTGCTTGCCGGGCCGCGGCACAGCGTCGGCGTCCCCGACGGCGTCGAGCGGCTCACCGTCGCCGTGGACGAGACCGGCCTGCCCGCCGCCGCCCGCTGGACCGCCGCCGTCGGCCCCGACGTCCGGGTGACCGCGATCGTCGAGATCGGCGACGACGTCGCCGAGGACGTGGTCGAGTCCGAGCTCGGCCACGCCGACGTCGAGATCCTGTACCGCACCGACGGGCCGGGCCAGCTCGCCGAGGCGGTCCGCTCCCTGGGGATGCCGGAGGACGGCGAGTTCGTCGTCGCGCTGGGCGAGGCCGGCGACCTGGTGCCCGTGCGGCGGCACCTGCGGCGCGAGCTCGGCCTGGAGGCGGACCGCATGTCGGTCGCGGGCTACTGGCGGCGCGGCGCGGTCAACCACGACCACGAGCAGCCGCTGGACCCCGCCGACCCCGACTGA	MFSRPRTSFDLVPRRVRVHAVRELTGSLVRTTFRDVPGADPDAPSSLAALRAPGPEDHVTVFLPDPATGELHAPTLAPDGGLQRTSTGVSISRDLTVRDVRTVDGVAEVDLDWVVHDGGGQAAAWASRAAAGDEIVLAGPRHSVGVPDGVERLTVAVDETGLPAAARWTAAVGPDVRVTAIVEIGDDVAEDVVESELGHADVEILYRTDGPGQLAEAVRSLGMPEDGEFVVALGEAGDLVPVRRHLRRELGLEADRMSVAGYWRRGAVNHDHEQPLDPADPD				NA	NA	NA	NA	NA
AK001_01574	504			hypothetical protein	GTGAGCGACCCGTACCAGGTGAACCAGCCCGAGGACCCGACACCGCCGCCGGGAGGCACCCCGCCGCCCGGGCACGGTCAGCAGCCCGGCCCGCAGCAGCCGGGTCATCCCCAGCAGCCGGGCTATCCCCAGCAGGGCTCTCCGCAGCAGGGCTATCCGCAGCAGCAGGGCTATCCCCAGCAGCCGGGCTACCCGCCGCAGCAGCCCGGCTACCCGCAGGGCGCCTACCCGCCGGCGTACGCGCCGGACCCGCCCGGCAAGATCATGGGCATCATCGGGTTCGTGCTCGCCTTCGTCTTCGCTCCGGCCGGCATCATCGTGTCCGCCCTGGCGCTGTCCGACTCGAAGAAGGTCGGCTACGACAACGTGCTCGGCAAGTGGGGCCTGTGGCTGTCGATCATCTTCACCGCGATCGGCCTGCTGATCCTCGTCGCCTACCTGGTGTTCTTCATCTCGATGTTCGGCGTGATGAGCACGTCGACGGAGTGGTCGACCTCTGTCTGA	MSDPYQVNQPEDPTPPPGGTPPPGHGQQPGPQQPGHPQQPGYPQQGSPQQGYPQQQGYPQQPGYPPQQPGYPQGAYPPAYAPDPPGKIMGIIGFVLAFVFAPAGIIVSALALSDSKKVGYDNVLGKWGLWLSIIFTAIGLLILVAYLVFFISMFGVMSTSTEWSTSV				NA	NA	NA	NA	NA
AK001_01575	162			hypothetical protein	GTGGGACGAGCGGGGTCGTCGACGGGCTGCGGGGCGGAGGAGGACTCGGTGCTCACGACCTCTCATTGTCGCAAGAGACGCAAGCTGATAGTTCAGACAGAGGTCGACCACTCCGTCGACGTGCTCATCACGCCGAACATCGAGATGAAGAACACCAGGTAG	MGRAGSSTGCGAEEDSVLTTSHCRKRRKLIVQTEVDHSVDVLITPNIEMKNTR				NA	NA	NA	NA	NA
AK001_01576	4503			hypothetical protein	GTGAGCCGTGCGGAGCTGGACCGTGCCGCGGAGCTCCGGGCCGCCGTCGTCGTCCCCGAGATCACCTACCCCGAGCAGCTGCCCGTCTCGGCGCGGCGCGAGGACATCGCCGAGGCGATCCGCGAGAACCAGGTCGTCGTCGTCGCCGGCGAGACCGGCTCGGGCAAGACGACGCAGCTGCCGAAGATCCTCCTCGAGCTCGGCCGGGGCCGTGGCGGGCAGATCGGGCACACGCAGCCGCGCCGGATCGCGGCGCGGTCGGTGGCCGAGCGCGTGCACGAAGAACTCTGTGGAGCTGGACCGCTGACCCCCGGCGGCGTCGTCGGCTACCAGGTGCGGTTCACCGACACCTCCTCCGACTCCACGCTCGTCAAGGTGATGACCGACGGCATCCTGCTGGCGCAGATCCAGCGGGACCCGGACCTGCTCGCCTACGACACGATCGTCATCGACGAGGCGCACGAGCGGTCGCTGAACATCGACTTCCTGCTGGGCTACCTGTCCCGGCTGCTGCCGCGGCGCCCGGACCTCAAGCTCGTCATCACCTCGGCGACGATCGACTCCGAGCGGTTCGCCGCCCACTTCTCCCCCGCCCACCTGGCCGAGGTCGGCGGCGCACCGGACGCCGTCGTCGACGTGCTGCCCGACGCCGCCCCCGTCGTCGAGGTCTCCGGACGCACCTACCCCGTGGAGATCCGGTACCGCCCGCTGGCCCCGGACGCCGACGCCGGGTCCGGGAAGAAGAAGAGCGGTGACGAGAAGGACCTCGTGACCGGCATCGTCGAGGCGTGCGACGAGCTGATGCGCGAGGGGTCCGGCGACATCCTCGTGTTCCTCTCCGGCGAGCGCGAGATCCACGACGCCGCCGACGCCCTCGAAGGACATCTCAAGGAACGGGTCCGCGACCCGAAGCGCCCCGACCACGTCGAGATCCTGCCCCTGTACTCGCGACTGTCGTCCGCCGAGCAGCACCGCGTGTTCCAGTCCCACCCGGGCCGGCGCATCGTGCTGTCCACGAACGTCGCCGAGACGTCGCTGACGGTGCCCGGCATCCACTACGTCGTCGACCCCGGCACCGCCCGCATCTCGCGGTACTCCAAGGCGACCAAGGTGCAGCGCCTGCCGATCGAGGCGATCAGCCAGGCCTCGGCGAACCAGCGTGCCGGGCGCTCCGGACGTGTCGCGGACGGCGTCGCGATCCGGCTGTACTCCCCGGAGGACTTCGAGGGACGGCCGGAGTTCACCGAGCCCGAGATCCTGCGCACCTCGCTGGCCTCGGTGCTGCTGCAGATGATCTCCGTCGGCGTGGTCGGCTCCCCCGACGACGTCGCGCGGTTCCCCTTCGTCGAGCCGCCGGACACCCGGGCCGTGCGCGACGGCGTGAACCTGCTGTCCGAGCTCGGGGCGCTGACGCTGCGGGACGGCACGACCCGTCTCACCGACGTCGGACGGACGCTCGCCCGGCTGCCCATGGACCCGCGGCTGGCCCGCATGGTCGTCGAGGGCTCTCGGCTCGGCGTCGCCCGCGAGGTCGCCATCGTGGCCGCCGCCCTGTCCATCCAGGACCCGCGCGAACGCCCCGCCGAGTCGCGTGCGCAGGCCGACCAGTCGCACGCCCGCTTCACCGACCCGACGTCGGACTTCCTCACCTACCTCAACCTCTGGGAGTACCTGCGCGAGCAGCAGCACCAGATGGGCTCCTCGGCCTTCCGGCGGCTGTGCAAGAGCGAGTACATCAACTTCCTGCGCGTGCGCGAGTGGCAGGACGTCGTCGCCCAGCTGCGGCAGATGGCCAAGCCGCTCGGCGTGGACATGCGCTACCGGCCCGCGACCACGGGGTCGGCCGACGACGATGCACCGGACGAGACGGACTGGCGGCGCCCCTGGGACGGCGACACCATCCACCGCGCCCTGCTGTCCGGGATGCTGTCCCAGATCGGCATGCAGGACACCGGCGAGATCAAGGCGTCCTCCGTGGCGCACCTGCGCGGCGAGGCCCGGGCACGCGCCCTGCGCCAGGCCGCCAAGCGGGCCCGCAACGAGTACCTCGGGGCGCGCGGTGCCCGGTTCGCGATCTTCCCCGGCTCCCCGCTGAGCAAGAAGCCGCCGGCGTGGATCATGGCCGGCGAGCTCGTCGAGACCTCCCGGCTGTGGGCGCGCGACGTCGCGAAGATCCAGCCCGAGTGGGCCGAGGACCTCGCCGGCGACCTGGCCAAGCGCACCTACTCCGAGCCGCACTGGTCCACCAAGCAGGGCGCGGCCGTGGCCACCGAGAAGGTGCTGCTCTACGGCGTGCCGATCGTCGCCGACCGGCCCGTGCTCTTCGGGAAGATCGACCCGGAGGGCGCGCGCGACCTGTTCATCCGGCACGCCCTCGTCGAGGGGCAGTGGACCACCCACCACGCCTTCTTCGCCGAGAACCGCCGGCTGCTCGCCGAGGCCGAGGAGCTCGAGGCACGGTCGCGCCAGCGGGGCCTCGTCGCCTCCGACGACGACCTCTTCGCGTTCTACGACGAGCGCGTCCCCGAGCACGTCGTCAGCGCGCGGCACTTCGACTCCTGGTGGAAGAAGGCCCGCCGCGACGACCCGGACCTGCTCACCTTCACGCTCGACCAGCTCGTCGACGCCGAGTCCGTGGACACCTCCGAGTTCCCGGAGACCTGGACCCAGGGCGAGGTCACGCTCCCCCTGACGTACCAGTTCCAGCCCGGGACCGACGCGGACGGCGTCACCGTCCACGTGCCGCTGTCGATCCTCAACCGGGTCACCCCCGACGGGTTCGACTGGATGGTCCCTGGTCTGCTCGACGAGCTGTGCGTCGCCACCATCCGGTCGCTGCCCAAGACGGTGCGCCGCGAGCTCGTCCCCGCGCCCGACGTCGGCGCCGCCGTCGCCGGGTGGATGCGGGCGAACGTGCCGACGTGGGAGGACCTCACGCGCGCCGGCGACATGGCCACGCCGTTCCACGTCGAGTTCACCCGCGCCGTGCGCGCGCTGCGCGACGTCGTCATCCCGGACGAGGTGTGGGACGCCGAGCGCGTCGAACGGCTGCCCGCGCACCTGCGCATGACGTTCCGCGTCGAGGACGCCTCCGGTGCCGCGGACAGCTCCGGGTCCGCCGGTCGCGGCGGCCCGGCCGGGGGTGGACGACGCCGGAAGTCCGGTCCGAAGAACGGGCGCGGCCGGGGTGCGGCGCGGCCGGCCGGTCCCGTCGTGCTCGACGAGTCCAAGGACCTGCTGTCGCTGCAGAAGAAGCTGGCGCCGCAGGCGGAGGCCGCGGTGCGGTCGGCCGTCAAGGGGGCGGTCGGTGTGGCGCTCGAGGAGGCTGCGCGGTCGGCGTCCGGCTCGGGCGCGTCGTCGGGCTCGGGCGCGTCGTCGGGCTGGGGCGCGTCGTCGGGCTCGGACGGTGCTGCGCCGCCTCGCTCACGGGCCCCGGGGGGCCCTCCGCTACGGCTGGACGGCGGCGCATCCCCCTCCGCGTCCGACGACCGTGCCGGGTCCGGACGGTCTGACGGCGGTCCCGGCGTCGGGACGTCCGTTGCCGGAGCCGTCGTGGCCGAGCAGACGGGGCTGACGACGTGGCCCGAGCTGCCGGGCGGGGTGCTGCCGGAGGCGGTGTCGACGGATCTCGGTGGGGGCGTCGTGGTGCAGGGGTACCCGGCGCTGGTCGAGGAAGGCGGTGCCAAGGGTGCCGCTCGGTCGGTGGCGCTGCGGGTGCTGGCCGACGCCGCGGGCCGGGACGCCGTTCATGCGGCCGGTGTGCGGCGGCTGCTGCTGTCGCAGACGGCGCTGCAGACCGGCCGGGTGACGTCACGGTGGTCGGCGAAGCAGTCGCTGACGCTGGCGGCCGCGCCGTACCGGAACACCGACGCCCTGGTCGACGACCTGCAGCTCGCCGCCGTCATCGCGCTGACCAGTGCGGACGCGGACAAGGCGCCAGGGACGCCGACCGGCGGACCGATCGCCGTACAGATTCGTGATGCCGATTCGTACGAGTCGGCGCTCGGGTTCGTGCGCCGGCACCTGGAGGACGAGGTCCACCGGATCGTCGGGCACGTCGTCGCGGCGCTGACGGCCTGGCGGACCGTCGAGACCGCGGTGAAGGCGTCGTCCTCGCTGGCCCTGCTCAACACGCTGCAGGACATCCGCGAGCACGTCGCCGGCCTGGTCCACGAGGGGTTCGTCGCGGCGACGCCACCGCGGCGGGTGCCTCACCTCGTGCGCTACCTGCGGGCGGCGTCGTACCGGCTGGAGAAGGCCGAGTCGAACCCGCACCGCGACGCCGAGCTCGCCTGGAAGATCCACGACGTCACCGGGGTCTACGACCAGGCGCGGGAGGCCTACGCCAGCGGGGCGCCCGACCCGGCGCGCGCGGCCGAGCTCGCCGAGGTCCGATGGCTGCTCGAGGAGCTGCGGGTGTCGCTGTTCGCCCAGCAGCTCGGCACCGACGGGTCGGTCAGCGAGAAGCGGATCCGCAAGGTGCTCCGGCCCGGCGGCTGGTAG	MSRAELDRAAELRAAVVVPEITYPEQLPVSARREDIAEAIRENQVVVVAGETGSGKTTQLPKILLELGRGRGGQIGHTQPRRIAARSVAERVHEELCGAGPLTPGGVVGYQVRFTDTSSDSTLVKVMTDGILLAQIQRDPDLLAYDTIVIDEAHERSLNIDFLLGYLSRLLPRRPDLKLVITSATIDSERFAAHFSPAHLAEVGGAPDAVVDVLPDAAPVVEVSGRTYPVEIRYRPLAPDADAGSGKKKSGDEKDLVTGIVEACDELMREGSGDILVFLSGEREIHDAADALEGHLKERVRDPKRPDHVEILPLYSRLSSAEQHRVFQSHPGRRIVLSTNVAETSLTVPGIHYVVDPGTARISRYSKATKVQRLPIEAISQASANQRAGRSGRVADGVAIRLYSPEDFEGRPEFTEPEILRTSLASVLLQMISVGVVGSPDDVARFPFVEPPDTRAVRDGVNLLSELGALTLRDGTTRLTDVGRTLARLPMDPRLARMVVEGSRLGVAREVAIVAAALSIQDPRERPAESRAQADQSHARFTDPTSDFLTYLNLWEYLREQQHQMGSSAFRRLCKSEYINFLRVREWQDVVAQLRQMAKPLGVDMRYRPATTGSADDDAPDETDWRRPWDGDTIHRALLSGMLSQIGMQDTGEIKASSVAHLRGEARARALRQAAKRARNEYLGARGARFAIFPGSPLSKKPPAWIMAGELVETSRLWARDVAKIQPEWAEDLAGDLAKRTYSEPHWSTKQGAAVATEKVLLYGVPIVADRPVLFGKIDPEGARDLFIRHALVEGQWTTHHAFFAENRRLLAEAEELEARSRQRGLVASDDDLFAFYDERVPEHVVSARHFDSWWKKARRDDPDLLTFTLDQLVDAESVDTSEFPETWTQGEVTLPLTYQFQPGTDADGVTVHVPLSILNRVTPDGFDWMVPGLLDELCVATIRSLPKTVRRELVPAPDVGAAVAGWMRANVPTWEDLTRAGDMATPFHVEFTRAVRALRDVVIPDEVWDAERVERLPAHLRMTFRVEDASGAADSSGSAGRGGPAGGGRRRKSGPKNGRGRGAARPAGPVVLDESKDLLSLQKKLAPQAEAAVRSAVKGAVGVALEEAARSASGSGASSGSGASSGWGASSGSDGAAPPRSRAPGGPPLRLDGGASPSASDDRAGSGRSDGGPGVGTSVAGAVVAEQTGLTTWPELPGGVLPEAVSTDLGGGVVVQGYPALVEEGGAKGAARSVALRVLADAAGRDAVHAAGVRRLLLSQTALQTGRVTSRWSAKQSLTLAAAPYRNTDALVDDLQLAAVIALTSADADKAPGTPTGGPIAVQIRDADSYESALGFVRRHLEDEVHRIVGHVVAALTAWRTVETAVKASSSLALLNTLQDIREHVAGLVHEGFVAATPPRRVPHLVRYLRAASYRLEKAESNPHRDAELAWKIHDVTGVYDQAREAYASGAPDPARAAELAEVRWLLEELRVSLFAQQLGTDGSVSEKRIRKVLRPGGW				NA	NA	NA	NA	NA
AK001_01577	567			hypothetical protein	ATGTTCGACCAGTCCCTGAGCGACCTGCTCTGGCTCTCCCCGACCGAGGCCGTCGCCGTCGTGCTCGCGACCACCGGCATGTACCTGGCGATGATGCTGCTCGTGCGGGTGATCGGGCAGCGGATGCTCGGCGCGATGTCGAACTACGACCTCGTCGCGATCATCGCGTTCGGCGCGATCCTGGGGCGCGCGGCCCTCGGTGACGTCGCCGTCCTCGGCGGCGGCCTGGTCGCCATGCTGACGCTCATCGCGCTGCAGTCGATCGCGGGGGCGCTCATCGTGCGACCGTTCGGCGCGCGCGCGATCACGTCCCAGCCCGTCCTGCTCATGACCGACGGGACGGTGCTGCCCGACCAGCTCCGCCGCGCCCACGTCACCCTGAGCGAGCTGCGCTCCACGCTCCGGCTCGCCGGGGTCCACCGGTACGACGACGTCGCCGTCGCCCTGCTCGAGTCGACCGGGTCGATCAGCGTGCTGCGCCGCGGAACCCCGATCGACGCCGCGCTGCTGGAGGGCATCCATGGCGAGGAGCTGGTCCCGGAGCACCTGGTGTCCCGCGCTCGGTGA	MFDQSLSDLLWLSPTEAVAVVLATTGMYLAMMLLVRVIGQRMLGAMSNYDLVAIIAFGAILGRAALGDVAVLGGGLVAMLTLIALQSIAGALIVRPFGARAITSQPVLLMTDGTVLPDQLRRAHVTLSELRSTLRLAGVHRYDDVAVALLESTGSISVLRRGTPIDAALLEGIHGEELVPEHLVSRAR				NA	NA	NA	NA	NA
AK001_01578	231			hypothetical protein	ATGAGCACCCCTCAAGCAGTCCCCGCAGCCCGACCCCGCAAGCTGTACCGCCCGAGCCAGGGCCGCGTGTTCGGCGGCGTGTGCGCCGGCATCGCGGACTACCTCGGCTGGGACCGGACGCTGGTCCGCGTCCTGACCGTCGCGTCCGTGTTCATTCCCGGCCCGCAGGTGCTGGCGTACATCGTCTTCTGGATCCTCATGCCGGACGAGCGCAAGGCGTTCGCCGCCTGA	MSTPQAVPAARPRKLYRPSQGRVFGGVCAGIADYLGWDRTLVRVLTVASVFIPGPQVLAYIVFWILMPDERKAFAA	PGPT0027520_1486	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-PspC-PspB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027520-toxin_pspC-K03973	NA	NA
AK001_01579	900			hypothetical protein	ATGACGACACCCGTGATCCTCGCCGTCCTCACCGTCTCGCTGGCCGTCGGGCTGGGCATCTGGCTCGTCTTCGGTGCGTTCGCTCCCGAGCGTCGCCGTGCGGTGGAGAACCTGCACCGTGGCCACGTCGCGACACCCGTGGCCCGGTCGCTGACCGCGCCCACCGCGACCCGTCCCGCGCAGGCGTCCCTCGGCCGCCGGTTGACCGCAGCGCCACTGGTCGGCCTGCTCGAACGGCAGTACGTCCGCGCCGGTCGACCGCCGGACTGGCCCGTCGACCGTCTGCTCACCGTCAAGCTGCTCTGGGCGCCCGTCGGCATCCTGCTCGTGCTGTGGGCGGTGGCGAGCAACGCGTCGCCGCTGGTCACCGGGACGGCCTTCGTCGTCGCCGTCGTCACGTACTTCCTGCCGGAGCTGCTTCTCCTCAGCAGCGCCCAGAAGCGGGAGCAGCTGATCCAGATCGAGCTGGCCGACACCCTCGACCAGCTGACCATCGTCGTCGAGGCCGGCGTCGGGTTCGAGTCGGCCCTGTCCCGCGTGGCCCAGAACGGCCGCGGGGTGCTTGCCGAGGAGCTGACGCGCACCCTGCAGGACATGCGGATGGGCCTCTCGCGGCGACAGGCGCTGGAGGACCTGGCCGAGCGGACCGCGGTGGTCGACCTGCGCCGGTTCGTCCGCTCGCTGCTGCAGGCGGACGCCCACGGCGTGTCCATCGGTGACGTGCTGCGGACCCAGGCGACCGAGATGCGGGTACGTCGCCGCCAGCGGGCCGAGGAGAAGGCGCAGCGGGTGCCGGTGCTCGTGCTCATGCCGCTGATGCTGTGCATCCTGCCGGTGCTCTTCATCGTCATCATGACACCGGTGGTGATCGACATCATCGGCGCCTTCATGAACCTCTGA	MTTPVILAVLTVSLAVGLGIWLVFGAFAPERRRAVENLHRGHVATPVARSLTAPTATRPAQASLGRRLTAAPLVGLLERQYVRAGRPPDWPVDRLLTVKLLWAPVGILLVLWAVASNASPLVTGTAFVVAVVTYFLPELLLLSSAQKREQLIQIELADTLDQLTIVVEAGVGFESALSRVAQNGRGVLAEELTRTLQDMRMGLSRRQALEDLAERTAVVDLRRFVRSLLQADAHGVSIGDVLRTQATEMRVRRRQRAEEKAQRVPVLVLMPLMLCILPVLFIVIMTPVVIDIIGAFMNL	PGPT0022295_1543	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511	NA	NA
AK001_01580	930			hypothetical protein	GTGAGCCCGGCGCTGTGGGGGCCGCTCGCCGTCGGCCTCGCCCTCGTCCTCGGCGGGTTCGTGCTGGTCGCCCCGCACCGGGCGCACCTGCCCCGGTCGCGACGTCGTCCCGAGGCCGCTCCCGAGGACGGCGCGCTCGCCGAGGCCGCCGCCACCGCGACCCGGCTCGTCGCCAAGGCGATGCGTCGTCGCGAGGGCAGCGTGGCCATCGCGCTCGACCTGGCCGGTGTGCGCCGTCGGCCCCAGGATGTGGTGTTCCTCGTCCTGGTGGCGTTCGTGGTGCTCGGCGCGATGGGCCTGCTCCTCGGCGGGCCGTGGCTGATGATCCTCTTCGCGCTCGTGGCGCCGGTCGCCACCGTGCTGTGGGTGCGCGTGCGGACCAGCCGGCGGCGGGCGGCCTTCGCCGACCAGCTCGACGACACCCTCCAGCTCATCGCGGGCAGCCTGCGGGCCGGGCACAGCCTGCTCCAGGCGCTGGCCGGCGTCGCGCAGCAGGCCGACGACCCCACCAGCTCCGAGCTCGCGCGGATCGTCAACGAGACGCGCGTCGGTCGCCCGCTCTCGGTGGCGCTGGAGGAGGCAGCGATCCGCATGGCGAACGAGGACTTCAGCTGGGTCTCCCAGGCCATCACCATCAACCGTGAGGTCGGCGGCAACCTCGCGGACGTGCTCGAGGGCGTCGGCGTCACCATCCGGGAACGGAACCAGATCCGTCGGCACGTCGAGGCGCTCTCCGCCGACGGACGCCTCTCCGGCATCATCCTCGTCGCCCTGCCCTTCCTCGTCGCCGGGTTCCTGCTGCTGACGAACCCCACCTACCTGGCCCCGTTCATCCAGAACCCCCTGGGGATCGCCGCGCTCGTCGTCTGCGCGATCCTGCTCGTCATCGGGACGCTCTGGATGCGCAAGGTCGTGACGATCAGGTTCTGA	MSPALWGPLAVGLALVLGGFVLVAPHRAHLPRSRRRPEAAPEDGALAEAAATATRLVAKAMRRREGSVAIALDLAGVRRRPQDVVFLVLVAFVVLGAMGLLLGGPWLMILFALVAPVATVLWVRVRTSRRRAAFADQLDDTLQLIAGSLRAGHSLLQALAGVAQQADDPTSSELARIVNETRVGRPLSVALEEAAIRMANEDFSWVSQAITINREVGGNLADVLEGVGVTIRERNQIRRHVEALSADGRLSGIILVALPFLVAGFLLLTNPTYLAPFIQNPLGIAALVVCAILLVIGTLWMRKVVTIRF	PGPT0022290_1394	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510	NA	NA
AK001_01581	1512			hypothetical protein	ATGGATCTGGCATCCCGCCTGGCCGCCGCCAAGCGCGTCTCCGGCCAGACGCCCGTCGACCCCGCCGGCCGCCACCGGCTCGACGAGCAGTCGCCCGCCGACGCCGAGCTGACCGTCCCGCTGCCCCCGCAGCAACCCCCGCAGCCGGCGACCCCGGAACGCCCCGAGCGTCCCGCTGCCGAGAACGGCGCCCGGCCGACCCGTCCGGCGACCCCGGACGAGCGGGACCCACTGACGCAGCTCAAGGAGCGGGCCACCAAGGAGCTCTACTCCCGTTTGGGCTCCCGGCTCACCGACCCGCGCCTGGACGAGGAGCAGCTCCACCAGCTCGTCCGCTCCGAGCTCGCCTCCGTCGTCGAGGCGCAGCGCTCCCCGCTGTCGAGCGACGAGCGTCAGCGCCTCATCGTGGAGGTGCGCAACGACGTCCTTGGGCTGGGGCCCCTGCAGGTCCTGCTCGACGACCCGGAGATCAGCGAGATCATGGTCAACGGCCACGACTCCGTGTATGTCGAGCGCGCCGGCCGCCTGCACCGGTCCACGGCCCGCTTCACCTCGGAGGAGCACCTGCGGCAGATCATCGAGCGCATCGTCTCCCGCATGGGCCGGCGCGTCGACGAGGCCTCGCCGCTCGTGGACGCCCGCCTCGACGACGGCTCGCGCGTCAACGCGATCATCCCGCCGCTGGCCTTCCACGGCTCCGCACTGACCATCCGCAAGTTCGCGCAGAACCCCTACACCGTCGAGGACCTGCTGCGGTTCGGCACCATGACCTCGGAGATGTCCGACCTGCTGCGGGCCTGCGTCGAGGCCAAGCTCAACGTCATCGTCTCCGGCGGGACTGGTACCGGAAAGACGACGCTGCTCAACGTGCTGTCCGCGTTCATCCCCGGCGACGAGCGCATCATCACCATCGAGGACGCGATCGAGCTCCAGCTCCAGCAGGAGCACGTGGTGCGGCTCGAGTCCCGCCCGCCGAACCTCGAGGGCCGGGGCGAGATCACGATCCGCGACCTCGTGCGCAACTCCCTGCGCATGCGCCCCGACCGCATCGTCGTCGGTGAGGTCCGTGGCGGGGAGACACTGGACATGCTGCAGGCCATGAACACCGGTCACGACGGGTCGCTGTCCACCGTGCACGCCAACTCTCCGCGCGACGCCGTATCCCGCCTGGAGACGCTCGTGCTGATGGCCGGGATGGACCTGCCGCTGCGGGCCGTCCGCGAGCAGATCTCGTCGGCCGTCGACGTCGTCGTCCAGCTCAGCCGGCTGCGCGACGGGACCCGCCGGATCACCTCGGTCACCGAGGTGCACGGCATGGAGGGGCAGACCGTCACGCTGCAGGACATCTTCACCTTCGACTACGCCGCCGGGACGGACCCCGCGACGGGCCGTTTCCTCGGTCGCGCCCGGCCCACCGGCGTGCGCCCGCGGTTCTCCGACCACATCCAGGAGCTGGGCATCCCGCTGTCGCCCACGATCTTCGGCGCCGACGCTGCGGTTCGGGCGCTGTGA	MDLASRLAAAKRVSGQTPVDPAGRHRLDEQSPADAELTVPLPPQQPPQPATPERPERPAAENGARPTRPATPDERDPLTQLKERATKELYSRLGSRLTDPRLDEEQLHQLVRSELASVVEAQRSPLSSDERQRLIVEVRNDVLGLGPLQVLLDDPEISEIMVNGHDSVYVERAGRLHRSTARFTSEEHLRQIIERIVSRMGRRVDEASPLVDARLDDGSRVNAIIPPLAFHGSALTIRKFAQNPYTVEDLLRFGTMTSEMSDLLRACVEAKLNVIVSGGTGTGKTTLLNVLSAFIPGDERIITIEDAIELQLQQEHVVRLESRPPNLEGRGEITIRDLVRNSLRMRPDRIVVGEVRGGETLDMLQAMNTGHDGSLSTVHANSPRDAVSRLETLVLMAGMDLPLRAVREQISSAVDVVVQLSRLRDGTRRITSVTEVHGMEGQTVTLQDIFTFDYAAGTDPATGRFLGRARPTGVRPRFSDHIQELGIPLSPTIFGADAAVRAL	PGPT0016025_725	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283	NA	NA
AK001_01582	1218			Iron-sulfur cluster carrier protein	GTGAACAACGTCCTGCTCGCCACCGACTCCCGGGCGCTCCTCGACCGCGTGCACGCCGCGGCCGACGGTGCCTGCATCGGGGTGCACGCCAGCCCGCTGCCCACCGACCCCGCCGTGTTCCTCGGCCAGGTCCGCCGCACCGAGCTGCCGGACATCGTCGTCCTCGACGCCACCCAGGCTCGTCCGCAGGCGGTGGCCCTCGCCGGCAGCTTCGACCGGCTCTTCCCCGGCATCGGGCTCGTGCTGGTCGCCGAGCCGGACGACAGCCTCGTCATCGAGGCCCTGCGGGCGGGCGTGCGCGACGTCGTCCCCCCGGACGTGACCGTCGAGCAGATGCGTGAGGTGCTCGCCCGCGTCGGGGACGCCACACGCGTGCGGCGCGGGGCGGGGCACTCCGGCGAGATGGCGCTCGGCGCGGCGAGCTGGGACCCGGTCGTCGACGCCACCGGCCCCAGCCGGGTCATCTCCGTCCTGTCCCCCAAGGGGGGCGTCGGCAAGACGACGGTCGCGACCAACCTCGCCGTCGGGCTGGCCGCTGCCCAGCCCGGGTCGACGGTGCTCGTCGACCTCGACCTGCAGTTCGGGGACGTCGCCACCGCCCTCGGGCTCGAACCGGAGTCGACCCTCGGGGACATCGTCACCCACGGCGGTCACCAGGACCCGATCGCGCTGAAGACGCGGCTGACCCAGCACTCGTCGGGTCTGCTCGTCGCCGGGGCCCCGAGCGATCCGGCCTCCGCCGACGTCGTCACGCCCGAGCACGTCGGAGCCCTGCTGGACCAGCTCACCGAGCTGTTCCCCTACGTCGTCATCGACACCGCCGCCGGCCTCGGTGCCCACACGCTCGCCGCCGGTGACCACACCACGGACCCGTTGCTCGTCACGAGCATGGACGTGCCGGGCGTGCGGGGACTGCGCAAGGAGCTCGACGCCCTCAACGACCTGGGGATGATGACCGACTCGCGGCGCATCCTGCTCAACTTCGCCGACCCCCGGGCCGGCCTGAGCCTCGGCGACGTCGAGGCGACGCTCGGGGTCCGGGTCGACCTGTCGATGCCGCACACGCGCGCCGCGGTCGTGTCCATGAACATGGGCGAACCGCTGACGACCCGCCAGCCCCGCGACGCCGCGGCCAAGGTGCTGCGCAAGCTCCAGGCGACCTACCAGGGCGCCAACGCCCCGCGTGGCCGCAAATCCGGCAAGAAGGTGAGGTCCTGA	MNNVLLATDSRALLDRVHAAADGACIGVHASPLPTDPAVFLGQVRRTELPDIVVLDATQARPQAVALAGSFDRLFPGIGLVLVAEPDDSLVIEALRAGVRDVVPPDVTVEQMREVLARVGDATRVRRGAGHSGEMALGAASWDPVVDATGPSRVISVLSPKGGVGKTTVATNLAVGLAAAQPGSTVLVDLDLQFGDVATALGLEPESTLGDIVTHGGHQDPIALKTRLTQHSSGLLVAGAPSDPASADVVTPEHVGALLDQLTELFPYVVIDTAAGLGAHTLAAGDHTTDPLLVTSMDVPGVRGLRKELDALNDLGMMTDSRRILLNFADPRAGLSLGDVEATLGVRVDLSMPHTRAAVVSMNMGEPLTTRQPRDAAAKVLRKLQATYQGANAPRGRKSGKKVRS	PGPT0016020_995	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016020-cpaE-K02282	NA	NA
AK001_01583	759			hypothetical protein	GTGAACCGTCGCATCATCGCGGCCGTCGTGGCCGCACTCCTGGCGCTCGCCGGGGGCGTGCTCACCTACACCTACGCTGCCGGCGCCGACAGCCGGGCCATGGCCGACCTGGAGCCCACCCCGGTGCTGACTGTCGTGGAGACCGTCTCCGAGGGGACCCCGGCCGACGCGTTGACGCTCGACGAGGACGTCGTGAGCACGGAGGTGCCGGCCGGGACGGTCGTCCCGGGGGCGGTGAGCGACCTCGCCGACCTCGAGGGTCTCGTCGCCACCGCCGACCTGCTCCCCGGCGAGCAGGTCGTGGCCGAGCGGTTCGTCGCCCCCGAGGACCTCGACGGCCCGGTCGAGGTGCCGGAGGGCTTCCACACGCTGAGCCTGCAGCTCAGCACCGAGCGGGTCGTCGGCGGGGCCGTACAGCCGGGCGACACGGTCGGCGTCTTCGTCTCGATGGAGAGCCCGGAGGACGGCGACGACGGGAATGAGGACGGTGAGGACACGACGTCGTCGACACACCTCGTCTTCCACAAGGTGCTCGTCACCGACGTCCGGGGCGGGATCCAGCAGCAGCGCACCGAGGACGGCGAGGAGACCGAGACCGCCCCGGAGGACGCCATCATGGTCACCATCGCGCTGTCCCCGCCGGACGCCGAGAAGTTCGTCTTCTCGGCGGAGTACGCCAGCATCTGGCTCTCCCTCGAACCCGAGGAGGCGAGGGAGGGACAGACACGGGTGGTCGACCCGGAGGTGATCTTCGAGTGA	MNRRIIAAVVAALLALAGGVLTYTYAAGADSRAMADLEPTPVLTVVETVSEGTPADALTLDEDVVSTEVPAGTVVPGAVSDLADLEGLVATADLLPGEQVVAERFVAPEDLDGPVEVPEGFHTLSLQLSTERVVGGAVQPGDTVGVFVSMESPEDGDDGNEDGEDTTSSTHLVFHKVLVTDVRGGIQQQRTEDGEETETAPEDAIMVTIALSPPDAEKFVFSAEYASIWLSLEPEEAREGQTRVVDPEVIFE	PGPT0016005_1778	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279	NA	NA
AK001_01584	1035			hypothetical protein	ATGCAACGGCTGACCGACCGACTCCGCGAGCTCCGTGCCACCGCCGACCGTGGAGCCTCCGCCGTCCTGGTGGGCCTGCTGGCCATCCCGCTGTTCGCTGTCGCCGCGCTCGCCGTCGACATCGCCGCGATGCACGCCGACAAGCAGATCCTGCAGACCGGTGCCGACGCCGCGGCGCTCGCCGTCGCGCAGGACTGCGCCCGCGACGAGTGCACCGGCACCGACGCGACGGCCGAGGAGCTGGCCGACGCCAACACCCCCTTCGGCGGGGACCCGACCGCGACCATCACGACCCTCGACGAGCCCGCCGGCGTGGTGACCGTGCGGACGGACTCGTCGCGGAACCACTTCTTCGCCCCCGTGATCGGGCAGGACGAGGGCGACATCGCAGCGGTCGCGACCGCCCGGTGGGGCTACCCCACCGCCGGATCCGGGATGCTCCCGTACATCCTGTCGTACTGCGAGATCCTGCATCAGGCCGGCGCCACCGAGGTCCGGGAGGATGGCGAGCTCGTCGGCATCGACTTCCCCGAGGACGCCGACCCGGTGACCATGCTGTTCACGAAGAACAGCGACTCGGACTGCACCGGACCGTCAGGCAACGCTCTCCCCGGCGGGTTCGGCTGGCTCGAGGCCACCGCCGATTGCACCGGGCCGGTCGCGGAGGTCGGCGACTGGGTGCCGTCCGATCCCGGCAAGAGCGAACCGTCGAACTGCAGTGCCGCCGACTTCGCGGACATGATCGGCGAGACGATCCTCATTCCCATCTTCGACGACGAGCGCGGCTCCGGGGCCAACGGCGAGTACCAGCTGTTCGGCTGGGCCGCGTTCACCCTCGAGGAGTACTCCTTCGTGAAGAACTCCAGCCCCGGCACGACCGCCGACCTGTGCGACGACGGCAAGCCGGGCAAGGACGCCAACTGTCTGCGCGGCACGTTCGAGCGCTTCGTCGACGTCACCGGCGGGTTCGAGCTCGGCACCGACGGACCCCAGCTCGGCGCCGCCGTCGTCGAGCTCACCCTGACTGAAGACTAG	MQRLTDRLRELRATADRGASAVLVGLLAIPLFAVAALAVDIAAMHADKQILQTGADAAALAVAQDCARDECTGTDATAEELADANTPFGGDPTATITTLDEPAGVVTVRTDSSRNHFFAPVIGQDEGDIAAVATARWGYPTAGSGMLPYILSYCEILHQAGATEVREDGELVGIDFPEDADPVTMLFTKNSDSDCTGPSGNALPGGFGWLEATADCTGPVAEVGDWVPSDPGKSEPSNCSAADFADMIGETILIPIFDDERGSGANGEYQLFGWAAFTLEEYSFVKNSSPGTTADLCDDGKPGKDANCLRGTFERFVDVTGGFELGTDGPQLGAAVVELTLTED				NA	NA	NA	NA	NA
AK001_01585	408			hypothetical protein	ATGACGATCCACCGCACCCCGCCCGCGACCGACCGCGGCGCAGCCGCCGTCGAGTTCGCCCTCGTGGCGCCGGTGCTCATCGCGCTGGTCCTGGGCATCGTGAGCTTCGGGTACGCCTACCACGTGCAGACGGTGCTCGGGAACGCCGCCCGGGACGGGGTGCGCGTGCTCGCGCTCTCCGACGGTGCCGATCCCGCGACCGAGGCCCGCACCGCAGCGATCTCCTCAGCGGCCCCCTCGGTAGCCCTCACGGCCGCCCAGATCAGCGTCACGCCCGTCGCCGGCTGTGACGCGGACGGCGCTCCGGAGAACGCCAGCGTTTCCATCACCGTGCCAGACGTTTCGCTGCTCGGCGGATTTCTGGCCGTCGACCTCACCGGATCGGGGACCATGCGATGCAACGGCTGA	MTIHRTPPATDRGAAAVEFALVAPVLIALVLGIVSFGYAYHVQTVLGNAARDGVRVLALSDGADPATEARTAAISSAAPSVALTAAQISVTPVAGCDADGAPENASVSITVPDVSLLGGFLAVDLTGSGTMRCNG				NA	NA	NA	NA	NA
AK001_01586	219			hypothetical protein	ATGCACCTCCTGAACCTCATCTCTGACCGTTTCATGACCGTTGCCGCTCGCCGCGAGCAGGGCGAGCGGGGCGCCACGGCCGTGGAGTACGGCCTGCTGGTCGGTCTCATCGCCGTGGCGATCATCGCCATCGTGGCCACGCTCGGCGGTCAGCTGAACACGCTCTTCACCGAGGTCAGCACCCAGCTCGGTGGGGCGATCGACGAGCTGGACGGCTGA	MHLLNLISDRFMTVAARREQGERGATAVEYGLLVGLIAVAIIAIVATLGGQLNTLFTEVSTQLGGAIDELDG				NA	NA	NA	NA	NA
AK001_01587	669			hypothetical protein	ATGATTGCCCGAGGCCTTGAACATCTCGTGACTCTTCCGCTCTCCGCCACCGCGGTCGCCACGGCGCTGTGCTGCGCCCTCGTCGCCGCCCTCCTCACGCCCTGGGCGCGCCGGTTCGTCGTCAGCGAGTCCCGGCTGCTCCGCGGATGGGTCACGGGCCCGCTCGCGGGCCTCGGAGGCGTCGGCGCCGCGCTCGTCGCGACGTCCTGGGCGGAGCTGGTCGCCGTCGCCGTCGTAGCCGTCGCGGCGGGCCTGCTGATCCCGATCGACCTGGCGACCTACCGCCTGCCCGACGTCGTCGTCGGGTCGGCCGCGCTCGGGCTCCTGGCCGGGCTCGTCGTCGCCGCGGCGCTCGACGACGACTGGTCCCGGCTGCTCACGGCGGTGCTCGCCGGCGTCGCTCTGTTCGCCGTCTACCTCGTGCTCGCGATGATCTCGCCCAGCAGCCTCGGGTTCGGCGACGTCAAGCTCGCCGGCGTGCTGGGTCTCCTGCTCGGCTGGTGGGGGTGGCGGGCCGTCGCGTACGGGACGCTGGCGGCGTTCGTCGTGTTCGCCGTCGGCGCGCTGGTGCTCCTGGCCGCGCGTCGCACCTCGCTGCGCGACGACCTGCCCTTCGGGCCCGCCATGATCCTCGGCGCGACCCTCGGCCTCGCCGCGGTGGCCGCCTGA	MIARGLEHLVTLPLSATAVATALCCALVAALLTPWARRFVVSESRLLRGWVTGPLAGLGGVGAALVATSWAELVAVAVVAVAAGLLIPIDLATYRLPDVVVGSAALGLLAGLVVAAALDDDWSRLLTAVLAGVALFAVYLVLAMISPSSLGFGDVKLAGVLGLLLGWWGWRAVAYGTLAAFVVFAVGALVLLAARRTSLRDDLPFGPAMILGATLGLAAVAA	PGPT0015925_2543	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654	NA	NA
AK001_01588	819	kduI	COG3717	4-deoxy-L-threo-5-hexosulose-uronate ketol-isomerase	ATGGAACAGCGTTACGCCACCAACCCGGAGCAGATCCCCGGCCTGACGACGCAGGGGCTGCGCGACAAGTTCCTCGTCGAGGACCTCTTCGTGCCCGGCGAGGTCCGGACCGTCTACACCCACCACGACCGCATCGTCCTGGGCGGTGCCCTGCCCGGCGCCGAGCCGGTCGCCCTGCCGAACCCGGAAGAGCTGCGCGCCGAGTACTTCCTGCAACGCCGCGAGGTGGGGATCGTCAACGTCGGGTCCACGGGCACCGTCGTGGCCGACGGCGAGACCTACGAGATGCCGACCCGCTCCCTGCTGTACATCGGCAGCGGCACCCAGGACGTGACGTTCGCGGGGGAGGGCGCGGCGTTCTACCTGTTCTCCGCCCCGGCCCACACCTCGTACCCGACCGTGCTGACGCTGCCCGGCGAGGGCAACACGCTCGAGCTGGGCGACCAGGTCACGTCGAACCGGCGCTCGCTGGAGCAGGTCGTGCACGCCAAGGGCGTGCAGTCCTGCCAGGTCGTCATGGGCGTCACGCGGCTGCACGAGGGCTCGATGTGGAACACGATGCCGGCGCACACCCACGACCGGCGCACCGAGTGCTACCTGTACTTCGACCTGCCGGCCGACGCCCGGGTGCTGCACCTGTGCGGCGAGCCCACCGAGACGCGGCACCTGACCGTGGCCGACCGCCAGGCGATCATCTCGCCGTCGTGGTCGGTGCACTCCGGGGTCGGCACGGCCAACTACTCGTTCGTCTGGGCGATGGCGGGGGAGAACCAGGACTTCACCGACATGGACGCGGTGCCGCCGACCGAGATCCGCTGA	MEQRYATNPEQIPGLTTQGLRDKFLVEDLFVPGEVRTVYTHHDRIVLGGALPGAEPVALPNPEELRAEYFLQRREVGIVNVGSTGTVVADGETYEMPTRSLLYIGSGTQDVTFAGEGAAFYLFSAPAHTSYPTVLTLPGEGNTLELGDQVTSNRRSLEQVVHAKGVQSCQVVMGVTRLHEGSMWNTMPAHTHDRRTECYLYFDLPADARVLHLCGEPTETRHLTVADRQAIISPSWSVHSGVGTANYSFVWAMAGENQDFTDMDAVPPTEIR	PGPT0018245_66	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018245-kduI-K01815	NA	NA
AK001_01589	765	kduD		2-dehydro-3-deoxy-D-gluconate 5-dehydrogenase	ATGATCCTCGACCAGTTCCGGCTCGACGGGAAGGTCGCGCTCGTGACGGGCACGAGCCGCGGCCTCGGCCAGGGCGCCGCCGTGGCGCTCGCCGAGGCCGGGGCCGACGTCGCGCTCCTGGACCGCAGCGAGCCCACCGAGACGATCTCCCGCATCAAGGCCCTGGGCCGCCGCGTGCACAGCGTGCAGCGGGACCTCGCCACGGCGACGGCGGAGGAGCTCGACGCCGCCGTCGCGGAGGTCGAGGACGTGCTCGGCCCGGTCGACGTGCTCGTCAACAACGCCGGCACCATCCGTCGGGCGCCGGCCGCCGAGCACCCGGCCGAGGACTGGGACACGGTGCTGGCCGTCAACCTCGACGCCGTGTTCCACCTGTCCCGCGCCGTCGGGCGGGGCATGCTCGAGCGCGGGTCGGGGAGCATCGTCAACGTCGCCTCGATGCTGTCCTTCCAGGGCGGCATCCTCGTCCCCGGCTACGCGGCCTCCAAGCACGCCGTCGTCGGCCTGACCAAGGCGCTCGCCAACGAGTGGGCCGGGCGCGGCGTCAACGTCAACGCCGTCGCCCCCGGCTACATGGCCACCGACAACACCGCCCCCATCCGGGCGGACGCCGAGCGGGAGCAGTCCATCTCGGCGCGCATCCCCGCGGGCCGATGGGGCACCCCGGAGGACCTCGCCGGGATCTTCGTGTACCTCGCCTCGCCCGCCTCCGCCTACGTGCACGGCGCCGTCGTCCCCGTCGACGGCGGCTGGCTCGTGCGCTGA	MILDQFRLDGKVALVTGTSRGLGQGAAVALAEAGADVALLDRSEPTETISRIKALGRRVHSVQRDLATATAEELDAAVAEVEDVLGPVDVLVNNAGTIRRAPAAEHPAEDWDTVLAVNLDAVFHLSRAVGRGMLERGSGSIVNVASMLSFQGGILVPGYAASKHAVVGLTKALANEWAGRGVNVNAVAPGYMATDNTAPIRADAEREQSISARIPAGRWGTPEDLAGIFVYLASPASAYVHGAVVPVDGGWLVR	PGPT0018065_635	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018065-kduD-K00065	NA	NA
AK001_01590	1287	ugl		Unsaturated chondroitin disaccharide hydrolase	ATGTCCTCCACCGACGTGCGCGACTCCGCGCCGGGCGCCGACCCGCGACCTGCCGACCGCCCCGGGGCGCTCGCGGCCGCCGTCGACGCCGCCGTGGCCACCGTGCGCCGCAACGCCGCGGCGTTCGGCGCGCTGTACCCCGACTCCACGACCCGCGACGACCGCTACCCGCTGCGCCCGGCCACCGACCGGTTCGCCGAGGGCGCCAACCGCGACTGGACCACCAGCTTCTGGCCCGGCATGCAGTGGCGTGCCGTCGAGCTCACCGGTGACGCCGACCTGCGGACCGCCGCCCTGGCGCACGCCGCCGACTTCGCCCGCCGCGTGCACGCCGGGGAGGACCTCGACACGCACGACCTCGGGTTCCTGTACACGCTGTCCTGCGTCGACGCGTGGCGGCTGGCGGGCGACGAGGCCGCCCGGGACGCGGCGCTCGCGGCGGCGGACCACCTCATGACGCGGTTCCTGCCCTCGGCGGGGATCATCCAGGCGTGGGGCGACCTGTCCGACCCGGCCCAGCGTGGCCGGACCATCGTCGACAGCCTCATGAACATGCCGCTGCTGACCTGGGCCACGGAGATCACCGGCGACCAGCGGTACGCCGACGTCGTGGCCCGGCACGTGGTGCAGGTGCGCACCCACCTGCTGCGCGACGACGACTCGACCTTCCACACCTTCTACTGGGACCCGGAGACCGGTGAGCCGCTGCGCGGCGGCACCGAGCAGGGTGCCGGCGACGACTCCTGCTGGGCGCGCGGGCAGGCGTGGGGCATCTTCGGGTTCGCCCTGCACCACCGCACCTCGGGCGACCCGGAGTCGCTGCGGGCCTCGGAGCGCTGCGCCGAGTACTTCCTCGCGCACCTGCCCGCCGACGGCGTGCCGTTCTGGGACCTGGTGTACTCCGACGGAGCGGACGCGCCGCGCGACTCGTCCTCCGGGGCGATCGCGGCCTGCGGCCTGCTGGAGCTCGCCTCGGTGTCGACCGACGCCGACCGCGCGGCCCGGTACGCCGCCGCCGCGCGGCGGATGGTCGCCGACCTGATCGCCGGGTACACCCCGGCCGCGCCCGAGGACGCCGACGCGCTGCTGCTGCACTCGGTCTACGACGCCCCGAAGAACAAGGGTGTGGACGAGGGCTGCCTGTGGGGCGACTACTACTACCTGGAGGCGTTGACCCGCCTCACGCTGCCCGGCTGGGTCTCGCCGTGGTGGCCGGCCGCCGCGGCCGTGCCCACCCACGCCACGCTCACCGACACCGCCACCGAACCCGACGGAGGGACCGCATGA	MSSTDVRDSAPGADPRPADRPGALAAAVDAAVATVRRNAAAFGALYPDSTTRDDRYPLRPATDRFAEGANRDWTTSFWPGMQWRAVELTGDADLRTAALAHAADFARRVHAGEDLDTHDLGFLYTLSCVDAWRLAGDEAARDAALAAADHLMTRFLPSAGIIQAWGDLSDPAQRGRTIVDSLMNMPLLTWATEITGDQRYADVVARHVVQVRTHLLRDDDSTFHTFYWDPETGEPLRGGTEQGAGDDSCWARGQAWGIFGFALHHRTSGDPESLRASERCAEYFLAHLPADGVPFWDLVYSDGADAPRDSSSGAIAACGLLELASVSTDADRAARYAAAARRMVADLIAGYTPAAPEDADALLLHSVYDAPKNKGVDEGCLWGDYYYLEALTRLTLPGWVSPWWPAAAAVPTHATLTDTATEPDGGTA	PGPT0019355_235	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_GLYCOSIDE_UTILIZATION	PLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0019355-ugl|EC_3_2_1_180-K18581	NA	NA
AK001_01591	726			hypothetical protein	ATGAGCACGAGCACCCGACACCAGGGCCGCCGTCGGCTCGTCAGCCAGGAGATGTACGAGACGGTGTTCGGCACCGTGTACATCGGGCTGGCCACCAACGTCCTGCTCGTGGTGGCCACGCTGCCGCTGCTCGTGGTGCTGCTGACCACCGACCCGACCGTGTCGTGGCCGGCGCTCGCGCTGCTCGCCCCGCTGCTGGCCCCGGCACTGGTCGCGGCCTTCGCGGTCTTCACGGCGTTCTCCACCGACGGCTCGACCGCCGCGGTGCGGACCTTCTGGCGGGCCTACCGCCGGCACGCGCGCCGGGCGCTGGCGATCGGCGCGCTGGCGAGCGCCGTCGTCGTCGTCCTCGCCGTGGACGTCGTCGCCGTCTGGGGCGCTCGGATCGGCGCCGCCGCGATCCCGGTGTTCGGCACCCTGCTGGTGCTGGCCGTGCTCACCGCCCTGGTCGCGCTCGCCGCGACCCCGGTGCTGCCCGGGGTGCGGCTGCGCGACCTGCTGCGCACCAGCCTCTACCTCGCGGTGCGCCGCTGGTACCTCAGCGTCACCGCGCTGGCGGTGCTCGGCCTGCTCGCCGGCGTGGTGGTGACCAGCCCCGCCATCGGGCTCGGGTTCGCCACCGCACCCCTGCTGTTCGTCGTCTGGGGCGGTTGCCGCGTCGCGCTGCGGTCCGTCGTGCCCGACGGCGCCACCCCGGCCGCGCACGGCACCGCCGTCCCCTCCTGA	MSTSTRHQGRRRLVSQEMYETVFGTVYIGLATNVLLVVATLPLLVVLLTTDPTVSWPALALLAPLLAPALVAAFAVFTAFSTDGSTAAVRTFWRAYRRHARRALAIGALASAVVVVLAVDVVAVWGARIGAAAIPVFGTLLVLAVLTALVALAATPVLPGVRLRDLLRTSLYLAVRRWYLSVTALAVLGLLAGVVVTSPAIGLGFATAPLLFVVWGGCRVALRSVVPDGATPAAHGTAVPS				NA	NA	NA	NA	NA
AK001_01592	897	araQ_3	COG0395	L-arabinose transport system permease protein AraQ	ATGACCACCGTCTCCCCGACGACCTCCGTCGACGCGTCGACCTCGCCGCTGCGGCCCGCCCAGGTGCGCGCCCGGTGGAAGCGCCAGGCGTCCCGCGCCGTCGGCTACGCCGCGCTGCTCGTGGCCGCCGCCGGCATCCTGCTGCCGTTCGTGTGGATGGTCATCTCCTCGCTGAAGGAGAACAACCAGGTCTTCACCGTGCCGCTGCAGTGGATCCCGGATCCCGTGGTGTGGCAGAACTACATCGACATCTGGGCGAAGTCCGACATGGTCACCTGGATCAAGAACACGCTGATCCTGTCCGTGAGCGTGACGTTCCTGCAGGTGCTGACCGGCAGCTTCGCCGCCTACGGGTTCTCCAAGATGCGGTTCCCCGGCCGCGACGCGCTGTTCCTGCTGTACGTGGCGACCATCGCGGTGCCGTGGCAGGCGTACATGATCCCGCAGTTCGTCATGCTCTCGAACATCGGGCTGTCGAACACCCTGTGGTCGATCCTGGCGCTGCAGACCTTCAGCGCGTTCGGCGTGTTCCTCATGAAGCAGTACTACGAGTCGATCCCGGAGTCGCTGTCCGAGGCGGCCCGGATCGACGGCATGAGCGAGTACGGCATCTGGCGGCGCATCATCCTGCCGCTGTCCACGCCGGCGATCGCCAGCCTGACGCTGCTGACCTTCGTCAACACCTGGAACGACTACCTCGGGCCGCTGATCTACCTGCGCAGCCCGGAGCTGTGGACGCTGCAGCTCGGTCTGCAGACGTTCGTCGGGCAGTACAACGCCGAGCACGCGCTCATCATGGCCGGCTCGGTGATCTCGGTGCTGCCGATCGCCGTGATCTTCCTGCTCGGGCAGAAGTTCTTCGTCCGCGGGATCGCCACCACGGGGGTCAAGGGATGA	MTTVSPTTSVDASTSPLRPAQVRARWKRQASRAVGYAALLVAAAGILLPFVWMVISSLKENNQVFTVPLQWIPDPVVWQNYIDIWAKSDMVTWIKNTLILSVSVTFLQVLTGSFAAYGFSKMRFPGRDALFLLYVATIAVPWQAYMIPQFVMLSNIGLSNTLWSILALQTFSAFGVFLMKQYYESIPESLSEAARIDGMSEYGIWRRIILPLSTPAIASLTLLTFVNTWNDYLGPLIYLRSPELWTLQLGLQTFVGQYNAEHALIMAGSVISVLPIAVIFLLGQKFFVRGIATTGVKG	PGPT0016540_2592	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_01593	963	ngcF	COG1175	Diacetylchitobiose uptake system permease protein NgcF	ATGGCGACGATCGCCGTCGACGACCGCAGCAGCGGGGCGTCCGGCCCGAGCCCCGCGGCCCCGCCCGGCCCCCGTCGGCGCCGGCCGGGCAGTCGGCTCAAGCTGCGCAACACCCTCATCGGGTGGAGCTTCATCCTGCCGAACTTCCTCGGCTTCGGTCTGCTGACCCTCATCCCCGTCGTCACGCTGTTCTACCTGTCGCTGACGGAGTGGAACGTGTTCGGCGGCGCCGAGTTCATCGGCCTGGACAACTACACGCGGATGATCGGCGACACCAGCTATCACACCGCGCTGTTCAACACGATCTACTACTCCGCCGTCCACATCCCCGCCACGCTGGTGGCGTCGCTGGGCCTGGCGCTGCTGCTCAACCGCAAGCTGCGCGGCGTGGCGTTCTTCCGCACGGTGGCGTTCTTCCCGTACATCACCTCGATCGTCGCCATCGCCGTGGTGTGGAACATGCTGTTCAGCCCGGAGTACGGCCCGATCAACCAGTTCCTGACGTTCCTCGGTGTGGACGACCCGCCCGGGTGGACGACGTCGGCGGACTCCTCGATGCCCGCCGTGATCATCGTCGGCGTGTGGCGCGAGATGGGCTACTACATGCTGCTGCTGCTCGCCGGTCTGCAGACCGTGCCGGGCGAGCTCTACGAGGCCGCCCGCGTCGACGGCGCCGGCGCCTGGGGCCGTTTCTGGAACGTCACGCTGCCGTGCCTGCGCCCCACGATGTTCTTCGTCACCGTGATCCTGACGATCAACAGCCTCAAGGTCTTCGACCTCATCCTCGTCATGACCGACGGCGGACCCGGCCAGTCGACGCTGGTGCTGAGCCAGTTCATCTACTCCAAGGGCTTCGAGGAGAACCAGTTCGGGTACGCCTCCGCGGTGGCCGTGACCCTGTTCTTCATCTGCATCGCCGTGACGATCTTCCAGTTCTTCTGGAACCGCAGGAAGGACGCCTGA	MATIAVDDRSSGASGPSPAAPPGPRRRRPGSRLKLRNTLIGWSFILPNFLGFGLLTLIPVVTLFYLSLTEWNVFGGAEFIGLDNYTRMIGDTSYHTALFNTIYYSAVHIPATLVASLGLALLLNRKLRGVAFFRTVAFFPYITSIVAIAVVWNMLFSPEYGPINQFLTFLGVDDPPGWTTSADSSMPAVIIVGVWREMGYYMLLLLAGLQTVPGELYEAARVDGAGAWGRFWNVTLPCLRPTMFFVTVILTINSLKVFDLILVMTDGGPGQSTLVLSQFIYSKGFEENQFGYASAVAVTLFFICIAVTIFQFFWNRRKDA	PGPT0016535_3312	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_01594	1329			hypothetical protein	ATGAAGCGCACGATCCCCACCGCGGCCGGTGCGGCCGCCGCGGTCGTCCTGGCCCTGACCGCGTGCAGCGGCGGCACCGCCGACGAGGCCGGTGGCGGCGGCGGTGACGACACCGCGGCGCCCGCCGAGGACGAGGCCGTCACGTTGTCCCTGGCCGGGTGGAGCCTGTCGACCACGCCGGAGTTCCAGACCCTCGCGGACGCGTTCCACGAGGAGAACCCGAACGTGACCGTCGAGCTCCAGGAGTATGACGCCTCGGAGTACGACACCCAGATGACCGCCGACCTGGCGGCCGGCAGCGCCCCCGACATGTACGTGCTGAAGAACCTCAAGAACTTCTGGACGTACTACGACGGCGCGCAGCTCCTCGACGTCTCCGACGTCACCGCCGAGCTCGACCCGGCTACCGGCGGCGCCGACTTCTACGAGGTCGACGGCGCGAGCTGGGCGGTGCCCTACCGCCAGGACTCCTGGTTCCTCTACTACAACCAGGACCTGTTCGACGAGGCCGGCGTGGACGCCCCGGACGGCTCGTGGACCTGGGACGACTACGTCACCGCGGCGCAGGACGTCACCGAGGGGCTCGGGGACAGCGACGCGCTCGGCGCCTACCAGCACTCCTGGCAGTCCGTGGTGCAGGGCTTCGCCCTGGCCCAGAGCGAGGGCGCCGAGCTCACCAGCGGCGACTTCGGCTACCTCGAGCCGTTCTACGACCGTGCCGTCGAGCTGCAGGACAGCGATGCCCAGGTCGACTTCGGCACCGTGACCACGAACCAGCTCACCTACCAGGCGCAGTTCGGCACCCAGCAGGCCGCCATGATGCCGATGGGCTCCTGGTACGTGGCCACGCTGCTGGCGCAGCAGGAGTCCGGCGACGCCGACGAGTTCAACTGGGGCATGGCCCCGATCCCGCAGGTCGACTCCTCGACCACCGGCATGGACGCCACCCCGGTGACGTTCGGCGACCCGACCGGTCTGGGCATCAACCCGGCCATCGACGAGGCCAAGGTCGACGCCGCGAAGGAGTTCCTGGCCTTCGCCGCCGGTGAGGGCGGCGCGGACGCGCTCGCCGCGATCGGCATCACCCCGGCCCTGCTGAGCGACGGCGTCGTGGACACCTACTTCGGCCTCGACGGGGTCCCGGGCGACGAGCTGTCGCAGTTCGCGTTCGCCACGCACGACACCCGCCCGGAGAACCCGGTCGACCCGGACACCGCCGCCCTGCAGAACATCCTGGGCGACACCCACTCGGAGATCATGTCCGAGTCGTCGTCCGTGGCCGACGCGATCGCCGGCGCCGAGGACCGCGCCGCCTCCGAGGTCGGCTGA	MKRTIPTAAGAAAAVVLALTACSGGTADEAGGGGGDDTAAPAEDEAVTLSLAGWSLSTTPEFQTLADAFHEENPNVTVELQEYDASEYDTQMTADLAAGSAPDMYVLKNLKNFWTYYDGAQLLDVSDVTAELDPATGGADFYEVDGASWAVPYRQDSWFLYYNQDLFDEAGVDAPDGSWTWDDYVTAAQDVTEGLGDSDALGAYQHSWQSVVQGFALAQSEGAELTSGDFGYLEPFYDRAVELQDSDAQVDFGTVTTNQLTYQAQFGTQQAAMMPMGSWYVATLLAQQESGDADEFNWGMAPIPQVDSSTTGMDATPVTFGDPTGLGINPAIDEAKVDAAKEFLAFAAGEGGADALAAIGITPALLSDGVVDTYFGLDGVPGDELSQFAFATHDTRPENPVDPDTAALQNILGDTHSEIMSESSSVADAIAGAEDRAASEVG	PGPT0016545_5285	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_01595	1917			hypothetical protein	ATGCTCGAGTCGACGACGCTCGCCGCAGGGTCCGCCGCCGCGGACGCCTGGGACCGGGACCGGTGGGCCGCCCACGCGGACCGGATGCTCGCGGCCGTCGTCCCGTTCACCTCTCCCGGTGGCTCGCTGGTCACCCTGCCCGGTGCCGAGGGCGGCTACGGCCGGGCGATCGACGGCCTCGAGGGCTTCGCCCGCACCTTCCTGCTCGGCGGCTTCCGCCTCGCGGGGGAGCGAGGCGCGGACCCCCACGGCTACGCCGACCGGTTCGCCACGGGCCTGGACGCCGGCACCGACCCGCACCACCCGGAGCGCTGGCAGCGCCTGTCCGAGCACGCCCAGGCCAAGGTCGAGGCCGCCTCCATCGCGCTGGTGCTCGACATGACGCGCCCCTGGATCTGGGACCGGCTCGACGCCCGGGTGCAGGAGCAGGTCGTCGACTACCTCGCCGAGGCCGTCGGCGACGACACCTATCCCCGCATCAACTGGGTCTGGTTCCGCCTCGTGGTGCAGACGTTCCTGCGCGGCGTCGGCGGGCCGCACTCCGTGGCCGAGATGCGCGAGGACCTCGCCACCCACGACACCTTCGCCCGTCGCGACGGCTGGCTCGCCGACGGCGCGGAGCGGTCCTTCGACCACTACAACGGCTGGGCCCTGCACCTGTACCCGACGCTCTGGGCGCGGATGGCCGGTGCCGCCGATCTGGCCGCCGCGCGACGCGCGGACGACGTCGCCCGGCTCGACCGGTTCCTCACCGACGCCCTGGCGCTGGTCGGCGGGGACGGCTCCCCGCTGGTCCAGGGCCGGTCGCTCGCCTACCGCTTCGCCGCCGCCGCGCCGTTCTGGGTCGGTGCGATCGCCGAGGTCCCCTCGCACGCGCCGGGCCGGCTGCGCCGTGCCGCCTCCGCCGTCGTCGGCCACTTCGCCGACCACGGCGCCCCCGACGACGACGGGCTGCTCACGCTGGGCTGGCACCACGCCTGGCCCCGGATCGCCCAGGCCTACTCCGGTCCCGGCTCGCCGTACTGGGCGAGCAAGGGGATGCTCGGCCTCGCGCTGCCCGCCGACCACCCCGCCTGGACGGCCCCCGCCGAGCCGCTGCCCGTCGAGTCCGGCGACGTGCTGCGCACCGTCGCCGCCCCCGGCTGGATCGTCTCGGGCACCCGCGCCGACGGGATCGTGCGGGTCGTCAACCACGGCACCGACCACGCCCTGCCCGGCGCCGACGTCGGCGACTCGCCGTTGTACGCGCGGCTCGGCTACTCGACGGCCACCAGCCCGTGGCTCGACGAGGCGAGCTGGGCCTCCCCGGCCGAACAGTCCGTGACCCTGCTGGACGCCGCGGGACGGGCCAGCCACCGCGCCGGGTTCGAGACCCTCCGCGCACCGGACCTCGCCGCCGACGGCGGTACCCCGGTCGCGGTCGCCGCCTCCCGCGCCGCCGCGCACTGGCTCGACGTCGCCCCCGGGCAGCGCGACCACGGCTCCGGACGCCACGGCACGACGGCGCCGGCCGGCACGATCACGACCGCCTCGCTGGTCCGCGGCCCCTGGGAGGTGCGCTGCGTGCGCGTCGAGGAGGTGCCCGACGGCGCCTCCCCGGTCGCGCTGCGGGTCTCCGGCTGGCCCACGGTCGCCGGCGACGGGCTCGAATCCCGCGTCGACCCGCTCCTCGGCGACTGGCAGCCGGTCGTCACCGAACGTGCCGACGCCAGCCCGCTGGGCGACCCCGCGCGCGTGCCGGCGCTGGACACCGCGGTCGAGACCGGACGGTGGCTCGCGGCGCTGGTGACCCTGCGCGGCGACGTCCCCGACCGACCCGACCCCCCGGCGGACGACCCCGCCGCCCTCACGCTCGACGGCACCGACGCCGTCGTCCGATGGCCCGACGGCGTCACCACGACGACCCGGCTGGTCTGA	MLESTTLAAGSAAADAWDRDRWAAHADRMLAAVVPFTSPGGSLVTLPGAEGGYGRAIDGLEGFARTFLLGGFRLAGERGADPHGYADRFATGLDAGTDPHHPERWQRLSEHAQAKVEAASIALVLDMTRPWIWDRLDARVQEQVVDYLAEAVGDDTYPRINWVWFRLVVQTFLRGVGGPHSVAEMREDLATHDTFARRDGWLADGAERSFDHYNGWALHLYPTLWARMAGAADLAAARRADDVARLDRFLTDALALVGGDGSPLVQGRSLAYRFAAAAPFWVGAIAEVPSHAPGRLRRAASAVVGHFADHGAPDDDGLLTLGWHHAWPRIAQAYSGPGSPYWASKGMLGLALPADHPAWTAPAEPLPVESGDVLRTVAAPGWIVSGTRADGIVRVVNHGTDHALPGADVGDSPLYARLGYSTATSPWLDEASWASPAEQSVTLLDAAGRASHRAGFETLRAPDLAADGGTPVAVAASRAAAHWLDVAPGQRDHGSGRHGTTAPAGTITTASLVRGPWEVRCVRVEEVPDGASPVALRVSGWPTVAGDGLESRVDPLLGDWQPVVTERADASPLGDPARVPALDTAVETGRWLAALVTLRGDVPDRPDPPADDPAALTLDGTDAVVRWPDGVTTTTRLV				NA	NA	NA	NA	NA
AK001_01596	1962			hypothetical protein	ATGGCTACCGCAGAACGCTTCACCGGGCCCCTGGCCGCCGCCGTCGGCGCCGAGGAGGCCCACCACACCGCGCTCCGGGAGCTGCTGCGCCCACCCGGGACCGCGCTCCCGCTCGCCCCGGCCACCGACCGCGGCGTGTGGGAACCCGGCACAGGTGCCCTGCACCGCGCGTCCGCCGCGGCCGTCGTCGACCGCGCCCGCTCCGACCTCGGCACCCCCTGGCCGCAGCCGCTGGCCAGCACCGCCGTCCGGGTGCACCGCGACGGCGACCGCGACACCCACGAACAGCTCGTCTTCACCCGTCAGCGCCGGCTGTCGCGGGCCGTGGTCGCCGCCGCCGTGACCGGCGACGACGCCTGGACCGACGAGGTCGCCGACGGGCTGTGGATGCTGTGCGAGCAGAGCTCGTGGTGCTGGCCCGCCCACGACGACACCCGGGCCGTCCACGGCGCCGTGCTGCCCACCGTCACCGACCCGTTCCTCGACCTCGGGGCCGGTGAGGTCGTCGGCCAGCTCGCCTGGACCGACCACCTGCTCGGCGCGGCCCTCGACGCCCGCTACCCCGGCCTGCGCACCCGCCTGCGCCACGAGGCCCGCACCCGCGTGATCGAGCCGTTCCTGCGCCGTCGCGACTGGCACTGGCTCGGCCTGGACGGGCACGTGCACAACTGGAACCCGTGGATCCACGGCAACGTGCTCCTCGCCGCCCTGCGCCTCCTCGACGACCCCGACGACGCCGCCGACCGCGCCGTCGTCGTCGACCTGTGCCTGCAGGGCATCGACCGGTACGTCGCCTCCCTACCCGCCGACGGCGCCATCGACGAGGGCTACGGCTACTGGTGGAACGGCGCGTGCCGCACGCTGGAGGCGCTCGACGTGCTCCGGCACGCCACCGGCGGCGCGCTCGACGCCCTCGACCCCGCCGTCGTGCCGCCCGCCCTGCGCGAGACCGTCGCGTTCCCGCACCGCATGCAGCTCGGCGGGTCCTGGTACCTGTCCGTCGCGGACTCCCAGGCGCGGCCCACCGACGTCCACCCCTGGCACGCGCTGCACCGCGCCGCCCGCGCCGTCGGGGACGCCGACGCCGCCGCCTACGCCGCGGCCCAGGTGGGTCCCCGCGACCCTGTGGCCGACCCCGGGGCCGGACTCGGGCGGCTGCTGCGCGGCCTGACCGACACCGCCTGGCACGACGCCGTCGCCGCCGGGGCGGACCCGCCCCTGCCCCGCCGCACGTGGTGGGGGTCCACCCAGGTGCTGCTCGTCCGCGAGCGCCCCGGCACCCCCGACGGGCTGGCGCTCGCCGCCAAGGGCGGCCACAACGGCGAGGCGCACAACCACAACGACGTCGGCTCCGTCGTCGTCGCGTCCGACGGCGTCCCGGTCGTGGTGGACGCCGGCCGCCCCACGTACACCGCGCAGACGTTCGGGCCCGACCGCTACGACATCTGGACGATGCAGTCCTCCTGGCACGGCGTGCCCGAGGTGGCGGGTACCGCCCAGGGTGTCGGCCCCGCGTTCGCGGCCTGCGACGTCGCGGTCCTGACCGACGACGGCGTCGAGGGGCTCTCCCTCGACCTCGCCGGCGCCTATCCCGTGGCGGGGCTCGCGTCCTGGCGGCGCAGCACCCGCCTGGAGCGGTCCGACGGCGCCGCGCGGGTCGTGGTGGCCGACGCCTGGGACCTCGCCCCGGACGCGGGCCACGGACCGACGACCGTGCGGTTCCTGCTCGCCGGGGACGTCACGCTCACCCCGGGACGCGCCGTCGTCCGACCGCTCGAGGACGCGACGCCCGTGGAGCTGACCTGGCCCGCCGAGGTGCCCGCCGCGCTCGTGGACCGGCCGCTGGACGACCCCCTGCTCCGCGACGTCTGGGGCGACCGGCTCACCCGGCTCGACCTCGACGTCACCGACCGACACGACCTGCGCACGGTCGTGGCCCTGACGCCCCGGGAGGGCTCGTGA	MATAERFTGPLAAAVGAEEAHHTALRELLRPPGTALPLAPATDRGVWEPGTGALHRASAAAVVDRARSDLGTPWPQPLASTAVRVHRDGDRDTHEQLVFTRQRRLSRAVVAAAVTGDDAWTDEVADGLWMLCEQSSWCWPAHDDTRAVHGAVLPTVTDPFLDLGAGEVVGQLAWTDHLLGAALDARYPGLRTRLRHEARTRVIEPFLRRRDWHWLGLDGHVHNWNPWIHGNVLLAALRLLDDPDDAADRAVVVDLCLQGIDRYVASLPADGAIDEGYGYWWNGACRTLEALDVLRHATGGALDALDPAVVPPALRETVAFPHRMQLGGSWYLSVADSQARPTDVHPWHALHRAARAVGDADAAAYAAAQVGPRDPVADPGAGLGRLLRGLTDTAWHDAVAAGADPPLPRRTWWGSTQVLLVRERPGTPDGLALAAKGGHNGEAHNHNDVGSVVVASDGVPVVVDAGRPTYTAQTFGPDRYDIWTMQSSWHGVPEVAGTAQGVGPAFAACDVAVLTDDGVEGLSLDLAGAYPVAGLASWRRSTRLERSDGAARVVVADAWDLAPDAGHGPTTVRFLLAGDVTLTPGRAVVRPLEDATPVELTWPAEVPAALVDRPLDDPLLRDVWGDRLTRLDLDVTDRHDLRTVVALTPREGS				NA	NA	NA	NA	NA
AK001_01597	1125	araR_2	COG1609	Arabinose metabolism transcriptional repressor	GTGACCCAGGACACCGCACGGGCCCCGCTGCCCGCCGAGCGCGACGCCCACCTGCTCGGGGTGCTCGAGCGCGACGGCGTCGTGCGCGTCGCCGACCTCACCGCCGAGCTCGGGGTCACCGCCGTCACGGTGCGCCGCGACATCGCGCGCCTGGAGCGCGAGGGCCGGCTGGCCCGGGTGCACGGCGGCGCCGTCGCCGTCCGGACGGAGCGGACGGCGGACCGCCGCGAGGACACCCCCGCCGAGACCCCGGACGCCGACCCGCGGACCACCGGTTCCATCGGCGTGCTGGTGCCGTCCCTGGACTACTACTGGCCCGAGGTCGTGCGCGGCATGGAGGCCGAGGCCCGGCGGCACGGACTGCGGATCGTGCTGCGCGGGTCCTCCTACGACACGACGGACGAACGCCCGGCGCTGCGACGTCTGGTCGAGTCCGAGGAGGTCCGGGGCCTCGTCTGCGCGCCGCGGATGGACGGCCGCACCGCCCCCGACGTCGTCGAGTGGCTGGCCGCCTCCGGGGTGCCGCACGTGCTCGTCGAGCGCGAGGCCGCGCGCGGCCCGCACCGGGCGGCGCTCGAGTCCGTCGTCTCCGACCACGCGCTCGGGGCGCTCATGGCCGTGCACCACCTGGCCGACCTCGGGCACCGGCGCGTCGGGCTGGTGCTGTCCCGCGAGTCGCCGACGTCGCGCAAGATCGCCGCCGGGTGGCGGGCCGCCTGCCACGAGCTGGGGCTGACGAGCGCGGAGCACTTCGAGCGGCTCGCCCCGGACCGCAAGCGCCCCGAGTTCGCCGGCGTGGTGGACGACGTCGTCAGCACGGCGCTCGGCTCCGGCACCACGGGACTGCTGGTGCACTCGGACCCCGAGGCCTCCGCCATCGCGCAGCGCGCCATGGACCGCGGGCTGTCCGTCCCCGGCGACCTGTCGGTCGTCGCCTACGACGACGAGGTGGCGAGCCTGTTCAGCCCCGCCATGACCGCGGTGCACCCCCCGCGGGACGCCGTCGGGCACGCCGCCGTGGACCTGCTGGTCAAGCGGCTCGCCGACCCGTCCCGGCCCGTGCACCGCGAGGCGATCAGCCCGCGGCTCATGGTGCGGGAGTCCACCGGCCCGGTGCCGCGGTAG	MTQDTARAPLPAERDAHLLGVLERDGVVRVADLTAELGVTAVTVRRDIARLEREGRLARVHGGAVAVRTERTADRREDTPAETPDADPRTTGSIGVLVPSLDYYWPEVVRGMEAEARRHGLRIVLRGSSYDTTDERPALRRLVESEEVRGLVCAPRMDGRTAPDVVEWLAASGVPHVLVEREAARGPHRAALESVVSDHALGALMAVHHLADLGHRRVGLVLSRESPTSRKIAAGWRAACHELGLTSAEHFERLAPDRKRPEFAGVVDDVVSTALGSGTTGLLVHSDPEASAIAQRAMDRGLSVPGDLSVVAYDDEVASLFSPAMTAVHPPRDAVGHAAVDLLVKRLADPSRPVHREAISPRLMVRESTGPVPR	PGPT0017992_1405	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01598	2865	QRSL1_1		Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrial	ATGAACCAGCAGTCCCGTCGGCGGCACCGCGTCCGCCGGAAGGCCTCGGGCGTCGCGGTCACGACAGCGACGCTCGCCGCGTTCTGTCTCGCCCCCGCCTCCGCCTACAACCCCGTCCCCGTCGTCACCGGGGACGCCTGGAACGTCCACGACGCCGCCAGCCCCGGCGTCGACACCGGCAGCGTGATGGACACCGAGAGCCGGGCCCTGATGGGCTACGGCGGCCTGCGGATCCAGGTCGAGGGGGGCACCTCGCCGCTCGGCGGGATCCTCCTGCGCGGCTTCGAGCTCACCTACGACGAGCAGGACACCTTCTCCACCACGCAGGGCGTCGACGTCGACGGCGTCGTCGTGCAGCGCGAGCTGCGCGTCGACCAGGCCGCGAGCTACGGCCGGTTCCTCGACTCCTTCACCAACACCACCGACGTCCCGGTGACCGTCGAGACCGCCTTCGGCGGCCAGCTCGGGTACGACACCGGTACCAACCAGAGCGCCATCGCCGGCACCTCCGACGGCGACACCACCATCTCCGACGCGGACGGGTGGGCCAGCTGGTACACCCCCAGCGACGGTCCGGGGTCGGCGAGTCGGAACGGCCCCTCGGCCACCGCGTTCGGCAGCCCCGGCTTCGAACCCGCCCTGGAGCGCATGGGCAACTTCCTCCGCGACCCGTTCACCAACGACCTGCCGACCGAGGGCGACGAGGCGAACCACCCGGCCTTCGTGAACAGCCTGACGATCGACCCGGGCGAGACCGTCTCGCTGGCGCACTTCGTGGTCACGGGCCTCTCCGAGACGTCCGCCGTCGTGGACGGCGCCGCGGTGCCCGAGCCCGGCTCCCAGGTCGACCTGGTGGAGGCGAAGGCCGCCGCGCTGAGCACGGACCCCGACCTCGCAGGACTCACCCCCGCCGAGGTCTGCTCCCTGGCGAACTTCGACCTCGTGGCGCTCGGCGTCACCGACTGCTCGACGCCCTCGGGCGAGGTCCAGGGCGGGATCGACCAGGTCGCCGCCCCGGTGACCCTGACGACCAGCACCTCGTACGACGTCGTGGGCAAGACGATCACGGACCTGATCAGCGACATGGAGTCCGGCGAGACCACGGCCGCGGAGATCACCCAGGCCTACCTCGACCGCATCGCGGCCTACGACCGCGGCCCCTTCGGGCTGCACTCGGTCATCGCCGTCGCGCCGACCGCCATCGAGCAGGCGGAGGAGGCCGACGCCGCCCGGGCGGACGGCTCGGAGCTGCCGCTGCTCGGCGTGCCGATCCTGGTCAAGGACATCATCGACACCAAGGACATGCCCACCACGGGCGGTTCCCTGGTCTTCGACGGCTACCAGCCGACCGAGGACGCCTGGCAGGTGAAGAAGCTGCGCGAGGCCGGCGCCATCATCCTCGGCAAGGCGAACCTCGCGGAGTTCGCGAACGACGGTCACTACAGCCCGAGCGCCTACGGCCAGGTGTGGAACGCCTACGACCCGTCGCGCAGCCCGATCGGGTCCAGCGGCGGCACCTCCGTCGCGGTCGCCTCGAGCTTCGCGGCCGCCGGCTTCGGCACCCAGACCGGTGACTCGCTGTGGGGCCCCGCCGGCGCGGCGAGCCTGTTCTCGCTGCGGGGCACCGACGGCATGCAGAGCAGCGCGGGCACCATGCCGCTGACGATCATCCAGGACTACGTCGGCTTCATCAGCCAGTCCACCGAGGACCTCGCGCTCCTGCTGGAGGCCACCGCGGTGGACAACCCGGACGACGTGCTCGACGACGTCGCCAACGGCCACCGCCCGGACGACTGGACCGAGTACTTCTCGCCCGACGTGCTCGACGGCAAGGTCATCGGCGTCCCCGAGGGCGCGTTCGACGACCCGTTCGGCACGACCGTGGTCAGCGACGCGCTGCGCGCCCAGTTCTCCGTGTTCGAGGACCTCGGCGCGACCGTGATCGAGATCCCGGAGGGTCCGGACGCCGGCCCGCGGGAGTTCGGCGGGGACACCAACTACGAGGGCTGGGCGCAGTGGATCGAGGCGCACCCGGACAACCCCTACACCTCGCCCGAGGAGATCACCCGCAGCCCGCTGCGGATCCCGACCCGCATCAACACCTCGGAGTACACCGGGGCGGGCCGCATGACCGACGAGGACCAGCGGGCGTTCGAGCAGTGGCGCGCCGACTGGCGGGCCGACCTCGGTGACTGGATGGACGACCACGGGGTCGACGCCGTGCTCTACGCGGCCGAGCTCAGCGACATCCACCTGAACGACTCGATCATCCCGAGCTTCGGGCGGATCAACCCGGAGTCGTCGTACGCCGGGGTGCCCACGGCGATCTTCCCGGCCGGCGTCAACGCCCACGGCAACCCGATCGGGTTCCAGCTCCAGGGCAAGGAGTTCCAGGACGCCGAGCTGCTGGGCATGGCGTACGCCTTCGACCAGGCCACGGACGGTCGGGTGCTGCCGGAGATCACGCCGGCGCTCGCGCACGACGCCGACGCTCCGGCCCAGGTCGTCGAGCCCCTGCCCGCTCTGCCGCAGGCGGTGGCCGAGCGTCCGGCCTTCGTGCTGGACACCACGGCGACGGTCGCCACCAAGGCGAAGGGCCGGGCACCGGCCAAGGTCACCTTCGCCGTGGACTGCACGGGTGCCGGTGCCTGCTCCGGCCGGCTGGAGGCCGCGTACGACGGCGAGACGTTCGGTGCGCGCAGCCTGCGGGTGACGGACTCCGGCACGTCGGTGTCCTTCTCCCTGCCGGACGCCGCCGCTGCTGCCTGGACCGCCGGCGAGACGGTGACGTTCGACGTCACGCTGTCCGGCAAGAAGGCGACCGTCGCGCCGACGGACGCCGTGGAGGTGGTCGCCGCTCCGTGA	MNQQSRRRHRVRRKASGVAVTTATLAAFCLAPASAYNPVPVVTGDAWNVHDAASPGVDTGSVMDTESRALMGYGGLRIQVEGGTSPLGGILLRGFELTYDEQDTFSTTQGVDVDGVVVQRELRVDQAASYGRFLDSFTNTTDVPVTVETAFGGQLGYDTGTNQSAIAGTSDGDTTISDADGWASWYTPSDGPGSASRNGPSATAFGSPGFEPALERMGNFLRDPFTNDLPTEGDEANHPAFVNSLTIDPGETVSLAHFVVTGLSETSAVVDGAAVPEPGSQVDLVEAKAAALSTDPDLAGLTPAEVCSLANFDLVALGVTDCSTPSGEVQGGIDQVAAPVTLTTSTSYDVVGKTITDLISDMESGETTAAEITQAYLDRIAAYDRGPFGLHSVIAVAPTAIEQAEEADAARADGSELPLLGVPILVKDIIDTKDMPTTGGSLVFDGYQPTEDAWQVKKLREAGAIILGKANLAEFANDGHYSPSAYGQVWNAYDPSRSPIGSSGGTSVAVASSFAAAGFGTQTGDSLWGPAGAASLFSLRGTDGMQSSAGTMPLTIIQDYVGFISQSTEDLALLLEATAVDNPDDVLDDVANGHRPDDWTEYFSPDVLDGKVIGVPEGAFDDPFGTTVVSDALRAQFSVFEDLGATVIEIPEGPDAGPREFGGDTNYEGWAQWIEAHPDNPYTSPEEITRSPLRIPTRINTSEYTGAGRMTDEDQRAFEQWRADWRADLGDWMDDHGVDAVLYAAELSDIHLNDSIIPSFGRINPESSYAGVPTAIFPAGVNAHGNPIGFQLQGKEFQDAELLGMAYAFDQATDGRVLPEITPALAHDADAPAQVVEPLPALPQAVAERPAFVLDTTATVATKAKGRAPAKVTFAVDCTGAGACSGRLEAAYDGETFGARSLRVTDSGTSVSFSLPDAAAAAWTAGETVTFDVTLSGKKATVAPTDAVEVVAAP	PGPT0006115_22	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426	NA	NA
AK001_01599	870		COG3662	putative protein	ATGGCCCTCGACGACGAAGTGGGACTCTCCAAGGCGGACCGGCGCCACGCGCTCGACGCGATCGAGACGACGGCGCTGCGCGAGTCGGCCAACTGGTTCCAGCTCCTGGCCGGCACGTCGAACGTCGTCATGCAGCTCGCGGCACGACCCGTGGGCCACGGCGTGAAGGACAGCACGGTCGACGAGGGCAACTTGTTCCTCAACCCCGCGCGCCGACGCCGCACGACGATCGGCTACATCGCGGTGGCGATGTTCGGCGACGCGGAGGAACGCGCGGCCTACCGCCGCGCCACGAACCGTTCGCACGCCCAGGTGCGCTCGCCCGAGGGTGCCGAGGTGACCTACGACGCGTTCGACCCGGCGCTGCAGCTCTGGGTCGCCGCGTGCCTGTACAAGGGCGCGGAGCACGCCTACCAGCGGGTGCACGGCCCCCTGACCGGTGACTTCGCGGAGCGGTTCTACCGCCAGGGCATGGTGTTCGGGACCACCCTGCAGCTCCCGGCCGAGGCGTGGCCCGCGACCCGCGAGGACTTCGACGCGTACTGGACCGCCTCGCTCGACGAGCTCGAGATGGACGACGCGACGCGGCAGTACCTGATGCGCGTCGTCCACCTGGAGTACCTCGACCGCGAGATCCCGCCGTGGCTGATGCGGTGGCGCGTACGCCTGGTCACCGGCTACCTGGAGCCGCGCTTCCGCGAGCTGATGCACCTCGAGTGGTCCCCCGACGACGAGGTGAGGTTCGCGCGGTTCAACCGGCGCATGACGCGCTTCATGCGCCTCGCCCCGCGCCGGCTGCGTGAACGGCCGTTCACCCGGAGCCTGCGTGACGTGCGGCGGAGGCTCGCCACCGGCACGTCGCTGTTCTGA	MALDDEVGLSKADRRHALDAIETTALRESANWFQLLAGTSNVVMQLAARPVGHGVKDSTVDEGNLFLNPARRRRTTIGYIAVAMFGDAEERAAYRRATNRSHAQVRSPEGAEVTYDAFDPALQLWVAACLYKGAEHAYQRVHGPLTGDFAERFYRQGMVFGTTLQLPAEAWPATREDFDAYWTASLDELEMDDATRQYLMRVVHLEYLDREIPPWLMRWRVRLVTGYLEPRFRELMHLEWSPDDEVRFARFNRRMTRFMRLAPRRLRERPFTRSLRDVRRRLATGTSLF				NA	NA	NA	NA	NA
AK001_01600	5085			hypothetical protein	ATGAGACGACCACGCGCGTCACGCGCCGCCGTGTCGGGTCTGCTCACGAGCAGCCTGCTGGCCGCCACGCTCACCGCGACGGCTCTGCCGAGCGCGGCCGCCGAGCTGCCCGAGACCGTCGATGCCGCCGCCCACCTCGGCGCCGGCACGGTCGCCGGCACCTCGCTGCCCGCGACGCTGAGCGACGGCACCACGGACCACCCGGTGACCTGGGAGATCGACGCCGACACGTTCGCCGTGCCGTACACGACCGTGCCGGTGACCGGCACCGTCGACGGCGGCACCGTGACCGCGCAGGTCGAGGTGCTGGCACCGGCCGAGAACCCGCTGGTCTACTTCGTCGACGCGGGCCGGAACGGCGACTCCCAGGACCGTCCCTACTCGACCGGGCCGACGCCGTCGCGCGCGTTCAGCGCCGTGACCACCCTGGACGACGGCACGCTCGTGAACGACGTGCCCGACCAGGAGTTCGTCGACGGCGAGACGACCTGGGGCTGGACCTCGGACGCCCAGGACAACTACAAGATCTCCGTCACCGGCGGTGACCCCGACCCGTACGACGTCGACACGCTCGCCGCCTACGACAAGTACGAGCTCGGCGCGCGCACCAACGGCGACGCGATCACCTTCCGCCTGGACCTCGACCCGGGGACGTACACGCTGTCCAGCGGCTTCTTCGAGTTCTACACGGGTGGTCAGGACCGCCTGCGCGGCATCACGCCCGTGATCACGTACACGGTCGACGGGGCCGAGCAGAGCACCACCCTCGACGAGGCCACGCTGAGCACCCCGGCCGGCACCGAGAGCCGGCTGCTCGAGACCGACGCGTTCGAGATCCCCGCCGGTGCCACCGACGTCCGGCTCGCGTACACCCGGACCGCCGGCGAGGCACCCTCGCTGAGCTGGTTCGCCGTCGCCGCCGGGGACGCCGAGGAGACGATCGACGAGGCCGCGCACGCCGTGCCCGCCGTGACCACCGACATCACCGTCGACGGCGCCGACGTCGCCGCCGACAACGTCCACGGCCTGACCTTCAAGGGCTTCGGCGTCCTCAGCGCCAACTCCACCAGCGCCGTCCTGCTCGACTACAAGTCGGAGCACCCCGAGAAGTACGCCGAGATGCTGCGGATCCTCTTCGGTGGCGACCACCCGGTCATGCGCCACGTGAAGATCGAGATGGGCGACGACCGCAACAACTCCACCGGCTCCGACGTCGCCACGATGCGGACCCCCGACGAGCCCGCCAACGTGCGGCGGCACCCCGGCTTCCAGCTGGCCGCCGACGCGATCGCCGTGAACCCGGACGTCCAGGTGTCGATCCTGCGCTGGAACGCCGTGCCCTGGGCGGACACGAACGACAAGATCTACGACTGGTACAAGAACACGATCCTGGCCGCGTACCGCGAGTACGGGTACATGGTCGACTACGTGAACCCGGGGGTGAACGAGCACGCCGCCGACCTGGGCTGGACGAAGGAGTACGCCGAGCGCGTGCGCACCGACAGCACGGGCTACGTCAGCGACGACGCCGGGCTCGCCGGCTTCCGGGACGGCGAGGCGGAGCTGTTCCACCAGATCCAGGTCGTCATCTCCGACGAGGTCGGCACCGGCACCTTCGGCGACGAGATGGTCGCCGACGCCGCGCTGCGCGAGGCCGTCGACGTCGCGGGCTTCCACTACAACACCAACGACGACGGCGGCGGGCACTTCACGCGGCTCGCGGAGGAGTTCGACACCGAGATCTGGAACTCCGAGGCGCAGGCGACCTTCAGCAACTCCTCCTTCCGCCAGAACAACAACGTCGCCGACCCGACCTCCGAGGGCACCGGCATCGGCGGCACCGGCAGCTCGCTGGAGATGGCGAACACGATCGTCAAGGGGTTTGTGAACTCGCGGCGCACGCACTTCGTGTACCAGCCGGCCATCGGCTCGTTCTACGAGGGCGGGCAGTACTCCTTCAAGGAGCTCGTCAGCGCCCGCGACCCGTGGTCGGGGTGGATGCACTACGACGCCGGCCTGGCCGTGCTGCAGCACTTCTCGAGCTTCGCGGTCACCGGGTGGGAGAACGCCGACAACACCGCGGGCGTCTGGCGCGCCGTGCCCGAGGCGAGCACCACGACCGCGTCGGGCACCAACCCGGTGAACGGCCGCAACGGCGGTCCGAACTATCTGACCCTGGCCGCCCCGGACGCGTCGGACTTCTCCACCGTGCTGGTCAACGACTCGGAGTTCCCGCGCGCCTACCGGATCACGCCGGAGAACCTCGACCTCGGCGCCGACCCGACGCTCGCCGTCTGGGAGACCCGGGCCGCCGAGGACGGCGAGGCGTTCGACTCCCGCTACAAGCAGCACGTCGCCGACCTGACGGCCGACCTCGACGGCGCGTACACCCTCACCGTCGCGCCGTTCTCCATCGCCACGGTGACGTCGCTCGACGTCACCGGTGACGCGGGCTGGACCACGCCGCTGCCGGTCGAGGGCGAGCGCACCGTGCTCGACGCGCGTCCCGAGGAGGGCGTGCTCTGGTCCGACGACTTCGACTACACCGGCAAGACCGTGCCGGTCGTCGGGGTCGAAGGCACGCTGACCGACGAGACCGAGGACTTCACCGCCTCCCGCGGCGGCGACACCGGCGCGATCCCGCTGTACACCTGGGACCGCAACGGTTCCTTCGAGGCGTTCCTGGCCGACGACGGCGAGCGGGTGCTGCGCCAGCAGGTCGACCGGGAGGGCACCGGCGTCGGCGGCGCGTGGAACGGCGGCGACCCGATCACCGCCGTCGGCGACCGCCGGTGGACGAACTACCGGGCCACCGTCGACGTCCGCTTCGAGCGGGCCGCCGCGAGCGACAACTACGCGGTGCTCGGCGCCCGTTCCAGCGGGGGCGGCAGCTCGAACAACCTGAACGGGACGCCGTACGCGCTCAAGCTCGTGTCCGACGGCACCTGGCAGCTCGTGCGGTACGGCACGGTGCTGGAGTCGGGCAGCCTCGACGGGTTCGACGCCGCGGCGTGGCACGAGCTGTCGGTCCGGGCCGCGGGCGACGAGATCACCGGCTGGATCGACGGCGACGAGGTGTTCTCCTGGACCGACCCGTCCCCGGTGCTGTCCGGCTGGGTCGACCTGGCCAGCGGGTTCCACTGGACGCAGTTCGACGACCTGACCGTCGAGCGCGTCGACGACGAGGTGCCGCACTACGGCGAGTACCTCGACGGCCTCGAGACGAACGACCTGGCCGACCCGCCCGCCACGGAGCTCGTCTACGGCGGCGAGTGGCGGCACGCGAACGGCGGCTCCATGTACGAGTACATGCGGTCCACCTCGACCAGCCAGGGCGAGGGCGCGTCGCTGACGTACACCTTCACCGGCTCCGGCCTGGACGTGCTGGGGCCGAACGACGGCTCCGCCCGCCTCGACGTCACCGTCGACGGGGAGCCCGTGGCGGTCAACGCCGCGACGCGGGACGCCGGGCACTTCCAGCAGGCGTTCGAGCTGCGGGGACTGCCGTGGGGCGAGCACACCGTCACCCTGACGGTCACCTCGGGGACCCTCCTGGTCGACGCCGTCGGCGTGATCTCCTCCCCGGCGTCGGGGGCGACGGACGCCGCGGCGCTCGCCGAGGCGGTGGCTGCGGCCGAGGCCGTGGAGCGCACCGACGACTTCACGGACACCGACTGGGCCGTGCTGCAGCGCAACGTGGCCGACGCCCGGGCGGCCGTCGCGGACCCGGGGGCCTACCGGCTCACGGGCCACGGCGCCGACCAGCTCGTCGACCGGCTCCGGGCCGCCTCCGCGCCGGTCGCGGCGCGGATCGTCGGGATCGAGCCGGTCTCGACCGCGACCTACGTCGGCGAGACCCCGTCGGGTCTGCCGGAGACGCTCGAGGCCGAGCTCGCCGACGGCACCACGCGGGAGGTCCCGATCACCTGGGACCTGGACTCCGTCTCCTTCGACGACGAGTGGGCCACCGTCCTGGTGCCCGGCTCCTACGGGGTCGCGACCACGCAGGCACGGGTCGAGGTCGTCCCGACCGGGACCGTGGCGTTCGCCGACGTCAACGGCACCGCGGACGGGACCCTCGGGTACGACTCGCCGTCGTACCTCGCGATCGACGGTCTCGTCGGGGGGCTGCTCAACGAGTCGCCCGACCAGGTCCGCACCGACGGGGCCGACTGGGGCCACTGGGGGCAGAACGCCGGCGGCAACCGCGCGATCAACTACAAGGGCATCGTCGCGGGCGACTACTCCAAGACGTCCACCACGGGGATGTACACCAGCAACCAGGTCGGGGCCGAGGTGTCGTACACCATCACCCTCCCGGCCGGGTCGCACACGATCGTGGCCGAGTCGCACACCTGGTGGGCGGCCTGGTCCCGCAGCGCCGACGTGTTCCTCGACTACGACGGCGAGAGCCACGAGGTCGGGTCGTTCACCCTCGACACGGGCAACCCGACCGAGCTGCTGAGCCACGACGTCGAGCTGGCCGAGGACGGGCCGGTGACGATCCGGCTGCGGGCGACGAACAACCAGTCGCCGATGCTGTCCTGGGCGGCGGTCGTCACGCCGCCGGTGGAGGTGACGCCGGAGCGTCCGACCTGGACCGACGAGTGCGGTCCGGCCAACGTCACGGGTGCTCCCTTGCCCGTCGTCGAGGGCGTCGAGTACGTCGAGACCCGCAAGGGCGACGGTGGGGTGAAGGTCGTGGCGACGCCGTTGCCCGGCTACGTCCTGACGGACAAGCCCTCGCCGACGAAGAACCCGGACTCGTGGACGTGGACGAAGGGCGACTCCGGGCTGCCGTGCTGGGACGCCGGCACCCGCTACGAGGCGGGTGACCTGGTGGGTCTGGACGGATCGCTGTGGGAGGCCCTGCGGGAGTCCGAGGCGAAGCGTCCGGGCGAGCACGCGAACGGCCCGTGGCAGGAGATCGTCGAGACCGCCGACGGCACGGCGGTCTGGACGGAGTCGCGGGTGTTCGTCGCCGGTGACGTGGTGGTGGCCGACGGCGAACGCTGGGTCGCCCTGCACCGTACCCGCGGGCAGGTGCCGGCCGAGTCGCCGGACCACTGGGCACCCGAGGAGTGA	MRRPRASRAAVSGLLTSSLLAATLTATALPSAAAELPETVDAAAHLGAGTVAGTSLPATLSDGTTDHPVTWEIDADTFAVPYTTVPVTGTVDGGTVTAQVEVLAPAENPLVYFVDAGRNGDSQDRPYSTGPTPSRAFSAVTTLDDGTLVNDVPDQEFVDGETTWGWTSDAQDNYKISVTGGDPDPYDVDTLAAYDKYELGARTNGDAITFRLDLDPGTYTLSSGFFEFYTGGQDRLRGITPVITYTVDGAEQSTTLDEATLSTPAGTESRLLETDAFEIPAGATDVRLAYTRTAGEAPSLSWFAVAAGDAEETIDEAAHAVPAVTTDITVDGADVAADNVHGLTFKGFGVLSANSTSAVLLDYKSEHPEKYAEMLRILFGGDHPVMRHVKIEMGDDRNNSTGSDVATMRTPDEPANVRRHPGFQLAADAIAVNPDVQVSILRWNAVPWADTNDKIYDWYKNTILAAYREYGYMVDYVNPGVNEHAADLGWTKEYAERVRTDSTGYVSDDAGLAGFRDGEAELFHQIQVVISDEVGTGTFGDEMVADAALREAVDVAGFHYNTNDDGGGHFTRLAEEFDTEIWNSEAQATFSNSSFRQNNNVADPTSEGTGIGGTGSSLEMANTIVKGFVNSRRTHFVYQPAIGSFYEGGQYSFKELVSARDPWSGWMHYDAGLAVLQHFSSFAVTGWENADNTAGVWRAVPEASTTTASGTNPVNGRNGGPNYLTLAAPDASDFSTVLVNDSEFPRAYRITPENLDLGADPTLAVWETRAAEDGEAFDSRYKQHVADLTADLDGAYTLTVAPFSIATVTSLDVTGDAGWTTPLPVEGERTVLDARPEEGVLWSDDFDYTGKTVPVVGVEGTLTDETEDFTASRGGDTGAIPLYTWDRNGSFEAFLADDGERVLRQQVDREGTGVGGAWNGGDPITAVGDRRWTNYRATVDVRFERAAASDNYAVLGARSSGGGSSNNLNGTPYALKLVSDGTWQLVRYGTVLESGSLDGFDAAAWHELSVRAAGDEITGWIDGDEVFSWTDPSPVLSGWVDLASGFHWTQFDDLTVERVDDEVPHYGEYLDGLETNDLADPPATELVYGGEWRHANGGSMYEYMRSTSTSQGEGASLTYTFTGSGLDVLGPNDGSARLDVTVDGEPVAVNAATRDAGHFQQAFELRGLPWGEHTVTLTVTSGTLLVDAVGVISSPASGATDAAALAEAVAAAEAVERTDDFTDTDWAVLQRNVADARAAVADPGAYRLTGHGADQLVDRLRAASAPVAARIVGIEPVSTATYVGETPSGLPETLEAELADGTTREVPITWDLDSVSFDDEWATVLVPGSYGVATTQARVEVVPTGTVAFADVNGTADGTLGYDSPSYLAIDGLVGGLLNESPDQVRTDGADWGHWGQNAGGNRAINYKGIVAGDYSKTSTTGMYTSNQVGAEVSYTITLPAGSHTIVAESHTWWAAWSRSADVFLDYDGESHEVGSFTLDTGNPTELLSHDVELAEDGPVTIRLRATNNQSPMLSWAAVVTPPVEVTPERPTWTDECGPANVTGAPLPVVEGVEYVETRKGDGGVKVVATPLPGYVLTDKPSPTKNPDSWTWTKGDSGLPCWDAGTRYEAGDLVGLDGSLWEALRESEAKRPGEHANGPWQEIVETADGTAVWTESRVFVAGDVVVADGERWVALHRTRGQVPAESPDHWAPEE				NA	NA	NA	NA	NA
AK001_01601	1176	araR_3	COG1609	Arabinose metabolism transcriptional repressor	GTGAGCTCCGGGCCCGAACACCGCTCCACGCTCCCGGCGGAGCGCCGCGCACACCTGCTCGCGGCGCTGGAACGCGACGGCGTCGTCCGCGTCGCCGACCTGACCGCCGAGCTCGACGTCACCGCGGTGACGATCCGCCGGGACATCGGCCAGCTCGAGAGCGAGGGGCTGCTGCGGCGCGTGCACGGCGGCGCGGTGGCGGTGGGCACCCCGGGGGCACCGGCGGGCCGGGCGCCCGGACCGCCGGCAGCCCCGGGCACCGGGCCCGCGCCGTCGGCGACGCCGTCGGACACCCCCGGCGCGGTCGGCCCGGCCTCGAGCACGGGGACGATCGGTGTCCTCGTGCCCTCGCTCGACTACTACTGGCCCGGGGTCGTGCGCGGCATGGAGGTCGAGGCCCGCCGCCACGGCCTGCGGATCGTCCTGCGCGGGTCCTCCTACGACACGACGGACGAACGCCCCACGCTGGAGCGGCTGGCCCGGTCGGTGGCGGCCGACGCCCTGATCGTGGCCCCGCGGACCGACGCCGGCCACGGCGCCGAGGCCGCGCGGTGGCTGGTCGACAGCGGGCTGCCGCACGTCCTCGTCGAGCGCGAGGCCGCCCTGGCCCCGCACCGGGAGGCCCTGGAGTCGGTCGTCTCCGACCACGCCCTCGGCGCCCTGATGGCGGTGCACCACCTGGCCGACCTCGGCCACCGCCGCGTCGGCCTCGTGCTGTCGCGCCAGTCCCCCACGTCCCGGAAGGTGGCCGCGGGGTGGCGTGCGGCCTGCGCCGAGCTCGGGCTGACCACCGACGAGCACTTCGAACGCCTCGCCCCCGACCGCCGCACCCCGGAGTTCGCGGGCGTCGTCGACGAGGTCGTCGAGACCGTCGTGGCCTCCGGCACGACGGCGCTGCTGGTGCACTCGGACCCGGAGGCCTCGGCCGTGGTGCAGCGCGCCGTGGACCACGGTCTCTCCGTCCCGGGCGACCTGTCCGTCGCCTCCTACGACGACGAGGTGGCCGAGCTGTTCAGCCCGGCCCTGACGGCGGTCCGGCCGCCGCGGGCCTGGGTGGGCCGCGCCGCCGTCGACCTGGTGGCACGCCGCCTGGCCGACCCCGCCCGGCCCGTGCACCGCGTGGCCATCAGCCCGCAGCTCATCGTGCGGGAGTCGACGGGTCCGGCGCCGTCGTGA	MSSGPEHRSTLPAERRAHLLAALERDGVVRVADLTAELDVTAVTIRRDIGQLESEGLLRRVHGGAVAVGTPGAPAGRAPGPPAAPGTGPAPSATPSDTPGAVGPASSTGTIGVLVPSLDYYWPGVVRGMEVEARRHGLRIVLRGSSYDTTDERPTLERLARSVAADALIVAPRTDAGHGAEAARWLVDSGLPHVLVEREAALAPHREALESVVSDHALGALMAVHHLADLGHRRVGLVLSRQSPTSRKVAAGWRAACAELGLTTDEHFERLAPDRRTPEFAGVVDEVVETVVASGTTALLVHSDPEASAVVQRAVDHGLSVPGDLSVASYDDEVAELFSPALTAVRPPRAWVGRAAVDLVARRLADPARPVHRVAISPQLIVRESTGPAPS				NA	NA	NA	NA	NA
AK001_01602	1326		COG4325	putative protein	ATGATCGCCGCCTGGTTCACCCGCGCCCGGGAGTCGTTCTGGTTCCTGCCGACCGTCCTGGGCGTCGTCGCCCTGGTCGCCGCCAAGAGCCTCGTCGCCGTGGACCGCGTCCTGGCCGAGGCCGGGGTCACCGACGTGCCGATGCTCGACACCCTCAGCGCGGCCGGGAGCAGGGCGGTGCTCACGGCGATCTCGGGGTCGGTCCTGACCGTCGCCGCGACGTCGTTCTCGATCACGATCTCCGTGATGGCGACGACGTCGTCGGTGTACGGGCCGCGGCTGGTGCGCAACTTCATGGCCGACCGCGCCAACCAGGCGGTCCTGGCGGCCTTCACGGGCACCTTCCTCTACGCGCTGGTGGTGCTGGGCGACATCCACCCGGACGAGTCCGGGGAGCCGGTGCCGACGCTGGCGATCCACGCGGCGATCGTGCTGGCGGTGGTCAACGTCGCCGTGCTGGTGTTCTTCATCCACCACATCGCCCAGTCGGTGCAGGTCACGACGCTGGAGCAGCGGGTGCGGCAGGAGCTGGAGACGGCGGTGGACACGGTGTTCCCGGCCGAGCCGGCCGACCACCAGGTGCCGGCGGACCACCCGGTGCACGCTGTCGCCGAGTCGGCGGGGGAGCCGCAGGTGCGCGCGCGGAGCACCGGGTACGTCGAGCACGTCGACCTCGCGGCCCTCGTGCGGCGGGCGCGCGCCTGCGACGGCCTGATCGAGCTCGTCGTCGGCCCCGGTGACCACCTGGTCGAGGGGGAGCCCCTCGCGCGGGTGCGCGGCGACGTCGACGACCTCACCGAGGCCGTCCGCTCCGCCTTCGTCCTCGGGCCGGCTCGCACCCCGCACCAGGACGTCGCCTTCGCGGTGCAGGACCTCACCGAGATGGCGGTGCGCGCCCTGTCGCCGGGGACCAACGACCCCTACACGGCCGCCTCCGCGCTGGACGCGCTCGGGACCGCGCTCGTCCGCGTCGTCTCCCGCTCCCCGGCGCCGCGCGGCCGTGCCGACGCTGAGGGCACGGTGCGCCTGGTCGTGCCGTGGCCGACGGCGGAGGAGCTCGTCCGGTCGGTCGTCACCGCCCTGCGCACCTACGGGCTGGGAGCGCCCGTCGCGCTCGACGCGCTGCTCCGGCTGCTCGACCGGCTCGAGGGCGCGGCCCGGCGACCGGGTGTGCGCGCGGCGCTGCGCGACCAGGTGGAGGTGCTGCGGGCCGCCTACCTGGCGAGCGAGCCGTTGGACGTGGACGCCGCCGCGGTGATGGACCGGCTGGACGCGTTGCGCGGACGCCTCACGACGGCGCCGGACCCGTCGACTCCCGCACGATGA	MIAAWFTRARESFWFLPTVLGVVALVAAKSLVAVDRVLAEAGVTDVPMLDTLSAAGSRAVLTAISGSVLTVAATSFSITISVMATTSSVYGPRLVRNFMADRANQAVLAAFTGTFLYALVVLGDIHPDESGEPVPTLAIHAAIVLAVVNVAVLVFFIHHIAQSVQVTTLEQRVRQELETAVDTVFPAEPADHQVPADHPVHAVAESAGEPQVRARSTGYVEHVDLAALVRRARACDGLIELVVGPGDHLVEGEPLARVRGDVDDLTEAVRSAFVLGPARTPHQDVAFAVQDLTEMAVRALSPGTNDPYTAASALDALGTALVRVVSRSPAPRGRADAEGTVRLVVPWPTAEELVRSVVTALRTYGLGAPVALDALLRLLDRLEGAARRPGVRAALRDQVEVLRAAYLASEPLDVDAAAVMDRLDALRGRLTTAPDPSTPAR				NA	NA	NA	NA	NA
AK001_01603	522	ymdB	COG2110	O-acetyl-ADP-ribose deacetylase	GTGCAGATCACCATCGAGCAGGGCGACATCACCACCGTCGAGGTCGACGCGATCGTCAACGCCGCCAACTCCTCGCTGCTGGGCGGCGGCGGGGTGGACGGCGCGATCCACGCGGCGGCCGGGCCGCGGCTGCTGGAGGCCTGCCGCGCGCTGCGCCGCTCCACGCTCCCCGACGGCCTCGGGGTGGGCGACGCCGTCGTGACTCCCGGCTTCGACCTGCCGGCCGACTGGGTCGTGCACACCGTCGGGCCCAACCGTCACCAGGGCGAGACCGACCCGGAGCTGCTCGCCTCGTGCTTCCGCACGTCGCTCGGGCTGGCCGCCGACGCCAAGTCCCGCACCCTCGCGTTCCCGGCCGTCAGCGCCGGCGTCTACGGCTGGGACGCCGACGAGGTCGCGCGGATCGCTGTCGACACCGTCCGCGCCTGGGACGACGAGAACCCGGCGGCGCTGGACGAGGTGCGGTTCGTGCTGTTCAGCCAGGACGTCCGCGAGGCGTTCGCCCGCACCGCGGAAGGCTGA	MQITIEQGDITTVEVDAIVNAANSSLLGGGGVDGAIHAAAGPRLLEACRALRRSTLPDGLGVGDAVVTPGFDLPADWVVHTVGPNRHQGETDPELLASCFRTSLGLAADAKSRTLAFPAVSAGVYGWDADEVARIAVDTVRAWDDENPAALDEVRFVLFSQDVREAFARTAEG	PGPT0027680_2033	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-darG-darT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027680-antitoxin_darG-K23518	NA	NA
AK001_01604	1206	kasA	COG0304	3-oxoacyl-[acyl-carrier-protein] synthase 1	GTGCACGAGACGGTGATCACCGGACTGGGGGCCGTGACCCCCGTCGGCCTGAGCACCAAGGAGACGTGGCACGCGCTGACGGCCGGGTCCTCCGGCGTCGACCGGTTGACGCAGGACTGGGCGCAGGACATCCCGGTGCGCATCGCCGCGGAGGTCGACGACGCCTTCGCGGATCCCCTCGGTACCGCCCTGCGGCGCCGGACGGACCGCAGCGAGCAGCTCGCCGTCGTCGCGGCCCGCCAGGCGTGGGAGCACGCCGGCTTTCCCGAGGTCGAGCCCGAACGGCTCGGGGTGGCCGTCGGCACGGCCAACGGCGGCTTCGGGACCACCGTCTCCCAGCAGGACCTGTTCCGCACCGGCGGGCACCGCCGGGTCAGCCCGCACGCGATCACGATGGTGATGCCGAACGGCCCTGCCGCCTGGACCTCGATCGACCTCGGCGCCCGGGCCGGTGCGCGGGCGCCCGTGAGCGCCTGCGCGGCCGGGGTCGAGGCGATCCTCACCGCCCGGTCGATGATCCGGTCCGGGGACGCCGACGTCGTCGTCTGCGGCGGGGTCGAGTCCAGCATCGTCGACCTGTGCCTGTCCGGCTTCGCCCGGGCACGGGCGATGTCGACCCGCAACGAGGCCCCGCAGCAGGCGTCCCGCCCGTTCGACCAGGGCCGGGACGGGTTCGTCATGGGCGAGGGGTGCGTCGTGCTCGTGCTGGAGTCCGAGCGGCACGCGCGGGCCCGCGGGGCACCGGTGCTCGGAGCCGTCACCGGCGGCGCCCTGACCTCCGACGCCCACGACATCGTCGGCGGCGAGCCGGGGAACCAGGCCCGCACGATCGGGATGGCGCTGCGGTCGGCGGATCTGGACCCGGGCGACGTCGGCCTCGTGCACGCCCACGCCACCTCCACGCCGTCGGGCGACCTCAACGAGGCGCGCGCCCTGGGCCGCGTGTTCGGCACCCCGCCACCGGTGGTGGCCACGAAGGCCTCGACCGGTCACCTCTTGGGCGCCTCGGGTGCGCTCGGGGCGCTGGTCGCCCTGCTCGCGATGCGTGACGGCGCCGTGCCCCCGACCCTCAACCTCGAGGAGCCCGACCCGCAGATCGACCTGGACGTGGTGACCGCGCTGCGGCCGACGACGGCGCGGCACGCCCTGGTCGACGCCTTCGGGTTCGGCGGGCACAGCGCCTCGCTCGTGGTGTCGGCGCCGTAG	MHETVITGLGAVTPVGLSTKETWHALTAGSSGVDRLTQDWAQDIPVRIAAEVDDAFADPLGTALRRRTDRSEQLAVVAARQAWEHAGFPEVEPERLGVAVGTANGGFGTTVSQQDLFRTGGHRRVSPHAITMVMPNGPAAWTSIDLGARAGARAPVSACAAGVEAILTARSMIRSGDADVVVCGGVESSIVDLCLSGFARARAMSTRNEAPQQASRPFDQGRDGFVMGEGCVVLVLESERHARARGAPVLGAVTGGALTSDAHDIVGGEPGNQARTIGMALRSADLDPGDVGLVHAHATSTPSGDLNEARALGRVFGTPPPVVATKASTGHLLGASGALGALVALLAMRDGAVPPTLNLEEPDPQIDLDVVTALRPTTARHALVDAFGFGGHSASLVVSAP	PGPT0008360_7645	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458	NA	NA
AK001_01605	591	tag	COG2818	DNA-3-methyladenine glycosylase 1	ATGACGCAGCCCGACCGTCCCGCGCCCCGGTGCTTCGGCGACGACGACCCGCTCTACGCCGCGTACCACGACACCGAGTGGGGCCACCCGGTGCACGGGGAGGCGGCCCTGCTCGAGCGCATCGCGCTGGAGGGCTTCCAGTCGGGGCTGTCGTGGCTGACGATCCTGCGCAAGCGCGAGGCGTTCCGCGAGGTGTTCCGCGGGTTCGAGCCGCCGGCCGTGGCCGCGATGACGCCCGACGACGTCGAGCGGCTGATGGACGACGCCCGGATCGTGCGCAACCGCGCCAAGATCGAGGCGACCGTGGCCAACGGGCGCGCCGTCGTCGCACTGCACTCCGCGGGACGGACGCTCGACGAGCTGTTCTGGTCCTTCGCCCCGCCGCCGCGCGACCGGCGGCCGGCGTCCCCCTCCGAGGTCCCGGCCACCACCCCGGAGTCGACGGCGCTGGCCAGGGCGCTGAAGTCCGAGGGGTTCCGGTTCTTCGGGCCGACGACGGCGTACGCTGCGATGCAGGCGTGCGGCCTGGTCGACGACCACCTGGCCACGTGCCCCGTCGTCACCGGTCAGGACGTCGCGTCCGGCCGTTAG	MTQPDRPAPRCFGDDDPLYAAYHDTEWGHPVHGEAALLERIALEGFQSGLSWLTILRKREAFREVFRGFEPPAVAAMTPDDVERLMDDARIVRNRAKIEATVANGRAVVALHSAGRTLDELFWSFAPPPRDRRPASPSEVPATTPESTALARALKSEGFRFFGPTTAYAAMQACGLVDDHLATCPVVTGQDVASGR				NA	NA	NA	NA	NA
AK001_01606	450			hypothetical protein	ATGGGTGACACCGACCTGCCCGACGGCGAGCACACGACTCCTCCCGGCGTCTCCGACGCCACGGTCGAGGCGCTCGGCGCGCTGAGCGAGGCGTTGGAGACGGTCGAGCGCGCCCGTGGCCACCTGTACACGTTCCACCAGCTCACGGGCGAGGCGGACCTGGCGCTCGGCGCCGCCGTCGACCAGCTCCGTGAGGCCGGGCACGACGACGTCGCGCAGCGGATCGCGGACGACCTCGTCGGCCGCAACGTGCTGCCGGGCCGGTGGACCTTCCAGATCGTCGAGGACTACGACGACGGGTACTGGCAGGTGTTCCGCGACCACGAGCGGCGTGCCCGCGAGGAGCTCGTCGGAGGCGTCCGGCACCTGGCCGAGGCGCGGATGAAGCAGGACCGCCGGACCCCCGGGCGCCCGGGGCACGAGGTGTCACCGGCGGACGTCGAGCCCTAA	MGDTDLPDGEHTTPPGVSDATVEALGALSEALETVERARGHLYTFHQLTGEADLALGAAVDQLREAGHDDVAQRIADDLVGRNVLPGRWTFQIVEDYDDGYWQVFRDHERRAREELVGGVRHLAEARMKQDRRTPGRPGHEVSPADVEP				NA	NA	NA	NA	NA
AK001_01607	459			hypothetical protein	ATGGATCTCGCCGAGCTCACGAAACCGACGACCACCTCCCTGCCGCGGACGATCGCCCGGGTCTGGCTCGGGCTGACCCTGGCCGGCGCCGGCGTCTCGCACCTGACCGTCGCCCGTGAGGAGTTCCAGGCCCAGGTGCCGGGCTGGTTCCCCGTCGACGAGGACGTCACCGTGCTCGCCTCGGGCGTGGTGGAGATCGTCGTCGGCGGCTCGCTCGTGGCGCTGTCGCGGTGGAAGGTGGCCGTTGGCCTCGTCGCCGCGGCGTTCTTCGTCGTGATCTTCCCCGGCAACGTCGCCCAGTGGCTCGAGCACAAGGACGGGTTCGGGCTCGACACCGACGCCAAGCGGTTCGGCCGGCTGTTCTTCCAGCCGGTGCTCGTGGCGCTCGCCCTGTGGTCGACCGGCGCCTGGGCGGCGACGCGGCGGGCGCTGGACGACGGCCGACGCTCCGACGGGTGA	MDLAELTKPTTTSLPRTIARVWLGLTLAGAGVSHLTVAREEFQAQVPGWFPVDEDVTVLASGVVEIVVGGSLVALSRWKVAVGLVAAAFFVVIFPGNVAQWLEHKDGFGLDTDAKRFGRLFFQPVLVALALWSTGAWAATRRALDDGRRSDG				NA	NA	NA	NA	NA
AK001_01608	1149			hypothetical protein	ATGGACGGATCCGAGGGGCACGAACGGCACCACGACCTGCGCGCGGCGCCGACGGCGCACCCGTCCCAGCGGCCGCACCTGGCCGCCGTCGTCGAGGACGCCTTCTACGACGTCGTGGGACGGATGCTGCGCCGGCTCGGCTGGCGCCCGCGCCTGCTCGTGTACACGGGGTACGGCACGCCGGAGAAGGTGCGGGTGATGGCGCGCGTGCTGCTCGCTCCCGCCGGCGCGGCGCGGCGGGACGACCGTCGTCCGCTGCGACGCGGGTTCCGGCACTTCCTCACGGTCCCGGCACCCGACAGCCCGGTCCGGGTCCGCGTCGGCACGCACGAGGTCGACGCCGTCACCGACCGGTCGGGGTACATCGACCTCGAGCTCACGCTGCCGGAGGGGGACACGCTGCCGGCCGGGCGTCAGGAGGCGGTGCTGACGAGCCTGGAGTCGCCGGAGGCGCCCTCGCTCCCGGCGCCGCTGCTCGTGCTCGACGGCGCGACACGCTTCGGCGTCGTCAGCGACATCGACGACACCACCCTGGTGACCGGTGTCCCCCGCCCGCTGCTGGCCACCTGGAACACGTTCGTGCGCCGGGCCGGGTCCCGCCGGGCGGTGCCGGGGATGGCGGCCCTGTACCGCACGCTGGAGGAGGCGCACCCGGACGCCGGGTTCTTCTACGTCTCCAACGGGGCGTGGAACACGGCCGCGGCCCTGCGGGCCTTCCTGGCCCGCAGCGGCTACCCGGCCGGCCCGCTGCTGCTGACCGACTGGGGGCCGACCCTGACGGGATGGTTCCGCAGCGGCCCGCAGCACAAGCGGGCGAGCATCGACCTGCTCATGTCCTGGTTCCCGCACGTGCGGTGGCTGCTGGTGGGCGACGACGGGCAGCACGACCCGGAGATCTACGCCGACGCCGTGCAGCGCTGGCCGGACCGGGTGTGCGCGGTCGCGATCCGGCAGGTCGCGCACCCGGGCGGGAGCGACGCCGGGAGCGACGCCGCGCACGAGGGCGCGGGCCACGGACAACCAGGGACGGGGCCGACGACGGCGGACCCGGCCGGCGGCGGGGAGCCCGGTACGCCGGTGGTCCGGGGCCGCGACGGTGCCGTGCTGGCCGAGCGGCTGGGGCGCCTGCCCGGGGTGCTGGACGGGTAG	MDGSEGHERHHDLRAAPTAHPSQRPHLAAVVEDAFYDVVGRMLRRLGWRPRLLVYTGYGTPEKVRVMARVLLAPAGAARRDDRRPLRRGFRHFLTVPAPDSPVRVRVGTHEVDAVTDRSGYIDLELTLPEGDTLPAGRQEAVLTSLESPEAPSLPAPLLVLDGATRFGVVSDIDDTTLVTGVPRPLLATWNTFVRRAGSRRAVPGMAALYRTLEEAHPDAGFFYVSNGAWNTAAALRAFLARSGYPAGPLLLTDWGPTLTGWFRSGPQHKRASIDLLMSWFPHVRWLLVGDDGQHDPEIYADAVQRWPDRVCAVAIRQVAHPGGSDAGSDAAHEGAGHGQPGTGPTTADPAGGGEPGTPVVRGRDGAVLAERLGRLPGVLDG				NA	NA	NA	NA	NA
AK001_01609	648	aas		Bifunctional protein Aas	GTGACCTACCGCGTCCTGAAGCTCATCCTGTCGCTCCTGGTGTACGTGTTCCTGCGGCCCCAGGTCAACGGACTGCACAACCTGCCGCGGCGCGGGCCGGTCATCCTCGCGAGCAACCACCTGTCGTTCCTCGACTCGATCATCATCCCGCTGGTGACCCCGCGGCACGTCACCTTCATCGCCAAGGCCGAGTACTGGACCGGCCACGGGCTCAAGGGCCGGCTCTCGCGGTGGTTCTTCACCACCATGGGGCACATCCCCGTCGACCGGGAGGATCCCCGGGCCGGGCAGCGGTCCCTGCAGGACGCGCTCCAGGTGCTGCAGCGCGGGGACGCCTTCGGCATCTACCCCGAGGGCACGCGGTCCCGCGACGGGCGGCTGCAGAAGGGGCACACCGGGGTGGCGTGGCTGGCGCTCGCCGGCCCCGCGCCGATCGTGCCCGTGGCGCTGAAGGGGACCGACAAGGTCCAGCCGGTCGGCAAGCGGCTGCCCCGCCCCTACCGCGGGATCCAGGTCGACTTCGGCTCGCCGATCATGCCGCAGCGCCAGCTCCCCGCCGGCATGCGACCGGCGCAGGCGCGCCGCGAGCTGACCGACGAGGTCATGGCGTCGATCCACGCGATGAGCGGCCAGGAGCTCGACGCCTGA	MTYRVLKLILSLLVYVFLRPQVNGLHNLPRRGPVILASNHLSFLDSIIIPLVTPRHVTFIAKAEYWTGHGLKGRLSRWFFTTMGHIPVDREDPRAGQRSLQDALQVLQRGDAFGIYPEGTRSRDGRLQKGHTGVAWLALAGPAPIVPVALKGTDKVQPVGKRLPRPYRGIQVDFGSPIMPQRQLPAGMRPAQARRELTDEVMASIHAMSGQELDA	PGPT0024380_5655	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655	NA	NA
AK001_01610	1206			hypothetical protein	ATGGAACGTGAAGAGCGCCTGGCCGTCTTCCTCGACTACGAGAACCTGGCGCTCGGCGCCCGGGAGCACCTGGGTGGGATGCAGTTCGACTTCGGTCCGATCGCGGACGCCCTCGCGGTGCGTGGCCGGGTGGTCACCCGCCGGGCGTACGCCGACTGGTCGTACTTCGACGAGGACCGGCGGATGCTGACCCGCCACCAGGTCGAGCTCATCGAGATGCCGCAGCGCATGGGCGCCTCGCGCAAGAACGCCGCCGACATCAAGATGGTCGTCGACGCCATCGAGATGGCGTTCGAGCGCGACTACATCACCACGTTCGTCATGTGCACCGGCGACTCCGACTTCTCGCCGCTGGTCACCAAGCTGCGCGAGCTCGACAAGAACGTCATCGGCGTCGGGGTCGAGAAGTCCACCTCCCGCCTGCTGCCGGGGGCCTGCGACGAGTTCCTCTTCTACGACCGGCTCGAGGGCGTCGACGTCCCCGACGAGACCGAGCAGACCTCCCGCAAGAAGTCCCCGGGCAAGCGCTCCGGGGGCTCGACGACGCGTGGCGGCGGGGGACGCCGCGGCACGGCGTCGTCCGGGGCCACCGAGACCGCCGAGGCCCCGTCGTCGGCCGCGAAGAGCCGCCGGAAGAAGACCGAGCCGACCCCGGAGCCGGCGCCCGAACCCGCCGTCGAGCCCGAGCCCGCTCCGGCACCCGAGGTCGACGAGGACGACGCCCCCGCCGTCGAGCCGGCGACCATGGAGGTCAAGGTCGCCCAGACGCTCGCCGGGCTGCAGGCCTCCTCGTCCGGGTCGGTGACGGCCTCCCAGCTCAAGCGCACCCTGGTGCGCAAGGAGCCGACGTTCAGCGAGTCCGACTACGGGTTCCGGACGTTCACCGAGTTCCTGCGGTACCTCGCCGACCGCGACTTCGTCGTCCTCTCCGACGGTCCGTCGACCGGCGACCCCGTCGTCGAGCTGCCGGCCCAGCCGGACAGCGCGCACGCCTTCGACCTGCTGCGCGTCGTCGTCGGCGAGACCGGGGGCAGCACGCCGCTGTCCGGCCTGAAGAACCTGCTGCGCAAGCAGCGCCCCGACTTCTCGGAGAAGGCGCTCGGCTACCGCGGGTTCCTGCAGTTCTGCAAGGGTGCCGAGGCCGCGGGCGCGGTGCGGCTGGCCTGGGACGACGAGACCGAGGACTACCTCGTCAGCCTGCCCTGA	MEREERLAVFLDYENLALGAREHLGGMQFDFGPIADALAVRGRVVTRRAYADWSYFDEDRRMLTRHQVELIEMPQRMGASRKNAADIKMVVDAIEMAFERDYITTFVMCTGDSDFSPLVTKLRELDKNVIGVGVEKSTSRLLPGACDEFLFYDRLEGVDVPDETEQTSRKKSPGKRSGGSTTRGGGGRRGTASSGATETAEAPSSAAKSRRKKTEPTPEPAPEPAVEPEPAPAPEVDEDDAPAVEPATMEVKVAQTLAGLQASSSGSVTASQLKRTLVRKEPTFSESDYGFRTFTEFLRYLADRDFVVLSDGPSTGDPVVELPAQPDSAHAFDLLRVVVGETGGSTPLSGLKNLLRKQRPDFSEKALGYRGFLQFCKGAEAAGAVRLAWDDETEDYLVSLP				NA	NA	NA	NA	NA
AK001_01611	903			2-haloacrylate reductase	GTGCGCGCGATCGTGTTCACCGAGCTCGGCGGACCCGAGGTCCTGCACCCCGCCGACGTCCCGGCGCCGGAACCGGCCGCCGGCCAGGTCCGTGTGCGCGTCGAGGCAGCCGCCGTCAACGGCTGGGACCTCAAGACCCGCGCCGCCCGGATCCCCGGCGTCCCCCTGCCGGAGTTCCCCGCCGTGCCGGGGCTGGAGGTCGCGGGCGTCGTGGACGCCGTCGGCGACGACGTGACGGACGTGCGGCCCGGTGACCGCGTCGTCGGGTTCGCCGACACCGGCGGGTACGCCGAGCTGGCCCTGACCTCCATCTTCGCCCCGGTCCCGGACGGCCTCGACCCGGTCCGGGCCGTCACCGTGCCGGTCTCGGCGGAGACGGCGCGTCGCACGCTGCGTGTGCTCGGGGTGGCCGACGGCGAGACCCTGCTCGTGCACGGCGCGTCCGGATCGGTGGGCGAGCTCGCCGTGCAGCTCGCCCGACGCCGGGGTGCGACGGTGATCGGCACCGCGTCGCCGGCGAAGCAGGATCGCGTCACGACGCTCGGCGCGACGGCGACCACCTACGGGCCGGGCCTCGTCGAGCGGGTGCGGGACCTGGCGCCGTCGGGCGTCGACGCGGTGCTGGACACCTCCGGCGCGGGCGTCCTGCCCGACTCGATCACGCTGCGCGGCGGGACGGACCGCATCGTCACCATCGCGGACCCGGCGGCGTCCGACCTCGGGATCACCTTCAGCTCCGGCGCCCGGCGCGACCGCGACGCCCTGGCGGAGGACGTCGCCGCCCTCGCGCGCGGCGACCTCACCACGACGCTCGGCGAGGTCCTGCGGCTCGACGAGGCGGCACGCGCCCACGCGCTGGTCGAGAGCGGCCGGGGCGACGGCAAGGTCGTGCTCGTCCCCTGA	MRAIVFTELGGPEVLHPADVPAPEPAAGQVRVRVEAAAVNGWDLKTRAARIPGVPLPEFPAVPGLEVAGVVDAVGDDVTDVRPGDRVVGFADTGGYAELALTSIFAPVPDGLDPVRAVTVPVSAETARRTLRVLGVADGETLLVHGASGSVGELAVQLARRRGATVIGTASPAKQDRVTTLGATATTYGPGLVERVRDLAPSGVDAVLDTSGAGVLPDSITLRGGTDRIVTIADPAASDLGITFSSGARRDRDALAEDVAALARGDLTTTLGEVLRLDEAARAHALVESGRGDGKVVLVP	PGPT0013255_9519	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_01613	1014	metF	COG0685	5,10-methylenetetrahydrofolate reductase	ATGGTCGCCGAGGCACCGACATACCCGTACCGCCCGACGGTGAGCTTCGAGCTCATGCCGCCGCGGCGGCCCGACGCCGCGCCCAGGTTCTGGGAGACGGCGCGCCGGCTCGTGGCCGCGCGCCCCGACTTCGTCTCGGTGACCTACGGCGCCGGCGGCGGTGACCGCGACACCGCCCGCGACGTCGTCTCCCGCCTGCTCGCCGGTACGCCGGTGCTGCCGATCGCGCACCTGACCTGCGTGGGCGCCTCGCGGGAGAACGTCTCGGAGGTCGTCGACGAGTTTCTCGAGGCCGGTGTGCGGTCGTTCCTCGCGCTGCGCGGCGACCCGCCGCAGGACCAGCCCGACTGGCGGCCCCCGGCCGGCGGCGTGCACTCGGCCGTGGAGCTCGTGCACCTGCTGCGCGAGGTCGAGGCCCGCCGCTGCGCCGCGGACCCGGCCGCCGCCGTGCGCGGCGCCGCCCGCCCGCTGACGATCGCGGTGGCCACCTTTCCCGACGGCAACGTCCAGGCCGGGACGACCCGCACCCAGGAGGTGCACCGCCTGCTGGAGAAGCAGCAGGCCGGCGCCTCCTTCGCCATCACCCAGTTCTTCTACGAGGCCGACTCGTACACCGACTTCGTCGCCGAGGCCCGCGCGGCCGGCGTGACGATCCCGATCCTCGCCGGGCTGCTGCCCACGACCGAGCCACGTCGGCTCCGTCGTGTCGAGGAGCTCACCGGCGTCCGGGCGCCCCAGCACCTGCTGGACGCCCTGGACGCCCGGCCGGACCCGGAGGCGCAGTACGCCTACGGGACCGCGTACGGCACCGAGCTCGCCCAGCGCGTGCTCGACGCCGGCGCCCCCGGCCTGCACGTGTACACGTTCAACAAGTACCGCCCCGCTCTGGACCTGCTCGAGGGTGTTCACCTCGGCGGCCGGACGCCGGAGCCCGACGCGGCGCCCGACGTCCGAGACCTGGCCGGCCGGCCGTGGGTACCGAGCATCCCGACCCCCGCACCGGCCGTCCCCTGA	MVAEAPTYPYRPTVSFELMPPRRPDAAPRFWETARRLVAARPDFVSVTYGAGGGDRDTARDVVSRLLAGTPVLPIAHLTCVGASRENVSEVVDEFLEAGVRSFLALRGDPPQDQPDWRPPAGGVHSAVELVHLLREVEARRCAADPAAAVRGAARPLTIAVATFPDGNVQAGTTRTQEVHRLLEKQQAGASFAITQFFYEADSYTDFVAEARAAGVTIPILAGLLPTTEPRRLRRVEELTGVRAPQHLLDALDARPDPEAQYAYGTAYGTELAQRVLDAGAPGLHVYTFNKYRPALDLLEGVHLGGRTPEPDAAPDVRDLAGRPWVPSIPTPAPAVP	PGPT0008160_383	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297	NA	NA
AK001_01614	2451	metE	COG0620	5-methyltetrahydropteroyltriglutamate--homocysteine methyltransferase	ATGACCTCTCCGACCCCCACCGACACCACACCGTTCACCCGCGGCACGATCCTCGGCTACCCGCGGATCGGCCGTCGCCGCGAGCTCAAGCGCGCCGTCGAGGCCTACTGGGCCGGCCGCACCGACGTCGTCGACCTCGAGGTCGCCGCCGGCGCCCTGCGCCGCGAGACCGTGCAGCGGCTCGTCGCGCTCGGCCTCGACCCCGACGACGGGTCCGTCCCCGGGACCTTCTCCTACTACGACCAGGTGCTCGACGTCGTCGCGCTGCTCGGCGCCGTCCCGGCCCGGTTCCGGGACCTGATCGACGACGAGGACGACTCCCTCGACCTGGACGGCTACTTCACCGTCGCCCGCGGCCGCGGCGAGGACGCCCCGCTGGAGATGACCAAGTGGTTCGACACGAACTACCACTACCTCGTCCCCGAGATCAGCGAGGCGACGCCGATCTCGTTCGCCGACCACCGCATCGTGCGCGAGTACGCCGAGGCCAAGGAGGCCGGCGTCACCACGCGCCCGACGCTCGTCGGCCCGGTGACGTTCCTCGCCCTGTCGAAGGCGGCCGACGACGCCGGTGACGGGTTCCACCCGCTCGACCGGCTCGACGACGTCGTGGCCGCGTACGCCGAGCTGCTGCGCGCACTGGCCGCCGTGGGCGTGCCGTGGGTCCAGCTCGACGAGCCCGTGCTCGTGGCGGACACCGTGGACGCCGATCCGGCGCGGGTCGACGCCGCGATCACGTCGGCCTACCGCGCCCTGGCGACCGACCTCGCGCCCGCGTCGGCGGACGACGCCCTCGACGTCACCCCGGAGCGGCCGCGCATCCTCGTGGCCGCGCCCTTCGGCGGGCTGGCCACCGCGGGCGCCGACGGCGCACCGGCGCGGGACGGGCTCGCCCTGCTGGCCGCGACCGACGTCGACGCGATCGCGATCGACCTGGTCAAGGGCGCGGTGCCCACCGGGTCCGGCCCCGACGGGACCGTGCCGGGCCTGGCCGGCAAGACGCTCGTGGCCGGCGTCGTCGACGGGCACAACGTGTGGCGCACCGACCTCGCCGCGCGCCTCGGCACCCTCGACGCCCTGCGCGGGCTCGGCGCCGGATCGCTCGCCGTCGGCACCTCGACGTCCCTGCTGCACGTCCCGCACGACGTCGACGACGAGACCTGGGACGGCCCCGCGGCCGAGCGCGCGGGCCGCACCCCGGCGCTGCGGCGGTGGCTGGCCTTCGCCGACCAGAAGGTCGCCGAGGTCACCGTGCTCGCCCGGGCGATCGCCGACGGACCGGAGTCCGTGCGCACCGAGCTCGACGAGGCGAGCGCCGCGCTGGCCGACCGCGCCGCCGCAGCCGGCGTCGTCGTCCCCGCCGTGCGCGAGCGCCTGGCCGCCCTCGCCCCGGCCGACTTCGAGCGGGGTGCGCACACCGAGCGCGTCGCCGCCCAGCGCGACCGCCTCGACCTGCCGCTGCTGCCGACGACGACGATCGGGTCGTTCCCGCAGACCCCCGAGATCCGCCGGACCCGGTCCGCGTGGGCGAAGGGCGAGCTGGCCGACGACGCCTACCGCACCGCGATGCGCGAGGAGATCGCCCGCGTCGTCGCGCTGCAGGAGGACGTCGGCCTCGACGTGCTCGTGCACGGCGAGCCGGAGCGCAACGACATGGTCCAGTACTTCGCCGAGCTGCTCGACGGGTTCGCGACGACGGACCTCGGCTGGGTGCAGTCCTACGGGTCGCGGTGCGTGCGCCCGCCGATCCTGTGGGGTGACGTGACCCGCCCGGCGCCGATGACGGTCGAGTGGACCCGGTACGCCGCGTCCCTGACGTCGAAGCCGGTCAAGGGCATGCTCACGGGGCCGGTGACGATCCTGGCCTGGTCGTTCGTGCGCGACGACCAGCCCCTGGCGGACACCGCGAACCAGGTGGCGCTCGCCCTGCGCGACGAGGTGAGCGACCTCGAGGCCGCCGGGACCGCCGTCGTCCAGGTGGACGAGCCGGCGCTGCGCGAGCTGCTGCCGCTGCGGCGCGCGGACCAGCCCGCCTACCTGGCGTGGTCGGTGGGGTCGTTCCGCCTGGCCACGGCCGGGGCCGCCGCGTCGACCCAGGTGCACACCCACCTGTGCTACTCCGAGTTCGGCGAGGTCATCGGCGCGATCGACGGCCTGGACGCCGACGTGACCTCCATCGAGGCGGCGCGCTCACGCATGGAGGTCGTCCCCGAGCTGCACGAGGCCGGGTACGCCCGCGGCGTCGGCCCCGGCGTCTACGACATCCACTCCCCCCGGGTGCCGTCGACGGCGGAGGTCACCGAGCTGCTCGGGCTCGCGGCGTCGTCGATCGACCCGGCGCTGGTGTGGGTCAACCCCGACTGCGGGCTCAAGACCCGCGGGTACGCCGAGGTCGAGCCGTCGCTGCGGCACCTCGTCGAGGCGGCGCGGACGGTGCGCGCCGGCCTCTGA	MTSPTPTDTTPFTRGTILGYPRIGRRRELKRAVEAYWAGRTDVVDLEVAAGALRRETVQRLVALGLDPDDGSVPGTFSYYDQVLDVVALLGAVPARFRDLIDDEDDSLDLDGYFTVARGRGEDAPLEMTKWFDTNYHYLVPEISEATPISFADHRIVREYAEAKEAGVTTRPTLVGPVTFLALSKAADDAGDGFHPLDRLDDVVAAYAELLRALAAVGVPWVQLDEPVLVADTVDADPARVDAAITSAYRALATDLAPASADDALDVTPERPRILVAAPFGGLATAGADGAPARDGLALLAATDVDAIAIDLVKGAVPTGSGPDGTVPGLAGKTLVAGVVDGHNVWRTDLAARLGTLDALRGLGAGSLAVGTSTSLLHVPHDVDDETWDGPAAERAGRTPALRRWLAFADQKVAEVTVLARAIADGPESVRTELDEASAALADRAAAAGVVVPAVRERLAALAPADFERGAHTERVAAQRDRLDLPLLPTTTIGSFPQTPEIRRTRSAWAKGELADDAYRTAMREEIARVVALQEDVGLDVLVHGEPERNDMVQYFAELLDGFATTDLGWVQSYGSRCVRPPILWGDVTRPAPMTVEWTRYAASLTSKPVKGMLTGPVTILAWSFVRDDQPLADTANQVALALRDEVSDLEAAGTAVVQVDEPALRELLPLRRADQPAYLAWSVGSFRLATAGAAASTQVHTHLCYSEFGEVIGAIDGLDADVTSIEAARSRMEVVPELHEAGYARGVGPGVYDIHSPRVPSTAEVTELLGLAASSIDPALVWVNPDCGLKTRGYAEVEPSLRHLVEAARTVRAGL				NA	NA	NA	NA	NA
AK001_01615	501			hypothetical protein	ATGATTCCCCTCACCGAGACCCAGCTCCGCGCTGCCCTCGTCAACGCCACCCGCAGCGAGCGCCAGCGCCTGCTCCCGCCCGACCTCGAGGCCCAGCGGTGGGACCGCCTCGAGTACCTCGGCTGGCGCGACCGCAAGCAGCCGCTCGCCGCCTACGTCGTCGCCGAGATCGACGGGGCACCGACCGGCATCATCCTGCGCGCCCCCGAGACCGGCGCCCGGCGCTCCGCGATGTGCGCCTGGTGCGAGCACGCCGGCGACCCCGGCGACGTCGCGATGTTCGTCGCCCGGCGCGGCGGGGCGTCCGGCCGCAAGGGCAACACCATCGGCACGCTGATCTGCACCGACTTCCGGTGCTCACGCAACGTGCGGCGTCGCCCGACCCTGGCCGAGGCCGGGGCCGACGACGACGGCGCCCGTGCCGCCGTCGTCGAGCGCCGCATCGCCGGGCTCACCTCGCGCGTGACCGCGTTCGTGGAGCAGGTGCGCAGCACCGTCTGA	MIPLTETQLRAALVNATRSERQRLLPPDLEAQRWDRLEYLGWRDRKQPLAAYVVAEIDGAPTGIILRAPETGARRSAMCAWCEHAGDPGDVAMFVARRGGASGRKGNTIGTLICTDFRCSRNVRRRPTLAEAGADDDGARAAVVERRIAGLTSRVTAFVEQVRSTV				NA	NA	NA	NA	NA
AK001_01616	219			hypothetical protein	ATGAGCGACTTCCAGGTCAACCGCGCCCCGCAGAACGACGCCCCCGGGGCCATGCTCGGGCGCGTCATCGTCTCCTTCGTGCTCTTCGTCGCGGGGCTGGTCCTCATCGGTGTCGGCGCGGTCGCCGACCCCTCGCTCGCCCCGTTCGTGTTCACCGGCGGCATCGTCGCGGTCGGGCTGGCCTTCGGCCTGCCGATGATCGGCGGCACCGAGCGCTGA	MSDFQVNRAPQNDAPGAMLGRVIVSFVLFVAGLVLIGVGAVADPSLAPFVFTGGIVAVGLAFGLPMIGGTER				NA	NA	NA	NA	NA
AK001_01617	564			hypothetical protein	ATGGCGGCCTTCGAGTACGCGGTCGAGATCGAGCACCTGCTCGTGTCTCCCGAGCACGCCTACTTCGGTCGGCCCCGCGACGGCGCCGCGCACGTGCCGACGTCGGACCGGGACGAGGCGGAGGTCGTCGCCGGGAAGGGGATCGTGGGGGACCGGTTCTTCGGCAAGGCGGCGCACATGGACGCCGCGGTCACCGTGTTCGCCGCCGAGGCCCTCGAGGAGATCGCCCGCGAGCTGGGGACCGGGCCCCTCGACCCGCTGCTGACCCGCCGGAACGTCGTGCTCCGTGGAGCCCAGCTCGCGCCGCTGATCGGGCACGAATTCACGCTCCGGTCCCGGGACGCCACCGTGACCCTGCACGGCGGCCGCCCGGCGAACCCGTGCCCGTGGATGGACCGCATGCTGGCCCCGGGTGTGCACGCCGCGATGCGGGGTCGTGGGGGAGTGCGGTGCACGCCGGTCTCCGACGGGGTGCTGCGGCGAGGACCTGCGGTGCTGGTCAGCCCCGTGGCGCTCGATCCGTCACGCGCGGGGGAGGCCGTGCGGCGGCCGCGACTGCCGTGA	MAAFEYAVEIEHLLVSPEHAYFGRPRDGAAHVPTSDRDEAEVVAGKGIVGDRFFGKAAHMDAAVTVFAAEALEEIARELGTGPLDPLLTRRNVVLRGAQLAPLIGHEFTLRSRDATVTLHGGRPANPCPWMDRMLAPGVHAAMRGRGGVRCTPVSDGVLRRGPAVLVSPVALDPSRAGEAVRRPRLP				NA	NA	NA	NA	NA
AK001_01618	420	mutT2	COG0494	Putative 8-oxo-dGTP diphosphatase 2	ATGACTCGTCGCCTCGTCGTCGCCGCCGCGATCGTCGACGCCACCGAGCGTCCGCGTCGTCTGCTCGCCGCGCGACGGTCGCAGCCCGCCGAGCTGGCCGGACGCTGGGAGTTCCCCGGCGGCAAGGCCGAGCCGGGGGAGCACCCCGTCGACGCCCTGCACCGTGAGCTGCACGAGGAGCTCGGGGTCGGGGTCGACCTCGGCGACGAGGTCGTGGGTCCCGACGACGGCGGCTGGTTCATCACCGACCGGCACGTGCTGCGGCTCTGGTTCGCCCGCGTGGTCTCCGGGGCTCCGGAACCGCTCGTCGAGCACGACGAGCTGCGCTGGCTGGACGCCGGCTCCCTGTGGGACGTGCACTGGCTCGACGGGGACGTGCGGATCGTCGAGGAGCTCGCGCAGACCCTCCAGCCGAGGTAG	MTRRLVVAAAIVDATERPRRLLAARRSQPAELAGRWEFPGGKAEPGEHPVDALHRELHEELGVGVDLGDEVVGPDDGGWFITDRHVLRLWFARVVSGAPEPLVEHDELRWLDAGSLWDVHWLDGDVRIVEELAQTLQPR	PGPT0024310_7	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024310-pimE-K13669	NA	NA
AK001_01619	234	malT_1		HTH-type transcriptional regulator MalT	ATGAGTGCTATCGAACTGGAGCGCCCCTCGCTCAGCCCGAGCCTGACGCGCCGGGAGCAGGTCGTGCTGTCGAACTTGTCCGAGGACGTGACGCTGGAGCAGATCGCCAGCAAGCTCTACGTGACGCGCAACACGGTGAAGTCGCAGGTGCGCAGCGTCTACCGCAAGCTCGGGGTCTCCACCCGGGCCGACGCTGTCGCCTGGGCTCGCCGGGCCGGCCTCGGGTCGAGCTGA	MSAIELERPSLSPSLTRREQVVLSNLSEDVTLEQIASKLYVTRNTVKSQVRSVYRKLGVSTRADAVAWARRAGLGSS	PGPT0025270_49	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE-SPORULATION_REGULATION,PGPT0025270-gerE-K01994	NA	NA
AK001_01620	369	gcvH		Glycine cleavage system H protein	ATGGCCGACTACCCCAGCAACCTCCGTTACTCCGTCGAGCACGAGTGGATCGACGACGGCACCCCGGCGACCGTCGGCGTGACCTCCTTCGCCGTCGAGGCGCTCGGCGACGTCGTCTACCTCGAGCTGCCCGAGGTGGGCGCCGAGATCGAGGCCGGCACCGTCGTCGGCGAGATCGAGTCCACCAAGTCCGTCTCCGAGCTGTACTCGCCCGTGTCCGGGACCGTCGTCGAGGTGAACGACACGGCGGTCGACGACCCGGCCCTGGTCAACTCCGAGCCGTTCGGCGCGGGCTGGCTGTTCAAGGTCGAGGTGTCCGGCGAGGGCCAGCTCCTCAGTGCCGAGGAGTACGCCCAGCACGCCGGATGA	MADYPSNLRYSVEHEWIDDGTPATVGVTSFAVEALGDVVYLELPEVGAEIEAGTVVGEIESTKSVSELYSPVSGTVVEVNDTAVDDPALVNSEPFGAGWLFKVEVSGEGQLLSAEEYAQHAG				NA	NA	NA	NA	NA
AK001_01621	1155	gcvT_1	COG0404	Aminomethyltransferase	ATGACCACCAAGAAGTCGCCGCTGCACGACGAGCACGTCGCCCTCGGTGCCCACCTGACCGCGTTCGGGGGGTGGGACATGCCCCTGCGGTACACCTCCGACCTGGCCGAGCACCGGGCGGTGCGCGGCGCGGCGGGCCTGTTCGACCTGTCGCACATGGGCGGGATCAGCGTGACCGGCCCGGAGGCCGCGGCGTTCCTCGACCACGCGCTGGTCGGGAACTTCTCGGCGCTGCGCCCGATGCGGGCGCGCTACACGATGATCTGCGCCGACGACGGGGGAGTGCTGGACGACCTCATCGTCTACCACAACGGCACCGACGAGTACTTCGCCGTGCCCAACGCGGCGAACGCGGACGCCGTGCTCGTGGCGATGCTGGAGCGCGCGGCCGGGTTCGACGTCGCCGTGCGGGACATCTCCGCGAGCCTCGCCCTGATCGCCGTGCAGGGTCCGCGCGCCGAGGAGATCCTGCGCGAGGTCCTCACCGAGGATCCTGAGATCTCCGGCGGGACGGCGCTGGACGACCTGCGCTACTACGCCTGCCTCGGGATGCGGTTCGGCGCCGAGGGCGTCCTGGTGGCTCGTACCGGGTACACCGGCGAGGACGGGTTCGAGATCTGGGTCGACACCCCGCACGCCGTCGCGCTGTGGCGGGCGCTGCTCGCCGCCGGCGAGCCGTACGGACTCGTCCCCGCCGGGCTGGCGGCCCGCGACTCGCTCCGGCTCGAGGCCGGCATGCCGCTGTACGGCAACGAGCTCGACACCACCACGACGCCCTACGACGCGGGGGCCGGCCGCATCGTCAAGCTCGACAAGGCGCACGACGACGGCACGCCGGTCGACTTCGTCGGGCGCGAGGCCCTGGCAGCCCGCAGCGAGGCCGACCCGGAGCGCGTGCTCGTCGGCCTGCGCGGGACCGGACGCCGTCCCGCGCGCGCCGGGTACGCCGTCGTGCGCACCACCGACGACGGCGGCGTGGGGGAGCAGGTCGGCACGGTCACCTCCGGGGTGCCCTCGCCGACGCTCGGCCACCCGGTCGCCATGGCGTACGTGCGCCCCGACGTCGCCGCGGAGGGGACCGAGCTCGCCGTCGACGTGCGCGGCCGGGCCGAACCGTTCGTGGTGACGGCCATGCCGTTCTACCGTCGCGGCTGA	MTTKKSPLHDEHVALGAHLTAFGGWDMPLRYTSDLAEHRAVRGAAGLFDLSHMGGISVTGPEAAAFLDHALVGNFSALRPMRARYTMICADDGGVLDDLIVYHNGTDEYFAVPNAANADAVLVAMLERAAGFDVAVRDISASLALIAVQGPRAEEILREVLTEDPEISGGTALDDLRYYACLGMRFGAEGVLVARTGYTGEDGFEIWVDTPHAVALWRALLAAGEPYGLVPAGLAARDSLRLEAGMPLYGNELDTTTTPYDAGAGRIVKLDKAHDDGTPVDFVGREALAARSEADPERVLVGLRGTGRRPARAGYAVVRTTDDGGVGEQVGTVTSGVPSPTLGHPVAMAYVRPDVAAEGTELAVDVRGRAEPFVVTAMPFYRRG	PGPT0008130_951	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605	NA	NA
AK001_01622	2901	gcvP	COG0403	putative glycine dehydrogenase (decarboxylating)	GTGACCCACTCCCCCTTCGACCCGGACGTCTTCGCCGACCGTCACATCGGACCGCGCGGCGACGAGACCGCCGCGATGCTGGACCAGCTCGGGTACACCGACCTCGACGCGCTCGTCGACGCCGCGGTCCCGTCCGCCATCCGCCAGCCGGACGCGCTGGACCTGCCGCCGGCGCGGACCGAGGCGGAGGTGCTGGACCATCTGCGCGCCGTCGCGGCGAAGAACGTGGTCAAGCGCCAGATGATCGGGCAGGGCTACTACCCGACGTTCACGCCGGCGGTGATCCGTCGGAACGTGCTGGAGTCCCCCGCCTGGTACACGGCCTACACGCCGTACCAGCCGGAGATCTCCCAGGGCCGGCTGGAGGCGCACCTCAACTTCCAGCAGGTGATCGAGGACCTCACGGGGCTGGAGATCGCCGGCGCGTCCCTGCTCGACGAGGCCACCGCCGTGGCCGAGGCCGTCGCCCTGATGTGGCGGGCCTCCCGGGCCAAGCAGGGCTACGTCGTGCTGGACACCGAGCTGTTCGGCCAGTCGCTCGCGGTGACCCGTGGCCGGGCGGAGGCCGTCGGGCTGCCCGTCGTCGTCGCGGACCTCTCCGACGGCCTCGACGCCGGCCTGGAAGCCCTGGAGGCCACCGGGACCGCGCTGCCGGCAGGGAACCTCGTGGGCGTCGTCGTCCAGCAGTCCGGCGCCTCGGGCCGGGTGCTCGACCTGCGCACGGTGGTCGACGAGGCCAAGGCGCGCGGGGCCCAGGTGACGGTCGCGACCGACCCGCTCGCGCTGACGATGCTCCGCTCCCCCGGCGAGCTCGGTGCGGACGTCGCCGTCGGCTCGGCCCAGCGGTTCGGCGTCCCCCTCTTCCACGGCGGGCCGCACGCGGCCTACATCGCCGTGCGCAAGGGCCTGGAACGCCAGCTCCCGGGCCGGCTCGTCGGGGTCTCGGTCGACGCCGACGGCGAGATCGGCTACCGCCTGGCCCTCGCCACCCGCGAGCAGCACATCCGGCGTGAGCGCGCGACGTCGAACATCTGCACCGCGCAGGCGCTGCTGGCCGTGGTGGCCTCGATGTACGCGGTGTACCACGGCCCCGAGGGGCTGCGCGCGATCGGTGAGCGCGTGCACGGCCGGGCGCTGTCGCTGGCCGCGGGGCTGCGGGCGGCCGGTGTCGAGGTCGTCCACGACGAGTTCTTCGACACGGTCCGGGTGGCCGTCCCCGGCCGCGCCCCCGAGGTCGGCGCCGCCGCCGTCGAGGCCGGGTACAACCTGTACATCGACGGTGCGGATCACGTACAGATCGCGTGCGACGAGACCACCACCGCCGACGACGTGGCGGCGCTGCTCGCGTTGTTCGACGCCTCCCCGGCCGACGCCGCCGACGAGGCCGCCCTCGGCGACGCGCTGCTGCGCACCACGGACTACCTGCAGCACCCGGTCTTCCACCGCCACCGGTCCGAGACCGCGATGCTGCGCTACCTGCGGGCGCTGGGCGACAAGGACCTCGCGCTGGACCGCACGATGATCCCGCTGGGCTCGTGCACGATGAAGCTCAACGCGACGGCCGAGATGGAGCCGATCAGCTGGCCGCAGTTCGCCGACCTGCACCCGTACGTCCCGGCCGACCAGGCCCGCGGCTACGCCGAGCTGGTGGGCACGCTCGAGGGGTGGCTGGCCGAGATCACCGGCTACGCCGCGGTGTCCGTGCAGCCCAACGCCGGCTCCCAGGGCGAGCTCGCGGGGCTGCTGGCGATCCGGGCCTACCACGCCTCGCGCGGCGAGGAGCAGCGTGACGTGGTGCTCATCCCGGCCTCGGCCCACGGGACCAACGCGGCCTCGGCGACGCTGGCCGGTCTGCGCGCGGTGGTCGTCAGGACCGCCGCCGACGGCGAGATCGACCTGGACGACCTGCACGCCGCGCTCGCCAAGCACGACGGTCGCGTGGCCGGGATCATGATCACCTACCCCTCCACCCACGGCGTCTACGAGCCGCACGTCCAGGATGTGTGCGCTGCAGTACACGACGCGGGTGGTCAGGTGTACATCGACGGCGCGAACCTCAACGCGCTCGTCGGCCTGGCCCGGCCGGGACGGTTCGGCGGCGACGTGTCGCACCTGAACCTGCACAAGACGTTCTGCATCCCGCACGGCGGGGGAGGACCCGGCGTCGGCCCGGTCGGCGTCGCCGAGCACCTCGTGCCGTTCCTGCCCGGCGACCCCACGCCGTCGGGCACGGGGGAGCCGCTGCCGGCCGGCGCGGTGCCGCCCGTCTCCGCGACCCGCCACGGCTCGGCCGGCATCCTGCCGATCTCGTACGCCTACCTGGCGCTCATGGGACCCGACGGGCTCACCTCGGCCACCGAGCACGCGGTGCTGACCGCCAACTACGTCGCCTCCCGCCTCGCCCCGCACTACCCGGTGCTCTACACGGGCGACCACGGACTGGTCGCGCACGAGTGCATCCTCGACCTGCGCGACATCACCGCGGAGACCGGCGTGACCGTCGACGACGTCGCCAAGCGGCTCATCGACTTCGGCTTCCACGCCCCGACGATGGCGTTCCCCGTGGCGGGCACGCTCATGGTCGAGCCGACCGAGTCCGAGGACCTCGGCGAGCTCGACCGGTTCGTCGACGCGATGATCGCCATCCGCGGCGAGATCGACGCCGTCGCGGCCGGCCGGTGGCCGCTCGAGGACTCGCCGCTGCGCAACGCGCCGCACACGGCCGCATCGGTCATGGTGGACCAGTGGGACCACCCGTACACGCGCGAGCAGGCGGCGTTCCCCGTGGCGAGCCTGCGCCGCGGCAAGTACTGGCCGCCGGTGCGCCGGATCGACCAGGCGCACGGCGACCGCAACCTGCAGTGCTCCTGCCCGCCCGTCGACGCCTACGCCGAGAGCTGA	MTHSPFDPDVFADRHIGPRGDETAAMLDQLGYTDLDALVDAAVPSAIRQPDALDLPPARTEAEVLDHLRAVAAKNVVKRQMIGQGYYPTFTPAVIRRNVLESPAWYTAYTPYQPEISQGRLEAHLNFQQVIEDLTGLEIAGASLLDEATAVAEAVALMWRASRAKQGYVVLDTELFGQSLAVTRGRAEAVGLPVVVADLSDGLDAGLEALEATGTALPAGNLVGVVVQQSGASGRVLDLRTVVDEAKARGAQVTVATDPLALTMLRSPGELGADVAVGSAQRFGVPLFHGGPHAAYIAVRKGLERQLPGRLVGVSVDADGEIGYRLALATREQHIRRERATSNICTAQALLAVVASMYAVYHGPEGLRAIGERVHGRALSLAAGLRAAGVEVVHDEFFDTVRVAVPGRAPEVGAAAVEAGYNLYIDGADHVQIACDETTTADDVAALLALFDASPADAADEAALGDALLRTTDYLQHPVFHRHRSETAMLRYLRALGDKDLALDRTMIPLGSCTMKLNATAEMEPISWPQFADLHPYVPADQARGYAELVGTLEGWLAEITGYAAVSVQPNAGSQGELAGLLAIRAYHASRGEEQRDVVLIPASAHGTNAASATLAGLRAVVVRTAADGEIDLDDLHAALAKHDGRVAGIMITYPSTHGVYEPHVQDVCAAVHDAGGQVYIDGANLNALVGLARPGRFGGDVSHLNLHKTFCIPHGGGGPGVGPVGVAEHLVPFLPGDPTPSGTGEPLPAGAVPPVSATRHGSAGILPISYAYLALMGPDGLTSATEHAVLTANYVASRLAPHYPVLYTGDHGLVAHECILDLRDITAETGVTVDDVAKRLIDFGFHAPTMAFPVAGTLMVEPTESEDLGELDRFVDAMIAIRGEIDAVAAGRWPLEDSPLRNAPHTAASVMVDQWDHPYTREQAAFPVASLRRGKYWPPVRRIDQAHGDRNLQCSCPPVDAYAES	PGPT0020480_1864	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281	NA	NA
AK001_01624	810	oxyR		Hydrogen peroxide-inducible genes activator	GTGTCCCAGCAGATCGCCCGTTTAGAGGCCGAGGAGGGCTTTCCCGTCCTCGACCGCGGCCCCCGAGGCGTGAGCCTGACCCCGGCCGGCCGGGTGCTGGCCGACGCCGCCGAACGCATCGAGGCCGAGCTCCTGGAGGCCCACCAGGAGATCGCCAACCTCGGCGAGGGTGTGAGCGGCACGGTGACCATCGGCGCGTTCCAGTCCGCGATCCGGTCCGTCGTCGCCCCGTTGCTCGGACCGTTCGCCGAGAACTACCCCGGCGTCACCCTGGACGTGCGCGAGCACGAGCCGGCGGACGCCATCCGCATGCTGCGGGGTGGTGACCTCGACGTCGTCCTGCTCGAGCGCGACGTCGAGGTCGACTCCCCCGCGCCCCGCGGCGCGCACGACATCCCCCTGCTCGACGAGCCCTGGCTGCTCGTCGTGCCGTCCGCGCTGCCCCGACCCGAACGGTTGGACGACCTGCGCGACATGCCGTGGATCGGCGCCGTCCAGAACACCGCGGCGGACCGTGCGCTGCGTCGCCTCGGCCGCACCCTCGGCACCACGCTCAGCGTCCGGCACGCCTACTTCGACTTCGACACCGCGCTCGCCCTGGTGGACGCCGGGCAGGGCATCGCGATGCTGCCGGCGCTCGCCGTGCGCCGCTCCGAGGCTCCCGAGGGGGCCGAGGTCGTCGCCATGCCGGGTCTCGGCACGCGCCGCATCGTGGTGCGCCACCGCTCGACGCGGCACGAGCCGGGCCCCGCCGTGCGTGCCGTCGTCGACACCATGGTGGAGGTCGCCCGCGACCTGGAGCTCACCTGA	MSQQIARLEAEEGFPVLDRGPRGVSLTPAGRVLADAAERIEAELLEAHQEIANLGEGVSGTVTIGAFQSAIRSVVAPLLGPFAENYPGVTLDVREHEPADAIRMLRGGDLDVVLLERDVEVDSPAPRGAHDIPLLDEPWLLVVPSALPRPERLDDLRDMPWIGAVQNTAADRALRRLGRTLGTTLSVRHAYFDFDTALALVDAGQGIAMLPALAVRRSEAPEGAEVVAMPGLGTRRIVVRHRSTRHEPGPAVRAVVDTMVEVARDLELT				NA	NA	NA	NA	NA
AK001_01625	345			hypothetical protein	ATGTCGCAGACCCTGTCGCTCGTCATCACCGGGCTCGGGTGGTTCGGAGCTCTGATCGGACTCGTCGCGTATGCGATGGTCTCGAAGGGTCGCTGGGCCCCGAACTCCCTGCCGTTCCAGGTGGCCAACCTGACGGCCACCTCCACGCTGTTCCTCGTGGCCGCCGTCGAGGGCGTCTGGCCCTCGGTCTTCGCCAACGTGGCCTGGATGGTCATCGGCGTGCAGGCCCTCGCGGTCATCCGCAAGGCCCGCCGCACCGGCCGCGCCGTGACCCGCGTGGACGTCGCCCCCCGCGAACCCGCGGCCGAGCACGTCGGCGCCGTCGCCCCTCCCGTGCTGCGGTAG	MSQTLSLVITGLGWFGALIGLVAYAMVSKGRWAPNSLPFQVANLTATSTLFLVAAVEGVWPSVFANVAWMVIGVQALAVIRKARRTGRAVTRVDVAPREPAAEHVGAVAPPVLR				NA	NA	NA	NA	NA
AK001_01626	1197	aspC	COG0436	Aspartate aminotransferase	ATGAAGGTCTCGCGCCGCAGCCAGGTCCCGCCGTTCGCCGTGATGGAGGTCCTGGCCGCCGCCAACACGCGACGCAGCGCCGGGCACGACGTCCTCAACCTCTGCGCGGGCGAGCCGTCGACGGGGGCGTCCGACGTCGTGCGCGAACGCGCCGCGGAGATCCTGCGGCGCGCCGACCTCGGCTACACCGAGGCGATGGGTGTGCCCGCCCTGCGCGAGGAGATCGCCGGGCACTACCGGCGGTGGTACGGCCTCGACGTCGACCCGGGCCGGATCGCCGTGACCACGGGGTCCAGCGGCGGGTTCGTGCTGACGTTCCTGGCCGCGTTCGACGTCGGGGACCGCGTCGCGCTCGCCCGGCCGGGCTACCCCGCGTACAAGAACATCCTGGCGGCGCTGGGCTGCGAGGTCGTCGAGATCGACTGCGGCCCCGAGACGCGGTACCAGCCCACGGTCGCCCAGCTCGACCAGGTGACGGCCGACGGTCCGCTCGCCGGTCTGATCGTGGCGTCCCCGGCGAACCCGACGGGCACGATGATCCCCCCGGCCGAGCTCGACGCGGTCGCCCGCTGGTGCGCCGACCACGAGGTCCGGCTGGTCAGCGACGAGATCTACCACGGCATCGCCTACGGCACCGAGCTCGGCCAGGCCACGGCGGCCGTGCACGACGGGCGGGGCGCCGTCGTCGTCAACTCGTTCTCCAAGTACTGGGCGATGACGGGGTGGCGGCTCGGCTGGCTGGTGCTGCCCGAGGAGCTGGTCGCCCCGGTCGGGGCGCTGGCCGGCAACGTGGCGCTCTCCCCTCCCGCCCTGGCCCAGCACGCGGCGATCGCCGCCTTCTCCCCCGCCGGCTACCAGGCGGCGGCCGACAACGTCACGCGCTACCGCGCCTCGCGGGCCGCGCTGCTGGAGCGCCTGGACGAGCTGGGCTGGCGGCCGGTGGCCCCGGCGGACGGCGCGTTCTACCTGTACGGCAACATCTCGCGGTTCGGCCTGGACGCGGTCACGTACTGCTCGCGGCTGCTGGCCGAGGCGGACGTCGCGATCACGCCCGGGACCGACTTCGACGGCCGCGCGGGCGGCGACTGGGTCCGGCTGTCGTTCGCTGCCGACCCGTCGACCGTCGCGCGGGCGGTCGACCGCATCGTGGCCTGGCAGGACGGGCTGGTGCGCACGGACGGCGTGCCCCGGACATGA	MKVSRRSQVPPFAVMEVLAAANTRRSAGHDVLNLCAGEPSTGASDVVRERAAEILRRADLGYTEAMGVPALREEIAGHYRRWYGLDVDPGRIAVTTGSSGGFVLTFLAAFDVGDRVALARPGYPAYKNILAALGCEVVEIDCGPETRYQPTVAQLDQVTADGPLAGLIVASPANPTGTMIPPAELDAVARWCADHEVRLVSDEIYHGIAYGTELGQATAAVHDGRGAVVVNSFSKYWAMTGWRLGWLVLPEELVAPVGALAGNVALSPPALAQHAAIAAFSPAGYQAAADNVTRYRASRAALLERLDELGWRPVAPADGAFYLYGNISRFGLDAVTYCSRLLAEADVAITPGTDFDGRAGGDWVRLSFAADPSTVARAVDRIVAWQDGLVRTDGVPRT				NA	NA	NA	NA	NA
AK001_01627	576			hypothetical protein	ATGGGCACCGACGACCACGGACCCCGCCCCGACCCGGCCGCCCGCGAGCCGGGCGGGTCCGGCGACGACCCGGTGCGTCGCGCCGCGCAGTACCGGGTCGACCGGGAGATCGAGCGCGAGCGCGCCGAGCAGGGCCTGCCGCCCCGGACCCCCGAGGAGGCCGCGGCGGACCGCGCCGAGCGGCCCCGGCCGCCGGAGCACGGCCGTGCGCGGTGGGCGGACACGCTGGTCGACCAGGCCATCCGGCGGGGCGAGTTCGACGACCTGCCGCTGCAGGGCAAGCCGCTGCCGGGCATCGGCGGCACCCACGACCCGGACTGGTGGCTGAAGAACCTCGTCGAGCGCGACCACATCACCGGCGTGCTGCCCGCGGCCCAGCTGCGCCGGGACGACGCCGAGCTCGACACCACGCTCGACCGCGAGCGCGACGAGCGACGCGTGCGAGCCCTGCTCGAGGACTTCAACGCCCGTGTCGTCGACGCCCGCCGCCAGCTCACCGGCGGGCCGCCCGTGGTCACCCCGACGCGCGACGTCGAGCAGGAGGTCGCCCGGTGGCGCGCACGACGCCGGCCCTGA	MGTDDHGPRPDPAAREPGGSGDDPVRRAAQYRVDREIERERAEQGLPPRTPEEAAADRAERPRPPEHGRARWADTLVDQAIRRGEFDDLPLQGKPLPGIGGTHDPDWWLKNLVERDHITGVLPAAQLRRDDAELDTTLDRERDERRVRALLEDFNARVVDARRQLTGGPPVVTPTRDVEQEVARWRARRRP				NA	NA	NA	NA	NA
AK001_01628	1137			hypothetical protein	ATGCAGGACGGTGGAGCGCAGCGCGTGACGGGCACGCCGGTCACGCCGACCGCGGGCGACGCCGCCCCGGGCCGCGGGCCCGGGTGGGCGCCCGACGTCCTGCCCGGCTTCGAGCGGTGGACGCTGCCGCTCGCGCCCGACTTCGAGGGCGAGGTCGTCGCCACGCTGGTCCGTCCGCGCCCCCCGCAGGACCCGGCGGTCAGGGCGGACCGGCCCGACGTCGGCGTGGACCTGCTGTACGTGCACGGGTGGACCGACTACTTCTTCCAGACCCACCTGGCCGACTTCTGGGAGGGTCTCGGGGTCCGGTTCCACGCCCTGGACCTGCGCAAGTACGGCCGCAGCCTGCGCGAGCACCACACCCCCGGGTTCGTCACCCGCCTGGAGACCTACGACGAGGACCTCGAGGCGGCGCTGTCGGCGATCGGGCACGGCGAGCACGACCGGACGGACCGGCGGCTGGTGCTCATGGGGCACTCCACCGGCGGGCTGGTCCTCAGCCTGTGGACGGCGCACCACCCGGGCCGGGCCGCGGCGCTGGTGCTCAACAGCCCGTGGCTCGAGTTCCAGACGCGCAAGGTCGGCCGCCGCGTCCTGGAGCCCGGCATCCGCGCCCACGCCGCGCTCGCGCCGCGCAGCCACCTGGTGAACGTCGACCAGGGGTTCTACGTCCGATCGATCTCGTCGCGGTACGACGGGGTGTGGGACGTCGATCCGGCCTGGCGCCCGGACGACGGATGGCGGGCCACGCCGGCCTGGCTGTCCGCGATCTTCGACGGCCACGAGGAGGTGGCCGTCGGCCTCGACCTGGAGGTGCCGGTCCTGGTGATGCTCTCGACGCGGACGATCCCGCCGGTGCGGTGGTCCGAGGAGATGCTGCGGGCGGACACCGTGCTCGACGTCGAGGGGATCGCCGAGCGGGCGGCGCGGCTCGGGCGGCTGGTGACCATCGCGCGGATCGAGGGGGCCCTGCACGACGTGACGCTGTCGGCGCCCGACGTGCGCGCCGTCGTCCGGCGGGAGACGGAACGCTGGTTCCGGGCCTACGTCCCGTCGCAGCAGGCCGAGCCGGAGCCGCCCCCGGAGCCGCGGGGCTGGCGGCGGTGGTTCCGGGCGCTGTCCCCGCGCTCGGACTGA	MQDGGAQRVTGTPVTPTAGDAAPGRGPGWAPDVLPGFERWTLPLAPDFEGEVVATLVRPRPPQDPAVRADRPDVGVDLLYVHGWTDYFFQTHLADFWEGLGVRFHALDLRKYGRSLREHHTPGFVTRLETYDEDLEAALSAIGHGEHDRTDRRLVLMGHSTGGLVLSLWTAHHPGRAAALVLNSPWLEFQTRKVGRRVLEPGIRAHAALAPRSHLVNVDQGFYVRSISSRYDGVWDVDPAWRPDDGWRATPAWLSAIFDGHEEVAVGLDLEVPVLVMLSTRTIPPVRWSEEMLRADTVLDVEGIAERAARLGRLVTIARIEGALHDVTLSAPDVRAVVRRETERWFRAYVPSQQAEPEPPPEPRGWRRWFRALSPRSD				NA	NA	NA	NA	NA
AK001_01629	516	ptpA	COG0394	putative low molecular weight protein-tyrosine-phosphatase	GTGAGCGAATCGATCTACCGCGTGATGACCGTGTGCACCGGCAACATCTGCCGCTCCCCCATGGCCGAGGTCGTGCTGCGCGACCGCCTGGAGTCGGCCGGCCTGGCCCACCGGGTCACGGTGGACTCCACCGGGGTCAGCGACGAGGAGCGCGGCAACCCCGTCGACCCGCGGGCCCGCCGCGCGCTCGCCTCCCGCGGGTACCCCGTCGGGGACGGCCACCGCGCCCGTCAGGTCGCGGCCGCGGATCTCTCCGCACGCGATCTCGTGCTGCCGATGACGTCGCGGCACGCCCAGGTGCTGCGGCGCCTCGCCAACGGTACGGATCCCCAGATCGTGATGTACAGGTCGTTCGACCCGGCGGCCCCGCAGGTCACGGGGGCCGGCGACGAGTCACGGCTGGACGTCGACGACCCCTGGTACGGGGACGCGGACGGGTTCGAGATCTGCCTCGACGAGATCGAGGCCGCCGCCGACGGGATCGTCACGCACGTGCGGGCGCAGCTCGCTCGCTGA	MSESIYRVMTVCTGNICRSPMAEVVLRDRLESAGLAHRVTVDSTGVSDEERGNPVDPRARRALASRGYPVGDGHRARQVAAADLSARDLVLPMTSRHAQVLRRLANGTDPQIVMYRSFDPAAPQVTGAGDESRLDVDDPWYGDADGFEICLDEIEAAADGIVTHVRAQLAR	PGPT0014530_4319	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-WZA-WZC-WZB-WEC_METABOLISM	CE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104	NA	NA
AK001_01630	930	qorB	COG0702	Quinone oxidoreductase 2	ATGAAGTGGTCCGCCGACGGTCTGATCGCGGTGACGGGAGCCTCCGGCCGCGTCGGGTCCCGGCTCGCCTTCCGGCTGGCCGCGGAGGGAGCGCACCAACGACTGGTCGTGCGCGACCCCTCCCGGGTGCCGCACCTCGACGACGGGCGCCCGCTGCCCGAGTGCGAGACCGCCGTCGCGCAGGGGTACGACGACGAGGCGGGCATGCGCGCCGCGTTCGAGGGCGTGCAGACCGTGTTCCTGGTCAGCGCCCGCGAGTCCGCCGACCGCGTCGCCGAGCACGTCGCCGCGATCGACGCCGCCGTGCGGGCGGGGGTCGAGCGGATCGTCTACGTCTCCTTCGTGGGGGCCGCACCGGACGCCACGTTCACCTTCGCCCGCGACCACTTCCACACCGAGCAGCACCTGCGCAGCACCGGACTGCGGTGGACCGTGCTGCGCGACAACCTCTACCACCAGGCGCTCGCCTCGTTCGTCGGGCCGGACGACGTCATCCGCGGTCCCGCGGGGGACGGACGCGTGGCGTCGGTCGCGCACGACGACGTCGCGGACGTCGCCACCGCGGTCCTGCTCGACGAGGACCCGACCCGTCACGACGGCGTCGTGTACGACGTGACCGGGCCCGAGGCGATCAGCCTGCTGGAGGTCGCCGCGGCCCTGACCGTCGCGACCGGGCGCGAGATCCGGTACCACGCCGAGTCCGTCCCCGAGGCGTACTCGTCGCGCGCACGGTTCAACGCCTCCGCCGTCGAGCTGGCGGGCTGGGTCTCCTCCTACGAGGCGATCGCGGCCGGGGAGATGGCGCACGTGTCCCGCGACGTGGAGCGGCTGGTCGGGCGCCCCGCCCGGTCGTTCGCGCAGTGGCTCGACGACTACCCCCACGAGTGGGAGGCGCTGCGCCGGCGCGGCCCCGAGGGGCCTCCGGCGTAA	MKWSADGLIAVTGASGRVGSRLAFRLAAEGAHQRLVVRDPSRVPHLDDGRPLPECETAVAQGYDDEAGMRAAFEGVQTVFLVSARESADRVAEHVAAIDAAVRAGVERIVYVSFVGAAPDATFTFARDHFHTEQHLRSTGLRWTVLRDNLYHQALASFVGPDDVIRGPAGDGRVASVAHDDVADVATAVLLDEDPTRHDGVVYDVTGPEAISLLEVAAALTVATGREIRYHAESVPEAYSSRARFNASAVELAGWVSSYEAIAAGEMAHVSRDVERLVGRPARSFAQWLDDYPHEWEALRRRGPEGPPA	PGPT0009465_97	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009465-qorB-K19267	NA	NA
AK001_01631	591			hypothetical protein	ATGCTCGGTCGGGGTGGCCACGGCACCATCCTAATACCCCAGAGGGTATCCGGCCAGGACGGGCCCCTCGCGTCCGCCGTCGTCTGGCACCACGATGGACCGATGAGCGACGACACGGGCCGGTTCCCCGACCACGGCGGGCGCCCCGAGACGCCCGAGCAGCGCTCCGACCGCAACTGGAACGAGCTCCTGCAGGAGCTCCGGGTGCTCCAGACGGGCGTCCAGATCCTCACCGGCTTCCTGCTGATCCTGCCGTTCCAGGGGAACTTCTCCGACCTCGACGCCGTCCAGCGCGGCGTCTACCTCGTCGACATCCTCGTGTGCCTGGTGACCTCGGGACTGTTCATCGCCCCGGTGGCGATCCACCGGGGGCTGTTCCGCCGCCAGCTCAAGCTCGAGGTCGTCAGCCTCGGGGACCGCATGACCCGGGTCGGGCTCGCGCTGCTGGCCGTGGCGCTCTCCGCCACCGCGCTGCTCGTGTTCGACGTCGTCGTGGGTCGCGTCGCCGGGCTGGTGGTCGGGGGCGCGGTGGCCACGATGCTGCTCGGGCTGTGGGCGGTGCTGCCCGTGATGGTCCGCCGCCGCGCCTGA	MLGRGGHGTILIPQRVSGQDGPLASAVVWHHDGPMSDDTGRFPDHGGRPETPEQRSDRNWNELLQELRVLQTGVQILTGFLLILPFQGNFSDLDAVQRGVYLVDILVCLVTSGLFIAPVAIHRGLFRRQLKLEVVSLGDRMTRVGLALLAVALSATALLVFDVVVGRVAGLVVGGAVATMLLGLWAVLPVMVRRRA				NA	NA	NA	NA	NA
AK001_01632	318			hypothetical protein	GTGCTCGCCGCCGCCCTCCTCGCCGCGTGGTACCTCACCGCGGGCGGGGTGCCCGATCCCGTGTACGGCGGTCTCGTGCTCGTCAGCGCCGCGCTGGGCGGCGCCACGCTGGCCACCTACGTGCCGCCGTCCGGCAGCACCTGGCGCAGCCGGCTCGGGTGCGGGCCGTGCGACGTCGCCGCGGCCGCCACGGTGGTCGTCCCGCCGATCCTGCTCGCGCCGGCACCCACCGTGACGATGGCGCTCGTCGCCGTCGCGGCCACGGGATTCGGCCTGTTCCAGCGCCGGGACGCCGCCGGCGCCTCCTGCCCCGTCTGA	MLAAALLAAWYLTAGGVPDPVYGGLVLVSAALGGATLATYVPPSGSTWRSRLGCGPCDVAAAATVVVPPILLAPAPTVTMALVAVAATGFGLFQRRDAAGASCPV				NA	NA	NA	NA	NA
AK001_01633	390			hypothetical protein	ATGAGCTACACCCTGACCGCCACCGCGACCGCCCCCTTCGCCGAGACCGTGACGCAGGTCCGCGAGGCCCTGTCCGCGCAGGGCTTCGGGGTGCTCACCGAGATCGACATGGCCGCGACCCTGCAGACCAAGATCGGGGCCGAGATCGAGCCCTACCTCGTGCTCGGCGCCTGCAACCCGCCGCTCGCGCACCGGGCCCTGCAGGCCGACCGCTCCGTCGGCGCCCTGCTGCCCTGCAACGTCGTCGTGCGCGACCTGGGCGACGGCAGCACCGCCGTCGAGGCCGTCGACCCGCACGCCATGATGTCCGTGGCCGACAGCCCCGAGCTGAAGGCCGTGGCCGACGACGCCGCCGACCGGCTGCGCACCGCGCTCGACTCGCTGTCCTGA	MSYTLTATATAPFAETVTQVREALSAQGFGVLTEIDMAATLQTKIGAEIEPYLVLGACNPPLAHRALQADRSVGALLPCNVVVRDLGDGSTAVEAVDPHAMMSVADSPELKAVADDAADRLRTALDSLS	PGPT0018470_997	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126	NA	NA
AK001_01634	1590			hypothetical protein	ATGAGAAGTGCAGCCGGACGACGGTTCACCGCGGCAGGGGCCGGACTGGCCCTGGCCGCGACGATGGGGATGACCGCCCTGTGGGCGAGCGACGCCCACGCGGCCAGCGGAACACCCACCGGGTTCGCCACCCAGAACGGCGGGACCACCGGCGGCGCCGGTGGTCAGACGGTGCGTGCCACCACGGGCACGGAGATCCACGAGGCCCTGTGCACCCGCGCCAGCAGCGACACCCCGATCGTCATCGAGGTCGAGGGGATCATCGACCACGGCAACACGTCCAAGGTGTCCGGCGACTCGTGCAACACCGCCGACGACAAGATCGAGCTCAAGGAGATCAGCAACGTCACCCTCGTCGGCGTGGGCGACGGCGCCCTGTTCGACGAGCTCGGCATCCACCTCCGCTCCGCGCACAACATCGTCATCCAGAACGTGCACGTGCGGAACGTCAAGAAGTCCGGCTCCCCCACCTCCAACGGCGGTGACGCGATCGGCATGGAGTCCGGCGTGTCCAACGTCTGGGTGGACCACGTGACCCTCGAGGCCTCGGGCGGCGAGTCCGAGGGCTACGACGCCCTGTTCGACATGAAGGCCGACACCACCTACGTGACGCTGTCGTACTCCGTCCTGCGGAACTCCGGGCGTGGCGGCCTCGTCGGGTCCAGCGACGGCGACACCGGCAACGGCCCGGTGACCTACCACCACAACCTGTACGAGAACATCGACTCGCGCACGCCGCTGCTGCGGGCCGGCACCGCCCACTCGTACAACAACCACTTCGTCGGGCTCGCCAAGTCCGGCATCAACTCCCGGCTCGGCGCGCGGGCCCTGGTCGAGAACAACTACTTCCAGGACTCCAAGGATCCGCTCGGCACGTTCTACACCGACGACAGGGGGACCTGGGAGGTCAGCGGCAACATCTGGGACAACATCACCTGGACCGCCGACGACACCGACAACCACCCCGCCGGACCGAACCCGACGTCGACGGACTCGATCTCGGTGCCGTACTCCTACGACCTCGACGGTGCCGAGTGCGTACCGAACCTGCTGGCCGCCACGGCCGGCGCGAACACCGGGATGCAGGTCTCGGACGGCTCCTGCTCCCCCACCGCACCCGACCCGACGCCGGAGCCGACGGACGAGCCGACGCAGGAACCCACCCCGGAGCCGACGGAGGACCCGACGCCGGAGCCGACGGACGAGCCGACGGACCCGCCGAGCGGGGAGAACCTGTCGATCGGTGCCGGCTCGGACGGGTCCAGCAAGGCGAGCGGGACGAGCTACGGCAACGTGCGCGACGGTGACCTGGCCACGTACTGGTCGCCGGAGGGCTCTACGGGCCGCATCTCGGTGAAGTGGGACTCCGCGACCACGGTGTCCTCGCTCGTCGTCCGCGAGGCCGCCGGCTCGGCGGGGACCATCGGGTCGTGGCAGGTGGTGAACCACGACGACGGCGCCGTGCTGGCCACCGGCAGCGGCGCGGGCGTCATCGACGTGCCCTCCACGACCCTGGACAAGATCGACTTCGTCATCACCGGGGCGTCCGGCACGCCGCAGGTGGCCGAGCTCGAGACGTACGGGGGCTGA	MRSAAGRRFTAAGAGLALAATMGMTALWASDAHAASGTPTGFATQNGGTTGGAGGQTVRATTGTEIHEALCTRASSDTPIVIEVEGIIDHGNTSKVSGDSCNTADDKIELKEISNVTLVGVGDGALFDELGIHLRSAHNIVIQNVHVRNVKKSGSPTSNGGDAIGMESGVSNVWVDHVTLEASGGESEGYDALFDMKADTTYVTLSYSVLRNSGRGGLVGSSDGDTGNGPVTYHHNLYENIDSRTPLLRAGTAHSYNNHFVGLAKSGINSRLGARALVENNYFQDSKDPLGTFYTDDRGTWEVSGNIWDNITWTADDTDNHPAGPNPTSTDSISVPYSYDLDGAECVPNLLAATAGANTGMQVSDGSCSPTAPDPTPEPTDEPTQEPTPEPTEDPTPEPTDEPTDPPSGENLSIGAGSDGSSKASGTSYGNVRDGDLATYWSPEGSTGRISVKWDSATTVSSLVVREAAGSAGTIGSWQVVNHDDGAVLATGSGAGVIDVPSTTLDKIDFVITGASGTPQVAELETYGG	PGPT0018225_365	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-T1SS_SECRETED_PROTEINS,PGPT0018225-pel|plyB-K01728	NA	NA
AK001_01635	783	walR_2	COG0745	Transcriptional regulatory protein WalR	ATGGCGGCAGCAGCGGTCCCGGCCGGCGCGCCCGGGGCCTCGGCCCCGGAACGCACCGCGGTCATCATCGAGGACGACGACGACGTCCGCGCCCTGCTCGAGGAGGTCCTGGGCCAGGCCGGGTTCGAGACGTCCAGCGCCGCCGACGGCCGCTCCGGGGTCGAGCTCGTGGAGCGGACGGACCCCCTGGTGACGACCCTCGACGTCAGCCTGCCCGACATCGACGGGTTCGAGGTGTGCCGCCGCATCCGGCGGGTGTCGGACACCATCGTCGTCATGCTCACGGCCCGTACGGACGAGGTCGACACCCTCATGGGCCTCGACGCCGGGGCGGACGACTACCAGACGAAACCGTTCCGGCCGCGCGAGCTGCGGGCCCGGATCGAGGCCATCATGCGCCGGCAGGGCCGGTCCGAGGCGCGGTCCCCGGGGGGCTCAGCGGGCCCGGGGACCGCCACCACGGTGACGAGCGACGGCCTGGCGATCGATCTGCTCGGCCGCACGGTCAGCGTCGACGACGTCGAGGTCCACCTCACCCGCAGCGAGTTCGACCTGCTGGCGGCTCTCGCCGGCGAGCCCGGCCACGTGCTCTCGAAGGACGGCCTCGTCCGCGTCCTGTGGGTCGACGAGTACGACGTCGGGACGCCGGTCACGGGCTCGGACCGCCGCCGCGTCGAGGTCCACCTGGCCAACCTGCGCCGCAAGATCGGCGACGACCCGGCCGCACCGCGCTGGATCCGCACGGTCCGCGGTGTGGGCTACCGCTTCGACCAACGGGCGTGA	MAAAAVPAGAPGASAPERTAVIIEDDDDVRALLEEVLGQAGFETSSAADGRSGVELVERTDPLVTTLDVSLPDIDGFEVCRRIRRVSDTIVVMLTARTDEVDTLMGLDAGADDYQTKPFRPRELRARIEAIMRRQGRSEARSPGGSAGPGTATTVTSDGLAIDLLGRTVSVDDVEVHLTRSEFDLLAALAGEPGHVLSKDGLVRVLWVDEYDVGTPVTGSDRRRVEVHLANLRRKIGDDPAAPRWIRTVRGVGYRFDQRA	PGPT0012985_11	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659	NA	NA
AK001_01636	513			hypothetical protein	GTGACCACATCGACCGAGACGCGTGGCAGCGACTCCGACCCCGCTGCCCAGGTCACCGACGACGGCACCGCCGCGGTCCCCCGCGCGGCGGTGCCGTCAGTCCGGGAGCAGACAGACCCGCCGGGAACCACCGCGGACGTGGTGGCGGTCGCCCGTGCCTGGCACGAGCTGGTGGCCGAGCTCGACGGTGACGAGCGGGCCGTGGAGCGCTTCGCCACGATCTGGCTCCAGCTCCTGCCGCGCCGGCTCGCGGCCTGCCGCCGGGCGCTCGTGAGCGGCGAGGACGACGCGGCCCGTGTCCGGCTGCTCACCCTGCACAGCTCGGCGGTCATGCTGGGCCTCGACCGGCTGGCCGAGGTCACCTGGCGCTGCCAGTCCGCGCTGGACCAGCCGACGGACGCGGACGACGACCGGTCCGCCCGGTGCCAGGGTCGGGAGGTCATCGCCGAGGCGCAGAGCGCGGCGGGTCTGGTGCGGGCGGCGCTCGGTCACGCCCGTTGGTCGAAGCGGTAG	MTTSTETRGSDSDPAAQVTDDGTAAVPRAAVPSVREQTDPPGTTADVVAVARAWHELVAELDGDERAVERFATIWLQLLPRRLAACRRALVSGEDDAARVRLLTLHSSAVMLGLDRLAEVTWRCQSALDQPTDADDDRSARCQGREVIAEAQSAAGLVRAALGHARWSKR				NA	NA	NA	NA	NA
AK001_01637	345			hypothetical protein	GTGACCGGCACGCCGGCCGACCCGGACGACGACCCGCTGCAGGACACCGTCGCCCAGCTCGCCCGCAGCGCAGGGCGGCGCAACCAGGCCCGGTCCGACCGCGTCGCGGACCTGCTGCGCGTCGACGGTGCGGTGCGCGACCCGGACCGGCGGAGCGAGGCCGCCCGGCTGTGCCACACGATCGCCGGGTCCGCCGGCACGTTCGGTGACGAGATGCTCGCGGACGCGGCACGTGCCCTGCAGCACGTCCTCGAGAGCGACGGGAGCGACGACGCGGTCCTGGCCGCCGTCGAGCGGCTCCGCGCCACCGCGTCGGCCCGGCGTCCGGGCGGCGCGGGATCTTGA	MTGTPADPDDDPLQDTVAQLARSAGRRNQARSDRVADLLRVDGAVRDPDRRSEAARLCHTIAGSAGTFGDEMLADAARALQHVLESDGSDDAVLAAVERLRATASARRPGGAGS				NA	NA	NA	NA	NA
AK001_01638	387	walR_3	COG0745	Transcriptional regulatory protein WalR	GTGACGACGAGACCCCGCTGCGTGGTGGTGATCGACGACGACCCGTCGATCCGCGAGGTCGCGGAGCTGTCGCTGTCCGCCGTCGGCGGGTACGAGACGCACTCGGCCGGCGACGGGACGGAGGGGGTCGCGCTGGCCCGACGTGTCCGCCCGGACGCCATCCTGCTCGACGTCATGATGCCGACGCTCGACGGCCCGACCGTCCTGGCCCGACTGCGCGCGGTGGACGTCCTGCGGGACGTGCCCGTCGTCTTCCTCACGGCGAAGGTGGGCGCCCAGGACATCGCGGGCCTCGACGGGCTGGGCGCGGCGGCCGTCATCACCAAGCCGTTCGACCCGCTCGAGCTCGCGCACCGGCTCGCCGCCGCCCTGGGGTGGGACACGTGA	MTTRPRCVVVIDDDPSIREVAELSLSAVGGYETHSAGDGTEGVALARRVRPDAILLDVMMPTLDGPTVLARLRAVDVLRDVPVVFLTAKVGAQDIAGLDGLGAAAVITKPFDPLELAHRLAAALGWDT	PGPT0002660_2050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002660-phoB-K07657	NA	NA
AK001_01639	2793	sasA_5		Adaptive-response sensory-kinase SasA	ATGGAGGACGCCCGAGGCGCCGCCACCCGCGCCCAGGACCGATTCGTCCGCTGGTGCTGGGTCGCCGGCGCGATGCTCGTCGTCCTCGTCGCCGTGCTCGCCGGTCCTGTCGACGCCGGTCTCCGCGAGCAGGTCGCGCGGTCCGCCATCGCCGCGGCCGGCGTCCTGGCCGCCCTGAGCTGCGGCTCGCGGGCCGTGAGGTCGACGGGGCGCCGTCGTCGCGCGTGGGGCGCTCTCGCCCTGGGCGCCGTCGTCGGGCTCCTGGGCAACCTGTGGGCGACGGTCGCCGGGGACCCGGCCACGGGCGACGTGGCATACATCGGCGCGCTCGCCCTCGGCGCCGTCGGGCTCGCGTTCTTCCCGACCGTGCGTCCCCGGGGCCAGGACCTCGTGCGCATGCTGCTCGACAGCATCGTCGTGGGTGGCTCGGTGCTCTACATCGCCGTGTTCGCCGTCGTGCTCGACGAGCCGGCGCTCTCGACCGGCCCGGCGCTGACCACGTATGCGCTACCGGTCGTCGACGCCCTCCTGGCCACCCTCGCCGTCCTGGTCATGACCCGCTCCGGCGCCGCGGAACGCGTCCCGCTCGTCCTCGTCGGCAGCGGCTTCGTGCTCTACGCGGTGGCCGACGTCGCGTTCGCGCTGCTCTCGGCGGGGACCGGCTTCACGTTCGGCAGCATCGTCGACATGGGCTGGATCGGTGGCTACGTCGCCATCGCGGTCGCCGCCCGCCACCCCGCCGCCTCGGGCAGCCCCGTCACCCACCGGCGGTCGGACGGATCGCCGGTGCTCGGCACCGTCGTGACCTTCCTGCTGTTCCTCGCCGCCGCCCTGGTCCGGGTCAGCGACTCCGGGCAGGACGTGCCGTGGATGGCGGACGCGCTGTGGGTCGCCGTGCTCGTCGCCGTCGTCGCTCGTCAGATCCTCGTCGTGGTGGACAACGAGTCGCTGCGCCGGAGCCTGGAGCGGAGGGTCCGGACGCGCACGGCCCAGCTGCGCGCGCTCGCCGGCGAGCGGGAGCGCACCCTCGAGTCGGTCGCCGACGGGATCTACGGCGTCGACGCCTCCGGACGCCTGACCTTCGTCAACGTCGCCGGCGCCCGCACGCTCGGCGTGTCGCCCGGCGACCTCGTCGGGCAGGACGTGCACGCCACCTTCCACGCACCGGGCCCGGACGGGGTCCCCTTCCCGGCGGAGCACTGCTACGTCACCGAGGCGGTGCGCGACGGCATCACCACCACGGCCGAGCAGGACGTCTACCGACGCCCGGACGGCAAGGACGTGCCCGTCGAGGTCACCGCGAGCCCGTTGCGCGCCGACGGCACCGTCCGCGGCGCGGTCGTCGTCTTCCGCGACGTCACCGAGCGCCGCGAGATGGAACGGATCAAGGACGACTTCGTCGCGGTCGTCTCCCACGAGCTGCGCACCCCGCTGACCTCGATCCGCGGGGCGCTCGGGCTGCTCGACAGCGGTCTGCTGGCGGGCTCTCCCGAGCGGGCCGGGCGCATGATCCGCATCGCCCTGACCAGCAGCGAGCGCCTGAGCCGGCTCGTCGACGACATCCTCGACATCGAGCGGATGGCCACCGGGTCGACCCCCCTCGACCTCGCCGAGCACCGCGTCGACGACCTGGTCGCCACTGCCGTGGACCAGGTCGCGATCGTGGCCGCCGAGGCCGGGGTGGACGTCGTGACGGTCGAGTCCGGCGAGATCGTCGGCGCCGACGGCGACCGCATCGTGCAGACGCTGACCAACCTGCTGTCCAACGCGGTGAAGTTCTCCCCTCCCGGCAGCACCGTGCGGGTGACGGCGGTCCCCGTCGGCGACCTCGTCGAGGTGTGCGTCGAGGACGAAGGACGCGGCATCCCGCCGGACAAGCTGGAGTCGATCTTCCGTCGGTTCGAGCAGATCGACGCCTCGGACGCCCGGGAGCGCGGGGGCACCGGCCTGGGTCTGGCGATCGCGCGCAGCGTCGTCGAACGGCACGGAGGGCGCATCTGGGCGGTGAGCGACGGGCCCGGGACCGGGGCGAGCCTCCGCTTCACGCTGCGTCGTGCCGCGGCGGGCGTCGACGGGGCGGACGGATCACCCCCGCAGGAGGTCGGGACGGCGGTCGGGGCCGACGACGGCCCGGACGACGCGCCCCCGACGGCCGCGCCGGACCGCGTGGTCGTCGCCGCCACCGACCCCTACGTCGTGCGCGCGCTCCGGTCCGTGCTGGAGGGAGCCGGCTACGACGTCGTCGGCTCCGCCGACGGCGAGGAGGCCGTGGCGCACGTGATCGCCGACCGGCCCGCCGCCCTGGTGCTCGACCCGGGGACTCGCGACAGTGACGGCATCGAGGTGCTGCGGCGGGTGCGCGAGGCCCGGACGGCCGCCCGGACACCGATCGTCGCCGTCTCCGGCACCGCGCGGCACGACGCGCAGATCGCGGAGCTGGCCGACCGCTGGCTGGTCGAGCCGGTCGCCCCGGACGACCTGCTGGAGGCCGTCCGGGAGGCCGTCCGCCGACGTCCCCACCGCGAGCAGGTCCTCGTGGTCGAGAGCGACGACGCGTTGCGCCACGCGCTGGCGACATCCCTGGAGGCCGCCGGGCTCGTGGTCACCCCGGCCGGTTCGCTCGCCGCCGCCCGCCGGGCGATGCGGGCCGGGACACGACCGGACCTGGTCCTGCTCGACCTGACGCTGTCCGACGTCACCGGACGCGACCTCGTCGCCGACCTCCTGGACCCGGCCGACGGCCGGACCGCGGAGCCCACCGTCCCCCCGGCACCCCGCCCACCGAGGACCTGA	MEDARGAATRAQDRFVRWCWVAGAMLVVLVAVLAGPVDAGLREQVARSAIAAAGVLAALSCGSRAVRSTGRRRRAWGALALGAVVGLLGNLWATVAGDPATGDVAYIGALALGAVGLAFFPTVRPRGQDLVRMLLDSIVVGGSVLYIAVFAVVLDEPALSTGPALTTYALPVVDALLATLAVLVMTRSGAAERVPLVLVGSGFVLYAVADVAFALLSAGTGFTFGSIVDMGWIGGYVAIAVAARHPAASGSPVTHRRSDGSPVLGTVVTFLLFLAAALVRVSDSGQDVPWMADALWVAVLVAVVARQILVVVDNESLRRSLERRVRTRTAQLRALAGERERTLESVADGIYGVDASGRLTFVNVAGARTLGVSPGDLVGQDVHATFHAPGPDGVPFPAEHCYVTEAVRDGITTTAEQDVYRRPDGKDVPVEVTASPLRADGTVRGAVVVFRDVTERREMERIKDDFVAVVSHELRTPLTSIRGALGLLDSGLLAGSPERAGRMIRIALTSSERLSRLVDDILDIERMATGSTPLDLAEHRVDDLVATAVDQVAIVAAEAGVDVVTVESGEIVGADGDRIVQTLTNLLSNAVKFSPPGSTVRVTAVPVGDLVEVCVEDEGRGIPPDKLESIFRRFEQIDASDARERGGTGLGLAIARSVVERHGGRIWAVSDGPGTGASLRFTLRRAAAGVDGADGSPPQEVGTAVGADDGPDDAPPTAAPDRVVVAATDPYVVRALRSVLEGAGYDVVGSADGEEAVAHVIADRPAALVLDPGTRDSDGIEVLRRVREARTAARTPIVAVSGTARHDAQIAELADRWLVEPVAPDDLLEAVREAVRRRPHREQVLVVESDDALRHALATSLEAAGLVVTPAGSLAAARRAMRAGTRPDLVLLDLTLSDVTGRDLVADLLDPADGRTAEPTVPPAPRPPRT				NA	NA	NA	NA	NA
AK001_01640	501	pdaD		Pyruvoyl-dependent arginine decarboxylase	ATGACCGACACCCTCGACATCCGCGTCAGCTCCGGCACCGGCACCGGACGCACGACGCTGTCCGCCTTCGACGCCGCCCTGTCCGCCGCGGGGGTCGGCGACTTCAACCTCGTCCGGCTCAGCTCGGTCGTCCCGCCGGGCAGCATCGTCCACGAGGTCGACGGTCGCGACCAGCTCCAGGGTGCCCACGGTGACGCGCTGTTCTGCGTGTACGCCGAGGCGCACGCCTCGTTGCCGGGCCACGAGGCGTGGGCCGGCATCGCCTGGTCGGCCCACGAGGACGGCAGCGGCGCCGGCCTGTTCGTCGAGCACGAGGGCCCGTCGCACGAACAGGTGGCCGTCGACCTGACGCACAGCCTCGACGACCTCTCCGTGACCCGCGGCGGCGTCTACCGCCCCGCGGGCCGGCTCATCACCGGCATCACCTGCGACACCCTGCCGGTGTCCGCCGTCGTGGTCGCGACGTTCCGGCGCGCCGGGTGGCAGGATCTCCCGCGGTGA	MTDTLDIRVSSGTGTGRTTLSAFDAALSAAGVGDFNLVRLSSVVPPGSIVHEVDGRDQLQGAHGDALFCVYAEAHASLPGHEAWAGIAWSAHEDGSGAGLFVEHEGPSHEQVAVDLTHSLDDLSVTRGGVYRPAGRLITGITCDTLPVSAVVVATFRRAGWQDLPR	PGPT0012230_184	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012230-pdaD|aaxB-K02626	NA	NA
AK001_01641	543			hypothetical protein	GTGAGCACCGAGGTCACCGTCGAGACCGTCGTCGACGGCGAGCTGGCCGAGCGCTTCTGGGAGCTGTACCGCGAGGCGTTCGAGCCACTGCGCACCCGGGCCGCGGCGCGGCACGTGCTGCACCGCCACGAGTTCGACGAGGAGATGGCCGACCCCCGGGTGCTCAAGCTCCTGGCCCACGACGAGTCCGGCGAGGCCGTCGGGCTGACGACCCTGGCCACGGACCTGGCGGCCGTGCCCTGGGTGAGCCCGGAGTTCTTCGCGGCGCGGTACCCGGAGCACGCCGCGCGCGACGCCGTCTGGTACATCGGCTTCACCCTCGCCCACCCGGGCCGGCGCTCCACCCGGACCTTCATGGACATGATCGACGCGCTGGTCGCCCGCCTGGCCGAGCACCGGGTCGTGTGCGCCTACGACGTGTCCCGCTTCAACGACGACGGCCTGCGGTTCGCCGACAACCTGCGCCGTCACCTGGAGCGGACCCGGGACGTCACCGTGGAGACCGTCGACCGGCAGACGTACTACGCGACGACGTTCCACTGA	MSTEVTVETVVDGELAERFWELYREAFEPLRTRAAARHVLHRHEFDEEMADPRVLKLLAHDESGEAVGLTTLATDLAAVPWVSPEFFAARYPEHAARDAVWYIGFTLAHPGRRSTRTFMDMIDALVARLAEHRVVCAYDVSRFNDDGLRFADNLRRHLERTRDVTVETVDRQTYYATTFH				NA	NA	NA	NA	NA
AK001_01642	1098	czcO_1	COG2072	putative oxidoreductase CzcO	ATGAGCACCCAGCAGCACGAGGCACCCGTCGTGGTGGTCGGCGGGGGCCAGGCCGGACTGGCCACCTCGTACCACCTCTCGCGGCTGGGCGTCGAGCACGTGGTGCTCGACGCCGCCGCCCGGGCGGGGGACTCCTGGCGACACCGCTGGGACTCCCTGCGCCTCTTCACGCCGCCCCGCGTCGACCACCTGGACGGCCTGGACCTCGGGCGCCGCGGTCGGGTGCCGACGAAGGACGAGTTCGCGGACTACCTGGAGCGCTACGAGCGAGAGTTCGGCCTGCCCGTGCGGCACGGCGTCCGGGTCACCCGGCTCGCGGCCGACGGTGCCGGGTTCCGGCTGGAGGCGTCGGACGGCGAGCACCGGGCGGAGGCCGTCGTCGTCGCGATGAGTGGCCTCCAGGTTCCCCGGGTGCCGGAGCTCGCCGATCGCCTGAGCCCCAGGATCCGGACCCTGCACTCGACCGGGTACCGCAACCCTGCGCAGCTCGCCGACGGGCCGGTGCTGGTCGTGGGCGTCGGGAACAGCGGCGCGGAGATCGCCGTCGAGGCCGCCCGGGACCACGAGACCTGGTTGGCCGGGACCGAGACGGGGCACCTGCCGTTCCGCATCGACGGCTGGTTCGGGCGGAACCTCGGCACCCGGGTCGTGGCGTTCGTGTTCCGGCACGTGCTGACGATCGACACGCCGGTCGGTCGCCGGGCGCGGCCCGTGCTGCAGTCCCGGGCGGACCTGCTGGTGCGGGAGCGCCCCCGGGACCTGCGCCGGGCAGGCATCCGGCGGGTCCCGCGCATCGAGTCGGTCCGTGACGGCCTGCCGGTCGCCGCGGACGGCACGGTGCTCGACGTCGGCACGGTGGTCTGGTGCACCGGGTTCCGCACGGGGCTCGAGGACTGGGTCGACCTGCCGGTGCTGGACGAGCACGGACGCGTGCGCCAGGTGCGCGGGGTCACCGACGTGCCGGGGCTCTACACCGTCGGGCAGGACTTCCAGTACGCCAAGGCGTCGGAGCAGATCCCGGGCGTGAGCCGCGACGCGCGGTACGTGGCGACCCGGGTCGCGGAGGAGCTGGTCGGGCGGCCGAGCCCGGTGGGCTGA	MSTQQHEAPVVVVGGGQAGLATSYHLSRLGVEHVVLDAAARAGDSWRHRWDSLRLFTPPRVDHLDGLDLGRRGRVPTKDEFADYLERYEREFGLPVRHGVRVTRLAADGAGFRLEASDGEHRAEAVVVAMSGLQVPRVPELADRLSPRIRTLHSTGYRNPAQLADGPVLVVGVGNSGAEIAVEAARDHETWLAGTETGHLPFRIDGWFGRNLGTRVVAFVFRHVLTIDTPVGRRARPVLQSRADLLVRERPRDLRRAGIRRVPRIESVRDGLPVAADGTVLDVGTVVWCTGFRTGLEDWVDLPVLDEHGRVRQVRGVTDVPGLYTVGQDFQYAKASEQIPGVSRDARYVATRVAEELVGRPSPVG	PGPT0013865_1342	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222	NA	NA
AK001_01643	1596		COG2206	3'3'-cGAMP-specific phosphodiesterase 3	ATGGCTGACACGGCGTCGGCCCCGGCACAGCCGGTACGCGCCGCCGAGGTCGCCGCGGCGCTCTGCCTGGCCACCGACCTCGGCATGGGCTTCCCCTGGGCGCACGGCCTCGAGGCGACCGCCGCGACTTTGCGGCTGTGCGACGTCGCGGGGGTCGACGGCGCCGTCCGTCGGCAGGCGTACTACCTCAGCCTCCTGGCGTACGCGGGCTGCGCCGCCGACGCGACCGTCAAGGCGGGCATCTTCGGGGGCCCGATCACCGAGTCGATCGTCGACGTCATCTGGGGCAGCCGGCGCGAGCAGCGGGGCGTGATGCTGCGGTCGTTGCCCGACCCCGGGGCGTCGGTGCCCGTCGTCGTCGGGCAGACGGTCGCGCGACTGCCGCGGGCCGCCGCCTACGAGCCGCGCGAGTACCTCGCCCTGTGCGAGGTCGCCCAGCACCTGACCCGGCACCTGGGCCTCGGCGGCGTCGCGGAGGACCTGCACCACCTGACCGACCGCTGGGACGGGACCGGGGTGCTGGGACGGGGCCGGGGCGAGGAGATCCCGACCGCGCTGCGGCTCACCCTCGTCGCCCGCGACGCCGCCCACCACGCCGCGGCCGGGGGCAGCGCGCACGCGGCCGCCGTCGTCGCCGAGCGCGCGGGCCGCGCCCACGACCCGCGGTTCGCCGGCCTGCTCGCTCGCCACCACCAGGACGTCCTGGGCGGGCCGCGGGACGACGGTGTGACCTGGGAGGACGTGCTGGCCGCCGAACCCGGGGAGCCCGTCGAGATCCCGGCCGACCAGGTCGACGACGCCGTCGCAGCCCTCGGGGAGGTCGCCGACGTCGTCGGGCCGGCCTGGGCCGGCCGGTCCCGGCAGGTCGCGGCGCTCGCGGGCGGGGCGGCCGAGCTGGTCGGCATGGACGCGGCGGCCGTCCAGGAGGTCCGTCGGGCCGCCCTGCTGCAGGACGTGGGGCGGATCAGCGTCCCGGCGAGGACCTGGCTCGCACGCCGGCCGCTCACCGCCGAGGAGCGGGAGCAGGTGCGGCTGCACCCGTACTACACCGAGCGCGTCTGCGCCGCCTCGCCCTTCCTCGCCGCGCTGGCGCGGGACGCCGTCTGCCACCACGAGCGCCTGGACGGTTCCGGGTACCACCGGGGGCTGCCTGCGGTCGCCCTCGGGGCGCCGGCACGGATCCTCGCCGCGGCGGACGCGATGCGGTCCGCCGTGGAGGATCCGCCGCACGGCTGGGGACTCCCGCCGGCCGCCGCCGTCCACGCCCTCGCGCGCGACGTGGCGGACGGACGCCTCGACGCCGACGCCGTCGCCGCGGTGGTCGAGGCCGCCGGGCAGGAGCCGCCGCCGCTGCCGCGTCCGGCCGGCCTGACCGAGCGGGAGAGTCGCGTCGTGGGCCTGGTGGCGCGCGGGCTGGCCACCAAGCAGGTGGCCCGGACGCTGGGGATCAGCCCGAAGACGGCGGACCAGCACCTGCAGCACGCCTACCGCAAGATCGGCGTGTCCAGCCGGGCGGCGGTCGCGCTCTTCGCCGCCGACCACGGGCTCCTGGCCTGGGGAGAACTCCTGATACCGGGGCGGCGCACGGCTCCGTAG	MADTASAPAQPVRAAEVAAALCLATDLGMGFPWAHGLEATAATLRLCDVAGVDGAVRRQAYYLSLLAYAGCAADATVKAGIFGGPITESIVDVIWGSRREQRGVMLRSLPDPGASVPVVVGQTVARLPRAAAYEPREYLALCEVAQHLTRHLGLGGVAEDLHHLTDRWDGTGVLGRGRGEEIPTALRLTLVARDAAHHAAAGGSAHAAAVVAERAGRAHDPRFAGLLARHHQDVLGGPRDDGVTWEDVLAAEPGEPVEIPADQVDDAVAALGEVADVVGPAWAGRSRQVAALAGGAAELVGMDAAAVQEVRRAALLQDVGRISVPARTWLARRPLTAEEREQVRLHPYYTERVCAASPFLAALARDAVCHHERLDGSGYHRGLPAVALGAPARILAAADAMRSAVEDPPHGWGLPPAAAVHALARDVADGRLDADAVAAVVEAAGQEPPPLPRPAGLTERESRVVGLVARGLATKQVARTLGISPKTADQHLQHAYRKIGVSSRAAVALFAADHGLLAWGELLIPGRRTAP				NA	NA	NA	NA	NA
AK001_01644	1266			hypothetical protein	GTGCCCACCGCTCCTGACGACGCCGAGATCGAGCTCATCCGCCGCTCGGGCGTGGCGCTGCGCGTCGGCCGGTTGTCCCTGTCCGCCGGGACGGGGTCCTACCGGGTCAAGGCCTCGATGGCCCGCGCCGCGCGCGCCCTGGGGATCGAACGACATCAGGCCCACGTGACGCTGACCGAGATCACGACCACGTCGCACCGCGGACCGAGCTTCCGCACCGAGGTCACCGAGGTGCGCAGCGTCGGGATCAACTCGGACCGGCTGTGCGCCCTGGAGCGCTTCGCCCAGGACGTCGAGCGGGACCGGCCGGTCAGCGTCGAGGACGCCACCGCACGGCTCGACCGCATCCAGGACAAGCCGCCGCTGTACCCCGCGGTCCTCAACGCCCTGTGGGCCGCGATCGCCTGCGCGGCGTTCGCCTTCCTCAACAACGGCGGAGTCGTCGAGATCGTCGGTGTCTTCCTCGGCGCAGGATTCGGTCAGGCCCTGCGCCGCGCCCTGATCCACCGCGGCTGGAACCAGTTCGGGGTGACGATGCTGGCCGCGGCGCTGGCCACCTCCACCTACGTCGGCTTCCTCGCGGCGTTCGGCGCGCTCGGGGGTGCCGCGACCAACCACGAGGCCGGGTACGTCTCCGCGGTGCTCTTCCTGGTGCCCGGGTTCCCGCTGGTCACCGGCGCGCTGGACCTGGCCAAGCTGGACTTCTCGGCCGGGCTGGCCCGGCTGACGTACGCGTTGATGATCCTCACCTCGGCCGCGCTGGCGGTGTGGGGCGTCTCGATGGTCGTCGGGCTCTCCCCGGTCCCGGACGAGCCGATGGGGCTCGACCCGGGCCTGCTGCTCGGGCTGCGGCTGCTGGCGAGCTTCCTCGGCGTGCTCGGGTTCGCGCTGATGTTCAACAGTCCGTGGTCGATGGCGTTGGCCGCGGCGTCCATCGGGATGGTCGCCAACGTCGGCCGGCTGTGGCTGGTCGACGCCGACGTCCCGGTCCAGGCCGCCGCGGCCGCCGCCGCGCTGGTGGTCGGGCTGCTCGCGGCCGTCGTCGCTCCGCGGATGAACGTGCCGCGCGTGACGGTGTCGGTCCCCGCCGTCGTCATCATGGTCCCGGGCGCCTCGGCGTACCGGGCGATCTACTACATGTCGAACGGGGCGACGTCGCAGGCCCTGGCCTACGCCGTCGAGGCCGGGCTGGTGGTGGCGGCGCTCGCCATCGGGCTGGCCGTGGCCCGGATGCTCACCGATCCGGAGTGGGGGTTCGAGCGGTGA	MPTAPDDAEIELIRRSGVALRVGRLSLSAGTGSYRVKASMARAARALGIERHQAHVTLTEITTTSHRGPSFRTEVTEVRSVGINSDRLCALERFAQDVERDRPVSVEDATARLDRIQDKPPLYPAVLNALWAAIACAAFAFLNNGGVVEIVGVFLGAGFGQALRRALIHRGWNQFGVTMLAAALATSTYVGFLAAFGALGGAATNHEAGYVSAVLFLVPGFPLVTGALDLAKLDFSAGLARLTYALMILTSAALAVWGVSMVVGLSPVPDEPMGLDPGLLLGLRLLASFLGVLGFALMFNSPWSMALAAASIGMVANVGRLWLVDADVPVQAAAAAAALVVGLLAAVVAPRMNVPRVTVSVPAVVIMVPGASAYRAIYYMSNGATSQALAYAVEAGLVVAALAIGLAVARMLTDPEWGFER				NA	NA	NA	NA	NA
AK001_01645	789	surA		Chaperone SurA	ATGTCGATCAAGCGTCCGCTCGCCGCCGCCACCCTGGCTGCGGTCGTCGCCCTCGCCGGCTGCAGCGCCGGGTCCGAGAGCGAGGACACCTCGTCCGCGTCGGCCGCCCCCAGCGCCGAAGCCACGCCGGACGCCGGAGCCGCGCCCGAGGCAGGCGCCGCGCCCGAGGCCGACCTCGAGGACGTGCCCGACGTCGTCGCCGAGGTCAACGGGGAGGAGGTCGGCCGCGAGGAGTTCGTCACGAGCTTCGAGGGACAGCTGCAGCAGGCGGCTCTGTCCCAGCAGCAGAGCGGTGGCGGTGCGGTGGACCAGGACGCGCTCAAGCAGCAGGTCGTCGAGCAGCTGGTGAACAACCGGCTCCTGACCCAGGCCGCGGCCGAGGCCGGGATCGAGCCCACCGCGCAGGACATCGAGTCCACGCTCGAGGACGTCGCCGCGCAGAACGGGCTCGAGTCCGCCGACGCGGTCGTCTCCGCGCTGGAAGAGCAGGGCCTGACGGAGGAGCAGGTGCGCGAGGACGCCGCGACCCAGTTCCAGGTCTCCACCTACATCGAGGCCGAGGCCGACGTGCAGGAGCCGTCCGAGAAGGAGCTGCGCGCGCAGTACGACACCCTCGTCGAGCAGATGGAGTCCCAGGCCGGCGACGGCGCGTCGGCACCCGAGGTCCCGCCGTTCGAGGACGTGCGCGACCAGCTCGCCCAGCAGGCCACCAGCCAGCAGCAGAGCGCGGCGATCGACACGATCGTCACCGACCTGCGCGAGGACGCGGACGTCACGATCCACCTGTGA	MSIKRPLAAATLAAVVALAGCSAGSESEDTSSASAAPSAEATPDAGAAPEAGAAPEADLEDVPDVVAEVNGEEVGREEFVTSFEGQLQQAALSQQQSGGGAVDQDALKQQVVEQLVNNRLLTQAAAEAGIEPTAQDIESTLEDVAAQNGLESADAVVSALEEQGLTEEQVREDAATQFQVSTYIEAEADVQEPSEKELRAQYDTLVEQMESQAGDGASAPEVPPFEDVRDQLAQQATSQQQSAAIDTIVTDLREDADVTIHL	PGPT0014978_2763	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014978-surA-K03771	NA	NA
AK001_01646	771			hypothetical protein	ATGGATCAGGGCCACGGGCACGACGTCGGGCTGCGGGTCGAGCACGCGATCATGGCGCGGCTGCAGACGGAGTCGCCGGAGCTCGTGCTGGCGGACGACCGCGACGGGCTGCTGGCGCGGTTCCGGGAGCTGCGCACGGAGTTCCAGCGGCTGCGGCTCATCTACCAGTTCGGCATCGAAGAGGTGTCGACCAAGGTGAACATCCTGCGTCAGGAGTTCGAGAGCACCTACGACTACAGCCCGATCGAGCACGTGCGCAGCCGGCTCAAGGCCCCGGACAGCATCCTGACCAAGGCGGTCCGCCAGGGCACCGATCTCACGGTCCCGGCGATCCGGTCCGAGATCCGCGACATCGCCGGCATCCGGATCACGTGCTCGTTCGTCTCCGACGTCTACTGGATCGCGGAGATGCTCAGCACCCAGGCCGACCTGCGGCTGATGGCCACCAAGGACTACATCGCCGCGCCGAAGCCGAACGGCTACCGGTCGCTGCACCTCATCGTCGAGGTGCCGGTCTTCCTGTCCGACCAGGTCGAGCACGTCCCGGTCGAGCTGCAGGTCCGCACCATCGCCATGGACTTCTGGGCCTCGATGGAGCACAAGCTGCACTACAAGTACAACGCCGAGCTGCCGGCGGACCTCGCCGTGGAGATCGACGACGCCGCCCGCGTCGCGGCCGAGCTCGACGCCCGGATGGGCCGGCTGCGCGACGAGGTCCGGCCGTCGCCCCGTGCGAGAGCCGACGACGACCGCGCCTCTCTGCACGGCTGA	MDQGHGHDVGLRVEHAIMARLQTESPELVLADDRDGLLARFRELRTEFQRLRLIYQFGIEEVSTKVNILRQEFESTYDYSPIEHVRSRLKAPDSILTKAVRQGTDLTVPAIRSEIRDIAGIRITCSFVSDVYWIAEMLSTQADLRLMATKDYIAAPKPNGYRSLHLIVEVPVFLSDQVEHVPVELQVRTIAMDFWASMEHKLHYKYNAELPADLAVEIDDAARVAAELDARMGRLRDEVRPSPRARADDDRASLHG	PGPT0014825_527	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0014825-ywaC|yjbM-K07816	NA	NA
AK001_01647	804	menH_2		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	ATGGTCCAGACGTCGTCATCAGACCCGTGGTACGTCACGTCGCCGGACGGAACCCGGCTGGCGGTGTGGAGCACCGGGACCGGTCCCCCGCTGCTCCTGGTGCACGGGTCGATGTCCGACCACCGGCGCTGGCGCATCACCGAGTACCTCGGCGACGACCGGACGGTGCACGCGATGGACCGGCGCGGACGGGGCGGCAGCTCGGACGGCCCGGACTGGGCACCGGAGCGTGAGGTCGAGGACGTGGTCGCCGTCGTCGAGGCCGTGGCCGCCGACGCCGGGCACCCGACCGACGTGCTGGGCCACTCGTTCGGCGGCTACCTCTCGGTCCGGGCCGCGGGACGCACCGCGCAGGTGCGCCGGCTGGTGCTCTACGAACCGGCGGTCGTGCCGCACCCCCAGCCGCCCGAGGTGGTCGCCCGGGTGCAGGCGGCGGTCGACGCCGGACGGTACGAGGAAGCCGTCGAGGTCATGATGCGGGACGTCCTGCACATGCCCGAGGCAGAGCTCGCCGTGCTCCGGGAGCAGCCGAGCTGGCCGGCGCGCGTGGCCACGGCCCCGACCCTGCCGCGGGAGGAGAGCGTCCCGCTGCTGCTGGACCCCGCCGAGGCGGCCGCCGTCACGGCGCCGACCCTGCTGATCCGAGGCGGGGACAGCCCGGAGTTCCTGCAGGACGCGATCCGGACCGTGGCGGGGTCCGTCCCGGACTGCCGGGTCGTGACGCTCGAGGGCCAGCAGCACGTGGCGGACCAGACCGACCCGGAAGGGTTCGCGACCGTGGTCCGAGAGTTCCTCCGGGGCTGA	MVQTSSSDPWYVTSPDGTRLAVWSTGTGPPLLLVHGSMSDHRRWRITEYLGDDRTVHAMDRRGRGGSSDGPDWAPEREVEDVVAVVEAVAADAGHPTDVLGHSFGGYLSVRAAGRTAQVRRLVLYEPAVVPHPQPPEVVARVQAAVDAGRYEEAVEVMMRDVLHMPEAELAVLREQPSWPARVATAPTLPREESVPLLLDPAEAAAVTAPTLLIRGGDSPEFLQDAIRTVAGSVPDCRVVTLEGQQHVADQTDPEGFATVVREFLRG				NA	NA	NA	NA	NA
AK001_01648	1077			NADH dehydrogenase-like protein	ATGCACCACACACAGGTCGTCGTGGTCGGCGCCGGGTACGCCGGGGTCGCGGCCGCGAACAGGATCGCCCGGGAGGGCGCAGCCAGGGTCACCGTGGTGAACCCGCGCGACGAGTTCGTCGAGCGCATCCGCCTGCACCAGCACGCCGCCCGCACGGGGTCGGCGGTCCGCCCGCTGCGGTCGGTGCTGCGACCCGAGGTCGCGCTGCACGTCGGCACGGCCACCCGGATCGCCGGGGACGGCGTGGAGCTGGCCGACGGCGGGGGCCTCGCGGCGGACCGGGTCGTGCACGCCGTGGGCAGCGGCGCACCGCGGTCGCTGCCCGGGGCGCTGTCGGTGCAGCACCTCCAGGGCGCCACCGCGCTGCGCGACCGGCTGGACGCCGCCGCCCCGGGCACGCCGGTGACGGTCGTCGGCGGCGGGCTCACCGGGATCGAGACGGCGGCCGAGATCGCCGAGGGCCGTCCGCACCTGGCGGTGCGGCTCGTCGCGTCGACCCTGGCGGGCGGGCTGTCGGACGCCGGTCGCGACGTGCTGCGGCGCGCGCTCGCTGCGCTCGGCGTCGAGGTGCGCGAGGGTGAGCGGGTGGACCACGTCGGCGAGGGCATCACGGTGGACTCGACGTCGTTCACCGTGCCGGACCTGGCGCGGGCCAGCGGCCTCGCGGTGGACAAGGCCGGACGGCTGCGCGTCGACGAGTCGTTGCGCAGCGTGCAGGTGCCCACGCTGGTGGCCGCCGGGGACGCCGCGGCCACGACGGCGCGGTGGAGCTGCCAGGCCGCGCTGCCCCTGGGGATCGCCGCTGCCACCACGGTCCTGGCCGACCTCCGCGGCCAGGAGCCGCCCGCGGCGTCGGTCGGGTTCACGACGACATGCGTCAGCCTGGGGCGCCGCCGGGGCCTGGTCCAGCCGAGCGAGCTCGACGACACCCCGCGCGGCCGGGTGCTGGGCGGACGGACGGCGGCGCTGGTCAAGGAGCAGATCTGCCGCGGGACGGTGTGGCTCGCCCGGCACCCGAGCCCGCTGTTCACGCGCACGGGCGACCGGCCGCTGGTGCCGGCGTGGGAGGCAGCGTGA	MHHTQVVVVGAGYAGVAAANRIAREGAARVTVVNPRDEFVERIRLHQHAARTGSAVRPLRSVLRPEVALHVGTATRIAGDGVELADGGGLAADRVVHAVGSGAPRSLPGALSVQHLQGATALRDRLDAAAPGTPVTVVGGGLTGIETAAEIAEGRPHLAVRLVASTLAGGLSDAGRDVLRRALAALGVEVREGERVDHVGEGITVDSTSFTVPDLARASGLAVDKAGRLRVDESLRSVQVPTLVAAGDAAATTARWSCQAALPLGIAAATTVLADLRGQEPPAASVGFTTTCVSLGRRRGLVQPSELDDTPRGRVLGGRTAALVKEQICRGTVWLARHPSPLFTRTGDRPLVPAWEAA	PGPT0004020_5590	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885	NA	NA
AK001_01649	918	sigJ		ECF RNA polymerase sigma factor SigJ	GTGACCGACCGTCCGGGGGTCGAGGACGCCGCGACCGGGCCGTTCGTCGAGCACCGCCCGCTGCTCTTCACCGTGGCCTACGAGCTGCTGGGCAGCGCCGCCGACGCCGAGGACGTCGTGCAGGAGACCTGGTTGCGGTGGTCGCGGGCGGTCCACGCGGCGGCCGGCGGTGGGGAGGAGATCCGCGACCCGCGGGCCTACCTCGTCGCGGTGGTGACGCGGCTGGGGCTGAACCACCTGCGGACCCTGAAGCGTCGTCGGGAGGACTACGTCGGGCCGTGGCTGCCCGAACCGGTCCGCGGCGTCGACGACCCGGTGGCCGACGCGCTGCTCGCCGAGTCGGTGGGGGTGGCGATGCTCCTGGTCCTGGAGACCCTCAGCCCGCTCGAGCGCGCCGTGTTCGTGCTCGGCGAGGTGTTCGGCTTCGGGACCGCCGAGATCGCCGCGGCCACGGGCCGCAGCCCGGCCGCGGTGCGCCAGACGGCCCACCGCGCGCGGGAGCACGTCCAGGCCCGGCGTCCGCGGTTCGACCCCTCGCCGCAGCAGCGCGCCGAGGTGGCCCGGCGGTTCGTCGTCGCGGCACAGGCCGGCGACGTCGAGGGGCTGATGGACGTGCTCGCCCCGGACGTGGTGTCGCTGTCCGACGGCGGCGGGGTCGCCTCGGCGGCGCGGCGCCCGATCCGCGGGGCGGAGAAGGTAGTCGCGTTCCTCGCCGGGCTGGTGCGCACGGCGGGGGCCGGCACCCGCTGGGACGAGGGGTCCTACAACGGGCTTCCCGCCGTGGTGGTGCGCCGCGACGGGACGGCCGAGGTCGCCGTGCTGGTGGACACCTTCGGCGACCGGGTGACGGCGTTGTACCTGGTCCGGAACCCGGAGAAGCTGGGAGGCCTCGACGAGGCCCGGCCGCTGGCGCGGTGA	MTDRPGVEDAATGPFVEHRPLLFTVAYELLGSAADAEDVVQETWLRWSRAVHAAAGGGEEIRDPRAYLVAVVTRLGLNHLRTLKRRREDYVGPWLPEPVRGVDDPVADALLAESVGVAMLLVLETLSPLERAVFVLGEVFGFGTAEIAAATGRSPAAVRQTAHRAREHVQARRPRFDPSPQQRAEVARRFVVAAQAGDVEGLMDVLAPDVVSLSDGGGVASAARRPIRGAEKVVAFLAGLVRTAGAGTRWDEGSYNGLPAVVVRRDGTAEVAVLVDTFGDRVTALYLVRNPEKLGGLDEARPLAR	PGPT0014960_1627	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_01650	345	hcaC	COG2146	3-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunit	ATGCATCGTCTGTGTTCGTTGAGCGACCTCACCCTGGGTGAGGGACTGCGGGTCGACTCCGTCGCGCCGCCGGTCGCCGTCTTCCTCGCGGAGGACGGCACCGTGCACGCGATCGACGACACCTGCACCCACCAGGACGCCTCCCTCGCGGAGGGCTGGCTCGAGGACGGCGCGGTCGAGTGCCCGCTGCACGAGAGCCGGTTCTGCCTGCGCAGCGGGGTGCCCGACGGCGGCCCCGCGCGCGGCGGCGTGCGGGTGCACCGGGCGGAGGTGGTCGACGGCGAGGTCCTCGTCGAGCTGTCGACCGCCGCGCCCTGCCTGCCGCCCGGGGTGGTCTCCGCATGA	MHRLCSLSDLTLGEGLRVDSVAPPVAVFLAEDGTVHAIDDTCTHQDASLAEGWLEDGAVECPLHESRFCLRSGVPDGGPARGGVRVHRAEVVDGEVLVELSTAAPCLPPGVVSA	PGPT0019745_65	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710	NA	NA
AK001_01651	1179	thcD_1		Rhodocoxin reductase	ATGACCGGGCCCGTGGACGCCGTCACCCGCACCGGCGTCGTCGTGGTCGGCGCGGGCCTCGCCGGCTGGACCGTCGCCAGCACGCTGCGGACCGAGGGCTACACCGGCGACGTCGTCGTCATCGGCGCCGAGGAGCACGCGCCCTACGACCGCCCCCCGCTGAGCAAGGACTTCCTCGCCGGGCGGCTGCACCGGGGCGACCTCGCCCTGAGCCCGCCGGACGGGGACGACGGCGTCACCTGGCGGCTCGGCCGCCGAGCCGTCGCGCTGGACGTCGACGCCCGCGCCGTGACGCTCGACGACGGCACCCTCGTCGTCGGGGACCACGTGGTCGTCGCGACGGGAGCCGTCGCGCGGCGGCTGCCCGGTGCGGTGGCCGGGATCCACACGGTCGCCACGCTGGAGGACGCCGAGGCGCTGCGGTCCGCCGTCGGTCACGGGGTCCGTGTCGTCGTGGCCGGCGCCGGGTTCCTGGGCCTCGAGGTCGCCGCGTCCCTGACGACGCTCGGTGCCCGGGTCACCGTGGCCTGCGCCGACGACGGACCGCTGCTGCGCACGATCGGTCCCGACGCGAGCGCCGCGGTGCAGACGCTGCACGGGTCGCACGGCGTCCGGATGGTCACCGGCGTGCGGGTCCTGAGCGCGCTCGCCGACGCCACCGGGTCCGGGACGTCCGGCGTCCTGCTCGACGACGGACGCGAGCTGCCGGCCGACGTCGTCGTCGCGGCCGCGGGCGCCGACCCGGCCGCCGGCTGGCTGTGGGGCAGCGGCCTGACGCTGGACGGCGGTGTCGTCTGCGACGCGACGGGCAACGCCGCGCCGGGGGTGCACGCCGTCGGCGACTGCGCGGTCTGGGCGGGCGAGCGCTGCTCCCACTGGACGCGCACCGTGCGCCAGGCGCGCCGCGTGGCCGCCGTCGTCGCCCACGGACAGCCGCCCGAGGCCGACGTCGAACCCGACTACGTCTGGTCCGACCAGTACGACGCCCGGCTGCAGATGGCGGGCAGCCTGCGCGGTGGCGAGACCTCCGAGGTGCTCTCGGCCGACGGTGGACTGTTCGTCGTCTTCCGCTCCGGCGACGAGGAGGTCGCGGCCTTCGCCCTGAACCAGCCCCGCCGGCTGATGCGCTGGCGCAAGACACACCGCCGTCGGCCCGCCTCCGAGAGGATCCCCGCATGA	MTGPVDAVTRTGVVVVGAGLAGWTVASTLRTEGYTGDVVVIGAEEHAPYDRPPLSKDFLAGRLHRGDLALSPPDGDDGVTWRLGRRAVALDVDARAVTLDDGTLVVGDHVVVATGAVARRLPGAVAGIHTVATLEDAEALRSAVGHGVRVVVAGAGFLGLEVAASLTTLGARVTVACADDGPLLRTIGPDASAAVQTLHGSHGVRMVTGVRVLSALADATGSGTSGVLLDDGRELPADVVVAAAGADPAAGWLWGSGLTLDGGVVCDATGNAAPGVHAVGDCAVWAGERCSHWTRTVRQARRVAAVVAHGQPPEADVEPDYVWSDQYDARLQMAGSLRGGETSEVLSADGGLFVVFRSGDEEVAAFALNQPRRLMRWRKTHRRRPASERIPA	PGPT0019730_2354	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529	NA	NA
AK001_01652	1128	yeaW	COG4638	Carnitine monooxygenase oxygenase subunit	ATGATCATCGAGCAGCTCGACGAGCCCCTGCCGGGGTCGATCCTGCCCACGCTGGGCGGCAGCTGGTACACCGACCCCGACGTGTTCGCCCTGGAGCAGGAGCGCATCTTCTCCACGCAGTGGATGTGCGTGCTGCGCGCTGACGACATCCCCGGGGCGGGCGACTACCGCCTGGTGCAGGTCGGCCGCGAGCAGGTCGTGGTGTCCCGGAACCGTCGGGGCGAGATCCGCGCGTTCCTCAACGTGTGCCGGCACCGCGGCATGCGGGTGTGCACCGAGCCCGCCGGCACCGCCCGCAAGTTCCAGTGCGGCTACCACGCGTGGACGTACGACCTCGACGGACGGCTCGTCGCCGCCCCGAACCTCACCCGCATGCCCGACGTCGACCGCGACGCCTACGGGCTGCGCGGCGTCGCGGTGCACGAGTGGATGGGCTACGTGTGGGTGTGCCTGGCGGACTCGCCGCCGTCGTTCACCGAGACGGTGCTGGGCGAGCTGGTCACGCGGCTGGGGGAGGCCGAGACCTTCGACGCGTGGCAGGTGGCGGATCTGCGCCTCGGGAAGCGGATCGCCTACGACGTGCACGCCAACTGGAAGCTGATCATCGAGAACTTCATGGAGTGCTACCACTGCGCCACGATCCACCCCGAGCTCACCGAGGTCATCCCCGAGTTCGCCGACGGCTGGGCGGCGCAGACGTACGTCGGGCGCGGCGCGGAGTTCGGCGAGGGGGTCGAGGGGTTCACCGTCGACGGGTCCGCCGGCGTGGCGCCGCTGCCGCTGCTCGGCGCCGACCAGGAGCGACGCTACTTCGCGGTGACGATCAAGCCGTCGGTGTTCGTCAACATGGTGCCGGACCACGTCGTCGTGCACCGCATGTTCCCCACCGCGGTGGACCGCACGTACGTCGAGTGCGACTGGCTGTTCCTGCCCGAGGTCGTCGAGGCGGGGACCGACGTGTCCGGGTCGGTGGAGCTGTTCGACCGGGTCAACCGGCAGGACTTCGAGGCCTGCGAGCGGACCCAGCCGGCGATGTCTTCGGCCGCCTACGCCGACGGCGGCTCGCTGGTGCCGGCCGAGCACCACATCGAGACCTTCCACGCCTGGGTGCGCGAGCAGCTCGCGTGA	MIIEQLDEPLPGSILPTLGGSWYTDPDVFALEQERIFSTQWMCVLRADDIPGAGDYRLVQVGREQVVVSRNRRGEIRAFLNVCRHRGMRVCTEPAGTARKFQCGYHAWTYDLDGRLVAAPNLTRMPDVDRDAYGLRGVAVHEWMGYVWVCLADSPPSFTETVLGELVTRLGEAETFDAWQVADLRLGKRIAYDVHANWKLIIENFMECYHCATIHPELTEVIPEFADGWAAQTYVGRGAEFGEGVEGFTVDGSAGVAPLPLLGADQERRYFAVTIKPSVFVNMVPDHVVVHRMFPTAVDRTYVECDWLFLPEVVEAGTDVSGSVELFDRVNRQDFEACERTQPAMSSAAYADGGSLVPAEHHIETFHAWVREQLA	PGPT0013680_712	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479	NA	NA
AK001_01653	1158	soxA		Monomeric sarcosine oxidase	GTGCAGCACCACGACGTCATCGTCCTCGGCCTCGGCTCGATGGGCGGTGCGGCAGCCAACGAGCTCGCGGCGCGCGGCCTCGACGTCCTCGGCCTGGAGTCGTTCACCCCCGGCCACGACCAGGGCTCGGCGCACGGCGGGACGCGGATCGTGCGGCAGTCGTACTTCGAGTCCCCCGAGTACGTCCCCCTGCTGCGCCGGGCCTACGAGGGCTGGTATCGGCTCGAGGCCGAGTCGGGACGCGACCTGCTCACGCTGTGCGGCGGCATCTACGTCGGCGACCCGGCCAGCCCGACCTACGCGGGCAGCCGGCTGGCCGCCGAGCAGCACGGCCTCGACCACGAGGTGCTGGACGCCGCCGAGATCCGCCGCCGGTTCCCCACCATGGACCCGGCCGACGACGCGATGGCGTTGTACGAGTCCGCGGCAGGATATGTACGCCCCGAGGAGACGGTGATCGCGAACACCGAGGTGGCAGCCCGGAAGGGCGCGACGCTGCGCTTCGGCGAGCGCGTGCAGCGCTGGAGCGCGACCCCGGGCGGCGGCGTCGAGGTCGTCACCCCCGAGGGGACCTACGGTGCCGACCGGCTCGTGGTGACGCCGGGCGCGTGGGCGCCGCAGATGCTGCCCGAGCTGGAGCTCCCGCTGTCCGTCGAGCGCATGGTCTTCTACTGGTTCACCCCGGACACCGACGCCGTCCCGGTCGAGCGGTGGTCGCAGGAGCAGCACCCCGTGTACATCGAGGAGACCCACGGCAACGGCCAGATCTACGGGTTCCCGATGACCGACGGCCCCGCCGGCGGCTTCAAGCTCGGGTACTTCCACCTGGGCACGCCGACCGACCCCGACGCCGTCGACCGCGTCGTGCACTCCGACGAGACCGCCGAGATGCGCCGTCGGGCCCTCGAGCTCTTCCCGCACCTGACCGGTCCCGTGGTCCAGGCCAAGACCTGCCTGTACACCGTGGCACCCGACGAGCACTTCGTCATCGGCACCCACCCGCTGCACGACCAGGTCGCGATCGCCTGCGGGTTCAGCGGCCACGGGTTCAAGTTCGTGCCGGTGGTCGGCGAGATCCTCGCGGACCTGACGACCGACGGCGCGACCGACCTGCCGATCGGGCTGTTCGACCCCCGGCGCCCGGTGCTGCGGCCCTGA	MQHHDVIVLGLGSMGGAAANELAARGLDVLGLESFTPGHDQGSAHGGTRIVRQSYFESPEYVPLLRRAYEGWYRLEAESGRDLLTLCGGIYVGDPASPTYAGSRLAAEQHGLDHEVLDAAEIRRRFPTMDPADDAMALYESAAGYVRPEETVIANTEVAARKGATLRFGERVQRWSATPGGGVEVVTPEGTYGADRLVVTPGAWAPQMLPELELPLSVERMVFYWFTPDTDAVPVERWSQEQHPVYIEETHGNGQIYGFPMTDGPAGGFKLGYFHLGTPTDPDAVDRVVHSDETAEMRRRALELFPHLTGPVVQAKTCLYTVAPDEHFVIGTHPLHDQVAIACGFSGHGFKFVPVVGEILADLTTDGATDLPIGLFDPRRPVLRP	PGPT0013530_226	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301	NA	NA
AK001_01654	2511	dmg		Dimethylglycine oxidase	ATGACCGACCTGTCCCGCCTCGACCACCAGCCCCGCATCGTCGTGATCGGCCTCGGCGTCGTCGGTGCGGCGCTGGCCGACGAGCTCACCCAGCGCGGCATGCGGCACGTGACCGTCCTCGAGCAGGGCCCGCTGTGGGAGACCGGCGGCTCCTCCTCGCACGCGCCCGGCTTCGTCTTCCAGACCTCGCCGCACCGCACGATGAGCCTGCTGGCCCGCCGCACCCTCGACAAGCTCGACGGGCAGAAGGTGGACGGGCAGTGGCTGCTCAAGCGGCTCGGCGGCCTGGAGATCGCGACCACCCCCGAGCGCCTGCACGACCTGTCCCGCCGCAACGGCCTCGCCCAGTCCTGGGGCATCCCGTCCCGGCTCGTCGACCCCGACGAGTGCGCCGAGATCTGGCCGGGCCTGGACACCTCCGGCGTGCTCGGCGGCTTCCACACCCCGACCGACGGCGTCGTGAAGTCGGTGCACGCCGTCCGCTGGCAGGCCGAGCGGGCCGTGGAGCACGGCGCCCGTCTCGTGCCCCGCACCCGGGTCGTGGGCGTGACCCGGACCGGTGGCCGCGTCACCGGCGTTGAGGTCCTCCCGGTCCCGGCACCCGACGGCGCGACGCCGGAGCACGTGCCGGCCGACGTCGTCGTGGCCTGCGCCGGCCTGTGGGGTCCGGGCCTGGCCCGCGACCTGCTCGGGTTCGAGCTGCCGATGATGCCCATGGAGCACTGCTTCGGCCTCTCCGCACCCGTGCCCGGACTGATCGGTCGGCACGACGTGCTCGACGAGGCCTCCCGCCCGATGCTCCGCCACCAGGACTTCTCCCTGTACCTGCGCGAGTACGTCGACCGGATCGGCATCGGCGCCTACCGCCATCGGCCGATGCCCGTGGAGCCCGACGGCGTGGCGGGCGCCGACGAGTTCGCGGCCACCGGCGTGCACCCCGCGATGCACCCGCTGACCTGGGAGGACTTCGGCCCGTCGTGGGACGAGGCGCGCCGGTTGCTGCCCGAGCTGCGCGACGTCCCCTTCAGCGAGGGCTTCAACGGCATCTTCTCCTTCACGCCCGACGGCGGGCCGATGCTGGGTCCGGTCGCCGGGGTCGACGGGCTGTGGCTCGCGCAGGCCGTCTGGGTCACGCAGTCCGCCGGCGTCGGGCAGGTCATGGCCGACTGGATCGTGCGCGAGGACCCGGGCGTCGACACCCACGGGCTGGAGTACACCCGCTTCGACCCCGCCGTGGTCAGCCGCGACTGGACGCGCGCACGGGCGGCCGAGGCGTACGCGGAGGTCTACGACGTCGTCCACCCGCAGGCCTCCACCGAGGTGCAGCGGGGCCTGCGCACGAGCCCGTTCCACGACCGCCAGCGCGAGCTCGGGGCCGTGTTCGAGCAGGCGAACGGCTGGGAGAGGCCGCTGTGGTTCGAGGCCAACGCCCCGCTCGTGGACGCCCTCGACCGTGTCCCGGAGCGCGACGCGTGGGCGGCGCGGCACTGGTCGCCGATCGCGGCCGCGGAGGCCCACGCCACCCGCACCGCCGTCGGTCTGTACGACATGACCCCGCTGTCCCGCCTCGAGGTCTCCGGCCCCGGGGCGACCGCGTTCCTGCAGGGTCTGACCAGCAACGACGTCGACCGGTCCGTCGGTCGGGTCGTGTACGCGCTGCTGCTCGACGACGCGGGCGGCATCCGCTCGGACGTCACCGTGACCCGGCTCGGGCCCGAGCGCTACCTCGTCGGCACCAACGGGCACCGGGACCGCGTCTACCTGGAGAGCCGGTGCCCCGACGCCGTCCGGATCACCGACCTCACCGCGGGGACGTGCGGGCTCGGGCTGTGGGGACCGCGTGCCCGCGACGTGCTCGAACGCCTCACCGACGACGACGTCTCGCACGAGGCGCTCGGCTACTTCCGCGCGAAGCAGCTCCGGGTCGCGGGTGCGGACGTGCTGGCGATGCGCGTCAGCTACGTCGGCGAGCTCGGCTGGGAGCTGTGGACCACCGCCGACCAGGGCCGACGGTTGTGGGACAGCCTCTGGGAGGCCGGTGCGCCGTCGGGACTCGTCGCCGGTGGGCGGCGGGCGTTCCACAGCCTGCGCCTCGAGAAGGGCTACCGCGCCTACGGCGCCGACATCAGCCGCGAGCACTCCCCGGCGGAGGCCGGCCTCGGGTTCGCCGTGAGCCGCCGCGCGGGCGACTTCGTGGGCCGGGCGGCGCTCGAGGACCGGCCGGTCCGACGGCGGCTCGCCTGCCTCACGCTCGACGACCCGGACGCGGTCGTGCTCGGCGGCGAGCCGGTGCTGGTCCGGGGCGCCGGACCGGGCGAGGGCGCCGTCGGGTACGTGACCAGCGCCGACCAGTCGTCCACCCTCGGGGTGACCGTGGCGTACGCCTGGCTGCCCCCGGAGCTGGCCGAGCCGGGCCGCGCCCTGGAGATCGAGTACTTCGGGCGCCGCCTGCCCGCTACCGTGCAGTCCGAACCGCTGGTCGACCCCGAGATGTCGCGCATCCTGCGCTGA	MTDLSRLDHQPRIVVIGLGVVGAALADELTQRGMRHVTVLEQGPLWETGGSSSHAPGFVFQTSPHRTMSLLARRTLDKLDGQKVDGQWLLKRLGGLEIATTPERLHDLSRRNGLAQSWGIPSRLVDPDECAEIWPGLDTSGVLGGFHTPTDGVVKSVHAVRWQAERAVEHGARLVPRTRVVGVTRTGGRVTGVEVLPVPAPDGATPEHVPADVVVACAGLWGPGLARDLLGFELPMMPMEHCFGLSAPVPGLIGRHDVLDEASRPMLRHQDFSLYLREYVDRIGIGAYRHRPMPVEPDGVAGADEFAATGVHPAMHPLTWEDFGPSWDEARRLLPELRDVPFSEGFNGIFSFTPDGGPMLGPVAGVDGLWLAQAVWVTQSAGVGQVMADWIVREDPGVDTHGLEYTRFDPAVVSRDWTRARAAEAYAEVYDVVHPQASTEVQRGLRTSPFHDRQRELGAVFEQANGWERPLWFEANAPLVDALDRVPERDAWAARHWSPIAAAEAHATRTAVGLYDMTPLSRLEVSGPGATAFLQGLTSNDVDRSVGRVVYALLLDDAGGIRSDVTVTRLGPERYLVGTNGHRDRVYLESRCPDAVRITDLTAGTCGLGLWGPRARDVLERLTDDDVSHEALGYFRAKQLRVAGADVLAMRVSYVGELGWELWTTADQGRRLWDSLWEAGAPSGLVAGGRRAFHSLRLEKGYRAYGADISREHSPAEAGLGFAVSRRAGDFVGRAALEDRPVRRRLACLTLDDPDAVVLGGEPVLVRGAGPGEGAVGYVTSADQSSTLGVTVAYAWLPPELAEPGRALEIEYFGRRLPATVQSEPLVDPEMSRILR	PGPT0013545_173	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013545-dmg_like-K00309	NA	NA
AK001_01655	783	xynR_1	COG1414	HTH-type transcriptional regulator XynR	ATGGCGGAGAGCTCGGGGGGTCGTGCGACCAAGGACGGTGCCGTCCAGTCCGTCGACCGGGCCGCCGCCATCCTGGAGCTGCTGGCCACCGCCGGCGAGCTCGGGGTCAGCGAGATCGCCCGCGAGCTGGGGGTGCACCGTTCCACCGCGTTCCGCCTGCTGGCGACGCTGGAGGCGCACGACCTGGTCGAGCAGGAGGAGCGCCGCGGCACCTACGACCTCGGTGTCGGGCTGCTGCGGCTGGCCGGACGGGTGACGCGCCGCATGGACATCGCGACGGACGCCCGGGCGGTGTGCGACGACGTCACGGCCGAGGTCGACGAGACCAGCAACGTCGCGATCCTCGACGACGGCGCGGCGGTGAACATCACCCAGACCACGAGCTCGCAGCTCGTCGGGGTGGCCCGGCAGTATGTCGGCCAGCGCACCCCGCTGCACGCGACGTCGACCGGCAAGATGCTGCTCGCCCACGCCGGCGACGAGGTCCTGGCGACGGTGCTCGAGGGCCCGCTCGAGGTGTGCACGGACCGCACGATCACGGACCCCGCGGCGCTGCGCGAGGAGCTCGCCACGATCCGGCGTCGTGGCTGGGCGGCCGCCGTCGCCGAGTGGGAGCAGGACACCAACGCGCTCGCGGTCCCGGTGCACGGGACCGGTGGTCGCGTCGTGGCGGCGCTGAGCGTGACGGCGCCGAGCTTCCGGATGGTTCCCGAGGCCTTCGAGGAGATCGCGGCGGTGCTGACCCGGCACGCCGCGGGGCTCAGCGCGCGGCTCGGCGCGTAG	MAESSGGRATKDGAVQSVDRAAAILELLATAGELGVSEIARELGVHRSTAFRLLATLEAHDLVEQEERRGTYDLGVGLLRLAGRVTRRMDIATDARAVCDDVTAEVDETSNVAILDDGAAVNITQTTSSQLVGVARQYVGQRTPLHATSTGKMLLAHAGDEVLATVLEGPLEVCTDRTITDPAALREELATIRRRGWAAAVAEWEQDTNALAVPVHGTGGRVVAALSVTAPSFRMVPEAFEEIAAVLTRHAAGLSARLGA	PGPT0018213_961	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333	NA	NA
AK001_01656	753			hypothetical protein	ATGGCGACGACGTTCGGCATCGAGGCGATCAGGCACTTCGCCAACGCGCGGGCCAACGGTCCGGACTCCAAGGCCGCGGACCTGACGTACACGTTCAACCGGAGCAACGGCTTCGACCGCGAGCTGCGTGACGCCGGGCACGCCCGCGCCTTCTACTGGACCGAGCAGGACGTCTGGGAGAACGACATCCAGGACACGTCCGGCGGCGGGGACGACCGCAACTGGGTCGACGACGTCGACCTGTTCTGGATCGAGACGCACGGCAACAACGACGCCGGCCGCCCGATCATGCTCTACGACGTCCCCCGGGACCAGTGGCTGACCAACGCCTCCACCTGGCAGCTCGGCGAGGACTGGAACGCCGAGTGGGTGATGGCGTTCTCCTGCCACACCATCGACCGCGGCAACGTCGGCGCCGTCTGGCCGATCTTCGCCCGCCTCCACCTGTACTGCGGGGCCTGGGAGAACATGTACGACGCCTGGACCACCGAGGAGTGCGGCGAGGACGTCGCCGACAACCTCACCGACGGCGACACCGTCAGCGAGGCGTGGCTCGACGGCGTCTCCGACTGGGCGACGGACAACCACCCGATCGTCGTCGGGCCCGGCACGTCCGCGGCATGGAACGGCGGCACCATCCGCTGGGACCTGAGCCCGCACCACACCGACCACATCTGGGGCGAGGGCGGCACGGCGCCCGACCTCGCACCGGCGCAGCAGGGCTGCCTGCTCTGGCGCTGGGCCGAAGGCTGA	MATTFGIEAIRHFANARANGPDSKAADLTYTFNRSNGFDRELRDAGHARAFYWTEQDVWENDIQDTSGGGDDRNWVDDVDLFWIETHGNNDAGRPIMLYDVPRDQWLTNASTWQLGEDWNAEWVMAFSCHTIDRGNVGAVWPIFARLHLYCGAWENMYDAWTTEECGEDVADNLTDGDTVSEAWLDGVSDWATDNHPIVVGPGTSAAWNGGTIRWDLSPHHTDHIWGEGGTAPDLAPAQQGCLLWRWAEG				NA	NA	NA	NA	NA
AK001_01657	927			hypothetical protein	ATGTCCGGATTCACCACCGTCGTCGACCGCCTGGCCGAGCTCGCCGGGAAGATCCCGCACGAGGTCGCCGTCCACCACCTGGTCGACCAGCCCGAGGTCGAGGAGCGGGGGCTCGCGCACGCGTACCGCCTGGCCGAGACGCTCGGCTGGTCCGTCCGCGAGGAGAAGACCTCCCGGGGCCGCGCCGCCCGCATGCTGCGCGACCCCGACCGGGGCCGCCTCGCCGTGTTCCACGCGTCGGGCGCCGTGGCGCTGAAGACGTCCGTCGGGCCGTTCGACGAGCTGTTCGACGGCGACCCCGGCGACGACGAGCTCGCGACCCACGCCCGCAAGCACCTCGAGCGGCTCGGGGTCACGGAGCTCGTCGCGGACGGCGAGAGCCTGGAGCTCGAACGGCTCTGGCGCATCCGCGCCGCCGGGTCCGACCCGGACGGCGCCGTCAGCGAACCCGTCCTGTGCCGCGCGGTCGGAGCGTTCCGCCACACCGTCGGCGACCTGCCGGTGCTCGGCCGTGCGTCCGCCCACGTCGAGCTGACCGGGAAGGGCACCGTCAGCGCGGCGTCGACCCTGCTGCGCAGCCCGGCCGGCCACTCGCGGCCGCTCGCCACCGTCGCAGCACGCGACCCGTACGACGCCGCCGAGGAGGTCGCCCACCGGCTCGCGAAACTCCTGGGCAGCCGCGACCTGGGCGACGAGATCACGCCGCGCGGCTTCTCCTTCGGCTACCTGTCCCTGGGGCGCCGTCGACCGCAGTCCGTGCTGGCGCCGTTCTTCGTCGCCGACGTCACGATCGGGTCCGGCCCGGGACGCACGAAGTCCGCGCACCTGCTGCCCGTCGCCGGCAGCGACGAACGGTTCCTCAGCCTGCCGCGCGGGGCGGCGCCCAGCACGCTGGCCCGCAAGCCCGGGGCACCCGCGGTCGCCTGA	MSGFTTVVDRLAELAGKIPHEVAVHHLVDQPEVEERGLAHAYRLAETLGWSVREEKTSRGRAARMLRDPDRGRLAVFHASGAVALKTSVGPFDELFDGDPGDDELATHARKHLERLGVTELVADGESLELERLWRIRAAGSDPDGAVSEPVLCRAVGAFRHTVGDLPVLGRASAHVELTGKGTVSAASTLLRSPAGHSRPLATVAARDPYDAAEEVAHRLAKLLGSRDLGDEITPRGFSFGYLSLGRRRPQSVLAPFFVADVTIGSGPGRTKSAHLLPVAGSDERFLSLPRGAAPSTLARKPGAPAVA				NA	NA	NA	NA	NA
AK001_01658	480			hypothetical protein	ATGACTCTCGTCGACCCGGGCCCCCGTCCGCAGGCCTTCGACGTCGAGGCCGCCACGCGACGGAACGACACCTGTCGCACGGTCGTGTGGACGGGCGTGCATCTCCAGGTCACGCTGATGTCGATCCCCGTCGGGGAGTCGGTCGGTCTCGAGGTCCACCCGGACACGGACCAGTTCCTCCGCCTCGACGCCGGCCGTGGCCGTTGCGTCATGGGGCCGGCCCGCGACGATCTGGACTTCACCCAGGACGTCACCGACGGGTGGGCGATCCACGTTCCGGCCGGCACCTGGCACGACGTGATCAACACCGGCGACGAGCCCATGCGGCTGTATGCCGTGTACGCCCCGACCCATCACGCGGCAGGCATCGTGCAGGAGACCGCTGGCGAGGCCGAGCGCGACGAGTCGAGCGGGCGCGACGAACCGCCATCGTGGACCCGGCAGCCCGAGGAGGGCGAGCCCGACCAGCACGCCCCCTGA	MTLVDPGPRPQAFDVEAATRRNDTCRTVVWTGVHLQVTLMSIPVGESVGLEVHPDTDQFLRLDAGRGRCVMGPARDDLDFTQDVTDGWAIHVPAGTWHDVINTGDEPMRLYAVYAPTHHAAGIVQETAGEAERDESSGRDEPPSWTRQPEEGEPDQHAP				NA	NA	NA	NA	NA
AK001_01659	1161		COG1373	putative protein	GTGGGCAAGTCGACGCTGCTGGATGGGCTGGCGGCCGAGTCGAATGCCGTCGTGATCGACCTGGATCGAGAGGACTACCTCCAGCTCGCACTGAACAGCCCGTCTGCAGTCGTCGGAGAGGACACGCCGGTGCTCATCGACGAGTACCAGAAGGCTCCGTCGTTGCTGGACGCGATCAAGGCTCGCCTCAACCACGAGACGCGGCCGGGCATGTTCGTGCTTGCCGGCTCGGCGAGCTACGACTCTTTGCCGCAAGGCACGCAAGCCCTGACAGGGCGCATCCAGCGCCTACCCGTCATGCCCTTGACGCAGGCCGAGCTCGATGCGACAGGCAACGATCTCATCGCGCGCGCTTTCGAGGGAGACGTCGAGCACCACGTCCGGACTGCCACCGCGTCGCGGGACGAGTATGTCGATCGCGTGATGCGAGGCGGGATGCCGCTTGCGCTTGCGCAACCTACCGAGGCCGACCGGTCCCGCTGGTTCGAGGCGCACGTGGGGCAGTCGATCCAACGAGACGCCGGCGAGCTGCGGCGCATCGGCAGAAAATCTGACCTCCGGGACGTGCTCACGCGCACCGCCGGGCAGACGGCCAGCGTCCTCAACGTCTCGAAGGTCGCCAGTGACGTTGCTCCGTCGTGGGACACGACCTCCGCCTACATCGAGCTCCTCGAGTCGCTGTTCCTCGTCCGTCGGCTCCCCGCATGGGGCATGACCGTCCTGCCAAGGAGCATCGAGTCTCCCAAGGTCCACGTCGTCGACTCCGGAATCGGCGCGCACCTGCTGCGGCTGAGCGCAGCGAAGATGAAGCGACTCGACCCGTCCTCGCTCACGGAGTTCGGCCACCTGCTCGAGTCCTTCGTCGTCCAGGATGCGATCCGGCAGACGACGTGGATGGACGCCCCTGTCTCGGCCGGGTACTGGCGCACCCGGGACAACGTCGAGGTCGACCTGGTTCTTGAGCGCCACGACGGTGCGGTCGTCGCCATTGAGGTGAAGGCGGGGGATCACGTCAAGCGGACACAGCTCTCGCCGCTGGTCGCCCTGCGCGATCGTCTGGGGTCGTCCTTCGCAGCCGGGATCACGTTCTACACGGGCGGGACCGGATACGAGGTGGACGACCGGATTCACGTGCTCCCGATCGAGCGACTGTGGACCTGA	MGKSTLLDGLAAESNAVVIDLDREDYLQLALNSPSAVVGEDTPVLIDEYQKAPSLLDAIKARLNHETRPGMFVLAGSASYDSLPQGTQALTGRIQRLPVMPLTQAELDATGNDLIARAFEGDVEHHVRTATASRDEYVDRVMRGGMPLALAQPTEADRSRWFEAHVGQSIQRDAGELRRIGRKSDLRDVLTRTAGQTASVLNVSKVASDVAPSWDTTSAYIELLESLFLVRRLPAWGMTVLPRSIESPKVHVVDSGIGAHLLRLSAAKMKRLDPSSLTEFGHLLESFVVQDAIRQTTWMDAPVSAGYWRTRDNVEVDLVLERHDGAVVAIEVKAGDHVKRTQLSPLVALRDRLGSSFAAGITFYTGGTGYEVDDRIHVLPIERLWT				NA	NA	NA	NA	NA
AK001_01660	234			IS3 family transposase ISBli33	ATGGGTCAGGTCGCCTCCGCGGGCGACAACGCCGCCATGGAGTCCTTCTTCGCGCTGCTGCAGAAGAACGTCCTGAACCGGCGCCGTTGGACCACCCGTGAGGACCTGCGCATCGCGATCATCACCTGGATCGAACGGACCTACCACCGACGCCGTCGCCAGGCCCGCCTCGGACGATTGACCCCCATCGAGTACGAAGCCATCATGACCACTCAGGTCGCACTCGCCGCCTGA	MGQVASAGDNAAMESFFALLQKNVLNRRRWTTREDLRIAIITWIERTYHRRRRQARLGRLTPIEYEAIMTTQVALAA				NA	NA	NA	NA	NA
AK001_01661	270			hypothetical protein	ATGCCCGAGCGAGACCCGGGCCCCAGCGTCAAGGACGAGGAGCTGTACGAGAAGCTCCGCGACGAGGGCAACAGCAAGGAGAAGGCCGCCCGCATCGCCAACGCGGCGGCGAACCGCGGTCGCAGCGACGTCGGCCGCGAGGGTGGCGAGGCCCCGGCCTACGAGGACTGGACCGTCGACGAGCTGCGCGAGCGCGCGGCCGAGCTCGACGTCGAGGGGCGCTCCACGATGCGCAAGGACGAGCTGATCGACGCCCTGCGCTCGCACTGA	MPERDPGPSVKDEELYEKLRDEGNSKEKAARIANAAANRGRSDVGREGGEAPAYEDWTVDELRERAAELDVEGRSTMRKDELIDALRSH				NA	NA	NA	NA	NA
AK001_01662	546			hypothetical protein	ATGGAAGGACAGGTTCCGGAGCTCGACGGCGAGACGGAGGCGAGCGGCATGAAGGCGTCGGTGGGGGACAGGATCATCACGGCGTCCGGCGTGGTGGGCGGCGCGGTCCGGGACGGGATCGTCGTGGACTGCCCGCACGACGACGGGTCGCCGCCCTACCAGGTGCGTTGGTCGGACACGGGCGAGGAGTCGCTGGTCTACCCGGGCCCGGACTCCCTGGTGCAGCACGAGGACGGCGGCGCCGCCGAGGACGACGAGGTACGCACCGCGCGGGCGGTCACGTGGACCATCCAGGTGTCCCTGGTCGAGGCCTCCGGCAGCACGACGGCCGAGGCCGTGCTCGTCGTCGGCCCCGGGGAGCACTCCGACGTTCCCCTGCGGTCCGTGGGCCACGCGCGCAAGGACCCGCACGACACGGAGATCCCGGTCATCGGTGACGAGGTGGCGGCGGGCCGGGCGCTGCGCCGGCTGGCCGACGCTCTGCTGGGCCAGGCCGAGGAGGACATCACCGCCTCGACCGGGGTGCCGGCGCACGTGCACGACTGA	MEGQVPELDGETEASGMKASVGDRIITASGVVGGAVRDGIVVDCPHDDGSPPYQVRWSDTGEESLVYPGPDSLVQHEDGGAAEDDEVRTARAVTWTIQVSLVEASGSTTAEAVLVVGPGEHSDVPLRSVGHARKDPHDTEIPVIGDEVAAGRALRRLADALLGQAEEDITASTGVPAHVHD				NA	NA	NA	NA	NA
AK001_01663	870	glnH_2	COG0834	ABC transporter glutamine-binding protein GlnH	GTGCGAGCTCGTCCCGCATCCGTCGCCGTGCTGGCCCCCGCCGTCCTGCTCGGGCTGGCCGCCTGTTCGACGGACGACGCCCCGGACGCCGAGGAGCCCGGCGCGACCTCGGCCGAGGCCACGGCCGACGCCTGCGCCGCCGGCGAGCTGCCCACCCTGACCGACGGCACCCTGACAGTCGGCGCGGGCGAGCCGTTCGAGCCGTGGTACGTCGGCGAGCCCACCAGCGGGGAAGGCTTCGAGTCCGCCCTGGTCTACGCGGTCGCCGACGAGCTCGGCTACGGCGAGGACGACGTGGTGTGGGAGACGGTGACGTTCGAGCAGATCATCTCCCCGGCGATCAAGCCGTTCGACCTCGCCGCCTACCAGACGACGATCACCGAGGAGCGCGCCGAGGCCGTCGACTTCTCCAGCCCCTACCTGACCAGCCACCAGGGCGTCATCGTCGCCGACGACGGCGAGTACGCCGACGCGTCGAGCCTGGCGGACCTGGAGGGCGCCCGCATCGGCGTGACCGCCGCCCAGACCTCCCTGGACGCCGCCGAGTCCGCCTGGGGCGACGCGGTGGAGATCACCCCGTTCAGCGCCGCGGGCGACGGGATGACCGCGCTCACCTCCGGCACCGTCGACGCGATGGTCATGGACGTCGACCAGGGCGTGGCCGCCTCGACCGTGTACTTCCCGGACACGCAGGTCGTGGGCACCCTGCCCGACGTCGGCGAGCCGGAGCAGCTCGGGCTCGTGCTGGACAAGGACTCGGCGCTGACCGAGTGCGTCTCGCAGGCCGTCGACGCCCTCGAGGCGGACGGCACCCTCGACGAGCTGCGGACCGAGTGGCTGAAGTCGGACGACATCCCCGAGCTGTCCTGA	MRARPASVAVLAPAVLLGLAACSTDDAPDAEEPGATSAEATADACAAGELPTLTDGTLTVGAGEPFEPWYVGEPTSGEGFESALVYAVADELGYGEDDVVWETVTFEQIISPAIKPFDLAAYQTTITEERAEAVDFSSPYLTSHQGVIVADDGEYADASSLADLEGARIGVTAAQTSLDAAESAWGDAVEITPFSAAGDGMTALTSGTVDAMVMDVDQGVAASTVYFPDTQVVGTLPDVGEPEQLGLVLDKDSALTECVSQAVDALEADGTLDELRTEWLKSDDIPELS	PGPT0020800_4467	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030	NA	NA
AK001_01664	882			hypothetical protein	ATGAGCGGCGCGAACCAGGGCCGACCGCCGTCGGCGCGGGCCCGGGCCCGGCAGGACTACCGCCGGGCCCAGCACCGCCGTGCCCTGCTCGTGGCCGCGGTGGCGACCGCCGTCGTGCTCGCCGCCGTCGTCGCCGTCGTCACGACGGCCCCCGGCTGGGAGCGGGCCCGGGAGGCGTTCTTCTCCCCGGAGCGGGCCTGGGAGGTCCTGCCCGAGGTCGCCGAGGGGCTCTGGCTGAACCTGCGCGTGTGGGTCGTGGCCTCCGTCGTCGGACTGACCGTGGGGCTGCTCCTCGCCGTCGTGCGCACCTCGCGGCTGCCCGCGCTGTTCCCCGTGCGGGTGCTGACGGTGCTCTACGTCGACGTCTTCCGCGGCGTGCCGGTGCTGCTGGTGCTGCTGCTGGTCGGGTTCGGGCTGCCGGCCCTGCGGCTGGAGTGGCTGCCGGTCAGCGCGGCGTTCCTCGGCGGCCTGGCGATCGTGCTCACCTACACCGCCTACCTCGCCGAGATCTTCCGGTCGGGGATCGAGGCGGTGCACCCCTCGCAGGTGGCCGCCGCCCGGTCGCTGGGCCTGACCCGGGGCCAGACGGTCCGCCGGATCGTGCTGCCGCAGGCCGTCCGGAACGTGTCGGCGCCCGTGGCGAGCATGCTGGTCTCCCTGCAGAAGGACTCCGGGCTGATCTCGATCCTCGGTGCCGTGGACGCGATCCGGGCCGCGCAGATCGCCACCACCGGCGACTACAACTTCACGCCGTACGTGGTCGCGGGCGCGCTGTTCCTGCTGGTCTCGATCCCGCTGACCCGGCTCGTGGACGCCTGGTCCGCGCGCCAGGGCTGGCGCGGCTCGCTGCGCGGCGTCAGCGGCGCGGGGGTGGTCCGATGA	MSGANQGRPPSARARARQDYRRAQHRRALLVAAVATAVVLAAVVAVVTTAPGWERAREAFFSPERAWEVLPEVAEGLWLNLRVWVVASVVGLTVGLLLAVVRTSRLPALFPVRVLTVLYVDVFRGVPVLLVLLLVGFGLPALRLEWLPVSAAFLGGLAIVLTYTAYLAEIFRSGIEAVHPSQVAAARSLGLTRGQTVRRIVLPQAVRNVSAPVASMLVSLQKDSGLISILGAVDAIRAAQIATTGDYNFTPYVVAGALFLLVSIPLTRLVDAWSARQGWRGSLRGVSGAGVVR	PGPT0020795_2181	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029	NA	NA
AK001_01665	762	glnQ_3		Glutamine transport ATP-binding protein GlnQ	ATGACCGCGGCACCGCTGCTCAGCCTGCGCGAGGTGCGCAAGTCCTTCCCTGCCGGTCCGGGCCGACGCGCGGGTCGCCGCGTCGTGCTGGACGGCATCGACCTGGACGTGGCCGAGCACCAGTGCGTGGTGCTGGTCGGCTCCTCCGGGTCCGGCAAGTCGACGCTCCTGCGGGTCGTCGACCTGCTCGAGGACGTCGACGACGGCCAGGTGCTCCTCGACGGCGTCGACGTGGCCGACCCCTGGGTGGACGCCGACGCCGTGCGGGCCCGGCTCGCGATGGTCTTCCAGCAGTACAACCTGTTCCCGCACCTGACCGTCCTGGACAACGTCACGCTGGCCCCGCGCCTGGTGCACCGCCGGCCGCGGGCCGACGCCGAGGAGGCGGGACAGGCGATGCTGGCGCGGGTCGGGCTGGCGGACAAGGCGGACGGCTACCCGGACCATCTCTCCGGCGGTGAGCAGCAGCGGGCGGCGATCGCCCGGGCGCTCGTCGGGGGCCCCGAGCTGCTGCTGCTCGACGAGGTCACCTCCGCCCTGGACCCGGAGCTGGTCGGCGAGGTGCTGGACCTGCTGCTGGACCTGCGCGCCGAGGGCACCACGATGCTGGTGGCCACCCACGAGATGGACTTCGCCCGCCAGGTCGCCGACGAGGTGGTGTTCCTGCACGAGGGGCGCGTGCACGAGCGGGGCACCCCCGCCCAGGTCCTCGACGACCCGCAGCGCGAGCGCACCCGGGAGTTCCTGCGCCGCCTGCGCTGA	MTAAPLLSLREVRKSFPAGPGRRAGRRVVLDGIDLDVAEHQCVVLVGSSGSGKSTLLRVVDLLEDVDDGQVLLDGVDVADPWVDADAVRARLAMVFQQYNLFPHLTVLDNVTLAPRLVHRRPRADAEEAGQAMLARVGLADKADGYPDHLSGGEQQRAAIARALVGGPELLLLDEVTSALDPELVGEVLDLLLDLRAEGTTMLVATHEMDFARQVADEVVFLHEGRVHERGTPAQVLDDPQRERTREFLRRLR	PGPT0020790_1820	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028	NA	NA
AK001_01666	1170			hypothetical protein	ATGAAGCGCCTGATCCTGTGCTGCGACGGGACCTGGAACCACGCGGCGAACCAGTACGTGTCCAACGTGGAGAAGATCGCCCGTGTCCTGGACCGCGGCCCGGTCGCCGACGGTGTCGTCCAGATCGTCGAGTACGTCGGTGGGGTGGGCTCGCAGGGGTACCTCCTCGACAAGGTCCTCGGGGGCGCGTTCGGCTCGGGGCTGACCCAGAACGTCGTCGAGGGCTACCGGTTCCTGGCGATGAACTACGCGCCCGGCGACGAGATCGTCGTCCTCGGCTACTCCCGCGGCGCCTACACCGCGCGCAGCGTGGTCGGCATGGTCGGGGCCGTCGGCCTCCTGACCCGCGAGGCGCTCGCGGCCGGTGCGCTGCACGACGCCGTGCGCCTGTACCGCGAGCCGGCCGACGACGACGCCGCGCGCCTCGCCCGCGAGGAGAAGCGCGCCGCCTTCCGGCGCGAGCACTCGCACGGCGGCGACGCCGGGACGCCGGTGCGGTTCCTGGGCGTCTTCGACACCGTCGGCACCCTCGGCGTCCCCGGGCTCACGCGGCGCCGCTACCGGTTCCACGACGTCCGGCTCGGCGACGACGTCGAGGTGGCGCGGCAGGCCCTCGCGGTCGACGAGCGCCGGCTGTCCTACGCGCCGTGTCTGTGGGAGGTCCCGGCCGACAGCCCGGAGGGCCGCGTCCAGCAGGTCTGGTTCGTCGGCGGCCACGGCGACGTGGGGGGCGGCGGACCGCGGTGCGGGCTGTCCGACGCCGCGCTGGAGTGGATGGTGGACGAGCTGCGCAAGGTCGGCGTCGTCGTCGACGACGCGCTGTGGTCGTCGCAGTGCACGCACCAGGAGGAGCTCGTCCTGGACGTGCGGCCCCGGCTGCTGTTCCGGCTGATCAACCGGGCCAAGCGCCTGCTGCCGGGCAGCGGGAGCGTGGATGGCCGGGAGGTCTTCCGCCACGGCCTGCGCGTGCTCGCCCGCCGGGACGGCGGGGTGTGGGGCGACGGGGTGTGCGTCGCCGGGCCCGTCGTGCGCTACGTGGAGCGCGACGGGTACGCCGAGCACGCGCCGAACCTGCAGCGCTGGGTGGACGAGGCCGGCGGTGTGGACCAGGTGCCCGCCGTGCCCGTCGAGGCGTGGCGCGACGACGAGCGGCGGCTGGTCGTGCGCTGA	MKRLILCCDGTWNHAANQYVSNVEKIARVLDRGPVADGVVQIVEYVGGVGSQGYLLDKVLGGAFGSGLTQNVVEGYRFLAMNYAPGDEIVVLGYSRGAYTARSVVGMVGAVGLLTREALAAGALHDAVRLYREPADDDAARLAREEKRAAFRREHSHGGDAGTPVRFLGVFDTVGTLGVPGLTRRRYRFHDVRLGDDVEVARQALAVDERRLSYAPCLWEVPADSPEGRVQQVWFVGGHGDVGGGGPRCGLSDAALEWMVDELRKVGVVVDDALWSSQCTHQEELVLDVRPRLLFRLINRAKRLLPGSGSVDGREVFRHGLRVLARRDGGVWGDGVCVAGPVVRYVERDGYAEHAPNLQRWVDEAGGVDQVPAVPVEAWRDDERRLVVR				NA	NA	NA	NA	NA
AK001_01667	375			Universal stress protein	ATGACGGTGCTCGTGGCCTATCGCGCCTGCCCGCACGGCGAGGCAGCTGTCCGGACCGCGCTGGAGGAGTCGCGTCGACGCGACCTGCCTCTCCAGGTGCTCGTGCTCGACGAGCAGGATCCCGACGCCGGCCCCTCGGCCGCGCTCGCCGCCGTCCTCGGCGACGCCGCCGTGGAGATCGCCTACCGGGACGAGCACACCGAGCCCGCGGACGCGATCCTGGACCGCGCGGACGACGTCGGGGCGAGCCTCGTCGTCGTGGGCTCGCGCAAGCGCTCCAGCCAGGGCACGTTCCTCATGGGCACGACGACGCAGCGCGTGCTGCTCGACGCCTCCGTGCCGGTCCTCGTGGTCAAGGACGCCTACGACTCCTGA	MTVLVAYRACPHGEAAVRTALEESRRRDLPLQVLVLDEQDPDAGPSAALAAVLGDAAVEIAYRDEHTEPADAILDRADDVGASLVVVGSRKRSSQGTFLMGTTTQRVLLDASVPVLVVKDAYDS				NA	NA	NA	NA	NA
AK001_01668	1110			hypothetical protein	ATGCCCGTGAGCCTCGTCAGCGTCCTGCTCCTGCTCGCCGGGTTCGTGCTGCTCGTCGGCGGCGGCGAGGCCCTCGTGCGCGGGGCGGCCTCGCTGGCCCGGACCCTGGGCATGTCCGCCCTCGTCGTCGGCCTGACGGTCGTCTCCTTCGCGACCTCCAGCCCCGAGCTGGCCGTCAGCGCCGGGTCCGCCCTGACCGGCTCGCCCGGGCTCGCCGTCGGCAACGTCGTCGGCAGCAACATCGCCAACATCCTGCTCGTGCTCGGAGTCGCGGCGATCGTCGTCCCGCTGGCGGTCACGCACCGCCTGGTGCGCACGGACATCCCCGTGATGGTCGGGATGTCCGTCCTCGCGCTCGTGCTGTCCCTCGACGGGACGATCAGCACCGCCGACGGCGTCCTCCTGCTCGGCCTGCTCGCCGCCTACCTGGCCGTGACCACGATCGTCGCCCGCCGCGCGCAGACCGACCTGCCGCGCGAGACCGCCGACGACGACTCCCTGGCCCGGTTCCGCACCAGCCGGGCCCGGTCGGTGGGGATCGACGTGGCGCTCGTGGCCGTCGGGGTGGCGCTGCTGGTCGTCGGCGCCCGCTTCCTCGTGGACGGGGCCACGCAGATCGCCTCCGCGTTCGGCGTGAGCGACCTGGTGATCGGCCTCACCGTCGTCGCGATCGGCACCTCCCTGCCCGAGCTCGCCACCAGCGTCATCGCCGTGCGCCGCGGCGAGCAGGAGATGGCCGTGGGCAACATCGTCGGCAGCAACATCTTCAACGTCGGCGCGGTCCTCGGCCTGACCGCCGTCGTCGCGCCGGGCGGCATCGACGTCGCCCCGGCCGCCGTGAACCTCGACCTGCCGGTGATGATCGCCGTCGCCCTGGTCCTGCTCCCCGTCGCGTTCACCGGGCAGGCGATCGTGCGCTGGGAGGGCGTGCTGTTCGTCGTCCTCTACCTGACCTACCTCGCCTACGTGCTGCTCGCCGCCACCGACCACGACGCCCAGGGCCCCTTCGGCGGCGCGATGTTCGGCTTCGTGCTCCCGGTCACCGCCGTGTGGCTCGTGGCGCTCGCGGCCTACGAGCTCGGACTGCGCCGCGGCCGCCGTCAGGTGTGA	MPVSLVSVLLLLAGFVLLVGGGEALVRGAASLARTLGMSALVVGLTVVSFATSSPELAVSAGSALTGSPGLAVGNVVGSNIANILLVLGVAAIVVPLAVTHRLVRTDIPVMVGMSVLALVLSLDGTISTADGVLLLGLLAAYLAVTTIVARRAQTDLPRETADDDSLARFRTSRARSVGIDVALVAVGVALLVVGARFLVDGATQIASAFGVSDLVIGLTVVAIGTSLPELATSVIAVRRGEQEMAVGNIVGSNIFNVGAVLGLTAVVAPGGIDVAPAAVNLDLPVMIAVALVLLPVAFTGQAIVRWEGVLFVVLYLTYLAYVLLAATDHDAQGPFGGAMFGFVLPVTAVWLVALAAYELGLRRGRRQV	PGPT0014400_289	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301	NA	NA
AK001_01669	459		COG2166	putative SufE-like protein	ATGACCGACGACGCCGCGCAGCCCACGCCCGAGCTCCCCGAGCAGCTCGCCGAGATCCGCGAGGACTTCCTCGCCCTGACCGAGTCCGAACGGCTGCAGCTCCTGCTCGAGTTCTCCCGCGAGCTGCCGGACCTGCCCGCCCGGTACGCCGACTCGCCCGCCCTGCTGGAGAAGGTCGAGGAGTGCCAGTCCCCCGTGCACGCCTTCGCCGAGGTCAGCGACGGCGTCGTGCACTTCCACGCCACCGCGCCGCCGGAGGCCCCCACGACGCGCGGGTTCGCCTCGATCCTCGCCCAGGGGCTGTCCGGGCTCACGCCCCGGCAGGTCCTGGACGTCCCCGAGGACTTCCCCCTGCAGCTCGGTCTGACCCGGGCGGTCTCCGCGCTGCGGCTCAACGGGATGACGGGCATGCTCACCCGCGCCAAGCGCCAGATCGTCGAGCAGCTCGCCGCCGCCTGA	MTDDAAQPTPELPEQLAEIREDFLALTESERLQLLLEFSRELPDLPARYADSPALLEKVEECQSPVHAFAEVSDGVVHFHATAPPEAPTTRGFASILAQGLSGLTPRQVLDVPEDFPLQLGLTRAVSALRLNGMTGMLTRAKRQIVEQLAAA				NA	NA	NA	NA	NA
AK001_01670	906	sseA	COG2897	Putative thiosulfate sulfurtransferase SseA	ATGCCCGCACCGCTCGACCCCACCCCGCGGCTCCAGGAGTACGCCCACCCGGAGCGCCTCGTCACCACCGAGTGGCTCGCCGAGCACCGCGACGACCCGGGCCTCGTGGTCGTCGAGTCCGACGAGGACGTGCTCCTGTACGAGACCGGCCACATCCCCGGCGCCGTGAAGGTCGACTGGCACACCGACCTGCTGCTGCCCGTCGAGCGGGACTACCTCGACGGCCCCGGCTTCGCCGAGCTGCTCGGCTCCAAGGGCATCGCCCGTGACACGACCATCGTGCTCTACGGCGACAAGAACAACTGGTGGGCCGCGTACACCGCCTGGGTCTTCACCCTCTTCGGCCACGCCGACGTCCGGCTCCTCGACGGCGGCCGCAACCTGTGGGTGGCCGAGGGTCGCGAGCTCACCACCGACGCCCCGACCCCGACGCCGGCCGAGTACCCGGCCGTCGAGCGCGACGACGTCACCTTCCGCGCCTTCAAAGAGGACGTGCTCGCCCACCTGGGCCACGGCCCGCTCGTGGACATCCGTTCGCCGCAGGAGTTCACCGGCGAGCGGCTGCACATCCCCGACTACCCGGAGGAGGGCGTGCTGCGCGGCGGGCACATCCCCACCGCGCACAACGTGCCGTGGGCCACCGCCGTGTCCGAGGACGGCACCTACAAGCCCCGTGCCGAGCTCGAGGCGATCTACCAGGCGGGCGGCCTCGGCATCACCGACGAGGACAAGGTCATCACGTACTGCCGGATCGGTGAGCGGTCCAGCCATACGTGGTTCGCCCTGCACTTCCTGCTCGGGATCCCGGACGTGCGCAACTACGACGGCTCCTGGACCGAGTGGGGCAACGCGGTGCGCGTGCCGATCGTCGCGGGCGAGGAGTCCGGCGAGGCTCCCGCGGCCTGA	MPAPLDPTPRLQEYAHPERLVTTEWLAEHRDDPGLVVVESDEDVLLYETGHIPGAVKVDWHTDLLLPVERDYLDGPGFAELLGSKGIARDTTIVLYGDKNNWWAAYTAWVFTLFGHADVRLLDGGRNLWVAEGRELTTDAPTPTPAEYPAVERDDVTFRAFKEDVLAHLGHGPLVDIRSPQEFTGERLHIPDYPEEGVLRGGHIPTAHNVPWATAVSEDGTYKPRAELEAIYQAGGLGITDEDKVITYCRIGERSSHTWFALHFLLGIPDVRNYDGSWTEWGNAVRVPIVAGEESGEAPAA	PGPT0002045_853	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011	NA	NA
AK001_01671	1284			hypothetical protein	ATGGGGCATCGGCCCGCCACGCCGCACGGCGACCTCGCCCGCGCGCTCTCGCCCGCCGTCCCGGTCCGCCGCGACCGACGGTCGGTGCGCAGCGCCCACGACACGTTCCTCGACACCGGCGCGCTCCCGGCCGGGCTGGACCCGTTGGTCGCCGCGTCGTGGCGGCGCAGCCGGTCCTGCGGCGTCGACCCCGACACCCCGCACGTCACGCTCGGGCTCGCCCCCGACGAGCTCGAGGCCTACCGCGGCGCCCACCCGCTGGCCGCCCTCATGCCCGCCGTGCGCGACCTCGTCGGCGAGGCCGCCCGCGACGACGGGCTCGTCGTGGCCGTCTCGGACGACACCGGACGCCTGCTGTGGGTCGAGGGCGACACCCGCACGCGGGGGACCGCGGAGAGCGTGGGGTTCGTCGCCGGGGCCGTCTGGCGCGAGGAGGACGTGGGCACCAACGCCCCCGGCACGGCCCTGGCCACCCGGCGGCCGGTCCAGGTGCTCGGTGCCGAGCACTTCTCCCGCCCGGTCCAGCGCCTCAACTGCGCCGCCGCGCCGATCCAGGGCCCCGACGGGCGCGTCCTCGGCGTCCTCGACGTCACCGGGGGACGTGCCGCCGGCTCGCACGTGGCCCTCTCCCTCGTGCGCGCCACCGTGGCCAGCCTCGAGCGCGAGCTCGCCGCCCGCGACGGCGCCGCACGGGCCGCGGCCGGCGGTGTCGGCCCCACCGTCCGGCTGCTCGGCAGCCCCGCGTGGCAGGCGGCCGACGGCGAGCACCGGCTCTCCGGCCGGCACGCCGAGATCCTGGCCCTGCTCGGCGAGCACCCCCGGGGCCTGACCGCCGAGGAGCTCGCCGTGCTGCTGCACCCCGGCGAGCTGTCCGAGGTGACGGTCCGTGCCGAGATCTCCCGCCTGCGCCGCGCCGCCGGGAGCCTCGTGACCGGGTCGCGGCCCTACCAGCTCGCCCCCGGCGTGCGCCGCGACGTCGACGTCGTGCGCGAGCGCCTGGCCGCCGGGGACGTCGCCGCCGCCGTGGTCGCCTACACCGGACCGCTGCTGCCGCGGTCCTTCGCCCCCGGTGTCGAACGGGTCCGGGCCGAGCTGTCCGCCGAGCTCCGCTCCGCCGTGCTCGGCACCGCCGACCCCGCCGTGCTGGACGCCTGGACACGGACCGACGACGGCGCCGACGACGTCGAGGCCTGGCGCGCGCTCGTGGCCCGCTCGGACCCCGGCGGACCCCGATGGGCCCGCGCCCGGGCCCATCTCGCCGTCGTCGACGCCGCGCTGCGCTGA	MGHRPATPHGDLARALSPAVPVRRDRRSVRSAHDTFLDTGALPAGLDPLVAASWRRSRSCGVDPDTPHVTLGLAPDELEAYRGAHPLAALMPAVRDLVGEAARDDGLVVAVSDDTGRLLWVEGDTRTRGTAESVGFVAGAVWREEDVGTNAPGTALATRRPVQVLGAEHFSRPVQRLNCAAAPIQGPDGRVLGVLDVTGGRAAGSHVALSLVRATVASLERELAARDGAARAAAGGVGPTVRLLGSPAWQAADGEHRLSGRHAEILALLGEHPRGLTAEELAVLLHPGELSEVTVRAEISRLRRAAGSLVTGSRPYQLAPGVRRDVDVVRERLAAGDVAAAVVAYTGPLLPRSFAPGVERVRAELSAELRSAVLGTADPAVLDAWTRTDDGADDVEAWRALVARSDPGGPRWARARAHLAVVDAALR	PGPT0007176_1	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138	NA	NA
AK001_01672	1524	thcA	COG1012	EPTC-inducible aldehyde dehydrogenase	ATGACCGTCTACACCCCACCGGGACAGACCGGGTCGATCGTGGAGTTCCGCAGCCGGTACGACCACTGGATCGGCGGCGAGTACGTCCCCCCGGCGAGCGGGGAGTACTTCGAGAACCCCACCCCCGTCACCGGGCAGACCTTCTGCGAGGTCGCCCGCGGCAACGCCGAGGACATCGAGCGCGCGCTGGACGCCGCGCACGGCGCCGCCCCCGCCTGGGGCCGCACGTCCGTCACCGAGCGCGCCAACGTCCTCAACGCCATCGCCGACCGCATCGAGGCCAACCTCGAGAAGATCGCCGTCGCCGAGAGCTGGGAGAACGGCAAGGCCGTGCGCGAGACGCTCGGCGCCGACATCCCGCTGGCCGTCGACCACTTCCGGTACTTCGCCGGGGCGATCCGGGCCCAGGAGGGCTCGATCTCCGAGATCGACGGCGACACCATCGCCTACCACTTCCACGAGCCGCTCGGGGTCGTCGGGCAGATCATCCCGTGGAACTTCCCGATCCTCATGGCCACCTGGAAGCTGGCCCCGGCGCTCGCGGCCGGCAACGCCGTCGTGCTCAAGCCGGCCGAGCAGACCCCGGCGTCGATCCTCTACCTGATGGACATCATCGGCGACCTGCTGCCGCCGGGCGTCGTCAACGTCGTCAACGGGTTCGGGGCCGAGGCGGGCAAGCCGCTCGCGTCGTCGTCGCGGATCCGCAAGATCGCCTTCACCGGCGAGACGACGACGGGCCGGCTGATCATGCAGTACGCCTCGGCCAACATCATTCCGGTGACCCTCGAGCTCGGCGGCAAGAGCCCGAACGTCTTCTTCTCCGACGTCGCGGCCGCGCAGGACGACTTCTACGACAAGGCCCTCGAGGGCTTCACGATGTTCGCCTTCAACCAGGGCGAGGTCTGCACCTGCCCGTCGCGGGCGCTCATCCAGTCCGACATCTACGACCAGTTCGTCGGCGACGCCCTCAAGCGCACCGAGGCGGCGATCCAGGGCAACCCCCTGGACACCGAGACGATGGTCGGGGCGCAGGCCAGCAACGACCAGCTCGAGAAGATCCTGTCCTACATCGACATCGGCCAGGCCGAGGGCGCCAAGATCCTCACGGGCGGCGCACGCGCCGACCTCGGCGGGGACCTGTCCGGCGGCTACTACGTGCAGCCGACCGTGTTCGAGGGCAAGAACTCGATGCGCATCTTCCAGGAGGAGATCTTCGGGCCCGTGGTCTCGGTGACGGACTTCGCCGACTACGACGACGCGATCAAGACCGCCAACGACACCCTCTACGGGCTCGGCGCCGGGGTGTGGACCCGCAACGGCACGACGGCGTACCGGGCCGGGCGGGACATCGAGGCCGGCCGGATCTGGACGAACTGCTACCACGCCTACCCGGCGGCGGCGGCGTTCGGCGGGTACAAGGGGTCCGGCGTCGGGCGCGAGAACCACAAGATGATGCTCGACCACTACCAGCAGACGAAGAACCTGCTCGTCAGCTACTCCGGCGTGCGGGACGGGTTCTTCTAG	MTVYTPPGQTGSIVEFRSRYDHWIGGEYVPPASGEYFENPTPVTGQTFCEVARGNAEDIERALDAAHGAAPAWGRTSVTERANVLNAIADRIEANLEKIAVAESWENGKAVRETLGADIPLAVDHFRYFAGAIRAQEGSISEIDGDTIAYHFHEPLGVVGQIIPWNFPILMATWKLAPALAAGNAVVLKPAEQTPASILYLMDIIGDLLPPGVVNVVNGFGAEAGKPLASSSRIRKIAFTGETTTGRLIMQYASANIIPVTLELGGKSPNVFFSDVAAAQDDFYDKALEGFTMFAFNQGEVCTCPSRALIQSDIYDQFVGDALKRTEAAIQGNPLDTETMVGAQASNDQLEKILSYIDIGQAEGAKILTGGARADLGGDLSGGYYVQPTVFEGKNSMRIFQEEIFGPVVSVTDFADYDDAIKTANDTLYGLGAGVWTRNGTTAYRAGRDIEAGRIWTNCYHAYPAAAAFGGYKGSGVGRENHKMMLDHYQQTKNLLVSYSGVRDGFF	PGPT0007176_549	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138	NA	NA
AK001_01673	414			hypothetical protein	ATGATCGACGACGACGGGTCCGACCGACCCGCCCGCGTCGCCGTCACCGACGCCGCAGCCGAGCTCCTGGCTCGGCTGCGGCGTCGTCACGGCGACCTGATGTTCCACCAGTCCGGCGGCTGCTGCGACGGGTCCAGCCCCATGTGCTACCCGGCCGGCGACTTCCTCACCTCGGACGCGGACGTCCACCTGGGCGACCTCTCGCTGTCCGACGACGGCGAGGCGTTCGTCGTGCCGGTCTGGATGAGCCGCGCGCAGTTCGAGTACTGGAGCCACACCCACCTGACGATCGACGTGGTGCCCGGCCGCGGTGCCGGGTTCAGCGTGGAGGCGCCGGAGGGGGTGCGTTTCCTCATCCGCTCGCGGCTGCTCACCGACGCCGAGCTCGCGACGCTGGGCCCGGCCCGGGGGTAG	MIDDDGSDRPARVAVTDAAAELLARLRRRHGDLMFHQSGGCCDGSSPMCYPAGDFLTSDADVHLGDLSLSDDGEAFVVPVWMSRAQFEYWSHTHLTIDVVPGRGAGFSVEAPEGVRFLIRSRLLTDAELATLGPARG	PGPT0017992_21	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01674	297			hypothetical protein	ATGGCACCCGCGCACGACGGCGGCCACGGCGGACGGTGGTCGCAAGACGTCACCGAGCACTCCGACGCGCTCGACCTCGAGCAGGACGTCTTCACGCTCGACGACCCGGCGCAGATCGCCGAGTCGCTGCGCCGGTCGGCCGAGGCCAGCGACCGGCGCAAGACCTCGCCGTACGCCTCGGCGATGTCGATGCTGACGTTCTACCTCAACCGGGCGGGCCGCACCCTGCCGCCCGAGCGGCGCGAGGTGCTCGAGCAGGCCAAGGTCGAGCTGCGGCGCCTGTACGGGCGGGAGTGA	MAPAHDGGHGGRWSQDVTEHSDALDLEQDVFTLDDPAQIAESLRRSAEASDRRKTSPYASAMSMLTFYLNRAGRTLPPERREVLEQAKVELRRLYGRE				NA	NA	NA	NA	NA
AK001_01675	1056			hypothetical protein	ATGTTGCATGCCGTGAGCACCGAACCAGAGGCCCTCCCGTCCGTGTCGTCGCTCCCGGCGTGGCTCGTGCCGTCCGTGTACCTGAACTGGTCCACCGACTGGCTGCGCGAGTCCGTCGCCATCGCGACGCGTTCTCGTGAGCACCACCTGCCCGGCGGGCCCGACGGCCCCAAGCGCGGCGACGTCGTCGTGACCGTGCTGGGCGACGCCGGTGTCGTGGCGGCGGTGGAGCTCATGGGGTCCTCCGACGGCGACTCGTGGGTCACCGACGAGCTCTTCGGCCCCGACCGGCCCATCGTGTGGGCGGACCTGTTCGACGGCGCCGACTCCTACATCGGCTCCTCGGGCTGGCTGCCCGCCGAGCACGCTCGCGCCGTGCTCGACGGCGTCGCGAACCAGTTCCACGACGGTCCGGTGCACACCATCGACCCGGGCGACTGCGGGGCCGGGGACGCCGCCCCGGACGTGCACGCGCTGCGCATCATCGGCCACCGGGCCGTGACCGGGTGGGCGCTGCGCCGCGAGGAGCGCTGCGCCACCTGCGAGCAGTTCGTCGACGTGCGCGAGATGCAGGCGCACGACGACGGTGCCGTGCGCCTGGGCACGACCACCGCCGGCGGCCGCACGCTGGAGCAGGTCATCCGCGACGTGCACCTGCTGTGCGCGCACTGCCACGAGCTGATGCACCAGCACTCGGTGATCGCGCAGCGCAACCGGCTGCGTCCGCAGTGCCCCGGCTGCGGTGTGCGCGGCAAGACCAAGCGCATCGTGTGGGGCATGACCTTCTCCGACGACGTCGTCAGCGCCGAGCCGGACGTCGTCTACGGCGGGTTCGAGGTCCCGGTGCCGACGCCGGAGTGGTACTGCACCGACTGCCACGCCAACTTCGGCAGCACCGTGGTCGCCTCCCGGATGCTCGACGCCGACGGTCCCGCCGTCCCGCAGCCGGTCACCGGTGCCATGGCGACGGTGCAGGACGACCCGCTGACCGCGGGCTCGGCCACCGAGCCGACGCCCGAGACCGACGGTCGCTGGGAGCCGACGCACGGGATCTGA	MLHAVSTEPEALPSVSSLPAWLVPSVYLNWSTDWLRESVAIATRSREHHLPGGPDGPKRGDVVVTVLGDAGVVAAVELMGSSDGDSWVTDELFGPDRPIVWADLFDGADSYIGSSGWLPAEHARAVLDGVANQFHDGPVHTIDPGDCGAGDAAPDVHALRIIGHRAVTGWALRREERCATCEQFVDVREMQAHDDGAVRLGTTTAGGRTLEQVIRDVHLLCAHCHELMHQHSVIAQRNRLRPQCPGCGVRGKTKRIVWGMTFSDDVVSAEPDVVYGGFEVPVPTPEWYCTDCHANFGSTVVASRMLDADGPAVPQPVTGAMATVQDDPLTAGSATEPTPETDGRWEPTHGI				NA	NA	NA	NA	NA
AK001_01676	474			hypothetical protein	GTGGCCGACGTGCTGGTCCTCAACGCCGGCTACGAGCCGCTGCACCGTGTGTCGGTCAAGCACGCCATCACGATGCTGGTGCGCGAGGTCGCGGTGGTCGAGGAGTCGGTCGACGGGATGTCCTTCGGTCCGTACCCGCTCCCCCGCGTCCTGCGGCTCGTGCGCTACGTCGCGATGCGGTGGCTGTACCGCGGCGGGCGACCCACCGTCACCAAGGACGGCGTGAAGCGGCGCGACGGCGCGTGCGCCTACTGCGGCGGGCCGGCCCAGACGGTCGACCACGTGGTGCCCCGGTCCCGCGGCGGCGACAGCTCGTGGCTGAACCTCGTCGCGGCCTGCCGCGCCTGCAACCACCGCAAGGCGAACCGGACACCGCTCGAGGCCGGGATGCCCCTGCGGCTCACACCGCGCATCCCGACCCCCGAGCACGGGATGGTCCGGCGACGCCCGCGCGCACGGCCGCTCGCCGCCTGA	MADVLVLNAGYEPLHRVSVKHAITMLVREVAVVEESVDGMSFGPYPLPRVLRLVRYVAMRWLYRGGRPTVTKDGVKRRDGACAYCGGPAQTVDHVVPRSRGGDSSWLNLVAACRACNHRKANRTPLEAGMPLRLTPRIPTPEHGMVRRRPRARPLAA				NA	NA	NA	NA	NA
AK001_01677	930			hypothetical protein	ATGGCACCCCCTCGGAAGTCCGATCCCGCCGGCGAGGTCTTCGGCGACGTGGTGGCCGACCACGTCCGTCGCGTCGAGCAGCGCATCCCCCGGGCCCTCGCCGACGAGGACGACGCCGTGCACCGGCTGCGGACCGCCGTGCGTCGGCTGCGCACCGTCCTCGCGGTCTACCGGCCGGCGTTCGAGCGCGACCAGGTGAAGGACCTGCGCCGACGTCTCGCCGAGCTGGGCGACGTCCTCGGAGAGGCCCGCGACCTCGAGGTGCGGCGGGCGGACGTCGAGTCGGTCGGCGGCGCCGCGAGCGTCCCGCGCCAGGCCCGGGAACGGATCGTCGAGGACCTCGACCGTCAGCACGCAGCCGCCCACGCCCGGTTCGTGGAGTACGCCGGCAGCCCGACCATGGCGGTGACGACGGCGGAGCTGATCCGCTGGGTGCAGGAGCCCCCGCTCGGCAAGGCCGCCGACCGGAAGGCCGCCACGGTGGCACGCAAGCGCCTGCGCAAGGCGGTCCGCCGGGCCGAACGGGCAGCAGCCGAGCTGGATCTGGCGGCACTGACCGACGCCACGGCCGAGGACGTCGCCACGTCCGAGAACCTCGAGGACCTGCTGGCCCGCGCCCACGAGGTGCGCAAGGCCGGCCGACGCGTCTCCCAGGCGACCCGCGCGGTGACGCGCAGCCCCACCAGGGTGCTGGGATCGTCGGCCAAGGACCTCGGCGCCGCCGGCAAGACGATCCAGTCGACGCTCGGGGACCATCGCGACGCGATGCTGCTCGCGACCCTCGCGCGCGAGCACGCCGACCGGGCGGAGGCCGCCGGGGAGGACCGCGGGCCGTACGACCGGCTCGCCCGAGCGGCAGTCCGGCGGGCGCGCTCAGCCCTCGAGGCCGTCCCGGAGGCGCTCGAGCACCTGCTGTCGACGACGCCGTAG	MAPPRKSDPAGEVFGDVVADHVRRVEQRIPRALADEDDAVHRLRTAVRRLRTVLAVYRPAFERDQVKDLRRRLAELGDVLGEARDLEVRRADVESVGGAASVPRQARERIVEDLDRQHAAAHARFVEYAGSPTMAVTTAELIRWVQEPPLGKAADRKAATVARKRLRKAVRRAERAAAELDLAALTDATAEDVATSENLEDLLARAHEVRKAGRRVSQATRAVTRSPTRVLGSSAKDLGAAGKTIQSTLGDHRDAMLLATLAREHADRAEAAGEDRGPYDRLARAAVRRARSALEAVPEALEHLLSTTP				NA	NA	NA	NA	NA
AK001_01678	444			hypothetical protein	ATGGACACCACGACACCCCCGCAGCCCGTCCGCCCCGGTGACCTGGTCCTGACCGACGACGACCGGCTCGCCCTCGCCACCACCCTCTCCGCCGCGGCGCTGCCTCGATCACGCACGCTGTGCCTGACGTGGATCGATGCGGAGGACCGCGCCTCGGCCGTGGCGGTACCGGTCCGCGACGTCCCCGAGAAGCCCGACGTCGACGACGCCCGCCGCTTCGGCATGGTGATCGCCTCGGTCACGGAGCAGTCCGCCGCGGGCGGGAGCGTCGTCGCGGTCCTGTGCCGCCCCGGCGACGACACGATCACCGACGCCGACCGCGCCTGGAACGCGGCTCTGCGCGAGCAGGCGGCCACGCACGGGTTCCGGCTGCACGGCCTCTTCGTCGGCTCGGCGTCGGCGGTGCGCCCGCTCGCGATGGACGACGCCGGATGGCTAGCCTGA	MDTTTPPQPVRPGDLVLTDDDRLALATTLSAAALPRSRTLCLTWIDAEDRASAVAVPVRDVPEKPDVDDARRFGMVIASVTEQSAAGGSVVAVLCRPGDDTITDADRAWNAALREQAATHGFRLHGLFVGSASAVRPLAMDDAGWLA				NA	NA	NA	NA	NA
AK001_01679	2388	recD2		ATP-dependent RecD-like DNA helicase	ATGGTGCTCACCGACGAATTCGAGCATGCCCTGGGCATCCTGGATGCCGGCGGCAGCCTGTTCCTGACGGGGCGCGCCGGGACGGGCAAGTCGACCCTGATCCGGCACTTCATGGCGACCACCGACCGGCGCCTCGTCGTCGCCGCGCCGACCGGCATCGCCGCGCTCAACGTCGACGGGTACACGCTGCACCGGCTGTTCGGGTTCGGCACCACGACCGGGCTCGACGACGTCCGTCACGGCGGCTACAAGCCGGGCCGGTTCGCGACGACGCTCGCGAACCTGCAGACGCTGATCGTCGACGAGGCGTCGATGGTGCGCGCCGACATGTTCGACATGATCGCCGCCGCGCTGGAGCGCTTCGGTCCGGCACCCGGGACGCCGTTCGGCGGCGTGCAGGTGGTCCTCGTCGGCGACCTGTTCCAGCTCCCGCCGGTGGTGCCCGACGGCGAGGCCGGCTACCTCGATCAGCACTACGACACGCCGTACTTCTTCTCCGCCGCGGCGTTCGATCGTGACAGATTCCCGACGGTCGCCCTGACCACGGTCTTCCGCCAGCTGGGCGACGACCGCATGACCGCGACCCTCAACGCGATCCGCGAGGGAGTCCTGCTCGAGCACACCCGCGCCGAGCTGAACGAACGCTCGGACGCGGAGTTCTCCCCGCCCGACGAGGAGTTCTGGCTGACCGTGGCGCCCACCAACCGGATCGTGGCCAAGCGCAACCGGGAGCACCTGGAGCGGCTGACCACCGAGGAGTTCACCGCGACAGCCCTCGAGTCGGGGGACCTGTCGCTCTTCGATCCGCCGGTGGAACGCCGGCTGCGGTACAAGGTCGGCGCGCAGGTCATGCTGCTCAGCAACGACCCGGCCGGCCGCTGGGCGAACGGCAGCATCGGCCGGATCCTCGACGTCGACCCGCCCGACGGCGCCGCGGTGGACGACGTGTCCGTCACCGTCGAGCTGCGCGGCGGCAGCGTGGTCGACGTCGAACCGCACACGTGGCAAGCCACGCGGCCCGTGGTCGAGGGCGGGTCGCTGCGGCACGAGGTGATCGGCACGTATACCCAGCTGCCGTTCAAGCTGGCCTGGGCGATCACGATCCACAAGAGCCAGGGGCAGACGCTCGACCGGCTCGTGGTGGACCTGACCGGCGGGGCGTTCGACTACGGCCAGGTGTACGTCGCGCTGAGCCGTTGCACGTCGTTGGACGGGCTCGTGCTGACCCGACCGGTGCTGGCCAAGGACCTCAGGACAGATCGTCGGGTCGTGCGCTTCCTGCATGCTGCGACGGCCTCGCAGCGCGAGCAGCGCTACTGCGCCGTCAGCGTGCTGGCCGTCGGGGACGAGGGTCGCCTCTCCCGGCCGCGGCCGATCGAGATCGGGGTCGCGTTCGACGACGGCACGTCCGTGAGCACGCTCGTCAACCCGCAGCGGGATCTCGGCAGCGCGCGAGCCGACCACGGCATCACCGTGGACGACGTCGTCCTGGCCCCCACGCTGGACGAGGCCTGGTCGGTGCTCGCACCGCTGCTCGAAGGCTGCACACCGGTCGGCGTCGACACCGACGCGGCGTTGGGGCTCGTCGACTTCGAGCTCAAGCGGCTGGGCCGCGTCGAGCCGCTGCCGCTCGGCGTCGACCTGTCCGACGGCGAACTGACCTCCGAGGAACAACGGGCGCTCCGCACCGGGACCGCCGGCGATCGCGCCCGTGCCGCGCTGCGTGCCCACGAACGGCACGCGCTGCCTGCCGACGGCACGCCGTTCGGACGGCGCGACGACGACGCGGAGGCCACCAGCTACCTGCTGACGCGCGAGCCGGGCGCTCCCGCTCCGCGGCCTGCCGACTCACCGCACCTCGCCACGCTGCTCGACGTCAGCCAGGCGCTGAGCGCCGTCGTGCTCGACGACGGCGCGACGGCCGTTCCGACGGGAGCGCTCGCCGATCAGGCATCTTCCACGCTGCGGCGGGCCGTGGTCGACCGTCTGGCCGCTGTGGCCGAACGCTCCGCCGGGCTGCCTGTCGGCATCGTCAAGCGGTTGCGGCGGCTCGAGTCACTGCTCGACACGTCGTTCGTGGACGACGTCGTCGGCCCCTCAGGCGGCCCGGATGCGGTGGGCGAGCACTTCGGCCCGGGGGTGCGCGTCTGCTTCACCGGGGAGGCCCAGGGGCCGGACGGGTCCTCGTGGACCCGCGCCGACATGACCGACCTGGCGCTGGCCCGCGGCCTGGAACCCGTCAAGACCGTCACCAAGACCAAGTGCGACGTCCTGGTGGTCGCGGAAGCCGGCACGATGTCGGGCAAGGCACGCAAGGCGGCCGAGCTCGGTAAGCCGGTGCTGCCAGCGGAGGAGTTCTTCGCCTGGACTGGGCTCTGCGCAGGCTGA	MVLTDEFEHALGILDAGGSLFLTGRAGTGKSTLIRHFMATTDRRLVVAAPTGIAALNVDGYTLHRLFGFGTTTGLDDVRHGGYKPGRFATTLANLQTLIVDEASMVRADMFDMIAAALERFGPAPGTPFGGVQVVLVGDLFQLPPVVPDGEAGYLDQHYDTPYFFSAAAFDRDRFPTVALTTVFRQLGDDRMTATLNAIREGVLLEHTRAELNERSDAEFSPPDEEFWLTVAPTNRIVAKRNREHLERLTTEEFTATALESGDLSLFDPPVERRLRYKVGAQVMLLSNDPAGRWANGSIGRILDVDPPDGAAVDDVSVTVELRGGSVVDVEPHTWQATRPVVEGGSLRHEVIGTYTQLPFKLAWAITIHKSQGQTLDRLVVDLTGGAFDYGQVYVALSRCTSLDGLVLTRPVLAKDLRTDRRVVRFLHAATASQREQRYCAVSVLAVGDEGRLSRPRPIEIGVAFDDGTSVSTLVNPQRDLGSARADHGITVDDVVLAPTLDEAWSVLAPLLEGCTPVGVDTDAALGLVDFELKRLGRVEPLPLGVDLSDGELTSEEQRALRTGTAGDRARAALRAHERHALPADGTPFGRRDDDAEATSYLLTREPGAPAPRPADSPHLATLLDVSQALSAVVLDDGATAVPTGALADQASSTLRRAVVDRLAAVAERSAGLPVGIVKRLRRLESLLDTSFVDDVVGPSGGPDAVGEHFGPGVRVCFTGEAQGPDGSSWTRADMTDLALARGLEPVKTVTKTKCDVLVVAEAGTMSGKARKAAELGKPVLPAEEFFAWTGLCAG				NA	NA	NA	NA	NA
AK001_01680	735			hypothetical protein	GTGCCCGAGAAGTCGTCAGTCGCCGACATCGAGCCGGTCGTGGCGATAGACCCACCACGTTCCCGAGCCGGAGGCTTCGTCCGCGCGTTCCTGGGCACTCTGCTGGGCATGGTCGCCGTGCTGGTGCTGCTGGGCGCCGTCGTGTGGGGTGCCGTCCGTTCCGAGGCGATCTCGCTCCCGGCGGCGTTGAACCCCTTCCAGACCGAGGAAGTCGACCGATCCGAACGCCCCGTGCTGGTCAGCATCCAGAACCTGGCTCGCTTCGTCGCGGCTCAAGGCAGCTACCAGGTGGTCCTCGACCTGGAGCAGGACACGAAGTACGTGCCGGACTGGCTCATGGGGGAGCGCACGATCTTCCTCGCGGACGGCTCCGTCGAGGTGTACGTGGACTTCCGCGAGCTCGGCGACGACTCGGTGGTCGTGTCCGAGGACGGGGCCACGGCGACGGTCATGCTGCCGGAGCCGGCACTGGCGGAGCCGCGGATCGATCTCGAGCAGAGCCGGGCGCTCTCGGAGTCGCGGGGACTGATCAACCGTGCCGAGGACTTGTTCGCCGACGACGTGGGCAGCCGGCAGGAGACGCTGCTGAAGGCGGAGGGCCTGCTTACCGAAGCGGCCGAGGCGAGCGGTCTGACGAGCCGTGCCGAGGAGAACACGCGTAAGACGCTCGAGGCGCTGCTCGGCGGGCTGGGGTACGAGACCGTGGAGGTCGTGTTCGACGACGTCGACCTGTGA	MPEKSSVADIEPVVAIDPPRSRAGGFVRAFLGTLLGMVAVLVLLGAVVWGAVRSEAISLPAALNPFQTEEVDRSERPVLVSIQNLARFVAAQGSYQVVLDLEQDTKYVPDWLMGERTIFLADGSVEVYVDFRELGDDSVVVSEDGATATVMLPEPALAEPRIDLEQSRALSESRGLINRAEDLFADDVGSRQETLLKAEGLLTEAAEASGLTSRAEENTRKTLEALLGGLGYETVEVVFDDVDL				NA	NA	NA	NA	NA
AK001_01681	1746	aceB		Malate synthase	ATGACCACCACCGCCGACCCGCCCCGCACGCAGTCCCCCCGCTCGACCGGCTCGCCCGCCACTCCCCCGCGCGGCATCGCCCTGGCCGACTCGGCCACCGTCGCCGAGGGAACGATCGACGTCGTCGGCCCGATCGAGCCGGGCTTCGAGGAGATCCTCACCCCGCAGGCGCTGGAGTTCCTGGCGCTGCTGCACGACCACTTCGCCGACGCCCGGTGCGAGCTGCTGCTCACCCGCCAGCGGCGCACCCGGCAGATCGCCGACGGCGCCGACCCGGACTTCCTGCCCACGACCCGGCCCGTGCGGGACGACCCGTCCTGGCGCGTCGCCGGCTCCACCGGGGCGCCCGGGCTGTCCGACCGCCGCGTCGAGATCACGGGTCCGACCGACCCGAAGATGACCATCAACGCCCTCAACTCGGGCGCGAAGGTCTGGCTCGCCGACGCCGAGGACGCCTCCAGCCCGACCTGGGGCAACGTCGTCGGCGGCCAGCGCGCGCTGCGCTCGGCGATCCGGGGCAAGCTGTCGTTCGACGGCCCGTCGCCCGACGGCGGTCGCACCCCGGGCAAGCACTACGCGCTGCGGACCTCCGAGCTGACCGAGATGCCGACCATCGTGTTCCGCCCGCGCGGCTGGCACCTGTTCGAGTCTCACCTGGCCTACACCGGCACGGACGGCTCCACCCAACCCGCGTCCGGGTCGCTGGTCGACTTCGGCCTGTACTTCTTCCACAACGCCCGCGAGCTGATCTCCCGGGGCCGTGGACCGTACTTCTACCTGCCGAAGCTGGAGAGCCACCGCGAGGCGCGGCTGTGGAACGAGGTCTTCGAGCTGGCCCAGCACGCCCTGGACATCCCGCAGGGCACGATCCGGGCCACGGTGCTCATCGAGACCCTGCCGGCCGCGTTCGAGATGGAGGAGATCCTCTACGAGCTGCGTGACCACTGCGCCGGGCTGAACGCCGGGCGCTGGGACTACCTGTTCAGCGTCATCAAGTGCTTCCGCTCCCGCGGCGACTCCTACGTGCTGCCGGACCGGGCGCAGGTGACGATGACGGCCCCGTTCATGCGGGCGTACACCGAGCTGCTGGTCGCCACGTGCCACCGGCGCGGGGCGCACGCCATCGGCGGCATGAGCGCCTTCATCCCCGACCGTCGCAACCCGGAGACCACGGAACGTGCCTTCGCCCAGGTGAGCCGCGACAAACAGCGCGAGGCCGGCGACGGCTTCGACGGCTCCTGGGTCGCGCACCCGGACCTCATCGGCATCGCCCGCGAGGCGTTCGACGAGGTGCTGGGCGAGCGGGAGAACCAGGTCGAGCGGCTGCGCGACGACGTCACGGTGGGCCAGGCCGAGCTGCTCGACGTCGCCTCCGCGCGGCGCGAGGGCGCGACCATCACCGAGTCCGGGCTGCGCACCAACATCTCCGTCGGCGTGCGGTACATCGCGTCCTGGCTGCGGGGCACCGGCGCCGCGGCGCTGGACAGCCTCATGGAGGACGCGGCGACGGCGGAGATCTCGCGGTCGCAGGTCTGGCAGTGGATGCACTCGGGGACCCGCACCGAGGACGGGGTCACCATCACCCGCGAGCTGTGCGAGTCGATGCTCCAGGAGTTCCTGCGGACGACGCCGCGGACCCCGGGTGACCGGCTCGACGAGGCCGTGACGATCTTCCGCGAGGTCGCGATGGGCGACGAGTTCCCGCCGTTCCTCACCACGAGCGCGTACGCGCGGTTCTTCGGCTGA	MTTTADPPRTQSPRSTGSPATPPRGIALADSATVAEGTIDVVGPIEPGFEEILTPQALEFLALLHDHFADARCELLLTRQRRTRQIADGADPDFLPTTRPVRDDPSWRVAGSTGAPGLSDRRVEITGPTDPKMTINALNSGAKVWLADAEDASSPTWGNVVGGQRALRSAIRGKLSFDGPSPDGGRTPGKHYALRTSELTEMPTIVFRPRGWHLFESHLAYTGTDGSTQPASGSLVDFGLYFFHNARELISRGRGPYFYLPKLESHREARLWNEVFELAQHALDIPQGTIRATVLIETLPAAFEMEEILYELRDHCAGLNAGRWDYLFSVIKCFRSRGDSYVLPDRAQVTMTAPFMRAYTELLVATCHRRGAHAIGGMSAFIPDRRNPETTERAFAQVSRDKQREAGDGFDGSWVAHPDLIGIAREAFDEVLGERENQVERLRDDVTVGQAELLDVASARREGATITESGLRTNISVGVRYIASWLRGTGAAALDSLMEDAATAEISRSQVWQWMHSGTRTEDGVTITRELCESMLQEFLRTTPRTPGDRLDEAVTIFREVAMGDEFPPFLTTSAYARFFG	PGPT0001445_1498	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638	NA	NA
AK001_01682	1344	icl	COG2224	Isocitrate lyase	ATGACCGCGACCCTCGAGACCGAGACCCCGACCACCGGCACCCCGACCACGGCGCCGACCGCCCGTCCCGGCGACCAGGTCACCACCGCCGCGGCGCTCGCCGAGCAGTGGGCGACCGACCCGCGCTGGGCCGGCGTCACCCGGGACTACACGGCCGAGGACGTCGTCGCGCTGCGCGGTTCGGTGGGCGAGGAGCACACGCTGGCCCGGCGCGGGTCAGAGCTGCTCTGGGAGCTGCTGCACACCGAGGACTACGTCAACGCCCTCGGCGCCCTGACCGGCAACCAGGCCGTGCAGCAGGTCAAGGCCGGCCTCAAGGCCATCTACCTGTCCGGCTGGCAGGTGGCCGGCGACGCCAACCTCTCCGGGCAGACGTACCCCGACCAGTCGCTCTACCCGGCGAACTCGGTGCCCGCCGTCGTGCGGCGCATCAACAACGCGCTGCTGCGGGCCGACCAGATCGATGTCGAGGAGAATGGTTCCCCGACCCGCAACTGGCTGGCCCCGATCGTGGCCGACGCCGAGGCCGGGTTCGGCGGGCCGCTCAACGCCTACGAGCTCATGAAGTCGATGATCGCCTCCGGCGCCTCCGGCGTGCACTGGGAGGACCAGCTCGCCTCGGAGAAGAAGTGCGGCCACCTGGGCGGCAAGGTGCTCATCCCCACCAAGCAGCACGTGCGGACCCTGAACGCCGCGCGGCTCGCCGCCGACGTCTCCGACGTGCCGAGCGTCATCATCGCCCGCACCGACGCCGAGGCGGCCACCCTGATCACCTCCGACGTCGACGAGCGCGACCAGCAGTTCCTCACCGGGGAGCGCACCTCGGAGGGGTTCTACAAGGTCCGCAACGGCATCGAGCCCTGCATCGCCCGGGCCCACGCCTACGCCCCGTACGCCGACCTCATCTGGATGGAGACCGGCACCCCCGACCTCGACCTGGCCCGCCGGTTCGCCGAGTCGGTCAAGGCCGAGTTCCCCGACCAGATGCTGGCGTACAACTGCTCGCCGTCGTTCAACTGGAAGAAGCACCTCGACGACGACACCATCGCGAAGTTCCAGCGCGAGCTCGGCGCCATGGGCTTCACGTTCCAGTTCATCACCCTGGCGGGCTTCCACGCCCTCAACCACTCCATGTTCGATCTGGCCCACGGTTACGCCCGTGAGCAGATGACGGCCTACGTGCAGCTGCAGGAGGCCGAGTTCGCCTCCGAGACCCGCGGCTACACCGCCACCAAGCACCAGCGGGAGGTGGGCACCGGGTACTTCGACCGCGTGTCGACGGCGCTCAACCCCGACGCCGCCACCCTCGCCCTCGCCGGCTCCACCGAGGCCGCTCAGTTCTGA	MTATLETETPTTGTPTTAPTARPGDQVTTAAALAEQWATDPRWAGVTRDYTAEDVVALRGSVGEEHTLARRGSELLWELLHTEDYVNALGALTGNQAVQQVKAGLKAIYLSGWQVAGDANLSGQTYPDQSLYPANSVPAVVRRINNALLRADQIDVEENGSPTRNWLAPIVADAEAGFGGPLNAYELMKSMIASGASGVHWEDQLASEKKCGHLGGKVLIPTKQHVRTLNAARLAADVSDVPSVIIARTDAEAATLITSDVDERDQQFLTGERTSEGFYKVRNGIEPCIARAHAYAPYADLIWMETGTPDLDLARRFAESVKAEFPDQMLAYNCSPSFNWKKHLDDDTIAKFQRELGAMGFTFQFITLAGFHALNHSMFDLAHGYAREQMTAYVQLQEAEFASETRGYTATKHQREVGTGYFDRVSTALNPDAATLALAGSTEAAQF	PGPT0001550_1116	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637	NA	NA
AK001_01683	1515			hypothetical protein	ATGTCACGCTGGGGCATGGCCATCACGACGACGTCACGGCCGCCGGCGACGCCCCCCACGCCGCCCCCGGCCGAGTCCGAGCCCGACGCGCTGACGATCGGGCGACGCATCCGGCACCTGCGCCTGCAGCGGGGCATGACCCTCGGTGAGCTCGGGGACGCTGTCTCACGTGCCCCGTCGCAGATCTCCATGCTCGAGAACGGAAAGCGCGAACCGACCATCGCGCGGCTGCAGGCGGTGGCGAAGGCGCTGGGCACGAGCGTGGACGACCTGCTGTCGCCCGAGGCCCCCTCGCGCCGGGACGCGCTCGAGATCGAGCTGGAGCGGGTGCAAAGAGGGCCCCTCTTCTCCGCGCTCGGGGTGAAGCCGGTGCGGGTCGGCAAGTCGCTGCCGACCGACGCCCTCGAGGCGATCGTGTCCCTGCAGGCGGAGCTCGAACGGCTGCACTCCGAACGGGCGCTCACCCCGGAGGAGGCGCGGCGGGCCAACACCGAGCTGCGCGCCGACATGCGCGCGCAGGACAACTACTTCCCGGATCTGGAGATCGTCGCCCGCACGCTGCTGGACGACGTCGGCCACACCCGCGGTCCGGTGCCGCAGCGGGCGGCGGTCGACATCGCCAAGCACCTGGGCTTCACGATCCACTACGAGTCGGACCTGCCGCACTCGACCCGCGCGGTCATCGACCAGCGCCACCACCGGGTCTACCTGCCCAGCAACGGCATCCGTGGTCGCTCCGACGCCCGGTCGGCGCTGCTGCAGGCGCTCGCCTCGCACGTGCTGGATCACGCCGAGCCCCGCGACTACGGCGAGTTCCTGCGCCAGCGGGTCGAGGCCAACTACCTGTGCGCGGCGCTGCTGCTGCCCGAGCGCGAGGCCGTCAAGCACCTGCGCGAGGCCAAGGACGCCCGGGCGATCTCCCTCGAGGACCTGCGCGACGCCTTCGCCGTCTCCTACGAGACGGCCGCGCACCGGTTCACCAACCTGGCCACCCGCCACCTCGGCATCGGCGTGCACTTCATGAAGGTCCACGAGTCCGGGGCGATCCACAAGGCCTACGAGAACGACGGGGTGCGGTTCCCCGCCGACGCGCTCGGCACCGTCGAGGGCCAGCACGTGTGCAAGCAGTGGACGGCCCGGGTCGTTTTCGACGTCGAGGACCGCCTCAGCCCGTACTACCAGTACACCGACACCCCCACCGGGACGTACTGGTGCACCTCGCGGGTCTCCGACACCCCCGACGGCCGGTTCTCCGTCAGCGTCGGCGTGCCGTACGCCGAGGTGAAGTGGTTCCTGGGCCGGGAGACGACGGCGCGGTCCACCTCGCGCTGCCCGGACGAGTCCTGCTGCCGCCAGCCGTCGCGGCCGCTGGCCGAGCGCTGGGACGGCCACGCGCTGCCCAGCGCCCGGCCGCACGCCTCGATGCTCGCGGCCATGCCGTCCGGGGCGTTCCCCGGCGTGGACACGACGGCGGTCTACGAGTTCCTGGAGCGGCACGCCCCGGCCGCCGGCTGA	MSRWGMAITTTSRPPATPPTPPPAESEPDALTIGRRIRHLRLQRGMTLGELGDAVSRAPSQISMLENGKREPTIARLQAVAKALGTSVDDLLSPEAPSRRDALEIELERVQRGPLFSALGVKPVRVGKSLPTDALEAIVSLQAELERLHSERALTPEEARRANTELRADMRAQDNYFPDLEIVARTLLDDVGHTRGPVPQRAAVDIAKHLGFTIHYESDLPHSTRAVIDQRHHRVYLPSNGIRGRSDARSALLQALASHVLDHAEPRDYGEFLRQRVEANYLCAALLLPEREAVKHLREAKDARAISLEDLRDAFAVSYETAAHRFTNLATRHLGIGVHFMKVHESGAIHKAYENDGVRFPADALGTVEGQHVCKQWTARVVFDVEDRLSPYYQYTDTPTGTYWCTSRVSDTPDGRFSVSVGVPYAEVKWFLGRETTARSTSRCPDESCCRQPSRPLAERWDGHALPSARPHASMLAAMPSGAFPGVDTTAVYEFLERHAPAAG				NA	NA	NA	NA	NA
AK001_01684	4776	gdh	COG2902	NAD-specific glutamate dehydrogenase	ATGACCGACGACGCTGTGCTGAGCCCGCAGATCCAGGATGCCGTGGACGACCTCCCGGCCGAGCTGCGGCGCTGTGCCACCCATCTGCTGAGCGCCTGGACCGACGAGGACGCCACGGAGCGCGAGCCCCGTGACATCGTCGGTGCCGTCGCCTCGACCTGCCGGTTCGCCGAACAGCGCGAACCCGGCGAGACCCTGGTGCGGGCGTTCACCCCCACCCTGCGCGAGGACGGATGGACGTCGCGCCGCACCGTCGTCGACATCTGCACCGACGACGCGCCCTTCCTGGTCGACTCGGTCGACGGGGCCGTCGCCCGCCACGGCGGCACCGTCCACCTCATGCAGCACCCCGTGGTCGGGGCGCAGCGCGACGAGTCCGGCCGGCTGCTCGAGATCGCGTCGCGCGGCGGACGCGCCGAGTCGTGGATGCACCTGGAGACCGACCGCATCACCGACGCCGAGGACCGCGACGCCCTCGAGGCGCGGCTGCGCGACGTCGTGGCGGACGTCCACGCGTCCGTCGACGACTGGGCGGCGATGCGCCGCGCCTGCCTCGACATCTGCACCGACCTGCGCGTCCAGCCGCCCCCCACGGCCGACCCGGACACGGTCGCGCCCACGATCGAGTTCCTCACCTGGCTCGCCGAGGACCACTTCACGTTCCTCGGCTACCGCGAGTACGCCCTGGAGGAGCGCGACGGCGAGGACGTGCTGCGCCCGCTGACCCACACGGGCCTGGGCATCCTGCGCAAGCCGACGACCGACATCGTGCACCTGCGCCCCGAGGCCCGGCGCACGGCCCGCGAGCCGCGGCTGCTGACGATCACGAAGGCCAACTCGCGCGCGACGGTGCACCGCGACGTCTACCTCGACTACGTCGGCGTGCGGACGTTCGACCACGCCGGCAACGTCACCGGCGAGCGCCGCATCGTGGGGATGTTCACCTCGGCCGCCTACGCCTCCTCGGTGCTGACCCTGCCGATCGTGGCCGCGAAGGCGCGCGCCGTGCTCGCCGCCTCGGGGTTCGCCCCGACCTCGCACTCCGGCAAGGACCTCCTGCAGGTCCTGGAGCAGTACCCGCGCGACGAGCTCTTCCAGGACACCCCGGAGCACCTGTACGCCGTCGCCAGCCAGGTCAGCCGCCTGCGTGAGCGGCGCCGGTCGCGGATCTTCCTGCGCCCCGACGAGTTCGGTCGTTTCGTCTCGGCCCTGGTCTACCTGCCGCGGGACCGCTACACCACGGCGGTGCGGCTGCGGATCGAGGCGCTGCTGCACCAGACCTTCTCCGCCGAGCGCGTCGAGCACACCACCCGCGTGGACGACTCGCCGCTGGCACAGCTGCACTTCGTGGTGCGTCTGCCCCGGGGCACGGCGATCCCGGACGTCGACGAGGACGAGCTGCAGCGCGGGCTCGAGGACGCCGTGCGGACCTGGTCGGCCGCCCTGGTCGACGCCCTGCACCACACGCACGGCGAGGAGGAGGCCGCCGAGGTCCTGGCGCGCTACGGCTCCGCCTTCCCCGAGGCCTACAAGGAGCAGGTCGAGCCGTCGGCGGCCGTGGGGGACATCAGACGCCTGGACTCCCTGAGCCCGGACGACCCGATCGCCGTGCACCTGTACGCCCCGGAGGACGCCGACGACGGCGTACGGCGGCTCACGGTCGCCTCCCTGCAGGAGCAGCGGCTGACCCGCGTGCTCCCGATGCTCACCGACCTGGGTGTCGACGTGCTCGACGAGCGCCCCTACACGATCCGGCTCGCCGACGGCGGCACCCGGTACCTGTCGGACTTCGGCATCACCGCCCCCGACCCCGCGCTGTGGGAGGCCGACGGTGCCGCGGAGGCGCTCGAGGAGGCCTTCCGGGCGGTGTGGTCCGGCGAGGCCGAGAGCGACGCCCTCAACGCGCTGGTGCTGCACGCCGGCCTGGCTTGGCGCGACATCGTCGTGCTGCGGGCGATCGGGCGGTACCTGCGCCAGACGGGGTCGGCGTTCTCGATGGAGTACATCGACGCGGCGCTCATCGCCCACCCGCACCTGGCCACCGACCTGGTCCGGCTGTTCGCGCTGCGCTTCGACCCGGACCTCGACGGCGACCGCGACGCCGAGGTCGACCGGGCTGCCGACGCCCTGCTCGGCGCGCTGGACGACGTCGCCAGCCTCGACCACGACCGCATCCTGCGGGCGTTCCTCGGTGTCGTCCGTGCCACGCTGCGCACCAACTTCTACACCCGGGACGCCGACGGAGCCCCGACGCCGTGGGTGTCGATGAAGTTCGACTGCGCCCGGGTGCCCGACCTGCCCCGCCCGCACCCCATGGCCGAGATCTGGGTCTACTCCCCGCAGGTCGAGGGCGTCCACCTGCGCTTCGGGGCGGTCGCCCGCGGCGGTCTGCGCTGGAGCGACCGGCGCGAGGACTTCCGCACCGAGGTGCTGGGCCTGGTCAAGGCGCAGATGGTCAAGAACGCGGTGATCGTGCCGACCGGCTCCAAGGGCGGGTTCGTCGCCAAGCAGCTGCCGGACCCGGGCGACCGCGAGGCGTGGCTCGCCGAGGGGCGGGCCGCCTACCGCACGTTCATCCGGGGGATGCTCGACCTCACCGACAACCGGGACGGTACCGAGGTGGTGCCGCCCGAGCGGGTCGTGCGCCACGACGGCGACGACCCCTACCTCGTGGTCGCCGCCGACAAGGGCACGGCGTCCTTCTCCGACATCGCCAACGAGATCTCCGCCGAGTACGGGTTCTGGCTCGACGACGCCTTCGCCTCCGGCGGGTCGGACGGCTACGACCACAAGGCCATGGGGATCACGGCGCGCGGCGCCTGGGAGTCGGTGAAGCGGCACTTCCGCGAGCTCGACCACGACACGCAGTCCGAGGACTTCACGGTCGTCGGGGTCGGGGACATGTCCGGCGACGTCTTCGGCAACGGCATGCTGCTGTCGGAGCACATCCGGCTCGTGGCCGCCTTCGACCACCGGCACGTGTTCGTCGACCCCGACCCGGACGCCGCCACGTCGTTCGCCGAGCGGCAGCGGCTGTTCGAGCTGCCCGGGTCCACCTGGGCGGACTACGACGCCGACCTGCTCTCGCCCGGCGGCGGCGTGTTCCCGCTGTCGGCCAAGTCGGTCCGCGTGACCCCGCAGATCGCCGAGGCGCTGGGCCTCCCCGAGGGCGTCACCGCCCTCACCCCGACCGAGCTGAAGCGCGCCGTGCTCCTGGCGCCCGTGGACCTGCTCTGGAACGGCGGCATCGGCACCTACGTCAAGGCCGCCTCGGAGTCCCACGACGAGATCGGCGACCGGGCCAACGACGCGATCCGCGTCGACGGCGGCGACCTGCGGGTGCGGGTCGTGGGGGAGGGCGGCAACCTCGGCGTGAGCCAGCGGGGCCGCATCGAGGCGGCCATGGCAGGGGTGCAGATCAACACCGACGCCATCGACAACTCCGCCGGGGTGGGCACCTCGGACCACGAGGTCAACATCAAGATCCTGCTCGGTGCCGTGATGCGCGACGGCCGCCTGGACCTCGCCGACCGCAACAAGCTGCTGCAGTCGATGACCGACGAGGTCGCCGAGCAGGTGCTGCGCGACAACTACGAGCAGAACGTGCTGCTGGGCAACTCGCGGGCGAACGCCGCGGTCATGCTGCCGGTGCACGCCCGCCTCATGGACTGGCTCGAGCAGCACGGAGAGCTCGACCGCGCGCTGGAGGTGCTGCCCGACGTCGCCGAGATCACCCGGCGCGTCGAGCAGGAGCAGGGCCTGACCCGGCCGGAGTTCGCCGTCCTGGTGGCCTACGCGAAGCTCGCGCTCAAGGAGGACCTCAACGCGACCGACCTCGCCGACGACCCGTGGTTCGAGCGCACCCTGGCCGCGTACTTCCCGGCGCCGGTGCGCGAGGAGTACGGCGAGGACCTGGCCGCCCACCCGCTGCAGCGCGAGATCGTCGTGAACGCCGTGGTGAACTCGATGGTCAACCGCGGCGGCATCACCTTCGCCTACCGGGCCACGGACGAGACGGGGGCCTCGACCGACCAGATCGCGCGCGCCTTCGTCGCGGCCCGCGAGATCTTCGACCTGCGGGGCTTCGTGGAGGCCGTCGAGGCGACCGACAACGTCGTGGCCACCGCGGTGCAGACCGACCTGTACCTGGAGTTCCGCCGGCTGCTCGACCGCGCCGCGCGGTGGTTCGTGCACCACCGCTCCGACGGGCTCGACGTCGGGGCCGAGATCGAGGCCTTCGCCGGGCCCGTGCGCACCTACGGCTCCCGGCTGGGCGAGCTGTTCCAGGGCGAGGAGCTGCGTCAGTACGCCGAGCAGGTCGAGGCCCTGGAGGCGGCGGGGTGCGGCCCGGAGCTCGCCCGTCGCGGCGCGAGCCTGCTCGGGGCGCTGCCCCTGCTCGACGTCGCCGAGCTCGCGGAGACCCGCGGCTGGGACCTGGACGAGGTGGCGCAGACGTACTTCGCGCTGTCCGGCCGTCTCGGGGTCCCGGACATGCTCACCCGGGTCTCCGCGCTGCCGCAGGACGACCGCTGGGACTCGATGGCGCGCGCCGCGCTGCGCGACGACCTCTACGCGGTCACGATCGCCCTGACCGCCTCGGTGCTGGAGGCCACGGAGTCCGGCTCCGCGGACGAGCGGATCGACGCCTGGGTCGGGGACGGGGGCGCGGCCGCCGGCCGGGCGCTCGAGGCCCTGGTGACCGCGTCCGGGGTGGAGGATCCGGGTATCGCCACGCTGTCCGTGGCGCTGCGCCAGCTGCGGTCCCTGGTGCGCTGA	MTDDAVLSPQIQDAVDDLPAELRRCATHLLSAWTDEDATEREPRDIVGAVASTCRFAEQREPGETLVRAFTPTLREDGWTSRRTVVDICTDDAPFLVDSVDGAVARHGGTVHLMQHPVVGAQRDESGRLLEIASRGGRAESWMHLETDRITDAEDRDALEARLRDVVADVHASVDDWAAMRRACLDICTDLRVQPPPTADPDTVAPTIEFLTWLAEDHFTFLGYREYALEERDGEDVLRPLTHTGLGILRKPTTDIVHLRPEARRTAREPRLLTITKANSRATVHRDVYLDYVGVRTFDHAGNVTGERRIVGMFTSAAYASSVLTLPIVAAKARAVLAASGFAPTSHSGKDLLQVLEQYPRDELFQDTPEHLYAVASQVSRLRERRRSRIFLRPDEFGRFVSALVYLPRDRYTTAVRLRIEALLHQTFSAERVEHTTRVDDSPLAQLHFVVRLPRGTAIPDVDEDELQRGLEDAVRTWSAALVDALHHTHGEEEAAEVLARYGSAFPEAYKEQVEPSAAVGDIRRLDSLSPDDPIAVHLYAPEDADDGVRRLTVASLQEQRLTRVLPMLTDLGVDVLDERPYTIRLADGGTRYLSDFGITAPDPALWEADGAAEALEEAFRAVWSGEAESDALNALVLHAGLAWRDIVVLRAIGRYLRQTGSAFSMEYIDAALIAHPHLATDLVRLFALRFDPDLDGDRDAEVDRAADALLGALDDVASLDHDRILRAFLGVVRATLRTNFYTRDADGAPTPWVSMKFDCARVPDLPRPHPMAEIWVYSPQVEGVHLRFGAVARGGLRWSDRREDFRTEVLGLVKAQMVKNAVIVPTGSKGGFVAKQLPDPGDREAWLAEGRAAYRTFIRGMLDLTDNRDGTEVVPPERVVRHDGDDPYLVVAADKGTASFSDIANEISAEYGFWLDDAFASGGSDGYDHKAMGITARGAWESVKRHFRELDHDTQSEDFTVVGVGDMSGDVFGNGMLLSEHIRLVAAFDHRHVFVDPDPDAATSFAERQRLFELPGSTWADYDADLLSPGGGVFPLSAKSVRVTPQIAEALGLPEGVTALTPTELKRAVLLAPVDLLWNGGIGTYVKAASESHDEIGDRANDAIRVDGGDLRVRVVGEGGNLGVSQRGRIEAAMAGVQINTDAIDNSAGVGTSDHEVNIKILLGAVMRDGRLDLADRNKLLQSMTDEVAEQVLRDNYEQNVLLGNSRANAAVMLPVHARLMDWLEQHGELDRALEVLPDVAEITRRVEQEQGLTRPEFAVLVAYAKLALKEDLNATDLADDPWFERTLAAYFPAPVREEYGEDLAAHPLQREIVVNAVVNSMVNRGGITFAYRATDETGASTDQIARAFVAAREIFDLRGFVEAVEATDNVVATAVQTDLYLEFRRLLDRAARWFVHHRSDGLDVGAEIEAFAGPVRTYGSRLGELFQGEELRQYAEQVEALEAAGCGPELARRGASLLGALPLLDVAELAETRGWDLDEVAQTYFALSGRLGVPDMLTRVSALPQDDRWDSMARAALRDDLYAVTIALTASVLEATESGSADERIDAWVGDGGAAAGRALEALVTASGVEDPGIATLSVALRQLRSLVR	PGPT0014290_1296	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371	NA	NA
AK001_01685	1221		COG0183	putative acetyl-CoA acetyltransferase	ATGACCAGCACGACCGACCTGCGACCCGACGACGTGGTCGTCGTCTCCGCCGCCCGCACCCCGCAGGGGCGCCTCGGCGGCTCCCTCGCCTCGCTCTCGGCGGTGCAGCTCGGCGCCGTGGCGGCCCGGGCCGCGCTGGAGCAGGCGGGTGCGCTCGCCGCCGACGTCGACACGGTGGTCTTCGGCCAGGTGCTGCAGGCCGGCGCGGGGCAGAACCCGGCCCGGCAGACCGCCGTCGCCGCCGGGGTGTCCATGACGGTGCCCGCGGTGACCGTCAACAAGGTGTGCCTGTCCGGGCTCACCGCCGTCGTCGACGGGGCCCGGCTGCTGCGCACCGGGGAGGCCTCGGTGGTGCTCGTCGGCGGCCAGGAGTCGATGACGAACGCCCCGCACCTGCTGCCCGGCGCCCGGGCGGGCATCCGCTACGGCGACGCCACCCTCCTCGACACCGTCTCCCGCGACGGGCTCTCGGACGCGTTCGACGGCCAGGCGATGGGCCTGAGCACCGAGGAGCACAACACGGGCTCGGTGCACGTGGACCGCACCGAGCAGGACGCGGTGGCGGCGGCCTCGCACCAGCGGGCCGCCCGCGCCGCCAAGGACGGGATGTTCACCGCCGAGCTCGCCCCGGTGGAGGTGCCGCAGCGCAAGGGCGACCCCGTGGTGGTCTCCTCCGACGAGGGGGTCCGCCCGGACACCACCGCCGAGAGCCTGGCGCGGCTGCGCCCGGCGTTCTCGCGGGAGGGCACGATCACGGCGGGCAACGCCTCGCAGATCTCCGACGGTGCCGCCGCGCTGGTGCTGACCACGCGCTCGCGGGCCGAGGCGGCGGGTGTGCCGGTGCTGGCGACCGTGCGCTCGGCGGGCCAGGTGGCCGGGCCGGACACCTCGCTGCACTCCCAGCCGGCGAACGCCATCACCGCGGCGCTGGGCCGTGAGGGCTGGACGGCCGAGGACCTCGACCACGTCGAGATCAACGAGGCCTTCGCGGTCGTGTCCGCGGCGTCCGCCCGGGTGCTGGGGCTGCCGGCGGAGATCGTGAACCCGCACGGCGGCGGCATCTCGCTCGGGCACCCCATCGGGGCGTCCGGCGCGCGCTTGGCCGTGCACGCCGCGCACGAGCTCGCCCGGCGCCGGGCCGACGGCGAGACCGGCGTCCGCGCCGCCGTCGCGCTGTGCGGGGGCGGCGGACAGGGCGAGGCGCTGCTGCTGGAGGCCTGA	MTSTTDLRPDDVVVVSAARTPQGRLGGSLASLSAVQLGAVAARAALEQAGALAADVDTVVFGQVLQAGAGQNPARQTAVAAGVSMTVPAVTVNKVCLSGLTAVVDGARLLRTGEASVVLVGGQESMTNAPHLLPGARAGIRYGDATLLDTVSRDGLSDAFDGQAMGLSTEEHNTGSVHVDRTEQDAVAAASHQRAARAAKDGMFTAELAPVEVPQRKGDPVVVSSDEGVRPDTTAESLARLRPAFSREGTITAGNASQISDGAAALVLTTRSRAEAAGVPVLATVRSAGQVAGPDTSLHSQPANAITAALGREGWTAEDLDHVEINEAFAVVSAASARVLGLPAEIVNPHGGGISLGHPIGASGARLAVHAAHELARRRADGETGVRAAVALCGGGGQGEALLLEA	PGPT0008320_4512	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
AK001_01686	1134	menH_3		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	GTGAGCGGGCGTCCGGTCCACCGCAGCGACGTCACCACGTCCCGGGGCACGTTCCACGTGCGCGACACCGGCCCGGGCGGCGCGGCGACCCTGCTGTGCGTGCACGGCAACTGCTCGTCGTCGGCCTTCTTCGCCCGCCTGCTCGCGGCGCTGCCCGACGACGTCCGCGGCGTGGCCGTGGACCTGCGCGGGTTCGGCGACAGCGAGCCGTTGCCGATCGACGCCACGCGCGGGCTGCGCGACCTCGCCGACGACGTGGCAGCGGTGGTCGCGGCGCTGGGGCTGGACTCCCCCGCCGCCGGCCCGCTGACCGGGCTCGGCCACTCGGCCGGCGCCGGGGTCGTGCTGCAGCTCGCGATCGACGACGCCGTGCGGTTCGCGGCGCTGGTGCTCGAGGCGCCGATGTCCCCGTACGGGTTCGGCGGCACCCGGGACCTGGCGGGGACGCCGACGTCCCCGGACCACGCCGGGTCCGGCGGCGGCACCGCCAACCCGGACTTCGTGGCCGCCATCGCCGCGGGCGACCGCTCCCACGAGCCGGGGTCGCCCCGCGGCGTGCTGCGCGGCTTCTACGTGGCCGATCCCGCCACGATCGCCGACCAGGAGGAGGAGCTGCTGGACTCGGTGCTCAGCACCCGCACCGGGCCGGACCACTACCCGGGCGACCTGACGCCGTCGGACCGCTGGCCGTCCGTGGCGCCGGGGACCCGCGGCATGAACAACGCGATCTCCCCGCGCTACCTCGACCTGTCCGGGTTCGCCGCGGTCACCCCGCAGCCCCCGGTGCTGTGGGTCCGCGGCGACGCCGACGCGATCGTCTCGGACACCTCGGCGCTCGACCTGGCCCAGCTCGGGGCGCTCGGGGCCGTGCCCGGGTGGCCCGGGGTCCAGGCGTGCCCGCCGCAGCCGATGGTCGGCCAGACCCGGGCCGTGCTGGAGGACTACGCGGCCCGCGGCGGGGCGTACCGTGAAGTCGTGCTCTCCGGCGTGGGCCACTCGCCGCACCTGGAGAGCCCGGACGAGGTGCTCGCGCTCGTCGTGGACGCCGTGCGCGCCCCCGTCCGGACCATCGAGCCCGTGGCGGCCGCCGGCGATCCCGGCCCCGCCCTCGACGACGAGGAGCGAGCCTCATGA	MSGRPVHRSDVTTSRGTFHVRDTGPGGAATLLCVHGNCSSSAFFARLLAALPDDVRGVAVDLRGFGDSEPLPIDATRGLRDLADDVAAVVAALGLDSPAAGPLTGLGHSAGAGVVLQLAIDDAVRFAALVLEAPMSPYGFGGTRDLAGTPTSPDHAGSGGGTANPDFVAAIAAGDRSHEPGSPRGVLRGFYVADPATIADQEEELLDSVLSTRTGPDHYPGDLTPSDRWPSVAPGTRGMNNAISPRYLDLSGFAAVTPQPPVLWVRGDADAIVSDTSALDLAQLGALGAVPGWPGVQACPPQPMVGQTRAVLEDYAARGGAYREVVLSGVGHSPHLESPDEVLALVVDAVRAPVRTIEPVAAAGDPGPALDDEERAS				NA	NA	NA	NA	NA
AK001_01687	702	scoB	COG2057	putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit B	ATGGCGCTCACCCGCGACGAGATGGCCGCCCGCGCCGCCCGCGAGCTGCTCGACGGCTGGTACGTGAACCTCGGCATCGGCCTGCCCACGCTGGTGCCGAACTACGTGCCGGCGGACAAGCACCTGGTGCTGCAGAGCGAGAACGGCATCCTGGGCGTCGGCCCGTTCCCCACCGAGGACGAGGTCGACCCCGACCTCATCAACGCCGGCAAGCAGACGGTGACCACGCTGCCCGGCGCGGCGATCTTCGACTCGGCGACGAGCTTCGCCATGATCCGGGCCGGCAAGATCGACGCCGCGATCCTCGGGGCGATGCAGGTCTCCGCCACGGGCGACCTCGCGAACTGGATGATCCCCGGCAAGATGATCAAGGGCCCCGGGGGCGCCATGGACCTCGTCCACGGTGCCGCCCGGCTCATCATCGTCATGGAGCACACCGCCCGGGACGGGTCGCCGAAGATCGTGCACGAGTGCTCGCTGCCGCTGACGGGCCGGGAGGTGGTGCACCGCATCATCACCGACCTCGCCGTCCTCGACGTCACCCCCGACGGCCTCGTGCTGCGCGAGCTCGCCCCCGGCGTGACCGAGGAGGAGGTCCGCGAGCGCACCGAGCCGGAGATCACCGTCGAGCTGGACGACTCCCCGCTGGCGGCGGCACCGCACGCCGTGCGTCCGCCGGCGGCGGTCGGGGGCACCGCGTGA	MALTRDEMAARAARELLDGWYVNLGIGLPTLVPNYVPADKHLVLQSENGILGVGPFPTEDEVDPDLINAGKQTVTTLPGAAIFDSATSFAMIRAGKIDAAILGAMQVSATGDLANWMIPGKMIKGPGGAMDLVHGAARLIIVMEHTARDGSPKIVHECSLPLTGREVVHRIITDLAVLDVTPDGLVLRELAPGVTEEEVRERTEPEITVELDDSPLAAAPHAVRPPAAVGGTA	PGPT0008330_31	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029	NA	NA
AK001_01688	873	scoA	COG1788	putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit A	ATGAGCACACCCCTTCCCCCGGCCGCCGAGCCGACCGGGCTCGACAAGGTCGTCGGCAGCGCGGCCGAGGCCGTGGCCGACATCCCGGACGGCGCCTCGCTCGCCGTCGGCGGGTTCGGCCTGTGCGGCAACCCGATCGCCCTGATCGAGGCCCTGCTGGCCCAGGGCACGAGCGACCTGTCGGTCGTGAGCAACAACTGCGGCGTCGACGACTGGGGTCTCGGCGTCCTGCTGAACGCCGGCCGCATCCGCAAGATGACGTCGTCGTACGTCGGCGAGAACAAGGAGTTCGAGCGCCAGTTCCTCACCGGCGAGCTCGAGGTCGAGCTCACCCCGCAGGGCACGCTCGCCGAGAAGCTGCGCGCCGGCGGCGCGGGCATCGCCGCGTTCTACACGCGCACCGGTGTCGGCACGCAGGTGGCCGACGGCGGTCTGCCGCGCCGGTACGACGGCGCCGGCGGGATAGCGGTCGGCAGCCCCGCCAAGGAGATCCGCACCTTCCCCGTGGCGGCGGCCGACGGCGTCCACGACCAGGAGTTCGTCCTCGAGGAGGCGATCAGCACCGACTTCGCGCTGGTGCACGCCGCCCGGGGCGACCGGTTCGGCAACCTCGTCTTCCACCGCTCGGCGCGCAACTTCACGCCGCTGGCCGCGATGGCCGGCCGCGTCTGCGTGGCCCAGGTCGAGGAGCTGGTCGAGCCCGGCGAGATCGACCCCGACGACGTCCACCTGCCCGGGGTGTTCGTGCACCGCATGGTCGTCGTCGGCCCCGACATCGAGAAGCGCATCGAGCGCCGCACGGTGCGCGAGGACGCGTCCCCGGCCGGCGCCGCAGGCACGACCAACGGCACGACCGCACGGAAGGAGGGCTGA	MSTPLPPAAEPTGLDKVVGSAAEAVADIPDGASLAVGGFGLCGNPIALIEALLAQGTSDLSVVSNNCGVDDWGLGVLLNAGRIRKMTSSYVGENKEFERQFLTGELEVELTPQGTLAEKLRAGGAGIAAFYTRTGVGTQVADGGLPRRYDGAGGIAVGSPAKEIRTFPVAAADGVHDQEFVLEEAISTDFALVHAARGDRFGNLVFHRSARNFTPLAAMAGRVCVAQVEELVEPGEIDPDDVHLPGVFVHRMVVVGPDIEKRIERRTVREDASPAGAAGTTNGTTARKEG	PGPT0008325_14	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028	NA	NA
AK001_01689	978	menH_4		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	GTGACCGCCGCGCCGGACGCCGTCGCGCTGCGGCACGTCGTGCCCGGGCACCGCTACCGGACGTTCGACGTCCCGGTCGACGGCGGTGCGCTGCGGGTGGGCGTGTGGGACCCGGTCGACGCCGACGGCGTCGTCGCCTCCGACGCCCCGACCCTGCTGGCGGTGCACGGCATCACCGCCTCGCACCTGGCCTGGCCGCTGCTGGCCGGGGAGCTGCCCGGGGTGCGGGTCGTCGCGCCCGACCTGCGCGGCCGGGGGCGCAGCCGCGACCTGCCCGGTCCCTTCGGCATGACCCGGCACGCCGACGACGTCGCCGCGGTGGCCCGGGCCGTCGCCGACGGCCCGGTGCCGGTGGTCGGGCACTCCATGGGCGGCTTCGTCGCCGTGACCCTCGCCGACCGGCATCCCGACGTCGTGGCGGGTCTGCTGCTCGTCGACGGCGGCGTGCCCCTGCCCGAGCCTCCCGGGCTCGATCCGGACGCCACGCCCGCGGAGCGCCTGCGGGCCGTGCTCGGCCCGGCGGCCGACCGGCTGCGGCGCACGTTCCCCGACGCGGAGGCCTACCGGTCCTTCTGGTCGCAGCACCCGGCGTTCACCGCCGTGTGGGGTCCGGCCGTGCTGGACTACGTCGACTACGACCTCGTGGCCACGCCGGACGGCCTGCGCCCGGCGTCGAACCCGGAGGCGGTGGCCGCCGACGCCCTCGACCTGCACGCCGGCGGGCCGGTCGCGGGCGCCCTGGCACGCCTGGAGCGGCCGACGACGCTGCTGCGGGCACCCCGCGGACTGCTGGACGAGCCGAGCCCGCTGTACGACCCCGCGCACGTGGCACGCTGGACCCAGCGGGCCCCGGCGCTGCGGCCCCGCGACGTGCCGGACGTCAACCACTACACGATCATCATGGGCCGTGACGGCAGCGCCGCCGTCGCGGCGGAGACGCGCGCCCTGCTGGGCGCCCGCACCGAGGAGGTCCGATGA	MTAAPDAVALRHVVPGHRYRTFDVPVDGGALRVGVWDPVDADGVVASDAPTLLAVHGITASHLAWPLLAGELPGVRVVAPDLRGRGRSRDLPGPFGMTRHADDVAAVARAVADGPVPVVGHSMGGFVAVTLADRHPDVVAGLLLVDGGVPLPEPPGLDPDATPAERLRAVLGPAADRLRRTFPDAEAYRSFWSQHPAFTAVWGPAVLDYVDYDLVATPDGLRPASNPEAVAADALDLHAGGPVAGALARLERPTTLLRAPRGLLDEPSPLYDPAHVARWTQRAPALRPRDVPDVNHYTIIMGRDGSAAVAAETRALLGARTEEVR				NA	NA	NA	NA	NA
AK001_01690	756	bdhA		D-beta-hydroxybutyrate dehydrogenase	ATGAGCACCGAGACGTACCTGGACGGCCGCCGCGCCGTCGTCACCGGCGGCGGCAGCGGGATCGGCGCGGCCTGCGCGGCGGCGCTGGCCGCCCGCGGGGCCCACGTGGTCGTGGCGGACCGGGACGCGGAGGCGGCGAAGCGGGTCGCGGCCGACGTCGACGGGGAGGCCTGGGTGGTCGACCTGGCCGACACCGCCGCGCTGGACGACCTGACGCTCGACGCCGACGTGCTGGTCAACAACGCCGGCATCCAGCGGGTGAGCCCGATCGAGGAGTTCGACCCGGAGGCGTTCCGGCTCATCCAGCGCATCATGCTCGAGGCGCCGTTCCTGCTGGTCCGGGCGGCCCTGCCGGGGATGTACGAGCGCGGCTGGGGCCGCATCGTCAACCTCTCCTCCGTGCACGGGCTGGTCGCCTCGCCGTTCAAGTCAGCCTACGTGGCGGCCAAGCACGGCCTCGAGGGCCTGTCGAAGGTCACCGCGCTGGAGGGCGGCCCGCACGGGGTCACCAGCAACTGCGTCAACCCGGGCTACGTGCGCACGCCGCTGGTCGAGAAGCAGATCGCCGACCAGGCCCGGGTGCACGGCATCGACGAGTCCGAGGTGCTTCAGAAGGTGCTGCTGACCGAGTCGGCCATCAAGCGGCTCACCGAGCCGGCGGAGGTCGGCGAGCTGGTCGCCTGGCTCGCGGGGCCGTCCGCCCGGATGGTCACGGGGGCCTCGTGGACCGTCGACGGCGGCTGGAGCGCCAGGTGA	MSTETYLDGRRAVVTGGGSGIGAACAAALAARGAHVVVADRDAEAAKRVAADVDGEAWVVDLADTAALDDLTLDADVLVNNAGIQRVSPIEEFDPEAFRLIQRIMLEAPFLLVRAALPGMYERGWGRIVNLSSVHGLVASPFKSAYVAAKHGLEGLSKVTALEGGPHGVTSNCVNPGYVRTPLVEKQIADQARVHGIDESEVLQKVLLTESAIKRLTEPAEVGELVAWLAGPSARMVTGASWTVDGGWSAR	PGPT0008310_2599	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019	NA	NA
AK001_01691	651			hypothetical protein	ATGAGCAACGCGCCGCGCACAGCCCGCGGGAACCGGACCCGCGCGAAGATCCTCGCCGCCGCCGAGCAGGTGTTCGCGGACCTGGGCTACCACGACGCCTCGATCGTGAAGATCACCGAGGCCGCCGGCGTCGCGATGGGCACCTTCTACCTGTACTTCGAGGGCAAGCACGCCGTCTTCGTCGAGCTCGTGGACGACCTCAACCAGCGCGTGCGCCAGGCCATGTACGAGGCGAGCTCGCAGGCGTCCAACCGCCTCGAGGCCGAGCGGGCCGGGTTCCGCGCCTTCTTCCGGTTCACCGCCGAGCACCCCGCGCTGTACCGGGTCGTGCGGCAGGCCGAGTTCGTGGCACCGGACGCGTTGCGCCGCCACTACCAGCGCATCGTCGAGGGGTACGTCACCGGTCTGGACAAGGCGCGGGCGAACGGCGAGGTCGGCGACGTCGACCCCACCGTGGCCGCCTGGGCACTGATGGGCATCGGCGAGATCGTCGGGATGCGCTGGGTGCTGTGGGGCGGGGCCGACGGCCCGGCCGACGGCGGCGGGCCGGGGCAGGACGACCGGCTCCCGGAGATCCCCGAGGACGTCTTCGCCCAGACCATGCAGTTCATCGAACGGGCGCTGGCGCCCCAGGAAGGACCGTCCGCATGA	MSNAPRTARGNRTRAKILAAAEQVFADLGYHDASIVKITEAAGVAMGTFYLYFEGKHAVFVELVDDLNQRVRQAMYEASSQASNRLEAERAGFRAFFRFTAEHPALYRVVRQAEFVAPDALRRHYQRIVEGYVTGLDKARANGEVGDVDPTVAAWALMGIGEIVGMRWVLWGGADGPADGGGPGQDDRLPEIPEDVFAQTMQFIERALAPQEGPSA				NA	NA	NA	NA	NA
AK001_01692	1533	lcfB_2	COG0318	Long-chain-fatty-acid--CoA ligase	ATGACGGGGCTGCACACGCTGGGGCGCTGGACGCGCGACCGGGCGACGTCGACACCGCACCGCGTCGCCGTCGACGACCGCGGGGTGACGCTCACCTACGCCGAGCTCGACGACCGGGCCACGCAGCTCGCCGGCGCGCTGCGCGCCGCGGGCTACGGCGTCGGCGACCGCGTCGCCACCGTCACCGGCAACAGCGCCGACCAGGTCGTGCTGTTCTTCGCCTGCGCCCAGGCAGGCCTCGTGCTCGCCCCGCTGTCGTGGCGCTCCTCCCCCCGCGAGCTCGCGGACCAGATCGACCGCGCGGACCCGGCCCTGGTCCTCGTCGAGCAGGAGTTCGCCACCCTGGCCGCGGCGGCGCTCGACCGGCTCGTCCTGCCGCCGCGGTCCACCGGGCTGGGCCGCTCCGGCGTCGAGGCCGCGGTGCCGCCGCCCTCGCGACGCCGGGACGAGGGCCCCGGCGAGCAGCGCGACGTGCAGGACGACGACCCGTTGCTGCTGCTGTTCACCTCGGGCACCGCGGGCCGGTCCAAGGGCGCCGTGCTGACCCACGCGAGCTGCTTCTGGACCAACCTGGCCTTCTCGCGCACGGTCGAGATGTCGCACGACGACGTCGTCCTCAGCGTCCTGCCGCAGTTCCACGCGGGCGGGTGGAACATCCAGCCCCTGCTGGCCTGGTGGAGCGGGGCCACCGTCGTGCTCGAGCGCACCTTCGAGCCCGAGCGGGTGCTCCGTCTGATCGCCGAACGGCACGTCACCACCATGATGGGCGTGCCCACCCAGTACCTGCTGCTGGCCGAGCACCCCGGCTTCGCCCGCACCGACCTGTCCTCGCTGCGCACCGCCGTCGTGGGCGGGGCGCCGATGCCGGAACCGCTGCTGCGCACGTGGCACCGCCGCGGCGTCGCCCTCACCCAGGGGTACGGCCTCACCGAGGCCGGACCCAACGTCCTGTGCCTGCCCGACGACGAGGCCCGCGAGCGCCCCGGGTCGGCCGGCAAGCCGTACCCGCACGTGGACGTCGCGATCGCCGACCCGGCCACCGGCGAGCACCTGGACGGCGCCGCCACCGGCGAGCTGCTGGTGCGGGGGCCGGGCCTGTTCGCCGGGTACTTCCGCGACCCGCAGGCCACGGCGGAGGCGTTCGCGGGCGGCTGGCTGCGCACCGGGGACCTGGTCGAGCGGGACGCCGACGGCTACCACCGGATCGTGGACCGCCTCAAGGACCTGTTCATCGTCGGCGGGGAGAACGTCAGCCCGGCCGAGGTCGAGGCGGTGCTGCACCGGCACCCCGGCGTCGCCGAGGCGGCCGTCGTCGGCGTGCCCGACGACCGGTGGGGCGAGGTCGGGCACGCCTTCGTCGTGCCCCGGGCCGGGTACGCCACGGACGCCGAGGAGCTGGAGGCGTACTGCCGCGCCGAGCTCGCGCACTTCAAGGTCCCGCAGCGGTTCGCGCTCGTCGACGCGCTGCCCCGCACGTCCCTGCACAAGATCCCCCGGCACGCCCTGCGTGCCCGCACCGAGGAGGCCCGATGA	MTGLHTLGRWTRDRATSTPHRVAVDDRGVTLTYAELDDRATQLAGALRAAGYGVGDRVATVTGNSADQVVLFFACAQAGLVLAPLSWRSSPRELADQIDRADPALVLVEQEFATLAAAALDRLVLPPRSTGLGRSGVEAAVPPPSRRRDEGPGEQRDVQDDDPLLLLFTSGTAGRSKGAVLTHASCFWTNLAFSRTVEMSHDDVVLSVLPQFHAGGWNIQPLLAWWSGATVVLERTFEPERVLRLIAERHVTTMMGVPTQYLLLAEHPGFARTDLSSLRTAVVGGAPMPEPLLRTWHRRGVALTQGYGLTEAGPNVLCLPDDEARERPGSAGKPYPHVDVAIADPATGEHLDGAATGELLVRGPGLFAGYFRDPQATAEAFAGGWLRTGDLVERDADGYHRIVDRLKDLFIVGGENVSPAEVEAVLHRHPGVAEAAVVGVPDDRWGEVGHAFVVPRAGYATDAEELEAYCRAELAHFKVPQRFALVDALPRTSLHKIPRHALRARTEEAR				NA	NA	NA	NA	NA
AK001_01693	1164			hypothetical protein	ATGACCACCACGCCGACCACCCAGCAGTCCTCGCCCCGGTCCGACGAGACCGCCCCGCTGCCCGCCGACGACGGTGGCACGGTGCCGGCACGACGCCGCTGGCTCCCGCCGGCCATCGGGCTCGGGCTCGTCGTCCTGCTCGCCTGCCTGCCGCTGCTCGCCATCTCCCTGCCCGGCGTGCTGCCCGGCCCCACCTACACCCCGGGCACCCTGCAGGTCCTCGCCCTGGCGCTCCTCGTCGGGGCCCTGGCCCTGAGCTACCACCTGCTGTTCGGCGTCGCCGGGCTGCTCAGCTTCGGGCACGCGCTGTACTTCGCCGTCGGGGTCTACGGGCTGGCGATCGTGCTGGACCGCACGGACCTGCCGCTGCTGCCGGCCGCCTGCGTCGTGCTCGTCGGCGGCATCGCCGTCGCGCACCTCGTGGGGGCGATCTCGCTGCGGGTCACCGGGATCTCGTTCGCGATGGTCACCCTCGCGTTCGCCCAGGCGGGCAACGTGCTGGTCCGTCGCAACCCGGCCGGTGCCACCGGCGGCGAGGAGGGCCTCGCCCTGGACACCGCGCACGTCCCCGACGCCCTCGTGGGCGTGGCGAACACGCGCAACCTCTACTGGCTCGCCCTGGCCGTCCTGGTCGTCGTCTACGCGATCGTGCTGTGGGTCGAGCGCTCCCGCGCCGGCCACGTGGCCGCGGCGACCCGCGAGAACGAGATGCGCGTGCGCGTCGTCGGCGGACGCCCCTACCTGGTCAAGCTGCTCGTCTTCGTCGTCGCGGCCACCCTGGCCACCGGGGTCGGCATGGCCTACCTGCTGCTGCAGTCCGGGGCCGTCCCGCGGGTGACGTCGGCCGACTTCACGCTCACCCTGCTCGTCATGGTCGTGCTCGGCGGAGTCGGGTCGCGGTGGGGCGCCGTCGTCGGCGGCGTGCTGTACACGCTGCTCGACCAGCGACTCGGTGCGCTGGCCTCCTCCGAGGCGATCGCCGGGCTGCCGTCCGTCCTGCGCGTGCCCCTGAGCGAACCGCTGTTCATCCTGGGAACGTTGTTCGTCCTCGTGGTGCTGTTCCTGCCCGGCGGGATCGCCGGCGCGGCGCAGCGGCTGGCCCACCGGTCCGGCCGGGACCGGCAGCGCGAGGCCGCACGGGAGACGATCGAGGAGTCGGCATGA	MTTTPTTQQSSPRSDETAPLPADDGGTVPARRRWLPPAIGLGLVVLLACLPLLAISLPGVLPGPTYTPGTLQVLALALLVGALALSYHLLFGVAGLLSFGHALYFAVGVYGLAIVLDRTDLPLLPAACVVLVGGIAVAHLVGAISLRVTGISFAMVTLAFAQAGNVLVRRNPAGATGGEEGLALDTAHVPDALVGVANTRNLYWLALAVLVVVYAIVLWVERSRAGHVAAATRENEMRVRVVGGRPYLVKLLVFVVAATLATGVGMAYLLLQSGAVPRVTSADFTLTLLVMVVLGGVGSRWGAVVGGVLYTLLDQRLGALASSEAIAGLPSVLRVPLSEPLFILGTLFVLVVLFLPGGIAGAAQRLAHRSGRDRQREAARETIEESA	PGPT0020775_3311	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998	NA	NA
AK001_01694	873	livH_2	COG0559	High-affinity branched-chain amino acid transport system permease protein LivH	ATGAGCACGATCGTCCTGCTGCTGATCACCGGGCTCGGCCTCGGTGCGCTGTACTTCCTCGTCGCCTCCGGGCTGTCGCTCATCTACGGGCTGATGGGCGTGCTGAACTTCGCCCACGGATCGTTCCTCACCCTCGGCGCCTTCGCCGGGTGGGAGGTGGCCCGCCGGCTCGGCGCCGACAGCTGGGCCGTCTTCGGCCTCGCGCTCGTCGTCGGCGCCGGCGTCGGGGCCGCGTTCGCCGCCCTCACCGAGCTGCTGCTGGTCCGGCGCCTCTACGAACGCCACATCGAGCAGGTCCTGGTGACCGTCGGCCTCGCCCTGGCGACCGTCGCCCTGTTCGAGGGGGCCTGGGGCTCGGACCCCGAGTTCATCGAGGGTCCCGCCTGGCTGCGCGGCACCACCGACGTCGCCGGCGCCCCCGTCCCCAACGACCGGTTCCTCGCGATCGGCGCGGCCGTCCTCGTCCTCGTCGGCATCGTGCTGTTCCTGCGCTACACGCGCTTCGGCCTGATCATCCGGGCCGGCGTGGAGAACCGCGCCATGGTCACGGCGCTCGGCATCGACGTCCGCAAGGCGTTCACGCTGGTCTTCGCCGTCGGCGGCGCGGCCGCGGGCCTCGGCGGGGTGCTCGCCTCCCAGTACTTCGGGTACGTCTCGCCGCACCTGGGCGCCCAGCTGCTCATCTTCGCCTTCATCGTCACCGTCATCGGCGGGCTCGGGTCGCTGACCGGCGCCGCGGTCGCCGCCGTCCTCGTCGCGGTCCTGCAGCAGTTCGCCAACTACTACTGGGGCTACGGCGACCTCGTGGTCGTCCTGCTCCTGGCGCTCGTGCTGCTCGTCCGTCCCTCCGGCCTCCTCGGGAGGAGAGCATGA	MSTIVLLLITGLGLGALYFLVASGLSLIYGLMGVLNFAHGSFLTLGAFAGWEVARRLGADSWAVFGLALVVGAGVGAAFAALTELLLVRRLYERHIEQVLVTVGLALATVALFEGAWGSDPEFIEGPAWLRGTTDVAGAPVPNDRFLAIGAAVLVLVGIVLFLRYTRFGLIIRAGVENRAMVTALGIDVRKAFTLVFAVGGAAAGLGGVLASQYFGYVSPHLGAQLLIFAFIVTVIGGLGSLTGAAVAAVLVAVLQQFANYYWGYGDLVVVLLLALVLLVRPSGLLGRRA	PGPT0020770_7402	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997	NA	NA
AK001_01695	714	livF_3	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	GTGACCGAGCCGATCCTGCGCGTGACGAACCTGCGCGCCACCGTGGCCGGCCAGCAGGTCGTCGAGGACGTCACCTTCGACGTCCCCGCGACCGGCGTCACGGCCGTCCTCGGCCGCAACGGCGTCGGCAAGACGTCCACCCTCAAGGCGCTCCTCGGTCTCTACGCCCGCACCGGCGAGGTGACCCTCGCCGGCGAGCGCATCGACCGGCTGAGCACCGACCGCATCGTGCGCCGCGGCGTCGGCTACGTCCCGGAGGACCGCGAGGTCTTCGCGGGCCTGACCGTCGCGGAGAACCTGCGCCTGGCCGAACGGGACGCCGCCCCGCGCCGCGAGCTCGTGGCCGACCTGTTCCCCGACCTCGTCAAGCGCTCCGCGCAGCGCGCGGGCACGCTCTCCGGCGGTCAGCAGCAGATGGTCTCCCTGGCCCGGGCGCTGCTCAACGACAACCGCCTCCTCCTCGTCGACGAGCCGACCAAGGGCCTGGCGCCCAAGATCGTCGGGGAGGTCGCGACGGCGCTCGCCGAGGCAGCCGCGACCGCTCCTGTGCTCCTGGTCGAGCAGAACCTCGAGGTCATCGAACGGCTCGCCACCACCGTGGTCGTCATCGACGCCGGCCGCGTGGTCCACACCGGCGACGCCGCAGAGCTGCTCGACGACCCCGACCGCATCCAGCGCCTGCTGGGCGTGCACACCTCGGAGAACGCCGCATGA	MTEPILRVTNLRATVAGQQVVEDVTFDVPATGVTAVLGRNGVGKTSTLKALLGLYARTGEVTLAGERIDRLSTDRIVRRGVGYVPEDREVFAGLTVAENLRLAERDAAPRRELVADLFPDLVKRSAQRAGTLSGGQQQMVSLARALLNDNRLLLVDEPTKGLAPKIVGEVATALAEAAATAPVLLVEQNLEVIERLATTVVVIDAGRVVHTGDAAELLDDPDRIQRLLGVHTSENAA	PGPT0020785_1378	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996	NA	NA
AK001_01696	780	lptB_3	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGCCGCACCACCAGCCCGGCACGGACCGCACCGTGCCCGCCCTCGCCACCCACGGCCTCGGCCTGCAGATCGGTGGCGCGCAGATCCTGCACGACGTGACCCTCGAGGTCGCGCCGGGCGAGATGATCGGCGTCATCGGCCCCAACGGTGCCGGCAAGACGACGCTGTTCAACCTCGTCTCGGGGGTCCTGCGCCCCACGACGGGCACGGTCCGCATCGACGGCCGCGACGTCACCGGCGACCCGGTCGCCCGACGGGCCCGTGCCGGGCTGGGCCGCACCTTCCAGACCTCCAGCGTCTTCCCGCGTCTGGACGTGCTCGAGAACGTCCGGCTCGCCGCCCAGATGCACCTGGGCCGCAGCCTGTCGGTGCTGGCGTTCCCGCACCGGCGCGACGCCGCCACCCGGCGTGCCGTCGAGCACCTCGCCGAGGTGGGCCTGGAGCACCGCCTCGGCGTCGCCGCCGGCGACCTCTCCCACGGGGACAAGCGCAAGCTGGAGATCGCCGTCCTGCTGGCCACCGACCCGAGCGTCATCCTGCTCGACGAGCCCATGGCCGGGGTCTCCTCCTCGGACGTGCCCGGGCTCAGCGAGGTCATCCGCCGGCTGCACCGCAGCGGCCGCACCGTGCTCATGGTCGAGCACCACATGGACGTCGTCCTCGGGCTCGTGGACCGGGTCGCCGTCATGCACCACGGCGAGCTGCTCGCCTACGACACACCGGAGGCCGTGATGTCCGACCCCACCGTCCAGAGCGCCTACCTGGGAGACGTCGCGTGA	MPHHQPGTDRTVPALATHGLGLQIGGAQILHDVTLEVAPGEMIGVIGPNGAGKTTLFNLVSGVLRPTTGTVRIDGRDVTGDPVARRARAGLGRTFQTSSVFPRLDVLENVRLAAQMHLGRSLSVLAFPHRRDAATRRAVEHLAEVGLEHRLGVAAGDLSHGDKRKLEIAVLLATDPSVILLDEPMAGVSSSDVPGLSEVIRRLHRSGRTVLMVEHHMDVVLGLVDRVAVMHHGELLAYDTPEAVMSDPTVQSAYLGDVA	PGPT0020780_5079	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995	NA	NA
AK001_01697	1206		COG0683	Leu/Ile/Val-binding protein	ATGCGGGTCACGAAGAAGTCCCTCGCACTGGCCACCACTGCCGTCACGGTGTTGGCGCTCGCTGCGTGCGCACCGGCGGACGGCGGGGTCGGCGGCACCGACGACGGCGGCGAGAGCGCCGCGGCCGAACCCGTCGAGGTCGGCATCATCTACTCCAAGACCGGACCGCTCGCCGCCTACGGCGAGGCCTACCACCAGGGCTTCGAGGCCGGCCTCGACTACGCGACCGACGGCACCGGCGAGGTCGACGGGCAGCCGATCGAGGTCACCTACCTCGACGACGCCGGCGACCCGGACAAGGCCGTCAACCACGCCAAGGACATCATCGGCCAGGGCGTGCAGATCATGGGCGGCACCGTCTCCTCCGGCATCGCGCTCAAGCTCGCCGAGCAGGCCGAGCAGAACCAGGTGCTCTACGTCTCCGGCCCCGCCGCCGCCGACGCGATCACCGGCATCAACGACTACACGTTCCGCTCCGGCCGGCAGTCGCTGCAGGACGTCGCCACGGCCGGCACGTTCGTCGAGCCCGACGGCGCGAAGGTGCTCGTCTTCGCCCAGGACACCGCGTTCGGCCAGGGCAACCTCGCCGCCGTCGACGGCGTCCTCGGTGCCCAGGGCGCCGACGTCGACAGCATCCTCGTGCCCGAGGACGCCACCGAGTTCACGCCGTTCGCCCGTCAGGTGATCGACGCCGACCCCGACCTCGTCTTCGTCGCCTGGGCGGGCGCGTCGTCGGGCGCGATGTGGCAGGGCCTCGACCAGCAGGGCGTCCTCGACGCCACCACCGTGGTCACCGGCCTCGGCGACGCCGCCACCTACGACGCCTACGGCGACGCCGCGGCCAAGGTCGACTTCCTCAACCACTACTTCCCCGGCGCACCGGACAACGAGGTCAACGACGCCATGGTCACGGCGGTCGAGGAGGCCGGCGGGACGCCCGACCTGTTCACGCCCGACGGCTTCGTCGCGGCGCAGATGATCGTGCACGCGATCGCCGAGGGCGGCGACGACGTCGACGCCATGGTCGGCGCGCTGGAGGGCTGGACGTTCGACGGCCCCAAGGGCTCGACGACGATCCGCGAGACCGACCACGCGGTGCTGCAGCCGATGTACCAGGTCGGCCTGGTCGAGACCGACGGCTCCTGGATGCCCGAGCTCGTCGACGAGGTGCCCGCCGACGCGGTCGCCCCGCCGGAGGCCGACTGA	MRVTKKSLALATTAVTVLALAACAPADGGVGGTDDGGESAAAEPVEVGIIYSKTGPLAAYGEAYHQGFEAGLDYATDGTGEVDGQPIEVTYLDDAGDPDKAVNHAKDIIGQGVQIMGGTVSSGIALKLAEQAEQNQVLYVSGPAAADAITGINDYTFRSGRQSLQDVATAGTFVEPDGAKVLVFAQDTAFGQGNLAAVDGVLGAQGADVDSILVPEDATEFTPFARQVIDADPDLVFVAWAGASSGAMWQGLDQQGVLDATTVVTGLGDAATYDAYGDAAAKVDFLNHYFPGAPDNEVNDAMVTAVEEAGGTPDLFTPDGFVAAQMIVHAIAEGGDDVDAMVGALEGWTFDGPKGSTTIRETDHAVLQPMYQVGLVETDGSWMPELVDEVPADAVAPPEAD	PGPT0020765_4960	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999	NA	NA
AK001_01698	1200	nhaA_1	COG3004	Na(+)/H(+) antiporter NhaA	GTGATCGCGCTGATCTTCGCCAACTCACCGTGGCGGGAGGCCTACGAGACGCTGTCCCAGACGGTGGTGGGCCCGGCGTACATCGGCCCCGTGTACATCCACCTCGACCTGACGCTGGCGAAGTGGGCCGCCGACGGCCTGCTCGCGATCTTCTTCTTCACGGTCGGCCTGGAGCTCAAGCACGAGTTCGTCGCCGGCTCGCTGCGCAGCCCCAAGCAGGCCGGCGTCCCGATGCTGGCCGCCGTGGGCGGAATGGCCCTGCCGGCGATCTTCTACGTCGTCGTGGTCCTCACGCTCGGCAGCTCGGAGGCCCTGCACGGCTGGGCCATCCCCACCGCCACCGACATCGCCTTCGCGCTCGCGATCCTGGCGGTCTTCGGCAAGGGCCTGCCCGTGGCGATCCGCACCTTCCTGCTCACGCTCGCGGTGGTCGACGACCTGCTGGCGATCATCATCATCGCGGTCTTCTACACCAGCGAGATCAACGGCGCCTGGCTGGGCGGCTCGCTCGTCGTCGTCGCGGTCTTCGCCTGGTACGTCCGCACCCGGTCGCCGAAGTGGTGGATCCTGGTCCCGCTGTTCGTCGTCGCCTGGGCGTTCATGCACGCCTCGGGGGTGCACGCCACGATCGCGGGTGTGCTCATGGGCTTCGCGGCCACGGCCCGTCCGATCCACGGCGAGCGCGAGACGCGGACGCACCACTACGAGCACGCGGTGAAGCCGTGGTCCCAGGGCCTCGCCCTGCCCGTCTTCGCCTTCTTCTCGGCCGGCGTGAACCTGGTCGACGGCGGCGGGCCGGCCGAGATCCTGGGCCAGCCGGTGGTGTACGCGATCGTCGCAGGCCTGGTGCTCGGCAAGCTCCTCGGCATCCTGGGCACGACCTGGCTGGTCACCCGCGTGACCCCGTTGCGGCTGGCCCAGGGCATCGGAGTACGCGACCTGCTGCCCGTCGCCTTCCTGGCGGGCATCGGGTTCACGGTCTCGCTCCTCATCGCCGAGCTGTCCTTCGAGGAGGGCTCGGAGTACACGCTGGGGGCCAAGGCCGCCATCCTCATCGCGTCCGTCGTCGCCGCCACGCTGGGCGCCCTCACCCTGCGGTGGGACGCCAAGCAGGAGCGCGGCCCGGACATGAACCGCGACGACCTGCCCGACGAGGTCACCACGGTCATCGGCGACGAGGAGGACCGCAGGGAGCACTGA	MIALIFANSPWREAYETLSQTVVGPAYIGPVYIHLDLTLAKWAADGLLAIFFFTVGLELKHEFVAGSLRSPKQAGVPMLAAVGGMALPAIFYVVVVLTLGSSEALHGWAIPTATDIAFALAILAVFGKGLPVAIRTFLLTLAVVDDLLAIIIIAVFYTSEINGAWLGGSLVVVAVFAWYVRTRSPKWWILVPLFVVAWAFMHASGVHATIAGVLMGFAATARPIHGERETRTHHYEHAVKPWSQGLALPVFAFFSAGVNLVDGGGPAEILGQPVVYAIVAGLVLGKLLGILGTTWLVTRVTPLRLAQGIGVRDLLPVAFLAGIGFTVSLLIAELSFEEGSEYTLGAKAAILIASVVAATLGALTLRWDAKQERGPDMNRDDLPDEVTTVIGDEEDRREH	PGPT0013935_354	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313	NA	NA
AK001_01699	543			hypothetical protein	GTGCTGCTGCGCGGGGTCAACCTCGGCCCGCACCGCCGGGTCGCGGCGGCCGACCTGCGCGCCGCGGCCGCCGAGGCAGGTCTCCGCGACGCCCGCACGTACGCGACCAGCGGGAACCTCGTGGCGTCGTCGGGCACGGACGCCCCGGACGACGCCCCGGGCGTCGCCGCGGGGGTGGGCGCCGCGCTGGCCGCGACCCTGGGTGCGCCGGTGCCGCTGCTGGCGGTGTCCGCGGCCCGGCTGACGCACCTGGTCGCGGCGAACCCCTTCCCCGGACCCGCGCAGGACGACCCCTCCCACCTGCAGCTCCACCTCGGCCCCGACCCGGTGGACGCCGACGGCGTGGCACGGCTCGCGGCCGACCACGACGGCCCGGAACGGCTGGCGACGGCCGACGGCGCGCTGTTCGTGCACTACCCGGACGGCATCGGACGCAGCCGCCTGACGAGCGCGCGCCTGGACCGCGCCACCGGGACGTGGACCACGGGTCGCAACTGGCGCACGGTGCTCCGCCTCCGGGGGATGACCGACGACACGCCCTGA	MLLRGVNLGPHRRVAAADLRAAAAEAGLRDARTYATSGNLVASSGTDAPDDAPGVAAGVGAALAATLGAPVPLLAVSAARLTHLVAANPFPGPAQDDPSHLQLHLGPDPVDADGVARLAADHDGPERLATADGALFVHYPDGIGRSRLTSARLDRATGTWTTGRNWRTVLRLRGMTDDTP				NA	NA	NA	NA	NA
AK001_01700	1338			hypothetical protein	GTGGCCCACACCGATCCCACCGCCCACCCCCGGACGTTCGTCGTCGACACGTCCGTGCTGCTGTCCGACCCCCGCGCCATCCACCGGTTCGCCGAGCACGACGTCGTGCTGCCCGTCGTCGTCGTCACCGAGCTCGAGGCCAAGCGGCACCACGCCGAGCTCGGCTACTTCGCCCGCAGCGCCCTGCGGGCCCTCGACGACCTGCGGATCACGCACGGTCGCCTGGACGCCCCGATCCCCATCGGTGACGACGGCGGGACGTTGCGGGTCGAGCTGAACCACAGCGACCCGGAGGTGCTGCCCGCCGGGTTCCGGCTCGGGGACAACGACACCCGCATCCTGGCGGTGGCCGCGAACCTCGCGGCCGAGGGCCGCGACGTCACCGTGGTGTCCAAGGACCTGCCCATGCGGGTGAAGGCCTCCGCCGTCGGGCTGCGGGCCGAGGAGTACCGCCACGAGCTCGCGGTCGACTCCGGGTGGACCGGGATGCGCGAGATCGCCGTCACCGACGACCAGCTCTCCGCCCTGTACGACGGGACCGAGCTCGAGCTCGCGTCCCTCGCCCCGGAGGTCATGGCCGAGGCCTCCCCGCTGCTGTGCCACACCGGACTGGTCATCCACGGCGGGGGCGGGTCGGCGCTCGGCCGGGTCACGGCCGACAAGCGGATCCGGCTGGTGCGCGGCGACCAGGACGTGTTCGGGGTGCACGGCCGCTCCGCCGAGCAGCGGGTCGCCATCGACCTGCTCAACGACCCGGACGTCGGCATCGTCTCGATGGGCGGGCGCGCCGGGACGGGCAAGTCGGCCCTGGCCCTCTGCGCGGGCCTCGAGGCGGTGCTCGAGCGCCGGCAGCACCGCAAGATCCTCGTCTTCCGTCCGCTGTACGCCGTCGGCGGGCAGGAGCTGGGCTATCTGCCGGGGTCCGAGTCGGAGAAGATGAACCCGTGGGCCCAGGCCGTCTACGACACCCTCGGTGCCCTGGTCTCCCCGCACGTCGTCGACGAGGTCATCGACCGCGAGATGCTCGAGGTGCTGCCGCTGACGCACATCCGCGGACGGTCCCTGCACGACGCCTTCGTCATCGTCGACGAGGCCCAGTCGCTCGAGCGCAACGTGCTGCTCACGGTCCTGTCCCGGATCGGGCAGGGGTCGCGGGTCGTGCTCACCCACGACGTCGCCCAGCGGGACAACCTCCGCGTCGGGCGCCACGACGGTGTCGCCGCGGTGATCGAGGCGATGAAGGGGCACCCGCTGTTCGCCCACATCACCTTGACCCGGTCCGAGCGCTCGCCGGTGGCGGCGCTCGTCACCGAGATGCTCGAGGGCCTGGAGATCTGA	MAHTDPTAHPRTFVVDTSVLLSDPRAIHRFAEHDVVLPVVVVTELEAKRHHAELGYFARSALRALDDLRITHGRLDAPIPIGDDGGTLRVELNHSDPEVLPAGFRLGDNDTRILAVAANLAAEGRDVTVVSKDLPMRVKASAVGLRAEEYRHELAVDSGWTGMREIAVTDDQLSALYDGTELELASLAPEVMAEASPLLCHTGLVIHGGGGSALGRVTADKRIRLVRGDQDVFGVHGRSAEQRVAIDLLNDPDVGIVSMGGRAGTGKSALALCAGLEAVLERRQHRKILVFRPLYAVGGQELGYLPGSESEKMNPWAQAVYDTLGALVSPHVVDEVIDREMLEVLPLTHIRGRSLHDAFVIVDEAQSLERNVLLTVLSRIGQGSRVVLTHDVAQRDNLRVGRHDGVAAVIEAMKGHPLFAHITLTRSERSPVAALVTEMLEGLEI				NA	NA	NA	NA	NA
AK001_01701	1398			hypothetical protein	ATGCGCCTCGCCTCCTCCCCCGTCGTCACCACCGCACGCGACGTCCTCGACACCCAGCACCTGCGCGCCGCACTGCGCGTCAGCCCCGCCGACGCCACGCTGGCCGCGGCCCTGCGCTGCGGCGCGGCCGTCGGGCTCGCCCTGGCCGTCTGCGCCGCGACCGGCCACCGTGACCTGGCCGGCTTCGCGGCGCTCGGAGCGCTGGCCTCCCTGTTCGGACGGTTCGACCCGTACCGCCGCCGGGCGGCCGTGCTCGCCCTGCTCGGCGGCCTCCTGACGACCGCCCTCGTGGCGACCTCCGCCCTGACCGCCGCCGGGGCGGCACCGGCCGTCACCCTGCTCGCCGTCGCCGCGATCGCCGGCGCCACGACCGTGCTCTGCCGGCTCGTCCGCACCGGGCCGCCCGGCGCCACGATCGTCGTGTTCGCCGCCGCGGGAGGGCTCGCCGGACCCCTCGGCTGGCCCGACGTGGCCGAGCGTGGCGGAGCGGCCCTCGTCGGTGCGGCGATCGCCTGGACCGTGGGCATGAGCGGCTACCTCGCGCGACCGTCGGCACCGGCCCGGCTGGCCGTGCGGCGGGCCGCGGACGCCGTGCGGCGGGCCGCCGGACCCTCCGTCGACACCGCCGGCGACCTGCGCCACGGCGACGCCGTACGCACCGCCCGCGCCGCGATCGACACGGCGCGGGCGGCCCTCGCCGACGACTCGTCGCACCGCCGGACGCGCGGGACCGCCCGGTCGCTGACCACCGAGCTCGACGCCGTGGAACGGGTGCTCGACGACACCGCCGGCGGTCCGGCACCGGACCGCCCGCGGCCCGCCCGGACGAGCCTGCGCGAGCAGGCCGTCCGCGAGGCGCGGTCCTCCTCGTGGCGGCTCACCGGCGTCCGCGTCGTCCTGGCGAGCCTGGGCGCCGGTCTGCTGGCGACGGCCGGCGGTCTGACCCACCCCGCCTGGGCCCAGATGGGGGCCACGGCGACGCTGCAGGGGACGACGGCGCAGCACGCGGTCGTCCGGGCTCTGCAGCGGGCGGCGGGGACCGCCGTCGGCGCGCTCGTCGCCTGGCTCCTGCTCGACGCCGACCTCGGCTTCGCCGCGACCTGCGTGCTCGTCGTGGCGCTGCAGGTCGTCACCGAGCTGGTCGTCGGCCGCCACTACGGGCTCGCGATGCTGACGATCACCCCGATGGCGCTCCTCATGACCTCGCTGGCCGCGCCCGCCGACGCCGGCGGGATCGCGCTGGCACGGGCCCTCGACACAGTCCTCGGCGCCGCCGTCGGGGTCGGCGCCGTGGTCCTGGTCCACCCGCGCCGTCGCCGTCGGGGCCCCGCCGGCGACGGCCCGGACCCCGACGGCTCGGTAGGACTCAGATCTCCAGGCCCTCGAGCATCTCGGTGA	MRLASSPVVTTARDVLDTQHLRAALRVSPADATLAAALRCGAAVGLALAVCAATGHRDLAGFAALGALASLFGRFDPYRRRAAVLALLGGLLTTALVATSALTAAGAAPAVTLLAVAAIAGATTVLCRLVRTGPPGATIVVFAAAGGLAGPLGWPDVAERGGAALVGAAIAWTVGMSGYLARPSAPARLAVRRAADAVRRAAGPSVDTAGDLRHGDAVRTARAAIDTARAALADDSSHRRTRGTARSLTTELDAVERVLDDTAGGPAPDRPRPARTSLREQAVREARSSSWRLTGVRVVLASLGAGLLATAGGLTHPAWAQMGATATLQGTTAQHAVVRALQRAAGTAVGALVAWLLLDADLGFAATCVLVVALQVVTELVVGRHYGLAMLTITPMALLMTSLAAPADAGGIALARALDTVLGAAVGVGAVVLVHPRRRRRGPAGDGPDPDGSVGLRSPGPRASR				NA	NA	NA	NA	NA
AK001_01702	489			hypothetical protein	GTGGACTACATCGAGAGGGTGCGGGCCCGGTGGGCCGAGCTGCTGCCGGACGTCGACACGGCGCCGGCGGAGACCGGCGCGCGGATCCGCAGGATCGCGGGCCTGCTCGAGGCCGCGCTGGCCGGCGAGCTCGCGGCCCACGACGTCTCGCGGGCCGAGCTGGACGTGCTGACGGCGCTGCGGCGCGCCGATCGCCCGCTGCGCGCGGGGGAGATCACCACCATGACGGGGTCGCCCGGGGCGTCGATCACCAAGCGGCTCGGGCGGCTGGAGCGCGACGGGCTGGTGGAGCGCGCCGTCCACGAGCGCGATCGCCGCGGTGTCGTGGTGGCGCTGACCGACCGCGGTCGTGCGGTGGTCGACGAGCTGTTCCCGCGGCAGGTCGAGCACGAGCGGGCGGCCGTCGCGGACCTGTCGGCGGCGGAGCGGGCCGAGCTGGCCCGGCTCCTGGCCGTCGTCCTGCGTCGGCTGGATCCTCAGGACTACTGA	MDYIERVRARWAELLPDVDTAPAETGARIRRIAGLLEAALAGELAAHDVSRAELDVLTALRRADRPLRAGEITTMTGSPGASITKRLGRLERDGLVERAVHERDRRGVVVALTDRGRAVVDELFPRQVEHERAAVADLSAAERAELARLLAVVLRRLDPQDY				NA	NA	NA	NA	NA
AK001_01703	1434	fumC	COG0114	Fumarate hydratase class II	ATGACTTCCGACACCGCCGCCGGTGGCGCCGACGCGCCCGCGACCGAGTACCGCATCGAGCACGACACGATGGGCGAGGTCCGTGTCCCCGCCCACGCTCTCTACCGCGCCCAGACGCAGCGTGCGGTCGAGAACTTCCCCATCTCCGGCACGCCGCTGGAGCGCAGCCACATCGAGGCGCTCGCCCGGGTGAAGAAGGCCGCGGCGCTCACCAACGCCGAGCTCGGCGTGCTCGACCAGGACGTCGCGGACGCCATCGCCGCCGCCGCCGACCAGGTCGCCTCGGGCGCGCTGGACGGCCACTTCCCGGTGGACGTCTTCCAGACGGGGTCGGGCACCTCGTCGAACATGAACACCAACGAGGTGCTGGCCACGCTGGCCACGCGGTCCCTGGGCCGCGACGTGCACCCGAACGACCACGTCAACGCCTCGCAGTCCTCGAACGACGTCTTCCCGACGTCGGTGCACGTGGCCGCCACGGCCGGCGTCGTCCGCGACCTCGTCCCGGCCCTGCAGCACCTCGCCGAGGCGCTGTCGGCCAAGGCCGAGGAGTACGCCGAGGTCGTGAAGTCGGGCCGCACGCACCTGATGGACGCCACGCCGGTCACGCTCGGCCAGGAGTTCGGCGGGTACGCCACCGCGGTGCGGTACGGCATCGAGCGTGTCGAGGCCGCGCTGCCCCGCGCCGCCGAGGTCCCCCTGGGCGGGACGGCCGTGGGCACGGGCATCAACACCCCGGCCGGGTTCCCGCAGCGCGTCATCGAGCTGCTGCGCGAGGACACGGGGCTGCCGCTGACGGAGGCCCGCGACCACTTCGAGGCGCAGTCGGCCCGCGACGGCCTGGTCGAGCTCTCCGGGGCGCTGCGCACGATCGCCGTGTCCGTGACGAAGATCTGCAACGACCTGCGCTGGATGGGGTCCGGTCCGAACACGGGCCTCGGCGAGATCGCCATCCCGGACCTGCAGCCGGGCAGCTCGATCATGCCGGGCAAGGTCAACCCGGTCATCCCCGAGGCCGTGCTCATGGTCGCTGCGCGCGTGGTCGGCAACGACGCGACGGTCGCGTGGGCGGGGGCGACGGGCTCGTTCGAGCTCAACGTGCAGATCCCGGTGATCGCCCAGGGCGTGCTCGAGTCGATCCGCCTGCTGTCCAACGCCTCGCGCGTGCTGGCCGACAAGACGGTCGCCGGCCTGACGGCCAACGTCGACAGGGCCCGCGCCTTCGCCGAGTCCTCGCCGTCGATCGTCACGCCGCTCAACCGCGTGATCGGCTACGAGGCCGCCGCGAAGGTCGCCAAGAAGGCGGTGGCCGAGGGGATCACGGTCCGCGAGGCCGTGGTGGCGCTCGGGTTCGTCGAGCGGGGCGAGGTCACCGAGGACCAGCTCGACGCAGCGCTCGACGTGCTGTCCATGACGCGCCCGCCGCAGGCCTGA	MTSDTAAGGADAPATEYRIEHDTMGEVRVPAHALYRAQTQRAVENFPISGTPLERSHIEALARVKKAAALTNAELGVLDQDVADAIAAAADQVASGALDGHFPVDVFQTGSGTSSNMNTNEVLATLATRSLGRDVHPNDHVNASQSSNDVFPTSVHVAATAGVVRDLVPALQHLAEALSAKAEEYAEVVKSGRTHLMDATPVTLGQEFGGYATAVRYGIERVEAALPRAAEVPLGGTAVGTGINTPAGFPQRVIELLREDTGLPLTEARDHFEAQSARDGLVELSGALRTIAVSVTKICNDLRWMGSGPNTGLGEIAIPDLQPGSSIMPGKVNPVIPEAVLMVAARVVGNDATVAWAGATGSFELNVQIPVIAQGVLESIRLLSNASRVLADKTVAGLTANVDRARAFAESSPSIVTPLNRVIGYEAAAKVAKKAVAEGITVREAVVALGFVERGEVTEDQLDAALDVLSMTRPPQA	PGPT0001650_712	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679	NA	NA
AK001_01704	645	cynT	COG0288	Carbonic anhydrase	ATGACCCCGAAGGAAGCCTGGGCCGCGCTGCGGGCCGGCAACGAGCGCTTCGTCCACGACGAGCCGGCCGAGAGGTCGCAGATGTCGGTACGTCGCGCCGAGCTGACCGCCGCGCAGCACCCGCACACCGTCGTGTTCGGCTGCTCCGACTCGCGGGTGGCGGCGGAGATCATCTTCGACCAGGGCCTCGGGGACGTGTTCGTGGTCCGCACGGCCGGGCACGTGGTGGACACCACGGTCCTGGGCTCGATCGAGTACGGCGTGGAGGTCCTGGGAGCGCCGCTGATCGTGGTCCTGGGCCACGACTCGTGCGGTGCGGTCGGCGCGACGGCGCACACGCTGCGCACCGGCGAGCAGCCGCCCGGGTTCGTCCGCTCCGTCGTCGACAAGGTGATCCCCTCGATCGCCGAGCTCTCCGGCTCGCCCGACGAGTCCGAGGACGAGGACGAGACGGTCCTGGCCGACCGGCTGCGCACGGCGCACGTGCGGCACACCGTCGCGACGCTGCGGGGCTACTCCCGCGCCCTGGACGCGGCCGTCACGGAGGGGCGCACGGCGATCGTCGGCGTCGAGTACGACCTCGCCGAAGGGTCCGCGCGGCTCATCGAGGTCGCCGGTGACGTGGGCGAGGAACCGCTGCGCTGA	MTPKEAWAALRAGNERFVHDEPAERSQMSVRRAELTAAQHPHTVVFGCSDSRVAAEIIFDQGLGDVFVVRTAGHVVDTTVLGSIEYGVEVLGAPLIVVLGHDSCGAVGATAHTLRTGEQPPGFVRSVVDKVIPSIAELSGSPDESEDEDETVLADRLRTAHVRHTVATLRGYSRALDAAVTEGRTAIVGVEYDLAEGSARLIEVAGDVGEEPLR	PGPT0002415_3958	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673	NA	NA
AK001_01705	924	scrK_1	COG0524	Fructokinase	ATGGCCGGCCACGTCCTCGCCGTCGGGGAGGCGCTGGTCGACGTCGTGCACCGACCCGACGGCACGAGCGCCGAGCACCCGGGCGGCTCGCTGGCCAACGTCGCGCTCACGCTCGGCCGCCTCGGACGGGACGCCCGGCTGGCCACCTGGCTCGGGCGGGACGAACGCGGCGACACCGTGCGGTCCTGGCTGGCCGCCTCGGGCGTGACGCTGGCGCCGGGCAGCGACGGCGCGGCGCGCACGTCCGTGGCGCAGGCCACGCTGGACGACGCCGGGACCGCCACCTACTCCTTCGACCTCGACTGGCAGGTACCCGCCGGGACGGCCGCGGACGCCGGGACGCTGGCCGTGCACACCGGCTCGATCGCGGCCGTGCTGGAGCCGGGCGCCACCGACGTCCGCGCCGTGGTCGAGTCCGCGCGCTCGACGTCGACCATCACCTACGACCCGAACGCCCGTCCCGTGCTCATGGGCGACGCGGCCGGGGCCCGTGCGCGCGTCGAGGAGCTCGTCCGGCTGGCCGACGTGGTCAAGGTCAGCGACGAGGACCTCGCCTGGCTCGCACCGGAGACGGCCGCCCTGGACGTCGCCCGCGCCTGGGTGCACGACCTCGGCGCCGCGCTGGTGGTCGTCACCTTCGGCGGCGAGGGCTCGACGGCGGTCACGGCGACGGGCGAGGTGCACGTACCGTCCCGACCGGTCGAGGTCGTGGACACCGTCGGGGCCGGGGACTCGTTCATGGGCGCCCTGATCGACGGCCTGTGGTCGGCCGACCTGCTCGGGGCCGACCGCCGCGAGGCACTGGCTACGATCGACCACGCCACGGTCGAGCGGCTGCTCTCGCGCTGCGCCGCCGTGGCGGCCGTGACCGTGTCGCGTGCGGGAGCGAACCCGCCGTGGAACGACGACCTGGAGGATGCATGA	MAGHVLAVGEALVDVVHRPDGTSAEHPGGSLANVALTLGRLGRDARLATWLGRDERGDTVRSWLAASGVTLAPGSDGAARTSVAQATLDDAGTATYSFDLDWQVPAGTAADAGTLAVHTGSIAAVLEPGATDVRAVVESARSTSTITYDPNARPVLMGDAAGARARVEELVRLADVVKVSDEDLAWLAPETAALDVARAWVHDLGAALVVVTFGGEGSTAVTATGEVHVPSRPVEVVDTVGAGDSFMGALIDGLWSADLLGADRREALATIDHATVERLLSRCAAVAAVTVSRAGANPPWNDDLEDA	PGPT0017625_2889	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847	NA	NA
AK001_01706	285	xseB		Exodeoxyribonuclease 7 small subunit	GTGCGGTTCACTGGTGTCGTGACCGACGCAGACCTCACCCCCGCACCGGCCGACGCCCCCGACGTCGGCACGCTGACGTACGAGCAGGCGCGCGACGAGCTGGTCCAGGTCGTCTCCCGGCTGGAGGCCGGCGGCGAGCCGCTGGAGACGTCGCTCGCCCTGTGGGAGCGCGGCGAGGCCCTGGCCGCCCGCTGCCAGGAGTGGCTCGACGGCGCGCGCGAGCGGCTCGCCGCCGCCCAGTCGGCCTCGAGCGCCGAGACCGCCGCACCGGACGGACAGGGCTGA	MRFTGVVTDADLTPAPADAPDVGTLTYEQARDELVQVVSRLEAGGEPLETSLALWERGEALAARCQEWLDGARERLAAAQSASSAETAAPDGQG				NA	NA	NA	NA	NA
AK001_01707	1896	btuD_8		Vitamin B12 import ATP-binding protein BtuD	ATGGGTCACCTCGAGGTGGCGCACGTCTCCTACGTGCTGCCGGACGGACGCGGACTGCTCGACGACGTCTCCTTCCGGGTCGGTGAGGGCAGCACGACGGCGCTCGTCGGCCCCAACGGCGCCGGGAAGACCACCCTGCTGCGGATCCTGACCGGTGCGCTCCGGCCCGATGCCGGCACGGTGACGGCCTCCGGCGGACTGGGCGTGATGTCGCAGTTCGTCGGCTCCGTGCGCGACGCCACGACGGTGCGCCAGCTCCTGGCCTCCGTCGCGCCGGACCGGATCCGGCAGGCCGCCCGCGTCGTCGAGACCGCCGAGGACGCCCTGCTGACGGTCGACGACGAGGCGGCGCAGATGCGGTACGCCCAGGCGCTGGCCGACTGGGCGGAGGTACGCGGCTACGAGGCCGAGACGCTGTGGGACGTGTGCACGACAGCGGCGCTCGGCGTGCCGTTCGAACGGGCGCAGTACCGCGAGGTGCGGACCCTGTCGGGCGGCGAGCAGAAGCGTCTCGTCCTCGAGGCGCTGCTGCGCGGACCCGACGAGGTGCTGCTGCTCGACGAGCCCGACAACTACCTCGACGTGCCCGGCAAGCGGTGGCTCGAGGACGCGCTGCGGGCCACCCGCCAGACCGTGCTCCTGGTGTCGCACGACCGCGAGCTGCTGGCCGGCGTCGCGGACCGCATCGTCGCCCTCGAACCCGGGACCGACGGATCGGACGCGTGGGTGCACGGCGGCGGGTTCGCGACCTTCCACGCGGCGCGCCGCGAGCGGTTCGCCCGGTTCGAGGAGCTGCGTCGGCGCTGGGACGAGAAGCACGCTCAGCTCACCAAGCTCGTGCTCACCCTGCGGCAGGCCGCCGCGAACAGCCCCGACATGGCCTCCCGGTACCGCGCGGCCCAGACGCGGCTGCGCAAGTTCACCGAGGCCGGGCCGCCGCCGGAGCCTCCCCGCGAGCAGCAGGTCCGGATGCGGCTGCGCGGGGGACGGACCGGTACCCGGGCCGTCACCTGCGAGGCGCTGGGCCTGACCGGCCTCATGCAGCCGTTCGACCTGGAGGTGTTCTACGGCGAGCGCGTCGCGGTCCTCGGGTCGAACGGGTCGGGCAAGTCGCACTTCCTGCGGCTCCTGGCCGGTGACGACGTCGCGCACTCGGGTCGGTGGCGGCTCGGGGCACGGGTGGTGCCCGGGCACTTCGCCCAGACCCATGCCCACCCCGAGCTCGCGGGGCGGACCCTCGTGGAGATCCTCTGGGCCGACCACGCCCGGGACCGCGGGGCCGCCATGGCCGCGCTGCGCCGCTACGAGCTCCACGGGACGGCGGACCGCCCGTTCGACCGGCTGTCCGGGGGCCAGCAGGCCCGCTTCCAGATCCTGCAGCTCGAGCTCGGCGGCTGCACGGCGCTGCTGCTCGACGAGCCGACGGACAACCTCGACCTGGCCAGCGCCGAGGCGCTGCAGGAGGGTCTGGAGGCCTTCGAGGGCACCGTCCTGGCGGTCACCCACGACCGCTGGTTCGCCCGCGGGTTCGACCGCTTCCTCGTCTTCGGTGCGGACGGTCAGGTCCGGGAGACCCCCGAGCCGGTGTGGGACGAGGACCGCGTCGAGCGCGTCCGCTGGCCTCCCGTCTCCCGCACCCACCCTTCTGTTGTGGGCATGAAATCTGCACGTCAGCGGGCGGTGGCGACTGCAGATTTCATGCCCACAACGTTGGCGGGTGGCGGCATGGCGGCATGGCGGCGGGCGGCGGCGGGCGCGGGGCAGGGTCAGGGGGTGGTCGCGGTGACCTCGGCGTCCAGGGCGCCGGCGGCCAGCCGCACGTGCACGCCGTCGCCGGGGGAGACCTCGTCCGCGGCCCGCACCACCGCACCGTCGCCGCGCTGCACGACGGCGTAG	MGHLEVAHVSYVLPDGRGLLDDVSFRVGEGSTTALVGPNGAGKTTLLRILTGALRPDAGTVTASGGLGVMSQFVGSVRDATTVRQLLASVAPDRIRQAARVVETAEDALLTVDDEAAQMRYAQALADWAEVRGYEAETLWDVCTTAALGVPFERAQYREVRTLSGGEQKRLVLEALLRGPDEVLLLDEPDNYLDVPGKRWLEDALRATRQTVLLVSHDRELLAGVADRIVALEPGTDGSDAWVHGGGFATFHAARRERFARFEELRRRWDEKHAQLTKLVLTLRQAAANSPDMASRYRAAQTRLRKFTEAGPPPEPPREQQVRMRLRGGRTGTRAVTCEALGLTGLMQPFDLEVFYGERVAVLGSNGSGKSHFLRLLAGDDVAHSGRWRLGARVVPGHFAQTHAHPELAGRTLVEILWADHARDRGAAMAALRRYELHGTADRPFDRLSGGQQARFQILQLELGGCTALLLDEPTDNLDLASAEALQEGLEAFEGTVLAVTHDRWFARGFDRFLVFGADGQVRETPEPVWDEDRVERVRWPPVSRTHPSVVGMKSARQRAVATADFMPTTLAGGGMAAWRRAAAGAGQGQGVVAVTSASRAPAASRTCTPSPGETSSAARTTAPSPRCTTA				NA	NA	NA	NA	NA
AK001_01708	1347	xseA	COG1570	Exodeoxyribonuclease 7 large subunit	GTGTGGAGGGTCGGTGACGGACGGCCCGACCCGTCGCGGTCGCTGTGGGTGCCGTGGGGCATGCTGGGTGCCGTGACCGACGCGACCGGACCCGACACACCTGGCCACGACGTCCAGCCGCTGCCCGAGCGGGCCGCCGAGACGACGGCCGAGCGCCCCTGGCCGGTACGCCTGCTGTCGAGCAAGATCCGCGACTACGTCGCCCGCATGTCGCCGGTGTGGGTCGAGGGTCAGGTCATCGAGCACACGTACCGCCGCACCTCGGGGATGCAGTTCCTCACGCTGCGCGACACCGACGTCGAGGCCTCCCTGCCGGTGAACATGCTCACCCGCGCCTTCGACGGCCTGGACGCGCGGCCCGAGGTGGGCGACCACGTCGTGGTGCACGCCAAGCCGGAGTTCTGGATCAAGGCGGGTCGGATGTCGCTCCGAGCAGCGGCCATCCGGCAGGTCGGCGTGGGCGAGCTGCTCGCCCGGATCGAGCAGCTGCGCCGCGTGCTGGCCGCCGAGGGGCTGTTCGACGTCGGTCGCAAGCGTCCCCTGCCGTTCCTGCCGGCCGTCGTCGGCCTGGTCTGCGGACGGGAGTCGAAGGCCGAGCACGACGTCGTGGTCAACGCCCGCGCCCGCTGGCCCCAGGTGCGCTTCGAGATCCGCGAGGTCGCCGTCCAGGGCGTCAACGCGGTGGCGGAGGTCTCGCAGGCGGTCTCCGAGCTGGACGCCGACCCGTCCGTCGAGGTGATCGTCCTGGCCCGTGGGGGCGGCTCCGTCGAGGACCTGCTGCCGTTCAGCAACGAGGCGCTCGTGCGCCGCGTCTCCGCGTGCACGACGCCGGTGGTCAGCGCGATCGGCCACGAGACCGACACCCCCCTCGTGGACCTGGTGGCCGACCACCGGGCGTCGACCCCGACCGACGCCGCCAAGTGCGTCGTGCCCGACGTCGCCGAGGAACGGCAGCGGGTCGTCCAGGCGCGCCAGCGCATGCGCGGCGCCGTCCAGGGGCTGCTGCAGCGCGAGCAGCACGGACTCGACGCCGTGCGCTCGCGCCCGGTGCTCGCCCGCCCGGAGACGATGGTCGAGGGCCGCGAGGCGCAGGTCGCCGAGCGGCTGCGGCACGCCCGACACCTGCTGCAGGCGGCGCTGCTGACGGCGTCCGGCGACGTCGGCCGGCTCGCGGCGCAGGTGCGGGCGCTGTCCCCCGCCTCGACGCTCGAGCGGGGCTACGCCGTCGTGCAGCGCGGCGACGGTGCGGTGGTGCGGGCCGCGGACGAGGTCTCCCCCGGCGACGGCGTGCACGTGCGGCTGGCCGCCGGCGCCCTGGACGCCGAGGTCACCGCGACCACCCCCTGA	MWRVGDGRPDPSRSLWVPWGMLGAVTDATGPDTPGHDVQPLPERAAETTAERPWPVRLLSSKIRDYVARMSPVWVEGQVIEHTYRRTSGMQFLTLRDTDVEASLPVNMLTRAFDGLDARPEVGDHVVVHAKPEFWIKAGRMSLRAAAIRQVGVGELLARIEQLRRVLAAEGLFDVGRKRPLPFLPAVVGLVCGRESKAEHDVVVNARARWPQVRFEIREVAVQGVNAVAEVSQAVSELDADPSVEVIVLARGGGSVEDLLPFSNEALVRRVSACTTPVVSAIGHETDTPLVDLVADHRASTPTDAAKCVVPDVAEERQRVVQARQRMRGAVQGLLQREQHGLDAVRSRPVLARPETMVEGREAQVAERLRHARHLLQAALLTASGDVGRLAAQVRALSPASTLERGYAVVQRGDGAVVRAADEVSPGDGVHVRLAAGALDAEVTATTP				NA	NA	NA	NA	NA
AK001_01709	1005	ispH2	COG0761	4-hydroxy-3-methylbut-2-enyl diphosphate reductase 2	GTGACTGCGACCGCACCGGCCCCCGTCCGACCGACCCCGACCAAGCGCGTGCTGCTCGCGGCGCCGCGCGGCTACTGCGCCGGCGTCGACCGCGCCGTGGTCGCCGTCGAGAAGGCGCTGGAGAACTACGGCGCCCCCGTGTACGTCCGCAAGGAGATCGTGCACAACAAGCACGTGGTGGAGACGCTGAGCGAACGCGGAGCGATCTTCGTCGAGGAGGCCGACGAGGTCCCGCGCGGGGCGCGCGTCGTCTTCTCCGCCCACGGTGTCTCCCCGGCCGTGCGCGAGTCCGCCGCCTCGCGGGACCTGCAGACCATCGACGCCACCTGCCCGCTGGTGACCAAGGTGCACAAGGAGGCGGTGCGGTTCGCCAAGGCGGACAAGACGATCCTGCTCATCGGCCACGACGGCCACGAGGAGGTCGAGGGCACCGCCGGCGAGGCGCCGGAGCACACCATCGTGGTGAACTCGCCCGAGGAGGCGGACGTCGTCGAGGTCCCGGACCCCGACAACGTGGTGTGGCTGTCCCAGACGACGCTGTCCGTCGACGAGACGATGGAGACGGTGCGCCGCCTGCGCGAGCGGTTCCCGCACCTGGCCGACCCGCCCAGCGACGACATCTGCTACGCGACCCAGAACCGCCAGGTGGCGGTCAAGAAGCTCTCCCCGGAGTGCGACCTGGTCATCGTGGTGGGGTCGGCGAACTCGTCGAACTCCGTGCGGCTGGTCGAGGTCGCCCTCGACGCCGGCGCGACGACGGCCTACCGGGTGGACCGCGCCACCGAGATCCAGGACGCCTGGTTTGAGGGCGTGAGCACCGTCGGCGTGACGTCCGGGGCGTCCGTGCCGGAGATCCTCGTCGACGACGTGCTGCGCCAGCTCGACGAGCGGGGCTACGGCGAGGCGGAGGAGGTGCGCACCGCGACCGAGGACCTGGTGTTCTCGCTGCCGCGTGAGCTGCGTCCGCCGCGCGACGCCCGCCAGCTCCCGATCCAGCCGGCCTGA	MTATAPAPVRPTPTKRVLLAAPRGYCAGVDRAVVAVEKALENYGAPVYVRKEIVHNKHVVETLSERGAIFVEEADEVPRGARVVFSAHGVSPAVRESAASRDLQTIDATCPLVTKVHKEAVRFAKADKTILLIGHDGHEEVEGTAGEAPEHTIVVNSPEEADVVEVPDPDNVVWLSQTTLSVDETMETVRRLRERFPHLADPPSDDICYATQNRQVAVKKLSPECDLVIVVGSANSSNSVRLVEVALDAGATTAYRVDRATEIQDAWFEGVSTVGVTSGASVPEILVDDVLRQLDERGYGEAEEVRTATEDLVFSLPRELRPPRDARQLPIQPA	PGPT0007615_387	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527	NA	NA
AK001_01710	1533			hypothetical protein	ATGGAGACGACGACCGCCCTGCTGCTCTCGCTCGGCACCCTGGCCGTGGGGGTGCTCCTCGGCTGGCTCTGGCACGCGCTGCGCACCACGGGCCGGCACCGGTCCCAGGAGATGGAGTCGGTACGCCTGCACAGCGAGCTCGAGTCGGTCCGCCGCGAGAGCGCCCACCTGCGTGAGCAGGTCGAGGCCGCCCGGGACGACGGCGACCGCCGGGTCGCGGAGGCCCAGGAGCGCCACCAGCGCGAGACGAACGCGGTGCGCGAGCAGGCCGACCGGCAGCTCGCCGAGGTCAAGGGCGACCAGGAGCGCATGGCCCAGCAGTTCCGCTCCCTGGCCGGTGAGGCGCTGTCCTCGTCCAACAAGCAGTTCCTGGAGCTGGCCGAGCAGCGGCTCAAGCAGTCCACGGTCCGCCACGACGAGACGCTCGCCCAGCGCGAGGAGGCGTTCAAGGCACTCGTCGACCCCATCGGGAAGAGCCTGGAGAAGGTCCGCACGGAGGTCGCCGAGCAGGAGAAGCGGCGCATCGAGTTCGACTCCCGCCTCACCGAGAACATGCGCAGCCTGGCCGACGTCTCCGGCGAGCTGCGCAAGGGCACGAGCGACCTGGTCACCGCGCTGCGGTCCTCCCAGGAGCGGGGCGCCTGGGGCGAGCTGCAGCTGCAGCGGGTCGTCGAGGCGGCGGGCATGATCGAGCAGGTCGACTTCGACGTCCAGGTGCACGCCACCAACGACGACGGCGAGACCCTGCGCCCGGACCTCGTGGTGAACCTCGCCGGCGGCAAGCACATCGTCGTCGACTCCAAGGTGGCCTTCCTCGGCTACCTGGAGGCCCAGCAGTCCGAGGACCCGGCGGTCCGCGACCAGCGGCTCGCGGCGCACGTGCGGCACATGCGCAAGCACGTCGACGACCTGGCGTCCAAGCGGTACTGGGACCTGTTCGACAACGCCCCGGAGTTCGTCGTCATGTTCGTGCCCGCCGAGTCGTTCCTGTCGGCGGCCCTCGAGCGGGACCCGGCCCTCATGGAGGACGCGGCCCGCAAGAACGTCATCCTGGCCAGCCCGGTGACGCTGCTGGCGCTGCTGCGCACGGTGGCCTACTCGTGGCGGCAGCAGGCCCTCGCGGACAACGCCCAGCGGGTGCTCAAGGTCGGCAAGGAGCTGCACTCGCGGCTGGTGACCATGACCGACCACGTCACCAAGATGGGCAAGTCGCTGGACGGGGCCACGAAGAACTACAACAAGATGATCGGTTCGCTCGAGCGCAACGTGCTCACCTCGGCGCGCCGCATGGTCGAGCTCGACGTGGTCGACGCCAAGGACGAGATCGACGAGATGAAGGGCCTCGAGGAGACCACCCGCCCCATCACCAAGCCCGAGCTGCTGGCCGCCGACGAGGGCGGGGTGGTCGGGATCGGCCAGGTGAGCATCGACGACGACCGGTCCGCGGTGGAGACGCTGGTCGACTCCGACCGGCGTGCGCTGCAGCGCGCCCAGGAGACGTCGACGCAGGACGACGAGTTCGCCGCGGGCTGA	METTTALLLSLGTLAVGVLLGWLWHALRTTGRHRSQEMESVRLHSELESVRRESAHLREQVEAARDDGDRRVAEAQERHQRETNAVREQADRQLAEVKGDQERMAQQFRSLAGEALSSSNKQFLELAEQRLKQSTVRHDETLAQREEAFKALVDPIGKSLEKVRTEVAEQEKRRIEFDSRLTENMRSLADVSGELRKGTSDLVTALRSSQERGAWGELQLQRVVEAAGMIEQVDFDVQVHATNDDGETLRPDLVVNLAGGKHIVVDSKVAFLGYLEAQQSEDPAVRDQRLAAHVRHMRKHVDDLASKRYWDLFDNAPEFVVMFVPAESFLSAALERDPALMEDAARKNVILASPVTLLALLRTVAYSWRQQALADNAQRVLKVGKELHSRLVTMTDHVTKMGKSLDGATKNYNKMIGSLERNVLTSARRMVELDVVDAKDEIDEMKGLEETTRPITKPELLAADEGGVVGIGQVSIDDDRSAVETLVDSDRRALQRAQETSTQDDEFAAG				NA	NA	NA	NA	NA
AK001_01711	795	natA	COG4555	ABC transporter ATP-binding protein NatA	GTGACGCACCCCACCGCCCCGCCGGACCCGGCGGCAGCCCTCAGCCTGCGCGGCCTGTGGAGACGCTTCGGGGACAAGATCGCCGTCAGCGGCGTCGACCTGGACGTGCCGGCCGGCTCGTTCTTCGGGCTCGTGGGCCCCAACGGTGCCGGCAAGACGACGGCGCTGTCGATGGCCACCGGCCTGCTGCGGCCGGACTTCGGCACGGTGCACGTGCTCGGCACCGACCTGTGGGCCCGGCCGGACGAGGCCAAGCCGCTCCTCGGCGTCCTGCCGGACGGCGTGCGGTTGTTCGACCGGCTGACCGGGGCCCAGCTGCTCACCTACTCCGGCCTGCTGCGCGGCCTCGACCGCGACACGGTGGCCCGGCGCGGCGAGGACCTGCTGCGCGCGATGGACCTGCTCGCGGACCGCGACACGCTCGTGGTCGACTACTCGGCCGGCATGACCAAGAAGATCGCGCTGGCCGGGGCGATGATCCACGCGCCGCGGGTGCTCGTGCTCGACGAGCCCTTCGAGGCCGTCGACCCCGTCAGCGCCGCCAACATCCGCGCCATCCTGCAGCGCTACGTGGACGGCGGCGGCACCGTCGTCGTCTCGAGCCACGTGATGGACCTCGTGCAGCGCATGTGCTCGCACGTCGCGATCATCGCCGGCGGGCACGTCCTCGACGCCGGGACCGTCGACGCGGTGCGCGGCGGACAGAGCCTGGAGGACCGGTTCGTCGCCCTGGTCGGCGGCCGCCAGGAGTCGGGAGGGCTGGAGTGGTTGCGCACCTCGTCCGACTCAAGCTGA	MTHPTAPPDPAAALSLRGLWRRFGDKIAVSGVDLDVPAGSFFGLVGPNGAGKTTALSMATGLLRPDFGTVHVLGTDLWARPDEAKPLLGVLPDGVRLFDRLTGAQLLTYSGLLRGLDRDTVARRGEDLLRAMDLLADRDTLVVDYSAGMTKKIALAGAMIHAPRVLVLDEPFEAVDPVSAANIRAILQRYVDGGGTVVVSSHVMDLVQRMCSHVAIIAGGHVLDAGTVDAVRGGQSLEDRFVALVGGRQESGGLEWLRTSSDSS	PGPT0006725_20487	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_01712	1623			hypothetical protein	GTGGTTGCGCACCTCGTCCGACTCAAGCTGACGCTCCTGGGCAACACGCTGCGCCGCAGCGTCTGGCAGGCGGTCGGGCTCGTCGTGGCGACGCTGTACGGGCTGTCGGTGGTGACGCTCGCGGTGACGGCCGCGGTCGCCGGTGGCCTGGCCGACCCGGTCGTGACCGGCCAGGTCCTCACCGTGGCGGGGTCCGCCGTCGTGGTGGCCTGGTGGGTCGTGCCGCTGTTCGCCTTCGGCCTGGACTCCACGCTCGACCCCCAGCGGTTCGCGCCCCTGGCCGTCCCGCGCCGTCGGCTCCTGGCCGGCCTGGCCGTCGCCGCGCTGGTCTCCGTACCGGCACTGGTCACGCTGCTCGGCGCCGTCGGCGTCGCCTTCGCCTGGGTGACCGACCCGGCCGCCCTGGCCGCGGCGCTCGTGGGCGCCGCGGTGGCGGTGGCGCTGTGCGTGCTCGGCGCGCGGGCCGTCACGACGCTGCTCGCCCCGCTCCTGGACTCGCGACGTCACCGCGAGGTGCTCATGGTCGCCGCCGTCGTGCCGCTGCTCGCGGTCGGACCGTTCTTCGTCTGGGTCACGTCGCCGACGCGGTCCGAGGGCGAGGGCGGGAGCGTGACCATGACCGTGTCCGGACCGGGCGACCTGGTCCCCGCGATCGTCGCACCGGCGGCCGAGCTCCTGGCCTGGACCCCGCTGGGAGCCCCGTGGGCGCTGCCGGGGGCCGTGCACGACGGCGCCTGGGGGCTGGCCGCGGCACGGCTCGGGATCGCGGTCGGGGCCCTGGTCCTGCTCGTGGTCGTCTGGGACCGCGCCCTGGCCCGGGCGCTGGTCGGCCCGCGCGGCGGCAGCGCGGGCGGGACCGCGCGAGGGCTGGGCTGGTTCGGTCGCCTGCCCGCCACGCCGACGGGTGCGGTGGCGGCGCGGTGCGCCACGTACTGGGTGCGCGACCCCCGGTACGCCACCACGCTGGCACTGGTGCCGCTGCTCCCCGCCGTCGCCGTCGTGCTCGGGTGGACCACCGGCGCCGGGGCCGGGCTGCTGCTGCTCGCGGCCCCGGTCGTGGCGTTCCTGCTGGGCTTCGCCGTGTCCGACGACGTCGGCTACGACAGCACGGCCTTCGCGCTGCACGTGGCCTCCGGCGTGCCGGGCCGTGCCGACCGGTGGGGTCGCGCCCTGCCCGTGCTGGTGGTGGGCGTCCCGCTGGTCGTCGCGCTCGCCGTCGTCGGCGCCGCCGTGGCGGACCGCTGGGCCGCCCTGCCGGCCGTGCTCGGGCTGGCGCTCGGCGTGCTGGGGGCGGCGCTGGGGACGTCGAGCGTGGCGTCGGCCCGGCTGGTGTACCCGGTGCCCAGGCCGGGACAGAGCGCCTTCTCCACGCCCCAGGGCGCGACGACGGCGACGATGGTGGCGCAGATGGCCGCGTTCGCCGTCATCGCGGCGCTGACGCTGCCGACGACGGCGCTGGCCGGCGCGGCGGTGCTCCTGGCGAGCGTGCCGCTGTCCCTGGCCGCGGCCGGGGTGGGGCTCGCGACCGCGACGGTCGCCGTCGTGGTCGGTGTGCGGTGGGGCGCCCGCGTGTACGAGCGACGCCTGCCGGAGCTGCTCGCGCAGGTCAGGTCGTTCTCCTGA	MVAHLVRLKLTLLGNTLRRSVWQAVGLVVATLYGLSVVTLAVTAAVAGGLADPVVTGQVLTVAGSAVVVAWWVVPLFAFGLDSTLDPQRFAPLAVPRRRLLAGLAVAALVSVPALVTLLGAVGVAFAWVTDPAALAAALVGAAVAVALCVLGARAVTTLLAPLLDSRRHREVLMVAAVVPLLAVGPFFVWVTSPTRSEGEGGSVTMTVSGPGDLVPAIVAPAAELLAWTPLGAPWALPGAVHDGAWGLAAARLGIAVGALVLLVVVWDRALARALVGPRGGSAGGTARGLGWFGRLPATPTGAVAARCATYWVRDPRYATTLALVPLLPAVAVVLGWTTGAGAGLLLLAAPVVAFLLGFAVSDDVGYDSTAFALHVASGVPGRADRWGRALPVLVVGVPLVVALAVVGAAVADRWAALPAVLGLALGVLGAALGTSSVASARLVYPVPRPGQSAFSTPQGATTATMVAQMAAFAVIAALTLPTTALAGAAVLLASVPLSLAAAGVGLATATVAVVVGVRWGARVYERRLPELLAQVRSFS	PGPT0006730_1139	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_01713	1053			hypothetical protein	GTGAATCCCGAGAACGACCGACCTTCCGTGCCGCTGCCCGAGGGCTGGACGGTGGTGGTTCCCGACCTTGCCGACGTGCCCCGGCTGGGCGCGCTGCGGGCGCGCCAGGCGGCTCCGCACACCGGTTCCGACACCCCCGACACGGCTCAGATCGAGAACGAGATCGCCGGCGCCGCCTCGTGGACCCGGCGGCACCTCGCGGTCAAGGACGCCGACGGCGAGCTCCGCGCCTGGGCCCACGCGCACGACCGGGCGGCGGGCCGGACCGTGCTCGGCATCGAGATCGACCGGTCGCTGCCCCGCGAGACCCAGGACCGGCTGGCGGCCTGGTGCTACGACGAGCTCGCCGCCGTCGGGCGGGAGATGGCCCAGCTGCGCGGCGAGTCCGCGACGCAGCTCGACGCCGGTGCCTTCGCCGGGGACGAGCGGCTGCGCGGCTGGCTCGCCGACGCCGGGTTCACCCACGTGCGCACGTGGTGGCAGATGACGCGCCCGGTCACGCCGGACGAGGCCGAGCCCGGGGTCTTCCCCGAGCCGAAGCCGGGGGTGGAGATCCGCCGGGTCGCGCAGCACGAGAACGGTATGCCGGTCGCCGAGGACCTCAACGCCGTGCACCAGGTGCTCGAGACCGCCTTCACGGACCACTTCAACTCCTACCAGGAGTACTTCACCGAGTTCGTGCAGCGGCTGCGCGAGGACCCGGGCCACCGCTGGGACCACTGGTGGCTCGCCTGCGCCGACGACCCGGAGGACCCCGACGCCGACCCGTTCCCGGCCGGTGCCCTGGTGGGCTCGGAGCTGCCCCCCGACGCCTCCGGGGTGCGCGGGACCTACATCGACTACATCGGCGCGCTGGCCGAGGCTCGCGGCCGCGGGGTGGCCACCGCCCTGCTGCACGCCGTCATCGCCGACGCCGCCTCCCGGGGCCGCAACCGCGTGGGCCTCGAGGTGGACGCCGACAGCCCCACGGGTGCCGAGTCGCTGTACACGAAGCTGGGGTGGCGCACGAAGTACGTCACCGAGTCCTGGCACCGCGAGATCACCGTCGACTGA	MNPENDRPSVPLPEGWTVVVPDLADVPRLGALRARQAAPHTGSDTPDTAQIENEIAGAASWTRRHLAVKDADGELRAWAHAHDRAAGRTVLGIEIDRSLPRETQDRLAAWCYDELAAVGREMAQLRGESATQLDAGAFAGDERLRGWLADAGFTHVRTWWQMTRPVTPDEAEPGVFPEPKPGVEIRRVAQHENGMPVAEDLNAVHQVLETAFTDHFNSYQEYFTEFVQRLREDPGHRWDHWWLACADDPEDPDADPFPAGALVGSELPPDASGVRGTYIDYIGALAEARGRGVATALLHAVIADAASRGRNRVGLEVDADSPTGAESLYTKLGWRTKYVTESWHREITVD				NA	NA	NA	NA	NA
AK001_01714	1086	ychF	COG0012	Ribosome-binding ATPase YchF	GTGGCTCTCACTATCGGCATCGTCGGCCTGCCCAACGTCGGCAAGTCCACGCTCTTCAACGCACTGACCCGGAACTCCGCGCTCGCGGCGAACTACCCGTTCGCGACGATCGAGCCCAACGTCGGAGTGGTCCCGCTGCCGGACGAGCGGCTGGGCAAGCTCGCGGAGATCTTCTCCTCGGAGCGCGTGCTGCCGGCCACGGTGTCGTTCGTGGACATCGCCGGCATCGTCAAGGGCGCCTCGGAGGGCGAGGGGCTGGGCAACCAGTTCCTGGCCAACATCCGCGAGGCCGACGCCATCTGCCAGGTGACCCGCGCGTTCGACGACGGCGACGTGATCCGCGTCGAGGGGTCCACCGACGCCTCCGGCGACATCGAGACCATCTCCACCGAGCTCATCCTGGCCGACCTCCAGACGCTCGAGAAGGCGCTGCCGCGCATGGAGAAGGAGGTCAAGATCAAGAAGGGCGACCCCGTCCTGTTCGCCGCGGCGAAGAAGGCCCAGGAGATCCTCGAGGAGGGCACCACGCTCTTCCAGGGGGCGGCCGCCGCCGGCCTCGACCTCGCCGAGGTGGCCCCGCTGCAGCTCATGACGGCCAAGCCGTTCATCTACGTCTTCAACACCGACGACGGCGGGCTGGCGGACGAGGCCATGCAGGCGAAGATGCGCGAGCTCGTCGCCCCGGCCGAGGCGATCTTCCTGGACGCCAAGTTCGAGGCCGAGCTCGTCGAGCTCGAGCCGGACGAGGCCGCGGAGATGCTCGCCGAGACGGGCCAGGAGGAGTCCGGCCTGGACCAGCTCGCCCACGTCGGCTTCGACACGCTGGGTCTGCAGACGTACCTCACCGCCGGCCCCAAGGAGGCCCGCGCGTGGACGATCCGGAAGGGCTGGACCGCACCGCAGGCGGCCGGCGTCATCCACACCGACTTCGAGCGCGGCTTCATCAAGGCCGAGGTCATCTCCTTCGAGGACCTCGTCGAGGCCGGGTCCGTCGCCGCCGTCAAGGCCGCGGGCAAGGCGCGCGTCGAGGGCAAGGACTACGTCATGCGCGACGGCGACGTCGTGGAGTTCCGCTTCAACGTCTAG	MALTIGIVGLPNVGKSTLFNALTRNSALAANYPFATIEPNVGVVPLPDERLGKLAEIFSSERVLPATVSFVDIAGIVKGASEGEGLGNQFLANIREADAICQVTRAFDDGDVIRVEGSTDASGDIETISTELILADLQTLEKALPRMEKEVKIKKGDPVLFAAAKKAQEILEEGTTLFQGAAAAGLDLAEVAPLQLMTAKPFIYVFNTDDGGLADEAMQAKMRELVAPAEAIFLDAKFEAELVELEPDEAAEMLAETGQEESGLDQLAHVGFDTLGLQTYLTAGPKEARAWTIRKGWTAPQAAGVIHTDFERGFIKAEVISFEDLVEAGSVAAVKAAGKARVEGKDYVMRDGDVVEFRFNV				NA	NA	NA	NA	NA
AK001_01715	207	secE2	COG3360	Calcium dodecin	ATGAGCGTGTACCGGGTGATCGACGTGATCGGGACGAGCTCCTCCTCCTGGGAGGAAGCGGCGGCAGAGGCCATCAGGACCGCGAAGGGATCGCTGCGCGACATCAGAGTGGCTGAGGTGACCCAGCAGGACGTCGTCGTGGGAGATGACGGGGAACTGGTCTACCGGACCAGGCTCCAGCTGTCCTTCAAGTACGAGTCGGAGTAG	MSVYRVIDVIGTSSSSWEEAAAEAIRTAKGSLRDIRVAEVTQQDVVVGDDGELVYRTRLQLSFKYESE				NA	NA	NA	NA	NA
AK001_01716	1437	dap_1		D-aminopeptidase	ATGTCGGCAGGGACAGCGATCGACCTCGACGCGGAGGTCGAGGCGATCCGTCACCGCCGAGCGGCGGTCGGGATCGCCCTCGGCATGGTGGAGGACGGCGTGACGACACAGGTCGCGACGAGCGGCCTCGCCGACCTGGCCACCGGATCCACCGTCTCGGCCGACACCGCCTTCCGCGTCGCGTCGATCACCAAGACGTTCACCGGCGTCGCCGTCATGCAGCTCGTCGAGCGTGGCCTCGTCGACCTCGACGCCCCGGCGAACGACTACCTGCGGGGCTACCGGCTCGAGCCGCCGGCGCCGACGGACCGGCCGGTCACGGTGCGGCAGCTGCTGACCCACACCGCCGGGCTCCCCGAGACACTCTCGCTGCGTCACGCCGTCCGCCCCGACTTCGGGGAGAGCACACCGGCCGACGTCCCCGCGCCGTCCCTGCGCGACTACTACGGAGGTGTTCTGCACGAGGTGGCCGAGCCCGGGAAGCGGTTCTGCTACACGAACCACGGGCCGGCGACCCTCGGCCAGATCGTCGAGGACGTCACCGGTTCCTCGCTGGCCGACCACCTCGCGGTGCACGTCTTCGCGCCGTGGGGCATGACCAGCACGGACCTCGACCAGTCCCGCCCCGGGGACCCGCGTCGCGCCACCGGCTACCGGCTGACGGCACGGGGGCCCCGCCCGGTGCCGGTGACGAACATGGCCACCGTCGGCGCGGCAGCCGCCTGGTCGACGCCGGTCGACATGCTGCGGTACGCCGAGGCGCTGGTCGGCGGCGGGGCGAACAGGCACGGCCGCGCGCTGGCGCCCACGACTGTCGCGGACATGGTCGCGCCGCACTACCAGCCCGACCCGCGGATCCCCGGGATGGGCCTCGCGTTCTTCCGCGGGCGCCTGGGCGACCACCCGACCGCCGAGCACCAGGGGATCATCCCCGGCTTCGACTCCGCCCTGGTCCTCGCCCCGGACTCACGGACCGCCGTCTTCGTGGTGGTGACCGGAGCGCGACTGGGCATGTTCTGGGTCCCCGACGAGGCCAACAGGCTGGTGCGCAGGCTCCTGGGCCTTCCGCCCGCCACGGCGCGGACCGACGTGGCGCAACGACCCGAGGTCTGGGACCGGGTCTGCGGCACCTACACGCTCCCCAGCACCCTCAGCGACCTGCGCCTGCGTTCGATCGTCGGCGCCGGGATCCAGGTGCTCGTCCGCCGGGGCCGCCTCGTGCTGCGGTGCCTCCACCCCGTCCCGTTCCTCTACCGCGGCGTCGAGCTGGTCCCCGACGACCCGGCGGACCCCTTCTCCTTCGCCATCGACCTGACGGCCGCCGGGCTCTCCCCCATCCGGGTCGTCTTCGCCCCCGATCCCGAGTCGGGCCGGACGGCGATGCACCTGGAGGTCATGCCGCTGACGGCGTACCGGCGTGGACGTGCCGCGACGTGA	MSAGTAIDLDAEVEAIRHRRAAVGIALGMVEDGVTTQVATSGLADLATGSTVSADTAFRVASITKTFTGVAVMQLVERGLVDLDAPANDYLRGYRLEPPAPTDRPVTVRQLLTHTAGLPETLSLRHAVRPDFGESTPADVPAPSLRDYYGGVLHEVAEPGKRFCYTNHGPATLGQIVEDVTGSSLADHLAVHVFAPWGMTSTDLDQSRPGDPRRATGYRLTARGPRPVPVTNMATVGAAAAWSTPVDMLRYAEALVGGGANRHGRALAPTTVADMVAPHYQPDPRIPGMGLAFFRGRLGDHPTAEHQGIIPGFDSALVLAPDSRTAVFVVVTGARLGMFWVPDEANRLVRRLLGLPPATARTDVAQRPEVWDRVCGTYTLPSTLSDLRLRSIVGAGIQVLVRRGRLVLRCLHPVPFLYRGVELVPDDPADPFSFAIDLTAAGLSPIRVVFAPDPESGRTAMHLEVMPLTAYRRGRAAT				NA	NA	NA	NA	NA
AK001_01717	1845		COG0747	putative lipoprotein	GTGAAGATCAGGCGTGCAAGCGCGGCCGTCGCGGCCGTCGCCACCGGCGCTCTCCTGCTGTCGGCCTGCTCGAGCCCGGCGTCGGACGACCAGCCGGAGACCGAGGAGACCACGGCGGCCGAAGAGACCGCCGACACCGAAGAGATCACGGACTCGTGCAAGGTCGACACCGGTGTCACCGAGTCGGCCGACGGCGAGATCCAGTACTCGGCCGGTGAGGTGCAGTGGGCCGGTTACAACGGCAACCTGCCCGACACCTACTCGACGTACAACTCTGTCGTGAACGACCGCATGATCGGCGGCTTCATGTACTTCGGCGTCGACGGCACCGTCTGCCAGGACGAGGAGTATGGCTCGTTCGAGGCCGTGTCCGAGGACCCGCTGCAGGTGCAGTACACCCTCGCCGACGACGCGACGTGGTCCGACGGCACCCCGATCACCTACGCCGACTACCTGCTCGACTGGGCGACCCAGGCGGTCACGGTCGACGGCACGATCACCGAGGACGCCTCGGAGGAGCCGCTGTTCAACAACGTCAGCGGCCTGACCCTGGGCGACTACGTCCCCGAGGGCCCGCAGGCGGACTCGGCGGACGCCAAGTCGTTCCAGTACGACTACGAGCGCGTCTACGCCGACTGGCAGCTCAACGTCTCCGGGGCCTTCCCGGCGCACGTCGTGGCCGAGCAGGCCGGCGTCACCGTCGAGGAGCTCGTCACCGCCATCGAGGAGCTCGACATGTCGGTCCTCGAGCCGGCCGCCGAGTTCTGGAACACCGGCTGGCTGTCCTCGACGCCGGGCGAGCTGCCGGACCCGGCGCTGGTCCCGGTCTCCGGTCCGTACATGCTCAAGGAGGACGGCTGGATCGCCGGTCAGTCCATCACGCTGACCGAGAACGAGAACTACTGGGGCACCCCGCCCGCGACGAAGGAGCTCACCTTCCGCTTCGCGGCCGCGGACACCCACGTGCAGGCGCTGCAGAACGGTGACCTCGACGTCATCGAGCCGCAGGCCACGGTCGACACGATCCCGCAGCTCGAGCAGATCGGCTCGTCCGTCGAGGTCCTCACCGGTCAGACCCTGATCTGGGAGCACCTGGACTACAACTTCGGCGACAGCTCGGTCTTCGCCGACAACCTGGCCGCCCGCGAGGCCTTCGCCTACTGCGTGCCGCGTCAGAAGATCGTCGACGACCTGATCGCGCCGATCGACGAGAACGCGGTCGTCATGAACGCCCGCGAGGTCTTCCCGTACCAGACCGAGAAGTACGAGGAGGTCACGGCCGAGTCCTACGACGGCCGCTACGACGAGGTCGACCTGGAGATGGCCACGGAGAAGTTCGCCGAGGCCGGTCTCGAGGAGGGCACCGAGATCCGCATCGGTTACTCCGCGCCGAACCCGCGTCGTGCCGACGAGGTCGCCGCCATCAAGTCGTCCTGCGACCAGGTGGGCTTCAACATCGTCGACGCCGGTGACCCGGAGTTCTTCGCCGCCGGTGGTGCGCTGGAGACCGGTGACTGGGAGATCGCCCTGTTCGCCTGGGCCGGTTCCGGTCAGATCGCCTCCGGCCAGAACATCTACGCCTCCGGTCGCCCGCAGAACTTCGGCGGGTACTCCAACGAGACGGTCGACGAGGCCTGGGAAACCCTGGCCTCGACGGTCGACGAGTCCGTCCACCTGGAGCAGACCAAGGTGATCGAGTCCGAGCTGTGGGACACCCTGTACGGCATCCCGCTGTTCGCTCACCCGGGTGTCGTCGCGCACTCGGCCGACCTGGAGAACGTCCGCTTCACCGCGGCCCAGGACGGGATCGTCTGGAACGCCGAGCAGTGGTCTCGCGCCTCCTGA	MKIRRASAAVAAVATGALLLSACSSPASDDQPETEETTAAEETADTEEITDSCKVDTGVTESADGEIQYSAGEVQWAGYNGNLPDTYSTYNSVVNDRMIGGFMYFGVDGTVCQDEEYGSFEAVSEDPLQVQYTLADDATWSDGTPITYADYLLDWATQAVTVDGTITEDASEEPLFNNVSGLTLGDYVPEGPQADSADAKSFQYDYERVYADWQLNVSGAFPAHVVAEQAGVTVEELVTAIEELDMSVLEPAAEFWNTGWLSSTPGELPDPALVPVSGPYMLKEDGWIAGQSITLTENENYWGTPPATKELTFRFAAADTHVQALQNGDLDVIEPQATVDTIPQLEQIGSSVEVLTGQTLIWEHLDYNFGDSSVFADNLAAREAFAYCVPRQKIVDDLIAPIDENAVVMNAREVFPYQTEKYEEVTAESYDGRYDEVDLEMATEKFAEAGLEEGTEIRIGYSAPNPRRADEVAAIKSSCDQVGFNIVDAGDPEFFAAGGALETGDWEIALFAWAGSGQIASGQNIYASGRPQNFGGYSNETVDEAWETLASTVDESVHLEQTKVIESELWDTLYGIPLFAHPGVVAHSADLENVRFTAAQDGIVWNAEQWSRAS	PGPT0004430_1702	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035	NA	NA
AK001_01718	1518			hypothetical protein	GTGCTCAAGTTCATCCTTCGACGACTGGGGATCTCGTTCCTCGTGCTGTGGGCGGCGTCGCTGCTCATCTTCGTGCTGACGATCAACGCGGGCGACCCCCTGGCAGATCTGCGCGAGTCCAACGCCGAGAACCGCGAGAGCCTCATGGCCCTGCGCACCGAGCAGATGGGCCTCGACCTGCCGTGGTACGAGCGCTACTGGGAGTGGCTCTCCGGCGTCGGCGGCTGCTTCACCGGCAGCTGCGACCTGGGGACGACGGTCAACGGCGCCAACGTCCTCGACCTGACGGCGCAGGCCGCCGGCTCGACGCTCCGACTCGTGACGCTGGCGACCCTGCTGGCGATCGTCGTCGGCATCGCCGCGGGTATCGTCTCCGCGATCCGTCAGTACACCGGCTTCGACTACGGTGTCACGTTCCTCGCCTTCCTCTTCTTCTCGCTGCCTGTGTTCTGGGCGGCGGTGCTCCTCAAGGAGTACGGCGCGATCCGCTTCAACGACTGGATCGCCAGCGGCGACATGGAACCACCGATGATCCTCGGCTTCGCCCTGGTCGCGGCGGCGATCATCCCCGCCGTGCTGGGCGGCCCCTGGCGCCGACGCCTCTACACCGGGGCGGCCACCTTCACCTTCGTCGCCGTGCTGCTGTACGTGCTGAACGTGCTCGACTGGTACCGGAACCCCTTCTTCGGGCTCGCGATGGTGCTGCTCACCTCGCTGGGTGCGGCCGTGCTCGTCACCGCCCTCGTGGCCGGGCTGGGCAACCGACGGGTGCTCTACGCGGCGCTGACCACCGCCGTCGTCGGGACGCTCAGCTACCTGGTCTTCGCCGGGGTCCTGCTGGAGCCCACGTGGCTGCAGCTGATCGGCCTGTTCGTGCTGGCGATCGTCGTGTCGATCGCGATCGGCGCCGCCTGGGGCGGCTACGCCCGCAAGCAGGCGATGTTCATCTCCGCGGTCACCGGTGTCATCACCTCCGGGGTGATCGTCTTCGACATCCTGGTGGCGCACTGGGCCGGCTTCCTCGAGCTCAAGTCGCGGCCGATCTCCACGATCGGGTCGCAGACGCCGAACTTCAGCGGTGACTTCTGGGAGTCGGTGCTGGACTCCGGGATGCAGCTCATCCTGCCGACGATCGTGCTGACCCTGGTCTCGGTCGCCTCGTACTCCCGGTACACGCGGTCCTCGATGCTCGAGGTGATGAACCAGGACTACGTCCGCACGGCGCGCTCCAAGGGCCTGTCCGAGCGGGCGGTCATCACCAAGCACGCGTTCCGCAACGCCCTGATCCCGATCACCACGATCGTCGCCTTCGACTTCGCGGGCCTCATCGGCGGCGCGGTGATCACCGAGCGCGTCTTCGGCTGGAAGGGCATGGGCGCCATGTTCCAGGAGGGCCTGGACCGGGTCGACCCCGACCCGGTGATGGCCTTCTTCCTGGTCACGGGAACGGCGGCGGTGCTGATGAACATGCTCGCCGACATCGCCTACGCCTACCTCGACCCACGGATCCGGCGGTGA	MLKFILRRLGISFLVLWAASLLIFVLTINAGDPLADLRESNAENRESLMALRTEQMGLDLPWYERYWEWLSGVGGCFTGSCDLGTTVNGANVLDLTAQAAGSTLRLVTLATLLAIVVGIAAGIVSAIRQYTGFDYGVTFLAFLFFSLPVFWAAVLLKEYGAIRFNDWIASGDMEPPMILGFALVAAAIIPAVLGGPWRRRLYTGAATFTFVAVLLYVLNVLDWYRNPFFGLAMVLLTSLGAAVLVTALVAGLGNRRVLYAALTTAVVGTLSYLVFAGVLLEPTWLQLIGLFVLAIVVSIAIGAAWGGYARKQAMFISAVTGVITSGVIVFDILVAHWAGFLELKSRPISTIGSQTPNFSGDFWESVLDSGMQLILPTIVLTLVSVASYSRYTRSSMLEVMNQDYVRTARSKGLSERAVITKHAFRNALIPITTIVAFDFAGLIGGAVITERVFGWKGMGAMFQEGLDRVDPDPVMAFFLVTGTAAVLMNMLADIAYAYLDPRIRR	PGPT0004445_258	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033	NA	NA
AK001_01719	909			hypothetical protein	ATGACTGACCTGAAGAATCCGCCGGCCGAGGAGAAGTCCTACAGCCAGGGCCAGCTCGTGCGGATGCGGTTCTTCCGCCACAAGGGAGCCATCATCTCGATGGCGGTCATGGCGCTCGTGATCCTTGTCGCCTTCACCTCGATCGGCATCGGTCCGATCCCCGGCTGGTGGGACAAGGTGCCCGAGCTGCAGTACCCGAAGATCGGCGACGGCGCCCCCAGCTGGGAGCACCCGTTCGGTCAGGACACCGGCGGCAAGGACTACTTCGCCCTGGTGATGCTCGGGACCCAGAAGTCCCTCATCATCGCGTTCGGCGTGGGGATCATCTCCACCGTCATCGGCACGCTGGTCGGGGCCCTGGCCGGCTACTTCCGCGGCTGGGTCGAGGCCGTGCTCATGCGCATGACGGACCTGCTGCTCGTCATCCCGCTGCTCGTGCTCGCCGCGGTGCTGGGCAAGATGGCCAGCTCCTGGGGCATCTGGGGACTGACCCTCATGCTGGGCCTCGTCACCTGGACCGGTCTCGCCCGCCTGGTGCGCGGCGAGGTGCTGTCCCTGCGCGAGCGCGAGTTCGTCGTGGCGGCCTACGCCGTCGGCACGAGCAGCAGCCGGACGATCTTCAAGCACATCCTGCCCAACGCCATCGGGACGATCATCGTCTCGGCGACGCTGGCCATCTCGGCGGCGATCCTGCTCGAGACGGCGCTCAGCTTCCTCGGGTACGGCGTGCAGGCACCGGACACCTCGCTGGGCCTGCTGATCCAGCAGTACCAGACGGCGTTCACCACGCGTCCGTGGCTCTTCTGGTGGCCGGGGCTGATGATCCTCGCCATCGCCCTGAGCGTGAACTTCATCGGCGACGGTCTGCGCGACGCGTTCGACCCCCGCCAGAACAGGACCAAGGCCTGA	MTDLKNPPAEEKSYSQGQLVRMRFFRHKGAIISMAVMALVILVAFTSIGIGPIPGWWDKVPELQYPKIGDGAPSWEHPFGQDTGGKDYFALVMLGTQKSLIIAFGVGIISTVIGTLVGALAGYFRGWVEAVLMRMTDLLLVIPLLVLAAVLGKMASSWGIWGLTLMLGLVTWTGLARLVRGEVLSLREREFVVAAYAVGTSSSRTIFKHILPNAIGTIIVSATLAISAAILLETALSFLGYGVQAPDTSLGLLIQQYQTAFTTRPWLFWWPGLMILAIALSVNFIGDGLRDAFDPRQNRTKA	PGPT0004450_3225	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034	NA	NA
AK001_01720	1755	gsiA	COG1123	Glutathione import ATP-binding protein GsiA	ATGACCACCCTCGATCTCTCCTCCGCGCCGGACGCCACCACCCCCGGCGACGCCGTGCTGTCCTTCACCGACCTCGAGGTGACCTTCGGCACCGAGTTCGGCGACGTCCACGCCGTCAAGGGCATCTCCCTGGAGGTGCGTCCCGGTGAGGTCGTCGCCCTGGTGGGCGAGTCCGGGTCCGGCAAGTCCGTGACGTCGACGACGGCGCTCGGTCTGCTGCCGGGCAACGCCCGCGTCTCGGGACGGGTCCAGGTCGGCGACCAGGTCGTCGGCGACCTGGACCCGGCGGGGCTGCGCAAGATGCGCGGCAACGACATCGCCATGGTGTTCCAGGAGCCGATGACCGCGCTCAACCCGGTGCTCACCATCGGCGACCAGCTCACCGAGGCCCTGCAGCTGCACGGCATCGCCTTCGGCAAGCAGGCGATGGCCCGGGCCGCCGAGCTGCTCGACATGGTCGGTATCCCGGAGCCCGAGCGGCGCCTCAAGCAGTACCCGCACGAGCTGTCCGGCGGTCAGCGCCAGCGCGTCGTCATCGCCATGGCGATCTCCTGCGACCCCAAGGTGATCATCGCCGACGAGCCGACCACGGCCCTCGACGTCACCGTGCAGGCCGACATCCTCGACCTGCTGCGCTCGCTGAAGGACAAGCTCGACACCGGCATCCTGCTCATCACCCACAACATGGGCGTGGTGGCCGACATGGCCGACCGCGTCGCGGTGATGTTCAAGGGCGACCTCGTCGAGACCGGCAGCGCCGCCCAGGTGCTGACCGACCCGCAGCACGACTACACCAAGCGGCTGCTCAAGGCGGTGCCGCACCTCGGCGAGGGCCGGGGCCAGGACGACGCCGCGGTGGCCCGTTCGGTGGAGACCGAGCGTGCCGACGCCGAGACCCCGGCGCTCGAGCTGGACCAGCTGGTCATCGAGTACCACCGGCTCGGCAAGCCGCCGTTCCGCGCGGTCGACGACGTCTCCTTCACCGTCGGTGCGGGCGAGATCGTCGGACTGGTGGGCGAGTCCGGGTCGGGCAAGTCCACGATCGCCAAGTGCGCCCTCGGCCTCATCCCGGCGCGCTCGGGGTCGGTCCGGATCCTCGGCGAGGACTTCGGCGCGATGCGCAAGAAGCAGCTCAAGGACCTGCGCCGGCGCATCGGCGTCGTGTTCCAGGACCCGGCGGCCTCGATCAACCCGCGCTTCCCGGTGGGCGAGGCCATCAACGAGCCGCTGGCCGTGCACAAGATCGGCGACGCGGCCTCGCGGCAGAAGCGGGTCATGGAGCTGCTGGACGCCGTCGAGCTGCCCCGGTCGTACTACAACCGGTACCCGCACGAGCTGTCCGGTGGTCAGCGCCAGCGCGTCTCCATCGCGCGGGCGCTCACCCTCGAGCCGGAGCTCATGGTGGCCGACGAGCCGACGTCGGCCCTCGACGTGTCGGTCCAGGCCGCCGTGCTGGAGATGTTCCTGGACCTGCAGAGCGAGTTCGGGTTCGCGTGCCTGTTCGTCAGCCACGACCTGGCCGTCATCGACATGCTCGCCCACCAGGTGGTCGTCATGCAGGAGGGCCGCATCGTCGAGAAGGGGACCCGCGACCGCGTGCTGCGCTCCCCGCAGGAGGAGTACACCAAGCGACTCCTCGCCGCAGCACCCGTGCCGGACCCGACCGAGCAGAAGGAGCGTCGCGAGGAGCGGCACCGGCTGCTCGCCGAGTGGGGCGACGAGGTCTCCGAGATCCGCCTGCGCGAAGGGGCCTGA	MTTLDLSSAPDATTPGDAVLSFTDLEVTFGTEFGDVHAVKGISLEVRPGEVVALVGESGSGKSVTSTTALGLLPGNARVSGRVQVGDQVVGDLDPAGLRKMRGNDIAMVFQEPMTALNPVLTIGDQLTEALQLHGIAFGKQAMARAAELLDMVGIPEPERRLKQYPHELSGGQRQRVVIAMAISCDPKVIIADEPTTALDVTVQADILDLLRSLKDKLDTGILLITHNMGVVADMADRVAVMFKGDLVETGSAAQVLTDPQHDYTKRLLKAVPHLGEGRGQDDAAVARSVETERADAETPALELDQLVIEYHRLGKPPFRAVDDVSFTVGAGEIVGLVGESGSGKSTIAKCALGLIPARSGSVRILGEDFGAMRKKQLKDLRRRIGVVFQDPAASINPRFPVGEAINEPLAVHKIGDAASRQKRVMELLDAVELPRSYYNRYPHELSGGQRQRVSIARALTLEPELMVADEPTSALDVSVQAAVLEMFLDLQSEFGFACLFVSHDLAVIDMLAHQVVVMQEGRIVEKGTRDRVLRSPQEEYTKRLLAAAPVPDPTEQKERREERHRLLAEWGDEVSEIRLREGA	PGPT0004435_1837	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031	NA	NA
AK001_01721	2835			hypothetical protein	ATGCTGCGGTCCGCGTGGCGGCGTGCCGTCGCGCACCGCGGCCTGCTCGCGCTGGTCGCCCTGCTCGTCGCCGCGATCGCGGCGACGAGCGGGGTGACCGCGGGGGCGGTCGCCGCCACGACGACGGACGCCGCCCGCACGGCCCTCGGTGACGGCTCGACGGCGTCGCTGCAGGTGACCACGCGGGTCGCCGAGGACCCGGCGGCCCAGGACGCCCGGGTGCGCTCCACCGTCGCCGACCTGTTCGGCGACGCCCCGCTGCGCGTCGACCGCACCGAACGCCCCGACGGCGACGACACCCCGTTCGTGGAGTGGACGCTGACTCCTGTCGTGACGGAGGTCCTGCCCGCCGACCTCGCCGGGTTCGCCGCGGGCGGCGACGCCCTGCACGGTGTGCTGCGCGCCGACGACGCGGTGGCCGTCCGCGGCCTGACCGTCGAGGGCGACCTGGCGCAGCGCGCGGCCGCCGAGCAGGAGGCCCAGGCCGCTGCCCGGGCGGTCCTCACGGTGCCGGTCGCCCTGCTCGTCCTGGTGGCCCTGGTGGCGCTGGTGCAGGTCGCCCGGCTGCTGGCCCAGGCGCGGGAGCGCGAGACCGAGATCCTCGTCGCCCGCGGCGCCGACCCGGGCCGGCTGACGGCCGCTGCGCTCGGAGAGGCGGCGGCCGTGTGCCTGCTCGCCGCCGCAGCGGGTTCCGCGGCCGCCGCCGGTGCCCTGAGCGTCGCCGGCACCGCCTCGCCGGCTCCGACGGTGCTGGTCGCGGGGTGCCTGGCCACCGTGGTCGCCGGCACGACCGCGCTCACCGTCGTGGCCGGTTCCCGGGCACGCGCCGTCGCGCGCCGTCGGCTCGCCGACCGGTCGGGACGGCTGCAGCGCGCCGCGGCCGCCGGCACCGTCGCCGGTGTCGGGCTGCTCGCCGTCGCCGGCATGTGGCGTCTGCGCTCCCTCGGGTCGCCGCTGGTCGTGGCGGACGGCGCCACGACCTGGGACCCTCTCGCCGCCGCGGGGCCGGCGCTGGCGCTCGCCGCGCTGGGCCTGCTCGCGCTGGCGCTCCTGGGTCCGCTCACGCGGGCCGGAGCACGGCTCGCCGCGGGGGGTCGCGGTGCGACCGCCGTGCTGGCCGCACGCCAGGTCTCCCGAGGTCTGCGGGTCGCCGTCGTGCCGGTGGTGCTGCTGGTGCTCGCCGGGGGATCCGCCGTGCTGGCCGCGGCCTACGCGGGCACCGCCCCGCAGGCACGGGCCGACCTGGCCACCCAGCAGCTCGGCACCGACGTCCGGGCCGCCGACGGCGCCGGGGCACGGCTGGCGCCCGACCGACTCCCGGTCCGCACGGCACGGCTCGCGGACCTGGACGGGGCGGCGGGCGCCGTGCCGGTCCTGGCCCGGAGCGCGACGGTGCAGGGCGACCCGCTCGGGCTCGTCGCGATGCCGGCCGACGCCGCGCCGGGCGCGGTCCGTCCCGTCGAGGCCGCCGCGGCCGTCGCCCCGCTGCGCGGCACGGAGCCGTTCGCCGCCGCGCCCGTCCTGCCGTCCGGGACGACGGGGCTCACGATCGACCTGACGGGGACCGCCGTGGCCGACCCCGCAGCCCTGCCCCTCGGGACCCGCGACCGGTCCGAGCAGGCGCTGGACGTCGCCGTCACGGTGTGGCTCGTCGACGCGCACGGAGCCCTGGCCGTCGTGGACGCCGGCGTGCTGACCCTGACGGACGGACCCGCCGGAACCGAGCTGGTCGTCACCGTCCCCGCCACCCTCGCCGACGCCTCCGAGCTGCGGGTCGCGGCGCTCGAGCTGGACCTGCCCGGCGTCCTGGTGCCTACCGAGGTGTCCGTCGCGGTGACCGGACTCGACGCGGACGTCGAGGGCGCGCAGGTCCCCGTGGACGTCGCCGGGACCCGCTGGGCCGCCGCAGGGACCGCCCCGAGCTCCTCCGACGACGGCGCCCTCGGCGCCGACCTGACGCTCGGTTCCCGTGACGGGACCTGGCTGCGCCTGCTGGCCGCCGACGGACCGGGGGCGACGTCCCGCCCGGTGGTCCCGGCGGTGGTCACCGACGCGGCGGCGCAGCGCTGGGACGCCGCCGTGGGGGACGAGCTGGAGGCCACCGTGGCCGGTGCCGAGGTGGTCCTCCGGGTCGCCGCGACCACCGACGCGGTGCCCGGGGAGTCGACGGCCGAGTCCGCCTGGGTCGATCTCGGGACGCTGGACGCCGCGCTGCTCGCCACCACGGGGCAGCTGCCCCGGCCCGCCGAGGCGTGGGTCGCGGCGGACGATCCCGGCGACGCCGCCGCCGTCGACCGCCTGGCCGACGACGTGGCGCAGCTCCTCGGTCCGACGGACGCCACCGTCGCCGGCGGCGGCAGCCCCGGCGTCGTGGTCCGGACCGTCGCCGACGTCACCGCGTCCGACGCCGGGGCACCGGTCCGGCTCGCCGTCGTCCTCGCGGCCGCCGGGGCGACCGTGCTCGCCGTCCTCGGCCTCGCCGTCGTGGCCGTGACCACCCTGGCCGCGCGACGCGGCGAGGTCGCCGTGCTCCGCGCGCTGGGCGTGGGCCCCCGGCAGCAGGGCAGGGGGCGTGCCGGCGAGCTCGTCGTGCTCGGCGGCGTCGGTCTCGGCGCCGGCGTCCTGGCCGGGGCGGTCCTCGCGGCCGTCACCGTGCCCGGTCTCGCGCACGCCGTGGTGCGGGGCGGGACGACGCCGGACCTCGTGGTCGACGCCGGGGTGCTGGTCCCGCTGCTCCTGGCGGCCGTGGCCGGTGTGCTGCTGGTCGGCGCCGTGGTCGCCTCCCGGGTGGCCGCGCAGGCGCGCGACACGACCTACCGGGCGGAGGTGCGATGA	MLRSAWRRAVAHRGLLALVALLVAAIAATSGVTAGAVAATTTDAARTALGDGSTASLQVTTRVAEDPAAQDARVRSTVADLFGDAPLRVDRTERPDGDDTPFVEWTLTPVVTEVLPADLAGFAAGGDALHGVLRADDAVAVRGLTVEGDLAQRAAAEQEAQAAARAVLTVPVALLVLVALVALVQVARLLAQARERETEILVARGADPGRLTAAALGEAAAVCLLAAAAGSAAAAGALSVAGTASPAPTVLVAGCLATVVAGTTALTVVAGSRARAVARRRLADRSGRLQRAAAAGTVAGVGLLAVAGMWRLRSLGSPLVVADGATTWDPLAAAGPALALAALGLLALALLGPLTRAGARLAAGGRGATAVLAARQVSRGLRVAVVPVVLLVLAGGSAVLAAAYAGTAPQARADLATQQLGTDVRAADGAGARLAPDRLPVRTARLADLDGAAGAVPVLARSATVQGDPLGLVAMPADAAPGAVRPVEAAAAVAPLRGTEPFAAAPVLPSGTTGLTIDLTGTAVADPAALPLGTRDRSEQALDVAVTVWLVDAHGALAVVDAGVLTLTDGPAGTELVVTVPATLADASELRVAALELDLPGVLVPTEVSVAVTGLDADVEGAQVPVDVAGTRWAAAGTAPSSSDDGALGADLTLGSRDGTWLRLLAADGPGATSRPVVPAVVTDAAAQRWDAAVGDELEATVAGAEVVLRVAATTDAVPGESTAESAWVDLGTLDAALLATTGQLPRPAEAWVAADDPGDAAAVDRLADDVAQLLGPTDATVAGGGSPGVVVRTVADVTASDAGAPVRLAVVLAAAGATVLAVLGLAVVAVTTLAARRGEVAVLRALGVGPRQQGRGRAGELVVLGGVGLGAGVLAGAVLAAVTVPGLAHAVVRGGTTPDLVVDAGVLVPLLLAAVAGVLLVGAVVASRVAAQARDTTYRAEVR				NA	NA	NA	NA	NA
AK001_01722	2811			hypothetical protein	ATGAGCCTGATGCTCCTGGTGCGCCGGCACCTGCGCACCGCGGCCGGCGCCGTGCTGGCCCTGGCGGCGGTGACCGTCCTCGCCGCCGGCACCCTGTCCACGGTGCCGCGGGCGGTCGCCGCGGTGCACGCCGACCAGCTCGCGCACGTCACGGCGCAGACGTCCGCCCTGACGTCCGACGTCGTCGCCACGACGCCCGTCTTCCCCGGCTACGGCGAGGACTACGACGCCTACGGCGGCGTGCACCGCGAGGGTCCGGCCGACGGGGAGGTCGACCCGCCGGTGCCCGACCTCGACGGCTACCTCGCCGGGCTGCGCGACCTCGCCGCCGCGCGACCGGCCCCGCTGTCCGGCGTCCTCGGCGAGCCCGACCTGGTCGTCGCGGCGGACCGCACCGGGGTGGAGCGGGTCGAGGGCAACGACGTCGCCGCGCCGGGCATCGTGCTGCAGGCGGGCCCGTCGGCGTCGGCGCAGGTCCAGGTGGTCGAGGGGCGCTGGCCGGCCGCCACGCCCGTCCCCGCCGACCCGACGGCGATGCTGCCCGGGTCCGACGGCGTGGTGGAGTTCGAGCCCACCGCGATGGAGGTGGCGGTCTCGACCGCGGTCGCCGCCGAGCTCGACTGGGCCCTCGACTCGGTGCACGCCACCGACGAGCCGCTGCTGCCGCCGCTGCACGTCGTCGGCCTCTGGGAACCGCAGGACGCCGACGCCGACTACTGGGCGCACGTCCCGCGCACGACGACTCCAGAGATCGTGTTCGACCCCAACATCGGCAAGATCGTCACGGCGGGGGTCTTCGCCGACCCGGCCACGCTCGGCTCCTGGGTCCCCGCGCCGTCGGCGCGTGTCTGGTTCCCGGTCGACACCTCTGGCGTCGCCGCGCAGGACGCGCCGGCGCTGCTCGCCCAGCTGCGCGGCCTGACGGCCACGACCACCACCGTCGTCGACGGCGACAGCGCCGTGCTGGAACCGGCCACGGGGTTGCTCGACGTGCTGGAGACCGCGCTGGGCCAGCGCGCCGGCGTCGACGCGATCGTCACGGTGCTCGCCGTCGGACCGCTGGGCGCGCTGGCCGCCGTTCTCGTGCTCGCCGCGGGGCTGGTCGTCGACCGGCGCCGCGCGACGCTGGCGCTCGCACGGGCGCGGGGTGCGTCGATGACGTGGGTCCGCGGGGTGGTCGCGCTCGAGGGCCTGGTCGTCGGGCTGCCCGCGGCCGCGCTGGGGTTCGCGGCCGGGCTCGCCGTGGTGCCCGGGACCGTGACGTCCGTGCAGGTCGGCGCGGCGGTGCTGTGCGGGCTCGGCCCGGCGCTCGTGCTGGCCGCCGTGACCCCGGCCGCCGGGCTGCGGGCCGGCCGCGCGGACCTCGGGGCCGTCCCCGCCCGACGTCGGCACCTGCGCCTCGGGGTGGAGGCCGGCGTCGTCCTCGCCGCGGCCGGGACGTCGTGGCTCGCGGTGGACCGGGGCGTCGTCGCCGCGACGGGCTCCTCGACGGGCCCGACCGGCACCGGCAGCGGTGTCGACCCGCTCCTGGCCGTGGCCCCGCTGCTGGTCGGCGTCGCGGTCGCGCTGGTCACGTTCCGGCTCGTGCCGCCCGTGGCGCGCGCGGTGGAACGCCTCGCCGCACGGGGGTCGGGACTCGTGCCGTTCCTCGGGGCGGCGCGCGTGCGCCGGGACCCGGCCGGGGGTCCGCTGCCCGCGGTGGCGCTGGTGCTCGCCGTCGGTGTCGCCCTGTCGTCCGTGGTGCTGTCCGGCACGGTGCGCCAGGGCGTCACCGACGAGGCCTGGGCGGAGGTCGGGGGAGACCTGCGGGTGGCTGGTCCGGTCGTCGACGGCCCGACGGCCGACTCCCTGCGCGGGATCGACGGCGTGGCCGCGGTCGCGCCCGTCGCCGACGCCGGCCGGTTCGCGCTCGGCCGTGTCGGCAGCGGCAGTCCCGTGACCGCGTGGACCACCGACGCCGCCGAGCTCGCGCGGGTGCAGCAGGACGTGCCGGGAGCGCCGGACGGGCTGGACCGGCTCGCGGCCACCGACGACGGACGACTCCCCGTCGTCGCCGTCGGCTTTGCGGCCGGGCAGGTGACCGACGGACAGGTGCTGTCCGGGCCCGGGGGCGCTCGCACGGAGGTCGTCGTCGTGGACCGCGTCGACGCCCTGCCCGGCCTGCCGCCGTCGTCGGGCGCCCTGCTGGTCGACGCGACCGCGGCCGGGGACCGGGTGGGGATCGCACCGGGGACCGCGCGCCTCGCGCTGGTCGGCCTGACCGACGCCGCCGACGCCGAGGCTCCGGACCCCGCCCCGGTCGAGGCGGAGATCGGCGCGCTGCTGCCCACCGCCGTCGTCGACGACCCGCGCGAGGGCGAGCAGGCGCTGCTGTCCTCGCCGGCCGCCGCCGGTCTGGCGACGGCGTTCACCGTCGCCGTCGCGCTCTCGGCGCTGCTGTGCGTGGCGACCGTGACGCTGATGCTCGTCCTGGCCACGCCGGCCCGCACCCGCGTGCTGGCCGTGCTGCGCACCCTCGGCCTGCCCCGCCGGGCCGAGCGCGGGCTGGTGGCGTGGGAGGTCGGGCCCTGGGCGGTCGCCGCGCTGCTGGCGGGCGGCGTCGTGGGCGTGCTGGTGCCGGCGCTCGTGCTGGCGGTCGTCGACCTGACCCCGCTGACCGGGGGTGCGGCGTCGCCCGCGCTGGTGGTCGACCCCTGGGGGCCCGCGGCGCTCGCCGGGGGCCTGCTCGTCGCGGTGGTCGCCGGCACGCTGGTGGCCGGGTCGGTGGGGCGGCGCCGGGGTGCCGAGACGTGGCGGACGGTGACGGACTGA	MSLMLLVRRHLRTAAGAVLALAAVTVLAAGTLSTVPRAVAAVHADQLAHVTAQTSALTSDVVATTPVFPGYGEDYDAYGGVHREGPADGEVDPPVPDLDGYLAGLRDLAAARPAPLSGVLGEPDLVVAADRTGVERVEGNDVAAPGIVLQAGPSASAQVQVVEGRWPAATPVPADPTAMLPGSDGVVEFEPTAMEVAVSTAVAAELDWALDSVHATDEPLLPPLHVVGLWEPQDADADYWAHVPRTTTPEIVFDPNIGKIVTAGVFADPATLGSWVPAPSARVWFPVDTSGVAAQDAPALLAQLRGLTATTTTVVDGDSAVLEPATGLLDVLETALGQRAGVDAIVTVLAVGPLGALAAVLVLAAGLVVDRRRATLALARARGASMTWVRGVVALEGLVVGLPAAALGFAAGLAVVPGTVTSVQVGAAVLCGLGPALVLAAVTPAAGLRAGRADLGAVPARRRHLRLGVEAGVVLAAAGTSWLAVDRGVVAATGSSTGPTGTGSGVDPLLAVAPLLVGVAVALVTFRLVPPVARAVERLAARGSGLVPFLGAARVRRDPAGGPLPAVALVLAVGVALSSVVLSGTVRQGVTDEAWAEVGGDLRVAGPVVDGPTADSLRGIDGVAAVAPVADAGRFALGRVGSGSPVTAWTTDAAELARVQQDVPGAPDGLDRLAATDDGRLPVVAVGFAAGQVTDGQVLSGPGGARTEVVVVDRVDALPGLPPSSGALLVDATAAGDRVGIAPGTARLALVGLTDAADAEAPDPAPVEAEIGALLPTAVVDDPREGEQALLSSPAAAGLATAFTVAVALSALLCVATVTLMLVLATPARTRVLAVLRTLGLPRRAERGLVAWEVGPWAVAALLAGGVVGVLVPALVLAVVDLTPLTGGAASPALVVDPWGPAALAGGLLVAVVAGTLVAGSVGRRRGAETWRTVTD	PGPT0013350_908	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
AK001_01723	930	btuD_9		Vitamin B12 import ATP-binding protein BtuD	ATGAGCGAGATCCTGTGCCGCGGGCTGGTGCGCATCTTCGCCACCGACGGCGTGGAGGTCCAGGCCCTGCAGGGCCTGGACCTGGAGGTCGAGGCCGGCGACCTGGTGGCCGTCGTGGGTGCCTCCGGGTCGGGGAAGTCCACGCTGCTGGGCATCCTGTCCGGGCTGGACACCCCCACCGGAGGGTCGGCCGTCGTGGCGGGCACGGACCTGCTCACGATGGGGCGCCGGGACCGGGTCGTCTACCAGCGCCGCACGGTCGGGTTCGTCTGGCAGCAGACCTCCCGCAACCTTCTGCCGTACCTCACGGCGGCCGAGAACGTCCGCCTCGTGCTCGACCTGGGCGGCGGCCGCCGCACCGAGCGGGCCGCGCGCACCGACGAGCTGCTCGACCTGCTGCAGGTGGCCGACGTCGCCGACCGGTACCCGGCCGAGATGTCCGGCGGGCAGCAGCAGCGGGTCGCGATCGCCGTCGCGGTGGCGAACCGCCCGCGCGTGCTGCTCGCCGACGAGCCGACCGGCGAGCTCGACGAGGCCACCAGCGCGGACGTGCTGGAGGCGCTGCGCGCGGTCAACGCGGCCACGGGCACGACGACGCTCATCGTCACGCACGACCCGACGGTGTCGGAGCACGTGGCCCGCACCGTGCAGATCCGTGACGGCCGCACCTCCACCGAGGTGCTGCGCCGGACCGCCACGGACGCCGACGGCGTGCGGCGCGACGTCGCGGAGGAGTTCGCGGTGCTGGACCGGGTCGGGCGCCTGCAGCTGCCGCACGACGTCGTCGAGGCCCTGGACCTGCGCGACCGGGTCCGGCTGCGGCTGCAGGAGGACCACGTCCAGGTCCGGCGGGACAGCGACGACACGCAGGACGAGACCCGTGGCGACACCCGCGAGGACGCCCGCGGGTCCACGGGGGAGGAGAGCTGA	MSEILCRGLVRIFATDGVEVQALQGLDLEVEAGDLVAVVGASGSGKSTLLGILSGLDTPTGGSAVVAGTDLLTMGRRDRVVYQRRTVGFVWQQTSRNLLPYLTAAENVRLVLDLGGGRRTERAARTDELLDLLQVADVADRYPAEMSGGQQQRVAIAVAVANRPRVLLADEPTGELDEATSADVLEALRAVNAATGTTTLIVTHDPTVSEHVARTVQIRDGRTSTEVLRRTATDADGVRRDVAEEFAVLDRVGRLQLPHDVVEALDLRDRVRLRLQEDHVQVRRDSDDTQDETRGDTREDARGSTGEES	PGPT0013345_1130	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
AK001_01724	705	ytrE	COG1136	ABC transporter ATP-binding protein YtrE	ATGCCGACGACGGTGACGACGCCGGGGACGACGCCGGTCCTGCGGACCGAGGACGTGCGCCGCACGTTCGGCCGCGGGGCCGGCGAGGTGCACGCCCTGCGCGGGGTGTCCGTGGCGGTCGCGGCGGGCGAGCTGCTCGTGGTGCGCGGTCCGTCGGGGTCGGGCAAGACCACGCTGCTCAACGTGCTCGGCGGGCTGGACGCGCCGTCGTCGGGCCGGGTGTGGCTGGACGACCGCGAGCTGACGGCGCTGGACCCGGACGAGGTGCTGGCGCTGCGGCGCGACGAGGTCGGCTACGTCTTCCAGTCCTTCGGTCTGCTGCCGGTGCTGTCCGCCGCGGAGAACGTCGAGGTGCCGCTCCGGCTGCGCCGGGTCCCCCCGGCCGAGCGGGCGGCGCGCGTGGCGGACGCCCTGGACCGGGTGGGACTCGCCGACCACGCCGACCAGCGGCCCTACGAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGGCATCGCGCGTGCCCTGGTGGCGGCCCCCCGGGTGCTGCTCGCGGACGAACCCACCGGTCAGCTCGACACGGCGACCGGGCGGCGCGTGATGGACGTGCTGGCCGAGCTGGTGCACACCGCGGGGGTCGCGGCCGTCGTCACGACGCACGACCCGGAGCTGGTCCGGCGGGCGGACCGGGTGGTGGACCTGCACGACGGCGCGACCGCCGAGGCCTGA	MPTTVTTPGTTPVLRTEDVRRTFGRGAGEVHALRGVSVAVAAGELLVVRGPSGSGKTTLLNVLGGLDAPSSGRVWLDDRELTALDPDEVLALRRDEVGYVFQSFGLLPVLSAAENVEVPLRLRRVPPAERAARVADALDRVGLADHADQRPYELSGGQQQRVGIARALVAAPRVLLADEPTGQLDTATGRRVMDVLAELVHTAGVAAVVTTHDPELVRRADRVVDLHDGATAEA	PGPT0013345_4544	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
AK001_01725	1623	oppA	COG4166	Oligopeptide-binding protein OppA	GTGACACCTCGCGGACGTATGGCAGGCATCGGGGCCTTCACCCTGGCCTCGGCCCTGCTGCTCTCGGCTTGCGGCGGCTCTGGCAGCTCCGACGAAGGCGACTCGACCGCGGCTGCGGAGGGCGACAGCACCGGCGTCGTCTCCATCAGCAGCGGCGAGCCCCAGAACCCGCTGACCCCCGGCATGACCAACGAGGTCTACGGCGGTCTGGTGGTCAAGAACATCTACTCCGGTCTCGTCTACTACGACGCGGACGGTGCGATCGAGAACGAGGTCGCCGAGTCCATCGAGTCCGAGGACAACCAGAACTGGACGATCACGATCCAGGACGGCTGGACCTTCTCCGACGGCACCCCCGTCACGGCCCAGAGCTTCGTCGACGCGTGGAAGTACGTCGCGAACCTGGACAACGCCCAGAACCAGCAGTACTTCTTCAACGGCTTCGCCGGCTTCAGCTTCGAGGAGCCGTCCGACATCGCCGTCGAGGTCGTGGACGAGACGACCTTCACCGCCGAGCTCTCCCAGCCCGCCTCGGACTTCCCGCTGTGGCTCGGTTACTCGGCGTTCAACCCGATGCCCGAGGCCTTCTTCGAGGACCCGGAGGGCTTCGGCTCGGAGCCGATCGGCAACGGCCCGTACGAGCTCGAGTCGTGGGAGAACGACAGCCTCATCACGCTCGTGCCCCGCGAGGGCTACGAGGGTCCGCGCCAGCCGGCCAACGGCGGGCTCGAGATGGTCGCGTACGTCGAGGAGGACACGGCGTACAACGACATGCTCGACGGCAACCTCGACGTGCTGCCGAACGTGCCGTCCTCGGCCTTCGCGACCTTCGAGGACGAGCTCGGTGAGCGCGCCGTGAACCAGCCGGCGGCCGTCATCCAGGTCGTCAACGTGCCCGAGTGGCTCCCCGAGTTCCAGGGCGAGGCCGGCGTCATGCGCCGCCAGGCCATCTCCATGGCGATCGACCGCGAGACGATCACCGAGACGCTCTACAGCGGTTCGCGCACCCCGGCCAGCGACTTCACCTCGCCGGTCATCGACGGGTTCTCCGACGACATCCCCGGCTCCGAGATCCTCGACTACGACCCCGAGGGCGCTGCCGAGATGTGGGAGCAGGCCGAGGAGATGGACCCGATCGGCGACTACACGCTGCAGATCGCGTCCAACGCCGACTCGGACCACCAGGACTGGATCGACGCGGCCTGCAACACCATCCGCACCGACCTGGGCATCGGCTGCGAGTTCGCGCCGTACACCACCTTCGACGAGTTCCTCAACGCGCGTGACGACGAGTCCGTCGAGGGCATCTTCCGCGGTGGCTGGCAGGCCGACTGGCCGTCGATGAGCAACTTCCTGGGCCCGATCTACGGCACCGGGGCCGGCTCGAACGACATGAACTACTCGAACGAGGAGTTCGACGCCCTGCTCGCCGAGGCGGCCGCCGCCGAGGACACGGCCACCGCGACCGAGCTCTACAAGGAGGCCCAGGAGATCCTGTTCCAGGACGTCCCGGGCATCCCGCTGTGGTACCAGAACGCGACCGGCGGCTACGCGGAGACCGTCGAGAACGTCGAGTTCGGCTGGGACAGCGACCCGATCCTGTACCAGATCACCAAGGAGTGA	MTPRGRMAGIGAFTLASALLLSACGGSGSSDEGDSTAAAEGDSTGVVSISSGEPQNPLTPGMTNEVYGGLVVKNIYSGLVYYDADGAIENEVAESIESEDNQNWTITIQDGWTFSDGTPVTAQSFVDAWKYVANLDNAQNQQYFFNGFAGFSFEEPSDIAVEVVDETTFTAELSQPASDFPLWLGYSAFNPMPEAFFEDPEGFGSEPIGNGPYELESWENDSLITLVPREGYEGPRQPANGGLEMVAYVEEDTAYNDMLDGNLDVLPNVPSSAFATFEDELGERAVNQPAAVIQVVNVPEWLPEFQGEAGVMRRQAISMAIDRETITETLYSGSRTPASDFTSPVIDGFSDDIPGSEILDYDPEGAAEMWEQAEEMDPIGDYTLQIASNADSDHQDWIDAACNTIRTDLGIGCEFAPYTTFDEFLNARDDESVEGIFRGGWQADWPSMSNFLGPIYGTGAGSNDMNYSNEEFDALLAEAAAAEDTATATELYKEAQEILFQDVPGIPLWYQNATGGYAETVENVEFGWDSDPILYQITKE	PGPT0021015_3524	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021015-oppA|mppA-K15580	NA	NA
AK001_01726	927	dppB	COG0601	Dipeptide transport system permease protein DppB	ATGCTCTGGTATCTCGGACGCAGGCTGCTGCAGGTGATCCCTGTGTTCCTGGGGGCCACCCTGCTGCTGTACGCGCTGGTGTTCCTGCGGCCCGGTGACCCGATCGCCGGCCTGGGTGGTGAGCGTGGTCTGCCCGAAGCTGTGCAGGAGCAGATCCGCGCCCAGTACAACCTGGACCAACCCTTCATCATCCAGTACCTTCTCTTCCTGCGCGGCGTGGTGACGCTCGACTTCGGCGTCGACTTCCGCGGCCGCGAGATCACCGAGGTGATCGCCAACGCGTTCCCCGTCACGATCCAGCTCGCCCTCATGGCGCTGGTCATCGAGGCGGTCTTCGGCATCGGCTTCGGCCTGGTCGCCGGGATGCGCAAGGGCGGCATCTTCGACGCGACCGCCCTGGTCGTCAGCCTCTTCTTCATCGCGGTGCCGACGTTCGTCGTCGGTTTCGTCATGCAGATCGTCGTGGGCGTCCGGCTCGGCTGGCTGCCCGTCACCGCGGGACGAGATCCCGACTTCGTCAGTCTGCTGATGCCGGCCATGGTGCTCGCCGCGGTGTCCTTCGCCTACGTGCTGCGCCTGACGCGCACGTCGGTCGCGGAGAACCTGTCCGCCGACTACGTCCGCACGGCGCGCGCCCGCGGTCTGCGTCGCTCGCAGGTCACCGGACGCCACGTGCTGCGCAACTCCCTCATCCCCGTGGTGACGTTCCTCGGCGCCGACATCGGCGCCCTGATGAGCGGGGCGATCATCACCGAGGGCATCTTCAACATCAACGGCGTCGGCGGCACGCTCTACGACGCGATCATCCGCGGCGAGAGCATCACCGTCGTGTCGCTGACCACCGTGCTGGTGCTGGTCTACATCGGGGCGAACCTCCTGGTGGACCTGCTCTACGCCGCCCTCGACCCGAGGATCCGCTATGCCTGA	MLWYLGRRLLQVIPVFLGATLLLYALVFLRPGDPIAGLGGERGLPEAVQEQIRAQYNLDQPFIIQYLLFLRGVVTLDFGVDFRGREITEVIANAFPVTIQLALMALVIEAVFGIGFGLVAGMRKGGIFDATALVVSLFFIAVPTFVVGFVMQIVVGVRLGWLPVTAGRDPDFVSLLMPAMVLAAVSFAYVLRLTRTSVAENLSADYVRTARARGLRRSQVTGRHVLRNSLIPVVTFLGADIGALMSGAIITEGIFNINGVGGTLYDAIIRGESITVVSLTTVLVLVYIGANLLVDLLYAALDPRIRYA	PGPT0021020_1429	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021020-oppB-K15581	NA	NA
AK001_01727	987	oppC	COG1173	Oligopeptide transport system permease protein OppC	ATGCCTGAGAACCGCTACGAACCCGTGGGCCGGTCGGCGACCCCGACCCCGGCCCCGCGCCCCGGCCAGGAACACTTCACCGCGCCGGCCGACGAGGGCGGCCTCGGCGCCGTCGACGCCGTCGCGACCGACGAGACGCCCACCAGCCTCTGGCGCGACGCCTGGCACCAGATGCGCCGGCGCCCGCTGTTCTGGGTGTCCGGGACGGTCATCGTCATCGTCGTGCTGGTGGCGGCCTTCCCCGGCCTGTTCACCTCGATCGACCCGCGCGCCTGCGACCTGGCCCGCGCGCTCGAGGGCCCGCAGGCCGGCCACCCGTTCGGGTTCGACCGCCAGGGCTGCGACATCTACTCCCGGACGATGTACGGCGCCCGGGCCTCCGTCGTCGTCGGCGTGCTGGCGACCTCGATGGTCGTGATCCTCGGTACGACGATCGGCGCGATCGCCGGGTACTACGGCAAGTGGTTCGACACGATCCTCAGCCGGATCACCGACATCTTCTTCGCCATCCCGCTGGTGCTCGGCGCCATCGTCATCATGTCGATCGCGACCAACCGCACGAGTTTCCTGGTCGCCTTCGTGCTGGCGGTCTTCGGCTGGACCCAGATCGCCCGCATCACGCGCGGCACCGTGCTCTCGGTGAAGAACAACGAGTTCGTCACCGCGGCGAAGTCCCTCGGCATGGGCCGCGGGCAGATCCTGGTGCGGCACGTGCTGCCCAACTCGGCGGCGCCGATCATCGTCTACGCGACCGTGGCCCTGGGCCAGTTCATCGTCGCCGAGGCGACGCTGAGCTTCCTCGGCATCGGCCTGCCGCCGGACGTGGTCTCGTGGGGCGGCGACATCAGCGCCGCCCAGGGCGCGATCCGGACCAACCCCGAGATCTTGCTCTACCCGGCAGGCGGCCTGGCCGTGACGGTGCTCGGCTTCATGATGATGGGCGACGTGGTGCGCGACGCCCTCGACCCGAAGGCGCGGAAGCGATGA	MPENRYEPVGRSATPTPAPRPGQEHFTAPADEGGLGAVDAVATDETPTSLWRDAWHQMRRRPLFWVSGTVIVIVVLVAAFPGLFTSIDPRACDLARALEGPQAGHPFGFDRQGCDIYSRTMYGARASVVVGVLATSMVVILGTTIGAIAGYYGKWFDTILSRITDIFFAIPLVLGAIVIMSIATNRTSFLVAFVLAVFGWTQIARITRGTVLSVKNNEFVTAAKSLGMGRGQILVRHVLPNSAAPIIVYATVALGQFIVAEATLSFLGIGLPPDVVSWGGDISAAQGAIRTNPEILLYPAGGLAVTVLGFMMMGDVVRDALDPKARKR	PGPT0021025_993	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021025-oppC-K15582	NA	NA
AK001_01728	1752		COG1123	putative ABC transporter ATP-binding protein	ATGACGACACAGTTCCCCGTGAGCGACGGCAACGCGACGCCCGAGTCCGCCCCCGCCGTCGCCGACCCGAACAAGCCCCTCCTGGAGATTCGCGACCTGCAGATCTCCTTCACCACCGGGGTCGGCGAGGTGCACGCCGTGCGCGGCGCGAACCTCACCGTGTACCCGGGCCAGAACGTGGCCATCGTCGGCGAGTCCGGATCGGGCAAGTCGACGACGGCCGCCTCGATCATCGACCTGCTGCCCGGGACCGGAAAGGTGACCGGCGGGTCCATCATGTTCGACGGCCGCGAGCTCGTCGGCGCGCCCCGGGCCGAGACCGAGGCCCTGCGGGGCCGCGCGATCGGCATGGTGCCGCAGGACCCGATGTCGAACCTCAACCCGGTCTGGCGCATCGGCACCCAGGTGACCGAGGCGCTGAAGGCCAACGGGTTCAAGGGCTCCAAGGCCGAGCTGCGCACCCGCGTGGCGGACGTGCTCGCCGAGGCCGGTCTGCCCGACGCCGAGCGCCGGGCGCGCCAGTACCCGCACGAGTTCTCGGGCGGCATGCGTCAGCGCGCGCTCATCGGCATCGGTCTGGCCTCGCGGCCGCAGCTGCTCATCGCCGACGAGCCCACCTCGGCCCTCGACGTGACCGTGCAGCGCCAGATCCTGGACCACCTGGGTGACATGACCCGGGACCTCGGCACCGCCGTGCTGTTCATCACCCACGACCTCGGGCTCGCCGCCGAGCGGGCCGAGCACCTCGTGGTGATGTTCAAGGGGCAGGTCGTCGAGTCCGGTCCGGCCCAGCAGATCCTCGCCGACCCGCAGCACCCGTACACGAAGCGTCTGGTCGCCTCGGCGCCGTCGCTGGCCTCGCGCCGGATCCAGACGGCGCACGTGTCCGGGCAGGAGTCCGCCGAGCTGCACGCGCACCACCTGGGCGAGAAGCCGCCGGCCTCGAACGAGGCGGTCAAGGTCGAGCACCTGACCAAGGTGTTCCAGATCCGCGGGGCCCGCCCCGGGTCGTCCACGGACTTCACGGCGGTCGACGACGTCTCGTTCACCCTCGGGCGCGGGCGGACGCTCGCCCTGGTCGGCGAGTCCGGCTCGGGCAAGTCCACGGCCGCCAACATGGTGCTGGGGCTGCTGGAGCCGACGTCGGGCACCGTGGAGTTCGACGGCACCGACGTGTCGACGCTCAACCCGAAGCAGGCGTTCGCCTTCCGACGGCGGATCCAGCCGGTCTTCCAGAACCCGTACGGGTCGCTGGACCCGATGTTCTCGATCTACCGCTCCATCGAGGAACCCCTCAAGCTGCACAACGTGGGGTCGAAGAAGTCGCGCGAGAAGCGGGTCCGCGAGCTGCTGGACATGGTCTCGCTGCCGCAGTCGGCGATGCGCCGCTTCCCGAACGAGCTCTCCGGCGGCCAGCGCCAGCGCATCGCCATCGCGCGTGCCCTGGCGCTCAAGCCCGAGGTCGTCGTGCTCGACGAGGCGGTCTCCGCCCTCGACGTGCTCGTCCAGGCGCAGATCCTCGACCTGCTCGACGAGCTGCAGACCGACCTGGGCCTGAGCTACCTGTTCATCACCCACGACCTGGCCGTCGTCCGGCAGATCGCCGACGACGTGGTGGTCATGCAGAACGGCAAGGTGGTCGAGCAGGCCACCACCGACGAGGTCTTCGACAACCCGCGCCAGCAGTACACCCGTGACCTCCTCGAGGCCATCCCGGGTGCTCATCTGGTGGGGAACGTCGCCGGCGGCTGA	MTTQFPVSDGNATPESAPAVADPNKPLLEIRDLQISFTTGVGEVHAVRGANLTVYPGQNVAIVGESGSGKSTTAASIIDLLPGTGKVTGGSIMFDGRELVGAPRAETEALRGRAIGMVPQDPMSNLNPVWRIGTQVTEALKANGFKGSKAELRTRVADVLAEAGLPDAERRARQYPHEFSGGMRQRALIGIGLASRPQLLIADEPTSALDVTVQRQILDHLGDMTRDLGTAVLFITHDLGLAAERAEHLVVMFKGQVVESGPAQQILADPQHPYTKRLVASAPSLASRRIQTAHVSGQESAELHAHHLGEKPPASNEAVKVEHLTKVFQIRGARPGSSTDFTAVDDVSFTLGRGRTLALVGESGSGKSTAANMVLGLLEPTSGTVEFDGTDVSTLNPKQAFAFRRRIQPVFQNPYGSLDPMFSIYRSIEEPLKLHNVGSKKSREKRVRELLDMVSLPQSAMRRFPNELSGGQRQRIAIARALALKPEVVVLDEAVSALDVLVQAQILDLLDELQTDLGLSYLFITHDLAVVRQIADDVVVMQNGKVVEQATTDEVFDNPRQQYTRDLLEAIPGAHLVGNVAGG	PGPT0004435_2524	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031	NA	NA
AK001_01729	1764	betL	COG1292	Glycine betaine transporter BetL	ATGCCGACGCGCCGATCAACCCTCGCCCCAGCCGTCTTCTACCCAGCGGGCGGACTGATCCTCCTCTTCGTCCTGCTGGGGATCTTCGCCACCGACGCGACCGCCGAGGTCATGTCCACCCTCCAGTCGAAGGTCATCAACGGCTTCGGCTGGTACTACGTGCTCATCGTGGCGGCCTTCGTGATCTTCGCGATCTACGTCGGCCTGAGCCGATTCGGCGACATCACCCTCGGCAAGGACGAGGAGACCCCCGACTTCAAGCTGCCCGTGTGGTTCGCGATGCTGTTCGCCACCGGCATGGGGATCGGGCTGGTCTACTACGGCGTCGCGGAGCCGCTGTGGCACTACACCGACCCGAAGCCGGGCGTCACCGGTGACGACGCCTCGATCGCCGGGCAGGCGATGGGCCAGACCTACCTGCACTGGGGCGTGCACGCCTGGGCGATCTACGTCGTCATCGGCCTGGCCCTGGCCTACGCGATCCACCGCAAGGGCCGGCCGGTGTCGATCCGGTGGGCCCTCGAGCCGCTGCTGGGCGAGGAGCGCGTCAAGGGCTGGCTCGGCAACGTCATCGACGTGCTGGCGATCTTCGGCACGGTGTTCGGCGTGGCCACCTCGCTCGGCCTCGGTGTGCTGCAGCTGTCGGCCGGGCTCGAGTACCTCGGCGTCGCCGAGTCGACCGTCGCGCTGCAGATGGGGCTCATCGCCGCCATCACCGCGGTCGCCGCGCTCTCGGTGGCGTCCGGTCTCGAACGCGGCATCAAGTGGCTGTCCAACGGCAACATGATGCTCGCGGGCGTCCTGGTGGTCACGGTGCTGATCATGGGGTCCTCGCTCTACGTGATGCGCGAGTGGGTCCAGTCGCTCGGCTTCTACCTCCAGAACGTCATGCAGATGACCTTCGACACCCTCGCCTTCCAGGGGGCGGACGGCCTCGCCTGGGAGTCGAGCTGGACGATCTTCTACTGGGGCTGGTGGATCTCCTGGGCGCCCTTCGTCGGGCTGTTCATCGCCCGCATCTCGCGCGGGCGGACCGTGCGTGAGTTCGTCCTCGGCACCCTCATCGTCCCGATGCTGGTCACGACCGTCTGGTTCAGCGTCTTCGGCGGGACCGCGCTGCGGCAGGAGATGATCGAGCCGGGGTCGATGCTCGACGCCGAGACCGGGTCCGTGAACTCCGACACCGCGATGTTCCAGCTGTTCGAGACCCTGCCGGGCGGCGGTGCGTGGCTGGCCGTCATCGCCATGATCCTCGTCGTGGTGTTCTTCGTGACGTCCTCGGACTCGGGGTCGTTCGTCGTGGACATGCTGGCCAACGGCGGCGACCAGAACCCGCCGCTGTGGAGCCGCCTGTTCTGGGCGATCCTCGAGGGTGGTGTCGCCGCGGCGCTGCTCTACGCCGGGGGTCTGGCGACGTTGCAGACGGCGTCGATCCTCACGGCCCTGCCGTTCTCGGTGGTGCTGGTCGCCATGGCCGTCTCGGTGTGGAAGGCGCTGGACGCCGAGCACAAGGCGATCGTGCGCACCGAGCGACGGCTGCGGCGGCGTGAGTTCAAGCAGGAGGTGACCGAGCACGTCACGGAGCACGTGACCGAGCACGTGACGGAGCACGTCAACACCCAGCTGTCGGAGATGACCGGGCAGGTCCCGGTCGTGGCGGACGCCGACTCCGACGGCAACGGGACCTCGGCCGCCGCACGTCGCCGGGGTCCGCGGAGCTGGCGCCGTCGAGCACCCGGGCCGGAGACGGACACCTCCGGGTAG	MPTRRSTLAPAVFYPAGGLILLFVLLGIFATDATAEVMSTLQSKVINGFGWYYVLIVAAFVIFAIYVGLSRFGDITLGKDEETPDFKLPVWFAMLFATGMGIGLVYYGVAEPLWHYTDPKPGVTGDDASIAGQAMGQTYLHWGVHAWAIYVVIGLALAYAIHRKGRPVSIRWALEPLLGEERVKGWLGNVIDVLAIFGTVFGVATSLGLGVLQLSAGLEYLGVAESTVALQMGLIAAITAVAALSVASGLERGIKWLSNGNMMLAGVLVVTVLIMGSSLYVMREWVQSLGFYLQNVMQMTFDTLAFQGADGLAWESSWTIFYWGWWISWAPFVGLFIARISRGRTVREFVLGTLIVPMLVTTVWFSVFGGTALRQEMIEPGSMLDAETGSVNSDTAMFQLFETLPGGGAWLAVIAMILVVVFFVTSSDSGSFVVDMLANGGDQNPPLWSRLFWAILEGGVAAALLYAGGLATLQTASILTALPFSVVLVAMAVSVWKALDAEHKAIVRTERRLRRREFKQEVTEHVTEHVTEHVTEHVNTQLSEMTGQVPVVADADSDGNGTSAAARRRGPRSWRRRAPGPETDTSG	PGPT0013600_990	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020	NA	NA
AK001_01730	1911	typA	COG1217	GTP-binding protein TypA/BipA	ATGTCTGTGCGCTCCGACCTGCGCAACGTGGCGATCGTCGCCCACGTCGACCACGGCAAGACCACCCTGGTCGACGCCATGCTGCGGCAGGCCGGCGCCTTCGCGGCGCACCAGCAGGTCGACGACCGCGTCATGGACTCCGGTGACCTGGAGCGGGAGAAGGGCATCACGATCCTCGCCAAGAACACGGCGATCCGGTACGCCGGACCGTCGGCGGCCGAGGTCGGCGAGGCCGACGGCGTGACGATCAACGTGATCGACACGCCGGGCCACGCCGACTTCGGCGGCGAGGTCGAGCGCGGCCTGTCCATGGTCGACGGTGTCGTGCTGCTCGTGGACGCCTCCGAGGGCCCGCTGCCGCAGACCCGCTTCGTGCTGCGCAAGGCGCTCGCCGCCAAGCTGCCCGTCATCGTCGTGGTCAACAAGGTCGACCGGCCCGACTCGCGGATCACCGAGGTCGTCGCCGAGACGACCGACCTGCTGCTGGGGCTCGCCAGCGACCTGGCGGACGAGGTCCCCGACCTCGACGTCGACGCCGTGCTCGACGTGCCCGTGGTCTACGCCTCGGCCAAGGCCGGGCGCGCCTCCACCGAGCAGCCCGCCGACGGCGAGCTGCCGGCGAACGAGGACCTCGAGCCGCTGTTCTCCACCGTGCTGCAGACCGTCCCGGCACCGACGTACGACGAGACGATGCCGCTGCAGGCGCACGTGACCAACCTGGACGCCTCGCCGTTCCTCGGCCGTCTCGCGCTGCTGCGCGTCCACAACGGCACCCTGCGCAAGGGCCAGACGGTCGCGTGGGCGCGCCAGGACGGCACCCTGAGCCAGGTGAAGATCACCGAGCTGCTCGAGACCAAGGCGCTGGACCGCGTGCCCGCGGAGTCCGCCGGGCCGGGCGACATCGTCGCCGTGGCGGGCATCGCCGACATCATGATCGGCGAGACGCTCACCGACGCCGACGACCCGCGGCCGCTGCCGCGCATCACCGTCGACGACCCGGCGATCTCGATGACGATCGGCATCAACACCTCCCCGTTGGCCGGCAAGGGCGGCAAGGGCCACAAGGTCACGGCCCGCCAGGTCAAGGACCGGCTGGACGCCGAGCTCATCGGCAACGTCTCGCTGCGCGTGCTGCCCACCGACCGCCCCGACGCGTGGGAGGTCCAGGGCCGCGGCGAGCTCGCGCTGGCGATCCTCGTCGAGCAGATGCGCCGCGAGGGCTTCGAGCTGACCGTCGGCAAGCCGCAGGTCGTCACCAAGCAGGTCGACGGCAAGACCTGCGAGCCGATGGAGCGCATGACGATCGACGTGCCCGAGGAGTACCTCGGCGCCGTCACGCAGCTCATGGCCGCCCGCAAGGGCCGCATGGAGACGATGGCGAACCACGGCACCGGCTGGGTGCGCATGGAGTTCGTCGTCCCGGCCCGTGGCCTCATCGGTTTCCGGACCCGGTTCCTCACCGAGACCCGCGGCACCGGCATCGCCTCGTCCTACGCCGAGGGCTACGAGCCGTGGCACGGCCCCATCGAGTCCCGGCTGACCGGTTCGCTGGTCGCCGACCGGGCCGGCTCGGTCACCCCGTTCGCCATGATCAACCTGCAGGAGCGCGGCACGTTCTTCGTCGACCCCACCCAGGAGGTCTACGAAGGGATGATCGTCGGCGAGAACTCCCGCAACGAGGACATGGACGTCAACATCACCAAGGAGAAGAAGCTGACGAACATGCGGTCCTCGACCGCCGACAGCTTCGAGAACCTGGTGCCGCCGAAGAAGCTCACCCTCGAGGAGTCGCTGGAGTTCGCGGCCGAGGACGAGTGCGTCGAGATCACCCCGGAGATCGTGCGCATCCGCAAGGTCAACCTCGACGCCACGGCGCGTGCGCGGGCCGCGGCGCGGGCCAAGCGCGCCTGA	MSVRSDLRNVAIVAHVDHGKTTLVDAMLRQAGAFAAHQQVDDRVMDSGDLEREKGITILAKNTAIRYAGPSAAEVGEADGVTINVIDTPGHADFGGEVERGLSMVDGVVLLVDASEGPLPQTRFVLRKALAAKLPVIVVVNKVDRPDSRITEVVAETTDLLLGLASDLADEVPDLDVDAVLDVPVVYASAKAGRASTEQPADGELPANEDLEPLFSTVLQTVPAPTYDETMPLQAHVTNLDASPFLGRLALLRVHNGTLRKGQTVAWARQDGTLSQVKITELLETKALDRVPAESAGPGDIVAVAGIADIMIGETLTDADDPRPLPRITVDDPAISMTIGINTSPLAGKGGKGHKVTARQVKDRLDAELIGNVSLRVLPTDRPDAWEVQGRGELALAILVEQMRREGFELTVGKPQVVTKQVDGKTCEPMERMTIDVPEEYLGAVTQLMAARKGRMETMANHGTGWVRMEFVVPARGLIGFRTRFLTETRGTGIASSYAEGYEPWHGPIESRLTGSLVADRAGSVTPFAMINLQERGTFFVDPTQEVYEGMIVGENSRNEDMDVNITKEKKLTNMRSSTADSFENLVPPKKLTLEESLEFAAEDECVEITPEIVRIRKVNLDATARARAAARAKRA	PGPT0023720_542	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207	NA	NA
AK001_01731	990	mshB		1D-myo-inositol 2-acetamido-2-deoxy-alpha-D-glucopyranoside deacetylase	ATGCAGGACGCGGGGGAGACCTCGACGGCGGCGGCCCGCCCGGCCGACCCGTCGGTCGGGCCGCTGGTCGCGGTCCACGCGCACCCGGACGACGAGACGCTGGCCACCGGCGCGCTGCTGGCCGCCTGGACGGCCGCCGGAGCGGCGGCGACGGTGGTCACGTGCACGCGCGGCGAGCGCGGCGAGGTCATCGACACCGTCGCGCACCCGACGGGTCTCGCGCACCTCGAGGGCGACGGCCCGGCGCTCGCCGTCCACCGCGAGCGGGAGCTGGCGGCCGCGCTCGAGGCGCTCGGCGTGCCCGACCACGTGTTCCTCGACACCGTGCCGCCCGTGACGCCCCCCGCGAGCACGTCGGGCCGCTTCGAGGACTCGGGCATGGCCTGGGTGGCCCCCGGCATCGCCGGTCCGGCGCCGGACTCCGGACCGGCGGCGCTGAGCCGGGTGCCGCTCGAGGCCGCCGCGTCCCGCCTCGCCGCGGTGCTGCGCGACCGTCGTCCGGCCGTCGTGGTGACCTACGAGGCGGGCGGCGGGTACCGCCACCCCGACCACGTGCGCACCTACGAGCTGACCGTGCGGGCCCTCGAGCTCGCCGCCGACCCGGCCGCCGACGTCGTCGGGGAGCCCTGGACGGTCCCGGAGCGCTGGGAGGTCGTGGCCCCGGCCGACCGGTGGCGCGCCGCGCGCGCCGCGCTGTCCACCGCCCCGGACGCGGTGCGGCTGGCCCGCGCGGCGGACCTGACGCTGCCCGACCCGGACGCGGACCCGCCGCCGCTCGTCGTGGACCCCGCGGAGCTCGCCCGCGACGAGGTGGTCTCGGTCGCGGTGGAGCCGGTCCTGGACCGTCTGCTCGCCGCGCTGGCCGCCCACGCCACGCAGGTCCAGCACGTCGCCGCCGTCTCCCTGCCGGGCGTCGTGGCGCACTACGCCCTGAGCAACGGCGAGCTCGCGCCCGTGCTCGCCGCGTCCACCGCCCGCGTGCGCCGGTAA	MQDAGETSTAAARPADPSVGPLVAVHAHPDDETLATGALLAAWTAAGAAATVVTCTRGERGEVIDTVAHPTGLAHLEGDGPALAVHRERELAAALEALGVPDHVFLDTVPPVTPPASTSGRFEDSGMAWVAPGIAGPAPDSGPAALSRVPLEAAASRLAAVLRDRRPAVVVTYEAGGGYRHPDHVRTYELTVRALELAADPAADVVGEPWTVPERWEVVAPADRWRAARAALSTAPDAVRLARAADLTLPDPDADPPPLVVDPAELARDEVVSVAVEPVLDRLLAALAAHATQVQHVAAVSLPGVVAHYALSNGELAPVLAASTARVRR				NA	NA	NA	NA	NA
AK001_01732	414			hypothetical protein	GTGATCCCCACCCCGCCCCACCACTCCCCGAGTGCACCGCGCCGCAGCGGGGTGCTGCTGGTCGTCTGGCGACTGGTCCTCGGCCTGCTGCTCGGCGGGGTCGTCGGGCTCATCGGCACCGTCGGTCACCGCATGGCGTGGTGGGACCTGCCGCTCGGCCTCGCGCTCGCGCTCGCCCTGACGCTCTCCGCGGCCGTGCTCTGCCGCGCGTGGGCCGGCGTCGGCACGCTGCTCGCCTGCGGTGCGGGCTGGCTGGTGACCGTGCAGCTCCTCGCCGCCGAGGGCCCGGGCGGCGACGTCCTGGTCCCGGCCGACACCGTCGGGTACGTGTGGACGTACGGGGGGCTGCTCCTCTTCGCCGTCGCGGCGTTCCTGCCGCGACGGTGGTTCGTGGACGACGCCGACGCCGGGTGA	MIPTPPHHSPSAPRRSGVLLVVWRLVLGLLLGGVVGLIGTVGHRMAWWDLPLGLALALALTLSAAVLCRAWAGVGTLLACGAGWLVTVQLLAAEGPGGDVLVPADTVGYVWTYGGLLLFAVAAFLPRRWFVDDADAG				NA	NA	NA	NA	NA
AK001_01733	2139			hypothetical protein	ATGGGCCAGCCGACCGAGGGTGACGACCAAGTGCGCGCGTCGCAGAACTCGGCCTCGTCGCCGGGCGACGCCCCCGCCGCCGGGGACAGCCCGTACGAGCCTGCGGTGCGGGCCTGGGAGGAACCGGACGCCGGCGACGCCTCGCCCGCCGGGACCGCGGGCTCCCCGTCCGCCGGGACGCCGGACGCGCCCGCGCAGGACGCGCCGGAGGACCCGGACGTCCCCTACGAGCCCAGCGTGCGCGCCTGGGAGCAGCCCCGTTCCGTGGCCACCGTGCGGGCACCGTCCAGCACGCCCCCCGCCGCCCCGACCGAGGCCATCCCGGCGGTGTCCGCGACGTCCGCCGCCGGCGCCGGGAGCCCGGCCGGCGAGCAGTCCCCGGCGGTCCCGCCGTCGGACGGTGGCGCGACCCCCCTGGAGGGCCTGCAGGGTGATGGTGCGCCGAGCCGCACCCCGAAGGTGCTGCTCGGCGCCCTGGCCGGGGTCGTCGTCCTCGCGGGCCTGTACGTGGGCGCGCAGTGGCTGGTCGCCGACAGCGTGCCGAAGGGCACCACCGTGGCGGGTGTCGACATCGGCGGCCTGCCCACGGCCGAGGCCGTGACGGCCCTGGACGAGGGCCTCGGCCCCCGCGCCGCCGAGCCGGTCACCGTCCGCGCCGGCGAGTCCACGAGCACGATCGACCCGGCCGAGGCGGGGCTGAGCCTCGACTCCGCCGGCACGGTGGAGGACCTGACCGGTTTCACCCTGGACCCGTCGCGGCTGCTGGAGCACCTCGTCGGCGGCGACGAGGTGCCCCCGGTGGTGGGTGTCGACCGCCCCACGCTGCGGACCGCCGTCGGCGGCGTGGCCCAGTCGTTGGCGACCGAGCCCGTCGACGGCACGGTCCGGTTCGCCGACGGCGAGGCCGTGGCGACCGAGGCGGCCGCGGGCACGCAGGTCGTCCAGGACGCCGCCGACGACGCGATCGTCTCCGCCTGGCTGGTGACCGACGGACCCGTCGACCTGCCGACCGAGCCGGTCGAGCCGACGATCGACCAGGCGGACACCGACGCCGCCCTGGCCGAGGCCGAGGAGGTCGTCTCGGGGCCGGTGACCGTGGAGGTCGACACCCAGAACCCGGAGCTCCCGGCGCGCGTGCTGGCCCGGTCCACGTCGTTCGTGCCGCAGGACGGCGCTCTGGTGGCGCAGTTCGACGGCGACCGGCTGACGTCCGCGATCGTCGAGCGGACGAACGACCTGCTGCGCGAGCCGAACGACGCCCACTTCGAGTTCTCCGGCGGCGAGCCGGTCATCGTCGGCGGGGAGGCGGGCACCACCCTCGACCCCGAGCAGGTCGCCGACGCCGTCGGCGGCGCCGCGCTGTCTCCCGGACGTGCCACGCAGGTCGAGCTCGTCGAGGAGGACCCGGAGGACACGCGGGCCTCGCTGGAGGAGCTGGGCGTGCAGGAGGTCGTCTCGGAGTTCTCCACGCCGCTGACCAGCGAACCCGTGCGCACCAGGAACCTCGTGCGCGGCGCCGAGCTGGTCAACGGCACCCTGGTGCGCCCGGACGAGACGTTCTCCCTCATCGACACGCTCTCGCCCATCGAGGTCTCCAACGGCTACTTCGCCGCCGGCGTGGTGAGCAACGGCGTGCACGTCGACGCCGTCGGCGGCGGGCTGTCGCAGATGGCCACCACCAGCTACAACGCGGGCTTCTTCGCGGGCTTCGACGACGTCGAGCACCGTCAGCACAGCTACTGGTTCAGCCGCTACCCGGCGGGGCGCGAGGCCACGATCTACGTCGGCGCGATCGACATGAAGTTCCGCAACGACACCCCGTACGGGGCGCTGCTGCAGAGCTACGTCTCCGGCGGGCGGCTGCACGTCAAGATCTGGTCGACGGAGTACTACGACGTCGAGACCTCCGACTCCGGCAGGCAGGAGGTCGAGCCGGTCTCCGAGGTCGACATGTCCAGCAGCCCCGACTGCGAGCCCTACCCGGGCGGGCAGCCCGGGTTCGCCATCACCGTGTACCGCAAGGTGTACCTCGACGGCGACCTGGTCAAGGACGAGTCCGACTTCTGGCGGTACAAGCCCGACGACGCGGTGACCTGCACCCCGCCGGAGCAGGAGAACGACGAGGACGGGGACGACTGA	MGQPTEGDDQVRASQNSASSPGDAPAAGDSPYEPAVRAWEEPDAGDASPAGTAGSPSAGTPDAPAQDAPEDPDVPYEPSVRAWEQPRSVATVRAPSSTPPAAPTEAIPAVSATSAAGAGSPAGEQSPAVPPSDGGATPLEGLQGDGAPSRTPKVLLGALAGVVVLAGLYVGAQWLVADSVPKGTTVAGVDIGGLPTAEAVTALDEGLGPRAAEPVTVRAGESTSTIDPAEAGLSLDSAGTVEDLTGFTLDPSRLLEHLVGGDEVPPVVGVDRPTLRTAVGGVAQSLATEPVDGTVRFADGEAVATEAAAGTQVVQDAADDAIVSAWLVTDGPVDLPTEPVEPTIDQADTDAALAEAEEVVSGPVTVEVDTQNPELPARVLARSTSFVPQDGALVAQFDGDRLTSAIVERTNDLLREPNDAHFEFSGGEPVIVGGEAGTTLDPEQVADAVGGAALSPGRATQVELVEEDPEDTRASLEELGVQEVVSEFSTPLTSEPVRTRNLVRGAELVNGTLVRPDETFSLIDTLSPIEVSNGYFAAGVVSNGVHVDAVGGGLSQMATTSYNAGFFAGFDDVEHRQHSYWFSRYPAGREATIYVGAIDMKFRNDTPYGALLQSYVSGGRLHVKIWSTEYYDVETSDSGRQEVEPVSEVDMSSSPDCEPYPGGQPGFAITVYRKVYLDGDLVKDESDFWRYKPDDAVTCTPPEQENDEDGDD				NA	NA	NA	NA	NA
AK001_01734	891			hypothetical protein	ATGCTCGGGCGGATCTCCCGCGAGTCGTCGGCGCACGCCGCGCTCGCCGCGCACGACGCCGGCTGGTCCGGCGTGGCCGCGGGGTCGGCGGTGATCTCCGCGGTCCCCGACGAGTCGACCGAGCTGCTCGACCTCGGCACGATGCCCCAGGCGCTGGCGACGGTGGCCGGCATCGACGACCTGGCCGCCGTCGTGCACCTCGGTCACCCGGAGCAGCCCTCGCCCGCCCTGGAGCAGGCGCTGCTCGACGGCGACCCGCGGCTGATCGTCACCGCCGCCGCCACCGTGGGGACCCAGTGGGTCTGGGTCGCCCCACCGGGCGTGGTCGGCGGACAGGTCGTGGTCGACGAGGCGGGCATGCGCGACTGCGCCGACGTGCTGCGCAGCATGGGCGTCAGCCCGCGCCTCGTGCCGACGGCGACACCGGTGGCCGAGCGCGCGGCCCTGGCGGGGGAGCAGGGCTCGCTCGTGCTGGAGCGCTCCCGGGTGCCGGCCGGGTGGACCGAGGTCCCCGGCAGCGAGCACCTGGGCGAGCAGCCCCCGGTCTGGTACGGGCTGCTCGAGGCGCGGGGCGCCTGGCCGCAGTTCTCCGCCCCCGCCCAGGTCTGGCTGGCGTTCGGGCCGAGCGACGACCACCGCGGTTCCCTGCGCCAGACGCTGGGCCTCCTCGCCGACGCGGGAGTGGACCTGCAGCACCTGCGCAGCCACCCCTCGACCTACGGTCCGCACGTGTTCTTCAGCTCCTTCCGCTGCCCGGACGTGGCGGTGCTCGACGCCCTGGTCGCCGAGCTGGACGCCCGGTCGGTGTCGCACCGCACGCTGGCGGTCCTGCCGGGCGACCGGTTCGCGCCCGGACCGGAGGCGCTCACCCCCCGGTGGGTCGGCGCGTGA	MLGRISRESSAHAALAAHDAGWSGVAAGSAVISAVPDESTELLDLGTMPQALATVAGIDDLAAVVHLGHPEQPSPALEQALLDGDPRLIVTAAATVGTQWVWVAPPGVVGGQVVVDEAGMRDCADVLRSMGVSPRLVPTATPVAERAALAGEQGSLVLERSRVPAGWTEVPGSEHLGEQPPVWYGLLEARGAWPQFSAPAQVWLAFGPSDDHRGSLRQTLGLLADAGVDLQHLRSHPSTYGPHVFFSSFRCPDVAVLDALVAELDARSVSHRTLAVLPGDRFAPGPEALTPRWVGA				NA	NA	NA	NA	NA
AK001_01735	933	pheA	COG0077	Prephenate dehydratase	GTGAGGGTCGCCTACCTGGGGCCGGAAGGCACCTTCACCCACCAGGCCGCCCGCTGGTGGACGGACCGCGCCGACGCGGGGGCCGACGTCGTGCCCTGCGCGGACGTGCCGGCCGTGCACGACGCGGTGGCCTCGGGGCAGGCCGCCGTCGGTGTGGTGGCGATCGAGAGCTCGGTGGAGGGCTACGTCGTGCCGTCGGTCGACGCCCTCCTGGCCAGCGCGGACGTGGTCGCCGTGGACGAGGTCGTCCTGGACATCACCTTCGACGCGTTCGTGCGTCCCGGCCACGGCGAGCTCGTCGAGGCGACGGCGCACCCGCACGGCCTGGCGCAGTGCGCCCGCTTCGTCGCGGCGCGCGGCCTGACGCCCGTGCCCGCCGCGTCGAACGCGGCCGCCTGCCGGGACGTGCGGGACCACCAGGTGGCCCTGGGGCCGCCCCTGTGCGGCGAGCTGTACGGGCTGGACACCCTTGCGGAGTCCGTGGCGGACTTCGCCGGCGCCCGGACCCGGTTCCTCGTCCTGGACCGCCGGGACCGTGCCCGCGACCGGCTCGGGGCAGGGCACGACGGCGCGACGTGGCGCACGATGCTGGCGGTCACGCCGACCATCACGGGTCCGGGGGTGCTGGCCCGCGTCACCGACGCCTTCGCCGTGCGCGGGGTCAACATGTCGAGCCTGGTCACCCGGCCGCTCAAGGCGCGCGAGGGGCAGTACGTGTTCGTCGTGACCCTCGACGCCGCCCCGTGGGAGCCGGCCGTGCGCGACCTGTTCGGCGACCTGCTGGCCGCCGGCGACGCGCTGAAGGTGCTCGGCGCCTACCCCGCGGCGCCGGGGGAGGGCGGTCTCGACGGTGCGCTGGCGGACGAGGCCCCGACGGGGTCGGTGCGCGCCGGCGACCCGGACGAGGTCGTGGACCAGGGGCTGCTGTGGTGA	MRVAYLGPEGTFTHQAARWWTDRADAGADVVPCADVPAVHDAVASGQAAVGVVAIESSVEGYVVPSVDALLASADVVAVDEVVLDITFDAFVRPGHGELVEATAHPHGLAQCARFVAARGLTPVPAASNAAACRDVRDHQVALGPPLCGELYGLDTLAESVADFAGARTRFLVLDRRDRARDRLGAGHDGATWRTMLAVTPTITGPGVLARVTDAFAVRGVNMSSLVTRPLKAREGQYVFVVTLDAAPWEPAVRDLFGDLLAAGDALKVLGAYPAAPGEGGLDGALADEAPTGSVRAGDPDEVVDQGLLW				NA	NA	NA	NA	NA
AK001_01736	1014	tyrA	COG0287	Prephenate dehydrogenase	GTGGTGACCGGGACGCGGACGCCGCCGCACGGCCGGGTCGCCGTCGTCGGGCTGGGCCTGATCGGCGGGTCCCTGGCGCGCCTGCTCGCGGCGCGCGGGGCGGACGTCGTGGCGACCGACGCCTCCCCGTCCGCGCGTGCGGCGGCCCGGCGGGCCGGACTGGCGGTGACGGACGACGTCGCGGGCTGTGTCGACGCCGCCGACCTCGTGGTGCTGGCCGTGCCGCTGCGGGCGATGACGACGGTGGCCGAGCACGTGGCCGCGCACGCACCGGCGACGGCGACCGTCACGGACGTCGGCAGCGTCAAGAGCCCCGTGCGGGCCGCGGTCGCCGCGGCCGGCCTCGCCGCGCGGTACGTCGGCGCGCACCCCATGGCCGGGACCGAGCACAGCGGGTTCGACGCCTCCGACGTCGCGCTGCTCGACGGTGTCGTGTGGGCGGTGACGGTGGACGACGCCGTGGCGGTCGACCCGGACCGGGTCGCCACGGTGCTCGCGTGGGTCACGGGGGTGTGCGCGGGCCGCGCGGTGGTGCTCACGGACGACGTGCACGACGAGGCGGCCGCCCTGGTCAGCCACGTGCCGCACGTCGTGGCGACCCAGCTCCTCAACGCGGTGGCCGGCGCGCCGGTCGGGCCGGTGGCGCGTCTGCTGGCGGCGGGCAGCTTCCGGGACGGCACGCGGGTCGCTCTGACGGACCCGGCCCGCACGGAGGCGATGGTGACCGAGAACGCGGCCTGGGTGGCGCCCGCGCTCCGCAAGGTGGTGCGCGACCTCGAGCTCGTGGTGCACCGGCTGGAGTCGAACGCCTCGGTGCACGACTTCTTCCACGCCGCGGACGACCTGCGCGTCGAGCGTCGTGCCGCAGCCGGTTCCCCGGCCCCTGCGCCGGGGCCGTCCGAGACGCTGGCCCGGGGCGCGGGGTGGCCCGCTCTGCTCGTGGAGCGGTGCACCGGCGGCGCCGTCGTGACCGGTCTGGACGGGCGGGCGATCCACCTGACGCCGTCGCCCTGA	MVTGTRTPPHGRVAVVGLGLIGGSLARLLAARGADVVATDASPSARAAARRAGLAVTDDVAGCVDAADLVVLAVPLRAMTTVAEHVAAHAPATATVTDVGSVKSPVRAAVAAAGLAARYVGAHPMAGTEHSGFDASDVALLDGVVWAVTVDDAVAVDPDRVATVLAWVTGVCAGRAVVLTDDVHDEAAALVSHVPHVVATQLLNAVAGAPVGPVARLLAAGSFRDGTRVALTDPARTEAMVTENAAWVAPALRKVVRDLELVVHRLESNASVHDFFHAADDLRVERRAAAGSPAPAPGPSETLARGAGWPALLVERCTGGAVVTGLDGRAIHLTPSP				NA	NA	NA	NA	NA
AK001_01737	300			hypothetical protein	GTGAGAATCTCGCACGCCGCCGGCGGATCGTCCGCCTGGCGAGACTGGACGGCCGGGACCCGGGTCGTCGTGCGGCGTCGGCTCTCGGCCGAGGAGACCCGGCGCAGCGGGAAACGGTCCACGGACGTCATCGGCCTGGTGGTGACGTCCGACACGTCGGGCGTCACGCTCCGCCGTGACCCCGCGCGGCCGTCGGCGCCGGGTGCGGGGACCGAGGTCCGCATCGAGGCCGAGGAGATCGAGGCCACGCGGGTGCTGCCGCCGCGGCCCGAGCGCCGACCGCCCCGCAGGTCCGACTGA	MRISHAAGGSSAWRDWTAGTRVVVRRRLSAEETRRSGKRSTDVIGLVVTSDTSGVTLRRDPARPSAPGAGTEVRIEAEEIEATRVLPPRPERRPPRRSD				NA	NA	NA	NA	NA
AK001_01738	318		COG1146	Ferredoxin	GTGACCTACGTGATCGCTCAGCCGTGCGTCGACCTCAAGGACAAGGCGTGCATCGAGGAGTGTCCCGTGGACTGCATCTACGAGGGGTCGCGCTCGCTGTACATCCACCCGGACGAGTGCGTGGACTGCGGCGCCTGCGAGCCGGTGTGCCCGGTCGAGGCCATCTACTACGAGGACGACGTCCCCGAGGAGTGGACCGACTACTACCGGGCGAACGTCGAGTTCTTCGACGACATCGGCTCCCCGGGCGGCGCGGCCAAGATGGGCGTCATCGAGAAGGACGACCCGATGATCGCCGCCCTGCCCCCGCAGGGCTGA	MTYVIAQPCVDLKDKACIEECPVDCIYEGSRSLYIHPDECVDCGACEPVCPVEAIYYEDDVPEEWTDYYRANVEFFDDIGSPGGAAKMGVIEKDDPMIAALPPQG	PGPT0030810_836	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
AK001_01739	1146	dapL	COG0436	LL-diaminopimelate aminotransferase	ATGGGTTTCGCCGACCTGCGCGACCTGCCCTACCCCTGGGACACCCTCGGTGACGTCCGTGCGACGGCCGCGGCGCACCCCGGCGGGATGGTGGACCTGTCCGTCGGGACGCCCGTCGACCCCACCCCGCGGGTCGTCCAGGACGCGCTGACGGCCGCCGCCGACGCTCCGGGCTACCCGATGACGCACGGCACCGCCGCGCTGCGCGAGACGGTCGTGGACTGGTTCGCGCGGCGCCGCGGCGTGCCGGGTCTCGACCCGGACGGCGTCATGCCGACGGTCGGGTCCAAGGAGCTGGTCGGGCTGCTGCCCTCCCTGCTGCGGCTCGGCCCCGGCGACGTCGTCGTCCACCCCGAGATCGCGTACCCCACCTACGACGTGGGGGCGCGGCTCGCGGGGGCCACCGCGCTGCCGGCCGACGACGTCGCCACCTGGGCCGGGCGCGAGGACGTCCGTCTGGTGTGGGTCAACTCGCCGTCCAACCCCACCGGTGCGGTGGCCGACGTCGAGCACCTGCGCGCCGTGGTGGCCGCGGCGCGCGAGACCGGCGCCGTCGTCGTGTCCGACGAGTGCTACGCCGAGCTCGCCTGGGACGAGCCGTGGGCCGGCGCGGACGGGGTCGGCCGGGTGCCGAGCCTGCTCGACCCGCGGGTCACGGACGGCTCGCTCGACGGCCTGCTCGTCGCCTACTCGGTCTCCAAGCAGTCGAACCTCGCCGGGTACCGGGCCGCCTTCGTCGCCGGGGACCCGCGGCTGGTCGCCGACCTGGTCTCCACCCGCAAGCACCTCGGGATGATCATGCCCGCGCCGGTGCAGGCCGCGCTCCGGGTCGCCCTGTCCGACGACGCCCACGTGGACGCCCAGCGCGAGCGGTACCGCCGGCGTCGGGACGCCCTGCTGCCGGCGCTGCACCAGGGCGGTTTCGCCGTCGACCACTCCGCGGCCGGTCTGTACCTGTGGACGCGTCCGGCCGACGCGGCGGACGCCGCGACGTCGCGGGACCTGGCCCGACGGTTCGCGCGGCTCGGCATCCTGGTCGGTCCCGGCGAGTTCTACGGGGCGGCCGGCGCGTCGCACGTGCGCGTGGCGTTGACCGCGTCGGACCAGGCCGTGACCGATGCTGTGGCGCGGATCACATCGTCTTGA	MGFADLRDLPYPWDTLGDVRATAAAHPGGMVDLSVGTPVDPTPRVVQDALTAAADAPGYPMTHGTAALRETVVDWFARRRGVPGLDPDGVMPTVGSKELVGLLPSLLRLGPGDVVVHPEIAYPTYDVGARLAGATALPADDVATWAGREDVRLVWVNSPSNPTGAVADVEHLRAVVAAARETGAVVVSDECYAELAWDEPWAGADGVGRVPSLLDPRVTDGSLDGLLVAYSVSKQSNLAGYRAAFVAGDPRLVADLVSTRKHLGMIMPAPVQAALRVALSDDAHVDAQRERYRRRRDALLPALHQGGFAVDHSAAGLYLWTRPADAADAATSRDLARRFARLGILVGPGEFYGAAGASHVRVALTASDQAVTDAVARITSS	PGPT0010335_2	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-TYPE_II_POLYKETIDE-OXY-|CHLOR-|TETRACYCLINE_METABOLISM,PGPT0010335-oxyQ-K14254	NA	NA
AK001_01740	1302	gltA2	COG0372	Citrate synthase 1	ATGACGTCCACCCAGCAGACCGCCACGGTCGAGCTCAGCGTCGACGGCACGAGCCGAGAACTGCCCGTGGTGCCGGCGACGGAAGGCAACGACGGGATCGTCGTGTCCTCCTTGCTCAAGGACACCGGCATGGTGACCGTCGACCCCGGGTTCACCAACACCGCCTCCTGCGAGTCCGCGATCACCTACATCGACGGCGGCCAGGGGATCCTGCGCTACCGCGGCTACCCGATCGAGCAGCTCGCCGACTCCTCGTCGTTCCTCGAGGTCTCGTACCTGCTCATCCACGGCGAGCTGCCGACCCCCGCCGAGCTCGAGGCGTTCACCGAGCGGATCAACCGGCACACCCTCGTGCCCGAGGCGTTCCGCACCTTCCTCGGCACCTTCCCGCGCGGCGGCCACCCCATGGCGATCATGGCCTCGGCGGTCAACGCGCTGGCGACCTACTACCCGGAGTCGCTCGACCCGCACGACGACGAGGCGGTCGAGCTCGCGACGGTCCTGATCCTCGCCAAGATCCGCACCATCACCTCCTACGTGCACCGGTCCATGCGTGACGAGCCGCTGCTCTACCCGGACGCGGCGCGCGGCTACGTCGACGACTTCCTGCGCATGACCTTCGCCCGCCCCTACGAGGAGTGGCAGGCCAACCCCACGCTCGTCTCGGCGATGGACAAGCTGCTCATCCTGCACGCCGACCACGAGCAGAACTGCTCGACGTCGACCGTCCGCGTCGTCGGCTCGTCCAACGCGACCCTCTACGCGTCGGTGTCGGCCGGCATCAACGCCCTGTCCGGCCCCTCGCACGGCGGTGCCAACGAGGCCGTGCTGCTCATGCTGGAGAACATCCGCTCCGGCGAGGACTCCGTCGAGACCTTCATGAAGAAGGTCAAGAACAAGGAGGACGGCGTCCGGCTCATGGGCTTCGGCCACCGGGTCTACAAGAGCTACGACCCGCGCGCCGCCATCGTCAAGAAGCACGCCGACGCCGTGCTCGACGAGCTGGGTGCCAAGGACGAGCTGCTCGACATCGCTCGTGGCCTCGAGGACATCGCGCTCAACGACGACTACTTCGTCGAGCGCAAGCTCTACCCGAACGTCGACTTCTACACGGGCCTCATCTACAAGGCCATGGGCTTCTCGCCGGCCATGTTCACCCCGCTGTTCGCGATGGGCCGGATGCCCGGCTGGATCGCCCAGTGGCGAGAGATGATGAAGGACCCGCAGACCAAGATCGGCCGTCCGCGGCAGATCTACACCGGGCCGACCGAGCGGGACTACGTGGCGCTCGACCAGCGCTGA	MTSTQQTATVELSVDGTSRELPVVPATEGNDGIVVSSLLKDTGMVTVDPGFTNTASCESAITYIDGGQGILRYRGYPIEQLADSSSFLEVSYLLIHGELPTPAELEAFTERINRHTLVPEAFRTFLGTFPRGGHPMAIMASAVNALATYYPESLDPHDDEAVELATVLILAKIRTITSYVHRSMRDEPLLYPDAARGYVDDFLRMTFARPYEEWQANPTLVSAMDKLLILHADHEQNCSTSTVRVVGSSNATLYASVSAGINALSGPSHGGANEAVLLMLENIRSGEDSVETFMKKVKNKEDGVRLMGFGHRVYKSYDPRAAIVKKHADAVLDELGAKDELLDIARGLEDIALNDDYFVERKLYPNVDFYTGLIYKAMGFSPAMFTPLFAMGRMPGWIAQWREMMKDPQTKIGRPRQIYTGPTERDYVALDQR	PGPT0001455_2062	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647	NA	NA
AK001_01741	894			hypothetical protein	ATGGCCGCACGACGGCGCTCGGCCGCGCGATCGGCCGGCGCCGTCGGAGCGGTGCTCACCGTCGGCCTCGCGGCCGTCCTCGGGGTGCTGCTCCTGCTGTGGGCCCGCGACGACGGTCCCCGTGCCGCCGAGCGGTGCACCGCCCGTCTCGACGGCACGGACTGGCCGCTCACGACCGAGCAGGCGGAGAACTCCGCCCTGATCGTCGGCTCGACGATCCGTCGGGGCCTGCCCGCGCGGGCGGCGACCATCGGGGTGGCCACGGCGCTGCAGGAGTCCCGGCTGGTCAACATCGACTACGGCGACCGGGACTCGCTGGGCCTGTTCCAGCAGCGACCCTCGCAGGGCTGGGGCACCCCGGAGCAGGTCATGGACCCGGTGTACTCCACCAACGCCTTCTACGACGGTCTCGTCGAGGTCGAGGGCTGGCAGGACGCCGAGGTCACCGTCGCCGCGCAGGCGGTGCAGCGGTCGGCCTTCCCCGACGCGTACGCCCAGCACGAGACCCGCGCGCGGGCCTGGGCGTCGTCGTTGACGGGCCACTCCCCCGGCTCGGTCACCTGCGACGTGCCGCCGGCGGACCCGCAGGCCTCGCACGTCGCCGTGGCCGAGCGGATCGACCGCGACCTCGGGCTCGACGGCCGGACGGTCCGCGGCGACGGCGCGACGACGAGGATCGACGCGACGGCACTGCGCTACGACGACACGACCCGGTCGACCTGGGCGGTGGCCCACTGGGCGGTCGCGACGGCGGAGGCCACCGGAGCCGTCGAGGTCCGGGCCGACGGCCGGGTCTGGACCCGCGAGTCCGCCGCCTGGACGGCCCTCGGCCCCGACGAGAACGGCCCGCGCGACGGCGTCGTCCGCGTCCGGACCGTCCAGCCCACCGCCTGA	MAARRRSAARSAGAVGAVLTVGLAAVLGVLLLLWARDDGPRAAERCTARLDGTDWPLTTEQAENSALIVGSTIRRGLPARAATIGVATALQESRLVNIDYGDRDSLGLFQQRPSQGWGTPEQVMDPVYSTNAFYDGLVEVEGWQDAEVTVAAQAVQRSAFPDAYAQHETRARAWASSLTGHSPGSVTCDVPPADPQASHVAVAERIDRDLGLDGRTVRGDGATTRIDATALRYDDTTRSTWAVAHWAVATAEATGAVEVRADGRVWTRESAAWTALGPDENGPRDGVVRVRTVQPTA				NA	NA	NA	NA	NA
AK001_01742	969	dapD	COG2171	2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferase	ATGACGACGCCCAGCACCTCTCCCCGTACCGCCTGGGGCCTCGGCCTCGCCACGGTCGCCGACGACGGCAGCACGCTCGACGTCTGGTACCCGTCGCCCGCGCTCGGCACGGCCCCGGACGACGTCGACGTCCCCGTCGACCTCGCCGCGCTCACGCGCCGTGACGACGCCCGCCGCGTCGACGTCTCGGTGGTGCGCACCGAGATCGACCTGGACGCCCCGCCGGCGGACACCGCGGACGCCTACCTGCGCCTGCACCTGATCTCCGCGCGGCTCGTCCAGCCGCACGGGCTCAACGTCGAGGGCATCTTCGGCAAGCTGACCAACGTCGTGTGGACGTCGCGCGGTCCCTGCGCGGTCGCCGACTTCGAGATGACGCGCCTGCGGCTGCGTGCCGCGACGGACGCCCCGGTCACGGTCTACGGCGTGGACAAGTTCCCCCGCATGGTCGACTACGTGGTGCCGACCGGCGTGCGCATCGCCGACGCCGACCGCGTCCGCCTCGGGGCGCACCTGTCCGAGGGGACGACGGTGATGCACGAGGGCTTCGTGAACTTCAACGCCGGCACCCTGGGGTCCTCCATGGTCGAGGGCCGCATCTCCGCGGGTGTCGTCGTGGGCGACGGGTCCGACGTCGGCGGCGGCGCCTCGATCATGGGCACGCTGTCCGGCGGGGGCAAGGAGGTCATCTCCCTCGGCGAGCGCTGCCTGCTCGGCGCCAACGCCGGTCTCGGCATCGCGCTCGGCGACGACTGCGTGGTCGAGGCCGGTCTGTACGTGACCGCCGGGACCAAGGTGACGGTCCTCGACGAGATGGGTGACGAGGGCGAGCCGCGCGTGGTCAAGGCCCGCGACCTGTCCGGCCGCGACGGTCTGCTCCTGCGCCGCAACTCCCGCACGGGTGCCGTCGAGGCGCTCACGCGCCAGGGTGTCGGCGTCGAGCTGAACGCCGCGCTGCACGCCAACTGA	MTTPSTSPRTAWGLGLATVADDGSTLDVWYPSPALGTAPDDVDVPVDLAALTRRDDARRVDVSVVRTEIDLDAPPADTADAYLRLHLISARLVQPHGLNVEGIFGKLTNVVWTSRGPCAVADFEMTRLRLRAATDAPVTVYGVDKFPRMVDYVVPTGVRIADADRVRLGAHLSEGTTVMHEGFVNFNAGTLGSSMVEGRISAGVVVGDGSDVGGGASIMGTLSGGGKEVISLGERCLLGANAGLGIALGDDCVVEAGLYVTAGTKVTVLDEMGDEGEPRVVKARDLSGRDGLLLRRNSRTGAVEALTRQGVGVELNAALHAN				NA	NA	NA	NA	NA
AK001_01743	1146	dapE_3	COG0624	Putative succinyl-diaminopimelate desuccinylase DapE	GTGACCGAAGCGCAGACACGACTTCCCGCGACCCTGACGGACCCCGCGACGCTCCCGAGCTCCGATCTCGTCGACCTGCTCGCCGCGATCTGCGACATCGAGTCCGTCTCGGGCGACGAGGCCGCACTCGCGGACGCTGTCGAGGCGCTGCTGGGCGACCAGCCGCACCTTGAGGTGCACCGCGACGGTGACGCCGTCGTCGCCCGCACCACGCTCGGGCGCGACCGCCGGGTCGTGCTCGCCGGCCACCTCGACACGGTGCCGCTGACCGACCCGCCCAACCTGCCGACGCGGCTGGCCGGTGAGGGTGACGACCGCGAGCTGTGGGGCCGGGGAACCGTCGACATGAAGGCCGGGGTCGCCGTCATGCTGGCGCTGGCCGTGGAGCTCGGGCGTCCTGGTGCAGCGCCGGTGGCGGACCTGACCTACGTGTTCTACGACCACGAGGAGGTCGAGGAGTCCAAGAGCGGGCTCAAGCGGCTCGCGCGGAACCGCCCGGACCTGCTGGCCGGGGACTTCGCCGTCCTCGGGGAACCGACGTCCGCCGACATCGAGGGAGGCTGTCAGGGCACGATCCGGGTCGACGTGACCACCCGCGGCGTGGCGGCACACTCGGCGCGGTCCTGGCGGGGCGAGAACGCCATCCACGGGGCCGCCCCGATCCTGACCCTCCTGTCCGGCTACGAGGCCGTGCAGGTCGAGGTCGACGGGCTGCTGTACCGCGAGGGCCTCAACGCCGTGGGCATCCGCGGCGGCATCGCCGGCAACGTCGTGCCCGACGCCTGCACCGTGACGGTCAACTACCGCTTCGCGCCGTCGCGCACGCTGGCGGAGGCCGAGCAGCACCTGCGGGAGCTGTTCGACGGCTACGAGGTCGTCGTCACCGACGCCTCGCCGGCCGCCCGGCCCGGACTCGACGACCCGCTCGCCGCCGAGTTCGTCGCCGCCGTCCTGGACCGGACCGGGGGAGCGCCGAAGCCCAAGTACGGCTGGACCGACGTGGCGCGCTTCGCCGAGCTCGGGATCCCCGCCGTGAACTTCGGCCCCGGCGACGCGCTGCTGGCCCACGCCGACGACGAGCGCGTGCGGGTCGCCGAGCTCGGCGTCTGCCGGGACGCCCTGCGGGCCTGGCTCGTGGGCGCGTAG	MTEAQTRLPATLTDPATLPSSDLVDLLAAICDIESVSGDEAALADAVEALLGDQPHLEVHRDGDAVVARTTLGRDRRVVLAGHLDTVPLTDPPNLPTRLAGEGDDRELWGRGTVDMKAGVAVMLALAVELGRPGAAPVADLTYVFYDHEEVEESKSGLKRLARNRPDLLAGDFAVLGEPTSADIEGGCQGTIRVDVTTRGVAAHSARSWRGENAIHGAAPILTLLSGYEAVQVEVDGLLYREGLNAVGIRGGIAGNVVPDACTVTVNYRFAPSRTLAEAEQHLRELFDGYEVVVTDASPAARPGLDDPLAAEFVAAVLDRTGGAPKPKYGWTDVARFAELGIPAVNFGPGDALLAHADDERVRVAELGVCRDALRAWLVGA				NA	NA	NA	NA	NA
AK001_01744	6129			hypothetical protein	ATGCGCAGCAGGAAATCGACCCGCGACGCCGCGAACATTCGACCCAGAGGCCGGTTCTTCCGGCCTCTCGCCGCGTTCACGGCCACGACGCTCGCCCTGGGCTCCGTGGTGGCGCTGAGCACGCCGGCGGCCGCTGTCGACAGCACCTTCGAGATCGACGGCAACCAGGTCACGGAGGGTGGGATCGACTGGGAGACGGCCGATCCGAGCATCATCCGGGACCCGATCGGTAACGCGGACACGACGACGTTCGCCGGCGGGGACTCCGAGGCCAGCGGCTGGCCGAACTGGGGCGGGGGCAACCCGGGAACGCCCTCGGGCAAGTCCGACCTCGGCAACGTCTTCGTCGACAGCGAGATCGTCACCGACGGCGTCGACTACACGCAGTGGCTGCACCTCGGCTGGGACCGCGACGGCGACTCCGGAACGGTGCAGTACTTCATCGAGCTCAACCAGCTGCCCAACCGCGACGCGCTGAATCCGGACCGCAGCGTCGGCGACGTCCGCATCGCCTTTGCGGAACTCGGCAACGGGAACTTCGTCTGCGAGTTCGTGCGGACGTGGGACGGCTCTGCGTGGGTCGACCCGGTCCTGTGCGCGGGGTCCGCGACCAACGCCACGACGAATACGGAGTCCATCGAGGACCTGTTCGACTCGCCGAACGCCAACGATGCCGGCCAGATCGAGGCGGACAAGTTCGTCGAGGGTTCCATCAACCTCACCGACCTCGGGATCGGCGACGTCTGCCCGGCCACCGGGTTCAGCACGCTGAACATGCGCACCCAGACCGGTGGGTCAGGGAACTCGGCCCTCAAGGACCTCGCCACCGGTGAGATCGACGTGCCGAGCCTGTGCTCGGACCTGACGATCATCAAGGAGAGCGAGGACGGCGTCCCGCTGCCGGGTGCGACCTTCGAGATCACCCCGAACCCGACGGGTGAAGGCCCCGACCCGCTGGAGTTCACCACCGGTGAGGACGGCACCTACACGTTCGAGACGATCGGTGAAGAGTTCTGGGGCACCGAGTTCACCGTCACCGAGACCGAGGCGCCGAGCAACTACCTCCTGCCCGCCGACCGCGACCAGACGATCACCATCGACGCCGGTGAGTCGGCCTCGCTGACCTTCGTCGACCCGACTCCGTGGGAGCCCCTGGAGATCGACGTCGACGGATCGGCCGAGCAGTTCATCACCCGGACGTGGACCAACGACAAGCAGGTCGACGGCGAGGACCAGATCGACCTGCCGGCCGACCAGTCGTCGGTGGAGCTCGAGTACACCATCGAGGTCTCCGAGAGCGCCGAAGAGGTCACCGACGAGTCCCGCGCCATCGAGGTCGTGGTGGACAATCCCAACGCGGAGAACGTCGTCGGCACGCTCGACGTCACGATCGACGGCCAGGCCTGCACCGTCGACGGAGCCGTGGACGTCGACCCGGTGACCGACGGGCTGCAGCTCGACTTCGGCCCGGACTTCACCGGCTTCGACGTCACCTGCCCGAACCCTCCCCTCGACGGCACCGTCGAGGCGACCGTGACCTGGGACCTGGGCGACTACCCGCAGACCCAGGACCACATCGACGACCCCGACAACGCGGGCACCGACTCCGCCGGCGACTCGGTCGAGATCACCGCCACCGTGACCGACGAGGGCGTGCAGTCCGTGGACGTCTATGACGACTTCGTCAACCCCGACCTCGAGCCCGAGCTCCTCGGGACGGTCGTGGCCACCGGGGCCGAGAACACCACCACGTTCGACGTCACCCAGGTGATCGACGTCGGCCTCGGCGAGTGCATCCAGGTCGTCAACGACGGCTACATCGTCGAGACCGGGGCCGGCGCCGACGGCGACCGGATCGACGAGGCCCAGGAGGTCGTGACCGTCTGCCGCGAGAACCCGGCGGACCTGACCATCCTCAAGGCGAACTCCGACGGTCTGCTCCTGCCGGGCGCGACCTTCACCATCAGCCCGAACCCGGTCGACCCGGCCGGTGACGACCCGCTGACGTTCAGCACCGGGGAGACCGGTGAGTACACCTTCTCCGACGTCGTCTACTTCGGTGAGTACACCGTCACCGAGACGGTCGCCCCCGAGGGCTACCTGCTCCCCGCCGACCGCGACCAGGTCGTCACGCTCGAGCCGGGCGCCGACGAGTCCCTCACCTTCGTCGACCCGCTGGCCTGGGAGCCGCTGGAGCTGGACCTGACCGCCTCGCAGTTCGTCACCCGGTCGTGGACGAACGACAAGTCCGCCGACCAGACCACCATCGACCTGCGGGCCGACGAGGAGTCGGCCACGATCAACTACACGATCGAGGTCATGGAGAGCGACACGGTCCTGGACGAGTCGGCCGACCCGTCCCGGTCGGTCAGCGTCACGGTCACCAACCCGAACGCGGGCGCCGTGACCGGGACGCTGGACGTCGACCTCGACGGCGCCGTCTGCACGCTCGAGGGCGACGACGCCGACGAGCTGTCGTACGAGTTCCCCTCCGGCGAGACCGTCCTGCAGCTCGACTGCCCGAACCCGCCGCTGTTCGGCGAGGTCGAGGCGACCGTGACCTGGGAGCTGGCGGACTACCCGCAGACCCAGGACCACATCGACAACCCAGGCGACGCCGGAACCGACTCGGCCACCGACACCCTCGACCTCGCCGATGCCACCACCGACAACGGACTGCTCTCGGTCGACGTCTGGGACGACTTCACCAACCCGGACTCGGAGCCCGAGTACCTCGGTACCGTCGACGCCACCGGCAGCGCCGACACCAGCACCTTCCAGTTCCCGAAGGATTTCACGGTCGCCCAGGGTGAGTGCCTCCAGGTCGACAACACCGCCTACGTGGTCGAGGAGGATGCCGGCGCCGACGGTGAGCGCATCGACGAGTCCAGCGCCTCGGTGACGATCTGCCGCGACGCCCCCGCCGAGCTGACCATCGTCAAGGTCGGCGAGGACGGGACCCCGATCCCGGGCGTCACGTTCGAGGTGAGCCCGAACCCACTCGACCCGGCCGCCGAGGAGCCCCTCACGGTCGTCACCGGCGAGGACGGGACCTACACCGTCGAGCAGGTCGCCGACTTCGGCGAGTACGACGTCACCGAGGTCTCGGTCCCGGCCGAGTCCGGCTATCTCATGCCTCCGCCGGGTGACCGCACGCAGACCGTCGAGCTCGTCGAGGGCGAGACCACCGAGGTCGAGTTCACCGACCCGCTGGCCTGGCAGCCGCTGACGGTCGACGTCTCGGGCGGGCAGTTCGTCACCCGGACGTGGACCAACGACAAGCAGGTCGACGGCAACGACACCGTCCTGCTGCCGGCCGACCAGGAGTCGGTCACGCTCGACTACACCATCGAGGTCGTCGAGAGCGACACGGTCCTGGACGAGTCCGAGGCCTCGCCCCGCTCGGTCACCGTCACGGTCACCAACCCGAACGCGGGCGCCGTGACCGGCACGGTGGACGTCGACCTCGACGGCACCGTCTGCACCCTCGAGGGCACCGACCTGGCCGGCTGGGAGAACGAGTTCGCCCCCGGTGCGACCGTGCTGACGGTCGACTGCCCCGACCCGCCGCTGTTCGGCGAGGTCGAGGCGACCGTGACCTGGGACCTCGCGGACTACCCGCAGACCCAGGACCACATCGACAACCCGGACGACGCCGGCACCGACTCGGCCTCCGACACCCTCGCCCTCGCCGAGGAGACCACCGACAACGGACTGCTCTCGGTCGACGTCTGGGACGACTTCGTCAACCCGGACTCGGAGCCCGAGTACCTCGGCACCGTCGACGCCACCGGCAGCGCGAACACCACCACGTTCGACGTCAGCCAGGAGATCGACGTCCCGCTCGGTGAGTGTGTGGAGGTCGTCAACGACGGCTACCTCGTCGAGGCCGAGGCGGGCGCCGACGGAGACCGGATCGACTCCGCCACCGAGGTCGTCGACGTGTGCCGCGAGGCGCCCGCCGACCTGACCGTCTTCAAGGTCGACGAGGACCAGCAGCCGCTGGCCGGTGCGACCTTCACCATCAGCCCGAACCCGGTCGACCCGGCCGGTGACGACCCGCTGACGTTCAGCACCGGGGAGACCGGTGAGTACACCTTCTCCGACGTCGTCTACTTCGGCGAGTACACCGTCACCGAGACGGTCGCCCCCGAGGGCTACCTGCTCCCCGCCGACCGCGACCAGGTCGTCACCCTGGCCACCGGGTCCGACGAGGCCCTCACCTTCGTCGACCCGCTGGCCTGGGAGCCGCTGACGGTCGAGGTCTCGGCCGAGCAGTTCGTCACCCGAACCTGGACCGACGACAAGCAGGCCGACGCCACCACGATCGACCTGCGGGCCGACGAGGAGTCGGCCACGATCAACTACACGATCGAGGTCATGGAGAGCGACACGGTCCTGGACGAGTCGGCCGACCCGTCCCGGTCGGTCGCCGTCACGGTCACCAACCCGAACGCGGGCGCCGTGACCGGCACGGTGGACGTCGACCTCGACGGCACCGTCTGCACCCTCGAGGGCACCGACCTGGACGGCTGGGAGAACGAGTTCCCCTCCGGCGACACCGTCCTGATGGTCGACTGCCCGAACCCGCCGCTGTTCGGCGAGGTCGAGGCGACCGTGACCTGGGACCTCGCGGAGTACCCGCAGACCCAGGACCACATCGACAACCCGGACGATGCCGGGACCGACTCGGCTACCGAAACCCTCGACCTGGCCGAGGCCACCACCGACAACGGCCTGCGCTCGGTCGACGTCTGGGACGACATCACCAACCCCGACGCCGACCCGGAGCTCCTCGGCACCGTCGACGCCATCGACAGCGCCAACACGACGCCCTTCGATTTCTCGAAGGAGTTCGAGGTCGCCCAGGGTGAGTGCCTCCAGGTCGACAACACCGCCTTCCTGGTGGAGACCGGCGCCGGCGCCGACGGCGAGCGCATCGACGAGTCCAGCGCCTCGGTGACGATCTGCCGCGACGCCCCCGCCGAGCTGACCATCGTCAAGGTCGGCGAGGACGAGACGGAGCTCGAGGGAGCCACCTTCGCGATCACGCCGAACCCGCTCGACCCGGCCGCCGAGGAGCCCCTCACGGTCGTGACCGGCGAGGACGGCACGTACACCGTCGAGCAGATCGCCGACTTCGGGACCTACCTGGTCGAGGAGACCGTCGCGCCCGAGGGCTACCTGCTCCCGGCGGACCGCACCCGGTCCGTCGAGCTCGTCGAGGGCGAGACGACCGAGGTCGAGTTCATCGACCCGCTGGTCTGGGAGCCGCTGGACATCACGGTCGAGGGTGAGGGCACGCAGTACGTCAGCCGCACCTTCACGGTCGACAAGGAGCCGGGCACGCACCCGGTCACCCTGCCGGCCGACCAGGAGGAGACCACGGTCGAGTTCGTCGTGCAGGTGGTGGAGGGTCCGACGACCCTCGACGACGCCACGCTCTCGGCGGCCGTGACGGTGTCCAACCCGAACGACTACGCGATGACGGGCACCGTGGTGGCGACGTTCGAGGACTCCGCCTGCCTCGTCGACGCCGAGGACGCCGACGGGATCGCCGACGGCCTCCAGTACTCGTTCGGACCGGGCGAGACGGCGATGGCGCTCACCTGCGAGAACGTCGACGACTTCGTCGGCACCCTCGAGGCGACCGTGACCTGGGACCTGGCGGCCTACCCGCAGACGCAGGACCACATCGACACGCCCGCCGAGGCCGGTGAGGACGAGGCCACGGACTCCCTCGACATCGACCCGAGCGTGATGGACAACGGTCCGACGTCGGTGGAGGTCTGGGACGACTGGATCGTCCCGGACTACGCGCCCGTGCTGCTCGGGACGGTCGACGCCGATTCGGCCGGGGCCGTCACGGAGTTTCCGGTCGCCCAGAGCGTCTCGGTCGAGCAGGGCCGCTGCGTGCTGGTCACCAACGAGGCCTACCTCCTCGACGGGGCCCGCGAGCTCGACCGTGACGGCGCGTCCGTCCAGGTCTGCCGCGACGTCCCGGTGACGCCGCCGCAGCCGCCGCTGCCGCAGACCGGCACGAACACGGCCCTGGCCGCGATCGGTGCGCTGCTGCTCATCGGTACCGGTGCCGGGATGATGTTCGTCCGTCGCCGCACCCGGGGCTGA	MRSRKSTRDAANIRPRGRFFRPLAAFTATTLALGSVVALSTPAAAVDSTFEIDGNQVTEGGIDWETADPSIIRDPIGNADTTTFAGGDSEASGWPNWGGGNPGTPSGKSDLGNVFVDSEIVTDGVDYTQWLHLGWDRDGDSGTVQYFIELNQLPNRDALNPDRSVGDVRIAFAELGNGNFVCEFVRTWDGSAWVDPVLCAGSATNATTNTESIEDLFDSPNANDAGQIEADKFVEGSINLTDLGIGDVCPATGFSTLNMRTQTGGSGNSALKDLATGEIDVPSLCSDLTIIKESEDGVPLPGATFEITPNPTGEGPDPLEFTTGEDGTYTFETIGEEFWGTEFTVTETEAPSNYLLPADRDQTITIDAGESASLTFVDPTPWEPLEIDVDGSAEQFITRTWTNDKQVDGEDQIDLPADQSSVELEYTIEVSESAEEVTDESRAIEVVVDNPNAENVVGTLDVTIDGQACTVDGAVDVDPVTDGLQLDFGPDFTGFDVTCPNPPLDGTVEATVTWDLGDYPQTQDHIDDPDNAGTDSAGDSVEITATVTDEGVQSVDVYDDFVNPDLEPELLGTVVATGAENTTTFDVTQVIDVGLGECIQVVNDGYIVETGAGADGDRIDEAQEVVTVCRENPADLTILKANSDGLLLPGATFTISPNPVDPAGDDPLTFSTGETGEYTFSDVVYFGEYTVTETVAPEGYLLPADRDQVVTLEPGADESLTFVDPLAWEPLELDLTASQFVTRSWTNDKSADQTTIDLRADEESATINYTIEVMESDTVLDESADPSRSVSVTVTNPNAGAVTGTLDVDLDGAVCTLEGDDADELSYEFPSGETVLQLDCPNPPLFGEVEATVTWELADYPQTQDHIDNPGDAGTDSATDTLDLADATTDNGLLSVDVWDDFTNPDSEPEYLGTVDATGSADTSTFQFPKDFTVAQGECLQVDNTAYVVEEDAGADGERIDESSASVTICRDAPAELTIVKVGEDGTPIPGVTFEVSPNPLDPAAEEPLTVVTGEDGTYTVEQVADFGEYDVTEVSVPAESGYLMPPPGDRTQTVELVEGETTEVEFTDPLAWQPLTVDVSGGQFVTRTWTNDKQVDGNDTVLLPADQESVTLDYTIEVVESDTVLDESEASPRSVTVTVTNPNAGAVTGTVDVDLDGTVCTLEGTDLAGWENEFAPGATVLTVDCPDPPLFGEVEATVTWDLADYPQTQDHIDNPDDAGTDSASDTLALAEETTDNGLLSVDVWDDFVNPDSEPEYLGTVDATGSANTTTFDVSQEIDVPLGECVEVVNDGYLVEAEAGADGDRIDSATEVVDVCREAPADLTVFKVDEDQQPLAGATFTISPNPVDPAGDDPLTFSTGETGEYTFSDVVYFGEYTVTETVAPEGYLLPADRDQVVTLATGSDEALTFVDPLAWEPLTVEVSAEQFVTRTWTDDKQADATTIDLRADEESATINYTIEVMESDTVLDESADPSRSVAVTVTNPNAGAVTGTVDVDLDGTVCTLEGTDLDGWENEFPSGDTVLMVDCPNPPLFGEVEATVTWDLAEYPQTQDHIDNPDDAGTDSATETLDLAEATTDNGLRSVDVWDDITNPDADPELLGTVDAIDSANTTPFDFSKEFEVAQGECLQVDNTAFLVETGAGADGERIDESSASVTICRDAPAELTIVKVGEDETELEGATFAITPNPLDPAAEEPLTVVTGEDGTYTVEQIADFGTYLVEETVAPEGYLLPADRTRSVELVEGETTEVEFIDPLVWEPLDITVEGEGTQYVSRTFTVDKEPGTHPVTLPADQEETTVEFVVQVVEGPTTLDDATLSAAVTVSNPNDYAMTGTVVATFEDSACLVDAEDADGIADGLQYSFGPGETAMALTCENVDDFVGTLEATVTWDLAAYPQTQDHIDTPAEAGEDEATDSLDIDPSVMDNGPTSVEVWDDWIVPDYAPVLLGTVDADSAGAVTEFPVAQSVSVEQGRCVLVTNEAYLLDGARELDRDGASVQVCRDVPVTPPQPPLPQTGTNTALAAIGALLLIGTGAGMMFVRRRTRG				NA	NA	NA	NA	NA
AK001_01745	4011			hypothetical protein	ATGACCGCGACGACGCTGGCCCTGGGGTCCGTCGTCGCGCTCGGGACCGGCGCGTCCGCCGTCGACAGCACGTTCGAGATCGACGGGAACCAGGTCACGGACGCCACGCTCGACTGGCAGACGGCCGACCCGAGCATCATCCGGGACCCGATCGGCAGCGGCGACACGACGACGTTCGACGGGTCGAACTCCGAGGGGGCCACAGGTGCCAACGGATGGCCGAACTGGAGCCCCGGCAACCCGGGCACGAACTCCGGCAAGTCCGACCTCGGCAACGTCCTCGTCGACAGCGAGATCGTCGAGGCGGGCGGCGAGTACACGCAGTGGCTGCATCTGGCCTGGGACCGCGACGGGGACACCGGCACCGTGCAGTACTTCGTCGAGCTCAACCAGGAGCCGAACCTCGACGAGCTCAACCCCGACCGGACGCCCGGCGACGTGCGCATCACGGCCGGCGAGGCCGGCAACAACACCTTCGCGTGCGTCGCTGTCAACACATGGGACGGATCGGCCTGGGCAGACAGCGTCCCGTGCGCCGGCGATCTCGCGATCGCCGTGTCGAACGAGACCCCGATCCGGGACTACTTCGACTCGCCGAACTCGGGCGAGCAGGACCTCATCCCGCCCGACCAGTTCGTCGAGGCCTCCATCAACCTCACCGACCTCGAGCTCGGCGAGGTCTGCCCGGCCACGGGGTTCAGCACCTTCAACATGCGCACCCAGACCGGCGGGTCCACGAACTCGTCCCTCAAGGACCTCGCGACCGGCGAGATCGACGTGCAGAGCCTGTGCTCGGACCTGACGGTCCTCAAGCAGGGCGAGGACGGCACCCCGCTGCCGGGCGCCACCTTCGAGATCAGCCCGAACCCGGTCGACCCGGCCGGCGACGACCCGCTGGAGTTCACCACCGGCGCCGACGGCACCTTCACCTTCGACGAGCTCGGCGAGGACGCCTGGGGCGTCGAGTACACCGTGACCGAGACCGGTGCCCCGGACGGCTACCTGCTGCCGCCTCCCGGCGAGCGGACCCAGACCATCACGATCGAGGCTGGCGTCTCGGAGTCCCTGACGTTCGTCGACCCCCTGGCGTGGGAGCCCCTGACCATCGACGTCACGGCCGAGCAGTTCGTCACCCGCACCTGGGAGAACGACAAGCAGGTCGACGGCGACGACGTCCTTCTGCTGCCGGCCGACCAGGAGTCCGTCGAGCTCGACTACGTCGTCGAGGTGTTCTGGAGCGACACGATGCTCGAGGAGGGCGGCCGTACCGTCACGGTCACGGTCGACAACCCCAACGAGGAGCCCGTCACCGGCAACCTGAGCGTCGACCTCAACGGCGAGCTCTGCAGCTACGCCGGCACCGACCTCGACGCGTGGGAGAACGAGTTCGCCCCCGGTGAGACCGTCCTGGACGTCGTCTGCGACGACCCGCCGCTGAACGGCGAGGTCGACGCCACCGTCACCTGGGACCGCGGCGTCTACCCGCAGTCCCAGGACGACGTCGACGACCCGGAGAACGCTCCCCAGGGCGAGGCGACCGACAGCACCCTGATCGTCACCACCGACAACGGGTTGCCGGCCGTGGACGTCTGGGACGACTTCACCAACCCCGACCTGCCGCCGACGTACCTCGGCACGGTCCAGGCCACCGAGGACGCGGGCTCCGAGGAGTTCACGGTCTCCCAGGTGATCGAGGTCCCGCTGGGCGAGTGCATCGAGGTCACCAACGACGGCTACATCGTCGAGGTGGAGGCAGGCGCCGACGGCGACCGCATCGACTCCGCCACCGAGGTCGTCGACATCTGCCGCGAGGAGGGGGCCGAACTGACCATCTCCAAGGTCGACGAGGACGAGCAGCCGTTGCCCGGTGCGACCTTCGAGATCAGCCCGAACCCGGTCGACCCGACCGGTGACGACCCGCTGACGTTCAGCACCGGGGAATCCGGCGAGTACACCTTTGAGGACGTCGTCTCCTTCGGCGAGTACACCGTCACCGAGACGATCGCCCCCGCAGGCTACTTCCTGCCGGCCGAGCGTAGCCAGGTGGTCACGCTGGCGCCGGGGTCCGACGAGACGCTCACCTTCGTCGACCCGCTGATCTGGGAGCCGCTGGACCTGGAGCTGTCGGCGGAACAGTTCGTCACCCGGACCTGGGCGAACGACAAGGAGGCGGACGCGACCACGATCGACCTCCGTGCCGATGAACCCTCGGCCACGATCAACTACACGATCGAGGTCATGGAGAGCGACACCTTCCTCGACCCGGACGCCGACCCGGCCCGTGCGGTCACGGTCACGGTCGACAACCCCAACGCCGACCCCGTCACGGGCATGCTCACGGTCGAGCTCGACGGCGACTTCTGCTCTGACGAGGGCACCGACCTGGACGAGTGGGAGAACGAGTTCGCCGGCGGCGTGAACGAGTTCACGGTCGACTGCCCCAACCCGCCGCTCTTCGGCCAGATCGAGGCGACGGTCACCTGGGACCGCGGGGAGTACCCGCAGACCCAGGACGACGTCGACGACCCGGAGAACGCCCCGCCGGGTGAGGCGTCCGACGGCATCAGCCTCGAGGAGGTCACCACCGACAACGGCGTGACGTCGGTGGACGTCTACGACGAATTCACCAGCCCCGACGAGGCGCCGGAGTTCCTGCAGACGGTCACCTCGACCGGCTCGGCGGAGACCACGACCATCGAGTTCTCGCAGGAGTTCGAAGTTCCCCAGGGCGAATGCCTCGTCGTCGACAACACCGCGTACATCGTCGAGACCGGCGACGGCGCCGACGGTGACCGGATCGACGATGACAGCGCCTCGGTGACGATCTGCCGTGACGCCCCCGCCGAGCTGAGGATCGTCAAGGCCGCCCAGAAGATCACCGAGGACGAGGACGACGTCTACCTCCCCGGTGCCACCTTCGAGATCATGCCGAACCCGCTCGACCCGGAGAGCGAGGACCCCCTGGTCGTCGTGACCGGTGAGGACGGGACGTACACGATCGAGGAGATCGCCGACTTCGGCGAGTACACGGTCACCGAGACCGAGGCTCCCGAGGGCTACCTCCTGCCGGCGAACCCCACCAGGACGGTCGAGCTGCTCGAGGGCGAGACCACCGAGGTCTCCTTCGTCGACCCGCTGGTCTGGGAGCCGCTGAACATCGAGGTGATGGGCGAGGGTGAGCAGTTCGTCAGCCGCACCTTCACCGTCGACAAGGAGGCCGAGACGCACCCGACGACCCTGCCGGCCGACCAGGCCCAGACCACCGTCGAGTTCGTGGTGCAGGTCGTCCAGGGTCCGACGACCCTCGACGACGCCACCCTGCAGGCCTCGGTGGAGGTGTCCAACCCGAACGACAACCCGGTGATGGGTACCGTCGCCGCGACGTTCGAGGACGAGGCCTGCCTGATCGACGCCGAGGACGCCGACGAGGCGACGGACGGCCTCCAGTTCTTGTTCCCGTCCGGCGACAGCCTCATGACGCTCACGTGCGAGAACGTGAACGACTTCGAGGGCACCCTCGCGGCGACCGTCACCTGGGACCTCGCGGAGTACCCGCAGACCCAGGAGCAGGTCGACGACCCGGAGAACGCCGGGGAGGGCAGCGCGTCCGACGCGATCGGCATCGACCCGAGCGTCACCGACAACGGCCCGACGTCGGTGGAGGTCTGGGACGACTTCTCCACCCCGGACCTCGCCCCGACGATGCTCGGCACCGTCGACGCGACGGAGCCCGGAGCGGTGACCGAGTTCCCGGTCAGCACGACGGTCACGGTCGGCCAGGGCGAGTGCCTGGACGTCACCAACGAGGCCTACCTCCTCGACGGGGACACCGAGCTCGACCGCGACTCGGCCTCCGTGGAGATCTGCCGCGACGTCCCGGTGACGCCCCCGCCGACGCCGCCGCTGCCGCGGACCGGTGCCGACACGGCGATGGCGGTCATCGCCACCCTGCTGCTCATCGGCACCGGCGCCGGGATGCTCTACCTCCGCCGCCGTAGCAGCAACGGCTGA	MTATTLALGSVVALGTGASAVDSTFEIDGNQVTDATLDWQTADPSIIRDPIGSGDTTTFDGSNSEGATGANGWPNWSPGNPGTNSGKSDLGNVLVDSEIVEAGGEYTQWLHLAWDRDGDTGTVQYFVELNQEPNLDELNPDRTPGDVRITAGEAGNNTFACVAVNTWDGSAWADSVPCAGDLAIAVSNETPIRDYFDSPNSGEQDLIPPDQFVEASINLTDLELGEVCPATGFSTFNMRTQTGGSTNSSLKDLATGEIDVQSLCSDLTVLKQGEDGTPLPGATFEISPNPVDPAGDDPLEFTTGADGTFTFDELGEDAWGVEYTVTETGAPDGYLLPPPGERTQTITIEAGVSESLTFVDPLAWEPLTIDVTAEQFVTRTWENDKQVDGDDVLLLPADQESVELDYVVEVFWSDTMLEEGGRTVTVTVDNPNEEPVTGNLSVDLNGELCSYAGTDLDAWENEFAPGETVLDVVCDDPPLNGEVDATVTWDRGVYPQSQDDVDDPENAPQGEATDSTLIVTTDNGLPAVDVWDDFTNPDLPPTYLGTVQATEDAGSEEFTVSQVIEVPLGECIEVTNDGYIVEVEAGADGDRIDSATEVVDICREEGAELTISKVDEDEQPLPGATFEISPNPVDPTGDDPLTFSTGESGEYTFEDVVSFGEYTVTETIAPAGYFLPAERSQVVTLAPGSDETLTFVDPLIWEPLDLELSAEQFVTRTWANDKEADATTIDLRADEPSATINYTIEVMESDTFLDPDADPARAVTVTVDNPNADPVTGMLTVELDGDFCSDEGTDLDEWENEFAGGVNEFTVDCPNPPLFGQIEATVTWDRGEYPQTQDDVDDPENAPPGEASDGISLEEVTTDNGVTSVDVYDEFTSPDEAPEFLQTVTSTGSAETTTIEFSQEFEVPQGECLVVDNTAYIVETGDGADGDRIDDDSASVTICRDAPAELRIVKAAQKITEDEDDVYLPGATFEIMPNPLDPESEDPLVVVTGEDGTYTIEEIADFGEYTVTETEAPEGYLLPANPTRTVELLEGETTEVSFVDPLVWEPLNIEVMGEGEQFVSRTFTVDKEAETHPTTLPADQAQTTVEFVVQVVQGPTTLDDATLQASVEVSNPNDNPVMGTVAATFEDEACLIDAEDADEATDGLQFLFPSGDSLMTLTCENVNDFEGTLAATVTWDLAEYPQTQEQVDDPENAGEGSASDAIGIDPSVTDNGPTSVEVWDDFSTPDLAPTMLGTVDATEPGAVTEFPVSTTVTVGQGECLDVTNEAYLLDGDTELDRDSASVEICRDVPVTPPPTPPLPRTGADTAMAVIATLLLIGTGAGMLYLRRRSSNG				NA	NA	NA	NA	NA
AK001_01746	780			hypothetical protein	ATGACCGAACGTACCGACGACGGCGTCCCGGAGTCCGGCCGCGGATACCGCAAGGGACCGGTCCTGCTGCGGGGCACGCAGATCCCGGACTCGACCACGGACCAGCGGCTGCTGGCTCCGGGGGAGGGGACCGAGTGGGTCCACACGGACCCGTGGCGCGTGATGCGTATCCAGGCCGAGTTCGTCGAGGGTTTCGGGGCGCTGGCCGAGGTTGGCCCGGCGGTCTCGGTGTTCGGCTCGGCACGCACCGCCCCGGACCACCCGGACTACGTGCTCGGTGAGCAGATCGGCAAGCTGCTCGTCTCCTCGGGGTACTCGGTGATCACCGGCGGGGGCCCCGGCATCATGGAGGCCGCCAACAAGGGCGCGGCCGAGGCCGGTGGCACGTCCATCGGGCTGGGGATCGAGCTGCCGTTCGAGCAGGGGATGAACCCGCACGTCAACCGCGGCGTGAGCTTCCGCTACTTCTTCGCCCGCAAGACGATGTTCGTCAAGTACGCCCAGGGGTTCGTCGTCCTGCCGGGTGGCTTCGGCACCTTCGACGAGCTCTTCGAGGCCCTCACGCTCGTCCAGACGCACAAGGTCACCGGCTTCCCCGTCGTGCTGGTCGGCAGCGACTACTGGGGCGGGCTGCTCGAGTGGCTGCGCACCGCCGTCGTCGACCGCGGCATGATCAACCCGGCCGACCTGGACCTGCTGCACGTGACCGACACGGCCGAGGAGGCCGTCTCGCACGTCATCGAACGCGGGCGGGCGCTGGCCGCCGAGTTCCGCACGTGA	MTERTDDGVPESGRGYRKGPVLLRGTQIPDSTTDQRLLAPGEGTEWVHTDPWRVMRIQAEFVEGFGALAEVGPAVSVFGSARTAPDHPDYVLGEQIGKLLVSSGYSVITGGGPGIMEAANKGAAEAGGTSIGLGIELPFEQGMNPHVNRGVSFRYFFARKTMFVKYAQGFVVLPGGFGTFDELFEALTLVQTHKVTGFPVVLVGSDYWGGLLEWLRTAVVDRGMINPADLDLLHVTDTAEEAVSHVIERGRALAAEFRT				NA	NA	NA	NA	NA
AK001_01747	933	folP2	COG0294	Inactive dihydropteroate synthase 2	GTGATCCCACCGGCGGGGGCGCCGCTCGTCCTGCGCGGCCGCGAGGTCGGCCGGGACGCCGACGGCGTGCTGCGCCCCGTGGTGATGGCGATCGTCAACCGCACCACCGACTCCTTCTACGCCCCGGCGCGGCTGGCCGACGACGGCGCGGCCCTGGACGCCGCCCACGCCGCCTGGACCGACGGGGCCGCGATCCTCGACGTCGGCGGGGTGCGCGCCGGTACGGGGCCCGCGGTGAGCGAGTCCGAGGAGATCGAGCGGGTCGTGCCGTTCGTGGCGAAGGTCCGGGCCGAGCTGCCCGACCTGCTGCTCAGCGTCGACACGTGGCGCGCCGAGGTGGCCCGGGCCGCGATCGAGGCCGGTGCCGACCTCATCAACGACACCTGGGCCGGCCACGACCCGGGTCTCGTCGAGGTCGCCGGCGCCGCCGGGGTCGGCGTCGTCTGCTCCCACACCGGAGGAGCCCTGCCCCGCACCGACCCGTACCGCGTGTCCTACCCGACGCCGGAGGGAGCCGACGGCGGCGACCCGCGCGACGGCGTCACCCGCGACGTGCTCGCCACGCTGCGTGCGGCCGCCGACCGTGCCGTCGCCTGCGGCGTGCCGCCGTCGTCCGTGCTCGTCGACCCGACGCACGACTTCGGCAAGAACACCTGGCACTCGCTGCACCTGCTGCGCCGGACCGATGCGCTGACCGCCCTCGGGTACCCGGTGCTCATGGCGCTCAGCCGCAAGGACTTCGTCGGCGAGACCCTCGACCTGCCTCCCGACGACCGGCTGGCCGGCACCCTCGCGGCCACGGCGCTCGCCGCCTGGCACGGTGCCCGCGTGTTCCGCAGCCACGACGTCGCGGCCACGCGGCACGCCCTGGAGATGGTGGCGGCGGTCCGTGACGAGGCGCCTCCACGGGTCGCGCGTCGCGGCCTGGCCTGA	MIPPAGAPLVLRGREVGRDADGVLRPVVMAIVNRTTDSFYAPARLADDGAALDAAHAAWTDGAAILDVGGVRAGTGPAVSESEEIERVVPFVAKVRAELPDLLLSVDTWRAEVARAAIEAGADLINDTWAGHDPGLVEVAGAAGVGVVCSHTGGALPRTDPYRVSYPTPEGADGGDPRDGVTRDVLATLRAAADRAVACGVPPSSVLVDPTHDFGKNTWHSLHLLRRTDALTALGYPVLMALSRKDFVGETLDLPPDDRLAGTLAATALAAWHGARVFRSHDVAATRHALEMVAAVRDEAPPRVARRGLA	PGPT0007915_929	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796	NA	NA
AK001_01748	168			hypothetical protein	ATGGCTGCGATGAAGCCGCGGACGGGCGACGGGCCCCTCGAGGTCACCAAGGAGGGACGCGGCATCGTCATGCGTGTTCCGCTGGAGGGCGGTGGTCGGCTGGTCGTCGAGCTGAACGCGACCGAGGCCGGCGAGCTGGGCGAGGCCCTCCAGGGCGTCGTCGGCTGA	MAAMKPRTGDGPLEVTKEGRGIVMRVPLEGGGRLVVELNATEAGELGEALQGVVG				NA	NA	NA	NA	NA
AK001_01749	432		COG4122	Putative O-methyltransferase	ATGCTGCCGGACGGCGTCCTGACCACCATCGACCCGGACGCGGCGCGGCAGCGCGCCGCGAAGACGGCGTTCGCGGACGAGGAGGTGGCGTCCTCGCGCACGCGGGTGATCACCCGCCCACCGCTGGACGTGCTGCCGCGACTGACGGACGGCGCCTACGACCTGGTGCTGGTCGCGGTCGACCCCCTCGTGCTGGCCTCGCACGTCGAGGCGGCGGTCCGGCTGCTGCGCGAGGGGGGCGTGCTGGGGATCGTCGACCCGGCGCTCAGCGGGCGGGTCGCCGACCCGACGCGGCTCGAGGCACCCACCGTGGCGGTCCGGGAGACGGCGCACGCCGTCCGCGCGGACGAACGCCTGGTGCCGGCGATGGTCCCGACCGGCGACGGGCTGCTGCTCGCGGTGCGCCGCGCACCGCGGCACCCGTCCGCCTGA	MLPDGVLTTIDPDAARQRAAKTAFADEEVASSRTRVITRPPLDVLPRLTDGAYDLVLVAVDPLVLASHVEAAVRLLREGGVLGIVDPALSGRVADPTRLEAPTVAVRETAHAVRADERLVPAMVPTGDGLLLAVRRAPRHPSA				NA	NA	NA	NA	NA
AK001_01750	555	sigE	COG1595	ECF RNA polymerase sigma factor SigE	ATGACCAAGACCGTGGAGTCCGACACCGCCTCGTGGGTGCCCCCGACCTGGGACGAGATCGTCCGGGAGCACTCCGCGCGCGTGTACCGGCTCGCCTACCGTCTGACCGGTGACCGGCAGGACGCCGAGGACCTGACGCAGGAGACGTTCCTGCGGGTGTTCCGGTCGCTGTCCAGCTACACCCCCGGCACCTTCGAGGGCTGGCTGCACCGCATCACGACCAACCTCTTCCTGGACCAGGTCCGCCGCAAGAAGCGGATCCGTTTCGAGGCCATGGGCGAGGACGCCTCGCGGGTCCAGTCCACCGACGACCGCGGCCGGCCCGAGCGCGGCTTCGAGCACGGCAACCTCGACCACGACGTCCAGGCCGCCCTCGACGGCCTGCGACCCGAGTACCGCGCCGCCGTCGTCCTGTGCGACATCGAAGGTCTCAGCTACGAGGAGATCGCGGTCACCCTGGGCATCAAGATCGGCACGGTGCGCTCACGGATCCACCGCGCGCGGGCCCAGCTGCGCGACGCGCTGGAGCACCGACGCGAGGACGTGCGGCGATGA	MTKTVESDTASWVPPTWDEIVREHSARVYRLAYRLTGDRQDAEDLTQETFLRVFRSLSSYTPGTFEGWLHRITTNLFLDQVRRKKRIRFEAMGEDASRVQSTDDRGRPERGFEHGNLDHDVQAALDGLRPEYRAAVVLCDIEGLSYEEIAVTLGIKIGTVRSRIHRARAQLRDALEHRREDVRR	PGPT0014960_3674	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_01751	894			hypothetical protein	ATGAGCGCCCACCTCGGCGACCGCGTCAGCGCGCTGGCCGACGGCCAGCTGCCGCCGGCCGAGGCCGAGCGTGCCCTGGCGCACGTCGCGTGCTGCTCGCTGTGCGCCGCCGAGCTCGAGACGGCACGGTCCGCGCGCCGGCACCTCGCCGCCGCCGGGGACGTCACCCCGACGGCGGAGCTGACCCAGCGGCTCCTGGACCTCTCGGCCTCCATCCCGCCCGCCGACGGCGACCCCCTGCGGGCCCCCGACCGGGACACCGGGTGGGCCGCACCCGAGGCGTGGCACCCGCCCCTGACCGGCGACGTCCTGGGCGCGGAGCGACGACGGCGCCGCCGCCGGGTCGCGCTCGTGGGTGCCGGGGGAGCAGGTGTGCTGGGCTGTGCCCTGTTCGTGCTCGGCCAGGCACCCGTGGTCACACCCGACACCTCGCGCGTCGCCGCCCTGACCACCCTGGCAGGGGCGGGCGGCACGTCCGGCGACACGGTGACCGAGGCCGGGCTCGGCCGTGCGGGGTTCGTGGCGCCGTCGTCGCTGCCGCCGGGGTACGAGGTGGTGGCCGTGCGCACCGGCCCGACGTCGTGCGAGATCGACCTGACCGGCCCCGACGGGCCCGTGGTCGTCCGCCAGCAGCAGGGCCGGCTGGCGGCAGGGACCGGGTCGACGGCGCGGACCGAGGTCGCCGGGCGCGGTGACGTCGTCGTGCTGTCCCAGGACCCCTGGCACGTCGCCTGGCAGGCCGGCGACGTCGTCGTGGAGGTCACGACGGACGCCCCCGACGACGTCCTGTCCGAGGTCGTCGCTGCTTTCCCCGAACGTGACTACGACGGGGGCGTCCTGCCCCAGATCACTCGTGGCTGGTCGACCGTGACAGGAGCTCTCACCCTTCCATGA	MSAHLGDRVSALADGQLPPAEAERALAHVACCSLCAAELETARSARRHLAAAGDVTPTAELTQRLLDLSASIPPADGDPLRAPDRDTGWAAPEAWHPPLTGDVLGAERRRRRRRVALVGAGGAGVLGCALFVLGQAPVVTPDTSRVAALTTLAGAGGTSGDTVTEAGLGRAGFVAPSSLPPGYEVVAVRTGPTSCEIDLTGPDGPVVVRQQQGRLAAGTGSTARTEVAGRGDVVVLSQDPWHVAWQAGDVVVEVTTDAPDDVLSEVVAAFPERDYDGGVLPQITRGWSTVTGALTLP				NA	NA	NA	NA	NA
AK001_01752	1329			hypothetical protein	ATGACACCCCAGGATCCCGACCTCTTCGCCTCCCCGGAGCCCCCGGCCCGCCGGCCCGACCCCGCACCGCCGGTGGCCGCGCAGCCCGCGCCCGCGTCGTCGGCCCCGGCCGCCGCGCCGTCGTCGGCCCCGGCTGCGGACACCCCGCCGTCCGTGCCGCCGTCGGTGCCGCAGCCCGCGGGCACCCCGGCCGGGGGCGCACCGGCGTCCCGGCGGCCGGCCCGGCTCGGCGCCGGACGCACGGCCGTGATCCTGGTCCTGGCGCTCGCGGTCGGCCTGGTCGGTGGCGTGCTCGGCGACCGGATCGCCGGCGGCGCCCAGGACGAGGCCCCCGTCAGCGCCGACCTGCCGGTCAGCCCCGGGTCGCAGGACGACGGCGCCGACGACTCCCGCCCGGTGGACTCGCACGCGGCCATCGCGGCCGAGGTGCTGCCGTCGGTGGTCTCGCTGGAGATCTCCGGTGCCGGGGGGCGCGGGTCCTCGGGCTCGGGCTTCGTGCTGCGCGAGGACGGCTACATCCTGACCAACGACCACGTGGTCACCGCCGGCGGAGGGGGCGGCGACGTGGTCGTCGTCCTCTCCGACGGCTCCGAGCACGCGGGCGAGGTCGTCGGGAGCACCCCCGACTACGACCTGGCCGTGGTCAAGATCGACGTCGACGGGCTGACGCCGCTCGTGCTGGGCGACTCGGACGACGTCGTGGTCGGGGACGCCGTGCTGGCCGTCGGCGCACCGCTGGGCCTCGACTCCACGGTCACCGCCGGGATCGTCAGTGCGCTGCACCGTCCCGTGCAGGCCGGGGACCAGGCGACGACCGCGTTCATCGACGCCATCCAGACCGACGCCGCGATCAACCCCGGCAACTCCGGCGGGCCGCTCGTCGACGCCGACGGCGAGGTCGTGGGCATCAACTCCGCGATCGCCCAGCCGCCCGGTGCCACGCAGGCCACCGGGAGCATCGGCCTCGGGTTCGCCATCCCGGCCAACCAGGCCCGCACGACGGCGGAGCAGCTCATCGAGACCGGTCAGGCGACCTATCCCGTGATCGGCGTGCTGCTGGACACCTCCTACTCCGGGGAGGGCGTCCAGGTGTCGTCCGAGGCCCAGCAGGGCATCCCGCCCGTGACGCCGGACGGTCCGGCGGACCTGGCCGGGGTCCGTGCCGGTGACGTCATCCTGGCGATCGACGGCCGCCCGGTCTCCCGCAGCGACGAGCTCATCGTGGCGATCCGTGCGCGCCAGCCGGGTGACGCCGTCACCCTGCGCGTCCGCAGCGACGGCGAGGAGCGCGAGGTGCGCGTCGTGCTGCAGGAGCGGGCGAGCGAGTGA	MTPQDPDLFASPEPPARRPDPAPPVAAQPAPASSAPAAAPSSAPAADTPPSVPPSVPQPAGTPAGGAPASRRPARLGAGRTAVILVLALAVGLVGGVLGDRIAGGAQDEAPVSADLPVSPGSQDDGADDSRPVDSHAAIAAEVLPSVVSLEISGAGGRGSSGSGFVLREDGYILTNDHVVTAGGGGGDVVVVLSDGSEHAGEVVGSTPDYDLAVVKIDVDGLTPLVLGDSDDVVVGDAVLAVGAPLGLDSTVTAGIVSALHRPVQAGDQATTAFIDAIQTDAAINPGNSGGPLVDADGEVVGINSAIAQPPGATQATGSIGLGFAIPANQARTTAEQLIETGQATYPVIGVLLDTSYSGEGVQVSSEAQQGIPPVTPDGPADLAGVRAGDVILAIDGRPVSRSDELIVAIRARQPGDAVTLRVRSDGEEREVRVVLQERASE	PGPT0021000_674	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372	NA	NA
AK001_01753	438	tatB		Sec-independent protein translocase protein TatB	GTGGGAGTCTTCGGGATCAACGGGGGCGAGCTCGTCGTCATCATCGTGCTGGCGCTCGTGCTCATCGGGCCCGAGCGCCTGCCCCGCTACGCCGCACAGCTCGGCGGTCTGGTCCGCCAGGGCAAGGTGCTGCTGCGGGACGCCAAGAGCCGGGTCGACGACGAGCTCGGCGACGAGCTCCGCGACGTGGACTGGCAGAAGCTGGACCCGCGGCAGTACGACCCGCGGCGCATCGTCAAGGAAGCGCTGCTGGACGACGACCCGGCGCCGACGCGCGGCGCCGCGAACCGCAGCGCCGCGGGCCGCACCGCCCGCGCGGCCGGTGGCGGTGCCGCCGGGGTGGCCGGTGTCGCGGGTGCCGGGTCCGCCGCGGTGCCCGCAGCGCCGAGCGGGCCGTCGTCGTCCGGTCCGGCTCCGTTCGACGACGAAGCCACGTAG	MGVFGINGGELVVIIVLALVLIGPERLPRYAAQLGGLVRQGKVLLRDAKSRVDDELGDELRDVDWQKLDPRQYDPRRIVKEALLDDDPAPTRGAANRSAAGRTARAAGGGAAGVAGVAGAGSAAVPAAPSGPSSSGPAPFDDEAT				NA	NA	NA	NA	NA
AK001_01754	1056	trpS	COG0180	Tryptophan--tRNA ligase	ATGTCCGACCTCCCCACCGCACCGGGCGCGCAGTCCGGATCCCGTCCTCGCATCCTGTCCGGCATGCAGCCGACCGACTCGTCGCTGCACCTGGGCAACTACCTGGGTGCCCTGACGCAGTGGGTGGCCCTGCAGGACGACTACCAGGCGCTCTACTGCGTGGTGGACCTGCACGCGCTCACCGTCAACCCGGACCCCGCCGCGCTGCGGGAGCGGACCCGCGCGACAGCCGCGCAGTACCTGGCCGGCGGCGTCGACCCGGCCCGGTCGGCCCTGTTCGTGCAGTCGCACGTGCCGGAACACACCGAGGTCGCCTGGCTGCTGAGCTGCCAGACCGGGTTCGGCGAGGCCAGTCGGATGACCCAGTTCAAGGACAAGTCGGCGCGGCAGGGGACCGAGGGGACCACGGTCGGGCTGTTCACCTATCCGGTGCTGATGGCGGCCGACATCCTCGTCTACGACGCCGCCCTCGTCCCGGTCGGCGAGGACCAGCGCCAGCACCTCGAGCTGACCCGGAACCTGGCCGAGCGCCTCAACGCCCGCTTCGGGGCGGGCACCGCCGTCGTGCCCGACGCCCACATCGTCACCGCCACCGCCAAGATCCAGGACCTGCAGAACCCGACCGCGAAGATGTCGAAGTCGAACGCGGGAGGCAAGGGGGTCATCTGGCTGCTGGAGAACCCGAAGAAGGCTGCCAAGGCGATCAAGTCGGCCGTCACCGACGCCGACGACTCCTACGCCGTCTACTTCGACCGCGAGGCCAAGCCCGGCATCTCCAACCTGCTGTCGATCTACTCCGCCGTCACCGGCCGCGGGGTCGACGACATCGCCGCCGAGTACGACGGCCGCGGCTACGGGTACCTCAAGGTCGACCTGGCCGACGCCGTCGTGGCCTTCCTCGAGCCGTTCCAGGAGCGGGCGAACACCTACCTGTCCGACCCCGCCGAGCTGGACAAGGTGCTCGACGACGGTGCCGCCCGGGCCCGGGAGATCGCCGGCGGCGTGCGCGACCGGCTCTTCGACCGCTTCGGCCTGCTGCCCCGGGGTCACCGGTGA	MSDLPTAPGAQSGSRPRILSGMQPTDSSLHLGNYLGALTQWVALQDDYQALYCVVDLHALTVNPDPAALRERTRATAAQYLAGGVDPARSALFVQSHVPEHTEVAWLLSCQTGFGEASRMTQFKDKSARQGTEGTTVGLFTYPVLMAADILVYDAALVPVGEDQRQHLELTRNLAERLNARFGAGTAVVPDAHIVTATAKIQDLQNPTAKMSKSNAGGKGVIWLLENPKKAAKAIKSAVTDADDSYAVYFDREAKPGISNLLSIYSAVTGRGVDDIAAEYDGRGYGYLKVDLADAVVAFLEPFQERANTYLSDPAELDKVLDDGAARAREIAGGVRDRLFDRFGLLPRGHR	PGPT0007120_2643	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867	NA	NA
AK001_01755	564	yjcG	COG1514	Putative phosphoesterase YjcG	GTGAGGATCCCGGCACGAGGCCCTGACCAGCTCCGGATCGGTATCGCGATCGCGGTGCCGGATCCCTACGCCGCGCGCCTGCAGGAAGCCCGGGCGGAGTTCGACGACCCGCTGGCCCAGGTGATCCCGCCGCACATCACCGTCATCGGACCGACGGTCGTGGACCGTGCCGACATGCCGTCGGTGGGGGAGCACCTCGGCAAGATCGCGGACGAGATGCCGCCCTTCCGGGTCCACCTGCGCGGCACCGGGACGTTCCGACCCGTCTCGCCGGTCGTCTTCGTCTCGCTCGCCGAGGGCATCGCCGAGTGCGAGCTGCTCGAGCAGCAGACCAGGTCCGGGGTGCTCGCCCAGGACCTGCGGTTCAACTACCACCCGCACGTCACCATCGCCCACGAGGTCCCCGACGACGCCCTCGACCGGGCCTTCACGGAGATGGCCGACTTCGAGGCCGTCTTCGACGTGTCGGCAATCTGGCAGTACGAGCACGGCGACGACGGCGTGTGGCGTCCGCAGCGCTCCTACGAGCTGCGCGGCGGGCGCGAGTACCTCCGGATGCGCTGA	MRIPARGPDQLRIGIAIAVPDPYAARLQEARAEFDDPLAQVIPPHITVIGPTVVDRADMPSVGEHLGKIADEMPPFRVHLRGTGTFRPVSPVVFVSLAEGIAECELLEQQTRSGVLAQDLRFNYHPHVTIAHEVPDDALDRAFTEMADFEAVFDVSAIWQYEHGDDGVWRPQRSYELRGGREYLRMR				NA	NA	NA	NA	NA
AK001_01756	1020			hypothetical protein	GTGTCGGAGCGCATCGATCGGTGGAAGGACCGGGCGACCCGCCTGGTCGGCTGGGTCAAGGACCGGCGTGAGGTCCGTGCCGTCCAGTGGTACATGGCCCGCCGCGGGAACCTGCTCTCCGGCGGGATCGCCTACTCGGCGATCTTCGCCATCGGTGCGAGCCTGACGATCGGGTTCTCCGTGTTCTCGGCGACCCTGGGCAGCCGGCCCGAGCTGATGGCGGCGGTGACCGACCAGATCGAGCTGTGGCTACCCGGCCTGATCGGTGACGGTGAGAACCAGCTGAACCCCGACGACCTGGTGGTCACCAACATCTGGAACGTGGCGACCTTCATCGCCACCGTGGTGCTGCTGTGGACGGCGATCAGCTTCATGGGTGCCCTGCGCCACTCGATCCGCTCGATGTTCGACGCCCCCGTGGTCGGGGTCAACCCGGTGATGGCCAAGGTCTGGCAGCTCGTCGGCTTCGTCGTCCTCGGCGCCATGATCGTCGTGACGGCGGCCGCCAGCATCCTGGCCACCACGGTGGAGACGCAGCTCGAGAACTGGTTCGGGGAAACCCAGGCCCTCGGCCAGCTGCTCCGCTTCGGGAGCTTGGGGGTCGCCGTCGTGCTCGACGCCGTCGTGGTGTACCTGATCGTCCGGGTGGTCGGGCAGGTACGGCCCCGGCGCACTCGCGACCTCGTGATCGGGTGCCTCCTGGCAGGGCTGGCCTCGGGTGCCCTGCGCTACGCCGGGACGTCGCTGGTGACCTCGAGCGTGTCGAGCAACGTCGTGCTCGGCTCGTTCGTGACCATCGGGACGATCCTGCTGCTGGCCAACTTCCTGTCCCGGATGCTGCTGATGGTCTGCGCCTGGATGTACGACCCGCCGCGGATGGACGAGATCGCCCGCGCCGAGGCGGAGCTCGCGGCGATGCGCCACCAGGAGGAGGTCGACCGGCTGGTCGCCCAGGGAGCCGGCAGCGGCAAGCCGTACAGTCCGGTCGTCCGTGGCGTACGCCGCGGCATCTACTCCTGA	MSERIDRWKDRATRLVGWVKDRREVRAVQWYMARRGNLLSGGIAYSAIFAIGASLTIGFSVFSATLGSRPELMAAVTDQIELWLPGLIGDGENQLNPDDLVVTNIWNVATFIATVVLLWTAISFMGALRHSIRSMFDAPVVGVNPVMAKVWQLVGFVVLGAMIVVTAAASILATTVETQLENWFGETQALGQLLRFGSLGVAVVLDAVVVYLIVRVVGQVRPRRTRDLVIGCLLAGLASGALRYAGTSLVTSSVSSNVVLGSFVTIGTILLLANFLSRMLLMVCAWMYDPPRMDEIARAEAELAAMRHQEEVDRLVAQGAGSGKPYSPVVRGVRRGIYS	PGPT0014525_2653	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058	NA	NA
AK001_01757	774	sdhB	COG0479	Succinate dehydrogenase iron-sulfur subunit	ATGACTGCTGTTCTCGAGAACTCGACCGACACCTCCGGCTCCGAGGCGCAGGCCGGCGCCGTGTCGTCCTTCCAGGTGACCCTGAAGATCCGCCGGTACAACCCGGAGGTCGCCGCCGAGGCGTACTGGGAGGAGCACACGGTGACCGCGCACGGCACCGACCGTGTGCTGGACGCCCTGCACAAGATCAAGTGGGAGCTCGACGGCTCGCTGACGTTCCGGCGCTCCTGCGCCCACGGCGTGTGCGGCTCGGACGCGATGCGGATCAACGGCCGCAACCGTCTGGCCTGCAAGACGCTGCTCAAGGACATCAACCCGGACAAGCCGATCGTCGTCGAGGCCATCAAGGGCCTGCCGGTGCTCAAGGACCTCGTGGTCGACATGGAGCCGTTCTTCGCCTCCTACCGCGAGATCATGCCGTTCCTCATCACGTCGGGGAACGAGCCGAGCCGGGAGAACATCCAGTCCCAGGCCGACCGCGACCGGTTCGACGACACCACCAAGTGCATCCTGTGCGCGGCGTGCACGTCGTCCTGCCCGGTCTTCTGGACCGACGGCCAGTACTTCGGCCCGGCGGCGATCGTCAACGCGCACCGGTTCATCTTCGACTCCCGCGACCAGGGTGGCACCCAGCGCCTGGAGGTCCTCAACGACAAGGAGGGCGTGTGGCGCTGCCGCACGACCTTCAACTGCACCGAGGCCTGCCCGCGCGGCATCGAGGTCACCAAGGCGATCCAGGAGGTCAAGCGGGCGATGATCACCCGCGCCTTCTGA	MTAVLENSTDTSGSEAQAGAVSSFQVTLKIRRYNPEVAAEAYWEEHTVTAHGTDRVLDALHKIKWELDGSLTFRRSCAHGVCGSDAMRINGRNRLACKTLLKDINPDKPIVVEAIKGLPVLKDLVVDMEPFFASYREIMPFLITSGNEPSRENIQSQADRDRFDDTTKCILCAACTSSCPVFWTDGQYFGPAAIVNAHRFIFDSRDQGGTQRLEVLNDKEGVWRCRTTFNCTEACPRGIEVTKAIQEVKRAMITRAF	PGPT0001600_1769	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001600-sdhB|frdB-K00240	NA	NA
AK001_01758	1836	sdhA	COG1053	Succinate dehydrogenase flavoprotein subunit	ATGCAGACCCACCAGTACGACGTCGTCATCGTCGGCGCAGGCGGCGCCGGCATGCGCGCGGCGCTCGAGGCGTCGAAGGGCGCCCGCACCGCGGTCATCTCCAAGCTGTACCCCACGCGTTCCCACACCGGCGCCGCCCAGGGCGGCATGTGCGCCGCCCTGGCGAACGTCGAGGAGGACAACTGGGAGTGGCACACCTTCGACACCATCAAGGGTGGCGACTACCTCGTCGACCAGGACGCCGCGGAGGTGATGGCCAAGGAGGCCATCGACGCCGTGCTGGACCTGGAGCGGATGGGTCTGCCGTTCAACCGCACGCCGGAGGGGCGGATCGACCAGCGCCGATTCGGCGGGCACACCCGCAACCACGGTGAGGCCGCCGTGCGCCGCGCCTGCTACGCCGCGGACCGCACCGGCCACATGATCCTGCAGACGCTGTACCAGAACTGCGTGAAGCAGGACGTCGAGTTCTACAACGAGTTCTACGTCCTGGACCTGCTCACCGACCACGACCTGACCACGGAGGACATCGAGGACGGCGCCGAGGTCAACGCCACCGGCGTGGTCGCCTACGACCTGGCCACCGGCGAGCTGCACGTCTTCCAGACCAAGGCGGTCGTGTTCGCCACCGGCGGCGCGGGCAAGATCTTCAAGACGACGTCGAACGCCCACACCCTCACCGGTGACGGCATGGCGCTGGCCTACCGCCGCGGCCTGCCGCTGGAGGACATGGAGTTCTTCCAGTTCCACCCGACGGGTCTGGCCGGCCTGGGCATCCTGCTGTCGGAGGCGGCCCGCGGCGAGGGCGGCATCCTGCGCAACGCCGACGGCGAGCGGTTCATGGAGCGCTACGCACCGACCATCAAGGACCTGGCGCCCCGCGACATCGTCGCCCGGTCGATGGCCAACGAGGTCCGCGAGGGCCGCGGCGCCGGCCCGAACAAGGACTACGTCCTGCTCGACCTGACGCACCTCGAGCCGGCGCACATCGACGCCAAGCTGCCGGACATCACCGAGTTCGCCCGCACCTACCTCGGGATCGAGCCCTACACCGAGCCGGTGCCCGTCTACCCCACCGCGCACTACGCGATGGGCGGCGTGCCGACGAACATCAAGGGCGAGGTCCTGCGCGACGGCCACAACGTCGTCAAGGGGCTGTACGCCGCCGGCGAGGTCGCCTGCGTCTCCGTGCACGGGTCCAACCGCCTCGGCACGAACTCCCTGCTCGACATCAACGTCTTCGGCAAGCGCGCCGGCCGCTCCGCCGCCGCGTACGCGCAGACCGTCGAGCAGCACCTGCCGATCGTCGAGGGGCCGACGGCACGCGTCGAGGCGCAGCTGTCCGAGATGCGCGACCGCCCCGACGGCGAGCGCGTCGCCGACGTGCGCCAGGCGCTGCAGGAGACGATGGACGCCAACGCGCAGGTCTTCCGCACCGACGAGTCGCTGAACAAGGCCGCCGCCGACATCCGCGAGCTGCAGAAGCGGTACCGCAACGTGTCGGTCCAGGACAAGGGCTCGCTGTTCAACACGGACCTGCTGGAGGCGATTGAGCTGGGCTTCCTGCTCGACATCGCCGAGGTCACCGTCGTCGCCGCGCTCAACCGCCGCGAGTCCCGCGGCGGTCACTACCGCGAGGACTTCCCGGACCGGGACGACGACAACTACATGCTGCACACGATGGCGTACCGCCGTCCGACGTCGGCTCCCGACGCCGCCGACGGGCACGTCGCGGGCTACTTCGACCACGTCGAGGACTTCGGGGACTACAAGGTCGTCCTGGGGTCCAAGCCCGTCACCATGACGCGCTACGAGCCGATGGAGCGGAAGTACTGA	MQTHQYDVVIVGAGGAGMRAALEASKGARTAVISKLYPTRSHTGAAQGGMCAALANVEEDNWEWHTFDTIKGGDYLVDQDAAEVMAKEAIDAVLDLERMGLPFNRTPEGRIDQRRFGGHTRNHGEAAVRRACYAADRTGHMILQTLYQNCVKQDVEFYNEFYVLDLLTDHDLTTEDIEDGAEVNATGVVAYDLATGELHVFQTKAVVFATGGAGKIFKTTSNAHTLTGDGMALAYRRGLPLEDMEFFQFHPTGLAGLGILLSEAARGEGGILRNADGERFMERYAPTIKDLAPRDIVARSMANEVREGRGAGPNKDYVLLDLTHLEPAHIDAKLPDITEFARTYLGIEPYTEPVPVYPTAHYAMGGVPTNIKGEVLRDGHNVVKGLYAAGEVACVSVHGSNRLGTNSLLDINVFGKRAGRSAAAYAQTVEQHLPIVEGPTARVEAQLSEMRDRPDGERVADVRQALQETMDANAQVFRTDESLNKAAADIRELQKRYRNVSVQDKGSLFNTDLLEAIELGFLLDIAEVTVVAALNRRESRGGHYREDFPDRDDDNYMLHTMAYRRPTSAPDAADGHVAGYFDHVEDFGDYKVVLGSKPVTMTRYEPMERKY	PGPT0001605_1658	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001605-sdhA|frdA-K00239	NA	NA
AK001_01759	453			hypothetical protein	ATGACCACCCAGACCGACATCCCCACTCCGCGTTCCCCGTACGTGCGCCGCAAGACCACCCGGGGCAACTTCGAGCTGTACTCCTGGGTCTTCATGCGGGCCTCCGGCGTCGTCCTCGTGGTGCTCGTCTTCGGCCACCTCTTCGTGAACCTCATGGTCGGCGACGGCGTCAAAGCCATCGACTTCGCCTTCGTCGGCGGCAAGTGGTCGAGCCCGTTCTGGCAGATCTGGGACCTCCTGATGCTCTGGCTCGCCATGATCCACGGCACCAACGGCGTGCGGACGATCATCAACGACTACGCCCAGCGGGACCTCACCCGCGGCGTGCTCAAGAGCCTGCTGTACCTGGCGTTCACGATCACCGTGGTGCTCGGCACGCTGGTGATCTTCACCTTCGAGCCCTGCCCGCCCGGCGCACCGGCCGAGCTGCTCGCCTCGATCTGCACGGCCTGA	MTTQTDIPTPRSPYVRRKTTRGNFELYSWVFMRASGVVLVVLVFGHLFVNLMVGDGVKAIDFAFVGGKWSSPFWQIWDLLMLWLAMIHGTNGVRTIINDYAQRDLTRGVLKSLLYLAFTITVVLGTLVIFTFEPCPPGAPAELLASICTA	PGPT0001590_278	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001590-sdhD|frdD-K00242	NA	NA
AK001_01760	381	sdhC	COG2009	Succinate dehydrogenase 2 membrane subunit SdhC	GTGCCGACTGCCCCCGCTGGCACGCTCTACCGCGGCCGTGAAGGTATGTGGTCCTGGGTCGCGCACCGCGTGACCGGCGTGTCGATCTTCTTCTTCCTGCTCGTGCACGTGCTCGACACGTCGCTCGTGCGCGTCTCGCCCGAGGCGTACAACGCCGTCATCGGCACGTACCAGACCCCGATCATGGGGCTGGGCGAGGCCGGCCTCGTGGCCGCGATCGTCTTCCACGCGTTCAACGGTCTGCGCATCGCACTCGTCGACTTCTGGTCGAAGGGCCCCCGCTACCAGCGCGTCATGCTCTGGGTCGTCCTCGGTCTGCTCGTCGTGACGATGGCCGGATTCCTGCCCCGCCACCTGATGAACGTGTTCGGAGCCAGCTGA	MPTAPAGTLYRGREGMWSWVAHRVTGVSIFFFLLVHVLDTSLVRVSPEAYNAVIGTYQTPIMGLGEAGLVAAIVFHAFNGLRIALVDFWSKGPRYQRVMLWVVLGLLVVTMAGFLPRHLMNVFGAS	PGPT0001595_3211	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001595-sdhC|frdC-K00241	NA	NA
AK001_01761	1119	manC1	COG0662	Mannose-1-phosphate guanylyltransferase 1	ATGCCCTCTTCCGCCATCCCCGGATTCCGTGCCGTCATTCCCGCCGGAGGTTCCGGGACCCGGTTGTGGCCGGTGTCGCGGGCGGGTGCCCCCAAGTTCCTGCACGACCTCAGCGGTTCCGGGCGCAGCCTGCTCCAGGGCACCGCCGACCGTCTCGCACCGCTGGCGGGCCGTGACGGCATCGTCGTGGTCACGGGAACCCGGCACGCGGACGCCGTGCGCCACCAGCTGCCCGAACTCGGTGCGGACCAGGTGCTGGCCGAACCGTCCCCCCGGGACTCCATGGCGGCGATCGGCCTGGCGGCGGCCGTCCTGGAGCAGCGTCACGGGGTGGTCGTCCTCGGCTCCTTCGCCGCCGACCAGGTGATCTCGGGCACCCGGGAGTTCGAGCGGTCCGTCCGCGAGGCCGTGGAGGCCGCCCGGGCCGGCTACGTGACGACGGTGGGCATCGCCGCCTCGCGCCCGTCGACGGCGTTCGGGTACGTCCACGGCGCCGACCCGCTGGGGATCGCGGGGGCGCCCAGCGCCGTGCACGTCAGCGGATTCACCGAGAAGCCGGACGCCGAGACGGCGCGGGCGTACCTCGCCTCGGGCGAGTACCGCTGGAACGCGGGGATCTTCGTCGCCGCGACGGACGTGCTGCTCGGTCACCTCGCCGAGCAGCGCCCGGCGCTGCACGACGGTCTGCGCCGCATCGCGGCCGCCTGGGACACCCCGGACCGCGACCGGGTGCTGGCCGAGACGTGGCCCGGCCTGGAGAAGATCGCGATCGACCACGCCGTGGCGGAGCCGGTCGCGGCCGCCGGCGGGGTCGCGATGGTCCCCGGGCCGTTCGGGTGGGACGACGTGGGGGACTTCAACTCCCTGGCCGCCCTGCTGCCGGCCGACGACGACGCCGGGTCGAAGGTGCTCGGCGACAGCGCCGACGTGGTCCGAGTCCAGAGCGCGGGGTCCGTCGTGGTGCCCGCGAGCGGCCGGACCGTGACGCTGCTCGGGATCGACGACGTCGTGGTGGTCGACACCCCGGACGCCGTGCTGGTCACGACCCGCGCCCGCGCCCAGCAGGTGCGCAGCATGGTCGACGCCGTCCGCGCCCACGGGCGGGAGGACCTGCTGTGA	MPSSAIPGFRAVIPAGGSGTRLWPVSRAGAPKFLHDLSGSGRSLLQGTADRLAPLAGRDGIVVVTGTRHADAVRHQLPELGADQVLAEPSPRDSMAAIGLAAAVLEQRHGVVVLGSFAADQVISGTREFERSVREAVEAARAGYVTTVGIAASRPSTAFGYVHGADPLGIAGAPSAVHVSGFTEKPDAETARAYLASGEYRWNAGIFVAATDVLLGHLAEQRPALHDGLRRIAAAWDTPDRDRVLAETWPGLEKIAIDHAVAEPVAAAGGVAMVPGPFGWDDVGDFNSLAALLPADDDAGSKVLGDSADVVRVQSAGSVVVPASGRTVTLLGIDDVVVVDTPDAVLVTTRARAQQVRSMVDAVRAHGREDLL	PGPT0022660_1039	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-COLANIC_ACID_METABOLISM	CE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0022660-manC|cpsB-K00971	NA	NA
AK001_01762	1179	scmP	COG1473	N-acetylcysteine deacetylase	GTGAGCGCCGCGGCCCGGGCGCGCCTGGACGAGGTCGTCGCGACGCTGGAGGACGAGCTCGTGGCGGTGCGCCGCGACCTGCACGCCCATCCCGAGACGGCGCGCGAGGAGTTCCGCACGACGGCGGTGCTGGCCGAGCGGCTGCGGGCGGCCGGGCTGCAGCCCCGGCTGCTGGAGGGCACCGGGCTGACGTGCGACATCGGTCCCGAGGTGCCGGGGCGGGGGCGGACGGCGGTGCGCGCCGACATCGACGCGCTGCCGCTGGACGACCTGTGCGGGTGCGACTTCGCCTCGACGGTGCCGGGCGTGGCGCACGCCTGCGGCCACGACGTGCACGCGGCCGTCGTCCTCGGGGCCGGCCTGGCGCTGGCCCGGCTCGCCGAGGAGGGGCTGCTGGAGTCCGGGGTCCGGCTGATCTTCCAGCCGGCCGAGGAGATCATGCCGGGCGGCGCCCACGACGTGCTCGCCCAGGGCGTGCTCGACGGCGTCGCGCGGATCGTGGCGGTGCACACCGAGCCGAAGCTCGACGTCGGGCAGCTCGGGACGCGCATCGGCCCGATCACCTCCGCCTCGGACCTGGTCACGGTGACCCTGTCCTCGAGCGGCGGTCACACCTCCCGGCCGCACCTGACGGGCGACGTCGTCTACGCCCTCGGCCAGGTCATCACCCAGGTCCCGGCAGTCCTGGGGCGCCGGCTGGACCCCCGCTCCGGGGTCAACCTGACGTGGGGTGCGGTCGAGGCGGGCAACGCGCACAACGCCATCCCCGCCACCGGCGTGGCCAAGGGCACGCTGCGCTGCCTGGACGTCCGGGCCTGGGAGCGGGCCGGTCAGGTGCTGCTCGACGCCGTCGAGCAGGTCGTCGCCCCGTACGACGTCGAGGTGAGCGTGCACCACGTCCGGGGCGTCCCGCCGGTGGACAACGACGCCGACGTCACCGCGGCCCTGGAGGCGGCCGGGGCGTCCGTGCTCGGCGAGGACGGCGTCGTGCTCACCGAGCAGTCGCTCGGCGGGGAGGACTTCGCCTGGTACCTGACGAAGGTGCCGGGGGCGATGGCGCGGCTGGGCACGGCGATCCCGGGGGAGCGTCGGTACGACATCCACCAGGGCGACCTCCGGGTCGACGAACGGGCGATCGCGATCGGTGCCCGTGTGCTGGCGCGCGTCGCGCTCGGATGA	MSAAARARLDEVVATLEDELVAVRRDLHAHPETAREEFRTTAVLAERLRAAGLQPRLLEGTGLTCDIGPEVPGRGRTAVRADIDALPLDDLCGCDFASTVPGVAHACGHDVHAAVVLGAGLALARLAEEGLLESGVRLIFQPAEEIMPGGAHDVLAQGVLDGVARIVAVHTEPKLDVGQLGTRIGPITSASDLVTVTLSSSGGHTSRPHLTGDVVYALGQVITQVPAVLGRRLDPRSGVNLTWGAVEAGNAHNAIPATGVAKGTLRCLDVRAWERAGQVLLDAVEQVVAPYDVEVSVHHVRGVPPVDNDADVTAALEAAGASVLGEDGVVLTEQSLGGEDFAWYLTKVPGAMARLGTAIPGERRYDIHQGDLRVDERAIAIGARVLARVALG	PGPT0026300_361	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048	NA	NA
AK001_01763	1107	tmpC	COG1744	Membrane lipoprotein TmpC	GTGAAGAGTGCGATCAAGTTCACCGCCCTCGCCGGCGCGGCGGCACTGACTCTCGCGGCGTGCGGCGCGGCCCCGGAGGAGACCCCCACCGAGGAGACCACCGAGACGGAGATGGCGGAGAGCGAGTCCGTCGACTACCAGCCGTGCATCGTCTCCGACCAGGGCGGCTTCGACGACAAGAGCTTCAACCAGCTCAGCTACGAGGGCACCCAGGCTGCCGCCGAGGAGCTCGGCCAGGACGTCATCGACGTGCAGTCGCAGTCCGAGACCGACTTCCAGCCGAACCTGCAGTCGCTGGTCGACCAGAGCTGCGACGCGATCGTCTCGGTCGGGTTCGCCCTGTCGGCGGACACCATCGAGTCCGCGAACGCCAACCCCGAGATCGACTACTTCCTGGTCGACGACGCCGCGGACGCGGACTTCGACGGTCAGGCGGACGCCGACAACATCAAGCCGCTGCTGTACAACACGGCCGAGGCCGCGTTCCTCGCGGGCTACCTGTCGGCCGGCTACTCCGAGGCCGGCAAGGTCGGCACGTTCGGCGGTCAGCCGTTCCCGACCGTGACGATCTTCATGGACGGGTTCAAGCAGGGCGTCGAGTACTACAACGAGGCCAACGACGCCGAGGTCGAGGTCATCGGCTACTCCGGCGGCGAGGACGGCTCGTTCACCGGCGGCTTCGAGGCCAACCAGACCGCCAAGACCACGGCGACGAACATCCTGGACCAGGGTGTCGACGTGATCCTGCCCGTCGGCGGTCCGATCTACCAGTCGGCGATCGCCGCCATCGAGGACTCCGGCCGTGACGTCGCCCTCGTCGGCGTCGACGCGGACTTCTACGAGACCGACCCGAGCACCCAGCCGTACGTGCTGACCTCCATCCTCAAGAAGATGGACGTCTCCACGCACGACGCCCTCATGACCGCGGCCACCGAGGAGTTCGACCCGGAGCCGTACATCGGCACCCTCGAGAACGAGGGCGTGGGCCTGGCCCCGCTGCACGAGTTCGAGGACGAGGTCGACCCCGAGCTGATGAGCGAGGTCGAGGACCTGCAGCAGCAGATCATCGACGGCGAGCTCGAGGTCACCTCCTACCTGGACGAGTGA	MKSAIKFTALAGAAALTLAACGAAPEETPTEETTETEMAESESVDYQPCIVSDQGGFDDKSFNQLSYEGTQAAAEELGQDVIDVQSQSETDFQPNLQSLVDQSCDAIVSVGFALSADTIESANANPEIDYFLVDDAADADFDGQADADNIKPLLYNTAEAAFLAGYLSAGYSEAGKVGTFGGQPFPTVTIFMDGFKQGVEYYNEANDAEVEVIGYSGGEDGSFTGGFEANQTAKTTATNILDQGVDVILPVGGPIYQSAIAAIEDSGRDVALVGVDADFYETDPSTQPYVLTSILKKMDVSTHDALMTAATEEFDPEPYIGTLENEGVGLAPLHEFEDEVDPELMSEVEDLQQQIIDGELEVTSYLDE	PGPT0021055_1758	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021055-bmpA-K07335	NA	NA
AK001_01764	1521	xylG_1	COG1129	Xylose import ATP-binding protein XylG	ATGAGGCTCGAGCTGCGTGGGATCACCAAGCGTTTCGGCGCGCTGGTGGCCAACGACCACATCGACCTGGTGGTCGAACCGGGCGAGATCCACTGTCTGCTGGGCGAGAACGGCGCGGGCAAGTCCACGCTGATGAACGTCCTGTACGGCCTGTACGACGCCGACGAGGGCGAGATCCTCCTCGACGGCGAGGTGCAGGACTTCGAAGGCCCCGGCGACGCGATGAACGCGGGGATCGGCATGGTGCACCAGCACTTCATGCTCGTGCCGGTGTTCTCCGTCGCCGAGAACGTCATGCTCGGCCACGAGACGACGTCGGGCCCGGGCATCCTGGACCTGTCCGCCGCGCGGGAGACCGTCCGCAGCACCGCGGACCGGTTCGGCTTCCACGTGGACCCGGACGCGGTCGTCGAGGAGCTCCCGGTCGGCGTCCAGCAGCGCGTCGAGATCATCAAGGCCCTGAGCCGGGACGCGCAGGTGCTCGTCTTCGACGAGCCCACGGCGGTGCTCACGCCGCAGGAGACCGACGAGCTGATGGCGATCATGCGCCAGCTCAAGGACGAGGGCAAGGCCATCGTCTTCATCACCCACAAGCTCCGTGAGGTCCGCGAGGTCGCGGACCGCATCACGGTGGTCCGGCACGGCAAGGTCGTCGGCGAGGCCGACCCGACCGCCCCGGACAACGAGCTCGCCTCCCTCATGGTCGGCCGCGCCGTGCAGCTGACCGTCGACAAGGAGGCGGCCCGCCACGGCGAGAACGAGCTGGCCGTGGAGAACCTCGTCGTCGCGCGCCCCGACGGCCAGATCGTCGTCGACGACGTCAGCTTCTCGGTGCGCGGAGGCGAGATCCTCGTCATCGCCGGTGTGCAGGGCAACGGGCAGACCGAGCTCACCGAGGCGTTGATCGGTCTGCACCCGGACCTGCAGGGCTCGATCCGTCTCGACGGCGAGGAGCTGCGCGGGCGGTCGGTCCGCAAGGTCCTGGACGCCGGCGTCGGCTTCGTCCCCGAGGACCGCAGCACGGACGGTCTGGTCGGCGAGTTCACGATCGCCGAGAACCTCATCCTCGACCGCACCGACGGCGCGCCGTTCGTCCGCGCGGGCTCGCTGCAGCTCGGCCTGCGCGACGAGTTCGCGCGCGAGAAGGTCGACGAGTTCGACGTGCGCACCACCGGCATCGACCTGCCCGTCGGCCGCCTGTCCGGCGGCAACCAGCAGAAGGTCGTCCTCGCCCGCGAGCTGTCCCGCGACCTGCGCCTGCTCGTGGCCGCCCAGCCCACCCGCGGCGTCGACGTCGGTTCCATCGAGTTCATCCACAAGCGCATCGTCGAGACCCGCGACCAGGGGATCCCGGTCATCGTGGTGTCGACGGAGCTCGACGAGGCGGTGGCCCTGGCCGACCGGATCATGGTCATGTACCGCGGTCGCGTCGTCGGCATCGTGCCCGCCGACACCCCGCGCGACGTGCTCGGCCTGATGATGGCCGGCGTCGCGCCCGAGAGCGAAGGAGACGCCGCGTGA	MRLELRGITKRFGALVANDHIDLVVEPGEIHCLLGENGAGKSTLMNVLYGLYDADEGEILLDGEVQDFEGPGDAMNAGIGMVHQHFMLVPVFSVAENVMLGHETTSGPGILDLSAARETVRSTADRFGFHVDPDAVVEELPVGVQQRVEIIKALSRDAQVLVFDEPTAVLTPQETDELMAIMRQLKDEGKAIVFITHKLREVREVADRITVVRHGKVVGEADPTAPDNELASLMVGRAVQLTVDKEAARHGENELAVENLVVARPDGQIVVDDVSFSVRGGEILVIAGVQGNGQTELTEALIGLHPDLQGSIRLDGEELRGRSVRKVLDAGVGFVPEDRSTDGLVGEFTIAENLILDRTDGAPFVRAGSLQLGLRDEFAREKVDEFDVRTTGIDLPVGRLSGGNQQKVVLARELSRDLRLLVAAQPTRGVDVGSIEFIHKRIVETRDQGIPVIVVSTELDEAVALADRIMVMYRGRVVGIVPADTPRDVLGLMMAGVAPESEGDAA	PGPT0021040_2763	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021040-nupA|yufO-K23537	NA	NA
AK001_01765	1362	rfuC	COG4603	putative riboflavin import permease protein RfuC	GTGAGCGAGACCCCGGACCGGCACTCCGCCGACTCGTCCGACAACCGGCTCGAGGAGGACATCGAGCACGTCGACGCCTCCACCGACCCCGGGCTCGCCGAGGCGCTGGCGCAGGACCGCGCCCGCGAGGAGGGCGACCAGGAGTCCGACGACCAGCGCTGGCAGGACGCCTTCCGGCGGATCATCTCCGGCGGCTGGGCCGTCTCGCTCGGTGCGATCCTGCTGGCCGTGATCGCCGGGTCGCTGATGATCATCGTCACCGACGAGGCCGTCCAGGAAGCGTCGGCCTACTTCTTCACCCGGCCCGCCGACACCTTCGCGGCGGTCGGCGAGGCCGTGGGCGGCGCCTACTCGGCGCTGTTCCAGGGCGCGGTCTACAACTTCCGGGCCGACACGTTCGCCGCCGGCATCCGGCCGCTGACGCAGACGCTGAACAACGCGACGCCGCTGATCGCCGCGGGTCTCGGTGTCGCGATCGCGTTCCGCGCCGGCCTGCTGAACATCGGTGGTCAGGGCCAGATGCTGATGTCCGCCGCCGCGGCCGGCTGGGTCGGCTTCGGCGTGACGGGCCTGCCCTTCCCGATCCACCTGATCCTCGCCCTGGTCGCGGGCATCCTGGCCGGTGCCCTGTGGGCCGGCATCGCCGGCCTGCTCAAGGCCCGCACCGGTGCTCACGAGGTCATCGTGACGATCATGCTCAACTACGTCGCGCTGTACCTGCTGTCGTACTTCCTGGCGACGCCCGGGCTCATGCAGGCGCCCGGCTCGGCGAACCCGAAGACGCCGCCGACGCCGGAGTCCGCCCAGCTGCCGCCGCTGCTGGGGGAGCGGTACACGCTGCACTGGGGCTTCATCCTCGCCCTCGTGGCCGTCGCCGTGGTGTGGTGGATCCTCAATCGGTCGGCCGTCGGGTTCTCCTACCGCGCCGTCGGCGAGAACCCGCGGGCCGCCCGCGTCGCCGGCATCGACGTCTCGCGGTCCACCGTCTCGGTCATGCTCGTCGCCGGTGCGCTGGTCGGGCTGGCCGGTGTGACCCAGGTGCTGGGGACCGTGACCACCGGGTTCGGCGCCGACATCGACGCCGGGATCGGCTTCGACGCGATCACCGTCGCCCTGCTGGGCAACTCCAACCCGATCGGCGTGCTCGGCGCGGGCATCCTGTTCGGCGCCTTCAAGGCCGGTGGTTCGGCGATGCAGGCCGCCGAGGGCATCCCGATCGAGATCGTGCTCGTCGTGCAGTCCCTCATCGTGCTGTTCATCGCCGCGCCGCCGCTGGTGCGGGCCGTGTTCCGGCTCCCGCAGCCGGGCGGCAAGCCGAGGAAGAAGCGGTCGCAGGCCGCGAGGAAGGAGGCGGCGGCATGA	MSETPDRHSADSSDNRLEEDIEHVDASTDPGLAEALAQDRAREEGDQESDDQRWQDAFRRIISGGWAVSLGAILLAVIAGSLMIIVTDEAVQEASAYFFTRPADTFAAVGEAVGGAYSALFQGAVYNFRADTFAAGIRPLTQTLNNATPLIAAGLGVAIAFRAGLLNIGGQGQMLMSAAAAGWVGFGVTGLPFPIHLILALVAGILAGALWAGIAGLLKARTGAHEVIVTIMLNYVALYLLSYFLATPGLMQAPGSANPKTPPTPESAQLPPLLGERYTLHWGFILALVAVAVVWWILNRSAVGFSYRAVGENPRAARVAGIDVSRSTVSVMLVAGALVGLAGVTQVLGTVTTGFGADIDAGIGFDAITVALLGNSNPIGVLGAGILFGAFKAGGSAMQAAEGIPIEIVLVVQSLIVLFIAAPPLVRAVFRLPQPGGKPRKKRSQAARKEAAA	PGPT0021045_185	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021045-nupB|yufP-K23535	NA	NA
AK001_01766	1296			hypothetical protein	ATGAGCGCGCCCACCGTCGACGGCGCCCCCACCGGGACGTCGGACGCTCCCCGCACCGTCACCACCGTCTCGTGGAAGACCTCGATCGCGCTGGCGGTCGTGCTCGCCCTGTACGCCCTGCTGCTCCTGCTCGCCCCGCGCGAGGGCAGCGCACGCTTCTCGCTGTCGACGCCGACCGACTTCTTCCAGCTCCCGGTCTACGTGCTGCCCGGCATGGCGACCGCCTGGGTGTGCGCCGCCGTCGCCGCGGCGCTGCTCGTCGTCTCCGTCGTCGCCACCCGCGCGCAGCGCAAGACCCCGCTGTGGGCCACCGGCGTGTACGCCGCCGCGCTGCTGGTCGGCTTCCTGGCCTGGGCCGCCGCCGGCAGCCCGCGCGACCTGTCCGTCGTCGGGCTCCTCGGCGGGGCGATCGCCCTGTCGGTGCCGCTCGTGTACGGCTCGCTGAGCGGTGTCATCGGCGAACGCTCCGGCACGATCAACATCGCCATCGAGAGCCAGCTCCTCGCGGGTGCCTTCACGGCCGCCGTGGCGGGCTCGCTGACCAACAGCCCGTGGGTGGGCCTGCTGGCGGCCATGATCGCCGCGGCCCTGGTCGGTCTCGTCCTGGCGGTCTTCACCATCACCTACCGCGTCAACCAGATCATCGTCGGTGTCGTCCTCAACGTGCTGGTGATCGGCCTGACGAGCTTCTTCTACTCGCTGGTGCTCGTGCCGAACACCGAGACGCTGAACTCCACGACCCGCTTCGAGCAGATCCCGATCCCGTTCCTCGAGCGGATCCCGGTCGTCGGCCCGGTGCTGTTCGACCAGACGATCGTGGTCTACCTGATGCCCGTCGTGGTGTTCCTCGTCTGGTACGGGCTCTTCCGCACCCGTTGGGGGCTGCGGCTGCGGGCCGTCGGCGAGCACCCGCGGGCGGCCGACACCGTCGGCATCGAGGTGCTGCGCACCCGGTACCGCGCGCTGCTGATCGCCGGCGCGGTCGGCGGCATGGGCGGTGCGTTCTACACCGTGGTGTCGATCAACCAGTTCGGCCGCGAGATGACCGCGGGCGCGGGCTTCATCGCGCTGGCCGCCATGATCTTCGGCAAGTGGAACCCCGTGCGGGCGGCCCTGGCCGGGCTGCTGTTCGGGTTCGCCACCAACCTGCAGAACGTGCTGTCCGTCGTCGGGTCCCCGGTGCCCAGCCAGTTCATGCTGATGCTGCCCTACGTGGTCACGCTGTTCGCCGTCGCCGGCCTCGTGGGCCGGTCGCGCCCGCCGGCAGCGCTCGCCACGCCGTACACGAAGGAGTAG	MSAPTVDGAPTGTSDAPRTVTTVSWKTSIALAVVLALYALLLLLAPREGSARFSLSTPTDFFQLPVYVLPGMATAWVCAAVAAALLVVSVVATRAQRKTPLWATGVYAAALLVGFLAWAAAGSPRDLSVVGLLGGAIALSVPLVYGSLSGVIGERSGTINIAIESQLLAGAFTAAVAGSLTNSPWVGLLAAMIAAALVGLVLAVFTITYRVNQIIVGVVLNVLVIGLTSFFYSLVLVPNTETLNSTTRFEQIPIPFLERIPVVGPVLFDQTIVVYLMPVVVFLVWYGLFRTRWGLRLRAVGEHPRAADTVGIEVLRTRYRALLIAGAVGGMGGAFYTVVSINQFGREMTAGAGFIALAAMIFGKWNPVRAALAGLLFGFATNLQNVLSVVGSPVPSQFMLMLPYVVTLFAVAGLVGRSRPPAALATPYTKE	PGPT0021050_111	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021050-nupC|yufQ-K23536	NA	NA
AK001_01767	396	cdd	COG0295	Cytidine deaminase	GTGCCGTCCTCGGTCGACTGGGACGACCTGCGGTCCGCCGCCACGGACGTGACCCGCCACGCCTACGTGCCCTACTCGGGGTACGCCGTCGGCGCCGCCGCCTACGCGGACGACGGGCGCCTGCTGGTGGGCTGCAACGTGGAGAACGCCGCCTACGGCGTCACCCTGTGCGCGGAGTGCTCCCTGGTCTCCGCGCTGGTCACGGGCGGCGGCGGCAGGCTGACCGCCTTCACCTGCGTGGACGGTCGCGGCCGTGTCATCACCCCGTGCGGACGCTGCCGCCAGCTGCTGTGGGAGCACGGCGGCCCCGACCTGATCGTCGAGACGCCCCGCGGCGTCGTCACCATGTCCGACCTGCTGCCGCAGGCGTTCGGACCGGAGGACCTGGACCGATGA	MPSSVDWDDLRSAATDVTRHAYVPYSGYAVGAAAYADDGRLLVGCNVENAAYGVTLCAECSLVSALVTGGGGRLTAFTCVDGRGRVITPCGRCRQLLWEHGGPDLIVETPRGVVTMSDLLPQAFGPEDLDR	PGPT0021360_3991	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021360-cdd-K01489	NA	NA
AK001_01768	1296	deoA	COG0213	Thymidine phosphorylase	ATGAGCGAACCGTTCGACGCCGTCGACGTCATCCGCACCAAGCGGGACCGCCACCACCTGTCGGACCCTCAGATCGACTGGGTGATCGACGCCTACACACGGGGTGTCGTCGCCGAGGAGCAGATGTCGGCCCTGGCCATGGCGGTCCTGCTCAACGGCATGAGCCGGGGCGAGATCTCGCGGTGGACGCACGCCATGATCTCCTCCGGCGAGCGCATGGACTTCTCCTCGCTGTCCCGCCCCACGGCGGACAAGCACTCCACAGGCGGCGTGGGGGACAAGATCACCCTGCCGCTGGCACCGCTGGTGGCGGCCTTCGGGGTCGCGGTCCCGCAGCTGTCCGGACGCGGGCTCGGGCACACCGGGGGGACGCTGGACAAGCTGGAGTCGATCCCCGGCTGGCGTGCCGGGCTGAGCAACGAGGACATGCTCGCCCAGCTCGACGACGTCGGCGCGGTCGTCTGCGCCGCCGGGGCGGGCCTCGCGCCGGCGGACAAGAAGCTCTACGCGCTGCGGGACGTCACCGGCACCGTCGAGGCCGTGCCGCTCATCGCGAGCTCGATCATGTCCAAGAAGATCGCCGAGGGCACCGGTGCGCTCGTGCTGGACGTCAAGGTCGGGTCCGGCGCCTTCATGAAGGACCTCGAGCAGGCGCGCGAGCTCGCGCGCACCATGGTCGAGCTCGGCACCGACGCCGGGGTCCGTACCGTGGCGCTGCTGACCGACATGTCGATCCCGCTCGGTCGCACGGCCGGCAACGCCCTCGAGGTGCGCGAGTCGGTCGAGGTGCTCGACGGCGGCGGACCGGACGACGTCGTCGACCTCACCGTCGCGCTCGCCGTGGAGATGCTGGCCGCGGCCGGCCGTCCGGCGGACGAGGACGACGTCCGCCGCGCCCTGTCCGACGGGCGTGCGATGGACGTCTGGCGGCGGATGATCGCCGCCCAGGGCGGGGACCCGGACGCACCCCTGCCGACCGCGCGGCACACGCACCAGGTGGTCGCCGACCGCGACGGCGTGGTCAGCGAGCTCGACGCCTACGCCGTCGGCGTGGCCGCGTGGCGTCTCGGTGCCGGACGGTCGCGCAAGGAGGACCCCGTGCAGGCGGGCGCCGGCGTCGAGATCCATGCGCGGCCCGGTGAGCACGTGGCCGCCGGTGCGCCGGTGCTCACCCTGCACACCGACACCCCGGAGCGGTTCGAGCGCGCGCTCGACGCCCTCGACGGCGGCTGGGCGGTGGCGCCCGGCGGCACCGCCGTGTCCCGGCCCCCGATCGTGCTGGACCGGCTGCACTGA	MSEPFDAVDVIRTKRDRHHLSDPQIDWVIDAYTRGVVAEEQMSALAMAVLLNGMSRGEISRWTHAMISSGERMDFSSLSRPTADKHSTGGVGDKITLPLAPLVAAFGVAVPQLSGRGLGHTGGTLDKLESIPGWRAGLSNEDMLAQLDDVGAVVCAAGAGLAPADKKLYALRDVTGTVEAVPLIASSIMSKKIAEGTGALVLDVKVGSGAFMKDLEQARELARTMVELGTDAGVRTVALLTDMSIPLGRTAGNALEVRESVEVLDGGGPDDVVDLTVALAVEMLAAAGRPADEDDVRRALSDGRAMDVWRRMIAAQGGDPDAPLPTARHTHQVVADRDGVVSELDAYAVGVAAWRLGAGRSRKEDPVQAGAGVEIHARPGEHVAAGAPVLTLHTDTPERFERALDALDGGWAVAPGGTAVSRPPIVLDRLH	PGPT0021365_1419	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021365-deoA-K00758	NA	NA
AK001_01769	249			hypothetical protein	ATGAGCACGACGCCGAACGACGCCTGGCGCGACGCCGGCCTGGAGACGCCCGAGGAGACCACCAGCCTGCTCGACGAGGCGGGGTCCGCGCCCGAGCAGCCGCAGCACGAGTCCGAGGCCGAGGAGTACCACCCGGGGTTCCCGCGGCCCGACCTGGACGGGTCGGCGAACGAGGCCGACGTCGTCGAGCAGGACATCGAGGTGCCGACCGACGACCCGGAGGCACCCGGCGACGACCTGTCCGCGTGA	MSTTPNDAWRDAGLETPEETTSLLDEAGSAPEQPQHESEAEEYHPGFPRPDLDGSANEADVVEQDIEVPTDDPEAPGDDLSA				NA	NA	NA	NA	NA
AK001_01770	1104	add	COG1816	Adenosine deaminase	ATGACGCAAGCCCTCCTCGACGCCATCGGCGATCTGCCCAAGGTCCTGCTGCACGACCACCTCGACGGCGGGCTGCGCCCGCAGACCGTGCTCGAGCTGGCCGACGCCGTCGGTCACGAGCTGCCCGCCGGCGACGCCGACGCCCTGGCGACCTGGTTCCGCGACGCCGCCGACTCCGGCTCGCTGCCCCGGTACCTCGAGACCTTCGACCACACGATCGCCGTCATGCAGACGCCGGAGGCCCTGGCCCGCGTCGCCCGCGAGGCCGTGCTCGACCTCGCGGCCGACGGCGTGGTGTACGCCGAGCAGCGCTGGGCCCCCGAGCAGCACCTGCAGCGCGGGATGTCGCTGCCCGACACCGTCGAGGCGGTGCAGCACGGCATCGACGCCGGTGTGCGCGGGGCCGCCGAGCAGGGCCGCACCATCCGGGTCGGCCAGCTCGTGACCGCCATGCGCCACACCGACCGCTGGATGGAGGTCGCCGAGCTGGCCGTGGCATACCGCGACGCGGGCGTGGTCGGGTTCGACATCGCCGGTCCCGAGGACGGCTTCGCCCCCGACCGCCACGCCGAGGTGTGGCGCTTCCTGGCCGAGCAGAACTTCCCGACGACGATCCACGCGGGCGAGGCCGCCGGTCTGGAGTCCATCGCGCAGGCGGTGCACCTCGGCCAGGCCGACCGGCTGGGCCACGGCGTGCGGATCATGGAGGACATCACGTTCTCGGAGCACGACCGCTCCGCGACGCTGGGCCGCCTGGCGCACTGGGTCCGGGACCACCAGATCGCTCTCGAGGTCTGCCCGGTCTCCAACCTGCAGACCGCGGCGGCGCCGGGCGTGTCCACCATCGCCGAGCACCCGATCACCCGGCTCAAGGAGCTGGACTTCGCGGTCACGCTCAACACCGACAACCGGCTGATGTCGCGCACGTCGATGTCGCACGAGATGAGACTGCTCGTCTCGGAGGCGGGCTGGACGATCGACGACCTCGCCGACGTCACGATGACGGCGGCGTGGAGCGCGTTCCTGCACCACGACGAGCGCCGCGACCTCGTCGACGACCTGATCCTGCCCGGCTACCAGAAGATCGAGGGGGCTCTGCGATGA	MTQALLDAIGDLPKVLLHDHLDGGLRPQTVLELADAVGHELPAGDADALATWFRDAADSGSLPRYLETFDHTIAVMQTPEALARVAREAVLDLAADGVVYAEQRWAPEQHLQRGMSLPDTVEAVQHGIDAGVRGAAEQGRTIRVGQLVTAMRHTDRWMEVAELAVAYRDAGVVGFDIAGPEDGFAPDRHAEVWRFLAEQNFPTTIHAGEAAGLESIAQAVHLGQADRLGHGVRIMEDITFSEHDRSATLGRLAHWVRDHQIALEVCPVSNLQTAAAPGVSTIAEHPITRLKELDFAVTLNTDNRLMSRTSMSHEMRLLVSEAGWTIDDLADVTMTAAWSAFLHHDERRDLVDDLILPGYQKIEGALR	PGPT0021520_839	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488	NA	NA
AK001_01771	747	deoC		Deoxyribose-phosphate aldolase	ATGAGCGACGACACCAGCACGCCGGGCACCGGCACCGCCGTCCCGACCGACCGCGCGGCACTGGCCCGCTACGTCGACCACACGCTGCTCAAGCCGGAGGCGACGGCGGCCGACGTCTCCGCCCTGGTGACCGAGGGCGCCGCGCTCGGGGTCTTCTCCGTGTGCGTCTCGCCCACCTTCGTCGCCCACGCGGTCGAGGCCGCCGGCGGACGTCTCGCCGTGGCGACCGTGTGCGGCTTCCCCTCGGGCAAGCACGCCAGCGAGATCAAGGCCGCCGAGGCCGCCCGCTCGGTGCTGGACGGTGCCGACGAGGTCGACATGGTCATCGACATCGGCGCGGCCAAGGCCGGAGGCTTCGACGTCGTCCAGGACGACATCGCCGCCGTGCGCGCCGCCGTGCCGTCCGACAAGATCCTCAAGGTCATCATCGAGTCCGCGGCCCTGACCGACACCGAGGTCGTCGCGGCCTGCCGCGCGGCCGAGGCCGCCGGCGCGGACTTCGTCAAGACGTCCACCGGGTTCCACCCCACCGGGGGCGCCTCGGTGCACGCCGTCGAGCTCATGGCCGCCACCGTGGGCGGTCGCCTGGGGATCAAGGCCTCGGGCGGCGTCCGGACCCTGGCCGACGCCCAGGCGATGATCGCCGCGGGCGCGACGCGCCTGGGGCTGTCGGGCACCGCGGCGGTGCTCGCGGGCTTCGACGAGGGGACCGCGGCCGCGGGCGCGGCGGACGACGGCGGGTACTGA	MSDDTSTPGTGTAVPTDRAALARYVDHTLLKPEATAADVSALVTEGAALGVFSVCVSPTFVAHAVEAAGGRLAVATVCGFPSGKHASEIKAAEAARSVLDGADEVDMVIDIGAAKAGGFDVVQDDIAAVRAAVPSDKILKVIIESAALTDTEVVAACRAAEAAGADFVKTSTGFHPTGGASVHAVELMAATVGGRLGIKASGGVRTLADAQAMIAAGATRLGLSGTAAVLAGFDEGTAAAGAADDGGY	PGPT0017445_1943	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017445-deoC-K01619	NA	NA
AK001_01772	813		COG2375	putative protein	ATGACTGAGACGACCGAGCGCCGCAGCGGCCCGCCCGCCGGCAAGCGCACCCCGAAGTCCGCGACCGTCGGCGCCGTGCGGTGGCTGACCCCGCACATGGTGCGGATCACCCTGACCGGCGGAGACCTGCCGGGCCTCGACCCGACGGAGTTCACCGACCGGTACGTCAAGCTCGTCGTCGGTCCGCCGCCGGTCGAGGGGGCCCGACCCGTGGTGCGCACCTACACGATCCGCGCGGTCCGCGACGCCGAGTGGGACCTCGACTTCGTGGTCCACGGCGACGAGGGCCTCGGCGGCCCCTGGGCCGCGGTCGCGCGACCGGGGGAGCAGGTCACGTTCCTCGGACCCGGTGGCGGCTACGCCCCCGACCCCGAGGCGCCGTGGCACCTCCTCGTCGGTGACGACTCGGCCTGGCCCGCCGTCGCCGCCGCGCTCGAGGCGCTGCCCGCGGGCGCGCGGGCCCACGCCGTCGTCGAGGTCCCCGGACCGGAGGACGAGCAGGGGGTCGACTCCGCCGCGGACGTGACGATCACGTGGGTGCACCGCGGGGACGCCACCCTGGAGGACACCGTGCAGCGGCTGCACGCGGCCGGCGCGCTGCCCGACGGCGTCCCGCACGCGTTCCTGCACGGCGAGGCGGGGTGCGTGCGCACGCTGCGCCGCTGGGCCCGCTCCGTGCTCGGCGTCCCGCGCGAGCGGCTCTCGGCGTCGGGGTACTGGCGGCGCGGACACGACGACGAGGCCTGGCGGGCCGCGAAGAAGGACTGGACCGCCGCCGTCGAGCAGGACGACGCCGCCCTCGCCACCCCCTGA	MTETTERRSGPPAGKRTPKSATVGAVRWLTPHMVRITLTGGDLPGLDPTEFTDRYVKLVVGPPPVEGARPVVRTYTIRAVRDAEWDLDFVVHGDEGLGGPWAAVARPGEQVTFLGPGGGYAPDPEAPWHLLVGDDSAWPAVAAALEALPAGARAHAVVEVPGPEDEQGVDSAADVTITWVHRGDATLEDTVQRLHAAGALPDGVPHAFLHGEAGCVRTLRRWARSVLGVPRERLSASGYWRRGHDDEAWRAAKKDWTAAVEQDDAALATP				NA	NA	NA	NA	NA
AK001_01773	1767		COG1109	putative phosphomannomutase	ATGACGGAGTCCTTGGACGAGCTGCTCGCCCGTGTCGAGCACTGGATCCGGCACGACGTCGACGACACGGACGTCGACGAGCTGACCCGGCTCGTCGGGTACGCGGCGGCCGACGGCGGCACCCGGCACCCGTCGGCGCTCGCGGAGCTGCGCGACCGGTTCGACGGCACGCTGGAGTTCGGCACGGCGGGGCTGCGCGGCACGATGGCGGCCGGCCCGAACCGGATGAACAGCGCCGTCGTCGTGCGCACCGCCGCCGGGCTCGGCTCCTACCTGCACGAGGCGCTCGGCGCCGGGGCGGGGCCGCGCGTGGTGGTCGGCTACGACGCCCGGCACCGGTCCGCGGACTTCGCGCGCCGGACCGCCGAGGTGCTGACGGCGGCCGGGGTCGAGGTCCTGCTGCTGCCGGCCGCGCTGCCCACCCCCGTGCTGGCGTTCGCCGTCCGGCGTCTGGAGGCCGACGCGGGCGTGATGGTCACCGCGAGCCACAACCCCGCGGCCGACAACGGCTACAAGGTCTACCTCGGCGGACGTGTGGTGACCGACGAGGGCCAGGGCGCCCAGCTCGTCTCCCCGTACGACGAGGGCATCGCCGCCCACGTGGCCGCCGTCGGCCCGGCGGACGAGGTGCCGCGCCACGCCGAGGGGTGGACGGTGGTCGGCCGCGAGATCGTCGGCGACTACCTGGCCGCCCTGGCTCCGCTGCGCACGGCCGCCCCCGAGGCCGCCTCCCGGCTGACGATCGTGACGACGTCGCTGCACGGCGTGGGCGGGCCGCTGCTGGCCCGGGCGCTGGCCGACGCCGGGTTCACCCGCGTCATCCCCGTCGAGGAGCAGGTCGCCCCGGACCCCGACTTCCCGTCGGTGGCCTTCCCGAACCCGGAGGAGGCCGGCGCGATGGACCTCGCGCTGGGGCTCGCGATCGACTGCGGCGCCGACCTCGTCATCGCCAACGACCCGGACGCCGACCGGTGCGCCGTCGCCGTGCTGGACGTCACCCAGGGAACCCACCAGGGGGTCGAGACGGCCCGGTCCAGCGGCTGGCGGATGCTGCACGGCGACGAGGTGGGCATCCTGCTCGGCAGCGAGGCCGTGGCCCGCGCGGTGGGCCGGCCCGGGGCGACGGTCGCCAGCTCGGTCGTGTCCTCGCGGGCGCTGTCCCGCATCGCCCGGGACGCGGGCGTGGAGCACGCCACGACGCTGACCGGGTTCAAGTGGATCTCCCGCGCCCCGGAGCTGGTCTTCGGCTACGAGGAGGCTCTCGGCTACTGCGTGGACCCGGAGAACGTGCGGGACAAGGACGGCATCAGCGCGGCCGTCGTGGTCGCCTCGCTCGCGGCCCGTCTCAAGGCGGCCGGCCGGACGCTCATCGACGACCTCGACGACGTCGCGCGGGCGCACGGGCTGTTCGTCACCGGGCAGCTCTCGGCCCGCTTCAGCGACCTGAGCGAGATCCCCGCGGCGATGTCCCGCCTGCGCTCGGACCCGCCGCGCGAGCTCGGGGGGGCGCCCGTGCGCGTGGTCGCCGACCTGGCGGACGGCTACGAGGGCCTGCCGCCCACGGACGGCGTGCTGCTGCTCGCCGAGGACGACACCCGCGTCGTCGTGCGCCCCTCGGGCACGGAGCCGAAGCTGAAGTGCTACCTGGAGGTCGTCACCCACGTGGCCCCGGACGCGACGCCGCTCGACGTCGGGACGGCCCGCGTCGCGGCGCGGGAGCGCCTGGGCGACCTGTCCAAGGAGATGAACGCGGCGCTCGGGTTCTGA	MTESLDELLARVEHWIRHDVDDTDVDELTRLVGYAAADGGTRHPSALAELRDRFDGTLEFGTAGLRGTMAAGPNRMNSAVVVRTAAGLGSYLHEALGAGAGPRVVVGYDARHRSADFARRTAEVLTAAGVEVLLLPAALPTPVLAFAVRRLEADAGVMVTASHNPAADNGYKVYLGGRVVTDEGQGAQLVSPYDEGIAAHVAAVGPADEVPRHAEGWTVVGREIVGDYLAALAPLRTAAPEAASRLTIVTTSLHGVGGPLLARALADAGFTRVIPVEEQVAPDPDFPSVAFPNPEEAGAMDLALGLAIDCGADLVIANDPDADRCAVAVLDVTQGTHQGVETARSSGWRMLHGDEVGILLGSEAVARAVGRPGATVASSVVSSRALSRIARDAGVEHATTLTGFKWISRAPELVFGYEEALGYCVDPENVRDKDGISAAVVVASLAARLKAAGRTLIDDLDDVARAHGLFVTGQLSARFSDLSEIPAAMSRLRSDPPRELGGAPVRVVADLADGYEGLPPTDGVLLLAEDDTRVVVRPSGTEPKLKCYLEVVTHVAPDATPLDVGTARVAARERLGDLSKEMNAALGF	PGPT0017865_126	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-COLANIC_ACID_METABOLISM	CE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840	NA	NA
AK001_01774	852	punA		Purine nucleoside phosphorylase	ATGAGCACCACACCTGCTACGACGCCGGATCTCGACGACCCGGCGACCGACCCGTTCGACGTCGCGCGGGCCGCGGCCGACCACATCGCCGAGGTGACGGGAGTCAGCGGCCACGACGTCGCCCTCGTCCTCGGGTCCGGCTGGGGCGGGGCCGCCGAGCTCGTCGGCGACGTGGTCGCCGAGGTCCCCACCCACGAGATCCCGGGGTTCGCGCGCCCCTCCGTGGTCGGTCACGCCGCGACGACGCGCTCCATCCGCGTCGAGCGGCCCGACGGCTCGACCCGCAACGCCCTGGTCATCGGCGGGCGCACGCACCTGTACGAGGGCCGCGGGGTCCGCCGGGTGGCGCACGGCGTGCGGACCGCGGCGGCGACGGGGTGCACGACGGCGGTGCTCACCAACGGCTGCGGCGGCCTGCACATGGCCTGGCGTCCCGGGCAGCCGGTGCTGATCAAGGACCACCTGAACCTCACCGCGACCTCACCGCTGGAGGGCGCGACGTTCGTCGACCTCAGCGAGGTCTACTCGGAACGGCTGCGCGACGTGGCGCGGTCGGTCGACGCCGAGCTGCCGGAGGGCGTGTACGCCCAGTTCCCCGGCCCGCACTACGAGACCCCGGCCGAGGTCCGCATGGCCGGCGTGCTCGGCGCGGACCTGGTGGGGATGTCCACGACGCTGGAGGCGATCGCGGCGCGGCACACCGGCATGGAGGTGCTGGGGATCTCCCTGGTGACCAACCTCGCCGCCGGTGTCAGCCCGCACCCGCTGTCGCACGACGAGGTGCTGGAGGCCGGCCGGGCGGCCGGCCCGCGGATCAGCGACCTGCTGGCCCGCATCGTCCGCGAGATCTAG	MSTTPATTPDLDDPATDPFDVARAAADHIAEVTGVSGHDVALVLGSGWGGAAELVGDVVAEVPTHEIPGFARPSVVGHAATTRSIRVERPDGSTRNALVIGGRTHLYEGRGVRRVAHGVRTAAATGCTTAVLTNGCGGLHMAWRPGQPVLIKDHLNLTATSPLEGATFVDLSEVYSERLRDVARSVDAELPEGVYAQFPGPHYETPAEVRMAGVLGADLVGMSTTLEAIAARHTGMEVLGISLVTNLAAGVSPHPLSHDEVLEAGRAAGPRISDLLARIVREI	PGPT0013380_650	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783	NA	NA
AK001_01775	1461	lpdA	COG1249	NAD(P)H dehydrogenase (quinone)	ATGGCACCCGTGATGGCCGAGAAGAATGCCCCTGCCGGACCCAACCGCACCGTCGTCGTCATCGGCGGCGGCCCCGGAGGCTACGAGGCGGCTCACGTGGCCCGCCGCGCCGGGGCGGAGGTGACGGTCGTCGAGCGGCACGGCCTCGGCGGCGCCGCCGTCCTGACCGACGTCGTCCCGTCCAAGACGCTCATCGCCACCGCCGAGTGGCTGACGCTGGCCGAGTCGGCGCCCGAGCTCGGCATCCGCTCCGGCAAGACGCCGGTCGCGCCCGGCGACGACCAGGAGGCACGCCGCGCGCTCGTCGACCTGGAGGCGGTCAACACCCGTGTGCTGGCCCTGGCCGCCGCGCAGTCGGCCGACATCCGCGCCCGCCTGGAGCGCGAGGGCGTCGCCGTCGTCGAGGGCTCCGGCCGGCTCGACGGCCCCAGCCGCGTGGTCGTCACGCCGTCCGACGGCGGAGCGGAGCGCACGCTCGACGCCGACATCGTGCTGATCGCCACCGGGGCCACGCCCCGCACGCTGCCCACCGCCGCGCCGGACGGCGAGCGCATCCTGACCTGGACTCAGCTCTACAACCTCGACGAGCTGCCCGAGCGGCTGATCGTCGTCGGTTCCGGCGTCACCGGCGCCGAGTTCGCCGGCGCCTACCAGGCGCTCGGTTCCGACGTCGTGCTGGTGTCCTCGCGCGACCGCGTGCTGCCCGGCGAGGACGAGGACGCCGCCGAGCTCCTCGAGGGGGTCTTCCGGTCCCGCGGCATGACGGTCATGTCGCGCTCGCGGGCGGCCGCGGCCGAGCGGACCGAGGACGGCGTGGCCGTCACGCTGGAGGACGGCCGCGTGGTCGAGGGGTCCCACGTGCTCATCGCCGTCGGCGGCGTGCCGAACACCGAGGACCTCGGGCTGGCCGAGGCCGGCGTCGAGGTCCGGTCGTCGGGCCACATCGAGGTCGACCGGGTCTCGCGCACCTCGGTGCGCGGCGTCTACGCGGCCGGCGACTGCACCGGGGTGCTGCCGCTGGCCTCGGTGGCGGCGATGCAGGGCCGGGTCGCCATGGCGCATGCCCTGGGCGACGCCGTCGCGCCGCTGCGCCTGGGCAACGTCGCGGCGAACATCTTCACCGCGCCGGAGATCGCCACGGTGGGGGAGTCCGAGGCGCGGCTGCGCGAGCGCGGGTCGCGCTACATCACCACGACGCTGCCGCTGGCGCGCAACCCGCGCGCGAAGATGCACGGCGTGCACGACGGCTTCGTCAAGCTGTTCGCCCACCCGGAGGCCGGTGTCGTGCTCGGCGGCGTGGTGGTCGCCCCGCGCGCGAGCGAGCTCATCTTCCCCGTCACCCTGGCCGTCTCGCACCGGCTGACGGTCGACGACGTGGCGGACGCCTTCACCGTGTACCCGTCGCTGACCGGCACGATCGGCGAGACCGCCCGGGTGCTGCACGGCCAGCTCACGGTCTGA	MAPVMAEKNAPAGPNRTVVVIGGGPGGYEAAHVARRAGAEVTVVERHGLGGAAVLTDVVPSKTLIATAEWLTLAESAPELGIRSGKTPVAPGDDQEARRALVDLEAVNTRVLALAAAQSADIRARLEREGVAVVEGSGRLDGPSRVVVTPSDGGAERTLDADIVLIATGATPRTLPTAAPDGERILTWTQLYNLDELPERLIVVGSGVTGAEFAGAYQALGSDVVLVSSRDRVLPGEDEDAAELLEGVFRSRGMTVMSRSRAAAAERTEDGVAVTLEDGRVVEGSHVLIAVGGVPNTEDLGLAEAGVEVRSSGHIEVDRVSRTSVRGVYAAGDCTGVLPLASVAAMQGRVAMAHALGDAVAPLRLGNVAANIFTAPEIATVGESEARLRERGSRYITTTLPLARNPRAKMHGVHDGFVKLFAHPEAGVVLGGVVVAPRASELIFPVTLAVSHRLTVDDVADAFTVYPSLTGTIGETARVLHGQLTV	PGPT0020470_60	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020470-lpdA-K23842	NA	NA
AK001_01776	1998			hypothetical protein	ATGAGCCCGACCGCGCGCGACCGGCACTCGCTGCTGCTCCTCGCGCTGGTCACCGCGATCGTCGCCGAGCTCGTCCGGGCCAGCGGTCCCCTGCTGGACCACGCCTTCGCGGCGGGGGTCACCACGGCCGCGCTGGCCGCGCTGGCGACCTATCTCGCCCCGGCCGTGCTCGTCGCCGCGCTCACCGCCGGCCGCCCCGTGTCGGGACGCACCGTGCTGGTGGCCGTGTGTCTCCTGGTGGCCGCCCGCGTCGGGCTGCAGGCCCTCGGCGCCCGGATCGCCACCGTCCCGCTGGCCCCCGAGCTCGGCGAGCTGCGCTTCTACGGCGGCCTGGGCACGGTCGCGCTCGGGTTCGCCACGCTCGTCCTGGTGGCCGTGTTCGCCTCCGGGACGTCCACGGAGCCGGCCGACGACGGCGCTCCACCGCCCGGGCCCGGGTCGCTCGTCGCCCGCGGCGTGACGCTGGGGCAGCTGGGCGCGGCGGCGGTCGCCGTGCTGCAGGACACCTGGGACGCCGTGTGGCGGTCGGACGCCGCGAGCTGGGCGGTCACCGGGCTCCTGAGCGCCGGGGCGCTGATCGTCGCGGTCCGGCTGCGCCGTCGCGGGCACCGGCCGGGGGCGCGCGGGCTCTGGCTGCTGGGCCCCTTCCTCGCGCTCGGCGTCCAGGCGTTCGCCAACCCCGCTTTCGTCGCCTCGACCACGGGACTGCCGCTCGCCGCGGCCTCCGGTGCCACCGCCGTGGCGGCGCTGGGGGTCGGCGTGGCGCTGTCGGTCCACCGGCCGGCGGTCGGCCCCTGGGCGGCCGCCGTGGCGTTCGTCGGCGGCACCTGGCTGCTGTTCCTCACCGTGCCCCTCCTGGCGGACCCCGCCCCGGTGTGGTCGTGGGCCCTGCTCGTGGTGGCCACGGCGCTGCCGGCGGCCGGGGCGCGCACGCTCGCCGCGGCCTGGTCCCGGCCCACCCGGGTGCTGCGCGGCCGGCGGCTCGTGGGCGTCACCGCGGCCGCCGGGCTCGGTGCCGCCCTGCCGTTGCTGGTGTACCAGCTGCACTTCGAGGTCCCGCTGCCGGTGCCCGCGGGCCTGGTCCCGGTGGTCACGGCCGCCGTGGTGGCGCTGCCCGCCCTCGTGGGGTCACGTCGGCTCGCGCGGCTGGCCCCCACCGCCGGACCGCTGCTGACGGGCGCCGTGGCGCTGCTCGCCGTCATCGGCACGGCGACGACGTTCTGGAGCGGTCCCGGCAGCGGGGACGGCCGCGAGCGGGGCGTCGCGGACGACGACGCGCTCACGGTGCTGTCCTGGAACGTGCACTACGGCGTCGGGCCGGGGCCGTCGGTGCGCCTGGGCGAGATGGCCGACGTCGTCGAGGACTCCGAGGCCGACGTCGTCGCCCTGCAGGAGGTGTCCCGCGGCTGGGTGCTCGGCGGCGGTGCCGACATGCTCTCGTTCCTCGCCGACGCGACCGGGATGGAGCACGCCTTCGTCCCCGCCGCGGACCGGCGCTTCGGCAACGCGCTGCTGTGGGACCCGGAGCGCGTCACGGCCTCCGACGTCGACCGGGTCGCGCTGCCGTTCGGCGACGGCCCGCAGGACCGCTCGGCGCTGGCCGCGACGTTCCGCCCGGCCGGCGGCGGGACCACGGCGGACGGCGTCCGCGTCGTGGCCACGCACCTGCAGCACCGCGAGGAGAACCGCACGACCCGGCTCGAGCAGCTCGACGCGCTCTTCGACGCCGAACCGGTCGACGGTCCGTACGTGCTGGCCGGCGACCTCAACGCCGAGCCCGGGTGGCCCGAGATCGCCGCGCTCGAGGAGCGCGGCCTGGTCAGCGGGCAGGACGCCGTCGGCGACCCCGCCGCGCTGACCTCGCCCGCCGTGGACCCCCGCTACCGCGTGGACTGGGTCCTCGCCTCCGAGGACCTGACCTTCACCGCGTTCGAGGTGCTCGACGTGACGACCTCGGACCACCGGCCGCTCGTCGCCACCGTCGCCCCGGCGGGCTGA	MSPTARDRHSLLLLALVTAIVAELVRASGPLLDHAFAAGVTTAALAALATYLAPAVLVAALTAGRPVSGRTVLVAVCLLVAARVGLQALGARIATVPLAPELGELRFYGGLGTVALGFATLVLVAVFASGTSTEPADDGAPPPGPGSLVARGVTLGQLGAAAVAVLQDTWDAVWRSDAASWAVTGLLSAGALIVAVRLRRRGHRPGARGLWLLGPFLALGVQAFANPAFVASTTGLPLAAASGATAVAALGVGVALSVHRPAVGPWAAAVAFVGGTWLLFLTVPLLADPAPVWSWALLVVATALPAAGARTLAAAWSRPTRVLRGRRLVGVTAAAGLGAALPLLVYQLHFEVPLPVPAGLVPVVTAAVVALPALVGSRRLARLAPTAGPLLTGAVALLAVIGTATTFWSGPGSGDGRERGVADDDALTVLSWNVHYGVGPGPSVRLGEMADVVEDSEADVVALQEVSRGWVLGGGADMLSFLADATGMEHAFVPAADRRFGNALLWDPERVTASDVDRVALPFGDGPQDRSALAATFRPAGGGTTADGVRVVATHLQHREENRTTRLEQLDALFDAEPVDGPYVLAGDLNAEPGWPEIAALEERGLVSGQDAVGDPAALTSPAVDPRYRVDWVLASEDLTFTAFEVLDVTTSDHRPLVATVAPAG				NA	NA	NA	NA	NA
AK001_01777	456	mutT3	COG0494	Putative 8-oxo-dGTP diphosphatase 3	GTGACCTGCGGGGACCACCGGCACTGGGGCCTGCACGGCGCCGCCGGGCTGTTCCTCGTGCGCCACGACGTCGCGGCGTCGGCCGAGGCGACCCACGTCGTGCTCCAGCACCGCGCCACGTGGTCGCACGAGGGCGGCACCTGGGGCATCCCGGGAGGCGCCGTCCAGCCGACCGAGTCCGCCGAGACGGGGGCGCTGCGCGAGGCCGCCGAGGAGGCCGGGATCGACCCGGCGATCGTGCGGGTGGTCGGCGAGCACGTGCTCGACCACGGCGTGTGGACCTACACGACCGTCGTCGGCCACGTCACCGCCGGTGTCGAGCTGGTCCCGGCGGCCACCGACCACGAGAGCATCGAGGTGGCCTGGGTCCCGGTGTCGGCCCTGGCCACGCTGCCGCTGCACCCCGCCTTCGCGCAGGCCGTACCGCGCCTGCTCACGATAGCCTCACGAGGATGA	MTCGDHRHWGLHGAAGLFLVRHDVAASAEATHVVLQHRATWSHEGGTWGIPGGAVQPTESAETGALREAAEEAGIDPAIVRVVGEHVLDHGVWTYTTVVGHVTAGVELVPAATDHESIEVAWVPVSALATLPLHPAFAQAVPRLLTIASRG				NA	NA	NA	NA	NA
AK001_01778	1806	carB_1		Carbamoyl-phosphate synthase large chain	GTGCCCTCCATCAGCAAGGTCCTCATCGCCAACCGTGGTGAGATCGCCGTCCGCATCGCCCGTGCCTGCGCCGACGCCGGCATCGCCTCCGTCGCGGTCTACGCCGACCCGGACCGGCAGGCGCTGCACGCCCGGCTCGCCGACGAGGCGTTCGCGTTGAACGGCGCTCGCGCCGCCGACACCTACCTGGACGTGGACAAGCTGCTCGACGTCGCCCGCCGCTCGGGCGCCGACGCCGTGCACCCCGGCTACGGGTTCCTGTCCGAGAACGCCGGGTTCGCCCAGGCCGTCATCGACGCCGGGCTGACCTGGATCGGCCCGCCGCCGTCGGCGATCGAGTCGCTCGGCGACAAGGTCAGCGCCCGGCACATCGCCCAGCGTGCCGGAGCCCCGCTGGTCCCCGGCACGAAGGACCCCGTCGCCGACGCCTCGGAGGTCCGCGCGTTCGCCGCCGAGCACGGTCTGCCGATCGCCATCAAGGCCGCCTACGGGGGCGGCGGCCGCGGCCTGAAGGTGGCGCGCACGCACGAGGAGATCGACGAGCTGTACGACTCCGCCGTGCGGGAGGCCGTCGCGGCCTTCGGCCGGGGCGAGTGCTTCGTCGAGCGCTACCTCGACCGGCCCCGGCACGTGGAGACGCAGTGCCTGGCCGACACGCACGGCAACGTCGTGGTGGTCTCCACCCGCGACTGCTCCCTCCAGCGCCGGCACCAGAAGCTCGTCGAGGAGGCCCCCGCGCCGTTCCTCACCGCCGAGCAGGAGGCCGAGCTGGACCGCGCCTCGAAGGCCATCCTGCGCGAGGCCGGGTACGTGGGCGCCGGCACCTGCGAGTTCCTCGTGGGCACCGACGGCACGCTGTCCTTCCTCGAGGTCAACACCCGCCTGCAGGTCGAGCACCCCGTGACCGAGGAGGTCACCGGCATCGACCTGGTGCGCGAGCAGCTGCGGATCGCCGACGGCGCCGAGCTCGGCTACGAGGCCACCACCGTGCGCGGCCACAGCCTGGAGTTCCGCATCAACGGCGAGGACCCGGCCGCCGGGTTCCTGCCCGCCCCGGGCACCGTGTCCACGCTGCGCTGGCCGTCCGGGCCGGGCGTGCGCGTCGACACCGGCGTCGTCGAGGGCGACAGCATCTCGGGGCTGTTCGACTCCATGATCGCCAAGCTGATCGTCACCGGTGCCACGCGCACGCAGGCGGTGCAGCGGGCCCGTCGCGCGCTGCGCGAGCTGGAGGTCGCCGGCATCCCCACGGTCGTGCCGTTCCACCGTGCGGTCCTGGAGGCGCCGGACTTCGTCCCGGCCGCCGGCGAGGACGCCGGGGCGGACGACTTCGCCGTGCACACCCGGTGGATCGAGACCGACTTCGCCGACGAGCTGGCCGCCCTGTCCCCCGCCGCCCCGGCACCGGTCGCCGACGAGGAGGAGCCGGCCGAGGCGACCCCCGAGCGCGTCGTCGTCGAGGTCGGCGGACGCCGCCTCGAGGTCGTGCTGCCGGCCGGTCTGGGCATGGCCGCGGGCCGTGCCCGTCGTGCCGACGCCGCCCGCCCGCGCCGGGCGCGCCGCAACGGGCGGGCCGCCGCCGGCGGGAACGCCGGCACCACCCTGGCCTCCCCCATGCAGGGCACCATCGTCAAGGTGGCCGTCACCGAGGGCGACGAGGTCGCCGAGGGTGACCTCGTCGTCGTGCTCGAGGCCATGAAGATGGAGCAGCCCATCACCGCCCACCGTGCCGGCACGGTGACCGCGCTCAGCCTGGAGCCGGGCGCGGGCGTCTCGGCGGGCACGGCCATCTGCGAGATCTCCTGA	MPSISKVLIANRGEIAVRIARACADAGIASVAVYADPDRQALHARLADEAFALNGARAADTYLDVDKLLDVARRSGADAVHPGYGFLSENAGFAQAVIDAGLTWIGPPPSAIESLGDKVSARHIAQRAGAPLVPGTKDPVADASEVRAFAAEHGLPIAIKAAYGGGGRGLKVARTHEEIDELYDSAVREAVAAFGRGECFVERYLDRPRHVETQCLADTHGNVVVVSTRDCSLQRRHQKLVEEAPAPFLTAEQEAELDRASKAILREAGYVGAGTCEFLVGTDGTLSFLEVNTRLQVEHPVTEEVTGIDLVREQLRIADGAELGYEATTVRGHSLEFRINGEDPAAGFLPAPGTVSTLRWPSGPGVRVDTGVVEGDSISGLFDSMIAKLIVTGATRTQAVQRARRALRELEVAGIPTVVPFHRAVLEAPDFVPAAGEDAGADDFAVHTRWIETDFADELAALSPAAPAPVADEEEPAEATPERVVVEVGGRRLEVVLPAGLGMAAGRARRADAARPRRARRNGRAAAGGNAGTTLASPMQGTIVKVAVTEGDEVAEGDLVVVLEAMKMEQPITAHRAGTVTALSLEPGAGVSAGTAICEIS	PGPT0001705_3562	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961	NA	NA
AK001_01779	702		COG0424	Nucleoside triphosphate pyrophosphatase	GTGACGCGACTCGTGCTGGCCAGCCAGTCCCCCGCCCGCCTGTCCACGCTGCGCAGCGCCGGGGTCGACCCCGGCGTACTGGTCAGCGGCGTGGACGAGGACGCGGTGCTGGCCGCCGCCCGCGAGCGCTACCCGGACCTGCCGCCGTCGGACGCCGTGCTGACGCTCGCGCAGGCCAAGGCCGAGGAGGTCGCCCACCGCCTCGAGGACGGCGACTCGGGCCACGACCAGGACGGCGCCACGCCCGCCGGTCTGGTGCTCGGCTGCGACTCGATGCTGGAGATCGACGGCGAGGTCGTCGGCAAGCCCGCCGACGCCGACGAGGCCCGCGAGCGCTGGCGGGCGATGCGCGGACGCTCCGGCGTGCTGCACAGCGGTCACTGGCTCGTCGACACCCGCGACCCGGACGACGGCGGCACCGGCGCGACGCTCGGCGCCACCAGCTCGACCACTGTCTGGTTCGCCGACCTCGACGACGACGAGATCGACGCCTACGTCGCCACCGGCGAGCCGCTGCACGTCGCGGGCGCCTTCACGATCGACGGACTCGGCGGCCCGTACGTCGACCGGCTGGAGGGCGACCACCACGGCGTGGTCGGGGTGTCGCTGCCGCTGCTGCGCGCGCTGCTGGCCGAGATCGAGGTGCCGTGGCGCACGCTGCGCGACGGCAACCGCACCGGCACGTCCACCAGCACCGCCTGA	MTRLVLASQSPARLSTLRSAGVDPGVLVSGVDEDAVLAAARERYPDLPPSDAVLTLAQAKAEEVAHRLEDGDSGHDQDGATPAGLVLGCDSMLEIDGEVVGKPADADEARERWRAMRGRSGVLHSGHWLVDTRDPDDGGTGATLGATSSTTVWFADLDDDEIDAYVATGEPLHVAGAFTIDGLGGPYVDRLEGDHHGVVGVSLPLLRALLAEIEVPWRTLRDGNRTGTSTSTA				NA	NA	NA	NA	NA
AK001_01780	921			hypothetical protein	GTGCAGGGTGTCGTCACCGGCTTCGCCATCATCGGCGTCGTCATCGTCGCCGGGTACGTGGCTGCGCGGCTGCGCATCGGCGGGCCGGGCGCCCGCGAGGCGCTGAACCGGGTCGGGTTCTTCATCGCGTCCCCGGCGCTGCTGTTCACGGTGGTGGCCGACGCCGACCTCGGTCGGCTGCTCGCGGCGCCGCTGCTGGTGCAGCTCACGGCGGCGTTGACCGCCGCGGCCGTGTTCGTCGTCGTGAATCGGCTGTGGTGGCGGCTGCGGGTCCCGGAGGCGACGATCGGTGCGCTCGGGTCCGGGTACGTCAACGCCGGCAACATCGGGCTGCCCGTGGCGATCTACGTGCTCGGCGACGCCACGGCGGTGGTGCCGGTGATCGGCCTGCAGCTGCTGATCGTCTCGCCGCTGGTGCTGCTCCTGCTGGACTCGGCCACGAGCCGGAAGGTCTCGCTCGGGTTCGTCGTCAGCCAGCCGGTGCGCAACCCGATCATCCTCGGCGCGCTGGCGGGCGCGGCCGTGTCCCTGACCGGGGTGACGGTGCCGGACATCGTCCTGGCGCCGCTGGAGATCCTCGGCGGGGCGGCGGTGCCGATGATCCTTCTGGCCTTCGGCATGTCGCTGCACGGGTCGCGGCCGTTGCGGGGCGAGGAGGGCCGGGCGCCCGTGGTCGTGGCCACCGTGCTCAAGGCGCTGGTCATGCCCGCGGTCGCGTTCGCCGTGGCCCGGTTCGGGTTCGGCCTGGACGACGCCGCGGTCGCCACGGCGGTGACGCTCGCCGCGCTGCCGACGGCGCAGAACATCTACAACTACGCCGCCCGGTTCCGCCGCGGCGAGGTGCTGGCCCGCGACACGGTGCTGATGACGACGCTCGCCTCGCCGGTGGTGATGATCGTCGCGGCCGCCCTGCTCACCTGA	MQGVVTGFAIIGVVIVAGYVAARLRIGGPGAREALNRVGFFIASPALLFTVVADADLGRLLAAPLLVQLTAALTAAAVFVVVNRLWWRLRVPEATIGALGSGYVNAGNIGLPVAIYVLGDATAVVPVIGLQLLIVSPLVLLLLDSATSRKVSLGFVVSQPVRNPIILGALAGAAVSLTGVTVPDIVLAPLEILGGAAVPMILLAFGMSLHGSRPLRGEEGRAPVVVATVLKALVMPAVAFAVARFGFGLDDAAVATAVTLAALPTAQNIYNYAARFRRGEVLARDTVLMTTLASPVVMIVAAALLT	PGPT0001720_2511	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936	NA	NA
AK001_01781	1755			hypothetical protein	GTGACCCACGACACCCCCGGCGCCCCGACCCCGAGCGCCACCACCAGCGCGCCCCGCACCCCCACCGCCCTCGACGCCGCGGCCGACGCCTACGTCCGCCGCTTCGCCGCCCTGGAACCGATCGCCGCGTCCTTCATGGGCCTGCCCGGGCACGACCACGAGCTGCCCGACCTGTCCCCCGCCGGTCACGAGGCGCGCGCGGACCTGGACCGGGCGCTGCTGCGCGAGCTGGACGAGCTCGAGGCCGCCGGCAAGACCCCCGTCGACGACGTCGACCGGGTCACGCTGGCCGCGATGCGCGAGCGCGTGGGCCTGTCCCTCGAGCTGCACGAGGCCGGTGAGCCCCAGGCGAGCCTGAACAACATCGAGTCGCCGGTCCAGCAGCTGCGCGACCTGTTCGACGTCGTCCCCACCGGGACCGTCGAGGCGTGGGAGAACATCGCCGCGCGCCTCAACGCCGTCCCGGAGGCGCTGGCCGGCTACACCGCGTCGCTGCGCCTCAGCGCCGAGCAGGGTCGCGTGGCAGCGATCCGTCAGGTGCGCGCCGCCACCTCCCAGGCCCGCGACCTCGCCGGTCCGGAGTCGACGTTCACCGCCCTGGTGCGGGGCGACGACGCCGCCCGCGTGCTGGACGACTCGGCCGCCTGCAGCCTCGTGCGGGCCGAGCTGGAGCGGGGTGCCGCCGCCGCGTGCGCGGCCTACGGCGAGCTGGCGGACTTCCTGGAGCACGGGCTGGCCCCGCAGGCGCCGGAGCAGGACGCCGTCGGCCGCGAGCGCTACGCCCTGTTCTCCCGCGAGTTCCTCGGCGCCGAGGTCGACCTTGACGAGACCTACGAGTGGGGTCTGGCCGAGCTGGCCCGCATCGTGGCCGAGCAGGAGGCCGTCGCGCGCGAGATCGCCGGCCCCGACGCCACCGTGTCCGACGCCGTGGCCGTGCTGGACGCCGACGCCGACCGGCAGCTGCACGGGACCGACGCGCTGCGCGCCTGGATGCAGACCACCGCCGACGCCGCGATCGAGGACCTGGCCGGCACCCACTTCGACATCGAGGGCCCGGTGCGCACGATCGAGTGTCGCATCGCCCCGACGCAGACCGGCGGGATCTACTACACGCCGCCGAGCGACGACTTCTCCCGCCCGGGCCGCATGTGGTGGTCCGTCCCGCCGGGGGTCACCGAGTTCACCACCTGGCGCGAGACGACGACGGTCTACCACGAGGGGGTCCCCGGCCATCACCTGCAGTGCGCCGCTGCAGTCTCGGCCAAGGACAGCCTGAACTCCTGGCGCCGGCTGGCCTGCTGGGTCTCCGGCCACGGCGAGGGGTGGGCGCTGTACGCCGAGCGCCTCATGGCCGACCTCGGTCACCTGGACGACCCGGGCGACCGGCTCGGGATGCTGGACGCCCAGCGCCTGCGGGCGGCCCGCGTCGTGATCGACCTCGGGGTGCACCTCGGCAAGCCGTGCCCCGAGGAGTGGGGCGGCGGCACGTGGGACGCCGACAAGGCCTGGGGATTCCTGACCTCGAACGCCGACATGGACGCCGAGTTCCTGCGCTTCGAGCTGGACCGGTACCTCGGCTGGCCGGGCCAGGCGCCGTCGTACAAGGTGGGCCAGCGGCTGTGGGAGCAGATCCGCGACGAGGCCCGCGCGACCGCGGAGGCGCACGGCGAGGAGTTCGACCTGCGCGCGTTCCACGCCCGCGCGCTGGGCCTCGGGTCGGTCGGGCTGGACGTGCTGCGCGAGGCGCTCGCCTGA	MTHDTPGAPTPSATTSAPRTPTALDAAADAYVRRFAALEPIAASFMGLPGHDHELPDLSPAGHEARADLDRALLRELDELEAAGKTPVDDVDRVTLAAMRERVGLSLELHEAGEPQASLNNIESPVQQLRDLFDVVPTGTVEAWENIAARLNAVPEALAGYTASLRLSAEQGRVAAIRQVRAATSQARDLAGPESTFTALVRGDDAARVLDDSAACSLVRAELERGAAAACAAYGELADFLEHGLAPQAPEQDAVGRERYALFSREFLGAEVDLDETYEWGLAELARIVAEQEAVAREIAGPDATVSDAVAVLDADADRQLHGTDALRAWMQTTADAAIEDLAGTHFDIEGPVRTIECRIAPTQTGGIYYTPPSDDFSRPGRMWWSVPPGVTEFTTWRETTTVYHEGVPGHHLQCAAAVSAKDSLNSWRRLACWVSGHGEGWALYAERLMADLGHLDDPGDRLGMLDAQRLRAARVVIDLGVHLGKPCPEEWGGGTWDADKAWGFLTSNADMDAEFLRFELDRYLGWPGQAPSYKVGQRLWEQIRDEARATAEAHGEEFDLRAFHARALGLGSVGLDVLREALA				NA	NA	NA	NA	NA
AK001_01782	2268	fgd_5		F420-dependent glucose-6-phosphate dehydrogenase	ATGACGGACTACGGCCACGACCTGGTCTTCGGTACGTTCCTCACCCCGTCCAACCGCGACCCGCAGGCGCCCGTGCGCCTGGCACGGACGGCCGAGTCCGCCGGGCTGGACCTGGTCACCTTCCAGGACCACCCCTACCAGCCCGGGTTCCTCGACACCTGGACGCTGATCGCCTACGCGGCCGCCGTCACCGAGCGCGTGCACCTCGCCGGCAACGTGCTCAACCTGCCGCTGCGCCAGCCGGCGGTGCTCGCCCGGTCCGTGGCCAGCCTCGACCTGCTCAGCGGCGGACGCATCGACCTCGGCCTCGGTGCGGGCGGGTTCTGGGACGCGATCGAGTCGATGGGCGGCGAGCGGCTCACTCCTGGGGAGTCCGTCGACGCGCTGTCCGAGGCGATCGAGATCATCCGGGGCGTCTGGGACGCCGGCGAGCGACGTCCTCTGCGCACCGCCGGGGAGCACCACCGGGTCTCCGGTGCCAAGCGTGGTCCCGCCCCCGCGCACGACGTGCCGATCTGGCTGGGCGCGTACAAGCCCCGCATGCTGCGGCTCGTGGCGCGGCAGGCCGACGGGTGGCTGCCGTCGCTGGGGTACATGAAGGACGGCGACCTGGCCCGCGGCAACGCGATCATCGACGCCACGGCCGAGGAGGCCGGGCGGCACCCGGCCGAGATCCGGCGCCTGCTGAACGTCCAGGGCGCGGTCACGGCCGACCGGCAGGGCTTCCTGCAGGGCCCGGTGGACCAGTGGGTCGAGGAGCTCGCGGGGCTGGCCCTGCACGACGGCGTCGGCACGTTCATCACGGCCACCGACGACCCCCAGATGCTCGCCGTCCTCGGCGGCGAGATCGCCCCGGCCGTGCGCGAGCTGGTGGCCCGCGAACGGGCCTCGGCCGGCACCCCCGCGGCGGCCACCCGGCGCGGCCGCTCCGCGATCGAGCTGCGGCGCGAGGGCATCGACTACGACGCGGTGCCCGCCCCGCTGGCCGAGCGCGCCGTCGAGCCCGGCGACCGCGCCTACGACACCGTGCGCCACAACTACCTGCGCTCCGGCGCCCCCGGCCTGGTGCTGCGGCCGCGCACCACCGCGGAGGTGGCCGACGCCGTCGCCTGGGCGCGGTCGCAGGACGTCCCGCTGGGCATCCGCTCGGGCGGGCACGGCATCAGCGGCCGGTCCACGAACGACGGCGGCATCGTCGTCGACCTCGGCGCGCTGGACCAGATCGAGGTGGTGGACGAGGCGACGCGGCGGGTGCGGCTCGGCGCCGGTGCCACCTGGGGGCAGGTCGCCGAGGCGCTCGCGCCGCGCGGCTGGGCGATCAGCTCGGGCGACTACGGCGGTGTCGGCGTCGGCGGGCTCGCCACCGCGGGCGGGGTCGGGTTCCTCGGACGGACCTACGGGCTGACCATCGACCACGTCGTCGCGGCGGAGGTCGTCACGGCCGACGGCCGGGTCGCCCACGCCTCCGCCGAGGAGAACCCGGACCTGTTCTGGGGCCTGCGCGGCGCCGGCGGCAACCTCGGGGTCGTCACCTGGGTGGAGATCGAGGCCATGGCGCTGGAGAACGTCGTCTTCTCCCAGATGGCGCTCGACGCGACCGACACCGCCGGCCTGCTGGAACGCTGGGGCGCCGCGGTGGAGTCCGCGCCGCGCGAGCTGACCAGCTTCCTCATCCTGTCCCCGGCGCGTGCGGGCCAGGGACCGGTCGCCCAGCTCATGACCGTCTACGCCGGCCACGACACCGACGCCGCCGTCGAGCAGCTCGAACGGCTCGCCGACGCCGGACCGCTGCTCGGGCACCAGGCCTACCTCATGCCGTACTCCGGCGTCGTCCAGGCGGGGGACAAGCACCACTCCGGCGGGGGAGACCCGGCCGTGCGGTCGGGGCTGGTGCCCCACCTGGACACGGCGACGAGCCGCGCCTTCGAGCGTCTCGCGCACTCGGGCGACGCCTACTTCCTGCAGGTCCGGGCCACCGGCGGGGCCGCCCACGACGTGCCGGACGACGCGACCGCGTACGCGCACCGGCGACAGAACTTCCTGCTGTCGGCCATGTCGTCGAGCCAGGAGCGGATCGACCGCGCCTGGGACGCCGAGATGGCGCCGTACACCGAGGGGCTCTACCTCTCCTTCGACACGGACACCCGGCCCGAGCGGCTGGCCGAGGCGTTCCCGGAGCCGACGCTGTCGCGGCTGCGCGAGGTCAAGGCCGAGTGGGACCCGGACAACCTCTTCCGCGCGAACTTTCCGGTCCGCCCGGCCCTCTGA	MTDYGHDLVFGTFLTPSNRDPQAPVRLARTAESAGLDLVTFQDHPYQPGFLDTWTLIAYAAAVTERVHLAGNVLNLPLRQPAVLARSVASLDLLSGGRIDLGLGAGGFWDAIESMGGERLTPGESVDALSEAIEIIRGVWDAGERRPLRTAGEHHRVSGAKRGPAPAHDVPIWLGAYKPRMLRLVARQADGWLPSLGYMKDGDLARGNAIIDATAEEAGRHPAEIRRLLNVQGAVTADRQGFLQGPVDQWVEELAGLALHDGVGTFITATDDPQMLAVLGGEIAPAVRELVARERASAGTPAAATRRGRSAIELRREGIDYDAVPAPLAERAVEPGDRAYDTVRHNYLRSGAPGLVLRPRTTAEVADAVAWARSQDVPLGIRSGGHGISGRSTNDGGIVVDLGALDQIEVVDEATRRVRLGAGATWGQVAEALAPRGWAISSGDYGGVGVGGLATAGGVGFLGRTYGLTIDHVVAAEVVTADGRVAHASAEENPDLFWGLRGAGGNLGVVTWVEIEAMALENVVFSQMALDATDTAGLLERWGAAVESAPRELTSFLILSPARAGQGPVAQLMTVYAGHDTDAAVEQLERLADAGPLLGHQAYLMPYSGVVQAGDKHHSGGGDPAVRSGLVPHLDTATSRAFERLAHSGDAYFLQVRATGGAAHDVPDDATAYAHRRQNFLLSAMSSSQERIDRAWDAEMAPYTEGLYLSFDTDTRPERLAEAFPEPTLSRLREVKAEWDPDNLFRANFPVRPAL				NA	NA	NA	NA	NA
AK001_01783	492	slyA		Transcriptional regulator SlyA	ATGAGCACCGGGACGACGGCGGACACGGCCACCGGGCACAGCCCGCTCGGCTGGCCGCTCGCCGCGCTGCTGCGCGAGTGGAGCGACGGGGTCACCGCCGCCTGCGCCGACGTCCCGCACGGCGCCCGCGGGTACGAGGTGCTCGCCGCCGTCGTCCAGGACGCCCCGCCGACCCAGGCCGCGTTGGCCGCCCGGCTCGGCATCGACCGCACCGTCATGACCTACCTGCTCGACGAGCTCGTCGGGTGCGGCCTCGTCGAGCGGCAGCAGGACCCCGCGGACCGACGCGCCCGACGCATCGTGGCGACCGAGCACGGACGCGCCGTGCTGGCCGACCTCGACGCCCGCGTGCGCGCCGCCGAGGACGCCCTGCTCGCCGACCTCAGCGCCGTCGAGCGGGACCACCTGCGGGCTCTGCTCGCACGGGCCGCGTCCGCCGCGGCGCCGGGCGACGACCGGTGCGCCGTCGTCGCCCGCGTCATCGACGCCTGA	MSTGTTADTATGHSPLGWPLAALLREWSDGVTAACADVPHGARGYEVLAAVVQDAPPTQAALAARLGIDRTVMTYLLDELVGCGLVERQQDPADRRARRIVATEHGRAVLADLDARVRAAEDALLADLSAVERDHLRALLARAASAAAPGDDRCAVVARVIDA	PGPT0016255_135	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0016255-sylA-K06075	NA	NA
AK001_01784	1596	garD	COG2721	Galactarate dehydratase (L-threo-forming)	ATGAACGACCTGCTCGTGCTGCGTGACGGCGACGACGTCGCCGTGGCCGCCCGGGACCTGAGCCCCGGCGACCGTGCCGGGACGCCCGACGGCGGTGCCGTCGTCGTGCGCGACGCCGTCCCCCGCGGGCACAAGGTCGCCCTGCGGGCCGTGGCCGCCGGGGACCCGGTGCGCAAGTACGGGCAGGTCATCGGGGTCGCGACCTGCGCCGTCGAGCCCGGTGACCACGTCCACGCCCACAACCTCGGGTTCGACCCGGGCGAGCGGGAGGCTCCCCTCGGTGGCGAGCACACCGAGCTGGTGGTGCCCGACGGCCCGCGCCCCACCTTCCGTGGCTACCGGCGCGCCGACGGCCGCGTCGGTACCCGCAACTACGTCGCGATCCTCACGAGCGTCAACTGCTCGGCCTCGACGGCGAAGATGATCGCCGAGCGGTTCCCCCGGTCCGAGCTGGACGCGTTCGAGAACGTCGACGGCGTAATCGCCCTGACCCACACCTCGGGGTGCGGGCTCGTCCCGGACTCCGAGGGCGGCCAGGTGCTGCTGCGCACCCTGCGCGGGTACGCCGCCCACCCCAACGTCGCGGCCGTGCTCGTCCTGGGCCTGGGCTGCGAGATGGTCCCCGGGGCCGCGCTGGCCGCGCGCTCCGGGACCGTCGCGGACCTCGGGATGCCGGGGATCGGCGCCCCCGACCCCGCCGAGAGCACGGGGTTGCTCGCCGGCATCCCCGAGGACACGGTCGTGCGCTCGATGACGATCCAGGAGACCGGTGGCATCCGCGCCACGGTGCGCGCCGGCGTCGAGGAGATCCGCGCGATGCTGCCCGCGGTGAACGCCCGCCGGCGCACCGAGTGCGACGTCTCCGAGCTGGTGCTCGGCCTGAACTGCGGCGGGTCCGACGGGTACTCCGGCATCACCGCGAACCCGGCGCTCGGCTGGGCCTCGGACCGGATCGTCGCCTACGGCGGCACGTCGGTGCTCGCCGAGACGCCCGAGGTCTACGGCGCCGAGCACCTGCTCACCGCGCGGGCCACCCGACCCGAGGTCGCCCAGAAGCTCCTCGACCAGCTCGCGTGGTGGCGCGGCTACATGGCCGCCGGGCAGGGGACGCTCGACAACAATCCGTCCCCGGGCAACAAGGCCGGCGGGTTGACCACCATCCTGGAGAAGTCGCTCGGCGCGGTCGCCAAGGGCGGGCAGGCCGACCTGGCCGCGGTGTACGACTACGCCGAGCCGATCACCGACCGCGGGTTCACGTTCATGGACACCCCGGGCTACGACCCGGTCTCCGTGACGGGGCTGGTCGCCGGCGGCGCGAACGTCGTCGTCTTCACCACCGGTCGCGGGTCGGTCTTCGGCTGCCGCCCGACGCCGTCGATCAAGGTTGCCACGAACACGCCCATGTACGAGCGCATGAGCGAGGACATGGACGTCAACGCCGGGCGCATCGTCGACGGCACCGCCGCGCTGGAGGAGGTCGGCGCCGAGCTGCTCGAGCGGATCCTCGCCGTGGCCTCGGGAGAGCGCACCGTCAGCGAGGAGCTGGAGATCGGCACCGAGGAGTTCATCCCCTGGCACCTGGGTGCGGTGACCTGA	MNDLLVLRDGDDVAVAARDLSPGDRAGTPDGGAVVVRDAVPRGHKVALRAVAAGDPVRKYGQVIGVATCAVEPGDHVHAHNLGFDPGEREAPLGGEHTELVVPDGPRPTFRGYRRADGRVGTRNYVAILTSVNCSASTAKMIAERFPRSELDAFENVDGVIALTHTSGCGLVPDSEGGQVLLRTLRGYAAHPNVAAVLVLGLGCEMVPGAALAARSGTVADLGMPGIGAPDPAESTGLLAGIPEDTVVRSMTIQETGGIRATVRAGVEEIRAMLPAVNARRRTECDVSELVLGLNCGGSDGYSGITANPALGWASDRIVAYGGTSVLAETPEVYGAEHLLTARATRPEVAQKLLDQLAWWRGYMAAGQGTLDNNPSPGNKAGGLTTILEKSLGAVAKGGQADLAAVYDYAEPITDRGFTFMDTPGYDPVSVTGLVAGGANVVVFTTGRGSVFGCRPTPSIKVATNTPMYERMSEDMDVNAGRIVDGTAALEEVGAELLERILAVASGERTVSEELEIGTEEFIPWHLGAVT	PGPT0018305_245	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018305-uxaA-K01685	NA	NA
AK001_01785	1350	yesO_1	COG1653	Putative ABC transporter substrate-binding protein YesO	ATGCGAGCAACGACCACACGACGCGGCCGCCGGAACGCTGCCGCCTTCATCGCGCTGACCGCGGCGAGCACCCTCGCGCTGGGTGCCTGCTCGGGAGACGCGGGCGGCCCGGCCGCCGAGGGCGACGACACGGGGTCGTCCGAGGAGGGCGGCGGTGACGACGGCGTCGAGATCCGCTTCTCGTGGTGGGGTTCCGACGACCGTCACCAGACCACCCAGGAGATCATCGACCTCTTCGAGGAGAAGAACCCGGACATCACCGTGGTGCCCGACTTCACCGACTGGGGCGGGTACTGGGACAAGCTGGCGACCACGGTCGCCGGCGGTGACACCCCCGACGTCATCACCCACGAGGAGCGCTTCATCGCCGACTACGCCAACCGTGGCGTGCTGGCGGACCTGGAGTCCCTCGACATCGACACCTCCGAGGTCCCCGAGAGCATCATCGACTCCGGTCGCGTCGACGGGACCCTGTACGGCATGGCCACCGGCGTGAACGCCTACGCCATCACGGCGGACCCGACGGTGTTCGAGGAGGCCGGCGTCGAGATGCCGGACGACACGACCTGGACGTGGGACGAGTTCGTCGAGATCTCGGCGCAGATCTCCGAGGCCGCCGGCGACGGCGTCTGGGGCACCCAGGACATCGGCTTCAACGAGGCCGGGCTCAACATCCTGGCCCGCCAGAAGGGCCAGTCGCTCTACAACGAGGACGGCTCGCTCGGTGTCGACGCCGAGACCGTGGCCGAGTTCTTCCAGATCGGCGTGGACCTGCAGGAGTCGGGCGGTACGCCGGACGGCTCGCGCACCATCGAGATCCAGAACGCCGGCCCCGAGGGCTCGCTGCTCGGCACGAACGCCGGCGCCATGGGCGTCTGGTGGACCAACCAGCTCGGCGCCCTGAGCGCCGCCTCGGGCCACGAGCTCGAGCTGCTGCGCATGCCGGGCGAGTCGGAGTTCGAGCGCACCGGCATGTACTTCAAGCCGGCCATGTTCTACTCCGTCGCCGAGGACACGGAGCACCCGGAGGCCGCGGCGAAGTTCGTCGACTTCCTGGTCAACGACCCGGAGGTGGCGCAGCTGCAGCTCACCGACCGCGGTCTGCCGTCGAACCTGTCGGTGCGCGAGTCCATCGAGGATCAGCTCGAGGCCGCCGACGCGCGTGTCGCGGAGTTCATGGCCGACCTCGAGTCCGACATCGTGGACGGTCCGCCGGTGCCGCCGAACGGCGCCGGTGACGTCCAGGACGTCATGATCCGGCTCAACACCGAGGTGCTCTTCGGTTCGATGACGCCGGAGGAAGCCGCCGAGCAGTTCCTCACCGAGGTCGCGGAGGTGACCGGGAGCTGA	MRATTTRRGRRNAAAFIALTAASTLALGACSGDAGGPAAEGDDTGSSEEGGGDDGVEIRFSWWGSDDRHQTTQEIIDLFEEKNPDITVVPDFTDWGGYWDKLATTVAGGDTPDVITHEERFIADYANRGVLADLESLDIDTSEVPESIIDSGRVDGTLYGMATGVNAYAITADPTVFEEAGVEMPDDTTWTWDEFVEISAQISEAAGDGVWGTQDIGFNEAGLNILARQKGQSLYNEDGSLGVDAETVAEFFQIGVDLQESGGTPDGSRTIEIQNAGPEGSLLGTNAGAMGVWWTNQLGALSAASGHELELLRMPGESEFERTGMYFKPAMFYSVAEDTEHPEAAAKFVDFLVNDPEVAQLQLTDRGLPSNLSVRESIEDQLEAADARVAEFMADLESDIVDGPPVPPNGAGDVQDVMIRLNTEVLFGSMTPEEAAEQFLTEVAEVTGS	PGPT0016545_3843	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_01786	957	ngcG_2	COG0395	Diacetylchitobiose uptake system permease protein NgcG	ATGACTGACACGCCCGTGCGCCCCGACGCACACGCCGCCACCACCGACGACCGGTCACCCGTGCGCCCCCGGCGCCCGCTGGCGGAGGTCGCCGCCGAGATCCCGGACTCCCCGCGCAAGCGGTCGTGGCAGCCCCGAGCGCGCCGGCTGCTGAAGCACGCGCTGCTCATCGGCTTCGGCCTGGTGATGCTCTACCCGTTGCTGTGGATGCTGTCGAGCTCCTTCAAGCCGAACGACATCATCTTCCGCGACACGGGGCTGATCCCGACCGAGCTCGACCTGACCAACTACGGCGACGGCTGGTTCGCGCTGCTGCACCCGTTCCACCACTACCTGCTGAACTCGGCGATCGTGGTGCTCGGGTCGGTGGTCGGGAACCTCATCTCCTGCTCGATGGCGGCCTACGCCTTCGCGCGGCTGAAGTTCCGCGGCCGGCCGATCTGGTTCGCCATCATGCTGATGTCGATCATGCTGCCGATCCACGTCGTCATCGTGCCGCAGTACATCCTGTTCTCCGAGCTGGAGTGGATCAACACGTTCCTCCCGCTCGTCGTGCCGAAGCTGCTGGCCACGGACGCGTTCTTCATCTTCCTCATGGTGCAGTTCTTCCGCGGGCTGCCGAAGGACCTCGACGAGGCGGCACGTCTGGACGGCTGCGGGCACGGCCGGATCTTCCTGCAGATCATGCTGCCGCTGTCGCTCCCGGCCCTGGCGACGACGGCGATCTTCACGTTCATCTGGACGTGGAACGACTTCTTCAGCCAGCTCATTTTCCTCACCGACCCCGAGATGTACACCGTCCCGATCGCGTTGCGGACGTTCATCGACGCCACGAGCGCCAGCTCGTGGGGCCCGTTGTTCGCGATGTCGATCGTCTCCCTCGTCCCGATCTTCTTCATCTTCCTCTTCGGCCAGAAGTACCTGGTCAAGGGGATCGCCACGACCGGCATCAAGTAG	MTDTPVRPDAHAATTDDRSPVRPRRPLAEVAAEIPDSPRKRSWQPRARRLLKHALLIGFGLVMLYPLLWMLSSSFKPNDIIFRDTGLIPTELDLTNYGDGWFALLHPFHHYLLNSAIVVLGSVVGNLISCSMAAYAFARLKFRGRPIWFAIMLMSIMLPIHVVIVPQYILFSELEWINTFLPLVVPKLLATDAFFIFLMVQFFRGLPKDLDEAARLDGCGHGRIFLQIMLPLSLPALATTAIFTFIWTWNDFFSQLIFLTDPEMYTVPIALRTFIDATSASSWGPLFAMSIVSLVPIFFIFLFGQKYLVKGIATTGIK	PGPT0016540_692	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_01787	924	lacF_4		Lactose transport system permease protein LacF	ATGTCCGTGATCCAGGAGGTTGCCAAGACCCGCGGCGCCCCCCGTGAGACGCGGAAGGGTGACGGCAAGGCCGCAGCGATCTTCCTCGCGCCCTGGTTCCTGGGCCTGGGGCTGATCACCGCCTTCCCCCTGCTCGCCTCGCTGTACCTGTCGTTCACCGACTACAGCCTGCTGGAGGCACCGAGCTGGATCGGCGTCCAGAACTACGTCGACATGGTCTCGGACCCCCGATGGCTGAAGTCGCTGGGCGTGACGTTCCGCTACGTCTTCATCTCGGTGCCGCTCCAGCTCGCTGCCGCGCTCGCGCTGGCGATGGTGCTCGACCGCGGGCTGCGGGGGCTGGCGATCTACCGCTCGGCGTTCTACCTGCCGTCCCTGCTGGGGAGCTCGGTGGCGATCGCCCTGCTGTGGCGCCAGATCTTCGGCGCCGACGGCCTGGTCAACCAGGTGCTCGCGTACTTCGGCATCCAGGGCGTCGGCTGGGTCTCCCACCCGGACTACGCCCTGGGAACCCTGATGATCCTCAACGTGTGGACCTTCGGTGCACCGATGATCATCTTCCTCGCCGGCCTGCGCCAGATCCCCACGATGTACTACGAGGCCGCCTCCATCGACGGGGCGAGCAAGTTCCGGCAGTTCTTCAGCATCACGATCCCGCTGCTGAGCCCGATCATCTTCTTCAACCTCGTGCTCCAGCTCATCAACGCCTTCCAGACCTTCACCCAGGCGTTCGTGATCTCCAACGGCACGGGTGGCCCGATCGACGAGACCTTGTTCTACACGCTGTACCTCTACAACCAGGGGTTCGGCTCGTACAACATGGGCTACGCCTCGGCGATGGCCTGGGTGCTGCTGCTCATCGTCGCCGGGCTGACGGCCGTCAACTTCCTCGCCTCCAAGTACTGGGTCTTCTACGATGACTGA	MSVIQEVAKTRGAPRETRKGDGKAAAIFLAPWFLGLGLITAFPLLASLYLSFTDYSLLEAPSWIGVQNYVDMVSDPRWLKSLGVTFRYVFISVPLQLAAALALAMVLDRGLRGLAIYRSAFYLPSLLGSSVAIALLWRQIFGADGLVNQVLAYFGIQGVGWVSHPDYALGTLMILNVWTFGAPMIIFLAGLRQIPTMYYEAASIDGASKFRQFFSITIPLLSPIIFFNLVLQLINAFQTFTQAFVISNGTGGPIDETLFYTLYLYNQGFGSYNMGYASAMAWVLLLIVAGLTAVNFLASKYWVFYDD	PGPT0016535_4879	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_01788	1968	purR_2		HTH-type transcriptional repressor PurR	ATGCCTGGTGCGACCACGCGCCGACCCGCGGTGACGATCGCCGACGTCGCACGAGCGGCCGGGGTCTCCCGCGCGACGGTCTCCCGGGTGATGAACGGCCGCAGCACCGTGGACCCCGCGATCTCCGCCCGCGTGCAGGAGGCGGCGATCGAGCTGAACTACCGCCCCAGCAACGTGGCGCGCAGCCTCTCGCTGGGCCGGACCACCACCGTGGCCCTCGTCGTCCCGGACCTCGCCAACCCCGTCTTCCAGGAGATCCTGCGCGGCGTCACCTCCGCCGCCGGCGAGGACGGCTACCGCGTGCTGGTGGCGGACTCGGCCGAGGACCCCGGCGCCGAGGCGTCGATCGCCCGGGAGGCGCGCGCACGCTGCGACGCACTCATCCTGGTCTCGCCACGCATGCCCGACGGCGCGCTCGACGCCCTGCTGCCGGAGGTCTCCCCCGCCGTGGTGGTCAACCGGGACGTCCCGCGCGGCGCCCCGAGCCTGGTGGTGGACTACGCCGACGCGATGGTGCAGGTCGTCGAGCACCTCGTCGAGCTCGGGCACCGGCGCATCGCCTACGTCGCCGGTCCCCGCGCCTCGGTCTCCGACATCGCGCGACGCCGCGGCCTCACCGCGAGCTGCGAGCGCCACCCGGACCTCGAGGTCGTCGACCTCCCCGCGGGCTCCGACATCACGGCCGGGCACGCCGCGGCACCGGACGTCCTGGCCAGCCGCGTGACGGCCGCCGTGGCGTTCAACGACCTGGTGGCCTTCGGGCTGCTCGCCGCCCTGAACGAGGTCGGCGTGGCGGTCCCGGCGGACCTGTCGGTGTGCGGCGTCGACGACATCGAGCTGGCGCGCTACGCCACCCCGGCGCTGACCACCGTCGCCGTGCCGCAGCAGGACCTGGGACGGCACGCCTGGCGCGAGCTGCACGCCGTGGTCGACGACGCCGGTCACGCGGCCGAGACGACGCGCTTCGGGGTGCAGCTCCAGGTCCGCGCGAGCACCGGACCGGTGCCCCGTTCGGCCGTGCGCGCCACGGCCCTGCCCGAGGACCCGGTGGCCGCCGCCACGGCCGTCCCGGAGGTCACCCAGACCGAGCAGGACCCCGCCTGGAGCCTCGAGCAGGGGGTGCCCGCGCTCTACCGCAGCGTCGACCGCGCGCCGCTGGCCCGCTACGACTCCGGCCAGGGCCTGCCGACCATCCACTCGCCGCGACCGTTCCTGCACCCGGTGAGCTCGCTGGCCGGGATCCCGCTGACGGAGTCGGGCCCGGTCGACCACCGCCACCACTACGGGGTCAGCCTCGCCGTGCCCGACGTCAACGGCACCAGCTACTGGGGCGGGCGCACGTTCGTCGCCGACGTCGGCCCGACGCTGCTGCCCAACCACGGCCGCCAGACGTCGGTCGAGACCACGATCGACCCGCTGTCCCCGAACGTCCTGCTGGACACGGTCGCCTGGACCGACGAGCACGGCCGCCCGGTGCTCGACGAGCGACGTCGCGTCGGGGCACGCCTGCTGGACGACGGGTGGGTGCTGGAGTGGCGCTCCACGCTGCACGCCGCGCACGGCCCGCTGCAGATCAGCTCCCCCGCGACGAACGGCCGGCCCGGCGCCGGCTACGGTGGACTGTTCTGGCGGCTCCCGTTGGCGCACCGGACGCGCGTGCTGTCCGCCGAGGGCGAGGGCGAGGACCTCGCGCACGGCTCGACCTCGCCGTGGGTGGCGTTCGTGCAGCGGCACCGCGACGCGCGGGGCGAGGAGCACAGCACGACCACGCTCCTGACCCAGACCTCTCCCGCACGGCACTGGTTCCTGCGCGCCGCCGAGTACCCCGGCGCCTGCCCCGCCCTGGCCTGGGACACCCCCCTGCGGGTCCCCGCCGGCGGGACCGTCGAGACCGGCGTCGTGGCGGCCCTGCTGGACCGGGAGCTCGACATCGACGCCGCCGCCGCGCTGGCCACCGGCCTGCGCTGA	MPGATTRRPAVTIADVARAAGVSRATVSRVMNGRSTVDPAISARVQEAAIELNYRPSNVARSLSLGRTTTVALVVPDLANPVFQEILRGVTSAAGEDGYRVLVADSAEDPGAEASIAREARARCDALILVSPRMPDGALDALLPEVSPAVVVNRDVPRGAPSLVVDYADAMVQVVEHLVELGHRRIAYVAGPRASVSDIARRRGLTASCERHPDLEVVDLPAGSDITAGHAAAPDVLASRVTAAVAFNDLVAFGLLAALNEVGVAVPADLSVCGVDDIELARYATPALTTVAVPQQDLGRHAWRELHAVVDDAGHAAETTRFGVQLQVRASTGPVPRSAVRATALPEDPVAAATAVPEVTQTEQDPAWSLEQGVPALYRSVDRAPLARYDSGQGLPTIHSPRPFLHPVSSLAGIPLTESGPVDHRHHYGVSLAVPDVNGTSYWGGRTFVADVGPTLLPNHGRQTSVETTIDPLSPNVLLDTVAWTDEHGRPVLDERRRVGARLLDDGWVLEWRSTLHAAHGPLQISSPATNGRPGAGYGGLFWRLPLAHRTRVLSAEGEGEDLAHGSTSPWVAFVQRHRDARGEEHSTTTLLTQTSPARHWFLRAAEYPGACPALAWDTPLRVPAGGTVETGVVAALLDRELDIDAAAALATGLR	PGPT0014791_3	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_01789	1146	iolG_2		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGAGCAGCCCCCGCCTCGCCGTGGTCGGCATCCACGGCCACGGGACCAACCACGTCCGCACCGCGCTCGAGCTGACCCGTGCAGGTCGCGCGGAGCTGTGCGCGGTCGTGGACCCGCGCGAGCCGGACCCCGACCACCCTGCCCACGGCGCCGGGACTCCCTGGTACCCCACGCTCGGCGACCTGCTGTCGGCCGACGACGCCGTCCGCCCCGACGTCGTCGTGCTCTGCACGCCCATCCCCACCCACCTGCCGCTCGCCCGGGCGGCCATGGAGGCGGGCATGGACGTGCTGCTGGAGAAGCCGACGACGGCGTCGCTGGCCGAGCTCACCGAGCTCGTCGCCGTGACCGAGCGCACGGGCCGGTACTGCCAGGTGGGCTTCCAGACCTTCGGGTCGCACGCCCTGCCCGCGGTGTCCGAGCTCGTCGCCCGCGGGGAGATCGGCGACGTCGTCGGGTTCGGCGCCGTCGGCACCTGGGTGCGCGACGCCGCCTACTGGGCCCGGGCGCCGTGGGCGGGCCGGCGACTGCTGGACGGTCGCGACGTCGTCGACGGCGTCGTGACGAACCCGCTCGCGCACGCGGTGGCCACGGCGCTGCGGATCGGCGGCGTGACCCGTGCCGAGGACGTCGCCTGGGTGGACACGGATCTCTACCGTGCCAATCCGATCGAGGCCGACGACACGTCCTCGGTCCGCGTCACCGCGGCGGACGGCACCCGCTACGGCTTCGGCCTGACCCTGTGCGCGGCCGAGCGGACCCGGGCCCGGGTGCTCGTGCTCGGCACCGCGGGCGAGATCGAGCTGTTCTACGAGTCCGACCGGCTCGTGCTGCGCAGCGATCGCCTCACCCTGGACAAGACCTACGGCCGCACCTCGCTGCTGGAGGACCTGCTCGAGGTGCGTGCCGACGACGACCCGCAGCGCCGCCTGCTGTGCGACGTGCGGGACACCGGCGCGTTCATGCGCGTGCTGGAGGCCGTCCGCACCGGCCCGGACCCGCGCCCGATGCCGGACGAGCTCGTCACGTGGGTCGGCGAGGGCGACGCCCGGCACCCGGTCGTCAGCGACGTCGCCGACTGGTGCGAGCAGGTCGCGCGCCGCCAGCAGACGTTCAGCGAGCTCGGGGCGCCCTGGACCCGCTGA	MSSPRLAVVGIHGHGTNHVRTALELTRAGRAELCAVVDPREPDPDHPAHGAGTPWYPTLGDLLSADDAVRPDVVVLCTPIPTHLPLARAAMEAGMDVLLEKPTTASLAELTELVAVTERTGRYCQVGFQTFGSHALPAVSELVARGEIGDVVGFGAVGTWVRDAAYWARAPWAGRRLLDGRDVVDGVVTNPLAHAVATALRIGGVTRAEDVAWVDTDLYRANPIEADDTSSVRVTAADGTRYGFGLTLCAAERTRARVLVLGTAGEIELFYESDRLVLRSDRLTLDKTYGRTSLLEDLLEVRADDDPQRRLLCDVRDTGAFMRVLEAVRTGPDPRPMPDELVTWVGEGDARHPVVSDVADWCEQVARRQQTFSELGAPWTR				NA	NA	NA	NA	NA
AK001_01790	918			hypothetical protein	GTGGGCGACGGTGCGACGGCCGACGCCGTCCGTGACGCGCTGGCCGGGCCGCACGCCGACTTCGCCGACCTGGTCGGCGGGTCGGCGTCGAGCGAGGCCGCCGACGTCGACCGGCTGGTGCGCGAGGTGGCGCCGGACGTCGTCGTGGTCGCGTCCTCCCGCCCGACGGCCGCCGTCGTCGCCGCCCTGGACGCCGGCGCGGACGTCGTGCTGGACGGCGCACCGGCCGGTGCCGGCGAGATCTACACGCTGGCCGAGGCCGTGCGGCGCGCCGAGGGCCGGCTCTCCGCCGCCTTCGACGACCGGTACGCCGCGGCCCCCGCGGAGCTGCGCCGGGTCGTGGCCGGCGGACGTCTCGGCACGGTGGTCTCGGCCCACGCCGAGTGGCTCCACGCGGACCGCGACGACCGGACCCCGGCCGCGCGCACCAGCCGCCGGGCCGACCTGCTCGGCTGGTGGATCGACGACGTGCCGGTGTCCGTGTTCGCCCAGGGCCCGGGGTCCACGGGCCGCGCACCCGTCGCCGCGTCCGGCCACGGCATGGTGCTCGGCTACCAGGACGGGGCGACGGTCACCTGCAGCGAGACGGCGGGCGGTCCGCGCACCGGCTGCCGGGTCGCGGTGAACGGGACGCTGGGCCGGGCGGACCTCGAGGTCGTCCACGGGCAGGGGGCCCGGCTCGTGGTGCACCCGCACGGCGGGGGCGCGGACGTCGTCCTGGACGCCGACGCCGCCGCGACCGACGGGCGGTCGGCGATGCTGCGCGCCCTGCTGGCGGGGGCCGACGACGCCGGACCGCTGCGCCGTCGCGCCGACGGGTCCGACCTGCTGCGTGCGGCCGGGGTCGCGGCCGCGGCCGCCCGCTCGGCGGCCTCGGGCCACGCGGTCCCGCTGAGCGCGCTCGGCCTGGCGCTCTGA	MGDGATADAVRDALAGPHADFADLVGGSASSEAADVDRLVREVAPDVVVVASSRPTAAVVAALDAGADVVLDGAPAGAGEIYTLAEAVRRAEGRLSAAFDDRYAAAPAELRRVVAGGRLGTVVSAHAEWLHADRDDRTPAARTSRRADLLGWWIDDVPVSVFAQGPGSTGRAPVAASGHGMVLGYQDGATVTCSETAGGPRTGCRVAVNGTLGRADLEVVHGQGARLVVHPHGGGADVVLDADAAATDGRSAMLRALLAGADDAGPLRRRADGSDLLRAAGVAAAAARSAASGHAVPLSALGLAL				NA	NA	NA	NA	NA
AK001_01791	1353	yteT	COG0673	Putative oxidoreductase YteT	TTGTCCTCCACCACCAGCCGCCTCCGCTACGCCGTCGTCGGCACCGGCCACCGTGCCGGCATGTTCGTCGGCGGGCTGCTCGAGAACCACGCCGACGAGGGCGAGATCGTCGCCTGGGTCGAGCCCAACCCGGTGCGTGCCGCCGTCCACGAGGCGCGCGTCGCCGCCAAGGTCGGCGGCACCCGCCCGGTCTACGCCCCGGCCGACCTGGAGAGGGCGATCGCCGAGCAGCAGGTCGACCGCGTCGTGGTCACCAGCGTCGACAACACCCACGCCGAGATGGTCTCCCGGGCCCTGCGCGCCGGCGTCGACGTCGTGGTGGAGAAGCCCATCGCCGCCTCGGCCGACGAGGCGCGGCAGATCGCCGACGCCGTGGCCGAGACCGGCCGCGACGTCACGATGACCTTCAACTACCGCTACTCGCCGCGGAACTCGGCGCTGCGCGAGGTCGTCGCCTCCGGCGAGATCGGGCAGGTGCTGTCCGTGCACTTCGACTGGGCGCTGGACACCGTCCACGGGGCCGACTACTTCCGGCGCTGGCACCGCGAGAAGGTCAACAACGGCGGGCTGCTGGTGCACAAGTCGAGCCACCACTTCGACCTCGTCAACTGGTGGATCGACGACGTGCCGACCCGGGTCTTCGCCAGCGGCGGCCGCCGGTTCTACGGCGACGACGGCGCGCACGAGACGGACTACGAGCCCACCGCGGGCGAGCAGGACCTGCGGGCCCGGGGCGTGGACCCGTGGGCGATGGACCTCGACAAGGACCCGTACCTGCTGGAGCTCTACGGACCCGAGGCCCAGGCGCACGACGGCTACGTGCGCAACAAGTCGGTGTTCGACGCCGGCATCACCACCGAGGACACGCTCGGCCTGGTCGTCGAGTACGCCGGCGGGGCGATGCTGACCTACTCCCTGACGGCGCACAGCCCCTGGGAGGGGTACCGCGTCGTGGTCAACGGCACGCGGGGCCGCGCCGAGCTGGAGGTCGTCGAGCGTGGGTCCGTGCTCTTCGGCGACGACGGGCGCGCCGTGCTGGACCCGAGCTTCAGCGACGCCTACGCCGAGGACGCCGTGCGCCCCGTGGGCGAGCGCCTCGTCGTGCAGCGGCACTGGGAGCAGGCCGAGGAGCGCCCGATCGTCGCGGTCGCCGCCGGCGGGCACGGCGGTGGCGACACGCTGCTGCTCTCGGACGTGTTCCACGGCCGCGACGAGGTCGACCCGCTGGGGCGTGCCGCGGGGTTCCTCGACGGCCTGCGCGCCTCGGGCGTGGGCTACGCGGGCAACCGCTCGCTGGAGACGGGGGAGCCGGTGCGGCTCGCCGACCTCGGCCTCGGCGTCGTCCTGCGCTGA	MSSTTSRLRYAVVGTGHRAGMFVGGLLENHADEGEIVAWVEPNPVRAAVHEARVAAKVGGTRPVYAPADLERAIAEQQVDRVVVTSVDNTHAEMVSRALRAGVDVVVEKPIAASADEARQIADAVAETGRDVTMTFNYRYSPRNSALREVVASGEIGQVLSVHFDWALDTVHGADYFRRWHREKVNNGGLLVHKSSHHFDLVNWWIDDVPTRVFASGGRRFYGDDGAHETDYEPTAGEQDLRARGVDPWAMDLDKDPYLLELYGPEAQAHDGYVRNKSVFDAGITTEDTLGLVVEYAGGAMLTYSLTAHSPWEGYRVVVNGTRGRAELEVVERGSVLFGDDGRAVLDPSFSDAYAEDAVRPVGERLVVQRHWEQAEERPIVAVAAGGHGGGDTLLLSDVFHGRDEVDPLGRAAGFLDGLRASGVGYAGNRSLETGEPVRLADLGLGVVLR				NA	NA	NA	NA	NA
AK001_01792	1038	fabH_2	COG0332	3-oxoacyl-[acyl-carrier-protein] synthase 3	ATGATCGGAGTCATGCTCTCGCTCCCCGCCGGTGCGGCCGGCTCCCGGATCGTCGGCCTCGGTCACCACCAGCCCGCCAAGGCCCTGACCAACGACGACATCGCACAGTTCGTCGAGACGAACGACGAGTGGATCCGGTCGCGCACCGGCATCGTCACCCGGCACGTCGCCGCCGACGACGTCACGGTGGCGGACATGGCCACCGCGGCGGCGGAGCACGCGCTGGCCGACGCCGGGGTGGCGAGCGACGACGTCGACCTGGTGATCGTGGCCACGACCACCGCGGCCGACCGTTCGCCGAACACCGCGGGCCGGGTGGCCTACGCGCTGCGTACCGGGGTCCAGCCGGGGGCGAGCACGCCGGAGGGCGAGGACGAGCCGGACCTGCGCGGGGTCGTCGGACCCGGCGTCATCGACGTCAACACCGCCTGCTCCGGGTTCGCCTACGCCGTGGGCCTCGCCGACCAGGCCATCCGCGCCGGCAGCGCCCGGACCGCCGTCGTCGTCGGCTCGGAGAAGCTGACGGCGGTGACGGACTGGTCCGACCGGTCCACCTGCATCCTCACGGCCGACGGGGCCGGTGCCGCGGTGCTCCAGGCCGCCGAGGAGCCCGGCGTCGGGCAGGTCGTGTGGGGCTCCGAGCCGGAGATCACCCCGGCGGTGCGGATCGAGGCCCCGGCCGAGCGCTTCGCGCAGGACGGCCGTGCGGTGTTCAAGTGGGCGATCACCCGGGCCGCCGAGCGGGCCCGCCGTGTGGTCGAGGCCTCCGGGCTCACGCTGGACGACGTCCAGGTGCTGGTGGCCCACCAGGCGAACCTGCGGATCATCGAGCCGCTGGCGAAGTCGCTCGGGCTCGAGGACCGCATCGTGGTCAGCGACATCACGGAGTCGGGCAACACCTCCGCGGCCTCGATCCCGCTGGGCCTGTCCAAGTGGTGGCATGACGGGCGGATCCCCGCGGGGGTGCCGGCGCTGCTGTTCGGCTTCGGCGGCGGGTTCACCTGGGCCGGCCAGGTGGTCATGACGCCGCAGCGCTGA	MIGVMLSLPAGAAGSRIVGLGHHQPAKALTNDDIAQFVETNDEWIRSRTGIVTRHVAADDVTVADMATAAAEHALADAGVASDDVDLVIVATTTAADRSPNTAGRVAYALRTGVQPGASTPEGEDEPDLRGVVGPGVIDVNTACSGFAYAVGLADQAIRAGSARTAVVVGSEKLTAVTDWSDRSTCILTADGAGAAVLQAAEEPGVGQVVWGSEPEITPAVRIEAPAERFAQDGRAVFKWAITRAAERARRVVEASGLTLDDVQVLVAHQANLRIIEPLAKSLGLEDRIVVSDITESGNTSAASIPLGLSKWWHDGRIPAGVPALLFGFGGGFTWAGQVVMTPQR	PGPT0008355_1826	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648	NA	NA
AK001_01793	5373			hypothetical protein	GTGGCCGGTGCCGCCGCCGCAGCCCTCGTGCTGCCGCTCCTGCCGGCCGCCGCGACCGCGGCCGAGGAGGAGCCCGCCCAGTGGTCCTTCGACTTCGGCACCGCCGACAGCCCCGTCGCGGAGGGCTTCACGCAGGTCCACGGCGGCACCGCCTACAGCGCGGAGGCCGGCTTCGGCATCACCACGGGTGAGCAGGCCTCCCGCGACCGCTCCACCGACGTCGACCCCCTCACCGGAGACTTCGTGCTCGGGTCCGACTGGGAGTTCGCGGTGGACGTGCCGAACGGCACCTACGACATCGAGGTCTGGACCGGGGACACCCTCGCGGGGACCTCGAGCGTGCGCACCTCCGTGTCTCCCGAGGGCGGCGAGGCCACCAACATCTACGCCGACGCCGAGCAGACCGCCAGCGGCACGCTGTCCGCCGAGGTCTCCGACGGCCAGCTCAACCTCGGCATCACCGGCAAGGGCTACGGCTACGTCAACGGCATCCAGATCACGGAGTCGACCGGTGACGGCGGGGACGACGGGTCCGGCGACGGCGGCACCACCGGCGCCGCCGGTCCCGAGAACGTCCGCATCGCCCACGCGAGCGCCGACCAGGTCGTCGTGCGCTGGAACGAGGTCGCCGGTGCCAGCGAGTACGTGCTGACCCGCAGCGACGCCGTGGACGGCGAGTACACCGAGATCGCCCGGACCGGGTCGCGCGAGGTGTTCCACGCCGACACCGACGTCGACACCTCCGCCGTGCACTACTACCGCGCGCACGCCGTGACCGCGGACGGCCTCACCGAGGCGTCCGCGCCGGTGGTCAGCACGCTGGCGAGCGAGCCGAGCTTCCCCGAGTCCGGCACCCTGCAGATCGACCTCGGCTCCGGGGCCGTGGCCGACGGTGCGGTCGGGGTCGACGCCGACACCGCCTACACCGCCGAGAACCGCCTCGGGTTCGTCGACACCTCCGTGGTGACGGCGACGGACGACGGCGGCGACAACGCCCTGCGCGGCGACTTCGTCACGACCGACGGCGGACAGCTCGTCGTCGACCTGCCGAACGGCGACTACACGGTCGACCTGATCGCCGGCGCGGCCGACGCCGCCACGGACGTCGCGATCACCGCCGAGCAGATGGCCAAGGTCCAGCAGACCGAGCGGGCTGCCGGCGAGTACCTCGAGATGTCGTTCGACATCGCCCTCGTGGACTCCCAGCTCAACCTGCAGATCGCCGGCGGCGCCGCGAACCTCAACGCGCTGACGATCACGCGTCTGGGCGACCGCGACGCGGCCGACCGTCCGACCGCGTTCGTCACCGGCGACTCGACCGTCCAGACGTACGACGAGTACTGGGCGCCGCAGGCCGGCTGGGGTCAGATGATCGAACGGTTCCTGTCCGACGACGTCGCGGTGGACAACCACGCCATCGGCGGCCGGTCCTCGAAGAACTTCATCAGCCAGGGCCGCCTCGACACCGTGCTGAAGCAGATCCGGCCGGGCGACTACCTGTACGTCCAGTTCGGCCACAACGACAACAGCTACGGGGTCGACGACCGCTGGGCCGCCCCGGGCGACTACGCCTGGTACCTGCGCACCTTCGTCGAGGGCGCCGTCCAGCGCGGTGCGCAGCCGATCCTGGTCACGCCGGTCTCGCGCCGGTCGTTCGACCCGGAGACCGGCGTGTTCAACGTGTCCTTCCCGGACTACGTGCAGGCCGCCACGGACGTCGCCGCCGCCACGGGCACCCCGCTCGTGGACCTGTCGGCCTCCTCGCGGGCCTACCTGAACGAGATCGGGCCGGAGGCCGCCAAGAGCGTGTTCCTGCACGTCCCGGCCGGGGTGTACCCGAACCGACCCAACGGCACGACGGACGACACCCACTTCCAGGAGTACGGCGCCATCCAGATGGCCCGCCTGGTCGCGCTGGACACCGCCGAGCTGGACATCCCGCTCGCGGACGAGGTCGTGGACGCCGAGCCGCCGGCCGACGTCCCCGAGGCGCCGGCCGGCGTCGTCGCGGGCAACATCTCCGCCTCGAGCGCCACCCTGACGTGGACCGAGGTGGAGGGCGCCGACATCTACAAGGTGTTCGCCAAGGCGTCCGACGCCGGGGACGACGCCTGGGACCTCGTCACCACCTCGACCATCGGCGTGGCGAACGTCGGCGGGCTCACCGAGGGCACCTCGTACGACCTGCGCGTCGTCGCGGTCAACGGGGCGGGCGACTCGGAGCCGTCGGCCACGGTCACGATCGAGACCAAGGCGCCGATCTACAAGTTCGACCTGCAGCTCGCCTCCAACGGCGTCACCGAGGACGGGTACACCGCCTTCGACGACACCACGCTGTACACCGCCGAGCTCGGCTACGGCTTCACCTCGGACTCCGGTCCCGGTGGCCGCGACCGCGGCACCGGCGACGGCCAGCTCGACGACCTGCAGCGCGACTTCCTGCTGCCGAGCGCCGGCACCCCGATGCGGTTCGACGTGCCGAACGGCACCTACGCCGTCGAGGTGATCTGGGGTGACCTCATCGGGACCGCCCGTCTGGGCGTGACCATCGAGGGCACCGACTACGGCTCGTCGAACGCCGGCCGTGGCGGCACCTCCAGCAAGATCGTCCAGCCGGTGGTCGTCACCGACGGGACGATCGACATCGTCGCCGAGGGCTGGTTCAACGGCCTGACGATCACGCCGCTGCTGTACGCGCCGACCGAGCTCACCGCCGGCGACGTGTCCATCGACGGGTCCGCCGTCGAGGTCCCGCTGAGCTGGCAGCCGGCCGAGGACGTGGCCGGCTACCGCGTCTACCGTCTCGCCGAGGGTGCGGCGGAGCCGACGGCGCTCGGCGACGTCGAGTCGGGCGTGACCGAGTTCGTGGACACCACGGCGGACGTCGGCCTGCAGTACACCTACACCGTCGTGGCGACGGACGACGCCGGCAACGAGTCGGTGCCGTCGAACGAGCTCGAGCTGACGACGGTGGACCCGGACGTCCCGACCGCCCCGACGCCGTCGGGCCTGGCCGTGGGCGACATCGAGAAGAACGCGGTCTCGCTGGGCTGGGAGCCCGTCGAGGACGCGCTGTTCTACCACGTGTACCGCGAGGACAAGGGCGGCGAGCTGGTCCTGATCGACCGGGCCGCGGACGCGCAGTACACCGACACCGACGTGCTCACCACCGTCGAGTACACCTACGCGGTGGCCTCGGTGAACGCCGGTGGTGTCTCCGAGCTGTCGGAGACGGTCACCTCGGAGGCCGTGACGAACCTGTCGCGGCAGGCCGAGCGCATCGGCCGCCAGCCCGTCGCGGCGCAGTCCGAGGACGGCGTCTACGTCGGCTGGCGGATGCTGGGCGAGGACCCGGCGTCGATCGCGTTCCACGTCTACCGCGACGGCGAGCTGCTGACGGACGAGCCGATCAGCGGGTCGACGAACTACGTGGACACGGACGGCCAGGCCGGCTCCTCCTACCGGATCTCCTCCGTCGTGGACGGTACGGAGCGGTGGGCCACGCAGGAGTTCTCCGTCTGGGACGGCCAGACGCTGGACATCCCGCTGAACAAGCCGGCCGACGCCTACACGAAGGACGGCCAGCCGTACTCCTACACCGCGAACGACGCCTCCGTGGCGGACCTCGACGGTGACGGCGAGTACGAGTACGTCGTCAAGTGGTACCCGACCAACGCCCAGGACAACTCCCGTCCCGGGTACACGGGGAACACCTACCTGGACGCCTACGAGCTCGACGGCACCCAGCTGTGGCGCATCGACCTCGGGATCAACATCCGCTCCGGTGCCCACTACACCCAGTTCCAGGTGTTCGACTACGACGGCGACGGGAAGGCCGAGGTGGCGATGAAGACCGCCGACGGCACCACCGACGGCGTCGGCACGGTCGTCGGGGACGCCCGGGCGGACTTCCGCCAGTCCAACGGGTACGTGCTGTCCGGTCCGGAGTACCTGTCGATCTTCGACGGCGCCTCCGGCGAGGTGCTCGACACGATCGACTACGTGCCGCCGCGCGGCGACGTCGGCTCGTGGGGCGACGGCTACGGCAACCGGGTCGACCGGTTCCTGGCGACGACGGCCTACCTCGACGGCGAGACCCCGTCGATGGTGTTCAGCCGTGGCTACTACACCCGGACGGTCATCGCCGCGTTCGACTTCGACGGTGAGGAGCTCAGCGAGCGCTGGGTCTTCGACTCCGACGAGGCGGGCGACCAGTACCGCGGTCAGGGCAACCACGACATGCAGACCGCGGACGTGGACGGCGACCAGAAGGACGAGCTCGTCTTCGGGTCGATGACCGTCGACGACGACGGCTCGGTCCTGGTCAACACCGGGCTCGGGCACGGCGACGCCATGCACGTGTCGGACTTCGACCCGTCGCGTCCGGGCCTGGAGCAGTTCGCGGCCCACGAGAACATCCCCGCCTCGGGCAACCGGGGGGCGACGTTCCGCGACGCCGAGACCGGCGAGATCCTCTGGTCGATCCCGGCCGAGGTCGACACCGGTCGTGCCGCCATGGCCGACATCGACCCGCGGTACGACGGCGCCGAGGGCTGGGCCGTGGGCGGCGACGCCGCCTGGGACTCGCCCGTCGGCCAGCTCGTGTCCTCGTCCGGCGAGGTGATCGCCGAGTCCATCCCGGCGGCGAACTTCACCACCTTCTGGGACGGCGACCTGCTGTCCGAGATCGGGGACCACGACTGGGACGGTGACGCCGGCGTCGGCGTGCCGACCATCGCCAAGTGGGACTACGAGAACGCCGAGGAGGTGGAGATCTACCGGGCCGAGGGGACCTTCTCGAACAACTACACCAAGGGCACGCCCGCACTGCAGGCGGACCTGTTCGGTGACTGGCGCGAGGAGATCGTCAGCCGCACGGAGGACTCCACCGCCCTGCGGATCTCGACCACGGTGATCCCGACCGAGCACCGGCTTCGGACGCTCATGTCGGACTCCCAGTACCGCCTGGCCGTGGCCTGGCAGAACACCGGCTACAACCAGCCGCCGCACACCTCGTACTTCATCGGCGAGGGCATGGAGACGCCCGACGCACCGCGTCTGGCGTACACCACCGAGGCGGAGACGATGCCGATCGTCGTCGACGAGGCGCCGAAGAAGGTCGTCGTCACCGCCGAGAAGCTGGACGACGGCACGGTCACGGCGACCGTGCGCAGCGTCCGGGGCGGCGCCGTGACGTCGGTAGTGCTCCGCGTCGACGGGCAGACGGTCGCCACGGCCAGCCTGCCCGACGGGGCCTCGACGGTCGACTTCGACCTCGGGGCGCTGGAGCCCGGCAAGTACGAGCTCACCGCCACCGTGGCCAACGAGCTGGGCTCCGTCGAGAGCAGGGGGCGTCAGCTCACGATCTCGTGA	MAGAAAAALVLPLLPAAATAAEEEPAQWSFDFGTADSPVAEGFTQVHGGTAYSAEAGFGITTGEQASRDRSTDVDPLTGDFVLGSDWEFAVDVPNGTYDIEVWTGDTLAGTSSVRTSVSPEGGEATNIYADAEQTASGTLSAEVSDGQLNLGITGKGYGYVNGIQITESTGDGGDDGSGDGGTTGAAGPENVRIAHASADQVVVRWNEVAGASEYVLTRSDAVDGEYTEIARTGSREVFHADTDVDTSAVHYYRAHAVTADGLTEASAPVVSTLASEPSFPESGTLQIDLGSGAVADGAVGVDADTAYTAENRLGFVDTSVVTATDDGGDNALRGDFVTTDGGQLVVDLPNGDYTVDLIAGAADAATDVAITAEQMAKVQQTERAAGEYLEMSFDIALVDSQLNLQIAGGAANLNALTITRLGDRDAADRPTAFVTGDSTVQTYDEYWAPQAGWGQMIERFLSDDVAVDNHAIGGRSSKNFISQGRLDTVLKQIRPGDYLYVQFGHNDNSYGVDDRWAAPGDYAWYLRTFVEGAVQRGAQPILVTPVSRRSFDPETGVFNVSFPDYVQAATDVAAATGTPLVDLSASSRAYLNEIGPEAAKSVFLHVPAGVYPNRPNGTTDDTHFQEYGAIQMARLVALDTAELDIPLADEVVDAEPPADVPEAPAGVVAGNISASSATLTWTEVEGADIYKVFAKASDAGDDAWDLVTTSTIGVANVGGLTEGTSYDLRVVAVNGAGDSEPSATVTIETKAPIYKFDLQLASNGVTEDGYTAFDDTTLYTAELGYGFTSDSGPGGRDRGTGDGQLDDLQRDFLLPSAGTPMRFDVPNGTYAVEVIWGDLIGTARLGVTIEGTDYGSSNAGRGGTSSKIVQPVVVTDGTIDIVAEGWFNGLTITPLLYAPTELTAGDVSIDGSAVEVPLSWQPAEDVAGYRVYRLAEGAAEPTALGDVESGVTEFVDTTADVGLQYTYTVVATDDAGNESVPSNELELTTVDPDVPTAPTPSGLAVGDIEKNAVSLGWEPVEDALFYHVYREDKGGELVLIDRAADAQYTDTDVLTTVEYTYAVASVNAGGVSELSETVTSEAVTNLSRQAERIGRQPVAAQSEDGVYVGWRMLGEDPASIAFHVYRDGELLTDEPISGSTNYVDTDGQAGSSYRISSVVDGTERWATQEFSVWDGQTLDIPLNKPADAYTKDGQPYSYTANDASVADLDGDGEYEYVVKWYPTNAQDNSRPGYTGNTYLDAYELDGTQLWRIDLGINIRSGAHYTQFQVFDYDGDGKAEVAMKTADGTTDGVGTVVGDARADFRQSNGYVLSGPEYLSIFDGASGEVLDTIDYVPPRGDVGSWGDGYGNRVDRFLATTAYLDGETPSMVFSRGYYTRTVIAAFDFDGEELSERWVFDSDEAGDQYRGQGNHDMQTADVDGDQKDELVFGSMTVDDDGSVLVNTGLGHGDAMHVSDFDPSRPGLEQFAAHENIPASGNRGATFRDAETGEILWSIPAEVDTGRAAMADIDPRYDGAEGWAVGGDAAWDSPVGQLVSSSGEVIAESIPAANFTTFWDGDLLSEIGDHDWDGDAGVGVPTIAKWDYENAEEVEIYRAEGTFSNNYTKGTPALQADLFGDWREEIVSRTEDSTALRISTTVIPTEHRLRTLMSDSQYRLAVAWQNTGYNQPPHTSYFIGEGMETPDAPRLAYTTEAETMPIVVDEAPKKVVVTAEKLDDGTVTATVRSVRGGAVTSVVLRVDGQTVATASLPDGASTVDFDLGALEPGKYELTATVANELGSVESRGRQLTIS				NA	NA	NA	NA	NA
AK001_01794	1224	yihS_1	COG2942	Sulfoquinovose isomerase	GTGACCGAGCACGACGCGGCGCCGACGCCGCCGACGACGCCCGCCGACGCCCGTCGGTGGCGCGCCGCCGAGGTCCGCCGCCTGCTCGACTTCGGCGCCGCCGCGCTCAGCGGCCCGGACGGCGCGGCCTGGCTCGACGCCGACGGCGCGGCGGACCGGACCCGGCCGACGCAGACCTGGATCACCGCACGGATGGCCCACTCCTACGCCCTGGGCCAGCTGCTGGGCGTCGCGGGGTGCGACGCCCTCGCCGACCGGGCCCTGGCCGGGCTGACCGGCCCGCTGCACGACGACGAGCACGGCGGGTGGTTCGCTGCCGTCGGGCCGGACGACGCCGTCGACGGCACCAAGGCGGCCTACGCCCACGCGTTCGTGGTGCTCGCCGCCTCCTCCGCGGTCCAGGCCGCACGCCCCGGCGCGGAAGCCCTGCTCGACGAGGCCCTGGACGTCCTCGACCGGCGGTTCTGGGACGACGGGCCGGGGATGCTCGTCGACGAGTGGGACCGCAGCTGGACCGTCCTGTCGACCTACCGCGGCATCAACGCGAACATGCACGGCGTCGAGGCGCTGCTCGCCGCCGCCGACGCGACCGGCGACCCCCGGTGGCACGACCGCGCCGTGCGGATCTGCGACCGGGTGGCGCAGTGGGCCGAGGCGACGCGGTGGCGGGTCCCGGAGCACTTCACGACCGACTGGACCCCCGACCTCGAGCTCAACGCCGACCGCCCCCGCGACCCGTTCAAGCCCTACGGGTCCACCCCGGGGCACGGTTTCGAGTGGGCCCGGCTCCTCCTCCAGGTCGACGTCGCCGGGGGGACCCCGGGCCGGCGCACGGAGACCGCCCGACGCCTCTTCGAGCGGGCCCTGGCCGACGGGTTCGACGGCACCGGGTTCGTCTACACGGTGGACTGGTCCGGCGAGCCCGTCGAGCGGCGCCGGTTCCACTGGGTCGCGGCCGAGGCCGTCGCGGCCGCCGAGGTGCTGGCGGCGGTGACGGGCGAGTCGCGCTATCGCGAGCTCGCGGCGTCCTGGTGGGACCTGCTCCGCGACCGGTTCGTCGACACCGACCGCGGCTCGTGGCACCACGAGCTCGACCCCCACGACCGGCCGGCCGCGGCCGTCTGGGACGGCAAGCCGGACGTCTACCACGCCCTGCAGGCGCTGCTGGTGCCGGACCTGCCGGTGAGCGGGTCGTTCGCGGAGTCCGTGCGCCGCAGCGCCTAG	MTEHDAAPTPPTTPADARRWRAAEVRRLLDFGAAALSGPDGAAWLDADGAADRTRPTQTWITARMAHSYALGQLLGVAGCDALADRALAGLTGPLHDDEHGGWFAAVGPDDAVDGTKAAYAHAFVVLAASSAVQAARPGAEALLDEALDVLDRRFWDDGPGMLVDEWDRSWTVLSTYRGINANMHGVEALLAAADATGDPRWHDRAVRICDRVAQWAEATRWRVPEHFTTDWTPDLELNADRPRDPFKPYGSTPGHGFEWARLLLQVDVAGGTPGRRTETARRLFERALADGFDGTGFVYTVDWSGEPVERRRFHWVAAEAVAAAEVLAAVTGESRYRELAASWWDLLRDRFVDTDRGSWHHELDPHDRPAAAVWDGKPDVYHALQALLVPDLPVSGSFAESVRRSA				NA	NA	NA	NA	NA
AK001_01795	708	glcC	COG2186	Glc operon transcriptional activator	GTGCGTACCCACGAGAGAGTCCTCGCCCGCATCGAGTCCGACCTGGCCGCCGGCCGGTGGGCGCTGGGGGAGCGGCTCCCCGCCGAGCGGGCGCTCGCGGAGGAGCTCCAGGTCTCGCGTCCCTCGGTACGCGAGGCGATCCGGATCCTCGAGGCCATGGGCATGATCCGCACCGCGGTCGGCTCCGGGCCCGACGCCGGTGCGACCGTCATCGACCGCCCCGCGGCCGGCCTCGGCGCGGCCGTGCGGCTGCACGTCGCGTCCGGGACCCTGCCGGTCCACGACGTCGTCGCGACGCGCGACGCGCTGGAGAGCTGGGCGGTCCGCGAGGCCGCCGGCCGCGGCGCCGGCTCGGACGACGACTGGGTCGCGGAGGCCGGGCGTCTCCTGGCCGCCATGGAGGTACCGGACCTGGCGGTCGACGAGTTCGTCCGGCTCGACCAGGACTTCCACCTGGTCCTGGTCCGCCTCGGCGAGAACCAGCTCGTCGAGGCGATCCTCACCGGGCTGCGCAGCGCGGTGAGCTCCTACGTCGCGCGCGGCGTCGAGCAGCTGCCGACCTGGCCCGCGACGGCGGACCGGCTGTGCCGCGAGCACCGGACGATCCTCGACGCGGTGGTCGCCGGCGATGTCGACCGGGCCGTCCAGGTCACCCACGACCACATCTGGGGCTTCTACCGCGAGACGGGTCTCGCGGGGGACGTCTAG	MRTHERVLARIESDLAAGRWALGERLPAERALAEELQVSRPSVREAIRILEAMGMIRTAVGSGPDAGATVIDRPAAGLGAAVRLHVASGTLPVHDVVATRDALESWAVREAAGRGAGSDDDWVAEAGRLLAAMEVPDLAVDEFVRLDQDFHLVLVRLGENQLVEAILTGLRSAVSSYVARGVEQLPTWPATADRLCREHRTILDAVVAGDVDRAVQVTHDHIWGFYRETGLAGDV				NA	NA	NA	NA	NA
AK001_01796	804	lutA	COG0247	Lactate utilization protein A	TTGCGCATCGCCCTGGCCGCGACCTGTATCGCGGACACCCTCTTCCCCGGCGCCCCGCGCGCCACCGTGCGCCTGCTGGAACGGCTCGGGCACGACGTCGTCTTCCCCCGCAGCCAGGCGTGCTGCGGACAGATGCACATCAACACCGGCTATGTGGACGAGGCCGTGCCCGTGGTGCGCAACCACGTGCAGACCTTCGCCCCCGTGGCCGACGGCGAGTGGGACGCCGTCGTGATCCCCTCCGGGTCGTGCACGGGGTCGGTGCGCCACCAGCAGGCCATGGTCTGCCGTCGTGCGGGCCTCGACGACCTGGCCGCCACCGCCGACGCCGTGGCCGCGAAGACCTACGAGCTGTCCGAGCTGCTCGTCGACGTGCTCGGCGTCACCGACGTCGGCGCCTGGTTCCCCCACCGGGTCACCTACCACCCGACCTGCCACTCGCTGCGCATGCTCGGGGTCGGCGAGCGCCCGCTGCGGCTGCTGCGCGCCGTCGAGGACATCGACCTGGTCGAGCTGCCCGAGGCCGAGTCGTGCTGCGGGTTCGGCGGCACCTTCGCGCTGAAGAACGCCGACACCTCGGCCGCGATGCTCGCGGACAAGACGGCGAACGTGCGCGGCACCGGGGCCGAGGTGCTGACCGCCGGCGACATGTCCTGCCTCATGCACATCGGCGGCGGACTCTCGCGGGAGCGCGCCGGGGTCGGGACGCTGCACCTCGCCGAGATCCTGGCCTCGACCCGCTCCGAACCCACCGCCCTGCCCCGCGCCCGCTCGGGCGCCGACTCCGTGGAGGTCGCCCGATGA	MRIALAATCIADTLFPGAPRATVRLLERLGHDVVFPRSQACCGQMHINTGYVDEAVPVVRNHVQTFAPVADGEWDAVVIPSGSCTGSVRHQQAMVCRRAGLDDLAATADAVAAKTYELSELLVDVLGVTDVGAWFPHRVTYHPTCHSLRMLGVGERPLRLLRAVEDIDLVELPEAESCCGFGGTFALKNADTSAAMLADKTANVRGTGAEVLTAGDMSCLMHIGGGLSRERAGVGTLHLAEILASTRSEPTALPRARSGADSVEVAR	PGPT0018090_242	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018090-lldE|ykgE|lutA-K18928	NA	NA
AK001_01797	1560	lutB	COG1139	Lactate utilization protein B	ATGAGCACGTTCCTCGGCATCCCCGGCATCCGGCGGCGGTCCGACGCCGCGACCGGCGGCGACGCCCCGGACGAGCCGTTCGGCCCGGTCCCCCACCCCGACGAGCCGCTGCGCTGGGGCGACGCCTTCCCGGCCGCGGCGAAGCAGACCCTGCGCGACGACCAGCTCCGCGCGAACCTCGGGCACGCCACCCGCACGATCCGCGGCAAGCGTGCCGCCGTCGTCGGCGAGGTCCCCGACTGGGAGGCGCTGCGGGACGCCGGCTCGGCCGTCAAGGAGCAGGTGATGGCCGACCTGCCCGACCTGCTGGCCCGGCTGGAGGAGAACGTCACCGCCCGCGGCGGCGTCGTGCACTGGGCCCGGGACGCGGCCGAGGCGAACCGCATCGTCACCGAGATCGCCCGGGCCAAGCAGGCCGACGAGGTCGTCAAGGTCAAGTCCATGGCGACCCAGGAGATCGGCCTCAACGAGCACCTGGCCGACGAGGGCATCGCCGCCATCGAGACGGACCTGGCCGAGCTCATCGTCCAGCTCGCCGACGACATGCCCTCGCACATCCTCGTCCCGGCCATCCACCGCAACCGGTCCGAGATCCGCGACATCTTCCGCCGGCGCATGGGCGACGCCCCCGAGGACCTGTCGGACGTGCCGCGCGAGCTGGCCATGGCCGCCCGCGCGCACCTGCGGCGCAAGTTCCTCTCGGCGAAGGTCGCCGTGTCGGGCGCGAACTTCGGCGTCGCCGACACCGGCACCCTGGCCGTCGTGGAGTCCGAGGGCAACGGCCGCATGTGCCTGACGATGCCCGAGACGCTCGTGACGGTGATGGGCATCGAGAAGCTCGTCCCGACCTACGACGACCTGGAGGTGTTCCTGCAGCTGCTGCCGCGGTCCTCGACCGGCGAGCGCATGAACCCGTACACCTCGCTGTGGACGGGCGTGACCCCGGGCGACGGCCCGCAGGAGTTCCACCTGGTCCTGCTCGACAACGGACGCACGGACGTGCTGGCCGACGAGGTGGGCCGCTCGGCGCTGCACTGCATCCGCTGCTCGGCCTGCCTCAACGTGTGCCCGGTGTACGAGCGGGTCGGCGGGCACGCCTACGGGTCGGTCTACCCGGGCCCCATCGGGGCGATCCTGACCCCGCAGCTCACGGCGTCCAGCGGCGGCCTGTCCGGCTCCGACGACGTCAACTCCTCGCTGCCCTACGCCTCGACGCTGTGCGGCGCCTGCTACGACGTCTGTCCCGTCAAGATCGACATCCCCTCGATCCTCGTCGACCTGCGGGCCCGCGAGGTCGACGCCGACCGGAGCCGGTCGGCCGTGGACCCGTGGCGGGCGGCCATGAAGGCGGCCTCTTGGGTGATGTCCGACGGCGGACGGTTCGGCGTGGCGGGACGTGCCGCCACGCTGGGGCACGCGCTCGGCGGATCCGACGGCGTCGTCTCGCACGCCCCGCCGCCGGCGTCCGCGTGGACCCGGTCGCGGGACCTGCCCGCGCCGCCGAAGCAGACGTTCCGGCAGTGGATGGCGGAGCACGAGAAGGACGGAGGCGAGCGATGA	MSTFLGIPGIRRRSDAATGGDAPDEPFGPVPHPDEPLRWGDAFPAAAKQTLRDDQLRANLGHATRTIRGKRAAVVGEVPDWEALRDAGSAVKEQVMADLPDLLARLEENVTARGGVVHWARDAAEANRIVTEIARAKQADEVVKVKSMATQEIGLNEHLADEGIAAIETDLAELIVQLADDMPSHILVPAIHRNRSEIRDIFRRRMGDAPEDLSDVPRELAMAARAHLRRKFLSAKVAVSGANFGVADTGTLAVVESEGNGRMCLTMPETLVTVMGIEKLVPTYDDLEVFLQLLPRSSTGERMNPYTSLWTGVTPGDGPQEFHLVLLDNGRTDVLADEVGRSALHCIRCSACLNVCPVYERVGGHAYGSVYPGPIGAILTPQLTASSGGLSGSDDVNSSLPYASTLCGACYDVCPVKIDIPSILVDLRAREVDADRSRSAVDPWRAAMKAASWVMSDGGRFGVAGRAATLGHALGGSDGVVSHAPPPASAWTRSRDLPAPPKQTFRQWMAEHEKDGGER	PGPT0018095_70	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018095-lldF|ykgF|lutB-K18929	NA	NA
AK001_01798	714	lutC		Lactate utilization protein C	ATGAGCGCGCGCGAGGAGGTGCTGCAGCGGATCCGGGCGGCGCTCGGGCAGCCGGGGACGGGGACGACGGCGGCCGGGCGGGTCGGCACGGCGCCCGCGGCCGTGGAGGTGCCGCGGGAGTACCGGACCGCCGGCGAGCACGCCCCCGGGTCGGCCGCCGTCGTCGACCAGCTCACCGACCGGCTCGAGGACTACCAGGCGCACGTGCGGCAGGTCTCCCCCGACGAGCTGCCCGCGGCGATCGCCGCGCTCGTGGCGGAGCTCCCGGAGGCCGGGGCGGGCCGGTCCGCCCCGGCCGCGCTCGTGGCCCCGTCCGGCCTCGAGGCCGGGTGGCTGGCCGCCCTGCCGGACGACGTCGTCGTGCACCGGGACACGCCGGAGGCGCCGCTGACGGCCGGCGACCTGGACGCGCTGGACGCCGTGGTGACCGCGGCGCGCGTCGCCTGCTCCGAGACCGGCACGATCGTGCTCGACGGCGAGCCCGACCAGGGACGTCGGGCGGTGTCGCTCGTGCCCGACGTGCACCTGTGCGTCGTGCGGACCGACCAGGTGGTCCAGACCGTGCCGGAGATGGTGCGCCGGCTGTCCGCGCACCCGGAGCGGCCGCAGACGTGGATCTCGGGCCCGAGCGCCACCAGCGACATCGAGCTCGACCGGGTCGAGGGGGTGCACGGGCCGCGCACGCTGCACGTGCTGCTGGTGTCGCCGAGGTAG	MSAREEVLQRIRAALGQPGTGTTAAGRVGTAPAAVEVPREYRTAGEHAPGSAAVVDQLTDRLEDYQAHVRQVSPDELPAAIAALVAELPEAGAGRSAPAALVAPSGLEAGWLAALPDDVVVHRDTPEAPLTAGDLDALDAVVTAARVACSETGTIVLDGEPDQGRRAVSLVPDVHLCVVRTDQVVQTVPEMVRRLSAHPERPQTWISGPSATSDIELDRVEGVHGPRTLHVLLVSPR	PGPT0018100_166	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018100-lldG|ykgG|lutC-K00782	NA	NA
AK001_01799	1158	xynZ	COG2382	Endo-1,4-beta-xylanase Z	ATGTCCCATTCCCCGAGCACCAGGCGTGCTGCCGCCGTCGCGGCGTCGGCGGTCGCCGCCCTCGCCCTGTCCGGCACCGCGGTCCAGGCCACCCCGCCGGACACGACCCTGCGCGCCGAGGCGCCCCGCGACCTCCAGATCGGCAGCGCCGTCTGGGGTCAGCGTGACCTCCTCGGCCACGACCCCCAGGACCCGACCGCGTTCCAGCAGATCCTCGCGGCGGAGTTCGGCTCCCTCACGCCCGAGAACGACATGAAGTGGGCCGAGATCCACCCCGAGCCGGACGTCTACGACTTCTCCGGCGCGGACGCCCTCATGGCCTTCGCGCAGGCCCACGGCCAGGAGGTCCGCGGGCACACCCTGCTGTGGCACAGCCAGAACCCGGGCTGGGTGACCGAGGCGGCCGCGACCTGGACGTGCGACGAGGCGCGCGACGTCCTCGAGGACCACGTCCGCACCGTCGTCGGCCGCTACGCCGGCGACATCTACGAGTGGGACGTGGCCAACGAGCTCGTCCAGGACGAGTGGGACGCGGGCGGCGTGCGACTGCGCACCGAGGCCAACCCGTTCCTCGCGGCCTGCTCCGACGACCCGGTCGCCCTGATCGGTGACGTCTTCCGCTGGACCCACGAGGAGGACCCCGAGTCGGTGCTCTTCCTCAACGACTACAACGCCGAGGGCGTCAACGCCAAGACCGACGCCTACTACGCGCTGGCCCAGGAGCTGCTCGCCGACGGCGTGCCGCTGCACGGGTTCGGCGCCCAGGGCCACCTGAGCCTCCAGTACGGGTTCGACGAGTCGATCCAGGAGAACTTCGAGCGGTTCGCCGACCTCGGGCTGAAGGTGGCAGTCACCGAGGCCGACGTGCGCATGCCGCTCGGCGAGGACGGCGAGCCGACCGCCGAGCAGATCGCGCTCCAGGCGGAGCGGTACGACGAGATGCTCCAGGCCTGCCTGGAGGTGGCCGCCTGCACGAGCTTCACGGTCTGGGGATTCGACGACGGGCGGTCGTGGGTCCCCGACGTGTTCCCCGAGGGGTACGCCACGATCATGACCGAGGCCTACGAGAAGAAGCCGGCCTACGACGTCCTGCTCGAGAGCGTCACCGCGGCCACGCCCGGCCGGTCCCCGCGGACCCCGCCAGGTCTGAACGAGTAA	MSHSPSTRRAAAVAASAVAALALSGTAVQATPPDTTLRAEAPRDLQIGSAVWGQRDLLGHDPQDPTAFQQILAAEFGSLTPENDMKWAEIHPEPDVYDFSGADALMAFAQAHGQEVRGHTLLWHSQNPGWVTEAAATWTCDEARDVLEDHVRTVVGRYAGDIYEWDVANELVQDEWDAGGVRLRTEANPFLAACSDDPVALIGDVFRWTHEEDPESVLFLNDYNAEGVNAKTDAYYALAQELLADGVPLHGFGAQGHLSLQYGFDESIQENFERFADLGLKVAVTEADVRMPLGEDGEPTAEQIALQAERYDEMLQACLEVAACTSFTVWGFDDGRSWVPDVFPEGYATIMTEAYEKKPAYDVLLESVTAATPGRSPRTPPGLNE	PGPT0018625_1096	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCANASE,PGPT0018625-xynY|xynZ|xynD|xynA-K01181	NA	NA
AK001_01800	654	udk		Uridine kinase	GTGACCGACAGCGACCTGCCCGCTCCCGTGCCGCCGTCCGACGCCCTCTTCGACGTCCCGGCCGAGGCACGTCGTCCCACCACCCGGATCGTGCTGCTCACCGGAGCCTCCGGCAGCGGCAAGTCCGCCCTGACGCGCCGGCTCGGGCTGCCCGTCGTCATGCTCGACGACTTCTACCGCGACCACGACCACCCCGGCATGCCGCACGCCTTCGGCATCGTCGACTGGGACGACCCGGCGAGCTGGGACCACGACGCCGCCCTGCAGGCGCTGCGCACCCTCGCGACCACCGGCCGCACCGAGGTCCCCGTCTACGACATCCCGACGTCGCGCCGGACCGGCGCCACGATGGTCGACGCGCACGGCGAGAAGGTGGTGCTGGCCGAGGGCGTCTTCGCCGCCGAGCTCGTGTCCGACCTGCGCGCCGAGGGCATCCTGGCCGACGCCATCTGCCTGGCACGCCCGCGCCTGGTGACGTTCTGGTTCCGCCTGCTGCGCGACCTCGCCGAGTCCCGCAAGCCGCCGTTCACGCTGCTGCGCCGCGGCTGGGGGCTGCTGCGCGCCGAACCCGCCCTGGTGCGCCGCTGGACCGGGCTCGGGTGCCGCCCCCTCGCACCGCACGCCGCGGAGCACGAGATCCGCGCGCTCGCCTGA	MTDSDLPAPVPPSDALFDVPAEARRPTTRIVLLTGASGSGKSALTRRLGLPVVMLDDFYRDHDHPGMPHAFGIVDWDDPASWDHDAALQALRTLATTGRTEVPVYDIPTSRRTGATMVDAHGEKVVLAEGVFAAELVSDLRAEGILADAICLARPRLVTFWFRLLRDLAESRKPPFTLLRRGWGLLRAEPALVRRWTGLGCRPLAPHAAEHEIRALA	PGPT0021230_3714	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876	NA	NA
AK001_01801	1203	mshA_1		D-inositol-3-phosphate glycosyltransferase	GTGTTCGAGCACAGTTCTCTTCGTGTCCTGTCCCTCTACGAGGGATTCTTCTCCGGCGGTGCGCGTGTGCTGCACTCGACCGTCGTGTCCGGTCTGCACACCCACGGCCACCAGCAGCACTCGGCCCTCAGCATCCACGACGCCGTGCGACGCGAGACGATGCTGCAGCGGATGCAGGACGACCCGCGGTACCGGTCCCTGCGGTCGGTCGGCGTGCGGATCTCCACCCTCGGTCGGTCGACCGACGACGACCACGACCCCCGGACCTTCACCGACGCCGAGATGGAGATCGCCGCCCGCGAGGCCACCGGCGTCGACGTCGTGATGTCCCTCAAGGAGCAGCCGCTGCGCCTCGCCGTGCACCCGGGCTTTCCGGACCGCCCCGTGGTGGCCTGCCTGCACCGCAGCGACCCGGAGCACTCGGGCGCGGCGCTGGACGACCTCAAGGCCGCCGCCGACAGCGGCCGGCTCGTCGCCGGCATCTGCTGCGCGGAGTCCACCAAGGAGGCCTACGCCGCCGCCGGCGTCCCGGAGCACCTGCTGCGGGTCGTGCCCAACGGCATCGACCTCACCCGCTACCACCCGCTGCGCCGCGTCCGGCGCATGGCGCTGCGCGGTGCGCACGGCATCCCGGCCGACGCCACCCTGGTCGCCTACGCGGCCCGCTACGACGCCATGAAGAACCCCCGGCTCTTCCTGGCCGCCGCCCGCGCCTTCCTGGAGCGGGAGCCCGCCGGTCACGTGATGATGTGCGGCGCCGGCATGACCACGGAGAACACCGGCCTGGTCGCGGACCTCGAGGAGACCTTCGGCGACCGTCCGGACCTGCTGGCACGGGTCCACCCGCAGGGCGTGCGCCGGGACATGGAGAACGTCTTCGCGATGGCCGACGTCGTGGCCCTCACCTCGGCGTTCGGCGAGGCCGCCCCGCTGTGCCTCATCGAGGGCGCGATGAGCGGCGCCGTCCCCGTCACCACCCCGGTCGGCGACAGCGCCCGCCTGGTCGAGCGCATCGGGTTCGTCACGAGCTTCGACGCCGAGGAGATCGCCGAGACGTGGATCGAGGCGGCGGCCCGGCGCGGCGAGCTGCGCGGCGCGCTCACCGCCGCACGCCAGCGGTTCAGCCACGTGCGGATGCTGTCCGGCTACGCCCAGGTGCTCGAGCAGGCGTTCCGCGGCACCGGCCTGCAGGTCGCCGCCTGA	MFEHSSLRVLSLYEGFFSGGARVLHSTVVSGLHTHGHQQHSALSIHDAVRRETMLQRMQDDPRYRSLRSVGVRISTLGRSTDDDHDPRTFTDAEMEIAAREATGVDVVMSLKEQPLRLAVHPGFPDRPVVACLHRSDPEHSGAALDDLKAAADSGRLVAGICCAESTKEAYAAAGVPEHLLRVVPNGIDLTRYHPLRRVRRMALRGAHGIPADATLVAYAARYDAMKNPRLFLAAARAFLEREPAGHVMMCGAGMTTENTGLVADLEETFGDRPDLLARVHPQGVRRDMENVFAMADVVALTSAFGEAAPLCLIEGAMSGAVPVTTPVGDSARLVERIGFVTSFDAEEIAETWIEAAARRGELRGALTAARQRFSHVRMLSGYAQVLEQAFRGTGLQVAA				NA	NA	NA	NA	NA
AK001_01802	2364			hypothetical protein	ATGCGACGACGCAGGATCACCTGGCTGGCGGCGAGCGCCGCGGCCTGCAGCCTCATCGTCCCGACGGCGGCCGCCACCGCGGTGCCACCCTCGCACGCCGGGCCGGACGACACCGTCCAGCTCGAGGCCCTCGACCGCGGGCTGGTCGCCGTCACCACCGACGACGGCGTCTACCTCGGCTGGCGCCTCCTGGGCTCCGAGGTCACCGGCGCCACGTCCGACGGCATGACGGGGGCGGACTTCGCCGTCTACCGCGACGGCGAGAGGATCGCCACCGTCACCGACTCCACCAACCACCTCGACACCGCCGGGACTCCGGACTCCCGCTACCGGGTCGTGCCCGTCGTCGACGGGACCGAGCAGCGGCACGACCGCTCCGCCGTCGTCACCCCCTGGGGGCAGGACCACCGGGCGATCGCGATGAACAAGCCCGACGACGGCGTCACCCCGGTCGGGGAGGAGTACACCTACTCCGCGAACGACCTGTCGGTGGCCGACCTCGACGGCGACGACGAGCTCGAGCTGGTCGTCCAGTGGGACCCCTCCAACGCCAAGGACGTCTCCCAGAAGGGCTACACCGGCAACACCTATCTCGACGCCTACGAGATGGACGGCACCCAGCTCTGGCGCATCGACCTCGGCGTCAACATCCGGTCCGGAGCCCACTACACCCAGTTCCCCGTCCACGACTTCGACGGGGACGGGCGTGCCGAGGTCATGGTCAAGACGGCCCCGGGCACGAAGGTCACGCGCTACACCCCGAGCGGCCAGGTCAAGGACACCCGCCACGTGCAGATCCCGGCCGACGACGTCGCCGCCGGCATCACGCACGACGACGACTACCGCATGAGCGCCGACGACTACCTCGAGCACGTCGTCGACATGTTCGCCGGCTGGACCGAGAACCCCGAGGTCTCCTCCGGCCAGTGGCCCGCCACCCTCAAGGAGGCGTTCGCCGACGCGATGCCCGGCATCGACGACCCCGCCTCGGAGAACTACCTCCCGGACTACGCGTACCCGCTGTCCGCGGCGGACGCCCGGGCCACCGCCGAGTACTTCGTCGACGTCTACGCCCCCGCGCGCAGCGGCCGCAACGACCTGCGGACCTTCGAGGGCTTCGTCATCTCCGGTCCCGAGTACCTCTCGGTCTTCGACGGGAAGTCCGGCAAGCCGCTCGAGACCGTCGACTACACGCCGGCCCGGTACGACGACGGGCTGCGGTGGGGCGACTACGCCATGTCCCGCATCGAGCCGGGCAACCGCGTCGACCGCTTCCTGGCCGGCGTCTCCTACCTCGACGGCGAGCACCCCTCGGCCGTGTTCGCGCGCGGCTACTACACGCGGACCACGCTCGTCGCCTACGACTGGGACGGCCGTGAGCTGACGCAGCGGTGGAACGTCGACTCCGGGTGGACGCCGATGGACAACCCGTTCAACGACGGCCCCCACGGCACCCCGGGCACCGACCCCGAGTTCGGCCGGATCACCACGCAGGGTCAGCACTCGATGTCGTCGGCCGACCTCGACGGGGACGGCAAGCAGGAGATCCTCTACGGTGCCGCCGCCATCGACCACGACGGCTCGCTGCTGTGGAACGCCACGGCCGAGATGCCGCCCGAGTCCGCGAACCCCGGGGCCGAGGCGGGACTGGGGCACGGCGACGCCATGCACGTCACCGACATCCTGCCCGAGCGCCCTGGCCTGGAGGCGTTCATGGTGCACGAGGGCGGTCCGTGGGCCCCGTTCGGCACCTCGCTGCTCGACGCCGCCACCGGCGAGGTCATCGAGGGCGTCTACTCGGGCCGCGACACCGGTCGCGGGATGATCGGCGACGTCCGGCCGGACGTGCCGGGCATCGAGATGTGGTCCTCCATGCCGGGCGGCACCGACGCCTCCGGTCTGCTCGACTCCGACTGGAACACGCTGTCGGCGTCGACCCCGGGGACGAACCAGTCGGTGCGCTGGGCCGCGGACGGGTCCACGCAGGTCTTCGACTACGACCGCCTCTCGAACGACGTGCGCGAGTGGGAGCCGAAGATCGTCGACTGGGCCTCCGGCTCCGAGCGCGTGCTGGAGGGCACGCTGACCAACAACGACACCAAGGGCAACGCCGGCCTCATCGCCGACGTCCTCGGTGACTGGCGCGAGGAGATCCTCGTGCGGTCGGCCGACTCCTCCGAGATCCGGCTCTACACCTCGACCGAGGTGACGGACACCAAGATGTACACGCTGCTGCACGACCCCCAGTACCGCGCGGAGGTCGCCCGCCAGCAGACCGCGTACAACCAGCCCTCCTACCCGGGCTTCTACCTCGCCTCGGACACCGACTACACGGAGGTGCCGCTGCCGCCGAACGCCGGCTGA	MRRRRITWLAASAAACSLIVPTAAATAVPPSHAGPDDTVQLEALDRGLVAVTTDDGVYLGWRLLGSEVTGATSDGMTGADFAVYRDGERIATVTDSTNHLDTAGTPDSRYRVVPVVDGTEQRHDRSAVVTPWGQDHRAIAMNKPDDGVTPVGEEYTYSANDLSVADLDGDDELELVVQWDPSNAKDVSQKGYTGNTYLDAYEMDGTQLWRIDLGVNIRSGAHYTQFPVHDFDGDGRAEVMVKTAPGTKVTRYTPSGQVKDTRHVQIPADDVAAGITHDDDYRMSADDYLEHVVDMFAGWTENPEVSSGQWPATLKEAFADAMPGIDDPASENYLPDYAYPLSAADARATAEYFVDVYAPARSGRNDLRTFEGFVISGPEYLSVFDGKSGKPLETVDYTPARYDDGLRWGDYAMSRIEPGNRVDRFLAGVSYLDGEHPSAVFARGYYTRTTLVAYDWDGRELTQRWNVDSGWTPMDNPFNDGPHGTPGTDPEFGRITTQGQHSMSSADLDGDGKQEILYGAAAIDHDGSLLWNATAEMPPESANPGAEAGLGHGDAMHVTDILPERPGLEAFMVHEGGPWAPFGTSLLDAATGEVIEGVYSGRDTGRGMIGDVRPDVPGIEMWSSMPGGTDASGLLDSDWNTLSASTPGTNQSVRWAADGSTQVFDYDRLSNDVREWEPKIVDWASGSERVLEGTLTNNDTKGNAGLIADVLGDWREEILVRSADSSEIRLYTSTEVTDTKMYTLLHDPQYRAEVARQQTAYNQPSYPGFYLASDTDYTEVPLPPNAG	PGPT0018715_37	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONS	PLANT_MEMBRANE_RHAMNOGALACTURONAN_ENDOLYASE,PGPT0018715-yesW-K18197	NA	NA
AK001_01803	618			hypothetical protein	ATGCCCCGAGCCGCCGCGCCCGGCGGGCCGCCGCCGGCACCGGTCGCGGTGCACCCCGCCTCGGACCTCGACGACGTCACCGCTCTCGTCGGCCCCCGACGCCCGGACGCGACCGTCTGCTTCTGCCTGGGCTACCGGATCGGGTCCGCGGAGAACCGGCGCCTGCGCGGACCGGCGCGGCGCGAGCGGGTGCGCGAGCTCTGCGCCGAGGACCCGCCGCCCGGCGTCATCGCCTCCCTCGGCGGCGAGCCCGTGGCCTGGGCCGCGATCCACCCCCGCGCGGACACGGCCTTCGCGCGGAGCCGTTCGATCCCGCACGTCGACGACCTCGACGTGTGGTCGCTGTGGTGCCTGCGCGTGCGGCCCGGGTACCGCGGGACCGGCCTGACCGCACCGCTGATCGCCGGAGCCGTCCGGTTCGCGCTGGATCGCGGCGCACCCGCCGTCGAGGCGTACCCGCTGGACAACCGGGACGAGACCGTCGACACCACGATGGCCTACGTCGGCACCCGGGCGATGTTCGAGCGTGCGGGGTTCCAGGTCGCCGCCGCGACGTCGTCGCGGCTCGACGGCTTCCCGCGCGTCCTGATGCGCCTGACCCCCGGCGACGAGAGCTGA	MPRAAAPGGPPPAPVAVHPASDLDDVTALVGPRRPDATVCFCLGYRIGSAENRRLRGPARRERVRELCAEDPPPGVIASLGGEPVAWAAIHPRADTAFARSRSIPHVDDLDVWSLWCLRVRPGYRGTGLTAPLIAGAVRFALDRGAPAVEAYPLDNRDETVDTTMAYVGTRAMFERAGFQVAAATSSRLDGFPRVLMRLTPGDES				NA	NA	NA	NA	NA
AK001_01804	1023	degA_5	COG1609	HTH-type transcriptional regulator DegA	GTGGCCAGAGCGCGGTTGCAGGACGTCGCCGACCGGGCCGGGGTGTCCCTGGCGACCGCGTCGCGGGTGCTCAACGGGTCGGCGCGCCAGCCCGGACCCGAGCTGGTCAGCCGTGTGCGCGCGGCCGCGGCGGAGCTCGGCTACGTCGTCAACGCGCAGGCCCAGGCCCTGGCCCGGTCGCGCACCGGCCTGCTCGGTCTCGTGGTGCAGGACATCTCCGACCCCTACTTCTCCTCGATCGCCGCCGGTGCGCAGGCGGCCGCCCGCGAGCACGGGCGCATGGTCCTGCTGGCCTCCACCGACCGCGACCCGTCCGCCGAGCACGACGCCGTCGCGGCCTTCGCCGCCCACCGGGTCGACGCCGTCGTCGTGGTCGGCACCCGGTGGTCGGCCGAGGAGGACGCTCCGGTGGCCGCCGAGCTCGCCGCGTTCGAGGCGTCCGGAGGGCGCGCGGTCGTCGTCGGGCAGCCGCTGGGACCGGCCGTCGTGGTGCGTCCGCCCAACGCCGAGGGTGCCGCGGACCTCGCGACCGCGCTGCTGGCCGAGGGGCACCGGCGGTTCGTCCTGCTCAGCGCCGCGAGCCGCGTCCGCACGGCGCAGGAGCGCGCCGGGTCGTTCGCCGAGGCCGTGACCGCCGGCGGCGGCGAGGTCGTGGAGGTCGTCGAGCGCGAGTTCTCCCGCGACGGCGGGTACGCGGCCGGCGACCGGGTCGCCGAGCTGGCGCGCGCCGCGGTCGCCGATGGTCTCGACGCCCCGTGCGTCTTCGCGGTGAGCGACGTCATGGCGATCGGTCTGATCGCCCGGCTGCGCGATATCGGTGTCAGCGTGCCCCGCGACGTCCGGGTGGCGGGCTTCGACGACATCCCCACCCTCCACGACCACGTCCCGGCCGTGTCCACGGTGCACATCCCGCTGGAGGAGATGGGGCGGCTGGCCGTGGCGGCCGCCGTGTCCGAGGACGGTGCCGACGTCGGCGCCTCCGTCGGGCACGAGGTCGTGCTGCGCGAGTCCACCGCGCGCTGA	MARARLQDVADRAGVSLATASRVLNGSARQPGPELVSRVRAAAAELGYVVNAQAQALARSRTGLLGLVVQDISDPYFSSIAAGAQAAAREHGRMVLLASTDRDPSAEHDAVAAFAAHRVDAVVVVGTRWSAEEDAPVAAELAAFEASGGRAVVVGQPLGPAVVVRPPNAEGAADLATALLAEGHRRFVLLSAASRVRTAQERAGSFAEAVTAGGGEVVEVVEREFSRDGGYAAGDRVAELARAAVADGLDAPCVFAVSDVMAIGLIARLRDIGVSVPRDVRVAGFDDIPTLHDHVPAVSTVHIPLEEMGRLAVAAAVSEDGADVGASVGHEVVLRESTAR	PGPT0017992_9181	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01805	1167	xdh		D-xylose dehydrogenase	GTGACCACCACCCGCACCCTGCGCATCGCCATGAACGGCGTGACCGGCCGCATGGGGTACCGCCAGCACCTGCTCCGCTCCATCCTGCCGATCCGCGAGCAGGGCGGCGTGACCCTGCCGGACGGCAGCCGCGTGCAGGTCGAGCCGATCCTCGTGGGTCGCAACGAGGCCAAGCTCGCCGACCTCGCCGCGAAGCACGGCATCAGCGAGTACACGACCGACCTGGACGGCATCGTCCACGCCGAGGACACCGACATCGTGTTCGACGCCGCGATGACCAACCTGCGCCCCGAGACGCTGTCGAAGGCGATGAAGGCCGGCAAGCACGTCTACACCGAGAAGCCGACCGCCGAGACCCTCGCCGAGGCGATCGACCTCGCGAAGCTGCGCGACGAGACCGGCGTGACCGCCGGCGTCGTGCACGACAAGCTCTACCTGCCCGGCCTGGTCAAGCTGCGTCGCCTGGTGGACGAGGGGTTCTTCGGCCGGATCCTGTCGCTGCGCGGCGAGTTCGGCTACTGGGTGTTCGAGGGCGAGACCCAGCCGGCCCAGCGCCCGAGCTGGAACTACCGCTCCGAGGACGGCGGCGGCATGACCACCGACATGTTCTGCCACTGGAACTACGTGCTCGAGGGCATCCTGGGCACCGTCAAGACGGTCAACGCCCAGACGATCACCCACATCCCCACCCGCTGGGACGAGCAGGGCAAGCCCTACGACGCCACCGCCGACGACGCCGCCTACGGCATCTTCGAGATGGCCACGCCCGACGGCGACCCCGTCGTGGCGCAGATCAACTCCTCCTGGGCCGTGCGCGTGTACCGCGACGAGCTCGTCGAGTTCCAGATCGACGGCACGCACGGCTCCGCCGTCGCCGGCCTGTTCAAGTGCGTCTCCCAGCAGCGTTCCAACACGCCCAAGCCGGTCTGGAACCCCGACCTTCCCGTCACCGAGTCGTTCCGCGAGCAGTGGACCGACGTGCCCGCCAACGCCGAGCTGGAGAACGGCTTCAAGGCGCAGTGGGAGGAGTTCCTGCGCGACGTCGTCGCCGGGCGCGAGCACCGCTTCGACCTGCTGTCCGCCGCCCGCGGCGTCCAGCTCGCCGAGCTCGGCCTGCAGTCCTCGTCCGAGGGCCGCCGCCTCGACGTCCCGGAGATCACGCTGTGA	MTTTRTLRIAMNGVTGRMGYRQHLLRSILPIREQGGVTLPDGSRVQVEPILVGRNEAKLADLAAKHGISEYTTDLDGIVHAEDTDIVFDAAMTNLRPETLSKAMKAGKHVYTEKPTAETLAEAIDLAKLRDETGVTAGVVHDKLYLPGLVKLRRLVDEGFFGRILSLRGEFGYWVFEGETQPAQRPSWNYRSEDGGGMTTDMFCHWNYVLEGILGTVKTVNAQTITHIPTRWDEQGKPYDATADDAAYGIFEMATPDGDPVVAQINSSWAVRVYRDELVEFQIDGTHGSAVAGLFKCVSQQRSNTPKPVWNPDLPVTESFREQWTDVPANAELENGFKAQWEEFLRDVVAGREHRFDLLSAARGVQLAELGLQSSSEGRRLDVPEITL				NA	NA	NA	NA	NA
AK001_01806	1266			hypothetical protein	GTGAGCGCCGCGGTGACGGGCGCCGCCGGCGCCCCGGTGCTCGAGGCCAGCGGCGCGACCGTGCGGCTGCCACGGTTCGACGACGGCGGTCGCGTCGCCGGGACCGAGGTGCGCGAGCTCAACGCCCCCGGCCCGTGGCAGGCGCCGACCGGGCCGATCCGGTCGCGGGTCGCCTTCGCCGCCGCGCACGTCGTCCCGCAGGTCGGGGCCGAGAACGTGCCCGGCGCCCCCGCCGTCGTCGACTGGGACGCCACCCTCGCCTACCGCCACCAGATCTGGCGGTACGGCCTGGGCGTCGCCGACGCCATGGACACCGCCCAGCGCGGCATGGGCCTGGACTGGGCCGCCACCCAGGAGCTCGTGCGCCGCTCGGCCGCCGAAGCCGCGTCCGTCGGCGGTGCCATCGCCTGCGGCGCCGGCACCGACCAGCTCGACCCCGCCCGCGTGGCCGGGTGGCAGCGCGGGGACACGGCGGCCCTGGACGCCGTGGTCGACGCCTACCGCGAGCAGGTCCGGGTCGTGCAGGAGGCCGGTGCGCAGGTCATCGTCATGGCTTCCCGCGCGCTGGCGAAGGTCGCCCGGTCCGCCGAGGACTACGCCCGGGTCTACGACGCGGTGCTCGCCGAGGCCGACCAGCCGGTGGTCCTGCACTGGCTCGGCACGATGTTCGACCCGGCGCTGGCCGGCTACTGGGGCTCGGACTCGGTCGAGACCGCGACCGCGACCTTCCTGGACGTCATCCGCGCCCACCAGGACAAGGTCGACGGCGTCAAGGTCTCGCTGCTCGACGCCCAGCACGAGGTCGGCCTGCGCCGGTCGCTCGCGGCGCTGGACGGGTCGCGCGTGCGGCTGTACACCGGCGACGACTTCAACTACCCCGAGCTCATCACGGGTGACTCCCAGGGCTACTCCGACGCGCTGCTCGGCATCTTCGCGGCGATCTACCCGGCGGCGTCCACCGCGCTGCAGGCGTTCGACGCGAACGAGCCCGCTCAGGGGCACGCCATCCTCGCCTCGACCGAGAAGCTCGGGCGGCACATCTTCGCCGCGCCGACCTACTACTACAAGACCGGCGTGGCGTTCCTCAGCTGGCTGAACGGCTTCCAGGACGGCTTCCAGCTCGTCGGCGGCCTGCACTCCGGCCGGTCCCTGGCCCACCTGGTCACGCTGGCCCGGCTGGCCGACGACTGCGGCATGCTGCTCGACCCGGACCTGGCCGCGGTGCGGCTGCGGGCGCTGCTGACGACGAACGGGGTCGACTCGTGA	MSAAVTGAAGAPVLEASGATVRLPRFDDGGRVAGTEVRELNAPGPWQAPTGPIRSRVAFAAAHVVPQVGAENVPGAPAVVDWDATLAYRHQIWRYGLGVADAMDTAQRGMGLDWAATQELVRRSAAEAASVGGAIACGAGTDQLDPARVAGWQRGDTAALDAVVDAYREQVRVVQEAGAQVIVMASRALAKVARSAEDYARVYDAVLAEADQPVVLHWLGTMFDPALAGYWGSDSVETATATFLDVIRAHQDKVDGVKVSLLDAQHEVGLRRSLAALDGSRVRLYTGDDFNYPELITGDSQGYSDALLGIFAAIYPAASTALQAFDANEPAQGHAILASTEKLGRHIFAAPTYYYKTGVAFLSWLNGFQDGFQLVGGLHSGRSLAHLVTLARLADDCGMLLDPDLAAVRLRALLTTNGVDS				NA	NA	NA	NA	NA
AK001_01807	882			hypothetical protein	ATGAGCGCGCAGAGCGCGGACCTGTCGCGCTGCTCGTTGAACACCGCCACGGTCAAGCACGCCTCGCTGCCCGAGGCCGTCCAGGCGGCGGCCGCCGCCGGGATGGGCGCCGTCGGGCTGTGGCGGCACCAGGTCGCCGAGCACGGCGCCGAGACCGCCCGCGCGATCGTCGAGGACGCCGGGCTGACCGTCTCCTCGCTGTGCCGCGGCGGGTTCCTCACGGCCGCCACGGACGAGGGCGTCCGCGACGCGATCGCGGAGAACACCCGGGCGATCGAGGAGGCCGCCGGGGTCGGGACGCGCGAGCTCGTGTTCGTCGTCGGCGGCCTGCCGGGGTCCTCCCCCGAGGCGCCTCCGGCTCCCGGCACCGACCGTGACGTCGTCGCGGCCCGTGCCCGGGTGGCGGACCGGCTGGCCGACCTCGCGCCGATCGCGGCGGAGCACGACGTGCGGATCGTCCTCGAGCCGCTGCACCCGATGTTCGCCGCCGACCGCGCGGTGATCTCCACGCTGGGCCAGGCGCTCGACCTGTCCGCCCCGTTCGACGCCCGCACCGTGGGCGTCGTGGTGGACACCTACCACGTGTGGTGGGACCCGGAGCTGCGGGGGTCGATCGAGCGGGCCGGCCGCGAGGGGCGGATCGCGAGCTACCAGGTCTGCGACTGGAACCTGCCGTTCGGCGCCACGGCGCTGAACTCGCGCGGGCACGTCGGCGACGGGTACATCGACTTCGCGACGATCTCGTCCTGGGTGCGCGACGCCGGGTACACCGGCGACGTCGAGACCGAGATCTTCAACGAGGGGATCTGGGCGGCGGACCCGGTCAAGACCGCGCGGACGGTCGCGGAGCGCTACGCGGAGCACGTCGCCCCGCACCTCTGA	MSAQSADLSRCSLNTATVKHASLPEAVQAAAAAGMGAVGLWRHQVAEHGAETARAIVEDAGLTVSSLCRGGFLTAATDEGVRDAIAENTRAIEEAAGVGTRELVFVVGGLPGSSPEAPPAPGTDRDVVAARARVADRLADLAPIAAEHDVRIVLEPLHPMFAADRAVISTLGQALDLSAPFDARTVGVVVDTYHVWWDPELRGSIERAGREGRIASYQVCDWNLPFGATALNSRGHVGDGYIDFATISSWVRDAGYTGDVETEIFNEGIWAADPVKTARTVAERYAEHVAPHL				NA	NA	NA	NA	NA
AK001_01808	780		COG1123	putative ABC transporter ATP-binding protein	ATGAGCTCGAACACCGCCCCGATCCTGCGCGCCTCCGGCCTCTCCGCCGGCTACGGCGGCCCCGACGTCGTCCGCGACATCGACCTCGAGCTCACCACCGGCTCGGCGCCCGTCGGTATCGTCGGCCCGTCCGGCGCCGGCAAGTCGACGATCGTGCGGGCACTGGTCGGCCGTGTGAAGCCGACCAGCGGGCACGCCACGTGGCACGGCCGCACGGTCAGCCGCATCGGCCTGCGGGACAAGAAGGCCTTCCGCACCCAGGTCCGCCGGGTCGCCCAGGAGGGCATCGCCGACGTCGACCCCCGCTGGACCGTCGACCGCGTGCTGGGCAAGGCCCTGTCGGACGCCCGCAAGGCCGGCCGCGCCTCGGGTCGGACCGTCGAGGAGCTGCTCGACGACGTCGCGCTCGAGCCGCGGTTCGCCGTCCGCCAGGTCGGGACCCTGTCCGGCGGGGAGAAGCAGCGCCTCGCCCTGGCCTCGGCGCTGGCGACGCGCCCCGACGCGCTGCTGCTCGACGAGCCGCTCACCGCCGTCGACCCGGCCATGCGCGGCGAGGTCGTGCGCCGGCTCGCGGACGCGACCGCGGACCAGGGCACCGCCGTCCTGCTCGTCACGCACGACCTGGAGCTCGTCGAACGGCTCTGCCCCACCGTGCACGTGCTCGGCGACGGGACGTTCGTCGCCTCCGGGAGCCTGTCGCAGGTCCTGTCGACGGCCGAGCACCCGGTGGTGCGCGAGCTCGCCGAGGCGGCACCGCAGGCCGTGCAGCGCTTCCGCTGA	MSSNTAPILRASGLSAGYGGPDVVRDIDLELTTGSAPVGIVGPSGAGKSTIVRALVGRVKPTSGHATWHGRTVSRIGLRDKKAFRTQVRRVAQEGIADVDPRWTVDRVLGKALSDARKAGRASGRTVEELLDDVALEPRFAVRQVGTLSGGEKQRLALASALATRPDALLLDEPLTAVDPAMRGEVVRRLADATADQGTAVLLVTHDLELVERLCPTVHVLGDGTFVASGSLSQVLSTAEHPVVRELAEAAPQAVQRFR	PGPT0004435_4262	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031	NA	NA
AK001_01809	504			hypothetical protein	ATGACCGGCGCCGCCCACCCCGACCATGTCCTGGCCCGCTGGACGGTCGAGTCCGCCGACGATCTCGCCCGCATCCGCACCGACCTCGACCACGCGTTGCGACGCCTGGCGGGCGGCACCTGCGACTGCTGCCTGGCCCCGTCGGGCGCCGAGCCCCAGCACGTCGTCCTCATCGCCAACGAGCTGGCGTCCAACGCCCTGGAGTACACCGGGGGTCCGGCGAGCCTGGAGCTGCGGTGCGACGGGACCACCGCCGTCGTCTCCGTGACGGACACCCGGCCCGACCTCCCGCCGATCCTCAGCCCGCACCGCGACCTAGGCAAGGGCGGCTTCGGGCTCCAGCTCGCCCTGCGCGTCGCCGACGACGTCGGCTGGTACCGGGACTCCGCGTGGGAGAAGCGCGTGTGGGCACGGTTCACGCTCGCCGCCCCGGACCGCGCGCGAGACGGGGCCGGGGCCCCGGGCCACGACGGACCCGGGGCGCCGGCACCGCTCAGCCGTTGA	MTGAAHPDHVLARWTVESADDLARIRTDLDHALRRLAGGTCDCCLAPSGAEPQHVVLIANELASNALEYTGGPASLELRCDGTTAVVSVTDTRPDLPPILSPHRDLGKGGFGLQLALRVADDVGWYRDSAWEKRVWARFTLAAPDRARDGAGAPGHDGPGAPAPLSR				NA	NA	NA	NA	NA
AK001_01810	1482	rhaB		Rhamnulokinase	ATGAGCGCGTTCGTCGCCGTCGACCTCGGGGCGACCAGCGGCCGGGTGATGCTCGGCGTCGTCACCGGCGGGGCCGGGGACGAGCACGTCGACCTCACCGAGGTCGCACGGTTCGGCAACGGCCCCGTCGAGATCCCCGAGTCCGACGGCACCGCGCTGCACTGGGACCTGCTGCACCTGTGGCGAGGGACCCTGGACGGCCTCCGCGCCGCCGGGGCCCTCGCCCGGGAGCGCGGTGTCGAGATCGCCGGGATCGGCATCGACTCCTGGGCGGTCGACCACGGACTGTTCGCCGCCGACGGCTCGCTGCTGGCCAACCCGCGTCACCACCGTGACCCCCGGCTGAACGGTGTGGCCGAGGACGTCCTGGACCGGCTCGGTCCCGGCGAGCACTACGGCGTCAACGGGCTGCAGACCCTGCCGTTCAACACCGAGTTCCAGCTCGTGGCCGCCCGGCACGACGCCGTGTGGCCGCTGGTGGACTCGATCCGGCTGATTCCCGACCTCCTCGGCTCGTGGCTCACCGGGGTGACGGTCGCCGAGGTCACCAACGCCTCGACGACCGGGCTGCTGGACGCGACCACCCGGCAGTGGTCCGGCCCGGTCGTCGACGCCCTGCAGCGCGAGTACCCCGAGCTGGGCGACCTGCGGTCGAAGCTGGCCGACGTCGTCGAGCCGGGGACCGTCGTCGGGCACCTGACCGACCGCGTCCAGGACGCCACGGGGCTGGGTGCCGTCCCGGTCGTCGCGGTGGGGTCGCACGACACGGCCTCCGCCGTCGTCGGCGTGCCTGCCAAGGACGAGCGGTTCGCCTACGTCTCCTCCGGCACCTGGTCGTTGGTGGGCGTCGAGCTGGACGAACCCGTGCTCACCGAGGAGAGCCGGCAGGCGAACGTCACCAACGAGCTCGGCGTCGACGGCACCGTGCGCTACCTCAAGAACGTCATGGGGCTGTGGGTGCTCTCGGAGACGCTGCGCACCTGGCAGGAGGCGGGCACGGAGGTCACGCTGGTCGAGGCGCTGACGGCTGCCGCCGAGGCCCGGCCGCGTCGGACCGTCGTGGACGTCGACGCCCCCGAGTTCCTCCCGCCGGGCGACATGCCGGCGCGGATCGCCGACGCCGCCCGGGCGAGCGGGCAGCCCGTGCCCGAGGGCGTCGGGGAGACGGTGCGCTGCATTCTCGACTCCCTCGCCGACGCCTACCGTCGTGTGCTGCACGAGGTGACCCGGCTGTCGGGCCGGCACGTCGAGGTGCTGCACGTCGTGGGAGGCGGCTCGCAGAACGAGCTGCTGTGCCGGCTCACGGCGGCCGCCACGGGTCTGCCCGTCGTCGCCGGACCTGTCGAGGGCGCCGCCCTCGGCAACGTCGTGGTCCAGGCCCGGGCCGTGGGGGCGCTCGACGGCGACCTGACCCGGCTGCGGGGCGTCGTCCGGCGCTCCTCGCGGCTGCGGCGCTACGAACCCCAGCTCGTCAACGGCTGA	MSAFVAVDLGATSGRVMLGVVTGGAGDEHVDLTEVARFGNGPVEIPESDGTALHWDLLHLWRGTLDGLRAAGALARERGVEIAGIGIDSWAVDHGLFAADGSLLANPRHHRDPRLNGVAEDVLDRLGPGEHYGVNGLQTLPFNTEFQLVAARHDAVWPLVDSIRLIPDLLGSWLTGVTVAEVTNASTTGLLDATTRQWSGPVVDALQREYPELGDLRSKLADVVEPGTVVGHLTDRVQDATGLGAVPVVAVGSHDTASAVVGVPAKDERFAYVSSGTWSLVGVELDEPVLTEESRQANVTNELGVDGTVRYLKNVMGLWVLSETLRTWQEAGTEVTLVEALTAAAEARPRRTVVDVDAPEFLPPGDMPARIADAARASGQPVPEGVGETVRCILDSLADAYRRVLHEVTRLSGRHVEVLHVVGGGSQNELLCRLTAAATGLPVVAGPVEGAALGNVVVQARAVGALDGDLTRLRGVVRRSSRLRRYEPQLVNG	PGPT0017775_19	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017775-rhaB-K00848	NA	NA
AK001_01811	2055	hcaB_1		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGACGAACGAGACCGTTGCCGCTCTGGTCGAGCGGTCCAACCGCCTGGGCGCCGACCCGAAGAACACGAACTACGCCGGCGGCAACACGTCCGCCAAGGGCGTCGAGACCGACCCCGTCACCGGTCAGGACGTCGAGCTGCTGTGGGTCAAGGGCTCCGGCGGCGACCTGGGCACCCTGACCGAGAAGGGCCTGGCCGCGCTGCGCCTGGACCGCATGCGCGCGCTGGTCGACGTCTACCCGGGCGTCGACCGCGAGGACGAGATGGTCGCGGCGTTCGACTACTGCCTGCACGGCAAGGGCGGCGCCGCCCCCAGCATCGACACCGCCATGCACGGGCTCGTCGACGCCAAGCACGTGGACCACCTGCACCCTGACTCCGGCATCGCGATCGCCACCGCCGTCGACGGCCCGGACCTGACCGCGACCATCTTCGGCGGCAACGTCGTGTGGGTGCCGTGGCGTCGGCCCGGCTTCCAGCTCGGTCTGGACATCGCCGAGATCAAGAAGGCCAACCCCGACGCGATCGGGACCGTGCTGGGCGGCCACGGCATCACCGCGTGGGGCGACACCGCCGAGGAGGCCGAGGCCAACTCGCTGTGGATCATCGACACGGCGGCGGCCTACATCGCCGAGCACGGCAAGGCCGAGCCCTTCGGCCCGGCGCTCGACGGCTACGGCGCGCTGCCCGAGGCCGAGCGCCGCGCCAAGGCCGCCGCGCTGGCCCCGCACCTGCGCGCCGTCGCCTCGCACGACAAGCCGCAGGTCGGCCACTTCACCGACTCCGAGCCGGTGCTGGAGTTCCTCGCGCACGCCGAGCACCCCCGCCTCGCCGAGCTCGGGACCTCCTGCCCCGACCACTTCCTGCGCACCAAGGTCAAGCCGCTGGTGATCGACCTGCCGGCGACCGCCAGCGTCGAGGAGATCGTCGAGCGGCTGCCGGAGCTGCACGAGGCGTACCGCGCCGACTACACCGCCTACTACGAGCAGGGGGCCGCCGAGGCGCGCGAGCGCGGCGAGGAGCCGCCCGCGATCCGCGGTGCCGACCCCGCGATCGTCCTCGTCCCCGGCGTGGGTATGTTCTCCTACGGCGGTGACAAGCAGACCGCCCGGGTGGCCGGCGAGTTCTACGTCAACGCCATCAACGTGATGCGCGGTGCCGAGGCCCTGTCGACGTACCAGCCGATCGACACCTCGGAGAAGTTCCGCATCGAGTACTGGGCGCTCGAGGAGGCCAAGCTGCAGCGCAAGCCCAAGCCGAAGCCGCTGGCCACCCGCATCGCGTTCGTCACCGGCGCGGCCTCCGGCATCGGCAAGGCCATCGCCGAGCGCCTCGCCGCCGAGGGCGCCTGCGTCGTGATCGCCGACCTGGACGCCGAGAAGGCGCAGGCCGTGGCGAGCGAGATCGGCTCGACCGACGTCGCCGTCGGGCTCGCCGCGAACGTCACCGACGAGGCCGCGATCCGGGCCGCGCTGGACGAGGCCGTGCTCGCGTTCGGCGGCGTGGACATCGTCGTCAACAACGCCGGGCTGTCGCTGTCCAAGTCGCTGTTCGAGACCACGGCGGACGACTGGGACCTGCAGCACGACGTCATGGCCAAGGGCTCGTTCCTCGTGTCCAAGCACGCCGCACGGATCCTCGTGGACCAGCAGCTCGGTGGCGACATCATCTACATCTCGTCCAAGAACTCGGTGTTCGCCGGTCCGAACAACATCGCCTACTCGGCGACCAAGGCCGACCAGGCCCACCAGGTGCGCCTGCTGGCCGCCGAGCTCGGCGAGCACGGGATCAAGGTCAACGGCATCAACCCCGACGGCGTCGTGCGCGGGTCGGGCATCTTCGCCTCCGGGTGGGGCGCCAACCGGGCCAAGACCTACGGCATCGAGGAGTCGGAGCTCGGCAAGTTCTACGCCCAGCGCACGCTGCTCAAGCGCGAGGTGCTGCCGGAGAACATCGCGAACGTGGCGTTCTCGCTGTGCACCGCGGACTTCTCGCACACGACCGGACTGCACATCCCCGTCGACGCGGGTGTGGCGCAGGCGTTCCTGCGATGA	MTNETVAALVERSNRLGADPKNTNYAGGNTSAKGVETDPVTGQDVELLWVKGSGGDLGTLTEKGLAALRLDRMRALVDVYPGVDREDEMVAAFDYCLHGKGGAAPSIDTAMHGLVDAKHVDHLHPDSGIAIATAVDGPDLTATIFGGNVVWVPWRRPGFQLGLDIAEIKKANPDAIGTVLGGHGITAWGDTAEEAEANSLWIIDTAAAYIAEHGKAEPFGPALDGYGALPEAERRAKAAALAPHLRAVASHDKPQVGHFTDSEPVLEFLAHAEHPRLAELGTSCPDHFLRTKVKPLVIDLPATASVEEIVERLPELHEAYRADYTAYYEQGAAEARERGEEPPAIRGADPAIVLVPGVGMFSYGGDKQTARVAGEFYVNAINVMRGAEALSTYQPIDTSEKFRIEYWALEEAKLQRKPKPKPLATRIAFVTGAASGIGKAIAERLAAEGACVVIADLDAEKAQAVASEIGSTDVAVGLAANVTDEAAIRAALDEAVLAFGGVDIVVNNAGLSLSKSLFETTADDWDLQHDVMAKGSFLVSKHAARILVDQQLGGDIIYISSKNSVFAGPNNIAYSATKADQAHQVRLLAAELGEHGIKVNGINPDGVVRGSGIFASGWGANRAKTYGIEESELGKFYAQRTLLKREVLPENIANVAFSLCTADFSHTTGLHIPVDAGVAQAFLR				NA	NA	NA	NA	NA
AK001_01812	975	lip2		Lipase 2	ATGAGCACGACGACGGCGTCGACGGCGACGGCGAGCATCCGTGAGGAGGTGCTCGCCGGCCCGCACGGCGACCTGCGCGTCCGGGTGTACCGGCCCGGCTCCGGTGCTCCCGTGGCCGGGCTGGTCTGGGCGCACGGCGGGGCGTTCATGCACGGCGACCTCGACATGCCGGAGGCCGACCACGTCGCCCGCATCCTCGCCGCCGGCGGTGTCGCCGTCGTCAGCGTCGACTACGCGTTGGCGCCCGCGTTCGACCACCACGCCGTGCTGGCCACCGACGGGCTCGAGAAGGGCCTGGCGCGGATGCTCGCCGCCACCGACGGCGCGCGCTTCCCGGTCGCGTCCCAGGAGCTGGCCTTCGCCTTCGCCTGGGCGGTCGACGCCGACCTGGGCGTCCCGGCAGGCCGCTGGTCCCTCGGCGGGGCCAGCGCCGGCGGGAACCTCGCCGCGGGCGTGGCGCTGCGGCTGCGCGACGCCGCCGCCGGGGACACCGGCGCCGCGCCGGTCCCGCCGTCGTCGACCGCGCGCACCGTCCCCCGCAGCGTGGTGCTCGCCTACCCGGTGGCGCACCACGAGCTGCCGGACCCGTGGCCCGAGCTGGCCACCAAGATCGCCGCGCTGCCGCCGGACCGGAGCTATCCTCCGGCGGCAGTGCGGGCCATGAACGACCACTACCTCGGACACGAGCGCGGCCCGGACTCCCCGTACGCGTTCCCGGCCGGGCACGACCTCCGTGGCCTGCCGCCGACCCTGATCGTCACCTCCGACCACGACGCGCTGCGGTCCTCTGGGGAGGCCTACGCCGCCGAGCTGGCCGTCGCCGGCACGGACGTCATGGTCGTGCGCGAGGACGACACCCTGCACGGTCACCTCAACCAGCCGGACGACCCCGGGTGTGCGCGCAGCCTCGCGCGCATCACCGCCTGGCTCACGTCCGACGTGCTGGTCGGGACCACCCACGAACCACCCGCCTGA	MSTTTASTATASIREEVLAGPHGDLRVRVYRPGSGAPVAGLVWAHGGAFMHGDLDMPEADHVARILAAGGVAVVSVDYALAPAFDHHAVLATDGLEKGLARMLAATDGARFPVASQELAFAFAWAVDADLGVPAGRWSLGGASAGGNLAAGVALRLRDAAAGDTGAAPVPPSSTARTVPRSVVLAYPVAHHELPDPWPELATKIAALPPDRSYPPAAVRAMNDHYLGHERGPDSPYAFPAGHDLRGLPPTLIVTSDHDALRSSGEAYAAELAVAGTDVMVVREDDTLHGHLNQPDDPGCARSLARITAWLTSDVLVGTTHEPPA				NA	NA	NA	NA	NA
AK001_01813	1167	xylA_1		Xylose isomerase	ATGCCCAGCTTCGACGACATCACCCCGGTCCTGGACCGCCTCGCCATCGAGGTGCCGTCCTGGGCCTACGGCAACTCCGGCACCCGCTTCAAGGTGTTCTCCACCCCGGGCACGCCGCGCACCCCCGAGGAGAAGATCGCCGACGCCGCCCAGGTCCACCGGCTCACCGGACTGGCCCCCACCGTCGCGCTGCACATCCCGTGGGACAAGGTCGACGACTACGCGGCGCTGCGCCGGTACGCCAACGACCAGGGCGTCGACCTCGGGACGATCAACTCCAACACGTTCCAGGACGACGTCTACAAGCTCGGCTCGCTGACGCACACCGACCCCGCGGTCCGCCGGAAGGCGATCGACCATCACCTCGACTGCATCGAGATCATGCACGCCACCGGGTCGAAGGACCTGAAGATCTGGCTGGCCGACGGCTCGAACTACCCCGGGCAGGCGGACATCCGCACCCGCCAGGACCTGCTGCACGAGGCGTTGACCGAGATCTACGGCCGGCTCGGCGACGACCACCGCATGGTGCTCGAGTACAAGTTCTTCGAGCCGGCCTTCTACCACACCGACGTGCCGGACTGGGGCACCTCCTACGCCCAGGTCGCCGCGCTCGGCGAGAAGGCGTTCGTCTGCCTCGACACGGGCCACCACGCCCCGGGCACCAACATCGAGTTCATCGTCGCCCAGCTCCTGCGGCTCGGGAAGCTCGGCTCCTTCGACTTCAACTCGCGGTTCTACGCCGACGACGACCTCATCGTCGGTGCCGCCGACCCGTTCCAGCTCTTCCGCATCATGGCCGAGGTCATCCGCGGCGGCGGCCTCGACGAGGGCTCCCAGGTCGCGCTGATGCTCGACCAGTGCCACAACATCGAGGACAAGGTCCCCGGCCAGATCCGGTCGGTGCTCAACGTCCAGGAGATGACCGCCCGCGCGCTGCTGCTCGACCGGGAGGCCCTGACCGCGGCGCAGGAGAACGGCGACGTCCTGGGGGCCAACGCGATCTACATGGACGCCTTCTACACCGACGTGCGCCCGCTGCTCGCCGAGTACCGCGAGAAGCGCGGCCTGCCCGCCGACCCCATGGCCGCGTTCGCCGAGTCGGGCTACCTGCCGAAGATCGCCGCCGAGCGCGTGGGCGGTCAGCAGGCCGGCTGGGGCGCCTGA	MPSFDDITPVLDRLAIEVPSWAYGNSGTRFKVFSTPGTPRTPEEKIADAAQVHRLTGLAPTVALHIPWDKVDDYAALRRYANDQGVDLGTINSNTFQDDVYKLGSLTHTDPAVRRKAIDHHLDCIEIMHATGSKDLKIWLADGSNYPGQADIRTRQDLLHEALTEIYGRLGDDHRMVLEYKFFEPAFYHTDVPDWGTSYAQVAALGEKAFVCLDTGHHAPGTNIEFIVAQLLRLGKLGSFDFNSRFYADDDLIVGAADPFQLFRIMAEVIRGGGLDEGSQVALMLDQCHNIEDKVPGQIRSVLNVQEMTARALLLDREALTAAQENGDVLGANAIYMDAFYTDVRPLLAEYREKRGLPADPMAAFAESGYLPKIAAERVGGQQAGWGA	PGPT0017770_491	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017770-rhaA-K01820	NA	NA
AK001_01814	366	rhaM_2		L-rhamnose mutarotase	GTGGGAGACGACGGTAAGCGCCGGGTCATGTTCCAGTTCCGGGTCCACCCGGACCGGCTGGAGGAGTACGGTCGCCGCCACGGCGAGGTCTGGCCCGAGATGCTGCGGGCCCTGCACGAGGCCGGCTGGGAGAACTACTCGATCTTCACCGCACCCGACGGTCAGGTCGTGGGCTACTTCGAGAGCGCCGACCCGGACGCCGCGCGGGCCCGGATGGGGCTGACCGAGGTCAACGCCCGCTGGCAGGCCGAGATGGCCGAGTTCTTCGACGGCGACGGACCGGACGCGACCATGACCGAGCTGACGCCGGTCTTCCACCTCGAGACGCAGCTCGCCGCCGCGGACGCCGCGGACGACCAGGACTGA	MGDDGKRRVMFQFRVHPDRLEEYGRRHGEVWPEMLRALHEAGWENYSIFTAPDGQVVGYFESADPDAARARMGLTEVNARWQAEMAEFFDGDGPDATMTELTPVFHLETQLAAADAADDQD	PGPT0017795_50	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534	NA	NA
AK001_01815	1017	degA_6	COG1609	HTH-type transcriptional regulator DegA	ATGCCACCGCGCACCAAGCGCCGGACGTCCATCGCCGACGTCGCCCGGCTCGCCGAGGTCTCGGTCGGCACCGTCTCCAACGTGCTCAACCGTCCCGACCGCGTCTCCCCCACCACCCGGGAGCGCGTCGAGGCAGCGATCACCGAGCTCTCCTTCGTGCGCAACGGTTCGGCCCGTCAGCTGCGGGCGGGCACCATCACCACCGCCGGCGCGATCGTCCTCGACGTGGCGAACCCGTTCTTCACCGACGTCGCGCGCGGCATCGAGGACCGGCTCGAGGAGGCCGGGTACACCCTCATGCTCGCCAGCTCGGACGAGGACCCCGACCGGGAGGCCCGCTACCTCAAGCTGTTCGAGGAGCACGGGGTCCAGGGCGTCATGGTGGTCCCCTCCGGCCCGGACATCGACCACCTGCGCACCCTGCACGACCGCGGCCTGCGCGTCGTCCTGCTGGACCGACCCTCCACCGACCCCGCACTGTCGTCGGTGGCGGTGGACGACCGCGCCGGAGCCGCGGCCGCGGCCCGCCACCTGATCGACCTCGGCCACGAGCACCTGGCCTTCCTCAACGGCCCGCACACGATCCGGCAGTGCGCCGACCGCTCGGCCGGTATCCACGACGCCCTCGTCGAGGCCGGTCTCGACCCCGCGACGTGCCTGGAGGAGATCACGATCACCGCGCTCAACGCGGACGGCGGCCAGGCCGGGACCGAGCGGGTCCTCGCCATGGAGCGCCGGCCCACCGCGACCCTGTGCGTCAACGACCTCACGGCGCTCGGCGCCCTGCGCACGCTGCGCGCGGCCGAGGTGCCCGTCCCGTCCGGCATGGCCGTCGTCGGCTACGACGACGTCACCTTCGCCGGCGAGCTCGCCACGCCGCTGACGTCGGTCCGCCAGCCCATGCACGCCCTGGGCTACCGCGCCGCCGACCTGCTCCTGGCCGACGACGAGAGCGCCGAGCAGGTCGTCTTCCAGCCCGAGCTGGTCGTGCGGGAGTCCACCACCGGAACGGGATGA	MPPRTKRRTSIADVARLAEVSVGTVSNVLNRPDRVSPTTRERVEAAITELSFVRNGSARQLRAGTITTAGAIVLDVANPFFTDVARGIEDRLEEAGYTLMLASSDEDPDREARYLKLFEEHGVQGVMVVPSGPDIDHLRTLHDRGLRVVLLDRPSTDPALSSVAVDDRAGAAAAARHLIDLGHEHLAFLNGPHTIRQCADRSAGIHDALVEAGLDPATCLEEITITALNADGGQAGTERVLAMERRPTATLCVNDLTALGALRTLRAAEVPVPSGMAVVGYDDVTFAGELATPLTSVRQPMHALGYRAADLLLADDESAEQVVFQPELVVRESTTGTG	PGPT0017992_10107	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01816	1005			hypothetical protein	ATGACGGAACGCCGCACGACGAACCGACCCGCCCAGCGCCCCACCGCACCGCACGCACCGCTGCCCGCCCCCGTATGGCGCGACCCGGTGCACGACGGCGCCACCGACCCGCTCGTCGTCCGGCACCCCGACGGCGACTGGCGGATGCTGTGGACGCAGCGCAGGCCGGCGGCCGACGGACCGGGCGTCACCTGGGTGCACGGCACCGACCTCGGGGTCGCGACGTCCGACGACGGCGGCGCGACCTGGCGCTACATCGGCACCCTCGGCGCCGCCGACGGGCTGCCGGTGACCGGCACGGCGCCCCGCGACACCTACTGGGCGCCCGAGGTCGTGGCGGTCGACGGGACGTTCCACATGTACCTCACCGTCGTGCCCGGCGTCCCGGACCGGTGGGAGGGGAACGACCGCAGGATCCACCACCTGACCAGCCTCGACCTGGAGCGGTGGACCGATCACGGCCCGCTGCCGCTGAGCTCCGACCGCGTCATCGACGCCTGCGTCCACCGCCTGCCCGACGGCGGGTGGCGGATCTGGTACAAGGACGAGGCCGACGACTCGACCACCTGGGCCGCGGACTCGCCCGACCTGTGGACCTGGACGGTGCACGGGCAGGTGATCGGCGGACGCCCCCACGAGGGCGCGAAGACGTTCCGGCTGTCGGGCCGGTACTGGATGGTCGTCGACGAGTGGCGGGGACAGATGGTCTACCGGTCGGACGATCTCGAGCACTGGGAGCCGCAGGGCCTGATCCTCGACGAGTCGGCGGACCGGCCCGACGACGTGGCTCCCGGGCACCACGCCCACGTCGAGGTGCTCACCGACGACCCGGACGCCCCGGACGCCGTCGCGTGGATCGTCTACTTCACGCACCCCGGGCGCACCGCCGCCGACCCGGACTCCGTCGAAGGCCGCCGCTCGAGCGTCCTCGTCGCCGAGCTGCGGGTCGACGCCGGTCGACTCGTGTGCCACCGCGGCGACGTCCGCTCCCGCCTGTCGCGCTGA	MTERRTTNRPAQRPTAPHAPLPAPVWRDPVHDGATDPLVVRHPDGDWRMLWTQRRPAADGPGVTWVHGTDLGVATSDDGGATWRYIGTLGAADGLPVTGTAPRDTYWAPEVVAVDGTFHMYLTVVPGVPDRWEGNDRRIHHLTSLDLERWTDHGPLPLSSDRVIDACVHRLPDGGWRIWYKDEADDSTTWAADSPDLWTWTVHGQVIGGRPHEGAKTFRLSGRYWMVVDEWRGQMVYRSDDLEHWEPQGLILDESADRPDDVAPGHHAHVEVLTDDPDAPDAVAWIVYFTHPGRTAADPDSVEGRRSSVLVAELRVDAGRLVCHRGDVRSRLSR	PGPT0018835_91	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407	NA	NA
AK001_01817	2658			hypothetical protein	ATGGTCGCCGCCGTCGCGATCTTCCTGCTCGGCGCCGTCGTCGCGCTGCCCCAGGCGGTCGCCACCAACGACGGCGTCTGCACGACCGGTGAGGGGTGGGTGAAGTACGAGTACGAGGGCGGCGCCTTCGTGCAGGAGACCGGCGACGAAGAGCTCCTCGTCGAGGTGACCGAGACCAAGGACGGCGACGAGCCGATGGCCGTGTCCGTCACGGCCCCCGACGGCTACCTCGTCTCCGAGGTCTGCGTGAAGGCCGGCACGGACAAGGTGTCGGAGCAGCTCTCGCCGGCCGTCCCGACCGTCACGATCGACGCACCTGAGAAGGCGGCGATCAGCCACTTCGCGGTGAAGCTCGTCGTGGACACGTGGGACTGGAACTGGGAGTACCCCGCACCGACGTGCGAGGGCACGCTCACGGTGACCTACCCCGACGACATCCCCGAGGGGCAGGCGAACGACGTCAACGTCAAGGTGAAGAACCTGGACACCGACGAGGTCGTCACGATCAACATCCACAACGACGAGGGCACCTGGACGGGCGAGCAGGTCTTCGACCCGACGTCCGAGCCCGAGTGGCCGGGCTGGGAGTCCTGGGCCTTCGTGTGGACCCAGGTCGCCGGCACGAACTACCACTGGAAGGGCCACGTCGAGGTCGGTTGCGACGAGCCCGTCGAGCCGTCCTTCGAGGCGGAGGCCACGCCCGCCGTCTGCGTCGACGGCGAGACCGAGGGCGGTTCCTTCACCTACACCGTCACCGTCGGCAGCGAGCACGGTACCCGGAACTTCCAGGTGAAGGATCTCGGTGACGGGACCGGTGGCACCGCCGAGACCTACTACCGCGCCGACGGCACGATCGGCGCCCCGGGCGAGATCGTGACCTTCGCGACCATCGAGGCCGGCGCGACGGCCACGCTGAGCCTCGACGACCTGCCCCCGGGGGACTACCGCGTCGTCTCCGACGGGTCGCGGAAGGTCAAGAAGCAGTACAAGTGGGACTTCACGATCGAGGCGCCCGAGGACTGCGGACCGACCGAGGAGATCTCCCCGACGGTGCAGGTGACCCAGGCGCAGTGCCTGCCGCAGCCGCAGGTGGTCAAGGGGCAGACGCTCGCGCCGGCGTCGATCGCGGTGACCGGCGTCTCGTCGGCCTCCGTGACGGTCACCGGCCCGACCGGCACGGTCGAGGACCTGGACGACCTGGTGCCCGGCAGCTACACGATCACGGTGACGCCGGCGGAGGGGCAGGTCTTCGGATCGCTGGGTGACGGCTGGATCGTCGAGGACGGCGTCGCCAGCCTCGAGGTCGAGATCGTCGAGGTCGCCGACTGCTGGGAGCACGTCGTCGTGACGCCTCCGGCCCCGGAGTACGTCGACCAGTGCGGTACGGAGTCCGACGACGTCCTGCTGCCCGAGGACTCCCTCGAGGGGTCGTGGAAGCTCGGCTCGAAGGTCGACATGGGCGACGGCACGACCCGCTGGCGCGTCGTCTTCACCCCGGCCGAGGGATACGTCCTGGCCGACGAGGGAACGTGGGACAAGGTCGTCGACGGCAAGGCCGTGTGGCTGTTCTTCACCGACAATCGTGACTGCGTCACGGCCGAGCCGCCCGCCGTCCAGCTCGTCTGCGGCATCGGCGCCGAGCAGGCCGTGACGTTCCCCGAGATCGACGGGGTCACCTACTCCATGTGGCAGGCCCCGTCCGGCCTGTACACGATCAAGGCCGAGGTCGACCCGTCGACCCACATCCTGCTCAACGGATCGGCGCAGAACCCGCACGTCAAGTGGTTCAAGCTGGACCTGGGTGCCGCCGAGGAGGAGTGCCCGCCGGAGCCGAAGGAGATCACACCGCCGGCGCCGACGCCCGCCGATCAGTGCGGGACCGAGGTGAACCTCACTGTGGACCTCCCCGAGTCCGACAAGGTGACCTTCACGACCGAGAGCACCGAGACCGGTGTCGTCGTGACCGCGACGCCGAACCCGGGCTACGTCTTCGCCGAGCCCGAGGGGCAGAGCGCCGAGGAGTGGAGCTGGACGTTCACCGACTCGCTCGAGGCATGCGCGGAGCCGACGCTGGCCGGGTCCCTCGCTGCGGGTGAGTGCGTCGCGGACGCCCCGTGGATCAACTACGACGTCCGGCTCACGGACCCGGACGGCCAGAGCGCGGCCACGAGTGCATTCCTCGTCCTGAGCGACGGCACGCACGAGGAGACGCTGCCGCTGGGCGAGCTCGACGCCGACGGCATGCTGTCGGGCCGCACCCTGTGGCCCGGTGCCTCGGTCGCCGACGACGGCGTGACGCCCACCGGCTGGCCGGGCTGGGCCCAGCGCGCCGACGGCACCTGGGTGGAGACCGACGGCAACTACGCCTGGACCCGCGGTGACATCACAGCGACCCTCGTGGTCAACCCGGAGGTGGCCGTCGACCTGGCCTACCCGCCGGCCACGCCGAACTGCGCGGCCGAGCCGCCGCAGACGGACCCGACGCCGGCGCCCTCCGATCCGGTCGACGCGAGCGACGAGCCGAAACCGGACGCAGAGATCGCCTCTGACGGCGACCCGCTCCCGCAGACCGGTTCGGACATCGCACTGGTCGCGATCGGCGCCCTGGTGCTGATCGCTACCGGTGGCGCGTTCCTCTGGCTCCGCCGGCGCGCCTGA	MVAAVAIFLLGAVVALPQAVATNDGVCTTGEGWVKYEYEGGAFVQETGDEELLVEVTETKDGDEPMAVSVTAPDGYLVSEVCVKAGTDKVSEQLSPAVPTVTIDAPEKAAISHFAVKLVVDTWDWNWEYPAPTCEGTLTVTYPDDIPEGQANDVNVKVKNLDTDEVVTINIHNDEGTWTGEQVFDPTSEPEWPGWESWAFVWTQVAGTNYHWKGHVEVGCDEPVEPSFEAEATPAVCVDGETEGGSFTYTVTVGSEHGTRNFQVKDLGDGTGGTAETYYRADGTIGAPGEIVTFATIEAGATATLSLDDLPPGDYRVVSDGSRKVKKQYKWDFTIEAPEDCGPTEEISPTVQVTQAQCLPQPQVVKGQTLAPASIAVTGVSSASVTVTGPTGTVEDLDDLVPGSYTITVTPAEGQVFGSLGDGWIVEDGVASLEVEIVEVADCWEHVVVTPPAPEYVDQCGTESDDVLLPEDSLEGSWKLGSKVDMGDGTTRWRVVFTPAEGYVLADEGTWDKVVDGKAVWLFFTDNRDCVTAEPPAVQLVCGIGAEQAVTFPEIDGVTYSMWQAPSGLYTIKAEVDPSTHILLNGSAQNPHVKWFKLDLGAAEEECPPEPKEITPPAPTPADQCGTEVNLTVDLPESDKVTFTTESTETGVVVTATPNPGYVFAEPEGQSAEEWSWTFTDSLEACAEPTLAGSLAAGECVADAPWINYDVRLTDPDGQSAATSAFLVLSDGTHEETLPLGELDADGMLSGRTLWPGASVADDGVTPTGWPGWAQRADGTWVETDGNYAWTRGDITATLVVNPEVAVDLAYPPATPNCAAEPPQTDPTPAPSDPVDASDEPKPDAEIASDGDPLPQTGSDIALVAIGALVLIATGGAFLWLRRRA				NA	NA	NA	NA	NA
AK001_01818	2178			Beta-galactosidase	ATGACCAGCACGGACCCCCCGCCGCGTCAGCCGAAACGGGTCGGGCACGAGGACCCGCCCTCGGATCGTTCCATTTTTGAATCGATTTATGGCACACTGGTCAGCATGCAACGACGCGTGACTCCTCCCCCCTTCGACCCCGCCGCCGTCCGCCCGTGGAACGCGCGGGTCGACGGCCTGGGCTACGGCGGGGACTACAACCCGGAGCAGTGGCCCGACGACGTCCGGCAGGACGACCTGCGCCTGATGCGCGAGGCCGGGGTCAACATCCTCAGCGTCGCGATCTTCTCGTGGGCCACGATCGAGCCGCGCGAGGGCGAGCTGGACTGGACCTGGCTCGACGAGACCATGGACCGCCTGCACGCGAACGGTGTCCAGGTGGCGCTGGCGACCGCCACGGCCTCGCCGCCGCCGTGGCTCACCCGCAAGCACCCGGAGATCCTGCCGCGCCGCGCCGACGGGACCGTGCTGCACCAGGGCGCCCGTCAGGCCTACGCCGTCACGCACCCGCTGCACCGCGAGTACGCCCTGCGCATGGCGACCCGCATGGCCGAACGGTACGGCGAGCACCCGGCGCTGGCGCTGTGGCACGTCGACAACGAGATCGGGTGCCACGTGCCGCGCGACTACTCGGACAGCGCGGCGGCGGCGTTCCGCGTCTGGCTCGCCGAGCGCTACGGGACCGTCGACGCCCTCAACGAGGCCTGGGGCACGGCCTTCTGGTCGCAGCGCTACGCGACCTTCGAGGACGTCCTGCCCCCGCTGGTGGCCCCGATGTCCAGCAACCCCACCCAGCAGCTCGACTTCGACCGGTTCAGCTCCGACGCGCTGCTGGGCTACTACCGGGACCTGCGCGACACGCTGCGCGAGATCACCCCGCACGTGCCCACGACGACGAACCTCATGACGACGTCCACCACCAAGGGCATGGACTACTACTCGTGGGCCGACGACCTCGACGTCGTGGCGAACGACCACTACACGATCGCCGCCGACCGCGACCGGCACGTCGAGCTGGCCCTGTCGGCAGACCTGGCCCGGGGCGTGGCCGGCGGCGACCCGTGGATCCTCATGGAGCACTCGACGTCGGCGGTCAACTGGCAGCACCGCAACCGCAGCAAGCTCCCCGGCGAGATGCTGCGCAACTCGTTGCAGCACGTCGCCCGCGGCGCCGACTCCGTGATGTTCTTCCAGTGGCGCGCCTCTCGGGCCGGGGCCGAGAAGTTCCACTCGGCGATGGTCCCGCACGCGGGCGAGGACACCGACGTCTGGCGCAACACGGTCGAGCTCGGCCAGGTGCTGCGCCGGCTCGGCGAGGTCCGCGGGTCCCGCGTGCGCTCCCGCGCCGCGATCGTCGTCGACTACCCCGCCTGGTGGGCGGCCGAGCTCGACTCCCACCCGACGCAGGACCTCGACTACATGGCCGAGGTGCGGTCCTGGTACGCCGCGCTCTGGCAGCACGGCGTCACGGTCGACCTGGTGAGCCCCCGCAGCGACCTCGACGGCTACGAGCTGGTCGTCGTCCCGACGCTCTACCTGGTCGACGACGCCGGGGCCGACGCCCTCGCCGCGGCCGCCGAGCAGGGTGCCACCGTGGTCGTCACGTTCTTCTCCGGCATCGTCGACCCGCACGACCAGGTGCGGCTCGGCGGCTACCCCGGGGCGTTCCGCGACCTGCTCGGCGTCCGCACCGAGGAGTTCTACCCCCTCCAGGTCGACGAGCGACTCCAGGTCTCCGGCAAGGCCGTCGACGGCGAGGCCCGCGCCGACCTGTGGAGCGAGAAGACCCACCTCGCCCCGGGCACGGAGGCGGTCGCCGCCTACGACGACGGCGCGCTCGCCGGACGGCCCGCGGTCACCCGTCGAGCCGTGGGGACCGGCACCGCCTGGTACGTCGGGACCCGCCTGGACGAGGCCGGGACGGCGGCGCTGGCCGGACGGCTCGCCGAGGAGGCCGGGGTGCTGCCCGACGTCGCGGCGCCCGCCGGCGTCGAGGTCGTCCACCGGTACGCCGACGACGGGCGGACCTCCTGGCTCTTCGCGATCAACCACGGCGACGACGAGGCCGTGCTCGACGGCGTCTCGGGTGCGGAGCTGCTGACCGGCGGGACGGCCGACGGCTCGCTGACCGTGCCGGGCGGCGCGGTGCGGGTGGTCCGGCAGACGTCCGGCGCCTGA	MTSTDPPPRQPKRVGHEDPPSDRSIFESIYGTLVSMQRRVTPPPFDPAAVRPWNARVDGLGYGGDYNPEQWPDDVRQDDLRLMREAGVNILSVAIFSWATIEPREGELDWTWLDETMDRLHANGVQVALATATASPPPWLTRKHPEILPRRADGTVLHQGARQAYAVTHPLHREYALRMATRMAERYGEHPALALWHVDNEIGCHVPRDYSDSAAAAFRVWLAERYGTVDALNEAWGTAFWSQRYATFEDVLPPLVAPMSSNPTQQLDFDRFSSDALLGYYRDLRDTLREITPHVPTTTNLMTTSTTKGMDYYSWADDLDVVANDHYTIAADRDRHVELALSADLARGVAGGDPWILMEHSTSAVNWQHRNRSKLPGEMLRNSLQHVARGADSVMFFQWRASRAGAEKFHSAMVPHAGEDTDVWRNTVELGQVLRRLGEVRGSRVRSRAAIVVDYPAWWAAELDSHPTQDLDYMAEVRSWYAALWQHGVTVDLVSPRSDLDGYELVVVPTLYLVDDAGADALAAAAEQGATVVVTFFSGIVDPHDQVRLGGYPGAFRDLLGVRTEEFYPLQVDERLQVSGKAVDGEARADLWSEKTHLAPGTEAVAAYDDGALAGRPAVTRRAVGTGTAWYVGTRLDEAGTAALAGRLAEEAGVLPDVAAPAGVEVVHRYADDGRTSWLFAINHGDDEAVLDGVSGAELLTGGTADGSLTVPGGAVRVVRQTSGA	PGPT0017815_563	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308	NA	NA
AK001_01819	741			hypothetical protein	GTGACGGCTCCGCTCTTCCCGGGCGGGGTCGCCGTCAGCCACCTGCAGGTCTACGACTGGCCCGCCGACGACGCTCCGCAGGGCAGCGGCTCGCCGCACCTGCACACCACCTCCACCGAGGCCTACGTGACGCTGGGCGGCCGCGGCCGGGTCGAGACGCTCGGCCCCGAGGGGTACGCGGTGCACGACCTGGCACCGGGCCGGATCATCTGGTTCGGCCCCGGGGTGATCCACCGGGCGGTGAACCTCGGCGGGCTGGAGGTGCTGGTCGTGATGTCCAACGCCGGCCTGCCGGAGGCCGGGGACGCCGTCATCACCTTCCCGGCCGACGTCGTCGCCGACCCGGAGCGGTACGCCGCGGCGGCCGCCCTGCCGCGGGTGGACGACGGCGCCACGGACGCGCAGGTCGCCGCGGCGGCCCGCGCGCGCCGAGACCTGGCGCTCGAGGGCTACGCCGCGCTGCGTGCCGCCGTCGAGCGGGACGGACCGTCGGCCCTGGAACCGCTGCACGCGGCGGCCGCGGACCTCGTCGCGCCCCGGACGAGACGGTGGCGCGAGATCTGGGAGTCGTCGGTCGGGCGGGCCGCCGGGCAGACGGACTCCGCCCTCGAGGCGCTGGCCGCGGCGTCGGCGGCCACGCTCGCCGACGGGCGGGTCACGGCGCGCGACGCCCGGCCGGGGCCGCGTCGCTACGGCATGTGCGGGCGTCTGCGGACCTGGCCGCTCACCCCGTCGGACTGA	MTAPLFPGGVAVSHLQVYDWPADDAPQGSGSPHLHTTSTEAYVTLGGRGRVETLGPEGYAVHDLAPGRIIWFGPGVIHRAVNLGGLEVLVVMSNAGLPEAGDAVITFPADVVADPERYAAAAALPRVDDGATDAQVAAAARARRDLALEGYAALRAAVERDGPSALEPLHAAAADLVAPRTRRWREIWESSVGRAAGQTDSALEALAAASAATLADGRVTARDARPGPRRYGMCGRLRTWPLTPSD				NA	NA	NA	NA	NA
AK001_01820	1008			hypothetical protein	ATGGCAGTCACGCTGAACTCCGACGGCGGCGCGATGACCGGCTCGCGCGACGGCGTCGACCTGTTCACCTACGTCTACCGTCCGCACGACGTCCCCTACGAGAGCCCCCGGCCCTACCTGCACCCGCTGCGCACCCGCGGCGGCGACGTCGTGTCCGCCTACCGCCCGTGGGACCACGTCTGGCACAAGGGCATCGCCTGGTCGTTGCCGCACGTGGGGCCCTGGAACTTCTGGGGCGGGCCGAACTACGTCCGCGAGCAGGGCACCTACGTCGACCTCGACAACGACGGCTCGATGGAGCACGAGCAGTTCACCGCCCTGGGGCCGTGCGGCTTCACCGAGGAGCTCTCCTGGCGCACGCCCCCGGCCGCGGACGGGACGCCCGGCGAGGTCGTCGTGCGCGAGGAGCGCACGGTGCAGGTCGTGGTGCCCGACGACGCACCGGACGCCTGGGTGCTGACCTTCCGGTCGGTCATGACGAACGTCTCCGCCGGACCGCTCGACATCGGCAGCCCCACCACGAACGGTCGCGAGAACGCCGGCTACGGCGGCCTGTTCTGGCGCGGGCCGCGCTCCTTCACCGAGGGGCAGGTCCTGGTGCCCACCGACGACGGCGGAGCGGCCGCGGCCGACGCCGAGGACGTCCGCGGGCTGCACGCCGAGTGGCTGGGCTTCGTGGGCCGGCACGACGGCGAGGCGCCGAGCGCCGAGGGCGGCTCGCGGTCCTCCACGGTCGTCATGGTCGACCCCGGGACCAACCCGGGTGGCACGCCGCAGTGGTTCGTGCGCTCGGTGCCCTTCGCGTGCGTGTGCCCGGCACCGTTCTTCAGCCAGGAGGTGCCGTTCGCCGCGGGGCAGACCCTCACCTTCGACTACGCCGTGGTCGTCGCCGACGGCGCGGCGGACGGCGCGCGGGGTTCCGCGCTGGCCGCGCTCGGCCGGCACGTGCTGGCCGGCGAGGGCGCGGGGCTCGAGACCGGTCACGTGACGCCGGCGGGAGCCCGGTGA	MAVTLNSDGGAMTGSRDGVDLFTYVYRPHDVPYESPRPYLHPLRTRGGDVVSAYRPWDHVWHKGIAWSLPHVGPWNFWGGPNYVREQGTYVDLDNDGSMEHEQFTALGPCGFTEELSWRTPPAADGTPGEVVVREERTVQVVVPDDAPDAWVLTFRSVMTNVSAGPLDIGSPTTNGRENAGYGGLFWRGPRSFTEGQVLVPTDDGGAAAADAEDVRGLHAEWLGFVGRHDGEAPSAEGGSRSSTVVMVDPGTNPGGTPQWFVRSVPFACVCPAPFFSQEVPFAAGQTLTFDYAVVVADGAADGARGSALAALGRHVLAGEGAGLETGHVTPAGAR				NA	NA	NA	NA	NA
AK001_01821	1143	iolG_3		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGAAGGTCGCCATCCTGGGCACCGGCGCGATCGCCCACGCGCACGCCGAGGCCGTGAACGCCCTGCCCCAGCACGCCGGCCTCGAGGCCGTCGAGCTCGCCGCCGCTGTCGACATCGACGCCGTGCGCGCCGAGGAGTTCGCCACGAAGCACGGCATCCCCCGGCACGGCACGGATCTCGACGCCCTCCTCGCCGCGGGCGACGTCGACGTGCTGCACGTCTGCACCCCGCCGTCGCTGCACCTCGAGCAGGCCCGCGCCGCGCTGGCCGCCGGCGTGCACGTGGTCGTGGAGAAGCCGGCCGTGCTCTCGCTCGCCGAGATCGACGCCCTGGCCGCGGCCGAGGAGCAGGCCGACGGCGCCACCGTGACCCAGATCGTCCAGCACCGGTTCGGCCCCGGCGCCGTGCGGCTGCGCCGTCTGCTCGCCGAGGGCACGCTCGGCCGGGCGCTGGTGGCGCAGTGCGACACGCTGTGGTTCCGTCCGCCCGAGTACTTCGACGTGCCCTGGCGCGGCCGCTTCGACACCGAGGGCGGAGGCCCCACGATGGGTCACGGCATCCACCAGTTCGACGTGATGCTGTCCGTGCTGGGGGAGTGGGACGAGGTCCGGGCGATGGCCGGCCGGCTGGCCCGCCACGTCGACACCGAGGACGTCTCCATGGCGATGGTCCGCTTCGCCGACGGCGCCATGGCGAGCATCACCAACTCGCTGCTCTCCCCGCGCCAGACCTCGCAGCTGCGCTTCGACACCGAGGCCGCCACGATCGAGCTCAGCCACCTGTACGGGTACGACGACAGCCACTGGACGGTCACCCCCGCCCCGGGTCGCGAGGACGTCGCCACGCGCTGGGCCGACGACGTCGCGGCATCGGCCGACGGGGCGATCGACGAGGGCCGCTCCGGCCACCTCGGCCAGCTCGTGCCGACCTACCGCGCGCTCGTGGCGGGCCAGGCCCCGCCCGTGGGCGTCGCGGACGTGCGCGGCACGCTCGAGCTCGCCGCCGCGATCTACAAGTCGGCCTTCACCGGCGCCCCCGTGGTCCGCGGCGAGGTCTCCCCCGGGGACCCGTTCTACGAGACCATGGCAGGGACCGGGGCCCCGTGGCCCCCGCTGAAGGACACCACCGAGGAGACCTCCTGA	MKVAILGTGAIAHAHAEAVNALPQHAGLEAVELAAAVDIDAVRAEEFATKHGIPRHGTDLDALLAAGDVDVLHVCTPPSLHLEQARAALAAGVHVVVEKPAVLSLAEIDALAAAEEQADGATVTQIVQHRFGPGAVRLRRLLAEGTLGRALVAQCDTLWFRPPEYFDVPWRGRFDTEGGGPTMGHGIHQFDVMLSVLGEWDEVRAMAGRLARHVDTEDVSMAMVRFADGAMASITNSLLSPRQTSQLRFDTEAATIELSHLYGYDDSHWTVTPAPGREDVATRWADDVAASADGAIDEGRSGHLGQLVPTYRALVAGQAPPVGVADVRGTLELAAAIYKSAFTGAPVVRGEVSPGDPFYETMAGTGAPWPPLKDTTEETS				NA	NA	NA	NA	NA
AK001_01822	645			hypothetical protein	ATGGCACGCCGTCCTGACGCTCGGGCCTCCCGGTCTTCCGGCCGCGGGGGCCCGAGCGGCTTCTACCGCAGCATCCAGCTCTTCGGCGAGGTGGCCCTCGTGGGCGTCCTCGTCGCGGTCGGCAGCCTCCTGCTCGTCACGCTGGTGCCCTCGCTCGCCGCCGGCGTCGCCTACCTGCGCCGGGACGTGGTGGGCGCCGACACCCGGCTCGCGCGCTACTGGCGCGAGTGGGCCGCCGCCACGCGCGCGCTGTGGCCCCTCGGCCTGGCGGTCGGGGCCCTCGCGGTCCTCCTGGTCGGCGACTGGCAGCTCGCGACGTCGGGCCTGCTGCCCGGCGGGGAGATCGTCGCGCTCGTGGTGGCGCTCTTCGCGGCGGGTGCGATCGTCGTCGTGCTGCGGGCCACGGGCGCGTGGTCCGACGACGAGGGCGAGCCCGACCCGGCGGCGACCACCCGCCGAGCCCTGTCGGTCGGCAGCGACCGCGCCGTCGAGGACCTGTCCGGCTCGGCGCTGCTGCTGGGAGCGGTCGTCATGGCCGCCGTCCTGGTCTGGATGCTGCTGCCGCTGGTGCTCGTCGTCGGCGGTCTGCTGGTGCTGGCCGTCGTCGGGGTCGAGAGGCGCCGCCGCATGCCGTCCGTCCGCTGA	MARRPDARASRSSGRGGPSGFYRSIQLFGEVALVGVLVAVGSLLLVTLVPSLAAGVAYLRRDVVGADTRLARYWREWAAATRALWPLGLAVGALAVLLVGDWQLATSGLLPGGEIVALVVALFAAGAIVVVLRATGAWSDDEGEPDPAATTRRALSVGSDRAVEDLSGSALLLGAVVMAAVLVWMLLPLVLVVGGLLVLAVVGVERRRRMPSVR				NA	NA	NA	NA	NA
AK001_01823	918	ngcG_3	COG0395	Diacetylchitobiose uptake system permease protein NgcG	ATGACGACTCTCACCGAAACCCCTGCCCCGCAGACCCCTCCGGTCGACCACGAGGCGCTGGCCCGCCGGGCCGCGGCCCGCAACAAGCGTCGCGTCAAGTCGGTGATCTTCCACCTCGTCGCGGTCGGGGCCACGATCGTGGTCCTGTACCCGGCGGCGTGGATGGTCTTCGCCTCGATGAAGCCGAACTCGGACATCATCGGCAACACCCAGCTGCTGCCGGACGTGTGGACGATGGAGCACTACACCACCGCCCTGGCGGGCATCGGTGGGGTGTCGTTCTGGACGTTCTTCAACAACTCGCTGCTGCTGGCGGTGCTGTCCGTCGTCGGTACGGTGCTGTCCTCGACGATCGCGGCCTACGCGTTCGCCCGGATCAGCTTCCCCGGACGCGGGCCGATGTTCGCGGTCATGATCGGCACGCTGTTGCTGCCGTTCCACGTCACGATCATCCCGCAGTACATCCTGTTCAACAATCTGGGTCTGGTGAACACCTACCTGCCCCTGCTGCTGCCGAAGTTCCTGGCGGCCGAGGCGTTCTTCGTGTTCCTCATGATCCAGTTCATCCGCGGCATCCCGCGGTCGCTGGACGAGGCCGCCCGCATCGACGGTTGCGGTCACGGGCGCATCTTCTTCCGCATCATCCTGCCGCTGATGCGCCCGGCGATCGTGACCAGCTCGATCTTCACCTTCATCTGGTCCTGGAACGACTTCCTCGGGCCGCTGCTGTACCTGAAGGACCCGAGCCTGTACACGATGCCGATCGCGCTGCGCCAGTACGTCGACCAGACGACCGTCTCGGACTACGGTGCACAGATGGCCATGGCCGTCCTCGCACTGCTGCCGGTGATGATCTTCTTCGTCGTCTTCCAGCGCTTCCTCATCAACGGCGTCGCCACGCAGGGCATCAAGGGCTGA	MTTLTETPAPQTPPVDHEALARRAAARNKRRVKSVIFHLVAVGATIVVLYPAAWMVFASMKPNSDIIGNTQLLPDVWTMEHYTTALAGIGGVSFWTFFNNSLLLAVLSVVGTVLSSTIAAYAFARISFPGRGPMFAVMIGTLLLPFHVTIIPQYILFNNLGLVNTYLPLLLPKFLAAEAFFVFLMIQFIRGIPRSLDEAARIDGCGHGRIFFRIILPLMRPAIVTSSIFTFIWSWNDFLGPLLYLKDPSLYTMPIALRQYVDQTTVSDYGAQMAMAVLALLPVMIFFVVFQRFLINGVATQGIKG	PGPT0016540_686	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_01824	1002	lacF_5		Lactose transport system permease protein LacF	ATGGCTTCAATCGATCCTGGCGCACCCGTCGCCGCACCGGGTCAGCCGGTACCCGCGCAGCACCTGCAGCGGACCGACGCCGAGACCCCGCTGCCCCCGCAGAAGGGCAAGCGCAAGTACAAGCCGGAAGACATCCGGTCCGGCTACCTCTTCCTGTCTCCGTGGATCATCGGATTCCTCGGTCTGACGGCCTTTCCGATGCTCGCCTCGTTGTACCTGGCGTTCACGGACTACGACCTCTTCACGGCGCCCGAGTGGGTCGGTTTCGAGAACTTCGTCGACCTGTTCAACGACCCGCGGTTCATCCAGTCCGCGCAGGTGACGGCCGGGTACGTGCTGCTGGGCACGCCGATCAAGCTCGCCGCGGCGCTGGCGGTGGCGATGCTGCTGAACATGAAGCATCGCGGCCAGGGTGCCTACCGGTCGATCTTCTACGCGCCGTCGCTGATCGGCGCCTCGGTGTCCATCGCCATCGTGTGGAAGGTGATGTTCATCGACGACGGGATCGTCGACCGTATCCAGCAGGCGGTCGGGATCGACGTCGGCGGCTGGGTGGGTAACCCCACGTTCTCGCTGCCGATGCTGATCCTGCTGGGGGTGTGGGGCTTCGGTGCCCCGATGGTCATCTTCCTGGCGGGTCTGAAGCAGATCCCCACCGAGCTGTACGAGGCGGCCGAGTGCGACGGCGCCGGCCCGATCCGCAAGTTCCGCAACATCACGCTGCCGATGCTGAGCCCGGTGCTGTTCTTCAACCTGCTGCTCGAGACCATCGCCGCGTTCCAGGTCTTCAGCTCGGCCTACATCATCTCCGGCGGGACCGGTGGGCCGGCGGGCTCGACCATGTTCTACACGCTGTACCTGTACCTGCGCGGGTTCCAGGACTTCCAGATGGGCTACGCCTCGGCGATGGCCTGGATCCTGGTCTCGGTGATCGCGGTCATCACCGTGATCCTGTTCCGCTCGTCCAAGGGTTGGGTCCACTACACGGGAGACGAACGATGA	MASIDPGAPVAAPGQPVPAQHLQRTDAETPLPPQKGKRKYKPEDIRSGYLFLSPWIIGFLGLTAFPMLASLYLAFTDYDLFTAPEWVGFENFVDLFNDPRFIQSAQVTAGYVLLGTPIKLAAALAVAMLLNMKHRGQGAYRSIFYAPSLIGASVSIAIVWKVMFIDDGIVDRIQQAVGIDVGGWVGNPTFSLPMLILLGVWGFGAPMVIFLAGLKQIPTELYEAAECDGAGPIRKFRNITLPMLSPVLFFNLLLETIAAFQVFSSAYIISGGTGGPAGSTMFYTLYLYLRGFQDFQMGYASAMAWILVSVIAVITVILFRSSKGWVHYTGDER	PGPT0016535_2340	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_01825	1314	yesO_2	COG1653	Putative ABC transporter substrate-binding protein YesO	ATGAGGATCACGCGTAAGGCCGCCGGTGCGGCCGCCGCGACCGCTGCGGTCACTCTCGTCCTGACCGCGTGCAGCGGTGGCGACACCGAGTCCGGTGACGGTGGTGGCGACGCCGAGGGCGGCGACGTCACGCTGACCGTCGCCTGGTGGGGCAACGACGACCGTGCCGCGCGGTACGAGGAGTCGATCGACCTCTTCGAGGAGGCGAACCCCAACATCACCGTCCAGACCCAGTTCCAGGACTGGGAGAACTACTGGACCGCCCGCAACACGGAGGCCGCCGGTCAGTCGCTGCCCGACGTGTTCCAGATGGACCTGTCCTACCTGCGCCAGTACGGCGGCACCGGTCAGCTCGCCGACCTGTCCGAGTACGTCGGCAGCGAGATCGACACCTCCGGTTTCGAGGACGCGCTGCTGTCCTCCGGCACCATCGAGGGCGCCCAGTACGGCATCCCGACCTCGCAGAACACCCTCGCGCTGTTCTACAACCAGGACGTGCTCGACACGATCGGCGTCGACCCGCTCGAGCCGGGCTACACCTGGGACGACTTCAACGCCTTCATCGCCGAGGCCTCCGAGGCCGGCGCGGGCGAGGACCCGGCCATCTACGGCTCCGGTGACTACACCGGGACCTTCTGGTTCTTCCTGCAGTGGTTCCTGCAGCAGGGCGAGCAGCCGTTCACCGAGGACGGGCAGCTCAACTTCGACGAGGCCGCCGTCACCGAGTTCCTCAACCTCGCCTCCGAGCTGCGCGAGGCCGGTCAGCTCTTCCCGACCGAGCGCGCCGTGCAGCTCGCCCCGCTGGGCGGGTTCACCTCGAACGAGGCCGCTGCCGAGGCCAGCTGGGACAACTTCCTGGCCGGCTACATCTCCGACGCGGGCACCGAGAACATCCACATGCTGCCGATGCCGGCGGGTGACAACGGGCCCCAGCAGTTCTGGAAGCCGTCGATGCTGCTGTCCTCGGGCGCCAACTCCGAGCACCCGGCCGAGGCCGCCGAGCTCATCAGCTTCCTGGTCAACGACCCGGAGGTCGGCGAGATCTTCGGCACCTCGAAGGGCGTGCCGGCCGTGGCCGCCCAGCGTGACGCCATGAACGTCGAGGAGGGCTCGGTCGACGCCACCGTCCTCGAGTACGAGGAGATGGTGGCTCCCGACGTCACCGAGTCGGCCCCGCTGCCGGTCGAGGGCTTCGGCTCCATCGAGGCCGAGTGGATGCGCCTGGCCGAGGAGCTCGGCTACGGCAACATCACGGTCGACGAGTTCGTCGAGCAGTGGTTCGCCTTCGCCAACGACACCGTCGGCCAGTCCTGA	MRITRKAAGAAAATAAVTLVLTACSGGDTESGDGGGDAEGGDVTLTVAWWGNDDRAARYEESIDLFEEANPNITVQTQFQDWENYWTARNTEAAGQSLPDVFQMDLSYLRQYGGTGQLADLSEYVGSEIDTSGFEDALLSSGTIEGAQYGIPTSQNTLALFYNQDVLDTIGVDPLEPGYTWDDFNAFIAEASEAGAGEDPAIYGSGDYTGTFWFFLQWFLQQGEQPFTEDGQLNFDEAAVTEFLNLASELREAGQLFPTERAVQLAPLGGFTSNEAAAEASWDNFLAGYISDAGTENIHMLPMPAGDNGPQQFWKPSMLLSSGANSEHPAEAAELISFLVNDPEVGEIFGTSKGVPAVAAQRDAMNVEEGSVDATVLEYEEMVAPDVTESAPLPVEGFGSIEAEWMRLAEELGYGNITVDEFVEQWFAFANDTVGQS	PGPT0016545_4676	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_01826	1530	por	COG0246	Polyol:NADP oxidoreductase	GTGACCGACCGACTGCACCGTGACCACCTGCCCGCCGGGACCCAGCCGCCGGTGACGCCCGAGACCGTCGGCATCGTGCACCTCGGCATCGGGGCCTTCCACCGCGCGCACCAGGCGGTCTGCACCGAGCAGGCCGCGCGCGCCACGGGGGACCGGCGCTGGGGGATCCTCGGCGTCACGCAGCGGTCGGCACGGGTGCGCGACCAGCTCCGACCCCAGGGCGGGGTGTACACCGTCCTGACCGCCGGGGCGCACGAGAGCTCGATCGACCTGGTGGGCTCGGTGCTCGACGTCGCCTGGCCGGCCGAGGAGACCGGGCGGGTGCTGTCGACGATCGCCGCGCCCACCACCCACCTGGTCACACTGACGGTCACCGAGAAGGGGTACTGCCGCGACGGCGCGGGTGCGCTCGACCGGGCGCAGGTGGACGGCGACCTGGCGGCGCTCGCCGCCGAGACCTCTGCCGGGGCCGACGACGGGACCGCGGCCGCCGACGTCGTCCCGGGTGCGAGCGCGATCGGGCTGCTCGTCCGCGGGCTGGCGGCACGGCAGCGGTCCGCCGCAGCCGCGGGGGAGCGGCGGCCGCTGACCGTGCTCACCTGCGACAACATGGTGGACAACGGTCGGGTGCTGGCCCGGCTCGTGGGCGAGGCCGTCGACGCCGCGCTGCCCGGCGCCGAGGGCGACGACCTGCGGGACTGGCTCGCGAGCGACGTGACCTTCCCCTGCTCGATGGTCGACCGGATCGTGCCGGCTACGACGCCGGGGCAGCGGGACGCGGTCGAGGCCGAGCTGAGGGTGCGCGACGAAGGCCTCGTCGTGGGGGAGCCGTTCTCCCAGTGGGTGATCGAGGACCGGTTCGCCGGACCGCGCCCGGCCTGGGAGGAGGCCGGGGCCACGCTGACCGACGACGTCTCCGTCTGGGAGCGGGCCAAGCTACGGCTGCTCAACGGCACCCACTCGCTGCTCGCGTACGCGGGTCGCCTCGCCAGGCACACGACGATGGCCGAGGCGGTCCAGGACCCGGCGATCGCGGCCCGGGCACGCCAGCTGCTGTTCGACGACGCCCTGCCGACGCTCACCCCGCCGGCCGGTGCGGACCTGTCCGCCTACGGGGAGTCGCTGCTCGAGCGGTTCGCGAACCCGGCGACCGGGCACACGACGCGGCAGGTGTCGATGGACGGCACCCAGAAGATCCCCTACCGCTGGGGCGACACGATCGCGGCACGGCTGGCCGCCGACCAGGTCCCGCACGGTGCCGCCTACGCGCTGGCCTGCTGGGCGGAGGTCGTCCGGCGCGAGGCCGTCGAGGGCCGGGCGGTGGACGACCCCCGCGGCGAGGAGCTGCAGCGATTGGTCGCCGCCGTGGGCGACGGGTCGGCGGAGCACGCCGACCCGGTCGAGGTGGCGCGCGCCCTGACGGCGCTGCCCGGGCTGCTCCCCGGCGACGCCGCGCAGGACCCGCGGCTGCTCGACGCCGTGGCCGTCGAGGTCGAGGCGCTCGCGGAGCACACGGCCACGATGCGGTGA	MTDRLHRDHLPAGTQPPVTPETVGIVHLGIGAFHRAHQAVCTEQAARATGDRRWGILGVTQRSARVRDQLRPQGGVYTVLTAGAHESSIDLVGSVLDVAWPAEETGRVLSTIAAPTTHLVTLTVTEKGYCRDGAGALDRAQVDGDLAALAAETSAGADDGTAAADVVPGASAIGLLVRGLAARQRSAAAAGERRPLTVLTCDNMVDNGRVLARLVGEAVDAALPGAEGDDLRDWLASDVTFPCSMVDRIVPATTPGQRDAVEAELRVRDEGLVVGEPFSQWVIEDRFAGPRPAWEEAGATLTDDVSVWERAKLRLLNGTHSLLAYAGRLARHTTMAEAVQDPAIAARARQLLFDDALPTLTPPAGADLSAYGESLLERFANPATGHTTRQVSMDGTQKIPYRWGDTIAARLAADQVPHGAAYALACWAEVVRREAVEGRAVDDPRGEELQRLVAAVGDGSAEHADPVEVARALTALPGLLPGDAAQDPRLLDAVAVEVEALAEHTATMR	PGPT0018275_276	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040	NA	NA
AK001_01827	1002	degA_7	COG1609	HTH-type transcriptional regulator DegA	ATGGTCACGGTGCACGACGTCGCCCGGGCGGCCGGCGTGTCCATCTCCACGGTCTCGCGGGCGCTCGCCTCGCCGCAGAAGGTCGCCGCCCCCACGCGCGAACGCGTCGAGGTCGCGGCCCGGGAGCTCGGGTACCGCCCGAACCGGGCCGCCTCCTTCCTCCGCGCCGGCCGGACCGGAGCCCTCGGGCTCGTCGTCCCGGACCTGTCCAACCCCTACTTCGCGGCGGTCGCCAAGGGTGCCCAGGCGCGTGCCCGGGACCACGGCGCCGGGCTCTTCGTCGTCGACACCGAGGAGAACCCGGACCTCGAGGCAGAGGTGCTGAGCTCCCTGGCCCCGCAGACCGACGGCGTCGTGCTCTGCTCGCCCCGCGCCGTCGAGGCCGCGCTCGCCGCGCTCGAGGGGCGGCGGGTCGTGCTCGTCAACCAGGCGGCCGCGGGCGTGCCCGCCGTCGCGGCGGACCACGCCGCCGGGATGCGCCGCGCGCTCGAGCACCTGCGTGCGCTCGGCCACCGCCGCGTCGCGTATGTCGGCGGGCCCGCCGGCTCCTGGAGCGACCGGCGCCGTCGTGCCGGCCTGGCCGCGGCGGCCGAACGGTACGACGACGTCGAGGTCGTCCCGCTCGGCGCGTTCCGGCCGCAGGTCGAGGGCGGGCAGGCCGCCGCCGACCTCGTCGTGGCCTGCGGCGCCACCGCGGTGCTGACCTTCAACGACCTCGTGGCCGTCGGACTCGTCGACCGGCTGCGGGCCCGTGGGCTGGACGTCCCGCGCGACCTCTCCGTCGTCGGCTCGGACGACTCCTACGTCGCCTCCCTCGTCTCCCCACCGCTGACCACGCTGCGGGCCGACCTGCGCGCCCTGGGGCGCGCCGCCGTGGACCTGCTCCTGGCCGACGACGGCGGCGCCCCCGCACCGCTCGACGTCGACCTGGTGGTCCGCTCGTCCACCGCACCACCCGCCACCGTCCCGGAGGACTCCCGTGACCGACCGACTGCACCGTGA	MVTVHDVARAAGVSISTVSRALASPQKVAAPTRERVEVAARELGYRPNRAASFLRAGRTGALGLVVPDLSNPYFAAVAKGAQARARDHGAGLFVVDTEENPDLEAEVLSSLAPQTDGVVLCSPRAVEAALAALEGRRVVLVNQAAAGVPAVAADHAAGMRRALEHLRALGHRRVAYVGGPAGSWSDRRRRAGLAAAAERYDDVEVVPLGAFRPQVEGGQAAADLVVACGATAVLTFNDLVAVGLVDRLRARGLDVPRDLSVVGSDDSYVASLVSPPLTTLRADLRALGRAAVDLLLADDGGAPAPLDVDLVVRSSTAPPATVPEDSRDRPTAP	PGPT0017992_12649	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_01828	1419	uxaC	COG1904	Uronate isomerase	ATGAGTGAGCCGTGGACCCTGCACCCCGACCGGGCCCTGCCCGCGGACCCGACGACGCGGGAGATCGCCCGGGAGATCTACGCCTCGACCCGATCGCTGCCGATCGTGTCGATGCACGGCCACGTGCCGGTGGAGTGGTTCGCGGACGACACGCCGTTCGGCGACCCGGCCCAGCTGTTCGTGGTCCCCGACCACTACCTGACCCGCATGCTCGTCTCCCAGGGCGAGACCCTGCCCCGCCTCGGCGTGGGCTCCACGGGTACCGAGGAGGTCGAGCAGGACCCACGAGAGATCTGGCGGCGGTTCTGCGCCGGATGGAAGCACTTCCGCGGCACGCCGACGCGCTACTGGCTCGAGCACGCGTTCGTCGAGATCTTCGGCGTCACGCAGCGCCCGTCGGCCGAGACCGCCGACGCGATCTACGACCAGGTCGCCGCCCGCCTCGAGTCCCCGGAGTTCCGGCCCCGCGCACTGCTCGACACCTTCGACATCGAGGTCATCGCGACTACCGACCCGGCCTGGGCCTCGCTGGAGGACCACGCCCGGCTCGCCAAGGACGGCTTCGGCGACCGCGTGCTGCCCACCTTCCGTCCCGACCCGCTGCTGCACGTCGACCGGGAGGCCTGGCGCGACGAGATCGACCTGCTCGCCCGGGCCGCCGACGTCGAGGTCGACGGGTACGACGCCTACCTCGAGGCGCTGCGCGTCCAGCGTCGCCGGTTCGTCGAGGCCGGGGCCCGCGCCACCGACCACGGCCACCTGTGGGCCGACACCACCCCGCTGGACGACGGCGAGGCGCGCCGGATCTTCGCGGCCGCGCTGGCCGGCGAGGTCACGGCGGACGAGGCCCGGGCGTTCAGCGGGCACATGCTGTTCGAGATGGCCCGCATGTCCTGCGAGGACGGCCTGGTCATGCAGCTCCACCCGGGCGTGCTGCGCAACCATGCCAGCGCGCCGTTCGCGGCGTTCGGACCGGACAAGGGCTACGACATCCCGGCGGTCACCGAGTTCACCCGTTCGCTGCAGCCGCTGCTGGACGCGTTCGGCCACCACCCCGGCTTCCGGTTCATCGTGTTCACCGTGGACGAGGACGTCTACTCCCGCGAGCTGGCCCCGCTGGCCGGGGTGTACCCAGCGATGAAGCTCGGTGCCCCGTGGTGGTTCCTCGACGCCCCCGACGCGATGCGACGGTTCCGCGAGGCCGCGACCGAGACCGCCGGCTTCAGCAACCTCAGCGGGTTCGTCGACGACACCCGGGCGTTCTGCTCCATCCCCGCCCGGCACGACCTGGCCCGCCGCGTCGACGCGGGCTACCTCGCCCGGCTGGTGGCCGAGCACCGTCTCGAGCAGGACGAGGCCGTCGAGGTCGCCGGGGACCTGGCCTACCGCTCGGCCCTGGCCTCGTACCCGCAGCCGTGA	MSEPWTLHPDRALPADPTTREIAREIYASTRSLPIVSMHGHVPVEWFADDTPFGDPAQLFVVPDHYLTRMLVSQGETLPRLGVGSTGTEEVEQDPREIWRRFCAGWKHFRGTPTRYWLEHAFVEIFGVTQRPSAETADAIYDQVAARLESPEFRPRALLDTFDIEVIATTDPAWASLEDHARLAKDGFGDRVLPTFRPDPLLHVDREAWRDEIDLLARAADVEVDGYDAYLEALRVQRRRFVEAGARATDHGHLWADTTPLDDGEARRIFAAALAGEVTADEARAFSGHMLFEMARMSCEDGLVMQLHPGVLRNHASAPFAAFGPDKGYDIPAVTEFTRSLQPLLDAFGHHPGFRFIVFTVDEDVYSRELAPLAGVYPAMKLGAPWWFLDAPDAMRRFREAATETAGFSNLSGFVDDTRAFCSIPARHDLARRVDAGYLARLVAEHRLEQDEAVEVAGDLAYRSALASYPQP	PGPT0018210_365	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018210-uxaC-K01812	NA	NA
AK001_01829	654			hypothetical protein	GTGACCCCGGACGCGACACCGACCGCCCTGCGGCTCCTGGTCGTCGGGATCCTGTTCGCGCTCGCCGTGTCACCCAGCGTGCTGCTGGTCGGCTTCCTGGGGTCCGGGGCCGCAGCGGCTGCCCTGGCCGCGCTCGGGCTGCTCTTCGTCGGCCCGGCGTTCTCGGCGGCGCTCTTCGCCCTCGGCGACAAGGCGCAGGACGACGGGCTCGGGCCGGCGGCGGCCTTCGGGCGGGGCTACCGGCTCAACGTGGTCGACGCGCTCACCCTCTGGGTGCCGACCGTCCTGGCGCTCGCGGTGCTGGCCTTCACGGTCGTCGACGCGGCCGGCACGGCGCCCGCCTGGGCGGTCGGTGTCGCGATCGGCATCGGCGTGCTCGTCCTGCTGTGGCTCGTGCAGAGCACGGTGATCGCGTCCTTCTTCGCCTTCCGGGCCCGGGACACCGCCCGGCTCGGCCTGTACTTCCTCGGGCGGCTGCCGCGCTCGACCCTCGTCGTCCTCGTCCTGATCGTGCTCGCGGCCGCCGTCGGGTGGCTGATGTCCCCGGCGCTGCTCGCGCTGCTCGGCGTGCTGTGGGTCGCCGGCGTGCTGCGCGCGGACCGTCCCGTGCTCGCCGAGACCCGGCAGCGCTTCGTGCGGGGCGACCCGGCCTGA	MTPDATPTALRLLVVGILFALAVSPSVLLVGFLGSGAAAAALAALGLLFVGPAFSAALFALGDKAQDDGLGPAAAFGRGYRLNVVDALTLWVPTVLALAVLAFTVVDAAGTAPAWAVGVAIGIGVLVLLWLVQSTVIASFFAFRARDTARLGLYFLGRLPRSTLVVLVLIVLAAAVGWLMSPALLALLGVLWVAGVLRADRPVLAETRQRFVRGDPA				NA	NA	NA	NA	NA
AK001_01830	1107	kdgK_1		2-dehydro-3-deoxygluconokinase	ATGACCAACCCGTCCATCACCACCCGCCCCGCCGCCGAGTGCCGCTACGACGTCGTCGCCCTCGGAGAGGTCATGCTGCGCCTCGACCCGGGCGAGCGGCGCGTGCGCACCACCCGGAGCTTCGACGTCTGGGAGGGCGGCGGCGAGTACAACGTCGCGCGCGGTCTGCGCCGGTGCTTCGGCCTGCGCGGCGCGATCGTCACGGCGCTCGCGGACAACGAGGTCGGTCGACTCGTCGAGGACTGCATGCTCACCGGCGGCCTGGACACCTCCTGGGTGCAGTGGCGCGACTTCGACGGCATCGGCCGCGAGGTCCGCAACGGGCTGAACTTCACCGAGCGCGGGTTCGGCGTGCGCGGGGCGATCGGCACCAGCGACCGCGGGCACACCGCCACCTCGCAGATGCGGCCCGACGACGTCGACTGGGACGCGCTGTTCGGCTCCGGCGTGCGCTGGCTGCACACGGGCGGCATCTTTGCGGCGCTGTCGGAGTCCACCGCTGAGGTCGCCGAGGCCGCGATGGCCGCCGCCCGCCGGCACGGCACGATCGTGTCCTACGACCTGAACTACCGGCCCTCCCTGTGGAAGGGCATCGGCGGGGTCGAGCGGGCCCGCGAGGTGAACCGGCGCCTGGCCGAGCACGTCGACGTGATGATCGGCAACGAGGAGGACTTCACCGCGTCGCTCGGCTTCGAGGTCGAGGGCGTCGACGAGGACCTCACCGACCTGGACACGGGCGCCTTCCGGGCCATGATCAAGACCGCCGCGGCCGAGTACCCGAACTTCCAGGCGATCGCCACGACCCTGCGCGGCGTGAAGTCCGCGTCCGTCAACGACTGGGGCGCGATCGCGTGGTCGCGTGCCGAGGGCTTCGCCGAGGCGACCCACCGGTCCGACCTGGAGATCCTGGACCGCGTCGGCGGAGGGGACTCGTTCGCCTCGGGCCTGGCCTACGGCCTGATGGAGCTGGGTTCCCTGGCCGAGGCCGTCGAGTACGGGGCCGCGCACGGGGCGCTGGCCATGACGACCCCGGGCGACACGACGACGGCGACCCTCGCCGAGGTCGCCAAGCTCGCCTCGGGCGGCAGCGCGCGCGTCCAGCGCTGA	MTNPSITTRPAAECRYDVVALGEVMLRLDPGERRVRTTRSFDVWEGGGEYNVARGLRRCFGLRGAIVTALADNEVGRLVEDCMLTGGLDTSWVQWRDFDGIGREVRNGLNFTERGFGVRGAIGTSDRGHTATSQMRPDDVDWDALFGSGVRWLHTGGIFAALSESTAEVAEAAMAAARRHGTIVSYDLNYRPSLWKGIGGVERAREVNRRLAEHVDVMIGNEEDFTASLGFEVEGVDEDLTDLDTGAFRAMIKTAAAEYPNFQAIATTLRGVKSASVNDWGAIAWSRAEGFAEATHRSDLEILDRVGGGDSFASGLAYGLMELGSLAEAVEYGAAHGALAMTTPGDTTTATLAEVAKLASGGSARVQR	PGPT0018060_91	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874	NA	NA
AK001_01831	654	eda	COG0800	Putative KHG/KDPG aldolase	ATGTCAGTCGATGACGACACCGTGCTGAAGACCCTCGCCGCGCACCGGCTCGTCCCCGTGGTCGTGGTCGACGGCGCCCACCAGGGCCTCGCCCTCGCCGACGCGCTCGTCGCCGGCGGCCTCCCGGTCGCCGAGATCACCCTGCGTACCGCCGGCGGCCTCGACGCCGTCCGTGCCGTCGCCCAGCAGCGCCCCGACGTCGTCGTCGGCGCCGGGACCGTGACCACCGCCGACCAGGTCGACGCCGTCGTCGACGCCGGGGCCCGCTACATCGTCTCGCCGGGCCTGTCCGAGGCCGTCGTGCGCCGCGCGCAGCACCACGGCGTGCCCGTGCTGCCCGGCGTGGCCACCGCGACGGAGATCATGACCGCCCTCGACCTCGGGGTCTCGACGGTCAAGCTGTTCCCCGCCTCCGTCGTCGGCGGCCCGGCCGCGCTCAAGGCGCTCGCCGCCCCGTTCGGCGACCTGCGGTTCGTGCCCACCGGCGGCGTGAGCGCCGAGAACCTGCCCGACTACCTGGCCCTGCCGCCCGTGCTCGCCGTCGGCGGCTCCTGGATGGTCGCCAAGTCCCTCGTGGACGCCGGCGAGTGGGACGAGATCACCCGCCGCACCGCCGACGCCGTGGCGCTGACCGCACCGACGAAGGAGAGCTGA	MSVDDDTVLKTLAAHRLVPVVVVDGAHQGLALADALVAGGLPVAEITLRTAGGLDAVRAVAQQRPDVVVGAGTVTTADQVDAVVDAGARYIVSPGLSEAVVRRAQHHGVPVLPGVATATEIMTALDLGVSTVKLFPASVVGGPAALKALAAPFGDLRFVPTGGVSAENLPDYLALPPVLAVGGSWMVAKSLVDAGEWDEITRRTADAVALTAPTKES	PGPT0002060_906	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625	NA	NA
AK001_01832	666	xynR_2	COG1414	HTH-type transcriptional regulator XynR	ATGGAACCCAGCCCCCTCGGCAGCGTCGACAAGGCGCTGCTCACCCTCGACGCCCTCGGCCGCGCCGGCGCGGCCGGCACCACGCTCGCCCGGCTCGCCACCGACGTCGGCGTGAACAAGTCGACCCTGCACCGCACGCTGTCCGCGCTGCGGCACCGGGGGTACGCCGAGCAGTCCGACGACGGCGGCTACCGCCTCGGGCCGGCCGTGCTCGCCCTGAGCAGCAGCTACCTCGCCGAGGAGAACCTGCCCGCGCTGCTGCGTCCCGCGCTCGAGGCGCTGCGCGACGAGGTCGACGAGCTCGTGCACCTCGGCGTGCTCGCCGGCCAGGAGGTGGTCTACCTCGACAAGGTCGAGCCGCAGCGTGCCGTCCGGGTGTGGTCCGCCGTCGGACGGCGCCGGCCCGCGGAGACCACGGCGCTGGGCCGGGCCCTCGCCGCCCCCTCCGCGGGTGTCGCCACCGAGACCGAGGAGACCGAGCCGGGGATCGCGTGCGCCGCCGTCGCGGTGCTGCGCGGCGACCGGCCCGTCGCCGCGGTGTCGATCACCGCCCCGGTCGAGCGGATGACCGGCCCGTCCCGCGACCGCCGGATCCGTGCGCTCACCGAGGTCCTGCCGCAGCACCTGCCGCCCGGCCTGACCGTCTCCGGACCGGCGTCACGCTGA	MEPSPLGSVDKALLTLDALGRAGAAGTTLARLATDVGVNKSTLHRTLSALRHRGYAEQSDDGGYRLGPAVLALSSSYLAEENLPALLRPALEALRDEVDELVHLGVLAGQEVVYLDKVEPQRAVRVWSAVGRRRPAETTALGRALAAPSAGVATETEETEPGIACAAVAVLRGDRPVAAVSITAPVERMTGPSRDRRIRALTEVLPQHLPPGLTVSGPASR	PGPT0018213_1092	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333	NA	NA
AK001_01833	1011	galE_3	COG1087	UDP-glucose 4-epimerase	ATGAGCCGTATGACCCGCAACCCGCTCGACATCCTCTTCCTCGGCGGCTCCGGCATCATCAGTGCCGCCTCCGTGCGCCGGGCGGTCGCCCGGGGGCACCGCGTGACCGTGCTCAACCGGGGCCGCTCCACGCATCGTGAACTGCCGGCCGACGTCGAGCAGCTCGCCGCGGACGTCACCGACGACGCCGCCGTGGACGCCGTGCTGGACGGCCGCGACTTCGACGTCGTCGCCCAGTTCCGGGCGTTCTCCCCGGACCACGTCGCCCGCGACATCGCCCGCTTCACCGGCCGCACCGGCCAGTACGTGTTCGTCTCGAGCGCCTCCGCCTACCAGACGCCCCCATCCCGGCTGCCCGTCACCGAGTCGACCCCGCTGCGGAACCCGTACTGGGCCTACTCGCGCGACAAGATCGCCGGCGAGGACCTGCTCGTGCGCGCGTACCGCGAGAACGCCTTCCCCGCCACGATCGTGCGGCCCAGCCACACCTACGACCGCACGCTGCTGCCGACCCTCGGCGCCTGGACCGACGTGGCACGGATGCGCGACGGACGTCCCGTCGTCGTCCCCGGGGACGGCACCAGCCTGTGGACGCTCACCCACACCGAGGACTTCGCCGTCGGGTTCGTCGGCCTGCTCGGCCACCCGCACGCGATCGGCGACACCTTCCAGATCATGGGGACGCACGCACCCACCTGGAACCAGATCTACACGTGGCTCGCCGCCGCGGCCGGGGTGCCCGACCCCGAGATCGTGCACGTCGCCTCCGAGACGATCGCCCACGTGCTGCCCGACCTCGGGCCCGGCCTGCTCGGCGACAAGGCCCACTCGATGGTCTTCGACTGCGCCAAGCTGCAGGCGCTCGTGCCCGAGTTCGCCACGACGATCACCTACGACGACGCCGCGCACGAGCAGATCGCCTGGTGCGACGCGCACGCCGCCGCGCGGGAGACCGACCCCGTGCTGGACGCGGGGTTCGACCGGCTGGTGGCGCACGCCGGGGCGATCTGA	MSRMTRNPLDILFLGGSGIISAASVRRAVARGHRVTVLNRGRSTHRELPADVEQLAADVTDDAAVDAVLDGRDFDVVAQFRAFSPDHVARDIARFTGRTGQYVFVSSASAYQTPPSRLPVTESTPLRNPYWAYSRDKIAGEDLLVRAYRENAFPATIVRPSHTYDRTLLPTLGAWTDVARMRDGRPVVVPGDGTSLWTLTHTEDFAVGFVGLLGHPHAIGDTFQIMGTHAPTWNQIYTWLAAAAGVPDPEIVHVASETIAHVLPDLGPGLLGDKAHSMVFDCAKLQALVPEFATTITYDDAAHEQIAWCDAHAAARETDPVLDAGFDRLVAHAGAI				NA	NA	NA	NA	NA
AK001_01834	681		COG0546	5'-nucleotidase	GTGACCCAGCCCCTCGTCCTGCTCGACCTCGACGGCACCCTCATGGACTCCGCCCCCGGCATCACGTCCTCGGTCGCCCACGCCTACCGCGCGCTCGGGATCCCCGTGCCCGACGACGCCACGCTGCGCACGTTCGTCGGCCCGCCGATCACGGACTCCTTCCCCGACCACGGGGTCCCGCCCGAGCGCACCGCCGAGGCCGTGGCGGCCTACCGGGAGGCGTTCACCGCCGGCGGCATGTTCGACAACGCGGTGTTCGACGGCGTCCCGGACGTGCTGCGCGCGCTGCGGGACGCCGGGTGCACGCTGCTCGTGGCGACCAGCAAGCCGGAGGTCTACGCGAAGCCGATCTGCGACCGGTTCGGGATCAGCGACCTGGTCGACGGCGTCCACGGCGCCCCGCTGGACGAGGGCACCTCCGCCAAGGCGGACGTGATCGCGGCGGCACTGGCCGCGCAGGGGCGCCGCTCCCCCGTCGACCCGGCCGAGGGCCCGGTCCTCATGGTCGGCGACCGCGAGCACGACGTGCACGGCGCGACCGTCCACGGCATCGACTGCCTCGGGGTGTCGTGGGGCTACGCCGCGCCCGGCGAGCTCGAGGCCGCCGGCGCGGTCGCCGTCGTCGACGAGGTCCCCGCACTGGCTCCCGCGGTCCGTGACCTCCTCAGCCCCGCCTTGTGA	MTQPLVLLDLDGTLMDSAPGITSSVAHAYRALGIPVPDDATLRTFVGPPITDSFPDHGVPPERTAEAVAAYREAFTAGGMFDNAVFDGVPDVLRALRDAGCTLLVATSKPEVYAKPICDRFGISDLVDGVHGAPLDEGTSAKADVIAAALAAQGRRSPVDPAEGPVLMVGDREHDVHGATVHGIDCLGVSWGYAAPGELEAAGAVAVVDEVPALAPAVRDLLSPAL	PGPT0001730_2922	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091	NA	NA
AK001_01835	1065	czcO_2	COG2072	putative oxidoreductase CzcO	ATGACCGAACGCCCGGAGACGCTGATCATCGGTGCAGGTCAGGCCGGACTGTCCACGGCGTACCATCTCCAGGCTCGGGGGCGCGAGGCTCTCGTCGTCGACGGGTCCGACCGCGTCGGCGACACCTGGCGTCGTCACTACGACTCGCTGCGGCTCTTCACCCCGCGGGGCATCATCGGGCTGCCGGGCTCGCCGTTCCCCGGCGACCGGAAGTCCGTACCCACCAAGGACGAGGTGGCCGACTACCTGGCCACCTATGCCGCGCGGCACGGGCTGGCGGTGCGCACCGGCGTGACCGTCGAGCGCGTCGTCCGCCACGACGGCGGGTTCCGCGCCGACACGCCGGACGGGCCGATCCACGCGGATCACGTCGTCGTCGCGACGGGCAAGGCCCGGCACCCCCGGGTGCCGTCGTTCGCGTCCGAGCTCGGCGACGACATCGTCCAGCTGCTCTCCGCGGAGTATCAGCGCCCGAGCCAGCTGTCCGCCGGACCGGTCCTGGTGGTGGGCGCGGCGGTGTCCGGCGGGGACATCGCCGTCGAGGCCTCCCGGACCCACCCGACCACGCTGTGCGGGAGGGTCACCGGCCACATGCCCTTCCGCAGCAACGGTCCCCTGACACCGCTCATCCCGTTCATCGGCAATCGTCTGCTCAGCATGCGGAGTCCGCTGGGGCGGCGGTACCGGGCGGCGGAGCGCGACCACGGCCAGCCGCTGCCGGTCGAGCTGCTCCGATCGATCCGGGAGGTACCCGACGACCGTCTCGAGTGGACCGATGACCGTGTCGTGGGGGTGCAGGACGGGCTGCCGATGACGGCGTCGGGCCGGGCCCTGGACGTGGCCAACGTCATCTGGTGCACCGGGTACCGGCACGACTACACCTGGGTCGAGCCACTCCGCACCGATGCGGCGGGGTGGCCGGAGCAGGTCGACGGCGCCGCCACCGGGAGTCCGGGTCTGTTCTTCGTCGGCCTGCCCTTCCAGTCGGCCTACGGCTCCGGGTTCCTGTACGGCGTCGGGCGCGATGCGGCGAAGGTCGCCGCGCAGATCGATCGGGGCACGTGA	MTERPETLIIGAGQAGLSTAYHLQARGREALVVDGSDRVGDTWRRHYDSLRLFTPRGIIGLPGSPFPGDRKSVPTKDEVADYLATYAARHGLAVRTGVTVERVVRHDGGFRADTPDGPIHADHVVVATGKARHPRVPSFASELGDDIVQLLSAEYQRPSQLSAGPVLVVGAAVSGGDIAVEASRTHPTTLCGRVTGHMPFRSNGPLTPLIPFIGNRLLSMRSPLGRRYRAAERDHGQPLPVELLRSIREVPDDRLEWTDDRVVGVQDGLPMTASGRALDVANVIWCTGYRHDYTWVEPLRTDAAGWPEQVDGAATGSPGLFFVGLPFQSAYGSGFLYGVGRDAAKVAAQIDRGT	PGPT0013865_1014	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222	NA	NA
AK001_01836	2568	clpC1	COG0542	ATP-dependent Clp protease ATP-binding subunit ClpC1	ATGTTCGAGAGATTCACGGACCGAGCCCGTCGGGTCGTCGTCCTCGCTCAAGAAGAAGCGCGGATGCTCAACCACAACTACATCGGGACCGAGCACATCCTCCTCGGCCTCATCCACGAGGGTGAGGGCGTGGCGGCCAAGGCGCTCGAGTCCCTGGGCATCTCCCTGGACGGTGTCCGCGCGCAGGTCACCGAGATCATCGGCGAGGGCCAGCAGGCCCCGAGCGGGCACATCCCGTTCACGCCGCGCGCCAAGAAGGTGCTGGAGCTGTCGCTGCGCGAGGCGCTGCAGCTCGGCCACAACTACATCGGCACCGAGCACATCCTCCTCGGCCTCATCCGCGAGGGCGAGGGCGTGGCTGCCCAGGTGCTGACCAAGATGGGCGCCGACCTGAACAAGGTGCGCCAGCAGGTCATCCAGCTCCTGTCCGGCTACCAGGGCAAGGAGCCGGTCGCCGCGGGCAGCCCCCAGGAGGGCCAGCCGTCGGGTTCCGCCGTGCTGGACCAGTTCGGCCGCAACCTGACCCAGGCGGCCCGCGAGGGCAAGCTCGACCCGGTCATCGGCCGGACGCAGGAGATCGAGCGCGTCATGCAGGTGCTGAGCCGCCGCACCAAGAACAACCCGGTCCTCATCGGCGAGCCCGGCGTCGGCAAGACGGCCGTCGTCGAGGGCCTCGCGGCGGACATCGTGCGCGGCGACGTGCCCGAGACGCTGAAGGACAAGCAGCTCTACACGCTCGACCTCGGCGCGCTCGTCGCCGGGTCGCGCTACCGCGGTGACTTCGAGGAGCGCCTCAAGAAGGTGCTCAAGGAGATCCGCACCCGCGGCGACATCATCCTGTTCATCGACGAGATCCACACCCTCGTCGGGGCGGGTGCCGCCGAGGGCGCGATCGACGCGGCCAGCATCCTCAAGCCGATGCTGGCCCGCGGCGAGCTGCAGACCATCGGTGCCACCACGCTCGACGAGTACCGCAAGCACGTCGAGAAGGACCCGGCCCTGGAGCGTCGCTTCCAGCCGATCCAGGTCAACGAGCCCTCGATGGAGCACGCCATCGAGATCCTCAAGGGCCTGCGCGACCGGTACGAGGCGCACCACCGCGTGTCCATCACGGACTCCGCGCTGGTCTCCGCGGCCCAGCTCGCCGACCGGTACATCAACGACCGCTACCTGCCGGACAAGGCGATCGACCTCATCGACGAGGCGGGCGCGCGCCTGCGCATCCGCCGCATGACGGCCCCGCCGGAGCTCAAGGAGCTCGACGAGGAGATCGCCGAGGCGCGCCGCGAGAAGGAGTCGGCGATCGACGAGCAGGACTTCGAGAAGGCCGCGGGCCTGCGTGACACCGAGAAGCAGCTCACGCAGAAGCGCGCCGAGAAGGAAAAGGCCTGGAAGTCGGGCGACCTCGACACGGTCGCGGAGGTCGACGACGAGCTGATCGCCGAGGTGCTGGCGATGTCCACCGGTATCCCGGTGGTCAAGCTGACAGAGGAGGAGTCCTCCAAGCTCCTGCACATGGAGGACGAGCTGCACAAGCGCGTCGTCGGTCAGGACGCGGCGATCAAGGCGCTGTCGCAGGCCATCCGTCGCACCCGCGCCGGCCTGAAGGACCCGAAGCGTCCCGGTGGCTCGTTCATCTTCGCCGGCCCCACCGGCGTCGGGAAGACCGAGCTGGCCAAGGCGCTCGCCGAGTTCCTCTTCGGCGACGAGGACGCGCTCATCCAGCTCGACATGTCCGAGTTCTCGGAGAAGCACACGGTCTCGCGGCTGTTCGGCTCGCCCCCCGGCTACGTCGGCTACGACGAGGGCGGCCAGCTCACCGAGAAGGTGCGCCGTCGTCCGTTCTCCGTCGTGCTGTTCGACGAGGTGGAGAAGGCGCACGCCGACATCTTCAACTCGCTGCTGCAGGTGCTCGAGGACGGTCGTCTCACCGACTCCCAGGGTCGCGTGGTCGACTTCAAGAACACCGTCATCATCATGACGACAAACCTCGGTACCCGGGACATCGCCAAGGGCGTCCAGACCGGCTTCAACGCCGGCGGCGACCTGGTGACGTCGTACGAGCGGATGAAGGCCAAGGTCAACGAGGAGCTCAAGCAGCACTTCCGGCCCGAGTTCCTCAACCGTGTCGACGACATGATCGTCTTCCCGCAGCTGTCCGAGCAGGAGATCATCGAGATCGTCGACCTCGAGATCGCCAAGCTGGACCGCCGGCTGCGCGACAAGGACATGGCGATCGAGCTCACGCAGGCCGCCAAGAAGCTGCTCGCCGAGAAGGGCTACGACCCGGTCCTCGGTGCGCGGCCGCTCAAGCGGGCCATCCAGCGGGAGATCGAGGACGCGCTGTCCGAGAAGATCCTGTTCGGCGACCTCAAGCAGGGCGAGATGGTCGTCGTCGACGGCGAGGGCGAGGGCATCCTCGGGGAGTTCACCTTCCGCGGGGTCCCCAAGTCCGAGCACGACCGTGGCCCGGTTGCCGTCGGTGCCGCGGCGGCGCTGGAGTCGCCGTCCGGCGTCTCGGTCAAGGACCTGCCGCCCACCGGCCAGATGCAGGCCGGCGCGGAGTGA	MFERFTDRARRVVVLAQEEARMLNHNYIGTEHILLGLIHEGEGVAAKALESLGISLDGVRAQVTEIIGEGQQAPSGHIPFTPRAKKVLELSLREALQLGHNYIGTEHILLGLIREGEGVAAQVLTKMGADLNKVRQQVIQLLSGYQGKEPVAAGSPQEGQPSGSAVLDQFGRNLTQAAREGKLDPVIGRTQEIERVMQVLSRRTKNNPVLIGEPGVGKTAVVEGLAADIVRGDVPETLKDKQLYTLDLGALVAGSRYRGDFEERLKKVLKEIRTRGDIILFIDEIHTLVGAGAAEGAIDAASILKPMLARGELQTIGATTLDEYRKHVEKDPALERRFQPIQVNEPSMEHAIEILKGLRDRYEAHHRVSITDSALVSAAQLADRYINDRYLPDKAIDLIDEAGARLRIRRMTAPPELKELDEEIAEARREKESAIDEQDFEKAAGLRDTEKQLTQKRAEKEKAWKSGDLDTVAEVDDELIAEVLAMSTGIPVVKLTEEESSKLLHMEDELHKRVVGQDAAIKALSQAIRRTRAGLKDPKRPGGSFIFAGPTGVGKTELAKALAEFLFGDEDALIQLDMSEFSEKHTVSRLFGSPPGYVGYDEGGQLTEKVRRRPFSVVLFDEVEKAHADIFNSLLQVLEDGRLTDSQGRVVDFKNTVIIMTTNLGTRDIAKGVQTGFNAGGDLVTSYERMKAKVNEELKQHFRPEFLNRVDDMIVFPQLSEQEIIEIVDLEIAKLDRRLRDKDMAIELTQAAKKLLAEKGYDPVLGARPLKRAIQREIEDALSEKILFGDLKQGEMVVVDGEGEGILGEFTFRGVPKSEHDRGPVAVGAAAALESPSGVSVKDLPPTGQMQAGAE	PGPT0014585_829	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014585-clpC-K03696	NA	NA
AK001_01837	663			hypothetical protein	ATGGACGACGTCGGACGGGACGCAGGGCACGAGGACACCGGCCGGGATGCTGCGCCGGCGGAGGAGCAGGCCGGGGAGGTCGATCCGCGGATGGCGCGGTTCTCCGGCCGCGTCGGGGAGGTCGACGACCCGCTGACCTGGGGCCTCGACCTCGAGGACGAGGCCCTGACCGGGTGCGAGGACGACGCCGACCCGACGTCGGACCGGTTCGTCCGCTCCTACCGCACCGTCGCCGGGGAGTCGCTGGAGGTGGAGACGCTCCGCACGCCGGTGTCCGAGGACGCGGTGGAGGACGTCGTCCGGGCCGCGGCCAGCGGGGCTCTCGCCGCGCCGCTGCACGCCGACATCGCGGCACCGGTCGAGCCGGACGCGGAACCGGCCCCCCGGCCGGGCCGGGACTTCGCCGACGACTTCGCGGACTACCGCAGCGCGATGCGGGCGATCGTCACCGAGGTCGACGAGGTCGACCTGCGTCGCGCGCCCTACGCCGTCGACGGCCGGTCGACGGCCGCGACCTGGGTGCAGGTGCGCGACGTGGTGGCCGTGCACGTGGCGACGCCCGGACGCGGCCTCGTCGTGACGGGTCCGGCCGACCTCGTGGACCGGATCACGGTGCTCACGCGCCCGATCCGGTCGCTGCTGCAGCCGCCCGAGCGCCGCTGA	MDDVGRDAGHEDTGRDAAPAEEQAGEVDPRMARFSGRVGEVDDPLTWGLDLEDEALTGCEDDADPTSDRFVRSYRTVAGESLEVETLRTPVSEDAVEDVVRAAASGALAAPLHADIAAPVEPDAEPAPRPGRDFADDFADYRSAMRAIVTEVDEVDLRRAPYAVDGRSTAATWVQVRDVVAVHVATPGRGLVVTGPADLVDRITVLTRPIRSLLQPPERR				NA	NA	NA	NA	NA
AK001_01838	864		COG0589	Universal stress protein/MSMEI_3859	ATGGACGGCATCGTGGTCGGGGTCAACGGTTCGGTCGAGGCGGACGAGGCGCTGGACTGGGCGGTCGCAGAGGCACGGACGGCCGGCCTGCCGCTCGTCGTCGTGATGGCCGCCCACGAGCGGGACGACTCCGCGCTCGGCGAGGTGCTCGCTGCACGCCGCGCGGAGGCCGAGGAGATCGTGGACCGCGCACGGGAGCGCCACGGCGGCGACCTGGACGCGGAGATCACCGTGGTGCACGGCCCCGCACCGGAGGGTGTGATGGCCGCGGCCGACGACGCGGACATGCTCGTCCTGGGCCGACGACGGCGGAACCGGCTGGGGCGCCGGCTCCTCGGCTCGGTCTCCACCACGGTGGTCGAGCACGCGCGCATCCCGGTGACGGTGGTGCGCCGCCCGGAGGACGGCGACCAGAGCGGTCCCGAGCAGCCGTCCGACGAGACCCGGGTGGTCGCGGGGGTCGACACGTCCGGCCACTCGGTGGCGGCGCTGCGTCACGCCGGCACGGTCGCCGCCCGTCTGGACGCGGTGCTGGAGCCGGTGTTCGCCTGGCAGATCACGACGCTCGCGCCGCTGCCGGGCTCCTGGGGCTGGGCGCCACCGATCGACGACTACGAGGACTTCGCCCGGGAGCGCCTGGAGGACGTGATCCGGTCGGTCGAGCTTCCGCTGCCGCCCGACCGGATCAGGCCGCGGGTCGTGCACGGCCAGGCCGCGAAGGTCCTCATCGAGGCCTCCGCGGGTGCCGACCGGATCGTGGTCGGCACCCGCGGGCTCGGCGGTTTCGACCGCCTGATGCTGGGCTCGACCGCCCGGCAGGTGCTCGACTACTCGAGCAGCCCCGTGACGGTCCTCAACGGGTGA	MDGIVVGVNGSVEADEALDWAVAEARTAGLPLVVVMAAHERDDSALGEVLAARRAEAEEIVDRARERHGGDLDAEITVVHGPAPEGVMAAADDADMLVLGRRRRNRLGRRLLGSVSTTVVEHARIPVTVVRRPEDGDQSGPEQPSDETRVVAGVDTSGHSVAALRHAGTVAARLDAVLEPVFAWQITTLAPLPGSWGWAPPIDDYEDFARERLEDVIRSVELPLPPDRIRPRVVHGQAAKVLIEASAGADRIVVGTRGLGGFDRLMLGSTARQVLDYSSSPVTVLNG				NA	NA	NA	NA	NA
AK001_01839	1338	rafB		Raffinose permease	GTGAGCACCACGTCCACGACCGATCACGAGGGAGCCCGTGCCGCTTCCCCGAGCGCCGTCGCGTCGTTGAAGAAGCCCGTGTTCTGGAACATCGGCGGGCTGTTCTTCTTCTACTTCGCCATCTGGCAGCTCACGATGACGTTCCTCAGCCCGTGGCTGGAGGAGCACGCGGGCATGACCAGCGGGAACATCGGTCTGATCTACTCGGTGATGGCGGGTGTGTCCTTCTGCCTGCAGCCGTTCTACGGCTACATCCAGGACCGCCTCGGGTTCCGCAAGCACCTCTTCGCGTGGGTCGTGCTCTGCGCGGCGTTCATCGGACCGTTCTTCACGTTCGTCTTCCTGCCGATCGTCACCTTCAACCAGGTGCTCGCGGCCGTCGTCGCCGGTGTGTACCTCTCCCTGGTGCTGCAGGGCGGCGTCGGCGTCATCGAGGCGTTCAACGAGCGCACGGCCCGAGCGAACCGGTTCGAATACGGGCACGTGCGGCTGTTCGGCTCGCTGGCCGGCGCGACGGCCTCCCTCGTCGGCGGATTCATCTGGGCCGCCGACCCGGACAACGTCTGGTGGGCGGGCACCTTCTCGGCGATCGTGCTCGGTGTCCTGCTCTTCGTCGTGCGGACCCCGCGGCCGGGCGAGGCGGGCTATGCCGCCATCGCCGCCGACCAGGAGCCCTCCTCGGGCATGCCGCAGGTCGACTCCGGCACCGTCAAGCAGCTGCTGCGGAACCGGTCGTTCGTCGGCTTCATGGTCCTGATGTTCGGCACGGCCGCCCTGTACGACGTCTTCGACCAGCAGTTCGCCATCTACTTCAACCAGCACGTCACGGGGATCGCCGACCCGCAGGTGCTGTTCTCCCGCGTGGTGTTCGTGCAGATCCTGCTCGAGGCCGCCGTGATGGTTGTGATGCCGTTCGTCATCAACAAGATCGGGGCCCGCTGGGGGCTGATCCTGTTCGCCGCGGTGCTGGTGGTGCGGGTCGTCGGCTCGGCCTTCATCGTCTCGACCGAGATGCTCATCGTGTGGCGGCTGCTCGCCGCGATCGAGATGCCGCTGATGCTCGTCTCGGTGTGGAAGTACATCACCCGGATGTTCGACGTCAGCATCTCGGCCACCGCCTACATGGTGGGCTTCAACATGGCCAAGGCCGCCGGCGTGTTCATCTTCTCCTGGGTCTTCGGCCTGTCCTACGACGCCATCGGCTTCAGCGCGTCCTACATCGTCATGGGCGTCGTGGTCGTCACCGTCACGGTGATCGCGATGGTCCTCATGCGCGACGACCGGGGTCGCCCCGACCCCGGCAAGGACGACGTCGAGGCCGCCGAGGTCACCCGTTGA	MSTTSTTDHEGARAASPSAVASLKKPVFWNIGGLFFFYFAIWQLTMTFLSPWLEEHAGMTSGNIGLIYSVMAGVSFCLQPFYGYIQDRLGFRKHLFAWVVLCAAFIGPFFTFVFLPIVTFNQVLAAVVAGVYLSLVLQGGVGVIEAFNERTARANRFEYGHVRLFGSLAGATASLVGGFIWAADPDNVWWAGTFSAIVLGVLLFVVRTPRPGEAGYAAIAADQEPSSGMPQVDSGTVKQLLRNRSFVGFMVLMFGTAALYDVFDQQFAIYFNQHVTGIADPQVLFSRVVFVQILLEAAVMVVMPFVINKIGARWGLILFAAVLVVRVVGSAFIVSTEMLIVWRLLAAIEMPLMLVSVWKYITRMFDVSISATAYMVGFNMAKAAGVFIFSWVFGLSYDAIGFSASYIVMGVVVVTVTVIAMVLMRDDRGRPDPGKDDVEAAEVTR	PGPT0016855_32	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_LACTOSE_TRANSPORT,PGPT0016855-lacY|MFS_transporter|OHS_family|lactose_permease-K02532	NA	NA
AK001_01840	1047		COG3940	Extracellular exo-alpha-(1->5)-L-arabinofuranosidase	ATGACGGACCACGCTCAGGTCGCGCCCAACCCGATCGTGTTGCAGCGCGCGGACCCCCACGTACTGCGCCACGACGGCCAGTACTACTTCACCGGCTCGTACCCGGCCTACGACCGGATCGTGCTGCGCCGCGCCGCGCGGCTGGAGGACCTGCAGGCGGCGGAGGAGGTGACGATCTGGACCAAGCACGCCACCGGTCCGCAGTCGCACCTCATCTGGGCGCCGGAGATCCACCGCGTCGACGACGCCTGGTACATCTACTACGCCGCCGCACCGGTCGGCCACGGCACGGTCGACGCCCCCAGCGAGAACGAGACCTTCAACCACCGGGTCTTCGTCCTCGAGTGCACGGCCGACGACCCGCTGACGGGGGAGTGGGTCGAGCGCGGCCAGGTCGACACCGGCTGGGAGTCGTTCGCGCTGGACGCCACGACGTTCGTCCTGCACGGGGAGCAGTACCTCGTGTGGGCCCAGGAGGACCTCGAGGTCTACGGGCACTCGAACCTCTACATCGCGCGGATGGCGAACCCCTGGACGCTCGCCACGCCGGCCGTCGAGCTCACCCGGCCCGAGCTCGACTGGGAGATCAAGGGCTTCTGGGTCAACGAGGGCCCGTCCGTCCTGATCCACGGCGGTCGCCTGTTCCTCACCTACTCCGGCTCCGCGACCGGCATCGACTACGCGATGGGTGTGCTCACCGCCGACGTCGACGCCGACCTGCTCGACCCGGCCTCGTGGACCAAGTCCACCGAGCCGGTCTTCGTCTCCGACCCGTCGGTCGGCCAGTACGGCCCGGGGCACAACTCGTTCACCGAGACGCCCGACGGCGAGACCGTGCTGGTCTACCACGCCCGTGACTACACCGAGATCGTCGGCGACCCGCTGTGGGACCCCAACCGGCACGCCCGGGCCCAGGTCCTGCCCTTCGACGCCGACGGCGACCCGATCTGGGGCACCCCGGTGCCCGACACCCGACCGACCCCCACGACGACCGAGGTGCTGCCGCCCTCCGGTCTGGCGCACGACCTGGAGGAGGCAGCGCTGTGA	MTDHAQVAPNPIVLQRADPHVLRHDGQYYFTGSYPAYDRIVLRRAARLEDLQAAEEVTIWTKHATGPQSHLIWAPEIHRVDDAWYIYYAAAPVGHGTVDAPSENETFNHRVFVLECTADDPLTGEWVERGQVDTGWESFALDATTFVLHGEQYLVWAQEDLEVYGHSNLYIARMANPWTLATPAVELTRPELDWEIKGFWVNEGPSVLIHGGRLFLTYSGSATGIDYAMGVLTADVDADLLDPASWTKSTEPVFVSDPSVGQYGPGHNSFTETPDGETVLVYHARDYTEIVGDPLWDPNRHARAQVLPFDADGDPIWGTPVPDTRPTPTTTEVLPPSGLAHDLEEAAL	PGPT0019091_648	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NA	NA	NA
AK001_01841	615			hypothetical protein	GTGCGCGGCGTCGAGGGTCCGGGCCACACTGTCACCATGTCCTCCACGACCACCCCCGCCGGCCTGCTCCTGACACCCGGGGCCGGCGCCGACCGTGAGCACCAGACGCTGCGCGCCGTCGAGGACCACCTGGCTGCCCTGGATCCGCCGCTGCCCGTGACCCGGGTCGACTTCCCGTACCGGATCGCGGGCCGGCGCGCCCCCGACCGGCCGTCCGTCGCCGTCCCGCACGTCCGCACCGAGGCCGAGGCCTTCGCCGACCGGCTCGGGGTCACGACGGACCGCCTGCTGCTCGGCGGGCGGTCCTACGGCGGACGGATGTGCTCGATGGCCGTCGCCGAGGGACTGCCCGCCGCCGGGCTCGTCCTGCTGAGCTACCCGCTGCACCCGCCCGGCAAGCCCTCGACGCTGCGCGTCGACCACTTCGGACACCTCGACGTCCCGGTGCTGTTCGTCTCCGGGGACAAGGACCCGTTCGGCCGTCCCGAGGAGCTCGCCGAGCAGGCAGCGGCGATCCCGGGACCCGTCACGCAGGTGACCCTGGCCGGCGCCCACGACGTCAAGGCCGTCGACGACGTCGCCCGGACCGTCGCCGACTGGGTCGCCACGCTCTGA	MRGVEGPGHTVTMSSTTTPAGLLLTPGAGADREHQTLRAVEDHLAALDPPLPVTRVDFPYRIAGRRAPDRPSVAVPHVRTEAEAFADRLGVTTDRLLLGGRSYGGRMCSMAVAEGLPAAGLVLLSYPLHPPGKPSTLRVDHFGHLDVPVLFVSGDKDPFGRPEELAEQAAAIPGPVTQVTLAGAHDVKAVDDVARTVADWVATL				NA	NA	NA	NA	NA
AK001_01842	792			hypothetical protein	GTGCGTCCCGTCCACCTCGTCTCTCGCGCCGTCGCGAGCATCGTGCTGGCCGGTGTCGCGGGCGGCCTCGCCGTCACCGCCGCGGCCGCCGACGACGACCTCACCGTCACCGTCGACGGGGTCAGCTATCGCGACCGCGACCAGCGCGACCACGAGGACCGCGTCGGCTACTCGATCCGGAGCCTGGAGGGCTGGCGCTACGAGTGGCTGACCGAGCCGATGACGATGGGCCGGGCCGGGGACGTCGCGTTCAGCCAGGCGTCCGCGACCATGCCCGACGGGTACTGCGTCGTCTACGTGCGGGTGCCCGGGGTGGGCGAGTGGCACGAGCACTCCGGCGGCGCCCGGTGTACAGGTGAGCGCCGCACCTCGCAGCCGTCGGCCCCCGCACCCTCCACCCCGAGTGCGCCGACCCCGACCGAGGCCCCCGAGCCCACGCCGACGTCCGCGGAGCCGACTCCGGCCGAGGAAGACCCGACCCCGTCGCCGACGCCGTCTCCGAGCGCCTCACCGACGCCGTCGCCGAGCCCGTCCCGCGCGGCGTCGCCGTCAGCGTCGGCGTCACCGAGCCCGACGGCGTCCACCGCCTCGCCGTCCGCCGCCGCCGGCCTGGGCGACCCGACCGCGGGCGCGGCCGACCAGGACGGTGAGCCCGGCGACAGCGACCTGTGGAGCGCCCAGGAACGCCTGCTGGACGGGGACGCCTGGGCCGCCATCGGGCTCGGCCTGGCCGCCGTTGGCGTAGCCGTGGGCGGCGCCGTGGCCTGGCGGGCCCGGCACCTGACCGACTGA	MRPVHLVSRAVASIVLAGVAGGLAVTAAAADDDLTVTVDGVSYRDRDQRDHEDRVGYSIRSLEGWRYEWLTEPMTMGRAGDVAFSQASATMPDGYCVVYVRVPGVGEWHEHSGGARCTGERRTSQPSAPAPSTPSAPTPTEAPEPTPTSAEPTPAEEDPTPSPTPSPSASPTPSPSPSRAASPSASASPSPTASTASPSAAAGLGDPTAGAADQDGEPGDSDLWSAQERLLDGDAWAAIGLGLAAVGVAVGGAVAWRARHLTD				NA	NA	NA	NA	NA
AK001_01843	687	def_3		Peptide deformylase	ATGGTGTGGACCTTCGGGCGTCGGCGGCCGACGACCTATCTGCTCGGCGAGCCCGCCGACCCGTACCCGGCGCAGGTACCGGAGGCCCGTCGCGGTCGCGTGCTGCGGATCACCGAGATCGGCGAGCCGGTGCTGCACAGCCCGGCGCGGACGGTCGAGACGTTCTCGACCCCGGAGCTGGCCCGGCTGGTCGACGACCTGTTCGCCACGATGGAGGTGGCCCAGGGCGTCGGTCTCGCGGCACCTCAGGTGGGTGTCGACCTGCGCGTCTTCGTCTACGACCTGACCGACGACCGGGGCGATCGGCACGTGGGCCACGTGGTCAACCCCGAGCTGACGGTCGACGGCTCGGCCGAGCTGGTGACCGAGGACGAGGGCTGCCTGTCGGTCCCCGGCGCCTACGAGCCGCTCGCGCGCCGCGCCGCCGCGACCGTGCGCGGCGTCGACCAGCACGGGGGACCGGTGCAGCTCGAGGCCACGGGCTACCTGGCCCGGTGCTTCATCCACGAGAGCCAGCACCTCGACGGCGTCCTGTACTGGGACCACCTCTCGGGCGACCTCCAGCGCGACGCGTTGCGACAGCGGGACGAGGAGCGTCCGGGCATCCTGGACGAGCGGCGCGAGATCGCCGTCGAGCTGGGCAAGCGCCCGGCGGAGTACCCCGCCGAGCCCGCCGGGGGGCGCTGA	MVWTFGRRRPTTYLLGEPADPYPAQVPEARRGRVLRITEIGEPVLHSPARTVETFSTPELARLVDDLFATMEVAQGVGLAAPQVGVDLRVFVYDLTDDRGDRHVGHVVNPELTVDGSAELVTEDEGCLSVPGAYEPLARRAAATVRGVDQHGGPVQLEATGYLARCFIHESQHLDGVLYWDHLSGDLQRDALRQRDEERPGILDERREIAVELGKRPAEYPAEPAGGR				NA	NA	NA	NA	NA
AK001_01844	933			hypothetical protein	ATGCGTGCGCTCTGGGTGTACCTCGCGATCAGCCTCGGGCTGTCCTGGCTCGTCGCCCTGCCGCTGTGGCTCGGCGACGGCCTCGAGACGCCGCGGTTCACCCTGGTGGCCCTGGCGATGATGTGCACCCCGGCGCTGGCGGCGTTCGTCGTCGTCCGGTTCGTCGAGCGACGGCCCCTGGCCCGGTCGCTCGGCCTCGTCCCGGTCCGTCCCTGGGGCCGGTTCTTCGCCTGGATGGGTCTGGCCTTCCTCGTCCCGCTGCTCCTCGTGGCGGCGGCGCTGGTCGTCGCGGCCGCGTCCGGCCTCTACACCACCGACCTCACCGGTTTCTCCGGCCTGCAGGAGACCATCGACGCGCAGTTCGCCGCCCTCGGGGTGACCGAGGAGCTCGAGTTCCCGATCGAGGTCCTCGTGGTCGCCCAGCTCGCCAACATCGTCGTCGGCTCGGTGATCAACCTCGTGCCGGCCCTGGGCGAGGAGATCGGCTGGCGCGGCTGGCTGCTGCCCCGTCTGACCGACCGGTACGGCGTCCTCGTCGCCGTCCTGCTCTCGGGCGTGATCTGGGGTGTCTGGCACGCGCCGCTGGTCCTGCTCGGCTACAACTACCCCGACGCGTCACCGCTGGTGGCGCTCGCGACCATGGTCGGCTTCTGCACCGTGACCGGCGCGGTCTTCTCCTGGCTGCGGATCCGCAGCGGCAACGTCTGGGCGCCCGCGCTGGCGCACGGTTCCCTCAACGCGGCCGCCGGGATGCACGTGCTGTTCGGCGCGGCCGGGACGTCGGTGGACACCACGCAGGCCACCATCCTGGGGTGGAGCGGCTGGATCGTCCCCCTGGTGCTCGTCGCCGTCCTGGCGGCGACGGGACAGTTCCGGCCGCGGCCCTCCGCCGCCGCGAGCGATCGCGAGCCGCTCGGACGCATGGAACTCTGA	MRALWVYLAISLGLSWLVALPLWLGDGLETPRFTLVALAMMCTPALAAFVVVRFVERRPLARSLGLVPVRPWGRFFAWMGLAFLVPLLLVAAALVVAAASGLYTTDLTGFSGLQETIDAQFAALGVTEELEFPIEVLVVAQLANIVVGSVINLVPALGEEIGWRGWLLPRLTDRYGVLVAVLLSGVIWGVWHAPLVLLGYNYPDASPLVALATMVGFCTVTGAVFSWLRIRSGNVWAPALAHGSLNAAAGMHVLFGAAGTSVDTTQATILGWSGWIVPLVLVAVLAATGQFRPRPSAAASDREPLGRMEL				NA	NA	NA	NA	NA
AK001_01845	816			hypothetical protein	ATGTCGTGGAGCCCGGGCGTCACCGCCCTGATCGTGGTCGCCGTCGGACTCGTCGCGGCCGGGGTCACGCTGCTGGTCCGTCGCTCGGCACAGCGCCTCGGGACGGTCGACCCGGCTCCGTGGAGCGCCACGCTCTCCTACGTGGCCACGGCCTACGGGATCGTCATCGGCTTCTCCATCCTCTACCTGTTCGGTGCTTTCGCCGACGCCCGCGGAGCGGTCGGCGACGAAGCCACCTCGATCGGGACGGCGTTCGAGGAGGCCGGGCTGTTCGACGACGCCGGCACGGACGTGCGGCACGCCCTCATCTGCTACGCGGAGGCCGCCTCGGCCGACGACTGGCCGGCGATGCGCGAGGGGACGGCGGCCCCGGAGGTCGACGCCGCCTACGCGGATCTCGTGGCGTCGCTGGGGCAGGACGCGCCGGCACTGGAGGGAACCTTCTACTCGGCCGCCGCGACGAACACCGTCGTGCAGATCGGGTCGATCTCGACGGCGCGGGAGACCCGCATCGTCACGGCGGCGACCAGCCTCCCGGTCCTGCTGTGGGGCCTGGTCCTGGGCGGTGGGCTGCTCGTCGTCGTGCTGCTCTTCGTGGTGACGCTGCCGAGCGCTCCGCGCACGCAGGCCGTGCTCGTCGGACTCTCGACGACGTTCACGGCCGTGCTGGTCCTCCTGGTGATGGCGCTGAACAACCCCTTCGCCTCCGGACCGGGCCGGGTCTCACCGACGCTGATCGACGAGACCGTGGTCTCGATGACGCAGTCGGCGCCGGAGCTCGCCGACCTGCCGTGCCCGGCCGGGGGCGGCTCCTGA	MSWSPGVTALIVVAVGLVAAGVTLLVRRSAQRLGTVDPAPWSATLSYVATAYGIVIGFSILYLFGAFADARGAVGDEATSIGTAFEEAGLFDDAGTDVRHALICYAEAASADDWPAMREGTAAPEVDAAYADLVASLGQDAPALEGTFYSAAATNTVVQIGSISTARETRIVTAATSLPVLLWGLVLGGGLLVVVLLFVVTLPSAPRTQAVLVGLSTTFTAVLVLLVMALNNPFASGPGRVSPTLIDETVVSMTQSAPELADLPCPAGGGS				NA	NA	NA	NA	NA
AK001_01846	390			hypothetical protein	ATGGACGACGTGGAGGCGGTACCGGCGATCGGCGACTGGAGCATCGCCGAGAGCATCTCCGTGTGGATCGAGGTCGTGGCGATCGTCGTCATCACGGTCGCCGTCGTGGCGGCGTTCGTCACCGGCGCCAGGGTGCTGCGCACCGCCGGGGTGCGTGACGCCGTCGAGCAGGTCAAGCAGTCGGTGGGACGGGGCCTGCTGCTCGGCCTGGACCTGCTGATCGCCGCCGACGTGATCCGGACCGTCACGCTCGAGCCGACGCTGCAGAACGTCGCGGCCCTGGGGCTGCTCGTCGTCGTGCGGACGTTCCTGTCCTGGTCGCTGATGGTCGAGCTGCACGGCCGGTGGCCGTGGCAGGGGGCCGCTGGGCGACGGCCCGTGGAGGACTGA	MDDVEAVPAIGDWSIAESISVWIEVVAIVVITVAVVAAFVTGARVLRTAGVRDAVEQVKQSVGRGLLLGLDLLIAADVIRTVTLEPTLQNVAALGLLVVVRTFLSWSLMVELHGRWPWQGAAGRRPVED				NA	NA	NA	NA	NA
AK001_01847	669			hypothetical protein	ATGGGTGAGGCGGTCGGCGTCACGCTCGGCTACGCGGTCGGCATCGCGATCAGCCCGATCCCGATCGCCGCGGTGATCCTGATGCTCTTCAGCGGACGCGCCCGCGTCAACAGCATCGTGTTCCTGCTCGCCTGGATCACCGGGGTCGCGGGCGTGGTCACGATCGTGGTGCTCCTGCCCGGACTCGGGACCGGCGGTACCGGCCCGGGCACTGCGGTGGGATGGACCAAGCTCGTGCTGGGCGGCCTCCTGCTGGTGCTGGCCGGTCGGCAGTGGTCCAGGCGCCCAGGTCCCGACGACGAGCCGCCCGTCCCCGGGTGGATGTCCCGGATCGACGAGCTCCGTCCCGTCGCCGCGCTCGGCCTGGGACTCGCGCTGTCGGCGGTGAACCCCAAGAACCTGCTCCTCGCCGCGGCCGCGGGTGCCTCGCTGGCCGCGCTGCCGCTGTCGACCGGCGAGACGGTCGTCGCCGTCGTCGTCGTCACGGCCCTCGCCACGCTCACCGTGACGCTCCCGGTGCTCGGCTACCTGGTCGCCGGACGCCGGCTCGCCCCCGTGCTGGACCGCACCAAGACCTGGTTGATCGCGAACAACGCCACGGTGATGGCGGTGGTCCTGCTCGTCCTCGGGGTCAGCCTGCTCGGGGACGCGCTGCAGATCCTGACCTGA	MGEAVGVTLGYAVGIAISPIPIAAVILMLFSGRARVNSIVFLLAWITGVAGVVTIVVLLPGLGTGGTGPGTAVGWTKLVLGGLLLVLAGRQWSRRPGPDDEPPVPGWMSRIDELRPVAALGLGLALSAVNPKNLLLAAAAGASLAALPLSTGETVVAVVVVTALATLTVTLPVLGYLVAGRRLAPVLDRTKTWLIANNATVMAVVLLVLGVSLLGDALQILT				NA	NA	NA	NA	NA
AK001_01848	90			hypothetical protein	ATGTTCTTCTTCCGGTTCACCGAGGAGCGCATCACCGACGTGTGGGAGATGCTCGACCGTCCGGCGATGACCGCCCAGCTTCAGGGCTGA	MFFFRFTEERITDVWEMLDRPAMTAQLQG				NA	NA	NA	NA	NA
AK001_01849	705	COQ5_3		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	ATGCAGGCTGACCACTACGACCGGTTCGCGCGGGAGTACCAGGAGGCGAACGCCTCGGGCCTGTTCAACACCTACTACGAGCGTCCCGCGATGCTCCGGCTGGCCGGCGACGTCCGCGGCCGGCGGATCCTCGACGCCGGCTGCGGGACCGGCCCGCTGACGGCCGAGCTCTGTGATCGGGGTGCCGACGTGACCGGGCTCGACGGCAGCCCGGCGATGATCGAGCTCGCGCGCGAGCACCTGGGCGAGGGCGTGCCGCTGCACGTCGCCGACCTCGCCGAGCCGCTGCCGTTCGCGGACGGCACCTTCGACGACGTCGTCGCCTCGCTCGTGCTGCACTACCTCGAGGACTGGTCCGGCCCGCTGGCCGAGATCCGGCGGGTGCTGAGGCCCGGGGGCCGTCTCCTCCTCTCGGTCAACCACCCCGTCCACCAGGTGGTCGACCGCCCGGAGGCGGACCACTTCGCGGTCTGGCCGTACACGGAGGCCTTCGACTTCGACGGCGAGACGGCGTGGCTGACGTTCTGGCACCGGTCCCTGCGGGCGATGTCCGAGGAGTTCGCCACCGCCGGGTTCAGCATCTCCACCATCGACGAGCCCGAACCGTCGCCCGACACCCCGCGGGAGCTCCTGCCCCCGCGCGTCCGCACCGGGGAGCGGTCGACGTTCTTCGGCTTCCTGTTCTTCGTCCTCGAGGCCCGGTGA	MQADHYDRFAREYQEANASGLFNTYYERPAMLRLAGDVRGRRILDAGCGTGPLTAELCDRGADVTGLDGSPAMIELAREHLGEGVPLHVADLAEPLPFADGTFDDVVASLVLHYLEDWSGPLAEIRRVLRPGGRLLLSVNHPVHQVVDRPEADHFAVWPYTEAFDFDGETAWLTFWHRSLRAMSEEFATAGFSISTIDEPEPSPDTPRELLPPRVRTGERSTFFGFLFFVLEAR				NA	NA	NA	NA	NA
AK001_01850	843			hypothetical protein	ATGGACCTCCAGAAGCTCCGGTATGCCAGCGAGATCCGTCCAGCACAGCTCGTCGATCTCGTCCAGCCGGAGATCAACGGCGGGAAGTGCGACGCGAAGCAGTTCTCGGTGATCGATCAGAACCCAGAGGCCGACACACTTCGCGTCAGTGGTCTCGGACAACGCGATCTCGAGCGCCTCGTCACGGACCATGGTCACCGGTTCACCGCGATCGAGTTCTGGAAGTGCCCGGGGCTGGAGGACCTGACACCGCTGGAGGACCTACCCGACCTTCGCGTCGTCTCGTTCTTCTGGAACCAACGCACGACCCGCCTCTGGAATCTGGCACGCACACCGCACCTGCGAGCGCTACGTCTCGAGGACTTCAGGAGACTCCACCACCTGGACGATCTTCGCGGCGGACGAGCTCTCAGGGAACTTCACCTCGGTGACGCCATCTTTCCCGAGTCGACCTTCGCGACACTGGAGCCTCTGGCCGACCTCACGAGTCTGCGGAGCCTGACCCTGCAACCGAAGCGCGTCGACGACGACCGAGTCCAGCCTCTCGGATCTCTCATCGGCCTGGATAAGCTCTGTGTTCCCGCCAACCTCTTCACAACCGAGCAGTTCGCTTGGCTGCGATCGCGGCTCCCTGCCGCCCTGGAATCGCGCGCGCTGGCCCCGCTCCGGCACCTTGACGAACCCATGGGCCGGGACGGCAAGACCATCGACGTTCTGCTCACCGGCAGGCGCAAGCCCGGCCTCAACTCCGAGCTCGACGCCGCACGGATACGCAGACACGTGGAGAAGTTCTCCGCGATGGTGGCCGCGTTCAAGGAGGATCCGACCCTCGAACCCTCCTGA	MDLQKLRYASEIRPAQLVDLVQPEINGGKCDAKQFSVIDQNPEADTLRVSGLGQRDLERLVTDHGHRFTAIEFWKCPGLEDLTPLEDLPDLRVVSFFWNQRTTRLWNLARTPHLRALRLEDFRRLHHLDDLRGGRALRELHLGDAIFPESTFATLEPLADLTSLRSLTLQPKRVDDDRVQPLGSLIGLDKLCVPANLFTTEQFAWLRSRLPAALESRALAPLRHLDEPMGRDGKTIDVLLTGRRKPGLNSELDAARIRRHVEKFSAMVAAFKEDPTLEPS				NA	NA	NA	NA	NA
AK001_01851	573			hypothetical protein	ATGCGCATCATGATCCGGTGCGCCACCTGCGGTCGACCCGCCGAGACGCACGATCGACACGTCCGCTTCCGGCTGCCGGAGCCCGTGCTGCGCACCGAGCGTCAGCACCAGGCCGAGGGTGTCTGGACGACGGATCCGGACCCGACGCAGGCGGTCATGATGCAGGTCCCCGATGTCGGGCCGTTCGTCCGCGCGCTGCCGCCGATCCGCCTCGACGGTGGCCACACCTTCACCTACGGCGTCTGGGTGGGAGTGCACCCCGACGACCTCCAGACCGCGTTCCGGACCTGGTGGGCCCCCGAGTACGTCGACCTCCGGCTCAGCGGTTACCTGGCCAACATCATCGAACCGTGGGACGTGCTCGCCGCGCCCGTCGACCTCGTGATGCGCCACCCGGACCACACCCCCTACTGCGTCGCCAGCGACAGCGAAGAACTGCACGACATCCTGACCCGCGAGTGGGACCACGGCCTGGTCCTGTCGGCAGTTTGCCAGTCATCACGGTGTGGCGGACCTGGTTCAGAGAATCGGTCGCGGCCCGTCAGGAGGGTTCGAGGGTCGGATCCTCCTTGA	MRIMIRCATCGRPAETHDRHVRFRLPEPVLRTERQHQAEGVWTTDPDPTQAVMMQVPDVGPFVRALPPIRLDGGHTFTYGVWVGVHPDDLQTAFRTWWAPEYVDLRLSGYLANIIEPWDVLAAPVDLVMRHPDHTPYCVASDSEELHDILTREWDHGLVLSAVCQSSRCGGPGSENRSRPVRRVRGSDPP				NA	NA	NA	NA	NA
AK001_01853	1581	caeA		Carboxylesterase A	GTGAAATTCCCCGCACGCCGCACGCCCCCGCAGACCGACCTCCCGGCCTCCCGACGGATCGCCGCGCTGGCCGGGACCGTGGTCGCCGCGCTGGCTCTCGCCGGGTGCACGGCGGAGACGCCCGGCAAGACCGCGACGCCCGTGGACGAGGCGACGACGGCGGCGCCGATGACGCCGTCGGCGGCCGGTGCCCCCGAGGGGTTCGAGGACTTCTACGCCCAGGACCTGGAGTGGACGGACTGCCGCGGCGGCTACGAGTGCGCGACCGCGACAGCCCCGCTGTCCTGGGACGACGCGGAGGCGGGCAGCATCGAGCTCGCGCTGGTGCGGACGCGCGCCACCGGGCAGAAGGTCGGCTCGCTGCTGGTCAACCCCGGCGGACCCGGCGGTTCGGGGGCGGACTTCGTCGAGAACGGGTCCTTCGGCGAGCCGCTGCGCGAGTCTTTCGACATCGTCGGCTTCGACCCGCGCGGGGTGCAGGACTCGACCGCCGTCGAGTGCTACGACGACGAGGCCAAGGACGAGTACCTCAGCGAAGACTTCGACCTGTCCACCGACGACGGTCTCGAGGCCGCGCGCGCGTCGACCGCGGCCTGGGCGGAGGCGTGCGCGGCGAACACCGGTGAGCTGCTCGGCGAGGTCGACACCCAGAGCGCCGCGAGGGACATGGACCTGCTGCGCGCCGTGCTCGGCGACGAGCAGCTGCACTACCTCGGTTTCTCCTACGGCACGAGCCTGGCGGCGACATACGCGGGCCTCTTCCCCGAGCGTGCGGGCCGGCTGGTGCTCGACGGCGCGATCGACCCGACGCTGGACGCGGACGAGATCTCGGCCGGCCAGGCCGTCGGGTTCGAGAACGCGCTGCGCGCCTACGTCACCGACTGCCAGGCCGGGGCCGACTGCCCGTTGACCGGGTCCGTCGACGCCGGCATGCAGCAGGTCCGCGACGTCCTGGACCGCGCCTACGACCGTCCCTACCCGACCAGCGGCGACCGGGACGTCACCCAGACGCTGGCCTTCTACGGGGTCGCGGTGACGCTGTACGCCGAGCAGAGCTGGCCGGTGCTCACCCAGGCGCTCGACGAGGCCATCAACGTCGGCACCGGGGACACGCTGCTGTACCTGGCGGACTTCTACAACGACCGCAACGCCGACGGCTCGTTCGCGACCAACTCCACCGAGGCGTTCACGGCGATCAACTGCCTGGACAGCGCCGGCGCCACGGACCTCGAGACGATGCGGGCCGAGGCCGCCGAGATCGAGGAGGCGGCGCCCACGATGGGGTCGTTCTTCGGCTACGGCGGGCTGTCCTGCGCCGACTGGCCCTACCCGCCGGCCGAGCAGGAGTACGACGTCGCGGCGTCCGGGGCCGACCCGATCGTCGTCATCGGCACCACCAACGACCCGGCCACGCCGTACGTCTGGTCCGAGGGCATGGCCGACGCGCTCGACTCCGGGGTCCTGGTGACCTACGAGGGGGAGGGACACACCGCCTACGGCCGGTCGAACGACTGCATCGCCGACGCCGTGGAGAACTACCTCGTCGAGGGCACGGTGCCCGAGGACGGCCTCACCTGCTGA	MKFPARRTPPQTDLPASRRIAALAGTVVAALALAGCTAETPGKTATPVDEATTAAPMTPSAAGAPEGFEDFYAQDLEWTDCRGGYECATATAPLSWDDAEAGSIELALVRTRATGQKVGSLLVNPGGPGGSGADFVENGSFGEPLRESFDIVGFDPRGVQDSTAVECYDDEAKDEYLSEDFDLSTDDGLEAARASTAAWAEACAANTGELLGEVDTQSAARDMDLLRAVLGDEQLHYLGFSYGTSLAATYAGLFPERAGRLVLDGAIDPTLDADEISAGQAVGFENALRAYVTDCQAGADCPLTGSVDAGMQQVRDVLDRAYDRPYPTSGDRDVTQTLAFYGVAVTLYAEQSWPVLTQALDEAINVGTGDTLLYLADFYNDRNADGSFATNSTEAFTAINCLDSAGATDLETMRAEAAEIEEAAPTMGSFFGYGGLSCADWPYPPAEQEYDVAASGADPIVVIGTTNDPATPYVWSEGMADALDSGVLVTYEGEGHTAYGRSNDCIADAVENYLVEGTVPEDGLTC				NA	NA	NA	NA	NA
AK001_01854	1137			hypothetical protein	GTGACCGTGTGGGACGACGTCGTCGGCCAGCCGGAGGCCGTGGGCGTGCTGCGGCGCGCCGCGACCGACCCGGCCGCGATGACCCACGCCTGGTTGCTGACGGGCCCGCCCGGCTCGGGGCGGTCCGTCGCCGCGCGGGCGTTCGCCGCGGCGCTGCAGTGCCCCGAGGGCGGCTGCGGGCGCTGCCGCGAGTGCACCACCACGCTCGCCGGGACGCACCCGGACCTGACGGTCGTGGCCACGGACAAGGTCGTGATCGCCATCGACGAGGTGCGCGACCTCATCACCACCGCCGCGCGCACGCCCTCGGTGGGGCGGTACCGCGTCATCGTCGTCGAGGACGCCGACCGCATGGTCGAGCGCACCACCAACGTGCTGCTGAAGTCGATCGAGGAGCCGCCGGCGCACACCGTGTGGGTGCTGTGCGCGCCGAGCAGCCAGGACGTCCTGCCGACGATCCGCTCGCGGTGCCGCGGCGTCGTGCTGCGGGTCCCGCCGGCCCGCGACGTCGCCGAGCTGCTGGTGCGGCGCGACGGCACCGACCCCGCCGTCGCGCTGCAGGCGGCCCAGGCCGCGCAGTCCCACGTCGGGATGGCCCGCCGCCTGGCCCGCGACCCCGAGGCGCGGCGCCGTCGGGCGGACGTGCTCGAGATCGCCCGCCGGATCCGCGGGGTCCCCGACGCGGTGCTGGCCGCCGCCGACCTCGTCGAGGTCGCCAAGGCCGAGGCGACCGCCGCGACGACCGAGCGGGACGCCGCCGAGCGGGCCGAGCTGCTGCGGGCCCTCGGCGTCGCCGAGGGGGAGACCGTCCCGCCGAAGCTGCGGTCCCAGGTCAAGCAGCTCGAGGACGACCAGAAGCGCCGCGCGACCCGCAGCCAGCGCGACGTCCTGGACCGGGCGATGGTCGACCTGCTGTCGCTGTACCGGGACGTGCTGGTCGTCCAGCTCGGCGCGGACGTCGACCTCGTCAACGCCGAGCAGGCCACCACGGTGCGCGGGCTCGCCCGCGACTCGACCCCGGAGCAGACGGTGCGCCGCATGGACGCGATCGGCCAGGCGCGCGAGCGGCTGGCGGGCAACGTGGCGCCCCTGCTCGCCGTCGAGGCGATGACCGTCGCGCTGCGTCCGCAGGGCTGA	MTVWDDVVGQPEAVGVLRRAATDPAAMTHAWLLTGPPGSGRSVAARAFAAALQCPEGGCGRCRECTTTLAGTHPDLTVVATDKVVIAIDEVRDLITTAARTPSVGRYRVIVVEDADRMVERTTNVLLKSIEEPPAHTVWVLCAPSSQDVLPTIRSRCRGVVLRVPPARDVAELLVRRDGTDPAVALQAAQAAQSHVGMARRLARDPEARRRRADVLEIARRIRGVPDAVLAAADLVEVAKAEATAATTERDAAERAELLRALGVAEGETVPPKLRSQVKQLEDDQKRRATRSQRDVLDRAMVDLLSLYRDVLVVQLGADVDLVNAEQATTVRGLARDSTPEQTVRRMDAIGQARERLAGNVAPLLAVEAMTVALRPQG				NA	NA	NA	NA	NA
AK001_01855	723	tmk	COG0125	Thymidylate kinase	GTGAGCAGCGCACCCGGGTACTTCGTGTCGTTCGAGGGCGGCGACGGCGCCGGCAAGTCGACGCAGGCCCGCCTGCTCGCCGAGTGGCTCGGCGCGGTCACGGGCCGCGAGGTCGTGCTGACGCGCGAACCCGGCGGCACCCCCCTGGGGGCGGAGCTGCGACGGGCCGTCCTGCACGGCGACGACGTCGACCCGCGCACCGAGGCGCTGCTCTACGCCACCGACCGGGCGCACCACGTGGCCACCGTGGTCCGGCCCGCCCTGGAGCGCGGCGCCGTCGTGGTGACCGACCGCTACCTCGACTCCTCGGTCGCCTACCAGTCCGGCGGCCGCGAGCTCTCCCAGGACGAGGTCGAGAACCTCTCGCTGTGGGCCACCGACGGGCTGCTGCCCGCCGTGACCGTGCTGCTCGACGTCGACCCCGCCACCGCCGCGGCCCGTCGCGCGGGACGCCCGGACCGCCTCGAGCGTGCCGGCCTCGACTTCCACCGGCGCACCCGGGACGCGTTCCTGCGCCGCGCCGTGGCCGACCCGGACCGCTGGCTCGTCATCGACGCCACCGGCACCGTCGACGACATCCAGGCCCAGATCCGGGTCGACGTCGCCTCCCGCCTCGACCTGACGCCCGTGGTCGAGGAGGCAGCGCGCCTGTCGGATCCCGAGGTGTCAGCGGTGCGGGCCCCCGCCGACCCGTCCGGCGCGGACCCGGAGGACGTCTCGTGA	MSSAPGYFVSFEGGDGAGKSTQARLLAEWLGAVTGREVVLTREPGGTPLGAELRRAVLHGDDVDPRTEALLYATDRAHHVATVVRPALERGAVVVTDRYLDSSVAYQSGGRELSQDEVENLSLWATDGLLPAVTVLLDVDPATAAARRAGRPDRLERAGLDFHRRTRDAFLRRAVADPDRWLVIDATGTVDDIQAQIRVDVASRLDLTPVVEEAARLSDPEVSAVRAPADPSGADPEDVS	PGPT0021395_569	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943	NA	NA
AK001_01856	399			hypothetical protein	ATGACCGACGACGGAACGACCACGACGCTCACGGACGACGAGTGCTGGGCCGTGCTCGCCGACCAGCCGATCGGCCGCCTGGCGACGGCCGTCGCCGGTGAGCCGGAGATCTTCCCGGTCTCCCACGCCGTCGCGGACGGGCGCATCTACTTCCTCACCCGACCGGGCAGCAAGCTCGTCGAGGTGACGGTCAACAACCGCGTGGCCTTCGAGGCCGACGAGTGGCGGTTCGACACGGCCTCCAGCGTCGTGCTCAAGGGCACCGCGGAGGTGCTGGAGACGGACGAGGACATCGCCGCCGCCGAGGCGACCGAGCTGGTGCCCTACCTGGACGACGGCAAGAACGTGTGGGTGCGGATCACGCCGACCGAGATCAGCGGCCGCCGGCTGACCCGCTGA	MTDDGTTTTLTDDECWAVLADQPIGRLATAVAGEPEIFPVSHAVADGRIYFLTRPGSKLVEVTVNNRVAFEADEWRFDTASSVVLKGTAEVLETDEDIAAAEATELVPYLDDGKNVWVRITPTEISGRRLTR	PGPT0028780_2540	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005	NA	NA
AK001_01857	1074	iolU	COG0673	scyllo-inositol 2-dehydrogenase (NADP(+)) IolU	ATGACCGACCTCAGCGCCGCCGTCGACCCGTCCGCCTACGCCACCCGCCTGACCGCCGACGACCTGCTCGGCACCGTCCCCGACCTGATGGACGCTCCGGCGATCCGTTGGGGCGTCCTCGGCGCCGGGAACATCGCCGGGTCCTTCTCCGACGGCGTCCGGGACCGGACGGCGTCCCGGGTGACCGCCGTCGGCTCCCGCTCCGTGGACAAGGCCCAGGCGTTCGCCGACGCGCACGCCCCCGGCGCGCGGGCGCACGGCTCGTACGAGGAGCTCGTGGCCGACGACGAGGTCGACGTCGTCTACGTCGCCACCCCGCACTCGCACCACCTGGAGCACGCGCGGCTCGCGATCGCCGCCGGCAAGCACGTGCTCGTGGAGAAGCCGCTGACCCGCTCCGTGGCCGAGTCGCGCGCGCTGCTGGACGCGGCCCGCGAGGCCGGGGTGTTCCTGCTGGAGGCGGTGTGGACCCGCTACCTGCCGCACGTCGCGGCGATCCGTGCGGCGATCGCCCGCGGCGAGATCGGCGAGGTGCGCACGGTGCTCGCCGACTTCGACGTCTACCGCGACTACGACCCCACGCACCGGCTGTTCGCCCCGGAGCTGGCGGGCGGCGCGCTGCTCGACCTCGGGATCTACCCGATCACCCTCGTCCACGACCTGCTGGGGGTGCCCGCCGAGACCGTGGCCCGCGGGACGCTCGCCGAGACCGGCGTCGACGACCACGTCAGCATGATCCTGTCCTACGACTCGGGGGCGCAGGCGGTGCTGCACACGTCCTCGACCGCCCGTGGGGCGGCCGGCGCCCGCATCATCGGCACCCGCGGCCGCATCGAGATCCCCGAGAGGTTCTTCACCCCGGCCGACTTCACCGTCGTGCGCGACGACGGGACGAGCTGGTCGTTCACGTCCCCGGCCGGCGAGGGCAAGGCCTACGAGGCGGCCGAGGTGGCTCGCTGCCTCGCGGAGGGGCGGACCGAGAGCGCCCGGATGCCGTGGGGCCACACGCTCGAGGTGATGGGCATCCTCGACGACGTGCGGGCGCAGCTCGGGGTCACGTACCCGGGGGAGTGA	MTDLSAAVDPSAYATRLTADDLLGTVPDLMDAPAIRWGVLGAGNIAGSFSDGVRDRTASRVTAVGSRSVDKAQAFADAHAPGARAHGSYEELVADDEVDVVYVATPHSHHLEHARLAIAAGKHVLVEKPLTRSVAESRALLDAAREAGVFLLEAVWTRYLPHVAAIRAAIARGEIGEVRTVLADFDVYRDYDPTHRLFAPELAGGALLDLGIYPITLVHDLLGVPAETVARGTLAETGVDDHVSMILSYDSGAQAVLHTSSTARGAAGARIIGTRGRIEIPERFFTPADFTVVRDDGTSWSFTSPAGEGKAYEAAEVARCLAEGRTESARMPWGHTLEVMGILDDVRAQLGVTYPGE				NA	NA	NA	NA	NA
AK001_01858	474	ohrR		Organic hydroperoxide resistance transcriptional regulator	ATGGATCGACCGGACGACCCCCTGGCGCTCGAGGCGCAGGTCTGCTTCGCGCTGTCGGCGGCCTCGCGCGCGATGGTGGCGCTGTACCGCCCGGTGCTCGAGCCGCTCGGGCTGACCCACCCCCAGTACCTCGTGCTGCTCGGGCTCTGGGAGGACGACGGCGCCGGACGCACCACCACGGCGACCGGACTCGCCGACCGGCTCTACCTCGACCCGGGCACGCTCTCGCCGCTGCTCAAGCGGCTGGAGACCCAGGGTCTGCTCGCGCGGCGCCGGTCCGCGGCCGACGGTCGGGTCGTCGAGGTGCACCTGACCGAGGCCGGCCGGGCTCTCCGTGCCGAGGCGGTCGAGGTGCCGGGGCGGGTCGTCGCCGCCTCGGGGCTCGGACTCGACGAGCTCGAGCGGGTGCGGGCCGCCTCGGACGCGGTCATCGCCGCCGCGCACGGCGAGCGCGCCGATACGGTGGGGCCATGA	MDRPDDPLALEAQVCFALSAASRAMVALYRPVLEPLGLTHPQYLVLLGLWEDDGAGRTTTATGLADRLYLDPGTLSPLLKRLETQGLLARRRSAADGRVVEVHLTEAGRALRAEAVEVPGRVVAASGLGLDELERVRAASDAVIAAAHGERADTVGP	PGPT0013155_166	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
AK001_01859	219			hypothetical protein	GTGGGACTGTTCCGCCGCCGCCCCGACGACGACCGCACCTGGGGCATGCGGTTCACCGAGTCGTTCCTGCCGGTCTTCGGCCCGGCGTCGATCCGGCGCACCCCGCCCGTCCCGCCGAGCGCGGAGGACCGGGCCCGCGAGGCACGGCTGCGCAGCACCTACGAACGGGTCACGGGTCCGGACGGCCACGCCTACGTCGTCGAGCGCCACCCCGACTGA	MGLFRRRPDDDRTWGMRFTESFLPVFGPASIRRTPPVPPSAEDRAREARLRSTYERVTGPDGHAYVVERHPD				NA	NA	NA	NA	NA
AK001_01860	1071			hypothetical protein	ATGAGGACACCTGCCACCGCCCTCCCGGTCTCCCTGCGCCTCGGGCAGATCCCCGCGATGCTCAACGCCGAGCTCGCCGACCATCCCGTGTACGACGGCTTCGAGCTCCAGCGGTTCGACGACCCCGAGCGCGGCACGGGGCTGCTCGCGTTCCTCACGCGCCGCGAGGACGGCGCGGTCGACTACTACCCCCAGCGCGGCCTGCGGCTGGACCGCGGCACGTACGCGATCGGCGGCGGGATCCGGTCATGGACCGAGACCGACTTCGACCGGGCCCGGCTGGAGGTCGACGCGGCCGGCACGGTCGCCCAGGTGCGGTTCACCGACGTCGACGGCCGCCTCGTCGAGATCGACGTCGACGACCGGGCGGCCGGACCCCGGCACCCGGCCCGGCTCCTCGCCCCGGTCGGGGCCGACGTCCGCCGCCCCGCCTCGCTGATGCTCGTGTGGATGCCGGAGTTCGACCTGCTCCGTGCGGTCCCGGGCCGCGATCCCGTGGTCCGCATCGGCGGCCGCGACGCCGCGACCGGACGTCTGCCCGCCCGCCGCCTGCACCGCCGGCACCTCGTCAAGACCTCCGGGCGGCTGTGGGTGCTCGAGCTCAACCGCGACGGCGACGACCCCGCGAGCGCCGGAGGTCCCGGCGAGGCCGTCCACGCTGCGGGCACGGACGATCTGCGGGCGGTCCGCCGCACCGTGGACGGGCACACCGCCCGGGTGGAGTTCCGCCCGCCGCTGCCGGACCCGGAGGCCCTCGCCGATGGTGCCCGCGCCACCGGGGCGTGGCGCGTCGGTGTCGACGACGCCGTCCTCACCGGCGGCACCTGGTCCGTCACCGCGACCGGCAGCCGCGTCGAGATCGACCTGGAGGTCACCCAGCGGTGGCGGCCCCGCGGCCTGCCCTGGCTGATGCGCCTGGTCACCACGGCGGTGCCCGTGTTCCGCACCTGGCCCACGACGTACGCGTGGCACGCCGCGATCCCCCGCGACGATCGCGCCCCCGTCACCGCCGCCTGGCGACGCACCGGCTCCGGCGGCGGCGCCGGCTATCGGCGCGCCACGGGCGGCTGA	MRTPATALPVSLRLGQIPAMLNAELADHPVYDGFELQRFDDPERGTGLLAFLTRREDGAVDYYPQRGLRLDRGTYAIGGGIRSWTETDFDRARLEVDAAGTVAQVRFTDVDGRLVEIDVDDRAAGPRHPARLLAPVGADVRRPASLMLVWMPEFDLLRAVPGRDPVVRIGGRDAATGRLPARRLHRRHLVKTSGRLWVLELNRDGDDPASAGGPGEAVHAAGTDDLRAVRRTVDGHTARVEFRPPLPDPEALADGARATGAWRVGVDDAVLTGGTWSVTATGSRVEIDLEVTQRWRPRGLPWLMRLVTTAVPVFRTWPTTYAWHAAIPRDDRAPVTAAWRRTGSGGGAGYRRATGG				NA	NA	NA	NA	NA
AK001_01861	2775	topA	COG0550	DNA topoisomerase 1	ATGCCTCAGGCCCGCAAGCTCGTGATCGTCGAGTCCCCGACCAAGGCTCGCAAGATCCAGGGCTACCTCGGCGACGACTACGTCGTGGAGGCGAGCGTCGGCCACATCCGGGACCTCCCGCAGCCCTCGGAGCTGCCCGCGGAGATGAAGAAGGGGCCGTACAAGAAGTTCGCGGTCGACGTCGACAACGGCTTCGACCCCTACTACGTGGTGCACGCCGACAAGAAGTCCAAGGTGCGCGAGCTCAAGGCCGAGCTGAAGAACGCCGACGAGCTCTTTCTCGCCACGGATGAGGACCGCGAGGGCGAGGCCATCGCGTGGCACCTCATCGAGGAGCTCAAGCCCAAGGTGCCGGTCCGCCGGATGGTCTTCCACGAGATCACCCGCGAGGCCATCACCCGCGCGCTGGAGAACACGCGGGACCTGGACCACGACCTGGTCGACGCCCAGGAGACCCGCCGCATCCTGGACCGCCTGTACGGCTACGAGGTCTCGCCGGTGCTGTGGCGCAAGGTCCGCCAGGGGCTGTCCGCCGGGCGTGTGCAGTCCGTGGCCACCCGGTTGGTGGTCGAGCGCGAGCGTGACCGCATGGCGTTCGTGACCGCGGACTACTGGGACGTGACGGGCTCCTTCGCCCCGGAGTCCGGGGACGACGCCGGTCAGCTCTTCCGCGCCCGCCTGACCGGCCTGGACGGCGACCGCGTGGCCGCGGGCCGCGACTTCGACGACCTGGGCCGCCTCAAGGTGCGCACCGGCGTCGCCCACCTCGACGAGGCCGGGGCGAACGCCGTCGTCGCCGGGCTCGACGGCGCCGCGTTCGCCGTCCGGTCCCTGGAGACCAAGCCGTACTCGCGCAAGCCGGCCGCACCGTTCACGACCTCGACGCTGCAGCAGGAGGCCTCGCGCAAGCTGCGCATGGCCTCCCGGCAGACGATGCGCACCGCGCAGGCGCTGTACGAGAACGGCTACATCACCTACATGCGGACCGACTCGCCCGCGCTGTCCGCCGAGGCGACCGACGCCGCCCGGCGGCAGGCCGCCGAGCTGTACGGGTCCGAGTACGTGCCCGGGGCGCCGCGGCTCTACGCCTCGAAGAACAAGGGCGCCCAGGAGGCGCACGAGGCGATCCGTCCCGCCGGCGACTCGTTCCGGACCCCGGCCCAGGTGGCCGGCGAGATCTCGGGCGACCAGTTCAAGCTCTACGAGCTCATCTGGAAGCGCACCGTGGCCTCGCAGATGGCCGACGCCAAGGGGTCGACGGCGTCCGTGCGGCTGGCCGCGACGCTCGGCTCCGGGGCGGGCGACCGCACCGGGTCGGACGCCGTGTTCTCGGCCTCCGGCACGGTCATCACGTTCCGCGGGTTCCTCGCCGCGTACGAGGAGTCCAAGGACGTCGAGACGCCCGAGGGCGGCGGTGCCGCGCCGTCCGGCCCGCAGGAGAACCGGCTGCCGCGCATGGCCGAGGGCGACGCGCTCGCGGGCACGGAGATCGCCGCCGACGGGCACTCCACGAGCCCGCCCGCGCGCTACACGGAGGCCTCGCTGGTCAAGGCGCTCGAGGAGCTCGGCATCGGGCGCCCCTCGACGTACGCCGCGACGATCTCGACGATCCAGGACCGCGGCTACGTGCGCACCAAGGGCCAGGCCATGGTGCCCACCTGGCTGGCGTTCGCCGTCGTGCGGCTGCTCGAGGAGCACTTCGCCCGGCTCATCGACTACGACTTCACCGCCGAGATGGAGGCCGACCTCGACCAGATCGCGGCCGGCGACCGCGAGCGCCTGGCCTGGCTGACCCGGTTCTACTTCGGCGAGGGCTCCGAGGACGGCCGGGGCGGCCTGCGCGACCTCGTCGAGAACCTCGGCGAGATCGACCCGGTGGCGATCAACTCGGTGCAGATCGGCGAGGGCATCCGGGTGCGCGTGGGCCGGTACGGCCCGTACCTGGAGGACCTGGAGGCGGAGCCGGGCAAGGACGGCAAGGCGCCGCGGGCCTCGGTGCCCGACGACGTCGCCCCGGACGAGCTGACGGTGGCCAGGGCGCGCGAGCTGCTCAAGGCGGGGGCCGACGACGGCCGCGTGCTCGGCGTCGACCCGGACTCGGGGAACGAGATCGTGGCGAAGAACGGCCGGTTCGGCCCCTTCGTCACCGAGAAGCTCGACCTGCCCGAGATCGACCCGAACCTGTCCCAGGCGGCCCAGAAGAAGGCGAAGGCCGCGCAGCCGAAGCCGCGCACGGGGTCGCTGCTGAAGTCGATGTCCCTGGACACGGTGACGCTCGAGGACGCGCTGAAGATCCTGTCGCTGCCGCGCGTGGTCGGGACGGACCCGGAGTCCGGCGAGGAGATCACCGCGCAGAACGGTCGGTACGGGCCCTACCTGAAGAAGGACAAGGACTCCCGCTCGATCGAGTCCGAGGAACAGCTCTTCACGATCACCCTCGACGAGGCGCTGAAGATCTTCGCCCAGCCCAAGCGCCGCGGCCGGGCGGCGGCCGCGCCGCCGCTGAAGGAGCTCGGCGACGACCCGAACAGCGGCAAGCCCATCGTGGTCAAGGACGGCCGGTTCGGTCCGTACGTGACCGACGGCGAGACGAACCGGACGCTGCCGCGGGACGCGACCCCGGAGTCGATCACCGCCGAGCGGGCGATCGAGCTGCTGGCCGAGAAGCGGGCCCAGGGGCCGAAGAAGCGCAGCGCGTCGGCCAAGAAGTCGACGACCAAGAAGACGCCGGCGAAGAAGGCTCCCGCGAAGAAGTCGTCGACGGCGAAGAAGTAG	MPQARKLVIVESPTKARKIQGYLGDDYVVEASVGHIRDLPQPSELPAEMKKGPYKKFAVDVDNGFDPYYVVHADKKSKVRELKAELKNADELFLATDEDREGEAIAWHLIEELKPKVPVRRMVFHEITREAITRALENTRDLDHDLVDAQETRRILDRLYGYEVSPVLWRKVRQGLSAGRVQSVATRLVVERERDRMAFVTADYWDVTGSFAPESGDDAGQLFRARLTGLDGDRVAAGRDFDDLGRLKVRTGVAHLDEAGANAVVAGLDGAAFAVRSLETKPYSRKPAAPFTTSTLQQEASRKLRMASRQTMRTAQALYENGYITYMRTDSPALSAEATDAARRQAAELYGSEYVPGAPRLYASKNKGAQEAHEAIRPAGDSFRTPAQVAGEISGDQFKLYELIWKRTVASQMADAKGSTASVRLAATLGSGAGDRTGSDAVFSASGTVITFRGFLAAYEESKDVETPEGGGAAPSGPQENRLPRMAEGDALAGTEIAADGHSTSPPARYTEASLVKALEELGIGRPSTYAATISTIQDRGYVRTKGQAMVPTWLAFAVVRLLEEHFARLIDYDFTAEMEADLDQIAAGDRERLAWLTRFYFGEGSEDGRGGLRDLVENLGEIDPVAINSVQIGEGIRVRVGRYGPYLEDLEAEPGKDGKAPRASVPDDVAPDELTVARARELLKAGADDGRVLGVDPDSGNEIVAKNGRFGPFVTEKLDLPEIDPNLSQAAQKKAKAAQPKPRTGSLLKSMSLDTVTLEDALKILSLPRVVGTDPESGEEITAQNGRYGPYLKKDKDSRSIESEEQLFTITLDEALKIFAQPKRRGRAAAAPPLKELGDDPNSGKPIVVKDGRFGPYVTDGETNRTLPRDATPESITAERAIELLAEKRAQGPKKRSASAKKSTTKKTPAKKAPAKKSSTAKK				NA	NA	NA	NA	NA
AK001_01862	1008			hypothetical protein	ATGAACGGCGACTCCCGGCACGCTCCGGTCGCGGTGCCCCCCGGCGGGGGCGGTGCGACCGCGCCGGCACCTGCCCCGGCCCCCTCGCCGGTCGCGCGGCTCGTCGCGCCGCCGCGCCCCGAGACCCGTCCGGGCGCTCAGGTCGCCGCGGCCGCCGTCGCGCTCGTCGCCGTCCTCGCGGTCTGGCTGACCTACCGGGTGTTCGTCACGACCCTGCCGGGCCAGCAGCTGGACGACCTGGCCCGCGACGGCGCGCTGTACGGGCAGGACAGCCTGTGGCGCGTCGCCGAACCCGTGCTCGACGTCGTCTCGGTGGCCTTCGTGGTCGCGGGGATCGGCGCCGCGATGCTCGTCGCCGTCGTCCGCCGCCGCTGGATCCTCGCGCTCCAGGTCGCCGTCCTGGTGGGCGGGGCCAACCTGACCACCCAGGTACTCAAGCACTCGGTGCTGACCCGCCCCGACCTGCTGCCGGGCTGGTACAGCGGCAACACGCTGCCCAGCGGGCACACCACGGTGGCGGCCTCCGTCTCCGTCGCGCTGCTGCTCGCCACGCCGCGCGCCTGGCGGCCGGTCGTGGCGCTGCTGGGCGCCTCGTACACCGCGGCCACCGGTGTCTCGACGCTCGTGGGGCAGTGGCACCGGCCGTCCGACGTCGTCGCCGCCCTGTTCGTCGTGCTCGCCTGGGGCGCCCTCGTGTGCGCCCTGACGCCGGCGTCCTCCCTCGACGTCGCACCGCGTCGACGTCGGCTGCCCTCCGGGGAGCCGGAGCCGCACGCCTTCTCGTCCCCCGGGTCCTCCGCCGTCGCAGGGCTGATGCTGCTCGGCGCCCTGGTGACCGGGATCCTCGCCTTCGCCGGGGGAGTCCGGCTCGTCGACGCCGCGAGCGTGCCGATCGGCGAGGACGTCACCGCCTACGCGGTCGGCGTGCTCGGGGTGCTGGCCGCGACCGCGGCGACGTTCGCGCTGCTGCTGCTCGTGCGGCAGGCCACGGCGCGTCCGCAGGACTGA	MNGDSRHAPVAVPPGGGGATAPAPAPAPSPVARLVAPPRPETRPGAQVAAAAVALVAVLAVWLTYRVFVTTLPGQQLDDLARDGALYGQDSLWRVAEPVLDVVSVAFVVAGIGAAMLVAVVRRRWILALQVAVLVGGANLTTQVLKHSVLTRPDLLPGWYSGNTLPSGHTTVAASVSVALLLATPRAWRPVVALLGASYTAATGVSTLVGQWHRPSDVVAALFVVLAWGALVCALTPASSLDVAPRRRRLPSGEPEPHAFSSPGSSAVAGLMLLGALVTGILAFAGGVRLVDAASVPIGEDVTAYAVGVLGVLAATAATFALLLLVRQATARPQD	PGPT0024170_10	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302	NA	NA
AK001_01863	336			hypothetical protein	ATGACCATCCTGAGATCTGTCGTCCTGTTCGCGGCCGCGGCGCTGTTCGAGATCGGCGGTGCCTGGTTGGTGTGGCAGGGCGTCCGCGAGCACCGCGGCTGGCTGTGGATCGGCCTCGGCGTCATCGCGCTGGGGCTGTACGGGTTCTTCGCCACCCTGCAGCCGGACGCGCACTTCGGGCGGATCCTCGCGGCCTACGGCGGCGTCTTCGTCGCGGGCTCCCTGGTGTGGGGGATGGTGGTCGACGGCTTCCGGCCGGACCGGTGGGACGTGATCGGCGCGGTCGTGTGCCTCGTCGGTGTCGCCGTCATCATGTACGCGCCGCGGCCGACCTGA	MTILRSVVLFAAAALFEIGGAWLVWQGVREHRGWLWIGLGVIALGLYGFFATLQPDAHFGRILAAYGGVFVAGSLVWGMVVDGFRPDRWDVIGAVVCLVGVAVIMYAPRPT	PGPT0029120_434	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029120-TC_SMR3-K09771	NA	NA
AK001_01864	828			hypothetical protein	GTGACCAGTCCCCGGCGAGCCTCGACCTGGTGGCGCCAGCTCGCGGCGCTCGCGGCGGCCTTCGCCGTCGGCCTCGGGCTCCTGGCGCTGCTGGTGCTCCTCGTGCCCGACGGGCTGCGGGTGGCACCGCACCACGCCGCCTCCGGTGCCGCGACCGGCGCGCCGGCCGCCGCGCCTGCCGACGTGCCGGCCCTCGGCACGGCGCTGTCCGCGACCTCGCCGGTGGCGTCGACGCCGTCGGCCGCCACGGAGAGCCCGGAGCGGGGCATCGTCGTCGACGGCGAACGGTCGCGGACCGACGCCGACCGCGCGATCGAGGTGCAACCGGCCGCGCCGTCGTCGTCGGCGCAGGACGAGGCGCCGCGGGACACCGGGCCGACCCCGGCCGACCGGCCCGACGACGGTTCCGGCGACGGGCCCGACGACGGAGCCGCCGGTGGCTCCGGTACCAGGTCCGCGGTCGCCGACCGGGTGCTGGAGCTCGTCAACGTCGAGCGGGCGGGGGCCGGCTGCAGCGCCCTCGTCGCCGACCCCGCGCTGGACGGCCTCGCCGCCGCGCACTCGGAGGACATGCGGTCGCGCGACTACTTCGACCACACCGATCCCGACGGCCGCACGCCGTGGGACCGCGCGGACGCCGCCGGGGTGAGCGGTCTGGCGGCCGAGAACATCGCACGCGGACAGCCGGACGCCGCGGCCGTCGTCGAGGCGTGGATGGACAGCCCCGGGCACCGCGCCAACATCCTCGAGTGCTCGCACACCCGGCACGGGCTCGGCACGGTCGCCGGTGCGGGCGGCCCCTGGTGGACCCAGCTCTTCGGCCGGTAG	MTSPRRASTWWRQLAALAAAFAVGLGLLALLVLLVPDGLRVAPHHAASGAATGAPAAAPADVPALGTALSATSPVASTPSAATESPERGIVVDGERSRTDADRAIEVQPAAPSSSAQDEAPRDTGPTPADRPDDGSGDGPDDGAAGGSGTRSAVADRVLELVNVERAGAGCSALVADPALDGLAAAHSEDMRSRDYFDHTDPDGRTPWDRADAAGVSGLAAENIARGQPDAAAVVEAWMDSPGHRANILECSHTRHGLGTVAGAGGPWWTQLFGR				NA	NA	NA	NA	NA
AK001_01865	951			hypothetical protein	ATGGAGATCGACCTCCGCCACCTGCGGCTGGTGACCGTCGTCGCGGAGCACGGCAGCGTGACCCGGGCGGCCGCCGCCCTGGGCATGGCGCAACCCGCGCTGACGGCGCAGCTCAACCGCATCGACGACGCCCTCGGCGGCTCGGTGTTCGTCCGCGACCGCCGGGGCGCCCGCCCGACCCCGCTCGGCGACCTCGTGCTGCGGCACGCCCGCGTCCTGCTGCCCGCGATGGACGCCTTCGGCGAGGACGTGCGTCGCCACGTCAGCGGCCGGACCGACGTCGTGACCTCGCTCCGGGTCGGCACCGTCGCGACGGTGCTGGGCGGCATCTTCCTCAACCGGCTGCGGGCCGACCTGACCGGGATCGCGCTGACGTCCTTCACGGCCTGGTCGGCGCAGGAGGCCAACCGGCGGCTGGCCGCCGGCGACCTCGACCTCGCGCTCGTCGGCGCCTGCGAGAACGAGGTGCTCCCCACCGAGGGCGACGTCGTGTGGACACGCCTGTTCACCGACCCCGTGTTCGTGCTGCTCTCCGACGAGCACCGGCTCGCCGGGAACACCGTCGTCCCGCTCGGCGAGCTGGCGAGCGAGTACTGGCTCTCCGCGCCGGGCGAGGGCTGCTTCGAGCGCTGCTTCGTCGCGGCCTGCGTGCGGTCCGGCTTCACCCCGCGGGAGGTCAGCGAGACCGAGCGGGCCTCGGCCATCGAGCAGGTCCGGGGCAACCACGCCGTCGGGCTCGTGCAGCCCCTGCTGCTCGACCAGCCCGGGGTGACGCCGGTGGCCCTGGAGGGCGAGCCGCTGGCCTGGACGCAGTACGTCGGCTGGCGCCGGGACGCCGCGTCCCGGTTCGACGTCGACGTCGTGCAGGCCGCCGCCCACGAGGCGCACCGGCAGGCCGTGGAACGCACGCCGGCCTACGCGCGCTACCTCGCCGAGCGCGTCGCGGACTGA	MEIDLRHLRLVTVVAEHGSVTRAAAALGMAQPALTAQLNRIDDALGGSVFVRDRRGARPTPLGDLVLRHARVLLPAMDAFGEDVRRHVSGRTDVVTSLRVGTVATVLGGIFLNRLRADLTGIALTSFTAWSAQEANRRLAAGDLDLALVGACENEVLPTEGDVVWTRLFTDPVFVLLSDEHRLAGNTVVPLGELASEYWLSAPGEGCFERCFVAACVRSGFTPREVSETERASAIEQVRGNHAVGLVQPLLLDQPGVTPVALEGEPLAWTQYVGWRRDAASRFDVDVVQAAAHEAHRQAVERTPAYARYLAERVAD				NA	NA	NA	NA	NA
AK001_01866	762			hypothetical protein	ATGGCAGAACGCGTGACGTTCGCGAGCAGCACCGGACCGGCACTGGCCGGCATCATCGACGAGCCCGAGGGGGAGGTCCGCGGCTGGGGCGTGTTCGTCCACGGCTTCACGCTCGGCAAGGACTCCCCCGCGGCAGCCCGCATCTCCAAGCAGCTCGCGGCCGAGGGCATCGGCATGCTCCGCTTCGACAACCTCGGCCTCGGCGACTCCGAGGGCGACTGGGGTGACGGCTCGTTCACCATCAAGGTGGCCGACGTCGTCAGGGCGGCCGAGTACATGGCCTCCCGCGGGACGCCGGCCGACCTGCTGGTCGGCCACTCCTGGGGCGGCGCGGCCGCCATCGCCGCGGCCCCGGAGCTGCCCGCGGTGCGCGCGGTGGCCACGGTCTGCGCGCCGTTCGACCCGAGCCACGCCGAGAACCACTACGACGACCTCGTCGACCAGGTGCTCGAGGAGGGCAACGCCGTGTGGCAGGTGGGTGGCAAGCGGCTCAACCTCAAGCGCGGCATGGTCGAGGACGTGCGCGAGGCGGACCTGGAGCACCGGATCGCCGAGCTGGACACCCCGCTGATGATCATGCACTCCCCCACGGACCAGACCGTCGGGATCGAGAACGCCAGCCGGATCTTCGCCGCGGCCCGCCACCCGCGCAGCTTCGTCTCCCTGGAGGGCTCCGACCACCTGCTCACCCGGCCGGGTCAGGCGCAGCGCGCGGCGCGGATCATCAGCGCCTGGGCCAACCAGTACCTGCAGCAGGACTGA	MAERVTFASSTGPALAGIIDEPEGEVRGWGVFVHGFTLGKDSPAAARISKQLAAEGIGMLRFDNLGLGDSEGDWGDGSFTIKVADVVRAAEYMASRGTPADLLVGHSWGGAAAIAAAPELPAVRAVATVCAPFDPSHAENHYDDLVDQVLEEGNAVWQVGGKRLNLKRGMVEDVREADLEHRIAELDTPLMIMHSPTDQTVGIENASRIFAAARHPRSFVSLEGSDHLLTRPGQAQRAARIISAWANQYLQQD				NA	NA	NA	NA	NA
AK001_01867	1569	prmC_2		Release factor glutamine methyltransferase	GTGACCCTCCCGGCGCCGTCCGGCGACGTGACCGCGCTGCGGTCCGCGCTGGCCGCGGCGGAGTACACCGTCGACGGCGTCGAGGACCTGCTGGGTCCGCTGGCCTCCGCCGCGCTGCACCGCGAGCAGACCGTCCCCGCCGAGCGGGTGCTGGCCCGTCGGGCCGACGACCCCCGGGCGACCCTGGCACGACTGTTCCTGCTCGGGCAGGAGACCACCCGTGGCGCGCTCGACGCCGCGCTGCCCGACGTCGGCGCCGCCGGTGCGCAGCGGCTCGGGCTGGTCGAGACCGCCGGGGCGGGTGCCGCGGACGCCGTTCGGGCGACCTGCGACCTGCGTCCTTACGCCGCGACCGACGTGGGCGGCCCCGTGCAGTGGTGGCTGGCCAGCGACCTGGGCGAGCTCGCCACGGGACGCCGACTCGCCGCCGACCACGTCCTCGGCGCGGGCGGTGCCTCGACGACGCTCGCGCAGGTCACGGTGCGCACCCCGGTCTCGCGGGTGCTCGACCTGGGCACCGGCTGCGGCATCCAGGCGCTGCACGCCGCCCGGCACGCGGAGACGGTCGTCGCCACCGACGTCTCGACGCGCGCGCTGGACTACGCGCGCTTCAACGCCGCGCTGAACGCGGCCGACGCCGACCTGGACCTGCGTGCCGGCTCGATGCTGGACCCCGTGCGCGACGACCGGTTCGACCTCGTCGTGTCGAACCCGCCCTTCGTCATCACCCCGCGGTCGGGCGCCGCCGGTGCCGCCGTGGACGCGGCGATCGGCGCGTTCGAGTACCGCGACGGCGGGCGGTCCGCCGACGACCTCGTGCGCGACCTCGTCACCGGCGTCGGCGCCGTGCTGGCCCCGGGCGGGGTGGCCCAGATGCTCGTCAACTGGGAGCACCGGCGCGGCGAGCCGTGGACCGAGAGGGTCGGCGCCTGGCTGGACGCCTCGGGTCTGGACGGCTGGGTGATCGAGCGCGAGCTGCTCGACCCGGCCGAGTACGCCGAGACCTGGATCCGCGACGGCGGCACGACGCCCGACCGCGAACCCGAGGCATGGGCCGCCGCCTACGGCGCGTGGCTGGACGACTTCGACGCGCGGGACGTCGAGGCCGTCGGCTTCGGCCTCGTCACGCTGCGCCGGCCCGTCGCCGGCGAGCCGACCCTGCGTCGGCTCGAGGAGCACCACGGCACGCTGCGTCAGCCCCTGGGCGGGCACGTCGCGGCGTCGTTGGCCGCGCACGACTGGCTCGAGCAGCGCACGGACGCCGAGCTGGCCGCCGAGCGTCTCGTCGTCGCCGGCGACGTCACCGAGGAGCGCTACCTCACCCCGGGGGCGAGCGACCCGAACGTCGTCGTCGTGCGTCAGGGCGACGGGCTCGGCCGCGGGATCCAGGCCTCCACGGGGCTCGCGGCGTTCGTCGGGGTCTGCGACGGCGAGCTGACCGTCGGCCAGATCGTCGGCGCGCTCGGCGCCCTGCTCGAGGTGTCCGCGGACGACCTCGCCGCGGAGCTGCTGCCCGCGGTACGCGGCCTCGTGCGCGACGGGTTCCTCGCGCCGGCCGACGCGTCCTGA	MTLPAPSGDVTALRSALAAAEYTVDGVEDLLGPLASAALHREQTVPAERVLARRADDPRATLARLFLLGQETTRGALDAALPDVGAAGAQRLGLVETAGAGAADAVRATCDLRPYAATDVGGPVQWWLASDLGELATGRRLAADHVLGAGGASTTLAQVTVRTPVSRVLDLGTGCGIQALHAARHAETVVATDVSTRALDYARFNAALNAADADLDLRAGSMLDPVRDDRFDLVVSNPPFVITPRSGAAGAAVDAAIGAFEYRDGGRSADDLVRDLVTGVGAVLAPGGVAQMLVNWEHRRGEPWTERVGAWLDASGLDGWVIERELLDPAEYAETWIRDGGTTPDREPEAWAAAYGAWLDDFDARDVEAVGFGLVTLRRPVAGEPTLRRLEEHHGTLRQPLGGHVAASLAAHDWLEQRTDAELAAERLVVAGDVTEERYLTPGASDPNVVVVRQGDGLGRGIQASTGLAAFVGVCDGELTVGQIVGALGALLEVSADDLAAELLPAVRGLVRDGFLAPADAS				NA	NA	NA	NA	NA
AK001_01868	594			hypothetical protein	GTGCCGGATTTCCCCACCGCGCGCGGCGTGGGCCACCATGGAACGGTGCTGACCTCTCGCCGACGCCCGCGCCGAGCCGCCGTCGCCCTCGCGGCGACGCTGGCGACCGTGCTGACCGTCGGTGCCTGCAGCAGCGGGGACCCGAGCTCGGAGGGCTCCGGCGCGGCGGCGTCGGCCGAGCCGATGCCGGCCATCTCGATCGGGTCCGACCTGACGATGAGCGGTGGCGGTGACGGGGACGGATCCGCCCCCTCGCCCTCCGTGAGCGAGGAGTGCCTCGAGCTGCAGCAGGTCTGGGCCGACACCAACCGCGCCCTGGCCGGCATCGACGAGGAGCACCCGCGAGCGCTCGTCTCCGGTTTCCGCGAGGCGCACCGCGCGATCACCTCGATCGACGCCCCCGACGTCGAGGGCTGGTCCGGGATGACCGGGTACCTCGACAGCGCCGTGAGCGCCCTGGCCGACGTCGACACCGACGACGCCGACGAGGTCGCCTCGGTCATGACCCTGACCTTCTCCGAGGCCGACACCGCCCGTGCCGCGACCGCGCACGGCCAGGTCACCGAGTACCTCGGCGGCGGGTGCCGCGAGTGA	MPDFPTARGVGHHGTVLTSRRRPRRAAVALAATLATVLTVGACSSGDPSSEGSGAAASAEPMPAISIGSDLTMSGGGDGDGSAPSPSVSEECLELQQVWADTNRALAGIDEEHPRALVSGFREAHRAITSIDAPDVEGWSGMTGYLDSAVSALADVDTDDADEVASVMTLTFSEADTARAATAHGQVTEYLGGGCRE				NA	NA	NA	NA	NA
AK001_01869	795			hypothetical protein	GTGCACGACGACGTCCCCGCCCCGGACGGTGTCGACGCAGGTCAGCCTGGTGCAGTGGGGCCGCCCGCCGACCTGCCGTGGGCGCCGGCGGCGGTGGCCACCGACGTGCCGCCGCTCGACGACGTGCTGACCGGTGCGGCCGCGCCCTCGGTGGCCGCAAGTCCTGGCGACGGCCCGAGCCGCCGTCGTCGCAGCCGGTCGGCCCGCGTGACGGGCCGCGCCGCCGGTGCCGGTCGTGACGCCGCCGGCCGCGTGGCGCACGGCGCTTCAGGGCTGCGGCGACGCGGCGTCGCAATCGCCCGGACCCGTCCCTCCGGCCGGTTCGCCCGCCGCAGCTCCCTGCTCGTCGCGACGGCCCTCGCGCTCGTCGCGGGCGTGGGTGCCGGTGCCGGGCTCGACGTCGTCGGCGGGGCGGGCGACAGCGCGCCCGCCCCGACCGCCGCCCTGCTGACCACGGAGCCGGAGACCTGCGCGACGGCGCAGGTGGCGTGGTCGCGGGCGGCGGCCGCCCAGGTGCAGATGGACCTGGAGTCGCCGAGGTCGCTGCGCACGGGGTTCGTCACCGCGCGCGACGCGCTGACCGGGCTGACGCCGCCGGCCGAGGTGGCGGCGGACTGGTCCACCGTGGCCACGTACGTGACCGTCGTGGCCGACGCCGCCGAGGAGGCGAAGAACTCCGAGGTCGAGGCCGCGGTGGCCGAGGCGATGTCGGGTCTGGACACCGCTGCCATGACGACGGCCTCCGAGCGGGTCACGACGCACCTCGCCGCCGACTGCGCCACGTCGGCGGAGTGA	MHDDVPAPDGVDAGQPGAVGPPADLPWAPAAVATDVPPLDDVLTGAAAPSVAASPGDGPSRRRRSRSARVTGRAAGAGRDAAGRVAHGASGLRRRGVAIARTRPSGRFARRSSLLVATALALVAGVGAGAGLDVVGGAGDSAPAPTAALLTTEPETCATAQVAWSRAAAAQVQMDLESPRSLRTGFVTARDALTGLTPPAEVAADWSTVATYVTVVADAAEEAKNSEVEAAVAEAMSGLDTAAMTTASERVTTHLAADCATSAE				NA	NA	NA	NA	NA
AK001_01870	522			hypothetical protein	ATGTGGGTAGCACCCGAGAAGGATCCGCGCACCACCGGGATCGACCCGGTCGGCGAGAAGGAGACCCTCTGGGAGTACCTCTGCCGCTACCGGATGACCCTCGTGATGAAGTGCGAGGGTCTGGACGCCGACCAGCTGGCGCGCCGCAGCGTGTACCCGTCGTCCCTGTCCCTGCTCGGCCTCGTGCGCCACCTCGCCAACGGCGAGCACCACTGGTTCTCCCGCGTCCTGGGCGGGTCGACCGCCGACGGACCCTTCGAGCGCCCCGGGGTCGAGGACGTCGAGTTCGACGAGGCCGTCGGCACCCCCGAGGCCGTGGCCGAGGCCTGGGAGGCCTGGCACCGGGCGGTCGATGCCGCCGACGAGCTCATGGTCGACGAGAGCCTCGACCGGGAGGTCCCGTTCGACGACGCGACCGTCGAGGTGCGCGACGTCGTCATCCACATGGTCGAGGAGTACGCCCGCCACATGGGCCACGCGGACCTGCTGCGCGAGTGCATCGACGGTCGCGTGGGGCTCTGA	MWVAPEKDPRTTGIDPVGEKETLWEYLCRYRMTLVMKCEGLDADQLARRSVYPSSLSLLGLVRHLANGEHHWFSRVLGGSTADGPFERPGVEDVEFDEAVGTPEAVAEAWEAWHRAVDAADELMVDESLDREVPFDDATVEVRDVVIHMVEEYARHMGHADLLRECIDGRVGL	PGPT0031940_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-POLYENE_AMPHOTERICIN_B_METABOLISM,PGPT0031940-amphORF1-NA	NA	NA
AK001_01871	975	ccpA_3	COG1609	Catabolite control protein A	GTGCCCACCGCCTCGCCCCGACCCCGACCGACGCTGCGCGACGTCGCCGCGACCGCCGGGGTGTCGAAGTCGCTGGTGTCACTGGCGCTGCGCGGCGACCCGGGCGTCTCCGAGAGCACCCGCGACCGCATCCTCGCCGTCGCCGAGCAGGTCGGCTACCGCCCCTCGCTCAGCGCCCGCACCCTCAAGCAGGGCCGGTCGATGCTGCTCGGCGTGGTCATCTCCAGCCTCGAGAACCCGTACCAGACCGAGATCGTCGCCTCCGTCGAGGACGCCGCCGAGCAGGTGGGGCTGTCCGTCGTCCTCGCCCACGGCTCGCGCGACCGCGGACGGCTCGCCGACCGGGTGCAGCAGCTCGGCGATCTCGGTGTCGACGGCCTCGTGGTGGTGTCGTCCTGGGTCCCCGACGAGGTGCTGACCGCGGCCGCGCGCCGGCTGCCGGTGGTCATGGTCGGGCGCACGGCGGACCCCGTGGCCGGCGTCGACTCCGTGACCAACGACGACGAGCAGGGTGCCGCTTTGGTGGTCGACCACCTCGTCGGCCGGGGGTACGAGCGGATCGCCCACGTGACGTCGTCGACCCGCCCCGCGGGCCTCGCCCGCCGTCGCGGGTACGAGGACGCGATGCGCCGCGCGGGGCTGGGCGACCACGTGCGTGTCGCGGCGCCGGACGCCGTCGACGGCCTGCTCGACGACGGCTACCGGGCGGTCTTCGCCCGCAACGACGTCGAGGCGTGCGACGTGCTCGACCGGGCGCTGGACCGGGGGTTGCGCGTCCCGGACGACGTCGCCGTCGTCGGGTACGACGACACCCTGCTCGCGCGCCGGGTACGGCCCGCCCTCACCACGGTCCAGCAGCAGCGCGAGGTGATGGGTGAACGGGCCGTCGCGCTGCTCACCGGACGGCTCGGCGGGCGCACCGACGACGTGCACGAGGTGCTCGAGCCCCGGCTGGTGGTCCGCGCCTCGGGCTGA	MPTASPRPRPTLRDVAATAGVSKSLVSLALRGDPGVSESTRDRILAVAEQVGYRPSLSARTLKQGRSMLLGVVISSLENPYQTEIVASVEDAAEQVGLSVVLAHGSRDRGRLADRVQQLGDLGVDGLVVVSSWVPDEVLTAAARRLPVVMVGRTADPVAGVDSVTNDDEQGAALVVDHLVGRGYERIAHVTSSTRPAGLARRRGYEDAMRRAGLGDHVRVAAPDAVDGLLDDGYRAVFARNDVEACDVLDRALDRGLRVPDDVAVVGYDDTLLARRVRPALTTVQQQREVMGERAVALLTGRLGGRTDDVHEVLEPRLVVRASG	PGPT0014791_439	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_01872	1743	gph_3		Phosphoglycolate phosphatase	GTGACCATCGCCCCCAGCCCCGAGACCACGTCCCTCGACACCCGCGCCGCCGCCCTGCGCACGCGACCCGCCGCGCTGCTGCTCGACTTCGGCGGGGTGGTGCTGACGACCCGCAAGCGGCCCGGCGGCACCGAGGAGATGGCCCGCCACCTGAAGGAGGTCCTCGCCCGGGCAGGTCACCACCGCAGCCACGCCGAGCTGGTCGAGCTGCTGCGCGGTGGCCGGACGGCGCTGAAGGACTGGAAGAACGCCTCCTCGCGCCGCCTGGCTCCCCCCGAGCTCGACCACCGCACGATCTGGCGCGAGTTCTACGGCTCCCCGCTGACCGCCGCGGAGCGCGACGTGCTGGCCGGGTCGGCCGGACTTCTCCAGGAACGCCTGACCCGGACGCTGACCGACCACACCGTCCGGCCCGGCGTGCGCGAGCTGCTCACCGCGGCCCAGGAGCTGCGGGTCCCGGTGGGCATCGTCTCCAACGCGCACTCCGGCCGGGCGCACCGGGCGATCCTCGCCGAGCAGGGGCTCGCCGAGGCGTTCGCCGTGCAGGTCTACTCCGACGAGGTCGGCATCCGGAAACCCCACCCGGGCATGATCGAGCTCGCCGCAGCGGCTCTCGGCACCTCGGCGGAGGCGTGCTGGTACGTCGGGGACACCTACGACCGCGACGTCGTCGCCGGACGGCGCGCCGGCGTCGGGGCCGTACTGCTCACCCGCGACCACCACACCGCCCACCCGCCGTTCGCCGTCGCCGACCGGCCCGACGTCGAGCTGCCCGACCCGGTCGGGCTGGCCGACCTGCTGCGCGCCGCCGAGCCCACCGGCCCCTCCGACGCCTCGCGAACGGCGCACGGCACGGACCGCGCAGGCCTCGGCACCCCGGCCGAGACGCCGGGGCGCGGAACCGGGGTCAGCGCCCTCCTCCTCGACCACGGCGGCGTCATCTCCACGTCGCACCGTGACGAGAGGACCCGTCGCGGGTTCGCCGCCGACCTCGCGGAGCGCCTGTGCCGCGCCGGGTACCCGACGACGACGGACGAGGCGGCAGGCGCCCTCGCGCAGGCCCGCGCCGCGCACAAGGCGTGGAAGGCCGACCACGAGGCGGGCCGCCCCACGGCGGACGACCCGGCCGGGCTCGTCACGGCCGAGATCGACGCCCCGACGTTCTGGGTCGACCTCGTCGGCCCGGGCCTCGACCGGCACGGCCCCGGGGTGCGGCACTGGCTGCGCGCCGAGGCGCACGCCCTCATGGTCGGCTACGCCCGCACCAAGTCGGTGCCCACCCTGCGGCCGGGCGTGCGCGAGCTGCTCGGCACCGCCCGTGCCGCCGGGGTACCCGTCGCCGTCGTCTCCAACACCGTCTGCGGCCGCGCCGTGCGCGAGGAGCTGGTCGAGGCGGGGCTGGACGACCTCGTCGGCGCGCACGTCTACTCCGACGAGCTGGGCGTGCGCAAACCCGACCCGACCACCGTGCGGACGGCCCTGACGGCGCTGGACGCCGACCCGGCCCGCGCCGTCTTCGTCGGGGACAAGCCGCACCGCGACGTCGTCGCCGCCCGGGCCGCCGGCGTCGGCACCACGGTGATCGTGCGCGGCGGCACCACCGACGACGCCGCGCTGGACGCCCTGCCGCCCGGCGACCCGCGCGCCCCCGACCACCTGGTCGCCTCGATGGAGGACGTCGACGCCCTGCTGGGCCGCGCCGTCCGAGGCGACCGGGACACCGACGCCGGCATCCGCCGGTAG	MTIAPSPETTSLDTRAAALRTRPAALLLDFGGVVLTTRKRPGGTEEMARHLKEVLARAGHHRSHAELVELLRGGRTALKDWKNASSRRLAPPELDHRTIWREFYGSPLTAAERDVLAGSAGLLQERLTRTLTDHTVRPGVRELLTAAQELRVPVGIVSNAHSGRAHRAILAEQGLAEAFAVQVYSDEVGIRKPHPGMIELAAAALGTSAEACWYVGDTYDRDVVAGRRAGVGAVLLTRDHHTAHPPFAVADRPDVELPDPVGLADLLRAAEPTGPSDASRTAHGTDRAGLGTPAETPGRGTGVSALLLDHGGVISTSHRDERTRRGFAADLAERLCRAGYPTTTDEAAGALAQARAAHKAWKADHEAGRPTADDPAGLVTAEIDAPTFWVDLVGPGLDRHGPGVRHWLRAEAHALMVGYARTKSVPTLRPGVRELLGTARAAGVPVAVVSNTVCGRAVREELVEAGLDDLVGAHVYSDELGVRKPDPTTVRTALTALDADPARAVFVGDKPHRDVVAARAAGVGTTVIVRGGTTDDAALDALPPGDPRAPDHLVASMEDVDALLGRAVRGDRDTDAGIRR				NA	NA	NA	NA	NA
AK001_01873	969			hypothetical protein	ATGTCCAGCGACGTCACCGCGGCGGGCACGTCCCGCGCCCGGCTCGCCGATCCCCGCACGCTGTCCGGTTCCCAGAAGCTCATGATCCTCGTGCTGTCCATGACCCTGTACGGCGTGGGCGACATCGTCGCCAGCGTCGTGCCGGAGCTCCAGGTCGGACCGCTCGAGCTCGGCGTCTCCTACTTCTCGTTCATCGCCGTCGTGCTCGCGGCGCTGCTGTCGCCGTTCTGGGTCGCCGTCGGCGCCCCGCTCGGCGAGCTCGTGTTCTCCGACATGCTGCTCGGGGACTTCTCCGGGTTCGGCGAGCTGGAAGGCTTCCTGCAGACCGCCCTGGCGATCTACGTCGCCGGCTGCCTGGTGCGCAACCCGCTCAACCGCGTCCAGGTCGCCCTGGCACCGGTCGTCATGGTGCTGGTCGACAAGATCTCGGGCGGTGTCGTCGACATCGCCAAGGTCCTCGTCGGCATCGACCCCGAGACCCTCGAGGAGGCCGACGGCCTCGTCGGCGCGTTCCTCCTCGCCGAGGGGCTGGACATCGTCGTCACCGTGGTGTTCTCCGGCATCCTCTTCGGCGCGCTGCCCGCCCTGTGGCTCACCCCGCGCCTGTACGGGAAGCTCGAGCCGATCATGGGGCTGCGCCCCCGCGACCCCGAGCACCCGCCGCACCTGTCCGGCCCGCGCGGCACGCGGTTCTGGCCCGTCGCCGTGCTGGCGCTGGTCGCCGCCGGGGCCCTCGCCCTGCTGGCCCAGTGGGAGGAGTTCGTCGGCCGGGAGGGCGGCATCTCCACCATCGGCGCCTTCGAACCGGACTACGTCGACCAGTACGGCGACGTGTGGCTCTGGATCGCCGCCGGCGTCGCGCTCGTCGTCGGCCTCGTCCTCTTCGTCCTGGTCGCCGCGCTGCGGCGCCGCCGCTCGGCCGACACCGCCGACGTCCGCAGCTCCGACGACGACGAGGCGTCCTTCTGA	MSSDVTAAGTSRARLADPRTLSGSQKLMILVLSMTLYGVGDIVASVVPELQVGPLELGVSYFSFIAVVLAALLSPFWVAVGAPLGELVFSDMLLGDFSGFGELEGFLQTALAIYVAGCLVRNPLNRVQVALAPVVMVLVDKISGGVVDIAKVLVGIDPETLEEADGLVGAFLLAEGLDIVVTVVFSGILFGALPALWLTPRLYGKLEPIMGLRPRDPEHPPHLSGPRGTRFWPVAVLALVAAGALALLAQWEEFVGREGGISTIGAFEPDYVDQYGDVWLWIAAGVALVVGLVLFVLVAALRRRRSADTADVRSSDDDEASF				NA	NA	NA	NA	NA
AK001_01874	1785	ykoD_1	COG1122	Putative HMP/thiamine import ATP-binding protein YkoD	ATGGCCGACGACCGCGACGCAGCACCGGCCGTGGAGGTCCGCGACCTGACGTTCCGGTACCCCGGAGCCGCGCAGGACTCCCTGCACGGGGTGGACCTGACGATCGAGGCCGGTGACTTCGTCGCGGTCGTCGGCGGCAACGGGTCCGGCAAGACGACGCTGTGCAAGACGTTCAACGGACTCGTCCCGCACTTCTGGAACGGCGACATCTCCGGCCGGGTCAAGGTGGCGGGCCGCAGCACGGCGCGACGCACCGTCGGCGAGATCGCCCACGACGTCGGCTACGTCTTCCAGGACTTCGGCAACCAGCTCGTGCGGCCCACCGTGCGCGACGACGTCGCCTTCGGCCCGCTGAACTTCGGGCTGGCGGACTGGGAGGCGCGGACGGACGCGGCGCTGCGCGCCCTGGAGATCGACGACGTCGCCGGTACCCACACCTGGCAGCTCTCGGGCGGGCAGCAGCACCTGACGGCGCTGGCCGGAGCGCTCGCCCTGGCCCCGTCGATCCTCGTCGTGGACGAACCCGCGGCGGAGGTCGACCCGCGGCGGGCCGCCGCGGTGTACGAGCACCTCACCCGCCTCAACGAGCAGGGCGTCACGGTGGTCGTCATCGAGCACCACGCCGAGCTCATCGCCCGCTACGCGCGCAGCGTCGTGCTCATGGACGCCGGGCGGGTGCGCTGGCACCTCCCGGTCGACGAGGCCCTGGCCCGCACGGCCGACCTCGCCGAGGCGCACATCCCGGCGCCGCAGGTCGTCGCGCTGGCGCAGGAGCTCGTGCCCGACGTGGCTGCCGGCCGGCGGCGACCGCCGCTGACGATCGAGGAGTGCGCCGCGATGCTGCGGGACGCGGGGCGGTCCGAGCAACCGGGTGCAGCGCTGCTGCGTGCTCCGGACCATCCCGGGGCCGACGGCTCCCCCGCACCCGGGTCGACCTCCGGTCCTCCCGCCGGGTCCGACGTCGTCGCCCGTCTGGACGGCGTGCGGTACGGCTACCGCACGATCTCGGGCGGCAAGCACACCGTGCTGGACGGCTTCGACCTCACGCTGCGGGCCGAGGAGCGCATCGCCCTGGTCGGCTCGAACGGAGCCGGCAAGTCCACGCTGCTGTCCCTGCTGTCGGGGCTCGCCGTCCCCGAGGCGGGCGCCGTCGAGGTGGCCGGCCGGGACACCCGCAGCGTCTCCGCCGCGCAGCTGTCCTCCCAGGTCTGCTACCTGCTGCAGCGTCCCGAGGAGATGTTCCTGACCGACTCCGTCCGGGCCGACGTCGCGATGCACCCCACCGGGCGGCGTGCCCCGGACGCCCGGGAGCTGGTCGAGCAGGTCCTCGACCGGACGCGGCTGACGGACCTCGCCGACCGGGACGGCCGCCTGCTGTCCGGAGGGCAGCAGCGCCGGGCGACCCTCGCCGTCGGGCTGGCGATGCGGCCGCGGCTGCTCCTGCTGGACGAGCCGACGTCGAGCCTGGACCTGCGCTCCCGCGACGACGTGATCGACATGCTCTCCGCCCTCGCCGAGCACATCCGCTGCACGGTCGTGGCGACGCACGACATGCACCTCGTCGCCGAGTGGGCGGACCGCGTCGTGGTGCTCGACCAGGGCCGCGTGGTCGCCGACACCGACCCCGCGACGTTGTTCGCCTCTCCCGACGTGCTGCGCCGGGCCCGGCTCGTGCCACCGCAGGTGACCCAGGTCGGCCACGCCCTCGGGATGGACCCGCTGCCGCTGTCCGTCGCCGAGACGACCCGGAGACTCGCCCCGCTGCCCACCGAGGAGCTCGTATGA	MADDRDAAPAVEVRDLTFRYPGAAQDSLHGVDLTIEAGDFVAVVGGNGSGKTTLCKTFNGLVPHFWNGDISGRVKVAGRSTARRTVGEIAHDVGYVFQDFGNQLVRPTVRDDVAFGPLNFGLADWEARTDAALRALEIDDVAGTHTWQLSGGQQHLTALAGALALAPSILVVDEPAAEVDPRRAAAVYEHLTRLNEQGVTVVVIEHHAELIARYARSVVLMDAGRVRWHLPVDEALARTADLAEAHIPAPQVVALAQELVPDVAAGRRRPPLTIEECAAMLRDAGRSEQPGAALLRAPDHPGADGSPAPGSTSGPPAGSDVVARLDGVRYGYRTISGGKHTVLDGFDLTLRAEERIALVGSNGAGKSTLLSLLSGLAVPEAGAVEVAGRDTRSVSAAQLSSQVCYLLQRPEEMFLTDSVRADVAMHPTGRRAPDARELVEQVLDRTRLTDLADRDGRLLSGGQQRRATLAVGLAMRPRLLLLDEPTSSLDLRSRDDVIDMLSALAEHIRCTVVATHDMHLVAEWADRVVVLDQGRVVADTDPATLFASPDVLRRARLVPPQVTQVGHALGMDPLPLSVAETTRRLAPLPTEELV				NA	NA	NA	NA	NA
AK001_01875	882	ecfT		Energy-coupling factor transporter transmembrane protein EcfT	ATGACCATCGCCGACGTCGCCGCACCGCACGGCACCTCCCCCGAGGTCGCGCCGGGCACGACCGGGACCCGGCACCGGTCCGGGCTCGACCGGGTGTCGGTCGAGTGGGTCAAGCTCGAGCTGATGCGCGTCGCCTACGCCACGCGCGGCGGGTTCCTCGCCCGTCGCGACCCGCGGGCCGTCCTGGGCTGGTACGCGCTGTGCGCGCTGGCCCCCTGGTTCACCTACTCCACGCCGATCCTGGTCGTCCTCTTCGTCCTCGCGCTCGGCTGCGCCCTGGCGGCACGGATCGGCCCGCTGCTGCTGGGCCTGTTCACGCTCGGGCTCGTGGGGCAGGCCGCCTACGTCCTGGTGCTCGTGCTCGTCCTCGGCGGCGACACCACGGCGCTCGACGGCCTGCTGCAGATCTCCCTGAAGCTCGGGGCGGTGTCGCTGGCCAGCATGGCGGCGTTCGTGTCGCTCGACCCCGAGAAGCTGTCCGACGGGCTGCAGGCGATGCGGGCGCCCGCCGTGCTCGGCTTCGCCATCAGCTACGGCTACCGCATGGTGCCGCTGCTCATCGACGAGTTCCACGACATCGTCGACGGCCACCGGCTGCGCGGGGCCCCGCACCAGGGGCACGGGTTCCTCGGGTGGCGGACGATCGCGCGGATCGGCCGCATCGCCGTGCAGGCCTTCTACCCGCTGTTCCTCAACACCGCGCAGCGCACGCGGACCACGGTCGAGGCGATGGAGACCCGCGGGTTCACCAGCGCCGGGCCGTCACCGGCCGGACGCCGGCTGCGGCTGGCGTACCTGCAGTGGCGCGTGGGCGACACGCTGCTGCTCGTCGTCAGCGTCGCCGTCGTCGTCGCGGTCTACACGGTCCTGCCGACCCCCTGA	MTIADVAAPHGTSPEVAPGTTGTRHRSGLDRVSVEWVKLELMRVAYATRGGFLARRDPRAVLGWYALCALAPWFTYSTPILVVLFVLALGCALAARIGPLLLGLFTLGLVGQAAYVLVLVLVLGGDTTALDGLLQISLKLGAVSLASMAAFVSLDPEKLSDGLQAMRAPAVLGFAISYGYRMVPLLIDEFHDIVDGHRLRGAPHQGHGFLGWRTIARIGRIAVQAFYPLFLNTAQRTRTTVEAMETRGFTSAGPSPAGRRLRLAYLQWRVGDTLLLVVSVAVVVAVYTVLPTP	PGPT0004015_799	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785	NA	NA
AK001_01876	2643			hypothetical protein	ATGTCTCTGCAGCGCACCATCGCCGGGCTCAGCGGCGCCGCCGTCGCCCTGTCCGTGCTCGCCGTCCCGGCGGCCGTCGCGGACGAGCCCGACGCCTCGCCGGCGGACGGCGGCCGCGGCTCGGAGGGGACCCCGGCCACCACGGGGAAGTCCTTCGCCGAGCTCGTCCAGGCCGCCAAGACCGGCCCGGCGGCCAAGGCGACCGACAGCTCCCTGGAGATGCCGACGTCGTACCCGTACCAGCCCGAGCTGACGGTCTACGACCCGGTCGAGGGTGACGTCACCGAGCGTAACGAGACGATCGCCTACTCGGACATCGCGCCCCGCCTGGCCGAGCTGATGGCCGCCAGCGACCGGGTGTCCACGCAGGTGGTCGGGCAGTCGACCGGCGGCCGCGACCTCTACCTCGTCACCGTCACGGCGCCCGAGACGCGTGGCGAGACCAACCAGCAGACCCGGTGGCGCGAGGAGATCCGGCAGGACCCCGAGCGCGCCGCCACCGACGCGCAGCTCGCGGCGGGGTACAAGACGCCGCTGTGGATCAGCGCGAACATCCACGGCAACGAGTGGGAGGGCACGGACGCGGCGATGCAGGTCATCGCCGACCTCGCGACCGCCGAGGACGAGGGCACGGCCGAGCTGCTCGAGAGCCACCGGCTCTACTTCTCGGTGTCGCTCAACCCCGACGGCCGCACGATCGGTACCCGGGCCACCGAGCTCGGGTTCGACGCCAACCGCGACATGGTCACCGGCGCCACGCCCGAGGCGCGCTCGTTCGTGGCGACAGCCCAGACGCTCCAGCCGCTCTACGCCGCCGACTTCCACGGCTACACCGGCGTGCTCCAGGTCGAGCCCTGCGGGCCGCCGCACGGCGACAACTACGAGTACGACCTGTTCATCCCGCACGGCTACGCGCTGGCCCAGCAGGTCGAGGCCGACGTCGTCGACGCCGACATCGAGGGCAACACCTACTTCGACACCGAGACGGGTCGGTCGACCGACGAGAAGACCGGGAACATCAAGATCCCGTACCGCGACACCCCGAGCGGGTGGGACGACTACCCGCCGATCTTCACCGCCCAGTACGCGGCCTACCACGGCGCCGTGACCAGCACCGTCGAGCTGCCGCACGGCCGCTCCTGGTCGCTCGGGACGACCACCCCCGAGGACGCCGCGATCAACACCGAGGTCGCCCGGGTCACGATGGTCTCGATGCTCGACTACGTCGCCGCGCACAGCGACGAGATGCTCGCCAACCAGATCGAGACCTTCCGTCGCGGCGTCGAGGGCGCGCCCAAGGAGTCGCTGACCACCGAGACGATCGCCGACGTCGCAGGACCCGACGCCTGGAAGGAGCTGTGGGACGTCACCGACGACCAGGAGCCGGTGGACCTGCCGCGCGCCTACGTCATCCCGGTCGGCGACGGCCAGCGCTCGTCGTCCGACGCCGAGGCCCTGGTCGACGCCCTGCTCTACCACGGGGTCGAGGTCGGGACGCTGCAGCGGTCCACCGAGGTCGGCGGCGAGACGTTCCCCGCCGGTTCCCTCGTGGTCGACATGCACCAGCCGCGCCGCGGTCTGGCGAACACGCTCCTCGCCACCGGGTCGGACATCTCCGAGAAGCTGCCCACGATGTACGACATCTCGGCGTGGAGCCTCGCCGACCTGTGGGGCGCCACCGTCGTCGCGGTCGGCGACACGACCGACGCCGCGCTCGGCGGCACGACGCCGCTGCACCGCGTCCCGCAGGACGGCGTGCTGCCGAAGAAGGCCGACCACGTCGTCTTCGACCTCGCCGGCATCGAGGACTTCCGGGCCCTCAACGCGATCCTCTCCGAGGACGCCCCGGCGTGGCTGCTCGACGACGGTCGTGCCGTCGTCGGGCCCGAGGGCCTGCCGGCCGCCGCCGACGCCGTGGTCACGTTCGACATCCCGTTCGAGGCCGCCACGGCCGCGGAGGTCGCCTCCCTGGACGAGGCTGCCGTGCTCGAGGACCTCACGGTCGCGTACACCGGCGGGTCCGACGACGTCGTGGCGCTGACGGACCTCGGGTTCGACGACCTCGTCCCGGTCTCCTCCTCGGGCGTCTCGGCCGGTGCGGCCGACGGCACCACGGGTCTCGAGGACGCTGACGTGCTGTGGGTCGGGTCCTCCTTCAACCCTGACGCGGCGGGCGACGCCGCCGTGCAGGAGTGGCTCGACGCCGGCGGGGCGATCGTCGGCGAGTCGACGTCCGGGTTCGCGGCGGCCGAGGCGTACGGCCTCGTCGAGGGCGACGCGGTGCGCGGGAACTCGCGCGGCAACGGGATCGTGGCGGTGGACACGCCGACCGGGTCGATCTTCGCCCCGCACCCGCAGGACACCTCGTTCATCTACCCGGCGGTCTGGTTCACGGGCCTCGGGGAGAGCACGTCGGTCGAGCTGGCCTACGACGCCGGGTCGCCGTTCCTGGCCGGGCACTGGAACGGCCTGTACGGGCCGGGCCAGGACGTGGCCGCGGGCCAGGCGGCCGTCGTGTCCGGCGAGACGGCCACCGGTGCCCGTGCGGTCGTGTTCGGCACGACGCCGTTCTTCCGGACCCACCCCAAGGGCGGGATGAGCCAGGTCGCCACGGCGATCTTCTGGGCCGCCTCGGGCGACTGA	MSLQRTIAGLSGAAVALSVLAVPAAVADEPDASPADGGRGSEGTPATTGKSFAELVQAAKTGPAAKATDSSLEMPTSYPYQPELTVYDPVEGDVTERNETIAYSDIAPRLAELMAASDRVSTQVVGQSTGGRDLYLVTVTAPETRGETNQQTRWREEIRQDPERAATDAQLAAGYKTPLWISANIHGNEWEGTDAAMQVIADLATAEDEGTAELLESHRLYFSVSLNPDGRTIGTRATELGFDANRDMVTGATPEARSFVATAQTLQPLYAADFHGYTGVLQVEPCGPPHGDNYEYDLFIPHGYALAQQVEADVVDADIEGNTYFDTETGRSTDEKTGNIKIPYRDTPSGWDDYPPIFTAQYAAYHGAVTSTVELPHGRSWSLGTTTPEDAAINTEVARVTMVSMLDYVAAHSDEMLANQIETFRRGVEGAPKESLTTETIADVAGPDAWKELWDVTDDQEPVDLPRAYVIPVGDGQRSSSDAEALVDALLYHGVEVGTLQRSTEVGGETFPAGSLVVDMHQPRRGLANTLLATGSDISEKLPTMYDISAWSLADLWGATVVAVGDTTDAALGGTTPLHRVPQDGVLPKKADHVVFDLAGIEDFRALNAILSEDAPAWLLDDGRAVVGPEGLPAAADAVVTFDIPFEAATAAEVASLDEAAVLEDLTVAYTGGSDDVVALTDLGFDDLVPVSSSGVSAGAADGTTGLEDADVLWVGSSFNPDAAGDAAVQEWLDAGGAIVGESTSGFAAAEAYGLVEGDAVRGNSRGNGIVAVDTPTGSIFAPHPQDTSFIYPAVWFTGLGESTSVELAYDAGSPFLAGHWNGLYGPGQDVAAGQAAVVSGETATGARAVVFGTTPFFRTHPKGGMSQVATAIFWAASGD				NA	NA	NA	NA	NA
AK001_01877	2298	hppA	COG3808	K(+)-insensitive pyrophosphate-energized proton pump	ATGCTCACACTCGGGTCCGACAGTCTGACGATCGTCGCCGTCATCGCGGTGATCGCCCTGGCCGCTCTGGTCTGCGCGGGGACCCTGCGTCGCCAGGTCCTCGCCGCCGACGAGGGGTCCAGCGCGATGCAGGACATCGCCCAGGGGGTCCAGGAGGGGGCCTCGGCCTACCTCAACCGGCAGTTCCGCACCCTGGCGATCTTCGCCGTCGTCGTGTTCGGGCTGCTGTTCCTCCTGCCGGGCGACGGCGGGGTCCGGATCGGCCGGTCGGTCGCCTTCCTCGTCGGGGCCGGGTTCTCCGCCGCGATCGGCTACCTCGGGATGTGGCTGGCGGTCCGGGCCAACGTCCGCGTCGCCGCGGCCGCGACCGTGGCCGGCGGCCGGGCGCTCGGCGCCCGGATCGCGTTCCGCACCGGCGGCGTGGTCGGCATGTCCGTCGTCGGTCTCGGTCTGCTCGGCGCGGCCGGCGTGGTGCTGGTCTACCGCGGGGACGCGCCCGCCGTGCTCGAGGGCTTCGGGTTCGGCGCCGCGCTGCTCGCGATGTTCATGCGGGTCGGGGGCGGCATCTTCACCAAGGCGGCCGACGTCGGCGCGGACCTGGTCGGCAAGGTCGAGCAGCACATCCCCGAGGACGACCCGCGCAACGCCGCCACCATCGCCGACAACGTCGGGGACAACGTGGGCGACTGCGCCGGGATGGCCGCCGACCTGTTCGAGTCCTACGCCGTGACCCTCGTGGCCGCGCTCATCCTCGGCAAGGCCGTCATGGGCGAGCAGGGTCTCGTGTTCCCGCTGATCGTCACCGCCGTCGGGGCCTTCGTCGCCCTGCTGGGCGTCCTCATCACCCGCGTGCGGGGCAGCGAGTCGGGGCTGACCGCGATCAACCGCGGCTTCTACGTCTCGGCCGTCGTCGGCGCCGCGCTGGCCGCCGTGGCGGCGTTCGTCTACCTGCCGAGCAGCTTCGAGAGCATGGGCGGCACCGCCGACCTCGCGGGCGTCACCTCCGACCCGCGCGTGGTGGCCTCCCTGGCGGTGCTGATCGGCATCGTCCTGGCCGGTGTCATCCTGTGGACCACCGGGTACTTCACCGGCACCGAGTCCAAGCCCACCAAGCACGTCGCGGCCACCTCGCGCACCGGCGCCGCGACGGTGATCCTGTCAGGGATCGGCGTCGGCTTCGAGTCGGCCGTGTACACCGCGGGCATCATCGCCGCCGCCATCTGCGGCGTGTTCCTGCTGGCCGGGGGGTCGATCTGGCTGTCGCTCTTCCTCGTGGCGCTCGCGGGCTGCGGCCTGCTGACCACGGTCGGCGTCATCGTCGCGATGGACACCTTCGGGCCGGTGAGCGACAACGCCCAGGGGATCGCCGAGATGTCCGGCGACGTCGACGAGGAGGGCGCGCAGACGCTCACCGACCTCGACGCCGTGGGCAACACCACCAAGGCCATCACCAAGGGCATCGCCATCGCGACGGCGGTCCTGGCCGCCACGGCCCTGTTCGGCTCCTACGCCGACGCGGTCGAGACGGCGCTGGGCGACGTCGCCGTGGCGACGGACGGGCTGGTCGCCTCGATGCTCAGCTACGAGATCATCTCCCCGGTGACGCTCGTGGGGGTGATCCTCGGGGCCGCGACGGTGTTCCTGTTCTCCGGTCTGGCCATCGACGCCGTGACGCGGGCCGCCGGGGCGATCGTGTACGAGGTGCGGCGCCAGTTCCGCGAGCACCCGGGGATCATGACCTACGAGGAGCGCCCCGAGTACGGCCGGGTCGTGGACATCTGCACCAAGGACTCCCTGCGCGAGCTCGCGACGCCGGGTCTGCTCGCCGCGTTCGCGCCCATCGCCGTCGGGTTCGGCCTCGGGGTGGGGCCGCTGGCCGGCTTCCTCGCCGGGACGATCGGCGCCGGCGTGCTCATGGCGATCTTCCTGGCCAACTCGGGCGGCGCGTGGGACAACGCGAAGAAGATCGTCGAGGACGGCGCCTACGGCGGCAAGGGGTCGGAGGCGCACGAGGCGACGATCATCGGCGACACGGTCGGCGACCCGTTCAAGGACACTGCCGGCCCGGCGATCAACCCGCTGATCAAGGTCATGAACCTCGTGTCGCTGCTCATCGCGCCGGCGGTGGTCATGCTGTCCGTCGGCGGGGACGCCAACCACGTGGTCCGCATCGCCATCGCGTGCGTGGCCGCCGCGATCGCGCTCGGTGCCGTGGTGCTGTCCCGCCTCCGGGCGGCGCGCGTCGACGGCGAGACCGCGGCGGTCGAGGACCAGCCGGCACCGGTCTCGTCGCGCTGA	MLTLGSDSLTIVAVIAVIALAALVCAGTLRRQVLAADEGSSAMQDIAQGVQEGASAYLNRQFRTLAIFAVVVFGLLFLLPGDGGVRIGRSVAFLVGAGFSAAIGYLGMWLAVRANVRVAAAATVAGGRALGARIAFRTGGVVGMSVVGLGLLGAAGVVLVYRGDAPAVLEGFGFGAALLAMFMRVGGGIFTKAADVGADLVGKVEQHIPEDDPRNAATIADNVGDNVGDCAGMAADLFESYAVTLVAALILGKAVMGEQGLVFPLIVTAVGAFVALLGVLITRVRGSESGLTAINRGFYVSAVVGAALAAVAAFVYLPSSFESMGGTADLAGVTSDPRVVASLAVLIGIVLAGVILWTTGYFTGTESKPTKHVAATSRTGAATVILSGIGVGFESAVYTAGIIAAAICGVFLLAGGSIWLSLFLVALAGCGLLTTVGVIVAMDTFGPVSDNAQGIAEMSGDVDEEGAQTLTDLDAVGNTTKAITKGIAIATAVLAATALFGSYADAVETALGDVAVATDGLVASMLSYEIISPVTLVGVILGAATVFLFSGLAIDAVTRAAGAIVYEVRRQFREHPGIMTYEERPEYGRVVDICTKDSLRELATPGLLAAFAPIAVGFGLGVGPLAGFLAGTIGAGVLMAIFLANSGGAWDNAKKIVEDGAYGGKGSEAHEATIIGDTVGDPFKDTAGPAINPLIKVMNLVSLLIAPAVVMLSVGGDANHVVRIAIACVAAAIALGAVVLSRLRAARVDGETAAVEDQPAPVSSR				NA	NA	NA	NA	NA
AK001_01878	1308	apeB	COG1362	putative M18 family aminopeptidase 2	ATGGCTCCGAACGACACCTCCGTGCCCGACGCCGCCCGCGAGCATGCCGAAGACCTCGGCCGGTTCGTGACCGCGTCCCCGTCCTCGTACCACGCCGCCGCCGAGCTGGCCCGCCGCGCCGAGGACGCCGGGTTCGCCCGGCTGACCGAGACGGACGCCTGGGAGGTGGCCCCCGGCGGGCGCTACGTCGTCGTGCGCGACGGGTCGGCGATCGCGTTCACGGTCCCGCCGTCGGCCGGCCCGACCACGCCGTTCAGCATCCTGGGCACCCACACCGACTCCCCGGGCTTCAAGCTCAAGCCGCGCCCGACGACGGGCCGCAGCGGGTGGGTGCAGGCCGGCGTGGAGGTGTACGGCGGGCCGCTGCTCAACTCCTGGCTGGACCGTGAGCTCGAGCTGGCCGGCCGCCTCGTGACCCGCGACGGCGCCGAGCACCTGGTACGCACCGGTCCGTTCGCCCGCATCCCGCAGCTCGCGATCCACCTGGACCGCAGCGTCAACGACGGCCTCGCGCTCGACAAGCAGCGCCACACCCAGCCCGTGCTCGGGCTCGGCGAGGTCAGCGAGCACGACGTGCTCGCCGAGCTCGCCGCCCGGGTCGACGGCAGGGCGGTCGACCCGGCCGACGTCCTCGGCTACGACGTCGTGGCCGCCGACTCCCAGGATCCGCGTGCGTTCGGCGCCCGCGGCGACCTGTGGGCCTCGGGCCGTCTGGACAACCTGCTCTCGACGCACGCCGCGCTCACCGCGCTGCTCGGGGCGGACCCGCAGGACCTCACGGGCGTCGCCGTGGTCGCGGCCTTCGACCACGAGGAGATCGGGTCGGAGTCCCGCTCCGGCGCGGCCGGCCCGTTCCTCGCCGACGTGCTGGGCCGCGTCTCCCGTGCTCTGGGCGCGGGTGGCGAGGACCGCCGGCGGGCGCTGGCCGCCTCGTGGTGCGTGTCCTCCGACGTCGGCCACGCCGTGCACCCGAACTACCCCGAGCGCCACGACCCGTCGAACCACCCGGTCGCGGGCGGCGGGCCGATCCTCAAGATCAACGCCAACCAGCGGTACACGACCGACGCCCACGGGGCCGCGCTGTGGCAGTCCGCCTGCGCGGCGGCCGGGGTGCCCAGCCAGGAGTTCGTCTCCAACAACACCATCCCGTGCGGGTCGACCATCGGCCCGATCACGGCGACACGGCTGGGGATCCGGGTCGTGGACGTCGGTGTGCCGATCCTGTCGATGCACTCCGCCCGCGAGCTCACCGCCGTCGTCGACCCCTGGTACCTGGCGCGGGCGATGGGCGCGGTGCTGGTGCGCTGA	MAPNDTSVPDAAREHAEDLGRFVTASPSSYHAAAELARRAEDAGFARLTETDAWEVAPGGRYVVVRDGSAIAFTVPPSAGPTTPFSILGTHTDSPGFKLKPRPTTGRSGWVQAGVEVYGGPLLNSWLDRELELAGRLVTRDGAEHLVRTGPFARIPQLAIHLDRSVNDGLALDKQRHTQPVLGLGEVSEHDVLAELAARVDGRAVDPADVLGYDVVAADSQDPRAFGARGDLWASGRLDNLLSTHAALTALLGADPQDLTGVAVVAAFDHEEIGSESRSGAAGPFLADVLGRVSRALGAGGEDRRRALAASWCVSSDVGHAVHPNYPERHDPSNHPVAGGGPILKINANQRYTTDAHGAALWQSACAAAGVPSQEFVSNNTIPCGSTIGPITATRLGIRVVDVGVPILSMHSARELTAVVDPWYLARAMGAVLVR				NA	NA	NA	NA	NA
AK001_01879	804			hypothetical protein	ATGACCTCACCTCTCCGGCGGCTCGGTGCGACCGTGGCCGCGGCGACCGCCGTCGCCCTCGTCCCCGTCGCCGGGCTCCCGGCGACGGCCGCCCCGGCCGCCGCGGCGCCGTCGACCGTCGCCGCCGCGGGCACCGCCGCCGTCGGCCCCCTGCCGGCCGCCACCACGAGCACCGTCCGCTGGGTCAAGGCCGACCGCGCCCGCACGACGGCGAAGCGCAGCCCGAGCAGCCGGACGATCGCCCGTCCCGACGACGGCACACGGCTCGTCGTGCTCGACCGGGCCCCGAAGCGGCTGAAGGTCCGGCTTCCCGACGGCAGGGTCGGCTGGCTCAGCAAGAAGCGCGTCACGACCGTCCCGCTGCGGGACATCACCGGGGTGCGCTACACGGCCAAGCGTCTGCGCGTGACGAAGCAGATCCGTGCGACGTCCCGGACGATCGGCTACGCCGACCTCGGGACCAAGGTCGTCAAGCGCGCCCGCACGACGCAGCGCGACGTCGACCGCATCAAGGTGCGGCTCCCCGGCGGGCGGACCGGCTGGGTGCGCGAGGGGCGGTTCACCCGGCGCGACGTGTGGGGCGAGCTCGCGCAGTGCGAGTCCGGCGGCCGGGTGCGCATCAACACCGGCAACGGGTACTACGGGATGTACCAGTTCACGGCCAGCACGTGGCGTGCCGTCGGAGGCTCCGGGCTGCCGCACTACCACGGTGCGAGGGAGCAGACGAAGCGGGCGCAGATCCTCCAGCGGCGCGCCGGCTGGGGCCAGTGGCCGCACTGCACGAGCAAGCTCGGGCTGCGCTGA	MTSPLRRLGATVAAATAVALVPVAGLPATAAPAAAAPSTVAAAGTAAVGPLPAATTSTVRWVKADRARTTAKRSPSSRTIARPDDGTRLVVLDRAPKRLKVRLPDGRVGWLSKKRVTTVPLRDITGVRYTAKRLRVTKQIRATSRTIGYADLGTKVVKRARTTQRDVDRIKVRLPGGRTGWVREGRFTRRDVWGELAQCESGGRVRINTGNGYYGMYQFTASTWRAVGGSGLPHYHGAREQTKRAQILQRRAGWGQWPHCTSKLGLR				NA	NA	NA	NA	NA
AK001_01880	2547	srmB_2		ATP-dependent RNA helicase SrmB	GTGCCGTCCCGCGAACCCGCCGCCCCGCCCGGGGACAACCACCCCCTGGTGGACGTGCTGACCGCGCACGGGGCCCGGGCCGACCGCCTGACGCACCTGCGCACGCTCCCGGCCCGCGACGGCGAGCACGCCGACTGGCCGGGATGGGCCGATCCCGCCCTGGTCGCCGGCTGCCGCGCCCAGGGCGTCGAGCGGCCCTGGACCCACCAGGTGACCGCGGCCGAGGCGACGTGGCGCGGTCAGCACGTGGCGCTGGCCACGTCGACCGGGTCGGGCAAGTCCCTCGCGTTCTGGCTGCCCGCCCTGACCGCCGTGCGCGCCGCGCGGCACACCACGGCGGCGGACGCCGGCCGGATCGAGGCCCGGACCCGCGGCGCGACCGTGCTCTACCTGTCCCCCACCAAGGCACTCGCCGCGGACCAGCTGACCAGTCTGACCGGCCTGCTCGACGCCGCCGGGATCCGGGACGTGCGCACCGCCACCTGCGACGGCGACACCCCGCGCGAAGAACGGCGCTGGGTCGTCGACCACGCCGACGTCGTGCTGACCAACCCCGACTTCCTGCACTTCGCCCTGCTGCCCCAGCACCGGCGGTGGACCCGGCTGCTGCGCGGCCTGCGCTACGTCGTGGTGGACGAGGGACACACCTACCGCGGGGTCTTCGGCGCGCACGTCGCGCTGGTGCTGCGGCGGCTGGCCCGGCTGGTCGAGCACCTGGGCGGCCGGGCGCCGACGGTCGTCGTGGCGAGCGCGACGACGGCGGACCCCGCCGGCAGCGCCGCCCGGCTCATCGGCGTCCCGCCCGAGGACGTCACCGCCGTCACCGCGGACTCCTCGCCCGCGGGGCGTCGCACCGTCGCCCTGTGGCGGCCGCCCGAGATCGCCGGGTTCGGCGTCGAGCGGGCCGGCGCGTCGGACCTGGACCCCGGGGCGGACGCCTGGGCGCTGCCCGACCCCCTGGACCCGCAGGCGCACGAGACCGACACCGTGCTCACCCGCACGGGAGAGGCCGACCACCCACGGCGCTCCGCCACCGCCGAGGTCGCCGACCTGCTCGCGGACCTCGCCGCCCACGGCGCCCGGACGCTGGCCTTCACCCGCTCCCGGCGCGGCGCCGAGTCCGTGGCGCAGCAGACCCGCGACCACCTGCGACCGGTCTCGGCGGACCTGGCCGGCCGGGTCGCCGCCTACCGCGGGGGCTACCTGCCCGAGGAGCGCCGCGAGCTGGAGGAGGCGCTGCGCTCCGGCGCACTGCTCGGTCTCGCGACGACGAACGCGCTGGAGCTCGGCGTGGACATCTCCGGGCTGGACGCCGTCCTGGTGGCCGGCTGGCCCGGCACCCGCATGTCGCTGTGGCAGCAGGCCGGCCGGGCCGGGCGCGCCGGCGCCGACGGGCTGGTGGCGTTCGTGGCGCGGGAGGACCCGCTGGACACCTACCTCGTCACGCACCCCGAGGCGGTGTTCGACGCCCCGCTGGAGGCCTGCGTGTTCGACCCGGCCAACCCTTACGTGCTCGCCCCGCAGCTGTGCGCCGCCGCGCAGGAGCTGCCCCTGCGCGCGGACGGGCTGGCCCGGTTCGGCGACCCCGGCCAGGTCCGCGAGATCCTCGACGTGCTGGTGGCCCGCGGCGCGCTGCGCCGGCGGCCGTCGGGCTGGTACTGGACGCACGCCCAGCCCGCCGCCGACCTGGCCGACCTGCGCGGCAGCGGTGGCCGTCCGGTCCGGGTCGTGGAGGCCGCCACGGGACGGCTGCTCGGCACCGTCGACGCCGGCTCGGCCGACGGACAGGTGCACGACGGCGCCGTCTACACCCACCAGGGCGTCACGTTCGTGGTGGACCACCTCGACCTGGCCGACCACGTCGCCCTCGTGGTGCGGCGGGACGTCGACCACGCGACCTGGTCGCGCGAGCTGATGGAGATCAGCATCGCCGAGCCCGGCGACGCCGAGCACCCGGCACCGGAGGGCGCTCCGCCGGCACGACGCCGCGAGTGGGGCCCGGTGACCTGGGGCCTCGGTCCCGTCGAGGTCACCAGCCAGGTCGTCAGCTTCCAGCGCCGCCGCGTCCCGGACATGCAGGTCCTGGACACCGAGGCCCTCGACCTGCCGCAGCGCACGCTCGGGACCACCGCCGTGTGGTGGTCGGTGCCGGACTTCGTGCTCCGGGCGGCGGGGGTGGACGACGACGTCGCGCCGGGCGCCCTGCACGCGGCCGAGCACGCGGCGATCGGCCTGCTGCCCCTGCTGGCGACGTGCGACCGCTGGGACCTCGGCGGGGTCTCCACCGCGCAGCACCCCGACACCGGGGAGGCCACGGTGTTCGTCTACGACGCCTACCCGGGCGGCGCCGGCTTCGCCGAACGGGGCTACGAGCTCGGGGCGCGGTGGCTGCGCGCCGTGCGCGACGCCGTCGACGCCTGCCCGTGCGCCGACGGCTGCCCGGCCTGCGTGCAGTCCCCCAAGTGCGGCAACGAGAACTCCCCGCTCGACAAGGCGGCCGCCGTGCGGCTCCTCGACGCCCTGCTCTCCCACGCGCCGTCGTCGTGA	MPSREPAAPPGDNHPLVDVLTAHGARADRLTHLRTLPARDGEHADWPGWADPALVAGCRAQGVERPWTHQVTAAEATWRGQHVALATSTGSGKSLAFWLPALTAVRAARHTTAADAGRIEARTRGATVLYLSPTKALAADQLTSLTGLLDAAGIRDVRTATCDGDTPREERRWVVDHADVVLTNPDFLHFALLPQHRRWTRLLRGLRYVVVDEGHTYRGVFGAHVALVLRRLARLVEHLGGRAPTVVVASATTADPAGSAARLIGVPPEDVTAVTADSSPAGRRTVALWRPPEIAGFGVERAGASDLDPGADAWALPDPLDPQAHETDTVLTRTGEADHPRRSATAEVADLLADLAAHGARTLAFTRSRRGAESVAQQTRDHLRPVSADLAGRVAAYRGGYLPEERRELEEALRSGALLGLATTNALELGVDISGLDAVLVAGWPGTRMSLWQQAGRAGRAGADGLVAFVAREDPLDTYLVTHPEAVFDAPLEACVFDPANPYVLAPQLCAAAQELPLRADGLARFGDPGQVREILDVLVARGALRRRPSGWYWTHAQPAADLADLRGSGGRPVRVVEAATGRLLGTVDAGSADGQVHDGAVYTHQGVTFVVDHLDLADHVALVVRRDVDHATWSRELMEISIAEPGDAEHPAPEGAPPARRREWGPVTWGLGPVEVTSQVVSFQRRRVPDMQVLDTEALDLPQRTLGTTAVWWSVPDFVLRAAGVDDDVAPGALHAAEHAAIGLLPLLATCDRWDLGGVSTAQHPDTGEATVFVYDAYPGGAGFAERGYELGARWLRAVRDAVDACPCADGCPACVQSPKCGNENSPLDKAAAVRLLDALLSHAPSS				NA	NA	NA	NA	NA
AK001_01881	870			hypothetical protein	GTGACTGACCAGGACGATCTCACCGCGCGCCGCGAGCGGCGCGAGACCACCCGTGTCGACCCGAGCAACTCCCGCTCGTGGCTGCTGCTGTCCGCGCTGCGGTCCGAGGACTTCGACGCCGCCGAGCTCTCGCGGGCCGACCAGCTCGTGCTGGACTGCGAGGACGCGGTGGACGACTCGCGCAAGGACGAGGCGCGCGACCGCGTCCTGGACTGGTTCCGCACCGGCGGCCGCGCGTGGGTGCGGGTCAACGAGCGGGGCGCGGACTCGTGGGCGGACGACATGAGCGCCTTCCGCGACGCCGACGGGCTGCGCGGCGTCATGCTCGCCAAGTGCGAGAGCCCCGACCAGGTCGTCGACACCGTGCAGCGCCTCGGCGGCGACGTGCCGGTGATCCCGCTGGTGGAGTCGGCGCTCGGGATCGAGGACGCCGTCGGGATCGCGCGCGCCCCCGGTGCCTTCCGGCTCGCCTTCGGCTCCGGGGACTACCGCCGCGACACCGGTGCCGCGAACGAGCCGCTGGCGATGGCCTACCCGCGCTCGCGCCTCGTGACGGCGTCGCGGATCGGTGAGCTGCCCGGGCCGATCGACGGCCCGACGGTGGGGTCCAGCCACCCGCTGCTGCGCGAGCAGTCCGGCGACGCCGTCGCGATGGGCATGACGGGACGCATCTGCCTGGACCTCGAGCAGCCCGCGGTCATCAACGAGACCCTCTCGCCCGCCCCGGCGGACGTGGCCTGGGCCCTGGACTTCCTCACGGAGTTCGAGGGCGCGGGGTCCGTGATCCGCGACGGCTCGGACAAGCCGCGTCTCGCCCGCGCCCGCCTCATCGCCGAGCGCTCGCGACTGTTCGGCATCGACCCGAGCTGA	MTDQDDLTARRERRETTRVDPSNSRSWLLLSALRSEDFDAAELSRADQLVLDCEDAVDDSRKDEARDRVLDWFRTGGRAWVRVNERGADSWADDMSAFRDADGLRGVMLAKCESPDQVVDTVQRLGGDVPVIPLVESALGIEDAVGIARAPGAFRLAFGSGDYRRDTGAANEPLAMAYPRSRLVTASRIGELPGPIDGPTVGSSHPLLREQSGDAVAMGMTGRICLDLEQPAVINETLSPAPADVAWALDFLTEFEGAGSVIRDGSDKPRLARARLIAERSRLFGIDPS	PGPT0019480_2102	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644	NA	NA
AK001_01882	351			hypothetical protein	ATGAGGCCGCGCGACCGGTCCGAGCGCGGCGCGGTGACGGCCGAGCTGGCGGTCGGTCTTCCCGTCGTCGTGCTGCTGCTGGTCGCGGTGCTCACGCTCGTGGCCGCGTCCGCCGCACAGCTGCGTGCGGCGGACGCGGCCCGGGCGGGCGCCCGCCTGGTCGCGGTCGGGGAGGACCAGGCACGGGTCCGGGCGGCCGTGGCCCGCGTCGGCGGACCCGACGCCGCGGCGACCGTCGTGCCCGAGGGCGACTGGGTGCGGGTGGTCGTCACCTGCCCGGTCGGCGCAGGAGTCCTCGCCGGGCTCCCGCTGGAGGCCACGGGCCAGGCGCTGGCCTGGGTCGAGCCGTGA	MRPRDRSERGAVTAELAVGLPVVVLLLVAVLTLVAASAAQLRAADAARAGARLVAVGEDQARVRAAVARVGGPDAAATVVPEGDWVRVVVTCPVGAGVLAGLPLEATGQALAWVEP				NA	NA	NA	NA	NA
AK001_01883	237			hypothetical protein	ATGACCGTCGACACCACCCCGCACGACCCGTCGGAGACCCCGGAGACCCCGGAGACCCCGGAGACCCGAGAGACCCGGGCGCCCGACCTCGACCCGGAGGCCGGGCTCGCCACCGCCGAGTACGCCATCGCCACCATCGCGGCGGCCGGTTTCGCGGGGCTGCTGATCCTGGTGCTGCAGAGCGAGACCGTGCGCGGGATGCTCGAGTCGATCATCAGCTCGGCCCTGACCGTATGA	MTVDTTPHDPSETPETPETPETRETRAPDLDPEAGLATAEYAIATIAAAGFAGLLILVLQSETVRGMLESIISSALTV				NA	NA	NA	NA	NA
AK001_01884	660			hypothetical protein	GTGATCGCGGTGGTGGTCGGGGCGCTCGTGCTCGCCGGGCTGGCGCCGTGGTGGTGGACGGCCGCCGCCGCGCGCCGTCGCCGACGGCAGGTCGTCGCCCGGACGACCGCGGTGCCCACCCGGCCGTCGGAGGTGCTGCACGGCGACGACCGGCCGCCCGGCGACGACGTCCGGTCCCCGCCGGGCCCGGTCGACGTCGCCGTGCTGCTCGAGCTGGTGGCCACGGCCGTGGGCGCCGGGGTCGGGGTGCCTCGTGCGCTGCAGGTGGTGGGTGCCGCCGTCGGAGGGGCCGACGGCCGGACCCTGCGCACCGTCGCGGTGGCCCTGCGCCTCGGCGGGGACTGGCAGAGCGCCTGGGACACGGCGCACGCGACCGCGCGGGCCGCGCCGGTGGCGGGTGGTGGCGGGCGTCCCCGCTCCCTCGACCCGCTCCGTGACGCCCTGCGCGGTGCCTGGACCGACGGCGTCGCGCCGGGGGACGCGCTGCGGGCCGCCGCGGGCGAGCTGCGGCAGCGGCGGCGGGCCGCGGCGCGCTCCGCGGCAGGCCGTCTGGCGGTGCGTCTCGTGCTGCCCCTGGGCCTGTGCTTCCTGCCGGCCTTCGTCCTGCTCGGGCTGGTGCCCGTGCTGTTCTCGCTCGGTGCGGACCTCGTGTCCGGCTGA	MIAVVVGALVLAGLAPWWWTAAAARRRRRQVVARTTAVPTRPSEVLHGDDRPPGDDVRSPPGPVDVAVLLELVATAVGAGVGVPRALQVVGAAVGGADGRTLRTVAVALRLGGDWQSAWDTAHATARAAPVAGGGGRPRSLDPLRDALRGAWTDGVAPGDALRAAAGELRQRRRAAARSAAGRLAVRLVLPLGLCFLPAFVLLGLVPVLFSLGADLVSG	PGPT0022290_48	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510	NA	NA
AK001_01885	486			hypothetical protein	GTGGCACTGGCCCAGGTGGTCGCGCTCCTGCGGGCGGGCTCCCCGCCCGCCGCGGCCTGGGCCCGTGGCCTGGACGTCCCCACCGGCGCCGACGGGGTGCCGGAGGCCGGACGTCTCGCCGAGGTGCTCACCGAGCCGCGCCGGACGGCGGCCGTGCTGGCCGGCGCCCGGCTGTCCCGGGACGTCGGGGCGCCGCTCGGGCAGGTGCTGGAGGCGGTGGCGGACGCTCTGGTGGCCGAGGACGAGGCCGCGGGCGAGCGGGACGCCGCCCTGGCGGGTCCGCAGACCACGGCACGGGTCCTGGCCTGGCTGCCCGTGCTGGGGGTGCTGCTCGGCGCGGTGCTCGGCGCCGACCCGGTCGGCACCGCTGCCGACGGCGGGCTCGGGACCGCCGCCGTCGTCGCCGGGACGGTGTCGCTGGCCGTCGGCCGGTGGTGGACGGCGCGCCTGGTGGGCGAGGCCCGGCGGGCCGGGGCGGAACCGTGA	MALAQVVALLRAGSPPAAAWARGLDVPTGADGVPEAGRLAEVLTEPRRTAAVLAGARLSRDVGAPLGQVLEAVADALVAEDEAAGERDAALAGPQTTARVLAWLPVLGVLLGAVLGADPVGTAADGGLGTAAVVAGTVSLAVGRWWTARLVGEARRAGAEP	PGPT0022290_2989	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510	NA	NA
AK001_01886	1164		COG4962	Putative conjugal transfer protein	ATGACGACGCTCGACGGCCGACTCCTGCACGACGTCCGCGCCCGCCTCGGCGGCGCCGACCGCACGGCGCCACCCGGCGAGGCCGACGTCGCCGCCGCACTGCGCTCCACCGGACGCGTCCTCGGGTCCGACGCGCTGACCGACCTCGCCCGCGCAGCCCGTGCCGAGCTCGTCGGCGCCGGACCGCTGCAGCCGCTGCTCGACGGCCCGGGTGTCACGGACGTCCTCGTCAACGGGCCCGAGGAGGTCTGGGTCGACCGCGGCGACGGACTCGAACGGGCCGACCTGGCGTTCCCCTCGCCCGACGCCGTGCGCGAGCTGGCGGTCCGGATGGCCGCCGTCGCGGGCCAGCGGCTCGACGACGCCAGCCCCGTCGTCGACGCCCGCCTGCCCGACGGCACCCGGCTGCACGCCGCGGTCGCCCCCGTGGCACCGGTCGGCGCGGCCATCGCCCTGCGGGTGCTGCGGCAGGCCACCTTCGACCTCGAGGCCCTGGCCGCGCACGGCACCGTCCCGGACCCCTGGCTGCCCGTGCTGCACGGCCTCGTCCGGCGCCGGGCCAACCTGCTGGTCACCGGTGGCACCGGGACGGGCAAGACGACGCTGCTCGCCGCGCTGCTCGGCCGGGTCCCGCACGACGAACGCCTGCTCACCGTCGAGGAGGCGCGCGAGCTCGCCCCCGTCCACCCGCACGTGCTGGCGCTCGCGGCACGCCGGCCCAACGTCGAGGGGGTCGGCGAGATCACCCTCGCCGACCTCGTGCGCGGCGCCCTGCGCATGCGGCCGGACCGGATCGTGCTCGGCGAGTGCCGCGGGGCCGAGGTGCGTGAGCTGCTCCTGGCCCTGAACACCGGGCACGACGGCGGCATGGCCACCGTGCACGCCAACGCCGCCGAGCACGTACCCGCGCGGCTCGAGGCCCTGGCCGCGCTGGCCGGCATGTCACGCGCCGCGGTCGCCGCGCAGGCCGCCGCCGCGCTCGACGTGGTGCTGCACCTGCGGCGGTACCGCGGCCGGCGCCACCTCGCCCAGATCGCCACCGTCAGCCGCTCCGAGCGCGGCGACCTGCAGGTGGCGCCCGTGGCGTCCTGGCGCGGGCCCGGCGGGACGGATCCCGAGACCGACGCCGCGTGGGACGCGCTGCGGGAACGGTGGGCGTCGTGA	MTTLDGRLLHDVRARLGGADRTAPPGEADVAAALRSTGRVLGSDALTDLARAARAELVGAGPLQPLLDGPGVTDVLVNGPEEVWVDRGDGLERADLAFPSPDAVRELAVRMAAVAGQRLDDASPVVDARLPDGTRLHAAVAPVAPVGAAIALRVLRQATFDLEALAAHGTVPDPWLPVLHGLVRRRANLLVTGGTGTGKTTLLAALLGRVPHDERLLTVEEARELAPVHPHVLALAARRPNVEGVGEITLADLVRGALRMRPDRIVLGECRGAEVRELLLALNTGHDGGMATVHANAAEHVPARLEALAALAGMSRAAVAAQAAAALDVVLHLRRYRGRRHLAQIATVSRSERGDLQVAPVASWRGPGGTDPETDAAWDALRERWAS	PGPT0016025_2991	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283	NA	NA
AK001_01887	684			putative protein	GTGCTCGCGGCCGCACTGGCCCGCACCCTGCGTCGCCGGGTCGGGGCGACCGCCCTCGTCGACCTCGACGTCCCCGGCCCCGGACTGGACGTGCTCCTGGGCGTCGACGCCGCGCCGGGCGCCTGCTGGGCCGATCTCGCCGACGCCCGCGGCACCGTCGACGGCGGCTCGCTCGTCGCGGCGCTGCCGCGCTGGGGAGCCGTCCCCGTGCTCTCCGGCGCGCATCGTGACCCCACGGCCCCGGCCGACCCGGTCGTGCTGGACACGACCACGGCGCTGCTGCGCACCGGGCACCGTGTCGTCCTCGACCTGCCGCGTCCCGTCGGCCGGACGGCCTCGGCGCTGTCGCTGGCCGGTGCGGCCGACGTCGTCGTGCTCGTGACCCCGCTGCGCACCGCCGGTGCGGCCGGGGCCCTGGCGACGGCTCGCCAGCTCGCCGAGGCCGGGACCCCGCGCGTGGTGCCCGTCGCGTGCCGCCCCGCCCCCGGACGGGTCGACGAGCGCGAGCTCGGTCGGCTCCTCGGACTCGCCGTGGCGGCCACGGTCGGGTGGGATCCCCGGCTGGCCGCCCAGGTCGAACGCGGCCACGGACCGCGCACCGGGCGCCGCACGCCGCTGGGCCGCGCGGCGGACCGGCTCGTCGAGCTCCTGCCGCAGCCGTCGGACCACCGGGGTGCGGCATGA	MLAAALARTLRRRVGATALVDLDVPGPGLDVLLGVDAAPGACWADLADARGTVDGGSLVAALPRWGAVPVLSGAHRDPTAPADPVVLDTTTALLRTGHRVVLDLPRPVGRTASALSLAGAADVVVLVTPLRTAGAAGALATARQLAEAGTPRVVPVACRPAPGRVDERELGRLLGLAVAATVGWDPRLAAQVERGHGPRTGRRTPLGRAADRLVELLPQPSDHRGAA				NA	NA	NA	NA	NA
AK001_01888	834		COG0560	putative phosphatase	ATGAGCACCTCGCCGCTGGATCCACGGCAGCACGGGGGCAGGGCGTCGGCCGGTCGTCGGGTGGCCGCGTTCTTCGATCTGGACAAGACGATCATCGCCACCAGCTCCACCGCGGCCTTCTCCACGTCGTTCCTCGCCGGCGGCCTGCTGACGCGCGGGGACGTGCTGCGCAGCGCGTACGCGCACTTCCTGTTCCTGGTCGGCAGCGCCGACGCCGACCAGACCGAGCGGATGCGCCAGCACCTCTCCGAGCTCGCGACCGGGTGGGAGGTGGCCAAGGTGACGCAGATCGTGGCCGAGACCGTGCACGAGCACATCGACCCGTACGTGTACGCCGAGGCCGTCGAGCTGATGGCCGAGCACCACGAGGCCGGGCACGACGTCGTGGTGGTCTCGGCGTCGGGCACCGAGCTGGTCGAGCCGATCGCGGCGATGCTCGGTGCGGACCACGTCATCGCCACCCGGCTGGCCGTCGCGGACGGCCGCTTCACCGGGGAGATCGACTTCTACGCCTACGGGGAGAACAAGGCGACGGCGATCCGTGACCTGGCGGCCAAGCGCGGCTACGACCTGGAGCGCTGCTACGCCTACTCCGACTCGATCACCGACGCGCCGATGCTGTCGGCCGTCGGCCACGGGCACGCGGTCAACCCCGACCGGGTCCTGCGCCGCCTCGCCGCGGAGAACGGGTGGGGGATGCTGACCTTCACCCGGCCCGTCGCGCTGCGACCGCGGGTGCGCGTCGGCCCGGTCCTCGCGGCGGTCGGGCTGCTGGGTGCCGCGGGTCTGGCCTGGTGGTGGCGTCGCCGCCGCGACGGCCGCGCGACGGCCTGA	MSTSPLDPRQHGGRASAGRRVAAFFDLDKTIIATSSTAAFSTSFLAGGLLTRGDVLRSAYAHFLFLVGSADADQTERMRQHLSELATGWEVAKVTQIVAETVHEHIDPYVYAEAVELMAEHHEAGHDVVVVSASGTELVEPIAAMLGADHVIATRLAVADGRFTGEIDFYAYGENKATAIRDLAAKRGYDLERCYAYSDSITDAPMLSAVGHGHAVNPDRVLRRLAAENGWGMLTFTRPVALRPRVRVGPVLAAVGLLGAAGLAWWWRRRRDGRATA				NA	NA	NA	NA	NA
AK001_01889	1998	acsA	COG0365	Acetyl-coenzyme A synthetase	GTGACCGACACCCAGTCCAGCAGCCCGAGTCTGGAGAACCTGCTCCACGAGACCCGCACCTTCCCGCCGAGTCCGGAGTTCGCCGTCCAGGCCAACGCCCAGCCCTCCCTCTACGAGGACGCCGCGGCCGACCGCCTCGAGTTCTGGGCCCGGCAGGCCCGCGAGCTCGTCTCGTGGAAGACGCCGTTCACCGAGACCCTCGACTGGTCCGGCGCTCCCGTGGCCCGATGGTTCGCCGACGGCACCCTCAACGCCGCGTACAACGCGGTCGACCGGCACGTCGAGGCCGGGAACGGCGACCGGGTCGCGATCCACTTCGAGGGCGAGCCCGGCGACACCCGCACCGTCACCTACGCCGACCTGCAGCGCGAGGTCTCCCGGGCCGCGAACGCGCTCGCGGCCCTCGGGGTCGAGTCCGGCGACCGCGTCGTCATCTACATGCCGATGCTGGTCGAGTCCGTCGTGGCGATGCTCGCCTGCGCCCGGATCGGCGCCGCGCACTCCGTCGTCTTCGGCGGGTTCAGCGCCGACGCGCTGCGCAGCCGCATCGCCGACGCCGAGGCCAAGCTCGTCATCACCGCCGACGGCGGGTACCGGCGTGGTGCGCCGAGCTCGCTCAAGCCGGCCGTCGACGAGGCGCTGACCGGCGAGGGCGCCGAGAGCGTCCAGCACGTGCTCGTCGTGCGCCGGACCGAGCAGGACGTCGAGTGGACCGAGGGCCGCGACGTCTGGTGGCACGACGCCGTCGAGGCCGCCGACACGTACCACGAGCCGGTGTGGGTCGAGGCCGAGCACCCGCTCTTCATCCTGTACACCTCCGGCACCACCGGGAAGCCCAAGGGCATCCTGCACACCACCGGCGGCTACCTCACCCAGGCCGCCTACACGCACCGGAACGTCTTCGACCTCAAGGCCGAGAGCGACGTCTACTGGTGCTCGGCCGACATCGGCTGGGTCACCGGGCACACCTACATCGTCTACGGGCCGATGCTCAACGGCGCCACCCAGGTGCTCTACGAGGGCACGCCGGACACCCCGCACAAGGGTCGCTGGTGGGAGATCGTCGAGAAGTACAAGGTGTCGCTGTTCTACACGGCCCCGACGGCGATCCGCGCCTGCATGAAGTGGGGCGAGGAGATCCCCGCGGAGTTCGACCTGTCCTCCCTGCGCCTGCTCGGCTCCGTCGGCGAGCCGATCAACCCCGAGGCGTGGATGTGGTACCGCCGCGTCATCGGCGGCGACACCGCCCCGATCGTCGACACCTGGTGGCAGACCGAGACCGGCGCCATCATGATCAGCCCGCTGCCCGGCGTGACCTCGGCCAAGCCCGGCTCGGCGCAGGTGCCGCTGCCCGGCATCAGCGCCGACGTCGTCGACGACGAGGCCCGGCCCGTGCCCGACGGCGGGGGCGGCTACCTCGTGCTGTCGGAGCCGTGGCCCTCGATGCTGCGCGGCATCTGGGGCGACCTGCAGCGCTTCAAGGACACGTACTGGTCGCGGTTCCCGGGGCTGTACTTCGCCGGCGACGGTGCCAAGAAGGACGAGGACGGCGACATCTGGCTGCTCGGCCGCGTCGACGACGTCATGAACGTCTCCGGCCACCGGCTGTCCACCACCGAGATCGAGTCGGCCCTGGTCTCCAACGACCTGGTCGCCGAGGCCGCCGTGGTCGGGGCGTCCGACGAGCTCTCGGGGCAGGCGGTGGTCGCGTTCGTCATCCTGCGCGGCGAGCACGCGGACGAGGCGTCGACGGACGAGGGCTCGGCCCGCATCGAGAAGACCCTGCGCGACCACGTCGCCAAGGAGATCGGCCCGATCGCCAAGCCGCGCAAGATCCTCGTCGTGCCCGAGCTGCCCAAGACGCGCTCCGGCAAGATCATGCGGCGCCTGCTGCGCGACGTCGCCGAGAACCGCGAGGTCGGCGACGCCACGACGCTGGCGGACTCGTCGGTCATGAACCTCATCCAGGCCGGCCTCGCCAAGCCCTCGGAGGACTGA	MTDTQSSSPSLENLLHETRTFPPSPEFAVQANAQPSLYEDAAADRLEFWARQARELVSWKTPFTETLDWSGAPVARWFADGTLNAAYNAVDRHVEAGNGDRVAIHFEGEPGDTRTVTYADLQREVSRAANALAALGVESGDRVVIYMPMLVESVVAMLACARIGAAHSVVFGGFSADALRSRIADAEAKLVITADGGYRRGAPSSLKPAVDEALTGEGAESVQHVLVVRRTEQDVEWTEGRDVWWHDAVEAADTYHEPVWVEAEHPLFILYTSGTTGKPKGILHTTGGYLTQAAYTHRNVFDLKAESDVYWCSADIGWVTGHTYIVYGPMLNGATQVLYEGTPDTPHKGRWWEIVEKYKVSLFYTAPTAIRACMKWGEEIPAEFDLSSLRLLGSVGEPINPEAWMWYRRVIGGDTAPIVDTWWQTETGAIMISPLPGVTSAKPGSAQVPLPGISADVVDDEARPVPDGGGGYLVLSEPWPSMLRGIWGDLQRFKDTYWSRFPGLYFAGDGAKKDEDGDIWLLGRVDDVMNVSGHRLSTTEIESALVSNDLVAEAAVVGASDELSGQAVVAFVILRGEHADEASTDEGSARIEKTLRDHVAKEIGPIAKPRKILVVPELPKTRSGKIMRRLLRDVAENREVGDATTLADSSVMNLIQAGLAKPSED	PGPT0002265_830	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895	NA	NA
AK001_01890	765	rhaR_2		HTH-type transcriptional activator RhaR	ATGGCGATCGGCGCACCCGTGGAGCTGTGGCCGGAGGCGCGCCGGCTCGTGGAGGCGTTGTCCCCCGAGCTCGTCGACCTGCTCGACGAGATGACCGGCACCATGTTCTGCGCGAAGGACGTCACCGGCCGCTACGTCCTGGTCGACCGGACCTTCGTGGACCGGGCGAACCGGCGTTCGCCGCGCGACGTCGTCGGACGCACCCCGGCCGAGCTGTTCGCGCCCGAGCTCGCCGCGCGGTACGAGGAGCAGGACGACCGGGTGCTGCGCGAGGTCTGGCCGCTGCGCAACGAGCTGGAGCTGATCCGCCGGCCCGGCGGGGTGCCGGGGTGGTACCTGACGACGAAGCTGCCGGTGCAGCGCGACGGCGTCGTGCTCGGGCTCGTGTCGACCTCGCGCGACCTGGGCACCCGCGACGTGCACGACCAGGTGATCGGGTCGATGGCGCGGGTCGTGGAGGTGGTCGAGGAGCGCCTCGGGGTGGGGGTGACGCAGGCCGAGCTCGCGCAGGTCGCCGGCTGCACGCCCGGGGCGCTGGAGCGGCGGATGCGCCGCGTGTTCGGGCTGACGCCGAAGCAGTTCGTGCTGCGGGCGCGGGTCGACCACGCCACCACGCTGCTCACCCGGACCGACCTGGCCCTCGCGGACGTCGCGGTGCGCGCCGGGTTCTACGACCAGCCGTCGTTCACCCGGACGTTCGTGCGGCTGACGGGGGAGACGCCGTCGGTGTACCGCCGCACCAGCCGGGCGCTCGCCGCCGAGTAG	MAIGAPVELWPEARRLVEALSPELVDLLDEMTGTMFCAKDVTGRYVLVDRTFVDRANRRSPRDVVGRTPAELFAPELAARYEEQDDRVLREVWPLRNELELIRRPGGVPGWYLTTKLPVQRDGVVLGLVSTSRDLGTRDVHDQVIGSMARVVEVVEERLGVGVTQAELAQVAGCTPGALERRMRRVFGLTPKQFVLRARVDHATTLLTRTDLALADVAVRAGFYDQPSFTRTFVRLTGETPSVYRRTSRALAAE				NA	NA	NA	NA	NA
AK001_01891	939	mshD_3	COG0456	Mycothiol acetyltransferase	GTGCGACTCCCCGTCCCGATCGAGATCGGCCCCCTGTCCCCGTCCGAGCAGGACGCCGTGCGCGCCCTGGCCGCGCAGGCCGCCGCCCACGACGGCGTCGACCCGCTGTCCGAGCAGCCGCTGCTGCGGCTGGGTGACGACGGCCCCGACCTGACCCACGCCGTCGTGCACGCGCGGTCCGGCGGGACCGTCGGCTACCTGCAGGTGGACCGGGGCGGCGACGTGGCCAGCACGGAGCTGGTCGTCCACCCGGAGCACCGCCGCGGCGGGGTGGGCACTCTGCTGCTGCGGACCGCGGAGCGCGACGCACGGCTCCCGGAGCGTTCCGGCACCCCGGACCAGCGCGGCAAGCCGCTGCGGGTGTGGGCGCACGGCGACGTGCCGGCCGCCCGCGCCTTCGCCGAGGCCCGCGGGTACGACGTCGTGCGCGAGCTGTTGTTCCTGGCCCGGCCCCTCGACGGGACGGGCGACGCTCCCGAGGTGCCCGACGGCTACACGCTGCGCCCCTTCCGGGCCGGGGAGGACGACGGCGCCTGGGTCTCGCTCAACGCGCTCGCGTTCGCCGACCACCCCGAGCAGGGACGACTGGGGCTGGACGACCTGCACGCCCGCACGGCCGAGCCGTGGTTCGACGCCGAGGGCTTCCTGCTGCTCGACCGGCCCGACGGGGGCCTGGCCGGGTTCGTGTGGACGAAGGTGCCCACCGACCAGCCCGCGGGGCAGGCCGACGGCGAGATCTACGCCCTCGGGATCGACCCGGCGACGCAGGGCCACGGGCTGGGGCGGCTCCTGACGCAGGCGGGCCTGCACCACCTCGCCGCGGTGGGCTGCACCCGGGCCGTGCTGTACGTCGAGGGGGACAACACCCCCGCGCTGCGCACCTACGAGCGGGCCGGCTTCACCCGGGCCGCCGTCGACGTGCAGTACGCCCGGCCCTGA	MRLPVPIEIGPLSPSEQDAVRALAAQAAAHDGVDPLSEQPLLRLGDDGPDLTHAVVHARSGGTVGYLQVDRGGDVASTELVVHPEHRRGGVGTLLLRTAERDARLPERSGTPDQRGKPLRVWAHGDVPAARAFAEARGYDVVRELLFLARPLDGTGDAPEVPDGYTLRPFRAGEDDGAWVSLNALAFADHPEQGRLGLDDLHARTAEPWFDAEGFLLLDRPDGGLAGFVWTKVPTDQPAGQADGEIYALGIDPATQGHGLGRLLTQAGLHHLAAVGCTRAVLYVEGDNTPALRTYERAGFTRAAVDVQYARP	PGPT0002685_9	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937	NA	NA
AK001_01892	2337	ppk	COG0855	Polyphosphate kinase	ATGTCCTCGGCGCGTCCGCGCGACGCCCGCGGCCGGTTCGTCGCTGCCGCGACCACGACCTCGTCCGAGACCCGCACGACCGCGAAGGCAGGACCCCGACGGATGGATCCCGAGCTCGCCGCCCACATCGCGGAGCACATCGCCGAGGAGCCCGACCGCGACCAGGTCGTGGAGGAGTCGCTGGCGCAGCCGGAGCTCCCCGAGGACCGGTTCGCGGACCGCGAGCTGAGCTGGCTCGCCTTCAACGAGCGCGTGCTGGAGCTGGCCGAGGACGAGTCGCTGCCGCTGCTGGAGCGGGTGCGGTTCCTGGCGATCTTCGCCTCCAACCTGGACGAGTTCTTCATGGTCCGGGTCGCCGGCCTCAAGCGCCGCATCGCCACCGGCATCGCCGTGACGGCCGCCTCGGGCCTCAGCCCGCGCGAGGTGCTCGAGGGCATCGGGCTGCGGGCCCACGAGCTGATGGACCGGCACGCCCGCGTGTTCCGCGACGACGTGGCGCCGGCGCTGCACGACGAGGGCATCACGCTCGTGCACTGGGACGAGCTGCTCGAGAAGGAGCAGCACCGGCTCAACAAGTTCTTCCGCAAGCACATCTTCCCGGTGCTGACCCCGCTCGCGGTGGACCCGGCGCACCCGTTCCCGTACATCTCCGGGCTGTCGTTGAACCTGGCCGTCGTGGTGGCGAACCCGCTGACCGGCAAGGAGCACTTCGCGCGGGTCAAGGTGCCGCCGCTGCTGCCCCGGTTCATCGCGGTGGACGACCGCGGCCGCCCGAGCGCCCCGACGCCGACCCAGAAGGGCGGGACGCAGAAGTCGTTCGTCCCGCTGGAGGAGGTCATCGCCCAGCACCTGGACTACCTCTTCCCCGGGATGGAGATCCGGGAGCACCACACCTTCCGCGTCACCCGCAACGAGGACGTGGAGGTCGAGGAGGACGACGCCGAGAACCTCCTGCAGGCGATGGAGAAGGAGCTGCTGCGGCGCCGCTTCGGCCCGCCGGTCCGCCTCGAGCTGCACGAGGAGATCTCGCCGCGCATCCGCGAGCTGCTGGTGCGCGAGCTCGGCGTGGTCGAGGAGGAGGTCTACCAGCTGCCCGGGCCGCTCGACCTGACCGGGCTCAACGTCCTGGCCGACATCGACCGCGCAGAGCTGCACTACCCGCCGTTCGTCCCGACGACGCACCGCCAGCTCGCCGAGGTGGAGTCGGCGATGCCCGGCAACGTGTTCGCCGCGATCCGCGAGCGGGACGTCCTCCTGCACCACCCCTACGACTCGTTCTCGACGTCGGTGCAGACCTTCCTCGAGCAGGCCGCGGCCGACCCCAAGGTGCTGGCGATCAAGCAGACGCTGTACCGCACCTCGGGCGACTCCCCCATCGTGGACGCCCTCATCGACGCCGCCGAGGCGGGCAAGCAGGTGCTGGCCCTGGTGGAGATCAAGGCCCGGTTCGACGAGCAGGCCAACATCTCCTGGGCGCGCAAGCTCGAGGAGGCGGGCGTCCACGTCGTCTACGGCATCGTGGGCCTCAAGACCCACTGCAAGCTGTCCCTGGTGGTCCGCCAGGAGTCCGACGGGCTGCGCCGCTACTGCCACGTCGGCACCGGCAACTACCACCCCAAGACGGCCCGGCTGTACACCGACCACGGCGTGCTCACCTGCGACTCGGACGTGGGCCAGGACCTGACCCGGCTGTTCAACCAGCTCTCGGGCTACGCGCCGCACTCGAAGTTCCACCGCCTGCTCGTGGCGCCGCGCACGGTGCGCAGCGGGCTGATCGAGCGGATCGACCGCGAGGCCGACGCGGCCCGGGCGGGGCACGAGGCCTGGGTCAAGATCAAGGTGAACTCCGCCGTCGACGAGGCCACGATCGACGCCCTGTACCGCGCCTCGCAGGCCGGTGTGAAGGTGGACCTGGTGGTGCGCGGCATCTGCGCCCTGCGCCCCGGCGTCCCCGGCCTGAGCGAGAACGTCCGCGTCCGGTCGATCCTCGGCCGCTTCCTGGAGCACTCGCGGATCTTCGCGTTCGCGAACTCGGCGGGCCCCGCGATCGGCGAGGGACCGGACAGCGGCCCGGAGGTCTTCATCGGCTCGGCCGACCTCATGCACCGCAACCTGGACCGCCGCGTCGAGGCCCTCATCCGCGTGTCGGACCAGGGCCAGATCCTGGAGCTGCTGGAGCTGATGAACGACTCTATGTCGTCCGGCACCGCCTCGTGGCACCTGCTGCCGGACGGCACCTGGCGTCGTCAGGTCGCGGACGAGGACGGCCAGCCCACGGTGGACCTGCAGTCCGTGCTCGTCGACCGGCACCGCCGTCGTCCGCCGAGCTCGCGGTGA	MSSARPRDARGRFVAAATTTSSETRTTAKAGPRRMDPELAAHIAEHIAEEPDRDQVVEESLAQPELPEDRFADRELSWLAFNERVLELAEDESLPLLERVRFLAIFASNLDEFFMVRVAGLKRRIATGIAVTAASGLSPREVLEGIGLRAHELMDRHARVFRDDVAPALHDEGITLVHWDELLEKEQHRLNKFFRKHIFPVLTPLAVDPAHPFPYISGLSLNLAVVVANPLTGKEHFARVKVPPLLPRFIAVDDRGRPSAPTPTQKGGTQKSFVPLEEVIAQHLDYLFPGMEIREHHTFRVTRNEDVEVEEDDAENLLQAMEKELLRRRFGPPVRLELHEEISPRIRELLVRELGVVEEEVYQLPGPLDLTGLNVLADIDRAELHYPPFVPTTHRQLAEVESAMPGNVFAAIRERDVLLHHPYDSFSTSVQTFLEQAAADPKVLAIKQTLYRTSGDSPIVDALIDAAEAGKQVLALVEIKARFDEQANISWARKLEEAGVHVVYGIVGLKTHCKLSLVVRQESDGLRRYCHVGTGNYHPKTARLYTDHGVLTCDSDVGQDLTRLFNQLSGYAPHSKFHRLLVAPRTVRSGLIERIDREADAARAGHEAWVKIKVNSAVDEATIDALYRASQAGVKVDLVVRGICALRPGVPGLSENVRVRSILGRFLEHSRIFAFANSAGPAIGEGPDSGPEVFIGSADLMHRNLDRRVEALIRVSDQGQILELLELMNDSMSSGTASWHLLPDGTWRRQVADEDGQPTVDLQSVLVDRHRRRPPSSR	PGPT0002685_155	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937	NA	NA
AK001_01893	1047			hypothetical protein	ATGAGCACCACGTCGCACTCCGCTCGTGCGCTGCGCACGGCGACCCCCTTCGTCGACCCGCTGGGGCCGACGTCGGTCCAGCACGCCCCGGTGATCCAGACCGCCGGCGCGGTCGTGTGGCGCATCCGCCACGACCGCCTGCAGGTCCAGCTCGTGCACCGGCCCCGCTACGACGACTGGTCGTGGCCCAAGGGCAAGCACGAGGAGGGCGAGTCGCTGGCGACCACCGCCGTGCGGGAGGTCACCGAGGAGACCGGCAAGCCCGTCGTGCTGGGTCTGCCGCTGCCCGGCCTGCAGTACCTGACCCCGGAGGGCCGGGTGAAGCGGGTGCACTACTGGGCCGCGCGCCGCGCCTCGGCCAAGAGCGACTCGCGCGCCCTGGCGGCGCGGACCCCGATCGCCCCCGCGTCCAAGCGGGAGATCGACAAGGCGGAGTGGCTCGACGCCGAGGACGCCGCCGAGCGCCTCACCCGACCCACGGACCGCGCGCCGCTGGACGCCGTGGTCGAGGCGTTCCGCGACCGGCAGCTGGCCACGCACGCCGTCGTCATCGTCCGGCACGGCCGGGCCCTGCCGCGGACGAACTGGTACGGCGTCGAGCAGGACCGTCCGCTGACCCCGCTGGGGCACGGTCAGGCCGCCGCGCTCGTGCCGGTGCTGGCCTCCTACGGCGTGGACGCGGTGATCTCGAGCCGCTGGGAGCGGTGCGCGACGACGATCGACCCGTACGTGCGCGCGGCGAACCTGCGCCCGGAGTACAGCGACAACCTCGGCGAGGCCCAGCACGAACGGTCCCCGGCGCGCGTGGCCGCGGCCGTGCGCGACCTGCTGGAGGCGGACCGGGCCTCGGTGCTGTGCACGCACCGCCCGGTGCTGCCGACGGTGCTGGACGTGCTGGGTCAGCACTCGAGCCGGGCGGTGGCGGCGACGCTCCCCCGGCGCGACCCGTACCTGGAGCCCGGCGAGGCGCTGGTCGCGCACGTGGCGCGCACGCCGAAGGGCCCCCGGGTGGTCGCGGCGGAGCGGGTGGCTCCGCAGGTCTTCTGA	MSTTSHSARALRTATPFVDPLGPTSVQHAPVIQTAGAVVWRIRHDRLQVQLVHRPRYDDWSWPKGKHEEGESLATTAVREVTEETGKPVVLGLPLPGLQYLTPEGRVKRVHYWAARRASAKSDSRALAARTPIAPASKREIDKAEWLDAEDAAERLTRPTDRAPLDAVVEAFRDRQLATHAVVIVRHGRALPRTNWYGVEQDRPLTPLGHGQAAALVPVLASYGVDAVISSRWERCATTIDPYVRAANLRPEYSDNLGEAQHERSPARVAAAVRDLLEADRASVLCTHRPVLPTVLDVLGQHSSRAVAATLPRRDPYLEPGEALVAHVARTPKGPRVVAAERVAPQVF				NA	NA	NA	NA	NA
AK001_01894	1191	hutI_1	COG1228	Imidazolonepropionase	ATGACGGAACCCACGAAGGACCGCACGCTGCTCGTCACGGGCATCGGCGAGCTCGTCACGCACGACCCGGCGCACGGCGCGTCCGGGGTCCTGACCGACGCCGCGCTGGTGGTCTCCGGTGGGCGGGTGGCCTGGACGGGCCCCGCCGCGCAGGCCCCGGCCACGGACGACCGGCTCGACGTCGAGGGACGTTGCGTGATCCCCGGGTTCGTGGACTCGCACTCGCACGTCGTCTTCGCCGGGGACCGGTCCGCGGAGTTCGCCGCCCGGATGGCCGGCGAGCCGTACACCGGCGGCGGCATCGCCACCACCGTGGCCGCGACCCGGGCCGCCTCCGACGACGTCCTGCGTGACGGTGCCCGGCGCCTCGTGGCGGAGATGCGCGCCCAGGGGACCACGACCGTCGAGATCAAGAGCGGGTACGGCCAGGACGTCGCCACGGAGGAACGCATGCTGCGCCTGGCGCGCGAGCTCACCGACGAGACGACGTTCCTCGGTGCCCACACCGTGCCGGCCGAGGCCGCGCACGACCGTCGCGCCTACCTCGACCTCGTCACCGGCCCGATGCTCGCCGCCTGCGCACCCCACGCCCGGTGGGTCGACGTGTTCTGCGAGCCCGCCGCACCCACCGCGTTCGACGCCGACGAGTCCCGGGAGGTCCTGGCGGCCGGGATCCGCGCCGGGCTGCTGCCCCGCGTGCACGGCAACCAGCTCGGGCCCGGTCCCGGCGTCCGGCTCGCCGTCGAGGTCGGTGCCGCCAGCGTCGACCACTGCACCCACCTCACCGGGGACGACGTCGCGGCGCTGGCCGGGTCGAGCACGGTGGCGACGCTGCTGCCCGCCGTGGAGTTCTCCACCCGCTCGCCCTATCCCGACGCGCGGGCCCTGCTCGACGCGGGCGTCGCCGTCGCCCTCGCCACGGACTGCAACCCCGGCAGCTGCTACTCCTCGTCGATGCCGTTCGTCGTGGCGCTCGCGGTGCGGGAGATGGGAATGACACCCCTGGAGGCCGTGCGCGCCGCCACCGCCGGCGGAGCCGCGGCCCTGCGGTGCGACGACGTCGGGACGCTGGAGCCCGGGGCGCGGGCCGACCTCGTCGTGCTCGACGCACCCTCGCACGTGCACCTGGCCTACCGCCCGGGCGTGCCGATCGTGCGCACGGTCCTGCGGGGCGGGCGCCCCGTCGCCTGA	MTEPTKDRTLLVTGIGELVTHDPAHGASGVLTDAALVVSGGRVAWTGPAAQAPATDDRLDVEGRCVIPGFVDSHSHVVFAGDRSAEFAARMAGEPYTGGGIATTVAATRAASDDVLRDGARRLVAEMRAQGTTTVEIKSGYGQDVATEERMLRLARELTDETTFLGAHTVPAEAAHDRRAYLDLVTGPMLAACAPHARWVDVFCEPAAPTAFDADESREVLAAGIRAGLLPRVHGNQLGPGPGVRLAVEVGAASVDHCTHLTGDDVAALAGSSTVATLLPAVEFSTRSPYPDARALLDAGVAVALATDCNPGSCYSSSMPFVVALAVREMGMTPLEAVRAATAGGAAALRCDDVGTLEPGARADLVVLDAPSHVHLAYRPGVPIVRTVLRGGRPVA	PGPT0020235_2535	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020235-hutI-K01468	NA	NA
AK001_01895	1365		COG0402	8-oxoguanine deaminase	GTGACCTTCTGGTGCGAGCACGCGTGGCTGCCCGGCGGCCTCGCCGCCGGGGTGCGCGTCGAGACCTCCGCCGGCCGGGTGACCGCCGTCGAACCCGGGACGGCACCCGTCGCCGCCGACACGGTGCTGCCCGGCGTCGTCCTGCCCGGGCTGGCCGACGCGCACTCGCACGCGTTCCACCGCGCGCTGCGCGGACGCACCCACGACGACGGCGGATCCTTCTGGACCTGGCGCGAGCGGATGTACGCCGTCGCCGACGTCCTGACCCCCGCCCTCTACGAGGAGCTCGCCACCGCCACCTACGCGGAGCTGGCGCTCGCGGGCGTGACGGCGGTCGGGGAGTTCCACTACGTGCACCACGCGCCCGACGGCGGCCGGTACGACGACCCGCACGCCATGGCCGGGGCGCTGCGCCGGGCCGCGTCCCGGGCCGGGGTGCGCCTGACGCTGCTCGACACCTGCTACCTGCACGGCGGCCTGGACGTCGACGGCGCCGCCGGTGCGTACCGGCCGCTCGCGCCCTCGCAGCGGCGCTTCGGCGACGGGGACGCCGACGCCTGGCGGACCCGCGTGGAGGAGCTGCGGTCGGCCTGGGCCGGAGCGGACGACGTCCGGGTCGGCGCGGCCGTGCACTCGGTGCGGGCCCTCGCGCCGGACGAGATCGCCGTCGTCGCGGCCTGGGCGCAAGAGCACGAGGCCCCGCTGCACGCGCACCTGTCCGAGCAGCCCGGCGAGAACCAGGCGGCACGGTCGGTCCACGGGACGAGCCCCACGGGGGTGCTCGACGCCGCCGGCGCGCTCGGCCCGCGCACCACCGTCGTGCACGGCGTCCACCTGGACGCCGACGACGTCGCCCGGCTGGCCGCGTCCGGCACCGCGGTGTGCGTGTGCCCGACGACGGAACGCGACCTGGCCGACGGGCTCGCGCCCGTCGACCGGCTGGCCGCCACCGGGGTGCCGCTGTGCGTCGGCTCCGACCAGCACGTGGCCGCCGACCTGCTCGCCGAGGCGCGCGGGCTGGAGGAGCAGGCCCGGCTGCGCACCGGCCGCCGGGGCGTGCTCGCGCCCGCCGCCGTGGTCGAGGCGGCCACCGCGGCCGGCCACCGCGCGCTCGGCTGGGACGACGCCGGCAGGATCGAGGTCGGGGCGCGGGCCGACCTCGTCGCCGTGGCCCTCGACACGCCGGCCGTGGCGGGAACCGACCCCGCCCAGCTCGCCCTGGTCGCCGGGGCCGGCGACGTGCGGACCGTGGTCCGCGACGGACGCACCGTGGTCCGCGACGGGCGGCACGTCGACCTGGACGTGGCCGCCGCCCTGCGGACGTCGATCGCGAGGGTCTGGGACCTCGTGGAGGAGGCACGATGA	MTFWCEHAWLPGGLAAGVRVETSAGRVTAVEPGTAPVAADTVLPGVVLPGLADAHSHAFHRALRGRTHDDGGSFWTWRERMYAVADVLTPALYEELATATYAELALAGVTAVGEFHYVHHAPDGGRYDDPHAMAGALRRAASRAGVRLTLLDTCYLHGGLDVDGAAGAYRPLAPSQRRFGDGDADAWRTRVEELRSAWAGADDVRVGAAVHSVRALAPDEIAVVAAWAQEHEAPLHAHLSEQPGENQAARSVHGTSPTGVLDAAGALGPRTTVVHGVHLDADDVARLAASGTAVCVCPTTERDLADGLAPVDRLAATGVPLCVGSDQHVAADLLAEARGLEEQARLRTGRRGVLAPAAVVEAATAAGHRALGWDDAGRIEVGARADLVAVALDTPAVAGTDPAQLALVAGAGDVRTVVRDGRTVVRDGRHVDLDVAAALRTSIARVWDLVEEAR	PGPT0020245_107	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020245-hutF-K05603	NA	NA
AK001_01896	1209	amaB_1		N-carbamoyl-L-amino acid hydrolase	ATGACGGCGGTCGCGGGACTGCTGCGGGACGTCGCCGACGTCGGACGGGCACCGAGCGGCGGGTACGCCCGCTTCGCCTGGACGACGGCGGACCTCGCCCTGCGCGAGTGGTTCGTCGCCGAGGCCGCCGCCCGCGGGCTCGACGTCGCCGTGGACCGCGCCGGGAACCAGTGGGCGTGGTGGGGCGACCCGGACGCCGACGGCCCCGGTGTCGTCACCGGCAGCCACCTCGACTCGGTGCCCGGGGGCGGCGCGTTCGACGGCCCGCTGGGCGTCGCGAGCGCCTTCGCGGCCGTCGACGTGCTGCGGGCCCGCGGCGTGCACCCCGCGCGGCCCCTCGGCGTCGTGAACTTCTCCGACGAGGAGGGCGCCCGGTTCGGGCTGGCCTGCCTCGGGTCGCGGGCCGTGACGGGCACCGCGGGTGCCGACCGCCTGCTGGGTCTGCGCGACGACGCCGGGGACACGCTCGCCGACGTCCTGGCCGGAGCGGGTCTGGACCCGGCCGGCTACGGGCCCGACGCCGAGGCGCTGGCCCGGGTGGGCACCTTCGTCGAGCTGCACGTGGAGCAGGGCCGCTACCTCGCGGACCTGCACGGCGACGACTCCGCGCCCGTCGCCGTGGCCTCGGCGATCTGGCCGCACGGCCGCTGGCGCGTGGACCTGCACGGCGAGGCGAACCACGCCGGCACGACGCCGCTGGCCCACCGGCACGACCCGATGCTGGACCTGGCCGGCCTCGTCCAGGACGTCCGGGCCGCCGCCGGGTCGGCCGACGCGCTCGCCACCGTCGCGAAAATCTCCGTCGAGCCGAACGGGGTCAACGCGATCCCGTCGCGGGTCCGAGCCTGGATCGACTCCCGGGCACCCCGGGAGGACGCCGTGCACCGGGTCCTCGCGGACCTGTCGGGCTACGGCCCGGTCGAGGAGTCCTGGTCCCCGGCCACCGTGCTCGACCCGGCCCTGGCCGCCCGCCTGGCCGACGTCGTCGGACGCCCCGCCGGCACGGCGCCCGCGCCGGTGATCGGGACCGGCGCCGGGCACGACGCCGGCATCCTGGCCGCCACCGGCGTGCCGACCGCGATGCTGTTCGTCCGCAACCCCACGGGGGCCTCCCACACGCCCGCCGAGCACGCCGAGGAGGCGGACTGCGAGGCCGGGGTCGCGGCGCTCGCGGACGTCCTGACCGACCTGCTGGGGGAGGCCGCGTGA	MTAVAGLLRDVADVGRAPSGGYARFAWTTADLALREWFVAEAAARGLDVAVDRAGNQWAWWGDPDADGPGVVTGSHLDSVPGGGAFDGPLGVASAFAAVDVLRARGVHPARPLGVVNFSDEEGARFGLACLGSRAVTGTAGADRLLGLRDDAGDTLADVLAGAGLDPAGYGPDAEALARVGTFVELHVEQGRYLADLHGDDSAPVAVASAIWPHGRWRVDLHGEANHAGTTPLAHRHDPMLDLAGLVQDVRAAAGSADALATVAKISVEPNGVNAIPSRVRAWIDSRAPREDAVHRVLADLSGYGPVEESWSPATVLDPALAARLADVVGRPAGTAPAPVIGTGAGHDAGILAATGVPTAMLFVRNPTGASHTPAEHAEEADCEAGVAALADVLTDLLGEAA	PGPT0021095_2121	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0021095-pydC-K06016	NA	NA
AK001_01897	1671	hutU	COG2987	Urocanate hydratase	ATGACGACCTACGACCGCGGTACGCCGGTGCCGGTCCGTTCCCCGCGCGGCACCACCCTGACCGCCCGGAGCTGGCAGACCGAGGCGCCGCTGCGCATGCTGCAGAACAACCTCGACCCGGAGGTCGCCGAGCGCCCCGACGACCTGGTCGTCTACGGCGGCACGGGCCGTGCCGCCCGGGACTGGTCGAGCTTCCACGCGATGGTCCGCACGCTGACCGACCTGCGCGCGGACGAGACGATGCTCGTGCAGTCCGGCAAGCCGGTGGGTGTGCTGCGCACGCACGAGTGGGCGCCGCGGGTGCTCATCGCCAACTCCCACCTCGTGGGGGACTGGGCGACCTGGCCGGAGTTCCGCCGCCTCGAGCAGCTCGGGCTGACGATGTACGGCCAGATGACGGCCGGGTCGTGGATCTACATCGGCGCGCAGGGGATCCTGCAGGGCACCTACGAGACGCTCGCCGCGGTGGCCGCCAAGCGTTTCGGGGGCACGCTCGCCGGGACGCTGACGGTCACGGGCGGCTGCGGCGGCATGGGCGGCGCGCAGCCGCTCGCCGTCACCCTCAACGGGGGCGTCTGCCTCGTGGTCGACGTCGACCGGTCACGTCTCGAGCGGCGGGTGCGCGAGCGCTACCTGGACGTCGTCGCCGACTCCCTGGACGACGCCGTGCGCCAGGTGCAGGAGGCGAAGGCCGCCGCCCGGCCGCTGTCGGTCGGCCTGACCGGCAACAGCGCCGAGGTGCTGCCCGAGCTGCTCCGCCGCGGTGCCGACGTGGACGTCGTCACCGACCAGACCTCCGCCCACGACCCGCTGTCCTACCTCCCGGTGGGCGTCGACGTCGCCGACTGGGCCGAGTACGCCGCCGCGAAGCCCGAGGAGTTCACCGACCGGGCGCGGGAGTCGATGGCCCGCCACGTCGAGGCGATGGTCGGCTTCCAGGACGCCGGTGCCGAGGTCTTCGACTACGGCAACTCGATCCGCGACGAGGCCCGCCAGGGCGGGTACGAGCGGGCCTTCGAGTTCCCGGGCTTCGTGCCCGCCTACATCCGCCCGCTGTTCGCCCAGGGCAAGGGGCCGTTCCGGTGGGCGGCGCTGTCCGGGGACCCGCGCGACATCGCGGCCACCGACCGCGCCGTGCTCGACCTCTTCCCCGAGCACGACCACCTGCACCGGTGGATCCGCGCGGCCCAGGACAAGGTCGCCTACCAGGGCCTGCCCGCCCGCATCTGCTGGCTGGGCCACGGCGAGCGCGACCGCGCCGGCCTGCGGTTCAACGAGCTGGTCGAGTCCGGGGAGATCAGCGCGCCGATCGTCATCGGACGCGACCACCTGGACTCCGGCTCGGTGGCCTCGCCGTACCGCGAGACCGAGGCGATGGCGGACGGCTCGGACGCGATCGCGGACTGGCCGCTGCTCAACGCCCTGGTCAACACGGCCTCCGGCGCGACCTGGGTGTCGCTGCACCACGGCGGCGGCGTCGGCATGGGCCGGTCGATCCACGCCGGCCAGGTGACGGTCGCCGACGGCACCGAGCTCGCCGCGCAGAAGCTGGAGCGGGTGCTGTCCAACGACCCGGCGACGGGGGTGCTGCGGCACGCCGACGCGGGGTACGACGACGCCGTCGCCGCGGCCGAGCGCGGCGGCCTCGTCCGCCCGATGGGCCGCGCATGA	MTTYDRGTPVPVRSPRGTTLTARSWQTEAPLRMLQNNLDPEVAERPDDLVVYGGTGRAARDWSSFHAMVRTLTDLRADETMLVQSGKPVGVLRTHEWAPRVLIANSHLVGDWATWPEFRRLEQLGLTMYGQMTAGSWIYIGAQGILQGTYETLAAVAAKRFGGTLAGTLTVTGGCGGMGGAQPLAVTLNGGVCLVVDVDRSRLERRVRERYLDVVADSLDDAVRQVQEAKAAARPLSVGLTGNSAEVLPELLRRGADVDVVTDQTSAHDPLSYLPVGVDVADWAEYAAAKPEEFTDRARESMARHVEAMVGFQDAGAEVFDYGNSIRDEARQGGYERAFEFPGFVPAYIRPLFAQGKGPFRWAALSGDPRDIAATDRAVLDLFPEHDHLHRWIRAAQDKVAYQGLPARICWLGHGERDRAGLRFNELVESGEISAPIVIGRDHLDSGSVASPYRETEAMADGSDAIADWPLLNALVNTASGATWVSLHHGGGVGMGRSIHAGQVTVADGTELAAQKLERVLSNDPATGVLRHADAGYDDAVAAAERGGLVRPMGRA	PGPT0020250_1826	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020250-hutU-K01712	NA	NA
AK001_01898	1620	hutH	COG2986	Histidine ammonia-lyase	ATGAGCACGACGCACCCCTCGCCGCCGTCCCCCGTCACCCACCGCCGGGGGACCGCCACGGTCCTGCTGGACGGATCCCCCCTGCGGGTCGACCAGGTCGTCGCCGTCGCACGCCACGGCGCCCCGGTCGCCGTGGGCGCCGCGGCCCGGGACGCGATGGCGTGCTCCCGGGCCGTGATCGACGCGCTGGCGGACGACGTCGCCCCCCACTACGGCGTGTCCACCGGGTTCGGGGCACTCGCCCGCCGGCACATCCCCGCCGGGTCGCGGGCCCGGCTCCAGCTCTCCCTGGTGCGCTCCCACGCCGCGGGCTCCGGGCCCGAGGTGGAGACCGAGGTGGTGCGCGCCCTGCAGCTGCTGCGTCTGGCCACGCTGTGCACCGGCCGGACGGGGGTGCGTCCCGTCGTCGCCGAGACCTACGCGGCGATGCTGAACGAGGGGCTCACGCCCGTCGTCCACGAGTACGGCTCCCTGGGCTGCTCGGGCGACCTCGCCCCGCTGGCCCACGTGGCGCTCGCCGCCCTGGGCGAGGGCGAGGTCCGCGACGCCGCGGGCACCCGGCGCCCGGCCGGGGAGGCGCTGGCGGCGGCGGGGATCGAGCCGCTGGCGCTGCAGGAGAAGGAGGGGCTCGCGCTCATCAACGGCACCGACGGGATGCTCGGCCAGCTCTGCCTGGCCCTGGACGACCTGCAGGGTCTGCTCGCCACCGCCGACGTCGCGGCCGCGCAGAGCGTCGAGGCGCTGCTCGGCTCCGACGCCCCGTACGTGGCCGACCTCGTGGCGATGCGCCCCCACCCCGGGCAGGCGGCGTCGGCGGCGAACCTGCGCGCGATGCTCGCGGGGTCGCCCCTCATGGCGAGCCACCGCGAGCTCGCACCCGACGGGACGCCGGCCTGCACCCGCGTCCAGGACGCCTACTCGTTGCGCTGCGCCCCCCAGGTGCACGGCGCCGCCCGCGACACCCTCGACCACGCGCGCCTCGTCGCCGACCGCGAGCTGGCCGCGGCCATCGACAACCCCGTGGTGACGGTGGACGGCCGGGTCGAGTCCAACGGCAACTTCCACGGCGCCCCGGTGGCGTACGTCCTCGACTTCGTGGCGATCGCCGTGGCCGACGTCGCCAGCATCAGCGAGCGCCGCACCGACCGGTTCCTCGACGTCGCGCGCAACGAGGGCCTGCCGCCGTTCCTGGCCGACGACCCCGGCGTGGACTCGGGGCTGATGATCGCCCAGTACACGGCCGCGGGGATCGTCTCCGAGCTCAAGCGTCTCGCGGCGCCCGCGAGCGTGGACTCGATCCCGTCCTCGGCCATGCAGGAAGACCACGTCTCCATGGGCTGGGCCGGTGCCCGCAAGCTGCGCCGCGCCGTGGACGGGCTGACCCAAGTCCTGGCGATCGAGCTGCTCACCGCCGCCCGCGCCCTCGACCTGCGCGCCGCCGCGGACCCGGCCCACGGGCCGGCCGCGGGCACCGGGGCCGTCCGCGACCTGCTGCGCACCCGGGTCGAGGGCCCGGGGCCCGACCGGTACCTGACGCCCGAGATCGACGCCGTCGTCGACCTCGTGGCCGACGGGGCCGTGCTGGACGCCGCGACCGCCGCCGTCGGCGACCTCGCCTGA	MSTTHPSPPSPVTHRRGTATVLLDGSPLRVDQVVAVARHGAPVAVGAAARDAMACSRAVIDALADDVAPHYGVSTGFGALARRHIPAGSRARLQLSLVRSHAAGSGPEVETEVVRALQLLRLATLCTGRTGVRPVVAETYAAMLNEGLTPVVHEYGSLGCSGDLAPLAHVALAALGEGEVRDAAGTRRPAGEALAAAGIEPLALQEKEGLALINGTDGMLGQLCLALDDLQGLLATADVAAAQSVEALLGSDAPYVADLVAMRPHPGQAASAANLRAMLAGSPLMASHRELAPDGTPACTRVQDAYSLRCAPQVHGAARDTLDHARLVADRELAAAIDNPVVTVDGRVESNGNFHGAPVAYVLDFVAIAVADVASISERRTDRFLDVARNEGLPPFLADDPGVDSGLMIAQYTAAGIVSELKRLAAPASVDSIPSSAMQEDHVSMGWAGARKLRRAVDGLTQVLAIELLTAARALDLRAAADPAHGPAAGTGAVRDLLRTRVEGPGPDRYLTPEIDAVVDLVADGAVLDAATAAVGDLA	PGPT0020230_499	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745	NA	NA
AK001_01899	774	allR	COG1414	HTH-type transcriptional repressor AllR	GTGGCAGGCAGCAGCGACGTCCCCGCGGCGCGCGCCACCGCGCGTCTGCTCGCCCACCTGGCCGCCCAGCCCGGCCCGGTGCCCGCGTCGTCCGTGGCCGCGAGCCTCGACCTGCCCCGGTCGTCCGTCTACCACCTGCTGTCCGTCCTGGCCGACGAGGGGTTCGTGACCCACTACCCGGAGGAGCGCCGCTACGGCCTCGGGGTCGCCACCCTCGGGCTCGGCACCGCCTACACGCGTCAGGCACCCGTGACCCGGCTGGCGCGCCCCGTGGTCTCCCGGCTGGTGGAGGCGACCGGCGAGAACGGCCACCTCGCGCTCCTCAACGGACGCGAGGTGCTCTACCTCGTCGAGCAGCGGGCACCGGGCCGCCCGCCGCTCGTGTCCGACGTCGACGTCCGCCTGCCCGCCCACCTCACGGCGTCGGGGCGGACCGTCCTCGCCCACCTGCCCGCGGCCCAGGTCCGGGCCGCCTACCCGACCACCGGGGCGTTCAGCGACCGCACGGGCCGGGGGCCGCGCACGCTGAGCGAGCTGCGGACGGTGCTGCGCGAGGTCCGCCGGCGGGGGTACGCGGTCGAGGACGGCGAGGTGACCGACGGCTTCGCCTCGGTGGCGGACGTCGTCGTCGACCACCTCGACCGGGCGGTGGCCGGGCTCGCCCTGACGTTCCGCTCCGCCGACCGCGGCCCCGAGGACCGCGAGCGGCTGGCCCAGCAGGTGTCCCGGGCGGCCGCCGCGATCAGCGCCCGGCTGGGCGCCCGGCCGCGGTGA	MAGSSDVPAARATARLLAHLAAQPGPVPASSVAASLDLPRSSVYHLLSVLADEGFVTHYPEERRYGLGVATLGLGTAYTRQAPVTRLARPVVSRLVEATGENGHLALLNGREVLYLVEQRAPGRPPLVSDVDVRLPAHLTASGRTVLAHLPAAQVRAAYPTTGAFSDRTGRGPRTLSELRTVLREVRRRGYAVEDGEVTDGFASVADVVVDHLDRAVAGLALTFRSADRGPEDRERLAQQVSRAAAAISARLGARPR				NA	NA	NA	NA	NA
AK001_01900	1008			hypothetical protein	GTGGAGCTGGCGCTCGTCGTCGTCATCGTCGCCGTCGCGCTCGGGTTCGCGTACACCAACGGGTTCCTCGACGCGGCGAACGCCGTCGCGACCTCGGTGTCGACGCGGGCGCTGACCCCGCGCATCGCGGTGACCATGGCGGCGGGCATGAACTTCGTCGGTGCGCTGCTGGGGACGTCGGTGGCCGAGACCATCGCCACCTCGATCGTCGAGCTCGACGACGGCACCGCCGTGCAGTCCCTCGTCGTCGTGCTCAGCGCACTGCTCGGGGCGATCGCCTGGAACCTCTTCGCCTGGTGGTACGGGATGCCGACGTCGTCGACGCACTCCCTCATCGGCGGTCTGCTGGGAGCCGGCATCGCCGGTGGGATGACGGTGTACGGCGCCGAGGTGGTCGACAAGGTCGTGCTGCCGACGCTCTTCTCCCCGCTGATCGGCTTCGTCGGCGCCTACGTGCTCATGGTCGCCCTGATGTGGATGCTGCGGAACGTCGCCCCGGCACGGGTGAACCGCCGCTTCCGGGTGGCGCAGACGGCCTCGGCCGCCGCGATGGCGCTCGGCCACGGTCTGCAGTCCGCGCAGAAGACGATGGGTGTCATCTGGCTCGCCCTGCTCACCGTCGGTTCCACCGCCGCGCGCGAGGGCATCCCGCTGTGGGTCAAGATCGCCGCGGCCACCGCGATGGCGGTCGGTACCTACGCGGGCGGGTGGCGCATCATGCGCACCCTGGGTCGCCGCATCATCGAGCTCGACCCGGCACGGGGCTTCGTCGCGGAGTCGGTGTCGGCCGTCGTGCTCTACGCCAACGCCATCGTGCTGCACGCACCGGTGTCGACGACGCACACCATCACCTCGGCCATCATGGGCGCGGGCGCGACCCGCCGGTGGACCGCGGTGCGCTGGGGCGTGGTCCGCACCATCGCGATCTACTGGGTGCTCACGGCACCCGTGGCCGGGATCCTGGCCGCGGGGGCGACGCTCGCGCTGCTGCCCCTGGCCGGCGGCTGA	MELALVVVIVAVALGFAYTNGFLDAANAVATSVSTRALTPRIAVTMAAGMNFVGALLGTSVAETIATSIVELDDGTAVQSLVVVLSALLGAIAWNLFAWWYGMPTSSTHSLIGGLLGAGIAGGMTVYGAEVVDKVVLPTLFSPLIGFVGAYVLMVALMWMLRNVAPARVNRRFRVAQTASAAAMALGHGLQSAQKTMGVIWLALLTVGSTAAREGIPLWVKIAAATAMAVGTYAGGWRIMRTLGRRIIELDPARGFVAESVSAVVLYANAIVLHAPVSTTHTITSAIMGAGATRRWTAVRWGVVRTIAIYWVLTAPVAGILAAGATLALLPLAGG	PGPT0002655_3180	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306	NA	NA
AK001_01901	621			hypothetical protein	GTGCGCCTGCGCCTCACACCGCGCGACTCGACCTACTACGACCTGCTGGCTGCGCTGGCGCGGCACACCGTCACCGGTGCGTCCCTCCTGGCGGAGCTGCTGGGGGCGTCGCGGCCGGAGCGCGAGCGCATCGTGGCCCAGCTCGCCGAGGCCGAGCACCAGGCCGACGACGTCACCCACTCGATCAAGCGGCGGCTCAACCAGACCTTCGTCACCCCCTTCGACCGGGACGACCTCTACCACCTGGCGTCGGCCCTGGACGACTGCATGGACGCCATGGACGAGGCCGGCCACCTCATCGTGCTGTACAAGGTCGCCGAGCTGCCGATGGCGGTCTCGGAGCAGGTGCAGGTGCTGCAGCGCTGCGCCGAGCTGACCGCCGACGCGATGCCCCGGCTGCGCAAGCTCGACCAGCTGCCCGAGTACTGCGTCGAGATCAACCGCCTGGAGAACCAGGGCGACACGCTCCACAGGTCCCTGCTGGGCGATCTGTTCGACAAGGTCACCGACCCGATCCTGCTCATCAAGCTCAAGGAGATCGTCGACAACCTCGAGGAGGCCACTGACGCCTTCGAGCGCGTGGCCCACCTCGTCGAGTCCATCAGCGTCAAGGAGTCCTGA	MRLRLTPRDSTYYDLLAALARHTVTGASLLAELLGASRPERERIVAQLAEAEHQADDVTHSIKRRLNQTFVTPFDRDDLYHLASALDDCMDAMDEAGHLIVLYKVAELPMAVSEQVQVLQRCAELTADAMPRLRKLDQLPEYCVEINRLENQGDTLHRSLLGDLFDKVTDPILLIKLKEIVDNLEEATDAFERVAHLVESISVKES				NA	NA	NA	NA	NA
AK001_01902	600			hypothetical protein	ATGCTCGACCCGCTCGAGGCCGAGAACTTGCCCGGCGAGCTCGACCCCGCGCTGCGCGACGAGGTCGCGCACACGACCGCCCGCGCCGTCGTGCACACCGCCCGGGCCACCGAGGACCCGGAGGTCGTGGCGCGCCTCGTCCGCCTGGTCGAGCGCGAGGGGCTCGACGTCGTGGCCGAGCTGTGGTCCGACGCCGCCCCGGCGACCCTGCCCGGAGCCCTGTGGAGGCTGTACGCCCTGCGCGAGTGGGTCCGCCGCGACCCCCGCACGATCGGGCTGCGCTACCGGCTCGGCGTCGACGTCGCGCCCGTCCACGAGGTCGTCGCCGGGGTGCCCCGGCCGCCGACCCCGGAGGACCTGCGGGTGCTGGCCGACACCGTGCTCTCCGGGGTCTACGCCGGTGACCTCGCCGTCGCGCTCGAGCGGGCCGCCGCCTTCGGCCGCATCCTCGCCACCGGTGCCGCCTACGACGCCGACGCCCGGGAGACCGCCGACCCGGAGTCCGCGACCCGCATGACCCGCGGGGCCGCCGACCTGACCCGCACGGCGGAGGAGCTGGAGCACGCCGCAGCGCTGTGGCGTGCGGGTTCGCTGGACTGA	MLDPLEAENLPGELDPALRDEVAHTTARAVVHTARATEDPEVVARLVRLVEREGLDVVAELWSDAAPATLPGALWRLYALREWVRRDPRTIGLRYRLGVDVAPVHEVVAGVPRPPTPEDLRVLADTVLSGVYAGDLAVALERAAAFGRILATGAAYDADARETADPESATRMTRGAADLTRTAEELEHAAALWRAGSLD				NA	NA	NA	NA	NA
AK001_01903	1461	xylE_2		D-xylose-proton symporter	ATGTCGACCCCTGCCCGCCCGAGCGTGCGCAGCACGCACCGCAAGGCGATCGCGCTGTCGTTCGCCGCGGCCGTCGGCGGCTTCCTGTTCGGCTTCGACTCGTCGGTGATCAACGGTGCCGTCTCCGCGATCGAGGGCGAGTTCGCCCTCAGCTCGACGGTGACGGGGCTCGTGGTCGCGGTGGCGCTCCTGGGGTGCGCCCTCGGCGCCTGGGGTGCCGGCCGGCTCGCCGACCGCTGGGGACGCGTGCGCGTCATGCTGCTCGGCGCGGGACTCTTCCTCGTCTCCGCGGTGCTCTCCGCAGCGGCCTTCTCGGCCCTGGACCTGTCGCTGTGGCGGTTCGTCGGGGGCATCGGCATCGGGATCGCCTCGGTGATCGCGCCGGCCTACATCGCCGAGATCGCCCCGGCACGGATCCGCGGCAGCCTCGGGTCCCTGCAGCAGCTGGCGATCACGGTCGGCATCTTCGGAGCCCTGCTGAGCGACCAGATCCTGGCCGAGACCGCCGGCGGGGCCGCCGAGCAGCTCTGGTTCGGCTGGGAGGCCTGGCGCTGGATGTTCCTCGTCGAGGCGGTGCCGGCCGCGGTCTACGGGCTGCTCGCGCTGCGGATGCCGGAGTCGCCCCGCTTCCTGGTGGCCCGGGGCCGGCGCGACGACGCCCGGCAGGTGCTGGAGTCGGTGCTCGGTCCGGACGAGGGCGTCGACGAGCGGATCGGCGAGATCGAGCGGTCGATCGCGGTCGACGAGGAGAACGCCGAGCGCGGGTCGCTGCGCGGGTCGGGCTTCCTGGGGCTCAAGCCGATCGTGTGGGTCGGCATCCTGCTGGCCGTCTTCCAGCAGTTCGTCGGGATCAACGTGATCTTCTACTACTCGACGACGCTGTGGCAGGCCGTCGGGTTCGACGAGTCGCAGGCGTTCCTGGTCTCCACCATCACCTCGGTGACGAACATCGCGGTGACGTTCGTCGCGATCGCGCTGATCGACAAGGTGGGCCGCCGGCCCATGCTGCTGGTGGGCTCGGCGGGCATGGCCGTCTCCCTGCTGCTGATGGCGGCCGCCTTCACCCAGGGCACCGCCGTCGTCGACGAGGCCACGGGCGACTCGACGCTGTCGCTGACCGGCGCGTGGGCGACCGTGGCCCTGGTGGCGGCGAACGCGTTCGTCGTCTTCTTCGGCGCGACCTGGGGCCCGCTGATGTGGGTGATGCTGGGCGAGATGTTCCCGAACCGGATCCGCGCGGCGGCGCTCGGGGTCGGCGCGGCGGCCAACTGGATCGCCAACTTCGCCATCACCCTGACCTTCCCGCCGCTGCTGGCGACGTTCGGCCCGGCGATCCCCTACGGCATGTACGGGTTCTTCGCGGCGCTGTCGTTCGTCTTCATCTGGTTCAAGGTCTCCGAGACCAAGGGCAAGGAGCTGGAGGACATGAGCGAGGAGGTGCGCGCCCGGCGCCGCACCTGA	MSTPARPSVRSTHRKAIALSFAAAVGGFLFGFDSSVINGAVSAIEGEFALSSTVTGLVVAVALLGCALGAWGAGRLADRWGRVRVMLLGAGLFLVSAVLSAAAFSALDLSLWRFVGGIGIGIASVIAPAYIAEIAPARIRGSLGSLQQLAITVGIFGALLSDQILAETAGGAAEQLWFGWEAWRWMFLVEAVPAAVYGLLALRMPESPRFLVARGRRDDARQVLESVLGPDEGVDERIGEIERSIAVDEENAERGSLRGSGFLGLKPIVWVGILLAVFQQFVGINVIFYYSTTLWQAVGFDESQAFLVSTITSVTNIAVTFVAIALIDKVGRRPMLLVGSAGMAVSLLLMAAAFTQGTAVVDEATGDSTLSLTGAWATVALVAANAFVVFFGATWGPLMWVMLGEMFPNRIRAAALGVGAAANWIANFAITLTFPPLLATFGPAIPYGMYGFFAALSFVFIWFKVSETKGKELEDMSEEVRARRRT	PGPT0014440_811	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0014440-hxt-K08139	NA	NA
AK001_01904	1410	gloB_1		Hydroxyacylglutathione hydrolase	ATGCTGCTCGAACGGATCTACGACGAAGACCTCGCCCAGGCGAGCTACTTCATCGGCTGCCAGGCCAAGGGTGAGGCCGTCGTCGTCGACGCCCGGCGCGACGTCGCCGAGTACCTCGACCTCGCCCAGCGGCACGGCATGCGCATCGTGGCCGTCACCGAGACCCACATCCACGCCGACTACCTCTCCGGGACGCGCGAGCTCGCCGCGACCACCGGCGCCGACGTCTACGTCTCCGGCGAGGGCGGCCAGGACTGGCAGTACGGCTTCGAGGCGAACCGTCTGTACCACGGCGACACCATCACGATCGGCAACATCACCATCGAGGCCCGCCACACCCCGGGGCACACCCCCGAGCACCTCGCGATGCTCGTGACGGACGGCGCGTTCAGCGACGCTCCCGGCTACGCGCTCACCGGCGACTTCGTCTTCGCCGGCGACCTGGGCCGCCCCGACCTGCTCGACGAGGCCGCCGGCGGCGTGGACACCCGTTTCGAGGGTGCCCGCCAGCTCTTCGCCTCGCTGCGCGACGAGTTCCTCACCCTGGGCGACCACGTCCAGGTCTTCCCCGCCCACGGTGCCGGCAGCGCCTGCGGCAAGGCGCTCGGTGCCCTGCCCTCCACCACGGTCGGCTACGAGCGCCTGAACGCCTGGTGGGCCCCGTACCTGCGCGCGAACGACGAGCAGGGCTTCATCGACGAGCTGCTGGACGGGCAGCCCGACGCGCACGCCTACTTCGCGCGGATGAAGCGCGAGAACAAGGACGGCCCGGCGCTGCTCGGCCCCCTGTCCCCGCTCGGCCGGATGGCGAACGACGACCTGGCCCGCCGCCTCGAGGCGGACGAGGTGATCTTCGTCGACACCCGCGACCAGCACGCCGTGCACGCCGGCACCGTGGCCCGCAGCCTGAACGTCCCCGGGATCGCCAAGGCCGCCAGCTACGGCGCCTGGGTCTACGACCCGGAGACGGAGAACCGCCCCCTGATCCTGCTCGCGGAGGACCAGGAGTACGCCGAGGAGATGCGCGACCACCTGGTCCGTGTCGGCATCGACACCGTGGCCGGGTTCACCCCCGAGCTCGACGGACTGCCGCTGACGACGCCCGCCGTCGTCTCCCCGGCCGACCTGGACTCCGTCGACGCGGCGATGCTGCTCGACGTCCGCAACAAGACCGAGCACGCCGACGGCCACATCCCGGGCTCGACGCAGCTCAGCGGCGGCCGGGTGCTGTGGCACCTGGACCAGCTGCCCGACGACGGCACCATCGTCACGTACTGCCAGTCCGGCGTGCGCAACGCGGTGGCCGCCAGCGCCCTGCGCCGTGCCGGCTACGACGTCGTCGAGCTCGACGGCAGCTACGCCGGCTGGACCGCCTGGACCCGGTCCCGGCCCGTCGCCGTCCCCGCGTGA	MLLERIYDEDLAQASYFIGCQAKGEAVVVDARRDVAEYLDLAQRHGMRIVAVTETHIHADYLSGTRELAATTGADVYVSGEGGQDWQYGFEANRLYHGDTITIGNITIEARHTPGHTPEHLAMLVTDGAFSDAPGYALTGDFVFAGDLGRPDLLDEAAGGVDTRFEGARQLFASLRDEFLTLGDHVQVFPAHGAGSACGKALGALPSTTVGYERLNAWWAPYLRANDEQGFIDELLDGQPDAHAYFARMKRENKDGPALLGPLSPLGRMANDDLARRLEADEVIFVDTRDQHAVHAGTVARSLNVPGIAKAASYGAWVYDPETENRPLILLAEDQEYAEEMRDHLVRVGIDTVAGFTPELDGLPLTTPAVVSPADLDSVDAAMLLDVRNKTEHADGHIPGSTQLSGGRVLWHLDQLPDDGTIVTYCQSGVRNAVAASALRRAGYDVVELDGSYAGWTAWTRSRPVAVPA	PGPT0001770_194	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069	NA	NA
AK001_01905	609	ygaP	COG0607	Inner membrane protein YgaP	ATGGCCCACACCGCCACCGTCACGACCATCGAGCCCGGCGAGCTGAAGCAGCGCCTGGCCGACGACGAGCTGACGATCATCGACGTCCGCACGCCCGCCGAGTTCGAGTCCGTCCACATCCGCGGCTCGTACAACGTGCCCCTGCCGCTGCTGTCCGAGCACACCCACGACCTCGCCGACCGGCTCGGAGGCCGCGTCGTGCTGGTGTGCCAGTCCGGCGTCCGCGCGGGGCAGGCGCAGGACCGGCTGTCGTCCGTCGGCGTCTCCAGCGCCGAGGTGCTCGCCGGCGGGGTCTCCGCCTTCGAGTCCGCGGGCGGGACCGTCGTGCGCGGCGCGCAGCGCTGGGCCATGGACCGGCAGGTCCGGATGGTCGCCGGCTCGCTCGTGCTCGCCGGGTTCGTCGGCAGCAAGGTGATCCACCCGCGCGTGGGGATCCTCGCCGGGGCGATCGGCGCCGGGCTGACCTACTCGGCCCTGTCCAACTCGTGCGCCATGGCGGCGGCGCTGTCCAGGATGCCGTGGAACCGCACGGAGGTCAGCCCGACCTACGAGAACACCATCCGGTCCATCCCGGTGGCGCCGCAGGCCGTCACGGCGCAGGCCGCCTGA	MAHTATVTTIEPGELKQRLADDELTIIDVRTPAEFESVHIRGSYNVPLPLLSEHTHDLADRLGGRVVLVCQSGVRAGQAQDRLSSVGVSSAEVLAGGVSAFESAGGTVVRGAQRWAMDRQVRMVAGSLVLAGFVGSKVIHPRVGILAGAIGAGLTYSALSNSCAMAAALSRMPWNRTEVSPTYENTIRSIPVAPQAVTAQAA				NA	NA	NA	NA	NA
AK001_01906	867			hypothetical protein	GTGGACATCACGACGATCGCGGTGCTGCTGCTCGCGGTGGTGGTGGGCATCTCCCTCGGCCTGCTGGGCGGGGGAGGGTCCATCCTCACCGTGCCGCTGCTCACGTACGTGGCCGGCTTCGCGCCCAAGGAGGCGATCGCGGCCTCGCTGCTGGTGGTCGGCGTGACGTCGGTGACGAGCATGCTGGCCCACGCCCGCCGCGGCAACGTGCAGTGGCGGACGGGGCTGGTCTTCGGGGCGGCCGGCATGGCCGGCGCCTTCGCGGGCGGTCTCGTCGGCGGGCACATCCCCGGCACGATCCTCATGATCGCCTTCGCGGCCATGATGATCGCGACGGCGGCCGCCATGATCCGCGGTCGCCGCGGCGGCCGGACGCCCGTGCACGACGGCACGCTGAAGGTGGGCCGGACCGTCCTGGACGGGCTGGTCGTGGGCCTCGTGACCGGCCTGGTGGGTGCCGGGGGAGGCTTCCTGGTCGTCCCCGCGCTCGTCCTGCTCGGCGGTCTGCCGATGTCGGTGGCGGTGGGTACGTCCCTGCTGGTCATCGGGATGAAGTCGTTCGCCGGCCTGGCGGGCTACCTCACCTCGGTGTCCCTGGACTGGGGCCTCGTCGCCGCGGTCACGGCGGCGGCCGTCGTCGGGTCCCTCATCGGGGCCCGGCTGACGACCCGGGTCCCCGAGGCGGCGCTGCGCCGCGGGTTCGGCTGGTTCGTCCTGGTCATGGGCGTGGTCGTCCTGGTGCAGGAGCTGCCGGGCGTCGGCGGCCTCGTGGTCGCCGTCGTCGCCGCCCTGGTGGCGGTCGCCGCCGTCACCTGCCGTCTGGTCGGCGCGGCCTGCCCCCTGCGGGGGCGCCTCGCCGCCCGCTGA	MDITTIAVLLLAVVVGISLGLLGGGGSILTVPLLTYVAGFAPKEAIAASLLVVGVTSVTSMLAHARRGNVQWRTGLVFGAAGMAGAFAGGLVGGHIPGTILMIAFAAMMIATAAAMIRGRRGGRTPVHDGTLKVGRTVLDGLVVGLVTGLVGAGGGFLVVPALVLLGGLPMSVAVGTSLLVIGMKSFAGLAGYLTSVSLDWGLVAAVTAAAVVGSLIGARLTTRVPEAALRRGFGWFVLVMGVVVLVQELPGVGGLVVAVVAALVAVAAVTCRLVGAACPLRGRLAAR				NA	NA	NA	NA	NA
AK001_01907	279			hypothetical protein	ATGAGAAATGCCGACCCCGAGACCCAGCGCCGCATCCTCAACCGGCTCAAGCGTGCCCGCGGGCAGCTCGACGGCGTCATCTCCGCCGTCGAGTCCGGCGGCAGCTGCCGCGACGTGGTCACCCAGCTCTCGGCCGTGTCCACGGCGCTCGACCGGGCCGGGTACGTCATCGTCTCCACGGCGATGCGGGAGTGCCTGACGGACCCGGACGGCACCGCGGAGGCGGAGGACGGGCTCACCGCCGAGGAGCTCGAGAAGCTCTTCCTCACGCTGGCCTGA	MRNADPETQRRILNRLKRARGQLDGVISAVESGGSCRDVVTQLSAVSTALDRAGYVIVSTAMRECLTDPDGTAEAEDGLTAEELEKLFLTLA	PGPT0004175_1363	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600	NA	NA
AK001_01908	1155			hypothetical protein	ATGTCGGGTCGGTCCACCGCGATACTCACCACCGTGCATGACGAGATCTCCGAGGTTGCCCGACACCGACAGGTCCGGGGCGGTGCCCGGCTGGCCGGCACCGTCGCCGACCTCGCCCGCCCCATCACCGTGGTCGGGTCCTCGATGCCCGTCGGGCAGCTCGAGGTCATGTTCCGCAGTCCCGAGGTGACGTGCGTCGCCGTGCAGGACGACGAGGGCGGGGCCCGCACCGGCATGGTGATGCGTGCCGGGCTGACCGCCGCGCTGACGGGACGCCTGGGCTACGGCCGTGCTGTGCTGGAGCGCAAGCCCGTCTCGTCCGTCACGGACTGGGCGCCCATGACGGTCTCGCCGGACGACGCCGTCTCCACCGTCGCCACTCGCGCCATGGAGCGCACCGAGGCGCACCGCTACGACGACGTCCTGGTGGCCGGGAGCCACTGGGGCACGGCCGCGACGGCCGACCTCATGCGGGCCCTCGTGGCCGCGCTGGCGGAGCGGACGACGCAGGACCCGCACACGCGTCTGCCCACCCGCGCGACGACCTACCACTCGTTGTCGCGGCGCTGCGGGCTCGTGCGCGGATCGGCGACGCGGGTCGTCCTGGTGCTCCTCGACGTGCGCGGGATGTCCGCTCTCAACGCCCGGCACGGACTGGAGACCGGGGACGTCGTGCTCGTCGAGATCGCCCACCGGCTGCGCACCGGGCTGCCGCGCGGGTGCGAGCCCGGCCGGGTCGGCGGGGACCGGTTCGCCGTGCTGGCCACCCTGCCGGCCATGGACGACATCCACGCCGCGGCCTCCGCGGACCAGCTCCGGCGGCACGTCCTGGGGCGGTTGGCCGAGCCCTCGGGCGGCCTGGACGAGCTGGTCTGGCCCGACCTGCGCTCGTCGGTGGTGTGGTCCGTCGCCGGAGCGGCGTCGCCCGACGAGCTCGTCGCCGAGGCCGAGGCGCGGCTCGCCCGGGACGCCGGGGCGCCCCTCGAGGTGGCCACGACGACGTCGGCGACGGGCCCGGCCTCCGCCGAGTCGTCGCCTGCCGCCCCGGTGCCCGGGGCGCCGCCGACGTCGGCCGCCTCGGCGGCGTCCCCCGCGCTGCCGCGACGCGGCGGCCGGGGCGGGGTGGCGAACCTGCCGGCCCGTCGGCTCGACTGA	MSGRSTAILTTVHDEISEVARHRQVRGGARLAGTVADLARPITVVGSSMPVGQLEVMFRSPEVTCVAVQDDEGGARTGMVMRAGLTAALTGRLGYGRAVLERKPVSSVTDWAPMTVSPDDAVSTVATRAMERTEAHRYDDVLVAGSHWGTAATADLMRALVAALAERTTQDPHTRLPTRATTYHSLSRRCGLVRGSATRVVLVLLDVRGMSALNARHGLETGDVVLVEIAHRLRTGLPRGCEPGRVGGDRFAVLATLPAMDDIHAAASADQLRRHVLGRLAEPSGGLDELVWPDLRSSVVWSVAGAASPDELVAEAEARLARDAGAPLEVATTTSATGPASAESSPAAPVPGAPPTSAASAASPALPRRGGRGGVANLPARRLD	PGPT0026000_593	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026000-tpbB-K21021	NA	NA
AK001_01909	1617			hypothetical protein	ATGGGCCAAGATGTCGGGGTGCCTGCACGGAACGTCCCATTCGTCCTGTCGACCCTGCTCGTCGTCCTCCTCGTCGGAGGCTGCGGAGACCAGGGAGGTCCGCAGCCGACCCGTGGCCCGGCGGTGCACCCGGTCGTCCGTGCACCGGCGTCCACCGTGCTGCTCGGGTCGCCGGACCCGGCCGAGCTGGCGCTGACGGCGAGCCAGCAGGTCTTCGAGCGCACGCCCGTCGCCGTGCTGGCGGGGACCACCGTCGAGCTGCCGGACGGGGTCGTGCGAGCCCTGCACGCAGCGGCGGCCGAGAGTCTGGGGGCGCCGGCGCTGCTCGTCGGCGGCGGGGTGTCGCCCGGGGGGATCGGGGACGAGCTCGAGCGCCTGGGCGCGCGCGTCGCCGTCGTCGTCCGAGCCGCCGGCTCGCCGGACGAGCAGGCCTCGGACCCCGCCGCGGGTGCCGTGGAGGCCGCGGCCGCGGCGGGCGTCGCCGTCGTCGATCTCGAGGCTCCGGCCCCGCTGCCCGGCAGCGACCCGGACGTCGACCCGTTGCCCGAGGACGACGCACGGCGGCTGCAGGACCGCGTCGACGTCGCCCTGGGCGCGGGAGCCTCGTCGCCGTCGTCGGCGCCCTCGCACCTGCGTGAGGTCCTGGCGCTGACCGACCCGCGACCCGGGCAGGAGGCGGCGATCGCGACGCTGCGGGCCGCGGGTGCGGTCGACCTCGAGGTGCCGGGCGGGGACATCGCGGGCGCTCCGGAGGTCGTCGAGCACGTGGACACCGCGCAGGCGCTGGCCGTGATCGGCGTCGGGCCGAGCTTCGGCAGCGCCGAGGAGCTCGCGTGGCGCGTGGCCGCCGCCGAGCGCGGCGACCTGCTGCCCACGGGTACCCAGCAGCTGGTGCCGGCGCGGTACGTCACGGTGACCGGCGGTCGGCGCGACGACCCCGCCGTCGTGGTCGAGCGGGCACGGGCCGCGGCCGACTCCTACGACGGGCTCGCCGGCGGGCCGGTGGTGCCCACCGTCGTCGTGCAGGCCAGCGCCGCGGCCGGGCACCCGGGCGAGGACGGCGACTGGGTCGCCGAGGAGCCGCCGGCCGAGCTGGGGCCGCTGGTGCGGGCGGCCCGCGAGGCCGGGCAGTACGTGCTGCTGGACGTCGGGGCCGGGATGTCGACCCTGCGGGAGGAGGTCGAGGCGCTGGAGGACCTGCTCGCGCAGCCCGGGGTGGGGGTGGCGCTGCACCCGGAGGACCGGCGGTCGGACGGGGAGATGCCCCCGGGGCAGGTGTCGGCGGCCGAGGTGCGGGACGTGATCACCTATATTGAAGGGGTGGTAACTAATCACGGTCTGCCCCCGACGATGGTGGTCCTGCACCAGACGCGACCGGAGTCCGTCGTCGACCGTGACCAGCTCGGCCGGACGGCCGCCCGGACCGACGCCGTCGAGCTCGTGCTCGTCGCCGACCGGACCGGCGGACTGACCACGACCGAATGGGTGTGGGGGCGAGTGACCGACGAACTGCCCGACGGAGTGCACGCCGGCTGGGCGGGGCCGGAACCGGAGTACTACCGGTCCACCGACCTCGTGCCGACGGACCCCGCGCCGTTGCTCGTGACCGGGTCCTGA	MGQDVGVPARNVPFVLSTLLVVLLVGGCGDQGGPQPTRGPAVHPVVRAPASTVLLGSPDPAELALTASQQVFERTPVAVLAGTTVELPDGVVRALHAAAAESLGAPALLVGGGVSPGGIGDELERLGARVAVVVRAAGSPDEQASDPAAGAVEAAAAAGVAVVDLEAPAPLPGSDPDVDPLPEDDARRLQDRVDVALGAGASSPSSAPSHLREVLALTDPRPGQEAAIATLRAAGAVDLEVPGGDIAGAPEVVEHVDTAQALAVIGVGPSFGSAEELAWRVAAAERGDLLPTGTQQLVPARYVTVTGGRRDDPAVVVERARAAADSYDGLAGGPVVPTVVVQASAAAGHPGEDGDWVAEEPPAELGPLVRAAREAGQYVLLDVGAGMSTLREEVEALEDLLAQPGVGVALHPEDRRSDGEMPPGQVSAAEVRDVITYIEGVVTNHGLPPTMVVLHQTRPESVVDRDQLGRTAARTDAVELVLVADRTGGLTTTEWVWGRVTDELPDGVHAGWAGPEPEYYRSTDLVPTDPAPLLVTGS				NA	NA	NA	NA	NA
AK001_01910	1452		COG3525	Beta-N-acetylhexosaminidase	ATGCTGCCCCTCATCCCGTGGCCCACCGAGGTCACCGCGACCGACGCCCCCGCCGTCGTCGTGCCCGCGGTCCGCGTCGACGCGCCGGACCCGGCCCTCGCCCGGCTCGTCGCCGAGCAGGTCGAGGCCGCCGGCGTCCCGGTGTCCGACGACGGTGCCGACGCCCGCGCCGTCACGGCCACGCTGCGCCTCGACCCCGCCGCCGGGCCCGCGGGCGCGGAGACCGACGAGCGGTACACCGTGCGGGTGGCCGACGGCGAGATCCTCGCCACCGCCGCGGCACCCGTCGGACTGCTGCACGCCGCCCGTACGCTGCGCCAGCTCGTGGTGCCCGGCACCGATGGCGCCGCGGCCGCCGTGCCGGCCGTCGTCGTGCACGACGCGCCCCGCTACGCCTGGCGCGGCCTGAGCCTCGACGTCGTGCGGCACTGGTTCGGTCCCGAGGACCTGCGGGCCGTGGTCGACCTGGTCGCCGCCTTCAAGCTGCGTGTGCTGCACCTGCACCTGACCGACGACCAGGGCTGGCGCATCGAGATCCCGTCCCGTCCCGAGCTGGAGAAGGCCTCCGACAACCAGGTCGGCGGCGGCTCGGCCGGCTACCTCACCGTCGAGGACTACACGGCGCTGCAGGACTACGCCGCGCAGCGGTACGTCACGATCGTGCCCGAGTTCGACATGCCCGGGCACGTCAACGCCGCCACCCACGTCTACGGCGCGCTGACGTCCGACGGCGTCGCCACCGACGCCTACGACGGCATCGAGGTCGGGTTCTCACGGCTCTGGTTCGACAACCCGGCCACCGAGCCGTTCCTGCGCGACGTCATCGGCGACCTGGCCCGCACGACCCGCGGGCCGTGGGTGCACGTCGGGGGTGACGAGGTGCTGACGATGGAGCGCGAGGAGTTCGCGCGGTTCGTCGAGCTGGCCCAGCGGATCGTGCGCGAGCACGGCAAGACGCCGATCTTCTGGCAGGAAGGCTCGAGGGGACCGGTCGAGCCGGGCACGCTGCTGCAGTACTGGGAGCCCAAGGGCGAGGAGTTCGACCGGTTCGTCGCCGCGGCCGACGCCGGCGCGCGGTTCATCATGTCGCCCGGCAACCACGCCTACCTCGACATGAAGTACACCCCCGAGCACCCGCTGGGGCTGGAGTGGGCCGGCCACGTCGAGCTGCGCGACTCCTACGACTGGGAGCCGACCACCGTGATCGACGGCCTGCCGACGTCCTCGGTCGAGGGCGTCTCCGCCGCGATCTGGACCGAGACCCTCACGACGCGTGACGAGCTGTTCTCGATGCTGCTGCCGCGGCTCGGGGCCGTCGCCGAGGTGGCCTGGACGGCGGCCGAGCGCAAGGACTGGGAGTCCTTCGCCGCCCGCACCGCCGCGTCGGCACCGGCCTGGCGCGCCAGCGGCTGGGCGTTCCACCCCACGCCGCAGGTCGCCTGGCCGGAGTGA	MLPLIPWPTEVTATDAPAVVVPAVRVDAPDPALARLVAEQVEAAGVPVSDDGADARAVTATLRLDPAAGPAGAETDERYTVRVADGEILATAAAPVGLLHAARTLRQLVVPGTDGAAAAVPAVVVHDAPRYAWRGLSLDVVRHWFGPEDLRAVVDLVAAFKLRVLHLHLTDDQGWRIEIPSRPELEKASDNQVGGGSAGYLTVEDYTALQDYAAQRYVTIVPEFDMPGHVNAATHVYGALTSDGVATDAYDGIEVGFSRLWFDNPATEPFLRDVIGDLARTTRGPWVHVGGDEVLTMEREEFARFVELAQRIVREHGKTPIFWQEGSRGPVEPGTLLQYWEPKGEEFDRFVAAADAGARFIMSPGNHAYLDMKYTPEHPLGLEWAGHVELRDSYDWEPTTVIDGLPTSSVEGVSAAIWTETLTTRDELFSMLLPRLGAVAEVAWTAAERKDWESFAARTAASAPAWRASGWAFHPTPQVAWPE	PGPT0012150_4071	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSAMINIDASE,PGPT0012150-HEXA_B_like|exo|chb-K12373	NA	NA
AK001_01911	2049			hypothetical protein	GTGAGCGCCCACGATCCCGACGCCCCCGACACCGGAGAGCAGTCCGAGGTCGACACCCCGCCGCCGAGTCGCGAGTATCCGTCCCGCCGCGAGATCCACGGTCACGAGCGCCGCACGAACACCCGCGGCATCCCCGTGGTGACCGGGGCGATCCGCGCGCTGACCGGGTCGACCCCGACGGTCGGCACGGGTCCGGCGCGCAGCGAGGCGGCCCCGGCGGACGACGCCCCGCCGTCGTCGCCGGCCGACGCCCCGGACCCACGACCGACCACCGCGACCACGCCGACCACGCACCCGGCGACGCCGCCCGGCACGCACCCCGGGACCGGCCCGACGCCGGGCGCCCTGGAGAGCGCACCGGTCCCGGTCGCGGCGGGCGGCACCGCGACGGCGACCGCCGAGCGTCCACCCGCGCGGGACGACGACGGCTCGCACGACTCGCCGTCGGACACCGCGCCGGACGAGGGGGTCGGCACCGAGCGGTCGCTGCTGGTGCGCCTGCTGGGCGAACGGCGCCTGGCGCTGGGGGCGACGTGGCAGGCCCGCACGCTCGGGTGGGTCGGCGCCGCCGTCGTCACCCTGATCGCCGCCGTGGCCCGGCTGTGGGAGCTCGGCCGCCCCGGGTCGCTGGTCTTCGACGAGACGTACTACGTCAAGGACGCGTACACGCTCGGCAGCACCGGCGCCGAGCGCCAGTGGCCCGAGGACCCGAACCCCGCCTTCGAGGCCGGCGACGTCGACACCTACCTGGACCAGGCGGCGTACGTCGTCCATCCCCCGGTGGGCAAGTGGATGATGTGGCTCGGCATGGAGGCCGGGGGCGGCGCGACGAACCCGTTCGCGTGGCGGCTGGCCTCCGCCGTCGTCGGCATCCTCGCCGTCCTGCTGCTGGTCCGGATCGCGCGACGGCTGTTCGCCTCCACGACGATGGGGCTGGTCGCCGGCTTCCTGCTGGCGATCGACGGGCAGGCGATCGTGCACTCGCGCACCGCGCTGCTGGACCAGTTCCTCATGTTCTGGGTGCTGGTCGCGTTCGGCTGCCTGCTCCTGGACCGGGAGTGGGCGCGACGACGGCTCGCCACCCGGGTCGCGGCCGTCCTGGACGCCGGTGGCACCGTGGACAAGTTCGGGCCCCGGCTCGGGATGCGGTGGTGGCGTCTCGCCGCGGGCGTCTCCCTGGGCCTGGCGTGCGGCGTCAAGTGGTCGGCGCTCTGGTTCGTCGCCGCGTTCGGCCTGCTCACCGTGCTGTGGGACGTCACCGCGCGGCGCCGCGCCGGGATCGGCCGCTGGTTCGAGGACGCCGTGCTGGCCGACGGCGTGCCGGCGTTCCTGCAGATCGTCCCGGTCGCGCTGCTCACCTACGTCGCCTCCTGGTGGCGCTGGATCGCGGGGTCGGAGGGCTACTACCGGGACTGGGCGTCGCAGAACCCGGAGCAGGCGGTGTCCTGGCTGCCCGACTGGTTGGCCAGCCTGTGGCACTACCACCAGCAGGTGTACCAGTTCCACACCGGCCTCGAGGCGGAGCACGCCTACGCGGCGGGCCCGCTCGGCTGGATGGTGCAGTGGCGGCCGACGTCGTTCTTCTGGGAGCGCCTGGACGCCGGCGACGGCGCCTGCCCCGCGGACACCGACGGCGGCTGCGCCGTCGCCGTCACGGCCCTGGGCAACCCGCTGCTGTGGTACCTGGCGGCGATCGCCCTGGTCGTGACCGTGCTCCTCGGGATCTGGCTGCGGGACTGGCGGGCGCTGGCCGTCGTCTCCGGCACGGCCGCCGGCTGGCTGCCCTGGTTCCTGTACACGGACCGCACGATCTTCACCTTCTACACGATCGCGTTCACGCCGTTCGTCATCATGACGCTGGTCTACCCCATGGTCGTGGCGCTGGAACGCACGCGATGGCGCCAGGGCAAGGGCGGCACCGCCGCGGTGATCGCCGTCGTCGTGGTGCTCGTCGCGCTGGTGTCGGCGGCGTTCTACCCGTTCTGGTCGGCGATGGCGGTGCCGTACGACTACTGGCGCGAGGTCATCCGCTTCCAGAACTGGATCTGA	MSAHDPDAPDTGEQSEVDTPPPSREYPSRREIHGHERRTNTRGIPVVTGAIRALTGSTPTVGTGPARSEAAPADDAPPSSPADAPDPRPTTATTPTTHPATPPGTHPGTGPTPGALESAPVPVAAGGTATATAERPPARDDDGSHDSPSDTAPDEGVGTERSLLVRLLGERRLALGATWQARTLGWVGAAVVTLIAAVARLWELGRPGSLVFDETYYVKDAYTLGSTGAERQWPEDPNPAFEAGDVDTYLDQAAYVVHPPVGKWMMWLGMEAGGGATNPFAWRLASAVVGILAVLLLVRIARRLFASTTMGLVAGFLLAIDGQAIVHSRTALLDQFLMFWVLVAFGCLLLDREWARRRLATRVAAVLDAGGTVDKFGPRLGMRWWRLAAGVSLGLACGVKWSALWFVAAFGLLTVLWDVTARRRAGIGRWFEDAVLADGVPAFLQIVPVALLTYVASWWRWIAGSEGYYRDWASQNPEQAVSWLPDWLASLWHYHQQVYQFHTGLEAEHAYAAGPLGWMVQWRPTSFFWERLDAGDGACPADTDGGCAVAVTALGNPLLWYLAAIALVVTVLLGIWLRDWRALAVVSGTAAGWLPWFLYTDRTIFTFYTIAFTPFVIMTLVYPMVVALERTRWRQGKGGTAAVIAVVVVLVALVSAAFYPFWSAMAVPYDYWREVIRFQNWI	PGPT0024545_1465	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNS	CE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728	NA	NA
AK001_01912	882	rsmI	COG0313	Ribosomal RNA small subunit methyltransferase I	ATGAGTCGTGTCCCCGAGGCCGGGTCCGTCGTGCTGGCCGCCACCCCGATCGGCAACGTCGAGGACGCCTCTCCACGACTCCTGCGCCTGCTCGCCGACGCCGACGTCGTGGCGGCCGAGGACACCCGCCGGCTGCACGCGCTCGCGTCCCGGCTCGGCGTGGAGGTCGGCGGGCGGATCGTGTCGTACCACGAGCACAACGAGCGCGACCGGGCGGACGACCTGCTCGACGTCGTCGACGGCGGCGGCACCGTCCTCGTCGTCACCGACGCCGGGATGCCGGCGGTGTCCGACCCCGGGTTCCGGCTCGTCGCCCGTGCCGTCGAGCGCGAGCTGCCCGTGACCTCGGCGCCCGGCGCCTCCGCCGTCCTGACCGCGCTGGCGCTGTCCGGTCTGCCGACCGACCGCTTCACCTTCGACGGGTTCGTGCCCCGCAAGCCGGGGGACCGGTCGCGGTGGCTCGGCGACCTCGCCGACGAGCAGCGCACCATGGTGTTCTTCGAGGCGCCGCACCGGATCGTCGACACCCTGGCCGCCATGGCCGAGGCGTTCGGTCCCGAACGGCCCGCCGCCGTCTGCCGCGAGCTGACGAAGGTGTACGAGGAGGTCCTGCGCGGGTCGCTCGGGGAGCTGGCGGCGCTCGCGGCCGAACGGGCCGAGACCGGCCAGGCGCTGCGCGGCGAGATCTGCGTCGTCGTCGGCGGGGCACCGGCACCGGAGGCGCCGAGCGTCGAGGCGCTCGTGCCGCAGGTCGCCGCCCGCGTCGAGGCGGGCGAGCGGCTCAAGGCGGTCGCGGGGGAGGTCGCGGCGGCGTCGGGGGTGTCGAAGCGCGAACTGTACGAGGCGGTGCTGGCCGCGCGCCAGGCCCCCTCCGCGAGGTAG	MSRVPEAGSVVLAATPIGNVEDASPRLLRLLADADVVAAEDTRRLHALASRLGVEVGGRIVSYHEHNERDRADDLLDVVDGGGTVLVVTDAGMPAVSDPGFRLVARAVERELPVTSAPGASAVLTALALSGLPTDRFTFDGFVPRKPGDRSRWLGDLADEQRTMVFFEAPHRIVDTLAAMAEAFGPERPAAVCRELTKVYEEVLRGSLGELAALAAERAETGQALRGEICVVVGGAPAPEAPSVEALVPQVAARVEAGERLKAVAGEVAAASGVSKRELYEAVLAARQAPSAR				NA	NA	NA	NA	NA
AK001_01913	510			hypothetical protein	ATGCCGCTCCCCCCGCCCCCCGCCGGCTGGTCCCGGTACGTCCTCAAGAGCACGTTCGGCATGGGCCGCGACTTCGCCGTCCTCCACCCGGACACGGGCGACCAGTCGTGGTTCGTGGACGGCAAGGTCGGCATGCGCCCCAAGGCGGACGTCAAGGACCGGGACGGCGAGGTCGTCTACACGGTCACCGGCAAGATGTTCGGGATCCCGAAGCAGATGACGATCGCCGACGCCGACGGCACGGAGATCGCCGCGCTGCGCGCCAAGATGTTCTCCCCCGTCAAGGACCGCATGTCCATGCAGGTTCCCGGCGGTGAGCCGTGGAGTCTGGAGGGGTCGTTCATCGAGAAGGACTACGCGGTCACGGTCGGTGGACGGCACGTCGTCCAGATCACCCAGAAGTGGGTGACCATCCGAGACGCGTACACGCTCGACGTCGCCGACGGGGTGGACGTGGGTCTGGCGCTGGCGGTCGTGTGGGCGATCGACCGCTGGGTCGAGCGCGACTGA	MPLPPPPAGWSRYVLKSTFGMGRDFAVLHPDTGDQSWFVDGKVGMRPKADVKDRDGEVVYTVTGKMFGIPKQMTIADADGTEIAALRAKMFSPVKDRMSMQVPGGEPWSLEGSFIEKDYAVTVGGRHVVQITQKWVTIRDAYTLDVADGVDVGLALAVVWAIDRWVERD				NA	NA	NA	NA	NA
AK001_01914	573	pncA	COG1335	Nicotinamidase/pyrazinamidase	ATGAGTACGCGAGCACTCCTCGTCGTCGACGTCCAACCGACGTTCTGCGAGGGTGGCGAGCTCCCCGTGGAGGGGGGCCACCGCGTCGCGCAGGACGTGGCCGACTACGTCGCCGCCCACCGCGAGCGCTACGGCCTGGTCGTCACGACCCAGGACTGGCACATCGACCCGGGCGAGCACTTCAGCGACGACCCGGACTTCGTCAACTCCTGGCCGGTGCACGGCGTGGCCGAGTCCCCGAACGCCCGGCTCCACCCGGCCCTGGCCGACCTGGACGCCGACGTGGCGGTCACCAAGGGCCAGTACGACCACGGGTACTCCGGGTTCGACGGGGCCGACGCCGTCGGGCGATCGCTCGACCAGGTCTTGCGCGAGGCCGACGTCCGCGCCGTGGACGTGGTCGGCCTCGCCGAGTCGCACTGCGTGAAGTTCACGGCGCTGGACGCCGAGCGGCACGGGTTCGAGACCCGGGTGCTGACGGACCTCACCGCCCCCGTCTCGGCGGAGCAGGGCGAGCAGGCCCACCGCGAGCTGACCCGGGCCGGCGTCGAGCTGGCGACCTCCGCGAGGTAG	MSTRALLVVDVQPTFCEGGELPVEGGHRVAQDVADYVAAHRERYGLVVTTQDWHIDPGEHFSDDPDFVNSWPVHGVAESPNARLHPALADLDADVAVTKGQYDHGYSGFDGADAVGRSLDQVLREADVRAVDVVGLAESHCVKFTALDAERHGFETRVLTDLTAPVSAEQGEQAHRELTRAGVELATSAR	PGPT0013470_1979	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281	NA	NA
AK001_01915	1797	metG	COG0073	Methionine--tRNA ligase	ATGACCCACATCCTCTCGGCCGTGGCATGGCCTTATGCCAACGGCCCGCGGCACATCGGCCACGTCGCCGGCTTCGGCGTTCCCTCCGACGTCTTCAGCCGTCACATGCGGATGGCGGGTCACGACGTGCTGATGGTCTCGGGCACCGACGAGCACGGCACGCCCATCCTGGTCCAGGCCGAGCAGGAGGGCGTGACGCCCCAGGAGCTCGCCGACCGCTACAACCGCGTGATCGTCGAGGACCTCACCTCCCTGGGCCTCAGCTACGACCTGTTCACCCGCACCACGACGCGCAACCACTACGCCGTCGTGCAAGAGATGTTCCGCACCGTCCACCAGAACGGCTACATGGTGGAGAAGTCGACGATGGGCGCCATCTCGCCGTCGACCGGTCGCACGCTGCCGGACCGCTTCATCGAGGGCACCTGCCCGATCTGCTCCTACGACGGCGCGCGCGGCGACCAGTGCGACAACTGCGGCAACCAGCTCGACCCGATCGACCTGAAGAACCCGCGCAGCCGCATCAACGGCGAGACGCCGAAGTTCGTCGAGTCGAACCACTTCTTCCTCGACCTGCCGGCCTTCGTCGACGCGCTCGCCTCCTGGCTCGAGACGCGCACCGGCTGGCGCCAGAACGTGCTGAACTTCAGCCGCAACCTGCTCGACGACGTCCGCCCGCGCGCCATGACGCGCGACATCGACTGGGGCATCCCGGTGCCCCTGGACGGCTGGTCCGAGAACCCGAACAAGCGTCTGTACGTCTGGTTCGACGCCGTGATCGGCTACCTGTCCAGCTCCATCGAGTGGGCCCGCCGCCGCGGCACCCCCGAGGCCTGGCGAGACTGGTGGACCAACCCTGATGCCCGCTCGTTCTACTTCATGGGCAAGGACAACATCACCTTCCACTCCCAGATCTGGCCGGCCGAGCTGCTGGCCTACGACGGCGGCGGCGCGCACGGCGGGCAGCCCGGCCCGTACGGGTCGCTCCAGCTCCCGACGGAGGTCGTCTCCAGCGAGTTCCTCAACGTCGAGGGTCAGAAGTTCTCCTCCTCGCGTGGCGTGGTCATCTACGTGCGCGACATGCTGGCCCGCTACCAGCCGGACGCGTTCCGCTACTACGTGGCCGCGGCCGGGCCGGAGAACCAGGACGTGGACTTCACGTGGGACAGCTTCCTGCGGCGCACCAACGACGAGCTCGTCGCCGGCTGGGGCAACCTGGTCAACCGCACGGCCTCGATGGTGCACAAGAACTTCGGCGAGATCCCCGCCGCGGGCGAGCAGGCCGACGTCGACCGCGAGGTGCTCGCGACCACCGGCGAGGCGTTCGGCAAGATCGGCTCGCTCATCGAGTCCAACCGGCAGCGGGCCGCGGTCGCCGAGGCGATGCGCGTGGTCGGGGAGGTCAACCGGTACGTCTCCGAGACCCAGCCGTGGAAGCTCAAGACCGACCCGGACCGGCTCGCCACCGTGCTGCACACCACCACCCAGGCCGTCAGCGACTGCAACACGCTGCTCGCCCCGTTCCTGCCGCACTCGGCCCAGTCGGTGCACGAGGTGCTCGGCGGGACCGGCGAGTTCGCCCCGCAGCCGGTGATCCAGGAGGTCACCGACCTCGACGACGACTCGCGCCACTACCCGGTCATCACCGGCGGCCACGACGGCGGCTACGAGTTCCCGTCGTGGGAGTCGCGCCCGGTGGCCCCCGGCACCCCGATCGCCAAGCCGACGCCGGTGTTCACCAAGCTCGACGACTCGATCGTCGAGGAGGAGCTGGAACGCCTGCGCGAGAAGGCCTGA	MTHILSAVAWPYANGPRHIGHVAGFGVPSDVFSRHMRMAGHDVLMVSGTDEHGTPILVQAEQEGVTPQELADRYNRVIVEDLTSLGLSYDLFTRTTTRNHYAVVQEMFRTVHQNGYMVEKSTMGAISPSTGRTLPDRFIEGTCPICSYDGARGDQCDNCGNQLDPIDLKNPRSRINGETPKFVESNHFFLDLPAFVDALASWLETRTGWRQNVLNFSRNLLDDVRPRAMTRDIDWGIPVPLDGWSENPNKRLYVWFDAVIGYLSSSIEWARRRGTPEAWRDWWTNPDARSFYFMGKDNITFHSQIWPAELLAYDGGGAHGGQPGPYGSLQLPTEVVSSEFLNVEGQKFSSSRGVVIYVRDMLARYQPDAFRYYVAAAGPENQDVDFTWDSFLRRTNDELVAGWGNLVNRTASMVHKNFGEIPAAGEQADVDREVLATTGEAFGKIGSLIESNRQRAAVAEAMRVVGEVNRYVSETQPWKLKTDPDRLATVLHTTTQAVSDCNTLLAPFLPHSAQSVHEVLGGTGEFAPQPVIQEVTDLDDDSRHYPVITGGHDGGYEFPSWESRPVAPGTPIAKPTPVFTKLDDSIVEEELERLREKA				NA	NA	NA	NA	NA
AK001_01916	936	tatD	COG0084	putative metal-dependent hydrolase TatD	ATGGGACGCTCCAAGCGCGAGCGGGGATTCCCTCCGGACCCGGAGGCCCTGCCGGTCCCGGTCGTGGACAACCACACCCACCTGGACGCCATCGCCGACGTGCTCGACGAGCGGGCGCTGCAGGGTGCCCCGGTCCCCACCGTCGCCGACCATCTCGAGCGGGCCGCCGCGGTCGGGGTGGACCGGTTGGTCCAGGTGGGCTGCGAGCTGCCGTCCGTCGAGTGGACGGACGCGCTCCTGCGCGAGCCCGCGAACGACGGGCGTCTCCTGGGCGCCGTGGCGATCCACCCGAACGAGGCGGTGCTGCACGCGGGCGTCCGCGAGGTGGGGCCGGACGGGCTGGAGCCGTCGCCGCAGGCGCACCACGCGACCTCGCTCGACGACGCGATCGCCCGGGTGGCCGACGTCGCGCGAGACAACCCGCGCGTCCGGGCGATCGGCGAGACGGGGATGGACCTGTTCCGCACCGGCCCGCAGGGTGAGGTCGCCCAGCGCGAGTCCTTCCGGGCGCACGTGGCGCTGGCCAAGGAGCTCGGGCTGGCGCTGCAGATCCACGACCGCGACGCGCACGAGCAGGTGATCGAGGTCCTGCTCGCCGACGGCGCACCGGAGCGCACGGTCTTCCACTGCTACTCGGGCGACGAGCAGATGGCGGCACTGGCGGCCGAGCACGGCTGGTACCTGTCGTTCGCCGGGCCGGTCACCTACCCGAGGAACGACCACCTGCGCGGCGCGCTGCGCACCGTGCCGCTCGAGCTGGTCCTGGTCGAGACCGACGCCCCCTACCTGCCCCCGCATCCCTACCGGGGCCGGCCCAACGCGCCCTACGTCGCCGGGCACACCGTCCGGGCGATGGCGGAGGTGCTCGAGCTCCCGCTGACGGACCTGTGCACCGCGGTGTCGACGACCTCCGAGACGGTCTACGGAACGTGGTGA	MGRSKRERGFPPDPEALPVPVVDNHTHLDAIADVLDERALQGAPVPTVADHLERAAAVGVDRLVQVGCELPSVEWTDALLREPANDGRLLGAVAIHPNEAVLHAGVREVGPDGLEPSPQAHHATSLDDAIARVADVARDNPRVRAIGETGMDLFRTGPQGEVAQRESFRAHVALAKELGLALQIHDRDAHEQVIEVLLADGAPERTVFHCYSGDEQMAALAAEHGWYLSFAGPVTYPRNDHLRGALRTVPLELVLVETDAPYLPPHPYRGRPNAPYVAGHTVRAMAEVLELPLTDLCTAVSTTSETVYGTW				NA	NA	NA	NA	NA
AK001_01917	1164	rpf2_1	COG3583	Resuscitation-promoting factor Rpf2	GTGGGCCGGCGAGGCCCCCTCCCGGCCGCGACCCGGTTCGTGGCCCGCACCGCCGTGGTGGCGGCGGTCGCGGTCGGCGCCGCCGGTGTCGTGGACGCTCACGCCGAGATCACCCTCGACGTCGACGGCGCGGTGCGCACCGTCGACGGCTACGGCGACACGGTCGCCGACGTGCTGGCCTTCCACGGCGTCAGGCCGGGACCGGACGACCTGGTCCAGCCCGCGCTGACGGCGTCGGCCCCGGACGACGGCGAGGTCGTGGTCCGCACCAGCAAGGACGTCACGATGGAGATCGACGGCGAGACCGTCACGTTCCCGACGACGGCGCACACCGTGGGCGAGCTGCTCGCGGCGCTCGGGCCGCGGGGCGAGGGAGCGGTCACGACGGCGTCGCGCAGCGAGCCGCTGGGACGGTCGCCGGTCCGGGTCTCGACGCTCAAGACCGTCCACGTCTCGGTGGACGGGTCCGTCCTCCCGCTGCGCACCACGCAGGCCACGGTGCGCGAGGTGCTCGCCGAGGTCGGGATCACCCTCGCGGCGCAGGACGGCACCTCGGTCCCGCTGGGGGCGGCGGCGGTCGACGGCATGGTCGTCGTGGTCCACCGCGGGCAGACGGGTTCCGACCTGGTCACCGAGGTGGTGCCGTTCGAGACCGAGACGGTGGAGTCCGACGACCTGCCGCGCGGGCACGAGGTGGTGCAGACCCGCGGCGTGCCGGGCGAGCGGGTGACGACCTACGAGGTGCGCACCATCGACGGCGCCGAGGTGGAGCGCACCGTGGTCGACCGCACGGTCACGACGGAGCCGGTCACGGAGGTCGTCCTGGTCGGCACGCTGGACGTCTCCGACATCCAGGTCGACCCGGGGTCGGCCAAGGCCGTCGCGCGGTCGTTGGCGGCCGAGCGCGGCTGGGGCAGCGACCAGTTCGTCTGCCTGGACAAGCTGTGGACCAAGGAGTCGAACTGGCGCTGGAACGCCGAGAACCCGTCCAGCGGGGCCTACGGCATCCCGCAGGCGCTGCCGGGGTCGAAGATGGCCACGGCCGGCTCGGACTGGCGGACGAACCCCACCACCCAGATCCGGTGGGGCCTGGACTACATCAGCGGGCGGTACGGCTCGCCCTGCGCGGCCTGGAACCACTCGATGTCGGTCGGTTGGTACTGA	MGRRGPLPAATRFVARTAVVAAVAVGAAGVVDAHAEITLDVDGAVRTVDGYGDTVADVLAFHGVRPGPDDLVQPALTASAPDDGEVVVRTSKDVTMEIDGETVTFPTTAHTVGELLAALGPRGEGAVTTASRSEPLGRSPVRVSTLKTVHVSVDGSVLPLRTTQATVREVLAEVGITLAAQDGTSVPLGAAAVDGMVVVVHRGQTGSDLVTEVVPFETETVESDDLPRGHEVVQTRGVPGERVTTYEVRTIDGAEVERTVVDRTVTTEPVTEVVLVGTLDVSDIQVDPGSAKAVARSLAAERGWGSDQFVCLDKLWTKESNWRWNAENPSSGAYGIPQALPGSKMATAGSDWRTNPTTQIRWGLDYISGRYGSPCAAWNHSMSVGWY				NA	NA	NA	NA	NA
AK001_01918	1356	rpf2_2	COG3583	Resuscitation-promoting factor Rpf2	ATGAAGGACTGGCCTTTCGACAACGTGGCTCCCTCGACCGAGCCGGTTCCCGTCTTCGCCCACGTGAGCGACGACCCCACCGTCGGCGCCTCCGCCGGCACCGCCGCCGGTGGTGCCGGGACGCCGGGCGACGCGACGGGCGACACCACCCCGACGCGCCGTCGCCGACGCCGCTGGCCGCTCGTGACCGCCGTGGCCGTGCTCAGCCTCGTCGTGGCGGGTGGCGTCTCCGCCGCCGTCGTGGAGCAGCTGCGCAAGGACGTCACCCTCGACGTCGACGGCCGCCTCACCACCGTGACCACGTACGCCGCCACCGTGGACGACGTGCTCGCCGAGGAGGGGGTGCGCGTCGGCGACAACGACGAGGTCACCCCCGCGGCCGACGACCAGCTGCGTGACGGCGCCGTCGTCCAGGTCCGGTACGGCCGCCAGCTCACCGTCGAGACCGACGGCGAGCAGCGGGACGTGTGGGTCGCGGCGCTCGACGCCGACGAGGCCCTCGCCGACTTCGCCGAGCGCGCCGACCAGGTGCGGCTGCTGCCGTCGCGGTCCGCCGAGCGGGCCACGCTGCCGATCCGCCTGGACGCCGACCAGCCGGTCACGCTCGTCGTGGGCGGCGAGGAGCGCGTCGTCGACGACGGCGCGGTCACCCTCGAGGAGCTGCTCGCGGCCGAGGGCGTCGAGCTCGACGCCGACGACCGCGTCCACGTCGAGCAGGTCGAGCCCGCCGACGGGTCCGAGCCCTCGGTGCGCGTCGTCGTCCAGGTGGTCGACGTCAAGAAGGTCGACAAGACCAAGAAGGTCGACTTCGACACCGTGACGAAGACCGACCCGGACCGCTACGTCGACGAGGGCTCCTACGTCGCCACGGAGGGCAGCAAGGGTGAGCGGACCATCACCTGGGAGGTCACCCGGGTCGACGGCGAGGTGACGAACCGCGAGAAGCTCTCCAGCAAGGTCACGACGAAGCCGGTCGACAAGGTCGTGGTCGAGGGCACCAAGGAGCGTCCCGAGCCGGAGCCCGAGCCGGCTCCGCAGCCCGCCGACACCGGCAGCTCGTCGTCCTCCTCCTCCGGGTCGTCCGGCTCGAGCTCCTCGTCCGGCGGCTCCGCGCCGTCCGGCTCGGTCTGGGCCGCGCTGGCGCAGTGCGAGTCCGGCGGCGACCCCACGACCAACACCGGCAACGGGTACTACGGCATGTACCAGTTCTCGCTGTCGACCTGGCAGTCGGTCGGCGGGACCGGGCTGCCGTCCGACGCCTCGGCCGCCGAGCAGACGAAGCGGGCGCAGATCCTGCAGTCGCGGGCCGGGTGGGGCCAGTGGCCGCACTGCGCCGCGAAGCTCGGGCTGCTCTGA	MKDWPFDNVAPSTEPVPVFAHVSDDPTVGASAGTAAGGAGTPGDATGDTTPTRRRRRRWPLVTAVAVLSLVVAGGVSAAVVEQLRKDVTLDVDGRLTTVTTYAATVDDVLAEEGVRVGDNDEVTPAADDQLRDGAVVQVRYGRQLTVETDGEQRDVWVAALDADEALADFAERADQVRLLPSRSAERATLPIRLDADQPVTLVVGGEERVVDDGAVTLEELLAAEGVELDADDRVHVEQVEPADGSEPSVRVVVQVVDVKKVDKTKKVDFDTVTKTDPDRYVDEGSYVATEGSKGERTITWEVTRVDGEVTNREKLSSKVTTKPVDKVVVEGTKERPEPEPEPAPQPADTGSSSSSSSGSSGSSSSSGGSAPSGSVWAALAQCESGGDPTTNTGNGYYGMYQFSLSTWQSVGGTGLPSDASAAEQTKRAQILQSRAGWGQWPHCAAKLGLL				NA	NA	NA	NA	NA
AK001_01919	1353	rpf2_3	COG3583	Resuscitation-promoting factor Rpf2	ATGACCTCCGTGCCCGAGAACCTCGAGCCGCAGCCGACCACGGACGAGACCCGAGCCGTCACCCGCACGCGCCGGGTCCGTCGTCGGCGGACCCTCATCGCCTCCTTCACCGTCGGCGCCCTCGCCCTCGGTGTCGGGTCCGCGGTGGGTGTCTCCCAGGCCCACAAGACCGTGACGCTCGACGTCGACGGCGAGACCCGGTCGGTCGGCACCTTCGCCGGCGACATCGAGGGTCTGCTCGCCGAGCAGGGCGTCGAGGTCGGGGACCGCGACGTCGTCGCCCCGGCCGCCGCGACCTCCCTGCACGACGGGAGCGACGTCGTCGTGCGCACCGGCAAGCAGGTGGCCATCCAGGTCGACGGCGAGGAGTCGTCCACCTGGATCAACGCCGCCGACGCCAACGAGGCGCTGAACCTGCTCAGCCAGCGCGGCAGCGAGGTCCACCTCGTCGCGTCGCGCTCCGAGGACCGTGCGGCGCTGCCGCTGGACGTCCACGACGGCCAGGACGTCGCCGTCGTCGCCGACGACGAGATCGAGGTCGTCGACGGCTCCGAGGACCTGAACGCCGTGCTCGGTGCCGCGGACGTCGAGATCGACGCCGACGACATCGTCACCGTCACCGACGCCGCGACCGCCGACGTCACGGCCAAGGAGCTCCCCGAGGACGCCGAGATGCCGGCCGTCGCCGCCGTCGTCCAGCGCGTCGACGTCGAGCGGGTCACCAAGACCAAGACGATCGAGCGCGAGGTCAAGGTCAAGCAGAGCGACGACCGCTACGAGGACCTCGACCCGAAGGTCAAGAAGAAGGGCCGTGACGGCTCCCGCACCGTCGTGCGCGAGATCACCACGATCGACGGCGAGGAGGTCTCGAACGAGAAGATCACCTCGATGGTCACCAAGGAGCCGAGGACCCGCGTGCTGATCGAGGGCACCAAGCCGCGCCCCGAGCCGGAGCCGGAGCCCGAGCCCGCGACGTCGTCCAGCTCGTCGAGCTCCTCCTCGAGCTCGGGGTCGTCGAGCTCGGGGTCGTCCGGGTCGAGCACGTCCTACTCGGGCTCCAACCGCCAGATCGGTCAGCAGATGGCCGCCGCCCGCGGCTGGACCGGCTCGCAGTGGTCCTGCCTCGAGTCGCTGTGGACCAAGGAGTCCAACTGGTCGCACACCGTCGCCAACCCGTCCTCGGGCGCCTACGGCATCCCGCAGTCGCTCCCGGGGTCGAAGATGGCCTCCCACGGCTCGGACTGGCAGACCAACCCGGCCACCCAGATCGCCTGGGGCCTGGACTACATCGCCGGCCGCTACGGCACGCCGTGCGGTGCCTGGAGCCACTCGCAGGCGAACAACTGGTACTGA	MTSVPENLEPQPTTDETRAVTRTRRVRRRRTLIASFTVGALALGVGSAVGVSQAHKTVTLDVDGETRSVGTFAGDIEGLLAEQGVEVGDRDVVAPAAATSLHDGSDVVVRTGKQVAIQVDGEESSTWINAADANEALNLLSQRGSEVHLVASRSEDRAALPLDVHDGQDVAVVADDEIEVVDGSEDLNAVLGAADVEIDADDIVTVTDAATADVTAKELPEDAEMPAVAAVVQRVDVERVTKTKTIEREVKVKQSDDRYEDLDPKVKKKGRDGSRTVVREITTIDGEEVSNEKITSMVTKEPRTRVLIEGTKPRPEPEPEPEPATSSSSSSSSSSSGSSSSGSSGSSTSYSGSNRQIGQQMAAARGWTGSQWSCLESLWTKESNWSHTVANPSSGAYGIPQSLPGSKMASHGSDWQTNPATQIAWGLDYIAGRYGTPCGAWSHSQANNWY				NA	NA	NA	NA	NA
AK001_01920	873	ksgA	COG0030	Ribosomal RNA small subunit methyltransferase A	ATGACCAACACCCCTGGCGCCCTGCTCGGCCCTGCGGAGATCCGCGAGCTGGCAGGGCGCCTCGGTGTCCGCCCCACGAAGACGCTCGGGCAGAACTTTGTGCACGACGGCGGCACGGTGCGCAAGATCGTCCGCGCCGCCGGCGTGCAGCCCGGCGACCGGGTCGTCGAGATCGGGCCGGGGCTGGGGTCGCTGACGCTCGGTCTGCTCGAGGCGGGCGCCTCGGTCGTCGCCGTCGAGATCGACCCGGTGCTCGCCGGCCAGATCGCCGAGACGGTGCACCGCCACGCCCCCGACGCGGACTTCGAGGTGGTCACCGCCGACGCGATGGACGTCACCGACCTGCCGGGCGCACCGCCGTCGGCCCTCGTGGCGAACCTGCCCTACAACGTGGCCGTGCCGGTGCTGCTGACCTTCCTCCAGCGCTTCGAGTCGCTGCAGTCGGTGCTCGTGATGGTGCAGGCCGAGGTCGCCGACCGGCTCGCCGCACCCCCCGGGTCGCGCACCTACGGGGTGCCGTCGGCCAAGGCCGCCTGGTACGGCGCCGCCCGGCGCTCGCTGAACGTCTCGCGGCACGTCTTCTGGCCCGAGCCGAACGTCGACTCGGCCCTCGTGGCGATCGAGCGCCATGACCCGCCGGTCACGACGGCGACGCGCGAGCAGGTCTTCGCCGTCGTCGACGCCGCCTTCGCCCAGCGCCGCAAGACGCTGCGTGCCGCCCTGTCCGGGATCTTCGGGTCCGGTGCCGCCGCGGAGGTGGCGCTGCGCGCCGCGGACGTCGACCCGCGCCTGCGTGGGGAACGTCTCTCGATCGCCGATTTCGCCCGGATCGCCGAGCACCTTCCGGCCGCTGCTGGCACGGTGGACGGGTGA	MTNTPGALLGPAEIRELAGRLGVRPTKTLGQNFVHDGGTVRKIVRAAGVQPGDRVVEIGPGLGSLTLGLLEAGASVVAVEIDPVLAGQIAETVHRHAPDADFEVVTADAMDVTDLPGAPPSALVANLPYNVAVPVLLTFLQRFESLQSVLVMVQAEVADRLAAPPGSRTYGVPSAKAAWYGAARRSLNVSRHVFWPEPNVDSALVAIERHDPPVTTATREQVFAVVDAAFAQRRKTLRAALSGIFGSGAAAEVALRAADVDPRLRGERLSIADFARIAEHLPAAAGTVDG				NA	NA	NA	NA	NA
AK001_01921	933	ispE	COG1947	4-diphosphocytidyl-2-C-methyl-D-erythritol kinase	GTGACCAGTCTCGCTGCCGCCCCGTCGCCGTCCGTCCGCGTCCGAGCGCCGGGAAAGATCAACCTGTCCCTGCGGGTCGGTCCGGTCGAGGAGGACGGCTACCACCCGCTGGTCACGGTGTTCCAGGCGGTGGCCCTGCACGAGGAGGTCACGGCCACCGAGGTCGCCGAGGGGGTCGGTCTCTCGCTGACGGTCGACGGACCGCAGGCCGACCGGGTGCCCCTGGACGCGTCGAACCTCGCCTGGCGGGCGGCCGAGGTGCTGGCCGAGCACGTCGGCACGTCGCCGGACGTCGCCCTGCACCTGTCCAAGGGGGTCCCCGTCGCGGGCGGCATGGCGGGCGGGTCCGCCGACGCCGCCGCCACCCTCGTCGCGTGCGACGCGCTGTGGGGGGCCGGGCTGTCCCGGGCCGAGCTGTCCGGGCTGGCGGCCCGGCTCGGCTCCGACGTGCCCTTCGCGCTGCTGGGGCACACCGCCGTCGGCACGGGCCGCGGGCACCTGCTGACCCCGGCGATGTCCCGCGGCGAGTTCCACTGGGCGTTCGCCACGCGGGACGAGGGGCTGTCGACCCCGGCGGTGTACGGCCGGTTCGACGAGATGTACGGGGCGACCGCCCCGCCGGTCGACGTCGCCGACGACAACGGCCTCATGCAGGCCCTGCGCGCCGGGGACCCGACTGCGCTCGGGGCGGCGCTGCACAACGACCTCGAGCCGGCTGCGCTCGACCTCCGCCCCGAGCTGGAGCGCACCCTGGAGATCGCCCGCAACGGCGGTGCGCTCGGGGCGATGGTGTCCGGTTCCGGGCCGACCGTTGCCGCGCTGGCCCGGTCCCGCCAGCACGCGCTGGCGATCGCCGCGACCTGGACCGCCGAGGACGCCGCCGACGCGGTCTGGTGCACGACGGCGCCGGCCGCGGGGGCCCGCGTCCTCTGA	MTSLAAAPSPSVRVRAPGKINLSLRVGPVEEDGYHPLVTVFQAVALHEEVTATEVAEGVGLSLTVDGPQADRVPLDASNLAWRAAEVLAEHVGTSPDVALHLSKGVPVAGGMAGGSADAAATLVACDALWGAGLSRAELSGLAARLGSDVPFALLGHTAVGTGRGHLLTPAMSRGEFHWAFATRDEGLSTPAVYGRFDEMYGATAPPVDVADDNGLMQALRAGDPTALGAALHNDLEPAALDLRPELERTLEIARNGGALGAMVSGSGPTVAALARSRQHALAIAATWTAEDAADAVWCTTAPAAGARVL	PGPT0007605_880	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919	NA	NA
AK001_01922	972	axeA	COG3458	Cephalosporin-C deacetylase	ATGGCCCAGTTCGACCTGCCCGTGACCGAGCTCGAGCAGTACCGTCCCACGGTCGAGGAGCCCGGCGACTTCGACGCCTTCTGGTCCGGCACGATCGCCGAGGCGCGCGGGTTCGGTGACGACGTGCGCATCGAGCGGGTGGACGCCGGGCTGACCGAGCTCACGGTCGACGACGTCACCTTCCCCGGGTTCGGCGGGCACCCGATCAAGGCCTGGCTCGTCCGACCGGCCCGGGTCGACGGTCCCCTGCCCGCCGTCGTGGAGTTCGTCGGCTACGGCGGGGGCCGCGGGCTGCCGCACGAACAGCTCGGGTACGCCGCGGCCGGGTACGCGCACCTGGTCGTCGACACCCGCGGACAGGGTTCCGGCTGGGGCTCCGGCGGCGACACCCCCGACCCGGTGGGACACGGCCCCGCCTCCCCCGGGTTCATGACCCGCGGCATCCTCGACCCGGCCGAGCACTACTACCGGCGTGTCTTCACCGACGGCGTGCGGGCCGTGGACGCCGTGCGGCAGATCGACGGGATCGACCCGGCGCGAGTGGCCGTGGCCGGGACCAGCCAGGGTGGCGGCATCGCGATCGCCGTGGCAGGCCTACTGCCCGACGTCGTGGCCGCGGCGCCGAACGTGCCGTTCCTGTGCCACTTCCGGCGCGCCGTCCAGATCACCGACGCCGATCCCTACGCCGAGATCACGCGGTACCTCGCGGTGCACCGGGAGCACGAGGACGCCGCCTGGCGCACGCTGTCGTACCTCGACGGGGTCTCGTTCGCGCGGCGCGCCCGGGCCGCCGGCCTGTTCTCCGTCGCGCTGATGGACACGATCTGCCCGCCGTCGACGGTGTACGCGGCGTTCAACGCGTGGGGCGGCACCGACCGGGAGATCGACGTCTACCCGTACAACGGGCACGAGGGCGGTCAGCACTACCGGTTCGCGCCGACCCTGGCATTCCTGCGCAAGCACCTGGACTGA	MAQFDLPVTELEQYRPTVEEPGDFDAFWSGTIAEARGFGDDVRIERVDAGLTELTVDDVTFPGFGGHPIKAWLVRPARVDGPLPAVVEFVGYGGGRGLPHEQLGYAAAGYAHLVVDTRGQGSGWGSGGDTPDPVGHGPASPGFMTRGILDPAEHYYRRVFTDGVRAVDAVRQIDGIDPARVAVAGTSQGGGIAIAVAGLLPDVVAAAPNVPFLCHFRRAVQITDADPYAEITRYLAVHREHEDAAWRTLSYLDGVSFARRARAAGLFSVALMDTICPPSTVYAAFNAWGGTDREIDVYPYNGHEGGQHYRFAPTLAFLRKHLD	PGPT0011020_431	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-CEPHALOPORIN_METABOLISM,PGPT0011020-cah-K01060	NA	NA
AK001_01923	1872	ettA_2	COG0488	Energy-dependent translational throttle protein EttA	ATGTCCGGGAGCGGCGGCGACTACCCTGTTCCGGTGGCACATCTCCTCGGCGCGGACAGCATCTCGCTGACCATCGGCACCCGCACCCTGCTCGACGACGTCTCCCTCGGGCTCGACGACGGCGACCGGATCGGCGTCGTCGGACCCAACGGCGCCGGCAAGTCCACGCTGCTGCGGATGCTCGCCGGTGCGGCCGTGCCCGACGACGGCCGCATCACCCGCGTGGGCGGCTCCCGGATCGGGATGCTCGACCAGCGCGACGACGTCCCCGAGGGCGCGACCGTCCTCGACCTCGTGCACGGCGACGACGAGACCCACGAGTGGGCCTCCGACCCGCGCGTGCGCGCCGTGCACGCCGGTCTTCTGGCCGACCTCGACCTGGACAAGCCGGCCACCACGCTCTCCGGCGGCCAGCGCCGTCGTGTGGCCCTGGCGCACCTGCTCGTCGAGGACCCCGACGTCCTGCTGCTCGACGAGCCCACCAACCACCTCGACGTCGAGGGTGTGGCCTGGCTCGCCGAGCACCTGCGCAACCGCTACGGCCGCCCCGGTGCGACGGGCGCGCTGGTGGTCGTCACCCACGACCGCTGGTTCCTCGACGCCGTCTGCTCGCGCATGTGGGAGGTCCGCGGCGACGGGACCGGTGCCGTCGACGGCTACGAGGGCGGCTACGCCGCCTACATCCTGGCCCGCGCCGAGCGGTCCCGGCAGGCCGCCGCGGCCGCCGAGAAGCGCAACAACCTGCTGCGCAAGGAGCTCGCCTGGCTCAAGCGCGGCGCCCCGGCGCGCACCTCCAAGCCGAAGTTCCGGGTGGAGGCGGCCCAGAGCCTCATCGCCGACGAGCCGCCGCCGCGCGACCAGCTCGAGCTCACGCAGATGGCCACCAAGCGGCTCGGCAAGGACGTCCTCGACCTCGAGGACGTCACCGTGCGCGTCCCGCTGCCCGACGGCGGGGAGCGCACCCTGCTCGACGACGTCACGTGGCGGCTCGGGCCCGGCGACCGGTACGGCGTCGTCGGGGTCAACGGTGCCGGCAAGACGACGCTGCTCGCCCTGCTGGCCGGACGCCGCGACCCCGAGGGCGGCCGGGTGCGGCGCGGCAAGACGGTCGAGGTCGCCGAGCTGACCCAGGAGGTCACCGAGCTCGACCAGGTCGGGGACCTGACCGCGGTGCAAGTGGTGGACCGGGAGAAGCGCACCGTCGTCGTGGACGGCAAGGAGCTCACGGCCGGGCAGCTCACCGAACGTCTCGGGTTCACGCGCGAGCGCGCCCACACCGTGGTGCGCAACCTCTCCGGCGGGGAACGCCGACGGCTGCAGCTCCTGCGCCTGCTGGTCTCCGAGCCGAACGTGCTGCTGCTCGACGAGCCCACCAACGACCTGGACACCGACACCCTGGCCGCCGTGGAGGACCTGCTGGACGGCTGGCCCGGCACCCTGATCGTCGTCTCGCACGACCGCTACCTGCTGGAGCGGGTCTGCGACCGGCAGTGGGCCCTGCTCGGCGACGGCGCGTTGCGCGACCTGCCGGGCGGGGTCGAGCAGTACCTGGAGCTGCGACGTGCCGGTGCGGGGGCGTCGGGCGACGTCTCGTCGCCGGGCGCTCCTTCCGCAGCCGGCACGTCCGGCGGGCCGGACGGTGGTGCAGCGCCGTCGGCCGCGGAGCAGCGGCAGGCCAAGAAGGCCGTGCAGCGCCTGGAGAAGCAGCTCGCCAGGCTGACGCAGGAGGAGGCGCGCCTGCACGAGCAGATGGCCGCGGACCCCACGGACTTCGAGGCCACGGCCAGGCTCGACGCACGGCTGCGGGAGCTCACCGCCGAGAAGGACGACCTCGAGATGCAGTGGCTGGAGGCCGCCGAGCTCGTCGAGTGA	MSGSGGDYPVPVAHLLGADSISLTIGTRTLLDDVSLGLDDGDRIGVVGPNGAGKSTLLRMLAGAAVPDDGRITRVGGSRIGMLDQRDDVPEGATVLDLVHGDDETHEWASDPRVRAVHAGLLADLDLDKPATTLSGGQRRRVALAHLLVEDPDVLLLDEPTNHLDVEGVAWLAEHLRNRYGRPGATGALVVVTHDRWFLDAVCSRMWEVRGDGTGAVDGYEGGYAAYILARAERSRQAAAAAEKRNNLLRKELAWLKRGAPARTSKPKFRVEAAQSLIADEPPPRDQLELTQMATKRLGKDVLDLEDVTVRVPLPDGGERTLLDDVTWRLGPGDRYGVVGVNGAGKTTLLALLAGRRDPEGGRVRRGKTVEVAELTQEVTELDQVGDLTAVQVVDREKRTVVVDGKELTAGQLTERLGFTRERAHTVVRNLSGGERRRLQLLRLLVSEPNVLLLDEPTNDLDTDTLAAVEDLLDGWPGTLIVVSHDRYLLERVCDRQWALLGDGALRDLPGGVEQYLELRRAGAGASGDVSSPGAPSAAGTSGGPDGGAAPSAAEQRQAKKAVQRLEKQLARLTQEEARLHEQMAADPTDFEATARLDARLRELTAEKDDLEMQWLEAAELVE				NA	NA	NA	NA	NA
AK001_01924	933	ydhF	COG4989	Oxidoreductase YdhF	ATGAAGACCGTCCCCCTCGGCACCAGCGGCCGCCAGGTCCCCAACGTCGTCCTCGGCCTGATGCGCATCCAGCAGATGGACGACGACGCCGTCCGCGAGCTCGTGCGCACCGCCCGCGACGCCGGCATCGACTTCGTCGACCACGCCGACGTCTACGGCGACGCGCTGCACGGCTGCGAACGCCGGTTCGCCGAGGCCATGCAGCTCACGCCCTCGCAGCGAGAGGAGCTGACCATCCAGTCCAAGGCCGGCATCGTCCGCGAGGGCCCGTACTTCGACTTCTCCTTCGACCACCTGGTGTCGTCCGTCGAGGAGTCGCTGAAGGCCCTCGACACCGACTACCTGGACGTGCTGCTGCTGCACCGCCCGGACGCCCTCGTGGAGCCCGACGAGGTCGCCCGCGCCTTCGACCACCTGGAGTCGACCGGCAAGGTGCGCTCCTTCGGCGTCTCCAACCACACGCCGGGCCAGATCGAGCTGCTCAAGAAGTCGGTTCGCCAGCCGCTCGTCGCGAACCAGCTCCAGCTCTCGATCACCCACGCACCGCTGGTCGCGCAGGGCGTGGCCGCCAACATGGCCGGACTGGACCAGTCCGCCGGGCGCGACGGCGGGCTCCTCGACTACTGCCGCCTGCACGACATCACCGTGCAGGCCTGGTCGCCGTTCCAGGCCGGGTTCTTCACCGGCGTGTTCCTCGGCTCGGAGAACTACCCCGAGCTGAACGCCGTCATCGACCGGTTGGCCGCGAAGTACGACGTACCGGCCATCGCGATCGCGACGGCCTGGATCACCCGCCACCCGGCCGGGATGCAGGTCGTGCTGGGCACCACGACGCCGGAGCGCGTCGCCGGTGCGGCGCAGGGCTCGGACGTCCCGCTCACCCGCGCCGAGTGGTACGAGCTGTTCCGCGCCGCGGGCTACACCGTGCCGTGA	MKTVPLGTSGRQVPNVVLGLMRIQQMDDDAVRELVRTARDAGIDFVDHADVYGDALHGCERRFAEAMQLTPSQREELTIQSKAGIVREGPYFDFSFDHLVSSVEESLKALDTDYLDVLLLHRPDALVEPDEVARAFDHLESTGKVRSFGVSNHTPGQIELLKKSVRQPLVANQLQLSITHAPLVAQGVAANMAGLDQSAGRDGGLLDYCRLHDITVQAWSPFQAGFFTGVFLGSENYPELNAVIDRLAAKYDVPAIAIATAWITRHPAGMQVVLGTTTPERVAGAAQGSDVPLTRAEWYELFRAAGYTVP				NA	NA	NA	NA	NA
AK001_01925	861	iolS_2	COG0667	Aldo-keto reductase IolS	GTGGAATCACGCATCATCGGACACCGCTCCGTCAGCGCGATCGGGCTCGGCGGCATGCCCCTGTCCATCGAGGGACGCCCCGACCGGGAGCGCGCGATCGCCACCGTCCATGCGGCGCTCGACGCCGGCGTCACGCTCGTCGACACCGCCGACGCCTACCACCGCGACGCCGGGGAGGTCGGGCACAACGAGGAGCTGATCGCCGAGGCGCTGCGCACCTGGGGCGGCGACACCTCGGCCGTGCTCGTCGCGACCAAGGGCGGGCACCAGCGCCCCGGCGACGGCACCTGGACCCAGGACGGCCGGCCCGAGCACCTCAAGGCGGCGGCGAAGGCCTCCGCGCAGCGCCTCGGCGTCGAGGCCATCGGCCTGTACCAGTTCCACCGGCCCGACCCGTCGGTGCCCTACGCCGAGTCGGTCGGCGCGCTGGTCGAGCTCCTCGACGAGGGCGTGATCCAGCAGGCCGGCATCTCCAACGCGGACGTCGCCCAGATCGACGAGGCCCAGCAGGTGCTCGGCGGCCGGCTCGCGTCCGTGCAGAACCAGTTCTCGCCCGCGTTCCGCTCCAGCCTGGGCGAGCTGGAGCACTGCGCCGAGCTCGGGGTCGCCTTCCTGCCCTGGTCGCCGCTCGGCGGCATCGCGCGGGCCGCCGAGGTCGGCTCGACGCACGCCGCGTTCGGCCGCGTGGCCGAGCAGCACGGCGTCAGCCCGCAGCAGGTGACGCTCGCCTGGGAGCTGTCCCTCGCCCCGGTCGTGGTGCCGATCCCCGGCGCCTCGCGACCGACCAGCATCCAGGACTCGGCCGAGGCCGTCGGTCTCGAGCTCACCACCGACGAGCTCGCCGAGCTCTCCGACCACTGA	MESRIIGHRSVSAIGLGGMPLSIEGRPDRERAIATVHAALDAGVTLVDTADAYHRDAGEVGHNEELIAEALRTWGGDTSAVLVATKGGHQRPGDGTWTQDGRPEHLKAAAKASAQRLGVEAIGLYQFHRPDPSVPYAESVGALVELLDEGVIQQAGISNADVAQIDEAQQVLGGRLASVQNQFSPAFRSSLGELEHCAELGVAFLPWSPLGGIARAAEVGSTHAAFGRVAEQHGVSPQQVTLAWELSLAPVVVPIPGASRPTSIQDSAEAVGLELTTDELAELSDH	PGPT0009140_735	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275	NA	NA
AK001_01926	897	cynR_1		HTH-type transcriptional regulator CynR	ATGGAGCTGCGGCAGATGGAGTACCTGGTGGCGGTGGCCGAGGAGGGCCACTTCACGCGCGCCGCCGCGCTGTGCGGGGTGAGCCAGTCCGGGCTGTCCGCCGCGATCCGGAACCTCGAGAAGGAGCTCGGCGCGTCCCTGTTCGACCGCACGACCCGTCAGGTCGCCGTCACCGACGCCGGCCGCGCGCTGCTGCCGTTCGCCCGGCAGATGCTCGCCCAGGCGTCGGCGGGCCGCGACGCCGTCGTGCGCGCCAGCCGGCAGATCTCCGGCCGGCTGCGGATCGGGTCCGAGCAGTGCCTCGGTGTCCTCGACGTCGGGCCGCTCCTGGAACGCTTCCGGCTGCGCTACCCGCTGGTGGACGTGCAGTTCACGCAGGCGGGTTCGCGCGAGCTCGCGACCCAGGTGCGCGCCGGTGACCTCGACGTGGCGTTCCTCGCCACGACCCAGCACCTCGGCCCCCTGCGCCGCCTCGAGCTCGGCCGCCGTCCCGTCGTCGGTCTCGTGCACCCCACCGACGACCTGGCCCGGTCGGCGCGGGTCTCGTGGGAGGACCTCGCCGTGCGGGACTTCGTCGACTTCCGCGAGCCGTGGGCCATCCGACAGCTCGTCGACGCCGCCTTCGCCGACCGGCACCTCGAGCGTCGCGTCCGCATGAGCGTCGACGACGTCCACACCCTGCTCGACTTCGTCCAGCGCGGCCTCGGGGTCGCCGTCGTGCCCCAGCACGTGGCCGCGAAGCCGCAGGCCGCAGGTCTCGCCGTCCTCGACCTGCCGGACGGCCGGGCCCCGGAATGGGTGGTCTCGGCGGTCTCGGCACCCACGGCCGAGCCGGCCGCGCTCCGGCTGCTGGAGCTGCTCGGTGAGGCGAACCTCGCCGTCGCGCGGGCGGCCTGA	MELRQMEYLVAVAEEGHFTRAAALCGVSQSGLSAAIRNLEKELGASLFDRTTRQVAVTDAGRALLPFARQMLAQASAGRDAVVRASRQISGRLRIGSEQCLGVLDVGPLLERFRLRYPLVDVQFTQAGSRELATQVRAGDLDVAFLATTQHLGPLRRLELGRRPVVGLVHPTDDLARSARVSWEDLAVRDFVDFREPWAIRQLVDAAFADRHLERRVRMSVDDVHTLLDFVQRGLGVAVVPQHVAAKPQAAGLAVLDLPDGRAPEWVVSAVSAPTAEPAALRLLELLGEANLAVARAA				NA	NA	NA	NA	NA
AK001_01927	1263	yycB	COG2807	putative transporter YycB	ATGAGTAGCCCCGCCGGCGGCACCGGCGACGGCGGCACCGGCGACGGCGGCGCGAACCGGGCGACAGCGTTCGCCACGGGCGCCGGCGGGCTCGTCCTGGCCGCGCTGCTGCTCGTGGCGCTCAACCTGCGCGCACCGTTGACGGCGCTGGCCCCGGTGATCGACCAGGTCGCGGCCGGCCTGGGGATGTCCTCGGCCGGCGTCGCGCTGCTGACGTCGATCCCGGTGCTGGCGTTCGCGGTGTGCACCCCGGCGTCCGCCGTGCTCGTGGGCCGCTGGGGCCCGGAACGTGCGCTCGTCGTCGGGCTGCTGGCGATCCTGGTCGGCACCCTGCTGCGCTCGAGCGGCTCCGTCGGGGCGGCCCTCGTCGGCACCGCCGTCCTGGGCGTCGGCATCACGCTCGGCAACGTCTCCGTGCCGGTGATCATCACCCGGGACTTCCGGCGCCGCGCGGCCGGCGTGACCGGTGCGTACACCGCCACCATGAACGCCGGGTCCACCCTGACGACGGTGCTCACGGTCCCGCTGGCCGTCGCGTTCGGCTGGCAGTGGGCGCTGGCCGGGTGGGGCGTGCTCGCGGTGGTCGCCCTGCTCGCCTGGGTCCCGGCCGGCCGGTCGCTGGCGCGCCGCCACGACGGGGTGCCGGCGTCGGACACCCGTGCGCAGGAGCGTCAGCGGGCGACGGCGCAGCGCGGGCTCGCCGTGCTGCTCGCGATCGCCTTCGCCGGGCACACCGCCGGGTACTACGCGATGTCGACCTGGCTGCCGACGATCCTCGCCGACCGGCTCGGCTTCGACGCCGCCACCGCCGGTAGCGGAGCCGCCCCGTTCCAGCTCGCCGCCGTCGTCGGGGCGTTCCTGGTGCCGCTCGGCCTGGCCGGGCGCCTGTCCGAGCGGACCGTGGCGACCGTCCAGTGCGCCCTCTGGCTCACCCTGCCGGTGGCGCTGCTGCTCGTCCCGCAGCTGTGGTGGGTCGGGGTCGGCCTGGCCGGCGCGGCCCAGGGCGGCATCTTCGCGGTGATCTTCACGCTCGTCGCCCGGCGGTCGCCCTCGGTGGCCACCGCCCGCCGAACCTCCGCCGTCGTCCAGACCGGCGGCTACGCGTGCGGCGCGACCGCTCCCATCGCGCTCGGGGCCGTGTACGAGGCGACCGGAGGGTGGACGGCGCCCCTCGCCCTGCTCACCGCGCTGCTGGTGGCGATGACCGTGGCGCTGTGGCTGGCTTCGGGACCGCCGCGCGTCGCCACCGCACCGAGCCGGTAG	MSSPAGGTGDGGTGDGGANRATAFATGAGGLVLAALLLVALNLRAPLTALAPVIDQVAAGLGMSSAGVALLTSIPVLAFAVCTPASAVLVGRWGPERALVVGLLAILVGTLLRSSGSVGAALVGTAVLGVGITLGNVSVPVIITRDFRRRAAGVTGAYTATMNAGSTLTTVLTVPLAVAFGWQWALAGWGVLAVVALLAWVPAGRSLARRHDGVPASDTRAQERQRATAQRGLAVLLAIAFAGHTAGYYAMSTWLPTILADRLGFDAATAGSGAAPFQLAAVVGAFLVPLGLAGRLSERTVATVQCALWLTLPVALLLVPQLWWVGVGLAGAAQGGIFAVIFTLVARRSPSVATARRTSAVVQTGGYACGATAPIALGAVYEATGGWTAPLALLTALLVAMTVALWLASGPPRVATAPSR	PGPT0005211_1303	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_CYANATE_DETOXIFICATION	XENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449	NA	NA
AK001_01928	504			hypothetical protein	ATGGAGAGCACGCACCCCGGTGACGAGGTCGACCGCATCGTCGCCGCCTGGCAGCGCGAGCGCCCCGACCTCGACGTCGAACCCCTGACCGTCTTCTCACGCATCAGTCGGCTGGCCCGCCACCTCGACCGGGCACGGCGCGGCGCGTTCGCCCGGCACGACCTCGAGACCTGGGAGTTCGACGTGCTGTCCGCGCTGCGTCGCGCCGGCGAGCCGTACCGGCTGTCGCCGGGCCGTCTGGTCGCCCAGACCCTGGTCACCAGCGGGACCATGACCAACCGGATCGACCGGCTCGCCGAGCGCGGCCTCGTCGAGCGGCACCGCTCCCCCGAGGACCGTCGCGGCGTGCTCGTGCGGCTGACCGGCGCCGGCCGCTCACGCGTGGACGCGGCCATGAGCGACCTGCTCGACGTCGAGACCCAGGTCCTTGACGCCCTGCCGGCGGAGGAACGCCCCCGCCTCGCCGCCCTGCTGCGCACCCTCGGCGCCCAGTTCGATGAGTAG	MESTHPGDEVDRIVAAWQRERPDLDVEPLTVFSRISRLARHLDRARRGAFARHDLETWEFDVLSALRRAGEPYRLSPGRLVAQTLVTSGTMTNRIDRLAERGLVERHRSPEDRRGVLVRLTGAGRSRVDAAMSDLLDVETQVLDALPAEERPRLAALLRTLGAQFDE				NA	NA	NA	NA	NA
AK001_01929	1524			hypothetical protein	ATGATCCGACGACGCACGACGACCGGTCTCGGCGCGCTGCTCGCAGCCGCCACGATCCTCACGGCTTTGCCAGCGGCCTCCGGGGAGCCGACGGACGGCACGGACCTCGGGGCCGGTGGTGTCGACGCCTGTCGGCCGGCAGCGGCGGTCGAGGGGCTGGGGGCCGGGTTCCCCGTGGACGACCAGGCGATCCCGGCGACGGGCACCGTGCACGCCACGACGGTCTTCGTCGACTTCTCGGACGCACCCGCCGGTGCGGACACCCTGGCCGGGGCCGGGGACAACCTGCGCTCCGGCGTGGAGTACCTCGAGGACGTGTCCGGCGGCCGGCTCGCGCTGGAGGTGGCGGCGTCGGACTCGTGGGTGCGGATGCCGGAGCCCTCGACCGCGTACACGTTCGAGCGGGGCCTGACCTACGCCGAGCACGTGCGGTACATCGAGGACGCGGTCGCGGCCGCCGACCCGTCCGTCGACTTCGCGGAGACCGACGTCGTCTGGGTCGTGGCGACCGCGGAGGCCGGGGCCATCAGCTACTCGCCCACCACGAACTTCCTCGACGTCACGGTCGACGGCAACCACCTCACGCACGCCGTCACCATCGGTGCCGACCAGTGGTCCTGGGGCGGACTCGTCCTGGCCCACGAGTCCGGCCACTCCTTCGGGCTGCCGGACCTCTACCTGGCCGAGGCCCCCGCGGACGACCCGGGGAACCACCACGCGGCCGTGGGCGGCTGGGACCTCATGGGTCTGATCTCCGGGCACGCACCGGAGCTGTTCACGTGGAGCCGCTGGCAGCTCGGCTGGATCGACGACGAGCAGGTCGTCTGCGCCGACGGCACGACGCCGTCGTCGGCGGACCTCGTCCCGGTCCCGGCCGCCGCGTCGGCGGACGCGTCGCAGGACGCGATGCTCGTGCTGCCGACCGGGCCGACCACGGCCGTCGTGGTGGAGAACCGGCAGCGGGCCGGCTACGACGACGGCGCGCTCGCGACCGGGGCGCTCGTCTACACGGTCGACACCTCGGTGCGCAGCGGGGAGGGGCCGCTCCGCGTCGTCGACGCGACCCCCGGGTCGGCGGCCGGGCTCGACGACGCGCCGTTCGGCCCGGGCGACCGCTGGACGGAACCCACCACGGGCGCGACGCTGACCTTCGCGACCGCGGAGGACCAGGGGTCCGCCGACGGGGCGCCGGTCCTGACCGTGACGGTCGAGCCGGACACCTCCGCGACGCCGCCGCTCGAGCTGGACACCGTCGTCCAGCCACGGTGCCTGGGGGGCCGCGGCTACCTGGCCGTGCGGGTGCAGAACGGCATGGACGTCCCGGTGTCCGTCACGGTGGACACGCCGTACGGGTCCCGGACGGTCGAGGACGTCGCACCCGACCGGTACGTCCACCGGACGTTCGGTACGCGGTCCGCGGCGGTGCCCGCCGGTACGGTGTCGGTGACGGGGCACGCCGTGGTCGGCGGCGAGGACGTGACCTCGACCGAGGACGTCCCGTTCGAGGCCTTCACCTGCGACTGA	MIRRRTTTGLGALLAAATILTALPAASGEPTDGTDLGAGGVDACRPAAAVEGLGAGFPVDDQAIPATGTVHATTVFVDFSDAPAGADTLAGAGDNLRSGVEYLEDVSGGRLALEVAASDSWVRMPEPSTAYTFERGLTYAEHVRYIEDAVAAADPSVDFAETDVVWVVATAEAGAISYSPTTNFLDVTVDGNHLTHAVTIGADQWSWGGLVLAHESGHSFGLPDLYLAEAPADDPGNHHAAVGGWDLMGLISGHAPELFTWSRWQLGWIDDEQVVCADGTTPSSADLVPVPAAASADASQDAMLVLPTGPTTAVVVENRQRAGYDDGALATGALVYTVDTSVRSGEGPLRVVDATPGSAAGLDDAPFGPGDRWTEPTTGATLTFATAEDQGSADGAPVLTVTVEPDTSATPPLELDTVVQPRCLGGRGYLAVRVQNGMDVPVSVTVDTPYGSRTVEDVAPDRYVHRTFGTRSAAVPAGTVSVTGHAVVGGEDVTSTEDVPFEAFTCD				NA	NA	NA	NA	NA
AK001_01930	597			hypothetical protein	ATGACCGCGAGCCAACGCCGGGAGCAGCTGGTGGCGGTCAGTCGCGGGCTGTTCGCCGCCAAGGGGTTCGAGGGCACGAGCGTCGAGGAGATCGCCAGCACGGCCGAGGTGTCCAAGCCGGTGGTCTACGAGCACTTCGGCGGCAAGGAGGGCATCTACGCCGTCATCGTCGACCGCGAGGTGCAGGCGCTGACCGGCGCCCTCACCGGGGCCCTCGCCGAGGGCGGCCACCCCAAGGTGATGGTCGAGCGCACGGCGCTGGCGCTGCTGGGGTACATCGAGTCCTCCGAGGACGGCTTCCGCATCCTGGTCCGCGACTCCCCCGTCGCGCAGGCCACGGGCACGTTCTCGTCCTTGATCGGCGACGTCGCCTCCCAGGTCGAGCACATCCTGGCCGAGGAGTTCCGCAGCAACGGGCTGGACCCCAAGGTGGCCCCGCTGTACGCGCAGATGCTGGTCGGGATGGTGGCGCTGACCGGGCAGTACTGGCTCGACGCCCGCCGCCCGAAGAAGTCCGACGTCGCCGCGCACCTGGTCAACCTGGCCTGGAACGGGCTGTCCGGCATGGAGCGCAAGCCCGGGCTCATCGGGCGCTGA	MTASQRREQLVAVSRGLFAAKGFEGTSVEEIASTAEVSKPVVYEHFGGKEGIYAVIVDREVQALTGALTGALAEGGHPKVMVERTALALLGYIESSEDGFRILVRDSPVAQATGTFSSLIGDVASQVEHILAEEFRSNGLDPKVAPLYAQMLVGMVALTGQYWLDARRPKKSDVAAHLVNLAWNGLSGMERKPGLIGR				NA	NA	NA	NA	NA
AK001_01932	1710	glmU	COG1207	Bifunctional protein GlmU	GTGGTTTCCACGGCCCCCCAGGGCGACCAGCAGGCGGCGGACGGCTCGACGTCCGCAGCGCACGCCGACCCGCGACCGGCCGCGGTCGTGGTCCTGGCCGCCGGCCAGGGCACCCGGATGAAGTCCGCGGTCCCCAAGGTCCTGCACGGCATCGGCGGCCGCACGATGCTGGGCCACGCCATGACCGCCGCCCGCGAGCTGGCGCCGGAGCACGTCGCCGTCGTGGTGCGGCACGAGCGCGAGCAGGTCGCCGCCGCGGCGCGCGAGCTCGACGAGGCCGCGCTCGTCGTCGACCAGGACGAGATCCCCGGGACGGGGCGGGCCGTGCAGTGCGCCCTCGACGCGCTGGACGTGCGCACGCACGCCACCCGTGCCGCCGACCTGGTGCACAGCGCCGACGAGGTCCACGACACCGACGGCGCGCACCCGCTGGGCGACGGGCTCGACGGTGCCGTCGTGGTGCTGGCCGGCGACATCCCGCTGCTCGACGGCGCCACGCTGGCCGAGCTGCTCGCCGCACACCACGCGGACGGCAACGCCGTGACCGTGCTGACCACCGAGCTCGCCGACGCCACCGGCTACGGCCGGATCCTGCGCGAACCCGGCACCGGCGACGTCACCGCCATCGTCGAGCACAAGGACGCCACGGCCGAGCAGCGCGAGATCCGCGAGATCAACTCCTCGGTCTACGTGTTCGACGCCGCCGTGCTGCGCCGCGGCCTCGGCGGGCTCGGCAGCGACAACGCGCAGGGCGAGGTGTACCTCACCGACGTGATCGCCTCGGCACGGGCCGACGGCGGTGCGGTGCGCGCCGTGCTCTCCGACGACCCGATGCTCGTCGAGGGCGTCAACGACCGGCAGGCCCTGGCGACGCTCGGCGCCGAGCTGAACCGTCGCACCCTGGAGCGCTGGATGCGCGAGGGCGTGACCGTCGTCGACCCCGCCACCACCTGGGTGGACGTCGACGTCGAGCTCGCCCGCGACGTCACCTTGCTGCCCGGCACGCAGCTGCACGGCGCGACCACCGTCGCCGAGGGCGCGACGGTCGGCCCGGACACCACGCTGACCGACGTCGAGGTGGGCGAGCGGGCGAGCGTGGTGCGCACGCACGGCTCCCTGGCGGTGATCGGCGCGGACGCGACCGTCGGCCCCTTCGCCTACCTGCGGCCGAACACCGTGCTCGGCGCTCGCGGGAAGATCGGCACGTTCGTCGAGACGAAGAACACCGAGATCGGCGAGGGCTCGAAGATCCCGCACCTGTCGTACGTCGGCGACGCCACCATCGGCGCCGAGAGCAACATCGGCGCGGCCTCGGTGACCGTCAACTACGACGGCGTCCACAAGCACCGCACGGTGATCGGCTCCCACGCGCGCACCGGTGCGGACAACATGTTCGTCGCCCCCGTGACGATCGGCGACGGCGCCTACACGGCCGCCGGCAGCGTCGTCACGCGGGACGTCCCCGCCGGCGCGCTCGGCGTGAGCCGCCCGCAGCAGAAGAACATCGACGGCTGGGTGGAGCGGCGTCGCGCCGGCACGCCCGCCGCGGAGGCCGCCGCCCGCTCCCGCGACGAGGGCGACGAGGGCGCCGGCGGCCTCGGCCCGCAGGCGAAGCGCGAGCTGGCCGAGCACAATGCCCTCACAGGAGCGATCCCGAAGGTGTCGCGCACCGGCGACGCCGCCGACCCGGAGTCCTCCGAGTCCGCCTGA	MVSTAPQGDQQAADGSTSAAHADPRPAAVVVLAAGQGTRMKSAVPKVLHGIGGRTMLGHAMTAARELAPEHVAVVVRHEREQVAAAARELDEAALVVDQDEIPGTGRAVQCALDALDVRTHATRAADLVHSADEVHDTDGAHPLGDGLDGAVVVLAGDIPLLDGATLAELLAAHHADGNAVTVLTTELADATGYGRILREPGTGDVTAIVEHKDATAEQREIREINSSVYVFDAAVLRRGLGGLGSDNAQGEVYLTDVIASARADGGAVRAVLSDDPMLVEGVNDRQALATLGAELNRRTLERWMREGVTVVDPATTWVDVDVELARDVTLLPGTQLHGATTVAEGATVGPDTTLTDVEVGERASVVRTHGSLAVIGADATVGPFAYLRPNTVLGARGKIGTFVETKNTEIGEGSKIPHLSYVGDATIGAESNIGAASVTVNYDGVHKHRTVIGSHARTGADNMFVAPVTIGDGAYTAAGSVVTRDVPAGALGVSRPQQKNIDGWVERRRAGTPAAEAAARSRDEGDEGAGGLGPQAKRELAEHNALTGAIPKVSRTGDAADPESSESA	PGPT0018955_9	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042	NA	NA
AK001_01933	984	prs	COG0462	Ribose-phosphate pyrophosphokinase	ATGAACACCTCCATCCCCGGTACCGGAGAGCGCACCCTCGTCCTCGCGGCCGGTCGTGCTCACCCTGCCCTCGCCGAGGACGTCGCCGAGGAACTGGGCATCAGCCTGCTGCCGACCTCGGCCTACGACTTCGCCAACAGCGAGACGTACGTCCGCTTCGGCGAGTCGGTCCGCGGAGCGGACATCTTCCTGCTGCAGAGCCACACGGCGCCGGTCAACCAGTGGCTCATGGAGCACCTGCTCATGGTCGACGCCGCCAAGCGCGCCTCGGCCCGCACGATCACGGTGGTGGCGCCGTTCTACGCCTACGCGCGCCAGGACAAGAAGTCCCGCGGCCGCGAGCCGATCTCGGCCCGTCTCGTCGCGGACATGCTGCACACCGCCGGTGCCGACCGGATCATGAGCGTGGACCTGCACACCGCCCAGATCCAGGGCTTCTTCGACGGGCCGGTCGACCACCTGTGGGCGATGCCGGTGCTGACCGACTACGTGCGCACGCGGGTGGACACCTCCAACGTGACCGTGGTCTCCCCGGACGCCGGGCGCATCCGCGTGGCCGAGCAGTGGGCGGCCAAGCTCGGCGGCGGCCCGCTGGCGTTCGTGCACAAGACGCGTGACGTCACGCGGCCCAACCAGGCCGTGGCCAACCGGGTCGTGGGCGACGTCGAGGGGCGCGACTGCGTGCTCGTCGACGACCTGATCGACACCGGCGGCACGATCTCCGAGGCGGCCAAGGTCTGCATGCAGGCGGGCGCGAAGTCCGTGATCGTGGCCGCGACGCACGGCGTGCTCTCGGACCCCGCCGCCCAGCGGCTCTCGGAGTCCGGCGCCGTCGAGGTCGTGGTGACCGACACGCTCCCGATCCCCGCCGAGAAGCGCTTCGACGGGCTGACCGTGCTGTCCATCGCGCCGCTGGTCGCCCGGGCGATCCGCGAGGTGTTCGACGACGGCTCGGTGACGTCGCTGTTCGACGGCAACCCCTGA	MNTSIPGTGERTLVLAAGRAHPALAEDVAEELGISLLPTSAYDFANSETYVRFGESVRGADIFLLQSHTAPVNQWLMEHLLMVDAAKRASARTITVVAPFYAYARQDKKSRGREPISARLVADMLHTAGADRIMSVDLHTAQIQGFFDGPVDHLWAMPVLTDYVRTRVDTSNVTVVSPDAGRIRVAEQWAAKLGGGPLAFVHKTRDVTRPNQAVANRVVGDVEGRDCVLVDDLIDTGGTISEAAKVCMQAGAKSVIVAATHGVLSDPAAQRLSESGAVEVVVTDTLPIPAEKRFDGLTVLSIAPLVARAIREVFDDGSVTSLFDGNP	PGPT0021480_1731	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948	NA	NA
AK001_01934	615	rplY	COG1825	50S ribosomal protein L25	ATGGCCGAGATCAAGCTCGCCTCCGAGGTCCGTACCGAGTTCGGCAAGGGCGCCGCCCGCCGCATCCGCCGCGCGAACAACATCCCCGCCGTCCTGTACGGCCACGGCACCGACCCGGTCCACATCACGCTGCCGGGCCACGCCACCATGCTGGCGGTGCGCCACACCAACGCCCTGATCGAGCTCACCTTCGACAACGGCACCGAGCTCGCCGTGGTCAAGGACATCCAGCGCCACCCGGTGCGCTGGGACATCGAGCACATCGACCTGCTGCTCGTGAAGAAGGGCGAGAAGATCGCCGTCGACGTCTGGGTCCAGGTCGAGGGCGAGTCCGCTCCCGGCACGATCCACTTCGTCGAGTCCCAGACGCTGTCCGTCGAGGCCGACGCCACCCAGATCCCCGAGTACATCCACGTGTCCATCGAGGGCCGTGAGTCGGGCGACAACATCCACGCCGGCGACATCGAGATGCCCGCGGGCGTCACGCTGCTGACCGACGAGGAGCACGCGGTCGTCACGATCACCGAGCCGCGCGGCGAGGAGTCCGCCGAGGAGGCCGACGAGGAGGCCGCCGGTTCCGCCGAGGCGGCCGAGGGCGAGTCCTCCGCCGAGTGA	MAEIKLASEVRTEFGKGAARRIRRANNIPAVLYGHGTDPVHITLPGHATMLAVRHTNALIELTFDNGTELAVVKDIQRHPVRWDIEHIDLLLVKKGEKIAVDVWVQVEGESAPGTIHFVESQTLSVEADATQIPEYIHVSIEGRESGDNIHAGDIEMPAGVTLLTDEEHAVVTITEPRGEESAEEADEEAAGSAEAAEGESSAE				NA	NA	NA	NA	NA
AK001_01935	609	pth	COG0193	Peptidyl-tRNA hydrolase	ATGTCTGACACCCCGTGGCTGGTGGTGGGTCTCGGCAACCCCGGACCGCGCTACGCCGGCAACCGCCACAACGTCGGGCACATGGTGCTCGACCTGCTCGCGGAGCGGACCGGCAGCCGCTTCGCGAAGCACGCCCGCGCCCAGGCGGCCGTCGCCGAGACCCGTCTCGGTGTGCTGCCCGGCGGAGCCCCCGGCCCGCGCGTGGTGCTCGCCAAGCCCACGACGTACATGAACACCTCCGGGGGGCCGACGTCGGCGCTGGCGCAGTACTACGGGATCGACCCCGAGCGCGTGCTCGTCGTGCACGACGAGGTGGACGTCCCGTTCGACTCCCTCAAGCTGAAGACCGGCGGCGGCGAGGGCGGCCACAACGGGCTGCGGGACATCTCCAAGGCACTCGGGACCCGCGACTACACGCGGGTGCGCGTCGGGGTCGGGCGTCCGCCGGGGCGGATGGACACGGCCGACTACGTGCTCAAGGACTTCTCGGGCAGCGAGCGCAAGGGCCTGCCGATGGTGCTCGAGGACGCCGCCGACGCCGTCGAGATGGTCGCGACCGAGGGTCTGCTGGCCGCGCAGGGGAGGTTCCACCAACGCAGCCCGCTCTGA	MSDTPWLVVGLGNPGPRYAGNRHNVGHMVLDLLAERTGSRFAKHARAQAAVAETRLGVLPGGAPGPRVVLAKPTTYMNTSGGPTSALAQYYGIDPERVLVVHDEVDVPFDSLKLKTGGGEGGHNGLRDISKALGTRDYTRVRVGVGRPPGRMDTADYVLKDFSGSERKGLPMVLEDAADAVEMVATEGLLAAQGRFHQRSPL				NA	NA	NA	NA	NA
AK001_01936	1173	glgA		Glycogen synthase	GTGGCCGCGACCGTGGCGCTCGCGCACGACTACGCGACGCAGCGTGGTGGTGCGGAGCGTGTCGCCCTCCTGCTGGCGGAGGCGTTCCCGGGTGCACCGATGCACACCACGCTCTACGACCCGGCGGGGACGTTCCCGGGGTTCGCGGACCTCGACCTGCGCACCTCGGCGCTGAACCGGGTCGGCGCACTGCGTCGGCACCACCGGCTCGCGCTGCCCCTGCTGGCTCCCGCCGTCGGCCGGCAGCGGGTCGACGCCGACGTCCTCGTGACCTCGTCGACGGGCTGGGCGCACGGGTACCGCGGTGCACGCCGCACCGTCGTCTACTGCCACGCACCGGCCCGGTGGCTCTACCAGACCGACCGCTACCTGGGTCCGGGAGGCGGCCGGGCGGCGCACCGCGCCCGGCGCGGCCTGGCGCGCGGAGCCGTCGCGACGTTCGGTCCCGCGCTGCGCCGGTGGGACGTCGCGGCCGCCCACCGGGCCGACAGGTATCTGGCGAACTCCACGGTGACCCGGCGAGCGGTCCAGGAGGCGTACGGCATCGAGGCCGAGGTGCTCCCGCCTCCGCCGGCGATGCTGCCCGACGGCGAGATGACGGCCGTGCCGGGCGTGGAACCAGGCTTCCTGCTCTGCGTGGCGCGGCTGCTGCCGTACAAGAACGTCGACGTGGTCGTCGCCGCGGCGCTCGCGACCGGACGTGAGCTGGTCGTGGTCGGTGACGGGCCTGACCGCGACCGACTCGCCGCGACGACAGTTCGCGGTCCCGGGGCCCCCGGGCGCGTCCACCTGCTCGGCCGGGTCGACGACGCCCGGCTGCGGTGGCTCTACGCGCACGCGGACGTGCTCGTCGCGGCCTCGTACGAGGACTACGGGTTGTCGCCGCTGGAGGCCGGTGCGTTCGGGCGTCCGTCCGTCGTGCTCCGCGACGGGGGCTACCTGGACACGGTGGTCGAGGGGCGGACCGGGATCTTCTTCGACGCGCCCTCGGCACCGCTCGTGGCCGACGCGATCGAGGCCGCGGCCGCCCACCCGTGGGACGACGACGCGATCAAGCAGCACGTGGCCGCGTTCGGCGCGGAACGGTTCGTCCGGCGGCTCCGCGAGGTGGTCGAGGACGTGTGGGACGCGGGCGGCCCTGTCTCCGCCGCGCACGGAGGTGGTCGTCGATGA	MAATVALAHDYATQRGGAERVALLLAEAFPGAPMHTTLYDPAGTFPGFADLDLRTSALNRVGALRRHHRLALPLLAPAVGRQRVDADVLVTSSTGWAHGYRGARRTVVYCHAPARWLYQTDRYLGPGGGRAAHRARRGLARGAVATFGPALRRWDVAAAHRADRYLANSTVTRRAVQEAYGIEAEVLPPPPAMLPDGEMTAVPGVEPGFLLCVARLLPYKNVDVVVAAALATGRELVVVGDGPDRDRLAATTVRGPGAPGRVHLLGRVDDARLRWLYAHADVLVAASYEDYGLSPLEAGAFGRPSVVLRDGGYLDTVVEGRTGIFFDAPSAPLVADAIEAAAAHPWDDDAIKQHVAAFGAERFVRRLREVVEDVWDAGGPVSAAHGGGRR				NA	NA	NA	NA	NA
AK001_01937	1686			hypothetical protein	ATGACGCTCAGAGAGTTCCTGCAGACGGTCTGGGCGGGCAAGTACTACGTCGTGGCGGCCGTCTTGCTCGTGCTGGGGGGGACGTTCCTCTACCTCGACCGGCAGGACACCGTCTTCGAGTCCACCGCGACCGTGACGGTCGCCGGCACGGACGCGGTGCCCGGCGCCGAGACCGGCACCTCGGTGAGCGTCGACGCCGATCCCGAGCAGGTGCACGAACCCGCCGTGGTCGACGCGGCCGCCGAGCAGCTCGACGAGGACCCCACCGTCCTCGTGGGCGCCACGAGCGGCTCCTACGACGCCGAGACCCAGATCCTGTCCGTCACGGCGCAGGGCAGCACGGCCGAGCAGGCCGTCGGCCGGGCGAACGCGGTCGCGGAGGCCTACGTCGCCTTCATGCCGACCGTGCTGGAGGAGCAGCTCGCGGCCCTCGACGACCGTCGCCAGGCGTTGCGCGAGCAGCTGGCGCCGGTCCGCCGGGAGCTCAGGGGATCGGCCGACGACCCGTTGGCCACCGCCGAGCAGGACACCATCGTGGAGCAGTACCGGGCCGTCTCGGCACTGCACAGCAGCTTCCAGTCGATCTCCGAGCCCGCCGTGCTCGACGCCCCGGCCACCTCGGCCGTGCCGCAGGGCCTGCCCCCGGCGCTCGTCGCGGCCCTGGGGGTGCTCGTCGGACTCGTGGCAGGGGTCGGCCTGGCGTTCGCGCGCCGCGGGCTGGACCTGCGGGTCCGCACCCCGGGGGAGGCCGCCCGCCTCGCCGAGGTCCCGGTGCTCGCCGGGCTCCACGACGTCCGTGCCACGGCCAAGGAGTTCCGACGGACCGGCCACCTGCCGGTCACGAGCCGGCACGCGTCGCCGTTCACCGAGTCGGTCCGCGAGCTGCGCACCGCCGTCCGCGTGTCGCTGGGCGACGTGCGGCAGGCGATCGTCGTCGTCACGGCGGCCGACCCGCACGCGCCGCGGGCGTTCATCACCGCCAACCTCGCGGCGTCGTTCGCCCTGAGCGGCCGGTCCACCCTGCTGCTGTCCGGGGACCTGCGACGGCCCGAGGTCGAGGAGACCGTCGGCGAGGGCGAGCACCCGGCGGACACGTCGGAGCGGATCCGCCCGACCCACATCCCGAACCTGCGCCTGGTCAGCATCCACAACGAGGCGATGGACCCGGCCGACTACCTGGCGACCGCCGAGGTGCGCAGCCTGCTCGAGGAGCTGCGCGAGGAGGCGGCCATCATCGTCGTCGACGCACCTCCCGTCCTCGCCGCCGCCGACGCGACGATCCTCGGCGGCTACGCCGACGGCGTCGTGCTGATCGCCTCCCTCGAGCGCACGGACCGCGTGGTCCTGCAGGAGGCGGCCGGACGCCTCCGCATCAACCACGTCCCGCTCGTCGGGCTGGCGCTCAGCGGCGTCAAGGGCGATCGCCGCATGCGGTACGCCTCCAGCTACGGGACCGACGCCCCGGTCGCCGCCGACTCCCCGTCCGAGGGCTCCGCGGAGAGCGCGGACGAGACGGCGGGGGGCGACGAGGGCGGGGCGTGGGCCACGTCCGGCGACGACTCCGGTGCCGCACGCGACGAGCCGGCCGACGGCGGTGCCGCGTCGGCGGACGACCCGGACCGGTCCCGGGCGGCGTCGGTCCCCGGGCGGGACCGGACGTCGTCCGACCATCCGTCGATGTGGTGA	MTLREFLQTVWAGKYYVVAAVLLVLGGTFLYLDRQDTVFESTATVTVAGTDAVPGAETGTSVSVDADPEQVHEPAVVDAAAEQLDEDPTVLVGATSGSYDAETQILSVTAQGSTAEQAVGRANAVAEAYVAFMPTVLEEQLAALDDRRQALREQLAPVRRELRGSADDPLATAEQDTIVEQYRAVSALHSSFQSISEPAVLDAPATSAVPQGLPPALVAALGVLVGLVAGVGLAFARRGLDLRVRTPGEAARLAEVPVLAGLHDVRATAKEFRRTGHLPVTSRHASPFTESVRELRTAVRVSLGDVRQAIVVVTAADPHAPRAFITANLAASFALSGRSTLLLSGDLRRPEVEETVGEGEHPADTSERIRPTHIPNLRLVSIHNEAMDPADYLATAEVRSLLEELREEAAIIVVDAPPVLAAADATILGGYADGVVLIASLERTDRVVLQEAAGRLRINHVPLVGLALSGVKGDRRMRYASSYGTDAPVAADSPSEGSAESADETAGGDEGGAWATSGDDSGAARDEPADGGAASADDPDRSRAASVPGRDRTSSDHPSMW	PGPT0023285_1585	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-WZA-WZC-WZB-WEC_METABOLISM	CE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0023285-etk_wzc|epsB-K16692	NA	NA
AK001_01938	1209	mshA_2		D-inositol-3-phosphate glycosyltransferase	GTGAGCGCACCGGTCCGACCGGTCCGTGTCCTGGTCGTCGACCACACGGCCCAGCTCGGCGGCGCCGAGCTCGCGCTGCTCCGGCTGTGCCGGGAGCTCGACCCGGCCCAGGTGTCGGTGCGATGCCTGCTGCTCGCCGACGGGCCGCTGGTCGCCGAGCTCACGCGTGCCGGGGTGCCGACCCGGGTGCTGCCCCTCGTCCCGCGGCTGTCCTCGGTCTCCCGTTCGCGCGTCGGGGCGCTGGTGCGCGCGACGGTGCCGTCGTCGGGCGCGGTCCTGCGGTTCCTCGTCGAGCTCACGGGCCTCCTCCGGCGGTGCCGTCCCGACGTCGTCCACTCCACGTCGCTCAAGGCGGACCTGCTGACGCTCGGCCCGGCCCTCCTGGCCGGCCGACCCCTCGTCTGGCACGTGCACGACCGGATCGCCCCCGACTACCTGCCCGCCGTCCTCGTCCGGCTCGTCCGGCTGGCGGCGCGGCTGCCGACGCGGCTCGTGGCGAACTCCCGGGCCACGGCGGCGACGCTGCCCCGCGCGGCCGTCGTCGTTCACCCCGGGCTGGGTGCCGACCAGGTGCGGGACCGCCCGCGCCCGGTGCCGCAGGGCGCCGCGGTCGTCGGGATCCTCGGACGGATCAGCCCGACCAAGGGGCAGCTCGAGCTGGTCCGTGCCCTGCCCGAGATCCTGGCCCACCACCCGCACGTCGAGTGCCGGGTCGTGGGGGCGCCCCTCTTCGGACAGGAGGACCACGCCCGCCGCGTCCGTGCCGAGGCGCGGCGGCTCGGCGTCGCCGACCGCGTCCGGTGGGTCGGTCCGGTGGCCGACCCGAGCGCCGAGCTCGACCGGACGACGGTGCTCGTGCACGCCTCGCCGGTGCCCGAGCCCTTCGGTCAGGTCGTGGTCGAGGCGATGGCGCGCGGGGTCCCCGTGGTCGCGACGGACGCGGGCGGCGTCCCGGAGATCGTCGGCCGCGGTCGCGAGGGGCGCGGGGTCCTCGTGCGGCCCGGCGACGTCCCGGCGCTGGCCCGGGCGGTCGTCGAGGTGCTCGACGACCTGCCCCGCGCGCAGGAGCGGGCCGACCGCGCGCACGCCGAGGTGTCCGGCACCCTGACGGCGCGGCGGACGGCGGAGCAGGTCACGGCCGTCTGGCGGGAGGTCGCACGCAGCGGGCGACGACGTCGGCCATGTCGGCGGCGCGGGCCGTCCAGGTAG	MSAPVRPVRVLVVDHTAQLGGAELALLRLCRELDPAQVSVRCLLLADGPLVAELTRAGVPTRVLPLVPRLSSVSRSRVGALVRATVPSSGAVLRFLVELTGLLRRCRPDVVHSTSLKADLLTLGPALLAGRPLVWHVHDRIAPDYLPAVLVRLVRLAARLPTRLVANSRATAATLPRAAVVVHPGLGADQVRDRPRPVPQGAAVVGILGRISPTKGQLELVRALPEILAHHPHVECRVVGAPLFGQEDHARRVRAEARRLGVADRVRWVGPVADPSAELDRTTVLVHASPVPEPFGQVVVEAMARGVPVVATDAGGVPEIVGRGREGRGVLVRPGDVPALARAVVEVLDDLPRAQERADRAHAEVSGTLTARRTAEQVTAVWREVARSGRRRRPCRRRGPSR				NA	NA	NA	NA	NA
AK001_01939	1143			hypothetical protein	GTGACCGACGTCGTGCTCGTGTCCCTCGAGGCCTGGGACGCCGTGTGGCGGCGGAACCAGTACCTCGTCGCCGAGATGCTCCGCGCCGACCCCGCGCTGCGGTTCCTCGTGGTCGAACCGGCCGCCGACCCGCTGTTCGCGCTGCGCCGGGGACGGGCTCCCCGCACGGGTCGGGGGCTGCGTCCTGCGCCTGCCGTCGACGGCGTCGCGGCGGGACGCCTCTGGCTCTACCAGCCCACCAAGCCCCTGCCGCGACGGCTCGACCACCGCGCCGACGAACGCCTGGCACGCGCGACGGTCCGCGCGGCGCGTCGGCTCGGCATGTCGCCGGTGCTGTGGGTCAACGACCCGGCCGCCGCGACGCTGCTGCGGGACTCCGGCTGGCCGGCCCTCTACGACGTCACCGACGACTGGCTGGCGGCCGAGCGCACCGCGGCGGAGCACGGACGGCTGGTCCGGGACGAGGGCGTCCTGCTCGAGCGCTGCGCCGAGGTCGTGGTCTGCTCCCCCGGCCTCGCGGCGACGAAGGGTGCCGCACGTCCCGTGACGCTGATCAGCAACGCCGTCGACGTCGGACGCTACCGGGCGCCGCACGCCCGGCCCGAGGACCTGCCCGAGAGCCCGGTCGCGCTCTACCTGGGCACGGTCCACCCCGACCGGTTCGACGTCGGGCTGCTCGAGGCGACCGCCCGCGCGGTGCACGGGCACGGGTCCGTCGTGCTCGTGGGCCCGGTCGTCGACGTCGCCCGCGAGGACCGGGCCCGGCTGGAGGAGATCGGCGTGCAGCTGCTCGGCGCGCGGGACTGGCGCAGCGTCCCGGCCTACCTCCAGCACGCGGACGTGCTGATCGTCCCCCACGTGGTCGACGCCTTCACCGACAGCCTCGACCCGATCAAGCTCTACGAGTACCTCGCGGCCGGCCGGCCCGTCGTGTCCACACCCGTCGCCGGCTTCCGTGACCGGTCCGACCCCCAGGTCCGGGTGGTCGCACCGGCGGACTTCCCTGGTGCCGTGCGGGCCACGCTGCGGTCGCGCGCCCCGACGGCCGACGTCCCGCCCGACGTGCCTACCTGGACGGCCCGCGCCGCCGACATGGCCGACGTCGTCGCCCGCTGCGTGCGACCTCCCGCCAGACGGCCGTGA	MTDVVLVSLEAWDAVWRRNQYLVAEMLRADPALRFLVVEPAADPLFALRRGRAPRTGRGLRPAPAVDGVAAGRLWLYQPTKPLPRRLDHRADERLARATVRAARRLGMSPVLWVNDPAAATLLRDSGWPALYDVTDDWLAAERTAAEHGRLVRDEGVLLERCAEVVVCSPGLAATKGAARPVTLISNAVDVGRYRAPHARPEDLPESPVALYLGTVHPDRFDVGLLEATARAVHGHGSVVLVGPVVDVAREDRARLEEIGVQLLGARDWRSVPAYLQHADVLIVPHVVDAFTDSLDPIKLYEYLAAGRPVVSTPVAGFRDRSDPQVRVVAPADFPGAVRATLRSRAPTADVPPDVPTWTARAADMADVVARCVRPPARRP	PGPT0015225_97	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISM	CE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015225-tuaH-K16699	NA	NA
AK001_01940	1041	pimA_1	COG0438	Phosphatidyl-myo-inositol mannosyltransferase	ATGAGGATCCTGCACGCCGTCCGGTCGGACGGGTTCGCCGGGGTGGAGCGTCACGTCGCCCGCCTGGCGCGGGCGCAGTCCGCCCTCGGCCATCAGGTCACGATGGTCGGCGGGGACGCCCGACCCGTCCGCCGGACCCTCGACGGGGCGCCCGTGCGGCACGTCCCGGCGGCGACGACGCCCGACGTCGTCCGGGCGCTGCTCCGCCACGGCCCGGGCGCCGACGTCGTCCACGTGCACATGACCGCCGCCGAGATCGCCGCCACCGTGGCGGGGACGCTGCGGCCGGACGTCGGCCCGGTGGTCACGACCCGGCACTTCGCCCGACGGCGCGGCTCCGGACGGCTCGGGCCCCTCGTCGGCGCCGTGGCACGGCACCGTGTCACCGCCCAGATCGCGGTGAGCCGGTTCGTCGCCGAGGCCGTGGACGGTGACTGCGTCGTCGTCCACCCGGGGGTCGACCCCGTGCCGACCACGCCGGCGCCGGCCGCGTCCAGGACGCCCACCGTCCTCGTCGTCCAGCGGCTCGAGCCCGAGAAGCGGACGGACCGGGCCCTCGAGGCCTTCGCCGTCTCCGGCCTCGCCCGGGACGGCTGGACGCTGGAGGTGGCGGGCGACGGGTCCGAGCGGCCCGCCCTGGAGAAGCGCGCGAGCGAGCTCGGCATCGTCGAGGACGTCCGGTTCCTGGGCGTCCGCGACGACGTCGAGCAGCTCATGGCGACCGCCGCCCTGCTGCTGGCACCCTGCCCGGTGGAAGGACTGGGCCTCAGCGTCCTCGAGGCCATGGCCGCGGGCCTCCCGGTCGTCGCCGCCGACGCCGGTGGGCACCGGGAGCTGCTGCGCGGGCTCGACCCCGACGTGCTCTGCCCGCCGGACGACGCAGCCGCGGCGGGCCGGGCGCTGGCCGCGCTCGCGGCCTCCCCGGCGCGGAGGGACGCGACGGCGGCCGAGGCACGGGACCGCCAGCGCCGGCTGTTCAGCCCGGACGTCCAGGCCGAGACGACGGTCCGCACCTACCGAGACGTCCGGAGCGCCTCGTGA	MRILHAVRSDGFAGVERHVARLARAQSALGHQVTMVGGDARPVRRTLDGAPVRHVPAATTPDVVRALLRHGPGADVVHVHMTAAEIAATVAGTLRPDVGPVVTTRHFARRRGSGRLGPLVGAVARHRVTAQIAVSRFVAEAVDGDCVVVHPGVDPVPTTPAPAASRTPTVLVVQRLEPEKRTDRALEAFAVSGLARDGWTLEVAGDGSERPALEKRASELGIVEDVRFLGVRDDVEQLMATAALLLAPCPVEGLGLSVLEAMAAGLPVVAADAGGHRELLRGLDPDVLCPPDDAAAAGRALAALAASPARRDATAAEARDRQRRLFSPDVQAETTVRTYRDVRSAS				NA	NA	NA	NA	NA
AK001_01941	1116	mshA_3		D-inositol-3-phosphate glycosyltransferase	ATGAGGATCCTGCAGATCGCTCCCACCATCGGCCCGGGCACCGGGGTCGGCGCCGTCGCCCACCACCTCGAGCAGGAGTGGCAGCGGCGCGGCGTGCGGACCGCGCGGTTCACGCTGGAGGACGCGGGCGGTTCCTGGCTCCCGGCACCGGGGTCGGGTGTCCGCGGCAGGTTGGCGCTGGCAGCGCGCGTGGTGTGGTTCAGCACCGTGGGGACGGTCCGCGCGCGCCGTCGGCTCGCCCGCGAGCCCGGGACGCTCAGCGTCTGCCACAACGACGTGCTCGCCGGCGACGTCTACGTCAACCACGGCATCGTCGCGGCGGCCATGCACGCACGGGGGGCGTTCGTCCGGCGCATGCTGCGCAACCCGCTGCACGTCCTGACCACGGTGCGCGACGCGATCCGCTACCGCACCGGCACGCACCGGGCCGTGGTCAGCCTGACCAGCAGCGAGCGCGACGCGCTGCGCCGCTGGTACGGGGGGCTGCGCGTCCCCACGGCGGTGATCGGCAACGGGGTCGACGTGGAGCGCTTCACGCCGCCCACGGCGGCCGACCGGGCGGAGGCCCGTGTCCGTGCCGACGTCCCCGAGGGGGCCACCCACGTGGTGTTCGTCGGCCACGAGTTCGACCGCAAGGGGCTCGACCTCCTGCTGCGGGCCGCGGCGGACCTGCCCGCGGTGCACGTGACCGTGGTCGGCGGCACGCCGGACATGCTCGCCGACGTCCGTCGGCTCCTCGACCGGCTGGGCACCGCGTCCCGGGTCCACCTGGCCGGAGCGGTCGCCGACCCGCGGCCCTGGCTTCGGGCGGCCGACGCCCTGGCGCTGCCCAGCGCCTACGAGGCGAACGCGCTGGTCGTGCTGGAAGCCCTGGCGTGCGGCGTCCCGGTGGTGGCGACGCCGGTGGGCTACGCCCCCGACGTCGTCGACGACGGGCGCAACGGCTGGCTCGTCGAACGCACCGTCGCGGGGGTGCGGACCGGGCTGCGCGCCGTCGCCGCGCTGGACGACGACGCGCTGGCGGCGGCACGGCACGCGGCGCGCAAGACCGCGGAGCAGCACGACTGGGGGACGGTCTCGCAGCAGTACCTCGACCTCTTGGAGCAGCTCGCATGA	MRILQIAPTIGPGTGVGAVAHHLEQEWQRRGVRTARFTLEDAGGSWLPAPGSGVRGRLALAARVVWFSTVGTVRARRRLAREPGTLSVCHNDVLAGDVYVNHGIVAAAMHARGAFVRRMLRNPLHVLTTVRDAIRYRTGTHRAVVSLTSSERDALRRWYGGLRVPTAVIGNGVDVERFTPPTAADRAEARVRADVPEGATHVVFVGHEFDRKGLDLLLRAAADLPAVHVTVVGGTPDMLADVRRLLDRLGTASRVHLAGAVADPRPWLRAADALALPSAYEANALVVLEALACGVPVVATPVGYAPDVVDDGRNGWLVERTVAGVRTGLRAVAALDDDALAAARHAARKTAEQHDWGTVSQQYLDLLEQLA				NA	NA	NA	NA	NA
AK001_01942	1332			hypothetical protein	GTGATCGTCGCGGGCCGGGTGCTGGGTCTGACCGCGGTCGCCGCCGGCCTCGCGGTCATCGGCTTCCTGCTCCCGGAGCATACCGAGGTCGCGCTCGGCCTGGCGTTGCTGGTGCTCGTCGTCGGCCTCACCTTCTACGACCCCGTCGCGCTGCCGGTCCTCGCGATGCCCGCCCTCGTGGTCATCCTGCGGGTCGGGGCCGGCGGCCTCGACCTGTCGGTCAGCGACGTCGCGCTGTTCGGCGCGCTCTGCGCGGCGGTCCTCCTGGCACCGCGGCCCTTCTCCCCCACGATGCGCTCGCTCCTGTGGCTCACCGTCGTCTACCAGGTGGCCACGCTCTTCACGGTCCTCGCCAACCCGTACCTGGAGAACACCGTCGAGTGGTTCCACGCCTGGCTCTCCACGGCCGGCGCGCTCGTCGTCGGGTGGTCGGTCGGGCGGGCGGGCCGAGCCCGCGTCGGCCTGACGCTGTTCCTGGGCGCCTGCCTGGTGATCGCCGTCCTGACCCTGACGACGGCGCTCCAGCAGCTCGCCGCCGGCTACACGGGCCCGGTCTACCTCGACTGGCCCTGGGCGATGCACAAGAACCTCGTCGGCTGCGTGCTGTGCTTCGCCGCGCTGGTCGCCTGGGCCCGCCCCTCGTGGGTCGGGTGGCCGCGCTGGTTCGCCTGGGCGGCGTTCTGGGCGTGCGCGGCCGGGACCGTCGCCTCCCAGGCACGGCAGGCCCTCGTCGCCCTGGCCGTCGGGGTCATCCTCGTCACGCTGCGCGGCGACCCCGACCGCAAGCGCTCCAAGCTCATCCTCCTGGCCGCGATCCCCGCGGTGTGGGCCGTGTTCCTCGCGGTCGCCGAACAGCTCTCCGCGGACAACGAGTTCAACTCGGCCAACCAGCGGCTCACCTGGTTCGAGCAGAGCCTCGAGGTGTGGCGGACGAGCCCGTGGTTCGGCGTCGGGCTGCGCTGGTGGTCGTCCGGCCGCACGGAGTACTCCTTCCAGCCGCCGAACGCCGAGCTGGAGGTGCTCTCGACCACCGGCGTGGTCGGCCTGGCCGGGTTCGTCGTGCTGTTCGGCGGCACGCTCGTCGTGCTGTGGCGCGCGGACCGTCGCTTCGGCACGCTCGCCGTCGCGGTCGTGCTGGCCAAGCTGGTGCAGGGCCAGTTCGACCTGTTCTGGACGGCGGTGGTCGTGTCCGTGCCGATGGCGATCGCCGGCGTCTGCGTCGGGGCCGAGGCCTACGCCCGGTCACGGGACACGGTCGGGTCCGACAGCCACCGGCGAGAACCGAGCGTGCCGCTCGGGTCGCTGGACGAGGCGGGGACCGGGCGACCATGA	MIVAGRVLGLTAVAAGLAVIGFLLPEHTEVALGLALLVLVVGLTFYDPVALPVLAMPALVVILRVGAGGLDLSVSDVALFGALCAAVLLAPRPFSPTMRSLLWLTVVYQVATLFTVLANPYLENTVEWFHAWLSTAGALVVGWSVGRAGRARVGLTLFLGACLVIAVLTLTTALQQLAAGYTGPVYLDWPWAMHKNLVGCVLCFAALVAWARPSWVGWPRWFAWAAFWACAAGTVASQARQALVALAVGVILVTLRGDPDRKRSKLILLAAIPAVWAVFLAVAEQLSADNEFNSANQRLTWFEQSLEVWRTSPWFGVGLRWWSSGRTEYSFQPPNAELEVLSTTGVVGLAGFVVLFGGTLVVLWRADRRFGTLAVAVVLAKLVQGQFDLFWTAVVVSVPMAIAGVCVGAEAYARSRDTVGSDSHRREPSVPLGSLDEAGTGRP	PGPT0026055_96	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PSL_POLYSACCHARIDE_METABOLISM	CE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026055-pslJ-K21003	NA	NA
AK001_01943	1998	mshA_4		D-inositol-3-phosphate glycosyltransferase	ATGAGGGTCGTGCGCGTCTCCCACAGCGCCGTCGTGGACGCCTGGCGTGACCGCGAGCGCGAGCTGCGTCGCCGGGGCGTCGACGTCGCCCTGCTGAGCGCGCGCAGCTGGTCCGAGGGCGGGCGGCAGGTCCCTCTCCGGCCTCGTCCGGGCGAGGACGTCCGCGGCGCGCGGACCGTCGGGACGCACCCGGCGCTGTTCCTCTACGACCCGATCGCCCTCTGGCGCGTGCTCGGCCGCTCGCACGACCTCCTCGACGTCCACGAGGAGCCGTTCGCCCTGGCCACGGCCGAGGTGCTCGCGGTCCGGGCGGCGCGGCGCGCCGTCGACCGGCTGCGCGGACGGCCTTCCCCGGCCCCGCCCTACCTCGTCTACAGCGCCCAGAACCTGCCCAAGCGCTACCCGTGGCCGTTCGGCGCGCTCGAGCGTGCCGTGCTCCGGCACGCCGGCGGGGCCCACACCTGCAACGCCGGGGCCGCCGTGATCCTGCGGGACAAGGGCCTGCGGGGCCCGGTCGCGACGATCCCGCTCGGCGTGGAACCGCAGGACCCGGACCCGCGCGACCGGCGTCGACGTCCCCAGCCCGGCGACGGGGAGATCGTGGTCGGCCTGGCCGGACGCCTCGAGGAGCACAAGGGCGTGGCCGTGCTCCTGCGTGCCCTCGAGCTGGAGCCCCGGCTCCGCCTCGTCGTGGCCGGCGGGGGCACGCTGGCCGCGGCCGTCCGGACGGCCGGGCACGCGCACGGCCGTGCCCGGCTCGTCGGGGCGCTCGAGGGCGAGGACCTCGGCGCCTTCTACCGCTCCGTGGACGTCCTCGCCGTGCCGTCGCTGACCACGCCGGGCTGGGTCGAGCAGTTCGGCCGCGTCGCCGTCGAGGCGATGGCGTGCGGGACTCCCGTCGTCGCGAGCGCCTCGGGGGCGCTGCCGGACGTCGTCGGCGACGCCGGGCTGCTCGTCCCGCCCGGCGACGCGCGCGCCCTGGCGACCGCCCTGACCCGGGTCGTCGACGAACCCGGGCTCGCCGACCGGATGCGCGCCGCAGGCCTCGAGACGGCCGCGCGGTGCTCCTGGTCGTCGGTGGCCGCGGCGTACCTCGACCTCTACGAGCGCGTGCTCGACCCGCCGGTCCCGGACGCCGATCCGCCGGAGGTCGTGGTCGTCGCCTACGGCGGACCCGAGCTGGTCCGCCAGGCCCTCGACCCGCTCGTCGGCGCCTACCCCCTGACCGTCGTGGACAACTCCTCCCTGCCGGGCATCCGGGAGATCGCGGAGCAGGCCGGCGCCCTCTATCTCGACCCCGGTCGCAACGGGGGGTTCGCCGCCGGGGTGAACCACGCCCTGGCGCACCGTCGGCACCCCGGCCGCGACGTCCTGCTGCTCAACCCGGACGCCGTGGTGGAGCCCGACGACGTCGCCCGGCTCCAGCGCACGCTGCACCGAGGACCCGGCATCGCGAGCGTCGGGCCCCGGCAGGTCGACGGCGACGACCGTCCCGCCCGGGTCGTCTGGCCCTATCCGTCGCCGATGGGCGCCTGGGTCGAGGCGCTGGGGCTGGGCGGGCTCCGCCGGGTCCCCGCCCGGCGCAGCTTCGTCGTCGGTTCGGTCCTGCTGCTGGCCGCGGAGGCGTTGGACGACGTCGGAGGGTTCGACGAACGGTTCTTCCTCTACGCCGAGGAGTCCGACTGGGCCTACCGCGCGAACCGCCGCGGCTGGCGTCACGTCGTCGACCCCGACGTCGAGGCACGACACCTCGGCGGCGCGAGCTCCGCGGACGCCACGCGCCGCGACACGCACTTCTACGCCTCCCAGGAGCACTTCCAGCGCAAGCACTTCGGTGCCGCCGGATGGCAGGTCGCCCGCGCCGGGTCCGTCCTCGGCGCCGCGGTGCGCACGGCCGTGACGCGAGGCGACCGGCACGAGACCGCCCGGCGACGCCTCCGGCTCTACGTGGGCGGGCCGGCGGCCGCCGAGCGCCGACTGCGGACGGCCGGCCCGTGA	MRVVRVSHSAVVDAWRDRERELRRRGVDVALLSARSWSEGGRQVPLRPRPGEDVRGARTVGTHPALFLYDPIALWRVLGRSHDLLDVHEEPFALATAEVLAVRAARRAVDRLRGRPSPAPPYLVYSAQNLPKRYPWPFGALERAVLRHAGGAHTCNAGAAVILRDKGLRGPVATIPLGVEPQDPDPRDRRRRPQPGDGEIVVGLAGRLEEHKGVAVLLRALELEPRLRLVVAGGGTLAAAVRTAGHAHGRARLVGALEGEDLGAFYRSVDVLAVPSLTTPGWVEQFGRVAVEAMACGTPVVASASGALPDVVGDAGLLVPPGDARALATALTRVVDEPGLADRMRAAGLETAARCSWSSVAAAYLDLYERVLDPPVPDADPPEVVVVAYGGPELVRQALDPLVGAYPLTVVDNSSLPGIREIAEQAGALYLDPGRNGGFAAGVNHALAHRRHPGRDVLLLNPDAVVEPDDVARLQRTLHRGPGIASVGPRQVDGDDRPARVVWPYPSPMGAWVEALGLGGLRRVPARRSFVVGSVLLLAAEALDDVGGFDERFFLYAEESDWAYRANRRGWRHVVDPDVEARHLGGASSADATRRDTHFYASQEHFQRKHFGAAGWQVARAGSVLGAAVRTAVTRGDRHETARRRLRLYVGGPAAAERRLRTAGP				NA	NA	NA	NA	NA
AK001_01944	1029	galE_4	COG1087	UDP-glucose 4-epimerase	ATGAGGGTTCTCGTCGACGGCGACCGGGGTTACCTCGGAGCCGTGCTCGTCCCGTTCCTGCGGGCCAACGGCCACGAGGTCGTCGGGCTCGACGTCGGCTGGTACGACGGGTGCGACTTCGGCACCCCCGACAGCGACTACGAGCAGCGGACCGGTGACGTGCGCGACGCGCGACCGGAGGATCTCGAGGGCTTCGACGCCGTCGTCCACCTGGCCGCGATCAGCAACGACCCGATCGGGCACCTCGCCCCGGACGCGACCTACTCGGTCAACACCGGTGGCGCGGTGCACATGGCCGAGGTCGCCAAGCAGGCGGGGGTGGAGCGCTTCCTGTTCTCCTCGTCCTGCTCCTTGTACGGCGCCGCCGGCGACGCACCGGTCGACGAGTCCAGCGACTTCCACCCGGTGACCCCCTACGGGGAGTCGAAGGTGCGGGCCGAGCAGGCCATCTCGCCGCTCGCGGACGACTCGTTCAGCCCGACCTACCTGCGCAACGCCACGGCCTACGGCAGCTCGCGCCGGCTGCGGGCCGACATCGTCGTCAACAACCTCACCGGCACCGCGTACACCCGCGGTGAGGTCCGGCTGCAGTCCGACGGGTCGCCCTGGCGGCCCCTCGTGCACGCCGAGGACATCGCCTCCGCCTTCGCGGCCGCTCTCGAGGCTCCGCGCGACGTGATCCACGACCAGGCGTTCAACGTGGGGCGTGACGAGGACGTCGTGCAGATCCGCACGGTCGCCGAGCAGGTCGCCGACGTCACCGGGGCCCCGGTGACGTTCGCCCCCGGTGCCGGGGCCGACGCCCGCAACTACCGCGTCGACTTCACCAAGATCCGCAGCCTGCTCCCGGCCGCGGCGCCCCGCTGGACCGTCCGCGACGGCATCGAGGAGCTGTGGCGCGACATGCAGGAGCGGCACCTCACCGTCGAGCAGTTCGAGCACACCTTCGTGCGGCTCCACCGCATCCAGGAGCTGGCGGACGCCGGGCGGCTCGACCTGGCCCGCCTGCGGATGGAGGTGGCGGCATGA	MRVLVDGDRGYLGAVLVPFLRANGHEVVGLDVGWYDGCDFGTPDSDYEQRTGDVRDARPEDLEGFDAVVHLAAISNDPIGHLAPDATYSVNTGGAVHMAEVAKQAGVERFLFSSSCSLYGAAGDAPVDESSDFHPVTPYGESKVRAEQAISPLADDSFSPTYLRNATAYGSSRRLRADIVVNNLTGTAYTRGEVRLQSDGSPWRPLVHAEDIASAFAAALEAPRDVIHDQAFNVGRDEDVVQIRTVAEQVADVTGAPVTFAPGAGADARNYRVDFTKIRSLLPAAAPRWTVRDGIEELWRDMQERHLTVEQFEHTFVRLHRIQELADAGRLDLARLRMEVAA				NA	NA	NA	NA	NA
AK001_01945	1299			hypothetical protein	ATGACCGCGACGTCGACGTCACCGACGGCGGCCACGGAGCAGGCGCCCGGCCCCGCCTGCCGGCTCTGCGGCGCCCGGCTGGACCGCACCTTCGTGGACCTGGGCATGTCCCCGCCGTGCGAGGCGATCCTGCGTGCCGACCAGGTGGACCAGGGCGAGACCTTCTACCCGCTCAACGTCCGCCTCTGCACGCGGTGCCTGCTCGTGCAGCTGCCCGCCTACGTCCCCGAGACCGAGATCTTCGACGACTACGCCTACTTCTCGTCGTACTCCACGAGCTGGGTCGAGCACGCCCGGCGCTACGTCGACGCGGCCGTCGAGCGCCTCGGTCTCGTCCCGGGCGCGTCGTTCGTGGTCGAGGTCGCCAGCAACGACGGCTACCTGCTGCAGCACGTCATGGAGCGGGGGATCCGGTGCCTCGGCATCGAACCGGCCCGCACGGTCGCCGAGGCGGCGGTCGCCCGGGGCGTCCCCACCCTCGTCGAGTTCCTCGGCGAGGAGACCGGCCGGGCCGTCCGGGGCGAGCACGGGCCCGCCGACCTCGTCGTGGCCAACAACGTGTTCGCGCACGTGCCGGACATCGTCGACTTCGCGAAGGGCCTGCGTGCGCTGGTCGCCGACGACGGACGCGTGACGATCGAGATCCCGCACCTGCTGCGCCTCATCGAGGGCAACGAGTACGACACGATCTACCACGAGCACTTCAGCTACCTGTCGCTGCTCACCACGCAGCGGGTGCTCGCCGCGGCGGGCCTCACCGTCGTCGACGTCGAGGAGCTCGCCTCCCACGGCGGGTCCCTGCGGACGTGGTCCGCGCCCACGGAGACCGTCGGGGCCGGGAGCGCGAGCCCGTCCGACGCCGTCGCCCGGGTGCTCGCCGCCGAGGAGGCGTTCGGGCTGCACACCGTCGAGGGGCACGACGGGTTCGCCGAGCAGGTGGCGACGGTCCGGGACGACTTCGTCTCCTTCCTCCTCGCGGCGCGACGGGAGGGCAAGCGGGTCGTGGCCTACGGGGCCCCGGGCAAGGGGAACACCCTGCTGAACCACTGCGGGGTCCGGGCCGACCTGCTGGAGTTCGCCGTCGACCGGAACCCCTACAAGCACGGGCGGTTCCTCCCCGGGACGCACATCCCGGTGCACGCCCCGGAGGCGCTGGACGAGGCTCGACCCGACTACGTCGTGATCATGCCCTGGAACCTGCGCAAGGAGATCTCGGCGCAGCTCGCGCACGTCGCGCAGTGGGGAGGCCGGCTCGTGGTGGCGCTCCCGCACCTCGAGGTGTTCGAGCCGGGCACATGA	MTATSTSPTAATEQAPGPACRLCGARLDRTFVDLGMSPPCEAILRADQVDQGETFYPLNVRLCTRCLLVQLPAYVPETEIFDDYAYFSSYSTSWVEHARRYVDAAVERLGLVPGASFVVEVASNDGYLLQHVMERGIRCLGIEPARTVAEAAVARGVPTLVEFLGEETGRAVRGEHGPADLVVANNVFAHVPDIVDFAKGLRALVADDGRVTIEIPHLLRLIEGNEYDTIYHEHFSYLSLLTTQRVLAAAGLTVVDVEELASHGGSLRTWSAPTETVGAGSASPSDAVARVLAAEEAFGLHTVEGHDGFAEQVATVRDDFVSFLLAARREGKRVVAYGAPGKGNTLLNHCGVRADLLEFAVDRNPYKHGRFLPGTHIPVHAPEALDEARPDYVVIMPWNLRKEISAQLAHVAQWGGRLVVALPHLEVFEPGT				NA	NA	NA	NA	NA
AK001_01946	1206			hypothetical protein	ATGACCGGCAGCGCCCCCGTCCCCTCCTGGCGGTGCCGGTGGTGCGCCGGCGCCGACGGCACCGTCGTCCTCGACCTGGGCGAGCAGCCCGCGGCCGACGTGTTCCCGCTCGCCGGCGACCCGGCGGCAGACCTGTCGTACCCGCTGCGGATGGTGCTGTGCTCGGCCTGCGGTCTGGCCCAGCTCGAGGACGACCCGACCGAGGCGGACGAGCCGCGCGGTGTGGAGCCCGCGGCACTGGTGGACCAGTCCGAGCAGGCCGCCGCCGACCTCGTCGAGGCCGGGCTGGCGGTCCCCGGTGGCCGGGTCGCCGAGCTCCCGAGCCCGCACGGCGGGTCCTGGCTCCCCGCGCTCGCCGCGCGCGGCCTGGTCGCGGCCGACGACGGCGCGAGCGACGGCGAGGCCGTCGACCTGGTCGTGGACTCCCTGGGCATGATGCACGACGCCGACCAGCGGGCCGCGCTGGAGGGGCGGGCCGCACGCCTCGCCGACGAGGGCGTGCTCGCGCTGCACGTGCACCCGATCGGCACCATCCTGCGCACCGGCGCCTGGAACGCGCTGCGGCACGGGCACTTCGCCTACTACGCGGTGACCTGGCTGGTCGACGCCGCCCGGGCGGTGGGCCTCGTGCCCGTGGGGCTGTGGCGGTACGACCTGTACGGGGGCACCGTGGTGCTCGCCCTCGCCCGCGCGGGCTCCCGGCGCGCGGCGGACGCCGCCGGCACCCCGAGGCTCGGCGCCGTCGACGAGATGCTGGACCAGGAACGGGCCGGCGGTGTGACCGACGGCGTGCAGCTCGGTCGGCTGCAGGAGTCCGTGGTCCGGTCGGCGACCGCGCTGCGGACCTGGTTGGACGCGCACCGCGCCGACGGGGTCGTCGCCTACGGGGCGGCGTCGCGGGCCGTGGCGCTGCTGACCGTGGCCGGTGTGACGGGTGACGACCTGCGCGCCGTCGTCGACGCCTCGCCGGCCAAGCACGGCCGGTCGATGCCCGGCACGGCCGGCGGGAGCTCCCGGCGCCGGGTCCCGATCGTGGCGCCGGCCGCGCTCGCGGAGCTGCGGCCGCCATGGGTGGTCCTGTTCGTGCCGGACCTCCTCGACGAGGTGCGCCGGCGGTACCCGGAGGTCGAGGCCTCCGGCGGGCACTGGGTGGTGGCCGAGCCTGCCCCGGCGGTGGTGGATCCGGTGCCGGTCAGGACGCCGTGA	MTGSAPVPSWRCRWCAGADGTVVLDLGEQPAADVFPLAGDPAADLSYPLRMVLCSACGLAQLEDDPTEADEPRGVEPAALVDQSEQAAADLVEAGLAVPGGRVAELPSPHGGSWLPALAARGLVAADDGASDGEAVDLVVDSLGMMHDADQRAALEGRAARLADEGVLALHVHPIGTILRTGAWNALRHGHFAYYAVTWLVDAARAVGLVPVGLWRYDLYGGTVVLALARAGSRRAADAAGTPRLGAVDEMLDQERAGGVTDGVQLGRLQESVVRSATALRTWLDAHRADGVVAYGAASRAVALLTVAGVTGDDLRAVVDASPAKHGRSMPGTAGGSSRRRVPIVAPAALAELRPPWVVLFVPDLLDEVRRRYPEVEASGGHWVVAEPAPAVVDPVPVRTP	PGPT0003680_16	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845	NA	NA
AK001_01947	552	rfbC	COG1898	dTDP-4-dehydrorhamnose 3,5-epimerase	ATGGAGGTGCTGCCCACCCGGCTCGAGGGCGTCCTGCTGCTGGCCCCGACGCCGCACGCGGACGACCGCGGGGTGTTCACCCGCACGTTCGACGCCGCCACGGCCGCCGAGGCGGGGATCGACCCGGCAGCGTTCGTCCAGGACTCGCAGTCGCGGTCGTACCGCGGGGTCGTCCGCGGCCTGCACGGTCGGGTCGGCGACGGCGAGGCCAAGCTGGTCCGTGTGGCGCACGGGGCCGTCCTCGACGTCGTCGTCGACGCCCGTCCCGGGTCCGCCACCTTCGGCCGGTGGGAAGCCTTCACCCTCGACGACACCGACTTCCACGTGCTCTACGTCCCGCGCGGGATGCTGCACGGGCACCAGACACTGACCGGGACCGCCGACGTCTGCTACCGGATCGACGCCGAGCACGACCCGACCGAGGACGTGGCGGTGCACCACCTCGACCCCGATCTGGCCGTCCCGTGGCCGGCGGAGATCACGACGGTCAGCGCACGCGACCGCGCCGCCGGGTCGTGGGCGGACCTCGCCGCCCGCCTCACGGCGTCCTGA	MEVLPTRLEGVLLLAPTPHADDRGVFTRTFDAATAAEAGIDPAAFVQDSQSRSYRGVVRGLHGRVGDGEAKLVRVAHGAVLDVVVDARPGSATFGRWEAFTLDDTDFHVLYVPRGMLHGHQTLTGTADVCYRIDAEHDPTEDVAVHHLDPDLAVPWPAEITTVSARDRAAGSWADLAARLTAS	PGPT0014300_177	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790	NA	NA
AK001_01948	1407	kat		3-aminobutyryl-CoA aminotransferase	ATGACCCAGGAGATGCCCGCAGGCCTCACCTCGTCGCCGGGAGTGCGTTCCTTCGCCGCCTCGGCCGAGGCGCAGGCGAGGTTGCACGAGCTCGTCCCCGGCGGTGCCCACACCTACGCCCGCGGCTCCGACCAGTACCCGGAGCAGATGGCTCCCGTCGTGGTGCGCGGCGCGGGGTCGCACGTCTGGGACGTCGACGGCAACGAGTTCGTCGAGTACGGCATGGGACTGCGTTCCGTGACGCTCGGGCACGGCTACCGGCCGGTCGTGGACGCCGTGTCCATCGCGATCGCCGACGGGGTCAGCTTCTCCCGCCCCACCGTGTGGGAGCTCCGCGCGGCGGAGGCGTTCCTCGACCAGGTGCCCACGGCGGAGATGGTGAAGTTCGCGAAGAACGGTTCGGACGCGACGACCGCGGCCGTGCGTCTCGCCCGCGCCGCGACCGGACGCGACCTGGTGGCGCTCTGCGGCAGCCAGCCGTTCTTCTCGGTCGACGACTGGTTCATGGGCACCACCAGCATGTCGGCCGGGATCCCGCAGGCGGTGCGCGACCTGACGGTCGAGTTCCCCTACGACGACCTCGGTGCGGTCGAGGCGCTCGTCGCCCAGCACCCGGGGCGCATCGCCGCCCTGGTGCTCGAGGCGGAGACGGCCGGGGCGGCGCCGTCGCCGGGGTACCTGCAGGGCCTGCGGACGTTGTGCGACCGCGAGGGGATCGTGCTGGTCTTCGACGAGATGATCACCGGGATGCGGTGGTCGTCGGGCGGCGCCCAGGCGGTCCACGGCGTCACCCCCGACCTGTCCACCTGGGGCAAGGCGCTCGGGAACGGGTTCGCGGTCTCGGCGCTCGCGGGCCGGCGGAACCTCATGGAGCTCGGCGGTCTCGACACCGACGCGGACCGTGTCTTCCTGATGTCCACCACGCACGGTGCCGAGACGGCGGGCCTGGCCGCCTACCTCGCCGTCCACGACGCATACCGACGGACCGACGTCCCCGGCGTGATGGCGGCCCAGGGCGAGAAGCTCCGGGCGGGCGTCGAGGCGGTGGTCGCCGACGCCGGCCTGCAGGACCACGTCACCGTCTCCGGGCACCCCGCCTGTCTCGTGTTCGGCACCCGCGACCCCGAGGGCTCCCCGTCGCAGGCGTACCGGACCCTGTTCCTGCAGGAGCTGCTCGAGCGCGGGATCCTCTGCCAGTCGTTCGTCGTCTCGGCCGCCCACACGGACGCGGACATCGAGGCGACGGTCGACGCGGTCCGCGGCGCGCTCCCGGTCTACGCGGCGGCGCTCGACGCCGGCACGACCGACGGTCTGCTGCGCGGGCGACCCGTCGCGCCGGCGCTGCGCGCCCGGGCGGCACCACGACGTCTCCGTTCCCACCGACACACCGAGAGGATCGGCTCATGA	MTQEMPAGLTSSPGVRSFAASAEAQARLHELVPGGAHTYARGSDQYPEQMAPVVVRGAGSHVWDVDGNEFVEYGMGLRSVTLGHGYRPVVDAVSIAIADGVSFSRPTVWELRAAEAFLDQVPTAEMVKFAKNGSDATTAAVRLARAATGRDLVALCGSQPFFSVDDWFMGTTSMSAGIPQAVRDLTVEFPYDDLGAVEALVAQHPGRIAALVLEAETAGAAPSPGYLQGLRTLCDREGIVLVFDEMITGMRWSSGGAQAVHGVTPDLSTWGKALGNGFAVSALAGRRNLMELGGLDTDADRVFLMSTTHGAETAGLAAYLAVHDAYRRTDVPGVMAAQGEKLRAGVEAVVADAGLQDHVTVSGHPACLVFGTRDPEGSPSQAYRTLFLQELLERGILCQSFVVSAAHTDADIEATVDAVRGALPVYAAALDAGTTDGLLRGRPVAPALRARAAPRRLRSHRHTERIGS	PGPT0003680_1246	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845	NA	NA
AK001_01949	852	rfbF	COG1208	Glucose-1-phosphate cytidylyltransferase	ATGAAGGTCGTGCTGTTCTGCGGAGGGCTGGGGATGCGCATGCGGTCCGGCCCGGACTCGCTGCCGAAGCCCATGATGCCCATCGGCTCGCGCCCGGTCCTGTGGCACATCATGAAGTACTACGCGCACTTCGGGCACACGGAGTTCGTCCTCGCGCTGGGCTACGGGGCGAACGCCGTCAAGGACTACTTCCTCAACTACCAGGAGACCCACTCCAACGACTTCGTCCTGACCAAGGGGGGCCAGGAGATCGAGCTGCTCGGCAGCGACATCAGCGAGTGGACGATCACGTTCGTCGACACCGGGATGGACACGGCGATCGGCGAGCGGCTGCGTCGGGTGCGGCGCTACCTCGACGACGACGAGGTGTTCCTGGCGAACTACGGCGACGTGCTCACCGACGCGCCGATGGACCGGATCGTCGACGACTTCCTGCGGACCGACGCGGTCGGTTCGCTCATGGCGGTCGCACCCCAGGACTCCTTCCACGTGGTGCGCTACGAGCCGGACGGCACGATGCGTGACCTGGAGCCCGTCGCGGGCATGAGCATGTGCATCAACGGCGGCTACTTCGTGCTGCGCCAGGGCATCTTCGACTACCTGAACGAGGGCGAGGACCTGGTCATGGACGCCTGCGTCCGGGCCGCGCGCGACGGCCGGTTCCGCGTGCACCCGCACGAGGGGTTCTGGGCGCCGATGGACACGCTCAAGGAGAGGTCCGCCCTGGACGAGATGAACCGGGTGGGCAACCGTCCGTGGGCGGTCTGGGACGCCGTGCGGCAGCACCAGGCACGCCGCGTGCCCGAGGTCGAGGTCGGCGAGGTCATCGGGCGGATCGGTGCGAACGTCTGA	MKVVLFCGGLGMRMRSGPDSLPKPMMPIGSRPVLWHIMKYYAHFGHTEFVLALGYGANAVKDYFLNYQETHSNDFVLTKGGQEIELLGSDISEWTITFVDTGMDTAIGERLRRVRRYLDDDEVFLANYGDVLTDAPMDRIVDDFLRTDAVGSLMAVAPQDSFHVVRYEPDGTMRDLEPVAGMSMCINGGYFVLRQGIFDYLNEGEDLVMDACVRAARDGRFRVHPHEGFWAPMDTLKERSALDEMNRVGNRPWAVWDAVRQHQARRVPEVEVGEVIGRIGANV	PGPT0022605_53	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022605-rfbF-K00978	NA	NA
AK001_01950	1182			hypothetical protein	GTGTTCGGCCTGTTCGGCATCGGCAACTTCGGCAACGAGGCCACCCTCACGGCCGTGCTCGAGCGCATCGGTGACCGGGGACGTGTCCTCGTCGTGGCCGAGGGCGCCGAGCGCGTGGCCCGGGAGCGCGGGCTGGCGGCCGTGCAGCTGGTGCCACCGTCCACGGGCTCGACCCGGTCCGTCGCCGGAGCGGTCCGCGTCGCCGCCAACAGGCTCTCGGCGCTGCCTCGGGCCTGGCGCGTCCTGCGCGACGTCGACGTGGTCGTCGTGGCGGGTGGCGGGGCCTGGGAACGGCTCGGTGCCGGGCCGTTCGGGACGGCGTTCGAGATCTGGAGCCTCGCTCTGGCCGCGCGGGCGCGGCGTCGCCCGTTCGTCCTGCTCGACGTGGGGGTGCAGGAGCAGGACGCGCGACTGACGCGGTTCTTCGTCCGGCAGGTGGCACGGTGGTCGGCGTACCGGTCCGTCCGGGACGAGCTGTCCCGCCGGTCGTTGCTCGCGATGGGGGCCGGTCGGCCGGACGACCCGGTGGTCGCCGACCTCGTGCTGGGGTCCTCGCGGACGTCCGACGTCGCGGACCGGAGGGCCGGGAGCGGCCGCCCCGTCGTCGTCGGCGTCATGAGCTATTTCGCCGAGGACGACGACCCGGACCGACGGGCCGAGGTCCACGAGCGGTACGTCGACCGCTCCGTCCGGCTCGTCGACCTGCTCACGGCGGCAGGGCACCCGGTGGTCCTGGTCGGGGGCGACGAGTGCGACCTGCCGACCGCGCACGAGATCGCGTCCTCCTCGGCCGCGCAGGTCAGCTCCGCGGGCGACGTGGCCGAGCTGACGTCGCTGATGTCCCGGGCCTCGGTCGTGGTCGGGGCCCGCTATCACACGCTCGTCGTCGGCGCGCTGGCGGGCGCCCCCGTGATCGCGCTCGCCTACGGCACGAAGCACGGTGAGCTTTTGCGCGCGCTCGGCAGCGGCGACCTGAGCTTCGACATCGAGACCTTCGAGCCGTCGGTGGTGGCGGCCGCCGTCGACCAGGTCGTGGTCGAGCGGGAGCACCGCCGCCTCGATGCCGACCGGGCGATCACGGCGGCCGCGGCGCGCCTGGACCGGGAGTGGGTGACCGTGGCGCGGCTGTGGGAGACGGACGACCGATCGCCCGCCACGTCGCTGGTCGAGGAGGGCCGATGA	MFGLFGIGNFGNEATLTAVLERIGDRGRVLVVAEGAERVARERGLAAVQLVPPSTGSTRSVAGAVRVAANRLSALPRAWRVLRDVDVVVVAGGGAWERLGAGPFGTAFEIWSLALAARARRRPFVLLDVGVQEQDARLTRFFVRQVARWSAYRSVRDELSRRSLLAMGAGRPDDPVVADLVLGSSRTSDVADRRAGSGRPVVVGVMSYFAEDDDPDRRAEVHERYVDRSVRLVDLLTAAGHPVVLVGGDECDLPTAHEIASSSAAQVSSAGDVAELTSLMSRASVVVGARYHTLVVGALAGAPVIALAYGTKHGELLRALGSGDLSFDIETFEPSVVAAAVDQVVVEREHRRLDADRAITAAAARLDREWVTVARLWETDDRSPATSLVEEGR				NA	NA	NA	NA	NA
AK001_01951	636			hypothetical protein	ATGAGGCTCACCGGCGGGAGCGGTCCGGTCACGGTGGTCTGCCTCGCGGCCCATCCGGACGACGTCGAGATCGGCTGCGGGGCGACCCTCCTCGCCCTGCGCGAGTCGCGAGGGATCAGTGGGGCCGTGCTGACGATGACGGGTGGCGCGGAGCGGCAGGACGAGGCGCGCGACGCGGCCCGGGCCTTCACGGCGGACGCCCTGGAGACGCACTTCGCGGGTCTCCCGGACGGACGCCTGCCGGAGCACTGGGGCGCGGTGAAGACGGCGCTGCACGAGGTGGCGCGCCGGGTCCCTGCCCCGGACCTCGTCTTCGCGCCGCGGCCCGACGACGCGCACCAGGACCATCGCCTCGTCGGTGAGCTGACGACCACCGTCTGGCGCGGCCCGACCGTGCTGCACTACGAGATCCCCAAGTGGGACGGCGACCTCGCACGTCCGAACGTGTACGTCCCGGTCACCGCGGAGCAGGCGCGACGGAAGATCGAGCTGTTGACCAGCTGCTACCCGTCGCAGGTCGACCGTGCCTGGTGGGACGACGAGATGTTCCTCGGGCACCTGAGGATCCGGGGGATCGAGGCGCAGCACCGGTACGCCGAGGCGTTCACCACCTACAAGACGGTGCTCGAGCCGTGA	MRLTGGSGPVTVVCLAAHPDDVEIGCGATLLALRESRGISGAVLTMTGGAERQDEARDAARAFTADALETHFAGLPDGRLPEHWGAVKTALHEVARRVPAPDLVFAPRPDDAHQDHRLVGELTTTVWRGPTVLHYEIPKWDGDLARPNVYVPVTAEQARRKIELLTSCYPSQVDRAWWDDEMFLGHLRIRGIEAQHRYAEAFTTYKTVLEP				NA	NA	NA	NA	NA
AK001_01952	888			hypothetical protein	GTGACGGCACGTCCGCCTCGGGTGTCCATCGGCCTCCCGGTCTACAACGGCGAGGAGTATCTGGACGACGCACTGGCCTCGGCGCGCCGTCAGTCGTTCGAGGACATCGAGATCATCGTGTCGGACAACGGCTCGACCGACGGCACCTCGGACCTGTGCCGGCAGGCCGCGGCCGAGGACGACCGCGTCGTCTACCGCCGCTACGACGAGAACCGTGGCGGCGGGTGGAACTACATGAACGTGGCGCGACTGGCCCGCGGCGAGTACTTCACCTGGTTGGCGGCCGACGACGTCAAGCTGCCCGGCTTCACCGGGTCGTGCGTGGAGCTGCTGGACGCCGACGGGCGCGCCGCGTTCGCCTGCTCCCGGGCCCAGGTCATCGACGAGCAGGGGGTCGTGATCGAGACCCTCCACGACGGGGCGATGGGCCTCGACGCGCCGGACGCCGCCGCCCGCGTCCGCAACCTGCTCCGTGCGCAGGCGTCGCACGTCGTGTACGGCCTCATCCGCTCGTCGGTGCTCCGGCAGACCCGGGGGATGATCGCGATGGTCGGTGACGACATCGTGCTGAACACCGAGCTGCTGTGCCGTGGTCCGATGCTGCAGTCCGACGAGTTCCTCTTCCGACCCCGACGGCACGGGGCACAGCTCTCCCAGCAGGGGCACGAACAGGTCAGGTGGCACGCGCCCCGGGCCGCGGTGCGGTTCGCGTTCCCGCAGACCCGGCTCAACGCCGAGCTCTTCCGTGCCGTGGCTCGTGCCCCCCTCCCCGCCGGGGAGAAGGTGCGCGCGTGGAGCGCCGTCGCCTCCTCCTGGGTCGTGCCGCGCTGGCGGGGCATGGCGCGTGACGTCGCCGTGGCGGCCGGGTGGCCCGTGCCCGCCCCCTAG	MTARPPRVSIGLPVYNGEEYLDDALASARRQSFEDIEIIVSDNGSTDGTSDLCRQAAAEDDRVVYRRYDENRGGGWNYMNVARLARGEYFTWLAADDVKLPGFTGSCVELLDADGRAAFACSRAQVIDEQGVVIETLHDGAMGLDAPDAAARVRNLLRAQASHVVYGLIRSSVLRQTRGMIAMVGDDIVLNTELLCRGPMLQSDEFLFRPRRHGAQLSQQGHEQVRWHAPRAAVRFAFPQTRLNAELFRAVARAPLPAGEKVRAWSAVASSWVVPRWRGMARDVAVAAGWPVPAP				NA	NA	NA	NA	NA
AK001_01953	1149	cotSA	COG0438	Spore coat protein SA	GTGCAACGCCGCCACATCCACGTGATCACTCCGGGCGACCACTTCTCGCCCCGCACCGGGAGCGCCATCCCGACGGTCGTCCACGGGCTGGCCTCGGCGGCACCGTCGAGCGCGCCCCGCCCGAGCGTCGTCGTCGCACGAGGGACGTATCCGGACCGCTACCCGAGCGCTGACGTGATCGAGTACTCGGCTTCCCCGCCCCGACCCCGGGACCGCTGGGGCGACGCCGTCTGCTCGCGGATCACGGCGACGCGGCCCGGCCGACGACGTGAGTTCGCCGCCCCGCTCGCGGAGCAGGGCGACTGGGCTCCCGGCATCGTGCTCGCGCACAACGCCCCGCAGGCGATCCCCCTCGTGGATCCCGACGTCCACGCCCCGGTGCTCTACGCGCACAACGACCTGCTCGGGACCTACTCCCGACGTGAGGTCGCGAAGGTCCTGGACCGGAGCACGGCCGTCGTCTGCGTGAGCGCGTTCCTGGCGGACGTCACCCGGGAACGGATGCCGTCGTACCTGCACGACCGCGTCCACGTGGTGCGCAACGGTGTCGACACCACGCAGTTCGCGCCGGCGGCGGAGGGATCCGGCAGAGATCGTCTGGAGGTGCTCTTCGTCGGGCGCATGGTCCCCTCGAAGGGCGCGCACGTCGCGCTCGCCGCGATGGGTCGGCTGGGCGACCGCGACGTCCGGCTGACGGTCGTCGGGAGCGCCGGGTTCGACGCGACCCAGCCGCTGGACGACTACGAGAAGGAGATCCGGCGGGAGGCGGCGGCCCTGGGAGCTCGGGCGCGTGTCCTGCCGTTCGTGCCGAGGGACGAGGTCGCACGCCTGATGTCCACGGCGGACGTGCTCGTGGTCCCGTCCGTGTGGCCGGAGCCGTTCGCCCTGACGGCGCTCGAAGGTCTGGCGTCGGGATGCGCCGTCGTCGCGTCCCGGACCGGAGGGATCCCCGAGGCCACGGGCGATGCCGGCGTCCTCGTCGAGCCCGACCACCCCGCGCAGATCGCCGCCGCGCTGACCACGCTGCACGACGACTCCGCCGCCCTGGCCGCCGCTCAGGGCTCGGCGCGGCGCTACGCGCTCGCGCACGACTGGCGACGGACCTGGGACACGCTCGCGGCGACGCTGCCCCCGGCGGACCGCCCCTAG	MQRRHIHVITPGDHFSPRTGSAIPTVVHGLASAAPSSAPRPSVVVARGTYPDRYPSADVIEYSASPPRPRDRWGDAVCSRITATRPGRRREFAAPLAEQGDWAPGIVLAHNAPQAIPLVDPDVHAPVLYAHNDLLGTYSRREVAKVLDRSTAVVCVSAFLADVTRERMPSYLHDRVHVVRNGVDTTQFAPAAEGSGRDRLEVLFVGRMVPSKGAHVALAAMGRLGDRDVRLTVVGSAGFDATQPLDDYEKEIRREAAALGARARVLPFVPRDEVARLMSTADVLVVPSVWPEPFALTALEGLASGCAVVASRTGGIPEATGDAGVLVEPDHPAQIAAALTTLHDDSAALAAAQGSARRYALAHDWRRTWDTLAATLPPADRP	PGPT0017715_465	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017715-glgM-K16148	NA	NA
AK001_01954	1467			hypothetical protein	ATGAGTTCGTGGAGCGCGCGTCGTCGGCTGATCACGGCGGCCCTCGTGGCCGTCGTCGTCCTGGGAGCGGCCGCGGTCGGTGTCTGGTTGGCCGTTCGTGACGACGCGAACCCGCAGGCTCTCCGGATCGAGGGCGAGGGTCCGGAGGTCGGGTCCGTGCCGGACGACGGCGGTGCGCCGCCGGGGGCACCGGGCGCCGGGACGGCGTGGACGGTGTCCGCGGACGGGCGCTCCTTCCAGGACGAGAGCGGGCGGCCGGTCCTGGTCCGGGGGGACTCTCCGTGGTCGCTCCTGACCGACCTCTCGAGCGAGGAGATCCGCGACTACCTCGCCGCGCGCGAGGAGCAAGGATTCAACGCGCTGCTCGTCTCCCTGCTCGGTGCCACGGGCAACGGCGGGCCGTCGGACTCGGGCGCGACCGTCGACGACGTCTCGCCGTTCCTGGACGGCGACGTCACCCGTCTGAACCCGGAGTACTGGGACCACGTGCACGCCGCGGTGGCCGCGGCGTCCGAGCACGGGGTCACGATGTTCTTGTACCCGGTCGACGGGTGGACGATCGGGACGTCGTTCGTGCCACGCTCGATCGACGAGTGCCGCACCTACGGAGCCGAGGTCGGAGCGCGGCTCGCCGACCTGTCGAACATCGTGTGGGTCACGGGCGGCGACTACTTCCCCGTGACCAACGAGCCGGAGGACGGCAGCGACGTCGACCACTGCTTCGACGCGGTGCGCGAGGGTCTCGACACGGCGGTCGAGCGGCCGTTCTCCATCCAGCTCGGCTACGACAAGTCCGTCTCGACGGACAACCCCTTCTGGCGGCCTCGCGTCGACTGGAACTTCGTCTACACCTACTTCCCGACCTATCGAGCCGTGCTCGACGCGGTCGAGGCTGCGCCCTCGATCCCGGCGGTCATGGGTGAGGGCAACTACGAGGGTGAGAACAACCAGCCGGAGACCCCGCCGACCACCGACGAGACGATCCGACGCCAGGTGCTCTGGGCGATGACGTCGGGAGCCTGCGGTGCGTTCTTCGGGACCGACGACTGGGAGTTCCTGCCGGGGTGGGAAGCTCGGTTGGACTCCTCGGGCGCCCACGCAGCCGCGACCGCCCTCGACGTGGTGGAGGAGTTCGCCTGGTGGCGGCTGCGGCCCGACACCGACGACCCGCTCGTGACCTCCGGCCGCGGGACGCTGCTCACGGACGACGCCCCGACGGACGTGCTGGACAACGACTACGTCACAGCGGCGCTCACGCCGGACGGATCGCAGGCGCTGGTGTACGTGCCGAGCACGCGGACCATCACCGTGGACCGCGCCCGGCTCGCGCCCGACCTCCGTGCCCGCTGGATCGATCCCGCTTCCGGCGTCGAGGCGCCGGCGGGAGACGGGCCCACCTATACGACGCCCGGTCCGAACAGCGACGGAGCGACGGACTGGCTGCTCGCCTTCGACGGAGCGGCTTGA	MSSWSARRRLITAALVAVVVLGAAAVGVWLAVRDDANPQALRIEGEGPEVGSVPDDGGAPPGAPGAGTAWTVSADGRSFQDESGRPVLVRGDSPWSLLTDLSSEEIRDYLAAREEQGFNALLVSLLGATGNGGPSDSGATVDDVSPFLDGDVTRLNPEYWDHVHAAVAAASEHGVTMFLYPVDGWTIGTSFVPRSIDECRTYGAEVGARLADLSNIVWVTGGDYFPVTNEPEDGSDVDHCFDAVREGLDTAVERPFSIQLGYDKSVSTDNPFWRPRVDWNFVYTYFPTYRAVLDAVEAAPSIPAVMGEGNYEGENNQPETPPTTDETIRRQVLWAMTSGACGAFFGTDDWEFLPGWEARLDSSGAHAAATALDVVEEFAWWRLRPDTDDPLVTSGRGTLLTDDAPTDVLDNDYVTAALTPDGSQALVYVPSTRTITVDRARLAPDLRARWIDPASGVEAPAGDGPTYTTPGPNSDGATDWLLAFDGAA				NA	NA	NA	NA	NA
AK001_01955	729	COQ3_2		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	GTGCGGCACTCTCGGAAGACGGAGCCTGTCACCGATGCCGAGGTCGGTTACTGGGACGAGTGGAACGCGAGGCACCGACAGCCCGAAGGGCTCGATCAGGTTCCCCTGGACCAGGCGCGTGCCGTGCACCAGGCCGTCCGGGGGCTCGACCGCACGGACCTGCGCCTCCTCGACATCGGCTGCGGCACCGGCTGGCTGGTCGACCAGCTCGTCGACTACGGCGAGGCGACCGGGATCGACATCAGCCGGGACGTCATCACCCGAGCGCGGCAGAGGACGCCCGCGGCGACCTTCATCTCCGGGGACATCCTCGTCGAACGACTTCCCGCCCGGTCCTTCGACGTCATCGTGAGCCTCGAGACGCTGCCCCACGTCTCCGACCAGGAGGCGTTCATGCGAGAGCTCGCCCGTCTGATCGTGCCCGGGGGGCTGATCGTCGTCGCGGCGCAGAACGCCGCCGTGCTGGGCAAGCACGGGCGCTTTCCTCCGCAGGACCCTCGAGCGCGTCACGAGCGCCCCACTCCGCAGCGGCTCCGTGAGCTCGCGGGACTGGCCGGCGACGTCGTCGCCGTCCGAACCATCACCCCGCAGGGAGATGCGTCGTGGCGGCGTGTCTTCACGTCCAAGAAGCTGCGGGACCTGCTCGGACCTCTGGGGATCCGGTGGCATCGACACCTCGAACGCCGTGGTTGGGGCCGCACGCTCGTCGCGGAGATCCGCGGCCGGTGA	MRHSRKTEPVTDAEVGYWDEWNARHRQPEGLDQVPLDQARAVHQAVRGLDRTDLRLLDIGCGTGWLVDQLVDYGEATGIDISRDVITRARQRTPAATFISGDILVERLPARSFDVIVSLETLPHVSDQEAFMRELARLIVPGGLIVVAAQNAAVLGKHGRFPPQDPRARHERPTPQRLRELAGLAGDVVAVRTITPQGDASWRRVFTSKKLRDLLGPLGIRWHRHLERRGWGRTLVAEIRGR				NA	NA	NA	NA	NA
AK001_01956	1200			hypothetical protein	ATGTTCCGGGTGAGGCGTGACCGGGGCGGGTCGCGGGTCGCGCTCTTCGGCGAGACGGGCATCGGCAACTTCGGCAACGAGGCCTCGCTCGTGGCCGGTCTCCGGTTGCTCGAGGGCACGGGCGCGCGGCCGCTGGCGGTGGCGCAGCGGCCCGAGGACGTCGAGGCCGAGCACGGCATCGAGGCGGTCGACATCCGCCGTCCGGGCCCGATGCGGCACGGGCTCACGAGCCTGACCGGACGCGTGGGCGACGTGCTGCACCTCGGGGGAGTGGTCCGGTCCGTGGACGCGGTGATCGTCCCCGGCACGGGGATCTTCGAAGGGCACGGGGTCCGGCCCCGGGGCATCCCCTTCTCCCTGTTCTGGCTGGCGGTCTGGTGCCGTCTGTGGCGCCGGCCCCTGCTGCTGCTCAGCGTCGGCGTCGACACCCGGGGGTCGCGCGGCGTGCGCTGGTTCTTCGCGAGGGTCCTCTCCTGGGCCGACGTGCTGACCGTCCGCGACGAGGAATCGGTACGTGCCGTGGCCGCGCTCGGAGTGCGCCGTCACGTGCCGGTCGTCCCGGATCTCGTGCTGGGCCGCGAACCGGTGACGCGACCGGCCGCACCGCGCAGCGCGCGGACGGACCCCGTGGTCGCCGTCGGTGTCATGGACTGGGGCGGGACGGAACGCGACGCCGGACGCGAGGAGTACACCCGGCGCAGCGTCACGCTGGTGCGGGCCCTGCTCGAGGCGGGGGTCCGTGTGCGCGTCGTGACCGGCGAGGACCTCGATCTCCGGGTCGCGGCCGAGGTGGTGCGGCGCGTCCGCGCCCTCGACCGGGACGCCGCCGTCGAGCTCTGCGAGGCGCGCACCGTGGAGGACGTCGCCGCGAGCCTCGACGGCTGCCACGTCCTCGTCGCCGCGCGCTACCACAACCTGATCGCCGCGGTCAGCGAGGGCATCCCGGTGGTCGCCACGGGCTACGGCCACAAGCAGGCGTCCCTCGTCGCCGCCTACGGGCCCTCCGACCGCGCGCACGACCGGGACACCTACGACGCCGACGTCATCGTGACCCAGGTCCGCGAGATCCTCGCCGACCACACCGCCGAGTCGGGGCGTGTGCGGGCTGCGGCGGCCCGGGACCGTGCTGCGGTCCTGGCGCAGGACGCGCGCGAACGGGCCGCTCTGGGCCTCCGCGACACCGAGCCGGTGGCGTCGTGA	MFRVRRDRGGSRVALFGETGIGNFGNEASLVAGLRLLEGTGARPLAVAQRPEDVEAEHGIEAVDIRRPGPMRHGLTSLTGRVGDVLHLGGVVRSVDAVIVPGTGIFEGHGVRPRGIPFSLFWLAVWCRLWRRPLLLLSVGVDTRGSRGVRWFFARVLSWADVLTVRDEESVRAVAALGVRRHVPVVPDLVLGREPVTRPAAPRSARTDPVVAVGVMDWGGTERDAGREEYTRRSVTLVRALLEAGVRVRVVTGEDLDLRVAAEVVRRVRALDRDAAVELCEARTVEDVAASLDGCHVLVAARYHNLIAAVSEGIPVVATGYGHKQASLVAAYGPSDRAHDRDTYDADVIVTQVREILADHTAESGRVRAAAARDRAAVLAQDARERAALGLRDTEPVAS				NA	NA	NA	NA	NA
AK001_01957	1437			hypothetical protein	GTGAGGAGGCCGGTCCGGGGCGCCGTGCTGACGGTCGTCGTGGTCACCGTCGTGGCGGCGGGGACGCTCGTCGGCTACCAGCTGCTGCAGCCGGCGGCGCCGACGCAGGACGGGTGGTACGAACGCCCGCCGGCGGCCGACGCGCCGGTCCGGTCCGTGACACCGTCCACCGCTCGTCCGGCGGACGACGGCGCACCCCGCTGGGTGAGCGCGATCTCCGACGACGAGCGCTTCTTCGTCGACCAGGACGGCGACCCGATCCTGGTCCGGGGCGACGCCCCCTGGTCGCTGCTCGTGGACCTCCTGCCCGACGAGGCGGAGACCTACCTGACCACTCGTTCGGAGCAGGGGTTCAACGCGCTCGTCGTCTCCCTCCTCGGCAATCCCGCGAACGGCGGGCCGTCGGGCGACGGCTCGACGGTCGACGGGGTCCTGCCGTTCACGGACGGCGACGTCACCCGCTGGAACCCTGTCTACTGGGACCGGGCGCACGCGACCCTCGGGCGCGCCGCCGAGCTCGGCCTCACGGTGCTGCTCTACCCCGTGGACAGCTGGACGATCGCCGAGCCGTTCGGCTCACCGCCGCCCGACGTGTGCCGGGAGTACGGTGCGATGGTCGGTGCCTGGGCGGCCGACCTGCCCAACGTGCTGTGGATGACGGGCGGCGACTACACCCCCGATCCGGCCACGGACGCCTGCTTCGAGGCGGTGCAGGCGGGGATCCGATCCACCGGCGACCAGCGTCCCTTCTCCGCTCAGCTCATCTCGGTCCGGTTCGCGGGCCAGGACGAGCACTGGGGACCGCTCGTGGACTGGGACTTCGTCTACACGTACCAGCCGGTCTACGAGGCGGTGAGCGCGGCGTACGAGACGGCGCCGGTGCGGCCGGCGCTCCTCGCCGAGTCGAACTACGAGGGAGAGAACAACACCGGCGGCGAGCCGACCACGACCGAGACCCTGCGACGCCAGGTGCTGTGGGCGATCACCTCGGGGTCCCCGGGCGACGTCTACGGCAGCGACGACTGGGAGTTCCTGCCCGGCTGGCAGGAACGGTTGCGCTCGCAGGGTGCCGAGCAGGTGGCCCGGGTCCGTGACGTCGTCGCGTCGTTGCCGTGGTGGACGCTGCAGCCGGACCCCGGGCGCCTGCTGACCGGCGGTGCGGACGGGGATGCCGGGGCCACCGACCAGCTCGGGAGCGACCGTGCGACGGCGGCGGTGAGCCCTGACGGTGACCTCGCGCTCGTCTACGTACCGACGGACCGGACGATCACGCTCGACGTGGAGCGGCTGGCAGCGGGTGCCGGGGCCTGGTGGGTCGACCCCACGACGGGCGAGCCCGCCCCGGCCACGCTCGACGTGTCCATGACGACGCCGGGGCCGAACGCCGCCGGCGACGGCGACTGGCTGCTCGTGCTCGGCACCCACGCCGTGGGCTGA	MRRPVRGAVLTVVVVTVVAAGTLVGYQLLQPAAPTQDGWYERPPAADAPVRSVTPSTARPADDGAPRWVSAISDDERFFVDQDGDPILVRGDAPWSLLVDLLPDEAETYLTTRSEQGFNALVVSLLGNPANGGPSGDGSTVDGVLPFTDGDVTRWNPVYWDRAHATLGRAAELGLTVLLYPVDSWTIAEPFGSPPPDVCREYGAMVGAWAADLPNVLWMTGGDYTPDPATDACFEAVQAGIRSTGDQRPFSAQLISVRFAGQDEHWGPLVDWDFVYTYQPVYEAVSAAYETAPVRPALLAESNYEGENNTGGEPTTTETLRRQVLWAITSGSPGDVYGSDDWEFLPGWQERLRSQGAEQVARVRDVVASLPWWTLQPDPGRLLTGGADGDAGATDQLGSDRATAAVSPDGDLALVYVPTDRTITLDVERLAAGAGAWWVDPTTGEPAPATLDVSMTTPGPNAAGDGDWLLVLGTHAVG				NA	NA	NA	NA	NA
AK001_01958	924			hypothetical protein	ATGGACGCCCCCCGCGTGACGGTGGTCATGTCGACCAACCGCGTCTCGCCCTATCTGCCCGAGGCGCTGCAGAGCCTCAAGGAGCAGTCCTTCACCGACTGGCAGCTGATCGTCATGGACAACGGCTCGCCCGACCCGGACGGAGTACGGGAGGTGGTGGCGGCGGTCCCGGACGCGGAGATCGTGCGCGAGTCCGGCCACGGTGTGTCCGTCGCGCTCAATCATGGCGCCGCGCTCGCCCAGGGTGAATTCGTCACGTTCCTCGACGACGACGACGTCTGGCTCCCGGAACGACTCACGAGCCTGGTCACCGCGCTCGACGCCGACCCGGCGGCAGGGGGTGCCTACTCGTCGATCGACATCATCGACGAGCACGGGACGCGCCGGGGACGCCACTTCACCGCGGGCGACGAGTCCCGGAGGGACCTGCTGTCGGGACGTGTCCCGTTCCCCAACGTGGTCGGCTTCGTCTACCGTCGCGTCGACTTCCACCGGCTCGGCGGGTTCAACCCTGCGTTGCGCTACGCCGAGGACACCGACCTCACCTTCCGCATGCTCCAGTACTCGAGGCTGACGAGCGTGCCGGAGGTCCTGACGTTGTACCGTCGCCACCAGACCAACTCCACGCGCGGCGACCCCACCGTCGTCCACGACTGGGCCCGGCGCATGATCGGCATGCAGCTCTGGGGCGCCGAGCACCACCGGGACCCCGCCGTGCTGCGCGACGTCCGCGCCAACCTCAAGGCCCTGAACACCAGCGACGCCGCGGACTCGGTCGGCGCGGGCATCGACCGGCTCCGCCGCGGGCACGTCGCCGGGGCGTCCCGGATGCTCGCGCGGGCCGTGCGGCTCGACGCGCGGACCGCGGCGCGCGAGACGGCACGACGGGTCCGGAACCGGCTGCGGCGGCCGGACCCCACCTGA	MDAPRVTVVMSTNRVSPYLPEALQSLKEQSFTDWQLIVMDNGSPDPDGVREVVAAVPDAEIVRESGHGVSVALNHGAALAQGEFVTFLDDDDVWLPERLTSLVTALDADPAAGGAYSSIDIIDEHGTRRGRHFTAGDESRRDLLSGRVPFPNVVGFVYRRVDFHRLGGFNPALRYAEDTDLTFRMLQYSRLTSVPEVLTLYRRHQTNSTRGDPTVVHDWARRMIGMQLWGAEHHRDPAVLRDVRANLKALNTSDAADSVGAGIDRLRRGHVAGASRMLARAVRLDARTAARETARRVRNRLRRPDPT				NA	NA	NA	NA	NA
AK001_01959	825	tagG	COG1682	Teichoic acid translocation permease protein TagG	GTGACTACGACGAGGACTGTCATCGCCCCGCCGGGACGGCTGAACCTCCCGCACTGGCGCGAGCTGTGGGAGGCGCGGGAGATCTTCTACCGCTTCGGCATCCGCGACGTCGTGCTGCGCTACCGGCAGACAGCCGTCGGCGTGACCTGGGTGGTGCTCCAGCCACTGGTCACCGCGGGCATCTTCGCCATCGTCTTCGGGCGCGTCGCGGGCCTCCCGACAGGTGGCGTGCCGTACCTCCTCTTCGCGTTCGCCGGCACGACGGCCTGGACGGTGTTCTCCGGCGTCCTGACGCGATCCGCTCCGTCCCTGGTGGCGAACCAGGCGCTGGTGGCCAAGGTCTTCTTCCCGCGGGTGGTCGTGCCGCTGTCCACGACCCTGTCCGTGCTGCTCGACTTCGTCGTCTCGCTCGCCATGTTCGCGGTGCTGCTGGTCGTGTACGGCGTGAATCCCGGCTGGGCGCTGCTCGGGCTGCCGCTGTGGACGGTGTGCGCGGTCGCGCTCGGGTCCGGCCTGGGCCTGGCGGCGTCCGCCATCATGGTGAAGTACCGCGACGTCACCTACGTGCTGCCCTGGATGGTCCAGGTCCTGATGTACGCGACGCCCGTCGCCTACTCTCTCGACGCCGTGCCGTCGAACCTGATGTGGCTGTTCGCGGGCAACCCGCTCACGTGGCTGATGGAGTGCTTCCGCTGGTCCATGCTCGGGACCGCGGCCCCGCCCGCCTGGCAGGTCGTCGGTCTGGTGGTGGCGTCGCTGATGGCGCTGGCCGGTGGGCTGCTGGTGTTCCAGCAGCGTGAGCGCGAGTTCGCGGACGTGATCTGA	MTTTRTVIAPPGRLNLPHWRELWEAREIFYRFGIRDVVLRYRQTAVGVTWVVLQPLVTAGIFAIVFGRVAGLPTGGVPYLLFAFAGTTAWTVFSGVLTRSAPSLVANQALVAKVFFPRVVVPLSTTLSVLLDFVVSLAMFAVLLVVYGVNPGWALLGLPLWTVCAVALGSGLGLAASAIMVKYRDVTYVLPWMVQVLMYATPVAYSLDAVPSNLMWLFAGNPLTWLMECFRWSMLGTAAPPAWQVVGLVVASLMALAGGLLVFQQREREFADVI	PGPT0023304_1211	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023304-ABC_2_LPSE_P|wzm|rfbA|tagG-K09690	NA	NA
AK001_01960	1113	btuD_10		Vitamin B12 import ATP-binding protein BtuD	ATGATCGCGCGTCTCAAGCACCCCCTCCACCAGCGCGAGTTCGAGACGTTCGAGGCCCTCCACGACGTGTCGTTCGACATCCCCTGGGGCGAGGCCGTGGGGATCGTGGGACACAACGGCGCGGGCAAGAGCACCCTGCTGAAGATCCTCACCCGCATCACCGCACCCACGACAGGTCGGGCCGAGCTGGGCGGCCGCGTGGGGAGCCTCCTCGAGGTGGGCACCGGGTTCCACCCGGAGCTCACCGGGCGGGAGAACATCTATCTCAACGGCTCGTTGCTGGGCATGGGACGCCGTGAGATCCGGCGCCGCTTCGACGACATCGTCCGGTTCTCCGGCATCGAGAAGTTCCTCGAGACTCCCGTCAAGCGGTACTCGTCCGGCATGTACGTCCGACTGGCGTTCTCCGTGGCGGCGCACCTCGAGACGGAGATCCTGGCCATCGACGAGGTCCTCGCCGTGGGTGACGCCGAGTTCCAGCGCAAGTCGCTGGCCAAGATGCGCGACGTCGCCAAGGACGGCCGCACCGTGCTGTACGTGAGCCACCAGCTGCAGACGGTCACGACGCTCTGCACGTCCGCGATGTTCCTCGACCAGGGTCGGCTCGTGCGTCACGGTGCCGTCGAGAGCGTCATGGACGCCTACCGGGAGAGCTTCGAGGGACACCGGACACGTCAGGTCGACGCCGACCGGCGACCAGGGAACGGCCAGATCCGGATCCAGGACGTGTCCACCGCCGAGATCCGGGAGCCCGTGGACGAGACGGTCATCCGGTTCGACGTCGGCGCGAATCCCGAGATCGTCGGGAAGTACTTCGTCTCGTGCAACATCCGGGACCACCAGGGGCTCGTCGTCGCGCAGGCCGACTCCCGGCTCGTGGGTCTGTGGCTGGACCCGTCCGAGCCACGTCGCGGCGAGCTGCGGATCAAGGACCTCTGGCTGCGGCCCGGTCCGTACACGGTGGACCTGTGCCTGTGCCAGGCCGGAGTCTTCGACGAGTGGCGCGCTGCCGCGGGCTTCGAGGTCCTGCCGCACCTCCCGTATCCCGATCTCGTGACCGAGGACGGCATCTTCGGCGCCGTCCTGTGCGACTTCGACTACGAATCCTGGTGA	MIARLKHPLHQREFETFEALHDVSFDIPWGEAVGIVGHNGAGKSTLLKILTRITAPTTGRAELGGRVGSLLEVGTGFHPELTGRENIYLNGSLLGMGRREIRRRFDDIVRFSGIEKFLETPVKRYSSGMYVRLAFSVAAHLETEILAIDEVLAVGDAEFQRKSLAKMRDVAKDGRTVLYVSHQLQTVTTLCTSAMFLDQGRLVRHGAVESVMDAYRESFEGHRTRQVDADRRPGNGQIRIQDVSTAEIREPVDETVIRFDVGANPEIVGKYFVSCNIRDHQGLVVAQADSRLVGLWLDPSEPRRGELRIKDLWLRPGPYTVDLCLCQAGVFDEWRAAAGFEVLPHLPYPDLVTEDGIFGAVLCDFDYESW	PGPT0023305_1176	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023305-ABC_2_LPSE_A|wzt|rfbB|tagH-K09691	NA	NA
AK001_01961	948			hypothetical protein	GTGACGCCGACGGTCCGCAGCCTGGTCGTCGTCCTGTCGTTCCACGGGGCCGAGGACACCCTGGCCTGCGTCGACTCGGTGGTCCGCGGGTCCCCCGGTCACGACGTGCTCGTCATCGACAACGGGTCGTTCGACGGCGTGCTGGAGCAGGTCGCGCGCAGGTGGCCGCACGTCGAGACGCTGCAGACGGGGACGAACCTGGGGTTCTCCGGCGGGATGAACGCCGGCGTCGCCGCCGGCCTGCAGGGCGGCTACGACGTCGTCACCGTCCTGAACAACGACACGCTCGTCGACCACGGCGCGCTCGACGAGGTCGTCGGCGTCGCGGCAGGCGGTGGCGTCGCCGTCAGCCCGCGCGTCGTGTACCGCGACGACCCGAGCCGCACCTGGTTCGAGGGCGGACGGCTGGACCCGGACGACGGGCTCCCCCGGCACATGGCTCCTCACGAGGCCGCTGCGGCCGGTGCGCGCGACGACGGCGATCCCTACGCCGTCGACCTGCTGGCCGGGTGCTGCGTGACGGCGTCGGCCGCCACCTGGCGAGACGTCGGGCCCTTCGACGAGCGGTACTTCCTCGACTTCGAGGACTCGGACTGGAGCATGCGGGCACGGTCCGGCGGCACCACCTTGCTGGTCGTGCCCCGCGCACGGATCCGGCACGGAGTCTCGCAGTCGTTCACGGGCGCCTACGCCTACCTCGGCACCTACTACTACCTGCGCAACCTCCTGCTCTTCGCCTCCACCTGGCTGCCGGCGCGGCAGCGTCGACGTCTCCTGCGCACACGGGTGCTCCCGGCCCCGGTGCGCGACGGCCGGGAGCACGGGCTGCGGGCCGGGCTGCGCACCGGTCGGATCCTGGCGCGTGCAGCCGCCGCACGGGTGCGGGGGTCGTACGGCCGCGCACCCGCCCGCCTGGAGCGCCTGGCACGACGCTGGTCGGCCGGCTAG	MTPTVRSLVVVLSFHGAEDTLACVDSVVRGSPGHDVLVIDNGSFDGVLEQVARRWPHVETLQTGTNLGFSGGMNAGVAAGLQGGYDVVTVLNNDTLVDHGALDEVVGVAAGGGVAVSPRVVYRDDPSRTWFEGGRLDPDDGLPRHMAPHEAAAAGARDDGDPYAVDLLAGCCVTASAATWRDVGPFDERYFLDFEDSDWSMRARSGGTTLLVVPRARIRHGVSQSFTGAYAYLGTYYYLRNLLLFASTWLPARQRRRLLRTRVLPAPVRDGREHGLRAGLRTGRILARAAAARVRGSYGRAPARLERLARRWSAG				NA	NA	NA	NA	NA
AK001_01962	837			hypothetical protein	ATGGACCCACGTCGTGTCGGTGCGTACGTCCTGCCGGGCGACCCCACCTGGCTCCGGCGCACCCTCTCGGTCTACTACCCGCTGCTGGACGATCTGGTCGTCCCGGTCCCGGACGGGGCCCGCGGCTGGACCGGGCGACGGCTGCCCGTGGAGGAGTGCCTCGACATCGTCCGGGACGTCGACGCACGCGGCATCGTGCACCTCGTCCACGGGAGCTGGGTCGATCCCCGCGACCCGCTCGGCGCCGAGACCCGACAGCGTCAGGCCGCCGTCGACGCCCTGGCGGAGACGGACTGGGTCGTCCAGGTCGACGGCGACGAGCTGCTGCCGTCCGCCGACCTGCTCGTCCACGCGATGGACCGCGCCGACGCCCGTCAGGTCGACGCCGTCGAGCTGCCGATGCGCGTCGTCTTCCGGCGCACGCGTCGCGCCCGCTACGAGGTCGTCCAGTCCGACGGCGCCCCGCATCTCGAGTACCCCGGGCCCGTGCTGGTCCGTCCCTCGGCGCGGCTGGCGTACTCCCGCAGGACCCACGGCGGCGTCCTGCGTCTCGTCGTGCCCGGCGACACCTCGCTCCAGGCGTCGAGGTCACCGGAGCCCGGCGAGGTGCGCGAGGAGCTACCCGACCGGCTCGGCACGCTCATCCACAACTCGTGGGGCCGCAGCCCCCGCGAGATCCTGGCGAAGGTCCGCTCCTGGGGTCACGCCCACGACTTCCACCGCTACCGGTACTACTGCGTTACGTGGCTCCCGGCACCGCTGACCTGGCGTCTCCTGCGCAACTTCCATCCGTTCTCCCGCGACCTGTGGCCGCGCCTGCGACGCGTGGTCGGCTGA	MDPRRVGAYVLPGDPTWLRRTLSVYYPLLDDLVVPVPDGARGWTGRRLPVEECLDIVRDVDARGIVHLVHGSWVDPRDPLGAETRQRQAAVDALAETDWVVQVDGDELLPSADLLVHAMDRADARQVDAVELPMRVVFRRTRRARYEVVQSDGAPHLEYPGPVLVRPSARLAYSRRTHGGVLRLVVPGDTSLQASRSPEPGEVREELPDRLGTLIHNSWGRSPREILAKVRSWGHAHDFHRYRYYCVTWLPAPLTWRLLRNFHPFSRDLWPRLRRVVG				NA	NA	NA	NA	NA
AK001_01963	3255			hypothetical protein	GTGGCACGACGCACCGTGGTGGTCGTGGGGGTCCTGCTGGCGTGCGCCGTCGTGGTGGCACTGGTCCTCGTCCCGGGTGCCGACGACGTGCCGGAGCCGGTGGAGGCGCCGGCGGCGACGGTGGTCACGGGCGACGTGCCGGTGTGCGGCGTGCCGGACCTCGGACAGGTCGTGGACGACGGCGTGGACGCGGCCGCCCTGCCCGGGTTCCGTACGGTCGTGCCCGACGTGCTGCCGCCCGCCGGCACGCTCGTGACGGCCCGCGTCCACGGCGGCACGGGCTTCGTGATGTCCCGCGACGAGGCCACCTACACCGTCGCCCGTTTCGATCTCGACGACGGGAGCCCGCAGGGCGAGACCGTGGTCGAGCTGCCGTGGGAACCCGGCCACGAGATCTTCGGCGTCGGTTCGTTCGAGGTCGACGACGACGGCGCGATCTATCTCGTGGACCCGCTCATGGGCCGCCGCGACCTGCTGAAGATCGCCGCTGACGGCACCGAGCAGTGGCGGGTCGCGCTGCCGTCCGGCGACCAGACGACCGGTGCCGTCACCGACCTGGTCAGCGGCACGACGGCGTGGGACGCCCCGGACGGCGGGAGGATCGTCGGCGTGGGTGACGCCGGTGCCGTCGTGCATCGGGTGACCGCCGACGGCGAGGCGCTGGACCCGCTGGACGTCGACGGGTCCGTCCTCGGTGCGCTGGACGACGGCGCCGTGGTCTACCGGGCGGACGGCCCGGGTGGCCGCTCGCTGACGGTCGTCGGGCCGGACGGTGCGGAGCGTGCGCGCCTCGGGGCGCCGCCGTCGTCGGACCGCCCCGTCGGTGTGCCGGGTCTGCCGTGGACGGGGGCGACCGGGGCCGCGTCGGCTCCCGACGGCGGGCTGCTGCTGGCCGAACCGGGTACGGGCCTGCGCTGGTACGGCAGCGACGGCGTGCGGCACGGTGTCTGGCCGGCCACCGGCGGCGACGTCGAGCAGCCGTTCGTGCCGTGGGACCGCACGCCCGTGCTGCACGACGGCGGCGACTACTTCCTGCTGACGTACGGGCACGACGGCGCCGTCTCGCTCACCGCGATCAGCGACGAGCGGATGGCGTACGGGCTGCGGGACCCGGTCGCGATCACCGCCGGTACCGAGGACCTCGTGGCCACGCTGGGCCTGGGCGCGGGTCTCCTCGTCGACCGGCCCTACGCGGTCTTCGGCGCCGAGGAGAGGCCGCGCGTGGTGGCGGCGTTCGATCCCGCCTGGGGCGCGCACGCCGATCGGTACCGGCTGCGCTACCAGGTGCGTGGCGACCCGCGCGTGCCGTCCCCCGTCGTCGGGGACGTGCACGTGGTCGACCTGCCGGCCGAGGGCGGCACGGTCGACCTCGACCTCCCGCCCGCGCGTCCCGGGGTGTACGAGGTGGACGCCGCCCTGCTGGGCGCCGACGACGCGCCCGTGTCCGGCACGTGCCTGCGGTACACGGTGACCCCCGAGGGCAGCAGGCTCGACCCCGCGGCGCTCGCCGAGGGAGCGGACTGGGGCGGCGCCGCACCGCTGCGCGGGGTGCAGCTCGCGGACCAGCTCGGGGTCGGGTCCCACCGGGTGCAGCTGGACCTCGGCGCGCTCGTCCCGGACCCGAGCGCGCCTCCCGACCCGGCGGCGATCTCCTGGGACGCCCTGCCGGGGGCCGGCCTGCACGCCGAGGACGGTGCGGAGGCGGACCCGTTCGCCGATCTGGCGGCCGCGGTCCGGCTGGCCGAGCGCACCGGGGTCCGCCTCGTCGCCCAGGTCGGTCAGGGCAGCGAGGCGGACCGGGCCGCCGTCGAGGCCGGGACGTGGCAGGGCTGGGTGGAGGCCGTCGTCGCCGGTCTGCACGAGCACGGGGCCGGGATCACCTCCTGGCAGCCGTGGAACGAGCCGAACAACACCGGCTACGAGGACCCGGCCCGCTACGAGCGCGAGGTCGGCGGACCGTTCGCCCGCGGCGTGCGCGCCGCCGACCCGGACGCCGTCGTCGTCGGGGGCAACACGCTCGGGTTCGCCCTGGACTGGTGGCGGGGCCTGGTGGACGCCGGGGGGTGCGCGTCGATGGACGCTGTGGGGATCCACCCGTACACCGGGTACAACCGGTCGTGGGAGGAGGAGGGGTTCTCCCGCGACGGCGCCGAGGTGGACGCGCTGCGCGAGATCCTCGCCGACTGCGACGGGCTGGCCTGGTGGGACACGGAGTCCGGGTGGTGGTCGGACGGGGTGGTGAACTTCTGGGCGGCCGGGTGGGACGTGGCCCGCAAGCTGTGGTGGTACGAGGTCGAGGACGTCGCCGAGTGGACCTACTTCTTCAGCGAGGGCGGGTTCGGCGAGAACGGTGTCTCGTGGTCGCTCGTGCAGTACGACGGCTACGTCAAGCCCGCCGGCGCGGCGATGGCCGCCACCGCGCCCCTGCTGGACCGGTACGACGACGCGACGACGGTGGCGACGGGCGTGCCGGGCGTGCACGCCGTGCGGGCGGTGGCCGACGACGGGTCGTCGATCCTGGCGCTGTGGTCCGAGGGCCTGAGCACCGCCGTCGTCGTCACGCCCGGCGAGGACGCGTCCACGGACGACGTCGAGGTCGTGCGCCGCGACGTGTACGGGGCCGAGTCGCCCCTGGACCTCGGGGCCGACGGGACGGAGGTGCCGGTGAACGGCAGCCCGGTGATGCTGCGCGCGCCCGCGGGGCGGGAGCTCGCGGTCCGTGCCCCGGAGGCGTTCGGCCCGGACGTGCTCGCCGGAGCCGCGGTGGTGGCGTCGTCCACCCACCCGGACGCTGGGAACCCGGCCACGATCACGTCGGGCACGTTCGCCGTCCGTGACCCGTGGCGTTCCGGCCGGCTCGCCGACGGGTCGGTGGACCCCGCCCCGTCGGTGACGGTCCGGCTCGACGAACCCGTCGTGGTGGATCGCGTCGCCGTCGCCACCGCCGGGATCCGCTGCTGCACGGCGGGCCTGCGCCACTACACCGTGCAGGTCCGGACGTCGGACGGAGAGTGGCGCGAGATCGGCACCCGGACCGACCAGCTGTGGGACCGCGTGGCGCTGCTGCGCACCGACCCGGTGGAGATCACCGCCGTGCGGGTGACCGTTCCGTGGACGCGGATCCGCGGCACCCGGGTGCTCGACGTCAACCACACCGGCGTGCTCGGCGGCCCGCCGACGACGTTCATGGGGTTGTCCACCGAGAGCGACTGGCTCGTCGCGGTGAGTGCCGTGCAGGCCTGGTCCGGGCCGTGA	MARRTVVVVGVLLACAVVVALVLVPGADDVPEPVEAPAATVVTGDVPVCGVPDLGQVVDDGVDAAALPGFRTVVPDVLPPAGTLVTARVHGGTGFVMSRDEATYTVARFDLDDGSPQGETVVELPWEPGHEIFGVGSFEVDDDGAIYLVDPLMGRRDLLKIAADGTEQWRVALPSGDQTTGAVTDLVSGTTAWDAPDGGRIVGVGDAGAVVHRVTADGEALDPLDVDGSVLGALDDGAVVYRADGPGGRSLTVVGPDGAERARLGAPPSSDRPVGVPGLPWTGATGAASAPDGGLLLAEPGTGLRWYGSDGVRHGVWPATGGDVEQPFVPWDRTPVLHDGGDYFLLTYGHDGAVSLTAISDERMAYGLRDPVAITAGTEDLVATLGLGAGLLVDRPYAVFGAEERPRVVAAFDPAWGAHADRYRLRYQVRGDPRVPSPVVGDVHVVDLPAEGGTVDLDLPPARPGVYEVDAALLGADDAPVSGTCLRYTVTPEGSRLDPAALAEGADWGGAAPLRGVQLADQLGVGSHRVQLDLGALVPDPSAPPDPAAISWDALPGAGLHAEDGAEADPFADLAAAVRLAERTGVRLVAQVGQGSEADRAAVEAGTWQGWVEAVVAGLHEHGAGITSWQPWNEPNNTGYEDPARYEREVGGPFARGVRAADPDAVVVGGNTLGFALDWWRGLVDAGGCASMDAVGIHPYTGYNRSWEEEGFSRDGAEVDALREILADCDGLAWWDTESGWWSDGVVNFWAAGWDVARKLWWYEVEDVAEWTYFFSEGGFGENGVSWSLVQYDGYVKPAGAAMAATAPLLDRYDDATTVATGVPGVHAVRAVADDGSSILALWSEGLSTAVVVTPGEDASTDDVEVVRRDVYGAESPLDLGADGTEVPVNGSPVMLRAPAGRELAVRAPEAFGPDVLAGAAVVASSTHPDAGNPATITSGTFAVRDPWRSGRLADGSVDPAPSVTVRLDEPVVVDRVAVATAGIRCCTAGLRHYTVQVRTSDGEWREIGTRTDQLWDRVALLRTDPVEITAVRVTVPWTRIRGTRVLDVNHTGVLGGPPTTFMGLSTESDWLVAVSAVQAWSGP				NA	NA	NA	NA	NA
AK001_01964	1074			hypothetical protein	ATGACGACGCGCGCGGTGGCGTTCTACCTGCCCCAGTTCCACCCCGTCCCCGAGAACGACGAATGGTGGGGGCCGGGGTTCACCGAGTGGACGAACGTGGCCCGTGCGCGCCGCCTCTACCCGGGGCACGTGCAGCCCCACCTGCCGGCGGACCTCGGCTTCTACGACCTCCGGGTGCCGGAGACGCGGGACGCGCAGGCCGAGCTCGCCCGCGCCCACGGCGTCGAGGCGTTCGCCTACTGGCACTACTGGTTCGGGAACGGGCGACGGATCCTCGAGCGCCCCTTCGCCGAGGTGCTCGCCTCGGGCCGGCCCGACCTGTCGTTCTGCCTCGCCTGGGCGAACCAGACCTGGAGCGGGATCTGGCACGGCGATGCCGACAGGGTCCTGGTGCGCCAGGACTACCCGGGCGACGAGGACCACGCCGCCCACTTCGAGGCGGTCCTGCCGGCGTTCCGCGACCCACGCTACCTGCGGGTCGACGGCCGACCGGTGTTCTACGTCTTCCGTCCCGAGGAGCTGCCCGACGCCGGTCGGTTCGTCGACCTGTGGCAGTCGCTGGCCCGCCGCGCGGGCCTGGAGGGCCTCTACCTCGTCGCGGAGATGAGCGACATCGACGGCCGAGGCGTGCGCTACGACCGCGTCAAGGAGGACGGCTTCGACGCCGGCGTGTACATGCGCATGCCGGCCGGCAGGTCACGGCTCGACATGCTGCGCATGCGTGCCTACCGCAAGGTGGTGGGCGGTCCCGAGATCCACCCGTACTCGACGGCCTGGGACGAGCAGAACCGTACCGGCGACCTCGTCCAGCCGTGCGTGTACCCGAACTGGGACAACACGCCCCGTTCCGGACGGCGCGGCGTCGTGCTGCACGGCGCGACGCCGGCGAGGTTCCGCGAGAACGTGCGCCGGGCCGCCGCCTCCGTGGCGCACCGGCCGCCCGACGAACGGCTGCTGTGGGTCAAGTCCTGGAACGAGTGGGCCGAGGGCAACCACCTCGAGCCGGACCTGCGCCACGGGCACGGCTGGCTGGAGGCGTTGCGCGACGGGCTGCGGGAGGGAGAGGGGGGATGA	MTTRAVAFYLPQFHPVPENDEWWGPGFTEWTNVARARRLYPGHVQPHLPADLGFYDLRVPETRDAQAELARAHGVEAFAYWHYWFGNGRRILERPFAEVLASGRPDLSFCLAWANQTWSGIWHGDADRVLVRQDYPGDEDHAAHFEAVLPAFRDPRYLRVDGRPVFYVFRPEELPDAGRFVDLWQSLARRAGLEGLYLVAEMSDIDGRGVRYDRVKEDGFDAGVYMRMPAGRSRLDMLRMRAYRKVVGGPEIHPYSTAWDEQNRTGDLVQPCVYPNWDNTPRSGRRGVVLHGATPARFRENVRRAAASVAHRPPDERLLWVKSWNEWAEGNHLEPDLRHGHGWLEALRDGLREGEGG				NA	NA	NA	NA	NA
AK001_01965	1089	pimA_2	COG0438	Phosphatidyl-myo-inositol mannosyltransferase	ATGACCTCGACCCCACCGACCGCGGTGGAGACGCGGGACCCCGCGCCGAGCCGGCCGCTGCGCGTCGCGATGATCTCCTACTACCTGCCGAGCACCAGCAAGCAGGGCGTCGGCTACCAGGTGCACGAGCTCGCCACGGAGCTCGTGCGGCGCGGCCACGACGTGGACGTGATCAGCGAGTGCCCGCCCGTCGCCGGAGCGGTCTACGGTCATCGGCACGTCGAGCTGTCCGGTTCTCTGCGCACCTTCCGGTTCGCCGCTGCGGTGCGCCGCCTCGACCTGTCGGGGTACGACGTCGTGCACGCGCACGGGGACGACTACTGGATGTGGCGGCGTCGGACGGACCGGCACGTGCGCACGCTGCACGGCTCCTGCTTCGAGGAGGCCCGCCGGATCCGTGGGCTCAAGGAACGCACCCGCATGGTGCTGCTCGGGATGTCCGAGGTCCTGGCCAGCGTCGTGGCCGACCACACGGTCGTCGTCTCGCCCGGCACGCGGCGCTGGTACCCGTGGGTGCGCGACGTGGTGCCCAACGGCATCGACCTGCACCGCTTCCGCCCGGGGACCGGGGCGGGGGAGCGGACCCCGCACCCCGTCGTGCTGTTCGTCGGAGCCTGGGTCGGTCGGAAGAACGGCGACGAGCTGGCCCGGCAGTTCGTCGCGCAGGTGCGTCCGCGCCACCCCGAGGCGGAGCTGTGGATGGTCTCCCGCGACGTCCCCGAGGACGCCGGCCCGGGCGTCCGGGCGCTCGGCGCGCTGGACGACGCGCAGCTGGCCGAGGCCTACCGACGGGCCTGGGTCTTCTGCCTGCCGTCCGACTACGAGGGATTCGGCATCCCGTACGTCGAGGCGATGGCGAGCGGCGTGCCGGTGGTCGCCACCCCGAACGTCGGGGCCCGCTACGTCAGCGACGAGGGTCGTGCGGCCCTGCTCACGCCGCTCGACGGCGTCGGTGCGGCCCTGGCCGACCTGCTGGGCGACGCGAGCCGGCGGGCCGCGCTCGCCGAGGTCGGCGCGACGAGGGCGCAGGACTTCTCGCTCGCCCGCACCGTCGACCGGTACGAGGAGCTCTACCGCAGCACGGTGTGA	MTSTPPTAVETRDPAPSRPLRVAMISYYLPSTSKQGVGYQVHELATELVRRGHDVDVISECPPVAGAVYGHRHVELSGSLRTFRFAAAVRRLDLSGYDVVHAHGDDYWMWRRRTDRHVRTLHGSCFEEARRIRGLKERTRMVLLGMSEVLASVVADHTVVVSPGTRRWYPWVRDVVPNGIDLHRFRPGTGAGERTPHPVVLFVGAWVGRKNGDELARQFVAQVRPRHPEAELWMVSRDVPEDAGPGVRALGALDDAQLAEAYRRAWVFCLPSDYEGFGIPYVEAMASGVPVVATPNVGARYVSDEGRAALLTPLDGVGAALADLLGDASRRAALAEVGATRAQDFSLARTVDRYEELYRSTV	PGPT0024295_610	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024295-pimA-K08256	NA	NA
AK001_01966	660			hypothetical protein	ATGTCACCGACGCGCGCCACACTCCCCGGCGGGACCAGGACCGAGCAGCTCCTGCTGCTCGGGCTCCTCCTGGTGAGCGCCGCCGTCCTCGCGGCCCTGTTCCTGGTCTCGGTCCACACCCCGGACGGGCGCGGGGCCGACGAGCACGTGCGGGTCTGGGCCGTCCGCGAGCTCGCCGGGCTCCAGCCCGTCGGGGCCTTCCTGCGCTCGACGTTCCCGCTCGTGCTCGCCGCGACGTCGGTGGTGCTCGCCGTCGTCGCCCTGGTGCATCGCCGCGTCGCCCCGGTGGTGGCGGCGGGGTCGATCGTCGCGGTCTCGGTGCTCCTGGCGCGTGTCCTGCGCGAGCGGCTCCCCCGGCCACCGGGCGGGACCCCGCTGGACGGCGACGCCGTCGTCAACACGTTCCCCAGCGGCCACGTCGCCGCGTCGGCGAGCCTGCTCGTGGCGGTGCTCCTGCTGTGGCCGCGGCGCCCCGTGCCCCGGACGGCCCTGGTGCTCGCCGCGGTCCTGCTCCTCGCCACGGCTCTCGGGTCGGTCGTGACCCACACCCATCGACCGAGCGACGTCGTCGGTTCGGTGCTGCTGGTCGCTGCCGTCAGCTCCGCGGCGGTTCTGGTCGCCCGAGCGACGGCGGCCCGTGGCCGCAGCAGACCCCCGTGA	MSPTRATLPGGTRTEQLLLLGLLLVSAAVLAALFLVSVHTPDGRGADEHVRVWAVRELAGLQPVGAFLRSTFPLVLAATSVVLAVVALVHRRVAPVVAAGSIVAVSVLLARVLRERLPRPPGGTPLDGDAVVNTFPSGHVAASASLLVAVLLLWPRRPVPRTALVLAAVLLLATALGSVVTHTHRPSDVVGSVLLVAAVSSAAVLVARATAARGRSRPP				NA	NA	NA	NA	NA
AK001_01967	3606	mfd	COG1197	Transcription-repair-coupling factor	ATGAATCTCACCGGCATCGTCCCCGCTCTGCTCGCCGACCCCGGCGCCGCCGCCGCGCTCGAGGCCGTCGGGAGCGGTGGCGAGGTCGACGTCGTCGGGCCGAAGGGCGTCCGGGCCCCGCTGCTCGCCGCGGCGTCCGAGCAGCGCCCCCTGGTCGTGGTCACCGCGACCGGCCGCGACGCGGACGAGACGGCAGCGGCGCTGCGTGCCTACCTGCCGGACGAGCGGTCCGACGGCGTCGCGGTGCTGCCTGCCTGGGAGACGCTGCCGCACGAGCGGCTCTCGCCCCGTGCCGACACCGTGGCCCGGCGCCTCGCGGTGTTCCGTCGGCTCGCGCACCCGGACGAGACCGGGCCGACCGGTCCGGTCGACGTGCTGGTGATGCCGGTCCGCGCCCTGCTGCAGCCCGTCGTGGAGGGGCTCGGCGAGCTGGTGCCCGTCGAGCTGCACACGGGGCAGGAGGCGGACCTCACCGCGGTGGGCGACGCCCTGGTCGCCGCCGCCTACACCCGTGTCGACATGGTGGAGCGCCGGGGCGAGTTCGCGGTGCGCGGCGGCATCCTCGACGTCTTCCCGCCGACGGAGGACCACCCGCTGCGCATCGAGTTCTGGGGCGACGAGATCAGCGAGATCCGGTGGTTCGCCGTGGCCGACCAGCGCTCCCTGGAGATCGCCGAGCACGGGCTCTGGGCGCCGCCGTGCCGGGAGATCCTGCTCACCGACGCCGTGCGGGAACGCGCGGCCGGGCTCGTCGAGCAGCTCCCCGGCGCCACCGACATGCTGGACAAGCTCGCCGCCGGCGTGGCCGTCGAGGGCATGGAGTCCCTCGCCCCGGTGCTCGTCGACCGGATGGTGCCGGTGCTGGACCTGGTCCGTGACGACGCGCTGCTGGTCCTCGACGAGCCCGAGCGGGTCCGGCGTCGTGCCCACGACCTGGTGGCCACGACCGAGGAGTTCCTCGCCGCGGCGTGGACGGGGGCCGTGGCGGGTGCCGACGCCCCGATCGACCTGTCCGCCGCGTCGTTCGCCACCTTCGCCGAGACCCGCGAGGTCGCCGCACGGCGCGGGCTCGGCTGGTGGACGCTCTCGGCGTTCTCCCTCGACGCGGCCGAGGCGTCCGACGACGAGGTGCCGGCGGTCACCACGGACGACGGCGGCACCACGGTGACGATCGCGGCCCGCGACGTCGAGTCCTACCGCGGCGACGTCGCCCGGGCGCTCGACGACGTCCAGGGCCTGCAGAAGGCCGGGTGGCGCCTCGTGCTCACCACCGAGGGCCCCGGCCCGGCCAAGCGCATGGTCGAGCAGCTCGGCGCCGCCGACACCGCGGCCCGGCTGTCCACGGACCTGGCGGCCGAGCCCGAGGGCGGCGTCGTGCACGTGGTGCCGGCGCTGGTCGGCAAGGGCTTCGTGGTCCCCGAGCTGCGGCTCGCGGTGTTCAGCGAGGCCGACCTCACCGGTCGGCAGGGTTCCTCGACCCGCGACATGCGCAAGATGCCCTCGCGTCGGCGGAACGTCGTCGACCCGCTGCAGCTGCAGGCCGGCGACTTCGTCGTCCACGAGCAGCACGGCGTGGGGCGGTTCGTCGAGATGGTGCAGCGCACGCTCGGTGCCGGGGCGAACCGGGCCACCCGCGAGTACCTCGTCATCGAGTACGCCTCGTCCAAGCGGGGGCACCCGGGCGACCGGCTGTTCGTGCCGATGGACCAGCTCGACCAGGTCACGAAGTACACCGGCGGCGAGTCACCGAGCCTGAACAAGATGGGCGGTGCCGACTGGAAGAACACCAAGGCGCGCGCCCGCAAGCACGTCCGCGAGATCGCGAGCGAGCTCATCCGGCTGTACTCGGCGCGCCAGGCCACCGCGGGGCACGCCTTCGGCCCGGACACGCCGTGGCAGCGCGAGCTGGAGGACGCCTTCGCCTACGTCGAGACGCCGGACCAGCTCGTCACGATCGACGAGGTCAAGGCCGACATGGAGAAGACCGTCCCCATGGACCGGCTGATCTGCGGCGACGTCGGCTACGGCAAGACCGAGATCGCGATCCGCGCGGCGTTCAAGGCGGTGCAGGACGGCAAGCAGGTCGCCGTGCTGGTGCCCACGACGCTGCTCGTCCAGCAGCACTTCGACACCTTCTCCGAGCGGTACGCGGGCTTCCCGGTGAACGTGCGGGCGCTGTCGCGGTTCCAGAGCACCAAGGAGTCCGAGGAGACGGTCCAGGGGCTCAAGGACGGGTCCGTCGACATCGTCATCGGCACCCACCGGCTCCTCACCGGCTCGGTCACCTTCAAGAGCCTGGGCCTGGTGATCGTCGACGAGGAGCAGCGGTTCGGCGTCGAGCACAAGGAGACGCTCAAGCAGCTGCGCACCAACGTCGACGTGCTGGCGATGTCGGCGACGCCGATCCCGCGCACCCTCGAGATGGCCGTCACCGGGATCCGGGAGATGTCCACGCTCGCCACACCCCCGGAGGAGCGCCACCCGGTGCTCACCTACGTCGGGGCGTACGAGGAGCGGCAGATCGCCGCCGCCGTGCGCCGCGAGCTCCTGCGCGAGGGCCAGGTCTTCTACATCCACAACAAGGTCGAGTCGATCGATCGCACCGCGGCCAAGATCCGTGAGCTCGTGCCGGAGGCCCGCGTCGGCGTCGCGCACGGCAAGATGAGCGAGAACCAGCTCGACCAGATCATCCGCGCGTTCTGGGAGCGGGAGGTCGACGTGCTCGTGTGCACGACGATCGTCGAGACCGGCCTGGACATCTCCAACGCCAACACCCTGGTCCTGGAGCGTGCCGACACCTTCGGGCTCTCCCAGCTCCACCAGCTGCGCGGCCGCGTGGGCCGCGGTCGCGAGCGCGCCTACGCCTACTTCCTGTACCCGCCGGAGCGGCCCCTGACCGAGACGGCGCACGACCGGCTCGCGACCATGGCGGCCCACACGGACCTCGGTGCGGGCATGCAGATCGCGATGAAGGACCTGGAGATCCGCGGGGCCGGCAACCTGCTCGGCGGCGAGCAGTCCGGGCACATCGCCGGCGTCGGGTTCGACCTGTACGTGCGCATGGTCGGCGAGGCCGTGCGGGCCTTCAAGGGCGAGGGGGACGCCGAGGAGCCGGAGATCACGATCGAGCTGCCGGTGGACGCCCACCTGCCGGAGACGTACATCGCCACCGAGCGCCTGCGGCTCGAGGCGTACAAGAAGATCGCCGCCGCCCAGGACTCCGCGGCACTGGCCGAGGTGCGGGCCGAGCTGACGGACCGGTACGGGGCGCTGCCCGAGCCGACCGAGTCGCTGTTCTGGGTGGCCGAGTTCCGCAACCACGCCCGTCGCGCCGGGCTCACGGACGTCACCGCCCAGGGCAAGTACATCCGTTTCGCGCCGCTGGACCTCGCCGAGTCGGCCCAGATGAGGCTCAAGCGGCTCTACCCGGGCACCGTCCTCAAGCCCGGCATCCGGGCTGCACTGGTGCCCTTCCCGACGACGGCGCGCATCGGCGGCAAGCCGCTGCGCGGTGCGGCGCTGCTGGACTGGGCCCGCCAGCTGATCGACGCCGTCGTGCTCGGGGAGGTGTCCGCCGCGGCGGCGGCCGGGACGTCGGCGCGCTGA	MNLTGIVPALLADPGAAAALEAVGSGGEVDVVGPKGVRAPLLAAASEQRPLVVVTATGRDADETAAALRAYLPDERSDGVAVLPAWETLPHERLSPRADTVARRLAVFRRLAHPDETGPTGPVDVLVMPVRALLQPVVEGLGELVPVELHTGQEADLTAVGDALVAAAYTRVDMVERRGEFAVRGGILDVFPPTEDHPLRIEFWGDEISEIRWFAVADQRSLEIAEHGLWAPPCREILLTDAVRERAAGLVEQLPGATDMLDKLAAGVAVEGMESLAPVLVDRMVPVLDLVRDDALLVLDEPERVRRRAHDLVATTEEFLAAAWTGAVAGADAPIDLSAASFATFAETREVAARRGLGWWTLSAFSLDAAEASDDEVPAVTTDDGGTTVTIAARDVESYRGDVARALDDVQGLQKAGWRLVLTTEGPGPAKRMVEQLGAADTAARLSTDLAAEPEGGVVHVVPALVGKGFVVPELRLAVFSEADLTGRQGSSTRDMRKMPSRRRNVVDPLQLQAGDFVVHEQHGVGRFVEMVQRTLGAGANRATREYLVIEYASSKRGHPGDRLFVPMDQLDQVTKYTGGESPSLNKMGGADWKNTKARARKHVREIASELIRLYSARQATAGHAFGPDTPWQRELEDAFAYVETPDQLVTIDEVKADMEKTVPMDRLICGDVGYGKTEIAIRAAFKAVQDGKQVAVLVPTTLLVQQHFDTFSERYAGFPVNVRALSRFQSTKESEETVQGLKDGSVDIVIGTHRLLTGSVTFKSLGLVIVDEEQRFGVEHKETLKQLRTNVDVLAMSATPIPRTLEMAVTGIREMSTLATPPEERHPVLTYVGAYEERQIAAAVRRELLREGQVFYIHNKVESIDRTAAKIRELVPEARVGVAHGKMSENQLDQIIRAFWEREVDVLVCTTIVETGLDISNANTLVLERADTFGLSQLHQLRGRVGRGRERAYAYFLYPPERPLTETAHDRLATMAAHTDLGAGMQIAMKDLEIRGAGNLLGGEQSGHIAGVGFDLYVRMVGEAVRAFKGEGDAEEPEITIELPVDAHLPETYIATERLRLEAYKKIAAAQDSAALAEVRAELTDRYGALPEPTESLFWVAEFRNHARRAGLTDVTAQGKYIRFAPLDLAESAQMRLKRLYPGTVLKPGIRAALVPFPTTARIGGKPLRGAALLDWARQLIDAVVLGEVSAAAAAGTSAR				NA	NA	NA	NA	NA
AK001_01968	1122			hypothetical protein	GTGGCGCGGCTGCTGCTCGACGCAGCCTTCGACCGCCCGGCGCAGCGCTCGGACGACCTGGAGCCGGTGACCGGCACCGAGCTACGGGAGGCGGGACACTTGCACCGGGTCACGCCGGCGATCGCCCGTGCCGTGCGCGGTTGGGGCGAGCTGCCCGAGGGATGGGCTCCGGCGCTCCGGTCGGCACGGGAGCGGCAGCTGCTCCGGCACCTCCAGGCCCTGGAGGACCTGAAGGACCTCGGCGCGGCCCTGGACCGGGCGGGCATCGCGTGGGCCGCCGTCAAGGGGGCGACACTCGCGTCGGTCGCCTGGCCGCACGCCGACATGCGCGAGTACTTCGACCTCGACCTGCTCGTGCAGCCTGCGGCGTTCCGCGACGCCGTGGCGATCGTCGAGGAGGTCGGTGGCCGGCTGCTCGACCGGAACTGGCCGGCCCTGCGGTCCTCCCGGCGTGGTGAGCTGGCGATGGTCGGCCGCCACGGCACGCACGTCGACCTGCACTGGCACCTGGCCGTCGCGCCGTCCGTCCGGCGGGCGTTCCCTCTCGACGTCGACGCGATCCTGGCGCGTCGACGTCGGCACGAGCTGTCCGGGGCGTCCGTCCCGATGCTCGACGCCGAGGACCAGGCGCTGCACGTGGCCCTGCACGCGGCCCAGGCCGGCGCGAACCGGCTGATGTGGCTCGCCGACGCCTACTACGTCACCGCGGACGTCCGGTGGGACGAGCTGGCCCGGCGCAGCCGAGCAGCGCGTGCCGCCGTGCCGGTCGCCCTGGTGCTCGACCGGGCATATCGCGTCGCCGGGCACGAGGGCGTCCGCTCCGAGGAGCTGGCCCGCGCCGCCTCGCACGTCTGGGGACGGCTGGCCCGTTCCCGCGATGCCCGCCACCCCTTCCCGGGTCTGCCCGGTGACGCGCGCCTCGGCGGCGGTGTGTACACGGCCGCGCGGCCGTCCGCCGTCGCCAGCGCGGTCCAGCTGGCCGCCAAGCACCTGCAGGCACGGGCCATCGCCCGTCGGCACCGCACCGGTCGGGACGCCGTCCGTCCGCTCCAGCAGGACGTGCCCGACGCCGTGGCTCGCGAGGCCTACTTCGCCACGGCCGTGAGCGGAGGCCGACGATGA	MARLLLDAAFDRPAQRSDDLEPVTGTELREAGHLHRVTPAIARAVRGWGELPEGWAPALRSARERQLLRHLQALEDLKDLGAALDRAGIAWAAVKGATLASVAWPHADMREYFDLDLLVQPAAFRDAVAIVEEVGGRLLDRNWPALRSSRRGELAMVGRHGTHVDLHWHLAVAPSVRRAFPLDVDAILARRRRHELSGASVPMLDAEDQALHVALHAAQAGANRLMWLADAYYVTADVRWDELARRSRAARAAVPVALVLDRAYRVAGHEGVRSEELARAASHVWGRLARSRDARHPFPGLPGDARLGGGVYTAARPSAVASAVQLAAKHLQARAIARRHRTGRDAVRPLQQDVPDAVAREAYFATAVSGGRR				NA	NA	NA	NA	NA
AK001_01969	1857	ltxB	COG2274	Leukotoxin export ATP-binding protein LtxB	ATGAGCAGGACCGGACCGAACCGGTCGAAGCGCCAGGGGCGCCGTGTCATCGAGCTCGTGCGCCGCTCGACCCGACTCGTCTGGTCCTGCAGCCCGCGGCTGTTCGTCGCCATGGTGGGTCTGCAGCTCCTGGCCGCGGCCGCACTGGGCCTGCAGGTCCTCGTGGTGGCGCAGGTGCTCGAGCGCATCCTCGATCTCCCCGACGCCGGTGTGACCACGGCGCTGGTGTGGTCCGTCGTGGCGCTCGCGGTCCTCATGGCGCTGGGCTCCGTCGTCGGGGTGGCGCAGGGCAGCGTGCGACGACTGCTCGGCGAGCTCGTCGCCCGGTCGATGAACGAACGCGTGCAGGACGTGGCGACCACGGTGCCGCTGCGAAACTTCGAGTCGCCGGAGTTCTTCGAGATTCTCCAACGGGTCCGGCAGAGCGCCGCGACCCGACCCTTCCAGGTCACCCAGGGTCTCTTCACCGTCATCGGGACGCTCGTGTCGTCGATCGGTGTCGGCGCCGCGCTCGTCGCGCTGTACCCGTGGTTGCTGCCGCTGCTCGCCGTCGGAGCCGTGCCGGTCCTCCTGACCAGCCGGCGCGAGAGCGCGCTGGAGTTCCTCTTCACGGTGGCGCAGACCACCAACCAGCGCGAACGCATGTACGTCAACTTCGTGCAGACGAACCGCGACGAGGCCAAGGAGATCCGCGCGTTCCAGGTGTCCACCTGGCTGCGCGACCGGTACCGCACCCTGTACGACACCTACCTCGAGGCGCTGCGCAAGCACCTCCTGCGCCGCCTGCGGCTGTCGACCCTCGGCCAGGTGCTCTCGGGCGTCGTGCTCGCCGGGACGCTGCTCGTGCTGGTGGTCCTCATCGCCAACGGGGAGGTCGGGATCGCGGACGCCGGTGCGGCGATCGTCGGCATCCGGGTCCTGCAGGGGCAGTTCCAGGGACTGGTCGGCGGTGTCCAGCAGGTCCACGAGTCCGGCCTCTACCTCGACGACCTGCAGTCGTTCCTCCGCCACCACGCGCGGCAGGAGGCGACCTCGCCGGACCGGCGCGACAGTGCGCCCCCGTTCGCCGGGGCGCGCATCCAGGACGTGTCCTTCCGATATCCGGGGGCGACGACGGACGCGCTGACGGACGTGTCGATCGCGGTCGGTCCCGGTGAGGTCGTCGCCGTCGTGGGGGAGAACGGCTCCGGCAAGACCACGGCGGCGAAGGTCCTCGCCGGCCTCTACGACCCGGACACCGGTCACGCGATGTGGGGGGACCGACCGTACGGCACGCTGGTCGACGCCGACCTGCGGAGCCGGATCGCCGTGATCTTCCAGGACTTCGTCCGGTACGCCTTCTCCGCATCCGAGAACATCGCGCTCGACGACGCCGGCGCGGACGCCCGCCGCGACGAGCTCGGGAGGAACGACGTCCGTGCTGCGGCTCGTGCCGCCGGGGTGGACGGCGCGCTGGCACGCCTGCCGCACGGGTACGCGACGCGCCTGTCACGGATGTTCGACGACAGCGCCGACCTCTCGGGCGGGCAGTGGCAGCGGCTCGCCATCGCCCGGGCGTTCTACCGGGACGCCGACCTGGTGATCCTCGACGAGCCGTCGGCGGCCCTGGACCCGCGGGCCGAGCACGACCTCTTCTCCTCGCTCCGCCGGACCTTGCACGGTCGGTCCGCTCTGTTCGTCTCGCACCGGTTCGCGACCGTGCGGGGGGCCGACCGGATCTACGTCATGTCCTCCGGTCGGGTCGTCGAGTCCGGCACCCACGAGCAGCTCATGGCCCACCGCGGGCTCTACGCCGAGCTGTTCGACCTTCAGGCGGGCGCGTACTTCCCCGACGGGTGGTCCAGCTCGACCCCCTGA	MSRTGPNRSKRQGRRVIELVRRSTRLVWSCSPRLFVAMVGLQLLAAAALGLQVLVVAQVLERILDLPDAGVTTALVWSVVALAVLMALGSVVGVAQGSVRRLLGELVARSMNERVQDVATTVPLRNFESPEFFEILQRVRQSAATRPFQVTQGLFTVIGTLVSSIGVGAALVALYPWLLPLLAVGAVPVLLTSRRESALEFLFTVAQTTNQRERMYVNFVQTNRDEAKEIRAFQVSTWLRDRYRTLYDTYLEALRKHLLRRLRLSTLGQVLSGVVLAGTLLVLVVLIANGEVGIADAGAAIVGIRVLQGQFQGLVGGVQQVHESGLYLDDLQSFLRHHARQEATSPDRRDSAPPFAGARIQDVSFRYPGATTDALTDVSIAVGPGEVVAVVGENGSGKTTAAKVLAGLYDPDTGHAMWGDRPYGTLVDADLRSRIAVIFQDFVRYAFSASENIALDDAGADARRDELGRNDVRAAARAAGVDGALARLPHGYATRLSRMFDDSADLSGGQWQRLAIARAFYRDADLVILDEPSAALDPRAEHDLFSSLRRTLHGRSALFVSHRFATVRGADRIYVMSSGRVVESGTHEQLMAHRGLYAELFDLQAGAYFPDGWSSSTP				NA	NA	NA	NA	NA
AK001_01970	981			hypothetical protein	ATGACCTCGTCCGCCGTCCTGTACGGGCTCGCCGTGGACAGCGAGGTCCCGATGCCGACGCGGTCCGGCCGCCTCACGACCGACGGGACCGTCCGCGTCCGTCGTGGCGCGGACGTCCCCGCGACGACGGACGCCCCGCCCGGTCACGTCCTGCTGCACCACGCGAGTCCCGACCGGCCCTGGTACACCGCGACGCGCACCGGCGACGGCTACCACCTGCGGTTCTACGGAACCTGTGAGTTCGTGCTCGGCCACGACCTGGAGGACGTGGTCCTGCACGTGACCGACGGCGCAGATCCCGGCGTCGCGCACGTGCTCGCCTCCGGCGCCCTCCTGGCCTTCCAGCTCTACCTGCGCGGCCACGCCGTCCTGCACGCCAGCGCCGTCCAGGTCGGCGACGGTGTCGTCGGCTTCGTGGGGCGATCCGGCATGGGCAAGAGCACGATGGCGGCCTTGCACTGCGCCGAGGGGGGCGCCCTCGTCACCGACGACGTGCTCCGGATCGACCCGGCGGGAGACGACCACGTCGCCCGGCTCGGCGCCACCCAGCTCCGGCTCCGCAAGGGCGCCGAGACGTTGGCAGGGCGGTTCGGCACCGGCTCGCCCGGACGAGGGCGCAGTGCCGACGACCGAGACCTCCTCGCCCCCGGGCGTGCCGCGAGCGACGCCGTGCCGGTCCGCGCTCTCGTCGTCCCGCTGCCCGAGCGCGACCGGGACGAGCTGGAGGTCGTCCCGGTGCGCGGCGCCGCCGCTGCACTCCTCGTGCTCAGCTACCCCCGTCTCCTGGGCTGGCAGGACACCGTCGTCGCCGCCCGGCAGCTCGCCCGGGTGTCCGCGCTCGTGGCCCGCGTCCCGGTCGTCACCGCTCGGGTGCCGTGGGGCCCGCCGTTCCGCGACGACCTGGGAGCCGAGCTGATCGCGGCGCTGGGGTCTCAGGGGGTCGAGCTGGACCACCCGTCGGGGAAGTACGCGCCCGCCTGA	MTSSAVLYGLAVDSEVPMPTRSGRLTTDGTVRVRRGADVPATTDAPPGHVLLHHASPDRPWYTATRTGDGYHLRFYGTCEFVLGHDLEDVVLHVTDGADPGVAHVLASGALLAFQLYLRGHAVLHASAVQVGDGVVGFVGRSGMGKSTMAALHCAEGGALVTDDVLRIDPAGDDHVARLGATQLRLRKGAETLAGRFGTGSPGRGRSADDRDLLAPGRAASDAVPVRALVVPLPERDRDELEVVPVRGAAAALLVLSYPRLLGWQDTVVAARQLARVSALVARVPVVTARVPWGPPFRDDLGAELIAALGSQGVELDHPSGKYAPA				NA	NA	NA	NA	NA
AK001_01971	441			hypothetical protein	ATGAACCTCCGACGCACCGTCAGCGGCAGCGTGCTCGCGGCACGGTCGGCCGCCGTCTACGTCGTCGCCGAGACCGGGCTGCGGACGCTCGGCCTCCGTCGCACCTGCTTCGTCCTGGGTGTCCGGCTGAGCGGACCGTCGAGCACCGCGAGCCGGACCACGCTCGACACCAGCCGACTCACCGGTCGCGAGCTGCGTGCGCTGCGCGTCGCACGCCGCGTCCTGCGGCTACCAGGCGTGAACGGCACCTGCCTGCGCTCGGCGCTGGTCCTGGGCTGCACGCTGCGCGCCCGCGACCCCGGGATCGTGCTGGGAGTACGCCGCGTGGGCGACCGGATCGCGGCGCACGCCTGGTTGCGGGTCGACGGGGCCGATCTCGACCCGGAGGGCCTCGCCGACCGGTATCTCGAGCTCGGCCGACCGAGCGGGAACGCCGCATGA	MNLRRTVSGSVLAARSAAVYVVAETGLRTLGLRRTCFVLGVRLSGPSSTASRTTLDTSRLTGRELRALRVARRVLRLPGVNGTCLRSALVLGCTLRARDPGIVLGVRRVGDRIAAHAWLRVDGADLDPEGLADRYLELGRPSGNAA				NA	NA	NA	NA	NA
AK001_01972	1182			hypothetical protein	GTGGGTGCCGCCGACGCGTCGCACGACACCATGAGCCGTGACACCTACCGCCCGACCACCCACGAGATCGCGTGGGGGTGGCTGCCGGGCCTGGTCGACCCGCCGGCTCACCGACAGGCCACGGCGCTCCCGGTCGGGGCCCTGGCCCACGTCATCGCGCGCACGGCCGGCGAACGCCAGGTCTTCGTGGCGTTCTCGGGCGGCCGCGACTCCTCCGCGGTCCTGGCGGCAGCGACGCACGCCGCGCACCTGGCGGGCACGAGGGCCCCGATCCCCGTGACGTTCGTCTACCCGGGCGTCCCGGAGACCGACGAGTCGGCGTGGCAACGCTCGGTCGTCGATCACCTGGGCCTGCAGGAGTGGTGGCGGTTACCGATCACCGTCGAGCACGACCTGCTCGGACCCGTCGCGCAGGCGAGCCTCCGGCGCCACGGCCTGCTCTGGCCGGCCACGCTCCACACCCACGAGCCGCTCCTGGAACGGTGCGCCGGCGGCGCGATCCTCACCGGCGAAGGCGGCGACGAGGTCTTCGGCGACCGCCGCCTGCGTCCCGTCCGCCGGACTGCCCGCCACCCCCTGGCCGCCGGCAGCCCGCGCCGCGCCGCACTGGCTGCCGTGTCGCCCGCGCGCAGCCGACGTCGGCACCTGCGGATGACGATCGCGATGCCCTGGCTGCGCCCCGCCGTCTACGACGACCTGGTCGAGCGTGTGTGCACGGACGACGTCGCAGAACCCTTGGCGTTCGGCGCCTCGCTCCGCTGGGTCGCGCGGCGACGGAGCGTCACCGAGTTCCGCCGGAACTACTCCGCGCTCGCGGCCGAGCACGACGCCACCGTGTCGCACCCGTTGCTCGACCCCGAGTTCCTCGACGCCCTCGCGCGGCACCACCCGACCGGCTTCTCCTCCCGCACCGAGGGGATGCGAGCCGTCTTTGCCGGCGCCCTGCCCGACGCCCTGCTCGCCCGGACGTCGAAGGCCACGTTCACCCACGCCTTCCTCGGCGAGGCGACCCGGGAGTTCGCCCGGAGGTGGGACGGGAGCGGCGTCCCGCACGACCTCGTCGACGCCGACGCGCTGCGGCGCGCCTGGCTGAGCGCCCGGGTCCCGGGGCCGACGAGCCTGCTGCTCCAGTCGGCGTGGCTCGCCGGCCAGGCGTGCCTCCCGGCCGAGGAGGCGGCATGA	MGAADASHDTMSRDTYRPTTHEIAWGWLPGLVDPPAHRQATALPVGALAHVIARTAGERQVFVAFSGGRDSSAVLAAATHAAHLAGTRAPIPVTFVYPGVPETDESAWQRSVVDHLGLQEWWRLPITVEHDLLGPVAQASLRRHGLLWPATLHTHEPLLERCAGGAILTGEGGDEVFGDRRLRPVRRTARHPLAAGSPRRAALAAVSPARSRRRHLRMTIAMPWLRPAVYDDLVERVCTDDVAEPLAFGASLRWVARRRSVTEFRRNYSALAAEHDATVSHPLLDPEFLDALARHHPTGFSSRTEGMRAVFAGALPDALLARTSKATFTHAFLGEATREFARRWDGSGVPHDLVDADALRRAWLSARVPGPTSLLLQSAWLAGQACLPAEEAA				NA	NA	NA	NA	NA
AK001_01973	126			hypothetical protein	ATGTACGAGGCACCCAGCATCCGCGAGGTCGGCACGGTCGCCGGGCTCACCCTCGAGGGCCAGTTCGCCCTCGACTACGACGGCCACCTGTTCCGTGGCGACAAGGAAGACGGCGGCCTCTCCTGA	MYEAPSIREVGTVAGLTLEGQFALDYDGHLFRGDKEDGGLS				NA	NA	NA	NA	NA
AK001_01974	255			hypothetical protein	ATGCGGCTTCGCACCGACGGCGTCACGTGGCAGGAGATCGACGGTGAGCTCGTCCTGCTCGACCTCGCCTCGTCGACCTACCTGACGACGAACCGTGCCGGGACGCTGCTCGCGCAGGCGCTCGTCGACGGCGCCGACACCGGCGAGCTCGCGACGGCGCTCGTGGAGGAGTTCGACATCGACGAAGAGCGGGCGCGGCACGACGCGGCCGCGTTCGTGGACGAGCTCCGCCGTCGGAGTCTCCTGGTCGAGTAA	MRLRTDGVTWQEIDGELVLLDLASSTYLTTNRAGTLLAQALVDGADTGELATALVEEFDIDEERARHDAAAFVDELRRRSLLVE				NA	NA	NA	NA	NA
AK001_01975	921	yqfL	COG1806	Putative pyruvate, phosphate dikinase regulatory protein	ATGCCCACGACGGAGCGGGTCGTCATCCACGTCGTCGCGGACTCCACCGGTGACACCGGTGCCCGCGTCGGTCGTGCCGTGCAGGCGCAGTACCCCGACCTCGACGTCGTGGTGGTGCGCCATCCCCGCCTGCACAGCCAGGAGGGGCTCGACGACGTCGTCGAGCAGCTGCGCGCGGACCCGGACCCTGCCGTCGTCTTCTGCACCGTGGTGGACGAGGTGCTGCACGGGCAGGTGATCGACCGGTGCGCCGAGCTCGAGATCCCGTGCGCCGACCTGCTCACCCCGGCGCTGGACGCCGTCACCGCGCGCACGGCCGCCGAGCCGGCGCGCCTGGTGCAGCCCGTCGGGCTCGCGGCGGACTACTTCGAGCGCATCCACGCGATGGAGTTCGCGATCGCCAACGACGACGGCCACGCCACGCCCGAGGGCCTCGCCGAGGCGCAGATCGTGCTGGTCGGGGCCTCGCGCACCGGCAAGACGCCGCTGTCGATGTACCTCGGCTACCTCGGGTACCGCACCGCGAACATCCCGCTGGTCGCCGGCGTCCCGCCGCCTCCGGAGCTGTTCCGGATCGACCCCTGGAAGGTCGTGGGGCTGACGATCGACCCGGAGCGGCTGGTGACCATCCGTCGTCGGCGGGTGGACCTCATGGGAGCGGGCCGGCAGGACGCCGGGCGCCTGGGCGGGTACGCCGACCTGGCCCGCATCGTCGACGAGCTCGACGACATCACCCAGGTCCAGCGCCGGCTCGGCTGCCCGGTGCTCGACACCACCACGCTGGCCCTCGAGGAGGCGGCCGGACGGATCATCGACCTCGTGACAGCACGGCGCCGCGCCCGTACAGTCCTGTCCGAGCACGTCGACGGGCGGAGCGACCCCCTTCCGCCCGGAGCCGAGACGGAGGCGAGGGAGCCATGA	MPTTERVVIHVVADSTGDTGARVGRAVQAQYPDLDVVVVRHPRLHSQEGLDDVVEQLRADPDPAVVFCTVVDEVLHGQVIDRCAELEIPCADLLTPALDAVTARTAAEPARLVQPVGLAADYFERIHAMEFAIANDDGHATPEGLAEAQIVLVGASRTGKTPLSMYLGYLGYRTANIPLVAGVPPPPELFRIDPWKVVGLTIDPERLVTIRRRRVDLMGAGRQDAGRLGGYADLARIVDELDDITQVQRRLGCPVLDTTTLALEEAAGRIIDLVTARRRARTVLSEHVDGRSDPLPPGAETEAREP				NA	NA	NA	NA	NA
AK001_01976	2685	ppdK	COG0574	Pyruvate, phosphate dikinase	ATGACCGCACAGGTACGCACCGACGAGCGATCCACCACGCACGAGGACCACCGTCTCGTGTACGACCTGTCCGAAGGCACCGCGGCGATGAGACCGCTGCTCGGCGGCAAGGGCGCCGGGGTGGCCGAGATGATCCGCATCGGTGTCCCGGTGCCCGACGGTTTCACCGTCACCACCGAGGCCTGCGTCGCCACGATGGAGGCCGGCGGCACCTGGCCCGAGCAGCTGTGGGACGAGATCCTCGCCCACCTGGACGCGCTGGAGCAGCGCACCGGCCGGCGTCTGGGGGCCGCGGAGCGCCCGCTGCTGGTCTCGGTCCGCTCGGGCGCGGTGATGTCGATGCCCGGCATGATGGACACGATCCTCAACCTCGGGATCTCCGACGAGTCCGTCGTCGGGCTGGCCGAGGAGTCCGGCAACCCGCGGTTCGCCTGGGACTGCTACCGGCGCTTCCTGCAGATGTACGGCGAGGTCGTCGAGGGGGTGCCGGGGCACGCCTTCGAGGACGAGATCTCGGCGCTCAAGACGCGCCGCGGGATCGAGCTGGACACCGACCTGACGGTCTCCGACCTCCAGGAGCTCGTCGAGACCTTCCGCACCGTCGCGCTGCGGCACACCGGGCAGGGCCTGCCCACGGACCCGCGCGAGCAGCTGCGCCGGTCCGTGCAGGCCGTGTTCTCCTCCTGGGACACGCCGCGGGCGCGGGTCTACCGCCGGGCGCACGACATCTCCGACGACCTCGGCACCGCGGTCAACGTCATGCAGATGGTGTTCGGCAACCGCGGGGACGGCTCGGCCACGGGGGTGTGCTTCACCCGCAACCCCTCCACCGGGGCCAAGGAGCTCTACGGGGAGTTCCTCGTGAACGCCCAGGGCGAGGACGTCGTCGCCGGCATCCGCACGCCCCTGCCGCTGGCGGAGATGGAGCACGTGCTCCCGGACGCCTACCGCGAGCTGCTCGACACGATGCACCGGCTCGAGCAGCACTACGGCGACATGCAGGACATCGAGTTCACCGTCGACGACGGCACGCTGTACCTGCTGCAGACCCGCACCGGCAAGCGCACCGCCGCGGCGGCGCTCAAGGTCGCCCGGGACCTCGTGGCCGAGGACGTCATCGACACCGCGACCGCGCTGCGCCGTATCGAGCCCGCCCAGCTCGACCAGCTCCTGCACCCTGGTCTCGACCCCGAGCACGGGCAGGAGCCGCTCACCCGTGGGCTCAACGCGTCGCCCGGTGCCGGCGTCGGCGCGGTCGTGTTCGACGCCGACACCGCGGCCGAGCGCGGCGAGGCCGGCGAGTCCGTGGTGCTCGTCCGCTGGGAGACGACGCCGGACGACATCCACGGCGTCATCGCGGCCCAGGGGGTGCTCACGGCGCACGGCGGCATGACGTCGCACGCCGCCGTCGTCGCACGCGGGATGGGCAAACCGTGCGTCGCCGGGGCGGGCGACCTGCAGATCGACGTCGAGGCCCGCACCCTGACCGTCGGGGACACCGTGCTCGCCGAGGGGGACACCGTCACCATCGACGGCACCACGGGCGAGGTGTATGCCGGCGCGCTGACGCTCGTGCCCCCGCAGATCACCGACGACTTCAGCGCCGTGCTCGCCTGGGCCGACGACGCGCGCCGGCTCGGTGTGCGGGCGAACGCCGACACCGGCCCGGACGCCGCCAAGGCCCGGGAGCTGGGTGCCGAGGGGATCGGGCTGTGCCGCACCGAGCACATGTTCATGGCGGCCGAGCGGCTGCCCGTCGTGCAGTCGATGATCCTCGCCGAGACGCCGGAGGACCGTGGCCACGCGCTGGAGCGGCTGCTGCCGATGCAGCAGGCCGACTTCGAGGAGATCTTCACCGCGATGAGCGGGCTGCCGGTCACGATCCGGCTCATCGACCCGCCGCTGCACGAGTTCCTGCCCGACCTCGTCGAGCAGTCCGTGCACGTCCAGCGGCTTGAGGACGCCGGCACCACCGGCCCCGAGCTCGACGACGCCCGCGAGCTGCTGGCGCACGTCAAGCGGCTCAGCGAGATGAACCCCATGCTGGGCACCCGGGGCGTGCGGCTCGCGCTGCTGTACCCGGAGATCGCCCGGATGCAGGTGCGCGCCGTCGCCCGGGCCGCGCTCGCGGTCCGCGAGCGCGGGCTGGACCCGCACGTCGAGATCATGGTGCCGCTGGTCGGGTTCGACGAGGAGCTGCGGCGCATGCGCGAGGTCGTCGAGACGACGTGGGCCGAGGAGGTTCCGGACGGCGGCGTGCCGCACACCGTCGGCACGATGATCGAGCTGCCGCGAGCGGCGCTGGTCGCCGACGCGATCGCCGAGCACGCCGACTTCTTCTCGTTCGGCACCAACGACCTGACCCAGACGACGGTCGGCATCTCGCGCGACGACGCCGAGGGCTCGTTCCTGGGCGCCTACGTCGACGCCGGGATCCTGGCGGCCAACCCGTTCGCGAGCATCGACGCCGACGGCGTCGGGGAGCTGGTCCGGATCGGGGTGCGCAAGGGGCGGTCGACGGAGCCCGGGCTGAAGACGGGTGTGTGCGGCGAGCACGGGGGAGACCCGGCGTCGATCGCGCTGTTCGACGAGATCGGGCTGGACTACGTCTCCTGCTCGCCGTACCGCGTGCCGATCGCGAGGCTCGCCGCCGCGCAGGTCGCCCTCGACCAACCCGCGAGGTAG	MTAQVRTDERSTTHEDHRLVYDLSEGTAAMRPLLGGKGAGVAEMIRIGVPVPDGFTVTTEACVATMEAGGTWPEQLWDEILAHLDALEQRTGRRLGAAERPLLVSVRSGAVMSMPGMMDTILNLGISDESVVGLAEESGNPRFAWDCYRRFLQMYGEVVEGVPGHAFEDEISALKTRRGIELDTDLTVSDLQELVETFRTVALRHTGQGLPTDPREQLRRSVQAVFSSWDTPRARVYRRAHDISDDLGTAVNVMQMVFGNRGDGSATGVCFTRNPSTGAKELYGEFLVNAQGEDVVAGIRTPLPLAEMEHVLPDAYRELLDTMHRLEQHYGDMQDIEFTVDDGTLYLLQTRTGKRTAAAALKVARDLVAEDVIDTATALRRIEPAQLDQLLHPGLDPEHGQEPLTRGLNASPGAGVGAVVFDADTAAERGEAGESVVLVRWETTPDDIHGVIAAQGVLTAHGGMTSHAAVVARGMGKPCVAGAGDLQIDVEARTLTVGDTVLAEGDTVTIDGTTGEVYAGALTLVPPQITDDFSAVLAWADDARRLGVRANADTGPDAAKARELGAEGIGLCRTEHMFMAAERLPVVQSMILAETPEDRGHALERLLPMQQADFEEIFTAMSGLPVTIRLIDPPLHEFLPDLVEQSVHVQRLEDAGTTGPELDDARELLAHVKRLSEMNPMLGTRGVRLALLYPEIARMQVRAVARAALAVRERGLDPHVEIMVPLVGFDEELRRMREVVETTWAEEVPDGGVPHTVGTMIELPRAALVADAIAEHADFFSFGTNDLTQTTVGISRDDAEGSFLGAYVDAGILAANPFASIDADGVGELVRIGVRKGRSTEPGLKTGVCGEHGGDPASIALFDEIGLDYVSCSPYRVPIARLAAAQVALDQPAR	PGPT0002040_793	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002040-ppdK-K01006	NA	NA
AK001_01977	747			hypothetical protein	ATGTGGTCAGTCCACAGGGAGGTCGGCCGCACTATCGTGGGGACGGTGGACGGCTTCTGGGACTTCGTCGGCTCCTACTGGTGGCTGGTGTTCCCGCTCAGCGGCATCGTCGGCGGCTGGGCCGGCGGCGTCCGCCGCTGGGACGAGCGACGACGCCGGGACAAGATCGAGATGTACCGCCTCCGGTACGGCGCCGAGAAGACCGCTGCGGAGTCCGAGGAGGCCCTGACCGGCGAGATCGAGCGCACCCTGGCCGCCCACACCGAGACCGAGCGGCGCTGGCTCGACTACGAGCTCGACGCGGTCAAGGTCCTCGAGTTCCCCGTCATGACCGACATGCGCGAGCAGGTGACGATCGACTACCACCGCGCGCGCCGGGACGCCGAGAACCTGCGTCCGGACGACCCCGCCGAGCTGCGCGACCGCCGCCTGCTCGACCGGTACCGGGAGGCGGTGCGCGAGTACCAGCTCACCTTCGACGTCGCCGAGCGCGCGGCGAAGCGCCGACGCGCCTCGGACCTCTCGGCCGAGGAGCGTCGCGCCGTGGACCGGGCGAAGAAGCTCCTCGCGATCGCCGACGACGCCGGGGCCACGACGTCGGAACGGCAGTCCGCGTACCGCCGGGCCATGAAGGAGCTCGAGGGCATCCTCGTCCTGCCCGACGCCGCCACCGCGGCGATCGAGCAGCGCATCGCGGGCGAGCTGGGGACCGGGCACCGCCCCGACCGCGAGCGCCCCTCCGGCTGA	MWSVHREVGRTIVGTVDGFWDFVGSYWWLVFPLSGIVGGWAGGVRRWDERRRRDKIEMYRLRYGAEKTAAESEEALTGEIERTLAAHTETERRWLDYELDAVKVLEFPVMTDMREQVTIDYHRARRDAENLRPDDPAELRDRRLLDRYREAVREYQLTFDVAERAAKRRRASDLSAEERRAVDRAKKLLAIADDAGATTSERQSAYRRAMKELEGILVLPDAATAAIEQRIAGELGTGHRPDRERPSG				NA	NA	NA	NA	NA
AK001_01978	1281	eno	COG0148	Enolase	GTGGCAAGCATCGAAGCCGTTGGCGCACGCGAGATCCTGGATTCCCGCGGCAACCCCACCGTGGAGGTCGAGATCGCCCTCGACGACGGCACGTTCGCCCGTGCTGCCGTCCCGTCGGGCGCCTCCACGGGTGCCTTCGAGGCCGTCGAGCGCCGTGACGGCGACAAGGGCCGCTACCTGGGCAAGGGTGTCGAGGGTGCGGTCAACGCCGTCATCGACGACATCGCGCCCGAGCTCGTCGGCTACGACGCCGAGGAGCAGCGCCTCATCGACCAGACCCTCATCGAGCTCGACGGCACCCCCAACAAGGGCAAGCTCGGCGCGAACGCCATCCTCGGCGTCTCGCTGGCCGTGGCCAAGGCGGCCGCCAAGAGCGCCGGCCTGGACCTGTTCCGCTACGTGGGCGGCCCGAACGCGCACGTCCTGCCCGTGCCGATGATGAACATCCTCAACGGTGGGTCCCACGCGGACTCCAACGTGGACATCCAGGAGTTCATGATCGCCCCGATCGGCGCGTCCTCCTTCAAGGAGGCGCTGCGCACGGGTGCCGAGGTCTACCACGCGCTCAAGAGCGTGCTGAAGGCCGAGGGCCTGGCCACCGGCCTGGGCGACGAGGGCGGCTTCGCGCCGAACCTGTCGAGCAACCGTGCCGCGCTGGACCTCATCATCACGGCCATCGAGAAGGCCGGCTACACGCCCGGCGAGGACGTGGCGCTCGCGCTCGACGTCGCCGCGACGGAGTTCTTCTCCGACGGCTCCTACCAGTGGGAGGGCGGCGCCAAGACGCCCGAGGAGATGATCTCCTTCTACGCGGAGCTCGTGCGCGACTACCCGCTGGTCTCCATCGAGGACCCGCTGTCCGAGGACGAGTGGGACTCCTGGTCGGCCCTCGTGGAGCAGGTCGGCGACAAGGTGCAGATCGTCGGCGACGACCTGTTCGTCACCAACCCGGAGCGCCTGACCAAGGGCATCGAGACCAAGGCGGCCAACTCGCTGCTGGTCAAGCTGAACCAGATCGGTTCGCTCACCGAGACCCTCGACGCGGTCACCCTGGCCCAGCGCAACGGCTTCACCACGATGACCTCGCACCGCTCCGGCGAGACCGAGGACACCACCATCGCGGACCTGTCCGTGGCCACCAACGCCGGCCAGATCAAGACCGGTGCCCCGGCTCGCGGCGAGCGCATCAACAAGTACAACCAGCTCCTGCGCATCGAGGAGGTGCTGGACGACGCGGGCCGTTACGCCGGTCGCAGCGCCTTCCCGCGCTTCCAGGGCTGA	MASIEAVGAREILDSRGNPTVEVEIALDDGTFARAAVPSGASTGAFEAVERRDGDKGRYLGKGVEGAVNAVIDDIAPELVGYDAEEQRLIDQTLIELDGTPNKGKLGANAILGVSLAVAKAAAKSAGLDLFRYVGGPNAHVLPVPMMNILNGGSHADSNVDIQEFMIAPIGASSFKEALRTGAEVYHALKSVLKAEGLATGLGDEGGFAPNLSSNRAALDLIITAIEKAGYTPGEDVALALDVAATEFFSDGSYQWEGGAKTPEEMISFYAELVRDYPLVSIEDPLSEDEWDSWSALVEQVGDKVQIVGDDLFVTNPERLTKGIETKAANSLLVKLNQIGSLTETLDAVTLAQRNGFTTMTSHRSGETEDTTIADLSVATNAGQIKTGAPARGERINKYNQLLRIEEVLDDAGRYAGRSAFPRFQG	PGPT0018050_5502	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018050-eno-K01689	NA	NA
AK001_01979	450			hypothetical protein	GTGCTCACCGTCCGGCTCATGGTGCTGGCGGTCGTGGTCCTGCTCGCCTTCGTCCTGCTGCTGCCGACGGTGCGTGGAGCGGTGCAGCAGCAGGCGGAGATCGACCGGCTGCAGGCCGAGCTGACGGCGAACCAGGCCGACCGGGACCGGCTGGAGAACGAGCTGGCCCGCTGGGACGACCGCACCTACGTCGTCCAGCAGGCCCGCAGCCGGCTGAACTACGTGCTGCCCGGCGACACCGCCTGGCGGGTGGTGGACGCCGACGAGATCGAGGCCGACGGCGAGCCCGCGGCGGGCGAGGATCCGACGCCGGAGGTCGGGCCCGCCACGACCGGCGCGCCCTGGTACCAGTCGATGTGGGAGTCGCTGCAGTCCACGGACCACGCGACCGTCGATCCCGGAGGTGACCCGGACGACGTCGAGACCTCGGCGCCGGACGGGGGACAATGA	MLTVRLMVLAVVVLLAFVLLLPTVRGAVQQQAEIDRLQAELTANQADRDRLENELARWDDRTYVVQQARSRLNYVLPGDTAWRVVDADEIEADGEPAAGEDPTPEVGPATTGAPWYQSMWESLQSTDHATVDPGGDPDDVETSAPDGGQ				NA	NA	NA	NA	NA
AK001_01980	543			hypothetical protein	GTGAGCTCCGAACCCTCGATCCCGTCCGCCGACGCGACCTCGTCCGGCGACGACCCCACGGTCGCGACCGCCCACGACCTCGAGGTGATGGCCGAACAGCTGGGCCGCACCCCGCGCGGCGTCGTCGGCGTCGCCGCGCGCTGCGTGTGCGGGCGCCCCCTGGTGGCGCGCACCGCTCCGCGGTTGCCGGACGGCACACCGTTCCCCACGACGTACTACCTGACCCACCCCGGTGCGGTGGCCGCCGCGTCGCGCCTCGAGGCCGACGGGGTGATGAAGGAGATGACCGACCGCCTGGCCGAGGACCCCGAGCTGGCCGCCGCCTACCGCGCCGCGCACGAGCACTACCTCGCGCGGCGGGCCGAGCTGGGCCGGGTCGAGGAGATCGAGGGCATCTCGGCCGGCGGCATGCCGACCCGCGTGAAGTGCCTGCACGTGCTGTTCGCGCACAGCCTCGCCGCCGGTCCCGGGGTGAACCCGCTGGGTGACGAGGCCCTGGCCATGGTCCGCGACCAGTGGCGTCCGGACCGGTGCTCGTGCTGA	MSSEPSIPSADATSSGDDPTVATAHDLEVMAEQLGRTPRGVVGVAARCVCGRPLVARTAPRLPDGTPFPTTYYLTHPGAVAAASRLEADGVMKEMTDRLAEDPELAAAYRAAHEHYLARRAELGRVEEIEGISAGGMPTRVKCLHVLFAHSLAAGPGVNPLGDEALAMVRDQWRPDRCSC	PGPT0002595_2705	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524	NA	NA
AK001_01981	951	ppx2	COG0248	Exopolyphosphatase 2	ATGAGCAGCACCCGTGTGGCCGCCGTGGACTGCGGCACGAACTCCATCCGCCTCCTCGTGGCCGACGTGGCCGCCGACGGCACCCTGACCGAGCTCGACCGGCGCATGCAGATCGTGCGGCTGGGCCAGGGCGTCGACCGCACCGGCGAGCTCGCGCCCGAGGCGCTGGAACGCACCCTGGCGGCGTCGCGCGAGTACGCGAAGGTCGCCGCGGAGCTGGGGGCGACGCGCACCCGGTTCGTGGCGACGTCGGCCACCCGCGACGCCCGCAACCGCGACGAGTTCGCCGCGGGCGTCCAGGCGGCCCTGGGCGTGGAGCCCGAGGTCGTCACCGGCGACGAGGAGGCCGAGCTGTCCTTCCGCGGGGCGACCAGCGGCGAGGCCGCGACGCACCCCGGCCCGTACCTGGTCGTGGACCTCGGTGGCGGCTCGACCGAGCTCGTCCTGGGCACGACGACGCCGGACGCGGCCGTGTCGATGGACGTCGGCTCCGTGCGCCTCACCGAGCGCCACCTGGCGGGCGACCCGCCCACCGCGACCGAGATCGCCGCGGCCCAGGCGGACGTCGACGCCGCGCTCGACGCGGCCTCCGCCGTCGTGCCCCTGGCCCGCACCGCCACGCTGGTGGGGCTCGCCGGGTCCGTCACCTCGGTGACGGCGCACGCCCTGGAGCTGCCGAGCTATCAGCGAGAAGCGATCAACGGCACCGTGCTCGACGTCCCGCGCGTGCTGTCCGCCTGCGAGGACCTGCTGCGCCGGACCCGCGACGAGCGCCTGGCGCTCGGGTTCATGCACCCGGGACGCGCCGACGTCATCGGCGCCGGTGCGCTGATCTGGTCGCAGATCGTGGCGCGGGTGCGCGACGAGGTGGCGGCCGCCGGCGGCGAGCTCACCGAGGTCGTCACCAGCGAGAGCGACATCCTGGACGGCATCGCGCTGTCGCTCGCCTGA	MSSTRVAAVDCGTNSIRLLVADVAADGTLTELDRRMQIVRLGQGVDRTGELAPEALERTLAASREYAKVAAELGATRTRFVATSATRDARNRDEFAAGVQAALGVEPEVVTGDEEAELSFRGATSGEAATHPGPYLVVDLGGGSTELVLGTTTPDAAVSMDVGSVRLTERHLAGDPPTATEIAAAQADVDAALDAASAVVPLARTATLVGLAGSVTSVTAHALELPSYQREAINGTVLDVPRVLSACEDLLRRTRDERLALGFMHPGRADVIGAGALIWSQIVARVRDEVAAAGGELTEVVTSESDILDGIALSLA	PGPT0002595_4615	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524	NA	NA
AK001_01982	1467			hypothetical protein	ATGCCTCAGAACGTTCTGTCGACGGACAACCCTGCCCAGGATGCGCCCGCGCCCGCCGCACGCCCCCGCAAGGTGCCGCGCATCGTCGTGCTCGGCGGTGGCTCCGTCGGGCTGTACGTGGCGCGCCGGCTGCGCAAGAAGCTCGGCAAGCGCGAGGCGGCGATCGTCGTCGTCGACCCGCGTCCCTACATGACGTACGCGCCGTTCCTGCCGGAGGCCGGCGCCGGCTCGATCGACGCCCGCGACGTGGTCGCCCCGCACCGCATCGCCCTCAAGGGCATCGACGTGCTCCAGGGCAAGGTCGTGAAGATCGCCCACGGCGACAAGAAGGTGACGATCTCGCCGGAGGAGGGCCTGGACTACGAGGTCTCCTACGACCACCTGGTCGTCGGCCTGGGCTCGGTCTCGCGCACGCTGCCCATCCCCGGGCTCGCCGAGAACGCCATCGGCTTCAAGAACGTCGAGGAAGCCATCGCGGTCCGCAACCACGTGCTCAACCGCATGGACGTCGCCTCCTCCACGTGGGACGCCGACCTGCGCAAGCGGATGCTGACCTTCACGTTCGTCGGCGGCGGCTTCGCCGGTATCGAGGCGCTCGCCGAGATCGAGGACATGGCGCGCTACGCGACCCGCAACTACCCGACGATCGAGGAGTCGGACCTGCGGTTCGTCATGATCGAGGGTGCCGGCCGGATCCTGCCGGAGGTCTCCGAGCCCATGGGCGAGTGGGCGCTCGAGGAGATGAAGAAGCGCGGCATCGAGTTCCACCTCAATACGTTCCTTTCCTCCTGCGAGGACGGCCACGTCGTGACGTCGACGGGTGTCGAGTTCGACACCGAGACGATCGTGTGGACGGCCGGCGTCAAGGCGAACCCGGTCATCAAGGACGACTCCGACCTGCCCAGCGACAGGATGGGCCGCGTGACGGTCCTGCCGACGCTGCAGGTCGCCGCGACGACCGACGACGGCACCGAGGGCGAGGTCGTCCCGGACGCCTGGGCCGCCGGTGACTGCGCCGCGGTGCCGGACCTGCTCAACCCCGGGTCGTTCTGCCCCCCGAACGCGCAGCACGCGATCCGCGAGGCCACCCAGCTGGCCGACAACATCATCGCCTCGCTCAAGGGCGAGCCGCTGGTGGAGTACAAGCACAAGAGCGTCGGCGTGGTCGCCTCCCTCGGCCTGTACAAGGGCGTGGCGGAGCTGTTCGGCTTCCTCAAGCTCAAGGGCCCCCTCGCGTGGCTCGCCCACCGCAGCTACCACGTCATGGCGATGCCCACCGGCAACCGGAAGTTCCGCATCCTCATCGGCTGGATGGGCCAGTTCCTCATGGGCCGCGAGATCGTCTCGCTCGGTTCGCTGCACGACCCGCGCGACGAGTTCCGCAAGGCCTCGGTCCCGCCGAAGCCGCAGGGCGACAAGGTCGAGCAGAAGGCCGAGGCCTCCGCGGAGAAGGCCACGCACGGCTGA	MPQNVLSTDNPAQDAPAPAARPRKVPRIVVLGGGSVGLYVARRLRKKLGKREAAIVVVDPRPYMTYAPFLPEAGAGSIDARDVVAPHRIALKGIDVLQGKVVKIAHGDKKVTISPEEGLDYEVSYDHLVVGLGSVSRTLPIPGLAENAIGFKNVEEAIAVRNHVLNRMDVASSTWDADLRKRMLTFTFVGGGFAGIEALAEIEDMARYATRNYPTIEESDLRFVMIEGAGRILPEVSEPMGEWALEEMKKRGIEFHLNTFLSSCEDGHVVTSTGVEFDTETIVWTAGVKANPVIKDDSDLPSDRMGRVTVLPTLQVAATTDDGTEGEVVPDAWAAGDCAAVPDLLNPGSFCPPNAQHAIREATQLADNIIASLKGEPLVEYKHKSVGVVASLGLYKGVAELFGFLKLKGPLAWLAHRSYHVMAMPTGNRKFRILIGWMGQFLMGREIVSLGSLHDPRDEFRKASVPPKPQGDKVEQKAEASAEKATHG	PGPT0004020_535	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885	NA	NA
AK001_01984	381			hypothetical protein	ATGGCCGTCGATCCGTCAGAGCTTGCGGCTTTCCTGTACCGACGGCTGGACGACGACGCGGACGCAGCGTCGGAGGCGAACGCCGCGCGGTGGTCACCGGCCGGGAACGCCGTGGAGTTCCAGATCCGGTCCGCCGCTCTCCAGGACGGTGTCGCGCAGTCCCGCCTCGCCGCGCTGAACAGGGCCAACGTCTGGCACATCGTCAACTGGGCACCGCCGCGCGTGCTGGCTGAGGTCGAGGCGAAGCGCCGCATCATCCGGGTCTGCCTCGACGAGCCGGCGGTCCCCGAGGACCTCGGGCTCCGGCGGACCCAGGTCCTGCGGCTGCTCAGCCTGCCCTACGCCGGGCACCCGCACTACCGGCCCGAGTGGCACCCCTGA	MAVDPSELAAFLYRRLDDDADAASEANAARWSPAGNAVEFQIRSAALQDGVAQSRLAALNRANVWHIVNWAPPRVLAEVEAKRRIIRVCLDEPAVPEDLGLRRTQVLRLLSLPYAGHPHYRPEWHP				NA	NA	NA	NA	NA
AK001_01985	915			hypothetical protein	ATGGACGTCCGGCATCTCGACCTGCTGCGCGAGCTGGCGGACCGCGGCAGCATCTCGGCCGTCGCCGCGGCCACCCACCGCACCCCGTCGGCGGTGTCGCAGCAGCTGCGGACCGCGCAGCGCGAGCTCGGCACCGCCCTCGTCGAACCCCACGGGCGGGGGGTGCGGCTGACCGACGCCGGCCGGCTGCTCGCCGCCGGTGCGGTGGAGGTCGCCACCGTGCTGGCCGACGTCCAGGCGCGCTGGGAGGCGTTCCGCGACGTGCCCGCGGGCACCGTGTCCGTGGCCGCTCTGCCGAGCGCCGCCTCCTACCTCTTCCCCGCCCTGGAGCGGGACCTGGCCGGGAGCGGCGTCGAGCTCCGTCTGACCGACCTCGACCTGGCCGAGGCGCAGTACGGCGCGATGACCGCCGACCACGACGTCGTCGTCGCGCACAGCATGACCAGCGTGCGACCTCCCGGCACGGACGGCCTCGTCGTCGTCCCGGTCGTCGACGAACCCATCGACGTCGCCATGGCCGCGCACCACCCGCTCGCCGCCCGGTCCACGGTGAGCCCGGCCGACGTCGTCGACGCGGCCTGGGTGGGCGTCCCCCGCGGGTTCCCGTTCGACACCGTGCTGCAGAACGTCGAGCAGGCCACCGGGGTCCGGCTCGACGTGCGCCAGCGTCTGCTCGACAACCGCCTCGTCGAGGCGCTCGTCGCGTCCAGCCTGCGGCTGGCGGCCCTGCCACGGTTCACCACGCCCGTCGGCGACGGGCTCGTGCTCCGCCCCCTCACCGGGGTGCCGGCCGTGCGACACCTCGCGGCGGTGATGCGCCCCGACCGCGCCCGGCGCCGGGCCGTCCGGCACGTGCTGGACGCCCTGGTCGAGGCGGCCCGTTCCACGGCACGCCGTCACGACGTCGTCGTCTGA	MDVRHLDLLRELADRGSISAVAAATHRTPSAVSQQLRTAQRELGTALVEPHGRGVRLTDAGRLLAAGAVEVATVLADVQARWEAFRDVPAGTVSVAALPSAASYLFPALERDLAGSGVELRLTDLDLAEAQYGAMTADHDVVVAHSMTSVRPPGTDGLVVVPVVDEPIDVAMAAHHPLAARSTVSPADVVDAAWVGVPRGFPFDTVLQNVEQATGVRLDVRQRLLDNRLVEALVASSLRLAALPRFTTPVGDGLVLRPLTGVPAVRHLAAVMRPDRARRRAVRHVLDALVEAARSTARRHDVVV				NA	NA	NA	NA	NA
AK001_01986	990	eamA	COG0697	putative amino-acid metabolite efflux pump	TTGTGCTTCACTGTCGACGCCGTCGAGCATGGGGCCATGCCGACCCGTCACCGCCTCCTCGCCGCCGTCGTCGCGCTGCTGTGGGGCCTGAACTTCCTGGCCATCGACGCCTCGCTGCAGCACTACCCGCCGATGTTCCTCGTGGCGCTGCGGTTCGCCGTGCTCGCGGTGCCGACCGTCCTGCTCGTGCCGTGGCCCGGGGTGCCGGTGCGCTGGCTGATCGGGTACGGGCTCGGGTTCGGGGTCCTGCAGTTCACGTTCCTGTACTGGGGGATGTCGGCCGGGATGCCGGCCGGGCTCGCCTCGCTCGTCCTGCAGGCCTCCGGTCCGTTCACCGTGGTGCTCGGCGCGACGTTCCTGCGCGAGCGGGTCAGCGGGCGGCAGCTCGTGGGCATCCTCGTCGCCGTGGCGGGACTCGCCGTCGTCGGGTGGCAGCGCGCCGAGCATGCCGCCGTGCTGCCCTTCCTGCTCACCCTGGCCGGCGCCTTCGGCTGGGCGATCGGGAACGTGTGCAACCGGCAGGCCCGGCCGCGCAACCCCTTGCACCTGGCCCTGTGGATGTCGGTCGTCCCGCCCCTGCCCATGCTGGCGGTCTCGCTGGTCGTCGAGGGGCCGGACCGCATCTGGACCTCGCTGGTCTCCTACGACGACCCGGCCGCCGTCGCCGCCGTGGTCGGGCTCGCCTACACGGTGGTGCTCGGCACCGTCGTGGGTTCGGGGCTGTGGACGTGGCTGATGGCGCGGCACCCGGCGGGCGTGGTCGCACCGTTCTCGATGCTGGTGCCGGTCGTCGGCATGACGGCAGCCTGGCTCGTGCTGGGGGAGACGGCGACCCCGGGTGAGCTCGCCGGCGGCGTGCTGGTGGTCGTCGGCGTGCTGCTGGGCAGCCGGCCGCCGCGGCGCGGCCCGACGACGGTGCCGGGCACGGAGAGGTCGCCGGAGCGCACGCTGGGGGTCGCTGCTTCCACGGGTCCGGCTCCGACTAGGTGA	MCFTVDAVEHGAMPTRHRLLAAVVALLWGLNFLAIDASLQHYPPMFLVALRFAVLAVPTVLLVPWPGVPVRWLIGYGLGFGVLQFTFLYWGMSAGMPAGLASLVLQASGPFTVVLGATFLRERVSGRQLVGILVAVAGLAVVGWQRAEHAAVLPFLLTLAGAFGWAIGNVCNRQARPRNPLHLALWMSVVPPLPMLAVSLVVEGPDRIWTSLVSYDDPAAVAAVVGLAYTVVLGTVVGSGLWTWLMARHPAGVVAPFSMLVPVVGMTAAWLVLGETATPGELAGGVLVVVGVLLGSRPPRRGPTTVPGTERSPERTLGVAASTGPAPTR				NA	NA	NA	NA	NA
AK001_01987	675			hypothetical protein	ATGACCGACCCCTCCGCCGCGACCTCGAGCTCCCCCCGGAAGCCCGCGCCCGTGGGCGCGGCACGGCTGCGGGGGCTGTCGCACCCGCTGCGGGTCACGATCCTCGACCTGCTCCAGGTGCACGGGTCGCTGACCGCCAGCCGGCTCGCCGAGCTCGTCGGCGAGTCCAGCGGGTCCACGAGCTACCACCTGCGCCAGCTCGCCAAGCACGACTTCGTCCGCGAGGTCGAGGGCAAGGGCACCGCGCGCGAACGCTGGTGGGAAGCGACGCCGGGGGGGTTCGTCCTCGCTCCGTCCGAGAACGACGTCGACGACGCCGGCACCCGCACGGCACTGTCCCTGGCGAGCGCCGAGTTCGAACGCGCCCGCCAGGCGAAGATCTGGCGACTGCTAGACGCGCTGCGGGACGGTCCGCAGGAGTCCCGCTACGCCGACTGGTCCGACTCGGTCAGGCTCGGAACGGCGAACACCGTCGCGACTCCCCAGCAGCTCCACGACCTCATCGAGACCGTGCAGTCGGTCATCGACACCGAGCTCCACAAGCTCAAGGCCCAGGAGCCCGGCCCGGACGCCCGACCCGTCCAGATCCACTTCAACGCCTTCCCGGTCGTCGACCCCGAGCCGGCGCCGACCGTCCAGGACGACGCCGGCACCGGGGGCGGTCCGGTCACCTAG	MTDPSAATSSSPRKPAPVGAARLRGLSHPLRVTILDLLQVHGSLTASRLAELVGESSGSTSYHLRQLAKHDFVREVEGKGTARERWWEATPGGFVLAPSENDVDDAGTRTALSLASAEFERARQAKIWRLLDALRDGPQESRYADWSDSVRLGTANTVATPQQLHDLIETVQSVIDTELHKLKAQEPGPDARPVQIHFNAFPVVDPEPAPTVQDDAGTGGGPVT				NA	NA	NA	NA	NA
AK001_01988	234			hypothetical protein	ATGTTGCTCGCCGCCCCCACCTACCACCGCCGCACCCTCGCCGACCGCGGCGTGGACCACCTGGCCGACGCACTGGTCCGGACCGGGGAGCACCTGCACGACGCCCTGGCCACCCACGTCGCCCGGCGCGCCGCCGGAGCGCTCGCCCGCCGGGAGCGGGACCACCGCCGATACCTCGCCGCGGAGCAGGTCCGCGACAACGCCGCGCAGATCAACCCGTTGGGGCTGCGCTGA	MLLAAPTYHRRTLADRGVDHLADALVRTGEHLHDALATHVARRAAGALARRERDHRRYLAAEQVRDNAAQINPLGLR				NA	NA	NA	NA	NA
AK001_01989	3354	mdtC		Multidrug resistance protein MdtC	GTGTTCCGTCTTGCCCGCCTGTCCCTGGCGAACCGAGCCGTGGTCGCCCTGGCCACGGTCGCGATCTTCGTCTTCGGCACCCTGAGCCTGACCTCGCTGAAGCAGGAGCTGATCCCGTCGCTCCAGTTCCCGGCCGGCGTGGTCCTGGCGACGTACCCCGGCGCCTCGCCGGAGGTGGTCGAGGAGAACGTCACCGAGCAGATCGAGGCGGCGGTGCAGGGCGTCGACGGCATCGAGTCCGTCAGCTCGAGCGCGTCGACCGGGATCTCGACCACCACGGTCGAGTTCGCCTACGGGACCGACATGGACTCCGCTACGCAGCGGCTCACCACCGTCATGACGCAGATCCAGTCCTCCCTCCCCGAGGACGTCGACCCGCAGGTCATCACCGGGTCCCTCGACGACCTGCCGGTCATCCAGCTCGCCGCGTCCGGTGCGGGCGCCGACCTCGCCGGGCTGGCCGACGAGATCGAGGCCGTCCTCGTGCCGGACCTCGAGGACGTCGACGACGTGCGGTCCGTGACCGTCAGCGGGGCCGTCGACGACCAGGTGCTCATCGAGGCCGACCCGGCCGACCTCGCCGAGCAGGGCCTCGACGTCGCCCAGGTGACCGATGTGCTCGCCGACTACGGCGTCGTCGTCCCGGCCGGCACCGTCACCGAGGACGGCGACACGTACTCCCTGCAGGCCGGGACCCGGATCGGCAGCCTCGAGGAGATCGAGGAGATCCCCCTCGTGCCGAGCGTGACCAGCACCGCCGGGGCCGACGGCGGCACGTCAGGCGCCACGGACGACGCCGCGGCCGCCGCACCGGGAGCCGAGGGCACCGTGCCGCCGTCGGGCACCGACAGCGCCGCCGGGGCGCCCGCCGAGGGCGGGACGGGGACCGACCCCGAGCAGCTCCCGGACGCCAACGCGCCCCCGGCCCCGCCGGAGCCCGTCCTGCTCGGCGACGTCGCGGACGTCTCGGTCGCCGAGTCCGAGGCCACGTCCTTCTCCCGCCTCGACGGCGAGCCGTCGCTGGGCATCGGCATCATCAAGACCCCGCAGGGCAACACCGTCGACGTCTCGCACGCCGTGCAGGAGGTCATCGACGACAACGCCGCCGAGCTCGACGAGGCCGGCATCACCACCGCCGTCGTGTTCGACCAGGCCCCCTTCATCGAGGAGTCCATCGAGGGGCTCGCCACCGAGGGCGGCCTCGGCCTGGTCTTCGCGATCCTCGTCATCCTGGTCTTCCTGCTCTCGCTGCGCGCCACGCTCGTCTCGGCGGTGTCCATCCCGCTGTCGCTGGCCACCGCGTTCCTGGTCATGGACGTGACCGGGTACACCCTGAACATCCTCACGCTGGCCGCCCTGACGATCTCCATCGGCCGCGTGGTCGACGACGCCATCGTCGTCATCGAGAACATCAAGAGACACCTGTCCTACGGCGAGGACAAGAAGGACGCGATCCTCACCGCCACGGGCGAGGTCGCCGGGGCCATCGCCGCCTCGACCATCTGCACCGTCGCCGTGTTCCTGCCGCTGGGCCTCGTGTCCGGCATGACGGGCGAGCTGTTCCGGCCGTTCGCGTTCACCGTCGCCATCGCGATGCTCGCCTCCCTGCTGGTGGCGCTCACCATCGTGCCGGTGCTGGCCTACTGGTTCGTCAAGCCGCCGAAGGGCGCCGAGGAGGCCACCGACGGCGGCCGGGCGATCCGCGAGGCTGCCGAGGCCCAGGAGCGTCGCGGTCTCTGGCAGCGCGCGTACGTGCCCAGCCTCGCCGCGTCCCTGCGGCACCCCTGGGTCTCCCTGCTCGTCGCCCTCGGCATCCTCGCCGGCACTCTGGCGCTCGTGCCGCGCCTGGAGACCAACTTCATCGGCGACTCGGGCCAGGACACCGTCACGGTGACCCAGACCTTCGAGAACACCACCTCGCTGCAGGCGCAGGACGACGCAGCCCGCGCGATGGAGCAGGCCATCGCCGACGTCGACGGCGTCGAGACGGTGCAGACGTCCGTCGGGTCCGGCGACTCGCCCGAGGCCGTGTTCTTCGGGGGCGGGGCCGCGCCCACCGCGAGCTTCTCCGTGACGCTCGACGAGGACGCCGACGGCGTCGCCGCGCAGGACGACGTCCGTGCCGCCGTCGAGGACCTCGCCGGCCAGGGGCCGACCACCGAGGTCAGCGTCTCCACCGGGGACTCCGGGTTCGGGTCCAGCACCATCGACCTGGTGGTCCAGGCGACCGAGCTCGACGACCTCACCGAGGCCGCCGAGACCGTCCAGGACGCCGTGGCCGAGCTGGACGGCGTCGCCGAGGTCACCAACGACCTCTCGACCGCCCAGACGGTCCTGCAGGTGGACGTCGACCGGGAGGCCGCGGCCGACGCCGGGCTCACCGAGACGCAGGTCGCCGGCATCGTGTCCGGGGCGATGAACCCCGAGCAGACCGTCGGGGAGGTGGACCTGGGCGACGGGCCGCTGGAGACCCTGGTGGTTACCGGAGAGGCTCCGGACACCGTCGGTGCCGTCGAGGAGATCGAGATCCCGACCGCCGCGGGCGCGGTGCCGCTCACGGACGTCGCGTCGGTCGAGGAGGTCGAGACGCCGGCCTCGATCAGCCGCGCCGCGGGGCAGCGGTCCGCGACGGTCGCGGTGACCCCCGGCGCCCAGGACCTCGGCACGCTGAGCGCCGAGGTGACCACCACCATCGACGGGCTGGAGCTGCCGGCCGGTGCCTCCGTCTCCGTCGGCGGTGTCGCGGCCGACCAGGAGGAGGCCTTCGCGGACCTCGGTCTGGCGCTCCTGGCCGCGATCGCGCTCGTCTACCTGATCATGGTCGCGACGTTCAAGTCGCTGATCCAGCCGCTGATCCTGCTGGTCTCCGTGCCGCTGTCCGCGACGGGTGCGCTCGTCGCGCTGCTGATCACCGACACCCCGCTCGGTGTCGCGGCGCTCATCGGTGTGCTGATGCTGGTCGGCATCGTGGTGTCCAACGCCATCGTGCTCATCGACCTCATCAACCAGTACCGGCGCCGGGGCCGCGACCTCGACGACGCGGTGCGCGAGGGTGCTCGCAAGCGTCTGCGACCCATCGTCATGACGGCCCTGGCGACGATCTTCGCGCTGACCCCGATGGCGTTCGGGCTCACCGGGGGCGGCGCGTTCATCTCGCAGCCGCTGGCCCTGGTGGTGATCGGCGGGCTCATCTCCTCGACGCTCCTGACGTTGCTCATCGTGCCGGTGCTCTACGTGCTGGTCGAGGGCCGCAAGGACCGCCGGGCCGCGCGTCGTCGGCGCCGGGCGGAGAAGCGGGAGCGCAAGGCCGTCGAGCGCAGGGACCGCGAGGCGACCGCCGCCGCTGCCGGCTGA	MFRLARLSLANRAVVALATVAIFVFGTLSLTSLKQELIPSLQFPAGVVLATYPGASPEVVEENVTEQIEAAVQGVDGIESVSSSASTGISTTTVEFAYGTDMDSATQRLTTVMTQIQSSLPEDVDPQVITGSLDDLPVIQLAASGAGADLAGLADEIEAVLVPDLEDVDDVRSVTVSGAVDDQVLIEADPADLAEQGLDVAQVTDVLADYGVVVPAGTVTEDGDTYSLQAGTRIGSLEEIEEIPLVPSVTSTAGADGGTSGATDDAAAAAPGAEGTVPPSGTDSAAGAPAEGGTGTDPEQLPDANAPPAPPEPVLLGDVADVSVAESEATSFSRLDGEPSLGIGIIKTPQGNTVDVSHAVQEVIDDNAAELDEAGITTAVVFDQAPFIEESIEGLATEGGLGLVFAILVILVFLLSLRATLVSAVSIPLSLATAFLVMDVTGYTLNILTLAALTISIGRVVDDAIVVIENIKRHLSYGEDKKDAILTATGEVAGAIAASTICTVAVFLPLGLVSGMTGELFRPFAFTVAIAMLASLLVALTIVPVLAYWFVKPPKGAEEATDGGRAIREAAEAQERRGLWQRAYVPSLAASLRHPWVSLLVALGILAGTLALVPRLETNFIGDSGQDTVTVTQTFENTTSLQAQDDAARAMEQAIADVDGVETVQTSVGSGDSPEAVFFGGGAAPTASFSVTLDEDADGVAAQDDVRAAVEDLAGQGPTTEVSVSTGDSGFGSSTIDLVVQATELDDLTEAAETVQDAVAELDGVAEVTNDLSTAQTVLQVDVDREAAADAGLTETQVAGIVSGAMNPEQTVGEVDLGDGPLETLVVTGEAPDTVGAVEEIEIPTAAGAVPLTDVASVEEVETPASISRAAGQRSATVAVTPGAQDLGTLSAEVTTTIDGLELPAGASVSVGGVAADQEEAFADLGLALLAAIALVYLIMVATFKSLIQPLILLVSVPLSATGALVALLITDTPLGVAALIGVLMLVGIVVSNAIVLIDLINQYRRRGRDLDDAVREGARKRLRPIVMTALATIFALTPMAFGLTGGGAFISQPLALVVIGGLISSTLLTLLIVPVLYVLVEGRKDRRAARRRRRAEKRERKAVERRDREATAAAAG	PGPT0016195_1236	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-SURFACTIN_RESISTANCE,PGPT0016195-swrC|yerP-K03296	NA	NA
AK001_01990	834			hypothetical protein	ATGAGCAACCCCGTCTTCTCGAACAGCGACGTCTTCGGCGAGCCGCGCCGCACCGCGCGCGGCGGCACCGCGACGTCGGCGCGTCCCGCGCAGTACGGCGCGTACGGGGCCCAGGCCGCCGACGCCGCCTCGCTGCAGAACATGTACGAGGCGCCGTCAGCCACCCCGGTCGACACCAAGCGCCTCACCTACACCGACGTCATCATGAAGACCGGCGGGCTGCTCGCGCTGCTCGTCGTCGTCGGCGCGGTGAGCTGGCAGCTGACCGACACGATGCCCTACCTGTGGATCGGCGGCATGATCGTCGGCCTCGTGCTGGGCCTGGTCAACGCCTTCAAGAAGAACCCCAGCCCGGTGCTCATCACGCTGTACACGGTGGCGCAGGGTCTGTTCCTGGGTGGGATCTCCGCCTTCTACGAGTCGGCCTACGACGGCATCGTGGGGCAGGCCGTCCTGCTGACCCTGTGCGTGTTCGCCGCGGCGCTGGGGCTGTACAGCTCCGGCAAGGTCCGCGTCACCCCGAAGTTCACGCGCTTCCTGCTGATCGGCATGGTCGGCTACCTGCTGTTCTCGCTGGTCAACGTCGTCCTGGTGTGGACCGGCGTGCTCGAAGGCTGGGGCATGCGCGGCGGCACGCTGGGCATCGTCATCGGCCTGTTCGCCGTGGTCCTGGCGGCCATGTCGCTGATCATGGACTTCGACTTCATCAAGCGCGGCGTGGAGGGCGGCGTGCCGGCCAAGTTCGCCTGGTCGGCGGCCTTCGGCCTCATCGTCACGCTGATCTGGCTCTACCTGGAGCTGCTGCGCCTGCTGGCGATCATGCGCGGCGACTGA	MSNPVFSNSDVFGEPRRTARGGTATSARPAQYGAYGAQAADAASLQNMYEAPSATPVDTKRLTYTDVIMKTGGLLALLVVVGAVSWQLTDTMPYLWIGGMIVGLVLGLVNAFKKNPSPVLITLYTVAQGLFLGGISAFYESAYDGIVGQAVLLTLCVFAAALGLYSSGKVRVTPKFTRFLLIGMVGYLLFSLVNVVLVWTGVLEGWGMRGGTLGIVIGLFAVVLAAMSLIMDFDFIKRGVEGGVPAKFAWSAAFGLIVTLIWLYLELLRLLAIMRGD				NA	NA	NA	NA	NA
AK001_01991	1917		COG3387	Trehalase	ATGACGCTCGATGCACAGGCACCACCGCGCACGGACGGACGCAGCACGTTCCCCGCGATCGCGGAGTACGCGTTCCTGTCCGACTGCGAGACGAACGCCCTCGTCGCCCCGAGCGGCGCGATCGAGTGGATGTGCGTCCCACGTCCGGACTCCCCGAGCGTCTTCTCCTCGCTCCTGGACCGCGGAGCGGGCCACTTCCGCATCGGCCCCCACGGGGTCCGCGTTCCCGTCGCACGGCGGTACATCCCCGGCACCCTCATCCTCGAGACCACCTGGCAGACCTCGACCGGATGGCTCGTGGTCCGCGACGCGATGGTCATGGGGCCCTGGCACAACCTGGACGAGCGGTCGCAGACGCACCGGCGCACGCCGACGGACCACGACGCCGAGCACGTCCTGCTGCGCACCGTGAAGTGCGTCTCCGGGAAGGTCGACCTCGAGGTCGTGTGCTCGCCGATGTCCGACTACGCCCGGTACGAGCCCGACTGGGAGTACCTCGACGAGGGGTACTCGTCGGTGATCGCCCGCACCGGGGACGCCAACCCCGACCTGCGGCTCAGCTCCTCGCTGCGCTTCGGTCTCGAGGGCCGGCGCGCCCAGGCCCGCACCCGCATGGAGGAGGGCGACACCCACTTCGTCGCCATGGCCTGGTCCCCGCTGCCGACTCCCGGTTCCTTCGCCGAGGCCGCCGAGAAGATGTGGCGCACCGAGCAGTTCTGGCGCGACTGGATCACGCAGGGCTTCTTCCCCGACCACCCGTGGCGCATCTACCTGCAGCGGTCCGCCCTGACCCTCAAGGGCCTGACGTACGCCCCGTCCGGCGCGCTGCTCGCCGCGGCGACGACGTCGCTGCCGGAGACGCCCGGCGGGGAGCGCAACTGGGACTACCGGTACGCCTGGATCCGCGACTCCACGTTCGCGCTGTGGGGCTTGTACACCCTCGGGCTGGACCGCGAGGCGAACGACTTCTTCGCGTTCATCCAGGACGCCTGCCAGGACAACAAGCAGCTGCAGATCATGTACGGCGTCGACGGCGAGGAGGAGCTGCACGAGTCCGAGCTGAGCCACCTCACGGGCTACGAGGGTGCCCAGCCGGTCCGCGTCGGCAACGCCGCCTACAACCAGAGCCAGCACGACGTCTGGGGCGCGGTCCTCGACTCGGTCTACCTGCACACCCGCAACCGCGAGCAGCTCCCCGAGGCGTTGTGGCCCGTCCTGAAGCGTCAGGTCGAGGAGGCCGCCAAGCACTGGCACCTGCCGGACCGCGGAATCTGGGAGGTGCGCGGCGACCCGCAGCACTTCACCTCGTCCAAGCTCATGTGCTGGGTGGCGCTCGACCGGGGCGCCCGCCTGGCGCGGCTGTACGACGAGCCGGACTTCGCCGAGCAGTGGCAGAAGCTTGCCGACGAGATCCACGCCGACATCTGCTCCAAGGGCGTCGACGAGCGCGGCGTGTTCACCCAGCGGTACGGCGACGACTCCCTGGACGCCTCGCTGCTGCTGGTGCCGCTGCTGCGGTTCCTGCCGCCGGACGACGAGCGGGTGCGCGCCACCGTGCTCGCCATCGCCGACGAGCTCACCGAGGACGGCCTGGTGCTGCGCTACCGCACCGAGGAGACGGACGACGGGCTGGCCGGCGAGGAGGGCACGTTCACGATCTGCTCGTTCTGGCTCGTCTCGGCGCTGTGCGAGATCGGGGAGGTCGAACGGGCCCGGACGCTGTGCGAGCGGCTGCTGTCCTTCGGGTCGTCGCTGAACCTGTACGCCGAGGAGATCGACCCGCGCACCGGGCGGCACCTGGGCAACTTCCCGCAGGCGTTCACGCACCTGGCGCTCATCAACGCCGTCATGCACGTGATCCGCGCCGAGGACGACCCGGGCGACCACCGGGCGTTCCGCACCCCGAGCCGCGCCTGA	MTLDAQAPPRTDGRSTFPAIAEYAFLSDCETNALVAPSGAIEWMCVPRPDSPSVFSSLLDRGAGHFRIGPHGVRVPVARRYIPGTLILETTWQTSTGWLVVRDAMVMGPWHNLDERSQTHRRTPTDHDAEHVLLRTVKCVSGKVDLEVVCSPMSDYARYEPDWEYLDEGYSSVIARTGDANPDLRLSSSLRFGLEGRRAQARTRMEEGDTHFVAMAWSPLPTPGSFAEAAEKMWRTEQFWRDWITQGFFPDHPWRIYLQRSALTLKGLTYAPSGALLAAATTSLPETPGGERNWDYRYAWIRDSTFALWGLYTLGLDREANDFFAFIQDACQDNKQLQIMYGVDGEEELHESELSHLTGYEGAQPVRVGNAAYNQSQHDVWGAVLDSVYLHTRNREQLPEALWPVLKRQVEEAAKHWHLPDRGIWEVRGDPQHFTSSKLMCWVALDRGARLARLYDEPDFAEQWQKLADEIHADICSKGVDERGVFTQRYGDDSLDASLLLVPLLRFLPPDDERVRATVLAIADELTEDGLVLRYRTEETDDGLAGEEGTFTICSFWLVSALCEIGEVERARTLCERLLSFGSSLNLYAEEIDPRTGRHLGNFPQAFTHLALINAVMHVIRAEDDPGDHRAFRTPSRA	PGPT0014070_147	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-TREHALASE,PGPT0014070-EC_3_2_1_28|alpha_trehalase-K22934	NA	NA
AK001_01992	423			hypothetical protein	ATGACCAAGTACATGCTGATCATGCGGGGTACCGACGAGGGCCGGGCGCAGTACGAGGAGACGGACTTCTCCGAGGTGATCGCCGCCATGGGCCGCTACAACGAGTCGATGATGGACGCGGGGGTCCTGACCGCCGGCGAGGGCCTCTCGGACGCCTCGGAGGGCGCCGTCGTCGACTTCTCCTCCGACACCCCGGTCGTCACCGACGGGCCGTACGGGGAGACGAAGGAGCTGTTCAACGGCTTCTGGATCCTCGACGTCGCCTCCCGGGCCGAGGCGATCGAGTGGGCCAAGCGAGCCCCGCTGAGCGGTCCGGGCACCAAGCTCGAGGTCCGTCGCGTGCACGGCGAGGAGGACTTCCCGGCCGACGACGAGTGGATCCAGAAGGAGAAGGAGTGGCGCAAGCAGCTCGGCACGGAGTGA	MTKYMLIMRGTDEGRAQYEETDFSEVIAAMGRYNESMMDAGVLTAGEGLSDASEGAVVDFSSDTPVVTDGPYGETKELFNGFWILDVASRAEAIEWAKRAPLSGPGTKLEVRRVHGEEDFPADDEWIQKEKEWRKQLGTE	PGPT0030505_30	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK001_01993	1263			hypothetical protein	GTGGAGGCCACCTGGCGCATCGACGCCGCGCGGATCGTCGGTGCGCTCGCCCGGTACACCGGGGACGTCGCCCTGGCCGAGGACGTCGCCCAGGAGGCGCTGGCCGAGGCCCTCGTGGCCTGGCCGCGCGACGGGCAGCCCCGCGACCCGACCGCCTGGTTGCTCACCACCGCGCGGCGGCGGGCCATCGACGCGTTCCGGCGTCGTGCGGGACGCGACGAGCGGTACGCCGCCCTGGGCCACGACCTCGGCGAGGGCGAGGCGCACGCCGGGGCGCCGCCGTCGGACACCGGTGAACCTGACCTGCTGTGGGACCCGGACCGGATCGAGGACGACCGGCTCGCCCTGATCTTCACCGCCTGCCACCCGGTGCTGTCCACGGAGGCGCGGGTGGCGCTCACGCTGCGGGTGGTCGGTGGGCTGACCAGCGACGAGATCGCGCGGGCCTTCCTGCTCCCGCGCACGACGGTCCAGGCGCGCATCACCCGGGCCAAGAAGACGCTCGCCGCGGCCCGGGTCCCGTTCGAGGTGCCGCCCGCTGCCGACCGGCCCGAGCGGCTGGGGTCCGTGCTCACCGTGGTGTACCTGATCTTCACCGAGGGGTCGACGGCGTCGGGTGGCACGGACTGGATCCGCGCCGACCTCGCCCGGGAGGCCGTCCGGCTGGCCCGGGTGCTGGACCGGCTCGTGCCCGGAGAGCCCGAGGTCGCCGGTCTGCTCGCGCTGCTGGAGCTGACCGCGGCCCGGTTCCCGGCCCGCACCGGCCCGGACGGAGAGCCCGTGCTGCTCGCCGACCAGGACCGCCGCCGCTGGGACGTCGGGGCGATCCGGCGTGGACGCGCCGCGCTGGCGCGGGCCACCGCCGTCGGACGCGGGTTGGGGCCGTACGGTCTGCAGGCCGCGATCGCCGAGCAGCACGACGTCGCGCGGTCGGTCGACGACACCGACTGGGAGCAGATCGTCGTGCTGTACGAGGCGCTCGGCCGCGTCGCACCGTCGCCCGTCGTGGAGCTGAACCGGGCCGTCGCGGTGTCGATGGCGTCCGGTCCGGCCGCCGCGCTGGAGATCGTCGACGACCTCGCCGCCCGCGAGGTGCTCACCGGGACCTACCTGCTGCCCAGCGTCCGGGGCGAGCTGCTGTCCCGCCTCGGACGCCGGGACGAGGCCCGCACCGAGCTGGAGCTCGCGGCGCGGCTGTGCGGCAACGACCGCGAGCGAGGGGTGCTGGAGGCCAAGGCCGCGGCCCTGGGCGGGTCGTCGTAG	MEATWRIDAARIVGALARYTGDVALAEDVAQEALAEALVAWPRDGQPRDPTAWLLTTARRRAIDAFRRRAGRDERYAALGHDLGEGEAHAGAPPSDTGEPDLLWDPDRIEDDRLALIFTACHPVLSTEARVALTLRVVGGLTSDEIARAFLLPRTTVQARITRAKKTLAAARVPFEVPPAADRPERLGSVLTVVYLIFTEGSTASGGTDWIRADLAREAVRLARVLDRLVPGEPEVAGLLALLELTAARFPARTGPDGEPVLLADQDRRRWDVGAIRRGRAALARATAVGRGLGPYGLQAAIAEQHDVARSVDDTDWEQIVVLYEALGRVAPSPVVELNRAVAVSMASGPAAALEIVDDLAAREVLTGTYLLPSVRGELLSRLGRRDEARTELELAARLCGNDRERGVLEAKAAALGGSS	PGPT0014960_87	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_01994	402	fkbP		FK506-binding protein	ATGACCACGCTGCCCACCGCCACCGGCTCCTTCGGCGACAAGCCCGAGATCACCTTCCCCGAGGGCGACGCCCCGTCGGGCCTGCAGGTCCAGGTGCTCGAGGAGGGCTCCGGCCCCGTCGTGGACGCCGGCCGCACCATCGTCGTCAACTACTACGGCCAGACCTGGGGCGGCCAGATGTTCGACAACTCCTGGGACCGCGGCCAGACCATCGATTTCCCGATCGGCGTCGGCGCCGTCATCGGCGGCTGGGACAAGGGGCTCGTCGGCCGCAACGTCGGCGACCGCGTGCTGCTGTCCATCCCGTCCGAGCACGGCTACGGCCAGCGCGGCGTGCCGCAGGCCGGTATCCCCGGCGGGGCGACCCTGGTGTTCGTCGTGGACGTCGTCGACGTGAAGTGA	MTTLPTATGSFGDKPEITFPEGDAPSGLQVQVLEEGSGPVVDAGRTIVVNYYGQTWGGQMFDNSWDRGQTIDFPIGVGAVIGGWDKGLVGRNVGDRVLLSIPSEHGYGQRGVPQAGIPGGATLVFVVDVVDVK	PGPT0015110_204	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767	NA	NA
AK001_01995	1221	rlmG	COG2813	Ribosomal RNA large subunit methyltransferase G	GTGACACCCCCCGCCGCCCTGCCGCCCACCGTGACCGCCGTGCTCGACCGGCTCGTGCCCTGGCCCGACGACGGCACCCGCGCCGACGGTCCGGTCGCCGTCGACGCCACCGACCGGCTGCTGCTGGCCGAGGCCGCCGACCGGCTCGCCGCGGCGGGTCCGGGCGACGTCGTCGTCCTCGGCGACCGCTTCGGGGCGCTCACGCTCGGCGCGCTCGCCCTCGGCGCGCCGGACGTGCGCACCCACACCGACGCCCTCGGCGCCGAGCTCGCGCTGCGCCACCACCTCGACCAGGACCCCGACGACCTGCGACGTCGCGTGACGATCGTCGACGCGCTCGAGCCGGCCCTGCTCGACGGCGCCCGGCTGGTGCTGCTGCAGCTGCCCAAGTCGCTGTCCGAGCTCACCGAGATCGCGGAGGCCGTCGCCCGGCACGCGGCCGACGACGTCACGCTCCTGGCCGGTGGCCGCGTCAAGCACATGACCCGCGCCATGAACGACGTGCTCGCCGACCGCTTCACCGCGGTCCGCGCCACGCTGGCGCGCAGCAAGTCCCGGGCCCTCGTGGCGTCCGGCGCCCGCCCCGAGATCCGCGACGCCGCGCCCCTGTACCCGGTCCACGAGCGCCTGACCGACCCGGAGCTGCTGGCGGCGGCGACCCCGACCGACGGCGGCGCTCCCCCGACCCATCTCGACGTCGTCGCGCACGGCGGCGCGTTCGCCGGAGCAGCCCTCGACCACGGCACCCGGTTCCTGCTGAGCACCGCCGGACGCTGGCCCGCCGCCGAGCGGGTGCACGACGCCGTCGACCTCGGGTGCGGCACCGGTCTGCTGTCCGTCGTGCTGGCCCGCCGCTACCCGCAGGCGCGCGTCGTGGCCACCGACCGCTCGGCGGCGGCGGTCGCGTCCACCCGGACGACGCTGGCGGCGAACCGCGTCTCCGCCGTCGTGCAGCGGGACGACGCCGGGGCCGGTCTGGCCGACGAGAGCGCCGACGTCGTGCTGCTCAACCCGCCCTTCCACGACCGTGCCGCCGTCAGCACGGACGCCGCGCACCGCATGTTCGCCGCGGCCGGACGGATCCTGCGCCCCGGCGGTGAGCTGTGGTGCGTGTACAACACGCGGCTGCGCTACCGCGGGTCGCTCGCCCGTGCCGTCGGGCCCACGGACCACGTCGCCCAGGACCCCCGCTTCACGGTCACCCGCTCCCGCAAGGGGTAG	MTPPAALPPTVTAVLDRLVPWPDDGTRADGPVAVDATDRLLLAEAADRLAAAGPGDVVVLGDRFGALTLGALALGAPDVRTHTDALGAELALRHHLDQDPDDLRRRVTIVDALEPALLDGARLVLLQLPKSLSELTEIAEAVARHAADDVTLLAGGRVKHMTRAMNDVLADRFTAVRATLARSKSRALVASGARPEIRDAAPLYPVHERLTDPELLAAATPTDGGAPPTHLDVVAHGGAFAGAALDHGTRFLLSTAGRWPAAERVHDAVDLGCGTGLLSVVLARRYPQARVVATDRSAAAVASTRTTLAANRVSAVVQRDDAGAGLADESADVVLLNPPFHDRAAVSTDAAHRMFAAAGRILRPGGELWCVYNTRLRYRGSLARAVGPTDHVAQDPRFTVTRSRKG				NA	NA	NA	NA	NA
AK001_01996	324			hypothetical protein	ATGACCGAAGCCACGTCGTCCGAGGCCCGTGTGTCCATCACCTACTGCACCCAGTGCCGCTGGCTGATGCGGGCGGCGTGGGTCGCCCAGGAGCTGCTGCAGACGTTCCGCACGCGGCTGGGTGAGGTCGCGCTCGTGCCGGGGACGGGCGGGGTGTTCCGCGTGGAGCTGGTGCGGGCGCCCGGCGAGGAGCCGGTGCTGCTGTGGGACCGCAAGGCCGAGGGCGGGTTCCCCGAGATCCCGCCGCTCAAGAAGGCCGTGCGGGACGCCGTCGCGCCGGACATGGCCCTCGGGCACACCGACCGGGTCGCCTCCGGCGACTGA	MTEATSSEARVSITYCTQCRWLMRAAWVAQELLQTFRTRLGEVALVPGTGGVFRVELVRAPGEEPVLLWDRKAEGGFPEIPPLKKAVRDAVAPDMALGHTDRVASGD				NA	NA	NA	NA	NA
AK001_01997	384			hypothetical protein	ATGGCCGGAACACCCTTCTCCCAGCAGGTCCTCAAGCCGACGAACGCCGCGAAGCGGCTCGGTGTCTACCTGCCCGCCACGCCGGCGGAGTTCCAGGAGAAGGGCATCAGCCGCGCCGAGCTGGAGAAGCTCGAGCAGAACCCGCCGGAGTGGCTCGACGAGCTGCGCCGCAACGGTCCGCACCCGCGTCCGGTGGTGGCCGGCCGGCTCGGCATCTCGATCGGCGGGCTGGCGCGCGGCGGCATCACCGAGCCGCTGACCACCGAGCAGATCGACGAGCTGCGCGAGGACCCCCCGGCGTGGCTGGTCCGCGAGCGCGAGACGGCCGCCACGGTGCGCGCCGAGGAGGAGCGGATCGCGGCCGAGCGGAAGACCGAGGACTGA	MAGTPFSQQVLKPTNAAKRLGVYLPATPAEFQEKGISRAELEKLEQNPPEWLDELRRNGPHPRPVVAGRLGISIGGLARGGITEPLTTEQIDELREDPPAWLVRERETAATVRAEEERIAAERKTED				NA	NA	NA	NA	NA
AK001_01998	669			hypothetical protein	ATGAGCGAGGCCGGCGAGAAGCCCGCGGTCCGCCGGCGCCGCAGCCCCAAGGGCGAGCGACGCCGCGAGTCGATCCTCGCCGTGGCGGCGGAGCACTTCGCGCAGGGCGGGCTGGACTCCGCGAGCCTGGCCGAGATCGCGGCGAAGGCCGGGCTCACGCAGGCGGGGCTGCTGCACCACTTCCCCTCCAAGCACGCCCTCCTCCTCGCCGTCCTCGAACGCCGCGACAGGCCACCGGAGACCGGCCAGGTCGACGTCACCGGGGTCGACTTCCTGACCGGCTACCTCGACGTCCTCAGCGACAACGAGAACGACCGACACGAGATGCAGTTCTTCGCGATGCTGTCGACCGAGAGCATCGCGACGGACCATCCGGCCCACGAGCACTTCCGCGAGCGTCAGCGCGCCCTCACGGAGGCCATGACCGAGGCGCTCACCAGCATCGTCGACACGGACCTGCTCGCCGGGAGCACCACGGTCGCCGACGTCGCGGACTGGATCGTCGCCCTGTCGGACGCCATGCGCGTGCAGTGGTTGCGCGATCCCGCGAGCGTCGACCGCACCGAGTCGATCTTCCGCCTCCTCGAGACCCTCGCGCCCGCGATGCATCCCGCAGCACGCGACGCCCTCCTGACCCACATCCGGCGGCGACGCGAGGACGCCTCCTGA	MSEAGEKPAVRRRRSPKGERRRESILAVAAEHFAQGGLDSASLAEIAAKAGLTQAGLLHHFPSKHALLLAVLERRDRPPETGQVDVTGVDFLTGYLDVLSDNENDRHEMQFFAMLSTESIATDHPAHEHFRERQRALTEAMTEALTSIVDTDLLAGSTTVADVADWIVALSDAMRVQWLRDPASVDRTESIFRLLETLAPAMHPAARDALLTHIRRRREDAS				NA	NA	NA	NA	NA
AK001_01999	1566	atsA_2	COG3119	Arylsulfatase	GTGTCCACCCAGCCTCCGCCCTCAGATCCGACCGACCACGAGCCGGCGGACGCCGGGGCTCCCGTGGAAGCACATGACGACGCCCGCCCGCGGCGGCATCGCCTCCGGCGCCTCCTCATCGGCGCCGGCCTCGTGCTCGCTCTGCCCATCACCCTGCTGATGGGCGGCATCGGGTACGCGCTGTTCGAGCTCCTGACCAACCGCCCCGACGACTCGCCCCAGCACCAGGCGTCCAAGCGGGAGTACCTCGGTGCGGTCGCCGACCGGCCGCGGCCCGCGACGCCCCGCGAGCGTCCCAACGTGGTGCTGGCGTACTACGACGACCTGGGCTACGGCGACTTCGGCTTCTCGGGCGACGGCCCGATCGACACCCCGAACATCGACGCGCTGGCAGCCGACGGTGTGGTCCTGACGAACTACCACGCGCCGTCGCCGGTCTGCACACCGTCACGTGCCGCGCTGCTGACGGGCCGTCTGGCGCCGCGCGCGGACGTGCCCGGCGTGCTGTTCCCGAGCGGCTCGATCCAGGGAACGCTCCAGAACGACGTCGTCGGCGACTTCGCCCTGACGCAGGCGGAGGTGACGATTCCCGAGGTGCTGGGCGCCGCGGGCTACCAGACCGGCATGATCGGCAAGTGGCACCTCGGCGACACCCCGGGGTCGCTGCCCCTGGACTACGGGTTCGACTCGTTCCTGGGGTCGCTGTACTCGAACGACATCGACCCGTTCGAGATCTACGACGGCGAGGACGTGCTGCTCGAGGCTCCCGTCGACCAGACCACCATCGACGCGCTGTACACGGACGCGGCCGTCGACTACGTCGGCACGGCCGCCGAGGACGAGGACCCCTTCTTCCTCTACTTCGCCCACAACTTCCCGCACGACCCGCTCTACGTCCCGGCCGAGCACGAGGGGCGCTCGGACGCCGGTCTGTACGGCGACGTCGTCGAGACCCTCGACGACGGCATCGGTCGCATCGTGGACGAGCTCGAGGCGACCGGTGAGCTCGACAACACCGTCGTCATCGTCACGAGCGACAACGGGCCGTGGTACCTCGGCGACCCGGGCGACCATCGCGGACGCAAGGGCCAGGTCAGCGAGGGTGGCACCCGCGTGCCGTTCCTCGTCAGCTGGCCCGACGGCATCGAGGGCGGTCGCGAGATCTCGTCGATGGCGATGGGCACGGACATCCTCCCGACCCTGATGGACTGGCTCGACGTGCCCGCCCCGACCGACCGGGTGCTCGACGGCGCATCGATGGTCCCGCTCTTGGAGGGCACGAGCACGACGGTGGGCGACTACTACTACTTCTACGCCGGCCGGGAGCTCTTCGCCGTCAGCGACGGTCGCTACAAGTACTACGTCGAGCAGCCGTACATCCACGCGAACAGCGGGCTGCCGATCGGGTTCGGCACACCGGCGGGCCCGTGGCTGTTCGACCTCGAGAAGGACCCGGCCGAGGCCTACGACGTCTCGGCGTCCCACCCGGAGATCGTGGCGGAGCTGGCCGCCGAGCTGAAGCGACGCAACGCCGAGATGGCCGACAACCCGCGGGGGTGGCGCTGA	MSTQPPPSDPTDHEPADAGAPVEAHDDARPRRHRLRRLLIGAGLVLALPITLLMGGIGYALFELLTNRPDDSPQHQASKREYLGAVADRPRPATPRERPNVVLAYYDDLGYGDFGFSGDGPIDTPNIDALAADGVVLTNYHAPSPVCTPSRAALLTGRLAPRADVPGVLFPSGSIQGTLQNDVVGDFALTQAEVTIPEVLGAAGYQTGMIGKWHLGDTPGSLPLDYGFDSFLGSLYSNDIDPFEIYDGEDVLLEAPVDQTTIDALYTDAAVDYVGTAAEDEDPFFLYFAHNFPHDPLYVPAEHEGRSDAGLYGDVVETLDDGIGRIVDELEATGELDNTVVIVTSDNGPWYLGDPGDHRGRKGQVSEGGTRVPFLVSWPDGIEGGREISSMAMGTDILPTLMDWLDVPAPTDRVLDGASMVPLLEGTSTTVGDYYYFYAGRELFAVSDGRYKYYVEQPYIHANSGLPIGFGTPAGPWLFDLEKDPAEAYDVSASHPEIVAELAAELKRRNAEMADNPRGWR				NA	NA	NA	NA	NA
AK001_02000	891			hypothetical protein	GTGAGCGAGGACACCCGGCCCGAGCGGCCCGACGACGCCGGTCCCGGAGCGGACGACGGCCCCCGGTTCCGCCTGGGCTACGTCCCGGGTGCCACGCCGGGCAAGTGGGCCCGCACCTGGGAGCAGCGACTGCGTGATGTGCCGCTGGACCTCGTGCAGATCGAGGCCGCGGAGGTCGCCGGCGCCGTGCGTGCCGGGGACGTCGACGCGGCGATCGGGCGGCTGCCCGTCGACAAGGACGTGTTCCACGCGATCGAGCTCTACGTCGAGCTGCCGATGGTCGTGGTCTCGCGCGACCACCTGCTGGCGGCGACCGAGGAGTCCGAGCGCGTCACCACCGCGGACCTCGACGACGACGTGCTGTGGGTGGCGGGCGACGACGTGCTGTTCACCGGCGACGTGCCCCGTCCCGGCCGGGCGCCGGAGGTGTACGACGACGGCACGGGAACCCTGGTGACCCCGGCCCCGGCCACGACGTCGGAGGCGGTCGCCTGGGCCGCCACGGGCAGCGGCGTCGTGGTCGTCCCCATGTCCCTGGCGCGGCTGCACCGGCGCAAGGACGTCGTGCACCGGGTGCTCGACGACGGTCCGGAGGCTCCGGTCGGGCTGGTCTGGCTCCGCGACGGCTTGTCCGAGGAGACGGCCGCGCTGGTCGAGGAGATGGTCGGCATCGTGCGCGGCCGCACCGCGAACAGCTCCCGCGGCCGGGCGGGGGATTCCGGGCGGTCCTCGACCAAGGCGGCGGCCGGCACGAAGGCGTCGGGCGCTGCCGCGAAGAAGTCCGGGACCTCCGGCGGGCGTGGGGGAGCGGCGGGCTCCCGCCGTTGCGCGTCCCCGGGCGGCCGACGTGGACGTCCCGGAGGCGGCAAGGGGCGCGGCAAGCGCCGCTGA	MSEDTRPERPDDAGPGADDGPRFRLGYVPGATPGKWARTWEQRLRDVPLDLVQIEAAEVAGAVRAGDVDAAIGRLPVDKDVFHAIELYVELPMVVVSRDHLLAATEESERVTTADLDDDVLWVAGDDVLFTGDVPRPGRAPEVYDDGTGTLVTPAPATTSEAVAWAATGSGVVVVPMSLARLHRRKDVVHRVLDDGPEAPVGLVWLRDGLSEETAALVEEMVGIVRGRTANSSRGRAGDSGRSSTKAAAGTKASGAAAKKSGTSGGRGGAAGSRRCASPGGRRGRPGGGKGRGKRR				NA	NA	NA	NA	NA
AK001_02001	1572	ligB	COG1793	DNA ligase B	GTGCTCCTGGTCGAGCTGGTCCGCACGCACGCCGCGGTCGCCGCGACGCGCTCCCGCCTGCGCAAGCGCGAGCTGCTCGCCGAGGCGCTGCGGGACGCCGTTCCCCCGGCAGCGAGCACGCCCGAGGGCGACGAGATCGAGATCGTCGCCGCCTACCTGTCCGGTCGCCCCCGGCAGCGCCGCACCGGCCTCGGATGGCGCACGCTGTCCGACCTGCCGCCTGCGGCGGACGCCGCCACACTGACCCCGGTCGCGGTCGACGCCGCCCTGTCCGCGATGCAGGCGCTCGAGGGCGCGGGCTCCCACACGGCGCGCACGCAGGCCTTCACCGAGCTGTTCTCCCGGGCCACGGCCGACGAACAACGGTTCCTTGCCGGCCTGCTGCGCGGCGAGCTGCGTCAGGGCGCCCTGGACTCGCTCCTGCTCGACGCCATCGCCGCCGCGGCCGACGTCCCGACGAAGGCCGTGCGCCGCGCGGCGATGTTCAGCGCGCTGTCCGGCCCGATCGCGCGGGCCGCGTTGACCGGCGGGGCGCCGGCGCTGGAGGCCTTCGCCCTGCGGGTCGGCCGTCCGGTGCGCCCCATGCTGGCCTCGTCCGCACCCGACGTCGACGCCGTCGTCGAACGCTTCGCCGGCACGTCCGTCGCGGCGGACGTGAAGCTCGACGGCATCCGCGTCCAGGTGCACGTGGCCGGTGACGACGTCGCCGTGTTCACCCGGTCGCTCGACGACATCACCGAACGCCTCCCCGAGGTCGTGGCGCTGGCCCGCTCCCTGGAGGTGGACGCCGCCGTGCTCGACGGCGAGGCCCTCGCCCTCGACGACGCCGGACGGCCCCGGCCGTTCCAGGAGACGGCGTCGCGCACCGGCACCCACGAGGCGGACCCGGGCACGAGCCTGCCGCTGACCGTGAGGTTCTTCGACCTGCTGCACCTCGACGGCACCGACCTCGTCGACGCCCCGGCTCGCGACCGCCTGGCCGCGCTCGACCGGGCGGTGCCGCCGGACGCCGTCGTCCCCCGGCTGGTCGACGCCGACGCCGCGGCGCTGCAGGCGTTCTTCGAGCAGGTCGTCGCCGGCGGGCACGAGGGCGTCGTGGTCAAGGACCTCGACGCCCCCTACGCGGCGGGCAAGCGCGGAGCCGCCTGGGTCAAGGTCAAGCCGCGACACACCCTGGACCTCGTCGTGCTCGCCGTCGAGCAGGGGTCCGGGCGGCGGCACGGGTGGCTGTCGAACATCCACCTCGGCGCGCGGGACCCCGCCGGCGACGGGTTCGTCATGCTCGGCAAGACCTTCAAGGGCATGACCGACGAGATGCTCGCCTGGCAGACCGAGCGGTTCACCGAGCTCGCCGAGGGCCCGACCGACGGCTACGTGGTGCAGGTGCGCCCGGAGCAGGTCGTCGAGATCGCGTTCGACGGCGTGCAACGCTCCACCCGCTACCCCGGCGGCGTCGCCCTGCGCTTCGCCCGCGTGCTGCGCTACCGCGACGACAAGACCGCCGCCGAGGTCGACACCATCGACGCCGTGCGCGGGCTCCTGGCCGGGGGCGGGGCGTCGCCCGGCGACTGA	MLLVELVRTHAAVAATRSRLRKRELLAEALRDAVPPAASTPEGDEIEIVAAYLSGRPRQRRTGLGWRTLSDLPPAADAATLTPVAVDAALSAMQALEGAGSHTARTQAFTELFSRATADEQRFLAGLLRGELRQGALDSLLLDAIAAAADVPTKAVRRAAMFSALSGPIARAALTGGAPALEAFALRVGRPVRPMLASSAPDVDAVVERFAGTSVAADVKLDGIRVQVHVAGDDVAVFTRSLDDITERLPEVVALARSLEVDAAVLDGEALALDDAGRPRPFQETASRTGTHEADPGTSLPLTVRFFDLLHLDGTDLVDAPARDRLAALDRAVPPDAVVPRLVDADAAALQAFFEQVVAGGHEGVVVKDLDAPYAAGKRGAAWVKVKPRHTLDLVVLAVEQGSGRRHGWLSNIHLGARDPAGDGFVMLGKTFKGMTDEMLAWQTERFTELAEGPTDGYVVQVRPEQVVEIAFDGVQRSTRYPGGVALRFARVLRYRDDKTAAEVDTIDAVRGLLAGGGASPGD				NA	NA	NA	NA	NA
AK001_02002	378	yybR	COG1733	putative HTH-type transcriptional regulator YybR	GTGACCCAGATCCCGTTCGACCCGTACCTCAAGGCCTGTCCGAGCCGCACGGTCCTCGACCGCGTCGCCGACCGGTGGACCGTCCTCGTCGTCGGCGCCCTGGCCGACGGCCCGCAGCGCTTCTCCGCGCTGGCGCAGCGCGTCGACGGCGTCTCGCAGAAGATGCTCACCCAGACGCTGCGCGGCCTCGAGCGCGACGGCCTCGTGCAGCGCACCGTGCATGCCGAGGTCCCGCCGCGCGTCGAGTACGCCCTCACCGCCGCCGGGCACGACGTGCTCGGTCCCCTGCAGGCTCTCGAACGCTGGACCCTGGACCACTCCGCGGACGTGCTCGCCGCCCGCGAGGCCTACGACACCGCCCACCCGGTGACCGCCTGA	MTQIPFDPYLKACPSRTVLDRVADRWTVLVVGALADGPQRFSALAQRVDGVSQKMLTQTLRGLERDGLVQRTVHAEVPPRVEYALTAAGHDVLGPLQALERWTLDHSADVLAAREAYDTAHPVTA				NA	NA	NA	NA	NA
AK001_02003	645			hypothetical protein	ATGGCGCGCATCACCGTCATCGGAGGCACCGGTTACGCCGGGGAGCACATCGTCCGCGAGGCCGCCGCGCGCGGTCACGAGGTCACCTCGCTGAGCCGGTCCGAGCCCACCGAGCCCGTCGACGGCGTGCGGTACACCACCGGATCCGTCCTGGACGAGGCGACCGTGGACAGCGCCGCGGAGGGTGCCGACGTCGTCGTCGCGACCGTCTCCCCGCGCGGCGACATGGCCGGCCAGGTCCGCCCCGCCTACGCCCGGCTCGCCGACCGGGCCGCCGCGCACGACGCGCGCCTCGCCGTCGTCGGCGGTGCCGGATCCCTCAAGGTCAGCGAGGACGGCCCGCGCGTCGTCGACGGCCCCGACTTCCCGGACGCGTTCAAGGCCGAGGCGCTCGAGTTCACCGACATCCTCGCCGACCTGCAGGACGCGCCCCAGGGCCTCGACTGGTTCTACCTCAGCCCGCCGGCCGTGTTCGGCTCCTACGCCCCCGGCGAGAAGACCGGCACGTACCGCACCGGCGGTGACGTGCTCCTGGCCGACGGCGAGGGCAACTCGTTCATCTCGGGTGCCGACTTCGCGACCGCGCTGGTCGACGAGCTGGAGAACCCGACGCACCGCCGTCGGCGGTTCACCGTCGCGAGCTGA	MARITVIGGTGYAGEHIVREAAARGHEVTSLSRSEPTEPVDGVRYTTGSVLDEATVDSAAEGADVVVATVSPRGDMAGQVRPAYARLADRAAAHDARLAVVGGAGSLKVSEDGPRVVDGPDFPDAFKAEALEFTDILADLQDAPQGLDWFYLSPPAVFGSYAPGEKTGTYRTGGDVLLADGEGNSFISGADFATALVDELENPTHRRRRFTVAS	PGPT0020900_491	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118	NA	NA
AK001_02004	672	msrA	COG0225	Peptide methionine sulfoxide reductase MsrA	ATGATCTTCGAGAACCTGTTCGGCGGCGGCAAGACGACGATGGTCGCGCCGGAGGACGCCCTGCCGGGCCGGGAGGGGCCGGTGCTGCCCGCTCCCCGTCCGCACACCGTGCTCGGCACCTCGATCGTCGGCCCCTGGGAGCCCGGCACCCGCGTGCTGTACCTCGCCATGGGCTGCTTCTGGGGCGCCGAGGAGATCTACTGGCAGGTCCCCGGGGTCGTGAGCACCGCCGTCGGCTACATGGGTGGCACGACGCCGAACCCCACCTACGAGGAGGTCTGCACCGCGCGGACCGGGCACACCGAGACCGCGATGGTCGCCTACGACCCGGAGCAGGTGTCCGAGGAGGAGCTGCTGCGGATCTTCTGGGAGCGCCACGACCCGACCCAGGGCTTCCGCCAGGGCAACGACGTCGGCACCCAGTACCGCTCCGGCATCTACTGGACGACGCCGGAGCAGGCCGAGGCCGCGCGGTCCACGGCCGAGCGCTACGGCGAGGTGCTGGCCGCGAAGGGCTACGACCCGATCACCACCGAGCTGCGCCCGGCCGCCGAGGCAGGCCCGTTCTTCTACGCCGAGGACTACCACCAGCAGTACCTGTCCGACGCGAAGAACCCGCACGGCTACCGCTGCCACGCCACGACCGGCGTGCCGTTCCCCGCGGCCGCCTGA	MIFENLFGGGKTTMVAPEDALPGREGPVLPAPRPHTVLGTSIVGPWEPGTRVLYLAMGCFWGAEEIYWQVPGVVSTAVGYMGGTTPNPTYEEVCTARTGHTETAMVAYDPEQVSEEELLRIFWERHDPTQGFRQGNDVGTQYRSGIYWTTPEQAEAARSTAERYGEVLAAKGYDPITTELRPAAEAGPFFYAEDYHQQYLSDAKNPHGYRCHATTGVPFPAAA	PGPT0013065_1676	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304	NA	NA
AK001_02005	1590		COG0025	putative Na(+)/H(+) exchanger	ATGTCGTCGGTCGCTCTGTGGGGAGTCATCGTCGCCGGGGTGGTGGTGCTGACCCCGCTCGCGGACCGCGTCCGCGTCCCGCTGCCGGTGCTGCTGACGCTGTTCGGCATCGCGCTGCCGCTGTTCCCGGCCGTGCCCGCCCTGCGCCTCTCCCCCGAGATCATCCTGCCGGTGGTGCTGCCGCCGCTGCTGTTCGCCGCCACGCAGCGCTCGACGGTGCGGGAGTTCCGCAGCCAGTCGCGGCCCATCCTGCTGACCGCCGTCGGGCTGACCCTCGCCTCGGCGGGACTGGTCGCCGTCGTCGCGCACGCCGCGGGCGCACCGTGGGCGGTCGCCTGGGTGCTCGGGGCGATCGTGGCCCCGCCCGACCCGGTGGCGGCGACGGCGGTGGCCCGCCGGCTGCGGCTGCCCGGCCGGGTCGTCACCGTGCTCGAGGGCGAGGGGATGTTCAACGACGCCACCGCGCTGGTGATCTACCACGTGGCCGTCGCCGCGGTGGTGGCCGGGTCGGTCACGGCCGGGGAGGTCGGGCTCGACCTGCTGCTCGCCGTCGTCGTCGGGGTCGCCGTGGGGCTGGCCGCGGGCTGGCTGGGCCACGTGGTGCTCGGGCGGCTGCACGTTCCCGCCGCGGAGACCACCGTGACGATCGCCCTGCCGTTCGCCGCCTACCTGCTGGCCGAGGAGTGGCTCGGCTCCGGCGTGCTGGCGGTGCTCACCCTCGGCCTCGTGCTGCGGTCGGTGTCCCACGCGTCGGTGACGTCCGGCGGCTGGCTGCTCGGCCGGGCGGTGTGGGAGTACGCGGACTACCTGATCACCGGGGTCGTGTTCGTGCTCATCGGCTTCGAGCTGACGTCGGTGCTGGACGGCAGCCCGGTGGAGCGGACCGCGCTCCCCCTGGCGCTCGCCGTCGTCGCGGTGCTCGTGGTGCTCCGGTTCGTCTGGATGTTCCCGGCGCTGTGGTGGCTGGAACGCGGGATGGCCTCGCGCGCCCGCAAGCAGGGTGCTCCGCCCGAGGTGGCGGGCATCGGGGCGTTCACCCGGCGGGAGACGACCGTCGTCTCGTGGGCCGGGATGCGCGGCGTCGTCTCCGTCGCCTCGGCGCTCGCCCTGCCGCACGTGGTCGCCTCCGGGGACGACTTCCCGCTGCGCGACACCGTCGTGTTCGTCGGGCTGATGGTGGTGCTGGCGACCCTGGTGCTGCAGGGGCTGACGCTCGCACCGGTGGTGCGGTGGCTGGGCGTCGGGCGGGCCGGCGACGGGACCGCCGAGATCGCCCGGCTGCGCGAGGAGGCGACGGTGGCGGCGCTGGAGGCCGTGCGGGTCCGGACGGACGTCCCGGACCCGGTCCGCGAGGCCGTCGCCCAGCAGTACGAGGGGTACCTGACCGCCCAGCGGGCGTTGTCCCGGGCCCGCGCCCAGGGGGACGGCGACGACCGCTACGACGAGCAGGTCGACGCGCTGCTGCGCGACGCCGTCGAGATCGAGCGGGACGTGTGCGTCCGGGCGCGCAACGAGGGGCTCGTCAGTCCCGAGGTCGCCGACGAGGTGCTCGCCGACGTCGAGGCCCGCGCGGTACGCGACCTCGACTGA	MSSVALWGVIVAGVVVLTPLADRVRVPLPVLLTLFGIALPLFPAVPALRLSPEIILPVVLPPLLFAATQRSTVREFRSQSRPILLTAVGLTLASAGLVAVVAHAAGAPWAVAWVLGAIVAPPDPVAATAVARRLRLPGRVVTVLEGEGMFNDATALVIYHVAVAAVVAGSVTAGEVGLDLLLAVVVGVAVGLAAGWLGHVVLGRLHVPAAETTVTIALPFAAYLLAEEWLGSGVLAVLTLGLVLRSVSHASVTSGGWLLGRAVWEYADYLITGVVFVLIGFELTSVLDGSPVERTALPLALAVVAVLVVLRFVWMFPALWWLERGMASRARKQGAPPEVAGIGAFTRRETTVVSWAGMRGVVSVASALALPHVVASGDDFPLRDTVVFVGLMVVLATLVLQGLTLAPVVRWLGVGRAGDGTAEIARLREEATVAALEAVRVRTDVPDPVREAVAQQYEGYLTAQRALSRARAQGDGDDRYDEQVDALLRDAVEIERDVCVRARNEGLVSPEVADEVLADVEARAVRDLD				NA	NA	NA	NA	NA
AK001_02006	612			hypothetical protein	ATGGCGACGGAGCCCACCGACCCCTTGATCCTGCCGGACGCGTCAGCGTGGCGCGCCTGGTTGGACGACCACGAGGACACGGCGACCGACGGCGTCTGGGTCGTGCTCGCCCGCAAGGGCCGGCCGGGGCCCACCGGCCTGACCCGCGACCTGGCGCTCGAGGAGGCCCTGTGCAGCGGCTGGATCGACGCCCAGAGCCGCCGTCGCGACGAGGACACCTCCCTGCAGCGCTACTGCCCGCGCCGACGGCGCAGCGCCTGGTCGGTGCGCAACCGCGAGATCGCCGACCGGCTCGTCGCCGAGGGCCGCATGCGCACCCGCGGACAGGCCGAGATCGACCGCGCGCACCAGGACGGCCGGTGGGACGCCGCCTACGGGGGAGCCGTCACGATCGAGCTCCCCGCCGTGCTGGCCGATGCCCTGGCCGCCAGCCCGCGGGCCGCCGTGGCGTGGGAGCGGCTCAGCGCGCAGAACCGCTCGACCATCCTGCACCGCCTGTCCACGGCGCGGCGCGAGGAGACCCGGACGCGGCACGCCGCGCGCTTCGTGGCGATGCTCGAACGGGGCGAGGCGCCCCACCCGCAACGGCGCAGCGTGCTCCCGGACGACTGA	MATEPTDPLILPDASAWRAWLDDHEDTATDGVWVVLARKGRPGPTGLTRDLALEEALCSGWIDAQSRRRDEDTSLQRYCPRRRRSAWSVRNREIADRLVAEGRMRTRGQAEIDRAHQDGRWDAAYGGAVTIELPAVLADALAASPRAAVAWERLSAQNRSTILHRLSTARREETRTRHAARFVAMLERGEAPHPQRRSVLPDD				NA	NA	NA	NA	NA
AK001_02007	1251		COG0628	Putative transport protein	GTGACCAGCCCGGCAGGACCCGAGAGCCGAGACGGCGACGCCGTCCCCGCCAGCGTGCGTGTCGCGGCCGCGTGGTCCTGGAGGCTGCTGCTGATCGCCGCGGGGGTGGCCGGGGTCGTCTGGCTGCTCGCCCAGCTGAAGACGATCGCCGTGCCGGTCGCCGTGGCCCTGCTCGTGACGATCCTGCTCCGGCCGTTGCGGCGGATGCTCGAGAACGCCGGTGTCCCGCGTGGTGCGGCGACGGCGCTGTCGCTGGTCGCCCTGATCGTCTTCGTCGCGGGCCTGGTCACGCTGGCCGGCTCCCAGATCGTCGCCGGGTTCCAGGACCTGTGGGACCAGGCGGTCCAGGGCTTCCAGGAGTTCGTCGACTGGTTGTCGGAGGGTCCGCTCGGCCTCGACGCCCAGCAGCTCTCGAACTACACGAACCAGCTGCAGGACCTGGTGGCCAGCCAGAGCTCGAACCTCATCACCGGGGCGCTCGGCGCCGCGAGCACCGTGGGCCATGTCCTGGTGGGCATCATCATCGCGATCTTCTGCACGATCTTCTTCCTCCAGGACGGCCGGAACATCTGGACCTGGGTGGTCAACCTGCTCCCGCTGCCCGCGCGCGAGAAGGTGCACCAGGCCGGACGCCGCGGCCTGGTGACGCTGTCGTCGTACGTGCGCACCCAGATCCTCGTCGCCCTGGTCGACGGCGTCGGCATCGGGATCGGCGCGGCGTTCTTCGTGCCGTCCCTCGCGCTGCCGATCGGCATCCTCGTGTTCGTCGGCTCCTTCGTCCCCATCCTCGGTGCCATCGTGACCGGCGCGATCGCCACCGCCGTCGTGCTCGTGGCCCAGGGGTGGGTCGCCGCGCTGATCATGCTGGGCATCGTGCTGCTCGTCCAGCAGCTCGAGAGCCACATCCTGCAGCCGCTGCTCATGGGTCACGCGGTCTCGCTGCACCCGGTGGCGGTCGTGCTCGTCGTCGCCGCCGGCAGCCTGGCGGCCGGGCTCGTCGGCGCCCTGTTCGCGGTGCCGCTCGCCGCCGTGATCAACACGGTCGTGCAGTACCTGCACGGCCACGACAAGTTCCCCGAGCTCGGCACCGCCGACCACGTCCCGCTGCTGCGCAAGCAGGCGTTCGCCGACCTGCCCGGCACGCTGCTGTGGTCGAACCGCGGCGGCCGCGAGGACGACGCCCCGCAGGACGGCCCCGCCGACCCGGGCGGCGGTTCCGGCGCCTCGGGTCGCCGCGGCCCGTCGACGTGA	MTSPAGPESRDGDAVPASVRVAAAWSWRLLLIAAGVAGVVWLLAQLKTIAVPVAVALLVTILLRPLRRMLENAGVPRGAATALSLVALIVFVAGLVTLAGSQIVAGFQDLWDQAVQGFQEFVDWLSEGPLGLDAQQLSNYTNQLQDLVASQSSNLITGALGAASTVGHVLVGIIIAIFCTIFFLQDGRNIWTWVVNLLPLPAREKVHQAGRRGLVTLSSYVRTQILVALVDGVGIGIGAAFFVPSLALPIGILVFVGSFVPILGAIVTGAIATAVVLVAQGWVAALIMLGIVLLVQQLESHILQPLLMGHAVSLHPVAVVLVVAAGSLAAGLVGALFAVPLAAVINTVVQYLHGHDKFPELGTADHVPLLRKQAFADLPGTLLWSNRGGREDDAPQDGPADPGGGSGASGRRGPST				NA	NA	NA	NA	NA
AK001_02008	1221	tdcB	COG1171	L-threonine ammonia-lyase	GTGAACTCACCGACACCCCTGGACCGAGTGACCCTCGCCGACGTCGAGGCAGCCGCCGAGCTGCTCCACGGGGTCGTGACCCGTACCCCGGTGCACCCCTTCCGGGCGCTGACCCAGCTCGCCGGCGCCGACGTCGTCCTCAAGTGCGAGAACCTGCAACGCGCCGGATCCTTCAAGATCCGCGGCGCCTACACCCGACTCAGCCGGCTCACCCCCGAGGAGCAGCGCGCCGGCGTGGTCGCGGCCTCGGCCGGCAACCACGCCCAGGGCGTCGCGCTCGCGGCCGAGAAGCTGGGCATCCCGGCCGTCGTCTACATGCCCGTCGGCGCCTCCGTCCCCAAGCTCGAGGCGACCCGCGGCTACGGCGCGGAGGTGCGCCAGCTCGGCAACAGCGTCGACGAGGCGCTGTCCGCGGCCCGCGCGGAGGCCGCCCGCACCGGCAAGGTCCTCATCCACCCCTTCGACCACCCCGACGTCGTCGCCGGCCAGGGCACCGTGGCCCTGGAGATCCTGGAGCAGGTGCCCGACGTCGGCACCGTCGTCGTGCCGCTGGGCGGCGGCGGTCTCGTGGCCGGGATCGCCACCGTGCTGGCCGAGGTCGCGCCCCACGTGAAGGTCGTCGGCGTGCAGGCCGCCTCGGCCGCGGCCTACCCGGCCTCCCTGGCGGCCGGACGTCCGATCGCCGGAGACCTGGAGTCGACGATGGCCGACGGCATCGCCGTCGGCATGCCGGGCGACGTGCCCTTCGAGGTGCTGCACCGCCTGGGGGTCGAGGTCCGGACGGTCACCGAGGCGGAGATGTCGCGGGCTCTCCTGCTCGTGGCCGAGCGCGGCAAGCTCGTCGTCGAGCCGGCCGCCGCGGCGGCCGTCGCGGCCGTGTCCGCGTCCCCGGGCGCCTTCACCGGCACCGTGGTGCCGGTGCTCTCCGGCGGGAACATCGACCCGCTGCTGCTGCAGCGCGTGGTCCAGCACGGTCTCGTGGCGGCCGGCCGCTACCTGCAGATCTCGGTGCGGCTGTCCGACGAGCCGGGGGCGCTGGCCTCGTTGCTGGACACGGTGGCCGCCGCCGAGGGGAACATCGTGCGCGTCGACCACCGGCGCACCGACACCACGCTGGAGGTCTCCGAGGTGCTGGTGACCCTGCAGCTCGAGACCACCGGTCCCGAGCACTGCGCGGCGGTGCTGGACCGGCTGCGTCGGGACGGCTACCAGGTCACCTGA	MNSPTPLDRVTLADVEAAAELLHGVVTRTPVHPFRALTQLAGADVVLKCENLQRAGSFKIRGAYTRLSRLTPEEQRAGVVAASAGNHAQGVALAAEKLGIPAVVYMPVGASVPKLEATRGYGAEVRQLGNSVDEALSAARAEAARTGKVLIHPFDHPDVVAGQGTVALEILEQVPDVGTVVVPLGGGGLVAGIATVLAEVAPHVKVVGVQAASAAAYPASLAAGRPIAGDLESTMADGIAVGMPGDVPFEVLHRLGVEVRTVTEAEMSRALLLVAERGKLVVEPAAAAAVAAVSASPGAFTGTVVPVLSGGNIDPLLLQRVVQHGLVAAGRYLQISVRLSDEPGALASLLDTVAAAEGNIVRVDHRRTDTTLEVSEVLVTLQLETTGPEHCAAVLDRLRRDGYQVT	PGPT0001960_4066	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754	NA	NA
AK001_02009	255			hypothetical protein	ATGACCCGGCGCGTGGAGCGGGCGATGGCGCTGCTGCGCCGCGGCGACCTGAGCGTGACCGAGGTGTGCTTCGCCGTCGGCTCGTCCTCGCCGGGCACCTTCACCACCCGCTTCAGCGAGCTCGTGGGCATGCCGCCGGGGGAGTACCGCCGTCGGGCCCGCACCGCGCCGGCCGGCGAGCTGCCCTCGTGCGTGACCAGGCAGGTGGACCGGCCGATCAGGAATCGAGAAGCGCCGCCGTCGCCGGATGTCTAG	MTRRVERAMALLRRGDLSVTEVCFAVGSSSPGTFTTRFSELVGMPPGEYRRRARTAPAGELPSCVTRQVDRPIRNREAPPSPDV				NA	NA	NA	NA	NA
AK001_02010	429			hypothetical protein	ATGTCTAGCGTGACCGGTATGGACATCCGCATTCACACCACGTTCCTGCCACACACCCGCCCCGAGGCGTCGCTGGCCTTCTACCGCGACCTGCTGGGCTTCGAGCTCGTCCAGGACGTCGGCTCCGGCGAGATGCGCTGGCTCACGCTCGTGTCGCCGTCCCAGCCCGACGTGCGCCTGGTGCTCGCCCCGCCCGCCGCGGACCCGGGCATCAGCGACGACGAGCGCCGCACCATCACCGAGCTGATGGCCAAGGGCAGCTACCAGTCGATCATCCTGGCCACCTCGGACCTCGACGCCGCCTTCGCCCGGATCGCCGGCGCGGCGGTCGAGGTCGTCTCGGAGCCGGCCGAGCAGCCGTGGGGCGTGCGCGACTGCGCCTTCCGCGACCCCGCGGGCAACATGGTGCGCATCGACGAGGTCGGCTGA	MSSVTGMDIRIHTTFLPHTRPEASLAFYRDLLGFELVQDVGSGEMRWLTLVSPSQPDVRLVLAPPAADPGISDDERRTITELMAKGSYQSIILATSDLDAAFARIAGAAVEVVSEPAEQPWGVRDCAFRDPAGNMVRIDEVG				NA	NA	NA	NA	NA
AK001_02011	2397	uvrA_2		UvrABC system protein A	ATGGCGACCCGCACCGGGACCACCGCCGCCGGCGTCCACCCGGCCGACGCCCGCGACGTCATCCGCGTGCGCGGCGCCCGCGAGAACAACCTGCGCGAGATCGACGTCGACATCCCCAAGCGCCGTCTGACGGTGTTCACCGGCGTGTCCGGGTCGGGCAAGAGCTCGCTGGTGTTCGCCACCGTCGCGGCCGAGTCACGGCGCCTGATCGACGAGACCTACTCGACGTTCCTGCAGGGGTTCATGCCGTCCCTGCCGCGTCCGGACGTCGACGACCTGTCGGGCGTCACCACCGCGATCCTGGTGGACCAGGAGCGGCTCGGGGCCAACGCACGCTCGACCGTGGGCACCGTGACCGACGCCCACGCGATGCTGCGCCACCTGTTCAGCCGTCTCGGCGAGCCCTACGTCGGCCCGCCGACGGCGTTCAGCTTCAACGTGCCCACCTCGAGGGCCAGCGGCGTGATGACGACCGACCGGGCCGGCGGCACGACCGAGAAGACCGTGGTCCGCGACCAGGTCTACCTGGGCGGCATGTGCCCCGAGTGCGAGGGCCGCGGCACCGTCTCCGACCTCGACCTGTCCGTCATCGTCGATGAGTCCCGTTCGCTCAACGAGGGCGCCATCCTCGTGCCCGGCTACAAGGCCGACGGCTGGATGGTGCGCGGCTTCTCCGAGTCCGGCTTCGTCGACCCCGACAAGCCGGTGCGCGACTACAGCGACACCGAGCGGCACGACTTCCTGTACCGGGACAAGGGCAAGATCAAGGCCCTGGGCATGAACATGACCTATCAAGGCCTCATCCCGAAGCTGCGCGAGTCGATGTTCTCGCGCGACCCCGCCTCGCTGCAGCCGCACGTGCGCCGCTTCGTCGAGCGCGCCGCCGTGTTCGGCCCCTGCCCTGCCTGCGAGGGCACCCGACTCAACGAGGCAGCCCGCTCGGCCACCGTGCACGGCGCCACCATCGCCGACGTCGCCCGGATGCAGATCACCGACGCCGCCGACTGGGTGCGCGGCGTCGACGAGCCCGGGGTCGCACCTCTGGTCGCCCACCTGGTGGCCCTGCTCGACTCCGTCGTCCAGATCGGGCTCGGCTACCTCTCGCTGGACCGGCCTGCCGGCACCCTGTCCGGGGGAGAGGCGCAGCGCGTCAAGATGATCCGCCACCTCGGCTCGGCCCTGACGGACGTCACCTACGTCTTCGACGAGCCCACCATCGGCCTGCACCCGCACGACATCGCCCGCATGAACGAGCTGCTGGTCGACCTGCGCGACAAGGGCAACACCGTGCTCGTCGTCGAGCACAAGCCCGAGGCCATCGCCGTGGCCGACCACGTCGTCGACCTCGGGCCCGGGGCCGGGTCCGACGGCGGCACGCTCTGCTACGAGGGCACCGTGGACGGGCTGCGCGCCAGCGACACCCTCACCGGCCGCCACCTCGACGACCGCGCCCGCCTCAAGGACACCGTGCGCGAGCCCACCGGCGCCCTGGAGATCCGCGGGGCGAGGCAGAACAACCTGCAGGGGATCGACCTGGACATCCCCACCGGGGTGCTGACCGTCGTCACCGGCGTCGCCGGGTCGGGCAAGAGCTCGCTGATCCACGGCAACCTCGCGGGCCGTGACGGCGTCGTCGTCGTCGACCAGGGCGCCATCAAGGGCTCGCGGCGCTCCAACCCCGCCACCTACACCGGCCTGCTCGAACCGGTCCGCAAGGCCTTCGCCAAGGCCAACGGCGTCAAGCCCGCCCTGTTCAGCGCCAACTCCGAGGGCGCCTGCCCCACCTGCAAGGGCAACGGGCGCATCTACACCGAGCTCGGCTTCATGGAGACCGTCGAGACACCCTGCGAGGACTGCGGCGGGCGCCGCTTCATGGCCGAGGTGCTCGACCACACCCTGGGCGGCAAGAACATCGCCGACGTCCTCGACCTGTCCGTCACCGAGGCCCACGCGTTCTTCTCCTCCGGCGAGGCCCGGGTCCCGGCCGTCGCGACGACCCTGACCCACCTGCGCGACGTCGGACTCGGCTACCTGCACCTCGGCCAGCCGCTGAACACCCTGTCCGGGGGAGAGCGCCAGCGGCTCAAGCTCGCCATGCACAAGGGGGACTCCGGCGGCACCTACGTGCTCGACGAACCCACCACCGGACTGCACCTGGCCGACGTCGAGAACCTCCTGGCGCTGCTCGACCAGCTCGTCGACGCCGGCAAGACGGTCGTCGTCATCGAGCACCACCAGGCGGTCATGGCCCACGCCGACCACCTCGTCGACCTCGGCCCCGGCGCCGGGCACGACGGCGGTCGCGTCGTCTTCGAGGGCACCCCGGCCGAGCTCGTCGCCGACCGGTCCACCCTGACCGGTCGGCACCTGGCCGACTACGTCGTCACCGGCGGATGA	MATRTGTTAAGVHPADARDVIRVRGARENNLREIDVDIPKRRLTVFTGVSGSGKSSLVFATVAAESRRLIDETYSTFLQGFMPSLPRPDVDDLSGVTTAILVDQERLGANARSTVGTVTDAHAMLRHLFSRLGEPYVGPPTAFSFNVPTSRASGVMTTDRAGGTTEKTVVRDQVYLGGMCPECEGRGTVSDLDLSVIVDESRSLNEGAILVPGYKADGWMVRGFSESGFVDPDKPVRDYSDTERHDFLYRDKGKIKALGMNMTYQGLIPKLRESMFSRDPASLQPHVRRFVERAAVFGPCPACEGTRLNEAARSATVHGATIADVARMQITDAADWVRGVDEPGVAPLVAHLVALLDSVVQIGLGYLSLDRPAGTLSGGEAQRVKMIRHLGSALTDVTYVFDEPTIGLHPHDIARMNELLVDLRDKGNTVLVVEHKPEAIAVADHVVDLGPGAGSDGGTLCYEGTVDGLRASDTLTGRHLDDRARLKDTVREPTGALEIRGARQNNLQGIDLDIPTGVLTVVTGVAGSGKSSLIHGNLAGRDGVVVVDQGAIKGSRRSNPATYTGLLEPVRKAFAKANGVKPALFSANSEGACPTCKGNGRIYTELGFMETVETPCEDCGGRRFMAEVLDHTLGGKNIADVLDLSVTEAHAFFSSGEARVPAVATTLTHLRDVGLGYLHLGQPLNTLSGGERQRLKLAMHKGDSGGTYVLDEPTTGLHLADVENLLALLDQLVDAGKTVVVIEHHQAVMAHADHLVDLGPGAGHDGGRVVFEGTPAELVADRSTLTGRHLADYVVTGG	PGPT0014915_6963	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701	NA	NA
AK001_02012	453			hypothetical protein	ATGGCCCGTGTGCACGTGCGCTGCTGGCAGCAGACCTACCGCGGGCTGATGCCCGACCACGTGCTCGACGACCCCGGGTTCGTCGACGCCCGCGAACGGCTGTGGACCCACGTGCTGGCGGTCCAGGACGACCGCGGACACCGCACGGCCGTCGCGACCGCCGACGACGAGATCGTCGGCATCGCGATGTCCGGCCCACCCGTGGACGACGACGCCGCCTGGTCGAGCCAGCTGTTCGTGCTCTACCTCGACGCCGCCCACCACGGCACCGGAGCGGGCCCCGGGCTGCTGGAGGCCATGATCGGCCCGGAGGAGTCCGCGGCACTCTGGGTCGCCGAGCCCAACCCGCGCGCCCAGGCCTTCTACCGCAAGCACGGCTTCACCCCGGACGGCGCCATCACCGTCGCCGACGGCGTCACCGACCTGCGCATGGTGCGGACCCCGGAGGCGTGA	MARVHVRCWQQTYRGLMPDHVLDDPGFVDARERLWTHVLAVQDDRGHRTAVATADDEIVGIAMSGPPVDDDAAWSSQLFVLYLDAAHHGTGAGPGLLEAMIGPEESAALWVAEPNPRAQAFYRKHGFTPDGAITVADGVTDLRMVRTPEA				NA	NA	NA	NA	NA
AK001_02013	624			hypothetical protein	GTGACCCGGTGGCGCACGAGACCCGCTACCCGCGCCCCGACCAGCCGACGCTGGACGCCCTCGTCGCCGCGGCGCTCGCGGACGCCGGCCACCCGCCCCGACGCCGACGCCCTGCGCGAGGTGCTCGACGCCGTGCACGGGCTCGACCCGGCCCCGCTCGAGCCGTACCTCGCGCAGCGCCGGGCGTTCTGCGGGGGAGAGGACTGGGAAGCGACCCTCCGCGACCGCGTCGCCCCCCTGCTCGACGCCGACCTGCAGGGCGAGGCCGTGCGACGCATCGACGTGCTCGCCACCGTCGAGGACGCGCCACGCACGGTGAACCACGGCGACCTCGGGTCCACCAACGTGCTGTGGCACGGCGACCGGGTCGGTGCGGTGCTGGACTGGAACCTCACCGCGCGCGAGGACCCCGCCGAGGACGTCGCCACGGTGGCCACCTCCTTCGACCTCTGGTCGGCGGCCACGGCGCTCGCGGACCCGGACACCGTGCACCGCGCCCGCGGCTTCGCCGGCACCTTCCCGCTGCAGATCGTCGCGTTCGCCCTGCTCCAGGGGCGCCCGGACGAGGAGCTCGCCCGGACCGTGGCGCGGGCGCAGCGTGCGCTCCGCCGGAGCGGGGCGTGA	MTRWRTRPATRAPTSRRWTPSSPRRSRTPATRPDADALREVLDAVHGLDPAPLEPYLAQRRAFCGGEDWEATLRDRVAPLLDADLQGEAVRRIDVLATVEDAPRTVNHGDLGSTNVLWHGDRVGAVLDWNLTAREDPAEDVATVATSFDLWSAATALADPDTVHRARGFAGTFPLQIVAFALLQGRPDEELARTVARAQRALRRSGA				NA	NA	NA	NA	NA
AK001_02014	372			hypothetical protein	ATGGACCTCGGAGCCTTCTCCGTCAGCCTCGCCGTGCAGGACCTGGACGCCTCTCGGCACTTCTACGAACGGCTCGGGTTCACCGTCTTCGGCGGCGACGCCGAGCAGAACTGGCTCATGCTGCGCAACGGCGACCACGTGATCGGGCTGTTCCAGGGCATGTTCGAGCGCAACATCCTCACGTTCAACCCGGGGTGGGACCAGCAGGCACGTCCCGTGGACGGATTCACCGACGTGCGCGAGCTGCAGCGCCGGGTCCGGCAGGCCGGCGCCGAGCTCGAGACCGCGGCCGACGAGACGACGACCGGCCCGGCGAGCTTCGTGCTGATCGACCCCGACGGCAATCCCGTGCTCGTCGACCAGCACGTCTGA	MDLGAFSVSLAVQDLDASRHFYERLGFTVFGGDAEQNWLMLRNGDHVIGLFQGMFERNILTFNPGWDQQARPVDGFTDVRELQRRVRQAGAELETAADETTTGPASFVLIDPDGNPVLVDQHV	PGPT0013300_5768	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759	NA	NA
AK001_02015	318			hypothetical protein	GTGTACTTGCCTATTCTCGATCTCGTGGCCGACAACCTCTACAAGGCGCTGGCCGACCCGACGCGGCGCACGATCCTGGACGAGCTCGCCGAGCAGTCCGGGCAGACGCTGTTCGAGATCTGCACGCGGCTGACCATGAAGCACGGGTTGTCGATGTCCCGCCAGGCGGTCTCGCAGCACCTGGCCGTGCTCGAGTCGGCGGGGCTGGTCACCACGCGCCGTGAGGGGCGGTACAAGTTCCACGACCTCGACACCTCACCGCTGCGACAGATCGTCGCGCGGTGGCCCGTGCCCGACGAACGGAAGGACGCACCATGA	MYLPILDLVADNLYKALADPTRRTILDELAEQSGQTLFEICTRLTMKHGLSMSRQAVSQHLAVLESAGLVTTRREGRYKFHDLDTSPLRQIVARWPVPDERKDAP	PGPT0004735_2763	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892	NA	NA
AK001_02016	390			hypothetical protein	ATGAAGATCCACCTGACCAGCATCTTCGTCGACGACCAGGAGGTCGCCCGCCGCTTCTACACCGAAGCTCTCGGGTTCGTCGTGCGGCACGACGTCCCGATGGGGGAGAACCGCTGGCTCACCGTGGCGTCGCCGCAGGATCCCGACGGCCCCGAGCTGCTCCTGGAGCCGTCCGACCACCCCGCCGTCGGCCCCTTCAAGGCCGCCCTGGTGGCCGACGGCATCCCGGCCGCCCAGTTCGCCGCCGACGACGTGCACGCCGAGCACGAGCGCCTGCGCGACCTCGGCGTGCGCTTCACCCAGGAGCCGCTGTCGATGGGCCCGGTGACGACGGCCGTCCTGGACGACACCTGCGGCAACCTGGTCCAGATCGCCGCGATGGACGTCTGA	MKIHLTSIFVDDQEVARRFYTEALGFVVRHDVPMGENRWLTVASPQDPDGPELLLEPSDHPAVGPFKAALVADGIPAAQFAADDVHAEHERLRDLGVRFTQEPLSMGPVTTAVLDDTCGNLVQIAAMDV				NA	NA	NA	NA	NA
AK001_02017	450			hypothetical protein	ATGCGCAGCGCCTCCATGCAGCGGCTCGACGGGTTGACCGGGACCTGGCGGACCACGATGCACGACGCGTGGTTCCTGGAACCCGCCGAGCAGCCCGTCGTCGGCACGACGACGATCGAGTGGTGGCACGACGCCTTCGTGCTCTGCCGCTGGACGACCCCGGGTGGCGACGGCGCGACCGGTAGCACGATGAGCCTGGCCCTGGGACGCCACGACGTCCGCGAGTCCTACATGGCGCTGTACCACGATGAGCGGGGCGTGAGCCGGATCTTCGTCATGGATTTCGACGACGACGGGCGCTGGACGCTGAACCGCGAGGACGACGACATGTTCCAGCGGTTCGTCGCCGAGGTGGCGCCGGACCGGATCACCGGTCGCTGGCAGGCGTCGGACGACGGCGGCGCCACCTGGCGCACCGACTTCGTGCTCGACCTCGCACGGGCGGGCTGA	MRSASMQRLDGLTGTWRTTMHDAWFLEPAEQPVVGTTTIEWWHDAFVLCRWTTPGGDGATGSTMSLALGRHDVRESYMALYHDERGVSRIFVMDFDDDGRWTLNREDDDMFQRFVAEVAPDRITGRWQASDDGGATWRTDFVLDLARAG				NA	NA	NA	NA	NA
AK001_02018	1470			hypothetical protein	ATGTCAGGCAGAAAGTCACTCAGGGCGGCTACCGCGGCCCTCATGGTGGGTGGGCTCCTTCTCGGAGGGGCCTCGGTCGCCGGTGCACACCCCGGCCACGACTTCAGCGGCGACAGCAAGCCGTTCAAGGAGCGCTACTTCGACAACGGCGTCGTCGGCGACGTCAGCCCCGGCGGTGTGCCCATGGAGGCGCTGTCGGGTGCGCGGTGCGAGGACGGCATGGCTGCCGACCTCTTCCCGTGCCACAAGGTCGACCTGGCCTCCTTCACCCCGTTGCAGGACCTGGACTCCACGTTCCTCAACGACCTGTGGGGCTGGGAGGACGAGGTCACCGGCATGCAGCTGGCGATCGTCGGCACGTACGAGGGCACCGCGTTCGTCGACGTCACCGACGGCGAGAACCCCGTCCTGCTCGGCACCCTGGGCGCGGTGAACCCGGGCGACTCGGGCAACACCTGGGGCGACGTGCGCGTCTTCGAGGACACGGCCTACATCGTCACCGAGGCGTTCGACCTCAGCACCTACGACCGCGACACCGGCTACCTCGAGGGCAACGGCGTGCAGATCGTCGACCTGACCCAGTTCCGCGGGGTGACCGAGGAGATCGAGGTCGTCGAGGAACCGCGGATCACCGACTTCACCCAGAGCCACAACGTCTCGATCAACACCGAGACGGGGCGGATGTACGTCGTCGGTGCGGTGTACTCGGTCAAGAACGAGTGCGCCGTCGATCCTCCGTCGGGTTATCCGGCCGTGTACAGCGGCTCCGGCGGCGCGGTCGTCTACGACCTCAACGGCGACCCGGCCGCGCCCAGCCTCATCGGCTGCCTCAACGAGGACGGGTACACCCACGACATCCAGTGCGTGGTCTACGAGGGCCCGGACGAGGACTACCAGGGCCGCGAGATCTGCATCGGGTCCAACGAGGACACCGTCACGCTGTACGACGTCACGGACATCGACAACCCCGTGGTGCTGTCCCGGCTCGACTACGAGGCGGCTGCCTACACCCACCAGGGCTGGCTCAGCGAGGACCACCGGTTCTTCTTCCTCGGTGACGAGCTCGACGAGCTCTACGGCACCACCCCGGAGCGCACCACCTACATCTGGGACTTCGCCGACCTCGACGACGCCGAGCTCATCGGCATCCACGGCGACGGCAACTCGTCGATCGACCACAACATGTTCGTCAAGGACGGGCTGCTGTACCAGTCCAACTACACGTCCGGACTGTGGATCTACGACACCTGGAAGGCCGACCAGGGTCGGGTGACGTCGCGGGGCTACTTCGACATCTTCCCGGCCGACGACCGGACGGAGTTCTTCGGCACCTGGGGCAACTACCCCTACTTCGGTGACGGGAAGGTCGTCGTGACCAGCAGCGACGAGGGCCTCTTCGTCCTGCAGTCGCGGGCCAAGAGCTCCTCGCAGAACAACGGCAAGGGAGTGTCGCCCGCGTCCGTCCGCTGA	MSGRKSLRAATAALMVGGLLLGGASVAGAHPGHDFSGDSKPFKERYFDNGVVGDVSPGGVPMEALSGARCEDGMAADLFPCHKVDLASFTPLQDLDSTFLNDLWGWEDEVTGMQLAIVGTYEGTAFVDVTDGENPVLLGTLGAVNPGDSGNTWGDVRVFEDTAYIVTEAFDLSTYDRDTGYLEGNGVQIVDLTQFRGVTEEIEVVEEPRITDFTQSHNVSINTETGRMYVVGAVYSVKNECAVDPPSGYPAVYSGSGGAVVYDLNGDPAAPSLIGCLNEDGYTHDIQCVVYEGPDEDYQGREICIGSNEDTVTLYDVTDIDNPVVLSRLDYEAAAYTHQGWLSEDHRFFFLGDELDELYGTTPERTTYIWDFADLDDAELIGIHGDGNSSIDHNMFVKDGLLYQSNYTSGLWIYDTWKADQGRVTSRGYFDIFPADDRTEFFGTWGNYPYFGDGKVVVTSSDEGLFVLQSRAKSSSQNNGKGVSPASVR				NA	NA	NA	NA	NA
AK001_02019	606			hypothetical protein	ATGCCGCACCAGGACCCCGGCTCGACGACGATCAAGGCCCTGACCCCGGACACCTGGCCGCTGTTCGCCGCGCTCGTGGAGCGCCACCACGGCATCTTCGGCGGGTGCTGGTGCGTCAACTTCCATCCGGACCGGGACGACCGCGGCCCGGGCTACGACGGCAACCGGGAGTTCAAGAATCGCCTCGTCGACGAGGGCGTCGCCCACGCGGCGCTCGTGGTCCGTGCGGGCGACGACGGCGAGGAAGCGATCGCCTGGGCCGAGTACGGCACACCGGCGGAGCTGCCCCGCCTCCACCACCTCAAGCAGTACCTCGCCGAGCAGGACCTCGAGCCGGACTACCGGATCACCTGCCTCTTCGTCGACAAGCGGTTCCGCCAGCACGGCCTGGTGACCGTGGCGCTGCAGGGCGCCCTCGACCTGATCGCCCAGGACGGCGGAGGCATCGTCGAGGGCTACCCGCACATCCCCGGTGAGCGCCGCCTCTCCTCCTCGTTCCTGTACAACGGGACCAAGGCCGTCTACGAGCGTGCCGGCTTCGACTTCATCCGACCCAAGGGCATGAAGAACACGGTGATGCGCCGCAGCGTGGCACCGTCGCGCTAG	MPHQDPGSTTIKALTPDTWPLFAALVERHHGIFGGCWCVNFHPDRDDRGPGYDGNREFKNRLVDEGVAHAALVVRAGDDGEEAIAWAEYGTPAELPRLHHLKQYLAEQDLEPDYRITCLFVDKRFRQHGLVTVALQGALDLIAQDGGGIVEGYPHIPGERRLSSSFLYNGTKAVYERAGFDFIRPKGMKNTVMRRSVAPSR				NA	NA	NA	NA	NA
AK001_02020	315	gdx	COG2076	Guanidinium exporter	ATGGCATGGATCGTGCTCGTCGTCTCGGGCGTGCTGGAGGCCGTCTGGGCCACAGCGCTGGACCGGTCCGAGGGGTTCTCGCGCCTGGTGCCGTCCGTCGTCTTCGTCGTCGCGCTGGCCGCCAGCATGGGCGGCCTGGGTTACGCGCTGCGTGAGCTGCCGGTCGGCACGGCCTACGCCGTCTGGGTCGGCATCGGCGCGGCGTTGACCGCCGGCTACGCCATGGTGACGGGCGCCGAACCGGTCACCGTGGTGCGCATCGCGCTGATCCTGGGGATCGTGGCCTGCGTCGCCGGCCTGAAGCTCACCACCTGA	MAWIVLVVSGVLEAVWATALDRSEGFSRLVPSVVFVVALAASMGGLGYALRELPVGTAYAVWVGIGAALTAGYAMVTGAEPVTVVRIALILGIVACVAGLKLTT	PGPT0028785_2274	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741	NA	NA
AK001_02022	384			hypothetical protein	ATGGCCGCGATGCCCGGGGTGGGGTACCGCGACCCGTACGGCGGGCCCGATCCGGTGGACGTCGCCGACGCCGTGGTCGTCGGGACGTTCACGGGCTGGCGGGCCGCCGAGCCCCGCCGGCCGGAGCACTCGAACGGGGACGACAAGGTGTGGGACGTCGACAGCGGGGGAGCGGTGCTCGAGCTCGCCGTGGACGAGGTCGTCTCGGCCGGTCCGGACACGACGGTGGGCGACACCGCGCAGGTGCTGCTGGTCGACGGATTCTTCGACGAGGTCGAGCTCGCCCACGTGGCGGACGAGCTCGTCTGTTCACCGAGCGGACGGGCTGGGCCGTCAGCCTGGACTGGAGCCTGCTGGGGGAGGTGGCCGCGGACGGGACGGTGA	MAAMPGVGYRDPYGGPDPVDVADAVVVGTFTGWRAAEPRRPEHSNGDDKVWDVDSGGAVLELAVDEVVSAGPDTTVGDTAQVLLVDGFFDEVELAHVADELVCSPSGRAGPSAWTGACWGRWPRTGR				NA	NA	NA	NA	NA
AK001_02023	1107	xerD_2		Tyrosine recombinase XerD	GTGGTCGCCCCACCCCGCCCCGAACGGGTCACCGTCGCCGACGCCGGCGAGCGCTACCTCGCCGCCGTCCGCGTCGAGACCGTGCGCGGCGTGCTCTCTGCCGCCACCGAACGCTCCTACCGCCGTGACGTCCACGAGCTCGTCGACCTGCTCGGGCCGGACCGGGTGCTCGACGACGTCACCGGCGACGACGTCGACGACGCGCTCGTGCGCTACCAGGCCGGTCCCGACGGCCGCTACACCGACCCCGCCCGCAAGACCGGACCCGGCCGCTCCACCGCCACCGTCAACCGCTTCCGCCAGTCGGTGACCCGCTTCTTCTCCCACGCCGCCCGGCACGCCTGGGTCCAGGCCGACCCGATGCAGTGGGCCGCTCCCCCGGCCAAGGTCCGCGAACGCGTCCGGGTCCAGCGCACCGCGCTGTCTGCCTCGGCCGCCCAGGCCCTGCTCGGCACCGTCCAGCAGGAGGCCACCGACCCCCCGACCCGCACGCGCCACGACCAGGCGCTCGCGGCCCGCGACCGCCTGGTCGTGGCGCTGCTCATGGTGCTCGGCCCGCGCGTCTCGGAGCTCGTGCGCGCCGACGTCGCCGACTTCCGCCGCGAACCGGACCAGACCTCCTGGCGGATCCTCGGCAAGGGCGGCGACACGCGGACCGTCGCGCTCACCGCACCCCTGGCCGGGGCGCTGGAGACCTACCTGTCCACACTGCGGCCACGGCTGGCCGCGCGCCGGCCCGACGACGTCGACGCCCAGAACGCCCTGCTGCTGTCGTGGCGCGGTCGACGCCTGGACACCCAGGCGGTGCGGTCGCTGCTCGCCCGGGCGGTGGCCCGGATGCCCGAGCCGTACCGTCGCCCCACGACGCCGCACGCGCTGCGGCACACCACCGCGACGCTGCTGGTCGCCGACGGGTGGGACGTCAAGGTCGTCGCCGAGCTGCTCGGGCACTCCTCGATCGCGACCACCGACGTCTACCTCGACCGCATCGACGGCGAGCTGGCCGCCGCGCTGCGCACCCACCCCCTGGCACGCTCCTTGGAGGACGCCCCGCGGGCGGACCTGTCCGATTCGCCGGGCAGATCCGCCGAGTCGTCGCTACGGTGA	MVAPPRPERVTVADAGERYLAAVRVETVRGVLSAATERSYRRDVHELVDLLGPDRVLDDVTGDDVDDALVRYQAGPDGRYTDPARKTGPGRSTATVNRFRQSVTRFFSHAARHAWVQADPMQWAAPPAKVRERVRVQRTALSASAAQALLGTVQQEATDPPTRTRHDQALAARDRLVVALLMVLGPRVSELVRADVADFRREPDQTSWRILGKGGDTRTVALTAPLAGALETYLSTLRPRLAARRPDDVDAQNALLLSWRGRRLDTQAVRSLLARAVARMPEPYRRPTTPHALRHTTATLLVADGWDVKVVAELLGHSSIATTDVYLDRIDGELAAALRTHPLARSLEDAPRADLSDSPGRSAESSLR				NA	NA	NA	NA	NA
AK001_02024	1281	clsA	COG1502	Major cardiolipin synthase ClsA	GTGCCCGATGGATCCTTCCGCTCCGCCCTTCCCATCGACGTCCAGGTCGACTGGCGCCGAGTCCTGCGACTCGCCGGCCGCGCCGCGGCCGTCGCGGCCGCCATCCCGGTGACCGCCGGCGCCGCCGTCATGGCGATCGACAAGGTGCGCGGCCAACGCCACCCGCTGGACGCCCGCTTCCCCACCGCACCGCCGTCGACCACCGACGTCGAGGGGTCCGACGCCACGCTGTACACCTTCGGCGCCGACCTGTACGAGTCCATGCTGGAGGCGATCGAGTCCGCCGAGGACACGGTCATGCTCGAGTCCTACATCTGGAAGGGCGACCGGACCGGCGAACGCTTCAAGCAGGCCATCGCCGACGCCTGCGCCCGCGGGGTCCAGGTCTACGTCGTCTACGACGGGTTCGCGAACCTCGTCGTGCCGCCGTCGTTCTTCGTCTTCCCGCCCCAGGTGCACGTGCTGCGGTTCCCCGCCTTCCGCGCCGGGCTGATGACGCTCAACATCCGCCACTCCGGACGTGACCACCGCAAGATCCTCGTGGTCGACGACCGCGTCGCGTTCGTCGGCGGCTACAACATCGGCGACCTGTACGCCACGCAGTGGCGCGACACGCACCTGCGCATCGAGGGCCCCGCCGTGTGGGAGCTGCGCAACGCCTTCGTCGACTTCTGGAACCGGTGGCGCGGTCCGCGCCACCCGGTCCTGCAGGACAAGGGCGCCGAGCACTGGCAGCCGGCCCTGCGCGCCGCGCGTAATGCCCCCAGCGACCTCGTGTTCCCCATCCGGGGCATCTACCTCGACGCGATCGACCGCGCCACCAGCCACATCTACATCACGCAGGCCTACTTCATCCCCGACCGGGACATCCTGCAGGCCCTGCTGGCGGCGGCTGCTCGCGGCGTCGACGTGCGTGTCCTGGTGCCCGAGCGGTCCAACCACGCGCTCGCGGACTGGCTCGCCCGGGGCCGGTACACGAAGCTGCTGCGCGGCGGGGTGCGGATCATGCTGTACCAGGGCGCGATGGTGCACGCCAAGACGGCCACGATCGACGGCCGGTGGGCGACGGTCGGCACGGCGAACATCGACCGGCTGAGCCTGACCGGCAACTACGAGATCAACCTCGACATCGTCGACCGGGGGCTCGCCGCCCGGCTCGAGGACGTGTTCCGCATGGACGAGTCGAACTCGCGGGAGCTGACCTACGAGGAGTGGCTGGGCCGCTCGTTCGTCAACAAGGTCGCCGAGCGCGTGCTGGAACCGCTCGAGCCCCTGCTCTGA	MPDGSFRSALPIDVQVDWRRVLRLAGRAAAVAAAIPVTAGAAVMAIDKVRGQRHPLDARFPTAPPSTTDVEGSDATLYTFGADLYESMLEAIESAEDTVMLESYIWKGDRTGERFKQAIADACARGVQVYVVYDGFANLVVPPSFFVFPPQVHVLRFPAFRAGLMTLNIRHSGRDHRKILVVDDRVAFVGGYNIGDLYATQWRDTHLRIEGPAVWELRNAFVDFWNRWRGPRHPVLQDKGAEHWQPALRAARNAPSDLVFPIRGIYLDAIDRATSHIYITQAYFIPDRDILQALLAAAARGVDVRVLVPERSNHALADWLARGRYTKLLRGGVRIMLYQGAMVHAKTATIDGRWATVGTANIDRLSLTGNYEINLDIVDRGLAARLEDVFRMDESNSRELTYEEWLGRSFVNKVAERVLEPLEPLL	PGPT0007725_3944	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_RELATED_GENES	CE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131	NA	NA
AK001_02025	588		COG0789	putative HTH-type transcriptional regulator	GTGGACAGCAGTGGCGAGGCCAGCGCCTCGGTCGACCCCACCCCGGCAGGCGCCCAGGGCCTCCTGTTCGGCGAGGACCTCACGGAGCAGGACGCCGGGACCGGCTACCGCGGGACCACGGCCTGCCGCGTCGTGGGCATCACCTACCGCCAGCTCGACTACTGGGCCCGCACCGGGCTGGTCGAGCCGTCCATCCGTGCCGCCACCGGGTCGGGGACCCACCGGCTGTACAGCTTCCGCGACGTGCTCGTGCTCAAGATCGTCAAGCGGCTGCTCGACACCGGCGTCTCGCTGCAGCAGATCCGCACCGCGGTGACCCACCTGCGCGAACGCGGCGTCGAGGACCTGGCGCAGATCACCCTGATGAGCGACGGCGCCTCGGTGTACGAGTGCACCTCTCCCGACGAGGTCGTCGACCTCGTCCAGGGAGGCCAGGGCGTCTTCGGCATCGCCGTCGGACGGGTGTGGCGCGAGATCGAGGGCACCCTGTCCCAGATGCCGACCGAGTCCCTCGAGCAGGACGACCCGGAGGTCGTGCGGGCCGGCGACGAGCTCGCCGCCCGGCGTCGCGCGCGCACCGCCGGCTGA	MDSSGEASASVDPTPAGAQGLLFGEDLTEQDAGTGYRGTTACRVVGITYRQLDYWARTGLVEPSIRAATGSGTHRLYSFRDVLVLKIVKRLLDTGVSLQQIRTAVTHLRERGVEDLAQITLMSDGASVYECTSPDEVVDLVQGGQGVFGIAVGRVWREIEGTLSQMPTESLEQDDPEVVRAGDELAARRRARTAG				NA	NA	NA	NA	NA
AK001_02026	540		COG1259	putative protein	GTGGAGAAGGTGGACAGAGACGAGGGCGCGCAGGCGCCCATGGTGCCGGTCGAGGTGCTCGGGGTGCGCCAGCAGCAGAACGACCAGGAGATCGTCGTGCTGCTCCTGGACACCTCCGCCGAGCTCGCCGTCCCCATCGTCATCGGTGCCCGCGAGGCCTCGGCCATCGCCATGGCGCAGGCGGGCGTGGCCACCCCGCGACCCATGACCCACGACCTGCTGCGCGACCTGCTCACCGCCGTCGGGGTCGAGCTCGACCAGGTCGAGATCGTCGCCCTGGACGGTGGCATCTTCTTCGCCGAGCTCGTGCTGTCCAACGGCACCCGGCTCGACTCGCGCGCGTCGGACGCGATCGCCCTGGCGGTGCGCACCGGCAGCCCGGTGCTGTGCTCGGCCGAGGTCGTGGCCGCCGCCGGCGTGGAGGTCGTCGACCTTGCCCAGCAGCGCGAGGTCGAGAAGTTCCGCGACTTCCTCGACCACGTCAACCCCGAGGACTTCACGGCGCCGGAGGGGGAGGAGAGCCCCGACACGCCACCCTGA	MEKVDRDEGAQAPMVPVEVLGVRQQQNDQEIVVLLLDTSAELAVPIVIGAREASAIAMAQAGVATPRPMTHDLLRDLLTAVGVELDQVEIVALDGGIFFAELVLSNGTRLDSRASDAIALAVRTGSPVLCSAEVVAAAGVEVVDLAQQREVEKFRDFLDHVNPEDFTAPEGEESPDTPP	PGPT0013260_2	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013260-rnfA|rsxA-K03617	NA	NA
AK001_02027	660		COG0789	putative HTH-type transcriptional regulator	ATGCGCATCTCCGACGTGCTGAACCACCTGCGCGGAGACTTCCCGCACGTGTCGCACTCCAAGCTGCGCTTCCTGGAGGACCAGGGGCTCATCACGCCGGTGCGCACCCCGGCCGGGTACCGGCAGTACAGCCCCGCCGACGTCGAGCGGCTGCGGTTCGTCCTGGCCGAGCAGCGCGACTCCTACCTGCCGCTGAAGGTCATCAAGGAACGTCTCGCCGCCATGGACGCCGGCGAGCCCGCGCCCGCACCCTCGCCGCGCCTGGCCGTCCCCGCCGGGGCGCCGGGGGAGTCGCGGCGGCGCTGGACCGTGGAGTCGGTCGCCGAGACGACCGGCACCAGCGCCGAGCTGGTGCGGTCCCTGGTCACCGCCGGCGTGCTGCACACCACCCCGGACGGGGCCCTGGACGGCTCGGCCGCCGAGGTGGTCCGCATCGTGCAGCGCCTGACCGAGCACGGCATCGAGCCGCGCCACCTGCGCCCGCTGCGCTCCTCGGCCGACCGCCACGTCGCGCTCGTCGACCAGGCCGTGGCCCCGTACCGCAGCCAGCAGCGCGGCAACGGTGCCGAGGCCGCCGCCGACCTGGCCGCCGAGCTCGGCGAGCTGCTGGCCCGCCTGCACACCACCTGGGTCCGCCAGGGCACCCAGGGCACGGACTGA	MRISDVLNHLRGDFPHVSHSKLRFLEDQGLITPVRTPAGYRQYSPADVERLRFVLAEQRDSYLPLKVIKERLAAMDAGEPAPAPSPRLAVPAGAPGESRRRWTVESVAETTGTSAELVRSLVTAGVLHTTPDGALDGSAAEVVRIVQRLTEHGIEPRHLRPLRSSADRHVALVDQAVAPYRSQQRGNGAEAAADLAAELGELLARLHTTWVRQGTQGTD				NA	NA	NA	NA	NA
AK001_02028	477			hypothetical protein	ATGACGGACCCGCGCTCCAAGCCGCCGCACGAGGCCGGCGTGGACACCACCGCGCACCTCGGCCGGATCGGTGGCTCGACGGAGGAGCAGACCCCGCGCGTCCCGCTGACCGCCGAGGAGTCGGCCGCCGTGTCCGCGCTGCCCCGGCACTCCGCGCTGCTGGTCGTGCAGTACGGGTCCGGCGCCGTGGGCGAACGCTTCCTGCTCGACACCGACCGCACCGTGGCGGGCCGCAGCGAGCACGCCGACATCTTCCTCGACGACGTCACCGTCTCCCGCAAGCACGCCGAGTTCGTCCGTGAGGGCGACCGCTTCGTCGTGCGCGACATCGGCTCGCTGAACGGCACCTACCTCAACCGGGACCGGATCGACGCGGCCGTGCTCACCACCGGTGACGAGGTCCAGATCGGCAAGTTCCGCATGTCCTTCCACGCCAGCCCGCAGGCGCCCCGGGACATCCAGGCGCCGGGGTCGTGA	MTDPRSKPPHEAGVDTTAHLGRIGGSTEEQTPRVPLTAEESAAVSALPRHSALLVVQYGSGAVGERFLLDTDRTVAGRSEHADIFLDDVTVSRKHAEFVREGDRFVVRDIGSLNGTYLNRDRIDAAVLTTGDEVQIGKFRMSFHASPQAPRDIQAPGS	PGPT0026005_186	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026005-roeA-K21022	NA	NA
AK001_02029	1116			hypothetical protein	ATGAACGACAAGGACGAGCGCGAGGAGCCGGTGGAGCCGCGCGAGGACACCCCGGAGGCGCCCGAGGTCGCGGACGGGCCGCAGCCGGCCGTGGACCCGCTGGACCGGTCGGTCCCCGTGGAGCGCCTGGAGGACCGCGCACCGGCGCAGGCCGCGGACGCCCCCGAGGCGCCTGCGGGGGACACCGACGGGGCCGACACCCGGCCCGGGACCTCCGAGCTCGAGGACACCCCGCCCGAGCACGCCTCGTCGGAGGACGCCGCCGCGAGCGCTCCCGAGGACGAGCAGCCCGAGGACGAGCGGCCGGAGGACGAGCGGGGAGCGCCTGCTGAGCAGGACGCCCACGAGTCCGCCGACGCGGACGAGCCCGCCGACGCCGAGCAGGCAGCGACCCCGGCCACCGGGTGGCGTGCGCTCGGCGAGGCCATGCACCCGCGCGGCAATCGGTCCCAGCTGCTGGCGGCCGTGCTGTGCGCGGCCCTGGGCTTCGCGCTCGTGGTCCAGGTCCAGCAGTCCTCCCAGGACCCGCTGTCCTCGGCCCGCCAGGACGACCTGGTGCGTCTGCTGGACGAGGTGACGCAGCGCGCCGAGCAGCTCGGCGACGAGGTGGCCGACCTCACCCGGACGCGCGACGAGCTGGCCTCGGGCACCGGGCAGGCCCAGGCCGCCCTGGAGCTGGCCGAGGACCGCGCGACGTCGGAGGGCATCCTGTCGGGCCGGCTGCCCGCCGTCGGGCCGGGCCTGGAGATCCGCATCAGCGACCCGCAGCGCGTGCTGGCGGCGTCGAAGCTGTTCAACATGCTCGAGGAGCTGCGCAACGCCGGCGCGGAGGTCGTGGCCGTCAACGACGTGCGGCTGGTGACGTCCACGTGGTTCATGGACGGCGAGGGCGGCGTCATCGTCGACGGCCGGCTGATCGAGCCGCCCTACCGGTGGCAGGTCATCGGCGACCCGGCGACGTTGACTCCCGCGCTGGAGATCCCCGGCGGTGCGCTGGCCGCCGTGCGCAACGACGGGGCGGAGGCCACCACCGTGGAGCGCGACGAGGTCGAGATCTCCGCCGTGCGGGTACCCAGCGAACCGCAGTACGCGACGCCGCAGCGCCCCGAGGAGTAG	MNDKDEREEPVEPREDTPEAPEVADGPQPAVDPLDRSVPVERLEDRAPAQAADAPEAPAGDTDGADTRPGTSELEDTPPEHASSEDAAASAPEDEQPEDERPEDERGAPAEQDAHESADADEPADAEQAATPATGWRALGEAMHPRGNRSQLLAAVLCAALGFALVVQVQQSSQDPLSSARQDDLVRLLDEVTQRAEQLGDEVADLTRTRDELASGTGQAQAALELAEDRATSEGILSGRLPAVGPGLEIRISDPQRVLAASKLFNMLEELRNAGAEVVAVNDVRLVTSTWFMDGEGGVIVDGRLIEPPYRWQVIGDPATLTPALEIPGGALAAVRNDGAEATTVERDEVEISAVRVPSEPQYATPQRPEE				NA	NA	NA	NA	NA
AK001_02030	333			hypothetical protein	ATGATCGCCGTCGTCGGGCTCGTGATCGGCGTGGTGGCCGGTCTGCTGCTGGAGCCGACCGTGCCGGTGGCTCTGCAGCCGTACCTGCCCATCGCGGTGGTGGCGGCGCTGGACGCGTTGTTCGGTGGTCTGCGCGCCAAGCTGGACGGGATGTTCGACGACAAGGTCTTCGTGGTCTCGTTCCTGTCCAACGTGCTGGTGGCGGCGTTCATCGTGTTCCTGGGCGACCAGCTCGGGGTCGGGTCGCAGCTGTCGACCGCGGTGGTGGTCGTGCTGGGTATCCGGATCTTCTCGAACGCGGCCGCGATCCGACGGCACCTGTTCAAGGCGTGA	MIAVVGLVIGVVAGLLLEPTVPVALQPYLPIAVVAALDALFGGLRAKLDGMFDDKVFVVSFLSNVLVAAFIVFLGDQLGVGSQLSTAVVVVLGIRIFSNAAAIRRHLFKA				NA	NA	NA	NA	NA
AK001_02031	855			hypothetical protein	ATGAGTGTTCCGACGCAGCGGCGCCCTGACGAGTCGATGACGCTGCTGGTCGAGGTGATGGAGCGCCCGCTGGACCCCGGGTACGCGCAGGCGGCCGAGCGCCGGGCGGCCGGCGAGCGCCCGAGCCGTGCGACCTGGCTCCTGCTCGGTCTGGTGGCGGTGCTGCTGGGGCTGATGACGGTCGCCGCCGCGCAGCAGCTGCGAGCGCCGGTGGAGGGTGTCTCCGCCCGCGAGGTGCTCGAGGAGGAGATCACCGAGCGCCAGGCGATCGCCGACGACCTGCGGGAGCGGTCGGCCTCGTTGTCGGCGGAGATCGCGACGCTGAACGAGGAGGCGCTGGCGGCGCAGGACGCCGAGCTGCTGGACCGGGTGCGGCTGGACGGGGTGACGACCGGGTCGGTGCCCGTCTCCGGGCCCGGGCTGGTGGTGACGCTCAGCGACGGCGCCGCGGGCACGACGCCGGACGGCACGGCGTCGTCGGCGCCGGTGCAGGCCGTGGACCTGCAGCGGGTGGTGAACGCGCTGTGGGCCTCGGGCGCCGAGGCCATCAGCGTCGGCGGCGAGCGCCTGACGTCGGTGTCGGCGATCCGGCACGCTGGTCAGGCGATCATGGTCGACCTGGTGCCGCTGCCCGGACCGAGCTACGAGGTGCGGGCGATCGGTGACCCCGAGGCGATGCAGACCGCGTACGCTCGGACCGACGCGCCGGCCTACACCCAGCTGCTGTCGTCCCAGTACGGCATCGCGTCGTCGGTCTCGACGGCGGACTCGTTGGACCTGCCCGGCGTGGGCAGCCAGTTGTTGCGGTACGCGGAGCCGGTGGGTCCGGACGCAGACCAGGAGGGGAACTCATGA	MSVPTQRRPDESMTLLVEVMERPLDPGYAQAAERRAAGERPSRATWLLLGLVAVLLGLMTVAAAQQLRAPVEGVSAREVLEEEITERQAIADDLRERSASLSAEIATLNEEALAAQDAELLDRVRLDGVTTGSVPVSGPGLVVTLSDGAAGTTPDGTASSAPVQAVDLQRVVNALWASGAEAISVGGERLTSVSAIRHAGQAIMVDLVPLPGPSYEVRAIGDPEAMQTAYARTDAPAYTQLLSSQYGIASSVSTADSLDLPGVGSQLLRYAEPVGPDADQEGNS				NA	NA	NA	NA	NA
AK001_02032	705	pgsA2_1	COG0558	Putative cardiolipin synthase	GTGGGCAGTGCCCGGTCCGGTGAGTTTGCCCACTACGTCGTGCGGTGGCCGCCGGTGCGTAGGATGTGCGGGGTAGCAGCCCGGTGGACGCAGGCGGTGAACGTGCAGGCAGGTCGGCAGGCCGACTCGGCGGTGTGGACGGTGCCGAACGTCGTCAGCATGCTCCGGCTGGCGCTGGTCCCGGTGTTCGCGGTCCTCATCGTCACGGGCGAGGACGTGTGGGCGCTGGTGGTGCTGGCCGTGTCCGGGGCGACGGACTGGCTCGACGGCGTACTGGCGCGTCGTCTGAACCAGGTGACGAAGCTGGGTCAGATGCTCGACCCGGCCGCCGACCGGCTGTTCATCCTGGTGACCCTGATCGGCCTGGCGTGGCGCGAGGTCATCCCGTGGTGGGTGCTGGCCGTCATCGTGTCGCGCGACGTCATGCTGGCCTTCCTGGTGCGGCCGCTGGCACGCCGGGGGTACGGTCCGGTGCCGGTGACCTTCGTCGGCAAGGCCGGCACGTTCGCCCTGCTGTACGCGTTCCCGCTGCTGCTGCTGGCCTCGATGCCCGGTGGCGTCGGTGCGGTGGCGCACGTGGTCGGCTGGGCCTTCGCCTGGTGGGGCATCGGCCTGTACTGGTGGGCAGGTCTGCAGTACGTGCGTCATGTGCGCCGGCTGGTGGACGACGACCGAGACGACGCGCAGACGGAGGGTGCGGCATGA	MGSARSGEFAHYVVRWPPVRRMCGVAARWTQAVNVQAGRQADSAVWTVPNVVSMLRLALVPVFAVLIVTGEDVWALVVLAVSGATDWLDGVLARRLNQVTKLGQMLDPAADRLFILVTLIGLAWREVIPWWVLAVIVSRDVMLAFLVRPLARRGYGPVPVTFVGKAGTFALLYAFPLLLLASMPGGVGAVAHVVGWAFAWWGIGLYWWAGLQYVRHVRRLVDDDRDDAQTEGAA	PGPT0007735_1689	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007735-pgsA-K08744	NA	NA
AK001_02033	1812	deaD_1	COG0513	ATP-dependent RNA helicase DeaD	ATGAGCACCCCTGACTCCACGCTGCCCACCGACGCCCAGCCCACCTTCCGCGACCTCGGCCTGCCTGCGCCGCTGCAGAGCGCCGTCGACGACCTGGGCTTCACCACGCCCTCGCCCATCCAGGCCGAGGCCGTCCCCGCGCTCCTCGCCGGCCGCGACATCACCGGTGTCGCCCAGACGGGCACCGGCAAGACCGCCGCCTTCGGCCTGCCCCTGCTGGCCGCCCTCGACGCCGACGCCGACGTCTCCCGCGGCCACGTGCAGGCGCTCGTGCTCGCCCCCACCCGCGAGCTCGCCATGCAGGTCGCCGAGGCCGTCGAGTCCTTCGCCACCCACCTGCCCGGCGTGCAGGTCCTGCCCGTCTACGGCGGGGCCCCCTACCAGCCGCAGCAGCGCGCCCTGCGCGACGGCGTCCACGTCGTCGTCGGCACCCCCGGCCGCGTCATGGACCACCTCGACCGCGGCGCGCTCCACCTCGACACCGTGAAGTTCCTCGTCCTGGACGAGGCCGACGAGATGCTGCGCATGGGCTTCGCCGAGGACGTCGAGACCATCTTCGGCCAGGCACCCGCCGAGCGGCAGGTGGCCCTGTTCTCCGCCACCATGCCGCCTGCCATCCGCCAGGTCGCCGACACCCACCTCACCGACCCCGTGCAGATCGCCGTCAGCCGGCAGTCCAGCACCGTCACCACCGTCGAGCAGACCTACGCCGTGGTGCCGTTCCGCCACAAGGTCGGCTCCCTGGTCCGCGTCCTGGCCACCTCCGACGCCGACGCCACCATCGTCTTCACCCGCACCCGTGCGGCCGCCGAGGAGGTCGGCGTCGCCCTGGTCGAGCGCGGCGTCTCCGCCGCCACCATCTCCGGCGACGTCGCCCAGAAGGAGCGCGAGAAGATCGTCGAGCGGCTGCGCAGCGGCGCCCTCGACGTCCTGGTCGCCACCGACGTCGCCGCCCGCGGTCTCGACGTCGACCGCATCGGTCTCGTCGTCAACTTCGACCTGCCCCGCGAGGCCGAGGCCTATGTCCACCGGATCGGCCGCACCGGCCGCGCCGGCCGCACCGGCAAGGCCCTGTCCTTCGTGACCCCCCACGAGCGCGGCAAGCTCAAGCACATCGAGCGCACCATCCGCACCCGCCTCGTCGAGGCCGAGATCCCCTCCCCCCGGGACGTCTCCGACCACCGGGCACGCACCATCCTGTCCACGGTGCCCACGCGCCTCGAGGCCGGCCGGCTCGACCTGTACACGCAGTTCCTCACCGAGCACCTGACGCCCGGCGAGGACGGCACCACGCCCGACCCCACCCAGGTCGCGGCCGCCCTGCTGGCGCTCGCGGTGGGCGACGACGGTCCGCAGCACCTCGCCGCCCAGGCCGAGCACGAGAAGGAGCGCGCCGAGGTCAAGGGCGGTCGCACCCGTGAGACGAAGCGCGCCGAGCGCTCGGACCGCGACGGCGACCGCACCCGGCGCCACCCCCGCGCCGACCGCGACGGGGACCGCCCCCGCGGTATCCGCCGTGCGGCCGAGGGCACCCGCTACCGGGTCGCCGTCGGCCACGCCCACGGCGCCCAGCCCCGCGGCATCGTCGGTGCGCTGACGAACGAGGGCGGCCTGCGTGGTGCCGACATCGGCAAGATCGACATCTTCGGCAGCTTCTCGCTGGTCGACATCACCAAGCCGCTCGACGACGCGGCCATGAACAAGATCGGCCGGGCCAACGTGGCCGGCCGCCAGCTGCGCATCGCTCCGGACAAGGGTGCGCCGCAGGCTCGCGCCCCGCGCAGCGAGCGTCGTCCGGCGCACACGGCCTGA	MSTPDSTLPTDAQPTFRDLGLPAPLQSAVDDLGFTTPSPIQAEAVPALLAGRDITGVAQTGTGKTAAFGLPLLAALDADADVSRGHVQALVLAPTRELAMQVAEAVESFATHLPGVQVLPVYGGAPYQPQQRALRDGVHVVVGTPGRVMDHLDRGALHLDTVKFLVLDEADEMLRMGFAEDVETIFGQAPAERQVALFSATMPPAIRQVADTHLTDPVQIAVSRQSSTVTTVEQTYAVVPFRHKVGSLVRVLATSDADATIVFTRTRAAAEEVGVALVERGVSAATISGDVAQKEREKIVERLRSGALDVLVATDVAARGLDVDRIGLVVNFDLPREAEAYVHRIGRTGRAGRTGKALSFVTPHERGKLKHIERTIRTRLVEAEIPSPRDVSDHRARTILSTVPTRLEAGRLDLYTQFLTEHLTPGEDGTTPDPTQVAAALLALAVGDDGPQHLAAQAEHEKERAEVKGGRTRETKRAERSDRDGDRTRRHPRADRDGDRPRGIRRAAEGTRYRVAVGHAHGAQPRGIVGALTNEGGLRGADIGKIDIFGSFSLVDITKPLDDAAMNKIGRANVAGRQLRIAPDKGAPQARAPRSERRPAHTA				NA	NA	NA	NA	NA
AK001_02034	459			hypothetical protein	ATGTCCGACGACGGCACCGGGCCCGCGTACCGCACGTTCCGTCCGTTCTGGGCGAGGGTGTCGGTGGCGATCACCGGTGCCGTCGCGGCCGGAGGCAGCCTGCTGGTCGGGCTCTTCGCACCGACGGGAGTCCTCCTGGGGGAGGGCACCCGGCTGACGTTCGTCCTCTTCGCCGTGTTCGTCGTCTGGCTGCTCTGGCGGCTGGGCGGCGTGCACGCCCGGCCCGACGACGACGGTCTGACCGTCCGCAACGTCGTGCGCACCCGGCGGGTCGCCTGGCCGGAGATCGTCGCCGTGCGCATGACTCCGAACGACCCGTGGGTCGTCCTGGACCTGGCCGACGGTGGCACGCTCGCCGTCATGGCGATCCAGCGCGCCGACGGTGAACGGGGCATGGCCGAGGCGCGTCGGCTGCAGTCCCTCGTGCAGCGGCTGGGCGAGGCGCCCGACGTCGACTGA	MSDDGTGPAYRTFRPFWARVSVAITGAVAAGGSLLVGLFAPTGVLLGEGTRLTFVLFAVFVVWLLWRLGGVHARPDDDGLTVRNVVRTRRVAWPEIVAVRMTPNDPWVVLDLADGGTLAVMAIQRADGERGMAEARRLQSLVQRLGEAPDVD				NA	NA	NA	NA	NA
AK001_02035	849	hisG	COG0040	ATP phosphoribosyltransferase	TTGCTCCGCATCGCCGTCCCCAACAAGGGTTCGCTGTCCACGCCCGCCACCGAGATGCTGCGCGAGGCGGGCTACCGCCAGCGCCGTGACAACCGTGAGCTGGTGCTCACCGACGTCGACAACGACGTCGAGTTCTTCTTCCTGCGTCCTCGCGACGTGGCCGTCTACGTCGGTGCCGGCACCGTCGACGTCGGGATCACCGGCCGCGACCTGCTGCTGGACTCCGGCGCCGAGGCGGTCGAGCACCTGCCGCTCGGGTTCGCCGGCTCCACCTTCCGCTTCGCCGCGCCGGCGGGCAGCGCGACCCAGGTCGAGGACATCGCCGGCAAGCGCGTCGCGTCGTCGTACACGACGCTCGTCGCGGGCTACCTGGCCCGTCAGGGCATCGAACCGTCGGCGATCGTCCACCTGGACGGTGCGGTGGAGAGCTCGGTCCGGCTCGGCGTCGCGGACGTCATCGCCGACGTCGTCGAGACGGGCAGCACGCTGCGTGCCGCGGGCATGGAGGTCTTCGGCGAGCCGATCCTGCGCTCCGAGGCGGTGATGATCCGGCACGCCCACCAGGACGAGCCCGTCGGCCTCGACGTCCTGACCCGCCGTCTGCAGGGCGTGATCACCGCCCGCGAGTACGTCCTGCTGGACTACGACGTGCCGATGGAGCTCGTCGACGCCGCGGTCGCCGTCACGCCGGGCTTCGAGTCGCCCACCGTGTCCCCGCTGCACAACGGCCACTCGGCCGCCGTGCGGTCCATGGTGCGTCGCGCCGACACCAACCGGGTGATGGACGCCCTCTACGAGGTGGGCGCCCGCGGGATCCTGGTGACCTCGATCCTCGCCTCGCGCCTCTGA	MLRIAVPNKGSLSTPATEMLREAGYRQRRDNRELVLTDVDNDVEFFFLRPRDVAVYVGAGTVDVGITGRDLLLDSGAEAVEHLPLGFAGSTFRFAAPAGSATQVEDIAGKRVASSYTTLVAGYLARQGIEPSAIVHLDGAVESSVRLGVADVIADVVETGSTLRAAGMEVFGEPILRSEAVMIRHAHQDEPVGLDVLTRRLQGVITAREYVLLDYDVPMELVDAAVAVTPGFESPTVSPLHNGHSAAVRSMVRRADTNRVMDALYEVGARGILVTSILASRL	PGPT0017400_2098	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017400-hisG-K00765	NA	NA
AK001_02036	264	hisE	COG0140	Phosphoribosyl-ATP pyrophosphatase	GTGAAGACCTTCGACTCCCTGTTCGCCGAGCTGTCAGCCAAGGCCGAGTCCCGTCCCGCCGGGTCGGGGACCGTCGCGCAGCTGGACGCCGGCGTCCATGCGATCGGCAAGAAGATCGTGGAGGAGGCCGCCGAGGTCTGGATGGCGGCCGAGCACGAGTCCGACGAGGCGGCCGCCGAGGAGATCTCGCAGCTGCTCTACCACCTGCAGGTGCTGATGCTGGCCAAGGGGCTCACGCTGGAGGACGTCTACGACCATCTGTGA	MKTFDSLFAELSAKAESRPAGSGTVAQLDAGVHAIGKKIVEEAAEVWMAAEHESDEAAAEEISQLLYHLQVLMLAKGLTLEDVYDHL				NA	NA	NA	NA	NA
AK001_02037	663	rpe	COG0036	Ribulose-phosphate 3-epimerase	ATGCCTGCGCTGATCCACCCCAGCATCCTGTCGGCCGACTTCGCGAACCTCGAGCGCGACCTGCACGCCATCGCGACGGCGGACGCCGCGCACGTCGACGTCATGGACTACCACTTCGTGCCGAACCTGACGCTCGGCCTGCCGGTCTTCGAGCGGCTCGTGGAGGTCTCCCCGGTGCCGGTGGACGGCCACCTCATGATCGCCGACCCCGACCGCTGGGCGCCGGCGTACGCCGAGGCGGGTGCGGCGTCGGTGACGTTCCACGCCGAGGCGGCACAGGCTCCCGTGCGCCTCGCCCGCGAGCTGCGCCGGCTGGGTGCGCGCGCCGGCGTGGCGCTGCGCCCGGCGACGCCCGTCGAGCCCTATCTCGACCTGCTCGCCGAGGTCGACATGATCCTCGTGATGACGGTCGAGCCCGGGTTCGGCGGCCAGTCGTTCATCGACGGCACGCTGCCCAAGATCCGCCGCGCCCGGGCGGCGATCAGCGAGCAGGACCTCGACGTGCAGATCCAGGTCGACGGGGGAGTGTCCCGCTCCACGATCGAGCGGGCTGCCGAGGCCGGGGCGAACGTCTTCGTGGCCGGCTCCGCGGTCTACGGGGCGGACGACGTCTCCGCCGAGATCGAGACGCTGCGGGCGATGGCGGACCAGCACACCCACTGA	MPALIHPSILSADFANLERDLHAIATADAAHVDVMDYHFVPNLTLGLPVFERLVEVSPVPVDGHLMIADPDRWAPAYAEAGAASVTFHAEAAQAPVRLARELRRLGARAGVALRPATPVEPYLDLLAEVDMILVMTVEPGFGGQSFIDGTLPKIRRARAAISEQDLDVQIQVDGGVSRSTIERAAEAGANVFVAGSAVYGADDVSAEIETLRAMADQHTH	PGPT0017425_4248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017425-rpe|cbbE-K01783	NA	NA
AK001_02038	546	bar		Phosphinothricin N-acetyltransferase	GTGGCTGCCCTCCCCTCCCCCGACGACGCCTCCGTGACGGTGACGCGCCCGCACGTGCGCCGTGCCACGACGGCGGACCTCGACGCCGTCGCCGCGGTCCTCGCTCCGTACGTGGCACGCACGGCCGTCACGTTCGACGAGGAGCCGCCGACCGACGCCGACTGGCGCGGCCGCCTGGCCGAGGCCGACGCGCGCGGTCTGCCGTTCCTCGTCGCCGAGCTCGACGGCGAGGTGGTCGGCTACGCCTACGCGGCGCCGTGGCGGCCCAAGGCGGCCTACCGGCACACGGTCGAGGACACGATCTACCTGGCGCCGGCGGCCCAGGGCCGGGGCGTCGGGACCCGGCTGCTGTCGGCCCTGCTCGACGCCTGCACGGTCGCCGGCGTGCGCCAGGTGATCGCCGTGATCGCCGACGACCCGGCCGCCGCCGGCTCGGTGCCGCTGCACCGACGCCTCGGCTTCGAGGTCACGGGCGTCCTGCGCGACGTCGGCCGCAAGCACGGCCGCGACGTGAGCACGATGCTGATGCAGCGCACGCTGCACTGA	MAALPSPDDASVTVTRPHVRRATTADLDAVAAVLAPYVARTAVTFDEEPPTDADWRGRLAEADARGLPFLVAELDGEVVGYAYAAPWRPKAAYRHTVEDTIYLAPAAQGRGVGTRLLSALLDACTVAGVRQVIAVIADDPAAAGSVPLHRRLGFEVTGVLRDVGRKHGRDVSTMLMQRTLH				NA	NA	NA	NA	NA
AK001_02039	1281	hipA	COG3550	Serine/threonine-protein kinase toxin HipA	ATGACCGCGCCTGAGCTGGACGCGTGGCTCTACGGCACACGCATCGCCCGGTTCTCCGCGCAGGACACCGGTCGCGGCGCCCCGCGCGTGGAGCTGACGTGGGATCCGGGCGCCGTCGACCGCTGGGGGTACGGCTCGCGGGTCCTGTCCCACCTGCTGCCGATGGATCCCGACGGTGCGCCCGCGCCGGCCCGCGTGACGGCCTGGCTCGACGGGCTCATGCCCGAGGGGCGCGTCCGTGACCACATGGCCATGGACGCCGGCGTCGACCCGGACGACCCGGTGGGCTTCTTCGGCGCCTACGGCGGGGACACCGTCGGAGCACTCCGGTTCGTCGCGGTGGGGGTCGAACCGCGAGAACACGACCGTGAAGCGGTGCGCCTCGACGACGCCGGCGTCGCGGACCTGCTGCGCGCGAGCATCGCCCGCGCCGGGGGACAGGCGCGCAGCCAGCGCCTCACGAGCTCGTTGCCCGGGATGGAGCCGAAGATCGGGCTCGTGCGCGACGACGGCGCCTGGTGGCGCGCCGCGCCCGACGAGGCGACCACGCACATCCTCAAGGTGGCCCGCGACGCCGACTCGCCGACGGCCGACCTCGTGGACACCGAGGCGGCCGCCCTCGACCTCGCACGACGCCTCGGGCTCACCACGATCCAGGCGCACGTCGAGACGTTCGAGGACGTGCGCTGCCTCGTGGTGTCCCGCTACGACCGCGTGCCCGACGACGACGCCCCCGGCGGGCTGCGCCGCATCCACCAGGAGGACGCCGCCCAGGCGCTCGGCATCAACACCCGTGACCCCGAGCGCAAGTTCCAGCACGGCCGGTCGATCCCCTCGTTGCAGGCGATCGCCCAGGTGCTGCGCGACGACGGCACCCGCCCGGACCGCCTGCTCGCCCTGACCACGCTGAACCTGGCCCTCGGCAACACCGACGCCCACGCCAAGAACGTCTCCATGCTGCGCCGGGCCGACGGCACGGTCTCGCTGGCGCCGGCCTACGACATCTCCATGCACCTGCACCACGACCACGCCTCGCGGATCTTCGCGATGGACATCGTCGGACGCCGGGACATGGACGCGATCACGGGAACCGACCTCGTGGACGAGGGCGTCTCGTGGGGCCTGCCGCGTCGCCGGGCGACGCGCGTCGTCGCCACCACGCTCGACGACCTGCGCACGGCGCTGGCCGAGATCGACCGGGACGTGCACCCGGGTGTGGGAGCGGCGGCGTGGCGCACCGTGCAGGCGCGCACCGACGCGTTGCGCGGCGAACTGTCATGA	MTAPELDAWLYGTRIARFSAQDTGRGAPRVELTWDPGAVDRWGYGSRVLSHLLPMDPDGAPAPARVTAWLDGLMPEGRVRDHMAMDAGVDPDDPVGFFGAYGGDTVGALRFVAVGVEPREHDREAVRLDDAGVADLLRASIARAGGQARSQRLTSSLPGMEPKIGLVRDDGAWWRAAPDEATTHILKVARDADSPTADLVDTEAAALDLARRLGLTTIQAHVETFEDVRCLVVSRYDRVPDDDAPGGLRRIHQEDAAQALGINTRDPERKFQHGRSIPSLQAIAQVLRDDGTRPDRLLALTTLNLALGNTDAHAKNVSMLRRADGTVSLAPAYDISMHLHHDHASRIFAMDIVGRRDMDAITGTDLVDEGVSWGLPRRRATRVVATTLDDLRTALAEIDRDVHPGVGAAAWRTVQARTDALRGELS	PGPT0027480_1440	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154	NA	NA
AK001_02040	246			hypothetical protein	ATGGCCACCGACCGCTGGACCCACGCCCGCGGCCCCCGCGACCTCGGCCGCTTCGTCCAGCAAGCCCGCAAGCAGCACGGACTCAGCCAGGCGGCGCTCGCGGACGAGCTCGGCCTGACGCGCCAGTACGTCTCCGAGGTCGAGTCCGGCGTCGGGAACCTCTACATCACGCGGCTCTTCGAGATGTTCGACGAGCTGGGGATCGAGGTCCGCCTCGAGCAGCGGGGCAGCGATGACCGCGCCTGA	MATDRWTHARGPRDLGRFVQQARKQHGLSQAALADELGLTRQYVSEVESGVGNLYITRLFEMFDELGIEVRLEQRGSDDRA	PGPT0027485_781	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027485-REGULATION_hipB-K15773	NA	NA
AK001_02041	1548		COG0144	Putative methyltransferase	ATGAGCGCCGACCGCCCGGGACGCGACCAGCCCCGGGACGACCGCCGCAACGACCGCGGCCGCCAGCGCGGCGCCGCCCGCAGCCGCGGGCAGGGCCACCGCAGCGGCCAGGCGCCCTCGCAGCGCCGCCGGTCCACCGACCCGGCCCGCACGGCCGCCTACGACGTGCTGCGCGAGGTGGACGGCTCGGACGCCTACGCCAACCTCGTGCTGCCCCCGCTGCTGCGCGAACGCGGTCTGAGCGGCCGCGACGCCGGGTTCGCCACCGAGCTCGCCTACGGCACCCTGCGCCTGCGCGGCCGCTACGACGCGATCCTGGCGCGCTGCGTCAGCCGCCCGCTGGACCGTCTCGACCCCGAGGTGCTCGACGTGCTGCGCCTGGGCGCCCACCAGCTGCTCGGCATGCGGGTGCCCGCCCACGCGGCGGTGTCCGAGACCGTGGGGCTGTGCCGCGACCGCGTCGGGGCCGGACCGGCCCAGATGGTCAACGCCGTGCTGCGGGCCGTCGGACGCCGCCCGCTGGAGGAGTGGCTCGACGACCTGCGGGCCGACGCCCCCGACGCCGTGACCGGGCTCGCCCGGACCGGCTCGCACCCGGTGTGGATCACCCGCGCCCTGCGCGAGGCCCTGCACGGGCACGGCCGCGACGCGGGCGAGATCGCCGACCTGCTCGAGGCGGACAACACGCCCCCGCGGGTCACCCTCGTCGCCCGGCCCGGCCTCGTCGCAGCGGACGCGCTCGACGACGGCGCACCGGACGCGGTGCGCCTGGAGCCCGGTGCCTGGGCGCCCACCGCGCGCGTGCTCGCCGCCGGCACCGACCCCGCCGACCTGCCCGCCGTCGCCGACGGCCGCGCCGGTGTCCAGGACGAGGGCTCGCAGCTGGTCACCCTCGCCCTGGCCGCCGTGGCCCTGGACGGACCCGACGCGCGCTGGCTGGACCTGTGCGCCGGCCCCGGGGGCAAGGCCGCCCTCCTCGCGGCGCTCGCGGGCGAGCGGGACGCCCGGCTGGTGGCCAACGAGCTGCAGCCGCACCGCGCCCGCCTCGTGCGCCGCGGGTTGCGTGCCGCCCCCGAGGGGGTCGTGGAGCAGGTGCGCACCTCCGACGGGCGCGAGCTCGGCACGGAGGAGCCCGGCGGCTACGACCGGGTCCTGGTCGACGCCCCCTGCACGGGGCTGGGCGCGCTGCGGCGGCGACCCGAGTCCCGCTGGCGACGTACGCCCGCCGACCTCGGGGTGCTCACGCGCCTGCAGGGCGAGCTGCTCGGCTCCGCCCTGGACGCCGTCCGGCCCGGGGGAGTGGTCGCCTACGTCACCTGCTCGCCCCACCTGGCCGAGACCCGGCTCGTCGTCGACGACGTGCTGCGCCGCCGCGACGACGTCGAGCGGATCGACGCCCGGGCGGCCGTGCGCGACGTGCTCGTGCCCGGGGCGCAGATCGACCTCGGGGCCGACGACGGCGGCGCGGACGGCCTGGACGTCCAGCTCTGGCCGCACGTGCACGGCACGGACGCCATGCACCTGACGCTGCTGCGGCGAGCGGCCTGA	MSADRPGRDQPRDDRRNDRGRQRGAARSRGQGHRSGQAPSQRRRSTDPARTAAYDVLREVDGSDAYANLVLPPLLRERGLSGRDAGFATELAYGTLRLRGRYDAILARCVSRPLDRLDPEVLDVLRLGAHQLLGMRVPAHAAVSETVGLCRDRVGAGPAQMVNAVLRAVGRRPLEEWLDDLRADAPDAVTGLARTGSHPVWITRALREALHGHGRDAGEIADLLEADNTPPRVTLVARPGLVAADALDDGAPDAVRLEPGAWAPTARVLAAGTDPADLPAVADGRAGVQDEGSQLVTLALAAVALDGPDARWLDLCAGPGGKAALLAALAGERDARLVANELQPHRARLVRRGLRAAPEGVVEQVRTSDGRELGTEEPGGYDRVLVDAPCTGLGALRRRPESRWRRTPADLGVLTRLQGELLGSALDAVRPGGVVAYVTCSPHLAETRLVVDDVLRRRDDVERIDARAAVRDVLVPGAQIDLGADDGGADGLDVQLWPHVHGTDAMHLTLLRRAA				NA	NA	NA	NA	NA
AK001_02042	963	fmt	COG0223	Methionyl-tRNA formyltransferase	GTGCGTCTGCTGTTTGCCGGAACCCCCGAACCCGCCGTGCCCGCCCTGAAGGCACTGATCGACTCCGACCACGAGGTCGTCGCCGTGCTGACCCGCGCCGACGCCCGGGCGGGACGCGGCCGTCGGCTCGTGCCGAGCCCCGTGCGCGTCGCCGCCGAGGAGGCCGGCGTCGAGGTGATCACCGACGTCCCGCGCGGGGAGGACTTCGTGGCCCGGCTGCGCGCCCTCGAGGTGGACGCCGCCCCCGTGGTCGCCTACGGCCACCTGCTGCGCCCGGACGTGCTCGCCGCGGTCCGCCTGGGCTGGGTCAACCTGCACTTCTCCGTGCTGCCCGCCTGGCGCGGCGCCGCTCCCGTCCAGCACGCGGTCCTCGCCGGCGACGAGGTCACCGGCGCCACCACGTTCCTGCTCGACGACGGAATGGACACCGGCCCCGTGCTCGGCACCGCCACCGAGACCGTCCGGCCCCGCGACACCTCCGGCGACCTGCTCGACCGTCTCGCCACCTCCGGTGCCGGGCTGCTCGTGGCCACGCTGGACGCCCTGGAGGCCGGCACCCTGTCCCCGCAGCCCCAGAGCCCGGACGGGGCCTCCTACGCCCCGAAGATCACCGCTGAGGACGCCCTGGTGCGCTGGGACGCCCCGGCGCTCGCGGTCGACCGGCGCATCCGGGCGGTCACCCCGGCCCCGGGGGCGTGGACGACCCTGCCCGACGCCGACGACGGCACGCCGGGTGCGCGGCTCGGCCTCGGCCCGGTGCGCCCGCGCCCCGACGTGGCCGACCTGTCCCCGGGACAGGTCCGGGCCTCCAAGTCCGAGGTGCTGGTGGGCACCGCCACGCACGCCGTCGAGCTGGGTGAGGTACGCCCCGTGGGCAAGAAGCCCATGGCGGCGGCCGACTGGGCGCGCGGCGCCGGACGCGTCGTCGTCGAGGCCGACGCCCCGCTGGGAGGGGCCCGATGA	MRLLFAGTPEPAVPALKALIDSDHEVVAVLTRADARAGRGRRLVPSPVRVAAEEAGVEVITDVPRGEDFVARLRALEVDAAPVVAYGHLLRPDVLAAVRLGWVNLHFSVLPAWRGAAPVQHAVLAGDEVTGATTFLLDDGMDTGPVLGTATETVRPRDTSGDLLDRLATSGAGLLVATLDALEAGTLSPQPQSPDGASYAPKITAEDALVRWDAPALAVDRRIRAVTPAPGAWTTLPDADDGTPGARLGLGPVRPRPDVADLSPGQVRASKSEVLVGTATHAVELGEVRPVGKKPMAAADWARGAGRVVVEADAPLGGAR	PGPT0008125_3543	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604	NA	NA
AK001_02043	726			hypothetical protein	ATGCGACGTGACGAGCACCGCCGCGAGAGCGCGGCAAACGGGACGAGGATCGCCCCGGCGGTGGCGGGGCTCGTGGGCGTCGTGCTCGTGGCGGGCGCGTGCTCCGGGCCCGAGGGAGCGTTCGCCGAGCCGATGGCGGAGCACGCCCTGTTCGACGACGTCGCCGTCTTGCCGACGTCCCTCACCGCCACGCTCCCCCACGTGACCCACCGCGACGGCTCGTCCGCCACGACGGTCTCGGACCTCGTCGTGGCCGGCGAGATCACCGGTTGGCAGCGCGGGCGGGCCACCGACTGGTCCACGGACGCCGGGCGCGAGGTCGCCTGGTCCGGCGACGCCGACAGCCGCGAGGTCGTCGTGGCACTGGCGGTTGACGAGGTCGTGGCGGCAGGTGACGACGACCTGGACGGCGTCGACGTCGCACCCGGGGACACGATCGAGGTCGTGGCCACGCTGGGCGGGGACGCCGACGCCGCGGGCGACGCGCTGGCCGGGCTCGGCGACCTCGTCGTCCTGGTCGCCCACGGTCCCGGGGAGCACCGGGACGAGTGGTGGGTCGGCCTGGGCGGGATCCTGCTCGGCGACCTGGACGACGGCGACCTGACCTGGCCCGTGCTCGAAGCCGCCGGTCGGGACCTCGACCTGCGCGACGACGTCGCCGACCTGGACGCGTTGCGTCGCGCCGCCGAGGCCGCCCCGCGGACGATCGCCGTCGGCGACTCCTGA	MRRDEHRRESAANGTRIAPAVAGLVGVVLVAGACSGPEGAFAEPMAEHALFDDVAVLPTSLTATLPHVTHRDGSSATTVSDLVVAGEITGWQRGRATDWSTDAGREVAWSGDADSREVVVALAVDEVVAAGDDDLDGVDVAPGDTIEVVATLGGDADAAGDALAGLGDLVVLVAHGPGEHRDEWWVGLGGILLGDLDDGDLTWPVLEAAGRDLDLRDDVADLDALRRAAEAAPRTIAVGDS				NA	NA	NA	NA	NA
AK001_02044	630	gph_4		Phosphoglycolate phosphatase	ATGCCCGCTGCCGCCCGCCCCGCCGTGGACGCCGTGGTCTACGACCTCGGCAACGTGCTGGTCGGCTGGGACCCGTACGGTGCCTTCGCCGGTCTCGACCGGGTCGAGGTGGACCGGTGGATGGACGCCGTCGACTTCCCGGCCTTCAACCACGCCCAGGACGCCGGGCGCACCTGGGCCGAGGCCGTCGCCCACCTGGAGGCCACCCGGCCCGAGCTGGCCCCGATGGCGGCCCGGTACGCCCGCGACTACGCCGGCACCCTGGCGGCAGGGCCCGTGCCCGGGTCGGCCGAGCTCGTCGCCGAGCTGCACGCCACCGGGGTGCCGCTGTACGGGCTGACCAACTGGGCGGCCGACACCTTCGACGCCGCCGAGCCCGCCGCTCCCGCCATCGGGCTGCTGCGCGACGTGCTCGTCTCCGGGCGGGTCGGGCTGGCCAAACCCGACCCGGCGATCTTCCGGCTCGCCGCCGAGCGCTTCGACCTGGCCCCCGCCCGCACCGTGTTCGTCGACGACACGCTGCGCAACGTCCGCGCCGCCCGGGAGGCCGGCTTCCACGCCGTGCACTTCACCGGCACGCCGGCGCTGCGTCGGGCGCTCGCGGACCTCGGGCTGCCCGTGGCGGACTGA	MPAAARPAVDAVVYDLGNVLVGWDPYGAFAGLDRVEVDRWMDAVDFPAFNHAQDAGRTWAEAVAHLEATRPELAPMAARYARDYAGTLAAGPVPGSAELVAELHATGVPLYGLTNWAADTFDAAEPAAPAIGLLRDVLVSGRVGLAKPDPAIFRLAAERFDLAPARTVFVDDTLRNVRAAREAGFHAVHFTGTPALRRALADLGLPVAD	PGPT0006885_2698	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560	NA	NA
AK001_02045	2241	priA	COG1198	putative primosomal protein N'	GTGACCTCCCCCGACGAGCCCGAGCAGGGCGCCCTGCTCGGGCTCGACGACGTCCCGGCCGCCCCGCGCCGCGGCCGCGCCCCCGGGCGCAAGCCCGGCCGCGAGCCCGCCGCCGTCGACCCGGTGGCCCGCGTGGTGCTCGACCTGGCCCCGGCCCACCTGGACCGCGAGTTCGACTACCTGGTGCCGGCCGCGCTGGCCGACGACGCGGTGCCCGGGGTGCGGGTGCGCACCCGGTTCGGCCCGCAGGACGTGGCCGGCTTCGTCGTCGCCCGGGCCGCGACCTCCGAGCACGAGGGCCGGCTGCAGCCGCTGCGACGCGTCGTCTCGCCCGACCCCGTGCTGACCCCCGCCGTGCTGGACCTGGCCCGCCGGGTCGCCGCCCGGTACGCCGGCACCGTCGCCGACGTACTGCGCCTGGCCGTGCCGCCGCGGCACGCCCGCGTCGAGGCCGAGGTGCTCGCCGACCTGGCCGAGCGGGCAGCGGCCCCCGACGAAGCAGCTGCCGTGGCGGACGAGGCGGCCGCCGATGACGTCGTCGCCGACGACGCCGGCGACGTCGCGGAGGACGGGGCTGCCGCGTCGGCGACGGCCGGCGCACCCGTGGTGCCGCCGCCGTCGCCCCCCGGCGGCGAGGGCTGGCCGGACGTGTGGTCCCCCTACCGCACCGGGGAGGCCTTCTGCCGCCACCTGCTGGGCGGCCAGGCCCCCCGGGCGGTGTGGAGCCCGCTGCCGGGGCTGCAGGCGCCCGTCGGGCAGGAGGGCACCGCGCGCGTCCCGCACTGGGCCGCCGCGATCGCCGAGGCGGTGCGCGCGACCCTGGCCGGCGGACGGCGTGCCCTGGTCGTGGCGCCGGACGCCCGCGACGTCGAGCGCGTGTGCGCGGCGCTGGAGGCCGCCGGGGTCGCCGACGTGCGCCGGCTGCAGGCCGACGACGGCCCGGCTCCGCGCTACCGCGCCTTCCTGCACGCCCGGCACGGCCTGGCGTCGGTGGTCGTGGGCACCCGGGCGGCGATGTTCGCGCCCGTTCCGGACCTGGGGCTGGTCGTGCTGTGGGGCGACGGCGAGGAGACCCTCGACGAGCCGCACGCCCCCTACCCGGCGGCCCGCGAGGTCCTCGCGATGCGCTCCGAGGCGGAGGGCGCCGGGTTCCTGCTGGGCTCGCCCGGCCGGACCGTGCAGGCCCAGGCGATGCTGGCGCGCGGCTGGGCGGCCGAGATCGCCGCGACGCGCGACGTGGTGCGCTCGCGCGCCCCGCGCGTGCGGGCCCTGACGTCGGTCGAGCTCGCCGCCGAGGGGCCCGGCGCCGCCGCCCGGCTGCCCACGGCTGCCTGGCGCACCGCCCGGGCGGCCCTGGAGCGCGGTCCGGTGCTCGTCCAGGTGCCGCGTACCGGCTACCTGCCGGTGGTGGCGTGCGCCGCCTGCCGCACCGCCGCCCGCTGCACGCACTGCCACGGGCCGCTCGGCCTGCGCGGGGCGCGCGGCACCCCCCAGTGCACCTGGTGCGGACGCCTGGCGGGCGCCTGGCGCTGCGAGGAGTGCGGTCACGACCGGGTGCGCGCCGTGCGCGTGGGGTCCGAACGCACCGCCGAGGAGCTGGGCCGCGCATTCGCCGGTGTGCCCGTGCGGGTCTCGGCGTCCTCGGCCCCCGGAGGCATCCTGGCGAGCGTGGCCGCCGACCCCGCACTCGTGGTGGCCACCCCGGGCGCCGAACCCGTGGCCGAGGACGGGTACGCCGCCGCGCTGCTGCTCGACGCCGCGACCGCCACGGCCGGCACCGACCTGGCGATGGCCACCCGCGCCCTGCACCGCTGGATCGCCGCGGCCGCGCTCGTGCGCCCGGGACCGGACGGTCAGGTGCTGCTGGTCGGGGACGCCGCCCCCGCACCCACCGGCGCGCTGGTGCGGTTCGACCCGGCCGGCCTGGCCGAGCGCGAGCTCGACGAGCGCCGCGAGCTCGACCTGCCGCCCGCCGTGCGCATCGCCGCGGTGACCGGCGACGCCGACGCCGTGCGCGCCGTCGTCGACCGCGTCGAGCTCGCCACGCCCGAGACGGTGCTCGGACCCGTGGAGCTGCCCGTCGACGACCGTCTCGAGGCCCGCGTGCGCGTCGTGGTGCGCGTGCCCCCGGCCGCCGGTGCCGAGCTCGCCGCCCAGCTGCGCGCCTCGCTGGCCGTGCGCTCCGCCCGCCGCGAGGGCGGCACCGTCCGTGTCCAGGTCGACCCCCAGGAGATGCTCTGA	MTSPDEPEQGALLGLDDVPAAPRRGRAPGRKPGREPAAVDPVARVVLDLAPAHLDREFDYLVPAALADDAVPGVRVRTRFGPQDVAGFVVARAATSEHEGRLQPLRRVVSPDPVLTPAVLDLARRVAARYAGTVADVLRLAVPPRHARVEAEVLADLAERAAAPDEAAAVADEAAADDVVADDAGDVAEDGAAASATAGAPVVPPPSPPGGEGWPDVWSPYRTGEAFCRHLLGGQAPRAVWSPLPGLQAPVGQEGTARVPHWAAAIAEAVRATLAGGRRALVVAPDARDVERVCAALEAAGVADVRRLQADDGPAPRYRAFLHARHGLASVVVGTRAAMFAPVPDLGLVVLWGDGEETLDEPHAPYPAAREVLAMRSEAEGAGFLLGSPGRTVQAQAMLARGWAAEIAATRDVVRSRAPRVRALTSVELAAEGPGAAARLPTAAWRTARAALERGPVLVQVPRTGYLPVVACAACRTAARCTHCHGPLGLRGARGTPQCTWCGRLAGAWRCEECGHDRVRAVRVGSERTAEELGRAFAGVPVRVSASSAPGGILASVAADPALVVATPGAEPVAEDGYAAALLLDAATATAGTDLAMATRALHRWIAAAALVRPGPDGQVLLVGDAAPAPTGALVRFDPAGLAERELDERRELDLPPAVRIAAVTGDADAVRAVVDRVELATPETVLGPVELPVDDRLEARVRVVVRVPPAAGAELAAQLRASLAVRSARREGGTVRVQVDPQEML				NA	NA	NA	NA	NA
AK001_02046	1206	metK	COG0192	S-adenosylmethionine synthase	ATGACCGATGCGCTGCGCCTCTTCACGTCCGAGTCCGTGACCGAAGGCCACCCGGACAAGGTGTGCGACCAGATCTCGGACGCGATCCTGGACGCGCTGCTCGCCCAGGACCCGCGCTCGCGCGTCGCCGTGGAGACGATGGTCACCACCGGGCTGGTGCACGTGGCCGGGGAGGTCACCACCGAGGCCTACGTCGAGATCCCGCAGATCGTGCGCGAGGTGGTGCGCGGCATCGGCTACACCTCGTCCTCCATCGGGTTCGACGGCGACTCGTGCGGGGTGTCGGTCTCCATCGGTCAGCAGTCGCCCGACATCGCCCAGGGCGTGGACACGGCGCTGGAGCGGCGCACCAACGCCGCCGACGTCGACCCGTACGACGCCCAGGGCGCCGGCGACCAGGGCCTGATGTTCGGCTACGCCACCGACGAGACGCCGTCGCTGATGCCGCTGCCGATCTTCCTGGCCCACCGGCTCGCCGAGCGGCTGGCCGAGGTGCGCCGCACCGGCGAGGTCTCCGGCCTGCGCCCGGACGGCAAGACGCAGGTCACCGTCGGCTACGACGGCGACCGGCCGGTCAGCCTGGACACCGTGGTGCTGTCCACCCAGCACGACGCCGACCTGGAGCAGGACAAGCTCGCCCAGGAGATGCGCGCCCACGTCATCGACCCGGTGGTGGCCCAGGTCGCCTCGGCCTCCGGCATCACCACCGACGACGTGCGCGTCATCGTCAACCCCACCGGGCAGTTCGTCATCGGCGGCCCGCAGGGCGACGCCGGGCTGACCGGCCGCAAGATCATCGTGGACACCTACGGCGGCATGGCCCGCCACGGCGGCGGGGCGTTCTCCGGCAAGGACCCCTCGAAGGTGGACCGCTCGGCCGCGTACGCGATGCGGTGGGTGGCCAAGAACGTCGTCGCCGCGGGCCTGGCGCGCCGCTGCGAGGTGCAGGTCGCCTACGCGATCGGCAAGGCCCAGCCGGTGGGGCTCTACGTCGAGACGTTCGGCACCGAGACCGTCGACCCGGCACGGATCGAGGCCGCCATCCGCGAGGTCTTCGACCTGCGTCCGGCGGCGATCATCCACGACCTGGACCTGCTGCGCCCCGTCTACGCCGCCACGGCCGCCTACGGCCACTTCGGCCGCGAGCTGGAGGCGTTCACCTGGGAGCGCACCGACCGCGTCGAGGCGCTGCGCGCCGCGGTCTGA	MTDALRLFTSESVTEGHPDKVCDQISDAILDALLAQDPRSRVAVETMVTTGLVHVAGEVTTEAYVEIPQIVREVVRGIGYTSSSIGFDGDSCGVSVSIGQQSPDIAQGVDTALERRTNAADVDPYDAQGAGDQGLMFGYATDETPSLMPLPIFLAHRLAERLAEVRRTGEVSGLRPDGKTQVTVGYDGDRPVSLDTVVLSTQHDADLEQDKLAQEMRAHVIDPVVAQVASASGITTDDVRVIVNPTGQFVIGGPQGDAGLTGRKIIVDTYGGMARHGGGAFSGKDPSKVDRSAAYAMRWVAKNVVAAGLARRCEVQVAYAIGKAQPVGLYVETFGTETVDPARIEAAIREVFDLRPAAIIHDLDLLRPVYAATAAYGHFGRELEAFTWERTDRVEALRAAV	PGPT0020000_1931	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-AI-2_BIOSYNTHESIS,PGPT0020000-metK-K00789	NA	NA
AK001_02047	1236	coaBC	COG0452	Coenzyme A biosynthesis bifunctional protein CoaBC	ATGAGGATTCTGCTCGGGGTCTCCGGCGGCATCGCCGCCTACAAGGCGGTGCTGCTGCTCCGCCTGCTGCGCGAGCAGGGCCACGCCGTGCGCGTGGTGCCGACGGCGGCCGCGCTGCGGTTCGTCGGCGCCCCGACCTTCGAGGCGCTCTCCGGGGAGCCGGTGAGCACCGAGGTGTTCGACGACGTCGAGAACGTCCAGCACGTGGCGCTCGGCCAGGGCGCCGACCTGGTGATCGTCGCCCCCGCGACGGCGGACCTGCTCGCCCGGGCCGCCGCCGGACGGGCGGACGACCTGCTCACCTCCAGCCTGCTCGTGGCGCGCTGCCCGGTGGTGATGGCCCCGGCGATGCACACCGAGATGTGGGAGCACCCGGCCACCCGCGCCAACGTCGCGACGCTGCGCGCCCGCGGGGTGCACGTGGTCGAGCCGGCCTCGGGCCGGCTGACCGGCACCGACACCGGCCCGGGCCGGCTGCCGGAGCCGGAGGAGATCGCCCGGGTCGCCCTGGCCGTGGCCGCCGACCCGGCCGAGCAGGTGCGGGTCCGGGACCTGGCCGGGCGCCGCGTGGTCGTCTCCGCGGGCGGCACCCGTGAGCCGATCGACCCCGTGCGGTTCATCGGCAACCGCTCCAGCGGCCGCCAGGGCGCGGCGCTGGCGGCCGCGGCCCGCGCGCGCGGCGCCGAGGTGACCCTGGTCGCGGCGCACGTGGACGCCCCGCTGACCGACCCGCTGGTGGCCGACGGCGTGGACGTGGTGGCCGTGTCCACCACGGCCGAGCTGCGCGACGCCGTGCGACGGGCGGCGGCCTCGGCCGACGCGGTCGTCATGGCGGCCGCGGTGGCGGACTTCCGGCCGCTGGCCGCACCGGAGGCGAAGATCAAGAAGGTCGCCGGGCAGTCGCCGCCGGCGATCGAGCTGGCCGAGAACCCGGACGTGCTGGCCGAGCTGGCCGCCGACCAGGTCCGTGCCGGGCAGGTCGTGGTCGGCTTCGCGGCCGAGACGGGCGACGAGACCGGCAGCGTGCTGGAGCACGGCCGGGCCAAGGCGCGCCGCAAGGGTGCCGACCTGCTGGCGGTCAACGCCGTCGGCCCGGACCGCGGGTTCGGCACGGAGGTCAACGAGGTCACGCTGCTGGACGAGCGCGGCGACACGGTGGCCAAGTCCGCCGGGTCCAAGCGGGAGGTCGCCGACGCCATCTGGGACGCCGTGGCGACCCGAATGACCGCATCGTGA	MRILLGVSGGIAAYKAVLLLRLLREQGHAVRVVPTAAALRFVGAPTFEALSGEPVSTEVFDDVENVQHVALGQGADLVIVAPATADLLARAAAGRADDLLTSSLLVARCPVVMAPAMHTEMWEHPATRANVATLRARGVHVVEPASGRLTGTDTGPGRLPEPEEIARVALAVAADPAEQVRVRDLAGRRVVVSAGGTREPIDPVRFIGNRSSGRQGAALAAAARARGAEVTLVAAHVDAPLTDPLVADGVDVVAVSTTAELRDAVRRAAASADAVVMAAAVADFRPLAAPEAKIKKVAGQSPPAIELAENPDVLAELAADQVRAGQVVVGFAAETGDETGSVLEHGRAKARRKGADLLAVNAVGPDRGFGTEVNEVTLLDERGDTVAKSAGSKREVADAIWDAVATRMTAS	PGPT0008815_1299	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008815-coaBC|dfp-K13038	NA	NA
AK001_02048	339	rpoZ	COG1758	DNA-directed RNA polymerase subunit omega	ATGGCAGGAACCACGCCGCAGCCGATCGGCATCACCGACCCGCCCATCGACGACCTGCTGCAGCACAGCGAGTCCAAGTACGGCCTCGTGCTGTACGCGGCCAAGCGCGCCCGCCAGATCAACGCCTACTACGCCCAGCTCAACGAGGGCCTGCTGGAGAACGTCGGCCCGCTGGTCGAGGCGCGTCACCAGGAGAAGCCGCTGTCGATCGCGATGCGCGAGATCAACGAGGGCCTGCTGACGGCCGAGCCGGCCCCGGAGCCGAGCGAGCTCACCGCCGCCACGCCGGCCGACCCGACGGCGGAGTCCGAGCACGCCGCCGGCGACGAGATCGTCTGA	MAGTTPQPIGITDPPIDDLLQHSESKYGLVLYAAKRARQINAYYAQLNEGLLENVGPLVEARHQEKPLSIAMREINEGLLTAEPAPEPSELTAATPADPTAESEHAAGDEIV				NA	NA	NA	NA	NA
AK001_02049	657	gmk	COG0194	Guanylate kinase	GTGCCGGCACCCCGTGACGCCGCCGAGACCGACGACCCGCGAGGCCCGGCACGGCTGACCGTGCTCGCCGGGCCCACGGCCGTGGGCAAGGGAACGGTCTCGGCCGACATCCGCACCCGCTACCCCGAGGTCTGGCTGTCGGTGTCCGCGACCACCCGGCCCCCGCGCCCGGGCGAGGAGCACGGGGTGCACTACCTGTTCGTCTCGCCGGCGGAGTTCGACCGGATGGTCGCCGACGGCGAGATGCTCGAGTGGGCGGTCGTGCACGGCCGGCACCGGTACGGCACGCCGCGCGGGCCGGTCCAGGAGCACCTGGCCGACGGGCGCCCGACGCTGCTCGAGATCGACCTGCAGGGGGCGCGACAGGTGCGCGAGGCGGTGCGCGGCAGCGACCTGGACGCACAGTTCGTGTTCCTGTCGCCCCCCAGCACCGAGGAGCTCGTGCGCCGTCTGGTGGGACGGGGCACGGAGGACGCCGAGGAGCGCGCCCGCCGGCTGGCCACGGCCGAGGTCGAGATGGCCGCCGAGCCGGAGTTCGACGTGACCATCGTCAACGACGACGTCACGCGCGCCACCGACGAGCTGGCCGGCCTGCTCGGCGTGCCCGGGGCGCGGGGTGAGCGACGTCGCCCCGAGGCCTCGCACGGCGGGCGGTAG	MPAPRDAAETDDPRGPARLTVLAGPTAVGKGTVSADIRTRYPEVWLSVSATTRPPRPGEEHGVHYLFVSPAEFDRMVADGEMLEWAVVHGRHRYGTPRGPVQEHLADGRPTLLEIDLQGARQVREAVRGSDLDAQFVFLSPPSTEELVRRLVGRGTEDAEERARRLATAEVEMAAEPEFDVTIVNDDVTRATDELAGLLGVPGARGERRRPEASHGGR	PGPT0021475_1701	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942	NA	NA
AK001_02050	312			hypothetical protein	GTGGCCCTCCCTCCCCTCACCCCGGAACAGCGTGCGGCGGCTCTCGAGAAGGCGGCCGAAGCGCGTCGGGTGCGCGCCGAGATCAAGAACCGTCTGAAGTACTCCCAGGGGTCCCTCAAGGAGGTGATCGAGCAGGGCCAGACGGACGACGTCGTGGGCAAGCTCAAGGTCGTCTCCCTGCTCGAGTCCCTGCCCGGAGTCGGTAAGGTGAAGGCCCGGGCGATCATGGAAGAGATCGGGATCGCCGAGACCCGCCGGGTCCGTGGTCTCGGACCGCACCAGGCCCAGGCGCTGATCGAGAGGTTTGGCTGA	MALPPLTPEQRAAALEKAAEARRVRAEIKNRLKYSQGSLKEVIEQGQTDDVVGKLKVVSLLESLPGVGKVKARAIMEEIGIAETRRVRGLGPHQAQALIERFG	PGPT0021475_392	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942	NA	NA
AK001_02051	861	pyrF	COG0284	Orotidine 5'-phosphate decarboxylase	ATGAGCGCACCGGCGCCGTTCGGCGCCCGCCTCGCGGCGGCCATGGACGACCACGGGCCGCTGTGCGTGGGCATCGACCCGCACGCGGCGCTGCTGGAGGCGTGGTCCCTGCCGGACGACGCCTCCGGCGTGCGCGAGTTCGGGCTGCGCGTCGTCGACGCCCTCGGGGGTCGGGTGGCGGCGCTCAAGCCGCAGGCGGCCTTCTTCGAGCGGCACGGCTCGCGCGGCCTGGCGGCCCTGGAGGACGTCCTGGCCGCCGCGCGGGCGGCGGGGACCCTGACGGTCGTGGACGCCAAGCGCGGCGACATCGGCTCGACGATGGCCGGCTACGCCGAGGCGTTCCTGGCCGACGCCTCGCCGCTGGCCGGCGACGCCGTCACGCTGACGCCGTACCTGGGCGTCGGGTCGCTGCGCCCGGCGCTCGACCTGGCCGCGGCCACGGGCCGCGGGGTCTTCGTGCTGTGCCTGACGTCCAACCCCGAGGGGGCCGCGGTCCAGCACGCCGTCGGCCCCGACGGGCGCAGCGTCGCCGCGTCCGTCGCGGCCCACGCCGCGACGCTCAACGCGGGTGCGCAGCCGCTGGGCTCGGTCGGTCTCGTGGTCGGCGCGACCGTGGGCGACGCGGCGCGCACCACGGGCACGGACCTGCCGGCGGTCAACGGCCCGCTGCTGGCGCCCGGCGTGGGTGCCCAGGGCGCGGGGGAGCGCGAGCTGGCGGCCGTGTTCGGCGCCGCGCGGGGCCAGGTGCTGGCCTCGTCCTCGCGGGGCGTGCTGGCCGCCGGGCCGGACGCCGCGGCGTTGCGCGGGGCGGCGGCGTCGGCGGCCGCCGAGGTGACCGCGGCGCTGCGTCCGGCGCGCTGA	MSAPAPFGARLAAAMDDHGPLCVGIDPHAALLEAWSLPDDASGVREFGLRVVDALGGRVAALKPQAAFFERHGSRGLAALEDVLAAARAAGTLTVVDAKRGDIGSTMAGYAEAFLADASPLAGDAVTLTPYLGVGSLRPALDLAAATGRGVFVLCLTSNPEGAAVQHAVGPDGRSVAASVAAHAATLNAGAQPLGSVGLVVGATVGDAARTTGTDLPAVNGPLLAPGVGAQGAGERELAAVFGAARGQVLASSSRGVLAAGPDAAALRGAAASAAAEVTAALRPAR	PGPT0014965_542	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591	NA	NA
AK001_02052	3381	carB_2	COG0458	Carbamoyl-phosphate synthase large chain	ATGCCCCGCCGTTCCGACCTCTCCTCCGTCCTGGTCATCGGGTCCGGCCCGATCGTCATCGGCCAGGCCTGCGAGTTCGACTACTCCGGCACCCAGGCCTGCCGCGTGCTGAAGGAGGAGGGCCTGCGCGTCGTCCTGGTCAACTCCAACCCGGCCACGATCATGACCGACCCGGAGTTCGCCGACGCCACCTACGTCGAGCCGATCACCCGCGAGGTGCTGACCTCGATCATCGCCAAGGAGCGTCCCGACGCCCTGCTGCCCACCCTCGGCGGCCAGACGGCTCTCAACGCCGCCATCGAGCTGCACGAGGCCGGCGTGCTGGACGAGTACGGCGTCGAGCTCATCGGCGCCAACATCCCCGCCATCCGCAAGGGCGAGGACCGCGAGGAGTTCAAGGAGGTCGTGGAGGTCTGCGGCGGCGAGTCCGCCCGCTCGCGCATCATCCACTCCATCGACGGCGCGCTCGAGGCCGCCGAGGACCTCGGCTACCCGATGGTCGTGCGCCCCTCGTTCACCATGGGCGGGCTCGGCTCGGGCCTGGCCTACGACGAGGCGGACCTGCGCCGCATCGTCGGCCAGGGCCTGCACTACTCGCCGGTCACCGAGGTGCTCCTCGAGGAGTCGATCCTCGGGTGGAAGGAGTACGAGCTGGAGCTGATGCGCGACAAGAACGACAACGTCGTGGTCGTGTGCTCCATCGAGAACGTCGACCCGGTGGGCGTGCACACCGGCGACTCGGTCACCGTCGCCCCGGCGATGACCCTCACCGACCGCGAGTACCAGACGCTGCGGGACATCGGCATCGCGGTCATCCGCGAGGTCGGCGTCGACACCGGCGGCTGCAACATCCAGTTCGCCGTCGAGCCGGACACCGGGCGCGTGGTGGTCATCGAGATGAACCCCCGCGTGTCGCGCTCCTCGGCGCTGGCCTCCAAGGCCACGGGCTTCCCGATCGCGAAGATCGCGGCCAAGCTCGCCGTCGGGTACACGCTGGACGAGATCCCCAACGACATCACCCAGGTCACCCCGGCCAGCTTCGAGCCGACGCTCGACTACGTCGTGGTGAAGGTGCCGCGGTTCGCCTTCGAGAAGTTCCCGGCGGCGGACGACACGCTGACCACCACGATGAAGTCGGTCGGCGAGGCGATGGCGCTGGGCCGCAACTTCACCGAGGCGCTCGGCAAGGCGCTGCGCAGCATCGACAAGGGCGGCGTCGACTTCCACTGGTCCGGCGAGGCGCCGGCCGGCGAGGAGCTGACGGCGCTGCTGGAGTCCCTGCGGCGACCCACCGAGCAGCGGCTCGTCGGGGTCCAGCAGGCGCTGCGCGCCGTCGAGGCGGGGCACGCGACCCTGGAGCAGGTCTTCGACGCGACGAAGATCGACCCGTGGTTCCTCGACCAGATCCTGCTGATCAACGAGGTCGCCGCCGAGGTGGCCGCCTCGGAGACGCTGACCGCCGACGTGCTGCGCACCGCCAAGCGGCACGGGATCTCCGACGTCCAGATCGCCGCGCTGCGCTCGATGGGGCCCGGGGGAGAGGCCGGCGTGCGCGAGACGCGCCACGCCCTGGGGGTGCGGCCGGTCTACAAGACGGTCGACACCTGCGCCGCGGAGTTCGCCGCGCGCACCCCGTACCACTACTCGTCCTACGACACCGAGACCGAGGTCTCCCCGCGCGAGCGCGAGGCCGTCATCATCCTGGGCTCGGGACCGAACCGCATCGGCCAGGGCATCGAGTTCGACTACTCGTGCGTGCACGCCGCCCTGACGCTCAAGGACGACTACGAGACCGTCATGGTCAACTGCAACCCGGAGACGGTCTCGACCGACTACGACACCTCCGACCGGCTGTACTTCGAGCCGCTGACGTTCGAGGACGTCCTGGAGGTCTACGAGGCCGAGCTCGCCGCGGGCCCGGTCAAGGGCATCATCGTCCAGCTCGGCGGCCAGACGCCGCTGTCGCTGGCGCAGCGGCTGTCCGACGCCGGGCTGCCGATCCTGGGCACCCCTCCCGAGGCGATCGACGCCGCCGAGGACCGCGGGCTGTTCGGCCAGGTGCTCGCCGAGGCGGGCCTGCCCGCCCCGGCGTTCGGCACCGCCCGCTCCCTGGGCGAGGCGCGCGACGTCGCCGACCGGATCGGCTACCCGGTGCTGGTGCGGCCGTCCTACGTGCTCGGCGGGCGGGGCATGGAGATCGTGTACTCGGCCGAGCAGCTCACCGGCTACGTCGAGCGGGCCCTGGAGGCGGCGGCCGCCCACGCGGTGTCCTCCCGCGCTCCCGGGGTGCTGCCGGCGCCGCTGCTCATCGACCGCTTCCTCGACGACGCGATGGAGATCGACGTCGACGCCCTGTTCGACGGCGACGAGCTGTTCCTCGGCGGCGTCATGGAGCACATCGAGGAGGCCGGCATCCACTCGGGCGACTCGGCCTGCGTGCTGCCGCCGGTGTCCCTGAGCCAGGCCGAGGTCGAGCGCATCCGCCGCTCGACCGAGGCCATCGCCCGGGGTGTGGGCGTGCGCGGCCTGCTCAACGTCCAGTACGCCCTCGTCTCGGACGTGCTGTACGTCCTGGAGGCCAACCCGCGCGCCTCGCGCACCGTGCCGTTCGTGTCCAAGGCCACGGGGGCGTCGCTGGCCAAGGCCGCCGCGCGCGTGATGGTCGGCGAGTCGATCGCGGACCTGCGCGCCGAGGGCGTCCTGCCGCCCACGGGCGACGGCGGCACCCTCGACCTGGGGGCGCCGCTGGCCGTCAAGGAGGCGGTGCTGCCGTTCAAGCGGTTCCGCACCGCCGAGGGGCACGTGGTGGACACGGTGCTCGGTCCGGAGATGCGCTCGACCGGCGAGGTCATGGGCTTCGACAAGGACTTCCCGCACGCGTTCGCCAAGTCCCAGGCCGCGGCCTACGGCGGGCTGCCGACGGCGGGCACCGTGTTCGTCTCCGTGGCCGACCGGGACAAGCGCTCGATCGTCTTCCCGGTCCAGCGCCTGGCGGACATCGGCTTCGAGGTGCTGGCCACGGCCGGCACCGCCCAGGTGCTGGCCCGCAACGGCATCGCGGCCACCACGGTGCGCAAGTACTCCGAGGGTCCGGGGGCGGACGGCGAGCCGACCGTCGTCGACCTGATCGGCGAGGGGAAGGTCGACCTGGTCGTCAACTCCCCGTCCGGCCAGGGTGCCCGCGCCGACGGCTACGAGATCCGCGCGGCCACCACCGCCGCGGACCGGCCGATGGTCACCACTGTCGACCAGCTCGCCGCGGCGGTGCAGGGCATCGAGGCGGTGCGCGGTGGGCCGTTCGACGTCGCGAGCCTGCAGGAGCACACCGCGGCCACGGTGGCCCGCCGCGAGACGGGCGGGGCCGTCGGGGTGGGCGCATGA	MPRRSDLSSVLVIGSGPIVIGQACEFDYSGTQACRVLKEEGLRVVLVNSNPATIMTDPEFADATYVEPITREVLTSIIAKERPDALLPTLGGQTALNAAIELHEAGVLDEYGVELIGANIPAIRKGEDREEFKEVVEVCGGESARSRIIHSIDGALEAAEDLGYPMVVRPSFTMGGLGSGLAYDEADLRRIVGQGLHYSPVTEVLLEESILGWKEYELELMRDKNDNVVVVCSIENVDPVGVHTGDSVTVAPAMTLTDREYQTLRDIGIAVIREVGVDTGGCNIQFAVEPDTGRVVVIEMNPRVSRSSALASKATGFPIAKIAAKLAVGYTLDEIPNDITQVTPASFEPTLDYVVVKVPRFAFEKFPAADDTLTTTMKSVGEAMALGRNFTEALGKALRSIDKGGVDFHWSGEAPAGEELTALLESLRRPTEQRLVGVQQALRAVEAGHATLEQVFDATKIDPWFLDQILLINEVAAEVAASETLTADVLRTAKRHGISDVQIAALRSMGPGGEAGVRETRHALGVRPVYKTVDTCAAEFAARTPYHYSSYDTETEVSPREREAVIILGSGPNRIGQGIEFDYSCVHAALTLKDDYETVMVNCNPETVSTDYDTSDRLYFEPLTFEDVLEVYEAELAAGPVKGIIVQLGGQTPLSLAQRLSDAGLPILGTPPEAIDAAEDRGLFGQVLAEAGLPAPAFGTARSLGEARDVADRIGYPVLVRPSYVLGGRGMEIVYSAEQLTGYVERALEAAAAHAVSSRAPGVLPAPLLIDRFLDDAMEIDVDALFDGDELFLGGVMEHIEEAGIHSGDSACVLPPVSLSQAEVERIRRSTEAIARGVGVRGLLNVQYALVSDVLYVLEANPRASRTVPFVSKATGASLAKAAARVMVGESIADLRAEGVLPPTGDGGTLDLGAPLAVKEAVLPFKRFRTAEGHVVDTVLGPEMRSTGEVMGFDKDFPHAFAKSQAAAYGGLPTAGTVFVSVADRDKRSIVFPVQRLADIGFEVLATAGTAQVLARNGIAATTVRKYSEGPGADGEPTVVDLIGEGKVDLVVNSPSGQGARADGYEIRAATTAADRPMVTTVDQLAAAVQGIEAVRGGPFDVASLQEHTAATVARRETGGAVGVGA	PGPT0021150_585	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955	NA	NA
AK001_02053	1275	carA	COG0505	Carbamoyl-phosphate synthase small chain	GTGAGCACCACCACCCGCAGCACCGAACCGGCGATCCTCGTCCTGGAGGACGGCACCGTCGCCCGTGGCACCGCCTACGGCGCCCGCGGCGCCACCGTCGGCGAGATCGTCTTCTCCACCGGCATGACCGGCTACCAGGAGACCCTCACCGACCCGTCCTACCACCGCCAGATCGTCGTGATGACCGCCCCGCACGTGGGCAACACCGGCATCAACACCGACGACCCCGAGTCCCACCGCATCTGGGTCGCCGGCTACGTCCTGCGCGACCCGGCGCGGCGCCCCTCGAACTGGCGCGCCACCGGCAGCCTCGACGACGACCTGGCCGCCCAGGACGTGGTGAGCATCGCCGGCGTCGACACCCGGTTCCTGACCCGGCACCTGCGCGAGCTCGGCGTCATGCGCGCCGGGATCTTCTCCGGCGAGGCGCTGGTGGAGGACGGCGTCGAGCGCGACGTCGCCGACCTCGTCGCCGAGGTCAAGGCCGCCCCGCCCATGGCCGGCGCCGACCTGGCCCGCGAGGTCTCCACGGCCGAGACCTACACCGTCGAGCCCGCCGGCGACTTCGCCGGCGCCGAGCCGGTGGCCACCGTCGTGGCCGTCGACCTCGGCATCAAGGCCATGACGCCCGCCCGGCTCGCCGAGCGCGGTGTGCGCGTGCACGTCGTGCCGCAGTCGGCCACCTTCGACGACGTCGCCGCGCTCCTGCCCGAGGACGCGCCCGGCGGCGTGTTCTTCTCCAACGGTCCCGGCGACCCGTCCGCCGCCACCGCGGAGATCGACCTGCTGCGCGAGGTGCTGGACCGCCGCATCCCGTTCTTCGGCATCTGCTTCGGCAACCAGCTCCTCGGCCGTGCCCTCGGCTACGGCACCTACAAGCTCGGCTACGGCCACCGCGGCATCAACCAGCCCGTCCTGGACCGCACGACCACCAAGGTCGAGGTCACCGCGCACAACCACGGCTTCGCCGTCGACGCCCCCGTCGAGACCGTCAGCACCGCGCCGCACGACGCCGAGCGGGACGACGACGTGCGCTACGGGCGCGTGATCGTCTCCCACGTCGGCCTCAACGACCGGGTCGTCGAGGGCCTGACCGCCCTGGACCTGCCCGCCTTCTCGGTGCAGTACCACCCCGAGGCGGCCGCCGGGCCGCACGACAGCGCCTACCTGTTCGACCGCTTCGTCGAGCTCATGACCACCCGCCAGCCCGTGGCCGTCCCCGACAGCGCGCTCGCCGCACTGGGCGGCGCCACCTCCGGCGAGAAGGAGAACTGA	MSTTTRSTEPAILVLEDGTVARGTAYGARGATVGEIVFSTGMTGYQETLTDPSYHRQIVVMTAPHVGNTGINTDDPESHRIWVAGYVLRDPARRPSNWRATGSLDDDLAAQDVVSIAGVDTRFLTRHLRELGVMRAGIFSGEALVEDGVERDVADLVAEVKAAPPMAGADLAREVSTAETYTVEPAGDFAGAEPVATVVAVDLGIKAMTPARLAERGVRVHVVPQSATFDDVAALLPEDAPGGVFFSNGPGDPSAATAEIDLLREVLDRRIPFFGICFGNQLLGRALGYGTYKLGYGHRGINQPVLDRTTTKVEVTAHNHGFAVDAPVETVSTAPHDAERDDDVRYGRVIVSHVGLNDRVVEGLTALDLPAFSVQYHPEAAAGPHDSAYLFDRFVELMTTRQPVAVPDSALAALGGATSGEKEN	PGPT0021155_311	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956	NA	NA
AK001_02054	555			hypothetical protein	ATGAACCTGCCCCTGCCCGTCGCCGTCGCGATCTGGGTCGTCGTCGGCCTCGCGCTGCTCCTGCTCGTCCTGACCGGCCGCCGCCGGCTGGCCACCCGCACCCGCCATCTCGTGCCCGCCCCGCCGCAGCCGCCGCTGACCGAGGGCGAGCTCGGCGAGCTGGTCGTCGGCCCGGTCGAGGCCGTCTACGTCTCCAGCACGCTGCACGGCGACTGGCTGGCCCGCATCGGCGCCCACGGCCTCGGCGACCGGTCGCACGCCGAGGTCGGCGTGTACGCCGGCGGCGTCGTCGTCGACCGGGACGGCGCCGAGCCGCTGCTGCTGCCCGCCGCGGCGCTGCGTGCCGCCGGCACGGCGCCCGGCATGGCCGGCAAGTACGTCGGCCGCGACGGCCTGGTCGTGCTGACGTGGCAGGTGCCGAGCGACGGCGCCGTCGAGGCCACGACCGTCGACACCGGCCTGCGCACGCGTCACCGCGCCGACAGCGACCGCCTCCTGGAGGCCGTGCGGCCCCTCATCATCCCGTCCGAGCCGAGCGCGAAGGATCACCCGTGA	MNLPLPVAVAIWVVVGLALLLLVLTGRRRLATRTRHLVPAPPQPPLTEGELGELVVGPVEAVYVSSTLHGDWLARIGAHGLGDRSHAEVGVYAGGVVVDRDGAEPLLLPAAALRAAGTAPGMAGKYVGRDGLVVLTWQVPSDGAVEATTVDTGLRTRHRADSDRLLEAVRPLIIPSEPSAKDHP				NA	NA	NA	NA	NA
AK001_02055	1338	pyrC	COG0044	Dihydroorotase	GTGAGCCTGGAGTCCACCACCTACGTCCTGCGGGGGGCGCGCCCCCTGGGCGGCGACGCCGCCGACGTCGTGCTGCGCGACGGCGTGATCGCCGAGATCACCGCCGCGGGCACGGCCGACACCACCGGTGCCGAGGTCGTCGACGCCGCGGGGCAGGTCCTGCTGCCCGGTCTGGTCGACCTGCACACCCACCTGCGCGAACCCGGCCGCGAGGACGCCGAGACCGTGGCGTCGGGGACGCGCGCTGCCGCGGCCGGCGGGTTCACCGCCGTGCACGCGATGGCCAACACCTCCCCGGTGGCCGACACGGCCGGCGTCGTCGAGCAGGTCTACCGGCTGGGGCAGGAGGCCGGCTGGGCCGACGTCCACCCCGTCGGCGCCGTGACGGTCGGGCTCGACGGCGAACGGCTCGCCGAGCTGGGGGCCATGGCCGACTCGGCGGCGCACGTGCGCGTCTTCTCCGACGACGGCAGGTGCGTCGCCGACCCCGTGCTGATGCGCCGCGCCCTGGAGTACGTCAAGGCCTTCGACGGCGTCGTGGCCCAGCACGCGCAGGAGCCCCGGCTGACCGAGGGCGCCCAGATGAACGAGGGGATCGTCTCCGCCGAGATCGGCCTGACCGGCTGGCCCGCCGTCGCCGAGGAGGCGATCATCGCCCGCGACGTGCTGCTCGCCGAGCACGTCGGCTCGCGGCTGCACGTGTGCCACCTGTCCACCGCCGGCTCGGTGGAGATCGTGCGGTGGGCCAAGTCCCGCGGCATCGACGTCACCGCCGAGGTCACCCCGCACCACCTGATCCTCACCGACGACCTCGCCCGCAGCTACGACCCGACGTTCAAGGTCAACCCGCCGCTGCGCACCGCCGCCGACGTCGAGGCCGTGCGCGAGGGCCTGGCCGACGGCACCATCGACATCGTGGCCACCGACCACGCCCCGCACAGCCGCGAGGACAAGGACTGCGAGTGGGGCGCGGCCGCCTTCGGGATGACCGGGCTGGAGACGGCGCTGAGCGTCGTGCAGGAGACCATGGTCGACACCGGCCGCCTGACCTGGTCCGACGTCGCCCGCGTGCTGTCCGCCGCACCCGCCCGGATCGGCCGCGTCGACACGGGCCCCGCCGCGCAGGGACGACCCGTCGCGGTCGGCGAGCCCGCCAACCTGACCCTGGTCGACCCGGCCGCCCGCCGGACCGTCGACGGCGGCACGCAGGTCACCGCCAGCGGGAACACCCCGTTCCGGGGCCGCGAGCTGCCCGGTCAGGTCCGCGCGACGTTCCTGCGCGGCCGCGCGACCGTGCTGGACGGCACCCCGGTCGTGGCGGGGGAGGCGGTCCGATGA	MSLESTTYVLRGARPLGGDAADVVLRDGVIAEITAAGTADTTGAEVVDAAGQVLLPGLVDLHTHLREPGREDAETVASGTRAAAAGGFTAVHAMANTSPVADTAGVVEQVYRLGQEAGWADVHPVGAVTVGLDGERLAELGAMADSAAHVRVFSDDGRCVADPVLMRRALEYVKAFDGVVAQHAQEPRLTEGAQMNEGIVSAEIGLTGWPAVAEEAIIARDVLLAEHVGSRLHVCHLSTAGSVEIVRWAKSRGIDVTAEVTPHHLILTDDLARSYDPTFKVNPPLRTAADVEAVREGLADGTIDIVATDHAPHSREDKDCEWGAAAFGMTGLETALSVVQETMVDTGRLTWSDVARVLSAAPARIGRVDTGPAAQGRPVAVGEPANLTLVDPAARRTVDGGTQVTASGNTPFRGRELPGQVRATFLRGRATVLDGTPVVAGEAVR	PGPT0021145_1776	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465	NA	NA
AK001_02056	990	pyrB	COG0540	Aspartate carbamoyltransferase	ATGAAGCACCTGCTCTCGACCGCCGACCTGAGCAAGGACGAGGCGGTTCTGCTGCTGGACACCGCGGCGCAGATGGCCGCGACCCAGTCGCGCGAGATCAAGAAGCTGCCGACGCTGCGCGGCCGCACCGTGGTCAACCTGTTCTTCGAGGACTCCACCCGCACCCGCATCTCCTTCGAGACCGCGGCCAAGCGGCTGTCCGCCGACGTCATCAACTTCTCGGCCAAGGGCTCGAGCGTGTCCAAGGGCGAGTCGCTCAAGGACACGGCCCTGACGCTGCACGCGATGGGCGCCGACGCCGTGGTCGTGCGGCACTGGGCCTCCGGTGCCCCGTACCAGCTCGCGCACGCCGGCTGGCTCGACGCGGGCGTGCTGAACGCCGGCGACGGCACCCACCAGCACCCGACCCAGGCGCTGCTGGACGCCTACACGATCCGCCGTCACCTCGTGGGTCTCCGCGGCGGTGCCGGGGAGGGTGTCGGCGCGGACCTGGCCGGGCTGCGGGTCGCGATCGTCGGCGACGTGCTGCACTCGCGGGTCGCGCGGGCCAACGTGGCGCTGCTGCACACCCTCGGCGCCGAGGTCACGCTCGTCGCCCCGCCCACCCTCGTCCCCGTCGGCGTGGAGACGTGGCCGTGCGCCGTGTCGTACCACCTCGACGAGACGCTGGCCGAGTTCCGGCCCGACGCCGTGATGATGCTGCGCGTCCAGCGCGAGCGCATGTCGGGCGGCGCCGGCGGGTTCTTCCCGAGCCCGCTGGAGTACACCCGCTACTACGGACTGGACGCCCGGCGCCTGGCGCGCCTGGCCGACCACGCGATCGTGCTGCACCCCGGCCCCATGAACCGCGGCCTGGAGATCTCCGCCGAGGCGGCGGACTCCGACCGCGCCGTCATCGTCGAACAGGTCGCCAACGGCGTCGCGGTGCGCATGGCGGCCCTCTACCTGCTGATGGCCGGGGAGGACTCGGCGGAAGGGAACGACCTGTGA	MKHLLSTADLSKDEAVLLLDTAAQMAATQSREIKKLPTLRGRTVVNLFFEDSTRTRISFETAAKRLSADVINFSAKGSSVSKGESLKDTALTLHAMGADAVVVRHWASGAPYQLAHAGWLDAGVLNAGDGTHQHPTQALLDAYTIRRHLVGLRGGAGEGVGADLAGLRVAIVGDVLHSRVARANVALLHTLGAEVTLVAPPTLVPVGVETWPCAVSYHLDETLAEFRPDAVMMLRVQRERMSGGAGGFFPSPLEYTRYYGLDARRLARLADHAIVLHPGPMNRGLEISAEAADSDRAVIVEQVANGVAVRMAALYLLMAGEDSAEGNDL	PGPT0021160_1175	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609	NA	NA
AK001_02057	606	pyrR		Bifunctional protein pyrR	TTGCGCCCTGGACCTGCCCTGCCCGCAGACCCGCACCCGGACGGCACCACCGTCCTCGGCGCGAGCGACGTCGCTCGCGCCCTGACCCGCATCGCCCACGAGATCGTCGAGCGCGCCAAGGGCGCCGACGACGTGGTGCTCCTCGGCATCCCGACCCGCGGGGTGACGCTCGCCCACCGGCTCGCCGAGCGGCTGTCGGCCATCGAGCCCGCCTTCGACGCCGCCGCCAGCACCGGCGAGCTCGACGTGACGATGTACCGCGACGACCTGCGCCGCCAGCCCACGCGCGCCGTCGGCGTGACCCGCCTGCCGCAGGCCGGGATCGAGGGACGCACCGTCGTCCTCGTCGACGACGTGCTGTACTCCGGGCGGACCATCCGCGCCGCGCTGGACGCGATCGGCGACCTCGGCCGGCCGCGGGCCGTGCGCCTGGCCTGCCTGGTCGACCGCGGGCACCGCGAGCTGCCCATCCGCCCGGACTTCGTGGGCAAGAACCTGCCGACCTCCACCTCGGAGCGCGTGCGCGTCCTGCTGAGCGAGGTCGACGGCGTCGAGGACGCCGTGGTCATCTCCGGCCGCGAGGACACCGAGGGGGACGCGCGATGA	MRPGPALPADPHPDGTTVLGASDVARALTRIAHEIVERAKGADDVVLLGIPTRGVTLAHRLAERLSAIEPAFDAAASTGELDVTMYRDDLRRQPTRAVGVTRLPQAGIEGRTVVLVDDVLYSGRTIRAALDAIGDLGRPRAVRLACLVDRGHRELPIRPDFVGKNLPTSTSERVRVLLSEVDGVEDAVVISGREDTEGDAR	PGPT0021245_183	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825	NA	NA
AK001_02058	417	nusB	COG0781	Transcription antitermination protein NusB	GTGGGAGCACGGACCAAGGCGCGCAAGCGCGCCGCCGACATCCTCTTCGAGTCCGAGCAGCGCCAGATCGACCCGCTGGTGCTGCTCGCGGACCGCGTGATCGAGCCGCACGCCGAGGCGAGCGTGCCGCAGTACACGGTCGAGCTCGTCGAGGGCGTCGTCGCTCACCGCGAGCGCATCGACGAGCTGCTCGAGACCTACTCGCGCGACTGGACGCTGGCGCGCATGCCGGCCGTGGACCGGTCGCTGCTGCGCGTGGGCGCCTACGAGCTGCTCTACAACGACGACGTGCCGGACGCCGTCGCCGTCGACGAGGCGGTGGACCTGGCCGGTCAGCTGTCCACGGACGACTCGCCGAGCTTCGTCAACGGCGTCCTGGGCCGGCTGATGGACATCAAGCCGACGCTGCTGGACTGA	MGARTKARKRAADILFESEQRQIDPLVLLADRVIEPHAEASVPQYTVELVEGVVAHRERIDELLETYSRDWTLARMPAVDRSLLRVGAYELLYNDDVPDAVAVDEAVDLAGQLSTDDSPSFVNGVLGRLMDIKPTLLD				NA	NA	NA	NA	NA
AK001_02059	633	efp	COG0231	Elongation factor P	GTGCTGGCACCCCGCCGGGCCCTCCGGCTGACCATCCTTTCCCGAGACCTGTCGAGGACGAACAACACCGTGGCTACCTCCAACGACATCAAGAACGGCACCGTGCTGCGCATCGACGGCCAGCTCTGGTCCGTTCTCGAGTTCCAGCACGTCAAGCCGGGCAAGGGTGGCGCGTTCGTCCGCACCAAGCTCAAGAACGTGCTCTCGGGCAAGGTGGTCGACAAGACGTTCAACGCCGGCGCCAAGGTCGAGACGGCCAACGTCGACCGTCGCGACTACCAGTACCTGTACATGGACGGCGAGGACTTCGTCTTCATGGACACCGACACCTACGACCAGATCCCGGTCTCGACCACCGTCGTGGGCGGCGCCCAGGACTACATGCTCGAGGGCATGAGCGTCATGGTGGCCATGAACGAGGGCGTGCCGCTCTACGTCGAGCTGCCCCCGTCGGTCGTCCTGGAGATCACCTACACCGAGCCGGGCCTGCAGGGCGACCGCTCGACCGGTGGCACCAAGCCCGCCACGCTGGAGACCGGTGCCGAGGTCCAGGTCCCGCTGTTCCTCGACCAGGGCACCAAGGTCAAGGTCGACACCCGCGACGGGTCGTACCTGGGCCGCGTGAACGACTGA	MLAPRRALRLTILSRDLSRTNNTVATSNDIKNGTVLRIDGQLWSVLEFQHVKPGKGGAFVRTKLKNVLSGKVVDKTFNAGAKVETANVDRRDYQYLYMDGEDFVFMDTDTYDQIPVSTTVVGGAQDYMLEGMSVMVAMNEGVPLYVELPPSVVLEITYTEPGLQGDRSTGGTKPATLETGAEVQVPLFLDQGTKVKVDTRDGSYLGRVND	PGPT0016205_2963	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	OTHER_MOTILITY_REGULATING_FUNCTIONS	MOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356	NA	NA
AK001_02060	375			hypothetical protein	ATGGACGTGTGGTGGACGGTCGGCATCTGGGTGGCCACGCTCGCCCTCAGTGTCGGGCTGGGTGCCTGGCTCGTCCCGCTCGTGCTGCGGCACGCCGAGTCGCGCACCGCGGCGCAGGCGCAGGCCGAGGCACTGGCGGTGCTGGGCAACGGGACCTGGATCGGGCTGCTGGAGCGGTTCGCGATCAGCGGCACGCTGCTGGCCGGCTACCCGCAGGGCGTCGCCGTCGTGGTGGCGGTCAAGGCGCTGGGCCGGCTGCCCGAGCTGCGCGAGCACCCCGTGGCCGGCGAGCGCTTCGTCGTGGGCAGCCTGGCGTCGCTGGTGTGGGCAGGGTCGCTCGGGATGGCGGGGCAGGCGCTGCTGGTGTCCCTGTAG	MDVWWTVGIWVATLALSVGLGAWLVPLVLRHAESRTAAQAQAEALAVLGNGTWIGLLERFAISGTLLAGYPQGVAVVVAVKALGRLPELREHPVAGERFVVGSLASLVWAGSLGMAGQALLVSL				NA	NA	NA	NA	NA
AK001_02061	681			hypothetical protein	ATGATCGTCCTGACCGTCGACCAGCGCGACAGCACCTCGCGCGGCGACCTGGTGCCGCAGGTGCTCGAGCTGCTCGGCGACCGCACGACCGACGACGGCCGCCCGCGGGCCGGGGTCCGGGTCGCGTTCGACCGCACGGTCGGCGACGAGGTCCAGGGGGTGCTCGACGGCGACGACGGGGCGGCCCTGGCGGTGGCCGTCGTGGCCGACCTCCTGCGCGAGGGAGGCTGGTCGGTCGGCGTCGGGGTCGGCGTCGTGCACGAACCGCTGCCCGCCGCGTCGCGGGCGGCCTCCGGACCTGCCTTCGTCCGGGCGCGCGAGGCCGTCGAGGACGCCAAGCGTCGCGGGCACGTCGTCCCGGTCGCCGTCGTGGGGACGCCGGAGGAGCCGGGGGCCACCATCGCCGCGGACGCCCAGGCGCTGCTGCGGCTGCTGGGTGCGGTCGCGGCGCGTCGGTCCGCGGCCGGCTGGGAGGCCGTCGATACGCTCGGGCGGCACGAGGCGTCGGCGGCGCCGCAGCGGGAGACGGCGGAGGCGTTGGGCGTGAGCGAGCAAGCGGTCAGCCAGCGGTTGCGCACCGCTCTGTGGGCCGAGGAGCAGGCGGTCCGCCCGCTGGCGGCCCGGCTGCTCCGGGCGGCCGACGCGGCGGCGGGCGCCGCCGACGGCGCGGGGGAGGACTGA	MIVLTVDQRDSTSRGDLVPQVLELLGDRTTDDGRPRAGVRVAFDRTVGDEVQGVLDGDDGAALAVAVVADLLREGGWSVGVGVGVVHEPLPAASRAASGPAFVRAREAVEDAKRRGHVVPVAVVGTPEEPGATIAADAQALLRLLGAVAARRSAAGWEAVDTLGRHEASAAPQRETAEALGVSEQAVSQRLRTALWAEEQAVRPLAARLLRAADAAAGAADGAGED				NA	NA	NA	NA	NA
AK001_02062	456	yqhS	COG0757	3-dehydroquinate dehydratase	ATGACTGACACGCCGCACGTGATGATCCTCAACGGCCCCAACCTCGGACGGCTCGGCGTCCGCGAGCCGGAGATCTACGGCCACGCGTCGATGGCGGACCTGCGCGTCGAGTCCGACGGGTGGGGGACCCGGCTGGGCCTGGACGTCGAGGTGCGGCAGACCGACGACGAGGCGGAGCTCGTGCGGTGGCTGCACGAGGCGGTGGACACGCGGTCGCACGTGGTGCTGAACCCGGCGGCCTTCACGCACTACAGCTACGCGCTGCGCGACGCGGCGGCCCAGGTGACGACGTCGTCGCTGCTGCTGGTGGAGGTGCACCTGTCGAACCCGGCCGCCCGGGAGTCGTTCCGGCACTACTCCGTCGTCGCCGGGATCGCGACGGGCACGGTGGCGGGGTTCGGCTTCGACTCCTACCGCCTGGCCCTCGAAGCCGTAGCGCACAAGCTCTCACGCTAG	MTDTPHVMILNGPNLGRLGVREPEIYGHASMADLRVESDGWGTRLGLDVEVRQTDDEAELVRWLHEAVDTRSHVVLNPAAFTHYSYALRDAAAQVTTSSLLLVEVHLSNPAARESFRHYSVVAGIATGTVAGFGFDSYRLALEAVAHKLSR	PGPT0012905_1025	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786	NA	NA
AK001_02063	435			hypothetical protein	GTGCCGGCCCTCGACGCCGAGACCTGCCGTCGCCGGTTCGCGGCGGAGCGTCGCGCCGTCCTGGCCACGTCGGCCGGGGACGTCCCGCACCTGGTGCCGGTGACCTTCGCGCTCGCGCCCGGACTCGACGGCGATCCCGAGCGGGTCGACGTCGTCACGGCCGTGGACCACAAGCCGAAGCGGTCGGCCGACCTGCGCCGGCTGCGCAACCTGCGGGCCAACCCGCGCGCGGCGATGCTCGTCGACCGCTACGACGACGACTGGGACCGGCTGTGGTGGGTCCGGGTCGACGGCGCCGTGCGCCTGGACGGCACCGGTCGCGAGGAGGCGCTCGACGCGCTGGCGCAGCGGTACGCCCCCTACCGCCGGTGGCGACCCGAGGGCCCGGTGGTCCGGCTCGTGCCGACGCGGTGGAGCGGCTGGTCGGCACGGTGA	MPALDAETCRRRFAAERRAVLATSAGDVPHLVPVTFALAPGLDGDPERVDVVTAVDHKPKRSADLRRLRNLRANPRAAMLVDRYDDDWDRLWWVRVDGAVRLDGTGREEALDALAQRYAPYRRWRPEGPVVRLVPTRWSGWSAR				NA	NA	NA	NA	NA
AK001_02064	375			hypothetical protein	ATGGACGCGGTGGGAGTGGTCAGCGCGTACGTGGAGTCGTTGGACGGCCCGGACCGGGAGGCGGTCGCCCACGTCCTGGACCGTGCCCGCCGGACGGTCCCGGAGGCCACCGAGGGCAGGAGCTACGGCATGCCCGCCCTGCGGTACCGCGACAGCCCGCTGCTCAGCGTCGTCGCCACGGCTCGGCACGTCGGGGTGTACCCGTTCAGCCCGGCGGTGGTCGCGGCGCTCGCGGACCGGCTCGAGGGCTTCCGGGTCACCAAGGGATCCGTCGGGTTCCGCCCCGGGCATCCGCTGCCCGACGACGTCGTGGAGCGCCTCGTGGTGCTGCGTCGCGAGGAGATCGACGCGATGCACGCCGGGAGACCGGGCTAG	MDAVGVVSAYVESLDGPDREAVAHVLDRARRTVPEATEGRSYGMPALRYRDSPLLSVVATARHVGVYPFSPAVVAALADRLEGFRVTKGSVGFRPGHPLPDDVVERLVVLRREEIDAMHAGRPG				NA	NA	NA	NA	NA
AK001_02065	1377			hypothetical protein	ATGAGCGACCCCACACCGGCGGCACCCTCGGGCCACGACGCCTCGGCCGCGTTCGCCGCGCTGCCCCCCACCGAGCGCCGCCGCCGGGTGGTGGCCTGGGCGCTGTGGGACTGGGCGACCCAGCCGTTCAACACGGTGATCGTCACCTTCGTGTTCACGGCCCTGTACCTGACCAGCGACGCCTTCCTGGACCCCGACGCCGCGGCGCTGGCCGCCGACGACCCGGCCCGCGACAGCGCCCTGGCCACCCTGTCCAGCGGGCTGGGCGCCTGGATCACCGTCGGGGGAGTGCTCGTCGCACTCCTCGCCCCGGTCCTCGGCCGTCGCGCGGACGTCACCGGACGCCGCAAGGCCTGGCTCGCCGGCGGCACCGTGGTGCTCGTCGCGGCCATGTTCGGTCTCGGCTTCGTGCGGGCCGACCCGGCGTACTTCGCGCTCGGGGCCGCGCTGGTGTCGCTGGGCAGCGTGGCGGGGGAGATCGCCGGGGTGAACTACAACGCCATGCTCACCCAGGTCTCCACCCGCGACACCGTCGGTCGGGTCTCCGGGCTCGGCTGGGGACTGGGGTACGTGGGCGGCATCGTCGCGCTGGTGCTGGTCGTCGTGGCCGACGGCGCCGACTTCTTCGGCATGGACACCTCCGACGGCTGGGGCTACCGCGCCATCGCCCTCGGGTGCGGCCTGTGGGCCGTGGCCTTCGCCTGGCCGTTGTTCCGTCGCGTGCCGGAGGCGCCCGCCGCCGCCGACCGGCCGCGGGTGGGGTTCTTCGCCGGGTACGTCGAGCTGTGGCGCGACGTCGTCGACCTGTGGCGGCACGCCCGCACCACCTTCTGGTTCCTGCTGGCCAGCGCCGTCTACCGCGACGGGCTCGCCGGGGTGTTCACGTTCGGCGCGATCGTCGCCGCCGTCTCCTACGGGTTCGACGACACCGAGGTCATCGTCTTCGGCATCGCCGCGAACCTCATCGCCGGGGTGAGCACCATCGTCGCCGGGCTGTTCGACGACCGGCTCGGGCCGCGGACCGTCATCCTGTGGTCGCTGGCGGCCCTGGTGCTGTGCGGCACCGTCATCGTGGCGCTCTACCCCCTGGGCACCGGCGTGTTCTGGGTCGCCGGCCTGGCGCTGACCGCGTTCGTCGGACCGGCCCAGTCCGCCTCCCGGTCCTTCCTGGCACGCGTCACCCCGGCGGGCCGCGAGTCCGAGGTGTTCGGCCTGTACGCCACCACCGGGCGCGCCGTCTCCTTCCTCACCCCGGCGCTGTGGACCGCCGTGATCGCCCTGACCGGCGCCACCCTCTGGGGCACGCTGGCGATCGTCGCCGTGCTCCTGGCCGGGCTCGTGCTCATGCTCGTGGTCACCGACCCCGCCGAGCGCTGA	MSDPTPAAPSGHDASAAFAALPPTERRRRVVAWALWDWATQPFNTVIVTFVFTALYLTSDAFLDPDAAALAADDPARDSALATLSSGLGAWITVGGVLVALLAPVLGRRADVTGRRKAWLAGGTVVLVAAMFGLGFVRADPAYFALGAALVSLGSVAGEIAGVNYNAMLTQVSTRDTVGRVSGLGWGLGYVGGIVALVLVVVADGADFFGMDTSDGWGYRAIALGCGLWAVAFAWPLFRRVPEAPAAADRPRVGFFAGYVELWRDVVDLWRHARTTFWFLLASAVYRDGLAGVFTFGAIVAAVSYGFDDTEVIVFGIAANLIAGVSTIVAGLFDDRLGPRTVILWSLAALVLCGTVIVALYPLGTGVFWVAGLALTAFVGPAQSASRSFLARVTPAGRESEVFGLYATTGRAVSFLTPALWTAVIALTGATLWGTLAIVAVLLAGLVLMLVVTDPAER				NA	NA	NA	NA	NA
AK001_02066	876			hypothetical protein	GTGCGATCTCCCCTGCGCAGTCTCCAGCGCCGAGCCGGCCGCCTGCTGTTCGAACAGGTCTCCGGCGGCAGCGCCGGCCGCGACGCGCGCGAACGCATCCACACCAGCCCCGGGCCACGCTGGTTCGCCGACGACTCCGCCGTCGCCCGCGTGCACGGCGACGCCTCGATGTTCGTCGGCGGGGTCCGCGCGCTGCTGCTGCAGTCCCTGCACCCCCTGGCCATGGCCGCCGTCGCCGACCACTCCGGCTACCGCGGCGACCCGTGGGGACGCCTCGGGCGCACCAGCACCTTCCTCGCCGAGACCACCTTCGCCACCGCCGACGACGCCCAGCAGGCCGTCGACGTCGTCCGCGCCGTGCACGCCCGCGTCCGCGGCGTCACCCCCGACGGCCGCCCCTACGCCGCCGACGACCCGTGGCTGCTGCGCTGGGTGCACGTCGCCGAGGTCGACAGCTTCCTCGCCGCCCACCAGCGCTACGGACGCCGCCCCCTCGACCGCGCCGGCTGCGACGCCTACCTCGCCCAGACCGCGACCGTCGCCGACCGGCTCGGCGCCGAGCGGCCGCCGCGCACCCTCGCCGCGCTGCGTGCCGCCCTCGGCGAGTACCGCGACGAGCTCGGGGCCACCGACGCCTCCCGCGACGTCGCCCGCTTCCTGCTGTCCGAGCCGCCTCTGCCGCGCCTCGCCCGCGCCCCCTACGCCCTGCTCGGTGCCGCCTCGTACGCCTCGATGCCGCGCTGGGCGCAGGAGCTGACGCCCGCCCCCTGGCCGCTGCACGGCGAACCCGCGCTCGTGCGTGCCGGCGGGCACGTGGCCACCCGGGCGATCCGCTGGGCGCTCGCGGGCGACCCGCCGCCGCGCCGGCCGGCCTGA	MRSPLRSLQRRAGRLLFEQVSGGSAGRDARERIHTSPGPRWFADDSAVARVHGDASMFVGGVRALLLQSLHPLAMAAVADHSGYRGDPWGRLGRTSTFLAETTFATADDAQQAVDVVRAVHARVRGVTPDGRPYAADDPWLLRWVHVAEVDSFLAAHQRYGRRPLDRAGCDAYLAQTATVADRLGAERPPRTLAALRAALGEYRDELGATDASRDVARFLLSEPPLPRLARAPYALLGAASYASMPRWAQELTPAPWPLHGEPALVRAGGHVATRAIRWALAGDPPPRRPA				NA	NA	NA	NA	NA
AK001_02067	945			hypothetical protein	GTGGCGACGACCTGGCGGCGCGACGACCTGCTGGGCGCGCCGTTCGAGAGCACGGCGCTCGGCGCCGCGACGCTGGTGCGCTCGGCGTCCGCCCCGGCGCGTCCGCGGGCGGTGGTGCTGCACGTGCACGGCTACAACGACTACTTCTTCCAGGACCACTTCGCCCGCGCCCTCGAGGAGCACGGGCACGCCCTGGTGGCCGTGGACCTGCCGGGGGCGGGACGCTCGCTCGTCGAGGGCCGGGTCCCGCACTTCGTGACGGACCTGCGCGAGCAGGGACCCGCGCTGACGGCGGCGGTCCGCGCCGCGCGCGAGCTGGCCGGCGGCGCCCCGGTGGTGCTGCACGCCCACTCCACGGGCGGGCTGCTGGCCGCGCTGTGGGCGCACGCGCACCGCGGCCGCGACGAGATCGACGCCCTGGCGCTGGACAGCCCGTTCCTGGACCTGCACGCCTCGTGGCTGCAGCGCACCCTGGGCACCTGGGTGCTCGACGCCGTCGGGCCGTGGTCGCCGACGGCGGTGCTGTCGGCGGCGCCGTCGGTGTACGCCACCCACCAGCTCGCGGCGCACGGCGGCCGGTGGGCGTTCGACGTCCGGCTGAAGAAGCCGGGCGGCGAGCCGGTGCGGGCGGGCTGGCTGCGGGCGGTGCGCCGCGGTCAGGCCCGCGTGGCCCGCGGGCTGGCGGTCGACGTGCCGGTGCTCGTGGCCCGCTCGGACCGGTCGGGACCGGACTCCGTGGCCAACCCGGACCTCGACGTCCAGGACACGGTCCTGGACGTCGCCCAGATCGCCCGGCTGGCCCCGCGGCTGGGCGACCGTATCGACATGCTGACGGTGCCGGGCGGCGTGCACGACCTGCTGCTGTCCCGCGAGGAGCCCCGGCTGCGCTACCTCACCGGTCTGATGGGCTGGATCGACGACGTCGTGGCAGGGTCGGGGGCATGA	MATTWRRDDLLGAPFESTALGAATLVRSASAPARPRAVVLHVHGYNDYFFQDHFARALEEHGHALVAVDLPGAGRSLVEGRVPHFVTDLREQGPALTAAVRAARELAGGAPVVLHAHSTGGLLAALWAHAHRGRDEIDALALDSPFLDLHASWLQRTLGTWVLDAVGPWSPTAVLSAAPSVYATHQLAAHGGRWAFDVRLKKPGGEPVRAGWLRAVRRGQARVARGLAVDVPVLVARSDRSGPDSVANPDLDVQDTVLDVAQIARLAPRLGDRIDMLTVPGGVHDLLLSREEPRLRYLTGLMGWIDDVVAGSGA				NA	NA	NA	NA	NA
AK001_02068	807			hypothetical protein	ATGACCCGCAGCCCCAGCACGCACCCGTACTTCGATCCGCACCCCGGATCCCCCGGCCGGGGGGTCGTCGCGCTGGCGCACCGGGGCTTCTCCCACGAGCAGCAGAACCTCGAGAACTCGATGGCGGCGTTCGCCGCGGCCGTCGACCTCGGCTACGGCTACGTCGAGACCGACGCCCACGGCACCCGCGACGGTGTGGCGGTGGCCCTGCACGACTCGTCCCTGGACCGCACGACGGACAGCTCCGGCGAGGTCGCCGACCTGACCTGGCAGCAGGTCTCCCGGGCCCGCATCGGTGGCGAGGAGCCGGTCCCCCGGCTGGACGACCTGCTGGGCACCTGGCCGGACCTGCGCGTCAACATCGACGTCAAGGGCGACTCGAGCATCGAGCCCGTGGCCGAGGCGATCGAGCGCACCGCGAGCCACGAGCGGGTGTGCGTCACCTCGTTCTCCCCGGGCCGACGCCGGCGGACCCTGGCCAGGATGTCGCGGCCGGTGGCCACCAGCGCGGGCACGACCGAGGTGCTCGGGTTCCTCGCGGGAGCCCGGCTGCGCGTCCCCGGCCTGGTGCAGCGGGCGCTGCGCGACGTCGCCGCCCTCCAGGTGCCGCCCGCCCAGGGCGGCGTGACGGTCGTGGACGCCGCCACCGTCGCCGCGGCGCACCGGGCGGGCCGGCACGTGCACGTGTGGACGATCGACGAGCCGGACGAGATGCGCCGGCTGCTCGATCTCAACGTCGACGGGATCGTCACCGACCGTGCCGACCTGCTGCGCGACGTGCTGCGCGAGCGCGGCCTGTGGCCCTGA	MTRSPSTHPYFDPHPGSPGRGVVALAHRGFSHEQQNLENSMAAFAAAVDLGYGYVETDAHGTRDGVAVALHDSSLDRTTDSSGEVADLTWQQVSRARIGGEEPVPRLDDLLGTWPDLRVNIDVKGDSSIEPVAEAIERTASHERVCVTSFSPGRRRRTLARMSRPVATSAGTTEVLGFLAGARLRVPGLVQRALRDVAALQVPPAQGGVTVVDAATVAAAHRAGRHVHVWTIDEPDEMRRLLDLNVDGIVTDRADLLRDVLRERGLWP	PGPT0018470_5377	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126	NA	NA
AK001_02069	1143	aroB	COG0337	3-dehydroquinate synthase	ATGACGGTCCGCGTGACCGTGTCCGGCGCCCAGCCCTACGACGTCGTCGTGGGCCGCCACCTGCTCGGGGAGATCCCCACGCTGCTCGGCGAGGGGGTGCGCCGCGTGCTGGTGATGCACCCGGCGTCCCTGCAGGCCACCGGCGACGCCGTGCGCGAGGACCTCGCGGCGCAGGGGTACGAGGCGTTCGCCGCCGAGCTGCCGGACGCCGAGGAGCAGAAGACCGCCCAGGTCGCGGCGTTCTGCTGGCAGGTCATGGGCCAGGCGGACTTCACGCGCTCCGACGCGATCGTGGCCGTCGGCGGCGGCGCGACCACGGACCTGGCCGGGTTCGTGGCGGCGACCTGGCTGCGCGGCATCAAGGTCGTGCACGTGCCCACCACGCTGCTGGCCATGGTCGACGCGGCCGTCGGCGGCAAGACCGGCATCAACACCGCCGAGGGCAAGAACCTCGTCGGCGCGTTCCACCCGCCGGCCGGGGTGCTGTGCGACCTGGCGGCGCTGGAGTCGCTGGAGCGCTGGGACCTCGTGGCCGGCATGGCCGAGGTGATCAAGACGGGCTTCATCGCCGACGAGCGCATCCTCGAGCTCGTCGAGGAGCACGCCGACGCGATCCGCGAGTGGGCCGGCCCGGACGCCACCGAGGAGACCTGGGCGGTGCTGACCGAGCTCATCGAGCGGTCGGTGCGCGTCAAGGCGCGCGTGGTGGGCGAGGACCTCACCGAGCAGGGCCTGCGCGAGATCCTCAACTACGGGCACACCCTCGGGCACGCGGTCGAGCTCGTCGAGCGCTACCAGCTGCGCCACGGCGCGGCCGTGGCCGTGGGCATGGTCTTCGCCGCCGAGCTGGGGCGCCTCGGCGGCAAGCTGGACGATGCCGTCGTGGACCGCCACCGGGAGATCCTCACCGCCGTCGGGCTGCCGACCACCTACCGCGGGGACCGGTGGGACCAGCTGCTGGCCGCGATGCGCCGCGACAAGAAGGCGCGCGGCGACCTGCTGCGCTTCGTCGTCCTGGACGACGTCGCCAAGCCGGTGCGGCTCGAGGGCCCGGACCCCACGGTGCTGGCCGCCGCCTACGCGGAGATCTCCAAGGAGCCGCCGTCGGGCAGCCCCGGGGTCACCGTCCAGCTCGGCGCCTGA	MTVRVTVSGAQPYDVVVGRHLLGEIPTLLGEGVRRVLVMHPASLQATGDAVREDLAAQGYEAFAAELPDAEEQKTAQVAAFCWQVMGQADFTRSDAIVAVGGGATTDLAGFVAATWLRGIKVVHVPTTLLAMVDAAVGGKTGINTAEGKNLVGAFHPPAGVLCDLAALESLERWDLVAGMAEVIKTGFIADERILELVEEHADAIREWAGPDATEETWAVLTELIERSVRVKARVVGEDLTEQGLREILNYGHTLGHAVELVERYQLRHGAAVAVGMVFAAELGRLGGKLDDAVVDRHREILTAVGLPTTYRGDRWDQLLAAMRRDKKARGDLLRFVVLDDVAKPVRLEGPDPTVLAAAYAEISKEPPSGSPGVTVQLGA	PGPT0012865_482	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATES	BIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012865-aroA-K01735	NA	NA
AK001_02070	528	aroK	COG0703	Shikimate kinase	ATGACGGCGACACGACCGCGGGTGGTGCTCACGGGCCCGCCCGGCAGCGGCAAGACCACCGTCGGCACCCTGCTGGCCCAGCGCCTCGGCGTGGCGTTCCGGGACACCGACGCCGACGTCGAGGCGACCGCGGGCAAGCCGGTCGCCGACATCTTCGTCGACGACGGCGAGCCGCACTTCCGCGACCTGGAGCGCGAGGCCGTCACCACGGCCCTGGCCACCCACGACGGCGTGCTCGCCCTCGGCGGCGGTGCCGTCATGGACACCCACACCCAGAGCGCGCTGGCCGGGTACGCCGCCGACGGCGGCACGGTCGTCTTCCTCGACGTGTCCCTGGCCCAGGCCGCGCCCCGTGTCGGGTTCAACCGCTCCCGGCCGCTGCTGGTCGGCAACCCGCGCGCCCGGTGGGCCGAGCTGATGCAGGCCCGCCGCCCCACGTACGAACGGCTGGCCACCGTGGCGGTGCTGTCCGACGACCGCACCGCCGCCGAGGTCGCCGACGAGATCCTTCAGGAGGTCCGCTCATGA	MTATRPRVVLTGPPGSGKTTVGTLLAQRLGVAFRDTDADVEATAGKPVADIFVDDGEPHFRDLEREAVTTALATHDGVLALGGGAVMDTHTQSALAGYAADGGTVVFLDVSLAQAAPRVGFNRSRPLLVGNPRARWAELMQARRPTYERLATVAVLSDDRTAAEVADEILQEVRS	PGPT0012900_2225	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012900-aroL|aroK-K00891	NA	NA
AK001_02071	1218	aroC		Chorismate synthase	ATGCTGCGCTGGTTGACCTCGGGAGAGTCGCACGGTCAGGCCCTGGTGGGCCTCATGGAGGGCCTGCCCGCCGGGGTGGAGATCGTCACCTCGGACATCCAGGACGCCCTGGCCCGGCGTCGTCTCGGCTACGGCCGCGGCGCCCGGATGAAGTTCGAGAAGGACGCGGTCCGCGTCCTGGGCGGGCTGCGCCACGGCGTGACCCAGGGCGGTCCGCTGTCGATCGAGATCGCGAACACCGAGTGGCCCAAGTGGGTGGACGTGATGTCCGCCGACCCGGTGCCCCGGGAGGCGCTGCTGCGCGACGCCGGCACCGGCGACGAGCGCGAGATCGCCCGCAACCGCCCGCTGACGCGGCCCCGTCCCGGGCACGCGGACCTGGTGGGCATGCGCAAGTACGGCTTCGACGACGCCCGGCCGGTCCTGGAGCGGGCCAGCGCCCGCGAGACCGCCACGCGCGTGGCGCTCGGCACCGCCGCGGCGAAGTTCCTCGAGCAGGCGCTCGGCATCCGGCTGGTCAGCCACGTCACCGCGATCGGCCCGGTCGAGGTCCCCGAGGACGCCGACCTGCCCACGCCCGACGACGTCGCCGCCCTGGACGCGGACCCGGTGCGGTGCTTCCACGGGCCCACCAGCGAGGCGATGGTGGCCGAGATCGACGCCTGCCGCAAGGACGGCGACACCCTCGGCGGCGTCGTGGAGGTGCTGGCCTACGACGTGCCGACCGGGCTGGGCACCTACACCCACTCCGACCGCCGGCTGGACGCGCGCCTCGCCGGTGCCCTCATGGGTATCCAGGCGATCAAGGGCGTCGGGGTCGGCGACGGCTTCCGCACCGCGCAGCGCCGGGGCTCGGCCGCGCACGACGAGATCGCCCGGGACGCCGAGGGCCGCATCGTGCGCCGCTCCAACCGGGCCGGCGGGATCGAGGGCGGCATGACCAACGGCGAGGTGCTGCGGGTCTCGGCCGCCATGAAGCCGATCTCCACCGTGCCGCGCGCCCTGGCGACCGTGGACGTCGCCACCGGCGAGGAGGTCACCGCCCACCACCAGCGCTCGGACGTGTGCGCGGTGCCGCCGGCCGCCGTCGTCGCCGAGGCGATGGTCGCCCTGGAGCTGGCGCAGGTCGTCCTGGAGAAGTTCGGCGGCGACTCGGTGGCCGAGGTGCGCCGCAACGCCGAGGCCTACCTCGCGTCGATCCCCGAGCTGCTGCGATGA	MLRWLTSGESHGQALVGLMEGLPAGVEIVTSDIQDALARRRLGYGRGARMKFEKDAVRVLGGLRHGVTQGGPLSIEIANTEWPKWVDVMSADPVPREALLRDAGTGDEREIARNRPLTRPRPGHADLVGMRKYGFDDARPVLERASARETATRVALGTAAAKFLEQALGIRLVSHVTAIGPVEVPEDADLPTPDDVAALDADPVRCFHGPTSEAMVAEIDACRKDGDTLGGVVEVLAYDVPTGLGTYTHSDRRLDARLAGALMGIQAIKGVGVGDGFRTAQRRGSAAHDEIARDAEGRIVRRSNRAGGIEGGMTNGEVLRVSAAMKPISTVPRALATVDVATGEEVTAHHQRSDVCAVPPAAVVAEAMVALELAQVVLEKFGGDSVAEVRRNAEAYLASIPELLR	PGPT0012875_476	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736	NA	NA
AK001_02072	882	aroE	COG0169	Shikimate dehydrogenase (NADP(+))	ATGCCCGCGACCCGTCGCGCGGCCGTCCTGGGGCACCCGGTCGCGCACTCGCTCTCGCCCACCCTGCACGGCGCCGCCTACGAGGCGCTCGGCCTGGAAGGGTGGCGGTACACGGCGATCGACACCACCGTCGAGCAGCTGCCCGACCTCGTGCGCGGCCTGGACCTCTCCTGGGCGGGCCTGAGCGTGACGATGCCGCTCAAGCACGCGGTCATGGAGCTGGTCGACCACGTCGACCCGCTGGCCCGCGCCGTCGGTGCCGTGAACACGGTGCTCGTGTCGCCCGCGCAGCGCGGGGTGAGCCTGACGGGCACCAACACCGACGTGCACGGACTGGTCCAGGCGATCCGCGAGGGCCTCGCCGAGCGCCACGGCACACCGGAGGTCCCGGTGCAGCGCGCCGTCGTGCTCGGCGGGGGAGCGACCGCCGCCTCGACGCTGGCCGCCCTCGGCGAGCTCGGTTGCACCGCGCCGCGCGTGCTCGCGCGCAACCTGGCCCGCACGGCCACGCTGCAGGAGGCGGCGGCGCGCATGGGCGTCACGCCCCGCTACGAGGTGCTCGACGCCGGCACGGCCCCCGAGGTGCTCGCCGGCGCGGACGTGGTGGTCTCGACCATGCCGGCCTACGCCGCCGACCCCGTGGCCGCGTCGCTGCGCTCCCAGGGCGTGCGCGCCGGCGGGGTGCTGCTCGACGCCGTCTACGACCCGCGGCCCACCGCGCTGTCCCAGGCCTGGGCCGCAGCCGGCGGCACCGTCGTCGGTGGCGAGCGGATGCTGCTGCACCAGGCCGTGGAGCAGGTGCGCCTGATGACCGGCCGACCCGGACCGGTGGACGCCATGGACGCCGCGCTGCAGCAGGCCCTCGGCGCCGAGGCGGCCTGA	MPATRRAAVLGHPVAHSLSPTLHGAAYEALGLEGWRYTAIDTTVEQLPDLVRGLDLSWAGLSVTMPLKHAVMELVDHVDPLARAVGAVNTVLVSPAQRGVSLTGTNTDVHGLVQAIREGLAERHGTPEVPVQRAVVLGGGATAASTLAALGELGCTAPRVLARNLARTATLQEAAARMGVTPRYEVLDAGTAPEVLAGADVVVSTMPAYAADPVAASLRSQGVRAGGVLLDAVYDPRPTALSQAWAAAGGTVVGGERMLLHQAVEQVRLMTGRPGPVDAMDAALQQALGAEAA	PGPT0012890_764	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATES	BIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014	NA	NA
AK001_02073	1158	mltG		Endolytic murein transglycosylase	GTGACGGAACTCTTCGAGCCCACCACCGCCCAGCGGCAGGCACCGCCGCCGTCACCGTCGCGGGCGCGTTCGGCGGCGAGCAAGCGGGCCGCGCGCAAGCGTCGACGGCAGCGCCAGCGCCGCACCGCGATCATCCTCGTCGTGCTGCTCGGCGTGCTCGGCGTCGGCGGCTACCTGCTGATCGACCGGGTCGGCGGCATGCTGTCCGGCTTCGAGCTCTTCGACTCCGCGCCCGAGGACTACGCCGGGCCGGGGGTGGAGCCCGTGCAGGTCGAGATCCCCGAGGGCGCGACGGGGTCGATGATGGGGTCGGTCCTCGAGGAGGCCGACGTCGTGGCCAGCGTGGGCGCCTTCAACCAGGCCTTCGAGTCCACGCCGGGCGCCTCGGGCATCCAGCCGGGCACCTACGAGCTGTACACCCAGATGAGCGCCGCGGACGCGGTGCAGTCGCTGGTCGCGAACGAGAAGGTCGAGACCAACGTGACGATCCCGGAGGGGTACACGGTCGAGCAGATCATCGACAAGGTCGCCTCGGTCACGCCGATCACGCGGGACGAGATGGAGGCCGCGCTGGGCACCCCGAAGGAGATCGGGCTGCCGGGCCAGGCCGACGGCGACGCCGAGGGCTGGCTGTTCCCGAAGACCTACGCGGTCCAGCCCGGCGACACGGCCGAGGACCTGCTGTCGACGATGATCGACCAGACCAAGGCCGAGCTCGACTCGCTCGGCGTGGGCAACGGCGAACGCCAGGACGTCCTGATCAAGGCGTCCCTGGTCGAGCGCGAGGCGCGGGCGGCCGAGGACCGGCCGAGGATGGCCCGGGCCATCGAGAACCGGCTCGACGTCGACCAGCGCCTGCAGATCGACGCCGCGGTGGCCTACGGGCTGGGGATCCCCGGCACGGAGCTGACGCGGGACGACACCAACGACCCGAGCAACCCCTACAACACCTACCAGCACGCCGGTCTGCCGCCGGGGCCGATCGCCAACCCGGGAGCGGCCTCGGTCGAGGCGGTCGTCGACCCCGCCGACGGCGACTGGATCTTCTGGACGACGGTGAACCTCGACACCGGCGAGACCAAGTTCGCCGAGACGTTCGACGAGCACCAGCAGAACGTCGCCGAGCTGCGAGCCTGGCAGGAGGAGAACGGCTACTGA	MTELFEPTTAQRQAPPPSPSRARSAASKRAARKRRRQRQRRTAIILVVLLGVLGVGGYLLIDRVGGMLSGFELFDSAPEDYAGPGVEPVQVEIPEGATGSMMGSVLEEADVVASVGAFNQAFESTPGASGIQPGTYELYTQMSAADAVQSLVANEKVETNVTIPEGYTVEQIIDKVASVTPITRDEMEAALGTPKEIGLPGQADGDAEGWLFPKTYAVQPGDTAEDLLSTMIDQTKAELDSLGVGNGERQDVLIKASLVEREARAAEDRPRMARAIENRLDVDQRLQIDAAVAYGLGIPGTELTRDDTNDPSNPYNTYQHAGLPPGPIANPGAASVEAVVDPADGDWIFWTTVNLDTGETKFAETFDEHQQNVAELRAWQEENGY				NA	NA	NA	NA	NA
AK001_02074	522		COG0816	Putative pre-16S rRNA nuclease	GTGCCTGAGGCCCTTCCTCGGGGCGCCCGCCTCGGCGTGGACGTCGGCAAGGCCCGCATCGGGCTGGCCGGGTCCGACCCGGACGGGCTGGTCGCCACGCCCGTCGAGACGGTGCCGCGGGTGCTCGCCGTCCCCACGGACGACGGCGGGGCACCCGCGGTGACGGCCGACGTCGCGCGGATCGCCGCCGAGGTCGACGACCGGCTCGCGGCGGTCGTCTACGTCGGCCTGCCGCGCCACCTGTCGGGGCACGAGGGCGCCGCGACCGCGGACGCCCGGGCGTTCGCGGACCGCCTGGCCGCCCGGGTCGCCCCGGTGCCGGTCCGGCTCGTCGACGAACGGATGACGACGGTGACGGCCCACGCCCAGCTCCGCTCGGCGGGCCGGAAGACGGCGAAGCACCGACCTGTCATCGACCAGGCTGCAGCCGTTATCATTCTGCAACACGCTCTCGAGGCGGAACGGGCCGCGGGGGACCGGGTCGGCGAACTCGTCGAGCGAGCGTGGCATCATGACCAGTGA	MPEALPRGARLGVDVGKARIGLAGSDPDGLVATPVETVPRVLAVPTDDGGAPAVTADVARIAAEVDDRLAAVVYVGLPRHLSGHEGAATADARAFADRLAARVAPVPVRLVDERMTTVTAHAQLRSAGRKTAKHRPVIDQAAAVIILQHALEAERAAGDRVGELVERAWHHDQ				NA	NA	NA	NA	NA
AK001_02075	2697	alaS	COG0013	Alanine--tRNA ligase	ATGCGCACCGCCGACATCCGCCAGCGTTGGCTGGACTACTTCCGCTCGAAGGACCACGAGATCGTCCCGAGCGTCCCGCTGGTCTCGCCGGACCCGTCGATCCTGTTCACGATCGCCGGCATGGTGCCGTTCATCCCGTACATCCTGGGCACCGAGGCCGCGCCCTGGCCGCGCGCCGCCAGCGTGCAGAAGTGCATCCGCACCAACGACATCGAGAACGTCGGCCGCACCACCCGGCACGGCACGTTCTTCCAGATGAACGGCAACTTCTCGTTCGGCGACTACTTCAAGCGCGAGGCCATCGACTTCGCGTGGGAGCTGCTGACGTCCGAGCAGTCCGCCGGCGGTTACGGCTTCGACGGCGACCGCCTCTGGGTCACCATCTGGGAGCAGGACACCGAGGCCTTCGACGCGCTGACGAACGGCATCGGCCTCGACCCGAAGCACGTCGTGCGGCTGCCGCGCGAGGAGAACTTCTGGGACACGGGTCAGCCCGGCCCCGCGGGCCCCTGCGCGGAGTGGCACTACGACCGCGGCCCGGCCTACGGACCCGAGGCCGAGGGCGGCACCGTGGACCCCGGCGGCGACCGCTACCTGGAGATCTGGAACCTCGTCTTCGACGAGTTCGTCCGCGGCGAGGGCCAGGGCAAGAACTACCCGCTGCTCGGCGAGCTGGACCACAAGAGCATCGACACCGGGGCCGGCCTCGAGCGGATCGCCTACCTGCTCCAGGGCAAGGAGAACCTCTACGAGATCGACGAGGTGTACCCCGTCATCGCCACCGTGGAGGAGATGACCGGGAAGCGCTACGGCGCGAACCTCGAGGACGACGTGCGCATGCGCGTCGTCGCCGACCACGTGCGCTCGGCCCTGATGGTCATCGGGGACGGCGTCCGCCCGGCCAACGAGGGGCGCGGCTACGTGCTGCGCCGTCTGATCCGCCGCGCCGTGCGCGCCGTGCGGCTCCTCGGCGTGGACGAGGTCGCCCTGCCGGCGCTGCTGCCGGTGTCCAAGGAAGCCATGAAGGCGTCGTACCCGGAGCTGGAGACGGACTTCGGCCGCATCGCCGACGTCGCCTACGGCGAGGAGGACGCCTTCCGCCGCACGCTCGCCTCCGGGACCACGATCCTGGACACGGCGGTGCAGCGGGCGAAGAAGGGCTCCGACGGCGGGCCGGTGGTCCTCGGCGGCGACGAGGCCTTCCAGCTGCACGACACCTACGGCTTCCCGATCGACCTCACCCTCGAGATGGCCGCCGAGCAGGGCGTCCAGGTCGACGAGAAGGCCTTCCGCGACCTCATGGCCGAGCAGAAGCAGCGGGCCCGGGCCGACGCGCTGGCGAAGAAGACCGGGCACGGGGACCTGCGCGCCTACGAGACGCTGGCCCAGCAGCTCACGGCGCCGGTGGAGTTCCTCGGGTACGGCGACCACCAGGCCTCGGTGCACGTCGAGGGCCTGCTCGTCGACGGCGCGCCGGCCCCGGCGGCCACCGCCCCGGCCGACGTCGAGGTGGTCCTGGACCGCACGCCGTTCTACGCCGAGGCCGGCGGCCAGCTCGCCGACCAGGGCACCATCACCCTCGACTCCGGCGCCACGATCGAGGTCGACGACGTCCAGCGCCCGGTGGCGGGGCTGTCCGTGCACCGCGGTCGTCTCACCGAGGGCACGGTGGCGCTCGGGGACCCGGGCACGGCTGCGATCGACTCCGGCCGGCGGGTGGCGATCAGCCGAGCGCACTCGGCGACGCACATGATCCACAAGGCGCTGCACGAGATGGTCGGCGAGGACCGCACCCAGGCCGGGTCGGAGAACGCGCCGAGCCGGGTGCGGTTCGACTTCCGTTCGCCCACGGCCGTCTCGGCCGCCCAGCTCAGCGAGATCGAGGAGCGGGTCAACGAGCGGCTCACCGAGAACCTCGAGGTCACCGACGCGGTCATGTCGCTGTCGAAGGCCAAGGAGCTGGGCGCGATGGCGCTCTTCGGCGAGAAGTACGGCGAGAACGTCCGGGTCGTCTCCATCGGTGGGGAGTGGTCGCGCGAGCTGTGCGGCGGCACGCACGTCGGCGCGACCGGCGAGGTCGGTCGGGTGGCGCTGCTCGGCGAGTCCTCCATCGGTTCCGGGGTGCGCCGCGTGGACGCGCTGGTCGGCGCCGGCGCCTACGGCTTCCACGCCAAGGAGCACGCGCTGGTCGGTCAGCTCACCGGCATGCTCAACGCGCGTCCCGAGGAGCTCACGGACCGCGTCGGCTCGCTCATGAGCCGCCTGCGGGAGACCGAGAAGGAGCTCGCGACCCTGCGGCAGGGCCAGCTGCTGGCCCAGGCCGCCACGCTCGCCGCCGAGGCGCCCCGCGAGGGCGACGTGCGGGTCGTGGCGCACGACGCCGGCGAGGTCGGCTCGGCCGACGACCTGCGCACCCTCGCGCTCGACGTGCGGGGCCGGATGGGCGAGGGCGACGCCGCGGTCGTGGCCGTCGCCGGTGCGGCGAACGGCCGTCCGCTCGTCGTCGTCGCCACGAACTCCGCCGCCCGGGACGCCGGTCTGCGGGCCGGCGACTTCGTCAAGGCGGCGGCCCGGACCCTCGGTGGCGGGGGCGGCGGCAAGCCGGACCTCGCCCAGGGTGGCGGGTCGGACGTCGCGGCCGTGGCGGCCGCGCTCGAGGGCGTGCGCACCCAGGTGCGTGAGGCCGCCGGTGCCTGA	MRTADIRQRWLDYFRSKDHEIVPSVPLVSPDPSILFTIAGMVPFIPYILGTEAAPWPRAASVQKCIRTNDIENVGRTTRHGTFFQMNGNFSFGDYFKREAIDFAWELLTSEQSAGGYGFDGDRLWVTIWEQDTEAFDALTNGIGLDPKHVVRLPREENFWDTGQPGPAGPCAEWHYDRGPAYGPEAEGGTVDPGGDRYLEIWNLVFDEFVRGEGQGKNYPLLGELDHKSIDTGAGLERIAYLLQGKENLYEIDEVYPVIATVEEMTGKRYGANLEDDVRMRVVADHVRSALMVIGDGVRPANEGRGYVLRRLIRRAVRAVRLLGVDEVALPALLPVSKEAMKASYPELETDFGRIADVAYGEEDAFRRTLASGTTILDTAVQRAKKGSDGGPVVLGGDEAFQLHDTYGFPIDLTLEMAAEQGVQVDEKAFRDLMAEQKQRARADALAKKTGHGDLRAYETLAQQLTAPVEFLGYGDHQASVHVEGLLVDGAPAPAATAPADVEVVLDRTPFYAEAGGQLADQGTITLDSGATIEVDDVQRPVAGLSVHRGRLTEGTVALGDPGTAAIDSGRRVAISRAHSATHMIHKALHEMVGEDRTQAGSENAPSRVRFDFRSPTAVSAAQLSEIEERVNERLTENLEVTDAVMSLSKAKELGAMALFGEKYGENVRVVSIGGEWSRELCGGTHVGATGEVGRVALLGESSIGSGVRRVDALVGAGAYGFHAKEHALVGQLTGMLNARPEELTDRVGSLMSRLRETEKELATLRQGQLLAQAATLAAEAPREGDVRVVAHDAGEVGSADDLRTLALDVRGRMGEGDAAVVAVAGAANGRPLVVVATNSAARDAGLRAGDFVKAAARTLGGGGGGKPDLAQGGGSDVAAVAAALEGVRTQVREAAGA				NA	NA	NA	NA	NA
AK001_02076	345			hypothetical protein	GTGACCCGTCGGCTGTTCTGGGTCGGTGTCGGGGTGACGATCACCGTCGTGGTCATCCAGCGGGGGCGCCGGCTGGTCGCGCGGTACACCCCGGAGGCCGTCGCCGAGCGCGCGGGGGACCTGGGCCGTGACGTCTCCCGGCGCGCCGAGACCTTCCTCACCACGTTCCGGAGCGAGTTCGCCGCCGCCCGCGCCTCGCGCGAGGACGAGCTGGTCGCCGCGCTGCTCGCCGAGGGCCAGCCGCACCCGGACGACGTCGAGCGGACCCGCCGCGGCCGGCACGCCGCCGTCGACCCGGAGGCCGCCACCCGCGCCGACGAGGACGAGCTGGGCTACTCGTTCTGA	MTRRLFWVGVGVTITVVVIQRGRRLVARYTPEAVAERAGDLGRDVSRRAETFLTTFRSEFAAARASREDELVAALLAEGQPHPDDVERTRRGRHAAVDPEAATRADEDELGYSF				NA	NA	NA	NA	NA
AK001_02077	384			hypothetical protein	ATGTCCGTGGGGGACGTGGCGGGACTGATCGCCGCCGTCGCATTCGTGCTGCTGGTCGGCCTGCTGGCCGTGCCGCTGGTCAAGCTCGGGCGCACGCTCGACGAGACCTCGCGCAGCATCCGTGAGCTCACGGAGCACTCCGTGCCGATCCTCGACGAGGCCGCGACCACGGTGTCCTCGACGAACGACCAGCTCGTCAAGGTCGACACCATCACCACCGCCGCGGCCCAGGTCAGCGAGAACGTCTCCGCCCTGTCGGGGCTGTACGCCTCGACCCTGGGTCGCCCCCTGGTGAAGGTCGCCGCGTTCTCCTACGGGGTCCGCCAGGGCCTGAGCAAGGCCTGGCGCCGCTCCTCCTCGCCCGAGGGCGGTGCGTCCCGGTGA	MSVGDVAGLIAAVAFVLLVGLLAVPLVKLGRTLDETSRSIRELTEHSVPILDEAATTVSSTNDQLVKVDTITTAAAQVSENVSALSGLYASTLGRPLVKVAAFSYGVRQGLSKAWRRSSSPEGGASR				NA	NA	NA	NA	NA
AK001_02078	627	rpsD		30S ribosomal protein S4	GTGACTGCAGTCCGCAAGTCGCGCCGCCAGGTGCGCCTGAGCCGCAAGCTCGGTCTGGCCCTCACCCCGAAGGCCGTCCGCCACTTCGAGAAGCGTCCGTACCCCCCGGGTGAGCACGGCCGCGCCCGCCGCCGCACCGAGTCCGACTACGCGGTGCGTCTGCGCGAGAAGCAGCGTCTGCGCGCCCAGTACGCGCTGCGCGAGAAGCAGCTCCTCAAGGTCTACGAGAACGCCCGCAAGCACCCGGGCCTGACCGGTGAGGTCATGGTCGAGGACCTGGAGACGCGCATCGACGCGCTGGTCCTGCGCGCCGGCTTCGCCCGCACGATCCTGCAGGCCCGCCAGGCCGTCACGCACCGCCACGTCATGGTGGACGGCAAGATCGTCGACCGCCCGTCGTTCCGCGTCAAGGCCGGCCAGACCCTGCAGATCAAGCCGAAGTCGCAGACCACGACGCCGTTCCAGGTCGCCGCCGCCGGTGCCCACCGCGACGTGCTGCCCGAGGTCCCGGGCTACCTGGACGTCAACCTGGAGAAGCTGTCGGCCACGCTGACCCGCGACCCCAAGCGCGCCGAGGTCCCCGTGACCTGCGACGTCCAGCTGGTCGTCGAGTACTACGCCCGCTGA	MTAVRKSRRQVRLSRKLGLALTPKAVRHFEKRPYPPGEHGRARRRTESDYAVRLREKQRLRAQYALREKQLLKVYENARKHPGLTGEVMVEDLETRIDALVLRAGFARTILQARQAVTHRHVMVDGKIVDRPSFRVKAGQTLQIKPKSQTTTPFQVAAAGAHRDVLPEVPGYLDVNLEKLSATLTRDPKRAEVPVTCDVQLVVEYYAR				NA	NA	NA	NA	NA
AK001_02079	948			hypothetical protein	GTGTACCGCGCGACCCGCGAGCGCGAGACCGAGACACGTCGTCGACGACGCCGGGGTGACCTGGTGCGGGTCAGGCCCGGGATCTACGCGCCGCCGGACCTGTCGGCGACGGACTCGCCGGCCGTGCGGCGTGAGCACGCTCACCTGGTCCGGCTCGCGGCGGCGCTCGCGGGTCTGCGCACGCCGGTCTGGGCGAGCCACACCAGTGCGGCGCTGCTCTGGGGCTGCTGGACCTACCGCCTGGGCACGACGGCACATGTGACCCAGCTGGGCCCTCCCGACGTGCGCCGGGGCAGTGTCGGGCTGCGCCGGCACTGGACCGCCCTGTCTCCGCGGGACCGGACGACCCTCGACGGCGTTCCCGTGACGACGCTGGAGCGGACCGCGGTCGACTGCGCCCGCGCGCTGCCCGGCGAGCAGGCGGTCGTCGTCGTCGACTCCGCGATGCGCCTGGGTGCTGACCCGGACGTCGTGGGGACGCTCATGGCGGAGTCGGCCGGCACGCGGGGCATCCGCTCCGCGCGACGCGTCCTGGCGGTGGCCGACGGGCGCGTGGAGTCCCCTGGTGAGTCACGGTTGCGCTGGATCCTGGCCGACGAGGGGCTCGCGGCTCCCGAGGCGGCCGTTCCCGTGGCGACGTGGATGGGGACCCGGTGGGTCGATCTCGGGTGGCCGGAGCTGAAGGTGGGGTTCGAGTTCGACGGCAGGGGAAAGTACGCCGCGTCGGGCACGGTGCGTGCCGATCAGGCCGTCTACGACGAGAAGCGTCGGCACGACGCCCTGCGTGAGGCCGGGTGGCTCGTGCTGAGGGTCTCGTGGGCCGACCTGGAGGACCGCGAGGTCTTGCTCGAGCGTGTGCGACGGGTGCTGGTCCGGTCCGGCCACCCTGTGCCGAGATACCGGCCTGTCGCCGACGTACCGGTGGATCGACGTGCCGGACGGCGATGA	MYRATRERETETRRRRRRGDLVRVRPGIYAPPDLSATDSPAVRREHAHLVRLAAALAGLRTPVWASHTSAALLWGCWTYRLGTTAHVTQLGPPDVRRGSVGLRRHWTALSPRDRTTLDGVPVTTLERTAVDCARALPGEQAVVVVDSAMRLGADPDVVGTLMAESAGTRGIRSARRVLAVADGRVESPGESRLRWILADEGLAAPEAAVPVATWMGTRWVDLGWPELKVGFEFDGRGKYAASGTVRADQAVYDEKRRHDALREAGWLVLRVSWADLEDREVLLERVRRVLVRSGHPVPRYRPVADVPVDRRAGRR				NA	NA	NA	NA	NA
AK001_02080	1392		COG2256	putative AAA domain-containing protein	ATGGACCTGTTCAACGCCGCGACCACCCGTGAGCACGGCACGCCGGTGACCGCGCGCCGCGGGGCCGGCGCCCCGCTCGCCGTGCGCATGCGCCCGGCCTCGCTCGACGAGGTGACCGGCCAGGGGCACCTGCTCGTGCCCGGCTCCCCGCTGCGCCGGCTCGTGGAGCCCGCCGACGACGCCGCCCGCCGAGCCGCCCCCGGATCCGTGATCCTGTGGGGCCCGCCCGGCGTCGGCAAGACGACCCTGGCCTACCTCGTGGCCACCACCTCCGGGCGGCGGTTCGTCGAGCTGTCCGCCGTCACCGCCGGCGTCAAGGACGTCCGCCAGGTCATCGAGGACGCCCGCCGTCGCCTGGCCACCGGCGGCGAGGAGACCGTGCTGTTCATCGACGAGGTGCACCGGTTCTCCAAGACCCAGCAGGACGCCCTGCTGCCCAGCGTGGAGAACCGGTGGGTCACCCTCGTGGCGGCCACCACCGAGAATCCGTCGTTCTCCGTCAACTCCCCGCTGCTGTCCCGTTCGCTGCTGCTGACCCTGCGACCGCTCACGGGCGAGGACGTGCGCGGTCTCGTGCGCCGCGCCCTCGCCGACGCGCGCGGGCTCGACGGCGCCGTCACGCTCGCCGACGACGCCGAGGACCAGCTCGTGCGCATGGCCGGCGGCGACGCGCGCAAGGCCCTGACCGTGCTCGAGGCCGCCGCCGGAGCAGCCCTCAGCGACGCCCGCGACGAGGTCGCGCCCGAGGGGCCCGTCACCGTCGACCTCGACACCGTCGAGCGCGCCGTCGACGTCGCCGCCGTGCGCTACGACCGCGACGGCGACCAGCACTACGACGTCGTCTCCGCCTTCATCAAGTCGATCCGCGGCTCCGACGTCGACGCCGCCCTGCACTACCTGGCCCGCATGGTGGCCGCGGGGGAGGACCCGCGGTTCATCGCGCGCCGCCTCGTGATCTCCGCCGCGGAGGACGTCGGCATGGCCGACCCGTCGGCGCTGCAGACCGCCGTGGCGGCCGCACAGGCCGTCCAGCTCATCGGGATGCCCGAGGGACGCATCGTGCTCGCCGAGGCCGTCGTCCACCTCGCCACGGCCCCGAAGTCCAACCGTGCCTACGCCGGGATCGGGGCGGCGCTCGCGGACGTCTCGGCCGGCCGGGTCGGGGTGGTGCCCGCCCACCTGCGCGACGCCCACTACGCCGGCGCGGAGAAGCTCGGTCACGGCACCGGGTACCGGTACGCCCACGACGAGCCGCACGGCGTCGCCGCGCAGCGGTACCTGCCCGAGGAGCTCGCGGGTCGGCGCTACTACGAGCCGAGCGACCGCGGGTTCGAGCGCCAGGTGTCCGAGCGGCTGGACCGCATCCGGCAGATCCTCGACTCCGCCGACTGA	MDLFNAATTREHGTPVTARRGAGAPLAVRMRPASLDEVTGQGHLLVPGSPLRRLVEPADDAARRAAPGSVILWGPPGVGKTTLAYLVATTSGRRFVELSAVTAGVKDVRQVIEDARRRLATGGEETVLFIDEVHRFSKTQQDALLPSVENRWVTLVAATTENPSFSVNSPLLSRSLLLTLRPLTGEDVRGLVRRALADARGLDGAVTLADDAEDQLVRMAGGDARKALTVLEAAAGAALSDARDEVAPEGPVTVDLDTVERAVDVAAVRYDRDGDQHYDVVSAFIKSIRGSDVDAALHYLARMVAAGEDPRFIARRLVISAAEDVGMADPSALQTAVAAAQAVQLIGMPEGRIVLAEAVVHLATAPKSNRAYAGIGAALADVSAGRVGVVPAHLRDAHYAGAEKLGHGTGYRYAHDEPHGVAAQRYLPEELAGRRYYEPSDRGFERQVSERLDRIRQILDSAD				NA	NA	NA	NA	NA
AK001_02081	1776			hypothetical protein	GTGACGCTGGACGCTTGGCTGACGCTGGCCGTGGTGCTCGGGGTGCTGGCCACCCTGGTGCGCGGGCGGGTCTCTCCCGCCGTGACCGTGTTCGCCGGCGCGGTGGCGGTCATGATCCTCGGCGTGGTGCCGGCGCAGGACGCCTTCTCCGGCTTCTCGAACCCGGCGCCGATCACGGTGGCGGCCCTGTACGTGCTGGCGGCCGGGATCGAGAAGACCGGCGCCCTGACGCCGGTGATGCAGAGCACGCTGGGTGAGAACGGCTCCTACCGACGTCCCCTGATCCGCACGCTCGCGCCGACGATGGCGGCCTCGGCGTTCCTCAACAACACGCCGATCGTGGCGATGCTGGTGCCGCAGGTGACCGCCTGGGCGAACCGTCGCCGGCTGGCCGTGTCCAAGATCCTCATGCCGGTGTCGTTCGCGGCGGTGCTCGGCGGGCTGCTGACGGTCATCGGCACGTCGACGAACCTGGTGGTCTCCGGCCAGATGTCGACGCTGGGCCTGGAGCCGATCGGGTTCTTCGAGATCGGCAAGGTGGGCCTGCCGATCGCGCTGGTGGGCTTCGTCGCGCTCATCGCCCTGTCGCCCGTGCTGCTGCCGGACCGGCGTTCGGCCCGGGCGGAGATGGAGCAGGAGGGCCGTCGGTTCTCCTTCGAGATGATCGTCGAGCCCGGCGGTCCGGTCGACGGGCGCACCGTCGAGCAGGCACGCCTGCGCGACCTGTCCGGGCTGTTCCTGGCGTCCGTGGACCGCGGCGACACCACGATCGCCCCGGTGCGGCCCGACACCGTGCTGCGCGGCGGCAACCGCCTGCACTTCGTCGGCCCGCTGGACCGGGTGGTCAAGCTGCAGGAGATGCGGGGGCTGCGCTCGGCGGAGATGGAGCACGTGCTCGACCTCGCCGAGCCGTCGGTGCGCTACTACGAGGCGGTCGTCGGGAGCCGCTCCCCGCTGGTGGGACACACGCTGAAGGACGTGGGCTTCCGCGCCACCTACCAGGCGGCGGTGCTCGCGATCCACCGGTCGGGCCAGCTCGTCGAGAGCCGGCTGGGCACCGAGCGCATCCGGCTGGGCGACACGCTCATCCTGGTCAGCGACCCCGACTTCCGCGAGCGGTGGCGCGACCGGGCCGACTTCCTGCTGGTGGCCGAGCTCGACGGCAGCCCGCCGTCGGCGACGTCGCGTGGCTGGGTCCCCGTGGGGCTGTTGGCGGCCGTGGTCGTCCTGGCCGCGACGGGGCTGGTGCCCATCCTGCACGGCTCGCTCGTGGCGGCGATCGCCCTGGTGGCCACGAAGGTGCTCTCGCCGCTCGAGGCCCGCCGGGCGATCGACGTCGAGGTGATCGTCGTCATCGCCTCGGCGTTCGGTCTGGCCGCGGCGATGGAGGCGTCGGGTCTCGCCCAGGTGGTGGCCGACGGGATGGTGGGCCTGTTCGGCGGGTTCGCACCCTACGGGGTGCTGCTGGGGCTGGTGCTGGCCACGGTGCTGCTCACCGAGCTGGTGACCAACAACGCGGCCGCCCTGCTGATGCTGCCGGTGGCGGTCAGCACCGCCGGGGCAGCAGGCCTCGACCCGCGCGGCGCGGCGATCGCCGTCGCCGTGGCGGCGTCGGCGTCGTTCCTGTCCCCCATCGGCTACCAGACCAACATGATGGTCTACGGCCCGGGCGGCTACCGGTTCACCGACTACGCCCGGCTGGGATGGATCCTGACGCTGGTGACGGTCGTGGCCACCGTCCTGCTGGTGCCGACCCTGTGGCCGGCACCAGCCTGA	MTLDAWLTLAVVLGVLATLVRGRVSPAVTVFAGAVAVMILGVVPAQDAFSGFSNPAPITVAALYVLAAGIEKTGALTPVMQSTLGENGSYRRPLIRTLAPTMAASAFLNNTPIVAMLVPQVTAWANRRRLAVSKILMPVSFAAVLGGLLTVIGTSTNLVVSGQMSTLGLEPIGFFEIGKVGLPIALVGFVALIALSPVLLPDRRSARAEMEQEGRRFSFEMIVEPGGPVDGRTVEQARLRDLSGLFLASVDRGDTTIAPVRPDTVLRGGNRLHFVGPLDRVVKLQEMRGLRSAEMEHVLDLAEPSVRYYEAVVGSRSPLVGHTLKDVGFRATYQAAVLAIHRSGQLVESRLGTERIRLGDTLILVSDPDFRERWRDRADFLLVAELDGSPPSATSRGWVPVGLLAAVVVLAATGLVPILHGSLVAAIALVATKVLSPLEARRAIDVEVIVVIASAFGLAAAMEASGLAQVVADGMVGLFGGFAPYGVLLGLVLATVLLTELVTNNAAALLMLPVAVSTAGAAGLDPRGAAIAVAVAASASFLSPIGYQTNMMVYGPGGYRFTDYARLGWILTLVTVVATVLLVPTLWPAPA				NA	NA	NA	NA	NA
AK001_02082	1782	aspS	COG0173	Aspartate--tRNA(Asp/Asn) ligase	GTGCTCCGCACCCACACGGCCGGCTCATTGCGGGCCGAGCACATCGGCCAGACCGTCACCCTCACGGGCTGGGTCGATCGTCGCCGGGACCACGGGGGAGTGGCCTTCATCGACCTGCGTGACGCCTCCGGCATCGCGCAGGTCGTCATCCGCGACGAGGAGGTCGCCCACCCGCTGCGCGCCGAGTTCGTGCTGCGCGTCACCGGTGAGGTCTCCCGCCGTCCCGAGGGCAACGCCAACGCGAACCTCGCCACCGGCGACATCGAGGTCATCGCCAGCGACGTCGAGGTGCTCAACACCTCCGAGGCGCTGCCCTTCCAGGTCTCCACCGCGCTCGCGGACACCGAGACCATCGGCGAGGAGGCCCGGCTCAAGCACCGCTACCTGGACCTGCGCCGCCCGGCGCCGGCGCACGCCATGCGGCTGCGCGCGAAGGTCAACGCCGCGGCCCGCCGGGTGCTGGACTCCCACGAGTTCGTCGAGGTCGAGACCCCGACGCTGACCCGCTCCACCCCCGAGGGTGCGCGCGACTTCCTGGTGCCCGCGCGGCTGTCGCCCGGTTCCTGGTACGCCCTGCCGCAGTCGCCGCAGCTGTTCAAGCAGCTGCTCATGGTCGGCGGCCTGGAGCGTTACTACCAGATCGCGCGCTGCTACCGCGACGAGGACTTCCGCGCCGACCGGCAGCCGGAATTCACCCAGCTGGACGTCGAGATGAGCTTCGTCGACCAGGACGACGTGCTCGCCCTGACCGAGGACCTGCTCGCCGAGATCTGGCAGCTCGTCGACGTCGAGCTCCCGCGGCCCTTCGAGCGCATCACCTTCGCGGACGCGATGCGCCTGTACGGCACGGACAAGCCGGACCTGCGCTACGGCAACCCGCTGGTCGAGCTCACCGAGTACTTCGCCGACACCACGTTCCGGGTCTTCCAGAACGAGTACGTCGGTGCGGTCGTCATGCCGGGCGGGGCCGCGCAGCCGCGGCGCCAGTTCGACGCCTGGCAGGACTGGGCCAAGCAGCGCGGCGCCAAGGGTCTGGCCTACGTCACCTTCGCCGAGGACGGCACGCTCGGCGGCCCGGTCGCCAAGAACCTGTCCGAGACCGAGCGCGAGGGCCTCGCGGAGGTCACCGGTGCCCAGCCCGGTGACGCGGTGTTCTTCGCCGCCGGGAAGACGACGGACTCGCGCGCCCTGCTCGGCGCGGCCCGCGTGGAGATCGCCCACCGCACCGGCCAGATCGACGAGGACGCCTGGTCCCTCGTCTGGGTCGTGGACGCCCCGCTGTTCAAGCCGGCGGGAGAGGCCGCCGACGACGGGGACGTGGCGCTGGGCACGTCGGCGTGGACCGCGCTGCACCACGCCTTCACGTCCCCGAAGCCGGAGTGGCTCGACTCCTTCGAGTCCGACCCGGGCAACGCGCTGGCCTACGCCTACGACATCGTCTGCAACGGCAACGAGATCGGCGGCGGCTCCATCCGTATCCACCGCCGCGACGTCCAGGAGCGCATCTTCGAGGTCATGGGCATCGGTCACGAGGAAGCGCAGGAGAAGTTCGGCTTCCTGCTCGACGCCTTCAAGTTCGGCGCTCCGCCGCACGGCGGCATCGCGTTCGGCTGGGACCGCATCGTCGCGCTGCTGACCAAGGCGCCGTCGATCCGCGACGTCATCGCGTTCCCCAAGTCCGGCGGCGGCTACGACCCGCTGACGGACGCGCCGGCGCCGATCACGGCCGAGCAGCGCCAGGAGGCCGGCGTGGACGCCGAGCCCGAGGGCGCCGAGGGCTGA	MLRTHTAGSLRAEHIGQTVTLTGWVDRRRDHGGVAFIDLRDASGIAQVVIRDEEVAHPLRAEFVLRVTGEVSRRPEGNANANLATGDIEVIASDVEVLNTSEALPFQVSTALADTETIGEEARLKHRYLDLRRPAPAHAMRLRAKVNAAARRVLDSHEFVEVETPTLTRSTPEGARDFLVPARLSPGSWYALPQSPQLFKQLLMVGGLERYYQIARCYRDEDFRADRQPEFTQLDVEMSFVDQDDVLALTEDLLAEIWQLVDVELPRPFERITFADAMRLYGTDKPDLRYGNPLVELTEYFADTTFRVFQNEYVGAVVMPGGAAQPRRQFDAWQDWAKQRGAKGLAYVTFAEDGTLGGPVAKNLSETEREGLAEVTGAQPGDAVFFAAGKTTDSRALLGAARVEIAHRTGQIDEDAWSLVWVVDAPLFKPAGEAADDGDVALGTSAWTALHHAFTSPKPEWLDSFESDPGNALAYAYDIVCNGNEIGGGSIRIHRRDVQERIFEVMGIGHEEAQEKFGFLLDAFKFGAPPHGGIAFGWDRIVALLTKAPSIRDVIAFPKSGGGYDPLTDAPAPITAEQRQEAGVDAEPEGAEG				NA	NA	NA	NA	NA
AK001_02083	474			F420H(2)-dependent reductase	ATGGCCCGCCAGATTGCGACGAACACCACCGTGGAGCGCGACGAGCTCACGGAGTTCTTGCGCAGCCGCCACAACGGGGTCCTGGTGACCACCCGCGACGACGGGCGCCCCCAGCTCAGCCCCGTGACCTACGGCGTCGACCCGGACGGCCGGGTCGTCGTCTCGACCTACCCCGAGCGGGCCAAGGCCGTGAACCTGCGCAAGCGTCCGCAGGTGTCGTTCATGGCCCAGGGCGACGACTTCGGCGACGCCTGGGTGCAGGTCGACGGCACCGCGGAGGTGCTGGACATGCCCGAGTCGCTGGAGCCGCTGGTGGAGTACTTCCGGGCGGCCGCCGGCAAGGAGCACCCGGACTGGGACGAGTACCGCGAGGCGATGGCGAAGCAGGACAAGTCCGTGATCCGGATCACCGTCGAGCGCTGGGGCCCGATCGCGACGGGCGGGTTCCCGGCCCGGCTGGTCGAGGAGGGCTGA	MARQIATNTTVERDELTEFLRSRHNGVLVTTRDDGRPQLSPVTYGVDPDGRVVVSTYPERAKAVNLRKRPQVSFMAQGDDFGDAWVQVDGTAEVLDMPESLEPLVEYFRAAAGKEHPDWDEYREAMAKQDKSVIRITVERWGPIATGGFPARLVEEG				NA	NA	NA	NA	NA
AK001_02084	2142			hypothetical protein	GTGCGATGGGACGGGCAGGCGACGACCGCCGACGACGGCGCGCTGCCCGGTCTGGAGCGCCCGGGGCTGGCCCGGCTCGGCCTCGTGCGCAGCACGCGCACCCCGGAGTTCGCCGGCATCACCTTCCACGAGGTGATGGCCAAGAGCGCGTTGTCCAAGGTGCCGGCCGCCTCGCGCATGCCGTTCCGGTGGACGATCAACCCCTACCGTGGCTGCTCTCATGCCTGCGCCTACTGCGTCTCTCCGTCCACGCTGGTCCTGATGGCAGACGGCACGCAGAAACCGATCAGCCAGGTCTCGGTCGGTGACCGGATCGTCGGCACGCGCCGCCAGGGGACCTACCGACGGTTCGTCGGGACCACGGTCCTGGCTCGATGGACGTCGGTGAAGCCCGCCTACCGGGTGATCCTGCGCGACGGCACCGAGATCGTGGCGAGCGCCGAGCATCGGTTCCTGGCGCGTGGTCGCGGATGGAAGCACGTCGCGGCCGGGCCACCGGGCAAGCAGCGCCCGTACCTCACGACGAACGACTCGTTGATGGGGTTCGGTACCGGCCGCCCGGCGGCCGACACGGGGAGTACCGAGTCGCCCGACTACCGGCGCGGTTATCTCACCGGGATGATCCGGGGTGACGGGATGATCTTCGAGAAGACCTATCCGAGGACATCGCGGGGCGGTGCCCGCGTGTGCATGTTCCGCCTCGCCCTGGCCGACCGGGAAGGGCTCGACCGGACCGCTCGATACCTCGCCACCGAGGGGATCGTGACGAGGCGTCGTCCGTTCGTGGCCGCGTCGGAGACACGTCGCGCCATGAGTGCACTGCACACCGCACGGACGGCAGACGTCGATGCGATCAGAGGGCTGGTCGAGTGGCCGGCGGTGCCGAGTGCGGAGTGGTCGAGGGGATTCCTGGCAGGGATCTTCGACGCCGAGGGCTCCTGCTCCCGGGGGATCTTGAGGATCTCCAACAAGGACGAGGAGATCCTGTCCCGGGTAGCCGATGCCCTCCGGCGGTTCGACCTGGACAACACGCTCGAGCCTCCACGACCGAACGGCGTGACGTGCGTGCGTGTGCGAGGCGGTCTCGCGGCGCGGGAGCGGTTCTTCCACCTCGTCCGTCCGGCGATCGTCCGTAAGCTGTCCGTGACAGGTATGGCGCTGAAGACCTCCGTCGACCTCGGTGTCGTGACGGTCGAAGCCTGTGGATTCGACGAGGAGATGGTCGACATCACGACGGGAACGGGCGACTTCGTCGCCAACGGTGTGGTCGCTCACAACTGCTTTGCGAGGCCGACGCACGAGTACCTCGACCTGGACGCGGGGGAGGACTTCGACTCCCAGGTCGTGGTCAAGACGAACGTCGACCAGGTGCTGCGCGCCGAGCTCGCCAGGCCCTCGTGGCGGCGCGAGCCCGTCGCGCTGGGCACCAACACCGACCCCTACCAGCGCGCCGAGGGTCGCTACCGGCTCATGCCGGGGATCATCACGGCGCTCGCGGACGCCCGCACGCCGTTCTCGATCCTCACCAAGGGCACGCTGCTGCGCCGCGACCTGCCGCTGATCGCCGACGCCGCCGACCGGGTCGAGGTCGGCCTCGGCGTGTCGCTGTCGTTCGCCGACGTCGAGCTCCAGCAGTCGGTCGAGCCAGGCACGCCGACGCCCAAGGCGCGCCTGGACCTGGTGCGCGCGATCCGGGCCGCGGGACTGCCGTGCGGGGTGATGGTCGCCCCGGTGCTGCCGTGGCTGACGGACTCCACGGACCACCTGACGCGGCTGCTGGACGCGATCGCCGACGCCGGAGCGACCGGGGTGACCGTCGTCCCGCTGCGGCTCAAGCCCGGGACCCGCGACTGGTACCTGCGCTGGCTCGCCCGGGAGCACCCCGAGCGGGTGGCGGGGTACCGCCGGGTCTTCGCCCGCGGCGCCGACGCGCACGACGGGTACCGGGACTGGCTGTGGCAGCGGGTGCGTCCCCTGCTGGAGGAACGGGGCTTCGCCGGCTCCGGGCACCGGGCCGCCTCGGGGGCGACCGGCCGGTACGACGACGACCTGCGCCCGCACGGCGACGCCGACTACCCCGCCGGGTCGATGGTCGCCGCCGCGCCGGCGGGGGAGCCCGGGAGCGCCGCGACGCTCTTCTGA	MRWDGQATTADDGALPGLERPGLARLGLVRSTRTPEFAGITFHEVMAKSALSKVPAASRMPFRWTINPYRGCSHACAYCVSPSTLVLMADGTQKPISQVSVGDRIVGTRRQGTYRRFVGTTVLARWTSVKPAYRVILRDGTEIVASAEHRFLARGRGWKHVAAGPPGKQRPYLTTNDSLMGFGTGRPAADTGSTESPDYRRGYLTGMIRGDGMIFEKTYPRTSRGGARVCMFRLALADREGLDRTARYLATEGIVTRRRPFVAASETRRAMSALHTARTADVDAIRGLVEWPAVPSAEWSRGFLAGIFDAEGSCSRGILRISNKDEEILSRVADALRRFDLDNTLEPPRPNGVTCVRVRGGLAARERFFHLVRPAIVRKLSVTGMALKTSVDLGVVTVEACGFDEEMVDITTGTGDFVANGVVAHNCFARPTHEYLDLDAGEDFDSQVVVKTNVDQVLRAELARPSWRREPVALGTNTDPYQRAEGRYRLMPGIITALADARTPFSILTKGTLLRRDLPLIADAADRVEVGLGVSLSFADVELQQSVEPGTPTPKARLDLVRAIRAAGLPCGVMVAPVLPWLTDSTDHLTRLLDAIADAGATGVTVVPLRLKPGTRDWYLRWLAREHPERVAGYRRVFARGADAHDGYRDWLWQRVRPLLEERGFAGSGHRAASGATGRYDDDLRPHGDADYPAGSMVAAAPAGEPGSAATLF				NA	NA	NA	NA	NA
AK001_02085	1371	hisS	COG0124	Histidine--tRNA ligase	ATGGCTCGCGTCACCCCTCTCTCCGGTTTCCCCGAATGGCTCCCCGACGGTCGCGTGGTGGAGCAGCACGTCCTGGACGTGCTGCGTCGCACCTTCGAGCTGCACGGGTTCGCCGGCATCGAGACGCGCGCGGTCGAGCCGCTGGACCAGCTGCTGCGCAAGGGCGAGACGTCCAAGGAGGTCTACGTCCTGCGGCGGCTGCAGGAGGAGGGTGACGACGCCGCGGCGGGCGACGGCGGCGCGCGCTCCGAGAAGCAGCTCGGGCTGCACTTCGACCTCACGGTGCCCTTCGCGCGGTACGTGCTGGAGAACGCCGGCCGTCTCGCGTTTCCGTTCAAGCGCTACCAGATCCAGAAGGTCTGGCGCGGCGAGCGGCCCCAGGAGGGCCGGTTCCGGGAGTTCGTCCAGGCCGACATCGACGTCGTCGGCGCCGGCGACCTGCCGTACCACTACGAGGTCGAGCTGCCGCTGGTCATGGCCGAGGCCCTGGGCGCGCTGCGCGAGGTGGGCCTGCCCGAGGTGCGCGTGCTGGTCAACAACCGCAAGGTCGCCGAGGGCTTCTACCGCGGGCTGGGCCTGACCGACGTCGAGGGCGTGCTGCGCCAGATCGACAAGCTCGACAAGATCGGCGTGGAGAAGGTCGCCGCGCTGCTCGTCGCCGAGCAGGGCGCCACGCCCGAGCAGGCCGCGGCCTGCCTCGACCTGGCCGCGATCCACGGCAGCGACACCACCGTGGTCGACGACGTGCGCAAGCTCGCCGCGCGCTACGACGCCGGCACGGACCTGCTCGAGACCGGCCTGGCGGAGCTCGGCGCGCTGATCGAGGCGGCGGGTGCCCGCGCACCCGGCGTCGTGGTCGCCGACCTCAAGATCGCCCGCGGGCTCGACTACTACACCGGCTCCGTCTACGAGACCGTCCTGGTCGGGCACGAGCAGCTCGGCTCGATCTGCTCCGGGGGCCGCTACGACACCCTCGCCTCGGACGGCAAGAACACCTATCCCGGCGTCGGGCTGTCCGTCGGCGTCTCGCGCCTGGTCTCGCGGGTGCTCTCAGCTGGCCTGATGACCGCGACCCGGGGTGTGCCGACCGCGGTGCTGGTCGCCGTCACCGACGAGGACTCGCGGGCCGCCTCGGACGCCGTCGCCGCCGCGCTGCGGTCCCGGGGCGTGCCGACGGACGTGGCACCCACCGCGGCGAAGTTCGGCAAGCAGATCAAGGTCGCCGACCGCCGCGGCATCCCGTTCGTGTGGTTCCCGGGCGAGGAGCACCAGGTCAAGGACATCCGCACCGGCGAGCAGTCGGCCGCGGACCCCGCGACCTGGTCGCCGTCCGCCGAGGACCTGCACCCCCGCGTCGTGCCGGGGGAGTGA	MARVTPLSGFPEWLPDGRVVEQHVLDVLRRTFELHGFAGIETRAVEPLDQLLRKGETSKEVYVLRRLQEEGDDAAAGDGGARSEKQLGLHFDLTVPFARYVLENAGRLAFPFKRYQIQKVWRGERPQEGRFREFVQADIDVVGAGDLPYHYEVELPLVMAEALGALREVGLPEVRVLVNNRKVAEGFYRGLGLTDVEGVLRQIDKLDKIGVEKVAALLVAEQGATPEQAAACLDLAAIHGSDTTVVDDVRKLAARYDAGTDLLETGLAELGALIEAAGARAPGVVVADLKIARGLDYYTGSVYETVLVGHEQLGSICSGGRYDTLASDGKNTYPGVGLSVGVSRLVSRVLSAGLMTATRGVPTAVLVAVTDEDSRAASDAVAAALRSRGVPTDVAPTAAKFGKQIKVADRRGIPFVWFPGEEHQVKDIRTGEQSAADPATWSPSAEDLHPRVVPGE				NA	NA	NA	NA	NA
AK001_02086	729			putative protein	ATGGACGTGCATGTGGTCGTCGCCCCGGTGTTCGGCACCAACTGCTGCGTGGTCGTGGCCGACACCGCGCACCCCGACGGCCGGCGCGACTGCGTCGTGGTCGACGCCGGGGCCGGGACCGCGGGCCCCGTCACGGAGCTGGTGGCCGAACGGTCCCTGCTGCCACGGGCCGTGCTGGCCACCCACGGGCACGTCGACCACACGTGGGACGCCGCCGAGCTGTGCCGCCGCTTCGACGTCCCGCTGCGCCTGCACGCCGCCGACGTCTACCGGATCGCCGACCCCTTCGGCACGATCGGCCGCGGCGGCGGCTCGGCCGCCGCGACCAGCGTCAGCGACGCGCTGGTGCAAGCGCTCGACGGTTTCGGCTGCACGCCGCGCGACTACGCCGCCCCCGAGCGGATCGAGCCGTTCGAGGGGCCGACGGCCGAGGTCGTCGCCGGTGACGTCACCCTGCACGCCCGGCACGCCCCGGGCCACACCGAGGGCTCGACCCTCTACCTCGTCGACGGGTCCGACGGCGGCGCCGGCGTCCTGCTCAGCGGGGACGTGCTCTTCGCCGGCGGGGTGGGGCGCACCGACCTGCCGGGCGCCGACGTCGAGGCGATGCTGACCACGTTGCGCCAGGTCGTGCGACCGCTCGACCCGGCCCTCGGCGTCGTGCCGGGCCACGGCCCGACGACCACGGTCGGGCGCGAGCTCGCCACCAACCCGTTCCTGCCGGCCTGA	MDVHVVVAPVFGTNCCVVVADTAHPDGRRDCVVVDAGAGTAGPVTELVAERSLLPRAVLATHGHVDHTWDAAELCRRFDVPLRLHAADVYRIADPFGTIGRGGGSAAATSVSDALVQALDGFGCTPRDYAAPERIEPFEGPTAEVVAGDVTLHARHAPGHTEGSTLYLVDGSDGGAGVLLSGDVLFAGGVGRTDLPGADVEAMLTTLRQVVRPLDPALGVVPGHGPTTTVGRELATNPFLPA	PGPT0001770_4404	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069	NA	NA
AK001_02087	798			hypothetical protein	GTGGCGCCCAGCAAGCGCGAGCGCGAGTACGCCCGCAAGCGCGAGGCCAAGTGGGACGAGCGGCGACGCGCCAAGCAGGAGCGCCGCCGCCGGATCGGCGTGATCGTGGCGATCGTGGCGATCTTCGGCCTCGTCGCCGGTGGCGCCCTCGTCGCGGGCCTGACCTCCTCCGACGACCCCGCGCCGGCGTCCGGCGCGCAGGACGAGCAGGCGGCCGCCGGTGCGTGCCCGCCCGGCGCGACCGAGGCGCGCGACGGCGGCGAGGTGCCCGACCCCGCGGTGGCCGAGGACCGCGCCTGGACCGCGTCGGTCGACCTCTGCGTCGACGGGGCCACCGAGACCGTCGGGCTCGAGCTGGTCGGCGCCGAGGCGCCGCAGGCGGTGGCGAGCTTCGTGTCCCTGGCCCAGCAGGGCTACTTCGACGGCACGCAGTGCCACCGGCTGACCACGCAGGGCATCCACGTCCTGCAGTGCGGCGACCCGACCGCCACCGGCACCGGCGGCCCCGGCTACTCGTTCGGGCCGGTGGAGAACGCCCCCGCCGACGACGTCTACCCGGCCGGCACGCTGGCCATGGCCCGTCGGGGCGGCGACGCCGCGTCGATGGGCTCGCAGTTCTTCCTCGTCTACGAGGACTCGACCATCCCGTCCGACGCAGCAGGCGGGTACACGGTGTTCGGCACCGTGACGTCCGGCCTGGACACGATCCAGGCAGTCGCTGACGCGGGCACGGCCGACGGAGCCGGCGACGGCTCCCCGGCGAGCCCCGTCATCATCGAAGGAGTGGAGACCCAGTGA	MAPSKREREYARKREAKWDERRRAKQERRRRIGVIVAIVAIFGLVAGGALVAGLTSSDDPAPASGAQDEQAAAGACPPGATEARDGGEVPDPAVAEDRAWTASVDLCVDGATETVGLELVGAEAPQAVASFVSLAQQGYFDGTQCHRLTTQGIHVLQCGDPTATGTGGPGYSFGPVENAPADDVYPAGTLAMARRGGDAASMGSQFFLVYEDSTIPSDAAGGYTVFGTVTSGLDTIQAVADAGTADGAGDGSPASPVIIEGVETQ	PGPT0015111_939	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768	NA	NA
AK001_02088	1533			hypothetical protein	GTGAGCGAGAGCACCCCCGGCTCGACCGGCCCCGAGGACGTCGAGGCCACCGAGCAGGCACAGGCCGAAACTCCTGGCGCCGGGACCGAGGAGTCCGCGACCCCGCCGCCCGCACCCGCCCCGGCGGCGCCCGCGCCGAAGCCGTCGGCCCCCAAGCCGGCCCCGCCGCGCCCGGGCGCGCCCAAGCCCTCGGCGCTCAGGCGGCCGACGCCGGCCACGGCGCCGACGCCCACGGCTCCGGCCGCGCCCGTCCCGCCCGTCCACGACGCGGCGGAGTCCGCGGCGGCCGCCGAGTTCGGCCGCGTGGACGACGACGGCACCGTGCACGTGCGCGACGGCGACACCGAGCGCGTCGTGGGCCAGTACCCGGGCGTGTCCACCGAGGAGGCGCTGACCCTGTACGTGCGGCGCTACCTGGACCTCGTGGCGAAGGTGGCCCTGTTCGAGACGCGCCTGGACAGCGCGGACCTGTCGATCCGCGAGATCGACCAGACGCTGGGCAAGCTGGCCGACGAGACCACCGAGCCGGCCGCCGTCGGCGACCTCGACGCCCTGCGCCGCCGCGTGGAGCACGCGCGCACCCGGGCGGCCGAGCGCCGTGCCGCGCTCGAGGCCGAGCGCGTCGCCGCCAAGGAGCGCGCGGTCGAGGCCCGCACCGAGATCGTCGAGGCCGCGGAGAAGATCGCCGGCACCGACCCGGACAAGATGCAGTGGCGTCCCGCCGGGGAGGAGCTGCGCCACCTGCTCGAGCGCTGGAAGGAGTCCCAGCGCAACGGGCCGCGCGTCGACCGCCCGACCGAGGAGGCCCTCTGGAAGCGGTTCAGCCAGGCGCGCACCGCCTTCGACCGCGAGCGCCGGCACTTCTTCGCCGAGCTGGAGCAGCGCAACGCCGCGGCCAAGGTCACCAAGGAGAAGATCGTCGCCGAGGCCGAGGCCCTGCAGCACTCCACGGAGTGGGGGCCCACGACGCGGGAGTACCGCGAGCTGATGAACCGCTGGAAGGCGGCGGGCCGGGCGCACCGCAAGGACGACGACGCCCTGTGGGCGCGGTTCCGGGCGGCGCAGGACGTGTTCTTCGGCGCGCGGGACGAGGCGAACGCGGCGATCGACGCGGAGTACGGCGAGAACCTCCAGGTCAAGGAGGCGCTCCTCGCCGAGGCGGAGGCGCTGCTGCCCGTACGGGACATCGACGCCGCCAAGGAGGCGCTGCGCGGGATCCAGGACCGTTGGGAGGAGGCCGGCAAGGTTCCGCGGGGCGACCTGTCGCGCGTCGAGGGGCGCCTGCGTGCGGTCGAGAGCGCGGTCCGCGACGCCGAGGACGACAAGTGGCGCCGCACGAACCCCGAGACGCAGGCGCGTGCCGAGGGCGCGGCCGCCCAGCTCGAGGAGGCGATCACGGCCATGGAGTCCGAGCTCGCCGACGCCGAGTCCTCCGGCGACACGCGGTCCGCCGAGGAGCTGCGTGGCGCCATCGCGGCGCGCCGGGCGTGGCTGGAGCAGGTCGTCAAGGCGGCGGAGGACTCCCGCGGCTGA	MSESTPGSTGPEDVEATEQAQAETPGAGTEESATPPPAPAPAAPAPKPSAPKPAPPRPGAPKPSALRRPTPATAPTPTAPAAPVPPVHDAAESAAAAEFGRVDDDGTVHVRDGDTERVVGQYPGVSTEEALTLYVRRYLDLVAKVALFETRLDSADLSIREIDQTLGKLADETTEPAAVGDLDALRRRVEHARTRAAERRAALEAERVAAKERAVEARTEIVEAAEKIAGTDPDKMQWRPAGEELRHLLERWKESQRNGPRVDRPTEEALWKRFSQARTAFDRERRHFFAELEQRNAAAKVTKEKIVAEAEALQHSTEWGPTTREYRELMNRWKAAGRAHRKDDDALWARFRAAQDVFFGARDEANAAIDAEYGENLQVKEALLAEAEALLPVRDIDAAKEALRGIQDRWEEAGKVPRGDLSRVEGRLRAVESAVRDAEDDKWRRTNPETQARAEGAAAQLEEAITAMESELADAESSGDTRSAEELRGAIAARRAWLEQVVKAAEDSRG				NA	NA	NA	NA	NA
AK001_02089	639			hypothetical protein	GTGCCCGCTGCCGCCACGACGGCTGCGCGACCGCTGCGCGAGCTGCTGCACGGTCCCGGCGGGGACGTCACGGTCGTGCGTCCGGCGGACGTGGGCGGCGCCGCCGCCTGGCAGACCCTGGTGCGCGAGGGCGTGCTGCGGGTGCTGCGCGGCGAGGCCGCCTGCCCCGCGGACCGGGTCGTCGACGCCGGGCTGCGCGGCGCGGTGCTCGCCGCCGACGTCCCGCACGGCGCCGTGGTCACGGCCCGCACGGCCACCTGGGTCCGCACCGGCTGCGGCCGCCCGGACCCCCTCGACCTGACCTACCCGGCGGGCCGCCACCGGCCCGACCGGCCGCCCGGCGCCCGGTTGTGGCAGGCCCGCCTGCTGGGCCCGGACGTCCGCGACGTGGGCGGCGTGCCCGTGACCACGACGCAGCGCACGCTGGTCGAGCTGGTGCTGCACGGCACCGATCCCGCCGCGACGGTGGACCTGGCCGTCGCCCTGCTGCGGGCCGGCGCGCGGGTCGAGGAGGCGCACGGCAGCATCTCGGCCCGGACCCGCGTGGCCGCCCGCGCTCGCGCCCACGACCTGCTCGACGCGGCCGCCGCGGTCCTGGACCCCGACGGCGCCCGCGCACCGGCGGACTGCCCGGCGTAG	MPAAATTAARPLRELLHGPGGDVTVVRPADVGGAAAWQTLVREGVLRVLRGEAACPADRVVDAGLRGAVLAADVPHGAVVTARTATWVRTGCGRPDPLDLTYPAGRHRPDRPPGARLWQARLLGPDVRDVGGVPVTTTQRTLVELVLHGTDPAATVDLAVALLRAGARVEEAHGSISARTRVAARARAHDLLDAAAAVLDPDGARAPADCPA				NA	NA	NA	NA	NA
AK001_02090	1083	ligD_2	COG1793	Multifunctional non-homologous end joining protein LigD	ATGCCTTCCGCGCGAGCAGTCGAGGTCGACGCCGCCGGGCGCTCCGTGCGGGTGTCCAGCCCGGACCGGGTCGTGTTCGCCGACCTGGGGGTCACGAAGCTGGAGGTGGTCGAGTACTTCCTCGCCGTCGGCGACGGCATCCTCGGTGCCCTGCTGGACCGTCCCACGACGCTCGAACGCTGGCCCAAGGGCTACTCCCCCGACGCCGTGATGGCCACCCGCACGGACTCCCACGGCGACGCCTTCTACCAGAAGCGGGTCCCGAAGGGAGCACCCGACTACGTGCGCACGGCGCGGATCGCGTTCCCGTCGGGGCGCAGCGCGGACGAGGTCGCCCCGAGCGAGCTCGCCGTGGTCGCCTGGGCCGCCCAGCTGGGCACGCTGACCTTCCACCCCTGGCCCGTGCGCCGCGACGACGTCGAGCAGGTGGACCAGCTGCGCATCGACCTCGACCCGCAGCCCGGCACGGACTACGCCGACGCGGCCCGGGTGTCGCTGACGCTGCGCGAGGTCCTCGGCGAGCTCGACCTGGTCGGTTACCCGAAGACCTCCGGCGGACGGGGCCTGCACGTGTTCGTCCCGGTCGCACCACGGTGGAGCTTCGTCCAGGCGCGGCGGGCGACCATCGCGATCGGCCGCGAGCTGGAGCGTCGGCTGCCCGGGACGGTCACCACCCGCTGGTGGAAGGAGGAGCGCGGCGAGCGGATCTTCGTCGACTACAACCAGATGGCACGCGACCGCACGATGGCGTCGGCCTACTCCCTGCGACCCAACCCGCGCGCGACGGTCTCCACGCCGCTGGACTGGGACGAGGTGACCGAGGTGCACCCGGACGACTTCACGCTGCGCACGGTGCCGGACCGGTTCGCCGAGCGCGGCGACCTGCACGCGGCGCTGCGCGCCGACCGCGACCCGGATCTCGACTGCTCGCTCCAGGCCGCGCTGGACCTGGCCCGGCGCGACGAGGAGGAGCACGGGCTGGGCGACCTGCCGTACCCGCCGGAGTACCCGAAGCAGCCCGGTGAGCCCAAGCGGGTCCAACCCTCGCGGGACACCGACCGTCCCCGGGCGACGGACGGCTGA	MPSARAVEVDAAGRSVRVSSPDRVVFADLGVTKLEVVEYFLAVGDGILGALLDRPTTLERWPKGYSPDAVMATRTDSHGDAFYQKRVPKGAPDYVRTARIAFPSGRSADEVAPSELAVVAWAAQLGTLTFHPWPVRRDDVEQVDQLRIDLDPQPGTDYADAARVSLTLREVLGELDLVGYPKTSGGRGLHVFVPVAPRWSFVQARRATIAIGRELERRLPGTVTTRWWKEERGERIFVDYNQMARDRTMASAYSLRPNPRATVSTPLDWDEVTEVHPDDFTLRTVPDRFAERGDLHAALRADRDPDLDCSLQAALDLARRDEEEHGLGDLPYPPEYPKQPGEPKRVQPSRDTDRPRATDG	PGPT0014910_1126	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
AK001_02091	558			hypothetical protein	ATGGGAACACTTCTGTACTCGACGACCTGCTCGATCGACGGGTTCGTGGCCGACGCCGACGGCAGCATCGACTGGACGGCCCCGAGCGACGAGCTGCACGCCTTCTTCAACGACCGGCTGCGTGACGTTGGCACCTACGTCATGGGCCGCCGCATGTTCGGCACGATGCGGGTGTGGGACACCTGGCCCGCCGGGCGGAGCGCGGTCGAGGACGACTACGCCGCGATCTGGGCCGCGGCGGACAAGATCGTCTGCTCCGACCGGCTGGCGGCCACGGGCGTCGACGCCCCCCGGACCACGGTGGAGCCCCGCCTGACGACCCGGCGGCTGGCCCAGATCGTCGCCGACGCCGACGGGACGGTCGAGGTCTCCGGGCCGACGACGGCCGCCGACGCGTTGCGGTCCGGCATGGTCGACGTGCTGCAGCTGTTCGTGGCGCCGCGCGCCCTGGGCGGCGGTCTGCGCGCCCTGCCCGCGGGCATGGACCTGGCCCTGGAGCTCGCCGAGACGCGCCGGTTCGACAACGGGACCGTGCTGCTGCGGTACGAGCGGGCCTGA	MGTLLYSTTCSIDGFVADADGSIDWTAPSDELHAFFNDRLRDVGTYVMGRRMFGTMRVWDTWPAGRSAVEDDYAAIWAAADKIVCSDRLAATGVDAPRTTVEPRLTTRRLAQIVADADGTVEVSGPTTAADALRSGMVDVLQLFVAPRALGGGLRALPAGMDLALELAETRRFDNGTVLLRYERA				NA	NA	NA	NA	NA
AK001_02092	1170	ligC	COG1793	DNA ligase C	ATGGATCTGCCGCTCAGCCCGCCGGTCCGGCCCATGCTGGCCCGGTCGGTCGCCTCGGTGCCCGACCAGCCCGACGACGGTGCCGGCTGGGTCTACGAACCCAAGTGGGACGGCTTCCGTGCGATCGTCTACCGCGACGGTGCCGAGGTCCGCATCGACTCGCGCAACGCCCGCCCGATGCAGCGCTACTTCCCCGAGCTCGTCGAGGCCGTGCTGGACGTCCTGCCGACCCGGTGCGTGGTCGACGCGGAGATCGTCGTGGCCCGTCCCCCGGACCGCGACCGCGACGCCGCCCACCTCGACTTCGACACGCTGAGCCAGCGCATCCACCCGGCGGCCTCGCGGGTCGAGATGCTCGCCGGCGAGGTGCCGGCCAGCCTCGTCGTCTTCGACCTGCTGGCGCTCGACGGCGAGGACCTGACCTCCCGACCGCTGACCGAGCGGCTGGCCCGGCTGGACGGGCTCGGCCTCTCCGGGCCCCAGGTGCACGCCACCCCGCGCACGGCCGACGCCGGGACCGCGCGCGAGTGGTTCGCCGCGTTCGAGGGCGCCGGCCTGGACGGTGTGGTGGCCAAGACCGCCGACGGGGTCTACGAGCCGAACAAGCGCGGCTGGCTCAAGATCAAGCACGCGCGCACGGCCGACGTCGTCCTCGCCGGGCTGCGCGAGCACAAGACCTCGACCCCGGACCGCCCCCTGGTGGGGTCGCTGCTGCTCGGGCTGTACCGCGCGGCCGACGGTGACGACGTCGGCCCCTCGCTGCAGTTCGTCGGGGTCGCCGCCTCCTTCCCGGCGGCCCGGCGCGCCACGCTGTACGACGAGCTCGCCCCGCTGCAGGTCGTCCCCGGCAGCCCGGAGGCCGCGGCGCACCCCTGGGCCGACTGGCAGGACCCCGCGGTGGCGGACGGCAGCGCGGGGGAGCGGCGGCCCGGTGCGCAGTCGCGGTGGAGCGCGGGCAAGGACCTGTCGTTCACCCCGCTGCGCGTCGAGCGGGTCCTCGAGGTCGGCTACGACCACATGGAGGGCGCCCGGTTCCGCCACACGGCCCAGTTCAAGCGGTGGCGCCCCGACCGCGAGCCGGCGTCGTGCACCTACGACCAGCTCGTCGAACCGGTCGGCTACGACCTGGCGGAGATCCTGCCGGGCGCTCCCGGCGTCGAGGACCGATGA	MDLPLSPPVRPMLARSVASVPDQPDDGAGWVYEPKWDGFRAIVYRDGAEVRIDSRNARPMQRYFPELVEAVLDVLPTRCVVDAEIVVARPPDRDRDAAHLDFDTLSQRIHPAASRVEMLAGEVPASLVVFDLLALDGEDLTSRPLTERLARLDGLGLSGPQVHATPRTADAGTAREWFAAFEGAGLDGVVAKTADGVYEPNKRGWLKIKHARTADVVLAGLREHKTSTPDRPLVGSLLLGLYRAADGDDVGPSLQFVGVAASFPAARRATLYDELAPLQVVPGSPEAAAHPWADWQDPAVADGSAGERRPGAQSRWSAGKDLSFTPLRVERVLEVGYDHMEGARFRHTAQFKRWRPDREPASCTYDQLVEPVGYDLAEILPGAPGVEDR	PGPT0014910_1126	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
AK001_02093	2352	relA	COG0317	Bifunctional (p)ppGpp synthase/hydrolase RelA	GTGAGCGACGACACGCAGGTCCGGTCCGCGGACGAGGCGCCCCGGCCCGCGTCCAACGGCGCCGGCAGGGGCGTGCGCAACCGGCTCGTCCGCCTCGGCGTGCGCGGCGCGACGCCGTCGACTCCCGCCCTCGAACCGCTGCTGCAGGCGGTGCGCACCAACCACCCCAAGAGCGACCTGAGCGTCCTGGAGCGTGCCTACGGCATCGCGGAGAAGGCGCACCGTGGTCAGCAGCGCAAGTCGGGCGACCCCTACATCACCCACCCCGTCGCGGTCGCCACGATCCTGGCCGAGCTCGGGTTCGACGGCGCGACGCTGGCCGCCGCGCTGCTGCACGACACCGTCGAGGACACCGAGTACTCCCTCGACGACCTGACGCGCGACTTCGGCGGCGAGATCGCGATGCTCGTCGACGGCGTCACCAAGCTCGACAAGGTTACCTACGGCGACGCTGCCCAGGCCGAGACCGTGCGCAAGATGGTCGTGGCCATGGCCAAGGACATCCGCGTGCTGGTCATCAAGCTCGCCGACCGGCTGCACAACGCGCGCACCTGGAAGTACGTCTCGGGGTCGTCGGCGTCCCGCAAGGCGCGCGAGACGCTGGAGATCTACGCCCCGCTGGCGCACCGCCTGGGCATGAACACGATCAAGTGGGAGCTGGAGGACCTGTCCTTCCAGACCCTGTACCCCAAGGTGTACGACGAGATCGTGCACCTGGTCGCCGAGCGCGCGCCGGCCCGCGAGGAGTACCTCGGCGTGGTGCGCGAGCAGATCGCGGCGGACCTGCGCGGGGCGAAGATCCGGGCCACGGTGACCGGACGTCCGAAGCACTACTACTCGATCTACCAGAAGATGATCGTGCGCGGCCACGACTTCACGGAGATCTACGACCTGGTCGGTACCCGCGTCCTGGTGGACTCGGTACGCGACTGCTACGCGGCGCTCGGTGCGCTGCACGCGCGGTGGAACCCGGTGCCCGGCCGGTTCAAGGACTACATCGCGATGCCGAAGTTCAACATGTACCAGTCGCTGCACACGACGGTCGTGGGCCCCGGCGGCAAGCCGGTCGAGATCCAGATCCGTACGCACGACATGCACCGCCGTGCCGAGTACGGCGTCGCCGCGCACTGGAAGTACAAGGAGACGGCGCGCGCCGGCAAGGGCGGGTCGGAGGACCCGCGGGCCAACGACATGACCTGGCTGCGCCAGCTCGTGGACTGGCAGCGCGAGACCGCCGACCCGGGGGAGTTCCTCGACTCGCTCCGCTACGAGATCGGCGCGGCCGAGGTCTACGTGTTCACGCCCAAGGGCGAGGTCATGGCGCTGCCGGCCGGGGCCACCCCCGTCGACTTCGCCTACTCGGTGCACACCGAGGTCGGACACCGCACCATGGGTGCGCGGGTCAACGGCCGGCTCGTCCCGCTCGACTCGCCGCTGCAGAACGGTGACGTCGTCGAGGTGCTCACCTCCAAGGCCGAGACCGCCGGCCCGTCGCACGACTGGCTGAACTTCGTGAAGTCCGGCCGGGCGCGCAACAAGATCCGGCAGTGGTTCACCAAGGAGCGCCGCGACGAGGCGATCGAGCGCGGCAAGGACGCGATCACGCGGGCGATGCGCAAGCAGAACCTGCCGATCCAGCGGCTGCTGAGCCACGAGGCGCTCGTGGGGCTGGCCAACGAGCTGCGCTACGACGACGTCTCCGCGCTGTACGCCGCGGTGGGGGAGAACAACGTCTCCGCCCAGCACGTCGTCGAGACGCTCGTGAAGTCCCTCGGTGGCGAGGACGGCACGGCCGAGGACACCGCCGAGGTCGCCCGGCCCGGCCAGGCCGTGCGGCGGTCGCGCTCCACCGGGGACCCCGGGGTGGCCGTCAAGGGCATGGACGACATCTGGGTCAAGCTCGCCAAGTGCTGCACGCCCGTGCCCGGCGACGACATCGTCGGGTTCGTCACCCGCGGGGCCGGTGTGAGCGTGCACCGGTCGGACTGCGCGAACCTCGCCCAGCTGCGCGAGCAGCCCGAGCGCATCGTGGACGTCTCCTGGACCACGGGGGCGAACACGATGTTCCTGGTCCAGATCCAGGTCGAGGCGCTGGACCGGTCGCGGCTGCTGTCGGACGTCACGCGGGTGCTGTCCGACCACCACGTCAACATCCTGTCGGCGACCGTGTCGACCTCGACCGACCGCATCGCCATCTCGCGGTTCGTCTTCGAGATGGCCGAGCCCGCGCACCTGCAGCAGGTGCTGGCCGCCGCCCGCAAGATCGACGGCGTCTTCGACGTCTACCGCATCACGGGCACGAAGGCCGACGAGGTCGGGTCCACCGCACCGGAGGCCCCGGTCGACGCCTGA	MSDDTQVRSADEAPRPASNGAGRGVRNRLVRLGVRGATPSTPALEPLLQAVRTNHPKSDLSVLERAYGIAEKAHRGQQRKSGDPYITHPVAVATILAELGFDGATLAAALLHDTVEDTEYSLDDLTRDFGGEIAMLVDGVTKLDKVTYGDAAQAETVRKMVVAMAKDIRVLVIKLADRLHNARTWKYVSGSSASRKARETLEIYAPLAHRLGMNTIKWELEDLSFQTLYPKVYDEIVHLVAERAPAREEYLGVVREQIAADLRGAKIRATVTGRPKHYYSIYQKMIVRGHDFTEIYDLVGTRVLVDSVRDCYAALGALHARWNPVPGRFKDYIAMPKFNMYQSLHTTVVGPGGKPVEIQIRTHDMHRRAEYGVAAHWKYKETARAGKGGSEDPRANDMTWLRQLVDWQRETADPGEFLDSLRYEIGAAEVYVFTPKGEVMALPAGATPVDFAYSVHTEVGHRTMGARVNGRLVPLDSPLQNGDVVEVLTSKAETAGPSHDWLNFVKSGRARNKIRQWFTKERRDEAIERGKDAITRAMRKQNLPIQRLLSHEALVGLANELRYDDVSALYAAVGENNVSAQHVVETLVKSLGGEDGTAEDTAEVARPGQAVRRSRSTGDPGVAVKGMDDIWVKLAKCCTPVPGDDIVGFVTRGAGVSVHRSDCANLAQLREQPERIVDVSWTTGANTMFLVQIQVEALDRSRLLSDVTRVLSDHHVNILSATVSTSTDRIAISRFVFEMAEPAHLQQVLAAARKIDGVFDVYRITGTKADEVGSTAPEAPVDA	PGPT0014310_513	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139	NA	NA
AK001_02094	588	apt		Adenine phosphoribosyltransferase	GTGACGCGGCGCGTGACCGACGACATCTCGCTGGTCGCCCTGGCCGGGCTCGGCCCGGCCAGGGCGACCGAGATCCGGGACCTGATCCACGACGTCCCGGACTACCCGCACCCGCCGATCGTCTTCCGCGACATCACGCCGCTGCTGGCGGACGGTGCGGCGCTGGCCGACGTGACCGACGCCTTCGCGGCGCTGGTCGAGGCCGACGGCGGGGTCGACGTGGTCGCCGGGATGGAGGCGCGCGGGTTCCTGCTCGGTGCGCCGCTGGCCACCCGGCTCGGCGTGGGCTTCGTGCCGCTGCGCAAGGCCGGCAAGCTGCCCCCGCCGGTCGAGCGCGAGGACTACGAGCTCGAGTACGGCCACGCGTCCATCGAGCTGCGCCGGGGAACACTGGCACCCGGTGCGCGTGTTCTGGTGGTCGACGACGTGCTGGCCACGGGCGGGACCGCACAGGCCGCGGCGCGGCTCGTCGAACGCAGCGGCGCCACCGTCGTGGCGCTGGCGTTCCTGCTCGAGCTCGCCGGTCTGGGTGGTCGTGAGCGGCTCGCCGACCACACGGTCGAGACCCTGCTGCGGGTGGAGACGTAG	MTRRVTDDISLVALAGLGPARATEIRDLIHDVPDYPHPPIVFRDITPLLADGAALADVTDAFAALVEADGGVDVVAGMEARGFLLGAPLATRLGVGFVPLRKAGKLPPPVEREDYELEYGHASIELRRGTLAPGARVLVVDDVLATGGTAQAAARLVERSGATVVALAFLLELAGLGGRERLADHTVETLLRVET	PGPT0021455_673	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021455-apt-K00759	NA	NA
AK001_02095	1101	secF	COG0341	Protein translocase subunit SecF	ATGGCCGGCAGCATGACCTTCGCCCAGTGGGGCAACGACCTGTACACGGGCCGTCGCTCCTACCCGATCGTCGCCAAGCGGCGCGTCTGGTTCTCGATCGTCGGCGTCCTCGGGATCGCCTCGATCATCATCCTGCTCACCAAGGGCCTGACCCTGGGCATCGACTTCCGCGGTGGCTCGGAGTTCACGGTCACCAGCACGACCACCACGGAGCAGTCCGTGGCCGTCGACGCCGTGCAGGAGGTCCTGCCCGAGGACGAGCCGCGCGTGGCGGTCGTGGGCGGCGAGGCCGTCCGCGTGCAGACCACGCAGGTCTCCGGCGCGGAGCAGACCGCCGTCATCGAGGCCCTCGCCTCGGGCTACGGGGTGGACCCGGCGGACGTCGACGCCTCGTTCGTGGGGCCGACCTGGGGCTCGGCGGTGTCCGAGCGCGCCCTGTGGGGCGTGGTCGTCTTCGTCCTGCTCGCCGCCGCCTTCATGGCCGTCTACTTCCGGGCGTGGCGCATGTCGGTCGCCGGCATCCTCGCGATGCTCAGCGACCTGCTGATCTCCGCCGGTGTGTACGCGCTCATCGGCTGGGAGGTCACGCCCTCGACGATCATCGGCTTCCTGACGATCCTCGGCTTCTCGCTGTACGACAAGATGGTCGTGTTCGACAAGGTCCGGGAGAACACCACCGGTGTGCTGGACCAGTCGCGCAACACCTACGGCGAGCGGGCCAACCTGGCCGTCAACCAGACGCTGGTGCGGTCCATCAACACCTCCGTGGTGGCGCTGCTGCCGGTGGCGGGGATCCTCTTCCTCGGCGCGTTCGTGCTCGGTGCGGGCACGCTGCGGGACCTGTCCCTGTCGCTGTTCGTGGGGATCGCCGTCGGTGCGGCCTCGTCGATCTTCCTGGCCACCCCGCTGGACGTGTCCCTGCGCGAGCGGGAGCCGAAGATCCGTCAGCACACCGCCGAGGTCCTGGCCGAGCGCGAGCGCCTGGCCACGGAGGGCGGTCACGAGGCCGAGCTCGCCGCGGTCGCGGCCGGCCGGTCCCAGCTCATCCCCGGTCACCACCAGGGTCACGGCTCCCAGCCCCGGCGCAAGCGCGGCCGGTGA	MAGSMTFAQWGNDLYTGRRSYPIVAKRRVWFSIVGVLGIASIIILLTKGLTLGIDFRGGSEFTVTSTTTTEQSVAVDAVQEVLPEDEPRVAVVGGEAVRVQTTQVSGAEQTAVIEALASGYGVDPADVDASFVGPTWGSAVSERALWGVVVFVLLAAAFMAVYFRAWRMSVAGILAMLSDLLISAGVYALIGWEVTPSTIIGFLTILGFSLYDKMVVFDKVRENTTGVLDQSRNTYGERANLAVNQTLVRSINTSVVALLPVAGILFLGAFVLGAGTLRDLSLSLFVGIAVGAASSIFLATPLDVSLREREPKIRQHTAEVLAERERLATEGGHEAELAAVAAGRSQLIPGHHQGHGSQPRRKRGR	PGPT0029265_559	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074	NA	NA
AK001_02096	1944	secD		Protein translocase subunit SecD	GTGGCCAACTCCAGCACGCGGCGTTCGCGTCCGGTACGCACGCTCGTGGTCTTCGCGCTCCTGTCGATGGTGGTGCCGTTCGTGGCACTCCTCGTCGGGACGTACCTGGACCCCAAGAGCGACGAGAACCCCGGCGGCGCCAGCCTGGCACCCGGACTCGCTCTCGACCTGCAGGGCGGGACCCAGATCATCCTGACGCCGACGTCCACGGATGGTTCGGAGCTGACCCCGGAGGCGATCGACGAGTCGATCAACGTCATCCGGCAGCGCATCGACTCCTCCGGCGTCGTCGAGGCCGAGATCGTCAACCAGGGCGGGGAGAACATCGTCGTCTCCATCCCCGGTGAGGTGGACCAGGCGACGATCGACCTCGTCTCCCAGCCCGCGCAGATGCGCTTCCGGCCGGTCCTGACCTACGAGCTCGGCCTTCCGGCCCAGGAGCCGACGGCCGAGGCCTCGGCCGACGCCGAAGGGTCCGCCGACGGCGACGCCGAGGGCGAGGCGACCGAGGACGAGGCTCCGCAGGGCGCCACGCAGGAGGAGCTCGCCGCGTTCGACGAGCAGATCGCCACCGAGGCCCAGGACGTCGACCCCACCGACGCCTCCGACCTCGCGCAGATCACGCCCGCCGTGGAGGAGAAGTTCGCCGCGCTCGACTGCACCGACCCGGCCAACCTGGTCGGCGGTGGCGGCGCGAACCCGGACCAGGTGCTCGTGACCTGCTCCAACGACGGCAGCCTGCTCAAGTACGTCCTCGGCCCGGTCGAGGTCGACGGCACGAGCCTGTCGAACGCCAGCTCCGGCCTGGTGCCGGGCCCGAACGGCTCGGTCACCAACGAGTGGGGCGTCTTCATCGAGTTCGACGACCAGGGCACCACGGAGTTCCGCACGGTCACCGAGCGCCTGCAGGGCCTGGAGTCGCCGCGCAACCAGTTCGCGATGGTGCTCGACGGTCTCGTGATCTCGGCACCCTCGCTGGACCCCGGCGTCATCATCACCGACGGCCAGGCGACGATCTCGGGCAACTTCACGCGTGACTCCGCGGCCACGCTGGCCAACCAGCTCAGCTTCGGCTCGCTGCCGATCGCCTACGAGGTGCAGAGCCAGGAGACGATCTCGGCGACGCTCGGCTCGGAGCAGCTGCGCAACGGTCTGATCGCCGGTCTGATCGGTATGGCCCTGGTCGTGGTGTACTCGCTGTTCCAGTACCGCACGCTGGGTCTGGTGACCGTGGGCTCGCTGCTCATCGCCGCCGCGATCACCTACGTGTCCATCGCGCTGCTGTCCTGGACGATCGACTACCGCCTGTCCCTGGCGGGTGTCGCCGGTCTGATCGTGGCCATCGGGTTCACGGCGGACTCGTTCATCGTGTACTTCGAACGTATCCGCGACGAGATGCGCGACGGGCGCTCGATGGCGATGGCGGTCGAGCGCGGGTGGCGCCGGGCCAAGCGCACGGTGCTGGCCGCGAAGTCGGTCACCCTCATCTCCGCGATCGTGCTGTACTTCCTCGCCGTCGGCGGGGTGCAGGGCTTCGCGTTCACCCTGGGTCTGACGACGATCATCGACATCGCCGTGGTGTTCTGGTTCACCCACCCGACGCTGCAGCTGCTGACCAAGGTGCCGTTCTTCCGCGACGGACACTCGCTGTCGGGGCTGTCGCCCGAGCGGCTGCGCAGCACCGGCGGCCCGCGGTACGTGGGCGCCGGCCGGGTGGCCCGCCCGACGCCCGAGCCCGAGACGGCCGAGGAGCCGGTCCCGGCCATGGCGGGCGCGGCGTCCTCCCCGGCACCGACGACGGACGACTCCGGTCGCCGGCTGACGATCGCCGAGCGTCGTGCGGCGCAGCGGCGTGCGGCCGCGGCCGACGGACCGCCGGACGACCCCGGGACCGACGACCGCAGCCACGACGCCGTCCCCGGCGAGAACGAGGAGAGCCGCTGA	MANSSTRRSRPVRTLVVFALLSMVVPFVALLVGTYLDPKSDENPGGASLAPGLALDLQGGTQIILTPTSTDGSELTPEAIDESINVIRQRIDSSGVVEAEIVNQGGENIVVSIPGEVDQATIDLVSQPAQMRFRPVLTYELGLPAQEPTAEASADAEGSADGDAEGEATEDEAPQGATQEELAAFDEQIATEAQDVDPTDASDLAQITPAVEEKFAALDCTDPANLVGGGGANPDQVLVTCSNDGSLLKYVLGPVEVDGTSLSNASSGLVPGPNGSVTNEWGVFIEFDDQGTTEFRTVTERLQGLESPRNQFAMVLDGLVISAPSLDPGVIITDGQATISGNFTRDSAATLANQLSFGSLPIAYEVQSQETISATLGSEQLRNGLIAGLIGMALVVVYSLFQYRTLGLVTVGSLLIAAAITYVSIALLSWTIDYRLSLAGVAGLIVAIGFTADSFIVYFERIRDEMRDGRSMAMAVERGWRRAKRTVLAAKSVTLISAIVLYFLAVGGVQGFAFTLGLTTIIDIAVVFWFTHPTLQLLTKVPFFRDGHSLSGLSPERLRSTGGPRYVGAGRVARPTPEPETAEEPVPAMAGAASSPAPTTDDSGRRLTIAERRAAQRRAAAADGPPDDPGTDDRSHDAVPGENEESR	PGPT0029260_145	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072	NA	NA
AK001_02097	432			hypothetical protein	GTGGATTTCTCGATCATCATCCTCTTCGCCGTGCTCGCGGCCCTCATGCTCTTCATGAGCTCGCGCACGCGCAAGCAGCAGAAGAAGCAGTCCGAGTTCCGGTCCTCGCTCGCCCCCGGCCAGGAGGTCATGACCGGATCCGGCCTCGTCGGCACCGTGATCGAGGTCGACGAGGAGTCGGACATCGTCACCCTCGAGTCCACCCCGGGCTCGCGCACCCGCTGGCTCCGCGCCGCCGTCGTGAAGCGGATGGACGAGCCGGTCGAGGAGGCCGAGGAGACCGAGGTGACCGAGGACACGTCGGAAACCGGTAGCATCGCCCCGGCAGACGGTCCCGTCGAGGTCCCGGACGACCTGTCGGAGCTGGACACCGCGGAGCGGAAGGTCCAGGAGGACAAGCGCCGGGAGCACGGCGAGACCGACGACAAGTGA	MDFSIIILFAVLAALMLFMSSRTRKQQKKQSEFRSSLAPGQEVMTGSGLVGTVIEVDEESDIVTLESTPGSRTRWLRAAVVKRMDEPVEEAEETEVTEDTSETGSIAPADGPVEVPDDLSELDTAERKVQEDKRREHGETDDK	PGPT0025730_380	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210	NA	NA
AK001_02098	1104	ruvB	COG2255	Holliday junction ATP-dependent DNA helicase RuvB	TTGGCTGACGGCGCGATCGACCCCCAGGACCTCGGCGAGCGGCTCGTCGGCGCGGGCGCCGACGAGGTCGAGCGGGCCGCGGAGGCGGCGCTGCGGCCCAAGAAGCTCGACGACTTCGTCGGGCAGCGGGTCGTGCGCGACCAGCTCTCGCTGGTGCTGCAGGCCTCCATCGGCCGGGACACCGCCCCGGACCACGTGCTGCTGTCCGGTCCGCCGGGGCTGGGCAAGACCACGCTGGCGATGATCATCGCCGCCGAGCTCGGCACCTCGCTGCGGGTCACCAGCGGCCCCGCGATCCAGCACGCCGGCGACCTCGCCGCCGTGCTGTCCTCCCTGGAGGAGGGCGAGGTGCTGTTCATCGACGAGATCCACCGCCTCGCCCGCCCGGCCGAGGAGCTGCTCTACGTCGCCATGGAGGACTTCCGCGTCGACGTCGTCGTCGGCAAGGGGGCGGGCGCCAGCGCCATCCCCCTGACCCTGCCGCCGTTCACGGTCGTCGGCGCGACCACGCGGTCGGGGCTGCTGCCGGCACCGCTGCGCGACCGTTTCGGGTTCACCGGGCACCTCGACTTCTACGAGGCGGAGGAGCTGGAGCGCGTGATCCTGCGCTCGGCGGGGCTCCTCGGTGTGGACATCCGCCACGAGGCCGCGCACGAGATCGCCGGGCGCTCCCGCGGCACCCCCCGGATCGCCAACCGGCTGCTGCGCCGCGTGCGGGACTGGGCGCAGGTTCGGGGCGACGGCGTGCTCGACCTGCGCGCGGCCCGTGCCGCCCTGGAGGTCTACGAGGTCGACCCCATCGGCCTGGACCGGCTGGACCGCGCCGTCCTGACGGCGTTGTGCCGCCGGTTCGGCGGGGGACCGGTCGGCCTGACGACCCTGGCCATGACGGTCGGGGAGGAGTCGGACACCGTCGAGACGGTGGCCGAGCCCTACCTCGTCCGCGAGGGGCTCGTGGCGCGCACGCCGCGGGGCCGGGTCGCGACCGCGGCCGCCTGGGAGCATCTGGGCATCGAGCCGCCGGCCGGGACGTGGGCCGCGCCGGCCCCGACGACCGGTGGGGGAACCGGGACGACGTCGCGGACGTTGTTCGACGAGGCCTAG	MADGAIDPQDLGERLVGAGADEVERAAEAALRPKKLDDFVGQRVVRDQLSLVLQASIGRDTAPDHVLLSGPPGLGKTTLAMIIAAELGTSLRVTSGPAIQHAGDLAAVLSSLEEGEVLFIDEIHRLARPAEELLYVAMEDFRVDVVVGKGAGASAIPLTLPPFTVVGATTRSGLLPAPLRDRFGFTGHLDFYEAEELERVILRSAGLLGVDIRHEAAHEIAGRSRGTPRIANRLLRRVRDWAQVRGDGVLDLRAARAALEVYEVDPIGLDRLDRAVLTALCRRFGGGPVGLTTLAMTVGEESDTVETVAEPYLVREGLVARTPRGRVATAAAWEHLGIEPPAGTWAAPAPTTGGGTGTTSRTLFDEA				NA	NA	NA	NA	NA
AK001_02099	624	ruvA	COG0632	Holliday junction ATP-dependent DNA helicase RuvA	ATGATCGCCTCGCTGTCCGGCACCGTGGCCCAGGTCGCCCTGGACCGCGCCGTCGTCGACGTCGGTGGGGTGGGCTACCTGGTCCACGCGACCCCGGCGACCCTGGCCGGGCTGCGCGTCGGTGAGCAGGCGCTCCTGCACACCACCCTCGTGGTGCGGGAGGACTCGATGACGGTCTACGGCTTCGCGGACACCGAGGAGCGCGAGGTGTTCGAGACCGCGCAGTCCGTGTCCGGCGTCGGTCCGCGCATCGCGCTGGCGATGCTGGCAGTGCTCACCCCCTCCGCCCTGCGCCGCGCCGTCGACCAGGAGGACACCGCCGCGCTGCGGCGGGTCCCGGGCATCGGCGCCAAGAGCGCGCAGCGCATCGTGCTGGAGCTGTCCGGCCGTCTGGGAGCGCCCGGGCCCGACGACGGCGCCGCCTCCGGTGCGGCGACCTCCGCGGCCGGCGACGAGCGCGACCAGGTCGTCGAGGCGCTCGTCGGCCTGGGCTGGGCGGCCAAGGTGGCCGAGGGCGCGGTGGAGAAGGCGCTGGCGGAGGCGGGGACCGACCGCGTCGGCCCCACCGAGGTGCCGGCCACCCTGCGGGCCGCGCTGCGACAGCTGGGGCCGCGTCTTGGCTGA	MIASLSGTVAQVALDRAVVDVGGVGYLVHATPATLAGLRVGEQALLHTTLVVREDSMTVYGFADTEEREVFETAQSVSGVGPRIALAMLAVLTPSALRRAVDQEDTAALRRVPGIGAKSAQRIVLELSGRLGAPGPDDGAASGAATSAAGDERDQVVEALVGLGWAAKVAEGAVEKALAEAGTDRVGPTEVPATLRAALRQLGPRLG				NA	NA	NA	NA	NA
AK001_02100	582	ruvC_1		Crossover junction endodeoxyribonuclease RuvC	GTGGATCCGGGGCTGACCCGGTGCGGTGTCGGGGTCGTGGACTCCCGGCGCGGGCGCCGGGCGGCCCTCGTGGGTGTGGGTGTGCTGACGTCGGCGCCGGCGACGAGCACGGACTTGCGCCTGCTCGAGATCGCCGACGGTCTCGAGGGCTGGATGGAGGAGCACACCCCGGACGTCGTGGCGGTCGAACGGGTCTTCGCCCAGAACAACCGCGGCACCGTCATGGGCACGGCCCAGGTCGCCGGGCTGGCGATGGTCGCGGCCGCCCGCCGCGGCGTGCCCGTGGCCATGCACACCCCGAGCGAGGTCAAGGCGGCCGTGACGGGGTCGGGCCGGGCGGAGAAGGGCCAGGTCCAGCGCATGGTGGCCTCTATCCTGCGGCTGGACACCGCGCCCAGCCCCGCCGACGCCGCCGACGCCCTCGCCCTGGCCATCACGCACCTGTGGCGCCCGGCGGGCGCCCTGCAGGGCGGCGACCGCCACGAGCTCACCCCGGCGCAGCGCGCCTGGGCCGCCGCCGAGCACCGTGCGCGGGGCGCCCAGCGCGGTCCGCGCACCCCACGGAAGGAGACCGTCCGATGA	MDPGLTRCGVGVVDSRRGRRAALVGVGVLTSAPATSTDLRLLEIADGLEGWMEEHTPDVVAVERVFAQNNRGTVMGTAQVAGLAMVAAARRGVPVAMHTPSEVKAAVTGSGRAEKGQVQRMVASILRLDTAPSPADAADALALAITHLWRPAGALQGGDRHELTPAQRAWAAAEHRARGAQRGPRTPRKETVR				NA	NA	NA	NA	NA
AK001_02101	762		COG0217	putative transcriptional regulatory protein/MSMEI_2866	ATGTCCGGTCACTCGAAGTGGGCCACGACCAAGCACAAGAAGGCGGCGATCGATGCCAAGCGCGGCAAGCTCTTCGCGAAGCTGATCAAGAACATCGAGGTCGCGGCACGCACCGGCGGCGGCGACCCGACGGGCAACCCGACGCTGTTCGACGCCATCCAGAAGGCCAAGAAGTCCTCGGTGCCGAACGACAACATCGACCGCGCGGTCAAGCGCGGCTCCGGTGAGGGCGCCGACGCCGTCGACTACCAGGTCATCATGTACGAGGGCTACGGCAACAACGGCATCGCAGTGCTCGTGGAGTGCCTCACCGACAACAAGAACCGTGCCGCGGCCGAGGTGCGCACCGCGTTCACCCGCAACGGCGGGTCGCTGGCCGACCCGGGCTCGGTGTCCTACCTGTTCTCCCGCAAGGGCCAGGTCGTGGTCCCCAAGGCCGAGGGCGTCACCGAGGACGACGTGATGCTGGCGGCACTGGACGCCGGGGCCGAGGAGGTCACCGACCAGGGCGACTACATCGAGGTGCTGTCCGAGGCGACCGACCTGGTCGACGTGCGCAGCGCGATCGTCGACGCCGGCATGGAGTACGACTCGGCGGACTCGATCTGGCACCCGTCGATGCAGGTGGAGGTCGACGTCGAGGGTGCGCGCAAGATCATGCGTCTCATCGACGCGCTCGAGGACAGCGACGACGTGCAGAACGTCTACGCGAACTTCGACGCGACCGACGAGGTCATGGCCGCCCTCGACTCCGACGACTGA	MSGHSKWATTKHKKAAIDAKRGKLFAKLIKNIEVAARTGGGDPTGNPTLFDAIQKAKKSSVPNDNIDRAVKRGSGEGADAVDYQVIMYEGYGNNGIAVLVECLTDNKNRAAAEVRTAFTRNGGSLADPGSVSYLFSRKGQVVVPKAEGVTEDDVMLAALDAGAEEVTDQGDYIEVLSEATDLVDVRSAIVDAGMEYDSADSIWHPSMQVEVDVEGARKIMRLIDALEDSDDVQNVYANFDATDEVMAALDSDD				NA	NA	NA	NA	NA
AK001_02102	633	pdxT	COG0311	Pyridoxal 5'-phosphate synthase subunit PdxT	GTGACCACGACGATCGGAGTACTCGCCCTGCAGGGTGACGTGCGCGAGCACACCCGGGCCCTCGAGGGCGCCGGTGCGCGCGTCGTCCGCGTCCGTCGCCGCTCCGAGCTGGAGGCGGTGGACGGGCTGGTCCTGCCCGGCGGGGAGTCGACCACGATGGACAAGCTGCTGCGGGTGTTCGAGCTGCGGGACCCGTTGCGGACCGCGATCGCCGAGGGGCTGCCCGTGTACGGCTCGTGCGCCGGCATGATCCTGCTCGCCGACCGGATCACCGGCGGCATCGAGGGCCAGCAGACCCTCGGCGGCATGGACGTCACCGTGCAGCGCAACGCATTCGGTCGTCAGGTCGACTCGTTCGAGGCGGACCTGGCGATGCGGGGGATCGAGGGCGGTCCGGTGCGCGCGGTGTTCATCCGCGCACCCTGGATCTCCACGGCGGGGCCCGACGTCGAGGTCCTCGCCCGCATCCCCGAGCGGTCGACCGACGGGACCGGCCTCGGCGAGGCCGCCGGTAAGATCGTGGCAGCCCGTTCGGGGCGACTGCTCGCGACCGCGTTCCATCCGGAGGTCACCGGGGACTGGCGGGTGCACGCGCAGTTCGTCCGTGAAGTCAACGCCACGCGAAGGAGTTAG	MTTTIGVLALQGDVREHTRALEGAGARVVRVRRRSELEAVDGLVLPGGESTTMDKLLRVFELRDPLRTAIAEGLPVYGSCAGMILLADRITGGIEGQQTLGGMDVTVQRNAFGRQVDSFEADLAMRGIEGGPVRAVFIRAPWISTAGPDVEVLARIPERSTDGTGLGEAAGKIVAARSGRLLATAFHPEVTGDWRVHAQFVREVNATRRS	PGPT0009185_344	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009185-pdxT|pdx2|yaaE-K08681	NA	NA
AK001_02103	630			hypothetical protein	GTGAGTCCCCGGAGGGATACGCTGACCGGCATGCACGAACGTGTCACGACGAGCGGTTCCGCGGTGCCCTCGGCGTCCGCGTCACTGGGTCCCGACTGGGTCCCCGGCCCGGACGGCCTGCGACACCGGCGGGCGGCCCGCGTCATCCTCCTGGACGACGGGGGCCGGGTGCTGCTGGTGCGCGGGCACGACGCCGACGACCCGGACCGGTCCTGGTGGTTCACCGTCGGCGGCGGCATCGACGACGGTGAGACCGAGGTCGAGGCCGCGCTGCGGGAGCTGCACGAGGAGGCGGGGCTGACGCTGGCGGCCGAGGACCTGGTGGGCCCGGTGATGACCCGTGCCGGGATCTTCCGCTTCCTGGCCGAGACCTGCCGGCAGGACGAGGTGTTCTTCCTGGCGTGCGTGGACGGTGGCCACGAACCCAGCGACCACGGCTGGACCGACGGCGAACGCGACGTCCTCGACGAGATGCGTTGGCTCACCCCCGACGAGCTGCGCGGCGAGACGCGCGAGGTGTTCCCCCGCGTCCTGCCCGACCTCGTCGACCACCTGGTCCGGGGCTGGGACGGCGTGGTCCGGCACCTCGGCGAGGAGAACGACGACGAGCCGCTCGAGTCCGCCGACTGA	MSPRRDTLTGMHERVTTSGSAVPSASASLGPDWVPGPDGLRHRRAARVILLDDGGRVLLVRGHDADDPDRSWWFTVGGGIDDGETEVEAALRELHEEAGLTLAAEDLVGPVMTRAGIFRFLAETCRQDEVFFLACVDGGHEPSDHGWTDGERDVLDEMRWLTPDELRGETREVFPRVLPDLVDHLVRGWDGVVRHLGEENDDEPLESAD				NA	NA	NA	NA	NA
AK001_02104	2547	hrpB	COG1643	ATP-dependent RNA helicase HrpB	GTGGTCGGCGACCGTCGGGGCGCGCTCCTGCCGGACGTGTCCGTGCCCGGTGCGGACCTGCCTGTCCGGGCGGTGCTTCCTGCCACGACCGAGGCGGTGCGCTCGCACGGCGCCGCCGTGCTGGTCGCACCCCCCGGATCGGGCAAGACCTCGCTGCTGCCGCTCGCGCTGGCCGACGCGCTCGAGGGGACGGTCGTCGTCGCCGAGCCGCGACGGATGGCGACCCGCGCGGCCGCGACGCGGTTGGCGGCACTGACGGGCGAACCTCTCGGGACGCGGGTCGGCTACGCGATGCGCGGTGAGCGCCGCGGCGGGAAGGACCTGCGCGTCGAGGTCGTGACCACCGGGCTCCTCGTGCGCCGTCTGCAGCAGGACCCGGAGCTGCCGGGCGTCGCGGCGATCGTGATCGACGAGTGCCACGAGAGACATCTCGACGCCGACCTGCTCCTCGCGTTCTGCGCCGACGTCCGGGAGAACCTGCGGGACGACCTGGTGATCGTCGCGACGTCGGCCACCGCGGACACGGTCCGGCTGAGCCGGGTCCTGGGCACGGACGCCCCGGCGCCCGTGATCACCGCGACCGCCACGGCGTTCGACGTCGAGGTCGAGTGGGCGCCCCCGCCGGTCGCGGCCCCGCTGCTCCCCGGCGGGCGGGTCGACCCGCGCCTGCTGGACCACGTGGCGGCCGTCGTCGAGCGTGCCCTGACCGAGGACGACGGCGACGTCCTCGTGTTCGTCCCGGGCGAGGCGGAGATCGGTGGTGTGACCCGCCGGCTGGCGGGTCACGACGTCCTGCCCCTGTTCGGGCGCCAGTCACGGTCCGAGCAGGACCGCGCGCTGGCGCCGGCCGACGAGCGACGGGTCGTGGTCACGACGTCGGTCGCGGAGAGCTCGCTCACCGTGCCCGGCGTCAGGGTCGTCGTGGACTCCGGGCTCTCCCGGGAGCCGCGGACCGACCAGTCCCGTGGTCTCGGCGCGCTGGTCACCTGCCGGGTCTCGAGATCCTCGGCCGAGCAGCGGGCGGGTCGCGCGGGGCGGGAGGCGCCCGGCCGGGTCTACCGGTGCTGGTCGAGGACCGACCACGCGCGCCTCGAGGACCATGCCGCGCCCGAGGTCGCGATCGCGGACCTGGCCGCCTTCGCCCTCGACCTGGCGGCCTGGGGCGCGCCCGGCGGTGACGGTCTGGCCCTTCTCGACGCGCCACCGACGCCGGCGATGTCCGCGGCCACCACGCTGCTGCGCAGCTTCGGCGCGCTGGACGACGGCGGCCGGATCACCGAGCGGGGACGGCGGATGGCCCGGTTCGGGGTGCATCCACGCCTGGCGCGCGCGCTGCTCGACGGTACGCCGCGGGTCGGCGCCGCCCGGGCGCGCGAGGTCGTCGCCCTGCTGTCGGACGACACCGGCGGCGGGACCGGGGACGACCTGCCGGCGCGCTGGCGCGCCCTGCGCCGCGGCGAGGACCGCGGGGCCACCGACCGCTGGCGCCGCGAGGTCGAGCGCCTGGGCCGGGGAGCGCCCGACGACGTGGCGCGCGACGGGCCGGCTCCACGCGGTGCGGACGGGGTGCCGGACGACCTCGCGGCGGGGATCGTCGTGGGACTGGCGTACCCGGACCGGATCGCGCGGGCCCGGGGGACCGGCTCGGTGTCCTACCAGATGTCCGGGGGGACTGGCGCCGCGCTGGACGCACGGTCGCCGTTGCGGCCGGCGACCTGGCTGGCCGTCGCCGTCGCCGACCGGGCACCTGGTCGCGCGGACGCCAGGATCCGTTCCGCGGCACCGATCGACGAGGCGACCGCGCGCGAGGTCGCGGCCGACCTCGTGGAGACCTCGGACCGGATCCGCTGGGACGACGACCGGGTCGTGACCCGGCGGGTCGAGTCGCTCGGTGCGATCGTGCTGAACGACGTCCCGCTGGCACGGCCGGACCCGCTGCTCGTCCAGGCCGCCGCCCGCGACGGCCTGCGGCGCAGCGGCCTGTCCGTGCTGCGCTGGTCGCAGGGCGCGCTCGGTCTGCGGGAGCGCCTGGCGTTCTGCCACGCCCACCTCGGCGCCCCGTGGCCCGCGGTGGACGACGACGCGCTGCTGGCCGGGCTCGACGACTGGCTCGGTCCCGAGCTCGCCGGGGTGCGCGACGGGCGGGACCTGGCCCGCATCGACGTGCTGTCGGGGCTGCGGCGACTGCTGCCGTGGCCGGCGGCGACCCGGCTCGACGAGCTCGCGCCCGAGCGGCTCCGCGTCCCGTCGGGCTCTCAGGTGCGGCTGACCTACGACGGTGCCGAGCCGCCGGTCCTGGCGGTGAAGCTCCAGGAGGTGTTCGGCTGGACCACCACGCCCGCCGTCGCGGACGGGAGGGTCCCCGTCGTGCTGCACCTGTTGTCGCCCGCGCGGCGCCCGGTCGCGATCACGAGCGACCTCACCTCCTTCTGGCAGCAGGGCTACTCCCAGGTCCGGGCCGACCTGCGGGGCCGCTACCCGCGCCATCCGTGGCCGGAGGACCCCCTCGCCGCCGCTCCGACCGCACGTCCGACGCGACGTCGGTGA	MVGDRRGALLPDVSVPGADLPVRAVLPATTEAVRSHGAAVLVAPPGSGKTSLLPLALADALEGTVVVAEPRRMATRAAATRLAALTGEPLGTRVGYAMRGERRGGKDLRVEVVTTGLLVRRLQQDPELPGVAAIVIDECHERHLDADLLLAFCADVRENLRDDLVIVATSATADTVRLSRVLGTDAPAPVITATATAFDVEVEWAPPPVAAPLLPGGRVDPRLLDHVAAVVERALTEDDGDVLVFVPGEAEIGGVTRRLAGHDVLPLFGRQSRSEQDRALAPADERRVVVTTSVAESSLTVPGVRVVVDSGLSREPRTDQSRGLGALVTCRVSRSSAEQRAGRAGREAPGRVYRCWSRTDHARLEDHAAPEVAIADLAAFALDLAAWGAPGGDGLALLDAPPTPAMSAATTLLRSFGALDDGGRITERGRRMARFGVHPRLARALLDGTPRVGAARAREVVALLSDDTGGGTGDDLPARWRALRRGEDRGATDRWRREVERLGRGAPDDVARDGPAPRGADGVPDDLAAGIVVGLAYPDRIARARGTGSVSYQMSGGTGAALDARSPLRPATWLAVAVADRAPGRADARIRSAAPIDEATAREVAADLVETSDRIRWDDDRVVTRRVESLGAIVLNDVPLARPDPLLVQAAARDGLRRSGLSVLRWSQGALGLRERLAFCHAHLGAPWPAVDDDALLAGLDDWLGPELAGVRDGRDLARIDVLSGLRRLLPWPAATRLDELAPERLRVPSGSQVRLTYDGAEPPVLAVKLQEVFGWTTTPAVADGRVPVVLHLLSPARRPVAITSDLTSFWQQGYSQVRADLRGRYPRHPWPEDPLAAAPTARPTRRR				NA	NA	NA	NA	NA
AK001_02105	951	pdxS	COG0214	Pyridoxal 5'-phosphate synthase subunit PdxS	GTGCTCGAAGAACTCTGTGAGGTTGCGTTGAGCGAGACCACCGGGACACCTGCCCCCTCCACGGGCGTCGGCGAGGTGGGCACGGCCCGCGTCAAGCGCGGGATGGCCGAGATGCTCACCGGGGGCGTCATCATGGACGTCGTCACCCCCGAGCAGGCGAAGATCGCCGAGGACGCCGGCGCCGTCGCGGTCATGGCGCTCGAGCGGGTCCCCGCGGACATCCGCGCCCAGGGCGGTCTGGCGCGGATGAGCGACCCGGACATGATCGAGGGCATCATCGACGCGGTGTCGGTGCCGGTCATGGCGAAGGCCCGCATCGGCCACTTCGTCGAGGCGCAGGTGCTGCAGTCGCTCGGCGTCGACTACGTCGACGAGTCCGAGGTGCTGTCGCCGGCCGACTACACCAACCACATCGACAAGTGGCAGTTCACCGTGCCGTTCGTGTGCGGGGCGACCAACCTGGGCGAGGCGCTGCGCCGCATCACCGAGGGTGCGGCGATGATCCGCTCCAAGGGCGAGGCCGGCACCGGAGACGTGTCCAACGCCACGACCCACATGCGGCAGATCCGTCAGGAGATCCGGCGGCTGACGTCGCTGCCCACCGACGAGCTGTTCGTCGCCGCCAAGGAGCTGCAGGCGCCCTACCAGCTGGTCGCCGAGGTGGCGCGGACGGGCAAGCTCCCCGTGGTGCTCTTCACCGCCGGCGGGATCGCCACCCCGGCCGACGCCGCGATGATGATGCAGCTCGGTGCCGAGGGTGTCTTCGTCGGGTCCGGGATCTTCAAGTCGGGCGACCCGGCCTCGCGTGCCAAGGCCATCGTGCAGGCCACCACCTTCCACGACGACCCGGACGTCATCGCCAAGGTCTCGCGAGGGCTGGGGGAGGCCATGGTCGGCATCAACGTCGAGGAGGACCCCGAGCCGGTGCGGCTCGCCGAGCGCGGCTGGTGA	MLEELCEVALSETTGTPAPSTGVGEVGTARVKRGMAEMLTGGVIMDVVTPEQAKIAEDAGAVAVMALERVPADIRAQGGLARMSDPDMIEGIIDAVSVPVMAKARIGHFVEAQVLQSLGVDYVDESEVLSPADYTNHIDKWQFTVPFVCGATNLGEALRRITEGAAMIRSKGEAGTGDVSNATTHMRQIRQEIRRLTSLPTDELFVAAKELQAPYQLVAEVARTGKLPVVLFTAGGIATPADAAMMMQLGAEGVFVGSGIFKSGDPASRAKAIVQATTFHDDPDVIAKVSRGLGEAMVGINVEEDPEPVRLAERGW	PGPT0009180_540	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009180-pdxS|pdx1|yaaD-K06215	NA	NA
AK001_02106	600			hypothetical protein	ATGACCTGGAGCTGGTCCGAGACGGCGCTGCTCGTCGTCGTCCTCCTCGGGCTCGTGCTGTGGCTGGTCTGGCTCACGGCCTCGCGCCTGGACCGGCTGCACCGCAAGGTCGTCGCGTCCCGGCACGCGCTGCAGGCACAGCTCGACCGCCGCGGGCGGGTGTGCGTGGACCTGGCCTCCTCGGGGCTGCTGGACCCGGCCAGCGCGGTGCTGCTCGCCGACGCCGCCCTGGCCGCGCTCGACTCCCCGGACCGTCCCGCCGAGCCGCGACCGAGCGAGGCGTTCGCCCTGACGGGCCTCCCGGCGGAGCGCGAGCGCGCCGAGTCGGCCCTGTCGATGACGCTGCGCTCCGTGCTCGAGGACCCCGACGACGTCGCCGAGCTGCGGAGCACGGCCACCGGTGACGACCTGGTCGGCGACCTGTACTCGTCCTGGTACCGGGCCCAGCTCGCCCGGCGGTTCCACAACGAGGCGGTGGCCCAGGCACGGCGGGCCCGCCGTCCGCGCGCCGTGCGCTGGCTGCGCCTCGCGGGCAGGGCGCCGCTGCCGCGCACGGTGGAGCTCGACGACCAGATGCCGGCCGGGCTCGAGGGGGCCTGA	MTWSWSETALLVVVLLGLVLWLVWLTASRLDRLHRKVVASRHALQAQLDRRGRVCVDLASSGLLDPASAVLLADAALAALDSPDRPAEPRPSEAFALTGLPAERERAESALSMTLRSVLEDPDDVAELRSTATGDDLVGDLYSSWYRAQLARRFHNEAVAQARRARRPRAVRWLRLAGRAPLPRTVELDDQMPAGLEGA				NA	NA	NA	NA	NA
AK001_02107	1221	pimA_3	COG0438	Phosphatidyl-myo-inositol mannosyltransferase	ATGCGGCCCCTGCGCGTGGGCATCGTGTGCCCCTACTCCTTCGACGCCCCCGGCGGCGTGCAGTTCCACGTGCGCGACCTCGCCGAGGCGCTGCGCGACGGCGGCCACGAGGTCTCCGTCCTGGCCCCGGCCGACGAGGACACCGAGGTGCCCGACGTCGTCACCCCGGCCGGCCGCGCGGTCCCGGTGCGCTACAACGGCTCGGTCGCGCGCCTGGCCTTCGGGCCCCGCGCCGCCGCTCGCGTGCGGCGCTGGATCGACGCGGGGCGGTTCGACGTGCTGCACCTGCACGAACCCATGACCCCGTCGCTGTCCATGCTGGCCCTGTGGGTCGCCGACGGCCCCGTGGTGGCGACCTTCCACACCTCCCAGGTGCGGTCGCGCGCCCTGCAGATCGCGCACCCGCTGCTGCGCCAGTCGCTGGAGAAGATCTCGGCGCGCATCGCGGTGTCCGAGGACGCGCGCCGCACGCTGGTCGAGCACCTCGGCGGGGACGCCGTCGTGGTGCCCAACGGGGTGTACGTCGACGACTTCGACGTGCCGCCCGCGCCCCGCTGGCAGGGCACGCCGGAGGCGCCCACCGTGGCGTTCCTCGGCCGGCTCGACGAGCCGCGCAAGGGGCTGCAGGTCCTGGCCGCCGCCGCACCCCGCATCCTGGCCGAGGTGCCGGGCGCCCGCTTCCTCGTCGCCGGGCGCGGCGACGAGGGTCGTGCCGACGCCGAGGCCGCCCTGGGCGAGCACGCCGGCGCGTTCGAGTGGCTCGGCGGCGTCAGCGACGCCGACAAGGCCACGCTGCTGGCGTCCGCGGACCTCTACATCGCCCCGCAGACGGGCGGCGAGAGCTTCGGCATCGTCCTGGTCGAGGCGATGAGCGCCGGCGCCGGCGTCGTCGCCAGCGACCTGGGCGCGTTCCGCCGTGTGCTCGACGACGGTGCCGCCGGACGCCTGTTCCGCACCGGCGACCCGCAGGACCTGGCCGCCACGGTCCTGGCGGCGCTCGCGGACCCGGACGGGACCGAGGAGCGCCGACGGCGGGCCCACCGGTTCGTGCGCGGCTTCGACTGGTCGCAGGTCACCGCCCGGGTGCTGGCCGTGTACGAGATGGCCGTGGCCGCGTCCGAGGCGCTCGGCGACGGTGCGGTGCGCCAGGACCTGCTCGCCGGGCGGGCCACGTGGCTCCTGGGCCGCGGTCCGCGCCTGCGCGGAGGGGAGGACCGATGA	MRPLRVGIVCPYSFDAPGGVQFHVRDLAEALRDGGHEVSVLAPADEDTEVPDVVTPAGRAVPVRYNGSVARLAFGPRAAARVRRWIDAGRFDVLHLHEPMTPSLSMLALWVADGPVVATFHTSQVRSRALQIAHPLLRQSLEKISARIAVSEDARRTLVEHLGGDAVVVPNGVYVDDFDVPPAPRWQGTPEAPTVAFLGRLDEPRKGLQVLAAAAPRILAEVPGARFLVAGRGDEGRADAEAALGEHAGAFEWLGGVSDADKATLLASADLYIAPQTGGESFGIVLVEAMSAGAGVVASDLGAFRRVLDDGAAGRLFRTGDPQDLAATVLAALADPDGTEERRRRAHRFVRGFDWSQVTARVLAVYEMAVAASEALGDGAVRQDLLAGRATWLLGRGPRLRGGEDR	PGPT0024295_28	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024295-pimA-K08256	NA	NA
AK001_02108	951		COG1560	Phosphatidylinositol mannoside acyltransferase	ATGGACGTCGCCGCGCTGTACACGTTCGCCTGGCGGCACGCCCACCGGGTGCCCGAACCGGTGCTGCGGGCGGCCGCCACCCTGGCCGCGGACCTGACCTGGCTGCGCCACGGCGCCGGGGTGCGCCGGCTGGAGGCGAACTACGCCCGTATCCGGCCCGACCTGGACGCCCGGGCCGTACGCCGGCTGTCCCGCGAGGGCATGCGCCGCTACCTGCGCTACTTCCGCGAGGCGTTCACCCTCCAGGGCGCCGACGCCGACCAGCTCGCCGCCCGCGTGCGCGCCGAGGGCGAGGAGAACGTCCGGCCGGTGCTCGACGACGGCGGCTCGGTGGTGCTGGCACTGACGCACGCGGGCAACTGGGACCTCGCCGGCGCGTGGGCGACCCCGCACCTGGCGCCCGTGCTGACGGTGGCCGAACGGCTCGAGCCCGCCGCGCTGTTCACCGAGTTCGTCGCGTTCCGCCGCTCGATCGGCATCGACGTGCTGGCCCTGGGCGACGACGGGGTCTTCCGCGACCTCGTGCGCGGCGCCGAGGACGGCCCCCGGCTCGTCCCGCTGCTGGCCGACCGGGACCTGACGGCCAGGGGCGTCGAGGTCGACCTGCGCGGTCACCGCGCGCGCGTCGCGGCGGGCCCCGCCGCTCTCGCCCTGGCCGCCGGTGCCCCGCTGGTCCCCGTGGGCGTCTTCCACGAGCGCCTGCACGGCGAGCGTCGTCGGCGGGCCGGGTCGGCCTGGGGGATCGTCATCCGGTTCCTGCCGCCGGTCCCGGTGCCCGACGCCGGCGACCGCCGCACCCAGATCGCCCGGCTCACCCAGGGCTGGGTGGACGCCGTGGGGGAGTTCCTCGTCGAGCGCACGGCCGACTGGCACATGCTGCAGAAGGTCTTCGTCGACGACCTCGACCCCGAGCGCTACGCCCGGACCAGGGCGCGGGCGGGGGAGATCTGA	MDVAALYTFAWRHAHRVPEPVLRAAATLAADLTWLRHGAGVRRLEANYARIRPDLDARAVRRLSREGMRRYLRYFREAFTLQGADADQLAARVRAEGEENVRPVLDDGGSVVLALTHAGNWDLAGAWATPHLAPVLTVAERLEPAALFTEFVAFRRSIGIDVLALGDDGVFRDLVRGAEDGPRLVPLLADRDLTARGVEVDLRGHRARVAAGPAALALAAGAPLVPVGVFHERLHGERRRRAGSAWGIVIRFLPPVPVPDAGDRRTQIARLTQGWVDAVGEFLVERTADWHMLQKVFVDDLDPERYARTRARAGEI	PGPT0024265_242	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_PIM_ANCHOR,PGPT0024265-ptfP1-K22311	NA	NA
AK001_02109	639	pgsA2_2	COG0558	Phosphatidylinositol phosphate synthase	ATGTTCGGCCGCCTGCGGGCCACCATGCAGCGACTGTTCACCCCGCTGGCGCACCTGCTGCTCCGCCGGGGAGTGTCCCCGGACGCGGTGACCGTCGCCGGGACCGTCGTCGTGACCGTGCTCGCCCTGACCCTGCTGCCGACCGGTCATCTGCTGCTCGGCGGGATCCTCGTCGGGCTGTTCGCCCTGACCGACTCGCTCGACGGCGTGATGGCGCGCCTCAGCGGGCGGACCGGTCCCTGGGGCGCGTTCCTGGACTCGACCCTGGACCGGATCTCCGACGGCGCCGTCTTCGCGGGCATCACCCTGTGGTTCGTGCTGCACCCCGAGGTGCCGTACGCCACGTGGGGCACGACGGCCGCCCTGGCCTGCCTCGTGCTGGGCTCGGTGGTGCCGTACGCGCGGGCGCGCGCCGAGTCGGTGGGGGCGACGGCGGACGTCGGCATCGCCGCGCGCACCGACCGCCTGGTGATCGCCCTGGCGCCCACCGCGTTCGTGCAGGTCGGGCTGCCCGTCCTGGTGACCGTCGTGGTGCTGACCCTGCTGGCGGCGGCGAGCCTGGTCACCGTGGTGCAGCGCATCGCGACGGTCCGCCGCCAGATCCACCTGGGCGGACGCCCGGACCTCGAGGAGGCCTGA	MFGRLRATMQRLFTPLAHLLLRRGVSPDAVTVAGTVVVTVLALTLLPTGHLLLGGILVGLFALTDSLDGVMARLSGRTGPWGAFLDSTLDRISDGAVFAGITLWFVLHPEVPYATWGTTAALACLVLGSVVPYARARAESVGATADVGIAARTDRLVIALAPTAFVQVGLPVLVTVVVLTLLAAASLVTVVQRIATVRRQIHLGGRPDLEEA	PGPT0007705_1963	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995	NA	NA
AK001_02110	564		COG0537	AP-4-A phosphorylase	GTGACGGACCCGGAGACCGGACCCGAGCTGGTGCCGGCGGACCGGTTCGGCCCGCCGGAGGACGACATGGCGCGGCTGTGGACGCCGCACCGCATGGTCTACATCGGTGGGCAGGACAAGCCGGCCGACTCCTCGGTGGCGCAGTGCCCGTTCTGCCGCATCCCGGCGGGCGACGACGCCGACGGCCTCCTCGTCGCCCGGGGGACGACGTGCTACGTGGTGCTGAACCTGTACCCGTACAACAGCGCCCACCTGATGGTGCTGCCCTACCGGCACGTCTCGGACTACCCGGACCTGACGCCGGAGGAGACGCTCGAGCTGGCCGAGCTGACGCAGACGGCGATGCAGGTCGTGCGGCAGGTCTACGCCCCGGCCGGGTTCAACCTCGGGATGAACCAGGGCGAGGTCGCCGGGGCCGGCATCGCCGCGCACCTGCACCAGCACGTGGTGCCCCGCTGGCTCGGCGACGCGAACTTCCTGCCCGTGGTCGGGCGGACGAAGTCGCTGCCGGAGCTCCTCGCGGACACCCGGGAGCGCCTCTCCGCGGCGTGGCCCGCCGCCTGA	MTDPETGPELVPADRFGPPEDDMARLWTPHRMVYIGGQDKPADSSVAQCPFCRIPAGDDADGLLVARGTTCYVVLNLYPYNSAHLMVLPYRHVSDYPDLTPEETLELAELTQTAMQVVRQVYAPAGFNLGMNQGEVAGAGIAAHLHQHVVPRWLGDANFLPVVGRTKSLPELLADTRERLSAAWPAA	PGPT0021690_498	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021690-hit-K19710	NA	NA
AK001_02111	2016	thrS	COG0441	Threonine--tRNA ligase	GTGTCCGACGTCGTCGCGAACCCCACCCGGCCCTCTGATGCGGTGACGGTGGAGACCACGACCACGGGCACCGAGCTCTTCGCCGGCCGGCGCGAGGTGGTGGTGATGCGCGTCGACGGCGAGCTGCTGGACCTGTCCCGCGAGCTCGTGGCCGGCACCGTCGTCGAGCCCGTGACCGTCGACTCGCCGGACGGCCTGGCGGTGCTGCGCCACAGTGCGGCGCACGTGCTGGCCCAGGCGGTGCAGCAGGTGAACCCCGACGCGCGGCTCGGTATCGGCCCGCCGGTGACCGACGGCTTCTACTACGACTTCGACGTCGTCGAGCCGTTCACCCCCGAGGACCTCAAGAAGCTCGACAAGGTGATGGCCCGCATCGTCAAGGAGGGCCAGACCTTCCGCCGTCGCGTGGTGACCGAGGACGAGGCCCGCGCCGAGCTGGCCGCCGAGCCGTACAAGCTCGAGCTCATCGGGCTCAAGGGAGGCTCCTCCGACGAGGACGGATCGTCGGTCGAGGTCGGCGGCGGCGAGCTGACCATCTACGACAACGTGCGCGGCGCCGGTCGTGACAGCGAGCAGGTCGTCTGGTCCGACCTGTGCCGGGGACCGCACCTGCCCTCGACGAAGCTCATCGGCAACGGCGTGCAGCTCATGCGCTCGGCGGCGGCCTACTGGCGCGGCAGCGAGAAGAACCCGCAGCTGCAGCGGGTCTACGGCACCGCCTGGCCGAGCAAGGACGAGCTCAAGGCCTACCTCGAGCGCCTCGCCGAGGCAGAGCGCCGCGACCACCGGCGTCTGGGCAGCGAGCTGGACCTGTTCAGCTTCCCCGACGAGATCGGGTCCGGGCTGGCGGTGTTCCACCCCAAGGGCGGCATCGTGCGCACCGAGATGGAGGACTACTCCCGGCGCAAGCACGTCGAGGGCGGCTACTCGTTCGTGGCGAGCCCGCACATCACCAAGGGCCAGCTCTTCGAGACCTCCGGGCACCTGGACTGGTACGCGGACGGGATGTACCCGCCCATGCACCTGGACGCCGAGCTCGACGACGACGGCACCGTGCGCAAGCCCGGCCAGGACTACTACCTCAAGCCGATGAACTGCCCGATGCACAACCTGATCTTCGACTCGCGCGGTCGCTCCTACCGCGAGCTGCCGCTGCGCCTGTTCGAGTTCGGGACCGTCTACCGGTACGAGAAGTCCGGCGTCGTGCACGGGCTGACCCGCGCCCGCGGCTTCACCCAGGACGACGCGCACATCTACTGCACCCGCGACCAGATGCGCGACGAGCTCGCCACCACGCTGACCTTCGTCCTGGACCTGCTCAAGGACTACGGCCTGGACGACTTCTACCTCGAGCTGTCCACCCGCGACCCGGAGAAGTCGGTCGGCCACGACGAGGCCTGGGAGGAGGCGACCCGCACCCTGGAGGAGGTCGCCACCGCCTCCGGCCTGGACCTCGTGCCGGACCCGGGCGGGGCCGCCTTCTACGGCCCGAAGATCTCGGTGCAGGCCAAGGACGCCATCGGCCGCACCTGGCAGATGTCGACGATCCAGCTCGACTTCAACCTGCCGGAGAAGTTCGACCTGGAGTACACCGCCGCGGACGGCACCCGGCAGCGCCCGGTGATGATCCACCGCGCGCTCTTCGGCTCCATCGAACGGTTCTTCGCCGTCCTGCTCGAGCACTACGCCGGGGCCTTCCCGGCCTGGCTCGCCCCCGTGCAGGTACTGGCCGTGCCCGTGGCCGAGGCCTTCGACGACTACCTGGGCGACGTGGTGGCCCGGCTGCGGGCCCAGGGCATCCGGGCCGAGCTCGACGTCTCCGACGACCGGTTCGGCAAGAAGATCCGCAACGCGGCCAAGCAGAAGGTGCCGTTCGTCCTCATCGCCGGGGGAGAGGACGCCGAGGCCGGCGCGGTCTCGTTCCGGTTCCGCGACGGGACCCAGGAGAACGGCGTGCCGGTGGACCAGGCCGTCGAGCGCATCGTCACCGCCGTCCGCGAGCGCGAGCAGGTCTGA	MSDVVANPTRPSDAVTVETTTTGTELFAGRREVVVMRVDGELLDLSRELVAGTVVEPVTVDSPDGLAVLRHSAAHVLAQAVQQVNPDARLGIGPPVTDGFYYDFDVVEPFTPEDLKKLDKVMARIVKEGQTFRRRVVTEDEARAELAAEPYKLELIGLKGGSSDEDGSSVEVGGGELTIYDNVRGAGRDSEQVVWSDLCRGPHLPSTKLIGNGVQLMRSAAAYWRGSEKNPQLQRVYGTAWPSKDELKAYLERLAEAERRDHRRLGSELDLFSFPDEIGSGLAVFHPKGGIVRTEMEDYSRRKHVEGGYSFVASPHITKGQLFETSGHLDWYADGMYPPMHLDAELDDDGTVRKPGQDYYLKPMNCPMHNLIFDSRGRSYRELPLRLFEFGTVYRYEKSGVVHGLTRARGFTQDDAHIYCTRDQMRDELATTLTFVLDLLKDYGLDDFYLELSTRDPEKSVGHDEAWEEATRTLEEVATASGLDLVPDPGGAAFYGPKISVQAKDAIGRTWQMSTIQLDFNLPEKFDLEYTAADGTRQRPVMIHRALFGSIERFFAVLLEHYAGAFPAWLAPVQVLAVPVAEAFDDYLGDVVARLRAQGIRAELDVSDDRFGKKIRNAAKQKVPFVLIAGGEDAEAGAVSFRFRDGTQENGVPVDQAVERIVTAVREREQV				NA	NA	NA	NA	NA
AK001_02112	474			hypothetical protein	ATGACCACCATCGACCGCACCACGACCACCAGCACCACCGGCAACCGCGCGGTGCGCATCGTCGGCATCCTCGGCCTCGTCGCCGGGCTGGTGATGATCCTCGCCGGCGCCGTCACCTGGGCCACGGTCAGCTCGCAGCTCAGCGCCCAGAACATCACCGTCTCCGAGGACGCCGCGTTCCTCGGCGGGGACGTCGTCGACGGCCCGTTCTCCGCCTACGCCCAGGCGCAGATCATCGACGAGCACGCGCTGGCCGCGACGGACGGGCTCACCTACGCCGAGCTCGACCGCGAGGACCCGCTGCGCGACACCGCGATGAACGCCTCCTTCCTGCGGGCGTCGCTGTTCACCTCGGTCGTCGCCTACGGCGTGAGCGCGCTGGTCATCGGTCTCGGCGTCGTGGTCGGGGTCTTCGGCTGGTCGCTGCGCTCGCTGGCCGCCGAGCCGGCCGCGAAGCCCGCCGCCACCGCCTGA	MTTIDRTTTTSTTGNRAVRIVGILGLVAGLVMILAGAVTWATVSSQLSAQNITVSEDAAFLGGDVVDGPFSAYAQAQIIDEHALAATDGLTYAELDREDPLRDTAMNASFLRASLFTSVVAYGVSALVIGLGVVVGVFGWSLRSLAAEPAAKPAATA				NA	NA	NA	NA	NA
AK001_02113	807	udgB	COG1573	Type-5 uracil-DNA glycosylase	GTGGAGACCTCCGACGGATCCGGCGGCCCGCCCGCGGCGGCCCGGACGGCACCGACCCTCGACGAGCTCGACGCGCTCGTCGTCTCGTGCCGCGCCTGCCCTCGCCTCGTCGCCTGGCGCGAGCAGGTCGGCCGGGAGAAGCGCGCGGCGTTCCGCGACCAGACCTACTGGGCCCGCCCGGTCCCGGGCTTCGGCGACACCCGCGCCGCCGTCGTCGTCGTGGGCCTCGCCCCCGCCGCCCACGGCGCGAACCGCACGGGCCGCATGTTCACCGGCGACCGCAGCGGCGACTTCCTGTTCGCCGCGCTGCACCGCACCGGGTTCGCCAGCCGGCCCGACGCGACAGGGCGAGACGACGGCATGGTCCTCGACGGCGTGCGCCTGGTGGCGCCGGTGCGGTGCGTCCCGCCCGACAACCGGCCCACCCCTGACGAACGCCGCCGGTGCGCACCCTTCCTGGCCCGCGAGCTGGAGCTCCTCGCACCGACGCTGCAGGTCGCGGTCGCGCTCGGCGCCCTCGGCTGGAACGCGCTGCTCGCCGCCCTGGCCGGCCAGGGCTGGGCGGTGCCGCGGCCACGACCGCGGTTCGGGCACGGGGCCGCGATCGATCTCGCACCGGTCGACGGCGGACCGGGACGCCTCACGGTGCTCGGCAGCTACCACGTGTCCCCGCACAACACCTCGACGGGTCGGCTGACCCCCGCCATGCTCGACGCCGTGCTGGACCGGGCGGCGGCGCTCACCGGCCGGGGACGTCCCCCGGCTCCACCGGCTGCCCCGCCGACGGTGCGGCAGCCACCGCGGTGA	METSDGSGGPPAAARTAPTLDELDALVVSCRACPRLVAWREQVGREKRAAFRDQTYWARPVPGFGDTRAAVVVVGLAPAAHGANRTGRMFTGDRSGDFLFAALHRTGFASRPDATGRDDGMVLDGVRLVAPVRCVPPDNRPTPDERRRCAPFLARELELLAPTLQVAVALGALGWNALLAALAGQGWAVPRPRPRFGHGAAIDLAPVDGGPGRLTVLGSYHVSPHNTSTGRLTPAMLDAVLDRAAALTGRGRPPAPPAAPPTVRQPPR				NA	NA	NA	NA	NA
AK001_02114	540			hypothetical protein	GTGCTGCGCCGGCGCGACACGGGCGGCCGCGACCACGGGGTGCCCGTCGTGAGCACGCCGGCCGGCGGCTCGGGTGCCGCACCGCTCGTGTACCGGGTCTCGGCGCGATCCGTGGCCCGGGGCGACGCGGAGGTCGTCGCGGGCGGGACGGCCGTGCCGGTGGACGCGGCCTGGGCGTCGCCGCCGACCGGGGCGCCGGGTCCGGCGGACCTGCTCGGCGGGGCCTTCGCCGCCTGCCTGCTCAAGAACCTGGCGCGGTCCGGGGCGCTGCTGGACTTCGCCTACGACGCGGCCGCCGTCGACGTCGAGCTCCGGCGCCAGGACTCTCCGCCGCGGTTCGTGGCGATCCGCTACGACCTGCGGGTGGTCACCGAGGAGCCGGCCCGCCGGGTGGAGCTGGTGCACGCCAACCTGCGCAAGTTCGGCACGGTCTACAACACCCTGGCGGCGGTGTGCGAGGTCAGCGGCACCGTCACCGCGGTGGCTGCCGCACCGTCGGCGGGGCAGCCGGTGGAGCCGGGGGACGTCCCCGGCCGGTGA	MLRRRDTGGRDHGVPVVSTPAGGSGAAPLVYRVSARSVARGDAEVVAGGTAVPVDAAWASPPTGAPGPADLLGGAFAACLLKNLARSGALLDFAYDAAAVDVELRRQDSPPRFVAIRYDLRVVTEEPARRVELVHANLRKFGTVYNTLAAVCEVSGTVTAVAAAPSAGQPVEPGDVPGR				NA	NA	NA	NA	NA
AK001_02115	537			hypothetical protein	GTGACCCACGCACCCGATCGCGCCGAACCACCGCTCCGCGCCGACGAGGCGACGACGCTGCGCGCGTTCCTCGACTACCACCGGGACACGCTGCGCCGGAAGACGTCCCGGCTCACCGACGTCCAGCTGCGCACCCCGCTGGCGCCCTCGACGATGACGCTCGGCGGACTCCTCAAGCACCTGGCCTACGTCGAGAGCGTCTGGGTCGCGGTGCGACTGCGCGGCGGGGACCACCTGCCCCCGTTCGACACCGTCGACTGGTCGGACGACCCCGACTGGGACTGGCACTCCGCCGCCGACGACACCGGCGACGCGCTGCGCGCGCTGTACGACCGCACCGTCGCCGCGGTCGACGGGCTGCTCGACGCCGCCCTGGCCACCGACGGGCTCGAGCAGCTCTCCGTGCGGGAGGACCGGCACGGCGGCGGCTCGTTCAGCCTCCGCTGGATCCTGGTGCACCTCGTCGAGGAGTACGCCCGGCACAACGGTCACGCCGACCTGCTGCGCGAGGCGCTGGACGGGCAGACCGGGGAATAG	MTHAPDRAEPPLRADEATTLRAFLDYHRDTLRRKTSRLTDVQLRTPLAPSTMTLGGLLKHLAYVESVWVAVRLRGGDHLPPFDTVDWSDDPDWDWHSAADDTGDALRALYDRTVAAVDGLLDAALATDGLEQLSVREDRHGGGSFSLRWILVHLVEEYARHNGHADLLREALDGQTGE				NA	NA	NA	NA	NA
AK001_02116	1335	yfeO		Putative ion-transport protein YfeO	GTGACGACCGAGGACCAGGGAGCGCCGGCACCGCCGTCCGAGGAGACGCTGTCCGACGAGCAGCAGGCGGCCCGCACGCGCGGGTACGTCGGCGTGCTCCTGCTCGCCGCCGGGGTCGGCATCCCGGTGTCGCTCGTCGCCTTCGGCTTCCTGGCCCTCCTGCACGCCCTGGAGCACGCCGTCTGGGTCACCCTGCCCGAGGACCTGGGGTACGCCGACGTGCCCTGGTGGTGGGCCGTGCCGTGGCTCCTCCTCGGTGGCGTGCTGGTCGGCGTGGCGATCAAGTGGCTCCCGGGCAAGGGCGGCCACGTCCCCATCGACGGTCTGGGCATCGACCCGGTCGCCGCACGTGCCGTGCCGGGGATCCTCCTGGCCGCCCTCGGCGGCCTGCCGCTGGGTGTGGTCCTCGGCCCCGAGGCGCCGTTGCTCGCCCTCGGCTCCGCCTTCGCCCTCATCGTCGTGCGCCCGCTGGCCGCGCTCGAGGATCCGGCCGCCCGGGCGCTGATCACCCTCGCCGGTGCCGCGGCCGCGCTCGCCGCGATCTTCGGCAGCCCGCTGGTGGCCGCGATCTTCGTGCTGGAGGCCGCGGGGCTCGGCGGCCCCCGGCTGGCGCGGGTGGTGCTGCCCGCCCTGCTGTCCTCCGGCGTCGGCTTCCTCGTCTTCACCGGGATGGGGTCCTGGACGGGTCTGGAGATCGCCTCGCTGTCGCTCCCGCCGCTCGACGGCCCCGCCCGCCCGGACCTGGGCGACGTGCTGTGGACCGTGCCGTTCGCCGTCGCGACGGCCTTCGCCGTCCGGCAGGTGCACCACCTGGGGCGGTGGACCCGCACGCTCGCGTCGTCCCGTCCGATGGCGGCCGCGGTCGGCGCCGCGCTGGTCGTCGGCCTGAGCGCCGCCGCCTACTCGCTGCTCACCGGGCGCTCGCCCGAGGAGGTCACGCTCAGCGGCCAGGGCATGCTCGCCCCGCTGGCCTCCGACCCGGCCGCCTGGTCCGTCCCGGTGCTGATCGCGCTGATCGCGTTCAAGTCGCTCGGCTACGGGGTGTCGCTCGGGGCGCTGCGCGGCGGGGCGATCTTCCCCGCCGTGCTCCTCGGCGCGGCCGCGGGTGTGCTGGTGTCGGGCCTGCCCGGCTACGGGGCGATCCCCGCCATGGCGGCCGGCATGGCCGCCGCGACGGCCGCCGTGCTGCCGTACCCCGTGGCGTCCGCGGTGCTGGTGGTCATCCTGCTGGGCTCGAACGCCGCCGCGATGACGCCCGTGGTCCTCATCGCCGTCGTGGTGGCCTTCGTCTCCGAGCAGATCATCGCCACCCAGCGCGGCCGGCGCCCCGCCTGA	MTTEDQGAPAPPSEETLSDEQQAARTRGYVGVLLLAAGVGIPVSLVAFGFLALLHALEHAVWVTLPEDLGYADVPWWWAVPWLLLGGVLVGVAIKWLPGKGGHVPIDGLGIDPVAARAVPGILLAALGGLPLGVVLGPEAPLLALGSAFALIVVRPLAALEDPAARALITLAGAAAALAAIFGSPLVAAIFVLEAAGLGGPRLARVVLPALLSSGVGFLVFTGMGSWTGLEIASLSLPPLDGPARPDLGDVLWTVPFAVATAFAVRQVHHLGRWTRTLASSRPMAAAVGAALVVGLSAAAYSLLTGRSPEEVTLSGQGMLAPLASDPAAWSVPVLIALIAFKSLGYGVSLGALRGGAIFPAVLLGAAAGVLVSGLPGYGAIPAMAAGMAAATAAVLPYPVASAVLVVILLGSNAAAMTPVVLIAVVVAFVSEQIIATQRGRRPA				NA	NA	NA	NA	NA
AK001_02117	360			hypothetical protein	ATGGTCAGGAGAGTCGGCCGTCCGGGGCTGATCGGCACGATGGCGCGCACCGCCGTGATCGCCGGTACCGCGAACGCCGTGAGCCGGGGCATGAACAACCGTGCCGAAGCCCGGGGCGCCCAGCAGGCCTCGGCGGAGGCGTACAACGCCCAGCAGGCCCAGCTGGCCCAGCAGCAGCAGATGCAGCAGCTGCTCGCCCAGCAGGCCCAGCAGATGCAGCAGGCCCAGCCCGCGGCCCCGTCGCCGTCGGGCACCGGCAGCGACACGATGTCCCAGCTGCAGCAGCTCGGTGACATGCGCTCGGCCGGGTTGCTGACCGACGCCGAGTTCGCCGCCGCCAAGGCCAAGATCCTCGGCTGA	MVRRVGRPGLIGTMARTAVIAGTANAVSRGMNNRAEARGAQQASAEAYNAQQAQLAQQQQMQQLLAQQAQQMQQAQPAAPSPSGTGSDTMSQLQQLGDMRSAGLLTDAEFAAAKAKILG				NA	NA	NA	NA	NA
AK001_02118	420			hypothetical protein	ATGAAAGTCACCGCACCCGTGGAGCTCCTTCTGGTCGAGTTTCCGCACACCGAGTTCACCGGCGAGATCCTCGCCGAGCTGACCCGCCTGCAGGACGCCGGGACGATCAACGTCCTGGACGCCCTGGCGATCCGTCGGGACCTCGACGGCGACGTGGAGTGGCTCGAGGCCGTCGACGCCGGCTCCGAGCTCGGCGACCTCGTCGGCGAGCCCGCCGGCCTGCTCGCCGAGGACGACGTCGACGCCATCGCCGAGGACCTGGCACCGGGCAGCGCCGTCGGCATGCTGGTGTTCGAGCACACCTGGGCGACCGGGCTGGCCGGCGCCGTCCGCGACGCCGGCGGACGCCTGATCGACATGACGACCGTGCCCGCGGCCGCGATCGAGGAGCTCGCGGCCGCTCTGAGCGAGGAGGACTGA	MKVTAPVELLLVEFPHTEFTGEILAELTRLQDAGTINVLDALAIRRDLDGDVEWLEAVDAGSELGDLVGEPAGLLAEDDVDAIAEDLAPGSAVGMLVFEHTWATGLAGAVRDAGGRLIDMTTVPAAAIEELAAALSEED				NA	NA	NA	NA	NA
AK001_02119	213			hypothetical protein	GTGCCCCGCGAAGACACCCCCATCTACGACGCCCTCGCCCGCGAGTTCGAGACCGGGCGCCCGCTGCTGCACGTGGCGCGCGCGCTCGGCGGTGACCCCCTCGGCGACCCCCTGGCGCGGACGCGGGCCACCGAGGTGCGGTTCACCACCGAGGACGCGGACCGCCTGCCCCGTCGGTCGCGCCGGAACCGCCCGAGCGACGCCCGCGACTGA	MPREDTPIYDALAREFETGRPLLHVARALGGDPLGDPLARTRATEVRFTTEDADRLPRRSRRNRPSDARD				NA	NA	NA	NA	NA
AK001_02120	846			hypothetical protein	ATGCGTACGACCCGAACCACGGCCGCGATCGGGGCCACCGCGCTGGCCGCCGTCGCCGGCACCACCTTCGCCCTGCCCGCCTCCGCCGACGGACATGCCGCGATGCTGTCCGTCCTGCACGGCGTGCCGGACACGACCGTGGACGTGTACGTCAACGGTGACCTCACCCTGGACGACTTCGAGCCCGGCGACCTGGCCGGCCCCCTCGAGCTCGACCCGGACACCTACACGGTGGCCATCACCGCCGCGGACGCCGAAGACGACTCCGACCCGGTCATCGGGCCCGTCGACCTCCCGCTCGAGGGTGGCATGAGCTACACCGCCGCCGCGCACCTCGACGCCGAGGGATCGCCGACGGCGACGCTCTTCACCAACGACACCTCGGAGATCGCCGCCGGCGAGGGACGCCTGACCGTCCGGCACGTGGCTGCGGCCCCGGCCGTGGACGTCCTGGCCGGCGAGGACCCCGTCATCGAGGGCCTGGAGAACCCGGACGAGGCCGTGCTGGACCTGCCGGCCGGCACGGTGCCCGCCGCGGTGGCCGCCGCCGGGACCACCGACCCGGTGCTCGGGCCGGCCGACGTCGACGTCGCCGAGGGTGTCAACACGATCGTGTACGCCTGGGGTTCGCTCGAGGACGACTCGCTGGCCCTCGCGACGCAGACGGTCGAGGGCATGCACTCCGCTCCGGACGGCGTGGACGCCGGCACCACCGGCGCGGCCGCGACCGACCACCACGGGTTCTTCACGCCGTTCACCATCGGTGCGATCATGAGCCTGCTGGCCGGCTTCGTCATCGTGGTCGCTCTCCGGGAGGGCGTCCGGGCGCACCGGGCACGCCGGTGA	MRTTRTTAAIGATALAAVAGTTFALPASADGHAAMLSVLHGVPDTTVDVYVNGDLTLDDFEPGDLAGPLELDPDTYTVAITAADAEDDSDPVIGPVDLPLEGGMSYTAAAHLDAEGSPTATLFTNDTSEIAAGEGRLTVRHVAAAPAVDVLAGEDPVIEGLENPDEAVLDLPAGTVPAAVAAAGTTDPVLGPADVDVAEGVNTIVYAWGSLEDDSLALATQTVEGMHSAPDGVDAGTTGAAATDHHGFFTPFTIGAIMSLLAGFVIVVALREGVRAHRARR				NA	NA	NA	NA	NA
AK001_02121	765			hypothetical protein	GTGACACGCACGCACCGCACCGCGGCGGGCCGGGCCGTGCGCCCGGTCCGCCGCATCGCGGTCGCATCGGTGGTCGCTCTCGCCGTCTCGACGCTCGCCGGGGTCCTCCTGGTCGTCGGCGACGACACGGCGACGGTCGGGGCCGACGTCCCTCGGGCCGACGCGACGACGGTCACGACTCCCCCGGCGTCGTCGGCCCCGGCCACGCCGTCCGCTACACCGGAACCCGCGCAGCAGGACGGGGCGGACAGGACGCAGGACCGCAGCGGGCTCGACCTGCCGGACGTCCCCGTCGCGTCGGCCGCGCTGACCGAGGCGGCTCCCGCGCCGCCACCCGACCGGCTGGTGGTCCACGGACTGCTGGAGACACCCGTCCGCCCGGTGGGCGTGGACCCCGACGGCACGATGGAGCTCCCGGAATCGGGCGACGTGGCGGGCTGGTACCGCTTCGGCCCGGCGCCGGGAGACCCGCAGGGCGCGACGGTCCTCGCGTCCCACGTGGACACCCAGGACGGCGTCGGGCAGTTCGCCCGGCTCACCGAGGCCTCGGCGGGCGACGACATCACGGTGACCGACGCCGACGGGACCCGGCACCGGTACACCGTCACGGACATCACGCGCTACTCGAAGGAGGCGGTGCCCCTGGACCAGTTCTTCGACCGCTCGGGCGAGCGACGACTGGTGCTGGTCACCTGCGGCGGCCGCTGGGACGCCGAGGCCGGGCACTACGAGGACAACCTGGTGGTCACGGCCGTGGCGACGTGA	MTRTHRTAAGRAVRPVRRIAVASVVALAVSTLAGVLLVVGDDTATVGADVPRADATTVTTPPASSAPATPSATPEPAQQDGADRTQDRSGLDLPDVPVASAALTEAAPAPPPDRLVVHGLLETPVRPVGVDPDGTMELPESGDVAGWYRFGPAPGDPQGATVLASHVDTQDGVGQFARLTEASAGDDITVTDADGTRHRYTVTDITRYSKEAVPLDQFFDRSGERRLVLVTCGGRWDAEAGHYEDNLVVTAVAT				NA	NA	NA	NA	NA
AK001_02122	588	rpoE	COG1595	ECF RNA polymerase sigma factor RpoE	GTGACCACTGGGGCCGAAGGCGCCGCACCGGCGGCCGCCGACCCCGACGCAGACGTCCAGGCCGCGTTCGCGGCCGGGACCGAGGACGGCCTCGCGGCGGCCTACCGTCGCTGGTCGGCCCTGGTGCACACGGTCGCGCTGCGGTCACTGGGCGAGGCGTCGGACGCCGAGGACGTCACGCAGCAGGTGTTCGTCGCCGCCTGGCAGGCCCGGGGTTCGTTCGACCCCGGCCGGGCCAAGCTGTCGACGTGGCTGCTCGGCATCGCGCGGCACAAGATCGCCGACGTGCACGCCTCGCGCGAGAAGCTCCGACGGCAGCGCCAAGCCGCCGAGGCGTTCACGCCGAACCCCGTGGGAGAGAACGATCCCGTCGGTTCTCCCGTGGTGGACCGCGCGATCGTCACCGACGAGCTGGACCGTCTCGGCGACCCGGCCGGTACGATCCTGCGGCTCGCGTTCTACCGGGACATGACGCACACGCAGATCGCCGAGGAACTCTCACTGCCCCTCGGCACCGTCAAGAGCCATGTCAGACGAAGTCTGACCCGGCTGCGGACACGATTGGAGGTGGATGGTGCAGCACGTTGA	MTTGAEGAAPAAADPDADVQAAFAAGTEDGLAAAYRRWSALVHTVALRSLGEASDAEDVTQQVFVAAWQARGSFDPGRAKLSTWLLGIARHKIADVHASREKLRRQRQAAEAFTPNPVGENDPVGSPVVDRAIVTDELDRLGDPAGTILRLAFYRDMTHTQIAEELSLPLGTVKSHVRRSLTRLRTRLEVDGAAR	PGPT0014960_3907	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_02123	762			hypothetical protein	GTGCAGCACGTTGACCCTGAGCTCCTCGCGCTCCTCGCGCTCGGGGAGCAGGACGCGGTCTCCGACGACGAGCGCGCCCACCTCGAGGCGTGCCCGACCTGCCGGGCGGACCACGACGGCCTCGCCCAGGTGGCGACGACCGCGCGCGATCTCGGCCCCGACGAGCTGGTGGCGCCGCCGCCGGCCGTGTGGGACCGGATCCGCGCCGAGATCGCGGCCCCGGAGTCGGCCGACGGCGGTCCCACGGCCGGTGACGTCGAGGCCGCCGAGGCCGAGGTCGTCGACCTGGCCTCGCGCCGCCGCCCGGCGGCTCTCTGGGCCGCTGCCGCGGCGAGCGCGGCCCTGGTGGTGGGCGTCGGTGGCGGTGTCGCCTGGGAGCGCGCACGTGGTCCGCAGGAGACCCCGGCACCCACGCCCGTCGCGGTCGCGGAGGCCGAGCTCGAGGCGTTGCCCGACTGGCCCGGCTCCACGGGCAGCGCCACGGTCGCACAGGCCGCCGGCGGCGAGCGGGAGATCGTCGTCTCCGTCGCGGGGGCCGACGGGTCCACCGCGGACGCCTACCGCGAGGTGTGGCTCATCGCCGACGACCTGAGCGGCATGGTCAGCCTCGGCGTGCTCGAGGGCGACTCCGGCACGTTCCCGGTCCCCGAGGGCCTCGACCTGGAGCGCTACTCCCTGGTGGACGTCTCGGAGGAGCCGTTCGACGGCGACCCGACGCACTCGGGCGACTCCATCGTGCGCGGCGGCCTGACGCAGGCCTGA	MQHVDPELLALLALGEQDAVSDDERAHLEACPTCRADHDGLAQVATTARDLGPDELVAPPPAVWDRIRAEIAAPESADGGPTAGDVEAAEAEVVDLASRRRPAALWAAAAASAALVVGVGGGVAWERARGPQETPAPTPVAVAEAELEALPDWPGSTGSATVAQAAGGEREIVVSVAGADGSTADAYREVWLIADDLSGMVSLGVLEGDSGTFPVPEGLDLERYSLVDVSEEPFDGDPTHSGDSIVRGGLTQA				NA	NA	NA	NA	NA
AK001_02124	1041	adh_2		Alcohol dehydrogenase	ATGAAGGCTGTCCAGTACCGCGCCATCGGATCTCGACCAGAGGTCGTCGAGATCGACCGCCCGGACCCTGGTCCGGGCGAGGTCCTGCTGAAGGTCACCGCGTCCGGCCTGTGCCACTCGGACGTGTTCGTCATGGAGATGCCCGAGGAGTCCTACACCTACGGGCTGCCGCTCACGCTGGGGCACGAGGGCGCCGGCGTGGTCGAGGCGGTGGGCGAGGGCGTCGACCCCGACCTGGTCGGGACCGGCGTCGCGGTCTACGGCCCCTGGGGCTGCGGCACCTGCTACCGCTGCGCGGCGGGCGAGGAGAACTACTGCGAGCGCGCCACCGAGCTGGGGATCGCCCCGCCCGGGCTCGGCTCCCCCGGGTCGATGGCCGAGTACATGATCGTCGACTCCCCGCGGCACCTGGTGCCGATCGGCGACCTCGACCCGGTGCAGGCCGCGGCACTGACCGACGCCGGGCTGACGCCGTACCACGCCATCAAGCCCGCGCTGCCGCGACTCGTGCCGGGGTCCACGGCCGTCGTCCTCGGCGTCGGCGGTCTCGGCCACCTCGGCATCCAGATGATCAAGGAGCTCTCCGGCGCCCAGGTCGTCGCTCTCGATGTCACCGAGGACAAGCTGCAGCTCGCCCGCGACGTCGGCGCCGACCACGCGATCATGTCCGACGAGGACGCCGCGCAGAAGGTCTCGGAGCTCACCGGAGGGCGCGGGGCCGACCTCGTCGTGGACTTCGCCGGCGCCCAGGCGACCATCGACCTCGGCCAGCAGATGCTCGGCGTCGGCGGGCGGTTCACGCTCGTCGGCATCGCCGGCGGCGGGCCCGCCGCCAAGGTCGGGTTCTTCCAGGTGCCGTTCGAGTCGGAGTTCGTGGTGCCCTACTGGGGCTACCGGGACGAGCTGTTCGAGGTCCTGCGCCTGGCCCGGCAGGGACGGTTGACCGTCCACACCGAGGAGTTCGCGATCGACGACGCACCGGCCGCCTACGACAAGCTCTGGGACGGGACCCTGCGAGGTCGCGCCGTCGTCCGGCTCTGA	MKAVQYRAIGSRPEVVEIDRPDPGPGEVLLKVTASGLCHSDVFVMEMPEESYTYGLPLTLGHEGAGVVEAVGEGVDPDLVGTGVAVYGPWGCGTCYRCAAGEENYCERATELGIAPPGLGSPGSMAEYMIVDSPRHLVPIGDLDPVQAAALTDAGLTPYHAIKPALPRLVPGSTAVVLGVGGLGHLGIQMIKELSGAQVVALDVTEDKLQLARDVGADHAIMSDEDAAQKVSELTGGRGADLVVDFAGAQATIDLGQQMLGVGGRFTLVGIAGGGPAAKVGFFQVPFESEFVVPYWGYRDELFEVLRLARQGRLTVHTEEFAIDDAPAAYDKLWDGTLRGRAVVRL	PGPT0006365_1376	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953	NA	NA
AK001_02125	1644	ksdD	COG1053	3-oxosteroid 1-dehydrogenase	ATGGTCAACAGCTTCGACGACACCTACGACGTCGTCGTGGTCGGGTCGGGCGCCGCAGGTCTCACGGCTGCGCTGGGCGCGGTGGACGAGGGGCTCACCGTGCTGGTCGTGGAGAGCACCGAGAAGTGGGGCGGTAGCACGGCGATGTCCGGCGGCGGGCTCTGGCTGCCCGACAACCCGGTGATGCGGCGCCAGGAGGTCGGCGACTCCCGGGCGGAGGCGCTGGACTACCTCGAGCGGACCGTGGGCGACGAGGGCACCAGTACGTCGCGCGCCCGCAAGGAGGCGTTCGTCGACGGGGTCCAGGACTACGTCGAGACCGCGGAGAAGTACGGCGTGGAGTTCGTCCGCGCACGCAACTACCCAGACTACTATCCCGAGACCCCCGGCGGGAAGATCGGCCGCGCTGTGGAGGTCAAGCCCTTCAACGCCCGCCGGCTCGGCACCCTCGCCCGGACCCAGCGCGCGCTGCTCCCCCTGCCGGCCATGACCGACGACGTCTGGCAGCTGCAGCGCGCCTGGTCGACGTTCGACGGGTTCCTCCGCGGGGCGCGGTTCACCTTCCGCACCCTCGGCGCCCTGCTGACCGGGCAGCGGAAGATGGGCATCGGCGGAGCCCTGACCGGCGCCCTCGGGCACGCGGTCTTCGTCGAGCACGGCGTCCCGCTGTGGATGTCCTCCCCCGCCCAGCGACTGCTCACCGACGGTGGCGCCGTCGTGGGCGTGGAGGTGCTCCGCGACGGTTCCCCGGTGCGGGTCGAGGCCCGCCGGGGCGTCGTGCTCGCCACCGGCGGCTTCGACCACAACGCCCCGTGGCGGCGCAAGTACCACGGCGTCGAGAGCCACCCGTCGGGCAACCCCGGCAACCTCGGTCAGGGGCACGAGATGGCCGAGGAGGTCGACGCCGCGTTCGAGCTGATGGACGATGCGTGGTGGGGAGCGTCGGTCCGCCCGCCCGAGGGCCACCCCGCCTCCTTCCTGGTCGGCGAGCGCTCGCTGCCGTACTCGATCATCGTCGACAGCGAGGGCCGGCGGTTCACGAACGAGGCGGAGTCCTACGTCGACCTCGGACACAGGATGCTCGAGCACGACGCCGACGGCACCTACTGGTTCGTCCTCGACCGGCGCTTCGTCCGCCGCTACCTTCGGGCCTTCGCCATGGACCCCCGCGCGACGCGCGCCATGAAGGAGCAGGGCATCATCGTCGAGGCGGACACCCTCGCCGAGCTGGCCGACACCCTGGGCTTCGACCACGACGTGTTCCGCACCACCGTGCAGCGCTTCAACGGGTTCGCCCGCAGCGGCCGGGACCAGGACTTCGGTCGCGGGGACTCGGCCTACGACCGGTACTACGGCGACCCAACGGTCCGGCCCAACCCCTGTCTCGGCCCGCTGGAGAAGGGCCCGTTCGTGGCCTACGAGGTCGTGATCGGCGACCTCGGGACCAAGGGCGGCGTCGTCACCGACACCGAGGGCCGCGCGCTGCGCGAGGACGGCTCCGTCATCGCAGGTCTCTACGCGGCGGGCAACGCCTCGGCGTCCGTCATGGGCCGGACCTACCCGGGCCCCGGCTCCACGATCGGCCCGGCCTCGGTGTTCGGCCTGCGGGCCGCGCGCGACATGGGGCGGCGCGTCCCCCGGTAG	MVNSFDDTYDVVVVGSGAAGLTAALGAVDEGLTVLVVESTEKWGGSTAMSGGGLWLPDNPVMRRQEVGDSRAEALDYLERTVGDEGTSTSRARKEAFVDGVQDYVETAEKYGVEFVRARNYPDYYPETPGGKIGRAVEVKPFNARRLGTLARTQRALLPLPAMTDDVWQLQRAWSTFDGFLRGARFTFRTLGALLTGQRKMGIGGALTGALGHAVFVEHGVPLWMSSPAQRLLTDGGAVVGVEVLRDGSPVRVEARRGVVLATGGFDHNAPWRRKYHGVESHPSGNPGNLGQGHEMAEEVDAAFELMDDAWWGASVRPPEGHPASFLVGERSLPYSIIVDSEGRRFTNEAESYVDLGHRMLEHDADGTYWFVLDRRFVRRYLRAFAMDPRATRAMKEQGIIVEADTLAELADTLGFDHDVFRTTVQRFNGFARSGRDQDFGRGDSAYDRYYGDPTVRPNPCLGPLEKGPFVAYEVVIGDLGTKGGVVTDTEGRALREDGSVIAGLYAAGNASASVMGRTYPGPGSTIGPASVFGLRAARDMGRRVPR	PGPT0006680_683	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STEROID|DERIVATE_DEGRADATION	XENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898	NA	NA
AK001_02126	435			hypothetical protein	GTGCGGAGCCAGACGCACCCGTTCACCTACCGTGGGGTCGTGGAACGGTTCGAGGCGTCGGCGCTGACCCACATGCTCGTCGTGACAGACGTCGAACGCAGTCGCGACTGGTACGTCCGCGTGCTCGATGCTCAGGTGGTCGGCGAGTACGGCGGGACGTCCGTCGTGCTCCAGCTGCTGGCGAGCTGGATCCTGCTCGTGACGGGTGGAGGACCTGACGCAGGGAAGCCGACCGTGACCCTGGCCCCGCCCGCCGAGCCCGACCGCCCGAGCACCCAGATCATCTTCCGCGTCGACGACTGCGCTGGGCTCTACGAGCTCCTGTCGGAGCGTGGTGCAGAGTTCGTGGCCGCTCCCGACGTTCGTGACGGCGAGACACGCGCGTTCTTCCGCGATCCTGACGGCCATCTGTTCGAGATCTCTGAGCTCACCTGA	MRSQTHPFTYRGVVERFEASALTHMLVVTDVERSRDWYVRVLDAQVVGEYGGTSVVLQLLASWILLVTGGGPDAGKPTVTLAPPAEPDRPSTQIIFRVDDCAGLYELLSERGAEFVAAPDVRDGETRAFFRDPDGHLFEISELT	PGPT0013300_1750	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759	NA	NA
AK001_02127	288			hypothetical protein	GTGACCTCAAGAGACACTCCGCCGGTCGTCTCTGTCAAGACTTGGCTGTCTTCCCAGTTCACGCTCTCCGGGATTTCGTCCGGCTCGCCACTGTTGTCCCTGCTGGCCGCGATGCGCACCGCCCTAGCCAGCAACGTCCTGGACCCCGCCTCGATCATCATCGACGCCCGCCGCGCCGCTGAACCCCAGGTCGCCACCGTCACCAAGATCGATGCCCTGGCCCGCTACGACCGCCCCGCGCCCACCTTGGACAGCTACGACGCCCTGCTGGCCGGGAACGACCGATGA	MTSRDTPPVVSVKTWLSSQFTLSGISSGSPLLSLLAAMRTALASNVLDPASIIIDARRAAEPQVATVTKIDALARYDRPAPTLDSYDALLAGNDR				NA	NA	NA	NA	NA
AK001_02128	774			IS21 family transposase ISLxx3	ATGACCGGCAACGACGCCGCTCTGGCCGCGATCAACGTCGCCACCCGCAACCTCTACCTGGCCACCGTGCGCACCGAAGCGCAGCCCCTCGCAGACGCCGCCCTGCGCGAACAACAGTCCCACCTGGCCTACCTCGCCGACGTCCTTGCCGCCGAGGTCGACGCCCGAGCCGAACGCCGCCGGCAACGACGGATCAAGGAAGCCAAGTTCCCCCGCACCAAACGGCTCGCCGACTTCGACACCAGCTGCTCACCCATCGACGGCGCGACCCTGGCCGCCCTGGCCACCGGCACCTACCTCGAGGCCGGCCAGCCCGTCGTCCTGCTCGGCGACTCCGGAACCGGCAAGACCCACCTGCTCATCGCACTCGGCATCGCGGCCTGCCAGACGGGCAAAGCCGTGCGTTACACCACCTGCGCGAACCTCATCAACGAACTCGTCGAAGCCGCCGACGACCGCCAACTCGCCCGCACCGTGGCCCGCTACGGCTGCCTCGACCTCCTCCTGCTCGACGAGCTCGGCTACGTCCACGCCGACCCCCGCGGCGCCGAACTGCTCTTCCAGATCATGACCGAACGCGAAGAGAAAGCCTCCATCGCCATCGCGACCAACCTGCCCTTCAGCGAATGGGGCACCGTCTTCCCCGACCCCCGCCTCGTGGCCGCGATCGTCGACCGCATCACCTTCAACGCCCACATCCTGCAAACCGGCACCGAGTCCTACCGGCTCCGCACCTCCCAACACCGCCCCACCAGCCGGGGCCAAGATTCATGA	MTGNDAALAAINVATRNLYLATVRTEAQPLADAALREQQSHLAYLADVLAAEVDARAERRRQRRIKEAKFPRTKRLADFDTSCSPIDGATLAALATGTYLEAGQPVVLLGDSGTGKTHLLIALGIAACQTGKAVRYTTCANLINELVEAADDRQLARTVARYGCLDLLLLDELGYVHADPRGAELLFQIMTEREEKASIAIATNLPFSEWGTVFPDPRLVAAIVDRITFNAHILQTGTESYRLRTSQHRPTSRGQDS				NA	NA	NA	NA	NA
AK001_02129	366			IS256 family transposase ISGte1	GTGGGGCCAGAACACTTGACTACACGCACCTGGGAGCGGTTCACGCCGTTCCTGGCGTTCCCGCCGATGCTGCGCCGGGTCATCTACACCACGAACTCGATCGAGTCGCTGAACGACCAGCTACGCAAGATCATCAAGAACCGCGGCCACTTCCCGAACGACGACGCGGTCCGCAAGCTGTTGTGGCTGGCGATCTGCACCATCGAGGACAAGCGCGCCCGCGCCCGGGCCAAGGAACGCGGCCTGCCAGCCGGCAAGCGCAAGGCCTCCGGCAGGATCGTCGAGGGCCAGGTCACCACGAACTGGAAGCAGGCCCTGGCCCAACTCGCGCTCGCCTACCCCGAGCGCATCGACCCCTACCTCTGA	MGPEHLTTRTWERFTPFLAFPPMLRRVIYTTNSIESLNDQLRKIIKNRGHFPNDDAVRKLLWLAICTIEDKRARARAKERGLPAGKRKASGRIVEGQVTTNWKQALAQLALAYPERIDPYL	PGPT0030665_4297	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493	NA	NA
AK001_02130	873			hypothetical protein	ATGCGGCGGGCCGCGGAGACCTGGCCCACGGAGGAGGAGTTCGTCCAACAACCCGTTGGACGATTGCCGTGGGGGCACGTGACGGTGCTGCTCGACCGGCTCAAGACCCGTGAAGAGCGCGACTGGTACGCCGAGAGGGCGGTCGAGGACGGCTGGTCGCGCGCGGTACTCGAGCACCAGATCAAGGCGGACCTGCGCGGCGCCATCGGCGCAGCGCCGACGAACTTCACCGACGCCCTGGAAGCCCCGGACTCCGAGCTGGCGCAGCAGCTGGTCAAGGACCCCTACGTCTTCGAGCACCTGGCGATGGTCGAACGCGTCGCCGAGCGCGATGTCGAGCAGGCACTGATGGACCGGCTGCAAGACACGATGCTCGAACTGGGTCGCGGCATGGCATTCGTCGGCCGCCAGGTGCGCCTGAGCGTGCCCGACGACGCCAGCGACCGCGTCGACGAATTCTACGTCGACCTGCTGTTCTTCCACGTCGAGCAACTGCGCTACGTCGTGGTCGAACTCAAGATCGGGCCTTTCGAGCCCGCCCACGTCGGCCAGCTGGGCACCTACATCGCGATCGTCGACGACCAGATCCGTCGACCCGAGATCCACGCACCCACGATCGGGATCCTGCTGTGCACCGGCAAGTCGGGCCCGACGGTGCGGTACGCGTTGGCCAGTACCAGCGCGCCCGTCGCCGTCGCGGACTACCAAGGCCTGCCGGCAGACGCCCGCGGCGTGCTGCCCAGCGCGGCCGAGCTCGAGGCCGTCATCGAAGACGAACTCGACCACCGCCGTGACGATCCGGCCTCCATCGCTAGCCCTCACCCGACCTTGGGGTCTGGTGCCCGAGACGCACAAGAGCGGGCCCGCGCCTAA	MRRAAETWPTEEEFVQQPVGRLPWGHVTVLLDRLKTREERDWYAERAVEDGWSRAVLEHQIKADLRGAIGAAPTNFTDALEAPDSELAQQLVKDPYVFEHLAMVERVAERDVEQALMDRLQDTMLELGRGMAFVGRQVRLSVPDDASDRVDEFYVDLLFFHVEQLRYVVVELKIGPFEPAHVGQLGTYIAIVDDQIRRPEIHAPTIGILLCTGKSGPTVRYALASTSAPVAVADYQGLPADARGVLPSAAELEAVIEDELDHRRDDPASIASPHPTLGSGARDAQERARA				NA	NA	NA	NA	NA
AK001_02131	204			hypothetical protein	ATGTTCATTTCGGCAGAGTATGACGCCCTCTGGACTCTCGCCGTGGCGGCCATCTTCTCCGCACTAGTTCTGATGGTCTGCGCGATCGCCACCTGGATCGCCCGAGGGGGCAGAGATGGGTTGGGATGGCTTACGCTGGCCGTCTTCGCACCGGTGGTTGGACCCATAATCTTCCTTCGCCGGGCGCGAACTGAGCGGTCGTAG	MFISAEYDALWTLAVAAIFSALVLMVCAIATWIARGGRDGLGWLTLAVFAPVVGPIIFLRRARTERS				NA	NA	NA	NA	NA
AK001_02132	618			hypothetical protein	GTGATTGATCGCCCCGAGGTCGATGATGAGCAGTACTTCCGGGACATCATGGACCGCTACTCGGTACCGACCGCGACCCAAGATGAGTTGTTCGAGAAGCTTGATCGCGGCGTGGCATGGGATGCCAACGATCCCACCGCGGCGCCAGTCTCCGTCGAGACCAACGACGCCCTCGGTAAATCGGAGACCGTCAAGCGCTACGAGGATGGCTCCATCGCGGTCCTCTCCGTTCAGCAGCCGGCGGCGACGGATGGCATCATGCCAAGGCGGTGGCTCGGATGCGGGTACACCGTGCACCGGTCGACGTACAACACCGTCGACGACTGCTTTGTCGATTGGACCAGGGGCACGACGAAGATGAAGTTCGCCGTCGACGCCGAGATTTGGCACTCGGGGCGCGACAAGATTCTACGTGCGCACACTGGCAGCTACCGGTACGCCCAGGGGTGCGCTTCGGCATCGCTCAGCGTCAACCGCAAGACCGAGTCGACATCAGGCGCGCCGGCTCGGGCGTCGATGGTGATGGATGGAGATATCCTCTGCGCTGGTGGGGGGCGCTCGTACACGCTTGTCATTGAGTTGGAGAATGACAGGTTCAGCCACACGGCTGATTTCTAA	MIDRPEVDDEQYFRDIMDRYSVPTATQDELFEKLDRGVAWDANDPTAAPVSVETNDALGKSETVKRYEDGSIAVLSVQQPAATDGIMPRRWLGCGYTVHRSTYNTVDDCFVDWTRGTTKMKFAVDAEIWHSGRDKILRAHTGSYRYAQGCASASLSVNRKTESTSGAPARASMVMDGDILCAGGGRSYTLVIELENDRFSHTADF				NA	NA	NA	NA	NA
AK001_02133	444			hypothetical protein	ATGAGCGACTGGGGCGAAGACGACATCGGCACCCCGGACGACGTCGAGCCGGGCCACGAGGTTGGTGAGCCCGACGAGACCCCGCAGCTGTACTACGGGTCCGTCGACGAGTTCGTGCGCGACTACCTGCGCCACGTCTACCGGCGCCGCATCGACGGCCGCCACCGGTGCTGGGCCGGCCGCTGGTGGCAGCACCCTGAGGCCGTGATCCGGCTCGAAGCGCTCTGGCGGTCCTGGGAACACCTGCGCCTCGACCCCGCCACCGGCATGAGCGTGTGGTGGCGCGACCACGTCGACCATCACATGACCGTCCTGATGGATCCCGACGGTCCGTTCGCCACGGCGACCGAGGGCACCGAGAACGCCTCCAAGCGCGGCGAACCGTTGCCCTACATCGCTCCGCCGGCAGGCGTGTTCCCCGACGTCCGTGAGCACCAACCGTGA	MSDWGEDDIGTPDDVEPGHEVGEPDETPQLYYGSVDEFVRDYLRHVYRRRIDGRHRCWAGRWWQHPEAVIRLEALWRSWEHLRLDPATGMSVWWRDHVDHHMTVLMDPDGPFATATEGTENASKRGEPLPYIAPPAGVFPDVREHQP				NA	NA	NA	NA	NA
AK001_02134	1797			hypothetical protein	ATGAGCACCCCGAACAACCGCCGCCGAGACCCCGGCGGCCTGACCGGCGAGATGGCGCTGCTCTGGGTCGGCATCGTGCTGGTCGTGCTGGTCGTCGGATCGCTGTACTTCGCGATGCGGATCGGTCATCGCATCGCCGGTACCGGCGAGACCGTCCCGGCCAACCCCTTCGACGTGTTCTTCGGGATCCTCGACGGCGAGCTCGCGTGGCCGGGCACTCCCGGCTGGTGGGTGCTGGGTGTGGTGGCCTCCGTGATCCTGGTCCTGACCGTCGTGGCCACGGTCGCGATGACTCGGATGCGCCGTCGCCGCTCCCGGGTGGACCGCGCCGCGGCCTACATGGGCCGCGGCCGCGACGTCGCCGACCTGAGCCGCAAGAGCGCCGCCGCCAAGGCTCGCCGCCTGGGCGCCGGCGAGACCCCCGGGGTCCCGATCGGCCAGACCGTCGGCACGGGGCAGCCGCTGTTCGGCTCCTGGGAGGACATGCACATCGACATCTGGGGCCCGCGCACCGGCAAGACGACCTCCCGCGCGGTACCGGCGATCCTCGAGGCGCCAGGGTCGGTGCTGGTGACGTCGAACAAGCGCGACGTCGTCGACGCCACCCGCGACGTGCGCGCCGCGGCCGGGCCAGTGTGGGTCTTCGACCCGCAGGCGATCGCGCGCGAGGAACCGACGTGGTGGTGGAACCCGCTGTCCTACGTCACCGACGAGGTCCGCGCCGCCAAGCTCGCCGAGCACTTCGCCTCCGGGTCCCGCGACCCGGGCGCCAAGACCGACGCCTACTTCGACCCCGCCGGACAGGACCTGCTCGCCGGGCTGCTGCTGGCCGCGGCCCTGGACTCCCGACCGATCACCGACGTGTACTCCTGGCTGACCCGCCCCACCGACGAGACGGCCGTCGACATCCTGCGCGAGCACGGCTTCACCCTGACCTCGGACCAGGTCGCCGGCGTCGTGGCGGCCCCGGATAAGCAGCGCGGTGGCGTGTTCGGCACCGCCCAGCAGATGGCCTCGTGCCTGACGAACCGGCAGGTCGCCCGCTGGGTCACCCCGAACGGGCCGGCCGACGACCGCCCCCAGCTGCGGCCCGAGGACTTCGTGGGCGCCGAAGGCGGCACCCTGTACTCGCTGTCCAAGGAGGGGCGCGGCACCGCCGGACCCCTGGTCACCGCCCTGACCGTCGCCGTCGTCGAAGCCGCTGAAGAGCTCGCTGCCGCCTCCGCCGGCGGCCGGCTGGCCACGCCGCTGCTCGGCGTCCTGGACGAAGCCGCGAACGTGTGCCGGTGGCGCGAGCTGCCCAACCTGTACTCCCACTACGGCTCGCGCGGGATCGTGCTCATGACGATCTTGCAGTCCTGGTCCCAGGGCGTCGAGGTATGGGGAGAGTCCGGGATGAAGAAGCTGTGGAGCGCCTCCAACGTCAAGGTCTACGGCGGCGGCGTCTCCGAGACCGTCTTCCTCGAGGACCTGTCACGCATGATCGGCGACTACGACCGCCTGCAGTCCTCGACGTCGTCCGGTCGGGGACATCGCACCGTCTCCCAGCAGCTGCACCGTGAACGCATCCTCGACGTCGCCGACCTCGCCGCCCTGCCCAAGGGTCGCGCCGTGGTCCTGGCCTCCGGATCACGACCCACCCTGATCCGAACCAAGCCCTGGATGACCGGCCCGCACGCTGCCGCCGTGCAGGCGTCCCTCGACGCCCACGACCCGCAGGCCGCACGCACGATCCAGGAAGCGGAAGACTCGGTCGCCGAGGTGGAGGCCGACGAACTCGAAAGGACCACGGCATGA	MSTPNNRRRDPGGLTGEMALLWVGIVLVVLVVGSLYFAMRIGHRIAGTGETVPANPFDVFFGILDGELAWPGTPGWWVLGVVASVILVLTVVATVAMTRMRRRRSRVDRAAAYMGRGRDVADLSRKSAAAKARRLGAGETPGVPIGQTVGTGQPLFGSWEDMHIDIWGPRTGKTTSRAVPAILEAPGSVLVTSNKRDVVDATRDVRAAAGPVWVFDPQAIAREEPTWWWNPLSYVTDEVRAAKLAEHFASGSRDPGAKTDAYFDPAGQDLLAGLLLAAALDSRPITDVYSWLTRPTDETAVDILREHGFTLTSDQVAGVVAAPDKQRGGVFGTAQQMASCLTNRQVARWVTPNGPADDRPQLRPEDFVGAEGGTLYSLSKEGRGTAGPLVTALTVAVVEAAEELAAASAGGRLATPLLGVLDEAANVCRWRELPNLYSHYGSRGIVLMTILQSWSQGVEVWGESGMKKLWSASNVKVYGGGVSETVFLEDLSRMIGDYDRLQSSTSSGRGHRTVSQQLHRERILDVADLAALPKGRAVVLASGSRPTLIRTKPWMTGPHAAAVQASLDAHDPQAARTIQEAEDSVAEVEADELERTTA				NA	NA	NA	NA	NA
AK001_02135	1332			hypothetical protein	GTGCCGTTCGGGCGGCACATTCAGACCGGCGCGACGGTGTGCTGCGACCCGATCAGCTGGTACCAGCGTGCCAACCTCATCGGCAACCCGTCCGTGTTCTTCCTGGGTCGTCCCGGTCTGGGCAAGACGTCGGCGGTGATGCGCATGGCGGTCGGCCTGGCCGGCATGGGCGTCAGCCCACTGGTGCTCGGGGACACCCGGCCGGACTACATCCGGATGGTCGAGCAGCTCGGTGGTCAGGTGATCCCGCTCGGTCGCCACCGTGGCTCGCTGAATGTGCTCGATCCCGGGGAGGCCCCCCAGGCGGCGGCCCGACTGCGCTCGGCCGGGTACGACCAGGCCGCTGACGAGGTCCTGGCCGACGCCCAAGGACTGCGTCTGAACATGGTGCTGTCACTGATCACCGTGCTGCGCAAGAGCGAACCGACGGCACGCGAGAGCACAATCCTGTCGCGGGCCATCGACTGGCTTGACGAGCACCACGACCGCGTGCCGTTGATCCCGGACCTGCTGCAGGTGGTGCGTGCCGCGCCGCCCGAGCTGCGGGAGGCAGCGCTGGACCGCGGCACCACCTCGAAGTACCAGGCGATCACCGAAGAGCTCGAGGCCTCCCTCGTGGCGCTGTGCCCCGGTGGAAAGTTCGGCGACGTGTTCGCCCGACCGACCACGCAGCCGATGCGGCGTGACCGCGCCGTCGTCTACGACGTCTCGGCGACTCCGCAGTCCGATGCCGATCTGCGGGCGGTCGCCCTGCTGGCCTCCTGGTCGGCCGGCTTCGCCGTGGTCAAGACGGCCCAGACGCTGGCCGACTTCGATTTGGAGGCGCGTAGGCACTACTTCGTGATCCTCGACGAGCTGCACCAGGCGCTCAAGGCCGGCCCCGGCCTCGTCGATCGCGTCGACTACCTGACGCGGCTGAACCGCACCGTCGGCGTCGGCCTGGCGATGATCACCCACACCATGAAGGATCTGCGGTCCTTGCCCTACGAAGAGGACCGGCAGAAGGCCATGGGGTTCATCGAGCGGTCGGGCCTGGTCGTGTGCGGAGGCCTGCCGTTCAGCGAGAGGCCGCTGCTGTCCTCCATCGTGTCGCTGTCGGGCGCCGAGCAGGATCTGCTCGGCGGCTGGCAGGACCCGCCGGCGTGGGACTCCAAGGAGGGCCAGCAAGCACCTCCACCCGGGCGCGGCAAGTTCCTGGTCAAGGTCGGCGGCAGGCCCGGCATCCCGGTCGACCTGGTGCTCACCGCGGCCGAGCGGTCCCTGCACATGAGTGCGGCGCGCTGGACGGATCAGTCTCGCACCGGCCGCATCGAGGAAGGAACGCCAGCATGA	MPFGRHIQTGATVCCDPISWYQRANLIGNPSVFFLGRPGLGKTSAVMRMAVGLAGMGVSPLVLGDTRPDYIRMVEQLGGQVIPLGRHRGSLNVLDPGEAPQAAARLRSAGYDQAADEVLADAQGLRLNMVLSLITVLRKSEPTARESTILSRAIDWLDEHHDRVPLIPDLLQVVRAAPPELREAALDRGTTSKYQAITEELEASLVALCPGGKFGDVFARPTTQPMRRDRAVVYDVSATPQSDADLRAVALLASWSAGFAVVKTAQTLADFDLEARRHYFVILDELHQALKAGPGLVDRVDYLTRLNRTVGVGLAMITHTMKDLRSLPYEEDRQKAMGFIERSGLVVCGGLPFSERPLLSSIVSLSGAEQDLLGGWQDPPAWDSKEGQQAPPPGRGKFLVKVGGRPGIPVDLVLTAAERSLHMSAARWTDQSRTGRIEEGTPA				NA	NA	NA	NA	NA
AK001_02136	570			hypothetical protein	GTGACCGACACCGCCGAGTTCCCTCCCGACGACGACAACGGACACGAGCCCGGCCCGACCGGCTGGCTCACGCCCGAGGACCTCGCCTCCGTGCGTGCGCAGCTGCCCCTGGTGTACGTCGACGCCATCCCGGTCCGCGTCGACGACTCGGGCGACGTCGTCGCCGTGGGTCTGCTGCTGCGCGCCAGCCCGCTGGGCAACATGACCCGCGCCCTGGTGACGGGCCGGGTGCTGTACCACGAGCGCGTCCGCGACGCCCTGCTGCGCCACATCGAGAAGGACCTGGGTCCGGTGGCCCTCCCCCGGGTGCCTGCCTCCCCGCAGCCGTTCACGGTCGCTGAGTACTTCCCGACCCCGGGCATCACGCCGTTCCACGACCCGCGCCAGCACGCGATCTCGCTCGCCTATGTGGTGCCGGTGACGGGTGACTGCCGCCCGCAGCAGAACGCGCTCGACCTCGCCTGGCTCACGCCCGAGGAGGCGTGCAGCGACACGGTCCAGGCCGAGATGGTCAACGGCCAGGGGGCTCTCGTGCGCCAGGCGATGGCGCACGTCGGCCGTCTCGACTGA	MTDTAEFPPDDDNGHEPGPTGWLTPEDLASVRAQLPLVYVDAIPVRVDDSGDVVAVGLLLRASPLGNMTRALVTGRVLYHERVRDALLRHIEKDLGPVALPRVPASPQPFTVAEYFPTPGITPFHDPRQHAISLAYVVPVTGDCRPQQNALDLAWLTPEEACSDTVQAEMVNGQGALVRQAMAHVGRLD				NA	NA	NA	NA	NA
AK001_02137	378	trxC	COG0526	Putative thioredoxin 2	ATGGCCACCGTCGAGCTCACCGACTCCACCTTCGAGCAGGCGATCAAGGACAACGACATCGTGCTGGTCGACTTCTGGGCCTCCTGGTGCGGCCCGTGCCGCCAGTTCGCGCCCGTCTTCGAGGCGTCGAGCGAGGAGAACCCCGACGTCGTGCACGGCAAGCTCGACACCGAGGCGCAGCAGCAGATCGCCGCCGCCGCCGGTGTCACCGCCATCCCGACGCTCATGGCGTTCCGCGAGGGCATCATGGTCTTCAACCAGGCCGGCGCCCTGCCCGCGCCCGCTCTGAAGCAGGTCGTCGACGCGGTCAAGGACCTGGACATGGACGACGTCCGGGAGCAGATCGCCGCGGCGCAGGACGGCCAGCACCAGCACTGA	MATVELTDSTFEQAIKDNDIVLVDFWASWCGPCRQFAPVFEASSEENPDVVHGKLDTEAQQQIAAAAGVTAIPTLMAFREGIMVFNQAGALPAPALKQVVDAVKDLDMDDVREQIAAAQDGQHQH	PGPT0013055_3633	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671	NA	NA
AK001_02138	3498			hypothetical protein	ATGTCCACACCCTGGAACGACCCCGTACGCGCGCGCCGGACCGCAGCCCTGGCCACCCTCGCGATCCTGACCGGCGGCCTCGTGGCCACCGCCACCCCGGCCCACGCCGACGTCGTCGACGTGGGCGCCGGCAGCTACACGACCGACACCGTCGGCCCGACACCCCAAGGGTGCGCCGCCGTCGAGGCAGACCCCCGCGCGTTCGTCACGGACGACGCGCCCAGCACCCCGCTGCCCACCAACGACTGGTGGACCTCGCTGGCCTACAAGGTCTTCGACTGCTCGTTCAGCCCACCCCTGCACGCGCACCCGGCGAGCTATCTGCCCACGGCCGGCGGCCTGGGCATCTCCTACACCACCGAGGCGACCGTCACCGGTGACCCCGCCGGGGTCTCGGAGTACCACTACGAGTACGCCGAGGACCTGCGCGCCGGCGTCGTCGGCCTGGACGCCCCCCACGTGGCCGTCGGGGGCTGGACGGACTGGACGGTCGACCCGGTCTGGGACGACGGCGAGCAGTCGCTGCGCGCCACCATCGGCCACGGGCTGCCGATCTCCTGGTTCGAGGCGACCGGCGGCGACGCCCTGCTCACGCTCGCCGGCTCGCCCGACGTCTGGCTGGACGAGCCGGGCCGCGTCGGCCTGAGCGTCGGCGGCGCCGACTACCTGGCCGTCCTGCCGTCCGACGTGTCCTGGACGACGAGCGGCACGTCGCTGACGGCCCCGGCCGCGACCTTCGCCGTCGCCCTGCTGCCCGACGTCGGACCCGCCGCGCGGGACGACCTCGTCCAGACCTACACCGACGCCGCCCGCTCCCCCGTGACCGGCACCCGGGCCGACTACGCCTACGACGCCGGCGCCGGCGTCGTACGCACCACGTACCAGCTGGAGACCACGCCCTGGCCGGGGGCCGACGACGGCGGCACCGTCGCGGCGCTGTACCCGCACCAGAGCGCGTACCTCACCGGGGCGGAGGCCGCCGGGGCGACCTACACCTCGCCGCGTGGCGACATGGCCGTGCTCACCGGGACCGCGCAGTTCACCACGACCACCCCGTACACCGGCGTGCTGACCGAGCTGCCCGCGGTGGCGACGTCGTCCGGCGCCGAGCGCGACCGCCTCGAGGCGCTGCTGGACCAGCTCGGCGACCCCCTCGACCAGCAGAAGGCGGACACCTACTGGACCGGCAAGGCACTCGGTCGGGCGACCCGCGTCGTCGAGATCGCCGACCAGCTCGGCCGCACGGCTCAGCGCGACGCCGCGCTGGCCGACGTCCGCGCGGTGCTGACGGACTGGTTCACCGCCACCGCGGGCAAGACCGAGCAGGTCTTCGCCTATGACGACGACTGGGGCACGCTGGTCGGACACCCCGGCTCGTACGGCTCGGACACCGAGCTGAACGACCACCACTTCCACTACGGCTACTACATCGTCGCCGCGGCCACCCTGGCCCGGTTCGACCCGCAGTGGGCGGCCGACTACGGCGACATGGTGGACCTGCTGATCCGGGACGCGAACGGCTACGACCGTGCCGAGACCCGCTTCCCCTACCTGCGCGACTTCGACGTCTACGCCGGGCACGACTGGGCCTCGGGGCACGGTGCCTTCGCGGCCGGCAACAACCAGGAGTCGAGCTCGGAGGGCATGAACTTCGCCGGCGCCCTGATCCAGTGGGGCGAGGCCACCGGGGACACCGCGGTGCGCGACGCCGGGGTGTACCTCTACGCGACCCAGGCGGCGGCGATCCAGCGGTACTGGTTCGACGTCGACGGCGCGGCCTACCCCGAGAGCTTCGGGCACCCCGTGGTCGGCATGGTCTGGGGCGACGGCGGGTCGTACGCCACGTGGTTCAGCGCCGAGGCGGAGAAGATCCAGGGCATCAACACCCTGCCGATCACCGGCTCCCACCTCTATCTCGGGACCTCGCCCGCCACGGTGCGTGCCGCGTACGACCATCTGGAGCAGGTCAACGGCGGCCCCCCGACCGTCTGGCAGGACATCCTGTGGCAGTACCTCGCGCTCGGCGACGCCGACCGCGCCCTGTCGCTGCTGGAGTCGACGTCCTTCACCCCCGAGGAGGGAGAAACGCCCGCGCACACGTACCACTGGATCGCGAACCTGGCGGCGCTGGGGACTCTCGCGACGGACACCCGCGCCGACGACCCGCTGGCCGCGGCGTTCGACGGCGACCAGGGACGCACGTACGTCGCCTCCAACGTCACCGCCGCCGACCGGACGGTGACGTTCTCCGACGGCACCGTCGTCGACGTCCCGGCCGGCCAGGTGGTGGCCACGGGAGCGCACACCTTCGCCGGCGGCGACGCCACCGGTGGCCCGACGCCGAGCCCGACCCCGGAGCCGTCGGAGGAGCCCACACCGGAGCCCTCCGAGGATCCGTCGCCGACGCCGGACCCGACTCCGGAGCCCAGCCCGGAACCCAGTCCCGGGCCCAGCGAGGAACCGGGTGCAGGGCCGGTGCGCTACCTCGGCGACGACGGCTCCCTGCCCGCACAGGCCGGACCCGAGGCACGCATCCAGCTCACCTCCGCCGGTGGCCAGAACCACGACGGCACCCCGCACCAGCCCGCCGTCTTCGAGACCGCCGGACTCACCGGCACCCACACCGGCGAGACGACGACGTTCTCGCTCGCCGTCGACGCCGGCGACGACGTCGGCCAGGCCGTCCAGGCCCGCGTCAGCTACGACCTCACCGGCGACGGCACCTGGGACCGCATCGAGACCTACGGCTACTTCGCCACCGACCCCGTCCCCGGCGACGAGACCTACACCTCGCAGGGACGCCTCACGACGCAGGACGGCACCCTCGGCGACCTCGACGACGGCACCGTCCGCCTCGAGATCTGGAGCGCCCTGGGCACCGCCACCCCGACCGTGACCACCGGCCCCGACTCCACCCTCACCCTGCCGTTCACCGACCCGGCGGAGCCAGGTCCGGACCCGACCCCGGAGCCGTCGGAGGAGCCCAGCCCGGAACCCAGTCCCGGGCCCAGCGAGGAACCGGGTGCAGGGCCGGTGCGCTACCTCGACGACGACGGCTCCCTGCCCGCACAGGCCGGACCCGAGGCACGCATCCAGCTCACCTCCGCCGGTGGCCAGAACCACGACGGCACCCCGCACCAGCCCGCCGTCTTCGAGACCGCCGGACTCACCGGCACCCACACCGGCGAGACGACGACGTTCTCGCTCGCCGTCGACGCCGGCGACGACGTCGGCCAGGCCGTCCAGGCCCGCGTCAGCTACGACCTCACCGGCGACGGCACCTGGGACCGCATCGAGACCTACGGCTACTTCGCCACCGACCCCGTCCCCGGCGACGAGACCTACACCTCGCAGGGACGCCTCACGACGCAGGACGGCACCCTCGGCGACCTCGACGACGGCACCGTCCGCCTCGAGATCTGGAGCGCCCTGGGCACCGCCACCCCGACCGTGACCACCGGCCCCGACTCCACCCTCACCCTGCCGTTCGACGGCTGA	MSTPWNDPVRARRTAALATLAILTGGLVATATPAHADVVDVGAGSYTTDTVGPTPQGCAAVEADPRAFVTDDAPSTPLPTNDWWTSLAYKVFDCSFSPPLHAHPASYLPTAGGLGISYTTEATVTGDPAGVSEYHYEYAEDLRAGVVGLDAPHVAVGGWTDWTVDPVWDDGEQSLRATIGHGLPISWFEATGGDALLTLAGSPDVWLDEPGRVGLSVGGADYLAVLPSDVSWTTSGTSLTAPAATFAVALLPDVGPAARDDLVQTYTDAARSPVTGTRADYAYDAGAGVVRTTYQLETTPWPGADDGGTVAALYPHQSAYLTGAEAAGATYTSPRGDMAVLTGTAQFTTTTPYTGVLTELPAVATSSGAERDRLEALLDQLGDPLDQQKADTYWTGKALGRATRVVEIADQLGRTAQRDAALADVRAVLTDWFTATAGKTEQVFAYDDDWGTLVGHPGSYGSDTELNDHHFHYGYYIVAAATLARFDPQWAADYGDMVDLLIRDANGYDRAETRFPYLRDFDVYAGHDWASGHGAFAAGNNQESSSEGMNFAGALIQWGEATGDTAVRDAGVYLYATQAAAIQRYWFDVDGAAYPESFGHPVVGMVWGDGGSYATWFSAEAEKIQGINTLPITGSHLYLGTSPATVRAAYDHLEQVNGGPPTVWQDILWQYLALGDADRALSLLESTSFTPEEGETPAHTYHWIANLAALGTLATDTRADDPLAAAFDGDQGRTYVASNVTAADRTVTFSDGTVVDVPAGQVVATGAHTFAGGDATGGPTPSPTPEPSEEPTPEPSEDPSPTPDPTPEPSPEPSPGPSEEPGAGPVRYLGDDGSLPAQAGPEARIQLTSAGGQNHDGTPHQPAVFETAGLTGTHTGETTTFSLAVDAGDDVGQAVQARVSYDLTGDGTWDRIETYGYFATDPVPGDETYTSQGRLTTQDGTLGDLDDGTVRLEIWSALGTATPTVTTGPDSTLTLPFTDPAEPGPDPTPEPSEEPSPEPSPGPSEEPGAGPVRYLDDDGSLPAQAGPEARIQLTSAGGQNHDGTPHQPAVFETAGLTGTHTGETTTFSLAVDAGDDVGQAVQARVSYDLTGDGTWDRIETYGYFATDPVPGDETYTSQGRLTTQDGTLGDLDDGTVRLEIWSALGTATPTVTTGPDSTLTLPFDG				NA	NA	NA	NA	NA
AK001_02139	258			hypothetical protein	ATGTCCACGCTGAGCGAGTTCCTCAAGGCCCGGATCTCCGAGCTCCTGTCCCACGAGGGCAAGCACCGCGAGGAGCACGGCCACCCGCCGCTGACACCGGAACGCGAGGCGGAGCTGCGCGAGCTGCACACCCAGGCCGACCAGTACGAGCAGGGCCTGTTCGGCCCCGGGCAGGCGTCCTGGGTCGAGGGCCTGATGCGCGAACGTGCGGCCGACTTCTCCGACCACCCGGACTATCGCGACGAGTGGCGGCGCTGA	MSTLSEFLKARISELLSHEGKHREEHGHPPLTPEREAELRELHTQADQYEQGLFGPGQASWVEGLMRERAADFSDHPDYRDEWRR				NA	NA	NA	NA	NA
AK001_02141	483	bcp	COG1225	Putative peroxiredoxin	GTGACCCGTCTCGCCGCCGGCGACACCGCGCCCGACTTCACCCTGCCGACCGCCGACGGGAGCACCGTCTCGCTGGCCACGTTGCGACAGAGCGCCGAGCGGGGCGTGGTCGTCTACTTCTACCCCGCGGCCATGACCCCGGGGTGCACGAAGGAGGCCTGCGACTTCCGCGACTCGCTGGACGCCCTGCAGGGCGCCGGGTACGCCGTCGTCGGCATCTCCCCCGACGAGCCCGAGAAGCTCGCCCGGTTCGTCGAGCGCGACGCGCTGACCTACCCCCTCGCCTCGGACCCGGAGCACGAGGTCCTCGAGGCCTACGGCGCGTGGGGCGAGAAGAAGAACTACGGCCGCACCTACGTCGGGGTGATCCGCTCGACCGTCGTGGTCGGCGCCGACGGCACCGTCGAGCTCGCCCAGTACAACGTCAAGGCGACCGGGCACGTCGCCCGACTGCGCACCAAGCTCGGGCTCGACGCCGCCTGA	MTRLAAGDTAPDFTLPTADGSTVSLATLRQSAERGVVVYFYPAAMTPGCTKEACDFRDSLDALQGAGYAVVGISPDEPEKLARFVERDALTYPLASDPEHEVLEAYGAWGEKKNYGRTYVGVIRSTVVVGADGTVELAQYNVKATGHVARLRTKLGLDAA	PGPT0013120_2527	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564	NA	NA
AK001_02142	402	groS_1		10 kDa chaperonin	ATGCGGGGACGACGGCGGTTCTCGCGTAGCGTGGCCCTCGTGAGTTCCGCAGCACCTTCTCCCGCGTCGACGGGCGGCGAGGCCACCGAGCCGCTGCCGATCCGCATGCTCCACGACCGCGTCCTGGTCGACCCCGAGGTGGACTCGGCCGAGCGGCAGTCCGCGGCCGGTCTGGTCATCCCCGCCACCGCCACGGGACCGAAGCGCCTGGCGTGGGCGAAGGTCGTCGCCCAGGGCGAGCACGTCCGCCAGGTCGAGGTCGGCGATCGCGTGCTCTACGACCCCGAGGAGCGCGCCGAGGTCGAGCTCGGCGGGACCGACTACGTGCTGCTGCGCGAACGGGACGTGCACGCCGTCGCCGAGCGGTCCGACGAGAGCGGCGCGACGGGCCTGTACCTGTGA	MRGRRRFSRSVALVSSAAPSPASTGGEATEPLPIRMLHDRVLVDPEVDSAERQSAAGLVIPATATGPKRLAWAKVVAQGEHVRQVEVGDRVLYDPEERAEVELGGTDYVLLRERDVHAVAERSDESGATGLYL	PGPT0014565_2247	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078	NA	NA
AK001_02145	1644			hypothetical protein	ATGTCCGTCAGCCGACGACGTGCCGTCGCCGCAGGAACAGGCCTCACCCTGCTGGCGTCCGCACTCTCCCTCCCGGCCGCCTCGGCGGCACCCGACACCCCGGACCCCGCCGTGACCGGCCCGGTCCCCGCCACGACCGCCGTCGGGGACCCGGCCCACGGGTACCCCTTCCTCGCCACCGACGTCGACCTGGCCGACCACGGCTACGTCGAGCAGGAGTTCTTCCTCTCCGGCGAGGCGACCCGCTACGACGCCGACGGCACCTCCGACGCGGAGGTGATCAGCACCGGCCACGAGTACCGCACCCGGATGGTCGTGCGGCGCCCCACGGACCCGGGCGCGTTCAACGGCACCGTCATCACCGAGTGGTACAACGTCTCCAACCAGTGGGACCAGGAGGTCGACTGGTTCCAGACCCACGAGCACCTCCTGCGCGAGGGCTACGCCTGGGTCGGCGTCTCGGCGCAGCGGGCCGGGGTCCACTCCGGCACCGGACTGCGGTCGTGGAGCCCCGACCGGTACGGCTCCCTCGACCTGACCGACGGCGGCACGGTCACCGACGACACCCTGTCCTGGGACGTCTTCAGCCAGGCCGTCGGCGCCGTCCGCGAGCCCGCCGGCACCGCCCCGCTGGGCCCGCTGGAGGCGGAGACCGTGGTCGCCACCGGTCACTCCCAGTCGGCCGGGCGCCTGTGGTCGTACGTCAACTCCGTCGACCCGGGCGGCGACGTCGTCGACGCGGTCGTGCTGCACGGCGGCGGCGGGCCCCTCCGTGACGCGGTCGAGACCCCGGTGCTCAAGATCAACAGCGAGACCGACGTCGCGATCGACCTGCTGGGCGCGGCCCAGCGCCAGCCGGACAGCGACACGCTGCGCACCTGGGAGGTCGCCGGTGCCTCCCACGGCGACTGGAAGCTCATCACGGACTACGGCCGCCTGCGCATCCGCGACATCGGCACGGCCCCCGGCGGGTACCCGGGCACGCCGCAGACGTGCGACGAGCCGTCCGGCTCCCGCGTCCCGCAGCACATGGTCCAGGGCGCGGCGTACGACCACGTGGCGGACTGGGCGGCAGGTGGGGACGCTCCGCCGTCGGCGCCCGCCATCGACCTCCTCGCGGACGGCTCCGTGGACCGCGACGACCTCGGTCTCGGTCGGGGCGGCATCCGCCTGGCCGCGCAGGAGGTCCCGGTGCGGCTGAACTCGGGACTCAACACCGGCCCCGGCTTCTGCTTCATCGACGGGTCGTCCCGTCCGGTCGACGACGCGACGCTGGCCGCCTGGTACCCGGACGAGGAGGAGTACGTCGACGAGGTCGTGGCCGTCACCGGCGCCGCCGTCGAGGCGGGCTACGTCCCCGCGGACGTCGCGGCCGACCCGTCGTGGTACACCGACGTCGCCGAGCTCGTCCAGCACCGGGTCGAGTCCGGCCTCGTCCGCGAGCAGGTCGGCGCACGGATCGTCGACCGGATGCACCGCGCCCTGGAGGCGGCCGACGACGGCGACTGGAACGCCGCGGACCGATGGGTGCGCCAGGCGCACACGTTCGCCGACCGGCAGGTGCGCGACGACCTCGCGTCGGCGTCCGTGGCGCGCTCCACCGCGGCGGTGCGCGGCGTGCTGGCGCTGACCGTCGACGACTGA	MSVSRRRAVAAGTGLTLLASALSLPAASAAPDTPDPAVTGPVPATTAVGDPAHGYPFLATDVDLADHGYVEQEFFLSGEATRYDADGTSDAEVISTGHEYRTRMVVRRPTDPGAFNGTVITEWYNVSNQWDQEVDWFQTHEHLLREGYAWVGVSAQRAGVHSGTGLRSWSPDRYGSLDLTDGGTVTDDTLSWDVFSQAVGAVREPAGTAPLGPLEAETVVATGHSQSAGRLWSYVNSVDPGGDVVDAVVLHGGGGPLRDAVETPVLKINSETDVAIDLLGAAQRQPDSDTLRTWEVAGASHGDWKLITDYGRLRIRDIGTAPGGYPGTPQTCDEPSGSRVPQHMVQGAAYDHVADWAAGGDAPPSAPAIDLLADGSVDRDDLGLGRGGIRLAAQEVPVRLNSGLNTGPGFCFIDGSSRPVDDATLAAWYPDEEEYVDEVVAVTGAAVEAGYVPADVAADPSWYTDVAELVQHRVESGLVREQVGARIVDRMHRALEAADDGDWNAADRWVRQAHTFADRQVRDDLASASVARSTAAVRGVLALTVDD				NA	NA	NA	NA	NA
AK001_02146	408			hypothetical protein	ATGATCTCCACCGAGCTCGCCACCCGGTTGCGCGACGCGGGACTGATCTGGAAGCCGGCCGACGGCGACCGGTTCCACATCGACGCACCGGAGCTCCGCGAGGACGTCTTCACCATCTCCACGCTGGTCGTCGAGACGCACCACTTCGACACCGGCACGGTGCTCGGCTTCAACGGGACCACCGAGTGGGCCCTGGACTCGGTCGACATCGACGACACGCTGTGGCTACCGCGCGAGGACCAGCTCCGCGACCTGCTGGGCGGCACCTTCCGCTCGCTGCACGCCGAGGACGACGTCTTCACCGTCGAGGTGGAGCTGCTCGGCGAGCGCCGGACCTTCGACGCCCCGGAGGCCGCCGACGCCTACGGGGAGGCGTTGCTGGCCCTCATCGGCCTCTCGTCGGGATGA	MISTELATRLRDAGLIWKPADGDRFHIDAPELREDVFTISTLVVETHHFDTGTVLGFNGTTEWALDSVDIDDTLWLPREDQLRDLLGGTFRSLHAEDDVFTVEVELLGERRTFDAPEAADAYGEALLALIGLSSG				NA	NA	NA	NA	NA
AK001_02147	813	trmB	COG0220	tRNA (guanine-N(7)-)-methyltransferase	GTGCCGAACTCACCGCAGGAGAACCCGGACGTCCCGCAGGACACCCCGGTCGAGGACTCCGTCGACACCCGACACCACCGCCGTCCGCTGAGCTACGTGCGCCGCACCGCCCGCCTGACCGCGGGCCAGCAGAGGGCCTGGGACACCCGCCGGCACCGCTACCTGATCGAGGTCCCGCGCGAGCACCGCGACATGTCGGTGCACCCGGACTGGCAGCTCGACCCCGCCGCGGAGTTCGGCCGCACCGCGCCCCTCGTCCTGGAGATCGGGACCGGCCTGGGCGAGTGCGTCGTGCACGCCGCGGCGACGCACCCCGAGCGCGACCACCTGGCCGTCGAGGTCTACCGTCCGGGCGTCGCACAGACCATCGTGCGCGCGGGGCACGCCGGGGCCGACCCGGCCGTCGCCGGCGGCGACCCGGGCCACGAGCTCGACAACCTGCGGATCATGCAGGTCGACGCCGCCGAGCTGCTCGGGCACGGCCTGCCCGAGGCGAGCCTCGACGAGCTGTGGGTGTTCTTCCCGGACCCGTGGCCCAAGAAGCGCCACCACAAGCGCCGGCTGGTCACCCCCGCCTTCGCCGAGCTGGCGGCCCGCGCGATCAAGCCCGGTGGCCGGTGGCGGTTGGCCACCGACTGGGCCGAGTACGGCGAGGTGATGCTCGAGGTGCTCGACGCCGCCGAGGGCTTCCGCAACGCCCACGGCCCCGGCGGGCGCGCCCCGCGCTTCGAGGGTCGCGTCATGACCAGCTTCGAGCGCAAGGGTCTGAACGCCGGGCGCAGCGTGACCGACCTGGAGTACGTCCGGCTCTGA	MPNSPQENPDVPQDTPVEDSVDTRHHRRPLSYVRRTARLTAGQQRAWDTRRHRYLIEVPREHRDMSVHPDWQLDPAAEFGRTAPLVLEIGTGLGECVVHAAATHPERDHLAVEVYRPGVAQTIVRAGHAGADPAVAGGDPGHELDNLRIMQVDAAELLGHGLPEASLDELWVFFPDPWPKKRHHKRRLVTPAFAELAARAIKPGGRWRLATDWAEYGEVMLEVLDAAEGFRNAHGPGGRAPRFEGRVMTSFERKGLNAGRSVTDLEYVRL				NA	NA	NA	NA	NA
AK001_02148	618	bioN	COG0619	Energy-coupling factor transporter transmembrane protein BioN	ATGACTGCCGGCCCGCCGCCCGCCACGGCACCCCCGAGGACCTCTACGTCCCCGGTGCACCGGCTCGGCGCGGGGACGAAGCTCGCCGGGCTGTGCGTGTGCTCGCTGGCGCTGCTCACCGTGGACGGACCGCGGGGAGCCGCCCTCGCCGTCGTCGGCGTCGTGGCGCTGTTCGCCCTGGCCGGGCTGGGACCGCGGGCGCTCTGGGCCCAGATCAGGCCGCTGCGCTGGGTCGTGGTGTGCCTGCTGGCGGTGCAGTGGTGGGTACTGGGGCCCGTCGAGGCGGTGGTGCTGAGCACGCGGCTCGTGGCCCTCGTGGCCCTCGCCGGTCTCGTCACGGCCACCACCCCGACGGCGCAGGTCCTGGACGTCGTGGAGCGCGTGCTGCGGCCGGGGCGCCGGTGGGGCCTCGACCCGGAGCGTGCCGCGCTGGTGCTGGCCCTGACCCTGCGGTCCGTCCCCGTGCTCACCGACCTGGCCGCGCGGGTGCGGGACGCGCAGCGCGCCCGGGGCCGCGAGCGCGACGTGCGGGCCTTCGCGGTGCCGCTGGTGGTGGGGTCGCTGCGGCGGGCCGACGCCCTGGGCGAGGCCCTGGCGGCGCGCGGCCTGGACGACTGA	MTAGPPPATAPPRTSTSPVHRLGAGTKLAGLCVCSLALLTVDGPRGAALAVVGVVALFALAGLGPRALWAQIRPLRWVVVCLLAVQWWVLGPVEAVVLSTRLVALVALAGLVTATTPTAQVLDVVERVLRPGRRWGLDPERAALVLALTLRSVPVLTDLAARVRDAQRARGRERDVRAFAVPLVVGSLRRADALGEALAARGLDD				NA	NA	NA	NA	NA
AK001_02149	693	bioM	COG1122	Biotin transport ATP-binding protein BioM	GTGACCGGGATCGTGCTGGACGACGTGCACGTGCGCCGCGAGGGCCGGCACGTGCTGCACGGGGTGTCGGCCCGGCTGACCGAGCACCGGGTGGCGGTGATCGGCGCGAACGGCTCGGGCAAGTCCACGCTCGCGCGGCTGCTCAACGGCCTGGTGACCCCGACGTCGGGCCGGGTGCTGGTCGACGGGCTGGACGTGGCCCGGCACGGCCGCGCCGTGCGCCGGCGGGTCGGGTTCGTGTTCACCGACCCGGACGCCCAGATCGTCATGCCGACCGTCGCCGAGGACGTCGCGTTCTCGCTGCGCGGCTCCGGGCTGTCCCGCGCCGAGGTCGGCGCCCGGGTGGCGGCCGAGCTGGAGCGGCACGGCCTGGCCGGGCACGCGGACCATCCGGCGCACCTGCTCTCCGGGGGCCAGAAGCAGCTCCTGGCGCTGTCCAGCGTGCTGGTGTCCCGCCCGGACGTCGTGGTGGCCGACGAACCGACGACCCTGCTGGACCTGCGCAACACCCGGTTCGTCGCGCAGCGGCTGGCGGCGCTGGAGCAGCGGGTGGTGCTGGTCACCCACGACCTGGACCTCGTGGGCGACTACGAACGCGTGCTGGTGGTCGACGAGGGCCGGGTCGTGGTCGACGACGTCCCGGCCGTGGCGGTGCCGGCCTACCGCGCGCTGATGGGAGCGCCGGTCCGATGA	MTGIVLDDVHVRREGRHVLHGVSARLTEHRVAVIGANGSGKSTLARLLNGLVTPTSGRVLVDGLDVARHGRAVRRRVGFVFTDPDAQIVMPTVAEDVAFSLRGSGLSRAEVGARVAAELERHGLAGHADHPAHLLSGGQKQLLALSSVLVSRPDVVVADEPTTLLDLRNTRFVAQRLAALEQRVVLVTHDLDLVGDYERVLVVDEGRVVVDDVPAVAVPAYRALMGAPVR	PGPT0022045_471	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022045-bioM-K16784	NA	NA
AK001_02150	1122	yhfS	COG0183	Putative acetyl-CoA C-acetyltransferase YhfS	GTGAGCGTGGTGGTGGCCGCCCGGCGCACGTGGACCGGCCGGCGCGGCGGCGGGCACGCCGGGGCCGACGAGGCCCGGCTGGCCGCCGCGGTCCTCAGCGCCGCCGCGCACGACGCAGCGCACGACGCAGCGCACGACGCGGCCGCCGGCCCGGTGGACGAGGTGGTGCTGGGCAACGCCGCGGGCCACGGCGGCAACGTGGCGCGCCGTGGGGCGCTGACCGCCGTCGGCCGGCACGTGCCCGGGATGAGCGTGGACCGGCAGTGCGCCTCCGGGCTCGCCGCCGTGGGCACGGCGGCCGCGCTGGTCGACGCCGGCCACGCCCGCGTCGTGCTGGCGGGCGGCGTCGAGAGCGCCACCCGGGCACCGGGGCGCGCGCACGGCACGCTCGGCTACGACCGCGCGTCCTTCACCGCCCCGCCGTGGGCGGACCCGGAGGCCGGCCGGGCCGCGGACCGGCTCGCCCAGGAGCGCGGCATCTCCCGCGCGCTGCAGCACCGCTACGCCGTGGCCTCGCACGAGCGGCTGCGCGCCGCGCACACGGCCGGGCGGTTCGCCACCGAGACCGTGGCTGTCGGGCCGCTGGACCGCGACGAGCACGCCCGGGCGCTGTCCCCGAGGCTGCTGGACCGGCTGCCGGGGGCCTTCTCCCCCGACGGCACGGTGACGGCGGCCTCGGCCGCACCGGCCGCGGACGGGGCGGCCGCCGTGGTCCTGGCGCCGGACGGCGCCCCGGGGCTGCGGGTCCGGACGGTGGCGACCGTGGCCGGCGACCCCGCGATGCCCCTGCTGACCCCCGTGTCCGCCGTGCGCGCGGCGTGCGCGCGCGCCGGGGTCCGGCTCGAGGACGTGGCCGCGCTGGAGCTCGTCGAGGCGTTCGCCGTGCAGGCGCTCGCGGTGGCCGGGGACCTCGGCGTGGACCCGCTGACCGATCCGCGCTGGAACGCCGACGGCGGGTCCCTGGCGGGCGGGCACCCGTTCGGGGCGAGCGGGGCGGTCGCCGTCGTCCGGCTGTTCTCCCGGCTGGTGCGCGGCGGCGCACCGGCGGGCACGCTCGGGCTCGCCACGGCGGCGGGGACCGGCGGGATCGGCGTCGCCGTGCTCGTGGAGGTGGTCCGGTGA	MSVVVAARRTWTGRRGGGHAGADEARLAAAVLSAAAHDAAHDAAHDAAAGPVDEVVLGNAAGHGGNVARRGALTAVGRHVPGMSVDRQCASGLAAVGTAAALVDAGHARVVLAGGVESATRAPGRAHGTLGYDRASFTAPPWADPEAGRAADRLAQERGISRALQHRYAVASHERLRAAHTAGRFATETVAVGPLDRDEHARALSPRLLDRLPGAFSPDGTVTAASAAPAADGAAAVVLAPDGAPGLRVRTVATVAGDPAMPLLTPVSAVRAACARAGVRLEDVAALELVEAFAVQALAVAGDLGVDPLTDPRWNADGGSLAGGHPFGASGAVAVVRLFSRLVRGGAPAGTLGLATAAGTGGIGVAVLVEVVR	PGPT0008320_14219	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
AK001_02151	1440	menE_2		2-succinylbenzoate--CoA ligase	GTGCCGGTCGCCCACCACGTCCTGCAGCACGCGCACGGCCCCGCCGCGGACCGTGTCGCGGTGCGCTGCGGCGAGCGCAGCCGCACCTACGCCGAGCTGGCCGCCGACCTCGTCGCGGGCGCCGAGCACCTGGCCGCGACCGGGACGCGCCCCGGGGACCTGGTCGCCCTGTCGCTCGCCGACCCCCTGGACACGCTCGTCGCGCTGCTCGCCGCGGACCGGGCCGGTGCCGTCGGGTTGGTCGGCGACCCGGCCTGGCCGGTGCACCAGCGGGCCGAGGTGCTGCACGCCCTGACCCCCGCCGTCGTCGTGCACGTGCCGCTGCCGCGCGGTCACGGTGCTCCTCCCCCGCCTCCGGGACCGACCCCGGACGACGCCGCACCCGCGTGGGCGGGCTTCTCCTCGGGCAGCACGGGGCGTCCGCGCGCCGTGCTGCGCTCCCGCGGGTCCTGGACGGGCTCCTTCGAGCACGTCTCGCGCCTGACCGGCACCCGCGCCGGGGACACCGTCCTGGTCACGGGCCCCCTGGCCAGCTCGCTGCACTGCTTCGCGGCGGTGCACGCCCTGGCGGCCGGGGCGTCGGTGGAGCTCGCGCCGACCGTGTCGGCGACGACGGCGGCGCTCGCCGGGGCCGACCTGGCCCACCTGGTCCCCTCCCGGCTCGACGACGTCCTGGACGCCCTCGACGCGGGCGTGCCGTCCCGGCTGCGCACCGTCGTGGTGGGCGGCGCCGGCACGGACCCCGCCCAGCGGGCCCGGGCCCACGCCCACGGCGTGCAGGTCGTGGCGTACTACGGGGCGGTGGAGCTGAGCTTCGTCGCGATCGACACCGGGGACGGGCTGGTGCCGTTCCCGCAGGTCGAGGTGCAGGTCCGGCCGCAGCCGGGCACGAGCCTGGGCGAGGTGTGGGTGCGCTCGCCGTGGACGGCGAGCGGCTACCTGGCCGGGGCGACCGGGCCGCTGCGCACCCGGGACGGCTGGAGCACGGTCGGTGACCTGGCCGACCTGCCCGACCTGCCCGACCTGGCCGACCTGCCCGATGGCCGCGCGGCGGCCGCCGGGGACCGCGCGCTGCGGCTGCGAGGCCGTGGCGACGGCGCGATCCTCACCGCCGGCGCCACCGTCGTGCCCGAGGACGTCGAGGCCGCGCTGCGACCCGTACCCGGGGTCCGTGACGTCGTGGTGGCCGGCGCCCCGCACCGCCGGTTCGGCGCCGTCGTCGTCGCCGTCGTCGAGGCCGACGACCACCCCGGGCTGCGCGCCCACCTGGAACGGGTCGCCCGGGCCACCCTCGCCCCGGCCCAGCGGCCCCGGCGCTGGTTCCGCGTCGACGCCCTGCCGCGCACCTCGAACGGCAAGGTGGCCCGTTCCGCGCTCGGTGCCGCCGTCGCGGGCCACGACCCGGCCGCGCAGGTCGGCGACCTCGCGGTGCTGCGGTGA	MPVAHHVLQHAHGPAADRVAVRCGERSRTYAELAADLVAGAEHLAATGTRPGDLVALSLADPLDTLVALLAADRAGAVGLVGDPAWPVHQRAEVLHALTPAVVVHVPLPRGHGAPPPPPGPTPDDAAPAWAGFSSGSTGRPRAVLRSRGSWTGSFEHVSRLTGTRAGDTVLVTGPLASSLHCFAAVHALAAGASVELAPTVSATTAALAGADLAHLVPSRLDDVLDALDAGVPSRLRTVVVGGAGTDPAQRARAHAHGVQVVAYYGAVELSFVAIDTGDGLVPFPQVEVQVRPQPGTSLGEVWVRSPWTASGYLAGATGPLRTRDGWSTVGDLADLPDLPDLADLPDGRAAAAGDRALRLRGRGDGAILTAGATVVPEDVEAALRPVPGVRDVVVAGAPHRRFGAVVVAVVEADDHPGLRAHLERVARATLAPAQRPRRWFRVDALPRTSNGKVARSALGAAVAGHDPAAQVGDLAVLR	PGPT0008380_15990	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
AK001_02152	594	bioY	COG1268	Biotin transporter BioY	GTGACCGAGACCGCCGCAACCCGCACCCCGGCCCGCTCGACCACCGCCGACGCCGCACGGGTGGCCACCTTCGCGGCACTGATCGCCGTCCTGGGCCTGCCCGGGTCGATCGCGCTGTTCGGCAACGCCGTCCCGGTGACGCTGCAGACCCTCGGGGTGATGCTCGCCGGGGCGATCCTGGGCGCCCGCCGCGGCGCGCTGGCGGTGCTGACGCTGCTCGCCCTGGTCGCGGCCGGGCTGCCGCTGCTCGCCGGCGGTCGGGGCGGTCTCGGCGTGTTCGTGGGACCGTCGGCCGGCTACCTGCTCGGGTTCGTGGCCGGCGCCTTCGTCGTCGGGCTGCTGGTCGAGCGGCAGCGGAGGGTGACGTTCCTGGGCGTGCTCCTCGCCGCGCTCGTCGGCGGCGTCGGCGTGGTGTACGCCGTCGGGATCCCCGTCCAGGCCGTGCTGACCGGTGTGCCCCTGGCCGAGACGGCCCTGCTGTCCCTCGCCTTCGTGCCCGGGGACCTGCTCAAGGCGCTGGCCTGCGCCGCGATCACCGCCGCCGTCGCGCGGGCGTACCCCGTCGCGGTGCGCCGCGGGGGCCGGGAGGGCTGA	MTETAATRTPARSTTADAARVATFAALIAVLGLPGSIALFGNAVPVTLQTLGVMLAGAILGARRGALAVLTLLALVAAGLPLLAGGRGGLGVFVGPSAGYLLGFVAGAFVVGLLVERQRRVTFLGVLLAALVGGVGVVYAVGIPVQAVLTGVPLAETALLSLAFVPGDLLKALACAAITAAVARAYPVAVRRGGREG	PGPT0022050_58	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022050-bioY-K03523	NA	NA
AK001_02153	1485	merA		Mercuric reductase	ATGGAGCAGACGTACGACGTGATCGTCATCGGTGCCGGCCCCGTGGGGGAGAACGCGGCCGACCGCGCGGCGCGCGGCGGGCTGTCCGTCGCCGTCGTGGAGGCCGAGCTCGTGGGCGGGGAGTGCTCGTACTGGGCGTGCATCCCCTCCAAGACCCTGCTGTCGCCCGGAGCCGCGCGGCAGGCGGCGCGCGAGGCGCCCGGCGTGGGCGACCCCGGACCGCTGGACGTGGACGCGGTGCTGGCGCGCCGCGACGAGATGACCGGCGAGGGCGACGACTCCGGCCAGGAGGAGTGGCTCGACTCCGTGGGCATCACGCTGGTGCGCGGCCACGGCCGCCTGGCCGGGGAGCGCACGGTCGAGGTCGTGCCCGCCACGGGCGTCGACGACGACGCGGCCGGCGAGACGCACCGCCTGCTCGCGCGCTGCGCCGTCGTGGTCTCCACCGGCAGCGCCGCGGTCGTCCCGGACCTGCCGGGTCTGGCCGAGGCCAACCCGTGGACCTCGCGCGAGGCCACCGCCGCCGAGGCGGTGCCCGCGTCGCTGGTGATCCTCGGTGGCGGCGTCGTCGGGGTGGAGATGGCCACCCTCTATGCCGACCTCGGCGCCCAGGTGACGCTGATCGCCCGGGGCGGGCTGCTCGCCGGGGCCGAACCCTTCGCCGGGGAGATGGTCGCCGAGGCGCTGCGCGACGCCGGCGTGGACGTGCGCCTCGGGACCACGGCGCGCCGCGTGGAGCGCCCGGCCCCGGGCGGACCCGTCACCGTGACGGTCGGCGGGGACGACGGCGCGGAGATCGTCACCGCCGCCGAGCTGCTGGTCGCCACCGGGCGCCGGCCCCGCACCGGCGACGTCGGGCTCGACACGGTCGGGCTCGAGCCCGGTGCGCCGCTGACGATCGACGACACCACGGCCGTGGAGGAGGTCGGCCGGGACGTCGTCGGCAAGCCGTGGCTGTTCGCCTGCGGCGACGTGACCGGACGGGTGGGCACCACCCACCAGGGCAAGTACCAGGCCCGGGTCACCGGCGACGTCGTGGCCGCGCTTTACGGGTCCGGTGGGGACCAGGAGGCGATCGTCGCGGCCTCGGGCGCGCGATGGAGCCGGTACGCGGCCCGGGCCGACCACGGCGCGCAGACGCAGGCCGTGTTCGCCCGCCCGCACGTCGCCTGGGTCGGGCCCACCGAGGCCGAGGCCCGGCGCGCCGGGCTGCCCGTGCGCGCCGTCTCCTACGACCTCGCCTCGGTGGCCGGGGCCGCCGTCACCTCGCCGGACCACGGCGGCCGGGCCCAGGTCCTGGTGGACACCGAGCGCGACGTCCTGGTGGGCGCCACGTTCGTCGGGCCCGACGCCGCCGAGATGCTGCACGCCGCGACCGTCGCCGTCGTCGGCGAGGTGCCGCTCGACGCCCTGTGGCACGCCGTGCCGCCGTTCCCCACGGTCAGCGAGGTGTGGCTGCGGCTGCTGGAGGAGCTCGGCCTGTGA	MEQTYDVIVIGAGPVGENAADRAARGGLSVAVVEAELVGGECSYWACIPSKTLLSPGAARQAAREAPGVGDPGPLDVDAVLARRDEMTGEGDDSGQEEWLDSVGITLVRGHGRLAGERTVEVVPATGVDDDAAGETHRLLARCAVVVSTGSAAVVPDLPGLAEANPWTSREATAAEAVPASLVILGGGVVGVEMATLYADLGAQVTLIARGGLLAGAEPFAGEMVAEALRDAGVDVRLGTTARRVERPAPGGPVTVTVGGDDGAEIVTAAELLVATGRRPRTGDVGLDTVGLEPGAPLTIDDTTAVEEVGRDVVGKPWLFACGDVTGRVGTTHQGKYQARVTGDVVAALYGSGGDQEAIVAASGARWSRYAARADHGAQTQAVFARPHVAWVGPTEAEARRAGLPVRAVSYDLASVAGAAVTSPDHGGRAQVLVDTERDVLVGATFVGPDAAEMLHAATVAVVGEVPLDALWHAVPPFPTVSEVWLRLLEELGL				NA	NA	NA	NA	NA
AK001_02154	915	dcsG		Cycloserine biosynthesis protein DcsG	GTGACCACCACGACGAAGCGAGTCGGACTCGCCACCTGCTCCGTCCTGCCCGACCTGGACGCGGACGACCGTCCGATCGTCCCCGCACTGGCCGCGCGCGGCGTCACCGCCGAGCCCGTGGTGTGGGACGACCCGGACGTCGACTGGTCCTCCTACGACCTCGTCGTGGTGCGATCCACGTACGACTACTCCCCGCGCCGCGACGAGTTCATCGAGTGGGCGCGCTCGGTGCCGCACCTGGCCAACAGCGCCGACGTCATCGCCTGGAACACGGACAAGACCTACCTGCAGACCCTCGACGAGGCCGGGGTGCCGGTCATCCCCACGATCTGGCTCGATCCCGAGCGGCACCTGGGCAAGCGCGCGATCCACACGCGGATGCCGGCCTTCGGCGACTTCGTGGTCAAGCCGGTCGTCTCCGCCGGGGCGCAGGACACCGGCCGGTACCAGCCGGTCAGCGCCGAGTCGCGGGCCCTGGCCATCGAGCACGCCAAGACGCTGCTCGACGACGGCCGTGCCGTGATGATCCAGCCGTACATCACCAGCGTCGACACCGCGGGCGAGACCTGCCTGATCTTCGTCGAGGGCGAGGTCCAGCACGCCGTGCGCAAGAACGCGCTGCTCACCGGGCCCAGCCGGCCGACCCAGGGCCTGTACCGCAAGGAGCAGATGCAGCCGGTGGAGCCGACCGCGGCGCAGGTCGACGCCGCCCGTCAGGCGATCGCCGTCGCGCACGAGCGCCTCGGGGTGACCGAGCCCTTCCTCTACGCCCGCGTCGACCTGGTCGGCGGCGAGGACGACACCCCGACGGTCATCGAGCTCGAGCTCACCGAGCCGTCACTGTGGCTGAAGCACGCCGGTGATGCCGGAACGGTCGGACGGCTCGCCGACGCGATCGTCGCCCGCCTCGGCTGA	MTTTTKRVGLATCSVLPDLDADDRPIVPALAARGVTAEPVVWDDPDVDWSSYDLVVVRSTYDYSPRRDEFIEWARSVPHLANSADVIAWNTDKTYLQTLDEAGVPVIPTIWLDPERHLGKRAIHTRMPAFGDFVVKPVVSAGAQDTGRYQPVSAESRALAIEHAKTLLDDGRAVMIQPYITSVDTAGETCLIFVEGEVQHAVRKNALLTGPSRPTQGLYRKEQMQPVEPTAAQVDAARQAIAVAHERLGVTEPFLYARVDLVGGEDDTPTVIELELTEPSLWLKHAGDAGTVGRLADAIVARLG				NA	NA	NA	NA	NA
AK001_02155	915	yehZ	COG1732	Glycine betaine-binding protein YehZ	ATGCGCACCACCCGACGCACCACCGCACTCGTGGCCGGAGCCGCAGCGGCTCTGCTGACCCTGACCGCCTGCGGAGGCGACGCCGACCCCCTGGCGCAGGACGCGGGCGACGACGGCGAGGAGATGTCCTCCGACACGATCGTCGTGGGCTCGCAGGCGTACTACTCGAACGAGATCATCGCCGAGATCTACGCCCAGGCCCTCGAGGCCGACGGGTTCACCGTCGAGCGCAACTACTCCATCGGGCAGCGCGACGCCTACATGCCCGCGCTGGAGGCCGGCGAGGTCCAGGTCTTCCCGGAGTACACCGGCAACCTGCTGCAGTACTACGACCCCGAGACGACCGCGACGACCGCGGACGACGTCTACGCCGAGCTCAGCGACGCCCTGCCGGACACCCTGGCCGTGCTCGACCAGTCCCCGGCCACCGACCAGGACTCCTACAACGTCACCGCCGAGTTCGCCGAGTCGAACGGGCTGACCACGATCGGCGACCTCGCCGACCTGGACGGCCTGACCCTCGGCGGCCCGGCCGAGCTGGAGGAGCGTCCCTACGGTCCGGAGGGGCTGGCCGACGTCTACGGCGCCGACGTCGCCTTCGAGGCCACCGGTGACACGACCGTGCAGGACCTCGTGGCCGGCACGGTGGACGTCGCGAACGTCTTCAGCGCCGACCCGCGCATCCAGACCGAAGACCTCGTCACCCTGGAGGACCCGGAGGGCCTGTTCCTCGCCTCCAACGTGGTGCCGCTGGTCAGCAGCGACGTCGCCGACCAGGTGGCCGACGTCATCAACCCGGTCAGCGCCGCCCTGACGCCCGAGGGCCTCGTCGACCTCAACGTCCAGTCCACCGAGGAGCAGCGCTCCAGCGAGGACATCGCCGCCGACTGGCTGAGCGAGAACGGCATCGGCTGA	MRTTRRTTALVAGAAAALLTLTACGGDADPLAQDAGDDGEEMSSDTIVVGSQAYYSNEIIAEIYAQALEADGFTVERNYSIGQRDAYMPALEAGEVQVFPEYTGNLLQYYDPETTATTADDVYAELSDALPDTLAVLDQSPATDQDSYNVTAEFAESNGLTTIGDLADLDGLTLGGPAELEERPYGPEGLADVYGADVAFEATGDTTVQDLVAGTVDVANVFSADPRIQTEDLVTLEDPEGLFLASNVVPLVSSDVADQVADVINPVSAALTPEGLVDLNVQSTEEQRSSEDIAADWLSENGIG	PGPT0013595_2681	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845	NA	NA
AK001_02156	687	opuCB_1	COG1174	Glycine betaine/carnitine/choline transport system permease protein OpuCB	ATGGAGCTCTTCGCCGAGGCGCTCGCCTGGATCTTCTCCTCCGACGCGCAGTCCGGGTCGCTGCCCCTGTCCGAGGCGATCGCCACGCACCTGGCGTTCACGTTCGTCTCCGTGCTCATCGCCGCCGCGATCGCCGTCCCGGCCGGCTGGGTGGTCGGGCACACGGGCCGGGGCCGCGAGGCCGCCGTGGCGCTGTCCGGGGCCGCCCGCGCCGTCCCGTCCTTCGGCCTGGTGCTGCTGCTGGTCCTCGTCTTCGGGGTGACGCACAAGGTCGGCGCGTCCACCACCGCCTTCGTCCTGCTCGCGATCCCACCGATCCTGGCGGGCGCGTACTCCGGCGTCGAGGCCGTCGACCGGCGGGTGGTCGACGGCGCCCGCGCGGTCGGCATGACGCCCCGGCAGGTGCTGGGCAGGGTCGAGATCCCGCTGGGGCTGCCGCTGCTGATCGGCGGTCTGCGGTCGGCGACGCTGCAGGTCGTGGCCACCGTCACGCTGGCCGGATACGTCGGCAGCTGGGGCCTGGGCTTCTACATCGTCCAGGGCATCCAGATCCGCGACTTCGCGCAGATCCTGGGCGCGGCGCTGGTGATCGTGGTGCTCGCCGTGCTGCTCGACCTGCTCTTCGCGCTCCTCGAACGGGCCGTCGTCCCGCGGGGCGTCAGGGCGCGGCACGAGACGTCCTCCTGA	MELFAEALAWIFSSDAQSGSLPLSEAIATHLAFTFVSVLIAAAIAVPAGWVVGHTGRGREAAVALSGAARAVPSFGLVLLLVLVFGVTHKVGASTTAFVLLAIPPILAGAYSGVEAVDRRVVDGARAVGMTPRQVLGRVEIPLGLPLLIGGLRSATLQVVATVTLAGYVGSWGLGFYIVQGIQIRDFAQILGAALVIVVLAVLLDLLFALLERAVVPRGVRARHETSS	PGPT0013581_38	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013581-opuCB|yvbD-NA	NA	NA
AK001_02157	639	opuCB_2	COG1174	Glycine betaine/carnitine/choline transport system permease protein OpuCB	ATGACCTGGGTCGTCGAGAACCTCGACCTCATCGGTCGCCTCACCGTCGAGCACCTGCGCCAGAGCGCCCTGCCGATCGTGCTGGGGCTGGTGCTGTCGATCCCGGCCGGCTGGTTCGCGTTCCGCTTCCGCCTGACGCGGGGCCTGGTGCTCACCGCCGTCGGGCTGCTCTACACGATCCCGTCGCTGGCGCTGTTCGCGCTGCTGCCGCCGCTGCTCGGCATCAGCTTCCTGTCCGAGGTCAACCTGATCATCGCGCTGACGATCTACGCCGTGGCGATCATGACGCGGTTCGTCGCCGACGCCCTGGCCTCGGTCGAACCACAGGTGCGGCAGGCCGCCGACGCCGTCGGGTACGGCACGTGGCGCCGGTTCTGGCAGGTGGACCTGCCGCTGGCCGGACCCGTCGTCCTGGCCGGGCTGCGGGTGACCGCCGTGTCGACGATCTCGCTGTGCACGGTGGGGATCCTCATCGGGATCGACAACCTCGGCTACCTGTTCACGAACGGCTACCAGCGCCAGATCGTCCCCGAGATCCTCGCCGGGGTGGTCGCCGTCGTCGTCATCGCGCTGCTGGTCGACTGGCTGCTCGTGCTCGCCGGGCGGGTCCTGATGCCGTGGCCCCGGAAGGGGGCCTGA	MTWVVENLDLIGRLTVEHLRQSALPIVLGLVLSIPAGWFAFRFRLTRGLVLTAVGLLYTIPSLALFALLPPLLGISFLSEVNLIIALTIYAVAIMTRFVADALASVEPQVRQAADAVGYGTWRRFWQVDLPLAGPVVLAGLRVTAVSTISLCTVGILIGIDNLGYLFTNGYQRQIVPEILAGVVAVVVIALLVDWLLVLAGRVLMPWPRKGA	PGPT0013581_123	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013581-opuCB|yvbD-NA	NA	NA
AK001_02158	831	opuBA	COG1125	Choline transport ATP-binding protein OpuBA	ATGATCGAGTTCCGGTCGGTCACCAAGACCTACCCCGACGGCACCGACGCCGTGGCCGACTTCTCCCTGGTCGTGCCGGCGCACACCACCACGGTGCTGGTCGGCTCGTCCGGCAGCGGCAAGACCACGCTGCTGCGCATGATCAACCGCATGGTGGAGCCGACGTCCGGCACCATCGAGATCGACGGCGAGTCCATCGCCGACCGCGACCCCGTGCGGCTGCGCCGCAGCATCGGCTACGTGCTGCAGAACGGCGGGCTCCTGCCCCACCACCGGGTGGTCGACAACGTCGCCACCGTGCTGCGCCTGGAGGGCACCCCCAAGAACGAGGCGCGCCAGCAGGCCCTGGAGGTGCTCGACGTCGTCGGCCTGGACCGCCGACTGGCCGACCGCTACCCGAGCCAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGGGGTGGCGCGCGCCCTGGCCGCCGACCCGAACATCCTGCTCATGGACGAGCCGTTCGGCGCCGTCGACCCGATCGTGCGCTCCGAGCTGCAGACCGAGACGCTGCGCCTGCAGCAGCAGCTGCACAAGACGATCGTGTTCGTCACCCACGACATCGACGAGGCGTTCCTGCTCGGCGACCAGGTCGTCATCCTGTCCACCGGCGCCCAGGTCGCCCAGATCGGCTCACCGAGCGAGATCATCGAGAACCCGGCCGACGACTTCGTCGCCAGCTTCATCGGCGCCGAGCGGGGCGCACGTGCGCTGCACACCAAGGAGACGGGCCACGGCACCGTGCTCGTGGACGGCACGGGACGCACCCAGGGCCGCCTCGTCGAGGGCGGTCAGGGCGCCGCATGA	MIEFRSVTKTYPDGTDAVADFSLVVPAHTTTVLVGSSGSGKTTLLRMINRMVEPTSGTIEIDGESIADRDPVRLRRSIGYVLQNGGLLPHHRVVDNVATVLRLEGTPKNEARQQALEVLDVVGLDRRLADRYPSQLSGGQQQRVGVARALAADPNILLMDEPFGAVDPIVRSELQTETLRLQQQLHKTIVFVTHDIDEAFLLGDQVVILSTGAQVAQIGSPSEIIENPADDFVASFIGAERGARALHTKETGHGTVLVDGTGRTQGRLVEGGQGAA	PGPT0013585_2584	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013585-opuA|osmV|yehX-K05847	NA	NA
AK001_02159	477			hypothetical protein	ATGTCCGCACCGTCGTTCGCCGACCCCACGATCGAGACCCACGGTGAGCAGCACCTGGCCGTGGTCCGCGAGACCGTGGCGCTCGCCGACGTCCCCGCACTGTACGACCGGGCGTTCCCGCTGATCTTCGCCGCGCTCGGGCGGGCCGGTCTCGAACCCGTGGCCCCGCCGATGGGCATCAGCCACGGCATGCCGACCGAGACCCTCGACCTGTCGGTCGCCGTCCCGGTCGCCGAGCGCTTCACCGACGACGGCGAGGTCACCGCCGAGACCCGGCCGGCCGGCCGCGCGGCCACGATGCTCGTGCGCGGCGCGTACGACCGGATCGCCCCCGCCTACGAGCACCTCTTCGACTGGGTCGCCGCCCAGGGACTCGTCCCGACCGGGACCGCGTGGGAGCAGTACCTCACCGAGCCGTCGCCGGACGGGGACCCGCAGCAGAACGAGACGCTCCTCGGCGCCGACCTGGTGGACTGA	MSAPSFADPTIETHGEQHLAVVRETVALADVPALYDRAFPLIFAALGRAGLEPVAPPMGISHGMPTETLDLSVAVPVAERFTDDGEVTAETRPAGRAATMLVRGAYDRIAPAYEHLFDWVAAQGLVPTGTAWEQYLTEPSPDGDPQQNETLLGADLVD				NA	NA	NA	NA	NA
AK001_02161	648	orn	COG1949	Oligoribonuclease	GTGGTCCCCGTGAGCCCGAGCAACCCGAACGACCGCATCGTGTGGATCGACTGCGAGATGACCGGCCTCGACACCCGGGCCGACGCCCTGGTCGAGGTGGCCGCCGTGGTCACCGACTCCGAGCTCAACGTGCTCGGGGACGGCGTCGACGTCGTCATCCGCCCGCCCGCCGAGGCCCTGGAGCAGATGAACGACTTCGTGCGCGAGATGCACACCACGTCCGGGCTGATCACCGAGCTCGACGGCGGCACCACGCTGGCCGACGCCGAGGCCCGCGTGCTCGCCTACATCCGCGAGCACGTGCCCGAGGCCCGCAAGGCGCCGCTCGCCGGCAACTCCGTGGGGACCGACAAGATGTTCCTCGACCGGGACATGCCCGAGCTCGTCGGCCACCTGCACTACCGGATCGTCGACGTGTCCTCCGTCAAGGAGCTCGCCCGGCGCTGGTACCCGCGCGTCTACTTCGCCTCCCCGCCCAAGGACGGCGGCCACCGGGCCCTGGCGGACATCCTGGAGTCGATCGACGAGCTGCGCTACTACCGCGAGGCGCTGTTCGTGCCCCAGCCCGGCCCCGACACCAAGACAGCCCGCGAGGTCTCGGCCCGGATCAAGGAGACCTCGGTCACGAAGTCCAGCACGGTGTCCTGA	MVPVSPSNPNDRIVWIDCEMTGLDTRADALVEVAAVVTDSELNVLGDGVDVVIRPPAEALEQMNDFVREMHTTSGLITELDGGTTLADAEARVLAYIREHVPEARKAPLAGNSVGTDKMFLDRDMPELVGHLHYRIVDVSSVKELARRWYPRVYFASPPKDGGHRALADILESIDELRYYREALFVPQPGPDTKTAREVSARIKETSVTKSSTVS	PGPT0017710_6	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835	NA	NA
AK001_02162	198			hypothetical protein	ATGCACCCGATCGAGATGCACGCCGTCGCGCGTGCGATCCACACCGAACGCCTGGAGGACGCCGAGCGCGCCCGCCGGGCACGCCGACAACGGCGGTCCCCGGCCGCCCGGCTGTCCGTGAGCAGGGCGCGGCGCCGTGTCCACCGCTTCCTGCGGCGGCTGCGCGTCGAACGGCCCCTCGTCGGACGACCCGCATGA	MHPIEMHAVARAIHTERLEDAERARRARRQRRSPAARLSVSRARRRVHRFLRRLRVERPLVGRPA				NA	NA	NA	NA	NA
AK001_02164	432			hypothetical protein	ATGGCACAGCACCACACAAAGGACAAAGGAGACCTCGGCGTCGCCAAGGCGCACGCCGACGTCGTCGGCCAGGGCTTCATAGTGCTCTTCCCTGCGACGGAGCACGCACCCTTCGATCTCGTCGCATATGCGGACGGCGCGTTCCATCGGCTTCAAGTGAAGTACCGCTCGGCACGCTTGGGCGCAATCACGGTCCACTTCCGGTCGGTCTGGAACGATCGACAAGGCACCCATGCGAAGCCGGCGGACAAGGCCGCGGTCGACATCGTGTGCATCTACTGTCCCGAGACTGATGAGTGCTACTACATCCGGCCGAGCGATCATGGCGCGTCGGTCACCCTGAGGATCGAGCCGAGCAGGAACGGTCAGCGGTCGAGAGTGCTCGATGCCGCCGGGTTCCGCAGCCTGGCCACCCGTGTCGGCCTCCGCTGA	MAQHHTKDKGDLGVAKAHADVVGQGFIVLFPATEHAPFDLVAYADGAFHRLQVKYRSARLGAITVHFRSVWNDRQGTHAKPADKAAVDIVCIYCPETDECYYIRPSDHGASVTLRIEPSRNGQRSRVLDAAGFRSLATRVGLR				NA	NA	NA	NA	NA
AK001_02165	321			hypothetical protein	ATGGCCAGCAGCGAGTTCCGGCTCCAGGTCGACCTGCCCACCGAGCACGAGACGGGGGTGCCCGCCGACTTCGCCTCGGTGTGGCACACGTCGGCGTCGTTCGTCCTCGACTTCGTCGCGGCGAAGTCCCCGGCCAAGGCCGCCGTCGACAAGGCCACCGGCGCCGAGACCGGCGGGCGGGTCATGCCGGCCCGGGTCGTGTCCCGCGTGCGCATCCCGCCCCAGCAGGTCTTCGAGCTGGCGCGCGCCCTGACCCAGCAGCTCGACGCCTGGGAGCGGGAGACCGGCCACAAGGCCGACGGCTCCGGCACGGGGGACTGA	MASSEFRLQVDLPTEHETGVPADFASVWHTSASFVLDFVAAKSPAKAAVDKATGAETGGRVMPARVVSRVRIPPQQVFELARALTQQLDAWERETGHKADGSGTGD				NA	NA	NA	NA	NA
AK001_02166	1656			hypothetical protein	GTGACTACCTCCATGCGTACGGGCCGGCTCCTCGGTGGGCGGTCCGACGTCGATGCGGACACGGAGATCGGTCTCACCGTCTACGACGTCGCCAAGGACCTCCGGCGTGACGTCGCGGCGGTGCGGCTGCCGATGCCCATCGACGGAGCCGCCGAGGCGGAGGGCTCCCGCGACCGGCTGCTCGCCCAGCTCGACGAGCACCTGCTGCCCCGCCTGGCCGAGCTGAGCTCGCCGGCGATCGTCGTCGTCGCGGGATCCACCGGTGCGGGCAAGTCGACGCTGTACAACTCCCTGCTGGGCGAGGAGGTCTCCGCCGCCGGCGTGCTGCGCCCCACGACCCGTGAGCCCGTGCTCGCCTTCAACCCGGCCGACGCCGACGTCATCGCCGAGGGCCCGGTCACCGAGCTGTCCCGCGTCGTGCACCACGCGGGAGTGCCCCGGGGCACGGCGCTGCTGGACGCTCCCGACCTCGACTCGTTCGTCCAGGAGAACCGTTCCACCGCGCAGCAGCTGCTCGAGGCGGCCGACCTGTGGCTCTTCGTCACCACCGCCTCGCGCTACGGCGACGCCCTGCCCTGGCAGGCCCTGGCGCGAGCGACCGAGCGCGGGGCGTCGGTCGCGATGGTGCTCAACCGGGTCCCGCACGAGGATCTCGTGACCATCCGCGGTGACCTGATGGGTCGCCTGCGCTCGCACGGCATGGTCGACACGCCGTTGTTCGTGGTGCCCGACGTCGGCCCGCACGAGGGTCTGCTGGACGACAAGCCCGTCGCGCAGGTCAAGCGCTGGCTGACCATGCTCGCCGGCCCCGAGCGGTCCCGCGCCGTCGTGGTGCGCACCCTCAAGGGCTCCCTGAACGCGCTGCCCGGCTGGGTGACCTCCCTGGCCGACGCCGTCGAGGCCCAGGCGGGTGCCGCCACCGTCCTGCGACGGGCGGTGGAGGCCGAGGTGCCGGCCGCAGAGCAGCTCGCCCGCGACGCGGTGGGTGCCGGGGTCGTGGCCGGCGCTGCGGTCGAGGCGCGCTGGCGGGAGCTGTCCGGCACGGCCAAGATCGAGCGCCTCCGGTTCCGCGGCGACCAGGTGCGCAGCTCGCGCCGGGCCGGCCGCGCCCGCTCCGCCGCGCTCGAGGTCCTGCGCGCGGACGTCCGCGAGGGCGCCGCGCACACGCTGACCGCGTCCGGGGCCCGGGTCGCGGACCGGCTGCGGGCGGTTCTCGACGGACCGTCCGCCCCTCCCGGCGGGTCGTCGGTGCTGCCCGACCCCGACGACCGTGCCGCCGACCGCGAGACGGCCGTGCCGGCCACCGTGACCGCCTGGGCCGACGCCGCGGACGAGCGGCTCGCCGCTCTCCTCGCCGAGGACGCCCCGGGGCCGGTCACCGCGGCCGTGCGGGCCTTCGGCGACCGGGGGCTGGCCACGCTGGTGCTCGCCGCCGCGGCCGGCAGCGACGACGCGCGCCGGCTGCTGGACCGGGTGCTCGGCGACGCCCTCGACGAGCAGGTCGCCGCCCTGCGCGACGACCTCGCCGACCGGGCCGCCGCCGTCGTCGACCGCGAGGTCGACGCCGTCCTGGACGCCCTCGACTCACCCGACCTGACCGACGACGCGGCCACGGCGCTGCGGTTGCGGCTCGCCGAGCTGAGGAGACTGACATGA	MTTSMRTGRLLGGRSDVDADTEIGLTVYDVAKDLRRDVAAVRLPMPIDGAAEAEGSRDRLLAQLDEHLLPRLAELSSPAIVVVAGSTGAGKSTLYNSLLGEEVSAAGVLRPTTREPVLAFNPADADVIAEGPVTELSRVVHHAGVPRGTALLDAPDLDSFVQENRSTAQQLLEAADLWLFVTTASRYGDALPWQALARATERGASVAMVLNRVPHEDLVTIRGDLMGRLRSHGMVDTPLFVVPDVGPHEGLLDDKPVAQVKRWLTMLAGPERSRAVVVRTLKGSLNALPGWVTSLADAVEAQAGAATVLRRAVEAEVPAAEQLARDAVGAGVVAGAAVEARWRELSGTAKIERLRFRGDQVRSSRRAGRARSAALEVLRADVREGAAHTLTASGARVADRLRAVLDGPSAPPGGSSVLPDPDDRAADRETAVPATVTAWADAADERLAALLAEDAPGPVTAAVRAFGDRGLATLVLAAAAGSDDARRLLDRVLGDALDEQVAALRDDLADRAAAVVDREVDAVLDALDSPDLTDDAATALRLRLAELRRLT				NA	NA	NA	NA	NA
AK001_02167	1584			hypothetical protein	ATGAACGCCTCGCACGACGCGACCCTGCGGGCGCGCACCGAGGACCTCGCCGAGGCGCTCGCCCTGGCCGGGCCGCGCCTGGACTCCGTGACCGCCCAGCGCGTGCAGACCGCCGTCGACGGGGTGCGCCAGCGTCTCGCCCTCGGGGTCGACCACACGGTCGTGGCGCTCGCGGGAGGCACCGGCTCGGGCAAGTCGAGCCTGTTCAACAAGATCTCCCGGCTCTCCTTCGCGGACGTCGGGGTCAAGCGTCCGACGACGGCGCGGGTGACGGCCTGCTCCTGGTCCGACGCCGCGGAACCGCTGCTCGACTGGATCGGCGTCGACCGGGAACGGCGCATCACCCACTCCGAGGTCCTCGAGGGCGACGGCGCCGGGGCGATGGCGGGGCTCGTGCTGCTCGACCTGCCGGACCACGACTCGGTCGAGCCGGCCCACCGTGAGGTCGTGGACCGGGTGCTGCCCCTGGTCGACCTGCTCGTGTGGGTCGTGGACCCCCAGAAGTACGCCGACGACGCCCTGCACTCCGGCTACCTGCGTGACCAGGTCGGGTCGGAGTCCTCGATGGTGGTCGTCCTCAACCAGGTCGACACCGTGCCGGACACCCAGCGCGAGAACCTCGTGGAGGACCTGGAACGGCTGCTCGCCGACGACGGGCTCCACGACGTGCTCGTCCAGCCGGTCTCGACCCGGACCGGCGAGGGCGTGGCCCGCGTGCGCGAGGTGCTCGAGGAGGCCTGCGCGCGGCGCTCGGTCGCGGCCGGACGGGCGGCCGCCGAGCTCGACGCCGCCGGCAAGGCCCTCCTGACGCAGACGCCCGCGGACGTGCCGTGGCAGCTCGACGCCGCCGTCGACCGTGAGCTGGAGCCGGTGGTGGGCGCGACCGGGCTGGACGCCGTCGCCAACCAGGTCGGCGCCGGGGTGCGCAACGGCTACGGCATGCCCGAGCTGCCGGTGCCCGACCGGGACACGATCGCCCTGGCCCGGGCGCGCTGGCTGACCCGCGCCGGGGCCTCGCTGCGCCCGGGGTGGCAGCGCTCGCTCGCGGAGTCCGCCGCCAGCGCCGACCAGTTGCGTGCCGCGGTGACGACGGCGCTGCGCGGCGTCGACCTGGACGTGAGCGGACCCCGGCACTCGCGGGCGCTGCGGCGCACGGCCTGGGTCTGCCTGGCCCTCGGCGTGGTGCTCGGGGTGGTCGGCGGGCTCGCCCTCGGCGACGTGATCGGGATCGCGGACCCGTGGGGTCCGGTCCTGGCCGTCGCCGGCGGGGTGCTGCTGGTCGCCGCCGTGGTGCTGGCCGTGGTGCGGGTGGTGCTGCGGCGCCGCCGTGCGGCGCGGCGGCGCGAGGAGGTGCGCACCCAGGGCCGCCGGGCGATCCGCGAGGTGCTGGTGACACGGCTGGGCGAGCCCACCCAGCGGGTGCTCGTCGAGCACCGCCAGGTGCGCGACTACGCGCTGTCTGCTCGGGAGCTGCCGTCGGCGGCGCCGCTGACCGGCAGCGTGCGGCTACCCACAGGTGACGAGCTCGCCACGTCGTCCACAGCCCGGGACGAGAGCGGAGCCCGTACCGACGCGACCGCGTGA	MNASHDATLRARTEDLAEALALAGPRLDSVTAQRVQTAVDGVRQRLALGVDHTVVALAGGTGSGKSSLFNKISRLSFADVGVKRPTTARVTACSWSDAAEPLLDWIGVDRERRITHSEVLEGDGAGAMAGLVLLDLPDHDSVEPAHREVVDRVLPLVDLLVWVVDPQKYADDALHSGYLRDQVGSESSMVVVLNQVDTVPDTQRENLVEDLERLLADDGLHDVLVQPVSTRTGEGVARVREVLEEACARRSVAAGRAAAELDAAGKALLTQTPADVPWQLDAAVDRELEPVVGATGLDAVANQVGAGVRNGYGMPELPVPDRDTIALARARWLTRAGASLRPGWQRSLAESAASADQLRAAVTTALRGVDLDVSGPRHSRALRRTAWVCLALGVVLGVVGGLALGDVIGIADPWGPVLAVAGGVLLVAAVVLAVVRVVLRRRRAARRREEVRTQGRRAIREVLVTRLGEPTQRVLVEHRQVRDYALSARELPSAAPLTGSVRLPTGDELATSSTARDESGARTDATA				NA	NA	NA	NA	NA
AK001_02168	558	ssb_2	COG0629	Single-stranded DNA-binding protein	ATGAGCGACGCGAGGACGACCGTGACCGGCTACGTCGGCACCACCCCGGTGCTGCACCTGTCGGCCAACCAGGTGCCGTGGACGAGCTTCCGGGTGGGCAGCACCCGCCGCTTCCGGGACGCGGCGACGGGGGAGTGGCGCGACGGCCGGACCACGTGGTTCACCGTCAAGGCGTTCCGCGGTGCGGCCCGGACGATCTGCGAGTCCCTCACCCAGGGCCAGCCCGTGGTCGTCACGGGCCGTGCCTCGACCGAGGAGTGGGTCGACAAGGAGGGGCGCGACCGGTTCGCGCTGATCGTCGACGCCGACGCCGTCGGCCCCGACGCGACGCGCGGGCTGACGCGGTTCACCAAGGTGGTCCACGACGACGCCCCCGCCGAGCGGCCGACGCAGGGCTCGGCGTCGACGCCCGACCCGTGGGGCCTGCCGCCGGCACCCCGCGGTGACGGAGGAGCGACCGCGGACGCCGGCACGCCGGACGGCGAGGACGACGTCGGGGACCCGCTCGTGGGGTCCGACGACCAGACCGAGCCCGCCGACGAGCCCGCCGTCGCGTAG	MSDARTTVTGYVGTTPVLHLSANQVPWTSFRVGSTRRFRDAATGEWRDGRTTWFTVKAFRGAARTICESLTQGQPVVVTGRASTEEWVDKEGRDRFALIVDADAVGPDATRGLTRFTKVVHDDAPAERPTQGSASTPDPWGLPPAPRGDGGATADAGTPDGEDDVGDPLVGSDDQTEPADEPAVA				NA	NA	NA	NA	NA
AK001_02169	1683	ettA_3	COG0488	Energy-dependent translational throttle protein EttA	GTGGCTGAGTTCATCTACTCCATGTACAAGGCGCGCAAGGCGCACGGCGACAAGGTCATCCTCGACGACGTGTCGCTGAACTTCTTGCCCGGCGCCAAGATCGGCGTCGTCGGCCCGAACGGTGCCGGCAAGTCGACGATCCTCAAGATCATGGCCGGACTCGACCAGCCCTCCAACGGCGAGGCCCGGCTCTCCCCGGGCTACACGGTCGGCATCCTGCAGCAGGAGCCGCCGCTGAACGAGTCCAAGACCGTCCTCGGCAACGTCGAGGAGGGTGTCGGCGAGATCAAGGCCAAGGTCGACCGGTTCAACGAGATCTCCGGTCTGATGGCCGAGCCCGACGCCGACTTCGACTCCCTCATGGCCGAGATGGGCGAGCTGCAGGAGGCCATCGACGCCGCCGACGCCTGGGACCTGGACAGCCAGCTCGAGCAGGCGATGGACGCGCTGCGCTGCCCGCCGCCGGACGCGGAGGTCTCCGTGCTCTCCGGCGGTGAGCGCCGCCGCGTGGCGCTGTGCAAGCTGCTGCTCGAGAAGCCGGACCTGCTGCTGCTCGACGAGCCCACCAACCACCTGGACGCCGAGTCCGTGCTGTGGCTCGAGCAGCACCTGGCGACCTACCCCGGCGCCGTCCTGGCCGTGACCCACGACCGGTACTTCCTCGACCACGTCGCCGAGTGGATCTGCGAGGTGGACCGCGGTCGCCTCTACCCCTACGAGGGCAACTACTCGACGTACCTGGAGAAGAAGCAGGCCCGTCTCGAGGTGCAGGGCAAGAAGGACGCCAAGCTGTCCAAGCGCCTCAAGGACGAGCTCGAGTGGGTGCGCCAGAACGCCAAGGGCCGCCAGACCAAGTCCAAGGCGCGTCTGGCCCGCTACGAGGAGATGGCTGCCGAGGCCGAGCGCACCAAGAAGCTGGACTTCGAGGAGATCCAGATCCCGGCCGGCCCCCGTCTGGGCAGCCTGGTGCTGGAGGCCGACAAGCTGCAGAAGGGCTTCGGCGACCGCCAGCTCATCGACGGGCTCAGCTTCACGCTGCCGCGCAACGGCATCGTGGGCGTCATCGGCCCGAACGGCGTCGGCAAGACCACGCTGTTCAAGACGATCGTCGGCATGGAGCCGCTCGACGGCGGCGACCTCAAGGTCGGCGACTCGGTGAAGATCTCCTACGTGGACCAGTCCCGTGGCGGGATCGACCCGGACAAGTCGCTGTGGGAGGTCGTCTCGGACGGTCTGGACTTCATCCAGGTCGGCAACGTCGAGATCCCCTCGCGCGCCTACGTCGCCTCGTTCGGCTTCAAGGGCGCCGACCAGCAGAAGAAGGCCGGTGTGCTCTCGGGTGGCGAGCGCAACCGCCTCAACCTGGCGCTGACGCTCAAGCAGGGCGGCAACCTGCTCCTGCTGGACGAGCCCACCAACGACCTCGACGTCGAGACCCTGGGCTCGCTGGAGAACGCGCTGCTCGAGTTCCCGGGCTGTGCCGTCGTGGTCTCCCACGACCGCTGGTTCCTCGACCGCGTGGCCACGCACATCCTGGCCTACGAGGGCACCGAGGAGGACCCGGCGAACTGGTACTGGTTCGAGGGCAACTTCGCCTCGTACGAGGAGAACAAGGTCGAGCGCCTCGGCGCCGAGGCCGCGCGTCCGCACCGCGTGACCTACCGCCGCCTCACCCGCGACTGA	MAEFIYSMYKARKAHGDKVILDDVSLNFLPGAKIGVVGPNGAGKSTILKIMAGLDQPSNGEARLSPGYTVGILQQEPPLNESKTVLGNVEEGVGEIKAKVDRFNEISGLMAEPDADFDSLMAEMGELQEAIDAADAWDLDSQLEQAMDALRCPPPDAEVSVLSGGERRRVALCKLLLEKPDLLLLDEPTNHLDAESVLWLEQHLATYPGAVLAVTHDRYFLDHVAEWICEVDRGRLYPYEGNYSTYLEKKQARLEVQGKKDAKLSKRLKDELEWVRQNAKGRQTKSKARLARYEEMAAEAERTKKLDFEEIQIPAGPRLGSLVLEADKLQKGFGDRQLIDGLSFTLPRNGIVGVIGPNGVGKTTLFKTIVGMEPLDGGDLKVGDSVKISYVDQSRGGIDPDKSLWEVVSDGLDFIQVGNVEIPSRAYVASFGFKGADQQKKAGVLSGGERNRLNLALTLKQGGNLLLLDEPTNDLDVETLGSLENALLEFPGCAVVVSHDRWFLDRVATHILAYEGTEEDPANWYWFEGNFASYEENKVERLGAEAARPHRVTYRRLTRD				NA	NA	NA	NA	NA
AK001_02170	2025			hypothetical protein	ATGACCTCCACCGGCACCCCGGACGACGCCGACCACGCCGTCTCGCCGAGCGCCGCCGCCCTCACCACGGACGCGGCCACGGCCGTGCTCGTCGACGCCCTGGAGTCGCTGCGCGCCCGGCTCGGCGCGCTGCGCCTGCCGCTCGACGTCCCCGGAGCCACCCACTTCCGCGAGGACCTCGCCCGCGCGACCGCCCAGCTCGACGACTACCTGCTGCCCCGGCTGCGCGCCGAGCGCGCACCCCTGCTCGTCGTCGTCGGCGGGTCCACCGGCGCGGGCAAGTCGACCCTCGTCAACTCCCTGCTCGGCGAGCAGGTCACCAGCCCGGGCGTGCTGCGCCCCACCACCCGCTCGCCCGTGCTCGTCCACCATCCCCTCGACGCTCGCTGGTTCGGCGCCGACCGCGTGCTGCCCGGGCTGGCCCGGGTCGCCACCCACGGCGACGCGTCCGGTCCGTCCTCGTCGCGTGACGACGACGGCCGCCCCACCCGCACGCTGCGCCTGGTGCCCAGCGCCAACCTGCCGCAGGGCCTCGCGCTGCTGGACGCGCCCGACGTCGACTCCGTCGAGGAGGCCAACCGGGAGCTCGCCGGCCAGCTGCTCGGCGCCGCGGACCTGTGGCTCTTCGTCACCACGGCCGCCCGCTACGCCGACGCCGTGCCCTGGGGGCTGCTCACCACCGCCGCGTCGCGCCGCGCCCAGGTCGCGCTCGTCCTGGACCGTGTCGACCCGGGGACCGAGGAGGTCGCCGGCGACCTGCGTCGTCTCATGACCGAGCACGGGCTGGCCGACGCCGCCCTGTTCGTCGTGCCGGAGACGGGCGGGGCGGGGGACGAGCGCATGATCGACGGTCTGCTGCCCGAGTCCGCCGTCGGCGAGCTCGCCACCTGGCTGTCCGGCGTCGGCGGGGACCCCGACTCCCGGGCCCGCGTCATCACGGCCACCCGCGACGGCGTGGTCGACGACCTCGTGCGTCGCACGCAGGCGCTGGCCGACGCCGCCGAGGCCCAGCGGGCCGCCGACGCGCGGCTGCGCGGCGCCGTCGAGCGCCACCACGCCGAGGCGCTGCGCCAGGTGGAGGCGGCGACCTCCGACGGTGCCCTGCTGCGGGGGGAGGTGCTGGCCCGGTGGCAGGACTTCATCGGCACCGGGGAGTTCTTCCGCTCGCTGGAGGCCGGCGTCGGCAAGGTGCGCGACGCCGTGGGCCGGTTCTTCCGCGGCCGGCCGAAGGAGGCGCCGCAGGTCGAGCAGGCCATCGCCCACGGGCTGGAGTCCGTCGTCCTGGACGGGGCCGAGCAGGCGGCCGAGCGCACCTACGCCGACTGGCGCGACGACGTCGCCGGCTCCACCCTCCTGGACGGGCTCGAGCTGTCCCGCACCGCCCCGAACCTGCGCGCAGAGGTCGCCGAGGCCATCCGTGGCTGGCAGGGCGACGTCCTGGCCCTCGTGCGCGAGCAGGGCGAGGGTCGCCGCGGGACCGCCCGCGCCCTGTCCTTCGGCGTCAACGCGCTCGGCGTGAGCCTCATGGTGGTCGTCTTCGCCTCCACCGCCGGCCTCACCGGCCTCGAGATCGGCATCGCCGGCGGCACCGCCGTGGCCGCGCAGAAGATCCTCGAGGCCGTGTTCGGCGACGACGCGGTGCGCCGCCTGGCGGCCCAGGCCAAGGAGCGGCTGACCGCGCGCGTGGAGACGGTGCTGCGGGGGCAGTCGGCCCGCTACACGGCTCAGCTCGACGCGCTGGGTGCCGACCGGGCCGACGGCGAACGCCTGCGGGAGGCCGCGCGCGAGGTCGCCGACGCCGCACGCACCGAACGGACCGGCCGGGAGCGGCCCGCGGACGGGCTCACGCGGCCGTGGAGCGGCGGTCTCCTGCGCGGCGCCGGCACCTTCCGGCCGCCCACGGGCCCCGACGGCGTGCCCCGCGTGGCGGGCTCCCTCGCCGGGCGAGACACCGAGACCCCCGCACCCGACGAGCCGCCCCGGCCCCGCTTCTGGCAGCGGTGGCGACGGAAGGACCGCCCATGA	MTSTGTPDDADHAVSPSAAALTTDAATAVLVDALESLRARLGALRLPLDVPGATHFREDLARATAQLDDYLLPRLRAERAPLLVVVGGSTGAGKSTLVNSLLGEQVTSPGVLRPTTRSPVLVHHPLDARWFGADRVLPGLARVATHGDASGPSSSRDDDGRPTRTLRLVPSANLPQGLALLDAPDVDSVEEANRELAGQLLGAADLWLFVTTAARYADAVPWGLLTTAASRRAQVALVLDRVDPGTEEVAGDLRRLMTEHGLADAALFVVPETGGAGDERMIDGLLPESAVGELATWLSGVGGDPDSRARVITATRDGVVDDLVRRTQALADAAEAQRAADARLRGAVERHHAEALRQVEAATSDGALLRGEVLARWQDFIGTGEFFRSLEAGVGKVRDAVGRFFRGRPKEAPQVEQAIAHGLESVVLDGAEQAAERTYADWRDDVAGSTLLDGLELSRTAPNLRAEVAEAIRGWQGDVLALVREQGEGRRGTARALSFGVNALGVSLMVVVFASTAGLTGLEIGIAGGTAVAAQKILEAVFGDDAVRRLAAQAKERLTARVETVLRGQSARYTAQLDALGADRADGERLREAAREVADAARTERTGRERPADGLTRPWSGGLLRGAGTFRPPTGPDGVPRVAGSLAGRDTETPAPDEPPRPRFWQRWRRKDRP				NA	NA	NA	NA	NA
AK001_02172	507			hypothetical protein	ATGCCGACCATGACTCGTCTGCACGTACCCGTCTCGCTGCGCTGGTCCGACCTGGACGCCTACCAGCACGTCAACAACGTCGCGATGTTCCGCCTGCTGGAGGACGCCCGCATCACCGCGTTCTGGCAGCACCCCGAGTCGGAGGACCCCTGGCCGACGGCGATCCTGGACACGGGTCCGCACGCCACCTCGCACACGCTCGTGGCCGGTCAGCAGATCGAGTACCTGCGTCCGCTCGGCTTCTCCCGCGACCCCGTGCGCGTGGAGATGTGGATCGGGTCGATCGGGGGCGCGTCCCTGGAGGTCTGCTACGAGGTGTACGACGGCGCCCAGGGCGGTTTCCCGCGGACCGGCCCGGCGTCCGGGCGGGAGCCGTACACCCGGGCCGTGACGACGATCGTGGTGATCGACGCCGCCTCGGGTCGTCCGCGCCGGATCTCGCCCGAGGAGCGTGCCGTGTTCGCACGGTTCGCGGAGGACCCGATCGCGTTCCGCCGACGTCGCTGA	MPTMTRLHVPVSLRWSDLDAYQHVNNVAMFRLLEDARITAFWQHPESEDPWPTAILDTGPHATSHTLVAGQQIEYLRPLGFSRDPVRVEMWIGSIGGASLEVCYEVYDGAQGGFPRTGPASGREPYTRAVTTIVVIDAASGRPRRISPEERAVFARFAEDPIAFRRRR	PGPT0001850_706	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107	NA	NA
AK001_02173	1674			hypothetical protein	GTGTTCACGGCGCTCCGGCGGCAGACTGACGAGATGTCGACAGACTCCCCCGCCCCGGACCCTGTGACCGCCTCGGTCCCCACCGACACGCCCGCCACGGTGGCGGTGACCGGTGTGACCGGCTACGTCGGTGGCCGGCTCGTGCCGGAGCTGCTCGCGGCCGGCTACACCGTGCGCGCGCTGACCCGGAACCCCGACCGCCTCGCCGGGCGCCGGTGGGCCGGCGACGTCGAGGCGGTCCGCGCCGACGTCTCGGACCTGGACGCCACCCGGCAGGCGCTGCGGGGCGCCGACGTCGCCTACTACCTGGTGCACTCGCTCGGCACGGGACGCACCTTCGAGGTGCGCGACCGGCGCAACGCGCTGACCTTCGCCCGCGCGGCGCGGGAGGCGGGCGTGGGGCGCATCGTCTATCTCGGCGGTCTCTACCCCGACGTCCCCGAGGGAGAGCTGTCGCCGCACCTGTCCTCGCGCAAGGAGGTCGAGGAGATCCTGCTCGCCTCGGGCGTCCCGACGACGGTGCTGCGCGCGGCGGTCATCCTCGGGTCGGGCTCGGCGTCGTTCGAGATGATGCGCTACCTGACCGAGCGGCTGCCCGCGATGACGACGCCGCGGTGGGTGGACAACCGCATCCAGCCGATCGCGATCCGCGACGTGCTGCGCTACCTGGTCGGCGCGGCCGCGATGCCGCCGGACGTCTCCCGCGGCTTCGACATCGGCGGCCCGGAGATCGTCACCTACCGCGACATGATGCAGCGCTACGCCCGGGTCGCGGGCCTGCCCCGGCGACTCATCGTGGGGGTCCCGGTGCTGACGCCGCGCCTGTCCAGCCACTGGGTGGGCGTGGTGACGCCGGTCCCGTCCGGGATCGCCCGCCCGCTGGTCGAGTCGCTGCAGCACGAGGTCGTGTGCCTGGAGGACGACATCCGCGGGCTCGTGCCCGACCCGTCCGAGGGGCGCGTGGACGTGACCCGGGCGATCGAGCTGGCGCTGACCCGCATCCACGACGGCGAGGTGACGACCCGCTGGACCTCGGCCTCGGTGCCCGGGGCGCCGTCGGACCCGCTGCCCACGGACCCCGACTGGGCCGGCGGGTCGCTCTACGTCGACGAGCGACGCACGGTCGTGCACGCCCCGCGCGACGTGCTGTGGCAGATGATCGAGGAGATCGGCGGCCAGGACGGCTGGTACTCGTGGTCGCTGGCGTGGCGGCTGCGGGGCCTGATGGACCGCATCGTCGGCGGGCCGGGACTGCGCCGCGGCCGGCGGGACGAGCACCGGCTGCGGGTCGACGACGCGCTCGACTTCTGGCGGGTCGAGGCCCTGGAGCCGGGCCGGCGCCTGCTGCTGCGGGCGGAGATGCGCCTGCCGGGGCTGGCCTGGCTGGAGCTGCGGGTGGACGAGTCGGCGGAGGAGGTCACCGACGCGGACGACCCGGGGCCGGAGCCCGCCGACGCCAGCGGGCCGCAGCGCACCTACTTCGCCCAGCGGGCGCTGTTCTACCCCCACGGCCTGCTCGGCCAGGCGTACTGGTGGTCCGTCGCCCCGTTCCACGGGATCGTGTTCGGCGGCATGCAGCGCAACGTCGCGCGCGCCGCCGAGGCGCGCGCGGGCGACCAGCAGGAGAGCCGGCACCAAGCCGCCGAGAGCCGGGCCGCCGACGCCGGCTCCTGA	MFTALRRQTDEMSTDSPAPDPVTASVPTDTPATVAVTGVTGYVGGRLVPELLAAGYTVRALTRNPDRLAGRRWAGDVEAVRADVSDLDATRQALRGADVAYYLVHSLGTGRTFEVRDRRNALTFARAAREAGVGRIVYLGGLYPDVPEGELSPHLSSRKEVEEILLASGVPTTVLRAAVILGSGSASFEMMRYLTERLPAMTTPRWVDNRIQPIAIRDVLRYLVGAAAMPPDVSRGFDIGGPEIVTYRDMMQRYARVAGLPRRLIVGVPVLTPRLSSHWVGVVTPVPSGIARPLVESLQHEVVCLEDDIRGLVPDPSEGRVDVTRAIELALTRIHDGEVTTRWTSASVPGAPSDPLPTDPDWAGGSLYVDERRTVVHAPRDVLWQMIEEIGGQDGWYSWSLAWRLRGLMDRIVGGPGLRRGRRDEHRLRVDDALDFWRVEALEPGRRLLLRAEMRLPGLAWLELRVDESAEEVTDADDPGPEPADASGPQRTYFAQRALFYPHGLLGQAYWWSVAPFHGIVFGGMQRNVARAAEARAGDQQESRHQAAESRAADAGS				NA	NA	NA	NA	NA
AK001_02174	897	tesB	COG1946	Acyl-CoA thioesterase 2	GTGAGCGACGCCCCCGACGGACCCCTGGCCCGGCTCCTGGCCGCCCTCGACCTGCACGAGATCGAGGGCTGGGGCCCCCGCGGCGAGGACGACGTCTGGCGCGGCGAGTCCGTGCCCGGCCCGGCGCGCCGCGTCTACGGCGGGCAGGTGCTCGCGCAGGCGCTCCTGGCGTGCGGCCGCACCGTCGAGGACGACCGGCTGCCGCACTCCCTGCACGCCTACTTCCTGCGCGAGGGTTCCCTGGACTCCCCGATCGACTTCGCCGTCGAGCGGCTGCGCGACGGGCGCTCCTTCAGCGCGCGCCGCACGCACGCGATCCAGTCGGGCCGTCCGATCCTGTCGCTGACGGCGTCCTTCCAGGTCGACCAGCCCGGCTACGAGACGCACGTCCCGATGCCCGACGGCGTGCCGGCGCCGGAGGAGGTGACCTCGGCCTTCGAGGCGCTGCGCGGGATCGACCACCCGGCGGCGCGCTACTGGGCGGACGGGTCGGCCTTCGAGCTGGCTCACGTCGGCGGCTCGCTCTACGTCGGACCGGCGGACGAGCCGCGACCGGAGCAGATGGTCTGGATGCGCGCCCGGCACGCGATCGACTCCGACGACCTGCTGCTGCACCGCGCGCTGCTGGCCTACTCCTGCGACCAGGTCATGCTGGAGCCGATCCTGCGCGGGGCCGGCAAGTCGTGGCTGGAGGTCGGCGGCGCGGTGCCGATGGCCTCGCTGGACCACGCGATGTGGTTCCACCGGGATGCCCGCGCCGACGAGTGGCTGCTGTACGTCCAGGAGTCGCCGGGCGCCCAGGGCGGCCGCGGCCTGGGCCTGGCCCGGGTGTACGACCGCGACGGAGCGCTGGTGGCGACCATCGCCCAGGAGGGCATGGTCCGGCTGCCCGTCTGA	MSDAPDGPLARLLAALDLHEIEGWGPRGEDDVWRGESVPGPARRVYGGQVLAQALLACGRTVEDDRLPHSLHAYFLREGSLDSPIDFAVERLRDGRSFSARRTHAIQSGRPILSLTASFQVDQPGYETHVPMPDGVPAPEEVTSAFEALRGIDHPAARYWADGSAFELAHVGGSLYVGPADEPRPEQMVWMRARHAIDSDDLLLHRALLAYSCDQVMLEPILRGAGKSWLEVGGAVPMASLDHAMWFHRDARADEWLLYVQESPGAQGGRGLGLARVYDRDGALVATIAQEGMVRLPV	PGPT0001835_187	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805	NA	NA
AK001_02175	384	glbO	COG2346	Group 2 truncated hemoglobin GlbO	GTGACGACCCCCACCTTCTACGACGACGTCGGCGGCCACGAGACGTTCGTGCGCCTCGTGGACGTGTTCTACGAGGGCGTGGCCACCGACGAGGTCCTGCGCCCGATGTACCCCGAGGAGGACCTCGGACCGGCGAAGGAACGCCTGACGCTCTTCCTCGAGCAGTACTGGGGCGGTCCGACGACGTACAGCCAGCAGCGCGGGCACCCGCGGCTGCGGATGCGGCACGCGCCGTTCAAGGTCAACCCCGACGCCCGGGACCGCTGGCTGGCGCACATGCGCACCGCCGTCGACTCCCTGGACCTGCCGCCCGCCCACGAGTCCCAGCTCTGGGACTACCTCGAGCGCGCGGCCTTCAGCATGATCAACACCTTCGAGGAATGA	MTTPTFYDDVGGHETFVRLVDVFYEGVATDEVLRPMYPEEDLGPAKERLTLFLEQYWGGPTTYSQQRGHPRLRMRHAPFKVNPDARDRWLAHMRTAVDSLDLPPAHESQLWDYLERAAFSMINTFEE	PGPT0018560_1759	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
AK001_02176	240	nagF	COG1264	PTS system N-acetylglucosamine-specific EIIB component	ATGAGCAAGGCGGAGAACATCCTCGCAGCACTGGGCGGGACCGCGAACGTGGTCGAGCTGGAGCCGTGCATCACGCGGCTGCGCGTCCAGGTGTCGGATCCCGAGCAGGTCGACGAGCCCGCCCTCAAGGAGTCCGGCGCCTTCGGCGTCGTACGGTCCGGACGCATCATCCAGGTCATCGTCGGCCCCGAGGCCGACAACCTGGCCGCCGAGCTCGACGGCCGGCTCACCTCGGCCTGA	MSKAENILAALGGTANVVELEPCITRLRVQVSDPEQVDEPALKESGAFGVVRSGRIIQVIVGPEADNLAAELDGRLTSA	PGPT0016860_566	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_N_ACETYLGLUCOSAMINE_PTS_SYSTEM,PGPT0016860-nagE|nagP-K02804	NA	NA
AK001_02177	1044			hypothetical protein	GTGGCCCGCGTGCGTGATGAACCCGTGACCTTCAGCCTGCCCCTGCCGTTCGACACCGACCCCGCCCCCGAGCCGAGCACCTCCGAGGGGGTGCTGGAGAACGCGGGGGACGTGGCCGCCGACGCCGGGAACACCTTCTGGGAGTGGTTCACCGGCTGGCCGCTGCAGATCCTCGTGATCCTGCTCGTCGGGATCGTCGTCCTCGTGGCGCTGCGCCGCGTGATCTCCCACGTCGCCGAGCGCATCGCCCTCGGGGGCAGCAAGGCCGTCCCCGCCGAGCGCAAGGGGTGGAAGGCCTGGTTAGGCAGGACGCCGCTCGTCGAGGACGCGATGGCCGTGGCCAACCCGCTGGCCTCCGAGCGACGCGCCCAGCGTGCCCGGACCGTCGGTTCGGTGCTGACCTCCACGGCGAACATCGTCGTCGGCGTCATGGTGGTGCTCAGCGTGCTGTCCGCGGTGGGCCAGCCCGTCGGGCCGCTGCTGGCGTCGGCCGGTGTGGCCGGCATCGCGCTGGGCTTCGGCGCGCAGTCGCTGGTGCGCGACTTCATCTCCGGCATCTTCATCCTCATCGAGGACCAGTACGGCGTCGGCGACTGGGTCGACCTCGGCTCCGGCGCGGAGGGCGAGGTCGAGGAGGTCCAGCTGCGCACGACCAAGGTGCGGGCCCTGGACGGCACGCTGTGGTGGGTGCGCAACGGCGAGATCCTGCGGGCCGGCAACCGGACCCAGCGCTGGTCGCGCGCGCTGGCCGAGGTGCACGTCCCGGTCGACGCCGACGTCGACGTGGTCCGGGCGGCGCTGGGCCGGGCCTGCGACGCCGTGGCCCGCAGCGAGGAGTTCGGTCAGGAGTTCCTCGAGCCGCCGGCGGTGCGCAACGGCGTGGACGCGGTGTCGGACTTCTCGATGTCGTTCACGATCATGGCCCAGACGCGTCCGGGCATCCAGTGGAACGTCTCCCGCGCACTGCTGCGGGCGGCGCAGGACGAGCTGCGCCAGGTCGGTGCGGTGCGTTCGGAGCGTGTCGAGGTCCCCGAGCAGGCCTGA	MARVRDEPVTFSLPLPFDTDPAPEPSTSEGVLENAGDVAADAGNTFWEWFTGWPLQILVILLVGIVVLVALRRVISHVAERIALGGSKAVPAERKGWKAWLGRTPLVEDAMAVANPLASERRAQRARTVGSVLTSTANIVVGVMVVLSVLSAVGQPVGPLLASAGVAGIALGFGAQSLVRDFISGIFILIEDQYGVGDWVDLGSGAEGEVEEVQLRTTKVRALDGTLWWVRNGEILRAGNRTQRWSRALAEVHVPVDADVDVVRAALGRACDAVARSEEFGQEFLEPPAVRNGVDAVSDFSMSFTIMAQTRPGIQWNVSRALLRAAQDELRQVGAVRSERVEVPEQA	PGPT0013695_1548	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044	NA	NA
AK001_02178	2175	malQ	COG1640	4-alpha-glucanotransferase	GTGAGCCTTGACGACCAGACATCGGCCGTGCCCGACGACGGTGCGCCCACCGAGCTGCGTGAGCTGGCGGCGGCGCACGGTGTGCTCACCGAGTACCACCGGTTCGGAGGGGGGATCGCGCACGTCTCCGACGCCACCCTCGTCGCCGTCCTGACCGCCCTCGGCGTGGCGGCGACGACCCGGCAGGAGGTCTCCCAGAGCCTGCGCCGCGCACGGGACGACGAGTGGCGCACCGTCCTGCCACCGACCGTGGTCGCCCGCCAGGGTGACGCCCGTGACCTCCCGGTCCACGTCAGCGACGGCGCGTCCGTGCACGTGTGGGTCGAGCTCGACGGCGCCGAGCCGGAGGCCCGCCCCCACGAGCTGCGCCGTCGTCGGGACCTGGAGCAGCGCGACGTGTTCGTCACGCCGCGGGAGGTCGACGGCCGCACGGTCGGGCGCGCGACCTTCGCCGTGCCGGACGACCTGCCGCTGGGCTGGCACACCCTGCACGCGCTGACCGAGGGCCAGGAGTGGTCGACCACCCTCGTGGTCACCCCGGCGCGACTCGAGCTGGGCGACGACATCGAGCGCGACCAGGTCTGGGGGGTCCTCGCCCAGCTGTACTCCGTCCGGTCGCGGACGTCCTGGGGCATGGGGGACCTGGCGGACCTGGCCGACCTCGCCTGGCTGACGGCGCACCAGGCCGGCGCCGACTTCGTGGCGGTGAACCCGCTCTCCGCGGCCGAGCCCACCGTGCCGATGACGCCGTCGCCGTACCTGCCCACGTCACGGCGGTTCGGCAACCCGATCTACGTGCGGGTCGAGGACATCCTCGAGACGGCCTACCTCTCCGCCGCGGACCGGTCGCTCGTCGAGTGGGCCGCCGACCCGGTGCGCGACCTGGACACGGACGCCGGGGCGCTGGAACGCGACGCGGTCTGGGAGGCGAAGAAGGCCGCGCTGGAGGTCGTCCACACCGCGCCGCGGCGCGCCGCCCGGCAGGCCGCGTACGAAGCCTTCGTCGAGTCCCAGGGGCAGGGCCTGCAGGACTTCGCGACCTGGTGCGCCCTCACCGAGGAGCTGGCCGGCGCGCCCTGGCCCGACGAGCTGCGCGACCCCTGGTCGCCGGCCGTGGCCGCGACGCGCGAGCGGCTGGCCGAACGCGTCGACTTCTACTGCTGGTTGCAGTGGGTCTTCGACGAGCAGAAGCACGCCGCCCAGCGCACCGCCCTCGAGGCCGGCATGCGGGTCGGCATCATGCACGACCTCGCCGTGGGGGTGCACCCCGCCGGCGCCGACGTGTGGGCCCTCGGCGACGTGCTGGCGCACGGCGTCGGCGTCGGCGCCCCGCCCGACATGTACAACCAGCAGGGGCAGAACTGGTCCCAGCCGCCGTGGAACCCCCGCACGCTCGCGCGCGCCGGCTACGGGCCGTACCGGGACATGCTGCGCACCGCGCTGCGGCACGCCGGCGCGCTGCGCGTCGACCACATCCTCGGCCTCTTCCGGCTGTTCTGGGTCCCGGACGGCATGCGCCCCACCGAGGGCACCTACGTGCGCTACGACCACGACGCGCTCATCGGGATCCTGTGCCTGGAGGCCCAGCGCGCCGGTGCCGTCGTCATCGGCGAGGACCTCGGCGTCTTCGAGCCCTGGGTCCGCGACTACCTCGCCTCGCGCGGCGTGCTCGGCACGTCGGTCTTCTGGTTCGAGAAGTCTGACGGGCGGCCCCTGCCTCCCGAGGACTACCGGCACCTGACCTTCGCCACGGTGGGCACCCACGACATGCCGCCGACGGCGGGCTACCTCGCCGGCGAGCACGTGGACCTGCGCGAACGGCTCGGGCTGCTCACCGAGGACGCCCAGGTGCTGCGGGCGCAGGCCCGCGCGGAGCGGGACGGCGCCGTGCTGGCCCTTTCCGAGAGGGGCCTGGTCGGAGACTCGCCCTCGGAGCGCGAGGTGGTCGAGGGGCTGCACCGCTACCTGCGGCGCTCCCGGGCCGCCCTCGTCGGCGTCCAGCTCGTCGACGCGGTGGGGGAGCGGCGTTCGCAGAACCAGCCCGGCACCGACACCGAGTACCCGAACTGGAAGGTGCCGCTGGGCGACTCCGCGGGCAACATCGTCCTGGTCGAGGACCTGTTCGACAACGCGCGGCTGCGGTCGCTCTTCGCAGCGGTCGCCTCCGCCCGCTGA	MSLDDQTSAVPDDGAPTELRELAAAHGVLTEYHRFGGGIAHVSDATLVAVLTALGVAATTRQEVSQSLRRARDDEWRTVLPPTVVARQGDARDLPVHVSDGASVHVWVELDGAEPEARPHELRRRRDLEQRDVFVTPREVDGRTVGRATFAVPDDLPLGWHTLHALTEGQEWSTTLVVTPARLELGDDIERDQVWGVLAQLYSVRSRTSWGMGDLADLADLAWLTAHQAGADFVAVNPLSAAEPTVPMTPSPYLPTSRRFGNPIYVRVEDILETAYLSAADRSLVEWAADPVRDLDTDAGALERDAVWEAKKAALEVVHTAPRRAARQAAYEAFVESQGQGLQDFATWCALTEELAGAPWPDELRDPWSPAVAATRERLAERVDFYCWLQWVFDEQKHAAQRTALEAGMRVGIMHDLAVGVHPAGADVWALGDVLAHGVGVGAPPDMYNQQGQNWSQPPWNPRTLARAGYGPYRDMLRTALRHAGALRVDHILGLFRLFWVPDGMRPTEGTYVRYDHDALIGILCLEAQRAGAVVIGEDLGVFEPWVRDYLASRGVLGTSVFWFEKSDGRPLPPEDYRHLTFATVGTHDMPPTAGYLAGEHVDLRERLGLLTEDAQVLRAQARAERDGAVLALSERGLVGDSPSEREVVEGLHRYLRRSRAALVGVQLVDAVGERRSQNQPGTDTEYPNWKVPLGDSAGNIVLVEDLFDNARLRSLFAAVASAR	PGPT0018570_780	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705	NA	NA
AK001_02179	2571	pepN		Aminopeptidase N	GTGCCCGGAGAGAACCTGACCCGCGCCGAGGCGATCGCACGCGCCGACGTCGTCACCGCCGTCGAGTCCTACGCGATCGACCTCGACCTGACCACCGGGCCCGAGGTGTTCGCGTCGACCACCGTCATCCGGTTCTCGGCCACCGAGGGCGCGAGCACTTTCCTCGACCTCGTCGCCCCGCGCGTGCACGAGATCGTGCTCAACGGCCGCTCGCTCGACGTCGGCACGGTGTTCTCGGACTCGCGGATCGCCCTGGACGGCCTCGCCGCGGACAACGAGGTGCGCGTCGTCGCCGACTGCGCCTACATGAACACCGGCGAGGGGCTGCACCGGTTCGTCGACCCGGTCGACGACGAGGTCTACCTCTACACCCAGTTCGAGGTGCCCGACGCCCGCCGGGTCTTCGCCACCTTCGAGCAGCCCGACCTCAAGGCGCCGTTCCAGCTGTCGGTGACCGCGCCCGCGCGGTGGCACGTCGTGGCCAACCAGCCGACGCCGGAGCCCACGCCCGCCACCCACGCGAGCGACGGCGACGTCGAGGCCGCCCGCTGGGAGTTCGGGCCGACCCCGCGCATCTCCACCTACCTCGTGGCGCTCGTCGCCGGGCCGTACGCCGTCGAGCGCGGGGAGGTCACCTCGTCGGACGGCCGCGTGATCCCGCTGGGCGTGTACTGCCGCGCCTCGCTCTCCGAGCACCTGGACGCCGACGCGATCATGGAGACCACGCGCCAGGGCTTTGGGTTCTACGAGTCGACGTTCGACGTCCCGTACCCGTTCGACAAGTACGACCAGCTCTTCGTGCCCGAGTACAACATGGGCGCGATGGAGAACCCGGGCTGCGTCACCTTCACCGAGTCCTACGTCTTCCGCTCCCAGGTCACCGACGCCATCCGCGAGCGCCGCATCGTGACGATCCTGCACGAGCTGGCGCACATGTGGTTCGGCGACCTGGTGACGATGAAGTGGTGGAACGACCTGTGGCTGAACGAGTCGTTCGCCGAGTACGTCTCCACCCTCGCCACGGCCGAGGCCACCGAGTGGAAGGCTGCCTGGACGACGTTCAACGCCATGGAGAAGACCTGGGCCTACCGCCAGGACCAGCTCCCCTCCACGCACCCGATCGTCGCGCCGATCAACGACCTGGAGGACGTCCAGGTCAACTTCGACGGCATCACCTACGCCAAGGGCGCCTCGGTGCTCAAGCAGCTCGTGGCCTGGGTGGGTCGTGACGAGTTCGTCGCGGGCGTCTCCGCCTACTTCCGCAAGCACGCCTGGGGCAACACCGAGCTGCGCGACCTGCTGGTCGAGCTCGAGGCCACCAGCGGGCGCGACCTGTCCGCCTGGTCGCAGGCCTGGCTGGAGACCGCCGGCGTCAACACGCTGCGCCCCGCGATCGAGCTGGACTCCCACGGCCGCACCACGGCGTTCGTCATCGAGCAGACGGCGCACGAGGACTACCCGACGATCCGTCCGCACCGGCTCGGCATCGGGTTCTACGACTTCGACACCTCCGGCGACGTGGTGCGCACGCGGTCCGTCCAGGTGGACGTCGACGGCGAGCGGACCGAGGTCCCCGAGCTCATCGAGCTCGACCGGCCCGCGCTCGTGCTGATCAACGACGACGACCTCGCCTACGCCAAGGTCCGCCTGGACGAGGCGTCGCTGACGTTCGCCGTCGAGAACCTCTCGCGGATCGCGGACCCGCTCGCCCGCTCCCTGGTGTGGAGCTCGGTGTGGGACGCCGTGCGCGACGGCGAGACCCCGGCGTCGTCCTACGTCGACCTGGTGCTGGGCAACATCGCCGCGGAGACCGAGTCGACGACGGTGCGCACCACGCTGGCCCAGCTCGGGCTGGCCACGCGGACCTACGTGGCTCCGGCGCGGCGCGCCGAGACGCTGCAGCGCGTCGGCGACACGCTGTGGACGCTCGCCCAGGACGCCGCCCCCGGTTCCGACCTGCAGCTGCAGCTCGTGAAGTACTTCTCGGCGCTGGCCTCGACCGCCGACCACGTCGCCCCGCTGCGGGGCCTGCTCGACGGGTCGGTCACACTCGAGGGCCTGACCGTCGACACCGACCTGCGCTGGGAGCTGCTGCAGGGCCTGGTGCTGCTCGGCGAGGCCGACGCCTCCGAGATCGACGCCGCGCAGGCGGCCGACGACACGGCGACCGGGCGCCAGGCGGCGGCCCGTGCCCGGGCGACCACACCGTCGGTCGCGGGCAAGGAGCGCGCGTTCGCCTCGGTCGTGGACGACTCCGACGCGCCGAACGCGATCATCCGCGCCACGGCCTCCGGGTTCGTGCACGTGACCGACCCCAGCGTGCTCGAGCCGTTCGCGCAGCGGTACGTCGACGCGCTGCTGCCGATCTGGGAGAACCGCAGCTACCACATCGCCGAGGAGCTCGTGGAGGGCCTCTACCCGGCGCCGCTGGCCTCGGTCGAGCTGCGGGACACGGTGCGCGGCTGGCTCGAGGCACACCCCGAGGCCCCGGCGGCGCTGCGCCGCATGGTGGTCGAGGGGCTGGCCGGCACCGAGCGTGCGCTGGCGGCGCAGGCCGTCGACGCCGCCTGA	MPGENLTRAEAIARADVVTAVESYAIDLDLTTGPEVFASTTVIRFSATEGASTFLDLVAPRVHEIVLNGRSLDVGTVFSDSRIALDGLAADNEVRVVADCAYMNTGEGLHRFVDPVDDEVYLYTQFEVPDARRVFATFEQPDLKAPFQLSVTAPARWHVVANQPTPEPTPATHASDGDVEAARWEFGPTPRISTYLVALVAGPYAVERGEVTSSDGRVIPLGVYCRASLSEHLDADAIMETTRQGFGFYESTFDVPYPFDKYDQLFVPEYNMGAMENPGCVTFTESYVFRSQVTDAIRERRIVTILHELAHMWFGDLVTMKWWNDLWLNESFAEYVSTLATAEATEWKAAWTTFNAMEKTWAYRQDQLPSTHPIVAPINDLEDVQVNFDGITYAKGASVLKQLVAWVGRDEFVAGVSAYFRKHAWGNTELRDLLVELEATSGRDLSAWSQAWLETAGVNTLRPAIELDSHGRTTAFVIEQTAHEDYPTIRPHRLGIGFYDFDTSGDVVRTRSVQVDVDGERTEVPELIELDRPALVLINDDDLAYAKVRLDEASLTFAVENLSRIADPLARSLVWSSVWDAVRDGETPASSYVDLVLGNIAAETESTTVRTTLAQLGLATRTYVAPARRAETLQRVGDTLWTLAQDAAPGSDLQLQLVKYFSALASTADHVAPLRGLLDGSVTLEGLTVDTDLRWELLQGLVLLGEADASEIDAAQAADDTATGRQAAARARATTPSVAGKERAFASVVDDSDAPNAIIRATASGFVHVTDPSVLEPFAQRYVDALLPIWENRSYHIAEELVEGLYPAPLASVELRDTVRGWLEAHPEAPAALRRMVVEGLAGTERALAAQAVDAA				NA	NA	NA	NA	NA
AK001_02180	1008			hypothetical protein	ATGTCCGGCACGGTGCCGCCGCCCCCGCCGCCCGGCCCTGGACCGCAGGAGCCCGGTGGCGCGGCCTCGCCCGCCGCGGGCCCGCGCGGAGACGACGCCCGCCCGGCGTCGCCGCCGTCGTTCGCCCCGCGGGGTGCCTCGACGGGCGGGCCGGCGCCGTCCCCCGACGAGCAGCCGACCCAGCCGCACGCCCCGGTCCCGCCGGCGCCGTCGTCCCCGGCGACGAGCTCGCCGGCACCGGCCCCCGTGCCCGCCGCGGCGCCCGCCCCGGCGCGGTCCGCGGCGTGGAACGCGACCGCGCCGGTCGCCGGCGCGCCCGCGGCGCAGCAGTACGGCTACACGCCCCAGCAGTACGCGTACCAGCAGCCCCCGGCGGCGGGGCCGGCCGCCGGCGGCACGCCGCCGACCGGCACCACGCAGCAGCCGTCCGTCGGCGGTCGCGGCCGGCGGCTCAGCGCGGGCTGGATCGCGTTCATCGTGCTCGACGTCGTCCTCGTGGTGGTCGTGGCGGTCCTGGCGTTCCGCGCGCTGGGCGGTCCGGACCCGTCCAGCACCCCGACGGGCGACCCCGAGGCCGTCGCCGGCCAGGAGGCGCAGGAGGGGCAGGGCGACGGTGACGAGGCCGGCGACCAGGAGGCCGAGGACGGGCCGGGCGAGCTCGTGGCCGAGTTCGCCTCGCCGTCGCGCAATATCACCTGCCAGGTCTACGCCGACCAGGTGACCTGCGGTCTGGCCGAGCTCAACCAGCAGCCGGCACCGGTCGAGGGCTGCGACGGCACGACCGGGTACGTCGTCACCCTGTCCGGGGAGGGCGAGGTCGCGCTGCCCTGCGTGCCGCAGGGGGAGAAGCCGGGTCCGGCGGGCGACGGGCTGGACGAGCTGCCCTACGGCGAGTCCCGCACCGAGGGCGACTTCACCTGCACCAGCGAGACCGACGGCATGTACTGCCAGCACGACCCCACGGGCAACGGATTCTCGCTGGCCCGGGCCGGCGTCGGGACGTACTGA	MSGTVPPPPPPGPGPQEPGGAASPAAGPRGDDARPASPPSFAPRGASTGGPAPSPDEQPTQPHAPVPPAPSSPATSSPAPAPVPAAAPAPARSAAWNATAPVAGAPAAQQYGYTPQQYAYQQPPAAGPAAGGTPPTGTTQQPSVGGRGRRLSAGWIAFIVLDVVLVVVVAVLAFRALGGPDPSSTPTGDPEAVAGQEAQEGQGDGDEAGDQEAEDGPGELVAEFASPSRNITCQVYADQVTCGLAELNQQPAPVEGCDGTTGYVVTLSGEGEVALPCVPQGEKPGPAGDGLDELPYGESRTEGDFTCTSETDGMYCQHDPTGNGFSLARAGVGTY				NA	NA	NA	NA	NA
AK001_02181	2013	pepO	COG3590	Neutral endopeptidase	ATGACGACCGACGCGACCGGGCTGCGGTCCGGCATCGACACAGCAGCACTCGACGAGTCCGTCCGCCCCCAGGACGACCTGTTCCGCCACGTCAACGGGCGGTGGCTCGCCACGCACGAGATCCCGGCCGACCGCGCCATGGACGGCGCGTTCCGCGAGCTGCACGACCAGGCCGAGGACCAGGTGCGCGACATCATCACCGACGCCGGCGAGGCCGTGCGCGCGGGCGGCGCCACCGGCGCGCAGCAGCAGATCGGCGCCCTGTACGCCAGCTTCATGGACACCGAGCGCGTCGAGGAGCTCGGGACCACGCCGATCGTCCAGGAGGTCGCCGCGGTCCGCGACGCCGCGGACCGGACCGGGCTGACCCGGGTGCTGGGCGCCCTGCAGCGCACCGGCGGCGGCGGCGCCGTCGCCTTCGGCGTCGACAACGACGCCAAGGACCCCGAGCGGTACGTGACGATCATGGTCCAGGCCGGGCTCGGCCTGCCCGACGAGGCGTACTACCGCGAGGAGCAGTACGAGCCGGTGCGTGCCGCCTACGCCCCGCACGTGGCGCGGATGCTCGCGATCGCCGGCGTGGGCACCGAGGACTGGGGCGTCGGCCCCGAGGAGGCCGCTGCGCGGGTGGTCGCCCTGGAGACGCAGCTCGCGACGCACCACTGGGACGTCGTGCGCGACCGGGACGCGACCCTGACCTACAACCCCATGACCTTCGCCGAGCTCGTCGAGGCCGCCCCCGGGTTCGACTGGGCGGTCTGGGCGGACGCTCTCGGCGCCCCCGCCGGGGCCATGGACGCCCTGGTGGTGCGCGAGCCGTCGTTCGTCACCGGCCTCGGCGAGCTGTGGTCGACGCTCCCGCTGCTCGACTGGCAGCTGTGGGCGGCCTACCACCTCGTCACCGCCCGGGCGCCGTACCTGTCCGACGAGATCGTCCAGGCGAACTTCGACTTCTACGGCAAGGTCCTCTCCGGTGCCGAGCAGGTGCGCGAGCGCTGGAAGCGCGGCGTGAGCCTCGTCCAGGGCGCCCTCGGCGAGGCGGTCGGCCAGGAGTACGTGGCCCGCCACTTCCCGCCGGAGCACAAGGAGCGCATGGACGTCCTGGTCGAGCACCTCATCGCCGCGTACCGCGAGTCGATCGAGGCCCTGGACTGGATGACCGCCGAGACGAAGCATCGGGCGCTGGCCAAGCTCGAGAAGTTCACCCCGAAGGTCGGCTACCCCGCCAAGTGGCGCGACTACACCGGCCTGGAGCTGTCCGCGGACGACGTCGTGGGCAACGTGCGGCGCGCGCACGCCTTCGAGCAGGACTACGAGCTGGGCAAGATCGGCAAGCCGCTGGACCGCGACGAGTGGTTCATGACGCCGCAGACCGTCAATGCCTACTTCAACCCGGGGATGAACGAGATCGTCTTCCCCGCCGCGATCCTGCACCCGCCGTTCTTCGACCCCGAGGCCGACGACGCCGTCAACTACGGCGGCATCGGCGCGGTCATCGGGCACGAGATCGGCCACGGGTTCGACGACCAGGGCTCGAAGTACGACGGCGACGGCCGGCTCGAGGACTGGTGGACCGAGACCGACCGCACCGAGTTCGAGAAGCGCACCAAGGACCTCGTCGCGCAGTACGACGCGTTCCGCCCGGCCCAGCTCGGCGAGGACGGTCCGACCGTCAACGGGGCGCTGACCATCGGCGAGAACATCGGCGACCTGGGCGGGCTGTCCATCGCCATCAAGGCCTACCGCATCGCCCTCGGCAGCTCGCTCGACGACGCCCCGGTCATCGACGGCTACACCGGTCTGCAGCGGGTGTTCCTGTCGTGGGCGCAGGTGTGGCAGGCCAAGGGACGCGACGCCGAGGTGGAGCGCCGGCTGGCCACGGACCCGCACTCGCCGAACGAGTTCCGCTGCAACGGCGTCGTGCGCAACGTCGACGAGTTCTACCGTGCCTTCGACGTCGCGGCGGACGACGCGCTGTACCTGCCGCCGCAGGAGCGCGTCACCATCTGGTGA	MTTDATGLRSGIDTAALDESVRPQDDLFRHVNGRWLATHEIPADRAMDGAFRELHDQAEDQVRDIITDAGEAVRAGGATGAQQQIGALYASFMDTERVEELGTTPIVQEVAAVRDAADRTGLTRVLGALQRTGGGGAVAFGVDNDAKDPERYVTIMVQAGLGLPDEAYYREEQYEPVRAAYAPHVARMLAIAGVGTEDWGVGPEEAAARVVALETQLATHHWDVVRDRDATLTYNPMTFAELVEAAPGFDWAVWADALGAPAGAMDALVVREPSFVTGLGELWSTLPLLDWQLWAAYHLVTARAPYLSDEIVQANFDFYGKVLSGAEQVRERWKRGVSLVQGALGEAVGQEYVARHFPPEHKERMDVLVEHLIAAYRESIEALDWMTAETKHRALAKLEKFTPKVGYPAKWRDYTGLELSADDVVGNVRRAHAFEQDYELGKIGKPLDRDEWFMTPQTVNAYFNPGMNEIVFPAAILHPPFFDPEADDAVNYGGIGAVIGHEIGHGFDDQGSKYDGDGRLEDWWTETDRTEFEKRTKDLVAQYDAFRPAQLGEDGPTVNGALTIGENIGDLGGLSIAIKAYRIALGSSLDDAPVIDGYTGLQRVFLSWAQVWQAKGRDAEVERRLATDPHSPNEFRCNGVVRNVDEFYRAFDVAADDALYLPPQERVTIW				NA	NA	NA	NA	NA
AK001_02182	462	rpiB	COG0698	Ribose-5-phosphate isomerase B	ATGCGTCTGCACATCGCCGCCGATCACGCCGGATACGAGCTCAAGTCCCACCTCGTCGAGCACCTGCGCGCCGCCGGGCACGACGTCGTCGACCACGGTGCGCACACCTACGACGCCCTGGACGACTACCCGTCGTTCTGCTTCTCCGCGGGCGAGGCCGTCGTGGCCGAGCCCGGGTCGCTCGGCATCGTCATCGGCGGGTCGGGCAACGGCGAGCAGATCGCCGCGAACAAGGTCACCGGTGTCCGCGCGGTGCTGGCCTGGTCGGCCGAGACGGCCCGGCTGGGTCGTCAGCACAACGACGCCAACGTCATCGCCGTCGGCGGGCGCATGCACTCCCTGGAGGAGGCCACCGCTCTGGTGGAGGCGTTCGTGGCCGAGCCGTTCTCCGGCGACGCGCGCCACCAGCGCCGCATCGACCAGCTCGCCGCCTACGAGGCCGACCGGCCCACCGCCTCCTGA	MRLHIAADHAGYELKSHLVEHLRAAGHDVVDHGAHTYDALDDYPSFCFSAGEAVVAEPGSLGIVIGGSGNGEQIAANKVTGVRAVLAWSAETARLGRQHNDANVIAVGGRMHSLEEATALVEAFVAEPFSGDARHQRRIDQLAAYEADRPTAS	PGPT0017395_1186	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808	NA	NA
AK001_02183	1080	nei1	COG0266	Endonuclease 8 1	GTGCCCGAGGGGCACACGGTCCACCGCCTGGCCCGGACCCTGGACCAGCTCTTCGCCGGCCGGCGGCTGGCGGTGAGCAGCCCGCAGGGGCGCTTCGCCGGTGGTGCCGCGGTGCTCGACGGCGCCACGTTCGTCGGGGCCGAGGCGTGGGGCAAGCAGCTGTTCTGCCGGTTCGCCGTGCCCGGCCCCGACGCCGGGACGCACGAGCGCTGGTTGCGGGTCCACCTGGGGCTCTACGGCGCCTGGACCTTCGCGGGCGACGGCAGCGCCGACGTCGCGCACGCCATCGGGGCACCGCGCCGGCGGGTCGGGGAGCGCGAGACCACCCTGTCCTCGGAGCCGTCGGACCAGGCCACCGGCGGTCGCGACACGCGTCCCGCGGGTCCGGGGGAGTGGACCGCCCCGGAGCCGCGCGGTGCCGTGCGGGTCCGCCTTCTCGCTCCGTACGCCGTCGCCGACCTGACCGGCCCGACCGCCTGCGAGGTGCTCACCCCGGACGAGAAGGCCGCCGTCGAGGACCGCCTCGGTCCCGACCCGATCCGGCCCGACGGGGGCCACGGCTCGCTCGAGGCGGCCCGTGCGGCGTTCGTCGCCCGGGTGCGGTGCTCGCGGGTCACCGTCGGTCAGCAGCTCATGGACCAGGCCGTCGTCGCCGGCGTCGGCAACATCTACCGCGCCGAGGCGCTCTTCCGGGCCGGGCTGGACCCGCTGCGGCCGGGACGCGACGTGGCCGCGGCGGTCCTGGAGGAGATCTGGGACGACCTCGTGGCGCTCCTGCGCGACGGCGCCGCCTCCGGCCGCATCGTCACCACGCGCCCGGAGCACCGCGACGACGGCGGGGCAGCGGACGGCGGCGGCGCGACGGGTGACGAGCAGGCGCGGGCCGGAGCAGCGGGCACGGCCGCGGGCCGTCGTCGTACCCGGCAGAACACCGACGGCGACCCGGACGCCGTGCCCGCCCACGAGGCGTTCTACGTCTACCACCGCGAGGGGCTGCCCTGCCGGGTGTGCGGCACGCCGGTGCTGCTCCGGGAGCTGGCGGGCCGCAACCTGTTCTGGTGCGGGGTCTGCCAGGCCTGA	MPEGHTVHRLARTLDQLFAGRRLAVSSPQGRFAGGAAVLDGATFVGAEAWGKQLFCRFAVPGPDAGTHERWLRVHLGLYGAWTFAGDGSADVAHAIGAPRRRVGERETTLSSEPSDQATGGRDTRPAGPGEWTAPEPRGAVRVRLLAPYAVADLTGPTACEVLTPDEKAAVEDRLGPDPIRPDGGHGSLEAARAAFVARVRCSRVTVGQQLMDQAVVAGVGNIYRAEALFRAGLDPLRPGRDVAAAVLEEIWDDLVALLRDGAASGRIVTTRPEHRDDGGAADGGGATGDEQARAGAAGTAAGRRRTRQNTDGDPDAVPAHEAFYVYHREGLPCRVCGTPVLLRELAGRNLFWCGVCQA				NA	NA	NA	NA	NA
AK001_02184	1308	eis_2	COG4552	N-acetyltransferase Eis	ATGACCCTCGACTCCCCGCTGCCTGCCGGCTACCGGTTCCGCCGGCTGACCGCCGACGACGACCGCGCCGTGATCGACCTCGACTCCTGGGCGTTCCCCGTCCCCGTGGAACCCGAGGAGATCGCGAAGATGCCCTCGCCGCTCAGCTGGGACCGTGCCGTCGGCGTCGAGGCCGACGGCGGCTCACCGGGCGGATCGCCTCTGGTGGCGATGCACGCCTCCTACCCGTTCACGCACTTCCCGGTCCCGGGCGGCACGCTGCCGACCGCGGGGCTGACCTGGGTCGGGGTCCACCCCCAGTACCGGCGCCGCGGCCTGGCGAGCGCGATGCTCGACCTGCACCTGGCCCGGTGCCGCGAGCGGGGCGAGCCGTTGTCGGCGCTGTACGCCGCCGAGTACGCGATCTACGGACGGTTCGGGTACGGGCGCGCCGCCGACGACGTCCGCGTCACCCTCCCGCGGGGAGCGGCGCTGCGGGACGTGCCCGGCGCGTCCGAGCACACGGTCCGCGTCGAGCACGCCGACCGGGAGCACCACGGGGACCTCGTCGCCGCCGTCCACCGTGCCGCCGGGCGCGACGCGGCCGGGCTCGGGGTGAACCGCCCGGGCTGGGCGAGCCCCGAGACCCCCGAGCTGCAGGCTCACCGCTGGCACGACGCGGCCGCGTTCCGTCAGGGGTTCGAGACGCGCCGGATCGTGGTCGTCGAGCGTGCCGGCGAGCCGCGTGGATACGCCCTGCTGCGCCGCAAGCTGGACTGGGACGTCACGGGACCGCGGGGCACGGTGAACGTCGGCGAGGCCGTCGCGCTCGACGCCGCGGCGTCCCGCGCCCTGTGGGGCGTGCTGGTGGACCTGGACCTGATGAACGAGACCAGGCCGTTCATCCTCGCCCCGGACGACCCGCTGCTCGGCCTGCTCGTCGACCGCCGCAGCGCCGACCTGCGGGTCGCCGACAACGTCTGGGTCCGCCTCGTCGACGTGCCCACGGCGCTGGCCGGCCGGCAGTACGCCGCCGACGTCGACGTCACGCTGGCCGTGACGGACACCCGCCTAGGCGAGAACGACGGCGTCTGGCGGTTGCGGGCGTCCGCGTTCGGCGAGGCGACCTGCGAGCGCTCGGACGTCGCGGCCGCCGACGCCGACCTGGCGCTGGACGTGCGCGAGCTCGGCGCCGCGTACCTCGGCGGGACGTCGCTGTCCGAGCTCGGGGGCGCTGGTCTGGTGTCCGAGCGGTCCCCGGGCGCGCTCGCGCGGGCGTCGACCGCCTTCGGCTGGCCCGTCGCGCCGGTGTGCAGCTGGGTGTTCTGA	MTLDSPLPAGYRFRRLTADDDRAVIDLDSWAFPVPVEPEEIAKMPSPLSWDRAVGVEADGGSPGGSPLVAMHASYPFTHFPVPGGTLPTAGLTWVGVHPQYRRRGLASAMLDLHLARCRERGEPLSALYAAEYAIYGRFGYGRAADDVRVTLPRGAALRDVPGASEHTVRVEHADREHHGDLVAAVHRAAGRDAAGLGVNRPGWASPETPELQAHRWHDAAAFRQGFETRRIVVVERAGEPRGYALLRRKLDWDVTGPRGTVNVGEAVALDAAASRALWGVLVDLDLMNETRPFILAPDDPLLGLLVDRRSADLRVADNVWVRLVDVPTALAGRQYAADVDVTLAVTDTRLGENDGVWRLRASAFGEATCERSDVAAADADLALDVRELGAAYLGGTSLSELGGAGLVSERSPGALARASTAFGWPVAPVCSWVF				NA	NA	NA	NA	NA
AK001_02185	327			hypothetical protein	ATGGACCCCACGCCCATCCCGCCCGCCGAGGAGTACCTCGCGGAGGTGCTGACGGTCGTCGAGCGCGTCCCCGCCGGCCGGGCGACGACGTACGGACTGGTGGCCGAGGCGGTCGCCGACGTGCTCGGGCGGGGCGGCCCGCGCCAAGTCGGGCAGGTGATGGCGCGGGCCGGCTCGGGGGTCGCCTGGTGGCGGATCGTCAACGCCGCCGGGTCGCCGCCGGCGCACCACCTCGACGCGGCGCTGACCGAGCTGCGGGCCGAGGGGTGCCCGCTGACGCGCGACGGACGCCGCGTCGACCTGCGGCGCGCCGTCTGGCTGCCCTGA	MDPTPIPPAEEYLAEVLTVVERVPAGRATTYGLVAEAVADVLGRGGPRQVGQVMARAGSGVAWWRIVNAAGSPPAHHLDAALTELRAEGCPLTRDGRRVDLRRAVWLP				NA	NA	NA	NA	NA
AK001_02186	1041			Putative coenzyme F420-dependent oxidoreductase	ATGACCACCCTGCGCATCGGCATCCAGACCGGCTACTGGTCCCGCAAGCCGCCGACCGGCATCGTCGAGGCGCTGCAGCAGGGCGAGGCCGCCGGGCTCGACTCGGTCTGGACCGCCGAGGCCTACGGGTCGGACGCCTTCACGCCCCTGGCCTGGTGGGGCTCGCACACCTCGCGCCTGCGGCTCGGGACCGGCATCGCGCAGATGGCCGCCCGCACGCCGACGGCGACCGCCATGCAGGCGATCACGCTCGACCACCTCTCCGGCGGCCGGTTCGTGCTCGGGCTCGGCGCCTCGGGACCGCAGGTCGTCGAGGGCTGGTACGGCCAGCCCTATCGCCGCCCCCTGGCCCGCACCCGCGAGTACGTCGACATCGTGCGCCAGGTGATCGCCCGCGAGCGCCCCGTGGCCTACGACGGCGAGTTCTTCACCCTGCCGGTCGGCGCGGACACCCCGGGGGCGACCGGCCTGGGCAAGTCCCTGAAGCCGACGGTCCACCCCCTGCGCGCCGAGATCCCCATCGTGCTGGCCGCGCAGGGCCCGAAGAACGTGGCGCTGGCGGCGGAGATCGCCGACGGCTGGATGGCCGGCTTCTACGCGCCCAGCGCGGACGCCGGGCACCGTGAGCAGCTCGCCGAGGGGTTCGCACGGCGTGCCGAGGAGCGCTCGGCCGTCGGGGACTTCGAGGTCGCCGCGATGGTCCCGGTGGTGGTGCGCGACGACGTCGAGTCCGCCGCCGACCTGGTGCGTCCCCACGTCGCGCTGTACGTCGGCGGCATGGGCGCCAAGGGCTCGAACTTCCACAAGGACTCGCTCGACCGGCTGGGGTTCGCCGCCGTCACCGACGAGGTGCAGCGCCTCTACCTGGACGGCCGCCCCCAGGACGCGGCCCGCGCGGTCCCGACCGAGCTGGTCGAGGAGATCGCGCTGGTCGGCCCGGCCGCGAAGGTGCGCGCCGACCTCGGACGCTGGGAGGACACGGCCCTGACGACGCTGCTCGCCCAGGGCGACCCGGCGTCGGTCGCGGCGCTGCTCGGCTGA	MTTLRIGIQTGYWSRKPPTGIVEALQQGEAAGLDSVWTAEAYGSDAFTPLAWWGSHTSRLRLGTGIAQMAARTPTATAMQAITLDHLSGGRFVLGLGASGPQVVEGWYGQPYRRPLARTREYVDIVRQVIARERPVAYDGEFFTLPVGADTPGATGLGKSLKPTVHPLRAEIPIVLAAQGPKNVALAAEIADGWMAGFYAPSADAGHREQLAEGFARRAEERSAVGDFEVAAMVPVVVRDDVESAADLVRPHVALYVGGMGAKGSNFHKDSLDRLGFAAVTDEVQRLYLDGRPQDAARAVPTELVEEIALVGPAAKVRADLGRWEDTALTTLLAQGDPASVAALLG				NA	NA	NA	NA	NA
AK001_02187	390			hypothetical protein	ATGGCCACGTACGACGACGTCGCGCAGCTCGCCCTCGCGCTCCCGAGGACCGCCGAGGCCACCTCGCACGGGTGGCGCACCTGGAAGGTGGAGGGCCGCCAGTTCGTCTGGGAGCGGCCGTTCCGGCAGGCCGACCTGCGCCGGTTCGGCGACGACCCGGTGCCCGCCGGGCCGATCCTCGCGGCCGCCGTGGACGACCTCGACGAGAAGGACGCGGTGCTCGCCGCGCACCCGGAGTCGCACTTCACCATCGCCCACTTCGACGGGTACGCGGCGGTGCTGGTCCGGCTCGAGGCGGTGGACGACGGCGTCCTGGCCGAGACCGTGGAGGACGCGTGGGCGGCCCGGGCGCCGTACTCGCTGGTCGCCCGGCACCGCCCGTCGCGGTGA	MATYDDVAQLALALPRTAEATSHGWRTWKVEGRQFVWERPFRQADLRRFGDDPVPAGPILAAAVDDLDEKDAVLAAHPESHFTIAHFDGYAAVLVRLEAVDDGVLAETVEDAWAARAPYSLVARHRPSR				NA	NA	NA	NA	NA
AK001_02188	1011			hypothetical protein	ATGACCACCCACCCCGACCCGACACCGGCCTGGCGTCGGCGCGCCCGCCGCTCGACCCTGTGGTCCTCCCTCGCCGGACTGGCCCTCACCCTCGGCGCTGCCGCGACCGTGTGGGGCTGGCGTGGCGACCTGCCCGACGAGGTCGCCACGCACTGGGGGCCCGGCGGCACCCCGGACGCCTCCATGACGGTCACGGGCCTGGTGGCGACCGCGGTGGCCACGACCGTCGGCCTGCTGGCCCTCTTCGCCGTCGTCGGCCTGGCCTGGGGCTCCAGCGCCTCCACCCGGCGGACGGCGGCCGGTGCCGCCGTCTGGTCCGGCGGCCTGGGCGCCGCCCTCCTGCTGGTCACCGCCGGTCTCCAGCGCGGCCTGGACACACCGCAGGCCGCAGAGCTGCCCGGATGGGCCCTGGCCGTGGTCCTGCTCGCCCCGCTGCTCCCCGCCGTGGGCGCCGCGGCGCTCGTCCCGGGCGACCCGGCCCTGCCGGCCGAGCGCCCCGTCGCGGCCGACGCCCCCCGGACGACGCTGACGGACAGCGAGCGTGCCGTCTGGATGGGAACCGCCCGGGGCGGTGCGGCCCTCGTGCTGGGGATCGGGGCCGTCGTCGCCACGACGCTGCTCGCCGTCGTCGCCCAGCTCTGGGCGACACTGCTGGTCCCCGCGCTGCTGGCCGTGCTGTTCGCCGCGATGTTCGCCTTCCGGGTACGGGTCGACGCGACCGGCTTCACCGTGCGGTCGGTGCTGGGTTGGCCCGGGACCCACGTCCCGGCCGACGAGGTCGTGGAAGCCTCGGTGACCCGGGTCAGCCCGCTCGGGGACTTCGGCGGCTGGGGCTGGCGCGTCGGCTTCGACAAGGGCCGCGTCGGGGTCGTGCTGCGGTCGGGCGAGGCCGTGCTGGTGGAGCGCACCGGAGGGCGCGGCCTCGTGGTCACGGTGGACGACGCCGCGAGCGCCGCGGCCCTGCTCAACACGATGGCCGACCGGGCGCGCGCGGACCGCACCCCCGGCTGA	MTTHPDPTPAWRRRARRSTLWSSLAGLALTLGAAATVWGWRGDLPDEVATHWGPGGTPDASMTVTGLVATAVATTVGLLALFAVVGLAWGSSASTRRTAAGAAVWSGGLGAALLLVTAGLQRGLDTPQAAELPGWALAVVLLAPLLPAVGAAALVPGDPALPAERPVAADAPRTTLTDSERAVWMGTARGGAALVLGIGAVVATTLLAVVAQLWATLLVPALLAVLFAAMFAFRVRVDATGFTVRSVLGWPGTHVPADEVVEASVTRVSPLGDFGGWGWRVGFDKGRVGVVLRSGEAVLVERTGGRGLVVTVDDAASAAALLNTMADRARADRTPG				NA	NA	NA	NA	NA
AK001_02189	357	ytrA_1	COG1725	HTH-type transcriptional repressor YtrA	ATGCTCTGGACCATCGACGCCGGGAGCGACGAGCCGCTGTACGCGCAGCTCGTCGCGCAGGCGCACCTCGCCGTCGCCCGCGGCGACCTCTCCCCCGGCGACCGCCTGCCCGCGGCACGCGAGCTCGCGACCTCGCTGGACCTCAACGTGCACACGGTCCTGCGCGCCTACCAGCAGCTGCGGGACGAGGGTCTCGTCGACCTGCGGCGCTCGCGCGGCGCCGTGATCACCGGGGCCGCCGCCACGGACCTGACCGCCGTCGAAGAGGCGCTGCGCACCTTCGTCGCAGCGGCCCGCGAGGCGCGCCTCTCCCCCGAAGCCACCACCACCCTCCTCCAGGAAGAGCTCAAGCGATGA	MLWTIDAGSDEPLYAQLVAQAHLAVARGDLSPGDRLPAARELATSLDLNVHTVLRAYQQLRDEGLVDLRRSRGAVITGAAATDLTAVEEALRTFVAAAREARLSPEATTTLLQEELKR				NA	NA	NA	NA	NA
AK001_02190	633	cysE	COG1045	Serine acetyltransferase	ATGGCGGACTCCCCGGCGCGCGCGTTCCTCCGTCTCCTCCGCGAGGACGCGGAGGTCGCGCGCGCCCAGGACCCGGCGGCGGACTCGCTGCTGTCGGTCGTCCTGACCTACCCCGGCGTCCATGCCGTGTGGCACTACCGCCTCGCCCACGCGATGTGGCAGTCACCCCTGCTGCGCATGCCCGCACGGATGCTGTCCCTGGCCTCGCGGCTGTTCACCGGCGTCGAGATCCACCCGGCGGCCCGGATCGGGCGCCGGCTGTTCATCGACCACGGCATGGGCCTGGTCATCGGCGCCACGGCCGAGGTCGGCGACGACTGCCTGCTCTTCCACGGCGTCACCCTGGGCGGGCGCACCATGAACCCCGGCAAGCGGCACCCCACCCTGGGCGACCGCGTGATGGTCGGCTCCGGGGCCAAGGTGCTCGGACCGCTGTGGATCGGCGACGACGCCAAGATCGGCGCGAACGCCGTCGTGACCAAGGACGTGCCGAACGGCGCGGTCGCCGTCGGCGTGCCGGCGAAGAACAAGGTGCCCGCCGCGCAGCCGCCGGACCCGACCTCGAACGGCAGGTCCCGCAGCACGCCGCGCACGATCGAGGACCCGTCGCAGCTCATCGAGTACGTCATCTGA	MADSPARAFLRLLREDAEVARAQDPAADSLLSVVLTYPGVHAVWHYRLAHAMWQSPLLRMPARMLSLASRLFTGVEIHPAARIGRRLFIDHGMGLVIGATAEVGDDCLLFHGVTLGGRTMNPGKRHPTLGDRVMVGSGAKVLGPLWIGDDAKIGANAVVTKDVPNGAVAVGVPAKNKVPAAQPPDPTSNGRSRSTPRTIEDPSQLIEYVI	PGPT0020265_4584	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION	CE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640	NA	NA
AK001_02191	936	cysK1	COG0031	O-acetylserine sulfhydrylase	ATGGCCACCATCTACGACGACGCGACGCAGCTCATCGGCCGGACGCCGCTGGTGCGGATCAACCGTCTCACCGAGGGCTCGGAGGCGACCGTCGCCGCCAAGCTCGAGTTCTACAACCCGGCCAGCTCGGTCAAGGACCGCATCGGCGTCTCGATCATCGACGCCGCCGAGGCCTCCGGCGAGCTGAAGCCCGGCGGGACCATCGTCGAGGGCACCTCCGGCAACACCGGCATCGCCCTCGCCTTCGTCGGTGCCGCTCGCGGCTACCACGTCGTGCTCGCGATGCCCGAGACGATGTCCAAGGAGCGCCGCGCGCTGCTGCGCGCCTACGGCGCCGAGCTGGTCCTGACCCCGGGCTCGGAGGGCATGAAGGGGGCCGTCGCGGCCGCCGAGAAGATCGCCGCCGAGCGTCCCGGGGCGATCCTGGCCCGCCAGTTCGCCAACGAGGCCAACCCCAAGATCCACCGCGAGACGACGGCCGAGGAGATCTGGGCCGACACCGACGGCGAGGTCGACATCGTCGTGGCCGGCATCGGTACCGGCGGCACCATCACCGGCGTCGGCCAGGTCCTCAAGGAGCGCAAGCCCGAGGTCCAGATCGTCGCCGTCGAGCCGGAGGAGTCGCCCATCCTCAACGGCGGTGCCCCCGGACCCCACAAGATCCAGGGCATCGGCGCGAACTTCGTCCCGGAGATCCTCGACACCGAGATCTACGACGAGGTCATCGACGTCAACGCGGAGACCGCCGTCGAGTGGGCGCGGCGCGCCGCTCGCGAGGAGGGCCTGCTCGTGGGCATCTCCTCCGGCGCCGCCCTGAACGCCGCGGCCCAGGTCGCGAAGCGCCCGGAGAACGCCGGCAAGACGATCGTCGTCATCATCCCGAGCTTCGGCGAGCGCTACCTGTCCACCGTGCTGTTCTCGGACCTGCTGGACTGA	MATIYDDATQLIGRTPLVRINRLTEGSEATVAAKLEFYNPASSVKDRIGVSIIDAAEASGELKPGGTIVEGTSGNTGIALAFVGAARGYHVVLAMPETMSKERRALLRAYGAELVLTPGSEGMKGAVAAAEKIAAERPGAILARQFANEANPKIHRETTAEEIWADTDGEVDIVVAGIGTGGTITGVGQVLKERKPEVQIVAVEPEESPILNGGAPGPHKIQGIGANFVPEILDTEIYDEVIDVNAETAVEWARRAAREEGLLVGISSGAALNAAAQVAKRPENAGKTIVVIIPSFGERYLSTVLFSDLLD	PGPT0002810_5166	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738	NA	NA
AK001_02192	108			hypothetical protein	ATGACGACCATCGCACCCTCCCACGTCTCCGGCCCCGACACCTTCGCTGCCGCGCCCCTCGTGCGCCGGCCGATGTGCGCCTGCCCCGCGGTCTGCTGCTGTCGGTAG	MTTIAPSHVSGPDTFAAAPLVRRPMCACPAVCCCR				NA	NA	NA	NA	NA
AK001_02195	1128	crtL		Lycopene beta cyclase	ATGGCGGACGTCGCGGTGGTCGGGCTGGGTCCGGCCGGGCGTGCCCTCGCCGCGCGGTGCGTGGCCGCCGGACTGTCGGTGGTCGCGGTCGACCCGCGCCCCGACGCGGTGTGGACGCCGACCTACGGTCTCTGGGCCGACGAGCTGGGCGACCTGCCCGCCTCCGTCGTGCGGGCACGGGCCGAGAACCCCGAGCTGCGGGCGACCGGCGTGCACCCCCTGCAGCGTGCCTACCTGGTCCTGGACAACGCCGCGATGCAGGCCGCCCTGCCCCTGGACGACGTCGAGGTCCGTACCGGACGCCTCGACGACGCGCAGGTCGGCGCCCTCCGCCGCGAGGCCCGGGTGGTGGTCGACGCCCGCGGGGCGCGACCCGGCGGTCTGCGGGCCGACGACCCGGCGCCGCTGCAGACCGCCTACGGGATCGTCGTGCCGGCCGAGGCCGCCGCGCCGGCCCTCCAGGGCGCCGAGTCCCTGCTGATGGACTGGCGCACCGACTGGTCGGAGCAGGAACGACCGACCGCCACCCCGACCTTCCTCTACGCGATCCCCGTGGGCGGCGAGCGGATGCTGCTCGAGGAGACGTGCCTGGCCGCCGCGCCGGGGCTGCCCGTCGCCGAGCTGCGGGCGCGGCTCCGGCGTCGCCTGCTGGCCCGCGGCGTCGACGCGGCCACGGTGGACCACCCTCTCGACCGCGAGGTCGTGCGCATCCCCATGCGCGGCCGCGACGCTCCCCCGCCCCCGGGCGTCCTGGCCGTCGGCACCGCGGGACGTGGCGGGCACCGGATCACCGGCTACTCCGTGGCGCACTCCCTGCGCCGGGCCGACGCCCTCGCGCACGCTCTCGCGCAGGGTGATGTGCCGGACGAGGTCGATCCGACGGACGCCGCCGAGCGGCTCCGGGAGGTCGGCCTGCGCGCGCTGCTGCGGCTGAGCACGCCGGGCACGCTGGAGCTCTTCGAGGGCTTCGGCCGCCTGCCGGCCCCCCGTCGGCAGGCGCTCCTCTCCCGCGACGCGGGCGCAGGCGGGCTGGCGGGCGCCATGTGGGGGATGTTCGCGCGGATGCCGTGGGCGGCCAAGGGTGAGCTGGTCCGCGCGTCGCTGAGCCCCTCGCGCCCGGGCGGCTGA	MADVAVVGLGPAGRALAARCVAAGLSVVAVDPRPDAVWTPTYGLWADELGDLPASVVRARAENPELRATGVHPLQRAYLVLDNAAMQAALPLDDVEVRTGRLDDAQVGALRREARVVVDARGARPGGLRADDPAPLQTAYGIVVPAEAAAPALQGAESLLMDWRTDWSEQERPTATPTFLYAIPVGGERMLLEETCLAAAPGLPVAELRARLRRRLLARGVDAATVDHPLDREVVRIPMRGRDAPPPPGVLAVGTAGRGGHRITGYSVAHSLRRADALAHALAQGDVPDEVDPTDAAERLREVGLRALLRLSTPGTLELFEGFGRLPAPRRQALLSRDAGAGGLAGAMWGMFARMPWAAKGELVRASLSPSRPGG	PGPT0007410_705	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007410-crtL1|crtY|lcyB-K06443	NA	NA
AK001_02196	411			hypothetical protein	ATGCCCCATCCGCACCTGATCTGGCTGCGCAGCGCCGCGACCGTGCTCATCAGCTGCGTCATCGCGCAGGCCGGCTGGGCCTCGGCCTACCTCGGCGGAGAACCGGGGTACCTCGACCAGCACCGGGTGGGCGCCTGGGTCACCCTGGCGGTCGCCTGGCTGGCGGTGGTCGTCTACCTCGTGCTCCGGCGTTCCGCCGGTCGGGTCAACGTGGCGCTCGCCGTGGCGACGGCGGTGCTGGTGACCGTGCAGTTCACCCTCGGTCGGCTCGGCGGGGACCTGCGGGCGCTGCACATCTTCACCGGGGTGCTGCTCGCGGTGCTCGTGACTGCCCTGACGTCGTGGACCTACCGTCACCGGCTGCCGGAGGAGGCGGCGGGCAGCTCCAGCTCCAGCCCCCGCAGCGTGTAG	MPHPHLIWLRSAATVLISCVIAQAGWASAYLGGEPGYLDQHRVGAWVTLAVAWLAVVVYLVLRRSAGRVNVALAVATAVLVTVQFTLGRLGGDLRALHIFTGVLLAVLVTALTSWTYRHRLPEEAAGSSSSSPRSV				NA	NA	NA	NA	NA
AK001_02197	1230			Cytochrome P450(MEG)	ATGACGGGCCGACGGCGGGCGGTGCGCCCGGGCGAGCCGAGCACGCCTCGCGTCGAGCGGCAGGGGGCCGACGGCGGCCGCGGGGTCAGCACCGTGTGGCGCGTCCGGTCGCTGGAGGCGGCGCGGCAGGTGCTGCGCGCGCGCCACGCCACGACGCAGGCCGGCTTCACCGCCGAGGCCATCCCCCAGCGGCTCAAGCACCACCCGATCCTCATCTCCGACGGTCCGCAGCACGACGAGCAGCGCCGCAAGGTCGCCCGCTTCTTCGCGCCCGTGGTCGTGGCCGAGCGCTACACCGCGCAGATGGAGGAGTGCGCCGACCGGCTGCTCGGCGGGACCCCGCCCGGCGGCCGACTCGTGCTCGACGAGCTCGCGCTGCACTACACCGTCGAGGTCACCGCGGAGGCGGTCGGGCTGACCGAGTCGTCCGTGCCGCGGATGTCGCGCCGACTGGTGAGCTTCTTCCGCCAGCCGCCCTTCGACATCACCCGCCGCGACCTCGGCCGCACGCGACGCCAGTGGATGCGGGCGGCCGTCAACGGTCTCCTGCCGGTCGCGCGCTTCTACCTCGCGGACGTGCGCCCGGCGATCCGGGCGCGTCGCACGGAGCGCCGCGAGGACATCATCAGCCACCTGGTCGACGAGGGCTACACCGACGTCGACATCCTGGTCGAGTGCGTCACGTACGGCACGGCGGGCATGGTGACCACGCGCGAGTTCGTCACGATGGCCGCCTGGCACCTGCTGCGCGACGACGCCCTGCGCGAGCGCTACGTCGTCGCCGGCCAGGAGGAGCGCTTCGCGATCCTGCACGAGATCATCCGGCTGGAGCCGGTCGTCGGGCACCTGTACCGACGCGCGCAGGAACCGATCAGCATCACCGACGGCGACGGCTCGTGGACGATCGAGGCCGGCGACCTGGTCGACGTGAGCGTGCGGTCCGCCAACGCCGACCCGCGGGCGCTGGACGAGGACGGCCTGGACCTGTGCCCCGGCCGGTCCCTGCCGCGGGGCGTCAACGCCGCCGGCCTCACCTTCGGCGACGGCGCCCACAAGTGCCCCGGCCAGCCTCTGGCGATCCTGGAGTCCGACGTGCTGCTCACCCGGCTCCTGGCACGCTCGCCGCGCCTGGTGTCCGAGCCCGAGGTGGGCTGGGACGACCTCATCGAGGGCTACACGCTGCGGGGGCTGGAGCTGGAGCTGCCCGCCGCCTCCTCCGGCAGCCGGTGA	MTGRRRAVRPGEPSTPRVERQGADGGRGVSTVWRVRSLEAARQVLRARHATTQAGFTAEAIPQRLKHHPILISDGPQHDEQRRKVARFFAPVVVAERYTAQMEECADRLLGGTPPGGRLVLDELALHYTVEVTAEAVGLTESSVPRMSRRLVSFFRQPPFDITRRDLGRTRRQWMRAAVNGLLPVARFYLADVRPAIRARRTERREDIISHLVDEGYTDVDILVECVTYGTAGMVTTREFVTMAAWHLLRDDALRERYVVAGQEERFAILHEIIRLEPVVGHLYRRAQEPISITDGDGSWTIEAGDLVDVSVRSANADPRALDEDGLDLCPGRSLPRGVNAAGLTFGDGAHKCPGQPLAILESDVLLTRLLARSPRLVSEPEVGWDDLIEGYTLRGLELELPAASSGSR				NA	NA	NA	NA	NA
AK001_02198	1650	mnmC_2		tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmC	ATGAGCCGACCCGTCCCGCCCGGCCGCGACGGCGCCGCCGTCCTCCACCCGGCAGCGCCCGGCGCCGAGCGCGTCAGCGACGACCAGCACGTGGTCGTCGTCGGCGGCGGCATCGCCGGCCTGGCCGCGGCGGCGATCCTGGCCGAGCGGGGCGTACGGGTGACGGTGCTCGAGGCCTGCGACCAGCTCGGCGGCCGGGTCCGCGCGTGGCCGGTCGACGGCGCCGACGAGGACGGCCGCACCATGAGCCGCGGCTTCCACGCCTTCTTCCGGCAGTACTACACGCTGCGGGCGCTGCTGCGCCGCGCCGACCCGACGCTGGCCCACCTGGTGCCGGTCCCCGACTACCCGCTGCGCCGCGGCGACGGCCTCACCGACAGCTTCGCGGCGCTGCCGCTGACCCCGCCGGTCAACCTCGCGGCGTTCGTCGTGCGCAGCCCCACCTTCCCGATCACCGCGCTGACCAAGGTGCACCTGCCGAGCGCCGTCGAGCTCGTCTCGGTCTCCTACCCCGCCAGCCACGAGCGCTACGACGGCGAGTCCGCCCAGGACTTCCTCGACCGCCTGCGCTTCCCCGAGGGTGCGCGGCACCTCGCCCTGGAGGTGTTCGCCCGGTCCTTCTTCGCCCACCCCACCGACTTCGGGGCCGGCGAGCTGGTCGGCATGTTCCACACCTACTTCGCCGGGTCCTCGGAGGGCCTGCTCTTCGACGTCCCCGACGACGACTACGACACCGCGCTGTGGGCCCCGCTGGGCCGCTACCTGGGCGGACTGGGCGTCGACGTGCGCACCGGTACGCGGGCCGAGTCGCTCGCCCGGGACGCGGACGGGACCTGGCACGTGGGCACCTCGTCCGGGGACCTCACCGCGGACGCCGTCGTGGTCGCCACCGACCCCCGGGCGGCACGCGGCCTGCTCGCGCCGCTCGCCGACCAGGCGGACGACGGTCTCGACCCCGCGGAGCGGCAGCAGTGGCACCGGCGGGTCGCCGCCGGGCGCAACGCCCCGCCCTTCGCCGTGCTGCGGCTGTGGCTCGACGGCCCGGTCGCCCCGGAGCGGGAGGCGTTCCTGGGCACCTCCGGCTACGACCTGCTCGACAACGTCACCGTCCTGGAACGGTTCGAGCAGGGAGCGGCCGACTGGGCGCTCGCGCACGGCGGCTCCGTCGTGGAGCTGCACGGCTACGCCGTCGACCCCGAGCGGGACCCCGACCTGGCCGGCGACGGGCCGCGCGGGCTCGACACCTCGCGTCTGCGCACACGGCTGCTGGACGCCCTGCACGAGGTCTACCCCGAGACCCGCGGGCTGCAGGCGGTCCACTCCGAGCTCCTCGTCGAGGACGACTGCGGGCTGGTCGGCACCGGCCCGTGGCGCGACCGGCTCACCGTCGACACCCCGTACCCGGGCCTGGCCCTGGCGGGCGACGGGCTCCGGGTCGACTGGCCGATCGCCCTCATGGAGCGCGCCGCGGTGACCGGCGTGCTCGCCGCCAACCACCTGCTGCAGGGCTGGGACGTGCGGGGCGAGGACGTCTGGACCGTCCCGCTGCAGGGTGTGCTCCGGCGTCGGCCGGACCTGTCGGCGGCGGGAGCAGCCGTGGCCCGGACCGCGCGGACCGTGCGGGACCGCCTGCCCGTCGGGCGGCGATGA	MSRPVPPGRDGAAVLHPAAPGAERVSDDQHVVVVGGGIAGLAAAAILAERGVRVTVLEACDQLGGRVRAWPVDGADEDGRTMSRGFHAFFRQYYTLRALLRRADPTLAHLVPVPDYPLRRGDGLTDSFAALPLTPPVNLAAFVVRSPTFPITALTKVHLPSAVELVSVSYPASHERYDGESAQDFLDRLRFPEGARHLALEVFARSFFAHPTDFGAGELVGMFHTYFAGSSEGLLFDVPDDDYDTALWAPLGRYLGGLGVDVRTGTRAESLARDADGTWHVGTSSGDLTADAVVVATDPRAARGLLAPLADQADDGLDPAERQQWHRRVAAGRNAPPFAVLRLWLDGPVAPEREAFLGTSGYDLLDNVTVLERFEQGAADWALAHGGSVVELHGYAVDPERDPDLAGDGPRGLDTSRLRTRLLDALHEVYPETRGLQAVHSELLVEDDCGLVGTGPWRDRLTVDTPYPGLALAGDGLRVDWPIALMERAAVTGVLAANHLLQGWDVRGEDVWTVPLQGVLRRRPDLSAAGAAVARTARTVRDRLPVGRR	PGPT0007465_63	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007465-crtU|cruE-K09879	NA	NA
AK001_02199	786	COQ5_4		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	GTGCTACGCAAACGCCCCGCCGTCGTGGGTCCTGTCGAGACGCGGGGAGCGCAGCTCTCCGACGAGTTCGACCGCGCCGCGGACCGCTACGACCTGCTGACCCGGCTCAACCCGGGCTACCACCAGGCCTTGAGCACAGCGGCACGCGCGCTGGTCTCCCTGCTGCCGCGCCGCTCCGACGACGAGCCGTTCGTGCTGTGGGACCTGGGGTGCGGCTCCGGGCTGTCCACGCGGGCCCTGGTCGACGCGGCCGGCGACAGGACCCGCGTCGTCGGGCTGGACGCCTCCGCCGGGATGCTGAGCCGCGCCCGGGCCAAGACCTGGCCGGACGGCGTCCGGTTCGTGCAGGCCTTCGCCCAGTCCCTGCCCGAGGTGGCGCGCGACCACGTGGGGCGGGACGCCGACGGGGCCTTCGCCGCCTACCTGCTGCGCAACGTCCCCGAGGAGCAGCGCGACGACGTCGTCACCGCCATCCACGACCAGGTGCAGCCCGGCGGCTGGGTGGCGCTGCAGGACTACCACGTCAAGCACGACCGGATCGCCTCGGCCGTCTGGACCGTCGTCTGCTGGGGCATCGTCATGCCCCTGTCCTTCCTCGTGCGCGGCAACCCGGCGATCTACCGCTACCTGTGGCGCAGCGTCGTCGACAACGACAGCACCGCCCAGCTCCAGGCACGCCTCGAGCGGGCCGGGCTCACCGACATCCGCTGGCACACCGGCACGGGCTGGCAGCGGGGCATCCTGCACACCGTCCTGGCCCGCCGACCCGAGAAGGACCCCGCATGA	MLRKRPAVVGPVETRGAQLSDEFDRAADRYDLLTRLNPGYHQALSTAARALVSLLPRRSDDEPFVLWDLGCGSGLSTRALVDAAGDRTRVVGLDASAGMLSRARAKTWPDGVRFVQAFAQSLPEVARDHVGRDADGAFAAYLLRNVPEEQRDDVVTAIHDQVQPGGWVALQDYHVKHDRIASAVWTVVCWGIVMPLSFLVRGNPAIYRYLWRSVVDNDSTAQLQARLERAGLTDIRWHTGTGWQRGILHTVLARRPEKDPA				NA	NA	NA	NA	NA
AK001_02200	354			hypothetical protein	ATGACCGGCCCGCCCTCCGGTCACGGACCGACCGACGCGGGCGCCCCCGGGCTGTGGGCCGAGCGCACCGCGCTGGCCTGGCGGCGCACGCTGCTGTCGTTCACGGCGGCCTGCCTGGTGGCCGTCCAGGTGCTGCCCGCGGCCCGGAGCGCCCGTGCCCTGCTGCTGGCGGCCGCCGTCGCGCTGCTCCTCACCGCGCCCGGCTGGTGGTTCGCCCGCAGCCACGCCCGGCACACGGACGTCCACCTGCGTCGAGAGGTCCCCCGGCTGCGGCACGGCCGCCGGATCGTGGCGATGTGCGCCGGCACGAGCCTGCTCGCCCTCGGCGGCCTGGTGCTCGTCCTCGTCGTCTGA	MTGPPSGHGPTDAGAPGLWAERTALAWRRTLLSFTAACLVAVQVLPAARSARALLLAAAVALLLTAPGWWFARSHARHTDVHLRREVPRLRHGRRIVAMCAGTSLLALGGLVLVLVV				NA	NA	NA	NA	NA
AK001_02201	441			hypothetical protein	ATGATCGACGAGAGGCCGTCGGACCGCGACCGCGAAGGGAACCGCATGCCGCCCGGGGACACGACCAGCGAGCCGCGACCGCGCCCCGAACGCTTCCCGCGCTGGGTCTACTCCCGGGGCCGCGAGCCCGACCCGCGCTTCTCGCTGGCCAACGAGCGGACCGTCCTGGCCTGGATCCGCACCTCCCTGGGCCTGATCGCCGGCGGGACGGCCCTGGAGGCGCTCGACCTGCCGATGGAACCCCACCTGCGGCTCGCCTCGGCGGTGGTCCTGCTGCTGGCCGGGGCGACCGTCCCCGTCGTGGCGGCCGTCGAGTGGGCCCGCACCGAGCGGGCGATGCGGGAGGACGCCGCGCTGCCGGGTGCGATCACGGGGTTCGTGCTCGTGGCGACGATGACGACCGTCGGGGTGCTGCTGCTGCTGGCGCTGCTGCTGCGATGA	MIDERPSDRDREGNRMPPGDTTSEPRPRPERFPRWVYSRGREPDPRFSLANERTVLAWIRTSLGLIAGGTALEALDLPMEPHLRLASAVVLLLAGATVPVVAAVEWARTERAMREDAALPGAITGFVLVATMTTVGVLLLLALLLR				NA	NA	NA	NA	NA
AK001_02202	1041	fieF		Ferrous-iron efflux pump FieF	ATGACCTCCTCCGTCGACCCGTCGCCCGCCGAGACCACCGCCCCGTCGGCCGACCCGCGCGTCGCGCGACCGCCCGAGCCCGGCGGCGAGAGCGCCACGACGGTGGTCGTCGCCTTCGTCGCCAACGGGCTCGTCGCCGTCGCCAAGTCGGCGGCCGCCCTGCTCACCGGGTCGGCGTCGATGCTGGCCGAGGCCGTGCACTCGTGGGCCGACACGGGCAACGAGGTGTTCCTGCTCGTGGCGTCGAAGCGGTCGCGCCGGCCCGCCGACCGCGGGCACCCGGTCGGGTACGGGCGCGAGGCGTACGTCTGGTCGATGTTCGCCGCCATCGGCCTCTTCGCCGTCGGGGCGGGCGTCTCGATCACGCACGGTGTCCAGGAGCTCCTCGACCCGGAGCCGGCCGAGGACCTCGGCATCGCCTACGCCGTGCTCGCCCTGGCCTTCGTCCTCGAGGGGGTGTCGTTCCTCCAGGCCGTGCGCCAGGTCCGGTCCGAGGCCCGCCGGACGCGTCAGGACCCGTTCGAGCACGTGCTGCAGACCTCCGACCCGACGCTGCGCGCGGTCGTCGCCGAGGACGCGGCGGCGCTGGTCGGCCTCGTCATCGCGTTCGCGGGCGTGCTGGCCCACCAGCTCACGGGGTCGGCGGTGCCGGACGCGATCGGGTCGATCGCCATCGGCGTGCTGCTGGCCGTCGTCTCGCTCGTGCTCGTGGACCGCAACCGGCGCTTCCTGGTGGGCGAGGAGGTGCGTCCCGCCGTCCGGGACGCGGTCCTGGCCCGGCTGCTGGCGCTGCCGACGGTGGACCGGGTGACCTACCTGCGGATCGAGTACGTGGGTCCCCGGCGGCTGTACCTGGTGGCCAGCGTCGACCTGGCGGGGGAGGAGCGCGAGACCGCCGTCGCGCGACGGCTGGACGAGCTTGAGCGTGCCGCGACCGGTCACCCCCGCGTCGCGGGAGCCGTGTTCACGGTGTCCACGCCGGAGGAGTCGTCCCTGGTCCCGGCGGTGGACGACCGGAACGACCTGTCCGCCGACCGGTAG	MTSSVDPSPAETTAPSADPRVARPPEPGGESATTVVVAFVANGLVAVAKSAAALLTGSASMLAEAVHSWADTGNEVFLLVASKRSRRPADRGHPVGYGREAYVWSMFAAIGLFAVGAGVSITHGVQELLDPEPAEDLGIAYAVLALAFVLEGVSFLQAVRQVRSEARRTRQDPFEHVLQTSDPTLRAVVAEDAAALVGLVIAFAGVLAHQLTGSAVPDAIGSIAIGVLLAVVSLVLVDRNRRFLVGEEVRPAVRDAVLARLLALPTVDRVTYLRIEYVGPRRLYLVASVDLAGEERETAVARRLDELERAATGHPRVAGAVFTVSTPEESSLVPAVDDRNDLSADR				NA	NA	NA	NA	NA
AK001_02203	531			hypothetical protein	GTGACGGACTCGAACGACCCCTACGCCGCCCCGGGCGGCGAGCACCCGCAGCAGCACCCGACGCAGCCGGTGCCGCCGGCCTCGTCGGCCACGCCGCCGACCCCGCCGTCCGCGCCGGGCGACCCGTACGGACCGGCGGCCCCGCCGGCGGGCTACGCCGCCGGTCCGCCGCCGTCCTCGGTGCCGCAGGGCTCGGGTGCCGCGTATCCGTCGTCCGCCGGAGCCTGGCCGGCCGCGCCGCAGCCGGGTCCGCCGTACGGCGCCTGGCCGTACCCGGTGCGGCGGACCAACGGCCTGGCGGTGGCCTCGCTGGTGCTGGGCATCCTCTGGCTCTACTGGGTCGGGAGCGTCCTGGCCCTGATCTTCGGGTACGTGGCGCTGAGCCAGATCAAGAAGGCCCCGGCCTCCGCCCCGCAGGACGGTCGTGGGCTGGCGATCGCCGGGGTCGTGCTCGGGTGGGTCGGGGCGGCGACGCTCGCGCTGATGATCTTCTTCCTCGCCGCGGTGTCTTCGGCGCCCGTCGGCTACTGA	MTDSNDPYAAPGGEHPQQHPTQPVPPASSATPPTPPSAPGDPYGPAAPPAGYAAGPPPSSVPQGSGAAYPSSAGAWPAAPQPGPPYGAWPYPVRRTNGLAVASLVLGILWLYWVGSVLALIFGYVALSQIKKAPASAPQDGRGLAIAGVVLGWVGAATLALMIFFLAAVSSAPVGY				NA	NA	NA	NA	NA
AK001_02204	588			hypothetical protein	GTGGTGGACGACCTGGGCACGGCGCTCGACTCGGTGGGGCCGCGGCTGCGCAGGCTGCGCCAGGACCGCGGGGCGACCCTCGCGGCGGTCTCCGAGCGCACCGGCATCTCGATCAGCACGCTCTCGCGCCTGGAGTCCGGCGCGCGCCGGCCCTCGCTGGAGCTGCTGCTTCCCCTGGCCCGCGAGCACGGCGTGACGCTCGACGACCTGGTCGACGCCCCGACCACCGGCGACCCGCGCGTGCACCTCAAGCCCGAGACCGCCGACGGCGTGACCGCCATCGCGCTCACGCCGGGTGCCCCCGACGTGGCGGCCTACAAGATGATCTTCACCGCCGACGCCCGGCCCGACGGGCCCGACCCGCGCACGCACGAGGGGTACGAGTGGCTCTACGTGCTCGCGGGCCGACTGCGCCTCGTGCTCGGCCACCACGACGTCGAGATGGGCCCGGGGGAGGCCGCCGAGTTCGACACCCGGGTGCCGCACTGGTTCGGACCCGTCGGTGACGAGGCCGTCGAGCTGCTCAGTCTCTTCGGCCCGCAGGGGCAGCGCATCCACACGCGCGTGCGACCCCGGTCGTCCCGGTAG	MVDDLGTALDSVGPRLRRLRQDRGATLAAVSERTGISISTLSRLESGARRPSLELLLPLAREHGVTLDDLVDAPTTGDPRVHLKPETADGVTAIALTPGAPDVAAYKMIFTADARPDGPDPRTHEGYEWLYVLAGRLRLVLGHHDVEMGPGEAAEFDTRVPHWFGPVGDEAVELLSLFGPQGQRIHTRVRPRSSR				NA	NA	NA	NA	NA
AK001_02205	1434	tig	COG0544	Trigger factor	GTGAAGAGCGCCGTCGAGACCCTGGAGCCCACCAAGGTCAAGCTGACCGTCGAGGTGGAGTACGACGAGCTCAAGCCGAGCATCGACCACGCCTACAAGCACATCGCGGAGCAGGTGAACATCCCCGGCTTCCGCAAGGGCAAGGTCCCCCCGCGCATCATCGACCAGCGCATCGGCTGGGGTGCCGTCATCGAGCACGCCGTGAACGAGGGCCTGTCCGGCTTCTACCGCGACGCCGTGAGCGCCGAGGAGCTGCGCCCGCTGGGCCAGCCCGAGGTCGAGGTCACCGGCATCCCGGAGAAGGCCGGCGAGGGCCGGCTGGAGTTCGTCGCGCAGGTCGAGGTCCGCCCGGAGCTCGAGCTGCCCGAGCTGTCCGCCATCGAGCTCACCGTGGAGTCCACCGAGGTCTCCGACGAGGACGTCGCCGAGCGTCTCGACTCGCTGCGCGAGCGGTTCGGCACCCTCGTGGGCGTCGACCGCCCGGCCGTCGAGGGCGACTACGTCGTCATCGACCTCAAGGCCATGGTCGGCGAGGATGAGGTCGACTCCGTCTCCGGCGTCTCCTACCAGATCGGTGCTGGCAACATGCTCGAGGGTCTGGACGAGGCGCTGACCGGTCTGTCCGCGGACGAGACCACCACCTTCACCACCAACCTCGCCGGTGGCGAGCACGAGGGCGCCGAGGCGACGGTCACGGTGACCGCCACCTCCGTCAAGGAGCGCGAGCTGCCCGAGGCGGACGACGACTTCGCCCAGATGGCCTCGGAGTTCGACACCCTCGAGGAGCTCAAGGCCGACCTGCGCCAGCAGGTCGCCTCCTCCAAGTCCTCCGACCAGGCCGTCGCCGCGCGCGACGCCCTGCTGGAGAAGCTGCTCGAGGCCGTCGAGGTGCCGGTGCCGTCCGGCGTCGTCGAGGCCGAGGTGCACCGCCACCTCGAGCAGGAGGGTCGTCTCGAGGACGACGAGCACCGCACCGAGGTCACCGCGGACGCCACCAAGGCGATCACGAACCAGATCCTGCTGGACACCCTCGCCGAGAAGCTCGAGGTGCAGGTCGGCCAGGGCGAGCTCATCGAGTACCTGGTCCAGGCCTCCCAGCAGTACGGCATGGAGCCGCAGCAGTTCATCCAGACCCTCGACCAGTCCGGCCAGATCCCGGCCATGGTCGGCGAGGTCGCGCGGTCCAAGGCGCTCGCCGTGGCCCTGCGCGACATCGAGGTCAAGGACGCCGACGGCAACGTCGTCGACCTGACCGAGTTCATCGGGTCCGAGGAGGACGACGAGGCCGCGGCCGCCGCCACCGAGGCCGCGCAGTCGGAGATCGCCGACGCCGAGTCCGGCGAGTCGGCCGAGTCCGGCGAGTCGGCCGAGTCGGCGGACACCCCGGACTCCGCGGAGTCCGGCGACTCCGCCGAGGAGACCGGCAAGGCCTGA	MKSAVETLEPTKVKLTVEVEYDELKPSIDHAYKHIAEQVNIPGFRKGKVPPRIIDQRIGWGAVIEHAVNEGLSGFYRDAVSAEELRPLGQPEVEVTGIPEKAGEGRLEFVAQVEVRPELELPELSAIELTVESTEVSDEDVAERLDSLRERFGTLVGVDRPAVEGDYVVIDLKAMVGEDEVDSVSGVSYQIGAGNMLEGLDEALTGLSADETTTFTTNLAGGEHEGAEATVTVTATSVKERELPEADDDFAQMASEFDTLEELKADLRQQVASSKSSDQAVAARDALLEKLLEAVEVPVPSGVVEAEVHRHLEQEGRLEDDEHRTEVTADATKAITNQILLDTLAEKLEVQVGQGELIEYLVQASQQYGMEPQQFIQTLDQSGQIPAMVGEVARSKALAVALRDIEVKDADGNVVDLTEFIGSEEDDEAAAAATEAAQSEIADAESGESAESGESAESADTPDSAESGDSAEETGKA				NA	NA	NA	NA	NA
AK001_02206	765	clpP		ATP-dependent Clp protease proteolytic subunit	GTGCGGGCCGTCGTCGTCCCCGGCGACGTGCCGCTGTGCGCCTGCAGCGAAACAGGGCGCTCCGGGGACTCGGCGGGCACGCCCTGCACGTTAGGGTCGAGCGACAGCGAAGCGAAGGAGACGGACGTGAACGACCTGCTGCAGATGGGCTCAGCGGCACCTGAGGCCCGCGCCGACGGCCCGGGCTTCGGCCTCAACGACTCCATCTACAACCGGCTCCTCAAGGAGCGCATCATCTGGCTGGGCTCGGAGGTGCGCGACGACAACGCGAACGCCATCTGCGCCCAGATGATGCTGCTCGCGGCGGAGGACCCGGACAAGGACATCTACCTCTACATCAACTCCCCGGGCGGCTCGATCACGGCCGGCATGGCGATCTACGACACCATGCAGTTCATCCAGCCGGACGTCGCCACGGTCGCGATGGGCATGGCCGCCTCGATGGGGCAGTTCCTGCTGTCCTCGGGCGCCAAGGGCAAGCGCTACATCACCCCGCACGCGCGGGTCCTGATGCACCAGCCCTCCGGTGGCGTCGGCGGCACGGCCACCGACGTCCGCATCGGCGCCCAGCTCATCATGCACATGAAGAAGGTGCTCGCGGAGCTCACGGCCGAGCAGACCGGCCAGCCGCTCGAGAAGATCCTCAAGGACAACGACCGCGACAGCTGGTTCACGGCGGACGAGGCCCTCGAGTACGGCTTCGTCGACCGGGTCGTCGCCAACGCTGCCTCGGTGTCCGGGGGCGGCGGCACGACCGCCAGCTGA	MRAVVVPGDVPLCACSETGRSGDSAGTPCTLGSSDSEAKETDVNDLLQMGSAAPEARADGPGFGLNDSIYNRLLKERIIWLGSEVRDDNANAICAQMMLLAAEDPDKDIYLYINSPGGSITAGMAIYDTMQFIQPDVATVAMGMAASMGQFLLSSGAKGKRYITPHARVLMHQPSGGVGGTATDVRIGAQLIMHMKKVLAELTAEQTGQPLEKILKDNDRDSWFTADEALEYGFVDRVVANAASVSGGGGTTAS	PGPT0014595_3920	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358	NA	NA
AK001_02207	714	clpP2	COG0740	ATP-dependent Clp protease proteolytic subunit 2	ATGAGCCACTCCGCCGAGTACCAGTTCGCGATGCGGGCCGAGCGTCTCGCCGGCGACGCCGCCCGCCCGGGCGGGATCGCGCTGCCGCACGGCGCCCCGTCGTCGCGCTACGTGCTCCCGCAGTTCGAGGAGCGCACGCCCTACGGCTTCAAGCGCCAGGACCCGTACACGAAGCTGTTCGAGGACCGCATCATCTTCATGGGCGTCCAGGTCGACGACGCGTCGGCCGACGACATCATGGCCCAGCTGCTCGTCCTGGAGTCCCAGGACCCCGACCGCGACGTGATGATCTACATCAACTCCCCGGGCGGGTCGTTCACCGCGATGACCGCGCTCTACGACACGATGCAGTTCATCAAGCCGCAGATCCAGACGGTCTGCCTCGGGCAGGCGGCCTCGGCCGCGTCCGTGCTGCTGGCCGCGGGTGAGCCCGGCAAGCGCCTGGCGCTGCCGAACGCCCGCGTGCTGATCCACCAGCCGGCGATGGAGGGCGGCGGCTACGCCCAGGCCTCCGACATCGAGATCCACGCCAACGAGCTCATCCGCATGCGCGAGTGGCTCGAGGAGACGCTGGCCCGGCACACCGGCAAGGACGTCGAGGAGATCCGCGACGACATCGAGCGCGACAAGATCCTCACGGCCGCCGAGGCCAAGGACTACGGCCTGGTCGACCAGGTGCTCGAGTCCCGCAAGCCGGGTCAGATCCGGGCCTGA	MSHSAEYQFAMRAERLAGDAARPGGIALPHGAPSSRYVLPQFEERTPYGFKRQDPYTKLFEDRIIFMGVQVDDASADDIMAQLLVLESQDPDRDVMIYINSPGGSFTAMTALYDTMQFIKPQIQTVCLGQAASAASVLLAAGEPGKRLALPNARVLIHQPAMEGGGYAQASDIEIHANELIRMREWLEETLARHTGKDVEEIRDDIERDKILTAAEAKDYGLVDQVLESRKPGQIRA	PGPT0014595_1779	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358	NA	NA
AK001_02208	1266	clpX	COG1219	ATP-dependent Clp protease ATP-binding subunit ClpX	GTGGCTCGAATCGGTGACGGTGCAGACCTGCTCAAGTGCTCCTTCTGCGGGAAGTCGCAGAAGCAGGTCAAGAAGCTGATCGCTGGGCCCGGCGTATACATCTGCGACGAGTGCATCGACCTGTGCAACGAGATCATCGAGGAAGAGCTCGGTGAGACGACGGAGCTGGGGCTGACCGAGCTGCCCAAGCCGCGGGAGATCTTCGACTTCCTCGAGCAGTACGTCATCGGTCAGGACCCCGCGAAGCGCGCGCTCGCCGTCGCGGTCTACAACCACTACAAGCGGGTCCAGGCGCCCCCGCCGGCCAAGGACGACGAGGACTCGGTGGAGATCGCCAAGTCCAACATCCTGCTCATCGGGCCCACCGGGACCGGCAAGACCTACCTGGCGCAGACGCTGGCCAAGATGCTCAACGTCCCGTTCGCCATCGCCGACGCGACGGCGCTGACGGAGGCCGGCTACGTGGGCGAGGACGTCGAGAACATCCTGCTCAAGCTGATCCAGGCCGCGGACTACGACGTCAAGAAGGCCGAGACGGGCATCATCTACATCGACGAGATCGACAAGGTGGCCCGCAAGGCCGAGAACCCGTCGATCACGCGCGACGTCTCCGGCGAGGGCGTCCAGCAGGCCCTGCTGAAGATCATCGAGGGCACCAGCGCGTCGGTGCCGCCGCAGGGCGGGCGCAAGCACCCGCACCAGGAGTTCATCCAGATCGACACCTCGAACGTGCTGTTCGTGGTCGCCGGGGCGTTCGCCGGGCTGGACGACATCATCGCCTCCCGCGCCCGCCAGCGCGGCATCGGCTTCTCCGCCCCGATGGAGTCCACCGCCGACGTCGACCTCTTCTCCGAGGTGCGCCCCGAGGACCTGCACAAGTTCGGCCTCATCCCCGAGTTCATCGGCCGTCTGCCCGTCATCGCCTCCGTCTCGCCGCTGGACCGCGACGCGCTCGTGCGCATCCTCACCGAGCCGCGCAACGCCCTGGTCAAGCAGTACCAGCGGATGTTCGAGATCGACGGCGTGCGCCTGGAGTTCGCCGACGACGCGGTCGAGGCGATCGCCGAGCAGGCGCTGCTGCGGGGGACCGGTGCCCGCGGGCTGCGGGCCATCATGGAGGAGGTCCTGCAGCAGGTGATGTTCGACGTGCCGAGCCGTGACGACGTCGAAGGCGTGGTCATCACCCGCGAGGTCGTCGAGGAGAACGTCAACCCGACGATCGTGCCGCGGTCCTCGGGACCGGTGCGCAACCGCAAGTCCGCCTGA	MARIGDGADLLKCSFCGKSQKQVKKLIAGPGVYICDECIDLCNEIIEEELGETTELGLTELPKPREIFDFLEQYVIGQDPAKRALAVAVYNHYKRVQAPPPAKDDEDSVEIAKSNILLIGPTGTGKTYLAQTLAKMLNVPFAIADATALTEAGYVGEDVENILLKLIQAADYDVKKAETGIIYIDEIDKVARKAENPSITRDVSGEGVQQALLKIIEGTSASVPPQGGRKHPHQEFIQIDTSNVLFVVAGAFAGLDDIIASRARQRGIGFSAPMESTADVDLFSEVRPEDLHKFGLIPEFIGRLPVIASVSPLDRDALVRILTEPRNALVKQYQRMFEIDGVRLEFADDAVEAIAEQALLRGTGARGLRAIMEEVLQQVMFDVPSRDDVEGVVITREVVEENVNPTIVPRSSGPVRNRKSA	PGPT0014600_3651	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544	NA	NA
AK001_02209	378			hypothetical protein	ATGGCTGAGCCCTTCGACGAAGCACCCGTGCCCGAGACCGGTCGGGCGCTGCCGACCGAGATCCTCGGGCTGCGCAGCACGATCGACAACATCGACGCCGCGCTGGTGCACCTGCTGGCCGAGCGGTTCCGCGCCACGCAGCGCGTGGGCGAGCTGAAGGCGACCGAGGGCCTGCCGCCGGCGGACCCCCAGCGAGACCGCCAGCAGATCGACCGGCTCAAGGCCATCGCCTCCGGTGCCGGGCTGGACCCCGAGTTCGCCGAGCAGTTCCGCCACTTCATCGTCTCCGAGGTCATCCGCCGCCACGAGCGGATCGCCGCCGAGCACGCCGCCGCCGGACGGGCCGAGGACGTGCCCCCGCTGGACACCTACAGTTGA	MAEPFDEAPVPETGRALPTEILGLRSTIDNIDAALVHLLAERFRATQRVGELKATEGLPPADPQRDRQQIDRLKAIASGAGLDPEFAEQFRHFIVSEVIRRHERIAAEHAAAGRAEDVPPLDTYS	PGPT0003065_207	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SAR	SAR-SALICYLIC_ACID_METABOLISM	SAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003065-pchB|pmsB-K04782	NA	NA
AK001_02210	1242			hypothetical protein	ATGAAGATCGATTGGCTCAAGCCCTTGGTCGGACACCCCGGCCCGTTCGCGACGGTCTACCTGGACGCGACGCGATCGGTCGAGGCCGGCGACAAGGATGTGGCGAACCGGTGGCGTTCCGTGCGCCGCTCGCTCGCCAAGCAGGGCGCCACGGACACCGTCCTGAGCGACCTGGACGCCTCCGTGGACCGCCCGACGTGGGTGCACGGCCCGCACGGCCGAGTGCTCATCGCCGACGACGAGGGGGTGCTGGTCGACCGGGTCCTGCGCGAGCCGCCGCCGGTGATGGCGGGGGTCTGGCACCGCGTCCCGAGCCTGCTGCAGGCGGCACGGTCGGCCGACGAGGAGGTCGACGCGCTCTGCGTGGCCATCGACCGCTCCGGGGCCGACTTCTTCGCGGTGGGCTCCGACGGGCGTCCCGTCGGCGAGAAGGAGACCTTCGAGGGGCCGGACGACGAGATCTCCAAGACGTCCAGCACGTCGACCAAGCGGTCGGTGATCGAGTCGCGCGCCGAGGACTCGTGGCACCGCAACGCCGAGGCGGTGGCCGGCGAGATCGACCGGCGCGTGGCCGAACGCCGCCCGGAGATCGTGCTGATCACCGGCGACGTGCGGGCCGTGCACATGGTGCGGGACGCGCTCGGCCAGCAGGCCGCCCAGGTCACCGTGGAGGTGCCGGGCGGGGGTCGCGACGACGGCGTCCACGTGGGCCCCTTCGCGGAGTCCGTCGCGGACGCTCTCGACTCGTTCCGCGAACGCCGTCGCGAGCAGGTCCTGGCAGAGCTGCGCGAGGGGATCGGCCGCGAGGCGGGAGCGGTGACCAGCATCGGTGACGTCGCCCAGGTCCTGGCGCGCGGCCAGGTCAAGCAGCTCGTGCTCTCCGAGGAGCTGGCCGACGACGCGGCCCGTGCCCTGCACGCCTGGGTCGACGGCTCGGTCGAGGAGCCCGGGCTGGGCGGTCTGCTCAACGGCTTCCAGCTGTTCGTCGGGCCCGACCCGATGCACATCGCCGCCTCGCGGGCCGAGCTCGAGGGCGTCGGCGAGCTCGAGGAGCTGCCGGCCGCGACCGCGCTGCTGCGTGCCGCCATCGGGCAGGACGCCGGCCTCGTCTTCGCCCCGGAGGGCTCGGTCGAGCTCCGGGACGGTGTGGGGGCCACGCTGCGCTGGCACGACGGCGGGACGCCTCACGAGTCGGCGGCCACCATGAGCGGCGACGACGGGAGGGTCTCGGCCGCCCACTGA	MKIDWLKPLVGHPGPFATVYLDATRSVEAGDKDVANRWRSVRRSLAKQGATDTVLSDLDASVDRPTWVHGPHGRVLIADDEGVLVDRVLREPPPVMAGVWHRVPSLLQAARSADEEVDALCVAIDRSGADFFAVGSDGRPVGEKETFEGPDDEISKTSSTSTKRSVIESRAEDSWHRNAEAVAGEIDRRVAERRPEIVLITGDVRAVHMVRDALGQQAAQVTVEVPGGGRDDGVHVGPFAESVADALDSFRERRREQVLAELREGIGREAGAVTSIGDVAQVLARGQVKQLVLSEELADDAARALHAWVDGSVEEPGLGGLLNGFQLFVGPDPMHIAASRAELEGVGELEELPAATALLRAAIGQDAGLVFAPEGSVELRDGVGATLRWHDGGTPHESAATMSGDDGRVSAAH				NA	NA	NA	NA	NA
AK001_02211	2778	valS	COG0525	Valine--tRNA ligase	ATGAGCGACTTCCCGAACCCCGGGGCGCCGACCGCGCCCGAGCAGACCTCCGCAGCGACCTCCGCGTCCGGCCCCGTAGCCGACGACGTCGTGCGCGCGGTGGTCCGGGAGGTACCGGACAGGGTCAGCACCGACGGCCTGGAGGAGAAGTTCGACGAGCGCTGGGCCGCCGAGCGCACGTTCGCCTTCGACCGCTCCGCCACGCGCGAGCAGGTCTACTCCATCGACACCCCGCCGCCGACCGTCTCCGGCTCGCTGCACGTGGGCCACGTGTTCAGCTACACCCACACCGACGTCGTCGCGCGCTTCCAGCGCATGCGCGGCAAGGAAGTCTTCTACCCGATGGGCTGGGACGACAACGGCCTGCCCACCGAGCGTCGCGTGCAGAACTACTACGGCGTGCGCTGCGACCCGTCGCTGCCCTACGACCCGGACTTCGTTCCCCCGCACCAGGGCACCGAGGGCAAGAAGGTCAAGCCCGGCGACCAGGTGCCGATCAGCCGTCGCAACTTCATCGAGCTGTGCGAGGAGCTGACCGCCGACGACGAGCGCCAGTTCGAGGAGCTGTGGCGCCGGCTCGGGCTGTCCGTGGACTGGTCGCAGACCTACCAGACCATCGACGCCACCTCGCGCGCCGCCTCGCAGCGGGCGTTCCTGCGTAACCTGCAGCGCGGCGAGGCCTACCAGGCCGAAGCCCCGGGACTGTGGGACGTCACCTTCCAGACGGCCGTCGCCCAGGCCGAGCTCGAGGCCCGCGAGTACCCCGGCCACTACCACCGCGTCGCGTTCCACCGCGCCGGTGACGGCGCGACCGGTGAGCCAGTGTACATCGAGACCACGCGGCCCGAGCTCGTGCCGTCCGTCGTGGCCCTCATCGCCCACCCGGACGACGAGCGCTACCAGCACCTGTTCGGCACCACCGTGACCTCGCCCCTGTTCGGCGTCGAGGTGCCGGTGCTCGCCCACCACGCCGCCGCCATGGACAAGGGCGCCGGCATCGCCATGTGCTGCACCTTCGGCGACCTCACCGACGTGCAGTGGTGGCGCGAGCTGCAGCTGCCCACGCGCTCCGTCATCGGCCGCGACGGCCGCCTGACCCGCGAGACCCCCGAGTGGATCGCGGGCGGCCCCGGCGCCGACCTGTACTCCGAGGGCCTCGCCGGCAAGACCGCGTTCAGCGCCCGCACCGCCGTCGTCGACGCGCTGCGCGAGTCCGGTGACCTGGACGGCGAGCCCTCGCCCACCCAGCGCATGACGAACTTCTACGAGAAGGGCGACAAGCCCCTCGAGATCGTCACCTCCCGCCAGTGGTACATCCGCAACGGGGGCCGCGCCTGGGAGCAGCGCGACCTGAAGGCCGAGCTGCTCGCCCGCGGCAAGGAGCTCGACTTCCACCCCGACTTCATGCGGGTGCGCTACGAGAACTGGGTCAACGGCCTCAACGGCGACTGGCTCATCTCCCGCCAGCGGTTCTTCGGCGTGGCCGTGCCGGTCTGGTACGGGCTCGACGAGCACGGCGAGGTGGACTACGACCGCCTCATCACGCCGTCCGAGGCCGAGCTGCCCGTGGACCCGACGTCGCAGGCGCCCGCGGGCTACACCGAGGACCAGCGCGGCGAGCCCGGCGGGTTCGTCGGCGACAACGACGTCATGGACACCTGGGCGACGTCGTCGCTGAGCCCCCTGATCGTCTCCGGCTGGGAGCGCGACGCCGACCTGTTCGACCGCGTCTACCCCATGGACCTGCGTCCGCAGGGCCAGGACATCATCCGCACCTGGCTGTTCTCCTCCGTGGTGCGCTCGCACCTGGAGTGCGGCGTGCTGCCGTGGAAGAACGCGGCCATCAGCGGCTGGATCCTCGACCCCGACCGCAAGAAGATGTCCAAGTCCAAGGGCAACGTCGTCACCCCGATGGACCTGCTCACCGAGCACGGGTCCGACGCCGTGCGCTACTGGGCGGCAGCGGCCCGCCTGGGCACGGACGCGGCCTTCGAGATCGGCCAGATGAAGATCGGTCGCCGGCTGGCGATCAAGGTCCTCAACGCCTCCAAGTTCGCCCTGACCTTCGGCGTGGACCCCGAGTCCGGCGCCGGCGAGATCGTGCTCGACCCCGCCGCCGTCACCGTCGACCTGGACCGCGCCATGCTGGCCGGGCTGGCCGACGTCGTCGACCAGGCGACCGCCGCGCTCGAGTCCTACGACCACACGCGCGCCCTGGAAATCACCGAGTCCTACTTCTGGGCGTTCTGCGACGACTACCTCGAGCTCGTCAAGGACCGCGCCTACGGCGGCGACGGCGAGGTCTCGGCCGAGACGCTCTCGGCCCGCACGGCCCTGGCGATCGCCCTGGACGCGATGCTGCGACTGCTGGCCCCGTTCATCCCGTTCGCCACCGAGGAGGTCTGGTCCTGGTGGCGCACCGGGTCCGTCCACCGGGCCCCGTGGCCGACGGCGCAGCCGCTGCGCGACGCGTCGGCCGGCGTCGACCCGACCGGCCTCACCGCGGCCGGCCACGCCCTGGCCGCGCTGCGCAAGCTGAAGTCTGCCGCCAAGGTCTCCATGAAGACCCCGGTCCTGTCCGGCACCGTCGCGGTCCCGGCGCACCTGCTGCCGGGCGTCGAGTCCGCCATGGTGGACCTGCGCGGCGCGGGCCGCGTCACCGGCCCCCTGGAGCTCGTGGAGGCGACCGACGGCCAGGGCGACCCCGACGTCCAGGGCGGGATCGTCGTCGTCGAGCACGAGCTGGGTGAGCCGCCGGCCAAGAAGCCGCGCGGCTGA	MSDFPNPGAPTAPEQTSAATSASGPVADDVVRAVVREVPDRVSTDGLEEKFDERWAAERTFAFDRSATREQVYSIDTPPPTVSGSLHVGHVFSYTHTDVVARFQRMRGKEVFYPMGWDDNGLPTERRVQNYYGVRCDPSLPYDPDFVPPHQGTEGKKVKPGDQVPISRRNFIELCEELTADDERQFEELWRRLGLSVDWSQTYQTIDATSRAASQRAFLRNLQRGEAYQAEAPGLWDVTFQTAVAQAELEAREYPGHYHRVAFHRAGDGATGEPVYIETTRPELVPSVVALIAHPDDERYQHLFGTTVTSPLFGVEVPVLAHHAAAMDKGAGIAMCCTFGDLTDVQWWRELQLPTRSVIGRDGRLTRETPEWIAGGPGADLYSEGLAGKTAFSARTAVVDALRESGDLDGEPSPTQRMTNFYEKGDKPLEIVTSRQWYIRNGGRAWEQRDLKAELLARGKELDFHPDFMRVRYENWVNGLNGDWLISRQRFFGVAVPVWYGLDEHGEVDYDRLITPSEAELPVDPTSQAPAGYTEDQRGEPGGFVGDNDVMDTWATSSLSPLIVSGWERDADLFDRVYPMDLRPQGQDIIRTWLFSSVVRSHLECGVLPWKNAAISGWILDPDRKKMSKSKGNVVTPMDLLTEHGSDAVRYWAAAARLGTDAAFEIGQMKIGRRLAIKVLNASKFALTFGVDPESGAGEIVLDPAAVTVDLDRAMLAGLADVVDQATAALESYDHTRALEITESYFWAFCDDYLELVKDRAYGGDGEVSAETLSARTALAIALDAMLRLLAPFIPFATEEVWSWWRTGSVHRAPWPTAQPLRDASAGVDPTGLTAAGHALAALRKLKSAAKVSMKTPVLSGTVAVPAHLLPGVESAMVDLRGAGRVTGPLELVEATDGQGDPDVQGGIVVVEHELGEPPAKKPRG				NA	NA	NA	NA	NA
AK001_02212	894			hypothetical protein	ATGAGTGTGTCAGATCCTGTCGACGTCCTGCGCCGGTTCAACCGCGGCTACACCCAGCGGGTGGGTGCGCTGGAGGAGTCCTTCCTCGGGCTGGGGATGCCGCTCGGCACCGCCCGGCTGCTGTACGAGATCGGCGTCGAACCGGGCACGACCCGGTCGTTGCGCGCCCGGCTCGGTCTCGACTCGGGGTACCTGAGCCGGCTGCTGCGCCGGCTGGAGGACGACGGTCTCGTCGCGGTCGGACCCGACCCGGTCGACCGGCGTCGGCGCCGCGTGGCCCTGACGGCCGCCGGCCGCCGGACCTGGGACGAGCTGGAGCGACGCTCCGCCGAGCGTGCCCACCGCCTCGTCGACCCGCTCACCGAGCGGCAGCGCGCCCGGTTGTCCGCGGCGCTGGCCGAGGCCGACCTGCTCGTGCGCGCCGCCACCGTCGAGCTGGAGACGGTGGAGCCGACCACGCCCCTCGCGCGGCGCGCCGTCGCCGCCTACCTCACGGAGGTCGGGACACGGATCGGGGGCGCGGGCACGTTCGACGTCGAGGCCGAGCTCGCCGCCGACGCCGGACGGCTCGCCCCGCCGCACGGCGCGTTCGTCGTCGCCACCTCCGCGGGCGCACCCGTCGCGTGCGGCGGGGTCCAGGCGCTCGCCGGCGGCGGCGCGGAGATCAAGCGGATGTGGGTCGACGACGCCTGGCGCGGCGCCGGGCTCGGGTCCCGGCTGCTGCGCCGCCTGGAGGAGCTCGCGCGCGAGCTCGGGCACGCCGTCGTCCACCTCGACACGAACGCCGCGCTCACCGAGGCGATCGCGATGTACGAGCGGGCCGGCTACCGGCAGGTCGAGCGGTACAACGACAACCCGCACGCCACGCACTTCTTCGCGAAGGACCTCACCTGA	MSVSDPVDVLRRFNRGYTQRVGALEESFLGLGMPLGTARLLYEIGVEPGTTRSLRARLGLDSGYLSRLLRRLEDDGLVAVGPDPVDRRRRRVALTAAGRRTWDELERRSAERAHRLVDPLTERQRARLSAALAEADLLVRAATVELETVEPTTPLARRAVAAYLTEVGTRIGGAGTFDVEAELAADAGRLAPPHGAFVVATSAGAPVACGGVQALAGGGAEIKRMWVDDAWRGAGLGSRLLRRLEELARELGHAVVHLDTNAALTEAIAMYERAGYRQVERYNDNPHATHFFAKDLT				NA	NA	NA	NA	NA
AK001_02213	1011	fgd1	COG2141	F420-dependent glucose-6-phosphate dehydrogenase 1	ATGGCAGCTTCGAAGGACCTCACCGTCGGCTACGCCGCGATGCTCGAGCAGTTCCACCCGACCGACGTGGTCGACTACTCCGCCTACGCCGAGGAGCACGGCTTCGACGGCGTCATGGCCGCCGACCACTTCCAGCCGTGGGTCCCGCAGCAGGGGGAGGCCGCGTTCGTCTGGAACGTGCTGACCGCCCTGGGCGAGCGCACCCGCGGGGACATCGGCCCCGGCGTGACGTGCCCCTCCTTCCGGTTCCACCCGGCGATGGTGGCGCAGGCCTCGGCGACCCTCGCCGCGATGTACCCGGGCCGGCACTGGCTCGGCCTGGGTTCGGGCGAGGCGCTCAACGAGCACGTGACGGCCGGCTACTGGCCCGAGGCGCCCGAGCGGATCAACCGCATGTTCGAGGCCATCGACATCATCAAGAAGCTCTTCGCCTCCGGTGTCGACGGCAAGGACGTCAAGCACTCCGGGCAGTTCTACAAGATGGAGTCCACCCGGCTGTGGACCATGCCCGAGGTCCCGCCGGAGATCCTCGTGGCCACCGCCGGGCCGATCACGGCCAAGCGGGCCGGCAAGCACGCCGACGGCCTCATCACCGTCGGGGCGCCGCTGGAGAAGATCGAGATGCTGTTCGGACGGTTCGAGGCCGGCGTCAAGGAGTCCGGCCGGGACGCTTCGACGATGCCGAAGGTCCTCCAGGTGCACATGTCCTGGGCCGAGACCGACGAGGAGGCCATGGCCAACGCCATGACCGAGTGGCCGAACGGCGGCATGAAGTTCCCCAAGGCCGACATCCGCTCCCCGCACGACTTCGCCCAGATGGCCAAGCTCGTCCGCCCGGAGGACTTCGCCGGCCGGATGGTGGTCTCCGCGGACCCGGACAAGCACCGCGAGGCCATCCAGCAGTACGTCGACCTCGGCTTCGACCGCATCTACCTGCACAACGTGGGCCGGAACCAGAAGGAGTGGATCGAGGTCTTCGGCCGCGAGGTGCTGCCGAAGCTGGTCCGGTGA	MAASKDLTVGYAAMLEQFHPTDVVDYSAYAEEHGFDGVMAADHFQPWVPQQGEAAFVWNVLTALGERTRGDIGPGVTCPSFRFHPAMVAQASATLAAMYPGRHWLGLGSGEALNEHVTAGYWPEAPERINRMFEAIDIIKKLFASGVDGKDVKHSGQFYKMESTRLWTMPEVPPEILVATAGPITAKRAGKHADGLITVGAPLEKIEMLFGRFEAGVKESGRDASTMPKVLQVHMSWAETDEEAMANAMTEWPNGGMKFPKADIRSPHDFAQMAKLVRPEDFAGRMVVSADPDKHREAIQQYVDLGFDRIYLHNVGRNQKEWIEVFGREVLPKLVR				NA	NA	NA	NA	NA
AK001_02214	822	fbiB_1	COG0778	Bifunctional F420 biosynthesis protein FbiB	GTGACGGCAGTCCTCGACGGCGCCCGCCTGACGCTGTGGGCGCCGACCGGGCTGGGGGAGGTCCGTCCCGGCGACGACCTCGCGGCGCTGGTCGGCGACCTGCTCGCCCGTGACGCGGAGGGTTCCGGCGACCCGCTCGCCGAGGGCGACGTCGTCGTGGTGACCTCCAAGATCGTGTCCAAGGCCGAGGGCCGCGTCGTGCGCGCCACCGACCGCGAGCAGGCGATCACCGACGAGACCGTGCGGGTCGTGGCCACCCGGGAGCGGCCCGACGGGCTGCCGCCCCTGCGCATCGTGGAGAACCGGCTCGGCCTCGTGATGGCCGCGGCCGGGGTGGACGCCTCGAACACGCCGGACGGCACGGTGCTGCTGCTGCCCGAGGACCCGGACGCCTCGGCGCGGACGGTGCGGGCCGCGTTGCGGGACCGGTTCGGTCTCGACCGGCTCGCCGTCGTCGTCACCGACACCGCGGGCCGCCCGTGGCGCGACGGCGTGACCGACGTCGCGATCGGCGCCGCCGGGCTGCACGTGGTCGACGACCTGCGCGGCGGCGTGGACTCGCACGGGCGGCCGATCTCGGTCACGGTGACCGCGGTGGCCGACGAGATCGCCGCGGCCTCGGAGCTGGTGCGCGGCAAGGCATCCGGCCGGGCCGTGGCGGTGGCGCGCGGGCTGTCCCGGTTCGTGCGCGGGGGGACCGGGCCGGACGGCGACGGTCCGGGTGCCCGGGTCCTGGTGCGGACGGGGCCCGACGACCTGTTCCGCGAGGGCACCGCCGAGGCCTACGCGCGGGGTGTCGCGGATGGTCGCGCGGGCCGCTAG	MTAVLDGARLTLWAPTGLGEVRPGDDLAALVGDLLARDAEGSGDPLAEGDVVVVTSKIVSKAEGRVVRATDREQAITDETVRVVATRERPDGLPPLRIVENRLGLVMAAAGVDASNTPDGTVLLLPEDPDASARTVRAALRDRFGLDRLAVVVTDTAGRPWRDGVTDVAIGAAGLHVVDDLRGGVDSHGRPISVTVTAVADEIAAASELVRGKASGRAVAVARGLSRFVRGGTGPDGDGPGARVLVRTGPDDLFREGTAEAYARGVADGRAGR				NA	NA	NA	NA	NA
AK001_02215	495			hypothetical protein	ATGAGCTCCCCGACGACTTCACACCCCGCCGTCGAGCAGGTCCGTGCCGCGCTGGTCGAGGCCGGAGCCACGGACGCGGCGCACGGGATCCGCTGGTTCGACGACGCCGTGACCACCGCCGCGGCGGCGGCCGACGCCCTGGGCGTCGAGGTCGCCGCGATCGCCAACTCGCTCGTCTTCACCCTCGACGACACCCCGGTGCTGGTGCTGACCTCCGGCGCGCACCGCGTGGACACCGCGTTCCTCGGCGACCGCCTCGGCGGTCGGGTCGGGCGCGCGTCCAAGGAGGTCGTCAAGGAGGCCACCGGACAGGTGATCGGCGGCGTGGCGCCGGTGGGGCACCCCGCTCCGGTGCGCACCGTGGTGGACACCGCGCTGGCCGACCTCGACGTCGTCTGGGCGGCCGCCGGGCACGCCCGGACGGTGTTCCCCACGACCTTCGACGAGCTGGTGCGCCTCACCGGCGGCGAGCCGTCACCCGTCACGCCGGACTGA	MSSPTTSHPAVEQVRAALVEAGATDAAHGIRWFDDAVTTAAAAADALGVEVAAIANSLVFTLDDTPVLVLTSGAHRVDTAFLGDRLGGRVGRASKEVVKEATGQVIGGVAPVGHPAPVRTVVDTALADLDVVWAAAGHARTVFPTTFDELVRLTGGEPSPVTPD				NA	NA	NA	NA	NA
AK001_02216	789			hypothetical protein	ATGACCCACCACGTGACGAGCGTGGCCGGAGACCGGGTCGGGTTCGACCGCGACGGCGAGGGACCCGCGGTGGTGTTTGTCGCGGGGGCCGGCCCGTTCCGGGCGATCGACCCGGTGACGACCGAGACGGCCGTGCGCTGTGCGCAGCAGGGCCTGACCGCTGTCGTCTACGACCGGCTCGGGCGTGGTGACAGCCCGGCCGAGGGTGTGCTCGACCTCGACCGCGAGCTGTCCGCCCTGCACGCCGTCATCGACGCCGCCGGTGCCCCGGCGGTGCTGGTCGGCCACTCCTCGGGGGCAGCGCTGGCCCTGTGCGCCGCGGACGCGGAGCTGCCGGTGTCCGGTCTCGTGCTCTGGGAGGCACCGCTCGCGCGGTCCGCGGAGGACACCGTCGCGTGGATCACCGAGTTCGAGCAGCGACTGGACGCCGAGGACTACGTCGGCGCCCTCGAGCAGTACATGAAGGACATGCCGGCCGAGTGGCTGGAGGGGCTGCGCGCCTCGCCGGACTTCGAGCAGATCGCCCGCACGTCCATCAGCCAGCGTGCGGACGGCCAGGCCCTGGTGCGTGCCACCGACCTCATCGAGGCCGACCTGCTGCGTGAGCTGGCCGTCCCGGTCCTGGCGACCTACGGCACGAGCACCTTCGACGAGATGCCCGTCGCGGCGCGCCGCGTCGTCGGCGCCGTGACCCGCGGCACCGAGCGCGAGATCGCCGGCGCCGACCACACCTGGGACGTCGGCGCGATGGCCGACCAGATCGTGCGGTTCGTGCGCGACGAGACCTGA	MTHHVTSVAGDRVGFDRDGEGPAVVFVAGAGPFRAIDPVTTETAVRCAQQGLTAVVYDRLGRGDSPAEGVLDLDRELSALHAVIDAAGAPAVLVGHSSGAALALCAADAELPVSGLVLWEAPLARSAEDTVAWITEFEQRLDAEDYVGALEQYMKDMPAEWLEGLRASPDFEQIARTSISQRADGQALVRATDLIEADLLRELAVPVLATYGTSTFDEMPVAARRVVGAVTRGTEREIAGADHTWDVGAMADQIVRFVRDET				NA	NA	NA	NA	NA
AK001_02217	1218			hypothetical protein	GTGACGTCGACACCCGCGACCCAGGCCAGCAGCACCCGTCCCCTGCACGATCCGCACCCACCGACCCCCGGGACGACCGGGCTGTCCCCGGCGGCGCGCACCCTGCTCGCCCTGGCCTGCGGCGTGCTGGTGCTCGCGGGCATGGCCGCGGCGGCCGAGGTGCTGGCACCGCTGTTCCTGGCGGCTGTCATCGTGATCATCTGCCACCCGGTCCGGTTCCCGCTGCTGGCGCGGGGATGGCCGAGCTGGCTGGCCACCACGACCGTCATCCTGGTCGCCTACCTCATCCTGGCGGCCCTGGTGGGCATGCTCGTCTGGTCCGGGTTCCGGTTCGCGGCGCTGGTACGGGAGTTCCTCCCCCAGCTCAGCGAGTCCGTGGCGCAGATCCAGGGGCAGCTCGCCGCCGCGGGTCTCGACACCCAGATCGCCGAGGCCGTCACGGGGTGGTTCCAGCCGTCCAACATCCTGGCGCTCGCGGGCGGCGTCAGCTCGGTCGCGCTGGGCATCGGCACGGCGTTCTTCTTCGTCCTGGCCTACGCCGTGTTCATGGCGGCCGACGCGGGTCGCTACTCCACGGCGTCGCAGCACTTCGGCGTCTCGCGCGCGGGGGCCATCGACCGCGCCACCCGGTTCAGCAGCGGGGTGCGGCGGTACTACGTCGTCAACGCCTCGTTCGGCGCCGTCGTGGCGGTCGTGGACGGCGTCGCGCTGTGGCTGCTCAACGTCCCCGGCGCCGCCATCTGGGCGATCCTGGCGTTCGTCACCAACTTCGTGCCGAACATCGGGTTCATCCTCGGCCTGGTGCCGCCCGCCATCATGGCCTTCGTCGTCGGCGGCTGGCAGCTCGCGCTGGCGGTGGTCGCGGTCTACTGCGTGGTCAACGTGGTGCTGCAGGTGTTCGTCCAGCCGAAGTTCGTCTCGGACGCCGTGTCGCTGTCGCTGACGCTCAGCTTCGTCTCGGTCGTCTTCTGGACCTTCGTCATCGGCCCGCTCGGCGCGATCCTGTCCATCCCGCTGACGCTGCTCGTGCGGGCGCTGCTGCTGGAGGGCGACCCGCGCAACGCGTGGTTGCGGTGGCTGTCGGGAGACGACGTCGAGCCCGCCGAGGAGGACTCGCACGCCCGGGACGCCGTCGGCCGCCGGGAAGCCGACCACGACGAGGAGCCGACGGCGGACGGCGGCCTCGACGGCGAGCCGGCCGGCGAGCACGGTCGCTGA	MTSTPATQASSTRPLHDPHPPTPGTTGLSPAARTLLALACGVLVLAGMAAAAEVLAPLFLAAVIVIICHPVRFPLLARGWPSWLATTTVILVAYLILAALVGMLVWSGFRFAALVREFLPQLSESVAQIQGQLAAAGLDTQIAEAVTGWFQPSNILALAGGVSSVALGIGTAFFFVLAYAVFMAADAGRYSTASQHFGVSRAGAIDRATRFSSGVRRYYVVNASFGAVVAVVDGVALWLLNVPGAAIWAILAFVTNFVPNIGFILGLVPPAIMAFVVGGWQLALAVVAVYCVVNVVLQVFVQPKFVSDAVSLSLTLSFVSVVFWTFVIGPLGAILSIPLTLLVRALLLEGDPRNAWLRWLSGDDVEPAEEDSHARDAVGRREADHDEEPTADGGLDGEPAGEHGR	PGPT0025496_15	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-BF-RELATED-AI-2_TRANSPORT,PGPT0025496-tqsA|ydgG-K11744	NA	NA
AK001_02218	447			hypothetical protein	GTGCGTGGTGACGTGGTGCGGTACGACGCGGTCAAGGGATACGCCTTCGTCGCGGCGGACGAGCTCGACGAGGACGTGTTCCTCCACGTGAACGACCTCGACTTCGACAAGTCGCTCCTGGCGGTCGGCACGGTCGTGGATTTCACCCACGAGATGGGCGAGCGGGGGCCGCGCGCGCTGAGCGCCTCGCTGATCTCCTCCCCGGTGGCCGACGCCGTCCAGGCGGCCATGGGTCCCGGGCCGGCGCGCGAGCACGCCGCGCCGCCGTCGTCCGCCCCCGACGGGCACCACGACGGCTACGCGGACGTGCTCTCGGCCGCCGAGCTGCGCACCGAGGTCACCGAGAAGCTGCTCGCGGCGGTCGGGGACCTCACCGCACGCCAGGTGCTGGCGGTGCGCACCGCCGTCGAGCAGGTCGCTCGGCGGCACGGCTGGCTGGACGCCTGA	MRGDVVRYDAVKGYAFVAADELDEDVFLHVNDLDFDKSLLAVGTVVDFTHEMGERGPRALSASLISSPVADAVQAAMGPGPAREHAAPPSSAPDGHHDGYADVLSAAELRTEVTEKLLAAVGDLTARQVLAVRTAVEQVARRHGWLDA	PGPT0014675_833	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
AK001_02219	1158	corA	COG0598	Cobalt/magnesium transport protein CorA	ATGGCCTTCAGCTCCAACCGTTCGGTCCGTACCCGCCAGATGCTGGGCGCGCTGCGCCCGCGTCGACCCGGCACGCAGCAGGCGCCGGGATACCCGGAGAACGAGCCGACGCCCCCCACCCCGATCCGCCCGCGCTCGGCGATGGTGGCCGCCGCCGTCTACGACGACGAGGGCCACCGCAGCGCGAGCTTCACGCGGCTCGCCGACGCCTTCCGTGCCCTGCGCTCCACCCCCGGCGGCATGGCGTGGATCGGCCTCGAGCGCCCGGACGAGCACGAGCTCGCCGCGCTGGCCCGCGAGTTCGACCTGCACCCGCTGGCGATCGAGGACGCGATCCAGGCGCACCAGCGCCCCAAGATCGAGCGCTACGGCGAGACGCTCTTCGTCGTGCTGCACGCCGCGCGTTACCTGGACTCGATCGAGGAGGTGGAGTTCTCCGAGCTCCACCTGTTCGTCGGCCCCGACTTCGTGGTCTCGGTGCGGCACGGGGACTCCCCCGACCTCAGCGCCGTGCGCGCGCGGCTGGAGTCGACGCCGCAGATGCTCGCCCGCGGCCCCGAGGCCGCGCTGTACGCGATCATGGACCGCGTCGTCGACGACTACGCACCCGTCGTCTCCGGCCTGGACTACGACATCGACCAGATCGAGGGCGAGGTCTTCTCCGGCGACGCCCACGTCTCGCGGCGCATCTACGAGCTGTCCCGCGAGGTCGTCGACTTCCAGCGCGCGGTCCGCCCGCTGCAGAACGTCTGCCTGTCCCTGGCCAAGGGCGCCGAGAAGTACGGCGTCGACACCGAGCTGCAGGCCTACCTGCGCGACGTCGCCGACCACCTCATCGAGGTCGCCGAGTCCGTGGAGACCTACCGGGTCGCGCTGCGCGACATCCTCACGGTCAACGCCACCCTCGTGGCCCAGCGGCAGAACGAGGAGATGACGCACCTGACCGAGGTGTCCATCAAGCAGGGCGAGGAGGTCAAGAAGATCTCCGGCTGGGCGGCCATCCTGTTCGCCCCGACCCTCGTCGGCACGGTCTACGGGATGAACTTCGACGTGATGCCCGAGCTGCACTGGGCCTGGGGGTACCCGGTGGCGCTCGTGCTCATGGTCGGCGTCTCCGTGAGCCTGTTCGCCGTCTTCCGCTGGAAGAAGTGGATCTGA	MAFSSNRSVRTRQMLGALRPRRPGTQQAPGYPENEPTPPTPIRPRSAMVAAAVYDDEGHRSASFTRLADAFRALRSTPGGMAWIGLERPDEHELAALAREFDLHPLAIEDAIQAHQRPKIERYGETLFVVLHAARYLDSIEEVEFSELHLFVGPDFVVSVRHGDSPDLSAVRARLESTPQMLARGPEAALYAIMDRVVDDYAPVVSGLDYDIDQIEGEVFSGDAHVSRRIYELSREVVDFQRAVRPLQNVCLSLAKGAEKYGVDTELQAYLRDVADHLIEVAESVETYRVALRDILTVNATLVAQRQNEEMTHLTEVSIKQGEEVKKISGWAAILFAPTLVGTVYGMNFDVMPELHWAWGYPVALVLMVGVSVSLFAVFRWKKWI	PGPT0014010_319	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284	NA	NA
AK001_02220	1044			Alcohol dehydrogenase	ATGCGCGCCGTCGCCTACGACGCCTTCGGCGGTCCCGTCACCGTCCGCGAGCTGCCCGAGCCCGTCGCGCCCGACGGCGGCGTCGTCGTGCGCGTGCACGCCACCGGGCTGTGCCTGAGCGACTGGCACGGCTGGGCCGGGCACGACGGCGACATCACCGCCTTCCCGCACGTGCCGGGCCACGAGCTGGCCGGCACGGTCGCCGCCGTCGGCGCCGGCGTGCGGCGGTGGAGGGTCGGCGACCGCGTCACCACGCCGTTCGTCTGCGGCTGCGGACGCTGCGCGTGGTGCCGGGCGGGCGACGCCCAGGTCTGCCCCGACCAGACCCAGCCCGGGTTCACCCACCACGGCTCCTGGGCCGAGCTCGTGGCCCTGCACGCGGCGGACACCAACCTCGTCGCGGTGCCCGACGACGTCACCGACGCCACCGCGGCGGCCCTCGGCTGCCGCTTCGCCACCGCGTTCCGCGCCGTGGCGCACCGCGCCCGCGTGCGCGCCGGCGAGCAGGTCACCGTCGTCGGGGCCGGCGGCGTCGGCCTGAGCGCCGTCATGGTCGCGGCCGCCCGCGGGGCCCGGGTGATCGCCGTCGACCGCGACCCCGCCGCGCTGGAGGCCGCTCGCCGCGCCGGGGCCGAGCACACCCTCCTGACCGACGGCACCGACGTCACCACCGCGATCCACGACCTGTCCGACGGCGGCACGCACGTCGCGCTCGACGCCGTCGGCTCGCCGGACACCTGCGCGACGGCGATCGGTGCGCTGCGTCGCCGGGGCCGGCACGTGCAGGTCGGCCTGCTGCCCGCCGTCGAGGGCCGCCCGCCGGTGGCGATGGACCGGGTCATCGCGCTCGAGCTGGACGTGCTGGGCTCGCACGGCATGTCCGCGGCCGACTACCCGGCGATGATGGGGCTCGTCGGCGACGGGACGCTGCGTCCGCAGGACCTCCTCGACGGCGTCGTGGACCTCGCGGCGGCGGCCGACCTGCTGCCGCGGATGCGCGAGCGCAGCACCGCGGGCATCACGGTCTGCGACCCTCGCCGCTGA	MRAVAYDAFGGPVTVRELPEPVAPDGGVVVRVHATGLCLSDWHGWAGHDGDITAFPHVPGHELAGTVAAVGAGVRRWRVGDRVTTPFVCGCGRCAWCRAGDAQVCPDQTQPGFTHHGSWAELVALHAADTNLVAVPDDVTDATAAALGCRFATAFRAVAHRARVRAGEQVTVVGAGGVGLSAVMVAAARGARVIAVDRDPAALEAARRAGAEHTLLTDGTDVTTAIHDLSDGGTHVALDAVGSPDTCATAIGALRRRGRHVQVGLLPAVEGRPPVAMDRVIALELDVLGSHGMSAADYPAMMGLVGDGTLRPQDLLDGVVDLAAAADLLPRMRERSTAGITVCDPRR	PGPT0006375_1068	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001	NA	NA
AK001_02221	693	gpmB		phosphoglycerate mutase GpmB	ATGACCCTCACCCTTACCCTCGTCCGCCACGGGCAGACGACCCTCAACGCCCGCCGCCACCTGCAGGGCGCCTGCGACTCCCCGCTGACGCGGACGGGCCGTGCCGGTGTCCGGGTCACGGCCCAGCACCTGGCCGACCAGTCGTTCGACGCCGTCTACTCCTCCCCGCAGGGCCGGGCGGTCCAGACGGCCGCGGAGATCCTCAAGCACCACCCCGACCAGCGCCTGCGCATCGACGAGGGCCTGCGAGAGCTGTCGTTCGGCAGCTTCGAACGGCGGCCCGAGCACACCCTCGACGCCGAGGTGCCGTGGGCGGAGCTCGTCCCCGCGATGCTTGCGGGCACCCACCCGGGCGTCGGCGGCGGGGAGTCCGGCGGCGACTTCATGCACCGGGTCCGCGGCACCTTCCGGCGCATCCTCGCCGAGCACGCGACGGCGCCCGCGGGTGCCTCGCACGGAGCGGCAGCGCCCAGCACAGCGCACGTCCTCGTCGTCGGGCACGGGCTGACGCTCGCCGCCTACCTGTGGACCGTCGACCCGTCCGGGCTCACCGCGCTGCCGAACGCCTCCGTCTCGACCGTCGAGGTGTCCGACGGCGCAGCCCGCGTCGTGCGCGCGGGCGTCGACGTCGCGGGCCACGGCGCCGTGGCGGCGCGCCCCGCCCCGGCACCCGCGGCGGCCGCCGCACGCTGA	MTLTLTLVRHGQTTLNARRHLQGACDSPLTRTGRAGVRVTAQHLADQSFDAVYSSPQGRAVQTAAEILKHHPDQRLRIDEGLRELSFGSFERRPEHTLDAEVPWAELVPAMLAGTHPGVGGGESGGDFMHRVRGTFRRILAEHATAPAGASHGAAAPSTAHVLVVGHGLTLAAYLWTVDPSGLTALPNASVSTVEVSDGAARVVRAGVDVAGHGAVAARPAPAPAAAAAR	PGPT0018035_359	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018035-gpmB-K15634	NA	NA
AK001_02222	948	tdh_3		L-threonine 3-dehydrogenase	ATGCGCGCAGCACTCGTCCAGCAGTACGGTCCGCCCGACGTCGTCCGCGTCGCCGACGTCTCCGCGCCCACGCCAGGCCGGGACGAGGTGCTCGTGCGGGTCCGCGCCGCGGCCGTCACGGTCGCCGACGCCCGCATCCGCGGGTCCCGGTTCCCCCGGGGGTTCCGCCTCCTCGCCCGGCTCGCCCTGGGGGTCCGCCGGCCGCGCCGCCCGATCCTCGGCGGCGTCTACTCCGGTGTCGTCGAGCAGGTCGGCCCGGACGTCACGACTCTCTCCCGGGGCGACGAGGTGGCGGGGATGACCGGCACCCGGATGGGCACCCACGCCGAGCTCGTCGTCGTGCCCGCCGACCGCGCCGTCCCGAAGCCCGACGGCGTCAGCCACGAGGACGCCGCGGCCGTGCTGTTCGGCGGCACCACGGCGCTGCACTACCTGACCCGGCGAGCCGAGGTCGGCCCCGGCACGTCCGTGCTCGTGGTCGGAGCGTCGGGCGCCGTCGGCACCGCGGTCGTCCAGCTCGCCGCCCACCGGGGCGCCACGGTCACCGGGGTGGCGAGCGCGGCCAACCTCGACCTGGTCCGGCGGCTCGGTGCCCACCACGTCGTCGACTACAGGACCACACCGGTGCAGGAGCTCACCGGTCGCTACGACGTGGTCGTCGACGTCGTCGGCGCACTGAGCACCCGGGCCGGGCGACGCCTGCTCACCGACGACGGCGTCCTGCTGCTGATCACGGGCACGTTCGGGCAGTCGCTGACGTCCGTCGGCCGGGTGCGCTCCGGCCCCGCGCCGGAGAAGCCGCGGGACGTCGCCGAGCTGCTCCGCCTCGTCGCCGAGGGAGCGCTGACACCGGTCACCGAGTCCGTCGTCGGGCTGGACGACGTCGCTGCCGCGCACGCCCGGATCGACACCGGACACAAGGTCGGCAACATCGTGCTCACGCCGTGA	MRAALVQQYGPPDVVRVADVSAPTPGRDEVLVRVRAAAVTVADARIRGSRFPRGFRLLARLALGVRRPRRPILGGVYSGVVEQVGPDVTTLSRGDEVAGMTGTRMGTHAELVVVPADRAVPKPDGVSHEDAAAVLFGGTTALHYLTRRAEVGPGTSVLVVGASGAVGTAVVQLAAHRGATVTGVASAANLDLVRRLGAHHVVDYRTTPVQELTGRYDVVVDVVGALSTRAGRRLLTDDGVLLLITGTFGQSLTSVGRVRSGPAPEKPRDVAELLRLVAEGALTPVTESVVGLDDVAAAHARIDTGHKVGNIVLTP				NA	NA	NA	NA	NA
AK001_02223	642	tetR		Tetracycline repressor protein class A from transposon 1721	ATGGCACGTGTCGCGCTGACCAGCCAGAAGATTCTCGACGCTGCTGCCGGCGTCGCCGACGACGGCGGGCTGGCGGCCGTCAGCATGCGCAACGTCGGACGGCGCCTCGGTGTCGAAGCCATGTCGCTCTATCACCACGTCGCGAACAAGGAAGCCCTGCTCGACCAGCTCGCCGACTGGGTGTTCGCCCGCATCGAACTGCCCGTCGTGGGTGACCCGTGGCGACCGGCGATGGCGGCCCGCGCCGCCTCGGCGCGGACCGTGCTGGCGGCGCACCCCTGGGCGCTCGGCCTCGTGGAGTCGCGGCGCACGCCCGGCCCCGCCCTGTTGCACCACCACGACACCGTGCTCGGGTGCCTGCGGGCCGGCGGGTTCTCCGTCGCGCTGGCGAGCCAGGCTTTCGCCGCCATCGACTCCTACGTCTACGGATTCGTGCTGACCGAGCAGAGGCTCCCGTTCGACGCCGCGGGAGAGGCCGGCGCGTTCGTGGCGGACGTCGACCTGCCTGTGGGCGACCATCCCCACCTCGCCGAGATGGTCGACGAGATCGTCATGGGTGGCGACTACCGGTTCGCCGACCAGTTCGACGACGGCCTCGAGCTGATCCTGGACGGCCTCGAGCGTCGGCTCGGCGGGGACTGA	MARVALTSQKILDAAAGVADDGGLAAVSMRNVGRRLGVEAMSLYHHVANKEALLDQLADWVFARIELPVVGDPWRPAMAARAASARTVLAAHPWALGLVESRRTPGPALLHHHDTVLGCLRAGGFSVALASQAFAAIDSYVYGFVLTEQRLPFDAAGEAGAFVADVDLPVGDHPHLAEMVDEIVMGGDYRFADQFDDGLELILDGLERRLGGD				NA	NA	NA	NA	NA
AK001_02224	435			hypothetical protein	ATGAGCATGGACAGCGGACCGCGCTACTACGACCTGGACGGCATGCCCGTCTCCGAGGCGCGGTGGGCGGTCATGTGGCACACGGAGGACCGGTGCGTCGCGCAGACGCTCGTCGGGGCGGACTACGTCGTCGAGGCGCGCTGGGTCGGGACCGACCGCGAGGAGCGCGTGGACGAGGCGCCCCGCATCTACCGGGTCAGCGTCCATCCCCTGGGGTACGTGCTGCCCGCGGACGCCGACGACGACACCCCCGCCACGCTGCTGCTCACCGACGAGACCGTGGTCGAGGAGTCCTTCGCCGACCGGTCCGCGGCCGTGGCCCGGCACGACCTGCTCGTGGCCTCGCTGCGGCACCGGCTCGCCGCGGCGTCCTACCTCACCAGCGGGTCCGTCCCGCTGCGCGACCTGCTCACCGAGCCGCTGACCCCGGCCTGA	MSMDSGPRYYDLDGMPVSEARWAVMWHTEDRCVAQTLVGADYVVEARWVGTDREERVDEAPRIYRVSVHPLGYVLPADADDDTPATLLLTDETVVEESFADRSAAVARHDLLVASLRHRLAAASYLTSGSVPLRDLLTEPLTPA				NA	NA	NA	NA	NA
AK001_02225	762	ddaH	COG1834	N(G),N(G)-dimethylarginine dimethylaminohydrolase	ATGCCCGGCACCCTGCTCGTCCGTCCGCCCTCGCCCCGCCTCGCCGAGGGCGAGCTGACCCACCTCGACCGCGTCCCGGTCGACGCCGACCTGGCCCGCCGCCAGTGGCAGGAGTACACGAGGCGGTACGCCGACCGCGGCTGGCAGCTCGTCGAGCTCCCCGCCGCGGACGAGCACCCGGACGGCGTCTTCGTCGAGGACGCCGTCGTGGTCTTCGACGACCTCGCCGTGCTCACCCGCCCGGGCGCGGAGTCCCGCCGGGGCGAGGTCGCCAGCATGCGCCCCGTCGTCGAGTCCCTCGACCTGGAGGTCGCGGCGATCGAGGCCCCCGGGACCCTGGAGGGCGGCGACGTCCTCCAGGTCGGCCGCACGGTCTACGTGGGCCGCTCCAGCCGTACCGACGACGACGGCGTGGCCCAGCTCCGCGCGCTCCTGGAGCCGCGCGGGTGGCAGGTCGTGCCGGTGCCGGTCACCCGGGTGCTGCACCTCAAGAGCGCCGTGACGGCGCTGCCGGACGGCACCGTGATCGGCCACGAGCCGCTGGTCGAGGCGCCCGAGCTGTTCGAGCGGTTCGTGCCGGTCCCCGAGGCCGAGGGGAACGCCGTCGTCGTCCTCGACGAGCGCACGGTGCTGCTGTCCGCGAGCGCCCCGCGCACGGCCGAGCTCCTGCGGGACCGCGGCTTGGAGGTCGTCACCACCCCGGTGACGGAGTTCGAGAAGCTCGAGGGCTGCGTCACCTGCCTGTCCGTGCGGGTGCGCTGA	MPGTLLVRPPSPRLAEGELTHLDRVPVDADLARRQWQEYTRRYADRGWQLVELPAADEHPDGVFVEDAVVVFDDLAVLTRPGAESRRGEVASMRPVVESLDLEVAAIEAPGTLEGGDVLQVGRTVYVGRSSRTDDDGVAQLRALLEPRGWQVVPVPVTRVLHLKSAVTALPDGTVIGHEPLVEAPELFERFVPVPEAEGNAVVVLDERTVLLSASAPRTAELLRDRGLEVVTTPVTEFEKLEGCVTCLSVRVR				NA	NA	NA	NA	NA
AK001_02226	711			hypothetical protein	ATGGGAACGAGCCTGGCCGGGGGCCAGTCCCTGCTCGACCGACTCCCCGGGCAGGAGGACCTGCTGGAACAGGGCGTCCGGTTCCGCCCGCGGTGGTGGACCTCGCGGGTACCGGCGTCCTCGTGGCTCGAGGAGCTCCCGGCGGACCCGACCGACCCGGAGCGCCGCCGACTCTCGCGCGGCCGGATGCTCGCCGCCGCCGACGGGGCGGACGGAGGGGAGTCGCAGGCCTTGCTCGCGTCGTGCGCGTGGAGTGCGGGGGACAGGGCTCTCGTGGCGAGCCGCAGCGCGCGCGCCCTCGTCGAGACGGAGCCGAGCGAGCTCCTGTCACGGCTCCGGCTGGCCGCCAAGCATCTCGGCACGGCGCGGGGAGCGGTCGACGCCTACCGCGCGATGCAACGTGCGGGAGCGGCGAACGTGAAGCACCTCGGGCCCGCGTCGTTCACGACGTTCCTGTACGTCGCCGACTTCGGGACCCGCGGCGGCGTGCGCGGCGGTGACGCGCTGATCATGGACCGGTTCGTCGTCCGCGCGCTGGACGACCTGCACGGCCTGTCGGTGCCCGACGGCGGTCCGTGGTCCGTGGACCTGTACGCGCGCTGGCTCGACATCGCCGCGGAGCAGGCATGGCTGGCCACGGTCGAGCTCGGCCGCTCGGTGCGCAGCGACGAGATCGAGTACGCCTACTCGGAGCACGGCCGGGTGCTCTGA	MGTSLAGGQSLLDRLPGQEDLLEQGVRFRPRWWTSRVPASSWLEELPADPTDPERRRLSRGRMLAAADGADGGESQALLASCAWSAGDRALVASRSARALVETEPSELLSRLRLAAKHLGTARGAVDAYRAMQRAGAANVKHLGPASFTTFLYVADFGTRGGVRGGDALIMDRFVVRALDDLHGLSVPDGGPWSVDLYARWLDIAAEQAWLATVELGRSVRSDEIEYAYSEHGRVL				NA	NA	NA	NA	NA
AK001_02227	246			hypothetical protein	ATGCTGCGATTCGCGGCCGAGGACCTCCCCATCCGGCTGGGCGAGACCGTCGCTCGTATCGACCGGGACGACCCGACGTTCGTCGACAGCCGGCCGGGGCTGGAGCTTCGCCGCGTCCAGGAGGCCCGCAGCCTCGTGGCCCACGGCTATGACGTCGTCGACGCCGCGATCGTGTGGTCGATCCTGGAGAACAACATCCCGGTCGTGGCAGCTCGCGTGGCCGACCTCCTGGGCAGGACCCGCTGA	MLRFAAEDLPIRLGETVARIDRDDPTFVDSRPGLELRRVQEARSLVAHGYDVVDAAIVWSILENNIPVVAARVADLLGRTR				NA	NA	NA	NA	NA
AK001_02228	1269			hypothetical protein	ATGTCTCCCGTCTCCCGAGGCCGCAAGAAGAAGCCGCAGGTCAAGCGATCCCCGCGGGACAACCCGGCGTCCAGGAGCCGCTTCGCCGAGCAGCGGTTCGAGAACGCCCGCGAAGCCTTGCACCGTGAGCTCGCGGCGACGCCCGGCTGGTTCAACCCGGCCACGTCCAGCGTGCTGAGCTCGGCCGACGACCTGCTCGGCCTGGACGGGCCGCGCGACGTCGAGGACGCCGTCGTCCGACTCCTGGCGGTCCAGATGGCCGACGCGCTCGAGTCGGCCGACGCCGCGAACCCCTTCGAGCGCTGGTTCGCCTTCCTCGTCGAACGGGCGGGCATGGAGTTCGCCGAAGGCCTCGCGGACGACGCCGGCACGGCGTGGCGGGGGCCGCTGCGGCTGCTGTACGGACTGACGTCGATCTCCTGGGGTGAGCACCGTTCCGGGGCCGAGGACACGCTCGCTGCCGCACAGCTCGACCTGCGTGCCGCCGGCGTCGGGCAGGACGAACCGCGATGGCTGCGCGCCGCACCGCGCCTGCGGTCCTCCGGCGAGATCCATCAGGTCGCCGACCGATTCGGTGGCCGCCACGGCGTCTTCGCCGTGATGGACGACCGGTCCGGGCGAACAGCCGTCTACGCCTGGGACGTCGACGTCTGCTTCATGCCCGTCGTCGCCGGGGGAGGCTGGTTCGACGATCTCGACGCCGCGACCCGGTGGTGGCGCACGCAGGCCGGCGCGGCCGCGGTCGGGCCCGACGGCGACCTCGATCCACGCCCGACCCGGGACGTCGCACCCCTGCGCGAGCTGGACTTCATGCTGCACGGCGACGAGACCGGGACAGCCCTGGAGGAGTTCTTCCGGGCCCGGCGCCGGGTCGAGGACCTCGATCGGACAGCGTCCCTCGACGCCGGACGTTTCGTGCCTGACGTCGCGGCGCGGGCCGAGGAGTTCGAGGCCTGGCTGCGCGAGCGCGACGCCGGCGACGTGGACCCGGAGGTTCTCGACTACTTCGTGCACGAGGCGACCCGCGGAGACGTCACGCCGAGCGGCGTCGCGTCCGCGCACCGCGCCTTCTTCCTGCGCGACACGATCACCACAGAGGTGGATCCGGACCATGCCGTGTCCGGCGTGATGACGGCGCTGCTGCCCCTGTGGTTCCGCTTCCTCGGCGAGGGCCTCGGCCTGACGGGCGACGAGCTCGCCCGGCCGATCGACGTCGCCGGCGGTGCTCCGCTGGAGGACGACGACTGCCTCGGGGTCTTCGCGCGCTGA	MSPVSRGRKKKPQVKRSPRDNPASRSRFAEQRFENAREALHRELAATPGWFNPATSSVLSSADDLLGLDGPRDVEDAVVRLLAVQMADALESADAANPFERWFAFLVERAGMEFAEGLADDAGTAWRGPLRLLYGLTSISWGEHRSGAEDTLAAAQLDLRAAGVGQDEPRWLRAAPRLRSSGEIHQVADRFGGRHGVFAVMDDRSGRTAVYAWDVDVCFMPVVAGGGWFDDLDAATRWWRTQAGAAAVGPDGDLDPRPTRDVAPLRELDFMLHGDETGTALEEFFRARRRVEDLDRTASLDAGRFVPDVAARAEEFEAWLRERDAGDVDPEVLDYFVHEATRGDVTPSGVASAHRAFFLRDTITTEVDPDHAVSGVMTALLPLWFRFLGEGLGLTGDELARPIDVAGGAPLEDDDCLGVFAR				NA	NA	NA	NA	NA
AK001_02229	1290			hypothetical protein	TTGAGTACGACCCAGACCCTGACCGCGACGACGCAGGTCACCGGGCCCGAGTCCACGCCGGACACGCACCACAGCACCACCGTGCTGCAGGCCGTGGGCCGCACCTACTTCCCGCTGGCGTTCGTCGCGCGCCTGCCGTTCGCGATGATGGTCGTCGGCGTCCTGACCCTGGTGGTCGCCGGCCGCGACTCGCTCACCCTGGGCGGCGCGACGTCGGGCATGGTCGGCCTCGGCGGGGCGGCGATCGGGCCGCTCGTCGGGGCCTGGGCCGACCGCGCGGGCCAGCGTCGCGTCCTGCTCGCGACCGCCGCAGTACACAGCCTGCTGCTCCTCGGCCTGACGGCCGCCGTGTACTCCACGGCGTCGGACGCCGCCGTCCTCGCGATCGCGTTCGCCATCGGCGCCAGCGCCCCGCAGGTGCCGCCGATGTCGCGCAGCCGCCTCGTGGCGATCATCCGCACGCGCCTTCCCGCGGCACGGCAGCAGCGCACCCTGAGCCGCACCATGTCGTACGAGTCCGCGGCCGACGAGATCGTCTTCGTCGTCGGACCGTTCGTCGTCGGCGTGCTGGCGGCGGCCTTCGGCCCCACCGCGCCGATGATGGCGGCAGCCGGGCTGACCGCCGTGGCCGTCGGGGCCTTCGCTCTGCACGCCACGTCGCGCACGACGGCGGCACCCGCCGCGGGTGCGTCGGCCCCCGCTGCCCGTGTGGCCGGCTCTCAGGCGCCGGTCCAGGAGCTGTGGCACCGGCGCGTCCTGGTGCTGGTCGTCGGGTTCGTCGGCATCGGTCTGTTCTTCGGTGCGACGCTGACCGCGATGTCCGCCGTGACCGGGGACGCCGGGCACTCCGAGCGGGCTGGGCTGCTGTACGGGTTCATGGGGATCGGGTCGGTCGTCTCGGCGCTCGCGGTCTCCGCGTTCCCGGCGCGGTTCAGCCTGCGCGCCCGCTGGCTGGCGGCCGCCGTTCTGCAGCTCGCCGGTGCCGTCGTGGTCGCCACGTCGGACTCGACCGGCGTGCTGATCGTCGGGCTCCTGGTCGCCGGGCTCGGTGTCGGCCCGAGCCTCGTGACGATCTACTCGCTCGGTTCGGAGCGCAGCCCGCGCGGCCGCGGCACCACCCTGATGACCATGCTGGGTTCGTCGGTGATCCTGGGGCAGTCGGCGGCCTCGGCGGCCACGGGCGCGCTCGCCGACACGGTCGGCACGGGGGCCGCCCTGGCGACGCCGGCAGTCGCCGGAGGTGTCGTCCTGGCGGCCGCCGTCGCGAACTGGAGGCCGGCCGACCGCTAA	MSTTQTLTATTQVTGPESTPDTHHSTTVLQAVGRTYFPLAFVARLPFAMMVVGVLTLVVAGRDSLTLGGATSGMVGLGGAAIGPLVGAWADRAGQRRVLLATAAVHSLLLLGLTAAVYSTASDAAVLAIAFAIGASAPQVPPMSRSRLVAIIRTRLPAARQQRTLSRTMSYESAADEIVFVVGPFVVGVLAAAFGPTAPMMAAAGLTAVAVGAFALHATSRTTAAPAAGASAPAARVAGSQAPVQELWHRRVLVLVVGFVGIGLFFGATLTAMSAVTGDAGHSERAGLLYGFMGIGSVVSALAVSAFPARFSLRARWLAAAVLQLAGAVVVATSDSTGVLIVGLLVAGLGVGPSLVTIYSLGSERSPRGRGTTLMTMLGSSVILGQSAASAATGALADTVGTGAALATPAVAGGVVLAAAVANWRPADR				NA	NA	NA	NA	NA
AK001_02230	528			hypothetical protein	ATGGCACCTGCTGAACGCTGGGACGCGGACCTCGCCCGGGACGGGCGAGCGCAGATCACCGCGTCCCGCGCGCGGATGCTCTGGCCGCTCGCCGCGGCGGCCGTCTTCCTCGCCCTCGGGGTCGCCATGGTGAGCGACGAGGTCCGGCCACTGTCCGTCGCCGTCGTCGTGGTCTTCGCGGTCGGCGTCGGCGTCCTGCTGTGGCGGATCGTGCGCCCCGTCCGGCTCGAGGTCTCGCGGGACGGCGTCCGCTACCGACGTCTCGAGCTGTCGTGGGACGACGTCGTCGCGGTCCACGAGCGGTCCACTGGGGCCAACCACTTCGTGCTGCTGCAGATCACCGACGAGGCGGCGGCGCGGCTCGGCTCCCAGCACGGGGTCACCCGCCGGTTGCTGCGCCATGACGACGATACGTCCGGCACGGCCTGCGTGGAGGTCGCCGGTCCGTTCGACCACCACGACGAGCTCGTGGCATGGCTCGCCGACGTGCGGCTCAGGCCGCGCGACGTCGGTGCTCGGCGGGACTGA	MAPAERWDADLARDGRAQITASRARMLWPLAAAAVFLALGVAMVSDEVRPLSVAVVVVFAVGVGVLLWRIVRPVRLEVSRDGVRYRRLELSWDDVVAVHERSTGANHFVLLQITDEAAARLGSQHGVTRRLLRHDDDTSGTACVEVAGPFDHHDELVAWLADVRLRPRDVGARRD				NA	NA	NA	NA	NA
AK001_02231	987			hypothetical protein	GTGGACGTCGTCGCTGGCCTGCTCGACGGCCCCCGGGCGCGGGGCGCCTTCCTGCTGCGCAGCCACCTCACGGCGCCGCGGGGCATGCGCATCGAGGACGAGTCGCCGCTGACCATCGTCCCCGTCCTGCGCGGACGGGCGTGGCTGGGCCCGGACGAGACCACGACGACCGGGGCCGACGACGGCACGCCGGCGGCGCTGTCGGGCACGGATAGCGAGAGCGGGACCTGGGTCGAGGCGGGCGACGTGGTGCTGCTGCGCGGACCGGAGCACTACGTGGTGACCGACTCCCCCGCGACGCAACCGACCGTCGTCGTCGGCCCGAACCCGCAGGACTGCCGCGCGATCGACGGCGGACCGTCGGAGATGACGACCTTCGGCGTGCGCTCGTGGGGCAACGACCCCGCCGGCGAGACCGTGATCGTCACCGGCACCTACCCGCTGGACGGCGCGGTCGGGCGACGCATCCTGCGCCTCCTGCCGCACCGCGTCGTGCTGCGGCGGGGCGACATCGACGGCACGGTGATCGACCTGCTCGCCCGGGAGGTCGTCCAGGACCTCCCCGGCCAGGAGGCCGTGCTGGACCGTCTGCTCGACCTGCTCCTGATCACCTGCCTACGGACCTGGCTGGACCGGCCCGACGCTCCTGGCTGGTACCGCGCCGAGGCCGACCCGGCCGTCCGCGCCGCGCTGCGGCTCGTTCACGACGATCCGGCGCGACCGTGGAGCGTGGAGTCGTTGGCGCGGGAGGTCGGTCTGTCCCGGGCGGCGTTCGCACGGCGGTTCACCGCGCTCGTGGGCGAGCCGCCGATGGCCTACCTCACGGGCTGGCGCCTCGACCTGGCGGCCGACCTGCTGCTGGCCGACGACGCGACGCTGGCGGCGGTGGCCCGCGCCGTGGGCTACACGACGCCCTTCGCGCTGAGCGCCGCGTTCAAGCGTGAGCGCGGGATCAGTCCCGCCGAGCACCGACGTCGCGCGGCCTGA	MDVVAGLLDGPRARGAFLLRSHLTAPRGMRIEDESPLTIVPVLRGRAWLGPDETTTTGADDGTPAALSGTDSESGTWVEAGDVVLLRGPEHYVVTDSPATQPTVVVGPNPQDCRAIDGGPSEMTTFGVRSWGNDPAGETVIVTGTYPLDGAVGRRILRLLPHRVVLRRGDIDGTVIDLLAREVVQDLPGQEAVLDRLLDLLLITCLRTWLDRPDAPGWYRAEADPAVRAALRLVHDDPARPWSVESLAREVGLSRAAFARRFTALVGEPPMAYLTGWRLDLAADLLLADDATLAAVARAVGYTTPFALSAAFKRERGISPAEHRRRAA				NA	NA	NA	NA	NA
AK001_02232	534	azoB_1		NAD(P)H azoreductase	GTGAGGAGGAGGCGCAGCGGGCCGAGCGGCTCGTCGCCGAGGCGTTCCCCCGGGCGCACCGTCGTCCGGGCCGCCTTCTTCGCCCAGAACTTCTCGGAGAGCTTCCTCCTCGACCCGGTCCGTTCCGGCTCGCTCGCGCTGCCGGTGGACGACGTCGTCGAACCGTTCGTCGACCTCGAGGACGTCGCCGACGTCGCGGTGGCGGCGCTCATCGACGAGCGGCACGCGGGCGAGACCTACGAGCTCACCGGACCGCGGCTGCTGACGTTCACCGACGCGGTCGACGAGATCTCGGCCGCGAGCGGGCGCGAGGTCGACTTCGTCCCGATCGGCATGGAGGACTTCACCGCCGGGCTGGCCGCGGTCGGGGTGCCGGACGTGGAGATCGACCTGCTGCGCTACCTGTTCACCGAGGTGCTGGACGGTCGTGGTGCGTTCGTCACCGACGGTGTCCAGCGTGTGCTCGGTCGGCCGGCACGGGACGTCCGCGAGTACGCCCGGCGGGAGGCCGCGGTCTGGCGGGTGGCGTCATGA	MRRRRSGPSGSSPRRSPGRTVVRAAFFAQNFSESFLLDPVRSGSLALPVDDVVEPFVDLEDVADVAVAALIDERHAGETYELTGPRLLTFTDAVDEISAASGREVDFVPIGMEDFTAGLAAVGVPDVEIDLLRYLFTEVLDGRGAFVTDGVQRVLGRPARDVREYARREAAVWRVAS				NA	NA	NA	NA	NA
AK001_02233	474			hypothetical protein	ATGAGCCTCTACGCAGCACTCACGGTGTCCGCCGCCGTGGCGACCGGGCTGGCGGGTGGTGTGACGTACGCCTTCTCGTCGTTCGTCATGGCCGGCCTGCGTCGGTTGCCGCCCGACGCCGGGGCGGCGGCGATGCAGCAGATCAACCGGACCGCCGTCCGCCCGCCGCTGGGCGTCCTGCTGGGTGCGTCGGTCGTCCTGCCCGCGGCGTCGGCGGCGCTCGGCCTGGCCCAGGGGAGGGGCGGCGCGGGGCTCGCCGCCGTCGGGGCCGGTGTCGCGGTGGTCGGCATCCTCGGCGTGACCGGCCTGGGCAACGTCCCGCTCAACGACCGGCTCATGGCCAGCGACGAACGCGCCGACGAGTGGCAGCGGATCTATCGTCCGTGGATGCGCTGGAACCATCTGCGTACGCTCGCCGCGGCGGTGTCCTGCGTCCTGCTCGTCGCGGCGGCCCCGGCGGCGGTCGCGACCTGA	MSLYAALTVSAAVATGLAGGVTYAFSSFVMAGLRRLPPDAGAAAMQQINRTAVRPPLGVLLGASVVLPAASAALGLAQGRGGAGLAAVGAGVAVVGILGVTGLGNVPLNDRLMASDERADEWQRIYRPWMRWNHLRTLAAAVSCVLLVAAAPAAVAT				NA	NA	NA	NA	NA
AK001_02234	318	cutA	COG1324	Divalent-cation tolerance protein CutA	ATGGACGACGTCGTGCAGGTCGTGACCACCACCGACTCCGAGGAGGGCGCGCTGCGGCTCGTGCGGGACGCCGTCGGGCACCGGCTGGTCGCGTGCGGCCAGGTCGACGGCCCGGTGAGCAGCGTGTACCGGTGGGACGGCGTCGTCCGGACGGCCGACGAGTGGCGGCTCACGCTCAAGACGACGACGGCGCGCTCGGGCGAGCTGCAGACGTGGCTCGCCGAGCATCACCCGTACGACGTGCCCGAGGTGCTCGTCACGTCGGTGACCGACGGGAACCCCGACTACCTTGCCTGGGTGCGGTCCGAGGTCGGGTGA	MDDVVQVVTTTDSEEGALRLVRDAVGHRLVACGQVDGPVSSVYRWDGVVRTADEWRLTLKTTTARSGELQTWLAEHHPYDVPEVLVTSVTDGNPDYLAWVRSEVG	PGPT0004080_1859	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-DIVALENT_CATION_TOLERANCE,PGPT0004080-cutA-K03926	NA	NA
AK001_02235	840			hypothetical protein	ATGCGCCTGGAAGCCCTACTCTCGGCCGGGTTCCTGGCGATGATGGCGGCTTACGGAGTCCCCGAGTACGACAACTGGCTCGACGCCGGTGAAGACCCCGCGGTCAATGTCGGCGCAACGCTCGAAGAGCAGGACGACCTCCTCAACGGCACGGGCAACGACTCCGCCTCCGACACCCGCTACTTCCGGGCCACGGTGCACTACTGCCTGCTCGCCGACCTGGAGAACACCGTCCTGCGCACCGCCTGCGACGAAGGCACGGAGACGATCGCGACCGGCATCGACTGCCCCGACGATGCCTACGAGCTCCCCGGCCTGTTCGCCGTCACGGTCGGAGGCAACGGGTCCGAGTCCGCTCCGACACTCGTCAGCGAGGGAACCTGCGTCACACCGGCCGACCTGCGGGCCGAGGCCGAGCGCGCCTTCCGGACGATGCCCGTGGAACCGGCCGAGATCGAGCTCGAGGTCGATCGGGACTGGGCCATCGTCAACTTCGGCATCCACCCCCGCACCACCGACGCCGACCAGGTCATGGACACCACGCTCCTGGGCGTCCCGGTCCAGATCCGGGCACTCCCCGCCGAGTTCACCTGGGATGCAGGCGACGAGACGGAGCCACTCACCACCGAGCATCCCGGCGGTCGGTGGGACAGCGCCGACGCCGTCCATCTCCGCTACCCGGCGCCAGGGACGTTCACCGCGAGCCTCACCACCACGTGGCACGGTCAGTTCCGCATCACCGGCACGCCGACCTGGACCGACATCGACGGCGTGCTCACCACCACCGACTCGACCCCGCCGATCGAGGTGCACGACGCCCAGGTCCGCCTGACCGGCTGA	MRLEALLSAGFLAMMAAYGVPEYDNWLDAGEDPAVNVGATLEEQDDLLNGTGNDSASDTRYFRATVHYCLLADLENTVLRTACDEGTETIATGIDCPDDAYELPGLFAVTVGGNGSESAPTLVSEGTCVTPADLRAEAERAFRTMPVEPAEIELEVDRDWAIVNFGIHPRTTDADQVMDTTLLGVPVQIRALPAEFTWDAGDETEPLTTEHPGGRWDSADAVHLRYPAPGTFTASLTTTWHGQFRITGTPTWTDIDGVLTTTDSTPPIEVHDAQVRLTG				NA	NA	NA	NA	NA
AK001_02236	636			hypothetical protein	ATGGCGCGCACACCCCGGCACCTCCTGCAGCTCCGACCGCTCGTTGCGGCCCTCCTTGGTGCCGCGCTGCTGTCGGGCTGCACCGGCGACGATCTTGCAGCGCCCGACGCCGCGGCCAGCGAGCCCCCGGTGTCGAAGCCAGTGTCGGAGTCGCCGTCGGCGGAACCGAGCCCGTCCCCGTCGCCGTCGGAGACGGGCCCGGCGAAGCCGGAGCGCCCGGCGGCGATGGACCGGAAGGATGCCGACGGCGCAGCCGCGGCAGTGAAGTACATCCTCGGGCTGGAACAGCCAATGATGGTCTCCGGAGACACATCAGCCTGGGAGAAGCACTCCCATCGATCGTGCGAGTACTGCGAGGCTCGGCTCGAGCAGGCGACGACCATCGCGAAGCGAGGCGACACGTTCCTGGGCGGAGAAGTCAGTGTCACCGTCGACACGGTCTACCAACGCGACGCCGTCACGGGCATCTGGCCCATCGATATCACCGGGAGAGAGTCCCCATCGGAGATCGAAGACCGCGCTGGTGAAGTGGTCTTCACCAGCGATGGAGGGACCGGCGAACGGAGAGTGGAGGTCGCTCTGAAGGACGGCGAATGGGTGCTCGTAGAGCTCGGCAAGATTCCGGGCGGTGAGTGA	MARTPRHLLQLRPLVAALLGAALLSGCTGDDLAAPDAAASEPPVSKPVSESPSAEPSPSPSPSETGPAKPERPAAMDRKDADGAAAAVKYILGLEQPMMVSGDTSAWEKHSHRSCEYCEARLEQATTIAKRGDTFLGGEVSVTVDTVYQRDAVTGIWPIDITGRESPSEIEDRAGEVVFTSDGGTGERRVEVALKDGEWVLVELGKIPGGE				NA	NA	NA	NA	NA
AK001_02237	846			hypothetical protein	ATGGACGCTCTGCTCCCCCTCGGTACTGCCCCGCGCCCGGACTCGGACCAGGACCTGGCCGCCCGGCTGCGCGCCGCGCTCCTCGGTCTGGCCGGTGACCGCGTGCAGGGCCTGGACGCCGCGAAGATCCTGCCGGTGCTCGACGGCGCCGACGTCGCCTCGCTCGACCTCGACCTGACCGACGTGGTGGTCGGCATGCCGACCGGTGCGCAGGACAAGCCGGCGCCGTGGCGTCCGGAGATCACCGGGCGGGAGGCCGCGGCGCTGCGCACGCTGCGGATCGACGCGCACCCGATGGTCGCCGTCGACCTGCCCGTCGACCTGACCACCGAGATCACCGGGCTGCGGTTCTCCTGGGTCACCGCCGCGGACGACACCGTGGGCGTGGAGTTCGTCGAGCCGACCGACGACTCGCCCGTCTCCGGGCACGCGCGCGTGGCGGTGTCCCGCGACGGGCTGGCCGGCACCGTGCAGGGCCTGCTCGCCGTGGCGCTGTCCGGCAACGGCATCGCGCTCAACGACTTCGACCTGCAGGTCGAGCAGGCGGGGCCGCGCGAGGCGTCGCTGCGGATCGAGGCGGGGATCAAGAAGTCGTTCCTGTCCGCGACCGTCACGGCGACGGCGTCGGCGTCCGTCGACGACGCCATGGTGCTCACGATCGGCGACGTCGAGCTGTCCAGCGGCAACCCGATCGTCGGCGCGATGCTCGGCGCGATCCGGGGCCGGCTCGAGGCCGCGGCCGGCCGCAAGATCGACCTGTCGGCGTCGCTGCCGCCCGGCGTGCAGCTGGCCGACGTGCAGATCGACGTGGGCGAGGACATCGTCCTCACCGCCCAGCTCGCCTGA	MDALLPLGTAPRPDSDQDLAARLRAALLGLAGDRVQGLDAAKILPVLDGADVASLDLDLTDVVVGMPTGAQDKPAPWRPEITGREAAALRTLRIDAHPMVAVDLPVDLTTEITGLRFSWVTAADDTVGVEFVEPTDDSPVSGHARVAVSRDGLAGTVQGLLAVALSGNGIALNDFDLQVEQAGPREASLRIEAGIKKSFLSATVTATASASVDDAMVLTIGDVELSSGNPIVGAMLGAIRGRLEAAAGRKIDLSASLPPGVQLADVQIDVGEDIVLTAQLA				NA	NA	NA	NA	NA
AK001_02238	660			hypothetical protein	ATGCTGGAGCTCGTCACCGGGACCGGCCTCGCGCTCGCCGCCGGGCTGAACGCGTGGATCCCGCTGCTGGCGCTGGGTCTCCTTGCCCGGTTCACGGACCTGCTGACCCTGCCGAGCGGGTGGGCCTGGCTCGAGAACGGCTGGGTGCTGGTGGTGCTCGCCGTGCTGCTCGCGCTCGAGGTGGTCGGCGACAAGGTGCCGGTGCTCGACTCGGCGAGCGACCTCGTCCAGACGGTGGTGCGGCCCGGTGCGGGCGGGATCGCCTTCGGCGCCGGGGCGACGTCGTCGACCACCCGGGTGGAGGACCCGGGCGCGTTCGTGGACTCCGGCGCCTGGGTCCCGGTGGTGCTCGGCATCGTGCTGGCGCTCGCCGTGCACCTGACCAAGGCGGCGCTGCGTGCCGGCGCCAACGCCGCGACCGGCGGGCTGGCCGCCCCGGTGCTGTCCACGGCGGAGGACGGCGCGTCGGTGGGGCTGTCGTTGGCGGCGATCCTCGTGCCGCTGCTGGTGATCCCCCTCGTCGTCGTGCTCGCGGTCCTGATCTGGCGGATGCTGCGGGCACGCGCACGACGGCGGGACGCGGCCCGGGGTGTCGAGCCTCACGCGGGCGGGCCGCCCGCGCCTCCGCCGGTGCCGCCGTCGGGCACCCGTGGCGGTTAG	MLELVTGTGLALAAGLNAWIPLLALGLLARFTDLLTLPSGWAWLENGWVLVVLAVLLALEVVGDKVPVLDSASDLVQTVVRPGAGGIAFGAGATSSTTRVEDPGAFVDSGAWVPVVLGIVLALAVHLTKAALRAGANAATGGLAAPVLSTAEDGASVGLSLAAILVPLLVIPLVVVLAVLIWRMLRARARRRDAARGVEPHAGGPPAPPPVPPSGTRGG				NA	NA	NA	NA	NA
AK001_02239	1080			hypothetical protein	GTGAGCGAGCAGCAGACGAGCCCCGGCACGACGGCGGAGCGCCCCGAGCACGCCCAGGGCGGCACCTACACGGTGCCCGGCCAGGAGTACGTGCGCGACCAGAACTACCTCTCGACCCGCATCACCCGCGACGGGGCCGACGGCTTCCCGGTCGAGCCGGGCCGGTACCGGCTCGTGGCGGCCCGCGCCTGCCCGTGGGCGAACCGTTCGATCATCGTGCGGCGACTGCTGGGTCTCGAGGACGTGCTCAGCATCGGGATGCCCGGCCCGACCCACGACGAGCGCAGCTGGACGTTCGACCTCGACCCGGACGGCCGGGACCCGGTGCTCGGCATCGAGCGCCTGCAGGAGGCGTTCTTCGCCCGGGACCCGCAGTACCCGCGCGGCATCACGGTGCCGGCGATCGTGGACACGCGTGACGGCGCCGTCGTGACGAACGACTTCGACCTGATCACGCGCGACCTGTCGGGCGAGTGGACCGAGCACCACCGGGCGGGCGCGCCGGCCCTGTGGCCCACCGATCCCGACGAGGCCGCCGAGATGGAGTCCGTCATGCGGCGCGTCTTCACCGAGGTCAACAACGGCGTCTACCGGTGCGGGTTCGCGGGCTCCCAGGACGCCTACGAGGCGGCGTACCTGCGGCTCTGGACCGCGATGGACTGGCTGGAGGAGCGGCTCAGCACGCGCCGCTTCCTCATGGGCGACCGGGTCACCGAGGCCGACGTGCGGCTGTTCACGACCCTGGTGCGGTTCGACGCCGTCTACCACGGGCACTTCAAGTGCAACCGGAACAAGCTGACCGAGATGCCGGTGCTGTGGGCGTACGCCCGCGACCTGTTCCAGCTGCCCGGGTTCGGCGACACCGTCGACTTCGAGCAGATCAAGGAGCACTACTACGTGGTGCACACCGACATCAATCCCACCCAGATCATCCCGTGCGGGCCCGACACCTCCGGCTGGCTGACGCCGCACGGCCGCGAGTCGTTCGGCGGCGACCCGTGGGGTGGCGGCACCGCGCCGGGTCCGGTGCGCGACGGCGAGCAGGTCACCGCGGGGCACAACCCGCTCGTGGAGCTCTGA	MSEQQTSPGTTAERPEHAQGGTYTVPGQEYVRDQNYLSTRITRDGADGFPVEPGRYRLVAARACPWANRSIIVRRLLGLEDVLSIGMPGPTHDERSWTFDLDPDGRDPVLGIERLQEAFFARDPQYPRGITVPAIVDTRDGAVVTNDFDLITRDLSGEWTEHHRAGAPALWPTDPDEAAEMESVMRRVFTEVNNGVYRCGFAGSQDAYEAAYLRLWTAMDWLEERLSTRRFLMGDRVTEADVRLFTTLVRFDAVYHGHFKCNRNKLTEMPVLWAYARDLFQLPGFGDTVDFEQIKEHYYVVHTDINPTQIIPCGPDTSGWLTPHGRESFGGDPWGGGTAPGPVRDGEQVTAGHNPLVEL	PGPT0013050_320	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393	NA	NA
AK001_02240	603			hypothetical protein	ATGACTGACGCGCTCTGGATCACCGGTGACGACGCCACGGACCGGTTGCTCGCCGAGGACCCGTTCGCGCTGCTGATCGGGATGCTGCTGGACCAGCAGTACCCGATGGAGCACGCGTTCGCGGGGCCGCGCAAGATCGCCGACCGGTTCGGCACGCTCGACCCGGCCGCGATCGCCGACGCCGACCCCGACGCGTTCGTCGAGATGGCGACCACTCCCCCGGCGATCCACCGCTACGGCCGCTCCATGGCCGGGCGGGTGCAGGCCGTGGCACGCGCCGTCGTCGACGACTACGACGGGGACGTGACCCGGATCTGGACCGACCCGGGGGCCTCCGGCGAGGCCCCGACCGGAGCCGAGGTGGTGAAGCGGCTGAACGCCCTGCCCGGGTTCGGCGCGCAGAAGGCGCAGATCTTCCTGGCGCTGCTGGGCAAGCAGCGCGGCGTCGAGCCGGACGGATGGCGCGAGGCCGCCGGGCACTACGGCGACGACGGGTCGCGCCGCTCGATCGCGGACGTGACCAGCGCGGAGACCCTGCAGGAGGTCCGCGAGTTCAAGAAGGCCCAGAAGGCCGCAGCCAAGACAGCGAAGGCGACGAAGTGA	MTDALWITGDDATDRLLAEDPFALLIGMLLDQQYPMEHAFAGPRKIADRFGTLDPAAIADADPDAFVEMATTPPAIHRYGRSMAGRVQAVARAVVDDYDGDVTRIWTDPGASGEAPTGAEVVKRLNALPGFGAQKAQIFLALLGKQRGVEPDGWREAAGHYGDDGSRRSIADVTSAETLQEVREFKKAQKAAAKTAKATK				NA	NA	NA	NA	NA
AK001_02241	381			hypothetical protein	ATGGCTCGACACCCGAACGTCCTGGCCGGCTCCCTCGTCGCCGCGCTCAACGTCACCGGCACCCTGCACTTCCTCCGGCCCCGCGTGTTCGAGGGGCTGATCCCCGAGGCACTGGGGTCCCCGCGCGCCTGGGTCTACGGCAGCGGCGTGGCCGAGCTCGCGTGCGCCGCTGCGGTCGCGGTCCCGGCCACGCGTCGTGTCGGCGGGTACGCCTCCGCGGCGCTGTTCGTCGGGGTGTTCCCCGGCAACGTGAAGATGGCGCTCGACTCCCACCCGGGCGCGCGGCACTGGTCGCGCAGGCCGTCGGTCGCCTGGGGTCGGCTGCCGCTGCAGGTCCCGCTGGTCGCGTGGGCCTGGCGGGTGGCCCGCAGCGCCGGGTGA	MARHPNVLAGSLVAALNVTGTLHFLRPRVFEGLIPEALGSPRAWVYGSGVAELACAAAVAVPATRRVGGYASAALFVGVFPGNVKMALDSHPGARHWSRRPSVAWGRLPLQVPLVAWAWRVARSAG				NA	NA	NA	NA	NA
AK001_02242	1056			hypothetical protein	ATGAACTTCCGATGGCGCACCCTGTGGCCGGCCCTGCTGGTCCTGCTCCTCGGAGGCTGCTGGTCACCGGCCACGTACCGGGGACCGGAGCCGCCCGGTGCCGCGCCGCCGGCTCCGGCCACGGCGGAGGCGGCCGAGGCCGACGTCCACGCCTTCTTCGCGGCGTTCGAGCAGGTCGTCCTCACCGGGGACGAGGACTACTGGCTCCAGCGGTCGTCGCCCGACTGCTTCTTCTGCGTCACGATGGCGGAGACCGGTGCGGGCTTCGGGTTCGGCGCCGGCCTCCAGGACGGGGACGTCCGCTCGCTGGCCGGGGCCGACCTCTCGGGCTACGACGTCACCACGCTGGCGGCCGAGCTCGACGGCGACGGCGGGGCCCTCGTCGACGTCCGGCTCGAGCTGGGGATCGTCGGTCTCGCCCTGGTCCCGCCGGAGATGATCGCCCCGGACGGCACCGTCGACGTCCGCGAGATGGCGGCCGAGGAGGGTGAGCACCGAGCGCGCGTCCATCTGTCCCACGACGGGACCCGCTGGGTCGTCGACGACGTCACCCGGATGCCCGGCGACGCCGGCGTGGAGTCCCTCAACGCCGATCCCGAGCAGGCCGAGGCGTTCGCCCGCCGGGACGAGATGGCGACGGTCGAGGACGCGGTCGCGGTCGTGCAGCGGTTCCTCGACCTGGAGCGCGAGGTGTCCCGCACGGGAGAGACGAGCGAGATCCAGGCGCTGATCGGACCGGACTGCGCGGGGTGCCGGGCGCGGGTGCGGCTGGCGCAGCACAGGTACGAGGCGGCCGACGAGGTCGTGGGCGGCCGCAGCGACGTCGAGCTCCTCCGCCAGATCCCGCTCGAGGAGGTCCTCGACACCACGGGGATCGACCAGGCGCTCCTGCAGCGGATGTTCCTGCTGGACACCCTGGTCCACCAGGACCGGACCGTGCGGCGCTCTCTCGACGGCGACCTCGTGGAGCCGGCCACGACCCGGGGGCTGGTGGCGGGGCTCTATCTCGACGTCCAGGACGGCTGGCAGATCGACTCGATGACGGAGGCCCCGTGA	MNFRWRTLWPALLVLLLGGCWSPATYRGPEPPGAAPPAPATAEAAEADVHAFFAAFEQVVLTGDEDYWLQRSSPDCFFCVTMAETGAGFGFGAGLQDGDVRSLAGADLSGYDVTTLAAELDGDGGALVDVRLELGIVGLALVPPEMIAPDGTVDVREMAAEEGEHRARVHLSHDGTRWVVDDVTRMPGDAGVESLNADPEQAEAFARRDEMATVEDAVAVVQRFLDLEREVSRTGETSEIQALIGPDCAGCRARVRLAQHRYEAADEVVGGRSDVELLRQIPLEEVLDTTGIDQALLQRMFLLDTLVHQDRTVRRSLDGDLVEPATTRGLVAGLYLDVQDGWQIDSMTEAP				NA	NA	NA	NA	NA
AK001_02243	957	fecE_2	COG1120	Fe(3+) dicitrate transport ATP-binding protein FecE	ATGACGCAGACCTCGGAGCACCGCCCGGGCACCCGGACGCCGGTGGCCGACGCACCCTTGCAGGGCGCGGCGTCGTCCGGCACCGGACTGGCCGCCGACCGGGTGCGCTGGTCGGTGGGCGACCGACTGATCCTCGACGACGTCGACGTCACCGCTCCCCCGGGTGCCCTGACCGGCCTGCTCGGGCCGAACGGGACCGGCAAGTCGAGCCTGCTGCGCCTGATCGCCGGGGTGGAGCGGCCCGACGGCGGCCGCGTCGCCCTGGTCCCGCGGCACGGCGGCGCCGACTCGGCCGGGGCCGGGGAATCCGCTGCAGCCGACGGTGCCGCCGGCGCCGACGGTCCTTCCGGCGTCGGTGAGCCGGAGGACCTGCTGACGATGCGGCGCCGTCGTCGGGCCCGAACGCTGGCCTTCGTGGAGCAGGACGCCGCGTCCGAGCTGCCGGTGACGGTGTTCGACGCCGTCCTGCTGGGCCGCACCCCGCACCGCTCGGTGCTGGCCGGCCCCACCGAGGACGACCACACGATCGCGCGGTCCGCGCTCGAGCGGGCCGGCGCGGGCGACCTGGCCGCCCGCGAGATCTCGACGCTGTCCGGGGGCGAGCGCCAGCGGGTGCACATGGCCCGGGCGCTCGCGCAGCAGCCGCGCGTGCTGCTGCTGGACGAGCCGACCAACCACCTCGACGTGGCCGCCCAGCTCGCCACGATGCGGCTGGTCGGCGAGCTCGCGGCCGACGGCGTCACCGTGCTGGCCGCGCTGCACGACCTGTCCCTGGCTGCCGCGACGTGCGACCACGTCGTCGTGCTCGCCCCGGAGCCGGCCGGGCACGTCGTCGCGGCCGGACCCGTCGAGGAGGTCCTGGTGCCCGAGGTCATCGACCCGACCTACGGGGTGCGCACCACGGTGCTGCGCCATCCGCGCACCGGGCGGCCGGTGCTGACGTTCGACGAGCGGTAG	MTQTSEHRPGTRTPVADAPLQGAASSGTGLAADRVRWSVGDRLILDDVDVTAPPGALTGLLGPNGTGKSSLLRLIAGVERPDGGRVALVPRHGGADSAGAGESAAADGAAGADGPSGVGEPEDLLTMRRRRRARTLAFVEQDAASELPVTVFDAVLLGRTPHRSVLAGPTEDDHTIARSALERAGAGDLAAREISTLSGGERQRVHMARALAQQPRVLLLDEPTNHLDVAAQLATMRLVGELAADGVTVLAALHDLSLAAATCDHVVVLAPEPAGHVVAAGPVEEVLVPEVIDPTYGVRTTVLRHPRTGRPVLTFDER	PGPT0003760_564	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013	NA	NA
AK001_02244	1080	btuC		Vitamin B12 import system permease protein BtuC	TTGCCGACTGAGACCGCAGCACGCACGGCACCGGCCCCCGCGACGCTCTCGCGGGGCCGGCTGCTGGCGTGGCTCGGCGCGACGACGGCGGTGCTGCTGGCCAGCGTCGTCGTCACGGTCGCGATCGGCCCGGCCGGGCTGACGCCGTCGGACGTCGGGCAGGTCGTGGCGACGCGGCTCGGGCTGGGCGACCTGCTGGGGATCGCCGCGCCGGACCGGCTCGACGACGGCATCGTGTGGCAGCTGCGCCTCCCCCGGGTGCTCACCGCCGCGGCCGTGGGGGCGGGACTCGCGGTGTGCGGCGTCGTCATGCAGTCGCTGACCCGCAACCCGCTGGCCGACCCCTACCTGCTGGGCCTCAGTTCGGGGGCGTCGCTGGGCGCGGTCAGCGTGCTCGTGCTCGGCTGGCTCGCCGTGCTGCCGATCGCGGCGTTCGCCGGTGCGGCGGCCGCCCTGGTCGCGACCCTGGCGCTGGCCACGGCCGCCGGACGGGGCGCCGGCGGACTCTCCCCCGGGCGGACCGTGCTGGCCGGGCTCGCGGTGTCCCAGCTCGCGGCCGCGGCGACCAGCTTCGTCATCTTCTGGTCGGCCCAGGGCGACCAGTACCGCGAGATCCTGTCCTGGATGCTCGGGTCGGTGGCCGGGGCGGAGTGGTCCTCGGTGCTGATCGCCGGCGGCGCGGTGCTCGTGCTGGGCACGCTGCTCGCCTCGACCGGGTCGGTGCTGGACGCCTTCACCTTCGGCGACACGGCCGCCGCGACGCTCGGCGTGCCGGTGGCCCGGGTGCGCTGGGTGATGCTGATCGGCGTCGCGCTGCTGACCGGCGCCCTGGTCTCGCAGTCCGGGGCCATCGGGTTCGTCGGCCTCATCCTGCCGCACGCGGTGCGGATGATCACCGGTGCCCGGCACCGCGCCCTGCTGCCGCTGTCCATGCTCTGCGGGGCGACGTTCCTCATCTGGGCCGACACCCTGGCCCGCACCGTCTTCGCCCCGCGCGAGCTGCCGGTCGGGATCGTCACCGCCGCGATCGGTGCGCCCGTGTTCGCGGTGCTGCTGTGGAAGGGACGGGCCCGCGCATGA	MPTETAARTAPAPATLSRGRLLAWLGATTAVLLASVVVTVAIGPAGLTPSDVGQVVATRLGLGDLLGIAAPDRLDDGIVWQLRLPRVLTAAAVGAGLAVCGVVMQSLTRNPLADPYLLGLSSGASLGAVSVLVLGWLAVLPIAAFAGAAAALVATLALATAAGRGAGGLSPGRTVLAGLAVSQLAAAATSFVIFWSAQGDQYREILSWMLGSVAGAEWSSVLIAGGAVLVLGTLLASTGSVLDAFTFGDTAAATLGVPVARVRWVMLIGVALLTGALVSQSGAIGFVGLILPHAVRMITGARHRALLPLSMLCGATFLIWADTLARTVFAPRELPVGIVTAAIGAPVFAVLLWKGRARA	PGPT0003770_2194	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015	NA	NA
AK001_02245	1047			hypothetical protein	GTGCCCCGAGCGCGCATCGCTGCCCTGTCCCTCGCGACCCTCACCGCCGCCTCTCTCGCCGCCTGCTCCGCCGAGACCACGCCCGCCGACGACGCGGCCTCGCCGGGCGAGACCGCCGCATCTGCGGCCGAGGACGCCGCGGCCGACACCGCGACCGCGTACCCGCTGACCCTCGACAACTGCGGGACCGAGGTGACGTTCGACGCCGCGCCCGAGCGCGTCGTCACCGTCAAGTCCTCCACCGCCGAGACGCTGCTGGCGCTCGGCCTCGGCGACCGCATCGTCGGATCGGCCTTCCTCGACGGCCCCGTGCCGGACTGGCTGGCCGAGGACGCCGAGGGCACGGCCGTCGCCGATCCCTTCAGCGACGAGGTGCCCGGCACCGAGGCGGTCCTCGAGCTGGAGCCGGACCTGGTCTACGCGGGCTGGGAGTCGAACGTCGCGGCCGACGGCGCCGGCGACCGCGAGACCCTCGACTCGCTCGGGGTGCACAGCTACGTCGCCCCGGCCGCCTGCAAGGCGCCCGAGTACATGCCGAACCCGCTGACCTTCGAGGAGGTCTTCGCCGAGATCAGCGAGGTCGGCGCGATCTTCGACGCGAACGACGCCGCCGCCGCGCTCGTCGCGGAGCAGCAGGAGACTCTCGACGGGGTCACCCCGGACGACCGGGAGCTGAGCGCCCTGTGGTACTCCTCGGGCAGCGACATCCCCTACGTCGGGGCCGGTATCGGTGCCCCGCAGATGATCCTGGAGGCCGTCGGGCTGTCCAACGTCGCCGGCGACGTCGAGGACACCTGGACGTCGCTGTCCTGGGAGGAGATCGTCGACGCCGACCCGGACGTCATCGTCCTGGTGGACGCCGTGTGGAACTCGGCCGACGACAAGATCGCCCGCCTCGAGGACAACCCGGCCACCGCGGAGCTGACCGCGGTGCGCGAGGAGCGCTACCTCGTCGTGCCGTTCCCGGCCACCGAGGCGGGCGTGCGCAACGCCGACGCCGTCGCCGACCTCGCCGACCAGCTCGCGGAGCTCGAGATTGCCGACTGA	MPRARIAALSLATLTAASLAACSAETTPADDAASPGETAASAAEDAAADTATAYPLTLDNCGTEVTFDAAPERVVTVKSSTAETLLALGLGDRIVGSAFLDGPVPDWLAEDAEGTAVADPFSDEVPGTEAVLELEPDLVYAGWESNVAADGAGDRETLDSLGVHSYVAPAACKAPEYMPNPLTFEEVFAEISEVGAIFDANDAAAALVAEQQETLDGVTPDDRELSALWYSSGSDIPYVGAGIGAPQMILEAVGLSNVAGDVEDTWTSLSWEEIVDADPDVIVLVDAVWNSADDKIARLEDNPATAELTAVREERYLVVPFPATEAGVRNADAVADLADQLAELEIAD	PGPT0003765_4646	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016	NA	NA
AK001_02246	231			hypothetical protein	ATGACGCTGCTGCTCCACCCCGAGCGCCGCCGTCCCACTCCCGCGCCGCCGGCGACCGACCTGGTGCGCGTGGCGCTCGTCGGCGTCGCCGTCTGGACGGTCGCGCTGGTCGTCGTGGGCGTCCTCGCGGCCACCGACGTCGTGCCCGTCGAGGCCGTGGCCATCTGCGGGGCCGGCATCCTGCTCGGACTGCTCGGCCTGCCCTGGGCGCGCCGCCACCGCGGCGACTGA	MTLLLHPERRRPTPAPPATDLVRVALVGVAVWTVALVVVGVLAATDVVPVEAVAICGAGILLGLLGLPWARRHRGD				NA	NA	NA	NA	NA
AK001_02247	1455	pbuG	COG2252	Guanine/hypoxanthine permease PbuG	ATGGCGAACCAGACCAGCGCGCCCTCGGAGGGGCTCAGCGCGATCGACCGCTTCTTCCAGATCACCCAGCGGGGGTCGACCGTCGGCGCCGAGATCCGCGGTGGCCTGGTCACGTTCTTCGCGATGAGCTACATCATCGTGCTGAACCCGCTGATCATCGGCACGGTCCCGGACGGCACCGGGGAGTTTCTCGGCGGCGGTGACGCCCCGAACCTCGGCATGGTCGCGGCGGCGACGGCGCTGATCGCGGGCATCGTGACGATCGCGATGGGCGTGTTCGCCAACTTCCCGATCGGTCTGGCCGCGGGGCTGGGGCTCAACGCGGTGGTGGCCTACTCGATCGCCGGCCTGCCCGACATGACCTGGGCGGACGCCATGGGTCTGGTGGTCATCGAGGGTCTGATCATCCTCGTGCTGGTGCTGACCGGGTTCCGGGAGGCCGTGTTCAACGCGGTCCCCGTCGAGCTCAAGACGGCGATCAGCGTCGGCATCGGGCTGTTCATCGCGTTGATCGGCCTGGTCAACGCCGGGTTCGTCGTGCCGGGCGACGGCACGATCGTGGCGCTCGGCAACCTCGCCACCTGGCCGATGCTCGTGTTCGTGGTCGGGCTGATCCTCACGATCGTGCTGTGGGTCCGTCGCATCCGCGGTGCGCTGCTCATCGCGATCCTCACGGCGACCGCGCTGGCCGTCGTCCTGGAGAACACGCTGAACATCGGCGCGAAGGCGCCGGACGGGTCGAACCCCACGGGCTTCAACCTCAACGCCCCGACGTTCTCCGGCGTCGTCGAGGTGCCGGACTTCGGGCTGCTCGGCCAGTTCTCGCTGCTGGGCTCGTTCGAGAACATCGCCGTGGTCTCGGTGCTGCTGCTGATCTTCTCGCTGCTGCTCGCGGACTTCTTCGACACGATGGGCACGATGGTCGCCGTCGGCGCCGAGGCGAAGCTGCTCGACGAGAAGGGCAACCCGCCGCGCACCCGCGCGATCCTGGTCGTCGACTCGTTCGGCGCGATCGCCGGCGGCGCCGGCTCGGTGTCCTCGAACACGGCCTACGTCGAGTCGACGACGGGTGTCGGCGAGGGCGCCAAGACCGGGTTCGCCTCGGTGGTGACCGGCGTGGCCTTCCTGCTCGCGACGTTCCTGTCCCCGCTGGTGGCGCTGGTGCCCTACGAGGCGGCCGCGCCGGCGCTCGTGCTGGTCGGGTTCCTCATGATGGCCCAGGTGGCGGGCATCAACTGGCGCAACATGGAGATCGCCATCCCGGCGTTCCTGACGATGATCATCATGCCGTTCACGTACTCCATCGCGGACGGCATCGGCGCGGGCTTCATCGCGTTCGTGGTGATCAAGCTGGCGCTGGGCAAGATCCGCCAGATCCACCCGCTGATGTGGGTGTCCTCGTTGCTGTTCGTCGTGTACTTCCTGCTCGAACCGCTGCAGGCGGCCATCGGCTGA	MANQTSAPSEGLSAIDRFFQITQRGSTVGAEIRGGLVTFFAMSYIIVLNPLIIGTVPDGTGEFLGGGDAPNLGMVAAATALIAGIVTIAMGVFANFPIGLAAGLGLNAVVAYSIAGLPDMTWADAMGLVVIEGLIILVLVLTGFREAVFNAVPVELKTAISVGIGLFIALIGLVNAGFVVPGDGTIVALGNLATWPMLVFVVGLILTIVLWVRRIRGALLIAILTATALAVVLENTLNIGAKAPDGSNPTGFNLNAPTFSGVVEVPDFGLLGQFSLLGSFENIAVVSVLLLIFSLLLADFFDTMGTMVAVGAEAKLLDEKGNPPRTRAILVVDSFGAIAGGAGSVSSNTAYVESTTGVGEGAKTGFASVVTGVAFLLATFLSPLVALVPYEAAAPALVLVGFLMMAQVAGINWRNMEIAIPAFLTMIIMPFTYSIADGIGAGFIAFVVIKLALGKIRQIHPLMWVSSLLFVVYFLLEPLQAAIG	PGPT0007325_958	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901	NA	NA
AK001_02248	996	rmlB	COG1088	dTDP-glucose 4,6-dehydratase	ATGCGGGTTCTCATCACCGGTGGCGCCGGCTTCATCGGCGCCAACTTCACCCACCAGACCATCCGAGAGCGCCCCGAGGCTCAGGTCACCGTGCTGGATGCCCTCACCTACGCCGGCGACCTCAAGAGCTTGGCCCCCGTTGACCACCAGATCACCCTTGTGCGCGGCTCGATCACCGACAGCGACCTCGTCGACCGCCTGGTCGCCGAGTCGGACGTCGTCGTCCACTTCGCGGCCGAGTCGCACAACGACAACTCGCTGAACGACCCGTCGCCGTTCGTCGAGACGAACCTGGTGGGCACGTTCACCCTGCTCGAGGCGGTACGTCGGCACGGGGTCAGGTTCCACCACGTCTCGACCGACGAGGTCTACGGCGACCTCGAGCTCGACGACCCGGCGAAGTTCACGCCTGAGACGCCGTACAACCCCTCGAGCCCCTACTCGGCGACGAAGGCCGGTTCGGACCTGCTGGTCCGGGCCTGGGTACGGTCGTTCGGCGTCGAGGCCACGATCTCGAACTGCTCGAACAACTACGGGCCCTATCAGCACGTCGAGAAGTTCATCCCCCGGCAGATCACCAACCTGATCGACGGGGTGCGACCCAAGCTGTACGGCGCCGGGCTGAACGTCCGTGACTGGATCCATGTCGAGGACCACAACAGCGCGGTCTGGACGATCATCGACCATGGCCGCGTCGGCGAGACCTACCTCATCGGCGCCGACGGCGAGAAGAACAACCTCGAGGTGGTGCGGACTCTCCTGGAGGTCTTCGGCCGCGACGCCGACGACTTCGATCACGTCACCGACCGGCCGGGCCACGATCTGCGCTACGCCATCGACGCCACGAGGCTCCGCGAGGAGCTCGGGTGGCAGCCTCGCTACACCGACTTCCGCAGTGGCCTGGCGGCCACCGTCGACTGGTACCGCGAGCACGAAGCCTGGTGGCGCCCGCGGAAGGCTGCCGTCGAGGCGAAGTATGCCGCCACGGGCCAGTAG	MRVLITGGAGFIGANFTHQTIRERPEAQVTVLDALTYAGDLKSLAPVDHQITLVRGSITDSDLVDRLVAESDVVVHFAAESHNDNSLNDPSPFVETNLVGTFTLLEAVRRHGVRFHHVSTDEVYGDLELDDPAKFTPETPYNPSSPYSATKAGSDLLVRAWVRSFGVEATISNCSNNYGPYQHVEKFIPRQITNLIDGVRPKLYGAGLNVRDWIHVEDHNSAVWTIIDHGRVGETYLIGADGEKNNLEVVRTLLEVFGRDADDFDHVTDRPGHDLRYAIDATRLREELGWQPRYTDFRSGLAATVDWYREHEAWWRPRKAAVEAKYAATGQ	PGPT0022625_4287	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022625-rfbB|rmlB|rffG-K01710	NA	NA
AK001_02249	618	rmlC	COG1898	dTDP-4-dehydrorhamnose 3,5-epimerase	GTGCAGTTCCGAGAGCTGGTCGTGGCCGGCGCCTACGAGATCACGCCGCAGCAGCACGGCGACGCGCGTGGCGTGTTCCTGGAGTGGTTCAAGGCCTCGGTGTTCGCCGACCACCTGGGGCACGACCTGGACCTCCAGCAGGCCAACTGCTCGGTCTCCGCGGCCGGCGTGCTGCGAGGCATCCACTTCACCGACGTGCCGCCCGGGCAGGCCAAGTACGTGACCTGCCCGCGAGGGGCGGTGCTCGACGTCGTCGTCGACATCCGCATGGGTTCGCCGACGTTCGGACGCTGGGACACGGTGCTGCTCGACGACGCCGAGAGGCGCGCCGTCTACGTCGGCGAGGGCCTGGGCCACGCCTTCCTGTCGTTGGAGGACGGCTCCACGGTGATGTACCTGTGCTCGACGGGCTACAACCCGACGGCCGAGCACGGCGTGCACCCGCTCGACCCGGAGATCGGGATCGAGTGGCCGACGACGGCACGTGACGGGTCCCCGTTGGCACCGCAGCTCTCCGAGAAGGACGCTGCGGCACCGACGCTCGCCGACGCGAAGGATCAGGGCCTGCTACCGACCCTCGACGCCGTCGAGGAGCACGTGGCGTCGCTGCGCCGCTGA	MQFRELVVAGAYEITPQQHGDARGVFLEWFKASVFADHLGHDLDLQQANCSVSAAGVLRGIHFTDVPPGQAKYVTCPRGAVLDVVVDIRMGSPTFGRWDTVLLDDAERRAVYVGEGLGHAFLSLEDGSTVMYLCSTGYNPTAEHGVHPLDPEIGIEWPTTARDGSPLAPQLSEKDAAAPTLADAKDQGLLPTLDAVEEHVASLRR	PGPT0014300_113	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790	NA	NA
AK001_02250	864	rmlD	COG1091	dTDP-4-dehydrorhamnose reductase	ATGGCTCCCGTCGACCCGGCCCAACGGTGGACCGTCGTGGGGGCGGGTGGAATGCTCGGCCACGACCTCGTCGACCTGCTCACCGCCGCCGGCACGCCGGTGGCGGCGCTTACGCACGACGACGTAGACGTGACCGCCGCGGATGCGACCCGACGCGCGCTGGCCGGCGCCGACGTCGTGGTCAACGCTGCCGCCTGGACCGACGTCGACGGTGCCGAGACTCACGAGCCCGAAGCGATGGCGGTCAACGCGCTCGGCGCCGCGAACGTCGCCCGGAGTGCGCGACTGGCGGGTGCCCGTCTGCTCCATCTCTCCACCGACTACGTGTTCGACGGCCAGGCCACCACGCCGTACCCGGAGTCCGCGGCGACCGCTCCCAAGTCCGTCTACGGGCGGTCCAAGGCCGCCGGTGAGCGCGCCGTGCGCGACGAGGCGTTCGACCACCTCATCGTGCGGACCGCCTGGCTCTACGGAGCGCACGGCCGGTGCTTCCCGCGCACGATGGTGCGCTTGGCGGCCGAGCGTGACCGGCTCGCCGTCGTCGACGACCAGGTGGGCCAGCCGACGTGGACCCGTGACCTGGCCGACCTGATCCTGCGGCTCGTCGACGCCCGTGCGCCGGTTGGCACCTACCACGGGACTGCGTCGGGGACGACGTCGTGGCACGGGTTCGCCCGGCGCGTGCTGGCCTCGGCGGGATCTTCCGTGCCGGTCGACCCGGTGCCCACCGAGGCCTTCCCGCGTCCGGCACCGCGCCCTCGGTACTCCGTGCTGGGTCACGACGCTCTCCGTCGTGCCGGCGTCGAGCCGATCGGGGACTGGGCCGAGCGCTGGGACGTCGCCGCGCCATCGGTCCTGGCGTGA	MAPVDPAQRWTVVGAGGMLGHDLVDLLTAAGTPVAALTHDDVDVTAADATRRALAGADVVVNAAAWTDVDGAETHEPEAMAVNALGAANVARSARLAGARLLHLSTDYVFDGQATTPYPESAATAPKSVYGRSKAAGERAVRDEAFDHLIVRTAWLYGAHGRCFPRTMVRLAAERDRLAVVDDQVGQPTWTRDLADLILRLVDARAPVGTYHGTASGTTSWHGFARRVLASAGSSVPVDPVPTEAFPRPAPRPRYSVLGHDALRRAGVEPIGDWAERWDVAAPSVLA	PGPT0022630_2286	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022630-rfbD|rmlD-K00067	NA	NA
AK001_02251	864	rmlA	COG1209	Glucose-1-phosphate thymidylyltransferase	ATGCGCGGCATCATCCTGGCCGGCGGATCCGGCACCCGGCTGCACCCGATCACCCTAGGGGTGAGCAAGCAGCTCGTGCCCGTCTACGACAAGCCGATGATCTACTACCCGCTGTCGACGCTGCTGCTGGCGGGCATCCGAGACGTCCTGGTCATCACCACGCCCCACGACGCCGAGCAGTTCCGTCGTCTGCTGGGTGACGGGTCGCAGTTCGGCATCTCGATCGAGTACGCGGTCCAGGAGGTGCCCAACGGGCTCGCCCAGGCGTTCGTGCTCGGCGAGGAGTTCTTGCAGGGTGGTCCGGCGGCTCTCGTCCTGGGCGACAACATCTTCTACGGGCAGGGTCTCGGCGACCAGCTCCAGCAGTTCACCGACGTCGACGGCGGGTCGATCTTCGCCTACCGCGTGGCCGACCCGACGGCGTACGGCGTCATCGAGTTCGACGACGACGGTCTGGCACGGTCGATCGAGGAGAAGCCGGAACGGCCCCGCTCGAACTACGCCGTCCCGGGTCTGTACTTCTACGACCGCGACGTCACCGAGATCGCCAAGGATCTCGAGCCGTCGGCGCGCGGCGAGTACGAGATCACCGACATCAACCGGCACTACCTCGACCAGAGACGTCTGCACGTGGAGGTGCTCCCCCGCGGCACAGCCTGGCTCGACACCGGGACGTTCGACTCCCTCATCGACGCCAGCGACTTCGTGCGCACGGTCGAGCAACGCCAGGGCCTGAAGATCGGTTCGCCGGAGGAGGTGGCCTGGCGTCGCGGCTTCCTCTCGGACGACGAACTGCGGGTGCGTGCGGAAAAGCTGACCAAGTCCGGCTACGGCAGCTACCTGCTCGGCCTGCTGGACGACTGA	MRGIILAGGSGTRLHPITLGVSKQLVPVYDKPMIYYPLSTLLLAGIRDVLVITTPHDAEQFRRLLGDGSQFGISIEYAVQEVPNGLAQAFVLGEEFLQGGPAALVLGDNIFYGQGLGDQLQQFTDVDGGSIFAYRVADPTAYGVIEFDDDGLARSIEEKPERPRSNYAVPGLYFYDRDVTEIAKDLEPSARGEYEITDINRHYLDQRRLHVEVLPRGTAWLDTGTFDSLIDASDFVRTVEQRQGLKIGSPEEVAWRRGFLSDDELRVRAEKLTKSGYGSYLLGLLDD	PGPT0022600_4402	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022600-rfbA|rmlA|rffH-K00973	NA	NA
AK001_02252	681			hypothetical protein	ATGGCTACTGCTGACGATATCAGCGCGCCTCCACCACCCCCGGTGCGCCTCAACGCCCATGCGCCCCTGTGGCGCCTGATCGACGCCCTCGCCGCTGCCGGCTGGGGCGACCTGCGCGACGCTCCGCAGAGCGTGCGCAGCTACCTTCTCGCGCTGGCCCGCCTCGCCGACGCGCGCTCCGCCGTCGTCGAGACCACCGACGCCCAGGCCGCCGAACGCGCCGGGGTCTCCGTGCGCACGGTGATGCGAGCACGCACCTGGCTGCAGCGCCACGGCGTCGTCGTGATGCTGCGACGCGGCGCCCGCCAGGGGCTGCGCGGGGTGCCGTCCCTGCTGCGGGTCACCAAGCGGGTCCTGGTCGCGCTGCTACCCACCGCGCGGCGAGCCAAGGACGCCCGGGCCCGACGGCGGTCGGCCCGGCCGGGCGGAGCGCCCACGTTGTGCGTTCCCAACCTGACACCGTGGCACCCCTTCCCCTCCTGGCGGAGGAAGACGGCGACACCCGCCGCGCCGCCGTCGTCGGGCGCCGCGCGGGAACGACGGCGGCCCTCACCCGTCCAGGAACCCCTGCGCGCCGAGGCCGCGGCGGCCTCGGCCGACCCGCCGCGCGCCGCGACGATCGCGGCCGCCCGGGCGGCGGTGCGCTCCCTGTCGGTGGCTGCCGGGAAGGTGAGCGCGTGA	MATADDISAPPPPPVRLNAHAPLWRLIDALAAAGWGDLRDAPQSVRSYLLALARLADARSAVVETTDAQAAERAGVSVRTVMRARTWLQRHGVVVMLRRGARQGLRGVPSLLRVTKRVLVALLPTARRAKDARARRRSARPGGAPTLCVPNLTPWHPFPSWRRKTATPAAPPSSGAARERRRPSPVQEPLRAEAAAASADPPRAATIAAARAAVRSLSVAAGKVSA				NA	NA	NA	NA	NA
AK001_02253	1038	yhcG	COG4804	Putative nuclease YhcG	ATGAACAACGACCCACCGGGATACGTGGACCTGTTCGCTGACCTCAAGGCGCGGGTACGCGGGACACGTTTTCGAGCGGCGCGCGCCGCCAGCACGGAGATCCTGAGGCTGCACTGGTCGATCGGTCGCGACATCCTGCAGCGTCAGCGGGAATCCGGGTGGGGGAGCAAGGTGGTCGATCGCCTGGCCACCGACCTCAAGCGCGAGTTCCCCGAGCAGCGCGGCTGGTCACGCCGCAACCTGCTCTACATGCGCAAGGCCGCAGAGGTGTGGCCGACCGAGACCGAGTTTCTGCACCACGTTGGTGCACGATTGCCCTGGCGACATGTGACCGTGCTGCTGGACCGCCTCGCAACACGTGAGGAGCGCGACTGGTATGCCGAGAGAGCGGGCGCCGAGGGATGGTCCCGCGCCGTCCTCGAGCACCAGATCGCGATGGGCCTGCGTGGCGCCCTCGGAGCAGCGCCGTCCAACTTCGCGGACGCCCTCGACGGGGCGGACTCGGAGCTCGCCCAGCAGCTCGTCAAGGACCCGTACGTGTTCGAGCACCTCGCTTACGCCTCGTCACAGCGGGAGCGGGACATCGAACAGGCCCTGATGGACCGTCTGCAGGACACGCTGCTGGAGTTCGGGCGCCACATGACCCTCGTCGGCAGGCAGTACCGGCTGTTGCTGGACGACGGCGCCGAGTTCGTCATGGACCTCGTACTGTTCCACACGCGGCAGCTCCGCTACGTCGTCGTCGAGCTCAAGGTCTCGGCGTTCGAGCCAGGGCACCTCGGCCAGCTCGGTGCCTACGTCGCCGCTGTCGATGACCAGCTCCGCGACGACGAGATCCACGCGCCGACTGTCGGCATCCTGTTGTGCACCGGCAAGAGCGGTGCCACCGTCCAGTACTCGCTGGCGTCCACGGCGATGCCGGTCGCCGTCGCCGACTACCGCGGGTTGCCGGCCGATGCCCGGGAGGCGCTGCCCAGCGAGGTCGAGCTCGAGGCGATCGTCGATGCCGAGCTGCGGGAGAGACATCACGACACGTAG	MNNDPPGYVDLFADLKARVRGTRFRAARAASTEILRLHWSIGRDILQRQRESGWGSKVVDRLATDLKREFPEQRGWSRRNLLYMRKAAEVWPTETEFLHHVGARLPWRHVTVLLDRLATREERDWYAERAGAEGWSRAVLEHQIAMGLRGALGAAPSNFADALDGADSELAQQLVKDPYVFEHLAYASSQRERDIEQALMDRLQDTLLEFGRHMTLVGRQYRLLLDDGAEFVMDLVLFHTRQLRYVVVELKVSAFEPGHLGQLGAYVAAVDDQLRDDEIHAPTVGILLCTGKSGATVQYSLASTAMPVAVADYRGLPADAREALPSEVELEAIVDAELRERHHDT				NA	NA	NA	NA	NA
AK001_02254	1320	agaA		Alpha-galactosidase A	ATGCAAGGACAGCGGGCGCTCCGCCCCCCGATGGGCTGGAACTCCTGGGACTGCTACGGCACCACCGTCACCGAGGCGGAGGTGCTGGCCAACGCGCGGTTCCTGGCCGAGCACCTGCTGCCGTTCGGGTGGGACACGGTGGTGATCGACATCGACTGGTCCGACCCGACGGCCCGCTCCCACGGGTACAACGCCGACGCGCCGCTGGCGATGGACGACCACGGCCGCCTGCTGCCCGACCCGGGCCGGTTCCCCAGCGCTGCGGGCGGCCGCGGTTTCGCCCCGCTGGCCGAGCAGGTCCACGCGCTGGGCCTGCGGTTCGGTATCCACACGATGCGCGGCATCCCGCGCCGAGCCGTGGACCGCGCGACGCCGATCCTGGGCAGCGACGCCACCGCGGCCGACGTCGCGGATCCGGGCAACGCCTGCGAGTGGAACCCGGACATGGTCGGCCTCGACCACACCCACCCGGGCGCGCAGGCCTACTACGACTCCACGCTCGCGCTGTACGCGTCGTGGGGCGTCGACTTCCTCAAGACCGACGACATGCTCTGGCCCTACCAGGCAGCGGACATCGAGGCCTACGCCCGCGCGATCGCACGCACCGGCCGGCCGATCGAGCTCAGCCTCTCCCCCGGCCGCGACCTGTCGACGACGCACGTCGCCCACCTGCGCGAGCACGCCACGATGTGGCGCATCAGCGACGACCTGTGGGACCGGTGGGAGGACGTCGAGGCGAACTTCGCGCGACTGGCCCGGTGGGCGCCGCTGTCGGGCGACGGCGGGTGGGCCGACGCCGACATGCTGCCGCTGGGGCGCATCGGCCTGCGCGCCGAACGCGGCGAGCCGCGCGACGACGCTCTGACTCCGGCCGAGCGGGTCAGCCTGCTGACGCTGTGGGTGATCGCGCGCTCGCCGCTGATGATCGGCGGCGACCTGCCGTCGTCGGACCCGGCCACCGTGGATCTGTTCCGCCACCCCGACGTGCTGGCCGTGCACCGGGACGGTCGGAACCAGCGCGAGGTGTTCCGCGAGGGTCCGCTGGTGATGTGGGCTGCCGACGGCCCGGACGGCACGGCGTACGCGGCGCTGTTCAACCTGGGCGACGAGCCGCTGCGCCTCGCCCAGGACGTGGCGCGGATCGGGTTCACCGCCCGCGGCGGCCCAGAGGTCCGCGAGCTGTGGACCGGGGCGACCGTGCCGCGCCGGGAGGTCACGGTGCAGAGCGACGCCGCCCGTGGGGTGGCGCCGGGTAGCGCGGCGCTCGACCTCTTGCTGGCGCCGCACGGGGCGGTGCTGCTCGCCGGGCCGGCGGCGTGA	MQGQRALRPPMGWNSWDCYGTTVTEAEVLANARFLAEHLLPFGWDTVVIDIDWSDPTARSHGYNADAPLAMDDHGRLLPDPGRFPSAAGGRGFAPLAEQVHALGLRFGIHTMRGIPRRAVDRATPILGSDATAADVADPGNACEWNPDMVGLDHTHPGAQAYYDSTLALYASWGVDFLKTDDMLWPYQAADIEAYARAIARTGRPIELSLSPGRDLSTTHVAHLREHATMWRISDDLWDRWEDVEANFARLARWAPLSGDGGWADADMLPLGRIGLRAERGEPRDDALTPAERVSLLTLWVIARSPLMIGGDLPSSDPATVDLFRHPDVLAVHRDGRNQREVFREGPLVMWAADGPDGTAYAALFNLGDEPLRLAQDVARIGFTARGGPEVRELWTGATVPRREVTVQSDAARGVAPGSAALDLLLAPHGAVLLAGPAA	PGPT0018835_2685	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407	NA	NA
AK001_02255	1659			hypothetical protein	GTGCGTCGTCCCGGCGACCGTACCGACCCCCGGGCCGCCGTCACCTGCCACAATGACCGTGTGACGCGAGACACGCCCTCGGCCGAGCGTGCCTACCGCCGCACCCTCGCCCTGCTGACCCTCGTCGTCGCGCTGTGGTCCGTGGCGTGGGCGGTGCTCACCCCCGGCTTCCGGTCGCCCGACGAGCAGAACCACCTCAACAGCGTCGTCCGGATCGCCTACGGCGGCGGATGGCCGGCCCCCGGTGACGCCCACTTCGCCCCGGTCACCGACCAGGCCGTCGCCGAGGCCGCCTACCCGGCCGACCTGCCCGGCCGCTGGCGCCACCGCCCCGACGAGACGCAGTTCGTCGACCTCACGCCCGTCCCCGCCACCGAGCGCGTCGCCATCGGCCCCGACAACGCGCTGCCCGCGCCGGGCACCAGCGCCACCGTCGACCAGATGACCCAGCACCCGCCCGCCTACTACGCGCTCGGCGCCGCCGTCCTGCACGCCACCGGCACCGCCGACGCACGGTGGGACGTCGCCCTGCTGACCCTGCGGCTGCTCGACGTCGCCCTGTTCGCCGCCACGGTGCCGCTCGCCGCCGCGACCGCCCGCCGGCTGACCGGCTCGCGCGCCGCCGCCCTGGTCGCCGCCCCGTTCCCGCTGCTGATCCCGCAGGTCGGGCACATCATGGGCGCCGCCAACAACGACGCCCTCGTGGTGCTGACCGGCGCCGGCGTCACCTACCTGGCCGCCCGGGTGGTCACCGGCGACCTGCGCTGGCGGGTGGTGGCCGCCGTCGGCCTCGTGCTCGGTGTGGGCCTGCTGACCAAGGTCATGCTCGCGTTCGCGATCCCGACCGTGATCGCCGCCTACCTGCTCGCTCCTGGGCCGCGCTCGAGACCCCGCGCCGGTCCGACGGCGGTCTCCCGGATCTGGCGCGGGTTCGTCGCCCTGGCGATCGCGTTCGTCGTCGGGGGCTGGTGGTGGGCCCGCAACTGGATCGTCGACGGCGCCGTGCAGCCCGTCGGGCTGCCGCGCGACTACTCCGGCATGACGCAGGTGCCGGCCGACCAGGTGCTCTCCGAGGCGGTCGGGCGCACCGCGCAGGCGTTCTTCGGCAACCTGTCCTGGCTGGAGATCCGCCTGCCCGGCACGTTCGTCGTGGTCGGCTCGACGATCCTCCTCACCGCCGTCCTGACCGCCGTCGTGCTCCCCGGCGCCCGGCGCGGGTCGCTCGCCCTCGCCCTGCTGCCCGTGGGGCTCGCCGCCGCAGTCGTCGTCAACGCGGCCCGGAGCTGGACCGACACTGGCGTCCTCATCGCCCTGCAGGGCCGCTACGTCTTCGGCGGGCTGACGGCGCTCGCGGCCCTGCTGGCGATCGCGCTGTGGCACGCGTGCCTCCGCCGCGAGCGGTGGGCCGCCGTCGTCGTCCCGGTGTTCACCACGCTCGCCGTGGCGGCCGGCGTCGCGGGACTCGGCTGGGCGTTCGTCGCGATGTACCGCGGGCCGGGGGAGTCGGCGGCGCAGGCCTGGGAGCGCTGGGCCGCGTGGAGCCCGCTGAGCGGGACCGCCATCGCCGCGGTGCTGGTGGTCGTGGCGCTCGGGTTCGTCGCCGGGCTGGTCGCCGCCTGGCGGTGGCCCCACCGGTCCCGGAACGCGGCGCGTGGCTAG	MRRPGDRTDPRAAVTCHNDRVTRDTPSAERAYRRTLALLTLVVALWSVAWAVLTPGFRSPDEQNHLNSVVRIAYGGGWPAPGDAHFAPVTDQAVAEAAYPADLPGRWRHRPDETQFVDLTPVPATERVAIGPDNALPAPGTSATVDQMTQHPPAYYALGAAVLHATGTADARWDVALLTLRLLDVALFAATVPLAAATARRLTGSRAAALVAAPFPLLIPQVGHIMGAANNDALVVLTGAGVTYLAARVVTGDLRWRVVAAVGLVLGVGLLTKVMLAFAIPTVIAAYLLAPGPRSRPRAGPTAVSRIWRGFVALAIAFVVGGWWWARNWIVDGAVQPVGLPRDYSGMTQVPADQVLSEAVGRTAQAFFGNLSWLEIRLPGTFVVVGSTILLTAVLTAVVLPGARRGSLALALLPVGLAAAVVVNAARSWTDTGVLIALQGRYVFGGLTALAALLAIALWHACLRRERWAAVVVPVFTTLAVAAGVAGLGWAFVAMYRGPGESAAQAWERWAAWSPLSGTAIAAVLVVVALGFVAGLVAAWRWPHRSRNAARG				NA	NA	NA	NA	NA
AK001_02256	948			hypothetical protein	ATGAAGCTCGTCGTGCAGATCCCGTGCCTCAACGAGGCCGAGACCCTTCCGCTCGTCCTGGCCACCCTGCCGCGTCAGGTCGACGGGTTCGACGAGGTCGAGTGGCTCGTCATCGACGACGGCTCCACCGACGGCACCGCCGACGTCGCCCGCAACCTCGGCGTCGACCACGTGCTGCGGCACACCGCCACCATGGGGCTGGCGCGCTCCTTCCGCGACGGCGTCGACCTCGCCCTCGCGCTGGGAGCCGACGTGGTGGTCAACACCGACGGCGACAACCAGTACCCCTCCGAGCGGGTCGGGGACCTGACCGCGCCGATCCTCGCCGGCGACGCCGACGTCGTCGTCGCCGACCGGCAGACCGCCACCATCGAGCACTTCAGCCCGTTCAAGAAGCGGATGCAGCGCCTCGGGTCGCGGGTCGTCAGCGCCGCCGCGAACACGCCCCTGCCCGACGCCGCCAGCGGGTTCCGCGCCTACTCCCGCGCCGCGCTGCTGCGTCTCAACGTCATCACGCAGTTCAGCTACACCATGGAGACGATCATCCAGGCGGGCAACAAGCACCTGCGGATCGTCTCCGTGCCCGTGGTCACCAACCCCAAGACGCGCGAGTCGCGGCTGTTCCGCAACATCTGGCAGCACATGGGGCGCTCGGGCCGGGCGATCGTGCGCTCGTGGATCATGTTCCGCCCGCACCTGGTGTTCCTGTCCCTGGCGGTGCTGTTCTTCCTCGCCTCGGCGGTGCCGGCCGTGCGGTTCCTCGTGTTCTTCGTCCAGGGCGAGGGCGGCGGGCACGTGCAGTCCCTCATCTTCGCCGCCGCGATGCTCGTGGGGTCGCTGCTGTGCCTGGCGCTGCTGGTCATCGCCGACCTGCAGCGCACCAACCGGACGTTGATCGAGGACACCCTGGAACGGGTCAAGCACCTGCAGTACGGGCGCGACACGTGA	MKLVVQIPCLNEAETLPLVLATLPRQVDGFDEVEWLVIDDGSTDGTADVARNLGVDHVLRHTATMGLARSFRDGVDLALALGADVVVNTDGDNQYPSERVGDLTAPILAGDADVVVADRQTATIEHFSPFKKRMQRLGSRVVSAAANTPLPDAASGFRAYSRAALLRLNVITQFSYTMETIIQAGNKHLRIVSVPVVTNPKTRESRLFRNIWQHMGRSGRAIVRSWIMFRPHLVFLSLAVLFFLASAVPAVRFLVFFVQGEGGGHVQSLIFAAAMLVGSLLCLALLVIADLQRTNRTLIEDTLERVKHLQYGRDT				NA	NA	NA	NA	NA
AK001_02257	627			hypothetical protein	GTGCCCGTCGGCGCACCGGAGGCATGGTTCGCAGCGGCCCGGGACGACGGCGGCACCCCGGCAGGCGCCGACCCGCTGCGGGTCGTGTTCTTCGGCCTGTTCACCCCGCTGCAGGGCGCCGTCACGATCGCCGAGGCGCTCGCCGACGCGCTGCCCCGAGCGGCCACGGCCGGTCGGCCGATCGTCGCGACCCTCGCCGGTCACGGTCAGGACCACGACGCCGCCCGGGCCGCGCTCGCCGGGACCCCCGGCGTCACCTGGCTCGACTGGGTCGAACCCGCCGAGCTGCCCGCGCTCGTCGCCGACCACGACGTCTGCCTCGGCATCCACGGCACCACCCCCAAGGCGCTGCGCGTCGTCCCCAACAAGGTGTTCCAGGGGCTGGCAGCCGGCTGCGTCGTCGTCACCTCCCACACCCCGCCGCAGCGTCGCCTGCTCGGCGACCACCTCGAGCTCGTCCCTCCCGGGGACGCCGCGGCGCTCGCCGACCGGCTCGTCGCGCTCACCGACCCGGCCGAGCTGGCCGCCGCCCGGAGGCGTGCGCACGCCGGACGCGACGCCGTCCGGCCCGCCGCCGTCGTCGGCCCGCTGGTGGACGCCCTCGCCGCCCGCGGGGTGCGGCCGTGA	MPVGAPEAWFAAARDDGGTPAGADPLRVVFFGLFTPLQGAVTIAEALADALPRAATAGRPIVATLAGHGQDHDAARAALAGTPGVTWLDWVEPAELPALVADHDVCLGIHGTTPKALRVVPNKVFQGLAAGCVVVTSHTPPQRRLLGDHLELVPPGDAAALADRLVALTDPAELAAARRRAHAGRDAVRPAAVVGPLVDALAARGVRP				NA	NA	NA	NA	NA
AK001_02258	1845	COQ3_3		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	GTGACCGGCACCCGGAGCGATCCCGCCACCCCTCCCGGTGCCGTGGCCCGCCTGCTCGCCGTGCTGCGCTCGCCCTGGGTGCGCTGGGGATTCCTCGTCCTGGCCCTCGCGCTGGCGGTCTACGCCGTCGTCGCCGTGCGCGAGGACCTCGCCGACGCGGCCAAGGCGCTGCCCGCCGGCCGTCTCGTCCTCGCCGCCGTCCTCGCCGTGCTGTTCGTTGGCTGCACCTGGCTGTCCTGGCGGGCCGTGCTGACCGACCTCGGCTCCCGGCTCGGACCGCGCGCCGCCGTCGCCGTGTTCGGCATCAGCCAGCTCGGCAAGTACGTGCCCGGCGGCGTGTGGAACGTGGTGGCCGCCGCCGAGGTCGGGGCCGACCACGGCGTCCCGCGCCGCCGCACCATGACCGCCACCGCCGTCGCCACCGGGGTCGGCGTCGTCTCCGGGGCCGTCGTCGGGCTCGTCGCGCTGCCGTTCGTCGCGCTCGACTCGCTGCAGAGCTGGAGCTGGGTGCTCTGGCTGCTGCCCGCCGTCGTCGTCCTGCTGCTGCCGCCCGTGCTCAACCGACTGCTCGCCGCCGCGCTGCGGTGGGCGCGGCGACCCGCCCTCGAGCACCCGCTGTCCTGGCGCGGCCTCGGTGCGGCCGCCGGGTGGGCCGTCGCCGGCTGGCTGCTCGCCGGCGTGCAGGTGTGGCTGCTCGCCACCGGTCTCGGCATGGCGAGCGACGTGCGCACGCTGGCGCTCGCCGTCGGCGGGTACGCGCTGGCCTGGATGGTCGGGTTCCTCGTCGTCGTGGTGCCGGCCGGCGCCGGGGCGCGCGAGCTCGTGCTGCTCGCCGTGCTGACCGGGGCGCTGCCGCACGCCGAGGTGCTGCTCGTCGTGCTGGTCAGCAGGGTCCTCATCACCCTCGCCGACCTGCTGTTCGCGGGGATCGGCGCGCTGTGCCGCCGGCCCGCCGGGGTGCGGTTCGCCCCGCTGGCCCCACGGGCCTGGCTGCGCTGGGACGTCGTGCACCGGATGCTGCCGACCCGGCGCTCGGCGGTGCTGGAGATCGGCTGCGGCCAGGGCGGGTTCGGCATGCGCATCGCCGCCCGGCACGACTACACCGCGGTCGAGCTGGACGCCGGCTCGTGGCAGGTGGCGGCGGCGCGCGTCGGGGCCGTGGACCCGGCGGCCCGCGTGCTGCACTGTGACCTGTCGGTGCTGCCGGCGCAGGAGCGGTTCGACGTCGTGTGCGCCTTCGAGGTCGTCGAGCACATCGAGGACGACGCCGCGGCGCTGGTCCAGTGGGCCGCCCGCGTCCGCCCCGGGGGGACGCTGCTGCTGTCCACCCCGGCCGACCCCGACCGGTACGGGCCGTGGGACGCCATGGCCGGGCACTACCGCCGCTACGAGCCGTCCCACCTCGCGCGGCTGCTCGCGGACGCCGGGCTGACCGACGTCGTGGTGCGGCACTACGACGCCCCGCTCGGCTTCGTGCTGGAACCGATCCGCGACCGGGTCGCCCGGCGCCGGCCCGAGCACGCGGAGGTGTCCGCCGGCGGTGCGGCGCCTGCCGGTGCCGTGCCGTCGGCGGGTGCTGCGGCCCCGGCCGGCGCGCCGTCGTCGGACCCGGACCTGGCCGCCCGCACCGCCGACTCCGGCCGCCGCCTCCAGCCGCGCCGCCGCCTCACCGGTGTGCTGACGGCGGTCGGCACCTGGCCGTTCCGGCTGCTGCAGCGGGCCCTGCCGCACGCCGGGACCGGGCTCGTCGCCGTCGGGACGCGCCCGCAGACCGACGACCCGCCCGACGACCCGCCCGGCGTACGACCCGCCGCGCACCCGGACACCCGTCCCCCGGAGGACTGA	MTGTRSDPATPPGAVARLLAVLRSPWVRWGFLVLALALAVYAVVAVREDLADAAKALPAGRLVLAAVLAVLFVGCTWLSWRAVLTDLGSRLGPRAAVAVFGISQLGKYVPGGVWNVVAAAEVGADHGVPRRRTMTATAVATGVGVVSGAVVGLVALPFVALDSLQSWSWVLWLLPAVVVLLLPPVLNRLLAAALRWARRPALEHPLSWRGLGAAAGWAVAGWLLAGVQVWLLATGLGMASDVRTLALAVGGYALAWMVGFLVVVVPAGAGARELVLLAVLTGALPHAEVLLVVLVSRVLITLADLLFAGIGALCRRPAGVRFAPLAPRAWLRWDVVHRMLPTRRSAVLEIGCGQGGFGMRIAARHDYTAVELDAGSWQVAAARVGAVDPAARVLHCDLSVLPAQERFDVVCAFEVVEHIEDDAAALVQWAARVRPGGTLLLSTPADPDRYGPWDAMAGHYRRYEPSHLARLLADAGLTDVVVRHYDAPLGFVLEPIRDRVARRRPEHAEVSAGGAAPAGAVPSAGAAAPAGAPSSDPDLAARTADSGRRLQPRRRLTGVLTAVGTWPFRLLQRALPHAGTGLVAVGTRPQTDDPPDDPPGVRPAAHPDTRPPED				NA	NA	NA	NA	NA
AK001_02259	741	COQ3_4		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	GTGAGCACGAGCATCCCGCCCCTGACCCTGTTCGGCGCCCTGCGCTGGGACGTCGTGCGGCCACACCTGCCCGGGCCCGGCGCCCGCGTCCTCGAGATCGGGTGCGGGCAGGGCGCCGTCGCCGTCCGTCTCGCCGCCGCGGGCTACGACTACACCGGCGTGGAGCTCGACCGCGCCAGCGCCGAGGTCGCCGACGCCCGCCTCGCGGCTGCCGGGCTGCCCGGCCGGGTCGTGCACGGGGCGGTGGAGTCCGCCGACCTCGACGGCGGGTTCGACGTGCTGTGCGCCTTCGAGGTGCTCGAGCACCTCGAGGACGACGCCGGGACCCTGGCCGGCTGGGTGCGGCTGCTGCGCCCGGGCGGGCTCGTGCTCGTCTCGACCCCCGCGTGGCAGGACCGGTTCGGGCCCATGGACACCGCCGTCGGACACCATCGGCGCTACGACCCGCCGCACATGCGTGAGCTGCTGCGCGGCGCCGGACTGGCCGACGTCGGCGGGCAGCTCTACGGGATGCCGCTGGCGTACGCGCTGGAGACCGTGCGCAACCGGGTCGCGCAGCGCCGGCTGACCGGTGACGGGACCACGACGGCGGAGCGGACGGCGCGCTCCGGGCGGCTGTTCCAGCCGTCCTCGGGTGCCACGGGCGCCGCGATCACGGCCGCCACCTGGCCGTTCCGCCTCGCCCAGCGGGCGTTCCCGCGGACCGGCCCGGCGCTGGTCGCCTGGGGTCACCGGCGCTGA	MSTSIPPLTLFGALRWDVVRPHLPGPGARVLEIGCGQGAVAVRLAAAGYDYTGVELDRASAEVADARLAAAGLPGRVVHGAVESADLDGGFDVLCAFEVLEHLEDDAGTLAGWVRLLRPGGLVLVSTPAWQDRFGPMDTAVGHHRRYDPPHMRELLRGAGLADVGGQLYGMPLAYALETVRNRVAQRRLTGDGTTTAERTARSGRLFQPSSGATGAAITAATWPFRLAQRAFPRTGPALVAWGHRR				NA	NA	NA	NA	NA
AK001_02260	1365	entS_1		Enterobactin exporter EntS	ATGAGTGCCACCTTCACCTCCCTCCGCTATCCGAACTACCGCCTGTGGTTCGGCGCTGCGCTCGTCGCCAACGTCGGCACCTGGATGCAGCGCATCGCCCAGGACTGGCTCGTGCTGACCGTCCTGACGGACGACTCAGGCGTCGCCGTCGGCATCACCACGGCCCTGCAGTTCCTGCCGTTCCTGCTCATCGGGCCCTGGACGGGGCTCCTCGCGGACCGGCTGCCCCGCCGCGGGCTCCTCATGGCCACGCAGGGCTCGATGGGGGTGCTGGCCGTCGGCCTCGGCGCGCTGGTCCTGTCCGGCTCCGCCGAGCTGTGGCACGTCTACGCCTTCGCCCTCGGCCTCGGTGTCGCCACCGCCTTCGACAACCCCGCGCGCCAGACGTTCGTCGCCGAGCTCGTGCCCCCCGAGCGGTTGTCCAACGCGGTGGGTCTCAACAGCGCCTCCTTCAACGCCGCCCGGCTGATCGGGCCGGGAGCCGCCGGGCTGCTCATCGCCGCCGTCGGTCCCGGGTGGGTGTTCGTCGTCAACGGGCTCACCTTCGCCGCCACGATCGCGGCCGTCGCGCTGATGCGCCCCGCCGCGATGTGGGTCCGGGACCGGGCCCCGCGCGGCAAGGGTCAGATCGTCGAGGGCCTGCGCTACGTGCGCGGACGCTCCGACATCATGGTGATCATGGTCGTCATGGCCGTCGTGTCCACGTTCGGCCTCAACTTCCAGCTGACGAGCGCGATGATGGCGCGGGTCGAGTTCGACCGGGGCGCCGGCGAGTTCGGGCTGCTCGGCTCCGTCCTGGCGATCGGGTCCCTGGCCGGAGCCCTGCTGGCGGCCCGCCGCGAGCGACCGCGGGTCCGCCTCGTGATCGGTGCGGCCTTCGCCTTCGCGATCGCCACGGCCGTCAATGCCCTCATGCCGACCTACTGGCTGTTCGCCGTGACGACCATCCCGGTCGGCCTGTCCGCACTGACGATGATGACCGCCGCGAACTCCACCATCCAGACCTCCATCGACCCCGTGATGCGCGGACGCGTCATGGCGCTCTACATGATGGTGTTCCTCGGCTCGACGCCGATCGGCTCACCGATCGTGGGCTGGATCGGCGAGGCCTTCGGGCCCCGCTGGTCGATCCTCGTCGGGTCGATCACGACGTTCGCCGTGGCGCTGGCGGCGACCGCCTGGGCCCGCCGGTCGTGGCGGGTCAGCGTGCGGTACCGGCTGCGCCGTCGTCCGCACCTGGAGGTCGTCTACCTCGACGCGCCGTCGGGCACGACGCCGGGGCCCTCGCCGTCGGGCACGACGCCGGAGCCCCCGCCGACGGACGCCCCGCCGACACCGACGCCGGAGCGCGCCCGCGCCGCCTGA	MSATFTSLRYPNYRLWFGAALVANVGTWMQRIAQDWLVLTVLTDDSGVAVGITTALQFLPFLLIGPWTGLLADRLPRRGLLMATQGSMGVLAVGLGALVLSGSAELWHVYAFALGLGVATAFDNPARQTFVAELVPPERLSNAVGLNSASFNAARLIGPGAAGLLIAAVGPGWVFVVNGLTFAATIAAVALMRPAAMWVRDRAPRGKGQIVEGLRYVRGRSDIMVIMVVMAVVSTFGLNFQLTSAMMARVEFDRGAGEFGLLGSVLAIGSLAGALLAARRERPRVRLVIGAAFAFAIATAVNALMPTYWLFAVTTIPVGLSALTMMTAANSTIQTSIDPVMRGRVMALYMMVFLGSTPIGSPIVGWIGEAFGPRWSILVGSITTFAVALAATAWARRSWRVSVRYRLRRRPHLEVVYLDAPSGTTPGPSPSGTTPEPPPTDAPPTPTPERARAA				NA	NA	NA	NA	NA
AK001_02261	1125	serC	COG1932	Phosphoserine aminotransferase	ATGACCCTCCAGATCCCTGCGTCGATGCTGCCCGCGGACGGCCGCTTCGGAGCCGGCCCGTCCAAGGTCCGCACCGGCCAAGTCGACGCCCTCGTCGCGGCCGGCGACCCCGCACGGCCGGTGCTGGGCACCTCGCACCGCCAGGCCCCGGTCAAGGACCTCGTGCGACGGGTGCGCACGGGCCTGACCGAGCTCTTCGCCCTGCCCGACGGTTACGAGGTTGCCCTCGGCAACGGCGGGTCGACCGCCTTCTGGGAGGTCGCGACGGCCTCGCTGGTGCGGCACCGGGCCCAGCACGCGGTGTTCGGCGAGTTCGGCGGCAAGTTCGCCGCGGCCACGGCGCGGGCACCGTTCCTCGCCGACCCCGAGGTCGTCGAGGCCGCGCCGGGCGGCGTCGCGTACCTCACGCCGTCGGACGCCGTGGACGTCTACGCCACCCCGCACAACGAGACGTCGACGGGCGCGATGGCGCCGGTGCGGCGCCCGGCGGGCGACGCGCTCGTCCTCACCGACGCCACCTCGGGCGCCGGCGCCCTGCCGGTCGACCTGCACGAGACCGACGTCTACTACTTCGGGCCGCAGAAGGCGTTCGCGGCCGACGGCGGCCTGTGGCTCGCGCTGCTCTCCCCGGCGGCGGTCGCACGCGCCGCCGAGGTCGAGACGGCCGGCGACGGCCGGTGGGTGCCGGAGTTCCTGTCGCTGACGACGGCGCTGGACAACTCGCGCAAGGACCAGACGCTGAACACGCCGGCGGTCGGCACGCTCGTGATGCTCGCCGACCAGGTCGAGTGGCTGCTGGAGCACGGCGGCCTGGACTGGTCGGTGCGCCGCTGCGAGCGTTCGGCCGAGCACCTCTACGGCTGGGCCGCCGACCGCGACTGGGCGACGCCCTTCGTGGCCGACCCCGCGGAGCGCTCCACGGTGGTGGGCACGATCGACCTGGACGCGACGATCGACGCCTCGGCCGTCGTCGGCCACCTGCGCGCGAACGGGGTCTACGACGTCTTCCCGTACCGCAAGCTGGGGCGCAACCAGCTGCGCGTCGGCATGTTCCCCGCGGTCGACCCCGACGACGTCGCGGCACTGACGGCGTGCGTCGACCACGTCGTCGACCGTCTCACCTGA	MTLQIPASMLPADGRFGAGPSKVRTGQVDALVAAGDPARPVLGTSHRQAPVKDLVRRVRTGLTELFALPDGYEVALGNGGSTAFWEVATASLVRHRAQHAVFGEFGGKFAAATARAPFLADPEVVEAAPGGVAYLTPSDAVDVYATPHNETSTGAMAPVRRPAGDALVLTDATSGAGALPVDLHETDVYYFGPQKAFAADGGLWLALLSPAAVARAAEVETAGDGRWVPEFLSLTTALDNSRKDQTLNTPAVGTLVMLADQVEWLLEHGGLDWSVRRCERSAEHLYGWAADRDWATPFVADPAERSTVVGTIDLDATIDASAVVGHLRANGVYDVFPYRKLGRNQLRVGMFPAVDPDDVAALTACVDHVVDRLT	PGPT0009160_1343	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009160-serC|pdxF-K00831	NA	NA
AK001_02262	702	ideR	COG1321	Iron-dependent repressor IdeR	GTGACGGACCTGATCGACACCACCGAGATGTATCTCAAGACGATCTACGAGCTGGGTGAGGAAGGCATCACGCCGCTGCGCGCCCGGATCGCGGAGCGCCTGGGCCACTCGGGACCGACCGTTTCCCAGACGGTCGCGCGGATGGAGCGGGACGGTCTCGTCGTCGTCACGGGCGACCGCCACCTCGAGCTCACCGCGGACGGTCAGGAGAAGGCGGTACGGGTCATGCGCAAGCACCGGCTCGCCGAGCGTCTGCTGACGGACGTGATCAAGCTCGACTGGCCGCAGGTGCACAACGAGGCCTGCCGCTGGGAGCACGTCATGAGCGACCTGGTCGAGCGTCGTCTCGTGACGCTGCTCGACCACCCGCACCACGACCCGTACGGGAACCCGATCCCCGGCCTGTCCGAGCTCGGGGAGCAGTACGAGGAGATGCCGTTCCTCGAGGGCGTGCAGTCCCTGCCGCTCTTCCTGCAGACGGTCCCCGACGACGGCGCCGCGGTCGTGCTGCAGCGCATCGCCGAGCCGGTGCAGGTCGACGACGAGTTCCTCGAGCGGCTCTCCGACGCGGGCCTGCTGCCCGGGGTGAGCATCGAGGTCGAGCGGGCGGGGGACGACTACGTCGTGCGCACCGCCGACGGCGACGGTGCGCTCGAGCTGCCCGAGGACCTGGCCAAGCACCTGTTCGTCGCGGCGCGCTGA	MTDLIDTTEMYLKTIYELGEEGITPLRARIAERLGHSGPTVSQTVARMERDGLVVVTGDRHLELTADGQEKAVRVMRKHRLAERLLTDVIKLDWPQVHNEACRWEHVMSDLVERRLVTLLDHPHHDPYGNPIPGLSELGEQYEEMPFLEGVQSLPLFLQTVPDDGAAVVLQRIAEPVQVDDEFLERLSDAGLLPGVSIEVERAGDDYVVRTADGDGALELPEDLAKHLFVAAR	PGPT0003890_476	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709	NA	NA
AK001_02264	813			hypothetical protein	GTGACTGCTCGCAGCATGCGCGGTAAGCACCGCGCCGCCCGCCGCCCGATGATGGCGGCCCCCTCCGCGGCCGCCGGCCGTCGGGCTGCTGTGGTGGCGACCGCCGGTGGTCTGCTCGTGTCGACGATCGGCGGGGCGACCGCCGCGCACGCGGCACCGGTGGACTCGGACGCGGCCAAGAAGCTGAGCACCGTGGACCTGGGTGCGCTGACCGACCAGGCCAAGCAGGCCCTGGAGGCGGCGCCGGTGGTCACGGTCGACGCCGAGGCCAAGGTCACCGTCGAGCGCGTGACTCCGAAGATCGCCGAGAAGGCCGACATCAAGGCCGCGCCGGAGCCCGAGCCGGAGCCCGTGCGCGAGACCACCCCGTCGCGCTCCGGCGAGCGGGAGTCGGTCTCGACGTCCTCCTCGTCGTCCTCGACCTCCTCGTCGAGCACGACCGAGTCCTCGAGCTCCGCCTCCTCTGTCCCGGCCTCCGCCGTCGGCTCCTCGGTCATCTCCGTCGCCTCGCGCTACGTCGGCGTCCCGTACGTCTCCGGCGGCACGACCCCCTCCGGCTTCGACTGCTCCGGGTTCACCCAGTACGTCTTCGCGCAGGTCGGCATCTCGCTGCCGCGCTCGTCCTCGGACCAGCGCTACGCCGGCACCGTCGTCTCCCGGGCCGCCGCGCAGCCGGGCGACCTCATCTGGTCCCCGGGCCACATCGCGATCTACGCGGGCGGCAACACCCAGATCGACGCCCCGCGTCCGGGCAAGACCGTCCAGTTCCGCAACATCTGGCAGTCCAACCCGACCTTCATCCGGGTCGGCTGA	MTARSMRGKHRAARRPMMAAPSAAAGRRAAVVATAGGLLVSTIGGATAAHAAPVDSDAAKKLSTVDLGALTDQAKQALEAAPVVTVDAEAKVTVERVTPKIAEKADIKAAPEPEPEPVRETTPSRSGERESVSTSSSSSSTSSSSTTESSSSASSVPASAVGSSVISVASRYVGVPYVSGGTTPSGFDCSGFTQYVFAQVGISLPRSSSDQRYAGTVVSRAAAQPGDLIWSPGHIAIYAGGNTQIDAPRPGKTVQFRNIWQSNPTFIRVG	PGPT0023995_3500	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471	NA	NA
AK001_02266	831			hypothetical protein	GTGAACGCACGCAACACCACGCGCGGTCGGCACCGGGCCGCCCGCCGCCCCATCACCGCACCGTCGGCCGCAGCCAGCCGTCGCGCCGCCGTGATGGCCACGGCCGGTGGTCTGCTCGTGTCGACGATCGGCGGCGCGACCGCCGCGCACGCGGCACCGGTGGACTCGGACGCGGCCAAGAAGCTGAGCACCGTGGACCTGGGTGCGCTGACCGACCAGGCCAAGCAGGCCCTCGAGAGCGCGCCGGTGGTCACCGTCGACGCCGGGGCCAAGGTCACCGTCGAGCGCGTGACCCCCAAGATCGCCAAGAAGGCCGACATCAAGGCCGCGCCGGAGCCCGAGCCGGAGCCCGTGCGTGAGACCACGCCGTCCCGCTCCGCCGAGCGCGAGCCGGTCTCGACCTCGTCCTCTTCCTCGTCGTCCTCTTCCTCGTCGTCGAGCACGAGCGAGTCCACGACCTCCTCGGCCCCCGCGGCCAGCAGCTCGCGCGGTTCGCAGGTCGTGTCCATCGCGGCCCGCTACCTCGGCACCCCGTACGTCGTCGGCGGCGCCTCGCCGTCCGGCTTCGACTGCTCCGGCCTGGTGACCTACGTCTACGCCCAGGTCGGCGTCTCGCTGCCGCACTCCTCGAGCGCGATCCTCAGCGCCTCGAACACGACGCAGATCTCCTCCTCCGAGGCGCAGCCGGGCGACCTCATCTGGTCCCCGGGGCACATCTCGATCTACATCGGCAACGGCCAGCAGATCGAGGCGACCCGCCCCGGTGGCTGGACCGTCCGCCAGTCCAGCCTCTGGCAGTCCAGCCCGACCTTCCTGCGGGTCACCGGCTGA	MNARNTTRGRHRAARRPITAPSAAASRRAAVMATAGGLLVSTIGGATAAHAAPVDSDAAKKLSTVDLGALTDQAKQALESAPVVTVDAGAKVTVERVTPKIAKKADIKAAPEPEPEPVRETTPSRSAEREPVSTSSSSSSSSSSSSSTSESTTSSAPAASSSRGSQVVSIAARYLGTPYVVGGASPSGFDCSGLVTYVYAQVGVSLPHSSSAILSASNTTQISSSEAQPGDLIWSPGHISIYIGNGQQIEATRPGGWTVRQSSLWQSSPTFLRVTG	PGPT0023995_3595	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471	NA	NA
AK001_02267	951		COG0589	Universal stress protein	ATGACACGTCCTGAGGTCGTCCTGGTGGGGGTCGACGGCTCCGAGCCGAGCCTGCACGCCCTGGACTGGGCAGCGGCATATGCCGAACGGGTCGGCTGGCGCCTGCACGTGGTGTGCACCTACTCGCTGCCGTCGTTCACGGCCGCGTCGCTGGACGGCGGGTACGCGGCGCTGGACGACACGGCGATCGCCGAGGGCGCGAAGGCGGTGCTCGCCGAAGCCACTGCCCGTGTCGAGGGCATCGGCGTCCCGGTCCAGGGGACCGTCGCCACCGGTGACGCCGCCGGGGTGCTGGTCGAGATGTCGTCCGACGCGTGCCTCGCGGTCGTCGGGACGCGCGGCCGGGGCGGCTTCACCGAGCGTCTGCTCGGCACCGTCTCGTCGGCGCTGCCCGCGCACGCCCACTGCCCGACCGTCGTGGTGCCGTACCGCTCGGACCCGGAGGAGGGCGACGGCCCGGACCGCCGGGACGGTGCCGCCGTGCATGCCGTGCGACGCATCGTCGTCGGTGTCGACGGATCGCCGACCGCCGAGGTCGCGCTGCGGCACGCCGTCGAGCAGGCCGAGACCTGGGGCGCCGAGCTCGTGGCCGTGGCCGGCGTCCCGCTGGGCAGCGGCGCGGGGGTCCTCGCCTGGTTGCCGTCGCAGATCGACCACGAGCAGATCCTCGACGACGTCCGCGCGGGGCTGGACGTCATCGTCGACCGGGTCGCGGCGGAGCATCCCGGGCTGACCATCAAGCGGCACGTGCTGGACGGGTCCGGGGCCGAGTTGCTCACGGAGTTCTCCGGCGCCGCGGACCTCGTCGTCGTGGGGTCGCGCGGCCGTGGAGGATTCCGCGGCCTGCTGCTCGGGTCGACGAGCCAGGCGGTGCTGCACCACTCCAAGTGCCCGGTCCTCGTGGTGACGCGCAAGTGTGACGAGGAGCTGCAGGCCGACTCCGCCGCCTGA	MTRPEVVLVGVDGSEPSLHALDWAAAYAERVGWRLHVVCTYSLPSFTAASLDGGYAALDDTAIAEGAKAVLAEATARVEGIGVPVQGTVATGDAAGVLVEMSSDACLAVVGTRGRGGFTERLLGTVSSALPAHAHCPTVVVPYRSDPEEGDGPDRRDGAAVHAVRRIVVGVDGSPTAEVALRHAVEQAETWGAELVAVAGVPLGSGAGVLAWLPSQIDHEQILDDVRAGLDVIVDRVAAEHPGLTIKRHVLDGSGAELLTEFSGAADLVVVGSRGRGGFRGLLLGSTSQAVLHHSKCPVLVVTRKCDEELQADSAA				NA	NA	NA	NA	NA
AK001_02268	990			hypothetical protein	GTGCCGCGATCACTGCCTGAGGACGACGACCTTCCGGAGCGGCCCTTCCGCGTCGCCGATGCCCTCGCGCAGGGCGTGGAGCCGACGACGCTGCGTCGGGTCCGGTTCGACAGCCCCTTCCACGGCGTGCGCGTCGCGTCCGGGGCGACGGCCGGGCTCGAGGCACGATGTCGCGCTCTGCTTCCGGTCCTGGGCGACGGCGTGGTCTTCAGTCACGTCACGGCCTTGCGGCTGTTCGGCGTCGACGTCCCGTGGACGCTGGAAGACCTGGCGGCCGACGGCGCCGCACCGCACGTGGTCACCGCCGCCGCGGCCGACCGTCCCCAGCGTCAGGACGTGATCGCGCACCGGACCCGGCAGGAGCTCCTCGACACGACGACGATTCGCGGGTTGCCCGTGACGACGCCTGCCCAGACCTTCGTCCACGTCGCCGCGGGTCTGCGGTCGCCGGACGACATCGTGGTGCTGGGTGACGCGATGATGCGGCACGCCCGCGAGCTCACGAGCCCCGCGGAGCTGGCACGGCTCGCCGCACGCACCCGGAAGGTCAAGGGGATCGCTCAGGTCCGTGCCCAGATCCCGCGCCTGCGTCCCGGCACCGACTCGGTGACGGAGACCCGGACACGACTGCAGCTGACGGACGCCAACCTGCCGTGCCCGCTGGTCAACGCGACCATCCGGCTCGCCGACGGCACCTACGTCAAGCGGTGCGACCTGCTCTACCCGGAGCATCGGGTCGTCATCGAGTACGACGGCGACCAGCACCGCACCGACCGCGGGCAGTGGCGGGAGGACGTGCGTCGGCGCCGATGGGTCCAGGAGCTCGGGTACCAGGTGGTCGTCGCGGTCGGCGACGACCTGACGCGGAACGGTGGTGTGCGTCCTGGCGGCGTCGTGGGACGGGTCCGTCCGCTGCTCGATCGCGCTCCGACACCGGTGTCGGCCGGTACGCCGGAGACCGTCGTCGTGCCGTACCGCGCCACGATCTGA	MPRSLPEDDDLPERPFRVADALAQGVEPTTLRRVRFDSPFHGVRVASGATAGLEARCRALLPVLGDGVVFSHVTALRLFGVDVPWTLEDLAADGAAPHVVTAAAADRPQRQDVIAHRTRQELLDTTTIRGLPVTTPAQTFVHVAAGLRSPDDIVVLGDAMMRHARELTSPAELARLAARTRKVKGIAQVRAQIPRLRPGTDSVTETRTRLQLTDANLPCPLVNATIRLADGTYVKRCDLLYPEHRVVIEYDGDQHRTDRGQWREDVRRRRWVQELGYQVVVAVGDDLTRNGGVRPGGVVGRVRPLLDRAPTPVSAGTPETVVVPYRATI				NA	NA	NA	NA	NA
AK001_02269	825	drrB		Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrB	ATGACCGCCGTCGACATCAGCACCACCACGCTGCGCGAGGCCGTCGCGCTGGAGGAACGGCCGTCGCGCCCGTCGGCCGTCTCGACGTCGCTGACGTTCGGGTGGCGAGCGCTGCTCAAGATCAAGCACGTGCCGGAACAGCTCTTCGACGTGCTGGTCTCCCCCGTCGTCTTCACCCTGATGTTCACGTACCTGTTCGGCGGGGCCCTGGCCGGGTCGACGACGGCGTACATCCAGTTCCTGCTGCCCGGGATCCTGGTGCAGACGATCATCATCGTCACCGTCTACACCGGCTACACGCTGAACTCCGACATCACCAAGGGCGTCTTCGACCGCTTCCGCTCCCTGCCGGTCTGGCGGCCGGCCCCGATCGTGGGCGCACTGCTCGGGGACCAGGTGCGGTACACGATCGCGTCGGTGATGTGCATCGGGCTCGGGCTCGTCATCGGCTTCCGGCCGGACGGCGGTGTCCTCGGGGTGGTCGCGGGCGTCGCGTTGCTGCTGGTCTTCGCCTTCGCGCTGAGCTGGATCTTCACGATCCTCGGTCTGCTGCTGCGCACCCCGAACGCCGTGATGGGCGTGTCGATGATGGTGCTCATGCCGTTGACGTTCGCGTCGAACATCTTCGTCGACCCCGCGACGATGCCGTCCGGGCTGCAGGCGTTCGTGGACGTCAACCCGGTCACGCACCTGGTCACGGCGGTCCGCGGCCTGATGGGCGGGGTCGTCGACGCCGGCGACATCGTCACCGTCCTCGTCTCGGCGGTGGTGATGACCGCGGTGTTCGCGCCGATCACGATGTACCTCTACCGCAACCGGCACTGA	MTAVDISTTTLREAVALEERPSRPSAVSTSLTFGWRALLKIKHVPEQLFDVLVSPVVFTLMFTYLFGGALAGSTTAYIQFLLPGILVQTIIIVTVYTGYTLNSDITKGVFDRFRSLPVWRPAPIVGALLGDQVRYTIASVMCIGLGLVIGFRPDGGVLGVVAGVALLLVFAFALSWIFTILGLLLRTPNAVMGVSMMVLMPLTFASNIFVDPATMPSGLQAFVDVNPVTHLVTAVRGLMGGVVDAGDIVTVLVSAVVMTAVFAPITMYLYRNRH	PGPT0006730_14418	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_02270	1020	drrA_2		Daunorubicin/doxorubicin resistance ATP-binding protein DrrA	ATGCGCGACGGGCCACAGCACGCGGTCGAGGCCACCGGCCTCGTCAAGCACTTCACCTCCGGCAAGAAGACGACGAAGGCCGTCGACGGCGTCGACCTGGCCATCCCCACCGGCAGCGTGTACGGCCTGCTGGGGCCCAACGGTGCCGGCAAGACGACGGTCGTGCGGATGCTCGCCACGCTGCTGCGCCCGGACACCGGGACCGCGAAGGTCCTCGGCCACGACGTCGTGTCCGATGCCGACGCCGTCCGTGCCGCCGTCGGGCTCACCGGCCAGTACGCCTCGGTGGACGAGGACCTCACGGGGACCGAGAACCTGCTGATGCTGGCCCGGCTGTACGGGTTCCGCGGGCCTGCGGCACGGCAGCGGGTCGCCGACCTGCTCGCGGCGTTCAGCCTCACCGACGCCGGTGGACGACAGGTCAAGACCTACTCCGGCGGCATGCGGCGGCGCATCGACCTCGCCGCCTCCTTGGTGCTGTCCCCGCGCGTGCTGTTCCTCGACGAGCCCACGACCGGGCTGGACCCGCGATCGCGCAACCAGGTGTGGGACATCGTGCGCGTGCTGGTCCAGGACGGCGCGACGGTGCTGCTGACCACGCAGTACCTCGAGGAGGCCGACCAGCTCGCCGACCGCATCGGCGTGATCAACCACGGCCGGCTCATCGCCGAGGGCTCGCCCAGCGAGCTCAAGCACTCCGTCGGCCAGGGCGCGGTGACGCTGCGGCTCGCCGACGCCGGGCGACGGGCCGAGGCGGCCGCCGTCGTGCAGCGGGTGCTCGGGACCGAGCCGACGCTGCCCACCGACCCGTACGGCCTGACCGCCCGGGTGCCCGACGACGGCACGCACCGGGTGGCGCAGGTCCTCCCCGCGCTCGAGGAGGCCGGGATCGCGGTCCCGGAGTTCTCCCTCGGCCAGCCCAGCCTGGATGAGGTGTTCCTGACGCTGACCGGCGAGCCGCTGCCGGAGGACGAGCAGGGCTCGGACGAGCCCGCCCTCGAGCAGGAGGTGTCCCGATGA	MRDGPQHAVEATGLVKHFTSGKKTTKAVDGVDLAIPTGSVYGLLGPNGAGKTTVVRMLATLLRPDTGTAKVLGHDVVSDADAVRAAVGLTGQYASVDEDLTGTENLLMLARLYGFRGPAARQRVADLLAAFSLTDAGGRQVKTYSGGMRRRIDLAASLVLSPRVLFLDEPTTGLDPRSRNQVWDIVRVLVQDGATVLLTTQYLEEADQLADRIGVINHGRLIAEGSPSELKHSVGQGAVTLRLADAGRRAEAAAVVQRVLGTEPTLPTDPYGLTARVPDDGTHRVAQVLPALEEAGIAVPEFSLGQPSLDEVFLTLTGEPLPEDEQGSDEPALEQEVSR	PGPT0006725_2349	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02271	1554	dap_2		D-aminopeptidase	ATGACCCCCCGCACCGCGCAGCCCGTGCACCACCCGGGCGCCACCGCCGACCGCCTGAACACCGCCTACCTGGCCGACTGGGTGGCCACGCAGGCCGGTCTGGCCCGTCTGCCCGGGGTGCAGTACGCGGTGAGCATCGACGGCGAGCTCGTCCTCGACGGCGCGTGGGGCGTCACGGATCTGACCTCCGGGACGCCGCTGCGCCCGGACCACGTCTTCCGGGTCGCCTCGCACTCCAAGACGTTCACCGCGACGGCGGTCGCCCGGCTCATCGATGCCGGCCGGTTGCGTCTCGACGACCCGCTGTCCCGGCACGTCGCCGAGCTCGACGGCTCCGACGTCGGGCGCGTGACGGTGCGCGAGGCGCTCGGGCACACCGGCGGCGTGCTGCGCGACGGCCACGACGCCGACTACTGGCAGCTCGCGACCCCGTTCCCGGACCGTGCCACGCTGCTCGACGAGGTCCTCAGCCACGGGGAGGTCTTCGGTCGCGGGGAGCACTTCAAGTACTCCAACCTCGCCTACGGCCTGCTCGGGATGGTCATCGAGGAGATCACCGGCACCCGGTACAGCGAGCACGTGCGCACCGAGCTGATCGAGCCGCTGGGCCTGGCCGACACCACGCCGGAGCTGGACGACGACGTCGCCCGCCGCGCCGTCGTCGGGCACAGCGCGCGAGCGCTCGCCGCTCCGGGGCTGGCGACGATGTTCGCGGACGGCCGGCTGCCGGTGGCGGCGGTGACCACGGGTGCGTTGTCGGCCGCGACCGGCTTCTGCTCGACGGCGCGCGACCTGGTGCGCTGGGCGGACGCGCACGCGGACGGCTCGACCCTGGTGCGACCAGCGACGCGTCGCCTGCTGCAGCGCGACGAGTCGGTGATCGACCGTCCGCACAGCCCGCGGCGGGGCTACGGGCTCGGGTTCGAGACCCGCGAGGTCGGCGGCCGCCGGCTGGTCGGGCACTCGGGCGGGTTCCCGGGGCAGATCACGCGGACGTGGTTCGACCCGTCCGAGCGCATCGCCGTCGCCGTCCTGACGAACGCGATCGACGGGCCGGCGGACGCCCTCGCGCTCGGGATGTTCGGGCTGGTCACGGCGGCTCTGGAGGGTCTCGAGGCCCATGCCGGGGCCGGTTCTCAGCACGACGGCGGTGGCCTCGTCGCGCCGGCCACCCCGGACGGCGAGTCGCCGGACGACGGCGAGAATGCGGCCGAGCGGTCGCCGGACGACGGCGGCACCGTGGCCCCGCACCCGCTGGACCGCTGGACGGGCCGGTTCGCCAACCTGTGGGGCATGACGGACGTGGCGCGACTGGGGGACCGGTTGTGGGCGGTCGACCCGCGGCGGGCGGACCCGCTGGACGGCGCCGAGCGCCTCGAGGTCGACGGCGACGTGCTGCGGCCGGAGCCGCACGCCGGGTTCGGTCCGGTCGGTGAGCCGATCCAGGTCCTGCGGGAGGCCGACGGCCGGCCGACCGCCGCCGTCGTCGGCGGGATGACCTCGTGGCGCGCGGACGACTTCGAACGTCAGCGCCGGGCGCACGCCTCCCGCTAG	MTPRTAQPVHHPGATADRLNTAYLADWVATQAGLARLPGVQYAVSIDGELVLDGAWGVTDLTSGTPLRPDHVFRVASHSKTFTATAVARLIDAGRLRLDDPLSRHVAELDGSDVGRVTVREALGHTGGVLRDGHDADYWQLATPFPDRATLLDEVLSHGEVFGRGEHFKYSNLAYGLLGMVIEEITGTRYSEHVRTELIEPLGLADTTPELDDDVARRAVVGHSARALAAPGLATMFADGRLPVAAVTTGALSAATGFCSTARDLVRWADAHADGSTLVRPATRRLLQRDESVIDRPHSPRRGYGLGFETREVGGRRLVGHSGGFPGQITRTWFDPSERIAVAVLTNAIDGPADALALGMFGLVTAALEGLEAHAGAGSQHDGGGLVAPATPDGESPDDGENAAERSPDDGGTVAPHPLDRWTGRFANLWGMTDVARLGDRLWAVDPRRADPLDGAERLEVDGDVLRPEPHAGFGPVGEPIQVLREADGRPTAAVVGGMTSWRADDFERQRRAHASR				NA	NA	NA	NA	NA
AK001_02272	756			hypothetical protein	ATGCACCCGCCCCACCGGCCCGCACCCGGTGCCGCCCCGGCCCTCTCCCGCGTCACCCGACCCTCCACGGTGGACCTCATCACCGTGGAGCTGCGCAACGCGATCTACACCGGCGCCCTGCGCGTCGGCGCGCCGATCCGTGAGATCGAGGTGGCCCGGCAGCTCGGCGTCAGCCGCGGCCCCTTCCGCGAGGCGGCGCAACGACTCGTCGCCGAGGGCCTCGTCGTCGCGACCCCGGGACGGGGCCTGTCCGTGCGCACCATCGGCAAGGACCGGATCCGTCCGCTGTACGCCGCGCGGACGATGGTGGAGACCACCGCGGCGCGCGCAGCGGTCGACACGGCGACGGCGGACCAGGTGGCCGCCGTGCGCTCGGCCCACGACGAGCTGGTGCGCGCCGACGCGACCCACGACGCCCTGCGTGTCGGAGCCGCGGACCTCAACGTGCACTGGCAGCTCGTGGCCGCGAGCAGCAACCCGTGGCTCCTGCACTGGATGAGCACGCTGATCGTCGAGGTGCGCATCGCCAGCTTCACGGTCAGCGAGGAGTACGTCGTGCGCAAGGACGCCGCCGAGGCGCACGCCGACATCGTCGAACGGCTCGAGGCGCGGGACGCCGACGGCCTGGAGGCCGCGATCCGCGCGAACCTGGACGACGCGGTGATGCGCCTGCTCTCCCCGGAGCGGTTCGGCTCGGAGTCCCTGGAGGAGCCGCGGCCGCTGCCGCCGCCGCGGCTCGACCCCCTCCACCTCTGA	MHPPHRPAPGAAPALSRVTRPSTVDLITVELRNAIYTGALRVGAPIREIEVARQLGVSRGPFREAAQRLVAEGLVVATPGRGLSVRTIGKDRIRPLYAARTMVETTAARAAVDTATADQVAAVRSAHDELVRADATHDALRVGAADLNVHWQLVAASSNPWLLHWMSTLIVEVRIASFTVSEEYVVRKDAAEAHADIVERLEARDADGLEAAIRANLDDAVMRLLSPERFGSESLEEPRPLPPPRLDPLHL				NA	NA	NA	NA	NA
AK001_02273	963			hypothetical protein	GTGCGATCCATCAGGACCACGAACCGCCGCCGGGCACTCGCCGCGGCCGGATCCGCCCTTGCCCTGACCGCGCTGGCCGCCTGCTCGAGCACCGACGGCGGCTCGGAGAGCACCGACAGCGGTGACAGCGGTGACAGCGGCGACGGCGAGTCCATGTCGACCCTCGCCGACCTGCAGGAGGCCGGCTCGATCAACGTCGGCTTCTTCGGCGAGGTGCCGTACAGCTACGAGGAGGACGGCGAGCTCACCGGTGCCACCATCGAGCTCGGCCGCCAGATCTACGGCGAGCTCGGCATCGACGAGGTCACCGGCACGCAGGTCGAGTGGGGGGCGCTCATCCCGGGCGTCAACGCCGACCGGTTCGACGCCGTCAGCGCCGGCATGTCGATCCTCCCGGAGCGTTGCGAGCAGGTCGCCTTCGCCGAGCCCACGATCATGTACACCACGGCCTTCCTCGTCCCCGAGGGCAACCCGGAGGGGCTGACCGACTGGCAGTCGATCGAGGGCAGCGGGCTGACGCTGGCCGTTACCTCGGGTGCCATCGAGGCCGGCTACGCCGACGAGACCGACGTCGAGGCCATGGAGGTCCCGGACCGTCAGGCCGGTCTGGACGCCGTGGTGTCCGGCCGTGCCGACGCCTACGCGCTCACCGGCATCTCGCTGCGCGCGCTGGCCGAGGAGACCGACCAGCCCGTCGAGGCGACCGAGGCGTTCACCGCCACGATCAACGGCGTGTCCCAGATCGGTGCCGGCGCCGAGGTCTTCCGCCAGGGGGACACCGAGCTGCTCGACGCCTACAACGAGGGCCTCGCCCCGATCCTCGCGGACGAGGCCGCCTGGCTCGAGATCATGGAGCCGTTCGGCTTCAGCGCGGCGGAGTTCCCGCCGGAGGGTCTGACGGCTGAGATGCTGTGCGAGGGCGACCTCGAGGCCATCACCGAAGAGCTGGGGATGGGCTCCTGA	MRSIRTTNRRRALAAAGSALALTALAACSSTDGGSESTDSGDSGDSGDGESMSTLADLQEAGSINVGFFGEVPYSYEEDGELTGATIELGRQIYGELGIDEVTGTQVEWGALIPGVNADRFDAVSAGMSILPERCEQVAFAEPTIMYTTAFLVPEGNPEGLTDWQSIEGSGLTLAVTSGAIEAGYADETDVEAMEVPDRQAGLDAVVSGRADAYALTGISLRALAEETDQPVEATEAFTATINGVSQIGAGAEVFRQGDTELLDAYNEGLAPILADEAAWLEIMEPFGFSAAEFPPEGLTAEMLCEGDLEAITEELGMGS	PGPT0020800_2153	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030	NA	NA
AK001_02274	762	yecS	COG0765	L-cystine transport system permease protein YecS	ATGTCCGATGACATCCAGGACCTCGTCGAGAGGCTCCCGCTCCTCGGGGACGCGGTTCTTGTCACGCTGCTGATGACCGTGGGCGGGGCTCTCCTCGCCGTCGTCATCGCCGTGCTGCTCGGGTTCGGCTCGCGCACCCAGACTCTCTGGGTGCGCGGGCCGTCCCGCGTCGTCGTCGAGTTCTTCCGCGGCACGTCGCTCGTGGTCCAGCTCTTCTGGCTCTTCTACGTGTTGCCCGTGTTCGGCTTCAAGATGGAAGCGCTCGCCGTGGCGATCGTGGCGCTCGGGCTCAACTACGGCGCCTACGCCTCCGAGGTGGTCCGCGGGTCGATCGCGTCGGTCCCGCAGGGGCAGTGGGAGGCGGCGACCGCGCTGAACATGACGTGGTTCCACAAGGTGCGGCGGGTCATCTTCCCGCAGGCGTGGGCGCTGATGATCCCCATGCTGGCCAACCTGCTGATCCAGCTCCTCAAGGGGTCGGCGCTGGCGTACTACATCACGCTGCAGGACGTGAACTTCTGGACCGTCGAGCTGCGGCGGGCCACGGCCGACACGTTCTTCAGCTACACGGCCGGTCTGATCGTGTACTTCATCATCGCCTACCTGCTGACCTGGGGGATGAACATCCTGGAGGAGCGCGCCAAGCGGCGGCTCGGCCGCGGTACGCGGCCCACCCTGCGTGAGACGTTCGGCCTGAAGCCGGCCTCCAACCCGAGGCTGGCCAACACCGCGGGAGCCCCGGCTGGGGGTGGCGGCGCATGA	MSDDIQDLVERLPLLGDAVLVTLLMTVGGALLAVVIAVLLGFGSRTQTLWVRGPSRVVVEFFRGTSLVVQLFWLFYVLPVFGFKMEALAVAIVALGLNYGAYASEVVRGSIASVPQGQWEAATALNMTWFHKVRRVIFPQAWALMIPMLANLLIQLLKGSALAYYITLQDVNFWTVELRRATADTFFSYTAGLIVYFIIAYLLTWGMNILEERAKRRLGRGTRPTLRETFGLKPASNPRLANTAGAPAGGGGA	PGPT0020795_3787	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029	NA	NA
AK001_02275	648	glnP	COG0765	Glutamine transport system permease protein GlnP	ATGAACAACGACAGCATCTGGGACTGGGAACGTGCCTGGGAGGTGCTTCCCGACCTGCTCCAGGGCCTCTCGGTCACCATCCAGATGACCGTGCTCGGCATGATCATCGCCTCGGTCCTGGGCCTCTTCATCGCGCTGGCGATGCGGACCCCCTCGCGCTGGCTGACCACTCCGCTGAAGTTCGTCGTGGACTTCATCCGCATGACGCCTCTGCTGGTGCAGCTCGTGTTCGTCTACCTGCTGCTGACCTGGGTGCCCGGCTACGTCGTCGGCTTCGTCGTGCTCGGCGTGCACTACGCGACGTACATGTCCGAGGTCTACCGCGCGGGCATCGAGGCGGTGCCGAAGGGGCAGTGGGAAGCAGCCACGGCGCTGAACATGGCCAAGGGGCGCACCTGGCGTGCCGTCATCCTGCCGCAGGCGATCCGCAACACCCTGCCCGGACTGGGCAACTACGCGATCTCCATGTTCAAGGAGACGCCGTTCCTGTTCGCCATCTCCGTCACGGAGATGTACAAGGCGGGGCAGGACTACGGTGCCAACACCTTCTCGTACATCGAGGCGCTGACGATGGTGGGTCTGCTCTTCCTCGCGGTGAGCTACCCGACCTCGCTGCTGGTGCGCAGGATGGAGATCCGCCTTGCCTGA	MNNDSIWDWERAWEVLPDLLQGLSVTIQMTVLGMIIASVLGLFIALAMRTPSRWLTTPLKFVVDFIRMTPLLVQLVFVYLLLTWVPGYVVGFVVLGVHYATYMSEVYRAGIEAVPKGQWEAATALNMAKGRTWRAVILPQAIRNTLPGLGNYAISMFKETPFLFAISVTEMYKAGQDYGANTFSYIEALTMVGLLFLAVSYPTSLLVRRMEIRLA	PGPT0020795_11264	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029	NA	NA
AK001_02276	789	artM	COG1126	Arginine transport ATP-binding protein ArtM	ATGACCAACACCTCGGGCGGCGTGCCCGCCATCGAGTTCCGGGACGTCGACAAGCGCTTCGGCGACAACGTCGTCCTGGACGGACTCAACTTCTCGGTCCCGCAGGGCCAGCGCGTCACGCTGATCGGTCCGTCGGGCTCCGGCAAGACCACCATCCTGCGGCTGCTGATGACGCTCGAGGAGCTCAGCGGCGGCCTCATCCTCATCGACGGCGACCCGTACACCCACGAGTACAAGGGCGAGAAGTGGGTCGCCGTCCCCGAGAAGCGGCGGCGCGTGGTGCGCAACCGCGTGGGGATGGTCTTCCAGCAGTTCAACCTCTTCCCGAACATGACGGTGCTCGAGAACATCATCGAGTCGCCGGTGCACGTCCTGGGCAAGTCCAAGGCCGACGCGATCGCGGATGCCGAACGGCTGCTCGAGAAGGTCGGAATGTCCGAGAAGCGGGACTTCAACACGAACCAGCTCTCCGGTGGTCAGCAGCAGCGTGTGGCGATCGCCCGCGCGCTGGCGATGGACCCGGAGATCCTGCTGCTCGACGAGGTCACCTCGGCGCTCGACCCCGAGATCGTCGCCGACGTCCTGGACGTCCTGCGCGAGATCGCGGAGACGACGGACATCACGATGCTGCTCGTGACGCACGAGATGCAGTTCGCCCGCGAGGTGTCGGACCGCGTGCTGATGTTCGACAAGGGGCAGATCGTCGAGGAGGCGGACCCCGAGACGATGTTCACGAACCCGACGCACGACCGCACCAAGGAGTTCCTCAAGGCCGTGCTCGGCGGCTGA	MTNTSGGVPAIEFRDVDKRFGDNVVLDGLNFSVPQGQRVTLIGPSGSGKTTILRLLMTLEELSGGLILIDGDPYTHEYKGEKWVAVPEKRRRVVRNRVGMVFQQFNLFPNMTVLENIIESPVHVLGKSKADAIADAERLLEKVGMSEKRDFNTNQLSGGQQQRVAIARALAMDPEILLLDEVTSALDPEIVADVLDVLREIAETTDITMLLVTHEMQFAREVSDRVLMFDKGQIVEEADPETMFTNPTHDRTKEFLKAVLGG	PGPT0020790_2770	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028	NA	NA
AK001_02277	1008			hypothetical protein	GTGACCGCACAGTCGCTTCCTAGAATCACGGGCGTGACCGCCGCGACCAGCCCTCCCCCGACCGACGAGCGGACCGCGCGCGTCCCCGCCGACGAGAAGGCTCCCGAGCCCACCAAGCTTTCGGTCACCCAGATCGTCGCGAGCGCGCTCGCCGCCGTCAGCACGACCGTCATGCTGTCGTTCTTCGGCATCGCCGGCACCATCATCGGCGCAGGCGTCGCCAGCGTCCTGACCGTCGTGGCGAACTTCCTCTACACGCGCTCCATCGAGAAGACGCACGCCCAGCTCAAGCCCGTCGTCGGCCAGATGGTGCGGCCACGGCCCGGCGCCCGCGTGGTGCCCGACGGCGGCACCCCGACGGCGCAGGTCGCCGCCGCCCCGGGCACGACGACGGTCGGCACGGACGCAGCGGTCGGCGCGGACGCGGGCACCGACGAGGACGAGACCGACGGGACCTCCGAGACCCCGGCCCCACCGCGCAACGCCTGGCTGCGGATGATCGAGCGCCACGGCCGGGTCCGTGTTCTCGGCGCCTCGGCAGCCGTGGTGTTCGTGCTCGTCATGGGAGTCGTGCTCGTCGCCGAGCTGGTCCTCGGCAAGCCACTCGCCGATGCGGTCCAGGGCGTCGAGGGGTCCGGGACGAGTCTCAGCCGCACGGTCGAGCGCGACTCCGCCGACGTCGTGGGTTCCGGGAACCGGATCGTGGAGCACGGCGGCTCCGGTGCGACGACCGGTACCGACGGCTCGTCGGCGGGGACCGAGGACGAGGAGTCCGTCGAGCCGACCGACGCGTCCAGCACCGGGACGGACGGGGGCACCGGCACGACGCCGGAGCCGAGCCCCGAGCCGACGACCCCGGTCGAACCGACGGAGCCGGCCGAGCCGACCGACCCCGCCGGGCCCACGGAGCCGACCGAGCCGACCGCCCCGGCGACGCCCGAGGAGGGCACGTCCTCCTCCGGGACGAGCAGCGGTACCGGCTCCGACGACACCGGCTCCTCGGAATAG	MTAQSLPRITGVTAATSPPPTDERTARVPADEKAPEPTKLSVTQIVASALAAVSTTVMLSFFGIAGTIIGAGVASVLTVVANFLYTRSIEKTHAQLKPVVGQMVRPRPGARVVPDGGTPTAQVAAAPGTTTVGTDAAVGADAGTDEDETDGTSETPAPPRNAWLRMIERHGRVRVLGASAAVVFVLVMGVVLVAELVLGKPLADAVQGVEGSGTSLSRTVERDSADVVGSGNRIVEHGGSGATTGTDGSSAGTEDEESVEPTDASSTGTDGGTGTTPEPSPEPTTPVEPTEPAEPTDPAGPTEPTEPTAPATPEEGTSSSGTSSGTGSDDTGSSE				NA	NA	NA	NA	NA
AK001_02278	1287		COG1167	Putative aminotransferase/MSMEI_6121	GTGAGTACCTCACCAGCCGACCATGCCGCCGTCGACCCTGCGCTCGCCGCCCGACTGCCGGAGCTGCGCGAGCAGTACGCCGCCCTGCAGGCCCGGGACCTCTCCCTGGACCTGACGCGGGGCAAGCCCTCCGCCGAACAGCTCGATCTGTCCGAGCCGCTGCTGTCGCTGCCCGGAGAGGGCCACCACACCGCGGCCAACGGCACGGACGTGCGCAACTACGGCGGGCTGGACGGCCTGCCCGAGCTGCGCGCGATCTTCGCGGAGCTGCTCGGCGTCCCCACGGACCAGCTGCTCGCCCAGGACAACGCCTCGCTGCGCCTCATGTACGACTGCGTCGTGCAGGCGATGTTGTTCGGCGCCCCGGGGGGCGCGGGCCCGTGGTCGCAGCAGGGCGAGATCACCTTCATCTGCCCCGTGCCCGGCTACGACCGCCACTTCGCGATCTGCGAGGAGCTCGGCATCCGGATGGTGACCGTGCCGATGACGCCGGACGGCCCGGACGCCGAGGCCGTCGCCGAGCTCGTCGCCCACGACCCGTCCGTCAAGGGCCTGTGGTGCGTGCCGACCTACGCCAACCCGGACGGCTCGGTGATCTCCGAGGCCGTGGCCCGCCGCCTGGTCTCCATGCCGACCGCCGCGCCGGACTTCCGCATCTTCTGGGACAACGCCTACGCGGTGCACCACCTCACCGATCACGAGACGAAGTCGGCGAACGCGATCGACCTGGCCGCCGAGGCCGGGAACCCGGACCGCGTGCTGATGTTCGCCTCGACCTCGAAGGTCACGTTCGCCGGCGCCGGGGTGTCGTTCCTGGCGTCCTCGCCGGCCAACATCTCCTGGTTCACGAAGCACCTGTCGTTCCGCGCCATCGGCCCGGACAAGGTCAACCAGCTCCGGCACGCGATGTTCTTCGGCGACGCGGCCGGGGTGCGGGCCCACATGGCCAAGCACCGCGAGATCCTGGCACCGAAGTTCCGTGCGGTCGTCGAGATCCTCGGCGACCGGCTCGCCGACACCGGCGTGGCGACCTGGACGGACCCGGACGGCGGCTACTTCGTGTCGGTCGACGTCGTCCCGGGGACCGCGTCGCGCGTCGTCCAGCTCGCCGGCGAGGCGGGCATCAAGCTGACCCCGGCCGGGGCGACGTTCCCGTACGGCAAGGACCCGCAGAACGCCAACATCCGGCTGGCGCCGTCCATGCCGCCGCTGGACGAGGTCCGCGTGGCGATGGACGGCGTGGCGACCTGCATCCTGCTCGCCGCCGCGGAGTCCGCCTCCGCCTGA	MSTSPADHAAVDPALAARLPELREQYAALQARDLSLDLTRGKPSAEQLDLSEPLLSLPGEGHHTAANGTDVRNYGGLDGLPELRAIFAELLGVPTDQLLAQDNASLRLMYDCVVQAMLFGAPGGAGPWSQQGEITFICPVPGYDRHFAICEELGIRMVTVPMTPDGPDAEAVAELVAHDPSVKGLWCVPTYANPDGSVISEAVARRLVSMPTAAPDFRIFWDNAYAVHHLTDHETKSANAIDLAAEAGNPDRVLMFASTSKVTFAGAGVSFLASSPANISWFTKHLSFRAIGPDKVNQLRHAMFFGDAAGVRAHMAKHREILAPKFRAVVEILGDRLADTGVATWTDPDGGYFVSVDVVPGTASRVVQLAGEAGIKLTPAGATFPYGKDPQNANIRLAPSMPPLDEVRVAMDGVATCILLAAAESASA				NA	NA	NA	NA	NA
AK001_02279	828			hypothetical protein	GTGACCACGCCGCACGACCCGCAGCCCGCCCAGGAGCTGGAGTCCTGGACCCGGTACCGGCCGACGCCGGTGCTGGACGCGCTGCTGACCAAGGCGGTCACGCTCCCCTCGGCCGCGATCCACCGGCACGTCGCCTCGGTGCGACGGCGCAACCCGGAGGCCGACCCCGCCGGCGTGATCCGGATCCTCGAGAAGGAGTACATCGCGCTGGTGTCGACGGCCGGCGGCGCGGTCGGCGCGGCCGCCGCGGCCCCGGCGGTCGGCACGACGGCGGCCGCGGCCCTGACCACCAGCGACATCGCGACGTTCTTCGCCTCCTCGGCCGCGTTCTCCCTGGGCGTGGCCAGCGTGCACGGCATCGCGATCGAGGACGTGGCCCGGCGCCGGGCCCTGCTGCTGGCCAGCGTGCTCGGCGAGGCCGGTGCCCGCGACGTCGAGAAGGCGGCGGCCGGGTCCCAGATGGCCTGGGGCAAGGTGCTGCTGACCTCGATGCCGCAGTCCACGCTCAAGCGCGTCAACCGGGTCCTGACGCACCGGTTCCTGCGCCGGCAGGTCGCCAAGCAGGGCTCGCTGGCCCTGGGACGCATGATCCCGTTCGGCGTCGGGGCGGTGGTCGGGTTCGCCGGCGGCCGTGCGCTCGGCCACGGGGTCGTGGCACAGTCGCGCAGCGCCTTCGGCGTCCCGCCCGGGCACTTCCCGCATCTGATCGAGCAGCCCCCGGCCCCGCTGCTCGAGGAGCCGGAGCCGGCGTCAGGTGGGCGTCGCCGCAGATTTCGGCATCGAAATCTGGGCGTTCCCGACGACGACGGCGGCAGCCCGGCCGCGTAG	MTTPHDPQPAQELESWTRYRPTPVLDALLTKAVTLPSAAIHRHVASVRRRNPEADPAGVIRILEKEYIALVSTAGGAVGAAAAAPAVGTTAAAALTTSDIATFFASSAAFSLGVASVHGIAIEDVARRRALLLASVLGEAGARDVEKAAAGSQMAWGKVLLTSMPQSTLKRVNRVLTHRFLRRQVAKQGSLALGRMIPFGVGAVVGFAGGRALGHGVVAQSRSAFGVPPGHFPHLIEQPPAPLLEEPEPASGGRRRRFRHRNLGVPDDDGGSPAA				NA	NA	NA	NA	NA
AK001_02280	486			hypothetical protein	ATGAGCGCGCACCGCGTCGAGGTCGCCCGCATCGTCCCGGTGCCGGCCAGCGTCGCGTTCGCCTGGGTCGCCGACCCGCGCACGCACCCGCGGTTCATCCCCCTGACGCACCTGCGCCCCGAACCGACGGCTCCCCTCGGCGTCGGCGAGGAGTTCACGATGGTCAGCGGTCCCGGTGTCGGACGGGGCCGGCCGGGCTTCCCTGACCGCATGGTCGTCACCGCCGAGGAGCCGCCGTCGTCGCGCGCCGGCACCGTCGGCCGGAGTGCTGTACAGAAGAAGGGTCCATACCTGTACGGCGACGCGGGCTTCGACGTCGTGCCGGTCGACGACGACCGCACCCGGATCGTCTGGTGGGAGGAGGCCCGGCTCGCCGGCCCCTGGCCGCGGCGTGCCAACGAGGTGCTGGTGGGACTCTTCCTGCGCGGGATGATGCACGTCTCCCTGTACCGGCTCGCCCGAGAGCTCTCGCGGCACGGCCGGTAG	MSAHRVEVARIVPVPASVAFAWVADPRTHPRFIPLTHLRPEPTAPLGVGEEFTMVSGPGVGRGRPGFPDRMVVTAEEPPSSRAGTVGRSAVQKKGPYLYGDAGFDVVPVDDDRTRIVWWEEARLAGPWPRRANEVLVGLFLRGMMHVSLYRLARELSRHGR				NA	NA	NA	NA	NA
AK001_02281	483			hypothetical protein	ATGACCGATCAGACTGTCGAGGACGCCCCGGCCGCCGTCACCCCGTCGCCGACCGACCCCCTGTGGGTCGAGCGCACCGGCACCCGCACCTACCGCGGGGTCAGCGCGCGCGGCGCGACCGTGGAGGTCGGCCCGGCGTCCGAGGGTGCCGTGTTCACCCCGGGCGAGCTGCTCAAGATCGCGCTGGCCGCCTGCGCCGGGATGTCGAGCGACACCAAGTTCGCCCGCGTCCTCGGCGACGACTACGAGACCACCATCCGGGTCGAGGACCCCAAGGACATGGACGACGACCGCTACCCGGTGCTGTCCGAAACCTTCGAGATCGACCTGTCCGGGCTGGACGAGAAGACCCGCGCCAAGACGCTGCTGCTCGCCCAGCGCTCCATCGACCGCGCCTGCACCGTGGGCCGCACGCTCAAGGTCGGCGCCGAGGTGCCGGACGCCGAGTTCGTCCCGCCCCGGGACCGGTCCGAGGACCGATGA	MTDQTVEDAPAAVTPSPTDPLWVERTGTRTYRGVSARGATVEVGPASEGAVFTPGELLKIALAACAGMSSDTKFARVLGDDYETTIRVEDPKDMDDDRYPVLSETFEIDLSGLDEKTRAKTLLLAQRSIDRACTVGRTLKVGAEVPDAEFVPPRDRSEDR				NA	NA	NA	NA	NA
AK001_02282	603			hypothetical protein	ATGCCGCGTCGCACGCTGCCCGGCCGGGGCCTGGCCACGGGCGGGCTGGCCGGGCTGGTCTCGGTGCTGATCGTGCTGCTGGTCCTGGCGCGGATCGGGCGCCGGCTGGACGAGTCGCGCGTGTGGCTGTGGCTCGCCGTGTTCGCCGTCGTCGCGGTGCTGGGCGTGCTGGCCTGGTTCGGCTTCGTCGCGGCCCGCGTACGGGGTCAGGTGCGGCACGTCGCCCGGCACCGCCCCGGTGCACCGCTGGTCGTGGGGCGTCCGACGACGGCACTGACGGCCGAGGCGCGGTCGTTGCGGGCGGGCACGCGCGGCCTGCCGCCCGACTGCCCGGACCGCGAGCACGTCGTCTACGCGTTCCTGCCGGACCGCGTCGAGCTGTGGGTGCGCGGGGACGACTCACCGCGCTGGTGGGTGACGCTGCCGGCGCCGGTCGCCACCGGCACCGTCCGGCCCGGGCGGCGCGAGCTGGCCACCCTGACCGTGCGCGACGCCGCGGCCCGGCTGCAGCTGGTGCCGACGTCGCACGAGGCGCGGGCGTGGGCGACCGCGTCGCACCGGGAGGCCGCCGTCGTCCGTACGCAGGAGCTGCTCGCGCGCTGA	MPRRTLPGRGLATGGLAGLVSVLIVLLVLARIGRRLDESRVWLWLAVFAVVAVLGVLAWFGFVAARVRGQVRHVARHRPGAPLVVGRPTTALTAEARSLRAGTRGLPPDCPDREHVVYAFLPDRVELWVRGDDSPRWWVTLPAPVATGTVRPGRRELATLTVRDAAARLQLVPTSHEARAWATASHREAAVVRTQELLAR				NA	NA	NA	NA	NA
AK001_02283	816	thyA	COG0207	Thymidylate synthase ThyA	ATGAGCGGAGCCCCGGAGTCGATCCCCACCCCCTACGAGGACCTCCTGCGCGACGTCCTCGCGACCGGCACCCCCAAGGGCGACCGCACCGGCACCGGGACGCGGAGCGTGTTCGGGCGTCAGATCCGCTACGACCTGTCCGCCGGGTTCCCCCTGATCACCACCAAGCGGGTGCACCTGCGCTCGATCGCCTACGAGCTGCTGTGGTTCCTGCGGGGCGAGAGCAACGTGCGCTGGCTGCAGGAGCGCGGCGTGACCATCTGGGACGAGTGGGCCGACGCCGACGGCGAGCTCGGGCCGGTCTACGGCGTGCAGTGGCGCTCCTGGCCGACGCCGGACGGGCGCCACCTCGACCAGATCGCGGCCGTCGTCGAGCAGATCCGGAGCAACCCCGACTCCCGCCGGCACGTCGTCACCGCCTGGAACCCGGCCGAGGTCGACCAGATGGCGCTGCCGCCGTGCCACGTGATGTTCCAGTTCTACGTCGCCGACGGACGGCTGAGCTGCCAGCTCTACCAGCGCTCGGCGGACCTGTTCCTCGGGGTCCCGTTCAACATCGCCTCGTACGCGCTGCTGACCCACATGGTCGCCGCGCAGACCGGTCTCGAGGTCGGCGACTTCGTGTGGACCGGCGGCGACTGCCACATCTACGACAACCACGTCGAGCAGGTCGAGCGCCAGCTCGCCCGGGACCCGTACCCGTACCCGACGCTGCGGCTCGCGCCGCGCGACTCGATCTTCGACTACACCTTCGAGGACATCGAGGTCCTCGGGTACGAGCACCACCCGGGCATCAAGGCGCCCGTCGCGGTCTGA	MSGAPESIPTPYEDLLRDVLATGTPKGDRTGTGTRSVFGRQIRYDLSAGFPLITTKRVHLRSIAYELLWFLRGESNVRWLQERGVTIWDEWADADGELGPVYGVQWRSWPTPDGRHLDQIAAVVEQIRSNPDSRRHVVTAWNPAEVDQMALPPCHVMFQFYVADGRLSCQLYQRSADLFLGVPFNIASYALLTHMVAAQTGLEVGDFVWTGGDCHIYDNHVEQVERQLARDPYPYPTLRLAPRDSIFDYTFEDIEVLGYEHHPGIKAPVAV	PGPT0008145_1968	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560	NA	NA
AK001_02284	552	folA	COG0262	Dihydrofolate reductase	ATGATCGGACTGATCTGGGCCCAGGCGCGCGACGCCGCCGGGCGACCCGTCATCGGGGCCGACGGCGGTATCCCGTGGCACGTGCCCGAGGACTTCGCGCACTTCCAGCGCACGACGGCGGTACATCCCGTCGTCATGGGCCGGCGCACCTGGGAGTCGCTGCCGGAGCGCGTGCGGCCCCTGCCGCGCCGGACCAACGTCGTCGTCACCCGCGGGCCGGCCGACGACGTCCGAGCGCTCGCCGTCCCCGAGCGGCGCGAGACTCTCCGCGTGGCCGGCTCGGTCGCGACGGCGCTCGCTGCGGCGGCCGAGGCTCCCGGCGGGGACGAGGTGTGGGTGATGGGCGGGTCGCGCGTCTACGCCGACGCGCTGCCGCGGGCCGACCGGCTCGTCGTCACCGAGATCGACCTGGAGGTCGCCGGGGACGCGTTCGCGCCCGCCGTCGACCCCGCTGAGTGGCAACCGGCCGGAGCCGACGACGGCGGCTGGGTGCCGTCGTCGGGTCCGGACGGCCTGCGCTTCCGCATCCGCACCTACCGCCGTCGGGGCTGA	MIGLIWAQARDAAGRPVIGADGGIPWHVPEDFAHFQRTTAVHPVVMGRRTWESLPERVRPLPRRTNVVVTRGPADDVRALAVPERRETLRVAGSVATALAAAAEAPGGDEVWVMGGSRVYADALPRADRLVVTEIDLEVAGDAFAPAVDPAEWQPAGADDGGWVPSSGPDGLRFRIRTYRRRG	PGPT0007945_919	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287	NA	NA
AK001_02285	1371			hypothetical protein	ATGAGCGGCGCGGACCTGCTGCGGGAGACAGCCGCCCAGGACATCGCCCTGCACACCGTCCAGGTGCTGCGGGGCGACGAGCTCGTCGTCGACGCCGCCTGCGCCCCCGTGACCGTCGACACCCCGCGACGGATGTACTCGGTGGCCAAGACGGTCACGGGCCTGGCCGTCGGCCTGCTCGCCGCCGAGGACCGCGTCGACCTCGACGACCCGGTGCTGCGGCACTTCCCGGAGATGGCGCCCGTGCACCCCTGGGTCGAGGCGACGACGCTGCGCGACGTGCTGGCGATGCGCGGACCCCACCGCGCCACCACGTACCAGCGGTCCGCGGGACCCTGGGTCGAGTCGTACTTCCGGGTGCCGCCGACCCACCGGCCCGGCACGGTGTTCACCTACGACACCAGCGGGTCGCACGTCCTGGCCGCCCTCGTCGAGCGGACCGCGGGGACGTCGCTCGTCGAGTACCTCCGGCCCCGGCTGCTCGACCCCCTCGGCGTGAGCGGTGCGTTCCGGTTCCTCACCGACCCGCAGGGCGTCGCCCAGGGCGGGTCCGGGCTCGTGTGCACCGCGGCGGACCTGCTGCGCCTGGCGCGGCTGCTGCGCGACGGCGGCACGCACGCCGGGACGGAGCTCCTGCCCCCGGAGCTCGTGCGGCAGGCGACCACCTGGCACACCGACACGACCGTCCAGCCCTGGGGCGACCGGCTGCGCGGCGGCTACGGGCTGCAGCTGTGGTTGCCCCGGGGCGGAGGCGCGCTGATGTTCGGCATGGGCGGCCAGCTCGCCCTGGCCGACCCGGCGCGCGACCTGGCGATGGTGATCACCGCCGACTCCCAGGCGTGCCCCGGCGGGGACCGCTGGCTGATCGACCGGCTGCTGGGCTCCCTCGACGACCTCGGCGGCCTCGGTGATCTCGACGCGTCCGGGGCCGGCCCCCTGTCGTGGCCCGCTCCGCGGCACGAGGACGCGCACGCCCGGCCGGTCGCCGGCCGCTGGGAGCTCGAGCCGCCGGAGGCGCCTCCCGTACGGCTCGAGCTGGACGTCGACGCCGCCGGCGGTCGGCTGCGCTGGGTGACCGCCACCGCGGACACCGCGCTGTCGCTGCGGTACGACGGCCCGGTCACGTCGGGGCCGCGGCACCCGGCACGCACGGGCCTGTCCACGGTGACCGCGGGCTGGTCGGCACCCGGGACGCTCGACGTCCGGATCGCCGTCGTCGGCGACGAGCTGGCCACCGTCGCGCTCCGGGTCGTCGTGGCCCACGACGAGACGCCGACCGTGCAGTCCCAGGGCTTCGGCGAGGCGGTCGACCCGTCCTGGACGGTGGTCGCGACCGGCCGCCCGGTACCGGATCAGCCCCGACGGCGGTAG	MSGADLLRETAAQDIALHTVQVLRGDELVVDAACAPVTVDTPRRMYSVAKTVTGLAVGLLAAEDRVDLDDPVLRHFPEMAPVHPWVEATTLRDVLAMRGPHRATTYQRSAGPWVESYFRVPPTHRPGTVFTYDTSGSHVLAALVERTAGTSLVEYLRPRLLDPLGVSGAFRFLTDPQGVAQGGSGLVCTAADLLRLARLLRDGGTHAGTELLPPELVRQATTWHTDTTVQPWGDRLRGGYGLQLWLPRGGGALMFGMGGQLALADPARDLAMVITADSQACPGGDRWLIDRLLGSLDDLGGLGDLDASGAGPLSWPAPRHEDAHARPVAGRWELEPPEAPPVRLELDVDAAGGRLRWVTATADTALSLRYDGPVTSGPRHPARTGLSTVTAGWSAPGTLDVRIAVVGDELATVALRVVVAHDETPTVQSQGFGEAVDPSWTVVATGRPVPDQPRRR				NA	NA	NA	NA	NA
AK001_02286	2406			hypothetical protein	ATGGCTCTCAACGTCGAGAACATCACGCCCGGCGGGCAGGACAGCGCTTCCCCGTCCTCGGGAGCGACGTATCGCAACCCCGTGCTGGCGGAGGACTGGCCCGACCCCGACGTGGTCCGGGTCGGCGAGGACTACTACCTGGTCGCCTCGAGCCGCCACCGCAGCCCCGGGCTGCCGGTGCTGCACTCGCGCGACCTGCTCAGCTGGCACCTGCTGACCCACGCGCTTCCTCGCGTCGCACCGGACTCGTACGGCGAGCTGCCGCGACACGGGGCCGGCGTGTGGGCACCGTCGATCCGTCACCACGACGGGCAGTTCCACATCGCCTACGCGGACCCGGACCGGGGCATCTTCGTCACCAGCGCGACCGACCCGGCCGGACCCTGGTCGCCGCCCCGCCTGCTGCTGGGCGGCCTGGGCCTCGTCGACCCGTGCCCTCTGTGGGCGGCCGACGGCCGCACCTGGCTCGTGCACGGCTGGGCGCGCAGCCGCGCCGGCGTGCAGAACCGGCTGACGATGATCGAGGTCGACGCCGCGCTGACGCGGCCGCTCGGCCCGGGGACCGTCATTGTCGACGCCGAGGAGATCGACGGCTGGGGGGACTTCGAACGCCCCGCGCTCTACGAGCGCGACGGCTGGTACTGGATCTTCGCCTCGGCCGGGGGCGCCGCGGGCGTTGTCCAGTCCGTGCTGCGCGCCCGCGACCCGCTCGGTCCCTACGAGCACCGGGTCGTGCTGGTCCCGGGCGACAGCCCCGTCCACGGTCCGCACCGGGGCGCCTGGGTCGACACCCCCGACGGTGACGACTTCTTCGTGCACGCCGGCGACGCCGACGCCTTCGGCCAGGTCCTGCACGTGCAGCCGATGACCTGGCGCGACGGCTGGCCCGTCCTGGGCGACCCCGTGCCGGGCGAGACGTGGGGGCAGCCGGTGGCGGAGCACCCCACCCCGCACGGCACCGCGGCGGGTGCCCGGTCGCTGCTGGCCGCGGACGACTTCCGCGGACCGCTCGACCCCCGCTGGCGCTGGCAGGCCGATGCCGGGTCGTGGGCCGAGGCCTTCGGGGGCCGGTTGCGGATGCTGGGTCCGGCGGCCGACGCCGGCAACCTGCGGACCCTGCCCAGCGCCCTCGGCCAGCCGCTGCCCGCGCTGGGCGTGCACCTGTCCACGACGGTGTGCCTCGACGGGCCGACGGCGTCCCGCGCCGGGCTCGGGGTGCTCGGCCAGGACTACGGCTGGATCGGGCTGGTGCGCACCGGGGCCGGGTGCGACCTCGTCGTGGCCACCCGCGGCGAGGGCGATCGCGACGAGCGTCGCGTCGTGCTGGACCGGCTGCCGGCGCAGGGCGAGGTGGCGATCGGCCTCGACGTGGACACGGCCGCCCGGGTGCGGTTCCGGGTCCGCCGCGACGCCGGGTGGGAGCAGGTCGGACCGGAGACGACCGCGACCCGCGGCCGCGGGGTCGGGGCCGAGCTGGTGGTCTTCGCCGGCGCCCCGCTCGGGGCCGTGCCCGCGACCGGTTGCTTCGGCGCGCTCGAGGCCCGCCTCGACCAGGGCGTGCCGATGCTCGCGACCGGCCGGACCCCGGGGACACCGTTGCGGCTGCGTGCGGGAGCCGAGCCCGTCGCGACGCTCGACGACGGACGCTCGATGCGCACCGTGGACGCCCCGCGGCCGTTCCTGCACCCGGTGCGCACCACGGCGGGCGTGCCGGTCACCGAGGTGGCGCCCACCGACCACCTGCACCACCACGGCGTCTCGATGGCGCCCGCCGACGTCGACGGGGTCACCTTCTGGGGCGGTCGCACCTACGTGCGCGACCAGGGGTCGACGATGCTGGCCAACCAGGGCCGCCAGACGGTGCTCGACCAGGTCGCGGACGACGACCGGTGGTCCGGCACGGTCGCCTGGACGGATCCCGCGGGGCGGGAGATGGCCCGCGAGCAGCGCCTCGTCGTCGCCGAACCGCTCCCCGGCCACGACGACGCCTGGCGGCTGCGCTGGCGCTCGACCCTGACACCCACCGAGCGGGTCAGCATCGGCAGCCCCGCCACCAACGGGCGCCCCGGGGCCTTCTACGGGGGCTGGTTCTGGCGCACCCCGTTCGGCGACCCCCGCGTGCTCGTCGCGGACGGCGAGGGCATGGACGCCGCGCACGGGGGCACCTCGCCCTGGCTCGCGCTGTGCGACGACGTGGCGAGCCTGGTGGCCGTCCAGCGCGGTCCGGTGCTGCCGTGGTTCGTGCGCACCGGCAAGTACACCGGGTTCGGCCCGGCGCTCGCGGTGGACCGCCGCCTCGAGATCACCCCGGAGCGGCCCCTGGAGGTCGCCGTCGACGTGGTCGTGCTGGACGGCCCGGCCGACCGCTCGCGCGTGCTCGCCCTGGTCGAGGCGACCGGCGACTGA	MALNVENITPGGQDSASPSSGATYRNPVLAEDWPDPDVVRVGEDYYLVASSRHRSPGLPVLHSRDLLSWHLLTHALPRVAPDSYGELPRHGAGVWAPSIRHHDGQFHIAYADPDRGIFVTSATDPAGPWSPPRLLLGGLGLVDPCPLWAADGRTWLVHGWARSRAGVQNRLTMIEVDAALTRPLGPGTVIVDAEEIDGWGDFERPALYERDGWYWIFASAGGAAGVVQSVLRARDPLGPYEHRVVLVPGDSPVHGPHRGAWVDTPDGDDFFVHAGDADAFGQVLHVQPMTWRDGWPVLGDPVPGETWGQPVAEHPTPHGTAAGARSLLAADDFRGPLDPRWRWQADAGSWAEAFGGRLRMLGPAADAGNLRTLPSALGQPLPALGVHLSTTVCLDGPTASRAGLGVLGQDYGWIGLVRTGAGCDLVVATRGEGDRDERRVVLDRLPAQGEVAIGLDVDTAARVRFRVRRDAGWEQVGPETTATRGRGVGAELVVFAGAPLGAVPATGCFGALEARLDQGVPMLATGRTPGTPLRLRAGAEPVATLDDGRSMRTVDAPRPFLHPVRTTAGVPVTEVAPTDHLHHHGVSMAPADVDGVTFWGGRTYVRDQGSTMLANQGRQTVLDQVADDDRWSGTVAWTDPAGREMAREQRLVVAEPLPGHDDAWRLRWRSTLTPTERVSIGSPATNGRPGAFYGGWFWRTPFGDPRVLVADGEGMDAAHGGTSPWLALCDDVASLVAVQRGPVLPWFVRTGKYTGFGPALAVDRRLEITPERPLEVAVDVVVLDGPADRSRVLALVEATGD				NA	NA	NA	NA	NA
AK001_02287	1509	xylB_1	COG1070	Xylulose kinase	ATGCCCCTCGTGGCCGGCGTGGACACCTCCACGCAGTCCTGCAAGATCGTCGTGCGCGACGCCGGCACCGGCGCCCTGGTGCGCAGCGGGTCCGCCAAGCACCCCGACGGCACCGCGATCCACCCCGACCACTGGTGGGACGCCTTCCTCGCTGCCGCTCGCGAGGCCGGCGGGCTCGACGACGTCGCCGCGCTCGCCGTCGGCGGCCAGCAGCACGGTCTGGTCGCCCTCGACGCCGAGGGGCGCGTGATCCGGGACGCGATCCTGTGGAACGACACCCGCTCCGCCCAGGCCGCCGAGGACCTGATCCACGAGCTCGGCGACGGCGACCGCGAGACAGGTGCCCAGCGCTGGGCCGACTCCACCGGTTCCGTCCTCGTCGCCTCCCTGACGATCACCAAGCTGCGCTGGCTGCGCGACGCCGAGCCCGACCACGCCGCCCGCGTCGCCGCCGTCGCACTCCCCCACGACTGGCTGAGCTGGCGCATCGCCGGCTACGGCCCCGCCGACGAGTCCCCGCTCGGGCCGGACCTCGACGCCCTGTTCACCGACCGCTCCGACGCGTCGGGCACCGGGTACTACGACGCCGAGGCGCCCGGGGACGACGGCGGTCGCGTCTCCGCAGTTACCGGCGCCTACCGTCGCGACCTGCTGCGGCTCGGTCTCGGCCGCGACGACGTCACGCTCCCCCGTGTCCTCGCCCCGGCGGAGCCGGGCGGCGTCGCCCACCCGTCGGTCGCCGGGGGCGCCGTGGACGGCGGCGCCCTGCTCGGCCCCGGCACGGGCGACAACGCGGGTGCCGCCCTGGGCCTGGGGATGCAGCCGGGCGACATCGCAATCTCGCTCGGCACCTCCGGCGTCGTCTCCGCCGTCGCGCCCCGGCGCACCGCGGACGGCTCCGGCGCGATCAACGGCTTCGCCGACGCCACCGGCAACGCGCTCATGCTGGCCGTGACGCTCAACGCGGCGCGCGTGCTCGACGCCGCCCGCAGCGTGCTGGGAGCGAGCTTCGACGAGCTCGCGGACCTGGCGCTCGCCGCGCCGCCCGGGTCGGACGGCCTCGTGCTGGTGCCCTACCTCGAGGGTGAGCGCACTCCCAACCGCCCCGACGCCACCGGGACGCTGCACGGCATCCGCCTGGCGACCTCCACGCGCGAGCACCTCGCCCGCGCCTACACCGAGGGCATGCTGTGCGGGCTCGCCGACGGCCTGGACGCGCTCCGCGCCCAGGAGGTGCCGGTCGAGCGGGTGCTGCTCATCGGCGGGGCCGCCCAGTCCCCCGCCGTCCAGCAGGTCGCGACGCAGGTCTTCGGCCTGCCGATCTCGGTCCCGGAACCCGGCGAGTACGTGGCCGACGGCGCGGCGCGCCAGGCCGCCTGGGTGCTGGCGGCCGCGGAGGCGCCCGGCGCCGGGGCCCCGGAGTGGTCCGCCGCCGTGTCCCGGACGCTGGACGCCGACCCGCGCCCGGTCGTCCGCGAGCAGTACGCCGCGGTCCGCGACCTGGCCTGA	MPLVAGVDTSTQSCKIVVRDAGTGALVRSGSAKHPDGTAIHPDHWWDAFLAAAREAGGLDDVAALAVGGQQHGLVALDAEGRVIRDAILWNDTRSAQAAEDLIHELGDGDRETGAQRWADSTGSVLVASLTITKLRWLRDAEPDHAARVAAVALPHDWLSWRIAGYGPADESPLGPDLDALFTDRSDASGTGYYDAEAPGDDGGRVSAVTGAYRRDLLRLGLGRDDVTLPRVLAPAEPGGVAHPSVAGGAVDGGALLGPGTGDNAGAALGLGMQPGDIAISLGTSGVVSAVAPRRTADGSGAINGFADATGNALMLAVTLNAARVLDAARSVLGASFDELADLALAAPPGSDGLVLVPYLEGERTPNRPDATGTLHGIRLATSTREHLARAYTEGMLCGLADGLDALRAQEVPVERVLLIGGAAQSPAVQQVATQVFGLPISVPEPGEYVADGAARQAAWVLAAAEAPGAGAPEWSAAVSRTLDADPRPVVREQYAAVRDLA	PGPT0017535_1630	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017535-xylB-K00854	NA	NA
AK001_02288	1164	xylA_2		Xylose isomerase	GTGAGCGACATCAAGTACTCGTTCGGCCTGTGGACCGTCGGCTGGCCGGCCAACGACCCCTTCGGCTCCGCCACTCGGCCGGACCTCGACCCGGCCGAGTCCGTGCGCAAGCTCGCCGACCTGGGCGCCTGGGGCTTCACGTACCACGACAACGACGTGTTCCCCTTCGGCGCCTCGGAGTCCGAGCGCCAGGCCGGCATCGACGCCGTCAAGAAGGCGTCCGAGGAGTCGGGTCTGGTCTGCGAGATGGTCACCACCAACACGTTCAGCCACCCGATCTTCAAGGACGGCGCGTTCACGTCGAACAACCGCGACGTGCGCCGCTTCGGCCTGAAGAAGGTGCTGCGCAGCGTCGACAACGCCGCCGAGATGGGCGCCTCCACGTTCGTCATGTGGGGCGGCCGCGAGGGCACCGAGTACGACAACTCCAAGGACCTGCACGCCGCGCACGCCCGGTACGCCGAAGGCATCGACACCGTCGCCGCCTACATCAAGTCCAAGGGCTACGACCTGCGCATCGGCCTCGAGCCGAAGCCGAACGAGCCCCGCGGCGACATCTTCCTGCCCACCATCGGCCACGCCATCGCCCTGATCGACACGCTCGACAACGGCGACATCGTGGGCCTCAACCCCGAGACCGGGCACGAGCAGATGGCCGGCCTCAACTACACCCACGGCCTCGCCCTGGCGCTGTACTGCGGCAAGCTGTTCCACATCGACCTCAACGGTCAGCACGGGCCCAAGTACGACCAGGACCTCGTGTTCGGCCACGGCGACCTGCTCAACGCGTTCTTCACCGTCGACCTGCTGGAGAACGGGTTCCCGAACGGCGGTCCGCGCTACGAAGGGCCGCGCCACTTCGACTACAAGCCCTCGCGCACCGAGTACCTCGACGGCGTGTGGGAGTCGGCCAAGGCCAACATGGAGACCTACGACATGCTCGCCGCCAAGGCGAAGGCCTACCGCGAGGACCCGGAGGTCCAGGCGGCGTTCTCCCATGCCGGGATCTTCGAGCTCGGCGAGTCGACCCTGGCCGAGGGCGAGTCGTTCGACGCGTTCATGGCCGACACCTCGGTCGAGGGGATCGACGTCGACGCCACCGCCGAGAAGGACTACGGGCTGGTCAAGCTGCACCAGCTCGCGCTGAAGCACCTCATCGGCTGA	MSDIKYSFGLWTVGWPANDPFGSATRPDLDPAESVRKLADLGAWGFTYHDNDVFPFGASESERQAGIDAVKKASEESGLVCEMVTTNTFSHPIFKDGAFTSNNRDVRRFGLKKVLRSVDNAAEMGASTFVMWGGREGTEYDNSKDLHAAHARYAEGIDTVAAYIKSKGYDLRIGLEPKPNEPRGDIFLPTIGHAIALIDTLDNGDIVGLNPETGHEQMAGLNYTHGLALALYCGKLFHIDLNGQHGPKYDQDLVFGHGDLLNAFFTVDLLENGFPNGGPRYEGPRHFDYKPSRTEYLDGVWESAKANMETYDMLAAKAKAYREDPEVQAAFSHAGIFELGESTLAEGESFDAFMADTSVEGIDVDATAEKDYGLVKLHQLALKHLIG	PGPT0017550_1762	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017550-xylA-K01805	NA	NA
AK001_02289	1242	mlc_2	COG1940	Protein mlc	ATGACGACGCAGCGCACCGCGGGTGCGTCCGCCGGCTCCGGCGAGCGGGCCTCGCGCCAGCACACCCTGCGCGAACGCAACCTGCGCCTCGTCGCGCGGGCGGTCTACGACGCCGCGGCCGCCTCCGGGGAGCGTCCCGACGCCGTCCCACCGTCCCGCGCGGACGTCGCCGCCGCCACCGGGCTGACCCGGGCGACGGTGTCCACGCTCGTCGACCGGCTCATCGCCGCACGCCTCGTCGCCGAGCTGCCCCCCGTCCCCGCCCAGCGCGCCGGCCGCCCGGCCGTGCCGCTGGTCCCCGCCCCGCGGACCGTCGTCGGCCTCGGGCTCGAGGTGAACGTCGACTACCTCGGCGTGCGCGGCCTCGATCTCGCGGGCGACGTCGTCGTCGAGCACGTCGAGGCCGGCAGCTTCCACGACTCCGACCCCGTCGCCGTGCTCGGCCGGCTCGGCTCGCTCGCGTCCGATGCCGTCGCCCGCCTCGACGCCGACGGCATGCGGGTCGCCGGCGCCCGGCTCGCCCTGCCCGGACTCGTCGACGCCCGCACCGGTGAGCTGGAGGTCGCGCCCAACCTGGGCTGGTCGTCCCTCGACCCCGTCGCGCTGCTCGGGCTGACCGACGTCGCGGTCCAGGTCGCCAACGAGGCCAAGCTCGCGGCGCTGGCCGAGCTCGCCGGCGACACCCCCGACTCCTTCCTCTACGTCTCCGGGGACGTCGGCATCGGCGCCGGCATCGTCGTCGACCGTGCCCTGTTCCTCGCCGAGCGCGGGTGGAACGGCGAGGTCGGGCACGTCGTCGTCGACCCCGCCGGGCCGCGCTGCACCTGCGGCGCGCACGGCTGCCTCGAGCAGTACGCGGGCAAGGAGGCGATCCTGCGGGCCGCCGGGCTGGCGGGCGACGCGCCACTGGAGTCGCTGACCGCGCTGCTGCGGTCCGACGACGGTGCCCCGGCCGAGCAGGCATGTGCCGCCGTCGTGCGGGCCGGGCAGGCGCTCGGCTCAGCGCTCGCGGACTTCGTGAACCTCACCGGCGTCTCGACCGTGGTGCTCGGCGGGGTGTACACGGACCTGGAGCCCTGGCTGCGGGAGCCGGTCGAGGCGGGGCTGGCCGAGCGCGTGCTGGCCGCTCCGTTCGCGCCGGTGGCGGTCCGGTCCGCGCGGGCCGGCGTGCACGCGGCGCTCAGCGGGGGAGCGCGCGAGGTGCTGCGCGAGGTGGTCGCCGACCCGGCGGCGTGGGGCTGA	MTTQRTAGASAGSGERASRQHTLRERNLRLVARAVYDAAAASGERPDAVPPSRADVAAATGLTRATVSTLVDRLIAARLVAELPPVPAQRAGRPAVPLVPAPRTVVGLGLEVNVDYLGVRGLDLAGDVVVEHVEAGSFHDSDPVAVLGRLGSLASDAVARLDADGMRVAGARLALPGLVDARTGELEVAPNLGWSSLDPVALLGLTDVAVQVANEAKLAALAELAGDTPDSFLYVSGDVGIGAGIVVDRALFLAERGWNGEVGHVVVDPAGPRCTCGAHGCLEQYAGKEAILRAAGLAGDAPLESLTALLRSDDGAPAEQACAAVVRAGQALGSALADFVNLTGVSTVVLGGVYTDLEPWLREPVEAGLAERVLAAPFAPVAVRSARAGVHAALSGGAREVLREVVADPAAWG				NA	NA	NA	NA	NA
AK001_02291	1440			hypothetical protein	ATGACCCGGCACACCACCTTCCGCTTCAGTCTCGACCCGACGGTCGAGCAGCGGAGCGTGCTCGAACGGCACGCCGGGGCGTCGCGGTTCGCCTTCAACCAGTGCCTGCGGTTCGTGTTCGACGCCCGCCGGGCCCGGGAACGCGGCGAGGACATCAGGGTCCCCCGCACCGGCTACGACCTCATCACCACGTTCAACGTGTGGAAGAAGTCCGAAGCGGCGGGTCGTGTCTTCACCGTCGCCCCGGACGGGACCGCGCAGGTCACCGACACGGGCCTCGTGTGGCGACGGGAGGTCTACCAGCAGGTCTTCGAGGAGGCCGCCGTGGACCTGGGACGCGGGCTGGCCGCGTGGTCCGCGTCCCGGCGGGGCGAGCGTGCGGGCCGGCAGGTCGGGCACCCGGGCTTCCGGAAGAAGGCCACGGCTCGGCAGTCCTTCCGCATCCGCAACCAGTTCCCGCGGCGCGGCAAGCCCGCGATCCGGGCCGGGGAGGCCACGCTGCGGTCGGTCCGCCTGCCCGGCGTCGGGACGCTGCGGGTCCGCGAGGACACGCGCCGCCTGCGGCGCATGCTCGCGAAGGACCGGGCGCGGATCCTCTTCGCCACCGTCTCGCGCGGTCAGGGTCGCTGGTGGGTGTCCCTCAACGTCGAGGCTGCGGACCTGCACCCGGCCCAGCCGCATCCGGACCGGGGAACCGACTCGGCGGAGGCGGACTCGCGGTGGGTCGGCGTCGACCTCGGTCTGACCTCCCTGGCGGTCGCGGCCCGCAGCGACGGCACCGAGGTGGACCGTATCGACGCCTGGCCGCGGCTGCTGCGCTCTACCGCACGCCGCCGTCGGGCACTGCATCGCGCCGTGACTCGCAAGCAGAAAGGGTCCCGGCGTCGTCGGCGGGCCGTCGCTCGGCTCGCCCGCTACTACGCCTGGACGGCGCGTCGCCGCCGTCACCACGCGCACCTGATCTCGAACCGGCTGGTCAAGGCCCACGACCGGCTCGTCCTCGAGCATCTCGACGTGCGGGGCATGATCGCGCGCAACCCCACCCTGGCCGAGTCGATCCACGACGTCGGCTGGTACCAGCTCACCCGGCAGATCGCCTACAAGCTGGCGTGGCGCGGTGGCGAGCTGGTCCGGGCCGACCGGTGGTTCCGGTCGTCGCAGACCTGCTCGTCCTGCCGGTCCGTGCAGGACATGGGTGGGGTGGCCGTGCGCCGTTTCGACTGCCGCACGTGCGGGCTGTCCCTGGACCGCGACGTCAACGCCGCGGCCAACCTCGCCGCCTGGGCCGAGCTGCACCACGGTGCAGACGTCTGGGCCCGGGACCTTCCAGCAGAGGGCCCGGACATCAACGCCCACCGACGGGAACGCTCTGGCCGCCGCCTCCGCGGCGGCGAAACGGCCCCGGAGGACGTGGGAACCGGGGCTCGGGCGTCGGCCTGA	MTRHTTFRFSLDPTVEQRSVLERHAGASRFAFNQCLRFVFDARRARERGEDIRVPRTGYDLITTFNVWKKSEAAGRVFTVAPDGTAQVTDTGLVWRREVYQQVFEEAAVDLGRGLAAWSASRRGERAGRQVGHPGFRKKATARQSFRIRNQFPRRGKPAIRAGEATLRSVRLPGVGTLRVREDTRRLRRMLAKDRARILFATVSRGQGRWWVSLNVEAADLHPAQPHPDRGTDSAEADSRWVGVDLGLTSLAVAARSDGTEVDRIDAWPRLLRSTARRRRALHRAVTRKQKGSRRRRRAVARLARYYAWTARRRRHHAHLISNRLVKAHDRLVLEHLDVRGMIARNPTLAESIHDVGWYQLTRQIAYKLAWRGGELVRADRWFRSSQTCSSCRSVQDMGGVAVRRFDCRTCGLSLDRDVNAAANLAAWAELHHGADVWARDLPAEGPDINAHRRERSGRRLRGGETAPEDVGTGARASA	PGPT0030680_125	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030680-putative_transposase-K07496	NA	NA
AK001_02292	615			hypothetical protein	GTGCTCTGCCGACCGCAGGCATGCTGCAAAGAGGGGGTCGGTGACGAGCGCGCTGCAAGCGAAAGGTCGTTGGAAGTCGCGCCGTACCCTGCCCGCATGCCGCTCTCCGACGTCGAACCCCGCCTCGACTCCACCGACCCGGCCGCCCAGTTCGTGGCCTATCTCGACTACTACCGAGCCGCTGTCGCGCGGAAGCTCGACGGACTCACCGATGTCCAGCTCGCCACCAGCACCCTGCCGTCCGGCTGGACGCCCGCCGAGCTGCTGATCCACCTGGTCCACATGGAGCGGCGCTGGTTCGTGTGGGGGTTTCTCGGCGAGCAGGTCGACAACCCGTGGGGCGACCACGCCGGCGGCGACCCCGAGGGCCCCTGGCGGGTGCCCGGCGGCGTCACCGTGGTCTCGCTGCTCGACGCCCTTCGCGCCGGGGGCCAGCGGACCCGCACCGTGCTGGCCGGGCACGACCTCGCCGAGAGGGCCGCCGTCGGCGGACGCTTCGCCGCGGAACCGCCCACTCTGCTGTGGATCTGCTTCCACGTGCTCCAGGAGTACGCCCGGCACGCCGGTCACCTCGACGTCGCGCGCGAGCTGGCCGACGGTGCCACCGGAGAGTAG	MLCRPQACCKEGVGDERAASERSLEVAPYPARMPLSDVEPRLDSTDPAAQFVAYLDYYRAAVARKLDGLTDVQLATSTLPSGWTPAELLIHLVHMERRWFVWGFLGEQVDNPWGDHAGGDPEGPWRVPGGVTVVSLLDALRAGGQRTRTVLAGHDLAERAAVGGRFAAEPPTLLWICFHVLQEYARHAGHLDVARELADGATGE				NA	NA	NA	NA	NA
AK001_02293	705			hypothetical protein	ATGCGATCTCGCCGGTTCCTGTCGCACGAGACCCTGTCGTCGGTCTTCGAGCTCGCCTACGTGGCGCTCGCCGGCAACGCGCTGCTCGCGGTGACCTGCCTGCCCCTGCTGGTTCTGCTGGCCACGACCGACCCGACGCGGTCGTGGCCGGCGCTGGCGGTGGCGCTGGTGCTGGCGTTCCCCGGGGTGGCGGCCACCATGGTGGTGTTCCGGGACTTCTCCGCCCGCGGTCGCATCGGCGTGGTGCGCACGTTCCTCCGGGCGCTGCGGGCGTCCGGGGTGCGGGCGCTGCTGCTCGGCCTCGTCGTCGCGGCCGTCGGCGTCGTGGTCGTCGTCGACGCTGTCGGGCTGTGGGGCGAGCCGCTCGGGGCGGTGGTGCTGCCGGTCCTGACGATGCTGGTGGTCCTGACGGCCGCGGCCGCCCCGGTGGCCCTCGTCCTGACCGTCGACCGGCCGGAGATGCGGCTGCGGGACGTCCTGCGGGTGGCCGTGTACTTGGCGGTGCGCCGGTGGTACCTCAGTGCGCTGACCTTGCTCAGCCTGGCGGCACTGCTCACGGCGTTCACGCTCCAGCCCGCGCTGGCGGTGCTCGTGCTGGCGGCGCCGCTGCTGTATGTGGCGTGGGCGAACTCGCGTCACCTGGCCCGGTCGGTGCTGACCACGGCCGTCGTCCGGCCCGAGCCGGCGGGAGCGGCCGTCGCCTGA	MRSRRFLSHETLSSVFELAYVALAGNALLAVTCLPLLVLLATTDPTRSWPALAVALVLAFPGVAATMVVFRDFSARGRIGVVRTFLRALRASGVRALLLGLVVAAVGVVVVVDAVGLWGEPLGAVVLPVLTMLVVLTAAAAPVALVLTVDRPEMRLRDVLRVAVYLAVRRWYLSALTLLSLAALLTAFTLQPALAVLVLAAPLLYVAWANSRHLARSVLTTAVVRPEPAGAAVA				NA	NA	NA	NA	NA
AK001_02294	897	araQ_4	COG0395	L-arabinose transport system permease protein AraQ	ATGTCGACCCTGACCGCGCCCCGCGCGACGAGCCCGGACCTCCAGGCACCGCCGCAGGCCGTCCGACGCACGACGTCGCGGCCCAGCCCCCGGCGCCTGCTCGCCTACGTGCTGCTCGTCGTGGCCGCCGCCGCCGTGCTGCTCCCCTTCGTGTGGATGATCATCTCGTCGCTGAAGACGAACAACCAGGTGTTCACCATCCCGATCCAGTGGATCCCGGACCCCGTCGTGTGGCAGAACTACCTCGAGATCTGGGAGAAGTCGGACATGACGACATGGATCAAGAACACCTTGATCCTGTCGGTCGGCGTGACGTTCCTGCAGGTGCTCACCGGCAGCTTCGCCGCCTACGGGTTCTCCAAGACCCGCTTCCCGGGTCGGGACGCGCTGTTCCTGCTGTACGTCGCCACGATCGCGGTGCCGTGGCAGGCCTACATGATCCCGCAGTTCGTCATGCTCTCGAACGTCGGGCTGTCCAACACGCTGTGGGCGATCCTGGCGCTGCAGACCTTCAGCGCGTTCGGCGTGTTCCTCATGAAGCAGTTCTACGAGACCGTGCCAGAAGAGCTGTCGGAGGCCGCACGCATCGACGGGTTGTCCGAGTACGGCATCTGGCGTCGGATCATGATCCCGCTGTCGATCCCGGCGATCGCCAGCCTCGTGCTCATCACCTTCACCAACACCTGGAACGACTACCTCGGGCCGCTGATCTACCTGCGCAGCCCCGACCTGTGGACGATCCAGATCGGCCTCAAGACGTTCATCGGCCAGTACAACGCCGAGTACGCGCTGATCATGACCGGGTCGGTGATCTCGGTGCTGCCGATCGCCATCGTGTTCCTCCTGGGGCAGCGCTACTTCATCGAGGGCATCGCGACCAGCGGCCTCAAGGGGTGA	MSTLTAPRATSPDLQAPPQAVRRTTSRPSPRRLLAYVLLVVAAAAVLLPFVWMIISSLKTNNQVFTIPIQWIPDPVVWQNYLEIWEKSDMTTWIKNTLILSVGVTFLQVLTGSFAAYGFSKTRFPGRDALFLLYVATIAVPWQAYMIPQFVMLSNVGLSNTLWAILALQTFSAFGVFLMKQFYETVPEELSEAARIDGLSEYGIWRRIMIPLSIPAIASLVLITFTNTWNDYLGPLIYLRSPDLWTIQIGLKTFIGQYNAEYALIMTGSVISVLPIAIVFLLGQRYFIEGIATSGLKG	PGPT0016540_2662	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_02295	930	lacF_6		Lactose transport system permease protein LacF	ATGACAACGATGACATCCCGACCTGCACCGGCGCCGGTCCGCGGTTCCCGGCCTCCCGGGGCACGGCTCAAACGACGCAACGCCCTCATCGGCTGGACGTTCATCCTGCCGAACTTCCTCGGGTTCGCCCTGCTGACCCTGGTCCCCGTCCTCGCGCTGTTCTACCTGTCGCTGACCGGCTGGAACGCCTTCGGCCAGGCCCCCTGGGTCGGCCTGGACAACTTCGCGCGGCTGCTCGGGGACGCGAGCTTCCACCGTGCCCTGCTCAACACGCTGTACTACTCGGGACTGCACATCCCGTTGACGCTCGTCGCCTCGTTGAGCCTGGCGCTGCTGCTGAACCAGAAGCTGCGCGGGGTGGCGTTCTTCCGCACCGCCGCGTTCTTCCCCTACATCACGTCGATGGTGGCCATCGCCGTGGTGTGGAACATGCTGTTCAGCCCGGAGTACGGCCCGATCAACCAGTTCCTGGGCTGGTTCGGGATCGAGGGCCCGGGCTGGACGACGTCGGCGGACTGGGCGATGCCGGCCGTCGTCGTCGTCAGCGTGTGGCGCGAGATGGGCTACTACATGGTCCTGTTCCTGGCCGGCCTGCAGACCATCCCGTCGGAGCTCTACGAGGCGGCGAGGATGGACGGAGCCAACGCCTGGCAGCGGTTCTGGAACATCACGCTGCCGTCGCTGCGGCCCACGACGTTCTTCGTCACCGTCATCCTGACGATCGGCAGCCTCAAGGTCTTCGAGCTCATCCTGCTCATGACCGACGGCGGACCGGGTCAGTCGACGCTCGTGCTGAGCCAGTACATCTACAAGAAGGGCTTCGTCGAGAACCAGTTCGGGTACGCCTCGGCGGTCTCGGTGGCCCTGTTCGCCCTCTGCCTGGCGGTGACGGCCGTGCAGTTCGTAATCAACCGCAGGAGGCAGGACTGA	MTTMTSRPAPAPVRGSRPPGARLKRRNALIGWTFILPNFLGFALLTLVPVLALFYLSLTGWNAFGQAPWVGLDNFARLLGDASFHRALLNTLYYSGLHIPLTLVASLSLALLLNQKLRGVAFFRTAAFFPYITSMVAIAVVWNMLFSPEYGPINQFLGWFGIEGPGWTTSADWAMPAVVVVSVWREMGYYMVLFLAGLQTIPSELYEAARMDGANAWQRFWNITLPSLRPTTFFVTVILTIGSLKVFELILLMTDGGPGQSTLVLSQYIYKKGFVENQFGYASAVSVALFALCLAVTAVQFVINRRRQD	PGPT0016535_3312	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_02296	1281			hypothetical protein	ATGAAGCGCCCCCTCACGACCACCGCGGGGATCCTCGCTCTCGGACTGGCCCTGTCCGCCTGCGGCGGCGACACGGAGCCCGTCGGCACGGACGGCGTCGTCGACGTCACCCTGGGCACCTGGAGCCTGACGAACGCACCGGAGTTCCAGCTCCTCGTCGACGAGTTCAACGCCTCGCACGACGACGTGCAGGTGTCGGTGCAGGAGTACGACACCGACAACTACGAGACGCAGATGACCGCCGACCTCGCGGCCGGCACCGCACCCGACATGTTCGCCCAGAAGACCGTCTCCGCCTTCATCACGTACCAGGCGGGCGGCCAGCTCCTCGACGTCACCGACGTTGCCGACGGCCTCGACGAGAACACGACCGGGCTCTCTTCCTGGGAGGTCGACGGCGGCACGTGGGCCGTCCCGTTCCGCCAGGACTCGTGGTTCCTGTTCTACAACCAGGACCTGTTCGACCAGGCCGGGCTCGACTACCCGGACGGCACGTGGACCTGGGACGACTACGCCGAGGTCGCCGGGCAGATCAGCGACGGCACCGACGCCGACGGCGCCTACCAGCACACCTGGCAGGCCGTGCTCCAGGGTTTCGCCAACAACCAGAACCCGGGCGCCGACCTGCTCTCCGGCGACTACGACTACCTCAAGCCCTCCTACGAGCGGGCCCTGGCTATGCAGGACGCGGGTGCGCAGGTCGACTACGGTACGGCGACCACCAACAGCCTCACCTACCAGGCCCAGTTCGGGAAGCAGAACGCCGCCATGATGCCGATGGGCAGCTGGTACGTCGCGATGCTCCTGTCGCAGCAGGCCAGCGGGGAGGCCGACGACTTCGCCTGGGGCCTCGCACCGGTGCCGCAGCACGACGAGAGCACCCTGGACGTGCCGATCACCTTCGGCGACCCCACGTCGGTCGGCATCAACGCCGCCATCGACGAGGGACGGGTCGACGCCGCCAAGGAGTTCCTGTCGTTCATCGCCGGCGAGGACGCCGCCGTAGCGCTGGCCGAGGTCGGCATCACGCCCGCCTACCAGTCCGACGCCGTCACCGAGGCGTACTTCGGGGCCGACGGCGCCCCCACCGACGACCTCTCGCGCACCACCTTCCAGGTGCACGACACCCGCCCGGAGAACCCCGTCGACCCGCGCATCGCGACGGTGCAGTCGATCATGGGCGACCTGCACTCGGCGGTGATGTCCGAGAGCACCTCGATCGACGACGCGATCGCCGAGGCCGAGGAGCGGGCCGCCAACGAGGCCGGCCTCGGCGGCTGA	MKRPLTTTAGILALGLALSACGGDTEPVGTDGVVDVTLGTWSLTNAPEFQLLVDEFNASHDDVQVSVQEYDTDNYETQMTADLAAGTAPDMFAQKTVSAFITYQAGGQLLDVTDVADGLDENTTGLSSWEVDGGTWAVPFRQDSWFLFYNQDLFDQAGLDYPDGTWTWDDYAEVAGQISDGTDADGAYQHTWQAVLQGFANNQNPGADLLSGDYDYLKPSYERALAMQDAGAQVDYGTATTNSLTYQAQFGKQNAAMMPMGSWYVAMLLSQQASGEADDFAWGLAPVPQHDESTLDVPITFGDPTSVGINAAIDEGRVDAAKEFLSFIAGEDAAVALAEVGITPAYQSDAVTEAYFGADGAPTDDLSRTTFQVHDTRPENPVDPRIATVQSIMGDLHSAVMSESTSIDDAIAEAEERAANEAGLGG	PGPT0016545_5285	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_02297	1953			hypothetical protein	ATGATCCCGGCCAGACCGGCCCGCGTCCGGACCCGAGCCGACCTCGAGGCGCTCGCCGACCACATGCTGCTGTCGACGCATGCCCACGGCTCGCCCGGGCACGCGAGGATCACGCTGCCGGGTGCATCCGGCGGCTACGGCACCGACGTCGACGGTCTCGAGGGGTTCGCCCGCACGCTGCTGGTCGCCGGCTTCCGGCTGGCTGGCTCGCACGGCGAGGACCCGGACGGTATCGCCGAGTGGTACGCAGCGGGCTTCGACGCGGGGACCGATCCCTCCCATGACGAGCGCTGGGTGCGACCCCGGGAGCACGGCCAGGCGAAGGTCGAGGCCGCCTCCCTCGCCCTGGTGCTGGACATGACCCGCCCTTGGCTCTGGGACAAGCTCGACGGCCGGGTGCAGGAGCGCGTCGTCGGCTACCTGAGCGACGTCGTCGGCGACCCGACGTACCCGGCCAACAACTGGCTGTGGTTCCGGATCACCGTCGAGACGTTCCTGCGCTCGGTCGGCGGCCCCTGGTCCCGCGAGGACGTCGAGTCCGACCTGGCCAAGCATGACTCGTACTACCGCGGGGACGGCTGGTACGCCGACGGTGCGACCCGTGCCTTCGACCACTACTCCGGCTGGGCCATGCAGCTCTACCCGGTGCTGTGGTCGCGCATGCGGGGCGTCGACGACCTCGCCGCACCGCGCCGGGAGACGGACCTCGCCCGCCTGGACCGCTACGTCCAGGACACGATCCATCTGGTGGGCGCCGACGGCTCGCCGCTGGTCCAAGGACGCAGCCTCGTCTACCGCTTCGCCGCCGCAGCGCCCTTCTGGGCCGGCGCGCTCGCGCGGGTGCCCTCGACGTCGCCGGGCACGCTGCGTCGGGCCGCGCTGAGCACCGTCGACCACTTCGTCACGCGAGGGGCTCCCGACGCGGACGGCCTGCTCTCCCTGGGCTGGTACGAGCCGTGGCGTCCGCTGGCGCAGTCCTACTCGGGCACCGGGTCGCCGTACTGGGCGGCCAAGGGCCTGCTCGGCCTGGCACTGGACGCCCAGGACCCGGTCTGGACGGCACCCGACGAGCCCCTGCCGGTGCAGGAGTCCGACTCGCTGATCACGATCGCCCCGGCGGGCTGGATCGTCTCCGGCACCGTCGACGACGGCCTGGTGCGCGTCGTGAACCACGGCACCGACCACGGCGTCGAGGGCGAGCCCGGCGGCGACTCTCCGCTCTACGCCCGGTTCGGGTACTCCACGGCGACGTTCCCGCAGCTCGACCGTCCCTCCTGGTCCCAGCCGCTGGAGCAGTCCGTCACCCTCGTGGACGCTACGGGCCGCGCCACCCACCGCACCGGGATGAGCGCGGGCACGCCGCGCATCGAGGGCGAGGGCAAGGACGCCGTCGGGATCGCCGCGTCCTGGGGGCCCGTGCACCGCATCGCCGAGGACGAGAGCAGGGGCCTCGGCGTCGGGCACGCCCTCGGGGTCCCCGGCACCGCTGACCGGGTCGGCGACCTGCGGGTCCTCTCGTTCGTCCGCGGTCCGTGGGAGGTCCGGCTGGTGCGGGTGGAGGATCTCGACCCGGGAGCCACCGGCGACGGAGCGCTGCTGCTGCGTCTCGGCGGCTGGCCCGTCGCGGGCGACGACCTCGCCGTCGTCGACGTGCCCGTGGTCTCCGGCGCCGTGGCCGCGCGCGCCCTCGGCACGACCTCCACCCTCAGCCCGCTGCTGACCGACTGGAGCAGCGGGGTCGCACGGCGCGACGACGCCACCCCGCTCGGTCCGTCGGCCGCACCCTGGCTCTCCCGTCCGGCCCGCCCCGGGGTCTGGACCGGAGCCCTGCTCGAGCTCTCGCCGACCGCGACCGACCGTCGCGCCGACGTCGACCTCGACGGGACGACCGTCCGGGTGACCTGGCCCGACGGTCGTCGCACCCGGCACGACCTCGGTGCCGAGATGTCCTGA	MIPARPARVRTRADLEALADHMLLSTHAHGSPGHARITLPGASGGYGTDVDGLEGFARTLLVAGFRLAGSHGEDPDGIAEWYAAGFDAGTDPSHDERWVRPREHGQAKVEAASLALVLDMTRPWLWDKLDGRVQERVVGYLSDVVGDPTYPANNWLWFRITVETFLRSVGGPWSREDVESDLAKHDSYYRGDGWYADGATRAFDHYSGWAMQLYPVLWSRMRGVDDLAAPRRETDLARLDRYVQDTIHLVGADGSPLVQGRSLVYRFAAAAPFWAGALARVPSTSPGTLRRAALSTVDHFVTRGAPDADGLLSLGWYEPWRPLAQSYSGTGSPYWAAKGLLGLALDAQDPVWTAPDEPLPVQESDSLITIAPAGWIVSGTVDDGLVRVVNHGTDHGVEGEPGGDSPLYARFGYSTATFPQLDRPSWSQPLEQSVTLVDATGRATHRTGMSAGTPRIEGEGKDAVGIAASWGPVHRIAEDESRGLGVGHALGVPGTADRVGDLRVLSFVRGPWEVRLVRVEDLDPGATGDGALLLRLGGWPVAGDDLAVVDVPVVSGAVAARALGTTSTLSPLLTDWSSGVARRDDATPLGPSAAPWLSRPARPGVWTGALLELSPTATDRRADVDLDGTTVRVTWPDGRRTRHDLGAEMS				NA	NA	NA	NA	NA
AK001_02298	1011			Formate dehydrogenase, mitochondrial	ATGACGGCGCGCGAACGCGAGGTGCTGCTCCTCATGAGCCGTTCGACGTTCGACCTGCAGTTCCACGGGCCGCAGATCGAGCGGCTGCGTTCGCTGGCACGTGTCGGTGACCCGGTGTTCCTGGACTCCCTCGACGGCGAGGCGGCACGGCGACGCCTGTCCACCTGCGACGCGATCCTCACGTCCTGGGGAACACCCGTCCTCACCGCCGCCGACGTCGCGGCGGCCCCGCGGCTGCGCGGCGTCTTCCACGCCGCCGGCAGCGTCCGGCACCTGCTGCCCGTCGAGCTGTGGCAGCGCGACGTCCTGGTCACCACCGCCGCCGAGGAGAACGCCCGGCCCGTCGCCGAGTTCACCCTGGCCGCGGTCATCATGGCCGGCAAGCGGGCACCGTTCCTCGCCGCGCGCTCGTCCCGCGGCCCCGTGGGATGGGACCTGCGCGACGACCTGACCAACCGGGGCCGCACCATCGGGGTCGTCGGATTCTCCCGGATCGGGCGCCGCGTCGTCCGGCTGATCCGGGAGGTGCTCGAACCGGCCGAGGTGCTCGTCGTCGACCCCACCGTCACCGCCGACGACGTCGCCGCCTCCGGCGCGCGCCTCGTCGAGCTCCCCGAGCTGCTCACCCGCTCGGACGTCGTCAGCCTGCACGCCCCGTCGCTGGCCAGCACCTATCGCATGATCGGCGCGACCGAGCTCGCGCTCATGCCGGACGGGGCCACCCTGATCAACACCGCGCGCGGAGCGCTCGTGGACACCACCGCCCTGGAGCGAGAATGCGTCGCCGGTCGGCTGCACGCGGTGCTCGACGTCACCGACCCGGAGCCGCTGCCCGCCGAGTCCCCTCTGCACCACCTGCCGAACGTGTCCGTCACCCCGCACGTCGCCGGATCGCTCGGGTCCGAGGCGCGCCGCATGAGCGACGCCGCCCTCGACGAGCTGGAGCAGTTCACGCTCGGCCACCCGCCGCTCTCCCCGGTCACGCGCGAGCACCTCGAGGTCATCGCATGA	MTAREREVLLLMSRSTFDLQFHGPQIERLRSLARVGDPVFLDSLDGEAARRRLSTCDAILTSWGTPVLTAADVAAAPRLRGVFHAAGSVRHLLPVELWQRDVLVTTAAEENARPVAEFTLAAVIMAGKRAPFLAARSSRGPVGWDLRDDLTNRGRTIGVVGFSRIGRRVVRLIREVLEPAEVLVVDPTVTADDVAASGARLVELPELLTRSDVVSLHAPSLASTYRMIGATELALMPDGATLINTARGALVDTTALERECVAGRLHAVLDVTDPEPLPAESPLHHLPNVSVTPHVAGSLGSEARRMSDAALDELEQFTLGHPPLSPVTREHLEVIA				NA	NA	NA	NA	NA
AK001_02299	1107	araR_4	COG1609	Arabinose metabolism transcriptional repressor	GTGAGCACCCCCGGACTGCCCGACGCCCGCCGGGAGCAGATTCTCGCGATCCTCGCCGCCGAGGGATCCGCGCGGGTGACCGCGCTGGCGGACCGGCTCGGCGTCACCCCGGTCACGGTCCGTCGTGACATCGCCCAGCTCGCCGACGACGGGCTCGTCGACCGTGTCCACGGAGGTGCGTCGCTCGCCGGGCAGTCGACGGCGACGGGCTCGGTACCGCCCTCGTCCGCGGGCGCGGCGCGGGAGGGGCCCGCCGTCGACGGCGGCTCCACCGTCGGGATCGTGGTGCCGTCGATGGAGTACTACTGGCCCGGCGTGCTGGCCGGTGCCCGGGCCGCCGCCGCCGAGCACGGGGTGCGTCTGGTGCTCGGCGGCTCCGCGTACCGTGCCGAGGAGGACGAGCGGCAGCTGCACCGCCTGGTCGAGGAGGTCGGCGTCGACGGATTGCTCGCCGCACCTGACCTCGTCGGGCCCTCCGGCGACGACCTGCGGGCCTGGCTCGCCGGGCTGGACGTGCCGGTCGTGCTGCTCGAGCGGTCGGCGCGGCCGCCGCGGCAGGAGCCGATGGAATCCGTCGCGACCGACCACGCTCTCGGTGCGAGCCTGGCCGTGGAACACCTGGCGGGTCTAGGACACCGGCGCATCGCCGTGGCCGGGCGGCCCAGCCCCACGCTGCCGGCCCTGCGGGCGGGGTGGCGCGCGAGCCTGCACGAGCTCGGCCTCCCGGACAGCCTCGACCTCGACCTCGTCAACTGCGCCGAGCCCGGGAGCCGGGAGTCGGTGGACCGGGCCCTGGACGCGCTGCTCGAGGCGGGCGTGACCGCGGTCCTCGTCCACGCCGACCCCGAGGCGATCGCCCTGCTGGAGCGGTGCGACGAGCGGGGGGTCTCGGTGCCGGGCGACCTGTCGGTGATCGCCTACGACGACGAGGTCGCCGAGATCGTGGCGCGCCCCATCACCGCGGTACGGCCGCCGCGGATCACGGTCGGGCGGATGGCGGTCGAGCTCGTCGCGCGGCGGCTGAGTGATCCCGACCGCCCGGTCCACCGGGTGGTGCTCGCCCCCAAGCTGCGCATCCGCTCCACGACGGGCCCGCCGCCCGCCTGA	MSTPGLPDARREQILAILAAEGSARVTALADRLGVTPVTVRRDIAQLADDGLVDRVHGGASLAGQSTATGSVPPSSAGAAREGPAVDGGSTVGIVVPSMEYYWPGVLAGARAAAAEHGVRLVLGGSAYRAEEDERQLHRLVEEVGVDGLLAAPDLVGPSGDDLRAWLAGLDVPVVLLERSARPPRQEPMESVATDHALGASLAVEHLAGLGHRRIAVAGRPSPTLPALRAGWRASLHELGLPDSLDLDLVNCAEPGSRESVDRALDALLEAGVTAVLVHADPEAIALLERCDERGVSVPGDLSVIAYDDEVAEIVARPITAVRPPRITVGRMAVELVARRLSDPDRPVHRVVLAPKLRIRSTTGPPPA	PGPT0017992_1405	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02300	1215	entS_2		Enterobactin exporter EntS	ATGCTCGAGGCGATCGTCCCCGCCCGGATGGGACGCTCCTTCCGCTGGCTCATCGCCGCCAGCTGGACCAGCAACATCGGCGACGGCATCGCGCTGGCCGCCGGGCCGCTGCTCGTGGCCTCCCAGACCGACTCGGCGTTCCTGGTGGCGCTCGCCGCGCTCCTGCAGCGTCTGCCGTGGGTGGTCCTCGGCCTGTGGGCCGGCGCCCTGGCCGACCGCCTCGACCGCCGTCGTCTGGTCATCGTGGCCAACGTGCTGCGGACCGTCGTCGTGGCCGTGCTGTGCGCGTTCATCGTCACGGGGAACGTGAACGTCACGGTCGTGCTGGTGGCGATGCTGCTCATGGGTGTCGCCGAGGTCTTCGCCGACACCACCGCGCAGACCCTGCTGCCGATGCTGGTCGCTTCCCGCGACCTCGGCACGGGCAACGCGCGGCTGCAGGCCGGGTTCCTCACCGGCAACCAGCTCGTGGGGCCGCCCGTCGGCGCCGCGCTGTTCGCCGCCGGTGCCGCGTGGCCGTTCCTGGTGCAGGTCCTCTGCCTGGCGCTGGCGATCATGCTGGTGAGCCGGATCGCGCTGCCTGCCGTGCCGCGCGCGACGACGGCGGGCACCCGCGGCGAGATCCGCGACGGTCTGCGGTGGCTGTGGCACCACCCACCGGTGCGGACGCTGGCGCTGGTGATCTTCACGTTCAACCTCACGTGGGCCGCGCCGTGGGGCGTGCTGGTGCTGTACTCCCTCGAGCGCGTCCAGATGGGCCCGGTCGGCTACGGCCTGCTCATCACGTCCTCGGCGGTCGGCGGCATCCTCGCCACGCTGGTCTACGGACGCCTGGAACGCCGGTTCGCGCTGGCGACGCTGATGAAGGTCTGCCTGTCCGCCGAGGTCGCCTTCCACCTGGTGCTCGCCCTGACCACGACCGGCTGGGTCGCCATGCTCGCGCTGTTCGCGTTCGGGCTGTACACGTTCGTCTGGGGCACGGTGTCGAACACGGTGCGCCAGCGGGCCGTGCCGACCGAGTACCAGGGCCGCGTCGGGTCGGTGTACCTGCTGGGGCTCTTCGGCGGGATCGTCGTCGGCAACTTCATCGGCGGACTGCTCGCCGAGTGGTGGGGCATCACGGCGCCGTTCTGGTTCGCGTTCGTCGGCGCCGGGCTGACGCTGGTCCTGGTGTGGCGCCAGCTCGCGCACATCGCGCACACCGAGGCCGCCTGA	MLEAIVPARMGRSFRWLIAASWTSNIGDGIALAAGPLLVASQTDSAFLVALAALLQRLPWVVLGLWAGALADRLDRRRLVIVANVLRTVVVAVLCAFIVTGNVNVTVVLVAMLLMGVAEVFADTTAQTLLPMLVASRDLGTGNARLQAGFLTGNQLVGPPVGAALFAAGAAWPFLVQVLCLALAIMLVSRIALPAVPRATTAGTRGEIRDGLRWLWHHPPVRTLALVIFTFNLTWAAPWGVLVLYSLERVQMGPVGYGLLITSSAVGGILATLVYGRLERRFALATLMKVCLSAEVAFHLVLALTTTGWVAMLALFAFGLYTFVWGTVSNTVRQRAVPTEYQGRVGSVYLLGLFGGIVVGNFIGGLLAEWWGITAPFWFAFVGAGLTLVLVWRQLAHIAHTEAA				NA	NA	NA	NA	NA
AK001_02301	4140			hypothetical protein	GTGGCCCAGACCGCGGCCGCGCCGCAGGACGCCACCGGACCGACGGACCGATCGGCGGACGCCGGCTCCCCCCGGGAGCCCGTCGCCGACGAGCAGGCCGAGGACCGGCCGGTCGACCACGAGCAGGACGACGGCGCGAGCTCCCGCAGCGCGCCGTCGTCCGGTCCCACCACCACGACGCCGCTCGTCGACGCCGTGCGCCGCTGGCGCGCCGGCCTCGTGGAGACCGCCGGTGGTGCCGGGGTCGCCGACGTCGGGCTGCTCGGCGAGGCCGTCGTCGACCTCTCCGCCGCCCACCCCTCCGGCGTCGCCCAGCTCTTCGCCGGCCGGGCCACACGCCTGTCCAACCTTGTGCGCGAGGGCGCCGCGTTCCCCACCGCCCGTCGTCGGGCCCGGGCCGTGATGGTCCGGTCGGCCGAGCACGCCGCCCGGTACGGCATGGCGCCCACCTATCTGGCGATCGGCGTGGCCACCTGGACCGAGGCGGTCGACGCCGACGGCGAGCCCACCGCCGAGCGCCGCGGGAAGCTGACGGCGCTCGCGGACGTCGCGGCGTCGGGCGCCAGCGCGGCGTCCGCGGCGAGCGTCTCCTCGCCCCCGGAGGCCGTGACGACCTCCATCCCCGTGGTCAGCGTCGCGGCGCGCGAGGCCGACGCCCGGCGCGCCCCGGCCCCGGACGAGGCGGGCGGAGGCAGCCGCACCGTGCACGCCCCGGTGCTGCTGCGTCCGGTCATGCTCGCCCCGCGCGGCGAGGGCGAGACCGACTACGAGCTGACCCTGGAACCGACGGTCGAGGTGAACCCGCAGCTCGTGCGCACCCTGCGGGCACGCGGGGCCCGGCTCGACGCGGCCGCGCTGGCGGACGCGACGTTCACGGCGGCGGGTTTCGACCCCGACGACGTCCTGGACCGGATCGCGACGGTCGCCGCGGAGCACCTCGACGACTTCTCCTGGGAGCACCGCGTGCTCGCGGGCACGTTCGTCCACCCGGCCCAGGCGCTCGTGGACGACCTGGACGAGCTCGCCCCGGGCCTGGGCCGCCACGAGCTGGTGGCCGCCCTGGCCGGCGCCGACCCGGCCCGCCGTCGGGTGGCGGGCGTCGAGCTGCCCGCACCGCGGCGCACGGACGCCGACCCGGTGCGCGAGCGCGGCGTCGGCGACCTCGACCCCGACCAGCGCCACGTGGTCGAGGCGGCCGCGACGGGTCACCACCTGTTCGTCGACGCCCCGGTGGGCTCCGACGTCGCCGGGACCCTGGCCGCGGTCGTCGCCGAGGCGGCCGCCGCCGGGCGGTCGGTGCTGTACGTCACCGGACACCGGCGCGCCGCCGACAGCCTCGCCCAGCGGCTCGAGGACCTCGGGCTGGGCAACCTCTCGCTGGACGTCACACCGCGGCCCACCTGGCGCGACGACATGGCCCAGCGGCTGCTCAGCGCGATGGCCAGCGAGCCCGAGGACGTCGACACCGCCGGCCCCGCCGGGGTCCGGGACGCGCTGATCGGTGCGCGGGCGCAGCTCACCGGCTACATCGACGCGCTGCACGCCCGGCGCGCGCCCTGGGGCGTGTCCGCCTACGACGCGCTGCAGGAGCTGGCCCGCCTGACCTCGGAGCGGCCCTCGCCGTCGACCCGGGTACGCCTCGACGCGCGCACGGCGCTGAGCCTGGACGAGGCCCGACGACGGCGGCTCGCGGCCGACCTGGAGCGCGCGGCGGCGCTGGGCGCCTTCACGCTGCGGCCGTCCGGGACGCCCTGGTTCGGCGCGGACCTGCTGACCATGGACGCCGCGCGCGACACCCTGACGCGGGCCCGGCGGCTGAAGGACGCGACCCTGCCGCAGCTGCGCCGGCAGATCGCCTACACCGGCGAGGTCACCGGGCTGGAGGTGCCGCGCACGATCCGCGCGTGGGGCGACCAGCTGCGCATGCTCGCCGGGATGCGCAGCACGCTGGACGTCTTCCACCCGATGGTGTTCGAGCGCACCGCCACGGACCTGGTGCAGGCCACGGCGCCAAGGGCGTGGCGACGCGAGCACGGCATCGAGATGGGCTGGTTCACCCGACGCCGGCTGCGCAAGCGCGCCCGCGACATGGTCCGCCCGGGGGTGCGCGTCACCGACCTGCACGCCGCGCTCGAGGAGGTCGCCGCGCAGCGCGAGCTGTGGGCCGAGCACTCGGCCCGCGGCGGCTGGCCGACCCTGCCCGAGGGGCTGGCGACGATCGAGGACACCTACGAGGCGGTGCGCATCGATCTCACCGAGCTCGAGCCGGTGCTCGCGCCGACCACGCAGGGCGGACGCCTGCTCGACCTCGACCTGGACGCCCTCGCCGAGCGCCTGCACCAGCTCGTCGGTGACCCGGAGGCCCTGGAGACCCTGCCGGAGCGCACGGCGCTGCTGCGGCGGGCCCGTGAGGCCGGCGTCGGCGAGCTCGTCGACGACCTGACCACCCGGCGCGTGGCGGGGGAGCGGGTCGCGGCCGAGCTGGACCTGTCCTGGTGGTCGACGGTGTTCGAGCAGATCCTCGTCGAGGACCCGGTGCTGGCCGGGCAGGACGGGGCCGGTCTCGACGCCCTGGCCCGCCGTTTCCGCGACCTGGACGTCCGGCACCTGGCCGCGCTCTCCCAGCCGGCGCGGGTCGCTGCCCGGGCGCACCTCGGCACGGCGATGCGCGAGGACCGCCAGGGTGCCGAGGACCTGTTCGCCGAGCTCATCGGCGGGCGGATGAGCTCGCTGCGGGACCTGGTCGACCGGTACGGCGACCTGGCACGGCGGCTGCGCCCGGTCGTCCTGGCCACCCCCACGCTGGTGCCGCACCTGCTGCCGGCCCACCGCACGGCGGACCTCGTCGTGGTGGACGCCGTCCAGCACGTGCCCACCGAGGTGGTCCTGCCGGCGCTCGCCCGCGGCCGGCAGGTCGTCGTGGTCGGCGACCCGCGCTCGGCCTCGGGCACCAGCGTGGCCGAGCTGTCGGAGCTGCTGCCCACCCTCACCCTGCAGCCGCGGGAGAACCGCCGCGACCCCGCGTTGACCCGGCTGCTCGCGACCCACGGCTACGACGGCCTGCTGCGCCCCGCCCCCGTGCCGCGCGCGGAGGAGCTGGTCCGCTTCGACCTCGTCGACGGCAGCGGGATGCCCGACCAGTCCACCGGCGCCGTGCAGAGCACCCGCGCCGAGGTCGACCGGGTGATCGAGGCCTCCATCGACCACGCGATGACGAGGCCCGAGGAGACGCTCGGCATCGTCACCGTCACCGCCGCGCACGCCGACCGGATCCGCGAGGCGCTGCTGGCCGAGGTCCGTGCCAACCCGGCGCTGGCGCCGTTCTTCTCCGGTCGTCGGCCCGAACCGGTGGTGGTCGCCGACATCACCGGCGTCGCCGGGCTCTCCCGGGACACCATCCTGCTGTCCGTCGGTTTCGGCCGGACGCCGCACGGCCGGGTGCTGCACCGGTTCGGCGTGCTGGGCGACGACGGCGGCGAGGCGATGCTGCTGGGCGCGCTCGGCGCGACCCGCCGTCGGCTGCACGTGGTGAGCTGCTTCGACGCCACGGCGCTCGATCCCGACCGCCTGCGGGGTGCCGGACCGCGGCTGCTGCGCGAGGTGCTGGAGATGGCCGAGCGGCGCTCGGGGGCGGCCGACCAGGTCGAGCTCGGGAACGGCGTCGACGTGGGGCGCGTCCCGGACCGGCTGGTGACCGACCTCGGCGAGCGGCTGTGGCGGCTCGGCTACCTGGTCGAGACCGACTACGGCACCGTCGACGGCGAGCACGTCCCGCTGGTCGTGGGGCACCCCGACCTGCCCGGGGAGATGCTGGTCGCGGTGCTCACCGACGACGAGGACTACGTCGCCGAGCCGTCGGTGCGCGTGCGCGACCGCCAGCTCGCGCAGCGCCTGGAGCGTCTCGGCTGGACCGTCACGCAGGTCTGGTCGGCGGCGGTGTTCCTCGACCCCGACGGCGAGGCCGACCGGGTGCGGCGACTCGTGCAGCGGGTGCGCGACGACCGTGTCGGCACCCCGGGTGGCGTGCCCGTGCCGCCGCGGGTCGTGGTCCCGGTGCTGGACGAGGACGGCGACCCGGACACCGCGGCGTCCGCGCCGGGCCCGGACGCCGCGGACCAGGACGCGTCGTCGGCGGACTGA	MAQTAAAPQDATGPTDRSADAGSPREPVADEQAEDRPVDHEQDDGASSRSAPSSGPTTTTPLVDAVRRWRAGLVETAGGAGVADVGLLGEAVVDLSAAHPSGVAQLFAGRATRLSNLVREGAAFPTARRRARAVMVRSAEHAARYGMAPTYLAIGVATWTEAVDADGEPTAERRGKLTALADVAASGASAASAASVSSPPEAVTTSIPVVSVAAREADARRAPAPDEAGGGSRTVHAPVLLRPVMLAPRGEGETDYELTLEPTVEVNPQLVRTLRARGARLDAAALADATFTAAGFDPDDVLDRIATVAAEHLDDFSWEHRVLAGTFVHPAQALVDDLDELAPGLGRHELVAALAGADPARRRVAGVELPAPRRTDADPVRERGVGDLDPDQRHVVEAAATGHHLFVDAPVGSDVAGTLAAVVAEAAAAGRSVLYVTGHRRAADSLAQRLEDLGLGNLSLDVTPRPTWRDDMAQRLLSAMASEPEDVDTAGPAGVRDALIGARAQLTGYIDALHARRAPWGVSAYDALQELARLTSERPSPSTRVRLDARTALSLDEARRRRLAADLERAAALGAFTLRPSGTPWFGADLLTMDAARDTLTRARRLKDATLPQLRRQIAYTGEVTGLEVPRTIRAWGDQLRMLAGMRSTLDVFHPMVFERTATDLVQATAPRAWRREHGIEMGWFTRRRLRKRARDMVRPGVRVTDLHAALEEVAAQRELWAEHSARGGWPTLPEGLATIEDTYEAVRIDLTELEPVLAPTTQGGRLLDLDLDALAERLHQLVGDPEALETLPERTALLRRAREAGVGELVDDLTTRRVAGERVAAELDLSWWSTVFEQILVEDPVLAGQDGAGLDALARRFRDLDVRHLAALSQPARVAARAHLGTAMREDRQGAEDLFAELIGGRMSSLRDLVDRYGDLARRLRPVVLATPTLVPHLLPAHRTADLVVVDAVQHVPTEVVLPALARGRQVVVVGDPRSASGTSVAELSELLPTLTLQPRENRRDPALTRLLATHGYDGLLRPAPVPRAEELVRFDLVDGSGMPDQSTGAVQSTRAEVDRVIEASIDHAMTRPEETLGIVTVTAAHADRIREALLAEVRANPALAPFFSGRRPEPVVVADITGVAGLSRDTILLSVGFGRTPHGRVLHRFGVLGDDGGEAMLLGALGATRRRLHVVSCFDATALDPDRLRGAGPRLLREVLEMAERRSGAADQVELGNGVDVGRVPDRLVTDLGERLWRLGYLVETDYGTVDGEHVPLVVGHPDLPGEMLVAVLTDDEDYVAEPSVRVRDRQLAQRLERLGWTVTQVWSAAVFLDPDGEADRVRRLVQRVRDDRVGTPGGVPVPPRVVVPVLDEDGDPDTAASAPGPDAADQDASSAD				NA	NA	NA	NA	NA
AK001_02302	225			hypothetical protein	GTGAGCCCGCACGCCGCCACCCCGGCCCCCGACCAGGACGACCCGGACGCCCCGGACCCGCAGCGTCCCGCGCCCGACGCCGACGCCCCGCGGCGCCGGGGTCCCCGTCGGGCCGTGCGCCGCGGGACGGAGCGCGAGACCCACTGGGGGGTCAGCGCCGACGAGTCCGGCGGGCACGGCTCCAACGACGAGCGCCTGCGCGGGGACGTCCCTCCGCACTGGTGA	MSPHAATPAPDQDDPDAPDPQRPAPDADAPRRRGPRRAVRRGTERETHWGVSADESGGHGSNDERLRGDVPPHW				NA	NA	NA	NA	NA
AK001_02303	393	mscL	COG1970	Large-conductance mechanosensitive channel	ATGCTCACGGGCTTCAAGCAGTTCATCATGCGAGGCAACGTCATCGACCTCGCCGTCGGCATCGTCATCGGCGGCGCGTTCGCCACGGTGATCGCCGGGCTGAACGACGGTCTCCTCCTGCCGCTCATCGCCGCGGTCTTCGGCGAGCCGGACCTGACCCAGGTCGGCACCTTCATGATCAACGGCGCGCAGTTCAGCATCGGCCTCTTCCTCGACGCCGTGCTGAACTTCCTCGTGGTGGCAGCCGGCCTGTACTTCTTCGTCGTGATGCCGATGAACAAGCTCGCCGAGCGCCGGGCCCGCGGGCAGGAGCCGGAGCCCGAGCCGGTGCCGGACCCGGACATCGTGCTGCTCACCGAGATCCGCGACCTGCTCTCCGCACGCCGGCACTGA	MLTGFKQFIMRGNVIDLAVGIVIGGAFATVIAGLNDGLLLPLIAAVFGEPDLTQVGTFMINGAQFSIGLFLDAVLNFLVVAAGLYFFVVMPMNKLAERRARGQEPEPEPVPDPDIVLLTEIRDLLSARRH	PGPT0013771_55	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282	NA	NA
AK001_02304	654			hypothetical protein	ATGGACCTCTCCGTGCACGGCCGGATCCGCGACCGGCTCCGCCTCGCCGCCTGGCGGTCCCGGTTCGTCGTGGCCGCCGTCTGCTGCGGCCTCGCCGCCTGGACCACGGTCGACGCCGTCCGCCCCGCACCGCCGGTGACCCGCGACGTCCTGGTCACCGCACGCGCCCTGGACGGCGGCCGGCCCCTCGGAGCCGACGACGTCACCACGGTGCGCGTCGACGCCGAGTTGGCACCGGGTGCCCTGCTGGACGGTGCCGCCGACGTCGCCGGCAGCACCGCGGCCGTGGACCTGCCGGCCGGCACGCCACTGTCCCCCGCCCTGCTCCGCCGCGGCGGCCCGGCCGCCGCCGCCCCGCCGGGGAGCGTCGTGGTGGCCGTGCGCCTGACCGAGTCCGACTGGCTGCGCCCCGGCGACCGGGTCGACCTCGTCGCCACCGACGACGACGGCACGAGGCTGGCACGTCGCGCCGAGGTCCTGCCGCCGCCCGACGAGGGGGCGGGAGCCGGCGACGAGGCCGACGCCGGGCTGCTCGGCTCGGCCACGGGAGGTGCCGCGGACCCGGTCACGCTGCTCGCCGTCTCGCCCCAGGAGGCCGCGGCCGTGTCGGCCGCATCCGGATGGGGAGCGGTCGCCCCGGTCCTGGTGCCGTGA	MDLSVHGRIRDRLRLAAWRSRFVVAAVCCGLAAWTTVDAVRPAPPVTRDVLVTARALDGGRPLGADDVTTVRVDAELAPGALLDGAADVAGSTAAVDLPAGTPLSPALLRRGGPAAAAPPGSVVVAVRLTESDWLRPGDRVDLVATDDDGTRLARRAEVLPPPDEGAGAGDEADAGLLGSATGGAADPVTLLAVSPQEAAAVSAASGWGAVAPVLVP	PGPT0016005_1656	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279	NA	NA
AK001_02305	303			hypothetical protein	GTGCCCACGTACGCCTACCGGTGCGCCGACTGCGGCCACGCCTTCGACATCCGCCAGGCGTTCACCGACGACGCGCTCACCGTCTGCCCCGAGTGCGCCGGACGGCTGCGCAAGCAGTACGGCTCCGTCGGTGTGTCGTTCAAGGGGTCCGGCTTCTACCGGAACGACTCGCGGGCGGGTTCCGGCTCGTCCGGCTCCGGCTCGTCGTCCAGCGGTTCGTCGTCGAGCGGTTCGTCCGGCTCCGGCTCGTCGTCGGGCGGCTCGAGCTCGTCGACGGGATCTTCCCAGGCCGCCTCGGCCTGA	MPTYAYRCADCGHAFDIRQAFTDDALTVCPECAGRLRKQYGSVGVSFKGSGFYRNDSRAGSGSSGSGSSSSGSSSSGSSGSGSSSGGSSSSTGSSQAASA				NA	NA	NA	NA	NA
AK001_02306	2658	quiP	COG2366	Acyl-homoserine lactone acylase QuiP	GTGTCAGCGAGCACCGACCCCGTCACGCACGAGCCCGACCAGCCCCGCGAGGGCGACGAACCCCCCGAGGAGGACGCCGCTCCGCCGGCGCGGTCCCGCCTGCGCCGGACCGCCGTCGGGATCGCCGTGCTCGTCGTGCTGGCGCTCGTCGCGACGATCACGTTCACCGTGGTCACCGCGCGCCGGCCGCTGCCCGACCACTCCTCGACCGAGCAGGTGCCCGGCCTGAGCGGCGAGGTCACGGTCCAGCGCGACGCCCAGGGCGTGCCCCACGTCTACGCCGGCACGGCCGAGGACCTCTTCGCCGCCCAGGGGTACCTGCACGCCCAGGACCGGTTCTTCGAGATGGACTACCGCCGCCACGTCACCGCCGGTCGGCTCGCCGAGCTCGTCGGGGACGTCCCGGCCGCGATCGACGCCGACAAGGTGATCCGCACCTTCGGCTGGCGCGACGTCGCCGAGGAGGAGTGGAACCTCGTCTCCCCGGAGTCGCGCTCCTACCTGCAGGCCTACGCCCAGGGCGTCAACGCCTACCTGGCCGACCGCGCCCCGGAGGACCTCGCCGTCGAGTACACCGTGCTCGGGGCGACCGTCGACGTCGCCGATCCCGACCCGTGGGACCCGGTCGACTCGCTGGCCTGGCTCAAGGCGATGGCCTGGGACCTGCGCGGCAACTACGACACCGAGCTCGACCGTGCCAAGGCCTACAGCACGCTGGAGGACGTCGACCTGGTCGACGAGATCTTCCCCACCTTCGCCGACGGCGGGAACACGCCGATCCTCACCGAGGAGGACCTCGAGCCGGTCGACGCCCGCACCGTCGCCCGCACGTCGACCGAGCTGCCGTGGGGCACCTCGGCGCTGGACGCGGCCATCGAGTCGGCCACCACGGCCCTGGAGTCGGTGCCGGTCCTCGTCGGGCGCGGCGACGGCGCCGGGTCGAACTCCTGGGCCGTCTCCGGCGACCTGACGGCCACCGGGGCGCCGATCCTCGCCAACGACCCGCACCTCTCCCTGGCGGCCCCCGGGCTGTGGTCCCAGGTGTCCCTGCACTGCGACCAGGTCGACGACTCCTGCCCGTTCGACGTCAGCGGGTTCTCGTTCGCGGGCTTCCCTGGCGTAATCATCGGTCACAACGCCGACCTGGCGTGGGGGCTGACGAACATGAACGCCGACGTCACCGACTTCTTCGTCGAGCGTGTCCGCAACGACACGTGGCTGCGCGACGCCGACGCCGAGGAGTGGGTCGACATGGAGACCCGCACCGAGACGATCCGCGTCAACGGCGGCACCCCGGTCGAGCTGCGGGTGCGGTCCACCGACCACGGGCCGGTGGTCTCCGACGTGCTCGACGTCGGTGCCGTCGTCGGGGCCCCCACGGAGACCGGCACCGTGTTCGGCGAGTACGCGGTCTCGCTGGCCTGGACCGCACTCGAGCCGGGCCGCACCGCCGACGCCGTGTTCGCGATGGCGTCCGCGAGCGACGCCGACGAGATCGCCGCGGCGGCCGAGCTGTTCGACGTCCCGGCGCAGAACATCGTGTTCGCCACGACGGACGGGCACATCGGCTACCAGGCACCGGGCAAGGTCCCCCAGCGCCGGGACGTCGAGGGCCCCGTCCCCTCGGACGGCACCTGGCCGCGACCCGGCTGGGACCCGCGGTTCGACTGGCAGGGGTACGTCGACCCCGCCGAGATGCCGCGCGCCCTCGACCCCGAGGAGGGGTTCGTCGTCGCGGCGAACCAGGCCGTGCTGCCCGACGGCGTCGGACCCGAGCTGTCCCAGGACTGGGACCAGGGGTTCCGTTCCGAACGGATCCGCACGCTGCTGACCGAGCAGGTCAGCGCGGGCCGGCCGTTCACCGTCGCCGACATGAACGACCTGCAGGTCGACGACTGGTCGCCGTTCGCGGCCGTCCTGGTCCCGGTGCTGCTGGAGATGGAGATCGAGGACTCCTACGACGCCGCCGGCCAGGAGCTCCTGGCCGGGTGGGACTACCGGACCGGCGCGGACTCCGCAGCCGCCGCCTACTTCCACGCGGTGTGGCGCAACCTGCTCTCGGCGACCTTCTGGGACGACCTGCCCGCCGACGCCCTGCCCTCGGGCGGCTCGCGCTGGCTGGTGGTCGTCCGCGACATGCTGGAGCGTCCCGACGACCCGTTCTGGGACGACCGGTCCACGCTGAACGTCGTCGAGACGCGGGACGAGATCCTCACGCGTGCCCTGGTCACGGCCCGCCACGACCTGACGGTCGAGCTGTCCAAGGACCCGGGCGACTGGAGCTGGGGCGCCTTGCACGAGCTGTCGCTGCAGCACCCCGTGCTGGGTGGTCCCGACGTGCCGGGCCTCGTGCGCGACTACGTCAACCCGCACCCCGTGCCGATGCCCGGCGGCAGCTCGATCGTCAACGCCACCGGCTGGGACGCCTCCACGGGCAGCTTCGCGGTGACGACGGGACCGTCGATGCGGATGGTCGTCGACCTCGGCGACCTGGACGCCTCGACCTGGGTGACGGTCACCGGCACGTCCGGGCACCCGGCCTCGCCCCACTACGACGACCAGCTGTCCTCCTGGGCGGCGGGGGACACGTTCACGTGGCCGTTCACGCGCGACGCCGTCGAGGAGGACGCGGAGGACACCGCCACGCTCGTGCCGTGA	MSASTDPVTHEPDQPREGDEPPEEDAAPPARSRLRRTAVGIAVLVVLALVATITFTVVTARRPLPDHSSTEQVPGLSGEVTVQRDAQGVPHVYAGTAEDLFAAQGYLHAQDRFFEMDYRRHVTAGRLAELVGDVPAAIDADKVIRTFGWRDVAEEEWNLVSPESRSYLQAYAQGVNAYLADRAPEDLAVEYTVLGATVDVADPDPWDPVDSLAWLKAMAWDLRGNYDTELDRAKAYSTLEDVDLVDEIFPTFADGGNTPILTEEDLEPVDARTVARTSTELPWGTSALDAAIESATTALESVPVLVGRGDGAGSNSWAVSGDLTATGAPILANDPHLSLAAPGLWSQVSLHCDQVDDSCPFDVSGFSFAGFPGVIIGHNADLAWGLTNMNADVTDFFVERVRNDTWLRDADAEEWVDMETRTETIRVNGGTPVELRVRSTDHGPVVSDVLDVGAVVGAPTETGTVFGEYAVSLAWTALEPGRTADAVFAMASASDADEIAAAAELFDVPAQNIVFATTDGHIGYQAPGKVPQRRDVEGPVPSDGTWPRPGWDPRFDWQGYVDPAEMPRALDPEEGFVVAANQAVLPDGVGPELSQDWDQGFRSERIRTLLTEQVSAGRPFTVADMNDLQVDDWSPFAAVLVPVLLEMEIEDSYDAAGQELLAGWDYRTGADSAAAAYFHAVWRNLLSATFWDDLPADALPSGGSRWLVVVRDMLERPDDPFWDDRSTLNVVETRDEILTRALVTARHDLTVELSKDPGDWSWGALHELSLQHPVLGGPDVPGLVRDYVNPHPVPMPGGSSIVNATGWDASTGSFAVTTGPSMRMVVDLGDLDASTWVTVTGTSGHPASPHYDDQLSSWAAGDTFTWPFTRDAVEEDAEDTATLVP	PGPT0028075_197	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434	NA	NA
AK001_02307	657		COG0212	5-formyltetrahydrofolate cyclo-ligase	ATGCACGGCGACCGCAGGCCCTCGACCGCCCCCCAGCCGTACCCGGTCGTCGCCGGGATGGAGACGGGGGACGCCAAGGACGAGCTGCGCCGGGCGATCCGCCACCAGCGCCAGGACCGGTCCGCGCGCCTTCGCGAGCGGGCCGCCGCGGCCTTCGCCGAGGTGCTGGCCACGGTGCCGTCCGTGTCCGCCGCGGCCACCGTGGCGACCTACGCCGCCCGGCCGACCGAACCCGGCACGAGCGCCCTGCTCGACCAGCTCGCCGCACGGGGCGCCCGCGTCCTGCTGCCGGTGCTCGGCGCCGGGCTGGCCCGGGACTGGGCCGAGTACACCGGCGCGGACGACCTGCTCGAGCGCGCGCCGGGCCGGCCGCCGGAACCGGGCGGCCGCACGTTGGGCGGGCACGCCATCGCCGAGGCCGACGTCGTCATCGCCCCCGCGCTCGCCGTCGACAGCCTCGGCGTCCGCCTCGGGCAGGGCGGCGGCTGGTACGACCGCTCGCTGAAGCAGGCCCGCCCCGGCGTGCAGGTGGTCGCCATGGTGTTCCCGGAGGAGTTCTACGACGCCTCCGAGCGGCCGCTGCCCGTGGAGGACCACGACGTGCCGGTGCACGCGGTGGCGACCCCGGACGGCTGGCAGCCGCTGCCGGTGTCCTGA	MHGDRRPSTAPQPYPVVAGMETGDAKDELRRAIRHQRQDRSARLRERAAAAFAEVLATVPSVSAAATVATYAARPTEPGTSALLDQLAARGARVLLPVLGAGLARDWAEYTGADDLLERAPGRPPEPGGRTLGGHAIAEADVVIAPALAVDSLGVRLGQGGGWYDRSLKQARPGVQVVAMVFPEEFYDASERPLPVEDHDVPVHAVATPDGWQPLPVS	PGPT0008170_959	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934	NA	NA
AK001_02308	660			hypothetical protein	GTGCCGGGCGTGGACGGGGGTCGGATGAGCGACACGAAGAGGTGGGCGGTGACCAAGCCGTGGCCGGTGACGCTGCGTGAGGACACGTCGTCGGGCGCTGTCGTGCTGCGCCCGTTGCGTCGGCGGGACGGGACCGCCTGGATGGAGCTGCGCCGCTCGAACGCGGACTGGCTGGACCGCTGGGAGGCGACGACGCCGGGCGAACGGCCGAGCGCGTCCTCGTTCGGCGAGTACGTCCGTGCGCTGAGCGCGCAGGCGCGGGCGGGCACGTCGTTGCCGTTCGTCGTCGACCTGGACGACGCCCTGGCCGGCCAGCTCACGGTCTCCTCGATCCAGTACGGCTCGCTGTGCTCGGGGAGCATCGGCTACTGGATCGCGCGCGAGCACGCCGGGCGGGGCGTCATCCCCACGGCGGTGGCGATGGCGACCGACTACTGCTTCCAGGTGGTCGGGCTGCACCGCGTGGAGATCAACATCCGGCCCGAGAACACCGCGAGCCTGCGGGTGGTGGAGAAGCTCGGGTTCCGGGACGAAGGGGTCCGCGAGCGGTACCTGCACATCCAGGGCGACTGGCGTGACCACCGGACGTTCGCGCTGACGACCGAGGACGTCCCGGGCGGGTTGCTCGCGCGCTGGCAGCGGGCCCGCGACGACGCCTGA	MPGVDGGRMSDTKRWAVTKPWPVTLREDTSSGAVVLRPLRRRDGTAWMELRRSNADWLDRWEATTPGERPSASSFGEYVRALSAQARAGTSLPFVVDLDDALAGQLTVSSIQYGSLCSGSIGYWIAREHAGRGVIPTAVAMATDYCFQVVGLHRVEINIRPENTASLRVVEKLGFRDEGVRERYLHIQGDWRDHRTFALTTEDVPGGLLARWQRARDDA				NA	NA	NA	NA	NA
AK001_02309	1182			hypothetical protein	ATGGACACGTCGCCGGCAGGACTCGCAGCCCTCGCGCTGTTCGTGCTGTGGCTCGGCTACTGGGTCCCGCTGCAGCTGCGGCGACGCACGGAGCTCGCGGCGGCCCGGGTGGACGACCGGTTCTCCGGCGGCCTGCGCATGCTGACGGTGGCGGACGGAGCAGGGAAGGGGCGACCGATGCCCACGAACCGTGCGGCGGGTCACTCGCCGCCGACCGGCAGCACGCCGCGGGTGACCGCGTCGGCCGCCGGGCCGGCGTCGGGCATGACGCCGCAGGTGCGCGCCTCGCGGCTGGCGGTGCTCGAGCGCCGCGCCGCCCGTGCACGTCGCCGGCTCACGCTGACGGTCCTGCTGACCCTGCTGACCGCCGCCGCGTGGACGGCCGTCGGCCTGGGGTACGTGCCGTGGCCCGTGGCGGCCGTTCCGTCCGGGCTGCTGCTCGTGGTGCTGGTGCTCGGCCGGCTGGCCGTGCTGACGGCGCGCCGGTCCGACGCCCGGTGGCGGTCGGAGCGTCGCGCCGAGCAGCAGCGGGCCACGCAGCGTCGCACGCTCGCGCACGGTGGTCCGTACGCCCCGCGTAACCGGGCGCGCGTCACCGGCTACGCCGTGCACCCCTCCGACACGCACACGCAGATGATCCCGCGCGTGCAGCAGGGGACCGCCGCGGCGACGGGGGAGCGGCGTGAGCCGACGACCGCGCCGTCCGACCGGGCCACCGGGCGTGCCGAGGACCGGGCCGACGACGGCGAGCCCGAACGCCGGGCGCCGGCACCGCCGTCCGAGCACTCCTCCGCGCCGTCGGACGATCACGACCGGTCCGGTCAGCATGGCGACGGCGGGTCGCCCGAGCAGGCGGCCGAGTTCGCGCCGGGCTACTCCCGGCACGTCGGCGGGGAGCCGTGGGACCCGGTCCCGGTGCCCCTGCCGACCTACGTGACCAAGCCGGAAGCCCCGCGCGCCGGGGCCGACGACGCCCCGACGACGCCCCGCACGGGCGGTACGTCGGCACCCCGGGAGGGCGGTCGGTGGACGGTCGAGGACCGGGCCGAGCCGCAGGACGCCGTGCACGCGGCGCCGAGCGGGGCGCCGGAGCCCGCGGTCGGGGACGAGCCGCGGCCCCGGTCCGAGACGCTGGGGCTCCCGCTGGAGCAGATCCTGGCCCGGCGTCGCGCGGCGGGCTGA	MDTSPAGLAALALFVLWLGYWVPLQLRRRTELAAARVDDRFSGGLRMLTVADGAGKGRPMPTNRAAGHSPPTGSTPRVTASAAGPASGMTPQVRASRLAVLERRAARARRRLTLTVLLTLLTAAAWTAVGLGYVPWPVAAVPSGLLLVVLVLGRLAVLTARRSDARWRSERRAEQQRATQRRTLAHGGPYAPRNRARVTGYAVHPSDTHTQMIPRVQQGTAAATGERREPTTAPSDRATGRAEDRADDGEPERRAPAPPSEHSSAPSDDHDRSGQHGDGGSPEQAAEFAPGYSRHVGGEPWDPVPVPLPTYVTKPEAPRAGADDAPTTPRTGGTSAPREGGRWTVEDRAEPQDAVHAAPSGAPEPAVGDEPRPRSETLGLPLEQILARRRAAG				NA	NA	NA	NA	NA
AK001_02311	264			hypothetical protein	ATGGACACGACACCCGAACCGACGCCGGCCGAGGTGCGCCGGCCCACACCATCCGCCGGCCGACTCACGCTGGGCCTCGCGCTCGTCGTGGCCGGTGTGGCGGTCCTCGTCCTGGGGCAGGAGACCCCCTTCGCCGCGCTCGGCGGCGTCGCGGCCCTCGTCGGCGTCGCGCTGCTGCTGACCGGCATCCACGCCGCCCTGCGGTCCCTCGACGCGCTCGCCGCGGCGAAGTACAACGAGGCGATCAGCTCGCCCCGGCTGTAG	MDTTPEPTPAEVRRPTPSAGRLTLGLALVVAGVAVLVLGQETPFAALGGVAALVGVALLLTGIHAALRSLDALAAAKYNEAISSPRL				NA	NA	NA	NA	NA
AK001_02312	291			hypothetical protein	ATGACGGAGCGCATCGACACCCGAGGCCGCGAGATCTTCTCGTGGGACCTGACCGACGCCCCCGCGGGCAACATCGAGATCACGTTCGACGGCGACACCTGGCAGACGATGACCCGCGTCGGCGACACCGTGAGCATCCTCGTCGCCGGCCCCGACGCCGACCCGACCGGCGCCGTCGTGCTGACCAAGGCCCGCAACCACGCGGTTATCCGCGCGACCGCCGCGCCGGAGCTCCTGGTGCGCTCCGCCGACGTGATCGACGTGGTCGCCCTGCCGCCCGAGTCCACCTGA	MTERIDTRGREIFSWDLTDAPAGNIEITFDGDTWQTMTRVGDTVSILVAGPDADPTGAVVLTKARNHAVIRATAAPELLVRSADVIDVVALPPEST				NA	NA	NA	NA	NA
AK001_02313	2655			hypothetical protein	ATGGGGTACATCAAGTACGCCCTCGACGAGGGGTCGGGCTCGCCGACCTCCGATGTCGACGGGCTGACCGTCGGCAGCGAGCTCACGCTCGGCGGCGCCACCTGGGCGTCGCCGGGCCACGACGGCACCGGATCGATGCTGCAGACGGCGAACACCAACGGGGGCTCGTTCTCCGCCGACAGCGGCTATGCCGCCTGGACCCTCATGGGCTGGTTTCGTCTCGACGCGAACCACGGCAGTGGCACGTGGATCTCGTTCTTCCAGGGGACATGGCTCGGCTGGGTGGAGGCACAGTCGAACGGCGACGGCACGTTCACGATGGACTGGTACGCCAACCAGGGCGGCGAGCTGGCGGGCGGCACGCTCGACGTCGACACCTGGTACCACGTCGCGGTGCAGTCGGACGGCGCACTGCGCAACCTGCTCATCGACGGGACGATCGTCGCCACGACCGGCTCGGGTCTCTCGTCCGGCAACGGGTTGATCAACGTCGCGGCCGACAGCGCCAACTATATGTCGCTCGACGCGCTCGGTATCTACGACGCGCTACTCACGGAGGCGGAGGTCTCCGATGAGGCCGGGCTGGGCGGCACCACCATCACGGGCACGCTCGACGCCACGCTGCCGAACCTCACGGCCGCCCTGTCGGGCACGGTGTCCGGGGCCCCGGTCGCCGGCGCCCTGGGCGCCACGCTGCCCACACTGACGGGCGCCCTGTCTGGGTCCGTCACGGTCACGGGCGTGCTCGACGCGAGCCTGCCGCAGCTCGAGGCGTCGATCCCCGACGACGCCGAACCGCCGTTCCCCGCGACGACGTCGGGCCGCAACCTGCTCGACCAGAACGGCAACCCGTGGATGATGCGTGGCGACGCCCCCTGGTCGGCGGCGTTCGACCTGTCGACGTCCGAGTGGGACTCGTGGTGCGCAAACCGGGCCGGTCATGGCTTCAATGCGGCCCTATTCTCCATGGTGGGCACGACCGACAACGGCGGCCCGTCGGACGACGGGGCCACCTACGACGGCGTCCTGCCGTTCGTGGGCGGCGACGTGACCGTGCCCAACGAGACCTACTGGGCGCGCATGGACACGTTCGTCGACACGGCTGCGGCCTACGGCATCACCCTGTTCGCCTACCCGATCGACGGCTGGAACGACTACACCGTCTTCGACGGCGTCAGCGATGCCGACTGCGAGACCTACGGTGAGTTCATCGGCACCCGCTACGGCGACCGACTGAATCTCGTCTGGATGGTCGGCGGTGACTACTTCCAGCACGCCGGCGGCAACGAGGCGTTTTGGTCGGTCATGACGGGCATCAAGAACACCGAGTCCACGACTCACCTGTTCTCGATCCAGCTCGGCTACCACCGCTCCTGGTCGACGCAGAACAGCTTCTGGGCCGACAAGGTCGACTTCAACTTCGTCTACTCCTACTACCCCCAGTACGAGCCGATGAGGGCCGCGCTCGCACAGTCGCCGCTCCCTGCCATCTGGATGGAGGGCGGCTACGAGGGCGAGACCTTCGACGGGACGACGAACACGGCCGAGTCGTGCCGCCGGCAGGTCGGCTGGGCCCTGACCTCCGGCTCGCAGGGCGACGGCTTCGGCTCCGACGACTGGGAGTTCCTGTCGGGCTGGGAGGGCCGCCTGGACACCACGGCGGTCACACAGATCTCGGCGATGCGCGACCACGTGCGCGCGCTCGACGGCTGGCACCTGCTCGAGCCCGACGAGGACTTCATCACATCCGGCGAGGGCGCCGAGTGGACCTCCTCGTCGTCGGGCAACGATCACCCGCTGGACTGGACGACCGCGACGGCGGCCGTCACCCCCGACGGGTCGCTGGCGCTCGTCTACGTGCCGACGCAGCGGGCGATCCAGGTCGACACGTCCCCGCTCGGCTCGAGCCCCACGGGCACCTGGTACGACGCGCAGACCGGGGCGACCTCCTCGGCCGGCGCGCTTGCCGGGTCCGTGACCGCGCCGACGTCGGGCGACTCGTTCCTCGTGATCGAGGCGACACCCGCGGTCATCACCGGCGGCATCGACGCGACGCTGCCCGGCCTCACCGGTTCGGCGTCGGGCACGGTCACGGTCGGCGGCGAGCTCGACGCCACGCTGCCCGGCCTCGAGGGGCAGTCGGCCGGCGACGTCGTCATCGTCGGCGCGCTCGCAGGTTCGGCCCCGACGCTGACCGGCCAGGTGGCCGGCGATGTCGTCGTCACCGGCAGCCTCGACGCCGCGCTGCCCCAGCTGACCGCGAGCCTGTCCGCCGACGGCTTCGTCGGCGGCGAGCTCGACGCCGCCCTGCCGTCGGTCACCGCCGACCTGGCGGGCACGGTCACCATCGCAGGGGCGCTCGCGGCGGCGATGCCGGGACTCACCGCCGACCTCGCCGGCACCGTCGTTGACCCGGAGAACGTCACTGGCGACGTCGACGCCGCGCTCCCGACCCTGGCCGGGTCGGTGGCCGGCACCGTCACGATCGCCGGGACGCTGACCGCGACCCTGCCCATGGTGACGGCGAGCCTCGCCGACGTGCCGCTCGTGCGCGAGCTCACGATCGGCCGGGGCCCCTACGGCAGCACGTTCGCCGTCTCGCAGCCGCGCGGCCACGCCCTGGCCGTCTCGACACCCCGGAGGCAGGACCCATGA	MGYIKYALDEGSGSPTSDVDGLTVGSELTLGGATWASPGHDGTGSMLQTANTNGGSFSADSGYAAWTLMGWFRLDANHGSGTWISFFQGTWLGWVEAQSNGDGTFTMDWYANQGGELAGGTLDVDTWYHVAVQSDGALRNLLIDGTIVATTGSGLSSGNGLINVAADSANYMSLDALGIYDALLTEAEVSDEAGLGGTTITGTLDATLPNLTAALSGTVSGAPVAGALGATLPTLTGALSGSVTVTGVLDASLPQLEASIPDDAEPPFPATTSGRNLLDQNGNPWMMRGDAPWSAAFDLSTSEWDSWCANRAGHGFNAALFSMVGTTDNGGPSDDGATYDGVLPFVGGDVTVPNETYWARMDTFVDTAAAYGITLFAYPIDGWNDYTVFDGVSDADCETYGEFIGTRYGDRLNLVWMVGGDYFQHAGGNEAFWSVMTGIKNTESTTHLFSIQLGYHRSWSTQNSFWADKVDFNFVYSYYPQYEPMRAALAQSPLPAIWMEGGYEGETFDGTTNTAESCRRQVGWALTSGSQGDGFGSDDWEFLSGWEGRLDTTAVTQISAMRDHVRALDGWHLLEPDEDFITSGEGAEWTSSSSGNDHPLDWTTATAAVTPDGSLALVYVPTQRAIQVDTSPLGSSPTGTWYDAQTGATSSAGALAGSVTAPTSGDSFLVIEATPAVITGGIDATLPGLTGSASGTVTVGGELDATLPGLEGQSAGDVVIVGALAGSAPTLTGQVAGDVVVTGSLDAALPQLTASLSADGFVGGELDAALPSVTADLAGTVTIAGALAAAMPGLTADLAGTVVDPENVTGDVDAALPTLAGSVAGTVTIAGTLTATLPMVTASLADVPLVRELTIGRGPYGSTFAVSQPRGHALAVSTPRRQDP				NA	NA	NA	NA	NA
AK001_02314	396			hypothetical protein	ATGGCACTCTCCACCTCTGCTGCCGCCGCCCAGGCCATGGGCGCGGCGCTCGCGTCCGACATCGGCTCGGGCGCCACCATTGAGATCCGCTCGGGCAGCAAGCCCGCCACCCCGGAGACGGCCGACGCGGGCACCCTGCTCGCGACGGTCGCCATCTCGGGATCGTTCACCGCTTCGGGCGGTGCGCTCACCGCGGCGGACCCCGCATCGGTCACCGTGGCCGCCACGGGCACCGCCGGGCACTTCCGCGTCAAGACGTCCGGCGGCACCGCGAAGATCGATGGCACCGTGACCGCGACGGGTGGCGGCGGCGACATGGAGCTGGCGACCGTCGCCCTGTCGTCCGGCGCGACGCTCGACCTGGGGGTGCCTACCTTCACCGTGCCCGTCGCCTGA	MALSTSAAAAQAMGAALASDIGSGATIEIRSGSKPATPETADAGTLLATVAISGSFTASGGALTAADPASVTVAATGTAGHFRVKTSGGTAKIDGTVTATGGGGDMELATVALSSGATLDLGVPTFTVPVA				NA	NA	NA	NA	NA
AK001_02315	156			hypothetical protein	ATGGCGTGCGGCTGCGGCAGCCCCTGCCGCGACGAAGCCACGTGCCGACCGCAGGTGTGGCGCTGCCGCACCTGCCATGCCCCCTTCCCGAGCGAGGCGGACGCCGAGGAGTGCGCCCGCCTCGACGACGACCCCCGCTCCGACCACACCGACTGA	MACGCGSPCRDEATCRPQVWRCRTCHAPFPSEADAEECARLDDDPRSDHTD				NA	NA	NA	NA	NA
AK001_02316	609			hypothetical protein	ATGTTCACCGTCGCGTTCTGGCGCGCGGCCGGCCTGCGCGCCCTGCAGACCGTGCTCGTCGCCCTGGTGCCGTTCCTGGCACCGCTCATGCTCGAGCCCTCGGCCGAACAGTTCGTTCAGGCGGGCCTCGCGCTCGTGCTCACCGCCGCCCTGTCCGTCGCGACGTCGCTCGCCAGCCTCCCCGAGGCCGGCGGCGGCGAGCGGCCACGGTGGCGGGCGATCCTGTCTCGCACCGTCCGCAGCTTCGGCCAGGTGTTCGCCGCCGCGCTCGGCGCCGCGGCAACGTTCGACGAGGTCGCCTGGGCGGCCGTCGCCGGCCAGGCGGCCGTCGCCGCCGCGACCACCCTCGTGCGCACCATCGTCGCCTCCCTGCCCGAGGTCCCCGACCCCTCGCCCGCCCCGCCCGCCCCCTCGCCGCAGCTCGCCGTGGGCGACCGAGTCCGCGTCCGGCGCGCCGTCGACCGCGGCGGCCACGCCGAACGCGGCGTGGCCACGGTCGACAAGGTCTACGACGAGGGTCTGCCCTCGGCGAGCTACGTGCTCGCGTTCCGCGACGGCAGCTCGGGCCTGTTCGGCCCGGACGAGATCGAGCCGTACGCGAGGCCGTGA	MFTVAFWRAAGLRALQTVLVALVPFLAPLMLEPSAEQFVQAGLALVLTAALSVATSLASLPEAGGGERPRWRAILSRTVRSFGQVFAAALGAAATFDEVAWAAVAGQAAVAAATTLVRTIVASLPEVPDPSPAPPAPSPQLAVGDRVRVRRAVDRGGHAERGVATVDKVYDEGLPSASYVLAFRDGSSGLFGPDEIEPYARP				NA	NA	NA	NA	NA
AK001_02317	954			hypothetical protein	GTGAAGACGCTCACCCAGCTGGTCGGCGACGCGCTGCAGCGCGCGCGGACGTACCGCGGGATCAGCACCCGCTCGTCCATCACGTTCCACGAGACCGCGAACCGCAGCCGCGGCGCGGACGCCGCGGCGCACGCCCGGCTGCAGGCCCGCGGCAACAGCCGCCGGGCGTCGTGGAACCGGCAGACCGACGACGAGGTCTCGATCATGTCGTTCCCGAACACGGCGCGCACCTGGCACGCCGGCTGGTTCGCGCGCAACAGCATCTCCCAGGAGGTGTGCGTCAACGTCGACGGCGACCTGCGCGAGGCGTGGGAGAACGCGATCGAGGTCGGCCGGCAGATCCGCCGCGAGGAGGGCTCGCGGGTGAAGTCGGTCAAGCGGCACTACGACTGGACCCGCAAGCACTGCCCGCACCTGCTCATGTCCGGCCAGGTGCCCGGCCTGTCGTGGTCCAAGGTCCGCAACCGCGTCATGGGCCCGCTCGACGTCGACGACGACAAGGAGCCGCAGCCGAAGTCGCCGCGCAAGACGAAGCCGCGCTACCCCGGCACGCTGCGCAAGGGCGACCGCGGTGACCTCGTCGAGCTCTGGCAGGACATCCTGCTGGCCGACGGCTACGACCTCGGCCACTGGGGCGCCGACGGCGTGAGCGGCGGCGTGACGGTCCGCGCGACGAAGCAGTGGCAGCGGGACCGCGGCCTGCTCGACGACGGCGTCGTCGGCCCGGCCACGTGGACGCGGGCGCTCATGTCCGACGACGACGGCCGCCTGCGCAAGGGCGACCGCGGTCCGCACGTCGAGCTGTGGCAGCTCATCATCCGCGCCAAGCGAGACCGGGTGTTCGGGCCCAAGACGAAGCGCAAGGGCAAGCGCGTGCAGCGCTTCCTCGGCGTCGAGCCCGACTCCATCCCCGGCCCCGACACCGTCGAGGCCCTCGTCGACTACTGGACCTGA	MKTLTQLVGDALQRARTYRGISTRSSITFHETANRSRGADAAAHARLQARGNSRRASWNRQTDDEVSIMSFPNTARTWHAGWFARNSISQEVCVNVDGDLREAWENAIEVGRQIRREEGSRVKSVKRHYDWTRKHCPHLLMSGQVPGLSWSKVRNRVMGPLDVDDDKEPQPKSPRKTKPRYPGTLRKGDRGDLVELWQDILLADGYDLGHWGADGVSGGVTVRATKQWQRDRGLLDDGVVGPATWTRALMSDDDGRLRKGDRGPHVELWQLIIRAKRDRVFGPKTKRKGKRVQRFLGVEPDSIPGPDTVEALVDYWT				NA	NA	NA	NA	NA
AK001_02318	411			hypothetical protein	ATGATCGCACCGGGTGTCGAGATGGCGACGATCACGTTCGACGTCGGGACGATCCTCAGCACCGTGGCCGTGGCGCTCCTGACCTTCTGGGGCGGCAAGGGCGCCCTCGACTGGCTCAAGGGCCACCGTGCCGCCAGGCGCCGCCAGGCGCTCGTCGACGCCCGCGCGAAGGCCGACGCCCGCGCCGACTGGGCGACGTTCTCCGCCGAGATGCAGAACGCACTCGCGCTCGAGCGGCAGCAGGTCGTGCAGCTGCTCGAGCGCATCGCGGGCCTTGAGGCCCGGCTCGTCGCCGCCGACGAGCAGGTGCGCGCCTCGCAGGAGCAGGTGCGCGTCCGCGACGACCACATCGACACCCTCGAGGCGCACATCTGGGAGGAGAAGGGGCCGCCGCCCCCTCCTCGCCCCTGA	MIAPGVEMATITFDVGTILSTVAVALLTFWGGKGALDWLKGHRAARRRQALVDARAKADARADWATFSAEMQNALALERQQVVQLLERIAGLEARLVAADEQVRASQEQVRVRDDHIDTLEAHIWEEKGPPPPPRP				NA	NA	NA	NA	NA
AK001_02319	1182			hypothetical protein	GTGGCTGACGCCTACGCCTACGCCTGCCGCCTGGTGGCCTACGAACCCGGCGGCGCCGAGATCGGATTTCTGCCCGAGCCGTCGCAGTTCAGCGCTTCGTTCGTGCGCAACGCCGTCGGCAGTATGACGCTGCAGTACGCCGAGGGTGCCGAGCGCGGCGACCTCCTCGCCCGAGGGCTCGGCACGGGCCTCGAGGTCGGCGTCGAGGTCGGACACACATTCCACGGCTGGCGAGAGCCCAGGAGTGCCCGCTTTCTGCTCATCGGCCGCGGCCGCAGCCAGCTCGACCCGACCCGCACGGCCAAGGCGACGATGCCCTCGTACGGCTGGCTGCTCAGCAAGGCCCGCGACCTCAACCTCACCGAGATGATCGGCGCCGGCCTGTCGAACGAGGGGCAGCGGCACTGGGTCGGCTCTCCCGGCGACATCATGGCGACGCTGCTCGCCGAGAACGCCAGCCGCGACGGCATCCCCATCGCGGCCAACTTCTCCGGCGCCACCCCGACCCCGTCCCCGAACGACGGGATCAACTTCTGGTCCGACCTCGGCCCCGACCTCGACGTCCACTACGACACCGGCATCGACCTGCTCAGCGTGCTGAACAACCTGGTCGAGCGGCGCGCCTGCGACTGGGCCACCGAGGGGCGCCAGCTGAACCTGTACGCCCCCGGCCCGTATGCCGGCGACGAGGCCGTCGCCGGCAAGCTGCAGCTCAACCCCCGGGACCTCATGGAGGCGCCCGAGGAGGACTCGATCGCCGACCTCGTCACCCGCTACCTCGTGCGCAGCGATGGCGGCGTCGCCGAGATCGAGGAGGATGTCGTCGCGCCGGACCCCTGGGGCAAGTGGGAGGGGTACCGCAGCCAGACCGGCCTCACGTCCGCCGGCGCGACGGCGCTCGCGGACGGCGAGCTCGTCGCGAACGCCCGCGTCAAGGGGCAGTACACCTACCGGTTCCTCGTGGACGGGGGCGGCCTCCTGCCGCTGATCGACTTCGAGCCCGGCCAGTTCGTGACCGCGCCGACGATCGACGGACCGGTCGCGATGCTCGTGCATCAGGTGACGCTCACCAAGGACGCCGACGGGCTGACCGTGACCCTCGTGCTCAACGACCGCTTCGTCGAGGCCGAGCTCCGGCGGGCGCGCAACATCGCGAACATCCTCGGCGGGATCGCCAGGTGA	MADAYAYACRLVAYEPGGAEIGFLPEPSQFSASFVRNAVGSMTLQYAEGAERGDLLARGLGTGLEVGVEVGHTFHGWREPRSARFLLIGRGRSQLDPTRTAKATMPSYGWLLSKARDLNLTEMIGAGLSNEGQRHWVGSPGDIMATLLAENASRDGIPIAANFSGATPTPSPNDGINFWSDLGPDLDVHYDTGIDLLSVLNNLVERRACDWATEGRQLNLYAPGPYAGDEAVAGKLQLNPRDLMEAPEEDSIADLVTRYLVRSDGGVAEIEEDVVAPDPWGKWEGYRSQTGLTSAGATALADGELVANARVKGQYTYRFLVDGGGLLPLIDFEPGQFVTAPTIDGPVAMLVHQVTLTKDADGLTVTLVLNDRFVEAELRRARNIANILGGIAR				NA	NA	NA	NA	NA
AK001_02320	1464			hypothetical protein	ATGACCGTCGACATCACGTGGTCGATCTCAGGGATCGACGCCCGCTACTGGGAGGTCCAGAAGTCGGGCGGCGGCCTGTGGCGTCTGCCGCAGACCGTCCGCGGCTCGGTCTACACCCTGCCCGGCCAGCACGGTGTGCGGGTCGCGGGCCTGCCGGTGTACGACGAGCCACAGCTGCCGCTCGTGCTCCGGGCGCGGAACGACCAGGCGACTACGGTCATGTCGGACCAGGCGGCGCTCGAGCTGATGACGAACGAGCTGCTGATCCGCCTCGGTGACCCGAACCTGACGATCGAGCGATCCTCGGGCGGCCTGGTCACCTCGGCGCCGGCCCGGCTGATCTCGTTCTCGCCGGGGCGGTTCGTGCCCGGCCAGCGCGCCGAGTTCACGGTGATCCTCGGCATCCCAGGCGTGTTCCTGCGCGGCGCCGAGGTCGACCACGTCGAGGCGGCGACCGGCGCGTTCGCCGTCGACACGCTGCGGGGCATGACGGCTCCGGTCGGCGACGCTCTGCTGCGGTTCAAGAACCCGCAGGGGCTGGGGCCGAGGCTCTCGGACACCTACAGCGACACGAGCATCTGGTGGAACGGGACGATGCCGGGCTGGTACCTGTACGTCGACGTCGGGGCACTGCGCGCGTGGCTGACCCAGGACCCGGACAGGTGGTCGGGCGCGCCCAGCGCGACGGAGACGATCGAGAACCTCGTGCCCAATCCCAGCTTCGAGGTCGACGTCGCGAACATCGTCACATCGTCGGGCATCGCGAGCGTCGCGCGCACGTCGACCTCGGAGGCAGTGCGGAACGGGTCGTGGGCACTGATCGCGACGACGGCCGCCTCCCCGACGGCGACGACGCGCGTCGGCCAGACGCTCGACGTCGGCGCGATCTCCGAGGGCGACTGGCTGGCAGTCGCGACCCCGGCCCGCGGCAGGGGCACGCCCATGCGCTTCCGTAGCCGCATCCAGTGGACCGGCGGCCCGTCGTTCGGCGCCTACAGCGCCTACACGCCCTGGGACCTCGGCGACTACCACGTGGCGATCGTCAGCGAGCAGGCGCCAGCAGGGAACACGGGCGCCGTCGCCCACCTGTACGCGCACGACTCGGGTAGCGACACACCCCCGGCTAGCGCCACGTTCGACAGCGATGCCTGGGTCGCCGCCGTCGCGCCCACCCAGGCCGAGGCCGAGGCCGCCGTGGCCGGCTACTTCGACGGCGACTCCGACGACGAAGCCTGGTCGCAGCACGACTGGACCGGCACCCCGCACGACTCCTCCTCGATCCTCACCGTCGACCCGGCCGCCGCGACCAGTGGCCTCGACTACTCGGCGAAGGGGCCTCTGCAGTTCTGGCCGGAGCCGCAGAGCAGCGTGCCGACCGCGAGCACGCTCGAGGCGAGCGACGTCCGCGCGTTCGGCAGCAACCACGACGAAGTCGTCATCCGGGCGAAGCCCGCCTACCTCTGA	MTVDITWSISGIDARYWEVQKSGGGLWRLPQTVRGSVYTLPGQHGVRVAGLPVYDEPQLPLVLRARNDQATTVMSDQAALELMTNELLIRLGDPNLTIERSSGGLVTSAPARLISFSPGRFVPGQRAEFTVILGIPGVFLRGAEVDHVEAATGAFAVDTLRGMTAPVGDALLRFKNPQGLGPRLSDTYSDTSIWWNGTMPGWYLYVDVGALRAWLTQDPDRWSGAPSATETIENLVPNPSFEVDVANIVTSSGIASVARTSTSEAVRNGSWALIATTAASPTATTRVGQTLDVGAISEGDWLAVATPARGRGTPMRFRSRIQWTGGPSFGAYSAYTPWDLGDYHVAIVSEQAPAGNTGAVAHLYAHDSGSDTPPASATFDSDAWVAAVAPTQAEAEAAVAGYFDGDSDDEAWSQHDWTGTPHDSSSILTVDPAAATSGLDYSAKGPLQFWPEPQSSVPTASTLEASDVRAFGSNHDEVVIRAKPAYL				NA	NA	NA	NA	NA
AK001_02321	3111			hypothetical protein	GTGGCCAGGAGCACTGACCTGAACGTCGAGGTCGACGCCGACGTCGCCCGGTTCGAAGCCGGCGTCGGCCGGGCCTTCACGGCACTCCGCCGGCTCGAGGGCCAGCTGGAGCGCGCGGACCGTGCGACGAAGGGCCTCGACAAGCAGCTCGACGGGCAGGCCGCCGAGGCTGCCCGCAAGCGCGCCGCCGCGATGCAGCGCCTCGGGCGCGGCATGACCGCGTTCGGCGCGGCGACGGTCGCCGGGCTGGGCCTGGCCGTGAAGGCCGCGATCGACTGGGAGTCGTCGTGGACGGGCGTACTCAAGACGGTCGACGGCACGCCCGAGCAGCTGGCCCGCGTCGAGCAGGGCCTGCGCGACTTGGCGACGACGCTGCCGGCCTCGCACCAGGAGATCGCGGCCGTCGCCGAGGCCGCCGGCCAGCTCGGCGTCGCCACGGACGACGTCGTCGACTTCACGCGCACGATGATCGACCTCGGCGAGACGACGAACCTCACCGCCGAGGAGGCGGCGGTCCAGCTGTCCCGGTTCGCGAACATCATGGGCACCAGTACCGACGACGTCGACCGGCTCGGCGCCTCGATCGTCGGGCTCGGCAACAGCTACGAGACGACCGAGGCCGAGATCGTCGCGATGTCGATGCGCCTCGCCGGCGCCGGCCAGCAGGCGAGCCTGACCGAGGGTGACGTGTTCGGTCTCGCCACGGCGATGAGCTCCGTCGGCATCCAGGCAGAGGCCGGCGGCACCGCCATGTCGAAGACGATGAAGCGCATCGGCAAGGCCGTCGACGAGGGCGGCGACTCGCTCGACCTGTTCGCCGAGGTCTCGGGCATGTCGTCGCAGCAGTTCGCGGCGGCCTGGCGCGACGACGCCGCCGCGGCGCTCGCGGTGTTCATCGGCGGGCTCGGCGAGACCGAGTCGCTGGGCATGTCGACGAACGCCGTGCTCGAGGAGCTCGGCATCACCGGCGAGCGCGAGGCCGACACGCTGCTGCGCCTGTCCTCGGCCCAGGACCTGCTCACGGACGCGCTCAAGACCGGCAACGAGGAGTACCGGAAGAACACGGCCCTGATCGAGGAGGCCGCGAAGCGCTACGACACCGCCGAGGCGAAGCTGCAGATCGCGAAGAACGGCATCGTCGACGCCGGCATTAGCATCGGCGAGAACTTCCTGCCCGTCGTCGCCGACGCCGCCGAGGGGATCGCCGACCTCGCGAAGTGGTTCGCCGACCTGCCCGCGCCGGTGCAGAACACCGTCGGCGCGCTGGGAGCCGCTGCAGGTGCGCTCTCGCTCGCCGGCGGGGGCTTCCTGATGCTCGCCCCGGGGCTGCGCGACACGCTGGGCATGTTCAAGGACCTCCGGGCGACGTCGCCCGGCGCGGCGACCGGCCTGCGCCGCGTCGGCCGCGCCGCGGGCATGGCCGGCGGGGCCGCCCTCGGCTTCGCGGTGCTGACGAACGCCGTCGAGGCCTTCGACCGGTCGGACTCCGCGAGCAGCGTCGCCGAGACCACCGAGGCGCTGCTGGCCATGCAGTCCGGCCTCGGCAACCTCGACGAGCTGTTCTCGGGGCTCGGGCTCGGGATCGACAAGGTCGACGGGCTCGAGGACGCGCTGCGCCGCGTCGCCGACCCCAACCTGGCCGACCGGGTGCAGGACATCGGTGGCAAGGTTCGCGACCTGTTCGGCGGCGAGGGCAACACGGCGCGCACCGAGGTCGTCGAGCAGCTCGACGCCGTCGGGCAGTCCCTCGCCTCCCTGGTGCAGGGCGGCCACGCCGAGCTCGCCGCGGACCTGTGGGACGAGATCGCGCAGAAGTGGGAGGCGGCCGGCGGGTCGCTCGAGGAGCTCGAGGAGCTCATGCCCACGTACCGGGACGCGCTGCTCGACGTCGAGAACGCCGAGGTCGTCGCGGCCGAGGGCGCGGGCAAGGTCGCGACCGAGCTCGAGGGGATCGACCCTGCCGCCGAGCAGGCCGCTGCCGAGCTCGAGGAGTTCGAGGAGCGCGCCAGCGCCGCCTTCGCCTCGTTCATCGACCCGGCCGGCGCGTTCCAGGCCGCGATCGACAAGAATACCGAGTTTGCCGAGGAGGCCGCCGAGGCGACGGAGGACGCCGAGGACTCCTGGGAGGACTTCTACGACGGGCAGTCGGTCTCGGCGGGCGAGTACATCAAGCAGCTCCGCAAGCAGGTCGAGGCGCAGGAGAACTGGCGCGACAACATGATCTCGCTGTCCGAGAAGGTCAACGAGGGCATGACCGGCGAGATGCGCCAGGCCGGCAACGACATGATCGAGGAGCTGATGGACCTCGGCCCCGAGGGCGCTGCCCAGGTCGAGCTGCTCGAGGGCATGACCGACAAGCAGCTCCGCAAGGTCGTCCGGCTGTTCCAGCGCAAGGGCGAGGACGCCTCCAACGAGTTCACGGACGAGATCAACGACACGAAGCCCGACCCGGTCAAGGTCGACGCCGACACGCGCAACGCGAACCGGAAGCTGCGCGAGGCGCGTCGGGTCGCCCTGCGGATCCCGCGGTCGCGCACGACCAGCACCCGGGCCGACAACGTCTCGAGCTACCAGCGGGCGATGCGCGCCGCCCGGGCCGACGCCCTGCGGATCCCGCGGTCGATGTCGACGACGCTCTACCAGAACACGGTCAAGCGAACCTACATCCAGGAGGCGCGCTACGGGCAGCGGCCGATGGCGCTCGGCGGCATGGTCGGTCTCGCCGGCGGCGGGCGCGTGCCCGGCACCCCGCCGGCGCACCCCATGGTCGACAACGTGCCGGCGATCAACCTCACGACGGGACGGCGCATCGCGCTCCGCTCCGGCGAGTGGGTGCACTCGCAGCCGGCCGTCGACTACTACGGCCCCGCCATCATGGCGGCACTCAACGAGCGGCGCGTGCCGAAGGAGCTCCTGACCGGGCTCAACGCGGGCGGCCCCGTGCCGGGCCTCGCGGCCGGCGGGCCGGTGCCGCGGTCGTCGACCCCGGCGGACACGGGCCCCCGCGTGGTCATCAACGCGACCAGCCACTACCCGCAGGCCGAGCCCGAGTCTCAGACGATCAACCGAGGCTTGCAGATTGCCGCGGCGCTCGGCGTGGGGGAGGCGTAG	MARSTDLNVEVDADVARFEAGVGRAFTALRRLEGQLERADRATKGLDKQLDGQAAEAARKRAAAMQRLGRGMTAFGAATVAGLGLAVKAAIDWESSWTGVLKTVDGTPEQLARVEQGLRDLATTLPASHQEIAAVAEAAGQLGVATDDVVDFTRTMIDLGETTNLTAEEAAVQLSRFANIMGTSTDDVDRLGASIVGLGNSYETTEAEIVAMSMRLAGAGQQASLTEGDVFGLATAMSSVGIQAEAGGTAMSKTMKRIGKAVDEGGDSLDLFAEVSGMSSQQFAAAWRDDAAAALAVFIGGLGETESLGMSTNAVLEELGITGEREADTLLRLSSAQDLLTDALKTGNEEYRKNTALIEEAAKRYDTAEAKLQIAKNGIVDAGISIGENFLPVVADAAEGIADLAKWFADLPAPVQNTVGALGAAAGALSLAGGGFLMLAPGLRDTLGMFKDLRATSPGAATGLRRVGRAAGMAGGAALGFAVLTNAVEAFDRSDSASSVAETTEALLAMQSGLGNLDELFSGLGLGIDKVDGLEDALRRVADPNLADRVQDIGGKVRDLFGGEGNTARTEVVEQLDAVGQSLASLVQGGHAELAADLWDEIAQKWEAAGGSLEELEELMPTYRDALLDVENAEVVAAEGAGKVATELEGIDPAAEQAAAELEEFEERASAAFASFIDPAGAFQAAIDKNTEFAEEAAEATEDAEDSWEDFYDGQSVSAGEYIKQLRKQVEAQENWRDNMISLSEKVNEGMTGEMRQAGNDMIEELMDLGPEGAAQVELLEGMTDKQLRKVVRLFQRKGEDASNEFTDEINDTKPDPVKVDADTRNANRKLREARRVALRIPRSRTTSTRADNVSSYQRAMRAARADALRIPRSMSTTLYQNTVKRTYIQEARYGQRPMALGGMVGLAGGGRVPGTPPAHPMVDNVPAINLTTGRRIALRSGEWVHSQPAVDYYGPAIMAALNERRVPKELLTGLNAGGPVPGLAAGGPVPRSSTPADTGPRVVINATSHYPQAEPESQTINRGLQIAAALGVGEA				NA	NA	NA	NA	NA
AK001_02322	297			hypothetical protein	ATGGACTACTGCGGCCCCCGAGGGATCCCGCACAGCGAGTTCCTGTCCTGGCCCGCTGACGACCAGGCGAAGGCCCTGCTGTGGATGGCCGAGGACGCCCTGCGCTGCTCCGGGTGCGGCACCGCCGACTGGGAGTGGGAGGACGACCCGAACGCCTTCGTCGCACAGCCCTACGTCTGCCGCGGCTGCGCCCGCACCGAGACAGCCCGCAAGAACCTCGGCGAGCAGGTCCGCTCCGCCCCCGGGATGCACGTCCGACTCGTGAGAGGTGGTGCAGCAGGTGGCCAGGAGCACTGA	MDYCGPRGIPHSEFLSWPADDQAKALLWMAEDALRCSGCGTADWEWEDDPNAFVAQPYVCRGCARTETARKNLGEQVRSAPGMHVRLVRGGAAGGQEH				NA	NA	NA	NA	NA
AK001_02323	501			hypothetical protein	ATGAGCCTGCGCGACCAGCTCGCCAGCAAGCGGACCCACACCACCTCCGTCACGTTCCCGCTCGGCGAGGCCGGCGAGAAGGCTGCCCAGGAGTTCGCCGACGCGAAGAAGCGCCTCGACGTGCTCAAGTTCGCCAACTCCCGCCGCAAGCCCGGCGAGGAGAAGCTCGACCCCGCCACCGCAGAGGCCGAGCTCGCCGAAGCGCGCGCCGCCTACGAGGCCGCGTCGCTGACGCTGCACTTCCGCGGCCTGACCGCGACTGAGCGCGACCGGCTCGCGAGCGACCACAGCCCCGTCGAGGACGGCGGCGACGTCGACGTGCGCGCCTACACGTGCGACCTGCTCGAGCTCGCCGCCATCGACTCCGACCTGACCGCCGAGGAGTGGGGCGCCGAGCTGTTCGACTCCGGCCGCTGGTCGGCCGGCGAGGTCGACGAGATCCGCGAGACGGCCCGCGCCGCCTACCAGGAGGTCGCGGCGCCCGCGATCCCAAAAGACTGA	MSLRDQLASKRTHTTSVTFPLGEAGEKAAQEFADAKKRLDVLKFANSRRKPGEEKLDPATAEAELAEARAAYEAASLTLHFRGLTATERDRLASDHSPVEDGGDVDVRAYTCDLLELAAIDSDLTAEEWGAELFDSGRWSAGEVDEIRETARAAYQEVAAPAIPKD				NA	NA	NA	NA	NA
AK001_02324	519			hypothetical protein	ATGCCGGAGTACAGCCCCACGCCTATTGGTGGGCAGTCCGCGGACCGCTTCTCGGTGCTCGGCACCGCGGTGTGGCTGTGGCTCCCCACCGTCGCCGACCCGGGCCTCGTCCCCACCGAGGCCGAGATCAACGCCGGGACGGTCCTGCAGAGCGCTACGCAGGACATCTCGGGCTTCTCTGTGAGCCCGACGTTCACCAACACGGCGGACCTGTCCAACCTCATCGACGGCAAGGTCTTCGACGGCGCGACCGTCGACGACTCGTCGATGACGTTCTACAACGCCCGCGACGCCGCCGACGCCAAGGCGTTCTTCACGGCGCTGCAGACCGGCTTCATCCTGCACGCCCCCTACGGCCTGCCGAAGGTCGGCGAGACCGTCCTGCCGGGCGACATGTGGCCCGTCACCGTGGGCACGGTCACGTCCCTGCCCATGCTGCGCGGCGCCTCCGCAACGCAGGTCTCCCTGGCTCCGTCGAGCCCCCTGCAGGGCTTCGACATCCCGGTGCCGACGGCCTGA	MPEYSPTPIGGQSADRFSVLGTAVWLWLPTVADPGLVPTEAEINAGTVLQSATQDISGFSVSPTFTNTADLSNLIDGKVFDGATVDDSSMTFYNARDAADAKAFFTALQTGFILHAPYGLPKVGETVLPGDMWPVTVGTVTSLPMLRGASATQVSLAPSSPLQGFDIPVPTA				NA	NA	NA	NA	NA
AK001_02325	264			hypothetical protein	ATGGAGTGGGTGACCGTGAAGAACCCCGCCAGCGGGAACGAGGCCGTCGTGCCCCGCTCGGCGCTGCCCCAGATGCCCAAGTGGCACGAGGTCAAGGCGACCGAGGTCGCCGAAGCCCCCGAGGCCGGCGAGGCACCCGCCGACGCCGAGCCCGCCGGCGAGGCACCCAAGGCGCCCAAGGCCCGCAGGGCCCCCAAGACGTCCGGCCGAACCCGGTCGGAGAACCGAGCCGACGACACGTCGCCGGCAGACCGCGAGGAGTAA	MEWVTVKNPASGNEAVVPRSALPQMPKWHEVKATEVAEAPEAGEAPADAEPAGEAPKAPKARRAPKTSGRTRSENRADDTSPADREE				NA	NA	NA	NA	NA
AK001_02326	423			hypothetical protein	ATGACCGTGCGCTACTCGAGCGTGTCGTGGTTCAGCCAGAAGCTGCTGGGAGCCCCGAAGGACGCGCGCCGCGAGATCCGCAAGACGGTGCGCTCCGAGGCGTCCGACCTCCTCCAAGACGTGCGCCGCGCGGCCTCCTGGTCACGTCGGATCCCCGCCGCGACGCAGATCAAGGTCGCCTTCGGCAAGCGGACCGCGGGCGTGCGGATCGCCGTGAATCAGAAGCGTGCCCCTCACGCCAAGGTCCACGAGTTCCCGAACAAGAAGCCCCAGACGATCCGCCACCCGGTGTTCGGCGACATGGACGACTGGGTCGAACAGCCCGCCCACCCGTTCTTCCGCAAGACGGTGCGGGCCAAGCGGCGCACGTACGCGGCGGCGATCGAGAAGGCGATCGACGGCGTGCTCGACAAGCTGACCTGA	MTVRYSSVSWFSQKLLGAPKDARREIRKTVRSEASDLLQDVRRAASWSRRIPAATQIKVAFGKRTAGVRIAVNQKRAPHAKVHEFPNKKPQTIRHPVFGDMDDWVEQPAHPFFRKTVRAKRRTYAAAIEKAIDGVLDKLT				NA	NA	NA	NA	NA
AK001_02327	450			hypothetical protein	ATGAGCTACGTCGACGCGGACGCCGTGCTGCGCAAGCTCGTCGCCGTCGCCACCGCGGCGCTGCCTGACAGGCAGGTGCTCGACGGCCGGGACTACTCGGCCGAGGTCGAGCACAGCGCGCTCCTCATCGGCTACACCGGCGAGGAGTCCTCGCCCGCGGTCGAGGTGTCGCGCGACCAGTCCGCCGGCTCGCTCGACGACGGCCTCTACGACGTCGTCGTGCGCGCCACGGCGGCCGAGTGGGACGGCGACAACGAGTTCGCCGCCAAGCGGGCGCGCGCCCAGGCCACGCTCGAGGGCCTGAACACCGCCATCGAGGCGAACCGGAGCCTCGACGGGACGGTCTACGACGCCTGGCTGACCCCGACGGCGCAGTGGTTCCAGATCGCGAACGCCCAGGGCAACGGCATCGAGGTCGACATCGCCATCACGGTGCAGGTCTACGCATGA	MSYVDADAVLRKLVAVATAALPDRQVLDGRDYSAEVEHSALLIGYTGEESSPAVEVSRDQSAGSLDDGLYDVVVRATAAEWDGDNEFAAKRARAQATLEGLNTAIEANRSLDGTVYDAWLTPTAQWFQIANAQGNGIEVDIAITVQVYA				NA	NA	NA	NA	NA
AK001_02328	555			hypothetical protein	ATGGCGACCCCCATGCCGGCCACGCTGAACGAGCTCAAGGCGTTCCTCAACAAGTCGGCGGCCTCGAGCTCCGACGACGCCGAGCTGCGCGACGCGCTCGAGGCGGCGACGCAGGCCGCCGAGGGCTGGCACGGCGTAGGGCCGATCGTCGTGCGCACGGTCGCGGAGCAGGTCGACGCCTCCGACTCGGGGGCTCTCGTCCTGGCGTCCACGCCGGTGCGGTCCGTCACGTCGGTTACGCGCACCAGCGACGGCACGACCTACTCCCCGGCAGACCTGACCCTGCGCAAGGCCTCCGGGATCGTCAAGGCGACCGAGGGGCGGATCGAGGCCGGCCTCTACGACGTCGTCTACGAGGCGGGACGCGACCCGGTGCCGATGGCCCTCAAGGAGGCGGCCCTCATCATCGCGAAGCACATCTGGGAGACCCAGCGCGGGCCCAGCGTGACCCCGCGCGCCGAGCAGACCAGCGCCATGTGGACGGGCGCCGGGTACCTCATCCCGAACCGCGCCGCCCACCTGATGCAGCCCTACATCACGGTGCCGATCGCATGA	MATPMPATLNELKAFLNKSAASSSDDAELRDALEAATQAAEGWHGVGPIVVRTVAEQVDASDSGALVLASTPVRSVTSVTRTSDGTTYSPADLTLRKASGIVKATEGRIEAGLYDVVYEAGRDPVPMALKEAALIIAKHIWETQRGPSVTPRAEQTSAMWTGAGYLIPNRAAHLMQPYITVPIA				NA	NA	NA	NA	NA
AK001_02329	459			hypothetical protein	ATGGCCGAGAACCTGCTGGTAGCGACGAAGACCTTCATGGCCGTGATCGACGGCAAGCGTGTCAAGGTCACGAAGGGGCGTACCCGCGTCAGCGCCGACCACGAGCTCGTCAAGGGCCGTGAGCACCTGTTCAAGCCCGCCGACACCACGCTCGGCGGCGTCGAGGACGCGACCGCGCGCCCCGGGCAGAAGCGCGACGACGCCGCAGCGAAGCCGCTCGAGAAGATGACCTCCAAGGAGCTGCAGGCGCACGCCGCCGCGGCCGGCATCGACCTCGGCAAGGCGAAGAAGAAGGCCGACATGGTCGCCGCGATCACCGCCGCGACCGAGGTCGTCGACGCCGACGCCGGCGCAACCGGCGAGGGCGAGAGCGGCGAGGCCGACGCCGGCGCAACCGGCGAGGGCGACGAGAGCACCGGTGGCACCGACAGCGCCGCCGGGGCGGGGGCGGACGACTGA	MAENLLVATKTFMAVIDGKRVKVTKGRTRVSADHELVKGREHLFKPADTTLGGVEDATARPGQKRDDAAAKPLEKMTSKELQAHAAAAGIDLGKAKKKADMVAAITAATEVVDADAGATGEGESGEADAGATGEGDESTGGTDSAAGAGADD				NA	NA	NA	NA	NA
AK001_02330	2304			hypothetical protein	ATGACCACGACGACGGACGATCTGCGCTCGGCCCCGCCGGCGACGCTCGACGTCTCGGTGTGCCGCGCGCTCGACGAGTCGCTCGCCATCCGAGCGGAGGGCGACGGCGCAGCCGGGGACGGCGACACCAGCCCGGGCCGCATGGTCGGGCACTTCTCGGTGTTCGACTCCTGGTACGAGATCAACAGCTGGTTCGAGGGGCACTTCCTCGAGCGCATCGCCCCCGGGGCGTTCAAGCGGACGATCAAGAACCGCTCGGGCGAGTCCCCGATCCGGGTGCTGCTCGAGCACGGCTTCGACCCGATGGTCGGCGACAAGCCGCTCGGCGTTCCCGACGTGCTCGAGGAGCGCGACGGCGGCGGCTACGCCGAGACGCCGCTGTTCGACACGTCCTACAACCGCGACCTCGCCCCCGCGCTGGCCGGCGGCGCCTACGGCCAGTCGTTCCGCTTCCAGGTGCTGCGCGACGAGTGGGTCGAGGAGCCCGAGGCGAGCGAGAGCAACCCGAAGGGCCTGCCCGAGCGGACCATCAAGGAGGTCCGCCTGATCGAGTTCGGGCCCACCGTCTTCCCGGCGTCGGCCGCCACGAACGGCTCGACGGGCCTGCGCTCGACGACCGACGAGTTCTACGAGCGGCTCCGCCGGCGCGACCCCGAGGCGTACGACGACGCCGTGGCCCGCAGCCAGCAGCTGCGCGCACCCGAGGCGCCCAGCGCCGCCACCGAGACCCCGGCCGCCCCCAGCGCGGCCGGTCAGCCAGAGGACCCGCCGACCCGGCACTCCGAGGACCCGCCCGCTCCCGGGCACTCCGAGGACCCGTCGGGCCAGCACTCCGAGACGGCACCCCCCGCACACCCTGTTCCCGAAAGGACCTCCGCCATGGAGACCATGACCATCGAGGAGCGCGCGGCCCGCCAGTCGGAGATCCGCGCCCGGCTCGCCGAGATCGACGAGCAGCACGCCGGTGCCGAGCTCGACGAGGAGTCCCGCAGCGAGTGGGACACCCTCACGAACGAGTACGACACCCACGAGCGGGCCATCGAGGACTCGCGCCGCCGGCGCGAGGCCATCGCCGCCCGCGCCGCGGACTCGGCCGCCACCGAGCAGGTGCGCCCGACCCGCACGCACGGCGGCGCGCCCCGCCGCCCGGAGAACATCTACGACCTGGCCGAGATCCGGCAGCAGGCCCGCAGCATCGACGAGCTGCCCGCGCTCATGCGGGACAACGCGATGCGTGCCATCGAGCAGGGCCGGTTCCCGGGGGCCAAGGACCGGGAGGCCGCCCAGGAGCGCGCCTCGCGGCTGCTCGACACGGTCGACGACGAGAACGGCACGCTCGCGCGCCGGATCCTGACGACCGGCTCGCCGGCCTACTCCCGCGGCTTCGGCAAGATGCTCGCGGGCGGCGCCGGCGTCAACGCCGAGGAGCAGCGCGCGCTGTCCCTCGGCACGGCGGCGGACGGCGGCTACGCGGTGCCGTTCCAGCTCGACCCGACCATCATCCTCACCTCGGGCGGCGTCGCCGACCCGCTGCGTGAGGTCGCCCGGGTCGAGCAGATCGTCGGCAAGGAGTGGCAGGGCGTCACGTCCGCCGGCGTCAGCGTCGGTCGCTCCGGCGAGGGCACCGAGTCGGGCGACGACTCGTTCACCATCGGCCAGCCGACCGTCAAGGCGACCCGCGTCGACGCCTTCGTGCCGTTCAGCATCGAGATCGAGGCCGACTGGGCCCGGATGCAGGCGGAGATCACGAACGTGCTCGCCGACGCCAAGCGGACCGAGGAGGCCGGGTCGTTCATCAACGGCACCGGCGTCGACCCGCAGCCCGAGGGCCTGCTCACCGGCACCTCGAACGACGTGCAGACCGCCACGGCGAACACGTTCGCCGACGACGACCTGTACGCCACCGAGGAGGACCTGCCCGAGCGCTGGCTCGCGAACGCGACCTGGCTCGCGCACCGGTCGTTCTACAACGCGGTCCGCCAGCTCGGCGCCGACTCCGACGGCGGCAACCTGTGGGTCCGCCTCTCCGACGGGCTGCCGCCCGAGCTGATCGGGTACTCGGCCCGCCGGCAGTCGGAGATGCCGTCGTTCAACGCGGCGGCCGACCAGGTGCTGGCGGTCCTCGGCGACTTCCGCCAGTTCCTGATCGTCGACCGCGTCGGCATGAGCGTCGAGCTCGTGCCGCACCTGGTCGGCGCCAACCGCCGCCCGACCGGTCAGCGGGGCATCTACGCCTACTGGCGCAACGCCTCCAAGGTCCTGGTCGACGGCGCGTTCCGCCGTCTGCTGGCCCGCACGGCCTGA	MTTTTDDLRSAPPATLDVSVCRALDESLAIRAEGDGAAGDGDTSPGRMVGHFSVFDSWYEINSWFEGHFLERIAPGAFKRTIKNRSGESPIRVLLEHGFDPMVGDKPLGVPDVLEERDGGGYAETPLFDTSYNRDLAPALAGGAYGQSFRFQVLRDEWVEEPEASESNPKGLPERTIKEVRLIEFGPTVFPASAATNGSTGLRSTTDEFYERLRRRDPEAYDDAVARSQQLRAPEAPSAATETPAAPSAAGQPEDPPTRHSEDPPAPGHSEDPSGQHSETAPPAHPVPERTSAMETMTIEERAARQSEIRARLAEIDEQHAGAELDEESRSEWDTLTNEYDTHERAIEDSRRRREAIAARAADSAATEQVRPTRTHGGAPRRPENIYDLAEIRQQARSIDELPALMRDNAMRAIEQGRFPGAKDREAAQERASRLLDTVDDENGTLARRILTTGSPAYSRGFGKMLAGGAGVNAEEQRALSLGTAADGGYAVPFQLDPTIILTSGGVADPLREVARVEQIVGKEWQGVTSAGVSVGRSGEGTESGDDSFTIGQPTVKATRVDAFVPFSIEIEADWARMQAEITNVLADAKRTEEAGSFINGTGVDPQPEGLLTGTSNDVQTATANTFADDDLYATEEDLPERWLANATWLAHRSFYNAVRQLGADSDGGNLWVRLSDGLPPELIGYSARRQSEMPSFNAAADQVLAVLGDFRQFLIVDRVGMSVELVPHLVGANRRPTGQRGIYAYWRNASKVLVDGAFRRLLARTA				NA	NA	NA	NA	NA
AK001_02331	1329			hypothetical protein	GTGAGGCTCTACGAGAAGCTCCTGGGCCGCGGCGGCGGCGACGCCGGCGAGGAGCGCGCCCTGGGCCCGGACGACTGGGCGCAGTTCTTCGGGCCGTCCTATGCGCCGTTCCTGACCCAGACGTGGTCGTCGGACCAGGAGAAGCCGTCGTCGGACGCCGGCGGGCCGTACAAGAACAACGGGCCCGTGTTCTCGCTCGTGCTCGCCCGGATGCAGGTGTTCGCCCAGGCGCGTTTCGCCTGGACCCGGTTCAACGGAGGCGCTCCTGGCGACCCGTTCGGCACCAGCGAGCTGTCGCTGCTCGAGACCCCGTGGCGCGGCGGCACGACGGCGGACCTGCTCGCCCGGATGGAGCTCGACGCCTCGCGCGCCGGCACGGCGTTCGTGCGCCGCGTCGCCGACCGGTTGTCGGTGCTGCCCCCGCAGTGGTGCACGGTCGTGATCGGCTCCCAGGAGGACGCCGACCATCCGGGCGAGGCCGGCGACGCCGAGGTTGCGGGCCTGGTCTACGCGCCGCCGAACGCGAAGGGCGTCGTGCTGCTGCCGGAGCAGTTCGGCATGTACGCACCGATCCCGGACCCGAGCAACCGCTTCGTGGGCATGTCGTGGATCACGCCGGTGATCCGGGACGTGATGGCCGACGACGCCTCGATGACACACAAGCGCAAGTTCTTCGAGAACGCCGCGACCCCGAACCTGGCGCTCAAGTTCGACCCGAACACCAACGTCGAGACGGTGCGCAAGTTCAAGCAGCTGCTCGAGGAGGAGCACCGGGGCGCGATGAACGCCTACAAGACGCTCTACCTCGGCGGCGGCGCCGACCCGGTCGTGATCGGCAAGGACTTCAAGGAGCTGGACTTCGCGGTCACCCAGGGCAAGGGCGAGTCGCGGCTCGCCTCGGCGGCCGGCGTGCCACCGTCGTGGGTCGGCTTCTCCGAGGGGCTGCAGGGCTCGGCGCTCAACGCCGGCAACTTCACGGCCGCGCGGCGCCGGTTCGGCGACGGCACCATGCACCACCTGTGGTCGAACGCCGCGGCGTCGCTGGCGCCGCTGGTCCGGGCGCCGAACGGCGCGACGCTCTGGTACGACACGCGCGGCATCCCCTTCATGCGCGAGGACGCCAAGGACGCCGCCGAGGTGCAGAAGCAGCAGTCGGCCACGATCACCGAGCTGGTGCGCGAGGGATTCACCGCGGAGTCCGCCGTCCTGGCGGTGCGCAACAACGACTGGACGCTGCTCAAGCACACCGGCCTCGTCAGCGTCCAGCTGCAACGCCCCGGCACCGACCAGGAGCCCGGACCGGCCGGACCCTCGGGAGGAGAGGACTGA	MRLYEKLLGRGGGDAGEERALGPDDWAQFFGPSYAPFLTQTWSSDQEKPSSDAGGPYKNNGPVFSLVLARMQVFAQARFAWTRFNGGAPGDPFGTSELSLLETPWRGGTTADLLARMELDASRAGTAFVRRVADRLSVLPPQWCTVVIGSQEDADHPGEAGDAEVAGLVYAPPNAKGVVLLPEQFGMYAPIPDPSNRFVGMSWITPVIRDVMADDASMTHKRKFFENAATPNLALKFDPNTNVETVRKFKQLLEEEHRGAMNAYKTLYLGGGADPVVIGKDFKELDFAVTQGKGESRLASAAGVPPSWVGFSEGLQGSALNAGNFTAARRRFGDGTMHHLWSNAAASLAPLVRAPNGATLWYDTRGIPFMREDAKDAAEVQKQQSATITELVREGFTAESAVLAVRNNDWTLLKHTGLVSVQLQRPGTDQEPGPAGPSGGED				NA	NA	NA	NA	NA
AK001_02332	165			hypothetical protein	ATGACGCGCATCGCTGCAGTGCTGCTGGCGGTCGGCGTGCTCGCCGTCGTGGCGGGCGTCGCCATGATGCACGTGCCCGCAGCCCTGATCGTGGGCGGCGTGCTCGTCGTCGGGGCCGGCGTGCTCACGCTCGAGCTCCCGCAGGGTAAGGGCGGCGGCGCGTGA	MTRIAAVLLAVGVLAVVAGVAMMHVPAALIVGGVLVVGAGVLTLELPQGKGGGA				NA	NA	NA	NA	NA
AK001_02333	1587			hypothetical protein	ATGCCCTGGGTCGGACCGACCGAGCGCAAGCCGTATCCGTCGCTCGGCTGGTACGCCCTGCAGTGGGCGTACGACGTGCTGCCGTCGCCGCGCGACAACGATGAGCCGCTGATGTTCACCCCGGAGCAGGCGCGCAGCCTGATCGAGTGGTACGCGCTCGACGAGACCGGCAGGCGGTTCATCTACCGCCGCGGGGCGTCGCGACGGTCGAAGGGCTGGGGCAAGTCGCCGCGCGAGGCCGTCAAGGCGATCCTCGCGCTGGTCGGCGACATCGTCCCGGACGGCTTCGACGCCGACGGCGAACCGGTGGGCCGGCCGTGGGGGTCGAAGGGGCTCGCGAACCCGTGGGTGCAGATCGCGGCCGTCTCCGAGGACCAGACCGACAACACCTACGGCGTCATCTACGAGCTGTTGACGGCGAACGATGGCCAGGCCGCCGACGAGCTCGGCATCGACGTCGGGCTGACGCGCTGCTACCTCACGGGCCGGTCGGGCAAGCTCGAGCCGGTCACCGCCTCGGCCGGGTCTCGCGAGGGCCAGCCGGTCACCGAGGCGGTTCTCGACGAGACGCACCTGTGGACCCCGCGCAACGGCGGCGTCTGGCTCGCCCGGACCTTGCGCCGGAACGTCGGCAAGATGAACGGCCGGTCGTACGAGACGACGAACAGCTTCGCCCCCGGCGAGGACTCGGTCGCCGAGGCGACGCACAAGGCGGTCATGAAGGGCGCGGCCGGCATCTACTACGACGCCGTCGAGGCGCCGCCGGTCAAGGAGGACGACCCGGACCCGAAGATCCGCGAAGCGCTGGCCGTCGCCTACGGCGACTCCTGGTGGGTCGACCTCGACCGGCTGGTGGCGGAGATCCGCGACGACGACCAGCCGTGGGAGGACTCCTGCCGGTTCTTCTTCAACTGGAACGTCGACGACCGAGCGAAGGCCGTCGACTCGCGCCGCTGGGCCGAGCTCGCCGAGCCGGGCCCGGAGCCGCCGGCGGGCACCAGGATCGGGCTCGGCTTCGACGGGTCGATCTCGAACGACTGCACGGTCCTGATCGGCACGTACGAGCACGAGGGTAAGCCGCGCACGTTCGAGATCGAGGTCTGGGCGCGGCCTGACGGCGTCGACCGCGGCTGGAGGATCCCGCGCACCGAGGTGCAGCAGCGGGTCCGTGAGGCGTTCGACTACTGGGACGTCGGGCTCATGCTCTGCGACCCGGCGAAGTGGCAGACCGAGATCGAGGGCTGGGCCGAGGAGTTCGGCGAGGAGCGGGTCGTCTTCTTCGACACCAACCAGCCCTTCCGCATGTCCAAGGCCTGCGACCGGTTCTTGACCGCGATCCGCGAGGGCGCCTACGTCCACGACGGCTCGGCCGAGCTCACGGCGCAGGTGCTCGCGATGCACCGGCGCAAGGTCCGCGTCAAGGACGAGGACGACGACGGCCGTACGAAGTTCGTCTTCGTCAAGGGCCCCGACAAGACGATGAAGATCGACGCCGGCATCGGCGCCGTGCTGGCGCTCGAGGCGTTCTCGACCATGCCCGAGGCCGAGGCTCCCCCGGAGCCGTTCTTCCTGACGTCTTCCACCTGA	MPWVGPTERKPYPSLGWYALQWAYDVLPSPRDNDEPLMFTPEQARSLIEWYALDETGRRFIYRRGASRRSKGWGKSPREAVKAILALVGDIVPDGFDADGEPVGRPWGSKGLANPWVQIAAVSEDQTDNTYGVIYELLTANDGQAADELGIDVGLTRCYLTGRSGKLEPVTASAGSREGQPVTEAVLDETHLWTPRNGGVWLARTLRRNVGKMNGRSYETTNSFAPGEDSVAEATHKAVMKGAAGIYYDAVEAPPVKEDDPDPKIREALAVAYGDSWWVDLDRLVAEIRDDDQPWEDSCRFFFNWNVDDRAKAVDSRRWAELAEPGPEPPAGTRIGLGFDGSISNDCTVLIGTYEHEGKPRTFEIEVWARPDGVDRGWRIPRTEVQQRVREAFDYWDVGLMLCDPAKWQTEIEGWAEEFGEERVVFFDTNQPFRMSKACDRFLTAIREGAYVHDGSAELTAQVLAMHRRKVRVKDEDDDGRTKFVFVKGPDKTMKIDAGIGAVLALEAFSTMPEAEAPPEPFFLTSST				NA	NA	NA	NA	NA
AK001_02334	438			hypothetical protein	ATGGCTGGTCGCGGCCCTGCGCCGAAGGACCCGGAGAAGCGCCGCCGGCGGAACGCCGACCCGATGCCGACGACGACGCTCGACGCTGTCGAAAACGTCGAGGTCGTCGAGCCGCCGGAGCTGCCTGGCGAGATCGACTGGCCGGTGGTCACGCTCGCCTGGTGGGCGACGTGGACCAGCTCGCCGCAGGCGCGGGCGTTCACGGCGACCGACTGGGACTTCCTCGTCGACACGGCCCTGCTGCACGCCCGGTTCTGGAAGGGCGACGCGAAGGTCGGCGGCGAGCTGCGGCTGCGGGTCGCGAAGTTCGGGGCGACGCCCGAGGACCGGGCGCGGCTGCGGATGCAGATCGGCGAACCGCAGGAGGCGCCCGGCAAGCGCAGGTCGTCCGGGTCCGGTGACGGCGATGACCCGTACGCCGGCCTCAAGGTGGACTGA	MAGRGPAPKDPEKRRRRNADPMPTTTLDAVENVEVVEPPELPGEIDWPVVTLAWWATWTSSPQARAFTATDWDFLVDTALLHARFWKGDAKVGGELRLRVAKFGATPEDRARLRMQIGEPQEAPGKRRSSGSGDGDDPYAGLKVD				NA	NA	NA	NA	NA
AK001_02335	318			hypothetical protein	GTGGCAGGTCGACCGTGCCTCGACTGCGGGCGCATCGTCATCGGGGACCGACGCGGGCGGGGCACTCGCTGCCCGGCCTGCCAGGCGGGCCGCCCCACCCGCACCGTCGACTGGGCGGAGCGGCAGCGCCGTGCCGAGGTCGTCGCGCAACACCGGGCCGAACACGGCGACTGGTGCCCAGGCTGGGACCGAGCCCCGCACATCTCCGGCGACCTCACCGCCGACCATGTCGTGCCCGTCGCGGCCGGTGGCCGTGAGGACGGACCGCTGCAGGTGCTGTGCCGCAGGTGCAACGGTGCCAAGCGCGACCAGCGCTGA	MAGRPCLDCGRIVIGDRRGRGTRCPACQAGRPTRTVDWAERQRRAEVVAQHRAEHGDWCPGWDRAPHISGDLTADHVVPVAAGGREDGPLQVLCRRCNGAKRDQR				NA	NA	NA	NA	NA
AK001_02336	366			hypothetical protein	ATGGAGACCACGACGATGACGCTGGCCGAGTTCCTGACCGCACGACTGGACGAGGACGAGGCCGCCGCGCGGGAGGCTATCGCCGACCGGGGCCGCGTCCGCCCGGACTACGGGCCCGACTTCGCCTTCGACGCTTGGCCCGACGCCGGAGTGCCGGCCGTCCTCGTCGGCCCCGAGCGCGTGCTGGCCGAGGTCGAAGCGAAGCGCCGGATCGTGGAGCTACACGGGCCGTGGTCGTGGGCCGGCGGCGAGGACTGCTCATCGTGCGGTGACGTGCCGCAGGTCGAGTTCCCGTGCGCCACCCTGCGCGCCCTCGCCCTGCCCTACGCCGACCACCCGGACTACGACGAGGGGTGGCGGCCGTGA	METTTMTLAEFLTARLDEDEAAAREAIADRGRVRPDYGPDFAFDAWPDAGVPAVLVGPERVLAEVEAKRRIVELHGPWSWAGGEDCSSCGDVPQVEFPCATLRALALPYADHPDYDEGWRP				NA	NA	NA	NA	NA
AK001_02337	204			hypothetical protein	ATGAGACAGCGCGAGCGCCGCAAGCCGGACACCGTCGGGACGTGGCTGCTGCTCGTCCTGCTCGCGTTCGCGGTCGTCACGGCTATCGCACGGCTCACCGAGTGGGACGTGATCTACGTGGACCCGGCCGCGCCCTGCGAGGAGGCGGGCGGCGCCTACGTTGACGGCTCATGCCTCGACCCGTCGGTGCTGATCGAGCCGTGA	MRQRERRKPDTVGTWLLLVLLAFAVVTAIARLTEWDVIYVDPAAPCEEAGGAYVDGSCLDPSVLIEP				NA	NA	NA	NA	NA
AK001_02338	738			hypothetical protein	ATGAGCACCGAGCACGAGACCCACGCCGTCGTCCAGGCTCGCCGGCACCTGCGCGACGTCGCCGACGCCTACGTCGAGCTCGAGGAGCGGATGCACAACGGCTCCGAGCGCGTCGGCGGCACCCGGCCCCGCCCCGTCGGCGACGACGGCGAGACCACGGCCAAGATGCCCGCCTCGCCCTCGCCGGCCGACCTGCAGGCCGTCGTCGTGCGCATGGAGATCTCCGCCTGGGCGACGTGGCTGGCCCGGGCCGTGATGGACCACGTCGTCATCGAGCGCTACGTCGGACCCCCGTGGGCCGCGCCCGTCGTCGTCGAGCCGTGGGCCCCGCCGACGACCGACCCCGCGGCGCTGCTGCGCGAGATCGCCGAGCGCCACCTCGGCACGTTCCTCGCCGACCCGCTCGAGGCCGGCGAGTTCCTCGAGGCGGCCGAGCAGCACGCCGGCCGCGCACGGTCCGCCGCCTGGCCGTCCGGCGCCCGCTGGCTCCCGCTCGGCGTCGACTGCCCCGAGGCCGGCACCGACGACATGGGGCGCCGCGTGCCCTGCGGCGGCGAGTACCGGATGTGGATGCGCCCCGAGCAGGACGCGCTCGGCGACATGGTGTGCGACCGCGACGACGCGCACCGCATCACCCCGGCCGAGTGGCAGCGAGCCATGCGCCGGCGACCCATGGACGAGAACGCAGCGGCGCGGCTGGCGCGGACGCTGCGGCTGGCTGGGAGGATCAGGGCATGA	MSTEHETHAVVQARRHLRDVADAYVELEERMHNGSERVGGTRPRPVGDDGETTAKMPASPSPADLQAVVVRMEISAWATWLARAVMDHVVIERYVGPPWAAPVVVEPWAPPTTDPAALLREIAERHLGTFLADPLEAGEFLEAAEQHAGRARSAAWPSGARWLPLGVDCPEAGTDDMGRRVPCGGEYRMWMRPEQDALGDMVCDRDDAHRITPAEWQRAMRRRPMDENAAARLARTLRLAGRIRA				NA	NA	NA	NA	NA
AK001_02339	192			hypothetical protein	ATGAGCCTGCACCTGGACGCCAAGCCGCCCTACGTGCGCGGCGAGTTCGGCGTCACCTACGACATCGGCGGCGGCATCCCCGACGTCGACGGACACCTTCGCACCCTGACCGACGCGCACGGCGCCGACCACCCGGACGTCGACGAGCTGCTCGAGGTCCGCACCATCCTTGCCCGCCAGGAGGACGCATGA	MSLHLDAKPPYVRGEFGVTYDIGGGIPDVDGHLRTLTDAHGADHPDVDELLEVRTILARQEDA				NA	NA	NA	NA	NA
AK001_02340	957			hypothetical protein	ATGACCGACGACGAAGAGGTCTTCTGCAGCCTGTGCTTCGCAGGCGTTGAGTCCAGCGAGCATCACGAGAAGTGCGTTCGCCCAGGCTTCGCGGAGGATGGGGAGCCAGCGACTATCCGCAGCGTCACTGCTGAGGCCGCACGGTGGAAGCGCGTCGCGGCTGACGAGGCCCAGATGCACCACAACAGCGCCGGCATCGCCTGGGACGAACAGCAGAGGGCCGAGAACGCCGAGGCCGCCATCGAGCGAGTGCGGGCGACTCTCGCCTACTACAGGCGCTCCGGGAACGATGCGCCCACCGACGCGATCCTCGCCGCCCTGGACGCCCACAGCGCCGCCTCAGCGCCGACGAGCACGCCGGACGCACCGGAGGGCACGCAGGACGTCAGCGGCGCTCAGCGGGGCGCGGGCCTGCCCACGGCAGCCCATGCGGCGCTGGGTCTCGGCTACGGCATCCGGCAGGCGTTCGGCATGGCCGCCACCGAGGAGCAGGCGCTCGCCCGGCTGCGGGCCACGTACGGCGACCCCGCGAAGGTCGTCGCCGCGATCGAGCAGGCCGTGCTGATCGCCCAGATGGGCGGCGTCGAGGACGGGATGCTCGAGCCGCTGCTCCACCTCGCCGCGGCCCGGCAGATGACCTGGGCGGTCGAGCAGGCCCTGCACACCGTCGGGATCGACACGACGCCGTGGGCCGAGCAGCAGGCGCGCTGGGCGCACGAGTCCACCGTCGAGCTCGCCGCGGACACGTCGAGGGTCGTCGAGGCCGTCGAGCGCCAGGCGCGTGAGCTCCGGGGCGCGTTCCGCGTCGCCCAGGCGGCCGGTCAGATGTTCGGCCCGGGACCGTGCGGTGACCGCCTGTCCGAGCACGGCGAGATCGGCCCCTGTGTCCGTACCGACCGGCACCACGAGCACGACGACGGCCACGGCTACCGCTGGCAGCGAGGGGCGACCCGATGA	MTDDEEVFCSLCFAGVESSEHHEKCVRPGFAEDGEPATIRSVTAEAARWKRVAADEAQMHHNSAGIAWDEQQRAENAEAAIERVRATLAYYRRSGNDAPTDAILAALDAHSAASAPTSTPDAPEGTQDVSGAQRGAGLPTAAHAALGLGYGIRQAFGMAATEEQALARLRATYGDPAKVVAAIEQAVLIAQMGGVEDGMLEPLLHLAAARQMTWAVEQALHTVGIDTTPWAEQQARWAHESTVELAADTSRVVEAVERQARELRGAFRVAQAAGQMFGPGPCGDRLSEHGEIGPCVRTDRHHEHDDGHGYRWQRGATR				NA	NA	NA	NA	NA
AK001_02341	384			hypothetical protein	GTGACCACCGACGACATGACACCCAACGAGGCGGCACGGGCCGACGCAGAGCGGCTGTGGCCTCCGCATCAGACGTTCCACGTCTGGGACGGGAGGACTCCGGTCTCCGGGACGATGTTCGGAGCCCTGATGCGCGACGGCTACGTCAAGGGCCGCGCCGACGAGCGCGCCCGGAGCGTCGCGCGCCCCGCGCCCACCGAGGACGAGGTGGCGCAGACCATCTCATCTGCCGTCGGCGGATGGAACAAGGACACCACGACCATCCGGGACGTCGCCCGCGCCGTCATGGCGCTGTACGAGCACCGCAGCCGGTGCCCACACGTCAGGTGCCCCGGGGACGCGCTGTGCTGCTGCGCCGACGAGGTCGAGGGAGGCACCCGATGA	MTTDDMTPNEAARADAERLWPPHQTFHVWDGRTPVSGTMFGALMRDGYVKGRADERARSVARPAPTEDEVAQTISSAVGGWNKDTTTIRDVARAVMALYEHRSRCPHVRCPGDALCCCADEVEGGTR				NA	NA	NA	NA	NA
AK001_02342	234			hypothetical protein	ATGAAAGCGATCATCACCTGGCAGCAGGTCACCCTCAGCGAGGTCTACATCGAGGCGGAGGACATCGCGAAGATGCGCCTCGACGGAGTGGACCCCGAGGACGGGATGGCCGTCGCTGATTGGATCCGCAAGCAGCCCTGGCTGATCGAAGGGCTGGGGGACAACTGGTTCGAGAAGCACGCACCGGAGATCGATGACGTCGAGCCCCAGACTAACGAGGGGGTTCTGCTGTGA	MKAIITWQQVTLSEVYIEAEDIAKMRLDGVDPEDGMAVADWIRKQPWLIEGLGDNWFEKHAPEIDDVEPQTNEGVLL				NA	NA	NA	NA	NA
AK001_02343	300			hypothetical protein	GTGAGCGCGCCGGGGCGGGTGGAGGTTGACCCGAGCCCTCTCCGACCTCCGCTGCGCCCGTTCTGGGCGTACTGCGAGTCGGGGTGCCCCAAGGCGGACCCGGTCAACCTGCCGATCGACGGCGACCCCTTCCCGTTCGCGTTCCCCACCATCGCCGCTGCCTCTGACGCCCTGCGCGCCCACCTGGCGACCGAGCATGGCGAGCTGTTCCAGCGGTGCCACAACTGCCTCGGGTCCGGCGTCTGCTGCCCCGTCTGCCACGGCTACGGCTGGACCTACACCGAGAGGAAGAACCGATGA	MSAPGRVEVDPSPLRPPLRPFWAYCESGCPKADPVNLPIDGDPFPFAFPTIAAASDALRAHLATEHGELFQRCHNCLGSGVCCPVCHGYGWTYTERKNR				NA	NA	NA	NA	NA
AK001_02344	276			hypothetical protein	ATGACCACCACCGACCCGATCACCCGTGCTGCCGAGTCCCTCTGGGATAGCGCCGGGTGCCCAGAGGGCATTCATCCGCTGGATTACGTACCTGACGCCCGCGCCGCCCTCGCCGCCGCGATCGACCGCGACGAGATCGCGGAAGTGGCGATGACCGTCAAGCTCGGCGCGACAGAGGGCTGCGACTGCGACCTTCCGCCCATGCGACTTGACGACGATGCAGCGTTTGCGATCGCCGACGCCGTGATCGCCCACCTGACGGGAGCGAACCAGTGA	MTTTDPITRAAESLWDSAGCPEGIHPLDYVPDARAALAAAIDRDEIAEVAMTVKLGATEGCDCDLPPMRLDDDAAFAIADAVIAHLTGANQ				NA	NA	NA	NA	NA
AK001_02345	201			hypothetical protein	ATGACACCTGAGCTGCGCCCCGCAGGCGCGGCCCCGGTCAACGTCCGCCGCAGCAGCCTGCACCGCGCCGTCGTGTTCGACGGGGGCGGCATGTGGCTGTGGGCCTGCGAGGCCGGGTGCCCCAGCGCCGACGAGTTCGAGACCCAGCGAGAGGCCGAGATGGCCGCCGGCAAGCACGCCCCCGGGGCGTGGCTGGCATGA	MTPELRPAGAAPVNVRRSSLHRAVVFDGGGMWLWACEAGCPSADEFETQREAEMAAGKHAPGAWLA				NA	NA	NA	NA	NA
AK001_02346	198			hypothetical protein	ATGAGCCCCGAGGAGCTGCCACCCCAGCGCAGCCGGGCGCTGCTCTCGACGCGCTGCGGCTGCTGCGGGCGCCTCGCGCGCCAGATGCGGCCCACCGGTGGCAACCCCGGCGACAAGACGTACGCGATCGCCGCCATCTGCCCCACCTGCGACACCAACCCGCTCGAGCAGAAGCCCGCACCCGAGGAGGAGACATGA	MSPEELPPQRSRALLSTRCGCCGRLARQMRPTGGNPGDKTYAIAAICPTCDTNPLEQKPAPEEET				NA	NA	NA	NA	NA
AK001_02347	195			hypothetical protein	ATGAGCGGCGACCGGCACGTTGCCGGCCCGGACGGGCTGCTGCCCCTCGTGCGCGACCTCGTCGTCTCCCGCGTGGCGAAGGCCGTCGTCGTGACCTGGTTCGCGTGCGGCGAGGTCGTCAACCTCGCCCGCAGCTACCGCCGGCCGCTCGACCCGACGGTGCAGCCGCCCCGCCCCCACCGGAGGCGGTCATGA	MSGDRHVAGPDGLLPLVRDLVVSRVAKAVVVTWFACGEVVNLARSYRRPLDPTVQPPRPHRRRS				NA	NA	NA	NA	NA
AK001_02348	228			hypothetical protein	ATGACCGAGCCTCGGCAGATGACGCGCGCCGGATACGACGGCGGCGCCCGCCTCGACGGCCTGGCCGGCGTGGCCGCGCGTGAGTCCATGGACCCCGCCAGCCCCGGCCTGTGCGGCGCCCCGCACGAGTTCTGGGGCGTGACCTGCAACCTGCCCCCGCACGGCCGCGACGTCCTGCACCAGGCGAGGTCCGAGCATCGCACCCACCTGTGGCACTGGGGGCCGTGA	MTEPRQMTRAGYDGGARLDGLAGVAARESMDPASPGLCGAPHEFWGVTCNLPPHGRDVLHQARSEHRTHLWHWGP				NA	NA	NA	NA	NA
AK001_02349	573			hypothetical protein	ATGAGCACCCCCACCCGAACCGCGAGGGCGGCGATCCTCGGCATCGCTGCGGCGCTGCTGCTCACCCTCGGCGCGACCGCCCCCGCACGGGCCGCCGCTCCCGAGCCGGCGCGCGCCCCGGCCCCGATCGTCCAGACGCACCGCTACGTCGAGCCGCCCCGCAAGGTCGAGCGCTGGGCCGAGCGCCGGTACGACGTGCGCGTCCGCGTCGTGCGCGGCAACCGCGGCATGTGGCACCCGAGCAGCTGTGGTCGCAGCACCTACCGCAACCGCGTCACCGGCTGCGCCGTGCTGTGGCAGCACAAGGAGCCGGTCATCAAGATCTTCGCCCGCCATGGTGCGCCGCGCCGCCTCATCAACAACGCGATCAAGCACGAGCTCGCGCACATCGAGGTGATGCGCAGGTGCGGCACCTACCGGCCGTCGTGGGTCGGCCACCGCGTCGAGCGCGTGACGTCCGCCTACGCCGACCTCTACCTGCGGGGCAGCCGGTACTGGCTCCGGGACGTCATGAACCCCCGCCCCTACTCGTGGGACTACCGGGCCGCCCGGTGGATCTACCGGTGGTGCTGA	MSTPTRTARAAILGIAAALLLTLGATAPARAAAPEPARAPAPIVQTHRYVEPPRKVERWAERRYDVRVRVVRGNRGMWHPSSCGRSTYRNRVTGCAVLWQHKEPVIKIFARHGAPRRLINNAIKHELAHIEVMRRCGTYRPSWVGHRVERVTSAYADLYLRGSRYWLRDVMNPRPYSWDYRAARWIYRWC				NA	NA	NA	NA	NA
AK001_02350	198			hypothetical protein	GTGATCGCCGACCAGCCCGCACCCCGCCCTCACTGCCCCGAGCACGGGATCACCCAGCCGTGCGCCTGCTGCCGTGCCGACCATCACGCCGGCGAGCACGCCGCCCGCCCGTCGGCCCACTGCCCGCGCTGCACCCAGGCGCAGGCCACCCCGACCACCGACACCGCCCGCGCCGCGGCGCACGACCGAGAGGACTGA	MIADQPAPRPHCPEHGITQPCACCRADHHAGEHAARPSAHCPRCTQAQATPTTDTARAAAHDRED				NA	NA	NA	NA	NA
AK001_02351	90			hypothetical protein	ATGACCACCGCTACCTCACATAGCCCCCGGCCGATCTGGACCGCGACCCGCATCCCGGCCTACCTCGACGAGCTGGAGATCGCCCGGTGA	MTTATSHSPRPIWTATRIPAYLDELEIAR				NA	NA	NA	NA	NA
AK001_02352	717			hypothetical protein	GTGGCTCGTAACCACGCCCGCATCCGTCTGGACATCTGGGCCGACGACGACTGGCGCGACCTCACGTCGACCGCCCAGTGGCTGTACCTGTTCCTGCTGTCCACGCCGTCACTGACGTTCGCCGGCATCGCGGACTGGCGGCCCGGACGCATCGCCGCGAACGCCGCGGACCTGATGCGCGAGGACGTCGAGACCTTCGCCGCCGAGCTCATCGCCGGCCGGTTCATCCTCGTGGACGCCGAGACCGAGGAGGTGCTGGTCCGGTCGTTCGTGAAGCACGACGGCCTGATGGCGTCGCCCAACGTCGCCGCAGCGTTCGTCAAGGCCCACGCCGCCATCGCGTCGCCCGTGCTGCGGGCCGTCGTCGTCGACCAGCTGCAGCACCTGCACGACGCCCAGCCCGACCTGCGGGGCTTCACCCGGCGCGAGGTCCAGCGGCTCCTCGAGAAGCGGTCGACCCCCTTCGCCGTGGCTCGCGAAGCCCTCACCGCAGCACTCCCCGAAACCCTCCGCGAAACCCTTCGGGTGGCACTTCCCGAAACCCCTCGGGAGACCCCTTCGGACCAGGAATCGAACCCCTCGGGTAACCCTTCGTCCACTCCTGCTCCCTCTCCCTGCTCCATCTCCGGCACCACTTCATCTGCCCGTAGTGAGTCTCACCAGGGCGGGCCCGCGCTCGCCCGGGCCGAGCTCGACAAGGCCCGGAGGACCGCATGA	MARNHARIRLDIWADDDWRDLTSTAQWLYLFLLSTPSLTFAGIADWRPGRIAANAADLMREDVETFAAELIAGRFILVDAETEEVLVRSFVKHDGLMASPNVAAAFVKAHAAIASPVLRAVVVDQLQHLHDAQPDLRGFTRREVQRLLEKRSTPFAVAREALTAALPETLRETLRVALPETPRETPSDQESNPSGNPSSTPAPSPCSISGTTSSARSESHQGGPALARAELDKARRTA				NA	NA	NA	NA	NA
AK001_02353	393			hypothetical protein	ATGACGACCTGGTACCACGGAGGCGTCCCTGGCCTGGAGGTCGGGGCCCACATCCTCCCGCCGGACATGACCGGCACGGACCGTCGCCTCAGCGCCTACGTCTCGCCTGGCCCCGCGTGGGGCACCCGAACCGACGTCGTCTACCTCGCGCGCCACGAGCAGCACGCCCGCGCGTTCGCTGCGCTCTACCCCGACGGCGCGCTCTACGCGGTCGAGGTCGAGGGGCCGGTTGAGCCCGACCCTGACGCCCCCGACTCCGCCGTCATGGCGCCGTCGGCAGTCGTGACGGCGGTGCTGCGGCCGCGGGTCGCGTTCGCTCACCGGCGCCCCGAGTCATGGCTGCGCCTGCTCACCACACCGCCGACCCGAGAGGAGGCCCACCGTGGCTCGTAA	MTTWYHGGVPGLEVGAHILPPDMTGTDRRLSAYVSPGPAWGTRTDVVYLARHEQHARAFAALYPDGALYAVEVEGPVEPDPDAPDSAVMAPSAVVTAVLRPRVAFAHRRPESWLRLLTTPPTREEAHRGS				NA	NA	NA	NA	NA
AK001_02354	312			hypothetical protein	ATGACCGCCGGCGTCTATGCCTGCCGACGCCCCGCAGGATGCCCGCGCGGCGGCACCCATGCCTGCCAGGCCAACGCCGTCTGGTGGGGCTGCGAGCCCCGCCCGCCGCGCCCGTTCCGCCGCGGCGACACCGTCGTGCGGTTCGGCCACGAGCACGTCGTCGACAAGGCCTGGTGGGACGAGGGCCGCGGGTGGCTCGCCTGCCTCGACTGCGCGCACGGCTTCCACAGCGCCCCGGCGACCGCGGAGCAGCTGACGGCCAAGCATCCCACCCCCTGGACCGAGCCCGACCTGTTCGAGGTGTGCTCATGA	MTAGVYACRRPAGCPRGGTHACQANAVWWGCEPRPPRPFRRGDTVVRFGHEHVVDKAWWDEGRGWLACLDCAHGFHSAPATAEQLTAKHPTPWTEPDLFEVCS				NA	NA	NA	NA	NA
AK001_02355	186			hypothetical protein	GTGACCATCGCCACCTGGCGCGTCGCCCCTATGCGGGGCGGCTCGCGGACCATCAACCACCCGTGGATCGCCGTCGCGCCGGGCTGCCCGACCGACCGGCACCCGACCCGCTGGTGCGCCTGCAAGGTCCACACGAGCGAGGCGAAGGCGCGGGCGTACGTCGCCGAGCAGGAGGCCGCGACATGA	MTIATWRVAPMRGGSRTINHPWIAVAPGCPTDRHPTRWCACKVHTSEAKARAYVAEQEAAT				NA	NA	NA	NA	NA
AK001_02356	564	ruvC_2		Crossover junction endodeoxyribonuclease RuvC	ATGAGGATCGTCGGACTCGACCTGTCCCTGGCCAGCACGGGCCTCGCCGTCGTCCGCCCGTCCGAGCTCCACGGCCCCGGCGCCGTCGCGTCGGTCGACCGCGTGCAGACGAAGCCCGCCGGCGACGAGGTGCTCGCCCGAGCCCGCCGCCTGTCGGACATCCGCGAGGCCGTGCGCGGCTGGACCCGGCCCGCCCCGTACGTCGACCTCGCCGTCGTCGAGGGCCTGGCCTACGACTCGCGCAGCCCGCACGCCACCGAGCGCGCCGGTCTGTGGTGGCTCGTCGTCTACGACCTGCTCGTGCGCGAGATCCCCGTCGCCGTCGTCACGCCGTCGGCCCGCGCGAAGTACGCCACCGGCAAGGGCAACGCGGCCAAGGACGCCGTGCTCGCCGCCGTTGTGCGGCGCTACCCCGACGTCGACGTCACCGGCAACGACGAGGCGGATGCACTCGTGCTCGCCGCCATGGGGGCGCGCCACCTGGGCGACCCGATCGACGACCTGCCCGCCGTGAACCTCGAGGCGATGACGAAGGTCGCCTGGCCCGAGGAGGTGGCGCCGTGA	MRIVGLDLSLASTGLAVVRPSELHGPGAVASVDRVQTKPAGDEVLARARRLSDIREAVRGWTRPAPYVDLAVVEGLAYDSRSPHATERAGLWWLVVYDLLVREIPVAVVTPSARAKYATGKGNAAKDAVLAAVVRRYPDVDVTGNDEADALVLAAMGARHLGDPIDDLPAVNLEAMTKVAWPEEVAP				NA	NA	NA	NA	NA
AK001_02357	240			hypothetical protein	ATGACCCGCTTCACTGCCGTCTGGCAGGTCGTCGACGACACCGTGCCCGCCGCCGAGCTGCTCGACGAGGCGATCGACGACCTCGACGCCGTCGCGTTCCGGCACGGCCAGCGCGTCGTGCGCCGCGGCGCCCCGTCGATCCGGCCCGGGCGCCTCGTGCCCGGCTCGGGCGGTGCACGCCTCGTCGTCGTCATCCACGCCGAGGTCGAGAGGTACGGGACGCTCCGGGTGGTCGCATGA	MTRFTAVWQVVDDTVPAAELLDEAIDDLDAVAFRHGQRVVRRGAPSIRPGRLVPGSGGARLVVVIHAEVERYGTLRVVA				NA	NA	NA	NA	NA
AK001_02358	453	whiB_2		Transcriptional regulator WhiB	ATGGAATACGACACCTGCGCCCCCTGCGGCCGCCCCATGCGCCGCAGCGCCGAGCCGGCCGCCGACCACCCCGGGACCGTCGCCCGGCAGCGCGACGGGCTGTGCCAGTCCTGCGCGCGCGGCCACGTCCCCCGCAGCGACCGCGACCCGCTCACGGCACTGCTGCTGCACACCGGCGCCGCGCTCCCGGCCGACGAGCGCGGCCTGTGCGCCGAGACCGACCCCGAGGTGTTCTACGAGCCCGACGGGCACGGCCAGTCGGGGCTCAAGCATGAGCGCATCAAGGCCGCCAAGACGATCTGCGGGCAGTGCCCGATCCGGCAGGCCTGCCTCGACGTCGCGATCGCGAACCGCGAGCAGTCCGGCGTCTGGGGCGGGCTCACCCCCGAGGAGCGGGGCGTGCGCACGAAGGCGCTGCGCATGGCCGAGTCCCGAGAGCGGGTGGCGTCATGA	MEYDTCAPCGRPMRRSAEPAADHPGTVARQRDGLCQSCARGHVPRSDRDPLTALLLHTGAALPADERGLCAETDPEVFYEPDGHGQSGLKHERIKAAKTICGQCPIRQACLDVAIANREQSGVWGGLTPEERGVRTKALRMAESRERVAS				NA	NA	NA	NA	NA
AK001_02359	963			hypothetical protein	ATGAGCGAGATCGCCACCACCCAGTCCAGCGAGCTTGCCATCGCGCCGCAGCAGAGCGCGTTCACCGAGCAGCAGGTCGCAGCCCTGACGCACATCGGCGTGCAGGACGCCTCACCCGGCGACCTGGCCGTGTTCTTCCACGTCGTACAGCGCACAGGCCTCGACCCGTTCGCCCGCCAGATCTACATGATCGGCCGGCGCACGAAGGACCTGCGCACCGGCGAGTGGACGACGAAGCAGACGATCCAGACCGGCATCGACGGCTTCCGCCTCATCGGCCGGCGGGCCTCGGCCCGCTCCGGCGGCACCATGTCCGTCTCGGCGCCGGAGTGGAGCACCCGCGACGGCAAGTGGGTCGACGTCTGGTCGGCCGAGTGGGGCACCCCGCTCGCCGCCCGCGTCACGATCACCCGCGACGGCGACCCGTTCACCGCCGTGGCGATGTTCGACGAGTACGCGCAGACGACCCGCGAGGACAAGCTGACGCAGATGTGGCGCCAGCGCCCCGCCGGGCAGATCGCGAAGTGCGCCGAGGCCGCGGCCTGGCGGATGGCGTTCCCCCAGGACCTCGCCGGCGTCTACTCCGACGAGGAGCTGCAGCACGCCGACAGTCCGCCGCCCGGCCGCCGCACCGAGCGACGGTCCGCCGCCGGCCTGCTCGACGCCCCGGCCGACGACGCGCCCGCCGACGACGCCCCGCACCCCGCCGAGCCTCCGGCCCCCGAGGAGCCGACCGCCACCGTCGCCGAGCTCATGGCCGCGCTCGAGCGGTCGAACGTCTCGACCGACCCGACCCAGCAGCGCGACTGGGTGAACGGCCACCTGCCCGACGGGCGCGAGGTCCAGTCGCCCAGTGACCTCACCGGCGCCGAGCGCGCCCAGCTGGTCGCGATCCTGCGCAGCAACACCGCGCACGCCCGCGAGGTGCTCGACGCCGCCCAGGACGACGAGGAGGCCCGGTGA	MSEIATTQSSELAIAPQQSAFTEQQVAALTHIGVQDASPGDLAVFFHVVQRTGLDPFARQIYMIGRRTKDLRTGEWTTKQTIQTGIDGFRLIGRRASARSGGTMSVSAPEWSTRDGKWVDVWSAEWGTPLAARVTITRDGDPFTAVAMFDEYAQTTREDKLTQMWRQRPAGQIAKCAEAAAWRMAFPQDLAGVYSDEELQHADSPPPGRRTERRSAAGLLDAPADDAPADDAPHPAEPPAPEEPTATVAELMAALERSNVSTDPTQQRDWVNGHLPDGREVQSPSDLTGAERAQLVAILRSNTAHAREVLDAAQDDEEAR				NA	NA	NA	NA	NA
AK001_02360	867	recE		Exodeoxyribonuclease 8	ATGACCGCCACGACCGAGCTGCAGGGCGTCGTGCGCGACCTCGACGAGAACGTCTACCACGCGCACCCGGCGCTGTCCTCGACGCAGGCACGCCTGCTCCTCGAGCCCGGCGGCCCGGCCCTGTACCGGTACGCCGCCGACCACCCCGAGCCGCCGAAGAAGACCTACGACGTCGGGACCGCCGTGCACACGAAGGTGCTCGGCATCGGCTCCGGCGTCCACGCCTACCCCGCCCACGTGCTGAGCAAGTCCGGCACCACCGGCACCGACGCGGCCCGCGCGTGGGCCGCCGAGATCCGGGCCGGCGGCGGCGTGCCGCTCAAGCAGGCCGAGGTCGACGTCGTCGACGCCATGGCCGAGTCCCTGCTCGCAGTCCCGAAGGCGCGGCGCGTGCTCGAGGTCGCCCCCGGCCGCGAGGTGTCCGTCTTCGCGACCGACCCCGACACGGGCGTCGAGTGCCGGGCCCGGTTCGACATCTTCCCCGACCTCGACGCCGCCGTCGCGATCTCCGGCGACGTCAAGACGACGGCGAAGGGCGCCGACCCGAGGTCGTTCGGCCGGGCTGCCGCCGAGCACGGCTACCCCGTCCAGGAGTCGCACTACCTCGACGTCCTGTCCTGGGCGACCGGCGTCGACGTGCCGTTCGTATTCCTCGTCGTCGAGAAGACCCCGCCCTACCTCGCGGCCGTGCGCGAGCTGCCACCCGACATGCGCGAGGCCGGCGCCATCTACGCCGCCCGGGCCCGCCGCATCTACGCCGACTGCCTCGAGGCCGGCTCCTGGCCCGGCCTCGACCCCGACGACATCACGACCGCGTCGCAGGACTGGTATGTCCGCGCCGCCCGAGCCTTGGAGGAGACCGCATGA	MTATTELQGVVRDLDENVYHAHPALSSTQARLLLEPGGPALYRYAADHPEPPKKTYDVGTAVHTKVLGIGSGVHAYPAHVLSKSGTTGTDAARAWAAEIRAGGGVPLKQAEVDVVDAMAESLLAVPKARRVLEVAPGREVSVFATDPDTGVECRARFDIFPDLDAAVAISGDVKTTAKGADPRSFGRAAAEHGYPVQESHYLDVLSWATGVDVPFVFLVVEKTPPYLAAVRELPPDMREAGAIYAARARRIYADCLEAGSWPGLDPDDITTASQDWYVRAARALEETA				NA	NA	NA	NA	NA
AK001_02361	141			hypothetical protein	ATGAGCCAGATGCAGAACGCCCTCATCAACCCGGACTGCCGCAACGGCTCCCACCGCGCCTGTGTCGGCGACGCCTGGAACGACTTCACCGACGCGCCCACCGAGTGCCGGTGCTCTTGCCACGAGAGGGGTGCGCGATGA	MSQMQNALINPDCRNGSHRACVGDAWNDFTDAPTECRCSCHERGAR				NA	NA	NA	NA	NA
AK001_02362	942	dpnA		Modification methylase DpnIIB	ATGAGCCCGTACTACGAAGACGAGCACGTGACGCTGCACCACGGGTCCGCAGACACCGTCCTCGCCCAGCTCGAGCCCGGCTCAGTCGACTGCATCGTCACCTCGCCGCCGTACTTCGGCCTCCGGGACTACGGCGTCGAGGGCCAGATCGGCGCCGAGCCGTCGCCGGCCGAATTCGTGGGCGCGCTCGTGACGGTGTTCCGTGAGGCGCGCCGCGTGCTCGCCGACGACGGCACGCTGTGGCTCAACCTCGGCGACTCCTACTACTCGGGGCGCGGGGCGCCGACGCAGCCTGACCCCAAGAACCAGGCGCGTCGGCCGGGCGTCCGATCGCTCGACAAGGGTGGCGCGACGTGGGCCAAACCGAAGGATCTGCTCGGCATCCCGTGGCGCGCGGCGTTCGCCCTCCAGGACGACGGCTGGATCCTCCGCAACGACATCATCTGGTCCAAGCCGAACGCCATGCCCGAGTCCGTCGCAGACCGGCTGTCAGGTCGCCACGAGCACGTCTTCATGCTCGCGAAGTCCCGCCGGTACTGGTTCGACCTCGACCCGATCCGGGAGCAGTACAACGGCGATCGTGACGAGTCTCGCCGGGCACGTCGGCCGAACGGCGGATGGAAGGCAAACAGCGCGAGGGGCGAGTGGTCGGGAGAGTCTCGCGGCCGAAACCCTGGCGACGTCTGGACGATCCCGACGCAGCCGTTCCCGGGCGCACACTTCGCCACCATGCCGCCCGCGCTCGCCGAGCGATGCATTCAGGCCGGTTGCAAGCCAGGAGGCGCCGTGCTCGACCCGTTCTCCGGGTCCGGCACCACCGGACTCGCCGCCACCCGCCACGGACGCCGCTACGTCGGCATCGACCTGAGCGAGGAATACCTGCGCCTGTCTCTCGACACCCGCCTCTCTCAGGGCGTCCTCGACTTCGGGGAGGCGTCATGA	MSPYYEDEHVTLHHGSADTVLAQLEPGSVDCIVTSPPYFGLRDYGVEGQIGAEPSPAEFVGALVTVFREARRVLADDGTLWLNLGDSYYSGRGAPTQPDPKNQARRPGVRSLDKGGATWAKPKDLLGIPWRAAFALQDDGWILRNDIIWSKPNAMPESVADRLSGRHEHVFMLAKSRRYWFDLDPIREQYNGDRDESRRARRPNGGWKANSARGEWSGESRGRNPGDVWTIPTQPFPGAHFATMPPALAERCIQAGCKPGGAVLDPFSGSGTTGLAATRHGRRYVGIDLSEEYLRLSLDTRLSQGVLDFGEAS	PGPT0027215_1078	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0027215-EC_2_1_1_72-K00571	NA	NA
AK001_02363	354			hypothetical protein	ATGAGCACCCCCACCGACGCCCAGCTCCACGCCGAGGCCGAGCGCCGCTCGGTCCGCGCCCAGCCCGAGCTCGAGCTCACCGACGCGGTCTGGTGGCTCACCCACGACGCCCTCGTGCCGCCCGAGCACATCAACGGCCTGGTGCTCGACGGCGAGGTGTACGACGTCCGGGCCCACACCGAGCACGGCGTCTGCACGAAGCCCGCCGAGCACCGCAGCGACCACTGCCACGCCATCATCCGCGCCGAGCGAGCCGCCGCCGACGTCATGGCCCACCGCATCCGCCAGCACGGCGGCTGCGGCCAGGTCACCACCCGCACCGTCGCCGCGACCGGATGGGAGGCCGCGCGATGA	MSTPTDAQLHAEAERRSVRAQPELELTDAVWWLTHDALVPPEHINGLVLDGEVYDVRAHTEHGVCTKPAEHRSDHCHAIIRAERAAADVMAHRIRQHGGCGQVTTRTVAATGWEAAR				NA	NA	NA	NA	NA
AK001_02364	378			hypothetical protein	ATGAGCACCGCGACCATCGAGCGCCCGCTCGCCGTCGGTCTGCACGGCGAGCACGCCGTGCACATCCGCGGCCGCGTCGACGCCGTCGACGCCGACACCGTGACGATCGAGGGCTGGCGGCTGCCGATGCGGCTCCTGCCCGGAGTTGTCACCGCCTCGGCGGTCTGGCCCGACGATCCAGTCGAGCAGGAATGCCGTTGCGGCGACGAGTGCGACCGCGACCACTGCGACGACGGAGACTGCCAGACCTCGTGCGAGTGCGAGCAGTCCGACGCCATGCACCGCGCGATCGAGTCGCACCACGACGCCGAGCACGGCGGGCCGTTCATGTGGTGCAGCGACCCGCTGTGCCGCGCGGCGAACGGGGGTGCGCCATGA	MSTATIERPLAVGLHGEHAVHIRGRVDAVDADTVTIEGWRLPMRLLPGVVTASAVWPDDPVEQECRCGDECDRDHCDDGDCQTSCECEQSDAMHRAIESHHDAEHGGPFMWCSDPLCRAANGGAP				NA	NA	NA	NA	NA
AK001_02365	267			hypothetical protein	ATGACCCGCTCCGACCACGCGCGCCGCACCCGCTACGTCGTGACCCAGGCCCGCCGCATCGCCATGCACGGCGGCACGCTCTCCGAGGTCGCCGCGACCGTCGGCATCCCCCGCAAGTCGCTGCCCGGCGTGCTGCGCCGCGCCGACGCCGCCGGGATCGCCGACACCCTCGCCGCGAACCAGGCCGCCTGCGCCACCCCGGGGCGCGTCCTGCGCACCGGCGGGCACCCGGGCGCCGACTCGGACCGACGGGAGGTGCGGAGCTGA	MTRSDHARRTRYVVTQARRIAMHGGTLSEVAATVGIPRKSLPGVLRRADAAGIADTLAANQAACATPGRVLRTGGHPGADSDRREVRS				NA	NA	NA	NA	NA
AK001_02366	606	noc_2		Nucleoid occlusion protein	ATGACCCGCGCCCGCGGTCCCGTCACCGGCAACGTCTCGCTCGACGTGATCCGGGTCCACCCGCACAACGTCCGCGTCGACCTCGGCGACCTGCGAGAGCTGGCCGAGTCGATCCGGGACTTCGGCGTCCTGCAGCCCGTCGTGCTCGAGCAGAACGGCGACACCCTGCGAGTGCGCACCGGACACCGCCGCGTCGCCGCCGCCCGGCTGGCCGGGCTGACCCGGATCCCTGCCGTCGTCCACCCGGACGCCCTGGCTGACGAGGACTGGCTGCGGGCCGCGGTTCACGAGAACACCCGCCGCCGCGACATGGACAACGCCGACCGCGACCGCGCGATCCGCTCCATGCGCGACGCCGGGATGACCGCCGCGGCCATCGCCCGGGACGTGGGCGTCACGGCTACCACTGTGCGGCGAATCCTCAACCCGCCCGAGGCGGCGCCGGCCGAAGGCAAGTCGAAGCGCCGCCCGCCCGCGCTCGTCTCCGCGAAGCGCCTGCGCGCCGACCTCGCCGAGGCCCGTGCCGCCGTCACCGCCGGCGAGCTCGACGCCTGGGGCGTGCTGGCCCGCATCGAGGCCCTGATCCCCGAGGAGGTCGCGTCATGA	MTRARGPVTGNVSLDVIRVHPHNVRVDLGDLRELAESIRDFGVLQPVVLEQNGDTLRVRTGHRRVAAARLAGLTRIPAVVHPDALADEDWLRAAVHENTRRRDMDNADRDRAIRSMRDAGMTAAAIARDVGVTATTVRRILNPPEAAPAEGKSKRRPPALVSAKRLRADLAEARAAVTAGELDAWGVLARIEALIPEEVAS				NA	NA	NA	NA	NA
AK001_02367	195			hypothetical protein	ATGAGCCCCCGCGCGTGGGTCCGCCGCCTGCTGGCGACCCTCAACAGCGACGACAGCATCGGTACCGAGGCGCTCGAGGACGACGAGGCCTGGGCCGAGGCCGAGCGCCGGGTGCAGGCCGGCGAGATGGGCGAGTCCCTGTTCGTCTCCGGCGCCTACTGGGGCGCTCGGCGAGCCGGGGGTGACCGGTCATGA	MSPRAWVRRLLATLNSDDSIGTEALEDDEAWAEAERRVQAGEMGESLFVSGAYWGARRAGGDRS				NA	NA	NA	NA	NA
AK001_02368	600			hypothetical protein	ATGAGCCAGCACACCGCGGAGCGCGAGGGCGACGGCAGGGTGCCGCGCCGCATCCTCTGCCACCACCGCCTGACCACCTTTCCCGTGCAGGGCCGCCTGGTCACCGCTCGCTGCTCGTGCGGCGAGGAGTGGGGGCCGGACCCGCTCGACACCGTCAGGCGCCTGCACGCCGCCCACAAGAAGGAGGCACCCGTGAGCGAGGACCGCGACCCGACCGACCCCGAACTGGACGACCTGCGCGACTACGGCGACATCGACGGCCGCGCGCTGCACGTCGTCGAGACCGACCCGCCGGCCATGGCCCGCGAGCCGATCCCGCTGCGGTCGACGACGGGCCACGCCACCCAGGCCGACGTCATGGCCGGAGCGATGGCCGTCGTCATGGGCGCCCACGCCGACGACCTCCCGCGCGACCTGCGGGACGCGATCGACGAGGGCACGACCAAGGCCCGCCACCTCGAGGACATGGACCACGCCGCCCAGGCGATCGTCGACGCCGCCGACGAGTGGGAGGCCGCCGAGGGCGGCGTCGACGAGGCGCGCAACCTCGCCGACGCCGTGCTCGCCTGGCGTGCCGTCCGGGACGGAGCTCCCCGATGA	MSQHTAEREGDGRVPRRILCHHRLTTFPVQGRLVTARCSCGEEWGPDPLDTVRRLHAAHKKEAPVSEDRDPTDPELDDLRDYGDIDGRALHVVETDPPAMAREPIPLRSTTGHATQADVMAGAMAVVMGAHADDLPRDLRDAIDEGTTKARHLEDMDHAAQAIVDAADEWEAAEGGVDEARNLADAVLAWRAVRDGAPR				NA	NA	NA	NA	NA
AK001_02369	453			hypothetical protein	ATGAGCCGCCTCGCCCGCGCCCTGACCCGCGCACTGGCCGCCGTCGGCCGCAAGGTCTACGCCGTCGACCCCGCGCCCGTCCGCAAGGCGCCCGACGCCGCGCACCCCGGACACCCGGACCACGCAGCCGCCGTCGAGGCGTACATGACCCGGCAGGTCGACCCCGACGCCGCGCTCACCGACGCCGAGCGCGACACGCTCCGCCTCGCCGCCGCGACCGGCGTCATCCGCCCGCCGCTCCCCCGCCGTCAGCCCGCCTGGGCCGACCGCACCCCGCGAGGCGTCCAGCGCCGGCAGGTCTGCGAGGCCGCCGAGATCGCCTACCTGCAGTCCGACGCGGACGGCATGAAGAAGGCGCACCACGCCCTGCTGCAGCACGCCACGCACGGCCCCAGCATCACCGACGTCCTGGCCGACGAGGCCAGCGCCTACCTCGAAGGAGAGGTCCGATGA	MSRLARALTRALAAVGRKVYAVDPAPVRKAPDAAHPGHPDHAAAVEAYMTRQVDPDAALTDAERDTLRLAAATGVIRPPLPRRQPAWADRTPRGVQRRQVCEAAEIAYLQSDADGMKKAHHALLQHATHGPSITDVLADEASAYLEGEVR				NA	NA	NA	NA	NA
AK001_02370	186			hypothetical protein	ATGACCGCCGCCCTCCCCCGGCTCCCCGAGCTGGCCGCGCTGCCGCCGCTCGTCGTCCCGCTGACGATCGACGGCGAGGGGATCACCAGCGCCCAGCGTGACGCCGAGCCGACGCCCGAGTGGGACGCCGCCGTCGCCGAGCACGGCCACCCGACGCCCGCCCGCCTGCTCCCCGTGGCCGGGTGA	MTAALPRLPELAALPPLVVPLTIDGEGITSAQRDAEPTPEWDAAVAEHGHPTPARLLPVAG				NA	NA	NA	NA	NA
AK001_02371	138			hypothetical protein	ATGTTCCAGCGCACCATCCTCTCGGCACTGCAGGGCAAGCACGTCTACGGCGGCACCGTGCCGGCGCACGTGAAGGCCCGCCGCCGGGCGAAGAACCGCGTGGCCCGCCGGTCCCGCCGCATCAACCGGGCCCGGTGA	MFQRTILSALQGKHVYGGTVPAHVKARRRAKNRVARRSRRINRAR				NA	NA	NA	NA	NA
AK001_02372	204			hypothetical protein	ATGTCCGGCGCGAGGAAGGCCTTCACGCTGCGCGACCTCGCCGAGGCCACGCCGTTCTCTGAGGACACGTTCCGGCGGGCGATCGCCGAGACCGACCCCCGGAAGTTCCCGCACCCGATGCGGGCCAAGAAGGACTCGCGCGGCCGCCTGATCGTGCTCGAGCCCGAACTGGACCGCTGGCTGGGGCTGCTGCCCGACGCCTGA	MSGARKAFTLRDLAEATPFSEDTFRRAIAETDPRKFPHPMRAKKDSRGRLIVLEPELDRWLGLLPDA				NA	NA	NA	NA	NA
AK001_02373	255			hypothetical protein	ATGACCACCCTCGACCAGACGATCGCCGACAACGTCCGGGCCGCGATGAAGCAGGAGGGGCTGAGCCAGGAGGACCTGGCCGCCCGCACCGGGATCTCGGAGAGGACCCTGAACCGCCGGCTCGCCGGCGAGAGCGAGTGGGGCACCCGGGAGATCGCCAAGATCGCCCGGTTGTTCCAGGTCAGGGCGTCGGAGCTGCTCAGCCCTGACTTCGACTACTCGCATCTGAGTGTTCTAGCCGCGGAGGTCGCGTGA	MTTLDQTIADNVRAAMKQEGLSQEDLAARTGISERTLNRRLAGESEWGTREIAKIARLFQVRASELLSPDFDYSHLSVLAAEVA				NA	NA	NA	NA	NA
AK001_02374	318			hypothetical protein	ATGACGAGTGAACGGCTCTCGCCAACGGACTACGCCATCGCGGCCCACCTGCGCGCGGCGATGGCCCTGCGCACGCCCGCCTGGAACCAGATGGACCTCGTGCGCGCGTCCGGGATGAAGCAGGCCACGGTGAACGCACTCCTCGCCCCGCGTCGCGGCATGACGATCAACCAGCTGCAGACGCTCGCCGGGGCCCTCGGGCTCAGTGCCGGCGAGATCATGGACGCCGCCGAGGCGACCGTCGTCGAGCGCGAGGCCGAGAAGCTCCGCCGCCGCGACGACGACGGCCCGGGCGATCACGGAGCGGCGGCCGTCTGA	MTSERLSPTDYAIAAHLRAAMALRTPAWNQMDLVRASGMKQATVNALLAPRRGMTINQLQTLAGALGLSAGEIMDAAEATVVEREAEKLRRRDDDGPGDHGAAAV				NA	NA	NA	NA	NA
AK001_02375	1236			hypothetical protein	ATGCCCCCGAAGAAGCGACGGCAGTACGGCACCGGCGGCGTGCGCTACGACGAGACGAAGCGCCGGTGGATCGGCACCATCGAGGCCGGCGTGACCGCGAAGGGCACGCGCCGCCGCCTCAAGGTCTCCGGCCGCTCCGAGGCCGAGGCGAAGGCCAAGCTCAAGGAGAAGCAGCGACAGATCGCCGCCGAGGGGCTGCCCGTCGAGGGCGCGTCCGCGAAGGCGACCGTCGCGTCGTGGGCGAAGGTCTGGACCGAGCGCCGCGAGGACGAGGTGCGCTCGAGCACGTCGAGCAACGACGTCTCGCAGGTGCGCCGGTGGATCATCCCGACGATCGGGCACGTGCGCCTCGAGCAGCTCACGCCGGCGCACCCCCGGCAGGTCACCGCGGCGCTGCGCTCGGCCGGCCGCGCCGAGTCGACGGCGCTGCGCGCGCAGACCGTGCTCAAGAAGATGCTTCGCGACGCCGTCGTCGAGGGCTACCGGGTGCCGCAGCGCATCCTCGAGATGCCGAACCCGGAGCGCGGCGTGATCGACCGCGACGCCGTGCCGCTCGCCGACGCGATCGCGCTCCTGCAGGTCGCCTCCGGCCTGCCGGACGGCTCGCGCTGGGTCGCCGCGTTCCTGCAGGGGATGCGCCAGGGCGAGTGCCTGGGGCTGACGTGGGACCACGTCGACTTCGACCGCAAGGTGATCGACGTCGCCTGGCAGCTCGACGCGCTGCCGTACCGGGTGCCGCGCGACCGCAGCTCGGGCTTCCGCATCAAGCCGGGCACGCCGCACCGCCAGCTCGTCGGCCGCTGGCACCTGGTGCCGCCGAAGTCGAAGTCGGGTACGCGCGTCATCCCGCTGCTGCCGTGGATGGAGTCGGCACTGCTCGCCTGGCGCGAGGTCGCCCCACCCAGCCCGCACCGGCTCGTCTGGCCGGCGGCCGACGGCGGGCCGCGCGACGACAAGGACGACTCGGCCGCCTGGTACGCCCTGCAGGACGCCGCGCAGGTGGCCCACACCGCCGACGGCCCGGCCGGTATGCTCGTCGGGCGCCGCTACGCCCTGCACGAGGCGCGGCACACGACCGCGACCCTGCTCATGGAGGCCGACACCCCCGACACCGTCATCACGGCGATCCTGGGGCACAGCTCGATGGTCTCCTCGCGGGCATACCTGCACGCCTCGCAAGGTATGACCCGCGGCGCGCTCGAGACCATGGCCGGACGCCTGGGCCTGACCGGCTAG	MPPKKRRQYGTGGVRYDETKRRWIGTIEAGVTAKGTRRRLKVSGRSEAEAKAKLKEKQRQIAAEGLPVEGASAKATVASWAKVWTERREDEVRSSTSSNDVSQVRRWIIPTIGHVRLEQLTPAHPRQVTAALRSAGRAESTALRAQTVLKKMLRDAVVEGYRVPQRILEMPNPERGVIDRDAVPLADAIALLQVASGLPDGSRWVAAFLQGMRQGECLGLTWDHVDFDRKVIDVAWQLDALPYRVPRDRSSGFRIKPGTPHRQLVGRWHLVPPKSKSGTRVIPLLPWMESALLAWREVAPPSPHRLVWPAADGGPRDDKDDSAAWYALQDAAQVAHTADGPAGMLVGRRYALHEARHTTATLLMEADTPDTVITAILGHSSMVSSRAYLHASQGMTRGALETMAGRLGLTG				NA	NA	NA	NA	NA
AK001_02376	855	yvgN_1	COG0656	Glyoxal reductase	ATGATGCTGAACGAGAACTACACCCTGTCGAACGACGTGGCCGTCCCCCGCATGGGCCTGGGCACCTGGTTCATCGACGACGACTCGGTGGCCGAGGCCGTCCGCGCCGCCGTCGAGATCGGCTACCGCAACATCGACACCGCGCAGGCCTACGGCAACGAGCGTGGCGTCGGCGAGGGCATCCGGACCTCCGGCGTCGCCCGCGAGGACCTCTTCGTGTCGACCAAGCTGGCCGCCGAGGTCAAGTCCTACGACGAGGCGACCGCGTCGATCGACGAGTCGCTGGCGACCATGGGTCTGGACTACATCGACCTGATGCTGATCCACAGCCCGCAGCCCTGGGACGACTTCCGCGGCGGCGACTACGCCGACGGCAACCGCGAGGCCTGGCGGGCCCTCGAGGACGCCTACAAGGCCGGCAAGCTGCGCTCGATCGGCGTGTCGAACTTCGAGCAGAAGGACCTCGAGAACCTGCTGGAGGGCAGCACGGTCACGCCGCACGTGAACCAGCTGCTCGTGCACGTGGGCAACACCCCGTTCGAGCTGCTCGACTTCTGCGAGAGCCACGGCATCCTCGTCGAGGCCTACTCGCCCATCGCGCACGGCGAGATCCTCAAGGACTCGAACGTCGCGGCGATGGCGGAAAAGTACGGCGTGACGGTCCCGCAGCTGTGCATCCGCTACACGCTGCAGCTCGGCACGGTCCCCGTGCCGAAGACGGCCAACCCCGCGCACATGCGCAGCAACGCCGAGGTCGACTTCGAGATCTCGGACGAGGACATGGACACGCTGCGCGGTGTGCACTTCCGCGACTACGGCGAGAACAGCGTCTTCCCGGTCTACGCCGGCAACTGA	MMLNENYTLSNDVAVPRMGLGTWFIDDDSVAEAVRAAVEIGYRNIDTAQAYGNERGVGEGIRTSGVAREDLFVSTKLAAEVKSYDEATASIDESLATMGLDYIDLMLIHSPQPWDDFRGGDYADGNREAWRALEDAYKAGKLRSIGVSNFEQKDLENLLEGSTVTPHVNQLLVHVGNTPFELLDFCESHGILVEAYSPIAHGEILKDSNVAAMAEKYGVTVPQLCIRYTLQLGTVPVPKTANPAHMRSNAEVDFEISDEDMDTLRGVHFRDYGENSVFPVYAGN	PGPT0001320_1275	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221	NA	NA
AK001_02377	852			hypothetical protein	GTGTCCGAGTTCGAGTTCTCCGCGGTGCCTCGAGTCACCGTCCTGCAGCACAGCTCCGACGTCCCCGTCGACCGGTGGCGGTCGGCGCTCGGCGACACCCGCGTGGTCCGGCTGTTCGCCGGCGAGCCCGTCCCGACGCTCGCCGAGTGCGGCGACGGTCTCGTGGTGCTGGGCGGCCAGATGAACGCCTACGCCGACGACGAGGCCCCCTGGCTGCCCGGCGTCCGGTCGCTCCTGGCCGAGGCCGTCGCCGCCGACCTGCCCACTCTCGGGGTCTGCCTCGGGGCGCAGCTCCTGGCCGTGGCCGGCGGGGGCACCGTGACCGTGGCCGCCCCGCCCGGGCGCGAGGCCGGCGTCGTCCCCGTCTACTGGCGCACCGAGGCCCTCGCCGACCCCGTCGTCGCCCCGCTCGCGCGGGCCGCCGGCGCCGAGGACACCGAGGACCTCGACGGTCGGGGCGCCGCGACGTCGTTCGTGCAGATGCACGCCGACGCCGTGATCGAGCCGCCGCAGGACGCGCAGTGGCTGGCGTGGTCGGAGATGTACCCCTACCAGGCGTTCCGGTGGGGGTCGGCGCTCGGCGTGCAGTTCCACCCCGAGGCCGGCCCGACGACGGCGGTGCGCTGGGCGCTCGCGCACGTCGACGTGGAGACGGCTGCCGTGCACGCGCAGATGGTCGAGCACGACGTCGAGCTCGCGCGCTCGGGGGCGATGCTGGCCGAGGCGTTCCTGGGCCAGGTGGCCGCCGGCGTCGGACGGGGCGCCGACGCGCGGGCAGACGACGCGGGCGACGACGTCGGGCACGAGGACGAGCGGGCCGTCGAGACGCCGACCGACGCCGAGGCCGCCTGA	MSEFEFSAVPRVTVLQHSSDVPVDRWRSALGDTRVVRLFAGEPVPTLAECGDGLVVLGGQMNAYADDEAPWLPGVRSLLAEAVAADLPTLGVCLGAQLLAVAGGGTVTVAAPPGREAGVVPVYWRTEALADPVVAPLARAAGAEDTEDLDGRGAATSFVQMHADAVIEPPQDAQWLAWSEMYPYQAFRWGSALGVQFHPEAGPTTAVRWALAHVDVETAAVHAQMVEHDVELARSGAMLAEAFLGQVAAGVGRGADARADDAGDDVGHEDERAVETPTDAEAA	PGPT0021580_5805	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951	NA	NA
AK001_02378	603			hypothetical protein	ATGGCCTCCCCCTTCTCCGAGCCGACCACCGTGCCGGCGCGCGGCACCGCGCGCACCACCTACCTGCTGGTGGACGGCGAGAACATCGACGCCACCCTCGGCATGAACGTCCTCAACCGTCGTCCGAACCCCGAGGAGCGGCCCCGCTGGGACCGGATCACCGGGTTCGCCCAGCGCGTCTGGGGGCAGGACGTCGTCCCCCTGTTCTTCCTCAACGCCACCAACGGCCAGATGCCGATGTCGTTCGTCCAGGCGCTGCTGGCGATGGGCTACCGTCCGATCCCGCTGGCCGCCAGCGGGGACGAGAAGGTCGTCGACGTCGGTATCCAGCGCACCCTGGAGGCCATCGCCGACCGCGACGCGGACGTGCTGCTGGCCAGCCACGACGGCGACTTCCTGCCGCAGATCGAGCGGCTCCTCGACGAGGACCGGCGGGTCGGCCTGCTGGCGTTCCGCGAGTTCGTCAACATGCAGCTCGCGGGGCTGACCACCTCCGGCCTGGAGATCTTCGACCTGGAGGGCGACGTGGACGCGTTCACGAGCCCGCTGCCGCGTGTGCGGATCATCCCGATCGACGAGTTCGACCCGCTGCGCTTCCTCTGA	MASPFSEPTTVPARGTARTTYLLVDGENIDATLGMNVLNRRPNPEERPRWDRITGFAQRVWGQDVVPLFFLNATNGQMPMSFVQALLAMGYRPIPLAASGDEKVVDVGIQRTLEAIADRDADVLLASHDGDFLPQIERLLDEDRRVGLLAFREFVNMQLAGLTTSGLEIFDLEGDVDAFTSPLPRVRIIPIDEFDPLRFL				NA	NA	NA	NA	NA
AK001_02379	1392			hypothetical protein	GTGACCCAGCAGTCCCCGCCCGAGCAGCCCGTCCGTCCCGTCGGTCGCGGACCCGTGGTGCGCCGTTGGGTCGCCGGCGCGATGGTCGTGATCACCACGTTGCTGGTGGTGGCCTCCTGCCTCGCCCTGTGGGCCCACCGCACGGTGCTCGACACCGACCATTTCATGGACACCGTCGAGCCCGCGCTGGACGACCCGGCGTTCTACGACGCCCTGGCCGACACCGTCTCCGACGAGGTGCTGCTCGCGCTCGACCTCGACACCCGGGTCGCGGAGCGTCTCGACCAGCTCGACGCCGCGCTCGTGGCAGCCCTGGCGGCCCGTGTCGACGTCGAACCCGGTCCGCTGCTGGAGGCGCTGGGCGGGCAGGTCGAGCGGCCGTCGCTCGCCGCCCTGACCCCGTTGATCGTCGAACCGCTCGAGGAGCGGGTCGACTCCGCCGTGGACCGCGCCCTCACCTCCGACGCCGTCGCGGACCGGGTGCCGCAGCTCGTCGAGCGTGCGCACGCCGGGGTGGTCGCCGTGGCCCGGGCCGACGTCGACGAACGACCGAACGTCTACCTGACCGACGACGCGGTCATGCTCAACACGCTGCCGTTGGTCGCCGACGCGCTGCGCGAGTCGCTCGGGGAGGCGGGGGCCGTCGTCGGCGACATCCCCGTGCCGGACGCGGTGTCCGAGCGGGCGCCGGAGGCGCGGGAGCAGCTCGTCGAGGCGCTCGGCCGGCAGCTCCCCGAGGGCTTCGGCCAGGTGGAGCTGATGGACCGGGAGACCTTCGACGGGGTCCAGGGCGCGGTGACGCTCGTGGACCGGGCCGTGTGGGCGCTGGTGGCGCTGACGGTGCTGGCGATCGTGGCCACGGTGTGGGTCGCGCCGGACCGGCGCCGCGGCGCCGTCCAGCTCGCCCTCGGGGTGCTCGCCGGCGTCGTCGTGGTCACGGCGCTCGTCGCCCAGCTGCGCACCCTGGTGGTGGACGTGGCGCGCACCGCGGACGGCGAGCGGGTCGCGACCACCCTCTACGAGGCCGTCGCGGGGGAGATCCACGAGATCTTCTGGCTCGTGGGTGTCGTCGCGGTCGTGACCGTCGTGGTCGGCGTGCTGCTCGGTCGTCCGCGCTGGCTGGTCGCTGCGGGCCGCCGCTGGCCGTGGGTGGCCACGGTCACCGCCCAGGACGGCCGGCTCGCCCGCTGGGTCGGCGCGCACGCCGACGCGCTGCGCGTCGCCGTACTGGTCGCGGCCGTCCTCGTCGTGGTCCTGACCGGCTTCCTGTGGGTGGTGCTCGTGCTGACCGTCCTGGGCGCGATCGCGGCGCTGTGGGCGATCACGATCGCCCAGCGGTCCGCGGCGCTGCCCGGCGAGCGCCGGCGGGACGTGCCCGCCGACGTCGCGTAG	MTQQSPPEQPVRPVGRGPVVRRWVAGAMVVITTLLVVASCLALWAHRTVLDTDHFMDTVEPALDDPAFYDALADTVSDEVLLALDLDTRVAERLDQLDAALVAALAARVDVEPGPLLEALGGQVERPSLAALTPLIVEPLEERVDSAVDRALTSDAVADRVPQLVERAHAGVVAVARADVDERPNVYLTDDAVMLNTLPLVADALRESLGEAGAVVGDIPVPDAVSERAPEAREQLVEALGRQLPEGFGQVELMDRETFDGVQGAVTLVDRAVWALVALTVLAIVATVWVAPDRRRGAVQLALGVLAGVVVVTALVAQLRTLVVDVARTADGERVATTLYEAVAGEIHEIFWLVGVVAVVTVVVGVLLGRPRWLVAAGRRWPWVATVTAQDGRLARWVGAHADALRVAVLVAAVLVVVLTGFLWVVLVLTVLGAIAALWAITIAQRSAALPGERRRDVPADVA				NA	NA	NA	NA	NA
AK001_02380	747	tcrX	COG0745	putative transcriptional regulatory protein TcrX	ATGGCCACCACCGACGCCAACGCACCCGAGGCACGCCTCGTCGTGGTCGACGACGAGCCCAACATCCGCGAGCTGCTGTCCACCTCGCTGCGCTTCGCCGGCTTCGAGGTGCACGCCGCCGAGGACGGGGCCGGTGCGTTGCAGCTGGTGCGGGACACCGAGCCGGACCTGGTGGTGCTCGACGTGATGCTGCCCGACATGGACGGGTTCACCGTCACCCGACGCATGCGTGCCACCGGTCGGCACACACCGGTGCTGTTCCTGACCGCGCGCGACGACACCCAGGACAAGGTCCAGGGGCTGACGGTCGGCGGCGACGACTACGTGACCAAGCCGTTCAGCCTCGAGGAGGTCGTGGCGCGCATCCGCGCCGTCCTGCGCCGCACGGCCGGCGGCGAGCCCGAGGACGACGCCGTGCTGCGCGTGGGGGACCTGGAGCTCGACGAGGACTCCCACGAGGTGCACCGCGCCGGGGTGGAGATCGACCTCTCCCCCACCGAGTTCAAGCTGCTGCGCTACCTCATGCTCAACGCCGGCCGGGTGCTGTCCAAGGCGCAGATCCTCGACCACGTCTGGCAGTACGACTGGGGCGGGGACGCCAACATCGTCGAGTCCTACATCTCCTACCTGCGCCGCAAGATCGACCACGTGACGGTCCCCGGACCCGACGGCGCCGACGTCGACCTCCCGGCCCTCATCCACACCAAGCGGGGCGTGGGCTACCTGCTGCGGACCACGCCGCGATGA	MATTDANAPEARLVVVDDEPNIRELLSTSLRFAGFEVHAAEDGAGALQLVRDTEPDLVVLDVMLPDMDGFTVTRRMRATGRHTPVLFLTARDDTQDKVQGLTVGGDDYVTKPFSLEEVVARIRAVLRRTAGGEPEDDAVLRVGDLELDEDSHEVHRAGVEIDLSPTEFKLLRYLMLNAGRVLSKAQILDHVWQYDWGGDANIVESYISYLRRKIDHVTVPGPDGADVDLPALIHTKRGVGYLLRTTPR	PGPT0002665_1055	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658	NA	NA
AK001_02381	1494	sasA_6		Adaptive-response sensory-kinase SasA	ATGACCGACCCGCGTCCCGACAGCGGGCGCCGCTGGAGCTGGGTCGCGCGCACGCCCCTGCGCGTCCGTCTGGTGGCGATCATCGTCCTGCTGCTCGGCGCCGGGCTCGTGCTGGCCGGGCTGACGACCCGGACGGTGGTGTCGAACTACCTCGTCGACGAGCTGGACAACCAGCTCACCCAGTCCGCCCAGAGCGTGGCGCGCCTGACGACGCTGAACCCGGCCGAGGGCGGCCAGCGCATCCCCAGCGACTACGCGGTGACGCTGCGCAGCTGCAACGGGCTCGACGGCGGCCCGGTGGGCTGGGAGGAGACCCTCGACCGCTTCGGCGAACCGGAGATCCCCGACGAGTCGCTGGACACCGTCGTGGCCCGCGGGATCAAGCCGTTCACGGTGGGCTCCTCCGGCGGCGGCGACCCGTCCCAGTGGCGCGTCGTGTCGATCCCGTGCAGCCCGTTCCGCGGCGCGGAGGTGCAGGGCGCCGCCTACGTCGCGCTGCCGATGGCGGACGTCGAGGAGACGAGCGAGTACCTGGGCCGTTCGCTGCTGTGGATCGGTCTCGGCATCGTGCTGCTCGGCGGGGCCCTGGCGCTGTGGCTGGTGCAGCGCGCCTTCCGGCCGCTGCGCCGCATCGAGGCGACGGCGGCCGCGATCGCCGAGGGCGACCTGTCGCAGCGCGTGCCGGAGGACCAGCCCGCCAGCACCGAGGTCGGGTCGCTCTCGCTGTCGTTGAACGCGATGCTCACCCAGATCGAGGCGGCGTTCGCCGCCCAGGAGGCCTCGGAGCAGCGCATGCGTCGGTTCGTCTCGGACGCCAGCCACGAGCTGCGCACGCCGCTGGCCACGGTCAAGGGGTACGGCGAGCTCTACCGGATGGGCGCCCTGGACTCGCCCGACAAGGTCGAGGACACCATGGGCCGGATCGAGGACTCGGCACGCCGGATGGGCTCGCTGGTGAACGACCTGCTGGTGCTCGCCCGGCTGGACGAGGGCCGTCCGCTGCGCCGGGAGCCCGTGGACCTGGCCGCCCTGGCCCGGGACACCGCCCAGGACCTGCACGCCCTGGACCCGGGACGCACCGTCCACGTGACCGGACTGCGGCCCGGCGAGCCCCCGCCGTCGTCCCTGCCGGTCACGGGTGACGCCGACCGGCTGCGGCAGGTGCTGACCAATCTGGTGGGCAACGTCGCCCGGCACACGCCGGCCGGCTCGCCGGCGGAGCTGGCCGTGGGCACGTCGCCCGAGGGCGACGCCGTGGTCGAGGTCCGCGACCACGGACCGGGGGTCTCCGCGGAGCAGGCGGACAAGATCTTCGAACGGTTCTACCGGGCGGACTCCTCGCGCAACCGGGAGTCCGGGGGCTCGGGCCTCGGCCTGGCGATCGTGGCCGCGATCCTGGGGGCCCACGGCGGCAGCACCTCGGTGCACGAGACGCCCGGCGGCGGTCTGACCGTGCGGGTTCAGCTTCCGCGCGCGGGCGGCTACGATGCGTGA	MTDPRPDSGRRWSWVARTPLRVRLVAIIVLLLGAGLVLAGLTTRTVVSNYLVDELDNQLTQSAQSVARLTTLNPAEGGQRIPSDYAVTLRSCNGLDGGPVGWEETLDRFGEPEIPDESLDTVVARGIKPFTVGSSGGGDPSQWRVVSIPCSPFRGAEVQGAAYVALPMADVEETSEYLGRSLLWIGLGIVLLGGALALWLVQRAFRPLRRIEATAAAIAEGDLSQRVPEDQPASTEVGSLSLSLNAMLTQIEAAFAAQEASEQRMRRFVSDASHELRTPLATVKGYGELYRMGALDSPDKVEDTMGRIEDSARRMGSLVNDLLVLARLDEGRPLRREPVDLAALARDTAQDLHALDPGRTVHVTGLRPGEPPPSSLPVTGDADRLRQVLTNLVGNVARHTPAGSPAELAVGTSPEGDAVVEVRDHGPGVSAEQADKIFERFYRADSSRNRESGGSGLGLAIVAAILGAHGGSTSVHETPGGGLTVRVQLPRAGGYDA	PGPT0004100_636	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484	NA	NA
AK001_02382	729			hypothetical protein	ATGGGCGTGCTCCACGCCGACGCACCACAGTGGTTCCTCTCCGCGTTCGTCCGGACGTGTCACGGAGCCGGCGCCACCGCCTCGGAGGACGACGTCCGAGCGGTCGGGACCGAGCTCATCGACCGATGGTCGGAGACGGATCGCCACTTCCACAACCTGCGCCATCTCGCCGCCGTCCTGCACCGGGTCGACGAGCTCGCGCACGAGACGCACGAGCCGGACCTGGTCCGCCTCGCGGCCTGGTACCACGGCGCCGTGTTCGACGCCGACCGCAAGATCGCCTACGCGACGCGCGGCGGCGAGCAGACCACGTTGAGCGCCGAGCTGGCACGCGACCAGCTCATCGGGCTCGGAGTGCCCGCCCCGCGGGCCGATCGCGTCGCCGAGCTGGTCGAGACCATGGCCCGCCACAAGGCGCTGCCGGGGGACTTCGACTCGGCGGTGCTCAACGACGCCGACCTCGGCATGCTGGCCGCGGAGCCGCAGCGCTACAAGGAGTACGTGGCGGCGATCCGCGCCGAGTACGCGCACATCCCGCTCCCGGACTACCTCGACGCGCGGATCAAGGTGATCTCGAAGCTGCTCGGGCGGCCGCAGCTCTTCGTCAGCCCGCTGGGGCTGACGTGGGAGGAGCCGGCCCGGCAGAACCTCGACGCGGAGCTCCACCGGCTGGTCAAGGAGCGTCGTCGGCTCGAGGCCCAGACCCCCGCGGGGCCGGCCCGCCAGTAG	MGVLHADAPQWFLSAFVRTCHGAGATASEDDVRAVGTELIDRWSETDRHFHNLRHLAAVLHRVDELAHETHEPDLVRLAAWYHGAVFDADRKIAYATRGGEQTTLSAELARDQLIGLGVPAPRADRVAELVETMARHKALPGDFDSAVLNDADLGMLAAEPQRYKEYVAAIRAEYAHIPLPDYLDARIKVISKLLGRPQLFVSPLGLTWEEPARQNLDAELHRLVKERRRLEAQTPAGPARQ				NA	NA	NA	NA	NA
AK001_02383	291			hypothetical protein	GTGCGATACGAGGTCGACAGCGATCGGGTGGCGCAGGCGAGCGCGGCGGTGAACGGTTCCGTCGGGGCGATCCGCGCCGAGGTCGGGGCGATGATGCGTCACCTGCAGGATCTCCAGGCGAGCTGGCACGGCAGCGCGGCGACGTCGTTCGCCGGCGTGATGACGCAGTGGCAGTCCGCCCAGACCCAGGTCGAGACCGCCCTGGACTCGGTCACCACCGCTCTGCAGGCGGCGTCGCAGACCTACTCCGACGCGGAGAGCCAGGCGACCCGCCTCTTCGCGACCCGCTGA	MRYEVDSDRVAQASAAVNGSVGAIRAEVGAMMRHLQDLQASWHGSAATSFAGVMTQWQSAQTQVETALDSVTTALQAASQTYSDAESQATRLFATR				NA	NA	NA	NA	NA
AK001_02384	1632	groL1	COG0459	60 kDa chaperonin 1	ATGGCCAAGATGATTGCGTTCGACGAGGAAGCTCGTCGGAGCATGGAGCGCGGGCTCAACCAGCTCGCCGACACCGTCAAGGTGACGCTCGGCCCCAAGGGTCGCAACGTCGTCCTGGACAAGAAGTGGGGCGCCCCCACGATCACGAACGACGGTGTCTCCATCGCCAAGGAGATCGAGCTCGAGGACGCCTACGAGAAGATCGGCGCCGAGCTCGTCAAGGAGGTCGCCAAGAAGACCGACGACGTCGCGGGTGACGGCACCACCACCGCCACCGTGCTGGCCCAGGCGCTCGTGCGCGAGGGTCTGCGCGTCGTCGCCGCCGGTGCCAACCCGATCGCCGTCAAGCGCGGCATCGAGAAGGCGACCGCCGCGGTGACCGAGCAGCTGCTCAACGCCGCCACCGAGGTCGAGACCAAGGAGCAGATCGCGGCCACGGCCGGTATCTCCGCGGGCGACCCGGCGATCGGCGAGCTCATCGCCGAGGCCCTCGACAAGGTCGGCAAGGAGGGCGTCGTCACCGTCGAGGAGTCGAACACCTTCGGCCTCGAGCTCGAGCTCACCGAGGGCATGCGCTTCGACAAGGGCTTCCTCGCCCGCTACTTCGAGACGGACCCGGAGCGCCAGGAGGCCGTCCTCGAGGACCCGTACGTCCTGATCGTCGAGTCGAAGATCTCGAACGTCAAGGACCTGCTGCCGCTGCTCGACCAGGTCATGAAGACCAACCGGTCGCTGCTGATCATCGCCGAGGACGTCGAGGGCGAGGCCCTGGCGACCCTGGTGCTGAACAAGATCCGCGGCACCTTCAAGTCCGTCGCCGTCAAGGCCCCGGGCTTCGGCGACCGCCGCAAGGCCATGCTGCAGGACATCGCGATCCTGACCGGCGGCCAGGTCATCACCGAGACCGTCGGCCTCAAGCTGGAGAACGCCACGCTCGAGGAGCTCGGCCAGGCGCGCAAGGTCGTCGTCACCAAGGACGAGACCACGATCGTCGAGGGTGCCGGCGACGCCGACCTCATCGAGGGCCGCGTCCAGCAGATCCGCTCCGAGATCGACAAGTCGGACTCGGACTACGACCGCGAGAAGCTCCAGGAGCGCCTCGCCAAGCTGGCCGGCGGCGTGGCCGTCATCAAGGCCGGCGCGGCCACCGAGGTCGAGCTCAAGGAGCGCAAGCACCGCATCGAGGACGCCGTCCGCAACGCGAAGGCTGCCGTCGAGGAGGGCATCGTCGCCGGTGGCGGCGTCGCGCTGCTGCAGGCCGGCGCCGTGGCGTTCGAGAAGCTGGAGCTGGACGGTGACGAGGCGACCGGTTCGCAGATCGTCAACGCGGCGATCTCGGCCCCGCTGAAGCAGATCGCCATCAACGCCGGCCTCGAGGGCGGCGTCGTGGCGGAGAAGGTCAAGAACCTCCCCTCGGGCCACGGCCTGAACGCCGCGACCGGCGAGTACGAGGACCTGCTGGCCGCGGGCGTCAACGACCCGGTCAAGGTCACGCGCTCGGCGCTGCAGAACGCCGCGTCCATCGCCGCGCTGTTCCTCACCACCGAGGCGGTCGTCGCCGACAAGCCGGAGCCCGCCGCGGCGCCGGCCGGTGACGGCGGCATGGGCGACATGGGCGGCATGGGCTTCTGA	MAKMIAFDEEARRSMERGLNQLADTVKVTLGPKGRNVVLDKKWGAPTITNDGVSIAKEIELEDAYEKIGAELVKEVAKKTDDVAGDGTTTATVLAQALVREGLRVVAAGANPIAVKRGIEKATAAVTEQLLNAATEVETKEQIAATAGISAGDPAIGELIAEALDKVGKEGVVTVEESNTFGLELELTEGMRFDKGFLARYFETDPERQEAVLEDPYVLIVESKISNVKDLLPLLDQVMKTNRSLLIIAEDVEGEALATLVLNKIRGTFKSVAVKAPGFGDRRKAMLQDIAILTGGQVITETVGLKLENATLEELGQARKVVVTKDETTIVEGAGDADLIEGRVQQIRSEIDKSDSDYDREKLQERLAKLAGGVAVIKAGAATEVELKERKHRIEDAVRNAKAAVEEGIVAGGGVALLQAGAVAFEKLELDGDEATGSQIVNAAISAPLKQIAINAGLEGGVVAEKVKNLPSGHGLNAATGEYEDLLAAGVNDPVKVTRSALQNAASIAALFLTTEAVVADKPEPAAAPAGDGGMGDMGGMGF	PGPT0014570_5309	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077	NA	NA
AK001_02385	651			hypothetical protein	GTGACGAAGAGCCACTACCCGTACCCGCCCGACGAGTTCGACGTCCGCGGTCCCGAGGGCTCGCCCGTGGGCGTGCACCGCGAGCCCCGCAGCGGGTGGAGCTCTGCCTGGCCGTTCCTGCTGGTCGCCGTCGTGTTCGCAGGGCTGGCTGTCGGCATCGTGTCCTTCCTGTCCGACGACCGGGGCACCGAGAACCCGCCGGCCGCGCAGCAGGAGTCCGCCGCGCCGGAGAGCTCCGCGAGCCCGGAGTCGTCCGAGGGCGAGGGTTCCGGCGAGGGGTCCGGCGACGGGTCGACCGAGGGGTCCGGCGAGGGCGAGTCCACCGAGGAGCCCACGGAGGAGCCGACGGAGGAACCGGCCCCCGAGCCGAACTACGACGCCTTCGTCCGCGTGCTCAACGCGGCCGGCACCCCGGGCCTGGCCGGCGCCAACGCCGACGTCCTCGTCGGTGAGGGGTACACCAACGTCTCGCCGGAGGACTACCCGGAGGGCCAGACGCCGCCCGAGGTCGACACGATCTGGTACGCGACGGCCGAGGACGAGGACACGGCGCTCGCGGTGGCGAGCTCCTTCGGCATCCCCGCCGAGAACGTCACGGAGGTCGCCGTGGCCAGCGGTGACGTGCTCGCCATCCTGCACGAGATGCCGTAG	MTKSHYPYPPDEFDVRGPEGSPVGVHREPRSGWSSAWPFLLVAVVFAGLAVGIVSFLSDDRGTENPPAAQQESAAPESSASPESSEGEGSGEGSGDGSTEGSGEGESTEEPTEEPTEEPAPEPNYDAFVRVLNAAGTPGLAGANADVLVGEGYTNVSPEDYPEGQTPPEVDTIWYATAEDEDTALAVASSFGIPAENVTEVAVASGDVLAILHEMP				NA	NA	NA	NA	NA
AK001_02386	315			hypothetical protein	ATGAGCGAGATGCTGGTCCACGAGGTCGACTCCACGCAGGCTCCGTCGTCGGACGCCGCCGAGGCGCTGTCCGACCGCGACCGCGAGATCCTCGCCTTCGAGAAGCAGTGGTGGAAGTACGCCGGCTCCAAGGAGCAGGCCGTGCGCGAGCTGTTCGACCTGTCCGCGACGCGCTACTACCAGGTGCTCAACGCGCTGATCGACACCCCCGAGGCGCTCGCCCACGACCCGATGCTGGTCAAGCGGCTGCGCCGGATGCGGTCGACCCGTCAGCGCGCCCGCAGCTCGCGTCGACTCGACGGCACGCGGGGCTGA	MSEMLVHEVDSTQAPSSDAAEALSDRDREILAFEKQWWKYAGSKEQAVRELFDLSATRYYQVLNALIDTPEALAHDPMLVKRLRRMRSTRQRARSSRRLDGTRG				NA	NA	NA	NA	NA
AK001_02387	651	ung	COG0692	Uracil-DNA glycosylase	ATGGCGCCCGACTGGGCCGCCGCCCTGGCCGACGTCGAGCCGCAGATCCACGCCATGGGCGACTTCCTGCGCGCCGAGGTCGCCGCCGGCCGCCAGTACCTGCCGGCCCCGGGCGACGTCTTCGCGGCGTTCCGGCGCCCGCTCGCGGACGTCAGGGTGCTGGTGGTGGGCCAGGACCCTTACCCCACGCCCGGCCACCCCATGGGACTGTCGTTCTCGGTCCAGCCGGACGTGCGACCGCTGCCGAAGTCGCTGGTCAACATCTTCACCGAGCTCGCCGACGACGTCGGCGCACCGGCACCGAGCACCGGCGACCTGAGCCCGTGGGCGGACCAGGGCGTGATGATGCTCAACCGGGTGCTGACGGTGCAGCCGGGCCGGCCGGCGTCGCACCGGGGCCAGGGCTGGGAGCAGGTCACCGAGGCGGCGATCAAGGCGCTGGTGGCCCGCGGCGGCCCCCTGGTGGCGATCCTGTGGGGCCGCGATGCGGCGTCGCTCACACCCTGGCTCGGCGGCACCCCGACCGTGGAGTCGGCGCACCCCAGCCCGCTGGCGGCCTACCGCGGGTTCTTCGGCTCGAAGCCGTTCTCGCGCGTCAACGCCCTGCTCGAGCAGCAGGGCGGGACACCCGTGGACTGGCGACTGCCCTGA	MAPDWAAALADVEPQIHAMGDFLRAEVAAGRQYLPAPGDVFAAFRRPLADVRVLVVGQDPYPTPGHPMGLSFSVQPDVRPLPKSLVNIFTELADDVGAPAPSTGDLSPWADQGVMMLNRVLTVQPGRPASHRGQGWEQVTEAAIKALVARGGPLVAILWGRDAASLTPWLGGTPTVESAHPSPLAAYRGFFGSKPFSRVNALLEQQGGTPVDWRLP	PGPT0007090_2	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766	NA	NA
AK001_02388	849			hypothetical protein	GTGCAGAATGGTCGCGTGGCTTCGCACGACAGCATCCCCCCGTGGTCCCGCTACGTCGCGATCGGCGACTCGTTCTCCGAGGGCCTGTGGGACCCGTACCCGTACGACGACGGCACCCGCGCCCCCGCCGGCACCGAGACGACCGCGGTGCAGCGCGGCTGGACGGACCGGCTCGCCGACCACCTGGCCGAGCGCCGGGGCGACGAGGGTCTGGAGTACGCCAACCTCGCGATCCGCGGCAAGAAGCTGCGCCAGATCGTCGACGAGCAGCTCGACGTCGCCCTCGCGATGCAGCCGGACCTCGTCTCGATCGTCGGCGGCGGCAACGACATCCTGCGTCCCCAGGCGGACATCGACGGGCTGACGGCGACCCTGGAGGAGTCCGTCGCCCGCCTGCGCGCGTCCGGGGCGGACGTGCTGATGGGCACCGGCTTCCGGGCCGGCGGCGCCCTGAGCCTCACCAGCGGCCGGGTCGGGCAGTACAACGCCACGATCTGGTCGATCGCGCGGCGGCACGGCGCGTACGTGCTGGACAACTGGGGGCTCGGGGCGCTGCACGACTGGCGCCTGTGGTCCGACGACCGCATCCACCTCACCGACGAGGGGCACCGCCGCGTCGCGAACGCCGCGCTGGTCGGGCTCGGGTTCGCCCCGGACGACGACACCTTCGACGACGCGCTGCCGGCCGCCACGGCGCGGCGTCTGCGCGAGCGGGCCCGCGAGGACGCCCAGTGGGCGCGGGCGCACGTGATGCCGTGGGTGCAGCGGCGGCTGCGCGGGACGTCCAGCGGCGACGGTCGGACGCCGAAGTGGCCGACGCCGCTGCCGTGGCCCCCGTCGGAGCGCTGA	MQNGRVASHDSIPPWSRYVAIGDSFSEGLWDPYPYDDGTRAPAGTETTAVQRGWTDRLADHLAERRGDEGLEYANLAIRGKKLRQIVDEQLDVALAMQPDLVSIVGGGNDILRPQADIDGLTATLEESVARLRASGADVLMGTGFRAGGALSLTSGRVGQYNATIWSIARRHGAYVLDNWGLGALHDWRLWSDDRIHLTDEGHRRVANAALVGLGFAPDDDTFDDALPAATARRLRERAREDAQWARAHVMPWVQRRLRGTSSGDGRTPKWPTPLPWPPSER				NA	NA	NA	NA	NA
AK001_02390	870			hypothetical protein	ATGTCCAACAAGCAGAACAAGGCGCAGCGCCGTGACGAGGCCCGTGCCCAGGCTCTCGCCATCCAGCAGCAGCAGGCGCAGCGCGACCGCCGCAACCGGCTCATCGTCTTCGGCGCGCTCGGCGTGGCCGTCGCGGCGCTGGTCGCCGTCGCCGTCTTCATCCTCATGAACGAGGCGGAGCGGACGGCCGTGGACGACGTCCCGCTCGCCGAGGTCGAGAACGTGCCGGCGACGGCGCTCGAGGGCGGCGGCATCCCCGTCGGCGCGGATCTCGTGGCCGGCGGCGAGAACGAGGGCGGGCCCGTCGTCGACGAGTACCTCGACTACATGTGCCCCATCTGCGGCCAGTTCGAGGACATCAACGGCGCCGACGTCGAGACCATGCTCACCGAGGGCGACGCGACCGTCATCTTCCACCCGGTGTCGATCCTGGACCGGATGTCCAGCGGGTCGGACTTCTCGACGCGCTCGGCCTCGGCGGCGTACTGGGTGGCCGACCGCGCGCCGGAGTCCTTCTACGCCTTCAACGAGGCGCTGTTCGCCAACCAGCCGTCGGAGAACACCTCCGGGCTGAGCGACGACGAGATGGCCGCGATCGCCGAGCAGGCCGGCGTCCCGGCCGACGTCGCCGCCGGCATCGCCGACGGGACGGCCCGCGCCACCTTCGGCCAGTACGTGTTCTCGCTGACGAACGAGGCCTCGGCCAACGAGGACCTGTGGAACGCCAACGGCGGCTTCGGCACGCCGACCATCCTGGTGGACGGCGAGCGCTTCGAGACCTGGAACCAGCCCGGTGCGCTGCTCGCGGCGGTCCAGGGCGGCGGCGCCGCGGGCGACACGGCGACCGAGGACGAGTCCGCCGACGAGTAA	MSNKQNKAQRRDEARAQALAIQQQQAQRDRRNRLIVFGALGVAVAALVAVAVFILMNEAERTAVDDVPLAEVENVPATALEGGGIPVGADLVAGGENEGGPVVDEYLDYMCPICGQFEDINGADVETMLTEGDATVIFHPVSILDRMSSGSDFSTRSASAAYWVADRAPESFYAFNEALFANQPSENTSGLSDDEMAAIAEQAGVPADVAAGIADGTARATFGQYVFSLTNEASANEDLWNANGGFGTPTILVDGERFETWNQPGALLAAVQGGGAAGDTATEDESADE				NA	NA	NA	NA	NA
AK001_02391	1878	pknD_3		Serine/threonine-protein kinase PknD	ATGGCTGTGGGTGACGACGCGGAGGTACTGACCCAGGAGACGGCCGCGCCCGGACCGGACGGTGGTCTGGCCCCGGGGACGGACGTCGGCGGGTACACCGTCGTCGCCGCGCTCGGCCGCGGTGCCATGGGCGCCGTCTACGAGGCCCGGGACGGCGCGGGCGAACGGGTGGCCCTGAAGGTCCTGCACGCCCACGTCGACGCCGATCCGGCCGGACGCCAGCGGCTGCGCCGCGAGGTCGCCGCCCTGCAGCGCCTGCGGCACCCGGCCGTGGCCCAGGTGCTCGACGCCGAGTTCGAGGGGCCGCACGCGTTCGTCGTCACCGAGCTCGTCGAGGGGCTCACCCTCGAGGAGGAGATCGACGCCCGCGGCCCGCTGGACGTGTCCGACCTGTTCTCCCTGGCCGACCAGCTCGCCGACGCCCTGGAGTCCGTGCACGCCGCCGGGGTCGTGCACCGGGACCTGAAGCCCTCCAACGTGATGGTCACGGGGGACGGGCCCAGCCTCATCGACTTCGGGATCTCGCGGAGCTCCGGCGACACCCGGACCACGATGACCGGCTTCGTCATGGGGACTCCCGGCTACATCGCCCCCGAGCTGCTCGACGGCGGCGACCCGGTCCCCGAGACGGACTGGTGGAGCTGGGCAGCCCTGCTCGCGTTCGCCGCGACGGGCCGGTCGCCGTTCGGGGTGCGGCCCACCGACGTCGTGCTGCAGCGGTCCCGGCAGGGTCGCGCGGACCTCGTCGGGGTGCCGGCCCGCACGGCCCGCGCGCTGGCGGGGGCCCTGCAGCCCGACCCGGCTCAGCGGTGGGGTCCGACCGACGTGGTGCGGGCGATCCGCCGCGACCTCGAGGAGGGGGCCGGGGAGGTCGTCGACATCGAGGCGGACCCGCAGGCCACGCAGCGGATCGTCGTCGCGGCCGGTGCCGCGACGGCGGCGACGGCGGCCGGCGCCCTCGGCAGCGCCGGCACGCCGGAGGAGGGGTCGCCCGGGGCGGGCTCGCCGACCGCGTCGCCCGCACCCGACGAGACCGCCGTCGTCGGCCCGCCCGTGCTGCCGGCGGAGGCGCCGGCCGGCACCGCGCAGACCATGACCTCCGAGGAGCGGGCCCGCGCCGGGGCGCAGGACGGCGCCACGCGCGCGATCCCGCTCGGCGAGGTGCGGTACCGGACGTACGAGGAGATCGCGGACGCGGCCGAGGACGTCGACCCCACCCCCGAGGAACCGCAGGGCCCCTACGTCCCGCCGGTCCACCGGCGGCGGTGGGGAACCGTGCTCGCGCTCGGGGTGCCGTTCGTGGTGCTCGCGGCCTTCTACCCGCTGGTGGCGTTCGGGGCCCTGTGCGGGGTGACCGTGCTGTGCCGGATCGTGGGGACGTCGTCCCAGCGGTTCCACGAGCGGCGCGAGCGGCGCGGGGTGCGGTCCTCCGACGGCTGGGTGGCCGGCCTGCTGCTGCCGTACCACGCCGTGATCGGCGCCCTCGGGGTCATCCCGGCGGCGGTGGTCGGCGGCTGCGTCGGCCTGCTGGCGATGATGGGTGGCTACTGGCTGTTCGGGGACGGCAACTGGATCGTGGCGCCGCTGGAGGACGTCGAGTCCCGGTCCGTCGGCGGACGCAACGCGCCCATCGTCTTCGCCGGGGTGCTCGCGGGGGCGATGCTGCTCGCCGTCGTGGCGACCTGGTTCGGCCCGGCCGGCCGCACCGCTCGCGACGGCGCCCGGCGGCTGCTCAACAACCTCGCTCCCGGGCTGGTGGGGGCCGTCGTCGTGATCGCGATCTGCCTGGTCGGTTCGTGGGTGCTGTACTCCGAGCTGCTCACCGACCCCGTCGAGATCGTCTGGTGGCCGATGGACGGGCCGCCGTCACTGTTCTGA	MAVGDDAEVLTQETAAPGPDGGLAPGTDVGGYTVVAALGRGAMGAVYEARDGAGERVALKVLHAHVDADPAGRQRLRREVAALQRLRHPAVAQVLDAEFEGPHAFVVTELVEGLTLEEEIDARGPLDVSDLFSLADQLADALESVHAAGVVHRDLKPSNVMVTGDGPSLIDFGISRSSGDTRTTMTGFVMGTPGYIAPELLDGGDPVPETDWWSWAALLAFAATGRSPFGVRPTDVVLQRSRQGRADLVGVPARTARALAGALQPDPAQRWGPTDVVRAIRRDLEEGAGEVVDIEADPQATQRIVVAAGAATAATAAGALGSAGTPEEGSPGAGSPTASPAPDETAVVGPPVLPAEAPAGTAQTMTSEERARAGAQDGATRAIPLGEVRYRTYEEIADAAEDVDPTPEEPQGPYVPPVHRRRWGTVLALGVPFVVLAAFYPLVAFGALCGVTVLCRIVGTSSQRFHERRERRGVRSSDGWVAGLLLPYHAVIGALGVIPAAVVGGCVGLLAMMGGYWLFGDGNWIVAPLEDVESRSVGGRNAPIVFAGVLAGAMLLAVVATWFGPAGRTARDGARRLLNNLAPGLVGAVVVIAICLVGSWVLYSELLTDPVEIVWWPMDGPPSLF				NA	NA	NA	NA	NA
AK001_02392	1473	otsA	COG0380	Trehalose-6-phosphate synthase	TTGACAGGTCAGGGATCGTCCAGCAGCACGACCGGCAGCACCGAGTCGCCCGGCTACGACCTCGTCGTCGTCGCGAACCGGCTCCCCGTGGACTTCGCCGTCGACGACCAGGGGAACCTCGACTGGAAGCGGTCGCCCGGCGGTCTGGTCACCGCCCTCGAGCCGGTGATGCGGGAGAACGACGGCGCGTGGGTCGGCTGGTCCGGCGCCCCGGACCTGGCGCACGAGCCCTTCGAGGCCGACGGCATGCTGCTGGTCCCGGTGACGCTGTCGGCCAGCGAGATCAACAAGTACTACGAGGGGTTCTCGAACGACACCCTCTGGCCCCTGTACCACGACGTCATCGCTCCGCCGACCTACCACCGGCAGTGGTGGGACGCCTACCGCAAGGTCAACCAGCGCTTCGCCGAGGCCGCCGCCGCCCAGGCGGCGCGCGGCGGCGTGGTGTGGGTGCACGACTACCAGCTCCAGCTCGTGCCGAAGATGCTGCGCGAGCTGCGCCCCGACCTGCGCATCGGGTTCTTCGACCACATCCCCTTCCCCGCCGTGGAGCTCTTCCAGCAGCTCCCCTGGCGCAAGAACATCGTCGAGGGCCTCCTCGGCGCGGACCTCATCGGCTTCCAGCGCGGCGGGGACGCCTCGAACTTCGTGCGCGCCGTGCGCCGGCTCACCGACCACCCGACCCGCGGCTCGATCATCTCGATGGGGTCCGACGACGCGACGCCGGGCCGGCGCGTCCGGGCGGCCTCGTTCCCCATCTCGATCGACACCCAGCACTTCGACGAGCTCGCCCGCAAGCCGGAGATCCAGGCCCGGGCCAAGGAGATCCGCGCCGACCTGGGCGACCCCGAGGTCGTCATGCTGGGCGTGGACCGGCTCGACTACACCAAGGGCATCCGGCACCGGATCAAGGCCTACGGCGAGATCCTCCAGGACGGCCGCATCGACGCCGCGAACACCACGCTGGTGCAGGTCGCGAGCCCGTCGCGGGAGAACGTCGGCGCCTACCAGGAGCTGCGCCAGCACGTGGAGATCCTCGTCGGCCGCGTCAACGGCGAGTTCGGCGAGCTGGGCCACTCGGCCATCCACTACCTGCACCACTCCTACCCGCCCGAGGAGATGGCGGCGCTGTACCTGGCCGCCGACGTCATGCTCGTCACCTCGCTGCGCGACGGCATGAACCTCGTCGCCAAGGAGTACATCGCGGCCCGCTCCGACCTGGGCGGCGTGCTGGTGCTCAGCGAGTTCACGGGCGCCGCCGACCAGCTCGCCCCCGGGCCGCTGCTGTGCAACCCCCACGACATCGACGGGATGAAGAACATCATCGTCGCCGCGGCCGAGATGCCGGCCAAGGAGAAGCGTCGCCGCATGCGGAACCTGCGCCGCAAGGTCATGGGCGACGACGTCGCCAAGTGGTCGAAGTCGTTCCTCGGGGTGCTCACCGCCGTCCCCGCCCGCGACACCTATGTCTGA	MTGQGSSSSTTGSTESPGYDLVVVANRLPVDFAVDDQGNLDWKRSPGGLVTALEPVMRENDGAWVGWSGAPDLAHEPFEADGMLLVPVTLSASEINKYYEGFSNDTLWPLYHDVIAPPTYHRQWWDAYRKVNQRFAEAAAAQAARGGVVWVHDYQLQLVPKMLRELRPDLRIGFFDHIPFPAVELFQQLPWRKNIVEGLLGADLIGFQRGGDASNFVRAVRRLTDHPTRGSIISMGSDDATPGRRVRAASFPISIDTQHFDELARKPEIQARAKEIRADLGDPEVVMLGVDRLDYTKGIRHRIKAYGEILQDGRIDAANTTLVQVASPSRENVGAYQELRQHVEILVGRVNGEFGELGHSAIHYLHHSYPPEEMAALYLAADVMLVTSLRDGMNLVAKEYIAARSDLGGVLVLSEFTGAADQLAPGPLLCNPHDIDGMKNIIVAAAEMPAKEKRRRMRNLRRKVMGDDVAKWSKSFLGVLTAVPARDTYV	PGPT0014135_549	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014135-otsA-K00697	NA	NA
AK001_02393	828			hypothetical protein	ATGTCTGATCGGCACGACCAGGACTTGGCGGAGACCCTGCTCGGCGCGCTCGACCGCTTCGCCGTCGACGACGGCGCGGCCCTGCTCGTCGCCCTCGACTTCGACGGCACGCTCGCCCCGCTGGTGGACGACCCGACGGCCTCGCGCATGACCCCGGCCGCCCGGGACGCCGTCGACGCCCTCGGGGCGACGGCCGCGGAGCGGGTGCGCCTGGCGTTCGTCTCCGGACGGGACCTGGAGGACCTCGCGCTGCGCGCCGCTCCCCCGGTCGGCTCCTACCTGGTGGGCAGCCACGGCGCCCAGACGGGGCACGCGACACCCGACGGGCTCGAGGCGGTGCCCCTGGAGCTCACGGCCGAGGAGCACGAGACGCTCACCGCGCTGCGGGCCGCCCTGGACGAGGCGGTGTCCGGCCGCGAGGGCGCCTGGGTGCAGCACAAGCCGAGCGCCGCCGTCCTGCACACCCGCCTGGCCGGCCCGCAGGACACCGGGGCCGCGGTCGAGGCCGCGGACGCGGCCGCCGCCCGGCTCGGGCTGGAGGCCATGCACGGCAAGGACGTCGTCGAGATCGCGGTGCTGCACACGTCCAAGGGCGAGGCGCTGGAACGGCTGCGCGACGTCGTCGGGCACGACGTCGGCACCGACCGCGTGCGCGTGCTGTACGCGGGGGACGACACCACCGACGAGAAGGCCTTCGCCGTGCTGGAGGCCGGGGACCTGGCGCTCAAGGTCGGTGACGGGGACACCCTCGCGCCGCACCGCGTCGCAGGGGCCGACGACGTCGCCGCGGTGCTGGACCGGCTGCGCGCGTCGTTCGCGGCGCGCTGA	MSDRHDQDLAETLLGALDRFAVDDGAALLVALDFDGTLAPLVDDPTASRMTPAARDAVDALGATAAERVRLAFVSGRDLEDLALRAAPPVGSYLVGSHGAQTGHATPDGLEAVPLELTAEEHETLTALRAALDEAVSGREGAWVQHKPSAAVLHTRLAGPQDTGAAVEAADAAAARLGLEAMHGKDVVEIAVLHTSKGEALERLRDVVGHDVGTDRVRVLYAGDDTTDEKAFAVLEAGDLALKVGDGDTLAPHRVAGADDVAAVLDRLRASFAAR	PGPT0014140_1129	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087	NA	NA
AK001_02395	1122	msiK	COG3839	Diacetylchitobiose uptake system ATP-binding protein MsiK	ATGGCTTCGGTCACCTATGACCACGCGACGCGCGTCTACCCGGGCACGGAGCGCCCGGCCGTGGACCAGCTCAACCTGCAGGTCGAGGACGGCGAGTTCCTCGTCCTCGTCGGCCCCTCGGGCTGCGGCAAGTCCACCTCGCTGCGCATGCTGGCGGGCCTCGAGGACGTCAACGGCGGGCACATCTACATCGGTGACCGCGACGTCACCGACGTGCAGCCCAAGGACCGCGACATCGCGATGGTCTTCCAGAACTACGCGCTGTACCCGCACATGTCGGTCGCCGACAACATGGGCTTCGCGCTGAAGATCGCCGGCACCCCGAAGGCGGAGATCCGCCAGCGCGTCGAGGAAGCCGCCAAGATCCTCGATCTCACCGAGTACCTCGACCGCAAGCCGAAGGCGCTCTCCGGCGGTCAGCGCCAGCGTGTCGCCATGGGCCGCGCCATCGTGCGTCAGCCGCAGGTGTTCCTCATGGACGAGCCGCTGTCGAACCTGGACGCCAAGCTGCGTGTCCAGACCCGTACGCAGATCGCCTCGCTGCAGCGCCGCCTCGGCGTCACCACCGTCTACGTGACGCACGACCAGACCGAGGCCCTGACCATGGGCGACCGCATCGCGGTGCTCAAGGACGGTCTGCTGCAGCAGGTCGGCACCCCGCGCGAGATGTACGACACCCCGGCGAACACCTTCGTGGCGGGCTTCATCGGCTCCCCGGCGATGAACATCGGCACCTTCGAGGTCCGCGACGGCAAGGCGGTCGTCGGTCACGCCGCGGTGGCGCTCGAGCGCGACGTGCTCGACCAGCTCTCCGACGCCGACAACGGCAAGGTCGTCGTGGGCTTCCGTCCCGAGTCCCTCGACATCGCGCACGACGACTCGCAGGACGCCTTCCAGGTGAAGGTCAACCTCGTCGAGGAGCTCGGCTCCGACGCGTTCGTCTACGGCGAGCTGCTGTCGGACGGTTCGGCCGGCGACCTGCACTCCGGTTCCTCGGACCAGGTCATCGTGCGCATCGACCCGCGCGAGGTCCCGATGAAGGGTGACACCATCCACGTCACCATCAAGCAGGGCCAGGAGCACGTCTTCGCGCCGTCGACGGGTGCTCGCCTCAGCAAGTGA	MASVTYDHATRVYPGTERPAVDQLNLQVEDGEFLVLVGPSGCGKSTSLRMLAGLEDVNGGHIYIGDRDVTDVQPKDRDIAMVFQNYALYPHMSVADNMGFALKIAGTPKAEIRQRVEEAAKILDLTEYLDRKPKALSGGQRQRVAMGRAIVRQPQVFLMDEPLSNLDAKLRVQTRTQIASLQRRLGVTTVYVTHDQTEALTMGDRIAVLKDGLLQQVGTPREMYDTPANTFVAGFIGSPAMNIGTFEVRDGKAVVGHAAVALERDVLDQLSDADNGKVVVGFRPESLDIAHDDSQDAFQVKVNLVEELGSDAFVYGELLSDGSAGDLHSGSSDQVIVRIDPREVPMKGDTIHVTIKQGQEHVFAPSTGARLSK	PGPT0016310_2289	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016310-msmX|msmK|malK|sugC|ggtA|msiK-K10112	NA	NA
AK001_02396	1287			hypothetical protein	GTGGAGCAGCTCAAGATCACCTCCGCGACCCCGAACTCCGCGCTGCTGGACCTGCCGTGGCGCCTCCCGCTGATCGACTGGCCGTCCGACGTCCTCGCGGCGCTCCCGCGAGGCATCTCGCGGCACGTGGTCCGCTTCGTCCGGCTCGACGGCCGCGTGCTGGCGATCAAGGAGATCAGCCAGGACGTCGCCTTCCGCGAGTACGGGATGCTGCGACAGCTGCGCAAGCTCGAGATCCCGTCCGTGCGCCCCGTCGGGGTCGTCACCGGTCGGACCTCCGACAGCGGTGAGCCCCTCGAGGCCGCCCTGGTCACCGAGCACCTGGCGTTCTCGTTGCCGTACCGGTCGGTGTTCAGCCAGTGGCTGCGCGACGAGACCGCGAACCGGCTCATCGACGCGCTCGCCGTCCTGATCGTGCGCCTGCACCTCGCGGGCTTCTTCTGGGGCGACGTCTCGCTGTCCAACACGCTGTTCCGCCGCGACGCCGAGCAGTTCGCCGCCTACCTCGTCGACGCCGAGACCGGTGCCCTGCACCGCGAGCTCACGCGGGGCCAGCGCGAGCACGACCTCGAGATCGCCCGCGTCAACATCATCGGCGAGCTCATGGACCTGGCGGCCGGCGAGCTGCTCGACAGCGAGATCGACGAGGTGGCCTTCGGCAACTCCCTGGTCGACCGCTACCGCGACCTGTGGGAGGCCCTGACCGGCGTCGAGGCCTTCGCGTCCGACGAGCGGTGGCGCGTCGCCGCCCGCATCGAGCGGCTCAACGCCCTCGGGTTCGACGTCGGCGAGCTCGACATCACCACGGACATCGACGGCACGACGGTGCGCATCCAGCCCCAGGTGGTCGACGCCGGTCACCACTCCCGCCGGCTGCTGAAGCTGACCGGGCTGGACGTGCAGGACAACCAGGCGCGGCGGCTGCTCAACGACCTGGACTCGTACCAGGCGGCGACGGACCGGCAGGAGGACGACCCCCAGCTCGTCGCCCACGACTGGCTGCAGAACGTCTTCCACCCCACGGTCCGGGCGGTCCCCCGCGAGCTGCGGCGCAAGCTCGAGCCGGCGCAGCTGTACCACGAGATCCTCGACCACCGCTGGTTCATCTCCGAGCAGTCCGGGCACGACGTCCCGATGCCGGAGACGGTGGCGTCGTACGTGAAGAACGTCCTGCGCTACCGCCCGGACGAGAAGGCGATCCTCGGCATGGAGCCGCGCGACGAGCCCGAGGGGCCGGAGGCGGACTACTTCCACTACGCCGCGGCCGAGCCGGGCGACCACGACTGA	MEQLKITSATPNSALLDLPWRLPLIDWPSDVLAALPRGISRHVVRFVRLDGRVLAIKEISQDVAFREYGMLRQLRKLEIPSVRPVGVVTGRTSDSGEPLEAALVTEHLAFSLPYRSVFSQWLRDETANRLIDALAVLIVRLHLAGFFWGDVSLSNTLFRRDAEQFAAYLVDAETGALHRELTRGQREHDLEIARVNIIGELMDLAAGELLDSEIDEVAFGNSLVDRYRDLWEALTGVEAFASDERWRVAARIERLNALGFDVGELDITTDIDGTTVRIQPQVVDAGHHSRRLLKLTGLDVQDNQARRLLNDLDSYQAATDRQEDDPQLVAHDWLQNVFHPTVRAVPRELRRKLEPAQLYHEILDHRWFISEQSGHDVPMPETVASYVKNVLRYRPDEKAILGMEPRDEPEGPEADYFHYAAAEPGDHD				NA	NA	NA	NA	NA
AK001_02397	987		COG0566	putative tRNA/rRNA methyltransferase	ATGGCGGGGAACTCGCAGCGACCCGGTGCCAAGCGCAAGGCGGGCACCAAGAAGGGCGCGCAGGTCGGCAGCGGCGGTCAGCGCCGCAAGGGCCTGCAGGGCAAGGGGCCGACGCCGAAGGCCGAGGAGCGCACGTACCACCCGGCGTACAAGCGCAAGGTCGCGGCCGAGAAGCGTGCCGCGGCGCAGGCGCCCACGGGTGCCCGCAAGGGCGTGGCCCGGGGCACGCGCAAGGCCACCGGCGGTGCGGAGGTCGTGGCCGGCCGCAACGCCGTGCTCGAGGCGCTGCGCTCCCAGGTGCCGGTGACCGCCGTGCACCTGGCCGAGCGCATCGACCACGACGACCGCACCCGGGAGATCCTCGAGCTCGCCTCGATCCAGGGCGCCCAGGTGATGGAGAGCTCGCGCGGGGCGCTGGACCAGCTCACCGAGGGGTCGGTGCACCAGGGGGTCGCACTCGAGGTGCCGCCGTACGACTACGCGTCGGTCGACGACCTGCTCGACGCCGCGGCCGAGGCGGGGGAGCCGCCGCTCATCGTGGCGCTGGACTCGATCACGGACCCGCGCAACCTCGGGGCCGTGCTGCGCTCCGCGGGCGCCTTCGGTGCGCACGGCGTCCTGGTGCCGTCGCGGCGCACGGCGTCCGTGACGGCGTCGGCGTGGAAGGTGTCCGCCGGTGCCGCCGCGCGGGTGCCGGTCGCCAAGGAGACCAACCTGTCGCGCACGCTGGCCGACCTGAAGAAGTCGGGGCTGTTCGTCGTCGGGCTCGACGCCGGCGGTGACGTCGCCGTGCGCGACCTGGCGTTCGCCACGGACCCGCTGGTGGTCGTGGTCGGTTCCGAGGGCAAGGGGCTCTCGCGCCTGGTGCGCGAGACCTGCGACGCCGTGGCGTCGATCCCGATCTCGTCGGACGTGGAGTCGCTCAACGCCGGTGTCGCGGCCGGGATCACGCTGTACGAGGTCGCGCAGGCCCGCGCCGCGAAGTAG	MAGNSQRPGAKRKAGTKKGAQVGSGGQRRKGLQGKGPTPKAEERTYHPAYKRKVAAEKRAAAQAPTGARKGVARGTRKATGGAEVVAGRNAVLEALRSQVPVTAVHLAERIDHDDRTREILELASIQGAQVMESSRGALDQLTEGSVHQGVALEVPPYDYASVDDLLDAAAEAGEPPLIVALDSITDPRNLGAVLRSAGAFGAHGVLVPSRRTASVTASAWKVSAGAAARVPVAKETNLSRTLADLKKSGLFVVGLDAGGDVAVRDLAFATDPLVVVVGSEGKGLSRLVRETCDAVASIPISSDVESLNAGVAAGITLYEVAQARAAK				NA	NA	NA	NA	NA
AK001_02398	1431	cysS	COG0215	Cysteine--tRNA ligase	GTGACCTTGCAGCTTTTCGACACCGCCACGCGCTCCGTGCGCGAGTTCGCACCTCGGACACCCGGCAAGGTCGGCATCTACCTCTGTGGCGCCACCGTCCAGTCGGCGCCCCACGTGGGCCACCTGCGCCCCGCCGTCGCCTTCGACGTGCTGCGCCGCTGGCTGACCCGGTCGGGGCTCGACGTGACCCTGATCCGGAACGTCACCGACATCGACGACAAGATCCTCGCCAAGGCCGAGGCCGCCGGCGTGGAGTGGTGGGCGCACGCCGCCACCTACGAGCGCGCGTTCACCGCCGCCTACGACGCCCTCGGCGTGCTGCCGCCCACCTACGAGCCCCGCGCCACCGGCCACGTGCCGCAGATGGTCGCGCTCATGCAGCGGCTCGTCGAGCGGGGGCACGCCTACAGCAGCAGCCCCGGCAACGTCTGGTTCGACGTCCGTTCCTGGCCCGCCTACGGCGAGCTGACCACCCAGCGGCTCGAGGACCTCAACCCCGAGGGCGGGGACGACGCCGTCACGTCCGAGAAGCGCGACCCGCACGACTTCGCGCTCTGGAAGGCCTCCCGCCCCGGCGAGCCCGAGACCGCCGCCTGGGACACGCCCTTCGGGCGCGGACGTCCCGGCTGGCACCTGGAGTGCTCGGCCATGGCGCACCGCTACCTCGGCGAGGCGTTCGACATCCACGGCGGCGGCCTCGACCTGCGCTTCCCGCACCACGAGAACGAGCAGGCGCAGTCGCGCGCCGCCGGGTACGGGTTCGCGGACCGCTGGATGCACTCCGCCTGGGTCACCCAGCAGGGCGTGAAGATGAGCAAGTCGCTCGGCAACGGGCTGCTCATGAGCGAGCTGCTCACGCAGGTCCCGGCCGCCGTCGTGCGCTACGCCCTCGTGGCCGTGCAGTACCGCTCCATGCTCGAGTGGAGCCCGGACACGCTCGACGAGGCCCGGGCCACGTGGGAGCGGCTGACCGGGTTCGTCGCCCGGGCCGGCGAGCGCGTCGGGGAGGTCCCGCGGGCGGAGGTCCTCGCCGCCGACCTGCCCGCCGGGTTCGTCACCGCGATGGACGACGACCTCAACGTGCCCGCGGCGCTCGCCGTCGTGCACGAGACGCTCAAGGCGGGCAACTCGGCGCTCGCCTCCTCCGACGACGCCGGGGCGCGCGACGCGCTCGTCGCGCTGCGGGGGATGCTGGACGTGCTCGGGCTCGACCCGGCCGACCCGCAGTGGGCCAGCGCCGCCGACACGCGCGTGGCCGACGCGCTCGACGCCGTCGTGCAGGCCGAGCTCGACGCACGCTCCGCGGCCCGGGCCGCCAAGGACTACGCCACGAGCGACGCGATCCGGGACCGCCTCGCGGCGGCCGGCGTCGTCGTGCAGGACTCACCGGACGGCGCCCGCTGGACGCTGGCCGACGCGAAGGGGGAATGA	MTLQLFDTATRSVREFAPRTPGKVGIYLCGATVQSAPHVGHLRPAVAFDVLRRWLTRSGLDVTLIRNVTDIDDKILAKAEAAGVEWWAHAATYERAFTAAYDALGVLPPTYEPRATGHVPQMVALMQRLVERGHAYSSSPGNVWFDVRSWPAYGELTTQRLEDLNPEGGDDAVTSEKRDPHDFALWKASRPGEPETAAWDTPFGRGRPGWHLECSAMAHRYLGEAFDIHGGGLDLRFPHHENEQAQSRAAGYGFADRWMHSAWVTQQGVKMSKSLGNGLLMSELLTQVPAAVVRYALVAVQYRSMLEWSPDTLDEARATWERLTGFVARAGERVGEVPRAEVLAADLPAGFVTAMDDDLNVPAALAVVHETLKAGNSALASSDDAGARDALVALRGMLDVLGLDPADPQWASAADTRVADALDAVVQAELDARSAARAAKDYATSDAIRDRLAAAGVVVQDSPDGARWTLADAKGE	PGPT0002985_3005	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883	NA	NA
AK001_02399	1185			hypothetical protein	ATGAGGCTGACGGACCGGCTGTCCCGCGCCACCGCCGGGCTGCCCGGACCGCTCGCCGTCGTCGACCTGGACACCTTCGACGTCAACGCGGCCGACCTGCTGCGGCGGGCCGCCGGCACCCCCGTACGCGTGGCCGCGAAGTCCGTGCGCGTGCGCGCCCTCCTCGACCGCGCGGGGGAGGCCGGGTTCACCGGTGTCATGGCCTTCTCCCTCGCCGAGGCGCTCTGGCTGGTCGGCGGCGGCACCCGGGACGTCCTCGTCGGCTACCCGACCGTCGACACCGACGCCCTCGCCCGGTGGGCGGCCGACCCCGTCGCCCGTCGCGAGATCACCCTCATGGCCGACGACGTCGCCCAGGTCGCGCTCGCGTCCGCGGCCCTGCGCGACGCCCCCGCCGCCGGACCGGCGGGCTCGGTCTGCCTCGACGTCGACTGCTCGCTCCGGCTCGGCGTCGGGCGGTGGCGGGCGCACCTGGGCACCCGCCGCTCGCCGCTGCGGACGGCCGAGCAGGTCGCGGACCTGGCCGGCGCCGTCGAGTCCACCGACGGGCTGCGCGTGCGCGGGCTGATGTTCTACGAGGCCCAGGTCGCCGGGCTGCCCGACGAGAGCCCGGCGGTGCGGGCCGTGAAGCGGCTGTCGGTCCCCGACGTCGACCGTCGCCGACGTGACGTGCTCGCCGCCGTGCGGACCGCCGTCGGCCGGGACGTCGAGCTCGTCAACGCCGGGGGCACGGGGTCGCTGGAGTCCTCCGCCGCTGGCACCGGGGTCACCGAGGTGAGCGCCGGGTCGGGCCTGTTCGTCCCCGGCACGTTCGACCACTACCGGTCCTTCGAGGCGCGTCCGGCCGCGTTCTTCGGCCTCGACGTGGTGCGCACCCCCGGACCGGGCTGGGCGACGGCGTTCGGCGGCGGGTACGTCGCCTCCGGCCCCGCCGGGCCGTCCCGCCTGCCCCGGGTGGCCACGCCCGGCTGGGCGCTGACGCGCCGCGAGGGCGCCGGCGAGGTGCAGACGCCGCTGCGGCTCCGGCGCGGCGGGCGCGACCTGCGCGTCGGGGACCGGGTCTGGTTCCGGCACGCCAAGGCCGGCGAGCTGATGGAGCGGTTCGCGACGGTGCACCTCGTGCGCGGCGACGAGGTCGTCGGCACCGTCCCGACCTACCGCGGCGAAGGACAGGCCTTCGGCTGA	MRLTDRLSRATAGLPGPLAVVDLDTFDVNAADLLRRAAGTPVRVAAKSVRVRALLDRAGEAGFTGVMAFSLAEALWLVGGGTRDVLVGYPTVDTDALARWAADPVARREITLMADDVAQVALASAALRDAPAAGPAGSVCLDVDCSLRLGVGRWRAHLGTRRSPLRTAEQVADLAGAVESTDGLRVRGLMFYEAQVAGLPDESPAVRAVKRLSVPDVDRRRRDVLAAVRTAVGRDVELVNAGGTGSLESSAAGTGVTEVSAGSGLFVPGTFDHYRSFEARPAAFFGLDVVRTPGPGWATAFGGGYVASGPAGPSRLPRVATPGWALTRREGAGEVQTPLRLRRGGRDLRVGDRVWFRHAKAGELMERFATVHLVRGDEVVGTVPTYRGEGQAFG				NA	NA	NA	NA	NA
AK001_02400	1368		COG0277	L-gulono-1,4-lactone dehydrogenase	GTGAACTTCACCACCTGGGGTCGCACCTACGCCGCCGCACCCGCCCGGCACGCGGAACCGCAGGTCGAGGCCGAGCTGCGCGCCCTCGTCGCCCGCGCCGCCGCGGACGGGCTGCGCGTCCGGGCGGTCGGCGCCGGCCACTCGTTCACGGACGCCGCCGTCACCGACGGTCTGATGCTCGGACTCGACCACCTCAGCGGGCTGGAGTCCCTGCAGCGGCGGCCGGACGGCACCGCCCTCGTCACCGTCGGCGCCGGTACGCGGCTGCACCGGCTCAACCGGCTGCTCGCGTCGTGGGGACTGGCGATGCGCAACCTCGGCGACATCGACCGCCAGTCGATCGCGGGGGCGATCTCCACCGGCACGCACGGCACCGGCGCACGTCTCGGCGGGCTCGCCACGCAGGTGCGCGGGGTGCGCCTGGTGCTGCCGGACGGGTCGGTGCGGTCGGTGTCCGACGGCGACGCCCCGGGGTCGCCCGACCGCGAGCTGTTCGAGGTCGCGCGGCTCGGGCTGGGCTCGGTCGGGATCCTGTCGGCGGTGACGCTCGAGGTCGTGCCGGCCTATCTGCTGCGCTCGACCGAGCGGGTGCGCCCGTGGGACGAGGTGGTCGGCGGCATCGACGCGCTGTTCGACGGCCACGACCGGTTCGACGCCTACTGGTTCCCGGGCACCGACCGGATGCTCACCTGGAGCCACGACCGCGTCTCCGCCGCCGACCGGGCCGAGCACGAGGCCTCCCGCCGCGGGCCGACCGGTGCGCTCCGGACGGCCGGGGCCGCCGCACGGTCCTTCCTCGACGACGAGGTGCTGGCCAACGGGGTCCTCGGCGGGGTCATGCAGGTGGCGGCCGCCGCTCCGGGCACGGTGCCCCGGCTCAACGCCGCGTGCGCGGCGGTCCTCGGCGACCGGACCCACGTGGCGCCGTCGGACCGGGTCATGGTGACGCGCCGACGGGTGCGGTTCGCGGAGATGGAGTACGCCCTGCCGCGCGCCGCGCTGGCCGAGGTGCTACGCGAGCTGGACCGCTGGCTGCGGGCCTCGGGCGAGCCGGTGCCGTTCCCGGTCGAGGTGCGCTGCACGGCGGCGGACGACGTGTGGCTGTCCACCGCCCGGGGCCGGGACACCGCCTACGTGGCGGTGCACCAGTACCACCGGATGCCGCGCGAGAGGTACTTCCGGGCGGCGGAGGAGATCTTCGTCGCGGCCGGCGGGCGCCCGCACTGGGGCAAGCTGCACACGCGCACGGCAGCGGACCTGGCCGACCACTACCCGCTGGACGACGTCGCGCGGGTGCGGGCCGCCGTCGACCCGGGCGGGGTGCTGCGCAACGACTACACCGACCGGGTGCTCGGCGTCCCCGGCTGA	MNFTTWGRTYAAAPARHAEPQVEAELRALVARAAADGLRVRAVGAGHSFTDAAVTDGLMLGLDHLSGLESLQRRPDGTALVTVGAGTRLHRLNRLLASWGLAMRNLGDIDRQSIAGAISTGTHGTGARLGGLATQVRGVRLVLPDGSVRSVSDGDAPGSPDRELFEVARLGLGSVGILSAVTLEVVPAYLLRSTERVRPWDEVVGGIDALFDGHDRFDAYWFPGTDRMLTWSHDRVSAADRAEHEASRRGPTGALRTAGAAARSFLDDEVLANGVLGGVMQVAAAAPGTVPRLNAACAAVLGDRTHVAPSDRVMVTRRRVRFAEMEYALPRAALAEVLRELDRWLRASGEPVPFPVEVRCTAADDVWLSTARGRDTAYVAVHQYHRMPRERYFRAAEEIFVAAGGRPHWGKLHTRTAADLADHYPLDDVARVRAAVDPGGVLRNDYTDRVLGVPG				NA	NA	NA	NA	NA
AK001_02401	483	ispF	COG0245	2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase	ATGATCCTGCCGCGTACCGGGATCGGTGTCGACGTGCACGCCGTCGCCCCCGAGGGCTCCGACCGCGAGCTGTGGGTCGCCGGGCTGCGCTGGCCGGGGGAGCGGGGCCTGGAGGGGCACTCCGACGCCGACGTGGCCGCGCACGCCGCCGCCGACGCGCTCTTCTCGGCGGCCGGTCTCGGCGGGCTGGGCACGCACTTCGGCACCAGCGAGCCCGAGTGGGCCGGGGCGAGCGGCGCCGTGCTGCTCGCGGAGGCCGCGCGACGGGTGCGCGAGGCCGGGTTCGAGATCGGCAACGTCGCCGTCCAGGTCGTCGGCAACCGACCGAAGATCGAACCGCGGCGCACCGAGGCCGAGGCGGCGCTGAGCGAGGCCGCCGGGGCGCCGGTCGCCGTCAGCGCGACCACCACCGACGGGCTGGGCCTGACCGGCCGCGGCGAGGGGATCGCCGCGATCGCCACGGCCCTCGTCGTCCCCCGCTGA	MILPRTGIGVDVHAVAPEGSDRELWVAGLRWPGERGLEGHSDADVAAHAAADALFSAAGLGGLGTHFGTSEPEWAGASGAVLLAEAARRVREAGFEIGNVAVQVVGNRPKIEPRRTEAEAALSEAAGAPVAVSATTTDGLGLTGRGEGIAAIATALVVPR	PGPT0007595_481	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770	NA	NA
AK001_02402	645	ispD	COG1211	2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase	ATGATCGCCCTGGCGGCGCGTGGCCTCGCGGCCTCCGGCGTCGTCGACGCGGTGGTGATCACCGCGCCGCCCGGACGGTCCGCGGACATGGTCGCCGCCGTCGGCCCTCTCTCGGTCCCCTGCGACGTCGTCGAGGGCGGCGCCACCCGGCAGGCGTCCGTCGCGGCCGGTCTCGACCGCGCCGACGCCGCCACCGACGTCGTCCTCGTGCACGACGCCGCCCGCCCGCTCGCCCCGCCGGCGCTGGTCGAGCGGGTCGTCACCGCGGTGCGCAGCGGCCGGTCCGCCGTCGTCCCCGGTCTGCCCGTGACGGACACGATCAAGCGCGTGGTGCCCGACGGCGGCAGCCCGGCCGCACCCGGCGGGGAGTCCGCCCAGCCGGTCGAGCGCGTCGTCGACACCCTCGACCGGACGGCGCTGAGGGCCGTGCAGACCCCTCAGGGCTTCGACCGCGAGCTGCTGCAGCGCGCGCACGCCGAGGGGGCGGCCCGGGCGGCTGCCGAGCACCTGGCGGCGACCGACGACGCCGGGCTGGTCGAGGCGCTCGGCGTCCCGGTGCACATGGTGCGGGGCGACGCCGCCGCCCTGAAGATCACCACCGCGCACGACCTGGCGGTGGCCGAGTTGCTGCTGGAGGGCCGATGA	MIALAARGLAASGVVDAVVITAPPGRSADMVAAVGPLSVPCDVVEGGATRQASVAAGLDRADAATDVVLVHDAARPLAPPALVERVVTAVRSGRSAVVPGLPVTDTIKRVVPDGGSPAAPGGESAQPVERVVDTLDRTALRAVQTPQGFDRELLQRAHAEGAARAAAEHLAATDDAGLVEALGVPVHMVRGDAAALKITTAHDLAVAELLLEGR	PGPT0007590_512	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991	NA	NA
AK001_02403	483	carD	COG1329	RNA polymerase-binding transcription factor CarD	ATGACGTTCACAGTAGGCGAGACGGTTGTCTACCCTCATCACGGCGCCGCGCTGATCGAAGAGGTCAAGACCCGGAAGATCCGTGGCGAAGAGAAGATGTACCTCAAGCTCAAGGTCGCCCAGGGCGACCTGACGATCGAGGTCCCGGCGGACAACGTCGACCTCGTCGGGGTGCGTGACGTGGTGGACCAGGAGGGCCTGGACAAGGTGTTCGACGTGCTGCGCGCGCCGTACACCGAGGAGCCCACGAACTGGTCGCGCCGGTACAAGGCCAACCTGGAGAAGCTGGCGTCGGGCGACGTCATCAAGGTGGGCGAGGTCGTGCGCGACCTGTCCCGCCGCGACTCCGACCGTGGCCTGAGCGCCGGCGAGAAGCGCATGCTGGCCAAGGCCCGCCAGATCCTCGAGTCCGAGGTCGCCCTCGCCGAGGGCGTGGACGAGGAGAAGGCCGGCGCCATCATCGACGAGGTGCTCGCCTCCTGA	MTFTVGETVVYPHHGAALIEEVKTRKIRGEEKMYLKLKVAQGDLTIEVPADNVDLVGVRDVVDQEGLDKVFDVLRAPYTEEPTNWSRRYKANLEKLASGDVIKVGEVVRDLSRRDSDRGLSAGEKRMLAKARQILESEVALAEGVDEEKAGAIIDEVLAS	PGPT0014830_1340	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-STRINGENT_STRESS_RESPONSE,PGPT0014830-ydeB|carD-K07736	NA	NA
AK001_02404	465			hypothetical protein	GTGGCTCGCTCCGCCCGCACCGCCCGTACCGCACTCGCCGCCGGCGTCGCCGTCGGGGCGCTGACGCTCGGCGCCTGCGCACCGATCACCACCGAGCTGCCCTATGCTCCGTCGGACGGCACCCGGGTCGACTTCGACGACCCGGAGGTGCGCGGGCTGAACCTGCTGGTCATCGCCACCGAGGAAGGTGGCGACGGCAACCTGCTGGGCGCGCTGGCCAACAACAGCGGCGAGGACGTCGAGTTCACCCTGACCGCCAGCGGTGCGGCGCCCGTCACGGTCGCGGTGCCCGCCGAGGAGACGGTCTACCTGGGCACCGACGGCGAGGAGACCCTGCTCAGCCCGGTCGCCACGATCCCCGGCGGGAACCTCGAGGCCACCCTCGAGGTCGCCGGCCAGAGCGAGCCGTTCTACCTGCCCGTGTTCGACGGCACGCTGCCGGAGTACGCCGACTACCTGCCCTGA	MARSARTARTALAAGVAVGALTLGACAPITTELPYAPSDGTRVDFDDPEVRGLNLLVIATEEGGDGNLLGALANNSGEDVEFTLTASGAAPVTVAVPAEETVYLGTDGEETLLSPVATIPGGNLEATLEVAGQSEPFYLPVFDGTLPEYADYLP				NA	NA	NA	NA	NA
AK001_02405	780	pstB1	COG1117	Phosphate import ATP-binding protein PstB 1	ATGGCACAGCGCATCGACACCAAGGATCTGAACATCTACTACGGCGACTTCCTCGCCGTGCAGGACGTCAACATGACGATCGAGCCCAAGTCGGTCACGGCGCTCATCGGGCCGTCCGGCTGCGGCAAGTCGACCTTCCTGCGCACGCTCAACCGCATGCACGAGGTCATCCCGGGCGCCCGGGTCGAGGGCCGTGTCGAGATGGACGGCGTGGACCTGTACGGCCCGAACGTCGACCCGGTCGCCGTGCGCAAGAACGTCGGCATGGTCTTCCAGCGCCCCAACCCGTTCCCGACGATGTCCATCCGGGACAACGTCCTGGCCGGGGTGAAGCTGAACAACAAGCGCATCTCGAAGGCGGAGGCCGACGACCTCGTCGAGTCCTCGCTGCACGGCGCGAACCTGTGGAACGAGGTCAAGGACCGGCTCGACAAGCCGGGTTCGGGCCTCTCCGGCGGTCAGCAGCAGCGGCTGTGCATCGCCCGCGCGATCGCGATCAAGCCCCAGGTGCTGCTCATGGACGAGCCCTGCTCGGCGCTCGACCCGATCTCGACCATCGCGATCGAGGACCTGATCGGTGAGCTCAAGCAGGAGTACACGATCGTCATCGTGACCCACAACATGCAGCAGGCGGCGCGCGTGAGCGACCGGACCGGCTTCTTCAACATCGCGGGCACCGGCAAGCCGGGCAAGCTGATCGAGATGGACGACACGGCGACGATCTTCTCCGCGCCGGCCGAGAAGGCCACCGAGGACTACGTCTCCGGCCGCTTCGGGTGA	MAQRIDTKDLNIYYGDFLAVQDVNMTIEPKSVTALIGPSGCGKSTFLRTLNRMHEVIPGARVEGRVEMDGVDLYGPNVDPVAVRKNVGMVFQRPNPFPTMSIRDNVLAGVKLNNKRISKAEADDLVESSLHGANLWNEVKDRLDKPGSGLSGGQQQRLCIARAIAIKPQVLLMDEPCSALDPISTIAIEDLIGELKQEYTIVIVTHNMQQAARVSDRTGFFNIAGTGKPGKLIEMDDTATIFSAPAEKATEDYVSGRFG	PGPT0002615_3208	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036	NA	NA
AK001_02406	960	pstA1	COG0581	Phosphate transport system permease protein PstA 1	ATGAGTGCCGCTACTGACCACACCTCCCCGGGCGGCAGCTCCGAGACCGCCCGGCTGCTCTCCACCGTCGACACGGGACGTCGTCGCACCGACCGTGCCATGCAGGTGCTGATCTACATCGCCTTCGCGCTGGCGATGATCCCGCTCGGCTGGCTGATCTTCACGGTCGTCGCCCAGGGTGGTGACCGGATCAGCATGGACTTCCTGATGCAGTCGATGCGCAACATCTTCGGCGGTGACCCGCGCGGCGGGATCTACCACGCGATCCTCGGCACCGTCGTCATCACGGCGCTGGCCACGGTCATCTCCGTGCCGATCGGCATCCTGACCGCGATCTACCTGGTGGAGTACGGCAAGGGCTGGCTGGCCCGCGCGGTGACGTTCTTCGTCGACGTCATGACGGGCATCCCGTCGATCGTCGCCGGTCTGTTCGCTTTCTCGCTCTTCGCGCTGATCTTCGGGCCCGCGGTCCGCATCGGGATCATGGGCGCGGTGGCCCTGTCGGTGCTGATGATCCCGGTCGTCGTGCGCTCCTGCGAGGAGATGCTCAAGCTCGTGCCGAACGAGCTCCGCGAGGCCTCCTACGCGCTGGGCGTCCCGAAGTGGCTGACCATCATCAAGGTGGTGCTGCGCACCTCGGTCGCCGGGCTGACCACCGGCGTGCTGCTCGCGGTCGCCCGCGTCATCGGTGAGACGGCCCCGCTGCTGGTCACCGTCGGCGTCACCGACTCGATCAACGCCAACCCGTTCGACGGCCGCATGATGACGCTGCCGGTGTTCGCCTATCGTCAGTACTCGCAGGGTGACGCACCCTGCCCCGGGGGAGACTCCGCGACCTGTGTCGCCGACATCGCCTCGCAGAACGCCTGGGGCGCGGCACTCGTGCTGATCGTCATGGTCCTGGCACTCAACCTGATCGGCCGCCTGATCACTCGCTGGTTCGCCCCCAAGCTGGGCTGA	MSAATDHTSPGGSSETARLLSTVDTGRRRTDRAMQVLIYIAFALAMIPLGWLIFTVVAQGGDRISMDFLMQSMRNIFGGDPRGGIYHAILGTVVITALATVISVPIGILTAIYLVEYGKGWLARAVTFFVDVMTGIPSIVAGLFAFSLFALIFGPAVRIGIMGAVALSVLMIPVVVRSCEEMLKLVPNELREASYALGVPKWLTIIKVVLRTSVAGLTTGVLLAVARVIGETAPLLVTVGVTDSINANPFDGRMMTLPVFAYRQYSQGDAPCPGGDSATCVADIASQNAWGAALVLIVMVLALNLIGRLITRWFAPKLG	PGPT0002610_1998	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038	NA	NA
AK001_02407	984	pstC2	COG0573	Phosphate transport system permease protein PstC 2	GTGAGTACCACCGTCAGTCCACCCGCCCAGGGTTCCCGGCGACGCCGCAGCGGCAACACCGACCGGGGTTTCAACCGCGTCTTCCGATGGATCGCCGTCGGGGCCGGAGCCACGATCCTGGCGGTCCTGGCCGCGGTCGCGCTCTTCCTGGTCTCCGAGGCCTGGCCGGCCATCATGGCCAGCCCCGAGGAGCTCGCCGAGGGCGTCCCGCGCTACCCGGAGGACACCTCCCTGCTGGCCTACCTCGGGCCGCTGATCTACGGGACGATCCTCGCCGCGGTGCTGGCGCTGTTCCTCGCGGTGCCGATCTCGATGGGCATCGCGCTGTTCATCTCGCACTACGCGCCGCGCCGGCTCTCCCAGCTCCTCGGTGCCCTGGTCGACCTGCTGGCCGCGATCCCCTCGGTGATCTACGGCCTGTGGGGCTTCTTCACGCTGGCGCCCGTGCTGACGCCGATCTGGATGTGGCTCAACGACAACCTCGGCTGGATCCCCCTCTGGGGCGGGAACGCCTCGCCGACGGGCCGGTCCATGGCCACGGTCGGCGTCGTCCTGGCGATCATGATCCTGCCGATCATCACCGCCGTCTCGCGCGAGGTCTTCCTGCAGACGCCGAAGCTGCACGAGGAGGCGGCGCTGGCCCTCGGCGCCACCCGCTGGGAGGTCGTCAAGACCGCCGTGCTGCCGTTCGGCCGCTCGGGCGTCATCTCCGCGTCGATGCTCGGCCTGGGCCGCGCGCTCGGCGAGACGATGGCGGTGCTGATGATCCTGTCGCCGGGATTCACGTACAGCCTCGACATCCTGGCCGCCGGCCAGCACCAGACCATCGCGGCCTACATCGCGGCCGACTTCCCGGAGTCGACCGGGCTCGGTGTCAACACGCTGATCGCCGCCGGCCTCGCCCTGTTCGTGATCACGCTGGCCGTCAACATGGCCGCGCGCTGGGTCGTGGCCCGCCGCAAGGACTTCTCGGGAGCCAACTGA	MSTTVSPPAQGSRRRRSGNTDRGFNRVFRWIAVGAGATILAVLAAVALFLVSEAWPAIMASPEELAEGVPRYPEDTSLLAYLGPLIYGTILAAVLALFLAVPISMGIALFISHYAPRRLSQLLGALVDLLAAIPSVIYGLWGFFTLAPVLTPIWMWLNDNLGWIPLWGGNASPTGRSMATVGVVLAIMILPIITAVSREVFLQTPKLHEEAALALGATRWEVVKTAVLPFGRSGVISASMLGLGRALGETMAVLMILSPGFTYSLDILAAGQHQTIAAYIAADFPESTGLGVNTLIAAGLALFVITLAVNMAARWVVARRKDFSGAN	PGPT0002620_2283	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037	NA	NA
AK001_02408	1143	pstS3	COG0226	Phosphate-binding protein PstS 3	ATGGAACGACTCGTGAACCTCAGCCGATTCACCCGTGCCGGATCTGCCGTCGCCGTCGGCGCGCTGGCCTTCAGCCTCGCCGCCTGCGGCTCGGACCCGGAGCCCGCGGGCTCCTCCGGCGACGAGACCACCGAGGCGTCGGAGGAGTCCGGCGACGACATGGAGGGCGGCCTGTCGGGCACGGTCTCCGGCGGCGGCGCCTCCTCGCAGGAGGCCGCCATGAACGCCTGGCGCGCCGGCTTCCAGGAGGCCAACCCCGAGGCGACCGTGAACTACGACCCCGTCGGTTCCGGCGGCGGCCGCACCGGCTTCGGCGACGGCTCCTACAAGTTCGCCGGTTCGGACGCCCCGCTGGACGACGAGGAGATGGCCGCCGCGGAGTCCCAGTGCGGCGAGGGTGGCGTCATCGAGTTCCCGGGATACGTCTCCCCGGTCGCCGTCGCCTTCAACCTCGACGGTGTCGACTCGCTGAACATGGCCCCCGAGACGATCGCCAACGTCTTCCTCGGCGAGATCACCTCCTGGGACGACGAGGCGATTGCCGCGGACAACCCGGACGCCGACCTGCCGAGCACCGACATCACGGTCGTGCACCGTTCCGACGAGTCGGGCACCACCGAGAACTTCGAGGAGTACCTCTACGCCGCGGCACCGGACGTCTGGACGGCGGAGCCGTCCGGCGTGTGGCCGGTGGACGGCCAGGAGTCGGCGCAGGGCAACTCCGGCGTCGTGGGCGCGGTCCAGGCCGGCCAGGGCACCATCACCTACGCCGACGCCTCGCAGGTCGGCGACCTCGGCTCCGTCGCGGTCGGCGTCGGTGGGGAGTTCATCGAGTACTCCGCCGAGGCGGCGGCCGAGGTCGTGGCCCAGTCGCCGCGGACCGAGGGCACCAGCGAGTACGTCTACACGATCGAGCTCGAGCGTGACATCCCGGGTACCTACCCCATCGCTCTGGTCTCCTACTCGCTGGCCTGCACCACCTACGCCGACGAGCAGACCGCCGAGCTCGTCAAGGGCTTCCTGTCCTACCTCGTCTCCGAGGAGGGCCAGCAGGCCGCCTCGGAGGCCGCCGGCTCCGCGCCGCTGTCGGACACCATCCGCGAGGCCGTCCTGCCCGGCATCGAGTCGATCTCCGCGGGCTGA	MERLVNLSRFTRAGSAVAVGALAFSLAACGSDPEPAGSSGDETTEASEESGDDMEGGLSGTVSGGGASSQEAAMNAWRAGFQEANPEATVNYDPVGSGGGRTGFGDGSYKFAGSDAPLDDEEMAAAESQCGEGGVIEFPGYVSPVAVAFNLDGVDSLNMAPETIANVFLGEITSWDDEAIAADNPDADLPSTDITVVHRSDESGTTENFEEYLYAAAPDVWTAEPSGVWPVDGQESAQGNSGVVGAVQAGQGTITYADASQVGDLGSVAVGVGGEFIEYSAEAAAEVVAQSPRTEGTSEYVYTIELERDIPGTYPIALVSYSLACTTYADEQTAELVKGFLSYLVSEEGQQAASEAAGSAPLSDTIREAVLPGIESISAG	PGPT0002625_1108	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040	NA	NA
AK001_02409	711	regX3_3	COG0745	Sensory transduction protein regX3	GTGACGCGCATCCTGGTGGTCGAGGACGAGGAGTCGTACCGCGACCCGCTGACGTATCAGCTGACCCGCGAGGGCTACGACGTCGTCGCGACGTCGAACGGTCACGACGCGCTCGAGCGGTTCGACGACGGCGGGGCGGACCTGGTGCTGCTCGACCTGATGCTTCCCGGCCTCAGCGGCACGGAGGTCTGCCGCGAGCTGCGCCAGCGCGGCGAGGTGCCGATCATCATGCTCACGGCGAAGGACTCCGAGATCGACAAGGTCGTGGGGCTCGAGCTGGGGGCGGACGACTACGTCACCAAGCCGTACTCGTTCCGCGAGCTCCTCGCGCGCATGCGCGCGGTGATGCGTCGCCGTGGTCCCGCGGGGGACGTCGGCAGCAGCCCGGACGACGACGGCGAGTCCGTCCTCGAGGTCGGCCCGGTGCGCATGGACGTCGAGCGGCACACTGTGGCCGTGCGCGGCGACTCGGTCTCGTTGCCGCTGAAGGAGTTCGACCTGCTCGAGCTGCTGCTGCGCAACGCCGGCCGCGTGCTGACCCGCGGACAGCTCATCGACCGCGTCTGGGGCGCCGACTACGTCGGTGACACCAAGACGCTGGACGTCCACGTCAAGCGCATCCGGTCCAAGATCGAGCCCGACCCCGGGGCGCCGAGCCTGCTGCTGACGGTGCGCGGGCTCGGCTACAAGTTCGCCGACACCGAGGGCTGA	MTRILVVEDEESYRDPLTYQLTREGYDVVATSNGHDALERFDDGGADLVLLDLMLPGLSGTEVCRELRQRGEVPIIMLTAKDSEIDKVVGLELGADDYVTKPYSFRELLARMRAVMRRRGPAGDVGSSPDDDGESVLEVGPVRMDVERHTVAVRGDSVSLPLKEFDLLELLLRNAGRVLTRGQLIDRVWGADYVGDTKTLDVHVKRIRSKIEPDPGAPSLLLTVRGLGYKFADTEG	PGPT0002675_126	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776	NA	NA
AK001_02410	1317	sasA_7		Adaptive-response sensory-kinase SasA	GTGGAAGGAATCATCCAGGGTGTGACGGCCGTCGTCGCCGGAGGTCTCGGCGTCGTGGTCGGAGTCGTCGCTGCCCTGGCCTTCCGCCTCTCCGACCGCGCGCAGCAGCGGGAGGCGGAGACGGACTCGGCCGAGCTCGACCAGGGCCTGGTGCGCGTGCTCTCCGTGCTGCGCTCCGCCGCCGTCGTCATCGACGACGACGACGAGGTCGTGCGGGCGTCGCCACCCGCGTACGCCCTGGGAGTGGTGCGCAACGACGCGCTGGCGCACGCCGCCGTCGTGGACCTCGTGCACGAGGTGCGGCGCGACGGCGTCATCCGCGAGCGCGAGCTGGAGCTGCCCCGCGGCCCCATCGGGTCGGGGACGGTGCTGCTGCAGGTCCGCGCGGCGCCGCTGGGGATGGACAAGCTGCTGGTGCTCGCCGAGGACCGGACGGAGGCGCGTCGCGTGGAGGCGATCCGCCGCGACTTCGTCGTCAACGTCTCGCACGAGCTCAAGACGCCGGTCGGTGCGCTGGCGCTGCTGGCCGAGACGGTCCAGGACGCCGCCGACGACCCGGAGGCCGTGCGTCGCTTCACCGAGCGGATGCAGGCGGAGGCCACACGCCTCTCGGCGCTGGTGCACGAGATCATCGAGCTCTCCCGGCTCCAGGTGGCCGGTGCGCTGCAGGAGATCCGTCCGGTCGCGGTGCGCGACGTCGTCGACGAGGCGGTCGACCGCGCCCGGACCAAGGCGCAGGCGAAGAACATCGCGATCACGGTGGGCGGGGGGACCGACAGCATCGTCTTCGGCGACCACAACCTGCTCGTCACCGCGGTCCGCAACCTGCTGGACAACGCCGTGTCGTACTCGGGGGAGAACACCCGCGTCGGCCTGGGCGTCCACGAGCGGGACGGCCTGGTCGAGATCGACGTCGTCGACCAGGGCGTCGGCATCTCCACGGAGGCCCAGCAGCGCGTGTTCGAGCGCTTCTACCGCGTGGACCCGGCCCGGTCGCGCGACACGGGCGGGACCGGCCTGGGCCTGAGCATCGTCAAGCACGTGGCTGCCGACCACGGCGGCGATGTGCGGGTCTGGTCCCAGCCCGGCAAGGGCTCCACCTTCACCTTGCGCATCCCGGCCGCGGACCTCGCGGCGGGTGCGCTGGACGCCTCGGCCTCGACCCCCGACGGGGGCCCGGCCGACGGCGGTCCGGACGACGGCGTCCAGTCCGACGATCCGGACGGCGACGTGTCCGCCGGGCCGCGAGACGGCCGGGGCGGACGCCCACAGCACGGTGCCGGAGACGGCCCGAGGAACGAGGAGGTAGGCGCGTGA	MEGIIQGVTAVVAGGLGVVVGVVAALAFRLSDRAQQREAETDSAELDQGLVRVLSVLRSAAVVIDDDDEVVRASPPAYALGVVRNDALAHAAVVDLVHEVRRDGVIRERELELPRGPIGSGTVLLQVRAAPLGMDKLLVLAEDRTEARRVEAIRRDFVVNVSHELKTPVGALALLAETVQDAADDPEAVRRFTERMQAEATRLSALVHEIIELSRLQVAGALQEIRPVAVRDVVDEAVDRARTKAQAKNIAITVGGGTDSIVFGDHNLLVTAVRNLLDNAVSYSGENTRVGLGVHERDGLVEIDVVDQGVGISTEAQQRVFERFYRVDPARSRDTGGTGLGLSIVKHVAADHGGDVRVWSQPGKGSTFTLRIPAADLAAGALDASASTPDGGPADGGPDDGVQSDDPDGDVSAGPRDGRGGRPQHGAGDGPRNEEVGA	PGPT0002670_164	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002670-senX3-K07768	NA	NA
AK001_02411	669	phoU2	COG0704	Phosphate-specific transport system accessory protein PhoU	ATGCGAGAGATCTTCGACGCCGAGCTGAAGCAGATCGGCGACGGTCTGGTCGAGATGAGCCGGCTCGTCGAGTCCGCGATCACGCGGGCCGGCGCGGCCCTGCTCGACGGCGAGCACCAGCTCGCACAGGACGTCATCGCCTCCGACCACGAGATCGACCGGCTCGAGCGCGAGCTGGACGAGCGGTGCGTGCACGTGCTCGCCCAGCAGGCACCGGTCGCCACCGACCTGCGGGTGGTCATCACCGCGCTGCGCATCAGCTCCACGCTGGAGCGGATGGGCGACCTGGCGCGGCACGTGGCCGAGGTGGCGCGCGGCCGGTACCCGGCGCTCGCCGTGCCGGAGTCGGCCCGCGAGACCTTCGTGGAGATGAACCAGTCGGCCGCGCTCGTCGCCCGGCGCACCAGCGAGCTGCTCGCCACGCGGGACGTCGCGCTGGCCGAGGAGATCGAGCGGGGCGACGACGTCATCGACCGCCTGCACCAGGACACCTTCGCCGCGACGCTGTCGCCGGACTGGAGCGGCACCTCCCAGGAGACGATCGACGTCACGCTGCTGGCCCGCTACTACGAGCGGTTCGGCGACCACGGCGTGTCGGTCGCGCGCCGCATCACCTACCTGGTGACCGGCGACTTCGAGGCGGAGCAGCACGCTCCCGCCGACGTCTGA	MREIFDAELKQIGDGLVEMSRLVESAITRAGAALLDGEHQLAQDVIASDHEIDRLERELDERCVHVLAQQAPVATDLRVVITALRISSTLERMGDLARHVAEVARGRYPALAVPESARETFVEMNQSAALVARRTSELLATRDVALAEEIERGDDVIDRLHQDTFAATLSPDWSGTSQETIDVTLLARYYERFGDHGVSVARRITYLVTGDFEAEQHAPADV	PGPT0002630_2256	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ARSENIC_RESISTANCE	ARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039	NA	NA
AK001_02412	741	gpmA	COG0588	2,3-bisphosphoglycerate-dependent phosphoglycerate mutase	ATGACCTACACCCTCGTGCTGCTCCGCCACGGCGAGAGCGAGTGGAACGCGAAGAACCTCTTCACCGGCTGGGTCGACGTGCCCCTGTCGGAGAAGGGCACCGAGGAGGCGAAGCGTGGTGGTGAGCTCCTGAAGGACGCCGGCGTGACGCCGGACATCCTGCACACCTCGCTGCTGCGCCGCGCGATCATGACGGCGAACCTCGCCCTCGACACCGCCGACCGGCACTGGATCCCGGTCAAGCGCAGCTGGCGTCTCAACGAGCGTCACTACGGCGACCTGCAGGGCAAGGACAAGAAGCAGGTCCGCGACCAGTACGGCGAGGAGCAGTTCATGCTCTGGCGCCGTTCCTACGACGTGCCGCCGCCCGAGATCGAGCTGGGCTCGGAGTTCTCCCAGGACGCCGACGTGCGCTACGCCGGCGAGCCGATCCCGCGGACCGAGGCGCTCAAGCAGGTCCTCGAGCGGGCGCTGCCGTACTGGGAGTCGGCGATCGTGCCGGACCTGCAGGACGGCAAGACGGTCCTGGTCGCCGCGCACGGCAACTCGCTGCGCGCGCTGGTCAAGCACCTCGACGGCATCGACGACGAGACCATCGCCGGCCTCAACATCCCCACGGGCATCCCGCTGGTCTACGAGCTGGACCCGGAGACGCTGAAGCCGACCAACCCGGGCGGCACCTATCTCGACCCGGAGGCGGCCAAGGACGCGATCGCGGCCGTGGCCAGCCAGGGCAAGTAG	MTYTLVLLRHGESEWNAKNLFTGWVDVPLSEKGTEEAKRGGELLKDAGVTPDILHTSLLRRAIMTANLALDTADRHWIPVKRSWRLNERHYGDLQGKDKKQVRDQYGEEQFMLWRRSYDVPPPEIELGSEFSQDADVRYAGEPIPRTEALKQVLERALPYWESAIVPDLQDGKTVLVAAHGNSLRALVKHLDGIDDETIAGLNIPTGIPLVYELDPETLKPTNPGGTYLDPEAAKDAIAAVASQGK	PGPT0018030_2248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018030-gpmA-K01834	NA	NA
AK001_02413	435			F420H(2)-dependent quinone reductase	ATGGCGATCACCGGAGAGTACGTCCCCAGCCCGTCCGAGTTCGTGGCGAACCACGTCGAGACCTACGAGGCCTCGGGAGGCACCGAGGGCACCACGATGCGCGACAAGCCGGTCATCATCCTCACGACCGTCGGCGCGAAGTCCGGCAAGGTGCGCAAGATCCCGCTGATGCGGGTCGAGCACGACGGTTCCTACGCCGTCGTCGCCTCGATGGGCGGCGCCCCGCAGCACCCCGTGTGGTTCCACAACATCGTGGCGAACCCCCGCGTGGAGCTCCAGGACGGTCCGGAGAAGCACACCTACGTGGCCCGGGAGGTCACCGGCGACGAGAAGGCCGTCTGGTGGGAGCGGGCCGTCGAGGCGTGGCCCGACTACGCGGACTACCAACGCAAGACCGACCGCGAGATCCCCGTCTTCGTCCTCGAGCGCGACTGA	MAITGEYVPSPSEFVANHVETYEASGGTEGTTMRDKPVIILTTVGAKSGKVRKIPLMRVEHDGSYAVVASMGGAPQHPVWFHNIVANPRVELQDGPEKHTYVAREVTGDEKAVWWERAVEAWPDYADYQRKTDREIPVFVLERD				NA	NA	NA	NA	NA
AK001_02414	1323	mshA_5	COG0438	D-inositol 3-phosphate glycosyltransferase	GTGAGCACGGACCACGAGGGGCCGCGGGTGGCGATGATCTCCGTGCACACCTCGCCCCTGGACCAGCCCGGCACCGGGGACGCCGGCGGGATGAACGTCTACGTCCTCGAGTTGTCCCGGGCCCTGGCCCGCCGCGGGGCCGAGGTGGAGATCTACACGCGCGCCACGTCGTCGGCGCAGCCCAAGGTGGTCCAGGCGGAGCCGGGCATCCGCGTCGTGCACGTCGCCGCGGGACCGTACGAGGGCCTGGACAAGAACGACCTGCCGGCGCAGCTGTGCTTCTTCAGCGCCGGGGTGCTGCGGGCCGAGGCGCACCGCCCCGCCGGCTGGTACGACGTCGTGCACTCGCACTACTGGCTGTCGGGGCAGGTGGGCTGGCTCGGCGCCGACCGCTGGGACGTGCCGCTGGTGCACACGATGCACACGATGGCGCGGGTCAAGAACGCCGCGCTGGCCCCGGGGGACACCCCCGAGCCGCACAGCCGCGTCATCGGCGAGGAGCAGGTCGTCGCCGAGTCCGACGCGCTGGTCGCCTCCACGACCGAGGAGGCCGAGGACCTGGTGGGCCACTACGGCGCCGACCCGGACCGCGTGCACGTCGTGGCCCCGGGCGTCGACCTGGCCACCTACGCCCCGCTGGAACCTGGTCCGGGGGAGACGACGGCGCAGGCGCGGCGGGCGCTGCGCGAGCGGCTCGGGCTGCCCACGGACCGTCCCGTGGTGCTGTTCGCGGGCCGTGTTCAGCTCCTCAAGGGTCCGGACGTGCTGGTGCGCGCCCTGGGCGTGATGGCCGACCACGCCGCGACCGTCGCCGACCCGGACGCCCTGCGCGACGGCGGGGGGTCGCGAGTGCCGACCCTGGCGGTGCTGGGCGGTGCCAGCGGACGTCCGACGGCGGTGCGCGAGCTGGAGGCGCTGGCCCACCAGATGGGCGTGACGGACCACGTCGTCGTGCGACCGCCGGTCTCGCGGGCGGAGCTGGCCGACTGGTACCGGGCGGCCGACGTCGTGGCGGTGCCGTCGCACAACGAGTCCTTCGGGCTGGTGGCGGCCGAGGCGCAGGCCTGCGGTACGCCGGTCGTGGCGGCGGCCGTGGGCGGGCTGCGGACCGTGGTGATCGACGACGTCTCCGGGGTGCTGGTCGACGACCACAGCCCGTGGACGTGGGCGGCCGAGCTCGGCGCGCTGCTGGGCGACGAGGCGCGGCGCGAGCGGCTCGCGGCCGGAGCCCGGCGGGCGAGCGAGCGGTTCTCCTGGGACCGTGCAGCGGCGGCGATGCTGGACGTGTACTCCCAGGCCGCGAAGGTCCGCCGCGCCCGCTGA	MSTDHEGPRVAMISVHTSPLDQPGTGDAGGMNVYVLELSRALARRGAEVEIYTRATSSAQPKVVQAEPGIRVVHVAAGPYEGLDKNDLPAQLCFFSAGVLRAEAHRPAGWYDVVHSHYWLSGQVGWLGADRWDVPLVHTMHTMARVKNAALAPGDTPEPHSRVIGEEQVVAESDALVASTTEEAEDLVGHYGADPDRVHVVAPGVDLATYAPLEPGPGETTAQARRALRERLGLPTDRPVVLFAGRVQLLKGPDVLVRALGVMADHAATVADPDALRDGGGSRVPTLAVLGGASGRPTAVRELEALAHQMGVTDHVVVRPPVSRAELADWYRAADVVAVPSHNESFGLVAAEAQACGTPVVAAAVGGLRTVVIDDVSGVLVDDHSPWTWAAELGALLGDEARRERLAAGARRASERFSWDRAAAAMLDVYSQAAKVRRAR	PGPT0024580_315	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNS	CE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521	NA	NA
AK001_02415	1092	pgl_2	COG2706	6-phosphogluconolactonase	ATGACCACTTCGAGCGCCTCCGTGCCGCTGTGGGTCGGGACCTATCCCGCGGCCGGCGCAGCCGCCGGGAGCGGCGAGGGCGTCTGGCGCGTCGACCTGGACCGCGGTGACGGGTCGCTCGGCGAGCCGTGGCTCGCCACCGAGCTGGCCTCGCCGTCGTTCCTCGCCCGTCACCCGTCCGCCCCGGTCCTGTACGCCGTGACCGAGACGCCGCACGGCGCGCTCACCGCCCTGCAGGACGGCGGTGACGGCGCGCTGGCGGTGCTGTCGTCCGTCGGCTCCGGCGGGGACGACCCCTGCCACGTCGCCGCCGCGGACCGGACCGTGTGGGTCGCGAACTACGGCGACGGCGTCGCCGCGGCCCTGGGCCTGGCCGCCGACGGCGCGCCCACGCCGGAGCACCGGTCCCTGCACGCGGGCTCGGGCGCCGGCCCGGTCACGGACCGGCAGGAGGGCCCGCACGCCCACCAGGTGACGATGACCGGTCGCCGGGTGCTCGTCACGGACCTGGGCGCCGACGTCGTGCGGAGCTACCCCCTGGACCCGGCGCCCGGCGACCACGGGCTCCTGCCCGACGACGGCGGCTCGGTCGCGGCCTGGCTGCCCGCCGGTACCGGACCCCGGCATCTCGTCGTGCTGCCCGGCGGCGGGCTGGTCGTGGCCGGCGAGCTCGACGCCCGCCTGCACCTGCTGCTGCCGGCCGAGGGCGGCGCGTGGCGGCACGTGGGCAGCGTCCCGGTGTCCCCGCAGGCGCCGGTCGGGGAGGCGTTCCCCGGTCACCTCACGCTCAGCGCCGACGGCCGCCGGCTCCACGTCGGCGTGCGTGGCCCGGACCTGCTGGCGGTGCATGCGGTGTCCGACGGCGAGTCCCCGCAGATCACGCACCTCGCCGACGTCGCGCTCGGCGAGGGTGGCTGGCCGCGGCACCACGAGGTCCTCGCCGGCGCCGACGGGACCGAGCTGGCCGTGGTGGCCCTGCAGGGCACGAGCGAGCTCGTCACGGTGCGGATCGACACGGCCTCCGGAGCGGGCGAGGTCGTCGACCGCGCGCCGTGGGCCACGCCGCCGTCGTGCGTGCTGGAGGCCGGGTGA	MTTSSASVPLWVGTYPAAGAAAGSGEGVWRVDLDRGDGSLGEPWLATELASPSFLARHPSAPVLYAVTETPHGALTALQDGGDGALAVLSSVGSGGDDPCHVAAADRTVWVANYGDGVAAALGLAADGAPTPEHRSLHAGSGAGPVTDRQEGPHAHQVTMTGRRVLVTDLGADVVRSYPLDPAPGDHGLLPDDGGSVAAWLPAGTGPRHLVVLPGGGLVVAGELDARLHLLLPAEGGAWRHVGSVPVSPQAPVGEAFPGHLTLSADGRRLHVGVRGPDLLAVHAVSDGESPQITHLADVALGEGGWPRHHEVLAGADGTELAVVALQGTSELVTVRIDTASGAGEVVDRAPWATPPSCVLEAG	PGPT0014975_1389	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014975-ykgB|pgl-K07404	NA	NA
AK001_02416	333	lsr2		Nucleoid-associated protein Lsr2	GTGGTCCAGAAGACCCAGGTCGTGCTGTTGGATGACATCGACGGCACGGAGGGTGACGAGACCGTCACTTTTGCGCTGGACGGCGTCTCCTACGAGATCGACCTCACCTCGGCCCACGCGGCCGAGCTGCGGGAGTCCTTGGCGAAGTGGATCGGGCACGGCCGCAAGTCCGGCCCGAAGACCGCGACCCGCGCGGCAGGCCCGCGCCGCGGCCGCACGGACCGTGCGCAGCTGCAGAAGATCCGCGAGTGGGCACGCGAGAACGGCCACGAGGTGAACGACCGCGGCCGGATCCCGGCGCGCGTGCTGGAGGCCTACGAAGCGGCGCACTGA	MVQKTQVVLLDDIDGTEGDETVTFALDGVSYEIDLTSAHAAELRESLAKWIGHGRKSGPKTATRAAGPRRGRTDRAQLQKIREWARENGHEVNDRGRIPARVLEAYEAAH				NA	NA	NA	NA	NA
AK001_02417	165			hypothetical protein	GTGGACACTTTCTGGGCAGTCGTCGCGGGTCTCGTGCCGTCGATCGGTGTCGGACTCCTCTTCTGGTTCGCCATGCGCAAGATCGTGCGGGCCGACCGGAATGAACGGGCCGCGCAGCAGCAGTTCGAGCAGGCGCGTTCCGAGCGCGCGGACATGAATGATTGA	MDTFWAVVAGLVPSIGVGLLFWFAMRKIVRADRNERAAQQQFEQARSERADMND				NA	NA	NA	NA	NA
AK001_02418	1515	lysS1	COG1190	Lysine--tRNA ligase 1	GTGACCACCCCCGAGAATGTCGACTCCGCCGTGTCCGACGACCTGCCCGAGCAGCTCCGGGTCCGCCGTGAGAAGCGCGACCGGATCATCGCTTCCGGCGGCGAGGCCTACCCGGTCAACCTGCCGATCACGCACACGATCGCGCAGGTCCGCGCCGCCTACGACCACCTGGAGGCCGGTCAGGAGACCGACGACCTCGCCGGTGTCGCGGGCCGGGTCGTGTTCCTGCGCAACACGGGCAAGCTCTGCTTCGTCGCCCTCCAGGACGGCGAGGGCAACCGGCTGCAGGCCATGCTCAGCCAGAAGGTGGTGGGGGAGGAGGCGCTCACCGCGTTCAAGGGTGACGTCGATCTCGGCGACCACGTCTTCGTCCACGGTCGCGTGGGGGCCTCGCGGCGCGGGGAGCTGAGCATCTTCGCCGACTCCTGGCAGCTCGCCTCCAAGGCGCTGCGCCCGTTGCCGGTGCTGCACAAGGAGCTCTCCGAGGAGGCGCGGGTCCGTCAGCGGTACGTCGACCTCATCGCGCGCCCGGCGGCCCGGGACATGGTCCGCCTGCGTGCCGCCGTCGTGCGCTCGCTGCGCGAGAACTTCCACGCCCGCGACTTCCTCGAGGTCGAGACGCCGATGCTGCAGACCGTCGCCTCGGGTGCCTCGGCGCGTCCTTTCGCGACCCACATGAATGCCTACGACATGGAGCTGTTCCTGCGTATCGCGCCGGAGCTGTTCCTCAAGGAAGCCGTCGTGGGTGGCGTGGAACGCGTCTTCGAGATCAATCGCAACTTCCGCAACGAAGGTGCGGACTCGTCGCACTCCCCGGAGTTCGCGATGCTCGAGGCCTATGAGGCCTACGGTGATTACGACACCATGGCGGCCCTCACGCAGGACCTCGTGCAGACCGCCGCGCGCGAAGCGCTCGGCACGACCGTGGTGACGCTCCCGGACGGCGAGGAGTACGACCTCGGCGGCGAATGGGCGCACATCACGATGTACGGATCCCTTTCCGAGGCGGTCGGTGAGGAAATCACGCCCGAGACCTCGGTCGAGCACCTCAACGAGCTCGCCGAGAAGGTGGACATCTCGATCGACCCGAAGCAGATGATCCACGGCAAGCTGGTCGAGGAGCTGTGGGAGCACCACGTCGGCAACCACCTGTACGCGCCGACTTTCGTGCGCGACTTCCCGGTGGAGACCTCGCCGCTGACCCGCGCCCACCGCACCATCCCGGGCGTGGTGGAGAAGTGGGACCTGTACGTGCGCGGTTTCGAGCTCGCCACGGCCTACTCCGAGCTCGTGGACCCGGTCGTGCAGCGCGAGCGGTTCGCCGAGCAGGCGCGGCTCGCCGCGGCCGGCGACGACGAGGCGATGGCGCTCGACGAGGACTTCCTCACCGCGATGGAGTACGCCATGCCGCCGGCCGGCGGCATGGGGATGGGTGTCGACCGACTTCTCATGGCTCTCACGGGGGCGGGAATCCGGGAGACGATCCTCTTCCCCCTCGTCAAGCCCACGCACTGA	MTTPENVDSAVSDDLPEQLRVRREKRDRIIASGGEAYPVNLPITHTIAQVRAAYDHLEAGQETDDLAGVAGRVVFLRNTGKLCFVALQDGEGNRLQAMLSQKVVGEEALTAFKGDVDLGDHVFVHGRVGASRRGELSIFADSWQLASKALRPLPVLHKELSEEARVRQRYVDLIARPAARDMVRLRAAVVRSLRENFHARDFLEVETPMLQTVASGASARPFATHMNAYDMELFLRIAPELFLKEAVVGGVERVFEINRNFRNEGADSSHSPEFAMLEAYEAYGDYDTMAALTQDLVQTAAREALGTTVVTLPDGEEYDLGGEWAHITMYGSLSEAVGEEITPETSVEHLNELAEKVDISIDPKQMIHGKLVEELWEHHVGNHLYAPTFVRDFPVETSPLTRAHRTIPGVVEKWDLYVRGFELATAYSELVDPVVQRERFAEQARLAAAGDDEAMALDEDFLTAMEYAMPPAGGMGMGVDRLLMALTGAGIRETILFPLVKPTH	PGPT0012225_3587	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567	NA	NA
AK001_02419	939	nadC	COG0157	Nicotinate-nucleotide pyrophosphorylase [carboxylating]	GTGAGCACGCCCGAGCACCCCCTCCCGGTCCACGCCTCGCCGTCCGCCGTGGATCCCACCCTCGACCCGGCGTGGACCCGCCGCGCCGTCGAGATCGCCCTGGAGGAGGACCTCGGCCCCGCACCCGGCCGGGACGTGACCTCCCAGGCGACCATCCCCGCGTCCGACGTCGGCACGGCCGACCTGGTGGCGCGCGAGGCCGGGACGGTGGCCGGCCTCGTCGTCGTCGACGAGACGCTGGCGCAGACCGCGACACGGCTCGGGCTGCCCGCCCCCGCGGCGACGTTCCACGCCCAGGACGGCGACGCCGTCGTGCCCGGGCAGGTGCTGGCCCGGCTCACCGGGCCGGTGCAGGTGCTGCTCGTGGCCGAGCGCACCCTGCTCAACCTGGCCTCCCGCGCGTCGGGCGTGGCCACGGCGACGGCGGAGTTCGCCCGCGAGCTGGCCGGCACCGGGGCGCAGGTGCTCGACACCCGCAAGACGACGCCGGGGCTGCGCGCCCTGGACAAGTACGCCGTGCGGGCCGGCGGCGGGACGAACAAGCGCATGGGCCTGTACGACGTCGCGATGGTCAAGGACAACCACGTCGTGGCCGCGGGCTCGGTGCGCGGCGCCGTCGAGGCCGTGCGACGCACCTTCCCCGACGTGCTCGTGCAGGTCGAGGCCGACACCACCGACCAGGCCCTGGAGGCGCTCGACGCCGGGGCGGACTTCCTGCTGCTGGACAACATGCCGACGCCGGTGCTCGCCGAGACGGTGGCCGCGGTGCGCGCCCGGGAGGGTCGCGACGGGGTCCCGGAGCACGTCGAGCTCGAGGCCACCGGCAACCTCACCGTGGAGCGGGCGCGCGAGGTCGCGAGCACCGGGGTGGACTACCTGTCCGTGGGGGCGCTGACGCACTCGGCACCGATCCTCGACCTGGCGCTCGACCTGCGCTGA	MSTPEHPLPVHASPSAVDPTLDPAWTRRAVEIALEEDLGPAPGRDVTSQATIPASDVGTADLVAREAGTVAGLVVVDETLAQTATRLGLPAPAATFHAQDGDAVVPGQVLARLTGPVQVLLVAERTLLNLASRASGVATATAEFARELAGTGAQVLDTRKTTPGLRALDKYAVRAGGGTNKRMGLYDVAMVKDNHVVAAGSVRGAVEAVRRTFPDVLVQVEADTTDQALEALDAGADFLLLDNMPTPVLAETVAAVRAREGRDGVPEHVELEATGNLTVERAREVASTGVDYLSVGALTHSAPILDLALDLR	PGPT0013370_300	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767	NA	NA
AK001_02420	1677	nadB	COG0029	L-aspartate oxidase	GTGAGCCCGGACCGGCTCGCCCGTTCCCTCGTCGCCCCGGCCCCGGGCTGGACGACGCGCGCGGACGCCGTCGTCGTCGGCTCCGGGATCGCCGGGCTGACGGCTGCCCTCGAGCTGCGCACCCGGGTGCCGCACGTGCTCCTGGTGACCAAGGGCGAGCTGTCCTCCGGGTCCACCGTGTGGGCCCAGGGCGGCATCGCCGCGGTGCTGCACCCGGACGACACCCCCGAGGCGCACCGGCACGACACGCTCGTGGCCGGCGGCGGCCTGAGCGACCCCGAGGCCGCCGACGTGCTGGTCACCGAGGGCCCGCAGCGGGTGCACGAGCTGGTGGCCCGCGGCGCGAGCTTCGACCGCGCCGACGACGGCGGCATCGCCCTGACCCGCGAGGGCGGCCACCGGGCCGACCGGATCGCGCACGCCGGCGGCGACGCCACCGGGGCGGAGATCTCCCGCGCGCTGGTCGCCCAGATCGAGGCCGTGCAGCACGACCCGGGGATCGAGGTGATCTCCAACGCGCTCGTGCTCGACGTGCTCACCGGCGCGCCGGACGCCTCCGGTCAGCGGCCCGTGGCCGGCGTGACCCTGCACGTGCGCGGCGCGGGCTCCCGCGACGGCGTCGGGGCCGCCCTGGCGCCCGTGGTGGTGCTCGCCACCGGGGGAGTGGGGCAGGTGTTCCGGTCCTCGACGAACCCGCCCGGGGCCACCGCCGACGGCATCGCCGCGGCGCTGCGTGCCGGTGCCGTGCTGGGCGACCTGGAGTTCGTGCAGTTCCACCCCACGGTGCTCTGGCTGGGCGCCGGCGCGCGGGGCCAGCTCCCGCTGATCAGCGAGGCCGTGCGGGGCGAGGGGGCGCTGCTGCTCGACGTGCGCGGGCACCGGTTCATGCCGGACGTGCACGAGCTGGCCGAGCTGGCCCCGCGCGACGTCGTGGCGCACGCCATCGTGCGGCAGATGGCGGCGACCTCCGCGGACCACGTGCTGCTCGACGCCCGGGCGCTCGGGGCGGACTTCCTGCGCCGCCGGTTCCCGGGGATCACCGCCCGGCTGCTCGAGCAGGGCATCGACTGGACCGAGGAGCCCGTGCCGGTCGCCCCGGCCCAGCACTACCACTCGGGCGGTGTCGTCACGGACCTGCACGGACGCACGTCGGTCCCGGGGCTGTACGCCGTCGGGGAGGTCGCGTGCACGGGAGTGCACGGTGCCAACCGGCTGGCCTCGAACTCGCTGCTCGAGGGGCTCGTGTTCGCCCACCGGGCCGCCGCCGACGTCGTCGCACGCTTCGAGGCGGGCGAGCTGTCGTCGGCGCCCGAGCCCGTCGAGCGCCCCGGCGGCGCCGCCCTGGTCGCGGCCGCGGCGCGGTCGCGGATCCAGCGGGTCACGTCCGAGGGGGCCGGGCCGATCCGCACCGCCGAGTCCCTGGCGCAGGCGGAGGCGGCCCTGGCGGACGTGACGACGTCGGCCCACGGCGACGCCGGGGTGGTGGCCGCCCCGCAGGTCGCGGAGTGGGAGACGACGAACATCCACCAGGTGGCCCGGGCGCTGGTGCGGGCTGCCGCCGAGCGCGCCGAGAGCCGTGGCGGCCACTTCCGCGCGGACTTCCCGGACCGGGACCCGGCCGGGGAGCGTCGCGTGACCGTGGCCCTGGAGGACGACGGGACCCTCGTCACGAGGTAG	MSPDRLARSLVAPAPGWTTRADAVVVGSGIAGLTAALELRTRVPHVLLVTKGELSSGSTVWAQGGIAAVLHPDDTPEAHRHDTLVAGGGLSDPEAADVLVTEGPQRVHELVARGASFDRADDGGIALTREGGHRADRIAHAGGDATGAEISRALVAQIEAVQHDPGIEVISNALVLDVLTGAPDASGQRPVAGVTLHVRGAGSRDGVGAALAPVVVLATGGVGQVFRSSTNPPGATADGIAAALRAGAVLGDLEFVQFHPTVLWLGAGARGQLPLISEAVRGEGALLLDVRGHRFMPDVHELAELAPRDVVAHAIVRQMAATSADHVLLDARALGADFLRRRFPGITARLLEQGIDWTEEPVPVAPAQHYHSGGVVTDLHGRTSVPGLYAVGEVACTGVHGANRLASNSLLEGLVFAHRAAADVVARFEAGELSSAPEPVERPGGAALVAAAARSRIQRVTSEGAGPIRTAESLAQAEAALADVTTSAHGDAGVVAAPQVAEWETTNIHQVARALVRAAAERAESRGGHFRADFPDRDPAGERRVTVALEDDGTLVTR	PGPT0013355_468	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278	NA	NA
AK001_02421	498	panD		Aspartate 1-decarboxylase	GTGACTGACCAGACTGCATCGCCCGTCGGCTCGACCCCGACGGACCGCCGGACCGGTGCGCGCCGCCCGGCGTCGTTGCAGCGCCCGATGATGATCGGCAAGATCCATCGCGCGACGGTGACGCAGGCCGACCTGCACTATGTGGGATCCATCACGGTCGACACCGACCTCATGGACGCCGCCGACCTCCTCCCCGGCCAGCAGGTCGACGTCGTGGACGTCGACAACGGCGCCCGGCTCACCACCTACGTGATCCCCGGCGAGGCCGGCTCGGGCCAGATCAGCATCAACGGCGCCGCCGCGCACCTGGTGCACCCCGGCGACACCGTCATCATCATCGCCTACGGCATGCTCTCGGACGCCGACGCGCGATCCTTCCTGCCGCACGTCGTCTTCGTCGACGGCGAGAACAGGATCGTCGACGTGCACGACGACCCCGGCCAGGTCCCGGACGGCTACGGACTCGTCAGCTCCGGCATCCCCGTCGGCGCGCGGTGA	MTDQTASPVGSTPTDRRTGARRPASLQRPMMIGKIHRATVTQADLHYVGSITVDTDLMDAADLLPGQQVDVVDVDNGARLTTYVIPGEAGSGQISINGAAAHLVHPGDTVIIIAYGMLSDADARSFLPHVVFVDGENRIVDVHDDPGQVPDGYGLVSSGIPVGAR	PGPT0008890_6	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579	NA	NA
AK001_02422	966	panC	COG0414	Pantothenate synthetase	ATGACCGCACCTGCTGACCGTGCGACGCCGTCGTCGCCCGCCGACGGCGTCGTCGCGCACACCCGCGCCGAGCTGCGGGACGCCCTCGCCGCCTGGACGATCGGCGGCGCGGACCCCACCGACCGACGCGCCGTGGTGATGACGATGGGTGCACTGCACGAGGGGCACCTGGAGCTGGTCCGTCGGGCGCGTGCCGAGGTCGGCCCCGGCGGCCAGGTCGTGGTGACGATCTTCGTCAACCCGCTGCAGTTCGGCGAGGGGGAGGACCTCGACGCCTACCCCCGCGACCTCGCCGGGGACCTGGAGCGGCTGGCCGAGGTGGGGGCCGACGTCGTCTTCGCCCCGACGCCCGACGTGGTCTACCCCGACGGCGACCCGATCGTGCGGGTCTCGGCCGGACGGATCGGCGAGGTGCTGGAGGGTGCGTTCCGGCCCGGCCACCTCGACGGCGTGCTGACCGTGGTGCTCAAGCTGATGCAGCTCACGCGGCCGGACGTCGCGCTGTTCGGCGAGAAGGACGCCCAGCAGCTCCTCGCCGTGCGGCGCATGGTGCGCGACCTCGACCTGGAGGTCGAGATCGTCGGCGTGCCCACCGTGCGCGACGCGGACGGGCTGGCGCTGTCGTCGCGGAACGCGTACCTGTCCGACGGCGAACGGGACGCCGCCCTGGCGCTGTCGCGGGCGCTCCGGGGAGGGGCCGAGGAGGCCGCCGCCGGGCACGGCGCGCCGGCGGTCCTGGCGACGGCCTCGGGAATCCTCAACGCGGTCCCCGACGTTGTCGTGGACTACCTGGCACTCGTCGACCCGGATACTGTGGAGGAGGTTCCCGGTGACCGCACCGGGCCCGCCCTGCTGCTCGTCGCCGCGCGCGTGGGCACCACACGACTGATCGACAACCAGGCCGTGGACGTCGTCGCGTCCTCTGACGAGGACGAAACCGCAGGCCAGGAGGCAACCCGTGACTGA	MTAPADRATPSSPADGVVAHTRAELRDALAAWTIGGADPTDRRAVVMTMGALHEGHLELVRRARAEVGPGGQVVVTIFVNPLQFGEGEDLDAYPRDLAGDLERLAEVGADVVFAPTPDVVYPDGDPIVRVSAGRIGEVLEGAFRPGHLDGVLTVVLKLMQLTRPDVALFGEKDAQQLLAVRRMVRDLDLEVEIVGVPTVRDADGLALSSRNAYLSDGERDAALALSRALRGGAEEAAAGHGAPAVLATASGILNAVPDVVVDYLALVDPDTVEEVPGDRTGPALLLVAARVGTTRLIDNQAVDVVASSDEDETAGQEATRD	PGPT0008750_244	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISM	PLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008750-panC-K01918	NA	NA
AK001_02423	951			hypothetical protein	GTGACGGCCCCGGACACCGCGGCACGCCCCGGGCGCCTCGGGGTCGGCGTCGTCGGCGCCGGGCGGGTCGGCGCCGTCCTCGGCAGCGCGCTGCGCTCGGCCGGGCACGCCGTCGTCGGGGCATCCGGGGTCTCGGACGCCTCCCGGGACCGGATCGAGACCATGCTGCCCGGCGTGCCGCACCTGGACGTGCCGGAGATCGTCGAGCGCTCCGAGCTCGTGCTGCTGGCGGTGCCCGACGACGCCCTGGAGGGCCTCGTGGCCGGGCTGGCCGACGTCGGTGCCTGGCAGCCGGGCCAGCTCGTCGTGCACACCTCGGGCCGGTACGGGGCCGAGGTGCTGGCCCCCGCCCAGCGGGCGGGAGCGATCCCCCTGGCCGTGCACCCGGCGATGACGTTCACCGGGACCTCGCTGGACCTGGCCCGGCTGACCGGCTGCACGTTCGCCGTGACCGCCCCGGCCGCGGTGCTGCCCATCGGCCAGGCGCTCGTCGTCGAGATCGGCGGCGAACCCGTCGTCGTGGACGAGCAGGCCCGCGGGCTCTACCACGCCGCCCTGGCGCACGGCGCCAACCACCTCGTGGTGCTGGTGGCGCAGGCGGCGCAGGCCCTCGAGGCCGCCGGCGTGGAGCACCCCGGGCGCGTGCTCGCCCCGCTGCTGGGTGCCGCCCTCGACGGCGCCACGCGGGCGGCAGACCTGCGCGACGGCGAGGGGCCCGGCGCGATCGCCGCCCTGACCGGCCCGGTCGCCCGCGGCGACGCCGGCACGGTGGCCCGGCACCTGGAGGTGCTCGGCGACCTCGCGGCCGGCACCGGAGCGACCGACGTCCCGGACAGCTACACCGGGCTCGCCCGCGGCGCCGCCCGGCGCGCGCTGGCCGCCCACCGCATCGACGACGCCGCGGCGCGGGCGCTGCTGGACGTCCTCGGCGAACCGCCCAAGGAGCACTGA	MTAPDTAARPGRLGVGVVGAGRVGAVLGSALRSAGHAVVGASGVSDASRDRIETMLPGVPHLDVPEIVERSELVLLAVPDDALEGLVAGLADVGAWQPGQLVVHTSGRYGAEVLAPAQRAGAIPLAVHPAMTFTGTSLDLARLTGCTFAVTAPAAVLPIGQALVVEIGGEPVVVDEQARGLYHAALAHGANHLVVLVAQAAQALEAAGVEHPGRVLAPLLGAALDGATRAADLRDGEGPGAIAALTGPVARGDAGTVARHLEVLGDLAAGTGATDVPDSYTGLARGAARRALAAHRIDDAAARALLDVLGEPPKEH				NA	NA	NA	NA	NA
AK001_02424	1623			hypothetical protein	GTGAGCGCCGCGGAGCCGACGTCGGGGGCCACGGGGACGGCACCGGCGCGCGAGTGGCGACGGGTCCACCCGATCACGCCCGTCGTGCGGGGCTGGGCCGCCATCGCCGTGCTGCTGTTCGTCCTCGGGCAGCAGGCGATCGAGAGCCTCGAGTACGCCGGCGAGGTCGTCGACGGCGTCACCCGGGTGTGGTGGCTCGCGGTCCTGGTGGTCCTCGTCGTGCTGGCGGTCATCTTCGGCGTCTCCGCGCTCGCCTGGCGCATGACCTCCTACGCGGTGGACGACGACGCCGCCCACCTGCGCAAGGGCATCCTGTTCCGCCAGCAGCGGCACGCGCGGCTCGACCGGCTGCAGGCCGTCGACGTCCGTCAGCCCCTGCTCGCCCGGCTGTTCGGGCTGGCCGAGCTGACCCTGGAGGTCGCCGGCGGGTCGGACTCCGGGGTGGTGATCGGGTTCCTGCGGCTCGACGACGCCAAGCAGCTCCGTGCCGAGCTGCTGGCGCGCGCCGCCGGGGTCAAGGCACGGCGGGCCGGTGGCACGGTGCCGTCCCCGGCGGGCTCCTCCCCGGTGGGCTCATCCCCGGCCGGGGCCGCCGCGGACGGCGGCCCCGCCGGCCCGGACGTCGCCACCGAGCCGTCGCCGGCCGCAACCGGCCCGGTCGTGGCGGAGGTGCCGCCGCCGGCCGAGGAGGCCCCGGAGAACCTCGTCTACGAGGTCCCCCCGGGTCGGCTGGTCGTGTCGCTGCTGCGGCTGCCCGCCGTCTGGGTCGCCCTCGCGGTGCTCGTCGCTCTCGTGGTCTTCGTGCTGGTCACCCGCGCCGTCGGCGTGCTGGTCTCCATGCTGCCGGTGGCGTTCGGCGTCGCGACGTTCCTGTTCAACCGGTTCGCCGGGGAGTTCGGCTTCCGGGCCGCGATCTCCCCGGACGGGATCCGGCTGCGGCACGGGCTGCTGGAGACGCGCGCGCAGACCATCCCGCCCGGCCGGGTGCAGGCGCTGGAGCTCACCCAGGGCTTCTGGTGGCGCGGCAAGGACTGGTGGCGGATCAAGGTCAACGTCGCCGGGTACGGCGGCGAGGAGCAGAACGCCACCCAGAACGTGCTCCTCCCGGTCGGACCGCGGTCCGAGGCGATGGCGGCGCTGTGGCTGGTGCTGCCCGACCTCGGGGCCGAGGACGCGACCGAGCTGCTCGACGAGGCCCTGACCGGGGACGCGCGCACGGACCGTTTCTTCACCACGAGCCCGCGTCGTGCCCGGCTGCTGGACCCGATCAGCTGGCGCCGCAACGGGTTCGCCGTCGCCGACCGGGCGCTGCTGCTGCGCGGCGGACGGCTGACCCGGCGGCTGTCCGTCGTCCCGCACGAGCGCACCCAGTCCCTCGGTCTCGTGCAGGGGCCGTGGCAGCGGCGGCGGGAACTGACGACGTTCGCGGTGCACTCCACGCCGGGCCCGGTCACCACCCGTGCCCACCACCTCGACACCCCCGACGCGCAGCACCTGCTGGCCGAGCAGTCGGTGCGCGCCCGCGCGGCCCGGTCGCACCAGACGCCGGAGCGCTGGATGGAGCGCGTCGCGCCGCTGGCCCGCCCGGCGGCACCGGGCGACGGACCGGAGGACAGCCCGTGA	MSAAEPTSGATGTAPAREWRRVHPITPVVRGWAAIAVLLFVLGQQAIESLEYAGEVVDGVTRVWWLAVLVVLVVLAVIFGVSALAWRMTSYAVDDDAAHLRKGILFRQQRHARLDRLQAVDVRQPLLARLFGLAELTLEVAGGSDSGVVIGFLRLDDAKQLRAELLARAAGVKARRAGGTVPSPAGSSPVGSSPAGAAADGGPAGPDVATEPSPAATGPVVAEVPPPAEEAPENLVYEVPPGRLVVSLLRLPAVWVALAVLVALVVFVLVTRAVGVLVSMLPVAFGVATFLFNRFAGEFGFRAAISPDGIRLRHGLLETRAQTIPPGRVQALELTQGFWWRGKDWWRIKVNVAGYGGEEQNATQNVLLPVGPRSEAMAALWLVLPDLGAEDATELLDEALTGDARTDRFFTTSPRRARLLDPISWRRNGFAVADRALLLRGGRLTRRLSVVPHERTQSLGLVQGPWQRRRELTTFAVHSTPGPVTTRAHHLDTPDAQHLLAEQSVRARAARSHQTPERWMERVAPLARPAAPGDGPEDSP				NA	NA	NA	NA	NA
AK001_02425	504			hypothetical protein	ATGACACACCCCGCATCGGGTCCGGCCGACCCGTTCGACCCGCCGGACGTGACCTGGGACCGGGTGTCCCCCCGCCTGGTCCCCGCGCGACTGGTCGTCGTGGGGTTCTGGCTCGGGCTGCCGCTGCTGGTCTGCCTGGTCCTCGCGCTCGCGGTCACGGGGTGGCTGTGGATCCCGGCGGCCGTCTGCGCCGTGCTGCTGCTGTGGATCGGGCTGCTCGTGCCGCGCCAGGTCCGCGCGATCGGGTACGCCGAGCGTGACGACGACCTGCTGATCCGCAAGGGCATCCTCTTCCGCGAGCTGGTCGTGGTCCCGTACGGGCGCATGCAGTTCGTCGACGTCACCGCCGGTCCGCTGGACCGCCGCCTGAACATCGCCACGGTGCAGCTGCACACGGCCTCGGCCAGCACGGACGCCGAGATCCCGGGGCTGACCCCGGACGAGGCGGAGCGGCTGCGGGACCGCCTGACGGCGCGCGGCGAGGCGAGGCTGGCCGGCCTGTGA	MTHPASGPADPFDPPDVTWDRVSPRLVPARLVVVGFWLGLPLLVCLVLALAVTGWLWIPAAVCAVLLLWIGLLVPRQVRAIGYAERDDDLLIRKGILFRELVVVPYGRMQFVDVTAGPLDRRLNIATVQLHTASASTDAEIPGLTPDEAERLRDRLTARGEARLAGL				NA	NA	NA	NA	NA
AK001_02426	456			hypothetical protein	GTGCGCACGCTGGTCGCCGTCGCGGTCGGGGTCGCCGCCGTCGGGACCCTGCTGCTGCGCCTGCTCGAGGCCCGGGGGGTCTACCTGCCGGGAGCGGCCTGGGTGGAGGTCGTGGCGCTGGTGCTCATCGCCGGCCTCGTGCTGTGGGCCGGGTGGGCCGTCCGCGCCTACCTGCGCGGCGAGAAGCCGGACCTCGACCCGCTGCGTGCCGCCCGCACCTTCGCCATGGCCAAGGCCGCGGCGTACACGGGAGCGCTGCTGACGGGGCGCTACACCGCGTCCGTGCTGCTCGTCCTGCCGCAGCTCGCCGTCGAGCCCCGCCGGGAGGTGGCCATCACCTCGGGCGTGGCGGCCCTGGCGGCGATCGGTCTGGCCGTCGTCGGCCTCGTCGTCGAGAAGTTCTGCGAGGCGCCCCCGCCCGAGGAGGACGAGGGGCGCGAGGCGATCCCGTCCTGA	MRTLVAVAVGVAAVGTLLLRLLEARGVYLPGAAWVEVVALVLIAGLVLWAGWAVRAYLRGEKPDLDPLRAARTFAMAKAAAYTGALLTGRYTASVLLVLPQLAVEPRREVAITSGVAALAAIGLAVVGLVVEKFCEAPPPEEDEGREAIPS	PGPT0007900_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007900-sulD-K13940	NA	NA
AK001_02427	1506			hypothetical protein	GTGACATTCGCCGACGCCGTGACGGGGTCGGACGGCCGACCCCTCGACCAGATCCGGCTGACCGGGGTGACCGCGACCGGTCACCACGGCGTGCTGCCGCAGGAACGTGTCGAGGGACAGACCTTCCGCGCCGACGTCGTGCTGCACCTGGACGCGCGCCCCGCCGCCGGGTCGGACGACCTGGCCGCGACGGTCAGCTACGCCGAGGTCGCCGAGGACGTCCACGACGTGCTCTCGGGGTCCCCGGTGGACCTCGTCGAGACGCTCGCCGAGCGGATCGCCGCCGTCGTGCTGTCCCGGTCGGCGGTGCGGGCCGTCGACGTGCGCGTGCACAAGCCGCAGGCGCCGATCTCCGTGCCGTTCGACGACGTCGAGGTCGTGGTGCGCCGCGACCGGGAGAACCCGCCGGCCGTGCCGGCCGCGACGAGCACGGACCAGCAGGTCTCCCCGGCGCCGGCACCGGCCCCGGCGCCGGCTCCTGCGCCGGCGGCGGCGCCCGTTCCCGCGCCGCCGGTGCCGCCCCCGCCCGCGCCGCCCGAGCCGGCGGCCGCGACCCCGGTGCCCGCGGCGACCTCGCTCCCGACCCCCGCGGTCGCCGAGACGGCGGTCCCGGCACCTCCCGCCCCGGACGCGACCACCGTCGACGCTGCACCCGTCCCGGGCCCGGAGGCCCCCGGCCCGGAGTCCGCGCCGGCGCCCCCCGCCGTCGACCCGCTGGACGAGGCCCCCGAGGCGCCCGTGGACGCGGTGCTCGCCCTCGGGGCCAACCTGGGCGACGCCCAGGGCACGCTGCGCGCCGCCGTCACCGACATCGACCGCATCCCCGGGGTGCAGGTCATGGAGGTGTCCCCGCTGGCCCGGACCGTCGCCGTCGGACCCGAGCAGCCCGACTTCCTCAATGCCGTGCTCCTGGTGCGCACCACGCTGCCCGCGCGCGACCTGCTGGGTGCCTGCCAGGAGGTCGAGCTGCTGCACGGCCGGGTGCGGGACGAGCGGTGGGGCCCGCGCACGCTGGACGTGGACGTCGTCCAGTACGGGGACCTGACGTCGACCGCCGAGGACCTGGAGCTGCCGCACCCGCGGGCGCGGGAACGGGCGTTCGTGCTGGTGCCGTGGGCCGAGGTGGATCCCCAGGGCGTGCTCGTCGGTCTCGGCGGCGGCCCGGTGGCCCAGCTCGCCGCCACCGCGCCCGACCGGTCGGGCATCCGGTGGCTCGCGCTCGACTGGCTGACCGAGCCGGCCTCGAGCGGCGCGGTCCCGGCGGCACCGTCGCCGCAGGCGCCCTCCTCGCAGCCGGTGCCCGCGGCACCGCCGTCGCACCCCTCCCCGCAGGCGCCGAGCACCGCGGCCTTCCCGGCCCAGGCGCCGCCGTCGGTGCCGGTGCCGCGTCAGGACCCGCCCGACGACGTGCCCCCGGCGCAGGAGCCGCGCGGCTTCGTGGCCGCTGCCGGCATGCACGCCCCGATCCCGCCCGCGCCGGACGCCGAGCACCCGGAACGCGCCTGA	MTFADAVTGSDGRPLDQIRLTGVTATGHHGVLPQERVEGQTFRADVVLHLDARPAAGSDDLAATVSYAEVAEDVHDVLSGSPVDLVETLAERIAAVVLSRSAVRAVDVRVHKPQAPISVPFDDVEVVVRRDRENPPAVPAATSTDQQVSPAPAPAPAPAPAPAAAPVPAPPVPPPPAPPEPAAATPVPAATSLPTPAVAETAVPAPPAPDATTVDAAPVPGPEAPGPESAPAPPAVDPLDEAPEAPVDAVLALGANLGDAQGTLRAAVTDIDRIPGVQVMEVSPLARTVAVGPEQPDFLNAVLLVRTTLPARDLLGACQEVELLHGRVRDERWGPRTLDVDVVQYGDLTSTAEDLELPHPRARERAFVLVPWAEVDPQGVLVGLGGGPVAQLAATAPDRSGIRWLALDWLTEPASSGAVPAAPSPQAPSSQPVPAAPPSHPSPQAPSTAAFPAQAPPSVPVPRQDPPDDVPPAQEPRGFVAAAGMHAPIPPAPDAEHPERA	PGPT0007900_22	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007900-sulD-K13940	NA	NA
AK001_02428	894	folP1	COG0294	Dihydropteroate synthase	ATGAGCACTCGCGACGCCGTGGTCGCCGGTCTGCCCGAGCTGTCCGGCGCCGGCCGCTGCCTGGTCATGGGCGTGGTCAACATCACGCCGGACTCGTTCTCCGACGGCGGGGAGTGGTTCGAGCCCGAGGCCGGCGTCCAGCACGGCCTCGACCTGCTCGCCGAGGGCGCGGACGTCCTCGACGTGGGCGGGGAGTCGACCCGACCCGGCGCCCAGCGGGTGACCGAGGCCGAGGAGCTGCGGCGCGTCGTCCCCGTCATCGGGCGCCTGGCCGCCGCCGGTGCGGTCGTGTCCGTCGACACCACGCGGGCCGCCGTGGCCGAGCGGGCGGTGGCGGCCGGGGCACGGCTGGTCAACGACGTCTCCGGCGGGCTGGCCGACCCGGACATGGCGGGCGTCGTGGCCGAGACGGGCGTGCCGTACGTGGCGATGCACTGGCGCGGGCACAGCGACGTCATGGACGCGCGGCAGGACTACGACGATGTCGTGGCTGACGTGCGCGACGAGCTCGCCGCCCGGGTCGCGGCCCTGCAGGACGCCGGGGTCGCGCACGAGCAGATCGTGCTCGACCCGGGCCTCGGCTTCGCCAAGTCCGGGGCGCTGAACTGGCCGCTGCTGGCGCACCTGGACGCGCTGCACGCCCTGGGTCGCCCCCTGCTGGTCGGTGCGTCGCGCAAGCGGTTCCTCGGTCACCTCCTCGCGGGGGTGCGGGGGACCGCCGCGGACGAGCCCGTCCCGCCCGCGGCCCGGGACGACGCCACGACGGCGATCACCGCGCTGGCCGCACACGCCGGGGCGTGGTGCGTGCGCGTGCACGCCGCGCGTGCGAGCGTTGACGCCGTACAAGTGGCGGCCGCCTGGAGGCAGGCCGAGACGACGGAGGACACCGCGTGA	MSTRDAVVAGLPELSGAGRCLVMGVVNITPDSFSDGGEWFEPEAGVQHGLDLLAEGADVLDVGGESTRPGAQRVTEAEELRRVVPVIGRLAAAGAVVSVDTTRAAVAERAVAAGARLVNDVSGGLADPDMAGVVAETGVPYVAMHWRGHSDVMDARQDYDDVVADVRDELAARVAALQDAGVAHEQIVLDPGLGFAKSGALNWPLLAHLDALHALGRPLLVGASRKRFLGHLLAGVRGTAADEPVPPAARDDATTAITALAAHAGAWCVRVHAARASVDAVQVAAAWRQAETTEDTA	PGPT0007915_913	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796	NA	NA
AK001_02429	630	folE	COG0302	GTP cyclohydrolase 1	GTGACGGAGCCGGACCTGCCGCTGACGCCGGTCTCGCTCGGGATGCGGCCGGCGGCCGACGTGCCGCCCTACGACGCCGAGCGCGCCGAGGCGGCGATCCGCGAGCTGCTGCTCGCCGTCGGTGAGGACCCGGAGCGCGAAGGGCTGCGCGACACCCCGGCGCGGGTGGCGCGCGCCTACCGGGAGATCTTCGCCGGCCTGCACCAGGAGCCCGAGGACGTCCTGACCACGACCTTCGACCTCGGGCACGAGGAGATGGTGCTGGTCAAGGACATCGAGGTGTACTCCACGTGCGAGCACCACCTGGTCCCGTTCCACGGGCTCGCGCACATCGGCTACATCCCGAGCGCCGAGGGGCGGATCACCGGGCTGTCCAAGCTCGCCCGGCTGGTCGAGGTCTACGCCCGGCGCCCCCAGGTGCAGGAGCGCCTCACCACGCAGATCGCCGACGCCCTGGTGCGGATCCTCGACCCGCGCGGCGTCATCGTCGTCGTGCAGTGCGAGCACCTGTGCATGTCGATGCGCGGGGTGCGCAAGCCCGGGTCCCGGACGGTCACCTCGGCCGTGCGGGGCGTCATGCAGACCGCCGCCACGCGGTCCGAAGCGATGAGTCTGATCCTGGGGCACTGA	MTEPDLPLTPVSLGMRPAADVPPYDAERAEAAIRELLLAVGEDPEREGLRDTPARVARAYREIFAGLHQEPEDVLTTTFDLGHEEMVLVKDIEVYSTCEHHLVPFHGLAHIGYIPSAEGRITGLSKLARLVEVYARRPQVQERLTTQIADALVRILDPRGVIVVVQCEHLCMSMRGVRKPGSRTVTSAVRGVMQTAATRSEAMSLILGH	PGPT0007875_1764	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495	NA	NA
AK001_02430	2106	ftsH	COG0465	ATP-dependent zinc metalloprotease FtsH	ATGAACTTCAAGAAGATCTTCAGCGGACCGCTCGTCTGGATCGTGCTCGGCCTGATCCTGGTCGCGCTCGCCTTCTCCGCCTTCACCGGTGAGCGGATCGAGCGTGTCGAGACGTCGCAGGGCCTCGAGCTGCTGTCCGGCGACACGGTCGACCACGCGCTCATCGTGGACGGCGACCAGCGCGTCGAGCTCGAGCTCAGCGAGCCGTACGTCACCGACTCCGGCACCGAGGACGAGCGGGACTACGGCGAGAAGGTCGACTTCTTCTGGGTCCAACCCCAGGGCGAGGACGTCGTGTCCGCCGTGGAGTCCGCCGACCTCGCCGAGGGCTACGACACCTACGTGCCGCAGCCGTCGTTCCTCGGCTCGATGCTGTCCTTCCTCGTGCCCTTCCTGATCATCCTGGTGATCTTCTGGTTCGTGCTCTCGCGGATGCAGGGCGGCGGGCGCAACGGCGTCATGGGCTTCGGCAAGTCCAAGGCGAAGATGATCTCCAAGGACACCCCGCAGGTGACGTTCGCCGACGTCGCGGGCGTGGACGAGGCCGTCGAGGAGCTCCACGAGATCAAGGAGTTCCTCTCCGAGCCGGAGAAGTTCCAGGCCGTGGGCGCCAAGATCCCCAAGGGCGTGCTGCTGTACGGCCCGCCCGGGACGGGCAAGACCCTCATCGCCCGTGCCGTCGCGGGCGAGGCCGGGGTGCCGTTCTACTCGATCTCGGGCTCGGACTTCGTCGAGATGTTCGTCGGCGTCGGCGCCTCGCGCGTGCGCGACCTGTTCGAGCAGGCGAAGAACAACTCGCCCGCGATCATCTTCGTCGACGAGATCGACGCCGTCGGCCGCCACCGCGGCGCCGGCATGGGCGGCGGTCACGACGAGCGCGAGCAGACGCTGAACCAGATGCTCGTCGAGATGGACGGCTTCGACGTCAAGACGAACGTCATCCTCATCGCGGCGACCAACCGCCCGGACATCCTCGACCCCGCGCTGCTGCGCCCGGGCCGCTTCGACCGTCAGGTCGCCGTCGAGGCGCCGGACCTCAAGGGCCGCGAGCACATCCTGCAGGTGCACGCCCAGGGCAAGCCGATGGTCGAGACCGTCGACCTCGCCGCCGTGGCGCGCCGCACGCCCGGCTTCACCGGTGCCGACCTGGCCAACGTGCTCAACGAGGCCGCGCTGCTGACCGCCCGCTCCGGGGCCCAGCTCATCGACGACCGGGCGCTGGACGAGGCGATCGACCGCGTGCTGGCGGGTCCGCAGAAGCGCACCCGGGTGATGAAGATCAAGGAGCAGAAGATCACCGCGTACCACGAGGGCGGGCACGCCCTGGTGGCGGCCGCCATGCGGTACACCGACCCGGTGACGAAGGTGACGATCCTGCCGCGCGGGCGGGCCCTCGGCTACACGATGGTCATGCCCACCGAGGACAAGTACTCCACCACCCGCAACGAGCTCCTCGACCAGCTCGCCTACGCCATGGGCGGCCGCGTGGCCGAGGAGATCGTGTTCCACGACCCCACCACCGGGGCCAGCAACGACATCGAGAAGGCCACCGCCATCGCCCGCAAGATGGTGATGGAGTACGGCATGAGCGAGAAGGTCGGCGCGCTCAAGCTCGGGTCCGCCTCCTCCGAGCCGTTCCTGGGCAAGGACATGGGCCACCAGCGCGACTACTCGGAGGCCGTGGCGGGCACCGTGGACCACGAGGTCCGCAAGCTCGTCGAGGCCGCGCACGACGAGGCGTGGGAGGTCCTGTCCGAGTACCGCGACGTGCTCGACGACCTCGTCCTGCAGCTGCTCGAGCACGAGACGCTCAACCAGGAGGAGCTGGCCGCGGTCTTCGCCCCGGTGAGCAAGCGCCCCGCGCGGGACGTCTGGCTGTCCAGCACCGAGCGCACCGTCCACGACCGCGGTCCGGTGATGACCGAGGGCGAGCAGGCCGCGTACGCGACGAACGGCCACGCCGGTCTCCCGCAGGACGAGGCCGCCGTCGTGGGCAACGTCGAGGCCGAGGCCGCGGCGTCCCGTCGCCCGCACGAGCGTCCCGCGGGCGACGACGGCGCGACGGCGGAGCGCACCGACGGCCGCTCCGACGGCGAGGAGACCTGA	MNFKKIFSGPLVWIVLGLILVALAFSAFTGERIERVETSQGLELLSGDTVDHALIVDGDQRVELELSEPYVTDSGTEDERDYGEKVDFFWVQPQGEDVVSAVESADLAEGYDTYVPQPSFLGSMLSFLVPFLIILVIFWFVLSRMQGGGRNGVMGFGKSKAKMISKDTPQVTFADVAGVDEAVEELHEIKEFLSEPEKFQAVGAKIPKGVLLYGPPGTGKTLIARAVAGEAGVPFYSISGSDFVEMFVGVGASRVRDLFEQAKNNSPAIIFVDEIDAVGRHRGAGMGGGHDEREQTLNQMLVEMDGFDVKTNVILIAATNRPDILDPALLRPGRFDRQVAVEAPDLKGREHILQVHAQGKPMVETVDLAAVARRTPGFTGADLANVLNEAALLTARSGAQLIDDRALDEAIDRVLAGPQKRTRVMKIKEQKITAYHEGGHALVAAAMRYTDPVTKVTILPRGRALGYTMVMPTEDKYSTTRNELLDQLAYAMGGRVAEEIVFHDPTTGASNDIEKATAIARKMVMEYGMSEKVGALKLGSASSEPFLGKDMGHQRDYSEAVAGTVDHEVRKLVEAAHDEAWEVLSEYRDVLDDLVLQLLEHETLNQEELAAVFAPVSKRPARDVWLSSTERTVHDRGPVMTEGEQAAYATNGHAGLPQDEAAVVGNVEAEAAASRRPHERPAGDDGATAERTDGRSDGEET				NA	NA	NA	NA	NA
AK001_02431	552	hpt	COG0634	Hypoxanthine-guanine phosphoribosyltransferase	GTGGACAAGTCGGACGTCGCCGGCGACCTCGCCGACATCCTGATCACCGAGGAGCAGATCGGCACCCGTCTGGACGAGATGGCGGCGCAGATCGACGCCGACTACGCCGGCAAGGACGTGCTCCTCGTCGGCGTGCTCAAGGGTGCGGTCATGGTCATGGCCGACCTCTCGCGCCGCCTCCACCACCCCCTGGAGATGGACTGGATGGCGGTGTCCTCCTACGGCTCGGGCACCAAGTCCTCCGGCGTGGTGCGCATCCTCAAGGACCTGGACTCCGACCTGACCGGTCGGGACGTGCTCATCGCCGAGGACATCATCGACTCCGGCCTGACGCTGTCGTGGCTGGTGCAGAACCTGCGCTCGCGCGGACCGGCGTCGGTGGAGATCGCCACGCTGCTGCGCAAGCCGGACGCCGCCAAGGTGGACGTCGACGTGCGGTACGTCGGGTTCGACATCCCGAACGAGTTCGTCGTCGGCTACGGCCTGGACTACGCCGAGAAGTACCGCAACCTCCCCTTCATCGGCACCCTCGCCCCGCACGTCTACTCCTGA	MDKSDVAGDLADILITEEQIGTRLDEMAAQIDADYAGKDVLLVGVLKGAVMVMADLSRRLHHPLEMDWMAVSSYGSGTKSSGVVRILKDLDSDLTGRDVLIAEDIIDSGLTLSWLVQNLRSRGPASVEIATLLRKPDAAKVDVDVRYVGFDIPNEFVVGYGLDYAEKYRNLPFIGTLAPHVYS	PGPT0007295_1623	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760	NA	NA
AK001_02432	1086	tilS	COG0037	tRNA(Ile)-lysidine synthase	GTGCCCCGCATCGACCCGGCGCTCGCCGCCGTCCGCACCGCGGTCCGCGCCGACCTGGCCGACCTCGGCCCCGGCGACCTCGTGCTCGTCGCCTGCTCGGGCGGACCGGACTCGCTGGCGCTCGCGGCCGCCGTCGCGCACGAGGCGCGCCGTGTGGGCCGGTCCGTGCGTTCGCGCGGGTACGCGGTCCGCGCGGGCGCCGTCGTCGTCGACCACGGCCTGCAGCCCGGGTCCGCCGCCGTGGCCGCCCGGGCCGCCCGGCAGTGCCGCGCCCTCGGTCTCGACCCGGTCCTGGTGCGTACCGTCGACGTCGTCGTGGGCGGCGACGGGACGGAGGCGGCCGCCCGCACCGCGCGCTACGCGGCGCTGGAGGCCGCGGCCGCCGGGTCCGGTGCGGCCGCCGTGCTGCTGGGGCACACCCTGGACGACCAGGCCGAGCAGGTGCTGCTCGGTCTCGCCCGGGGCAGCGGCGCCCGCTCCCTCGGCGGCATGCCGGCGCGCCGCGGGCCCTACCGACGCCCGTTCCTGACCCTCCGGCGCGAGCAGATCCTCGCCGCGTGCGCCGCGAGCGGCATCGTGCCGTGGCACGACCCGACGAACTCCCCGGCGCCCGACGGCGGCACCCCCGCGCCGTTGCGCTCGCAGGTGCGGGGGTGGTTGCTGCCGGTGCTGGCCGAGGTCCTCGGTCCCGGGGCGGTCGAGGCGCTCGCCCGCAGCGCCGACCAGCTGCGCGACGACGCCGCGGTCCTCGAGGACCTGGGGGCGGAGCTGCTGGCCGCGGCGCGGTCCGGCGAGCCTGCGCGGGGGCCGGCCGACCCGGTGGTGCTCGACGTCGCACCGCTGGAGCGGGCGCAGGCCGCGGTGCGCCGCCGCGCGCTGCGGGCGGCGGCCCTGGAGGCCGGGTGCCCCGCCGGGGCCACCACGTCCCGGCACGTCGACGCCCTCGACGCGCTCGTGGTGCGGTGGCGCGGCCAGGGGGCGGTGCACCTGCCCGCCGACGTCCGCGCGGTGCGGGACTGTGGCAGGCTGTTCCTGCGGCCGTCGGTGACGGGTCCGCGTCACCCTGCCACGCACCCCGAGGAGTAG	MPRIDPALAAVRTAVRADLADLGPGDLVLVACSGGPDSLALAAAVAHEARRVGRSVRSRGYAVRAGAVVVDHGLQPGSAAVAARAARQCRALGLDPVLVRTVDVVVGGDGTEAAARTARYAALEAAAAGSGAAAVLLGHTLDDQAEQVLLGLARGSGARSLGGMPARRGPYRRPFLTLRREQILAACAASGIVPWHDPTNSPAPDGGTPAPLRSQVRGWLLPVLAEVLGPGAVEALARSADQLRDDAAVLEDLGAELLAAARSGEPARGPADPVVLDVAPLERAQAAVRRRALRAAALEAGCPAGATTSRHVDALDALVVRWRGQGAVHLPADVRAVRDCGRLFLRPSVTGPRHPATHPEE				NA	NA	NA	NA	NA
AK001_02433	1155			hypothetical protein	GTGGACGCCGCCGCTACGGTGGGACCCGTGACCTCCACGAGCGCCCTCGTCGACTGGCAGACCGCCGCCCAGATCGCCCGCCGCGTCGGGCGCCCCGGACCGGTCGCACCGCGCGCCGAGCTCGACGACCTCGTCGACGGGCTGCGCACCGCGGCCCGGGAGGCGGTCCCGCACGTGCTGCGGGTGACCCGGATGCGGCCCGCGGGCGCCGAGGTCGAGCGCGAGCGCGACGCCTCCGGGCGGTTCACCCGCCGGGTCACCGTCAAGCGTCCCGACCTGGGCGACGTCCGGGTCGTGGACCGTGCCACCTGGGCGCGCGCCAACACCACCTCCATGGCGGCCCTGACCGACCCCGTGCTCGCCGACCTCGACGTCGGGGCGCGGCTGGGGGAGTCCTCGGCCGCCCGGCTCGCCGGCGCCGCCGAGGTCGGCGGGCTGCTGGCCCTGCTGTCGACGAAGGTGCTCGGCCAGTTCGACCCGTACGGCCCCGGACGGCCGACACTGCTCCTCGTGGCACCCAACGTGCTCGCCGCGGAACGGGCCATGAAGGTCGACCCGCACGACTTCCGGCTCTGGGTGTGCCTGCACGAGCAGACGCACGCGCTGCAGTTCGCCGCCGCCCCGTGGCTCGCCGACCACCTCGCCGGCCGGCTCGGCGGCCTGCTGCGGGACGTCACGACCTCCTCGGTCGAGCTCAGCCACGCCCCGCTGCGGGACAAGGCGGCGCTGGTGGGACGCACCCTGCTGGACGCGGTGCGCGGCGACCTCACCACCCCGGTCGACCAGGTGATGGGGCCCGAGCAGAAGGAGCAGCTGGCCGAGATCACCGCCGTCATGGCCCTGCTCGAGGGGCACGCCGACGTCATGATGGACGCCGTCGGACGGCGCGTCGTGCCGTCCGTGCGCACCATCCGGTCCCGCTTCGAGAAGCGGCGCGACGGCGAGGGCGCGCCCCGGCTCGACGTCGTGCTGCGGCGCGTGCTCGGCATGGACGCCAAGCTCGCCCAGTACCGCGACGGTGCCGCGTTCGTGCGGGAGGTCGAGAAGCAGGTCGGCCGCGACGGTCTCAACGCCGTCTGGGCCGAGCCCGCCCACCTGCCCAGCGCCCGGGAGATCGCCGACCCGCGCGCCTGGGTCCGCCGCGTGCACTCCTGA	MDAAATVGPVTSTSALVDWQTAAQIARRVGRPGPVAPRAELDDLVDGLRTAAREAVPHVLRVTRMRPAGAEVERERDASGRFTRRVTVKRPDLGDVRVVDRATWARANTTSMAALTDPVLADLDVGARLGESSAARLAGAAEVGGLLALLSTKVLGQFDPYGPGRPTLLLVAPNVLAAERAMKVDPHDFRLWVCLHEQTHALQFAAAPWLADHLAGRLGGLLRDVTTSSVELSHAPLRDKAALVGRTLLDAVRGDLTTPVDQVMGPEQKEQLAEITAVMALLEGHADVMMDAVGRRVVPSVRTIRSRFEKRRDGEGAPRLDVVLRRVLGMDAKLAQYRDGAAFVREVEKQVGRDGLNAVWAEPAHLPSAREIADPRAWVRRVHS				NA	NA	NA	NA	NA
AK001_02434	1419		COG2027	Carboxypeptidase	ATGGGGTGGCGGCTGAGGGTCGGTGCCGCCGTGACGTCGGTCCTCACCCTGTTCGGCGGGTACCTCGTGGCCGACGCCTACGACGTCGTGCCCGGCATGGTCACCTTCGACCCGCCCCACGACACGCCCGCGCCCTTCCCCTCCGCGCCCGGGGCCACCACCGGCCCCACGCCCCGGACCGCCGTGCCGCCGCTGTCCTCCGAGGCCCCCTCGCCGGACGCCGCCGCCGTCGGGGACCTCGTGGACGGGATCGTCGACGACGACCGTCTCGGCAACCGGGTGGGCGTGGTCGTCACGGACGCCGACTCCGGCAAGACGCTCGGTGCGGCCCGGCCCGACCGGCTCATGGTGCCCGCCTCCACCCAGAAGGTCCTCACCGCCGTCGCCGCCTACGCCGGCCCGGGCGGCGAGGTCACCCTGCCCACCCGGGCGATGCTGCAGGGGACCTCGCACGTCGTGCTCGTCGGCGGCGGGGACATGATGCTCGCGGCCGACGACGGCGACCCGGACGCCGTCAACGGGCACGCGGGTCTCGGCGACCTCGCCGACCAGGTCGTCGACGAGCTCGGGCTCTCCGGCCGGGACACCGTCACGCTGTCCGTCGACGACACGCTGTTCACCGGGCCGGCGCTCGCGCCGTCCGTACGCCGCAGCGACGCCGCCGCCGGGTACGTCGCCCCCGTGGCGGCGCTCGCCGTCGACGTCGCCCGCCTGGAGGACGAGAAGTACGCCCCGCGCCAGTCCGACCCCGCGATGGCCGCCGCCGAGACGTTCGCCGAGGCGCTGGCCGACCGCGGCCTGACGGTCGCGGGCAGCGTCCGACTTCACGAGGCGCCGTCCTCCGCCCGGGAGATCGGGCGGGTCGAGTCCGCCCCGCTCGGTGCGATCGTCGACTACTTCCTCGCCGAGTCCGACAACACCCTGACCGAGGTGGTCGGCCGGGTCGTCGCCCTGGACGCCGGGCTGCCCGGTTCGCAGGCCGCCGCCATCAGCGAGGTCGTGGCCGCCGTCGAGCGCCTGGGCGTCGACCTGTCCGGCGCCGAGCTGATGGACCTGTCGGGGCTGGGTGTCGGCTCGCTGCTCACCCCGGCGCAGGTCGTCGCCACGCTCGAGGTCGCCGCCCAGGACCCCGCGCTGCGCGAGACCCTGATCGGGCTGCCCGTCGCCGGGATGCAGGGCACGCTCGCCGACCGGTTCGGGCAGGACAACCCGGGCCGCGGCTACACCCGGGCCAAGACCGGCAGCCTGCCCGACACCCGCTCCCTGGCCGGGACCGTGGTCACCGCCGACGACCGGCTGCTGCTGTTCACCGTCATCGCCGACCGCATCCCCGACGGGCAGTCGTTCGGGGCCAACTTCATCATCGACGACTTCGTCGGCGACCTCGCCGCCTGCGGCTGCCGTCCGCAGGGCGGCTGA	MGWRLRVGAAVTSVLTLFGGYLVADAYDVVPGMVTFDPPHDTPAPFPSAPGATTGPTPRTAVPPLSSEAPSPDAAAVGDLVDGIVDDDRLGNRVGVVVTDADSGKTLGAARPDRLMVPASTQKVLTAVAAYAGPGGEVTLPTRAMLQGTSHVVLVGGGDMMLAADDGDPDAVNGHAGLGDLADQVVDELGLSGRDTVTLSVDDTLFTGPALAPSVRRSDAAAGYVAPVAALAVDVARLEDEKYAPRQSDPAMAAAETFAEALADRGLTVAGSVRLHEAPSSAREIGRVESAPLGAIVDYFLAESDNTLTEVVGRVVALDAGLPGSQAAAISEVVAAVERLGVDLSGAELMDLSGLGVGSLLTPAQVVATLEVAAQDPALRETLIGLPVAGMQGTLADRFGQDNPGRGYTRAKTGSLPDTRSLAGTVVTADDRLLLFTVIADRIPDGQSFGANFIIDDFVGDLAACGCRPQGG	PGPT0024035_2019	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259	NA	NA
AK001_02435	495	ppa	COG0221	Inorganic pyrophosphatase	GTGGAGTTCGACGTCACCATCGAGATCCCGAAGGGTCAGCGGAACAAGTACGAGGTGGACCACGAGACCGGTCGCATCCGTCTGGACCGCATGCTCTTCACCTCGACCCGATACCCGGACGACTACGGGTTCATCGAGGGCACGCTCGGTGAGGACGGCGACCCTCTGGACGCCATGGTCCTGCTCGAGGAGCCCACGTTCCCCGGCTGCCTGATCAAGTGCCGCGCGCTGGGGATGTTCCGCATGCGCGACGAGGCCGGCGGCGACGACAAGGTCCTCTGCGTGCCGACCGGTGACCAGCGCGCCGCCTGGCGCCAGGACATCGACGACGTCTCGGACTTCCACCGCCTGGAGATCCAGCACTTCTTCGAGGTCTACAAGGACCTGGAGCCCGGCAAGTCCGTCGAGGGCGCCCACTGGGTCGGCCGCGAGGACGCCGAGGCCGAGATCAACCGCTCGATCCAGCGCGCCAAGGACTCCGGCTACCACCACTGA	MEFDVTIEIPKGQRNKYEVDHETGRIRLDRMLFTSTRYPDDYGFIEGTLGEDGDPLDAMVLLEEPTFPGCLIKCRALGMFRMRDEAGGDDKVLCVPTGDQRAAWRQDIDDVSDFHRLEIQHFFEVYKDLEPGKSVEGAHWVGREDAEAEINRSIQRAKDSGYHH	PGPT0002600_4381	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATASE_ACTIVITY	P-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507	NA	NA
AK001_02436	1611			hypothetical protein	ATGGGGCTGGGCGGCGGGAGCAGGCTGGGCAGGTTCGTGCGGGCGGTGACGGCGGGTGCGGTGACGGTCGGTCTGGCCCTGACGGGAGCCCTCGTCGGGGTCCCCGCGGCGGTCGCGGCGGACAGCACCACGACGATCGAGCTGGAGGCCGACCGGGCCTGGCGAGGGCAGGTGCTCGAGGTGCCCGTCCGCGTCACCCAGGACGGCGCTCCGGCGACGGGGACCGTCTGGCTCTACGTCGACGGGACGCTGGTGACGTGGTACCGGGCGCTGTCCGACGGCGGTGCCGTCCTGACGCTGTTCACCGACCGGCTCTCCGGCGGCACGCACGAGATCGAGGTGCGGCACATGGACGGCGAGTCGTCGGCGGACTGCCGCTGCTCCTCGTCGGCCACGGCGTCGCTGGAGGTCGTCGAGCCGACGACCCCGCTCCTCACCCCGGACGGGTGGTACGCGGGAGAGTCCGTGTCGCCCCGGTTCGACCTCACCGGGACCGACCTCCCCGCAGACGGGACCGTCGAGCTGATGGGGAGCGCCGTCGTCGCGCCGCTCGTGGACGGAGTCGCCGAGCTCGCGCTGACGGGCGACGAGGTCCGCAGCCCGCAGGTCCGGCTGACCCACCGGAGCCCGGAGGGCGACGTGCTCTCGCGCTGGCTGCTGCCGGTCGACCTCGCCGCCAGGCCGGTCACCGCGGACGTCGAGATCCCCGAGACCTGGCGCCGGGGCGAGACGGTCCGGATCGCCGTCGACGTGACGTCCGACCACGGGACCCCGACCGGCGAGGCGTCGGTGACCTACCTCGACGGTGCCGAAGGGGTCCCGCTGGCGCGGGAGACGCTCGTCGACGGTCGGGGGGAGCTCGTGGTCGACGTCACGGACCTGCCGGTCGGGGAGCAGCGGATCGAGGTCCGCACGCGCGGGGGACGGGAGTACGAGAACACCCGCGCGGAGCACGTGGTCGAGGTGCTTCCCCCCGCGACCCGCGTCCGCGTGTCCACGGCCCGCCGGTGGACCTACGCCCAGCGCCGCAGCGTCGACGTGGACGTCACGTCCTCGGTCGGCACGCCGGAGGGGAGGGTCGTCCTCCACCAGGCGGGACGGAGGATCGGCGCGGCCGACCTGGTGCACGGTCGGGCGTCCGTGCGGGTCTGGGGCGAGAAGGTCGACCCGGGTCGGCGCACGATCGTCGCGAGGTTCGTGCCGGACTCGGGGGAGCACGCGCCGTCGCGCACGTCGTGGACCCAGCGGGTCCGCAAGGCGCAGCCCACGGTCAGGCTGCGGATGCGACGCACGACGTACTGGGCGGACGTCGACCTCACGGGCAAGCGGTCGGGCCGCATCGTCGTGCGGACCCCGGGGATGCCCGAGGTCGGCAGGCTGGTGCTGCAGACCCGAGACCGGCACGCGACGAACGACGGCTGGCGTGCGAGGAAGTCCTGGTGGCTGAGCCGGAGCGAGGACGGTGTCCAGCGGATCAAGGTCCCCGCCCGCTACCTCGACAAGGCCGGCGGCCGGAGCGGCCGGGTCCACCTGCGTGTCCGCTACGTGCCCGCCGACCGCGAGCACGTCGCGAAGCGCCGGTCCCCGCGGCTCACGATCTACCACTACTGA	MGLGGGSRLGRFVRAVTAGAVTVGLALTGALVGVPAAVAADSTTTIELEADRAWRGQVLEVPVRVTQDGAPATGTVWLYVDGTLVTWYRALSDGGAVLTLFTDRLSGGTHEIEVRHMDGESSADCRCSSSATASLEVVEPTTPLLTPDGWYAGESVSPRFDLTGTDLPADGTVELMGSAVVAPLVDGVAELALTGDEVRSPQVRLTHRSPEGDVLSRWLLPVDLAARPVTADVEIPETWRRGETVRIAVDVTSDHGTPTGEASVTYLDGAEGVPLARETLVDGRGELVVDVTDLPVGEQRIEVRTRGGREYENTRAEHVVEVLPPATRVRVSTARRWTYAQRRSVDVDVTSSVGTPEGRVVLHQAGRRIGAADLVHGRASVRVWGEKVDPGRRTIVARFVPDSGEHAPSRTSWTQRVRKAQPTVRLRMRRTTYWADVDLTGKRSGRIVVRTPGMPEVGRLVLQTRDRHATNDGWRARKSWWLSRSEDGVQRIKVPARYLDKAGGRSGRVHLRVRYVPADREHVAKRRSPRLTIYHY				NA	NA	NA	NA	NA
AK001_02437	1332	metY	COG2873	O-acetyl-L-homoserine sulfhydrylase	ATGACCGACACGCCTCGCTGGTCCTTCGCGACCCGCCAGATCCACGCCGGCCAGACGCCCGACCCCGCCACCGGGGCGCGCGCGCTGCCGATCTACCAGACGACGTCGTACGTGTTCGACGACGCCAAGACCGCGGCGAACCGCTTCGCCCTGGCCGAGCTCGGCCCCATCTACACCCGCATCACGAACCCGACCCAGGAGACCGTCGAGAACCGCATCGCGGACCTCGAGGGCGGCGTCGGCGCGCTGCTGCTCGCCTCGGGGCAGGCCGCGGAGACGTTCGCGATCCTCAACGTCGCCGAGGCCGGGGACCACGTGGTGGCCAGCGCCAGCCTCTACGGCGGCACCTACAACCTGCTCAAGCACACCCTGACCCGGTTCGGCATCACCACGACGTTCGTCGAGGACGCCCACGACGCCGACGCGTGGCGCACCGCCGTGCAGGAGAACACCAAGGCGTTCTTCGCCGAGACGATCCCGAACCCGAAGAACGACTTCCTCGACATCGCCCTGGTCGCCGACGTCGCGCACGAGTCCCAGGTGCCGCTCATCGTGGACAACACCGTGGCGACGCCCTACCTGGTGCGCCCGATCGAGCACGGCGCCGACGTCGTCGTGCACTCGGCCACCAAGTACCTCGGCGGGCACGGCACCACCGTCGCCGGCGTCATCGTGGACTCCGGGAACTTCGACTACGCGCGATACCCCGAGCGGTTCCCCGGCTTCAACACCCCCGACCCCTCGTACAACGGGCTGGTCTACGCCCGCGACCTCGGCGTCGACGGCGCGCTGGGGGCCAACCTGGCCTTCGTCCTCAAGGCCCGGGTGCAGCTCCTGCGCGACCTCGGCTCGGCGGTCTCGCCGTTCAACGCCTTCCAGATCGCCCAGGGCATCGAGACGCTCTCGCTGCGCGTGGAGCGCCACGTCGACAACGCCCAGCGGGTGGCCGAGTGGCTCGAGCAGCGCGACGACGTGCTGCGCGTGCACTACGCCGGCCTGGAGTCCAGCCCCTGGCACGCCGTCCAGCAGCGCTACGCCCCGCGCGGCGCCGGCGCCGTGCTCGCCTTCGAGCTCGACGGCGGCGCGGAGGCCGGGCAGGCGTTCGTCTCGGCGCTGCAGCTGCACTCGCACGTGGCGAACATCGGCGACGTCCGCTCGCTGGTGATCCACCCCGCCTCGACGACGCACAGCCAGCTCAGCGAGGCCGAGCAGGCCCAGTCCGGCGTCACGCCCGGCCTGGTGCGCCTCGCCGTCGGCATCGAGGACGTCGAGGACGTCCTCGCCGACCTCGAGCTCGGCTTCACCGCGGCCAAGGCGGCGCTCGACGGCTGA	MTDTPRWSFATRQIHAGQTPDPATGARALPIYQTTSYVFDDAKTAANRFALAELGPIYTRITNPTQETVENRIADLEGGVGALLLASGQAAETFAILNVAEAGDHVVASASLYGGTYNLLKHTLTRFGITTTFVEDAHDADAWRTAVQENTKAFFAETIPNPKNDFLDIALVADVAHESQVPLIVDNTVATPYLVRPIEHGADVVVHSATKYLGGHGTTVAGVIVDSGNFDYARYPERFPGFNTPDPSYNGLVYARDLGVDGALGANLAFVLKARVQLLRDLGSAVSPFNAFQIAQGIETLSLRVERHVDNAQRVAEWLEQRDDVLRVHYAGLESSPWHAVQQRYAPRGAGAVLAFELDGGAEAGQAFVSALQLHSHVANIGDVRSLVIHPASTTHSQLSEAEQAQSGVTPGLVRLAVGIEDVEDVLADLELGFTAAKAALDG	PGPT0001995_264	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001995-metC-K01760	NA	NA
AK001_02438	1062	fdm		Formaldehyde dismutase	ATGCTTTCCGCGATGATCCACGCGGCGCGGGACGTCCGCGCCGAGAACCGCCCCGACCCCGTCCTGCGCACCGAGCACGACGCCGTGCTGCGCGTGGTGGCCGCCTGCGTCTGCGGGTCCGACCTGTGGCCGTACCGGGGCGTCGCGAAGACCCGCGAGCCGCACCCGATCGGCCACGAGCTGGTGGGTGTCGTGGAGGAGGTCGGCGCCGCGGTCACGTCGGCCGCGCCCGGGGACTTCGTCGTCGTCCCGTTCTCGCTGAGCTGCGGCGAGTGCCAGTCGTGCCGGGCGGGCTTCCCGTCGGCCTGCGACCGCGTCACCGGGTTCGGGTCCACCGACCGGGACGGCCACCCGGTGGACGGCGCCCAGAGCGAGCGCGTGCGCATCCCGCTGGCCCAGCACTCGCTGTTCCCGGTCGGGCGCAGCGAGGCCGAGCTGGAGGAGGCCGGTCTCGTGCCGCACCTGCTGACGCTGGCCGACGTCATGTCCACCGGCCACCACGCCGCGGTGTCGGCCGGCGTCGGCCCCGGGGACACCGTCGCGGTGGTCGGGGACGGCGCGGTCGGGCTGTGCGGCGTCGTCGCGGCCCGGCGGCTCGGCGCCGAGCGCGTCGTCGCGTTCTCCCGGCACCCCGACCGGGCGGCGCTGGCCCGCGGGCTCGGGGCGGACGACGTGATCGCCGAGCGCGGCGACGAGGGTGTCGCGGCGCTGCGCGACCTGCTGGGCGGCGACCTCGCGGACGCCGCCCTGGAGTGCGTCGGCACCGAGCAGTCGATGGAGCAGGCGCTCGGGTCCGTGCGGGGCGGCGGCCGGGTCGGGTTCGTCGGCGTGCCGCACGGCGGCTCGCAGGTGCCCATCAGGACCCTGTTCGGCCGCAACATCACCGTCGGCGGCGGCATGGCGCCGGCGCGGGCGCACATGGCGGACCTGCTGGACGACGTGCTGTCCGGGGCGATCACCCCGGGGCGGGTCTTCGACGTCGAGATGCCGCTGGCCGACGTCGCCGAGGCCTACGCCGCGATGGACGAGCGCCGTGCCACGAAGGTGCTGCTGCGCCCCTGA	MLSAMIHAARDVRAENRPDPVLRTEHDAVLRVVAACVCGSDLWPYRGVAKTREPHPIGHELVGVVEEVGAAVTSAAPGDFVVVPFSLSCGECQSCRAGFPSACDRVTGFGSTDRDGHPVDGAQSERVRIPLAQHSLFPVGRSEAELEEAGLVPHLLTLADVMSTGHHAAVSAGVGPGDTVAVVGDGAVGLCGVVAARRLGAERVVAFSRHPDRAALARGLGADDVIAERGDEGVAALRDLLGGDLADAALECVGTEQSMEQALGSVRGGGRVGFVGVPHGGSQVPIRTLFGRNITVGGGMAPARAHMADLLDDVLSGAITPGRVFDVEMPLADVAEAYAAMDERRATKVLLRP	PGPT0006375_1073	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001	NA	NA
AK001_02439	393			hypothetical protein	ATGCACGAGGCGAGACTCCCCGTCGTCGAGATCGTCGGGGTCTACCACGCCGAGGGCAGCCTCCTCGGCGAGGCGCGGTACGTGCTCGGTCGGCTGCGCGGCACGGCGCACTGCGCGCTGTGCGACATCACGCACGGTGCCGTCCGACGGCGGCGCGCCTGGGACGCGTACGTCGCCACGCTCGACCTGCCGGTCACGCTCGTGCACCTCGACGAGATGGACGACGACGTCGCGGCCGCCGTCGCCCGCGCCGGCAGCCCCGTCGTGCTCGGCCGCACCTCCGCCGACGCCCTCGTCACCCTGCTCGACGCCGACGCCCTCGAGGACCTGGACGGCGACGTGGCCGCCTTCGGCGACGCGCTGACGGCGGCGCTGGCCGCGACCGCCCGCTGA	MHEARLPVVEIVGVYHAEGSLLGEARYVLGRLRGTAHCALCDITHGAVRRRRAWDAYVATLDLPVTLVHLDEMDDDVAAAVARAGSPVVLGRTSADALVTLLDADALEDLDGDVAAFGDALTAALAATAR				NA	NA	NA	NA	NA
AK001_02440	1230	metXA	COG2021	Homoserine O-acetyltransferase	ATGACCACGACGACACCCCGCCATCCCGGTTCCGAGACCGGCTGGAAGTCGCCGCGCGGTGCGCGCCGCGCCCCGGCCGGCCCCGTCCCGGCGTCCGGCGCCTGGCGCGAGGGCGACCCCGCGGGCGCCCGCCGGTTCCTCGACGTGGGCACGTTCGACCTCGAGGTCGGGTCGCGGCTGCCCGACGTGCGGGTCGCCTACGAGACCCACGGCGAGCTCGACGCCGACGGGTCCAACGCCGTCCTCGTGCTGCACGCGCTGACCGGCGACGCGCACGTGCGCGGCCCGGCCGGCCCCGGCCACGCGACCGCCGGCTGGTGGGAGCCGATGATCGGTCCCGGCGCCCCCATCGACACCGACCGCTACTTCGTCGTCGTGCCCAACGTGCTCGGCGGCTGCCAGGGCACCACCGGACCGGCGTCGACCGCCCCGGACGGCCGACCCTGGGGCGCACGCTTCCCGCGGATCACCACCCGCGACCAGGTCGCCGTGGAGATCGAGCTCGCCCGGCTGCTCGGCGTCCGCTCGTGGGCGACCGTCATCGGCGGCTCGATGGGCGGCATGCGCGTCCTGGAGTGGGCGCTCCTGGGCCCCGAGGCCGGGATCGATGTGCGGTCGATCGTCTCGATCGCCACCAGCGCGCAGTCCTCCGGCGACCAGATCGCGTGGGCGCACCCCCAGCTCGGCGCCATCCGCTCCGACCCGCGCTGGAACGGCGGCGACTACTACGACGCCGCCCCGGGCGAGGGCCCGCACGCCGGGCTCGGGATCGCCCGGCAGATCGCGCACACCACCTACCGGACCGCCCGCGAGCTCGACGAGCGGTTCGGGCGGCTCCCCCAGGGCGGCGAGGACCCGCAGACCGACGGCCGCTTCGCCGTGCAGTCGTACCTCGACCACCACGGCGACAAGCTCGCCCGCCGGTTCGACGCCAACTCCTACCTGCGGCTGACCGAGACGATGCTGACCCACGACGTCGGCCGCGACCGCGGCGGCGTGGAGGCCGCGCTGGGGCAGGTCGAGTCCCAGGCCCTCGTGGTGGCCGTGGACTCCGACCGGCTCTTCCCGCCCGAGCTGTCCGACCGGATCGCCGCGGGGCTGCCGCACGCGGCCGGGACGCGGCTCATCACCTCCGACTTCGGGCACGACGGGTTCCTGCTGGAGTTCGACCAGATGGGGCCGCTAGTGCGCGACTTCCTCGCCGAGGTCGAGCGCGTCTCCCCCGCCTGA	MTTTTPRHPGSETGWKSPRGARRAPAGPVPASGAWREGDPAGARRFLDVGTFDLEVGSRLPDVRVAYETHGELDADGSNAVLVLHALTGDAHVRGPAGPGHATAGWWEPMIGPGAPIDTDRYFVVVPNVLGGCQGTTGPASTAPDGRPWGARFPRITTRDQVAVEIELARLLGVRSWATVIGGSMGGMRVLEWALLGPEAGIDVRSIVSIATSAQSSGDQIAWAHPQLGAIRSDPRWNGGDYYDAAPGEGPHAGLGIARQIAHTTYRTARELDERFGRLPQGGEDPQTDGRFAVQSYLDHHGDKLARRFDANSYLRLTETMLTHDVGRDRGGVEAALGQVESQALVVAVDSDRLFPPELSDRIAAGLPHAAGTRLITSDFGHDGFLLEFDQMGPLVRDFLAEVERVSPA				NA	NA	NA	NA	NA
AK001_02441	420			hypothetical protein	ATGGCGCGGCTCAACCCCTACCTCAGCTTTCGCACCGAGGCTCGCGAGGCCCTGGAGCTCTACCGGACCGCGCTCGGCGGCGAGCTCGAGATCACCACCTTCGGCTCGATGCCCGGCATGTCCGACGATCCCGCCGACCAGGAGCTGGTCATGCACGGGTCGGTCACCGCGCCGGGCGGCCTGATGCTGATGGCGTCGGACACGCCGTCCTCCATGCCCTACGTCGCCCCGACCAGCGGTGTCACCGTCGCCGTGACCGGCGGCCCGGAGGACCTGGAGTACGTACGCGGCGTCATCGCCGCCCTGTCCGACGGCGCGGCCGACGTGATGCCGTTCGAGAAGGCGCCCTGGGGCGACTACTACGGGCAGCTCACCGACCGGTTCGGCATCGCCTGGCTGTTCGACGTCGGCGCCGGGTGA	MARLNPYLSFRTEAREALELYRTALGGELEITTFGSMPGMSDDPADQELVMHGSVTAPGGLMLMASDTPSSMPYVAPTSGVTVAVTGGPEDLEYVRGVIAALSDGAADVMPFEKAPWGDYYGQLTDRFGIAWLFDVGAG	PGPT0030505_2459	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK001_02442	960	ccr	COG0604	Crotonyl-CoA carboxylase/reductase	ATGCTTGCCGCCACCGTCGCCCGCTTCGCCCCGGACAACCCGCTCGACGGCCTGGAGGTCACCGACCGCCCGGCACCCGAGGAGCGTGAGCACTGGACCACCGTCGAGGTCCGGGCCGCGAGCCTCAACCATCACGACCTGTGGTCCCTGCGCGGCGTCGGGCTGCGCGAGGAGCAGCTCCCGATGATCCTCGGCACGGACGCCGCCGGCGTCGCGCCCGACGGCAGCGAGGTCGTGCTGCACGGCGTCGTGGGCGCGGACGGCCACGGCGTCGGACCGCGGGAGCGCCGCACCCTGCTCAGCGAGAAGTACCCCGGGACGCTCGCCGAGCAGGCGTCGGTGCCGACCGCGAACCTCGTGCCCAAGCCGGCCGAGCTGTCCTTCGCCGAGGCCGCGTGCCTGCCCACCGCGTGGCTGACCGCCTACCGGATGCTGTTCCGCGCGGCCGACCTGCGCCCCGGCGACCGCGTCCTCGTCCAGGGCGTCGGCGGCGGCGTCGCCACGGCCGCCATCGTCCTCGGGGCCGCGGCCGGGCTGGAGGTGACCGCCACCTCCCGCGACGCGGCCAAGCGCGACCGGGCGCTCGAGCTCGGGGCGAGTGCCGTCGTCGAACCCGGCGAGCGGGTCCCGGCGCGGGTCGACGCCGTGGTCGAGTCGGTCGGTCAGGCCACCTGGGCGCACTCGGTGCGCTCCGTGCGCCCCGGCGGCACGATCGTGGTGTGCGGCGCCACGAGCGGCGACGCCCCGGCGGCCGAGCTGTCCCGCATCTTCTTCACCGAGCTGCGGGTGCAGGGCGTGACGATGGGGTCGCGCGAGGACCTGGCCGCGCTGCTGCGGTTCTGCGCGCGGACCGGGGTGCGCCCCGTCGTCGACTCGGAGGTGGCGCTGGCCGACGTCGGGACCGGTCTGGCGCGGCTCGCCGCCGGTGAGCAGACCGGCAAGATCGTCGTCACTCCCTGA	MLAATVARFAPDNPLDGLEVTDRPAPEEREHWTTVEVRAASLNHHDLWSLRGVGLREEQLPMILGTDAAGVAPDGSEVVLHGVVGADGHGVGPRERRTLLSEKYPGTLAEQASVPTANLVPKPAELSFAEAACLPTAWLTAYRMLFRAADLRPGDRVLVQGVGGGVATAAIVLGAAAGLEVTATSRDAAKRDRALELGASAVVEPGERVPARVDAVVESVGQATWAHSVRSVRPGGTIVVCGATSGDAPAAELSRIFFTELRVQGVTMGSREDLAALLRFCARTGVRPVVDSEVALADVGTGLARLAAGEQTGKIVVTP	PGPT0001350_6	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027	NA	NA
AK001_02443	1755			hypothetical protein	ATGCCACTGTTCGAGGTCGACGCCAGCAGGCCGCTCCTCGTCCAGTCCGGGCGGACCGCGGGGTCGGTCGAACCCGGGCTGGCGACGACGGCCCACCGCGTCGTGGACTCCCACATCGACGGACTGCTGGGCGAGCAGATCTTCCCCGTCGCGCAGGGCTCCGGGCCCGACGAGCCGCACCTGCTGGCCCTGGACGCCACGGGGTCGCCCGTCGTCGTCGAGCTGGTCGCCAACCTGGACAAGGCGGCGCTGACCCGGGCCCTGGACCACGCCGGGTGGGCCGGCAGGCTGACCCGCGGCGAGCTCGCCGCCCGCTACCACGGTGGTCAGAACGCGTTCCAGCGCGACATCGCCACGTTCTACGACTCGGTGCCGATCACCCGCTCCCAGCCGGGACGCTCCAGCGCCCGCCTCATCGTCATCTGCCAGGAGGCCGGCGAGGACATCCTCAACGCCGTCGACTTCCTGCGGCAGCCGACCATGCCCGTCGAGGTGCTCAAGATGGGGGTGATGCACGGGCAGGACGGTCGGCGGTTCGTCGACGTCTCGCCGCTGGTCATCCACCCGGCCTCCGACTCGACGGCGCCGCAGCTGTCCGGGCACGGCCGTCCCGTCGGTGCGCCGCAGGCCGCCGGCGCGGACGCCCGCACCGAGGCCGAGCCGGAGTCGTTCGCCGAGGGAGTCAAGGTCGGCATCGCGCTGACCGGGAAGAACCCGGCCGTCGCCGTCCCCGCCGGGGGCGCCGACGGGAGCGGGTCTCCCGCCCGTCCCGCCCCGGACGCCGTCGGGGACACCGCCGAGCAGCCGCCGCTGCGGCGCGGTCGTGCGGCACGACGTGCCGAGGCGCAGGCCGCGGCCGGCCCCCCGAGCCTGGCGGTCCCGTCCGTCCCGACGTCGTCGCAGCAGCCCCCGGCGCCGACGCCCGCTCCGGCGCCGGCCCCCACGACGGCGCACGCCCCGGTCCCGCCCCCGCCGCAGGACCCGCCGGCGCCGCGACGCCGGTCGCGCAGCGACCGCTTCCGCGAGGCCGGGCCCGCGCCGCAGCCGCCGCGTCCCGCCGCACCGGCACCGGCACCGGCACCGGCCCCCGCGCCCGAGCCGGCGCCGGCCCCGGCGCCGGCACCGCGCCGCCCGTTCTCGGCGTCGTCGGCCGACGACCTCGACCTCGCCGGTCTCGCCCGGCGCACCACCTCCGCGGCGAGCTCCGACACCCCGTCGCTCGGCGAGGACTTCGCCCGGGCCGCCGCCCCGGCGCTGGACCGTCCCGCCCCGGCGTCGGACGCGCGGAGCTCGGACCCGCTGGACTCGTGGACCCCCTGGTCGGAGAGCACGGACCGGCCGTGGCAGCCGTCGACGCCGGAGACGTGGACCAGCGCCTCCGACGACCTGCCGCGCCTGCAGGTCCCGCCGCTGGAGGCGCCGTCGTACACCCCGCCGCCCGAGCGCGGCCTGTACGACGACGCCGGGACCACCGTGCTCGACGAGGAGGAGGTGGACGGTGACCTCGTCGCGTTGGCGAGCACGCTGGGTCGGCCCACCTACCTCGAGTGGTCGCGCCCGCGCCGCCAGCAGCACTTCGAGGCGCTGCTGCACCCGGACGGGGTGATCGAGCTGCCCGACGGTTCGCGGTTCCAGCACCCCGACCACGCGGCGTCGGCCGCCTGCGGGGCGCCGACCGACGACGGCTGGAACGTCTGGCGGATCGTGCCCGACGGCGTCACGCTGCTGGACGCCTACCGCGCCCGCTTCGCCTGA	MPLFEVDASRPLLVQSGRTAGSVEPGLATTAHRVVDSHIDGLLGEQIFPVAQGSGPDEPHLLALDATGSPVVVELVANLDKAALTRALDHAGWAGRLTRGELAARYHGGQNAFQRDIATFYDSVPITRSQPGRSSARLIVICQEAGEDILNAVDFLRQPTMPVEVLKMGVMHGQDGRRFVDVSPLVIHPASDSTAPQLSGHGRPVGAPQAAGADARTEAEPESFAEGVKVGIALTGKNPAVAVPAGGADGSGSPARPAPDAVGDTAEQPPLRRGRAARRAEAQAAAGPPSLAVPSVPTSSQQPPAPTPAPAPAPTTAHAPVPPPPQDPPAPRRRSRSDRFREAGPAPQPPRPAAPAPAPAPAPAPEPAPAPAPAPRRPFSASSADDLDLAGLARRTTSAASSDTPSLGEDFARAAAPALDRPAPASDARSSDPLDSWTPWSESTDRPWQPSTPETWTSASDDLPRLQVPPLEAPSYTPPPERGLYDDAGTTVLDEEEVDGDLVALASTLGRPTYLEWSRPRRQQHFEALLHPDGVIELPDGSRFQHPDHAASAACGAPTDDGWNVWRIVPDGVTLLDAYRARFA				NA	NA	NA	NA	NA
AK001_02444	321			hypothetical protein	ATGGCTGTCTTCGCGTTCTCCGTCGCTCCGCTCGGTGCCGGCGAGTCGGTCACCGACTCCGTCGCCGAGGCCGTCCGCATCGTCCGGGAGTCCGGGCTGCCCAACCGCACCACCTCGATGTTCACCGAGATCGAGGGGGAGTGGGACGAGGTGATGCCGGTGATCCAGCGCGCCACCGAGGCCGTGGGCAACGGCGGGCACCGTGTCTCGCTCGTGCTGAAGGCCGACATCCGCCCCGGGCACACCGGCCAGCTCGAGGGCAAGGTGACCCGGGTGGAGGAGGCGCTCGCCGAGGACGAGTCGGCGACCGGTCACGCCTGA	MAVFAFSVAPLGAGESVTDSVAEAVRIVRESGLPNRTTSMFTEIEGEWDEVMPVIQRATEAVGNGGHRVSLVLKADIRPGHTGQLEGKVTRVEEALAEDESATGHA				NA	NA	NA	NA	NA
AK001_02445	939	fbiA	COG0391	Phosphoenolpyruvate transferase	GTGACCCTCCTGGCCGGTGGCGTCGGCGGCGCCCGCCTCGCGCACGGTCTCGCCCGTGCCCTGCCCGACGGCGGAGCGCCCGGCGCGCACGGCGGCCTGACCTGCGTGGTCAACGTCGGCGACGACACCGAGCGGCACGGGCTGCACGTCGCGCCGGACCTCGACACGGTGATGTACACGCTGGCGGGGCTCGACGACGAGGATCGCGGCTGGGGACTGACGGGCGAGTCGTACGCGACGCTGTCCCAGCTGGAGCGGCTCGGCGAGGACACGTGGTTCACCCTCGGCGACAAGGACCTGGCCACGCACGTGGTGCGCACGGCCCGGCTGCGCGAGGGCCTGCCCCTGAGCGCCGTGACCGCCGGGCTCACCGCCTCCCTGGGCGTCGCGGCCCGGCTGCTGCCGGTCACCGACGACGCGGTGCGCACCCGGATCACCACGCCGTCGGGCGAGCTGGAGTTCCAGGAGTACTTCGTGCAGCGCCGGCACGCCGACACCGTGCTCGACCTGACGTTCGACGGGATCGACGCCGCCCGTCCGGCGCCCGGGGTCCTCGACGCGCTGCACGAGGCCGACCTGCTCGTGGTGGCGCCGTCGAACCCGTTCCTGTCCGTGGAGCCGGTGCTCGGCGTGCCGGGCGTGCGCGAGGCGGTCCGGGCCGGCGGCCCGCGCCGGGTGGCCGTCAGCCCCATCGTCGGCGGGAGGGCGCTCAAGGGCCCCGCCGCACAGGTGCTGGAGTCCCTCGGGCACGACGTCTCGGCGCTCGGCGTCGCCCGGCTCTACACCGGGCTGGTCGACGTCATGGTGATCGACACCGCCGACGCGGACCTGGCCGGCGCCGTCGAGGACCTCGGGTTCGAGGTGCTGGTCACCGACACGATCATGGGCGGCCCGGAGGGGCGCGAACGCCTGGCCCGCGAGCTGCTCGCGCTGGCATGA	MTLLAGGVGGARLAHGLARALPDGGAPGAHGGLTCVVNVGDDTERHGLHVAPDLDTVMYTLAGLDDEDRGWGLTGESYATLSQLERLGEDTWFTLGDKDLATHVVRTARLREGLPLSAVTAGLTASLGVAARLLPVTDDAVRTRITTPSGELEFQEYFVQRRHADTVLDLTFDGIDAARPAPGVLDALHEADLLVVAPSNPFLSVEPVLGVPGVREAVRAGGPRRVAVSPIVGGRALKGPAAQVLESLGHDVSALGVARLYTGLVDVMVIDTADADLAGAVEDLGFEVLVTDTIMGGPEGRERLARELLALA				NA	NA	NA	NA	NA
AK001_02446	783	fbiD		Phosphoenolpyruvate guanylyltransferase	ATGACGGAACCGGCAGCTGCCGACGGCGACTCACCGCACGCACCGGAGCCCGGGCGGGTGACCGCCGTCGTCCCCCTGCGCGACGGGGCGAGCGGCAAGTCGCGGCTGGCCACGGCGCTGGAGCCCGCGGCCCGACGGCGGCTCGTGGTCGCCCTGGCCCGGCACGTGCTGGGGGTGCTCGCCGACGCCGCGTCGGTGGGACGGGTCGTCGTGGTGACGGCCGACGTCGACTTCGCCCGCGAGGTGCTCGACGACGGCCCGGGTCACGTCGGCAGGTCGTCGTCGACGCGGCAGTTGGGCCTGCCGCGGGCGCGCCCAGCAGCCCCCCGGCTCGCGGGGGCGCCCCGCCGCCCCCGGCTGGACGCGGCGCTGGAGCACGCCCGGCGGCACGTCGCGGGCGACACCGGCGTCGCCGGCGACGCGGACAGCCCAGACGGCCTCGACGGCCCGGGGGCCGACCGGCTCCTCGTGGTGCACGCCGACCTGCCGCTGCTGACCCCGGCGGACGTCGACGCGGTCGCCACCGCGCGAGCCGACGTCGTCGTCGCCACGGACCGGCACGGCACCGGGACGAACCTGTTGGCCGTCCCCCGGGTCGGCGACCACGCCTTCCGGTTCGGCGCCGGGTCCCGCGCCGCCCACGAGGCCGAGGCCGCGCGGCACGGGCTGCGCGCCGCCGTCGTGCTGCGCCCGGGCACGGCCGCCGACCTGGACACGATCGACGACGTCGCCGAGCTCCCCCACGCCGTCCGCGACCGGCTCGTCGGCACCGTCCGCCCCTGA	MTEPAAADGDSPHAPEPGRVTAVVPLRDGASGKSRLATALEPAARRRLVVALARHVLGVLADAASVGRVVVVTADVDFAREVLDDGPGHVGRSSSTRQLGLPRARPAAPRLAGAPRRPRLDAALEHARRHVAGDTGVAGDADSPDGLDGPGADRLLVVHADLPLLTPADVDAVATARADVVVATDRHGTGTNLLAVPRVGDHAFRFGAGSRAAHEAEAARHGLRAAVVLRPGTAADLDTIDDVAELPHAVRDRLVGTVRP				NA	NA	NA	NA	NA
AK001_02447	606	fbiB_2		Bifunctional F420 biosynthesis protein FbiB	ATGGAGTTCCGTGACGTGGTCCGACGGCGGCGCATGGTCCGGCGGTTCGGCCCCGACCCCGTGGACCCGGCCGTGGTCGACCGGCTGGTCGAGACCGCCGTGCGGGCCCCGAGCGCAGGGTTCACCCAGGCCTGGTCCTTCCTGGTGCTCACCACGGCTGAGGAGCGCGAGCGGTTCTGGGCGGCGACCACCCCGCCGGACTCGGCGCGGGACATGTCGACCTGGCTGGCCGGGATGCGCACCGCCCCGGTGCTCGTGGTGGCGCTGGCCTCGCGGGACGCCTACGTGGGGCGCTACGCCGAGCCGGACAAGGGCTGGACCGACCGCGACGAGGCGCGGTGGCCGGTGCCGTACTGGCACGTGGACGCCGGCATGGCCTCGCTGCTCATGCTGCAGACCGCCGTCGACGAGGGGCTCGGGGCGTGCTTCTTCGGCATCTCGGCCTACCAGATCGCGGCGTTCCGCGAGGCCTTCGGCGTGCCGGCCGAGTGGGCGCCCACCGGGGTGGTCGCCGTCGGGCACCCCCAGGCCGGGGGAGCGAAGGGGTCACCGGCGCGGCGGCGGCGCAAGCCGCTGGACGAGGTGGTGCACCGCGGGCGGTGGTGA	MEFRDVVRRRRMVRRFGPDPVDPAVVDRLVETAVRAPSAGFTQAWSFLVLTTAEERERFWAATTPPDSARDMSTWLAGMRTAPVLVVALASRDAYVGRYAEPDKGWTDRDEARWPVPYWHVDAGMASLLMLQTAVDEGLGACFFGISAYQIAAFREAFGVPAEWAPTGVVAVGHPQAGGAKGSPARRRRKPLDEVVHRGRW	PGPT0006810_1072	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0006810-bluB|drgA-K04719	NA	NA
AK001_02448	3180		COG0247	putative protein	GTGCGGGTCCCGGCGCGCGGGGACGCCGACGACGCCCGGGGACGGACGATTCGCCACACGACGCCGTCACGGTGGCACAATCGCCACGTGTCCGCCCAGACGACGACTCCAGCGCCCGGCCCGAACGGTTCGACCTCGTCGGCTCGCTCCGCCGCGTCCGGGGACGCCGCGGAGCAGGCCCGGCGGGAGGCCGAGCGCGAGGCGCAGCGACAGGCCGAGCGCGAGGCGCAGGAGGCCGCCGCCGAGGCCCGCGAGGCCGTCGCGACGGCCCTGCGCACGGTGATGACCGGTGACGTGGACACCTCCACGCGCCGCCGCGCCGAGTACTCCACGGACGCGTCCAACTACCGGGTGGTGCCGGACGTCGTCGTCTACCCGCGCACGACCGACGAGGTCGTCGCCGCGCTGGGCGTGCTGCGCGAGCTCGAGGTGCCCGTGACCGCGCGCGGCGCCGGGACCTCGGTGGCCGGGAACTCGGTCGGTCCGGGGGTGGTGCTCGACCTGTCCCAGCACCTGGACACCATCCACGCCGTCGACCCCGAGACCCGCACGGCCGTCGTCGACCCCGGGGTCATCATGTCCTCGCTGCAGCGCGAGGCACGCCCGCACGGGCTGCGGTTCGGGCCCGACCCGTCGACGCAGAACCGCGCCACCCTCGGCGGCATGATCGGCAACAACGCGTGCGGGCCCCACGCCGTGGCGTACGGCCGCACGGCCGACAACGTCGTCGAGCTCGACGTCGTGGACGGGCACGGCCGCCGGTTCACGGCGGCGCACGGCGACCCGACGTTCGCGGCCGTGCCGGGGCTGGCCGAGCTGGTCCGGGAGAACCTGGCCCTGATCCGCACCGAGTTCGGGCGCTTCGGCCGGCAGGTCTCGGGCTACTCGCTGGAGCACCTGCTGCCGGAGAACGGCTCGAACCTGGCCAGGTTCCTCGTGGGGACCGAGGGCACCCTGGTGACGGTGCTCGGCGCGACCCTCGACCTCGTGCCCGTGCCGAACGCGCCGACGCTGGTGGTGCTCGGCTACCCGGACATGCCCGCGGCCGCCGACGACGTGCCCGTGCTGCTGCAGCACGACCCGCTGGCCATCGAGGGCCTCGACGCCCGTCTGGTCCAGGTCGTCCGCGACGCCAAGGGCGCCGACGCGGTACCGGAGCTGCCCGAGGGCGCCGGCTGGCTGATGATCGAGGTCGGCGGCGGCAGCGAGAACGAGGTGCGCGAGCTCGCCGAGATGATCGTCGGGGCCTCCTCCGCCGTCGGCGCGGCCATCTACCCCGCCGGTCCCGAGGCGACGCAGATGTGGCAGATCCGGGCTGACGGCGCCGGGCTGGCCGGTCGCACCCCGGCCGGCGAGCAGGCCTGGCCCGGCTGGGAGGACTCCGCGGTGCCGCCGGACCGGCTCGGCGACTACCTGCGCGACCTCGACGCGCTCATGGCGCGCTACGGCGTCGACGGGCTGCCCTACGGGCACTTCGGCGACGGCTGCATGCACCTGCGCATCGACATCCCGCTGGAGGCCTCCGGCTCGGTGCTGCGCACCTTCATGACCGAGGCCGCCGAGCTGGTGGCCAAGTACGGGGGGTCGCTGTCCGGCGAGCACGGGGACGGCCGGGCCCGGTCCGAGCTGCTGCCCGTCATCTACTCGCCCGAGGCCGTCGCGCTGATGGAGCAGGTCAAGGCGCTCTTCGACCCGCACGACGTGCTCAACCCCGGCGTGGTGGTCCGGCCCGCCGCCGTGGACGCGGACCTGCGCCGCCCGGCGGCCTCCGCGGTGCCGTCCACGAGCCCCGTCGGCCAGCGCGGTCTGCTCGGCTCGGGCACGCTGCGCGGGACGGCGAGGAAGACCGGGTACGCCGGCTTCAGCTTCGCCCACGACCACCACGACCTGACCACGGCCGTGCACCGCTGCGTCGGGGTGGGCAAGTGCCGCGCCGACAACCAGGCCGCCGGCGGCTTCATGTGCCCGAGCTACCAGGCGACGAAGGAAGAGAAGGACGTCACCCGCGGCCGGGCCCGGGTGCTGCAGGAGGCCGTCAACGGCTCCCTCGTCGGCGGGCTGACCGCCCCGGAGGTCCGCGAGTCCCTCGACCTGTGCCTGAGCTGCAAGGCCTGCTCCTCGGACTGCCCGGCCGGTGTCGACATGGCCCAGTACAAGTCCGAGGTGCTGCACCGGACCTACAAGGGCCGCCTGCGTCCCGTCGACCACTACGCCCTGGGCTGGCTGCCCCGGTGGGCGCGGCTGGCGGGCGTCGCGCCGCGCACGATCAACAAGGTGCTCTCGGTCGACTGGATCCGCCGGGCCGTGCTGTGGGCGGGCGGCATGGACACCCGGCGCTCCGTGCCGGAGTTCGCCGAGATGCCGTTCCGGCGCTGGTGGGGCCTGGGGTACGCCACGCAGGGGGTGCCCGGGCTCGCGCACCGGCAGTCGCCGGGCAAGCCCGTCGGCGGCGCGCGGCCGCAGGTCGTGCTGTGGACCGACTCGTTCAGCGACTCGATGTCGCCGTCGGTGCCCCGGGCCGCGATCCGCGTGCTCGAGGCGGCCGGCTACGACGTGATCGTCCCGCGCGGCGAGGCCTGCTGCGGGCTGACGTGGATCTCCACCGGCCAGCTCGACGGCGCCCGGCGCCGGCTCGACGGCCTGCTCAAGACCCTCGGCCCGTACGCCGTGAACGGGTATCCCATCCTCGGGCTGGAGCCGTCCTGCACGGCGGTGCTGCGCTCTGACCTGCTCGACCTGTTCCCCGACGACCCGCGGGCCGCCGCTGTGGCCGGGGCGACGAAGACGCTCGCCGAGCTGCTGACCGACCCCACGACGGCCCCGGCCGAGGACTCGGGGTGGGAGCTGCCCGACCTCAGCGACGTCACCGCCGTCGTGCAGCCGCACTGCCACCAGCACTCCGTCATGGGCTTCGCCGCCGACCGCGCCCTGCTGGCGCAGGCGGGGGCCACCGTGAACGAGCTGGCGGGCTGCTGCGGCCTGGCGGGCAACTTCGGCATGCAGAAGGGCCACTACGACGTCTCGGTCGCCGTGGCGGAGAACGCCCTGCTGCCGGCGCTGCGAGAACGCGAGGAGTCGGATGTCTTCGTTGCCGACGGCTTCTCCTGCCGCACGCAGGCCGTCCAGCTCGAGGGCGTCGAGGGCAAGGCCCTGGTCGAGGTGCTCGCCGAGCGACTCTGA	MRVPARGDADDARGRTIRHTTPSRWHNRHVSAQTTTPAPGPNGSTSSARSAASGDAAEQARREAEREAQRQAEREAQEAAAEAREAVATALRTVMTGDVDTSTRRRAEYSTDASNYRVVPDVVVYPRTTDEVVAALGVLRELEVPVTARGAGTSVAGNSVGPGVVLDLSQHLDTIHAVDPETRTAVVDPGVIMSSLQREARPHGLRFGPDPSTQNRATLGGMIGNNACGPHAVAYGRTADNVVELDVVDGHGRRFTAAHGDPTFAAVPGLAELVRENLALIRTEFGRFGRQVSGYSLEHLLPENGSNLARFLVGTEGTLVTVLGATLDLVPVPNAPTLVVLGYPDMPAAADDVPVLLQHDPLAIEGLDARLVQVVRDAKGADAVPELPEGAGWLMIEVGGGSENEVRELAEMIVGASSAVGAAIYPAGPEATQMWQIRADGAGLAGRTPAGEQAWPGWEDSAVPPDRLGDYLRDLDALMARYGVDGLPYGHFGDGCMHLRIDIPLEASGSVLRTFMTEAAELVAKYGGSLSGEHGDGRARSELLPVIYSPEAVALMEQVKALFDPHDVLNPGVVVRPAAVDADLRRPAASAVPSTSPVGQRGLLGSGTLRGTARKTGYAGFSFAHDHHDLTTAVHRCVGVGKCRADNQAAGGFMCPSYQATKEEKDVTRGRARVLQEAVNGSLVGGLTAPEVRESLDLCLSCKACSSDCPAGVDMAQYKSEVLHRTYKGRLRPVDHYALGWLPRWARLAGVAPRTINKVLSVDWIRRAVLWAGGMDTRRSVPEFAEMPFRRWWGLGYATQGVPGLAHRQSPGKPVGGARPQVVLWTDSFSDSMSPSVPRAAIRVLEAAGYDVIVPRGEACCGLTWISTGQLDGARRRLDGLLKTLGPYAVNGYPILGLEPSCTAVLRSDLLDLFPDDPRAAAVAGATKTLAELLTDPTTAPAEDSGWELPDLSDVTAVVQPHCHQHSVMGFAADRALLAQAGATVNELAGCCGLAGNFGMQKGHYDVSVAVAENALLPALREREESDVFVADGFSCRTQAVQLEGVEGKALVEVLAERL				NA	NA	NA	NA	NA
AK001_02449	1110			hypothetical protein	ATGCGCGTCGTCGTCATCGGAGCCACTGGAAACGTCGGGACCTCGATCCTGCGCGCCCTCGTCGCCGAACCGGTGGTGACCTCGCTCGTCGGGGTCGCCCGCCGCGTGCCGCGCACCGACGGGTCCAGCACGGTCGGCCCGCCCCACGACGCCGCGCAGTGGGTGCGCGTCGACCTGGCCGACGCCGAGACCGTCGCCGACCGGCTCGACGAGGCCCTGGCGGGCGCCGACGCCGTGATCCACCTCGTCTGGGCCATCCAGCCCGCCCGCGACCCCGAGACCCTGCACCGCATCAACGTCGGCGGCACCCGCGCCGTGACCGACGCGGTGGTGCGCAACCGGGTCCCGCACCTGCTGTTCATGTCCGCCTCCGGGGTGTACTCCCCCGGCCCGGCCGACGGGTCCGACGTCGACGAGGACTGGCCCCGCGACGGCGTGCCCGGCTCGTCCTACGCCCTGCAGAAGGCCGAGGTGGAGCACCACCTGGACGCGGTCGAGGAGGCGGCGCCCTGGCTGACGGTGACCCGGCTGCGCGCGGCGATCATGCTGCAGCGCGAGGCCGGGGCCGAGATCGGCCGCTACTTCCTGGGACCCCTGGGACAGATCGGGCTCAAGGTCGCGGTGGGCCCGCTGGGCCAGGCGGTCGGCGGGGCCGTGCGAGGGTGGCGGGGGCTGCCCGAGCCCGCCGAGCCGCCGCTGTTCCCGCTGATGCCGTTCCCGGCCGGCCTGCGGCTGCAGGTGCTGCACCCGGACGACACCGCCGCGGCCGTGCGCGCCGCCGTCGTCGGCCGGCACGGCGGTGCCTTCAACCTGGCTCCCGACGGCGGCCTGACCGGCCAGGACCTGGCCGACCTGCTCGCCGCGGGCCAGCTCGTCGAACTCCCGGTCAGCCTGCTGCGCACCGGCCTGGACCTCGCCTCGCGCGCCCACGTGGTGCCGATCGACGCGGGCTGGCTGGACATGGCGGCCGCGAACATCGTCATGGACACCTCCCGGGCCCGCGAGGTGCTGCGCTGGCGACCCACCCGCTCGCAGGGCGAGGTGCTGCTGGAGGTGCTGCACGGGGTGCTCGAGCGCGCGAGCGCCGACACGCCGCCGCTGCAGCGCTGA	MRVVVIGATGNVGTSILRALVAEPVVTSLVGVARRVPRTDGSSTVGPPHDAAQWVRVDLADAETVADRLDEALAGADAVIHLVWAIQPARDPETLHRINVGGTRAVTDAVVRNRVPHLLFMSASGVYSPGPADGSDVDEDWPRDGVPGSSYALQKAEVEHHLDAVEEAAPWLTVTRLRAAIMLQREAGAEIGRYFLGPLGQIGLKVAVGPLGQAVGGAVRGWRGLPEPAEPPLFPLMPFPAGLRLQVLHPDDTAAAVRAAVVGRHGGAFNLAPDGGLTGQDLADLLAAGQLVELPVSLLRTGLDLASRAHVVPIDAGWLDMAAANIVMDTSRAREVLRWRPTRSQGEVLLEVLHGVLERASADTPPLQR				NA	NA	NA	NA	NA
AK001_02450	444	osmC	COG1764	Peroxiredoxin OsmC	ATGCCCACTCGTACCGCACGCACCGCGTGGAACGGCTCACTGACCGACGGCTCGGGGACGGTCGAGCTCGTCAGCTCGGGCACCGGGACGTTCGACGTCTCGTTCCCGCGGCGCGCCGCCGAGTCCGCCGACGGCGTGACGAGCCCCGAGGAGCTCATCGCCGCCGCGCACTCGTCCTGCTACTCGATGGCGCTGGCGGCCGAGGTCGGCGCGCTCGGCGGCACGGCCGAGCAGGTGGAGGTCACCGCCGAGGTGTCCCTGGGTGACGACCCCAACGGCGGCCACCGCATCACCTCCAGCGTCCTCACCGTGAAGGGCTTCGCGGCCGGGCTCGACGAGGCCGCGTTCCGCCAGGCGGCCGAGGCCGCGAAGATCGGCTGCCCCGTCTCCAAGGCGCTGGGCACCGTCGACGAGATCGTCCTGCAGCTCGACTACGAGCACTGA	MPTRTARTAWNGSLTDGSGTVELVSSGTGTFDVSFPRRAAESADGVTSPEELIAAAHSSCYSMALAAEVGALGGTAEQVEVTAEVSLGDDPNGGHRITSSVLTVKGFAAGLDEAAFRQAAEAAKIGCPVSKALGTVDEIVLQLDYEH	PGPT0013160_304	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063	NA	NA
AK001_02451	1446			hypothetical protein	ATGGACGAGCGAGACGAGGCCTTCGACCGGCTCCGGGGAGCCGACCCGGCCGCCGACGTCGACACCCGCCACGGCGTGCTGCGCGCCAAGACCGACGCGCTGCGCGACGGGCACGAGCAGCCCTCCGAGGGGCCGTCCGGCCCAGGGGCGTCCGCCGGGCGGGACGAGCTCGCCGCGCGGCGCGACCGCCGGCGCTCCGGCTGGCTGGTCGCCGCCGGCGTCGCCGGGGCGGTGGTGCTCGGCGGCGGGGGGTACGCGCTGGGCTCCGCCGACGGCTCCGGGGCGCCCGTCGCCGAGGACGGCGGCGCGCTGCCGCCGATCACGCTGGACGGCGGGTCCGGTGCGTCGGCCGGCGCCGACGCTGCGGACGGTGCGGTGACCGAGGAGCGCGCGCTCGGGAGCGGGCCCGCGCCCGAGGCGGCCGTGGGCACCTCCGTCATGCCGGCCCCCGGGTTCGGCGGGCGCGCCACCTTCAGCCACGACGGGCTGTCCACCGAGGCGGGCACCGCCACGGCGTACGCCTACGACGCCGCCGACGTCGCGACCGAGTCCGGCGCGGCGGACCTGGCCGCGGCGCTGGACGTGCCCGGCGAGCCGCGGTGGGAGTACGGGACGTGGGTGGTCGGCCCGCGCGACGGCAGCGGCCCGAGCCTGTGGCTCGCCGCCGACGGTGTCGCCTCCTTCAGCTACCAGGACCCCTCCCTGGACCCGTGGCGGTGCGAGGAGATCGAGATCCTGCCCGAGGAGTCCACGTCCTCGGGTGCGGCCGAGCCCGGCCAGGCGATCGAGCCGGCCCCCTGCGAGCCCGCCGGGGGCGGGGACGTCTCCGCCGACGAGGCCGTCGACCGGCTGCGCGGGCTCATGGAGCAGGTCGGGGTCGACCCGGCCGGCTTCGAGATCGAGGCCACGCAGGCCCAGGGCGCGGCCCGCCGTGCCCTGGCGTCCCAGGTCGTCGAGGGCCAGCGCACCGGTGCCACGTGGAGCGCCACGGTCACGGCCGACGGCGTCGCCTGGGCCGACGGGTTCCTGGCCGGGACCGTCTCGCTGGGCTCCTACCCCGTGGTGAGCCCGGCCGAGGCCGTCGACCGCCTCGGCGACCCCCGGTTCGGCCAGCAGCTCTGGCCGATCGCGTACGCCGACGACACCGTCTCCGGGCTCGAACCGAGCACCGACCGTCTGCCCGCCCCCGACGTCGTCGAGCCGGGGGACGGCGTCGAGCCGGGCAGCGAGCCGACCGTGCCGCCCGCCCCGCCGGCGTCGGGCAGCGACCTGCCCTGGCCCGTGCGCGACGTGACGATCACCGACGCCCGACTGGGCCTGGCCCAGGAGTACACGGTCGACCAGGGCGTCCTGCTGCTGCCCGCCTACGAGCTCACCGACGCCGACGGCAGCACCTGGTCGGTCGTGGCGGTCGCCGACGAGGCCCTGGCGACGACCTCTCCCTGA	MDERDEAFDRLRGADPAADVDTRHGVLRAKTDALRDGHEQPSEGPSGPGASAGRDELAARRDRRRSGWLVAAGVAGAVVLGGGGYALGSADGSGAPVAEDGGALPPITLDGGSGASAGADAADGAVTEERALGSGPAPEAAVGTSVMPAPGFGGRATFSHDGLSTEAGTATAYAYDAADVATESGAADLAAALDVPGEPRWEYGTWVVGPRDGSGPSLWLAADGVASFSYQDPSLDPWRCEEIEILPEESTSSGAAEPGQAIEPAPCEPAGGGDVSADEAVDRLRGLMEQVGVDPAGFEIEATQAQGAARRALASQVVEGQRTGATWSATVTADGVAWADGFLAGTVSLGSYPVVSPAEAVDRLGDPRFGQQLWPIAYADDTVSGLEPSTDRLPAPDVVEPGDGVEPGSEPTVPPAPPASGSDLPWPVRDVTITDARLGLAQEYTVDQGVLLLPAYELTDADGSTWSVVAVADEALATTSP				NA	NA	NA	NA	NA
AK001_02452	558			hypothetical protein	GTGAGCGCCGACGAGGCGACCGAGCACGACGCCGCATGGTTCGACGCGCTGTTCGCCGCGCACGCCGGGGCCGTGCACCGGTATCTCGTGCGCCGGCTGCCGGCCGGTGCCGGCCACCGCGACGAGGCCGAGGACCTCGCCGCCGAGGTGCTGGCCACGGCCTGGCGGCGCCGTGACGACGTCCCGGCCGGCGCCGAGCTGCCGTGGCTCTACCGCACCGCGGGGTACGTGCTGGCCAACCACCGCCGCAAGCACCGGGCGACGCCCGTCGCGGCCGTGCCGGAGGAGCCGGACGACGTCGACCCCGCGGCGCTCGCGGTCACCGACGACGCCGTGCGGGACGTCCTCGGCCGCCTGAGCCCGCGCGACCGCCGCATCCTGCTGCTCGTCGCCTGGGACGGGCTGGGCGGGGACGCGCTCGCCGAGGTGCTCGGCGTCTCGCGCGGCGGCGCGGACGCCGCCCTGTCCCGCGCGCGGGCCCGGCTGCGCTCGGCCTGGCAGGAGGCCGAGGCGAGTGCCGCGTCGGCGGACGACGTCGAGCAAGGGAACCGGCCGTGA	MSADEATEHDAAWFDALFAAHAGAVHRYLVRRLPAGAGHRDEAEDLAAEVLATAWRRRDDVPAGAELPWLYRTAGYVLANHRRKHRATPVAAVPEEPDDVDPAALAVTDDAVRDVLGRLSPRDRRILLLVAWDGLGGDALAEVLGVSRGGADAALSRARARLRSAWQEAEASAASADDVEQGNRP				NA	NA	NA	NA	NA
AK001_02453	1851			hypothetical protein	ATGCCTGGACCACGACGAGGAGCCCGCCGTCTCGCGGCAGCCCTCACCAGCGCCGCCGTCGTCCTGGCGGGCGCGCTCGGCACCGTCGCCGCCACGAGCGCGACGGCCGCCGAGACCTCCTCCGGCGACAGCGCAATCAACGGGTACCGCAACGTCGGGTACTTCACGCAGTGGGGCGTCTACGGACGCGACTTCCACGTCAAGGACCTCGACACCTCCGGCGTCGCGGCGGACCTGACCCACATCAACTACGCGTTCGGCAACATCCACCACGAGACCCTCGAGTGCTTCGAGGCGAACAAGGCCCAGGGCACCGGCCCGAACGGCTCCGACGGCGCCGGCGACGCCTACGCCGACTACGGCAAGAGCTACTCCGCCGCCGAGAGCGTCTCCGGCGAGGGCGACGTCTGGGACCAGCCGCTGGCCGGGTCGTTCAACCAGCTCAAGCAGCTCAAGGAGAAGCACCCCCAGCTCAAGGTGATGATCTCGCTGGGCGGGTGGACCTGGTCGAAGAACTTCTCGAAGGCGGCCGCGACGCCGGAGTCCCGGCAGAACTTCGTGGCCTCCTGCCTCGACCTGTACATCGAGGGCAACCTGCCCGTCATCGACGGTCGCGGGGGTCCCGGAGCCGCGGCCGGCGTGTTCGACGGCATCGACATCGACTGGGAGTGGCCCGGCTCGTTCAACGGGCTGGAGGGCAACCACGTCGACGTCGCGAACGACGCCGAGAACTTCCGGCTGCTGCTGGCCGAGTTCCGCGCCCAGCTCGACGCCCTCGGCGCCGAGACCGGCGAGGACTACCTGCTCTCGGCGTTCCTCCCGGCGAACCCGGCCGACATCGCCTCCGGCGGGTGGAACGACCCGCGGATCTTCGACTCCCTGGACTTCGGCAACGTCCAGGGCTACGACCTGCACGGCGCCTGGGACCCCTCGCTGACCGGGCACCAGGGCAACCTGTACGCCGACCCGGCCGACACCCGGGAGCCGAGCCGCCAGTTCTCCGTCGACCGGGCCGTGCAGGAGTACGTCGGTGCCGGCATCGACCCGGCCCAGCTCGGCCTCGGCCTGGCGATGTACGGCCGCGGTTGGCAGGGCGCCACGTCCGCGGACGCCTGGGGCCCGGCCTCCGGCGCGGCCCCCGGCACGTGGGAGGACGGCAACGAGGACTACGACGTCCTCAAGACGCTCGGGACCGAGTACTACGACGCCGAGATCGGCGCCGCCTGGCGCTACGACGGCAACCAGTGGTGGTCCCTCGACACCCCGCAGAGCGTGACCCAGAAGGTCGGCTACGTGCGCGACCAGGGTCTCGGCGGCGGCATGTGGTGGGACCTGTCCGGCGACGAGGAGGGCGAGCTCGTCGACGCCCTGGCCGCGGGCCTGTACACGGGCGCGGCCGGTCCGGTGGACGTGCCGGACCAGCCGGAGCCCACTCCCGAGCCGACCACCTCGCCCGGCCCGGAGCCGACGACGTCCCCGAGCCCCGAGCCGACGCCGGAGCCCGGCGAGTGCGCGGCCACGGCCTGGGACGCCGCCGCGGTCTACGTCGGGGGCGACGTCGTCGCCCACGCCGGCAGCGAGTGGGAGGCCAAGTGGTGGACCCAGGGCGCCGAGCCCGGCACCGCGGACGTGTGGGCCGGGCTCGGGGCCTGCGACGGCGGGGAGCCCACCCCGGAGCCGACGACGACGCCCGCGCCCGGTGACTGCACCGCCGCGGCCTGGGGCACGGGCGCCGTCTACGTCGGTGGCGACGTCGTGAGCCACGACGGCGCCGAGTGGACCGCGAAGTGGTGGACCACCGGCGAGGAGCCCGGCACCGCCCAGGTGTGGGACGGCCCGGCGACCTGCTGA	MPGPRRGARRLAAALTSAAVVLAGALGTVAATSATAAETSSGDSAINGYRNVGYFTQWGVYGRDFHVKDLDTSGVAADLTHINYAFGNIHHETLECFEANKAQGTGPNGSDGAGDAYADYGKSYSAAESVSGEGDVWDQPLAGSFNQLKQLKEKHPQLKVMISLGGWTWSKNFSKAAATPESRQNFVASCLDLYIEGNLPVIDGRGGPGAAAGVFDGIDIDWEWPGSFNGLEGNHVDVANDAENFRLLLAEFRAQLDALGAETGEDYLLSAFLPANPADIASGGWNDPRIFDSLDFGNVQGYDLHGAWDPSLTGHQGNLYADPADTREPSRQFSVDRAVQEYVGAGIDPAQLGLGLAMYGRGWQGATSADAWGPASGAAPGTWEDGNEDYDVLKTLGTEYYDAEIGAAWRYDGNQWWSLDTPQSVTQKVGYVRDQGLGGGMWWDLSGDEEGELVDALAAGLYTGAAGPVDVPDQPEPTPEPTTSPGPEPTTSPSPEPTPEPGECAATAWDAAAVYVGGDVVAHAGSEWEAKWWTQGAEPGTADVWAGLGACDGGEPTPEPTTTPAPGDCTAAAWGTGAVYVGGDVVSHDGAEWTAKWWTTGEEPGTAQVWDGPATC	PGPT0012130_1789	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183	NA	NA
AK001_02454	2589			hypothetical protein	ATGCGAGCACCTCACCCGGCGCGACGCCGACTCGGCGCCGCCACCGCCGCGGTCGCCCTCGCGGCGACGACTCTCGTGGCGGCCGCGACCGCCCAGACGGCGAGCGCCGCCGTCGAGTGCGCGACGCCCTGGGCGGCCGAGGCCGTCTACACCGGCGGCGACGTCGCCTCGTTCGACGGCCAGAACTGGACCGCCGGCTGGTGGACCCAGGGCGAGGAGCCCGGGTCCGCCGCGTGGGGTCCCTGGACCAGCGACGGCGCCTGCGGCACGACCGAGCCCAGCCCCGAGCCGACGCCGGAACCGACCGAGGAGCCGACGCCGGAACCGACCGAGGAGCCCAGCCCCGAGCCGACGCCCGAACCGACGGCGGACCCCGGCGAGCCGCTGTCGACGAACCCGGACGACGTCTGCCGCCCCGACGGCATGAAGCCGACGGCGGGCGTGGAGACGCCGTACTGCGACGTCTACGACACCGACGGACGCGAGATCCTGCCGAACGGGCTCGACCGCCGCGTCATCGGCTACTTCACGAGCTGGCGCACCGGCGCGAACGACCAGCCCAGCTACTTCGCGAGCGACATCCCCTGGGACAAGATCTCGCACATCAACTACGCGTTCGCCCACGTCGGGCCCGACAACAGGGTGTCGGTCAACGAGGACGTGCCGGGTAACCCGGCCACGGACGCCACCTGGCCCGGCCAGGAGTTGGACCCGGCGCTGCCGTACACCGGGCACTTCAACCAGCTCGCGCAGTACAAGGCCGCCAACCCGGGCGTCAAGGTGATCCCCGCCGTCGGCGGCTGGGCGGAGACCGGCGGCTACTTCGACGGTGACGGCAACCGGGTCGCCTCGGGCGGCTTCTACACGATGACCGAGACGCAGGAGGGCATCGACACCTTCGCCGACTCCGTCGTCGACTTCGTCCGCACCTACGGGTTCGACGGCATCGACATCGACTACGAGTACCCGACGTCGAACACGAACGCCGGCAACCCCGACGACTTCGCGTTCTCCGACGCACGCCGTGGCGAGCTGTTCTCCGGGTACGTCGACCTGATGCGCACCCTGCGCGAGAAGCTCGACGCCGCCGGCGCCGAGGACGGCGAGTACTACCTGCTCACGACCGCCTCGCCGTCCTCCGGCTGGCTGCTGCGCGGCATGGAGGCCCACCAGGTCGTCCAGTACCTCGACTACGTCAACCTGATGTCCTACGACCTGCACGGGTCGTGGAACGAGTACGTGGGCGGCAACTCCCCGCTGTTCGACGGCGGGGACGACCCCGAGCTGGCCGCCGGCGGCGTCTACACCGCCTACGACGGCATCGGCTACCTCAACGGCGACTGGGCCGCGCACTACTTCCGCGGCGCGATGCAGTCCGGCCGCATCAACCTCGGCGTCGGCTTCTACACCCGCGGGTTCCAGGACGTGCAGGGCGGCACCCACGGCGACGGCGGCACGGCCCCGGCTCCGGCGGGCTTCGACTGCCCGGCGGGCACCAACGGCTCGTGCGGGTACGGCGCCGACGGCATCGACAACCTCTGGCACGACCTCGACCCCGAGACGGGTGAGCCGATCCCGGCCGGGGTGAACCCGATCTGGCACGCGCTCAATCTCGCCGACGGCGTCGTCGGCGACTACGCCGCGTCCTACGGCGTGCCGACCACGATCGAGGGCACCTACACCCGGCACGTCGACGAGGTCACCAAGAACGAGTGGTGGTGGAACGGGACCACGCGGACCTACCTGTCGGGCGACACCACCTGGGCGATCGGGGAGAAGGCCGACTACGTCGTCGACTCGGGCCTCGGCGGCATGATGATCTGGGAGCTCGCCGGCGACTACGGCTACGACGAGGCCGCCGGGCAGTACGGGATCGGCTCCACGCTGGTCGACCTGATGCACACGAGGCTGTCGGGCACCACGCCGTACGGGGCGACCAAGGCGAACGCCGACCGGACGATGCCGGACCGGGCGCTCGACGTGAGCATCGACTACACCGAGTTCGCGCTGGGCGACAACAACTACCCGATCGCCCCGAAGGTCGTGTTCACCAACCACGGGGCCACGGACATCCCCGCCGGCGCCACGATCTCGTTCCAGTACGGCACCAGCGACCTCGGCGAGATGAGCGACTGGTCCGGGTTCGGCACGACCACCACCCGCCAGGGCCACACCGGCGACAACGTCGGCGGGCTGACCGGGGACTTCCACGACGCGGAGTTCACGGTGCCCGCCAGCGGCATCCCCGCCGGCGGGTCGATCACCAACAACCTGACGTGGACACTGCCGATCGCGCAGTTCTCCAACGTCCTCGTCACCGTCGACGGGACGGGCTACGCCACGACGTACGACCAGCCGCGCGGCGCGACCGTCGTCGACCTGCCCGCCGGCTCCGGCGGGTCCGGGGGCGGCGACGGCGGCGGAGCGGCGGACGGCACCGCCTGCGAGGCCCCGGCCTGGGAGACCGGCGGGACCTACACCGGCGGGGACGCCGTCACCCACGCGGGCCACGCCTGGACCGCGAAGTGGTGGACCCAGGCCGAACCCACGGCGAGCGCCGACGCCTGGGCCGACGAGGGCACCTGCTGA	MRAPHPARRRLGAATAAVALAATTLVAAATAQTASAAVECATPWAAEAVYTGGDVASFDGQNWTAGWWTQGEEPGSAAWGPWTSDGACGTTEPSPEPTPEPTEEPTPEPTEEPSPEPTPEPTADPGEPLSTNPDDVCRPDGMKPTAGVETPYCDVYDTDGREILPNGLDRRVIGYFTSWRTGANDQPSYFASDIPWDKISHINYAFAHVGPDNRVSVNEDVPGNPATDATWPGQELDPALPYTGHFNQLAQYKAANPGVKVIPAVGGWAETGGYFDGDGNRVASGGFYTMTETQEGIDTFADSVVDFVRTYGFDGIDIDYEYPTSNTNAGNPDDFAFSDARRGELFSGYVDLMRTLREKLDAAGAEDGEYYLLTTASPSSGWLLRGMEAHQVVQYLDYVNLMSYDLHGSWNEYVGGNSPLFDGGDDPELAAGGVYTAYDGIGYLNGDWAAHYFRGAMQSGRINLGVGFYTRGFQDVQGGTHGDGGTAPAPAGFDCPAGTNGSCGYGADGIDNLWHDLDPETGEPIPAGVNPIWHALNLADGVVGDYAASYGVPTTIEGTYTRHVDEVTKNEWWWNGTTRTYLSGDTTWAIGEKADYVVDSGLGGMMIWELAGDYGYDEAAGQYGIGSTLVDLMHTRLSGTTPYGATKANADRTMPDRALDVSIDYTEFALGDNNYPIAPKVVFTNHGATDIPAGATISFQYGTSDLGEMSDWSGFGTTTTRQGHTGDNVGGLTGDFHDAEFTVPASGIPAGGSITNNLTWTLPIAQFSNVLVTVDGTGYATTYDQPRGATVVDLPAGSGGSGGGDGGGAADGTACEAPAWETGGTYTGGDAVTHAGHAWTAKWWTQAEPTASADAWADEGTC	PGPT0012130_646	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183	NA	NA
AK001_02455	1614			hypothetical protein	ATGACGTCCCTGGGACCGGCCGATCCGGCCGTGGGACGCAGCGACCGTGCGCGCGCCGTCGTCGCGCCGTCGGTCGTGTCGCGGCTCGAGCGGGCGGCGCCGGGCGACCCCCGCGTCGTCGACCAGCTCGCCGCCGTGCTGCGACCGGTGCACCTCGACGGCGGTGCGCTGCTGCCCGATCCGCTGCCCGCGGTGCCCGCCGTGCAGTCCCGCGTGCCGGTCGCCGTCCTCGCGCCGGAGGAGCGGCGCGTGCTGGTCTGCGCCGCGCTGGCGGTGACCGAGCGTGCCGAGGTCGTCCTGCAGGCCGCGGCGGCGGACGCGGCCGTCCTCGCCCGACCGGTGGTGCGCGAGCTGCTCGCCGTGCGCGACGGGCGCGCGACCCTGCGCGACGTCGGGGTGCGTGCCGCGCTGCACGCCGGCACCGCGCTCTCCGAGCGGTCCGGGCTGCACGCCGCGCTGGCCCGCTCGGCGCGGCGGGTCGGGGACGCGGCGAGCGCGCTCTGGCACACGGCGGCGAGCACCCTGTCGGGCGACGAGCTGCTCGCGGACGGCCTGCTGGAGCTGGCGGACCTGCTGCTGTCCCGCGGGGACGCGGAGTCGGCGCACCTCGTCGCCCGGGAGGCGATCAGCCATGCCACCGGCGTCCGGCGGGCCCGCGCCTTCCTGCTGTCCGGCCGGAGCGCCCTGTGGAGCGGACACCTCGACGACGCCGAGCGGTGGCTCCGGCGGGCGGCGGGGTGCGAGGTGCCCGAGGTGGCCGGTGCGGCGGACGCAATGCTGGCACCGACCCTGGGTCTCCGTCGGGGATCCCCCGACGGGTCGACCGCCGCGCACGCCCCGGGCGGCGCCGGTGCGGCGCTGTCCCGCCTGGTCGTGCCGGTGGGGGCCCTGGCGGCGACGCCGTCCGACCGGGCCGCGCTGGCGTCGGCGGTCGACGCCCTGCACCTGTTGGACAGCGACCCCGCGGCCGCCGACGCCGCGCTGGCCCGCGCCGTCGTCGGGGCTGTGCCGACGGTCCGCCGTCCCGGCCCCTGGCCGGTGGTCGCGGGGGCGCTCACGCCGCTGGCGGAGGCGCACCTGCGCGTGGTCCAGGCCCTGGTGCTCGTGTGCACGGGCGAACGCGGTGTCGCGGCCGAGGTGCTCTCGGACGGGGTCGCGCGGCTGCCGGTGTCGCACGTCGTGGGCGGCCTCGTGGCCGACCTGACCGCCCACCTGGGTGCCGAGCCGGGCGCGCGCGGAGGTGCGCCGGCCGCGGCGTGGCAGCGCTGGGGGCCCGAGCGGTCCGTCGCGGCGGGGGCGGTCACGGCCCTGCTGCCCGGGGCCGTCCCGCCGTCGGGGTCGACGCTCGCGCTGGCTGCGGCGCCGGCGCCGCGGGTCGACGAGAGCGGTCAGGAGGGGCCGGCCGGGCTGCCGGCGGCCTGGTCGTCCGCGCTCACCGCGCGCGAGCTCCAGGTCGTCGCCGCCGTGGCCCGGGGCCGAAGCAACCGGCAGGTGTCGGACGAGCTCTCCGTCTCCGTGCGGACGGTCGAGGTCCACCTGGGGCGGGTGTTCCGCAAGATCGGCGTCTCCTCGCGGTCCGAGCTGCTGGTCCGCGCGCTGCGCCCCGCGGACTGA	MTSLGPADPAVGRSDRARAVVAPSVVSRLERAAPGDPRVVDQLAAVLRPVHLDGGALLPDPLPAVPAVQSRVPVAVLAPEERRVLVCAALAVTERAEVVLQAAAADAAVLARPVVRELLAVRDGRATLRDVGVRAALHAGTALSERSGLHAALARSARRVGDAASALWHTAASTLSGDELLADGLLELADLLLSRGDAESAHLVAREAISHATGVRRARAFLLSGRSALWSGHLDDAERWLRRAAGCEVPEVAGAADAMLAPTLGLRRGSPDGSTAAHAPGGAGAALSRLVVPVGALAATPSDRAALASAVDALHLLDSDPAAADAALARAVVGAVPTVRRPGPWPVVAGALTPLAEAHLRVVQALVLVCTGERGVAAEVLSDGVARLPVSHVVGGLVADLTAHLGAEPGARGGAPAAAWQRWGPERSVAAGAVTALLPGAVPPSGSTLALAAAPAPRVDESGQEGPAGLPAAWSSALTARELQVVAAVARGRSNRQVSDELSVSVRTVEVHLGRVFRKIGVSSRSELLVRALRPAD				NA	NA	NA	NA	NA
AK001_02456	1884			hypothetical protein	ATGGCTCGCCCGACCGACGCCGAGGCGTCGAGCGCGACCCGGCCGGCGCCCCGCCGGCGTCGCCCCGTGCGCTGGGTGCTGCTCGGCCTCGCCGTGCTCGCCGTCGTCGTCGTCGCGTGCACCGCGCTGCTGGCGCGCGATGCCCTCACGGCCCGGGACGCGCTGGAGGAGGCCGCGCTCATCGTCCCGGAGGTCGAGCAGTCCCTGCGCACCGGCCTCACCGACGTCGCCGCCGACGCCGGCGGCTCCCTGACCGACGTGCCCGCGCTCGCCGAGCTCCAGGAGCAGACCGGCACCGCCCGCGAGGCGACCGACGGCCCGCTGTGGCGGGTCGCCGCGCTCCTCCCGGTCGTCGGCGCGTCCGTGGACGCCGCCACGACCGTCTCCGCGGTCCTCGACCAGGTCGCCGAGGTGGCACTGCCCGCGCTCGCGACGGCCGGGGACGCCGTCGCACGCACCGGCCGCGACGACGACGGCAGCATCGACCTGCAGCCGCTCGCCGCCTCCGCCGAGGACGTCGGCACCGCCCGCGCGGTGATCGCCGACGCCCACGCCGAGCTCGCCGGCATCGACACCACCGCGCTCCAGTCCCAGTTCGTCGAGCCCGTGACCATGCTCGAGGACCAGCTGGCCCAGCTGGACGAGCTGCTCGGCGGCGCCGAACGGGCCGCCGTCCTGCTCCCCCCGATGCTCGGCGCGGACGAGCCCCGCCGCTACCTGCTGCTGGGCCTGAACAACGCCGAGCTGCGCGCCGGGGGCGGCATCGTCGGCTCCCTGACGCTGCTGGAGGCCGACGGCGGCCGCGTCGACGTCGTCCGCCAGGCCTCGAGCGGGGACGTGGGACCGTTCGCCGAGCCCGTGGTGCCTCTCGACCCCGAGGTCGAGGCCGCATACACGACCCGCGTGGGCCGGTTCGTGCAGGACGTCACGCTCACCCCGGACTTCCCCACGTCCGCCCGTATCGCCGCGGCGATGTGGGAGCAGGACCACGGCCCCGTCGACGGCGTGCTCGCCACCGACCCCGTCGCGCTGTCCCGGCTGCTGGAGGTCACCGGCCCCGTCACCGTCGAGGTCCCGGAGGACATCGCCGACGCCATCGGCACCGAGCGGGTCGAGATCACCGCCGAGACCGTCGTCGACCTGCTCCTGCGCCGCGCCTACGACGCGCTCGACGGCGCTCGGGCGGACGCGTTCTTCGCGGTCGTCGCCAGCACCGTCTTCGCCCGGTTGTCCACCGCCGACGTCTCCCCCGTGGACGCGCTGCCCGCGCTGCAGCACGCCGCGCAGTCGCACCGGCTGCTCGTGTGGTCGGCCCGCGAGGACGAGCAGGCCCTGGTCGACGGCACCCTCCTGTCCGGCGGGTTCAGCGCCGACCGTGCCGCGGACGCGACCGGGATGTTCCTCGACGACACCGTCGTGGGCAAGCTCTCGTCCCACCTCGAGACGACGGTCGAGCACACCGGGTCGGTCTGCACCGACGACGGCCGGACGGACACCGTGACCCTGCGGATGGCCAACACCCTGGACGAGGAGCGCGCCCGCGACCTGCCGTTCTACGTCGCCGGGCCGCACGACGCCCCGGACCGCGGGACGATGTCGCTCAATCTCACGGCGTACGGCGCGCGCGACGGGGACGTGCCGGAGCTGACGCGCGACGACGACGTGGTCGGCGGCTCCTCCGTGGTCGTGCAGGGTCGGCAGCGCGTGGCGGTCAACGTGCGGCTGACGCCCGGGGAGTCGACGGAGGTGACCATGACCACGCGCGCCCCGGCCGCCGTCGCCCGGGGCGGCGGAGCGCCGGCACCGGGCACGCGGGAGCTCTGGACCACTCCGACCGTCGGGACGCCCGGTCTGCACGTCTCCGAGGTCCCGGTCTGCGGGTGA	MARPTDAEASSATRPAPRRRRPVRWVLLGLAVLAVVVVACTALLARDALTARDALEEAALIVPEVEQSLRTGLTDVAADAGGSLTDVPALAELQEQTGTAREATDGPLWRVAALLPVVGASVDAATTVSAVLDQVAEVALPALATAGDAVARTGRDDDGSIDLQPLAASAEDVGTARAVIADAHAELAGIDTTALQSQFVEPVTMLEDQLAQLDELLGGAERAAVLLPPMLGADEPRRYLLLGLNNAELRAGGGIVGSLTLLEADGGRVDVVRQASSGDVGPFAEPVVPLDPEVEAAYTTRVGRFVQDVTLTPDFPTSARIAAAMWEQDHGPVDGVLATDPVALSRLLEVTGPVTVEVPEDIADAIGTERVEITAETVVDLLLRRAYDALDGARADAFFAVVASTVFARLSTADVSPVDALPALQHAAQSHRLLVWSAREDEQALVDGTLLSGGFSADRAADATGMFLDDTVVGKLSSHLETTVEHTGSVCTDDGRTDTVTLRMANTLDEERARDLPFYVAGPHDAPDRGTMSLNLTAYGARDGDVPELTRDDDVVGGSSVVVQGRQRVAVNVRLTPGESTEVTMTTRAPAAVARGGGAPAPGTRELWTTPTVGTPGLHVSEVPVCG				NA	NA	NA	NA	NA
AK001_02457	750			hypothetical protein	ATGAGAGCTCGACGGCCTGTGGGACGAGTGCTGGGGACGGCAGCGTTCGGCGTCGCCCTCCTGCTGCCCGGCGCGGCTATCGCCACCGCCGACGTCGACGACGACGTCCGCGTGATCGCCGACGTCGAGGACGACGTCAGCCCGAGCCCCGCACCGAGCGACGACGGGTACGGGCCGCCGCCGGAGCCGACGCTGACGGTCGAGGTGCTGAGCCCGGTCTGCGACGGCGACGTGCCGTACCTCGTGTACGAGGTCGCCACCGAAGGGGTCGAGCCGCCGCCCTCGGACGTGCGGATCGTCTGGGTGAACCCCGGCGGGGAGGACGTCGTGCAGAGCGAGCTCCCGCTGTCCGGGCGCGTGCTGTGGCCGGGAGCCGTCGTGGACGGCTCCGGCAACGCCGTCGACTGGCCTGGCTGGCGCCTGGTCGACGGAGAGTGGGTGGTCGGCGACGAGTTCGACTGGGTCCGACCCAGCGTGCAGGTGACGTTCGAGGTGAACCCGACGGTCACCACGACGGTCGCCTACCCGCCGTCGACGCCGAACTGCTCCACCGACCCGCCGCCCGGGGAACCGCCGACCACCGAGCCCCCCGCGAGCGAGCCCCCCGCCGAGGCAGCGCCTCCGCCCGGCGGCGACACGCCGATCCTGCCCGTGACCGGTCCCCAGCTGACCGGCCTCATCGCCCTGGCCGTGGGCCTCGTCGCCGGCGGTGCCGCCATCGTCGTCGTCCGCCGGCGCCGGGCCGGGTGA	MRARRPVGRVLGTAAFGVALLLPGAAIATADVDDDVRVIADVEDDVSPSPAPSDDGYGPPPEPTLTVEVLSPVCDGDVPYLVYEVATEGVEPPPSDVRIVWVNPGGEDVVQSELPLSGRVLWPGAVVDGSGNAVDWPGWRLVDGEWVVGDEFDWVRPSVQVTFEVNPTVTTTVAYPPSTPNCSTDPPPGEPPTTEPPASEPPAEAAPPPGGDTPILPVTGPQLTGLIALAVGLVAGGAAIVVVRRRRAG				NA	NA	NA	NA	NA
AK001_02458	426	dtd	COG1490	D-aminoacyl-tRNA deacylase	GTGAGGGCCGTGGTCCAGCGGGCGACCCGGGCGAGCGTCACCGTCGACGGCGAGGTCGTCGGGGCGATCGACCGGCCGGGTCTGGTCGCGCTCGTAGGCGTCACCCACGAGGACGGGGCGGTCGACGCGGCGACGATCGCCCGCAAGATCGCCGACCTGCGGATCCTGCGCGGCGAGCGCTCCGTGGCGGACGAGGGAGCGCCGGTGCTGGTGGTCAGCCAGTTCACGTTGTACGGCGACGCGCGCAAGGGGCGTCGGCCGACCTGGCAGGCGGCCGCACCCGGCCTCGTCGCGGAGCCGCTCGTCGACGCCGTCGTGGCGCACCTGCGCGAGCGGGGGCTGGAGGTCGCCACCGGTGCCTTCGGCGCCGACATGGCGGTCGAGCTCGTCAACGACGGCCCGGTGACCCTCCTGCTGGAGACCTGA	MRAVVQRATRASVTVDGEVVGAIDRPGLVALVGVTHEDGAVDAATIARKIADLRILRGERSVADEGAPVLVVSQFTLYGDARKGRRPTWQAAAPGLVAEPLVDAVVAHLRERGLEVATGAFGADMAVELVNDGPVTLLLET				NA	NA	NA	NA	NA
AK001_02459	1002			hypothetical protein	GTGGTGAACGTCGCGCGCGGAGCCGTCCCCCTGGCGGAGGTCGTGCGCGGCGACCTCGTGGAGTCGGTGCACCTGGGCCACCTCGTCGTGCTGGACCCGGACGGCGCGGTCGTCCTCGCGGCCGGTGACCCCGACGTCGAGATCTGGCCGCGGTCGTCGCTGAAGCCGGTCCAGGCGCTGGCGATGCTGCGCGCCGGGCTGGATCTCCCGCCCGAGCAGCTCGCGCTCGCCGCCGCCAGCCACGACGGGACCCCTCGGCACGTCGAGGTGGCCCGCGAGGTCCTGGCCGGGGCCGGCCTGACCGAGGGGTCGCTGGCGAACACGCCGGACCTGCCGCTCGACCCCGCCACGGCCGCGACGTGGCAGGCCGCCGGGCGCGGTCCGGACCGGCTCACGCAGAACTGCTCCGGCAAGCATGCCGCGATGGTGGCGACCTGCCGCGTCGCCGGCTGGCCGGTCGCGGGGTACCTGGCGGCGGACCACCCGCTGCAGCAGCAGGTGCAGGCCGCCGTCGTCGAGCTGGCCGGCCCGGGCGCGGCACGGCACCGGACCGTGGACGGGTGCGGGGCGCCGTTGTTCTCCACCACGCTCGTGGGTCTGGCGCTGTCGTTCGGCCGTCTGGCCGCGGCGCCGGTCGGCAGCCCCGCGCAGCGGGTGGCCGCCGCGATGTCGGCCCACCCCGAGCTGGTCGCCGGGGCGCGGCGCGACGCCACCCTCGCGATGCGCGCGGTGCCGGGGCTCGTCGCCAAGGACGGGGCCGACGGCGTGTACGCCGCCGGGCTGCCGGGTGGCGCAGCGCTGGCGTTCAAGATCCTCGACGGGGCCTCGCGGCCCCGTCCCGCCGTGCTGTCCGCGGCCCTGCGGGTCGCCGGTGCGCTCGACGTGCCGGGCACCGACGAGGCGGCGCTGGACGCGCTGGGCGCCACGCCCGTGCTCGGCGGTGGTGCACCGGTCGGCGAGGTCCGCGCCACCGTGGCCGTCCCGGCGGAGGCGGCCTCGTGA	MVNVARGAVPLAEVVRGDLVESVHLGHLVVLDPDGAVVLAAGDPDVEIWPRSSLKPVQALAMLRAGLDLPPEQLALAAASHDGTPRHVEVAREVLAGAGLTEGSLANTPDLPLDPATAATWQAAGRGPDRLTQNCSGKHAAMVATCRVAGWPVAGYLAADHPLQQQVQAAVVELAGPGAARHRTVDGCGAPLFSTTLVGLALSFGRLAAAPVGSPAQRVAAAMSAHPELVAGARRDATLAMRAVPGLVAKDGADGVYAAGLPGGAALAFKILDGASRPRPAVLSAALRVAGALDVPGTDEAALDALGATPVLGGGAPVGEVRATVAVPAEAAS				NA	NA	NA	NA	NA
AK001_02460	339			hypothetical protein	GTGATCGCGAGCCTGCAGTTCTACGTCTTCGTCATCCTGGCGGTCGTCATCTTCGTCATCGAGGTCTTCGCCCTCGTCGACGCGGTGCGACGGCCCGCTCACGCGTACACCGCCGAGGGCAAGCTGTCCAAGCCGATCTGGCTGATCATCCTGGGTGTCGCCACGGCGCTCGGTTTCCTGGCGCTGCCCACGTCCGGCGGCGCGATCAGTTCCCTGGGGTTCCTCAGCATCGTCGCGGTGGTCGCCGCCATCGTCTACCTCGTCGACGTCCGGCCGCGGCTGAAGCCGTACGGCACCGGCCGCGGCTCCGGCCGGTCGCAGGGGTCGAGCGGGTGGTGA	MIASLQFYVFVILAVVIFVIEVFALVDAVRRPAHAYTAEGKLSKPIWLIILGVATALGFLALPTSGGAISSLGFLSIVAVVAAIVYLVDVRPRLKPYGTGRGSGRSQGSSGW				NA	NA	NA	NA	NA
AK001_02461	423			Ribonuclease VapC49	ATGGCCCTCGTCTACTTCGACGCCAGCGCCCTGGTGAAGCTCTGCGTCCCCGAGGCCGGTTCCGAGCTGGCCAGCGCGCTGTGGAACCGTGCCGACCTCGTGGTCACCTCGCGGCTGGCGGACGTGGAGCTCCGCGCGACGCTGGCGGCCGGCCTGCGGGCCGGCGTGCTCGACGCCGCCGCGCACGAGGAGGCGGTCGCCCGGTGGGAGGAGCTGTGGCCCGCCCTGCACCGGGTGGAGCTCACCGAGGAGCTGGCCGAGCAGGCCGCCGTGCTGGCGGCCGGGCCCGCACCCCTGCGCGGCGGCGACGCCGTGCACGTCGCCGGCGCGATCGCCGTGACCCGGGACGGCGGTCTGGTCGCCGCCTGGGACGACCGGGTGGCCGCCGCCGCGCGGAGCCACGGACTGCACGTGCTGCCGTAG	MALVYFDASALVKLCVPEAGSELASALWNRADLVVTSRLADVELRATLAAGLRAGVLDAAAHEEAVARWEELWPALHRVELTEELAEQAAVLAAGPAPLRGGDAVHVAGAIAVTRDGGLVAAWDDRVAAAARSHGLHVLP	PGPT0027605_692	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064	NA	NA
AK001_02462	297			hypothetical protein	ATGGACGTCCCCGTGAGCACGCTGCGCGCCGAGCTCAAGTCGTGGATCGAGAAGGCCCGCGCCGGCGAGGAGGTCATCATCACCGAGCGTGGCGTTCCCGTCGCCCGCCTCAGCGGGGTGCAGAGCGCCGACCTGGTCACGCAGCTCGTGCGCGACGGGCTGGTCTCCCCGGCGGACCAGCCGCGTCCCGAGCACCAGGTGCCGACGACGGCGGAACCGGCCGGGGCGGGCAACGGCTCGTCCCGAGCCGCCTCCGGGTCCGGTCTGTCGGGTCTCGTCCGCCGCATCCGGCGCTGA	MDVPVSTLRAELKSWIEKARAGEEVIITERGVPVARLSGVQSADLVTQLVRDGLVSPADQPRPEHQVPTTAEPAGAGNGSSRAASGSGLSGLVRRIRR				NA	NA	NA	NA	NA
AK001_02463	2007	mdtD_1		Putative multidrug resistance protein MdtD	GTGACGACCGCACGGACCGACGACCCACCGGTGCTGCCCTCGTCGAGGGTCTGGGCGGTCTTCGGCGGGCTCATGCTCGCGATGCTGCTCGCGGCGCTCGACCAGACGATCGTGGCCACCGCCCTGCCGACGATCGTCAGCGACCTCGGCGGCGCCGAGCACCTGTCCTGGGTCGTGACGGCCTACATGCTCGCCACCACCGCGACCACGGTGCTGTGGGGCAAGCTCGGCGACCTGTTCGGTCGCAAGGTGCTGTTCCTGGTGTGCATCGGCATCTTCCTCGGCGGATCCATGCTGTGCGGGACCTCGGGGTCGATGGGCGAGCTCATCGCCTGGCGCGCGCTGCAGGGCGTGGGCGGCGGCGGTCTGATGGTGCTGAGCCAGGCGATCATCGGCGACGTGGTCTCCCCGCGCGAGCGCGGGCGCTACCAGGGCCTGTTCGGCGCCGTGTTCGGCGTCGCCTCGGTGGCCGGCCCGCTGCTGGGCGGCTGGTTCGTCGACAACCTGTCGTGGCAGTGGGTGTTCTACGTCAACGTGCCGATCGGGGTCGTCGCGCTGGTCGTGGTGGCCGTCGTGCTGCCGCCCATCACGCCGCGGGCGCGGCCGCGGATCGACTACGCGGGCATCGTGCTGCTCGCCACGGTGTCGACGGCGATCGTGCTCGTCACCAGCCTGGGCGGGACCGCCTGGGGCTGGGGCTCGCCGCAGGTCCTGCTCACCGGCGCGGTCGCCGTCGTCGGGATCGTCGCGTTCGTGCTCGTCGAGCGGCGCGCCGCCGAGCCCGTGCTGCCGCTGCGCCTGTTCACGAACCGGGTGTTCTCGGTCGCTGCTGTGGTCGGCTTCGTCGTCGGGTTCGCGATGTTCGGCGCCATCACGTACCTGCCGCTGTACCTGCAGACCGTCAAGGGATCCTCCCCGACCGTGTCGGGGCTGGAGATGACCCCGATGATGCTCGGGATGCTGCTCACCTCGATCGGCTCCGGCCAGCTCATCACCCGCACCGGCCGGTACAAGGTGTTCCCGGTCGTGGGTACGGCCGTGACCGCCGTCGGGCTGTTCCTGCTGTCGCTGATGGACCGCACGACCACGACCACGCAGGCCGGCCTGAGCATGTTCGTGCTCGGCACGGGGCTCGGCATGGTCACGCAGGTGCTGGTCATCGCCGTGCAGAACGCCGTCGCCTACCGCGACCTCGGCACCGCCACGTCCGGTGCCACGTACTTCCGCACGATCGGGTCCGCCGTGGGCGTCGCCGTCTTCGGCACCGTCTTCGCCAACCGTCTCGCCGCCAACCTCACCGCCGCTCCCCCGGCGGGCGCCACCGGGCCGTGCGGGCCGGCGACCCTGGAGTCGTCGGTGGAGACCCTGGCCCAGTGCCCGCCGCCGGTGCAGGAGTGGTTCCTCGACGGCTACACCGACACCCTGCAGACGGTCTTCGCGTGGGCGGTGCCGGTCGCCGTCGTCGCCTTCGCCCTGTCCTGGCTGCTGCCCCAGGTGGAGCTGCGCACCGCCACCCGCGAGGCGGACCTGACGGACGTCGCCGGGCAGGCCGCGGGGGACGCCTTCGCGCTCCCGGCCGCGCGCACCTCGCTGGAGGAGCTGCGCATGATCCTGTGGCGGCGGGTGGGGGTGCGCGACCCGCTGCGGGTCTACGCCGTCACGGCCGCCGACGCCGACCTCTCGCCCGAGGAGGCGTGGATGGTCACCCGCGTCTCCCTGAAGCGCCGCCGCGCGGTCTCCGTCATGGCCGAGCGCAGCGGAGCGTCCGTCGCCACGGTGCGGCACGTGGCCACGGGGCTCGCCGCCCGCGGCCTGCTGCGGTTCGACGGGGACTCGGTCGTCGCCACGGACCAGACGGACCTCGCGGCGGAGGTGCTGCGCGAGAGCGAGCGGCGCCGGCTGCAGCAGATCGTGCGGGAGTGGCACGACCACGACCCGGACGTCGAGGAGATCGCCGCCGAGGTCGAGTCGATCCTGTTCCACGAGGCGGCCGACCCGGCCCCCTGA	MTTARTDDPPVLPSSRVWAVFGGLMLAMLLAALDQTIVATALPTIVSDLGGAEHLSWVVTAYMLATTATTVLWGKLGDLFGRKVLFLVCIGIFLGGSMLCGTSGSMGELIAWRALQGVGGGGLMVLSQAIIGDVVSPRERGRYQGLFGAVFGVASVAGPLLGGWFVDNLSWQWVFYVNVPIGVVALVVVAVVLPPITPRARPRIDYAGIVLLATVSTAIVLVTSLGGTAWGWGSPQVLLTGAVAVVGIVAFVLVERRAAEPVLPLRLFTNRVFSVAAVVGFVVGFAMFGAITYLPLYLQTVKGSSPTVSGLEMTPMMLGMLLTSIGSGQLITRTGRYKVFPVVGTAVTAVGLFLLSLMDRTTTTTQAGLSMFVLGTGLGMVTQVLVIAVQNAVAYRDLGTATSGATYFRTIGSAVGVAVFGTVFANRLAANLTAAPPAGATGPCGPATLESSVETLAQCPPPVQEWFLDGYTDTLQTVFAWAVPVAVVAFALSWLLPQVELRTATREADLTDVAGQAAGDAFALPAARTSLEELRMILWRRVGVRDPLRVYAVTAADADLSPEEAWMVTRVSLKRRRAVSVMAERSGASVATVRHVATGLAARGLLRFDGDSVVATDQTDLAAEVLRESERRRLQQIVREWHDHDPDVEEIAAEVESILFHEAADPAP				NA	NA	NA	NA	NA
AK001_02464	1137			hypothetical protein	GTGAGGGCCGGGCCGGACCCGCGCCGGGCGGGCGCCGCCGCCGGCACGGCCGTGCGGAGCCTGCTGCGGCGGATCCGGCTCCGCCAGGGCTGGGCGCGGGTGCGGACCGGGTTCTGGCCCATCGTGCAGGCCTCGCTGGCCGCCGGGGCCGCCTACGGGATCGCGCACCTCCTGCTCGGGCACGCCCAGCCCTTCTTCGCGGCCGTGGCCGCCTGGGTCTGTCTCGGCTTCTCGTTCGACCGCGAGCTGCGCCGGGTGGCCGAGGTCGCCGTCGGCGTGGCCGTCGGCGTCGGGATGGGCGAGCTCGTCGTCGAGGTCATCGGCTCCGGCTGGTGGCAGCTCACCGTGGTGCTGCTCGTCTCCGCCCTGCTGGCGCGGTTCATCGACCGCGGGCCGCTGCTCGTCACGCAGGCGGGCGTCCAGGCGATCGTCGTGGTGGGGCTGCCGCTCGCCGTCGCCGCCGACGGCGCGTTCGGCCGCTGGACCGACGCCGTGATCGGCGGTCTGGTCGCCCTGGTGGTGACCGTCCTGACGCCGGGTGACCCGCGGCGCCGGCTGCGGGTCCAGGCGGCGAACGGGACCGGTGAGCTGGCCGAGACCCTCGAGTCGATCGCCCGCGGGCTGCGCGCCCGGGACCTGGACGAGCTGGGCGCGGCGCTCGTGCGCGGCCGGGCGAGCGAACCGGTGCTGGCCGAGTGGCGTGACGGGGCGCGACGGTCCGCCGAGATCGCCCAGGTGAGCGTCAACCGCGGCCACTGGGCCGAGTTCCGGCTGCTGGCCGAGCAGGCCGTGCTCCTGGACCGGGCGATGCGCAGCGTGCGGGTGCTGGCCCGGCGCGCCCCGACCGTCGTCGGGCCGGACGGCTCCTGGCCCGACGTGACCGCCGCCGCCGATCTCGTCGAGCGCTACGCCGGCGGGGTGCGGCTGCTGTCGACGGCGCTCGGGGGCGGAGGATCGATGGAGGACGCCCGGGCGCTGCTGCTCGAGGTCGCCGCCGCCGCGGACCCCCGGCTGGTCGGCGGTGACGACCTCGGCGTGGCCTCGTTGGTGGTGCTGCTGCGGGCCCCCGTCGTCGACACCCTGGAGGCCGCCGGCGTGCCCGCGGGAGAGGCCCGGGCCGCGCTGCCGGAGCTCTGA	MRAGPDPRRAGAAAGTAVRSLLRRIRLRQGWARVRTGFWPIVQASLAAGAAYGIAHLLLGHAQPFFAAVAAWVCLGFSFDRELRRVAEVAVGVAVGVGMGELVVEVIGSGWWQLTVVLLVSALLARFIDRGPLLVTQAGVQAIVVVGLPLAVAADGAFGRWTDAVIGGLVALVVTVLTPGDPRRRLRVQAANGTGELAETLESIARGLRARDLDELGAALVRGRASEPVLAEWRDGARRSAEIAQVSVNRGHWAEFRLLAEQAVLLDRAMRSVRVLARRAPTVVGPDGSWPDVTAAADLVERYAGGVRLLSTALGGGGSMEDARALLLEVAAAADPRLVGGDDLGVASLVVLLRAPVVDTLEAAGVPAGEARAALPEL				NA	NA	NA	NA	NA
AK001_02465	1170	gcvT_2		Aminomethyltransferase	ATGACCTACCGCAGCCCCCTGCTGAACCGCACCGGCGCCGTCGCGGCGTCCGGACCCGACGCCGGCGTCGCCTGGCACTACGGCGACCCGGTGGCCGAGCAGCGCGCCCTGGCGCGCGGCGGGGCCGTCGTCGACCAGTCGCACCTCGGCGTGGTGCGTCTGACCGGACCCGACCGCCTGAGCTGGCTGCACTCGATCACCTCGCAGGACGTCGAGCACCTGGCCCCGCGCACGTCCACCGAGCTGTTCGTGCTCTCCCCCCAGGGGCGCACGGAGCACGCCGTGGCGCTCGTCGACGACGGCACGTCGACGTGGTTCATCACCGAGCGCGACCACGTCGAGCCCCTGGTGGCGTGGCTCGAACGGATGAAGTTCATGATGCGGGTCGAGATCACCGACGTGACCGACTCCTACGCCGCGATCGGGGAGCCCGTCGACGCCGAGGGCACCGAGACCGAGCCGGTGACCTGGCGCGACGCCTGGCCCGAGGTCGTCGGCGGCGGCACCCGCTACGGCCCGCCCGCCGCCGAGCACCCCGGTGCCGACCGCGACTGGCGTCTGGTCCTCGTCCCGCGCGAGCAGCTCGCCGACGCCGTGGCCGAGCGCGAGGCCGCGGGCTGGCGCCTGGCCGGCACCTGGGCCACCGAGGCGTTGCGCGTGGAGGCCTGGCGGCCGCGGCTCGCCCGCGAGGTCGACGACCGCAGCGTCCCGCACGAGCTCGACTGGCTGCGCACCGCCGTCCACCTGCACAAGGGCTGCTACCGCGGGCAGGAGACCGTCGCGCGGGTGCACAACCTCGGCCGTCCGCCGCGCCGCCTCGTCATGCTGCACCTCGACGGCTCCCAGCACGTGGTGCCCGAGGCCGGCGCCGAGGTCCGCCGTGACGGCCCGGACGGCAAGGTGGTCGGGCACGTCACGACCGTGGCCCGCCACCACGAGCTCGGCCCCGTGGCGCTCGCCGTGGTCAAGCGCAACGTCCCGACCGACGCCACGCTCGCCGTCGTCGGCCCGGTGGGTGCCGGCGAGGACGCCGAGCAGATCGCCGTCGCCGCCGCCCAGGAGGTCGTGGTGCCCGGCGAGGGCGTCTCCGCCGACCGGCCCGCCGCACGCGGGGAGACGATGCGCGGGCTGTCCCCGCGCGGTAACGACGGGGCCCAGAGCCTGCTGTGA	MTYRSPLLNRTGAVAASGPDAGVAWHYGDPVAEQRALARGGAVVDQSHLGVVRLTGPDRLSWLHSITSQDVEHLAPRTSTELFVLSPQGRTEHAVALVDDGTSTWFITERDHVEPLVAWLERMKFMMRVEITDVTDSYAAIGEPVDAEGTETEPVTWRDAWPEVVGGGTRYGPPAAEHPGADRDWRLVLVPREQLADAVAEREAAGWRLAGTWATEALRVEAWRPRLAREVDDRSVPHELDWLRTAVHLHKGCYRGQETVARVHNLGRPPRRLVMLHLDGSQHVVPEAGAEVRRDGPDGKVVGHVTTVARHHELGPVALAVVKRNVPTDATLAVVGPVGAGEDAEQIAVAAAQEVVVPGEGVSADRPAARGETMRGLSPRGNDGAQSLL				NA	NA	NA	NA	NA
AK001_02466	564			hypothetical protein	ATGCCGTTCACCTTCCCCGAGGGGCTCGCGCCCGAGGTGTACCCGCTGGCCTGGCTGGTCGGCCGGTGGACCGGGGGCGGTGTCATCAAGTACGAGGGCATCGAGGAGACGGAGTTCCGCCAGGAGCTCGTCTTCGACCACGACGGCGGACCGTACCTGCGGTTCGAGTCGACGCTGTCCGTCCGCTCCGGCGCCGCCGCGGACGGTGAGACCACCGACGGTCAGGTCGGCGAGAGCGCCGCCTTCGACACCGTGTGGTCCACCGAGACCGGCTACTGGCGCGTCGCCTCGGAACGTCCCGAGGGGCTGGGCGAGAACCAGCACCCCCTCGAGGTGCTCGTCACCGACGCCTCGGGGCGGCTCTCGCTCTTCCTCGGCGTCGTCGGCGACGGCCGGGTGGACCTGGCCACGGACTTCGTCGCCCGCACCTCGACGGCCGCCGAGGTCACCGCTGCCAAGCGCCTCTACGGCAACGTCGAGGGCCGCCTGCTCTGGGTCGAGGAGCTGGCCGCCTTCGGCCACCCGATGGGGTCCTACGCGTCCGGAGAGCTCGACCGCGCATGA	MPFTFPEGLAPEVYPLAWLVGRWTGGGVIKYEGIEETEFRQELVFDHDGGPYLRFESTLSVRSGAAADGETTDGQVGESAAFDTVWSTETGYWRVASERPEGLGENQHPLEVLVTDASGRLSLFLGVVGDGRVDLATDFVARTSTAAEVTAAKRLYGNVEGRLLWVEELAAFGHPMGSYASGELDRA				NA	NA	NA	NA	NA
AK001_02467	114			hypothetical protein	ATGTCGATCCACGCGCTCGAGATCTTCTTCACCAGCCTGCTGGTGGTCACCGTCGGTGTGATCACCTGGTTCGCGGCCTACGTCGTCTACAAGCTCTTCCACGGTCAGCGCTGA	MSIHALEIFFTSLLVVTVGVITWFAAYVVYKLFHGQR				NA	NA	NA	NA	NA
AK001_02468	378			hypothetical protein	ATGACCGAGACCACAGCGCAGCGTTCGCTCGTCGTCAAGACGACGTCCGGGACGGATCGCCCGGAAGCCGCGAACCAGGCCCTGACGGTGGCCGCCGCGGCCGCCGCCGCCGGGGTCCACGTGTCCCTCTGGCTCACCGGCGAGGCGGCGTGGTTCGGGGTGCCGGGCCGTGCCGACGAGCTGGCGCTCGAGCACGCGGCCCCGGCCGCCGAGCTGCTGGAGGCGGTGCTGGCGACCGGGACCGTGACCGTGTGCTCCCAGTGCGCGGCCCGACGGGACATCGGACCGGACGACGTCCTGGACGGCGTGCGCGTCGCGGGCGCGCCCGTGTTCGTCGAGGAGTCGCTGCGCCCGGGGGCCCAGGCGCTCGTCTACTGA	MTETTAQRSLVVKTTSGTDRPEAANQALTVAAAAAAAGVHVSLWLTGEAAWFGVPGRADELALEHAAPAAELLEAVLATGTVTVCSQCAARRDIGPDDVLDGVRVAGAPVFVEESLRPGAQALVY				NA	NA	NA	NA	NA
AK001_02469	453			hypothetical protein	ATGAGCCTCGAGACCTCGTCCCCGCCACGGATCGACCCCCGCGGCCCCCGCGTGGGTGCGGGCATCACCGCGGTGCTGCTGGCCGTCGTCGTGCTCCTGGGCCCGACGACGTCGGCGCTCGTGCTGCTCACGGTCGTCGCGCTGAGCTTCGTGCCCGGCGCGGTCCGCGGTCCGCAGGCCACCTGGCAGGGCTGGCTCTTCCGGACGCTGATCCGTCCGCGGCTGGCCCCGCCCGAGGAGCTGGAGGACGTCCGTCCGCCCCGCTTCGCCCAGACGGTCGGACTCGTCGTGACCGGGGTCGGCGTCGTGGCCGGCTGGGCCGGGGCGCTCGCCGTCCTGCCGTGGGCCGCCGGGCTCGCGTTCGTCGCCGCCGCGCTCAACGCCACCGTCGGGCTGTGCCTGGGCTGCGAGCTCTACCTGCTGGGACGGCGGCTGCGCCGCGCCCCCTCCTGA	MSLETSSPPRIDPRGPRVGAGITAVLLAVVVLLGPTTSALVLLTVVALSFVPGAVRGPQATWQGWLFRTLIRPRLAPPEELEDVRPPRFAQTVGLVVTGVGVVAGWAGALAVLPWAAGLAFVAAALNATVGLCLGCELYLLGRRLRRAPS				NA	NA	NA	NA	NA
AK001_02470	462			hypothetical protein	ATGACCGCACAGTGGACAGCCCTCGTCGCGCTGCTCGTGGTGACGACCGTGCTGGGACTGGTGTGGCGCTCGGCGCAGGGCCGGGTGCGCGCCACGGCGCCGTCCGGCGATGACGACGCCGACGCACGCTGGACCGACGAGCTCGCCGCCCAGGGGGTCGCCCCCGGTGAGCGCGTGACGTTCCTGCAGCTCTCGGCGGAGGTCTGCTCGGCCTGCCGGTCCACCGCCCGGACGCTCGGGTCGCTGGCCGCCGAGGAGCCGGGCGTCGTGCACCTCGAGATCGACGTCGACGACCGTCCCGACCTGGTGCGTCGCGCCCAGGTGCACCGCACCCCCACCGTGCTGGTGCTGGACGGCACCGGTGCCGAGGTCGCGCGCGCCTCCGGCGGCATGACGCCGGCGCGCGCCCGCGAGGCGCTCGGTAGCGTGGAGGCCGCACCCGTCCCCGGGAGGACCGCATGA	MTAQWTALVALLVVTTVLGLVWRSAQGRVRATAPSGDDDADARWTDELAAQGVAPGERVTFLQLSAEVCSACRSTARTLGSLAAEEPGVVHLEIDVDDRPDLVRRAQVHRTPTVLVLDGTGAEVARASGGMTPARAREALGSVEAAPVPGRTA				NA	NA	NA	NA	NA
AK001_02471	663			hypothetical protein	ATGACCGACGCCCCGACCCGGACCTGGAACGACCTGGTCATCCCGGCACCCGGCACGTACGACCTCGACGAGGGGCACAAGCGCATCGGCTTCCAGGCGATGCACATGATGGTCAGCCCCGTGCGCGGGGAGTTCAGCCAGGGCACCGCGCGCATCCACGTCGCCGAGGACCCGCTGGCGTCGTCCGTCGGCGCGATCATCGACACGACGTCGATCACGACCCACAACGAGGACCGCGACACGCACCTGCGCAGCGCCGACTTCCTGGACGTGGAGAACCACCCGACCATGGAGTTCCGCTCCACCGGGATCGAGTGGCGCGCCGGGCCGGACCCGATCTTCTCCTGGGCGGCCCTCAAGGGACGCTCCCCCGGCCGCAGCGCCCAGGTCGGCCCGGCCGCCGACCGCACCAGCGCGAAGTTCCTCCTGCACGGCGAGCTGACGATCCGCGGGATCACCCACCCGATCACGCTCGACGCGGAGTTCGGCGGCGCCGGTGCGGACCCGTTCGGCAACAACATCTTCGGGTTCAGCGCGACCGCGGACTTCGAGCGCGAGAAGTACGGGCTGCTGTGGAACGTGGCGCTGGAGACCGGCGGCGTGCTCGTGGCCAAGACGGTCCGGATCGAGCTGGCCGGCGAGGCGGTGCGCAAGACCTCGTGA	MTDAPTRTWNDLVIPAPGTYDLDEGHKRIGFQAMHMMVSPVRGEFSQGTARIHVAEDPLASSVGAIIDTTSITTHNEDRDTHLRSADFLDVENHPTMEFRSTGIEWRAGPDPIFSWAALKGRSPGRSAQVGPAADRTSAKFLLHGELTIRGITHPITLDAEFGGAGADPFGNNIFGFSATADFEREKYGLLWNVALETGGVLVAKTVRIELAGEAVRKTS				NA	NA	NA	NA	NA
AK001_02472	735			hypothetical protein	GTGACCGTGACCTCCCGTGCCGTGACGACGGCCGTGCTCGCCACGCTCGTGGCGGCCGCGGCCTACCTGGGGCCCTGGTGGACGGTCGGCGCGTCCGCGCTCCTCGTCGTGCTGCTGGCGGTCGGCTGGGCGCCGCTGCTGCGGCTGCCGGCCGACGGCGCGACGTCGACCGTGGTGCTGCTGGCGGGGCTCGGCGGCCTCGCCGTCACGTGGTTCACCGAGGGCGAGCCCGTGCTGCGCAACCTGCCCGCCGTCATCGCGCTGTCGCTGGTGCTGGCGTTCGTGGCGCAGATGCTCCGCAGCGGCGGGCGTCCGCGCCTGGTCGAGTCCGTCAGCGGGATGACCGCCGGCGTCGTCGTCTCCGTCGCGGCCGCCGGCTGGCTGGCCACCGCCGGCACGGACGCCGGCGCAGGGCTGGTCGTGACCAGCGCCGTCGGGCTGGCCGTCGCGTCGGCCGTGGCGGCCCTGCCCGTCGCCGGCGGCTGGATCGGGTCGCTGCTCGCCGTCGCGCTGGGCGGGGCGGCCGGTGCCGGCACCGCGTCGGCGCTGCGCGAGGTGGAGCCGGTCCACGGGCTCGTGGTCGGGCTGGTGGCCGGTCTGGTCTCGGCGGCGCTGCGGCTGCTGTTCGAGCGCCAGCCGGCGCTGCAGCGGTGGCGGGCCGGCGTGGCGGCCGCTGCTGCGCCGGTGACGATCACCGGGATGCTGGTGTTCGTCGTGGGCCGCACGCTGCTGTAG	MTVTSRAVTTAVLATLVAAAAYLGPWWTVGASALLVVLLAVGWAPLLRLPADGATSTVVLLAGLGGLAVTWFTEGEPVLRNLPAVIALSLVLAFVAQMLRSGGRPRLVESVSGMTAGVVVSVAAAGWLATAGTDAGAGLVVTSAVGLAVASAVAALPVAGGWIGSLLAVALGGAAGAGTASALREVEPVHGLVVGLVAGLVSAALRLLFERQPALQRWRAGVAAAAAPVTITGMLVFVVGRTLL				NA	NA	NA	NA	NA
AK001_02473	774			hypothetical protein	GTGGCCGAACTGTTGATCCTGACGCCGGCGACCGGCGGTTCGGTCGAGGTCCTGCCCGCGCTGGGCCTGCTGTCGCACAAGGTGCGTGTGCTGCCCATGGAGCCCTCGGCACTCGTGGACGCCCCCGACTCGGACGTCGTGCTGCTGGACGCCCGCCGCGACCTCGTCGCCGCGCGGACCACCTGCCGTCTGCTGCACGCCACGGGTCTGACGGTGCCGCTGGTGCTCATCCTCACCGAGGGCGGCCTGACCGTCGTCAACCACGAGTGGGGCGCCGACGACCTGCTGCTCGAGTCCGCCTCCCCCGCGGAGGTCGAGGCACGGCTGCGGCTCGTCGTCGAGCGGTCCGCGCACGGCCCGACCGAGGACTCGCCCCAGGAGATCTCCGCCGGCGAGCTGGCCATCGACGCCGGCGGGTACACGGCACGCCTGCGCGGCCGCCCGATCGACCTGACCTACAAGGAGTTCGAGCTCCTCAAGTACCTCGTGCAGCACCCGGGCCGGGTCTTCACCCGGGCTCAGCTCCTGCAGGAGGTCTGGGGCTACGACTACTACGGCGGCACCCGGACGGTCGACGTCCACGTCCGGCGGCTGCGCGCCAAGCTCGGTCCCGAGCACGAGCAGCTCATCGGCACGGTGCGCAACGTCGGCTACCGGTTCGACCCGCCGAAGGAGCCCCGCGAGGAACCCGCCGCGTCCACGGCCGGCGAGTCCTCCGGCGGCGGGACGGACCGCGACACCCCCGGCTCGCCGCAGGTGTCCTCGGGCGGCTGA	MAELLILTPATGGSVEVLPALGLLSHKVRVLPMEPSALVDAPDSDVVLLDARRDLVAARTTCRLLHATGLTVPLVLILTEGGLTVVNHEWGADDLLLESASPAEVEARLRLVVERSAHGPTEDSPQEISAGELAIDAGGYTARLRGRPIDLTYKEFELLKYLVQHPGRVFTRAQLLQEVWGYDYYGGTRTVDVHVRRLRAKLGPEHEQLIGTVRNVGYRFDPPKEPREEPAASTAGESSGGGTDRDTPGSPQVSSGG	PGPT0014763_19	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-ENVELOPE_REMODELLING_REGULATION	CE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014763-walR-NA	NA	NA
AK001_02474	927	ephA		Epoxide hydrolase A	ATGTCCGACGCCGCCGACTACTCCAGCGCCCTGGTCGACGGGCCGTGGCGGCACGAGTTCGTCGCCGCCAACGGCTCCCGCTTCCACGTCGCCTCCGCCGGCCCGCGGCCCACCCGCGGCGACCGTGCGCCGCTCGTGGTGCTGCTGCACGGCTTCCCGCAGTTCTGGTGGGTCTGGCGCCACCAGATCCCCGACCTGGCCGACGCCGGCGTCCAGGTCGCCGCGCTCGACCTGCGCGGCGTGGCCGCCTCCGACAAGCCGCCCTCGGGACGCGACGTCCCGACGCGCACCCGGGACGTCGCCGGCGTGATCCGCTCCCTCGGCCACGACCGGGCCGTCGTCGTCGGCGCGGGCACCGGCGGCGCGCTCGCCTGGGCGATGGCCGCGCTCCAGCCGGGGGTGACCGCGGGCGTGGCGGCGCTCGGCGCACCGCACCCGGCGCGGCTGCACGTGCCCGGCCGGGGCATCCTCACCCCGGCCGCCCGACGGCTGTTCGCCGCTGCCCAGCTGCCCGGCGTGCTCGAACGGCGGCTGCAGGACGGCGACGGCGTGCCCAGCCTGCTCGACGCGGGGTCCGACCGGCCGCTCGAGTCCGAGGCCGTCGCCCGCTACCGCGAGGTGCTGCGCATCCCCTTCGCGGCCCACAGCGCCGTCGACACGCTGCGCTGGCTGTCCCGGACGTCGGCGCACCCGGCGGGCCGGCGGTACCTGGCCGCGCTCCGGCGCAGGATCGACGTGCCCGTGCTGCAGCTGCACGGGGCGGCCGACGGGTTCCTCCGGCGCGAGACAGCCGACCTGGACGGCGCCGCCGTGGCGCGCGACTTCCGGTTCGAGGTCGTCGACGACGCGGGGCACTTCCTGGCCGAGGAAGCGCCCGAGGCCGTGACGGGTCTGCTGCTCGACTGGCTGGCCGACCAGCAGCGCTGA	MSDAADYSSALVDGPWRHEFVAANGSRFHVASAGPRPTRGDRAPLVVLLHGFPQFWWVWRHQIPDLADAGVQVAALDLRGVAASDKPPSGRDVPTRTRDVAGVIRSLGHDRAVVVGAGTGGALAWAMAALQPGVTAGVAALGAPHPARLHVPGRGILTPAARRLFAAAQLPGVLERRLQDGDGVPSLLDAGSDRPLESEAVARYREVLRIPFAAHSAVDTLRWLSRTSAHPAGRRYLAALRRRIDVPVLQLHGAADGFLRRETADLDGAAVARDFRFEVVDDAGHFLAEEAPEAVTGLLLDWLADQQR	PGPT0015015_392	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0015015-yfhM-K22369	NA	NA
AK001_02475	729	pdg		Ultraviolet N-glycosylase/AP lyase	ATGGTCGAGACGTCGCAGCAGCCTACCCCCACCGGGGAGTCCCGTCTGGCCCTCGTCCGGCGGGCGCGGCGCATCGACCGCGTCCTGGCCGAGACCTACCCCGACGCGCGGGCCGAGCTGGACTTCACCACGCCCTTCGAGCTGCTCGTGGCGACCGTGCTCTCGGCGCAGACCACCGACGTGCGGGTCAACGCCACGACGCCGACCCTGTTCGCCCGCTACCCGGATGCCGCTGCGCTCGCCGCGGCCGACCCGGCGGAGGTGGAGGAGATCCTGCGGCCGCTCGGGTTCTTCCGGGCCAAGACGCGCTCGGCCGTCGGCCTGGCGCAGGCGCTGGTGGAGCGGCACGACGGCGAGGTGCCGCGTCGGCTGACGGACCTGGTCGCGCTGCCGGGCGTCGGCCGCAAGACGGCGAACGTCGTGCTCGGCAACGCCTTCGGCATCCCCGGCATCACCGTGGACACGCACTTCGGACGGCTCGCGCGGCGACTGGGTTTCACCCGGCAGGAGGACCCGGTCAAGGTCGAGCACGCCGTCGGCGAGCTCTTCGAGCGCAAGGACTGGGTGATGCTCAGCCACCACCTCGTCTGGCACGGTCGCCGGGTCTGCCACGCGCGGCGGCCGGCCTGCGGCGCGTGCCCGGTGGCGCGCTGGTGCCCGTCGAACGGCGTCGGCGAGACCGACCCGGTGGCGGCGGCGAAGCTGCTGCGCCCCGGCCCGCGCGGCTGA	MVETSQQPTPTGESRLALVRRARRIDRVLAETYPDARAELDFTTPFELLVATVLSAQTTDVRVNATTPTLFARYPDAAALAAADPAEVEEILRPLGFFRAKTRSAVGLAQALVERHDGEVPRRLTDLVALPGVGRKTANVVLGNAFGIPGITVDTHFGRLARRLGFTRQEDPVKVEHAVGELFERKDWVMLSHHLVWHGRRVCHARRPACGACPVARWCPSNGVGETDPVAAAKLLRPGPRG	PGPT0013735_1565	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773	NA	NA
AK001_02476	678	crp	COG0664	CRP-like cAMP-activated global transcriptional regulator	GTGGACGACACCGTCGTGCTCTCCGCCCCCCTGTTCGCCGACATGGACAGCGAGGAGTCGAAGGCGCTCTTCGAGTCGATGATCCCCGTCGAGCTGGGCCGCGGGGACGTCCTGTTCCGCGAGGGCGAACCGGGCGACCGGCTGTACGTGATCGCGCAGGGCAAGATCAAGCTGGGGCGCCGCTCCAGCGACGGTCGGGAGAACCTGCTGTCGATCCTCGGCCCGGGCGAGATGTTCGGCGAGCTGTCCCTCTTCGACCCGGGCCCCCGCACGGCCACGGCCTCGTCCGTCTCGGACGCGCTGTGCTACGAGCTGCGTCACCAGGCCCTCGTGCAGTGGGTCGCCGCGCACCCGAACGTCGCCACGACGCTGCTCGGCGCGCTCGCCCGGCGCCTGCGCCGCACCAACGAGACGCTGGCCGACCTCGTGTTCTCCGACGTCCCCGGCCGCGTCGCCAAGGCCCTGCTCGACCTCTCCCAGCGCTTCGGCGAGCCGAACGACGAGGGCGTCCGCGTCGCGCACGACCTGACCCAGGAGGAGCTCGCCCAGCTCGTCGGCGCCTCGCGCGAGACGGTCAACAAGGCGCTGGCGGACTTCGCCACGCGCGGCTGGGTGCGGCGCGAGGGCCGCGCGGTCGTGCTCCTCGACATGGACCGGCTGGAGCGCCGCGCGCGCTGA	MDDTVVLSAPLFADMDSEESKALFESMIPVELGRGDVLFREGEPGDRLYVIAQGKIKLGRRSSDGRENLLSILGPGEMFGELSLFDPGPRTATASSVSDALCYELRHQALVQWVAAHPNVATTLLGALARRLRRTNETLADLVFSDVPGRVAKALLDLSQRFGEPNDEGVRVAHDLTQEELAQLVGASRETVNKALADFATRGWVRREGRAVVLLDMDRLERRAR	PGPT0015075_2948	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914	NA	NA
AK001_02477	468			hypothetical protein	GTGAGCATCGACGACCGCCTGGCCGAGCTGGGCCTCGCCCTGCCCGACGTCGCCGCGCCCGTCGCCGCCTACCAGCCGGCGGTGCGCTCGGGGCAGTACGTCTACACGGCGGGCCAGCTGCCCTTCGTGGACGGCACCCTCGCGACCGTCGGCAAGGTCGGCACCGAGGACGGGCTCGTCGACCCCGCGACGGCTGCCGACCTGGCCGCGACCTGCGCCCTGAACGCGCTGGCCGCGGTGCGCAGCGTCACGGGCACGCTCGACGGGGTCCGCATCGTCAAGGTCACCGGCTTCGTGGCCAGCGACCCGTCCTTCACGGGACAGCCCGCCGTTCTCAACGGCGCCAGCGAGCTCCTGGGCCGGATCTTCGGCGACGCGGGCACCCACGCCCGCTCCGCCGTCGGCGTCGCGGTGCTGCCGCTGGACGCGCCGGTCGAGGTCGAGCTGATCGCCGAGCTCACCGACTGA	MSIDDRLAELGLALPDVAAPVAAYQPAVRSGQYVYTAGQLPFVDGTLATVGKVGTEDGLVDPATAADLAATCALNALAAVRSVTGTLDGVRIVKVTGFVASDPSFTGQPAVLNGASELLGRIFGDAGTHARSAVGVAVLPLDAPVEVELIAELTD				NA	NA	NA	NA	NA
AK001_02478	162			hypothetical protein	ATGGCTACCACGTGGGAGTACGCGACCATCCCCCTGTTGATCCACAACACCAAGGCGATCCTCGATCAGTGGGGCGCGGACGGCTGGGAGCTGGTCCAGGTCGTGCCGGGTCCCGACAGCGCGAACCTCGTCGCCTACCTCAAGCGCCCGTCGGGTGAGTGA	MATTWEYATIPLLIHNTKAILDQWGADGWELVQVVPGPDSANLVAYLKRPSGE				NA	NA	NA	NA	NA
AK001_02479	2385	ponA1	COG0744	Penicillin-binding protein 1A	ATGGCGGCTCCTGACTCTCGCGACTCCCGTCGCATCACGCGCACGATCCCGGCCACGCAGATGGTCGCGCTGCTGCTCGCCTTCCTCCTGGCGGCAGGGACCGGCGGCGTGCTGGCGGCGGGCTTCGTGATCCCGGCGGTCGCAGGCGTCAACGCGATGGCCGACAGCACCGTCGAGATCTACGACGACGTGCCGGCCGAGCTCGAGCCGAGGCCGCTGTCCCAGCAGTCCCGGATCTACGCCTCCAACGGCAAGCTGCTGGCGACGTTCTACTACCAGAACCGCATCGTCAAGCCGCTCGACGAGATCTCCGAGCACATGCAGAACGCCGTGATCGCCATCGAGGACGAGCGCTTCTACGAGCACAACGGCGTCGACGCGCAGGGCATCACGCGCGCCGTGGTGAACAACCTCACCAGCGAGGACACGCAGGGCGCCTCGACCCTCACCCAGCAGTACGTCAAGAACATGCTCATCGAGTCGGCGCAGCAGGACGGCGACCAGTTCGCCGTCATCGACGCCCACGAGTCGACGATCGACCGCAAGCTCCGTGAGGCGAAGATGGCCATCGCCCTCGAGGAGCGCATGTCCAAGGACGAGATCCTGCAGGGCTACCTGAACATCGCGCAGTTCGCCGCCGCGAGCGTCTACGGCGTCGAGTCGGCCGCCCGCTACTACTTCGACACGACGGCCTCCGACCTGAACGTGGTGCAGGCGGCGACGATCGCCGGGATCACCAAGGCGCCCGGGCTGTTCGACCCGACGCGCAACCCGGAGCTGGCCCAGGAGCGCCGCGACCTGGTCATCAAGAACATGTACTCCCTCGGGTACATCTCGCTGGACCAGCGCGACAACGCGCTCGACCGGCCCATCGAGGAGACGCTGAACGTCACGCCGTCCCCGGCCGGCTGCCAGACGGCCAACAACTCGGCCTTCTTCTGCGACTACGTCATCAAGGAGCTGCTGCTCGACGAGGCCTTCGGGGAGACCCGGGCCGACCGTCAGGAGCTGCTCTACCGCGGCGGTCTGGACATCCACACCACGCTGGACATGAAGAAGCAGCGGGCGGCGTTCAAGACGATCAAGCAGGCCGTGCCGGCGGGCGACGAGAGCAACCTCGAGGCGTCCATCGTCACCGTCGAGCCGGGGACCGGCAAGATCCTCACGATGGCGCAGAACGTGCCCTACACGGGGACGCGGGCCGCCGGGAACGCGAGCCGCGACACGACGGTCAACTACAACGCCGACTACGTGCACGGCGCCTCGGGCGGCTTCCAGCCCGGGTCGAACTTCAAGCCCGTGGTGCTCTCCCAGTGGCTGAAGGAGGGGCACACGCTGCTCGAGCAGGTGACGGCCACGAAGGTGGAGCGCCCCGTGAACACGTTCAACGCCCCCTGCCGGCCGATCACGAGCTCCGAGACTTGGGCGCCGGCCAACGCCGAGGGCGTCCTCAGCGGAACGATCCCGGTGCTGGAGGCCACCTACCTGTCGGTCAACACCGCCTACGCGTCGATGGGTCACGAGCTCAACCTCTGCGGGCTGCGCGACACGGCGTGGCAGATGGGCTACCGACCGACCAGCACCTCGTTCGGGGACAACCGTGGGCCGCTGAGCCAGCCGGCCACCAAGAGCGACATCGACATCTTCGCGCCGATGATCGTCGGCACCCAGGAGACGTCCCCGATGAACCTGGCCGCGATGTACGCGACCTTCGCCTCGGGCGGCACCTACTGCACGCCCGTCGCGATCACCGGGGTGACCGGTCCGCGGGGCGAGGAGTACGAGGTCCCTCAGGCCGACTGCGACAAGAACGCGCTGCCGAGCGACATCGCCAACACGGTGGTGTACGCGATGGAGAACGTGTTCACGCGTGGCACCGCCTATCGTCTCGGCGGTCTCGCCGATGGTCGGCCCGTCGCCGGCAAGACCGGAACCTCGCAGCTGTCGACGCAGACGTGGTTCACCGGGTTCACGCCGCAGCTGTCCACCTCCGTGTGGGTCGGCACGGTGGAGAACGCGACCGAGGACCACACGAACGGCATGTTCGTCAACGGCGACTGGTTCGACCCGCTGTACGGCTCCTCCGTCGCGGCACCGGCCTGGAAGACCTACATGGACCAGGCCATCGAGGGCATGCCCGTGGAGGACTTCGGCCCGCCGGACCAGTCCATGATCGGGACTCCCCCGGCCCCGCCGGCTCCGCCGTCGTCGTCCAGCGACGACTCGGACGACGACAGCTCGTCGTCCGACCCCGGCAACAGCGGTGACTCCGGCGAGTCCTCCGACGGCGGCGACTCCTCCGGTGGCGGGGACAACCCCGGCAACGGCGGCGGCAACGGCAACGGCAACGGCAACGGCCAGGACGGCGACGGGGGCGACGACTGA	MAAPDSRDSRRITRTIPATQMVALLLAFLLAAGTGGVLAAGFVIPAVAGVNAMADSTVEIYDDVPAELEPRPLSQQSRIYASNGKLLATFYYQNRIVKPLDEISEHMQNAVIAIEDERFYEHNGVDAQGITRAVVNNLTSEDTQGASTLTQQYVKNMLIESAQQDGDQFAVIDAHESTIDRKLREAKMAIALEERMSKDEILQGYLNIAQFAAASVYGVESAARYYFDTTASDLNVVQAATIAGITKAPGLFDPTRNPELAQERRDLVIKNMYSLGYISLDQRDNALDRPIEETLNVTPSPAGCQTANNSAFFCDYVIKELLLDEAFGETRADRQELLYRGGLDIHTTLDMKKQRAAFKTIKQAVPAGDESNLEASIVTVEPGTGKILTMAQNVPYTGTRAAGNASRDTTVNYNADYVHGASGGFQPGSNFKPVVLSQWLKEGHTLLEQVTATKVERPVNTFNAPCRPITSSETWAPANAEGVLSGTIPVLEATYLSVNTAYASMGHELNLCGLRDTAWQMGYRPTSTSFGDNRGPLSQPATKSDIDIFAPMIVGTQETSPMNLAAMYATFASGGTYCTPVAITGVTGPRGEEYEVPQADCDKNALPSDIANTVVYAMENVFTRGTAYRLGGLADGRPVAGKTGTSQLSTQTWFTGFTPQLSTSVWVGTVENATEDHTNGMFVNGDWFDPLYGSSVAAPAWKTYMDQAIEGMPVEDFGPPDQSMIGTPPAPPAPPSSSSDDSDDDSSSSDPGNSGDSGESSDGGDSSGGGDNPGNGGGNGNGNGNGQDGDGGDD				NA	NA	NA	NA	NA
AK001_02480	831	ypbG	COG1408	putative protein YpbG	GTGTCGGTCCCGGTGCTCGCCCCGGGCGAGCGCGACCTCCGGGTCCTGCACGTCTCCGACCTGCACCTGACGCCCGGCCAGCACCGCAAGATCGAGTGGGTGCGGTCCCTGGCCGCCCTGGAGCCCGACCTCGTGATCGACACCGGGGACAACCTGGCGCACCACGACGCCGTCGACCCGCTGCTGCACGCCCTGGAGCCGCTGCTCGACCGGCCCGGTGCCTTCGTCCTCGGGTCCAACGACTACTACTCCCCCACGTTCAAGAACCCGGCGCGCTACCTGCTCCCGGACGCGCGGGGGCCGGTGCGGCACACCCCTGACCTGCCGTGGGAGCGGATGGTCACGGCGATGCGCGAGGCCGGCTGGGCCGACCTCACCAACCGCCGGGACGCCGTCGACGTCCAGGGGCGACGCGTCGCCCTGACCGGTGTGGACGACCCGCACCTCGACCGGGACGTCTTCCCGGAGACGACGGCCGGGACGGACGACGAGCCGGCCACGCTGCGACTGGGCGTCGCGCATGCCCCGTACCGGCGCGTGCTGGACCAGATGCACGCCGACGACGCCGACGCGATCATCGCCGGGCACACCCACGGCGGCCAGCTCTGCCTGCCGTTCTACGGGTCGCTGGTCACCAACTGCGACCTGGACCGTCGACGGGCCAAGGGGCTGCACGGCTGGCCCGGACCGCGGCCCGACGCACCGGGTGGCGCGGACTCGACGTGGCTGCACGTCTCGGCCGGCGCCGGGACCTCGCCGTACGCCCCGGTGCGGTTCGCGTGCCGCCCGGAAGCGACCTTGATCACGTTCACGGCACGGGGCCGGATCTGA	MSVPVLAPGERDLRVLHVSDLHLTPGQHRKIEWVRSLAALEPDLVIDTGDNLAHHDAVDPLLHALEPLLDRPGAFVLGSNDYYSPTFKNPARYLLPDARGPVRHTPDLPWERMVTAMREAGWADLTNRRDAVDVQGRRVALTGVDDPHLDRDVFPETTAGTDDEPATLRLGVAHAPYRRVLDQMHADDADAIIAGHTHGGQLCLPFYGSLVTNCDLDRRRAKGLHGWPGPRPDAPGGADSTWLHVSAGAGTSPYAPVRFACRPEATLITFTARGRI	PGPT0022365_3831	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022365-lpxG-K07098	NA	NA
AK001_02482	342			hypothetical protein	GTGCGACGTGCGTTCCGATCAGCGCTCAAGCTGGTGCCGTCGGTCAATGCCGCCGAATGGACACCGCGCGAGCTGCGACACTCGTTCGTCTCGCTGATGTCCGCTGGTGGCGCGGCCGTGGAGCAGATCGCCCACGTCGTGGGTCACTCCGACACCTCGACCACTGAACGCATCTACCGTCACGAGCTTCGCCCTGTGATTCACACTGGAGCGACGTTCATGAACGTGTTTGCCAGTGTGGAGGAGGTCAACCCGGGGTGGCACATGGACCCGCTGTTCAAGATGCCGGGCGAGGCCGGACGATCGGGCCGCAAAGCGTCCGAGGACCCCGAGGGCGGCTGA	MRRAFRSALKLVPSVNAAEWTPRELRHSFVSLMSAGGAAVEQIAHVVGHSDTSTTERIYRHELRPVIHTGATFMNVFASVEEVNPGWHMDPLFKMPGEAGRSGRKASEDPEGG				NA	NA	NA	NA	NA
AK001_02483	963			hypothetical protein	GTGACTACGCACAAGACCCGTCGCACCATCGCCACCACCGCCGCCGGAGCCCTGCTCGCCACCGGCCTCATGGCCGGCGCACCGGCTGCCGCCGTTCCCGACCACCCGCACGGCGACGACTTCCCCGGCCAGGGCCAGGGTCGGACCGTCCCGGCCGAGAAGATCTCGATCCAGCTGTTCAGCTACCTCGGCTGGACGTTCTCCGAGGGGATCGACACCGTCATCGACGAGCTCGACGAGATCGGCTACCGCAACGTCGAGCCCTTCGGCAGCCCCGGCGGCGGCTTCAGCTCGTACGGCGACTACTCGGCCGCCGAGTTCCGCACCGAGCTGCGCGAGCACGGCATGAAGGCGCCCTCGTCGCACGGCAGCACGAACGAGGCCACGTTCGACACCTCGCTCCAGAACGCCAAGGACCTCGGGCAGCGCTGGACGGGCTCCGGCGGCTGGGCGGCGCCGGGGATCGCGCGCGACGGATCCAGCACCTACGAGGAGGTCGCGGAGACCGCCGCGACCATGAACCGCCTCGGGGAGCGGTCCGTCAAGAACGGCACCGGCAAGATCTTCGGCCACAACCACCAGTGGGAGTTCACGACCCAGATCGCGGACCCCGACACCGGCGAGGTGAAGAGCGCCTGGGAGCACCTGGTCGAGCTCACCGACCCGCGGTACGTGACCTTCCAGCTCGACACCCTCTGGGCCGCCGACGCCGGGTACGACGTCGCCGAGCTGCTCGAGGAGCACGGCGACCGCGTCGAGCTGCTGCACATCAAGGACGGGCTCCTCAACGGCGACGAGCGGGGCATCCCGACCGACGTCGGCGAGGGCGAGCTGGAGTGGGGTCCCATCCTGCGGGCCGCGCACGGCCACGTGAAGCTCTACGTCGTGGAGCGGGACGGCGCCCCGTCCACGCCGGAGTTCGCCGAGGACAGCTTCGACTTCCTCACCAGCTTCCGCTACTGA	MTTHKTRRTIATTAAGALLATGLMAGAPAAAVPDHPHGDDFPGQGQGRTVPAEKISIQLFSYLGWTFSEGIDTVIDELDEIGYRNVEPFGSPGGGFSSYGDYSAAEFRTELREHGMKAPSSHGSTNEATFDTSLQNAKDLGQRWTGSGGWAAPGIARDGSSTYEEVAETAATMNRLGERSVKNGTGKIFGHNHQWEFTTQIADPDTGEVKSAWEHLVELTDPRYVTFQLDTLWAADAGYDVAELLEEHGDRVELLHIKDGLLNGDERGIPTDVGEGELEWGPILRAAHGHVKLYVVERDGAPSTPEFAEDSFDFLTSFRY				NA	NA	NA	NA	NA
AK001_02484	420	lpxD		UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferase	GTGCGACGCATCCCGAGAAAGGTCGAGATCGAGGACGACGCGGGCAACGTCACGCGGTACGTCCGACACGAGAACGGCCTGGGCTACGTCTCCCCCCACGCGACCGTCCACCCGGAGGCCCGGATCGAAGCCGGCGCCTACGTCGAGGCCGGCGCGCGGGTGGGCGCCGAGGCCCGGGTCGGCCGTTTCAGCTGGATCGACGTCGACGCCGTCGTCGGCACGCGCGCCCGGGTCGGCCAGTGCGTGCACGTCGGACGCCGCACCGTCGTCGCCGACGAGGCCCGCGTGGGCGCCTACGCCCAGCTCGGCGAGGACACCATGGTCGAGGCCGGCGCGGACGTCGAGGCGGACGAGCTCGTCGCCGACCGCACCGTCGTGCGCACGCGGCGCCACCGCCGCGACTTCAGCACCGCCGCCTGA	MRRIPRKVEIEDDAGNVTRYVRHENGLGYVSPHATVHPEARIEAGAYVEAGARVGAEARVGRFSWIDVDAVVGTRARVGQCVHVGRRTVVADEARVGAYAQLGEDTMVEAGADVEADELVADRTVVRTRRHRRDFSTAA				NA	NA	NA	NA	NA
AK001_02485	7845			hypothetical protein	ATGCTGGGACGCCGGGGGCGGGCCGACGGGGGAACGACACGGCACGCGAGTCGGCGGACGGACCGTCGGTTCCGGCGCGGCTGGTCCGTGCTCGGAGTGCTCGCGCTGGCACTGCCGTTGGTGGCGGTACCGGCGACGACGGCGTCCGCGGCGACCTGGGGCATCCAGAAGGTCGAGGTGTCCGAGGGGCCCTACGGACCCGGCGACCAGGTGCAGTGGGTCGTCTCCTTCTCCTGCTCCGACCCGAACTCCGATCCCTGCGTCCCCACCACCATGACCGACGAGCTGCCCGACGGGCTGACGCTCGTCGACGCATCGATCCAGAACCAGGGCAGCGCGGTCGGAGGCAGTCTCGACACCGACGGCGACACCGTGACCTACACGGCCGACAGCGTCCCCAACGGCGGCCAGGTGCAGATCGCCGTCACGGCACAGATCGACGCGGACATCCCGTACAGCGCCGACGGCGTGCCGATCACCAACACGGCCACGGTCGACTCGGACAACGCGGACGAGGCGTCGGCCTCCGACGACATCACGCCGACCGTGCCGCTGATCCTGGACTCCGAGACCACCAAGTCCATCGACCCGGAGGGTGCGCTCGCCGAACCCGGCACGCCGGCGACGATCACCCTCGGCAGCACCAACACCTCCAACGACCCGGTCGACACCCTCGTCGTCCAGGATCCCGTCGACCCGTCGGCGACCCCCAACCCGTTCACCTACCTGGAGTACACGGGCACCGGGGACATCACCATGCCGCCGAACGCCGACACGGTCACCGAGGAGTACTGGGACGGCGACTCGTGGGAACCGCTCGACGACTCGGTCGACCCCGCCACGGTCCAGGGAGTGCGCTACACCTTCAGCGGCGACATCCAACCCGGGGCGACCGCCACGATTCCGGTCGAGGTCCAGCAGAGCGATGCCGTCGTGGATCTCACCACACAGACGATCATCACCAACGACGTCTCGTCCTTCGTCACCCACGGTGAGGACCAGTCCGAGCCGACGACGGCGGAGGACACCTACGAGATCACTCCGGTCAACAACGACGTCTCCGCGTCCAAGAGCTTCGACCCCGCGACGGTCAGCGCGGGCGACCCGACCACGGTGACGGTCGGTGCGACGAACACCGGGACCTCGACGCCGTCGCTGACCATCACCGAACCCGCACCCGGCACCCCGAGCCCCTTCGAGGGCGATGACGCGATCACGTTCACCGGGTGGGGCACGGACGGCGCCGGCGCCGGAGTGTCGTGGCCGGCCGAGGCAGCCTCCGCCACGGTGACCTTCACCTGTGCCGACGGTTCGACCCCGACCGAGTCCACCACGACCGTCGACACGCTCCCCGACCCGCCCGAGACCTGCGAGGTGCTCGGATTCGCGATCACCTTCGACGGGGGCATCCTCGCCGGGGGCGAAGCGACCGTCCCGTTCACCGCGGACACCGACCCTGACCAGGGTGCCGACGAGGTCACGCACCCCAACGAGATCTCCGCCGAGGTGCCGAACGCGGAAGACTCCGCCTCGGCGGACCTGGTCACCCTGACCGACCGGCTCGCCACCGGCACGGACAAGGTCATCTCACCGTCCACCTTCCCCGCGGTGCCGGGCCAGTCCGTCATCGTCCAGCTGCCGTCCCAGCTGCTGCCGTTCGGGCCGGACGGTTCGACGGCGAACGCCGACCAGGTCGTCATCCAGGACCCGATCGACCCGACTTCCCCGGACGACTTCTCGGACAACTTCACCCCGACGGCCGTCCGCTCCACCGACGTGCCGGCCGACTCCACCCTGACGGTCAACTACTGGAACGGCACGGACTGGGTCCCGGCCCCGGACTGCGGCCCCTACACAGGACCCGACACGGTGAACTGCGACCTGCCGGACGACGCCCAGGGCGTGCAGTTCGTCTACGACTCGACAGCTGACGGGTTCCCGCCGGGCACCAGCTTCCAGCCGAACTTCGTCGCCGACTACACGGGCCCCACGGACCGTGACGACCCGATCGAGAACTGCGGGTCGTCCAGCGCCTCGTCGGGCACCGTGGACCCCACGGACCCGGCCGTCGGGTGCGACACCGTCGATCCGTACCCGGTGGACCCGGGGCCGGGCATCAACTTCATCGCCAAGGACTTCCTCGGCGAGCAGCCCGTCAGCGTGCTGGCCCGCTCCGACGACGAGGTGACCGCCCAGATCACGTGGTCGACCTACGGTTTCGACGGCGTCGATCCCATGGTCGTCTCCGACGTCGCCGACCCGGAGACCACCGCGATCGCCGACTCCTTCTACGACGCCTTCGACCTGGTGCGCGTCGAGCCGATCGACGGCGCGGCGGACCCGCTGATCCAGTACGACGCGATCGTCGGCGTCGAGCTCTACGACGGTTCCGACTGGGGCCAGGCGACGAACTCCACATGCACCACGACGGCTCCCTGCGACGGCGGCATGCCCGGGGTCGACCTCACCGACGCCGAGGTCGAGTCCACGGTGTCGGTGCGCGTCGTCTACTCCGAGTCCCCGTCGCGCAGCGCGACTCCTGCCGACCCGACCGAACCCGCCGCTGGTGACGGTGTCGCCCGCTCCACGCAGGCGGACGGCCGGCACCTGGATCTGACGTTCCAGGTGCGGGACACCAAGCGCTCCGACGGTTCCCCGGTGCTGGGGTCGACCAACGGCACGCTGTACAACACCTCGGACCCGGGGCTGGTCAACGACACGGCGCGCGGTACTGCCACGTTCGACGGCGACGAGTACACCGACGTCGACGACGACGACGTGCTGATCATCGACCAGCCGCTCAACGTGGCGGTCGCCAAGGAGTGGACCGGTGGGCCGATCTCGGTACCTCCGCCGGGCACCCCGGCCCAGTTCTACCCGTCGACCACGGTGAGCATCACCGGCACCAACGCCTCGAACGCGAAGGTCGACCAGCTCCGGCTGGTGGAACCGGGAGCACCTGACTCCGGTGACGTCCAGACGGCTGCCGGCACAGCGCCGTTCGACGTGTTCGACCTGACCGGTATCGACCTGACGCCCCCGGACGGGGCGACGTCCACCACGGTGACGCTGACGTATGACGACGGCACCACGGCGGACTTCGACGAGGTGGGTGCCGAGGCTCTCGTGGCGGCGGACCTGGTCGACGTCGTCGGCATCGAGGTCTCCTACGACGGGCTCGTCGCACCTGGTGCGACCGGTTCGATGGACCTCACGCTGCGGCTCCGGGAGACGGACCGCGCCACGGGGGAGGCCCTGCTCGACGACGCGGGAGCGATCGTCACCCAGAACCCCGTGCCGGACGGGGCGGTCGCGACGATCGACGACCCGGGCGGCACCGACGACGACGTCCGGCAGGCCTACGACGACGCCGACATGACGCTGCAGACGGCGTCCATCGACCTCGAGGTCGGCAAGTCGTTCGCCCCGGACACGGTCGTCGAGCCGTACCACGGCGCGAACATGTCCGAGGACCCGGTGGTCATGACGCTCACCGGGCAGCCGCTCGGCCCGTCGCGCAGCGTCGAGATGGTGCTCGTCGACGACGACCCGCAGTTCTGGAACCAGTACGACTTCGTCGGGTTCGACCCGAGTGCCGCGCTGGTCGACCCGATCCAGCAGGTGCAGGTGGACGCGTTCGTCGGCGGGGTGTTCTCCGGCAACCCCGGCTCCACCGACCCGGTGACCCGCGCCGGTGGAGACTGGGTCGTCGACGACGACGTGTCGGCGACGTTCGACCTGCCCGACGGCGTGACTCCCGAGGACGTGCAGGGCCTGCGATTCACCTTCAGCAAGACCGACGGGTCCGTCTGGGAGAACCCGGCGACCCCGACGCAGCCGGTGCCGATCCAGATCCTGCGCCGGGACGACCTGCGCTCGGGCGGCGAGGTGCTGCCGGACCTGGCGGCGAACCCGTCGGCTCCCGGGGAGGACGAGCCCGGCGTCGCGAGCAACACCGTCCAGGGCACGACGACCGGTGCCGACCTCGTGGTCGACCCCGACACCGGGGACGTCGTGCCGGTCAGCTCCGGCGACGAGGCCGAGGCGTCGATGCTGTACCAGCACGCCACCAACGCCGTGGAGATCGTCAAGGACTTCCGCGGTTCGCTGGACGGGACCGAACCTCCCGACGCCGTGGTGCCGATGAACATCACGGTGACCAACACGGGAGACCGGCCGATCGTCGACCCCGTGATCACCGATCCGATGCCGACGGACGCCGACGGGCCCCAGCTCCGGCTCGCGGACGTCGACGAGCCCTACTCGTACGCGCTGCAGGGCGCCGCCCCGGACCCCGCGAACGGGAGCCCGCTGCCCACCGATCCCGACGACGTCACCGTTGACAGGGCCGGCAACATCTCGTCGCTGGAGTTCACGTTCCCCGAGGGCTCCGTGCTCGAGGTGGGCCAGTCCTACACCATCACGGTGCAGGTACAGTTCCGCGTCACCCTGGCGGCCAACACCGTCGTGGAGAACACCGCCGGCGTGACCGGTGACCGCCCCTGGGACCAGTGCGAGACGACCCTGAACGAGGAGACCGGCGCGTGCGAGGCCAGCGCCGACGTGGTGACCGTGCCCTCGGCCGTGCTCAGCCAGTCCAAGTTCGTCAAGTCCACGGACGACGAGTACCCGCTGGGGATCATGGTCGACCCCGACCAGCCGGGGAACGTGGCACCGGAGGACTGCGCGCCGAACGCCGCCGGCTTCTACGCCTACCCGTGCACGCCGATCATCCCGCCGGGTGGCGACGAGACCTGGCGCATCCGCGTGGACAACGTCGGCAACCTGCCCATGGACAAGGTCGTCGTCTACGACCGGTTCCCGGCCGTCGGTGACACCGGGTCGTTCGCGAACTCCGAGCGCGGGTCGGCCTGGGGGCCGTACTTCACCGACGACCCGCTCCCGCAGGTCGTCAACACCCCGGAGGGCTCGACGGTCGACTACTTCTACACCACCGTCGACGACTACTGCATGGACGACATCAACGATCCGGTGGACGAGCCGGTGTGCCCGCAGGACCCGGAGGCCGGGTGGGCGCCGTTGACCACCGATCTGGACGTCAGCATCCTGCAGGAGATCACCGCGATCAAGAACGTCATCACGTTCCCGCAGGATCAGCTCTTCGCGCCGGGCCAGTTCATCGCGCTCGACGCGACCTCGACCACCCCGCCCGTTCCCGAGGCCGGAGACCGGTCGATCGCCTGGAACTCGGCCGCGGCCTCGGGTGTGGTCGTGCTGCCGAACGGCACCGAACAGAACCTGCTGCCCACCGAGGGCACCAAGGTCGGCGTCGCCACGGCGTCGGGCACCCTCGAGGTGAACAAGATCGTCGCCGGCGAGGGTGCGCAGTACGCCCCCGACTCCTTCCAGCTGACCGTGCAGTGTGCCTCGGCCGTCGGCACCTGGGTCGAGGCGGACCTCGACCCGATCACCATCACCGTGACGCCAGGTACTCCGACGGTCGTGCCCGAGCTGCCGTACGGCGCCGAGTGCACGCTCACCGAGGACGGCAGCGACGGCCAGACCGAGCTGCTCGTGACGCCGCAGACCGTGACCGTGGACACCGAGACGATCGACGAGCAGAGCGAACCGGCGTCGATCACGGCCACCAACGTGTACAACCTGTCGAGCCTCGTCGTCGACAAGGAGGTCGTCTCCGACGCCGTCGACCAGGACGGAGAGCCGATCACGTTCGGTCCGTTCGACGGCACCGTCGAGTGCACGTTCCTCGGGGAGGCCGTGTACGCGGACGGGTACGACGCGGACACCCCGATGACGTTCGAGCTGAGCGACGGCGACTCGGTGGAGTTCACCGGCCTGCCCGTCGGCTCGGAGTGCGCCGTCACCGAGACCGGGACGGGGAACGCGTCGTCCACGACGATCACCGTGCAGCACGGACTGCAGGAGCCGGAGACCTACGACGGCACGAGCGCGGTCCTCGACCTCCTCGGCGACGTCGTCCAGATCCCGCGCAACAGCGTCACGCTCACCAACACGTTCGACGTCGGGTCGCTCGACCTGCTCAAGGTCGTCGACGGCGACGGTGCGGACGCCTACGGCACAGGGCCCTTCACGATCGAGGTGCTGTGCACCTTCGACGACGACGGGGACGGGCCGGGCGCACCCCGGACCGTCTACGAGGACACGGTGACTCTCGGCGGAGCCGGCCCGCTGGAGGCGCAGATCTCGAACGTGCCGGCCGGTGCCGTGTGCACGGTCACCGAGACCGACGACGCCGGGGCGACCGGCGCCGTCGTCGTCCCGGAGACCGTGACCATCGGCGCCTCCGAACCCGTCGAGGTCGTCGTGACCAACACGTTCGACGTCGGGGCGATCGAGGTCGCCAAGGAGCTGCAGGGGCTCGGCGCGCTCTACGGGCCAGGACCCTTCGAGGTGACGCTCGCGTGCACGTACGAGGACGCCGAGCTTGCGATCCCCGGGGGTGCGACGCGCACGCTGGAGGCGGGCGACACGATCCTCTACGTGGGGCTGCCCGTGGGCTCCGAGTGCCTGGTCACCGAGACCGGGGACGGCGGTGCGACGACCGTCGAGATCTCCACCACGGTCGACGGCGGCGAGCCGGGAGAGGTCGTCGTCACCGGTGGCGACGACCCCGTGGCGATCACCGTGACCAACACCTTCCAGCTCAGCCCGCTGCTGGTGGAGAAGGTCGTCGACGGGGAAGCGGCCGAGTTCGCGCCGTCGATGCCGGACCTGTCGGCGCTGCCGGCGCTGCCGGAGCGTCCGATCGACCTCGCCGAGCTCGCCGAGTTCCTCGCCGAGCTCGACCTCAGTGCCATCCCGTTCGACCAGATGCCGTACCAGGTGGAGATCGGGTGTTCGCTGAACGGCAGCCCCGTACCGATCCCGAGCGGTCCGACCCGCCGGTTCGGCCCGGGCTTCGCGGCCGCCTACTACGGGCTGCCCGACGGTGCCGTCTGCACCTTCACCGAGGTCGACACCGGCGGCGCCACGGCGGTGAGCATCGATCCGGAGACGGTGACGGTCGACGAGACCTCCCTGCTGGAGGACCCGGTGGTCGTCACCGTCACCAACACCTACGACGCCGGCGCGATCGAGGTCGTCAAGGAGGTCGACGGTCCCGGGGCACCGTTCGTCTCGGCGCCCTTCGAGGTCTCGCTGGCCTGCACCTTCCAGGGCTCACCGATCGACGTCCCCGGCGGGGCGACCCGCGCGGTGACCCCGGACGTCCCGGCGCTCTACGAGGGGCTGCCGGTGGGTGCCGAGTGCACCGTGACGGAGGTCGACGCGGCCGGTGCGGCCGCGACCACGATCTCCACCGCCGTCGAGGGGGGCGAGCCCGGGCAGGTCGCGGTGCCGGCCACGGACGCCGGGCCGGCCGAGGTCACGGTCACAAACACGTTCGACGTCGGGTCGCTCGTCGTGGACAAGGTCGTCACCGGTCCTGGTGCCGACCAGCTCGGCGGTGGCCCGTTCGAGGTGACCGTCGAGTGCACGTTCCAGGACGCCGGGATCGAGATCCCCGGAGGTGCGGTCCGGGAGCTCACGCCGGGCGACCCCGTCACCTATGCCGGGCTGCCCGCCGGTGCCGAGTGCCTCGTGACCGAGACCGACGACGGCGGTGCGACCGCCAGCGAGGTCTCGAGCGTCGACGGAGGCGCCGCCGGGGCCGTGACCGTCGTCGCCGGCGCACCGGGATCGGTGACGGTCACGAACACGTTCGACGTCCCGCCGCCCGTCCCGGGACCGCCCGGTCCGCTGCCGCAGACGGGCAGCGACGTCTCGGCGATGGTCGCTGCGGCCGTCCTGCTGCTGCTCACCGGAGCCGCAGTGCTCGTCTCACGACGCCGCGGTCTGTGGTGA	MLGRRGRADGGTTRHASRRTDRRFRRGWSVLGVLALALPLVAVPATTASAATWGIQKVEVSEGPYGPGDQVQWVVSFSCSDPNSDPCVPTTMTDELPDGLTLVDASIQNQGSAVGGSLDTDGDTVTYTADSVPNGGQVQIAVTAQIDADIPYSADGVPITNTATVDSDNADEASASDDITPTVPLILDSETTKSIDPEGALAEPGTPATITLGSTNTSNDPVDTLVVQDPVDPSATPNPFTYLEYTGTGDITMPPNADTVTEEYWDGDSWEPLDDSVDPATVQGVRYTFSGDIQPGATATIPVEVQQSDAVVDLTTQTIITNDVSSFVTHGEDQSEPTTAEDTYEITPVNNDVSASKSFDPATVSAGDPTTVTVGATNTGTSTPSLTITEPAPGTPSPFEGDDAITFTGWGTDGAGAGVSWPAEAASATVTFTCADGSTPTESTTTVDTLPDPPETCEVLGFAITFDGGILAGGEATVPFTADTDPDQGADEVTHPNEISAEVPNAEDSASADLVTLTDRLATGTDKVISPSTFPAVPGQSVIVQLPSQLLPFGPDGSTANADQVVIQDPIDPTSPDDFSDNFTPTAVRSTDVPADSTLTVNYWNGTDWVPAPDCGPYTGPDTVNCDLPDDAQGVQFVYDSTADGFPPGTSFQPNFVADYTGPTDRDDPIENCGSSSASSGTVDPTDPAVGCDTVDPYPVDPGPGINFIAKDFLGEQPVSVLARSDDEVTAQITWSTYGFDGVDPMVVSDVADPETTAIADSFYDAFDLVRVEPIDGAADPLIQYDAIVGVELYDGSDWGQATNSTCTTTAPCDGGMPGVDLTDAEVESTVSVRVVYSESPSRSATPADPTEPAAGDGVARSTQADGRHLDLTFQVRDTKRSDGSPVLGSTNGTLYNTSDPGLVNDTARGTATFDGDEYTDVDDDDVLIIDQPLNVAVAKEWTGGPISVPPPGTPAQFYPSTTVSITGTNASNAKVDQLRLVEPGAPDSGDVQTAAGTAPFDVFDLTGIDLTPPDGATSTTVTLTYDDGTTADFDEVGAEALVAADLVDVVGIEVSYDGLVAPGATGSMDLTLRLRETDRATGEALLDDAGAIVTQNPVPDGAVATIDDPGGTDDDVRQAYDDADMTLQTASIDLEVGKSFAPDTVVEPYHGANMSEDPVVMTLTGQPLGPSRSVEMVLVDDDPQFWNQYDFVGFDPSAALVDPIQQVQVDAFVGGVFSGNPGSTDPVTRAGGDWVVDDDVSATFDLPDGVTPEDVQGLRFTFSKTDGSVWENPATPTQPVPIQILRRDDLRSGGEVLPDLAANPSAPGEDEPGVASNTVQGTTTGADLVVDPDTGDVVPVSSGDEAEASMLYQHATNAVEIVKDFRGSLDGTEPPDAVVPMNITVTNTGDRPIVDPVITDPMPTDADGPQLRLADVDEPYSYALQGAAPDPANGSPLPTDPDDVTVDRAGNISSLEFTFPEGSVLEVGQSYTITVQVQFRVTLAANTVVENTAGVTGDRPWDQCETTLNEETGACEASADVVTVPSAVLSQSKFVKSTDDEYPLGIMVDPDQPGNVAPEDCAPNAAGFYAYPCTPIIPPGGDETWRIRVDNVGNLPMDKVVVYDRFPAVGDTGSFANSERGSAWGPYFTDDPLPQVVNTPEGSTVDYFYTTVDDYCMDDINDPVDEPVCPQDPEAGWAPLTTDLDVSILQEITAIKNVITFPQDQLFAPGQFIALDATSTTPPVPEAGDRSIAWNSAAASGVVVLPNGTEQNLLPTEGTKVGVATASGTLEVNKIVAGEGAQYAPDSFQLTVQCASAVGTWVEADLDPITITVTPGTPTVVPELPYGAECTLTEDGSDGQTELLVTPQTVTVDTETIDEQSEPASITATNVYNLSSLVVDKEVVSDAVDQDGEPITFGPFDGTVECTFLGEAVYADGYDADTPMTFELSDGDSVEFTGLPVGSECAVTETGTGNASSTTITVQHGLQEPETYDGTSAVLDLLGDVVQIPRNSVTLTNTFDVGSLDLLKVVDGDGADAYGTGPFTIEVLCTFDDDGDGPGAPRTVYEDTVTLGGAGPLEAQISNVPAGAVCTVTETDDAGATGAVVVPETVTIGASEPVEVVVTNTFDVGAIEVAKELQGLGALYGPGPFEVTLACTYEDAELAIPGGATRTLEAGDTILYVGLPVGSECLVTETGDGGATTVEISTTVDGGEPGEVVVTGGDDPVAITVTNTFQLSPLLVEKVVDGEAAEFAPSMPDLSALPALPERPIDLAELAEFLAELDLSAIPFDQMPYQVEIGCSLNGSPVPIPSGPTRRFGPGFAAAYYGLPDGAVCTFTEVDTGGATAVSIDPETVTVDETSLLEDPVVVTVTNTYDAGAIEVVKEVDGPGAPFVSAPFEVSLACTFQGSPIDVPGGATRAVTPDVPALYEGLPVGAECTVTEVDAAGAAATTISTAVEGGEPGQVAVPATDAGPAEVTVTNTFDVGSLVVDKVVTGPGADQLGGGPFEVTVECTFQDAGIEIPGGAVRELTPGDPVTYAGLPAGAECLVTETDDGGATASEVSSVDGGAAGAVTVVAGAPGSVTVTNTFDVPPPVPGPPGPLPQTGSDVSAMVAAAVLLLLTGAAVLVSRRRGLW				NA	NA	NA	NA	NA
AK001_02486	792			hypothetical protein	ATGCCCGTGGCGAAGACGCCTCGACCGCCCACCACGCGGGACGGTCGCAGCACGCAGCGTGTCGCCGTGATCGTGCCGGCGAAGGACGAGGAGGAGCGCATCGCCGCGACCGTGCGTTCCGCGCGGGCGATCCCGCACGTGGACCTCGTGCTCGTGGTCGACGACGGGTCCGAGGACGACACCCAGCACGTCGCCCGCGAGGCGGGCGCCGTCGTCGTGCGTCATTCGCACAACCGGGGCAAGGCGGCCGCGATGGAGACCGGTGCGGCCGTGGTGGCGATGCGCGACGCGGACGGGCGCGCCCCCCGGCTCCTCCTTTTCGTCGACGGCGATCTCGGTGATACCGCGGTCAACACCGCGCCACTGGTCTCCCCGGTCCGGGCAGGTGTCGCCGACCTGGCGATCGCGCTCCTGCCGCAGCAGAAGGGTGCCGGCGGTCGCGGCATCGTCGTCGGCGCGGCGCGGCGCGCCATCCACCGGATGACCGGATGGAGCCCGACGCAGCCGCTGTCCGGCATGCGGTGCCTGACGCGGGAGGCCTTCGAGGCCGCGACCCCGCTGGCCCGAGGGTGGGGTGTCGAGACCGGGATGACGATCGACCTGCTGCGCGCCGGCTATGTCGCCGTCGAGGTGCCGTGCGACCTGCGCCACCGGCCGTCGACGAACGACCTGGCCGGTCAGCTCCATCGAGCCGGCCAGTACCGCGACGTCATGGCGGCGGTCGGTGCGCGGCAGGTGCGGCGGGCCGTCGACAGGATCGGACGAGCGGGCCGGTCGGGAGCCAGACGCTGA	MPVAKTPRPPTTRDGRSTQRVAVIVPAKDEEERIAATVRSARAIPHVDLVLVVDDGSEDDTQHVAREAGAVVVRHSHNRGKAAAMETGAAVVAMRDADGRAPRLLLFVDGDLGDTAVNTAPLVSPVRAGVADLAIALLPQQKGAGGRGIVVGAARRAIHRMTGWSPTQPLSGMRCLTREAFEAATPLARGWGVETGMTIDLLRAGYVAVEVPCDLRHRPSTNDLAGQLHRAGQYRDVMAAVGARQVRRAVDRIGRAGRSGARR	PGPT0022460_839	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022460-gpgS-K13693	NA	NA
AK001_02487	828			hypothetical protein	ATGGCCAAGTCCACCACTGAATTCGTGCTGCGTCCGTTCGAGGGTCTCCCGGGGGAGGCCGACTGGGTCTCGATGCGGGAGATCGTCCCCTCGGCGACCGCGCCCGCCCGCACCACGGCCGAGCACGGGAGCAAGGACGTCGTCGTCGCCACGGTGCTGCCCGGTGGATGGGCCGCGATGCACCGCGAGGACGGCACGGTGCTGCTCGGCGTGCAGGGGATCCTCAACTCCGACGACCTCAGCCGGGACCTGGCCGCCGCCCTGCTGGCCGCCCTCGAGGGCGAGCCGGGAACCGGCGTCCTCCCCGAGCACCTCGAGGTGGACCCCGACGGTCCGCGCCTGCAGGACGTGCTGGACGACTCGGTGTCCTTCGAGGTGACCGTCCACGACGGCTACGAGTACTGGATCGACTCCGACGCCGAGATGACCGACGAGATCAAGGCGGGTCTGGACGAGGCCGCCGACCAGTCGGTGCCGACCGTCAAGGTCGAGGGTGTCGAGGCCGCCTACTGGTGCCGCATGAGCCGAGAGTTCGTGCGCTGGGCCCGTACGGAGGACGAGGACCGCGTCGTCGACGCGATCGCCCGCATGCACGCGAAGCGCGACTCGGGTCTGGCCGGTGGCAAGTTCCTGGGCATGTTCCGCGCCTGCGGTCTCGTGGTGCCGGTGTGGGAGCTGCCCCGCGGCACGGAGGCCGACGAGCTCGCCGAGCCGATGCAGGATCTGTCGAGCCGGTTCGAGGCGGCGCTCGCCGTGGACGAGCCGCTCGACGCCACCCAGCGCCGCGCTCGCGCCGGGATCGTGTCGCGTCAGGTGACGTTGCGCTGA	MAKSTTEFVLRPFEGLPGEADWVSMREIVPSATAPARTTAEHGSKDVVVATVLPGGWAAMHREDGTVLLGVQGILNSDDLSRDLAAALLAALEGEPGTGVLPEHLEVDPDGPRLQDVLDDSVSFEVTVHDGYEYWIDSDAEMTDEIKAGLDEAADQSVPTVKVEGVEAAYWCRMSREFVRWARTEDEDRVVDAIARMHAKRDSGLAGGKFLGMFRACGLVVPVWELPRGTEADELAEPMQDLSSRFEAALAVDEPLDATQRRARAGIVSRQVTLR				NA	NA	NA	NA	NA
AK001_02488	528			hypothetical protein	ATGACCACAACGCCCGCGCGGGTCGGCAGGACCCGTCTCCTGGCAGGGGCCGGAGTCCTCGGCCTCGCCCTGTGCGCCGGCGGCGCCGCCGTGGCCACGGCGGACGACGCCGAGACGTCGTTCGCCGTGGAGGTCTCGGACGTCGCGCCGGGCCCCGGCGAGACCGTCGAGGTGACCGTCACGGCGTCCGACGCCGTGGACCTGTACGCCTACGAGCTGACGCTCGAGTACGACCGCCGCGACCTCACCTACGTGAAGGGGTCGGCCACCACGGAGATCTCGGGCTTCACGAACGAGTCCGTGTCAAAGGGGTCGCTCGAGGTCGTGCACACGAAGCTCGGGACGTCTCCGGCGGCGTCCGGCGACATCGACCTGGCCACGATGACCTTCCGGACCCACGGGCCGGGCGAGGCCGAGATCGACCTGGCCTCGGTCGTCACCGTGAGCACGGACCGGGACACCGCCACCGTCGACGACGCCGGCGTGGCGACGTTGACCGTCAGCACGCCAGGACGCGGTCGCGGCTGA	MTTTPARVGRTRLLAGAGVLGLALCAGGAAVATADDAETSFAVEVSDVAPGPGETVEVTVTASDAVDLYAYELTLEYDRRDLTYVKGSATTEISGFTNESVSKGSLEVVHTKLGTSPAASGDIDLATMTFRTHGPGEAEIDLASVVTVSTDRDTATVDDAGVATLTVSTPGRGRG				NA	NA	NA	NA	NA
AK001_02489	1815	QRSL1_2		Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrial	ATGCGTGTCGTGGCGACAGGAGCTGCCGCGACCCTCGCCGGAACGGCCGCCGTGGCCGTCGGTGCCGCGCCCGCGGCAGCTGCCGACCAGCCCGACGCCGCGTTCCTGGCCCCCTACTACAGCGAGCTCGACCTCACCGGTGACCGGCAGGTCACCACCGCCGACCTCGAGGTGCTGGCCGACGCGCTCGGCACCGGCACCAGGTCGAAGGGCTGGCACGAAGTCGCCGTCGCCGACACCGACGGCGACGGCGAGATCACTGTCGCCGACCTGGCGGACCTCTCCCAGCGCATGGTCTACGACGACGGCCCGTTCGACCTCGTCGAGGCCTCCGTCGTCGACATGCAGGCCGCGATGAACGCCGGTGTGACGACCTCGGTGGAGATCACCCAGGACTATCTCGATCGTATCGACGCCTACGACCGCACCCTGGTGGACCCGGCCGAGGACGGGCGTCCCCTGGCGTCGATCATCTCCACCAGCGATCTGGCCCTCGACAGGGCCGCGGAGGCGGACGCCGAGCGTGCCGCGACCGGCATGACGAGCATGCTGCTCGGCGTCCCGGTCGCGGTGAAGGACAACTACAACACCGTCGACATGCCGACCACCGCCGGTTGCGGCTGCTGGGACGACAACCTCACCACCGACGACGCGACCATGGTCGCCGGGCTGCGGGACGCCGGCGCGGTCGTCATGGCCAAGGCCAGCCTCGACGAGTTCGCCTACGGCTTCTCCTCGCAGTTCACCTCGTACCAGGCGGCCGGCGAGACCACGTACGTCGCCAGCCCGTACGACACCTCCCGGACCGCCGGCGGCTCCAGCGGCGGCACGGGCGCGGCCATCGCGGCGAACCTGGCCGGGATCGGCTTCGGGACCGACACCGGCGGCTCGATCCGCGTGCCGTCCTCGTACAACCAGCTCGTGGGCGTGCGACCGACCGTCGGTCTCGCGAGCCGCGACGGGATCGTGCCGCTGGCGCTCAGCCAGGACACCGGCGGCCCGATGACCCGCTCCGTCACCGATGCCGCCGTGGCGTTGGACGCCGTGGTGGGCGTGGACGAGAACGACCCGGTCACCGCACGGCAGGAGGGACTGGTCCCCGAGTCCTACACCGCCTACCTCGACGCCGACGCTCTCGACGGCGCCCGCATCGGCTACGTGCCCTCGATGCTCGGGAGCAACGCGACGACCACCCGCCTCTGGGCGGAGGCCGTCGAGACCTTCGAGTCCCTCGGGGCCGAGGTCGTGGAGATCGAGGCGCCCGAGGCCTTCGCCACGGTGCTCGCCGAGGGCTCCGGCAGCACGCCGGAGTTCCGGCACGACCTCGCCGAGTACGTCGAGGCGTACCTCGCTCCGGAGGTCGAGGCACGCACCCTGCCGGAGATCGTCGACACCGGGCGGTTCGTCACCAGCAGGCAGCGGACCTACGAGCGTCGTGCGGCGGTCACCGAGGAGGAGTACGAGGCGTGGGCCGGCCCGGACGGTTCGCACACCCAGCTGCTCGCGATGGGCAAGGAGCTCGTGACCGGCATGCTCGACGAGGCCGAGCTCGACGCCCTGGTCTACCCGTCGGGGAATCCCTACCGCACCCAGGGCCGCAACCTGCGCCTGAGCCCGAACACCGGCATGCCGTCCGTCACCGTCCCCATGGGGCAGGCGATCCCCGCCGACGGCACCATCGACGGCGCCGGCGTCAACCTCGAGTTCCTCGGCCGCGACTTCGACGAGGGCTCCCTGCTGGGCCTGACCTACTCCTTCGAGCAGGCCACCGGCGCGCGGACGGCTCCCGCCCTGTATGGGGAGATCGCCCCGTGA	MRVVATGAAATLAGTAAVAVGAAPAAAADQPDAAFLAPYYSELDLTGDRQVTTADLEVLADALGTGTRSKGWHEVAVADTDGDGEITVADLADLSQRMVYDDGPFDLVEASVVDMQAAMNAGVTTSVEITQDYLDRIDAYDRTLVDPAEDGRPLASIISTSDLALDRAAEADAERAATGMTSMLLGVPVAVKDNYNTVDMPTTAGCGCWDDNLTTDDATMVAGLRDAGAVVMAKASLDEFAYGFSSQFTSYQAAGETTYVASPYDTSRTAGGSSGGTGAAIAANLAGIGFGTDTGGSIRVPSSYNQLVGVRPTVGLASRDGIVPLALSQDTGGPMTRSVTDAAVALDAVVGVDENDPVTARQEGLVPESYTAYLDADALDGARIGYVPSMLGSNATTTRLWAEAVETFESLGAEVVEIEAPEAFATVLAEGSGSTPEFRHDLAEYVEAYLAPEVEARTLPEIVDTGRFVTSRQRTYERRAAVTEEEYEAWAGPDGSHTQLLAMGKELVTGMLDEAELDALVYPSGNPYRTQGRNLRLSPNTGMPSVTVPMGQAIPADGTIDGAGVNLEFLGRDFDEGSLLGLTYSFEQATGARTAPALYGEIAP	PGPT0006115_146	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426	NA	NA
AK001_02490	1284			hypothetical protein	ATGGTCCGCGTCGCGCCCGGGGGCGTCCAGCAGCCAGGTCGCCGTCCGGGCCAGGGACACCGAGACCTCGCGTCCGCGGCCGTCGCGCGTCCTGTCGGTGAGCGCGTCCAGCACCCCGGCGGCCAGCAGGTAGCCCGTGGCGTGGTCGAGGGCCTGGGCCGGCAGGGCTCCCGGCGGGCCGCCGTCGGGCGCCTCGATCATCGCGATGCCGCACGCCGCCTGGACGATGGAGTCGAACCCGCGCCGCGTCCCCCACGGGCCGGCGGTGCCCCAGGCCGAGACCCGGGCGTGCACGGTGCGGGGCGGCACCACCAGCCCGTGCGCCTCCACGGCGCCGGGCCGGTATCCGGTGACGAGCACGTCGGCCGTGTCGAGGAGCTCCTGGGCGCGGGCCCGGCCGTCGCGTCCGCCCAGGTCGAGCAGCGTGGATCGTTTGCCCTGGCCGGTGTCGAGGTGCTGCGCGGCGATCTCGGCGGGTTCCGGGGGGTCGACGCGCAGCACGTCCGCGCCGAGCAGCGCGAGGGTGCGGGTGCCGACCGGGCCGGCGACGACGCGGGTCAGGTCCAGCACCCGGACCCCGGCGAGCGGTGTCGGTCCGGTGACCTCCGGTGCGCCGCGCCCGGGGGTGTCAGCGGCGGCCACCGGCTCGTCCGCGGCTGGACGGACGGCGGTGCGGACCAGCGGGCCGACGGCGGCGGCCCGGCCCGGTGCGGACGCGCGCCACTCGGCCTCCGTGCGGACCCGCACCGCGATCGCGCCGGCCGCCGCGGCGTCGTCCTCGACCGTGCAGGCCGCGGCCGTCGCGAGCCGACCGGCCAGCTGGTCGCGGGTGGCGTCGTCGGGCAGGTCGAGCAGTCCCAGCAGCCGGGTGCGGTGGTGGGGGTAGTTCGCGTGGGTGCGGACCCAGCCGTCGGCGGTGGGGAAGAACCCGGAGTGCGGGGCGAACCCGGCGACCGGTGCGTCGTCGATCCGCAGCAGGCGGTCGGATCCGAACGAGGCGGCGACGCGGGACGGGTCGAGCGAGGCGTCCACGAGGGGGCCGGTCGCTCCCGCGCGGCGGGCGGCCCTGCGCAGCTCCTCGAGCGCGTGGGTGGCGAGGTCTGCGACCGGCAGGGTCGCGGCGAGCCAGCTCATGGGGCGACGCTACGGCGGATCGGGTGCGTCGGGGAGAAGACGAAAAGTGATCGAAACGATTCGTGCCGTGGCCGGAAACCTCGTCGTCCTAGCGTCGTGCCAGGCCGCGCACGAGCACGGCCCCACCCGACCGGAGGAGTACGTCCGTGA	MVRVAPGGVQQPGRRPGQGHRDLASAAVARPVGERVQHPGGQQVARGVVEGLGRQGSRRAAVGRLDHRDAARRLDDGVEPAPRPPRAGGAPGRDPGVHGAGRHHQPVRLHGAGPVSGDEHVGRVEELLGAGPAVASAQVEQRGSFALAGVEVLRGDLGGFRGVDAQHVRAEQREGAGADRAGDDAGQVQHPDPGERCRSGDLRCAAPGGVSGGHRLVRGWTDGGADQRADGGGPARCGRAPLGLRADPHRDRAGRRGVVLDRAGRGRREPTGQLVAGGVVGQVEQSQQPGAVVGVVRVGADPAVGGGEEPGVRGEPGDRCVVDPQQAVGSERGGDAGRVERGVHEGAGRSRAAGGPAQLLERVGGEVCDRQGRGEPAHGATLRRIGCVGEKTKSDRNDSCRGRKPRRPSVVPGRARARPHPTGGVRP				NA	NA	NA	NA	NA
AK001_02491	927	ppx1	COG0248	Exopolyphosphatase 1	ATGCGTCTCGGCGTCATCGACATCGGTTCCAACACCGTCCACCTGCTGGTGATGGAGGCACGCCACGGCGCGCGGCCCGTCCCGCAGGCGAGCCACAAGACCACCGTGCGGCTCATGCGCTACCTGCAGCCGGACGGGTGCCTCTCTCCCGACGGCGTCGCGGCGCTGCAGGAGGCGGTCGGCGAGGCCGCCGGGGTCGGCCGCGAGCACGGGATCGAGGGCACGATGGCCCTGGCCACGTCGGCGCTGCGGGAGGCCACCAACGGCCCGGAGCTCATCGAGGACCTCTCCGAGCGCATCGGCGTGCCGATCGAGGTCCTGGAGGGTGACGAGGAGGCGCGCCTGACGTTCCTGGCGGCGCGCCGCTGGTACGGCTGGGGTGCGGGCCGGTTGCTGCTGCTGGACATCGGCGGCGGTTCGTTGGAGATCGCCACGGGGGTGGACGAGTCGCCCGACGTGGCCCTCTCGGTCCCTCTGGGTGCGGGACGGATGACACGCGAGTTCCTGGCGGCCTCGGACCCGCCGAGCCCGAAGGACGTCGAGCGGCTGCGCAAGCATGCGCGCCGCGTGCTGCGCGACGCCGTCCGACCCGTGACGAAGGCGCCGGGTCCGGACCATGCGGTGGCGACGTCGAAGACGTTCCGGTCGCTCGCGCGCCTGGCGGGCATGCCTCGACAGGTCATGGGGACGGGGGACCGGTGGCGGATGCGGCAGGAGCACCTGGCCGACTGGGAGCCGCGGCTGGCGAAGCTGTCCTCGGCCGACCGCACGGTGCTGCCGGGGATCGGGCCGGGCCGGGCCACGCAGGTGGTCGCCGGGGCGGTCGTCGCGGAGGAGACGATGCGTGCGCTCGGTGTCGACGAGGTCGAGATCTGTCCGTGGGCGCTGCGCGAGGGGGCGATCCTGCAGCGGCTCGACCGCCTCTGA	MRLGVIDIGSNTVHLLVMEARHGARPVPQASHKTTVRLMRYLQPDGCLSPDGVAALQEAVGEAAGVGREHGIEGTMALATSALREATNGPELIEDLSERIGVPIEVLEGDEEARLTFLAARRWYGWGAGRLLLLDIGGGSLEIATGVDESPDVALSVPLGAGRMTREFLAASDPPSPKDVERLRKHARRVLRDAVRPVTKAPGPDHAVATSKTFRSLARLAGMPRQVMGTGDRWRMRQEHLADWEPRLAKLSSADRTVLPGIGPGRATQVVAGAVVAEETMRALGVDEVEICPWALREGAILQRLDRL	PGPT0002595_5304	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524	NA	NA
AK001_02492	381			hypothetical protein	ATGGACAGCTTCTGGGACTACATCTGGTTCCTGCTCTGGATCTTCCTGTTCATGGCGTATCTCATCGTCCTGTTCCAGATCTTGACCGACCTCTTCCGGGACCACACCCTCAGCGGGTGGTGGAAGGCGGTCTGGGTCGTCTTCCTCATCTTCATCCCTCTGGTGACCGCGCTGGTCTACCTCATCGCGCGCGGTCGCGGCATGGCCGAGCGCAACCTCGCGGCCGTGAAGGAGTCCAAGGCGGCGACCGACGACTACATCCGCTCGGTGGCCACCCAGCCGGCGCCGGCGGACCAGATCGCCTCGGCCAAGAAGCTGCTCGACGAGGGCACCATCACGCCCCAGGAGTTCGAGTCGATCAAGGCCAAGGCCCTCTCCTGA	MDSFWDYIWFLLWIFLFMAYLIVLFQILTDLFRDHTLSGWWKAVWVVFLIFIPLVTALVYLIARGRGMAERNLAAVKESKAATDDYIRSVATQPAPADQIASAKKLLDEGTITPQEFESIKAKALS				NA	NA	NA	NA	NA
AK001_02493	1398	hemA		Glutamyl-tRNA reductase	GTGGTTCTCCTCTCCCTCACCGCCTCCCACCGCGAGCTGGACCTGGACGCGCTCGAGCGCCTGTCGTCCGGCTCGCACTCCGTGGGCCGTGAGGTCGTGGGCACGTGCCGGCCGGTCCAGGGCGCCGTGGTGATCTCCACGTGCAACCGCTTCGAGCTGTACCTCGACGTCGACGCGCCCCTGGACGGCGACGCCGTCCGGCACGCCACGCGGCACGTGGCCGACCTCGTCGCCGCCTCCTCGGGCGTCACGACGGCCACCGCCGCGGACTCCTTCACCGTGCGCACCGGCTCCGAGGTCGCCCAGCACCTGTTCGGCGTCGCCGCCGGGCTGGACTCGATGGTCGTCGGGGAGCGGGAGATCGCCGGGCAGGTGAAGCGCTCCCTGGTCACGGCGCGCGAGGACGACACCACCTCCAAGACCCTCGAGCTGCTGTTCCAGACGGCGTCGCGCACCTCCAAGCGGGTGGGGCACCACACCACGCTCGGCGGGGTCGGGCGCTCGCTGGTCGCGCTCGGTCTCGACCTCGCGGGGGAGACCCTGCCGCCCTATCCGGCCGCGCGGGCCGTCATCATCGGCACGGGCGCCTACGCCGGCGCCTCCGTCGCGGCCCTGCGGGCCCGCGGCTGCACCGACGTGCGCGTCTACTCCCGCTCCGGCCGGGCCGCCGACTTCGCCGCGTCGCACGACGTCCAGGCCGTCGGCACCGGGCTCGAGGAGCTCGTCGAGGCGCTCGAGGACGTCGACGTCGTCGTGTCGTGCTCGGGTGCACGGGGGCGTGCCCCGGGCGCTCCGGGTGCCGCCGGGGCGGAGGCCTCGCTGGCCTACGTCCTGGACGCGGCGGCCGTGGCCCGCGCCCGGGAGCGCGCCGCCGCCCGGGCCGAGGACGCGCCGGAGCCCCCGGCGCTGGTCATCCTGGACCTCGCCCTGCACCGGGACGTCGACCCCCGGGTCGCCGACGTCGAGGGCGTGCTGCTGTACGACCTGTCGACCCTCAAGGCGCACGCTCCGGCCACGGACCACGCGGAGCTGGAGCGGGCCCACGGCCTGGTGGACGACGCCGCCGTCCGGTTCGAGGAGACGCGGCTGGGCCGCGCGGCCGACGCCGCCGTCGTGGAGCTCTTCGACGACGCCGAGCAGCAGGTCGACCGCGAGGTCGCCCACGAGACCGCCCGTCTGGCGGACGAGCTGGCGCCCCGGGGCCAGCGGCCGACCGAGGCCGACGTCGAGCGCATCGCGCGGTCGGTGCGCCGTCGGGTGCACACCGCGCTGCACGACCGGATCGTGGCCGTGCGGGCCGCCGCGCTGGCCGAGGCGCGGGCCGCGGAGGCGGCGGTCGTCGAGGGCGCGGAGCAGACGCTCCGGACGTCTCGGGCAACACCGGCCTCACGCGCATAG	MVLLSLTASHRELDLDALERLSSGSHSVGREVVGTCRPVQGAVVISTCNRFELYLDVDAPLDGDAVRHATRHVADLVAASSGVTTATAADSFTVRTGSEVAQHLFGVAAGLDSMVVGEREIAGQVKRSLVTAREDDTTSKTLELLFQTASRTSKRVGHHTTLGGVGRSLVALGLDLAGETLPPYPAARAVIIGTGAYAGASVAALRARGCTDVRVYSRSGRAADFAASHDVQAVGTGLEELVEALEDVDVVVSCSGARGRAPGAPGAAGAEASLAYVLDAAAVARARERAAARAEDAPEPPALVILDLALHRDVDPRVADVEGVLLYDLSTLKAHAPATDHAELERAHGLVDDAAVRFEETRLGRAADAAVVELFDDAEQQVDREVAHETARLADELAPRGQRPTEADVERIARSVRRRVHTALHDRIVAVRAAALAEARAAEAAVVEGAEQTLRTSRATPASRA	PGPT0003650_621	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492	NA	NA
AK001_02494	1005	hemE	COG0407	Uroporphyrinogen decarboxylase	ATGCGGCAGGCCGGCCGCTCGCTGCCCGAGTACCGCGAGGTGCGCGAGGGCATCCGGATGCTCGAGTCGTGCCTGCGGCCCGACCTGGCCGCCGAGATCACGCTGCAGCCGGTGCGCCGCCACGGTGTGGACGCGGCGATCTTCTTCAGCGACATCGTCGTGCCGCTGAAGCTCGCCGGGGTGGACGTCGAGATCGCCTCCGGCGTCGGCCCGGTCATGGACCGCCCGTACCGCACGGCCGCCGACATCGACGAGCTGGTCTCCCGCGACCTCGACGAAGCCGCGCTGGCCCCGATCACCGAGGCCGTGCAGCGCACCGTCGCCGAGCTGTCCGACGGCGCCGCGTCCACCCCGCTCATCGGGTTCGGGGGCGCGCCCTTCACGCTCGCCGCCTACCTGGTCGAGGGGCGCCCGTCGCGGGACCACCTGGCCGCACGCACCCTCATGCACGCCGACCCGGAGACCTGGCAGCGCCTGACCACCTGGACCGCCGACCTCACCGGCCGGTTCCTGCGGGCCCAGGTCCTCGCCGGCGCCAGCGCCGTCCAGCTCTTCGACTCCTGGGCCGGGTCGCTGTCGCTGGCCGACTACGTCACCCACGTGGCGCCGTCGTCCACGCGGGCCCTGCGTCACGTCGCCGACCTGCGCACGCCCGACGACGCCGGCGTGCCCGGCATCCACTTCGGCACCGCGACCGGCCACCTGCTGCCCGCCCTGCGCGACGTCCTCGTCGACGCCGGGGTGACCCACCGCACCGTCGGCGTCGACTACCGCACGCCGCTGGACGAGGCCGCCGGCCGCCTCGGCGACGACGTGCCGCTGCAGGGCAACATCGACCCGGCGCTGCTCGGCGCCCCGTGGCCCGCGCTGGAGGCGCACGTGCGCGACGTCGTCGAGCGGGGTCGCACCGCCCCCGCGCACGTGGTCAACCTCGGCCACGGCGTCCCGCCGACCACCGACCCGACGGTGCTCACCCGCGTCGTCGAGCTCGTGCACTCGCTGTGA	MRQAGRSLPEYREVREGIRMLESCLRPDLAAEITLQPVRRHGVDAAIFFSDIVVPLKLAGVDVEIASGVGPVMDRPYRTAADIDELVSRDLDEAALAPITEAVQRTVAELSDGAASTPLIGFGGAPFTLAAYLVEGRPSRDHLAARTLMHADPETWQRLTTWTADLTGRFLRAQVLAGASAVQLFDSWAGSLSLADYVTHVAPSSTRALRHVADLRTPDDAGVPGIHFGTATGHLLPALRDVLVDAGVTHRTVGVDYRTPLDEAAGRLGDDVPLQGNIDPALLGAPWPALEAHVRDVVERGRTAPAHVVNLGHGVPPTTDPTVLTRVVELVHSL	PGPT0008465_513	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599	NA	NA
AK001_02495	1449	hemY	COG1232	Protoporphyrinogen oxidase	GTGAGCCAGCAGGTGGACGCCGTCGTCGTCGGCGGCGGGATCGGCGGGCTCGTCGCCGCCAGCACGCTCATCGACCGCGGCCTGCACACCATCGTGCTCGAGGCGTCCCCGCGCCTCGGCGGCCCCATCCGCGGCGGCTCGTTCGAGTCGCTGCCGCGCGTGCCGATCGACCTCGGCGCCGAGTCGTTCGCCTCGCGCGGCACGGCGGTCGCCGAGCTCGCCGCCCGTCTCGGCCTCGACGTCGTCGCCCCCGCGCCGCTGACCGCCTGGGGCTACGCCGCCGGCCGACCCTTCCCGCTGCCCGCCGCCGGTGTGCTCGGCATCCCCGCGGTCCCGTGGGCGTCCGACGTCCGCCACGTGATCGGCTGGACGGGCGTGGCCCGGGCGTCCCTGGACCGGGTCCTGCCGCGGTTCGTCGGCGCGGACGCCCACGACCTCGACGCGCTGGTGCGCGCCCGGCTCGGCGCACGGGCCACCGACCGGCTCGTCGCACCCGTCGCCACCGGCGTGCACTCCGCGCCGCTGGACCGGCTGGACGTCGCCGCGGTCGCTCCCGGCCTGCGCGACCGGTTCGCCGTCGAGGGCTCGCTGACCCGTGCCGTCGCCGGCCTGCGGGCCGCGGCACCGGCCGGGTCGGCGGTGCGCGGCATCGCGGGCGGGTTGCACGGCATCGTCGAGGCGCTGGCCGGCCAGATCGCCGCGAGCGCCGAGGACTGGACCGACTCGCCCACCACCGACGCGACCGGCCCCATCCACACCACGCTGCGGCTCGGTCACGAGGTCGTGGGGATCGAGCGGGCCGACGACGGCGGCTGGGTCGTGCGCTCGCGGGCCACGGCCGCGCAGGTGCGCGGCGGCCGCGGGTCGGTGCACACCACGACGGCCCCGCGCCTGGTCGTGGCCACGCCCGCCGTGGCACCGATGCTCGAGCCGTGGACCGACGTCGTGCCGCGCCCGGAGCAGGGGGCGGACGTGTGGCTCGCGACGCTGCTGCTGGACGCCCCCGAGCTGGACGCCGCCCCCCGCGGGTCCGGCATGCTCGTGGCGCCGGACGCCGGGCCGGTCCGGGCCAAGGCGATGACCCACGCGACGGCGAAGTGGCCGTGGCTCGCCGACCGGGTCCGCGCCGCCGCCGGCGAGGGGATGCACGTGGTGCGGCTGTCGTACGGACGGCTGGGCGAGCCGACCGTGCCCCCGACGGCCGAGGAGGCCGCGCGGGACGCCGCCGAGCTGTTCGGCGTGCCGGTGGCGGACCGCGTCGTCGACCACCTGCTGCAGCGCTGGGACGGTGCGCTGCCCCCGCCGACGCCCGCCTACCGGACGGCCGTGGCCGACCTGGCAGCCGCCGTCGGCCGCACCCCGGGTCTGGCCACGACCGGCGGGTGGGTCGCCGGGACCGGGCTCGCCTCGATCGTCGCGCACGCCCAGGCGACGGTCGCGGGACTCTGA	MSQQVDAVVVGGGIGGLVAASTLIDRGLHTIVLEASPRLGGPIRGGSFESLPRVPIDLGAESFASRGTAVAELAARLGLDVVAPAPLTAWGYAAGRPFPLPAAGVLGIPAVPWASDVRHVIGWTGVARASLDRVLPRFVGADAHDLDALVRARLGARATDRLVAPVATGVHSAPLDRLDVAAVAPGLRDRFAVEGSLTRAVAGLRAAAPAGSAVRGIAGGLHGIVEALAGQIAASAEDWTDSPTTDATGPIHTTLRLGHEVVGIERADDGGWVVRSRATAAQVRGGRGSVHTTTAPRLVVATPAVAPMLEPWTDVVPRPEQGADVWLATLLLDAPELDAAPRGSGMLVAPDAGPVRAKAMTHATAKWPWLADRVRAAAGEGMHVVRLSYGRLGEPTVPPTAEEAARDAAELFGVPVADRVVDHLLQRWDGALPPPTPAYRTAVADLAAAVGRTPGLATTGGWVAGTGLASIVAHAQATVAGL	PGPT0008475_747	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008475-hemY-K00231	NA	NA
AK001_02496	726	speE		Polyamine aminopropyltransferase	ATGGCCCTGCGCTTCGAGGAGCTCGACTTCCAGCCGACCCCGATGGGCGAGATCAGCCTGCGCCGTCGGTACGACCCGGCCGCGCGCCAGGACGTCTACGAGGTGCGCCTCGGCGACGAGTACCTGATGTCGAGCCTGTTCACCGCCGCCGAGCGGGCGCTGGCGACCCTGGCGCTCGACGTCCTCGACACCGGTCCCGACACAGGTCCCGATACGGGGCTGCGGGTGCTGGTCGGTGGTCTCGGCCTCGGCTACACGGCCCACGCCGCGCTGGCCGACCCGCGCGTCGCGGCCCTCGACGTCGTCGAGTACTCCGCGCCCGTGCTGGACTGGCACCGGCGCGAGCTGCTGCCCGACACCGCCGGCCTCGCCACGGACCCGCGCTGCCGGCTGGTCCAGGACGACTTCTTCCGCCGGATGGGTGCCGCCCCGCAGGACCGCTACGACGCGATCCTGCTGGACATCGACCACACCCCGGACCACGTGCTGCACCCGAGCCACGCCGCGTTCTACACCGCCGACGGGCTGCGGGCGGCGGCCGAGCACCTCACGCCGGACGGCGTGTTCGCGCTCTGGTCGGACGACCCGCCCGAGCCGGTCTTCGAGGCGACCCTCGACGAGGTCTTCGCCGAGTGCGCGTCCCACCCGGTGCGGTTCCCCAACCCGATCACGGGCGGGGAGTCCGCCAACACGGTGTACGTGGCCCGCGGACGGGCCGCGCGGTAG	MALRFEELDFQPTPMGEISLRRRYDPAARQDVYEVRLGDEYLMSSLFTAAERALATLALDVLDTGPDTGPDTGLRVLVGGLGLGYTAHAALADPRVAALDVVEYSAPVLDWHRRELLPDTAGLATDPRCRLVQDDFFRRMGAAPQDRYDAILLDIDHTPDHVLHPSHAAFYTADGLRAAAEHLTPDGVFALWSDDPPEPVFEATLDEVFAECASHPVRFPNPITGGESANTVYVARGRAAR				NA	NA	NA	NA	NA
AK001_02497	450	mgsA	COG1803	Methylglyoxal synthase	ATGGACGCCGTCCGGCACGACATCGCTCTGGTGGCGCACGACAACAAGAAGGTCGAGCTGCTGCGCTGGGCGGAGTTCAACCGGGGCACGCTCTCTGGTCACGCGCTGTGGGCCACGGGCACGACCGGCACGATGCTGGAGTTCGAGCTGGGGCTGCCGGTGCACCGGCTGCTCTCGGGCCCGGTCGGGGGAGACCAGCAGATCGGCGCCAAGATCGCCGAGGGCACGATCGACATGCTGATCTTCTTCTGGGACCCGCTCGAGGCGCAGCCCCACGACCCCGACGTCAAGGCGCTGCTGCGCCTCGCCGCCGTGTGGAACGTGCCGATGGCCTGCAACGTCGCCACGGCGGACATGATGATCTCCTCGCCGATGATGCACCAGGACTACACGGCGAACCGCCCGGTGATCGACCAGCGCGGCTGGGTCGGCGGGGAACCGGCCGAGTGA	MDAVRHDIALVAHDNKKVELLRWAEFNRGTLSGHALWATGTTGTMLEFELGLPVHRLLSGPVGGDQQIGAKIAEGTIDMLIFFWDPLEAQPHDPDVKALLRLAAVWNVPMACNVATADMMISSPMMHQDYTANRPVIDQRGWVGGEPAE	PGPT0001780_667	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001780-mgsA-K01734	NA	NA
AK001_02498	996			hypothetical protein	GTGTCAGACGTCGACACACTCGTCAAGCGGATCGCAACGCGATGGCACGACGACGGGGTCGAACTGACCCTCGCGGGCCCGGTGGCCCGCATCGAGGTCGACGGGATGTCGTCCGAGAGACGGTGGTGGTGGTTCGACGCCAAAGACCCGGAGCATCGCCGAGCTCTGCGGGCGGCGGACAGCCTCGAGGACCTCTTGCTCATCGGCGACAAGATCCCCCTCTCCGTCGCTGAGCGCACGCGAGAACGCGGAGGCTGGCACATCGATGCCGCGGGGAACGCCTACGTTCGCGCCCCCGGTGTGCACATCGACGTTCATGGACGCCGCACGGCGTCACGGACCGAGCGGAAGACCAGACTGTCGACGGCACAGGAGACGAACCTCATGAGCGCAGGACGCGCCCAGGTCATCTTCTGCCTGCTCAGCTGGCCAGACCTGGTGAGCATGCCGATCCGCGCCATCGCCGACGTCGCCGGCGTATCGCCCGGCACCGCGCACACCACCATCAAGGCACTCACGGAGGAGGACTACCTCTTTCTCGGCGCCTCCGTCATCGCCCGCCGAGAAGAGCTGCTCGATCGATGGGCGACAGCATTCCCCCTCGGACTCGGAAGATCACTCGAGCTCGGCAGATTCTGCGGGAAGCCCGATCTCAGCGCATGGGAGGCGACGGGGAGCAGCGTCCGTGTGAGCGGCGAGTACGCCGCGGACAACATCCGCGGAACTGACCTCACCCTGTACGCCAAGGAACTGGAACCCGCACTGATCGCGCGCTCACGTTGGCGCAGGCCCGAACCGGGTGAGTCAGCCAACATCATCGTGCGCCGCAAGTTCTGGACCGAGCCGACGTCACCACTCGGCAGGAACACCGGGGCACCCTCGATCCGGAGAGCACCCGCGCTTCTCGTCTACGCCGACCTGCTCGCCTCTCGAGAGCCGAGACAACAAGAGACTGCACGAGCGATGCGGGGAGACCTGGTTGACCAGGGCGGCTGA	MSDVDTLVKRIATRWHDDGVELTLAGPVARIEVDGMSSERRWWWFDAKDPEHRRALRAADSLEDLLLIGDKIPLSVAERTRERGGWHIDAAGNAYVRAPGVHIDVHGRRTASRTERKTRLSTAQETNLMSAGRAQVIFCLLSWPDLVSMPIRAIADVAGVSPGTAHTTIKALTEEDYLFLGASVIARREELLDRWATAFPLGLGRSLELGRFCGKPDLSAWEATGSSVRVSGEYAADNIRGTDLTLYAKELEPALIARSRWRRPEPGESANIIVRRKFWTEPTSPLGRNTGAPSIRRAPALLVYADLLASREPRQQETARAMRGDLVDQGG				NA	NA	NA	NA	NA
AK001_02499	1041	hemC	COG0181	Porphobilinogen deaminase	GTGAGCCCCCTCGACGTCGAACACCTGCGCCTCGGCACCCGGGCCAGCCGGCTGGCCACCACCCAGTCCGGGTTCGTGGCCCGCCGCCTGACCGAGCTGCTCGAGCACCCAGTGGAGCTCGTGCACGTCCGCACCCAGGGCGACGCGGACCGCACCACCTCGCTGTCCGCGCTCGGCGGCACGGGCGTCTTTGTCGCGGCGCTGCGTGAAGCCCTGCTGGAGTCCCGGTGCGACGTCGCCGTGCACTCGCTGAAGGACCTGCCGACCACCCAGCCCCCCGCCCTGGCGTTCGTCACCCCCGAGCGCGAGGACCCCCGCGACGCCCTGTGCGCCCGCGACGGGCTCACGGTGGAGACCCTGCCCCGCGGCGGCCGCGTCGGCACCGGCTCGCCGCGGCGCGCCGCCCAGCTCCAGGCCGCCCGTCCGGACCTGGAGATCGTCGACATCCGCGGCAACGTCGAGACGCGGCTGGCCCGCGCGCTCGGCGAGGACGCCGACCTCGACGCGGTCGTGCTCGCCTTCGCCGGCCTGAGCCGTCTGGGCCGCACCGAGGTCGTCAGCGAGGTGCTCGACCCCGCCGTCGTGGCCCCGGCCCCCGGCCAGGGCGCCCTCGCGGTCGAAGCCCGCAGTGCCGACCTGGCCGACGGCGGCCCGCTCGCCGAGGCGTTCGCCGCCCTGGACCACCGGCCCACCCGGCTCGCGGTCACCGCCGAGCGCGCGGTCCTCGCCCGCCTCGAGGCCGGGTGCGCCGCCCCGATCGGCGCCTACGCCCGGCTGGAGGACGGCGAGCTCGTGATGTCGGCGGCCGTCGGCCGGGTCGACGGCGCCGAACAGCTCACGCACACCGCGCGCGTCGCCGTCGGGCCTGACCTGGCCGACGCCGCGGCGGACACCGAGGCCCGCGAGCTCGGCGTGCGCGTCGCCGAGCGGCTGCTGGCCGACGGGGCCGCCCGGCTGGCTCCCCTGACGGCCGCGGCACCGCCGGCCCCGCGCGAGCCGCAGCGGGGACCGACGGGGACGGACGACCCGGAGGTCCCGTGA	MSPLDVEHLRLGTRASRLATTQSGFVARRLTELLEHPVELVHVRTQGDADRTTSLSALGGTGVFVAALREALLESRCDVAVHSLKDLPTTQPPALAFVTPEREDPRDALCARDGLTVETLPRGGRVGTGSPRRAAQLQAARPDLEIVDIRGNVETRLARALGEDADLDAVVLAFAGLSRLGRTEVVSEVLDPAVVAPAPGQGALAVEARSADLADGGPLAEAFAALDHRPTRLAVTAERAVLARLEAGCAAPIGAYARLEDGELVMSAAVGRVDGAEQLTHTARVAVGPDLADAAADTEARELGVRVAERLLADGAARLAPLTAAAPPAPREPQRGPTGTDDPEVP	PGPT0003660_857	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749	NA	NA
AK001_02500	801			hypothetical protein	GTGACCGCACCGGGCCCGGGACCCGACCTGACGGGACGGTCCGTGCTGCTGCCCCGCTCCCCCGACCGCGCGGCCGGGCTGGCGCGGCGGCTGCGCGACGCAGGGGCGGACGTCACCGTCGCCCCCGTGATCGAGCGCGCCCCGGCCCTCGACCAGCACGCGCTGCGCGACGCCGTGGACCGCCTGCGCGACGGCCGCTACGCGTGGACGGTGATCACCAGCGTCAACGCCGTCGACGCCCTGGCCGGCGCGCTCCCGGGGTCAGACGCCGGCACCCCGGCCGCGCAGGCCGCGCTCGCCGCCGCACCCACCCGGTGGGCCGCCGTCGGACCCGCCACCGTGCGCGCCCTGCGGTCCGTCGGCATCGAGCCGGAGCTGGTGCCCACCGACGCCTCCGCCGTGGGTCTGGTCGCCGCGTTCCCCGGTCCGTCCGAGGGGACCGCGTCACCGACCCCGCACCGTGTCCTCCTGCCGCTCGGCGACCGCGCCCGCCCCTCGCTGCGCGACGGGCTGACCCGGCTCGGCTGGACGCCCGAGGTCGTCACCGCCTACCGCACGGTGCGCTCGGAGCTGCCCGCCGACGTCGTCGCCCACGCCTACGACCTCGTGGTCGTCACCTCCGGGTCCGTGGCCCGCGAGGTCGCCGACCAGCTCGGCACCGCCGCCCCCGTCGTCGCGATCGGCCGCCCCTCGGCCGAGGTCGCCGGCGAGGTCGGGCTGACCGTCGCGGGCGTCGCGTCCGCACCGACCGACGACGGCCTCGCCGCCGCCGTCACGACCGCCCTGGAGCAGAACCCATGA	MTAPGPGPDLTGRSVLLPRSPDRAAGLARRLRDAGADVTVAPVIERAPALDQHALRDAVDRLRDGRYAWTVITSVNAVDALAGALPGSDAGTPAAQAALAAAPTRWAAVGPATVRALRSVGIEPELVPTDASAVGLVAAFPGPSEGTASPTPHRVLLPLGDRARPSLRDGLTRLGWTPEVVTAYRTVRSELPADVVAHAYDLVVVTSGSVAREVADQLGTAAPVVAIGRPSAEVAGEVGLTVAGVASAPTDDGLAAAVTTALEQNP	PGPT0003665_983	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719	NA	NA
AK001_02501	1014	hemB	COG0113	Delta-aminolevulinic acid dehydratase	ATGAGCACGTCCGGCATCGTCTACCGGCCCCGCCGTCTGCGGACCACCCCGCGCATGCGGCGGCTGGCCGCCGAGACCCGCCTGCACGCGGCGGACCTCGTGCTGCCGCTGTTCGTCAAGGAGGGTCTGACCGAGCCGGCACCGATCGCCTCGATGCCCGGCCAGGTGCAGCACACCGAGGCCACGCTGGCCGACGCCGTCACCGCGGCAGCCCGGGCCGGCGTCGGCGGCGTGATGCTGTTCGGCATCCCGGCGGTGCGCGACGCCCGCGGCACCGCCGGGGACGCGCCGGACGGGATCCTGCAGCGCGGCATCCGCATCGCGCGCGAGGCCGTCGCCGCCGCCGAGGCGGAGACCGGGCGGCCGGGGCCCGTCGTCATGGCGGACACCTGCCTGGACGAGTTCACCGACCACGGGCACTGCGGCGTGCTGACCCGCGACGGCGCGGTGGACAACGACGCCACGCTGGAGCGGTACGCCACGACGGCCGTCGCCCAGGCGAAGGCCGGGGCCGAGGTCGTCTCGCCGTCGGGCATGATGGACGGCCAGGTGGCGGTGATCCGCGACGCGCTGGACGACGCCGGCTTCGAGGACGTCTCGATCCTCGCCTACAGCGCCAAGTACGCCAGCGCCTTCTACGGCCCGTTCCGCGAGGCCGTCGACTCGGCCCTGCAGGGCGACCGCCGGACCTACCAGATGGACGCCGCCAACGCCCGCGAGGGCCTGCGCGAGGCCGACCTGGACATCGCCGAGGGCGCCGACATGGTGATGGTCAAGCCCGCCGGGCCCTCCCTGGACGTGCTGCGCGGCGTGGCCGACCGGGCCGAGGTGCCGGTCGCCGCCTACCAGGTCTCCGGCGAGTACGCGATGATCGAGGCGGCGGCCGCGAACGGCTGGATCGACCGCCGGGGCGCGGTCCTGGAGTCGGTGCTGGCGATCAAGCGGGCCGGTGCGGACGTGATCCTCACCTACTGGGCGCTCGAGATCGCCGACTGGCTCGCCGGAGCCTCCTGA	MSTSGIVYRPRRLRTTPRMRRLAAETRLHAADLVLPLFVKEGLTEPAPIASMPGQVQHTEATLADAVTAAARAGVGGVMLFGIPAVRDARGTAGDAPDGILQRGIRIAREAVAAAEAETGRPGPVVMADTCLDEFTDHGHCGVLTRDGAVDNDATLERYATTAVAQAKAGAEVVSPSGMMDGQVAVIRDALDDAGFEDVSILAYSAKYASAFYGPFREAVDSALQGDRRTYQMDAANAREGLREADLDIAEGADMVMVKPAGPSLDVLRGVADRAEVPVAAYQVSGEYAMIEAAAANGWIDRRGAVLESVLAIKRAGADVILTYWALEIADWLAGAS	PGPT0003655_1775	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698	NA	NA
AK001_02502	1374	hemL	COG0001	Glutamate-1-semialdehyde 2,1-aminomutase	ATGACGGACACCGCAGGCTTCGGCCAGGTCGAGACGGCGCTGGTGGGCGCCACGCCCCCCGCCGACAACCACACCGCGTTCCTGCGCGCGCAGGACGCGATCCCCGGCGGGGTGAACTCGCCGGTGCGCGCCTACGGCTCGGTCGGCGGGGACCCGCGGTTCCTCGCCTCCGCGCGCGGCCCGTACGTCACCGACGTGGCCGGGCGCGAGTACGTCGACCTCGTGGGGTCCTGGGGTCCGGCGCTGCTCGGCCACGCCCACCCCGAGGTGGTCGCCGCCGTGCAGGAAGCGGCCTCGCGGGGCCTGTCGTTCGGGGCGCCCACGGTGGGCGAGGTCGAGCTGGCCGAGGAGATCCGACGGCGCGTCCCGGCCGCCGAGCACGTCCGGCTCGTCTCGACGGGCACCGAGGCGACGATGACGGCGGTGCGCCTCGCCCGCGGCGTCACCGGCCGTCCGCTGGTCGTGAAGTTCGCGGGCTGCTACCACGGGCACGTCGACTCGCTGCTCGCCGAGGCCGGCTCCGGCGTCGCGACGCTGTCCATGCCGGGGTCGGCCGGCGTCACCGAGGCCTCCGCGGCCGAGACGCTCGTCCTGCCGTACAACGACCTGGCGGCCGTCGAGGCGGCGTTCGCCGCGCACGGTGACCGCATCGCCGCGGTCATCACCGAGGCGGCCCCGGCCAACATGGGCGTGGTGCCGCCGGCGCCGGGCTTCAACGCGGGCCTGCGCCGGCTGACGTCGCAGCACGGGGCGCTGCTGATCCTCGACGAGGTGCTCACCGGGTTCCGGGTCTCCGACGCCGGTTACTGGGGGCTGGCCCGGGAGCAGGGCGAGGACTGGACCCCCGACCTGTTCACCTTCGGCAAGGTCGTGGGCGGCGGGATGCCCGTGGCCGCGCTGGCCGGACCGGCGTCGGTCATGGACCACCTGGCGCCGACGGGTCCCGTGTACCAGGCGGGGACCCTGTCCGGGAACCCGGTGGCCGTGGCCGCGGGGCTCGCGACGCTGCGGCTGGCCGACGAGCTCGTCTACGAGCGCGTGGCCCAGGTGGCCGACACCGTCTCGAGCGCGCTCGGCGAGGCGCTGGACGCCGAGGGCGTGCCGCACCGTGTGCAGCGCGTCGGCTCGCTGTTCTCGGTCTTCTTCGGCGAGGCCGCGGCGCGCGACGGCGTGGCGTCGTTCGCGGACGCCCAGGCCCAGGACGTGTTCCGGCACAAGCCGTTCTTCCACGCCATGCTCGACGCGGGCGTGAACCTGCCGCCGTCGCTGTTCGAGGCCTGGTTCTGCTCGGCCGCGCACGACGAGGACGCCGTCGGTCGCGTCCTCGAGGCGCTGCCGTCCGCCGCGCGGGCCGCGGCGGCCGCGACGGCCTGA	MTDTAGFGQVETALVGATPPADNHTAFLRAQDAIPGGVNSPVRAYGSVGGDPRFLASARGPYVTDVAGREYVDLVGSWGPALLGHAHPEVVAAVQEAASRGLSFGAPTVGEVELAEEIRRRVPAAEHVRLVSTGTEATMTAVRLARGVTGRPLVVKFAGCYHGHVDSLLAEAGSGVATLSMPGSAGVTEASAAETLVLPYNDLAAVEAAFAAHGDRIAAVITEAAPANMGVVPPAPGFNAGLRRLTSQHGALLILDEVLTGFRVSDAGYWGLAREQGEDWTPDLFTFGKVVGGGMPVAALAGPASVMDHLAPTGPVYQAGTLSGNPVAVAAGLATLRLADELVYERVAQVADTVSSALGEALDAEGVPHRVQRVGSLFSVFFGEAAARDGVASFADAQAQDVFRHKPFFHAMLDAGVNLPPSLFEAWFCSAAHDEDAVGRVLEALPSAARAAAAATA	PGPT0003680_659	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845	NA	NA
AK001_02503	1296			hypothetical protein	ATGACCCGGACGATCAACGACAACGGTGCGTGGTGCTGGTTCCAGGACGAACGTGCCCTGACGGACCCGGGCACCGGGACCCTGGTGGTGGGGTCGGTGGCGGCGCCCGAGGGCCCCGGGGGCGAGGCCCGGGCCGGAACCATCGAGCTGACGGTGGTCGACCTCGCCACCGGGGGGTCCGTCGTCGTCCCGCTGCACGAGCGGCTCGAGGCCGACGACCACGACGCCCCGGCGCTCTGGCGACGCCGGGACGGCCGCTGGCTGGCCGTCTACGCCAAGCACAAGACCGACGACCTCACCCGCTGGCGGATCAGCGACACGGACGATCCCCGTGGCCCGTGGGGGCCGGAACGCACCTACGACTGGAGCGAGCGCACCGGCGGCGCCGGCGTCACCTACGCCAACCTGCACGAGCTCGACGGGCGGCTGTACTGCTTCGCCCGCGCCGTCAACGACGACCAGTGCGCGCTCGTCTCCGACGACGACGGCGAGACCTGGGCCTACGCCGGCAAGCTGTTCACGCGGCCCAAGGTCGGCTACGTCAACGGCTACACGCGGTACGCCTCACGCCCCGGGTCGCCCGACCGCATCGACGTCGTCACCACCGACCACCACCCGCGGGACTTCGACAACTCGATCTACCACGGCTACCTCGCCGACGGGGCGCTGCGGCGCTCGGACGGCAGCGTGCTCGACCCCGACCCGCTGCACGGCGAGGGGCTCTCGCAGGAGGGACTGACGACCGTCGTCGCCGCGGGCTCGGTGCACGGCGGGGTGCCCGTGACCCACTGCTGGACCACCGACGTCCGACGCGCCGCCGACGGCACCGTCGCGATGGTGGTCACCGCGCGCCACGACACCCCCGACGACCCGGCCGACGCCTTCGAGCGGTTCCGCGACGTCACGGACCACCGGTTCCTCTACGCCCGGCTCGCGCCCGGCGGCGAGTGGGAGGTCCACCACCTCGCCCTGGCCGGCCCCGGGCTGCTGCCGCACGAGCAGGACTACACGGGCCTGGCCGCGATCGATCCCGAGGACCTCGACTCGCTGTACGTCTCGACCCCCGTCGACCCCCGCGACGGCACCGTGCTGGCGCACCACGAGATCTTCCACTGCCGCACGGCCGACGGCGGCGCGACCTGGGCGTGGACGGCCGTCACCGAGGACTCCGCCGTCGACAACCTGCGTCCGATCGTCGCCCCCGGCGACCCGGGGAACCGCCCGTTGCTGTGGTTCCGCGGGGAGATGACCGCCTCGCAGCACTACCGGTGCGAGGTGGTGCTGCACGGGTCGTGA	MTRTINDNGAWCWFQDERALTDPGTGTLVVGSVAAPEGPGGEARAGTIELTVVDLATGGSVVVPLHERLEADDHDAPALWRRRDGRWLAVYAKHKTDDLTRWRISDTDDPRGPWGPERTYDWSERTGGAGVTYANLHELDGRLYCFARAVNDDQCALVSDDDGETWAYAGKLFTRPKVGYVNGYTRYASRPGSPDRIDVVTTDHHPRDFDNSIYHGYLADGALRRSDGSVLDPDPLHGEGLSQEGLTTVVAAGSVHGGVPVTHCWTTDVRRAADGTVAMVVTARHDTPDDPADAFERFRDVTDHRFLYARLAPGGEWEVHHLALAGPGLLPHEQDYTGLAAIDPEDLDSLYVSTPVDPRDGTVLAHHEIFHCRTADGGATWAWTAVTEDSAVDNLRPIVAPGDPGNRPLLWFRGEMTASQHYRCEVVLHGS				NA	NA	NA	NA	NA
AK001_02504	465	ihfB		Integration host factor subunit beta	ATGAACAAGTCCGAGCTCGCCGCGGCGGTCGCGGAGCGCACCGAGAGCACTCCCACCGAGGCCCGCCGGCAGGTCGACGCCGTCCTGGACTCCATCGTCGAGAGCGTCTCCGCAGGCGAGCGCGTCTCCCTGCTCGGCTTCGGCACGTTCACGGGCGCCGAGCGACCTGCACGGACGGCCCGCAACCCGCGCACCGGCGACACGATCGACGTCCCCGCCGCCGTCGTGCCCCGGTTCCGCGCCGGCTCGGGGTTCAAGGCGCGCGTCTCCGGCAGCGAGCCCGCGCCGGCCCGCTCGTCCGCGTCGGCCGCCTCGACCGGCACGTCGGCCGCCCCGTCGAAGTCCTCGTCCTCGAAGGCGTCGTCGAAGGACAAGAAGTCCGACAAGGACAAGGGCTCGAAGAATTCGACGAAGGACTCGAAGAAGAAGTCCAAGAAGAAGAACAAGAAGTCGAAGAAGAAGTAG	MNKSELAAAVAERTESTPTEARRQVDAVLDSIVESVSAGERVSLLGFGTFTGAERPARTARNPRTGDTIDVPAAVVPRFRAGSGFKARVSGSEPAPARSSASAASTGTSAAPSKSSSSKASSKDKKSDKDKGSKNSTKDSKKKSKKKNKKSKKK				NA	NA	NA	NA	NA
AK001_02505	357			hypothetical protein	ATGACCGAGACCGCAGCAGCCGCCCCCGAGAGCGCCGCCGTCCGCGACGACCCGGCTCCCGCGGAGCACGACGGCCCGCACGGGTACGCCTCGGACAAGGCCGCCTACCTCAAGCGCATGCGCCGCATCGAGGGGCAGGTCCGCGGCATCGCCCGGATGATCGACGACGACGTCTACTGCATCGACATCCTCACCCAGGTGTCCGCCGTGACCAAGGCGCTGCAGTCCGTGAGCCTGGCGCTGGTCGAGGACCACCTCAACCACTGCGTCGTCGACGCCGCGCGCGAGTCCGACGAGGCAGGAGCCGCCAAGGTCAAGGAGGCGACCGCCGCCATCGGCCGCCTCGTCCGCAGCTGA	MTETAAAAPESAAVRDDPAPAEHDGPHGYASDKAAYLKRMRRIEGQVRGIARMIDDDVYCIDILTQVSAVTKALQSVSLALVEDHLNHCVVDAARESDEAGAAKVKEATAAIGRLVRS	PGPT0004175_580	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600	NA	NA
AK001_02506	315			hypothetical protein	ATGAGCACCGTCACCACCCTGGGCGTCACCGGCCTGACGAGCGCCGACTCGGTCGCCCGCGTCACCGAGCAGCTCGAGACCGTCGAGCGGGTCGAGCACGTCAGCATCGTGCTCGAGTCCGACGGCGAGTCCGAGGTGAGCGTCTTCTCGGACCAGCCCGTCGACGAGGACGCCCTGCGCGGCGCCGTCGACACCGCCGGCTACGCCGTCGCCTCCGTCGAGGTCCAGACCGACGCCCTGGCCGCCCAGCAGGCCGAGCAGGCTCCCGCCAAGCAGCGGGCGCACGACGACGCCGCACGCGGCGCCGACGACTGA	MSTVTTLGVTGLTSADSVARVTEQLETVERVEHVSIVLESDGESEVSVFSDQPVDEDALRGAVDTAGYAVASVEVQTDALAAQQAEQAPAKQRAHDDAARGADD	PGPT0004125_54	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213	NA	NA
AK001_02507	2496	ctpA	COG2217	Copper-exporting P-type ATPase	ATGACCACCACCCCCACCCCCGCCGTGCGCGAGGTCGACCTCGCCGTGTCGGGCATGACCTGCGCCAGCTGCGTCGCGCGGGTCGAGAAGAAGCTCGCCAAGCTGCCCGGTGTCGAGGCCACCGTCAACCTGCCGCTCGAGAGCGCGCACGTGGTCCTCACCGAGGAGCACGACGACGACGACCTGCTGCAGGCCGTCGCCTCCGCCGGGTACACCGCGACCGTCACGCGGTCGCGGGCCGCCGCCGTGCCGTCGGAGCCGCAGCCGGAGCCGGAGTCGTCCGCGGAGCCCGCTCCCCCGACCGACGAGACGGCCGCGGGGACCGACGGGGCACCCGCCGCGAGCGACGAGGCACCCCTCGCGAGCGACGAGGCACCCGCCGCGGGCGGTGCCGAGTACCGCGGGGCGGACCTGCTGCGCCGGCTGCGCGTGTCCGCGGTGCTGACGGTGCCCGTCGTCGCGCTCTCGATGGTGCCGGCGTGGCAGTTCCCCGGCTGGCAGTGGGTCGTGGCCGCCCTCGCGCTGCCCGTGGTGACCTGGGGCGCCTGGCCGTTCCACACCGCGGCCGCCCGCGCCGCCCGCCACGGCTCGTCGACGATGGACACCCTGGTCTCGATCGGCGTCGTGGCCGCCACGCTGTGGTCGCTGTGGGCGCTGCTGCTGGGCGGCGCCGGCGAGATCGGCATGACCATGGACGTCTCCCTGCTCCCCTCGCGGGAGCACGCCGGCGCCCCGGAGCTCTACTTCGAGGTCGCCGCCGTGGTGACGACCTTCCTGCTGGCCGGCCGGTACGCCGAGCACCGCTCGAAGCGCCGGGCCGGTGACGCCCTGCGGACCCTGCTGGCCATGGGTGCCAAGGAGGCCGAACGCGTGCGCACGCGGCCCGACGGCACCCCGGTCACCCGCGACGACGGCCGGCACGTCACCGACCTCGTCGCCGTGTCCGCCCTGCGCGTCGGCGACCTGTTCACCGCGCGCCCCGGGTCCACGATCGCCACCGACGGCGAGGTCGTCGAGGGCACCTCGGCGGTGGACACCTCGCTGCTGACCGGTGAGCCCGTGCCGGTGGACGTCGGACCCGGCGACGCGGTCACCGGCGCCACCGTCAACACCTCGGGCCACCTGCTGGTGCGGGCCACCCGCGTCGGCGAGGAGACGACGCTGGCGCAGATCGGCCGCCTCGTCGCCCAGGCGCAGACGGGCAAGGCCCCCGTGCAGCGCCTGGCGGACCGCATCTCGGCCGTGTTCGTGCCGATCGTGCTGACGCTGTCCGTGCTGACGCTCGGTGGCTGGCTGCTCGCCGGCGCGGACCTGCCGTTCGCCTTCACCGCGGCGGTGGCGGTGCTCATCATCGCCTGCCCGTGCGCCCTCGGTCTGGCGACCCCCACGGCCCTGCTGGTCGGGACGGGCCGCGGCGCCCAGCTCGGCATCCTCATCAAGGGACCGGAGATCCTGGAGTCCACCCGCCGCATCGACACCGTGGTGCTCGACAAGACCGGCACCGTCACCGCCGGCGCGATGGCGCTGGAGGACGTCGTCCCGGCCCCCGGCGTCGACGCCGACGAGGCGCTGCGGTACGCCGCCGCCGTCGAGGCGCGCAGCGAGCACCCGATCGCCCAGGCGGTCGCCGACGCCCCCTCTGCCGGCGAGAACCGTCGCCCTGCGGAGACCGGGGACGACGGCGTCGCCGTCGGCGCCCTGCAGGTGTTCGACTTCCGCACCGTCCCCGGCGGGGGCGTCGAGGCGGTCGTGCGCACGGCCCACTCCGGTCTCGGCGAGACCGGGCTCGGCGTCGGGGGCCTCGGCAGCCGGCGGGTCCTCGTGGGTCGCCCGAGCTGGCTCGACGAGACCGACGTCCGGGTGCCCGACGCGGTGCGCGACGCCGTCGAGCAGGCCGAGAGCGACGGGGCGACCGCCGTCGTCGTCGCCTGGGACGGTTCCGCGCGCGCCGCGCTCGTGCTGCGCGACCCGGTCAAGCCGACGTCGGGCGAGGCCGTGCGCGAGCTGCGCGACCTCGGGCTGCGCCCGGTCCTGCTGACGGGCGACGCCGAGGGTGCGGCCCGGGCGGCCGCCGCCGAGGTCGGCATCGACGAGGTGATCGCCCGCGTCCTGCCGCAGGACAAGGCGGCGACGGTGTCCCGGCTGCAGGGCGAGGGGCGCACGGTGGCGATGGTCGGCGACGGCGTCAACGACGCCGCCGCCCTGGCCACCGCCGACCTCGGCCTGGCGATGGGCACCGGGACCGACGTCGCCATCGAGGCCAGCGACATCACGCTGGTCCGCGGGGACCTGCGGGCGGCGGCCACCGCCGTCCGGCTGTCCCGCCGGACGCTGCGGATCATCAAGCAGAACCTGTTCTGGGCGTTCGCCTACAACGTCGCCGCGATCCCGCTGGCGGCGGCCGGCCTGCTCAACCCGATGATCGCGGGGGCGGCCATGGCGGCGTCGTCGGTGATCGTGGTGAGCAACTCGCTGCGGCTGCGTCGCGCCGGCTGA	MTTTPTPAVREVDLAVSGMTCASCVARVEKKLAKLPGVEATVNLPLESAHVVLTEEHDDDDLLQAVASAGYTATVTRSRAAAVPSEPQPEPESSAEPAPPTDETAAGTDGAPAASDEAPLASDEAPAAGGAEYRGADLLRRLRVSAVLTVPVVALSMVPAWQFPGWQWVVAALALPVVTWGAWPFHTAAARAARHGSSTMDTLVSIGVVAATLWSLWALLLGGAGEIGMTMDVSLLPSREHAGAPELYFEVAAVVTTFLLAGRYAEHRSKRRAGDALRTLLAMGAKEAERVRTRPDGTPVTRDDGRHVTDLVAVSALRVGDLFTARPGSTIATDGEVVEGTSAVDTSLLTGEPVPVDVGPGDAVTGATVNTSGHLLVRATRVGEETTLAQIGRLVAQAQTGKAPVQRLADRISAVFVPIVLTLSVLTLGGWLLAGADLPFAFTAAVAVLIIACPCALGLATPTALLVGTGRGAQLGILIKGPEILESTRRIDTVVLDKTGTVTAGAMALEDVVPAPGVDADEALRYAAAVEARSEHPIAQAVADAPSAGENRRPAETGDDGVAVGALQVFDFRTVPGGGVEAVVRTAHSGLGETGLGVGGLGSRRVLVGRPSWLDETDVRVPDAVRDAVEQAESDGATAVVVAWDGSARAALVLRDPVKPTSGEAVRELRDLGLRPVLLTGDAEGAARAAAAEVGIDEVIARVLPQDKAATVSRLQGEGRTVAMVGDGVNDAAALATADLGLAMGTGTDVAIEASDITLVRGDLRAAATAVRLSRRTLRIIKQNLFWAFAYNVAAIPLAAAGLLNPMIAGAAMAASSVIVVSNSLRLRRAG	PGPT0004090_2232	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686	NA	NA
AK001_02508	798			hypothetical protein	ATGACCGCCACGACCGCCGCCGCGCAGGTCCCGCCGTCGGGCACCGTGAGCCCGGCACGCCTGACCTGGCTGCACCTGAAGTTCCAGTTCCTGGAGACCGTGCGCATCCCCGTCGCCGTGCTGGGCAACATGCTCTTCCCGTCGCTGGCGATGTTCTTCTTCGTGGTCCCGCAGAGCGACGTGGCGCAGAACCCGGTGTACGCGACCATGGCCGTGGCCGGTCTCGCCCTCTTCGCCGTCTGCTCGGCGAGCCTGTTCACCTACGGGCTCGGCGTGGCCGAGGACCGCCAGCTCCCGTTCGACCCCTTCGTGCGGTCCCTGCCGGCGGGCCCGGCACCCCGCATGGTCGCGCGGATCCTCAACGGCGCGATCTTCGCGCTGTTCGGGCTGGTGCCGCTGATCGTCATCGGCTGGCTGTTCACCGCGGCCTCGGTGACGCTGCTGCAGCTGCTGGCCGGGGTGGCGACGATCCTGGCCACCTCGGTGCCGTTCGTGCTCCTGGGCATGGCCGTCGGCTACTCGCTGTCGGCCAAGGCGGCCCTGCCGGTGGTGCAGGTCGTGCTGTTCCCGCTGGCGTTCGCCGGCGGCCTGTTCCTGCCGCCGGTGGCGTTCCCGGACTGGCTGAACACGCTGTCCCAGGGGACCCCGACCCGCGCCGGCCGCGACCTGCTCGTGCAGGCGCTGACCGGCGAGGCCGCCTACGCCGCGGCGTGGCCGGTGCTGATCGGCTGGACCGTGCTGTTCGCCGCGCTGGCCGTCGGTGCCTACCGTCGCGACGAGGGTCGACGCTTCCGCTGA	MTATTAAAQVPPSGTVSPARLTWLHLKFQFLETVRIPVAVLGNMLFPSLAMFFFVVPQSDVAQNPVYATMAVAGLALFAVCSASLFTYGLGVAEDRQLPFDPFVRSLPAGPAPRMVARILNGAIFALFGLVPLIVIGWLFTAASVTLLQLLAGVATILATSVPFVLLGMAVGYSLSAKAALPVVQVVLFPLAFAGGLFLPPVAFPDWLNTLSQGTPTRAGRDLLVQALTGEAAYAAAWPVLIGWTVLFAALAVGAYRRDEGRRFR	PGPT0006730_15345	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_02509	894	btuD_11		Vitamin B12 import ATP-binding protein BtuD	ATGACGGTCATCTCCGTCGACGGCGTCACCCGCCGGTTCGGCGAGGTCGTCGCCCTGGACGACGTCACCCTGGACGTCGGCCCCGGCGAGCTCGTCGGCCTGCTCGGCCCGAACGGCGCCGGCAAGTCGACCCTGCTGTCGCTGGTCAGCGGCCAGCGGAGACCCGACACGGGCGGTGTCCGGGTGCTCGGCGGGGACCCGCGCGACGCCGCGACCCGCACCGGGCTGGGGGTCACCCCGCAGGAGACGGGCCTGCCGCCCACCCTGCGCGTCGGCGAGGTCGTCGACTTCGTCGGCGGGCACTTCCCGGACCCGATGCCGACCGCCGCCCTGCTCGAGCAGTTCGGCCTGACGGACAAGGCCCGCAAGCAGACCGGGTCGTTGTCCGGCGGTCAGAAGCGACGGCTCGCCGTCGCCCTGGCGTTGGTCGGGCGCCCCCGGGTGATCCTGCTCGACGAACCCACGACGGGGCTCGACGTCTCCGCGCGGCAGGCCCTCTGGGGCGCGATCCGGCGGTACCACGCCGAGGGCGGGACGGTGCTGCTGACCAGCCACTACCTCGAGGAGGTGCAGGCGCTGGCCGAGCGCGTCGTGGTCATCGACCACGGCGTCGTGCGGGCCGACGACTCCCTGGACGGGATCCTGCGCCGCGTCGGCCTGCGTCGGGTGCTGCTGCGTGCCGCGACCGACCTGACCGGGCTCCCCGGAGTCGCCCGGGGCGAACGCCGCGACGACGGCACGCAGGAGCTCTACACCACCGACTCCGACGCGCTGGTCCGGGACCTGGTCTCCGCCGGCGTGCAGTTCTCGGACCTGCAGATCCGCGGGGCCAGCCTCGAGGAGGCCTTCGCCGAGATGGTCGCCGCGGACACCCTGGAAGGAGCCCACCGATGA	MTVISVDGVTRRFGEVVALDDVTLDVGPGELVGLLGPNGAGKSTLLSLVSGQRRPDTGGVRVLGGDPRDAATRTGLGVTPQETGLPPTLRVGEVVDFVGGHFPDPMPTAALLEQFGLTDKARKQTGSLSGGQKRRLAVALALVGRPRVILLDEPTTGLDVSARQALWGAIRRYHAEGGTVLLTSHYLEEVQALAERVVVIDHGVVRADDSLDGILRRVGLRRVLLRAATDLTGLPGVARGERRDDGTQELYTTDSDALVRDLVSAGVQFSDLQIRGASLEEAFAEMVAADTLEGAHR	PGPT0006725_16395	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02510	300			hypothetical protein	GTGACCGAGCTCGACACGGTCATCCACGCCCCGGCGCGCCTGCGGGTGGTCTCGACGCTGGCCGCGCTGAGCGCCGGCGAGGAGATCACCTTCGCCAAGCTGCAGAAGCTCCTGGACATGACCGCGGGCAACCTCTCGACGCACCTGCGCAAGCTCGAGGACGCCGGCTACGTCCGGCAGACCAAGGAGTTCGCCGGGCGTCGGCCCGTCACCTACCTCGCCCTGACGACGGACGGTCGCCGGGCCTTCGAGGACTACACCACTACCCTGCAGGACCTGTTGAGAGGAGCCGGATCATGA	MTELDTVIHAPARLRVVSTLAALSAGEEITFAKLQKLLDMTAGNLSTHLRKLEDAGYVRQTKEFAGRRPVTYLALTTDGRRAFEDYTTTLQDLLRGAGS				NA	NA	NA	NA	NA
AK001_02511	660			hypothetical protein	GTGAGCACCGAGTCCGAGAGCAGTCCCGACCGACCGCTCGACCCCGCCGCCACGCTGGACCTCATCGCGCAGTCCCAGCGCCGCGCCCGTGCCGGGACGGAACCCGACGGCCGGCTGCTCTGCCTGGTGTGGGGGGTCGCCTGGCTGGTCGGCTACACGGCGCTGTGGTGGAGCGCCCGTGCGCTCGGTGGCGCGCCGGACGCCCTCGCCTTCGCTCTGTTCGGGGCGCTGCTCGGCACCGCCGTCGTCATCACGATCGTCCACGCGCTCCGACGCACGGCGGGGACCCGCGGGCCCGAGCGCCGCGCCGGGGCGCGGTGGGGGACCGCGTGGCCGATGGCCTTCCTCGTGTTCCCGGTCGTCATGGCCGGGCTCGGACGGGCGGACGCGTCGGGCGAGGTCGTCGGCCTCGTCTCCAACGCGCTGGCCTGCGTCATCATCGGCGTGATGTACCTGACCGGAGGAGCGCTCTTCGACGACACGGGCCTGTACGTCCTCGGCGTGTGGATCCTGCTCACCGGCGGTGCCGCGACGCTCGCCGGGATGCCGGCCACCTATCTCGTCATGGCCACGGTCGGTGGGGGCGGATTCCTCGCCATCACGCTCGTGTGGCACGTGCTGCTCGTCCGGCGCCGCCGCGAGGGCGGGGTGCCGTCGTGA	MSTESESSPDRPLDPAATLDLIAQSQRRARAGTEPDGRLLCLVWGVAWLVGYTALWWSARALGGAPDALAFALFGALLGTAVVITIVHALRRTAGTRGPERRAGARWGTAWPMAFLVFPVVMAGLGRADASGEVVGLVSNALACVIIGVMYLTGGALFDDTGLYVLGVWILLTGGAATLAGMPATYLVMATVGGGGFLAITLVWHVLLVRRRREGGVPS				NA	NA	NA	NA	NA
AK001_02512	837			hypothetical protein	GTGACCGCACCGGAGCCCGCCGTCCAGGACCGCTGGACCCCGCCCGCGCCCGCCGCGCCGGCCCGCACGCCGCAGGAACGCCGTCGGACCGGGGCCGAGATCTGGCTCGTCCTCGGCCTCAGCCTCGGACAGAGCGCGATCTACGCGGTCGTCAACATCCTCGCCCGGCTCACCTCCGGCACCGCGCTGGCCGAGCAGTCCGCCACCCTGAACGCCACCCGGTCGGCACGCCCCTACCTCGACCTGACCTACCAGCTGCTCGGCATCGCCTTCGCCGTGCTGCCCGTCGCCCTCGCGATCTACCTCCTCAGCGCCCGCGGGCCCGGGACCCTGCGCCGCATCGGGTTCGACGCCGCCCGCCCCGGCCGCGACACCGCCTGGGGGTTCGCGCTCGCCGCCGCGATCGGCATCCCCGGGCTGGCGTTCTACACGCTCGGCCGCGCGCTCGGCATCACCGTGGAGATCCAGGCCAGCGCCCTGGCCGACTACTGGTGGACAGTCCCCGTGCTCGTCCTGGCCGCCCTGCAGAACGGCCTCCTCGAGGAGGTCGTCGCCGTCGCCTACCTGCACGAACGCACCGCGGACCTCGGCTGGCACCGGGTGACCTTCGTCGTGACCAGCGCGCTGCTGCGCGGTTCGTACCACCTCTACCAGGGCTTCGGGCCGTTCCTCGGCAACGTGGTGATGGGGATCGTCTTCTCCTGGTTCTACACCTCGCGCTGGGGGCGGCACCGCGTGCTGCCCCTGGTGATCGCGCACACGCTGCTCGACATCGTGGCGTTCGTGGGCTACGCCTTCCTGCCGGCCGACTGGCTCGCGGCCCTCGGCGTCGGATGA	MTAPEPAVQDRWTPPAPAAPARTPQERRRTGAEIWLVLGLSLGQSAIYAVVNILARLTSGTALAEQSATLNATRSARPYLDLTYQLLGIAFAVLPVALAIYLLSARGPGTLRRIGFDAARPGRDTAWGFALAAAIGIPGLAFYTLGRALGITVEIQASALADYWWTVPVLVLAALQNGLLEEVVAVAYLHERTADLGWHRVTFVVTSALLRGSYHLYQGFGPFLGNVVMGIVFSWFYTSRWGRHRVLPLVIAHTLLDIVAFVGYAFLPADWLAALGVG				NA	NA	NA	NA	NA
AK001_02513	2772			hypothetical protein	ATGTCCCGAGCCAGCGGCGAGGCCCCCGCGGGCCCCGGCACCCCGCCGAGCACGGTGCACGACGTCGGCTCCTCCCGCCGGGAGGACGCCCAGCCGCCCACCGGCGCCTTCGACGCGCTCTTCCTCGCCGGCGGCGTCCCCGACGACGACGCCGGCCTCGTCCGCGTCGTCGACACGCCCGAGCAGCGGGTGCGCAACCCCTCCGACCTGCTCGGCATCATCAGCAGCGCCGTCGGCGTCGCACTGGTGCTGGTGCTGTCGGTCGTCGCCCACGGCACCACCGAGGGCGTCACCGCCGACGTGCGCGCGTTCAACACCCTCCTCGGCGAGCTGCTGTTCATCCCGGTGGTCGTCCTCGAGGGACTCGTCACGCTGTTCGTGCCCGTCGTGGTGCTCGTCGAGCTCGCCGTCCGGCGCCTGGGCCGCCAGGTCGTCGAGTCGATCGTCGCCGCCACGTTCGGGCTCGTGCTCGGCGTCCTCGCGGTGCTGATGGTCGACTGGTGGGGCGGCGACGAGCTGCTGCGGTCGCTGTCGATCTTCCGCGACGGCGCCTGGCAGATCACGATCCCCGGGTACGTGGCGGGCCTGGCGGCGCTGCTCACCACCGCCGGCCCGCGCACCCGCCGCCGCACCGTGCGCTGGTCGTGGAACGTCCTCTACCTCGCCCTGATCATCGCCCTCATCACCGGGCAGGCGCCGCTGCCGAGCGTCCTGGTCGCCCTGCTGCTCGGCCGCCTGGCGGGCCAGACCGTGCAGTACGCCTCCGGCGTGCGCTCCGAGCGTGCCTACGGCGGCGAGCTCGTCACCGCCGTGCGCCGCGCCGGCTTCCGCCCGACGACGCTCGTGCGCGTGCGCGACGTCACGGCGCCCGCCGACGCCGGGGCCGCGGAGGACGCCGCTCGCCCGGAGCTGCCCGACGAGACGGTCACCGACGTCGACGCCTCCGGCGAGGTCACCTCGCGCACCACGCTGCGGGCCCTGCTGCGCAACCGACCCCGGTACGGCACCCGCCGCACCACCGGCACCGGCACCGACGACCCCCGCTCGCGGATCCCGTCGGCGCAGACCCTCGCCGACCCCGCCACCCGGGCCCTGACCCGCACCGGCGACGCCCGGGTCTACGCGATGTTCACCCCGGACGGGGACCGCCGCGACGTCGTCGTCCTCGACGGGGACCGCCACGTCGTCGGCGTGCTCACCCGGCTGTGGCGCGGCCTGCGCCTGCGGGGCCTGGAGGGCCGGGCGCAGGTGTCGCTCAAGGCCGTCGCCGAGCGCACCGCGATGCTCACCTACGCGGCCGACGCCGCGCACGTCCGCACCCCGCGCCTGCTCGGCGTCGGCGAGGCCGCAGACTCGATCGTGCTCGTCACCGAGCACGCCGTCGGTGCCGTGCCCTGGCGCGACCTGCCCGACGCGGCGCTCGCCGGGGCGCGCGGCGACGCCGTCCTGGCCGCCGCCTGGGCGCAGCTCGGGCGGGCGCACGAGGCCGGACTGACGCACCACGCGCTCACGCCGGACGTGCTGCTCGTCGACTCCGACGGACCCCGCCCCCGCGTCTGGCTGACGGGCTGGGAGCAGGGCGAGATCGCCTCGACCGTTCTCGGTCGCCGGCTCGACCTGGTCCAGATGCTCGCGCTGCTGGCCCTGCGAGTCGGCCCCCGCCGCGCCGTCGCCTCGGCGGTGCGGGCGCTCGACGCCGACGACGTCGCCGCCGTCGGGCCGCTGCTGCAGTCCATCGCCCTGCCGGCCGTGACCCGCGTCGCCGTGCGGCAGCGGCGCGGGATGCTCGACGAGCTGCGCGACGCCCTCGTCGAACGGCTGCCGCAGGTCGACGTCCAGCCGCAGAACATCACGCGGTTCGGCGCACGGACCGTCGTCACGCTCGCGCTGTCGATCGTGGTGGTGACCGCCCTGGTCACCACCATGAACCTCGACGAGATCACCGACGCCGTGAGCCGGGCCAACCCCTGGTGGGTGGTCGCGTCCTTCGCCCTCGGGGCGATCACGTGGTTCGGGGCCGCCCTGACGTTCGTCGCGTTCTCCCCGCGACGGCTGCCGCTCTGGCGCGCCACGCTGACGCAGATGGCGGGGTCGTTCGTGGCGCTCGCGGCACCGGCCGGCATCGGTCCCGCGGCGCTGAACCTGCGGATGCTCACCCGGCGCGGCGTCGAGCTGCCGATGGCCGTCGCGACGGTGGCGCTGGTGCAGGTGTCGCAGTTCGTCGTCACCGTGGTGCTGCTGGTCGTGCTGTCGATCTTCACCGGGTCGGGCGGGCTCATCGAGCTGCCCTCGATCACGGTGCTGCTCACCATCGCCGGGGTGGCGACCGTCGTCGTGGCGACGCTGCTGGTCCCGGCGATCCGCCGCTGGGTGTGGGGCAAGATCCGGCCCACGCTGGAGCAGGTCTGGCCGCGGCTGTCGCAGATGCTCGGCCAGCCGACCCGTCTGGCGCTCGGCATCGGCGGCAACGTGGTGATGTCGCTGGGGTACGTGCTGGCGTTCGACGCCGCGCTGGCCGCCTTCGGCCAGTCCCTCAACCTCATCGACGTCGCCGTCATCTACCTGGTGGGCAACGCGCTGGGCGCGCTGGTGCCCACGCCGGGCGGTCTGGGCGGTGTCGAGGCGGCGCTGACCGCCGGTCTGACCGCCGCGGGCATCCCGGCGTCGATCGCGCTGTCCACGACCATCCTGTTCCGGCTGGTCACCTACTGGGGCCGGGTGCCCTTCGGCTGGGCGGCGATGCGCTACCTGGAGCGCAAGGGCGACCTCTGA	MSRASGEAPAGPGTPPSTVHDVGSSRREDAQPPTGAFDALFLAGGVPDDDAGLVRVVDTPEQRVRNPSDLLGIISSAVGVALVLVLSVVAHGTTEGVTADVRAFNTLLGELLFIPVVVLEGLVTLFVPVVVLVELAVRRLGRQVVESIVAATFGLVLGVLAVLMVDWWGGDELLRSLSIFRDGAWQITIPGYVAGLAALLTTAGPRTRRRTVRWSWNVLYLALIIALITGQAPLPSVLVALLLGRLAGQTVQYASGVRSERAYGGELVTAVRRAGFRPTTLVRVRDVTAPADAGAAEDAARPELPDETVTDVDASGEVTSRTTLRALLRNRPRYGTRRTTGTGTDDPRSRIPSAQTLADPATRALTRTGDARVYAMFTPDGDRRDVVVLDGDRHVVGVLTRLWRGLRLRGLEGRAQVSLKAVAERTAMLTYAADAAHVRTPRLLGVGEAADSIVLVTEHAVGAVPWRDLPDAALAGARGDAVLAAAWAQLGRAHEAGLTHHALTPDVLLVDSDGPRPRVWLTGWEQGEIASTVLGRRLDLVQMLALLALRVGPRRAVASAVRALDADDVAAVGPLLQSIALPAVTRVAVRQRRGMLDELRDALVERLPQVDVQPQNITRFGARTVVTLALSIVVVTALVTTMNLDEITDAVSRANPWWVVASFALGAITWFGAALTFVAFSPRRLPLWRATLTQMAGSFVALAAPAGIGPAALNLRMLTRRGVELPMAVATVALVQVSQFVVTVVLLVVLSIFTGSGGLIELPSITVLLTIAGVATVVVATLLVPAIRRWVWGKIRPTLEQVWPRLSQMLGQPTRLALGIGGNVVMSLGYVLAFDAALAAFGQSLNLIDVAVIYLVGNALGALVPTPGGLGGVEAALTAGLTAAGIPASIALSTTILFRLVTYWGRVPFGWAAMRYLERKGDL				NA	NA	NA	NA	NA
AK001_02514	282	hup	COG0776	DNA-binding protein HB1	ATGTCGCTGAACAAGTCCGAGCTCGCCTCGGCCATCGCCGCCAAGGCCGACCTGACCAAGTCGGACGCCGAGGCTGCGCTCAACGCCTTCCAGGAGGTGCTCATCGAGTCCCTCGGCAAGGGCGAGGCCGTCAAGGTCACCGGTCTGCTGTCGGTCGAGCGCGTCGAGCGTGCCGCCCGCACCGGCCGCAACCCCCGCACCGGTGAGGAGATCCAGATCCCGGCCGGATACGGCGTCAAGATCAGCGCCGGCTCGCTGCTGAAGAAGGCTGTCGCCAAGTGA	MSLNKSELASAIAAKADLTKSDAEAALNAFQEVLIESLGKGEAVKVTGLLSVERVERAARTGRNPRTGEEIQIPAGYGVKISAGSLLKKAVAK				NA	NA	NA	NA	NA
AK001_02515	762			hypothetical protein	GTGGCGCAGAACTCCGAGGGCCCCCGGCCCCGATCCCGACCGTCCGCCCCGTCCGAGGGGCCGGACTGGACACCGGTCCGCCCGCAGCGACGGAACCGGCTCATCGCGGCGATCGTGGCGCTCGCGATGCTGCTGACCGCCGTCGGCGGCACGGCCGCGATGCTCTTCGGCGCGCTGTCCGCCAGCGCGCACGACCAGCTGCTGTCCACCGACCCCGAGGACGGGGCGTCGCTGGACGAGCCGGTCGACACGCTGACCCTGACGTACAGCTCCGACATCATCGCCGACGGCACCCAGGTCCGGGTGACCCCGCCGTCGGGCGAAGCCGTCGACGCCGAGGTGAGCGTCGACGGCCCCGTGGTGACCGCCACGGTGGGCGAGCAGGTCGCCGGTGGCGAGTACGAGGTCGCCTGGCGCGCCGTCTCCTCGGACGGGCACCCGATCGAGGGCGGCTTCGCCTACACGGTGACGGGCGTCCAGGACACCGCCGAGCAGGCCGACGAGCCGGTGCCCGCCGCGTCCGCCGAGGCCGAGCTGTCCGAGTCGGGCGAGATGGAGGGGCTCGGAGCGGCCGCCCCGGCCGACGAGTCCTCGCCGTCGGCGCCCGCCGAGGACGACGCGTCCGCCGCCGGGGCCATGCCGGTGCTGTACGGTGCCGCGCTCGTGGCGATCATCGGTGTCGCGGCCGTGCTGCTGATGCGGACGCGACGCCGTCTGCACGACGACCACGGCCAGGGCCCCACCCAGGGGCCGCTGAGCTGA	MAQNSEGPRPRSRPSAPSEGPDWTPVRPQRRNRLIAAIVALAMLLTAVGGTAAMLFGALSASAHDQLLSTDPEDGASLDEPVDTLTLTYSSDIIADGTQVRVTPPSGEAVDAEVSVDGPVVTATVGEQVAGGEYEVAWRAVSSDGHPIEGGFAYTVTGVQDTAEQADEPVPAASAEAELSESGEMEGLGAAAPADESSPSAPAEDDASAAGAMPVLYGAALVAIIGVAAVLLMRTRRRLHDDHGQGPTQGPLS	PGPT0004115_36	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE_MEDIATION,PGPT0004115-pcoC|copC-K07156	NA	NA
AK001_02516	2049	nadE	COG0171	Glutamine-dependent NAD(+) synthetase	GTGGACTTCCGCAACGCCTACGCCCACGGCTTCGCCCGCGTCGCCGCCTGCACCGTGCCCGTGACGCTCGCCGACCCGGCGGCCAACGCCGCGGCGATCCTCGACCAGGCCCGGGCCTGCCACGACGACGGGGTGGCCGTCGCGCTGTTCCCCGAGCTGTCGGTCTCCGGCTACGCGCTGGACGACCTGCACCTGGCGGACACCCTGCTCGAGTCGGTCACCGACGCCCTGGAGCAGATCGTGGAGGCCAGCGCCGACCTACGCCCGCTGCTGGTGGTGGGCGCGCCGCTGGAGATCGACGGCCGCGTGCACAACTGCGCCGTGGTGGTCCAGGGCGGCCGGGTGCTCGGCGTCGCCCCGAAGTCCTACCTGCCGACCTACCGGGAGTTCTACGAGAAGCGCTGGTTCGCCTCCGGCGCCGACCTGCGCGGGGCGACGGTGCGGCTGCCGTTCGCCGACGAGGAGGTCCCCTGCGGCCCGGACCTGCTGTTCCGCGCCTCCGACGTCGCGGGGCTGACCGTGCACGTCGAGGTGTGCGAGGACATGTGGGTGCCCGTGCCGCCGTCGGCCGAGGCGGCGCTGGCCGGGGCGACGGTGCTGCTCAACCCGTCCGCGAGCCCGATCACCATCGCCCGCGCCGAGGACCGCCGGCTGCTGGTGCGCTCGGCGTCCTCGCGCTGCCACGCGGCCTACGTCTACGCCGCGGCCTCGCAGGGCGAGTCGTCGACCGACCTGTCCTGGGACGGGCAGACGATGGTCTACGAGGCCGGCGACGAGCTCGCCGAGACCGAGCGCTTCCCGGACGGACCGCGCCGCGCGGTGGCCGACGTCGACCTCGACCGGCTGCGCCAGGACCGGCTGCGCCAGGGCACCTTCGACGACAACCGCCGCGCGCTCGGCGACCGGACCAGGGACTTCCGCACCGTCGAGTGGCGGGTGGGACCGCCGTCGGGCGACCTCGGCCTGCGCCGGCACGTGGACCGGTTCCCGTTCGTGCCCGACGACGCGGCGCGGCTCGCGCAGGACTGCTACGAGGCGTACAGCATCCAGGTCACCGGCCTGGAGCGGCGGCTGGCCGCGATCGGGCAGCCGAAGGTGGTCATCGGGGTCTCCGGCGGCCTGGACTCGACGCACGCGCTGGTCGTGGCCGCGAAGGCGATGGACCGGCTCGGACGTCCCCGCACGGACGTCCACGCCGTCACGATGCCGGGGTTCGCGACGTCGTCGGAGACCAAGGACCGGGCCACGCGGCTGGCGCGCGCGCTGGGCGTGCGCTTCGAGGAGCTGGACATCCGACCCGCCGCCGAGCAGATGCTGCGCGACCTCGACCACCCGTACGGCGCGGGTGAGCCCGTCTACGACGTGACCTTCGAGAACGTCCAGGCCGGGCTGCGCACCGACTACCTGTTCCGGATCGCCAACCACCGCGGCGGCATCGTGCTGGGCACCGGCGACCTGTCCGAGCTGGCGCTGGGGTGGTGCACCTACGGCGTCGGCGACCAGATGTCGCACTACGCGGTGAACACCGGGGTGCCGAAGACGCTGATCCAGCACCTCATCCGCTGGGTGGCCGACTCCGGCGACTTCCCCGGGGAGGTCGGCGACGTGCTGCGCGAGATCGTCGTGCAGGAGATCTCGCCCGAGCTGGTGCCCGCCGGGGACGGCGAGGCGCCGCAGTCCACCGAGGCGATGGTGGGTCCGTACGCGCTGCAGGACTTCACGCTGTACTGGACGCTGCGGTGCGGGATGCGGCCGTCGAAGATCGCGTTCCTGGCGTGGCACGCCTGGCGGGACGCCGAGGCCGGGGCGTGGCCGCCGAACTTCCCCCACGACGACCGGTCGACCTACGACCTCGCGACGATCCGGCGGTGGATGCTGGTGTTCGTCCGCCGGTTCTTCGCCTCGCAGTTCAAGCGCTCCGCGCTGCCGAACGGGCCGAAGGTCTCCGCCGGCGGCACGATGTCGCCGCGTGGCGACTGGCGGATGCCCTCGGACGCCTCGGCGGCGGCGTGGCTGCGCGAGGTCGAGGAGAACGTGCCGGCCGAGTGA	MDFRNAYAHGFARVAACTVPVTLADPAANAAAILDQARACHDDGVAVALFPELSVSGYALDDLHLADTLLESVTDALEQIVEASADLRPLLVVGAPLEIDGRVHNCAVVVQGGRVLGVAPKSYLPTYREFYEKRWFASGADLRGATVRLPFADEEVPCGPDLLFRASDVAGLTVHVEVCEDMWVPVPPSAEAALAGATVLLNPSASPITIARAEDRRLLVRSASSRCHAAYVYAAASQGESSTDLSWDGQTMVYEAGDELAETERFPDGPRRAVADVDLDRLRQDRLRQGTFDDNRRALGDRTRDFRTVEWRVGPPSGDLGLRRHVDRFPFVPDDAARLAQDCYEAYSIQVTGLERRLAAIGQPKVVIGVSGGLDSTHALVVAAKAMDRLGRPRTDVHAVTMPGFATSSETKDRATRLARALGVRFEELDIRPAAEQMLRDLDHPYGAGEPVYDVTFENVQAGLRTDYLFRIANHRGGIVLGTGDLSELALGWCTYGVGDQMSHYAVNTGVPKTLIQHLIRWVADSGDFPGEVGDVLREIVVQEISPELVPAGDGEAPQSTEAMVGPYALQDFTLYWTLRCGMRPSKIAFLAWHAWRDAEAGAWPPNFPHDDRSTYDLATIRRWMLVFVRRFFASQFKRSALPNGPKVSAGGTMSPRGDWRMPSDASAAAWLREVEENVPAE	PGPT0013450_854	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013450-nadE2-K01950	NA	NA
AK001_02517	273			hypothetical protein	ATGCTCGGCCCCTGGTACGACGTCGTCTGGAGCGTGCTCGCCCTGACAGCGCTGGTCCTGTTCGTCACCAGCGTCGCGCTGTGGGCACGGACGGTCTTCGCCACGGCGCCCCGCCAGCTGCTGTGGCTGGCGGTGATCGTCCTGCTGCCGGTGCTGGGACCGGTCGCGTTCCTCCTCGGTCGCCCGGCCGGACCTCGGTCCCCGGCCTCTCCCGCGCCACGCGCACCGGCGCGTCAGGACGCGTCCGATGCCCGAGGCAAGATGGCCCCATGA	MLGPWYDVVWSVLALTALVLFVTSVALWARTVFATAPRQLLWLAVIVLLPVLGPVAFLLGRPAGPRSPASPAPRAPARQDASDARGKMAP				NA	NA	NA	NA	NA
AK001_02518	1266	hutI_2		Imidazolonepropionase	ATGACTTCCACGCAGCAGCCCACCACCCCGGGCACCACCCGCAGCTCCGTCGCCATCACGAACGGCCACGTCGTCCCCGTCGCCGGCGACCCGATCGAGCACGGCACGGTCCTCGTCGAGAACGGTGTCATCACCGCCGTCGGCGCCGACGTCGAGATCCCCGACGGCGTCCCCACCGTGGACGCGGGCGGCCGGTGGGTGCTGCCCGGGTTCGTCGAGTCCCACGGCCACGTCGGCGTGCACGAGGAGGCCGAGGGCTGGGCCGGCGACGACACCAACGAGAAGACGGCCCCGAACGGTGCCGCGTTCCGCGCGCTCGACGGGATCAACATCGAGGAGGAGGGGTTCCGCGACGCGCTCGCCGGCGGCGTGACCTCCGTCGTCGTCAAGCCGGGGTCCGCCAACCCCATCGGCGGGCAGACCGTCGCCATCAAGACCTGGGGCGGGCGCACCGTCGACGAGCAGGTCCTGCGCGAGGCCGTGTCGGTCAAGAGCGCGCTCGGCGAGAACCCGAAGCGGGTGTACGGCGAGCAGAAGAAGACGCCGTCGACCCGGCTCGGGGTCGCCTCGGTGATCCGCCAGGCCTTCCTCGACGCCCAGCACTACGCGGCCGCACGCGCCGCCGCCGAGTCCAAGGGCGAGCCGTTCGCCCGCGACCTGACCAAGGAGACGCTGGCCCGCGTCCTCGACGGCGAGCTCGCCTGGGACCAGCACACCCACCGCGCCGACGACATCGCCACCGCGATCCGCCTCGCGGACGAGTTCGGCTACCGACTCGTGGTCAACCACGGCACGGACGGCGCCGCGGTCGCCGACGTGCTCGCCGAGCGCGAGATCCCGGTGATCTTCGGGCCGATGTTCACCACGCGCACCAAGGTCGAGCTGCGCAACCGCGACATCGCGCACCTGGCGCGGCTGGCCGAGGCCGGCGTGACGGTCGCGATCACCACCGACCACCCGGTGGTGCCGATCAACTTCCTGGTGCACCAGGCCTCCCTGGCCGTCAAGGAGGGCCTGGACCGGCAGGTGGCCCTGGAGGCGCTCACCACCAACCCGGCGAGCACCCTCGGGCTGGACGACCGGATCGGCGCGCTGCGCCCCGGCCTGGACGGTGACGTCGTGGTCTGGTCCGACGACCCGCTGGACGTGAACGCCCGCGCCGAGCGCGTCTTCGTCACCGGCACCGAGGTGTACTCCTGGGACGCCGCGGCCGACGGCGGGCGGGGCGCGGGGCGCGTCGTCGAGCGGTCCGCGCGCTTCGTCTGA	MTSTQQPTTPGTTRSSVAITNGHVVPVAGDPIEHGTVLVENGVITAVGADVEIPDGVPTVDAGGRWVLPGFVESHGHVGVHEEAEGWAGDDTNEKTAPNGAAFRALDGINIEEEGFRDALAGGVTSVVVKPGSANPIGGQTVAIKTWGGRTVDEQVLREAVSVKSALGENPKRVYGEQKKTPSTRLGVASVIRQAFLDAQHYAAARAAAESKGEPFARDLTKETLARVLDGELAWDQHTHRADDIATAIRLADEFGYRLVVNHGTDGAAVADVLAEREIPVIFGPMFTTRTKVELRNRDIAHLARLAEAGVTVAITTDHPVVPINFLVHQASLAVKEGLDRQVALEALTTNPASTLGLDDRIGALRPGLDGDVVVWSDDPLDVNARAERVFVTGTEVYSWDAAADGGRGAGRVVERSARFV				NA	NA	NA	NA	NA
AK001_02519	450			hypothetical protein	ATGCGCTCCCTCTTCGCCGCGACCGCGGCTGTCTCCGCTGCCCTCCTGCTCACGGCTTGCGCCGGACCGGACTCGGTCGAGCCGGCGGCGGACTCCTCCCCCACCCCGGAGGCCTCCACGGAGACGGAGGGTGCTGTCGACATCGCCACCACCTGCGCGGGCTACTACGACGGCGGCGAGCTCTCGATCGACCACCGGGTCACGACGTGGACTCCGGAGGTCTCCTCCCCGGCGACCGAGGAGAACACCGCGGAGCTCACCATCGTCCGCGACCGCCTCGACGCCCAGATCCGTTACGCCGACACCGGTCCCGCAGCGATCCTGCAGGCCATCCAGGAGCCGTTCGACGACGCGTTGAACGGCACGTCGGGGGATCAGGGCGCCGTCGAGGACGCCGTGACCGCGCTGGAGGCGATGTGCGACGACGCCGGGTTCGTGCGCCCCGAGTGA	MRSLFAATAAVSAALLLTACAGPDSVEPAADSSPTPEASTETEGAVDIATTCAGYYDGGELSIDHRVTTWTPEVSSPATEENTAELTIVRDRLDAQIRYADTGPAAILQAIQEPFDDALNGTSGDQGAVEDAVTALEAMCDDAGFVRPE				NA	NA	NA	NA	NA
AK001_02520	2013	mrdA		Peptidoglycan D,D-transpeptidase MrdA	GTGCTCGCCGCCGCCGCGGCGTGCACCGGGCCCGAACGGCCGGCTCCCGACGAGACGGCGCAGGCGCTGGCCGACGGGCTGGCCCGCCAGGACCTGTCGGCGCTGACGCTGGTGTCCGGCACGAGCGCCCTGCCGGAGCAGCACCTGGCCGAGGTCGTCGAACCCCTGCTCGCGGCCGCCGAGGAGACCGGCGCCGCGCCGAGCGTCGAGGTGGCCGAGGTCGTCGAGGCCGAGACGGCCGAGGACGAGCCGCCGCGGGCCGCGGTCACGCTCGCCTGGAGCTGGCCGCTCGCGCCGGGCCACACCTGGGACTACACGACCGACACCGAGCTGGTCTGGGCGCCGCCGCCCGAGGACTCCGAGGAGACCGGCACCTGGGAGGTGCAGTGGCAGCACGACCTGGTCGCCCCCGACCTCGCCGGCGGCGAGCGCCTCGAGCTCGGGTCCCTGGAGCCCGACCGCGGCGACCTGCTGGACATCCACGGCGAGCCGCTGGTCACCGAGCGCGACGTGTGGCGCATCGGCATCGACAAGACCTACCTCGAGCCCCCGCGGTACGCGGAGCAGGCCGAGGCGCTGGCCGAGCTGGTCGGGCTCGACCCCGCGGCGTACGCGGACCGCGTGGCCTCCGCCGGGGAGAAGGCCTACGTCCTGGCGATCACGATCCGCCAGGACGAGGCGACGTCAGGGGTCTCGTTCACCGCCGACGACGCCCGGGCGATCGACGGGGTGAACGTGCTGGCGGACACGATGGAGCTCGCCCCGACGTCGTCGTTCGCGCGGTCGGTCCTCGGTCGCGCGGGGGAGGCGACGGCCGAGATCATCGAGCAGTCCGACGGCGCGGTCGAGCAGGGCGACGTCGTCGGGATCTCCGGTCTGCAGCGGCAGTACGACGCGGCGCTGACCGGCAGCGAGGGCCTGGCCGTCCACGTCGTCGACGGCGACGGCGAGGTCGTGCGGGACGCGTACCGCGTCGAGGCCGTCGACGGTGCCGACGTCGCCACGACCTTCGAGCCCGACCTGCAGATCCTCGCCGAGGAGGTGCTGTCCGACGTCGAGCCGGCCAGCGCGATCGTGGCGGTCCGGCCCTCGACGGGCGAGGTCCTGGCGGCCGCCAGCGGTCCGGGCGGCGAGGGCTGGTCGACGGCGACGCTGGGCCAGTACGCGCCGGGGTCGACCTTCAAGGTGGCCACCGCGCTCTCGCTGATGCGTGCCGGGGTCTTCCCCGAGGACGAGGTCACCTGCCCGACGTCGGTCACCGTGGACGGCCGCACGTACGAGAACGTGCCCGGCTACCCGCAGGACGCCACGGGGGCGGTGTCGCTGCGCACGGCGTTCGCGCACTCGTGCAACACCGCCATGATCGGCGAGGGGGCGGAGGTGCGGCAGGCCGAGCTCGCCGCCGCGGCGGTGGACCTGGGGCTCGGGGCGGCGTCGTCCGTCGGGGCCCCGGCGTTCCTGGGCGAGGTGCCGACCGAGGCGTCCGCCACGGGGCACGCCGAGGCGCTCATCGGCCAGGGTGCGGTGCTCGCCTCCCCGCTGGGCATGGCCACCGTCGCCGCGTCGGTCGCGGCGGGGGAGCGGGTCGAGCCGGTGCTGGTCCGGCCGGTCGAGGACGACGGCAGCGCGGACGGCGGCGCCACGGACGACGGCGGCGCGGGGGCCTCGCCCTCGGCGAGCGCTTCTCCGGACAGCTCCACGAGCGCCGCTGCGGACAGCTCCGGGGAGCCGGAGCCGGCCGGGTCGGCGGGCGGCCTGACGCAGACCGAGGCCGCCGACCTGCACGACCTGATGGGCGCCGTCGTCGCCGAGGGCAGCGCCTCGGCGCTGGCGGACGTGCCCGGGGTGAGCGGCGCGAAGACGGGGACGGCGCAGTACGGGGACGGGTCCCGGCAGCACGCCTGGATGCTGGCGATCGCGGACGACCTGGCGGTCGCGGTCTTCGTCGAGGACGGCGAGTACGGGTCGACGACGGCGGGCCCGCTGATGGGCCGGTTCCTCACCGGGCGCTGA	MLAAAAACTGPERPAPDETAQALADGLARQDLSALTLVSGTSALPEQHLAEVVEPLLAAAEETGAAPSVEVAEVVEAETAEDEPPRAAVTLAWSWPLAPGHTWDYTTDTELVWAPPPEDSEETGTWEVQWQHDLVAPDLAGGERLELGSLEPDRGDLLDIHGEPLVTERDVWRIGIDKTYLEPPRYAEQAEALAELVGLDPAAYADRVASAGEKAYVLAITIRQDEATSGVSFTADDARAIDGVNVLADTMELAPTSSFARSVLGRAGEATAEIIEQSDGAVEQGDVVGISGLQRQYDAALTGSEGLAVHVVDGDGEVVRDAYRVEAVDGADVATTFEPDLQILAEEVLSDVEPASAIVAVRPSTGEVLAAASGPGGEGWSTATLGQYAPGSTFKVATALSLMRAGVFPEDEVTCPTSVTVDGRTYENVPGYPQDATGAVSLRTAFAHSCNTAMIGEGAEVRQAELAAAAVDLGLGAASSVGAPAFLGEVPTEASATGHAEALIGQGAVLASPLGMATVAASVAAGERVEPVLVRPVEDDGSADGGATDDGGAGASPSASASPDSSTSAAADSSGEPEPAGSAGGLTQTEAADLHDLMGAVVAEGSASALADVPGVSGAKTGTAQYGDGSRQHAWMLAIADDLAVAVFVEDGEYGSTTAGPLMGRFLTGR				NA	NA	NA	NA	NA
AK001_02521	1197			hypothetical protein	ATGGGGTTCATCAAGGCATTCGCCGGCGCTCTCGGCGGGACGCTCGCCGACCAGTGGAAGGACTTCATCGTCCCGCCGCCGGGTCTCGAGCCCACGGCGGCGCTGTTCCCGGCGGTCCGCCAGGGCCAGGACGCCGGACGCGGCGCGAACACCCAGGGGTCCGAGCACATCATCACCAACGGTTCGCGGATCGTCGTCCCCGAGGGGTACGCGCTGATGACGTTCCAGGACGGCGAGCTGACCGGCCTCGTCAGCGACCCGGGCGGCTACGTCTTCACCTCCGACGACCAGAACTCGCGGTCCGTGTTCGCCGACGACGGCTTCCTCAGCGCGACGGTGAAGACCTCCTGGGAGCGGTTCAAGTTCGGCGGGCGGCCCGGCTCCCAGCAGCTCGCGTTCTACGTCAACCTCAAGGAGATCCCGAACAACCGCTTCGGCACGCAGTCGGAGATCTACTGGGACGACGCCTACCTGCGCGCCCAGGTCGGCGCGATCACGCGCGGCAGCTACTCGCTGCGGATCGTCGACCCCGTGCTGCTGGTCAAGAACTTCGTGCCGCTGACGTACCTGAGCTACGACGCGAAGGTCTTCGACTTCGGCGACTTCGACAACGACGCGGCCAGCCAGCTCTTCAACGAGCTGGTGGGGTCGTTGGCGGCCGCGTTCTCCCACTACACGAACGACCCGAGCAAGGGGAACCGGATCGCCCGCATCCAGGGCGACGCGATCGGCTTCGCGCAGTCGCTGAGCCACGCCGTCGAGGAGTCCTACCGGTGGACGTCGGACCGGGGGCTGACCATCGTCAAGGTGGCGCTGCAGGCGATCGAGTACGACGCGGACACCCGCAAGCTGCTCTCCGACGTCAAGAAGGCGGACGCGCTCGGCGGCGCACGCGGCAACTCGTTCATGCAGCAGGCCGCCGCCCGCGGGTTCCAGGCGGCCGGGGAGAACGGCGGGGGCGGGGGCTCCGACATGGCGTTCCTCGGCATGGGGATGAACGCGACCGGCGCGGCCATGGGCGGTCTGCAGCAGCCCGCCGGCCAGGTCCCCCCGCAGCAGGCGCCGCCCCAGGCGTCCGCGGAGCCGGCCGAGGAGGACGCCATGGCGAAGCTCACCCGGTTCAAGGCGATGCTCGACGCCGGTCTCATCACCCAGGAGGACTACGACGCCGCCAAGAAGAAGGCGCTCGGGCTGTAG	MGFIKAFAGALGGTLADQWKDFIVPPPGLEPTAALFPAVRQGQDAGRGANTQGSEHIITNGSRIVVPEGYALMTFQDGELTGLVSDPGGYVFTSDDQNSRSVFADDGFLSATVKTSWERFKFGGRPGSQQLAFYVNLKEIPNNRFGTQSEIYWDDAYLRAQVGAITRGSYSLRIVDPVLLVKNFVPLTYLSYDAKVFDFGDFDNDAASQLFNELVGSLAAAFSHYTNDPSKGNRIARIQGDAIGFAQSLSHAVEESYRWTSDRGLTIVKVALQAIEYDADTRKLLSDVKKADALGGARGNSFMQQAAARGFQAAGENGGGGGSDMAFLGMGMNATGAAMGGLQQPAGQVPPQQAPPQASAEPAEEDAMAKLTRFKAMLDAGLITQEDYDAAKKKALGL				NA	NA	NA	NA	NA
AK001_02522	1251			hypothetical protein	ATGGACGACGTGACCGAACCGGCCTCCGACGAGCAGGCCCCCGCCCCACCGACGGCACCGCCGGAGCCCGACCACGGCCCCAGCGTGATCGACACCGACGCCGACGCCGTCGACGGACTGACCAAGTGCCCGCGCTGCGGGGCGACGCAGATCGCCCTGAACATCGGCTCGGGGATGCTGCGGTGCCACTACTGCCGCGACGAGTGGTCGACGCCGAGCGCCAACGAGGCGTTCGGCCTGGACGCCGGCGTCGGTGAGCTCCGCGGCGTCACGATGGGGTCGGGCTCGTCCGACATCGTCCCGTCCGCCGAGATCGTGCTCACCTTCAAGTGCAGCGCGTGCGGCGCGGAGATCGTCATCGACACCGCGAGCAGCACCCAGGCGCGCTGCCACTGGTGCCGCAACACCCTGTCGATGAACCAGCAGGTGCCCAACGGCGCCGTGCCCGACATGGTGCTCCCGTTCAGCCTCCCGAAGGAGGAGGCCGTGCGGAAGATCGCCACGTTCGTGCGCAAGCGCCGCTTCTTCGCCCACCCGCGGTTCCGCAAGGAGTTCAACCCGGACAACGTGCTCGGCGCCTACCTGCCCTACATGGTCGTCGACGTCAACGCCCACGCCGCGTTCCGCGGACAGGGCGAGCACCAGACCCGCAGCTACACCGTCTCGGTGGGCGAGGACCGGTCGGAGACCCGCTACGACGCGGACCTCTACGACGTCGGCCGCGCCTTCGACGTCGAGGTGCACGACCTCGCCGTCGTCTCGTCGCAGCAACGCCTCGACCAGGGGCTCAGCACCACCAACAACGTCATCAACGCGATCCGGCCCTTCGACCTCGAGAACGCCGTCGTCTACGACTCGAACTACCTGGCCGGGTTCACCTCCGAGCGTCGCGACACCAACATCGGCGACCTGGCGCCGATCGTGGACGCGCAGTCGAAGGACGTCGCCCGGCACGCCGTCCACGACACGCTGCGCTTCTACGACCGCGGGGTGCGGTGGCACAGCGAGCAGCTCGACGTGCGCGGGCAGCGGTGGGTGTCGGCCTACCTGCCGGTGTGGCTGTACAGCTACCACCAGACCGGACGCGACGGCCGGTCGGTCACGCACTACGTCGCGGTGAACGGCCGGACCGGCGCGGTGATGGGCAGCGTGCCGATCAACTATCCCCGGCTGCTGCTGACGTCGGCGGTCGTGGAGGCCGCGGGCATCGTCGTCGGCACGGTGGTCCTCGTCCTCGGAGGTGGCTCATGA	MDDVTEPASDEQAPAPPTAPPEPDHGPSVIDTDADAVDGLTKCPRCGATQIALNIGSGMLRCHYCRDEWSTPSANEAFGLDAGVGELRGVTMGSGSSDIVPSAEIVLTFKCSACGAEIVIDTASSTQARCHWCRNTLSMNQQVPNGAVPDMVLPFSLPKEEAVRKIATFVRKRRFFAHPRFRKEFNPDNVLGAYLPYMVVDVNAHAAFRGQGEHQTRSYTVSVGEDRSETRYDADLYDVGRAFDVEVHDLAVVSSQQRLDQGLSTTNNVINAIRPFDLENAVVYDSNYLAGFTSERRDTNIGDLAPIVDAQSKDVARHAVHDTLRFYDRGVRWHSEQLDVRGQRWVSAYLPVWLYSYHQTGRDGRSVTHYVAVNGRTGAVMGSVPINYPRLLLTSAVVEAAGIVVGTVVLVLGGGS				NA	NA	NA	NA	NA
AK001_02523	330			hypothetical protein	ATGATCGCGGCGGCCGTCCTGGCTTCCACCGGCTCGGACGGGGATCCCGGTGCCTTCGGGCTCGTCTTCTTCCTGTCCGGGTTCGTCTTCTTCTTAGTGATCTTCGCGCGGTACCGCAACGCGGACAAGCGCTACCGGCACGAGAAGCAGACCCGCACGGTCACGAAGAACATCGAGGTCCGCGACGACTTCGTCCGCTCCCGCAAGGGGCTGAGCAACCGCACCATGGACGGAGCGAACCACGACTCCGTCTCCGGGTCGCTGAACCCGACGGCTCGCAGCGTCCACGGTCTGATGCGGGAGATCAACCGCTACCGACACCTCGGCTGA	MIAAAVLASTGSDGDPGAFGLVFFLSGFVFFLVIFARYRNADKRYRHEKQTRTVTKNIEVRDDFVRSRKGLSNRTMDGANHDSVSGSLNPTARSVHGLMREINRYRHLG				NA	NA	NA	NA	NA
AK001_02524	960			hypothetical protein	GTGACCGCGACAGCCGTCGCCGTGCCGCTCGCCGTCCCTGCCACGGCGGCGGCGTTGTCCCTGCCGTACCCGCCCGGGCCGACCCCGCCAAGTGCGCACACGGGCGTCGTGGGCTGGTCCCCGCTCGAGGAGCGGACCGCGGGGACCGACTGGGCGGACGGCGTGGCGATCGCCCCGGGCGAGGGCAGGACGCTCGAGCTGCAGCAGGAGGTCGACGGCCGCTGGGTGACACGGTGGACCACCACGATGCCCGACGACGGCACCTACTCCGCCGCGATGGAGCTCACCCGGCACTGGCGACAGGCACCGGTCACCCGCTGGCGGCTCTTCGCCCCCGGCACCGCGCAGGTGGCCCCCGCCGTCAGCGGGGTCAAGGTGGTCCGCACGACCTGGGAGGCGTCCACGGACCCCCGCGATCTCACCGTGCTCGTGACCAAGGACCGCGGCGTCACGCCCCGCGACTTCGTGCCGGACCGGCTCGTCGCGCCCGACATGGCGGCGCAGGGCACCTGGGTCGAGCTGCGGCCGGCGGCGGCCGACGCCCTCGCCGAGCTGGCCGAGGCCGCGGAGGGGGCCACCGGGAAGCGGCTGGTCATGGTCTCCGGGTTCCGTCCCGCCGGCTACCAGGAACGCCTCTTCGAGCGGTACGCCTCCCGGTACGGCGCCGAGGCCGCGTCGCGCTTCTCGGCACGGTCGGGGCACTCCGAGCACCAGACCGGGCTCGCGGCCGACGTCACCCAGGCCGGGGTGCCGTTCACGGAGTTCGGCGGCACGCCCGCCTCGGACTGGGTCGCGGACCACGCGTGGCGGTACGGCTACGTTGTGCGCTACCCGGCCGGCGGCGAGGAGATCACCGGCTACCGGGGCGAACCGTGGCACCTGCGCTACGTCGGCGAGGACCTCGCCGCCTACCTGCACCACAGCGGCGACACCCTCGAGGAAGCGTTCGGCGTGGCGTGA	MTATAVAVPLAVPATAAALSLPYPPGPTPPSAHTGVVGWSPLEERTAGTDWADGVAIAPGEGRTLELQQEVDGRWVTRWTTTMPDDGTYSAAMELTRHWRQAPVTRWRLFAPGTAQVAPAVSGVKVVRTTWEASTDPRDLTVLVTKDRGVTPRDFVPDRLVAPDMAAQGTWVELRPAAADALAELAEAAEGATGKRLVMVSGFRPAGYQERLFERYASRYGAEAASRFSARSGHSEHQTGLAADVTQAGVPFTEFGGTPASDWVADHAWRYGYVVRYPAGGEEITGYRGEPWHLRYVGEDLAAYLHHSGDTLEEAFGVA	PGPT0024055_164	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_02525	1206		COG1168	Putative cystathionine beta-lyase	GTGATCGACACCAGCGCCAGCCCGCTCGACCAGCTCAGCCTCGCCGACCTGCGCCGGCGGACCTCCGTGAAGTGGACCGCCTACCCCGAGGACGTCCTGCCCCTCTTCGTCGCCGAGATGGACGTGCCGCAGGCGCCGTTCGTCGTCGACGCCGTCACCCGGGCCCTGCAGGTCGGTGACACCGGCTACGACCGGGGCACGGCCTACGCCGCCGCCCTCGTGCCGTTCGCGCAGCGCCGCTGGGGCTGGACGCCCGACGAGCGCACCAGCCGCACCCTGCCCGACGTCATGGTGGCCGTCGTCGAGATCCTGCGCGTGCTCACCGCTCCCGGGGACGCGGTCGTCGTCACCCCGCCCGTCTACCCGCCGTTCTACGGGTACACCCGCAACGAGGGTCGCCGGATCGTCGAGGCGCCGCTGACCGACGCCGGCCGGCTGGACCTGGGCACACTGGAGTCGGCGTTCCGCGAGGCCACCGGCGGCGGACCCACCAGCACCCGGCCCGGGTCGGGCCGCCGTGCGGTGCTGCTGCTGTGCAGCCCGCACAACCCGACCGGCACCGTGCACACCCGCGACGAGCTCGAGGCGGTGCTGGCGCTCGCCGGCCGCTACGGCGTGCGGGTCGTGGCCGACGAGATCCACGCCCCGTTCACCGTCGCCGACCTGACCGACGGCGCCACGCCGTTCACGCCGCTGCTGTCCGTGCCCGGCAGCGGCTCGGCGATCGCCGTGCACTCGGCCTCCAAGGCCTTCAACCTCGCCGGGCTGCGTGCGGCGACGGCGCTCGCCGGCCCCGAAGCGGCCGACGACCTGCGCCGCATCCCCGAGGAGGCCGGGCACGCCGTCAACCACCTCGCGGTGCTGGCGCACGCCGCCGCGTACACCGAGGGAGACACCTGGCTGGACGCGCTGCGGGCCGGCATCGTGCGCAACCGCGAGCTGGTCACGACGCTCCTGGCCGAGCACGCCCCGGCCGTCCGGGTCCACCCGGGCGAGGGCACCTACCTGATGTGGCTGGACGTGCGCGACGCCGTCCCCGCCGACGTCGACCCGCACCGGCACGTGCTGCGCACCGCGAAGGTGGCGCTCGGCGACGGGCGGGACTTCGGCAGCAACGGCGCCGGGTGGTTGCGGCTCAACCTCGCCACCTCGTCCGAGATCCTCACCGAGGCCGTCGAGCGGCTGGGGACGGCGCTCGGGCGCTGA	MIDTSASPLDQLSLADLRRRTSVKWTAYPEDVLPLFVAEMDVPQAPFVVDAVTRALQVGDTGYDRGTAYAAALVPFAQRRWGWTPDERTSRTLPDVMVAVVEILRVLTAPGDAVVVTPPVYPPFYGYTRNEGRRIVEAPLTDAGRLDLGTLESAFREATGGGPTSTRPGSGRRAVLLLCSPHNPTGTVHTRDELEAVLALAGRYGVRVVADEIHAPFTVADLTDGATPFTPLLSVPGSGSAIAVHSASKAFNLAGLRAATALAGPEAADDLRRIPEEAGHAVNHLAVLAHAAAYTEGDTWLDALRAGIVRNRELVTTLLAEHAPAVRVHPGEGTYLMWLDVRDAVPADVDPHRHVLRTAKVALGDGRDFGSNGAGWLRLNLATSSEILTEAVERLGTALGR	PGPT0001990_425	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001990-patB|malY-K14155	NA	NA
AK001_02526	696			hypothetical protein	GTGGTGGGAACCGCTGGAACGTTCGACGCCCTGCCCATGCTGGGCCGTGGCAAGCACCGCAACCCGAAGAAGGGCGCCTGCTTCATGGAGCTCGCGTCGTTCCTCGCCGGGGAGCGCTGGAGCGATCATCCGCAGTGCACGCACCCGCTCCTGGCGATGCTGGCGCGTGCCGTCAACGACCTCACGTCGGACCGGAACCGTCCGCAGCTCGCGCCCATGATCCCCTCGGTGATCGGGCTGAACAGCGACGACCCGCGCTGGGACGTGCACATCGCCCTGCGTGCCGCCCAGACGGCTCTCCCGGTCGCGCCCGCCGACCGGCAGCAGACCCTCGCGGTGGCGATCTACGGCGCCGAGCGCATGCTCGACGTCCTGGACGCCCGGCCCGAGGGCACCATGTCCGTCGAGAGCGTCGAGGCGCTGAGCGCGGTGCCGAAGACCTCCGAGTGGGCCCGCCGGTTCTGCGCCGGCACCCACGTCAAGCCGAAGCGGTTCGTGCGGGACGCCGCCCCGTCGGTCGTGTCCACGGCCGTGCAGGGCATCAGCGAGGCCTACGTCGGCGACGCGGACGACCGCCTGCGGAACCTGCTGGGCGACACCATCGCCGACGCCCGCCGCTGGGCCGGGCTCGAGGAGACGGGGACCGCGCTGCGCGAGGACCAGTGGTCCGACGTCGTGCGTCCCGCCGAGGTCTGA	MVGTAGTFDALPMLGRGKHRNPKKGACFMELASFLAGERWSDHPQCTHPLLAMLARAVNDLTSDRNRPQLAPMIPSVIGLNSDDPRWDVHIALRAAQTALPVAPADRQQTLAVAIYGAERMLDVLDARPEGTMSVESVEALSAVPKTSEWARRFCAGTHVKPKRFVRDAAPSVVSTAVQGISEAYVGDADDRLRNLLGDTIADARRWAGLEETGTALREDQWSDVVRPAEV				NA	NA	NA	NA	NA
AK001_02527	2394			hypothetical protein	GTGGCCCGGATCCGTCCCCCGGACCCGGGCCGGCCGGGCCATACTGGGACGGTGCCCGCGACCCACGTCCTGGGTTCGCTGACCCACGGCGCTCCCGGGGACCACACCGCGGACGAGGTGTTCGACCGCATCGTCCGGATCGCCCGCCGTACGCTCGACGTGCCGGCGGCGTGCTTCATCGTGCTCGGAGACGGCCCCGTGCAGCACCTCCCGGGCGCCTCGGGACTGCCCGACGCCGTCCAGCGCAGCCGGGTCTACGAGCTGGACCGTCCGGCCACGGGCATCGTCGCCGAGAGCCGGACGCCGCTCATCGTCCCGGACGTCGCCGCGGAACCGCTGGTCGCGGGCCGCGGCCTCATCGCCGAGATGGCCGTGCGCGCCATCGCCGGCTACCCGGTCGAGGACGGCCGCGGCGAGGTGGTCGGGGCGCTGTGGGCGCTGTGCGACGACCCGCGCGACTGGACCGACGCCGACCTGGCCACGCTGTCCGACCTGGCCGCCGCCTGCACCGGCGAGCTGCGGCTGCGCGCCGAGCGGGAACGCGCCCGGCGCGCCGAGCAGGTCGCCTTCCGCGCCCACCAGCGTGCCCAGTTCCTGCTCGGGCTGTCCGAACGGTTCGCCGGCGTCACCACCATCGAGGAGGTCGAGGAGACCATCGCCCAGGTGGTCGGCACCGGGATGGGGGCCCGCTGGTGCTCCCTGGCCCTGGTCGACGCCGACCGCCGCCACCTGCGCTACGTCACCGTCGGGCACCAGGAGCCGGGCTTCCCCGACGAGATGCGCAGCCTGCGCCTCGACGCCCCCCGGCCGGACGCCGCCGTCGTGCGCGAGCACCGCACCCGGTTCTACCGCGACCACTCCGAGATGATCGCCGCGTACCCGGCGATGGCCGGCCTCGGCCTGACGTCGACGGGAGCCCGCTCGTTCCTGCCGGTGATCGCCGACGACGACGTGATCGGCGTCGTGGTCTGCGTCTGGGACGAGGCCCGCGACCACGACGCCGGCACCGCCGCCCTGGAGACGACCGTCACGCGGTACGTGGCGATGGCGCTGGAACGCGTCGCGCTGCTCGAGGCGCGCCGGCGCGTCGCCACCACCCTGCAGGAGTCGCTGCTGACCGACCCGCCCGACGTCGCTCACCTCGACATCTCCACGACGTACGCCCCGGCCGCGCGCACCGACCAGGTCGGCGGGGACTGGTACGACGCGGTCGTCCGCGAGGAGGGCACCGCGATCCTGACGATCGGGGACGTCGCGGGGCACGACGTCAACGCGGCCGCCCAGATGGGCCAGCTGCGCTCGATGCTGCGCGTGCTGGCCTGGAGCCACGACGAGGGCCCGGCACAGCTGCTGTCCCGGCTCGACCGGGCGGACGCCCAGCTCGGGCTGCACGCCCTGGCGACCGCCGTCGTCGTCCGGCTGGACCACGACGCCGAGCCGCAGGGCGACAGCGGGCCCGACGGCACCCCGGAACGCGGCTACACGCTGACCTGGTCCGACGCCGGCCACCCGCCGCCGCTGGTGCTGCGCCGCGACGGCACGGTCGAGCAGCTCGCGGCGCGTCCGGACATGCTGCTGGGCATCGACCCGAGCACGGTCCGGCACGACCACGTCGACCGTCTGCTGCCCGGCGACACCCTCGTGCTGTACACCGACGGCCTGGTCGAGCGGCGCGGCGTCCAGGTGAACGACCGGATCGCCGAGCTCGAGCAGGCGCTCGCCGACGTGCACGGCGAGGCCACCGCCGCCCTGCCCCGCGCGCTCGTGCGCCGGCTGGTCGGCCGCTCGCAGCGCGACGACGTGGCGGTCCTCGTCGCGCGGGCCCGCGTGCCCGCGCCGTCCGGTCCGCCGTCCGAGGACGGCCCCGCCACGGCCGAGCGCAAGGTCGCGCACGAGGACCTCAGCGACCTCGGGCCCGCTCGCCGCTGGGTCGACGACGTGCTCGAGTCCTGCAGCGTCGACCCCGAGCACCGGCGCACGGCGATGCTGCTGTCCAGCGAGATCCTCACCAACGCGCTGGAGCACGGGGCGGGGCCGATCGTGGCGACCGTCGAGGTCGACGCCCACCGGTTGCGCGTCGGGGTCCGGGACGGCTGCACCCGCGCACCCGTGCTGCGTGCCCCCGAGCCGCAGGACCTGTCCGGACGCGGCGTGCAGTTCCTCGAGCGCCTGGCCTCCCGCTGGGGCGTGGAGCAGCACCTGGCCGGGGACGCGGTCGGCCGGCACGTCGCCCAGGGCGCGGGCAAGACGGTCTGGTTCGAGATCGACCGGTCGGCGCGCCCCCTGACCGGCGTCGTGCCCGTCGTGCGCCGCACCTCGCCCACCAGCTCGATCCCGCTGGTCGAACGGGTGCTGCCGTGGACGCGCGCGGAGGCCCGCCGCCGGCGCACCTGA	MARIRPPDPGRPGHTGTVPATHVLGSLTHGAPGDHTADEVFDRIVRIARRTLDVPAACFIVLGDGPVQHLPGASGLPDAVQRSRVYELDRPATGIVAESRTPLIVPDVAAEPLVAGRGLIAEMAVRAIAGYPVEDGRGEVVGALWALCDDPRDWTDADLATLSDLAAACTGELRLRAERERARRAEQVAFRAHQRAQFLLGLSERFAGVTTIEEVEETIAQVVGTGMGARWCSLALVDADRRHLRYVTVGHQEPGFPDEMRSLRLDAPRPDAAVVREHRTRFYRDHSEMIAAYPAMAGLGLTSTGARSFLPVIADDDVIGVVVCVWDEARDHDAGTAALETTVTRYVAMALERVALLEARRRVATTLQESLLTDPPDVAHLDISTTYAPAARTDQVGGDWYDAVVREEGTAILTIGDVAGHDVNAAAQMGQLRSMLRVLAWSHDEGPAQLLSRLDRADAQLGLHALATAVVVRLDHDAEPQGDSGPDGTPERGYTLTWSDAGHPPPLVLRRDGTVEQLAARPDMLLGIDPSTVRHDHVDRLLPGDTLVLYTDGLVERRGVQVNDRIAELEQALADVHGEATAALPRALVRRLVGRSQRDDVAVLVARARVPAPSGPPSEDGPATAERKVAHEDLSDLGPARRWVDDVLESCSVDPEHRRTAMLLSSEILTNALEHGAGPIVATVEVDAHRLRVGVRDGCTRAPVLRAPEPQDLSGRGVQFLERLASRWGVEQHLAGDAVGRHVAQGAGKTVWFEIDRSARPLTGVVPVVRRTSPTSSIPLVERVLPWTRAEARRRRT				NA	NA	NA	NA	NA
AK001_02528	1002	sigG	COG1595	ECF RNA polymerase sigma factor SigG	ATGACACAGACGGCCTCCCCGGACGCCGGCGCCTCTCGCGACCTCGCCGCACGGCTCGAGGTCCACCGCCGTGAGCTGACCGGCTACTGCTACCGGCTGCTGGGCGGTGCCGCGGACGCCGACGACGCGGTGCAGGAGACGATGCTGCGGGCCTGGCGCGCGTACGACCGGTTCGAGGGGCGGTCCTCCCTGCGGTCCTGGCTGTACCGGATCGCGACCAACGTGTGCTTCGACGCGCTCGGGTCCGCCAGGCGGCGCGAGCGCCCCATGGGCATCGGCGGCCCGCAGCCGGCCGAGATCGAGTACCTGGGCGAGACCCTCACCGAGGAGCGCTGGGTCGAGCCCGTGCCGGACGACGCCGTGCTGCCCCGCGAGGGCGACCCGGCGGACATGGCCGTGGGCCGGGAGTCGGTCCGGCTCGCCTTCGTCGCAGCGCTGCAGCACCTGCCGCCGCGGCAGCGCGCGGTGCTGGTGCTGCGGGAGGTGCTGCGCTGGTCGGCCGCCGAGACGGCCTCGCTGCTCGACACGACCGTGGCCTCGGTGAACAGCGCGCTGCAGCGGGCCCGCGCGACCCTCGGGTCGAAGAACCTCTCCCGGGACGCCGACCGCTGGGGCGAGGTCGACGAGGCACTGCTCGAGCGGTACCTCGACGCGTTCGAGCGGTACGACATGGACGCCCTGGTCGCGTTGCTGCACGACGACGCGGTGCTCAACATGCCGCCGTACACGCTGTGGGTGTCCGGTCCGGCGGAGGTCGTGCGCTGGATGGTCGGCCCGGGCCACGGGTGCCGCGGGTCGCGGTGCCTGCGCGTGCACGCCAACGGCTCGATGGCGTTCGGGCAGTACCGGGCCGCGCCCGAGGGCGGCTGGACCCCGTGGGGGCTGGTCGTGCTCGAGGACGACGGCGCCGGCCGCATCACGGGGATCACCACGTTCCTCGACACGGCCACCTGGTTCCCCCGGTTCGGGCTGCCGGACCGGCTGCCGGCCGAGCACGCGTAG	MTQTASPDAGASRDLAARLEVHRRELTGYCYRLLGGAADADDAVQETMLRAWRAYDRFEGRSSLRSWLYRIATNVCFDALGSARRRERPMGIGGPQPAEIEYLGETLTEERWVEPVPDDAVLPREGDPADMAVGRESVRLAFVAALQHLPPRQRAVLVLREVLRWSAAETASLLDTTVASVNSALQRARATLGSKNLSRDADRWGEVDEALLERYLDAFERYDMDALVALLHDDAVLNMPPYTLWVSGPAEVVRWMVGPGHGCRGSRCLRVHANGSMAFGQYRAAPEGGWTPWGLVVLEDDGAGRITGITTFLDTATWFPRFGLPDRLPAEHA	PGPT0014960_961	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_02529	465	crcB1	COG0239	Putative fluoride ion transporter CrcB 1	ATGGGCACCGTGACCGCCGACCGCGCCCCGCACCGGGACCTCCGGCTCCTCGCCCTGGTGGCGGCCGGAGGTGCTGCCGGTTCGATGGCCCGCTACGGGGTCGGGCTGCTCCTCCCGCCGTCCTCGGGCGGCTGGCCGTGGGGCACCTTCGCGGTCAACGTCCTCGGCGCGTTCCTGCTCGGCTGGCTGCTCGAGGCGGTCGCCCGCCGAGGCCCGGAGACTCCGCGGCTGCGACGGGTCCGGCTGTTCGCGGGCACGGGTGTCCTGGGCGGCTTCACCACCTACTCCTCCCTGGCGGTGGAGACCACCGGGCTCACCGGGGACGGCGCCTGGCTCGTCGCCGCCGGCTACGTGGGGGCCACGCTGGTCCTCGGCACCCTGGCGGCCCTGCTGGGCGTGCTCCTCGGCCTGCGCAGCCGACGCAGCACCTTCGGCCGCCTGCTGCACCCGGAGGAGAGGCCGTGA	MGTVTADRAPHRDLRLLALVAAGGAAGSMARYGVGLLLPPSSGGWPWGTFAVNVLGAFLLGWLLEAVARRGPETPRLRRVRLFAGTGVLGGFTTYSSLAVETTGLTGDGAWLVAAGYVGATLVLGTLAALLGVLLGLRSRRSTFGRLLHPEERP	PGPT0004985_676	DIRECT EFFECT	BIO-REMEDIATION	FLUORIDE_DETOXIFICATION	FLUORIDE_RESISTANCE	FLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199	NA	NA
AK001_02530	387	crcB	COG0239	Putative fluoride ion transporter CrcB	GTGAGCGGGCTGCTGGGAGCGTTGCTCGTGGGCCTCGGCGGCGGGCTCGGTGCCGCCGCCCGGTTCTGGCTCGCGGACACGATCAAGGCGCGACGGCCGGACGGCTTCCCCTGGGGGACCTGGCTCGTCAACGCGCTCGGGTCGTTCCTCATCGGCCTGGCGGCGGGATGGCTGGCCCTCGGCACGGCGGGACCCGCCTGGGAGCTCTTCCTCGTCGTCGGGGTGTGCGGCGGCCTCACCACGTTCTCGACGTCGATCCTGGAGACCGCGGCGATGCTGCGCGGCGGCCGTCCCGCCCGGGCCGTGCTGCACGCGCTGAGCACGCTGGCGGTGTCGGTGCTCGCCGTCGTCGTCGGGCTCGGGCTGGTGGCGGCGCTGCTCGGCTGA	MSGLLGALLVGLGGGLGAAARFWLADTIKARRPDGFPWGTWLVNALGSFLIGLAAGWLALGTAGPAWELFLVVGVCGGLTTFSTSILETAAMLRGGRPARAVLHALSTLAVSVLAVVVGLGLVAALLG	PGPT0004985_2005	DIRECT EFFECT	BIO-REMEDIATION	FLUORIDE_DETOXIFICATION	FLUORIDE_RESISTANCE	FLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199	NA	NA
AK001_02531	1002		COG0258	5'-3' exonuclease	ATGCGCCTCCTGCTGCTCGACACCGCGTCGCTGTACTTCCGCGCCTACTTCGGGATGCCGGACTCGCTGCGCTCCCCCGACGGCCGGCCCGTCAACGCCGTGCGCGGCCTGCTCGACATGATCGCGTTCCTGATCACCGATCACCGGCCCGACCGCGTGGTGGCCTGCTGGGACGACGACTGGCGCCCGGCGTTCCGCGTCGAGGCGATCGGCACGTACAAGGAGCACCGGGTCGCCGAGCTGCGCGCCGACGGCCCCGACGTCGAGGAGATGCCGGAGGACCTGCGCGCGCAGATCCCGGTGATCGTCGACGTGCTCGCCGCGCTGGGCATCGCCCGCGTCGGATCGCCCGGCTTCGAGGCCGACGACGTGATCGGCACGCTCGTCGCCCGGGAGCTCGCCGGCCGGGGTTCCGGCGCTCCGCGGGACGACGGCGGCACCCCGGCCGACGACGACACCCCGGCCGTGCACGCTCGCTCCGGCCCGGAGGTCGGCATCGTCACCGGCGACCGCGACCTGTTCCAGCTCGTCGACGACGCCGCCGGGGTCGCCGTCCTCTACCCCGCCCGCGGGGTGCGCGACCCGGACGTCGTGGACCAGGCACGGCTCGCCGAGAAGTACGGCGTGCCGACCGGCACGGCCTACGCCGAGATGGCGGTGCTGCGCGGCGACCCGTCCGACGGGCTGCCCGGCGTAGCCGGCATCGGGGAGAAGACCGCGGCCAAGCTGCTCGCGGCGTTCGGGACCCTGGACCGTGTGCTCGAAGCGGCGGCCACCGGGGAGAAGGGCGTCACGCCGTCGCAGCGCACCCGGATCGCCGCCGCGGCGGACTACCTCGCCGTGGCCCCCGGCGTCGTCCGCGTGGCCGACGACGCCCCGCTGGAACCGTTCGACGACACCCTGCCCGACGCTCCTGCCGACCCCGAGGCTCTGGACGCGCTGGCCGCCCGGTGGGGCCTCACCTCGAGCGTGCACCGGGTGGTGAGCGCCCTGCAGGCGTGA	MRLLLLDTASLYFRAYFGMPDSLRSPDGRPVNAVRGLLDMIAFLITDHRPDRVVACWDDDWRPAFRVEAIGTYKEHRVAELRADGPDVEEMPEDLRAQIPVIVDVLAALGIARVGSPGFEADDVIGTLVARELAGRGSGAPRDDGGTPADDDTPAVHARSGPEVGIVTGDRDLFQLVDDAAGVAVLYPARGVRDPDVVDQARLAEKYGVPTGTAYAEMAVLRGDPSDGLPGVAGIGEKTAAKLLAAFGTLDRVLEAAATGEKGVTPSQRTRIAAAADYLAVAPGVVRVADDAPLEPFDDTLPDAPADPEALDALAARWGLTSSVHRVVSALQA				NA	NA	NA	NA	NA
AK001_02532	765		COG3324	Putative glyoxylase CFP32	ATGCCCCCTGTGGAGAAGCTGCCCGAGGGGGCGCCCGGCTGGATGGACCTGGCCGCCACCGACCTCGACGCCGCGGTCGCCTTCTACACCGCGCTGTTCGACTGGGAGCACCGGGATCTCGGTGAGCACTTCCGGCACTACGGGCAGTTCACGCACCGCGGCGCGCCCGTTGCGGGCATCGTGCCGCTGCAGGGCGACGAGCAGACGCCGGGCTGGCACGTCTACCTGTGGACGACGGACGCCGAGGCCGTCGCCGGTCGGATCGGCTCCCACGGCGGCACGGTCGACGTCCCGCCGCAGGACGTGCCCGGGATGGGCCGCTACCTGTTCGCCACCGACCCCGTCGGCGGGCAGATCGGCTGCTGGCAGGCCACCGGGCACCCGGGTTTCGTCCGGCTGGCCGAAGCCGGTGCGCCGTGCTGGTTCGAGCTGTGGACGACCGACTACGACACGGCGCTGCCGTTCTACCGCGACGCGCTCGGCTGGGACGTCCACGAGATGCCCGGCGGGGACGACTTCCGCTACGCCACGCACGGCGCCGAGGACGCGGCGACCGCGGGACTCTTCGACGCCGCCGCCGTGCTCGGCGAGCACGGCCGCCCGACCTGGATGGTCTACCTCGGTGCGGCGGACGTCGACGCCGCGGCCGCGCGGGCGGTCGACCTCGGCGGGACCGTGGCCGACGCCCCGGCCGAGACGCCGTACGGACGGATGGTCGACGTCGCGGACCCGAACGGTGCGCCCCTGCGGATCATCGCCGCCTGA	MPPVEKLPEGAPGWMDLAATDLDAAVAFYTALFDWEHRDLGEHFRHYGQFTHRGAPVAGIVPLQGDEQTPGWHVYLWTTDAEAVAGRIGSHGGTVDVPPQDVPGMGRYLFATDPVGGQIGCWQATGHPGFVRLAEAGAPCWFELWTTDYDTALPFYRDALGWDVHEMPGGDDFRYATHGAEDAATAGLFDAAAVLGEHGRPTWMVYLGAADVDAAAARAVDLGGTVADAPAETPYGRMVDVADPNGAPLRIIAA				NA	NA	NA	NA	NA
AK001_02533	741	cutC	COG3142	Copper homeostasis protein CutC	GTGCCCGCGGTGCCGGCCCTCGAGCTGGCGGTCCAGGACGTCGCCGGTGTCGAGGTCGCGGCGTCGGTCGGTGCCCGTCGGGTGGAGCTGTGCGCCGCCCTGGGCGCGACGGGCGGGATGACGCCGGGTCCCGGGCTGCTGGCCGCGGCCGTGGAGCGGGCCACCGCGGTCGAGGTGCACGTGCTGGTGCGGCCGCGACCCGGCGGGTTCGTCCTCGTCGACGGCGAGCTGGACGTGCAGGTGCGCGAGGTCGCCGCCGCGGTGTCTGCCGGGGCGGACGGCGTGGTCGTCGGCGCGCTGAGCGCGGACGGCACCGTGGACACGGTCGCGCTGCGCGAGCTGGTGGCGGCGGCCGAGGGCACCGAGGTGACGTTCCACCGCGCGTTCGACCAGCTCGCCGCACCGACGGCCGCCCTGGACGCGCTGGCCGGGCTCGGCGTGACCCGGGTCCTCACCTCCGGCGGGGCGCCCCGCTGCGCCGACGGGGTCGACCGGCTGCGGGCCTGCGCCGTCCACAGCCGGGACGTCCTCGACGGTGCCGTCCAGGTCATGGCCGGCGGCGGCGTGCGGGTCACTGACGTCCCCGTGCTCGTCGAGGCCGGTGTGGACGCCGTGCACCTGTCCGCCAAGCGCGTCGTGACCGACGACGGCGGGCCCGGCGGCGGGGGAGGCAGCGGCTACGAGGTCACCGACCCGGTCGTGGCCGCCGCAGCAGCCGCCGCCCTGAGCGTCGCGCGATGA	MPAVPALELAVQDVAGVEVAASVGARRVELCAALGATGGMTPGPGLLAAAVERATAVEVHVLVRPRPGGFVLVDGELDVQVREVAAAVSAGADGVVVGALSADGTVDTVALRELVAAAEGTEVTFHRAFDQLAAPTAALDALAGLGVTRVLTSGGAPRCADGVDRLRACAVHSRDVLDGAVQVMAGGGVRVTDVPVLVEAGVDAVHLSAKRVVTDDGGPGGGGGSGYEVTDPVVAAAAAAALSVAR	PGPT0004085_47	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004085-cutC-K06201	NA	NA
AK001_02534	2724	ppc	COG2352	Phosphoenolpyruvate carboxylase	GTGAGCGACAACTACGGACACCAGAGCCCGAGCACGGGCGCGATCGAGCGTGTGGTCGCCCGTCACGAGATGCCCGACCCGCTGCGCGACGACATCCGCCTGCTCGGCGGCCTCCTGGGCGACGTCCTGCGCGAGGCCGGCGGCCAGGACCTGCTCGACGACGTCGAACGCCTGCGCGAGCTGACGATCCGCGCCTACGGAGTGGACGACGGCGGTGCCGCGCTGGCCGAGGCCTCCGACGTCGTCGCCGGCTACAGCCTGGAGCGGGCCGAGCAGGTCGCGCGTGCCTTCACCTGCTACTTCCACCTGGCGAACCTGGCCGAGGAGTACCACCGCGTGCGCGTGCTGCGGCAGCGCGAGGCGGAGTCCGGGGCGGCGATCGAGGAGTCGCTGCCGGCGGCCTTCACCCAGCTGACCGAGGAGGTCGGGCGTGACGAGGCGCTGCGTCGCCTGTCCGAGCTCGAGTTCCGCCCGGTGCTGACCGCGCACCCCACCGAGGCCCGCCGTCGGGCCGTCTCGGGTGCCGTGCGGCGCATCTCCGACCTGCTGGCCGACCGCGACACCGTCGAGCTGGGCGGCACCTCCCGCTCGGAGAACGAGCGACGGCTCATCGCCGAGATCGACACGATGTGGCGCACCTCGCCGATCCGTGCCGCGAAGCCGACCGTGCTCGACGAGGTCAAGACGGCGATGGGCGTCTTCGACGCCACGCTGTTCGAGACCTACCCCGAGGTCTACCGGCGTCTGGACGACTGGCTGCTCGACGGCGACGCGGGTCGGACGAAGCCCGTCGCGAGCCCGTTCGTCTACCTCGGGTCGTGGATCGGCGGCGACCGGGACGGCAACCCGAACGTCACCGCCGAGGTGACGCGCCAGGCGGCCACGCTGGCCGCCGAGCACGCGCTCACGGCGCTGGAGCAGGCGGCGCGGGCCACCGGTCGCAAGCTCACTCTCGAGGAGGCGTCCACCCCGGCGTCGGACGAGCTCAAGGCGCTGTGGCAGCGGATGCGCCAGCTCTCGGAGGACCTGGCCGCCCAGGCGGCGGCGGAGTCCCCGAACGAGCCGCACCGTGCCGCCGTGCTGGCCATCGCCGGCCGCGTCGGTGCGACCCGCGCCCGCGACGCCGACCTGGCCTACCGCGAGCCGGCCGAGCTCGAGGCCGACCTGCAGATCGTCCAGGACTCGCTGGTCGAGGCCGGTGCGAACCGCGCCGCCTACGGCGACCTGCAGCGGCTGGTGTGGCAGGTGCAGAGCTTCGGCTTCCACCTCGCCGAGATCGAGGTCCGCCAGCACTCGCAGGTGCACGCCGCCGCGCTGGAGGAGATCCACGACAAGGGTGTGCACGGCGACCTGTCCGACCGCACCCGCGAGGTGCTGGACACGTTCCGTGCCCTGGGCGCGGTGCAGAAGCGGTTCGGCCAGCGGGCCGCGCGCCGCTACATCGTGTCGTTCACGCAGGCGCCGGAGCACATGGCGGCCGTGTACGAGCTGGCCGCCCTGGCGTTCGAGGGCACCGACGACCCGCCCGTCGTCGACGCGATCCCGCTGTTCGAGACCTTCGCCGACCTGGAGAACTCGGTGGAGATCCTCGAGGCGATGCTCGAGATGCCGCAGGTCCAGAAGCGGCTGGCCGAGAACGGCCGCCGCGTCGAGGTCATGCTCGGCTACTCCGACTCCTCCAAGGACGTCGGCCCGGTGGCGGCGACGCTGGCGCTGCACTCGGCGCAGTCCCGCATCGCGCAGTGGGCGCAGCGGCACGACATCACGCTGACGCTCTTCCACGGTCGCGGCGGCGCGCTCGGCCGCGGCGGCGGCCCGGCGAACCGCGCCGTGCTGGCCCAGCCGCCGCACTCGGTGGACGGCCGGTTCAAGCTCACCGAGCAGGGCGAGGTCATCCTGGCCCGCTACGGCAACCCGACCATCGCCGCGCGGCACATCGAGCAGGTGGCCGCGGCGACGCTGCTCGCCTCGGCCCCGTCGACGGAGAAGCGCAACGCGGAGGCCACCGAGCGGTTCGCCGGTATGGCGGCAGCGCTGGACGCCACCTCGCGGGCCCGGTTCCACGAGCTGGTGCAGTCCGAGGGCTTCCCGCAGTGGTTCGCCGAGGTGACGCCGCTGGAGGAGGTCGGTCTGCTGCCGATCGGCTCCCGGCCGGCCAAGCGCGGCCTCTCGGTCAACTCCCTGGACGACCTGCGCGCGATCCCGTGGGTCTTCTCCTGGTCGCAGGCGCGCATCAACCTCGCCGGCTGGTACGGCCTCGGTACCGCGCTGCGCGAGTACGGCGACCTGGAGCAGCTCCGGGCCGCCTACGAGGAGTGGCCGCTGTTCACCACGCTGCTGGACAACATCGAGATGTCCCTGGCGAAGGCGGACGAGCGCATCGCACGGATGTACCTCGACCTCGGCGACCGGGACGACCTGGCCGACATGGTGCTCACCGAGATGCACCTCACCTACGAGTGGGTGCTCAAGGTGACCGGCAACCAGTGGCCGCTGGCCAGCCGTCGCGTGCTCGGCCGGGCCGTGCAGCTCCGGTCGCCCTACGTCGACGCCCTGTCGCTGCTGCAGGTCCGCGCGCTGCGGGCGCTGCGCACGCAGGGTGCGAGCGAGGGGCTGTCGCTGGACGAGGGCGAGTGGGTCGACGGCGGGTACAAGGACCGCTGGCGCCACCTGCTGCTGCTGACGGTCAACGGCGTGTCCGCCGGCGTGCAGAACACGGGCTGA	MSDNYGHQSPSTGAIERVVARHEMPDPLRDDIRLLGGLLGDVLREAGGQDLLDDVERLRELTIRAYGVDDGGAALAEASDVVAGYSLERAEQVARAFTCYFHLANLAEEYHRVRVLRQREAESGAAIEESLPAAFTQLTEEVGRDEALRRLSELEFRPVLTAHPTEARRRAVSGAVRRISDLLADRDTVELGGTSRSENERRLIAEIDTMWRTSPIRAAKPTVLDEVKTAMGVFDATLFETYPEVYRRLDDWLLDGDAGRTKPVASPFVYLGSWIGGDRDGNPNVTAEVTRQAATLAAEHALTALEQAARATGRKLTLEEASTPASDELKALWQRMRQLSEDLAAQAAAESPNEPHRAAVLAIAGRVGATRARDADLAYREPAELEADLQIVQDSLVEAGANRAAYGDLQRLVWQVQSFGFHLAEIEVRQHSQVHAAALEEIHDKGVHGDLSDRTREVLDTFRALGAVQKRFGQRAARRYIVSFTQAPEHMAAVYELAALAFEGTDDPPVVDAIPLFETFADLENSVEILEAMLEMPQVQKRLAENGRRVEVMLGYSDSSKDVGPVAATLALHSAQSRIAQWAQRHDITLTLFHGRGGALGRGGGPANRAVLAQPPHSVDGRFKLTEQGEVILARYGNPTIAARHIEQVAAATLLASAPSTEKRNAEATERFAGMAAALDATSRARFHELVQSEGFPQWFAEVTPLEEVGLLPIGSRPAKRGLSVNSLDDLRAIPWVFSWSQARINLAGWYGLGTALREYGDLEQLRAAYEEWPLFTTLLDNIEMSLAKADERIARMYLDLGDRDDLADMVLTEMHLTYEWVLKVTGNQWPLASRRVLGRAVQLRSPYVDALSLLQVRALRALRTQGASEGLSLDEGEWVDGGYKDRWRHLLLLTVNGVSAGVQNTG	PGPT0001165_2017	DIRECT EFFECT	BIO-FERTILIZATION	CARBON_DIOXID_FIXATION	CO2_FIXATION-ALTERNATIVE_PAHTWAYS	CO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595	NA	NA
AK001_02535	825	pdxK	COG0351	Pyridoxine kinase	ATGCCCAGCACACCCCCGCTCGCCTACGTGATCGCCGGCTCCGAGGCCACGGGAGGCGCCGGCATCCAGGCCGACCTCAAGACCTTCCAGCAGCGCGGCGTCTACGGCGTCGGCACGCTGACCTGCATCGTCTCCTTCGACCCCCTCAACGACTGGGCGCACCGGTTCGTCCCGGTCGAGCCGCAGGTGATCGTCGACCAGATCGAGGCGGCCACGGCCACCCACGACCTCGACACGGTGAAGATCGGCATGCTCGGCGCGCCCGCGACCGTCGACGTCGTCGCGAAGTCCGTGTCCACGCGACCCTGGCGGCACGTGGTCCTCGACCCGGTCCTCATCTGCAAGGGCCAGGAGCCCGGTGCCGCGCTCGACACCGACACGGCGCTGCGCGAGCGCGTCCTGCCGCACGCGACCGTCGTCACCCCCAACCTGTTCGAGGCGGCGACGCTGGCGGGCATGGACCGGATCGACGACGTCGCCGACCTGACCGAGGCCGCCCGTCGCGTCCACGCGCTGCTCGACACCTCCGCGGGCCCCCGCTACGTGGTCGCCAAGGGCGGGGCCGAGCTGCCCGGCCCCGACGCCGTCGACGTCCTGTTCGACGGCGAGGAGGTCACGGTGCTCACGGCCCCGAAGATCGGCGAGGAGCGCGTCTCGGGTGCCGGCTGCACGTTCGCGGCCGCGATCACCGCCGAGCTGGCCAAGGGAGCCGACGTCCCGGCGGCCGTCGAGGTCGCCAAGGACATGGTCACGGCCGGCATCCGTGCCCGGGTCGCCGCGCACACCCCCTTCGACACCGTCTGGCAGGGCGCCTTCACCGGCTGA	MPSTPPLAYVIAGSEATGGAGIQADLKTFQQRGVYGVGTLTCIVSFDPLNDWAHRFVPVEPQVIVDQIEAATATHDLDTVKIGMLGAPATVDVVAKSVSTRPWRHVVLDPVLICKGQEPGAALDTDTALRERVLPHATVVTPNLFEAATLAGMDRIDDVADLTEAARRVHALLDTSAGPRYVVAKGGAELPGPDAVDVLFDGEEVTVLTAPKIGEERVSGAGCTFAAAITAELAKGADVPAAVEVAKDMVTAGIRARVAAHTPFDTVWQGAFTG	PGPT0009125_2501	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009125-pdxK|pdxY-K00868	NA	NA
AK001_02536	231			hypothetical protein	ATGTCCCTGGTGATGCTGGCCAACATGCTCGTGCCGGTCGTCGTCGCGCTCGCTCTCGTCGCGATCGCGGTGGCGCTCGTCCGCGGTGGTGCGCGCGGCGCCTCCGTGCCCACCGACCGGCCCGGACTGCTCGAGCAGCGGCTGGAGCACCTCGACCGGCTGCACGCCGCCGGCCGGATCAGCGACGTCGAGCGTGCCGACGCCCGGGCCCGTCTGCTCGGCACGCTCTGA	MSLVMLANMLVPVVVALALVAIAVALVRGGARGASVPTDRPGLLEQRLEHLDRLHAAGRISDVERADARARLLGTL				NA	NA	NA	NA	NA
AK001_02537	786	end	COG0648	putative endonuclease 4	ATGAGCATGCCGATCGGTGCCCACGTCAGCCTCGCCGACGCCGTGACCGAGGCCCAGGAGATGGGGGCCGACGTCTTCCAGGTGTTCCTGTCCGACCCGCAGGCGTGGAAGGTGCCGCCGCTGGACTACCCGGGCGGGGCGGAGGCCTTCCGGACCGCGACGTCGGAGGCCGGGATCGACGTCGTCGTGCACGCGCCGTACGTCATCAACGTGGCCTCGACGAACAACCGCATCCGCATCCCGAGCCGCAAGCTGCTGCAGCAGATCATGACCGGCGCCGGCGAGATCGGCGCGCGGGGCGTGGTCGTGCACGGCGGGCACGTCACGGCGAAAGACGACCCGGCGAAGGGGTTCGACAACTGGCGCAAGGCGATCGAGGCGCTCGACACCGACGTCCCGGTGCTCATCGAGAACACGGCCGGGGGCGACCACTCGATGGCACGGCGGCTGGACCGCATCGCGGAGCTGTGGACAGCGGTGCAGCAGGCGGACAGCGACGTCGAGGTCGGCTTCACGCTCGACACGTGCCACGCCTGGGCCGGGGGCCTCGACCTGTCCACGGTGGTGGACGACGTCCGGGCGATCACCGGCCGGATCGACCTCGTGCACGCCAACGACTCGCGCGACGCCGCCGGCTCCGGGGCTGACCGGCACACGAACTTCGGGGCCGGCGAGATCCCGCCCGAGCTGCTCCTCGACGTGATCCGCGCCGCCGGTGCACCTGTCGTGTGCGAGACGAAGGGCGACGTCGCCACGGACATCACCTGGTTGCGCGAGCGCCTCTGA	MSMPIGAHVSLADAVTEAQEMGADVFQVFLSDPQAWKVPPLDYPGGAEAFRTATSEAGIDVVVHAPYVINVASTNNRIRIPSRKLLQQIMTGAGEIGARGVVVHGGHVTAKDDPAKGFDNWRKAIEALDTDVPVLIENTAGGDHSMARRLDRIAELWTAVQQADSDVEVGFTLDTCHAWAGGLDLSTVVDDVRAITGRIDLVHANDSRDAAGSGADRHTNFGAGEIPPELLLDVIRAAGAPVVCETKGDVATDITWLRERL				NA	NA	NA	NA	NA
AK001_02538	675	liaR_2	COG2197	Transcriptional regulatory protein LiaR	ATGACCGAGGCGATCTCCGTGGTGGTGGTGGACGACGACCCCCTGGTGCGGGCCGGGCTGGGCCTGATCCTCGGCGGGGCGCCCGAGGTGCGGGTCGTGGGCGACGCGGGCGACGGCGACGACGGCGTGACCCTGGTGCGCCGGCTCCGGCCGGACGTGGTGCTCATGGACATCCGTATGCCCCGTGTCGACGGGATCGAGGCGACGCGGCAGCTCGCCTCGACGGACGCCGACGCGCCGCGGGTGATCGTGCTGACCACGTTCGACACCGACGACATGGTCGTGCGGGCGTTGCGCGCCGGGGCGGCGGGGTTCCTGCTCAAGGACACGCCGCCGGACCGGCTGGTCGCCGCCGTGCGCGCGGCCGCGGCAGGGGAGCCGACGCTGTCGCCGTCGGTGACCGCCCAGCTCATCGACCGGGTCTCGGGCGGCGCGGCCGCGGAGTCGGAGGTGGGTCGCCGGGCGGCGCGCCGCCGGGTGGAGACCCTGACCGCGCGGGAGCGGGACGTGGCCGTCGTGCTCGCCCGGGGACTGTCCAACGCGGAGATCGCCGGTGAGCTGTACATGAGCGTGCCCACCGTGAAGACGCACGTCTCGCGGATCCTCGACAAGCTGGCGGCGGGGAACCGGGTGCAGGCGGCGATCGCCGTGCACGACGCCGGACTCGCGAGGTAG	MTEAISVVVVDDDPLVRAGLGLILGGAPEVRVVGDAGDGDDGVTLVRRLRPDVVLMDIRMPRVDGIEATRQLASTDADAPRVIVLTTFDTDDMVVRALRAGAAGFLLKDTPPDRLVAAVRAAAAGEPTLSPSVTAQLIDRVSGGAAAESEVGRRAARRRVETLTARERDVAVVLARGLSNAEIAGELYMSVPTVKTHVSRILDKLAAGNRVQAAIAVHDAGLAR	PGPT0014870_135	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618	NA	NA
AK001_02539	1266	lnrJ		Sensor histidine kinase LnrJ	GTGCCCACCCCGTCCGCCGACCCGTACCGGGTCGACCCGAGCGACGCTCCGTCCCCGGCCGCCGGTGCGCCGGACGGACCTCCGGTCCGGTGGCGGCGGGTCTGGGCCGAGACGTGGCGGCTGCTGGCGGCCTTCGCCGTCAGCATGCTGGTGGCCGGTGCGGTCGTGTGGGAGGTGGAGACCGGCCAGCGCGCGTCCAGCCCCGACCGCCTCGCCCTGGACATCGCCGTGGGGCTGCTCTGCTTCGGTCTGGTGGTGCTGCGCCACCGGTTCCCCACGGCTGTCGCGCTGCTGATCGCGGCGGCGTCGACGGTCTCGGTGTTCGCCTCGGGACCCTTGACGCTCGCGGTGGTCTCGCTCGCGACGCACCGGCGCTGGTGGCGCATCGGCCTGGTCGGGGTGGTCTTCGTCGTGGGCGGCTGGGCCTACGGGGTCCTGTACCCGGTGGACGACGGCACGACCTGGGTCGTCGACGTCGCCAGCGGTGTCGGACTGTTCGCGCTGATGGTCTGGATCGGCGCGTACGTCGGGCTGCGGCGGGAGCACGTCGCCGAGCTGCACGAGCGGGTCGCGACGGCGGAGCGTGAGCAGGCGAGCCGGGTCGCCCAGGCACGGGCGAACGAGAGGGCGCGGATCGCCCGGGAGATGCACGACGTGCTCGCGCACCGCATGTCGCTGGTGGCGATGCACGCCGGCGCGCTCGCGTACCGCAGCGACCTGCCGCCGGAGAAGGTCGCCGAGACCGCCGGCCTGGTCCGCGACAGCGCCCACGAGGCGCTCGGCGAGCTGCGCGAGGTGCTCGGGGTGCTGCGCGGGCTGGACGGTGCGGACGCCGAGGGCCCGCCCGAGGGGCCGCAGCCGACGCTGGCCGCCGTCGAGGAGCTCGTGGCCGCGACCCGGGACGCCGGGGTGCCGGTGCGTCTGGTCGACCGCACCGTCGACGTGGACCGGTTGCCGACAGCGACGTCCCGCACCGCGTACCGGATCGTGCAGGAGGCGCTGACCAACGTGCGCAAGCACGCCGCGCGGATGCCGGCGTCGGTGGTGCTGCGGGGCGGCCCCGGTCAGGGCCTGTGGATCACGGTGTCGAACCCGGTCGCGGAGGCGGAGCCCGTGCCGCGCCGCGGTGACGGCGCGGTGGTGTCGTCCTCGGGGCTCGGCCTGCTGGGTCTGGAGGAGCGGGCCGAGCTCGCCGGGGGGTCTCTCACGGCAGGCGCGTCCGGCGACTCCTTCGCGGTGCGGGCGTGGCTACCGTGGGCGTCATGA	MPTPSADPYRVDPSDAPSPAAGAPDGPPVRWRRVWAETWRLLAAFAVSMLVAGAVVWEVETGQRASSPDRLALDIAVGLLCFGLVVLRHRFPTAVALLIAAASTVSVFASGPLTLAVVSLATHRRWWRIGLVGVVFVVGGWAYGVLYPVDDGTTWVVDVASGVGLFALMVWIGAYVGLRREHVAELHERVATAEREQASRVAQARANERARIAREMHDVLAHRMSLVAMHAGALAYRSDLPPEKVAETAGLVRDSAHEALGELREVLGVLRGLDGADAEGPPEGPQPTLAAVEELVAATRDAGVPVRLVDRTVDVDRLPTATSRTAYRIVQEALTNVRKHAARMPASVVLRGGPGQGLWITVSNPVAEAEPVPRRGDGAVVSSSGLGLLGLEERAELAGGSLTAGASGDSFAVRAWLPWAS				NA	NA	NA	NA	NA
AK001_02540	900	bcrA_2		Bacitracin transport ATP-binding protein BcrA	ATGATCACCGTGGAGCACCTGACCAAGAGGTACGGCCCGGTCCTGGCCGTGGACGACGTCTCGTTCACGGCCGATCCGGGGGTCGTCACCGGCTTCCTCGGCCCCAACGGCGCCGGCAAGTCGACCGCCATGCGCATGATGTGCGGCCTGACACCGCCGACGAGCGGCACGGCCCGCGTCCTCGGCCGGCCGTACGCGGCCCTGGCCAACCCTGGACGGCGCGTGGGCGTGCTGCTCGACGCCTCGGCCCAGCACGCCGGTCGCACCGGCCGCGAGACGCTGACGCTGTCGGCGCTGCTGACCGGGGTCGACCGGCGCCGCGTCGACGAGGTGCTCGACGTCGTCGGGCTCACTCCCGCCGAGGCCGGACGTCGTGTGCGCACCTACTCGCTGGGGATGCGTCAGCGGCTCGGCCTCGCGACCGCGCTGCTCGGAGATCCCGACGTCCTGATCCTCGACGAGCCCGCCAACGGCCTCGACCCCGCCGGCATCCGGTGGATGCGGGACCTGCTGCGCGACTTCGCGGGCCGTGGCGGCACCGTGCTGCTGTCCAGCCACCTGCTGGCCGAGATCGAGCAGGTCGCCGACCGGCTCGTCGTCATCGGCCGCGGCCGGGTCGTGGCGGAAGGCACCAAGGACGAGCTGCTGCGCGCGGCCGGCATGGTGGTCCGCTCGCTGGACGACGTCGCCCTGGCCGCCGCGCTGCGCCGCGCCGGCGTCGACGTCGAGCCGGGTGCCCAGGGCGGGCTGGCCGTCGCCGCGGACGCCGAGACCGTGGCGCGGACCGCCGTCGGCGCGGGCGTCCTCGTGACCGAGCTGCGCCCCGCCGACTCCCGCGGGCTGGAGGAGCTGTTCCTCGAGCTCACCGCCGCGGACGCCCGCGAGGAGGTGGCGGCATGA	MITVEHLTKRYGPVLAVDDVSFTADPGVVTGFLGPNGAGKSTAMRMMCGLTPPTSGTARVLGRPYAALANPGRRVGVLLDASAQHAGRTGRETLTLSALLTGVDRRRVDEVLDVVGLTPAEAGRRVRTYSLGMRQRLGLATALLGDPDVLILDEPANGLDPAGIRWMRDLLRDFAGRGGTVLLSSHLLAEIEQVADRLVVIGRGRVVAEGTKDELLRAAGMVVRSLDDVALAAALRRAGVDVEPGAQGGLAVAADAETVARTAVGAGVLVTELRPADSRGLEELFLELTAADAREEVAA	PGPT0006725_15734	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02541	816			hypothetical protein	ATGAGCGCCGTCGACCAGACCCGGACCGGCCACCGACCCCGCACGCGCACCGGCGCGCGCACCGCGGCCGAGATCCGCCCCGTCCCCTTCTCCCGCCTGACGCTGGTCGAGTGGCGCAAGCAGCTCGACACCCGGGCCGTGCGGTGGCTGTTCGTCACCATCGCGCTGCTGACGGCCGGCGTCGTCACCGTGACGGCCCTGGTCGGCGAGGGCGACGTGTCGTTCGAGACGTTCGTCTCGAACACCTCCACGCCCCTGGCCATGCTGCTGCCGATCGTCGCCATCCTGGCCACCACGGCCGAGTGGTCGCAGCGCACCGCGCTGACCACGTTCACGCTCGAACCCCGGCGCGGGCGGGTCGTCGGGGCCAAGCTGCTGACCGCCGTCGGCTCCGGGCTGGCGTTCTTCGTCGTGGCCGTGGGGATCGCCGCCGTCGCCCACCTCGGTGTGGTGACGCTGCGCGACGCCTCGCCGGACTGGGGACTCGGCGCGATGACCGCCGGCATGGCCCTGATGATCGTGCTGTGGATGGTCCAGGGCGTCGCGTTCGGCCTGGCGCTGCAGAGCACCCCGGCCGCGATCGTCGTCTTCCTCGCGGTGCCGACCATCGTCGGGGCGATCACGATGCTGCTGACCGCCTGGTCCGACGTGTGGCCCTGGCTCGACCTCTCCACGTCGTCCGTCCCGCTGATCATGGGCGAGCCGCTCGGCGGCACCGGGTGGGCGCAGCTGGCGACGTCGGCGGCGATCTGGGTCGGCCTGCCCCTGGCGGTCGGCGTCCGGCGCGTGCAGCGCGGGGAGGTCAAGACCTCCTGA	MSAVDQTRTGHRPRTRTGARTAAEIRPVPFSRLTLVEWRKQLDTRAVRWLFVTIALLTAGVVTVTALVGEGDVSFETFVSNTSTPLAMLLPIVAILATTAEWSQRTALTTFTLEPRRGRVVGAKLLTAVGSGLAFFVVAVGIAAVAHLGVVTLRDASPDWGLGAMTAGMALMIVLWMVQGVAFGLALQSTPAAIVVFLAVPTIVGAITMLLTAWSDVWPWLDLSTSSVPLIMGEPLGGTGWAQLATSAAIWVGLPLAVGVRRVQRGEVKTS	PGPT0006730_13134	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_02542	891			hypothetical protein	ATGACGGGGTACGACGCCTGCTTTCTCGACCGCGACGACCGGCTGCGCGTCCCGCTGCCGGTACCGGCCGACGGCGGGCCCGACCCGGCCGAGCTGCGCCGGCTCGACCACCCGCACTTCAGCGTGCTGCTGCACTCCGGGCGCCGGCTGGCGGTCGCCACCGCCTGCATGATCGACGGCGCCCGCCTGCAGCCGCTGGCCCGCTCCGGGTCGTGGCGGCTCGACCCCCAGGCGCCGCCCGCGGAGCAGGCCGACAACGACCTGTACCACCACAACGTCCTCGACCGCGGTCATCTCGTGCGCCGCCTGGACCCGATGTGGGGCACCGAGGAGGAGGCGCGCGACGCCGGCGAGGCGACCTTCGTCTACACCAACGCCGCCCCGCAGGTCGACGAGTTCAACCAGTCCAAGAGCCTGTGGAACGGGCTGGAGGACCACGTCCTGGCGTTCGCCGACGCCCACGACCACCGGGTCGTCGTGCTGACCGGCTGCGTCTTCGCCGACGCCGACCCCGTCTACCGTGGCGTCCCCCTGCCGCGACGGTTCTGGAAGGCCGCCGCCTGGGTGACGGAGGTCGACGGCGAACGCGTCCTGCGCTCGGCGGGGTTCCTGCTCGACCAGTCGCCCCTGCTCACCGACGCCGAGCTGAGCACCGCCACCGGGCGGGCGCTCGCGGTGGGGAACGTCCCGCCGCTGGGCCCGTACCGCACCTTCCAGGTACCGGTCGCCGACCTCGCGGACCTGACCGGCCTCGACCTCGGCCCGCTGGTCGGGGCGGACGTGGTGCCCACCGAGCGCAGGGCCCTGGAGCCGCTGGCGGCGGCCGGCCCGCCGTCCGCGGGCTGGACGGAGCTGAGCGAGCCGGCCGCCATCACCCTCGGTCCCCGCTGA	MTGYDACFLDRDDRLRVPLPVPADGGPDPAELRRLDHPHFSVLLHSGRRLAVATACMIDGARLQPLARSGSWRLDPQAPPAEQADNDLYHHNVLDRGHLVRRLDPMWGTEEEARDAGEATFVYTNAAPQVDEFNQSKSLWNGLEDHVLAFADAHDHRVVVLTGCVFADADPVYRGVPLPRRFWKAAAWVTEVDGERVLRSAGFLLDQSPLLTDAELSTATGRALAVGNVPPLGPYRTFQVPVADLADLTGLDLGPLVGADVVPTERRALEPLAAAGPPSAGWTELSEPAAITLGPR				NA	NA	NA	NA	NA
AK001_02543	1680			hypothetical protein	GTGGGGCGACGACGCGGTGCCCCCCAGGGGGCGTTCACGTTCGACCTCGTGCCCGAGGACGGGTCCGAGGCCGGGCAGCACCCTGCGGGCCGGCGGGTCGCGGAGGAACCCGAGCCGGGTACCGCCCCGGAGGCCGAGCCCCCCGCCCTGCTCGCCGGTGCCCGACGGCGCTGGGCCGACCGGCCCCGCCTGCTGCGGTGGGGCGTGCCGGTGGCCGCGGTGGTCGCGCTCGCCGCGGTGGTCGTGGTCGAGGGGGTCGTCGACCGTTGGCGCGGTGACGACCTGCGGGCGGCGGCGGGCGGGGTGAGCGACCTGTCCGGTCCGCCGTTCGAGTCCTGGCGCCTCGACGAGGACGTCGGCGGCATCGGGCTGACCGGCGGACTGATCGCGATGGAGGGCGACGTGGCCGCCCTGCTGCACCACGACGAGCTCGTCGGGGTCGACCTGCGGACCGGTCAGCCCGTGTGGACGGTCGAGCTGACCGCGACCGACGCGAGCTGCGGGCCCGGGCTGGCGATCTGGGGCGACACCGTCGACCTGCGACCGGCGGAGCTCGTGGTCTGCGTCGCCGGGACGACCGACGACGCGGTGGACGTCACCGTCGTGGAGGACGACGGCAGCGTCCTGGTGCGCCGCACCGTCGAGGGCGAGCACGACCTGCTCGTGCCGGGACCCCGCGGCACCCTGGTGTCGGCGACGTGGACCGGCGACCCGGACGACGTCGACGTGGAGCTGCGCGGCGACCCGCTGACGAACCTCACCGTCCTCGGCGACATCGACGACGGGTACGACCTGCAGCTGCGGGCGGTGGACGCCGTGACCGACGAGGAGCGCTGGGCCACGACGGTGCCCTTCGGGACCGTCCGCGACGCCACGCAGTGCGTCAGCTGGGACACCGGGGGCCGCAACGCGCAGGTCGACCGGCGGGCCACCCTCGACTACGCGGTCAGCCAGCAGCTGATCGGGGTCGCCGGCTGCGGCATCCTCGCCTACGTCACCCCCGACGGGAAGCGGCTGGACCTGCCGGACGACGACGGCGACGACGAGGCGGGCACGGTGCGCCGGGTCCGGCCGCTCGCCGACGGCGGCTTCGTCGTCTCCTCCGGCGTCTGGAACCTGCCGGTGTGGGACCACGCCGTCCTCGGTCCGGACGGCGAGCACTGGTACACCGTGGAGGGGAGGCTGCTCGAACCCCTGTCCACCGTGGGCGGGGGCGGCGGCCAGCAGCTGGTCGCCCACGCCGCCCGCACGGTCGCGCTGGACCAGGACGGTCAGGAGCTGTGGACGGCGGACGTGAACACACAGACGTTCCTGGCCCGGACCGAGGAGGTCGCCGTCGTCCTGGACGTCCAGGACCGCGTCCTCGGGCTGGACCGGTCCGACGGCACCGTGCGCTGGGTGCGCGACGACGTCGTCACCCAGTTCACGGCCCTGGAGGGCGGCGGCCGGAGCGGTGAGCTCGAGGCGGCGTTCACCGACGGCGCCGTCGTGGCCGTGGTCGTGCCCACCTACACCGGCGAGCGGGTGGTCTCCCGGTGGCGTGCCGTCGACGTCAGGACGGGGGAGGACCTGTGGTCCACCGAGCTGGCCGCGGACGGCTGGGGGCTGGAGCTGGCGGCGTCGGGCCACCTGCTGCGGTGGTCCCCGCGGGGCCTGACGGGCTACACGACCGGATCGTGA	MGRRRGAPQGAFTFDLVPEDGSEAGQHPAGRRVAEEPEPGTAPEAEPPALLAGARRRWADRPRLLRWGVPVAAVVALAAVVVVEGVVDRWRGDDLRAAAGGVSDLSGPPFESWRLDEDVGGIGLTGGLIAMEGDVAALLHHDELVGVDLRTGQPVWTVELTATDASCGPGLAIWGDTVDLRPAELVVCVAGTTDDAVDVTVVEDDGSVLVRRTVEGEHDLLVPGPRGTLVSATWTGDPDDVDVELRGDPLTNLTVLGDIDDGYDLQLRAVDAVTDEERWATTVPFGTVRDATQCVSWDTGGRNAQVDRRATLDYAVSQQLIGVAGCGILAYVTPDGKRLDLPDDDGDDEAGTVRRVRPLADGGFVVSSGVWNLPVWDHAVLGPDGEHWYTVEGRLLEPLSTVGGGGGQQLVAHAARTVALDQDGQELWTADVNTQTFLARTEEVAVVLDVQDRVLGLDRSDGTVRWVRDDVVTQFTALEGGGRSGELEAAFTDGAVVAVVVPTYTGERVVSRWRAVDVRTGEDLWSTELAADGWGLELAASGHLLRWSPRGLTGYTTGS				NA	NA	NA	NA	NA
AK001_02544	1689			hypothetical protein	ATGGCGAGGCGCCGTGACGACGCGATGGTCTCCTTCGACGTCTCGGTCGACACGTCCGTCGACGCCGGCGCGGGGCACGACGGCGGGGCGAGGACGCCGGAGCCGCCGCGGCCGGGGTGGCTTGAGCGTGCCGCGGCGTGGTGGCGGGCGGCGTCCCCGCGTCGGCGGCGCGCGACGGTGGGTGTCGGCGGCGGCGCGGTCCTCGTCCTGGTGGGCGGGCTGGTCGCCGGCGGGGCGGCGGCGGCCCACCTCGAGTCGGAGCGGCTGCGGGCGGCACCGGGTGGCGTGCTCTCCCTCGCGGGCGAGCTGACCGAGGCGTGGAGCCGGGACGGGTCCGGGGTGGTCGCCGTGCTCGACGGCGGCCGGCTGGCCTTCGTCGAGGACCGGACGCTGGTCGTGCACGACGCGGCCGACGGCAGCGAGGTGTGGCGCGCCGCGCTCGGACCCGACCTGGAGTGCGGCCCGCGACCGCGGCTGAGCAGCGGGGTCGAGTGGACGATGCCGAGCACGACCCTGACGTGCGTGCACGGCGACGACGGTGAGCGCACCGTGACGGTCCTGGACGCCGACGGTGCCGTCGTCGGGGACCGCGTCCTGGACCCGGAGGTCTACGGCGGCGAGCACGTGCGGGTCGCGCCGGCCGCCGCCGGCGGCCTGGCCGTGGTCGAGCACGTGATCGACCTGCCCGGCCGTCGGACGGTCGAGAACTCGCCGACCACCCAGCAGCTCGTCGAGGAGATCGACCCGAACGGCCTGGGCGCGGCGACGCTGCGGGTGGAGGACGCGCTCACCGGGCAGGTGCGTGCCGAGAGCACGGCGAACCGCTGGCCGATGTCGCTGCAGGACTGCGTGTGGTTCAGCGCCGACGCCGAGGGACGACCGCGACCGGCGACCACCCGGATCGAGCTGTGGGGGGTGCGGCAGCCCGTCGCGACGCCGTCGGTCGTGGGCTACCAGATGTGCCAGGGCGGCACCGGGCTGGCGACCGATGGCACGCCGCTCGACGTGGCCGACGTCACCGGCGTCTCGTTCGCCGACCTGCAGGGTCTCGGCGTGGTGGAGCCGTTCCCGGGCGGTGGGCAGGTCGTTCCCGGTCCCCGGGGCGGCACCGTGCTCGTGACCGCCGAGGAAGGTCGGCGGGAGGACCTCGGCGGTCGAGTCCGCGTCCCCGTGGCGCAGGTGGGGCCGGTCGAGCCGGAGCTGGTCGTCGTCCGCGAGCTCAGCACCGCCGTCGGGATCGGCGGCGACGGCGCCGTCCGCTGGGAGGCGGAGCTCGGGGGCGACCCGGACGTGCTCGCCCGCGCGGCCGGGACGACGGTGGTGGCGACCGACGCGTCCTCGGAGCTGGTGGCGCTCGACGACGCCGACGGGCGCGAGCGGTGGCGCGTCGACCTGGTCCACCCCGCCCCGGACGGTCGCTGGGTCCAGCCCACCTCGGCGGTCACCGACGGTGAGCGGGTCACGGTCGCGCTCGTGGAGGGCCTCGACGGCGGTCCGACCTGGGCCGGCAGCCTGGTGACGGTGGACCTCGCCACCGGGGACGCCCGCCGGACGGAGCTGGACGGGGACGGGCTGCCGTGGGTCACCGCCGTCGACGGCCACCTGCTGCTCCACGAGCTCGACCCGGGCGGCGGGGGATTCGCCGCCTGGCCGCGGATCGCTGCGGTGAAGATGCTCGAACCGCGCTAA	MARRRDDAMVSFDVSVDTSVDAGAGHDGGARTPEPPRPGWLERAAAWWRAASPRRRRATVGVGGGAVLVLVGGLVAGGAAAAHLESERLRAAPGGVLSLAGELTEAWSRDGSGVVAVLDGGRLAFVEDRTLVVHDAADGSEVWRAALGPDLECGPRPRLSSGVEWTMPSTTLTCVHGDDGERTVTVLDADGAVVGDRVLDPEVYGGEHVRVAPAAAGGLAVVEHVIDLPGRRTVENSPTTQQLVEEIDPNGLGAATLRVEDALTGQVRAESTANRWPMSLQDCVWFSADAEGRPRPATTRIELWGVRQPVATPSVVGYQMCQGGTGLATDGTPLDVADVTGVSFADLQGLGVVEPFPGGGQVVPGPRGGTVLVTAEEGRREDLGGRVRVPVAQVGPVEPELVVVRELSTAVGIGGDGAVRWEAELGGDPDVLARAAGTTVVATDASSELVALDDADGRERWRVDLVHPAPDGRWVQPTSAVTDGERVTVALVEGLDGGPTWAGSLVTVDLATGDARRTELDGDGLPWVTAVDGHLLLHELDPGGGGFAAWPRIAAVKMLEPR				NA	NA	NA	NA	NA
AK001_02545	1671			hypothetical protein	ATGGGCCGACCACGCCGGGACGACGTCGTCACCTTCGACGTCTCCCACGACGCCGACGACGGGGTCGACGACGCCGCCCGCACCGGCGACGGGCGGGCGGACGGCGGCGCCGCGGCGCCCCGGCGTGACCGGGTCCGCCGCTGGTGGCGGGCCGCGACGCGGCGCCAGCGCCGCACGGCGACCGCCCTCGTCGCCGGCGCGGCCGTGGTGCTGACCGGCGGCACCGTGGCGGCGTCGACGCTGGCGAACCACGTCGAGGCCGAGCGGCTGCGCACCGCCCCGGGCGGGGTGCTCTCCCTGGACGGGCCGCTCACCGAGGTCTGGAGCGCCGACGTCAGCAGTATCGCGGCCGTGCTGCCCGCGGGCGGGATCGTCACCACCGAGGGTCCCCGGGTCGTCGCCCGGGAGGTCGCCACCGGTGCCGAACGCTGGGAGGTCACCCTGACCGGGGCGGTGGAGTGCGGTCCCAGGCCGCGGCTGGACAGCGTCGCGGAGTGGACGGTGCCCGTCGAGACGGTGACGTGCGTGCACGGCCGGGCCGGGAACCGTGCCGTCACGGTGCTCGACGCCGACGGTGCCGTCGTCGGGCAGCGCGGGCTGGCGGCCGAACGGTACGGCGGCCAGGCCCGGTCGGTGGTCGCGGCGGCGGACGGCGCGCTGGCCGTCACCGAGCACGACACCGACCTGCCGGAGCGCCTCACCTTCGCCACGCCGGACGAGATGTTCTCCGAGCTGAGCCAGATGGAGGTCGACGGAGGAGACACGCGGACCTGGCTCGAGGACGCGCTGACCGGGGAACGTCGGCAGACCCTGGACCTGGTCGAGCTGCCGTGGGCGCACGGCGTCGACTGCTACACGCTGGGGGAGGACGAGGTCGACTCCTCCGGCCTGGGGACGGCCGGCCGGGCCACGCTGGACCTCGGCGCGACGCTGGGGACGCCGACGATGGTCGGCTTCGCGGGCTGCGCCGCCGACGGCGCCGCGACCTACACGGGTGTCCCCCTGGGGTACCGGTCCGCGCTCGCCACGACGTGGCCACGGCAGTCCGTGCGCCAGCCGTACCCGGACGAGCGCTTCGTCGTGCCCGCCGGGGAGGGCAGCAGCCTCCTCGCCGACGACGGCGAGCCGGTCCTCGACGTCCCCGGCCTGCGTCTGGAGGTGCCCGCCACGGACGGGACCGCCGGCGACGGGTACGTCGCCGTGGAGGGCGCCGAGCGTGTCGTCCTGCTCGCCGAGGACGGGAGCGAGCGATGGAGCGCGCCGGGTGAGAGCCCCCGCGTCCTGGTGCGCACCGACGACCTCGTGGTGGTCAGCGGCTGGGACGAGCTGGTCGGCTACGACGCGGCCGACGGGACCGAGCGGTGGCGGCTGGCCCCGGACGCCGGACCGCGGCGGTACGTGCTCTCGGCGGTCACCGACGGCGTCCGGATGACGGGCGTGCTGATGGACGTCTCCGTCGAGGCCACGGCCGAGCTGTCGCTGTTCACGCTCGACCTGCGCACCGGGCAGGAGGTGGCCCCGCGGGTGCGGGACGTCGCCACGCGCACCGTGCTGGCCGTCGACGGCCACCTCGTCGTGCCCGAGCTGCCGGCCGACGAGGTGCTCCTCGGCGACGCCACGACGCCGGTGGTGGGGCTGCGGGTGCTGGCTCCCGGCGAGGGCGGGGCCTGA	MGRPRRDDVVTFDVSHDADDGVDDAARTGDGRADGGAAAPRRDRVRRWWRAATRRQRRTATALVAGAAVVLTGGTVAASTLANHVEAERLRTAPGGVLSLDGPLTEVWSADVSSIAAVLPAGGIVTTEGPRVVAREVATGAERWEVTLTGAVECGPRPRLDSVAEWTVPVETVTCVHGRAGNRAVTVLDADGAVVGQRGLAAERYGGQARSVVAAADGALAVTEHDTDLPERLTFATPDEMFSELSQMEVDGGDTRTWLEDALTGERRQTLDLVELPWAHGVDCYTLGEDEVDSSGLGTAGRATLDLGATLGTPTMVGFAGCAADGAATYTGVPLGYRSALATTWPRQSVRQPYPDERFVVPAGEGSSLLADDGEPVLDVPGLRLEVPATDGTAGDGYVAVEGAERVVLLAEDGSERWSAPGESPRVLVRTDDLVVVSGWDELVGYDAADGTERWRLAPDAGPRRYVLSAVTDGVRMTGVLMDVSVEATAELSLFTLDLRTGQEVAPRVRDVATRTVLAVDGHLVVPELPADEVLLGDATTPVVGLRVLAPGEGGA				NA	NA	NA	NA	NA
AK001_02546	1626			hypothetical protein	ATGAGAGATAGATTGCCGGACATGGCTCGACGACGTGATCCCGTGCAGTTCGACCTGGTCCCGGACGAGGACGGGCCAGGAGACGCAGGGACGAGTGCTGCTGCCGGGTCGGCCGGCGAGCCCGTCGAGCCCGGCTGGTTCGGCCGCCGCGTCGCCGGACCCGTCCGGGAGCGCTGGCGGGCCGTACCCCGGCGGCTGCGGGCCGGGATCGTCGCTGTCACCGCGGTCGCCGTCGTCGGGACGGCGGCCGGGGTCGCGGCGCTCGACGCGCGGTCCGACGCCGCGCACGCCGAGCACATGGCAGAGATGCCGGGCGGCGTCGCGGACCTGTCCGCCCCGCTGGAGGAGACCTGGCGGGTGGAGACCGACGAGGGCGTCGTCGCGGTGCTGCCCGGCGGGGTCGTCGTCACGCGCGACGGGACCGACGTGCTCGGGGTCGACGTCGCCACGGGGGACGAGGTGTGGCGCCACGAGCTGGGGGCTCTCGTCGAGTGCGGCCCGGACAACCTGCGCGGACTGCTCTCCACCGGCCTCGAGGCCCTCGTGTGCGTGCACGGCACGCCGGAGCGCACCGCCACCGTGCTGGACGCCTCGGGCACGGTGCTCGGCGACCGGGAGCTCGGTGTCGCCAACCACGGGCAGCGGGGTGCCTGGGTCGACGGTGCACCGCAGGTCCTCCCGGCGGGGGACGGCACCGTCGCGGTGCTCGAGGGCGGCGCGCGGGAGCTCACGCTCGACGGGGAGGATCTGGAGGCCGGCCTGGCGCAGGCCCGCGCCGACGGCCGTTGGCAGGACCCGACCGTCCGGGTGGAGGACGTGCTGACCGGCGAGGTCCGCGCCGAGGAGACGCTCGTGGTCCGCGCGGAGGACCTCGCATCCTGTGGCACGGGTACGAGTCGCGACCGGGTGTTCGTCAACCCCTCGCTGTGGGCGTGGGGCTTCGCCGTCCGGCTCGACGTGTGCGGGCGGTCGGTGACGGTGACCCCCGACGGCGAGCGCCATGAGGCGATGCGCGTGCCGTCGGTCGACGGCGGGTTCCTGGAGTACACCGCCGACGAGAGCACGCGCGTGCTGGACGCCTCCGGCGCCGAGGAGGCCGTGGTGCCTGGGTCCGTGCTCCCGCCGCCGGCTCTGGACGCACCGGGCGGGCCGCGCCTCGTGTTCGTCGGGTCCGATCGGCTGTCCGCCGTCGACGACGCCGGGGAGCGCCTGTGGACGATCGACGTGGCGGGCTTTCCGCGGTACCTGGCGCGTGCCGGTGGCACGGCGGTTCTCGCGATGGTCCCGGAGGGCAGCGTCCAGGCCGTCGACCTGGGCACGGGGGAGATCCGGTGGACACGCGACGACGTGGTCACGACCGAGCAGGGGAGTGTCGGGGCAGCGGCCACCGACGGGGAGATCGTCCTGGTGACCGTGTCCGGCGGCCCGCAGACCGACCTCGTCGCCCTCGACCTCGCCGACGGTCGCACCCGCTGGAACCAGGCGTACGACGCCCGCTACGGGCAGGTGACGGTGATCGACGGGCGGGTCGTCCTCGCCGACGCGATGGGCGGAGGGAACATCCGTACGGTCGACGGGGTGCAGGTCGTGACCTCCGACGCCGCACTCGTCGGCCTGGCGAACTAG	MRDRLPDMARRRDPVQFDLVPDEDGPGDAGTSAAAGSAGEPVEPGWFGRRVAGPVRERWRAVPRRLRAGIVAVTAVAVVGTAAGVAALDARSDAAHAEHMAEMPGGVADLSAPLEETWRVETDEGVVAVLPGGVVVTRDGTDVLGVDVATGDEVWRHELGALVECGPDNLRGLLSTGLEALVCVHGTPERTATVLDASGTVLGDRELGVANHGQRGAWVDGAPQVLPAGDGTVAVLEGGARELTLDGEDLEAGLAQARADGRWQDPTVRVEDVLTGEVRAEETLVVRAEDLASCGTGTSRDRVFVNPSLWAWGFAVRLDVCGRSVTVTPDGERHEAMRVPSVDGGFLEYTADESTRVLDASGAEEAVVPGSVLPPPALDAPGGPRLVFVGSDRLSAVDDAGERLWTIDVAGFPRYLARAGGTAVLAMVPEGSVQAVDLGTGEIRWTRDDVVTTEQGSVGAAATDGEIVLVTVSGGPQTDLVALDLADGRTRWNQAYDARYGQVTVIDGRVVLADAMGGGNIRTVDGVQVVTSDAALVGLAN				NA	NA	NA	NA	NA
AK001_02547	1242			hypothetical protein	ATGACCACGTCCACCCAGGAACAGGCCCGGTTCGCGACGAGCCCGTCGCCCGAGCCCCCGGACGACAGCACCCGCGGCGCCTGGCGTCTGGTGATGCAGCGCGAGATCGTCACGCGAGTGATGAACAAGGCGTTCGTCATCGGGCTCGTGACCTCGCTGGTCGTCATCGCGGCGCTCGCGGCCTTCTTCGCCTGGCAGGCCAACCGGGTCGACACCTCCACCGTCGCGGTGAGCGGCGCCGACAGCGCGGCTGTCGCCGCGGCCACCTCGGCCGGCGAGGTCGCGGCGGCGGAAGGGGGCAACACCGAGGTCGAGGTGCTCGAGACCGCCGACGCGGACGCCGCGCGCGCGGCGCTGGAGTCCGGCGACGCCGACGCCTGGCTGCACCCGGGCGACGACGGCTGGGTGCTGGCCGGCCAGGGCGAGCCCGGCGGTGACCTGCAGCGGTACGTGTCCACCGCCGTCGAGCAGCAGGTCGTCGCCGCGAACGCGGAGGCCGCCGGCACGTCGGTGGCCGAGCTGTCGGCCGGTGCGGAGCTGACCACCGAGGCCCTCGAGCCCGACGCGGTCGGCGAGCAGGCGCTGTTCTTCGCGACGTTCGCGCTGTCGTTCCTGTTCTTCGCGGGGGCGATCACGTCGGGCAACATGATCGCCAGCTCGGTGGTCGAGGAGAAGCAGTCGCGGCTGGTGGAGATCATCGCGACGGCGGTGCCGCTGCGCCAGCTCCTGGCGGGCAAGATCCTGGGCAGCTCGGTGATCGCCGTCGGGCAGAACCTGCTGTTCGCCGGCGTCGGGCTGGTCGCGGTCTCGGCGAGCCCGGTGTCGATGGCGCTGCCCGCGCTGTCGACGTCGTTGATCTGGTTCGTGGTGTTCTTCGCGGTCGGGTTCCTCGCCCTGGCGGCGCTGTACGCCGTGGCCGGTGCCCTGGCGAGCCGCGCCGAGGACCTGCAGTACACGGCGACCCCGATGACGTTCCTGGTCATGGGTGTGTACTTCGTGACGTTCACGGCTTCGGGCACGTTCCTGACCGTACTGTCGTACGTGCCGATCGCCTCCGTGGTGGCCATGCCGGCCCGGATCCTCTCCGGGGACGCGGCGTGGTGGGAGCCCGTGATCGCGCTGGTGCTCCTGGCCGCGTTCGCCGCCGTGGCGCTGCTCGTCTCGGAGCGGGCGTTCCGCGGGTCGCTGCTGCAGACCGGCGGACGCATCTCCTGGCGGCAGGCGCTGCGCCCGCAGGGCTAG	MTTSTQEQARFATSPSPEPPDDSTRGAWRLVMQREIVTRVMNKAFVIGLVTSLVVIAALAAFFAWQANRVDTSTVAVSGADSAAVAAATSAGEVAAAEGGNTEVEVLETADADAARAALESGDADAWLHPGDDGWVLAGQGEPGGDLQRYVSTAVEQQVVAANAEAAGTSVAELSAGAELTTEALEPDAVGEQALFFATFALSFLFFAGAITSGNMIASSVVEEKQSRLVEIIATAVPLRQLLAGKILGSSVIAVGQNLLFAGVGLVAVSASPVSMALPALSTSLIWFVVFFAVGFLALAALYAVAGALASRAEDLQYTATPMTFLVMGVYFVTFTASGTFLTVLSYVPIASVVAMPARILSGDAAWWEPVIALVLLAAFAAVALLVSERAFRGSLLQTGGRISWRQALRPQG	PGPT0006730_3703	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_02548	888	btuD_12		Vitamin B12 import ATP-binding protein BtuD	ATGTCCACTCTCGAGGTCAGGGACCTGACCAGAACCTTCGGCGACCTGCGGGCGGTCGACGGCGTCTCCTTCGCCGCCCGGGGCGGCATGCTCACCGGGTTCGTCGGCTCCAACGGCGCCGGCAAGACGTCCACGATGCGCATGATGATGGGTGTCCTCGCGGCCACCTCCGGGGAGGTGCTGTTCGACGGCGCCCCGGTGACCCGCGCGGACCGGCGCACGTTCGGGTACATGCCCGAGGAGCGCGGCCTGTACCCCAAGCAGCCGGCGCTCGACCAGCTCGTCTACCTCGCCCGGCTGCGTGGCATCCCCGCCGCGACGGCGCGTGCCGAGGCCCTGGAGCACCTGGAGCGGCTGGGGCTCGGCGAGCGCGCCCGCGACCACGTGGAGAAGCTCAGCCTGGGCAACCAGCAGCGCGTCCAGATCACGGCGGCCCTCATGGGCCGGCCGCGCGCACTGATCCTCGACGAGCCCTTCTCGGGGCTGGACCCCACCGCGGTGGACGACATGGTCGACCTGCTGCGCCAGCACACGGCCCGGGGGGTCCCGGTGCTGTTCAGCTCGCACCAGCTCGACCTGGTCGAGCGCCTGTGCGAGCGTCTCGTGATCCTGCGCGGCGGCCGGGTCGTCGCGGACGGCACGCCGGCCGAGCTGCAGGAGACCGGTACGCTGCGGCACCGCCTGGTGCTCGACGGTGACGCCGGCTGGGTCCGGGGTGTACCCGGCGTGCACGCCGTCGACGTGGACGGTCCGACGGCGCTGCTGGAGCTGGTCGACGACGCGGCCACCCAGCGCCTGCTCGCCACGGCGCTCGAGCGCGGTGCCGTCCGCGAGCTCTCCCCGGTCCGCCCCTCCCTGGCCCAGATCTACCGCGAGGTGACCTCATGA	MSTLEVRDLTRTFGDLRAVDGVSFAARGGMLTGFVGSNGAGKTSTMRMMMGVLAATSGEVLFDGAPVTRADRRTFGYMPEERGLYPKQPALDQLVYLARLRGIPAATARAEALEHLERLGLGERARDHVEKLSLGNQQRVQITAALMGRPRALILDEPFSGLDPTAVDDMVDLLRQHTARGVPVLFSSHQLDLVERLCERLVILRGGRVVADGTPAELQETGTLRHRLVLDGDAGWVRGVPGVHAVDVDGPTALLELVDDAATQRLLATALERGAVRELSPVRPSLAQIYREVTS	PGPT0006725_17050	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02549	990			hypothetical protein	GTGCCCTCCCCACCGCTCGTCGTCCCGGACCGCGCTCACCGGATCGCTTCCCGGCAGGAGGGACTCCTCTCGATCGACCAGTGCCGGTCGTCCGGGGTCACCCGCCAGCAGGCGGCACGCCTGGTCGCCCAGGGGCGCTGGAGCCGACCGGTCCGCGGAGTGTACGACGTCGGCGTCGGCGGGGACCCGGCGCGGGACCGGCTGGACCGTGCTCGCCGCCGGGCCTCCCTGCTCGGGCCGCTGGCGTGCCCCGGCACGGTGGCCACCGGCGTCGCCGCGCTGGTCCTGCACGGCGTCCACGGCGCACCGCTCGACGTCCGGCCCGAGGTCACGGTCCCGGACGGGTCGGCCCGCCGGGGCCCCGACCCGGTCCGCGTCCGCCGGCTGCGGCTCCGCCGCTGGTCGGAGGTCGACGGCGTCGCGTGTGCCCTCCCGGAGGACGCGTTGGCCCAGGCGGTCCCCGCCCTGCCGCGGTACCGCGCCGTCGCGATGATGGACTCGGCGGGCCACCGCGGCCTCGTCTCGCGCGCCGGCCTCGACCGGGCCCGGGAGAAGTCCGGCGACCTCGTCGGGGCGGCCGCGCGCCGGTCCTGGTGGGACGAGTGCGATCCCCGGGCAGAGTCGCCGGCCGAGACCTGGGCACGCCTTGGCTGCGTCGACGCCGGCGTCGCGCCGGACGCGCTGCAGCTCCGGCTGGTCACGTCGTCCGGGCTGGTCGTGGCCCGGGTCGACCTGGCGTGGCTGCTCCCCGGCGACAGCGCGCTCCTGGTCGAGATCGACGGTCGTGACGTCCACTCCCGGCTCGACGCCGTCGTCGCGGACCGCGCCCGGCAGAACCGGATCGCCGGCCGACGGACGCTGGTACGCCGCTACACCGGACGGGACGCCTGGGACGGCACCGTCGCCCGGGAGGTGGCTGCCGTCCTGGCCGCGGAGGGCTGGTTCCCGCAGCGTCCCCCGGTGGACCACCGGTTCGTCCTGCCGTCGTGA	MPSPPLVVPDRAHRIASRQEGLLSIDQCRSSGVTRQQAARLVAQGRWSRPVRGVYDVGVGGDPARDRLDRARRRASLLGPLACPGTVATGVAALVLHGVHGAPLDVRPEVTVPDGSARRGPDPVRVRRLRLRRWSEVDGVACALPEDALAQAVPALPRYRAVAMMDSAGHRGLVSRAGLDRAREKSGDLVGAAARRSWWDECDPRAESPAETWARLGCVDAGVAPDALQLRLVTSSGLVVARVDLAWLLPGDSALLVEIDGRDVHSRLDAVVADRARQNRIAGRRTLVRRYTGRDAWDGTVAREVAAVLAAEGWFPQRPPVDHRFVLPS				NA	NA	NA	NA	NA
AK001_02550	696	lnrK_2	COG2197	Transcriptional regulatory protein LnrK	ATGACCTCGGTGCTGCTCGTCGACGACCAGCGGCTCGTGCGGTCGGGATTCCGTCTCATCCTCGCTGTCGAGGACGACCTCGACGTGGTCGGGGAGGCGTCGGACGGTGTCGACGCGGTCGCCGCGGCCCGGGAGCTGCGTCCCGACGTCGTGCTCATGGACGTCCAGATGCCCGTCATGGACGGGATCGAGGCGACCCGGCGGATCGTCGCCGAGGAGCTGTCCCGGGTGCTGGTGCTGACGACCTTCGACGACGACGCTTACGTCTTCGACGCCCTGGCCGCCGGGGCGTCCGGGTTCCTGCTGAAGAACGCCGACGCCGACCACCTGGTCGAGGCGGTCCGGACCGTCGCCGACGGGCACGGGCTGCTGTCGCCGCAGGTGACCCGGCGGGTCGTGGAGCGGATGGTCGCCGGCGGGACGACGGGTACCGGGACGACGACGGGTACCGGGGCGGCCCGGAGTACCGGCGTACCGCCGTCGGCTCCGGACCTGGACCGTCTGACCGCCCGCGAGCGCGAGGTGCTCGTGCTGGTGGGCCGGGGGATGTCCAACGCGGAGATCGCCCAGGAGCTGTTCCTCGGCGAGGCGACGGTCAAGACCCACGTGTCGAACGTCCTGGGCAAGCTCCATCTGCGCGACCGGGTCCAGGCGGTCGTCTACGTCCACCGGCACGGACTGGCCGGGAACGCCTGA	MTSVLLVDDQRLVRSGFRLILAVEDDLDVVGEASDGVDAVAAARELRPDVVLMDVQMPVMDGIEATRRIVAEELSRVLVLTTFDDDAYVFDALAAGASGFLLKNADADHLVEAVRTVADGHGLLSPQVTRRVVERMVAGGTTGTGTTTGTGAARSTGVPPSAPDLDRLTAREREVLVLVGRGMSNAEIAQELFLGEATVKTHVSNVLGKLHLRDRVQAVVYVHRHGLAGNA	PGPT0014870_75	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618	NA	NA
AK001_02551	1389			hypothetical protein	ATGCCGCGCCTGCGAGCCCCCGAGCTGATCACCGAGTGGTTCGGCCTCGACGCCGACTTCGAGCGCACCCCGACCGATCCCGCCGACGCCTATCGCCGCGACGTGTGGCTCGGCCTCGTCCTCGTCGTCCTGGCGGTCGCCGGCTCCGAGGTGGCGCGGTCGGCGGGTCTGCTCGACGAGGCGACCCCGCCCTGGCTCGTGGCGCTGCTCTCCGCCGCCGGTGCGCTGCCGCTGGTCGTCCGCCGTCGCTACCCGCTGATGGTCCTCGCGGTCGCCTACACGCACTTCCTCGTGCTCGGCCTCACCGTGCCGTCGATCCCGATGACGGTCGTCCTCCAGGCGGTCTACTTCGTCGCGCTCTACTCGGCCGTCGCTTGGGCGCGGGACCGGCAGGCGATGGTCGTCGTGGTCGGGGTGTGCCTGCTGGTCATGTTCACGTGGCTCCTGTGGCAGCTCGCGGTCGGGTCGGGACTGCAGCAGGCCGCCGAGTCGCGGGGCCTCCTCGACGACCCGCCCGGGTACCTCGACCCGATCACCGCGATGGTCGCCCACATCTGGCTGGTCAACATGGCCTACTTCCTCGGCGCGATCGCGATCGGGCAGGTCTCGTGGAACGCGGCCCGGCGCCGGCAGCAGCTCGCCCACCAGGCGGCGACGATCGAACGGCAGTCGGCCGAGCTGCAGCGTCGCGCGGTCGTCACCGACCGGCTGCGCATCGCCCGCGAGCTCCACGACGTCGTCGCTCACCACGTCTCGGTCATCGGCATCCAGGCCGCCGCAGCCCGCCGGTTGCTCGCCAAGGACCCGGTCCTCGCCGCCGAACCCCTGGCCACCATCGAGTCGGCGTCCCGGGAGGCGGTGACCCAGATGCGCGGCCTCGTGGGGACCCTGCGCGACACCGGGTCCGAGACCGCGTCCGACGGCGGGCCCGACGGGGGTTCGGGAACGCGTTCTCCCGGGCCCGGACTGACGGACGTCCCGGCGCTGGCGGAGGCCGACGACGGTCTCGACGTCACGTTCTCGCTCGTCGCCGAGCCGCCCGGGGCCGACGCCGAGGTCCCGGCACCCGTCGCGCTCAGCCTGTACCGGACCGTCCAGGAGGGACTGGCCAACGTGCGCAAGCACTCCACGGCCCGCACGGCCTCGGTCACCGTCCGGGTCGACCGGCGACCCGAGGCATCGGCCGGCTCTGCGGGGTCCGCCGGCTTCGCCGAGGTCGAGGTGCTCGACGACGGGCGGACGCGTCCCGGTTCCTCCGGCACCGGGCTCGGCCTGGTCGGGCTGCGCGAACGGGTCGCCGCCCACCACGGCGTGGCCGAGATCGGCCCCCGGGTGACCGGCGGCTACCGTGTGCGCGTGCGACTGCCCCTGCCCCAGGACCCCGCATGA	MPRLRAPELITEWFGLDADFERTPTDPADAYRRDVWLGLVLVVLAVAGSEVARSAGLLDEATPPWLVALLSAAGALPLVVRRRYPLMVLAVAYTHFLVLGLTVPSIPMTVVLQAVYFVALYSAVAWARDRQAMVVVVGVCLLVMFTWLLWQLAVGSGLQQAAESRGLLDDPPGYLDPITAMVAHIWLVNMAYFLGAIAIGQVSWNAARRRQQLAHQAATIERQSAELQRRAVVTDRLRIARELHDVVAHHVSVIGIQAAAARRLLAKDPVLAAEPLATIESASREAVTQMRGLVGTLRDTGSETASDGGPDGGSGTRSPGPGLTDVPALAEADDGLDVTFSLVAEPPGADAEVPAPVALSLYRTVQEGLANVRKHSTARTASVTVRVDRRPEASAGSAGSAGFAEVEVLDDGRTRPGSSGTGLGLVGLRERVAAHHGVAEIGPRVTGGYRVRVRLPLPQDPA				NA	NA	NA	NA	NA
AK001_02552	1365			hypothetical protein	ATGACCACCCGATCCCGCGCCGCCACGGCGCTCGCCCTCGCGCTGCCCCTCGGCCTCCTGGCCGCGTGCGGCACCGATGCCGAGGAACCGGCCACCGAGACCGACCCCGCCGCCGCCGAGACCGAGGACTCGGCGGACAGCGCTCAGGGCCCCACCGAGGTCCAGTCCCGCACCGCCCGCGTCGCCGTCACCTACGACGGCGGCATCAAGGTCCTCGACGCGATGACCCTCGAGGAGGTCGGCGACGTCGAGCTCGAGGGCTTCAACCGCCTCAACCCGGCCGGCGACGGGCGCCACCTCGCGGTGTCCACCACCGGTGGCTTCCAGCTCCTCGACACCGGGACCTGGGGCGAGGGCCACGGCGATCACTTCCACTACTACACGGCCTCCCCGGAGCTGACGGACGTCACCTACGACGCCGAGAGGCCCGGGCACGCGGTCGTCCACGACGGCACCACCGCCTTCTTCGACGACGGCACCGGGCACGTCGAGCTCGTGGAGTCGCTGCACGTCGCCGAGGCGGACGCGGAGGTCGAGACCGTCGAGCTGCCCGACGCCCACCACGGCGTGGCCGTCCCGCTGAGCGACGGGTCGCTCCTCGTCACGATCGGCACCGAGGAGGAGCGCACCGGTGTCGCGGTCCTGGACGCCGACGGCGAGGAGGTCGCCTCCTCCGGCGACTGCCCCGGCGTGCACGGCGAGTCCGTCGCGCAGGGAGAGGCCGTCGTCCTCGGCTGCGAGAACGGGGCCGTCGTCTACGCCGACGGCGAGTTCACGCAGGTCGAGACCCCGGACGAGTACTCGCGGATCGGCAACCAGGCCGGTTCGGAGGCCTCGCCCGTCATCCTCGGTGACTACAAGACCGACCCCGACGCGGAGCTCGAGCGGCCGACCCGCGTCAGCCTGATCGACACCCGGGACGCGAGCCACCGGCTCGTCGACCTGCCGGGCTCGTACAGCTTCCGCTCCCTGGCCCGCGGTGACGACGGCGAGGCGCTCGTCCTGACCACCGACGGATCCCTGCAGGTCATCGACCCCGAGTCCGGCGAGATCACCGCCTCGATCCCGGTCGTCGACTCCTGGGAGGAGCCGACGGACTGGCAGCAGCCGCGCCCGACGGTGCTCGCGCTCGACGGCTCGGTCTACGTCACCGACCCGGCGAACCAACAGATCCACGCGGTCGACCTCGTCGAGCAGGAGGTCTGGCTCACGGCCGACCTCGGCGTCGAGGCGAACGAGATCTCCGGCGTCTACGGCGAGCCCACGGCGGAGCACTCCGAGGAGGAGCACGGCGACGAGCACTCCGAGGAGGGCCACTCCGAGGAGGACCACGCGGACGAGGGTCACGAGGACCACGACCACTGA	MTTRSRAATALALALPLGLLAACGTDAEEPATETDPAAAETEDSADSAQGPTEVQSRTARVAVTYDGGIKVLDAMTLEEVGDVELEGFNRLNPAGDGRHLAVSTTGGFQLLDTGTWGEGHGDHFHYYTASPELTDVTYDAERPGHAVVHDGTTAFFDDGTGHVELVESLHVAEADAEVETVELPDAHHGVAVPLSDGSLLVTIGTEEERTGVAVLDADGEEVASSGDCPGVHGESVAQGEAVVLGCENGAVVYADGEFTQVETPDEYSRIGNQAGSEASPVILGDYKTDPDAELERPTRVSLIDTRDASHRLVDLPGSYSFRSLARGDDGEALVLTTDGSLQVIDPESGEITASIPVVDSWEEPTDWQQPRPTVLALDGSVYVTDPANQQIHAVDLVEQEVWLTADLGVEANEISGVYGEPTAEHSEEEHGDEHSEEGHSEEDHADEGHEDHDH				NA	NA	NA	NA	NA
AK001_02553	777			hypothetical protein	GTGCCCGAGCAGCCGGACCCGCCGCGCGAACCGGCCCCCGTCGGCCGGGACGCCTTCATCTCGCGCGAGCCGCAGCCGCCGGCCGGTGACGACACCCGGTTCGACCCGCACTCGCGCTGGATCGACCGGTTCGGGATCCTGCTCGCCCTGACCGGGCTGACGGTCGCGCTGCTGTCGCTCGTGGACATCCGGGCCGCGGGCGACGAGCTCGGCCCGGCGCTGGCCGGCCTGGCGACGACGCTCACGGTCGGGGCGACCCTGGGTCTGGCGCTGCGCGCGGCGGGCCTGCGCACCCGGTGGCGGCGGTGGGCCTACGTCGTGCTGGGCGTGCTGGTCGCGGTGTCCCTGGTGATCGTGCTCCTGCTCGACACCTCGGACGCCGTCACGTCCGCGCCCCCGCTGCTGCTCCTCATCGCGGCGCTGGCCCCCGTGGTCGTGGTGCGGCGGCTGGTGCACCACCGGATCGTCACCCTCGCGACGGTGCTCGGGGCCGTGTCGGCCTACCTGCTCATCTCGCTGATGTACTACTACGCGTTCCTCACGGTGGACAACCTCACCGAGTCTCCCTTCTTCGGCACGGAGCAGCCGACGACGTCGTTCATGTACTTCTCGCTGACGACGATCACGACGCTCGGGTACGGCGACCTCGCGGCCGTGACGCCGGTGGGTCGGCTCCTCGCCACGAGCGAGGCGATCGTCGGGCAGGTGTACCTCGTGGTCTTCGTGGCGATGATCGTCAGCCTCGCCGCGAGCCGCGTGCAGCACTCGCGGGGCTGA	MPEQPDPPREPAPVGRDAFISREPQPPAGDDTRFDPHSRWIDRFGILLALTGLTVALLSLVDIRAAGDELGPALAGLATTLTVGATLGLALRAAGLRTRWRRWAYVVLGVLVAVSLVIVLLLDTSDAVTSAPPLLLLIAALAPVVVVRRLVHHRIVTLATVLGAVSAYLLISLMYYYAFLTVDNLTESPFFGTEQPTTSFMYFSLTTITTLGYGDLAAVTPVGRLLATSEAIVGQVYLVVFVAMIVSLAASRVQHSRG				NA	NA	NA	NA	NA
AK001_02554	1323			hypothetical protein	GTGACGACCGACGTCGGCTCCCGGCGAGGCGCCCGCCACGCCCGCACGACGGAGCTCTCCACCCTGCCCGACGGCGGGCACGGTCACGGGCACGGTGGTCCCGTGCCGCCGGCGCCCTGGCGCACCCGGCTCGTGCTCGCCCTCCTGGTGCTGCCCGCGCTGGTCGCCACCGGTCTCGGCCTGTGGCAGCTGTGGCCCGCCGAGGCCGGGATCCCGGACCGGGTGCCGGTCGTCGTCGAGGGCAGCGAGCTCGTGTCCGCGACCGTCGTCGGACCGCTCGAGGGGGAGGCCGCCGGGGACGCGTCGTGGCCCACCACCGACGACTCGACGATCGGCAACGTCGAGATCCGCCTGGCCGACGGCAGCACCTCCGGCATGCAGGCCGAGCCACGGTTCGAGCTGGAGCCCGGCGACCCGGTGATCGCGCTGTACATCGGCGACTTCGCCGAGACCCCCGTGCCGTACGTGTTCATGGACTACGAGCGCGAGGTGCCCCTGGGGATCCTCGCCGTCGCCTACGTGCTGGTCGTGCTGCTGGTCGCCCGCTGGCGCGGCCTGGCGGCCCTGGTCGGCCTGGCGGTGGCGTTCGCCGTGTTCGTCGGGTTCACGTTCCCGGCGCTGCTGTCCGGCGAGAACGCGATGGGCGTGGCCCTGGTGACGTCGTCGGCGGTGATGCTGGCCGTCCTCTACCTGGCGCACGGCCTGACGGCCCGGACGACCGTGGCGCTGCTGGGCACCCTGGCAGGGCTGGCGCTCACCGCGGGGATCGGGGCGTGGGCGACGGGTGCCGCGCAGATCACCGGCGCCTCGGAGGAGATCGCGCAGAACCTGCCGACGATCGCGCCCGGGGTGGACCTGCGCGGCATCGCGCTGTGCGGGCTGGTGCTGGCCGGTATGGGTGTCCTCAACGACGTGACGATCACGCAGGCCTCGGCCGTGTGGGAGCTGCGGGCGCTGGCCCCGCTGGCCCCGCGGCGGATGCTCTTCGCCCGGGCGATGCGCATCGGGCGCGACCACATCGCCTCGACCGTCTACACGATCGCGTTCGCCTACGTCGGGGCGGCCCTGCCGCTGCTGCTGACGGTGTGGCTGCTCGACCAGACCCCGATGATGACGCTGACCTCGGGGGAGATCGCCGAGGAGATCGTGCGCACGCTGGTCGGGTCCATCGGGCTGGTGCTGGCGATCCCGATCACGACGGCGATCGCCGCGGTCACCGTGCCCACGGGCGCTGCCCTGGCGGCGAGCGCCGGGGTCGGCCACGATGGTGCGGACCCGACCCCGGAGGACGACGTGCCGACCCGACCCGACGAGCGAGTCTGA	MTTDVGSRRGARHARTTELSTLPDGGHGHGHGGPVPPAPWRTRLVLALLVLPALVATGLGLWQLWPAEAGIPDRVPVVVEGSELVSATVVGPLEGEAAGDASWPTTDDSTIGNVEIRLADGSTSGMQAEPRFELEPGDPVIALYIGDFAETPVPYVFMDYEREVPLGILAVAYVLVVLLVARWRGLAALVGLAVAFAVFVGFTFPALLSGENAMGVALVTSSAVMLAVLYLAHGLTARTTVALLGTLAGLALTAGIGAWATGAAQITGASEEIAQNLPTIAPGVDLRGIALCGLVLAGMGVLNDVTITQASAVWELRALAPLAPRRMLFARAMRIGRDHIASTVYTIAFAYVGAALPLLLTVWLLDQTPMMTLTSGEIAEEIVRTLVGSIGLVLAIPITTAIAAVTVPTGAALAASAGVGHDGADPTPEDDVPTRPDERV				NA	NA	NA	NA	NA
AK001_02555	1014			hypothetical protein	GTGACCGCCCAGCCCGCTGCCCGCAGCGCCGGCACCGTCGCCGGAGTCGCCGCCGCCGTGGTGGGCGGGATCGCCGCCGCGTCCCAGTCCCGGGTGAACGGCACCCTCGCCGAGCACGTGGGCTCCGCGTTCGCCGCGGCGGTGATCTCGTTCGGCTCGGGCCTGCTGTGGCTGACGGTCGCGGTCCTGTGCTGGCCCGCGGCGCGGTCCGCCGTCGGGCACGTGCGCGGCGCCCTGCGCACCGGCGGGCTGCGCCCGTGGGAGGTGCTCGGGGGTCTGGGCGGCGGCTTCTACGTGGCGGCCCAGGGGCTGACCGTCTCCTCCCTCGGCGTCGCCCTGTTCATGGTCGCGATCGTGGCGGGGCAGTCGACGAGCTCGCTGGCGGTGGACCGGCTCGGCCTCGCACCGGGCGGCGTCCGGCTGATCACGCTCGGTCGCGCCGTCGGCCCGGCCCTGACCGTCGTGGCCGTCGTCGTCGCCGTGTCCGGGTCCGTCGGACGGGTCGAGGACGTGCACCTCGCGGTGATCCCGCTGCTCGCCGGGGTGGTCCAGGCGTGGCAGCAGGCGATGAACGGGCGGGTGCGGGCGGCGGCCGTCCCTGCACCGGCAGCCGGGCGGGCGCCGTCGTCGACGTTCCCGGGCGTGGCCGCGGCGACCTTCGTCAACTTCGGCGTCGGCACGGCGGCGCTGCTGGTCGCGCTCGCGGTGTCGGTGCTCGTGGGCGGCGCACCCGACGGGGCGCTGCCGACACGGTGGCCGCTGGACCTGGTCCTCTACTCCGGCGGACTGCTCGGCATCGTCTTCATCGCCGTCCAGGCCGCCGTGGTGCACCGGATCGGCGTGCTGCTGCTGGGCCTGGGCCTCATCGCGGGCCAGATCGTCGGGGCGCTGCTGCTGGACCTGCTCGTCCCGGGCGCGACGCCGCCCGGCCCGGCGATGTACCTCGGCGCCGCCCTGACCCTGGTCGCCGTCGCCGTGCCGCTGGTCGAGTCCCGGCTGCGGCGTCGCTCCTGA	MTAQPAARSAGTVAGVAAAVVGGIAAASQSRVNGTLAEHVGSAFAAAVISFGSGLLWLTVAVLCWPAARSAVGHVRGALRTGGLRPWEVLGGLGGGFYVAAQGLTVSSLGVALFMVAIVAGQSTSSLAVDRLGLAPGGVRLITLGRAVGPALTVVAVVVAVSGSVGRVEDVHLAVIPLLAGVVQAWQQAMNGRVRAAAVPAPAAGRAPSSTFPGVAAATFVNFGVGTAALLVALAVSVLVGGAPDGALPTRWPLDLVLYSGGLLGIVFIAVQAAVVHRIGVLLLGLGLIAGQIVGALLLDLLVPGATPPGPAMYLGAALTLVAVAVPLVESRLRRRS	PGPT0009795_37	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936	NA	NA
AK001_02556	1464			hypothetical protein	GTGCGTCATCTGACCACGAGACAGCGGCGTCGAGCCCTGGCGGCCGGAGCGCTCACCAGCGCCCTCGCCGTCGGTTCGTTCGCCGTCGCCGCCCCCGGATTCGCCGAACCCGGTGGCGACGCGCCCGACGACGGCAGCGAGCTGCCCGCCCAGAGCATCGTCGCCCTGGACGACTCCGCGACACCGGAGGGGCTCACGGAGCCGGGCACCACGGACGCGCTGAACATGGAGCTGCTGGCGAACATCCCGAAGAACGGGGCGTTCGCCGCCGAGAACTCCTACAGCTCCGACCTCGCCTTCGCCGGCGACTACGCGTTCGCGGGGAACTACAACGGGTTCACCGTCTACGACATCTCCGACCCGGAGAGCCCGACGCAGGCCGCGCAGGTCGTCTGCCCGGGGTCGCAGAACGACGTCTCCGTCTACGGCGACATCCTCGTGCTGTCCACGGACTCCTGGCGCACCGACGACTCCTGCGAGAGCGAGTCGATCTACCCGGTCGGCGTCGACTACTGGGAGGGCCTGAAGGTCTTCGACATCTCCGAGCCGACCGAGCCGGAGTACGTCGCCGCCGTCGAGACGCAGTGCGGCTCGCACACGAACTCCCTGGCGCCGAGCAAGAACGGCCAGACGCTGTACGTCTACGTCTCGTCGTACTCGCCGCACCCGCTGCTGTCGGACTGCCAGCCGCCGCACGACAAGATCTCCGTGGTCGAGATCCCGACGAAGGCTCCGGCCGAGGCCGCGGTCGTCTCCACGCCGGTGCTCTTCCCGGAGGGTGGCTACACGAACACCTCCGGCTGCCACGACATCACCACCTACGTGAAGCTGGACCTCGCGGCCGGTGCGTGCATGGGCGACGGCATCCTCATGGACATCTCCGACCGGGCCGACCCCGAGGTGATCTCCACCGTCCGTGACACCGAGAACTTCGCCTTCTGGCACTCGGCGACGTTCAACAACGACGGCACGAAGGTGGTCTTCACCGACGAGCTCGGTGGCGGCGGCGCCGCGACCTGCAACGAGACCGTCGGCTCCGAGCGGGGCGCCAACGGCATCTACGACGTCGTCGACGGCGAGCTGGAGTTCCGCAGCTACTACAAGATCCCGCGGACGAACACGAACACCGAGAACTGCGTGGCCCACAACGGCTCGCTGATCCCGGTCAAGGACAAGGACATCATGGTCCAGGCCTGGTACCAGGGCGGGATCTCGGTGTTCGACTTCACCGACTCGTCGAACCCGACGGAGATCGCCTGGTTCGACCGGGGCCCGCTGTCCTCGGAGCGGATGATCCTGGGTGGCTCGTGGTCGGCGTACTACTACAACGGGTACGTCTTCTCGAACGACATCCAGCAGGGGTTCGACGTCCTGGAGATCGACGACGCGGCCGGTGTCGGCAAGCAGAAGCCGAACACCTACCGTGAGCTGAACCCGCAGGGGCAGGTCCGCTTCCACGGCTGA	MRHLTTRQRRRALAAGALTSALAVGSFAVAAPGFAEPGGDAPDDGSELPAQSIVALDDSATPEGLTEPGTTDALNMELLANIPKNGAFAAENSYSSDLAFAGDYAFAGNYNGFTVYDISDPESPTQAAQVVCPGSQNDVSVYGDILVLSTDSWRTDDSCESESIYPVGVDYWEGLKVFDISEPTEPEYVAAVETQCGSHTNSLAPSKNGQTLYVYVSSYSPHPLLSDCQPPHDKISVVEIPTKAPAEAAVVSTPVLFPEGGYTNTSGCHDITTYVKLDLAAGACMGDGILMDISDRADPEVISTVRDTENFAFWHSATFNNDGTKVVFTDELGGGGAATCNETVGSERGANGIYDVVDGELEFRSYYKIPRTNTNTENCVAHNGSLIPVKDKDIMVQAWYQGGISVFDFTDSSNPTEIAWFDRGPLSSERMILGGSWSAYYYNGYVFSNDIQQGFDVLEIDDAAGVGKQKPNTYRELNPQGQVRFHG				NA	NA	NA	NA	NA
AK001_02557	672			hypothetical protein	GTGCTGGTCGCCGCCGCGACGGCGGCCGCCTGCACCGGCGGCGGGTCACCGGCCACGACCGAGGCGGCCGCGACGCCGGAGAGCGTCGTGGTCCAGCCCGGCCGGCCCGGCGAGGAGAACGCCACCGTCGCACCAGAGGACGTCGCACCTCCGCGGGCCGACGACGAGTGGAACCGGGCCGACGCCACCTTCATCAGCGACATGATCGTGCACCACGCCCAGGCGCTGGAGATGTCCGAGCTGGCGCCGGACCGGGCCGAGGACCCCGGCGTCCTGGCGCTCGCCGCGCGGATCTACGACGTCCAGGGCGCCGAGATCCACGGCATGGCGGGCTGGCTGCAGGGGCACGACCTGCCCGTGCCCGTCGAGCTCGAGGACGGCGACGGCAGCGGCCCGCGGGCGCCGGTCGACGACGCCCACGACCACGACCCCGAGGACATGCCGGGCATGCTCAGCGACGCCCAGATGGCCGAGCTCGAGGCGGCGTCCGGCACCACCTTCGACCGGCTCTACCTGGAGGGCATGATCCAGCACCACCAGGGTGCGGTGACCATGTCCACCGAGCTGGCCGTCGACGGGATCAACTTCCGCACCCAGGAGCTGGCCAACGACATCGGCGCGGGCCAGCTCGTGGAGATCGGGCGCATGCAGGACATGCTCGACGACCTCTGA	MLVAAATAAACTGGGSPATTEAAATPESVVVQPGRPGEENATVAPEDVAPPRADDEWNRADATFISDMIVHHAQALEMSELAPDRAEDPGVLALAARIYDVQGAEIHGMAGWLQGHDLPVPVELEDGDGSGPRAPVDDAHDHDPEDMPGMLSDAQMAELEAASGTTFDRLYLEGMIQHHQGAVTMSTELAVDGINFRTQELANDIGAGQLVEIGRMQDMLDDL				NA	NA	NA	NA	NA
AK001_02558	810			hypothetical protein	ATGGCCGTCACCCTCGCGCGCTACAGCGCAGCCGTACTCGTGTGCGGGGCGGCGATCCTGCTCTTCGCCGTGCACGTGCGTCCGCTCGGCTACGTGCCGCTCGTCGCCGGCGTCGTGCTCGGACTCCTGGTCGACCGCGTGCTCGGCCGCGATCTCGGCCTCATCGCGCTCGGCATGGCGATCGTCTCGTCGATCTCGCTGAAGGCCGACCTGTCGAACGCCGGGATGGCGCGGTTCACGGTGGCGCTCTCGCTGGCCGTGCTCGTGCCCTGGGCGCTGTCGAAGTACTGGTTCCGGGACGACGACGGCGCGGGGGCGGTGCGGTTCCCGGCATTCACGGGGCGCCGGTGGACCCGCGGCCAGTGGCTGTACCTCGTCGTGGTGGTCGTGGTCGGCTACCTCGTGCTGCCCTGGTACTTCCTCGGTTCGGGCGCCTACCTCAACTGGCCGCCGCTCGAGGGCGACAGCGACATCGCCCGGCTGTTCGTGGGTGTCAACGCGGTGGGGATCTGGGACGAGCTGTTCTTCATCTGCACCGTGTTCGCCCTGCTGCGGCGGCACTTCCCGCTGCAGGCGGCCAACGTCCTGCAGGCCATGGTCTTCGTGTCGTTCCTGTGGGAGCTCGGCTACCGCGAGTGGGGTCCGTTGCTGACGATCCCGTTCGCGCTCGTCCAGGGCTGGATCTTCGCCCGGTACAAGTCGCTGCCGTACGTCGTCACGGTGCACCTGCTGTTCGACGCCGTCGTGTTCGCCGTGCTCGTGCACGGCCACCACCCGGAGCTGCTCGACATCTTCGTCACGGCACCCTGA	MAVTLARYSAAVLVCGAAILLFAVHVRPLGYVPLVAGVVLGLLVDRVLGRDLGLIALGMAIVSSISLKADLSNAGMARFTVALSLAVLVPWALSKYWFRDDDGAGAVRFPAFTGRRWTRGQWLYLVVVVVVGYLVLPWYFLGSGAYLNWPPLEGDSDIARLFVGVNAVGIWDELFFICTVFALLRRHFPLQAANVLQAMVFVSFLWELGYREWGPLLTIPFALVQGWIFARYKSLPYVVTVHLLFDAVVFAVLVHGHHPELLDIFVTAP				NA	NA	NA	NA	NA
AK001_02559	654	hmuO		Heme oxygenase	ATGCCCGTCGTCGCCCCCGAGGGCACCCTCTCCGTCCTGCTGCGTGACGGCACGCGCCGGGAGCACGAGCAGGCCGAGAACGAGGGGTTCGTCGCGCGTCTGATGAGCGGGAGCCTCGACGTCGCCGCCTACGCCGACCTGGCCGCTCAGCAGCACGCCGTCTACACGGCGCTGGAGCAGGCGAGCGAAGCCGTGCGTCACGACGCGCGCGGGGAGGCGCTGGTCTTCGACGAGCTGACCCGGGTCCCGGCGATCGAGCGCGACCTGGCCCACCTGTACGGGCCGGACTGGCGCGAGCGCGTCCGCACGCTGCCGGCCACCCGGACGTACGTCGCGCGGCTGCACGACGTCGGCACGCGCCTGCCGCAGTACGCCGCCCACGCGTACACGCGCTACCTCGGCGACCTGTCCGGCGGACAGATCGTGCAGCGCATGATGCAGCGTCACTACGGCATGGGGACGGCCGGGCTGGAGTTCTACGACTTCCCCGAGATCTCCAGGCTCAAGCCGTTCAAGGACCTCTACCGCGAGCGCCTCGACGCACTGGACCTGAGCGCCGGTGAGGTCGACCTCGCCGTGTCCGAGGCCCGCGAGGCGTTCCGCCTCAACCGGGCCGTGTTCGTCGAGCTCGGCGCGGCCCACCCCGGTCGCTGA	MPVVAPEGTLSVLLRDGTRREHEQAENEGFVARLMSGSLDVAAYADLAAQQHAVYTALEQASEAVRHDARGEALVFDELTRVPAIERDLAHLYGPDWRERVRTLPATRTYVARLHDVGTRLPQYAAHAYTRYLGDLSGGQIVQRMMQRHYGMGTAGLEFYDFPEISRLKPFKDLYRERLDALDLSAGEVDLAVSEAREAFRLNRAVFVELGAAHPGR	PGPT0003625_699	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003625-pbsA1|hmuO-K21480	NA	NA
AK001_02560	1173			hypothetical protein	ATGACGGTGCCGCCCGGAGGTGCCACGGCACCGGAGCCCCGCGTGGCCGAGTTCCTGGCCGAGCTCGGCCCGCGGGTGCTCGGCGTGCTCGTGCGCCGCGGGGCCGACTTCGCCACGGCCGAGGACTGCGTGCAGGAGGCGCTGCTCGAGGCCTCTCGACGCTGGCCGGACGGGGTCCCCGACGAGCCGCAGGGATGGCTGGTCACCGTGGCCTGGCGCCGGTTCCTCGACGCGCGGCGCTCGGAGACGGCGCGCCGTCGCCGGGAGGAGCAGGTCCACGCCACGCCGGACCCGGGTCCCACCGAGCAGACCGACGACACGTTGCTGCTGCTGAGCCGCTGCTGCCACGAGTCGCTCAGTCCGGCGTCGGCCGTGGCCCTGACGCTGCGCGCCGTGGGCGGGCTGACGACCGCGCAGGTCGCCCGGGCGTACATGGTGCCGGAGGCGACGATGGCCCAGCGCATCAGCCGGGCGAAGCGCACGCTGTCCGGCCGGTCCTTCGACCGCCCGGGCGATGTACGGAACGTGCTCCGGGTGCTGTACGTGATGTTCACCGAGGGGCACACGGGCGAGGTGGACCTGGCGCGGGAGGCGATCCGCCTGACTCGGCAGCTCGCCGTCGCCACGGCCGACACGGAGGTCGCCGGGCTGCTCGCCCTCATGCTCCTGACCGACGCGCGTCGGGCCGCCCGCTGGACGGGGCGCGGTGAGCTCGTGCCGCTCGCCGAGCAGGACCGGTCGCGGTGGGACACCGTGGCGATCGCCGAGGGCGTGCAGGTCCTGCACGCCGCGCTCGCCGACGACCGGCTGGGGGAGTACCAGGTCCAGGCGGCGATCGCGGCCCTGCACGACGACGCCCCGCGGGCAGAGGACACCGACTGGGTGCAGATCCTGGAGTGGTACGACGAGCTCGTGGCGCTCGCCGACTCCCCGGTCGTGCGGCTCAACCGGGCGGTCGCCGTCGGGCACGTCGACGGGGCGCTCGCGGGACTGCGGGCGCTGGAGGCCGTGCCCGACCGGGTGCCCCGGCGGACCGCCGCCGCGGCGTACCTGCACGAGCGCGCCGGCGACGTCGGGGAGGCGTGGGAGCTGTACGCGCGGGCCGCCGACGAGGCGGCGACGCTGGCGGAACGGCACCACCTCCTGCGGTGCGCGGCTCGGCTCCGGGGATGA	MTVPPGGATAPEPRVAEFLAELGPRVLGVLVRRGADFATAEDCVQEALLEASRRWPDGVPDEPQGWLVTVAWRRFLDARRSETARRRREEQVHATPDPGPTEQTDDTLLLLSRCCHESLSPASAVALTLRAVGGLTTAQVARAYMVPEATMAQRISRAKRTLSGRSFDRPGDVRNVLRVLYVMFTEGHTGEVDLAREAIRLTRQLAVATADTEVAGLLALMLLTDARRAARWTGRGELVPLAEQDRSRWDTVAIAEGVQVLHAALADDRLGEYQVQAAIAALHDDAPRAEDTDWVQILEWYDELVALADSPVVRLNRAVAVGHVDGALAGLRALEAVPDRVPRRTAAAAYLHERAGDVGEAWELYARAADEAATLAERHHLLRCAARLRG	PGPT0014960_522	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_02561	414			hypothetical protein	ATGGCCAAGTACCTGCTGCTCAAGCACTACCGCGGCGGCCCGGAGCAGCGTCCGAACGCCCGCGAGCCGATGGACCGCTGGACGCCCCAGGAGGTCTCCGACCACATCGCGTTCATGCAGCACGTCGCCGACGTGCTCACCGAGCGCGGCGAGTTCGTCGACGCCCAGGCGCTGTCCCCCGAGGGCACCTTCGTGCGGTACGACGGCGAGGGGCGCCCGCCGGTGACCGACGGTCCGTTCGCCGAGACGAAGGACGTCGTCGCCGGCTGGATGATCATCGACGTCGAGTCGACCGAGCGGGCCCACGAGGCGGCGGCGTTCCTGTCCTCGGCGCCGGGCCAGGGCGGCAAGCCCCTCGAGGAGTGGATCGAGGTGCGCCCGTTCATGACGGACGCTCCTCCCGCGGACGGATGA	MAKYLLLKHYRGGPEQRPNAREPMDRWTPQEVSDHIAFMQHVADVLTERGEFVDAQALSPEGTFVRYDGEGRPPVTDGPFAETKDVVAGWMIIDVESTERAHEAAAFLSSAPGQGGKPLEEWIEVRPFMTDAPPADG				NA	NA	NA	NA	NA
AK001_02562	585			hypothetical protein	GTGGACGAGGACGAGGTCAGGGCCACCCTGCACCGCTACCTGCGCGACGCCCGCGAGGCGCTGCTGTGGAAGACCGAGGGCTTGTCCGAGCGCGCGCTGCGCACGCCCCGGACCGGCACGGGCACGAACCTGCTCGGCCTGGTCAAGCACGCCGCGAGCATCGAGATCGGGTACTTCGGCGAGACGTTCGGGCGCGACTGGCCGACGCCGGAGGAGACCCCCTGGATCGCGCGGCTCGACGAGGACCCGAACGCCGACTTCTACGCCGAGGCCGACGAGACCGCCGACGGCCTGCGCGACCTGTACCGCCGGGTCGCCGAGTTCGCGGACGAGACCATCGAGTCGCTGCCGCTCCGGGCACCCGGCCGCGTGCCGTGGTGGGGCGACCGCGGGGACGTCACGCTCCACCGGGTGATCGTCCACGTGCTCGCCGACCTGGAGCGTCACGCCGGCCACGCGGACATCCTGCGAGAGGAGATCGACGGCGAGGTCGGGCTCCAGCCGAGCGCCACCAACATCTGGCCGACGGACTGGGACGCCTACGTCGACCGGCTGCGGGGCATCGCGGACCGGTTCCCCGACTGA	MDEDEVRATLHRYLRDAREALLWKTEGLSERALRTPRTGTGTNLLGLVKHAASIEIGYFGETFGRDWPTPEETPWIARLDEDPNADFYAEADETADGLRDLYRRVAEFADETIESLPLRAPGRVPWWGDRGDVTLHRVIVHVLADLERHAGHADILREEIDGEVGLQPSATNIWPTDWDAYVDRLRGIADRFPD				NA	NA	NA	NA	NA
AK001_02563	1239	rlmC	COG2265	23S rRNA (uracil(747)-C(5))-methyltransferase RlmC	GTGCAGTGCCCCCACTACGACGCCGGCCGGTGCCGCTCGTGCACCCTCATCGAGATCGCGCGCCCCGAGCAGGTCCGCGACAAGGAGTCGCACGTGCGCGAGCTGCTCGCGGCGTACGACGACGTCTCCTGGCTGCCGGCCGTCGTCGGACCCGAGAGCGGCTTCCGCAACAAGGCGAAGATGGTGGTCGCGGGCACCGTCGAGGAGCCGGTGCTCGGCATCGTCGGGCCGCCCGGACCCTACGCGGGCCAGAGCGTCGACCTGACCGACTGCGGCCTGTACCCGCCCGCGCTGCAGGCCGCCTTCGGCCCGCTCGCCGAGCTGATCACCCGAGCCCGCCTGCAGCCGTACGACCTGGCGCCACCGGCCGACGGTGCACGCCGCAAGGTCACCCCGCGCGACGCCGCCCGGCGCGGGGAGCTCAAGCACGTGCTGGTCACCCTCTCCCCCGACGGCGAGCTGATGGTCCGCCTCGTGCTGCGCTCCACCGAGGCCCTGGACCGGATCCGCAAGCACCTGCCCTGGCTGCACGAGCGCCTGCCCGGGCTGGCCGTGCTGAGCGTGAACGTCCAGCCCGCCCACGCCGCCGTGCTGGAGGGCGAGCAGGAGATCGTGCTCACCGAGCGCGCCACCCTGCCCATGCGGCTGGACGGGGTCACGCTGCACCTGCGTCCGCAGAGCTTCTTCCAGACCAACACCGGGGTCGCGGAGGCCCTGTACCGCCAGGCACGACGGTGGATCGACGAGATCGACCCGGCCACGCTGTGGGACCTCTACTGCGGCGTCGGCGGGTTCGCGCTGCACGTCGCCGCCCCGGGCCGGTCGGTCACCGGCATCGAGATCTCCGCCGAGGCGGTCGCCTCGGCGACCACGACGGCGTCCGAGCTGGCCACGCTGCCCGCCGGCGCCGTCGTCGGCTCCCGGGACGCGGACTGGTGGCGCCGCGCCATGGCGGGTGTCCGGTTCGCCGCCGGGGACGCGACCGGCTTCGCGCTCGGCAGCGGGGACGACCCCGAGCTGGTCGTGGTCAACCCGCCCCGGCGGGGCATCGGAACGGACCTGGCTCGCCGGCTCGAGGCGTCCGCGGTGCAGCACGTGCTCTACTCGAGCTGCCGCGCAAGCACGCTCGCCCGCGACCTGGCCGACATGCCGTCGCTGCGACCCCGGCGTGCGGTACTGCTGGACATGTTCCCGCAGACGAGCCACTACGAGGTGCTGGTGCTGCTGTCCCGCGGATGA	MQCPHYDAGRCRSCTLIEIARPEQVRDKESHVRELLAAYDDVSWLPAVVGPESGFRNKAKMVVAGTVEEPVLGIVGPPGPYAGQSVDLTDCGLYPPALQAAFGPLAELITRARLQPYDLAPPADGARRKVTPRDAARRGELKHVLVTLSPDGELMVRLVLRSTEALDRIRKHLPWLHERLPGLAVLSVNVQPAHAAVLEGEQEIVLTERATLPMRLDGVTLHLRPQSFFQTNTGVAEALYRQARRWIDEIDPATLWDLYCGVGGFALHVAAPGRSVTGIEISAEAVASATTTASELATLPAGAVVGSRDADWWRRAMAGVRFAAGDATGFALGSGDDPELVVVNPPRRGIGTDLARRLEASAVQHVLYSSCRASTLARDLADMPSLRPRRAVLLDMFPQTSHYEVLVLLSRG				NA	NA	NA	NA	NA
AK001_02564	1299			hypothetical protein	GTGAGGGCGAGGCAGGACGCCTCCGGGTCGTCGGGCGCCGACGACGTCGCGCGGCAGATGCGTGCCGCGGCCGCTGCCCGGGGCCACGACGACGGGCCGGGCGCCGAGGGGACGGTCGACCCGGACATCGTGCGGACCGCCCTGGCCACGCTGTCCCACGACGACCAGCAGCTGCTCTGGGACCTGCACGTCCTGGGCCGGCGGATCGAGGTCGTGGCGCGCGAGCTCGGCGTGCACGTGAGGTCGGCGGCGCGTCGGCTGCGGCAGGCCGAGGACCAGCTCGGCCGTGCCCTGTCCGCCGCCCACGCCCGCGGGGGACCGCGGAGGGCGTGCGTCGAGACCCGGCGCGACCTGCACGCCTACGTCCAGCACCGGCTCGGCGGCGGCCGGCGGCAGCTGCTCGAGGACCACCTGTTCGGCTGCACCGGGTGCCTGCGTGCCTTCATCGACGTCCGGGAGTCCTCCTGGGCGCTGCGGGACGTGGCGCCGGTGCTGCTCAGCGGGGCCGCCGTCTCGGGGATGTCGGTCCCGGTCGTCGTCGGCGCGTCCGGTGCGGCGGCGTCCCACGGGGCGCTGGCGTGGCTCGGACCGCTCGGGGCCGCGCTCGTCGCCGCCTGGGAGTGGTTCGTGCGGGGTGTGCGCGGGCTGGTCGGGCGCCCGGTGGCCGTGGCGGCCGGCGTCGGGGTCGCCGCGGTCGCAGTCGCGGCCGGCGCCCTCGTCGGGGGCGACGTGCCGGACGAGGCGCCACCCACCGCTCCGGTGGCGATGGAGCGACCCTCGCCGGCCCCGACCCCGCGGGAGACCACGGGTCCGTCCCCGGAGCCGACGCCGGAGCCCGAGCCGTCTCCGGAGCCCGAGTCGTCCCCGGAACCGGAGCCGACGCCGGAACCGACCCCCGAGCCCCCGGCCCCGGAGCCCGCCGTGGTCCCGGAGCCGCCGGCGGACCCCTCGCCGGAGCCCCCGCCCGGCCCGGAGCCCACGCCGTCCCCGGAACCGGAGCCGACGCCGGAACCGACCCCCGAGCCCCCGGCCCCGGAGCCCGAGCCGCCACCCGAGCCGGTCACGACCACGGTCGGGCTCGACCTCGAGGAGCGAGGGGAGTTCCGGGTCGTGCCGAGCCCCGGGGTCGAGGTCGTGGCCGTCGAGGCCGCGCGCGGCAACGTCCGTATCGAGCAGACCGAGGACGGCGTGTGGCGCGTGTGGACACCGGGCGGGTCGCCGGGCAGCGTGACCGTGCAGGTCAGCGCGCCGGAGGGAACGACGCCGGAGGCGTGGCTCGACGCCGTCGACGAGCGCTGA	MRARQDASGSSGADDVARQMRAAAAARGHDDGPGAEGTVDPDIVRTALATLSHDDQQLLWDLHVLGRRIEVVARELGVHVRSAARRLRQAEDQLGRALSAAHARGGPRRACVETRRDLHAYVQHRLGGGRRQLLEDHLFGCTGCLRAFIDVRESSWALRDVAPVLLSGAAVSGMSVPVVVGASGAAASHGALAWLGPLGAALVAAWEWFVRGVRGLVGRPVAVAAGVGVAAVAVAAGALVGGDVPDEAPPTAPVAMERPSPAPTPRETTGPSPEPTPEPEPSPEPESSPEPEPTPEPTPEPPAPEPAVVPEPPADPSPEPPPGPEPTPSPEPEPTPEPTPEPPAPEPEPPPEPVTTTVGLDLEERGEFRVVPSPGVEVVAVEAARGNVRIEQTEDGVWRVWTPGGSPGSVTVQVSAPEGTTPEAWLDAVDER				NA	NA	NA	NA	NA
AK001_02565	1092			hypothetical protein	GTGCGCACCATCGATCGTCTCCGCCCCTGGGAGCGGCTTCGTGACTGGTCGGCGTCGGCCGCGAACCAGACCGACCTGCTGCAGCTGGTCAAGGCCGTCGTCGCGGCCATGATCGCCTGGGCCGTGGCCGGGTTCGCCCTGGGCCTGGAGCAGTCGTTCCTCGCCCCCTGGGTAGCCCTGCTGACGATGCACGAGACGGTGCACCGCACGCTGTGGCGCGGCGCGCAGACGGTCCTCGCCGTCGCGGCAGGGATCCTCGTCTCCCTGGTCGTCGTGACGTTCTTCGAGGCGACCGTGTGGTCGTTCGGCCTCGCGCTGCTCGTGGGGCTCCTGATCGGGCGTCTGCCCGGTCTGCGGACCGAGGGACTCACCGTCGCGACCACCGTCCTGTTCGTCGTCACCACCGGCTACGACCTGTCGGAGCAGCGCGCGATCGAGCTGCTCCCCGACCGGTTGCTGGACACGGCCGTCGGCGTGGGCGTGGCGCTGCTGGTCAACCTGGTCGCGTTCCCGCCGCTGAACGACCGCAGCGCGCAGCGGCAGATCGACGACGTCGACGAACGACTCGGCGAGCTGCTGGGCGACATGGCCACGGAGATGCGCCGGCCCTGGGACTCCCAGTCCGAGGACGACTGGATCGAACGCACCCGGTCGATCCAGCGCGACCTCGACCACGCCTGGTCGCTCGTCCGGACGGCCCGCGAGGCCGGCCGGTGGAACCCGCGCCGACGGCGGCACCCCGGCGCCGCGCTGGCCACCTACCCCGAGGTGCTCCTGCGGCTCGAGGAGGGCGTGGCGCAGACGCAGGCCGTCGCCCGCCACGTCCGCGACGCGGGCCAGGAGGCCTCGGAGTGGGACCCGCGCTTCCGGGACCGGTACCTCGACCTGCTCGAGGAGGTCGGCCGCCGGGTCGCGGACCCGGACCAGGACGTCGCACCCCTGCGCCAGGACGTGGGCCGACTCGCCGAGGACCTGTCCGACGAGGACCTGTCCGGCCGGTACTGGCCGTTGTACGGGGCGCTCATCGCGAACCTGCGGGCCATCATCGACATCGTCGACGACGTCGCCACCGCCCGGCCCGTGCGGACCTGA	MRTIDRLRPWERLRDWSASAANQTDLLQLVKAVVAAMIAWAVAGFALGLEQSFLAPWVALLTMHETVHRTLWRGAQTVLAVAAGILVSLVVVTFFEATVWSFGLALLVGLLIGRLPGLRTEGLTVATTVLFVVTTGYDLSEQRAIELLPDRLLDTAVGVGVALLVNLVAFPPLNDRSAQRQIDDVDERLGELLGDMATEMRRPWDSQSEDDWIERTRSIQRDLDHAWSLVRTAREAGRWNPRRRRHPGAALATYPEVLLRLEEGVAQTQAVARHVRDAGQEASEWDPRFRDRYLDLLEEVGRRVADPDQDVAPLRQDVGRLAEDLSDEDLSGRYWPLYGALIANLRAIIDIVDDVATARPVRT				NA	NA	NA	NA	NA
AK001_02566	1068	ocd		Ornithine cyclodeaminase	ATGACCACCGTCGACCTGCTGGACGTCGCCGCCACCGCCCGCTGGGTCGCCGAGCGCGGCCCCGAACGGATCATCACCGAGCTCGCCGACGCCCTCGCGACGGACTTCCGGCGCTGGCCGGAGCTCGACAAGCGTCCGCGCATCGCCTCGCACTCCCGCGACGGCGTCATCGAGCTCATGCCGACCTCCGACGACGTCACCTACGGCTTCAAGTACGTCAACGGCCACCCGCTCAACCCGGCGCGCGGCTACCAGACCGTGACGGCCTTCGGCGTCCTCGCCGACGTCCAGAACGGCTACCCGACGTTCCTCGCCGAGATGACGCTGCTCACGGCGCTGCGCACGGCGGCGACGTCGGCGCTCGCCGCCCGCACGCTCGCCCGACCCGGGGCCCGGACGCACGCCCTGATCGGCACCGGCACCCAGGCCGAGTTCCAGGCGCTCGGGATGCGGGCCCTGCTCGGGGCCACCCACGTGCGGGCCTGGGACGTGGACCCGGCGGCGCGGGAGAAGTTCGTCCGCAACGCCCGGGCGCTCGGCTTCGACGTGCACGAGGCGACCAGCGCGGCCGACGCCGTGGCCGGGGCCGACGTCGTGACCACGTGCACCGCCGACAAGCGCAACGCCACCGTGCTGACGGCGGACATGCTCGCGACCGCGGCGCCCGGCGTGCACGTCAACGCCATCGGCGGGGACTGCCCGGGCAAGACCGAGCTCGAGGCGGGCATCCTCACCGCACCCGGGACCGCCGTCGTCGTCGAGTACACCCCGCAGACCCGGATCGAGGGGGAGATCCAGCAGCTCGCGGACGACCAACCCGTCACCGAGCTGTGGGAGATCCTCACGGGGCAGGCCTCCGGCCGGACCGACCCGGACCAGGTGACCGTGTTCGACTCCGTCGGGTTCGCCGTCGAGGACTGGACGACGCTGCGGTTCGTGCACGCCGCCCTGCGGTCCGACCCGGCTGGACGCGAGCTGCTGGCGCAGGTCGACCTCATCGCCGAGCCGACCGACCCGAAGGACCTGTTCTCGCTCGTCGCGGCGCCGCTGCTCCAGCCGCAGGGCTGA	MTTVDLLDVAATARWVAERGPERIITELADALATDFRRWPELDKRPRIASHSRDGVIELMPTSDDVTYGFKYVNGHPLNPARGYQTVTAFGVLADVQNGYPTFLAEMTLLTALRTAATSALAARTLARPGARTHALIGTGTQAEFQALGMRALLGATHVRAWDVDPAAREKFVRNARALGFDVHEATSAADAVAGADVVTTCTADKRNATVLTADMLATAAPGVHVNAIGGDCPGKTELEAGILTAPGTAVVVEYTPQTRIEGEIQQLADDQPVTELWEILTGQASGRTDPDQVTVFDSVGFAVEDWTTLRFVHAALRSDPAGRELLAQVDLIAEPTDPKDLFSLVAAPLLQPQG	PGPT0014250_163	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014250-ocd-K01750	NA	NA
AK001_02567	906		COG1834	N(G),N(G)-dimethylarginine dimethylaminohydrolase	ATGACGTTGCTCACACCGCCCGTCGCGCAGACCGCGACGACCGGCACCGACCGCACGCCGACCGCACGCCACTACCTCATGTGCCCGCCCGTCCATTTCGACGTGGTCTACGCGATCAACCCGTGGATGGACCTCACGGTCCCCGTCGACGCCGGCCACGCCGTCGTGCAGTGGCAGGCGCTCAAGGCCGCCTACGAGGCGCACGGCCACACCGTCGACGTCGTCGAGCCCGAGCCCGGCCTGCCCGACATGGTCTACGCCGCCAACGGCGGCGTCGTCGTCGACGGCCAGGCGCTCGCCGCCCGCTTCACCCACCCCGAGCGCCAGCCCGAGGGCATCGCCTACGACGCCTGGATGCGCGACGCCGGGGCCCGGCACGGCCTCGTCGCCCTCGGGCAGGCGGCCGAGCTCAACGAGGGGGAGGGCGACCTGCTCTGGGACGGCGAGGTCATGCTCGCCGGCACTGGGTTCCGCACCTCTCGCGAGGCCCACGCCGAGGTCGCCGAGCGTCTCGGTGTCGACGTCCTCACCCTCGAGCTCGTCGACCCGCGCTTCTACCACCTCGACACCGCGCTGGCCGTGCTGACGACCGCGGCGGACGACGGCACCCGCCCGGAGGTCGCGTACTTCCCCGGGGCGTTCACCCCGGAGTCCCGGGAGGTCCTGAGCGAGCGCTATCCGGACGCGATCCTCGCGACCGAGGCCGACGCGGCCGTGCTCGGCCTCAACGCGGTCAGCGACGGTCGGCACGTGTTCCTGTCCGACCGCGCCACCGGGATGCACGCCGCGCTGCGCGAGCGTGGGTACGTCCCGGTCGGGATCGACCTGTCCGAGCTGCTCAAGGGCGGCGGCTCGGTGAAGTGCTGCACCCTCGAGCTCCGACCCGCGCAGGAGGTGCGCTCATGA	MTLLTPPVAQTATTGTDRTPTARHYLMCPPVHFDVVYAINPWMDLTVPVDAGHAVVQWQALKAAYEAHGHTVDVVEPEPGLPDMVYAANGGVVVDGQALAARFTHPERQPEGIAYDAWMRDAGARHGLVALGQAAELNEGEGDLLWDGEVMLAGTGFRTSREAHAEVAERLGVDVLTLELVDPRFYHLDTALAVLTTAADDGTRPEVAYFPGAFTPESREVLSERYPDAILATEADAAVLGLNAVSDGRHVFLSDRATGMHAALRERGYVPVGIDLSELLKGGGSVKCCTLELRPAQEVRS				NA	NA	NA	NA	NA
AK001_02568	444	lrp_2	COG1522	Leucine-responsive regulatory protein	ATGGACCAGACCAACCGCGAGATCGTGGCGATCCTGCTGCGCGACGGCCGGGCGTCCTACGCGGAGATCGGGGACGCCGTCGGACTCTCGGCGACGGCCGTCAAGCGTCGCGTCGACCGGATGCAGGCCCGCGGGGAGATCGCCGGGTTCACCGTGCGGGTCGCCCCGGAGGAGCTGGGCTGGCGCATCGAGGCCTACGTGGAGATCTTCTGCCGGGGCAACATCTCGCCGGCCGCCCTGGAGCGGGACTTCGGGCCGATCCCGGAGGTCGTGCGCGTGGACACCGTCACCGGCGAGGCCGACGCGCTGGTGCAGATCATGGCGGGGTCGATGTCCGACGTCGAACGGATCGTCGAGTCGTTCCGGGTCAACGCCCGCGTGGACAAGACGCGCACCGCGATCGTCATGTCCCGGGTGATCGACCGGCCGGCGCGGCTGGACTGA	MDQTNREIVAILLRDGRASYAEIGDAVGLSATAVKRRVDRMQARGEIAGFTVRVAPEELGWRIEAYVEIFCRGNISPAALERDFGPIPEVVRVDTVTGEADALVQIMAGSMSDVERIVESFRVNARVDKTRTAIVMSRVIDRPARLD				NA	NA	NA	NA	NA
AK001_02569	702			hypothetical protein	GTGAGCCACACCCGCATCAACCCTGACTCCCGGCCCGTCCTGCTGACTATCGCAGCCGGGACTGGACTGGTCTTCCTCGCCTCGTTTGCACTGTCCTTCAATGCGCTCGTCGACGTCTCCAGCTGGGCGAACGTCCCGTCCACGCTCTCGTGGGCGGTACCTGTGATGCTCGACGTCGCCCTGATTGTCTACAGCCTCTCCGCGCTCGTTCGACGAGCCCGGGGACAATCCGCCAACTTCTCCTGGTTCCTGCTGGCCGCGTTCACACTCGTATCGCTGCTCGGCAACGCCGCACACTCTGTCGGAGTCCCCGATAACTGGCAGCCGCTGGTCGGGACGGTCGTTGTCGCTCTGGCACCCGTCGCAGCTCTCGCGGCCCTGGAGAACCTCGCCGGCCTCATCGTGGCCAGCCCCCATGCCAGGACGATTCCGATTGTGAGGGACGGAGCGGACGGCCCGAACGACGCGGTCATGCTCCACGAGCTGTCCGACCTTGAGGTCGACGAGCTCGATCTCCTCGGGACGCTGGCAAGCAAACACCCGCAGTCCAAACGCACCCGCGACAACCTAGTCGCCATCATGAAGATGAGGCGCGACGGCGCACGTCTCGCCGAAATCGCTCTTGCGGTCGGGATGTCGACCACACTCGTCAAGACCACTGTGCGAGACATGCAGAAGATTGGGCTCATCAAGGCCGCTTAG	MSHTRINPDSRPVLLTIAAGTGLVFLASFALSFNALVDVSSWANVPSTLSWAVPVMLDVALIVYSLSALVRRARGQSANFSWFLLAAFTLVSLLGNAAHSVGVPDNWQPLVGTVVVALAPVAALAALENLAGLIVASPHARTIPIVRDGADGPNDAVMLHELSDLEVDELDLLGTLASKHPQSKRTRDNLVAIMKMRRDGARLAEIALAVGMSTTLVKTTVRDMQKIGLIKAA				NA	NA	NA	NA	NA
AK001_02570	333			hypothetical protein	ATGGACATCCCCCAGACCCAGCGCCACTCCCCCGAGGCCGAGACCGCCTACCTCCACCTCGCCGAGATCATGGCCGAGGCGAACAAGACCATCACCTTCGCCGGCCTGGCCACCGGCACCATCTCCCCCGCCGTCGCACAGGAGGCCTCCGACCGGGCCGTGCGCCGCGCCACGGTGGCCTACAAGCGCCTCCTGGCCGACTCCGGCGACACCGAGAAGGTCGAGAATGTCCTCGCGCGGATCCTGGCCGAGCTCACCGTCTCGACGGCCGCCACCTGGGTCGACATGTTCCACGACGCGATCTTCAACACCCCGCGGAGCAACGACCAGTGA	MDIPQTQRHSPEAETAYLHLAEIMAEANKTITFAGLATGTISPAVAQEASDRAVRRATVAYKRLLADSGDTEKVENVLARILAELTVSTAATWVDMFHDAIFNTPRSNDQ				NA	NA	NA	NA	NA
AK001_02571	582			hypothetical protein	GTGACTCTGACCGCACATGCACCCACCCGCGACATCCTCACTAGTCTCGCCCGCGCCGGCTGGGGCGACCTCGCCGGCAGCGAGCACAAGGGCACGCGCGCGATGCTGCGAGCTCTGGTCGACCTGTTGCCCTACGGCTCCGGCGAAGGCCTTGTGACCGCCCCGCAGCTCGCTGGCGTCTCTGGCTACTCCGAGCGCTGGGTCCGCTCCCGCCTCCTCGAACTCGAACGAGTTGGCCTGATCCTCTGGCAGCGCGGCGGAGTCGTGGCCGGTCGCTGCGTCCCGTCCCACATCCGCATCGTCAAGAGCGCCGTCCTGGCCCTCATCGGCATGGCACGCAAGGTCAAGGACGCCGCAGTTGCCGTCCGTCGCCGCCTGACCCAGGAACGCATCGCCGGCCTGTCCTACGCCGTGGGGCGACGACGCTCGTCCAACCGGAACCAGGTGCAGGCCTCCTCCCCTACTCGGGGAAGCCTCCCGGCGGTTCCCCGCCGTACTTCTTCGCCTGACGTCGAGTGCGAGCACGGCGACCCGCGAGGGTCGCGGTACTGCGCCCTGTGCCGCCACAGCCTTCCCGCCTGA	MTLTAHAPTRDILTSLARAGWGDLAGSEHKGTRAMLRALVDLLPYGSGEGLVTAPQLAGVSGYSERWVRSRLLELERVGLILWQRGGVVAGRCVPSHIRIVKSAVLALIGMARKVKDAAVAVRRRLTQERIAGLSYAVGRRRSSNRNQVQASSPTRGSLPAVPRRTSSPDVECEHGDPRGSRYCALCRHSLPA				NA	NA	NA	NA	NA
AK001_02572	342			hypothetical protein	GTGTCTGAGCCTACGTTCTACCTGCACAACGGTCGAGTGCGCACCGACTGCCCTCACGAGCTCGTCGAGGCGGTCGATTCGAGCGGGGTGATGTGCCGCCAGTGCGGTGGCACCACCGAGCACCCCGGCGATACCTCGGGCGATTGGGTCAGCCCTCCGCCCGGTACGCGGGTGCGCGTCACCGCCGACATCTGCCGGCCCGAGTCGCGCGGCAAGATCGGGACCACGGCGACCCTCACTTCGGGCCGCATCAGCGACACCGCCTTCTGGATCGAGTTCGATGACGGCTCGGTCATGTTCGCGATGTGGCTCGTCACCTGGATCGAGGTGCTGCAGCCGTGA	MSEPTFYLHNGRVRTDCPHELVEAVDSSGVMCRQCGGTTEHPGDTSGDWVSPPPGTRVRVTADICRPESRGKIGTTATLTSGRISDTAFWIEFDDGSVMFAMWLVTWIEVLQP				NA	NA	NA	NA	NA
AK001_02573	1917			hypothetical protein	TTGGTTCTCGACTTCTGGACCTTCTGCTGCCTGAACTGCCTGCACGTCCTGGACGAGCTGCGCGAGCTCGAGGAGGCGCACCGCGACGTCCTGGTGATCGTCGGCGTGCACTCGCCCAAGTTCGCCCACGAGGCCGACCCGGACGCCCTGGCCGCCGCGGTCGAGCGCTACGACGTGCGCCACCCCGTCCTGGACGACCCGGAGCTCGTGACCTGGGACGCCTACACCGCGCGGGCGTGGCCCACGCTGGTCGTGGTCGACCCGGAGGGCTACGTCGTGGCCCAGATGGCCGGGGAGGGGCACGCCTCGGCGGTGGAGGCGCTGGTGCGCGACCTCGTGGCCGAGCACGACGCCAAGGGGACCCTGCACCGCGGTGACGGCCCCTACGTGCCGCCGATGCCGGAGCCGACCACGCTGCGGTTCCCCGCGGCGGCGCTGACCCTGCCGGGCGGCACCCTGCTGGTGGCCGACGCCGGGCACCACGCGCTGGCCGAGCTCGCGTCCGACGGCGAGACCCTGGTGCGGCGCATCGGCTCCGGCGAGCGCGGCCTGGCCGACGGCGGTCCCGGCCCCGACGGCGCCCACGCCGCCCGGTTCAGCGAGCCGAACGGGCTGTGCCTCGTGCCCGAGCGCCTGCGCCCGCAGCTCGGCTACGACGTCCTGGTGGCCGACACCGTCAACCACGCCCTGCGCGGTGTACACCTGGAGTCCGGTCAGGTGTACACCGTCGCCGGCACCGGTCACCAGTACATGGTCGGCGGTCAGGAGAACGTCGAGCTGCCGGGCCGGGCGCCCCGTGCGCACGCCGCCGACGAGGAGCTGCCCGCGACGTCGGTCCGGCTGTCCTCCCCGTGGGACGTGGCCTGGTCCGGCCCGCTGGGCGCGTTCGTGGTCGCGACGGCCGGGAACCACACCCTGTGGGCGTTCGACCCGGCGGCGTCCGACGGGCACGGCAGCCTGCGCCTCCTGGCGGGCACGATGAACGAGGGGCTCGAGGACGGGCCCGGCGAGCAGGCGTGGTTCGCCCAGCCCTCCCGGCTCGCGCCGACCCTCGACGACGACCGTCGGCCCGACGGCGGGTTCTGGCTCGCCGACGCCGAGACCTCGGCGCTGCGCCGGGTCGTGCCCGCCGCCGACGACCCGGCCGACGACCCGGCCGACACCGACGGTGGCAGCCCCGCCGTCGTGGTGCGGACCGCCGTCGGGCAGGGGCTGTACGACTTCGGGCACCGGGACGGAACCGCCGACCAGGCGCTGCTGCAGCACCCCCTCGGGGTCGCCACGCTGCCGGACGGTTCCGCCGTCGTCGCCGACACCTACAACGGCGCGCTGCGCCGGTACGACCCGCGCAGCGGACTCGTCACCACCCTCGCGACCGGGCTGGCCGAACCGAGCGACGTCGTCGTGCAGGCCGACGACACCGCCGTGCACCTGCTCGTCGTGGAGTCCGCCGCGCACCGGCTGACCCGCGTGGCGCTGCCTGCGGACCTGGCCGGCGAGGTGCTGGACGCGGGCGCGCACCGCGTCGCCCGGGAGGCGACCGCGATCAGCGGCGGAGCGGTGCGCCTCGAGGTGCCGTTCACCCCGGCGCCCGGCCAGAAGCTCGACGACCGCTTCGGACCGTCGACCGAGCTGCGGATCAGCGCCACCCCGCCCGAGCTGCTGCTCGACGGCGCCGGCGACGGCACGGATCTGCGGCGCGTCCTGCGCGTCGACCCCGCCGTCGGCGAGGGCGTCCTGCACGTCACCGCGAAGGCGGCCTCCTGCGACCTGCCGCCCGACGACGTGGTGCTCGGCCCGGACGGCGAGCCGGAGGACTTCTTCCCGGCCTGCCACCTCGCCCAGCAGGACTGGGGAGTGCCGGTGACGGTCGCGGCCGACGGCGCCGCGACGCTCACCCTGCCCCTGCGCGGCTGA	MVLDFWTFCCLNCLHVLDELRELEEAHRDVLVIVGVHSPKFAHEADPDALAAAVERYDVRHPVLDDPELVTWDAYTARAWPTLVVVDPEGYVVAQMAGEGHASAVEALVRDLVAEHDAKGTLHRGDGPYVPPMPEPTTLRFPAAALTLPGGTLLVADAGHHALAELASDGETLVRRIGSGERGLADGGPGPDGAHAARFSEPNGLCLVPERLRPQLGYDVLVADTVNHALRGVHLESGQVYTVAGTGHQYMVGGQENVELPGRAPRAHAADEELPATSVRLSSPWDVAWSGPLGAFVVATAGNHTLWAFDPAASDGHGSLRLLAGTMNEGLEDGPGEQAWFAQPSRLAPTLDDDRRPDGGFWLADAETSALRRVVPAADDPADDPADTDGGSPAVVVRTAVGQGLYDFGHRDGTADQALLQHPLGVATLPDGSAVVADTYNGALRRYDPRSGLVTTLATGLAEPSDVVVQADDTAVHLLVVESAAHRLTRVALPADLAGEVLDAGAHRVAREATAISGGAVRLEVPFTPAPGQKLDDRFGPSTELRISATPPELLLDGAGDGTDLRRVLRVDPAVGEGVLHVTAKAASCDLPPDDVVLGPDGEPEDFFPACHLAQQDWGVPVTVAADGAATLTLPLRG				NA	NA	NA	NA	NA
AK001_02574	2904	ndhB		NAD(P)H-quinone oxidoreductase subunit 2, chloroplastic	GTGCTGCCAGTCCTGCTGCTGACGTTCGCACTGGCCCTGTCGGCGCCCGTCCTCGTGGCCCGGCTCGGCCGGCGTGCGTTCTGGATCCTCGCCCTGGGTCCTGCCGCCGCCGCGGGCTACGCGCTGGCGAGCACGACGGCGGTGCTGGACGGCCGGTACCCGGTCACCAGCATCCCGTGGGTGCCGGGGCTGGACCTGTCCCTGGACCTGCGCCTCGACGCGCTCTCCTGGCTCATGCTGCTCGTCGTCGGCGGGGTCGGCGCCCTGGTGCTGGTGTACTGCTCGGCCTACTTCGCCCGGGACGCGTTCGGCACCGGGCGGTTCGCCGCGACGCTCACCGCGTTCTCGGGAGCGATGATCGGCCTGGTGGTCGCCGACGACCTGCTGCTGCTCTTCGTCTTCTGGGAGCTGACCACGGTCTTCTCCTACCTGCTGATCGGCCACTACGCCGACCGCAAGGCGTCGCGGCGGGCCGCGATGCAGGCCATCGTCGTCACCACGGCCGGCGGACTGGTCATGCTGGTCGGGCTCATCGTGCTCGGCGTCTCGACCGGCACCTGGCGGCTCTCCGAGGTCGTGGCCGCGCCGCCCACGGGAACCGCCGCCGTCGTGGCGTCGCTGTGCCTGGTCGCCGGCGCCGCGACCAAGTCGGCGCTCGTGCCGTTCCACTTCTGGCTGCCCGCCGCGATGGCGGCGCCCACGCCGGTCTCGGCGTACCTGCACGCGGCGGCCATGGTGAAGGCCGGCGTCTACCTGGTGGCGCGGTTCGCGCCCGGCCTGTCCGGGGAGCCGGTGTGGCGGTGGTCCGTGGTCGCCCTCGGCGGGGCGACCCTGCTCGTCGGCGGCTACCGGGCGCTGCGTCAGCACGACCTCAAGCTCGTGCTGGCCTTCGGCACGGTCTCCCAGCTCGGTCTGCTCGTGCTGCTGCTCGGGCTGGGCACGCGGGCGGCCGCGCTCGCGGGCCTGGCCCTGCTCGGCGCGCACGCGATGTTCAAGGCGACGATGTTCCTCGTGGTCGGGGCCGTCGACGTCGCGACCGGCACGCGTGACCTGCGCCGGCTGTCCGGGCTGTGGCGGGCGATGCCGGTCACGGCCGCCGCCGGGCTGCTGGCCACCGCCTCCATGATCGGGGTGCCGCCGACGGCGGGCTACGTCGCCAAGGAGGCCGCCCTGGAGGGTCTCTGGCACGACGTGACCCACGGGGCGGACGCGCTGGAGGTGGCCGCGCTGGCCGCCGTCGTCGTCGGCTCGATCCTCACCGTGACCTACGGGCTGCGGTTCTGGTGGGGCGCGTTCGGCACCAAGGCGTCGCCGGCCGACGGCGGCGCGCCCGACGGCGGCACCCCGGCCGTGCCGCACCGCCGTCAGCCCGTGCTCCTGGTCGCCCCGCCCGCGGTGCTCGCCCTCGGCGGCCTGCTCGTCGCGCTCGTGCCGTCGGCCGGGGAGCGGGTGCTGGCCCCCTACGCCGACACCTACCCGGCGGGGGACCCGGGGCACCTGGTGCTGTGGGGCGGCCTGACGCCCGCGCTGGCGACCTCCGCCGTGGTGCTCGCGGCCGGCGCCGTGCTGTTCTGGCAGCGCGTGCGCGTGGAGCGCTGGCAGTCCGCGATGCCGTCCCCGCGCGGCGCCGACGTCGTCTACCGGCGGTCGATGCGCCGCCTGGACGACCTCGCCGCCGACGTCACCGGCGCCACCCAGCGCGGCTCCCTGCCGTTCTACCTCGGCATCGTGCTGGTGGTCCTCGCCGTGGCTCCCGGCGCGGTCATCCTGTCCGGGCTGCTCTCGGGCAGCACGGTCGCCGTCGACGTCGTGCCGTGGGACCGGCCGGCGCAGGCCGCGGTCGTGGGGATCGTCGTCGTGGCGGCCGTGCTCGCGACGCGCGCCCGGCGGCGGCTCAAGGCCGTCGTCCTCGTCGGGGTGGCCGGCTACGCCAACGCCGCGCTGTTCCTGCTGCACGGTGCGCCGGACCTGGCGCTCACCCAGGTCCTCGTCGAGACGGTGACGCTCGTGGTGCTGGTCCTCGTGCTGCGCCGCCTGCCGCCCTACTTCACCGACCGGCCGCTGGCCGCCAGCCGGTGGGTGCGCCTCGCCCTGGGCGTGACGACGGGGGTGGTCATGATGGCGCTCACCCTCGCGGCGCCCCTGGCGCGCGTGCAGCAGCCCATCAGCGTCGACTTCCCCGCGGAGTCCGTCGAGTACGGCAGCGGGCGCAACATCGTCAACGTCACGCTCGTCGACATCCGCGCCTGGGACACCGTGGGCGAGCTGTCGGTGCTGCTCGTCGCCGCCACGGGCGTCGCGTCCCTGGTCTTCCTGCGCCAGCGCAGCGGAGCGGTGCTGCGGCTGTCCCGGGCACCCGGCGCCGACCGCGACGACGGCGGCCCGCGCCGCGGCGTGTGGCTCGCCGCCGGCCGCACCCTGACTCCCGAGCGCCGGTCGGTGATGTTCGAGATCGTCACGCGACTGGTCTTCCACGCGATGGTCGTGTTCGCGCTGTTCCTGCTGTTCAGCGGTCACAACTCCACCGGCGGCGGGTTCGCGGCCGGCATGGTGGTCGGGATCGCCCTGGCGGTCCGCTACCTCGCCGGCGGCCGGTACGAGCTCGGCGAGGCGATGCCCGTGCCGCCGGGCCTGCTGCTCGGCACCGGCCTCTTCCTGTCGGCCGGCGTGGGGCTCGTCGCCCTGCTGGGCGGCAACGAGGTGCTGGAGAGCTTCACCTACGACGTCCACGTCCCGCTGCTGGGCGACGTCCACCTGGTGACGTCGCTGTTCTTCGACGTCGGGGTGATGCTGCTGGTGGTCGGCCTCGTCCTGGACCTGCTGCGCACGCTCGGCGCGGAGATCGACCGGCAGGGCGAGCTGCCGGAGAACGTCGTGGCCGTCGTGGGGGAGGGGTCGCGATGA	MLPVLLLTFALALSAPVLVARLGRRAFWILALGPAAAAGYALASTTAVLDGRYPVTSIPWVPGLDLSLDLRLDALSWLMLLVVGGVGALVLVYCSAYFARDAFGTGRFAATLTAFSGAMIGLVVADDLLLLFVFWELTTVFSYLLIGHYADRKASRRAAMQAIVVTTAGGLVMLVGLIVLGVSTGTWRLSEVVAAPPTGTAAVVASLCLVAGAATKSALVPFHFWLPAAMAAPTPVSAYLHAAAMVKAGVYLVARFAPGLSGEPVWRWSVVALGGATLLVGGYRALRQHDLKLVLAFGTVSQLGLLVLLLGLGTRAAALAGLALLGAHAMFKATMFLVVGAVDVATGTRDLRRLSGLWRAMPVTAAAGLLATASMIGVPPTAGYVAKEAALEGLWHDVTHGADALEVAALAAVVVGSILTVTYGLRFWWGAFGTKASPADGGAPDGGTPAVPHRRQPVLLVAPPAVLALGGLLVALVPSAGERVLAPYADTYPAGDPGHLVLWGGLTPALATSAVVLAAGAVLFWQRVRVERWQSAMPSPRGADVVYRRSMRRLDDLAADVTGATQRGSLPFYLGIVLVVLAVAPGAVILSGLLSGSTVAVDVVPWDRPAQAAVVGIVVVAAVLATRARRRLKAVVLVGVAGYANAALFLLHGAPDLALTQVLVETVTLVVLVLVLRRLPPYFTDRPLAASRWVRLALGVTTGVVMMALTLAAPLARVQQPISVDFPAESVEYGSGRNIVNVTLVDIRAWDTVGELSVLLVAATGVASLVFLRQRSGAVLRLSRAPGADRDDGGPRRGVWLAAGRTLTPERRSVMFEIVTRLVFHAMVVFALFLLFSGHNSTGGGFAAGMVVGIALAVRYLAGGRYELGEAMPVPPGLLLGTGLFLSAGVGLVALLGGNEVLESFTYDVHVPLLGDVHLVTSLFFDVGVMLLVVGLVLDLLRTLGAEIDRQGELPENVVAVVGEGSR	PGPT0013895_434	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013895-mnhA-K05565	NA	NA
AK001_02575	495			hypothetical protein	ATGATCGTCCTGGAGAACACCCCGTCGGCGGTGCTCGTGCTTGCCGTCGGCGTGCTGTGCGGCGCCGGCGTCTACCTCCTGCTGGAGCGCCCGCTGACGCGGGTCCTGCTCGGGTTCATCCTGCTCAGCAACGGGGTGAACCTCATGCTGCTCGTCGCGGGCGGCCGGGCCGGCGCGTCGCCGATCGTCGGCAACGCGGGCGACGAGCCGATGAGCGACCCGCTGGCGCAGGCCATGACCCTCACGGCGATCGTCATCACCCTCGGGCTGTCGGCGTTCATCCTGGCGCTCGCGTACCGGTCCTGGCAGCTGCACGGCCACGACGAGGTCGCCGACGACGTCGAGGACCGCCGCGTCGCCCGGCAGGCGGCGCTCAACGCCCCCGCCTACGAGGACGCGGACGCCGCCGAGACCGGCGAGTCGCTCGACGAGGAGGCCGCCACGGTGCACGACGAGGTCGCGGGCGACGACGCCGGGACGGAGGCGGGCCGATGA	MIVLENTPSAVLVLAVGVLCGAGVYLLLERPLTRVLLGFILLSNGVNLMLLVAGGRAGASPIVGNAGDEPMSDPLAQAMTLTAIVITLGLSAFILALAYRSWQLHGHDEVADDVEDRRVARQAALNAPAYEDADAAETGESLDEEAATVHDEVAGDDAGTEAGR	PGPT0013905_229	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013905-mnhC-K05567	NA	NA
AK001_02576	1620	mrpD	COG0651	Na(+)/H(+) antiporter subunit D	ATGATCCCCGCCGCCTGGGGGCCTGAGACCCTCGTCCCGCTGCCGGTGCTCGTGCCGCTGTTCGCCGCGGGCCTGACGCTGGCGCTGCACCGGTACGCCAACGTCCAGCGCACGATCTCCGTCGTCGCGCTCGTCGCGGCGACCGCGGCCTCCGTGGGACTCGTGTTCGCGGCCGACGGCGGTCCCGTCGTCGTCGACGTCGGCGGCTGGGCCGCACCGGTCGGCATCGCGCTGGTCGCCGACCGGCTGGCCGCCCTGATGCTCACGGTCAGCGGCGTCATGCTGCTGTGCGTGCTGCTGTACTCGCTGGGTCAGGGCGTGCCCGAGAGCGAGGCGGAGACCGTCGACGAGGCGCGCGTCGGCGGCGCGATCCCGGTGGCGATCTTCCACCCGACCTACCTGGTGCTGGCCGCCGGTGTCTCCAACGCGTTCCTCACCGGGGACCTGTTCAACCTCTACGTCGGGTTCGAGATCCTGCTCGCCGCCTCGGCCGTGCTGCTGACGCTCGGCGGCACCGCCGAACGGGTCCGGGCCGGGTCGGTGTACCTCATCGTGGCGCTGGCGTCCTCGGTGCTCTTCCTCGCGGCGATCGCCCTGATCTACGCGGCCACCGGCACGATCAACATGGCCCAGCTCGCCGTGCGCCTGCCCGAGATCGACGACACCGTCCGCGTGGCCCTGCAGCTCCTGCTGCTGCTGGCGTTCGGCATCAAGGCGGCCGTCTTCCCGCTGTCCTTCTGGCTGCCGGACTCCTACCCGACGGCACCCGCGCCGGTCACGGCGGTGTTCGCCGGCCTGCTGACCAAGGTCGGCGTGTACTCGATCCTGCGCACCCAGACGCTGATCTTCCCGGACAGCCCGGTCGTGGACCAGATCCTGCTCGTCGTCGCGCTGGCCACCATGGTGATCGGCATCCTCGGCGCCGTGGCGCAGAACGACGTCAAACGGCTCCTGTCCTTCACGCTGGTCAGCCACATCGGGTTCATGATCTTCGGCGTCGCGCTGGCCTCGGAGGCCGGGACCGCCGCCGCGATCTTCTACGTCGTGCACCACATCTCGGTGCAGACGGCGTTGTTCCTCGTGGTGGGGCTGGTCGAGTGGCGCGGCGGGTCCACGTCGCTCGACCGGCTCGGCGGGCTGGCCAAGCTCGCCCCGCTGCTGGCGGTGCTGTTCTTCGTCCCGGCGCTGAACCTGGCGGGCATCCCGCCGCTGTCGGGGTTCCTCGGCAAGGTCGGGCTGCTCACCGAGGGCGTGCGCGACGGCACCCCGCTGGCGTGGGCCCTGGTGATCGGCTCCGTGGTGACCTCCCTGCTGACCCTCTACGCGGTGGTCAAGGCGTGGAACAAGGCGTTCTGGCAGACGGCGCCCGCCGAGGTCCCCGAGCACGCCCCGATGCCGCGCAGCATGGTCTGGCCGGCCGCGGCCCTGGTGACCTTCGGCGTCTCGCTGACCGTCGTCGCGGGCCCGCTGTACGGGTACGCCGACCGCTCCGCGGCCACGACGATGGACGGGTACACCTACATCGAGGCCGTGTACCCGGGCGGGTCCGACCGGGGCACGGGGCAGTCCGTGGACGTCACGGACGCCCAGACCGACGGCTCGGACGGGGGTGACGGATGA	MIPAAWGPETLVPLPVLVPLFAAGLTLALHRYANVQRTISVVALVAATAASVGLVFAADGGPVVVDVGGWAAPVGIALVADRLAALMLTVSGVMLLCVLLYSLGQGVPESEAETVDEARVGGAIPVAIFHPTYLVLAAGVSNAFLTGDLFNLYVGFEILLAASAVLLTLGGTAERVRAGSVYLIVALASSVLFLAAIALIYAATGTINMAQLAVRLPEIDDTVRVALQLLLLLAFGIKAAVFPLSFWLPDSYPTAPAPVTAVFAGLLTKVGVYSILRTQTLIFPDSPVVDQILLVVALATMVIGILGAVAQNDVKRLLSFTLVSHIGFMIFGVALASEAGTAAAIFYVVHHISVQTALFLVVGLVEWRGGSTSLDRLGGLAKLAPLLAVLFFVPALNLAGIPPLSGFLGKVGLLTEGVRDGTPLAWALVIGSVVTSLLTLYAVVKAWNKAFWQTAPAEVPEHAPMPRSMVWPAAALVTFGVSLTVVAGPLYGYADRSAATTMDGYTYIEAVYPGGSDRGTGQSVDVTDAQTDGSDGGDG	PGPT0013910_594	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013910-mnhD-K05568	NA	NA
AK001_02577	582			hypothetical protein	ATGACCGGCGCCGAGTCGGAGCACGCGCGGGGCGGCCTCGGCCGGGTCCTGGCCCAGTGGCCCGCCCTGGTCGGGCTGACCCTGGTCTGGGTGCTGCTGTGGGGGCAGCTCTCGTGGGGCAACGTCGTGGGCGGGCTGCTGCTGGCGGTGCTCGTCGTCGTCGCCTTCCCGCTGCCGCCGATCCCGTCGCGGGGGACGTTCCGCCCGGTGCCGTTCGCCGGTCTGCTCGGCCGGTTCGTCACCGACCTCGTGGTGGCCTCGTTCCAGGTCGCGTGGGTCGCGGTCCGGCCCGGGCCCCAGCCCCAGGGCGCCGTCGTGCAGGTCCGGCTGCGCAATCCGGACGACGTCTACCTCACGACCACGGCCGTGCTGTCCACGCTGGTGCCCGGCACGATGATCGTGGAGGCCGAGCGGGACACCGGGATGCTGTCCGTGCACGTGCTGGACATCGAGGGCTCCGGCGGCCCGGACGGGGTGCGGCGGTACCTGCTGGACCTGGAGGACCGGGTGCTGCGCAGCTTCGCGCCCCGGGACGTGCTCGCGCGCTGCGCGGCGCAGGACGGGACGGAGGGGACCCGATGA	MTGAESEHARGGLGRVLAQWPALVGLTLVWVLLWGQLSWGNVVGGLLLAVLVVVAFPLPPIPSRGTFRPVPFAGLLGRFVTDLVVASFQVAWVAVRPGPQPQGAVVQVRLRNPDDVYLTTTAVLSTLVPGTMIVEAERDTGMLSVHVLDIEGSGGPDGVRRYLLDLEDRVLRSFAPRDVLARCAAQDGTEGTR	PGPT0013915_162	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013915-mnhE-K05569	NA	NA
AK001_02578	366			hypothetical protein	ATGACCGTCGTCGTCGTGGTGGCCGCGGTGATGGTGGCCGTGGCCGCGCTGCTGGCCCTGGTGCGCATCGAGCGCGGGCCGTCGATGCTCGACCGCGCGCTCGGGCTGGACCTGCTCGCAGCGACCCTCGTGGGGGCGATCGCGATCGAGGCGGCCTGGAACCGGCGGACCGAGACCATCCCGATCCTCGTCGCCCTGTCCCTCGTGGGCTTCGTCGGCTCGGTGGCCATCGCGCGCTTCGCCGCCCGGGAGCCGTCGCGCGCGGAGCGCCGGGCCGTGGACGACCGGGCTGCAGAAGACCGGGCTGCGGACGACCGGGCTGCGGACGACCGGCCTGCGGACGACCGGGCGGAGGAGGACCGATGA	MTVVVVVAAVMVAVAALLALVRIERGPSMLDRALGLDLLAATLVGAIAIEAAWNRRTETIPILVALSLVGFVGSVAIARFAAREPSRAERRAVDDRAAEDRAADDRAADDRPADDRAEEDR	PGPT0013920_230	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013920-mnhF-K05570	NA	NA
AK001_02579	366			hypothetical protein	ATGACCGAGGTCGAACCGGGCTTCTGGACGACCGTCGCCGACGTGGTCGCCGGCGTGAGCCTGCTCGCCGGGGCGTTCCTGACCCTCGCGGCGGCGGTCGGGGCGCTGCGCTTCGACTCGTTGCTGGCGCGCATGCACGCGATCACCAAGCCGCAGGTGCTCGGGCTGGTCCTGCTGCTGCTCGGGCTCGCGCTCCGGGTCCGCAGCTGGTCGGCGGTGGCGATGCTCGTCCTGGTGGTCGTCTTCCAGCTCGCGACGGCGCCGGTGTCCGCCCACCTGGTCAGCCGTGCCGGCTTCCGCACCGGCAAGGTCGACCCGGACGCGCTGGTGCCCAACGAGATGGACCCCGAGGCGCGCCGGGACTAG	MTEVEPGFWTTVADVVAGVSLLAGAFLTLAAAVGALRFDSLLARMHAITKPQVLGLVLLLLGLALRVRSWSAVAMLVLVVVFQLATAPVSAHLVSRAGFRTGKVDPDALVPNEMDPEARRD	PGPT0013925_259	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013925-mnhG-K05571	NA	NA
AK001_02580	645	gph_5		Phosphoglycolate phosphatase	ATGGTGCGCGCGGTGGTGTTCGACGTCGGCGAGACGTTGATCGACGAGACCCGGATCTTCTCGCGGTGGGCCGACCGCCTCGACGTGCCGCGCGGCACGTTCCTCGGGCTGGTCGGGGCCTGCGCGGCGACCGACCGACCGCTGGCGGACGCCTTCGCGCTCGCCCGCCCGGGCCTCGACCTGGGCGGCGAGATCGACCGGTGGGCGCTCGAGGACCCCGCGGGGCTGCGGGAGAACTTCGACGCCGACGACCTCTACGCCGACGTCCGGCCGGCGCTGGCCGCCCTGCGCGAGGCCGGTCTCGCCGTCGTCGTCGCCGGGAACCAGCCGCCCCAGGCCCGGGCGGCGCTCGAGGCGATGGACCTGCCCGTGGACAGCATCCGCACCTCCGACGAGTGGGGGGTGGAGAAGCCCGCGCCCGAGTTCTTCGCGCGGGTCGCCGAGCTCGCCGGCCACCCGGCGTCCCAGATCGCCTACGTGGGCGACCGGCTGGACAACGACGTGCTCCCCGCCGCCGACGCCGGGATGCGGCCCGTGCTGATCCGTCGCGGCCCGTGGGGCTACTGGCACGCGACCCGCCCCGAGGCCGCGCGGGTCGACGTCGTCGACTCCCTGCACGAGCTCCTGGCCCTGCTGACCCGCTAG	MVRAVVFDVGETLIDETRIFSRWADRLDVPRGTFLGLVGACAATDRPLADAFALARPGLDLGGEIDRWALEDPAGLRENFDADDLYADVRPALAALREAGLAVVVAGNQPPQARAALEAMDLPVDSIRTSDEWGVEKPAPEFFARVAELAGHPASQIAYVGDRLDNDVLPAADAGMRPVLIRRGPWGYWHATRPEAARVDVVDSLHELLALLTR	PGPT0008585_1020	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008585-yigB-K20862	NA	NA
AK001_02581	861		COG1082	putative protein	ATGGCCGAGACGCCGATTCCCGTGACACTCTCCACCGCGTCGGTGTACCCGCGCCGCGCGGCCTTCGCCTTCGAGGCGGCCGCCGAGATCGGGTACGACGGCGTCGAGGTCATGGTCTGGTCGGACCCCGCGACGCAGGACCCGGCCGCGCTGTCCCGGCTGGCCGAGAGGTCCGGGGTGCCGATCCGGTCCATCCACGCGCCGACGCTGCTCATCAGTCAGCGGGTGTGGGGACGGTCCCCGGCGGACAAGCTGGCCCGCACGGTGGACATGGCCGCCGAGCTGGGCGCCGGCACCGTCGTCGTGCACCCCCCGTTCCGCTGGCAGTACAAGTACGCCCGCGGGTTCGAGGAGCAGGTGCGCGAGCTCAACGCCTCCGGCCCGGTCACCGTGGCGGTGGAGAACATGTACCCGTGGCGGCCGCACTCCCGCCTCGACCGGGAGCTCAAGGCGTACCTGCCGGGCTGGGACCCGTCCGAGCACAACTACGACGCCGTGACGCTCGACCTGTCGCACGCCGCCATCGCCCAGCAGGACGGCCTGGACCTCGTCCGCGAGTTCGGGGACCGCCTGCGGCACCTGCACCTGGCCGACGGCACGTTCAACATCCGCGACGAGCACCTGGTCCCGGGCCGCGGCGACATGCACTGCGACAAGGTGCTCACCGAGCTGGCCCACAACGGCTTCAGCGGCGACGTCGTGCTGGAGATCTCCACCCGCAAGGCCCGCGACGCCCACGAGCGGCACACGGACCTGGTGGCGGCCCTGGAGTTCGCCCGCGCCTACCTCGCTCCGGTCCCGGTGCCGTACACGCCGCCGGAGCCCGAGCACCGCCACCGGCCCTCCGACGCCTGGTGGTGA	MAETPIPVTLSTASVYPRRAAFAFEAAAEIGYDGVEVMVWSDPATQDPAALSRLAERSGVPIRSIHAPTLLISQRVWGRSPADKLARTVDMAAELGAGTVVVHPPFRWQYKYARGFEEQVRELNASGPVTVAVENMYPWRPHSRLDRELKAYLPGWDPSEHNYDAVTLDLSHAAIAQQDGLDLVREFGDRLRHLHLADGTFNIRDEHLVPGRGDMHCDKVLTELAHNGFSGDVVLEISTRKARDAHERHTDLVAALEFARAYLAPVPVPYTPPEPEHRHRPSDAWW				NA	NA	NA	NA	NA
AK001_02582	606			hypothetical protein	ATGCCCAAGATCATCGGCAAGAGTCTTCACGAGCACCGCCAGATGACCCGGCACAAGCTGTTCGCGGCGCTGTCCACGCTCATGGCCGAGCGGGGGTTCGACACGATCACGCTGGCCGACATCGCGCAGGCCGCCGGCGTGGGGCGCACCGCCGTGTACAACCACTTCGCGGACAAGGAAGCCCTGCTGCTGGGCTTCATCACCCACGAGACCGAGCAGTACGCCCACACCCTCGAGCGCGCGCTGACCGAGGTCGACGACCCCGTCATGCAGCTGCGCACCTACATCCGCCAGCAGGCGCAGCTGACGACGGTCTTCCACCTCGCGCCGGGTCCGGACCTGCGCACCGTGCTGTCGCGGACCACCCAGGCCCGGCTGCGCGAGCACGCCGAGATCGTCGAGTCGATCCTCAAGCGCATCCTGCGCGAGGGCGTCGAGACGGGCGCCTTCCCGCCCCAGGACATCGAGCCCACCGTGCAGCTCGTCAACGCCTGCCTGTCGGGGCGTCTCATCCCCAGCGACCCCGAGGGGCGCGAGCGCACCATCCGGGCGACCGAGACGTTCGTGCTGCGCGCGGTCGGCGCGCGGCCCCAGATGGCGGCCTGA	MPKIIGKSLHEHRQMTRHKLFAALSTLMAERGFDTITLADIAQAAGVGRTAVYNHFADKEALLLGFITHETEQYAHTLERALTEVDDPVMQLRTYIRQQAQLTTVFHLAPGPDLRTVLSRTTQARLREHAEIVESILKRILREGVETGAFPPQDIEPTVQLVNACLSGRLIPSDPEGRERTIRATETFVLRAVGARPQMAA				NA	NA	NA	NA	NA
AK001_02583	570			hypothetical protein	GTGCCCGGTATCGTGCCGGCTGTGAGCGACGACACTTCGCCGGTCGGACCGGACGAGATCGAGCCGGACACCAAGGACTGGACCTGGGTGGTCGAGCAGCCGTGCCCGGCGTGCGGGTTCGACCCCGCCGACGTCGACCCCCTCGCGGTGGGGGACGCCGTGCGGGCCCTCGTGCCGCGCTGGCGGGCCGTCCTCGCCCGGCCCGGCGTGCGCCGTCGTCCCGTCCCGCAGGTGTGGTCCCCGCTGGAGTACGGCGCCCACGTGCGCGACGTCTTCGGGGTCTTCGACGAGCGGCTCGCGCTCATGCTGGCCACCGACGGGGCGGCCTTCGCGAACTGGGACCAGGACGCCGCGGCGCTCGCGGGCGGGTACGCCGCGCTGGACCCCGCCCGGGTGGCCGACGAGCTCGCCGTCGCGGGTGCCGCGGTCGCTGACCGGTTCGACACCGTGGCGGAGCAGGACCTGGAGCGCGTCGGGCGGCGCTCGAACGGCTCGGTCTTCACGGTCCGCACGTTCGGGCGGTACTTCCTGCACGACGTCGTCCACCACCTGGACGACGTCGACGGCTGA	MPGIVPAVSDDTSPVGPDEIEPDTKDWTWVVEQPCPACGFDPADVDPLAVGDAVRALVPRWRAVLARPGVRRRPVPQVWSPLEYGAHVRDVFGVFDERLALMLATDGAAFANWDQDAAALAGGYAALDPARVADELAVAGAAVADRFDTVAEQDLERVGRRSNGSVFTVRTFGRYFLHDVVHHLDDVDG				NA	NA	NA	NA	NA
AK001_02584	1014			hypothetical protein	ATGTCGTACGTCCAGGCGCTCGTCCCCCCGGAGCACGCGTCGAACCACCTGCTCGTCCTGCCCGGCACGACCGACGTCGCCGTCGTGCGTCGCCTGGCGGAGGCATGGTTCGCGGACGTCCGCTGGCTCAAGGAGCCGGCGGCCCGGTCCGGGGCGTCACAACCGATGACCGGCGCCCGCTTCCGCGGGATGACGGCGGCACCGGCCGACCCCCAGGACGTCGGGCCGGGCGTCCTGGGCATCGGGGCCGACCACGGCGCGGCCGGACCCTTCACCGGGTCGCAGGACGCCGCGGCCCAGCTCGGGATGCCGGAGGACGTCCGCGTCTTCGCCCTCGGCCGGGTCGACGGGATGTTCGACCGGCGTGGCGGCCGGCCCGCCTCGCTCGACGACCGGGACGGCATCGCCCGGGCGTTCGTCGCCGGCCTGCCGGAGGGCGAGGAGCTCCGCCTGGTCCAGTGGGGCGTGGCGGTGGCCCGCAAGCTCGGTGGCCTCGTCCTGGCCGACGGCCGGCAGCTCCTGCGGCCGGACCCGGGCGGCTCGGTGGACCTGCGGCTGTTCTCGGCGCACCCGATCGCCTCGGCCGACCTGCTCGCCCTGCTGCGGTCCGTGGTGGCGACGGCGGAGCTCGACGCGGAGTCGGTGGGTCCTGACGGCTCGGCCACCTTCCGGCTGGTGGCGCGGACGCCGTACGACGGCACCCTGACCCTGGACGCCCAGCGCGTGGACCGCGTGCCGCGGGCGCTGGTCGACATCGACCCCGCCGAGTACGGGCCGTTCGCGGTGACGGTCCGCTGGGTCCCCCAGGACCCCTACGAGCTCCGGCTCGAGCAGCCCTCCGGGCTCCACGTCATCGCGCGGACGCGCATGCGGGCGATGGCCGCCCGGCTGGCCCTGCTGACGCACGCCCGGACCGGGGGCGTGCTGGTCGACGACGGTGCGTTCGTCGCCACGACGGCCGAGATCGAGCGGCGCCTGGACGACCAGCAGTCCTCGACGCGGGCATGGGTCTGA	MSYVQALVPPEHASNHLLVLPGTTDVAVVRRLAEAWFADVRWLKEPAARSGASQPMTGARFRGMTAAPADPQDVGPGVLGIGADHGAAGPFTGSQDAAAQLGMPEDVRVFALGRVDGMFDRRGGRPASLDDRDGIARAFVAGLPEGEELRLVQWGVAVARKLGGLVLADGRQLLRPDPGGSVDLRLFSAHPIASADLLALLRSVVATAELDAESVGPDGSATFRLVARTPYDGTLTLDAQRVDRVPRALVDIDPAEYGPFAVTVRWVPQDPYELRLEQPSGLHVIARTRMRAMAARLALLTHARTGGVLVDDGAFVATTAEIERRLDDQQSSTRAWV				NA	NA	NA	NA	NA
AK001_02585	1047			hypothetical protein	ATGAGCAACCTGGAGCTGCGTCCCGCCGAACAGGTCTGCACCGTCGGCGACGCCCCTGCCGACGTCGAGATCCTCACCGCGCGCGAGGTCCCGCTGGGCGGCCCCCGGGCGATGACGGTCCGCCGGACCATCCCGCAGCGCCGCCGGTCCCTCATCGGCGCGTGGTGCTTCTGCGACCACTACGGGCCCGACGACGTCTCCGCCTCGGCCGGGATGCAGGTGCCGCCGCACCCCCACATCGGGCTGCAGACGGTGTCCTGGCTCTTCGCCGGCGAGATCATGCACCGCGACTCGGTGGGCTCCCAGCAGCTCGTGCGGCCCGGGGAGCTGAACCTCATGACCGCGGGGCACGGGATCTCCCACTCGGAGGAGTCCCCGGACTCGACCCCCGACCATCCGCGGCCGCCGACGCTGCACGGCGTGCAGCTGTGGACGGTGCTGCCCTCGGGCGACGCCGCCACCGCGCCGCAGTTCGACCACCACGCCGACCTGCCCGTCGCCGACGTCGACGGCGCGCGGGTGCGGGTGTTCCTCGGCGCGCTGCAGGTCGCCGGCCGCGAGCTGCGCTCGCCCGCCCGCGCCTACTCCCCGCTCGTGGGGGCCCAGCTCGACGTGCCGGCCGGCACGCGCCTGGAGCTGGACGTCGACGCCGCGTTCGAGCACGGCCTGCTCGTGGACGCCGGCGAGGCGACCTTCGAGGGCACTGAGGTGCCGCCCGCCGACCTCGCCTACGTCGCCCCCGGCCGCGACAGGCTCGTCGTGACCGCGGGGGCGACCCCGGTGCGCGCGGTCCTCCTCGGCGGCGAGCCCTTCACCGAGGACGTCGTCATGTGGTGGAACTTCGTCGGCCGCACCCACGAGGACGTCGCAGCGGCACGGGCCGACTGGACGGCTCAGCTCGCCGAGCACCCCGACGGCGTCACCGGCTACGTCGAGGGTGCGGCCGGACGCCGCTTCGGCCGGGTGGACGGGTACGACGGCGGACCGCTGCGCGCCCCCGCGCTGCCCGACGTGCGGCTCAAGCCCCGCCGGCAGCCGCCGCGCTGA	MSNLELRPAEQVCTVGDAPADVEILTAREVPLGGPRAMTVRRTIPQRRRSLIGAWCFCDHYGPDDVSASAGMQVPPHPHIGLQTVSWLFAGEIMHRDSVGSQQLVRPGELNLMTAGHGISHSEESPDSTPDHPRPPTLHGVQLWTVLPSGDAATAPQFDHHADLPVADVDGARVRVFLGALQVAGRELRSPARAYSPLVGAQLDVPAGTRLELDVDAAFEHGLLVDAGEATFEGTEVPPADLAYVAPGRDRLVVTAGATPVRAVLLGGEPFTEDVVMWWNFVGRTHEDVAAARADWTAQLAEHPDGVTGYVEGAAGRRFGRVDGYDGGPLRAPALPDVRLKPRRQPPR	PGPT0019980_138	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_FLAVONOID_UTILIZATION	PLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911	NA	NA
AK001_02587	663	dcd	COG0717	dCTP deaminase, dUMP-forming	GTGTCCCGAATCCGCTCCGGCACCGCGCGGCGGACCACGGCGCGGACCGCGCGGCGGGGCGCCGTCGGCCCGGCTACCGTGTGCAGCGTGCTGCTCTCCGACCGCGACATCCGGGCCGAGCTGGACGCCGGACGCGTCGCCCTGGACCCGTACGACCCGGCGATGGTCCAGCCGTCGAGCATCGACGTGCGCCTGGACCGGTTCTTCCGCCTGTTCGACAACCACCGGTACCCGTTCATCGACCCCTCGCAGGAGCAGCCGGAGCTGACCCGGCTGGTCGAGGTCGAGCCCGGCGAGCCGCTGGTGCTGCACCCGGGGGAGTTCGTCCTCGGGTCCACGTACGAGACGGTCACCCTGCCCGACGACGTCGCCGCCCGGCTGGAGGGCAAGTCGTCCCTCGGCCGGCTCGGCCTGCTGACGCACAGCACGGCCGGGTTCATCGACCCGGGCTTCTCGGGGCACGTCACCCTCGAGCTGAGCAACGTCGCCACCTTGCCGATCACGCTCTGGCCGGGCATGAAGATCGGCCAGCTCTGCTTCTTCCGGCTCTCCTCGCCGGCCGAGCACCCCTACGGCTCGGAGCGGTACGGCTCGCGCTACCAGGGCCAGCGCGGCCCGACGGCGAGCCGCTCCTGGCAGTCCTTCCACCGCACCGACGTATGA	MSRIRSGTARRTTARTARRGAVGPATVCSVLLSDRDIRAELDAGRVALDPYDPAMVQPSSIDVRLDRFFRLFDNHRYPFIDPSQEQPELTRLVEVEPGEPLVLHPGEFVLGSTYETVTLPDDVAARLEGKSSLGRLGLLTHSTAGFIDPGFSGHVTLELSNVATLPITLWPGMKIGQLCFFRLSSPAEHPYGSERYGSRYQGQRGPTASRSWQSFHRTDV	PGPT0021225_1610	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494	NA	NA
AK001_02588	1128			hypothetical protein	ATGGCCCAGACCTCGTCCCCGTCCCTGCCACCGCTCCCGCGCGCGTCCACGCAGGGGCACCAGGCGCGGCACCTGCTCGCCGTGCCGGACGACGTGACGGTCGACGAGGTGGAGGTGCTGGCCCTGTCGCGGTTCGGCGGCACCCGCTGGGACGTCGCCCCGTCGGACCTGCCGGGCGCCGACCTGCCCGCGGGCCGGATCGCCGGACCCGGTGAGCCCGGCGTGCTGCGCCTGACCCGGCACAGCCACGTGCACGGGCCCTACGCGCCGCGGGGCGACGGGTTCGAGCCCGGCCTGCCGGCGCGCACCGCCCTGGTCTTCGACGTCGTCTGCCCGCGCGAGCGCTGGGACGACCCGCCGTTCCCCGGTGGCGGCGACCGCGACGGCCTCGCCCGGGCGTTCCCGGCGGGGCTGCCGAACCGCGAGGAGGAACGCGTCGTGCAGTGGCTGATCGCCGCCGCCCGACGCCTCGGCGGCTCGGTGCGCCTGGACGTGGCGGGCCTGTGGGACCCGGCCGAGACCCAGCGGCGCGCCGCCGGCGCGGGTGTCGTGCTGACCCCGGACCCGGGGGCGTCGGTCGACCTGACGGTGTGGTCCGACGTCTGGCTCGACCCCCAGGCCGCCCACCGGGTGCTGCAGGAGGTCCACCCGCGCGTGGTCCTGGCCACCCAGGGCGCCGACTACCAGGGACCGCCGGAGGGCATCGCGGAGAAGCCGCTCTACCCGGGCGAGAAGCTCGACCCGGAGCTGCGGCGCGAGCTGCACGCCCGGGCCGACGACTTCGACATCGCCGCCCTGCAGGCGCCGGTCGTGCTGGACGGCTACGGGCTGACGATCGATCTGGGCCACGACGGCTGGGTGACCGTCGAGGTCATGGGCGACGAGGTGCTGCCCCTGCTCGTCAAGGAGCTGCCCTGGGCCGCGAGCGGGGCGATCTGCTACCGCGTCGTGTGGGACCCGCCGGACCAGTTCGAGGCGCAGATGGAGTTCCCCCAGCCCGGTCTGGTGGTGGCCCGCAAACGGGCGGCCGACCTGGTGGGGAAGGTCGCCGCCGCGATCCACGCCGCCGTCGGCGGCGAGATCGCCGACGAGTCGGAGTTCCTGCTGGCGCCGGAGGACCTGGCCTGA	MAQTSSPSLPPLPRASTQGHQARHLLAVPDDVTVDEVEVLALSRFGGTRWDVAPSDLPGADLPAGRIAGPGEPGVLRLTRHSHVHGPYAPRGDGFEPGLPARTALVFDVVCPRERWDDPPFPGGGDRDGLARAFPAGLPNREEERVVQWLIAAARRLGGSVRLDVAGLWDPAETQRRAAGAGVVLTPDPGASVDLTVWSDVWLDPQAAHRVLQEVHPRVVLATQGADYQGPPEGIAEKPLYPGEKLDPELRRELHARADDFDIAALQAPVVLDGYGLTIDLGHDGWVTVEVMGDEVLPLLVKELPWAASGAICYRVVWDPPDQFEAQMEFPQPGLVVARKRAADLVGKVAAAIHAAVGGEIADESEFLLAPEDLA				NA	NA	NA	NA	NA
AK001_02589	516	ogt		Methylated-DNA--protein-cysteine methyltransferase	ATGATCGCCGCGACCACCCTCGACACCCCGGACGGACCGTTCAGCCTCGTCGCCGACGACGGCGCCGTGCTCGCCTCGGGCTGGACCGCGGACGTCCCCGCCCTGGTCGGGCTCGTCCACCGGGACCTGCGCCCGGCGGCCGTGCCCGTCGTCGACACCGCCGACCCCGCCGTCGCCGCCCCGGCCGCGGCGGTCCGGGCGTACTACGCGGGCGACCTGGACGCCGTGGCCCGGGTCGACGTCGTCCAGCGCTCCGGCCCGTTCCGCGAGCACGCCTGGGACGTGCTGCGCGAGGTCGCACCCGGCGAGCCCGTCACCTACACCGAGTACGCCCGCCGTGCCGGGCGGCCCGCAGCGGTGCGCGCGGCGGCGGGGGCGTGCGCGCACAACGCCGCCGCACTGTTCGTGCCGTGCCACCGCGTGCTGCGCACCGACGGCACGCTCGGCGGGTTCCGGTACGGGACCGCGGTCAAGGAGTCGCTGCTGGCGCGCGAACGGGCCGAGGCGGCTGCCTGA	MIAATTLDTPDGPFSLVADDGAVLASGWTADVPALVGLVHRDLRPAAVPVVDTADPAVAAPAAAVRAYYAGDLDAVARVDVVQRSGPFREHAWDVLREVAPGEPVTYTEYARRAGRPAAVRAAAGACAHNAAALFVPCHRVLRTDGTLGGFRYGTAVKESLLARERAEAAA				NA	NA	NA	NA	NA
AK001_02590	1530	alkA	COG0122	putative bifunctional transcriptional activator/DNA repair enzyme AlkA	GTGCCCGCCACGACCGACACCCGCTGGACCGAGCGATACCGCGCCATCGCCGCGCGCGACGCCCGGTTCGACGGCCAGTTCGTCACCGCCGTGCGCAGCACCGGGATCTACTGCCGCCCGTCGTGCCCCGCCCGCACGCCCAAGCCGGAGAACGTGACGTTCTACCGGACCTCGGCGGCCGCGCACCACGCCGGCTACCGTGCCTGCAAGCGATGCCTGCCCGAGGCGAGCCCGGGCACCCCCGCCTGGGACCTGCGCGGCGACGCCACCGGCCGGGCCATGCGGCTCGTGGCCGACGGCGTGGTCGACCGCGAGGGCGTGGCCGGCCTGGCCGCCCGGCTCGGCTACAGCACGCGCCACCTGTACCGCCTGCTGCGTGCCGAGCTCGGCGCCGGACCGCTCACGCTCGCCCGCGCCCAGCGCGCACAGACGGCGCGCACGCTGCTGACGGGCACGGACCTGCCGGTCGCCGACGTCGCGTTCGCCGCGGGGTTCGGGAGCATCCGACAGCTCAACGACACCGTGCGCGACGTGTTCGCGACCACCCCGACGGCCCTGCGGAGCCGTCGCTCGGTGCGCCCCGGCACGGTGAGCGGCGCCGGCACCGAGGACGACCGCGTCCACCTCGACCTCTCGCTGCCCGTGCGGGAGCCCTTCGACGCGGCCGGGACGATCGCCTACCTCGCCGCGCGGGCGGTCGACGGGGTGGAGACCGCGACCGTGCAGGACGACGCAGCCCGCTACGCGCGCACCCTGCACCTGCCGCACGGGCCCGGCGCCATCGCCGTGACCGCCGGGCCCGCCGTCGGACCGGGACGCCTCGCCGCCCACCTCGAGCTGGCCTCCGTGCAGGACGTCGCCACGGCCGTGGCGCGGGTCCGGCGGCTGCTCGACCTGGACGCCGACCCCGTCGCCGTCGACACCGCGCTGGCCACCGACCCCGCGCTCGCCCCGTCCGTCACCGCGACCCCGGGCGTCCGGATGCCGGGGGCCGCGGACCCGCACGAGACCGTCGTCCGCGCCGTCGTCGGGCAGCAGATCTCGGTGGCCGCCGCGCGGACGCACCTGAACCGGCTCGCGGCGGCCGCCGGCACGCCCTACCGGTCGACGGTCGCCGGGCTCACCCGGCTGTTCCCCACCGCCGCGCAGGTCGCGGCCGACGACGGCGCCAGCCTGGCGCTCCCGGCCCGGCAGCGTCGCACCGTGGTCACCACCGCCGACGCGCTGGCCGACGGCACCCTGGCGGTCGACCTCGGCGCGGACGCCGACGAGCTGCGCGCCGCGCTCGAGGCGCGGCACGGCATCGGCCCGTGGACGTCGGGGTACGTGACGCTGCGCGTCCTGGGCCACCCCGACGTCTGGCTCGACGGGGACGCCGCCCTGCGGACCGGCGCCCGCCGGCTCGGACTTCCCGAGGACCGGGCCGCGCTCGCCGCCCGGGCCGACCGCTGGGCCCCCTGGCGCTCCTACGCCGCCCGGCACGTGTGGCGGGCCGCCGCCGCGCCCCTGGACGAAAGGACCACCGCATGA	MPATTDTRWTERYRAIAARDARFDGQFVTAVRSTGIYCRPSCPARTPKPENVTFYRTSAAAHHAGYRACKRCLPEASPGTPAWDLRGDATGRAMRLVADGVVDREGVAGLAARLGYSTRHLYRLLRAELGAGPLTLARAQRAQTARTLLTGTDLPVADVAFAAGFGSIRQLNDTVRDVFATTPTALRSRRSVRPGTVSGAGTEDDRVHLDLSLPVREPFDAAGTIAYLAARAVDGVETATVQDDAARYARTLHLPHGPGAIAVTAGPAVGPGRLAAHLELASVQDVATAVARVRRLLDLDADPVAVDTALATDPALAPSVTATPGVRMPGAADPHETVVRAVVGQQISVAAARTHLNRLAAAAGTPYRSTVAGLTRLFPTAAQVAADDGASLALPARQRRTVVTTADALADGTLAVDLGADADELRAALEARHGIGPWTSGYVTLRVLGHPDVWLDGDAALRTGARRLGLPEDRAALAARADRWAPWRSYAARHVWRAAAAPLDERTTA				NA	NA	NA	NA	NA
AK001_02591	945		COG2267	Monoacylglycerol lipase	ATGACAGCGACCGACTGGCACCCCGACCTGCTCGGCGAGGGCTTCGAGACCCGGACCCTGGACCTGCCGGAGGGCGCGAGCGCCACCCTGGTCCGCCACGTGCCGTCGGTCGCGCCGCACGGCGACCCGGCCCGGGTGGCCGTGCTGTCCGTGCACGGCCTGGCGGACTACTACTTCCACCCCCACGTCGCCCGCGCCCTGGCCGACGCCGGGTACGCGTCCTACGCCGTCGACCTGCGCGGCCACGGCCGCTCGTGGGAGGCGTACGAGACGGCCGGCGGCGACCCGAACCAGGTCCCCGACCTGGCGCTGCACGCCCAGGACCTGGACGCTGCCGCGGACGCGGTGCGGGCCGCCGGTCACGAGCGGCTCGTGGTGCTCGCCCACTCCACCGGCGGGCTCGTCGTCCCGCTGTGGGCGGACGCCCGCCCGGGCCGCGCGGACGCGCTGGTGCTGAACAGCCCGTGGTTCGAGCACAACGCGCCCCGCCCGCTCCGGTGGGCGGGGGTGGCGCTCGCCGAGGCCGTCGCCCCGCTGGCGCCGCGCGCCGTCCTCAGCCACCTCGACGACGCCTATGCCCGGGCGCTGCACCGCGCGCACGGCGGCGAGTGGGACTTCGACCCGACCTGGAAACCGCACGAGCCGTTCCCGGTGCGCGCGGCCTGGTTCCGCTCGGTCCGCCGGTCCCAGCGGCGGCTGGCCCGCGGCCTCGACCTCGAGATCCCCGTGCTGGTGCTGACCTCGGACCGGTCCACGCACGCCGAGCACCTGACCAGCGACTCGGTGCTCGACGTCGCGCACATGCGCGCGCTCGCCCCGCGGCTCGGCGACGACGTCAGCCTCGCCACGATCCGCGGCGGCACGCACGACCTGGCGCTGTCGCCGTCGCCCGCGCGCGAGGAGTACCTGCAGGTCGTGACGGACTGGATCGCCGCCGCCATCTGA	MTATDWHPDLLGEGFETRTLDLPEGASATLVRHVPSVAPHGDPARVAVLSVHGLADYYFHPHVARALADAGYASYAVDLRGHGRSWEAYETAGGDPNQVPDLALHAQDLDAAADAVRAAGHERLVVLAHSTGGLVVPLWADARPGRADALVLNSPWFEHNAPRPLRWAGVALAEAVAPLAPRAVLSHLDDAYARALHRAHGGEWDFDPTWKPHEPFPVRAAWFRSVRRSQRRLARGLDLEIPVLVLTSDRSTHAEHLTSDSVLDVAHMRALAPRLGDDVSLATIRGGTHDLALSPSPAREEYLQVVTDWIAAAI				NA	NA	NA	NA	NA
AK001_02592	1086			hypothetical protein	ATGTCTGCCACTCTCGCCCCACCGCAGTCCGCTCCCGACCGCCGTCGGCCCCGGCCGCGGGTCCGACGGGCGGCGACGGCCGCGCTCGCCGCCGTCGGCCTCCTCGCGCTCTCCGGGTGCATGAAGGTCGACTGGGACATGACCCTCAGCGAGGACGACACGGCCTCCGGCACCGTGATCATGGGGATCTCCGACGAGTTCGCCGAGTCCCTGGGGATGGACCCGCAGGAGCTGTGGGACATGTCGAACGAGGGCGAGGACTCCCTCACCGAGGACCTGCCGGAGGGCTCGACGGAGCAGCCCTGGTCCGACGGCGAGTACACGGGCGTCGAGGTCGGCTTCGTCGACCAGCCGATCTCGGAGATGAGCGGCGAGGGCAGCGACGACCTGTCCATCACCCGTGACGGCGACGAGTACGTCGTCGACGGCGTCTTCGACCTGAGCCAGGACGCCCAGGACATGGAGGACATGGGCGGCGAGCTCCCCGAGGGCCTGCTCGACAGCTTCGACATGCGCATCGCCGTGACGTTCCCCGGCGCGATCAGCGAGACCACGGGCGAGGTGGACGGCAACACCGTCGTGTGGACGCCGTCCGTCGGGGAGGTCACCGAGGTGTACGCCCGCGGCTCGGCCGTCTCCGGCGGGGCCGCCGCGCCGGAGGACGAGGCCACGACCTCCGAGGAGGAGGCGACCGACGAGCCGACCGCGGAGGCCACCGACGAGGAGTCCGCGGCCTCCGACGACATGGCCGACACCGCGGCCGAGGACGACGCCGGCGGCTTCCCCTGGTGGATCGTGGGCCTCGTGCTCGGGCTGGCCGTCCTCGGTGTCGTCGTCGCGCTCGTCGTGCGCAACAACCGCACCCCCGGCCCGCCCGGGGCCGGCGCCCCCGGCAGCGGCCCCGCGCCCTCCGGCGGCGGCGCCGTGCCCCCGAGCTACGCCCAGCCGCAGCAGCAGGCCCCGCCCGTCGTGCCGCCCCAGCAGCCGCCGTACCAGGAGCCGTACGGGCAGCCGCCCGCCGGCCCGCCGCAGCAGCAGCAGCCGCCCCAGGACCCGGACGGCACCCCGCCGGCGCCGCCGCGCTGA	MSATLAPPQSAPDRRRPRPRVRRAATAALAAVGLLALSGCMKVDWDMTLSEDDTASGTVIMGISDEFAESLGMDPQELWDMSNEGEDSLTEDLPEGSTEQPWSDGEYTGVEVGFVDQPISEMSGEGSDDLSITRDGDEYVVDGVFDLSQDAQDMEDMGGELPEGLLDSFDMRIAVTFPGAISETTGEVDGNTVVWTPSVGEVTEVYARGSAVSGGAAAPEDEATTSEEEATDEPTAEATDEESAASDDMADTAAEDDAGGFPWWIVGLVLGLAVLGVVVALVVRNNRTPGPPGAGAPGSGPAPSGGGAVPPSYAQPQQQAPPVVPPQQPPYQEPYGQPPAGPPQQQQPPQDPDGTPPAPPR				NA	NA	NA	NA	NA
AK001_02593	2610	clpB	COG0542	Chaperone protein ClpB	ATGGACACCAAGTTCACGACGATGTCGCAGCAGGCCATCGGTGACGCCGTGCAGTCGGCGTCCGCCGCCGGCAACCCCCAGCTCGAGCCCGCCCACCTGCTGTCCGCGCTGCTGCAGCAGACCGGTGGTGTCGCCGTCGGGCTGCTCGAGGCCGTCGGGGCCGGCCCCCAGCAGGTCGGGCAGAAGACCCGTGCCGCGCTCGTCGCGCTGCCGACCGTGAGCGGCGAGGGCGTCGCCCAGCCGTCGCCGTCGCGCGCCATGCAGAGCGTGCTGACCACCGCCACCCAGGAGGCCGAGGCGCTCGGTGACGAGTACGTCTCCACCGAGCACCTGCTCATCGCCGTGGCCGCCGGCCAGTCCGCCGCCGCCCAGGCGCTGAACGCCGCCGGAGCCACCGCCGACGCGCTGCGCGCCGCGCTGCCCGCCGTCCGCGGCGACGGCCGGGTCACCAGCCCGAACCCCGAGGGCACCTACAAGGCCCTGGAGCAGTACGGCAGCGACCTCACCCAGCGGGCCCGGGACGGCCGGCTCGACCCCGTCATCGGCCGCGACGCCGAGATCCGCCGCGTCGTGCAGGTGCTGTCGCGCCGCACCAAGAACAACCCCGTGCTCATCGGCGACCCCGGCGTCGGCAAGACCGCCGTCGTGGAGGGCCTCGCCCAGCGCATCGTGGCCGGGGACGTGCCCACCTCGCTGCAGGGCAAGCGGCTCGTCGCCCTCGACCTCGCCGGCATTGTCGCCGGTGCCAAGTACCGCGGCGAGTTCGAGGAGCGGCTCAAGGCCGTCCTGGAGGAGATCACCGCCTCCGACGGCGAGGTCATCACCTTCATCGACGAGCTGCACACCGTCGTGGGTGCGGGCGCCGGCTCCGAAGGAGCCATGGACGCGGGCAACATGCTCAAGCCCATGCTCGCGCGTGGCGAGCTGCGCATGGTCGGCGCCACCACCCTCGACGAGTTCCGCGAGAACATCGAGAAGGACCCGGCCCTGGAGCGCCGCTTCCAGCAGGTGTTCGTCGGCGAGCCGTCGGTGGAGGACACCGTCGCGATCCTGCGCGGGCTCAAGGAGCGCTACGAGGCCCACCACAAGGTCACCATCGCCGACTCCGCGCTGGTGGCCGCCGCCGCGCTGTCCGACCGGTACATCACCGGCCGCCAGCTGCCCGACAAGGCCATCGACCTCGTCGACGAGGCCGCCTCCCGGCTGCGCATGGAGATGGACTCCTCGCCCGTGGAGATCGACGAGCTCCAGCGCGCCGTGACCCGGCTGGAGATGGAGGAGGTCGTCCTCAAGGACGCCGAGGGCTCGGCCGACGCGGCCGCGCGCGAGCGGCTCGAGAAGCTGCGCGCCGACCTGGCCGACCGGCGCGAGGAGCTCGCCGCGCTCACCGCCCGCTGGGAGGCGGAGAAGGCCGGCCACAACCGCGTCGGCGACCTGCGCGCCCGCATCGACGAGCTGCGCACCGAGGCCGACCGGCTGCAGCGCGAGGGCGACCTCGAGGCCGCCGCCCGGCTGCTGTACGGGGAGATCCCGTCCGTCGAGCGCGAGCTCGCCGAGGCCGAGCAGGCCGAGGCCTCCGAGGCGGCGGCCGAGGAGGCCGCCCAGGAGACGCCGATGATCGCCGACAAGGTCGGGGCGGACGAGGTCGCCGAGGTCGTCTCGGCCTGGACCGGCATCCCCGCCGGCCGGATGCTGCAGGGCGAGACCGAGAAGCTGCTGCACATGGAGGACGTCCTCGGCGAACGGCTCATCGGCCAGCAGGCCGCCGTCCGCTCCGTCTCGGACGCCGTGCGGCGCTCGCGGGCCGGGGTCGCCGACCCCGATCGGCCGACCGGGTCGTTCCTGTTCCTCGGACCGACGGGTGTGGGCAAGACCGAGCTCGCCAAGTCCCTGGCGGACTTCCTCTTCGACGACGAGCGCGCCATGGTGCGCATCGACATGTCGGAGTACTCCGAGAAGCACTCGGTGGCGCGACTGGTCGGGGCCCCTCCGGGGTACGTCGGCTACGAGGAGGGCGGTCAGCTCACCGAGGCGGTCCGCCGTCGGCCCTACTCCGTGGTCCTGCTGGACGAGGTGGAGAAGGCCCACCCCGAGGTGTTCGACATCCTGCTGCAGGTCCTCGACGACGGTCGGCTCACGGACGGCCAGGGCCGCACCGTGGACTTCCGCAACACCATCCTGGTCCTCACCTCGAACCTGGGCTCGCAGTTCCTCGTGGACCCGACGCTGGACGAGGCGGCCAAGCGCGAGAGCGTGATGACCGCGGTGCGTGCGGCCTTCAAGCCGGAGTTCCTCAACCGGCTCGACGACGTCGTGCTGTTCGACGCGCTCTCCCTCGGCGAGCTGGGCCGGATCGTCGAGCTGCAGGTCACGGCGCTGGCGGACCGTCTCGCCGACCGTCGGATCACGCTCGACGTCACGCCGACGGCCCGCGAGTGGCTGGCGCTGGAGGGCTACGACCCGGCGTACGGGGCGCGGCCGCTGCGCCGGCTGGTGCAGCGCGAGATCGGTGACCGGCTGGCGCGCCGGCTGCTGGCCGGCGAGGTGTCCGACGGCGACACCGTCGTCGTCGACCGGGCCGAGGCTGACGAGGGCCTGACCCTGCGCTGA	MDTKFTTMSQQAIGDAVQSASAAGNPQLEPAHLLSALLQQTGGVAVGLLEAVGAGPQQVGQKTRAALVALPTVSGEGVAQPSPSRAMQSVLTTATQEAEALGDEYVSTEHLLIAVAAGQSAAAQALNAAGATADALRAALPAVRGDGRVTSPNPEGTYKALEQYGSDLTQRARDGRLDPVIGRDAEIRRVVQVLSRRTKNNPVLIGDPGVGKTAVVEGLAQRIVAGDVPTSLQGKRLVALDLAGIVAGAKYRGEFEERLKAVLEEITASDGEVITFIDELHTVVGAGAGSEGAMDAGNMLKPMLARGELRMVGATTLDEFRENIEKDPALERRFQQVFVGEPSVEDTVAILRGLKERYEAHHKVTIADSALVAAAALSDRYITGRQLPDKAIDLVDEAASRLRMEMDSSPVEIDELQRAVTRLEMEEVVLKDAEGSADAAARERLEKLRADLADRREELAALTARWEAEKAGHNRVGDLRARIDELRTEADRLQREGDLEAAARLLYGEIPSVERELAEAEQAEASEAAAEEAAQETPMIADKVGADEVAEVVSAWTGIPAGRMLQGETEKLLHMEDVLGERLIGQQAAVRSVSDAVRRSRAGVADPDRPTGSFLFLGPTGVGKTELAKSLADFLFDDERAMVRIDMSEYSEKHSVARLVGAPPGYVGYEEGGQLTEAVRRRPYSVVLLDEVEKAHPEVFDILLQVLDDGRLTDGQGRTVDFRNTILVLTSNLGSQFLVDPTLDEAAKRESVMTAVRAAFKPEFLNRLDDVVLFDALSLGELGRIVELQVTALADRLADRRITLDVTPTAREWLALEGYDPAYGARPLRRLVQREIGDRLARRLLAGEVSDGDTVVVDRAEADEGLTLR	PGPT0014580_1036	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695	NA	NA
AK001_02594	1188			hypothetical protein	ATGTCCACCACCTCCCTGGATGCTGCGCGCCCGCGGGGCGCGGTGCGCCCGCCGCGGACACGGCACGCTGCCGTCGCCATGACCCTCACGGCCGCCCTCGCCGGCGGCACGCTCGTGGCCGGCGCCCAGTCCGCCGTCGCCGACGAGGCGACGACCACGTCCGACGAGTCGACCGCCACCGAGACGGCCACCCCCGAGCCCACCGCCACCGAGGAGCCCGTCGTCGTGAGCACGACGCCGGACGTCTCGATGTCGAAGTCGCGCCACACCGGCCGCAAGGGCCAGGGGCACACCCGTCCGAAGTACACCGTGAGCGCCACGACGGCCGACGGCGAGGCGTTCGCCGGCCGTGTCCGGCTCTACATCAAGGGCACGAAGGTCGCCGTCAAGCAGCTCGACGCCGACGGGACCATCCACTTCCGCCCCGGCCTCGGCAAGTACGACGTCGGCCGCAACGGCGTCCGCGCCGTCGTCGCCCCGGCCGCGGCCACGGGCCTCGACCAGGTGACCAAGAACCGCACGGTGCGCATCAAGCCGAAGGCGAGCACGAACCTCTACGTGTCGAAGGACCGCCACAAGGCCACCAAGGGCAAGGGGCACACCCGCCCGAGGTACACGGTGAAGGTGCGCAAGTGGGGCGAGCCGGTCACGGGCCGCGTGCGCCTGTTCATCTCGGGCGACAAGGTCGCCGTGAAGAAGATCAACAAGAACGGCATCGTCCGGTTCCGTCCCAGCCTGGGCAAGTACGACCTGGGCAAGAACCGGATCCGCGTCACCGCCGTCCCGGCCCGGAGCGAGGGCCTGAAGAAGGCCAAGAAGCACCGTGTCGTCCGCGTGGCCCCGAAAGTGACCCGCGGCGACAAGGTCGTCCGCGTGGCGAACAACTACGTCGGCCACCGCTACTCCTACGGCGGCACCTCGCCGGCCACCGGGTTCGACTGCTCGGGCTTCACCTCGTACGTCTACAAGAAGGCGACCGGCAAGACCCTGCCGCGCTCGTCGTCGGCGCAGGCCTCCGCGGGCAAGCGCATCTCGCGGAGCAACGCCAAGAAGGGTGACCTCGTCTACTCGCCGGGGCACATCGGGATCTACGCCGGCAACGGCCGGATCATCGAGGCGGCGCGTCCGGGCGTCGGCGTCGTGAAGCGCACGATCTGGCAGTCCAACCCCCAGTTCATCCGCATCTGA	MSTTSLDAARPRGAVRPPRTRHAAVAMTLTAALAGGTLVAGAQSAVADEATTTSDESTATETATPEPTATEEPVVVSTTPDVSMSKSRHTGRKGQGHTRPKYTVSATTADGEAFAGRVRLYIKGTKVAVKQLDADGTIHFRPGLGKYDVGRNGVRAVVAPAAATGLDQVTKNRTVRIKPKASTNLYVSKDRHKATKGKGHTRPRYTVKVRKWGEPVTGRVRLFISGDKVAVKKINKNGIVRFRPSLGKYDLGKNRIRVTAVPARSEGLKKAKKHRVVRVAPKVTRGDKVVRVANNYVGHRYSYGGTSPATGFDCSGFTSYVYKKATGKTLPRSSSAQASAGKRISRSNAKKGDLVYSPGHIGIYAGNGRIIEAARPGVGVVKRTIWQSNPQFIRI				NA	NA	NA	NA	NA
AK001_02596	729			hypothetical protein	ATGACCGAGCGACCCGAGGACGACCTCTCCTTCGCCTCGCCCGGTCCGGTGACGCCCGCGGCCGGGCCGGACGGGACGCCGCCGGTCGCCGGGACTCCGCCGGCCGCCGGGACGCCGGGCGCGACCGCCGCCGGCCCCACGGGGGCATCGGTTCCCGCCCCGCCGGGCCGGTCGGGCGACGGCACCCGCTGGGGAGCCCCGGGCGGGCCGACACCGGCCGAACGTGCCGCGGCACGCCGCACCGCGCGGATCTGGGTGCTGTCGGTGCTCGGGCTGATCGTGCTCGTCGTGGCCGGGGCGACCGGGATCTCCGCCCTGACCTCCAGCGCGCGCGAGCAGGCGTGGGAGCCGGTCGCCGCGGACGTCACCGCCCCCACGACGGTCAACGCCGTCCAGCTCGTCCTGGGCTCGTGCTTGTCGGGCGCGTCGACGGAGGGCGGCGTCGGCGAGGTGGAGGTCGTGCCCTGCGCGGACCCGCACGTCGCCGAGGTGGTGGGGCGCACCGACGCCGCGAGCGACGCGATCTGGCCGGGCGAGGACGTGGTGGCCGCCCGTACGGCGCGCGGGTGCACCGCCGGCCTGCTCGGGCCGCAGGCCCGGGCCGAGGCGGAACGGTCGGTCACGTTCGTGGTGTGGACCCCGACGGAGGACGCGTGGGAGGCCGGGGACCGGACCGGGCTGTGCGTCGCCGTGCTGGACGACGAGCGCACCGGGTCGCTGCTGGACTGA	MTERPEDDLSFASPGPVTPAAGPDGTPPVAGTPPAAGTPGATAAGPTGASVPAPPGRSGDGTRWGAPGGPTPAERAAARRTARIWVLSVLGLIVLVVAGATGISALTSSAREQAWEPVAADVTAPTTVNAVQLVLGSCLSGASTEGGVGEVEVVPCADPHVAEVVGRTDAASDAIWPGEDVVAARTARGCTAGLLGPQARAEAERSVTFVVWTPTEDAWEAGDRTGLCVAVLDDERTGSLLD				NA	NA	NA	NA	NA
AK001_02597	711	queE		7-carboxy-7-deazaguanine synthase	ATGTCGCCTGACGCGCCGACCCGCGCCCCGCTGCGGCTGGCCGGCTTCGTGCCGTTCTCCACCGTGGACCGGCCGGGGCACCTCGTCGCGACCGCCTTCACCCAGGGGTGCCCCTGGCGCTGCACCTACTGCCACAACCCGGCCCTCATCGACCCCCGCCGTCGTCCCGGCGCGACCTGGTCGGAGCTCCTCGACCTGCTGGAGCGGCGACGCCGGATGCTCGACGGTCTGGTGATCTCCGGCGGCGAGCCGACGCTGCACCCGGGCCTGGCGGACGCCTGCCGGGACGTCCGCGACCTGGGGCTCGAGGTGGGGCTGCACTCCGGCGGCGCGTGGCCCGCCCGTCTGGCGCACGTGCTGCCGCTCGTCGACTGGGTCGGGCTCGACGTCAAGGCGCTCCCGGACCGCTACGAGGAGGTCACCGGCGCGGCCCCGTCCGGCCGGGCCGCGTGGGAGTCGGTCCGGCTGCTGGTCGAGTCCGGGGTCGACCACGAGGTGCGCACCACCGTCGACCCGACGCTGCACACCCGCGACGAGGTCCTCGCGATCGGTGCCCGCCTCACCGCGATCGGCGTCCGTCGCTGGGTCGTGCAGGAGGCGCGGCCCGACGGCGCCCGCGCCGGCTGGGTGCGCCGGCTCGACCGGCGGCGGCTCAGCGACGTCCTGCACGACGACGACCTGCCCGACGTCGAGCGGCGTGTGGGCGTCTGA	MSPDAPTRAPLRLAGFVPFSTVDRPGHLVATAFTQGCPWRCTYCHNPALIDPRRRPGATWSELLDLLERRRRMLDGLVISGGEPTLHPGLADACRDVRDLGLEVGLHSGGAWPARLAHVLPLVDWVGLDVKALPDRYEEVTGAAPSGRAAWESVRLLVESGVDHEVRTTVDPTLHTRDEVLAIGARLTAIGVRRWVVQEARPDGARAGWVRRLDRRRLSDVLHDDDLPDVERRVGV				NA	NA	NA	NA	NA
AK001_02598	1800			hypothetical protein	ATGGGTACGCAGATCGATGCCTCAGCCGCCGTCAGCGAGTACGTGGCCCGGGCCGACTGGCGGGTGCGCGCCAACGCCAACCAGGGCTACTCGCTGGGCGGGCTCGTCCTCAACGTCGCCGGCAAGACGATCGCGAACTACTGGCTCGACGAGGTGTTCTCCCCCGGGCTCGCCGCCGCTCACCGCGACGGCGACCTGCACGTCCACGACCTCGACGTCCTCGGCGGCTACTGCGCCGGGTGGTCGCTGCGCCAGCTGCTGTCCGAGGGGTTCGGCGGCGTGCCCGGCGCGGTCTCCTCGCGCCCGCCGCGGCACCTGGGGTCCGCGCTGGGCCAGATCGTCAACTTCTTCGGCACGCTGCAGAACGAGTGGGCGGGCGCCCAGGCGTTCAGCTCCTTCGACACGCTGCTCGCGCCGTACGTGCACGTCGACCGCCTCAGCCAGGACGAGGTCACCCAGGCCCTGCAGGAGTTCGTGCACAACCTCAACGTGCCCTCCCGGTGGGGCACCCAGACGCCCTTCACCAACCTCACCTTCGACCTGACCTGCCCGGAGGACCTCGCAAAGGAGCACCCCGTCGTGGGCGAGGACGTCCTGGAGGTCACCTACGGGGACCTCCAGAAGGAGTCCGACATGATCAACCGGGCGTTCGTCGCGGTCATGTCCGCCGGCGACGCGGCCGGCCGGGTCTTCACGTTCCCCATCCCGACGTACAACATCACGCCCGACTTCGACTGGGACTCGGAGATCTCCGAGGAGATCTTCACCATGACGGCGCGGTACGGCACGCCGTACTTCCAGAACTTCGTCAGCTCCGACCTCAACCCGGGCGACGTGCGGTCGATGTGCTGCCGCCTCCAGCTCGACCTGCGCGAGCTGCTCGCCCGCGGCAACGGGCTGTTCGGGTCCGGCGAGCAGACCGGCTCGATCGGCGTGGTCACCGTCAACTGCGCCCGGCTCGGGCACGTCCACGGCCCGGACCGGGACGCGCTGTACGCCGCCCTGGACCGGCTGATCGACCTGGCGGCCGATGGTCTCGAGGCGCGGCGGGCGACGGTCCAGGAGCTCATGGACGCCGGGCTGTACCCGTGGACGCAGCGCTACCTCGGCACCCTCGACGCCCACTTCTCCACCATCGGTGTCAACGGCGTCAACGAGATGATCCGCAACGCCACGGGCGACACCCACGACATCACCACCCCGACCGGGCACGCCATGGCCCTGGAGCTGCTCGACCACGTGCGCGGCCGGCTCGTGGAGATCCAGGAGCGCACCGGGCACCTGTACAACCTGGAGGCGACCCCGGCCGAGGGCACCACCTACCGGTTCGCCCGGGAGGACCGTTCCCGGTTCCCCGGCATCCTGCAGGCGGGCAGCGACGAACAGCCCTACTACACCAACTCCACCCAGCTCCCGGTGGGGTTCACCGACGACCCGTTCGAGGCGCTGGCCCGCCAGGACGAGCTGCAGCGGCGCTACACCGGCGGAACGGTGCTGCACCTGTACCTCGGCGAGCAGGTCTCCAGCGCCGAGTCCTGCCGCCGGCTGGTGCGGCGGGCCCTGGAGAACCACCGGCTGCCCTACCTGACGGTCACGCCGACGTTCTCGATCTGCGCCACGCACGGCTACCTGGCCGGCGACGTGCGCGAGTGCCCCACCTGTTCCGCACCCACCGAGGTCTGGACCCGCGTGATGGGCTACTTCCGTCCCGTGGCCTCGTTCAACACCGGCAAGCAGGGCGAGTACGCCGAGCGCGTGACCTTCCGGGAGCCGACGGCGGTGGGTGTCGATGTCGCCTGA	MGTQIDASAAVSEYVARADWRVRANANQGYSLGGLVLNVAGKTIANYWLDEVFSPGLAAAHRDGDLHVHDLDVLGGYCAGWSLRQLLSEGFGGVPGAVSSRPPRHLGSALGQIVNFFGTLQNEWAGAQAFSSFDTLLAPYVHVDRLSQDEVTQALQEFVHNLNVPSRWGTQTPFTNLTFDLTCPEDLAKEHPVVGEDVLEVTYGDLQKESDMINRAFVAVMSAGDAAGRVFTFPIPTYNITPDFDWDSEISEEIFTMTARYGTPYFQNFVSSDLNPGDVRSMCCRLQLDLRELLARGNGLFGSGEQTGSIGVVTVNCARLGHVHGPDRDALYAALDRLIDLAADGLEARRATVQELMDAGLYPWTQRYLGTLDAHFSTIGVNGVNEMIRNATGDTHDITTPTGHAMALELLDHVRGRLVEIQERTGHLYNLEATPAEGTTYRFAREDRSRFPGILQAGSDEQPYYTNSTQLPVGFTDDPFEALARQDELQRRYTGGTVLHLYLGEQVSSAESCRRLVRRALENHRLPYLTVTPTFSICATHGYLAGDVRECPTCSAPTEVWTRVMGYFRPVASFNTGKQGEYAERVTFREPTAVGVDVA	PGPT0021330_2193	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0021330-nrdD-K21636	NA	NA
AK001_02599	798	exoA	COG0708	Exodeoxyribonuclease	GTGCGTATCGCCACGTGGAACGTCAACTCGATCCGTACCCGGCTGGACCGCGTGCTGGCCTTCCTGGAGCGGTCGGGCACGGACGTGCTGGCGGTCCAGGAGACCAAGTGCCGCGACGACCAGTTCCCGCACCTGCCCTTCGAGGAGGCCGGGTACGAGGTCGCCCACACCGGGTACCACCAGTGGAACGGTGTCGCGATCGTCTCGCGCGTGGGCCTGGACGACGTCGTGACGTCGTTCCCGCGCCAGCCGTCGTTCGCCAAGCCCGACCAGGAGCCGCGCGTCGAGGCCCGCGCCCTGGGGGCGACGTGCGGGGGCGTGCGGGTCTGGTCGCTGTACGTCCCGCACGGCCGGACGCTGGAGGACCCGCACTACGCCTACAAGCTGGCGTGGCTGGAGGGCCTGCGCGCCGACGCCGCGCAGTGGCTGACGGCGGACCCGGCGGTCGAGCTCGCCCTGCTGGGCGACTGGAACGTGATCCCCCGCGACACCGACGTGTGGGACGTGACCGCGTTCGCGGGCAGGACCCACGTGTCCGCGCCGGAGCGGGAGGCGTTCGCGGCGTTCGAGCGGGCGGGCTTCACCGAGGTCACCCGCGAGCACGTGCCCGCACCCGGCACGTACACCTACTGGGACTACCAGCAGCTCGCCTTCCCGCGGGACAAGGGTCTGCGCATCGACTTCGCGTACGCCTCCCCCGCGCTGCGCGACCGGGCCACGGGCGTCTCGATCGACCGGGACGAGCGCCGCGGCAAGGGCGCGAGCGACCACGTCCCGGTGGTCCTCGACCTGGCCTGA	MRIATWNVNSIRTRLDRVLAFLERSGTDVLAVQETKCRDDQFPHLPFEEAGYEVAHTGYHQWNGVAIVSRVGLDDVVTSFPRQPSFAKPDQEPRVEARALGATCGGVRVWSLYVPHGRTLEDPHYAYKLAWLEGLRADAAQWLTADPAVELALLGDWNVIPRDTDVWDVTAFAGRTHVSAPEREAFAAFERAGFTEVTREHVPAPGTYTYWDYQQLAFPRDKGLRIDFAYASPALRDRATGVSIDRDERRGKGASDHVPVVLDLA				NA	NA	NA	NA	NA
AK001_02600	774	gno_2		Gluconate 5-dehydrogenase	ATGGGTACTGCGCTCGTCACCGGCGCGACCGCCGGTCTGGGACTGGAGCTCGCCTGGCAGCTCGCCACCGCTCGTCACGACCTCGTGCTCGTGGCCCGGGACGGCGACCGGCTCGACCAGGTCGCCGGACAGGTCCGCGCCGCCGCCGGCGTCCGCGTCGAGGTGATCGCCGCCGACCTGTCGCGGCACGAGGACGTCGCGCGCGTCGCCGAACGGCTGTCCGTGACCGGCGCCGAGGACGGCGACGACCGTCGCCCGGTCGGGCTGCTCGTCAACAACGCCGGCTTCGCCCCGGCCCAGCACTTCGTCGGCGGGGACCTGGAGGTCGAGACCGCCGCCGTCGACGTCATGGTGCGCGCCGTCATGATGCTCTCGCACGCCGCCGCGGAGCAGATGGTCTCCCGCGGGCGCGGTGCCGTGCTCAACGTCTCCTCCGTGGCGGCGCTGACCGCCGGGGGCAGCTACGCGGCCGCCAAGGCCTACGTCCGCACCTTCACCGAGGGGCTCGCGGTGGAGCTGGCGGGCACCGGCGTCACGGCCACGGTGCTGTGCCCGGGCTTCACCCGGACCGAGTTCCACGACCGGGCCGGGCTGGACACCGACGTCCTGCCCGACGGCGCGTGGCTGCACGCGCCCGAGGTGGCGGCCCACGCGCTCGCGGACGTGCGCCGCGGCGTCGTCATCTCCACGCCGTCGGTCCGCTACAAGGCGGCCTCCGCGGTGCTGCGGGCCATGCCGCGCTGGGCGGTGCGCGCCGTCGGGCACTACCGCTGA	MGTALVTGATAGLGLELAWQLATARHDLVLVARDGDRLDQVAGQVRAAAGVRVEVIAADLSRHEDVARVAERLSVTGAEDGDDRRPVGLLVNNAGFAPAQHFVGGDLEVETAAVDVMVRAVMMLSHAAAEQMVSRGRGAVLNVSSVAALTAGGSYAAAKAYVRTFTEGLAVELAGTGVTATVLCPGFTRTEFHDRAGLDTDVLPDGAWLHAPEVAAHALADVRRGVVISTPSVRYKAASAVLRAMPRWAVRAVGHYR	PGPT0030485_3473	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-OXIDOREDUCTASE_ACTIVITY	PUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK001_02601	579	pyrE	COG0461	Orotate phosphoribosyltransferase	GTGACTTCCGCCGACTTCTCCCCGACCCCTCGCGAGCAGCTGCTCGAGCTCGTCAAGGAGCTCGCCGTCGTGCACGGCAGGGTGACGCTCTCCTCCGGCAAGGAGGCCGACTACTACGTCGACCTGCGCCGCATCACGCTGCACCACCGCGCCGCGCCGCTGGTCGGGCACGTGCTGCTGGACCACCTGGAGGAGGTCGGGCTCGGCACGGCCGAGGTCGACGCCGTCGGCGGGCTCACGCTCGGTGCGGACCCCATCGCCGACGCCCTGCTGCACGCCGCGGCGTCCCGCGGGCAGGACCTGGACGCCTTCGTGGTGCGCAAGTCCGCCAAGACGCACGGGATGCAGCGCCAGATCGAGGGGCCGGACGTCACCGGCCGCAAGGTCGTCGTGCTGGAGGACACCACCACGACGGGCGGGTCGCCGATCACCGCCATCGAGGCGCTGCGCGAGGCCGGCGCCGAGGTGCTCGGCTGCGCGACGATCGTCGACCGGGCGACCGGCGCGGGCGAGAGGATCGAGGCGCTCGGCGTGCCGTACCACTACCTCTTCGACCTGGACGACCTCGGCCTCGCCTGA	MTSADFSPTPREQLLELVKELAVVHGRVTLSSGKEADYYVDLRRITLHHRAAPLVGHVLLDHLEEVGLGTAEVDAVGGLTLGADPIADALLHAAASRGQDLDAFVVRKSAKTHGMQRQIEGPDVTGRKVVVLEDTTTTGGSPITAIEALREAGAEVLGCATIVDRATGAGERIEALGVPYHYLFDLDDLGLA	PGPT0021200_4084	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762	NA	NA
AK001_02602	777	hdpA		Dihydroxyacetone phosphatase	ATGACCGAGCGGACGATCGAGTGCTGGCTGACCGACATGGACGGCGTGCTCGTGCACGAGGGGCAGGCCATCGACGGCGCGGCGGAGTTCGTCGACGCCCTGCGGTCGAAGGACCGTCCCTTCCTGGTGCTGACCAACAACTCGATCTTCACGGCGCGCGACCTGGCCGCGCGCCTGGCGCACTCGGGCGTCGACGTGCCCGAGGAGTCGATCTGGACCTCCGCGCTCGCCACCGCCACGTTCCTGGCCGAGCAGGTGCCGGGCGGGTCGGCGTACGTGATCGGCGAGGCGGGACTGACGACGGCGATGCACGAGGCCGGGTACACCCTCACCGAGTCCGACCCGGACTACGTGGTCCTCGGCGAGACGCGCACCTACTCCTTCGAGGCGATCACCAAGGCCGTCCGGCTGATCAGGGACGGGGCGCGCTTCATCGCGACGAACCCCGACACCACGGGACCCTCGGCAGAGGGTCCGTTGCCGGCCACCGGCTCCGTCGCGGCGATGATCACCGCCGCGACCGGGCGCTCCCCGTACTACGTGGGCAAGCCGAACCCGATGATGTTCCGCTCGGCCCTGAACCGGATCGTCGCGCACTCGGAGACCACGGCGATGATCGGCGACCGGATGGACACCGACATCGTCGCGGGCATCGAGGCGGGTCTGGAGACGTTCCTCGTGCTGAGCGGCTCCACGACGCCGGACGAGGTCGACCACCACCCGTTCCGCCCGTCGCACGTCGTCGACTCGATCGCGGACCTCGTCGACCGCGTCTGA	MTERTIECWLTDMDGVLVHEGQAIDGAAEFVDALRSKDRPFLVLTNNSIFTARDLAARLAHSGVDVPEESIWTSALATATFLAEQVPGGSAYVIGEAGLTTAMHEAGYTLTESDPDYVVLGETRTYSFEAITKAVRLIRDGARFIATNPDTTGPSAEGPLPATGSVAAMITAATGRSPYYVGKPNPMMFRSALNRIVAHSETTAMIGDRMDTDIVAGIEAGLETFLVLSGSTTPDEVDHHPFRPSHVVDSIADLVDRV	PGPT0021435_568	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021435-nagD-K02566	NA	NA
AK001_02603	972			hypothetical protein	GTGACCGACGAGTCCTCCGAGCCCCCCACGCACACCGGCGCCGTCCGCCGGCACGCCGCGGCCCCGACCGGTACGTCCTGGCGCTCCGCCCCCGGCCTGGCCGTCCGCGGCGGGCTGGTCGGCATGGCCGAGTCCGTCCCGGGGATCTCCGGCGGGACCATCGCCCTGATCACCGGTCTGTACGACCGGCTCCTGGCCGCGGCCAGCCAGGTCGTGCACGCCGGTCGCGAGCTGGTCCAGGGGGTGGCGCAGGGTCACGGGCTGCGACCGGCCGGGCGGGCGCTCCGGGCCGTCGACTGGCGGTTCCTCGCCCCGGTCGTGGGCGGCATGGTGGTCGTGCTGTTCGCCTCGTTGAGCACGATCGCGCCGCTGCTGGAGGAGCACCCGGTCCCGGTGCGGTCGGTGTTCTTCGGCATGATCGCCGTCTCGGTGCTCGTCCCGCTGAGCATGATGCCGCACCGGTTCCGCGGGCTGGACGCGGTGCTGCTGGTCGCGGCTGCCGTGGCGGGCTTCTTCCTCGTCGGCCTGCCGCCGTCGGAGGTCTCCGACCCCTCCCTCTGGTACGTGGCCCTCGCCGCGGCGATCGCGATCAACGCCCTCGTGCTGCCGGGGGTGTCGGGGTCGACCCTGCTGGTGATCATGGGGCTGTACATCCCGGTCCAGCAGGCGATCGAGGACCGCGACCTGGCCTTCGTCGGTGCCTTCGCGGTCGGCGCGGCCGTCGGCCTGGCCTCGTTCGTCAAGCTGCTGCACTGGCTGCTCGGGCACCGGCGGCAGGGCACGATGGCGGTGCTGGCGGGGCTGATGATCGGCTCGCTGCGGGCGCTGTGGCCCTGGCAGGACGCCGACGGCGGTCTGCTCGCGCCGGCGGGCGCGGGCGCGGTCGTCGGCCCGCTGCTGCTCGCCGTGGCGGGCGCCGCGCTCGTCGGTGCCGTCTTCTGGTGGGAGAGCTCGCGGGTCGTCGATGAGTGA	MTDESSEPPTHTGAVRRHAAAPTGTSWRSAPGLAVRGGLVGMAESVPGISGGTIALITGLYDRLLAAASQVVHAGRELVQGVAQGHGLRPAGRALRAVDWRFLAPVVGGMVVVLFASLSTIAPLLEEHPVPVRSVFFGMIAVSVLVPLSMMPHRFRGLDAVLLVAAAVAGFFLVGLPPSEVSDPSLWYVALAAAIAINALVLPGVSGSTLLVIMGLYIPVQQAIEDRDLAFVGAFAVGAAVGLASFVKLLHWLLGHRRQGTMAVLAGLMIGSLRALWPWQDADGGLLAPAGAGAVVGPLLLAVAGAALVGAVFWWESSRVVDE				NA	NA	NA	NA	NA
AK001_02604	639	trmH		tRNA (guanosine(18)-2'-O)-methyltransferase	ATGAGTGACGAGCCGGTCGGTGTCGGTCCCTGGCCCGGCGGCCCGGAGGCCTGGCCGCGCGCGGCCGACGGCGGTCCCGACCCGCGCTACGACCCCGAGCTGCTGGAGCACGGGGACCGGCGCAACGTCGCCGACCCGTACCGCTACCTGACCGTGGAGGCGATCGTCGCGGATCTGGATGCGCGCCGTCCGGCGGACCGCCGCCTGCACGTGGCGATCGAGAACTGGGCGCACGACCTGAACATCGGGTCGGTGGTGCGCACGGCCAACGCCTTCAACGCGGCCGGCGTGCACATCGTGGGCCGACGGCGGTGGAACCGCCGGGGCGCGATGGTCACCGACCGCTACCTGCACGTCCACCACCACCCGGACGTCGAGACGCTGGTCGCCTGGGCCGCGGGCGAGGGCCTGCCGATCGTCGGTGTCGACAACGTGCCCGGGTCGGTGCCGCTGGAGCACCGTGCGCTGCCGGCGCGGTGCGTGCTGCTCCTCGGCCAGGAGTCCAGCGGGCTGACCCCGCAGGCGCAGGCCGCGTGCGACGTCGTCGTCCACATCACCCAGCACGGGTCGACGCGCTCGCTCAACGCCGGCGCGGCGGCCGCCGTCGCCATGCACTCCTGGGCCCTGCAGCACCTGTGA	MSDEPVGVGPWPGGPEAWPRAADGGPDPRYDPELLEHGDRRNVADPYRYLTVEAIVADLDARRPADRRLHVAIENWAHDLNIGSVVRTANAFNAAGVHIVGRRRWNRRGAMVTDRYLHVHHHPDVETLVAWAAGEGLPIVGVDNVPGSVPLEHRALPARCVLLLGQESSGLTPQAQAACDVVVHITQHGSTRSLNAGAAAAVAMHSWALQHL				NA	NA	NA	NA	NA
AK001_02605	1020	fba		Fructose-bisphosphate aldolase	ATGCCTATCGCAACCCCCGAGGTCTACGCCGAGATGATCGACCGGGCGAAGGCCGGCAAGTTCGCCTACCCCGCCGTCAACATCACGTCCTCGCAGACCGTCACCGCCGCCCTGCAGGGCTTCGCCGAGGCGGAGTCGGACGGCATCATCCAGGTCTCCGTGGGCGGCAGCGAGTACGCCTCGGGCGCGACGATCAAGGACCGCGTCGCCGGCTCCCTGGCTCTGGCCGCGTACGCCACCGAGGTCGCCAAGAACTACTCCGTCAACATCGCGATCCACACCGACCACTGCGTCAAGAAGAACCTGGACTCCTGGGTCCGCCCGCTGCTGGCGCTCGAGGCCGAGCAGGTCAAGGCCGGCAAGAACCCGACCTTCCAGTCGCACATGTTCGACGGCTCGGACATCCCGCTGGAGGAGAACCTCGTCATCGCCGAGGAGCTGCTCGAGCTCTCGCAGGCCGCGCGCACCCTCCTCGAGGTCGAGATCGGCGTCGTCGGTGGCGAGGAGGACGGCCACGTCGCGGAGATCAACGAGAAGCTGTACACGACCCCCGAGGACGGTCTGAAGACCGTCAAGGCGCTCGGCGCCGGTGAGAAGGGCCGCTACCTGACGGCGCTCACCTTCGGCAACGTGCACGGCGTCTACAAGCCCGGTGCGGTCAAGCTGCGCCCGGCCATCCTCGGCGAGATCCAGAAGGCCGTCGGGGACGAGATCGGCAAGGAGAACCCGTTCGACCTCGTGTTCCACGGCGGTTCGGGCTCGACCGCCGAGGAGGTCGCCGAGGCGGTCGACAACGGCGTCATCAAGATGAACATCGACACCGACACCCAGTACGCCTTCACGCGTCCGGTCGTCGACCACATGTTCACCAACTACGACGGCGTGCTGAAGATCGACGGCGAGGTCGGCAACAAGAAGGCCTACGACCCGCGCGCCTGGGGCAAGAAGGCCGAGGCCGGCATGGCGGACCGCATCGTCGAGGCCTGCCAGTGGCTGCGCTCGGCCGGCCACAAGATGTGA	MPIATPEVYAEMIDRAKAGKFAYPAVNITSSQTVTAALQGFAEAESDGIIQVSVGGSEYASGATIKDRVAGSLALAAYATEVAKNYSVNIAIHTDHCVKKNLDSWVRPLLALEAEQVKAGKNPTFQSHMFDGSDIPLEENLVIAEELLELSQAARTLLEVEIGVVGGEEDGHVAEINEKLYTTPEDGLKTVKALGAGEKGRYLTALTFGNVHGVYKPGAVKLRPAILGEIQKAVGDEIGKENPFDLVFHGGSGSTAEEVAEAVDNGVIKMNIDTDTQYAFTRPVVDHMFTNYDGVLKIDGEVGNKKAYDPRAWGKKAEAGMADRIVEACQWLRSAGHKM	PGPT0017615_2960	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624	NA	NA
AK001_02606	420			hypothetical protein	GTGCAGGACGCATCCAACGCGGCGCCGCACTCCCCCGATGGTGGGGACGCCGACGAGAACACGGGGCCCCAGATCGGCGACCCCGCGAGCATCCACGTCATCGTGGGCACCTCGCGGGCGCGCGTCGTCCTCTCGGGCGAGATCGACGCCGAGGTCAGCTCCGAGCTGGGCGACGCCATCTCCGACGCCGAGGCCTCCGGGCTCCCCGTCGAGATCGACGCCCACCACGTGACGTTCATGGACTCCTCCGGCGTCGCCTTCCTGGCACGGCTCGCCTCGCGCAGCCCGCACACCGTCCGCATCCTGCGCGCGCCGCCGACGGTGCGCTTCCTGCTCGAGGTCACCCGGATCGGCGAGCTCCTCGAGATCGTCGACGACGACCCGGGCGTCGACCTCGACATCACCTCGGCTCAGCACTGA	MQDASNAAPHSPDGGDADENTGPQIGDPASIHVIVGTSRARVVLSGEIDAEVSSELGDAISDAEASGLPVEIDAHHVTFMDSSGVAFLARLASRSPHTVRILRAPPTVRFLLEVTRIGELLEIVDDDPGVDLDITSAQH	PGPT0014350_218	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
AK001_02607	2202			hypothetical protein	ATGGGTCGAATGCCTGGTTCGTACACCGGCGTCGTGCCGGTCTCGGCCGCCCAGCTCGCCTCGGCCCTGTCCGTCACGACCGTGCCGGCGTTCATCACGGGGTCGTGGTCCACGGGCATGCCCGTGCTCTGGGTGAACCAGGCGTTCGAGGAGCTCGGCGGCGTGGGCATCGACGAGCTGGCGATCCTCGGGCCGCACTCGTTGCTCGCCCTCGTGCAGGACGACCCGAACCGGGCCGCCGCCCAGGCCGACCTCAAGGCGGGGCGGGCGATGCGGCGGATCGTCAGCGCCCGCCGTCGGGACGGCGGCACGACCTGGCTGCAGGTCGACGTCACCCCGCTGCCGAACGGCGACGACCTCCCGGAGTACTGGGTCGGCGTCACCACGGACGTCTCGGAGTACGTCGACCAGCAGGCCGAACAGCTCGCCTCCCTGGAGGTCGAGCGTCGCCAGCGCGCGGACCTGGACCTCATCGCCCAGACCACGGAGCTGCTCGGGGACCTCGAGTACCCGTTCGCCCTGCGCGACATCGCCGACCTGCTGCGCTCCCTGGTGCCGTGGTCCGGGTTCTACCTCAACGACGACGGGCTGTTGTTCGCCGAGGGGGTCGACGTCGCCTCGCCGCCCTCCGGCCGCGGCCGGAGGCACACGCGCTACGTGCCCGAGGACAGGCCGCTCGACCGGCTCGAGCCGGTCCCGTCCGGAGCCGACGGCGGGGCACCGGCGTCGAACCCGGCCGTCGACGACGTGCAGGACCTGCTCGACGGCGTCGTCGACGGGCCCGTGCGGCTGAGCCTCGAGGGTCGGTTCGACCCGACGTCGGCCTCGGGCTGGCTGCGACGGGACCTGATGCACCGCGTGGTCGAGGAGACGGGGGCGGTCCCGCACGCCGTCGTCGTCCACGCCGTGGCCGGCCGGCGCCGGGTGCTCGGGCTCCTGGTGACCTGGCACGGCGGTGCCGAGGCCGACGTCCAGCCCGGGCGCCCCGAGCCGGACCACGTGTCCACCGTCGTCGAGGTGGTGGCGCGCCGTGCCGGCACAGCGGTCGACAACGCTCGGCTGTACGCCCGCGAGCACCGTCTGGCCGAGGCGCTGCAGCGCGCGATGCTGCCCGAGCAGGCCGACGTCACCGGGCTGGACGTGTGGACCTACTACGCCCCGAACGCCGAGCACGCGCAGGTCGGCGGCGACTGGTACGACGTGCTGCAGATCGCCGACGGCACCGTGGGGCTCGTGATCGGCGACGTGGTCGGGCACGACGTCGAGGCCGCGGCCGCGATGGGCCAGCTCCGCTCCGTGGTGCGTGCCTACGCCTACGAGCTGACGACACCCGGGACCGTGCTGGACCGAGTCGACCAGCTCGTGGCGGGGATGCGGGTGCCGCGTCCGGCGTCGATGGTCTACGCCGCGCTGGAGCACCTCACCGAGGACGACACCTGGGCGCTGGAGTACACCCGTGCCGGCCACCTGCCGCCGCTGCTGCTCCGCGACGGCACCACCCAGCTGCTCTCCGAGGCCGGCGGCATGCTCGTGGGCTTCGGCAACGAGACGCGGGCCACCGGCCGCGAGGTCCTGCGGCGCGGCGACGTGCTGATCTTCTACACCGACGGGCTCATCGAGCGGCGCGACCGGTCGCTCAAGCGCGGTCTGGAGACCCTCACCGAGATGTCGGGGCGCATCACCGCGCGGGACGCCGCCGGGGTGGGGGAGGAGCTGCTGTCACGGCTGGCCGACTCGCCCGAGGACGACGTCGCCATCGTCGTCGTGCGCGTCCCCGACCCGGAGGCGGACCGCCGGGTCACCGCGCTGAGCCCGCGCTCGCGGCGCTGGCTGCTGCCGAGCGAGCCGGGCTCCATCGGCCGGGCACGGCACGCGGTGCTGCGCACCTCGCAGGCGTGGGGGCTGCCGGACTCCGCGGCCGCCGAGCTCGTCGTGAGCGAGCTCGTGGCCAACGGGGTGCTGCACGGCTGGGGCAACATCGCGCTGCGGCTGTTCGACACCGGGGACGGGCTGCGCATCGAGGTCGAGGACTCCAACCCGGCGCCGCCGGTGGCTACCGACGGGCACCCGAACCGGCTCGGCGGTTTCGGGATGCAGATCGTCGAGCGGCTCGCCGACTGGGGCTGGCGGCCCAGCACGTCCGGCAAGCTCGTGTGGGCCAAGCTCCGGCCCGACCTGACCGGTGGTGCGGGGCAGGAGTAG	MGRMPGSYTGVVPVSAAQLASALSVTTVPAFITGSWSTGMPVLWVNQAFEELGGVGIDELAILGPHSLLALVQDDPNRAAAQADLKAGRAMRRIVSARRRDGGTTWLQVDVTPLPNGDDLPEYWVGVTTDVSEYVDQQAEQLASLEVERRQRADLDLIAQTTELLGDLEYPFALRDIADLLRSLVPWSGFYLNDDGLLFAEGVDVASPPSGRGRRHTRYVPEDRPLDRLEPVPSGADGGAPASNPAVDDVQDLLDGVVDGPVRLSLEGRFDPTSASGWLRRDLMHRVVEETGAVPHAVVVHAVAGRRRVLGLLVTWHGGAEADVQPGRPEPDHVSTVVEVVARRAGTAVDNARLYAREHRLAEALQRAMLPEQADVTGLDVWTYYAPNAEHAQVGGDWYDVLQIADGTVGLVIGDVVGHDVEAAAAMGQLRSVVRAYAYELTTPGTVLDRVDQLVAGMRVPRPASMVYAALEHLTEDDTWALEYTRAGHLPPLLLRDGTTQLLSEAGGMLVGFGNETRATGREVLRRGDVLIFYTDGLIERRDRSLKRGLETLTEMSGRITARDAAGVGEELLSRLADSPEDDVAIVVVRVPDPEADRRVTALSPRSRRWLLPSEPGSIGRARHAVLRTSQAWGLPDSAAAELVVSELVANGVLHGWGNIALRLFDTGDGLRIEVEDSNPAPPVATDGHPNRLGGFGMQIVERLADWGWRPSTSGKLVWAKLRPDLTGGAGQE				NA	NA	NA	NA	NA
AK001_02608	429			hypothetical protein	ATGAGCCACAACCTGCTGTCCGGACCCGACCCGACCCGCCTGCCCGACGACCACGCCGTGGCGCGCGAGGGCCTCGAGACCGGCGAGGACCCGGCCGCCCTGGCGGCCGCCCACCCCTCGGCGAGCCTCACGTGGGCCGTGCTCGCCGAGCAGACCCTCGACGGCGGCGAGGACGTCACGCACTCCGTGACGGCGTACGCCTACGCGCGCACCGGGTACCACCGCGGGCTGGACGCGCTGCGCCGCGCCGGCTGGCGGGGCCAGGGGCCGGTCCCGGCCGACCACGTCCCGAACCAGGGGTTCCTGCGCGCCCTCCTGGCGCTGTCCGAGGCGGCCGCCCGGATCGGCGAGACCGACGAGGCGGAACGGTGCGCCCAGTTCCTCACGGACTCCGGCGTCTCCGTCGACGAGGTCCGCGCGCTGCGCTGA	MSHNLLSGPDPTRLPDDHAVAREGLETGEDPAALAAAHPSASLTWAVLAEQTLDGGEDVTHSVTAYAYARTGYHRGLDALRRAGWRGQGPVPADHVPNQGFLRALLALSEAAARIGETDEAERCAQFLTDSGVSVDEVRALR				NA	NA	NA	NA	NA
AK001_02609	378			hypothetical protein	ATGATCGAGATCGCGACGTCCTCGACGACGACGACGCTCGTGGTCGCCGGCGACCTCGACCTCGCCGAACGGGACCAGTTCCCCGAGATCGCGGCGCGTGTGGTCGGGCTCCGCCGTCAGCTGCTCGTCATCGACATGTGTCGCGTGACCTTCATGGACTCCACCGGCGCGGCGTTCCTCATCTCCCTCGCCGACTCGGGCCGCAAGCGCGGCGGGGCGACCGTGCTGCGCGGGGCGGACGACCGCGACCTGTTCGTGCTCGAGGTGTGCGGCGCGCTCGACCTGTTCCGGATCGACACCGACCACCAGTGCGAGCAGTCCGACCCGACGACCGGGGCGACGCCCGTCCAGCTGCCGCAGCGGCCCCGACCCGCCTGA	MIEIATSSTTTTLVVAGDLDLAERDQFPEIAARVVGLRRQLLVIDMCRVTFMDSTGAAFLISLADSGRKRGGATVLRGADDRDLFVLEVCGALDLFRIDTDHQCEQSDPTTGATPVQLPQRPRPA	PGPT0014350_1918	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
AK001_02610	1296	purA	COG0104	Adenylosuccinate synthetase	ATGCCAGCCGTGGTGCTCGTCGGCGCCCAGTGGGGCGATGAGGGCAAGGGGAAGGCGACGGACCTCCTCGGTGACCGCGTCGACTACGTGGTCAAGTTCAACGGGGGCAACAACGCCGGGCACACGGTGGTGATCGGCGACGAGAAGTACGCGCTGCACCTGCTGCCCTCCGGCATCCTGTCCCCGGGTGTCACGCCGGTCATCGCCAACGGCGTCGTGGTGGACATCGACGTGCTCTTCGAGGAGCTCGACGCCCTGGAGGCCCGCGGCGTCGACACCTCGAAGCTGATGGTGTCCTCCGGCGCGCACGTCATCGCCTCGTACCACCGCACGGTGGACAAGGTCACGGAGCGGTTCCTCGGCAAGCGGCGCATCGGGACGACCGGGCGGGGGATCGGGCCGGCGTACGCCGACAAGATCAACCGCGTCGGGATCCGCGTCGCCGACCTGTTCGACCCGAAGATCCTGCGGGAGAAGGTCGAGGGCGCGCTCGACCAGAAGAACCACCTGCTGGTCAAGGTCTACAACCGCCGCGCCGTCGAGGTCGACGAGGTCGTCGACGAGCTGCTCGGCCACGCCGAGCGCCTCAAGCCCATGGTCGCGGACACCGGCCTGGCGCTGAACCAGGCCCTGGACGCCGGTCACAACGTCCTGTTCGAGGGCGGCCAGGCGACCATGCTCGACGTCGACCACGGCACCTATCCCTTCGTGACGTCGTCGAACGCCACCGCGGGCGGTGCGGTGACCGGGTCCGGCGTCGGGCCGACGCGCATCGACTCGATCATCGGCGTCATCAAGGCCTACACCACGCGGGTCGGCGAGGGCCCGTTCCCCACCGAGCTGTTCGACGCCGACGGCGAGTACCTGCTCAAGACCGGCGGCGAGTACGGCGTGACCACCGGCCGCGCGCGGCGCTGCGGCTGGTACGACGCCGTGATCGCCCGGTACTCCGCACGCGTCAACGGCCTGACCGACCTGGTGGTGACCAAGCTCGACGTGCTCACCGGCATGGAGAAGGTCCCGGTCTGCGTGGCCTACGACGTCGACGGCGTCCGCTACGACGAGATGCCCGACGACCAGTCGGCCTTCCACCACGCCAAGCCGATCTACGAGGAGCTGCCCGGCTGGTGGGAGGACATCTCGCAGTGCCGGTCGTTCGACGAGCTCCCGGCCAACGCCCAGGCGTACGTCCGGGCGCTGGAGGAGATGTCCGGCTGCCGCATCTCGGCGGTCGGCGTCGGCCCGCGCCGCGACGAGATCATCCCGATCCACGACCTCATCCACGCCCGGGCGTGA	MPAVVLVGAQWGDEGKGKATDLLGDRVDYVVKFNGGNNAGHTVVIGDEKYALHLLPSGILSPGVTPVIANGVVVDIDVLFEELDALEARGVDTSKLMVSSGAHVIASYHRTVDKVTERFLGKRRIGTTGRGIGPAYADKINRVGIRVADLFDPKILREKVEGALDQKNHLLVKVYNRRAVEVDEVVDELLGHAERLKPMVADTGLALNQALDAGHNVLFEGGQATMLDVDHGTYPFVTSSNATAGGAVTGSGVGPTRIDSIIGVIKAYTTRVGEGPFPTELFDADGEYLLKTGGEYGVTTGRARRCGWYDAVIARYSARVNGLTDLVVTKLDVLTGMEKVPVCVAYDVDGVRYDEMPDDQSAFHHAKPIYEELPGWWEDISQCRSFDELPANAQAYVRALEEMSGCRISAVGVGPRRDEIIPIHDLIHARA	PGPT0020140_2375	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939	NA	NA
AK001_02611	918			hypothetical protein	GTGTCGTTGCGGCAGTGCGTCGCCCGCGGTGTGCCCGCCGACCGGATCACGCGGGCCGCCCGGAGCGGACGTCTCCCCCGCGTCGCCCGCGGTGTCTACGACGTCGGCGCCGGGCTCCCGCCGTCGCGCGCAGACCCGCAGGACGTGCGTCGTCGTCGGGCCGCTGCCCTGGGCGCGCTCGCCCACCCCGGCGCCGTGGCGACGGGTGTGTGCGCCCTCGTGCTGCGCGGGGTGCAGGGCGCCCCGACGGTGGTGCAGCCTGAGGTGGCGTTCCCCGACGGGTCCTCGCGGGAGGCGGTGACGCCGGTGCGCGTCCGGCGGGTCCCGGTGCGTCGCTGGGAGGTGGTGGGCGGGCTGCGGTGCGCCGAGGTCGCCGACGCGCTGGCGCAGGCCGTGCCCGAGCTCGATCGGCGCCATGCCGTGGCCCTCATGGACTCCGCCCTGCAGCAGGGGTTCCTGACCGAGGCCGAGCTCGCCGCGGCCCACGACGACGCCCGCGGTCGCCCCGGCGTCGAGCGGACGCACCGGTGGTGGGGCGAGGCCGACGGACGGGCCGAGTCGCCCGCCGAGACCTGGGCCCGGCTGTCGTGCCTGCGCGCCGGAGTCCCGCCGGACGCGCTCCAGCAGGTCGTGGTGGACGCGGACGGCGGCTTCCTGGCGCGCGTCGACCTCGCCTGGTCGCTCCCCGACGGCCGGGTGCTCCTGGTGGAGATCGACGGCGCGGAGCCGCACTCGTCCCCGCGGGCCGTCTACCGCGACCGGGTGCGCCAGAACGACCTGGTCACCGCACGCTCGCTGGTGCGGCGCTACACCGGGACCGACGCCTGGCACGGCGCCGTCGGCCCCGCGGTGCGCCGGCTCCTCGAGCCGACCGGGTGGCGGCCGGGACGTCCCGCGCCGCGCACCGTGACCGTCTGA	MSLRQCVARGVPADRITRAARSGRLPRVARGVYDVGAGLPPSRADPQDVRRRRAAALGALAHPGAVATGVCALVLRGVQGAPTVVQPEVAFPDGSSREAVTPVRVRRVPVRRWEVVGGLRCAEVADALAQAVPELDRRHAVALMDSALQQGFLTEAELAAAHDDARGRPGVERTHRWWGEADGRAESPAETWARLSCLRAGVPPDALQQVVVDADGGFLARVDLAWSLPDGRVLLVEIDGAEPHSSPRAVYRDRVRQNDLVTARSLVRRYTGTDAWHGAVGPAVRRLLEPTGWRPGRPAPRTVTV				NA	NA	NA	NA	NA
AK001_02612	1302	purD	COG0151	Phosphoribosylamine--glycine ligase	GTGCCCGTGAAGATCCTCGTCGTCGGGAACGGTGCTCGCGAGCACGCCATCCTCCACGCCCTCGCGGCGGAAGACGCCCTCGGGGGAGAGCCGCACCAGCTGCACGCTGCCCCCGGGAACCCCGGAATGGCCCGTGAGGCCACCCTGCACCCCGTGGACCCGGTCGACGGCGATGCCGTCGCCGCGCTGGCCACCGGCCTCGGTGCCGACCTGGTCGTCGTCGGCCCCGAGGCGCCGCTGGTCGCCGGAGTGGCGGACGCGGTCCGGGACGCGGGCGTCCCGGTCTTCGGCCCCTCCGCCGAGGCGGCCCGGCTCGAGGGGTCGAAGTCCTTCGCCAAGGAGGTCATGGCGGCGGCGAACGTCCCCACCGCCATGGCGCACGTGTGCACCTCGACCGACGAGGTCGCCGCGGCGCTGGACGCGTTCGGCCCTCCCTACGTCGTCAAGGACGACGGCCTGGCGGCCGGCAAGGGCGTCGTCGTCACCTCCGACCGGGACGAGGCGATGGCGCACGCCGGGGCCGCGCTCGCGGGGCGCGGTGCCGAGGGACGCGTCGTCGTCGAGGAGTACCTGGACGGACCCGAGGTCTCGGTCTTCTGCGTGTGCGACGGCACCTCCGTGGTGCCGATGGTCCCCGCGCAGGACTTCAAGCGGGTCTTCGACGGCGGCGAGGGCCCGAACACCGGCGGCATGGGGGCCTACACCCCGCTGGACTGGGCGCCGTCCGGGCTCGTCGGCGAGGTCGTCGACCGGATCGCGCAGCCCACGGTCGACGAGATGGCCCACCGCGGGACGCCCTTCGTCGGCGTGCTCTACGTGGGTCTGGCGCTGACCTCGCGCGGCACCCGGGTCGTGGAGTTCAACGCCCGGTTCGGCGACCCCGAGATCCAGGCCGTGCTGACCCGCCTGGTGACACCCCTGTCGTCCGTCCTGCTGGCCGCCGCCCGCGGCGAGCTCGAGCAGCACGAGCCGCTGCACTGGTCGCCGGACGCCGTGGTCAACGTCGTCGTCGCGGCGACGGGGTACCCGGCAGATCCGCGCAAGGGCGACGCGATCACGGGGATCGAGGCGGCCGAGGCCCTCGACGGCGTGCACGTCCTGCACGCCGGGACCGCGACGACCGACGACGGCACGCTGGTCTCCGCCGGCGGCCGGGTGCTGTCCGTGGTCGGGCGGGGCGCCGACCTCGCCGCGGCGCGGACCGCGGCCTACGCCGGTGTCGCGGAGATCGGCCTGGCCGACTCCCACCACCGCACCGACATCGCGCTGGCCGCCGAGCGGGGCGAGGTGCAGGTGCCGTGA	MPVKILVVGNGAREHAILHALAAEDALGGEPHQLHAAPGNPGMAREATLHPVDPVDGDAVAALATGLGADLVVVGPEAPLVAGVADAVRDAGVPVFGPSAEAARLEGSKSFAKEVMAAANVPTAMAHVCTSTDEVAAALDAFGPPYVVKDDGLAAGKGVVVTSDRDEAMAHAGAALAGRGAEGRVVVEEYLDGPEVSVFCVCDGTSVVPMVPAQDFKRVFDGGEGPNTGGMGAYTPLDWAPSGLVGEVVDRIAQPTVDEMAHRGTPFVGVLYVGLALTSRGTRVVEFNARFGDPEIQAVLTRLVTPLSSVLLAAARGELEQHEPLHWSPDAVVNVVVAATGYPADPRKGDAITGIEAAEALDGVHVLHAGTATTDDGTLVSAGGRVLSVVGRGADLAAARTAAYAGVAEIGLADSHHRTDIALAAERGEVQVP	PGPT0021575_976	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945	NA	NA
AK001_02613	954	purC	COG0152	Phosphoribosylaminoimidazole-succinocarboxamide synthase	GTGAGCTTCTCCGACGCCTTCGCCGGCGGACCGCTGGACCTGCCCGGCTGGCGGCACGTCTACTCGGGCAAGGTCCGCGACCTGTACGCCCCCGACCTGCCGGCGCTCGGCGGCGTCCACCCGCTGGGCGACGTCGTGCTCGTCGTGGCCTCGGACCGGGTGTCCGCCTACGACCACGTGCTCACGCCGGGCATCCCCGACAAGGGCGTGGTGCTGACCCAGCTCAGCCTGTGGTGGTTCGACCAGCTCGCCGACCTCGTGGACAACCACGTCGTGTCGACCGAGGCGAGCGCGGAGCCCGGCGACGGGTCCGTGCCCGACGTCGTCGCGGGCCGGGCGATGATCTGCCGGCGCCTCGACATGTTCCCCGTCGAGTGCGTCGCCCGCGGCTACCTCACCGGCTCCGGGCTGGCCGAGTACCGCGCGTCCGGCGAGGTCACCGGCATCCCGCTGCCGGACGGGCTCGTGGACGGCTCGCGGCTGCCGGAGCCGATCTTCACCCCCGCCACCAAGGCGGAGGTCGGCGAGCACGACGAGAACGTCAGCTTCGCCGAGGTCGCCCGCCGCATCGGGGACGACGCCGCCGGCCGGCTGCGCGAGCTCACGCTCGCCGTCTACGGTCGCGCCGAGGAGATCGCCCGCGAGCGCGGCGTCATCCTCGCGGACACCAAGCTGGAGTTCGGCCGGGTGCCCGACGGCGGACCGATCGTCCTCGGCGACGAGGTGCTCACGCCGGACTCCTCGCGGTTCTGGCCCGCCGACGACTGGGAGCCGGGCCGTGCCCAGCCCAGCTTCGACAAGCAGTTCGTCCGCGACTGGCTGACCTCGGACGCCTCCGGTTGGGACCGCGGGGGCGACGCCCCGCCGCCCGCGCTGCCGGACGACGTCGTCCGCCGCACCCGGGACCGCTACCTCGAGGCGTACGAGAGGATCACGGGCTCGCCGCTGCGTTGA	MSFSDAFAGGPLDLPGWRHVYSGKVRDLYAPDLPALGGVHPLGDVVLVVASDRVSAYDHVLTPGIPDKGVVLTQLSLWWFDQLADLVDNHVVSTEASAEPGDGSVPDVVAGRAMICRRLDMFPVECVARGYLTGSGLAEYRASGEVTGIPLPDGLVDGSRLPEPIFTPATKAEVGEHDENVSFAEVARRIGDDAAGRLRELTLAVYGRAEEIARERGVILADTKLEFGRVPDGGPIVLGDEVLTPDSSRFWPADDWEPGRAQPSFDKQFVRDWLTSDASGWDRGGDAPPPALPDDVVRRTRDRYLEAYERITGSPLR	PGPT0021565_602	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923	NA	NA
AK001_02614	777			hypothetical protein	GTGACTACGCCACCGCAGGACCCCTCGCACGTCGCCGACCCGTTCTCCGCCCCCACGCCGCCCGGTGGTGCCGGGCAGCAGCCGTCCGACGGTGCGGCTCCGCCCTCGGGGCCGCCCGCCGAGGGTCCGCAGCCCCCGTACGCGGCGCCGTCGGGCCCCCGGACCGACGGGGTGTCGATCGCCGCGCTGGTCACGGGGATCCTGGGCCTGGCGCTGATCCCGCTCGGTCTCGGCATCGCCGCACTGGTCCGGATCAAGAGGTCCGGCGCGGCGGGCAAGGGGCTGGCGATCGCCGGCATCGTCCTGGGCGCGCTGTCGACGGTGGGCTGGACGGTCCTGGTCGCGCTGTTCGCCGCCTTCGTCGGCACCGGTCTCCAGGAGGCCGTCGACGAGGGACTGACCGAGGGGTTCCAGGAGGTCACCGGCACGCACCTGGTCGTCGGCGACTGCTTCGAGCCACCGGCGGACTTCACGAGCGGCGACCCGCTGCAGGCCGTCGACTGCGGCGTCCCGCACACGGCCGAGGTCTTCGGCGTGGACGACGTCGCCGCCGACGCGTTCCCCGGGGTCGAGGCCATGCAGGTCCAGGCCGAGGACTTCTGCCTGGACGCCTTCGGCGACTACGTCGGCGTCGACTACATGGACTCCGCGCTCCAGGTGATCTACTTCCACCCCTCGGAGCTCACGTGGTCCGTCGGTGACCGCCGGATCGTCTGCGGTGCGACGACCATGGACGGCAGCCCGCTGCACGACAGCGTGGCCGGGTCGGGGGTCTGA	MTTPPQDPSHVADPFSAPTPPGGAGQQPSDGAAPPSGPPAEGPQPPYAAPSGPRTDGVSIAALVTGILGLALIPLGLGIAALVRIKRSGAAGKGLAIAGIVLGALSTVGWTVLVALFAAFVGTGLQEAVDEGLTEGFQEVTGTHLVVGDCFEPPADFTSGDPLQAVDCGVPHTAEVFGVDDVAADAFPGVEAMQVQAEDFCLDAFGDYVGVDYMDSALQVIYFHPSELTWSVGDRRIVCGATTMDGSPLHDSVAGSGV				NA	NA	NA	NA	NA
AK001_02615	276	purS		Phosphoribosylformylglycinamidine synthase subunit PurS	GTGGGACGCGTCGTCGTCGAGGTCATGCCCAAGCCCGAGATCCTGGACCCCCAGGGCAAGGCCGTCGTCGGGGCGCTGCCGCGTCTCGGCTTCACCCAGTTCACCGGCGCCCGCCAGGGCAAGCGGTTCGAGCTCGAGGTCGACGGCGAGGTGACGGCCGAGATCCTGGCGGACGCCCGCAAGGCCGCCGAGACGCTGCTGTCGAACCCGATCATCGAGGACGTCGTGCGCGTCGCGGACGCCTCGTCCGAGACCGCCGAGGTCCCGGCCCGATGA	MGRVVVEVMPKPEILDPQGKAVVGALPRLGFTQFTGARQGKRFELEVDGEVTAEILADARKAAETLLSNPIIEDVVRVADASSETAEVPAR	PGPT0021725_210	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021725-purS-K23264	NA	NA
AK001_02616	732	purQ	COG0047	Phosphoribosylformylglycinamidine synthase subunit PurQ	ATGAGCGCGGGGACCCTCGACACGACGCTGGCCGAGGCACGCATCGGTGTCATCACCTTCCCCGGCACGCTCGACGACCGGGACGCCGCCCGCGCCGTGCGCCTGGCCGGTGGCGAGCCGGTGTCGCTGTTCCACGCCGACGGGGACCTGCAGGGCGTCGACGCGGTCGTGCTGCCCGGCGGGTTCTCCTACGGCGACTACCTGCGGGCCGGGGCGATCAGCCGCTTCGCGCCCGCCATGGACGCGCTCGTCGACGCCGCGAAGGGCGGTATGCCGGTGCTCGGCATCTGCAACGGCTTCCAGGTCCTCACCGAGGCGCACCTGCTGCCGGGTTCGATGATCAAGAACGAGCACCTGCACTTCATCTGCCGCGAGCAGGTGCTGTCGGTGGAGAACGCCGGCACCGCCTGGACCAACCGGTACGAGCAGGGTCAGCACATCACGATCCCGCTGAAGAACCAGGACGGCCAGTTCGTCGCCGACGAGCACACCCTCGACGAGCTCGAGGGCGAGGGGCGCGTCGCGTTCCGCTACGTGGGCTGGAACCCGAACGGGTCGCGTCGCGACATCGCCGGCATCACCAACGCGGCGGGGAACGTCGTGGGCCTCATGCCGCACCCGGAGCACGCCGTGGAGGCCGGCTTCGGTCCCGACGGCCCGGAGGGTCCGCGCTCCGGCACCGACGGGCTGGGCTTCTTCACCTCGGTGCTGGCCTCGCTCGTCCACGCATGA	MSAGTLDTTLAEARIGVITFPGTLDDRDAARAVRLAGGEPVSLFHADGDLQGVDAVVLPGGFSYGDYLRAGAISRFAPAMDALVDAAKGGMPVLGICNGFQVLTEAHLLPGSMIKNEHLHFICREQVLSVENAGTAWTNRYEQGQHITIPLKNQDGQFVADEHTLDELEGEGRVAFRYVGWNPNGSRRDIAGITNAAGNVVGLMPHPEHAVEAGFGPDGPEGPRSGTDGLGFFTSVLASLVHA	PGPT0020220_379	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0020220-purQ-K23265	NA	NA
AK001_02617	510			hypothetical protein	ATGACCGCCGAGGTCTGCTCCGGCACCGTCGAGGTCGTCGCGGTCGACTGGGACGACGCGGACGCCGTCGCGCTGCGCGCCGAGGCCGTGGCCGAGCTCGGCCGCCGCTACGGCGGTGACGACGACGCCCACGAGGTCATCGACCCCGCCGCCGTCGTGGCGAGCTACCTCGTGCGGGTCGACGGCGTCGCCGCCGCCTGCGGCAGCGTCCGGGACGTCTCCGGCACCGACGACGGCCGCGGACGCGGGACGGACCACCCCGCCGCGACGGGCGAGCTCAAGCGCGTCTTCGTGCTGCCGGAGCACCGCGGGCGTGGTCTGGCCCGCACGCTGATGGCGGAGCTGGAGGGCGCGGCCCGCCGGACCGGGTTCCGTCGGCTGGTGCTGGAGACCGGCACCGCCCAGCCCGAGGCCATCGCGCTGTACACCGCGCTCGGGTACGACCCGATCGAGTCCTACGGCAAGTACGCCGGCGAGGACGACCAGCGCTGCTACGGCAAGCGGCTCTGA	MTAEVCSGTVEVVAVDWDDADAVALRAEAVAELGRRYGGDDDAHEVIDPAAVVASYLVRVDGVAAACGSVRDVSGTDDGRGRGTDHPAATGELKRVFVLPEHRGRGLARTLMAELEGAARRTGFRRLVLETGTAQPEAIALYTALGYDPIESYGKYAGEDDQRCYGKRL	PGPT0007180_758	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829	NA	NA
AK001_02618	876	fgd_6		F420-dependent glucose-6-phosphate dehydrogenase	ATGACCGTCCGCCTCGGTATCGCCCACGTCCCCACGCACGCCCCCGAGACGCTGCGCACCCTGGCCGTCGCGGCCGAGGACGCCGGGCTCGACGACCTGTGGGTCTGGGAGGACTGCTTCAAGCAGAGCGGGCTCGCCTCGGCCGCTGCCGCACTGGCCTGGACGGACCGGATCCGCGTGGGACTCGGGCTCATGCCCGCCCCGCTGCGCAGCACGGCGCTCACCGCGATGGAGATCGCCACCCTGGCCCGGTCGTTCCCGGGACGGTTCGTCCCGGCCGTGGGGCACGGCGTGCAGTCGTGGATGGGCCAGTCGGGCGTCCGCGTCGACTCTCCGCTGACGCTGCTGCGCGAGCACCTCGGCGCCCTGCGGAGGCTGCTCGACGGCGAGGAGGTGACGACGTCGGGCCGCTACGTGACGCTCGACGGCGTGCGTCTCGACTGGCCGCCGACGACGCCGGTGCCCCTGTGGACGGGCGGGGTCGGCCCGCGCACGCTGGCCCTGACCGGTGAGCTCGGCGACGGGCTGATCCTGGCCAACGCGCTGACGCCCGACGAGGTGCGCGGCGCTGTCGCCACCGCCCGGGACGCGGCGTCCGCCGTCGGGCGCGAGCTGGCCGACGTGCACGCCACCCTGATCGTCGCGACGGGTCCGCACGCGGCGGAGCGACTGGCCACGGAGCTGCCGCAGTGGGGCGGGGACCCGGAGCGCGGGATCGGGGCGGCCGGCGGGGCCGACGAGATCGCCGCGGGCGTGCGGGCGCTGGCCGACGCCGGAGCGACCGCGGTCGCGGTCCAGCCCACCGCGGACGAGCCGGACCTGGCCGGGCTGGCGGCGTTCCTGGGCCGCGAGGTCAGGCCGCGGCTCGCCGGCTGA	MTVRLGIAHVPTHAPETLRTLAVAAEDAGLDDLWVWEDCFKQSGLASAAAALAWTDRIRVGLGLMPAPLRSTALTAMEIATLARSFPGRFVPAVGHGVQSWMGQSGVRVDSPLTLLREHLGALRRLLDGEEVTTSGRYVTLDGVRLDWPPTTPVPLWTGGVGPRTLALTGELGDGLILANALTPDEVRGAVATARDAASAVGRELADVHATLIVATGPHAAERLATELPQWGGDPERGIGAAGGADEIAAGVRALADAGATAVAVQPTADEPDLAGLAAFLGREVRPRLAG				NA	NA	NA	NA	NA
AK001_02619	765	gloB_2		Hydroxyacylglutathione hydrolase	GTGCGATCCCTGACCCCGTCGATCTCCGTGCTCCGCGCGGACAACCCCGGCCCGATGACGCTCGACGGCACCCGCTCGGTCGTCCTGCGCGCACCGGCTGCGCCGTCGTGCGTGGTGGTCGATCCCGGGCCCGACGACGCCGCACACCTGGACGCGCTGGCGATGGCGGGGCCGGTCGATCTGGTGCTCGTCACGCACCGGCATGCCGACCACACGGCAGGTTCTCGCGGTCTGCACGCCCGCACCGGCGCCCCGGTCCGCGCCGCCGACCCGGCGCACTGCCACGGCGGCGACCCGCTGGCCGACGGGGAGGTGGTCGAGGCCGGGGGACTGCGCATCGAGGTGCTCGCCACGCCGGGCCACACGGCGGACTCGGTCTCCCTGGTGGTCACGGTGCCGGGCGAGGAGCCCGTGGTGCTCACCGGGGACACGGTGCTCGGCCGCGGCACCACCGTCATCGCGGAGCCGGACGGGTCGCTGCGCGACTACCTGGCCAGCCTCGACACGCTGGAGCGCGTGGGCGACGACCGGCTCGGGGTGCCGGCCCACGGACCGGAGCTGCCCGACCTCGGCGAGGCCGTCCGCGCCTACCGGATCCACCGCCTCAAGCGGCTGGATCAGATCCGCGCCGCCCTGGCGACCCTCGGGCCGGACGCCGCCGCGGACGACGTCGTCGCGCACGTCTACGCCGACGTCGACCCGTCGGTCCGTGGCGCGGCCCGGCAGTCGGTCGCCGCCCAGCTCGCCTACCTGCGCGGCGCCTGA	MRSLTPSISVLRADNPGPMTLDGTRSVVLRAPAAPSCVVVDPGPDDAAHLDALAMAGPVDLVLVTHRHADHTAGSRGLHARTGAPVRAADPAHCHGGDPLADGEVVEAGGLRIEVLATPGHTADSVSLVVTVPGEEPVVLTGDTVLGRGTTVIAEPDGSLRDYLASLDTLERVGDDRLGVPAHGPELPDLGEAVRAYRIHRLKRLDQIRAALATLGPDAAADDVVAHVYADVDPSVRGAARQSVAAQLAYLRGA				NA	NA	NA	NA	NA
AK001_02620	1053			hypothetical protein	ATGAACGACACCGGCCTGACCTCCTCCCCCGCCCTCTCGGTCCTCGACCTCGTCCCCGTCCGCTCCGGCCAGTCCAGCGCCGAGGCGCTCGCCTCCTCCATGGCGCTGGTCCGCCGCGCCGACGAGCTCGGGTACACCCGCTACTGGTTCGCCGAGCACCACAACATGCCGGCCGTCGCCGCCTCGACGCCCCCGGTGATGATCGCGGCCGCGGCCGCGCGCACCGAGCGGATCCGGGTGGGCTCGGGCGGCGTCATGCTGCCCAACCACGCCCCGCTGGTGGTGGCCGAGCAGTTCGCCGCCCTCGAGGCCCTCGCCCCGGGCCGGATCGACCTCGGCATCGGGCGTGCCCCCGGGAGCGACCCCGTGGTGACAGCGCTGCTGCGCTCCTCCGGGCCGACGTCGGACGTCGACCGGTTCCCCGAGCACGTGCGCAACATCCTGGCCCTCATGGAGCCCGACGGCGCCCAGCTGCGGCTCACCGACGGCAAGACCCACGACGTGCACGCCACCCCGGCCGCGACCGGCGCCCCGACCCTGTGGCTGCTCGGGTCGAGCGACTACTCGGCTCGACTGGCCGCCGAGCTCGGGCTGCCGTACGTGTTCGCCAACCACCTCTCCGGCGCCGGCATCGACCAGGTGCTGGCGCTGTACCGGGACGGCTACCGCCCCAGCGAGGCGCACCCCGAGCCGCAGACCTTCCTCACGGTGAACGCCGTCGTGGCCCCGACCGCCGAGGAGGCCCACGAGCGCACGCTGCCGCAGCTGCGGGCGATGGCCCGGCTGCGCACCGGCAAGCCGATGGGCACCGCCGAGACCGTCGAGGAGGCGCTGGCCACCCCGCTGGACGGCCTGGGCCAGCAGATGGTGGAGGACATGCGCGCCCGGTGGCTCATCGGCACGCCGGACGAGGCCCGTGCCGAGGTCGCCCGCCTGGCCGAGCGCCACGGCGCCGACGAGGTGATGATCGTCCCGGTGGCCGGCACCTACGCGACCGAGCCGCTGGACGCCACGCCCGGCCGGGTGCAGACGCTGGAGCTGCTGGTCGGCTGA	MNDTGLTSSPALSVLDLVPVRSGQSSAEALASSMALVRRADELGYTRYWFAEHHNMPAVAASTPPVMIAAAAARTERIRVGSGGVMLPNHAPLVVAEQFAALEALAPGRIDLGIGRAPGSDPVVTALLRSSGPTSDVDRFPEHVRNILALMEPDGAQLRLTDGKTHDVHATPAATGAPTLWLLGSSDYSARLAAELGLPYVFANHLSGAGIDQVLALYRDGYRPSEAHPEPQTFLTVNAVVAPTAEEAHERTLPQLRAMARLRTGKPMGTAETVEEALATPLDGLGQQMVEDMRARWLIGTPDEARAEVARLAERHGADEVMIVPVAGTYATEPLDATPGRVQTLELLVG				NA	NA	NA	NA	NA
AK001_02621	1104			hypothetical protein	ATGGTCGACGAACGAGGCCCGAGGGTGGTCCGTGCCCTGTACAACGCCTGGCTGCGCTATCCGCGGCTGTCGATGGCGGTCCGCGGCGGCATCGCGGCCGGGCTGGCGTGGCTCGTGGGGATCTACGTGCCCCATCCGCTGGGGGACTTCCCCTACTACGCCCCGCTCGGGGCGGTCATCGCGACGACGAGCACCGTCGTGCGGTCCGTCCAGGACTCGGTCCGCGTCACCGTCGCGGTGCTGCTCGGCGCGGGGATCGCGCGGCTGGCCGACTGGCTCCTGCCGGTCGGTCCGGTCTCGATCGCGCTCGTCGTCGCCGTCGCGCTGCTGTGCTCGAGCTGGCGCCTCTTCCGCGAGATGGGAAGCTGGGTGGCGACGTCCGCGCTGTTCGTCCTCATCCTCGGCAACGCCGACGCGTTGTCGTTCGTCGGCTCCTTCGCGGGGCTGGTCGCCATCGGAGCCCTCGTGGGGATCGGCGTGAACTTCGCGCTGCCGCCGCTGCAGCTCACCCCCGCGGAGAACGCCCTCGACGGCCTGAGCACGCTGCTCGCCCGCGAGGCCGATGACCTGGCCGACGCGCTGGAGGAGACCGGCGAGATCCCCGCCGAGGACTGGGAGAGCCGCCGTGCCGCGCTGCAGCCGGTGCTGGAGAGGACGCGGGAGTCGGTGCGTCACAGCCGCGAGGCCGCCCGCGTGAACCCGCGGGTCCGGCGCTACCGCCGGTGGACCCGGGGGCAGGACGCGCGTGCGCGGGAGCTGGAGACCGTCGCCGCGTCCGTCGACGTCGTCGTCACGCTGCTGGTCGACACCGGTGAGCCGGTGCGCCTGCCCGACGGCCTGCGCGATCCGCTCGCCGGGTCGTTGCGGTCGTTGTCCGCGGTGCTGCACGCCGACGCCTGGGGTGCGGACCGGGACGAGCTCGTCGACTCGCTGCAGGGACAGGTCCGCGAGTTCCGGTCCCGGTTGCTGGAGCTGGACACCCCGCCCGGTGAGGGGCTGGTGGCCGGATCGGTCGCCGTCGCGCTCCGCCGCGCGTCCGACGCCTTCACGCGGGTGCGGCCGGACGACGCCGACGAGGAGGTCGTCCAGGGGGACCCGCAGTAG	MVDERGPRVVRALYNAWLRYPRLSMAVRGGIAAGLAWLVGIYVPHPLGDFPYYAPLGAVIATTSTVVRSVQDSVRVTVAVLLGAGIARLADWLLPVGPVSIALVVAVALLCSSWRLFREMGSWVATSALFVLILGNADALSFVGSFAGLVAIGALVGIGVNFALPPLQLTPAENALDGLSTLLAREADDLADALEETGEIPAEDWESRRAALQPVLERTRESVRHSREAARVNPRVRRYRRWTRGQDARARELETVAASVDVVVTLLVDTGEPVRLPDGLRDPLAGSLRSLSAVLHADAWGADRDELVDSLQGQVREFRSRLLELDTPPGEGLVAGSVAVALRRASDAFTRVRPDDADEEVVQGDPQ				NA	NA	NA	NA	NA
AK001_02622	510			hypothetical protein	GTGAGCCTGACGATCCGCACCGCGACCCCCGACGACGTCCCCGCGATCCTCCGCCTGGTCCACGCGCTGGCCACCTACGAGCGCGAACCCGACGCCGTCGAGGCCACCGAGGACGACTTCTCGGCGGCCCTGTTCCCGACGTCGGGCACCCCGACCACCCACGGGCTCGTCGCGGAGGTCGACGGCGAGGTCGTCGGCATCGCGATCTGGTTCACCACGTTCTCGACCTGGACCGGCAAGAACGGGATCTGGCTCGAGGACCTGTTCGTCGACCCCGCCCACCGCGGCGCCGGTGCCGGCCGGGCGCTGCTCACCCGCCTGGCCGAGATCTGCGTCGAGCGCGGCTGGCGCCGGCTCGAGTGGTGCGTCCTGAACTGGAACGAGTCGGCGATCGCGTTCTACCGGTCGCTCGGGTCCACCCCGCAGGACGACTGGACCACGCACCGCGTCGACGGGGCGGCCCTGACCGCACTGGCCTCCGGCGCGGCGACCACGACGGCCGCGACCTGA	MSLTIRTATPDDVPAILRLVHALATYEREPDAVEATEDDFSAALFPTSGTPTTHGLVAEVDGEVVGIAIWFTTFSTWTGKNGIWLEDLFVDPAHRGAGAGRALLTRLAEICVERGWRRLEWCVLNWNESAIAFYRSLGSTPQDDWTTHRVDGAALTALASGAATTTAAT	PGPT0007790_1296	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657	NA	NA
AK001_02623	1272	metZ	COG0626	O-succinylhomoserine sulfhydrylase	GTGAGCCGCACCGAGATCCCCACCGGCCCCGGTGCCAACCCGGTCGCCCACGGCGGCTCCGGCCGCGGTCCCCTGCCCGACGGCGTCCGTCCGGCCACGCTCGCCGTCCGTGGCGGTCACCGGCGCAGCGACTTCGAGGAGATGTCCGAGGGGCTCTTCCTCACCCAGGGGTACACCTACGGCTCCGCCGCCGACGCGGAGGCCGCGTTCGCCGGCGAGACGTCGCGGTTCATGTACTCGCGCTACGGCAACCCGACCGTGCACACCTTCGAGGAGCGGTTGCGCCTCGTCGAGGGCGCCGAGGCCTGCTACGCCACCGCGACCGGCATGTCCGCCGTGTTCACCACCCTGGCGGCACTGGTGTCCGCCGGGTCCCGCATCGTCTCGGCGCGCGCGCTGTTCGGCTCCACCAACGTCATCTACGACGAGATCCTTGCCAAGTGGGGGGTGCAGGTCGACCTGGTCGACGGCCACGAGATCGACCAGTGGGCCGAGGCGCTGGCCACGCCCGCGGACGTCGTGTTCTTCGAGTCGCCGTCCAACCCCATGCAGGACCTCGTCGACGTGCGCCGGGTGTGCGAGCTCGCCCACGCCGCAGGCGCGACGGTCGTCGTCGACAATGTGTTCGCCACCCCGATCCTGCAGAAGCCGCTCGAGCTCGGCGCCGACGTCGTGGTGTACTCCGCGACCAAGCACATCGACGGCCAGGGCCGGGTGCTCGGCGGGGCGATCCTCGGCACGGAGGAGTTCCTGTCCGGGCCGGTCCAGACGTTCCTTCGCCACACCGGGCCGTCCCTGAGCCCGTTCAACGCCTGGGTGCTGCTCAAGGGTCTGGAGACCCTCGACGTCCGCGTGCGGGCGCAGAACGCGGCCGCCCTGCAGGTCGCCACGGCGCTCGAGGGCCTCGACGGCATCCGCCGGGTGCTCTACCCGTTCCTGCCGTCCCACCCGCAGCACGCCCTGGCGCTGGAGCAGCAGACCGGCGGCGGCACCGTGGTCACCTTCGAGCTGGAGACCGACGACGGCGCGGACCCGGACGAGGCCAAGCGACGCACCTTCCGGTTCCTGGACGCGCTGCGGATCGTCGACCTGTCCAACAACCTGGGCGACGCCAAGTCGATCATGACCCACCCGGCCACCACGACGCACCGCAAGCTCGGTGCCGAGGGGCGGGCCGCCGTCGGCATCACCCCCACGACGGTGCGCCTGTCGGTCGGGCTCGAGGACCCGCTGGACCTCGTCGAGGACGTCGCCCAGGCCCTGCGCGCCTGA	MSRTEIPTGPGANPVAHGGSGRGPLPDGVRPATLAVRGGHRRSDFEEMSEGLFLTQGYTYGSAADAEAAFAGETSRFMYSRYGNPTVHTFEERLRLVEGAEACYATATGMSAVFTTLAALVSAGSRIVSARALFGSTNVIYDEILAKWGVQVDLVDGHEIDQWAEALATPADVVFFESPSNPMQDLVDVRRVCELAHAAGATVVVDNVFATPILQKPLELGADVVVYSATKHIDGQGRVLGGAILGTEEFLSGPVQTFLRHTGPSLSPFNAWVLLKGLETLDVRVRAQNAAALQVATALEGLDGIRRVLYPFLPSHPQHALALEQQTGGGTVVTFELETDDGADPDEAKRRTFRFLDALRIVDLSNNLGDAKSIMTHPATTTHRKLGAEGRAAVGITPTTVRLSVGLEDPLDLVEDVAQALRA	PGPT0020020_1157	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761	NA	NA
AK001_02624	456			hypothetical protein	ATGAACGCACCGATCGAACCCCGACCCGCCGAGGGCTACGCCGGGGACCTGACCCCCCAGCAGGCGTGGGACCTGCTCGCCGACGACCCCGGCGCCGTCCTGGTGGACGTGCGCACCGAGGGCGAGTGGCGCCTGATCGGCGTGCCCGACGTCGGCTCCCTGGACAAGGAGGTCGTGTTCAGCCAGTGGGTCACCGGCGACGGCCGGCCCAACCCCGCCTTCCTGGCCGAGCTCGAGACCGCCGGCGTGACGACCGACCAGGCCGTGGTGTTCCTGTGCCGCTCCGGCCAGCGCTCCATCGGCGCGGCCCGCCTGGTGACGTCCGCCGGGTACGGCCCCGCCTACAACGTGCTGGAGGGCTTCGAGGGGCCTGTCGGCCCGCTCGGCGCCCGCGACCAGGCCGGCTGGAAGGTCCGCGAGCTGCCGCACACCACCTTCGCGGAGCCGAGCCGGTGA	MNAPIEPRPAEGYAGDLTPQQAWDLLADDPGAVLVDVRTEGEWRLIGVPDVGSLDKEVVFSQWVTGDGRPNPAFLAELETAGVTTDQAVVFLCRSGQRSIGAARLVTSAGYGPAYNVLEGFEGPVGPLGARDQAGWKVRELPHTTFAEPSR				NA	NA	NA	NA	NA
AK001_02626	1434	sufS	COG0520	Cysteine desulfurase	ATGACCGCGATCGCCGAGACCCCCGCCTGTCCGGGGACCCCCACCGTGGGCGACCTGGCCCCGGTGCTGCCCGTCGTCGGGCACGACACCCGCGCACCGCTGGTGGACGGCCGCCAGGTGCCCTACGCCAACCTCGACGTCGCCGCGTCCGCCCCGGCGCTGCAGGACGTCGCCGACCGCATCACGCAGACGCTGCCGCTCTACGCCTCCGTGCACCGCGGTGCCGGATACCTCTCCCAGGTGTCCACCACCCTGTACGAGCAGTCCCGGCGCGTGATCGGCGAGTTCGTCGGCGCGCGGGACGACGACGTCACGCTGCTCGTGCGCAACACGACCGACGCGCTCAACCTGCTCGCCGGGTGCGTGCCCGCGTCCGACGACGGCACGCCCGGCCGGGTGCTCGTCCTCGACGTCGAGCACCACGCGAACTTCCTGCCCTGGCAGCGCCAGGCCGACGCCACCGTGCTGACCGGCCGCGACACCGTGGCCGAGACCGTGGCGGCGATCCGCGACGAGCTCGCCGCCGGTCTCGCCGCGGGCCGGGGATACGCCCTGCTCGCGGTCACCGGTGCCTCCAACGTCACCGGGGAGACGCTGCCCGTGGCCGACGTCGTCGCCACCGCCCACGCGGCCGGCGCGCGGGTGCTGCTCGACGGCGCCCAGCTCGTGCCGCACCGCCGCTTCTCCCTGGCCGAGACCGGTGTCGACTACCTCGCCTTCTCCGGGCACAAGACCTACGCCCCGTTCGGCGCCGGCGCCCTGGTCGGCCGCCGGGACTGGCTCGACAGCGGGACCCCGTACCTCGCCGGCGGCGGGGCCGTGCGCAGCGTGCGGGTGGAGCGGACCGACTGGCACGACGGGCCCGCCCGCCACGAGGCCGGGTCGCCCAACGTGCTGGGCGCGGTGGCGCTCGCCGCCGCGTGCGAGTCGCTGGCCGCCCTCGACGCCGACGCGCTGCGCGCCCACGAGGACGCGCTGCGGGCCCGGCTCGTCGACGGGCTGGAGAACACCGCCGGGGTCGAGGTCGTGCGGCTGTGGACCGACGCCCCGGACACCGTCGGCGTCGTGACCTTCACGGTCGCCGGGTACGAGCCCGGCCAGGTCGCCGCCTACCTCTCGGCCGAGCACGGTATCGGCGTGCGCGACGGCCGGTTCTGCGCCCACCCGCTGCTGTCCCGCCTCGGCTACGGCGCGGGAGCGGTGCGCTCCTCGGTCGGCGTCGGCACCGCCGGCGAGGAGGTGGAGCGGCTCGTCGCCGCCGTCGCCGCCCTCGTGGCCGACGGCCCGCAGGCCCGCTACGACGTCGTCGACGGCCTGTGGATCGTCGTCGACGACCCGCGTCCCGTGCCCGAGGGGTCGGGGCTGGCCGGCCTGCTCGCCACCGCCGGACCCGGCGGCGACGAGGCGTTCGGCTGCCTGCCCGAGGACGCCTGA	MTAIAETPACPGTPTVGDLAPVLPVVGHDTRAPLVDGRQVPYANLDVAASAPALQDVADRITQTLPLYASVHRGAGYLSQVSTTLYEQSRRVIGEFVGARDDDVTLLVRNTTDALNLLAGCVPASDDGTPGRVLVLDVEHHANFLPWQRQADATVLTGRDTVAETVAAIRDELAAGLAAGRGYALLAVTGASNVTGETLPVADVVATAHAAGARVLLDGAQLVPHRRFSLAETGVDYLAFSGHKTYAPFGAGALVGRRDWLDSGTPYLAGGGAVRSVRVERTDWHDGPARHEAGSPNVLGAVALAAACESLAALDADALRAHEDALRARLVDGLENTAGVEVVRLWTDAPDTVGVVTFTVAGYEPGQVAAYLSAEHGIGVRDGRFCAHPLLSRLGYGAGAVRSSVGVGTAGEEVERLVAAVAALVADGPQARYDVVDGLWIVVDDPRPVPEGSGLAGLLATAGPGGDEAFGCLPEDA				NA	NA	NA	NA	NA
AK001_02627	1461	amiB2	COG0154	Putative amidase AmiB2	ATGGACGCCCTGCACGAGCAGACCGCCCTGGAGCTCCGTGACCGGCTGCGCGCCGGTGACCTCACCCCGGGCGAGGTGACCGACCACTTCCTGGACCGCATCGCGGCACGCAACGACGAGCTCGGTGCGTTCGCCCACGTCACCCCGGACGCCGCCCGCGAGCGTGCGACAGCCCTCGCAGCAGACCCGGCGTCGCCGCCGGGCACCCTGTGGGGCCTGCCCACGGGCGACAAGGACCTGTGGAACCGGGCGGGAGTCCCGAGCGGGTTCGGGTCGCGCGCGATGGCCGGTTTCGTCCCCGAGGAGTCCGACGACGTCGTGCGCGACCTCGACGCCGCCGGGATCGTCAGCCTGGGCAAGACCGCCACCCCGGAGCTCGGCTTCCCGGCGTACACCGAACCGGTGGCCGGTCCCGTGGCGCGCAACCCGTGGGACCTGACCCGCGGCGCCGGCGGCTCCAGCGGCGGGGCGGCCGTCGCCGTGGCCGCCGGTCTGCTGCCGTTCGCCCCCGGGTCCGACGGCGGGGGTTCCGTCCGGATCCCGGCCGCGGCGTGCGGCGTGGTCGGGCTGAAGCCCTCGCGCGGCCTGCTGCCGGCGGGGTCCGGCATCGAGGGACTCGGCGGTCTCGTGGTCAACGGGCCGATCGCCCGCACGACGGCGGACACGGCGCTGCTGCTGGAGGGGATGCTGCGCCGCTCGTCGAACGGGCACGTCGACCACCGGTTCACGCTGCGCACCCCGGCGGCGCACGCCGGGGCGTACCTGGCGGCCGCGCAGTCCGGCGAGGTGCCGGGACGGGACGAGGACGGCGGCCGGTTCCGCGTCGGGGTCACCACCTGGAACGCCTGGCAGTACTACTACGACGTCACCGTCTCGCCGGAGGCGCGCGCCGCGCTGGACGCCGGGGTCGACGCGCTGGCGGGTCTGGGTCACGGCGTCGAGGAGCACACCTGGGAGCCGGTGCCCGAGTTCGGCGACGCCTTCCGCAGCCTGTGGATGGGCGGCGCGTCGGCGGTGCCGATCGACGACGACGCCGTGCTGGACCAGCTCGAACCGCTGACGTCGTGGCTCATCCGCCGCGGACGGCAGGTGGGCGCCCGCGAGCTCGCCGAGGCGCTGGCGACGCTGACGCAGTTCGAGCGTCGGCTCATCGCGGGCCTGGGCGAGCTGGACGCCGTGATCACCCCGGCCCTGGCCATGACGCCGCGGCCGATCGGCTGGTTCGACCCCGAGGACGCGGACCGTAACTTCGTCCAGCAGTGCCAGTACACGCCGTTCACGTCGTGGTTGAACGTGGCGGGGCTACCGGCGATCACCGTGCCGACGTACTGGACCGAGGACGGGCTGCCCATGGGCGTGCAGATCATCGGCCGCCCGGGCGGGGAGCTGACGCTGCTCGCGCTGGCCGCTCAGCTCGAGGACGTGCTGCGCTGGCCGGAGAGGCACCCACCCGTCTGGTAG	MDALHEQTALELRDRLRAGDLTPGEVTDHFLDRIAARNDELGAFAHVTPDAARERATALAADPASPPGTLWGLPTGDKDLWNRAGVPSGFGSRAMAGFVPEESDDVVRDLDAAGIVSLGKTATPELGFPAYTEPVAGPVARNPWDLTRGAGGSSGGAAVAVAAGLLPFAPGSDGGGSVRIPAAACGVVGLKPSRGLLPAGSGIEGLGGLVVNGPIARTTADTALLLEGMLRRSSNGHVDHRFTLRTPAAHAGAYLAAAQSGEVPGRDEDGGRFRVGVTTWNAWQYYYDVTVSPEARAALDAGVDALAGLGHGVEEHTWEPVPEFGDAFRSLWMGGASAVPIDDDAVLDQLEPLTSWLIRRGRQVGARELAEALATLTQFERRLIAGLGELDAVITPALAMTPRPIGWFDPEDADRNFVQQCQYTPFTSWLNVAGLPAITVPTYWTEDGLPMGVQIIGRPGGELTLLALAAQLEDVLRWPERHPPVW	PGPT0006115_4157	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426	NA	NA
AK001_02628	1014			hypothetical protein	GTGACGGCGGCGCCGCCGCGCACGGCCGACGGCCGCGAGCTGCGCGTGGAGACCCAGCCCGGACTGCCCGGGCTGGGCGGCCTCTACGCCCGCGGCGCGGCGGCGTCGGGCCGGATCGCCGCGGGCCGCGCCCTGCCGTCCCTGCCGGTCATCGGCGAGGGCCGGTCGCCGGACGGGCAGCCGGGGACCGCCGGGTCCGACCTGTCGCTGCCCGACGTCGCCTACCGGGTCTCCGGGGTCGGCACCGACGGCTTGGAACGGCACCTGCACGACTACCAGCGGCTGCTGCACGAGCCGGTCAGCAGCACGCTGCCCGCCGGGTACCTGCACGTGCTCGCCTTCCCGCTGGGCACCGCGGTCATGGTGCGCGGCGACTTCCCGCTGCCGCTGCTCGGCATGGTCCACGTGGCCAACCGGGTCGACGTGCGGGGGCCGGTCGTCCTGGGCGACGTCCTCGACGTGCGGGCGTGGGCGGAGAACCTCCGTCCGCACCGGCGCGGGGTGCAGCTCGACCTGGTGGCCGAGGTGCGCCACGACGGCGCGGACGCCGCCGCGCCGCCGGTGTGGCGCGGGGTGTCGACCTACCTCGCCAAGGGGTTCGAGCTGCCTGCGAAGGGCCAGTCCGGGTCGTCCGGATCCGGGTCCACCGACGAGTGGACCCCGCCGCTGCCCACCGGCCGGTGGGCGCTGGGGCCGGAGACGGGCCGTGCCTACGCGGCCCTGTCCGGGGACCGCAACCCCATCCACATGTCGGCGCTCTCGGCCAAGGCCTTCGGCTTCCCGCGGGCCATCGCGCACGGCATGTACACCGCGGCGCGGGCGCTGGCCGACGTCGGCCCCGGACGCGGGGACGCCTACCGGTGGACGGTCGAGTTCGGCAAGCCCGTGCTGCTGCCCGGCACGGTGGACGTGGCGATCACGCCCGGCGCGGAGGACGGGTCCGGGTACTCGTACGTGGGCTGGAACGCCCGCAAGGGGCTGCGGCACCTCTCCGGCGAGGTCGTCCCGCTCTGA	MTAAPPRTADGRELRVETQPGLPGLGGLYARGAAASGRIAAGRALPSLPVIGEGRSPDGQPGTAGSDLSLPDVAYRVSGVGTDGLERHLHDYQRLLHEPVSSTLPAGYLHVLAFPLGTAVMVRGDFPLPLLGMVHVANRVDVRGPVVLGDVLDVRAWAENLRPHRRGVQLDLVAEVRHDGADAAAPPVWRGVSTYLAKGFELPAKGQSGSSGSGSTDEWTPPLPTGRWALGPETGRAYAALSGDRNPIHMSALSAKAFGFPRAIAHGMYTAARALADVGPGRGDAYRWTVEFGKPVLLPGTVDVAITPGAEDGSGYSYVGWNARKGLRHLSGEVVPL				NA	NA	NA	NA	NA
AK001_02629	1344			hypothetical protein	ATGACCGACCGCTACACGAAGGCCGTCAACTCCGGGTTCACGAAGACCCTCGCGACGAGGCTCGGCCTGCCCCGCCCCGCGATCCTGCGCCGCTACCGCGCCGGCGACCCGCTGACCGTGGGCCCCGTCCTGGTGGTGTCCGACGGCGCCTCCAAGGCCGACGCCGACGCCGTCGCCCAGACGCTGCTCGGCTGGGACCTCGACGTGCGCCGCGACCCGACCGACGACGTCCGCTGGGGCGCCGTCGTCCTCGTGCTGACCGAGACCGCCCGGCCCGCCGACGCCTCCGAGGCGGTGCTGGCCGTCGGGTCCGTGCTGCGACGGCTGGCGGGCAACGGCCGCGTCGTCACCGTCTCGCGCGCTCCCGCCGACGGCGACACCCCGGAGCTCGCTGCGGCCCGGAACGCCGTCGACGGGTTCCTGCGCTCGCTCGCCAAGGAGCTGCGCGGCGGGGCCACCGGCAACGGGATCGTCCTGACCGGTGGCGCGGCCCTCGACCAGACCTCCGTGCGGGCCACGCTGCGGTTCTTCCTGTCCGCGAAGAGCGCCTATGTCGACGGCCAGCTCCTGCCGGTCGGCCCGGCCGACGCGGCGCTCCCGGAGGAGTGGGACCGTCCGCTGGACGGGAAGGTCGCCGTCGTCACCGGCGCGGCCCGTGGCATCGGCGCGGCCATCGCCCGCACGCTGGCCCGCGACGGCGCCACCGTGGTGTGCGTCGACGTCCCCGCCGCCGGGGAAGGACTGGCCCGCACCGCCAACGCGGTCGGCGGGACGGCCCTGCAGCTCGACGTCACGGCCGAGGACGCCGGGCAGCGGATCCTGCAGCACGCCCGCGAGCGCCACGGGGGCCTCGACGTCGTCGTGCACAACGCGGGCATCCTGCGGGACAAGCTGCTCGCCAACATGAAGCCCGCCCAGTGGGACGCCGTGATCGCGGTGAACCTCGCCGCCCAGCTGCGGATCAACGAGGCGCTCCTCGACGCCGGCCTGGACGGGCTGCACGTGGTCTCGCTGGCCTCGACCTCCGGCATCGCCGGGAACAAGGGGCAGACCAACTACGCCTTCTCCAAGGCGGGCGTCATCGGGCACACGCGGGCCACGGCCCCGCTCCTCGGCGCCCGCGGCGGGACGGCCAACGCCGTCGCCCCCGGGTTCATCGAGACGGACATGACGGCATCGATCCCGTTCGCCACCCGGTCGGTGGCGCGGCTGCTGCCGACCCTCTCCCAGGGTGGCGAGCCGGTCGACGTCGCCGAGGCCATCGCGTTCCTCGCCTCACCGGCCGCAGCCGGCGTCAACGGCCAGGTGCTGCGCGTCTGCGGGCAGCACATGGTGGGACAGTGA	MTDRYTKAVNSGFTKTLATRLGLPRPAILRRYRAGDPLTVGPVLVVSDGASKADADAVAQTLLGWDLDVRRDPTDDVRWGAVVLVLTETARPADASEAVLAVGSVLRRLAGNGRVVTVSRAPADGDTPELAAARNAVDGFLRSLAKELRGGATGNGIVLTGGAALDQTSVRATLRFFLSAKSAYVDGQLLPVGPADAALPEEWDRPLDGKVAVVTGAARGIGAAIARTLARDGATVVCVDVPAAGEGLARTANAVGGTALQLDVTAEDAGQRILQHARERHGGLDVVVHNAGILRDKLLANMKPAQWDAVIAVNLAAQLRINEALLDAGLDGLHVVSLASTSGIAGNKGQTNYAFSKAGVIGHTRATAPLLGARGGTANAVAPGFIETDMTASIPFATRSVARLLPTLSQGGEPVDVAEAIAFLASPAAAGVNGQVLRVCGQHMVGQ	PGPT0003180_562	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_02630	1344	fadI	COG0183	3-ketoacyl-CoA thiolase FadI	GTGGCCACTCGCCAGACCTCCCGTGCCCAGACCGCCGGCGCGGCACAGGGCCCGCGCGACGCCGTCGTCGTCGGCGGCAACCGCATCCCCTTCGCCCGCGCCGGGAAGAAGTACGCCGACGCCTCCAACCAGGAGATGTTCACTGCCGCCCTCGAGGGACTCGTCGCCCGGTACGGGCTGCAGGGCGAGCGCCTCGGCGAGGTCGTCGGCGGTGCCGTGCTGAAGCACTCGCGCGACTTCAACCTCGTGCGCGAGTCCGTGCTGGGCTCGTCGCTGTCGCCGCAGACCCCCGCGTTCGACCTCCAGCAGGCCTGCGCCACCGGCCTCGAGGCCACCATCACCATCGCCAACAAGATCCGCCTCGGCCAGATCGAGTCCGGCGTCTCCGGCGGCACCGACACCGTCTCCGACGCGCCCATCGCCGTCAGCGAGGGCATGCGCCGCGCGCTGCTGGACGCCGGTCACGCCAAGACCTGGCAGGACCGCGCCAAGGCGCTCGCCCGGATCCGCCCCGCGGACCTCAAGCCGCTCAGCCCCGCTACCGACGAGCCGCGCACCGGCCTGTCGATGGGCGAGCACCAGGCCGTCACCACCGCCCGGTGGGGCATCACCCGCGAGGCCCAGGACGAGATCGCCCTCGCCAGCCACCAGCACCTCGCCGAGGCCTGGGAGTCGGGCTTCTTCGACGACCTCGTCACCCCGTTCCGGGGCCTGACGCGGGACGACAACATGCGCCCCGACACCTCGGCCGAGAAGCTCGCCGGCCTCAAGCCGGTCTTCGGCCGGTCGCTCGAGACGCCGGCGACCATGACCGCCGGCAACTCCACGCCGCTGACCGACGGTGCCTCCACGGTGCTGCTCGGGTCGCGCGAGTGGGCCGAGGCCCACGACCTGCCCGTGCTGGCCCGCTTCGTCGACGCCGAGACGGCCGCCGTGGACTTCGTGCACGGCCGCGAGGGCCTGCTCATGGCCCCGGTGCACGCCGTGCCGCGGCTGCTGGCCCGCAACGGCCTGAGCCTGGAGGACTTCGACTTCTTCGAGATCCACGAGGCGTTCGCCTCCACCGTCCTCACGACGCTGGCCGCCTGGGAGGACGCCGACTACGGCAAGAACGAGCTCGGCCTGCCCGGCGCGTTCGGCTCCCTGGACCGCAGCAGGATCAACGTGCACGGCTCCTCGCTCGCCGCCGGGCACCCCTTCGCCGCGACCGGCGGGCGAATCGTCGCCACCGCCGCGAAACTGGTGGCGACGAAGGCCGCCGAGACCGGCAAGCCGGCCCGCGCGCTGGTCTCCGTGTGCGCCGCCGGCGGCCTCGGTGCCACCGCCGTCCTCGAGTCCGTCTGA	MATRQTSRAQTAGAAQGPRDAVVVGGNRIPFARAGKKYADASNQEMFTAALEGLVARYGLQGERLGEVVGGAVLKHSRDFNLVRESVLGSSLSPQTPAFDLQQACATGLEATITIANKIRLGQIESGVSGGTDTVSDAPIAVSEGMRRALLDAGHAKTWQDRAKALARIRPADLKPLSPATDEPRTGLSMGEHQAVTTARWGITREAQDEIALASHQHLAEAWESGFFDDLVTPFRGLTRDDNMRPDTSAEKLAGLKPVFGRSLETPATMTAGNSTPLTDGASTVLLGSREWAEAHDLPVLARFVDAETAAVDFVHGREGLLMAPVHAVPRLLARNGLSLEDFDFFEIHEAFASTVLTTLAAWEDADYGKNELGLPGAFGSLDRSRINVHGSSLAAGHPFAATGGRIVATAAKLVATKAAETGKPARALVSVCAAGGLGATAVLESV	PGPT0008320_641	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
AK001_02631	717			putative HTH-type transcriptional regulator	ATGACGGTCGCAGCACACGGGACGAACCAGGCCGCCCGCACGCGGCCCGACGGACGCTCGACCCGGTGGGACGACCACCGTGCCCAGCGTCGTGCCTCGCTCGTGCGCGACGCCCGGCGGGCGATCCACGAGATCGGTCCGGGGGCGTCCATGGACGAGATCGCCGCCATGGCCGGGACGTCGAAGTCGATCTACTACCGCTACTTCGACGACAAGGCCGGACTGCGTCTGGCCGTGGCCGAGTCCGTGGTCCGCGGCATGCACCGCCGGCTGGCCGAGGCCGCCGAGGAGGCGCCGACGCCGCACTCCGCCCTGCGCGCCATGGTCCGCACGTACCTGCAGACCATCGAGAGCTCGCCCCCGGTCTACTGGTTCGTCACCCGCACGGCGCTCGGCGGCAACGAGCCGGACGACGGCACCAGCCGCGTCGAGGCGCTCGGCGCCTACCTGGACTCGGTCATCACCCTGGTCGCCGAGCCGTTCGCCCGCGCCGTCCACGTCCCGCCGACCACGGCGGCCGCCTGGGCCGCCGGTGCCGTCGGCTTCGTCCGCGGCGCGGGGGAGTGGTGGCTCGGCCACACCCGCGCCGAGGGCCTGACCCGCGACGACCTCACCGACCAGGTGACCACCTGGCTCTGGAACGGGCCCGTCGGTGTGCTCCACCACGACGCACCGGACGGGTCCGCGCCGTCCCGCCCCACCGAGAAGCAGGAGTGA	MTVAAHGTNQAARTRPDGRSTRWDDHRAQRRASLVRDARRAIHEIGPGASMDEIAAMAGTSKSIYYRYFDDKAGLRLAVAESVVRGMHRRLAEAAEEAPTPHSALRAMVRTYLQTIESSPPVYWFVTRTALGGNEPDDGTSRVEALGAYLDSVITLVAEPFARAVHVPPTTAAAWAAGAVGFVRGAGEWWLGHTRAEGLTRDDLTDQVTTWLWNGPVGVLHHDAPDGSAPSRPTEKQE				NA	NA	NA	NA	NA
AK001_02632	2100			hypothetical protein	ATGACGACGACGTCCACACCGCACCCGGCCACCACCACCGACCGCGACAGCGCCGCCTCGGCGCCTCGCGACGAGGACGTGCGCCTCGACGTCGAGTCGGTGTCCGAGCTGCTCCTGGGACGCTGGCCCGAGTACCGCCGTGCGGCCCGCGAGCGCGCCGGCGACCCCCGGTTCCACAAGGACGAGTCCCTCACCCCGGCCGAGCACCGCGAGCGCGTGCTGGAGCAGATGCGCCTGATGGTGGGCGACGGCACGAAGCTGTCCTGGCTCGCGTTCCCCGAGCGGATGGGCGGCCTCGACGAGCCCGGCGCGAACCTGGCCTGCTTCTCCGAGCTCGTGGCCGCCGACCCGTCCCTGCAGATCAAGTCGGGCGTGCAGTGGGGCCTGTTCTCCGCCGCCATCCTGCACCTGGGCACCCCCGAGCAGCAGGACCGGCTGCTGCCGGCCGCGATGGACCTGTCGGTGCCCGGGGCCTTCGCGATGACCGAGACCGGCCACGGCTCGGACGTCGCGGCCATCGGCACGACGGCCACGTACGACCCGGAGACCGAGGAGTTCGTCCTGGACACCCCGTTCCGCGGGGCGTGGAAGGACTACCTCGGCAACGCTGCCCTGCACGCCACGGCGGCGACGGTGTTCGCCCAGCTCGTCACGAACGGCGTCAACCACGGCGTGCACTGCTTCTACGTCCCGATCCGGGACGCGGAGACGATGGAGTTCCTGCCCGGTGTCGGCGGCGAGGACGACGGCCTCAAGGGCGGGCTGCGCGGCATCGACAACGGCCGCCTGCACTTCACCGGTGTCCGGGTGCCGCGGACGGACCTGCTCGCCCGCTACGGCACGGTCGACGCCGACGGCACCTACAGCTCGCCGATCGAGAGCCCGGGCCGCCGCTTCTTCACCATGCTCGGCTCGCTCGTCCAGGGGCGCGTCTCGCTGGACGGCTCCGCGGTCAACGCCGCCAAGATCGGCCTGGCCATCGCCGTGCGGTACGCCGCCGAGCGTCGCCAGTTCGCCGGCGGGGGCACCGAGGAGACCGTGCTGCTGGACTACGCCACGCACCGGCGTCGGCTCTTCCCGGCGATCGCCGAGGCGTACGCGGGCCACTTCGCCAACGAGCGGCTGCTGGACCTGTTCGACGACGTCTTCTCCGGCGAGCACGACACCCCGGAGCGGCGCGAGGACCTCGAGACGACGGCGGCCGCCCTGAAGTCGACCTCCACGCGGTTCGCGCTCGACACGCTCCAGGAGTGCCGCGAGGCCTGCGGCGGTGCCGGGTTCCTCACCGAGAACCGCATCACGTCGCTGCACGCGGACCTCGACGTCTACGCGACCTTCGAGGGCGACAACACCGTCCTGCAGCAGCTCGTCGCCCGTCGGCTGGTGGCCGACTACGGCCGCGAGGTCAAGGGCGCGACGAAGACTCCCGCCGGCATGGCACGGTTCGTCGTCGAGCGGGCCACCAGCGCGGCCCTGGACCGCACCGGGCTGCGGCGTGTCTCCCAGGCCATCGCCGACGTCGGCGACCCGCGCCGGGCCGCCGGGCACCTGCGCGACCCGGAGACGCAGCGCGAGCTGCTCGCCGACCGCGTGGCCACGATGGTCGAGGACGTGGCCATGGCGCTGCGGCCCGCCCAGAAGGCGGAGCCGGCCGAGGCCGCCCGGATCGTCGACGAGAACCAGACGGCGCTCGTTGAGGCGGCGAAGGCGCACGCCGACCTGCTGCGCTGGGAGGCCTTCACCGCGGCGCTGCCGACGTTCGAGGACCCGGGCACCCGTCGGATCATGACCTGGGTGCGGGACGTCTTCGGCCTGACCGTCATCGAGCGCCACCTGACCTGGTACCTGCTCAACGGGCGGCTGTCGGACCAGCGGGCGCGCACCGTGACCGGGTACGTCGACCGCCTGCTGCGGCGGCTGCGCCCGCACGCGGTCGACCTGGTCGACGGGTTCGGCTACGGCCAGGAGCACCTGCGGGCCGCGATCTCCTCGGGCGCCGAGGCGGAGCGCCAGGCGGAGGCCCGTGCCTACTACGCCGCCCTGCGGGCGAGCGGCGAGGCCCCCGTCAGCGAGAAGGCCCTGCGCAAGTCCTCGCGCTGA	MTTTSTPHPATTTDRDSAASAPRDEDVRLDVESVSELLLGRWPEYRRAARERAGDPRFHKDESLTPAEHRERVLEQMRLMVGDGTKLSWLAFPERMGGLDEPGANLACFSELVAADPSLQIKSGVQWGLFSAAILHLGTPEQQDRLLPAAMDLSVPGAFAMTETGHGSDVAAIGTTATYDPETEEFVLDTPFRGAWKDYLGNAALHATAATVFAQLVTNGVNHGVHCFYVPIRDAETMEFLPGVGGEDDGLKGGLRGIDNGRLHFTGVRVPRTDLLARYGTVDADGTYSSPIESPGRRFFTMLGSLVQGRVSLDGSAVNAAKIGLAIAVRYAAERRQFAGGGTEETVLLDYATHRRRLFPAIAEAYAGHFANERLLDLFDDVFSGEHDTPERREDLETTAAALKSTSTRFALDTLQECREACGGAGFLTENRITSLHADLDVYATFEGDNTVLQQLVARRLVADYGREVKGATKTPAGMARFVVERATSAALDRTGLRRVSQAIADVGDPRRAAGHLRDPETQRELLADRVATMVEDVAMALRPAQKAEPAEAARIVDENQTALVEAAKAHADLLRWEAFTAALPTFEDPGTRRIMTWVRDVFGLTVIERHLTWYLLNGRLSDQRARTVTGYVDRLLRRLRPHAVDLVDGFGYGQEHLRAAISSGAEAERQAEARAYYAALRASGEAPVSEKALRKSSR	PGPT0002290_382	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002290-aco|acx-K00232	NA	NA
AK001_02633	339			hypothetical protein	ATGAGGCGGACCGTGGAGAAGGGTCGGAAACTGATGAAGAAGGTGCTCCTCACGGGTGGAGCCGTCGCCCTGGGCGACGGGCTGCTGCTCGGCACGACGATCGCGCTCGGCTGGACCGTGGTGGCGATCCTCCTCGTAGGTGTCGGCGTCGCCGGCGCCACGATGGTCGCGGTGGCGACCCCGGCGCCGCGGACTCCTGCCCGCGCGGCGACCGTCACCCTCGGCCTCCCGCTGCGTGACGCCGCCGCGGAGAGTGCCGACGAACCCGTACCGACGATCGAGCAGGGCGACGGGACGGCCGAGCCGCACGTCGGCGACGCGGCCCCGGTCGCGGCCTGA	MRRTVEKGRKLMKKVLLTGGAVALGDGLLLGTTIALGWTVVAILLVGVGVAGATMVAVATPAPRTPARAATVTLGLPLRDAAAESADEPVPTIEQGDGTAEPHVGDAAPVAA				NA	NA	NA	NA	NA
AK001_02634	459			hypothetical protein	TTGGCGGCGTGGTCGTGGCTTGACCTGCCCGGCAAGAACCCGCGGTTCGCCACCGTGTTCGGCGACGTGCTGCTGGAGTCGCTCGAGGGCTGGTGGTTCCTCGACACGGTCGAGGGCACCCTCGAGCTGCGCTGGCCGACGGCGGTCGAGCTCTCCGCCGAGCTCGACTCCCCGGAGGGCCGCCAGGACCTCCTGCTGGAGGACCTCGTGGTGGAGGCGGCGCAGCGCGGCGTCGTGCCCGAGGCCGACGAGGTCCTGACGTTCATGCCGCACCCCGCCCTCGGCGGGCGGCTGAGCGGCGAGTGCGCCGTGCCCGTGCGCCTCGAGCTGGCCCTGCGCATGTGCGGCGAGGTGCACCGACAGGTCCGTCGTCGGGCCGCCCCGGAACCGTCGCCGCTGCTGCTCGGCCACAGCCTCGGCGCCCACGCCGACTGGGGGACGACCTTGAGCCGTCCCTGA	MAAWSWLDLPGKNPRFATVFGDVLLESLEGWWFLDTVEGTLELRWPTAVELSAELDSPEGRQDLLLEDLVVEAAQRGVVPEADEVLTFMPHPALGGRLSGECAVPVRLELALRMCGEVHRQVRRRAAPEPSPLLLGHSLGAHADWGTTLSRP				NA	NA	NA	NA	NA
AK001_02635	528			hypothetical protein	ATGCCGACCGACCGCCGCCGCACCCGACCCGACCTCGGGGCCGTCGCCGTCAGCGGACTGGCGACGTGCGCCTGGTACGCGGTGCCCGACCTCGTGTCCGGCCGCGGCCGGCGGGCCCTCGTCAAGACCGCCGTGCTGCTGACGGGGATCACGCTCGGGGTGGCCGCGACGCGCGAGGGCCGGCAGGCGCGCTCGGGCCTGCGGGCGGCACAGCGGGACGACCCGGCGTCCCGGCACGACGTCGACGCACCGGCCGGCGTGCCCGACGAGGCGACGGACGTGCCGGCGGACGACGCCACGGCGGTCCCGCCGTCGGTCGCGGTGGCCGTCCTGGGTACCGGGCTGGTGCTCACCGCCGTGCTGACCGTGGCGGGGGAGCGGTGGCTCTACCGCCGGGCCGAGGCGATGCGCGCCCGCGGCGTGCGCGCCCCGCACACCCGGGTGGGGCTCGTCATGGGTGGCGTCGCCGCCGCGCTGGCCGCCCTCGACCCGCCGCTCGCGCAGAGCCCGGCCGCGCCGGCGCGCTGA	MPTDRRRTRPDLGAVAVSGLATCAWYAVPDLVSGRGRRALVKTAVLLTGITLGVAATREGRQARSGLRAAQRDDPASRHDVDAPAGVPDEATDVPADDATAVPPSVAVAVLGTGLVLTAVLTVAGERWLYRRAEAMRARGVRAPHTRVGLVMGGVAAALAALDPPLAQSPAAPAR				NA	NA	NA	NA	NA
AK001_02636	1620	carA2	COG1233	zeta-carotene-forming phytoene desaturase	GTGAGGGTCGTCGTCGTCGGGGGCGGGATCGCCGGGCTCGCCACCGCCGGGCTGCTCGCCCGCGACGGGCACGAGGTCGAGCTGCTCGAGCAGCACGACACGCTCGGCGGCCGGGCCGGGTCGTGGGCCCGCGACGGGTTCCGGTTCGACACCGGGCCGTCCTGGTACCTGATGCCCGAGGTGTTCGACCACTGGTTCGAGCTCATGGGGTCCTCCACCGACGCCGAGCTCGACCTGCGCTCGCTGGAGCCCGCCTACCGGGTGTTCTTCGAGGGGCACGACGACCCCCTGGACGTGCGGCGCGACCGCGCGGCCAACGTGGCCGCGTTCGAGGCCGTCGAGCCGGGTGCCGGCGCGCGGCTGGACCGGTACCTGGACGAGGCCCACGAGGCCTACGACATGGCGCTGGACCACTTCCTGTACACGACGTTCGAGTCCTGGCGCTCGCTGGGCGACCGCCGGGTCCTGGCCCGGGCGCACCGGCTGCTGCCGCTGCTGACCCGGTCGCTGGAGTCGCACGTGGGTCGCCGCTTCGACGACGTGCGCCTGCGGCAGGTCCTCGGCTACCCGGCGGTGTTCCTGGGCTCGGCCCCGGAGCGCACCCCGGCGCTGTACCACCTGATGAGCGCCCTGGACCTGGACGGCGGCGTCCGCTACCCGGCCGGCGGGTTCACCCGGCTGATCGAGGCGATCGCCGACCTGTCCCGCCGCGCCGGCGTGACCGTGCGCACCGGGGCCCGCGCGACGGCGATCACCACCGGCATCGGCGATCGGCCCGACGCGGGCGACGAGCAGCCGCCCGTGCCCGGCCCGCGCCGCCCCCGCGCCCACGTCACGGGGGTGCGCTGGCGCGACGGCGCCGGGCTGGAGCACCACAGCACCGCGGACGTCGTCGTGACGGCCGCGGACCTGCACCACGTCGAGCACGAGCTCCTGCCCGCCCGGCTGCGCTCCCAGCCCGCCCGCCGGTGGGAGAAGGGCGACCCGGGACCGGGCGGCGTGCTGGTCATGCTCGGCGTGCGCGGCCGGCTCCCCGAGCTGGAGCACCACTCGCTGTTCTTCACGGCGGACTGGCACGAGAACTTCGGCGCGATCGCGCAGGGTCGGGTGCCCGACCCGGCCTCGCTGTACGTGTGCACGCCCTCGCGCACCGACGACACGGTCTCCCCGGCCGGCGACGAGAACCTGTTCCTCCTCGTGCCCGTGCCCGCCGACCCGGCGATCGGACGCGGCGGGGAGGACGGCGCCGGCGATCCGCAGGTCGAGGCGATCGCCGACGCCGCGATCGACCGGATCGCCGACTGGGCCGGGATCCCGGACCTGCGGGACCGCATCGCGGTACGCCGCACCGTCGGTCCCGGCGACTTCGTGGCGGACCTCGCCTCCTGGTCGGGCAGCATGCTCGGCCCGGCGCACACGCTGTCCCAGAGCGCCATGCTGCGACCGGGCAACCAGTCGCGCCGGGTGACGGGCCTGCTGCACGCCGGGGGGACGACGATCCCCGGCATCGGTCTGCCGATGTGCCTGATCAGCGCCGAGCTGGTGGTCAAGCGCCTCCGTGGCGACACCTCGGCCCGACCGCTGCCGGCGCCGCTGGAGGCGCTCCCGTCGTCGGCCTGA	MRVVVVGGGIAGLATAGLLARDGHEVELLEQHDTLGGRAGSWARDGFRFDTGPSWYLMPEVFDHWFELMGSSTDAELDLRSLEPAYRVFFEGHDDPLDVRRDRAANVAAFEAVEPGAGARLDRYLDEAHEAYDMALDHFLYTTFESWRSLGDRRVLARAHRLLPLLTRSLESHVGRRFDDVRLRQVLGYPAVFLGSAPERTPALYHLMSALDLDGGVRYPAGGFTRLIEAIADLSRRAGVTVRTGARATAITTGIGDRPDAGDEQPPVPGPRRPRAHVTGVRWRDGAGLEHHSTADVVVTAADLHHVEHELLPARLRSQPARRWEKGDPGPGGVLVMLGVRGRLPELEHHSLFFTADWHENFGAIAQGRVPDPASLYVCTPSRTDDTVSPAGDENLFLLVPVPADPAIGRGGEDGAGDPQVEAIADAAIDRIADWAGIPDLRDRIAVRRTVGPGDFVADLASWSGSMLGPAHTLSQSAMLRPGNQSRRVTGLLHAGGTTIPGIGLPMCLISAELVVKRLRGDTSARPLPAPLEALPSSA	PGPT0007390_74	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007390-crtD-K20611	NA	NA
AK001_02637	921			hypothetical protein	ATGACCGAGCACAGGGCGGACGTCGCCGAGGACGCCGACGACGCCACCACCTCCCCACCGCCTGCCCCGGTGGACTCCGCCTACGACGACGTCGCCTACCGCAGCGCGGGCGTCGTCATCGAGCGCTACTCCACCTCCTTCGGCTGGGCCTGCCGGCTCCTGGGTCCGGACGTGCGCGAGCACGTGCGCGCCGTGTACGCCCTGGTGCGGGTCGCGGACGAGATCGTCGACGACATGGCCGCCCCGCTGACCGTCGACGAGCGGGCCGCCCTGCTCGACGACCTGGAGCGCGAGGTCGACGCCGCCGTGCGTCGCGGGCGCAGCACGAACCTGGTGGTGCACGCCTTCGCGGTCACCGCGCGGCGCTACGGGATCGGCGCGGAGCTGACCGCCCCGTTCTTCGCCTCGATGCGCACCGACCTCACCGTGACCGAGCACGACCCGGACAGCTTCGCGCGGTACGTGCACGGCTCGGCGGAGGTGGTCGGGCTGATGTGCCTGCGCGTCTTCACCGGGGGCGACGACGCCGCCTACGCGCGCCTGGCCCCCGGCGCCGCCCGGCTCGGCGCCGCCTTCCAGAAGGTGAACTTCCTGCGCGACCTCGCCGACGACCTCGACGACCGCGGTCGGGCGTACTTCCCCGGCTACGACGACGACTTCGACGACGCGGTCCGCGACCGGCTGCTCGACGACATCGACGCCGACCTGGCCACGGCGTCGGCGGCGATCGCCGAGCTGCCGCGGTCCAGCCGGGTCGCCGTGCGCGTGGCCCACGACCTCTTCGCCGAGCTCTCCAGCCGCCTGCGGGCGACCCCCGCGGAGGAGCTGCGCACCCGTCGCGTCCGGGTCCCCGACGCCGTCAAGGGTCGCCTGGTGCTCGCCGCCATGGTCCGCGAGCGCCGGAAGGCGGCCGCCGCGTGA	MTEHRADVAEDADDATTSPPPAPVDSAYDDVAYRSAGVVIERYSTSFGWACRLLGPDVREHVRAVYALVRVADEIVDDMAAPLTVDERAALLDDLEREVDAAVRRGRSTNLVVHAFAVTARRYGIGAELTAPFFASMRTDLTVTEHDPDSFARYVHGSAEVVGLMCLRVFTGGDDAAYARLAPGAARLGAAFQKVNFLRDLADDLDDRGRAYFPGYDDDFDDAVRDRLLDDIDADLATASAAIAELPRSSRVAVRVAHDLFAELSSRLRATPAEELRTRRVRVPDAVKGRLVLAAMVRERRKAAAA	PGPT0007375_1536	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007375-crtB-K02291	NA	NA
AK001_02638	570			hypothetical protein	GTGACCCGCCCACCCGAGCCCCCCTCCTCCGCGTACTGGTACGGCGGCGGCGACGACGCGGCGCGCGAGCTCCTGGAGGCTGTCCGGGTCTTCCGCCGCTCCGACGAGGTGATGCGCCAGCGGGCCAGCCGCGAGATGGACATGAACGTCACCGACCTGCGCGCCCTGCGGTACGTCATCGCGGCCCGGCTGCGGGGCGAGCCGGTCACCCCCCGCGACCTGACCGAGTACCTCGAGATCTCCACGGCGTCGACGACCAAGCTGCTCGACCGGCTCGAGGCGACCGGGCGCCTGCACCGGCGGCCGCACCCGCACGACCGCCGGTCCGTGGTCGTCGAGGCCACCGACGAGGCGCACCGCGAGGTCCGCGACCGGCTCACGCGGGTGCACCACGAGATGTTCGAGGTCGCCCGGCGCGTGCCGGAGCACTGTCGCGGCGCGGTCCGCGACTTCCTCCTCGGGCTCGCGGCGCAGGTCGACGAGCCGGACGGCAGTGCCGCCGCCGTGGCGACCGGCGAGGCCCGCTCGCTCGACGAGGACGGGGCCGGAGGGTCGCCGGCGCGCCGGTAG	MTRPPEPPSSAYWYGGGDDAARELLEAVRVFRRSDEVMRQRASREMDMNVTDLRALRYVIAARLRGEPVTPRDLTEYLEISTASTTKLLDRLEATGRLHRRPHPHDRRSVVVEATDEAHREVRDRLTRVHHEMFEVARRVPEHCRGAVRDFLLGLAAQVDEPDGSAAAVATGEARSLDEDGAGGSPARR				NA	NA	NA	NA	NA
AK001_02639	2334	purL	COG0046	Phosphoribosylformylglycinamidine synthase subunit PurL	ATGACCGCCGCTGCCCAGGCTGCCGCCCCCCGTCCGACGCTCGACACCGTCGACAACGCTGCCGCCACCCCCGACGAGTCCTTGCCGTTCGGCGAGCTCGGCCTCAAGCCCGACGAGTACCAGCGCATCCGCGACATCCTCGGGCGCCGCCCGACGGCCGCGGAGCTGGCCATGTACTCGGTGATGTGGTCCGAGCACTGCTCCTACAAGTCGTCCAAGGTGCACCTGAAGAAGTTCGGCGACCGCGTCACCGAGGAGATGAAGCAGCACCTGCTCGTCGGCATCGGCGAGAACGCGGGCGTCGTCGACATCGGCGACGGCTGGGCCGTGACCTTCAAGGTCGAGTCGCACAACCACCCCTCGTTCGTCGAGCCCTACCAGGGCGCGGCCACGGGCGTGGGCGGCATCGTCCGCGACATCATCTCCATGGGCGCCCGCCCGGTCGCGGTGATGGACCAGCTCCGGTTCGGCGCGGTCGACCACCCCGACACGGCGCGCGTCGTGCACGGCGTCGTCTCCGGCGTCGGCGGCTACGGCAACTCCCTCGGCCTGCCGAACATCGGCGGCGAGCTCGTCTTCGACTCCTCCTACCAGGGCAACCCGCTGGTCAACGCCCTGTGCCTCGGGGTGCTGCGGCACGAGGACATCCACCTGGCCAACGCCTCCGGCGCCGGCAACAAGGTGATCCTCTTCGGTGCGCGCACCGGCGGCGACGGCATCGGCGGCGCCTCCATCCTGGCCTCGGAGACGTTCGAGGACGGTGTCCCGGCCAAGCGACCCAGCGTCCAGGTCGGCGACCCCTTCATGGAGAAGGTGCTCATCGAGTGCTGCCTGGACCTGTACGCGGCGCACGTCGTCGAGGGCATCCAGGACCTCGGTGCCGCGGGCATCTCCTGCGCCACCTCCGAGCTCGCGTCCAACGGTGACGGCGGCATGCACGTCGACCTGGACGACGTGCTGCTGCGCGACCCCACGCTGAACGCCGGCGAGATCCTCATGTCGGAGTCGCAGGAGCGGATGATGGCCGTCGTGCGGCCGGAGAAGCTCGAGGAGTTCCTCGCGATCACCGACCGCTGGGACGTGGAGACCTCCGTCATCGGCGAGGTCAACGACTCCGGCCGGCTCACCATCGACCACCACGGCCAGCGCATCGTCGACGTCGACCCGACCACCGTCGCGCACGAGGGCCCGGTCTACGAGCGCCCCTACGCCCGGCCGGCCTGGCAGGACGACCTGCAGGCGGCCTCCGTCGCCGGTCTCTGCCTGGAGCGGCCGTCCACGGGGAGCGAGCTGCGCGCCTCGGCGCTGCGGCTCCTGGCCTCGCCGAACCTCGCCTCGCCGGCGTGGGTGACCGACCAGTACGACCGGTTCGTGCAGGGCAACACCGCGCTCGCCCAGCCCGACGACGGCGGTGTCGTCCGCGTGGACGAGGGCACCGGCCTGGGCGTCGCCCTGGCCACGGACGCCAACGGCCGGTACGGCAAGCTCGACCCGCGCACCGGTGCGCAGCTCGCCCTGGCCGAGGCGTACCGCAACGTCGCGACCACGGGCGCGACGCCGCTCGCGGTCACCGACTGCCTGAACTTCGGCTCCCCGGAGCACCCGGACTCCATGTGGCAGCTCGTCGAGGCGATCGAGGGGCTGGCCGACGCCTGCCAGGAGCTCGGCGTGCCCGTGACCGGCGGCAACGTGTCGCTGTACAACGGCACCGGTGAGCCCGGCCAGATCGACTCCGCGATCCACCCGACCCCCGTCGTCGGCGTGCTCGGTGTCCTGGACGACGTGCGCTCGGCGCTGCCGTCGGGCTGGCGGGAGGCCGGCCAGTCGGTGCTGCTGCTCGGCGCCACCGCGGACGAGCTGGACGGCTCCGCGTGGGCCGAGGTGGAGCACCACCACCTCGGCGGCCTGCCGCCGCGGGTGGACCTGGCCGCCGAGCGCTCCCTCGCCGAGGTCCTGGTGGCCGCCCGGCGTACCGGCGCCGCGGCCGCCGCCCACGACCTGTCCGAGGGCGGTCTGGTCCAGTCCCTGCTCGAGGCGTCGCTGCGCTACGGCGTCGGCGTCTCGGTGTCGCTCGACGAGCTCGGTGCGCGGGACGGCGTGACGCCCTTCGAGGCGCTGTTCAGCGAGTCCACCGCCCGGGCGCTCGTCGCGGTCGCCCCGGAGCGCGAGGCCGAGGTGCTCACCCTGGCCGAGGAGGCCGGCGTGCCGGTGCTCCGTCTCGGCCGCACCGGGGGTGACGGTGTCGCCGTCGCGTTCGGCGAGGACTCCTTCGAGATCGCGCTGGACGAGGCCCGCGAGGCCCACGAGGGCACGCTCCCGCGTCTCTTCGGCTGA	MTAAAQAAAPRPTLDTVDNAAATPDESLPFGELGLKPDEYQRIRDILGRRPTAAELAMYSVMWSEHCSYKSSKVHLKKFGDRVTEEMKQHLLVGIGENAGVVDIGDGWAVTFKVESHNHPSFVEPYQGAATGVGGIVRDIISMGARPVAVMDQLRFGAVDHPDTARVVHGVVSGVGGYGNSLGLPNIGGELVFDSSYQGNPLVNALCLGVLRHEDIHLANASGAGNKVILFGARTGGDGIGGASILASETFEDGVPAKRPSVQVGDPFMEKVLIECCLDLYAAHVVEGIQDLGAAGISCATSELASNGDGGMHVDLDDVLLRDPTLNAGEILMSESQERMMAVVRPEKLEEFLAITDRWDVETSVIGEVNDSGRLTIDHHGQRIVDVDPTTVAHEGPVYERPYARPAWQDDLQAASVAGLCLERPSTGSELRASALRLLASPNLASPAWVTDQYDRFVQGNTALAQPDDGGVVRVDEGTGLGVALATDANGRYGKLDPRTGAQLALAEAYRNVATTGATPLAVTDCLNFGSPEHPDSMWQLVEAIEGLADACQELGVPVTGGNVSLYNGTGEPGQIDSAIHPTPVVGVLGVLDDVRSALPSGWREAGQSVLLLGATADELDGSAWAEVEHHHLGGLPPRVDLAAERSLAEVLVAARRTGAAAAAHDLSEGGLVQSLLEASLRYGVGVSVSLDELGARDGVTPFEALFSESTARALVAVAPEREAEVLTLAEEAGVPVLRLGRTGGDGVAVAFGEDSFEIALDEAREAHEGTLPRLFG	PGPT0021730_185	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021730-purL-K23269	NA	NA
AK001_02640	486	dps_2	COG0783	DNA protection during starvation protein	ATGTCCACGCCCGCCATCCATCGCACCACGGACCGCGCCGAGGCCTCCGAGACCCTGACCAAGCACCTGCAGCGCGTGCTCGTGGCCCTCGTGGACCTGCACGTCCAGGGCAAGCAGGCGCACTGGAACGTCACGGGACGCGGCTTCCGCGACCTGCACCTGCAGCTCGACGAGCTCGTCGACGTCGCCCGCGAGCACAGCGACACGGTCGCCGAGCGGCTGCGGGCCCTGCAGGCCGTGCCGGACGGACGCAGCGAGACGGTGGCCACGTCGACCGACCTCTCGCCCTACCCCGCCGGACTGGTGTCGGTGACGGACACCGTCGACGCGGTCGTCGAGCGCGTCGCGCAGGTCGCCGAGGTCGTGCGCGAGGTGCACGACGACGTCGACGCCGCCGACCCGACGTCGGCCGACCTGCTGCACGAGATCATCCACGACCTGGAGAAGCAGGCCTGGATGATGTCCTCGGAGAACCACGAGGTCTGA	MSTPAIHRTTDRAEASETLTKHLQRVLVALVDLHVQGKQAHWNVTGRGFRDLHLQLDELVDVAREHSDTVAERLRALQAVPDGRSETVATSTDLSPYPAGLVSVTDTVDAVVERVAQVAEVVREVHDDVDAADPTSADLLHEIIHDLEKQAWMMSSENHEV	PGPT0004055_2202	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047	NA	NA
AK001_02641	393			hypothetical protein	ATGACGTGGCTCGCGATGGCCCTGGTGGCGACCGGCGTGCTGGTCGCCGGACTCGCAGTGCGGTCGTGGCTGTGCTCGGACGCCCACCGCGACGGCGTGCTGCGACGTCGTCGTCGCCGGTCCGGCCCGGACCCGATGGTCACGCTGACGATCCAGGTGCGGCTGGGAGAGCTCGCCGCCGAGCTGCGGACCGTCAGCGAGGACCCCGGTCTCTACGCACGGGCCCACCACTACCGGGCCGTCCAGGACGCCTACGACGCCATGCTGCGCGACGCCTGCCGGATCGCGGGCCTCGCCGTCGTCGACGTGCCGCTGCGACCCCACGAGCGGCTCTCCGAGGACGAGCGGCTGCGCGAGGAGCTGGAGCTCAGCTCCCGTGGCTGGTCCTGGTGA	MTWLAMALVATGVLVAGLAVRSWLCSDAHRDGVLRRRRRRSGPDPMVTLTIQVRLGELAAELRTVSEDPGLYARAHHYRAVQDAYDAMLRDACRIAGLAVVDVPLRPHERLSEDERLREELELSSRGWSW				NA	NA	NA	NA	NA
AK001_02642	2232	icd	COG2838	Isocitrate dehydrogenase [NADP]	ATGAACACCGAGTCCCGGCCGGCGGCCGGCACCATCATCTACACCTTCACCGACGAGGCGCCCCTGCTGGCCACCTACTCGTTCCTGCCGATCGTGCAGGCGTACGCCGCCAAGGCCGGCGTCGCGGTCGAGACCCGCGACATCTCCCTGGCCGGGCGCATCCTCGCCCAGTTCCCCGAGACGCTCGGCGAGGACCAGCGGGTCGAGGACGCCCTGGCCGAGCTGGGCCAGATGGCCACCACGCCCGAGGCGAACATCATCAAGCTGCCGAACATCTCGGCCTCCGTCCCCCAGCTCAAGGCCGCGATCGCCGAGCTGCAGGCCGCCGGCTACGCCATCCCGGACTACCCCGAGGAGCCGACCACCGACGCCGAGCGCACGGCCCGCGCCGCGTACGACAAGGTCAAGGGCTCGGCCGTGAACCCGGTGCTGCGCGAGGGCAACTCCGACCGCCGCGCACCCTCGGCCGTCAAGAACTACGCCAAGGCGCACCCGCACCGCATGGGCGAGTGGAGCGCGGACTCGAAGACCGAGGTCGCCACGATGGGCGCCCACGACTTCCGCTCCAACGAGCAGTCCGTCGTCATCCCCGAGGCCGACACCCTGACCATCCGTCTGCGCACCGCCGACGGCACCCAGGTCCTCAAGGACGGCCTCGCGGTCGAGGCCGGCGAGGTCGTGGACTCGACGTTCCTGTCCGTCGAGGCGCTGCACGCCTTCCTCGCCGAGCAGATCCAGCGCGCCAAGGACACCGGCGTGCTCTTCTCGGCGCACCTCAAGGCCACGATGATGAAGGTCTCGGACCCGATCATCTTCGGCCACATCGTCGAGGCGTTCCTGCCCGAGGTGTTCGAGCAGTACGGCGCCGAGCTCAAGGCCGCGGGCCTGTCCTCGCGCGACGGCCTCGGCGGCATCCTCACCGGCCTGGACTCCCTGGAGCACGGCGCCGACGTCAAGGCCGCCATCGAGAAGGGGCTCGCCGACGGGCCGGCGCTGGCCATGGTCGACTCCGACCGGGGCATCTCCAACCTGCACGTGCCCTCCGACGTCATCATCGACGCCTCCATGCCGGCCATGATCCGCATCGGCGGCCACATGTGGGGTCCCGACGGCGCCGAGCACGACACGCTCGCCGTCATCCCCGACTCCTCCTACGCCGGCGTCTACCAGGCCGTCATCGACGACTGCAAGGCCAAGGGTGCGCTGGACCCCGCCACCATGGGTTCCGTGCCGAACGTCGGCCTCATGGCGAAGAAGGCCGAGGAGTACGGCTCGCACGACAAGACGTTCGAGATCCCCGCCGACGGCACCGTCGAGATCGTGAACAGCGCCGGCGACGTGCTGACGTCGCACGACGTCGCGGCCGGCGACATCTGGCGCGCGTGCCAGACCAAGGACGCCCCGATCCGCGACTGGGTGGGGCTGGCCGTGCGCCGCGCCCGCGAGTCCGGCGTCCCGGCCGTGTTCTGGCTGGACGAGACCCGGGCGCACGACACCAACCTCATCGCCAAGCTCGAGCAGTACCTGCCGGAGCACGACGCCGACGGCCTTGAGATCCTCGTGATGAACCCGGCCGAGGCCACGCGGTACTCGCTGGACCGCATGCGCGAGGGCCTGGACACGATCTCCGTGACCGGCAACGTGCTGCGCGACTACAACACCGACCTCTTCCCGATCCTCGAGGTCGGCACCTCGGCGAAGATGCTCTCGATCGTGCCGCTGATGAACGGCGGCGGCCTGTTCGAGACCGGCGCCGGCGGCTCGGCCCCCAAGCACGTCCAGCAGCTCCTCGCCGAGAACTACCTGCGCTGGGACTCCCTGGGCGAGTTCTTCGCGCTGGCCGCCTCCTTCGAGCACCTGGCCAAGGTCGACGACAACGCCCGCGCCCGCGTGCTGGCCGACACCCTCGACCGCGCCACCGAGACGTTCCTCAACGAGGACAAGGGCCCGACGCGCCGCATCGGCGGGATCGACAACCGCGGCTCGCACTTCTACCTCGGCCTGTACTGGGCCCAGGAGCTGGCGAAGCAGACCGAGGACGCCGAGCTGGCCGAGGTCTTCGGACCGCTCGCCGAGCGCCTCACCGCGGCCGAGGCCACGATCGTCGACGAGATGCTGGCGGTCCAGGGCAACCCGGCCGACGTCGGCGGCTACTACTGGCCGGACGGTGACAAGGCCGCGAAGGTCATGCGCCCGTCGAAGACGCTCAACGAGGCCATCGACACGTTCTGA	MNTESRPAAGTIIYTFTDEAPLLATYSFLPIVQAYAAKAGVAVETRDISLAGRILAQFPETLGEDQRVEDALAELGQMATTPEANIIKLPNISASVPQLKAAIAELQAAGYAIPDYPEEPTTDAERTARAAYDKVKGSAVNPVLREGNSDRRAPSAVKNYAKAHPHRMGEWSADSKTEVATMGAHDFRSNEQSVVIPEADTLTIRLRTADGTQVLKDGLAVEAGEVVDSTFLSVEALHAFLAEQIQRAKDTGVLFSAHLKATMMKVSDPIIFGHIVEAFLPEVFEQYGAELKAAGLSSRDGLGGILTGLDSLEHGADVKAAIEKGLADGPALAMVDSDRGISNLHVPSDVIIDASMPAMIRIGGHMWGPDGAEHDTLAVIPDSSYAGVYQAVIDDCKAKGALDPATMGSVPNVGLMAKKAEEYGSHDKTFEIPADGTVEIVNSAGDVLTSHDVAAGDIWRACQTKDAPIRDWVGLAVRRARESGVPAVFWLDETRAHDTNLIAKLEQYLPEHDADGLEILVMNPAEATRYSLDRMREGLDTISVTGNVLRDYNTDLFPILEVGTSAKMLSIVPLMNGGGLFETGAGGSAPKHVQQLLAENYLRWDSLGEFFALAASFEHLAKVDDNARARVLADTLDRATETFLNEDKGPTRRIGGIDNRGSHFYLGLYWAQELAKQTEDAELAEVFGPLAERLTAAEATIVDEMLAVQGNPADVGGYYWPDGDKAAKVMRPSKTLNEAIDTF	PGPT0001170_504	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031	NA	NA
AK001_02643	1476	rnr	COG0557	Ribonuclease R	GTGCCCATCCGACAGCTGCGGATCGCCTCCGTTACCCCCGAGGACGTCGGCGGCGCGCTGGCGTCGCTGCGGGCGGAGGTCGGGCTGCCCGCGCTGTACCCGGCCGAGGCCCGGGCGGAGGCGGAGGTCGCCGCGCAGGGCGACCTGAAGGACTTCCGCCAGGACCGCCGGGACATCGACTTCGTGACGATCGACCCCGCCGGTGCGAAGGACCTCGACCAGGCGGTCCACGTGGCGAGCTCCGGGCACGGCTACATCGTGCGGTACGCGGTCGCCGACACGGCGGCGTTCGTGTCGCCGGGCGGTGCCCTCGACACCGAGGTGCACCGGCGCGGGGTGACGTACTACGGCCCGGACACCCGCTCCCTGCTCTACCCGGCCGTGCTCTCCGAGGGCGCCGCGAGCCTGCTGCCGGACCAGGACCGCCCGGCGGTGCTGTGGACGATCTCCCTGGACTCCCGCGGCGAGATCGGCAGCGTCGCCGTGACACGTGCCGTGGTCCGCTCTCGGGCACGCCTGACCTACGGCGAGGCGCAGACCGCGCTCGACTCCGGCACGGCGCCGGAGCCGCTGGTCCACCTCGCCGACGTCGGGCGGCTGCGCCAGCAGCGCGAGCGCGAGCGGGGCGCCGTCTCCCTGCCGGTGCCCGAGCAGGAGGTCGTGCAGCGTCCGGACGGGTCGTTCGACCTGGAGCTGCGCCGGACGCTGCCGGTGGAGTCGTGGAACGCGCAGATCTCGTTGCTGACGGGCATCTCGGCCGCCCGGCTCATGCGTGACGCCGGCGTGGGGCTGCTGCGCACGCTGCCCCCGGCGCGGGTCGAGGACGTCATGCGGCTGCGTCGGACCGCCGCCGCGCTGGGCATCGACTGGCCGGACGAGGTGCCGTACGGCGAGCTGCTGTCGCGCGTCGAGTCGCGCCGGGCCGCCCACGCGGCGTTCCTGACCGAGGCGACGACCCTGTTCCGCGGTGCCGGCTACCTGGCGTTCGGGGTGCCCGGCCCGCAGGGTGGCGCCCGGGTGGGGCTGCCGGACGACGCGCGGCACGCCGCCGTCGGCGCCGAGTACGCCCACGTGACCGCACCGCTGCGGCGGGTGGCCGACCGGTACGCGACCGAGATCTGCCTGGCCCAGTCGGCCGGCCGCGACGTGCCCGGCTGGGTGCTCGAGGCGCTGCCGCGGCTGCCCGCCGAGATGGCGGCGGCCACGGCGCGCGAGGCGGCCTTCGAGCGCTCGTGCATCGACATCGTCGAGGCGGCGCTGCTCGCGGCACGGGTCGGCCGCCGCTTCGAGGCCGTGGTCGTCGACGACGGCGACACGCCCGACGACGACGGCCTGCGCCACGGTGAGGTCATGCTGCGCGAACCGCCCGTGCGTGCCCGGGTCCGCGGCACGTCGCTGCCGCTGGGCGAGCGGATCAAGGTGACGCTCGCCGAGGCGTCCGTGGCGGACCGCCGGGTGCTCTTCACCGCGCCCTGA	MPIRQLRIASVTPEDVGGALASLRAEVGLPALYPAEARAEAEVAAQGDLKDFRQDRRDIDFVTIDPAGAKDLDQAVHVASSGHGYIVRYAVADTAAFVSPGGALDTEVHRRGVTYYGPDTRSLLYPAVLSEGAASLLPDQDRPAVLWTISLDSRGEIGSVAVTRAVVRSRARLTYGEAQTALDSGTAPEPLVHLADVGRLRQQRERERGAVSLPVPEQEVVQRPDGSFDLELRRTLPVESWNAQISLLTGISAARLMRDAGVGLLRTLPPARVEDVMRLRRTAAALGIDWPDEVPYGELLSRVESRRAAHAAFLTEATTLFRGAGYLAFGVPGPQGGARVGLPDDARHAAVGAEYAHVTAPLRRVADRYATEICLAQSAGRDVPGWVLEALPRLPAEMAAATAREAAFERSCIDIVEAALLAARVGRRFEAVVVDDGDTPDDDGLRHGEVMLREPPVRARVRGTSLPLGERIKVTLAEASVADRRVLFTAP				NA	NA	NA	NA	NA
AK001_02644	345			hypothetical protein	GTGGTGGGTCGTGCGGCGGTGGCCGCGTGGCTCGCCGGGGACGCCGACCGCCGCACCACGACGACGGCCGTGCGGTTCACGCTCGAGGAGCTGGCCGCCGTCGCTCCCGGGAACGCCGTGGAGGTCCGGGTGCCGCCGGCCGGGGCCGTGCAGGCCGTCCCGGGTCCCCGGCACACCCGCGGCACACCGCCGAACGTCGTGGAGACCGACGTCGAGACCTGGCTGGGGCTGGCCACCGGCCGGCGCACCTGGGCCGAGGTGGCCGGCGAGGGGCGGGTCCGCGCCTCGGGGGAACGGGCCGACCTCAGCGCGTGGCTGCCGCTGCAGGCGGCGCGACCGCGGTGA	MVGRAAVAAWLAGDADRRTTTTAVRFTLEELAAVAPGNAVEVRVPPAGAVQAVPGPRHTRGTPPNVVETDVETWLGLATGRRTWAEVAGEGRVRASGERADLSAWLPLQAARPR				NA	NA	NA	NA	NA
AK001_02645	174			hypothetical protein	ATGCTGTGGTTCGGGGGAGCACTGCTCTTCGGTGGTGTGCTGCTCGCGGCGAGGGCGACGTGGGCGGCGCGGCGGGGTTGCGTCACGGGGACGCACGGCCTGCTGATCGCGGTCGGGGCGGGGAGCGCCGTCTGGGGCGCGGTGCTCCTGGGCCTCGCCGCGAGCTCCTCCTAG	MLWFGGALLFGGVLLAARATWAARRGCVTGTHGLLIAVGAGSAVWGAVLLGLAASSS				NA	NA	NA	NA	NA
AK001_02646	2580			hypothetical protein	GTGACCCGCAACTCCACCCCACGGCACGGCCGCCGCACCGCGTACGCCGCGATGCTGGCGACCGCTCTCGCCGTCCCGACCACCGCCGCGGTCGTTCCCGCCGCCGCCGAGCCGTCGGTCGACGCCCCGGTCCTCATCGAGGAGGTCTACGGCGGTGGCGGCAACAACGGCGGCGTCTACGACCGCGACTTCGTCGAGCTCTACAACCCCGGCGACGAGCCGGTGTCGCTCGACGGCTGGTCCGTGCAGTACGGCTCGGCCGGCGGGACCACCTGGTCCTCGCAGACCGACCTGTCCGGCCAGATCCCGGCCGGCGGCTCGTTCCTCGTCGCGCAGGCGGCCGGCAACGACGACTCCCAGCCCGACCTGCCCACCCCCGACGTCGAGGGCGGCATCTTCATGTCCGGCTCGGGCGCCGAGGTCGCGCTGGTCTCCTCGACCGACCGCCTGGACTGCTCCGGCGCCGCCTGCGCCGAGGTCGCGGACCTCGTCGACCTGGTCGGCTGGGGCTCGGCGAACACCTACCTCGGGTCGGCCCCCGCCCCGGGCACGAGCAACTCCGTCTCGGTGGCGCGCGTCGACCACGCGCACACCCTGGACAACGCGGCCGACTTCGTCACGGGGACCCCGACGCCGGAGAACAGCGGGTCGACCGGGGAGCCGACGCCGACGCCCTCGCCGTCGCAGGACCCCGCCCCCGAGCTCGTGACCATCGCCGAGATCCAGGGCACCGGCGACGCCTCGCCGCTCGACGGGCAGGACGTCACCACCCGGGGCGTCGTGACCGCGGCCTACCCGACCGGCGGGTTCAACGGCTTCACGCTGCAGACGGCCGGCACCGGCGGCGACCCGGCGGACGACGAGACGCCGGGCGCATCGGACGCCGTGTTCGTGTACTCGTGGGCGGCCGCCCAGGAGGTCGAGGTCGGTGACCACGTCGAGGTCACCGGGGAGGCCACCGAGTACTACGACCTGACCCAGGTCGCCGCGGAGACGTGGACGGTGCTGGACGAGCCCGCCGAGCCCGTCGAGCCGACCGTGACCGGCTGGCCCGCCACCGAGGCCGAGCGCGAGGCGCTGGAGAACATGCTGCTCGCGCCGTCCGGCGAGTTCACCGTCACGGACAACTACTCGACCAACTTCTACGGCACCGTCGGCCTGGCCGCCGGGGACGGCCCGCTCGTGCAGCCGACGACGGCGGGTCGCCCGGGGTCGGACGAGGCCGCCGCGCAGGTGGCCGAGAACGCCGCCCTGGCCGTGCAGCTCGATGACGGGTCGTCGTGGAACTACTCCAGCGCCTCGCGCGCCGACACCCCGCTGCCCTGGCTGAACGGCACCGACCCGGTGCGCGTCGGTGCCGCGGTGACGTTCACGGGCCCCGTCGTGCTCGACTACCGCTACAGCGCCTGGTCCTTCCAGCCGCAGCAGCAGCTCACCGGGGACAGCCCCGACGACGTGCAGCCCGCGACGTTCGAGAACACCCGGGAGTCCTCGCCGCAGGACGTGGGTGGTGACGTCCGGGTCGCGACGTTCAACGTGCTGAACTACTTCACCACCACCGGGGACCAGCTCGAGGGCTGCTCCTACTACTCCGACCGCGCCGGCGACCCGATCAGCGTGCGTGGTGGGTGCCTGGCCCGCGGCGCGGCCGACGCCGAGAACCTGCAGCGGCAGGAGACCAAGATCGTCGCGGCGATCAGCGACCTGGGGGCCGACGTCGTCGCCCTCGAGGAGATCGAGAACTCGGCCGCGTTCGGGAAGGACCGCGACCAGGCGCTGTCCGACCTCGTCGACGCGCTCAACGCGGCCGACGGGGCCGGCACCTGGGCGTTCGTGCCCTCGCCGGCCGAGGTGCCCGCGGACGAGGACGTCATCCGCAACGCCTTCGTCTACCGGACGGCCGGTGCCGAGCCGGTCGGGGAGTCGCGGATCCTCACCGACGCCCCGGAGGCGTTCCAGAACGCCCGCGAGCCGCTGGCCCAGGTCTTCCAGCCCGCGGGCGGCAAGACCGCCGCGCCGGTGGACGACGTCGTGGTCATCACCAACCACTTCAAGTCCAAGGGGTCGCTCGGGCCGTGGCCCGGCGACGTCGACGCCGGTGACGGGCAGGGCCGGAACAACGAGTCCCGCGTCCGGCAGGCGACGGCGCTGGTGGAGTTCGCCGACGAGGTGGCCTCCGACGCGCGCACCGACCGCGTGCTGCTGGTGGGTGACTTCAACGCCTACGAGCAGGAGGACCCGATCGTCGTGCTCGCCGAGGCCGGCTACACCGACCTCGGGCCGACCACGGGCGAGTACACGTACAGCTACGACGGCCAGGTCGGGTCGCTGGACCACGTGCTCGCCTCCGAGGGGGCGATGGAGGACGTGACCGGCGCGGACATCTGGAACATCAACGCCTACGAGCCCGTCGCGAACGAGTACAGCCGGTACAACTACAACGCGACGATCCTGTACGACACCTCGCCGTTCCGGTCCTCGGACCACGACCCGCTGCTGGTCGGGCTCGACCTGGCGCCGGGCGCCCCGTCCTGGGCGAACGGCCACGGTCCGGGCGGGAACCCGAAGCACGACGACTGA	MTRNSTPRHGRRTAYAAMLATALAVPTTAAVVPAAAEPSVDAPVLIEEVYGGGGNNGGVYDRDFVELYNPGDEPVSLDGWSVQYGSAGGTTWSSQTDLSGQIPAGGSFLVAQAAGNDDSQPDLPTPDVEGGIFMSGSGAEVALVSSTDRLDCSGAACAEVADLVDLVGWGSANTYLGSAPAPGTSNSVSVARVDHAHTLDNAADFVTGTPTPENSGSTGEPTPTPSPSQDPAPELVTIAEIQGTGDASPLDGQDVTTRGVVTAAYPTGGFNGFTLQTAGTGGDPADDETPGASDAVFVYSWAAAQEVEVGDHVEVTGEATEYYDLTQVAAETWTVLDEPAEPVEPTVTGWPATEAEREALENMLLAPSGEFTVTDNYSTNFYGTVGLAAGDGPLVQPTTAGRPGSDEAAAQVAENAALAVQLDDGSSWNYSSASRADTPLPWLNGTDPVRVGAAVTFTGPVVLDYRYSAWSFQPQQQLTGDSPDDVQPATFENTRESSPQDVGGDVRVATFNVLNYFTTTGDQLEGCSYYSDRAGDPISVRGGCLARGAADAENLQRQETKIVAAISDLGADVVALEEIENSAAFGKDRDQALSDLVDALNAADGAGTWAFVPSPAEVPADEDVIRNAFVYRTAGAEPVGESRILTDAPEAFQNAREPLAQVFQPAGGKTAAPVDDVVVITNHFKSKGSLGPWPGDVDAGDGQGRNNESRVRQATALVEFADEVASDARTDRVLLVGDFNAYEQEDPIVVLAEAGYTDLGPTTGEYTYSYDGQVGSLDHVLASEGAMEDVTGADIWNINAYEPVANEYSRYNYNATILYDTSPFRSSDHDPLLVGLDLAPGAPSWANGHGPGGNPKHDD	PGPT0013395_132	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081	NA	NA
AK001_02647	363			hypothetical protein	GTGAGCAGCACCTCTCCCGAGCAGCCCGCCGAGACCCCCGACGCCGTCGAGGAGACGCCGTCGGAACCCGTCGGGGAACCGGCGAGCACGGCGGCCGACGACGAGCACCTGCTCGTGGACCCGGCACGCGTGCGGCGTGCACCGCGCTACCGAGCCTTCTTCACCGTCGGCGCCGTCGTCGGCCTGGTGGTCGGGCTCGTCGTCGGGACCTGGCTGACCGGGATCGCGGCGGACGACGAGGTCCTCCTGCTCAAGCCGGGCGTCTTCGTCTCGGTCGTCACGCTGGCCACGACGACCTTCTTCGTGCTGCTCGCCGGGGGCCTCGCGATCCTCGCCGACCGGCGCAGCCTGCGACGTCGCTGA	MSSTSPEQPAETPDAVEETPSEPVGEPASTAADDEHLLVDPARVRRAPRYRAFFTVGAVVGLVVGLVVGTWLTGIAADDEVLLLKPGVFVSVVTLATTTFFVLLAGGLAILADRRSLRRR				NA	NA	NA	NA	NA
AK001_02648	1548	purF	COG0034	Amidophosphoribosyltransferase	ATGCCCTTGCGCCCCGACGGCCGCCTGAACCACGACCTCATGCCCGGCGAGAAGGGCCCCCAGGACGCCTGCGGCGTCTTCGGAGTCTGGGCGCCCGGCGAGGAGGTCGCGAAGCTCACGTACTTCGGCCTGTACGCCCTGCAGCACCGCGGACAGGAGTCCGCCGGGATCGCCACCAGCAACGGTGAGCAGATCCTCGTCTACAAGGACATGGGACTGGTCTCCCAGGTCTTCGACGAGACCGCGCTGAACGCCCTGACCGGCCACATCGCCGTCGGGCACTGCCGCTACTCGACGACCGGCGGCGTCACCTGGGAGAACGCCCAGCCCACGCTCGGCGCGACGTCCTCCGGCACCGTGGCCCTCGGGCACAACGGCAACCTGACGAACTCCGCCGAGCTGGTCGACCTCGTGGCCGAGCGGTACGGCGCCCAGCGCCGCGGCGAGCTCGCCCGCGGCAACACGACCGACACCGCGCTGATCACCGCGCTCTTCGCGGGCGACGAGGACCACACCCTGGAGCAGACGGCCCTCGAGGTCCTGCCCCGTCTGCGCGGCGCCTTCTCGCTGGTCTTCATGGACGAGCACGCGCTGTACGCGGCCCGTGACCCGCAGGGCGTGCGGCCGCTCGTCCTGGGCCGCACCCAGCGCGGCTGGGTGGTCGCCTCGGAGACCCCGGCGCTGGACATCGTCGGCGCCTCCTACGTGCGCGAGGTCGAGCCCGGCGAGCTCATCTGCATCGACGACGACGGCCTGCGGTCCACCCGGTTCGCCCCGGTAAACCGGGCCGGCTGCGTGTTCGAGTACGTCTACCTGGCCCGCCCCGACACCAGCATCCAGGGCCGCCCGGTGCACGCCGCCCGGGTGGAGATGGGCCGCGTGCTGGCCCGCGAGCACCCCGTGGACGCCGACCTGGTCATGCCCGTGCCGGAGTCCGGCACGCCGGCGGCGACCGGGTACGCCGCCGAGTCCGGGATCCCGTTCGGGCAGGGCCTGATGAAGAACGCCTACGTCGGCCGGACGTTCATCCAGCCGTCGGACACGCTGCGCCAGCTCGGCATCCGGCTGAAGCTCAACCCGCTGCGCGAGGTCATCCGCGGCAAGCGGCTGGTCGTCGTGGACGACTCCATCGTGCGGGGCAACACCCAGCGCGCCCTGATCCGGATGCTGCGCGAGGCCGGTGCCGCCGAGGTGCACGTGCGGATCTCGTCCCCGCCGGTGAAGTGGCCGTGCTACTACGGCATCGACTTCGCGTCCCGCGCCGAGCTCATCGCCAACGGCCTGACGCCGCACGAGATCGGCCAGTCGCTCGGCGCCGACTCGCTGGGCTACATCTCCACCGAGGGGATGATCGCCGCGACCGAGCAGCCCGCGTCGCGCCTGTGCGCCGCCTGCTTCACCGGCGAGTACCCCATCGAGCTGCCCGAGGAGGAGCGGCTCGGCAAGCACCTGCTCGAGCAGCCCGCGCTGCCGCTCGGTGCGCCGGAGGACGGGCTGTCGCAGCTCTCCGTCGGCGTCGGCGGGCAGTCCGCGCTCGAGCACCCGTGA	MPLRPDGRLNHDLMPGEKGPQDACGVFGVWAPGEEVAKLTYFGLYALQHRGQESAGIATSNGEQILVYKDMGLVSQVFDETALNALTGHIAVGHCRYSTTGGVTWENAQPTLGATSSGTVALGHNGNLTNSAELVDLVAERYGAQRRGELARGNTTDTALITALFAGDEDHTLEQTALEVLPRLRGAFSLVFMDEHALYAARDPQGVRPLVLGRTQRGWVVASETPALDIVGASYVREVEPGELICIDDDGLRSTRFAPVNRAGCVFEYVYLARPDTSIQGRPVHAARVEMGRVLAREHPVDADLVMPVPESGTPAATGYAAESGIPFGQGLMKNAYVGRTFIQPSDTLRQLGIRLKLNPLREVIRGKRLVVVDDSIVRGNTQRALIRMLREAGAAEVHVRISSPPVKWPCYYGIDFASRAELIANGLTPHEIGQSLGADSLGYISTEGMIAATEQPASRLCAACFTGEYPIELPEEERLGKHLLEQPALPLGAPEDGLSQLSVGVGGQSALEHP	PGPT0020225_1129	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764	NA	NA
AK001_02649	1104	purM	COG0150	Phosphoribosylformylglycinamidine cyclo-ligase	GTGACCGAACGTCTCACCTATGCCGCCGCCGGCGTCGACACCGACGCCGGGGACCGCGCCGTCGAGCTGATGAAGGACGCGGTGCGCCGCACGCAGGGGCCCGAGGTCCTCGGTGGCGTCGGCGGGTTCGCCGGCCTCTACGACGCCTCGGCGCTGACGCGGTACCGTGCGCCGCTGCTGGCCACCTCGACCGACGGCGTCGGCACGAAGGTCGCGATCGCCCAGGCGATGGACGTCCACGACACCATCGGCTTCGACCTGGTGGGCATGGTCGTCGACGACATCGTCGTCGTCGGTGCCGAGCCGCTGTTCATGACCGACTACATCGCCACGGGCAAGGTCGTCCCGGAGCGGGTGGCGGACATCGTGCGGGGGATCGCCCAGGCCTGCGAGGTCGCGGGGACGGCGCTCGTCGGCGGCGAGACGGCGGAGCACCCGGGTCTGCTGGCCCCCGACGAGTACGACGTCGCGGGCGCGGCCACGGGTGTCGTCGAGGCCGACGGCGTGCTCGGGCCCGAGCGGGTGCGGGCCGGCGACGTGCTGATCGGCATGGCGGCCAGCGGTATCCACTCCAACGGCTACTCGCTGGTGCGCGCGGTGATCAAGCACGCCGGCTGGTCGCTGGACCGGCACGTCGAGGAGTTCGGCCGGACGCTGGGGGAGGAGCTGCTCGAGCCGACGCGCGTCTACGCCGCCGACTGCCTGGCGCTCGCCCGCGAGGAGTCCGCGCAGGTGCACGCCTTCACGCACGTCACCGGCGGCGGGCTGGCGGCGAACCTGGCCCGCGTGCTGCCGGCCGGGACGGTCGCGACCGTCGACCGCGCGAGCTGGGAGGTGCCGGCGGTCTTCCGCACGGTGCGCGACCTCGGCGACGTCCCGCGCGGCGACCTGGAGAACACGCTCAACCTGGGTGTCGGCATGGTCGCGATCGTGGGGGCCGAGGGCGCCGACGCGGCGCTCGCGACGCTGCGGGACCGCGGCGTGCCGGCCTGGACGCTGGGCACGGTCGCCGACCTGACGCCCTCGGACGCCGACGAGGAGCTCGTCGCGGGCACGAAGGGCGTGCAGGCGGGCGCCGTCCGGCTCGTGGGCGACTACCGCTGA	MTERLTYAAAGVDTDAGDRAVELMKDAVRRTQGPEVLGGVGGFAGLYDASALTRYRAPLLATSTDGVGTKVAIAQAMDVHDTIGFDLVGMVVDDIVVVGAEPLFMTDYIATGKVVPERVADIVRGIAQACEVAGTALVGGETAEHPGLLAPDEYDVAGAATGVVEADGVLGPERVRAGDVLIGMAASGIHSNGYSLVRAVIKHAGWSLDRHVEEFGRTLGEELLEPTRVYAADCLALAREESAQVHAFTHVTGGGLAANLARVLPAGTVATVDRASWEVPAVFRTVRDLGDVPRGDLENTLNLGVGMVAIVGAEGADAALATLRDRGVPAWTLGTVADLTPSDADEELVAGTKGVQAGAVRLVGDYR	PGPT0021570_855	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933	NA	NA
AK001_02650	198			hypothetical protein	ATGGGCCGCGGCCGTCAGAAGGCTAAGCAGACCAAGGTCGCTCGCGCGCTGAAGTACTACAGCCCTGAGACGAACTATCACGCTCTGGAGCAAGAGCTGAAGGAGTCCCAGACCGACGTCGTCACCGAGGACCGCTGGGCAAGTGCCGCGGACTCCGCGTACGACAACGACGCGGACTGGGACGACCGGCGCTACTGA	MGRGRQKAKQTKVARALKYYSPETNYHALEQELKESQTDVVTEDRWASAADSAYDNDADWDDRRY				NA	NA	NA	NA	NA
AK001_02651	255			hypothetical protein	ATGTCGTTCCACGGTGACTCCGAGGTCCTGTTGACGCCCGCCGAGGTAGCGAGCCTCTTCCGCGTCGACCCGAAGACCGTGACGCGGTGGGCCAAGGCGGGCAAGCTCTCGTCGATCCGGACCTTGGGCGGGCACCGCCGCTACAAGGAGTCCGAGGTCCGTGCGCTGCTCGGCGCCGCGTCGGACGCGGCGGAGGCCGAGGCCGCGGCGAACGCGGGCGGGACGCCCGACAGCGCGGCGGACCACAGCAAGTAG	MSFHGDSEVLLTPAEVASLFRVDPKTVTRWAKAGKLSSIRTLGGHRRYKESEVRALLGAASDAAEAEAAANAGGTPDSAADHSK				NA	NA	NA	NA	NA
AK001_02652	330			hypothetical protein	GTGAGCCAGCAGTCCACCACCGACCCGGCCCTGCCGAACGGGGCACCCGCCCCGACCCGCAAGGAGCTCGAGTCCGAGGTCCAGGAGGCCCGTCGCGAGCTCGGTGACGCGCTCGACCAGCTCACCACGCGGCTCTCGCCCGCCTACCAGGCTTCCCAGCTGGCCCGCGGCACCCGCCAGGCCGCCGACGACGCCAAGGGGCTGTTCACCGGGGCCGGCCTGCCCGAGGACGCGCCGCGGTCACGCAACGTCAAGATCCTCCTGGGCGCCGCCGCCGTCGGGGCGGCCGCGCTCGCCGCCCTCGTGGTCAAGGCGGTCGCTCGACGCTGA	MSQQSTTDPALPNGAPAPTRKELESEVQEARRELGDALDQLTTRLSPAYQASQLARGTRQAADDAKGLFTGAGLPEDAPRSRNVKILLGAAAVGAAALAALVVKAVARR				NA	NA	NA	NA	NA
AK001_02653	417			hypothetical protein	ATGACGGACTGGGACGACGGGCAGGCACCGCCCGCCGAGCGGCCCCCCAGCGTGGGCCGGCTCGTGGAACAGATCTCGGAGCAGGCCACACGGCTGGTGCGCGCCGAGATCGCGCTGGCGAAGGCGGAGGCGGCCGAGAAGGCGAAGCGTTCGGGCATCGGCGTCGGCCTGATCGTCGGCGCCCTGGTCGTCGTGCTCTACGCGCTCGGCGTCTTCGTCGCGACCGCCATCATCAGCCTCGACCTCGTCTGGCCGCTGTGGCTCTCCGCGCTCGTGGTCGGCCTGGCCCTGATGTTGCTCGCCGGGGCGTTCGCGGGGATCGCCGTCGCCCAGCTCAAGCAGGCGAGCCGCCGGCCCGAGACGATCGACCGGGTCAAGGAGGACGTCACCACCGTCAAGGAGGGGATGAAGCGGTGA	MTDWDDGQAPPAERPPSVGRLVEQISEQATRLVRAEIALAKAEAAEKAKRSGIGVGLIVGALVVVLYALGVFVATAIISLDLVWPLWLSALVVGLALMLLAGAFAGIAVAQLKQASRRPETIDRVKEDVTTVKEGMKR				NA	NA	NA	NA	NA
AK001_02654	582	mtcA1	COG0288	Beta-carbonic anhydrase 1	ATGTCTGTGCTCGACGAGATCCTCGACGCGAACCGGGCCTACGCCGCCGAGTTCGGCGCCCGGTCGGAGCTGGCGCTGCCGCCCGCACGCGGCTTCACGATCCTCACCTGTATGGACGCCCGGCTCGACCCGGCGAAGTACGCGGGCCTCGCCGAGGGCGACGCGCACGTCATCCGCAACGCCGGCGGACGGGCGTCCGACGACGCCATCCGCTCCCTGGTGATCTCGTACAAGCTCCTCGGCACGCGCGAGTTCTTCGTGATCCATCACACCGACTGCGGCATGGAGTTCTTCACCGACGAGGTCATGAGCGGGCTGCTGGCGCAGAGCCTCGAGACCGCCGAGCTCGGGCCCGACGGCTTCCGCGACGTCGGGGAGGGTCCCGGCTCGAGCGCCGGCGCAGACGTGGACTGGCTCACGATCTCCGACCGGACCCAGGCCGTCGTCGACGACGTCGTGCGCATCAGACACAGCCCGCTCGTGCCGGGCCGCATCCCCGTCCACGGGTTCCTCTACGACGTCCGCACCGGCCGACTGATCGAGGTCGACGCCGCCACCGACGCCGGGCGCGCCACCGACTGA	MSVLDEILDANRAYAAEFGARSELALPPARGFTILTCMDARLDPAKYAGLAEGDAHVIRNAGGRASDDAIRSLVISYKLLGTREFFVIHHTDCGMEFFTDEVMSGLLAQSLETAELGPDGFRDVGEGPGSSAGADVDWLTISDRTQAVVDDVVRIRHSPLVPGRIPVHGFLYDVRTGRLIEVDAATDAGRATD	PGPT0002415_6382	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673	NA	NA
AK001_02658	354			hypothetical protein	GTGGTGGAGATGTCGCGCGAGGAGTTCGAGGCCGCCGTCTCGGACGGACTCGACCAGGTGCCGGAGCAGCTGACCCGGTTGATGGACAACGTCGTGGTGCTCGTCGAGGACGACGCGCCGCCCGAGGACCCCGAGCTCCTCGGGCTGTACGAGGGGGTGCCGCTCACGGAACGCGACCAGGCGTGGGCCGCCGGGTCGCTGCCCGACCGCATCACGATCTACCGGCACCCGACCCTGTCCATCTGCTCCTCCCCGGACGAGGTCGCCGAGGAGGTCGCCGTCACGGTGGTGCACGAGATCGCCCACCACTTCGGCATCGACGACGACCGGCTGCACGAGCTCGGCTGGGGCTGA	MVEMSREEFEAAVSDGLDQVPEQLTRLMDNVVVLVEDDAPPEDPELLGLYEGVPLTERDQAWAAGSLPDRITIYRHPTLSICSSPDEVAEEVAVTVVHEIAHHFGIDDDRLHELGWG				NA	NA	NA	NA	NA
AK001_02659	1044			hypothetical protein	GTGACCGCACCCCGCTTCCCCCTGCCCCGGCGCCGCACCGGCCGGCACGGCGAGACCCGCCGTCGCTCCGGCGCCACCGGCACGCCCCGCACCGCCGTCGGCGGCGCCATGGCCGGGCTCGCGCTGACCGCCGCCGTCGCGACCGCCGTGGTCCCCGGCACGGCCGGCGCCGAGACGGCGACGACCGCCACGCCGACCGGCGCCGCGAGCACCGCACCGTCCCCCGGCCCGTCCGCGTCCGTCGTCACGTCCTCCGACAGCACGACCGTCACCGCGACCGCGGCGCTGCAGCGCGCCGAGACCGTCACCCAGCAGACGGCGTCCCTGCCCCGCAAGCAGGAGCGCCGGATCGAGGCCCGCGCGGAACGCCTCGCCGAGCTCCTGGAGAGCCGTGGGCAGACAGGCGCCTCGCGCGCCTCCGAGCGCGCCCCGCTGCCGGAGTCCGGTGGGCGGGAGGTCCCCGCCGACAGCGCGACGCTGGCCGAGGCGACGACGAAGCTCACGAAGCTGCTGGACGACGCCGAGTCCACGGCGATCGAGGTCCAGGCCGCCCCGCCGACGCCCGCCGAGGTCGCCGACGTGCAGGCCGACCGGGCGAAGAAGGCGGCGAAGAAGATCGCCCGCCACGCCGACTCCCTGGACGACTTCGCCAACGGCCGGGTCCCCGCCGGCAAGATGAAGAAGCTCTCCTTCGCGAAGGGCGAGACGCTGCGGGCCGACGCCGCGGCCCAGCTCGAACGGCTCGACGTCGCCTACCACGCCCGGTTCGGCAAGCACCTGTCGGTCACCGACTCCTACCGCTCGTACGAGTCCCAGGTGGCCACCCGCGCCAGCAAGGGCTACATGGCCGCGGTGCCGGGATACTCGAACCACGGGTGGGGCGTGGCCGTCGACCTCGGGGACGGGGTCGAGTCCTTCGGCACCCCCGAGTACGAGTGGATGCGCGAGCACGCCCCCGAGTTCGGCTGGGACAACCCGGCCTGGGCCCGGGCCGACGGCCGCAAGCCGGAGGCCTGGCACTGGGAGTACGCCCCCATCGGCTGA	MTAPRFPLPRRRTGRHGETRRRSGATGTPRTAVGGAMAGLALTAAVATAVVPGTAGAETATTATPTGAASTAPSPGPSASVVTSSDSTTVTATAALQRAETVTQQTASLPRKQERRIEARAERLAELLESRGQTGASRASERAPLPESGGREVPADSATLAEATTKLTKLLDDAESTAIEVQAAPPTPAEVADVQADRAKKAAKKIARHADSLDDFANGRVPAGKMKKLSFAKGETLRADAAAQLERLDVAYHARFGKHLSVTDSYRSYESQVATRASKGYMAAVPGYSNHGWGVAVDLGDGVESFGTPEYEWMREHAPEFGWDNPAWARADGRKPEAWHWEYAPIG	PGPT0024055_123	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260	NA	NA
AK001_02660	600			hypothetical protein	ATGACGCCCCCACCCGTGACCGTGTCGATCCACCGTATCGTCAGTCCCGAGAAGGTGCCCGAGGTCACGGCCTGGGTGCAGTCCGGGGTCCGGCTCGCCAACCGGTGGCCCGGCTTCCTCGGCTCCGGGTGGATCCGTGCCGCCGAGGGGTCCACGGACTGGGTGATGCTCTACCGCTTCGCCGACGCCGACCGGCTGCAGGCCTGGGAGACGTCGGACGAGCGTCGTGAGTGGCTCGCCCGGGGCGAGGGCCTCGTGACGGAGCAGGCGGTCACCCGGCGGACCGGCATCGAGGGCTGGTTCGACCCGCCGGTGCGCCAGGACGAGCCGTCCGGGCCCCCGCTGCTGCCGGCGCCGCCGCGGTGGAAGCAGTCGATCGCGATCTGGCTCGGCTTCTTCCCGGTCAACCTGGCGTTCACCGCGCTGGTGGCGTGGCTGCTGCCCGCCTTCGACGGGCTGCCGCTCGTGCTCCGGGTGCTGATCACCACGCTGATCCTCACGCCCGTCATGTCGTTCTGGGTGCTGCCCTGGGTGACCGGGCGGCTGCGCGTCTGGCTGCACCGGCCGCCCCGGAGGCGGCGGTCCGTCCCGCGCCGCTGA	MTPPPVTVSIHRIVSPEKVPEVTAWVQSGVRLANRWPGFLGSGWIRAAEGSTDWVMLYRFADADRLQAWETSDERREWLARGEGLVTEQAVTRRTGIEGWFDPPVRQDEPSGPPLLPAPPRWKQSIAIWLGFFPVNLAFTALVAWLLPAFDGLPLVLRVLITTLILTPVMSFWVLPWVTGRLRVWLHRPPRRRRSVPRR				NA	NA	NA	NA	NA
AK001_02661	1695			hypothetical protein	ATGCTCTGGGACGTTGACGGCGGCGGTATCGACGAACAGACGGTGGACGACACGGTCGAGGCGACCGTCTCCCTGACCGTGACGCTGATCTGGGCCGGGGCCGCCATCGTGGTGGCCTACGTCCTGGTGACCGTGGTGTCCGCGCTCATCCGGCGCCTCGCCCGACGCCGCCCGCTCCTGCGGGACATGGCGACCCGGCTCCGCAAGCCGCTGCGCGCGCTGCTGATGACGATCGCCGTCTGGGTCGCGGTCACGCTGTCCGCGCACCAGGACCAGGCCTGGTACGGGTTCGTCCAGCACTCGCTGCTCATCGCCACCATCCTCGCCGGGTCGTGGCTCCTGGGGGCGATGGCGTTCGTGGTCGAGGACCGCACCCTCGCCCGGATCTCCGGTAGCCACGACGACCGGCACAAACGCCGGGTGGAGACCCAGATCTCCGTCATCCGGCGGTTCACGGTCGCGGTCGTCGTCGTCCTGGCGATCGCCGCCGTCCTGCTCACGTTCCCGCAGATGCGTGCGGCCGGTGCCTCCATCCTGGCCTCGGCCGGTCTGCTCTCCCTGGTCGCCGGCCTCGCCGCCCAGTCGAGCCTGGCGAACACCTTCGCCGGGATGCAGATCGCCTTCACCGACGCGATCCGCGTCGACGACGTCGTGGTCCTGGAGGGGGAGTTCGGCCGGATCGAGGAGATCACCCTGACCTACGTCGTCGTCCACGTCTGGGACGACCGGCGGATCATCCTGCCCAGCACCTACTTCACGACCACGCCGTTCGAGAACTGGACCCGCCGCGCGGCCGACCTGCTCGGCACCGTCGAGCTGGACGTCGACTTCCGCGCCCCGCTGCCGGCGATGCGTGCCGAGCTCGACCGGATCCTGCACGCGTCGTCGCTGTGGGACCGACGGCTCGGCATCCTCGAGGTCACGTCGGCCACCGAGGGGTACGTCCGGGTCCGCGCACTGGTCAGCGCGCAGGACTCGCCGACCCTGTGGGACCTGCGGTGCACGGTCCGGGAGGGACTGGTGGCCTGGCTGCAGCGGGAGGCCCCCTACGCCATCCCGCGCTCGCGGTTCGAGGAGGCCGACAGCGTGCTGCCGCCGGCCGACGCGGCGGAGCCTGACCGGGCGACCACGGACGAGCCGGAGCCCGCGCCGCGGACCGACGCCGACGCCGAGCAGTCCGGCACCGACGAGCCCGCGGCGGAGGACGAGGGCGTCATCGTCGTCGAGGGACGGTCCGCGACCTCCGGGCCGCGCCGGCCGTCGGTCCGTGACCGCGGGCTGCTGCGGCGGATCCGGCGGCACCACGGTGACAGCGGCACCGTGCCCGCCGCACCGGTCCCGGAGCAAGCCGAGCAGACCGTCGTCCTCGAGAGCGTCGACCGTCCCGGCCTGTACAGCGGCAGCGAGTCGGCCGAGGAGCGGTCACGGACGTTCAACGGTCCCGGTCAGGACGTCATCGAGGAGCGCGAGGAGAACGCGGAGCGGCGTCTGACCGGTGAGATCCCGATCGACGAGCCCGGCGCCGCGACCCCGGACGACCCGGACGCACCGCTGGACGACCGGGCCCGGGAGCGGCACGCCGGGCAGGATCCCGAGCGCCCGGAGGACGACGACCCGCACCGCCGGATGCGCCGGACCGGCCTCTCCCGGGACTCCGGGGAGGGCGGGCCCGTCGACGGCGGGGACGGGGGCTAA	MLWDVDGGGIDEQTVDDTVEATVSLTVTLIWAGAAIVVAYVLVTVVSALIRRLARRRPLLRDMATRLRKPLRALLMTIAVWVAVTLSAHQDQAWYGFVQHSLLIATILAGSWLLGAMAFVVEDRTLARISGSHDDRHKRRVETQISVIRRFTVAVVVVLAIAAVLLTFPQMRAAGASILASAGLLSLVAGLAAQSSLANTFAGMQIAFTDAIRVDDVVVLEGEFGRIEEITLTYVVVHVWDDRRIILPSTYFTTTPFENWTRRAADLLGTVELDVDFRAPLPAMRAELDRILHASSLWDRRLGILEVTSATEGYVRVRALVSAQDSPTLWDLRCTVREGLVAWLQREAPYAIPRSRFEEADSVLPPADAAEPDRATTDEPEPAPRTDADAEQSGTDEPAAEDEGVIVVEGRSATSGPRRPSVRDRGLLRRIRRHHGDSGTVPAAPVPEQAEQTVVLESVDRPGLYSGSESAEERSRTFNGPGQDVIEEREENAERRLTGEIPIDEPGAATPDDPDAPLDDRARERHAGQDPERPEDDDPHRRMRRTGLSRDSGEGGPVDGGDGG				NA	NA	NA	NA	NA
AK001_02662	798	ugpQ	COG0584	Glycerophosphodiester phosphodiesterase, cytoplasmic	GTGACCACGCTCCTGCCCGATCGTCCGGACCCCGACCGTCCCGTCGTCGTCGCGCACCGCGGCTGCTCGGCGGTGGCCCCCCAGAACACGTTCGCCGCGTTCGAGGCGGCCTGGCGCTCCGGCGCCCCCGCGCTCGAGCTCGACGTCCGCCTCACCGCCGACGGCGTGCCCATGGTGATCCACGACCCCGTCGTGGACCAGGTGACCGACGGCACCGGTGCCGTCGCCGACCTCGACGCGGACGCCGTCGAGCGGCTCGACGCCGGGGCACGCTTCGCGCCCGCCTTCGCCGGCCAGCGCATCCCCCGGCTGGACGACGTGCTGGCTTTCCTCGCCGCCCGCCCGGGGATGGACCTGCTCTGCGAGTACAAGGGCGTCTGGACGGCCGACCAGGTCGCGCCGACGACCGCGGCGATCGACGCCGCCGGTCTGGCCGGCCGCTGCATCGTCCAGGGCTTCCGCCGGGAGACGGTCGCGGCGCTGCGCGAGGCGGCACCGCACCTGCCGCGCGGGCTGCTGTGCGAGGAGGTCCCGCCCGACCTGCTGGACGCCGCCGCCGACCTCGACGTGGTGACGGTCAACCCGGCGGTGGCCGCGGTCCTGGCCGACCCCGCGCTCGTCCGACGCGCCCATTCCGCGGGGCGCCGGGTCATGCCGTGGACGGCGAACGCGCCCGCGGAGTGGGACCTCCTGCTCCGGGCCGGGGTCGACGGGGTCGTCACCGACCGCCCGGGTGAGCTGCGGGGATGGCTCGCCGGACGGGCCACCCGCCGCGCGGCGGAGGCCGGGAGCGGTTAG	MTTLLPDRPDPDRPVVVAHRGCSAVAPQNTFAAFEAAWRSGAPALELDVRLTADGVPMVIHDPVVDQVTDGTGAVADLDADAVERLDAGARFAPAFAGQRIPRLDDVLAFLAARPGMDLLCEYKGVWTADQVAPTTAAIDAAGLAGRCIVQGFRRETVAALREAAPHLPRGLLCEEVPPDLLDAAADLDVVTVNPAVAAVLADPALVRRAHSAGRRVMPWTANAPAEWDLLLRAGVDGVVTDRPGELRGWLAGRATRRAAEAGSG	PGPT0018470_5847	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126	NA	NA
AK001_02663	414			hypothetical protein	ATGGCAGCTGTCCGTCCCACTGCCCGACCGGGGAGCGTCACCGTCGTCGTCGTCCTGACCTGGATCGTCGTCTTCTTCTCCGCTCTCGCCGGCGTCATCATGCTCCTCGCCTCGGACGAGGTCCTGGCCGAGGCCGGCATCAGCGCGAGCAACGCCGCCGTCTACTCGTGGACGGAGATCGCCTTCGGCGTCATCACTGCGTTGGTCGCCATCGGACTGAGCAACGGCAACCGGTTCTCCCGCTTCCTCGTCACCGTGCTCATGGCTGTCCGTGCGGCGCTCACGCTCTGGACGGTCATCTCGTGGTGGGGCACCGCCGGCTCGTGGTCGGCGCTCGTCTCGGGGTTGTTCGCGATCCTGGTGATCTCGATGCTGTGGAACGCTCGGGCCAACGAGTTCTTCCGCTCCACCTGA	MAAVRPTARPGSVTVVVVLTWIVVFFSALAGVIMLLASDEVLAEAGISASNAAVYSWTEIAFGVITALVAIGLSNGNRFSRFLVTVLMAVRAALTLWTVISWWGTAGSWSALVSGLFAILVISMLWNARANEFFRST				NA	NA	NA	NA	NA
AK001_02665	285			hypothetical protein	GTGCTCACCGTGACGGACAACGCCCGCACCGCCGTCGACTCGCTGGCCGAGCAGGCCGGTGTACCTGCCGAGGGTGGTCTGCGCATCGCGCAGTCCGCCGAGCAGCCCGGCAACTTCGAGCTCGCGCTCGTCCCCGCGCCTCAGCCCGAGGACCAGGTGGTCGACGAGTCCGGACAGACCAACGTCTACGTCGACGCCAGCGCGGCGACCGCGCTCGCCTCGCTGCAGCTCGACGCCGAACCTTCCACCGAGGGCCCGGGGTTCGTGCTCACTCCCCAGGGCTGA	MLTVTDNARTAVDSLAEQAGVPAEGGLRIAQSAEQPGNFELALVPAPQPEDQVVDESGQTNVYVDASAATALASLQLDAEPSTEGPGFVLTPQG				NA	NA	NA	NA	NA
AK001_02666	822			hypothetical protein	GTGTCGTCCACGTCCCATCGCGCCGAAGGCGCTGCGCGCCAGGCCCGCAACAGCTCGGCCGTCCGATTCCTCGCCCGTGCGGGGTTCGCCGCCTCGGGCCTGGTGCACCTGATCCTCGGCTGGCTGGCCGTGCAGCTGGCGCTGGGGTCGTCCTCCGGGTCGGCGGACCAGTCCGGCGCGCTGCGCCAGGTCCAGCAGGCTCCGGGCGGTGACGTCGTGCTGTGGGCGGTGACGGTCGGGTTCGCGGCGCTCGCCCTGTGGCAGCTCCTCGAGGCGCTGCTCGGCGTGCCCGGCGTGTCGGACGCGAAGGAGGTCGGCGCGCGGGTCAAGGCGGCGGCCAAGGGTGTGCTCTACGGGGTGCTGGCCGTCACGGCGGCCCGCTACGCGACCGGCTCGGGCTCCGGCGGCGGGAACCAGGAGGAGAGCTACACCGCGATGGTGATGCAGGCGCCGGCCGGCGTCTGGCTGGTGGGTGCCGCGGGCCTCGTCGTGGTCGGCGTGGGTGTGTACCACGTGGTCAAGGGCGTGCGGAAAAAGTTCCTCGAGGACCTGCGCGGGACGGGTGGGGGTGCGGTCGGCGCCGCGGTCGTGCGTCTCGGCCAGATCGGCTACGTCGCCAAGGGCGTCGCTCTCGGCGTGCTCGGCGGCCTGTTCGTCGCGGCGGCCGTGACCCACGACGCCGACCAGGCCGGCGGGCTCGACGAGGCGCTGCAGACGATCCGCCAGCAGCCCTTCGGCACGGGCCTGCTCATCGTCATCGGGATCGGCATCGCGGCCTACGGCGTCTACTCCTTCGCCCGGGCGCGCTACGCGAAGCTGTGA	MSSTSHRAEGAARQARNSSAVRFLARAGFAASGLVHLILGWLAVQLALGSSSGSADQSGALRQVQQAPGGDVVLWAVTVGFAALALWQLLEALLGVPGVSDAKEVGARVKAAAKGVLYGVLAVTAARYATGSGSGGGNQEESYTAMVMQAPAGVWLVGAAGLVVVGVGVYHVVKGVRKKFLEDLRGTGGGAVGAAVVRLGQIGYVAKGVALGVLGGLFVAAAVTHDADQAGGLDEALQTIRQQPFGTGLLIVIGIGIAAYGVYSFARARYAKL				NA	NA	NA	NA	NA
AK001_02667	753			hypothetical protein	ATGGCGGCCGTGGACGACTTCCTCACGACCGCCGGCGACGTGCTCGCACAGATCTGGACCGCCGCCACGACCGCCGTGGCGCCCCCCGACCGCACGGTGGTGATCGCCGCGGGACTGGCCGCGCTCGCCGTCGTGCTGGTGTCCCCGGTGTGGCGCGTCGCACGCCACGTCATCACCATCGCGCACGAGGGCGCGCACGCCGTGGTGGCGATGGTCACCGGCCGACGGCTCGACGGCATCCGCCTGCACTCGGACACCTCGGGGCTGACGGTGACGGCGGGACGGCCCCGCGGTCTCGGCATGATCCTCACCGCGTTCGCCGGCTACGTCGGGCCGGGCCTCGTCGGACTCGGCGCGGCGTGGCTGCTGCGTGCCGGGTACGCCGTCGGCCTGCTGTGGCTGCTCGTCCTCCTGCTGGCCCTGCTGCTGCTGAAGATCCGCAACTGGTTCGGGCTGTGGTCGGTGCTCGTCAGCGGCGCGCTGCTCGTCGGCGTGTCCTGGTGGCTCGAGCCCGCCGTGCAGTCGGCCGTCGCGTACGCCGTGACGTGGTTCCTGCTGCTGGGCGCGGTGCGGCCGGTCGTCGAGCTGCAGTCGCAGCGGGCCCGGGGCCGGGCCCGGACGTCGGACGCGGATCAGCTCGGCCGACTCACCGGCGTGCCCGGGATCGTGTGGGTCCTCGTCTTCGGCGCCGTCACCGTCGGCGCGCTGGTGCTCGGCGGGTCGTGGATCGTCGGCCCGGTCACGCCGTCCTGA	MAAVDDFLTTAGDVLAQIWTAATTAVAPPDRTVVIAAGLAALAVVLVSPVWRVARHVITIAHEGAHAVVAMVTGRRLDGIRLHSDTSGLTVTAGRPRGLGMILTAFAGYVGPGLVGLGAAWLLRAGYAVGLLWLLVLLLALLLLKIRNWFGLWSVLVSGALLVGVSWWLEPAVQSAVAYAVTWFLLLGAVRPVVELQSQRARGRARTSDADQLGRLTGVPGIVWVLVFGAVTVGALVLGGSWIVGPVTPS				NA	NA	NA	NA	NA
AK001_02668	1563	rhlE_3	COG0513	ATP-dependent RNA helicase RhlE	ATGTCTGCCGAGGGCGCCAGCGACCACCGCGCGCCCCGCGTCGTGGAGATCCCCCCGGATTGCGTGCGGCGGACCCCGACCGTGGACGTCGTCGACGTCCGGAGAGGCTTCTCGTTGACTTCATTCGCCGACTTCGGCCTGCCCACGCCTGTGGTGCAGCACCTGACCGACGCGGGCATCACCAGCCCGTTCCCCATCCAGGCGGCCTCGCTGCCGGACACCCTCGCCGGGGCGGACGTCCTCGGCCGCGGGCGGACCGGCTCGGGCAAGACCCTGGCGTTCTCGCTGCCGGTCGTGACCCGGCTCGCGCACCGCGCCGCGGCCGAGCGTGCCGCAGGTCGGCCCCGCCGCGTGGCGAACCGCCCCACGGCGCTCGTGCTGTGCCCCACCCGCGAGCTCGCGAACCAGATCGACGCCACGATGAAGCCGCTGGCCGAGGCGCTCGGGCTGCGCACGACCACGATCTTCGGCGGCGTGGCCCAGTCCCGCCAGGTCACCGCGCTGGGCCAGGGCGTCGACGTCGTCATCGCCTGCCCGGGCCGTCTCGAGGACCTGCTGAACCAGAAGGCGCTGACGCTGGACGACGTCGCGATCACCGTGCTGGACGAGGCCGACCACATGGCCGACCTCGGGTTCCTGCCCGGGGTGAAGCGGATCATGGACCGCACCCCGCGCTCGGGCCAGCGCCTGCTCTTCTCCGCCACGCTGGACAACGGCGTGGACGTGCTGGTCAAGCGCTACCTGAAGAACCCGGTCACGCACTCGGTCGACGAGGCCGCGGCCCCGCCGCCGAAGATGACGCACCACATCCTCGCCGTGGCCGACAAGGAGTCCAAGAAGCAGGTCGTGCACCAGCTCGCCGGCGGCACGGGCCGCCGGGTGCTTTTCACGCGCACCAAGCACCAGGCGAAGAAGCTCGCGCGCCAGCTGACGGCCGCGGGCGTCCCCGCGGTGGACCTGCACGGCAACCTGGGCCAGGGGGCGCGGGAGCGGAACCTCGCGGCGTTCTCCACCGGGGACGTCAAGGTGATGGTCGCCACGGACATCGCGGCTCGCGGGATCCACGTCGACGAGATCGAGCTCGTCGTGCACGTCGACCCCCCGGCCGAGCACAAGGCGTACCTGCACCGGTCCGGCCGTACGGCGCGCGCCGGGTCGGGCGGCGACGTCGTCACGCTCATGCTCCCCGAGGAGCGCGGGGACGTGCGCGACCTGACCCGCAAGGCGCGGATCACGGCGCGGCCCCAGCCGGCCGAGCCCGGGGACGCCACGCTGACGGCGCTCGTGGGCGAGGTCGCCCCGTACGTCGCCCCGCCGGCTCCGCAGCAGCAGGGGTCCTCCCCGAGGTCGGGGCAGCGGGGCGCCGGGTCGCAGCAACCGACGGGCGGCGCGGGCTCCGCACGCTCGGGCGGGGGACGTCGCCGCCGCCGCGGACGGGGCGGTCAGGGCGCGAGCCAGGGCGGAGGCCAGGGCGGCGGCGCGTCGCAGCGCCAGGGCGGCCAGCAGAACCGGCGGCAGCGGGGCGCCCAGGGTGCGGAGCGACAGGGCCAGCGGCGGCGCTGA	MSAEGASDHRAPRVVEIPPDCVRRTPTVDVVDVRRGFSLTSFADFGLPTPVVQHLTDAGITSPFPIQAASLPDTLAGADVLGRGRTGSGKTLAFSLPVVTRLAHRAAAERAAGRPRRVANRPTALVLCPTRELANQIDATMKPLAEALGLRTTTIFGGVAQSRQVTALGQGVDVVIACPGRLEDLLNQKALTLDDVAITVLDEADHMADLGFLPGVKRIMDRTPRSGQRLLFSATLDNGVDVLVKRYLKNPVTHSVDEAAAPPPKMTHHILAVADKESKKQVVHQLAGGTGRRVLFTRTKHQAKKLARQLTAAGVPAVDLHGNLGQGARERNLAAFSTGDVKVMVATDIAARGIHVDEIELVVHVDPPAEHKAYLHRSGRTARAGSGGDVVTLMLPEERGDVRDLTRKARITARPQPAEPGDATLTALVGEVAPYVAPPAPQQQGSSPRSGQRGAGSQQPTGGAGSARSGGGRRRRRGRGGQGASQGGGQGGGASQRQGGQQNRRQRGAQGAERQGQRRR	PGPT0013740_1093	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
AK001_02669	405	msrB	COG0229	Peptide methionine sulfoxide reductase MsrB	ATGACCTACGACGTGACCAAGAACGACGACCAGTGGCGTGCCGAGCTGTCACCGCAGGAGTTCTCGGTGCTGCGACAGGCCGGGACCGAGCGGCCGTGGACCGGTGAGCTGCTGGACGAGCAGCGCGAGGGCGTCTACCGGTGCCGAGGGTGCGCGGGCGAGCTCTTCCGCAGCGAGCACAAGTTCGACTCCCACTGCGGGTGGCCGTCCTTCTACACCCCGCTGGCCGGCGACCGGGTCGAGCTCATCGAGGACCGTTCGCTCGGCATGGTGCGCATCGAGGTGCGCTGCTCCCGGTGCGGCTCGCACCTGGGCCACGTGTTCGACGACGCGCCCCAGACGCCGACCGGGGACCGGTACTGCATGAACTCGGTCAGCCTGACCTTCGAGCCCGCCGAGGGCTGA	MTYDVTKNDDQWRAELSPQEFSVLRQAGTERPWTGELLDEQREGVYRCRGCAGELFRSEHKFDSHCGWPSFYTPLAGDRVELIEDRSLGMVRIEVRCSRCGSHLGHVFDDAPQTPTGDRYCMNSVSLTFEPAEG	PGPT0013070_4630	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305	NA	NA
AK001_02670	759			hypothetical protein	ATGAGCATCGAGACCGGGACGGTCCCGGACCGCCTCGTGAACCTGCGCGACGTCGCGACGTCGTCCGACGCCGTGCGTCCCGGCGTGCTGCTGCGTGCCGACGCCCCGCGCGCCGGTGACGTGCCGCCGTCGGACGTGGTCTGGCCGCCGCGCACCGTCCTCGACCTGCGCGACCCCGGCGAGCAGCGCGAACCGCACCCGCTGGCGGACGTCGCCGGCGTGCTCTCCCTGCCGGTGCTCGACGGTGCGACGCGCGTCGCGCCCGCCGAGCACCGCGGTCCGTTCGACCTCGGACGCCTCTACCTGGAGATGCTCGACGGCGCGGGCGGCCGGCACCTGGCGGCCGGCGTGGCCGCGCTCGCCACGAGCGACGCGCCGGTGCTGGTCCACTGCACCGCCGGCAAGGACCGCACCGGGGTCTTCGTCGCCGCGGTGCTCGCCCTGCTCGGGGTGGAGCGGTCCGCGATCGTTGCCGACTACGTGCGCACCGGGCCCAACATGCCGCGGGTCCTCGCCCGCGCCCGGCACACCTCCCGGGCGCCGGACCGGCGGAGCCACGTCGTCGCCGCGCTCCCGCCGGAGCTCCTCACGGCTCCTGCGCACGCGATCTCGACGGTCCTCGACGCCCTGGCGGCGCGGGACGGCGGTCCTGCCGGCTGGTTCGCCGCCCAGGGAGGGGTGGCGTCGACGGTCAGCTCGCTGCGGGCGAGGATGCTGCGCCCGTCGGCACCGGCTCCTGGCGCGACTCCAGCCAGCTGA	MSIETGTVPDRLVNLRDVATSSDAVRPGVLLRADAPRAGDVPPSDVVWPPRTVLDLRDPGEQREPHPLADVAGVLSLPVLDGATRVAPAEHRGPFDLGRLYLEMLDGAGGRHLAAGVAALATSDAPVLVHCTAGKDRTGVFVAAVLALLGVERSAIVADYVRTGPNMPRVLARARHTSRAPDRRSHVVAALPPELLTAPAHAISTVLDALAARDGGPAGWFAAQGGVASTVSSLRARMLRPSAPAPGATPAS	PGPT0014530_3087	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-WZA-WZC-WZB-WEC_METABOLISM	CE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104	NA	NA
AK001_02671	543			hypothetical protein	ATGATGGGGCACATGCAGGACAGCGCCACGCCCATGACCCCGCCGGACCCGGAGACGGACCCGTTCGGAGCCCTGGAACGCGAGCTCCGGGTGCTGATCCGGCGTGCGCAGTCCACGGCCGCCCAGATGGCCCGGATCATCCACCCCGAGCTCGACGCCTCGGCGTACCCTCTGCTGGCGCACATCGCCCAGTACCCGAACAGCCGCGGGTCCGACCTCGCGGCGCACTTCGGCGTGGGGCGCGCGACCGTCTCGCGCCAGCTCAGCCGGATGGTCGAGCTCGGCCTCGTGCACCGCGAGACCGACCCGGAGGACACGCGCGGGCAGTGCATCACCCTCACGGACGACGGGGCCGCCCGGTTCGAGCACGCCCGCGACTCACGGGTCGTCATGCTCGAGGCGGCGCTGACGGACTGGGAGAAGGACGACATCTCCCAGCTCGCCCTGCTGCTGCGCCGCTACTCGGCCGACGTCGTCAGCTGGCTGGAGTCGCGCCAGGAGCCGGTGCCGACGGGCGCAGCATCCTCGCCCGCAGCGAGCTGA	MMGHMQDSATPMTPPDPETDPFGALERELRVLIRRAQSTAAQMARIIHPELDASAYPLLAHIAQYPNSRGSDLAAHFGVGRATVSRQLSRMVELGLVHRETDPEDTRGQCITLTDDGAARFEHARDSRVVMLEAALTDWEKDDISQLALLLRRYSADVVSWLESRQEPVPTGAASSPAAS				NA	NA	NA	NA	NA
AK001_02672	957	fdh_2		D-threo-aldose 1-dehydrogenase	ATGCGTCCGCTGCCCGGCACGGACCTGAGCGTCAGCGCGGTCTGCGCGGGCGGTTCGCCGCTGGGGTCGATGCCCGCGGTCTTCGGCTACGACGTCGCCGCGGACCAGGCGGCGGACACCGTGCGCGCCGTGCTGGACTCCCCGATCCGCATGCTCGACACCGCGAACGGCTACTCCGACGGCGAGAGCGAACGCCGGATGGGTGCCGGCCTCGCCGCCTACCGCGCCGACCACGGCGCCCTGCCCCCCGGACTCGTGGTGGCCACGAAGGTGGACCCCCGCGACGGGGACTACTCCGGGGACCGGGTGCGTCGCTCGGTCGAGGAGTCCCGCGAGCGGCTCGGGCTCGACCACCTGCCGCTGGTGCACCTGCACGACCCGGAGAACTTCGCCTTCGAGGACCTGACAGCGCCCGGCGGCGCGGTCGACACGCTGGTCGAGCTGCGCGAGGCGGGCGAGATCGGGGCCGTCGGGCTCGCCGGCGGCCCCGTGCCGGTGATGCGGCGCTACCTGGACCTCGGGGTGTTCGACGTCCTGCTCGTGCACAACCGTTGGACCCTGGTGGACCGGTCGGCCGGCCGTCTCGTGGCCGCGGCCGCCGAGCGCGGGACGGGCGTGATCGACGCCGCGGTCTACGGCGGCGGGATCCTGGCTCAGCAGACGCCGTCGGAGCGCCGCAGCGCGACCCGCTACGGGTACCGTCCCGCACCGCCGGAGACCCTGGCCGCCGTCGACGCGCTGCGCGCGCTGTGTGCCCGCCACGGCACGACGCTGCCGGTCGCGGCGCTGCAGTTCTCGCTGCGCGACCCCCGGATCGCCGCCACCGTCGTGGGCGTCTCGCGGCCCGAGCGTGTCGCCGCGACGCTCGCGGCCTGCGGGACGCCGCTGCCGGCCGACTTCTGGGCGGAGGCCGAGGAGCTCCTGCCCGGGCCGGACGCCTGGCTCGACGGCGCCTGA	MRPLPGTDLSVSAVCAGGSPLGSMPAVFGYDVAADQAADTVRAVLDSPIRMLDTANGYSDGESERRMGAGLAAYRADHGALPPGLVVATKVDPRDGDYSGDRVRRSVEESRERLGLDHLPLVHLHDPENFAFEDLTAPGGAVDTLVELREAGEIGAVGLAGGPVPVMRRYLDLGVFDVLLVHNRWTLVDRSAGRLVAAAAERGTGVIDAAVYGGGILAQQTPSERRSATRYGYRPAPPETLAAVDALRALCARHGTTLPVAALQFSLRDPRIAATVVGVSRPERVAATLAACGTPLPADFWAEAEELLPGPDAWLDGA	PGPT0017915_483	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064	NA	NA
AK001_02673	1659	bmr3_2		Multidrug resistance protein 3	ATGACCGACACCACCGCCGGCCGCACCCCGGCCATGACCCGTCGCGAGACGCTGGAGGCCCTCTCGGGCATCCTGCTCGGGGTCTTCGTCTCCCTGCTCGCGACGACCATCGTCTCGACGGCCCTGCCGCGCATCGTCGCGGACCTCGACGGCTCCCAGCACGCCTACACCTGGGTCGTCACCGCGATGCTGCTGACGATGACGATCTCGACCCCGCTGTGGGGCAAGCTCGCCGACCTGACGAACCGCAAGACCCTGATCCAGATCGCCCTGGTGATCACGGTCGTCTCCGCCGCCTCGGCCGGGTTCGCGCAGAACATGGAGATGCTCATCACCTCGCGCGCCCTGCAGGGCATCGGCGCCGGCGGTCTGATGTCGCTGGCGACCGTCCTGATGTCGGACATCATCAGCCCCCGCGAACGCGGCAAGTACATGGGCCTGATGGGCGGCGTGATGGCCGTGGCCCAGATCGGCGGCCCGCTGCTCGGCGGCCTCATCACCGACTCCGTCGGCTGGCGCTACACGTTCTTCGTCGGCGTCCCGTTCGCCGTCGTCGCGCTGGTCGTGCTCCAGAAGACCCTGCACCTGCCGGCTCGCCCCCCGCGGGCGGTCCGCATCGACTACGTCGGGGCCGGCCTCATCGCCGTCGGCGTCGCGCTGCTGCTGCTGTGGGTCACCTTCGCCGGCGACCAGTTCGCCTGGGCGTCCTGGCAGACCGCCGCGATGGTCGGCGCCGCCGCCGTCGCCCTGCTCGGCGCCGTCCTCGCCGAGCGTCGCGCGCCGGAACCGATCATCCCGCTGCACCTGTTCCGCAACCGCACGTTCGTGCTCTCGATCGTCGCGTCGGCGGCCGTGGGCGTCGCGATGTTCGGCACCGCGGTGTTCCTCGCCCAGTACCTGCAGCTCGCTCGCGGCATGACGCCCACCCAGTCCGGCCTGCAGACCATCCCCATGGTCGTCGGCACCATGCTCGGCGGCATCGTGCTCGGCCGGGTCATCTCGCGCACCGGCCGGTACAAGGCGATCATGATCGGCGGCGCCGTCGTCCTGACCGCTTCGCTGTTCGGGATGTCCACGATCGGGACCGGCACCAGCCTCGTCGTGCTCTCGGTCTTCCTGTTCGGCCTCGGCCTGTCGGTCGGTGCCCTCATGCAGAACCTCGTGCTCGCCACGCAGAACACGCTGGACCTGCGGGACATGGGTGCCGGGACCGCCACGGTGGCGTTCTTCCGGTCCCTCGGGGGCGCGATCGGGGTCTCGGCGCTCGGTGCCGTGCTGGCGAGCGACGTCCGGGACGAGCTGGCCCGGGGGCTGGCCGAGCTCGGCGTCCCCACCTCGGCGATCGGCGGGTCCACCGGCGCGGTGCCCGACATGTCCGCGCTGCCGGGACCGGTGGCCGACGTCGTCGCCTCCGCCTACACCGAGGGGATCACCGGGATCTTCCTCGTCGCGGTCCCCCTGGCCGTCGTCGCCCTGGTGGCCATCTGCTTCATCGTCGAGATCCCGCTCGGCGAGCGGTCCGGCATCGAGCAGACGCGCGACCTCGCGGCCCAGCAGGATGCCGACGAGCCGGCCACGGGGAGCGGCACCGACGGCACCGACACGGTCGCCGCGCCGTCGACCACTGCGGCGACCACGCCGGTGGCCGCCCGCGACTGA	MTDTTAGRTPAMTRRETLEALSGILLGVFVSLLATTIVSTALPRIVADLDGSQHAYTWVVTAMLLTMTISTPLWGKLADLTNRKTLIQIALVITVVSAASAGFAQNMEMLITSRALQGIGAGGLMSLATVLMSDIISPRERGKYMGLMGGVMAVAQIGGPLLGGLITDSVGWRYTFFVGVPFAVVALVVLQKTLHLPARPPRAVRIDYVGAGLIAVGVALLLLWVTFAGDQFAWASWQTAAMVGAAAVALLGAVLAERRAPEPIIPLHLFRNRTFVLSIVASAAVGVAMFGTAVFLAQYLQLARGMTPTQSGLQTIPMVVGTMLGGIVLGRVISRTGRYKAIMIGGAVVLTASLFGMSTIGTGTSLVVLSVFLFGLGLSVGALMQNLVLATQNTLDLRDMGAGTATVAFFRSLGGAIGVSALGAVLASDVRDELARGLAELGVPTSAIGGSTGAVPDMSALPGPVADVVASAYTEGITGIFLVAVPLAVVALVAICFIVEIPLGERSGIEQTRDLAAQQDADEPATGSGTDGTDTVAAPSTTAATTPVAARD				NA	NA	NA	NA	NA
AK001_02674	453			hypothetical protein	GTGCCCGACGAGGCCACCACCGCGCTGGTCACCGCGCTCGAGCAGCTCGGCCGCGCCCAGCGCGAGGCCGCCGCCCGCATCGCCCGCGAGCTGGGCCGACCGCGGGCCGCCCTCGGCGTCGTGCGCCTGCTGCGGGCCCGCGGCCCGATCCAGCTCTGCGAGGTCGCCGAGGCCCTCCGCGTGGACTCCTCGGTCGCCAGCCGCCAGGTGGGCGCGCTCGTCGAGAACGGGTACGTCCGGCGCACGGTCGACGAGAGCGACCGGCGGGCCCGCACGCTCGAGCTCACCGAGGCCGGCCGGCGGCTGGCCGACGACAGCGACGAGCAGTTCGAGGCGTTCGTCGGCGAGGCGTTCACCGACTGGACCCCGCACGACCTCTCCGTCGCCGTCGACCACATCCGCAGCGTCGCGGCCGCCATCAGCTCCGTCAGCCAGGAGGCACCCCTCAGATGA	MPDEATTALVTALEQLGRAQREAAARIARELGRPRAALGVVRLLRARGPIQLCEVAEALRVDSSVASRQVGALVENGYVRRTVDESDRRARTLELTEAGRRLADDSDEQFEAFVGEAFTDWTPHDLSVAVDHIRSVAAAISSVSQEAPLR				NA	NA	NA	NA	NA
AK001_02675	621	rutE	COG0778	putative malonic semialdehyde reductase RutE	ATGACCGACACCGTGCTCGAGACCGCCCCCCTCGCCATCGACGAGACAGCGGCGGACCGGCTCTTCCGCCACGCCCGTTCGACGTCCCTGTGGACCGACGCCGAGATTCCCGACGCCCGGTTGGAGGCCGCCTGGGACCTCGCCAAGCTCGGCCCGACGGCGATGAACACGCTGCCGCTGCGGATGCTGATCGTGCGCACGCCCGAGGCGAAGCAGCGCCTGATCGAGCACATGGGCGGCGGCAACAAGGCGAAGGTCGACGCCGCCCCGGTGTCCCTCGTCCTGGCCGCCGACCCCGCCTTCCACGAGCACCTGGACGAGCTCTTCCCGGTCTACCCGGGCGTCCGCGAGCAGCTCGCCCCGGCGACCGCGGTCCGCGAGGAGATGGCACGCAAGAACGCGCTGCTGCAGGCCGGCTACCTCGTCGTCGCGCTGCGGGCCGCGGGTCTCGCCGCCGGCCCGATGGACGGCATGGACACCGACGGGATCGACCGGGAGTTCTTCGCCGAGTCCGGCTGGCGGTCGCTGATGGTCGTCAACGTCGGCGAGGCCGACGGCGAGGGTGCGCCGCACCCTCGCAACAAGCGCCTCGACCTGGAGCAGGTCTCCCGCATCCTCTGA	MTDTVLETAPLAIDETAADRLFRHARSTSLWTDAEIPDARLEAAWDLAKLGPTAMNTLPLRMLIVRTPEAKQRLIEHMGGGNKAKVDAAPVSLVLAADPAFHEHLDELFPVYPGVREQLAPATAVREEMARKNALLQAGYLVVALRAAGLAAGPMDGMDTDGIDREFFAESGWRSLMVVNVGEADGEGAPHPRNKRLDLEQVSRIL	PGPT0021290_139	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021290-rutE|ycdI-K09019	NA	NA
AK001_02676	1053	tsaD	COG0533	tRNA N6-adenosine threonylcarbamoyltransferase	ATGTGGCCCATGCCTGAACCCCTGGTCCTCGGCATCGAGACGTCCTGCGACGAGACGGGTGTCGCCCTGGTGCGCGGCGACACGCTCCTGTTCGACGCGGTGGCGAGCTCGATGGACGAGCACGCCCGTTACGGCGGGATCATCCCGGAGGTGGCCAGCCGCGCCCACCTCGAGGCGATGACCCCCACGATCCGCCGCGCGCTGAGTGAGGCCGACGTCGACCTGTCCGAGGTCGACGCGGTCGCCGTGACCGCCGGCCCCGGCCTGGTCGGTCCGCTGACGATCGGCGCCAGCGCGGCCAAGGCCCTCGCGATCGGGCTCGGCAAGCCGCTGTACGGGATCAACCACGTCATCGGCCACGCCGCGGTGAACCAGCTCGTCGACGGTCCCTTCACCGAGCGGTCCATGGCGCTGGTCGTCTCCGGCGGGCACAGCTCGCTGCTGCTCGTCGACGACATCGCCACGAACGTCACCGAGCTCGGCTCCACCCTCGACGACGCCGCCGGGGAGGCCTTCGACAAGGTCGGCCGCCTCCTGGGCCTGCCCTACCCGGGCGGCCCGCACATCGACCGGCTCGCGCGCGAGGGCGACCCGGAGGCCATCCGGTTCCCGCGCGGGCTGACGGCGCGCAAGGACCAGGCCCGGCACGCCTACGACTTCAGCTTCTCGGGGCTCAAGACGGCCGTGGCCCGCTGGGTCGAGTCCTGCCAGGACGCCGGCAAGGAGGTCCCCGTGGCCGACGTCGCCGCCTCCTTCGCCGCGGCGGTCGCGGACGTGCTCACGGCCAAGACCATCGCCGCCTGCCGCGCCCACGACGTCGACACCCTCATCATCGGCGGCGGGTTCTCCGCCAACAGCCAGCTGCGCGACATGGCGGCCGAGCGCTGCGCCGAGGCCGGCATCGACCTGCGGATCCCGCCGATCCGCTACTGCACCGACAACGGGGCGATGATCGCGGCACTCGGGTCCGCCGTCGTGCGCGCCGGGCTGCCGCCGTCGGACCTGGACATCGCGGTGGACTCCTCGATGCCGCTGACGACGATCACGGTCTAG	MWPMPEPLVLGIETSCDETGVALVRGDTLLFDAVASSMDEHARYGGIIPEVASRAHLEAMTPTIRRALSEADVDLSEVDAVAVTAGPGLVGPLTIGASAAKALAIGLGKPLYGINHVIGHAAVNQLVDGPFTERSMALVVSGGHSSLLLVDDIATNVTELGSTLDDAAGEAFDKVGRLLGLPYPGGPHIDRLAREGDPEAIRFPRGLTARKDQARHAYDFSFSGLKTAVARWVESCQDAGKEVPVADVAASFAAAVADVLTAKTIAACRAHDVDTLIIGGGFSANSQLRDMAAERCAEAGIDLRIPPIRYCTDNGAMIAALGSAVVRAGLPPSDLDIAVDSSMPLTTITV				NA	NA	NA	NA	NA
AK001_02677	1173		COG2170	Putative glutamate--cysteine ligase 2	ATGGTGCTGGAGTTCGAGACCTCCCGGCGGTCGAGCGTCGGCCTGGAGTGGGAGCTGGCCCTGGTGGACGCCGACTCCGGCATCCTGCGCCAGGTGGCCCCCGCCGTCATGGCCGAGCTGGGCCCGGACGCGCGGGCGCGGCACGTCAAGCCGGAGTTCCTGCGCAACACCGTCGAGATCGTCTCCGACGTGTGCGACACCGTCCCGGGAGCCATCGCGGACCTGGAGAACGGGGTCGCCCGCGTCCAGGAGGTCATCCGGCCGATGCGGGCGGAGCTCATGGGCTCCGGCACCCACCCCTTCGCGCCCTGGTCGCAGCAGCAGGTGACCGACAAGGAGCGGTACGCCACCGTCGTCGACCGCGCCCAGGTGTGGGGCCGTCAGCAGGTGGTCTACGGCGTGCACATGCACGTCGGGGTGGAGGACCGCGCCAAGGTGCTGCCGATCGTGCGCTCGCTCCTGGTCTACGTCGCCCACCTGCAGGCCCTGTCGGCGTCGTCGCCGTACTGGGACGCCGCGGACACCGGCTACGCCTCGATGCGTGCGCTCATCTTCCAGCAACTGCCCACGGCGGGGCTGCCCTACCAGTTCACCGAGTGGGCCGAGCTGGAGCGCTACACCGCCGACATGCTCAAGACCGGCGTCATCGACGACTTCACCGAGGTGCGCTGGGACATCCGGCCGGCCCCGCACTTCGGCACCGTCGAGGTGCGCATCTGCGACGGCACCTCCAACGTCGCCGAGCTGGCCTCCCTGGGCGCCCTGGTGCACTGCCTCGTCGAGCACTTCTCCACCCTGCTCGACGAGGGCCGCGCGCTGCCCACCATGCCGCGGTGGTACGTCCACGAGAACAAGTGGCGCGCGGCCCGGTACGGCATGGACGCGATCATCATCCTCGACGCCGACGGCAACGAGGAGCTGATCACCGACGCCCTGCCCCGGCTGCTCGAGGAGCTGGCCCCCGTGGCGGAACGGCTGGGGTGCGCGGCAGAACTCGACGGCATCCGCGAGATCGTGCGCCTCGGCGCCTCCTACCAGCGCCAGCGCGCGGTGGCGGCGGCCCACGGCGGCGGGCAGCGGGGCCTGGAGGCCGTGGTCGGGGCGCTGGTGGCCGAGCTGCACGCCGGCCGGCCGCTCGACCCGTCCGTGCTCGGCCGCGGCGCCGCGACCTAG	MVLEFETSRRSSVGLEWELALVDADSGILRQVAPAVMAELGPDARARHVKPEFLRNTVEIVSDVCDTVPGAIADLENGVARVQEVIRPMRAELMGSGTHPFAPWSQQQVTDKERYATVVDRAQVWGRQQVVYGVHMHVGVEDRAKVLPIVRSLLVYVAHLQALSASSPYWDAADTGYASMRALIFQQLPTAGLPYQFTEWAELERYTADMLKTGVIDDFTEVRWDIRPAPHFGTVEVRICDGTSNVAELASLGALVHCLVEHFSTLLDEGRALPTMPRWYVHENKWRAARYGMDAIIILDADGNEELITDALPRLLEELAPVAERLGCAAELDGIREIVRLGASYQRQRAVAAAHGGGQRGLEAVVGALVAELHAGRPLDPSVLGRGAAT	PGPT0026300_526	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048	NA	NA
AK001_02678	1227			hypothetical protein	ATGGACGCGGCCTCGCTCAGCAAGCTTCTCAGCCCCGAGGGCTGGACCCTGCTCAACGACCTCCCTCCCTACGACGAGTCGCAGGCGATGGCCCTGGCCACGCGGCTCCGCGCCGAGGGGGTCGACCCCGACCTCGCCGCGGCCGCCCTGACCCAGTCTCGCCTGCGCGCCCGCGCCCGAGCCAAGCTCGGTCCGTTCGCCGACGGGATGCTGTTCACCCCGGACGGCCTGGAGCAGGCGACCCGGCTGACCGTCGCCGCCCTGCACGCGCGCCGCTACCTGGCCGCCGGCGTGCACAAGGTCGCCGACCTGACCTGCGGCCTGGGCGCGGACGCGCTCGCCTTCGCCGGCGTGGGACTCGACGTGCTGGCCACCGACGTCGACGAGGTGACCGCCGCCCTGGCCACCGTCAACCTGCGCGCCTTCCCCGAGGCCGAGGTCCGGCACGGCGACGGGCTGGCGCTGGACCTGGTCGCCGAGGGCGTCGACGGCGTGTACGCCGACCCGGCCCGCCGCACGCGCGGCGGGAAGCGGGTCTTCGACCCGTCCGCGTGGGCGCCTCCCCTGGATGCCGTGTGGGCGCTGCGCGAGCAGGTGCCCGCCGTCGGCATCAAGGTCGGCCCCGGGATCGGCCACCAGGGGCTGCCCGAGGACGCCGAGACCCAGTGGGTCTCTCTCGACGGCGACGTGGTCGAGGCCGGGCTCTGGTTCGGCCCGCTCGCCCCCGACGGCCCGGGACGCACCGCCCTGGTGCTGCGCTCCGAGGACGGCGGCACCGCGGCGCGCGTCGTGCGCCCCGGGGCCGAGGGCGCCGACCTGAACCCCGACGTCGGGCCGGTCGGGAGCTACCTGTACGAGCCCGATGGTGCGGTCGTGCGCGCGGGGCTGGTGGCCCACGTCGCCGCCGAGCTGGGCGGGCGGCTCGTGGACCGCAGCATCGCCTACGTCACGACCGACACCCCCGCCGGTCCGCCGCCGTCGGGCACCGCGGCGCCCGCGACGGGCTACCGGGTGCTCGACGTCATGCCCTTCAACCTCAAGCGGCTCAAGTCCTACCTGCGCGAGCGCGGCGTGGGGCGCCTGACGGTGAAGAAGCGCGGCACGGCCGTCACCCCCGAGCAGCTGCGCGCCCAGCTCTCCCTGACCGGCGACGCCGAGGCCACGCTGGTCCTCACCCGGGTCGCGGGGCGTCAGCACGTGCTCGTCGTGGAGCCTCTGCCGAGGTAG	MDAASLSKLLSPEGWTLLNDLPPYDESQAMALATRLRAEGVDPDLAAAALTQSRLRARARAKLGPFADGMLFTPDGLEQATRLTVAALHARRYLAAGVHKVADLTCGLGADALAFAGVGLDVLATDVDEVTAALATVNLRAFPEAEVRHGDGLALDLVAEGVDGVYADPARRTRGGKRVFDPSAWAPPLDAVWALREQVPAVGIKVGPGIGHQGLPEDAETQWVSLDGDVVEAGLWFGPLAPDGPGRTALVLRSEDGGTAARVVRPGAEGADLNPDVGPVGSYLYEPDGAVVRAGLVAHVAAELGGRLVDRSIAYVTTDTPAGPPPSGTAAPATGYRVLDVMPFNLKRLKSYLRERGVGRLTVKKRGTAVTPEQLRAQLSLTGDAEATLVLTRVAGRQHVLVVEPLPR				NA	NA	NA	NA	NA
AK001_02679	297	groS_2	COG0234	10 kDa chaperonin	GTGTCGGTCCCCATCAAGCCGCTCGAGGACCGGATCGTCGTCAAGGCCGTCGAGGCCGAGACCACGACCGCTTCCGGCCTGGTCATCCCGGACACCGCCAAGGAGAAGCCCCAGGAGGGCGAGGTCCTGGCCGTGGGCGACGGCCGCTTCAACGACAAGGGCGAGCGCGTCCCGGTCGACGTGAAGGTCGGCGACAAGGTCATCTACAGCAAGTTCGGCGGCACCGAGGTCAAGTACGCCGGGGAGGACTACCTGGTCCTGTCCGCGCGCGACATCCTCGCCGTCGTGGTCGGCTGA	MSVPIKPLEDRIVVKAVEAETTTASGLVIPDTAKEKPQEGEVLAVGDGRFNDKGERVPVDVKVGDKVIYSKFGGTEVKYAGEDYLVLSARDILAVVVG	PGPT0014565_2287	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078	NA	NA
AK001_02680	300	whiD		Transcriptional regulator WhiD	ATGACGGAGATTTCGCGGTTGCCAGGGCCGGTCATGGAGTTGTGGGAGTGGCAGTACCAGGGGTCGTGCCGCGACGCGGACGACACCCTGTTCTTCCACCCGGAGGGTGAGCGCGGGTCGACCCGTCGACGACGTGCGGAGGCCGCCAAGGCGATCTGTCGCAGCTGCCCGGTGATGATGGAGTGCCGCGAGCAGTCGCTGCGGGTCCGCGAGCCCTACGGCGTCTGGGGCGGGCTCAGCGAGGACGAGCGCTCGGCGATCCTCAGCGGCCGCGACCGCGAGCGCAAGAAGGTCGGCTGA	MTEISRLPGPVMELWEWQYQGSCRDADDTLFFHPEGERGSTRRRRAEAAKAICRSCPVMMECREQSLRVREPYGVWGGLSEDERSAILSGRDRERKKVG				NA	NA	NA	NA	NA
AK001_02681	1119			hypothetical protein	ATGACCCCTTCGCGACCCGCCCAGGATGCTGGGGGGTCGCGTCCGTCGGGCCCCGGGCTGGCGGTCGCGGCCGTCGCGCGGCGCCTCGGCGTCGCGCCCGCCACGCTGCGCACGTGGGACCGCCGCTACGGCCTCGGGCCGTCCGACCGGACGGCCGGCTCGCACCGGCGCTACACGCCCGAGGACGTGGCTCGACTGCTCGTCATGCGGCGCCTCACGCTGGAGGGCGTCGCCCCTGTCGACGCCGCCCAGGCCGCCCTGGAGGCCGACGTCGACGAGCTCGAGGAGGCCCGCCGGTCCGGGCCCCCGAGCCCGCCCGGCGAGGACGCGTCGACCGAGTCCGCCGAGGAGTCCCCGGACGACGCCGGCCGCGCCGGCCGCGCCCACCTGCGCGCCCTGCCCGGAGGCGGGCAGAGCGCCCCCCGGGGTGCCGGCCAGAGCAACGGTTCGGCGCACGCGCAGCAGGCCTCCGGCAAGGTGTCGGCCGTCGTCGACGCCGCGCTCTCCTACGACCAGGCCCGGTGCGACGACCTCGTGCGCATCCCGCCGAACGGCGACCCCGCCGCGTGGTGGGCCCACCTGCTGGAGCCGGCCTGGAGCCGTGTCGCCGAGCGCACCGTCCTCGCCGGTCCCGGCGCGGTCCCCGAGATCGTGCTGGCCACGGCCGCGCTGCAGGCGTTGCGCTCGTTCACCGACGCCTTCGAGCAGCAGGTGGTCCAGAACGGCGGCCCGCCGGCCAACCACCCCAGCCGGATGCGCAACATCGTGCTCATCTTCGCCGCGCCCGACGAGACCGTGCCGCTCTCGGCACACGCTCTCGCCGCCGCGCTGACCGCCAAGGGCAAGACCGCGCGGATCGTCACCGGCCCGGCCAGCATCCGCCGGTCGCTGGAGCTGGTGACCATGGTGCGTCCCGCCGCCCTGGTCCTGGCCACGGGGCAGCGGCGTCCGGACCTGGACGTCGTGCACGCCGTCCACGAGGGCTTCGCGGAGCTGCCGATCTTCGTCGGGCTGCGTCGTGACGACGCCGCCAGCGAGCTGCCGCTGACCCCCCAGGTGCAGCGCGTGCGCTCCTTCACCGGGCTGCTGCACGAGGTGCTGGCGGTCGTCGGGGCGTGA	MTPSRPAQDAGGSRPSGPGLAVAAVARRLGVAPATLRTWDRRYGLGPSDRTAGSHRRYTPEDVARLLVMRRLTLEGVAPVDAAQAALEADVDELEEARRSGPPSPPGEDASTESAEESPDDAGRAGRAHLRALPGGGQSAPRGAGQSNGSAHAQQASGKVSAVVDAALSYDQARCDDLVRIPPNGDPAAWWAHLLEPAWSRVAERTVLAGPGAVPEIVLATAALQALRSFTDAFEQQVVQNGGPPANHPSRMRNIVLIFAAPDETVPLSAHALAAALTAKGKTARIVTGPASIRRSLELVTMVRPAALVLATGQRRPDLDVVHAVHEGFAELPIFVGLRRDDAASELPLTPQVQRVRSFTGLLHEVLAVVGA				NA	NA	NA	NA	NA
AK001_02682	1518	guaB	COG0516	Inosine-5'-monophosphate dehydrogenase	ATGACGGAGACGACCTCGCCCGCCCACGATCCGTTCGGCTTCCTCGGCCTGACCTACGACGACGTCCTGCTGCTCCCCGGCTACTCGGACCTGGCGCCGTCGGACATCGACACCACCTCGCGGCTGACGCGGGAGATCTCGCTGCGGACCCCGCTCGTCTCCGCCGCGATGGACACGGTGACCGAGTCGCGCATGGCGATCGCGATGGCCCGCCAGGGCGGCCTCGGCGTTCTGCACCGCAACCTGTCCATCGAGGACCAGGCCTACCAGGTCGACCTGGTCAAGCGGACCCAGACCGGCATCATCTCCAACCCGGTCACCATCGGGCCGGACGCCACCCTCGAGCAGCTCGACCAGCGCGCCGGCGAGTACCGCGTCTCCGGGTTCCCGGTGCTCGACGCGGCCGGCAAGCTCGTCGGGATCGTCACCAACCGCGACCTGCGGTTCACCCCGGTGGCGGAGTGGGCCACCACCACGGTGTCCGAGGTCATGACGCCGCAGCCGCTGATCACCGGCCACTCCGGCATCTCGCGCGAGGACGCCACGGCCCTGCTGCGCAAGCACAAGCTCGAGCGGCTCCCGCTCGTCGACGACGAGGGCCGGCTCGCGGGCCTGATCACCGTCAAGGACTTCGTCAAGTCCGAGCAGTTCCCCCAGGCCTCCAAGGACTCCCAGGGGCGCCTGATGGTGGGTGCCGCCATCGGCTACTTCGGTGACGCCTGGCAGCGGGCCACCACGCTGGTCGACGCCGGGGTGGACGTGCTCGTCGCGGACACCGCCCACGGCAACGTGCGCATGCTCATCGAGATGGTGCGCACGCTGAAGTCCGACCCGGCGACCCGGCACGTGCAGGTCATCGGCGGCAACGTGGCCACCAAGGAGGGCGCCCAGGCCTTCGTCGACGCCGGTGCGGACGGCATCAAGGTCGGTGTCGGCCCGGGGTCGATCTGCACCACCCGCGTCGTCACCGGTGTCGGCGTCCCCCAGATCACCGCGATCTACGAGGCCTCCCGCGCGGCCCGCCCCGCCGGCGTGCCCGTCATCGCCGACGGCGGCATGCGGCACTCGGGCGAGATCGGCAAGGCCATCGTCGCCGGCGCCGAGGCCGTCATGCTCGGCTCCATGCTCGCCGGGACCGAGGAGTCACCGGGCGAGACCATCCTCATCAACGGCAAGCAGTTCAAGGCCTACCGCGGCATGGGCTCGATGGGGGCGATGTCCTCGCGCGGCAAGAAGTCCTACTCCAAGGACCGCTACTTCCAGGCCGAGGTCACCAGCGACGACATGATCGTGCCCGAGGGCGTCGAGGGGCAGGTGCCGTACAAGGGCACCCTCGGCACCGTGGCGCACCAGCTCGTCGGCGGCCTGCATCAGACGATGTTCTACGTCGGTGCGCGGACCGTGCCCGAGCTGCAGGAGAAGGGCCAGTTCGTGCGCATCACGTCGGCCTCGCTGGCGGAGTCCCACCCGCACGACATCAAGATGACCGTCGAGGCGCCGAACTACACGGTCGGCTGA	MTETTSPAHDPFGFLGLTYDDVLLLPGYSDLAPSDIDTTSRLTREISLRTPLVSAAMDTVTESRMAIAMARQGGLGVLHRNLSIEDQAYQVDLVKRTQTGIISNPVTIGPDATLEQLDQRAGEYRVSGFPVLDAAGKLVGIVTNRDLRFTPVAEWATTTVSEVMTPQPLITGHSGISREDATALLRKHKLERLPLVDDEGRLAGLITVKDFVKSEQFPQASKDSQGRLMVGAAIGYFGDAWQRATTLVDAGVDVLVADTAHGNVRMLIEMVRTLKSDPATRHVQVIGGNVATKEGAQAFVDAGADGIKVGVGPGSICTTRVVTGVGVPQITAIYEASRAARPAGVPVIADGGMRHSGEIGKAIVAGAEAVMLGSMLAGTEESPGETILINGKQFKAYRGMGSMGAMSSRGKKSYSKDRYFQAEVTSDDMIVPEGVEGQVPYKGTLGTVAHQLVGGLHQTMFYVGARTVPELQEKGQFVRITSASLAESHPHDIKMTVEAPNYTVG	PGPT0021445_1014	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088	NA	NA
AK001_02683	723	dinG_2		3'-5' exonuclease DinG	ATGGACGACACCGGTTGGACGGGCGGACCGCTGCTCGGTTTCGACACCGAGACGACCGGCGTCGACGTGCACGACGACCGCATCGTGACCGCGGCGGTCGTGGTGCGCACGGCGACGTCGACGGAGGTGCGCACCTGGCTGATCGACCCGGGGGTGGAGATCCCCGCCGAGGCGGCGGCGATCCACGGCGTGACGACGGAGCACGCGCGGGCGCACGGCGTGGCCCCGGCCGGCGCTCTCGACGAGATCGCCGCGGTCCTGGCGGCGCACCTGCGCGACGGCGTCCCGGTGGTGGCCTACAACGCCTCGTTCGACCTGACCCTGCTGGACGCCGAGCTGGCTCGCCACGGGCTCCCCACGGTGCCCGAGCGCCTCGGCCGGCCGGTCTCCCCCGTGCTGGACCCGCTCGTCATCGACCGCTGGCAGGACCGCTACCGCCGCGGCAAGCGCCGCCTGGGCGACCTGTGCGAGCTGTACGGCGTGGTGGGCGACGGCGAGCTGCACAGCGCCGACGTCGACGTGCTGGCCACGCTGGACGTGCTGGACGCCCAGGTGCTGCGGTTCCCCGCGCTGCGCTCGGTGGCGCTCGACGCCCTGCACTCGGCCCAGCGCGACGCGCACCGCGCCTGGGCGGAGAGCTTCAACGCCTGGCGGGAACGCCAGGGGCTCCCCGGCCCGGGCGCGTCGACCACCTGGCCCACCACGCCGCGCGCCGCCGGCTGA	MDDTGWTGGPLLGFDTETTGVDVHDDRIVTAAVVVRTATSTEVRTWLIDPGVEIPAEAAAIHGVTTEHARAHGVAPAGALDEIAAVLAAHLRDGVPVVAYNASFDLTLLDAELARHGLPTVPERLGRPVSPVLDPLVIDRWQDRYRRGKRRLGDLCELYGVVGDGELHSADVDVLATLDVLDAQVLRFPALRSVALDALHSAQRDAHRAWAESFNAWRERQGLPGPGASTTWPTTPRAAG				NA	NA	NA	NA	NA
AK001_02684	1125		COG0516	putative oxidoreductase/MSMEI_1564	GTGAGCAACGAGATCGAGATCGGACGTGGCAAGCGCGGGCGTCGCGCCTTCTCCTTCGACGACGTGGCGGTGGTCCCCTCCCGCCGGACGCGCGACCCGAAGGACGTCTCCACCGGGTGGCAGATCGACGCCTACCACTTCGACCTGCCGATCATGGCGGCGCCGATGGACTCCGTCATGAGCCCCGCCACCGCGGTCGCGCTGGGCAACCACGGCGGCCTGGGGGTGCTCGACCTCGAGGGCCTGTGGACCCGCTACGAGTCCCCCGAGCCTCTGCTCGCGGAGATCCGCGCGCTGCCCGCCGACGAGGCGACGCGCCGCATGCAGGAGATCTACGCCGAGCCGATCCGGTCCGAGCTCATCACCCAGCGGCTCAAGGAGATCCGGGCCGCGGGCGTCACCGTGGCCGGCGCGCTGTCGCCGCAGCGCATCCAGGAGCACTACCAGACCGTCCTGGACGCCGGGGTCGACCTGTTCGTCATCCGCGGCACGACCGTCTCGGCCGAGCACGTCTCGAGCAACGCCGAACCGCTCAACCTCAAGCGGTTCATCTACGAGCTGGACGTCCCCGTGGTCGTCGGCGGGGCGGCCTCCTACACCGCCGCCCTGCACCTGATGCGCACCGGGGCGGCCGGCGTGCTGGTCGGGTTCGGCGGCGGCGCCGCGCACACCACCCGCGTCGGGCTCGGGATCCACGCCCCGATGGCCACGGCGGTCTCCGACGTCGCCGCGGCCCGGCGCGACTACCTGGACGAGTCCGGCGGTCGCTACGTGCACGTCATCGCCGACGGCGGCGTGGGGCACTCCGGGGACATCGTCCGGGCGATCGCCTGCGGCGCCGACGCCGTCATGCTCGGCGCGGCCCTCGCCCGCGCCTCCGAGGCGCCCGGCCAGGGCTGGCACTGGGGCCCCGAGGCCCACCACTCCCAGCTCCCGCGCGGCGAGCGCGTGGAGGTCGGCACCGCCGGCACGCTGGAGGAGATCCTCTTCGGCCCGGGGCGCCGCGCCGACGGCACGACGAACCTCGTCGGCGCGCTGCGCCGCGCGATGGCCACCACGGGCTACTCCGACCTCAAGGAGTTCCAGCGCGTGGAGGTCGTGGTCTCGCCGTACCAGCCGCGGTGA	MSNEIEIGRGKRGRRAFSFDDVAVVPSRRTRDPKDVSTGWQIDAYHFDLPIMAAPMDSVMSPATAVALGNHGGLGVLDLEGLWTRYESPEPLLAEIRALPADEATRRMQEIYAEPIRSELITQRLKEIRAAGVTVAGALSPQRIQEHYQTVLDAGVDLFVIRGTTVSAEHVSSNAEPLNLKRFIYELDVPVVVGGAASYTAALHLMRTGAAGVLVGFGGGAAHTTRVGLGIHAPMATAVSDVAAARRDYLDESGGRYVHVIADGGVGHSGDIVRAIACGADAVMLGAALARASEAPGQGWHWGPEAHHSQLPRGERVEVGTAGTLEEILFGPGRRADGTTNLVGALRRAMATTGYSDLKEFQRVEVVVSPYQPR	PGPT0021445_6347	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088	NA	NA
AK001_02685	1623	gabD2	COG1012	Putative succinate-semialdehyde dehydrogenase [NADP(+)] 2	ATGGCAACCGCGCACGAGAGCGACGGCGCTCCGGTGGAACTCATCGACCCGGAGCTGCCCGCCTCCACCTACGTCCTCGAACCCGAGATCGTGGCCCCGCTGGTCCGACGGGTCGTGACCTCGCACGACGGCGGGACGCACCGCAGCACGCTCCCCTTCACCGGCGCCCCGCTGGCGGCGATCCCGCTGTCCGGGCCGGAGGACGTCGTCGAGGCCACCCGCCGCGCCCGCGCGGCGCAGCACGACTGGGCCGCGCAGCCCGTCCGCGACCGCGCCCGCGTGCTCGACCGTCTCGGCGTCCTCGTGCTGGAGCGGCAGTCGGAGATCCTCGACCTGATCCAGATGGAGTCGGGCAAGTCCCGCCGCAACGCGTTCGAGGAGGTCGCCGACGTCGCGCAGACCTGCCGCCACTACGTCACGCGGGCCCGGCGCTATCTCGCCGACCGGCGCGAGCCGGGCGCGCTGTCGGTGCTGACCGGAGTGCGGGTGCACCGCCGGCCGGTCGGCGTCGTCGGCGTCATCGCCCCGTGGAACTTCCCGCTGACCCTCGCCCTGGCCGAGGCGATCCCCGCCTTGCTGGCCGGGAACGCCGTCGTCGTCAAGCCGGACCCCCAGACCACGCTGTCGGCGCTGTGGGCGTCCGAGCTGCTCGCGGAGGCCGGGCTGCCGGACGACCTGTTCTCCGTCGTCGCCGGGGCCGGGGACGTGGGGGCCGCACTGATCGACCACGTCGACCACGTCGCGTTCACGGGCTCCACCGCCACCGGGCGGAAGGTCGCCGCCCGGGCGGGGGAGCGGCTCGTCGGCGCCACCCTCGAGCTCGGCGGCAAGAACCCGCTGTACGTCGCGGCCGACGCCGACCTGGACCGCGCGGTGCCCGGGGTGCTGCGGGCGTGCTTCACGAACGCCGGCCAGCTGTGCATGTCGATCGAGCGGCTCGTCCTGCACGAGCGGATCGCCGACGAGTTCCTCGCGCGGTTCGTCCCGGCGGTGCGCGAGCTCACGCTCGGCGCCGGGCTGGACTACTCGGCCGACGTCGGCTCGCTGGTCTCCGCGGTCCAGCTCGAACGGGTCTCCGCGCACGTCGACGACGCCCTGGCCAAGGGGGCCCGGGCGCTGGTCGGCGGCGTGCACCGCAGCGACGTCGGGCCGTACTTCTACGCCCCGACCGTGCTCGACGACGTCCCCGAGGACGCGGTCTGCCACCACGAGGAGACGTTCGGCCCGGTCGTGGCGGTCACGCGCGTGGGCGGGGACGACGAGGCGCTGCGGGTCATGAACGACACGCACTTCGGCCTCAACGCCTCGATCTGGTCCCGTGACGTCCCGCGTGCCCGGCGGCTGGCCGCCAAGGTGGAGTCCGGCACGGTCGTGGTCAACGACGGGTACCTGCAGGCCTGGGGGTCCGCCGCCGCGCCGATGGGCGGCATGAAGGCGTCGGGGCTGGGGCGCCGGCACGGCCGGGAGGCCGTCGAGGCGGTCACCGAGGCGCAGAGCGTCGTCGCCCAGCGCGGTCACCACGTCGGGCTCTCGGTGGACTCGCTGTACGCGCTCGGCGGGGACGTGCCGAGCCGGGTGCTCACCGGTGCGCTGCGGGTGATGCGGCGGCTGCGGCTGCCCTGA	MATAHESDGAPVELIDPELPASTYVLEPEIVAPLVRRVVTSHDGGTHRSTLPFTGAPLAAIPLSGPEDVVEATRRARAAQHDWAAQPVRDRARVLDRLGVLVLERQSEILDLIQMESGKSRRNAFEEVADVAQTCRHYVTRARRYLADRREPGALSVLTGVRVHRRPVGVVGVIAPWNFPLTLALAEAIPALLAGNAVVVKPDPQTTLSALWASELLAEAGLPDDLFSVVAGAGDVGAALIDHVDHVAFTGSTATGRKVAARAGERLVGATLELGGKNPLYVAADADLDRAVPGVLRACFTNAGQLCMSIERLVLHERIADEFLARFVPAVRELTLGAGLDYSADVGSLVSAVQLERVSAHVDDALAKGARALVGGVHRSDVGPYFYAPTVLDDVPEDAVCHHEETFGPVVAVTRVGGDDEALRVMNDTHFGLNASIWSRDVPRARRLAAKVESGTVVVNDGYLQAWGSAAAPMGGMKASGLGRRHGREAVEAVTEAQSVVAQRGHHVGLSVDSLYALGGDVPSRVLTGALRVMRRLRLP	PGPT0001580_110	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
AK001_02686	987			hypothetical protein	GTGACGGTGCTCGTCGACCCGCCGACGTGGCCGGCGCACGGCCGTCGCTGGTCGCACCTCGTCTCGGACCGCTCCCTGCACGAGCTGCGGACGTTCGCCCGCGCGGCCGGCATCCCCGACCGCGCCCTCGACGTCGACCACTACGACGTGCCCGACGAGCGGTTCGAGGACCTGGTGGCGGCCGGGGCCGTGCCCGTCACCGGTCGCGAGCTCACCCGGCGGCTGGCCGCGTCCGGTCTGCGGGTGCCCGGCCGGGAACGGGCCCGGGCAAAGCCCGCCGCGCTGCGCGCCCGGTGGGCGCGGCTGTGGACGGCCGACGGCGGGACCCTCCCGGCGGGCGCCGTCGAGGTCGGCGAGGAGCTGATCGACCGCTGGGGCGAACCGCACCGGGTCTACCACGCGCGTCTGCACCTGGCCGACACCCTCGACGCCCTCGAGGAGCTGGCCCCCGAGGTCCCGGAGGTGGGCGGCCCGGCAGCACGACGCGCGGCGCTCGCCCTGTGGTTCCACGACGCGGTGCACGACGGCGCGACCCCGGCCGACGAGGAGCTCTCCGCCGCGCTGGCCCGCACGCTGCTGCCGCGGTGCCACGCCGCTGCGGCGGACCTCCCCGGACCCGCGGCCACGGACTCCCCCGGACGCGGGCTCGCGGACCCGGAGCAGGTGGAGGAGGTGGCCCGGCTGGTCCTGGTGACCGCCGACCACGACCCGGACCCCGCCGACCTGATCGGGGCCCTGGTCAGCGACGCGGACCTGGCGGTGCTCGGCGGTTCCCCGGCGCGGTACGCCCGCTACACGGCCCAGGTGCGGGCCGAGTACGGCCACGTCGACGACGCCGACTTCCGCGCCGGCCGCGCCGCCGTGCTCGAGCAGCTCCTGGCCCTGCACGCCGGACCGGGGCTGTTCCGGACGGAGCCGGGACGACGCCGCTGGGCCGATCGGGCCGGGGCGAACCTGCGCGACGAGCTCGCCACGCTGTCCGCGTGA	MTVLVDPPTWPAHGRRWSHLVSDRSLHELRTFARAAGIPDRALDVDHYDVPDERFEDLVAAGAVPVTGRELTRRLAASGLRVPGRERARAKPAALRARWARLWTADGGTLPAGAVEVGEELIDRWGEPHRVYHARLHLADTLDALEELAPEVPEVGGPAARRAALALWFHDAVHDGATPADEELSAALARTLLPRCHAAAADLPGPAATDSPGRGLADPEQVEEVARLVLVTADHDPDPADLIGALVSDADLAVLGGSPARYARYTAQVRAEYGHVDDADFRAGRAAVLEQLLALHAGPGLFRTEPGRRRWADRAGANLRDELATLSA	PGPT0014525_51	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058	NA	NA
AK001_02687	708			hypothetical protein	ATGCCGTCCGCCGCCCTGCACAGCCCCGTGCTCGACGCCGTCGGCCGGTCCATCACCAGCGGGGACGTCCCGGCCGGCGCGGTCCTGACGCTCGAGTCGATCGGCGTCGAGCACGACGTCTCGCGCACCGTCGCCCGCGAGGTGATGCGGCTGCTCGAGGGCCTCGGCCTCGTCCGGTCCCGCCGCCGGGTCGGGCTCGTCGTGCTGCCCATGGAGGACTGGAACGTCCTGGACCCGCGGGTGATCCGCTGGCGGCTGGCCGGCCCCGGGCGCGACGCCCAGCTCCGCACGCTCACCGAGCTGCGCCACGCCGTCGAGCCGCTCGCGGCCGCCGGTGCGGCACGCCACGCCTCCGACGCCGAGCGCGCCGAGCTCGTCGACCTCGCGGCCCGCATGCGGGTGCTCGGGGTCCGGGGCGACCTCGAGGACTTCCTCGCGCTCGACATCCGGATGCACGAGCTGCTGCTGCGTACCAGCGGCAACGAGATGTTCGGCGCCCTGGCAGGCGTCGTCGCCGAGGTCCTGTCGGGTCGCACCCACCTGGGCCTCATGCCGGCCTCCCCCGCCCCGGAGGCGCTCGACCAGCACGAGGCGGTGGCCCGCGCGGTCGCCGCCGGGGACGCCCCGGCAGCCGAGGCGGCCATGGCCGCGATCGTGGGCGAGGTGCGTCGGTCGCTGGAGGCCACCCCGGACGAGGCCTCGTCGTGA	MPSAALHSPVLDAVGRSITSGDVPAGAVLTLESIGVEHDVSRTVAREVMRLLEGLGLVRSRRRVGLVVLPMEDWNVLDPRVIRWRLAGPGRDAQLRTLTELRHAVEPLAAAGAARHASDAERAELVDLAARMRVLGVRGDLEDFLALDIRMHELLLRTSGNEMFGALAGVVAEVLSGRTHLGLMPASPAPEALDQHEAVARAVAAGDAPAAEAAMAAIVGEVRRSLEATPDEASS	PGPT0018085_24	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776	NA	NA
AK001_02688	588		COG3265	Gluconokinase	GTGGGACGCATCCACCCCGACACGGAAGTCGATCCGATGGACACCGACGTCACCACCCCGGCGCACCGCCCGCCCGACCCCACCGCCGTCCCGCACGTCGTCGTCATGGGCGTCGCCGGCTCCGGCAAGACCACCGTCGCCACGCTCCTCGCCGCACGCCTCGGCGTCACCTACGCCGAGGCCGACCAGTTCCACCCCGCGGCGAACATCGCCAAGATGAGCGCCGGCACCCCGTTGACCGACGCCGACCGGGCCCCGTGGCTGGCCACGATCCGTGACTGGCTCAGCGCCGAGGCGGACGCGGGCCGGCCCGGCGTCGTCACCTGCTCGGCCCTCAAGCGGGCCTACCGCGACGTGCTGCGCGCTGCGCACGGCCAGGTGCTGTTCGTGCACCTGGACGGGCCGCCCGAGCTGCTCGCCGAACGGATGGAGGGCCGGACGGGGCACTTCATGCCGCGATCGCTCCTGCCGTCCCAGCTCGCCGCGCTCGAACCCCTGGCCGACGACGAGCACGGCCTGACGCTCAGCATCACCGAGACGCCCGACGCGATCGTCGACGCCGTCGCCGACCTGCTCGGCCGCGGCTGA	MGRIHPDTEVDPMDTDVTTPAHRPPDPTAVPHVVVMGVAGSGKTTVATLLAARLGVTYAEADQFHPAANIAKMSAGTPLTDADRAPWLATIRDWLSAEADAGRPGVVTCSALKRAYRDVLRAAHGQVLFVHLDGPPELLAERMEGRTGHFMPRSLLPSQLAALEPLADDEHGLTLSITETPDAIVDAVADLLGRG	PGPT0018055_396	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851	NA	NA
AK001_02689	1383	ygbN	COG2610	Inner membrane permease YgbN	ATGACCACCGACGACTGGACCCAGACCCTCACCGCCGGGCCGCTGCTCGGCATCGCCGCGGGCGCCGTCGCCCTGCTGCTCGTGCTCATCATCAAGGTCAGGCTGCACGCGTTCGTCGCGCTCGTCCTGGTCAGCCTGCTCACCGCCGTGGCCGCCGGACTGCCGGCCGGCGGCGTGATCGACGTGCTGCTCGACGGATTCGGCTCGACGCTCGCCGCCGTCGCGCTGCTGGTCGGCCTCGGCGCCATGCTGGGCCGTCTCGTCGAGACCAGCGGCGGCGCCACCGTCCTGACCGACGTGCTCATCGCCCGGTTCGGCGAGCGGCGCGCACCGCTCGCCCTCGGCGTCGCCTCCCTGATGTTCGGCTTCCCGATCTTCTTCGACGCGGGCCTCGTGGTCATGCTGCCCATCGTGTTCGCCGTCGCCCGCCGGCTCGGCGGCTCGCTGCTGCTCTACGGGCTGCCCGTCGCCGGTGCGTTCTCCGTCATGCACATCTACGTGCCGCCCCACCCCGGACCCGTCGCCGCCGCGGAGTTCCTCGGGGCCAACGTCGGGATCGTCCTGCTGGTCGGTCTGCTCGCCGCGATCCCCACCTGGTACGTCACCGCCTACCTGTTCGGACACTTCACGGGCCGACGCATCGAGCTGCCCGTGCCCCAGATCCTGGGCCGCGCCGACGAGGCCCAGATCGCGAACCCGCCGCGGTTCGCCACCGTCGTCACGGTCCTGCTGCTGCCCCTGGTGCTGATCTTCGCCAACACCGGTCTGGAGACCGCGGCGTCCGTCGGCTGGGTGGACGCGGACTCGACCGGTGTCGCGGTCGCCCGCCTGGTCGGGTCGACGCCGGTCGCGCTGCTGATCACGGTCCTCGTCGCCGCCTGGGCGCTCGGGCGCCGACGGGGGGTGGGCGGCACCGCCCTGGAGAAGACCCTCGACTCCGCCCTCGGCCCGGTCGCCTCGGTCATCCTCATCACCGGCGCCGGCGGGATGTTCGGCGGCGTGCTGCGGGCCAGCGGCATCGGAGACGCTCTCGCTAACGTCCTCGGCGACCTCGGGCTGCCGGTCATCGTGGCCGGCTTCCTCATCGCCGCCGTGCTGCGCGTGGCGCAGGGCTCGGCGACCGTGGCGCTGACCACGGCCGCCGGCCTGATCGCCCCCGCCGTCGCCGCCGGGGGCTACGGCGCGGTCGAGCTCGCCGCCGTCGTCGTCGCCGTCGCGGCCGGGTCCGTCGTGCTCAGCCACGTCAACGACTCCGGCTTCTGGCTGGTGGGCCGGTTCTTAGACATGGACGTCCGCACCACGCTGCGCACGTGGACCGTCATGGAGACCGGGATCGGCGTGATGGGCTTCGCGATCGCCGGGATCGTGTTCGCCGTCGCCTGA	MTTDDWTQTLTAGPLLGIAAGAVALLLVLIIKVRLHAFVALVLVSLLTAVAAGLPAGGVIDVLLDGFGSTLAAVALLVGLGAMLGRLVETSGGATVLTDVLIARFGERRAPLALGVASLMFGFPIFFDAGLVVMLPIVFAVARRLGGSLLLYGLPVAGAFSVMHIYVPPHPGPVAAAEFLGANVGIVLLVGLLAAIPTWYVTAYLFGHFTGRRIELPVPQILGRADEAQIANPPRFATVVTVLLLPLVLIFANTGLETAASVGWVDADSTGVAVARLVGSTPVALLITVLVAAWALGRRRGVGGTALEKTLDSALGPVASVILITGAGGMFGGVLRASGIGDALANVLGDLGLPVIVAGFLIAAVLRVAQGSATVALTTAAGLIAPAVAAGGYGAVELAAVVVAVAAGSVVLSHVNDSGFWLVGRFLDMDVRTTLRTWTVMETGIGVMGFAIAGIVFAVA	PGPT0001340_214	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299	NA	NA
AK001_02690	1272	ackA	COG0282	Acetate kinase	ATGAGCATCCTGCCCGCCTCGGAACGACCGAACCCCTACAGCGCGTACGGGGCGCACGGATCGGTGCTGGTGCTCAACTCGGGCTCGTCGTCGCTGAAGTACCAGCTGGTCAACCCGGTGGGCGGCGAGGCGATCGCGGCCGGCACCGTCGAGCGCATCGGCGAGCCGAGCGGGATCGTGACGCACACCTTCGCGGGGAACAGGACGCGCCGCGAGCTGGAGGTCGCCGACCACGGCGCGGCGCTCCGGCTCGCCCTGGGGATGTTCGACGAGATCGGCCCGGCGCTGCACGGGGCCGGGATCTACGCCGTCGGGCACCGGGTGGTGCACGGCGGGGCGGAGTTCTCCGGCCCGGTGGTCGTCGACGACGACGTCATCGACCGGATCGAGTCGCTGGTGCCGCTCGCCCCGCTGCACAACCCGGCTAACGTCCAGGGCATCCGCGTCGCCCGCGAGCTGCTCGGCGACGTGCCGCACGTGGCGGTGTTCGACACGGCGTTCTTCCAGGCTCTGCCCGCGGAGGCGTACACGTACGCCATCGACCGCGAGGTCGCGCGCGAGCACGACGTGCGCCGCTACGGGTTCCACGGCACCAGCCACCAGTACGTGGCGGGCAAGGTCGCCCGCGTGCTGGGCCGACGGGTCGAGGACCTCAACACCATCGTGCTGCACCTCGGCAACGGCGCGTCGGCCTCGGCGGTGCGCGGCGGCGTGCCGATCGACACGTCCATGGGTCTGACGCCGCTCGAGGGGCTCGTCATGGGCACCCGCTCGGGGGACATCGACCCCGCGGTGGTCTTCCACCTGGCCCGCAACGCGGGGATGGACATCGACGAGCTCGACACGCTGCTGAACAAGCGGTCCGGCGTGCTCGGCCTGTCCGGCGTCAACGACTTCCGCGAGCTGCACCGGCTCGTCGAGGAGGGCGACGAGGACGCCGCGCTGGCCCTCGACGTGTATGTCCACCGGCTGCGCAAGTACGTCGGCGCCTACACGGCGCTGCTGGGCCGGGTCGACGTTATCGCCTTCACCGCCGGCGTGGGCGAGAACGACGCGGTGGTGCGTGCCGCCGTCTGCGCCGACCTGGAGGCGCTGGGGATCGCCGTCGACGACGACCGCAACGCCGCCCGGGGCGAGGAGCGCATCATCTCCCCCGACTGGACGAAGACGCTGGTCATGGTCATCCCGACGATGGAGGAGCTGGCGATCGCCCGGCAGAGCGTCGAGGCCGTGGACCGGCTGCACCCGTCGGCGGCGGTCGCCACCGGCTGA	MSILPASERPNPYSAYGAHGSVLVLNSGSSSLKYQLVNPVGGEAIAAGTVERIGEPSGIVTHTFAGNRTRRELEVADHGAALRLALGMFDEIGPALHGAGIYAVGHRVVHGGAEFSGPVVVDDDVIDRIESLVPLAPLHNPANVQGIRVARELLGDVPHVAVFDTAFFQALPAEAYTYAIDREVAREHDVRRYGFHGTSHQYVAGKVARVLGRRVEDLNTIVLHLGNGASASAVRGGVPIDTSMGLTPLEGLVMGTRSGDIDPAVVFHLARNAGMDIDELDTLLNKRSGVLGLSGVNDFRELHRLVEEGDEDAALALDVYVHRLRKYVGAYTALLGRVDVIAFTAGVGENDAVVRAAVCADLEALGIAVDDDRNAARGEERIISPDWTKTLVMVIPTMEELAIARQSVEAVDRLHPSAAVATG	PGPT0001360_150	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0001360-ackA-K00925	NA	NA
AK001_02691	2115	pta	COG0280	Phosphate acetyltransferase	GTGAGCACTCGGAGCATCTACATCGCCTCCCCCGAGGGGGACACCGGCAAGTCCACGGTCGCGCTGGGGGTGCTCGACCTCCTGGTCCGGCAGGTCCAGCGCGTCGGCGTCTTCCGCGCCGTCTCGCGGGTCCCGGAGCGCCCCTCGGCGTCCGGCAACACCCTGCGGGACCACGTGCTGGAGCTCATGCTCGCGCACGACGGCGTCGACCTCAGCTACGCCGAGACCGTCGGGGTCACCTACGACGAGGTCCACGCCGACCCCGACGCCGCCCTGTCGCGCATCGTGGACCGCTATCACCGGGTGGCCGCGCAGTGCGACGCGGTGGTGGTCCTCGGCACCGACTACACCGACGTCTCGGGCGCCACGGAGCTCGCGTTCAACGCCCGCGTGGCCGCGAACCTCGACTCCCCCGTGCTGCTGGTGGTCTCCGGCCGCGACCGCGGTGTCGAGGACGTCACCACCCTGACCCGCCTGAGCCTGGCGGAGCTGCGCGCCAACCACGCCCAGCCGCTGGGCGTCGTCGTGAACCGCGCCGAGGGAGCGGTCCGCACGGCCGACGCCGCGACCCGGGCGGACTTCTCCGGCGACCACCTGCCGACCTGGGTGATCGGCGAGGAGCCATTCCTCGGCGCCCCGACGATCGCCCAGCTCGCCGACGCCGTGGACGGCACGCTGCTGCTGGGCGACCGCGACCTCATGGCCCGCGAGGCCACCGAGGTCATCGTCGGCGCGATGACGTTCGAGCACATGCTCGGCCACCTGAGCGACGGCGCCGTGGTCATCACACCGGGTGACCGCACCGACGTCGTCCTCGGCCTGCTGGCCGTGCAGGCGGCCGACCGGTTCCCGTCCCTGGCCGGCCTCATCCTCACCGGCGGGCTGCGCCCCACCGGCCGGTCCGGTCAGCTGGCGTCCGCGCTGCAGCCGCACGTGCCGATCATCGCCACGGCGATGGACACCTACGAGGTGGCCCGCGTGGCCTCGCGCACGCGCGGCATCATGTCCACCGAGGCCCAGCGCAAGCACGACCTCGCCCGCGCGATGTTCGAGCAGAGCGTCGACGCCGACGAGCTCCTGGCGCGCCTCGAGGTCGAGCGCACCCCCGTGGTGACGCCGCTGATGTTCGAGCACGAGCTCATCGAGCGGGCGCGGGGCGACCGCCGCCGCGTCGTCCTGCCCGAGGGTGACGACGACCGCATCCTGCGGGCCGCGTCCACGGTGCTGGCGCGCGGCATCGCCGACCTGGTGATCCTGGGCGACGAGGCCGCGATCCGACGCCGGGCCACCGAGCTGGGCCTGGACATCTCCGCCGCGCAGGTCATCTCGCCGACCGACCCGGAGCACGTGGAGCAGTTCGCCGCCGAGTACGCGGAGCTGCGCGCCCACAAGGGCATGACCCTCGAGCGGGCCCGCGAGATCGTCACGGACGTCTCCTACTTCGGCACGATGATGGTCCACCTGGGCCTGGCCGACGGCATGGTGTCCGGCGCGGCCCACACCACGGCCCACACGATCCGGCCGTCGTTCGAGATCATCAAGACGCAGCCCGGGACGTCGGTCGTGTCCTCGGTGTTCCTCATGTGCCTGCCCGACCGCGTGCTCGCCTACGGCGACTGCGCCGTCAACCCGGACCCGACGGCCGAGCAGCTCGCCGACATCGCTGCCTCCTCCGCCGCCACCGCGGCGCAGTTCGGCGTCGACCCGCGGGTGGCCATGCTGTCGTACTCGACGGGGACGTCGGGTTCCGGCGCGGACGTGGACAAGGTCCGCACCGCCACCGAGCTGGTGCACGAGCGCCACCCGGAGATGTCGGTGGAGGGCCCGATCCAGTACGACGCCGCGGTGGACGCCTCGGTGGCGGCCTCCAAGCTGCCCGACTCCGCGGTGGCCGGCAAGGCCAGCGTGTTCATCTTCCCGGACCTGAACACCGGCAACAACACCTACAAGGCGGTGCAGCGCTCCGCCGGGGCCGTGGCGATCGGCCCGGTCCTGCAGGGGCTGAACAAGCCGGTCAACGACCTCTCGCGCGGGGCGCTCGTGGCCGACATCGTCAACACGGTCGCGATCACCGCGATCCAGGCCCAGTCGACCTCGAACGGAGAGTCCGCATGA	MSTRSIYIASPEGDTGKSTVALGVLDLLVRQVQRVGVFRAVSRVPERPSASGNTLRDHVLELMLAHDGVDLSYAETVGVTYDEVHADPDAALSRIVDRYHRVAAQCDAVVVLGTDYTDVSGATELAFNARVAANLDSPVLLVVSGRDRGVEDVTTLTRLSLAELRANHAQPLGVVVNRAEGAVRTADAATRADFSGDHLPTWVIGEEPFLGAPTIAQLADAVDGTLLLGDRDLMAREATEVIVGAMTFEHMLGHLSDGAVVITPGDRTDVVLGLLAVQAADRFPSLAGLILTGGLRPTGRSGQLASALQPHVPIIATAMDTYEVARVASRTRGIMSTEAQRKHDLARAMFEQSVDADELLARLEVERTPVVTPLMFEHELIERARGDRRRVVLPEGDDDRILRAASTVLARGIADLVILGDEAAIRRRATELGLDISAAQVISPTDPEHVEQFAAEYAELRAHKGMTLERAREIVTDVSYFGTMMVHLGLADGMVSGAAHTTAHTIRPSFEIIKTQPGTSVVSSVFLMCLPDRVLAYGDCAVNPDPTAEQLADIAASSAATAAQFGVDPRVAMLSYSTGTSGSGADVDKVRTATELVHERHPEMSVEGPIQYDAAVDASVAASKLPDSAVAGKASVFIFPDLNTGNNTYKAVQRSAGAVAIGPVLQGLNKPVNDLSRGALVADIVNTVAITAIQAQSTSNGESA	PGPT0001370_792	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788	NA	NA
AK001_02692	2475	xfp		Xylulose-5-phosphate/fructose-6-phosphate phosphoketolase	ATGAGCACGACGACCACGACCACCACGACCTGGGCGGAGACCGGAGTCGCCGAACTGTCGGACACCGACGTCGAGCGCATCGACCAGTGGTGGCGAGCGGCCAACTATCTCTCGGTCGGCCAGATCTACCTGCTCGACAACCCGCTCCTGCGCGAGACGCTGACGCGTGACCACGTCAAGCCCCGCCTCCTCGGTCACTGGGGCACGACGCCGGGGCTGAACTTCCTGTACGCGCACCTGAACCGCGCGATCCGCGAGCGCGAGCAGTCCACCATCTACGTCACCGGTCCCGGCCACGGCGGTCCCGGCCTCGTGGCCGCCTCGTACCTCGAGGGCACCTACTCCGAGACGTACTCCGACATCACCCGCGACGACGAAGGCATGCGCCGGCTCTTCCGGCAGTTCTCGTTCCCCGGCGGGATCCCCAGCCACGTCGCCCCGGAGACGCCCGGGTCGATCCACGAGGGCGGCGAGCTCGGGTACGCCCTGTCGCACGCCTACGGCGCCGCCTTCGACAACCCGGACCTGCTCGTCGCCGCCGTGGTCGGCGACGGCGAGGCGGAGACCGGCCCGCTGGCCACGAGCTGGCACTCCAACAAGTTCGTCAACGCGCGCACCGACGGCGTCGTGCTGCCGATCCTGCACCTCAACGGCTACAAGATCGCCAACCCGACGGTGCTCAGCCGCATCAGCGACGACGAGCTGCGCGACCTGATGATCGGCTACGGCCACACCCCGTACTTCTTCACCGGCGGGTTCGACGGCGAGGACCACGCGGCCGTGCACCGCCGGTTCGCCCAGCTCCTCGACGAGGTGATGGACCACATCGCCCGCATCAAGGCCGACGCCGCCGCCGGCAACGACGAGCGCCCGGCCTGGCCGATGATCGTCTTCCGCACCCCGAAGGGCTGGACCTGCCCGCCGGAGATCGACGGGAAGAAGACCGAGGACTCCTGGCGCGCGCACCAGGTACCGCTCGCCAGCGCCCGCGACACCCCCGAGCACCTCGAGGTGCTGCACCAGTGGCTGGAGTCCTACGGCCCGGGCGAGCTGTTCGACGACAGCGGCCGGCTCCGCGAGGAGATCGCCGCCCAGGCCCCGACCGGCGAGCTGCGCATGAGCGCCAACGCGCACGCCAACGGCGGGCTGCTGCTCAAGGACCTGCGGATGCCCGACTTCCGGGACTTCGCCGTCGACGTCCCTGAGCCCGGCGGCGCCGTGGCGGAGTCCACGCGCGTGCTCGGCACCTGGCTCAACGACGTCGTCCGCCGCAACCCGGACAACTTCCGCATCTTCGGTCCGGACGAGACGGCGTCGAACCGGCTGCAGGCCGTGTACGAGACGACCGACAAGCAGTGGAACGCCGACTTCTACGGCCCCGACGTCGACGAGCACATGGCGCGCGCCGGACGGGTCATGGAGATGCTGTCCGAGCACCAGTGCCAGGGCTGGCTGGAGGGCTACCTGCTCACCGGGCGCCACGGGCTGTTCACCAGCTACGAGGCGTTCATCCACATCGTCGACTCGATGTTCAACCAGCACGCCAAGTGGCTCAAGGTCACCAACCACATCCCGTGGCGGCGGCCCATCGCGAGCCTGAACTACCTGCTGTCCAGCCACGTCTGGCGCCAGGACCACAACGGCTTCAGCCACCAGGACCCGGGGTTCATCGACCACGTGGTCAACAAGAAGGCCGAGATCGTGCGGGTCTACCTGCCGCCGGACGCCAACACGCTGCTGAGCACCTACGACCACTGCCTGCGCAGCCGGCAGTACGTGAACGTGGTGGTGGCCGGCAAGCAGCCCGCCCCGCAGTTCCTGTCGATGGACGACGCGATCGCGCACTGCACCCGGGGCCTGGGCATCTGGGAGTGGGCCGGCACCGAGACGCCGGGCGAGGACCCCGACGTGGTGCTCGGCTGCGCCGGCGACGTCCCCACGCTCGAGGTGCTGGCGGCCGCGGACATCCTGCGCAACGAGCTGCCGGACCTCAAGGTCCGCGTGGTCAACGTCGTGGACCTCATGCGACTCCAGGACGAGACGGAGCACCCGCACGGCATGTCCGACAAGGACTTCGACGGCCTGTTCACGCCGGACCGGCCGGTGATCTTCAACTACCACGGCTACCCGTGGCTGATCCACCGACTCACCTACCGCCGGCGCAACCACCCGAACATCCACGTGCGCGGGTACAAGGAGGAGGGCACCACCACGACGCCCTTCGACATGGCGATGCTCAACGACATCGACCGGTACCACCTGGTGCTCGACGTGATCGACCGGGTCCCCGGGCTCGGCTCGAAGGTCGCGGGCCTGCGCCAGCGCATGGTGGACCAGCGCCTGGCGGCCCGCCAGTACACCCGCTCCCACGGCGAGGACATCCCCGAGGTGCGCGACTGGGTGTGGCCGGGTGCGCGCCGCGTGGTCGGCGAGGGCGCCTCCGGCATGGAGGACACCGGCGGCGACAACGAGTGA	MSTTTTTTTTWAETGVAELSDTDVERIDQWWRAANYLSVGQIYLLDNPLLRETLTRDHVKPRLLGHWGTTPGLNFLYAHLNRAIREREQSTIYVTGPGHGGPGLVAASYLEGTYSETYSDITRDDEGMRRLFRQFSFPGGIPSHVAPETPGSIHEGGELGYALSHAYGAAFDNPDLLVAAVVGDGEAETGPLATSWHSNKFVNARTDGVVLPILHLNGYKIANPTVLSRISDDELRDLMIGYGHTPYFFTGGFDGEDHAAVHRRFAQLLDEVMDHIARIKADAAAGNDERPAWPMIVFRTPKGWTCPPEIDGKKTEDSWRAHQVPLASARDTPEHLEVLHQWLESYGPGELFDDSGRLREEIAAQAPTGELRMSANAHANGGLLLKDLRMPDFRDFAVDVPEPGGAVAESTRVLGTWLNDVVRRNPDNFRIFGPDETASNRLQAVYETTDKQWNADFYGPDVDEHMARAGRVMEMLSEHQCQGWLEGYLLTGRHGLFTSYEAFIHIVDSMFNQHAKWLKVTNHIPWRRPIASLNYLLSSHVWRQDHNGFSHQDPGFIDHVVNKKAEIVRVYLPPDANTLLSTYDHCLRSRQYVNVVVAGKQPAPQFLSMDDAIAHCTRGLGIWEWAGTETPGEDPDVVLGCAGDVPTLEVLAAADILRNELPDLKVRVVNVVDLMRLQDETEHPHGMSDKDFDGLFTPDRPVIFNYHGYPWLIHRLTYRRRNHPNIHVRGYKEEGTTTTPFDMAMLNDIDRYHLVLDVIDRVPGLGSKVAGLRQRMVDQRLAARQYTRSHGEDIPEVRDWVWPGARRVVGEGASGMEDTGGDNE	PGPT0017575_73	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017575-xfp-K01621	NA	NA
AK001_02693	927			hypothetical protein	GTGCCCGACGCCCTGCCCGCCCGACGATCGTTCTGGGCGGTCGCCCGCCAGCCACGCATGCTCGTCGTCCTGCTGCTCCTCCTGCTCGCCGCCGCCGTGTGCGGCCGTCTCGGCGTCTGGCAGATCGACCGCGCCTACGAGCGCGCGAGCCTCGCCGCCGAGCAGGAGGCCGCCGAGCAGGCGGCGGCCGGACCCGCCTCGCTCGGGGAGCTGCTGCCTCCCCAGTCGGCGTTGCCCGGTGAGCTCGTCGGGCGCGAGGCCTGGGTCTCCGGCACCTACGAGCCCGACGGCCAGATGCTCGTGACCGGTCGTTCCCTCGACGGGGTCGAGGGCTACCTGGTGCTCACGCCGCTGCGGGTGTCCGACGACGGCACCGCGGGGGCGTCCTGGGCCGACCTGTCCGGGCCCCCGGTGCTGCCGGTGGTGCGCGGCTGGGTCGACTCGCCCGACCCGGGGGCCGAGGCGCTCGAGGTGCCCGCCGGCGAGGTGCGCGTGACCGGGTGGCTGCAGGCCTCGGAGTCGACCGCCCGCACCGGCGAGGTGCCCGCCAACGCCGACGGTCCGCCGCTGACGCAGGACATCGCGTCCTCGGCGCTGGCGAACACCTGGGACGGACCGATCTACGCGGCGTACGCCGTGCTGACGTCCTCCGACCCGGCGCAGCCGTCGGCCGCGTCGGGCGGCCCTGCGCCGCTGCCGCGGCCGGTGCTCGACGGCGGGACGGACGTGGACCTGCAGAACTTCTTCTACGCGCTGCAGTGGTGGGTCTTCGGGCTGTTCGCCGTGGCCCTGTGGGTGCGGCTCGTGCGCGACGAGATGGCCGGCGGGCGCCGTGAACGCCGCCGCGACCGGCGTCCGGGAGATCGTGAGGGGCGTCGCGACGACGACCCGATCGGCACCGGCATCGCTGGCCTGCCCTCCTCCTGA	MPDALPARRSFWAVARQPRMLVVLLLLLLAAAVCGRLGVWQIDRAYERASLAAEQEAAEQAAAGPASLGELLPPQSALPGELVGREAWVSGTYEPDGQMLVTGRSLDGVEGYLVLTPLRVSDDGTAGASWADLSGPPVLPVVRGWVDSPDPGAEALEVPAGEVRVTGWLQASESTARTGEVPANADGPPLTQDIASSALANTWDGPIYAAYAVLTSSDPAQPSAASGGPAPLPRPVLDGGTDVDLQNFFYALQWWVFGLFAVALWVRLVRDEMAGGRRERRRDRRPGDREGRRDDDPIGTGIAGLPSS				NA	NA	NA	NA	NA
AK001_02694	1014			hypothetical protein	ATGCCTCGTCGTGCCCGGTCCGTACCACCGCAGCTCCGCGCGCTCGCGCACCGGCAGGCCGGGCTGCTGTCGAGGGCGCAGTGCCTCGACGGCGGGATGACGTCTCGGCATGTGAGCCGGCGCCTCGAGTCCACGGAGTGGGAGCGGGTCGTCCGCGGGGTCTACGACGTGGGCGTGCCCGAACCGGCGTCGCTGTCGGAAAGGCTCGACCTTTGGCGTCGCCGCAGCGCTCTCGTCGGTCCGCTCTCGCAGCCGTCGGGCATGGCCGTCGGCCTCGGCGCGATCGTGCTCCAAGGGGTGCGCGGCACTCCCGTCGAGATCCCGTGGGAGGTCGCGGTCGCCCGGGCACAGCCCCGGCAGTCGGCGGGCCCCGTCCGTGTCCGCCGGATCCTGGTCTCAGAACCGGTGCAGGTCCAGGGCATCCCGTGCATGCCGGTTCCTCAGGCGCTGGGCCTCGCCGTCCCGACCCTGAACCACGTCGACGCCGTCGCGGTGATCGACTCGGCACGACGTCAGAGGCTCTTGTCCGACGCCGAGCTGCAGTGGGCCCGCAGCACCACCGTCGGTCGTCGTGGTGCTCGGAAGAGCTGGAGCTGGTGGGCGGAGTCGGATGCCCGTGCCGAGTCGCCGGCGGAGTCGTGGGCACGGGTGTCCTGCGCCGACGCGGGCTTCCCGCCCGACGCCGTCCAGCTGTGGGCTTGGGCCGGCGACCGCTGGTACCGGCTCGACCTCGCCTGGGTGCTGCCCGGCGGAGGCCTGCTCGTCGTCGAGATCGACGGCCGGGACGTGCACGACCGGGTGGACGCTCTGTTCGCGGACCGTGAGCGACAGAACCGGCTGGTCACCACCCGGACCATCCTGCGGCGGTACACGGGGCGCGATGCCCGGACCGGAGTGGTGGCGACCGAGGTCTCGGTGCTCCTCCGCCGGCACGGTTGGAGCCCCCGGCCGGTCGGTGACGACGTTGCTTACGACGTCGAGCGTGCCGGCTTCTTCCTCAACTGGGGCAGGTAG	MPRRARSVPPQLRALAHRQAGLLSRAQCLDGGMTSRHVSRRLESTEWERVVRGVYDVGVPEPASLSERLDLWRRRSALVGPLSQPSGMAVGLGAIVLQGVRGTPVEIPWEVAVARAQPRQSAGPVRVRRILVSEPVQVQGIPCMPVPQALGLAVPTLNHVDAVAVIDSARRQRLLSDAELQWARSTTVGRRGARKSWSWWAESDARAESPAESWARVSCADAGFPPDAVQLWAWAGDRWYRLDLAWVLPGGGLLVVEIDGRDVHDRVDALFADRERQNRLVTTRTILRRYTGRDARTGVVATEVSVLLRRHGWSPRPVGDDVAYDVERAGFFLNWGR				NA	NA	NA	NA	NA
AK001_02695	1788		COG1132	putative ABC transporter ATP-binding protein	ATGAGCGCCACCACGACGCCGCCGGCGGACCGACCGGCACCGTCGGAGCCGTCGAGCCGGCTGCCGATCGCCGACCGGCACGAGGTGCGGCGCACCGTCGGCCGGCTCTTCCGCAGCCACCGGGGCCAGCTCGGCGGGATCGCCGTCCTGCACACCCTCGCCGCCGTCGCCGGCCTCACCGGACCGTTCCTCATGGGCCGTTTCATCGACGAGGTCGCCGCCGGCACCACCCTGGCGCGCGTCGACCAGATCGCGCTGATCCTGGTGGGCGCCGTCGTCGTGCAGGCCGTCGTGACGCGGTACGCCCAGCGGCTGTCCATGGTGTTCGGCGAGCAGGTCTTCGCCGAGCTGCGCGAGGAGTTCATGGCCCGGGTGACGCGGCTGCCGCTGTCGACGGTCGAGAAGGCCGGGACCGGTGACCTGGTCGCCCGGACGACCAACGACGTCAACAAGCTGCAGCACGCCGTCCGCTTCGGCGTGCCGCGCGTGCTGGTGTGCGTCGTGACGATCGGGCTGACGCTGGTGGCGTCGTTCCTCACCGACCCCCTCACGGCGCTCGGCCTGCTCGTCGGCGTCCCGATCATCGTCGTCGCCGTGCGCTGGTACCTGCGCCGGGCGACGCCGGGTTACCTGCGCGAGTCCGCCGCCTACGCGACGGTCAACGGCACCATCACCGAGGCCGTCGAGGGGGCGCGCACCACCGACGCCCTGTGGCTCGGCTCGCGGCTGCGCCGACGGCTGCGTCGCGACCTGTCCGAGGCCTTCGCCGCCGAGAGCTACACCCTCGGGCTGCGCCTGCGCCTCATCCCCGCGCTCGACACGGCCGTGGCCGTCGCGCCGATCGCGGCGATCGTCTGGGGCGCCTGGCTGGTCTCCCAGGACCTGACGACCGTCGGCGCCGTCGCGACCATCGCGTTCTACGCCCACCAGATGGGCGGGCCGGTGTTCGACCTCGTGTTCTGGCTCGACGAGCTGCAGGTCGCCGCGGTGGCGCTGGCCCGCGTGGTCGGCGTCGGCCTGGTCGGACCGGACCGGGTCGCCTCCGGCCGGGTGCCGACGTCCGACGAGGTGCGCGCCCACGAGGTCCGGTACGCCTACCGCGAGGGTCGCGACGTGCTGCACGGCGTCTCGGTGGACCTGCGTCCCGGGGAACGGCTGGCGGTGGTCGGCCCGTCCGGGTCGGGCAAGTCCACGCTGGCGCGGATGCTCGCGGGCATCCACCCGCCCACGGGCGGCTCGGTGACCGTCGGCGGCGTGCCGCTCGTCGACCTGCCGCTGGAGGACCTGCGCGGGCAGGTGGCGCTGGTGACCCAGGAGCACCACGTGTTCGTCGGGACGCTGGCGGAGAACCTGCGGCTGGCCGACACGGGCGCGTCCGAGGCGGCGCTGTGGGAGGCGCTGGAGGCCGTCGACGCCCGCGGGTGGGCGTCCGCGCTGCCGTCCGGGCTGTCGACCGAGGTCGGCTCGGGCGGGCACCCGCTGTCCCCGGCGCAGGCCCAGCAGGTGGCGCTGGCCCGGCTGGTGCTGCTGGACCCGCACACGCTGGTGCTGGACGAGGCCACGTCCCTGCTCGACCCGCGGGCCGCCCGGCACCTCGAGCGGTCGCTGAACGCGGTGCTCACGGGACGCACCGTCGTGGCGATCGCCCACCGGCTGCACACCGCCCACGACGCCGACCGGGTGGCCGTCGTCGACGGCGGGCGGATCACCGAGATCGGGCCGCACGAGGAGCTGGTGTCCGCCGACGGCGAGTACGCCCGCCTGTGGCGGTCCTGGCAGGCCGAGTGA	MSATTTPPADRPAPSEPSSRLPIADRHEVRRTVGRLFRSHRGQLGGIAVLHTLAAVAGLTGPFLMGRFIDEVAAGTTLARVDQIALILVGAVVVQAVVTRYAQRLSMVFGEQVFAELREEFMARVTRLPLSTVEKAGTGDLVARTTNDVNKLQHAVRFGVPRVLVCVVTIGLTLVASFLTDPLTALGLLVGVPIIVVAVRWYLRRATPGYLRESAAYATVNGTITEAVEGARTTDALWLGSRLRRRLRRDLSEAFAAESYTLGLRLRLIPALDTAVAVAPIAAIVWGAWLVSQDLTTVGAVATIAFYAHQMGGPVFDLVFWLDELQVAAVALARVVGVGLVGPDRVASGRVPTSDEVRAHEVRYAYREGRDVLHGVSVDLRPGERLAVVGPSGSGKSTLARMLAGIHPPTGGSVTVGGVPLVDLPLEDLRGQVALVTQEHHVFVGTLAENLRLADTGASEAALWEALEAVDARGWASALPSGLSTEVGSGGHPLSPAQAQQVALARLVLLDPHTLVLDEATSLLDPRAARHLERSLNAVLTGRTVVAIAHRLHTAHDADRVAVVDGGRITEIGPHEELVSADGEYARLWRSWQAE				NA	NA	NA	NA	NA
AK001_02696	1773	yheI	COG1132	putative multidrug resistance ABC transporter ATP-binding/permease protein YheI	GTGCGCCCCCTTCCCCTGCCCGACCCGGGCACGCCTCCGCTGTCCTCCGCGGCGCGCCTGCTCACCTGGCAGGCGTGGCGTCAGCGCGACGTGCTCGTCAAGGCCGTCACCGCGGGCACCGTCTCCCTCCTGGGCGCCGCGTCCGCGCCGCTGCTGCTCGGACGCGCGGTCGACTCCGGGCTCGCCTCCGGGTTCGGCGGCGAGCTGTTCCTGTGGTGCGGCTGGATGCTCGTCGCGGCCGTGGCGATCGTCGTCTCCGGCGTGTTCAGCCACACCTACGACGTCGAGAACTGGCTGCGGGCCTCCTTCTCGTTCACCACGCTCGTCGGCCAGAAGGCCACCCGGACCGGGCACGCCGTCACGCAGAAGCTGCCCACCGGCGAGGTCGTCGCCGCCGTCGCCAACGACGCCCTGCGGGCCGGCGACATGTTCGCCATGTCCGGGCGGTTCGTCGGCGGGGTGCTCGCCTACGCCGCCGCCGCGGGCTACCTGCTCTGGCAGAACCTGGCGCTGGGGCTCGTGGTGGCGCTCGGCATCCCCGTCGTGGCCGCCGTGCTCGGGCTGCTCGTGCGCCCGCTGCAGCGGCGCCAGCAGACCCACCGCGAGTCGGTCGGCCGGCTGACGGCCCTCGGCTCCGACACGGTCTCCGGGCTGCGGATCCTGCGCGGCATCGGTGGCGAGGAGGTCTTCTCCGGTCGCTACGCCCGCCAGTCGCAGGAGGTGCGCCGCCGTGGTGTCCAGGTCGCCGGGGTCCAGTCCGTCCTCGACGGTCTGCAGGTGCTGCTGCCCGGCCTGCTCGGCGCCCTGGTGCTCTGGCTGGGCGCCCGCGCCGTCGTGCGCGGCGAGCTGACCTCCGGCGAGCTCGTGACCTACTACGGGTACACCGCGTTCCTCGCCTGGCCCGTGCAGATGGCCACCCAGATGCTGCAGGCGTCGACGAACGCCGTGGTGTCGGCCCGCAAGATCCTCGGCGTCCTGCGCGTGGACGAGGCGACGCCGCAGGCCGCCACGCCGTCCGCCGACCCGCCGTCGGGCAGCGACCTGGTCGACCACGCCTCCGGGCTGGTGCTGGCGCCCGGGGAGGTCGTGGCGCTCGTGTGCCCCGACCCCGACGTCTCCGCCGCCGTGGCCACGCGCCTCGGCCGGTTCGACGACGCCGCCGAGGCCGGCACGCCCGTCACCCTCGGCGGGGTGCCGCTCGCCGCGCTGGACAAGGAGGCGCTGCGTCACCGCGTGGTCGTCTCCGAGGCCACGCCGCACCTGTTCTCCGGCATCCTCGGCGAGCAGCTCGACGCCCGCGGCCGCGCGGGCGAGGCGGAGCTCACCGCGGCGATCCTCGCCGCCGACGCCCGCGACGTGCTCGACTCCGTGCCCGGCGGCCTGACCGGCGAGCTGCCCGAGAAGGGCCGGTCCCTGTCCGGCGGCCAGCGGCAGCGCGTCGCGCTGGCCCGCGCGCTGCTCACCGACCCCGAGATCCTCGTGCTCGTCGAGCCCACCAGCGCCGTCGACGCCCACACCGAGGCACGGATCGCGGAACGCGTCGCCGAGGTGCGGCGCGGCCGGACCACCCTGGTCGTGACCGCCAGCCCCCTGGTGCTCGACCACGTCGACCGGGTGCGCCTGCTCTCGCCGGCGGGCCGCGTCGTCGCGACCGGGACCCACGCGGAGCTGCTCGCCCGCCGCGACGACGACGGCGCCCGCTACCGCGCCGTCGTCGGGCGCAGCATGGCCGAGCCCGACCCCGGGACCACGCTGGAAGGAGCCGCGCGATGA	MRPLPLPDPGTPPLSSAARLLTWQAWRQRDVLVKAVTAGTVSLLGAASAPLLLGRAVDSGLASGFGGELFLWCGWMLVAAVAIVVSGVFSHTYDVENWLRASFSFTTLVGQKATRTGHAVTQKLPTGEVVAAVANDALRAGDMFAMSGRFVGGVLAYAAAAGYLLWQNLALGLVVALGIPVVAAVLGLLVRPLQRRQQTHRESVGRLTALGSDTVSGLRILRGIGGEEVFSGRYARQSQEVRRRGVQVAGVQSVLDGLQVLLPGLLGALVLWLGARAVVRGELTSGELVTYYGYTAFLAWPVQMATQMLQASTNAVVSARKILGVLRVDEATPQAATPSADPPSGSDLVDHASGLVLAPGEVVALVCPDPDVSAAVATRLGRFDDAAEAGTPVTLGGVPLAALDKEALRHRVVVSEATPHLFSGILGEQLDARGRAGEAELTAAILAADARDVLDSVPGGLTGELPEKGRSLSGGQRQRVALARALLTDPEILVLVEPTSAVDAHTEARIAERVAEVRRGRTTLVVTASPLVLDHVDRVRLLSPAGRVVATGTHAELLARRDDDGARYRAVVGRSMAEPDPGTTLEGAAR				NA	NA	NA	NA	NA
AK001_02697	396			putative protein	GTGAGCACCGAGCAGAACGCCCCGACCGCGACGACCGAGCAGGCCGCGACCGCTATCCGCAAGGCGCGCGGCGCCCTGGCCCGCTACCGGGTGCTGGCGATCATCACCGGTGTGATGTTGCTCGTGCTCTGCGTCGAGATGGTCTTCAAGTACCTCGTGCCGGTGCAGGCCGTCATCGACTACATGGGCTGGGTCCCGTTCGCGCACGGGTGGATCTACGTCGTCTACCTGGTCACGGTGCTCGACCTGTGGGCCAAGATGCGCTGGGGCTTCGGCCGGCTGACCACGATGGTGTTCGCGGGCGTCGTCCCGGTGATGTCGTTCGTCCTGGAGAAGCGGGTGCACGCCGACGCCGACGCCAAGCTCGCGGCGCTCGCGCAGCGGTACGGGGCGTGA	MSTEQNAPTATTEQAATAIRKARGALARYRVLAIITGVMLLVLCVEMVFKYLVPVQAVIDYMGWVPFAHGWIYVVYLVTVLDLWAKMRWGFGRLTTMVFAGVVPVMSFVLEKRVHADADAKLAALAQRYGA				NA	NA	NA	NA	NA
AK001_02698	1260	moeZ	COG0476	putative adenylyltransferase/sulfurtransferase MoeZ	GTGACGGTGCACGACGGCGGCACGGAGGGCACCCCCGGGCGGCTCGCCCCGCTCGTCGAGCCGACCCGCGAGCTCACCGGCGCCGAGCTGGACCGGTACGCCCGGCACCTGGCGCTGCCCGGCATCGGCCCGGACGGCCAGCGGCGGCTCGCGGCCGCGCGCGTGCTGGTCGTCGGCGCCGGCGGGCTCGGCAGCCCGGCGCTGCTCTATCTCGCCGCGGCGGGCGTGGGCACGATCGGGATCGTCGACGACGACGCCGTGGACGTCACCAACCTGCAGCGTCAGGTCCTGCACGGCCAGTCCGACCTGGGCCGGTCCAAGACCGTCTCGGCACGGGCGACGGTCGCGGAGGTCAACCCGCACGTCGAGGTGGTGGAGCACGTGCTGCGCCTCGCCCCGGACAACGTCCTGGACGTGCTGCGGGGGTACGACGTCGTGCTCGACGGCGCCGACAACTTCCCGACCCGCTACCTGGTCTCCGACGCGGCCGAGATCCTCGGCGTCCCGGTGGTGTGGGGGTCCATCGACCGGTTCGACGGCCAGGTCAGCGTCTTCTGGGGCGCCCCGCGGTACGTGACGGCCGACGGCGCCCGAAGCGTGCGCCGGGGCGTCACCTACCGGGACGTCTTCCCGGTGCCGCCGCCGCCCGGCGTCGTGCCGGACTGCGCCACCGGCGGCGTGCTCGGTGCGATGTGCGGCACCGTCGGCTCGGCGATGGCCACGGAGACCGTCAAGCTGGTCACCGGCGTCGGGGAGCCGCTGCACGGCCGCCTGGCCGTGCACGACGCGCTCGCCGCCGACTGGCGCGAGCTCGTCGTCCGCCCGGACCCCGGCCGGGAGCCGGTCACCGAGCTGCTGGCCGGCGACGACGCCTACGCCGCGTTCTGCGGACTGGCCCCGGCCGTCCCGGGACCCGGCCGCACGGCGGTCCCGGGCGACCTGGAGGTCAGCGCCGCCGACGCCCGCACCCTGCTCGCGGCCGACCGGCCCGCGGTCCTGGTGGACGTGCGCGAGGAGTGGGAGGCGCGGGTCCGCCCCGTGGACGGCGCCCGGCTCGTGCCCAGCGGGACGTTCCTGGGCACGGCCGCCGGCGGGCCCGACGACGTCGCGCGCGGCGCCCTGGACGCCCTGCCCACCGACCGGCCGGTGCTGCTGGTGTGCGCGGCCGGCCCCCGGTCGACCCGGGTCGCGCGGGTGGCCCGGGCGGAGGGCGTCGACGCGCGCTCCGTCGTCGGCGGGGTGCCGGCGCTGCTCGGCTGA	MTVHDGGTEGTPGRLAPLVEPTRELTGAELDRYARHLALPGIGPDGQRRLAAARVLVVGAGGLGSPALLYLAAAGVGTIGIVDDDAVDVTNLQRQVLHGQSDLGRSKTVSARATVAEVNPHVEVVEHVLRLAPDNVLDVLRGYDVVLDGADNFPTRYLVSDAAEILGVPVVWGSIDRFDGQVSVFWGAPRYVTADGARSVRRGVTYRDVFPVPPPPGVVPDCATGGVLGAMCGTVGSAMATETVKLVTGVGEPLHGRLAVHDALAADWRELVVRPDPGREPVTELLAGDDAYAAFCGLAPAVPGPGRTAVPGDLEVSAADARTLLAADRPAVLVDVREEWEARVRPVDGARLVPSGTFLGTAAGGPDDVARGALDALPTDRPVLLVCAAGPRSTRVARVARAEGVDARSVVGGVPALLG				NA	NA	NA	NA	NA
AK001_02699	831	thiG	COG2022	Thiazole synthase	ATGACCACGACCGGAACGACCGACCTGCGCACGGACGTCGGCGCCCCGCTCGTCGTCGCGGGGACCGAGATCGCGTCCCCGCTCGTGATGGGGACGGGCGGTGCCGCCAACCTGCTGACGCTGGAGGAGGCCCTGGTCGCCTCCGGCACCGCCCTGACGACGGTGGCCATGCGCCGCGTCGCGCCGCGCGCCGGCGGCGAGGCGGCCCGGGACGCCGGGATCTGGGGTCTGCTCGAGCGCCTCGGCATCCGCGCCCTGCCGAACACGGCCGGCTGCTTCTCGGTGCGCGAGGCGGTGCTCACCGCGCAGCTCGCCCGGGAGGCCTGCGGCACGAGCTGGGTCAAGCTCGAGGTGATCGCCGACGACGTCACGCTCCTCCCGGACCCGGTCGGGCTCGTCGAGGCCGCCGAGGAGCTCGTCCGCGACGGGTTCGTCGTCCTGCCCTACACGAACGACGACCCGATCCTGGCGCGTCGCCTGGAGGACGTCGGCTGCGCAGCCGTGATGCCTCTCGGCGCGCCGATCGGGTCCGGGTTGGGCATCCTCAACCCGCGCAACATCGAGGCGATCGCCGATGCCGCGCACGTACCGGTGATCCTCGACGCCGGCATCGGCACCGCCTCGGACGCCGCGCTGGCGATGGAGCTCGGCTGCGCCGGCGTGCTCCTCGCCACCGCCGTCACCCGGGCCGAGGACCCGGTGCGCATGGCCCGCGCGATGCGGCTCGCCACCGAGGCGGGGCGGCTCGCGGCGGGCGCCGGCCGCATCCCGCGGCGCGAGGGTGCGCTGGCCAGCTCACCGGCGGAGGGCCGGCTGGACCTGTCGCTGTAG	MTTTGTTDLRTDVGAPLVVAGTEIASPLVMGTGGAANLLTLEEALVASGTALTTVAMRRVAPRAGGEAARDAGIWGLLERLGIRALPNTAGCFSVREAVLTAQLAREACGTSWVKLEVIADDVTLLPDPVGLVEAAEELVRDGFVVLPYTNDDPILARRLEDVGCAAVMPLGAPIGSGLGILNPRNIEAIADAAHVPVILDAGIGTASDAALAMELGCAGVLLATAVTRAEDPVRMARAMRLATEAGRLAAGAGRIPRREGALASSPAEGRLDLSL	PGPT0008965_635	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149	NA	NA
AK001_02700	291			hypothetical protein	ATGAACCCCGCCCACCAGCACGTCGACCCCGCCGCCCGTACCGCGCCGGGTCCCACCGCACCCGCGAGCACCGCCCGGGTGAACGGCGAACCGTACGACCTCGGCCCGACGGGCGAGCTGCCCGTCACCGAGCTGGTGACCCGCCTCGTGCCCGGGCACGTCGTCGACGGGGTGGCCCGCGGGGTCGCCGTCGCCGTCGACGACGTCGTCGTGCCGCACGGCACGTGGCGGACCGCCGTCGTCCGCGCCGGGGACCGCGTCGAGATCGTCACCGCCGTCCAGGGCGGCTGA	MNPAHQHVDPAARTAPGPTAPASTARVNGEPYDLGPTGELPVTELVTRLVPGHVVDGVARGVAVAVDDVVVPHGTWRTAVVRAGDRVEIVTAVQGG	PGPT0008970_204	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008970-thiS-K03154	NA	NA
AK001_02701	1257	dadA		D-amino acid dehydrogenase	GTGGACCGTCACTCGTCGGCGCCGCACGGCGTCCGCGACCTCGTCGTGGTCGGCGGCGGCATCATCGGCCTGGCCGTGGCCTGGCGGGCCCTCGAGGCCGGCCTGAGCGTCACCGTCCTGGACCCGGACCCCGGCGACGGGTCCACGCACGCCGCCGCGGGCATGCTCGCGCCGGCCACCGAGGCCGAGTTCACCGAGGACGCCGCGCTGCACCTGCACCTGGCCGGGGCCGCACGCTGGCTCCCGTTCGCCGCCGACCTGGAGGCCGCCGCCGGCCGCGGCGTGGGGCTGCGCGAGTCCGGGACGCTGACGCTCGGCTACGACGAGACCGACGTCGCCCTGCTGCGCCGGGTCCTGGCCCTGCACGGCCGGCACGGGGTGGACTCCGAGGAGCTGACGATCGGCGAGGCGCGCCGGCGCGAACCGCTGCTCGGCCAGCGCGTGCGCGGAGCCGCCTGGGTCCCCGGCGACCACGCCGTCGACCCCCGGGCCGTGCACGCCGCGCTCTGGCGCGTCGTGGCCGCCCACTCCCGCGGCGCCGTCGTGCCGCGTGCCGCGGTCCGGCTCGAGCAGCAGGACGGCCGGGTCGTCGGGGCCGTCGACGACACCGGCGACCGGCACCGCGCCGGCTCGACCGTCGTCGCCGCCGGGTGGGCGTCCGCCCCGCTGCTGGCGGAGGTGCCCGGCGTGGCGGTCCCCGTGCGGCCGGTCAAGGGCCTCACGCTGCGGCTGCAGGCTGACCCCGAGCTCGCACCGCGCCACGTCGTCCGCGGCCTGGTCCAGGGCCGGCCCGTGTACGTCGTGGGACGCGAGCCCGCGACCGAGGGGCCGTGGGCCGGGCACTGCGAGCTGGTGATCGGCGCGACCTCCGAGGAGAACCCCGACGACCGTCGCGCACCCGCCGGCGGCGTGTTCGCCCTCCTGCGCGACGCGCGCGCCCTGCTGCCCGCGATCGACGAGGCCGCGCTGGTCGAGGCCACCCCGCGGGCCCGGCCGTCCACGCCGGACAACCTGCCCCTGGTGGGCGCGACGCACGTGCCCGGACTGCACCTGGCCACCGGCCACTACCGCAACGGCATCCTGCTCGCGCCGCTGACCGCGGAGGTCGTCGTGGCCGGGCTGACCCGCTCCTGGTTCGCCGTCGACGTCGCCACGACGGACCCACCGGCCGTGCTCGCCGCCCTGCGGGCGACGGACCCCCGCCGGTTCCCGCCCCGCGCACCCGACCCCCGCACCCCCGACGGAGCCCCCCGATGA	MDRHSSAPHGVRDLVVVGGGIIGLAVAWRALEAGLSVTVLDPDPGDGSTHAAAGMLAPATEAEFTEDAALHLHLAGAARWLPFAADLEAAAGRGVGLRESGTLTLGYDETDVALLRRVLALHGRHGVDSEELTIGEARRREPLLGQRVRGAAWVPGDHAVDPRAVHAALWRVVAAHSRGAVVPRAAVRLEQQDGRVVGAVDDTGDRHRAGSTVVAAGWASAPLLAEVPGVAVPVRPVKGLTLRLQADPELAPRHVVRGLVQGRPVYVVGREPATEGPWAGHCELVIGATSEENPDDRRAPAGGVFALLRDARALLPAIDEAALVEATPRARPSTPDNLPLVGATHVPGLHLATGHYRNGILLAPLTAEVVVAGLTRSWFAVDVATTDPPAVLAALRATDPRRFPPRAPDPRTPDGAPR	PGPT0008955_163	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153	NA	NA
AK001_02703	648	thiE	COG0352	Thiamine-phosphate synthase	ATGACGACTCCCGCTCCTCGCAGCCGCCTCGCCGACGCCCGCCTCTACCTGTGCACCGACGCCCGCGAGGACCGCGGCGACCTGGAGGACTTCCTGCACGCCGCGCTGAGCGGCGGCGTCGACGCGGTCCAGCTGCGCGACAAGTCCCTCGACGTCGCCCGCGAGTTCGAGCTCCAGGCCCTGGTGGCGCGGGTCGCCGCCGAGCACGGCGCGTTGTGGGCGGTCAACGACCGTGCCGACGTGGCCCGGCTCACGGACGCTCCCGCGGTGCACATGGGTCAGGGCGACCTGCCGGTGCCGGCCGTGCGCTCCCTGCTCGGTCCGGGGCCGGTCCTGGGGCGGTCCACGCACTCGGCGGCGCAGGCGGCCGCCGCGGAGGCCGACCCCGACGTCGACTACTTCTGCGTCGGACCCCTGTGGACGACCCCGACCAAGCCCGGTCGGGCCGCCGTCGGGCTCGGCCTGCTGCGCGAGGTGGCCGCCACCGCGCCGACCACGCCGTGGTTCGCCATCGGGGGGATCGACGCCGACCGCCTCGACGCCGTCCTCGAGGCCGGTGCGCGGCGGATCGTGGTCGTGCGGGCGATCACCGGCGCCCCCGACCCCGAGCGGGCCGCCCGCGCGCTGCGCGAGCGCCTCGGGGCGTGA	MTTPAPRSRLADARLYLCTDAREDRGDLEDFLHAALSGGVDAVQLRDKSLDVAREFELQALVARVAAEHGALWAVNDRADVARLTDAPAVHMGQGDLPVPAVRSLLGPGPVLGRSTHSAAQAAAAEADPDVDYFCVGPLWTTPTKPGRAAVGLGLLREVAATAPTTPWFAIGGIDADRLDAVLEAGARRIVVVRAITGAPDPERAARALRERLGA	PGPT0008995_559	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008995-thiE-K00788	NA	NA
AK001_02704	1620	guaA	COG0518	GMP synthase [glutamine-hydrolyzing]	GTGACGTCCCCCGCCACCGCTCCCGCCACCGCATCCGCCCAGGCCGCGCCGCGCCCGGTCCTGGTCGTCGACTTCGGCGCCCAGTACGCCCAGCTCATCGCGCGCCGCGTGCGCGAGGCCAACGTCTACTCCGAGATCGTGCCGCACACGTGGACGCCGGAGCAGATGCTCGCCCGCGACCCCGCCGCGATCATCCTCTCGGGCGGCCCGTCCTCCGTGTACGCCACGGGGGCGCCGTTCGTCGACGCCGAGCTGTTCGACGCCGGGGTGCCCGTGCTGGGCATCTGCTACGGCTTCCAGGCGATGGCGCAGGCGCTCGGCGGCACGGTCGCCCAGACCGGTACCCGTGAGTACGGCGGCACCGAGGTGGAGGTGTGCGAGGCCGGGATGCTGCTCGCCGACACCCCCGTCACCCAGACCACGTGGATGAGCCACGGCGACTCCGTGCACGCGGCGCCCGAGGGCTTCGAGGTGCTCGCGACGTCGTCCGGGTCGCCGGTCGCCGCCTTCGAGGACCGCCGGCGCCGCCTGTACGGCGTGCAGTGGCACCCCGAGGTCAAGCACTCGGCCCACGGGCAGACGGTGCTGGAGCACTTCCTCTACGAGGGCGCGGGCCTGGCGCCCGACTGGACGCCCGACAACGTCATCGCCGACCAGGTCGCCGCGATCCGCGCGCAGGTCGGCGACGCCCGGGTGGTCTGCGGTCTGTCCGGCGGCGTGGACTCCTCGGTCGCCGCCGCGCTCGTGCAGCGCGCGGTGGGGGACCAGCTCACCTGCGTGTTCGTCGACCACGGCCTCCTGCGCGAGGGCGAGGTGGAGCAGGTCGAGCGCGACTTCGTGGCCGCGACGGGCGTCAACCTGGTGGTGCGCGACGAGCGCAAGCGCTTCCTGGAGGCCCTGGAGGGCCACAGCGACCCGGAGACGAAGCGCAAGATCATCGGCCGCGAGTTCATCCGCGTCTTCGAGGACGCCGCCCGCGACATCGTCGCCGAGGGGCACGAGCACGCCGTGCACGGCGAGGGTTCCGAGGTGCGGTTCCTCGTGCAGGGCACCCTCTACCCCGACGTGGTCGAGTCGGGCGGCGGCGAGGGCGCGGCCAACATCAAGAGCCACCACAACGTGGGCGGTCTGCCCGACGACCTGCAGTTCGACCTGGTCGAGCCGCTGCGCACCCTGTTCAAGGACGAGGTGCGGGCCGTCGGCCGCGAGCTCGGCGTCCCGGAGCCGATCGTCGCCCGGCAGCCCTTCCCGGGGCCGGGCCTGGGCATCCGCATCATCGGCGAGGTGACGGCCGAGCGGCTCGAGATCCTGCGCCGGGCCGACGCCGTCGCCCGCGAGGAGCTGACGAAGGCCGGGCTCGACGGCGAGATCTGGCAGTGCCCGGTGGTGCTGCTGGCCGACGTGCGCTCGGTGGGCGTCCAGGGCGACGGCCGGACCTACGGGCACCCGGTCGTGCTGCGTCCCGTCTCCAGCGAGGACGCCATGACGGCCGACTGGACGCGCATGCCGTACGACGTGCTGTCGACGATCTCCACGCGCATCACCAACGAGGTCAGCGAGGTGAACCGGGTGGTCCTCGACGTGACGAGCAAGCCCCCGGGCACCATCGAGTGGGAGTGA	MTSPATAPATASAQAAPRPVLVVDFGAQYAQLIARRVREANVYSEIVPHTWTPEQMLARDPAAIILSGGPSSVYATGAPFVDAELFDAGVPVLGICYGFQAMAQALGGTVAQTGTREYGGTEVEVCEAGMLLADTPVTQTTWMSHGDSVHAAPEGFEVLATSSGSPVAAFEDRRRRLYGVQWHPEVKHSAHGQTVLEHFLYEGAGLAPDWTPDNVIADQVAAIRAQVGDARVVCGLSGGVDSSVAAALVQRAVGDQLTCVFVDHGLLREGEVEQVERDFVAATGVNLVVRDERKRFLEALEGHSDPETKRKIIGREFIRVFEDAARDIVAEGHEHAVHGEGSEVRFLVQGTLYPDVVESGGGEGAANIKSHHNVGGLPDDLQFDLVEPLRTLFKDEVRAVGRELGVPEPIVARQPFPGPGLGIRIIGEVTAERLEILRRADAVAREELTKAGLDGEIWQCPVVLLADVRSVGVQGDGRTYGHPVVLRPVSSEDAMTADWTRMPYDVLSTISTRITNEVSEVNRVVLDVTSKPPGTIEWE	PGPT0021580_3958	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951	NA	NA
AK001_02705	690			hypothetical protein	GTGACAGGGCAGCTCGCGACGGCCGTCCTGACCGAGTCCGACACGGTCGCCGCGACGCTGGGTGTCGTGCAGCGGGTGCTGGAGTACCTCGGCACCGTCGCCTTCGCGATCTCCGGTGCCTTCGCCGCCGGCCGCAAGCAGATGGACCTCGTCGGCGTCGTCGCGCTCGGTGCGACCGTGGCGGTGGGTGGTGGCACCCTGCGGGACCTCCTGCTCGGCGAGACGCCCGTCTTCTGGGTCACCGAGCCGACGTTCCTGCTCGTCGGCGCCGCGACGGCCCTGCTGGTGGTGCCGCTGGCGCGGACACGGACGCTCGACGTGCTGCGACGGCTGCAGGTCATCGAGGTCTCCGACGCCGCCGGCATGGCCCTGTTCGTCGTCATCGGCACGAACGTGGCGCTGTCCGCCGGGGCGAGCGCGGTCTCGGCGGCGGTCGTCGGCGTCGTGGCCGGCGTCGGCGGGGGCGTGTTCCGCGACGTGCTGGCCAACGAGCTGCCCGAGGTGCTGAGCAACGCCCAGTTCTACGCCACCGCGGCGCTGCTCGGCGCGGCGGTGCACCTGGGTCTGCTGGAGCTCGACGTCGACCCGGCGGTCGTGTTCTGGGTGCCGATCGCGGTGATCCTGACCGTGCGCCTGCTGGCGGTCCGTCTCGGCTGGGGCATGCCCACGTTCACCGTCGCGGGTGAATGA	MTGQLATAVLTESDTVAATLGVVQRVLEYLGTVAFAISGAFAAGRKQMDLVGVVALGATVAVGGGTLRDLLLGETPVFWVTEPTFLLVGAATALLVVPLARTRTLDVLRRLQVIEVSDAAGMALFVVIGTNVALSAGASAVSAAVVGVVAGVGGGVFRDVLANELPEVLSNAQFYATAALLGAAVHLGLLELDVDPAVVFWVPIAVILTVRLLAVRLGWGMPTFTVAGE				NA	NA	NA	NA	NA
AK001_02706	489			hypothetical protein	ATGTCCAGCTCTGTCACCGTCCGACCCGCCAAGGGTGTCCGCGGCATCGGGATCGTGTCCATCGTCGCCGGCATCATCATGATCATCGCCGGCGTCGTCGTCTGGTTCATCGTCTCGTCGACCCTGTCCGACGAGCAGATCACCGTCTCGGAGGACGCCAGCATGGCGGCCGGCCAGGAGGTCGCCGGACCGTTCACCGCGTACGCCCAGGCCGACATCATCAACCAGCACGCGATGGAGGCCTCGGGCGGGATGACCTACGCCCAGCTCGACCGGGAGGACCCGACGCGTGACACCGTCATGAACGCGTCGTTCCTGCGGGCCTCGCTGTTCACGTCGGTCGTCGCCTTCGGCGTCTGCGCCCTGGTGATCGGCCTGGGCGTGATGTTCATCCTCGTCGGCTACGCGTTCAGTCGCCTGGGAGGCAGCTCCTCGGCGGCGGTCGTCTCCACCCCCACGGGTGGTCCCACGTCGACCTCGACCGCCTGA	MSSSVTVRPAKGVRGIGIVSIVAGIIMIIAGVVVWFIVSSTLSDEQITVSEDASMAAGQEVAGPFTAYAQADIINQHAMEASGGMTYAQLDREDPTRDTVMNASFLRASLFTSVVAFGVCALVIGLGVMFILVGYAFSRLGGSSSAAVVSTPTGGPTSTSTA				NA	NA	NA	NA	NA
AK001_02707	453			hypothetical protein	ATGAGCACCGAGCCGTACCGCACGCCGGGCGACGAGCCCGACACCCCGCGGCAGGACCACCCGACCGTCGAGATCCCGCAGGACACCGCAGGGACGGCCGCCGACGGCCCGCCGCACGCGGGGTCGCCCGCCACGGCGGACTCGGCCCCGCCGGCTGCCGGCACCTCGACCGGCACGTCGACCGGCACCCCGACCGGCCCTGCGGGCCCCGGCACAGCGACCGGCACGGCCCCGGTCCCCGGCGCGCCGACGGTGCGCACGGGGCCGCGCGGCAGCACCGTCGTGTGGGGCGTCGTCGTGATCGCCGTCGCCGTCGGGCTGCTCGCCCGGACGGCAGGGGCGAGCGTCGACGCCCAGCTGGCCGCGATCCTCCTGCTCGGCGCCGCCGGACTCGTGCTCGTGGTCGGCTCGGTCGTCGGCGCCGCACGACGGCGTCGCCGCACCCCGTCCTGA	MSTEPYRTPGDEPDTPRQDHPTVEIPQDTAGTAADGPPHAGSPATADSAPPAAGTSTGTSTGTPTGPAGPGTATGTAPVPGAPTVRTGPRGSTVVWGVVVIAVAVGLLARTAGASVDAQLAAILLLGAAGLVLVVGSVVGAARRRRRTPS				NA	NA	NA	NA	NA
AK001_02708	1464			hypothetical protein	ATGACCACGAACCAGACCCCACCACCCCCGGACGGCGGTACCGGCCCCACCGGCGACCCCGGTCCGGGAGCCGCTCCCCCGCCGCCGCGCCCCGCCGGCGACGGCTTCTTCGACTCGTTGCGCCGGATGGGCGTGAGCCGGTCCGAGGACCGCTGGGTCGGCGGCGTCGCCGCCGGCGTGGCCGACCGGTTCGGCCTCGACCCGCTGCTGGTGCGCGGGCTGCTCGTCCTCAGCTTCTTCGTCACCGGGGCCGGGCTCGTGCTCTACGGCGTGGCCTGGCTGCTGCTGCCCGAGCGGTCCGACGGGCGGATCCACCTGCAGGAGGCGATCCGGGGCACGTTCGACGTGGCCGTCCTGGGCGGCGCACTGGCGGTCGTGCTGGGCATCGGCTGGGGCGGCGGGATCTGGCCCTGGTGGGGCGGGTTCCCCGAGTGGATCGCCGCGCTGTTCTGGATCGCCTTCTGGGTGGCCGTCGTCTGGCTGGTCGTCCGGCTGGTCCGGTCCCGGCAGCGGGAGCGCGCCGACGCCGTGGCACCGCCCGGGCCCTCGACGGCCCCGGGGGCGCCCCGTGCGCCCGGAGCGCCGACCGCCGCGTCCGCGCCGACGGCCTCAGAGTCCACCGGGTTCGAGCCCGCGCCCCGGGTCCACTACGCGCCGGCGCCGCCGGCGGGACCGACCGCCGGAGCCCCGTCGGGTCCGGCCGGGCCGACCGGGCCGTCCGGTCCCGCGTGGTCGGGGCCGCCCCCCGCCCCGCGGCCCGTGGTCCGTCCGGCCGGCGCCGGGACCGTGGGGGTCGTGGTCGGGCTGTCCCTCCTCGTGGGTGCCGCCCTGCTCGCGGCCGACGTCGTCGCCGGGCTGACGGTCCCCGTGTGGGGGCTGTGGCTGGGGATCACCGTCGGCATCGTGGGCGCGGCCCTGGTCGTCACGGGCCTGCGCGGCCGGCGCGGCGGCTGGCTGACCGCGTTCGCGGTCCTCGGCATCGTCGCGACCGCGCTGACGTGGCCCTTCGCCGACCGCAGCGCGTGGTGGGACGAGTGGCCGTGGGACGACGGGGCGCAGGTCACGACGTCCTCGGGCACCGCCCTGAGCTCCGGGGTGGTCACGCCGCGGTCCGTGGCCGCGGCCGAGGACGGGATCCGCGTGCAGTTCGGCGAGGCCCGGGTGGACCTCACCGAGCTCGATCTCACCGACGTCGTTCCCGGGTCCCCCGTCGAGGTACCCATCGAGATGACCGCGGGACGCACCGTCGTCGAGATCCCGGCCGACACGGCCGTGACGGCGTCGGTCGACGTCAGCGCCGGCCGGTTCGTCTGGGACGTCGAGGGCGAGTACCGCACCGTCGACGGGTTCAGCGGCGGACCCGCCACCTACACGACCGACGAGGTGGACACCGCGGGCGGCGCCGTGCTGCTGCTCGACGTCGACGCCCGTGCCGGAGAGATCGTCATCGAGGAGGACCGATGA	MTTNQTPPPPDGGTGPTGDPGPGAAPPPPRPAGDGFFDSLRRMGVSRSEDRWVGGVAAGVADRFGLDPLLVRGLLVLSFFVTGAGLVLYGVAWLLLPERSDGRIHLQEAIRGTFDVAVLGGALAVVLGIGWGGGIWPWWGGFPEWIAALFWIAFWVAVVWLVVRLVRSRQRERADAVAPPGPSTAPGAPRAPGAPTAASAPTASESTGFEPAPRVHYAPAPPAGPTAGAPSGPAGPTGPSGPAWSGPPPAPRPVVRPAGAGTVGVVVGLSLLVGAALLAADVVAGLTVPVWGLWLGITVGIVGAALVVTGLRGRRGGWLTAFAVLGIVATALTWPFADRSAWWDEWPWDDGAQVTTSSGTALSSGVVTPRSVAAAEDGIRVQFGEARVDLTELDLTDVVPGSPVEVPIEMTAGRTVVEIPADTAVTASVDVSAGRFVWDVEGEYRTVDGFSGGPATYTTDEVDTAGGAVLLLDVDARAGEIVIEEDR				NA	NA	NA	NA	NA
AK001_02709	1299			hypothetical protein	GTGACGTCCCCCGGCCCCGACCGCCTGCCGCTGCGCCGCCCCCGCCAGGGACGGTGGGTCGGCGGCGTGTGCGCCGGGGTCGCCGCGCACCTCGGAGCGCCCGTCTGGGTGGTCCGGCTCGTGATGGTCCTGCTGGCCCTGTCCGGCGGCACGGGTCTGGTGCTGTACGGCTTCTGGTGGGTCACGGTGCCGGCGGGCGACCCGCACGACGCCGCGGCGGCGGCCCGGCCCGCCGCCGTCGCGCGGCTGGCGCCCCGGCTGCGGCGCACGGGCACCGTCCAGGCGCTGTCGCGCCGCGACGTGCTGGTGGGCGTCCTGCTGCTCGGCGGCGCGCTGGTCCTGGTCGCCGTGCGTGCCGGCTGGGACCTGCCCTCGACCTGGCTCCCCCTGCTCATCGTGGGCGGCGGTGCGGTCCTGGCCTGGAGCCAGCTCGACGCCGTCCAGCGGGCCCGCGCGGGCGACGTGCCGACGTCCCGGTCCGGGATGCTGCTGCGGCTGGCCGGCGGCCTCGTGCTGGTGACCGCGGGCGTGCTGCTGCTGTTCGTCCAGGGCACCCCGCCCGGTGAGCTGCTCACCGTCACGCTGGCCTCGCTGGCCGTGCTGGTGGGCGTGGCCCTGGTGCTGGCCCCGTGGTGGCTTCGCCTGGTCCGGGAGCTCGGGGACGAGCGGGCCGCCCGTGCGCGGGAGGCCGAACGGGCGGACATCGCCGCCCACCTGCACGACTCGGTGCTGCAGACGCTGTCCCTCATCCGCGCCCGGGCACGAGACCCCGAGGAGGTGGCCCGGATGGCGCGCGCCCAGGAGCGCGAGCTGCGCGAGTGGCTGTACGACGACCGGCCCGCCGAGGGCACGTCGCTGGCCGCCGAGCTGCGCTCCCTGGTGGGGGAGGTCGAGGACGGCCGCGCCGCCGAGGTCGAGACCGTCGCCGTCGGCGACTGCCCGCCGACCGAGACCACGACCGCGCTGCTGCAGGCCACCCGCGAGGCCCTGGTCAACGCCGTCGTGCACGGTGCCGCGCCCGTCACCGTCTACCTGGAGGTGACCGACGCCGCGGTCGAGGTGTTCGTGCGGGACCGGGGCGACGGGTTCGACGTGGACGACGTCGCGCCCGACCGGTTCGGCGTGCGCGAGTCGATCCTCGGCCGGGTCCGGCGCCGCGGCGGGACAGCCGAGGTGACCAGCCGGCCCGGCTGGGGCACCGAGGTGCACCTGCTCGTGCCGCGCACGGCCGACGCGCGCGCCACCCCGTCGCCCGACTCGGCGTCGTCCGCCCCCGAGACCGAAGGAGCCCGGTCATGA	MTSPGPDRLPLRRPRQGRWVGGVCAGVAAHLGAPVWVVRLVMVLLALSGGTGLVLYGFWWVTVPAGDPHDAAAAARPAAVARLAPRLRRTGTVQALSRRDVLVGVLLLGGALVLVAVRAGWDLPSTWLPLLIVGGGAVLAWSQLDAVQRARAGDVPTSRSGMLLRLAGGLVLVTAGVLLLFVQGTPPGELLTVTLASLAVLVGVALVLAPWWLRLVRELGDERAARAREAERADIAAHLHDSVLQTLSLIRARARDPEEVARMARAQERELREWLYDDRPAEGTSLAAELRSLVGEVEDGRAAEVETVAVGDCPPTETTTALLQATREALVNAVVHGAAPVTVYLEVTDAAVEVFVRDRGDGFDVDDVAPDRFGVRESILGRVRRRGGTAEVTSRPGWGTEVHLLVPRTADARATPSPDSASSAPETEGARS				NA	NA	NA	NA	NA
AK001_02710	672	nreC_2	COG2197	Oxygen regulatory protein NreC	ATGACCAGCCCTGCCACGGAGACGCCGGTTCCGGTGGTCCTCGTCGACGACCACCACATGTTCCGCACCGGCGTGCGCGCGAGCCTCGACGGGCGGGTGCGCGTGGTCGGTGAGGCGGCGGACGTCGACGAGGCGGTCGCCGTCGTGCACGAGCACCGGCCCCCGGTGGTGCTGCTCGACGTCCATCTGCCCGGCGGCGACGGCGGCGGCGGTGCCGAGGTGGTGCGCCGCTGCGCCGACCTGCTCGCCGGGACGAGGTTCCTCGCGCTGTCGGTGTCCGACGCCGCCGAGGACGTCGTGGCGGTGATCCGCTCGGGGGCGCGGGGCTACGTCACCAAGAACATCTCGGCGTCCGACCTGTCGGCCGCCGTGGTGCGGGTGGCCGGCGGGGACGCCGTGTTCTCCCCACGGCTGGCCGGGTTCGTGCTCGACGCGTTCGGCACGGCGGCGGGCGACGTCGCGGTGGCCGACGACGAGCTCGACCGGCTCTCGAAGCGCGAGCAGCAGGTCATGCGGCTCATCGCCCGCGGCTACACCTATCGCGAGGTCGCGAGCGACCTGTTCATCTCCGTCAAGACCGTGGAGACCCACGTCTCGGCCGTGCTGCGCAAGCTGCAGCTGTCGAACCGCAACGAGCTCACCCGGTGGGCGGCGGCGCGGCGGCTGCTCTGA	MTSPATETPVPVVLVDDHHMFRTGVRASLDGRVRVVGEAADVDEAVAVVHEHRPPVVLLDVHLPGGDGGGGAEVVRRCADLLAGTRFLALSVSDAAEDVVAVIRSGARGYVTKNISASDLSAAVVRVAGGDAVFSPRLAGFVLDAFGTAAGDVAVADDELDRLSKREQQVMRLIARGYTYREVASDLFISVKTVETHVSAVLRKLQLSNRNELTRWAAARRLL	PGPT0000550_660	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	N-AQUISITION-NITRATE|NITRITE_SENSING,PGPT0000550-narL-K07684	NA	NA
AK001_02711	768			hypothetical protein	GTGACACGCGGTGACACGGTCGACACCGGGACGAACGATCCGACGCGTAGCGTGCCCACCATGGCAGCCCCGACGCTTCTCGCGATCTCCCACGGCACGTCCTCGGACGTCGGCGCGTCCGCCGTCGCCGGACTCGTCGACGCCGTGGCCGACCGGCTGGACGGCGAGGCCCCGGTCCGGGCCGGTTTCGTGGACGTCCAGCAGCCCGACGTCCCGACGTGCCTGGCCGACCTGCGCGAGACCTCCACGGTGCTCGTGCCGCTGCTGCTCTCGGCCGGCTTCCACGTGCACGTCGACCTGCGCGAGGACGTCGACGCGGCCGTCGCGGACGGTCAGCACGTCACGCTCGCCGGGGCGCTGGGCCCCGACACCCGGCTGGTGGACCTGCTCGAGCGCCGGCTCGCCGAGGCGGGGCTGACCGAGGGCGACGTCGTCGTCCTCGCCGCGGCCGGCTCGTCCGACGCCCGGGCGGTCGCCGACTGCGAGCGCACCGGGATCCTGCTCGCCGAGCGCACCGGGCACCCGGTGCGCGTCGGCTACCTCGCCAACGCCACCCCGCAGCTCGCCGACGTCGTCGGGTCCGTCCGCCTCGAGCACCCGGACGCCCGGATCGTCACCGCGAGCTACCTCATCGCGCCGGGCTACTTCCAGACGCTGGCCGAGCGCGCCGGTGGCGACCTCACGACGCCGCCGCTGCTGCCGGCCGACGCCCCGGCGCCCCCCGAGCTGGTCGAGATCGTGGTCGACCGGTACCGCGCCGCACGCTGA	MTRGDTVDTGTNDPTRSVPTMAAPTLLAISHGTSSDVGASAVAGLVDAVADRLDGEAPVRAGFVDVQQPDVPTCLADLRETSTVLVPLLLSAGFHVHVDLREDVDAAVADGQHVTLAGALGPDTRLVDLLERRLAEAGLTEGDVVVLAAAGSSDARAVADCERTGILLAERTGHPVRVGYLANATPQLADVVGSVRLEHPDARIVTASYLIAPGYFQTLAERAGGDLTTPPLLPADAPAPPELVEIVVDRYRAAR	PGPT0003690_20	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302	NA	NA
AK001_02712	1248	cysG_2	COG0007	Siroheme synthase	ATGAGTGACCTGTACCCGCTGGGGCTGCGCGTGCGCGACCGGCTCGTCGTCGTCGTCGGCGGCGGGCCGGTCGCGGCCCGCCGCGTCCGCGGCCTGCTCGAGGCCGGGGCGCGCGTCCGGGTGGTGGCCCCCGTCCTCGACGACGAGCTGGCCGCCGCGGCCGCCGCCGGGACGGTGGAGCACGCGGCCCGCGCCTACCGGTCCGGCGACCTGGACGGCGCGTGGGTCGTGCACACCGCCACCGGCGTCGGGGACGTCGACCGGGCCGTGGCGGCCGACGCCGAGGCACAGCAGACCTTCTGCGTCGTCGCCGCCGACGCCGCGGCCGCCACGGCCTGGGTCCCCGCCTCGGCCGGGCTGCCCGGGCCCGAGGGCGACGTCGTCGTCTCCGTGCACGCCGGTCGTGACCCGCGCCGTGCCGCCCGGCTGCGCGACGGCGTCGCGGCGGCCCTGGACGCCGGGGAGCTGCCGCTGCGCCGCGTCCGGCCGACGGACGCACCGGGCCCCGGCCGGGTGGCCCTGGTCGGCGGCGGCCCCGGGGACCCCGGGCTGCTCACCGGACGCGGCCGACGCCTCCTGGCGAGCGCCGACGTCGTCGTCGTCGACCGGCTCGCCCCGCGCAGCGTCCTGACCACGCTCGCCGACGACGTCGAGGTGATCGACGTGGGCAAGACCGCCGGGAACCACCCGGTGCCGCAGGAGCGCATCAACGAGCTGCTCGTCGAGCACGCCCTCGCCGGCCGGCAGGTCGTCCGCCTCAAGGGCGGCGACCCGTACGTGCTGGGGCGCGGCGGCGAGGAGCTCGCCGCCTGCCGCGCGGCCGGGCTCGACGTCGAGGTGGTGCCGGGCGTGACCTCGGCCGTCTCCGTCCCCGCCGCGGCCGGGATCCCGGTGACGCACCGCGGGGTGGCGGCCGGGTTCAGCGTGCTGACCGCGCACGAGGCCGTCGCCTCCGTGCCCGGCGGTCCGGAGCACACCCTGGTGCTGCTCATGGGCGTCACCCGGCTCGCCACGACCACCCGGGCGCTGGTCGAGGCCGGCCGCCCGGCCGACACCCCCGTCGCGGTGGTCGAGGACGGCTTCGGACCGCGCCAGCGGACCACCGTCGGCACGCTGGCCGACATCGCCGAGCGGGCCGCCGCGGCCGAGGTCCGCCCGCCCGCCGTGACCGTCGTCGGCGACGTCGTCCGGCTGTCGCCGGCCTGGGCGGCTCACGTCACGGCCGCGGAGGGTGTGAGCGAGTCGTGA	MSDLYPLGLRVRDRLVVVVGGGPVAARRVRGLLEAGARVRVVAPVLDDELAAAAAAGTVEHAARAYRSGDLDGAWVVHTATGVGDVDRAVAADAEAQQTFCVVAADAAAATAWVPASAGLPGPEGDVVVSVHAGRDPRRAARLRDGVAAALDAGELPLRRVRPTDAPGPGRVALVGGGPGDPGLLTGRGRRLLASADVVVVDRLAPRSVLTTLADDVEVIDVGKTAGNHPVPQERINELLVEHALAGRQVVRLKGGDPYVLGRGGEELAACRAAGLDVEVVPGVTSAVSVPAAAGIPVTHRGVAAGFSVLTAHEAVASVPGGPEHTLVLLMGVTRLATTTRALVEAGRPADTPVAVVEDGFGPRQRTTVGTLADIAERAAAAEVRPPAVTVVGDVVRLSPAWAAHVTAAEGVSES	PGPT0003690_1533	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302	NA	NA
AK001_02713	891	cysH		Phosphoadenosine phosphosulfate reductase	GTGACGGCCGTACCGGTCTCCCTCGGGGTCGGCCCCACCTCGGCGGCCACCTCCACGGCTCCCGCCGGGGCCTCGTCCCTCGCCGACGCCGCCGCGGAAGCACGCCGCCGCGCCGCCGAGCGGGAGAAGTCCCGGGCCCGCCGCAACGCCCGCGTCGACGGTCGGGAGCGTCGCCGGCGCTCGGACGTCGAGCTGTCGCAGATCGCCGAGCGTGGTCGCCGCGAGCTCGGCGGGTCCGGACCGGGCTCCGCGGACGAGGCGACCGCCGAGGAGGTCATCGCCTGGGCGGTGGCCGAGTTCGGCGACTCCCTCGCGGTGGCGTCCTCGATGACGGACTCCGTGCTGGCCGCGCTGGTCAGCGCCCAGCTCCCCTGGGTGGACGTGCTGTTCGGCGAGACCGGCTACCACTTCGCGGAGACGATCGGGACGCGCGACGCCGTCGCGCACTCCCTCGACGTCACCGTGGTGGACGTGCGGCCGCTGCTCAGCGTCGCCGAGCAGGACGACGCCTACGGCCCGGACCTGTTCGCCCGCGACCCCGAGGCCTGCTGCCGCATGCGCAAGGTGGAGCCGATGCGCCGGGTGCTGTCCGGGTACGAGGCGTGGGCCACGGGCGTCCGGCGGGCGGACTCCGCCTCGCGTGCCACCGCCGAGCTCGTCTCGTGGGACGCGTCGAACAACCTGGTCAAGATCAACCCGATCGCCGGCTGGAGCGACGACCAGCTGGTCGGCTACGCGCTGCGCCACGGGCTGACCGTCAACCCGCTGCTCAACGACGGCTACCCGTCGATCGGCTGCGAGCCGTGCACCCGTCGCGTCGGTCCCGGCGAGGACGCCCGTGCCGGACGCTGGGCCGGGGCGGACAAGTCCGAGTGCGGTCTGCACATCTGA	MTAVPVSLGVGPTSAATSTAPAGASSLADAAAEARRRAAEREKSRARRNARVDGRERRRRSDVELSQIAERGRRELGGSGPGSADEATAEEVIAWAVAEFGDSLAVASSMTDSVLAALVSAQLPWVDVLFGETGYHFAETIGTRDAVAHSLDVTVVDVRPLLSVAEQDDAYGPDLFARDPEACCRMRKVEPMRRVLSGYEAWATGVRRADSASRATAELVSWDASNNLVKINPIAGWSDDQLVGYALRHGLTVNPLLNDGYPSIGCEPCTRRVGPGEDARAGRWAGADKSECGLHI	PGPT0002785_432	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390	NA	NA
AK001_02714	1728	sir	COG0155	Sulfite reductase [ferredoxin]	ATGACGACGCAGACCAACCCTCCCGCGCCGCCGAACGCTGCCGGTCGCCCGGCGCGGCCCGCCCGCGCCCCGAAGCCGAACGGCCAGTGGAAGATCGACGGCACCACCCCGCTGAACCACAACGAGGAGTTCAAGCAGGCCGGCCCGCCGCTCGAGGTGCGCGAGCGCATCGAGTCGACCTACGCGCGCGACGGCTTCGACTCCATCGCCGACGACGACCTGCACGGCCGTTTCCGCTGGTGGGGCCTGTACACCCAGCGCAAGCCCGGCATCGACGGCGGCCGCACCGCCACCCTCGAGCCGCACGAGCTCGAGGACCGCTACTTCATGCTGCGCGTGCGCACCGACGGCGCCGAGCTGACGCCGGCCGCCCTGCGCGTCCTCGGCGAGATCTCGGACGAGTTCGGCCGCGGCACCGCGGACATCACCGACCGGCAGAACATCCAGTACCACTGGATCGAGATCGAGAGCATGCCGGAGATCTGGCGCCGCCTCGACACGGTCGGCCTGGAGACGACGACGGCGTGCGGCGACTCCCCGCGCGCCTTCCTCGGCAGCCCCGTCGCCGGGATCGCCACCGACGAGATCATCGACGCCACGCCCGTCATCGACGAGATCAAGCGGCGGCACATCGGCGACCCGGAGCTCGCGAACCTGCCGCGCAAGTTCAAGACGGCCATCTCCGGCCACCCGAGCCTCGACGTCGTGCACGAGATCAACGACATCTCCCTGGTGGGCGTGGAGCACCCCGAGCTCGGCGCCGGCTTCGACCTGTGGGTCGGCGGCGGGCTGTCCACCGCCCCGCGCCTCGGCGAGCGCCTCGGCGTCTTCGTCACCGCCGAGCAGGCACCCGACGTCTGGTACGGCGTCATCCGCATCTTCCGCGACTACGGGTACCGCCGGCTGCGGAACAAGGCTCGCCTGAAGTTCCTGCTCAAGGACTGGGGCGCCGAGCGGTTCAGGGAAGTTCTCGAGACCGAGTACCTCGGGTACGCGCTGCCCGACGGCCCGCCCCCGGCCCCGGCGACCCGCCCGGGCGACCACGTCGGCGTCCACGAGCAGAAGGACGGCGACTACTACGTGGGCGCCGCCCCCGTCGTCGGCCGTGTCGGCGGCGGCACGCTGACCGGCCTGGCCGACCTCGTCGAGTCCGTCGGCGCCCGGTCGGCCCGGCTGACCGCCCACCAGAAGGTCGTGGTCCTCGGCGTGCCCGCCGACCGGGTCGACGAGCTGGTCGACGGCCTCGAGCCGCTGGGCCTGACGGCGCGGCCCTCGTTGTTCCGCCGCAACACCATCGCGTGCACGGGCATCGAGTTCTGCAAGCTCGCCATCGTCGACACCAAGGACACCGCCGCCGGCGTCATCGCCGAGCTGGAGCAGCGCCTGGACGAGCACGCCGAGCAGCTCGACCGGCCGATCTCGCTCAACGTCAACGGCTGCCCCAACTCCTGCGCCCGCATCCAGACCGCCGACATCGGCCTCAAGGGCCAGATCATCACCGTCGACGGCGAGCAGATGGCGGGCTTCCAGGTGCACCTGGGCGGCAGCCTCGCGGGGCAGGGTCACGACGCCGGCGGTCTCGGCCGCACGGTGCGCGGCCTGAAGGTCCCGGCCACCGAGGTCGCCGACTACGTCGAGCGCGTGGTGCGCCGCTACGCGGCGGACCGCAGCGACGGCGAGTCGTTCGCCGAGTGGGCCCACCGGGCGGACGAGGAGGTGCTGCAGTGA	MTTQTNPPAPPNAAGRPARPARAPKPNGQWKIDGTTPLNHNEEFKQAGPPLEVRERIESTYARDGFDSIADDDLHGRFRWWGLYTQRKPGIDGGRTATLEPHELEDRYFMLRVRTDGAELTPAALRVLGEISDEFGRGTADITDRQNIQYHWIEIESMPEIWRRLDTVGLETTTACGDSPRAFLGSPVAGIATDEIIDATPVIDEIKRRHIGDPELANLPRKFKTAISGHPSLDVVHEINDISLVGVEHPELGAGFDLWVGGGLSTAPRLGERLGVFVTAEQAPDVWYGVIRIFRDYGYRRLRNKARLKFLLKDWGAERFREVLETEYLGYALPDGPPPAPATRPGDHVGVHEQKDGDYYVGAAPVVGRVGGGTLTGLADLVESVGARSARLTAHQKVVVLGVPADRVDELVDGLEPLGLTARPSLFRRNTIACTGIEFCKLAIVDTKDTAAGVIAELEQRLDEHAEQLDRPISLNVNGCPNSCARIQTADIGLKGQIITVDGEQMAGFQVHLGGSLAGQGHDAGGLGRTVRGLKVPATEVADYVERVVRRYAADRSDGESFAEWAHRADEEVLQ	PGPT0002825_616	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002825-sir-K00392	NA	NA
AK001_02715	372			hypothetical protein	ATGGAGTTCCTCTACAACATCTTCACGGTGCTGCACTTCGTCGGCTGGGCCATCGTCCTCGGCGGCTACCTCGCCTCGCTGCGCAGCCCGGGCCTGTACCGCGGCGTCTTCCACGGGGCGGCGACCGCGCTCGTCGCAGGCATCCTGATGGTCGGCGTCGCGGAGATGGGCGGCCTGTGGGAAGACTTCGGGCCGTCGATGGCGAAGATCGGCGTCAAGCTGACGATCGCCCTGGTCATCACGATCCTGGCCTTCGTCGCCAAGCGCCAGGGTCGCAAGGGCGACAACGGCACCGGAGCCGTCGCCCCGGCGCTGAAGCACTCGATCGGCGCGCTCGTGCTCGTCAACATCGTCGTCGCCGTCTTCTGGTGA	MEFLYNIFTVLHFVGWAIVLGGYLASLRSPGLYRGVFHGAATALVAGILMVGVAEMGGLWEDFGPSMAKIGVKLTIALVITILAFVAKRQGRKGDNGTGAVAPALKHSIGALVLVNIVVAVFW				NA	NA	NA	NA	NA
AK001_02716	483			hypothetical protein	GTGAGCGTCCTGGGCGAGGTCCTCGTCGGCCTCGCGATCGCCGTCGGGCTCGTCGGGATCGTCGTCCAGGTGCTGCCGGGCAACGCCCTGGTGGCGAGTGCTCTGCTCGTGTGGGCCTGGGCGACCGGCGGCCCGACGGCGTGGACCTGCTTCGCCGTCGCCGCGCTGCTGATCGTCGCCGCCGAGACGGGCAACTGGCTCGTGGCGGGCCGCCACATGCGCCGCGCCGACGTGCCCTGGTCGACCCTCGCCGTCGGCGGCGTCGCCGGGATCGTCGGGTTCTTCGTCGTGCCCGTGGTCGGACTGTTCCTGTTCTTCACGCTCGCCGTGCTGCTCGTGGAGTACCTCCGGCGCCGGGACCGGGCCGCGGCGTGGCGGGCCACCGTGGCCGCCCTCCAGGCCACCGCGATCACCATCGGCATCCAGCTCGTGGGCGGGCTGCTGGCGACGGTGGCGTGGGTCGTCGGGCTCGTGCTGACCTGA	MSVLGEVLVGLAIAVGLVGIVVQVLPGNALVASALLVWAWATGGPTAWTCFAVAALLIVAAETGNWLVAGRHMRRADVPWSTLAVGGVAGIVGFFVVPVVGLFLFFTLAVLLVEYLRRRDRAAAWRATVAALQATAITIGIQLVGGLLATVAWVVGLVLT				NA	NA	NA	NA	NA
AK001_02717	462			hypothetical protein	GTGGAGATCCTCACCCGTCACCTCGACGACCTCGAGCCGCGCACCGTCTTCGAGCTGTGCCGGCTGCGCCTGGACGTGTTCGTCGTCGAGCAGGACTGCGCGTACCCGGACCTCGACGAGCGCGACCTCGAACCAGCCACCCGGCACGTGGTGCTGCTCGACGCGGGGCGTGTGGTGGGCACGGCGCGCGTGCTCGACGACACCACCGAGCAGCGCGTCGGGCGGGTCGTGTGCCACCCGGACGTGCGGGGGACCGGGGCGTCCGGCGTCCTCATGCGCGCGGCGGTGGAGGCGGCCACGCAGGCCGCGCCCGGCCAGGACGTGGTGCTGGGGGCCCAGTCGCCGCTGGTCGGCTGGTACGCGACCTTCGGGTTCGCGCCGGACGGGCCGGAGTACCTCGAGGACGGCATCCCGCACACCCCGATGCGCCGTCCGGGCGTGCTCAGCCCGGCAGCTCCATGA	MEILTRHLDDLEPRTVFELCRLRLDVFVVEQDCAYPDLDERDLEPATRHVVLLDAGRVVGTARVLDDTTEQRVGRVVCHPDVRGTGASGVLMRAAVEAATQAAPGQDVVLGAQSPLVGWYATFGFAPDGPEYLEDGIPHTPMRRPGVLSPAAP				NA	NA	NA	NA	NA
AK001_02718	336			hypothetical protein	GTGGCCGATCACGACCGGGCGCTGGACTTCTACGCCGGCACGCTCGACTGCGAGGTGCTCTTCGACGAGGAGCTCCGCCCGGGGACGCGCTGGACCGAGGTGGCCCCGCCGGGCGCGACGACCTCGATCGCGCTGGTCGGCCCGCAGGGCGGCCGGCGGCCCGAGACCGACACCGGCATCCGGCTCGTCAGCACGGACGCCGTCGCCGACCACGCGACGCTCACCGCGGCAGGTGCCGACGTCGGCGAGCTGCTGCGCTGGGACGGGGTGCCACCGATGTTCGTCCTGCGCGACGTCGACGGCAACACCCTCGACGTCATGGAGCTGCCGGGCTGA	MADHDRALDFYAGTLDCEVLFDEELRPGTRWTEVAPPGATTSIALVGPQGGRRPETDTGIRLVSTDAVADHATLTAAGADVGELLRWDGVPPMFVLRDVDGNTLDVMELPG	PGPT0013300_5049	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759	NA	NA
AK001_02719	1680			hypothetical protein	ATGGACAGTCCCGTGACCAGCGGCACCGACCACGCCGCGGCGCAGACGAGCCTGCAGGACCTGCTGGCCCACCCCCGTCGGCTGGTGAACCCCTCCACCGTGGGCGGGGCGGTGGCCCTCGCCGTCGGCCTCGTCCTCGTGCTGGTCCCGGCCCTGTCCCACGGCCTGACCGAGACCGTCGTCGGGATCGGGCTGCTGACCTCCGGTCTCAACGACCTGTGGACCACGATCCGGCGCGGCCACGTCAGCGCCGCCGGACGGGTGACCGCGGCCGTGCGGGGCCTCGCCTCGCTCCTGCTCGCGCTGGTGTTCCTGTTCTCGGCGACGGCCGCCCTGGCCTTCACGATCCTGCTCGGCGCGCTGTACCTGCTCTTCCGCAGCCTGCTCAACCTGCTCCTCGCGGCGTTCAGCCGGTCGAAGCAGAAGCGCGCACCGCGGCTCGCCAGCGGCGGTGTCGGCCTCGCCTTCTCGGTCCTGATCCTGGCCGTCCCCGGTGCCTACATCGACTGGATCGCCGCGGCCGTCGGTCTCGTCGCGGTCTTCGGCGGCACGATCACGCTCGCCTACGGCTACCGCGTCGCCGCCGGCCGCCTCCCCGCGCCCGAGGGGCTCTACCCCTCCTTCACCGAGATCCTCTGGACGTGGGTCGAGCACGTGGACGTGGGTGCCGCGGGGCGGACGAAGCTCGCCGACCAGCTCTACCTCGAGCGCCCCGAGATGACCGCCAAGCAGATCGCCTGGTGGACGATGCTCGTCCTCAGCGTCTGCATCGCCACGCTGGCGGTGCTGCAGGACTCCACCGCCGTCGTCATCGGCGCCATGCTCGTGGCCCCGCTGATGACCCCGATCCTCGGGCTCGCGGCGGCACTGGTCAGCGGCTGGGCCTTCCGCGCCGTGCGTTCCTTCGCACTGATCCTGGCCGGGACCGCGGTCGCGATCCTCATCGCGTTCGTCATCGCGTCCTGGGTGCCGATCGTCGTGCCCTTCGACAGCAACAGCCAGATCACCTCGCGCGTGGACCCGACGCTGCTGGACATGCTGGTCGCGCTCGCGGCCGGTGCCGCCGGGGCGTTCGCCACCGTGGACCGCCGGGTCGCGGCGTCCCTGGGAGGCGTGGCGATCGCGGTCGCGCTGGTCCCGCCGCTGTCGGTGGTCGGCGTGGCGCTGTCCGACGGGCGCCTGCGCGACGCGCTGGGCGCCCTGCTGCTGTTCTCGACGAACTTCGTCTCCATCGTCCTCGCGGCCGCCGTCGTCTTCGTGCTCACCGGGGTCGCCGACCCGCGCCGGCTACGCCGCGGCGGCCGCAAGATCCTGCTGACCATGGCGCCGTTCGTCACCGCGGCGCTGGTGATCCTGCTGCCGCTGCTGCTGACCACCGACGGCCTGCTCAGCACGTCGGCCGACCAGCGCGCCGCCCAGTCCGCGGTCGACGAGTGGCTGCCCGACGACTCCCGGCTCACGCTGACGTCGGTCGCGATCACCGACGGCACCGCGACGGTGCAGCTGTCGGGCTCGCCGGACGACCTGCCGGACCTCACCGACCTGCAGACGTCCCTCGACGACGCGCTCGACGGCAGCTACGCCGTCGAGGTGGCCGTGACGCCGGTCGACGTCCAGCGGGTCCCCGCGGTCTCGCCGGACCCGTCACCGTCGGGGCGGCTCGACCTCGACCTGCCCTGA	MDSPVTSGTDHAAAQTSLQDLLAHPRRLVNPSTVGGAVALAVGLVLVLVPALSHGLTETVVGIGLLTSGLNDLWTTIRRGHVSAAGRVTAAVRGLASLLLALVFLFSATAALAFTILLGALYLLFRSLLNLLLAAFSRSKQKRAPRLASGGVGLAFSVLILAVPGAYIDWIAAAVGLVAVFGGTITLAYGYRVAAGRLPAPEGLYPSFTEILWTWVEHVDVGAAGRTKLADQLYLERPEMTAKQIAWWTMLVLSVCIATLAVLQDSTAVVIGAMLVAPLMTPILGLAAALVSGWAFRAVRSFALILAGTAVAILIAFVIASWVPIVVPFDSNSQITSRVDPTLLDMLVALAAGAAGAFATVDRRVAASLGGVAIAVALVPPLSVVGVALSDGRLRDALGALLLFSTNFVSIVLAAAVVFVLTGVADPRRLRRGGRKILLTMAPFVTAALVILLPLLLTTDGLLSTSADQRAAQSAVDEWLPDDSRLTLTSVAITDGTATVQLSGSPDDLPDLTDLQTSLDDALDGSYAVEVAVTPVDVQRVPAVSPDPSPSGRLDLDLP				NA	NA	NA	NA	NA
AK001_02720	2685	uvrD1	COG0210	ATP-dependent DNA helicase UvrD1	ATGACTTCGCTCTTCGACAGCCTCTCGCTCCCCGGACTGGATCCGGCACCCGCCGGCGACACCGCGCGCCTGCCCACGACCGCCCCGCGCTGGGACGACGACGGGGCGCCGGACCGGGTCACCGCGCCGACGACGGAGCCCCACGCGCCCGAGGGGGCCGGCGGCGAGGCGGGCGAGGAGCTGCTGCAGGGCCTCAACGAGCCGCAGCGGGACGCCGTCGTGCACGCGGGGTCGCCCCTGCTCATCGTGGCCGGTGCCGGGTCGGGCAAGACGCGGGTGCTGACCCATCGCATCGCCCACCTGCTGGCGACCCGGCGGGCCTGGCCGGGGCAGATCCTGGCGATCACCTTCACCAACAAGGCAGCCGCCGAGATGCGCGAACGCGTCGAGCAGCTCGTCGGTCCGGCGGCCCGGCGGATGTGGGTGTCCACCTTCCACTCGGCCTGCGTGCGCATCCTGCGCCGCGAGGCCGCGACGCTCGGCCTGCGCTCGAGCTTCTCGATCTACGACGCGGCCGACTCCCAGCGGCTCATCACCCTGGTGTGCCGCGAGCTCGACCTGGACGTCAAGAAGTACCCGCCGCGCTCCCTGGCCCGCAAGATCAGCGACCTGAAGAACGAGCTCATCGACCCGGACGCCTACGCCCAGCAGGCCGGTGCCGACGCGACGGAGGAGGGATGGCGCGAGCGGGCGCTGGCCGGCGGCGGCATCGCCGACTCCTCGGTCCCGGCGTTCGACACCGTGCTCGCCGACGTCTACCGCCGCTACCAGGCGCGCCTGGCCCAGGCCAACGCCCTGGACTTCGACGACATCATCATGACGACCGTCAACCTGCTGCAGGCGTTCCCGAACGTGGCCGAGCACTACCGACGCCGCTTCCGGCACGTCCTGGTCGACGAGTACCAGGACACCAACCACGCGCAGTACGTCCTGGTCCGCGAGCTCGTCGGCGTCCCGGCGAGGAGTGAGCTTGCGAGCCCCGCAGGCGGGGCGCCCGAAGGATCCGGCGGTCCGGACGGGGCGGAGCAGGGCCTGGACCCGGCCGAGCTGACCGTCGTGGGCGACGCCGACCAGTCGATCTACGCCTTCCGGGGCGCCACGATCCGCAACATCGTCGAGTTCGAGCAGGACTACCCGGACGCGACCACGATCCTGCTGGAGCAGAACTACCGCTCGACCCAGAGCATCCTGTCGGCCGCGAACGCGGTCATCGCCCGCAACACCGGCCGGCGCCCGAAGCGCCTGTGGACCGACGCCGGCGACGGGGCGAAGATCGTCGGCTACGTCGGCGACGACGAGCACCACGAGGCGCGGTTCGTCGCCGAGGAGATCGACCGGCTCGGGGACAGCACCGGGGTGCGTCCGGGGGACGTGGCGATCTTCTACCGCACCAACGCCCAGTCGCGGGCGCTGGAGGAGGTCCTGATCCGCGTCGGCCTGCCGTACAAGGTGGTCGGCGGGACGCGGTTCTACGAGCGCCGCGAGGTCAAGGACGCCGTCGCCTACCTGCGGTCGCTGGCCAACCCGGACGACGACGTCTCGCTGCGCCGGGTCCTCAACGTGCCCAAGCGCGGTCTCGGCGACAAGGCCGAGTCCCTGGTGGCCGGCTTCGCCGCCGCCGAGCGGATCTCGTTCGGCGCCGCCCTGCAGCGCGTCGACGAGATCCCCGCGATGACCACGCGCACGCTCAAGCCGTTGCGGACCTTCGCGGCGATGATGGCCGAGCTGCAGGCGATGGTCGACGACGGCTCGACCCCGGCGGAGATCCTGGGCGCGGTCCTCGACCGCACCGGGTACCTCGCCGAGCTGCGCGCCAGCGACGACCCGCAGGACGCCACGCGGGTGGAGAACCTCGCCGAGCTGCACGCCGTGGCCGCCGAGTTCACGGAGATGGACCCCGAGGGCGACCTGGCGGACTTCCTGGAGCGGGTGTCGCTGGTGGCCGACGCCGACCAGATCCCGGACGAGGACGTCGCCGACGGCGGGGCGGAGCACACCCACGACGACGAGCCCGCCGAGGACCCGGGCGTCGTGACGCTGATGACGCTGCACACCGCCAAGGGCCTGGAGTTCCCGGTGGTGTTCCTCACCGGCATGGAGGACGGCACCTTCCCGCACATGCGGTCGCTGCACGACGACGCCGAGCTCGCCGAGGAGCGCCGCCTGGCCTACGTGGGCATCACCCGGGCCCGGGAGCGGCTCTACCTGTCGCGGGCCGGGACCCGGTCGGCGTTCGGCATGGCCAACGAGTTCCCCCCGAGCCGCTTCCTCGACGAGATCCCGACCGAGCTGGTCGACTGGCGCCGCGCGGAGTCCGCGACCCAGACGCTGCGGCGCGGTGGGTCGAGCTGGGGCGGCGGTGCCTACGGTGCCGGCCGCGCGGCCCGCGCCGGGTCCGGCGTCGGACGTCGGGAGGGCGCGTCGCGTCCGACCACCGGCGGCGCCTCTGGGCCGATCGGCCGGACGGGCACGGGATCCGGTCCCCGGTTCGGGTCGGCGACGCCCCGCCAGGACGCCGACATCCCGTCGCTGTCGGTGGGCGACAAGGTCTCCCACGACGCCTACGGGGTCGGCACCGTCGTGGGTCTGGAGGGTGCGGGCCAGAACGCGGTGGCGAAGATCGACTTCGGCGCGGACGGCACGAAGCGGCTGCTGCTGCGGTTCAGCCCGGTCACCAAGCTCTGA	MTSLFDSLSLPGLDPAPAGDTARLPTTAPRWDDDGAPDRVTAPTTEPHAPEGAGGEAGEELLQGLNEPQRDAVVHAGSPLLIVAGAGSGKTRVLTHRIAHLLATRRAWPGQILAITFTNKAAAEMRERVEQLVGPAARRMWVSTFHSACVRILRREAATLGLRSSFSIYDAADSQRLITLVCRELDLDVKKYPPRSLARKISDLKNELIDPDAYAQQAGADATEEGWRERALAGGGIADSSVPAFDTVLADVYRRYQARLAQANALDFDDIIMTTVNLLQAFPNVAEHYRRRFRHVLVDEYQDTNHAQYVLVRELVGVPARSELASPAGGAPEGSGGPDGAEQGLDPAELTVVGDADQSIYAFRGATIRNIVEFEQDYPDATTILLEQNYRSTQSILSAANAVIARNTGRRPKRLWTDAGDGAKIVGYVGDDEHHEARFVAEEIDRLGDSTGVRPGDVAIFYRTNAQSRALEEVLIRVGLPYKVVGGTRFYERREVKDAVAYLRSLANPDDDVSLRRVLNVPKRGLGDKAESLVAGFAAAERISFGAALQRVDEIPAMTTRTLKPLRTFAAMMAELQAMVDDGSTPAEILGAVLDRTGYLAELRASDDPQDATRVENLAELHAVAAEFTEMDPEGDLADFLERVSLVADADQIPDEDVADGGAEHTHDDEPAEDPGVVTLMTLHTAKGLEFPVVFLTGMEDGTFPHMRSLHDDAELAEERRLAYVGITRARERLYLSRAGTRSAFGMANEFPPSRFLDEIPTELVDWRRAESATQTLRRGGSSWGGGAYGAGRAARAGSGVGRREGASRPTTGGASGPIGRTGTGSGPRFGSATPRQDADIPSLSVGDKVSHDAYGVGTVVGLEGAGQNAVAKIDFGADGTKRLLLRFSPVTKL				NA	NA	NA	NA	NA
AK001_02721	1185	sucC	COG0045	Succinate--CoA ligase [ADP-forming] subunit beta	GTGGACCTGTTCGAATACCAGGCTCGCGACATCTTCGAGAAGCACGGCGTGCCCGTGCTCGGGGGCGTCGTCGCGACGACGCCCGAGGAGGCTCGCGCAGGCGCTGAGGAACTCATGGGCGGCACCGGCAGCTCTGTCGTAGTGGTGAAGGCCCAGGTCAAGATCGGCGGCCGCGGCAAGGCCGGCGGCGTGAAGCTGGCGCGCTCCCCCGAGGAGGCCGCGCAGAAGGCCGAGGAGATCCTCGGCATGGACATCAAGGGCCACACGGTCCACCGCGTCATGATCGCCGCCGGTGCGCAGATCGCCGAGGAGTACTACTTCTCGGTGCTCCTGGACCGCGCCAACCGCAACTACCTCGCCATGTGCTCCGTCGAGGGCGGCGTGGAGATCGAGGAGCTCGCCGTCGAGCGGCCCGAGGCGCTGGCCCGCGTCGCCGTCGACCCGGCCGTGGGCATCGACGCCGCCAAGGCCGCCGAGATCGTCGAGGCCGCCGGCTTCGCCGCCGACGTCAAGGACAAGGTCGCCGCGGCGATCCAGCAGCTGTGGACCGTGTTCTCCGAGGAGGACGCGACCCTCGTCGAGGTCAACCCGCTGGTCAAGACGGAGCAGGGCGACATCATCGCCCTGGACGGCAAGGTCACCCTCGACGCCAACGCCGACTTCCGGCACCCGGACCACGCCGAGCTCGAGGACTCCGCCACGACGGACCCGCTGGAGGCGAAGGCCAAGGAGCACGACCTCAACTACGTCAAGCTCGACGGCGAGGTCGGCATCATCGGCAACGGCGCGGGTCTGGTCATGTCGACCCTCGACGTCGTCGCCTACGCCGGCGAGGCGCACGGCGGCGTCAAGCCCGCGAACTTCCTCGACATCGGCGGCGGCGCCAACGCGCAGGTCATGGCGGCCGGCCTCGACGTCATCCTGCACGACGACCAGGTCAAGTCGGTCTTCGTCAACGTCTTCGGCGGCATCACCGCCTGCGACGAGGTCGCCAAGGGCATCGTCGGCGCGCTCGAGATCCTCGGCGACGAGGCGTCCAAGCCGCTCGTCGTCCGTCTCGACGGCAACAACGTCGAGAAGGGGCGCGCGATCCTCACCGAGGCGAACCACCCCCTCGTGACCCTTGCCGAGACCATGGACGGCGGCGCTGAGACGGCAGCAGCCAAGGCCGCCGCGACCGCCTGA	MDLFEYQARDIFEKHGVPVLGGVVATTPEEARAGAEELMGGTGSSVVVVKAQVKIGGRGKAGGVKLARSPEEAAQKAEEILGMDIKGHTVHRVMIAAGAQIAEEYYFSVLLDRANRNYLAMCSVEGGVEIEELAVERPEALARVAVDPAVGIDAAKAAEIVEAAGFAADVKDKVAAAIQQLWTVFSEEDATLVEVNPLVKTEQGDIIALDGKVTLDANADFRHPDHAELEDSATTDPLEAKAKEHDLNYVKLDGEVGIIGNGAGLVMSTLDVVAYAGEAHGGVKPANFLDIGGGANAQVMAAGLDVILHDDQVKSVFVNVFGGITACDEVAKGIVGALEILGDEASKPLVVRLDGNNVEKGRAILTEANHPLVTLAETMDGGAETAAAKAAATA	PGPT0019515_2309	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019515-sucC-K01903	NA	NA
AK001_02722	894	sucD	COG0074	Succinate--CoA ligase [ADP-forming] subunit alpha	ATGTCGATCTACCTGAACTCCGACTCCAAGATCATCGTCCAGGGCATCACCGGCGGCATGGGTGCCAAGCACACCGCCCTGATGCTCTCCTCCGGCGCGAACATCGTCGGCGGCGTCAACGCCCGCAAGGCCGGCCAGACCGTCGAGCACGCCGACGCCAACGGCAACCCCGTCACCCTGCCGGTCTTCGGCTCGGTGAAGGAGGCCATGGCCGAGACCGGCGCGAACGTCTCCGTCGTGTTCGTCCCGCCGGCGTTCACCAAGGACGCGTCCATCGAGGCCATCGACGCCGGCATCGGTCTGCTCGTGGTCATCACCGAGGGCGTGCCCGTCCAGGACACCGCCGAGGTGTTCGCCTACCTGGAGGGCAAGGAGACCCGGATGATCGGGCCGAACTGCCCCGGCATCATCACCCCGGGCGAGTCGCTGGCCGGCATCACCCCGCACACCATCACCGGCTCCGGCCCGATCGGCCTGGTCTCGAAGTCCGGCACGCTGACGTACCAGATGATGTACGAGCTGCGGGACCTGGGCTTCTCCACCGCCATCGGCATCGGCGGCGACCCGGTCATCGGCACCACGCACATCGACGCCCTCGAGGCGTTCGAGAACGACCCCGCTACCGAGGCGATCGTCATGATCGGCGAGATCGGCGGCGACGCCGAGGAGCGGGCCGCGGCCTACATCGCCGAGCACGTGACGAAGCCGGTCGTCGGCTACGTCGCGGGCTTCACCGCCCCGGAGGGCAAGACGATGGGCCACGCCGGCGCCATCGTCTCCGGCTCCTCCGGCACCGCGCAGGCCAAGAAGGAGGCCCTCGAGGCCGTCGGCGTCAAGGTCGGCAAGACGCCGTCCGAGACCGCCCGCCTCATGCGCGAGGTCCTGCAGGGCTGA	MSIYLNSDSKIIVQGITGGMGAKHTALMLSSGANIVGGVNARKAGQTVEHADANGNPVTLPVFGSVKEAMAETGANVSVVFVPPAFTKDASIEAIDAGIGLLVVITEGVPVQDTAEVFAYLEGKETRMIGPNCPGIITPGESLAGITPHTITGSGPIGLVSKSGTLTYQMMYELRDLGFSTAIGIGGDPVIGTTHIDALEAFENDPATEAIVMIGEIGGDAEERAAAYIAEHVTKPVVGYVAGFTAPEGKTMGHAGAIVSGSSGTAQAKKEALEAVGVKVGKTPSETARLMREVLQG	PGPT0001540_1108	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001540-sucD-K01902	NA	NA
AK001_02723	1287			hypothetical protein	GTGAGCACCACCGCCAGCAGCCGCCCCGCCGCCGTCGTCGAGCCCGACCGGCCCCGCTCCGTCCGGGCCCGCTTCGCGCTGGCCTCGTCCGGCGTGTGGGCCGCGCTGCAGGCCGTCGGGCTGTCCTACGCCGTCGTCGCGCTGCTCGCGGTCGCGGCCGTCCTGGACGCCCCGAGCGCCTCCGGGTCCGACGGCGGGCTCGGCGCCGGTGTCGCCGCGGCCACCGGGCTGTGGCTGCTCGGGCACGGCGTGCCGCTCGCGGTGGCCGGCGCGACGGTGACCGTCGTCCCCCTCGGGCTCACGGCCCTGGCGGTGTTCACGGCGCACGTCACCGCGAAGCGATCCGCGGTGCCGACCCTGACCGCCTGGATCGGCGGCACCGTCACCTACGCCGCGACCCTGGTGGTCGCCACGGTGCTGCTCGCTCTCGGCACGCCCGGGTCCCTGTCCGTCACCGACCTCGCGCTCCAGGTGCTCGCCGCCGCGCTCGGGGGCCTCGTGGTCGGCGGCGGGGGATCCGCCCTCGGCATGTTCTCCGCCCCGGACGGGCCGTTGCTGGCCGGGCTCACCCCCCGGCTGGACCCCTACCTGCCGGACACCGCCCGCCTCGGGCTGCGGGCCGGGCTCGTCGGGGCGGCGCTGCTGACCGCGCTCGGCGGCCTGCTGACGACGGTCTGGGTCGTGCTCGGGCGCGGGACCGCCGCGGACGTCGCCGCCGGACTCGGCGGGAGCTGGTTCGCGGTGCTGGTGCTCCTGCTCACCCAGGCCGCGCTGGTCCCCAACCTGGTCGTCTGGTCGACGGCGTGGCTCGCCGGCCCGGGGTTCGCCGTCGGGACGGACAGCACCTTCTCGGCGGCCGCGACGGCCGCGGGCCCGCTGCCGGGGCTGCCGCTGCTGGGCGTGCTGCCCGGGCCGGTCTGGTCGTCGCCGGTCGCGCAGTGGTCACCCGTGCTCGTCGTGGCCTGCGGTGCGGCCGCCGGGTGGTTCGCCTGGCGCCGGCTGGAGCCGAGCCTGGTGCGGGTCCGCGACGTGGCCTGGATCCTGGTCGGCACGGGCGTCGCCGCCGGTGCGGTGACCGTCGCGCTGCAGGCGGTCGCCGGGGGTGCCGCGGGTGCGGACCGGCTCGCCGCGGTCGGCGCCGACGCCTGGGTGACGGGCGGTCTGGTCGCGGCCGAGATCGGCGGCGGGGCGGTCCTGGTGCTGCTCGGCGCCGCCGGTCGCGCGTGGCTGTCCGAGCGCGCGGCGTCCGCCGTCTCGGATGACGGGACCGCGTCGTCCGGCACGTAG	MSTTASSRPAAVVEPDRPRSVRARFALASSGVWAALQAVGLSYAVVALLAVAAVLDAPSASGSDGGLGAGVAAATGLWLLGHGVPLAVAGATVTVVPLGLTALAVFTAHVTAKRSAVPTLTAWIGGTVTYAATLVVATVLLALGTPGSLSVTDLALQVLAAALGGLVVGGGGSALGMFSAPDGPLLAGLTPRLDPYLPDTARLGLRAGLVGAALLTALGGLLTTVWVVLGRGTAADVAAGLGGSWFAVLVLLLTQAALVPNLVVWSTAWLAGPGFAVGTDSTFSAAATAAGPLPGLPLLGVLPGPVWSSPVAQWSPVLVVACGAAAGWFAWRRLEPSLVRVRDVAWILVGTGVAAGAVTVALQAVAGGAAGADRLAAVGADAWVTGGLVAAEIGGGAVLVLLGAAGRAWLSERAASAVSDDGTASSGT				NA	NA	NA	NA	NA
AK001_02724	588	purN	COG0299	Phosphoribosylglycinamide formyltransferase	GTGCTCGCCTCGGGCGGCGGGTCGAACCTCGCCGCCCTGCTCGCGGCGCACGAGGACGAGGCCTACGGTGCCCGGGTCGTCGGTGTCGTCTCCGACAAGCCGGCCGCCGGGGCACTGGACCTCGCCCGCGACGGGGGAGTGGCCAGCGTGGCGGTGTCTCCCGCCGACTTCCCCGACCGGGCCGCCTGGAACGCCGGGATCGGGGAGGCCGTCGAGGTCTTCCGGCCCGACTGGGTGGTGCTGGCCGGCTTCATGCGCATCCTCGCGCCGGACTTCCTGGCGCGCTTCCCGGGCCGCGTCGTCAACACCCACCCCGCGCTGCTGCCCGCGTTCCCCGGCGCCCACGGCGTGCGTGACGCCCTCGACTACGGGGTGAAGATGACCGGCTGCACGGTGCACGTCGTGGACGACGGCGTGGACACCGGCCCGATCATCGCCCAGGCGGCCGTGCCGGTCCTGGACGACGACACCGAGTCGGCGCTGCACGAGCGCATCAAGGTGGCCGAGCGGTCGCTGCTCGTGGAGACCGTCGGGCGCGTCGCGCGCGAGGGGCTGCGCGTCGAGGGCCGACGCGTGCACATCGGCTGA	MLASGGGSNLAALLAAHEDEAYGARVVGVVSDKPAAGALDLARDGGVASVAVSPADFPDRAAWNAGIGEAVEVFRPDWVVLAGFMRILAPDFLARFPGRVVNTHPALLPAFPGAHGVRDALDYGVKMTGCTVHVVDDGVDTGPIIAQAAVPVLDDDTESALHERIKVAERSLLVETVGRVAREGLRVEGRRVHIG	PGPT0008095_1514	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175	NA	NA
AK001_02725	558			hypothetical protein	ATGGAGGACACGTTCCTGGTGCAGACCCCGGAGGCGCTCAAGGCGATCGCCCACCCCCTGCGCCAGCGGATCCTCCTGCAGCTCGTCGCGGCGGGCCACGGACGAGCGGCGGACCTGGCACGGTCCGTCGGCGAGCCCGCCAACTCCGTCAGCTTCCACCTGCGCACGCTGGCGAAGGCCGGGATGGTCGTCGAGGCGCCCGAGCTCGCGCGCGACAAGCGCGACCGCGTCTGGCGACCGGCCGCCGAGAGCTACCAGGTCGAACCGGGGACGCCCGGGACGGCGGCGGAGATCCTGCGGCCGACCCTCGACTGGGTCGAGCGGCTCTTCGCCGCGGCGAACGAGGCCGAGCCCGCCGACGACGAGTCGCGGCGACGCACCCTGGTCGTCAACAACGTCTTCCTGACCCCGGACGAGGCCCGGCAGATGAAGGACGAGCTCGTCGCCCTCCACGAGAAGTGGGCCCGCCGCACCGTCGGCGCCGCCCGTGACGAGCCCGGGAGCGCGCGGGACGCCTACCAGGTCCTCCTGGCGCTCGGACCCCGCGACGAGGCCTGA	MEDTFLVQTPEALKAIAHPLRQRILLQLVAAGHGRAADLARSVGEPANSVSFHLRTLAKAGMVVEAPELARDKRDRVWRPAAESYQVEPGTPGTAAEILRPTLDWVERLFAAANEAEPADDESRRRTLVVNNVFLTPDEARQMKDELVALHEKWARRTVGAARDEPGSARDAYQVLLALGPRDEA				NA	NA	NA	NA	NA
AK001_02726	1290			hypothetical protein	ATGACGGCCACCTCCACCTCCACCGCCCCGACCACTGACCCGGCAGCGGGGCAGCGGTCGCGCAGCCTGCTGCGCAACCGCTCCTACCTGCTGATGATGTCGGGACTCACCGCCCAGGCGTTCGGTGCCGGCGTCGCGGCGTTCGCGGTGCCGCTGCTCGCGTACGCGGTCACCGGCTCGGTCTGGCAGGCCGGGGTGGTGTCCGCCGTCGGGCACGTGGGCGCGTTGGTCGCCACGCTCCCGGCCGGCGTCGTGGCCGACCGGGTCGACCGGCGCCGGCTCGTCGTCGTGTCGGCGTCGCTGGCCGCGCTCGCCTGGTTCGGCGCCGCGCTCGCCGCGCTGGCCGGGGCCCTCGGCGCCGTGCACCTGGCGGGCGTCCTGCTCGTCTCGTCGGTGGCCGGGGCGTTCGTCGACCCGGCCGTGGCGGGCGCCTTCCGCTCCGTCGTCCCTGCGCAGCAGCTCTCGTCCGCCTACGCCGCGGTCCAGGGCAGGGACGCCGCAGCGTCCCTGGTCGCCGGCCCGCTCGGCGGCGTGCTCTACGGGATCGCGCACGCGGCGCCGCTGGTCGCCGGCGCCGTCGGGCACCTCGCCACCGCGGTGTGCACGTGGTTCGTGCGCGAGCCGCTCAACGCCGACACCGCCGAGGCGCGGCGGACCCGCCCGGCTGCCGCCCTGCGCGAGGGGCTGCGCTACGTGTGGTCGGTGCCCCTGTTCCGCATCTGCCTGGGGCTGTTCGCCGTGATCAACGTGGCGATCAACGCGCTCCTCCTGGCGATCACGCTCGACCTGACCGCGGATGGCACCCCCGCGGCGCAGATCGGCCTGCTGTCCGGGACGGCGGGGGCCTCGATGCTGGTGGGCGCGGTGATCGCCCCGGCGCTGGTCGCGCGGGTGCGCGTGGGCGTGGTGACGCCGGTCTCGCTCGCGATGGTGGCCGGGTCCGCCGTCGTCATGGCCACCACCCAGGAGTTCGTGGTCCTCGTCGCGGCCCTCGGCCTCGGCGTGCTCGGGGTGCCGGCGGCGAACGCCGGGCTGGCCGGGTACGCCGCCGCGATCACCCCGCCGCAGATGCAGGGCCGGTTCTCGTCGGTCATGGAGCTGTCCGGCGTGGTGGCGATGCCGCTGTCGCCCCTGGTGGGCGGGGGCCTGCTGGCCGCGGCCGGGCTGCCGACCACGCTCGTCGTCCTCGCCGCGGTGCTCGGCGCCGCGGTGGTCGCCGTGTGGTGCGCCCGGCCCGTGCGCCGGATCGGGCTGCCCGCGACCTGGGCGGACGACGCGATCGAGGCCTGA	MTATSTSTAPTTDPAAGQRSRSLLRNRSYLLMMSGLTAQAFGAGVAAFAVPLLAYAVTGSVWQAGVVSAVGHVGALVATLPAGVVADRVDRRRLVVVSASLAALAWFGAALAALAGALGAVHLAGVLLVSSVAGAFVDPAVAGAFRSVVPAQQLSSAYAAVQGRDAAASLVAGPLGGVLYGIAHAAPLVAGAVGHLATAVCTWFVREPLNADTAEARRTRPAAALREGLRYVWSVPLFRICLGLFAVINVAINALLLAITLDLTADGTPAAQIGLLSGTAGASMLVGAVIAPALVARVRVGVVTPVSLAMVAGSAVVMATTQEFVVLVAALGLGVLGVPAANAGLAGYAAAITPPQMQGRFSSVMELSGVVAMPLSPLVGGGLLAAAGLPTTLVVLAAVLGAAVVAVWCARPVRRIGLPATWADDAIEA				NA	NA	NA	NA	NA
AK001_02727	1083	hcaB_2		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGGCCGACCTCACGCTCCAGCACACCGTGCGCGAGTGGCTCGCCGACCCGGAGGGCAACGCGGCGCTCACCGAGATGCTCGCCGCCCAGGGGCAGTCCACCAAGGCGCTGGCACCCGTCAAGCGCATGAGCTTCGAGAAGCTCATCAAGGTCTCCCGGGGCAAGTTCTCCCGCGAGGTCGCCGAGCAGCTCGTCGAGCAGGTCCGGGCGGCCAAGGCGGCGGGCGGGGCGCCCGTCGCGACGGACACCGCTGCCGCGACCGAGGACGCGAGCGAGAGCGCCGGCACCGCGGCCCCGGAGCCCGCCGAGTTCGTCGAGGAGATCACGCCCGGCCGCTTCTCCGGGCAGACCGTCGTCGTGACCGGCGCGGCCTCCGGCATCGGCCGGGCGACCGCCTCCCGCGTCGCGCGCGAGGGCGGCCGGGTGATCGCCGTCGACATGACGCAGGCCGGCCTGGACGAGCTGGCGGCCGAGCTCGCCGACTCCCTGCCCGCCGGCGCCGAGGTCGTGCCGGTCACCGCCGACATCACCGACGACGCCGCGATCGCCGGGGTCGTCGCGGCGGCCGGGGACCGCATCCACGCCCTGGCGAACGTCGCGGGGATCATGGACCGCTTCGCGGCGGTGCACACCGTGGACGACGCCACGTGGGAGAAGGTCTTCGCCGTCAACGTCACCGGCACGATGAAGCTGATGCGCGCCGTCGTGCCGGGGATGCTGGCCGCGGCCGAAGGCCGCGTCGTCAACGTCGCCTCCGAGGCCGGCCTGCGCGGCTCGGCCTCCGGCGCCGCCTACACCGCCTCCAAGCACGCGGTGGTCGGCCTGACGAAGAACGCGGCATTCATGTACACCGGCACCGGCGTCCGGGTGAACGCGGTCGCCCCGGGCGGCGTGGCGACCGGGATGAGCCCCCAGGACGTCGACGAGTTCGGCATGGGACGCGTCCAGTCGGCGATGGGCATCATGGCCGACATCGCGATGCCGGAGCAGCTCGCGGCGTCGATCACGTTCCTGCTGTCCGCGGACTCGACGAACCTCAACGGCCAGATCCTGGCCTCCGACGGGGGCTGGTCCGCCGCCTGA	MADLTLQHTVREWLADPEGNAALTEMLAAQGQSTKALAPVKRMSFEKLIKVSRGKFSREVAEQLVEQVRAAKAAGGAPVATDTAAATEDASESAGTAAPEPAEFVEEITPGRFSGQTVVVTGAASGIGRATASRVAREGGRVIAVDMTQAGLDELAAELADSLPAGAEVVPVTADITDDAAIAGVVAAAGDRIHALANVAGIMDRFAAVHTVDDATWEKVFAVNVTGTMKLMRAVVPGMLAAAEGRVVNVASEAGLRGSASGAAYTASKHAVVGLTKNAAFMYTGTGVRVNAVAPGGVATGMSPQDVDEFGMGRVQSAMGIMADIAMPEQLAASITFLLSADSTNLNGQILASDGGWSAA				NA	NA	NA	NA	NA
AK001_02728	612			hypothetical protein	ATGTCTCCGTCTAAAGTAGCACCCGTGAGTACCTCGGTGGGTGAGAACGGGCGGCGGTCCAACCCTGGGCCGCGGGCCGCCGCTCGCAACCGGGCGGCTCTGCTCGCCGCGGCCCGCGAGATCTTCGCCGAGCACGGTGCTCACGCTCCGCTCAACGCCGTCGCGCGCCGCGCCGGGGTGGGGCAGGGGAGCCTCTACCGGCACTTCCCCGACCGGCTCACCCTCGTGCTCGCGCTGTTCGAGGAGCAGGTGAGCACGGTCGAGGAGCTGGCCGAGGACCCCGACGCCTCGCTGCTGGACCTGCTCGGGCTGGTGACCCGGCACGCCATCGACTCGGTGGTGAGCATCGACCTCGCGGCCAGCTCCCCCGAGGTCCGGCCCGACCCCCGGCTGCTGGACCTGACCGAACGGCTCGCCGACCTCGTGCGCTCCCGTCTGGACGAGGCCCTCGCCCGCGGGCAGGTGCGGCCCGGCACCGACGTCGAGGACGTGCTGCTCGGCATCGAGATGGTCGCCTCCGCGCTCACGCGTCGACCCGCCCGGGAGCGCGAGGAGTACGCCGTCCGGGCGTGGCGCCTGCTCGGGTTCGACGTCGTCGCCGCGCCGCGCTGA	MSPSKVAPVSTSVGENGRRSNPGPRAAARNRAALLAAAREIFAEHGAHAPLNAVARRAGVGQGSLYRHFPDRLTLVLALFEEQVSTVEELAEDPDASLLDLLGLVTRHAIDSVVSIDLAASSPEVRPDPRLLDLTERLADLVRSRLDEALARGQVRPGTDVEDVLLGIEMVASALTRRPAREREEYAVRAWRLLGFDVVAAPR				NA	NA	NA	NA	NA
AK001_02729	1635	purH	COG0138	Bifunctional purine biosynthesis protein PurH	ATGTCCGGCATCCCCACGAACCCCGACCTCCGGCTCGCCGACGACGCGCGCCACCCGATCCGCCGCGCCCTGCTGAGCGTCTACGACAAGTCCGGCCTGGTCGAGCTCGCCACCGCGCTGCACGGCGCCGGCGTCGAGCTCGTCTCCACCGGCTCGACGGCGGCGCGGATCGCCGACGCCGGCGTCCCCGTCACGCGCGTCGAGGAGCTGACCGGCTTCCCCGAGTGCCTCGAGGGCCGGGTCAAGACCCTGCACCCGCGCGTGCACGCCGGCATCCTCGCCGACACCCGCAAGGCCGACCACCTCGACCAGCTCCGCGAGCTCGAGATCGACACGTTCGACCTCGTCGTGGTGAACCTGTACCCGTTCGCCGAGACCGTCGCCTCCGGCGCCGCGCCGGACGCCGTCGTCGAGCAGATCGACATCGGCGGGCCCTCCATGGTGCGTGCCGCCGCGAAGAACCACCCGAGCGTCGCCGTCGTCGTCGACCCCGCCCGGTACGACGACGTCACCGCCGCCGCGCAGGCGGGCGGCTTCACGTTCGCCGAGCGCAAGCGCCTCGCCGCCGCCGCGTTCGCGCACACCGCCACCTACGACGTCGCCGTGTCGGCCTGGTTCGCGAGCGCGTACGCCCCGGACGAGGCGGCCGCGACCTCGGGCATGCCCGACGTGGTCGGTGCGACCTACGAGCGCTCCGACGTGCTGCGCTACGGCGAGAACCCGCACCAGGGCGCCGCGCTCTACACGCGCACGGACGGCGCGACCGGGCTGGCGCAGGCCACCCAGCTGCACGGCAAGGCGATGAGCTACAACAACTACGTCGACGCCGACGCCGCGTGGCGGGCCGCGCACGACCACACCGACCCGGCCGTGGCGATCATCAAGCACGCCAACCCGTGCGGCATCGCCGTCGGGGCCGACGTCGCCCAGGCCCACGCCCGTGCGCACGCCACCGACCCGGTCTCCGCGTTCGGCGGGGTCATCGCCGCCAACCGCACGATCACGAAGGCGGCGGCCGAGCAGATCGCACCGGTGTTCACCGAGGTCGTCGTGGCCCCGGGCTTCGAGCCGGAGGCGCTCGAGGTGCTGCAGGCGAAGAAGAACATCCGCCTGCTCGTCGTCGACGGCGCCCCGGACGCGCCGGTCGAGACCCGGCCGGTCTCCGGCGGTCTGCTCGTCCAGGCGGTCGACCGGTTCCAGGCCGACGGCGACGACCCGGCGTCCTGGACGCTGGCCGCCGGCGAGCCGGCCGACGAGGCCACGCTCGCCGACCTCGCCTTCGCCTGGCGCGCCGTGCGGGCCGCGAAGTCGAACGCGATCCTGCTCGCCGCCGACGGCGCCGCCGTGGGCATCGGCATGGGCCAGGTCAACCGCGTGGACTCCTGCCGGCTGTCGGTGGAGCGGGCCAACACCCTCGCCGACGCCGGGTCGGGTCCGGCCGAGCGCGCCCGCGGCGCCGTCGCGGCCTCGGACGCCTTCTTCCCGTTCGCCGACGGCCTGCAGGTGCTGCTCGACGCCGGCGTGCGCGCCGTCGTCCAGCCCGGCGGGTCGATCCGGGACACCGAGGTCGTCGAGGCGGCGCAGGCCGCCGGGATCACGATGTACCTGACCGGGACGCGCCACTTCGCGCACTGA	MSGIPTNPDLRLADDARHPIRRALLSVYDKSGLVELATALHGAGVELVSTGSTAARIADAGVPVTRVEELTGFPECLEGRVKTLHPRVHAGILADTRKADHLDQLRELEIDTFDLVVVNLYPFAETVASGAAPDAVVEQIDIGGPSMVRAAAKNHPSVAVVVDPARYDDVTAAAQAGGFTFAERKRLAAAAFAHTATYDVAVSAWFASAYAPDEAAATSGMPDVVGATYERSDVLRYGENPHQGAALYTRTDGATGLAQATQLHGKAMSYNNYVDADAAWRAAHDHTDPAVAIIKHANPCGIAVGADVAQAHARAHATDPVSAFGGVIAANRTITKAAAEQIAPVFTEVVVAPGFEPEALEVLQAKKNIRLLVVDGAPDAPVETRPVSGGLLVQAVDRFQADGDDPASWTLAAGEPADEATLADLAFAWRAVRAAKSNAILLAADGAAVGIGMGQVNRVDSCRLSVERANTLADAGSGPAERARGAVAASDAFFPFADGLQVLLDAGVRAVVQPGGSIRDTEVVEAAQAAGITMYLTGTRHFAH	PGPT0008110_691	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602	NA	NA
AK001_02730	1317	hcaD		3-phenylpropionate/cinnamic acid dioxygenase ferredoxin--NAD(+) reductase component	GTGCCCGCGACGAACGACCTCCCCGCCCCTGCCCCCCTCCGGGACGACCCGCACCCGCGACCGCCGCGCTCCGTCGTCGTCGTGGGCGCGGGGCTGGCCGGCGCGCAGACGGCCGCGGCGCTGCGTGCCCACGGCTTCGACGGGCACCTGACCGTCCTCGGCGAGGAGGGGCTGCCGCCCTACGACCGGCCGCCGCTGTCGAAGGAGCTCGTGTCGCGCACCGAGCCGCTGTGGCTGCGCGACGACCTCGGCGTCGACCTGGACGCTCTCGCCGACGAGGTGCGCCTCGCCGACCCGGTCGTCGCCGTCGAGCCGGGCCCGACGCTCACGACGCGGTCCGGCGACCGCCTCGCCCCCGACGCCGTCGTGCTGGCCTGCGGGTCCCGACCGGTGCTGCCGCCCGGCTGGGACGCCGACGTGCTGCACACCGCCGCCGACGCCGACCGGCTGCGCGCCGACCTGCGGCCCGGCACGCGGCTCGTGATCGTCGGGGCGGGCTGGATCGGCGCGGAGGTCGCCCGGGTGGCGGCCGGGGCCGGCGCCGAGGTCACCGTGCTCGAGGCCGGCCCCGCGCCGCTGGCGCGACAGCTCGGCGCCGACGTCGGCGCCCACCTGGCGCCCTGGTACGCCGAGGCCGGCGCCCGCCTGCGTCTCGACGCCACCGCGGCCGCGGTCCGCCGCGACGGCGTCACCCTCACCTCCGGCGAGGAGGTCCCCGCCGACGTCGTCCTCGTGGCCGTCGGCGCCCGACCGGCCACGGCCTGGCTGCGCGGGACCCTGCCGGAGATGGTCTTCGACCCCGCCGGCGGGCTGCTCGTCGACGCCGGCGGTGCGGTCCCCGGGGCGGACGGCGTCTGGGCCGTCGGGGACGTGGCCTCCCGCCCGCACCCCGAGCTCGGCGTCGTGCCCGGGGGCCACTGGTCCGCGGCGCTGCACGACCCGGACGCGACGGCCCGGGCGATGCTGGGCCTGCCGGCCGAGCCGCCGCAGGCGCCCTACGTGTTCTCGCGCCAGCTCGGTCACGACCTGGCCCTCTTCGGGCTGCCCGAGGGGGCGCCGACGGCGTGGCGCGGCACCCCCGGCACGGGGTCGTGGGCGGCGTTCTGGACGGCGCCGACCGTGGGCGGCCCGGAGGACACCGCCGCCGGGCACGACGCGGGCGACGGGGTCGCCGTCGTCCGCGCCGTGCTGCTCGTCGACGCGCCCAAGGAGGTCGGCGCGGTCCGGCGGGCGATGAACCGCCCCGGCCCGCTCCGGATGGATCTCGAGCGGGCCGGGGACCCCGCGGTCAAGCTGCGCACCACCGTCGTCACCTGA	MPATNDLPAPAPLRDDPHPRPPRSVVVVGAGLAGAQTAAALRAHGFDGHLTVLGEEGLPPYDRPPLSKELVSRTEPLWLRDDLGVDLDALADEVRLADPVVAVEPGPTLTTRSGDRLAPDAVVLACGSRPVLPPGWDADVLHTAADADRLRADLRPGTRLVIVGAGWIGAEVARVAAGAGAEVTVLEAGPAPLARQLGADVGAHLAPWYAEAGARLRLDATAAAVRRDGVTLTSGEEVPADVVLVAVGARPATAWLRGTLPEMVFDPAGGLLVDAGGAVPGADGVWAVGDVASRPHPELGVVPGGHWSAALHDPDATARAMLGLPAEPPQAPYVFSRQLGHDLALFGLPEGAPTAWRGTPGTGSWAAFWTAPTVGGPEDTAAGHDAGDGVAVVRAVLLVDAPKEVGAVRRAMNRPGPLRMDLERAGDPAVKLRTTVVT	PGPT0019730_81	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529	NA	NA
AK001_02731	321			hypothetical protein	GTGGTTCCCGACACCCCGCAGCCGTCCTGGCACTCCCTCGACGCCGGCCCCCGGCAGCGCCGCGACGCGCCCAACCCGGTGCCGGCGATCCTGGTGGTGCTCGCCGGGATCCTGCTGGCCGTGCTGCTCGGTCTGCTCGTCGGTGCGCGCCTGGGCTCGTTGACGATCGCCGGGACCCTCGCGGTGGCCGGCACCTGGCGGGCGGTGGCGCCGGGCGGACCCGCCGGCCTGGCGATCCGCAGCCGCGGGTTCGACGTCTTCCTGTGCTGGGGGGCCGCGACCGTGATCGCCGTGCTGGCCCTGACGGCCCCGGGAGTCTGA	MVPDTPQPSWHSLDAGPRQRRDAPNPVPAILVVLAGILLAVLLGLLVGARLGSLTIAGTLAVAGTWRAVAPGGPAGLAIRSRGFDVFLCWGAATVIAVLALTAPGV				NA	NA	NA	NA	NA
AK001_02732	1011	aqpZ		Aquaporin Z	ATGGCCGCGCAGACCGTGACACCGCACGACGTCGAGACGACGCCGCCACCGCCCCGGCTCTTCACCAGGATGGCGGCGGAGGCCTTCGGCACCTTCGTCCTGGTCCTCGGGATCGTCGGGACGGCGACGTTCAACGTCGCCAACGGCGGGCAGATCATGACCGTCGCCCTGGCCGGCGGGATCGCCCTCATCGCCGCCATCGCGGCCGTCGGTCACCTGTCCGGCGGCCACTTCAACCCGGCGGTGACCTTCGGCCTGACGCTGGCCGGCCGGTCCCGGTGGGTCGACCTCGCGCCCTACTGGCTCGCCCAGCTCGTCGGCGGCGCGGCCGCCGGCGCGCTGATGCTCCTCATCATCCCCGACGGCTACGGCGCGCTCGTCGGGTCGGCGTCGTCCGGCGAGGTGCTCGCCGCCACCGCCAACGGCTACGGCGACCACTCCCCGATGAACACGCTCACCCAGGGCGGGGCCACCTTCGACCTCGCGACCGCCGCGATCGTCGAGGTCCTCATCGCCGCGATCTTCGTCGGTGTGATCCTCGGCGTGACCAACGAGCGGGCCAAGATCACCTACCCGGCGGTGGTCATCGGGCTGACCCTGACCGCCCTGCACATCGTGTCCTGGCTGGTCACCAACACCGGGTTCAACCCGGCCCGGTCGCTCGCGTCGGTCGTCTCGCCCGACGCCTGGGGCGAGGGCAGCGTCGGCAGCCAGCTCTGGCTGTTCGTCGTGGCCCCGCTCGTGGGCGCCGCCCTCGCGGCCCTGTTCGCCCGGGCCTTCGCGCCGCTGCCGGCCGCGCCGACGGCGGCCGATGGCTGGGGCGAGCAGCCGGGCACCGCCCCGGCGACCGCCGAGGCGGCGACCGTCGCCGCCGTGGCCTACGCCACCGCGGCCGCCGTGGTCGCCGAGGAGACCGAGGACTCCGCCGCCAGCGCCGAGGAGGCCGAGGACTCCGCCGAGGCCGAGACCGAGACGCAGGCCGACGAGGACGACAAGCCCACGACGACCTGA	MAAQTVTPHDVETTPPPPRLFTRMAAEAFGTFVLVLGIVGTATFNVANGGQIMTVALAGGIALIAAIAAVGHLSGGHFNPAVTFGLTLAGRSRWVDLAPYWLAQLVGGAAAGALMLLIIPDGYGALVGSASSGEVLAATANGYGDHSPMNTLTQGGATFDLATAAIVEVLIAAIFVGVILGVTNERAKITYPAVVIGLTLTALHIVSWLVTNTGFNPARSLASVVSPDAWGEGSVGSQLWLFVVAPLVGAALAALFARAFAPLPAAPTAADGWGEQPGTAPATAEAATVAAVAYATAAAVVAEETEDSAASAEEAEDSAEAETETQADEDDKPTTT	PGPT0004755_18	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ARSENIC_RESISTANCE	ARSENIC_RESISTANCE-ARSENIC_TRANSPORT,PGPT0004755-aqpZ-K06188	NA	NA
AK001_02734	3585	btuD_13		Vitamin B12 import ATP-binding protein BtuD	ATGATCGACGTCCCCGCGCCCCCGGCGCGCCCGCCGGCGGTCGCGGAGGACCCGGCGCGGCGGCTCGACTGGCGGCGCCTGCGGAGCCCCGTCGGCGCCGCGGCCCTCGTCGCGCTCGCGATCGGCACGGTCGGGACGGCGCTCGGCACGGTGGTCGCCGGCGGTCTCGCCCAGGACCCGACGGCGGCGGGTGTCGCGCTGCTCGCGCTGTGCCTGGTGGGCGGGGCCCTGCTCGACGCCGCCGGCCAGGTGGCCTGGGCCGGCGTCGTCGACCGCGCCGAGGGCCGCCTGCGCGGCGACCTGCTCAGTGCCGCCCTGCACCAGCCGCTCGGGGTCCTCACCGAGCAGGCTGTCGGGGAGATCCTCGACCGGGTCGACGACGACACCCACGCCGTCGGAGCGCTCGCGCGGCGTCAGCTCTGGGGCATGGGTCGCACCGTCGTCGGCGTCGTCCCGATCTGGGTGGTGGCGGGGGCGACCTGGTGGCCGGCCGCGGTGCTGTTCCCCCTGCTCGGCGCGGTGACCTGGTGGACGGTGCGGCCGCTGCTGGACGAGATCGCCCGCCGCAAGGTCGTCGAGGAGCGCGCCTGGACCGACAACGCGGCGGTGCTCGAGGAGGGCGTCGCCGCGCGGGACGACCTGCGCACCGCCGGGGGCCAGGCGTTCGCGCTGCGCCGGCTGGCGGAGATGTCCGCGCGCGTGCACCGCACCCTGCTCGCGGTGGTGCGGGTCGAGACGCGGCTGCTGGCGCGCGTCGGCGTGCTGCTGCACGCCCTGCTGGCCGGAGTCGTCGTGGCCGGGGTGGCGCTCGCGGTGGACGGCGGCATGCCGGTCGACCGGCTGGTCACCCTGTTCCTGGCGACGTCCCTGTTCGTCGGGCAGGTGGACCGGCTGGCCCAGCACCTGCCGGACCTGCAGGAGGGGCTGGGCGCCGTGGTGCGGATCCGCCAGCTCCTGGACTCCGAGCCCGAGCCGTCCGGCGGCGAGCCGCTGCCCGACCGTCCGCTCGACATCGAGGTGCGCGGGCTGCACTTCGCCTACACCGAGGGCACGTTCGCGCTGCGGGACGTGTCGCTGTCCGTGCCGGCCGGCCAGACCGTCGCGTTCGTGGGGCGGACCGGCTCCGGCAAGACGACGCTGGCCTCCCTGCTGTCCCGGGCGGTCGAGCCGCCACGCGGCACCGTCCTCCTCGGCGGTGTCGACGTGCGCGACGCCGACCTGGAGCGGCTGCGCGCGGGCGTCGGCGTGGTCACGCAGCGCACCGAGATCCTCGCGGGCACGCTCGCGCAGAACATCACGCTGTTCGCCGACCTGCCGCGCGTCGACGTCACCGCCGCCGTGCGCGAGCTCGGGCTGGCCGACTGGGTGGCCGGGCTGCCCGACGGGCTGGACACGCTCCTCGGACCCGGCGGGACCTCGTTGTCGGCGGGGGAGGAGCAGCTCGTGGCCTTCGCCCGCCTGCTCGTGCGGGACGTGCACCTGGTCGTCCTGGACGAGGCGACCGCGCGCATGGACCCGCACACCGAGGCCCGGGTCGTCGCGGCCGCCGACCGGCTGCTCGCGGGCCGGACCGGTGTGATCGTCGCCCACCGGCTCGGGACCGTGCGGCGCGCGCACCGCGTCGTGGTGCTCGACCACGGCCGGGTGGTGCAGCAGGGGCTGCACGAGGACCTGGTCCACCGGGACGGCCCGTTCCGCGACCTGCTCGCGGCCGGCAGCGGTGCCGGCGACGACGCGCTCGTCGACGGCGCCCCTGCCGACGGCGGAGCCGTGGCGCCCGACGACCGCGTGGCCGGCGAGGGCGTGGCCGACGACGGCACGGTCCCCGGGCTGCGGTCGGGGGCCGTCGGGGGTCGGCGACGGGTCGGCGACGCGCCCGTGCTGACCGATCCCGGAGCCGGTCCCGGGCTGGCCCGCAGCGTGCTGCACGCCCTGGTCACGCGACCGCGCTGGGGTGCTGCGGGAGCGGTGCTGTTCCTGTTCAGCAGCCTGTTCGCGGCCCAGGGGGCGCTCGCGGGCTACCTGTGGGGCCGCGTCGTCGAGACGGTCGCGGCCGGTGGTTCGCCGAGCGCCCTGACCGCCGCCCTGGTGGTCATGCTGCTCGCCGCGCCGCTGTGCCTGGCGGTCGCGGTGCGGCTGTACCCGTCGTGGTGGATCGAGATGCTGCTGCGTGTGCGCGTCGGCGTGCTGGTGGGGCAGACCCGACGGCACCGGCTGCGCCGCTCGCCGGCGGGCGAGGTGGTCGCCCGCGCGCTCGACGGCGACCGGTTCGTGCTCTACGTCGACCGCTGGGTCGACCTGCTCAACGGTCTGGCCGTCGTCCTGGTCACCTGGGCCGTCAGCGGCTCGGCGCTGGCGGGTCTGGTGCTGCTCGCCGTCATGGCGGTGACGGCGGCGTGCGCGCTGGTGGGTCGTCCCGTGGCCGGCCGGACGGCGACGCGGTCCGCCGAGGCGCGGGCGGGGTTCGGCCGGGCCCTGGTCTCGGCCCTGGACGCGGCGCGCACCGTCAAGCTCGCGGCCCGCATCCCGGCGGTGCACCACCACCTGCGCCAGGTCGACGCCGGGCGCGTGGGGGCGGCCGTGCGCGAGCACCGGGTGCAGGCCGTCCTGGACGGCATCCCGACGGTCATGGTGCAGGCGGGCGTGGTGACCGCGTGGGCGCTGCTGCTCGCCGGGACGTGGGACCTCGCCACGACGCTGCTGGTCACCGCCGCCGTGAGCGGGTTCGCGTACTTCGGGGTCGTGGCGGGCGCGGTGATCACCGAGGCGCCGGGGACCCGCGCGTGGCTGCGCGCGACCCAGGCGTTCGCCGCCGGCGCGGACCTGACCCGGCTGCCGGACGGCGTCGACCTGGCCGCGGGCACCGCCCCGGCTCCCGCTCCGCCGGAGGCGTCGTCCGCGCCGTTCGCGCGGCTGGACCTCGAGGGCCTCGAGGCGGTGCACGACGACGGCACGATCGGGGTGTCCGGCGTCCACCTGACCGTGGAGCGGGGCGAGCTCGTGCTGCTGCTCGGCCCGGTCGGGTCGGGCAAGTCGAGCCTGCTCGCCGCCGTGACCGGGCTGATGCGGCACCGGGGCGAGGTGCGGTGGAACGGTGAGCCGGTCCGGGACCCCGAGACCTTCCTGCGTCCGGCCCGGGTGGCCCACGTCGCGCAGGTGCCGCGGGTGCTGTCGGGGACCTTCGCGGAGAACGTGACGCTGGACCACCCGCGCGACGTCGTCGGACCCGTGGACGTCGCGCGGCTCGCGCCGGACGTGGCGGACGCCGGCGGTCCGGACGCGCTGGTGGGGCACCGTGGGGTGCGGCTCTCGGGCGGCCAGGTGCAGCGGCTCGCCCTGGCGCGGGCCCTGGCCACCGGCTCGGAGGTGCTGCTGGCCGACGACGTCTCCAGCGCCCTGGACGCGGCGACGGAGGTCGAGCTGTGGACGGCGCTGCGCGAGCAGGGGCTGACGGTGATCGGCTCGACCTCGAAGCGCGCGGCGCTCGCCCGCGCCGACCGCGTCGTCGTGCTGCTGGAGGGACGCGTCGTCGAGGTGGGGCCGTGGGCCGGGCTGGAGCGTCGCTGGGGACACCTGGCCGGCTGA	MIDVPAPPARPPAVAEDPARRLDWRRLRSPVGAAALVALAIGTVGTALGTVVAGGLAQDPTAAGVALLALCLVGGALLDAAGQVAWAGVVDRAEGRLRGDLLSAALHQPLGVLTEQAVGEILDRVDDDTHAVGALARRQLWGMGRTVVGVVPIWVVAGATWWPAAVLFPLLGAVTWWTVRPLLDEIARRKVVEERAWTDNAAVLEEGVAARDDLRTAGGQAFALRRLAEMSARVHRTLLAVVRVETRLLARVGVLLHALLAGVVVAGVALAVDGGMPVDRLVTLFLATSLFVGQVDRLAQHLPDLQEGLGAVVRIRQLLDSEPEPSGGEPLPDRPLDIEVRGLHFAYTEGTFALRDVSLSVPAGQTVAFVGRTGSGKTTLASLLSRAVEPPRGTVLLGGVDVRDADLERLRAGVGVVTQRTEILAGTLAQNITLFADLPRVDVTAAVRELGLADWVAGLPDGLDTLLGPGGTSLSAGEEQLVAFARLLVRDVHLVVLDEATARMDPHTEARVVAAADRLLAGRTGVIVAHRLGTVRRAHRVVVLDHGRVVQQGLHEDLVHRDGPFRDLLAAGSGAGDDALVDGAPADGGAVAPDDRVAGEGVADDGTVPGLRSGAVGGRRRVGDAPVLTDPGAGPGLARSVLHALVTRPRWGAAGAVLFLFSSLFAAQGALAGYLWGRVVETVAAGGSPSALTAALVVMLLAAPLCLAVAVRLYPSWWIEMLLRVRVGVLVGQTRRHRLRRSPAGEVVARALDGDRFVLYVDRWVDLLNGLAVVLVTWAVSGSALAGLVLLAVMAVTAACALVGRPVAGRTATRSAEARAGFGRALVSALDAARTVKLAARIPAVHHHLRQVDAGRVGAAVREHRVQAVLDGIPTVMVQAGVVTAWALLLAGTWDLATTLLVTAAVSGFAYFGVVAGAVITEAPGTRAWLRATQAFAAGADLTRLPDGVDLAAGTAPAPAPPEASSAPFARLDLEGLEAVHDDGTIGVSGVHLTVERGELVLLLGPVGSGKSSLLAAVTGLMRHRGEVRWNGEPVRDPETFLRPARVAHVAQVPRVLSGTFAENVTLDHPRDVVGPVDVARLAPDVADAGGPDALVGHRGVRLSGGQVQRLALARALATGSEVLLADDVSSALDAATEVELWTALREQGLTVIGSTSKRAALARADRVVVLLEGRVVEVGPWAGLERRWGHLAG				NA	NA	NA	NA	NA
AK001_02735	5895	glgX_2		Glycogen debranching enzyme	ATGGCCCGTGCCACCCGCCCCCCTGCGCCACCACACGCGGTGCCACCTCACGCAGCACCACGACGCGCCGTCGCCTCGCTGGCGGCGCTCGCCGTGGCCGTCCCCGCCGTGGCCGGCGGGCTGGCGCTCGCGGGTGTTCCCGCGGCCAGCGCCGCCGACCGGTCCGTCGCTCTCGTCGGTGACCTGCAGTCCGAGCTGGGCTGCGGCGCCGACTGGGACCCGGCGTGCGACGCCACCGAGCTCGCGCCCGCCGGCGACGGCACCTACGCGGCCGAGTTCGACGTCCCCGCCGGCACCTACGAGTACAAGGTCGCGATCGACGACTCCTGGGACGAGGCCTACGGCCGCGACGGCGGCGGCGACAACGCCCCCCTCGTGCTCGGCGGCGACACCCGCCTGCGCGTCACCTACGACGACGCCACGCACCTGACCGCGCTGACCCCGCTCGGCCTCGCGGGGGAGTACGACGCCGCCACGGACGACGCGCTGGTCGCGCCACCGGCCCGCCAGGCCGGCGGCGACGAGCAGTTCTACTTCGTCATGACCGACCGGTTCGCCAACGGCGACACCTCCAACGACACGGCCGGGCTCGGCGACGACCCGCTCGTGTCCGGGTTCGACCCGACGAACAAGGGCTTCTACCAGGGCGGCGACCTGGCCGGTCTGCACGAGAACCTCGACTACATCGAGGGGCTGGGCACGACGGCCATCTGGCTGACCCCGTCGTTCACGAACCGCCCCGTCCAGGGCAGCGGCGACGACGTCAGCGCCGGCTACCACGGGTACTGGATCACGGACTTCACGCAGATCGACCCGCACCTGGGCACCAACGCGGAGCTCGAGGCGCTCATCGCCGACGCCCACTCGCGCGGCATCAAGGTGTACTTCGACATCATCACCAACCACACGGCCGACGTCGTCGACTACGCCGAGGGCGAGTACTCCTACATCGACCAGGCCACCTCGCCGTACACCGACGCCGCCGGGAACACCTTCGACCCGGCCGACTACGCGGGCACGGGCGACTTCCCCGAGCTCGACGCCGCGACGTCGTTCCCCTACACGCCGGTGGTCGCCGACGCCGACGCCGACCTCAAGGTGCCGGCCTGGCTCAACGACTCGACGCTGTACCACAACCGCGGCAACTCGACCTGGAGCGGGGAGTCCGTCACCTACGGCGACTTCGCCGGCCTGGACGACCTCATGACCGAGCACCCGACCGTGGTGAACGGGTTCGTCGAGGTCTACCAGGACTGGGTCGACCTCGGCATCGACGGGTTCCGCATCGACACCGTCAAGCACGTCAACCGCGAGTTCTGGGACACCTGGACCACCGAGGTCCTCGACTACGCCCACGCCGCCGGCAAGGACGAGTTCTTCATGTTCGGCGAGGTGTACGACGCCGACCCGAAGCTGCTCTCGCCGTACGTGCGCGAGACCGACATGAGCTCGGTGCTCGACTTCGCCTTCCAGGCCTCGGCCACCAGCTACGCCAGCGGCAACAGCGCCCAGGGCCTCGCCGGGCTGTTCGCCGGCGACGACCGCTACACGACGCCGGACACCTCCGCCGCCGCGCTGCCGACCTTCCTCGGCAACCACGACATGGGCCGCGTCGGCTACATGCTGAACAGCACCGACGACCCGCTGGCACGTGACGAGCTCGCCCACGAGCTGATGTACCTCACGCGCGGCCAGCCCGTCGTCTACTACGGCGACGAGCAGGGCTTCGCCGGCAGCGGCGGCGACAAGGACGCCCGCCAGACGCTGTTCGCCACCCAGGTGGACTCCTACGCCAACCAGGAGCTGGTCACCGGCGAGACCGCCGGCAGCCAGGACCGGTACGACACCGACGCCCCGCTGTACTCGCTCATCGCCGACCTCTCGGCGCTGCGCGAGAGCACGCCGGCGCTGGGGCAGGGTGCGCAGATCGAGCGTTACATCGGCGATGCGGACGACGGCACGGATGGTGTCTACGCCGTCAGCCGCGTCGACCGGGACGAGAAGATCGAGCACCTCGTCGCGCTGAACAACGCTTCGCAGGAGCGCACGGCCACCTTCACCACCCTTACCCCGGGCGCCACGTACACCGCGCTGTACGGGGAGACCGGCGAGGTCACGGCCGACGCCGCGGGCGAGGTGACGGTGACGGTCCCGGCGACCTCCGCCGTCGTGCTGGTCGCCGACCGCACGGTCGGTGCGGACACCGCCGGTGAGATCGCCGTCGAGGTGCCGGCGGCCGGTGCCGCCGTGTCCGGTGACGCCCCGGTGCGCGCTGCGATCGACGACGCCTGGGCGGAGACCTCCTTCGCCTGGCGCGAGGTCGGCACCACCGACTGGCAGCCGCTCGGCACCGCCGAGGACACCACCCCGCGGGTCTTCCACACCACGGCCGGCCTGCGCGAGGGCACCCTGGTCGAGTACCGCGCGGTCACCGTCGACGCCGACGGCGACCGTGCCGCGGCCTCGACGTTCGCCTCCGTGGGGGTCGACGTCTCCGGCGTGGCCGGCGAGGAGGAGCCCCCGAGCGACATCGACATGGTGACCGTGCCCGGCAGCCACAACAGCGAGATGGGCTGTGCCGGGGACTGGACGCCGGACTGCGAGAACGCCCGCCTCACCGAGCGCGCCGACGGCGTGTACGAGGGCACGTTCGACGTGCCGGCCGGCGACTACGAGTACAAGGTCGCGATCAACGGGTCGTGGGACCTCAACTACGGCGCCGGGGGCGAGCAGAACGGCCCCAACGCCACGTACAGCCACGACGGCGGCGAGGTCACCTTCTACTGGGACCCGGTGAGTACGGACTTCTCCTCGACCGCCCAGGGACCGATCGTCACGCTGCCCGGCTCCTACCAGGACGAGGCCGGCTGCCCCGGCGACTGGCAGCCCGAGTGCCTCGCGACCTGGGCCAAGGACCCGGACGGCGACGGCGTCTACACCTGGTCCACCGACGCCCTGCCGGGCGGTGCCTACGAGGTCAAGGTGGCCCACGGCATGAGCTGGGCCGAGAACTACGGGGTCGACGGGGCGCGTGACGGCGCGAACTACTCCTTCTCCGTGGGGGAGAGTGAGACCGTGACGTTCTCCTACGACATCGCCACCCACGAGCTGACCATCGGCACCGAGAACCCGCCGTTGGCGGGTCTGGGCCAGCAGGCCGCGCACTGGGTGCGTGAGGACCTGCTGCTGGCCCCCGGAGACCTCGGGACCGGCGACACCTGGACCCTCTGGACCGCCCCGAAGGGCGGCCTCGAGGTCGCGGCGTCCTCGACGGACGGCGGCGCCGGAGCCGTCACCGGACCGGACGGCGGCGAGCTGCCTGCGGTTGCGGCCTCCTACACGCTCGAGCCCGGCGACCTGCCGGACGGCGTGACCGAGGACTTCCCGGCGCTCGCCGACCACACGGCGCTCGTGCCGACGTCGGACGGCGAGGCGCTGGACCGCGCGACGGTCGAGGAGCTGCTCACCGGCCAGCTGCTGGTGACCCGCACCGACGGCGACACCCTCACCGCCGCCACCGGCGTGCAGGTGCCGGGCGTCCTGGACGACCTGTACGCCAAGGAGGCGGCGAGCCGACCGTTCGGCGTCACGGTGCACCCGAACCTCAAGTGGGCCCTGTTCGGGCTCTGGTCGCCGACGGCCAAGGACGTCGACCTGCTGGTCTGGCCCGCGGGCCGCGACCTCGGTGCGGAGCCCGACCGCTTCGACACCGCCCGCACCGCGGACGGCTCGTGGACGCTGGACGGCAAGGCCGAGGACAAGGAGTACCCCTGGTACGGCGCGCGCTACCAGTTCGCCGTCGAGGTGTACGTGCCGGGCGGCGGGGGCACCCCGGGCAGGGTGGAGACGAACGTCGTCACCGACCCGTACTCGGTCGCGCTGACCACCGACTCGACGCACTCGGTCGTCGTGTCGCTGGACGACAAGCAGTTCCGGCCGAAGGTCTGGCGCACCAGCGCCCAGCCCGTCGTGGAGCGGCCCGTCGACCAGACGATCTACGAGCTGCACGTGCGGGACTTCTCGGTCGAGGACTCCACGGTCCCCGAGAAGGTGCGGGGCTCCTACCTGGCCTTCGCCGAGTCGGACTCGGACGGCATGACCCACCTGCGTGAGCTGGCCGAGGCCGGCATGACGACGGTGCACCTGCTGCCGACGTTCGACATCGCCTCGATCACCGAGGACCCGGCCGACCAGAAGACCACCGGCGATCTGTCCGGGTTCGCCCCGGACTCCACGGAGCAGCAGGCCGCCGTGGCCGAGGTGCAGGGCCAGGACGCCTTCAACTGGGGCTACGACCCGTACCACTTCACCGCGCCGGAGGGCTCCTACGCCGTCGACCGTGAGGGCGGGGCCCGCGTGGCCGAGTTCCGCACGATGGTGGGCTCGCTGCACGAGGCCGGGCTCCAGGTGGTCCTCGACCAGGTGTTCAACCACACCGCCCAGAGCGGCCAGGCCGAGAAGTCGGTGCTGGACAAGGTCGTGCCGGGCTACTACCACCGGCTGAACGCGACCACGGGCGCCGTCGAGACCAGCACCTGCTGCCAGAACGTCGCCACCGAGCACGCCATGGCCGAGCAGCTCATGGTCGACTCGGTCGTCACCTGGGCCCGCGACTACAAGGTCGACGGTTTCCGGTTCGACCTCATGGGTCACCACTCGCGCGAGAACATGCTCGCCGTCCGCGAGGCGCTCGACGCGCTGACGGTCGACTCCGACGGCGTGGACGGCTCGGCCGTCTACCTGTACGGCGAGGGCTGGAACTTCGGCGAGGTGGCCAACAACGCCCTGTTCACGCAGGCCACGCAGGGCCAGCTCGGCGGCACGGGGATCGGGACGTTCAGCGACCGGCTCCGCGACGCCGTGCACGGCGGCTCGCCCGTCGACGGTCCGTCGACGTTCACCCAGGGCTTCGGCACCGGGCTGTTCACCGACCCGAACGGTCGGGAGGCCCGGACCGGCGAGCCCGGCACGGTGAACGACGGCGGGGACGACGAGGCGGCCGACCTCGCCCACCAGACGGACCTGGTCCGCCTGGGGCTGGCCGGCAACCTGCGGGACTACACGTTCCTCACCTCGGACGGCGAGATGACCCGGGGCGAGGACCTCGACTACCGCGGCTCCCCGGCCGGGTACGCCGAGTCCCCGGAGGAGGTCGTCACCTACGTCGACGCCCACGACAACGAGACGCTGTTCGACCTGCTCACGCTCAAGCTGCCGCAGGCGACGTCCATGGACGACCGCGTCCGGATGAACACCGTCTCGCTCGGCACGGCGGCACTGGCCCAGACGCCGTCGTTCTGGCACGCCGGCACGGACCTGCTCCGCTCGAAGTCGCTGGACCGCAACTCCTACGATTCCGGCGACTGGTTCAACGCCATCGACTGGTCGGGCCAGGACAACGGGTTCGCCCGCGGTCTGCCGATGGCCGCGGACAACGAGGAGAAGTGGCCGCTCATGGCGCCGCTGCTGGCCGACCCGGCGCTCAAGCCGACGCCGGAGCACATCGCCACGGCCTCGGCCCAGGCGCGGGAGCTCCTCGAGCTGCGCTCGTCGACGCAGCTGTTCCGGCTGGGGTCGGCCGAGCTCATCGGTGAGAAGGTCTCCTTCCCCGGCTCGGGCCCGGACGCCGTCCCGGGTGTCATCGTCATGGCGATCGACGACACGGTCGGTGCCGACGTCGACCCGGCGCTCGACGGGGCGCTCGTGGTGTTCAACGCCTCGCCCGAGGCGGCCACGATCGACCTGCCGGACCTCGCCGGACGGGGCTTCGCGCTCTCGCCGGTGCAGGCCGGCGGCGTCGACCCCGTCGTCCAGGAGACCTCCTGGGACGGTGACGCCGGGAGCGTGACGGTGCCGGCGCGGACCGTCGCGGTGCTGGTCGAACCCACCGCCTGA	MARATRPPAPPHAVPPHAAPRRAVASLAALAVAVPAVAGGLALAGVPAASAADRSVALVGDLQSELGCGADWDPACDATELAPAGDGTYAAEFDVPAGTYEYKVAIDDSWDEAYGRDGGGDNAPLVLGGDTRLRVTYDDATHLTALTPLGLAGEYDAATDDALVAPPARQAGGDEQFYFVMTDRFANGDTSNDTAGLGDDPLVSGFDPTNKGFYQGGDLAGLHENLDYIEGLGTTAIWLTPSFTNRPVQGSGDDVSAGYHGYWITDFTQIDPHLGTNAELEALIADAHSRGIKVYFDIITNHTADVVDYAEGEYSYIDQATSPYTDAAGNTFDPADYAGTGDFPELDAATSFPYTPVVADADADLKVPAWLNDSTLYHNRGNSTWSGESVTYGDFAGLDDLMTEHPTVVNGFVEVYQDWVDLGIDGFRIDTVKHVNREFWDTWTTEVLDYAHAAGKDEFFMFGEVYDADPKLLSPYVRETDMSSVLDFAFQASATSYASGNSAQGLAGLFAGDDRYTTPDTSAAALPTFLGNHDMGRVGYMLNSTDDPLARDELAHELMYLTRGQPVVYYGDEQGFAGSGGDKDARQTLFATQVDSYANQELVTGETAGSQDRYDTDAPLYSLIADLSALRESTPALGQGAQIERYIGDADDGTDGVYAVSRVDRDEKIEHLVALNNASQERTATFTTLTPGATYTALYGETGEVTADAAGEVTVTVPATSAVVLVADRTVGADTAGEIAVEVPAAGAAVSGDAPVRAAIDDAWAETSFAWREVGTTDWQPLGTAEDTTPRVFHTTAGLREGTLVEYRAVTVDADGDRAAASTFASVGVDVSGVAGEEEPPSDIDMVTVPGSHNSEMGCAGDWTPDCENARLTERADGVYEGTFDVPAGDYEYKVAINGSWDLNYGAGGEQNGPNATYSHDGGEVTFYWDPVSTDFSSTAQGPIVTLPGSYQDEAGCPGDWQPECLATWAKDPDGDGVYTWSTDALPGGAYEVKVAHGMSWAENYGVDGARDGANYSFSVGESETVTFSYDIATHELTIGTENPPLAGLGQQAAHWVREDLLLAPGDLGTGDTWTLWTAPKGGLEVAASSTDGGAGAVTGPDGGELPAVAASYTLEPGDLPDGVTEDFPALADHTALVPTSDGEALDRATVEELLTGQLLVTRTDGDTLTAATGVQVPGVLDDLYAKEAASRPFGVTVHPNLKWALFGLWSPTAKDVDLLVWPAGRDLGAEPDRFDTARTADGSWTLDGKAEDKEYPWYGARYQFAVEVYVPGGGGTPGRVETNVVTDPYSVALTTDSTHSVVVSLDDKQFRPKVWRTSAQPVVERPVDQTIYELHVRDFSVEDSTVPEKVRGSYLAFAESDSDGMTHLRELAEAGMTTVHLLPTFDIASITEDPADQKTTGDLSGFAPDSTEQQAAVAEVQGQDAFNWGYDPYHFTAPEGSYAVDREGGARVAEFRTMVGSLHEAGLQVVLDQVFNHTAQSGQAEKSVLDKVVPGYYHRLNATTGAVETSTCCQNVATEHAMAEQLMVDSVVTWARDYKVDGFRFDLMGHHSRENMLAVREALDALTVDSDGVDGSAVYLYGEGWNFGEVANNALFTQATQGQLGGTGIGTFSDRLRDAVHGGSPVDGPSTFTQGFGTGLFTDPNGREARTGEPGTVNDGGDDEAADLAHQTDLVRLGLAGNLRDYTFLTSDGEMTRGEDLDYRGSPAGYAESPEEVVTYVDAHDNETLFDLLTLKLPQATSMDDRVRMNTVSLGTAALAQTPSFWHAGTDLLRSKSLDRNSYDSGDWFNAIDWSGQDNGFARGLPMAADNEEKWPLMAPLLADPALKPTPEHIATASAQARELLELRSSTQLFRLGSAELIGEKVSFPGSGPDAVPGVIVMAIDDTVGADVDPALDGALVVFNASPEAATIDLPDLAGRGFALSPVQAGGVDPVVQETSWDGDAGSVTVPARTVAVLVEPTA				NA	NA	NA	NA	NA
AK001_02736	798	tgnD		(E)-2-((N-methylformamido)methylene)succinate hydrolase	ATGGACTCGGTGACGGTGTCCGGGCTGACGATCACGTACCGCCGGGCGGGGTCCGGTGCCCCGCTGGTGCTCCTGCACGGCGGTTTCGGGTTCGACAGCCGGTCCTGGGCCCCGCAGCTCGACACCCTGGCCGACGCCTACGACGTCGTCGCCTGGGACGCCCCGGGCGCCGGCGGCTCCGACGACCCGCCGGAGGACTTCACCCTCGGCGACTACGCCGACGTGCTCGCCGGCTTCGTCGCGGCTCTGGAACTGGGCCGACCCCACGTCCTGGGACTGTCGTTCGGCGGCGGGGTGGCGCTCGCCCTGGCGGCACGGCACCCGGACGTGCCGCGCTCCCTCGTCCTCGCCGGCGCCTACGCCGGCTGGTCGGGTTCGCTCCCGCCCGACGAGGTCGACCGCCGGCTCCGACGCGCCGCCGACGACGTGAACCGCGACCCGCACGAGTGGCTGCCGGAGTACCTGCCCGGCCTGCTGACCCCATCCGCACCGGACGCTCTGCGGAGGCGGACCCTCGACCTGATGTCCGGGGTCCACCCGCGCGCGAGCCTCACCATGCTCGAGGCCATGGCCGACGCCGACCTGCGTGACGCCCTCGGGAGCGTCCGCGTGCCCACGCTCGTGCTGCACGGCGAGCTCGACGTCCGCGCGCCGCTGCCCGTTGCCACCGCCCTCCACGAGGCGATCCCCGGCGCCCGCCTCGTCGTGCTCCCCGCGGCCGGTCACCTGAGCAACCTCGAGACTCCCGAGGCCTTCACACGCACGGTCCGGGCCTTCCTGGCCGGTGTCCGCGGCTGA	MDSVTVSGLTITYRRAGSGAPLVLLHGGFGFDSRSWAPQLDTLADAYDVVAWDAPGAGGSDDPPEDFTLGDYADVLAGFVAALELGRPHVLGLSFGGGVALALAARHPDVPRSLVLAGAYAGWSGSLPPDEVDRRLRRAADDVNRDPHEWLPEYLPGLLTPSAPDALRRRTLDLMSGVHPRASLTMLEAMADADLRDALGSVRVPTLVLHGELDVRAPLPVATALHEAIPGARLVVLPAAGHLSNLETPEAFTRTVRAFLAGVRG	PGPT0004995_571	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055	NA	NA
AK001_02737	1164	chvE_1	COG4213	Multiple sugar-binding periplasmic receptor ChvE	ATGCGACTCGGCAAGAAGATGGGCGTGGTCGCCGCGGGTGCGGCGCTGGCGCTCACCCTCACCGCCTGCGCGGGTGAAGGCGCGGGCAGCGACAGCGGCAGCAGCGACAGCGGGGACTCCACGGCCGAAGGCGGCGACCTGAGCGTCGGCGTCGCGATGCCCACCGAGACGTCGGAGCGGTGGATCGCCGACGGCAACGCGGTGCAGTCGGGCCTCGAGGAGGCCGGCTACGGCGTCGACCTGCAGTTCGCGGGCGACGACATCCCCACCCAGACCCAGCAGATCGACGCCATGATCACCGGCGGCGTCGACGCGCTGATCATCGCCGCGATCGACGGCACGGCCCTGACGAGCCAGCTCGAGGCCGCCGCCGCCGCAGACATCCCGGTGGTCTCCTACGACCGCCTCATCAACGGCAGCGAGCACGTGGACTTCTACGTCTCGTTCGACAACTACAAGGTCGGCGTCGCCCAGGCGACCGCTCTCCTGTACGGGCTGGGTCTCACCGACCAGGACGGCAACCCGACCGACGAGGAGGGCCCGTTCAACGTCGAGCTCTTCGCCGGTTCGCCCGACGACAACAACGCGACCTTCTTCTGGAACGGCGCGATGGACACGCTCCAGCCGTTCCTCGACAGCGGTGCGCTCGAGGTCCCGTCCGGCCAGACCGAGTTCGACCAGGCCGCCATCCTGCGCTGGCAGCAGGAGACCGCGCAGAAGCGCATGGAGGACCTCATCACCTCCACGTACTCCGGTGACACGGAGCTGCACGGCGTGCTGTCCCCGTACGACGGCCTCTCCCGCGGCATCATCACCGCCCTCAAGGGCGCCGGCTTCGGCGACACCATCGAGGACGGCCTGCCCGTCGTCACCGGCCAGGACGCCGAGATCGCCTCGGTCAAGCTGATCCAGGACGGCGTGCAGCAGTCCACGATCTTCAAGGACACCCGCAAGCTGGCCGACCAGGCCGTGGTCGCCACCGAGGCCTTCCTCGCGGGCGAGGAGCCCGAGGCGAACGACACCGAGACGTACGACAACGGCGTCAAGGTCGTCCCGTCCTACCTCCTCGAGGTCGACACCGTCTACGCGGACAACATCACCGAGCTGCTGGTCGACAGCGGCTACTGGACCCAGGACGAGATCGACGCCGGCCAGGCCGAGTGA	MRLGKKMGVVAAGAALALTLTACAGEGAGSDSGSSDSGDSTAEGGDLSVGVAMPTETSERWIADGNAVQSGLEEAGYGVDLQFAGDDIPTQTQQIDAMITGGVDALIIAAIDGTALTSQLEAAAAADIPVVSYDRLINGSEHVDFYVSFDNYKVGVAQATALLYGLGLTDQDGNPTDEEGPFNVELFAGSPDDNNATFFWNGAMDTLQPFLDSGALEVPSGQTEFDQAAILRWQQETAQKRMEDLITSTYSGDTELHGVLSPYDGLSRGIITALKGAGFGDTIEDGLPVVTGQDAEIASVKLIQDGVQQSTIFKDTRKLADQAVVATEAFLAGEEPEANDTETYDNGVKVVPSYLLEVDTVYADNITELLVDSGYWTQDEIDAGQAE	PGPT0015735_76	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546	NA	NA
AK001_02738	1560	xylG_2	COG1129	Xylose import ATP-binding protein XylG	ATGAGCACGATCCTGGAGATGCGCTCCATCACCAAGGAGTTCCCGGGCGTCAAGGCGCTGTCCGGAGTCGACCTCGACGTCGGCGAGCAGGAGATCCACGCGATCTGCGGCGAGAACGGTGCCGGCAAGTCGACGCTGATGAAGGTGCTCTCGGGGGTCTACCCCCACGGCAGCTACGACGGCGAGATCGTCTTCGAGGGCGAGACGGTGCGGTTCGGGTCGATCAACGACTCCGAGGACCAGGGCATCGTCATCATCCACCAGGAGCTCGCCCTGGTGCCGTACCTCTCCGTGGCCGAGAACATCTTCCTCGGCAACGAGAAGCGCGGCCCCCTCGGGCTGATCGACTGGAACGACGCCAACCACCGCGCCGCCGAGCTGCTCGAGCGGGTCGGGCTGCACGAGAACCCCATGACGCCCGTGCAACAGCTCGGCGTGGGCAAGCAGCAGCTCATCGAGATCGCCAAGGCGCTGTCGAAGAAGGTCAGGCTGCTCATCCTCGACGAGCCGACCGCCGCCCTGAACGACACGGACTCGGCCCACCTGCTCGACCTGCTGCGAGCGCTGCGGGACGAGGGCATCACCTGCATCATCATCTCGCACAAGCTCAACGAGATCGCGGACATCGCCGACCGCACGACGATCATCCGCGACGGCGAGACGATCGAGACGATCGACATGTCCGAGCCGGACTCCACGCAGGACCGGATCATCCGCGGCATGGTGGGTCGTGACCTCGAGAACCGCTACCCGCACCGCACGCCGGAGATCGGCGAGGAGGTGCTGCGGATCGAGAACTGGAGCGTGGACCACCCGACCCAGGCCGGGCGCCAGGTGATCTCCGACGCCTCCTTCAACGTCCGTGCCGGCGAGGTCGTCGGCATCGCCGGCCTCATGGGTGCCGGCCGCACCGAGCTGGCCATGAGCGTCTTCGGGCACAGCTACGGGCGGAACATCCGTGGAACCGTCTACAAGGACGGCCGGGCCGTCCAGGTCCGGGACGTGTCCGAGGCGATCCGCCACAAGATCGCGTACGCGACGGAGGACCGCAAGCGGTACGGGCTCAACCTGCTCGACGACATCCGGCACAACATCTCCTCGGCCGGGCTGCGCCAGCTCGCGCCCGGCGGGTGGGTCAACGCCAACGAGGAGCTGAAGGTCGCCGAGGAGTACCGCGAGTCGCTCAACGTCAAGACGCCCCACGTGCTGGCGAACGTCGGCAAGCTGTCCGGCGGCAACCAGCAGAAGGTCGTGCTGTCCAAGTGGCTGTACACCGACCCGGACGTGCTCATCCTCGACGAACCGACGCGCGGCATCGACGTCGGCGCCAAGTACGAGATCTACACGATCATCAACAAGATGGTCGCCGCCGGGAAGGCGGTCATCGTCATCTCCTCGGAGCTGCCCGAGCTGCTCGGCATCTGCGACCGCGTGTACACGCTGGCCTTCGGCCGGATCACCGGTGAGCTCCCGGTCGCCGAGGCGACCCAGGAACGACTCATGGAGCTCATGACCCTCGAGCGCGACCAGCCCCTGCCCACGAAGGAATCGATCTCATGA	MSTILEMRSITKEFPGVKALSGVDLDVGEQEIHAICGENGAGKSTLMKVLSGVYPHGSYDGEIVFEGETVRFGSINDSEDQGIVIIHQELALVPYLSVAENIFLGNEKRGPLGLIDWNDANHRAAELLERVGLHENPMTPVQQLGVGKQQLIEIAKALSKKVRLLILDEPTAALNDTDSAHLLDLLRALRDEGITCIIISHKLNEIADIADRTTIIRDGETIETIDMSEPDSTQDRIIRGMVGRDLENRYPHRTPEIGEEVLRIENWSVDHPTQAGRQVISDASFNVRAGEVVGIAGLMGAGRTELAMSVFGHSYGRNIRGTVYKDGRAVQVRDVSEAIRHKIAYATEDRKRYGLNLLDDIRHNISSAGLRQLAPGGWVNANEELKVAEEYRESLNVKTPHVLANVGKLSGGNQQKVVLSKWLYTDPDVLILDEPTRGIDVGAKYEIYTIINKMVAAGKAVIVISSELPELLGICDRVYTLAFGRITGELPVAEATQERLMELMTLERDQPLPTKESIS	PGPT0016530_155	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016530-gguA|ABC_GGU_A-K10548	NA	NA
AK001_02739	1179	xylH	COG4214	Xylose transport system permease protein XylH	ATGAACGTCATCGCCGGAGCCCGGGACCTCGCGACCCGGCACCTGCGCGAGAGCGGCATCTTCATCGCGTTCGCCGCGCTCGTGATCCTCTTCGCCGCGCTGAACCCCAACTTCCTCAGCGCGAACAACCTGACGAACATCATCCTGCAGTACTCCTACATCCTGATCCTCGCGATCGGGATGGTGATGGTGATCGTCGCCGGACAGATCGACCTGTCGGTCGGATCGGTGGTGGCCCTCACCGGGGCCGTCTCGGCGGTGGTCGTCATCAGGATGGGCATGCCGTGGTACGTCGGTGTGCTCGCTGCCCTCGTCGTCGGCCTGCTGGTCGGCATCTGGCAGGGATTCTGGGTGGCCTACGTCGGCATCCCCGGGTTCATCGTGTCGCTCGCCGGCATGCTGCTCTTCCGCGGCCTGACCTACCTGGTGCTCGACAACGTCTCGCTCTCGCCGTTCGGCGGGACCTACTACGAGATCGCCAACGGGTTCCTCAACGGTCTGCTCGGCGGGATGGGCTTCGACGTCTTCACCCTGGTCATCTTCGGCATCGCGGTGGCCGGCTACGCCGTCAGCCAGTGGCGCAGCCGCCAGGGCAAGATCGCCTACCAGCAGCAGGTCGAGACGATGGGCCTGTTCGTGCTGAAGATCGTCCTCGTCGCGGCCGTGGTCATGTGGTTCGGCTACCAGCTGTCCACCTACCGCGGGCTCCCGCTGGTGCTCATCATCCTGGCGGTGCTGATCATCGTCTACGCGCTGGTGACGCAGAAGTCCGTCTTCGGCCGGCACATCTACGCCGTCGGCGGCAACCGGCACGCCGCCGAGCTGTCCGGCGTGAAGGTCCGCCGGATCAACTTCTGGGTCTTCGTCAACATGGGCGTCCTGGCCTCCGTGGCCGGCATCGTGTACTCCTCGCGCATGAACGCCGCCCAGCCGGGCGCCGGCAACATGTTCGAGCTCGACGCGATCGCCGCCTGCTTCATCGGCGGTGCCTCCACCACCGGCGGTATCGGCCGCGTGGGCGGCGCGATGATCGGTGGTCTGATCATGGCGGTCATGTCCAACGGCATGCAGCTCATGGGTGTGCCGCAGTCGATGCAGCAGGTGGTCAAGGGCCTCGTGCTCCTGCTCGCCGTCGCCTTCGACATCTGGAACAAGAAGCGCGCCGCCTCGGCACGCTGA	MNVIAGARDLATRHLRESGIFIAFAALVILFAALNPNFLSANNLTNIILQYSYILILAIGMVMVIVAGQIDLSVGSVVALTGAVSAVVVIRMGMPWYVGVLAALVVGLLVGIWQGFWVAYVGIPGFIVSLAGMLLFRGLTYLVLDNVSLSPFGGTYYEIANGFLNGLLGGMGFDVFTLVIFGIAVAGYAVSQWRSRQGKIAYQQQVETMGLFVLKIVLVAAVVMWFGYQLSTYRGLPLVLIILAVLIIVYALVTQKSVFGRHIYAVGGNRHAAELSGVKVRRINFWVFVNMGVLASVAGIVYSSRMNAAQPGAGNMFELDAIAACFIGGASTTGGIGRVGGAMIGGLIMAVMSNGMQLMGVPQSMQQVVKGLVLLLAVAFDIWNKKRAASAR	PGPT0016525_631	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016525-gguB|ABC_GGU_P-K10547	NA	NA
AK001_02740	1185	nagC_1	COG1940	N-acetylglucosamine repressor	ATGGCGCGGACGCAGTCGTCGCTGCGGGAGGCCAACCGTGCTCGTGTGGTCGACGCGGTCAAGAAGCACGGGAGTCTCACCCAGGTGGAGCTGACGGGCGCCACGGGGCTGTCCGCGGCCACGGTGTCGACCATCGTCAAGGAGCTCGTGGCCGCCGAGGTCGTCGAGGTCCGCAACACCGTCCGGTCCGGCCGGCGGGCCCAGCTCGTCACGCTCGCCCACCGGGTCGGCCTCGTGGCCGGCGTCGTCGTCGGGTACCGCACGATGCGGGTGGCGATCGCCGACGTCGCGCACGAGATCCTCGCCGAGCAGAGCCTGCCCCTGCCCGCCGACCACCGCTCCGACACGAGCCTCGACCGCGCCGCCCTCCTCGTCGTCGACCTGCTCGACCGCATCGGGTCGACCCTCGACGAGCTGCTCACCATCGGGCTCGGCGTCCCGGCGCCGGTCCATCCCACGACCGGGATGCTCAGCGTCCGCGGTGTGCTGCGCGGCTGGGACGCCGTCCAGATCGGCCAGGTGCTGGAGAAGCGGCTCGCCCGGCCCGTGTACGTCGACAACGACGCGAACCTCGGTGCGCTCGCCGAGTCGACGATGGGCGTGGGCCGACCGTGGCGCGACATGATCTACGTCAGCGTCGCGCACGGTGTCGGGGCCGGACTCGTCATCGGCGGGACGGTGCACCGCGGGGTCGACGGCACGGCCGGGGAGATCGGGCACGTCCAGGTCGACCCGGCCGGACGCATCTGCCTGTGCGGCAGCCGGGGCTGCCTGAACACCGTGGTCGGCCTGCCGGCGCTGCTGGAGCCTCTGCAGACCAGTCACGGCCACCTCTCCCTGCGCGACGTCGTGCGCCTGGCCGGCGACGACGACCCGGGATGCCGGGAGATCGTGGCCGACGCGGGAGAGCGTGTCGGCGGTGTCGTCGCCGCCCTGGCGACGGGTCTGGGCATCCAGGGCGTCGTCGTCGGCGGTGAGCTGGCAGCGACGGGGGAGACGTTTCTGGCACCCTTGCGTGCGGCGCTCGAACGGCGCACGGTGCTCAACCAGGCCGGAGGCCCGGAGGTCGTCCCCTCCGCGCTGGGGACGCGGGCCGAGCTGGTGGGCGCCGTCGCGCTCGCTCTCGAGCACACCGACGTGTTCGACCGACATGACCGCACCGACGAGGAGATGGCTGGACGATGA	MARTQSSLREANRARVVDAVKKHGSLTQVELTGATGLSAATVSTIVKELVAAEVVEVRNTVRSGRRAQLVTLAHRVGLVAGVVVGYRTMRVAIADVAHEILAEQSLPLPADHRSDTSLDRAALLVVDLLDRIGSTLDELLTIGLGVPAPVHPTTGMLSVRGVLRGWDAVQIGQVLEKRLARPVYVDNDANLGALAESTMGVGRPWRDMIYVSVAHGVGAGLVIGGTVHRGVDGTAGEIGHVQVDPAGRICLCGSRGCLNTVVGLPALLEPLQTSHGHLSLRDVVRLAGDDDPGCREIVADAGERVGGVVAALATGLGIQGVVVGGELAATGETFLAPLRAALERRTVLNQAGGPEVVPSALGTRAELVGAVALALEHTDVFDRHDRTDEEMAGR				NA	NA	NA	NA	NA
AK001_02741	744	frcA	COG1129	Fructose import ATP-binding protein FrcA	ATGAGGCCGCCACAGTCCCGCACGCCCCTGCTCGCCCTGCACGAGGTGAGCAAGTACTTCGGTGCCGTCGAGGCGCTGGTGGGCGTGGACCTCGAGGTGCACGCCCACGAGGTGGTCGCGCTCGTCGGGGACAACGGTGCCGGCAAGTCGACGCTGGCGCAGGTCGTGGCCGGTGTGCTGTCCCCCGACGCCGGGCAGATCGAGATCGCCGGTCGGCCGGTGACCATCTCCTCGCCGTCGGCGGCCAACGAGCTCGGCGTGGCCAGCGTGTTCCAGGACCTGGCCGTCTGCGAGAACCTCGACGTCACCGCCAACGTGTTCCTCGGCCGCGAGCAGCGCAACCGCCTCGGGCTGATGCACGAGGGGGAGATGGAGGTCGAGACCCGCCGGCTGCTGCAACGGCTGACGGTGCGGATCCCCTCGGTGCGCACCACGCTCCGTCAGCTCTCGGCGGGGCAGCGGCAGGCCGTCGCGATCGCCCGCACCCTCATCGGCGACCCGCGCATCGTGGTGCTCGACGAGCCCACGGCGGCGTTGTCGGTGGCGCAGACCGGTGAGGTGCTGACCCACATCCAGCGCCTGCGCGACCTGGGGCTGGGCGTGATCCTCATCAGCCACAACCTCAACGACGTCCGGGCCGTCGCGGACCGCATCGAGGTGCTGCGCCACGGGCGCAACAACGGCTCCTTCCCGGCCACGGCGTCGCACGAGTCCATCCTGGCCGCCATCACCGGAGCGGCCTGA	MRPPQSRTPLLALHEVSKYFGAVEALVGVDLEVHAHEVVALVGDNGAGKSTLAQVVAGVLSPDAGQIEIAGRPVTISSPSAANELGVASVFQDLAVCENLDVTANVFLGREQRNRLGLMHEGEMEVETRRLLQRLTVRIPSVRTTLRQLSAGQRQAVAIARTLIGDPRIVVLDEPTAALSVAQTGEVLTHIQRLRDLGLGVILISHNLNDVRAVADRIEVLRHGRNNGSFPATASHESILAAITGAA	PGPT0016660_1092	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016660-xylG-K10545	NA	NA
AK001_02742	1110	chvE_2	COG4213	Multiple sugar-binding periplasmic receptor ChvE	ATGACGCGACGAGTGGCAGCAGCGGCTGCCGCACTGGTCAGCACGGGCGTGCTCGCCCTGTCGGGCTGCGGGGTGCTCGACGGGACGGAGACGATCGGTGTGGCGATGCCCACCGAGTCCTCCGAACGATGGATCACCGACGGCGAGACGCTGGCCGACGGCCTGGAGGGGGCCGGGTACGAGGTCGACCTGCGGTACGCCGGGGACGACATCGCCCAGTACCGGCAGGCCGACCAGGTCCAGGAGATGATCGACGACGGCGTGGAGCTGCTGATCGTCGCGGCCGTCGACGGCGCCGGGCTCGTGGACCAGCTGGCCGCGGCCGAGGCGGCGGGGATCCCGGTGATCGCCTACGACCGGCTCCTGCTGGACTCCGAGCACGTCGACCACTACGTCACCTTCGACAACTACGGCGTGGGGGTCGCCCAGGCCCAGGCCCTGCTGCGGGGGCTCGGTGTCGTCGACGCCGACGGGGCGCCCACGGGCGACGGCGGGCCCTACAACATCGAGCTGTTCGCCGGGTCGCTGGACGACAACAACGCGCTGATCTTCTGGGAGGGCGCGATGGACACGTTGCGGCCCTACCTCGACGACGGCACGCTGCGGGTGCCGTCCGGCCAGACCGAGGTCGCGTTCGCCGAGACCTACCGCTGGTCGGAGGACACCGCCCGTGACCGGATGGGCAGCCTGCTGTCCCAGTACTACGACGACGGCACCGAGCTGCACGGGGTGCTCTCCCCGTACGACGGCATCTCCCGGGGGGTCATCGCGGCCCTCGGGCTGTGGGGGATCGGTCCGACCCTCGGCGAGGGGCTCCCCGTCGTCACCGGTCAGGACGCCGAGGCCGGCTCGGTGCAGCTGATGCGTCAGGACATGCAGCACTCGACGATCTTCAAGGACACCCGGGTGCTCGCCGACCGTGCGGTCGACGCGGCCCTGGCGTACCTGGAGGGCGGGGAGCCGGAGGTCACCGACACCACCACCTACGACAACCGCGTCAAGGTGGTGCCCACCTACACCCTGGACATCGAGACGGTGTACCGCCGGGACATCGAGGAGGTCCTGGTGGCCAGCGGCTACCTGACCGAGGAGGAGATCTCGGCCGGCTGA	MTRRVAAAAAALVSTGVLALSGCGVLDGTETIGVAMPTESSERWITDGETLADGLEGAGYEVDLRYAGDDIAQYRQADQVQEMIDDGVELLIVAAVDGAGLVDQLAAAEAAGIPVIAYDRLLLDSEHVDHYVTFDNYGVGVAQAQALLRGLGVVDADGAPTGDGGPYNIELFAGSLDDNNALIFWEGAMDTLRPYLDDGTLRVPSGQTEVAFAETYRWSEDTARDRMGSLLSQYYDDGTELHGVLSPYDGISRGVIAALGLWGIGPTLGEGLPVVTGQDAEAGSVQLMRQDMQHSTIFKDTRVLADRAVDAALAYLEGGEPEVTDTTTYDNRVKVVPTYTLDIETVYRRDIEEVLVASGYLTEEEISAG	PGPT0015735_76	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546	NA	NA
AK001_02743	501			hypothetical protein	ATGGACGACGGTGCACCCCCGCGCTGGCTCGACGACGAGCAGATGCGCAGCTGGCTCCGCCTGCAGGCCGTGATCGGTCTGCTGCCCGCCCTGCTGGACCAGCAGCTGCGGCGCGACGCCCACCTGACCCACTTCGAGTACCTGACGCTGGCGATGCTGTCCGAGGCCCCGGACCGGTCGCTGCGCATGAGCGACCTCGCCCGGCTCACCAGCGCCACGCTGCCGAGGCTCTCGCACGTCGCGCGGCGGCTCGAGGAACGGGGCTACCTGGACCGCGGGCCCGCGCCCGACGACCGGCGGGCCACCGTCGCGCACCTGACCGAGGACGGGTGGGACAAGGTCGTCGCGAGCGCACCCGGCCACGCCCGCACGGTGCTGGAGACCGTCTACGACGACCTCGACCCCGAGGACCTGCGAGCCCTGACCCGTGTCCTCGACGCGATCCTGGCGCACGTCGACCCGCACGACACGTTCGGCCTCGCCGACCACGAGCGCCGCTGA	MDDGAPPRWLDDEQMRSWLRLQAVIGLLPALLDQQLRRDAHLTHFEYLTLAMLSEAPDRSLRMSDLARLTSATLPRLSHVARRLEERGYLDRGPAPDDRRATVAHLTEDGWDKVVASAPGHARTVLETVYDDLDPEDLRALTRVLDAILAHVDPHDTFGLADHERR				NA	NA	NA	NA	NA
AK001_02744	627			hypothetical protein	ATGAGCAGCATCAGCATCATCGGCGCCGGGAACATGGGTGCCGCCATCGCCCGCCTCGCTCTCGCCGCCGGCACGCCGGTCCAGGTCGTGACCCGCGACGTCTCCGCGGCGCAGGCCGTCGACCCGGCCGTGACCGCCACCGCCTTCGGCGAGCCGCTGACCGGTGACGTCGTGGTCCTCGCCCTGCCGTACCCCGCGCTGGAAGACGTCGTGGCCACCTACGGCGACCAGCTCGCCGGCCGGACCGTCGTCGACATCACCAACCCGCTCGACTTCTCGACCTTCGACTCCCTGGTCGTGCCTGCGGACTCCTCGGCGGCCGCCGAGCTGGCCGCCGAGCTGGCCGCCGCGCTCCCCGGTGCCTCCGTGCTCAAGGCGTTCAACACGAACTTCGCCGCCACCCTCGCCACCGGCACCGTGGGCGACGTGCCGACCACCGTGCTCGTCGCGGGCGACGACGCCGACGCCAAGACCGCCTTCACCGCGGCCTTCGACGGCTCGGCCGTGCGCGTCGTCGACGCCGGCTCCCTCGCGCGAGCCCGAGAGCTCGAGGCGCTCGGCTTCCTGCAGCTGACCCTGGCCGCCGGCGAGAAGACCTCGTGGACCACCGGGTTCGCGCTGCTCTGA	MSSISIIGAGNMGAAIARLALAAGTPVQVVTRDVSAAQAVDPAVTATAFGEPLTGDVVVLALPYPALEDVVATYGDQLAGRTVVDITNPLDFSTFDSLVVPADSSAAAELAAELAAALPGASVLKAFNTNFAATLATGTVGDVPTTVLVAGDDADAKTAFTAAFDGSAVRVVDAGSLARARELEALGFLQLTLAAGEKTSWTTGFALL				NA	NA	NA	NA	NA
AK001_02745	882	catE	COG2514	Catechol-2,3-dioxygenase	ATGCACCCCGCGACCGGTCGTCCCGAGGATCTCCTCGCCCCCGAGACCACGATGGGAGCCGTCACGCTCCACGTCGGCGACCTCGCCGCGATGAGCGCGTACTACCGGGAGGCGATCGCGCTCACCGAGCTGCCCGGGCTCGGAGCGCCCGACCGCGTCGTCCTGGGGCGGGGGCGCACGCCCGTCGTCGTGCTGCAGCACACGCCGGGGCTGCCGGCGACGTCGCGGCACCAGGCAGGCCTGTTCCACACCGCCGTCCTGTTCGACACCGAGGAGGCGCTGGCGGCCGCGGTGGCCCACGCCGCCCGGCACCCGCTGTCCCGGTTCGTCGGGAACGCCGACCACTGGGTCTCCCGGGCGTTCTACTTCACCGACCCCGAGGACAACGGCATCGAGCTGTACTGGGACCGGCCGCGCGAGACCTGGCAGCGGTCCGGCGGCCGGGTGGCGATGGGGACGGACTGGTTCGACCCGAACGCCTACCTGCAGCAGCACCTCAGCGAGTCGGCGCTGGACGGCGCCGCCGGGCAGGGCGCCCAGGTGGGGCACGTCCACCTGCAGGTCGGCGACGTCCCGACCGCCCGGCAGTTCTACGTCGACACCCTCGGGTTCGAGATCATGGCGGACCTGCCCGGTGCGCTGTTCGTCGCGGCCGGCGGCTACCACCACCACCTGGCGGTCAACACGTGGAACAGCGCCGGGGCGGGGCCGCGGGCGGCGTCCCTGGGGCTCGGTCAGGTGGCGCTCACCGTGCCGGGCCAGGACGACGTCGACGCGCTGCGCGACCGGTTGCGGCACGCGCGCGTCCCCGTGCGCGACGACGGACGGACGCTCCGTTTCGACGACCCGTGGAAGACGCTCGTCGAGGTCTCGGTCGGCTGA	MHPATGRPEDLLAPETTMGAVTLHVGDLAAMSAYYREAIALTELPGLGAPDRVVLGRGRTPVVVLQHTPGLPATSRHQAGLFHTAVLFDTEEALAAAVAHAARHPLSRFVGNADHWVSRAFYFTDPEDNGIELYWDRPRETWQRSGGRVAMGTDWFDPNAYLQQHLSESALDGAAGQGAQVGHVHLQVGDVPTARQFYVDTLGFEIMADLPGALFVAAGGYHHHLAVNTWNSAGAGPRAASLGLGQVALTVPGQDDVDALRDRLRHARVPVRDDGRTLRFDDPWKTLVEVSVG	PGPT0005050_285	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-CATECHOL_RESISTANCE,PGPT0005050-catE-K07104	NA	NA
AK001_02746	831	purU	COG0788	Formyltetrahydrofolate deformylase	GTGCTGACGCTGTCCTGCCCCGACCGGCCGGGCATCGTCCACGCCGTCAGCGGGATGCTCGCCCAGCACGACGGCAACATCACCGAGTCCCAGCAGTTCGGCGACCCGAGCTCCGGACTGTTCTTCATGCGGGTGCAGGTCCAGTCGCACGCCTCGCGCGAGGAGCTGGAGAGCGCGCTGGCCGCGGTCGCCGGCCGGTTCGAGATGTCGTGGCGCCTCGACGTCGTCGGACGCCCCGTGCGCACGCTCGTCATGGTCTCCCGGGCGGCGCACTGCCTGGTCGACCTGCTCTACCGCGAGCGCGACCAGGGTCTGCCCATCGACGTCGTCGGGGTCGTGGGGAACCACCCCGACCTCGCGGACATCGCCGACTTCTACGGCAAGCCGTTCCACCACGTCCCGGTGACGGCGGCGACCAAGACCGAGGCCGAGGACCGGCTGCGGGCCCTGGTGACCGAGCTCGACGTCGAGCTGGTGGTGCTCGCCCGGTACATGCAGATCCTCTCGGACGAGCTGTGCCGCGACCTGGCCGGCCAGGTCATCAACATCCACCACTCGTTCCTGCCGTCGTTCAAGGGTGCGCGGCCCTACGCCCAGGCGCACGACCGCGGCGTGAAGCTCATCGGGGCGACCTCGCACTACGTGACCGGCGACCTGGACGAGGGACCGATCATCGAGCAGGACGTCGAGCGGGTCGACCACTCCCGGGCCGTGCGCGACCTCGTGGCCCTGGGCGAGGACGTCGAGCGGCGCACGCTCGCCCGCGCGGTGCGGTGGCACGCCGAGCACCGGGTGCTGCTCAACGGCCACCGCACGGTCGTCTTCCACTGA	MLTLSCPDRPGIVHAVSGMLAQHDGNITESQQFGDPSSGLFFMRVQVQSHASREELESALAAVAGRFEMSWRLDVVGRPVRTLVMVSRAAHCLVDLLYRERDQGLPIDVVGVVGNHPDLADIADFYGKPFHHVPVTAATKTEAEDRLRALVTELDVELVVLARYMQILSDELCRDLAGQVINIHHSFLPSFKGARPYAQAHDRGVKLIGATSHYVTGDLDEGPIIEQDVERVDHSRAVRDLVALGEDVERRTLARAVRWHAEHRVLLNGHRTVVFH	PGPT0008155_752	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433	NA	NA
AK001_02747	627			hypothetical protein	GTGGTCACGCACGCCATTGTCGCCCAGTTCTGCGACGATGGACCCATGAGCGACACCACCGCCACGTCCGGTCGCCCCGGGGACGGGTCCGCCCACCCGGAGGCGCCGACCCGCATCGCCCTCGTCGACGACTCCCACGCCGGCGAGCTGCTGACGCTGCGCCGTGCCGCGTTCGTCTCGGAGGCGCAGGTCTACGGTGACCCGAACATCCCGCCGCTGACGCAGACGCTGCACGAGCTGCGCGAGGACATGGCGCGCGACGACGTGGTGACCATCGGTGCCTGGACGGGCGAGCGCCTCGTCGGCTCGATCCGCGTCGAGCTCGAGGACGGCCGTGCCACGCTCGGCCGGCTGGCGGTCGCTCCGGACCAGCAGGGACGCGGGCTGGGGACGACCCTGCTGTTCGCGATCCTGGACCACCTGCCCGAGGACGTCTCGGAGATCTGGGCCTTCACCGGCAAGGACTCCCAGCAGAACCTGGCGATGTACACCAAGCACGGCTACGAGGCGCAGTACGACGAGGCCGCCGGCGAGCTGACCTACACCTACCTGCGCCGCGTGCTGCACGAGGTCGACGCGCGCAACGCCGCCGAGCGGCCGGCAGGCCCGCCCGCCGAACGGCCGTGA	MVTHAIVAQFCDDGPMSDTTATSGRPGDGSAHPEAPTRIALVDDSHAGELLTLRRAAFVSEAQVYGDPNIPPLTQTLHELREDMARDDVVTIGAWTGERLVGSIRVELEDGRATLGRLAVAPDQQGRGLGTTLLFAILDHLPEDVSEIWAFTGKDSQQNLAMYTKHGYEAQYDEAAGELTYTYLRRVLHEVDARNAAERPAGPPAERP				NA	NA	NA	NA	NA
AK001_02748	1017	lacI_3	COG1609	Lactose operon repressor	ATGGCCGACGTGGCCGCGCTCGCCGGCGTGTCCCACCAGACCGTCTCGCGGGTGCTGAACGAGCACCCGAGCGTGCGCGAGGCCACGCGGGAGAGGGTCCAGGCTGCGATCGACGAGCTCGGCTACCGCCGCAACAGCGCGGCACGTGCCCTGGTGACGTCACGGTCGGCGACCCTCGGTGTCGTGACCACGGGGTCGGCGCTCTTCGGCCCGACCAGCACGCTCATCGCCGTCGAGGAGGCGGCGCGGGACCGGAGCTACTTCGTCTCGGTCGCCACGCTGCGCAGCTACGACACCGCGTCGATGCACCAGGCGCTCGAGCACTTCATGGCCCAGGGCGTCGACGGGATCGTCGTCATCGCCCCGCACGCGGCGGTGGCCTCCGCGGTGGAGTCGTTCCGCGCACCGGTCCCGGTGGTCGTGGTGGCGGCGCTGGAGGGCGCGACGACGTCGGACGGGCCGGCGTCGTCGACGATGTCGGTCGCCGTCGACCAGCGGGCCGGTGCGCGCCTGGCCACCGAGCACCTGCTCGACCTGGGCCACGCGAACGTGGTCCACGTCGCGGGGCCGCAGGACTGGTTCGACGCCCGTGAGCGCTGGGCCGGCTGGCGCGAGGCCCTGGTGGCGCGGGGGATCCAGCCCGCCCGGCCGCGCGAGTGCTCCTGGTCCGCGGGGGACGGCTACGCGGCCGGCCGCGACCTGGCCGAGGCGGTCGGGTCGGGCGAGGGACCGACGGCGGTCTTCGCCGGCAACGACCAGCTCGCCCTCGGCGTGCTGCGCGCGCTGTGGGAGCGCGGGCTGCGGGTCCCCGACGACGTCTCCGTGGTGGGGTTCGACGACGTCGCGGGGTCGGCGTACTTCGTGCCGCCGCTGACGACCGTGCGGCAGCCGTTCGCCGAGCTCGGCGCCCGGTCGGTGGCGATGGTGCTCAGCTCCCTGGAGGGGGAGCCCGTGGCGGTCCAGCGCATCGAGCCGGAGCTCGTCGTGCGCTCGTCGACGGCGCCTCCGCCCCCCTGA	MADVAALAGVSHQTVSRVLNEHPSVREATRERVQAAIDELGYRRNSAARALVTSRSATLGVVTTGSALFGPTSTLIAVEEAARDRSYFVSVATLRSYDTASMHQALEHFMAQGVDGIVVIAPHAAVASAVESFRAPVPVVVVAALEGATTSDGPASSTMSVAVDQRAGARLATEHLLDLGHANVVHVAGPQDWFDARERWAGWREALVARGIQPARPRECSWSAGDGYAAGRDLAEAVGSGEGPTAVFAGNDQLALGVLRALWERGLRVPDDVSVVGFDDVAGSAYFVPPLTTVRQPFAELGARSVAMVLSSLEGEPVAVQRIEPELVVRSSTAPPPP	PGPT0017992_8402	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02749	1614	xylB_2		Xylulose kinase	ATGACGCGGCAGGACGAGGCGACCGACATCCGGGACGCCATTCAGGCCGGGCGGACCACGCTCGGCATCGAGCTCGGCTCGACCAACATCAAGGCGGCCCTCATCGGGCCGGACCACGACGTGCTCGCCAGCGGCTCCCACGCCTGGGAGAACGAGCTGGCCGACGGGCTGTGGACCTACTCGCTGGACGCCGTCCACGCCGGCCTGCAGGGTGCCTACGCGGCGCTGGTGGCCGACGTCGAGCAGCGGTACGGCGTGCGTCCCACGACCTACGGCGCGCTCGGTGTCTCGGCGATGATGCACGGGTACCTCGCGTTCGACGCCGACGACGAGCTGCTGGTGCCGTTCCGCACCTGGCGCAACACCAACACCGGCACGGCGGCCGCGGAGCTGTCCGAGCTGTTCGGCTACAACATCCCGCTGCGCTGGTCGATCGCGCACCTGTACCAGGCGATCCTCGACGACGAGCCCCACGTGCCGCAGATCGCCTCGTTCACGACGCTCGCCGGGTACGTCCACCGGGTGCTGACCGGCCGGCACGTCCTGGGCGTCGGCGACGCCTCGGGCATGTTCCCGGTCGACCCCGCGACCCGCGACTACGACCAGCGCCTGCTGCAGCAGTTCCGCCACCTCGTGGCGGCCAAGCGCCCCGGCCTGCACGTGGAGGGGCTCCTGCCCGAGGTCCTGGTCGCCGGCGCCGACGCCGGGCACCTGACCCCTCAGGGCGCCGCGCTGCTGGACCCCAGCGGCGAGCTGCAGCCGGGCATCGTGCTGTGCCCGCCCGAGGGTGACGCGGGCACCGGCATGGTCGCGACCGACGCCGTCGCGCCGCGGACCGGCAACATCAGCGCCGGCACCTCCATCTTCGCGATGGTCGTGCTCGAGAAGCCGCTGACGAGCGTGCACCACGAGCTGGACCTGGTCACGACCCCCGCCGGGGACCTCGTGGCGATGGTGCACTGCAACAACGGCGCGAGCGAGCTCGACGCCTGGGCCGGGGTGTTCTCCGAGTTCGCCGCGGCGCTGGGTCACCCGAGCGCGTCGGACGACGTCTTCGGCGCGCTCTTCACGGCCGCGCTGGACGGCGAGGCCGACGGTGGCGGGCTGCTGGCCTACAACTACCTCGCCGGGGAGCCCATCACCGGCCTCGAGGAGGGGCGTCCGCTCGTCGTCCGCACCCCGGACAGCCGGCTGACGCTGGCCAACATGATGCGCACCCAGATCTACGGCGCCTTCGGTACGCTGGCGCTCGGCATGAAGGTGCTGCACGGCGAGGGCGTCGCCATCGACACCATGTTCGCCCACGGCGGCATGTTCCGGACCGCCGGGGTCGCCCAGCGCTTCCTGGCCGCCGCCGTCGACGCCCCGGTCGCCGTCGCGCAGACGGCCTCCGAGGGCGGCGCGTGGGGCATCGCGGTGCTCGCCGCCTTCACCCGGGCCGCCGCCGAGCAGCCGGGCCTCACCCTGGACGGCTACCTGACCGACCGCGTCTTCGCCGACGCGGCGGTGGACGTCGCCCAGCCCGACGCCGGGGACGTCGCCGGGTTCGCCGCCTACCTCGACCGGTACTCCGCAGGGCTCGCCGTCGAGCGGGCCGCCACCGAAGCCCTCTGA	MTRQDEATDIRDAIQAGRTTLGIELGSTNIKAALIGPDHDVLASGSHAWENELADGLWTYSLDAVHAGLQGAYAALVADVEQRYGVRPTTYGALGVSAMMHGYLAFDADDELLVPFRTWRNTNTGTAAAELSELFGYNIPLRWSIAHLYQAILDDEPHVPQIASFTTLAGYVHRVLTGRHVLGVGDASGMFPVDPATRDYDQRLLQQFRHLVAAKRPGLHVEGLLPEVLVAGADAGHLTPQGAALLDPSGELQPGIVLCPPEGDAGTGMVATDAVAPRTGNISAGTSIFAMVVLEKPLTSVHHELDLVTTPAGDLVAMVHCNNGASELDAWAGVFSEFAAALGHPSASDDVFGALFTAALDGEADGGGLLAYNYLAGEPITGLEEGRPLVVRTPDSRLTLANMMRTQIYGAFGTLALGMKVLHGEGVAIDTMFAHGGMFRTAGVAQRFLAAAVDAPVAVAQTASEGGAWGIAVLAAFTRAAAEQPGLTLDGYLTDRVFADAAVDVAQPDAGDVAGFAAYLDRYSAGLAVERAATEAL	PGPT0017410_891	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017410-araB|L_ribulokinase-K00853	NA	NA
AK001_02750	723	ulaF	COG0235	L-ribulose-5-phosphate 4-epimerase UlaF	ATGTCGAACGACGCATCCCTGACCGAGGTGCCGGCCCACCTGCGCACCGCCGTCGACGCCGCCAAGCAGAAGGTCGCCGCCCTGCACGCCGAGCTGCCCCGCTGGGAGCTCGTCGTGTGGACGGCCGGCAACGTCTCGGAGCGGGTGCGGGACCCCGAGGCCGGGCCCGACGGCGAGGGCGATCTCCTCGTCATCAAGCCCTCCGGCGTCTCCTACGACGACATCACCCCCGAGGCCATGGTCGTGTGCGACCTGGCGGGCAACCTCGTCGAGGGCGACCGCTCGCCGTCGTCGGACACCGCCGCGCACGCCTACGTGTACGCGCACATGCCCGAGGTGGGCGGCGTGGTGCACACGCACTCGACCTACGCCACGGCGTGGGCCGCCCGGGGCGAGGAGATCCCCTGCGTGCTGACGATGATGGCCGACGAGTTCGGCGGCCCGATCCCCGTCGGCCCGTTCGCGATCATCGGCGACGACTCGATCGGTCGCGGCATCGTCGAGACCCTGCGCGGGTCCCGCTCCAAGGCCGTGCTGATGAAGAACCACGGCCCGTTCACCATCGGCGGCGACGCCAAGGCCGCCGTCAAGGCCGCGGTGCTCTGCGAGGAGGTCGCGCGCGCCGTGCACGTCTCCCGCCAGATCGGCGAGCCGCTGCCGATCGAGCAGCAGTACGTCGACTCCCTGTACGACCGCTACCAGAACGTCTACGGCCAGCGCTGA	MSNDASLTEVPAHLRTAVDAAKQKVAALHAELPRWELVVWTAGNVSERVRDPEAGPDGEGDLLVIKPSGVSYDDITPEAMVVCDLAGNLVEGDRSPSSDTAAHAYVYAHMPEVGGVVHTHSTYATAWAARGEEIPCVLTMMADEFGGPIPVGPFAIIGDDSIGRGIVETLRGSRSKAVLMKNHGPFTIGGDAKAAVKAAVLCEEVARAVHVSRQIGEPLPIEQQYVDSLYDRYQNVYGQR	PGPT0017420_501	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATION	PLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017420-araD|ulaF|sgaE|sgbE-K03077	NA	NA
AK001_02751	1512	araA		L-arabinose isomerase	ATGAGCAAGCCCTACGGTGACCGCGAGGTCTGGTTCCTCACCGGCAGCCAGGACCTGTACGGTCCCGAGACGCTGGAGCAGGTCGCCCAGCAGTCCCAGGAGGTCGCCGCCGCGCTGGACGCGTCGGGCGACGTCCCCGCGAAGGTCGTGTGGAAGCCGGTCCTGAAGGACTCCGCCGCCATCCGCCGCGCGATGCTGGAGGCGAACAGCGACGACGGCGTCCTCGGCGTCGTGACCTGGATGCACACCTTCAGCCCGGCCAAGATGTGGATCGCCGGCCTGGACGCCCTGCGCAAGCCGCTGCTGCACCTGCACACGCAGGCGAACGTCGAGCTCCCCTGGTCGGAGATCGACATGGACTTCATGAACCTCAACCAGGCCGCGCACGGCGACCGCGAGTACGGCTACATGCTGACCCGCCTCGGCGTCGCCCGCACCACCGTGGTGGGCCACGTGTCCGACCCCGCGGTGCAGCGGCGCGTCGGCACCTGGGTCCGCGCGGCGGCCGGCCGCCTGGCCACCCAGGAGCTGAAGCTGGTCCGCTTCGGCGACAACATGCGCAACGTCGGCGTCACCGAGGGAGACAAGACCGAGGCCGAGCTGCAGTTCGGCGTCAACGTCAGCACCTGGGGCGTCAACGACCTCGTCGCCACGGTCGAGGCGGTCGCCGAGTCCGACGTCGACGCGCTCGTCGCCGAGTACGCCGAGCTCTACGACGTGGCCGCCGAGCTGCAGGCCGGGGGAGAGCGGCACGAGTCGCTGCGCTACGCGGCCCGCCAGGAGCTCGCCTTGGAGGCGTTCCTCGTCGAGCGCGGGGCCAAGGCGTTCACGACGAACTTCGAGGACCTGGGCGCGCTGCGCCAGCTGCCGGGTCTCGCCGTGCAGCGACTCATGGCCAAGGGCTACGGGTTCGGCGCCGAGGGCGACTGGAAGACCGCCGTCCTGGTCCGCGCCGCGAAGGTCATGGGCGAGGGGCTGCCGGGCGGCGCCTCCCTCATGGAGGACTACACCTACGACCTCACGCCGGGGTCGGAGCTGATCCTCGGGGCGCACATGCTCGAGATCTGCCCGACCCTGACGACCGCGAAGCCCCGGGTCGAGATCCACCCGCTCGGCATCGGCGGCAAGGAGGACCCGGTGCGCATGGTGTTCGACACCGACGCGACCGAGGGCGCCGTCGTCGTGTCGCTGGCCGACATGCGCGACCGCTTCCGCCTGACCGCCAACGTCGTCGACGTCGTCCCGCCGGCCCAGGAGCTGCCGAACCTGCCGGTGGCCCGTGCCATGTGGAAGCCGCGTCCGGACTTCGCGACGTCGGCCGAGTCCTGGCTGACCGCCGGCGGTGCGCACCACACCGTGATGTCGACCGCCGTCGGTATCGAGGCGTTCGAGATGTTCGCCGAGATCTCGGGCACCGAGCTGCTCGTCATCGACGAGAGCACCACGCGGCGCGGCTTCGCGGACCAGGTGCGCTGGAACCAGGTCTACTACAAGCTCGCCCAGGGGCTCTGA	MSKPYGDREVWFLTGSQDLYGPETLEQVAQQSQEVAAALDASGDVPAKVVWKPVLKDSAAIRRAMLEANSDDGVLGVVTWMHTFSPAKMWIAGLDALRKPLLHLHTQANVELPWSEIDMDFMNLNQAAHGDREYGYMLTRLGVARTTVVGHVSDPAVQRRVGTWVRAAAGRLATQELKLVRFGDNMRNVGVTEGDKTEAELQFGVNVSTWGVNDLVATVEAVAESDVDALVAEYAELYDVAAELQAGGERHESLRYAARQELALEAFLVERGAKAFTTNFEDLGALRQLPGLAVQRLMAKGYGFGAEGDWKTAVLVRAAKVMGEGLPGGASLMEDYTYDLTPGSELILGAHMLEICPTLTTAKPRVEIHPLGIGGKEDPVRMVFDTDATEGAVVVSLADMRDRFRLTANVVDVVPPAQELPNLPVARAMWKPRPDFATSAESWLTAGGAHHTVMSTAVGIEAFEMFAEISGTELLVIDESTTRRGFADQVRWNQVYYKLAQGL	PGPT0017450_148	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017450-araA-K01804	NA	NA
AK001_02752	1020	lacI_4	COG1609	Lactose operon repressor	ATGGTGAGTCCCGGAGTCGACAAGCCGAACATCCGGCAGGTCGCCCAGCTCGCCGGCGTGTCGCACATGACCGTGTCGCGGGTGCTCAACGACCACCCGAACATCCGCGAGGCCACCCGGCGCCGCGTCGAGGAAGCCATCGCGGAGCTCGGCTACCGCCCGAGCATGACGGCCCGCGCCCTCGCCACCCAGCGCAGCCACCGCATCGGCGTCCTCGTCGAGAGCGCGGTGACCCACGGGCCGGTCAGCACGCTGTACGCCGTGGAGTCCGCCGCCCGGGCCTCGGGCTACGAGGTCAGCTCGGTGCTGCTGCGGGCCGGGGAGGAGATCACCCCCCAGGAGGCCGTCGACCACCTGATCATGCTGGGCGTCGACGCGCTGTGCGTCGTCGCTCCCCGCTCGTCGTCGATCGCGGCGCTGCGCCGCATCTCCGTCGGTGTCCCCGTCCTCGTGGTCAAACCCGACAAGGACCCGACGTTCCTCACGGTGACCGTCGACCAGCAGGCGGGCACCGTGCTCGCCGTCGACCACCTCGTCTCGCTCGGGCACCGCGACATCCTGCACGTGGCCGGCCCGCTCGACTGGCTCGACGCGCGCGCCCGCGAGCGTGCCTTCCACGCGCGGGCGAAGTCCTGGGGGATCCGTGAACGACCGATCGTCGTGGGGGACTGGACGGCGGACTTCGCCTACGACTTCGCGCGCGGGATCCGCGAGCTCCCGGAGTACACGGCGGTCTTCGTCGCGAACGACGACATGGCGGTCGGGCTCGTCCACGGGCTGCACGAGCGGGGCTTCTCCGTGCCGGACGACCTCAGCGTGGTCGGGTTCGACGACATCCCGCTGGCACGGCACGTCATCCCGCCGCTGACCACCGTGCGACAGGGCTTCGACGCGCTCGGGGTCTCCGTCGTCGACGTCCTGCGTGCGGCGATCGAGGAGCGGGAGATCCCGGCCGTGACGCGCATCCCCGCCGAGATCGTGGCGCGCGACTCCAGCGCGCCGCCGAGGAAGGCCGGCTGA	MVSPGVDKPNIRQVAQLAGVSHMTVSRVLNDHPNIREATRRRVEEAIAELGYRPSMTARALATQRSHRIGVLVESAVTHGPVSTLYAVESAARASGYEVSSVLLRAGEEITPQEAVDHLIMLGVDALCVVAPRSSSIAALRRISVGVPVLVVKPDKDPTFLTVTVDQQAGTVLAVDHLVSLGHRDILHVAGPLDWLDARARERAFHARAKSWGIRERPIVVGDWTADFAYDFARGIRELPEYTAVFVANDDMAVGLVHGLHERGFSVPDDLSVVGFDDIPLARHVIPPLTTVRQGFDALGVSVVDVLRAAIEEREIPAVTRIPAEIVARDSSAPPRKAG	PGPT0017992_8402	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02753	1572	fruK_1	COG1129	Fructose import ATP-binding protein FruK	ATGGCCGCCCGGGACGCGTCCACGCCGACGACGGCACGCCCCGTCGTCGAGATGTCCGGGATCACCGTGGACTACGCGGGGGTGCGGGTGCTCGACGGGGCGGACCTGACGGTGCACGCCGGCGAGGTGCACGCGCTGATGGGGGAGAACGGTGCCGGCAAGTCCACCCTCATCGGTGCGCTGACGGGCACCGTGCCGATCGTGGCGGGCACCGTCCTGGTCGGCGGCGAGCCCCTGACGCCGACCAGCGTCGCCGACAGCCGGGCGGAGGGGATCGCGACGGTCTTCCAGGAGTCGCACCTGAGCCCGCAACTGTCGGTGGCCGAGAACATCATGATCGGCCACGAGGTGCGAGGACGGTTCGGCATCAGCTGGTCGCGCAGCCGCGAGCGCGCCTCGGCCGCCCTGGCGACGCTGGGGATCGAGGACGTCGACCCGCGCACGCCGTTGGAGGCGCTGTCGCCGGCGACCAAGCAGCTCGTGGCCGTGGCCCGCGCGATCGTCCTGGAGCCTCGGGTGCTCGTCCTCGACGAGCCGACGTCGAGTCTCGACGAGGCCGAGGCCGCACGTCTGCTCGGCGTCGTCCGGCGTCTGTGCGACCAGGGCGTGGCGGTGCTGTTCGTCTCCCACTTCCTGGAGCAGGTGCTCGAGGTGAGCGACCGGATGACGGTGCTGCGGGGCGGCCGGGTGGTGGCCGAGTACGACACGGCGCAGGTGGAGCGGGCCGAGCTGATCTCGAAGATGATCGGCGAGGACATCGACGCGCTCCAGGCCCTGCACTCCGAGCGCCTGGAGCACCACTACGCGCAGTCGGGTCCCGTGACGTTGCGGGCGGCCTCGATCGGGCGCCGCGGCACGCTCGAGCCCACCGACGTCGACCTCAGCCGGGGAGAGGTCGTGGGGTTCGCCGGTCTGCGCGGGTCGGGACGCACCGAGCTCGCCCGCCTGATGAGCGGCGTCGAGCGTGCCGACCGGGGCGAGCTCTGGCTGGACGGCGCCCCGGTGCAGCTCCGGGGTCCGGCCTCGGCCCTGCGGCACCGGATCGCGGTGTCGACCGAGAACCTGCGCCACGAAGGCATCGTCGCGGCGTTGACGGTCCGCGAGAACATCGTGCTGGCCCTGCAGGCGCTGCGCGGCTGGACCCGCCCGTTGTCCCGCGCCGAGCAGGCGGCGGTGGTCGACACCTATCTCCACGCGCTGCACCTGTCGCCCGAGGACCTCGACCGGCCGGCGGGCGAGCTGTCGGGAGGCACGCAGCAGAAGGTGGTGCTGGCCCGGCTGCTGGCCACCCGGCCGCACGTGCTGATCCTGGACGAGCCGACCCGCGGCATCGACATCGGGGCCAAGCTGGACATCCAGCGTCGCGTCGCCAAGCTGGCGGGCGAGGGGGTGGCCGTCGTCTTCATCTCCTCCCAGCTCGAAGAGGTGGTGCGGCTCAGCGACCGCATCGTGGTCCTCAAGGACCGGGAGAAGATCGGCGAACTGAGCAACGGTCCCGGGGTCACGGTGGACACGGTCGTGGAGATGATCGCGGCGGAGCTGGACGGGCTCGTGACCGGCGACGACGCCTGA	MAARDASTPTTARPVVEMSGITVDYAGVRVLDGADLTVHAGEVHALMGENGAGKSTLIGALTGTVPIVAGTVLVGGEPLTPTSVADSRAEGIATVFQESHLSPQLSVAENIMIGHEVRGRFGISWSRSRERASAALATLGIEDVDPRTPLEALSPATKQLVAVARAIVLEPRVLVLDEPTSSLDEAEAARLLGVVRRLCDQGVAVLFVSHFLEQVLEVSDRMTVLRGGRVVAEYDTAQVERAELISKMIGEDIDALQALHSERLEHHYAQSGPVTLRAASIGRRGTLEPTDVDLSRGEVVGFAGLRGSGRTELARLMSGVERADRGELWLDGAPVQLRGPASALRHRIAVSTENLRHEGIVAALTVRENIVLALQALRGWTRPLSRAEQAAVVDTYLHALHLSPEDLDRPAGELSGGTQQKVVLARLLATRPHVLILDEPTRGIDIGAKLDIQRRVAKLAGEGVAVVFISSQLEEVVRLSDRIVVLKDREKIGELSNGPGVTVDTVVEMIAAELDGLVTGDDA	PGPT0016635_235	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016635-ytfR-K10820	NA	NA
AK001_02754	1026	ytfQ		ABC transporter periplasmic-binding protein YtfQ	ATGGCACGGAAGATGTGGATGCGCGGCACGGTGGCAGCCCTGTCGGCGACGGCCCTGCTGGCCCTGGGTGCGTGCAGCAGCGAGCAGGCCCCTGCTGCCGAGGGCGAGGAGACCACGTCCGACGACGGCGGCGAGACGGAGGAGGCCGGCGACGAGCTCATCTCGATCGGCTTCTCCCAGGTCGGCGCCGAGTCGGGCTGGCGCGCCGCGAACACCAAGTCCATCCAGGACACGCTGACCGCGGACAACGGCTTCGACCTGAGCTTCTCGGACGCCCAGCAGAAGCAGGAGAACCAGATCCAGGCGATCCGGTCCTACATCGCCCAGGGCGTGGACGTCATCTCGTTCTCCCCGGTCGTCGAGACGGGCTGGGGCCCGGTGCTGGAGGAGGCCAAGGCGGCCGACATCCCGGTGATCCTGACCGACCGCGCCGTCGACACCGAGGACGACACCCTCTACGAGTCCTTCATCGGCTCCGACTTCGTCCTCGAGGGCGAGATGGCCGGCGAGTGGGCCGTCGAGCAGTACGACGGCGAGGGCTACCAGATGGTCGAGCTGCAGGGCACGACCGGCTCCGCCCCGGCGATCGACCGCAAGGAGGGCTTCGCCGACGCGATCTCGGGCAGCGACATCGAGGTCATCGACTCCCAGACCGGTAACTTCACCCGGACCGAGGGCAAGCAGGTCATGGAGGGCTTCCTGCAGAAGTACGACGAGATCGACCTCGTCTTCGCCCACAACGACGACATGGGCCTGGGTGCCATCGAGGCCATCGAGGCCGCCGGCATGACGCCGGGCGAGGACATCAAGATCATCACGATCGACGCGGTCAAGGACGGCATGCAGGCCCTGGCCGACGGCAAGATCAACTACATCGTCGAGTGCAACCCGCTGCTCGGACCGGACCTGGCCGAGGTGGCCCAGAAGGTCGTCGCCGGCGAGGAGGTCGAGAAGCGCATCGTGGTCGAGGACAAGACCTTCGACCAGGAGGCCGCGGTCGAGGCCCTGCCCTCCCGCGAGTACTGA	MARKMWMRGTVAALSATALLALGACSSEQAPAAEGEETTSDDGGETEEAGDELISIGFSQVGAESGWRAANTKSIQDTLTADNGFDLSFSDAQQKQENQIQAIRSYIAQGVDVISFSPVVETGWGPVLEEAKAADIPVILTDRAVDTEDDTLYESFIGSDFVLEGEMAGEWAVEQYDGEGYQMVELQGTTGSAPAIDRKEGFADAISGSDIEVIDSQTGNFTRTEGKQVMEGFLQKYDEIDLVFAHNDDMGLGAIEAIEAAGMTPGEDIKIITIDAVKDGMQALADGKINYIVECNPLLGPDLAEVAQKVVAGEEVEKRIVVEDKTFDQEAAVEALPSREY	PGPT0016625_166	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016625-ytfQ-K23508	NA	NA
AK001_02755	2247			hypothetical protein	ATGCCTGACCCGACCTACTCACGGCGGTCCGTCCTGCGCCTCGGCGCGATGGCCGCCGGTGCCACGGCCGGTGCCGTCGCGCTCGCCGGCAGCGGGACCGCCGTCGCGACCGCGCCGCCCGTCCGTGCCTTCGCCCCGGCGGCACCCCCGGTGAGCCGCGGCTTCCTGCGGTCCCTGGACCGCACCGTCACCTTCGACGGCTGGACGGCGCGGCCGTTCGCGATGGCCGACGTCGATCTCGCCCCCAGCATCGCCACCCGGTCCCAGGACCAGATGCTGCACCTGGCGCGCGTCTACCCGGTCGACCGGGTGCTCGCCGTCTTCCGCCGCAACGCGGGCCTCGACGACCGCGGGGCGGCCCCGCCCGGCGGGTGGGAGGGCTTCGGGCACCCGAACGAGGACGCCTGGGGCCCGGACGACTACCCCGGCCGGGAGAACACCCAGACCGCGAACCTGCTGCGCGGCCACTACGGCGGGCACTTCCTGTCGATGGTGGCCCTGGCCTGGGCGAGCACCGGCGAGCAGGTCTTCGCGGACAAGGTCGACGCGATCGTCACCGGCCTCGGCGAGGTCCAGGCGGCGCTGGCGGAGACCGGCCGGTACTCCCACCCCGGGTTCCTCGCCGCGTACGGCGAGTGGCAGTTCAGCCGGCTCGAGGAGTACGCGCCCTACGGCGAGATCTGGGCGCCCTACTACACCTGCCACAAGATCGTCGCGGGGCTGCTCGAGGCGTACTACCTCACCGACAACGACCAGGCCCTCGAGATCGCCACCTCGATGGCGCACTGGGTCCACGGCCGACTGTCGGTGCTCCCGCGCGAGCAGCTCGACCGGATGTGGGGTCTCTACATCGCCGGCGAGTACGGCGGCATGAACGAGTCCCTGGCCGACCTGGCCGCGATCACCGGTGACGACACGCACCTGGAGTCCGCACGGTGCTTCGACCTGACGCGGCTCGTCGACGCCTGCGCCGCCGGCGACGACGTCCTCGACGGGCTGCACGCCAACCAGCACATCCCGCAGTTCCCCGGCTACCTCAAGCTCCACGACCTCACGGGTGAGCAGCGCTACCTCGACGCGGTCGAGGGCTTCTGGGACATGGTCGTCCCGGGCCGGACCTACGCCCACGGCGGCGACGGGGAGAGCGAGCACTGGGGCCCGCCGGACACGGTCGCCGGAGACATCGGCCCCCGCAACGCCGAGACCTGCGCCACCTACAACATGCTCAAGCTGTCGCGGCTGCTGTTCTTCCACACCCTCGACCCGCGGTACATGGAGTACTACGAGCGCGGCGTCCTCAACCAGATCGTGGGGTCGAAGAAGAACGTGCAGTCCGACACCTCGCCCGAGGTGACCTACATGTACCCGGTCGACCCCGGGACGCGGCGCGAGTACGGCAACACCGGGACCTGCTGCGGCGGGACGGGCCTCGAGAACCACGTGAAGTACCGCGACTCGGTGTACTTCCGCACCGCGTCCGGCGACGCCGTCTACGTCAACCTCTACCTCGCGTCCACGCTCGAGTGGCCCGAGCGTGGCGTCACGATCGTCCAGGAGACGACCTACCCGCTCGAGGGCTCCAGCCGCCTCACCGTGCAGGGCAGCGGACCGCTCGACCTGCGGCTCCGGGTCCCCGGCTGGGTGCGCCGGGGCTTCACGGTCGCGGTCAACGGCGTCGACCAGCAGGTGGACGCGACCCCCGGGACGTACGTGAGCGTGTCCCGGGACTGGTCGCCGGGCGACGTCGTGGACGTCACGATGCCGCTGAGCATCCGTGCGGTGCCCACGATCGACAACCCGGTGATCCAGAGCATCGAGAACGGCCCCACCGTGCTGGTGGCACGCAGCTCGTCGCGCGAGTTCCTCCGGCTCTCCCTCTACCCGCACATGGCGCTGGACGGGACGCTCGACGGCGCCTTCACCGACCTGGGCGACGGGTACCGCCGGCTCGGGGACCTCACCTTCGAGCCGGCGTGGTCCGGCGACGACACGCAGTACCACCTGTACGTCGAGCGGTCCGAGCCGCGCGTCGTGTTCGCGGGCCGCGACAGCCGGGTGGCGAACCCGGTCCGCGCCGACGGCACGTCGTTCCTCGACGCGGTCTGGGCCGACGGCGGGTTCGCCGACCGCGCCGCGTTCCTGCGCACGGTGCAGAGCACCGTCGAGCAGTTCTCCGCCGACGGGCTCCTCAGCCGTCGCGACGGTCAACGGATCCTGGTCACGGCGGGGAAGGCGAGGTTCGCATGA	MPDPTYSRRSVLRLGAMAAGATAGAVALAGSGTAVATAPPVRAFAPAAPPVSRGFLRSLDRTVTFDGWTARPFAMADVDLAPSIATRSQDQMLHLARVYPVDRVLAVFRRNAGLDDRGAAPPGGWEGFGHPNEDAWGPDDYPGRENTQTANLLRGHYGGHFLSMVALAWASTGEQVFADKVDAIVTGLGEVQAALAETGRYSHPGFLAAYGEWQFSRLEEYAPYGEIWAPYYTCHKIVAGLLEAYYLTDNDQALEIATSMAHWVHGRLSVLPREQLDRMWGLYIAGEYGGMNESLADLAAITGDDTHLESARCFDLTRLVDACAAGDDVLDGLHANQHIPQFPGYLKLHDLTGEQRYLDAVEGFWDMVVPGRTYAHGGDGESEHWGPPDTVAGDIGPRNAETCATYNMLKLSRLLFFHTLDPRYMEYYERGVLNQIVGSKKNVQSDTSPEVTYMYPVDPGTRREYGNTGTCCGGTGLENHVKYRDSVYFRTASGDAVYVNLYLASTLEWPERGVTIVQETTYPLEGSSRLTVQGSGPLDLRLRVPGWVRRGFTVAVNGVDQQVDATPGTYVSVSRDWSPGDVVDVTMPLSIRAVPTIDNPVIQSIENGPTVLVARSSSREFLRLSLYPHMALDGTLDGAFTDLGDGYRRLGDLTFEPAWSGDDTQYHLYVERSEPRVVFAGRDSRVANPVRADGTSFLDAVWADGGFADRAAFLRTVQSTVEQFSADGLLSRRDGQRILVTAGKARFA	PGPT0019100_725	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955	NA	NA
AK001_02756	2001			hypothetical protein	ATGAGCACGCACGGCGACGACACGGTCCTCGTCCCGCTCGGCGCCCGGGAGCGCCACGTCCCCGACGGCTCGCGGCAGCGGCGGATCCTCGCCGGCGCCACCGCCCTGGCTCTCGCGGTCGCGGGCGCGGGCGCGGCCCTGTGGACGGCCGGTACGGGCGGCGGCACGGCCCCCGCCGTGGCGGCGGCCGCGGAGGACGCCCCCGCGAACGTGGCGCTGGTCGGCACGCCGGAGGCCAGCTACACGGCACCGTGGCACCGCCTCGACGCCGTCCACGACGGCGAGGTGGCGCCGACCGGCACCTGGGAGCAGGCCTGGTCGACGTGGAGCGGGGAACGCCCCGCCTCCCACTGGCTGGAGTACTCGTGGCCGGTGCCGGTGACGGTCGACCGGTCGGTGATGTCCTTCTGGACGGACGGGACCGGTGCGAACGGCGACAACGTCCGGGTGCCGTCGTCGTGGTCGATCCAGTACTGGGACGCCGACGCCGAGCAGTTCGTCGACGTCGCGAGCCCCAGCGGGTTCGGTCTCGAGCGCACCACCCCGAACGAGACGACCTTCGACCCGGTCACCACGACCCGCGTCCGGGCGAACCTCGACGCCCTGCAAGGCACCGACGTCGACTCCTACTCGGCCGTGGGCGTCACCGAGTGGGAGCTCTGGGGCACCGGTGGCGTGGAAGAGCCCGACCCGGTCGACCCGCACGGGCCGATCGACCACGAGCCGGTGCACGTGCCCACCGACGTGGGCGTGCTGCCCGAGCTGCCCGCCGACCTCGACGCAGTCTACACCGACGGCCGGGTCGAGACCGTCGAGGTGAGCTGGGAGGAGGTCACGGCCGAGGACGTGGCCGAGCCCGGGTCGTTCGCCGTCGCGGGCACCTCGCCCGAGCTCGTCGCCCCGGTCGAGGGCACGGTCCACGTGCGCGACGGCGAGCCCGGCGACGTCGTCGCCGTCGACTACGTCAGCGTCGTCACGCTCGCGGGCACCGCACCGGTCCTGCCCGGCACCGTGGTCGCCGAGTACGCGGACGGCACGCGGGACAGCAGCGTCCCGGTGACGTGGGACGCCGTCGACCCGGCCGACCACGCGGAGGCCGGGAGCCTGTTCTTCGTCACCGGCGACGTCACCGGGACGGACGTCGACGCCGAGGCCACCGTGTTCGTGGTGGCCCCGGACGACGGCGAGGACACCGTCGCCCCGACGGTGATCGTGTCCGCCGAGCCGGGCCCGGCGACGTCGGGCTGGTTCCTGAGCAGCCCGACGATCACCGTCACGGCCACCGACGACCGCGATCCCACCCCCGCGGTCGAGGTCGCGGTCGACGGCGGGGACTGGTCCCCCGACGACGGGCCGTTCGTGCTCGGGGACGACGGCGAGCACACCGTGGCCGTCCGCGCCACGGACGCCGCGGGCAACGTGGGCGAGGGGTCGCGCACCCTCCGGGTCGACACCACCGCCCCGGCGACCACGGCGACGGTGCGCGATCTCGGCACGAGCGTCGAGGTCACCCTCGCCGCGACGGACGCCGGGTCCGGTGTGGACCGGGTCCAGTGGGAGGGTCCCGGCACGTTCTGGGGCACGTACACCGAACCGTTCACCCGGGCGCTGACCGACACCGAGCAGGTCCTCGAGTTCGCGGCGACCGACGTCGCGGGCAACGTCGAGGAGCGGGGTCAGGTCGTGCTCCCGGCGCTCGACGCCGGGGACCGTCCGGCCGTCGAGGCGACGGTGCAGCAGCGCTGCCTGGGCGGCCGCGGCTACGTGGCGGTGCGGGCGCAGCACGCCGAGGAGGTCCCGGTCTCGCTCACCGTGGACACGCCCTACGGGTCCCGGACGGTCGAGGACGTCGAGCCGGGCGGGAGCGTCTACCGGGCCTTCCCGGCGCGCACCGGGTCCGTCCCGGCCGGCGAGGCGACGGTGACGGGCACCGCCACGATCTCCGGCGAGGAGGTGTCCGCGACCGAGCGCGTCGGCTACGACGCGTTCGACTGCGGCTGA	MSTHGDDTVLVPLGARERHVPDGSRQRRILAGATALALAVAGAGAALWTAGTGGGTAPAVAAAAEDAPANVALVGTPEASYTAPWHRLDAVHDGEVAPTGTWEQAWSTWSGERPASHWLEYSWPVPVTVDRSVMSFWTDGTGANGDNVRVPSSWSIQYWDADAEQFVDVASPSGFGLERTTPNETTFDPVTTTRVRANLDALQGTDVDSYSAVGVTEWELWGTGGVEEPDPVDPHGPIDHEPVHVPTDVGVLPELPADLDAVYTDGRVETVEVSWEEVTAEDVAEPGSFAVAGTSPELVAPVEGTVHVRDGEPGDVVAVDYVSVVTLAGTAPVLPGTVVAEYADGTRDSSVPVTWDAVDPADHAEAGSLFFVTGDVTGTDVDAEATVFVVAPDDGEDTVAPTVIVSAEPGPATSGWFLSSPTITVTATDDRDPTPAVEVAVDGGDWSPDDGPFVLGDDGEHTVAVRATDAAGNVGEGSRTLRVDTTAPATTATVRDLGTSVEVTLAATDAGSGVDRVQWEGPGTFWGTYTEPFTRALTDTEQVLEFAATDVAGNVEERGQVVLPALDAGDRPAVEATVQQRCLGGRGYVAVRAQHAEEVPVSLTVDTPYGSRTVEDVEPGGSVYRAFPARTGSVPAGEATVTGTATISGEEVSATERVGYDAFDCG				NA	NA	NA	NA	NA
AK001_02757	1248	arcA	COG2235	Arginine deiminase	GTGACAGACCTGACGCCGACCCTCGGCGTGCACTCGGAGGTGGGTCGGCTCCGCAAGGTTCTGGTCTGCCGGCCGGGCCTGGCGCACGAGCGGCTGACGCCCAGCAACTCCGACGACCTGCTGTTCGACGACGTCATGTGGGTGGAGGCCGCCCAGCGCGACCACGCCGACTTCGTCGACGAGCTGACCGTCCGCGGGGTGGAGGTCGTCGAGCTGCACGACCTGCTCGCGCAGACGATGGCGGACCCGCAGGCCCGCTCGTGGCTGCTGGACCGCAAGGTGGTCCCGAACCGGGTCGGCCTGGGGCTCGTGGAACCCGCGCGGGCCTACCTGGACGGGCTGGCGCCGGCAGAGCTGTCCCGATACCTCGTCGGCGGGCTGTCCACCGCCGACCTGCCCGACGACTACCGCACCGGCTACGTGTCCCTGGCCCACGAGTCGCCGGACGCCCGCGAGTACCTGCTCCCGCCGCTGCCCAACACGCTCTACACCCGGGACACCACGTGCTGGATCTACGGGGGCCTCACGCTCAACCCGCTGTACTGGCCGGCGCGCAAGGAGGAGACGCTGCTGATGAAGGCGGTCTACGCCTTCCACCCCGACTACCGCGACGCGACGGTGTGGTGGGGCGACCCGGAGGTCGACTGGGCCCAGGCCTCCCTGGAGGGCGGCGACGTCATGCCGGTCGGCGGCGGCGTCGTGCTCGTGGGGATGAGCGAGCGCACCTCGCGCCAGGCCATCAGCCAGCTCGCCAAGGCGCTGTTCGACGCCGGGGCGGCGCAGCAGGTGGTGGTGGCCGGCATGCCGCGGCTGCGGGCGGCGATGCACCTGGACACCGTGTTCACCTTCGCCGACCGCGACCTGGTGACCGTCCACCCGCGGATCGTCGACGGCATCCACCCCTACGTGCTCTACCCGAGCGACCGGTCGCCCGGCGTCGAGGTGGTCGACGCCCGGGGCAAGTCCTTCGTCGACGTCGTCGCGGAGGCGATGGGCCTGCCGCGCCTGCGGGTCGTGGAGACCGCCGGCGACGTGTACGCCTCCGAGCGTCAGCAGTGGGACTCCGGCAACAACGCCGTCGCCGTCGAGCCGGGCGTGGTGTTCACCTACGACCGCAACACCCAGACGAACGCCGCCCTGCGGAACGCCGGGGTCGAGGTGATCGAGATCGTCGGTGCCGAGCTGGGCCGCGGACGCGGCGGCGGGCACTGCATGACGTGCCCGATCGTGCGCGACCCGCTCGACTGA	MTDLTPTLGVHSEVGRLRKVLVCRPGLAHERLTPSNSDDLLFDDVMWVEAAQRDHADFVDELTVRGVEVVELHDLLAQTMADPQARSWLLDRKVVPNRVGLGLVEPARAYLDGLAPAELSRYLVGGLSTADLPDDYRTGYVSLAHESPDAREYLLPPLPNTLYTRDTTCWIYGGLTLNPLYWPARKEETLLMKAVYAFHPDYRDATVWWGDPEVDWAQASLEGGDVMPVGGGVVLVGMSERTSRQAISQLAKALFDAGAAQQVVVAGMPRLRAAMHLDTVFTFADRDLVTVHPRIVDGIHPYVLYPSDRSPGVEVVDARGKSFVDVVAEAMGLPRLRVVETAGDVYASERQQWDSGNNAVAVEPGVVFTYDRNTQTNAALRNAGVEVIEIVGAELGRGRGGGHCMTCPIVRDPLD	PGPT0020075_168	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020075-arcA-K01478	NA	NA
AK001_02758	405			hypothetical protein	ATGATCGCTGCCGGACTCGTCCTGGCCGCCCTGGCCGCGGCCCTGCACATCTACATCTTCTGGCTGGAGTCGTTCGCCTGGACGACCCGCGCGCGGGCGGTCTTCGGCACGACGGCGGAGCAGGCGGCGGCGACCCGCGAGCTCGCGTTCAACCAGGGTTTCTACAACCTGTTCCTCGCGATCATCGCCGTCGCCGGCATCGTCCTGACGCTGCTGACCGGGCCGTTCGACAGCCCGCGGCCGGACATTGCCGGCGCCTCGCTGATCCTGGCAGGCACGGGCGCGATGCTGGCCGCCGCTCTCGTGCTGCTCGCCTCGTCCCTCCGCCGGTGGCGTGCCGCCGTAGCGCAGGGCACGCTGCCGCTGCTCGCCGTCGTGACGGTCACCGCGACACTCGTGCCCTGA	MIAAGLVLAALAAALHIYIFWLESFAWTTRARAVFGTTAEQAAATRELAFNQGFYNLFLAIIAVAGIVLTLLTGPFDSPRPDIAGASLILAGTGAMLAAALVLLASSLRRWRAAVAQGTLPLLAVVTVTATLVP				NA	NA	NA	NA	NA
AK001_02759	867	mntB_1		Manganese transport system membrane protein MntB	ATGACCCTCGTCGACCTGCTCGTCGAACCCTGGACGTACGACTTCATGGCCCGGGCCTTCGTCACCACGACGATCGCCGCGGTCGTCGCCGCGCTGCTGTCCTGCTGGCTGGTGCTCGTCGGTTGGTCCCTCATGGGCGACGCGGTCTCCCACGCGGTGCTGCCCGGCGTCGTCCTCGCCTACATCCTGGGCGCCCCGTTCGCCCTCGGGGCGCTCGTGTTCGGCGGTCTGGCGGTGGTGCTCATCGGGGCGGTCCGGGACACCGGCCGGGTCAAGGAGGACGCGGCCATCGGCATCGTGTTCACGACCCTCTTCGCCCTCGGGCTGGTGCTGGTCTCGGTGACCCCCAGCCAGACCGACCTGAGCCACATCATCTTCGGCAACGTCCTGGGGATCTCGTCGTCCGAGCTGCTGCAGGTGGCCGTGCTCGCCGTCGTCGGCTCCGCGGTGCTGCTGGTCAAGCGGCGGGACCTGGTGCTCTTCGCCTTCGACCCCACCCACGCCCACGCGATCGGGTTGTCCACCCGGCGGCTGTCCGCGCTGCTCCTGGGCGTGCTCGCCCTGACCGCCGTCGTGACGCTGCAGGTCGTCGGCGTGATCCTCGTCGTGGCGATGCTCATCATCCCCGGCGCGACGGCCTCGCTGCTCACCCAGCGGTTCGGCCGGATGCTGGTGCTGGCGCCGACGATCTCGGCGCTGTCCTCGATCGTGGGGATCTACCTGTCGTACTGGCTGGACGCCGCCTCGGGCGGGATGGTCGTGCTGGTGCAGGGGGCGGTCTTTGCCGTCGTGCTGCTGGCCGGTCCGCGTTCCGCGCTGCTGCGCGGGCGCGCACGGAGGCGCGTCAGGGCACGAGTGTCGCGGTGA	MTLVDLLVEPWTYDFMARAFVTTTIAAVVAALLSCWLVLVGWSLMGDAVSHAVLPGVVLAYILGAPFALGALVFGGLAVVLIGAVRDTGRVKEDAAIGIVFTTLFALGLVLVSVTPSQTDLSHIIFGNVLGISSSELLQVAVLAVVGSAVLLVKRRDLVLFAFDPTHAHAIGLSTRRLSALLLGVLALTAVVTLQVVGVILVVAMLIIPGATASLLTQRFGRMLVLAPTISALSSIVGIYLSYWLDAASGGMVVLVQGAVFAVVLLAGPRSALLRGRARRRVRARVSR	PGPT0004345_44	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004345-mntB1-K11602	NA	NA
AK001_02760	762	mntB_2	COG1121	Manganese transport system ATP-binding protein MntB	GTGAGCGGCGCCGACGGCGCGCCCGCCCTCGAGGCCGACGGCGTCACCGTCCGGTACGGCGACGTGCTCGCCCTGGACGGTGTCACGCTCCGCCTCGGCCGCGGCACCGTGTGCGGGCTGATCGGGATGAACGGCTCGGGCAAGTCCACGCTGTTCAAGGCGCTGCTCGGCATGGTCGACCTCACCGCCGGCACGGTGCGGGTCGACGGCGGCACCCCGGCGCGTGCCCGCCGCAGGGGGGCGGTGGGCTACGTGCCCCAGACCGAGGCCGTCGACTGGGCCTTCCCCGTCTCGGTGCGGGACGTGGTGATGATGGGCCGGTACGGCCACCTCGGGATCACACGCCGACCGCGACCGGCCGACCACGAGGCGGTCGAGGCCGCGCTGGAGCGGGTGGAGCTGGCGGACCTGGCCGACCGCCAGATCGGACAGCTCTCCGGGGGCCAGCGCAAGCGGGCGTTCGTCGCCCGCGGCATCGCCCAGGACGCGCGCACGATGCTGCTCGACGAGCCGTTCGCCGGGGTCGACAAGCGCTCGGAGGCCACCATCGTGCGGCTGCTGCGCGAGCTGGCCGCCGACGGCAGCACCGTGCTCGTCTCCTCCCACGACCTGCACGCCCTGCCGCAGCTCGCCGACGAGGCGGTCCTGCTGCTGCGCCGCGTGCTGTTCCACGGGTCCGTCGCCGAGGCGCTGGAGCCGGACAACCTGGCGCGCACCTTCGGGCTCGACGTCACGGACGCCCGCGGCGGTGAGGCCGCATGA	MSGADGAPALEADGVTVRYGDVLALDGVTLRLGRGTVCGLIGMNGSGKSTLFKALLGMVDLTAGTVRVDGGTPARARRRGAVGYVPQTEAVDWAFPVSVRDVVMMGRYGHLGITRRPRPADHEAVEAALERVELADLADRQIGQLSGGQRKRAFVARGIAQDARTMLLDEPFAGVDKRSEATIVRLLRELAADGSTVLVSSHDLHALPQLADEAVLLLRRVLFHGSVAEALEPDNLARTFGLDVTDARGGEAA	PGPT0004340_136	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004340-mntA1-K11603	NA	NA
AK001_02761	918		COG0803	putative periplasmic iron-binding protein	ATGGTGTCGATCGCGGCTGCCGCCGCCCTGCTCACCGCGTGCACCACGGCGTCGGGCCAGGACGCCACCGACGACGACCGCCCCGTCGTGCTGACCACCTTCACGGTGCTGGCCGACATCGCCGAGAACGTCGGCGGCGACCACCTGCGGGTCGAGTCGATCACCAAGATCGGCAGCGAGATCCACGGGTACGAGCCGACGCCGGGGGACATCCGGCGGGCTTCCGACGCCGACCTGATCCTCGACAACGGGCTCAACCTCGAGGCGTGGTTCGCCCAGTTCGTGGCCGACGCCGACGCCCCGCACGTCGTCGTCTCCGAGGGGGTCGAGGTGCTCGACATCGCGGACGGCGCCTACGGCGGCACGCCCAACCCGCACGCGTGGATGAGCCCGCTGAACGTCCAGACCTACGTCGAGAACATGGTCACCGCGTTCTCCGACCTCGCCCCGGAGCACGCCGACGACTTCGCCGCGAACGCCGCGGCCTACGACGCCGAGCTGCAGCAGGTGCAGGACGACCTCGTCGCCGAGGTCGAGACCCTGCCGGCCGAGCAGCGTGCGCTCGTGACCTGCGAGGGCGCCTTCTCCTACCTCGCGCGCGACGCCGGGCTGAGCGAGCACTACCTGTGGGCCGTCAACGCCGAGCAGCAGGCCACCCCGCAGCAGGTGGCCGGGGTCATCGAGGTCGTCGAGGCGCAGGACGTGCCGGCCGTGTTCTGCGAGTCCACGGTCTCCGACGCCGCCATGCAGCAGGTCGTCGAGGCCACGGGCGCGGCGTTCGGCGGCACGCTGTACGTCGACTCCCTGTCCGAGCCCGACGGTCCCGTGCCGACCTACCTCGAGCTGATCCGCCACGACGCCGACGTCATCGTCGCCGGGCTCACGGGCGCCACCGACGCAACCGGGGCGGACTCGTGA	MVSIAAAAALLTACTTASGQDATDDDRPVVLTTFTVLADIAENVGGDHLRVESITKIGSEIHGYEPTPGDIRRASDADLILDNGLNLEAWFAQFVADADAPHVVVSEGVEVLDIADGAYGGTPNPHAWMSPLNVQTYVENMVTAFSDLAPEHADDFAANAAAYDAELQQVQDDLVAEVETLPAEQRALVTCEGAFSYLARDAGLSEHYLWAVNAEQQATPQQVAGVIEVVEAQDVPAVFCESTVSDAAMQQVVEATGAAFGGTLYVDSLSEPDGPVPTYLELIRHDADVIVAGLTGATDATGADS	PGPT0004350_101	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004350-mntC1-K11601	NA	NA
AK001_02762	2787	ctpF	COG0474	putative cation-transporting ATPase F	ATGGGATCCGCTGCCGCGGCCACGTCACCGCCCGAGTCGCCCTGGGCGTCACCGCCGCAGGCGGTGCTGAGCGCCCTGGGCACGGGGGCGGCGGGCCTGCGGACCGACGAGGCCGCCGAGCGGGTCGCCGTCGTCGGGCCGAACCGCCTCGCGACCGTGCGGCGTGACCCCCTGTGGAAGCGGGTCCTGGTCCACTTCGACGACATCCTCATCGAGATCCTGCTCGTGGCGGCGCTGCTCAAGGCGTTCCTGCGCGACTGGGTCGACGTGACCGTCATCCTCGCGGTGGCGGTGATCAACGCGGGGGTCGGGTTCGTCCAGGAGGGGCGGGCGGAGAAGGCCCTGGAGGGGATCCGCCGGATGCTGTCGGCCTCGGCCCAGGTGCGGCGCGACGACGCCTGGACCGAGATCCCGGCCGACGGCGTCGTCCCCGGCGACCTGCTGCGGGTGAGCTCGGGCGACCGGGTCCCGGCCGACGTCCGCCTGCTGCGCGCGACCAACCTGCGCGTCGACGAGTCCGCGCTGACCGGCGAGTCGGTGCCCACCACCAAACGGGTGGACGCCGTCGCGGCCGACGCCGGGGTCGGGGACCGGACGAGCATGCTGTTCTCCGGCACCCTCGTCGCCGCGGGGCAGGGCGTGGGGGTCGTCACCGCCACCGGGCGGTCGACCGAGCTCGGGCGCATCCAGACCCTCATCGCCGACGTCCAGAGCCTCGAGACGCCGTTGACCCGCCGCCTCGACCGGTTCGGCCGCATCCTGGCGGTGGTCATCGTCGCCATGGCGGTCCTCATGGTGGCCGTCGGGTGGTTCGTGCACGGGTTCGGCGTCGACGAGCTGGTCTCGGCGTCCATCGGCTTCGCGGTGGCCGCCATCCCGGAAGGTCTGCCGGCCCTGGTGACGATCACGCTGGCGCTGGGCGTGCAGCAGATGGCGCGGCGCCGGGCGATCACGCGCAAGCTGCCCGCCGTCGAGACCCTCGGTTCGGTGACCACGATCTGCTCGGACAAGACGGGCACGCTGACCAGGAACGAGATGACGGCCCGGACGGTGCGGACCGCGGCCCGCTCCTTCCTCGTCTCCGGCGCCGGGTACGCGCCGCACGGGATCGTCGAGCTCTCGCCCGACCACGGCGGTCGCCCCGCCGACCCGGCCGCGGACCCGGACCTCGTGGCCGTGGCCGAGGTCATGATGCTGTGCAACGACGCCCGCATCGTGCGCGACGGCGCGACCGACGACGGGTGGGCGCTCGTGGGCGAGCCCACCGAGGGCGCCCTGCGCACGCTCGGCCACAAGACCGGCGTCGACCACGCGGGCTGGCGGCGCGTGGACCTCGTGCCCTTCGAGTCCGACACCAAGTTCATGGTCACGCTCGACGAGGACCCGGCGGGCGGGCTGCACGTGCACCTCAAGGGCGCCCCGGACCACGTGCTCGACCGCTGCGCGACCCAGGTCGGCGCCGACGGCGCACCGGCCCCGCTCGACCGCGCGTTCTGGGACGCCCAGATCGAGGCGCTCGGCGCACAGGGGCTGCGGGTGCTGGCCGCGGCCCGGTCCGACGCGCCGGAGGGGACCACGGAGGTCGACGTGCCCGACGTCGACGGCGGCCTGGAGCTGTGCGGCCTGGTGGGGATCGTCGACCCGCCGCGACCGGAGGCCGTCGACGCGATCGCCCGGTGCCGTGACGCCGGGGTCCAGGTCACGATGATCACCGGCGACCACGCGGGCACCGCGCTCGCCGTCGCCCGGGAGATGGGGATCCATGGCGGTCCCGTGCCGTCCGACACGATGCCGTCCGACACCGTGCTGACCGGGGCGGAGCTGGAGGCGATGAGCGCCGACGAGCTGAGCGCCGTCGTCCAGGACGTCCACGTCTACGCACGCACCAGCCCCGAGCACAAGATCCGCATCGTCCAGGCGCTGCAGTCGCACGGCGAGGTCGTGGCGATGACCGGCGACGGCGTCAACGACGCGCCGGCGCTGACCCAGGCCGACGTCGGCGTGGCCATGGGGATCAAGGGCACCGAGGCCACGAAGGAGGCGGCGGACGTCGTGCTGGCCGACGACAACTTCGCCACCATCGAGCGGGCGGTGGAGGAGGGGCGGCGGATCTACGACAACATCCGCAAGTCGGTGCTGTTCCTGCTGCCCACCAACGGCGCCGAGTCGCTGGTGATGCTCGTCGCGGTGCTGTTCGGTCTCGCGCTGCCGCTCGAGCCGGTCCAGGTGCTGTGGATCAACCTCATCACGGCGATCACCCTGACCCTCGCCCTGGCCTACGAGCCCGCCGAGCAGGACATCATGGCGCGCCCGCCCCGACCGGCGGACGCCCCGATCCTGGACGGGGTCCTGATGCGCCGCATCGTGCTCGTCTCGCTGCTCATCGGCGGGGCGACCCTGTTCGTCTTCTACCGAGCGCGGGCCGCCGGCGTCCCCGTGGCGGAGGCGCAGACGACGGCGGTGACGATGCTCGCCCTGGGGCAGCTCGCCTACCTGTTCAACTGCCGCTTGCTGGACCGCAGCTCGCTGACGCTCGACGTCCTGCGCGGGAACCCTGCGGTGTGGATCTCCGTGACGGTGCTGCTCGTGCTGCAGGCGGGGTTCGTCTACGCCCCGTTCATGCACACCTGGTTCGGGTCGGCGCCGCTCGGGCCCACCGAGTGGGCGTCGGCGGCCGCGCTCTCCGGTGTCGTCTTCCTGCTGGTCGAGGGGGCCAAGGCGTGGGGGCGTACGCACGGCCGGGGGAGTGCGGCGCCCCGTCGCGCGCGCGCCCGGTCGATGTCCTGA	MGSAAAATSPPESPWASPPQAVLSALGTGAAGLRTDEAAERVAVVGPNRLATVRRDPLWKRVLVHFDDILIEILLVAALLKAFLRDWVDVTVILAVAVINAGVGFVQEGRAEKALEGIRRMLSASAQVRRDDAWTEIPADGVVPGDLLRVSSGDRVPADVRLLRATNLRVDESALTGESVPTTKRVDAVAADAGVGDRTSMLFSGTLVAAGQGVGVVTATGRSTELGRIQTLIADVQSLETPLTRRLDRFGRILAVVIVAMAVLMVAVGWFVHGFGVDELVSASIGFAVAAIPEGLPALVTITLALGVQQMARRRAITRKLPAVETLGSVTTICSDKTGTLTRNEMTARTVRTAARSFLVSGAGYAPHGIVELSPDHGGRPADPAADPDLVAVAEVMMLCNDARIVRDGATDDGWALVGEPTEGALRTLGHKTGVDHAGWRRVDLVPFESDTKFMVTLDEDPAGGLHVHLKGAPDHVLDRCATQVGADGAPAPLDRAFWDAQIEALGAQGLRVLAAARSDAPEGTTEVDVPDVDGGLELCGLVGIVDPPRPEAVDAIARCRDAGVQVTMITGDHAGTALAVAREMGIHGGPVPSDTMPSDTVLTGAELEAMSADELSAVVQDVHVYARTSPEHKIRIVQALQSHGEVVAMTGDGVNDAPALTQADVGVAMGIKGTEATKEAADVVLADDNFATIERAVEEGRRIYDNIRKSVLFLLPTNGAESLVMLVAVLFGLALPLEPVQVLWINLITAITLTLALAYEPAEQDIMARPPRPADAPILDGVLMRRIVLVSLLIGGATLFVFYRARAAGVPVAEAQTTAVTMLALGQLAYLFNCRLLDRSSLTLDVLRGNPAVWISVTVLLVLQAGFVYAPFMHTWFGSAPLGPTEWASAAALSGVVFLLVEGAKAWGRTHGRGSAAPRRARARSMS	PGPT0013990_3133	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CALCIUM_TRANSPORT,PGPT0013990-yloB|ctpA-K01537	NA	NA
AK001_02763	1728	cdr_2		Coenzyme A disulfide reductase	ATGAAGATCGTCATCGTGGGTGGAGTCGCCGGCGGCATGAGTGCCGCCGCCCGGGCTCGGCGGCTCGACGAGAGCGCCGAGATCGTCGTGCTGGACCGCGGCGAGCACGTGTCGTGGGCCAGCTGCGGCCTGCCGTACCACGTGGGAGGCGAGATCCCCGAGACCGACGACCTCCTCGTCCAGACGCCGGACAAGCTCCGCGCCGCGCTGAACCTCGACGTGCGCACCCGGCACGACGTCGTCGGCCTCGACACCGCGTCCCGCCGGCTCACCGTGCTCACCGACGACGGCACCGACACCGTCGACTACGACGCGCTGATCCTCTCCCCCGGCGCCCGGGCGGTCCGCCCGCCGCTGGACGGGCTCGACTCCTCGCGCGTGCACACCCTGCGCTCCATCGACGACGCCACCGCGCTGCGCGAGCAGCTCGACCGCGGCGCCGGGCGCGCCGTCGTGCTCGGCGCCGGGTTCATCGGCCTCGAGGCCGCCGAGACCCTCGCCGCGCGCGGGCTGGACGTGACCGTCGTCGAGCTCTCCTCCCACGTGCTGCCCCCGCTGGAGCACGAGGTCGCCTGGCGCGTCACCGCCGAGCTCGAGCGCATCGGCGTCACCGTGCGCACCGGCCTGGCCGCGACAGCCGTCGAGCAGGGCGCCGACCACGACACCGTCGTGCTCGCCGACGGCACGCGCCTGCCGGCCGACGTCGTCGTGCTGTCCGTGGGCGTGCGCCCCGACACGGCCGTCTTCGAGCAGGCCGGCATCGCCACCGACCGTGGCGCCATCATGATCGACGAGCACGGCCGCACCAACGTCGACGGCGTGTGGGCCGTCGGGGACGCCGTCACGAGCACCGACGCCGTCACCGGGCTGCGTCGCCCCGTCGCGCTCGCCGGCCCGGCCAACCGTGCCGGCCGCCTCGTGGCGGACGACATCCTGCGCCCGGCGACCGCCCGGCCGCTGCCGCCCACGCTGTCCACCGCCGTCGTGCGCGTCGGGGAGCTGACCGCCGCCGCCACCGGTGCCGACCGTGCCGCGCTGCGCGCCACCGACGTCTACTTCCACACGCTGCACCTGCACCCCAGCCACCACGTCGGCTGGTTCCCCGGGGCGGAGCAGATCCACATGATGATCCACTTCCGCGCCGGCGACGGGGTGCTGCTCGGCGCCCAGGCCGTCGGCCGCGCCGGTGTGGACAAGCGGATCGACGTGCTGGCCACCGCGATCCGCGGCGGCATGACCGTGGCCGACCTCGTCGACCTCGACCTGGCCTACGCCCCGCCGTACGGGGCGGCCAAGGACCCGGTGAACCTCGCCGGGATGGCCGCGAGCAACGTGCTCGACGGCACCCTGCACATCTGGCACGTCGACCAGCTCGAGGAGGTCCGGCGGGACGCCCTCGTGCTGGACGTCCGCAGCACGGCCGAGTTCGCCTCCGGACACATCCCCGGCTCGCTCAACATCCCCCACACCGAGCTGCGCGAGCGGCTCGACGAGGTCACCGCCGCGGCGAAGGGCCACCCGGTCCGCGTCCTGTGCGCCTCGGGGGTCCGCTCGAACATCGCCCACCGCGTGCTCGCCCAGGCCGGGTTCGACTCGGCCTCGCTGTCCGGCGGCATGCTCACGCTGCGCGCGGCCCTCGGCCAGGCGGCCGACGACCTGCTCATCAGCACCGCACCCACCGAGACCGCCGAGGCCGCCGAGGCCGCCGAGCCCCGCACGGTGCGCTGA	MKIVIVGGVAGGMSAAARARRLDESAEIVVLDRGEHVSWASCGLPYHVGGEIPETDDLLVQTPDKLRAALNLDVRTRHDVVGLDTASRRLTVLTDDGTDTVDYDALILSPGARAVRPPLDGLDSSRVHTLRSIDDATALREQLDRGAGRAVVLGAGFIGLEAAETLAARGLDVTVVELSSHVLPPLEHEVAWRVTAELERIGVTVRTGLAATAVEQGADHDTVVLADGTRLPADVVVLSVGVRPDTAVFEQAGIATDRGAIMIDEHGRTNVDGVWAVGDAVTSTDAVTGLRRPVALAGPANRAGRLVADDILRPATARPLPPTLSTAVVRVGELTAAATGADRAALRATDVYFHTLHLHPSHHVGWFPGAEQIHMMIHFRAGDGVLLGAQAVGRAGVDKRIDVLATAIRGGMTVADLVDLDLAYAPPYGAAKDPVNLAGMAASNVLDGTLHIWHVDQLEEVRRDALVLDVRSTAEFASGHIPGSLNIPHTELRERLDEVTAAAKGHPVRVLCASGVRSNIAHRVLAQAGFDSASLSGGMLTLRAALGQAADDLLISTAPTETAEAAEAAEPRTVR				NA	NA	NA	NA	NA
AK001_02764	273			hypothetical protein	ATGTCGACCCAGGACGCCGCCGCCCAGCGCAAGATCGTCAACCGGCTCAAGCGCGCCCGCGGGCAGCTCGACGCCCTCATCACCGCCGTCGAGGACGGCAAGAGCTGCCGCGACGTCGTCACCCAGCTCTCCGCCGTCGCCAGCGCGCTCGACAAGGCCGGCTACGCCGTCGTCGCGAACGCGATGCAGGAGTGCCTCGTCGACCCCGACCACACCACCGAGGACGGGCTCACGCCCGCCGAGCTCGAGAAGCTCTTCCTCACCCTCGCCTGA	MSTQDAAAQRKIVNRLKRARGQLDALITAVEDGKSCRDVVTQLSAVASALDKAGYAVVANAMQECLVDPDHTTEDGLTPAELEKLFLTLA	PGPT0004175_1363	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600	NA	NA
AK001_02765	168			hypothetical protein	ATGTGCTTCCCCGCCACCTGCTCCACCTGCGGCAAGACCACCTGGAGCGGCTGCGGCCAGCACGTCGCCGACGTGCGCCGCTCCGTGCCCGCGTCCCAGTGGTGCGACGGGCACGACGACGCACCGAACGCCGGCGGGAGCTTCTTCTCGCGCCTCTTCAACCGCTGA	MCFPATCSTCGKTTWSGCGQHVADVRRSVPASQWCDGHDDAPNAGGSFFSRLFNR				NA	NA	NA	NA	NA
AK001_02766	345			hypothetical protein	ATGTGGGACAGCGTCCTGCTGGCGCACGCCGACCGCTCCCGGGTGCTGCCCGAGTCGCTGCGCGGCCAGGCGATCCGCCGCAACGGCGACACGCTCGCGACCGTGCTGGTGGACGGGCGCGTCGTCGGGTTCTGGCGGGCGACGGACGACGGTGTCGACGCCGCCGTCGTCGAGCCGCTGCCCGACGCCGCGTGGCGAGAGCTGGCCGCCGAAGCCGCCCGCCTGCAGGGGATGCTCGCCGACCGGGAGCCCGCGGTGTTCCGCCGCTACCGGCGGTGGTGGGACCGGCTGCCCACGGCCGGGGTGCGGCGCCTCGCCGACGTCGGCGACACGACCTCGGCCTGA	MWDSVLLAHADRSRVLPESLRGQAIRRNGDTLATVLVDGRVVGFWRATDDGVDAAVVEPLPDAAWRELAAEAARLQGMLADREPAVFRRYRRWWDRLPTAGVRRLADVGDTTSA				NA	NA	NA	NA	NA
AK001_02767	1008	degA_8	COG1609	HTH-type transcriptional regulator DegA	GTGGCGGCGGAACAACCCGAGGTGCCGCTCGCGGTCGTGGCGCGCGAGGCCGGCGTGTCCGTGCCGACGGTGTCCAAGGTCCTCAACTCGCGCACGGACGTGGCCGTGGCGACCCGGGAGCGCGTCACCGCCGTCCTGCGCCGGCACGGCTACGCCGTCCGGCCGCGGCGTCGGCGGGCGACCGGCATGATCGACGTGCGGATCGTCGACCTGGAAGGCACCTGGTCCGAGGCCGTCGTGCGCGGCGCGGTCGCCGGGGCGCGCCGGCTCGGGCTCGACGCGGTGCTCGCCGTCGAACCCGATCCGGACGACTGCAGCGCCTGGGTGCGTCACGCCCTGGACCGGGGGACCGACGGCCTGGTGAGCGTCGTCGCCGTCCCGGACGCCGAGGCCCGCCAGGCGCTGGCGGAGTCCGGCACGCCGCTGGTCGTCGTCGACCCCCGGCAGCGCCCGCCCGAGGGCATGCTCTCGGTCAGTGCGACCAACTTCCAGGGCGGCCTGGAGGCCACCGCCCACCTGCTGTCCCTCGGCCACCGGCGGATCGCCACCATCACCGGCGCCCTCGAGCAAGACAACGCCATCGCGCGCCTGGCCGGCTACCGCGCGGCGATGCTGCAGGCTCGGGTCGAGGTGGACGACGACCTCGTGGTCGCCGGATCGTACGGCGTCACGGCCGGGTACGACGGCGTGCAGCGGCTCCTGGAGCTCACCGACCCGCCCACCGCGATCTTCGCCAGCAGCGACGACACCGCGCTGGGCGCCCTGCACGCTCTGCGCGAGCGGAGCCTGACGGTGCCCGACGACGTCTCGCTCGTCGGCTTCGACGACCTGCCGGTGGCGCCGTGGATCGACCCGCCGCTGACGACGGTCCGACAGCCGCTGGCCGAGATGGGGGCCACCGCCGTCGACCTCGTGCACCGGGCGCGCAGCGGGAGCGGGCACACGCTGCGCACCGAGCTCGCCACGAGCCTCGTCGTGCGGGGATCGACGGTGCCGCCCCGGGGCTGA	MAAEQPEVPLAVVAREAGVSVPTVSKVLNSRTDVAVATRERVTAVLRRHGYAVRPRRRRATGMIDVRIVDLEGTWSEAVVRGAVAGARRLGLDAVLAVEPDPDDCSAWVRHALDRGTDGLVSVVAVPDAEARQALAESGTPLVVVDPRQRPPEGMLSVSATNFQGGLEATAHLLSLGHRRIATITGALEQDNAIARLAGYRAAMLQARVEVDDDLVVAGSYGVTAGYDGVQRLLELTDPPTAIFASSDDTALGALHALRERSLTVPDDVSLVGFDDLPVAPWIDPPLTTVRQPLAEMGATAVDLVHRARSGSGHTLRTELATSLVVRGSTVPPRG	PGPT0017992_9498	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02768	1296	dasA_2	COG1653	Diacetylchitobiose binding protein DasA	GTGAACAGCACATCGCGCCGCGCCGCAGCGGCGACCGCCTCGACACTCGTCCTCACGCTGAGCCTGACGGCCTGCGGACGGGACGACGCCGGCACCGGCTCGGGCGGGTCCGACGCCGCCGACGAGCCGGGCACCCAGATCTCCGAGGGCCCCGCGTCCGGGACCGTGGAGGTGTGGGCCATGGGCACCGAGGGCGAGCTCCTGCCCGAGCTCGCCGAGCAGTTCGAGGCCGACAACCCCGACGTCACCGTCGAGGTCACGCCCGTGCCCTGGGAGTCCGCCGTGCAGAAGATCAACACCGCGATGGCGACGGGCGAGGTCCCGGACGTCCTGCAGGCCGGCACCACTCTCATGAGCGGTTTCGTCGAGCTGGGCGGGCTGGCCGAGACACCCGACAGCATCGACTCCGAGGCGTTCTTCCCCGGCGCCTGGGACACCACCGTCGTCGACGGCACCTCCTACGGCGTCCCCTGGTACGTCGAGACACGGGTCCTGTACTACCGCACCGACCTCGCCGAGCAGGCCGGCGTCGACGAGCCGCAGAGCTGGGACGAGCTCACCGCGTTCGCCGCCGGGATGCAGGACGCCGGCGCCGAGCACGGCATCGCCCTGCAGACCAACGGCGACGGCACCGCGCTGATGTACTTCCCGTTCTACTGGCAGGCCGGCGGCGAGATCGTGGACGACGCCGGCGAGTTCACGCTCGCCGACGATGCCCAGGTCGAGGCGCTCGACTTCTACTCCTCGTTCATGGCCGACGGGCTGGCCCCGCAGACCCTCGTCGAGGACGAGAAGGTCCAGGACTTCATCGACGGCGACCTCGGAGCCTTCGTGTCGGGGCCGTGGGAGCGGTCGAACCTGCTCACGACCGCCGGCGACGACTTCGCGGACAAGTTCGCCGTCACCGCGCTGCCCCCGGACGAGCAGGACGCCTCGTTCATCGGCGGTTCCAACCTCGCCGTGACGGCGGAGGCCGCCAACCCTGACGCCGCGTGGAAGTTCGTCGAGTTCGCCACCGATCCCGAGGTCCAGGTGGACTGGTTCGAGATCTCGAACGACCTCCCCGCCGTCCAGGCCTCCTGGGACGACGAAGCCCTGGCCGGGGACGAGTCGCTCGCCGTCTACGGCGAGGCGCTCGAGACCGCTCGCTCCACGCCCGCGCTGCCCACCTGGTCCGAGATCGAGCACGAGCTGAACCTCGTCGTCGAACAGGTGGTCAACGGCCAGCTCGAGCCCGAGGAGGCGGCCCAGCAGATGCAGGATGCCGCCACCTCCATCGGCGACGGGCTGGGCTGA	MNSTSRRAAAATASTLVLTLSLTACGRDDAGTGSGGSDAADEPGTQISEGPASGTVEVWAMGTEGELLPELAEQFEADNPDVTVEVTPVPWESAVQKINTAMATGEVPDVLQAGTTLMSGFVELGGLAETPDSIDSEAFFPGAWDTTVVDGTSYGVPWYVETRVLYYRTDLAEQAGVDEPQSWDELTAFAAGMQDAGAEHGIALQTNGDGTALMYFPFYWQAGGEIVDDAGEFTLADDAQVEALDFYSSFMADGLAPQTLVEDEKVQDFIDGDLGAFVSGPWERSNLLTTAGDDFADKFAVTALPPDEQDASFIGGSNLAVTAEAANPDAAWKFVEFATDPEVQVDWFEISNDLPAVQASWDDEALAGDESLAVYGEALETARSTPALPTWSEIEHELNLVVEQVVNGQLEPEEAAQQMQDAATSIGDGLG	PGPT0016545_7474	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_02769	948	lacF_7		Lactose transport system permease protein LacF	GTGGCGCTGCGCACCGACGCGCCGCCGGTGACCGGCGGCCCCGCGACGCGGGGCCGCCGCCCGGAGAGCGCCCGACGACGCCGCCGCGGGTACGCGGCCTGGGGCTTCGCCCTGCCGTTCACGGTCCTGTTCGCCGTCTTCATGATCCTGCCGGTGGGCGCCTCGCTGTACATGGCGTTCACCGACATGCGCGGCGCCGACCTGCGCTCGCCGCTGGCGGTGAACTTCGTCGGCCTCGACAACTTCGTCACGGCCGTCACCGACCCGCAGTTCCAGCAGGCCGCCGGCAACACCGTGTACTTCGTCGGGGTGGCGATGCCCCTCACCCTCGGCATCGCGCTGCTGCTCGCCGCGCTGCTCAACTCCGGGCTCACCTGGTTCCGCTCGGTGTTCCGCGTCGGGTTCTACGCGCCGGTCGTGACCTCGATCGTCGCGGTCGCTGTCGTCTGGCGCTTCCTGCTGCAGCCCGACTTCGGGCTGGTCAACACCGTGCTCGGGTTCGTCGGGATCGACGGTCCGGACTGGCTCACCGACCCCACCTGGGCGATGCCGTCGCTCATCATGCTCGCCGTCTGGCGCAACGTGGGGTTCTCCATGGTGATCCTGCTCGCCGGGCTGCAGGGCATCCCGAAGGACCTGTACGAGGCGGCCGCCCTGGACGGTGCCGGACCGGTGCGCACCTTCCGCTCCGTCACCGTGCCCCTCCTGCGCCCCACCCTGCTGTTCTGTGCCGTCATGGCCGGCATCGCCTACCTGCAGTTCTTCGAGGAGCCGTTCGTCATGACCCAGGGCGGCCCGCTCGGAGCCACCAACTCGGTGGCGTACGAGATCTACAACCAGTTCGGGTTCGGCGACTACGGACTGTCCGCCGCGATGAGCTACCTGCTGTTCGTCGCCATCGCGATCCTGTCCTTCCTCCAGTTCCGCCTGCTGCGGCCCAAGAACTGA	MALRTDAPPVTGGPATRGRRPESARRRRRGYAAWGFALPFTVLFAVFMILPVGASLYMAFTDMRGADLRSPLAVNFVGLDNFVTAVTDPQFQQAAGNTVYFVGVAMPLTLGIALLLAALLNSGLTWFRSVFRVGFYAPVVTSIVAVAVVWRFLLQPDFGLVNTVLGFVGIDGPDWLTDPTWAMPSLIMLAVWRNVGFSMVILLAGLQGIPKDLYEAAALDGAGPVRTFRSVTVPLLRPTLLFCAVMAGIAYLQFFEEPFVMTQGGPLGATNSVAYEIYNQFGFGDYGLSAAMSYLLFVAIAILSFLQFRLLRPKN	PGPT0016535_2502	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_02770	903	araQ_5	COG0395	L-arabinose transport system permease protein AraQ	GTGACCACCACACCCCTGCCCCCGGCGACGACCAGCGCCGCACCGGCGGAGCTGCCCGCACCATCCCGCGGCGATCGCCGTCGTCGGTTCGGCCCGCGCGCCCTGCTGCTCAACGGCGCCCTGCTCGTCGGGCTCGTCGCCTCGCTCGGCCCGCTCGTCTGGATGGTCCTGTCCTCGGTCAAGCCCGAGGGCGAGATCCGTCAGTTCCCGCCGACCCTCGTCCCCCAGGACGTGACGCTCGAGAACTACACGGCGCTGTTCGACCGGATGAACTTCCCGCAGTTCTTCCTGAACTCCGTGATCGTGGCGCTCGCCGTCACCGTCGGCGCGGTGCTGTTCAGCGCCATGGTCGGCTACGCCCTGGCCAAGATCGACTTCCCCGGGCGCAAGGCGCTGTTCCTGCTCATCATGGCCACGCTCATGGTGCCCGGGACCATCACCTTCGTGCCGCTGTTCGTCCTGGTGGCGAACCTCGACCTGATCAACACCTACGCGGCGCTCATCCTGCCGTTCCTGGCCGCACCCTTCGGCGTGTTCCTGATGCGCCAGTTCATGCTGGACATCCCCGACGAGCTGCTCGACGCCGCACGGGTCGACGGTGCCGGGGAGTTCCGGACCTTCTTCCGCATCGTCCTGCCGCAGACGGGGCCGGCCCTGGCCACGCTGGGGATCCTGACCTTCCTCGGGTCGTGGAACAACTTCCTGTGGCCGCTCGTGGCCGTGCAGTCCGCCGACATGTACACGCTGCCCGTCGCGCTCGCCCTGTACTCCACCGGCCAGAACACCGTCCAGTACGGCCTGCTGCTCGCCGGGGCCACCGTCATCGTGACGCCGATCCTCGTCGTCTTCCTCGTGCTGCAGCGCCGCATCATCCAGGGCATCGCCACCACCGGCATCAAGTAG	MTTTPLPPATTSAAPAELPAPSRGDRRRRFGPRALLLNGALLVGLVASLGPLVWMVLSSVKPEGEIRQFPPTLVPQDVTLENYTALFDRMNFPQFFLNSVIVALAVTVGAVLFSAMVGYALAKIDFPGRKALFLLIMATLMVPGTITFVPLFVLVANLDLINTYAALILPFLAAPFGVFLMRQFMLDIPDELLDAARVDGAGEFRTFFRIVLPQTGPALATLGILTFLGSWNNFLWPLVAVQSADMYTLPVALALYSTGQNTVQYGLLLAGATVIVTPILVVFLVLQRRIIQGIATTGIK	PGPT0016540_7804	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_02771	1191	bglA		Beta-glucosidase	GTGACCGACGCGACCACGCTGCCCACCGCACCCGACTTCCTCTGGGGCGCATCCACCGCCGCCCACCAGATCGAGGGCGGCAACGTCAACAGCGACTGGTGGGCCAAGGAGCACCAGCCCGGCAGCCTGTGCGCCGAGAGCTCCGGCGACGCCGTCGACAGCTACCACCGCTACGGCGAGGACATCGCGCTGCTGGCCGACGCCGGGCTCAACGCCTACCGCTTCTCCGTGGAGTGGGCGCGCATCGAACCCGCCGAGGGCGAGGTCTCCCGCGCCCAGCTCGACCACTACCGCCGCATGATCGACACCTGCCTGGCCGCCGGCGTCACGCCGATCGTCACGTTGCTGCACTTCACGCTGCCGCGCTGGTTCGCCGAGCGCGGAGGATGGCTGGCACCCGACGCCGTCGACACCTACACCCGGTACGTCGAGACCGTCGCGCCGATCCTCGACGACGTCGAGCGGGTCGTGACCATCAACGAACCCAACATCACCTCGATGATGCTCGGCGCCAGCCGCCGGACGAATCTCGACGCCGCCGGCCTCGCCGCACCCGACCAGCAGGCCTCGGAGGTCCAGGCCGCCGCGCACCGCCGGGCCGTGGAGATCATGCACGGCCTGGGCCACGTGCGTGCCGGCTGGTCGATCGCCAACCAGGTCTTCCAGGCCGCGCCCGGAGCCGAGGAGGCCCGCGACGCCTACGCCTGGCCGCGCGAGGACTTCTTCCTCGAGGTCGCCCGCGACGACGACTTCGTCGGCGTGCAGAGCTACCTGCGCACCATCATCGGCACCGACGGCGAACCCGTCCCGTTCGGCGACGACGTCGAGAAGACGCTGACCGGCTGGGAGTACTACCCCCAGGCCCTCGGCGAGGCGCTGGAGTACTCCCACCGGATCACCGGCGGCGTCCCAATGCTCGTCACCGAGAACGGCATGGCGACCGACGACGACGCCCGTCGCATCGACTACACCCGCGACGCGCTCGCCGGCATGGGACGGGCCATGGCCGGCGGCTGCCGCGTCGAGGGGTACCTGCACTGGTCGCTGCTCGACAACTACGAGTGGATGAGCGGCTTCCGCCCGACCTTCGGGCTGATCGCCGTCGACCGGAGCACGTTCGTGCGCACCCCCAAGCCGAGCCTCGCCTGGCTCGGGAAGGTGGCACGGACGGGCAGCCTCCCGACCACCTGA	MTDATTLPTAPDFLWGASTAAHQIEGGNVNSDWWAKEHQPGSLCAESSGDAVDSYHRYGEDIALLADAGLNAYRFSVEWARIEPAEGEVSRAQLDHYRRMIDTCLAAGVTPIVTLLHFTLPRWFAERGGWLAPDAVDTYTRYVETVAPILDDVERVVTINEPNITSMMLGASRRTNLDAAGLAAPDQQASEVQAAAHRRAVEIMHGLGHVRAGWSIANQVFQAAPGAEEARDAYAWPREDFFLEVARDDDFVGVQSYLRTIIGTDGEPVPFGDDVEKTLTGWEYYPQALGEALEYSHRITGGVPMLVTENGMATDDDARRIDYTRDALAGMGRAMAGGCRVEGYLHWSLLDNYEWMSGFRPTFGLIAVDRSTFVRTPKPSLAWLGKVARTGSLPTT	PGPT0019165_2939	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350	NA	NA
AK001_02772	1551			hypothetical protein	ATGACCAGACGCCGCACCCTCGTGGCCGCGCTCGCGGCCACCGGCGTGGCCCTCGCCGGGATGCCCGCGAGCGCCGCCGACGACCGACCGACCCCGCCCCGCGGCGCCCCGCCCGGCCTGCTGCAGCACTGGGCCGAGGACACCTGGACCTCGTTCGAGGCCCTCGTGGTGGACTCCACGGGCCTGCCGGACGACAACATCGGCGGTGACCTGAGCGCCGAGAGCCGCGGCGGGTACACCTCGCCGACCAACATCGGCGCCTACCTGTGGAGCACCGTCGTCGCGCGCGACACGGGGATCATCGGCGCGGACGAGGCCCGCGAGCGCATGGCGACCACGCTGGACACCGTCGCCGAGCTGGAGAAGCACGACGCCAGCGGCATGTTCTACAACTGGTACGACCCGGCCACCGGCGCCAAGCTCGACGAGCTCGGCGAGGGCGACCCGGTCGAGCCGTTCCTGTCCAGCGTCGACAACGGCTGGCTCGCCACGGGTCTGCTCCTCACCGCGAACGCCGAGCCGTCGCTGGCGGACGAGGCGGACGCGATCCGGGACGGGATGGACTTCGGCTGCTTCTACGACCCGGACGTGAACCAGATCCGCGGCGGGTTCTGGGACACCGACCAGGACAACCCGGCCCTGCCCACCGACGACTACTGCGGCATGGGGACCGACGTCTGGTACACGGGCCACCACTACGGCGCGTTCAACACCGAGCCGCGGATCGCCTCCTACCTGGGGATCGCCGAGGAGCAGATCCCGGCCGAGCACTACTTCGGGCCGGTGCGCACCTTCGCCCCCACCTGCGACTGGTCCTGGACGGAGACCAAGGCGTCCGGCGAGTGGCAGAGCTACCTGGGCGTCGACGTCTTCGAGGGCACGCTCTCCTACCGCGGCATGGACATCGTGCCGACCTGGGGAGGCAGCATGTTCGAGGCACTCATGGTGCCGCTGTTCGTCCCCGAGGAAGAGTGGGGCACCGACTCCTGGGCCGTCAACCACCCGCTGTACGTCCAGGGGCAGATCGAGCACGGTCTCGAGGAGGCCGACTACGGCTACTGGGGCTTCTCGCCGTCGAACGACCCCGCCGGCGGCTACCGCGAGTACGGCGTCGACCAGCTCGGCATGGACGGCCCCGGATACACCTCCGACCAGGAGCGCACCTCCGTGGACCAGCCGTACGAGGGCTGCCGGGAGGGCTCCGAGGCCCCGACCGAGTACGGCGACGGCGTCGTCACCCCGCACGCCTCGTTCCTGGCGATGCGGTACGCGCCGCAGGAGGCGGTCAAGAACCTGCGCAACATCGCGCGGGACTTCGACGCCCACGGCCCGGGCGGCTTCTACGACGCCGTCGCGGTGCGCTCCGGGCAGGTCTCCGAGCGCTACCTCGCCCTCGACCAGGGCATGATCATGGCGGCACTCGGCAACGCGCTCGCGGACGACGCGATGCGTGACTACGTCTCCGACGGCGCCGTGGAGGACTCGCTGCGCCCGCTGATGGAGATGGAGGAGTTCGGCTCCTCCGGGCGCAGGTCGTCGCACGGCGGCTGA	MTRRRTLVAALAATGVALAGMPASAADDRPTPPRGAPPGLLQHWAEDTWTSFEALVVDSTGLPDDNIGGDLSAESRGGYTSPTNIGAYLWSTVVARDTGIIGADEARERMATTLDTVAELEKHDASGMFYNWYDPATGAKLDELGEGDPVEPFLSSVDNGWLATGLLLTANAEPSLADEADAIRDGMDFGCFYDPDVNQIRGGFWDTDQDNPALPTDDYCGMGTDVWYTGHHYGAFNTEPRIASYLGIAEEQIPAEHYFGPVRTFAPTCDWSWTETKASGEWQSYLGVDVFEGTLSYRGMDIVPTWGGSMFEALMVPLFVPEEEWGTDSWAVNHPLYVQGQIEHGLEEADYGYWGFSPSNDPAGGYREYGVDQLGMDGPGYTSDQERTSVDQPYEGCREGSEAPTEYGDGVVTPHASFLAMRYAPQEAVKNLRNIARDFDAHGPGGFYDAVAVRSGQVSERYLALDQGMIMAALGNALADDAMRDYVSDGAVEDSLRPLMEMEEFGSSGRRSSHGG				NA	NA	NA	NA	NA
AK001_02773	777			hypothetical protein	ATGGCGCTCACCGACGAGCGGAAGAAGGAGATCCTCGAGACGGTCAAGCACCTGCGGGTGACTGACATCCGGGACGGTCTCGACTGGATGGGGTACCACCACTTCGGCACGGTCTCCCCGGAGATCCGACCGCTGTGGCGGACCAAGCGGGCGGGCTTCGCGCACACGATGCGCCACATCCCCACCCAGCAGAAGGTCCCGACGATGACCCCGGACGAGTACACCACCTGGGCGTACGAGTACTGGTACGGCGAGGTCTTCGCCAACGACATGGCGGACCTGATCGACGAGACCACGTTCCTCGTCGTCGACACGTGCAACACCCCGACCCCGGCCGTGGGATCGATGGACTCGATGATCTGGGCCGCGCTCGGCGCCCAGGGTGTCCTCACGAACGGCGGTGCGCGGGACACGGACGAGACCCTGGACTCCAAGCACATCGGGGTCTGGTCGCGCTGGGTCGTCCAGCCGATGTACCAGGGCCGGGTGGAGTGGGGAGGCCACAGCGTGCCCGTCGAGATCGGTGGTCAGATCGTGCGTCCCGGCGACCTGATCGTCGCCGACGGCGACGGCGCGATCGTCGTCCCGCAGGACATCATCGACGGGGTCCTGAAGTACGCGATCCAGGAGTCCGAGCAGGACAAGATCGCCCGCGGCTACCTCTTCGACGCCCTCGGCATCCCGCGCAACGAGAGCACCGAGTCGAAGTTCGACGTGCCGACGCACCCGTACGCGCCGACCCCGGAGAAGCTCAAGGCGATGCTCAACCGCGACTGA	MALTDERKKEILETVKHLRVTDIRDGLDWMGYHHFGTVSPEIRPLWRTKRAGFAHTMRHIPTQQKVPTMTPDEYTTWAYEYWYGEVFANDMADLIDETTFLVVDTCNTPTPAVGSMDSMIWAALGAQGVLTNGGARDTDETLDSKHIGVWSRWVVQPMYQGRVEWGGHSVPVEIGGQIVRPGDLIVADGDGAIVVPQDIIDGVLKYAIQESEQDKIARGYLFDALGIPRNESTESKFDVPTHPYAPTPEKLKAMLNRD	PGPT0002085_41	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218	NA	NA
AK001_02774	492	ywlF	COG0698	Putative sugar phosphate isomerase YwlF	ATGCGCATCGCCGTCTCGAACGACCACGCCGGCTTCGCACTCAAACCGGTCGTCGTCGATCTGCTGCACGAGCTGGGACACGAGGTCGTGGACGTCGGGACCGACAGCGACGACCCCGTCGACTTCCCCTTGATGACGCAGCGCGTCACCGACCTGGTGGTCGGAGGGCGGGCCGACCGCGGGTTGCTGGTCTGCGGCACCGGCGTCGGCGCCGCGATCGCCGCGAACAAGGTCCCCGGGATCCGCGCCGCCGTCATCCACGACACCTTCGTCGCCCGGCAGGGGGTCGAGCACGACGACGTCAACGTCGCGTGTCTCGGCGCCTGGGTCGTGGGGCGAGTCATCGCCCAGGACGTGGTCCGCGCCTTCCTGGGCGCCACCTTCAGCACGGACGCCGACTTCCGGCGCCGTGTCCAACAGCTCTCCGACCTGGAGACGGCGGCCGCGCGGTCCGGGAGGACCGCGGACGGCGGGCCGGAAGGGGGTCGGTAG	MRIAVSNDHAGFALKPVVVDLLHELGHEVVDVGTDSDDPVDFPLMTQRVTDLVVGGRADRGLLVCGTGVGAAIAANKVPGIRAAVIHDTFVARQGVEHDDVNVACLGAWVVGRVIAQDVVRAFLGATFSTDADFRRRVQQLSDLETAAARSGRTADGGPEGGR	PGPT0017395_1158	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808	NA	NA
AK001_02775	921	araQ_6	COG0395	L-arabinose transport system permease protein AraQ	ATGAGCACTCTCAACACCACCGAGCCGCAGACCCGCGGGGCCGGCGCCCCGACCCGACGGGGAGGCGCCAGCGGCCGCCGCACCCGCCCGATCGGGCGACCGCAGCTGTACCGGCACCTGATGCTGATCGCGCTGGCGTCGATGATGTTCTACCCGCTGGCGTGGATGCTCGGAGCCTCCTTCCGGGAGGACGGGCAGATCAACGACCCCGGCGTCTGGCCGGGGGAGCACTTCACTCTCGACGGCTACGTCGACGGCTGGGCGGGGGTCTCCGGGGTTCCGTTCCTGCGGTTCATCCTGAACTCGCTGCTGGTGTCGGGCGCGATCGTCGTCGCGAACCTCGTGGCCTGCTCGTTGACGGCCTACGCGTTCGCGCGGATCGACTTCGCCGCGAAGAAGGTGTGGTTCGGGGTGATGCTCGGCACGCTGATGCTGCCGCACCACGTCATCCTCATCCCGCAGTACATCCTGTTCAGAGAGCTGGACTGGATCAACACCTACCTGCCGTTCATCGTTCCGAAGCTGCTGGCCACCGACGCCTTCTTCGTCTTCCTGCTGGTCCAGTTCTTCCGCGCGATCCCGCGAGAGCTCGACGAGGCGGCCCGGATCGACGGCTGCGGTCACGTGGGCATCTTCGCCCGGGTCGTCCTGCCGCTGTCGAAGCCGGCGCTGGCCACCACCGCGATCTTCTCGTTCATCTACAGCTGGAACGACTTCTTCACGCCGCTGATCTACCTGACCGACACCGAGCTCTACACGGTGCCGCTGGCGCTGCGCTCGTTCATCGACGCGACCTCCTACTCGGCCTTCGGGGCCCTGTTCGCGATGTCGGTGATCTCGCTGCTCCCGGTGCTCGGCGTCTTCATCGCCTTCCAACGACTACTCGTCGAAGGCATCGCCACCTCCGGACTGAAGGGATGA	MSTLNTTEPQTRGAGAPTRRGGASGRRTRPIGRPQLYRHLMLIALASMMFYPLAWMLGASFREDGQINDPGVWPGEHFTLDGYVDGWAGVSGVPFLRFILNSLLVSGAIVVANLVACSLTAYAFARIDFAAKKVWFGVMLGTLMLPHHVILIPQYILFRELDWINTYLPFIVPKLLATDAFFVFLLVQFFRAIPRELDEAARIDGCGHVGIFARVVLPLSKPALATTAIFSFIYSWNDFFTPLIYLTDTELYTVPLALRSFIDATSYSAFGALFAMSVISLLPVLGVFIAFQRLLVEGIATSGLKG	PGPT0016540_6419	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_02776	957	lacF_8		Lactose transport system permease protein LacF	ATGACGACCACCACGCAACGCACCAGCTCACCCGCCGCACGACCGAGGGGCACCGTCGGCCCGCGGTCGCGGCGACGGCGGGAGAACCTGGCCGGCTACGCCTTCATGGCGCCCTGGTTCCTCGGCTTCCTCGGCATCGTCGGCGGACCCGTCGTCGTCTCGCTCTACCTGTCCTTCACCGACTACTCGGTGCTCGGCAGCCCGGAGTGGGTCGGCACGGCCAACTACGAGCGCATGCTCACCGACGACCCACGCTTCCTCTCGGCGCTGCGGGTCACCCTCGTCTACCTGGTGGTGTCGGTGCCGCTGGTGCAGGTGTTCGCCCTGTTCCTGGCCAGCGTCCTGAACCGGGGCATCCGCGGTCTGCCCGTCTACCGCGCGCTCTTCTACGTGCCCTCGCTGATCGGGGGGAGCGTGGCGATCGCGATCCTGTGGCGCTTCGTCTTCCAGGGCGACGGGCTCTTCAACGGGCTGCTGGGGATCGTCGGCATCGACACGGGCTACTCGTGGATCGGTGAACCCGCGACGGCGCTCGACACCCTGATCGTGCTGAACGTCTGGCAGTTCGGTGCGGCCATGATCATCTACCTGGCCGGGCTGAAGAACATCCCGGCGGAGCTCTACGAGGCGGCGACCGTCGACGGGGCGGGGACCTGGCGCAAGTTCGTCTCGATCACCCTGCCGATGCTGAGCCCGGTGATCCTGTTCAACGTCCTGATGAACATGGTGGCCGCCTTCCAGGCGTTCAACACCGCCTACATCGTCAGCAACGGCACCGGCGGGCCGGCGGACTCGACCCTCTTCTACACCTTGTACCTGTACCAGCGCGGCTTCGTCGACTTCCAGATGGGGTACGCCTCGGCACTCGGCTGGGTGCTGCTGATCGTCAGCGCGGCGATCACGGCTCTGCTGTTCGCCCTCAGCCGGCGACTGGTGCACTACGGAGACGAGCGATGA	MTTTTQRTSSPAARPRGTVGPRSRRRRENLAGYAFMAPWFLGFLGIVGGPVVVSLYLSFTDYSVLGSPEWVGTANYERMLTDDPRFLSALRVTLVYLVVSVPLVQVFALFLASVLNRGIRGLPVYRALFYVPSLIGGSVAIAILWRFVFQGDGLFNGLLGIVGIDTGYSWIGEPATALDTLIVLNVWQFGAAMIIYLAGLKNIPAELYEAATVDGAGTWRKFVSITLPMLSPVILFNVLMNMVAAFQAFNTAYIVSNGTGGPADSTLFYTLYLYQRGFVDFQMGYASALGWVLLIVSAAITALLFALSRRLVHYGDER	PGPT0016535_2151	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_02777	1308	yesO_3	COG1653	Putative ABC transporter substrate-binding protein YesO	ATGCACAGGACACGACTGACGGCGACCGCCGGCGCGGTCGCAGCACTCTCCCTCACCGTCGCCGCGTGCGGCGGGGGCGAAGGTTCCGACGCCGGCGGGGAGGTCGGCGGTGAGATCGCCTACTCCTTCTGGGGCAACCCCGACCGGGGCCGGTTGGTGGAGGAGGTCGCCTCCCTCTTCGCCGAGGAGCACCCCGGGGCCACCGTGGACGCCGAGGTGGCCGACTACCTCGCCTACATCGAACGACTCACGGTGCGTGCCGCCGGGGGAGACCTCGCCTGCGCCACCGGCACGCAGACCACCTTCCTGAGCCAGTACGCCGAGAACGGGGTGCTGCGTCCCCTGGACGACCTGATCGAGTCCGGGGAGATCGACACCTCCGAGATCCCGGAGGACGTCCTGGCCGCCGGGCAGGTCGACGGGGAGCAGGTCATGATCCCGACCGGCACGTTCGTGCGTGTCCTCGCCTACAACGCCGACCTGGCCGAGAGCGCCGGCGTCTCCGCGCCGGGCGACGACATGACCTGGGCGGAGTACGCCGACTGGCTGCGGGCCATGCGTGGCGAGCTCCCCGACGGCGTGTACCCCGGGGAGAACGAGGGCGGGATCATGTTCACCCTGACCTCCTGGGTGGTCGGGCACGGCGAGCAGATGTTCGACGGCGACGAGCTCGGGTTCGACCGGGAGCTGCTCACCGAGTACTTCGAGTACTGGATCGGGCTGGCCGAGGACGAGGCCGTCATCCCGCCCGCCATGATCCCCACGATGGAGGGCGCCCTGGAGCTCACCCCGATGGCCACCCGGCAGGTCGTCGCGGGAACGCGGGACATCCCGCACATCTACATCATGGAGGAGGCTCTCGCCGGGGCGGGCGACCCCGAGGACGTGGCGTGGACATCCATGCCGAGCGAGTCGCCGGACCGGCCCGCCAACGTGCTCGGTGCCAACGGCATCTCGATCCCGACCGACTGCGACAACGTGGCGACGGCAGCCGCCTTCGTGGACTTCTTCGCGAACGACACCGACGCCGCCCTCGCCTTCCGGTCCGACAACGGGATCCTCACCAACCAGAGCGCTCAGGACGCCCTGCTCGACGACCCCGAGACACCGGACGGCGTCAAGCAGAACGTCACGATCCTCCAGGAGCTGACCGACGCCGGAGACCTCGCCACGACCACCTATCCCGCGGGCCTCAACACGATGACCAACGAGCTGCGCCGGGTGTACTCCGCGGCGGCCTTCGGCGAGATGTCGGTGGACGAAGCCGTGGAGTCGTTCTTCTCCGCTGCCGACGAAGCCCTCTCCTGA	MHRTRLTATAGAVAALSLTVAACGGGEGSDAGGEVGGEIAYSFWGNPDRGRLVEEVASLFAEEHPGATVDAEVADYLAYIERLTVRAAGGDLACATGTQTTFLSQYAENGVLRPLDDLIESGEIDTSEIPEDVLAAGQVDGEQVMIPTGTFVRVLAYNADLAESAGVSAPGDDMTWAEYADWLRAMRGELPDGVYPGENEGGIMFTLTSWVVGHGEQMFDGDELGFDRELLTEYFEYWIGLAEDEAVIPPAMIPTMEGALELTPMATRQVVAGTRDIPHIYIMEEALAGAGDPEDVAWTSMPSESPDRPANVLGANGISIPTDCDNVATAAAFVDFFANDTDAALAFRSDNGILTNQSAQDALLDDPETPDGVKQNVTILQELTDAGDLATTTYPAGLNTMTNELRRVYSAAAFGEMSVDEAVESFFSAADEALS	PGPT0016545_5025	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_02778	906	rbsK/rbiA		Bifunctional ribokinase/ribose-5-phosphate isomerase A	ATGAGTGATGCAGGCGTCACGACGGGCCGGGTGATGGTGATCGGCTCGGCCAACGAGGACTTCGTCTTCGACGTGGAGGCGATGCCCCGTGCGGGCGAGACCGTGGTCGCCGCCGACTTCCATCGGGGCTTCGGCGGCAAGGGTGCCAACCAGGCGGTAGCGGCGGCCCGTGCGGGCGCGGCGACCCACTTCGTCGGCGCGGTCGGTCGGGACGACACCGCAGCCACCGTGGTCGAGAACCTGGTGGCCCACGGGGTGGGGGTCGACTCCGTCCAGCGGGTCGGCCTCCCGACCGGCAGGGCGGCCATCGTCGTCGACCGCGCCGGGCGGAACCAGATCGTCGTCGCGGCGGGCGCCAACGGCGCACTCACGGCGGGCGTCGTCGACGCGGCGCTCGCGGGGCTGGGCACCGGCGACGTGGTCGTCCTGCAGTGCGAGATCGACGCACCGATGGTCGAGCATGCCGCCGTCCGTGCGAGCGGTGCCGGCGCCCGCGTGCTCCTGAACCTGGCCCCGTACGTCGACCTCCGCCGGGAGGCGCTCGTCGCCGCCGACGTCGTCGTCGTGAACGAGTCCGAGGCGCTGGCGCTCTCCGGGGCTCGGGGGAGCGATGCCCGCGACGCCGAGACCCTCGCACGCGCCGCGGGGGACGCGGCCGGCACGGCGTGCCTGCTGACCCTCGGGGAACGTGGCTCGGTCTTCGTCGAACCCGGCGCACCACCCGTCGTCGTGCCCGCCGACGTCGTGGAGGACGTCGTGGACACCACGGGTGCGGGCGACGTCTACGTCGGGACCCTCGCGGCCGTCCTCGCGAACGGCGCGAGCATGCCGGACGCGATGGTCGCCGCCTCGAGCGCCGCGGCGCGCTCGGTCCGAGGGCGAGGAGCCCAGCTCAGCTCGGCGTGA	MSDAGVTTGRVMVIGSANEDFVFDVEAMPRAGETVVAADFHRGFGGKGANQAVAAARAGAATHFVGAVGRDDTAATVVENLVAHGVGVDSVQRVGLPTGRAAIVVDRAGRNQIVVAAGANGALTAGVVDAALAGLGTGDVVVLQCEIDAPMVEHAAVRASGAGARVLLNLAPYVDLRREALVAADVVVVNESEALALSGARGSDARDAETLARAAGDAAGTACLLTLGERGSVFVEPGAPPVVVPADVVEDVVDTTGAGDVYVGTLAAVLANGASMPDAMVAASSAAARSVRGRGAQLSSA	PGPT0017405_912	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852	NA	NA
AK001_02779	963	ccpA_4	COG1609	Catabolite control protein A	ATGGCGGTGACGAGGAACGACGTCGCACGGGCCGCGGGGGTCTCGAGCGCCGTGGTGTCCTACGTGCTGAACGACGGGCCGCGCCCGGTGTCCGCAGCGACACGCCGGAAGGTCCTCGAGGCGATCGATCGGCTCGGATACCGCCGGGACAACCTCGCACGGTCGATGCGGACCGGCAAGACGGACTCCATCGGCCTGATCCTCCCGGACATCGCGCTCAGCTACTTCGCCGTCATGACGCAGCGGGTGACCGAGCTCGCCCGCAGCCGCGGTCTCAGCGTGGTGATCAAGACGTCGAACGGGCGCTCCGAGCGGGAGCGCGAGCACGTCGCCGAGCTCGCCGCACGCCGGGTGGACGGGATCGTCCTGATGAGCGTCGACCCGCTGGACGAGACACGATGGGCCGCCGAGTTCGAGCTGCCGGTGCTGATCGTCGACCGCCCGGAGGTGGCGATCGACGGCACGGCCCTGGCCGCACGCCACCTCATCGAGCACGGTTGCCGCCGCCTCGCACGCATCGCCGCCCCGACCCGGTACTCCATCACGCCCCGCCGCGACACCGGATGGAACAGCGCGCTCGCCGAGGCGGGGATCGGCTCGAGCACCGTCCTCCGGGCCGACGTCTCCGAGGACGGCGGCCGCACGGCCGGACTGGAGCTCCTGGCAGGAGCAGAACGGCCCGACGGGCTGCTCGTGGACTCCGGCCCGCAGGCCCTGGGGTTCCTCCGGGCCGCGGCGGACGTCGGCGTGCGGGTCCCGCAGGACCTCGCCGTCGTCGCGGCCGAGGTGGGCGAAGCCGGCCGGTTCAGCATCCCGCGGCTGTCCAGCGTGGACTCACCCATCGAGGAGATCGCGGCCCGCGCGGTCGACCAGATCGGCTCGGCCACCCGCCAGGACAGGATCCTCCGGCTGACGGACTCCACCTATGCCCTCCACGAGCGGGAGTCCTGCGGGCACGGTTGA	MAVTRNDVARAAGVSSAVVSYVLNDGPRPVSAATRRKVLEAIDRLGYRRDNLARSMRTGKTDSIGLILPDIALSYFAVMTQRVTELARSRGLSVVIKTSNGRSEREREHVAELAARRVDGIVLMSVDPLDETRWAAEFELPVLIVDRPEVAIDGTALAARHLIEHGCRRLARIAAPTRYSITPRRDTGWNSALAEAGIGSSTVLRADVSEDGGRTAGLELLAGAERPDGLLVDSGPQALGFLRAAADVGVRVPQDLAVVAAEVGEAGRFSIPRLSSVDSPIEEIAARAVDQIGSATRQDRILRLTDSTYALHERESCGHG	PGPT0017992_15770	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02780	1020	ccpA_5	COG1609	Catabolite control protein A	ATGGCGGCGGTGCGACGGCCCACCGTGCGCGACATCGCCCGCCATGCCGGCGTGTCCGTGGCGACGGTCTCCCGGGTCACCAGCGACGACCCGCGGGTCCGGGCCGAGACCCGGGCGCGGGTGCAGGCCAGCATCGACGCGCACGGCTACACGCCCTCGTCGCTCGGCCTGGGGCTCGCCCGACGGCGGCACCAGGCACTGGGCGTGGTCCTGCCCGGCCTGGGCGGGCCGTACTTCGCCGAGCTCCTCCGAGGCGTCGAGTCCGTCGCCGCCGCGCACGACACGGCCGTCACGGTTCTGGGCGCTCACCTGCGCCCCGACGTCGCCGGTGCGGTCGAGCGGCTCGCCCGGCGCACCGATGCGCTGGTCGTCCAGGCCGGCACGGTCGACGACGCGGTGCTCGCCGCCGTCGCCGACGAGGTCGCCGTCGTCGTGCTGGCCGGGTCGCCCCAGCACCCGACCACGGTCCGCACCGACGGCGAGTCGGCGTGCCGGGACGTCACCGCCCATCTCGTCGACGTGCACGGTCACCGTCGGCTGCGGTTCGTCGGCCTCCCGCCGGGCGCGCCCGAGCCGGCCCAGCGGCACCGGGGATTCCGTCGCGCCCTGAGCGAGCGCGGCCTCGTCGAGTCCGGTCCGCCGCTGTCCGTCGGGCTCGAGGCGGTCGACGGCGCCGCGGCGGCACGCGACCTCCGCGCGTCCGGCGACGTCCCCGACGCCCTGGTCTGCGCGAACGACGAGATCGCGTTCGGGCTGCTCGCCACCCTGCCCGGCCTGGGGTACGACGTGCCGCACGACGTCGCGATCGTCGGGTTCGACGACAACGCGCTCGCCGCCCTGGCGGCGCCCCGGCTCACGACCGTTCACCAGCCCACCGCAGAGCTGGGAGCCACGGCCGCCCGGCTCGCCCTCGCGGCGGCTTCCGGGGAGGAAGAACCCACCACCGACCACGTGCTGCCCACCCGGACGGTGGTCCGGGAGTCCTGTGGGTGCTCGCCCGCCCCCGGTGCGCGGCGCTGA	MAAVRRPTVRDIARHAGVSVATVSRVTSDDPRVRAETRARVQASIDAHGYTPSSLGLGLARRRHQALGVVLPGLGGPYFAELLRGVESVAAAHDTAVTVLGAHLRPDVAGAVERLARRTDALVVQAGTVDDAVLAAVADEVAVVVLAGSPQHPTTVRTDGESACRDVTAHLVDVHGHRRLRFVGLPPGAPEPAQRHRGFRRALSERGLVESGPPLSVGLEAVDGAAAARDLRASGDVPDALVCANDEIAFGLLATLPGLGYDVPHDVAIVGFDDNALAALAAPRLTTVHQPTAELGATAARLALAAASGEEEPTTDHVLPTRTVVRESCGCSPAPGARR	PGPT0017992_11036	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02781	1608	dexB	COG0366	Glucan 1,6-alpha-glucosidase	GTGGCGACCACCCCAGCGACGACCGACCTGGCGGACCGCCTCGACCGGACGGTGCTCTACCAGATCTACCCGCAGAGCTTCGCGGACGCCGACGGCGACGGGGTCGGCGACCTGCGCGGCATCGCCGACCGCCTCGACTACCTGGCGTGGCTCGGGGTCGACGCGATCTGGCTGAGTCCCTGCTTCGTCTCCCCGTTCGCCGACGCCGGCTACGACGTCGCCGACTTCCTGCGCATCGCACCGCGGTACGGCACCAACGCCGACCTGGAGCACCTCACCGAGCAGGCCGCCCGGCGCGGGATCGCGGTCCTGCTCGATCTCGTCGCCGGCCACACCTCGGACCAGCACCCCTGGTTCCGCGCCGCGATCGACGACCCGGACGACGACCGGTACGTGTGGAGCGACGTGCCCGTCGACGGGTTCGAACCCGGGCCCGGTCGGCGCGGCGGGTACTACCGGCCCAACTTCTTCCCCGTGCAGCCCGCCCTCAACTACGGGTACGCGCGCCTCGACCCGGCCGAACCGTGGCGGCAGCCCGTCGACGCACCCGGCCCGCAGGCCAACCGCGCCGCGCTGCGCGAGATCCTGGCGTTCTGGTTCGACCGCGGCGTCGCCGGCTTCCGCGTCGACATGGCGGCCTCCCTCGTCAAGGACGACCCCGGGCTCGCCGAGACGCGACGCCTCTGGCAGGAGATGCGCGCCTGGCTGGACCGCACCTATCCCGGCCGGGTCCTGATCAGCGAGTGGGGCGACCCGAAGGTCGCCGTGCCCGCGGGCTTCCACGCCGACTTCCTGCTGCAGTTCGGCGGGGACGACGACGGCCTGCCGCTGCGCTCGCTGTGGAACAACGGCGCCGGCACCACCCAGCCCACCTGGGGCGACGTGCCCGCCTGGGCCGACGCCGAGGCCCGCGGTGACGCCGCGACGTTCGTGCGCGCATGGACCGCGGCGACCGCAGCGATCGCCGCCGCGGGACGCGGCGGCGTCGTCGGGCTGCCGACGTCGAACCACGACTTCACACGACTCGTCGCCGGCCCGCGGGACGCCGAGCAGGCGCGCGCCGCCCACGTCCTGGTCATGACCTGGCCCGCGATGCCCTCGGTCTACCAGGGCGACGAGATCGGCATGCGGTACGTGCCCGGCACACCGACCACCGAGGGGTCCCGGCTCGGCCCGACCTACGACCGCGCCGGGTCGCGCACCCCTGTGCAGTGGGGAGACCTGGACGCCGGGCGCTTCGGTCCCGGGACGCCCGCGACGTCGTCCTACCTGCCCGTGGACCCGGACCCCGGCCGTCCGACGGTGTCCGACCAGGTCGACGACCCGGACTCGTTGCTGCACCTGGTGCGCGACCTGATCTCGCTGCGGCACCGGGACAGGCGGCTCGACGTCGGTTCACCGCTCGAGGTGCTGGCCACCGGCTACCCGATGGCCTACGTGCGCGGCGGTTCGCTCGCCGTCGTGCTCAACCCCGGCCGGCACCCGGTCGAGCTGCCGCTGCCGGGCGCGGGCGACGCCAGGCTGCTCGTCGGTCGGGGCGTGCGGACCGAGGACGCCGTGGTGCACCTCGACGGGCACGGCTACGCCGTGCTCGACCTCGGCGGCTGA	MATTPATTDLADRLDRTVLYQIYPQSFADADGDGVGDLRGIADRLDYLAWLGVDAIWLSPCFVSPFADAGYDVADFLRIAPRYGTNADLEHLTEQAARRGIAVLLDLVAGHTSDQHPWFRAAIDDPDDDRYVWSDVPVDGFEPGPGRRGGYYRPNFFPVQPALNYGYARLDPAEPWRQPVDAPGPQANRAALREILAFWFDRGVAGFRVDMAASLVKDDPGLAETRRLWQEMRAWLDRTYPGRVLISEWGDPKVAVPAGFHADFLLQFGGDDDGLPLRSLWNNGAGTTQPTWGDVPAWADAEARGDAATFVRAWTAATAAIAAAGRGGVVGLPTSNHDFTRLVAGPRDAEQARAAHVLVMTWPAMPSVYQGDEIGMRYVPGTPTTEGSRLGPTYDRAGSRTPVQWGDLDAGRFGPGTPATSSYLPVDPDPGRPTVSDQVDDPDSLLHLVRDLISLRHRDRRLDVGSPLEVLATGYPMAYVRGGSLAVVLNPGRHPVELPLPGAGDARLLVGRGVRTEDAVVHLDGHGYAVLDLGG	PGPT0018560_5342	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
AK001_02782	894	valG	COG0463	Validoxylamine A glucosyltransferase	GTGCCCGCCTTTCCCGAGATCAGCGTCGTCATCCCCACCTACAACCGCAGCAGCCTGCTGCGCCACACCCTCGACTCCCTGCGGCGCCAGACCCTCGCGCCCGACCGGTTCGAGGTCGTCGTGGTCGACGACGGCGGCAGCGACGACAGCGAGGACGTCGTGCGCTCGTTCGCGGACGACCTCGACGTCACCTACTTCTGGCAGCCGGACGCCGGCTTCCGTGCCGGCAAGGCCCGCAACATCGGCACCGCCATCGCCTCGGGGCGCTACGTCGTCTACGTCGACACCGGCGTCCTGCTGGCCACCACCACCCTGGCCACGCACCTGCGCATCCACACTGAGTCGGCCTATCCCACCGCCGTCGTCGGCTACGTCTACGGGTTCGAGGTGGACCCCTCCCACGAGGCCGTCATGGCCGACCTCGACCCCACCGACGTCGACGCCGCCATCGCCCACCTGCACACGCACGGCGCCCTCGACGTCCGCGAGCGCCAGTACGCCGACCTCGGCGAGAACATCACGAGCTGGCCCGCGCCGTTCGACATCTTCTGGACGTGCCACGCCTCGGCCGAGCGCGAGTCGCTGTTCGCCGCCGGGCTTTTCGACGAGTCGTTCACCGGGTGGGGCGGCGAGGACGTGGACCTCGGCGTGCGGCTGTTCCGGCAGGACAACGTGTTCGTCATGGACCGCGCGGCGCGTTCCTTGCACTGGCCGCACGCCAAGGAGGTCGACGACCTCCAGGAGTCCTCGGCGACCGCCGCCGAACGGATCCACCGCAAGTACGACCTGTGGACCACGAGCTTCTACGGCAAGGACCTGCAGAACGAGAAGTACTCGCTGAACAAGGTCATCCAGCTCTCGGCGTCGCGGCGCGAGGCCGAGGGGGCGGCCTGA	MPAFPEISVVIPTYNRSSLLRHTLDSLRRQTLAPDRFEVVVVDDGGSDDSEDVVRSFADDLDVTYFWQPDAGFRAGKARNIGTAIASGRYVVYVDTGVLLATTTLATHLRIHTESAYPTAVVGYVYGFEVDPSHEAVMADLDPTDVDAAIAHLHTHGALDVRERQYADLGENITSWPAPFDIFWTCHASAERESLFAAGLFDESFTGWGGEDVDLGVRLFRQDNVFVMDRAARSLHWPHAKEVDDLQESSATAAERIHRKYDLWTTSFYGKDLQNEKYSLNKVIQLSASRREAEGAA				NA	NA	NA	NA	NA
AK001_02783	648	dapH_2		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	ATGCCGGTCGCCTACGAGAACCTGTACCCCGCCCGACCCGACTGGCCGCTGACGGGCGGGGTCACGGAGGCGCTGCGGGCGCACGGCGTCGAGGTCGGCGAGGGCACCGTGTTCTTCGACGTGCCCCGGGTGGCGTTCACGCGCGCCGTCGACGCCGAGCTCGGCCCGCTGCCGCTGCGGGCGGAGGACTTCCGCGGCGCGATCCGGGTCGGGTCGGGGTGCTACGTCGAGTCGGGCGTGGCGCCCGCCTTCCACAGCCAGCCGGTCAAGCTCACGTCGGTGCAGGTCAACGACGGCGCACCCGGCCGGATCCGCATCGGGGACCGGGTCTCGCTGCAGGGCGTGGCGGTCGTGGCCTACGACCTGGTCGAGGTGGGCGACGACGTGATGTTCGGCCCGCTGGTGACGATCATGGACTCCAGCGGTCACCCGCTGCGGGGCCGCGGCGCGGCCGGGGAGGCGGCCCGCACGACGGCGGCACCCGTGCGCATCGGGGACGGCGCCTGGATCGGGACGGGCGCGACGATCCTCAAGGGTGTGGACATCGGGGACGGTGCCGTGCTCGGGGCGCAGAGCGTCGCCGACGAGTCGGTGCCGGCCGGGGCGGTCGCCGTCGGCAACCCCGCCCGCGTCATCAAGCAGCTGTGA	MPVAYENLYPARPDWPLTGGVTEALRAHGVEVGEGTVFFDVPRVAFTRAVDAELGPLPLRAEDFRGAIRVGSGCYVESGVAPAFHSQPVKLTSVQVNDGAPGRIRIGDRVSLQGVAVVAYDLVEVGDDVMFGPLVTIMDSSGHPLRGRGAAGEAARTTAAPVRIGDGAWIGTGATILKGVDIGDGAVLGAQSVADESVPAGAVAVGNPARVIKQL				NA	NA	NA	NA	NA
AK001_02784	1362	mdtK	COG0534	Multidrug resistance protein MdtK	GTGATCACGGCGCTGCGCGGCCCGGCCGGCCGGTCCCTGCTGCGGATCGCCGTCCCGGTGACGCTGCAGACGGTGGTGTTCTCCTCCAAGAGCGTCGTCGACGCCGTGATGCTCGGCACGCAGACCGAGATCGACGTCGCCGCGATCGGCATCGCGTCCAAGGCGACGTTCGTCGTGTCGATCTTCCTCATCGGGTTCACGATCGGCGGCGCGCAGATCGGCGCCCAGCTGTGGGGCGGCGAGCGCCCCGACCGGGCCGTGCGGCTGCGCCAGACGGTGTGGCTGACCTGGGCGACCTCCACGGTCTGTGCGCTGGCGGCGTTCGTCACCTTCGCCGTCGTCCCGGAGGCCGTGATCGGCCTCGGCACGGACTCGGCCGCCGTCGTCGAACGGGGCGCCGCGTTCCTGCGGATCGTCAGCCCCACCTTCCTGCTGTTCTGCTACACCTCGGCGGTGGCCGCCGGGCTGCGGGTGATGCTGCAGCCGACGATCAGCACGGTCTACGCCGTCGTCGGGGTGGTGCTGAACGTGGCGCTCAACGCGGTGCTGATCTTCGGGCTGCTCGGTGCGCCCCGGCTGGGCGTCGTCGGTGCGGCCTACGGCACGCTGGTCAGCGCCGTCGTCGAGACCGGGCTCCTCGCCGTGCACCTGCTCACCACGCGGCACGTCCTGGCACGGTTCCCGCGCGCCGAGCTGGGTCTCGTCACGCGCGCGCAGACCGTGGCGCTGCTGCGCCTGTCCGTCCCGGCGGCGTGCAACAGCACGATCTGGGCCCTGGGATCCTTCGCGTTCTACGCCGTGATCGGCAGCACGGGCGTCTCGGCCGCCGCCGCCCTGGCGATCCTCTCCCCCGTGGAGTCGCTGGCGCTGGCCCTCACCATCGGGCTCGCGAACGCGGCCGCCGTGGTGGTCGGCTCCACGATCGGGTCCGGGCACGTCGAGGACGCCTACCGCCAGGCGTGGGCGCTGGTCCGGCTCGGGCTCCTGGTCGGGGTGGCCACCTGCGTTGTCACGTGGGCCGCGCAGGACGTGGTGCTGGGGATGTTCGGTGCGATCACGCCCGCGACCCGAGCACTCACCGAGACCCTGTTCGGGGTGCTGGTCGTCTCGTTCGTGCTCAAGAGCGTCAGCATGGTCATGGTGCTGGGCGTGCTGCGGGCCGGTGGGGAGGTGCGCTTCTGCCTGCTGCTCGACGTCGGGGCGCAGTGGGTGCTGCTGCTGCCCGGCGCTCTGCTGCTGCGCGACGTCGTCGGCGTCGGACCGGTGGTGGTGTTCGCGCTCGTGCTGGTGGAGGAGGCCGTACGGATCGGTGTGGCCGGGTGGCGCATCCGGTCGCGGCGGTGGCTCAACGACCTGACGTGA	MITALRGPAGRSLLRIAVPVTLQTVVFSSKSVVDAVMLGTQTEIDVAAIGIASKATFVVSIFLIGFTIGGAQIGAQLWGGERPDRAVRLRQTVWLTWATSTVCALAAFVTFAVVPEAVIGLGTDSAAVVERGAAFLRIVSPTFLLFCYTSAVAAGLRVMLQPTISTVYAVVGVVLNVALNAVLIFGLLGAPRLGVVGAAYGTLVSAVVETGLLAVHLLTTRHVLARFPRAELGLVTRAQTVALLRLSVPAACNSTIWALGSFAFYAVIGSTGVSAAAALAILSPVESLALALTIGLANAAAVVVGSTIGSGHVEDAYRQAWALVRLGLLVGVATCVVTWAAQDVVLGMFGAITPATRALTETLFGVLVVSFVLKSVSMVMVLGVLRAGGEVRFCLLLDVGAQWVLLLPGALLLRDVVGVGPVVVFALVLVEEAVRIGVAGWRIRSRRWLNDLT				NA	NA	NA	NA	NA
AK001_02785	909		COG1816	Adenine deaminase	ATGGCGCTCGCGGAGCGCAACGCCGTGACCCTGCCGAACGACGACGTGGTCGCCCTGCGCCGCGCGTACTCGTTCACGGACCTGCAGTCGTTCCTGGACCTGTACTACGCGAACATGGCGGTGCTGCGCACCCCCGAGGACTTCGCGGACATGACCCGCGCCTACCTGACGCGGGCTGCGGCCGGCGGGGTGCGGCACGCGGAGATCATGGTGGACCCGCAGGCGCACCTGGTGCGTGGCGTGCCCCTCGAGGTGGCCCCGGTGCTGGCCACCAGCGAGGCCGAGCACGGCGTCTCGACCCTGCTGGTCGCGGCGTTCCTGCGGGACCGCCCCGAGGGCGAGGCGCTCGACGTGCTGGACCGGCTGGTCGCGGCGGATGCCCCGATCGCGGGGATCGGGCTGGACTCCGCCGAGGTGGGCCATCCGCCGTCGGACTTCACGCGCCTGTACGCGCGTGCCCGGGCCGAGGGCCTGCGGCTGATCGCCCACGCGGGGGAGGAGGGACCGGCGTCGTACGTCACGGACGCCCTGGACCTGCTGGGCGTGCAGCGCGTCGACCACGGCATCCGCTCCCTGGACGACGACGCCGTGGTCGAGCGACTGGTCGCCGAGCAGGTGCCGCTGACCGTCTGCCCGCTGTCGAACGTCGCGCTGCGTGCCGTCGACCGGATCGAGGACCACCCGGTGCTCGCCATGCTGGACCGCGGGCTCAACGTCACCGTGAACTCCGACGACCCGGCGTACTTCGGCGGCTACCTCGACGACAACCTCGCGGCCCTCGAGCGTTCGCTCGGGATGACCGCGGACCAGCGGGCCCGGCTCGCGGCGAACTCGATCCGGTCGTCGTTCCTGCCGACCGCCCGCCGCGACGCCCTGCTCGCCGAGATCGCCCACCCCTCCGCGAGGTAG	MALAERNAVTLPNDDVVALRRAYSFTDLQSFLDLYYANMAVLRTPEDFADMTRAYLTRAAAGGVRHAEIMVDPQAHLVRGVPLEVAPVLATSEAEHGVSTLLVAAFLRDRPEGEALDVLDRLVAADAPIAGIGLDSAEVGHPPSDFTRLYARARAEGLRLIAHAGEEGPASYVTDALDLLGVQRVDHGIRSLDDDAVVERLVAEQVPLTVCPLSNVALRAVDRIEDHPVLAMLDRGLNVTVNSDDPAYFGGYLDDNLAALERSLGMTADQRARLAANSIRSSFLPTARRDALLAEIAHPSAR	PGPT0021520_2006	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488	NA	NA
AK001_02786	1197	mdtH		Multidrug resistance protein MdtH	GTGACGGGCGGGGAGCCACGGTCCTCGAGAACCGCGCTGTGGGTGCTGTACGGCGACACGCTGACGATGGCGGTCGGCTTCTACATGCTGGTGCCGCTGCTCGCCTACCACTACCTGCAGAACATCGGCCTGACGGTCGCGGTGGTCGGGGTGCTGACGGCGGTGCGGTCCGCGGCGCAGAACGGCGTGATGCCGATCTCCGGCTGGGTCGCCGACCGCATCGGCTACCGGCGGGCGATCGCCGGGGGCGTCCTGATCCGCGCGTCCGGCTTCGCCGTGCTGGGCGCGGTCTCGAGCCTTCCGCTGCTCGCGCTCGGGTCGGTGCTCGCCGGGCTCGGCGGGGCACTGTTCCACCCGGCGTCGTACGCGGCGTACTCGGCGCTCGCCGTCGGGCGCGACTCGGTGCGCGTGTACTCGACGCGGGAGCTGTTCTCCAACGTGGGGTTCGTCCTCGGCCCCATGATCGGGGGCCTGCTCGCCGGGCTGGACTTCCAGTGGGTGGCGTTCGGCTCGGCCGGACTGTTCCTCGTGGCGTTCTTCCTCACCGTGATCGGTCTGCCCCGGGTGCTGCTGGCCGCGGACACGAAGCGGGCGCGGTTCGGCGAGGCGCTGCGGGACCGGTCGTTCCGGCGCTACCTCGTGGTCGTCGCGGCCCTGTGGATGCTGGTGACCCAGCTCTACCTGGTGGTGCCGGTGCGGGCGGCCGACGTGCTGCCGGGAGCGATCGGCGTCGGTGTCGTCTACACCGCGGCCGCGGTGTTCATGGTGGTCACGATGCTGCCGTTGACCGGCTTCATGTCGCGCCACCTCCCGGCTCCGCGGATCCTCGCCCTCGGGTCGGTGTCCCTCGGGACCGGGGTGGCGGTGATGGGGCTGTGGGACTCCGTCGCGGGGCTCGTCGCCGGCGTCCTGACCTTCACGCTGGGTCAGATGCTCTCGCAGCCGGTGATGAACGCCGTGGTCTCCGAGCTGGCCGACGGGCGGGCCGTGGCGTCCTACTTCGGGGCGATGGGACTCGCACAGGCGGTCGGCGGGATCACCGGCAACCTGGCCGGTGGTGCGCTGTACACGCTGGCGGGGACGGACTCCACGTGGGCGAACGTCACGTGGTTCGTGTTCCTCGCCGCGGGACTCGTGATCGCCGCGGTCTTCTGGTTCCGGGGACCGCAGCCAGGGAGCTCCCCGCCCGAGCCGTGA	MTGGEPRSSRTALWVLYGDTLTMAVGFYMLVPLLAYHYLQNIGLTVAVVGVLTAVRSAAQNGVMPISGWVADRIGYRRAIAGGVLIRASGFAVLGAVSSLPLLALGSVLAGLGGALFHPASYAAYSALAVGRDSVRVYSTRELFSNVGFVLGPMIGGLLAGLDFQWVAFGSAGLFLVAFFLTVIGLPRVLLAADTKRARFGEALRDRSFRRYLVVVAALWMLVTQLYLVVPVRAADVLPGAIGVGVVYTAAAVFMVVTMLPLTGFMSRHLPAPRILALGSVSLGTGVAVMGLWDSVAGLVAGVLTFTLGQMLSQPVMNAVVSELADGRAVASYFGAMGLAQAVGGITGNLAGGALYTLAGTDSTWANVTWFVFLAAGLVIAAVFWFRGPQPGSSPPEP	PGPT0029190_327	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029190-mdtH-K08162	NA	NA
AK001_02787	636			hypothetical protein	GTGGCGGCCCGGCCGGAGCACCGCGAGCGCTGGGAGACCCGCACCCTGCGCGCCCTGATGGTGCCCGCCAACCTCGTGCTGGGTGGCCTGATGGCGTTCCTGGTGGCACTGCCCGGGGTGACGCTGCTGCCCGCGCTGGTCGCTCTCGGCCGGGCCTTCTCGGACTGGCACGACGACGGGGACGACGCGGTGGTCACCTCCCTGCTGCGCGAGCTGCGGGCGACGTGGCGCCGGACCTGGCGGGCGGGGATCCTCGCGGGGATCGCCGTCTGGCTGCTCGTCGTCGACGCGTTGTTCCTGCTGGCCCACCTGGGCACGGCGTCGGCCGGGTTCGCCGTCGTGCTCGGCGGGGCCACGTTGCCCGTCGCGGCCGTCGTCGGTCTCGTCCTGCTGCTGGTCCCGGTGGCCGCTGCGCGGCAGCGTGACGGGACGGTCCGTGACTGGCTGCGCGCCGCCGCGGCGTTCGCCGCCGGGCGCCCGGTGGGCACGCTCGCGCTGCTGCTGATCGGTGCGGCGGTGCTGGCCACCTGCGTGGTGCTGCCCACCCTGGCGCCGTTCGTAGCACTCTCCGTGCCGCTGTATCTCGCGGTCCGGGCCTGGCCGCCGTCGGCCGGCCCTGCGGGCGCGGGCTCGTGA	MAARPEHRERWETRTLRALMVPANLVLGGLMAFLVALPGVTLLPALVALGRAFSDWHDDGDDAVVTSLLRELRATWRRTWRAGILAGIAVWLLVVDALFLLAHLGTASAGFAVVLGGATLPVAAVVGLVLLLVPVAAARQRDGTVRDWLRAAAAFAAGRPVGTLALLLIGAAVLATCVVLPTLAPFVALSVPLYLAVRAWPPSAGPAGAGS				NA	NA	NA	NA	NA
AK001_02788	1992			hypothetical protein	ATGACCCGACCGCTGCTGATCGCCGACCGTGAGGAGACGCTGCGCGCCGAGCTGCACGACGTGCGCCGCCCGCAGTTGCGCCGCCTGGTGGACGAGTGCGAGCGCCTGACCTCCCTCGAGCTGCCCGAGGAGCACCCCCTGGCGTCCATCACCTACCTGGGTGCGGGCGCCGCGAACCTGGCGCTGGCGTACCGGCTGACCGGCCAGGAGCACTACCTGACCGAGCTGCGGCGCTGGCTCGTGCCGTCCCTGTCGTTCCCGCACTGGGGCCGGGCCAACATGCCGGACCACGACCTGGACGCCGGCTGGATCCTCCACGGCCTCGGCCAGGCCTACTCCTGGGCCGGTGACGCACTGCCGGACGACGAGCGCGAGGCCCTGCGCGACAAGCTGATCCTGCAGGGCACCCGGTTGTACGAGTTCGCGGTGGAGTCCGAGGGCGGCTGGTGGTCGTCGTCGTACTGGCAGAACCACAACTGGATCTGCTATGCGGGGCTCGCCACCGCCGGGTACGCGCTGCGCAACGACCACGAGCAGGCCGCGCACTGGACGGAGCGGGCCAAGGAGAACTTCGACACCGTCCTGGACATGCTGCCCGAGGACGGGTCCAACAACGAGGGCGTCGTCTACTGGCGGTACGGCGTGCCGTGGATCGTCACCTACCTGGACCTGCTCAAGGCCGAGGAGGGCATCGACTGGTTCGCGCGCAGCGACTACCTGCGCGAGACGTTCTGGTACCGGCTGTACCAGGCGGCGCCCGACCTGGAGCGGATCATCGACCACGGTGACTGCCACGACCGACGCAGCGGGCACCCGGTGGCGATGTACTACAAGCTCGCCGCCGAGTACCGGATCCCGCAGTGCCAGTGGCTCGCCGAGAAGGTGGCCGACGACTTCTTCTGGCGCGAGGCCTACGAGAGCGGTGTCCGGCCCGGGGTGCGCGCCGAGGCCTACCAGGAGCTGCTGTGGTTCGACCCGCAGGCGCCCAGCGCGGACCCGTACGACCTGCCGACGAGCCGGTGGTTCCGCGACCTGGGTCTCGTCGTCGGCCGCACGTCCTGGGACGCCGACGCCGTCATGGTCTCGTTCAAGGCGTCCCCGGGCGGCGGGCACAAGGCCTGGGAGACGGCGCACCGCATCAAGGCGGAGAAGGGCTGGACCACCCTGAACGCCGGGCACCACCACCCGGACTCGGGCACCTTCACGCTGCTGGGGCACGGCGCCTACCTGGCGCTCGACGAGGGGTACTCGTCGCGCAAGCGCACCGCGCACCACAACGCGGTGCTCGTCGACGGCAACGGGTTCGTCAACGAGGACCGGTACCACGTCTTCGAGAACCTGCCCTACGAGCACCAGGCGAGCATCCTGACCGCCACGCTGGCGGACGGCTGGGTGCACGCCGTGAGCGAGACCGCGGCGATGTACGACCCGTCTCTCGGCGTCGAGCGTGCCCGCCGCCACCTGGTGCTGACCCCGAGCGGTGCGCTCGTGGTCCTGGACGACCTGCGTGCCGCCGCGCCGCGGACCTGGACGTTCCTGCTGCAGACCGAGCACCCGGCCCGCGCCGAGGGCGACCGTCACTGGGTCGCCGAGGCCGGGACGGGCCGTCTGCGCGTCACGGCGCTGGACGACGCGGTCGACGTCGAGACGGTGCCGACGCCGGTGCACGCCAACCCGACGTCGTCGACCCCGAGCCTGGCGATCGAGAAGACGCTGCACACCCTGCGTCGCTCGACGGCGCCGACCACCCGTGGCCGTTTCCTGACCGTGCTGGAGCCGCGAGCCTGGCACGACGAGGCCCGCGCGGAGGTGTCTGTCGAGGACTCGGGTGACACGGTCACGGTCCACGTCGACCACGACGGCGTCCGCGAGACGGTGACGCTGGATCTCGAGCTCGGCACGCCGGCGGGCGCCGGGACGAGCGGGACCGGGTTCGCGGCCCGCGTCGACGTCGCCGCGACGGCCGGTGCCGGGGCCGGCACGACGGAGTGA	MTRPLLIADREETLRAELHDVRRPQLRRLVDECERLTSLELPEEHPLASITYLGAGAANLALAYRLTGQEHYLTELRRWLVPSLSFPHWGRANMPDHDLDAGWILHGLGQAYSWAGDALPDDEREALRDKLILQGTRLYEFAVESEGGWWSSSYWQNHNWICYAGLATAGYALRNDHEQAAHWTERAKENFDTVLDMLPEDGSNNEGVVYWRYGVPWIVTYLDLLKAEEGIDWFARSDYLRETFWYRLYQAAPDLERIIDHGDCHDRRSGHPVAMYYKLAAEYRIPQCQWLAEKVADDFFWREAYESGVRPGVRAEAYQELLWFDPQAPSADPYDLPTSRWFRDLGLVVGRTSWDADAVMVSFKASPGGGHKAWETAHRIKAEKGWTTLNAGHHHPDSGTFTLLGHGAYLALDEGYSSRKRTAHHNAVLVDGNGFVNEDRYHVFENLPYEHQASILTATLADGWVHAVSETAAMYDPSLGVERARRHLVLTPSGALVVLDDLRAAAPRTWTFLLQTEHPARAEGDRHWVAEAGTGRLRVTALDDAVDVETVPTPVHANPTSSTPSLAIEKTLHTLRRSTAPTTRGRFLTVLEPRAWHDEARAEVSVEDSGDTVTVHVDHDGVRETVTLDLELGTPAGAGTSGTGFAARVDVAATAGAGAGTTE				NA	NA	NA	NA	NA
AK001_02789	1749			hypothetical protein	ATGACGACGGTCCCCACGGCGCCGGGCGGCTGGTGGCACGACTACGTCTGCCCCACGCACCACGTCGAGCTGTCCGGCACCGCCCCCGGGGGCCACGGGTGCCCCCGGGGGTGCGTGGTCGCCGGCGAGAAGTACGACGCCGCCCTGCGCACGTTGGACCACCAGCGCTGTGCCCGCGAGGTGCGATGCCTGGCCCGGACCGGGGAGGCCGCCGACCGGCGCCACGCCGTCGCCCTGCTCGGTGAGATCGCGAAGGTCTACGGCGACGTCGTCGGACCGGGCTGGAACGACGCCGCCGAGTCCTGGATGCTCCGCGGCAGGATGTTCGCCCAGGCGCTCACGGAGGCGCAGTGGGCGGTGCAGGTCGCCGACGCCGTGCTGGTCCTCGGGCCCGAGGCGCACGTCGCGGGCGTGGACGACCTCCTCGAAGGCCTTCTCGCCACCTTCGAGCAGGCCTACGGCGTGCTGGTCGACGAGCGGCAGGACGAGCGCAACAACTACACGGCGTGGCTGTGCGCCGCCGGTGCACTGGTCTCGCGCGCCCTCGACGCTCCGCACGAGGTGGTCGCCACGTGGCACACCCGGGCGCTCGCCCACCTCGAGATCGCCGTCGGCGACGACGGCTGGGAGTGGGAGGGGTCCACCTACTACCACCTGTTCGTGCTGCGCGCGTACCTGCTGACGTTGCGGGACGCCGTCCCTGCGGACCTTCCTCGGCCTGCGGTCGAACGCCTCGCCGCGATGGTGCGGGTGCTCGCCGAGGTGGCGGCTCCGGACGGTACCCTCCCGGCGATCCACGACGGCCCCTACGACCGGGTGCCCATGCACCAAGAGGTGCTCGAGATCGCCGCCATGGCCCGTGGTCTGCTGGCCCCGGCCGGGCTCGAGGCGGTGGCGACGGCGGCCAGGGCACGGCTCGGCCGGGCCGACGACGGCCTCGACCGGCTGCTGGACGGCTGGTTCGGCGGGCCACCGGTGCAGGTCCCCGCGCCGACACGGGGCAGCGTGTACTTCCCGCAGGTGGGTTACGCCGTCCTGCGGGACGACGCCGACACGTGGCAGGCCGTCGTGGACGCCGGACCGCACGGGGGATCCCACGGCCACCACGACAAGCTGGCCCTCTACCTGTACGGCACCGCGCCGTGGCAGCCCGCACCCGGGGTGCCGCCCTATGCGAGCCCGTTGCGGCGTGGTCACTACGCCCGAACCCTCGCGCACCCGACCCTCCGTGTCGACGGCCGGGACCAGCACGAGACGACCGGCCGTGTGGAGCGCTGGGCGCCCGAGGCCGGGCTGGTCGTGACCAGCGCCGAACCGTACCCCGGGGTCCGGGTGCGCCGCGCGACGCGCCTGACCGCCGGTGTCCTCACGGACGTCGTCACGGTGGAGGCCGACGAGCCGCACGAGTTCGTCCTCGCGCTGCGGCCCGCCGTCGACCTGACCGTCCGGCACGTGCCGGACGGTGCCCGGACCACCTGGACGGCCGACGACGGCGCTACCCTGCACGGCACGCACGCCGCCTCTCCCGGTGCCGCGCTCGCCGTCGTGCCCGGCCGGGGGCCGTCGGACGACCCGGCCGCGGTCCGGTCGGTCGCCGACTGGACCCTGACCGGTGATCGCGCGGTCTTCGCCTCCTTGTTCCAGCAGGGCCCGGATCCCGCGCCGGCCCGCATCGACCTCGCGCCCGACGGCGCCACCTTCCACCTGACCACTCCCGACGGGGAGAAGACCATCGAGGGAGCACCATGA	MTTVPTAPGGWWHDYVCPTHHVELSGTAPGGHGCPRGCVVAGEKYDAALRTLDHQRCAREVRCLARTGEAADRRHAVALLGEIAKVYGDVVGPGWNDAAESWMLRGRMFAQALTEAQWAVQVADAVLVLGPEAHVAGVDDLLEGLLATFEQAYGVLVDERQDERNNYTAWLCAAGALVSRALDAPHEVVATWHTRALAHLEIAVGDDGWEWEGSTYYHLFVLRAYLLTLRDAVPADLPRPAVERLAAMVRVLAEVAAPDGTLPAIHDGPYDRVPMHQEVLEIAAMARGLLAPAGLEAVATAARARLGRADDGLDRLLDGWFGGPPVQVPAPTRGSVYFPQVGYAVLRDDADTWQAVVDAGPHGGSHGHHDKLALYLYGTAPWQPAPGVPPYASPLRRGHYARTLAHPTLRVDGRDQHETTGRVERWAPEAGLVVTSAEPYPGVRVRRATRLTAGVLTDVVTVEADEPHEFVLALRPAVDLTVRHVPDGARTTWTADDGATLHGTHAASPGAALAVVPGRGPSDDPAAVRSVADWTLTGDRAVFASLFQQGPDPAPARIDLAPDGATFHLTTPDGEKTIEGAP	PGPT0019410_231	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019410-alyA3|alg17C-K20525	NA	NA
AK001_02790	765	fabG_2		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGCAGCACGTACTCAGCGGGCGCACGGCGCTCGTCACCGGCGGCGGTCACGGGATCGGCGCCGCCCTCGCCCTCGGGCTCGCCGAGGCGGGCGCCGACGTCGCCGTGCACTACGCGCACTCCGGTGACGCCGCGGCCACCGTCGTCGACAAGATCACCGGCATGGGGCGGCGCAGCATCGCCGTCCAGGGCGACCTGACCGACCCCGAGGCGGCGCGCACCGTCGTCGAGTCGGCCGCGGGTGAGCTCGGCGGCCTGGACGTCCTGGTCAACAACGCCGGACACCTGGTCGGCCGCGCCACCGTGGCGGAGATGACCGACGAGCACTGGGCCAAGGTCTGGAACGTCAACGTCTCCAGCACCTTCTACGTCACCCGTGCCGCGGTGGGTCATCTGAAGGCGAGCAGCGCCGGACGCGTGGTCACGATGGCGTCGCTCGCGGCGGAGAACGGCGGCGGTCCAGGGTCCGTGGCCTATGCCGCCGCCAAGGCCGGCATCGTCGGGTTCACCCGGGGGCTCGCCAAGGAGCTCGCCGGTGACGGTGTCACCGTCAACGCGCTCGCTCCCGGGTTCATCGGGGACACCCCGTTCCACGACGCGTTCACGCCGCCCGAGGCGCAGGCCAACATCGTGGCGGGCATCCCGCTGGGGCGTGCCGGTACCGTGGACGACGTCGCCGCGGTGACCACGTTCCTCGCCTCCGACGCCGCCGGCTACGTGACCGGCCAGGTCCTCGACATCAACGGGGGGCTCAACTTCCGATGA	MQHVLSGRTALVTGGGHGIGAALALGLAEAGADVAVHYAHSGDAAATVVDKITGMGRRSIAVQGDLTDPEAARTVVESAAGELGGLDVLVNNAGHLVGRATVAEMTDEHWAKVWNVNVSSTFYVTRAAVGHLKASSAGRVVTMASLAAENGGGPGSVAYAAAKAGIVGFTRGLAKELAGDGVTVNALAPGFIGDTPFHDAFTPPEAQANIVAGIPLGRAGTVDDVAAVTTFLASDAAGYVTGQVLDINGGLNFR	PGPT0003180_8248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059	NA	NA
AK001_02791	933	araQ_7	COG0395	L-arabinose transport system permease protein AraQ	ATGGCTCTCCTCACTCCCCGGACCTCCACGAGCCCGTCGGCGACCCGGACCGTCCGCGCGACGAACCAGTCGTCCGTCCGGCGACGCAACAAGCTCATCCTGCACCTGCTGCTGATCATCGGTTCGGTCACGATGGTGATCCCGTTCGTCTGGATGCTCTTCACCTCGGTGAAGAGCCCGGCCGAGCTGGCGCAGTTCCCTCCGACCTTCTTCCCCCACGAGTGGCACTGGTCAAACTACGCTGAGGCGCTCGACGCCGCGCCGTTCGACAAGTACTTCCGCAACTCGCTCATCATCGCCACCGGGCACACCCTCATCACGCTGGTCATCGGCTCCATGGCCGGGTACGCGCTGGCGCGTATCCGCTTCCGCGGGCGGGAGATCATCTTCCTGTCCATGGTCGCGATGCTCATGATCCCGACCTACACGAAGATCGTCCCGCAGTTCCTCATCGTGAAGTTCATGCCCCTGTTCGGCGGCAACGACATCACGGGACAGGGCGGCAGCGGCTGGCTGGACAGCTGGTGGGCCCTGCTCATCCCGGGCGGCCTGAGCGCCATGTCGATCTTCCTTTTCCGGCAGTTCTACCTGACCCTGCCCAAGGAGCTCGAGGAAGCGGCGCGCCTGGACGGTCTCGGCGAGTTCCGGATCTTCGCGCAGATCTACACCCCGCTCATGAAGCCGGCCGTCGCGACGGTCGCCCTGCTGACCTTCCAGGAGAGCTGGAACAACTTCCTGTGGCCGCTGCTGGTCACGACCTCGGACGACCTGCGGGTGATCCAGGTCGGCCTGGCGGTCTTCCAGCAGGTGGAGGCCACCGCCTGGCAGTACCTGATGGCCGGCACCACCTTGGCCACCGTCCCGATGGTGCTGCTGTTCGTCATGGCGCAGAAGTACTTCATCCAGGGATTCACCAACTCGGGCATCAAGTGA	MALLTPRTSTSPSATRTVRATNQSSVRRRNKLILHLLLIIGSVTMVIPFVWMLFTSVKSPAELAQFPPTFFPHEWHWSNYAEALDAAPFDKYFRNSLIIATGHTLITLVIGSMAGYALARIRFRGREIIFLSMVAMLMIPTYTKIVPQFLIVKFMPLFGGNDITGQGGSGWLDSWWALLIPGGLSAMSIFLFRQFYLTLPKELEEAARLDGLGEFRIFAQIYTPLMKPAVATVALLTFQESWNNFLWPLLVTTSDDLRVIQVGLAVFQQVEATAWQYLMAGTTLATVPMVLLFVMAQKYFIQGFTNSGIK	PGPT0016540_1083	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_02792	942	araP	COG1175	L-arabinose transport system permease protein AraP	ATGACAAGCACCGAGACCCCAGCGGGGGCCGGACTCGCCGCGCGCAAACCCGCACCGGTCCGACGCCACAAGTACTCGCGGGCGGAGCGCAAGCTGCGACGCACGGGTTGGCTGATGATCACGCCGGCTCTGCTGCACCTCGCCCTGTGGACCGCCATCCCGGTGGTCGCCACCTTCGCGCTCGGGTTCACCAACTACAACGTGTTCTCCCCGCCCCAGTGGGTCGGGTTGCAGAACTACGTGGAGATCGTCCAGGACCCGGTCTTCCGCAAGGCCACCTGGAACACCATCGTCTACACCTTCTGGACCGTGCCGGTCTCGATGGCCATCGCGCTCGTCATCGCCGTGGCCCTCAACCAGGGCCTGCGGTTCCAGAAGTGGTACCGCACGGCCTTCTTCCTGCCCCAGGTCACCGCGACCGTCGCGATCGCCATGGTGTGGCTGTGGATCTTCAACCCGCAGCAGGGCCTGCTCAACGCCTTCCTCGGCCTCTTCGGCATCCCCGGGCAGGCATGGCTCGCCGACCCCGACTGGGCGCTGTGGTCCGTGATCCTCGTCGGCGCGTGGCAGGGCATCGGGATCAAGATGCTGATCTACATCGCCGCGCTGCAGAACATCGACGGGAGCCTGTACGAGGCCGCGTCGGTCGACGGCGCGTCCACCGTGCGCAAGTTCTTCGCCATCACCGTCCCGATGCTGAAGCCGGCCACGTTCTTCGTCCTGGTCATCTCGATCATCAACGCGTTCCAGGTCTTCGACCAGATCTACGTGCTCACCAACGGCGGCCCCGCCAACGCGACCACGATGATGACCTACGAGGTCTACCGGTCCGCGTTCGAGGAGTTCCGCATGGGAATGGCCTCCGCGCAGTCGGTCGTCCTGTTCATCTTCCTGCTCTTCATGACGCTCGTCGGTCGACGTGCCACCCGAGAGGACCACTGA	MTSTETPAGAGLAARKPAPVRRHKYSRAERKLRRTGWLMITPALLHLALWTAIPVVATFALGFTNYNVFSPPQWVGLQNYVEIVQDPVFRKATWNTIVYTFWTVPVSMAIALVIAVALNQGLRFQKWYRTAFFLPQVTATVAIAMVWLWIFNPQQGLLNAFLGLFGIPGQAWLADPDWALWSVILVGAWQGIGIKMLIYIAALQNIDGSLYEAASVDGASTVRKFFAITVPMLKPATFFVLVISIINAFQVFDQIYVLTNGGPANATTMMTYEVYRSAFEEFRMGMASAQSVVLFIFLLFMTLVGRRATREDH	PGPT0016535_1964	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_02793	1314			hypothetical protein	ATGATCATCAAGAGTCAGTCCCGTCGACGGTTCACGGGCGTCGCCGCCCTGGCCGCCGTCGCACTGGGGATCACCGCCTGCAGCTCGGGCACGAGCTCGGGCACCGACGCCGAGGGCGGCAGCGATGACGTCTCCGGCGACATCACGCTGCTCACCCCGATCTTCGAGGGCACCGACGGACAGCAGCTCCTCGAGGACGAGCTGCTCCCGCAGTTCTACGAGGACTACCCGGACGTCACCGTGTCCGTGGACTACACGACCTACGGCAACCTCAACGAGAAGCTCACCACCGCTGCGGTGTCCGGGGCGGTGCCCGACGTCATGATGATGGGCGTCGGCTGGATCGAGGGCTTCGCCGACCGGGGTCTGCTGGCCGACCAGAGCGAGCTCGGCAACACCGAGGAGAAGCTCCTGGAGACCTACACGCCGGCGATCGTCGACGCCGGGACGTGGGACGGCGGCGTCTACGGCATGCCGATCATGCTCGACACCCGCTACGGGGTCGCCAACATGGAGCTGCTGGAGGAGGCCGGCTATGACGCACCGCCGTCGTCCTGGGACGAGCTCGTCGAGATCTCCGAGGCCCTGACGGTCCGCGCCGACGACGGCACGCTGGAGCGCGCCGGGTTCGACCTGCTCTCGAACGACCCGCGACAGGTCTTCGAGACGTTCCTCTTCTCCGCCGGTGGCGACCTCTTCAACGAGGACGTGACCGAGCCGACGTTCAACGGCCCGGAGGGTGTGTCGGCGCTGCAGCTCATGACCGACCTCATCAACGAGCACGAGGTCGAGGACATCGGCTTCTCCTCGCCGGACGCCGCCGTCAACCCGCTCCTGAACGGACGGGCCGCGATGGGCCTCGCCCACAACAACCTGTGGACGCAGGGACTCGAGGCGGACCCCGAGATGCTCGAGAACCTCGAGCCCTTCGTGATCCAGGGCGAGGGCGAGGGCATGTTCTTCGGCGGCACGTTCGCCACCCGTTCTGCCACGTCCCAGCACCCCGAGGCCGCCCAGGCGCTGCTCGAGTTCCTGGCGAGCCCCGGACCGGCGCTGGCTGCCAACGAGCAGCGCGGCAACGTCCCCGCGCTGACCGAGCTGCTCGACAGCGACTACGTGCAGTCCAACCGGTTCGTCCAGTTCTCGATGGAGAACCTCGACGTGGCCAAGCGTGAGGGCGGCCCGCCCTCGTGGCTCGAGGTCCGCGGCGACTTCGCACCGGCCATCGAGTCGGCACTGCTCGGTCAGGCCGAGCCGCAGGCAGCCCTCGACGACCTCGCCGCGCTCGTCGACGAAGCGATGGCCCGCCAGTAG	MIIKSQSRRRFTGVAALAAVALGITACSSGTSSGTDAEGGSDDVSGDITLLTPIFEGTDGQQLLEDELLPQFYEDYPDVTVSVDYTTYGNLNEKLTTAAVSGAVPDVMMMGVGWIEGFADRGLLADQSELGNTEEKLLETYTPAIVDAGTWDGGVYGMPIMLDTRYGVANMELLEEAGYDAPPSSWDELVEISEALTVRADDGTLERAGFDLLSNDPRQVFETFLFSAGGDLFNEDVTEPTFNGPEGVSALQLMTDLINEHEVEDIGFSSPDAAVNPLLNGRAAMGLAHNNLWTQGLEADPEMLENLEPFVIQGEGEGMFFGGTFATRSATSQHPEAAQALLEFLASPGPALAANEQRGNVPALTELLDSDYVQSNRFVQFSMENLDVAKREGGPPSWLEVRGDFAPAIESALLGQAEPQAALDDLAALVDEAMARQ	PGPT0016545_5910	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_02794	1086	degA_9	COG1609	HTH-type transcriptional regulator DegA	GTGACACGCGTGACGATCCAGCAGGTCGCAGCAGCCGCTGGGGTCTCGCCCAGCACCGTCTCCAACCTGCTGAACGGCCGCACCAACCGCATGGTGCCGGCCACCAAGGAGCGCATCGAGCGCGCCATCGCCGAGCTCGGCTACCGACCCAACCGTGCGGCTCGCCAGCTGCGCACGGGACGCACGCAGACGGTGGGGCTCATCGTGCCGTCCGTCGGCAACCCGTTCTGGGGAGCGTTCGCCCGGGAGCTCGAGGTCGCGGCCCTGGCCGTCGGGTGCAACGTGCTGCTGTGCAACAGCGAACGCGACCCCGACCGCGAGCGCCGGTACGTCGAGGAGCTGTGGGAGGACGGGGTGCGCGGCATCGTCCTGTGCTCCTCCCTGCCGACGCTCGACCACCTCGCCGACATCGTCCGGCGGGGGCTGCGGCTCGTGACGTTCGACCGACCGGCGCAGGCCGGTGACCCGGAGGAGGTCGTCAGCGTCAGCATCAACAACCACGTGGGCGGCTTCCTCGCGACCTCCCACCTGACCGAGCTCGGCCACGAACGGTTGACCTTCGTCTCCGGGTCGCTCGCGGCGGTCAACCGCACCGGCCGCTTCCGCGGGTTCTGCACGGCGCTCGAGGGGGCTGACCTGGACCCGGCGGCGATGCCGACGTGGACGGCGGGTGGCGGCGCCCCGTTCGGGGACGTCGAGGCCGCCCAGGTGGGCCGGCAGGCCGCGCACGACCTGTTCTCCGGGACCGTCGAGCCGCCCACGGGCATCGTGGCGATCAACGACATGACCGCGCTCGGCTTCTGCCGCGGCCTGCGTGACCAGGGCCTGCACGTCGGCAAGGACGTGTCCGTGGTCGGCTTCGACGACATCATCCTCGCGGAACTGTACGACCCGCCGCTGACATCGGTGCGCCAGCCCATCTCACGGATGGCGTCGTTGAGCCTCGAGGAGGCGCTGAAGGAGGACGACCGCGAGCCCGGCCGGTCGGTGCTGCTGCGCCCCGAGCTGGTGGTGCGGGACTCGACCGCGTCGCCGACGGGGGCCACAGCACCGGTCGTGACCGACGAGGACGGGGTGCTGCAGTGA	MTRVTIQQVAAAAGVSPSTVSNLLNGRTNRMVPATKERIERAIAELGYRPNRAARQLRTGRTQTVGLIVPSVGNPFWGAFARELEVAALAVGCNVLLCNSERDPDRERRYVEELWEDGVRGIVLCSSLPTLDHLADIVRRGLRLVTFDRPAQAGDPEEVVSVSINNHVGGFLATSHLTELGHERLTFVSGSLAAVNRTGRFRGFCTALEGADLDPAAMPTWTAGGGAPFGDVEAAQVGRQAAHDLFSGTVEPPTGIVAINDMTALGFCRGLRDQGLHVGKDVSVVGFDDIILAELYDPPLTSVRQPISRMASLSLEEALKEDDREPGRSVLLRPELVVRDSTASPTGATAPVVTDEDGVLQ				NA	NA	NA	NA	NA
AK001_02795	858			Ureidoglycolate lyase	GTGAAGCTCGCACGCCTCGGGCCGGTCGGCGCCGAACGGCCGGCCGTCGTCGTCGGCCCCGACGCCTACGTCGACGTCGGCGACCTGGTGCCCGACATCGACGCCACGACGCTCCCCGACGGGTTCGGGTGGCTGGCGGAACGCGTCGAGTCCCGGGTGACGGCAGGTCTCGTCGAGGCGCTCGGCGCACGGCGGGTCGGGCCGCCCGTGGCGCGTCCGCACCAGATCCTGTGCGCCGGCCTCAACTATCGCGACCATGCCGTCGAGATCGGCGCGGAGGTACCGGCCCTTCCGCTGGTGTTCTCGAAGTCACCGAACACGCTCGTCGGGCCGTACGACGACGTCCGGGCGCCGCGAGGCTTCTCCCGCCTGGACTGGGAGGTGGAACTGGGCCTCGTCGTGGGCCGCCGGACGAGCTACCTGGACAGCCCCGACCATGCTCGTGACCACGTCGCGGGGTTCGTCGTCTGCAACGACGTGAGCGAACGCGCGTTCCAGGACGAGCACGGGGGCCAGATCCTCAAGGGCAAGTCCGCCGAGACGTTCAACCCGTGCGGTCCCTGGCTGGTCACACCCGACGAGGTCGGGGACGTCTCGGCCCTGGGCATGTGGCTCGACGTCTCCGGTGCGCGCCGCCAGTCGGGCAGCACGGGCACGATGGTGTTCGACCCGTACGAGCTCCTGTGGCACCTGAGCCAGTACATGGTGCTCGAACCGGGCGACCTGGTGAACACGGGCACCCCGCCCGGCGTGGCCAACGGCATGGCCGAACCGGCGTGGCTGCAGCCCGGCGACGTGATGGAGCTCGGCATCGACGGGCTGGGTTCGCAGCGCCAGCGCGTGGTCGCGCCGCGATGA	MKLARLGPVGAERPAVVVGPDAYVDVGDLVPDIDATTLPDGFGWLAERVESRVTAGLVEALGARRVGPPVARPHQILCAGLNYRDHAVEIGAEVPALPLVFSKSPNTLVGPYDDVRAPRGFSRLDWEVELGLVVGRRTSYLDSPDHARDHVAGFVVCNDVSERAFQDEHGGQILKGKSAETFNPCGPWLVTPDEVGDVSALGMWLDVSGARRQSGSTGTMVFDPYELLWHLSQYMVLEPGDLVNTGTPPGVANGMAEPAWLQPGDVMELGIDGLGSQRQRVVAPR	PGPT0001745_253	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336	NA	NA
AK001_02796	954	kdgK_2		2-dehydro-3-deoxygluconokinase	ATGACGGCCCCCGGTCCCGTCCTCACCGTCGGTGAGACCATGGTGCTGGTGGGCAGCACCCGTCCGGAGCCGCTGCAGCACAGCACGCTGATGTCGCTCGGGATGGGCGGCGCGGAGAGCAACGTGGCGATCGGGCTGCGTCGCCTCGGTGCGCCGGCGGCCTGGATCGGCCGCGTCGGCGCGGACTCCGCCGGCGACCTGGTCGAACGGCTGCTGCGCGGGGAGGACGTGGCGACCACGTGCCTGCGCGACGACGGGGCACCCACGGGCCTGATGCTCAAGGAGCGGCGCTCCACCATGGAGACGCGCATCTGGTACTACCGCGCCGGGAGCGCCGGTTCGAGGCTCGGGCCCGAGGACGTCCCCGACGACGCGGTGCGGTCGGCGAGCATGCTCCACCTGACCGGGATCACTCCTGCGCTGTCGCCGTCGGCCCGCGCCCTCACCCTGGACCTCGTCGACCGTGCCGTCGCGTTCGGCGTCCCGGTCTCGTTCGACCTCAACTATCGGTCGTCCCTGTGGTCCGCGGACGACGCACGACGCCTCTACGCGCAAGTCGTCCCCCGGTGCGAGATCGTCTTCGCCGGCCTGGACGAGGCTGCGCTGCTCGGGTGCGACGAGCACGACGCCCCGACGGCCGCGCGGCAGCTGCGAGACCTCGGCGCGCGGACCGCCGTCGTCAAGCGGGGGGCGCAGGGGGCCGTCGCGGCGAGCAGGGGCGGCGAGTTCTCCGCACCAGGAGTGCCGGTCGACGTCCGGGACACCGTGGGAGCCGGCGACGCGTTCGTCGCCGGATTCCTCGCCGACGCGCTGGCAGGTCGGGACGTGCCGACGGCGCTGGCGACCGCGGCCGCCGTCGGCGCCTACGCCTGCACCGGTGACGGCGACTGGGAGGTCCTTCCCCGGCGCTCCGAGCTCGCCAGGCTCTCCTCCAGCGAGCCCGTCACCCGCTGA	MTAPGPVLTVGETMVLVGSTRPEPLQHSTLMSLGMGGAESNVAIGLRRLGAPAAWIGRVGADSAGDLVERLLRGEDVATTCLRDDGAPTGLMLKERRSTMETRIWYYRAGSAGSRLGPEDVPDDAVRSASMLHLTGITPALSPSARALTLDLVDRAVAFGVPVSFDLNYRSSLWSADDARRLYAQVVPRCEIVFAGLDEAALLGCDEHDAPTAARQLRDLGARTAVVKRGAQGAVAASRGGEFSAPGVPVDVRDTVGAGDAFVAGFLADALAGRDVPTALATAAAVGAYACTGDGDWEVLPRRSELARLSSSEPVTR	PGPT0018060_2514	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874	NA	NA
AK001_02797	1977			hypothetical protein	ATGATCCAATGGCGAATCGTTGCACCAAAGGTGGCGGCCACCTCCGCCGCCGCCCTCCTCCTCGGTCTCCTCGGCGGTCCGGCCGCCGCGCAGACCCTCCCGTCCGCACCGACGCACCCCGTCCGGGCCGACGTCGTCGACCCGCCCGCGCACTGGACCGTCGACTCGGCACGCGCGCTGAGCAGCGACGGCAACCTGCCCGAGTTCGCGATCGACGACGACCCCACGACCCGCTGGTCGTCCCTCACCTCGTCTCCGGACGAGCCCCAGTGGCTCCAGCTCGACCTCGGCGAGGAGCGTTCCGTCGGATACCTCGGCGTGGCGTGGCACAAGGGCGACGAGCGACAGTCGCTCTTCGGCGTCGAGCTCTCCACCGACGGGACCACCTGGCGCTCCGCCGCGACCGACCAGGCCAGCTCGGGAACGTCGTCGAACCTCGAACCGGTCACGCTCGAGGACGACGCCACCACCGGCTCGCAGGCCCGGTACGTGCGCTACCTGGGCTACGGCAACAGCGTCTCGGGCTGGAACAGCGTCACGGAGGTCCGCGTCTACCCGCCGAACCCGCAGGGGGCCGTGGTCGACGACCTCTCCGACCTCCTGCCCGCACCGGACCCGGACGCGGAGCCCTGGACCGAGCCCGGGCTCGTCGAGCCCGACGGCACGAGGTACCGCCCGGCCGAGCCCGGTGCCGTGACCGGCCGCACCGTGGACGTGCGCGACCACGGTGCGGACCCGGCTGCCGGCACCGGCGACGACGCCACCGCGATCCGCGCCGCCCTGGACGCCGCCGAGCCGGGGGACGAGGTCTACCTTCCGGCCGGTACCTACGACCTGCTCACCACCGAACCGGCCGACCCCACCACCAACGTGGCCCTGCGTTCCGGCATCGACCTGCGCGGGGACGGAGCCGGCTCCGTGCTCGAGTCCGCGCTGACCCCCGCGACGCAGTCCGGCAAGGTGCTGCGCGGCTACGGCGTCCAGGACGTCGCCGTCAGCGACCTCACCGTGAGCTCGACCTACGACGGTCCGCTGTCGACCGACCACCAGGACTCCACCGCCGGCGGCGGCCCCGCGTACGGCGTCGTCGTGGCCAACCTCGGATCCCGCGCGAGCCGACAGGTGCTGGTCGAGGACGTCGTCGTCGAGCGGTTCCAGAAGATGGGCGTGCGCATCGAGAAGAGCCGTGACGTCACGGTGCGCGGCGGCACGTTCCGCGACGCCACCAGCGTGGCGGGCGGCGGCAACGGCTACGGCATCTCCATCCAGGGCACGGCCGGCAAGGACCGCTACGCGTACACCGACGACTCGCGGCACAACGCGGTGGTCGGCAACGTGTTCGAGGGGACGCACCTGCGCCACGCGATCCTGCTGCAGTACTACACCCACAACAACCTCGTCGCCGGGAACACCATCCGTGGCGGCGTGCTCGACGCCATCGACCTGCACGGCGAGGACGAGTACCTCAACGAGATCCGGCACAACACCGTCAAGGACGTCCGCGCCGCGGCGATCGCGCTCGGCAACACCGGTGGGACGGCCACCCAGCACGACGCCGCCGGCCCGGGGAACTGGATCCACGGCAACGTGCTGAAGAACAACCGTGAGGGCATCCTGCTCATCCTGGGCACCCCCGACACCGTCGTGGAGCGCAACGTGGTGACCGGCGGCCGGGGCGACCACGTGCGGTCGGGCATCGAGGTGCGCAACGCACCGGGGACCGTGGTGCGGCACAACACCGTGCTGTCCAACCGCGCGGAGGACTTCTGGGGCATCCACCTGGCCGAGGACCCCGGCGACGACGGTCACGCGAGCGGCGTGCCGACCGACGTGCTCGTGAAGCGGAACCTGGTGGTCGCCAACTCCGGAGGGGTCCGGGTCGACGCGGGCGAGGACGTCCGGCTGGTCGACAACACCGTCCGGGGCAACCGGGAGAACACCCGGATCGCCGAGGGAGTCGGGGTCACCGTCGAGTAG	MIQWRIVAPKVAATSAAALLLGLLGGPAAAQTLPSAPTHPVRADVVDPPAHWTVDSARALSSDGNLPEFAIDDDPTTRWSSLTSSPDEPQWLQLDLGEERSVGYLGVAWHKGDERQSLFGVELSTDGTTWRSAATDQASSGTSSNLEPVTLEDDATTGSQARYVRYLGYGNSVSGWNSVTEVRVYPPNPQGAVVDDLSDLLPAPDPDAEPWTEPGLVEPDGTRYRPAEPGAVTGRTVDVRDHGADPAAGTGDDATAIRAALDAAEPGDEVYLPAGTYDLLTTEPADPTTNVALRSGIDLRGDGAGSVLESALTPATQSGKVLRGYGVQDVAVSDLTVSSTYDGPLSTDHQDSTAGGGPAYGVVVANLGSRASRQVLVEDVVVERFQKMGVRIEKSRDVTVRGGTFRDATSVAGGGNGYGISIQGTAGKDRYAYTDDSRHNAVVGNVFEGTHLRHAILLQYYTHNNLVAGNTIRGGVLDAIDLHGEDEYLNEIRHNTVKDVRAAAIALGNTGGTATQHDAAGPGNWIHGNVLKNNREGILLILGTPDTVVERNVVTGGRGDHVRSGIEVRNAPGTVVRHNTVLSNRAEDFWGIHLAEDPGDDGHASGVPTDVLVKRNLVVANSGGVRVDAGEDVRLVDNTVRGNRENTRIAEGVGVTVE				NA	NA	NA	NA	NA
AK001_02798	606	comR		HTH-type transcriptional repressor ComR	ATGGGCGTGCAGGAGAGGGCTCCCGCCGGGCGCCCGCGGTCGTTCGACGAGGAGTCGGTCCTCGCGGAGCTGACGGCGCTCTTCTGGCGGCAGGGCTACGGACAGACCTCGATGGCCGACATCGTGGCGGCCAGCGGGGTCCACAAGCCGAGCCTGTACCGCGCCTTCGGGGGCAAGGACGAGCTGTTCACCACGGTGCTGCGCCGCTACCTGCGGGAACGCATGGAGATGTTCACGCGGCTGATCGCCGAGGCCGGTCCGGGCGTCGACGGCGTGCACCGGTTCCTGGACCTCGTCGGCGTCGACGCCGCCTCCGAGCGCGGACGGGACGGGTGCCTGATGGTGATGTCGTCCAACGAGCTGCGCGGCACGCTGGGCGACTACGACTTCGGAGCCGACTACCGCCGGCAGATGCACGAGGTGCTGGGCACCCTCGTCCGGCGCACGCTTCCGGGCGCGCCGGACGACGACGTGGTGCTGCGGCTCCGCACCGACCTGCTCACGACCCACCTGCTGGGCCTGCACGTCGTCATGCGGTCCGGGGCCTCGTCCGAGGAGATCGGACGCTGCCTCGCCGCCATGCACCACGTCGTCGACACGTGGTGA	MGVQERAPAGRPRSFDEESVLAELTALFWRQGYGQTSMADIVAASGVHKPSLYRAFGGKDELFTTVLRRYLRERMEMFTRLIAEAGPGVDGVHRFLDLVGVDAASERGRDGCLMVMSSNELRGTLGDYDFGADYRRQMHEVLGTLVRRTLPGAPDDDVVLRLRTDLLTTHLLGLHVVMRSGASSEEIGRCLAAMHHVVDTW	PGPT0004136_327	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE_MEDIATION,PGPT0004136-comR|ycfQ-K22041	NA	NA
AK001_02799	567			hypothetical protein	ATGGTCGACTTCACGCTGCACGACGAGAGCACGGCCCCGGCCGAGAGCCAGGAGCTGCTGGACACCTCGAAGCGCAGCTTCGGGCGGATCCCCGGGCTGCACGCGGTGATGGCGGAAGCCCCCGGTCTGCTCGAGGGCTACCAGAAGCTCCACGGCCTCTTCCAGAGCTCCACCAGCTTCGACGCCGACGAGATCACGGTCGTCTGGCAGTCGATCAACGTCGAGCACTCCTGCCACTACTGCGTTCCGGCCCACACGGCGATCGCCAAGGGCATGGGGGTCGACGACGAGGTCATCGACGCGCTGCGCGACGGCACCCCGCTGCACGACCCGCACCTCGAGGCGCTGCGGACGTTCACGCTGGCCATGGTCCGTCAGCGCGGCGAGGTCGACGACGCGACCGTGCAGACGTTCCTGAACGCCGGCTTCACCCAGCGTCAGGTGCTGGAGATCGTCCTGGGCATCGCCCAGAAGGTGATGTCCAACTACACGAACCACCTGGCCCAGACGCCGATCGACGAGCCCAACCGCAAGTACGAGTGGAAGGGCACCGTCGTCCCGAGCTGA	MVDFTLHDESTAPAESQELLDTSKRSFGRIPGLHAVMAEAPGLLEGYQKLHGLFQSSTSFDADEITVVWQSINVEHSCHYCVPAHTAIAKGMGVDDEVIDALRDGTPLHDPHLEALRTFTLAMVRQRGEVDDATVQTFLNAGFTQRQVLEIVLGIAQKVMSNYTNHLAQTPIDEPNRKYEWKGTVVPS				NA	NA	NA	NA	NA
AK001_02800	141			hypothetical protein	ATGGCGGCGCTCGGCAACGCGCTCGCGGACGACGCGATGCATGACTACGTCGCCGACGGCGCCGTGGAGGACTCGCTGCGCCCGCTGATGGAGATGGAGGAGTTCGGCTCCTCCGGCCGGGAGGCGTCGCACGCCGAGTGA	MAALGNALADDAMHDYVADGAVEDSLRPLMEMEEFGSSGREASHAE				NA	NA	NA	NA	NA
AK001_02801	168			hypothetical protein	GTGCTCAACCCCGGCCGGCACCCGGTCGAGCTGCCCCTGCCGGGCGCGGCCGACGCCACGCCGCTCGTCGGTCGGGGCGTGCGGACCGAGGCCGGCGTGGTGGAGCTCGACGGACACGGCTACGTCGTCCTCGACCTCGGCACAGCCCGCGTCGGCTCAGCGCGGTAG	MLNPGRHPVELPLPGAADATPLVGRGVRTEAGVVELDGHGYVVLDLGTARVGSAR				NA	NA	NA	NA	NA
AK001_02802	2505			hypothetical protein	GTGTTCGAGCCGCCGCTGATCGGTCGCGACCGGGAGAGAGCAGCCCTGGAGGCCGCCCTCTCCTCGGGCGACTCGGTCGTGCTGTCCGGACCGGCGGGCATCGGCAAGACGTATCTCGTGCGCGACGTTCTCGGCGGCGGGCGCGTGCACGCACCGATCGAGCGCGTCCTGGCCGCTCCGACGACGGCGGCACACCCGTTCGGCACGCTCGCACCGCTCGGCCTCATCGCCGACGGTGACCCGCTCCCGCAGACGGTGGCCGCCGTGCTGCGCGCCTGGTCCGCACGTCCGGGACTGGTCCTGTGGATCGACGACGCCCAGCACGTCGACGCTGCGACGGCGACCGTGGTCCGGCAAGCCGTCCTCGCAGGGGTCGTACGGCTCGCCGCGACGCAGCGGAACGCCACCACCCTCCCCGACGACCTCGAGGCGCTGGTCACCGAGTCCGCCGTCCGACGCATCACGCTCGACGTGCTCGACGGCGACTCCACGGCACGGCTGGTCCGGCACTGGGCGGGGCACCGGTCGGTGCCGGACCAGCGGCTCGCCGCCATCACCGCGTTGTCGGGCGGCAACCCGCTCTACGTCCGTGAGCTGACCCGGGCCGCGCTCGACGGCGTCGAGGACCTCCGCGACGCACCGGCGCTGGAGGTCCTGGTCGGCCGGGCCTGCCGCGTGCTCCCGCCGCGGCTGCGCGAGGTCCTCGAGCTGGTCGCGGCCGCGGAACCCGTGCCGGCCGACCTCCTCGCCCGGTGGCAGGAGGAGCTCGTCGCGCTGGAGTCTCTCGGACTGGTGGACCCGTCGGGCGACGTGCTGCGGGTCGACCACCCGCTGCGCCGCGCCTGGCTGCTGCACGCCGGAGAAGCCCGGCACCACCTGATCTACGGCACGCTCCTCGACGAGCTCGCCCGTCGGCCCGACGCCGACGTCGCGCCGCGGCTGGTCGTCGAGTGGCACGACCGCGCCGCCCGCCCGGTCCCGGCCGCGCTGCTCGAGCGCACCGCGCGCCGCGCCGTCGCGCACGGGGACACGGCGACCGCCCACGCCGTCGCCGAGCGTCTCGACGGCGAGGTCCGCGAGCTGGTCGAGACCCAGGCGCTCGCGCTCGAGGGCCGCCTGGACGAGGCCCTGCCACGGCTCGAGCGGCTCGCGCTGGAGGGGACCTCCGAGCACGTCGCCGCCGCGCACTGGGCGGTGCGCTTCCACGGGGTCGCCCTGGGAGACCTCGAGCGGGCGCACCGGGTGGTCGCACGGTTCGCCGACCTGCCGGGCGACGACGCGCGGACGCTCGTGCTGCGCTCCACGCTCTGGCTGTGGACCTACCGGCCGCTGCCCCCGGACGCCGACCCGCTGGCGCTCGCCGCGGCGATCACCGCGCTGCCGGACGGTTCGCCGGCCGCGACCGAGACCAGGTCGGGGGTCGCGATCCTGGTGGCCAACACGCTGGGTCCCGACCAGGGCCGCGCACACCTGCCGGCCCTCGTGCGCTCGGCCGACGCCCTGCCCGTGTCCGACCCGATGCGCACCCAGGTGCCGTTCACCCGCGCCTGGCTGGCGCTGCAGTCCGGCGACGGCGACGCCACGGCACGGCACGCCGCCGAGGCGTTCTCCCTGGCCCGTGCCAGTCACGACGTCGAGCTGATCTCGATGGTCGGCGGCAGCATGGGACTGCTGGTGACCAGCACCGGCCGCGTCCGCGAGAGCGTGTGGATGTCCAGCACGCCCCCGGGTACCGGTGGCCCCGGACCGTTCCGCTTCGCCGAGCTGCAGCACGCCACGCACGCGGGGTCGCTGGTCTACCGGGGCGACGTCGCGACCGCCCGGGAGGCCGCCGCGACCCTCGTGGACCCCGACGACCCCGGTCCGGACCCGCTCGAGCTGCTGACCTGGCGTGCACGGTGCCTCCTCGCCGACGCCGAGGGGACAGGCGCACCGCCCGGACCGGACGCCGCGACCGTCGTCGGACGCTGCCTCGCCTCCCGACGGTTCGGGTACCTCGCGCTCGTGTACCTCGAGTGCGGGCCGGCCGAGGTCGTACCGCGCGCCGTGCACGAGCTGGTGGCCACCGGTCTGCCCGCGGAGATCGGCGGCATCAGCGCCTTGGCGCACGCCGCGGCCGCCGCGCGGGTCACCGACGACGCGTCGGCGTCGGTCGAGGTCGCAGCACGCCTCGAGGCCGGCGGCCTGGTCACGCCGGCGCTGCGCCTCCTCGGAGCCGTGTGCCGCCGTGACGACCTCGACGCCGCGGTGCGTGGCACCGCGCGCGCCGCCGTGCTGCGCCTCCTGCACCGCTGGGACGGCGCCGAGCCGTGGTGGCTCCCCAGGACCCCGACGCCCCGGCAGCGCGAGATCGCCTGGGCCGTGGTCGACGGCGCCACGCCGGCCGAGGTCGCGGCACGGCTCTCGCTGTCGCGCCGGACCGTGGAGAACCACCTGCAGCACGTCTACGACCACGTCGGGGTGCACCATCGCGACGCGCTCGTCGCCACGCTCCGACCGGCGTGA	MFEPPLIGRDRERAALEAALSSGDSVVLSGPAGIGKTYLVRDVLGGGRVHAPIERVLAAPTTAAHPFGTLAPLGLIADGDPLPQTVAAVLRAWSARPGLVLWIDDAQHVDAATATVVRQAVLAGVVRLAATQRNATTLPDDLEALVTESAVRRITLDVLDGDSTARLVRHWAGHRSVPDQRLAAITALSGGNPLYVRELTRAALDGVEDLRDAPALEVLVGRACRVLPPRLREVLELVAAAEPVPADLLARWQEELVALESLGLVDPSGDVLRVDHPLRRAWLLHAGEARHHLIYGTLLDELARRPDADVAPRLVVEWHDRAARPVPAALLERTARRAVAHGDTATAHAVAERLDGEVRELVETQALALEGRLDEALPRLERLALEGTSEHVAAAHWAVRFHGVALGDLERAHRVVARFADLPGDDARTLVLRSTLWLWTYRPLPPDADPLALAAAITALPDGSPAATETRSGVAILVANTLGPDQGRAHLPALVRSADALPVSDPMRTQVPFTRAWLALQSGDGDATARHAAEAFSLARASHDVELISMVGGSMGLLVTSTGRVRESVWMSSTPPGTGGPGPFRFAELQHATHAGSLVYRGDVATAREAAATLVDPDDPGPDPLELLTWRARCLLADAEGTGAPPGPDAATVVGRCLASRRFGYLALVYLECGPAEVVPRAVHELVATGLPAEIGGISALAHAAAAARVTDDASASVEVAARLEAGGLVTPALRLLGAVCRRDDLDAAVRGTARAAVLRLLHRWDGAEPWWLPRTPTPRQREIAWAVVDGATPAEVAARLSLSRRTVENHLQHVYDHVGVHHRDALVATLRPA				NA	NA	NA	NA	NA
AK001_02803	681			hypothetical protein	GTGACGACGGGCGCCGCCCTGGCCGCCCGACGGGACGCCCTGGTCGACCTGCTGGCGGACACCGCCTACTGGAGGACGCTCGAGGCGCTCCACCGTGCCCGTGCGGGCCACCTGTCGGCCGGCGACGCCGGCCGGGAGCGGACGGCCCTGACGGTCGGGTTCTGGACGGCCATCCGCAGCGGCACGCTGCACGCCGACGGCGACCCGCTCGACCGCTACCTCCGCCGCATGGGCGTCTCCGGGCCGGACGCGGGTCGGCTGTCGCCGCGCCTGGGGGCGCGGTACGCCGCGGTCCACGACGACCTGGAGGCCACGCTGCGCGAAGGGCTCCGGCGCGGCGGCGACCGGAGCGACTTCGCCGACGCGGTCACGCTGCGGGACCGGGAGCACCGGGTCCTGGTCGCCGACCGGGTCGCCCACGTCCGCGCCGTGCTCGCCGTGGAGGCGGCGCTCGGAGACGCGACCGTCCCGGCGGACGACACCTGCGCCTGGTACCGCGACGTACGCAGCTATGCCGACCGCTTCGCGGCGACCGGGACTCACGGCGGGTCGTTGACGAACCGGAACCGCACCCGGACGTCGTCCATCGGCACGGCGAACGTCGAGCCGTGCTCGGTCCAGACCTCCGGCACCAGGAACAGCACCCCCGACCCCTCGACGAGCAGCCGCAGCCCGCGGTAG	MTTGAALAARRDALVDLLADTAYWRTLEALHRARAGHLSAGDAGRERTALTVGFWTAIRSGTLHADGDPLDRYLRRMGVSGPDAGRLSPRLGARYAAVHDDLEATLREGLRRGGDRSDFADAVTLRDREHRVLVADRVAHVRAVLAVEAALGDATVPADDTCAWYRDVRSYADRFAATGTHGGSLTNRNRTRTSSIGTANVEPCSVQTSGTRNSTPDPSTSSRSPR				NA	NA	NA	NA	NA
AK001_02804	924			hypothetical protein	GTGACCCCGTCCCCCGACGCCGGCACGGTCGGGCGCGTCGGCGCGTTGCTCGGCTCGATCGTGGCACCGGCGACCCTGGTCACCGGCATCCTGTTCTACTTCGGCTACGTCTCGACGCGGGCCTACTTCCTGTACTTCGGCGTCGACGTCGACGTGCTCGGCTTCGGCACCCAGGACTACGTGATGCGCAGCCCGCAGCCGCTGCTCGTGCCGATGCTGCTCGTGCTCGTGGTGGGCGCCCTGCTGGTGCTGGGCGACGCGGCCGTGCGTCGCCGTGCCGCCCGGGCGTCGTCCCCGGTGGTCGGACACATGGTGCGCGTGGCCGTGGTCGGAGGTTCCGTGGTGCTGGTCGTCGGGCTCGGTCTCATGCTGGCCTACCCGGCACTGGGCGGCTGGGCGCTGTTCCCCCTCGTGGCCCCGCTGGTCCTCGCCGCCGGTGCCGCCCTGCTCGCCTACGGGCTGTCGTGGGCCCGGCACCGCGCCGAGGCGACCCACCGCGCCGAGGTCACCGGGCACGGCCACGAGGCGACGCAGACGGCCGGCGGGCCCGAGCCCGGGAGGGCGGCGGTCCTGCTGCTCGTCCTGACGGTGCTGGCCGCGGTGTTCTGGGCCACCGCCACGGTGGCGCAGTGGTCGGGGACCGACCGCGCCAAGGCGCGGGCCGCCGACCTGAGCACGCTGCCCGCCGTCGTGCTCGACACGCCGCAACGGATGTTCACGGGCGACGACACCATCGCCGAGACCCGCCTGGAGAACGGCGACCCCGGGGAGCCCGCCTACCGCTACCGCGGGCTGCGGCTGCTCGTCGAGGGGTCGGGGGTGCTGTTCCTGGTGCCGGAGGTCTGGACCGAGCACGGCTCGACGTTCGCCGTGCCGATGGACGACGTCCGGGTGCGGTTCCGGTTCGTCAACGACCCGCCGTGA	MTPSPDAGTVGRVGALLGSIVAPATLVTGILFYFGYVSTRAYFLYFGVDVDVLGFGTQDYVMRSPQPLLVPMLLVLVVGALLVLGDAAVRRRAARASSPVVGHMVRVAVVGGSVVLVVGLGLMLAYPALGGWALFPLVAPLVLAAGAALLAYGLSWARHRAEATHRAEVTGHGHEATQTAGGPEPGRAAVLLLVLTVLAAVFWATATVAQWSGTDRAKARAADLSTLPAVVLDTPQRMFTGDDTIAETRLENGDPGEPAYRYRGLRLLVEGSGVLFLVPEVWTEHGSTFAVPMDDVRVRFRFVNDPP				NA	NA	NA	NA	NA
AK001_02805	687			hypothetical protein	ATGCGAGGACGCACCAGCCTGACGGCGGCGCTGCTCGGAGCGCTGCTCGTCGCCGGATGCACCGCACCGGTGGACGACGACGGCGCGAGCCCCACGCCGTCCGACACCGCGGTCGACGGCGGCACCTCGGCGCCGCTCGACCCCGACGTCGCCGGTGAACCGCCGCTCGAGGGCGGTGAGGAGCCGCCGCTGCCGCCGGACGACGCCGGCCCGACGCTGACCATCGTGGGGCTCCCCGCGGGCGGCGGGGCGGCCGGCCTCGTGGACGACGCCTGGTGCGGGGCGATCGCCGTCGGTCAGGCTCCGCCCGACGGCGTGGAGCTTGAGGTCACCGGGCTGCGGACCGACCCGGGGGGCCTGGAGACACCCGCTCTGGCGTGCCAGGACGTCCCGGCGTGCCTCGGCAGCACGCTGAGCCAGGAGCAGCACCTCTGCGCCGTCGCCGTCGTCCCGCCGCCGGGGGCCGACCAGGTGCGGGTCGCTGTCGACGTCCGCCTGGAGTGCGCGGAGGTCACGGCGTGCGAGGAGTACCGGGCGTCCGTGACGCCGGGCTTCTGGTGGGTCCTCGACCGACCTCTCGAGGCCGGGCCGGCGACCGCGCCGAGCGATCCCGAGGTGCCGGACGAGCCGGAGGGAGCGGACGAGCCGGAGGGACCGGACGAGCCGGAGGGGGAGGGCTCGCCGTGA	MRGRTSLTAALLGALLVAGCTAPVDDDGASPTPSDTAVDGGTSAPLDPDVAGEPPLEGGEEPPLPPDDAGPTLTIVGLPAGGGAAGLVDDAWCGAIAVGQAPPDGVELEVTGLRTDPGGLETPALACQDVPACLGSTLSQEQHLCAVAVVPPPGADQVRVAVDVRLECAEVTACEEYRASVTPGFWWVLDRPLEAGPATAPSDPEVPDEPEGADEPEGPDEPEGEGSP				NA	NA	NA	NA	NA
AK001_02806	798			hypothetical protein	ATGACGCACATCGACCCCACGACGGACGACTACGCGGTGCTGCGCGACATCCTCGATCTGGCCGATCCGCGGCGGCATCCGCCGTCGGTCGACGTGGTGGGCGAGATCCTGCGGCACCTCGAGGCGTTGCTGCGGTCCGATGGCGTGGCCTTTCACGCGATGGACGTACGCGACTTCTCCCTCCAGCACGCGCAGGAGTCGTTCATGGGTGAGCTCTACGTGGCCGGGCCGGAGGGGCTGGGCCCACCGGACGTCGAGGCCGACGGGTGCCAGGTGCTCCTCGACCACTGGTGGACCTCGACGTGCAGCCTCATCGAGCGCACGGCGGCGCCCGTGGCGACGAGCATCCGGGAGCACTACAGCGAGCGGCGCTGGGCGCAGCACCCGGTGCGCCGGGACTACCTGCGTTACGACGACGAGATCCTCCTCGGCTACCCGGACGGGCCGTGGAAGTCCCTGCGCCTGCTGGCCGGGCGCGAGGGCGGCCCGATCTTCTCCGACCGCGAACTCACGATCTGCCGGCTCCTGCTGCCCTGGCTGCGTGATGTGCTCGCCGCCGTCGTCGTCCCGCCCCCGCCGCCGGCCGGCTGCCTGACCGAGCGGCAGGTGGAGATCCTGCGCCTGGTCGAGCTGGGCATGTCGAACGCGGAGATCGGCGCGGCGCTGACGATCTCGCCCACGACGGTGCGTACCCACCTGGAGCACGCGTTCGAGCGCCTCGGTGTGACCTCGCGGATGGCCGCGGTCGCCGCGGCGTTCGGCGGGCCGCTCGTCCCGGCACCGAGCGCCGGCGGCTGA	MTHIDPTTDDYAVLRDILDLADPRRHPPSVDVVGEILRHLEALLRSDGVAFHAMDVRDFSLQHAQESFMGELYVAGPEGLGPPDVEADGCQVLLDHWWTSTCSLIERTAAPVATSIREHYSERRWAQHPVRRDYLRYDDEILLGYPDGPWKSLRLLAGREGGPIFSDRELTICRLLLPWLRDVLAAVVVPPPPPAGCLTERQVEILRLVELGMSNAEIGAALTISPTTVRTHLEHAFERLGVTSRMAAVAAAFGGPLVPAPSAGG				NA	NA	NA	NA	NA
AK001_02807	642			hypothetical protein	ATGACCGTCCGACTCCGCACGACCCCGCTGCACCGCCTCCGCCGTCGGACCGCGGTGCTCCTCGCCACGCTCGTCATGGCCACCACCGTGACCACGGCGAACGCGACCACGGACGACGGCGCCCCGCCGCCGATCGCCGTCGAGGTGCTCGCCGGCCACGCCGGGTTCCCGGACGACGTCGGCGTGACCTTCACGCGCAAGCTGTCCGGGGAACGTCGCGAGGTGATCCGCGTCCGGGACGCCGGGCACCTCGTGGTCGCCCGGATCACCGTGCAGCCCGGGGCGCGCTTCCCCTGGCACACCCACCCCGGCCCGGTCGTGGTGTCCGTCGTCGAGGGAGATCTCGTCTACCAGCAGGCGTCGGACTGCGTCGAGCGCGGCTACACGACCGGTGACGCGTTCCTCGACCCCGGCACCAAGGTCCACACCGCGTGGAACCCCGCGGACGCGCCGACCGTGCTCGTGGCCACGTTCTCCGGGGTGCCGGACGGCGGGCAGGTCACGCTGCCGACCCCGGAGCAGCCGACGTCCTGCGACCGGACGGTGGCGAACGACCGTCGCGTCGAGCCGGTCGGCAGGGACCGCGTCCCCGGGAGGACCCCGCACACCGGCGAGGTCCCGGGCTGGTCCAGCGTGCGCTGA	MTVRLRTTPLHRLRRRTAVLLATLVMATTVTTANATTDDGAPPPIAVEVLAGHAGFPDDVGVTFTRKLSGERREVIRVRDAGHLVVARITVQPGARFPWHTHPGPVVVSVVEGDLVYQQASDCVERGYTTGDAFLDPGTKVHTAWNPADAPTVLVATFSGVPDGGQVTLPTPEQPTSCDRTVANDRRVEPVGRDRVPGRTPHTGEVPGWSSVR				NA	NA	NA	NA	NA
AK001_02808	1572	glcA	COG1620	Glycolate permease GlcA	GTGCTGACCGCGCTCGCGGCGCTCCCGATCGTCGCGATCCTCGTGCTCATGGTCGCGGTCAGGTGGTCCGCGGCCGCGGCGGGAGCCACCGCGGCCGTCGGCGCGATGGTGCTCGCGCTCACCGCCTTCGACTTCGGCGGCACGGGCTTTCCGTTCGGGCCCCTCGAGGGGATCGTCGGGGTGCTCGCCACCGCGGCCTGGGTGGCCCTGACGGTGATGCTGATCATCGGCCCGGCGCTCGGCATCCACCACCTGCAGCAGCGCACCGGCGCCACCAAGGCGCTCGAGGCCGGACTGGCCCGCATCACGCCCGACCCGCGGGTCGCGGCGCTGCTCATCGTCTGGTTCTTCTGCCTGCTCATCGAGGGCGCCGCCGGGTTCGGCACCCCGGTGGCGCTCGCGGCCCCGTTCCTCGTGGCCGCCGGGTTCAAGCCGGTCACCGCCGTCGTCGGCGCCATGGTCGGCCACGCCTCCGCGGTGCCGTTCGCCGCCGTCGGCACCCCCACGCTCGCCCAGCTGGCCATCGTCGACTACGCGCCCCGCGAGCTCTCCTGGGCGGTGGCCCCGTACATGGCCGTCGCGGGGCTGGTGCTCGCGTTCGTCGTCGCGCGTCTGGTCGGCACCCTGCTGCCCGCCGCGGGTCCGCCGTGGACGTGGATGGCGGTCGCCTACGTCGCGTTCTTCGCCCCGAACCTCCTCATCGCACGGTTCGTGGGGCCCGAGCTGCCGTCCCTGGTCGGGGCGATCGGCGGGGCGATCGTCTTCGTGCTGGTGGTGCGGGGGGTGGTCCGACGGCGGTCGTACGTGTCCCGGGCCGCGGCGGTCGGCGAGCTGCAGGCGGAGGAGGACGCCGAGGGGGCGGTCGTCGAGGCCGCCGCCGAGGAGCACGCCCCGCCGATGAGCTTCCTCGCCGCGACCGCTCCGTACCTGGTGCTCGTCGTCCTCGTGCTCGTCACGCGGCTGGTCGGGCCCGTCCAGGACACCGCCCGGTCGGTGGTGTGGCGGTGGGAGCTGTTCGGCCACTTCTCCGAGAGCATCGAGCCGCTGTACCACCCCGGCCTGCTGCTGGCGCTGTCCTTCGTCGCCGGCGCCCTGTGGCAGCGCGCCGCCCCGGCCGACATGGGTGCCGCCTTCCGCCGCGCCACGCTCCAGGTGGTCCCGGTGTTCGTCGCCCTGGTGGCGATGGTGACGGTCGCGTTCACCATGTCCGAGTCCGGGATGACCACCCAGCTCGCCGTCGCCGCCGCCGGTGCCGGAGCGTTGTGGCCCGTGCTCTCGCCGTTCGTCGGTGCGCTCGGCACCTTCATGACCGGTTCCGCCACGGCGTCCAACATCCTGTTCACCGAGTTCCAGGACCAGACGGCGCTCGCGGCCGACCTCGACCCGGTGCCGCTGCTCGGTGCGCAGGGATCCGGCGCGGCGATCGGCAACATCATCTGCCCGCACAACGTCGTCGCGGCCGCCGCGACCGTGGGTCTCGGCGGCCGCGAGGGCCAGGTGCTGCGCCAGGCGCTGCCGGTCGCCGCGGTGTGCCTGGTGCTCATCGGCGCGATGGCCTGGGTGATCGTCTGA	MLTALAALPIVAILVLMVAVRWSAAAAGATAAVGAMVLALTAFDFGGTGFPFGPLEGIVGVLATAAWVALTVMLIIGPALGIHHLQQRTGATKALEAGLARITPDPRVAALLIVWFFCLLIEGAAGFGTPVALAAPFLVAAGFKPVTAVVGAMVGHASAVPFAAVGTPTLAQLAIVDYAPRELSWAVAPYMAVAGLVLAFVVARLVGTLLPAAGPPWTWMAVAYVAFFAPNLLIARFVGPELPSLVGAIGGAIVFVLVVRGVVRRRSYVSRAAAVGELQAEEDAEGAVVEAAAEEHAPPMSFLAATAPYLVLVVLVLVTRLVGPVQDTARSVVWRWELFGHFSESIEPLYHPGLLLALSFVAGALWQRAAPADMGAAFRRATLQVVPVFVALVAMVTVAFTMSESGMTTQLAVAAAGAGALWPVLSPFVGALGTFMTGSATASNILFTEFQDQTALAADLDPVPLLGAQGSGAAIGNIICPHNVVAAAATVGLGGREGQVLRQALPVAAVCLVLIGAMAWVIV	PGPT0001800_1938	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_LACTATE_TRANSPORT,PGPT0001800-lctP-K03303	NA	NA
AK001_02809	1005		COG1816	Adenine deaminase	ATGAGCGCGTCCCAGCCCTTGCCCGACCTGCCGTTCGCCGAGCTGCACCTGCACCTCGAGGGGACCCTCGAACCCGAGCTCGTCCTGGAGCTGGCCGAGCGCAACGCCGTCACGCTGCCCTTCGCCGACGTCGACGCGCTGCGCCGCGCCTACGCGTTCAGCGACCTGCAGTCCTTCCTGGACCTCTACTACGCGAACATGGCCGTGCTGCGCACGCCCGAGGACTTCGCGGACATGACCCGTGCCTACCTGGCCCGTGCCGCGAGGGGCGGGGTGCGCCACGCCGAGGTGATGATCGACCCGCAGGCGCACCTCGTCCGCGGCGTGCCGCTCGAGGCCGTCATGGAGGGCGTCGACGACGCGCTGGCCACCAGCGAGCGCGACCACGGGGTCTCGACGGCGCTCTTCGCCGCGTTCCTGCGCGACCGCCCCGAGGGCGAGGCCCTCGACGTGCTCCACCACCTGCTCGGCATGCACGCCCCGATCACCGGCATCGGGCTGGACTCCGCCGAGGCCGGCCACCCGCCGTCGGACTTCGTCCGCCTGTACGACCGGGCACGCGCCGAGGGTCTGCACCTCATCGCGCACGCCGGGGAGGAGGGGCCGCCGGCGTACGTCGTCGAGGCCCTGGACGTGCTCGGCGTGGACCGGATCGACCACGGCGTCCGCTCGCTGGAGGACGACGCCCTGGTCGAGCGGCTGGTCGCCGAGCAGGTGCCGCTGACCGTGTGCCCGCTGTCGAACGTGGCGCTGCGCGGCGTCGACCGGCTGGAGGACCACCCGGTGCTCGACATGCTCGACCGGGGGCTCAACGTGTCGGTCCACTCCGACGACCCCGCGTACTTCGGCGGCTACCTCGACGACAACCTCGCGGCCCTGACCGACTCCCTGGGGATGACGACGGAGCAGCGGGCGCGCCTCGCGGCCCACTCGATCCGCTCCGCCGTCCTGCCCGCCGACCGGCGCGCCGCCCTGCTGGCGGAGGTCGAACCGGACCCGACGTGA	MSASQPLPDLPFAELHLHLEGTLEPELVLELAERNAVTLPFADVDALRRAYAFSDLQSFLDLYYANMAVLRTPEDFADMTRAYLARAARGGVRHAEVMIDPQAHLVRGVPLEAVMEGVDDALATSERDHGVSTALFAAFLRDRPEGEALDVLHHLLGMHAPITGIGLDSAEAGHPPSDFVRLYDRARAEGLHLIAHAGEEGPPAYVVEALDVLGVDRIDHGVRSLEDDALVERLVAEQVPLTVCPLSNVALRGVDRLEDHPVLDMLDRGLNVSVHSDDPAYFGGYLDDNLAALTDSLGMTTEQRARLAAHSIRSAVLPADRRAALLAEVEPDPT	PGPT0021520_2006	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488	NA	NA
AK001_02810	1458			hypothetical protein	ATGTCGCCGCACCAGGCCCTCGCCCAGCTGGAGTCGGCCGTCGAGGCGCTCACGGCCGGCGACGGCCCTCTCGCGACGGACGACGTCGCCCTGTCCGACCTCAGCGCCCGCCTGCGGGCCGTCCAGGAGCGCGTCGCCGCGGTCCGGCTGCGCCTGCTGGCGCGCCTGGAGGACGAGGGGACCTGGGCGCTGGACGGGTCACGGTCGTTCGCGCACTGGCTCTCGCGGACCGAGGACGTCGCCCTCGCGACGGCCCGCCGGGAGGCCCGCACGGCCCGGACGCTGCAGGACGTCCTGCCCGTCAGCGCCGCGGCCGCCCGCCAGGGCGACCTGGGATCGGACCACCTGCGCGTGATGGTGGACGTCGCGCCGACCTCCACGGCCCGCCGCGAGGCGCTGGCCGCACCGGTCGCGGGTCTCGCACCGGGGGAGCTCGAGCCGGGGTCGACCGACCCCGACGCCGCCGCTGACGTCGAGGCCGGTCCGGCCGCACGGACCCCGCCCACCGGCGAGCAGTACCTGCTCGGGCTCGCCGCCCGATACCCGGTCGGGGCCTTCCGCCGCCTCGTGCGCCGGTTCGCGCACGTCGCCGACCCGGAGTCGGACGAGCGCGGGTACGCCCGCGCCCGCGAGAAGGAGTTCTTCGAGGTCTCGCCGACCTGGGACGGCTACCACGTGGCCGGGTTCCTCACCGAGGAGCACGGCCAGGCGCTGCGGGCCGCGCTGGACGGCGTCGTCGGGGCACCGGCGGCGGACGACACCCGCACCTCCACGCAGCGACGCGCCCAGGGCATCGCGGACCTGGCCCGGACCGTCCTGGACCACGGGGCAGTCGGCGGCGGGGCTGCCGTCCGGCCGCACCTGAGCGTCATGGTCTCCTACGGCGAGCTGCATGACCTGCTCTCGGGCCCGGCCACCGTCGACAGCACCAGCGGCACGGCGGCACCGCCGCCGTCACGGCGCCTCGACGACCGGCGGGTCGACGCCCGACGCGTCGTCGACGAGACCGGTGTCGCGACCTTCGCCGACGGCCGCGGCCCGGTCCCCGACTCCGTCCTGCGCCGGCTGGCCTGTGACGGCGAGATCTCCCGCATCGTCTTCGGCCCGGACGGCGCGGCCCTGGACGTCGGGCGACGACGACGCACGGTCACCGGTCAGCTCCGGCGGGCGGTGATCGCGCGCGACCGACGCTGCACCTGGCCGGGATGCTCGGAGCCGCCGTCCCGGTGCGAGGTCCACCACGCCGTCACCCACTGGGCCGACGGCGGAAGGACGAGCGTCGACAACGCCGCGCTGCTGTGCTGGCACCACCACGAGCACGTCGACGGACGGGGCATCAGCATGCGCTGGCGCTCGGGGCGCTGGGACTTCACCGACCGGTCGGGTCGGCCGGTCGGACGCGCGGCCGATGTCCGTGCCGGGGGCCAGGTCGGCAGCCAGACCGGAGCGGCCGCGTGA	MSPHQALAQLESAVEALTAGDGPLATDDVALSDLSARLRAVQERVAAVRLRLLARLEDEGTWALDGSRSFAHWLSRTEDVALATARREARTARTLQDVLPVSAAAARQGDLGSDHLRVMVDVAPTSTARREALAAPVAGLAPGELEPGSTDPDAAADVEAGPAARTPPTGEQYLLGLAARYPVGAFRRLVRRFAHVADPESDERGYARAREKEFFEVSPTWDGYHVAGFLTEEHGQALRAALDGVVGAPAADDTRTSTQRRAQGIADLARTVLDHGAVGGGAAVRPHLSVMVSYGELHDLLSGPATVDSTSGTAAPPPSRRLDDRRVDARRVVDETGVATFADGRGPVPDSVLRRLACDGEISRIVFGPDGAALDVGRRRRTVTGQLRRAVIARDRRCTWPGCSEPPSRCEVHHAVTHWADGGRTSVDNAALLCWHHHEHVDGRGISMRWRSGRWDFTDRSGRPVGRAADVRAGGQVGSQTGAAA				NA	NA	NA	NA	NA
AK001_02811	312			hypothetical protein	ATGGACGTCGAGAAGAGCAGCGAGAAGAAGAGCAAGAGCGAGCTCCAGAAGCTCTACAAGGCGGTGATGTTCGCGCTCGTCGTCGCGGCGGTCACCAAGGAGCTGCAGAAGGATCCCGCGGACCGCGAGTGGCACGGGACCGTGGCCGGGTTCGTCCCCTACGAGTTCCGGATCCCGACCTTCGCGCGGGCCAAGGAACGGCTGTGGGACCCGGAGGCCGAGCACGTCATCGGCCCGCAGGTCTTCGGCGTCGGGTGGACCGTCAACATCGGTCGTGTCGTCGCGGTGGTCAAGGACCGCTTCGCCGACTGA	MDVEKSSEKKSKSELQKLYKAVMFALVVAAVTKELQKDPADREWHGTVAGFVPYEFRIPTFARAKERLWDPEAEHVIGPQVFGVGWTVNIGRVVAVVKDRFAD				NA	NA	NA	NA	NA
AK001_02812	1344		COG1926	Putative phosphoribosyl transferase	ATGCCCTTCACCGACCGCACCCAGGCCGGACGGCGCCTCGCCGAGGCGCTCGCCGGGCTGCGCGACGAGGACGTCGTCGTCCTCGGCCTCCCCCGGGGCGGGGTCCCCGTGGCGTTCGAGGTCGCCGTCGCGCTGGACGCGCCGCTCGACGTGATCGTCGTGCGCAAGCTCGGCGTCCCTTTCCAGCCCGAGCTGGCGATGGGTGCGGTCGGTGAGGGCGACGTGCGCGTCGTGGACGACGAGGTCGTCCGACGCGCCCAGATCACGGCCGAGGAGCTCGCGGGCGCCGAGGCCACCGAGCGCGCAGAGCTCGAGCGACGGCTGTTCCGGATCCGGCGCGACCACCCGCTGGTCCCGATCGAGGGCCGGACGGCCGTCGTCGTGGACGACGGCGTCGCGACCGGGTCGACGGCCCGCACGGCCTGCCTCGTCGCGCGGGAGCGCGGCGCGGCACGGGTCGTCGTCGCCGTGCCCGTGGGGGCCGCCCCGGCGCTCGACGCCCTGAAGGAGGTGGCAGATGAGGTGGTCTTCGTGGAGAGCCCCCGCGGCTTCCGCGCCGTGGGCGAGTGGTACGCCGACTTCCGGCAGGTCGACGACGGGCAGGTCATGGAGCTGCTCGACCGGGCGGCGAACCACCCCGACGACCCGGTCGGGGACCCGGCAGATCCTCCGGCTCCACGGGACGAGGCCGTCGAGATCCGGGCCGGCGCCGTCATGCTGAACGGACAGCTCACCGTCCCGGACCGCCCCGTGGGACTGGTCGTCTTCGCGCACGGCAGCGGCAGCAGCCGGCACAGCCCGCGCAACCGGCACGTCGCTCAGGTGCTCAACGAGGCGGGACTGGGCACCCTGCTGTTCGACCTGCTGACCGCCCGCGAGGAGTGGGAGCGGCCGATGGTGTTCGACATCCGGCGCATGGCGGCCCGGCTGGTGGACGCGACCTGGTGGCTGCGCGCCGAGCAGGGGTGGGACGACTTCCCGATCGGGTACTTCGGAGCGAGCACCGGTGCCGCCGCCGCCCTGCGCGCCGCCGCGCAGCTCGGCCACGACGTCTCCGCCGTCGTCTCCCGCGGGGGCCGGCCCGACCTGGCCGCGGACTGGATGCACGAGGTCAGGGCGCCGACCCTGCTCCTGGTCGGGAGCGAGGATCCGTGCGTGCTGGACCTCAACCGTCGGGCCCAGCGTCGGCTGCGGTGCGAGAACGAGCTGTCGGTGGTGCCCGGTGCGACGCACCTCTTCGAGGAGCCCGGCACGCTGGACCAGGCGGCCGTGCTGGCCCGCGACTGGTTCCTCGGGCACCTGCCCCAGAGCACGACGACGCAGCACGCCGTCCTGCAGACCTGA	MPFTDRTQAGRRLAEALAGLRDEDVVVLGLPRGGVPVAFEVAVALDAPLDVIVVRKLGVPFQPELAMGAVGEGDVRVVDDEVVRRAQITAEELAGAEATERAELERRLFRIRRDHPLVPIEGRTAVVVDDGVATGSTARTACLVARERGAARVVVAVPVGAAPALDALKEVADEVVFVESPRGFRAVGEWYADFRQVDDGQVMELLDRAANHPDDPVGDPADPPAPRDEAVEIRAGAVMLNGQLTVPDRPVGLVVFAHGSGSSRHSPRNRHVAQVLNEAGLGTLLFDLLTAREEWERPMVFDIRRMAARLVDATWWLRAEQGWDDFPIGYFGASTGAAAALRAAAQLGHDVSAVVSRGGRPDLAADWMHEVRAPTLLLVGSEDPCVLDLNRRAQRRLRCENELSVVPGATHLFEEPGTLDQAAVLARDWFLGHLPQSTTTQHAVLQT				NA	NA	NA	NA	NA
AK001_02813	468	ddn		Deazaflavin-dependent nitroreductase	ATGACCTTCAGCCACTCGACCGGCACCCGCGGAGCACGCAAGCCGGGTCGGCTCGTGCGCTGGTTCAACGGTCTGGCGCTGCGCCGCATCCGACGCCGCGGCGGCCGGGTGCTGGGGATGCGCCTGCTGGCCCTGACGACGGTGGGACGGCGCAGCGGGCAGCCCCGCACCATCCCGCTGGCCTGGTTCCCCGGTGGCGAGGACCGGTGGTACGTCGTCGCCTCCGCCAACGGCGCGGCCACCAACCCGGCCTGGTACCTCAACCTCGCCGCCCGGCCCGACGAGGTCGAGATCGTCGTGGACGGCGAGACCGTCCCGGTGCGCGCCCGCGAGCTGCAGGGCCCCGAGCGGGACGAGGTGTGGGGGCGCATCAAGGACTCCGCGTCCCAGTTCGCGACGTACGAACGCGCCACCGACCGGCACATCCCGGTCGTCGAGCTCACGCGGCGCGACACCGCCGGGGGCTGA	MTFSHSTGTRGARKPGRLVRWFNGLALRRIRRRGGRVLGMRLLALTTVGRRSGQPRTIPLAWFPGGEDRWYVVASANGAATNPAWYLNLAARPDEVEIVVDGETVPVRARELQGPERDEVWGRIKDSASQFATYERATDRHIPVVELTRRDTAGG				NA	NA	NA	NA	NA
AK001_02814	561	yfkM	COG0693	General stress protein 18	ATGGCGACCGACCTCACCGACCGCACCGTCCTGGCCGTCGTGACGAACTACGGCGTGGAGCAGGACGAGCTCGTCGTCCCGCTGGAGCACCTGCGCGACAGCGGCGCCGTCGTCACCGTCGCCGCCGCGACCTCCGACGACGTCGCCACGCTCGTGGGCGACAAGGACCCCGGCCGCACGGTCACCCCGGACGTGACGCTCGACGACGTCGACCCGGCCGGCTTCGACCTGCTGCTCGTGCCCGGCGGCACCCTCAACGCCGACACGCTGCGGCGGCAGCCCGCCGCGACCGAGATCGTGCGGTCCTTCACCCGGTCCGGGCGGCCCGTCGCGGCGATCTGCCACGGACCGTGGCTGCTCGTCGAGGCCGGCGTCGTCCCCGGCAAGACCGCGACGTCGTACCCGTCCCTCGAGACGGACCTGCGCAACGCCGGCGCCTCCTGGAAGGACGCCCCCGTGATCGTGGACCCGGCCGAGGGCTGGACCCTCATCACCTCCCGCACCCCCGACGACCTGGACGACTTCCTCGATGCCGTCGACGCCGCGCTCGCCGAGCGCTGA	MATDLTDRTVLAVVTNYGVEQDELVVPLEHLRDSGAVVTVAAATSDDVATLVGDKDPGRTVTPDVTLDDVDPAGFDLLLVPGGTLNADTLRRQPAATEIVRSFTRSGRPVAAICHGPWLLVEAGVVPGKTATSYPSLETDLRNAGASWKDAPVIVDPAEGWTLITSRTPDDLDDFLDAVDAALAER	PGPT0015010_1535	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520	NA	NA
AK001_02815	837	dkgB		2,5-diketo-D-gluconic acid reductase B	ATGCCGTCGACGCCGCGCTCGCCGAGCGCTGACCTGAGCCTGCCGCCCGTCGGGTTCGGCACCGCCTCCCTGCGCGGCGAGCACGGCGTGCGCACGGTCGCCGCCGCGCTGGACGCCGGCTACCGGCTGCTGGACTCCGCGTTCAACTACGAGAACGAGGGGGCGGTCGGCGCCGCCGTCCGGGCCTCCGGGGTCCCGCGCGACGAGGTGATCGTCACCTCCAAGCTGCCCGGGCGGCACCACGCCCACGACGCGGCCGTCGCCACGATCGAGGAGAGCGTCTACCGCACGGGCCTGGACCACCTCGACCTGTACCTGATCCACTGGCCGAACCCGTCGCAGGACCGGTACGTCGAGGCCTGGGGGGCGCTGATCGAGGCCCGCGAGCGCGGCCTCGTGCGCCACATCGGGGTGTCGAACTTCCTGCCCGAGCACGTCGACCGCCTCGTGGCCGAGACGGGGGTGACGCCCGTGGTGAACCAGGTCGAGCTGCACCCCTACTTCCCCCAGGCCGAGCAGCGCGCCGCCGACGCCGCTCGCGGGATCGTCACCGAGGCGTGGAGCCCGCTCGGGCGCGCCAACAGCCTGCTGGACGAGCCGGTGCTGACCCGGATCGCCGCGGACCGCGGCGTGACCGTGGCGCAGGTGATCCTGGCCTGGCACGTCGGGCTCGGCGTGCTGCCCCTGCCCAAGGCGACCTCGCCGGACCGGCAGCGCCAGAACCTCGAGGCCGCCGACCTGGAGCTCTCCGCCGAGGAGATGGCGGCCGTCGCGGGGCTCGCCCGCCCCGACGGCCGGAACAACGACCAGGACCCTGCGGTGTACGAGGAGTACTGA	MPSTPRSPSADLSLPPVGFGTASLRGEHGVRTVAAALDAGYRLLDSAFNYENEGAVGAAVRASGVPRDEVIVTSKLPGRHHAHDAAVATIEESVYRTGLDHLDLYLIHWPNPSQDRYVEAWGALIEARERGLVRHIGVSNFLPEHVDRLVAETGVTPVVNQVELHPYFPQAEQRAADAARGIVTEAWSPLGRANSLLDEPVLTRIAADRGVTVAQVILAWHVGLGVLPLPKATSPDRQRQNLEAADLELSAEEMAAVAGLARPDGRNNDQDPAVYEEY	PGPT0001320_1359	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221	NA	NA
AK001_02816	612			hypothetical protein	ATGACCGTGCTCGTCGAACCCGCCGGTGAGGCCGAGATCGAGGCGGGTGCCCGGCTGATCGCCGAGTCGTTCCGGGACGACGCCGTCGTGCGCCGGATCGTCCCGGGCGACCACGACCGGGTCGCACGCCTGACCGACGTCTACACCGCGGCGCTGCGCACGGGTGCCTGCGTGTCCGGGACCGTCGACGTCGCCCGCGCCGGCCCCGGCGGACCGATCCTCGGAGTAGCCGCGTGGGAGGGGCCGGAGCGACGGCGTCACCTGCCGACCGAGCTGCGGGAGCTCCCGCGCTACCTGCGGGCGCTCGGGCTGCTGCACCTGCCCGCGGTGAGGTCCCGCCTGGCCCGCTGGGCGCGGCAGCGCCCGGCGACGGCGCACTGGTACCTGGCGGACCTCGCCGTGAGTCCCGCGGCCCGTGGCCGCGGCGTGGGCTCTGCCCTGATCGCGCACCGGCTGGGCGTCGTCGACGCGCAGGCCCGACCTGCGTACCTGGAGGCCACCGGTCCCGGCAACCAGCGTCTCTACGAGCGCTTCGGCTTCCGCGCCCAGGGCCCGGTCGCGGACGACGCCGACGCACCGGTCGGCATGCTGCGGCCCGCCGCGGAGGAGTGA	MTVLVEPAGEAEIEAGARLIAESFRDDAVVRRIVPGDHDRVARLTDVYTAALRTGACVSGTVDVARAGPGGPILGVAAWEGPERRRHLPTELRELPRYLRALGLLHLPAVRSRLARWARQRPATAHWYLADLAVSPAARGRGVGSALIAHRLGVVDAQARPAYLEATGPGNQRLYERFGFRAQGPVADDADAPVGMLRPAAEE				NA	NA	NA	NA	NA
AK001_02817	168	rpmF_2		50S ribosomal protein L32	ATGGCCGTCCCGAAGCGCAAGACGTCCCGGTCACGCACCCGCAGCCGCCGGGCGCAATGGAAGACGACCGCACCCGCCCTGGTGCCGGTCGACGCCGGCGGTCGGACCGTGCAGGTCCCGCCCCGGCTGGCCCGCGCGGTCCGCGAGGGGAGGGTCGACGTGCCGTGA	MAVPKRKTSRSRTRSRRAQWKTTAPALVPVDAGGRTVQVPPRLARAVREGRVDVP				NA	NA	NA	NA	NA
AK001_02818	123			hypothetical protein	ATGAAGGTCCGTTCCTCCCTGCGGTCCCTGAAGAACCAGCCGGGATCCAAGGTCGTGCGCCGTCGCGGGCGCACCTACGTCATCAACAGGCTCCACCCGAAGTTCAAGGCCCGCCAGGGCTGA	MKVRSSLRSLKNQPGSKVVRRRGRTYVINRLHPKFKARQG				NA	NA	NA	NA	NA
AK001_02819	294	rpmE2	COG0254	50S ribosomal protein L31 type B	GTGATCACCGCCGTGAAGAAGGACATCCACCCCACCTACGGCCCGGTCGTGTTCCGCGACGCGGGTGCCGGGTTCGCGTTCCTGACCCGGTCCACGCTCGCCGGGGACACCCCCTCCGGTCCGGGTCGGCCCACCGCGACGATCGAGTGGACCGACGGCAACACCTACCCGGTGATCGACGTCGAGATCTCCAGCGCGAGCCACCCGTTCTGGACCGGCAGCGCCCGCGTCGTCGACACCGCCGGCCGGGTCGAGAAGTTCCGCCGACGCTACGGAAAGGCAGACGCCCGATGA	MITAVKKDIHPTYGPVVFRDAGAGFAFLTRSTLAGDTPSGPGRPTATIEWTDGNTYPVIDVEISSASHPFWTGSARVVDTAGRVEKFRRRYGKADAR	PGPT0014325_395	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909	NA	NA
AK001_02820	306	rpsN	COG0199	30S ribosomal protein S14	ATGGCCAAGAAGTCGAAGATCGCCGCGGAGGCCCGCCGCCGCGAGACGGTCGAGAAGTACGCCGAGCGGCGCGCCGAGCTCCAGCGCGTCATCGCCTCGCCGTCGTCCACCGACGCCGAGCGTGCCGTGGCGACGATGGAGCTGCGCCGTCAGCCGCGCGACGCCAGCCGCACCCGGCTGCGCAACCGCGACGTCGTGGACGGCCGTCCGCGCGCCTACCACCGCAAGTTCGGGCTCTCCCGCATCCGGCTGCGCCAGATGGCGCACCGCGGCGAGCTGCCCGGCGTGACCAAGTCGAGCTGGTGA	MAKKSKIAAEARRRETVEKYAERRAELQRVIASPSSTDAERAVATMELRRQPRDASRTRLRNRDVVDGRPRAYHRKFGLSRIRLRQMAHRGELPGVTKSSW				NA	NA	NA	NA	NA
AK001_02821	168	rpmG2_2	COG0267	50S ribosomal protein L33 2	ATGGCCCAGCGCACCGACCTGCGACCCATCGTCAAGCTGCGCTCCACGGCCGGCACCGGGTTTACGTACGTGACCCGCAAGAACCGCCGCACCACCCCCGACCGGCTCGTGCTGCGCAAGTACGACCCGGTGGTGCGCCGCCACGTCGAGTTCAAGGAGACCCGCTGA	MAQRTDLRPIVKLRSTAGTGFTYVTRKNRRTTPDRLVLRKYDPVVRRHVEFKETR				NA	NA	NA	NA	NA
AK001_02822	237	rpmB_2	COG0227	50S ribosomal protein L28	ATGTCCGCCCACTGTCAGGTGCACGGCACCTCGCCGGGCTTCGGGCACTCCGTCTCGCACTCCCACGTGCGGACGAAGCGACGGTTCGACCCGAACATCCAGACCAAGCGCTACTGGGTGCCGTCCCTGGGGCGGAAGGTCACGCTGCGGGTCAGCGCCCGCGGCATCAAGACCATCGACCGCCGCGGCATCGACGCGGTCGTCGCCGACATCCTCGCCCGAGGGGAGAAGGTCTGA	MSAHCQVHGTSPGFGHSVSHSHVRTKRRFDPNIQTKRYWVPSLGRKVTLRVSARGIKTIDRRGIDAVVADILARGEKV				NA	NA	NA	NA	NA
AK001_02823	1140			hypothetical protein	ATGCCGGACCTCCACACCTCGCTCAGCGTCCTCGTCGGCGTCGACCCCGTGCTGCGGGACAGCGCCCTGACCGGACTCGCCTTCGACGCCCCGAGCACCGTCACGATCAAGCACGACCTGCTGATCGCCGAGAGCGCCCTGCGCCGTGTCGTGGTGGACGTGACCGGCGTCGTCGAGGACGAGACGCTCCCCCTGGAGCACGCCTGCGTCTCGTGCTGCGTGCGCGAGGACGCGGTCCCCACGATCGCCCGGCTGGCCGCGACCGGCCGCTGGACCGACGTCGTGCTCGCCCTGCCCGTGACGGCCGAGCCGCTGCCGATCACCCGCGGCCTGGCGGCGATGTGCGAGCCCGGCGGCGAGCTCGAGAACCTGCGCCTGGCCAGCAGCGGCGTCGTGGTCGACCTCGCCTCCGTCGAGGACGACCTGCTCGGCGACGACTGGTGCGCGGAGCGCGGCCTGGCCCTGACCGACGACGACGAGCGCGGCGTCGGCGAGGCCCTGGCCACCCAGCTCGAGCAGGCCGACGTCGTCGTCACCAGCGGCACCGACGCCACCGGCTCGGGGCTCGTCGACCGCCTGCGCGGCGCCGACTCACGGCGGGTCGACGGGCTGCACGCCCTCGTCGTGGACCAGCTCGCGGCGTTCCGGCACCGCAGCGAGACCGCCGAGCGCCGCGCCCACCCCCTGGGTGCCCGCGGGGCGCTCGCCCCCGGTCGCGGCCCGGCCGGGGGCACCGACGTCGACCGGAGCTGGAGCCTCGAGCTCACCTCGTCCCGGCCGTTCCACCCCGAGCGGCTCCTGGACCAGGTCGAGGAGCTCGGCACCGGACGCCTGCGCTCGCGCGGCGCCTTCTCCGTGGCCAACCGGCCGGACTCGCTGTGCCTGTGGGACGGCGCGGGCGGCCAGCTGTGCATCGCGGACCTCGGCACGTGGGACGAGGTCGCGGCGGGCGCCGCCCCGCACACCCGGATCGTCGTGGTCGGCGCCGGCACCGTGGACGAGGGCGAGGCCCTGCGCGCGCGGCTGACCGCGGCGTTCCAGGCGGCCCTGGCCGCCTCGGACGAGATCGCCGACGGCGGGCTCGCATGGCTGGGCAGCGAGGACGCGCTGGCCCCGTGGCTCGGTCAGCGCGCGGCGTAG	MPDLHTSLSVLVGVDPVLRDSALTGLAFDAPSTVTIKHDLLIAESALRRVVVDVTGVVEDETLPLEHACVSCCVREDAVPTIARLAATGRWTDVVLALPVTAEPLPITRGLAAMCEPGGELENLRLASSGVVVDLASVEDDLLGDDWCAERGLALTDDDERGVGEALATQLEQADVVVTSGTDATGSGLVDRLRGADSRRVDGLHALVVDQLAAFRHRSETAERRAHPLGARGALAPGRGPAGGTDVDRSWSLELTSSRPFHPERLLDQVEELGTGRLRSRGAFSVANRPDSLCLWDGAGGQLCIADLGTWDEVAAGAAPHTRIVVVGAGTVDEGEALRARLTAAFQAALAASDEIADGGLAWLGSEDALAPWLGQRAA				NA	NA	NA	NA	NA
AK001_02824	462			hypothetical protein	GTGACCGTACGACAGGACGACGAGCTGCCGAACACGCCCCCGCCCGCCCAGTTCGACGAGGTGGCCCGCTGGACGCTGAGCGAGGTCGAGGAGGTCGCCGGTCTGCGGGCCGACCTCCAGGCGCGGCTGGGTGCTGACGGCTCGGGCGACCTGGCCGCCGTGACGGAGAAGCTCGTGCTGATCGTCTCGGAGCTGGCGACCAACGCCGTGCGGCACGGTCTGCCTCCGACGGTGGTCCGGCTGATGCACGGCACCGACGGCGACTGGCTGCTCGACGTGGCCGACCACGACGTGTCCTCCCCGCCCGTGCCCGCCGGCGACCGGGACCCGGGGCACGGGGGCCTGGGTCTGCGGATCGCCCGGCGTCTCTCGCTCGCCGTGGGGTGGTACACCACCGAGACCGCGAAGCACGTCTGGGCGACCGTGCCGGGTCCGGTTCCGGCGGCGACCCCGGCCGAGTGA	MTVRQDDELPNTPPPAQFDEVARWTLSEVEEVAGLRADLQARLGADGSGDLAAVTEKLVLIVSELATNAVRHGLPPTVVRLMHGTDGDWLLDVADHDVSSPPVPAGDRDPGHGGLGLRIARRLSLAVGWYTTETAKHVWATVPGPVPAATPAE	PGPT0014950_2183	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757	NA	NA
AK001_02825	372			hypothetical protein	ATGGCGCCGGAAGGAACGACCGGAGGGGTTCGCGTCGCACGCCAGGGCGCTCTCTGGGTGATGTGGGGCGACATCGACTTCAGCGTCACGCACGCCGTGCGGGACCAGCTCGCGGCCACGCTCGACGGCCGGCCCAAGACGGTGGACCTGACCCGCGTGACGTTCATGGACTCCTCGGGGCTGCACCTGATCCTCATGGAGGTCACCCCCGAGAGGCGACCCGTGCTCGTCGGGACCCCGGACGGCGTCCGCGACCTGCTCGAGCTGAGCGGTGCGATGGAGCTGGTCGACCTCGTCGACGAGCTGCCGCCGCCCGACCCGTCGGGCGGACCGGCGCCAGGACCCGCGCCGATCCCTCCGATCGCCGGCTAG	MAPEGTTGGVRVARQGALWVMWGDIDFSVTHAVRDQLAATLDGRPKTVDLTRVTFMDSSGLHLILMEVTPERRPVLVGTPDGVRDLLELSGAMELVDLVDELPPPDPSGGPAPGPAPIPPIAG	PGPT0014350_2591	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
AK001_02826	480			hypothetical protein	ATGTGGCACTGGATCGCCGGCCTCGTCGGAGGCCTGCTGGCCCTGGCGCTCGCCGCCGTCGTCGGCCTCGTCGTCTCGATGCGCACCAAGTGGCAGCCGGGGCTGCGCCTCGTCCGGCGCCTCAACAAGCGGTTCACCAACCCGCGCGTGCTGGCCACGGCCGGTCGTCCCGGGGGGTCCGCGGCGGTGATCCGACACGTGGGCCGCCGCTCCGGGCGGTCCTACGCGACGCCGATCGGTGTGGAGGTCGGCGACGGCGTCCTGGTCACCCTGCTGCCCTACGGCCCGACGACGGACTGGGTGCGCAACGTCCTCGCGGCCGGCGGCGCCCAGGTCACGGTCCAGGGCCGGACCTCAGAGGTGACAGACCCCCGCGTCGTACCCGTCGCCGAGGCGTCCGCGCTGCTCCCGGCGGGGGAGCGCCGGCTGGCCGCGGTGTTCGGCGCGACGGAGGTCCTGCTGCTGACGCCCGCCGTGTGA	MWHWIAGLVGGLLALALAAVVGLVVSMRTKWQPGLRLVRRLNKRFTNPRVLATAGRPGGSAAVIRHVGRRSGRSYATPIGVEVGDGVLVTLLPYGPTTDWVRNVLAAGGAQVTVQGRTSEVTDPRVVPVAEASALLPAGERRLAAVFGATEVLLLTPAV				NA	NA	NA	NA	NA
AK001_02827	1431	bmr3_3		Multidrug resistance protein 3	GTGGGCCTGCGCTCCGAGCGCGGGCCGATCCTGCTGTCCCTCATGCTGTCCACGGCCCTGGTGGCCCTGGACGCGACGATCATCGCCACGGCGTCGGCCACGATCGCCCGGGAGCTCGGGGCGTTCGAGCAGGTGCCGTGGCTCTTCTCGTCCTACCTGCTGGCCCAGGCGGTCAGCACTCCGTTGGCGGGCCGGCTGTCGGACATCGTCGGACGCAAGCGGGCGATCCTCGCGGGCGTCGGGCTGTTCTTCCTGGGCTCCGTGCTCTGCGGTGCCGCGTGGTCCATGGGGGCCCTCGTGGCGGGGCGGGTGCTGCAGGGCCTCGGGGCGGGCGCGGTGATGCCGGTCTCCCAGACGATAGCCGCCGACATCTACACGCTCGAGGAGCGCGCCAGGACGCAGGGCTACCTGGCCTCGGTGTGGGCGATCTCCTCCGTCGTCGGACCGACCCTCGGCGGGGTGTTCTCCGAGTTCCTCTCCTGGCGGTGGATCTTCTGGATCAACGTCCCGCTGTGCCTCCTGGCGGCCTGGATGCTGATCCGCCGCTACCACGAGTCCCCGCTCGGCGGTCGGCGCGAGCCTGTGGACTACGTGGGCGCCGCGCTGCTGACGGCGGGCAGCGCCCTGCTGCTCCTCGGGCTGCTCGAGGGGGGCACCTCCTGGGCGTGGCTGTCGGCGCCCTCGATCGGCGTGCTCACGGTCGCCGTCGTCCTGCTGGCGGTCTTCGCCCGGCACGTGCGGCGCGTCGCCCACCCGATCCTGGACCTGCGGCTGCTGCGGCGCCGGGTGATCGGCGTGGCCACGGCGATCTCGCTGGTGGTGGGCATGGTGGTCCTGGGACTGGTCACCTACGTGCCGATCTACGCCCAGGGGGTGCTGGGTTTCGGGCCGCTGCTGGCGGGCTTCGCGCTCGCGGCGATGATGGTGGGCTGGCCGCTGTCGGCGACGAACGCCGGGCGGCTCTACCTGCGTCTCGGCTTCCGGCTCACCGCGATGATCGGCTCGGCGCTGGTGGTCCTCGGCACGGCGTCGACGCTGCTGCTGGGTGCCGACTCGCCGTTGGTGGCGGTGATGGGCACGACGTTCCTCGTCGGTACCGGCATGGGGCTGACGGCGGTGCCGACGCTCATCGCCGCGCAGTCGTCGGTGGACCACGGCGTCCGCGGTGCGGTCACCGGGGTGAACATCTTCGCCCGGTCCCTGGGCTCGGCGCTCGGCGTCGCCGTCTGCGGCGCGATCGTCAACTCCGTCGCGGCGGTGGGTCCCGACGGCACCCCGTCCGGGCCCGACCTCATGGACGCGATCCGCCTGGTGTTCGTCGTGGTCGCGGTCTCCGGCGTCCTGATCGCGGTGCTGGCGGTGTTCCTGCCCGCCGACCGTCAGGCCGCCCGCGAGCGCCGTGCCGCCGGTGGCCGCGACGCTGCGGGCTAG	MGLRSERGPILLSLMLSTALVALDATIIATASATIARELGAFEQVPWLFSSYLLAQAVSTPLAGRLSDIVGRKRAILAGVGLFFLGSVLCGAAWSMGALVAGRVLQGLGAGAVMPVSQTIAADIYTLEERARTQGYLASVWAISSVVGPTLGGVFSEFLSWRWIFWINVPLCLLAAWMLIRRYHESPLGGRREPVDYVGAALLTAGSALLLLGLLEGGTSWAWLSAPSIGVLTVAVVLLAVFARHVRRVAHPILDLRLLRRRVIGVATAISLVVGMVVLGLVTYVPIYAQGVLGFGPLLAGFALAAMMVGWPLSATNAGRLYLRLGFRLTAMIGSALVVLGTASTLLLGADSPLVAVMGTTFLVGTGMGLTAVPTLIAAQSSVDHGVRGAVTGVNIFARSLGSALGVAVCGAIVNSVAAVGPDGTPSGPDLMDAIRLVFVVVAVSGVLIAVLAVFLPADRQAARERRAAGGRDAAG				NA	NA	NA	NA	NA
AK001_02828	1287	proP		Proline/betaine transporter	GTGCTCATCCAGGACGAAGTCGCCCACCCCACCAGGACCCGCCGCCGCGCGCTCGCCGCTGCGGTGTCCGGGCACGCCATCGAGTGGTACGAGTTCGCGGTCTACGGAGTCGTCGCGGCCTACGTCGCCGCCGCCGTCTTCCCTGCTGACGACCCGGAAGTCTCCCTGCTGCTCGTCTGGGCCGGCTACGCGACAGCATTCTTCGTCCGGCCGGTCGGCGGACTGGTCCTGGCGCACCTGGGAGACCGCCACGGGCGCAAGAAGGCGCTCTTCACGAGCGTGCTGCTCATGAGCGCAGTCACCGTGGCCATGGGACTGGTGCCGGGCTACGAGGCCGCCGGCCTGGCCGCCCCGGTGCTCTTCGTCGCGCTGCGGGCAGCGCAGGGGTTCGCCGTCGGCGGCGAGATGTCGAGCGCTGTCTCGTACACCGCGGAGCACGCCGGTCCGGGTCGCCAGGTCCGCACGGCCAGCTGGCTCGCCGCGGGCACGTTCGGTGCATCGCTCGCCGGTTCGCTCGCCGCTACCGCATTGTCCCTGGTGCTGTCCACAGAGGCGATGACCGCCTGGGGATGGCGCGTGCTGTTCCTGGTGACGGTCCCGCTCGGTGCGATCGCGATCGTCCTGCGCGCACGAGCATCCGAGAGCCCTGGACTCGCGGACCCCTCCCCGCCCCCGCGCCAGGCAGCGCGCCTGCCCGTGACCGATGCGCTGGCGACGCAGCGCGGGCCGATGCTGACCTTCGTCGGCATCGCCGTGCTCTACTGCATCGGGCTGTCCGTAGCGTTCGGCGGCCACCTCAACGAGATGCTCCTGCACGGGCTGACCGCGCCCGATGCCCTCGTCGCGAACACCGCGACGTACGCGGGGCTCGTCGTGTCCATCCTGCTGCTCGCCCCGGTGTGCGAGCGACTCGGGATCCGGCGCACGATGGCGGCCGCGGCCGCCGGCGTCGCCGCCGCCTTCCCCGTGCTGTTCCTGTGCGGCTCCTCTGGGTCGCTTCCCCTCGCCGTCGCCGGCGGCGTGGTCTTCTCCGTCCCCGTCGGCCTGAGCGCGACACCCGTCTATGTCGCACTGGCGCAGATGTTCCCAGCGAGGGTCCGCGTGACCGCCGGGGCCCTCACGTTCAACGCCGCGACCGCAGTCGCCAGCCTGGTGCCCGCTGTCACCCTGGGCCTGCGCACGGCGACCGGCTTCGAGCACGGTCTCGCGCTCTGGACAGCCCTCGGACTAGCCGTGTGCGTCGCCTCCCTCACCGTCGGCACCTGGCGGCAGGTTCACGATGCATGA	MLIQDEVAHPTRTRRRALAAAVSGHAIEWYEFAVYGVVAAYVAAAVFPADDPEVSLLLVWAGYATAFFVRPVGGLVLAHLGDRHGRKKALFTSVLLMSAVTVAMGLVPGYEAAGLAAPVLFVALRAAQGFAVGGEMSSAVSYTAEHAGPGRQVRTASWLAAGTFGASLAGSLAATALSLVLSTEAMTAWGWRVLFLVTVPLGAIAIVLRARASESPGLADPSPPPRQAARLPVTDALATQRGPMLTFVGIAVLYCIGLSVAFGGHLNEMLLHGLTAPDALVANTATYAGLVVSILLLAPVCERLGIRRTMAAAAAGVAAAFPVLFLCGSSGSLPLAVAGGVVFSVPVGLSATPVYVALAQMFPARVRVTAGALTFNAATAVASLVPAVTLGLRTATGFEHGLALWTALGLAVCVASLTVGTWRQVHDA				NA	NA	NA	NA	NA
AK001_02829	930	cynR_2		HTH-type transcriptional regulator CynR	ATGCATGACCTGACCCCGCTCCACAGCCTCGTCGCCGTCGTCGACCACGGGTCGGTCGCAGCAGCCGCTCGACAGAGCGGGTACAGCGCTCCGGCCGTGTCCCGTCACCTCGCCCAGCTCGAACGCAGCCTCGGGCTGACGCTCTTCGAGCGCACGGGACGGTCGATCCGCCCGTCCGTGGCCGCGCGGGTGCTCGCCGACAAGGCCCGGATCCTGATCGAGGAGGCCGACGCGTTCCGTCGCGACGCCCGAGCCCTCGCGTCCGGGCGCGAGGGAGTCGTCCGGCTGGGCTACTTCCGCGCGGCAGGCACCACGATCGTCCCGCCGGCGCTCGCGGACTTCGCGAGGCACCGCCCAGGAGCCGACGTCCAACTCGTGGAGCGGCCGCTCAGCGAGGACGTCGTGGATCTCATCAAGGCCCGGGAGGTGGACCTGGGGTTCGTCTGGGGGTTCCCGGAGCCTGCCGACGAAGACCTTCACCGTTCGTTGCTCCTCCGCGAATCGCTGGTCCTCGTCACCGCGCACGACCGCCACGACCTGCACGAGGACCCCGGGGACCTGTCGCGGCTCGTCGACGAGCCGTTCGCGTCGGCTCCTGGTCACCTCGGCGCACCACCGCACGTGGACCGCCTGTTCCTGGCCCAGGGACTACCCACGCCGACGGCGACGCATCGACCCCGGGACCACGCCATGCTGCGCAGTCTCGTGGCCGCCGGGATCGTGGTCGCTCTGCTGCCCGCTCTCGGAGTCTCCGACCCGTCACCAGGAGTCCGTCGATCCGTGGTGGCACCCGACTTCCGGCGCACGTACCTCGCCCACCGGTCCGGGGACTCGAATCCGCTCCTCCGACCGCTGGCGCACGCCATCCGCGCGTCGGCCCGCCGGTTCGACGGGTTCGGCCTGGAGGTCGCCGGCCGAGACGGAGGGTGA	MHDLTPLHSLVAVVDHGSVAAAARQSGYSAPAVSRHLAQLERSLGLTLFERTGRSIRPSVAARVLADKARILIEEADAFRRDARALASGREGVVRLGYFRAAGTTIVPPALADFARHRPGADVQLVERPLSEDVVDLIKAREVDLGFVWGFPEPADEDLHRSLLLRESLVLVTAHDRHDLHEDPGDLSRLVDEPFASAPGHLGAPPHVDRLFLAQGLPTPTATHRPRDHAMLRSLVAAGIVVALLPALGVSDPSPGVRRSVVAPDFRRTYLAHRSGDSNPLLRPLAHAIRASARRFDGFGLEVAGRDGG				NA	NA	NA	NA	NA
AK001_02830	1209	ansZ	COG0252	L-asparaginase 2	ATGGCCACGTCACGTCGCACCCTCGCCTCTCGGATACCGCTGGGCGTCGGGGCTCTCGCCCTGGCCCTCGTCGCCAGCGGCTGCACGACGGACGACCCCGAGCAGGCCGCGGCCGCCGCCTCCCCGCTCCCCACGGCAGCCGAGTTCGACGAGTCCGCGAGCACGGACCTCCCCAACGTCGTCATCCTGGACGGCGGAGGCACCATCACGTCGACCGCGGAGGGTCCCGCGGACTATACGAACTACGGCGGCGACGGTGTCCCCGAAGGTATCGCCGGGATCCTCGAGCGGATCCAGCCGGACATCGCGGAGGTCGCCGACCTGTCGATCGTGGACGGCGCCATCCCGGGCAGCTCGGCACGGACTACCGTGCACGAACTGTTCGACATGTCGACTCAGCTCAACGAGATTCTCGGGGACGACGAGGTCGACGCCGTCGTGGTCAACACCGGGACCAACATCATGGCGGAGATCGCCTACTGGAGCGATCTCACGGTCCAGTCGCCGAAGCCGGTCGTCTTCACCGGATCGATGCGGCAGTCGAACACCTTCTCGTTCGACGGGGAGGCGAACCTCTTCAACGCCATCCGACTCGCGGCCAGTCAGCAGACGACCTGCTACGGCACGGTCATGCTGATGAACGACCAGTACTACGCGGCTCGGGAGGTCACCAAGACCGACGCCTGGCGGACGGACACGTTCAACGGGGGCCGCTACGGGGCGCTCGGCACGGTCGATGGCCAGAACTTCCGTCACATGCGTCAGCCCGCCCGGATCCAGGACTGCGGCACCGACTCCTGGCAGACCCCGTTCGACCTGTCGACGGTGGAGTTCGACGATGTCGCGACGGCTGAGGTCGTCTTCAGCCACGTCGAGGCCTCGGCGGTGCCCATCGAGGCCCTCGTCGACGACGGTGTGGACGGCATCGTGACCGCCGGCCACGGCGCGGGCGGCATCTCGACTGCGCAGAGCGAGGCACGGGATGCGGGGGTCGAGGAGGGCGTGGTGTTCGTGACCACCACCCGCACCGGCTCCGGCTCCATCTATGACGGGGGCACCCCGGGCATCGTCGGCGGCCTCGACCTGACGCCGCAGAAGGCCCGCGTGCTGCTGTCGCTGGCCCTGACCTTCACCGACGACCCCGAGCAGGTCCGGGAATGGTTCCAGACGATCGGCAGCGCCGAGTTCGACAGCGCGGCGCAGGACTGA	MATSRRTLASRIPLGVGALALALVASGCTTDDPEQAAAAASPLPTAAEFDESASTDLPNVVILDGGGTITSTAEGPADYTNYGGDGVPEGIAGILERIQPDIAEVADLSIVDGAIPGSSARTTVHELFDMSTQLNEILGDDEVDAVVVNTGTNIMAEIAYWSDLTVQSPKPVVFTGSMRQSNTFSFDGEANLFNAIRLAASQQTTCYGTVMLMNDQYYAAREVTKTDAWRTDTFNGGRYGALGTVDGQNFRHMRQPARIQDCGTDSWQTPFDLSTVEFDDVATAEVVFSHVEASAVPIEALVDDGVDGIVTAGHGAGGISTAQSEARDAGVEEGVVFVTTTRTGSGSIYDGGTPGIVGGLDLTPQKARVLLSLALTFTDDPEQVREWFQTIGSAEFDSAAQD	PGPT0020180_188	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020180-EC_3_5_1_1|ansA|ansB-K01424	NA	NA
AK001_02831	624	rmpA		3-hexulose-6-phosphate synthase	ATGAAGCTGCAGTTCGCCATGGACACCCTGACCACCTCCCAGGCCCTGGAGTGGGCGGCCGCCGCCGCGCCGCACGTCGACATCCTCGAGCTGGGCACCCCGCTCATCAAGAGCGAGGGTCTCGCCGCCATCACCGCCGTCAAGGACGCGCACCCGGACAAGACCGTGTTCGCCGACCTCAAGACGATGGACGCCGGTGCGCTCGAGGCCGAGATCGCGTTCAAGGCGGGCGCCGACCTGGTCACCGTGCTGGGCACCGCCGGTGACAGCACGATCGCCGGTGCCGTGCAGGCCGCCGAGACCCACGGCAAGGGCGTCGTCGTCGATCTCATCGGCGTCGCCGACAAGCCGGCCCGCGCCCGCGAGGTCGTCGCCCTCGGTGCGACCTTCGTCGAGATGCACGCCGGTCTGGACGAGCAGGCCGAGGAGGGCTACTCCCTGGAGACCCTGCTGCGCGCCGGTGGCGAGGCCGGGGTGCCCTTCTCCGTCGCCGGTGGCGTCAAGGAGAGCTCGATCGCGGCCGTGCAGGACTCCGGTGCCCAGGTCGCCGTCGCGGGCAGCTCGATCTACAGCGCCGACGACGTCGCCGCCGCGGCCGCGGCGCTGCGTGCCGCCATCGCCTGA	MKLQFAMDTLTTSQALEWAAAAAPHVDILELGTPLIKSEGLAAITAVKDAHPDKTVFADLKTMDAGALEAEIAFKAGADLVTVLGTAGDSTIAGAVQAAETHGKGVVVDLIGVADKPARAREVVALGATFVEMHAGLDEQAEEGYSLETLLRAGGEAGVPFSVAGGVKESSIAAVQDSGAQVAVAGSSIYSADDVAAAAAALRAAIA	PGPT0013295_510	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013295-hxlA|yckG-K08093	NA	NA
AK001_02832	597	rmpB		3-hexulose-6-phosphate isomerase	ATGCCCGACACCGCAACCATGCTCGACACCCGTTCGACGGCGGCCGCCGCCGTCGACCTCGTCCTCGGCGAGGTGGAGTCGCTCCTCACCCGCATCCGGCAGGAGCAGTCCGACCGGCTCCAGGAGCTGGCCGAGGCGGTCTCCGCGGCGGATCGCGTCTTCGTGCACGGTGCCGGCCGCTCCGGCATCGCCGTGCGCGGCCTGGCCATGCGCCTCATGCACCTCGGCAAGCCCACCTTCGTCGTGGGCGAGACGACGACGCCGGCGATCGGTCGTGGCGACCTGCTGCTGTCCGTGAGCGGCTCGGGCAGCACACCCGGTGTCCTGCGGGCCGCGGAGTCGGCCTGCGGGGCCGGCGCCCGGGTGGCCGCCATCACCAACAACGCCTCGTCCCCGCTCGGCCGCCTCGCCACGGTCACCCTGACCGTCGGCGCCGCGTCCAAGACCGACCACTCCGGGACGGCCTCGGCCCAGTACGCCGGGAGCCTCTTCGAGCAGGGCGTGGCCCTGGTCGGGGACGCGCTGTTCCACGACCTGTGGCAGCGCTCCGGCCTCGCCGCGGCCGACATCTGGCCGCGGCACGCCAACCTCGAGTGA	MPDTATMLDTRSTAAAAVDLVLGEVESLLTRIRQEQSDRLQELAEAVSAADRVFVHGAGRSGIAVRGLAMRLMHLGKPTFVVGETTTPAIGRGDLLLSVSGSGSTPGVLRAAESACGAGARVAAITNNASSPLGRLATVTLTVGAASKTDHSGTASAQYAGSLFEQGVALVGDALFHDLWQRSGLAAADIWPRHANLE	PGPT0013290_249	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013290-hxlB|yckF-K08094	NA	NA
AK001_02833	834	malT_2		HTH-type transcriptional regulator MalT	GTGGACACCGCCCCGGCGCCGACCGACTCCCTGGTGCACGAGTACCGCCGCGCCCTGGCCGAGCAGTCCGACCGGCACGCCGTGCAGCTCGAGTCGATCCTCGCCGTGCTGCGTTCCCGTCGGCTCGACGACGCCACGGCCCGGGCGACCGCCGTCGACGTCGCCTCCGGAGCCCTGGTCACGTTGCGCTCCACCGCCGAGGCCCGGGTCGGCAACATGCTGGAACCCGTGGTCGGCGCGTTCGCGCTGCTGCGCGACGACCTGCGGCCGCTGATCCGGTTCGGTCAGCTCGACGTCGAGTTCGTCGAACCGCCGCCGACCGGGCGTGCGCTGCCGGAGGTCGTCGCGCACGAGGCCCGCGCCATCGTGCGCAACGCCGTCCTCGGCCTGTTGGACCGCGGGGACGCCCGGCGGGTGCGCATCCACTGGGACTGCGACGGGCGCAACCTGCTCATGGGGATCCGGGACGACGGCTCCGGCGACCGGGACGTCCACGACGACGGCCTGCGGCCCATCGCCGAGCGGGTGAGCGCCCTGCACGGCACGTTCCTCGTGGACGCGACCCGCGGGTGGGGGTCGAACCTGGCGATCACGCTGCCCCTGGACCCGCCCACGCCGGAGCTCGGCCTGGACGCCGACGTCGCCCTGACCCGCCGCGAGCGCGACGTGCTCGCGCTCGTCGCCGCCGGCCGCCGCAACGGCGAGATCGCCGAGCAGCTGTCGATCAGCGCGAACACCGTGAAGTTCCACGTCGCGAACCTGCTGCGCAAGGTGGGCGCGGCCAACCGGGCGGAGCTGGCGGCGCTGGCGGGCGGTGCGGCCGGGCGGTCCTGA	MDTAPAPTDSLVHEYRRALAEQSDRHAVQLESILAVLRSRRLDDATARATAVDVASGALVTLRSTAEARVGNMLEPVVGAFALLRDDLRPLIRFGQLDVEFVEPPPTGRALPEVVAHEARAIVRNAVLGLLDRGDARRVRIHWDCDGRNLLMGIRDDGSGDRDVHDDGLRPIAERVSALHGTFLVDATRGWGSNLAITLPLDPPTPELGLDADVALTRRERDVLALVAAGRRNGEIAEQLSISANTVKFHVANLLRKVGAANRAELAALAGGAAGRS				NA	NA	NA	NA	NA
AK001_02834	222			hypothetical protein	GTGATCCGCACCGACGTGCAGCCCGCCTGGTGCGCCGCCGCGGAGCCGACCGGCTACCGCCCGCCGTGGGAGCACACGCTGGGCAACCCGTGGGGCCGGTTCCCGCAGGACCGACGGCGGACGGCCCGTGGCCCCCTCCCGTGCGGACGGGAGGGGGCCACGGGCTCCACGGCGGCCGGGCCGCCGCAGCTCGGGATCAGCGCAGGCCGTAGGCCCGGGTGA	MIRTDVQPAWCAAAEPTGYRPPWEHTLGNPWGRFPQDRRRTARGPLPCGREGATGSTAAGPPQLGISAGRRPG				NA	NA	NA	NA	NA
AK001_02835	3744			hypothetical protein	GTGAACAAGTTCAGGCGATATCTGGCGGGCGCGTGCGCCGGGGCGCTGCTGGCCCCCCTGGTCGCACTGTCCGCCCAGGCGGACGACGCCGACCCGTCGACCACCGCCGCGCCGCCCGAGCCCGGGACGGAGAGCGCCGTCGTCACGCTGCTCACCGGCGACCGGGTGCACGTCACGTCCTACCCGGACGACGCGATCGCGATCGACGTCGAGGCGGCCGAGCGGCCGGACGGCGTGGTCCCGGTGTTCAGCAAGCGCGAGGTCGACGGGCACGTGTACGTCGTCCCGTCCGACGTCGCGCAGCACGTGCCGAGCCTGCTCGACCCGGCGCTGTTCGACGTGAAGCAGCTCGTGGAGGACGGCTTCGACGACGCCGCCAGCGAGGACATCCCCGTGATCGTCGACTACGGCGACACCGTCCCGACCGCCCGCAGCCGCAGCACCCTGCCCGGCATCGAGGTCGAGCGCACGCTCGCGTCGATCGGTGCCGTGAGCGCGGACATCGACACGGACGACGCCGGGGCGTTCCTCGCGGCGCTGGACCGGCAGGCCGCGGCCGCCGAGCGATCCCGTGCCCGGACCGGCGGCATCGAGAAGATCTGGCTCGACCACCGTGTCGAGGCCCTGCTCGACGTCAGCACTCCGCAGATCGGCGCGCCCGAGCTGTGGGACGCCGGGTACACCGGCGAGGGCATGACCGTCGCCGTGCTGGACTCCGGCATCGACGCCTCCCACCCCGACCTGGTCGGCAAGGTGGTCGCCGAGGCGAACTTCAGCAACGCCGCCAGCACGACGGACCGGCACGGTCACGGCACGCACGTCGCCACGACGATCGCCGGCACCGGCGCGGCCTCCGACGGCACCTACCGCGGTGTCGCCTACGAGGCCGACGTCATCAACGGCAAGATCCTCAACGACTACGGGGTCGGCAACCTCTCCGAGATCATCGCCGGCATGGAGTGGGCCGCCGAGAGCGGCGCCGACGTCGTCAACATGAGCGTCGGCACCCGCCGTCTCTACACCGACGGCACCGACCCGGGCAGCCAGGCGGTCGACGAGCTGAGCGAGGAGTTCGACACGCTCTTCGTCGTCGCGGCGGGCAACGACGGGGCCGGCTCGGGCACCGTGACCTCTCCTGGTGCGGCGAGCGCGGCCCTCACGGTCGGCGCGGTGAACGACGCGGACGTCGTGGCCCGGTTCTCCAGCCGGGGACCGCGCGCCGGCGACAACGCCCTCAAGCCGGAGATCACCGCACCGGGTGTGGGGATCGTCGCGGGACGCGCCGCCGGCACGTACCGCGGGTCGGTCGTCGGCGAGCACTACACCTCCGTCAGCGGCACCTCCATGGCCACCCCGCACGTCGCCGGTGCCGCGGCCCTGCTGCTCCAGCAGCGCCCGGACCTCACCGGACAGGACGTCAAGGGCCTCCTGGCCTCGACGGCCTACCTCGCGGAAGGCACGGTGTTCGACCAGGGGACCGGCCGCGTCGACCTGCCGTACGCGATGTCGACGACGGTCCTCGCGGACACCGGCTCGCTCAGCCTGGGATTCTTCGACTACCCGCAGGACGCCACCGCTCCGGTGACCCGCTCGGTCACGTACACGAACGTCGGTGACGCCGACGTGACCCTCGCGGCGGACCTCCAGGTCACCGACGAGAACGGCGACGCCCCGGCGGCCGGTATGCTCACCTTGCACGACGACGCCGTGACCGTCCCGGCCGGCGGGACCGCGCAGCTCTCCGTGACCGTGGACCCGACGCTCGGCGAGCCTGGCGTGTACGCGGGCCACCTCACGGCGACGGACGCCGACGGCACGGAGCTCCGTGCGGGGGTGGCCTTCACCAAGGAGGCCGAGCGCTACGACCTCGTGGTCTCCACGACCGACCGCAACGGCCGGCCGGCCGGTGGCCTGAGCAGCATCGACGTCATCAACGTCGACGACCAGGCGCGCTTCTACGAGCCCGCCGTCCGCTACGACGCCGCCGGCACGGCGACGTTCCGTGTCCCGGTGGGCCACTACAGCGTCTCGGGCCTCACGTACTCCTACGACGAGTCCGGCCGGTACGCCGTCGAGGCGACCGCGACGCTGGCGCCCGAGGTCCTGGTCACCGAGGACACCGACGTGAGCTTCGACGCTCGCACCGCCGTTCCCGTCGACGTGGACACCCCGCAGGAGAGCGAGGTGCACGGGACGCAGGTCTCCTACCTGCGCACGGACGCCAAGGGCAGCCCGTACTCGCACACCTGGAGCATGTCGGCCCCGGTCGAGTCGCTCTCGGTCACCCCGACGGAGGACGTCGAGGTCGGCGGGTTCGAGTTCTACCACGCACAGACGCTCCGGGCCCCGGAGATCCGGATGACCGCCGGCGGCAGCCTCGACCTCACCGCCTACTACGCGCGGTACAGCGAGCGTCTCGACGGGGCCCTCGAGACGGAGCTGGTCGACGTCGGCTCCGGCACCGCGGAGGACTTCGCCGCGGTCGACGTCGAGGGCAAGGTCGCGCTGGTCACCCAGGACGGCTACTCGTTCGGCGCGCAGATCGCGGCGGCCGGCGAGGCGGGGGCCGCGGCCATCGTGCTCGCCGGCAACCAGCCGGGGCTCGTCATGACCAACGGCGTCCCCGGTGCGGTCCCGCACCTGACGACGACCTTCGAGGAGGCCGAGGCCGCGAAGGCGCTCATGGTCGACGGCAGCGTCGACCTGGACGTGGTGGCGATCGCGGCCAGCCCCTACCTCTACGAGACGATGTTCCCGGAGACGGGCGGTGTCCCGTCCGAGCTGGACTACGCCGTCACGCCGGAGAACTCGGCGACGGTCACGGCCACGTACCGGGCACAGGTGGAGGGTGTCGGCATCGCCGACACGCGTCACCGCTGGCGTCCCTGGGAGTCCACGGCGTTCGGCCTGCTCCGCATGCTCGAGGCGCCCCTGGTGCGCACCGAGATGGTGACCGCTGGCGACACGCTGTGGGCTCACAACTACTACACCAACTCGACGCCGACGCGCCCGTACAGCGCCTACCTCGCCGACTCCCGTCACCCGTACGAGGCGGGCTCGACCATCGACGAGGACTTCCTCACGCAGGTCATGGCCCCCGGGTTCGCGCTCTACGGGCCGGACACGGCCACCCGCACCGGGGACGCGCTGAACCTCTACGTGCCGGAGTGGACCGACTCGGACGCGCGCTGGGGCGAGGTCTACTACCGCACGGACACCTCGTCGTTCCGGCTGTACACGGACGGTGAGCTGACGGCGCAGAGCAGCCGGGCCCGCGGCACCTTCGACGTGAGCACCGAGCCGTCCGAGCTGAGGATCGAGCTCGACGTGGCCCGGGACGCCGACTGGTGGACGATGTCCACCGAGACCTCGACGGCCTGGACCGTGCAGAGCACGCCGCAGGACGGCGAGACCGAGGTCCTGCCGCTGCTGCGGGCGCGCCTGCAGCCCGACGTGGACCTGCTCAACCGCGCGAAGGCCTCCGCCCACCACGTCGATGTCACCGTCGACCACCAGCCGGGTGCCACGGCTGCCCCGATCGCCGAGACCCGCTTCTGGGTCTCGACCGACGACGGCGAGACGTGGCGCGAGGTCCCGGTGCGCCGGCACGGCAAGGACGGGCTGCGCGCCGTCGTCAACCGGCTGCCGGCCGAGGCGGAGTACGTCTCCGTGCGGGTCGAGGTCACCGACACGGCCGGCAACGTGCTGGAGCAGGAGATCACCCGGGCCTACGGCCTGCGCTGA	MNKFRRYLAGACAGALLAPLVALSAQADDADPSTTAAPPEPGTESAVVTLLTGDRVHVTSYPDDAIAIDVEAAERPDGVVPVFSKREVDGHVYVVPSDVAQHVPSLLDPALFDVKQLVEDGFDDAASEDIPVIVDYGDTVPTARSRSTLPGIEVERTLASIGAVSADIDTDDAGAFLAALDRQAAAAERSRARTGGIEKIWLDHRVEALLDVSTPQIGAPELWDAGYTGEGMTVAVLDSGIDASHPDLVGKVVAEANFSNAASTTDRHGHGTHVATTIAGTGAASDGTYRGVAYEADVINGKILNDYGVGNLSEIIAGMEWAAESGADVVNMSVGTRRLYTDGTDPGSQAVDELSEEFDTLFVVAAGNDGAGSGTVTSPGAASAALTVGAVNDADVVARFSSRGPRAGDNALKPEITAPGVGIVAGRAAGTYRGSVVGEHYTSVSGTSMATPHVAGAAALLLQQRPDLTGQDVKGLLASTAYLAEGTVFDQGTGRVDLPYAMSTTVLADTGSLSLGFFDYPQDATAPVTRSVTYTNVGDADVTLAADLQVTDENGDAPAAGMLTLHDDAVTVPAGGTAQLSVTVDPTLGEPGVYAGHLTATDADGTELRAGVAFTKEAERYDLVVSTTDRNGRPAGGLSSIDVINVDDQARFYEPAVRYDAAGTATFRVPVGHYSVSGLTYSYDESGRYAVEATATLAPEVLVTEDTDVSFDARTAVPVDVDTPQESEVHGTQVSYLRTDAKGSPYSHTWSMSAPVESLSVTPTEDVEVGGFEFYHAQTLRAPEIRMTAGGSLDLTAYYARYSERLDGALETELVDVGSGTAEDFAAVDVEGKVALVTQDGYSFGAQIAAAGEAGAAAIVLAGNQPGLVMTNGVPGAVPHLTTTFEEAEAAKALMVDGSVDLDVVAIAASPYLYETMFPETGGVPSELDYAVTPENSATVTATYRAQVEGVGIADTRHRWRPWESTAFGLLRMLEAPLVRTEMVTAGDTLWAHNYYTNSTPTRPYSAYLADSRHPYEAGSTIDEDFLTQVMAPGFALYGPDTATRTGDALNLYVPEWTDSDARWGEVYYRTDTSSFRLYTDGELTAQSSRARGTFDVSTEPSELRIELDVARDADWWTMSTETSTAWTVQSTPQDGETEVLPLLRARLQPDVDLLNRAKASAHHVDVTVDHQPGATAAPIAETRFWVSTDDGETWREVPVRRHGKDGLRAVVNRLPAEAEYVSVRVEVTDTAGNVLEQEITRAYGLR				NA	NA	NA	NA	NA
AK001_02836	951			hypothetical protein	ATGCGACGCTCTCTCCTGACCCGAGCCGCCACGACCGCAGCGGCCGCAGGACTCGCCCTCCCCCTCGTGGCGGCCGCGCCGGCCGTCGCCGACGCACCGCACGGCACGGCTGCCGGCGCCTCGGACCAGTGCTCCGGCCGCTCCGTGCCGGCCGGCAAGATCTCGTTCCAGCTCTACAGCTACAGCGGCTGGCAGCAGGAGATCGGGATCGACGCCGTCCTCGGCGAGCTCGCCGACATCGGCTACAAGAACGTGGAGCCGTTCGGCGGCAGCTACGAGGGCCGCACCGCCGAGGAGTTCCGCGCGCTGCTCAAGGAGCACGGCCTCAAGGCGCCGAGCTCCCACGGCAGCACCGACCCCGAGGCCTTCGAGGAGACCTTCGACTTCGCGAAGACCATCGGCCAGAAGTACACCGGCTCGGGCGGCTTCGCCGGACCCGGCGTCCCGTTCTTCGGCGGCAGCACGTCGTGGGAGAGCGCCATGGAGACCGCCGAGGCGATGAACGCCGCCGGCGAGGCCTCCGTCAAGGCCGGCACCGGCAAGCACTTCGGCCACAACCACTGGAACGAGTTCGCGCTCGACGTCACCGACCCGGCCACCGGCGAGACGATGAGCTGGTGGGAGGCCGTGGCCCAGAACACCGACCCGCGGTACGTCGCGTTCCAGGTGGACGTCTACTGGGCGACCGACGGCGGCGCCGACGTCGTCGAGCTGCTCGAGGAGTACGGCGACCGCATCGACCTGCTGCACATCAAGGACGGCGACCTGTCCGGTCCCACCCCGGCGTTCGGCACCCAGACCGTCGTCGGCGAGGGTGACATCGACTGGCCGTCGGTCCTGGAGGCGGCCCAGGGCAAGGTCAAGTACTACGTCATCGAGATGGACGGTGCACCGACCGACGCGAGCTTCGCGCGGGAGAGCTTCGAGTACCTGACCTGCGCGGACTTCTGA	MRRSLLTRAATTAAAAGLALPLVAAAPAVADAPHGTAAGASDQCSGRSVPAGKISFQLYSYSGWQQEIGIDAVLGELADIGYKNVEPFGGSYEGRTAEEFRALLKEHGLKAPSSHGSTDPEAFEETFDFAKTIGQKYTGSGGFAGPGVPFFGGSTSWESAMETAEAMNAAGEASVKAGTGKHFGHNHWNEFALDVTDPATGETMSWWEAVAQNTDPRYVAFQVDVYWATDGGADVVELLEEYGDRIDLLHIKDGDLSGPTPAFGTQTVVGEGDIDWPSVLEAAQGKVKYYVIEMDGAPTDASFARESFEYLTCADF				NA	NA	NA	NA	NA
AK001_02837	951			hypothetical protein	GTGCGTGACGCCGACGAACCCGACGTGCCCGCCGGCCCGGGTCGACTGGATCGCCTGAAGCATCGACTCCTGGGTCCCGACGGCCTCGACCACGCTGTGCGCGCCCAGCCCGTCGGTCATCTCCTTGATCCTCGCCACGCCCTCGTCACCGCGCTCGGCGACGATGTCGGTCGCGCCGAACTCCCGGGCCAGCCGCTGCCGCGACTCGTGCCGGGACATGGCGATGATGCGCTCCGCCCCGAGCTGCTGGGCGGCGAGGACCGCGCTCAGCCCGACCGCGCCGTCACCGACCACCACGACGGTCTTGCCCGGTCCCGCCTCGGCCGCCACGGCCCCGAACCAGCCGGTCCCCAGCACGTCCGAGGCCGCCAGCAGCGACGGGATCAGGTCCTCGTCGGGCTGACCCGGCGTCGCCACCAGGGTGCCGTCGGCCTGCGGGACCCGCAGGTACTCGGCCTGCGCGCCGTTCATGCCCACGTACTCCGCGTGCACGCACCGGCTCTGGTAGCCGGCCCGGCAGATCGGGCAGGTGTTGTCCGAGGCCCAGAAGGACCCGACGACGAAGTCGCCGACCTCCACGTTCCTCACGTCGGCGCCGATCTCCTCGACGACACCGACGTACTCGTGCCCCATGGGCATGGGGCCCGGAGCGGTCTCGATGCCGCGGTACGGCCACATGTCCGACCCGCAGACGCAGGCGGCCGTGACCTTGATGATGGCGTCGGTCGGCGCCAGCAGCGTCGGCTTCTCCCGCTCCTCCACCCGGACGTCCCCGGGTCCGTGCAGTACTGCTCCACGCATGATCGAGCTCCTCGTTCGGACGATGGCCGCCGGGCGGCCGGGGGTCGGGTCCTCGGGACCCGGGTCAGGACTCCCCGCGGAAGACCTGCTTCGCGACGGCCATGGCGGCCATGGCCTGCGGCCAGCCGGCGTAGAACGCGAGGTGGGTGA	MRDADEPDVPAGPGRLDRLKHRLLGPDGLDHAVRAQPVGHLLDPRHALVTALGDDVGRAELPGQPLPRLVPGHGDDALRPELLGGEDRAQPDRAVTDHHDGLARSRLGRHGPEPAGPQHVRGRQQRRDQVLVGLTRRRHQGAVGLRDPQVLGLRAVHAHVLRVHAPALVAGPADRAGVVRGPEGPDDEVADLHVPHVGADLLDDTDVLVPHGHGARSGLDAAVRPHVRPADAGGRDLDDGVGRRQQRRLLPLLHPDVPGSVQYCSTHDRAPRSDDGRRAAGGRVLGTRVRTPRGRPASRRPWRPWPAASRRRTRGG				NA	NA	NA	NA	NA
AK001_02838	327			hypothetical protein	ATGACGGACCGCGAACCCTCCGGCGCCGAGCGCATGTTCGGCGACTTCGCCCCGGGCCTCGTGCACTACACCGACGACGTGCTGTTCGGAGACGTGTGGAAGCGACCCGGGCTGTCGCCCAAGGAGCGCAGCCTGGTGACCGTCTCCGTGCTGGCCACGAACGGGAACACCGAGCAGCTCACCTTCCACATCTGGCTGGCCAAGGAGAACGGCAACTCCGAGGAGGAGGTCGTCGAGGCACTCACCCACCTCGCGTTCTACGCCGGCTGGCCGCAGGCCATGGCCGCCATGGCCGTCGCGAAGCAGGTCTTCCGCGGGGAGTCCTGA	MTDREPSGAERMFGDFAPGLVHYTDDVLFGDVWKRPGLSPKERSLVTVSVLATNGNTEQLTFHIWLAKENGNSEEEVVEALTHLAFYAGWPQAMAAMAVAKQVFRGES	PGPT0005005_4090	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607	NA	NA
AK001_02839	372			hypothetical protein	ATGACCACCTGGACACCCGACGAGCTCAGCGCGGTCGGCGACGCCGGCGAGCTGCACATCGCGCCCGCGCGGACCGACGGCAGCTTCCGCCGTCCGACCACCATCTGGGTGGTGCGGGTCGGCGACGAGCTGTACGTCCGGTCCTACCACGGGCCCGACGGCGGCTGGTACCGCCAGGCGCTGCGCAGCGGTCGAGCCCGGATCGACGCCGGCGGCGTCGAGCGCGAGGTCTCGCTCACCGAGCCGACCGACGACGTCGACGCCTCGATCGACGACGCCTACCGCACCAAGTACGGGCGGTACAGCAGCTACGTCGCACCGATGATCGCGCCCCCGGCCGTCGCCGCGACCCTGCGGCTCGAGCCCCGCTGA	MTTWTPDELSAVGDAGELHIAPARTDGSFRRPTTIWVVRVGDELYVRSYHGPDGGWYRQALRSGRARIDAGGVEREVSLTEPTDDVDASIDDAYRTKYGRYSSYVAPMIAPPAVAATLRLEPR				NA	NA	NA	NA	NA
AK001_02840	924			hypothetical protein	ATGGACAACCGCCAGGACGTACGTGAGTTCCTCACTTCGCGTCGCGCCAAGGTGACGCCTCAGGACGCCGGCCTCCCCCCGGGCAGCAACCGCCGCGTGCCCGGGCTGCGGCGCAGCGAGGTCGCGATGCTCGCCGACATGAGCGTCGAGTACTACGCGCGCCTCGAGCGCGGGAACCTCTCCGGCGTCTCGGACCCGGTGCTGGACTCCCTCGCTCGCGCCCTGCAGCTCGACGAGGCCGAGCGGTCGCACCTGTTCGACCTCGCCCGCACGGCGAACCGTGCCGTGCAGGTGCGGCCCCGTCGGCGCGGCACCCGGCGCTGGGTCGCCCGTCCCGCGCTGCAGCTCACCCTCGACGCCGTCACCGAGGGCCCGGCGTTCGTCCGCAACGGACGCATGGACATCCTCGCGGCCAACCGGCTCGGCTGGGCCTTCTACGCGGACGTGCTCGCGGCGGGTGACGAGACGCCGAACCTCGCGCGGTTCACGTTCCTGGACCCCGAGCGGTCCGAGAGCTTCTACCCGGACTGGGAGGCCGCGGCGGACGTCGTGGTGGCGATCCTGCGCACCGAGGCCGGCCGCGACCCGCACGACAAGGGGCTGCACGACCTCGTCGGCGAGCTGTCCACCCGGTCCCCCGCGTTCCGCACCCGCTGGGGCGCTCACGACGTGCGGCACCACGGCACCGGCAGCAAGGGGTTCCACCACGACGTCGTCGGCGACCTCGACCTCTACTTCGAGAGCATGGACCTGACCGCGGAGCCCGGGCTGTCGTTCCTCGTCTACACGGCGGAGGTCGGCAGCGCCTCCGAGGAACGCCTGCGGCTGCTGGCGAGCTGGGCCGCGTCGCACGACTGGCCCGGCCACCCCGCTCTCGTCCCGACCACCTCCACCCAGGACGCTCCGACCGACGAGCACGCCTGA	MDNRQDVREFLTSRRAKVTPQDAGLPPGSNRRVPGLRRSEVAMLADMSVEYYARLERGNLSGVSDPVLDSLARALQLDEAERSHLFDLARTANRAVQVRPRRRGTRRWVARPALQLTLDAVTEGPAFVRNGRMDILAANRLGWAFYADVLAAGDETPNLARFTFLDPERSESFYPDWEAAADVVVAILRTEAGRDPHDKGLHDLVGELSTRSPAFRTRWGAHDVRHHGTGSKGFHHDVVGDLDLYFESMDLTAEPGLSFLVYTAEVGSASEERLRLLASWAASHDWPGHPALVPTTSTQDAPTDEHA				NA	NA	NA	NA	NA
AK001_02841	414			hypothetical protein	ATGAAGGTCCTCACCGCTGCCCCGACCACCAAGAACCCGCCGGAGCAGTTCACCGGCGACGTGTGGCTCGACCCCATCGCCTACCCGCAGGACGCCGGCCAGACCATGGTCGTCGCCAAGGTCAGGTTCGCCCCGGGAGCCCGCACGGCGTGGCACTCGCACGCTCGTGGCCAGACGCTGCACGTCACCAACGGGTTCGCGCTCGTCGGCACCCGCGACGGCACGGTCGTCAGGGCCGGGCAGGGCCAGACGATCTACTGCCCGCCGGACGAGGAGCACTGGCACGGCGCGACGCCGGACAGCTTCATGGAGCACCTCGCGATGCTCGAGAACACCGACGACCCCGCCACGTCCACCACCTGGCTGGAGCACGTCACCGACGAGGAGTACGCCCGGCCCGCCACCGCGGCCTGA	MKVLTAAPTTKNPPEQFTGDVWLDPIAYPQDAGQTMVVAKVRFAPGARTAWHSHARGQTLHVTNGFALVGTRDGTVVRAGQGQTIYCPPDEEHWHGATPDSFMEHLAMLENTDDPATSTTWLEHVTDEEYARPATAA	PGPT0005005_56	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607	NA	NA
AK001_02842	141	sodA_1	COG0605	Superoxide dismutase [Mn]	ATGTGGGAGCACGCCTTCTACCTGGACTACCTCAACGTCAAGGCCGAGTACGTCAAGGCGTTCTGGAACCTCGCCAACTGGCAGGACGTCGCCGCCCGCCTCGAGCGCGCCCGCACCCAGACCGCAGGCCTTCTCGCCTGA	MWEHAFYLDYLNVKAEYVKAFWNLANWQDVAARLERARTQTAGLLA	PGPT0004190_2628	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564	NA	NA
AK001_02843	312	higA2		Putative antitoxin HigA2	ATGGAGATGGCCCTGGATCTGGACGACGTCCTTGCGAAGCGACCCGTTGACCGGGAGCTCGTCGATGCTCACAAGGGGCGCATGCTCTCCGAGGTGCGTGCGTATCGGCTGCGCGAGTTGCGCGAGGCTCTCGGTCTGACCCAGCTCGAGCTGGCCCAGCGCATCGGGGTGGGGCAGCGTCAGGTCTCCAAGATCGAGCATGGCGACATCGACAACGCGAAGGTCGGGACCGTGCGCAAATACCTCGAAGCGGTAGGCGGAGACCTCGCTATCGAGTACGTCACGACGGACCGGCGAGTCCAGGTCGCCTGA	MEMALDLDDVLAKRPVDRELVDAHKGRMLSEVRAYRLRELREALGLTQLELAQRIGVGQRQVSKIEHGDIDNAKVGTVRKYLEAVGGDLAIEYVTTDRRVQVA				NA	NA	NA	NA	NA
AK001_02844	153	higB2	COG4683	Putative toxin HigB2	GTGCTGTTCGCCTTCGATCCCGGCCGTCGGGCGATCATGCTGGTTGCCGGCGACAAGGCCGGGAACTGGAAGCGTTGGTACAAGAAGAGCATCCCTGAGGCAGACGACCTGCTCGACACCCACATCCGCCGGCTGAAGACTGAAGGAGAGTGA	MLFAFDPGRRAIMLVAGDKAGNWKRWYKKSIPEADDLLDTHIRRLKTEGE	PGPT0027571_4854	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027571-toxin_higB1-na	NA	NA
AK001_02846	867	dat		D-alanine aminotransferase	ATGAGTCTCGTGATCTGGGCCGAAGGTCGGTTGGTCGGAGCCGGGGAGGCCGCGCTGAGCGCGGTCGACCACGGCATCACGGTGGGTGACGGCGTCTTCGAGACGTGCACCGTGTTCGACGGGCAGGTGTTCGCGCTGACGCGGCACCTGGAGCGGCTGCGCCGCTCGGCGACCGGCCTCGGGCTGGAGGCGCCCGACGAGCAGAAGGTGCGCGAGGGCGTGGCCGCGGTGCTCGACGAGGCGGTGCGCCTCGACGGTCCGTTCGACGGCCGGCTGCGCATCACCGTCACCGCAGGCATCGGCCCGCTCGGCTCCATGCGGGTCCCCGGCGCGCAGAGCGTCGTCGTCGCCGTCCAGGACTCGGTGATGATGCCGGAGTCGCGCTCCGCCCGCTCGCCATGGCCTCGCAACGAGCGGTCGCCCATCGCCGGGCTCAAGACGACGTCGTACGCCGAGAACGTGGTGGCGCTCGCGGATGCCAAGGCCAAGGGTGGCGACGAGTCGATCCTGCCCAACACGGTGGGCGAGCTCTGCGAGGGCACGGGATCGAACATCTTCGTCGAGCGCGGCGGAGAGCTCCTCACCCCGGCGCTGTCCACGGGGTGCCTGGCCGGGATCACCCGGGCGCTCGTGCTCGAGTGGGGCGCCGAGGCGGGGCTGCCCGTGCGCGAGGCCCGGGAGGGTGAGCTGCCGTTCTCCGTGCTCGACGAGGTCACCACGGGCGGCGTGCACCTGGCGCTGACGTCCTCAGGACGCAACGTTCAGCCCATCACCTGGCTCGACGGCGTCGACGTCGTCCCGGGGGAGATCACGCTGGCCGTGCGGGAGGTCTTCGAGAAGAACTGCCGGGAGCGCCTCGACCCGTGA	MSLVIWAEGRLVGAGEAALSAVDHGITVGDGVFETCTVFDGQVFALTRHLERLRRSATGLGLEAPDEQKVREGVAAVLDEAVRLDGPFDGRLRITVTAGIGPLGSMRVPGAQSVVVAVQDSVMMPESRSARSPWPRNERSPIAGLKTTSYAENVVALADAKAKGGDESILPNTVGELCEGTGSNIFVERGGELLTPALSTGCLAGITRALVLEWGAEAGLPVREAREGELPFSVLDEVTTGGVHLALTSSGRNVQPITWLDGVDVVPGEITLAVREVFEKNCRERLDP	PGPT0008860_6865	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826	NA	NA
AK001_02847	612			hypothetical protein	ATGACGACCGTGACCTGCGACCTGTCCGTGTCCCTGGACGGCTTCGCCGCCGGCCCGCACCCGACCCGTGAGCGTCCCTTCGGCGACGTGATCGGCACCGGCGAGGTGCTGCACACGTGGCTGCTCGAACACGCCGAGGACCACCCGCGGGAGGTCACCGGCATCCTGGAGGCCGACGCCTACGTCATGGGCCGCGGCATGTTCTCCCCGGACACCGGGCCCTGGGACCTCGCGTGGCGCGGCTGGTGGGGTGACGAGCCGCCGTACCACGCACCGGTGTTCGTGCTCACCCACCATCCGCGCGAGCCGCTGGAGATGGCCGGCGGCACGACCTTCCACTTCGTCGCGGACGGTGCCGACGAGGCGCTGCGCCGGGCCGTCGATGCGGCCGGCGACGGCGACGTCTCGATCGCCGGGGGAGTCTCGACGGTCAACACCTACCTCGCCGCCCGGGCGATCGACGAGCTGCGCCTGCACGTCGCGCCCGTCGTGCTCGACGTCCCGGGCGGTACGCGGCTGTTCGACGGCGTCGGCCGGCTGGACCTTGACGCCGTCTCGGCCCGGCACGCAGGGGAGGTGACGCATCTCGTGTACGGGCGTCGGGCAGACTGA	MTTVTCDLSVSLDGFAAGPHPTRERPFGDVIGTGEVLHTWLLEHAEDHPREVTGILEADAYVMGRGMFSPDTGPWDLAWRGWWGDEPPYHAPVFVLTHHPREPLEMAGGTTFHFVADGADEALRRAVDAAGDGDVSIAGGVSTVNTYLAARAIDELRLHVAPVVLDVPGGTRLFDGVGRLDLDAVSARHAGEVTHLVYGRRAD				NA	NA	NA	NA	NA
AK001_02848	1176	menF		Isochorismate synthase MenF	ATGGTCCAATCGCCCCGCAGCGTGTCCCTGGCATACCGTGCAGCCGTGCGCGCACCCACCTCCTGGGCCTCCTTCGCAGGCCGCCTGGCGACCGACGTCGTCGAGTGCGTCGACCTCACCGAGGCGCCCGAGCGGCTCGCCGAGCCCGGGCCGTGGTTCGTCGTCGTCGACTTCGAGGCCTTCGGCCGCTCCGGGCGGGCGCGCGCCTGGCGGTTCGCCCACGTGACCGACGGCGCGCCCCCGGCGTACGACGACGGTGCGACGGACGGCTGGCGGGGCCCGGCGGCCCAGGACTGGACGACGTCGATGTCCCAGGAGCGGTACGAGGCCGCGGTGAGTACGGTCCGGCACCACATCCGCGACGGCAGCGTCTACCAGGTCAACGTGTGCCGGGTGCTGAGCGCACCGCTGCCCGCGGACGACCCGCGCAAGCCCGCCGGCGAGCCGGACGCGGCAGCGCTGTCCGCACGGCTGGCCGCCGGCAACCCCGCGCCGTACGCGGCCGCCGTCCATGTCCCCGGCGGTCTCGGCGTCGACCCCGTGTGGGTGGTGTCGGCCTCGCCCGAGCTCTACCTCTCCCTGCAGGACGACGGGCTCGCCTCCGGACCGATCAAGGGCACCGCGCCCACCGCCGCGGGCCTGACCGGTAAGGACCGCGCCGAGAACGTCATGATCACCGACCTCGTGCGCAACGACCTGCAGCGGGTGTGCCGACCCGGCACGGTCGCGGTCACGGAGCTGCTCGGCGTCGAGGAGCACCCCGGCCTCGTGCACCTGGTCTCCCGCGTCGAGGGTGTCCTGGCCCCGGGCGTCGCGTCCGCCGCGGACCGGTGGGCCCGGGTGCTGCGCGCCACCTTCCCGCCCGGCTCGGTCTCCGGGGCGCCCAAGTCGTCGGCCCTGTCGGTCATCGACGACCTCGAGCCCACGCCGCGCGGGCCCTACTGCGGCGCCGTCGGCTGGGTCGACGGGGACCGGGCCGAGCTCGCCGTGGGGATCCGCACCTTCTGGTGGGAGCGCCACGGGGCCGACGACGGCGTGCTGCGGTTCGGCACCGGCGCCGGCATCACGTGGGGTTCGGACCCCCGCGCGGAGTGGCGCGAGACCGAGCTGAAGGCCTCCCGGCTGGTCGGCCTCGCCTCGCACGGGGGAGGGGACGAACCCGCCGCCGACCGATGA	MVQSPRSVSLAYRAAVRAPTSWASFAGRLATDVVECVDLTEAPERLAEPGPWFVVVDFEAFGRSGRARAWRFAHVTDGAPPAYDDGATDGWRGPAAQDWTTSMSQERYEAAVSTVRHHIRDGSVYQVNVCRVLSAPLPADDPRKPAGEPDAAALSARLAAGNPAPYAAAVHVPGGLGVDPVWVVSASPELYLSLQDDGLASGPIKGTAPTAAGLTGKDRAENVMITDLVRNDLQRVCRPGTVAVTELLGVEEHPGLVHLVSRVEGVLAPGVASAADRWARVLRATFPPGSVSGAPKSSALSVIDDLEPTPRGPYCGAVGWVDGDRAELAVGIRTFWWERHGADDGVLRFGTGAGITWGSDPRAEWRETELKASRLVGLASHGGGDEPAADR	PGPT0008005_2110	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008005-pabB-K01665	NA	NA
AK001_02852	1500	mdtD_2		Putative multidrug resistance protein MdtD	ATGGCTGAGACCGATCGTCCCGCTCGGCGCGACGCCCGGACGCCGGGCGACGTCATGGCGGCCGCCACCGTCTCCACGCTCATCGTCAACGCGAACACCTCGGCCGTGGCGATCCTGCTTCCGGCGATCAGCGACGACGTGGGCATGTCCACCGAGACCCTGCAGTGGGCCGTGACGGGCTATCTCCTGGTCGGCGCAGCCACCATCGTCACGTCGGGCAGCCTCGGGGACGTCTTCGGCCGGCGCAAGGTGTTCGTCGGCGGTCTGCTGCTGTTCATCGCCTCGTGCGTCCTCATCGCCCTCGCACCCGGCGGGTGGGCCGTCATCGTCGGGCGCTGCATCCAGGGCGCGGCCGGTGCCACGCTGGTCGCCGGCGGGCTCAGCATCCTGTCCATCGCCTCGCCTCCCGGCACCGCCCAGCTGCGTGCCGTGTCCTACTGGGGCTCCGCCTCGGCGGTCGGCGCCGCGGCGGGTCCGCTGCTCGGCGGGGCGCTGGTGAACACGGTGGGCTGGCAGGGGCTGTTCTGGCTGGACGCGGCCATCGCCGTCCTGCTGGTGCCCGTCACCGTGCGCTCCGTGGCCGAGTCCTTCGACCCGACGCGCAGCCGGTCGATCGACTGGGCCGGGACCGCGCTCATCGCGCTCGCGCTCGCCCCGCTCATCCTCGGCGTCACCCAGGGCGCGACCTGGGGATGGCTGGCGCTCCCCACGCTGCTCTGCTTCGCGGTGTCGGTCGCCTCCACCGTCGGCTTCGTCGCCGTCGAGAACCGGGTGTCCGCCCCGCTGCTCGACCTCCGCCTGTTCCGCAACCGACGACTGGTCGGGGCGACGCTCGGCATCCTCATCGGCGCCGCCGCGATCAACTCCATGATGTTCGTGCTGAGTCTGTTCTTCCAGGATCCGGCCCTCCTCGGGATGGACCCCCTCCAGGCGGGGTTGGCGACTCTTCCGGCGACGGTCGGGATGGTGGCCCTCACCCCGGCGGTGCCCTGGCTCACGCACCGGTTCGGGGTGCTCGCCGTCGTCGGCGCCGGTTTGATCATCATGACCGGGGGGTTCGCCGCACTCGCGCTGGCGAGCATCTCCTGGGGATATCTCGCGTTCCTCACCCCGATCGTCGTGGTGGCCCTGGGCCTGTGCCTGTCCAACAACCCGTGCTCCTCGGTCGCCACCGGGTCGGTCGACCCCTCCGAGGTCGGCGGGGCCTCGGGGCTGTCGAACATGGCCCGGTACGTGGGGCCGGCGATCATGACCGCGGTCGTCGCCGCGCTGTACGCCGGGATCCCCGAGAACCGACAAGCCGCGGGCGCATCGGCCGCCGAGGCGCAGATCGCGGGCTTCCAGGGTGCCGCCGTCGCCCTGGCGATCGTCTCCGCGACCGGGATCCTGCTCGTGTACCTCGTGCGCGGCTACCGCGAGCGGCACGCGCCGGACGGGGTGGAGGTCGCGATCGCGGCCGCCGCGCCGCTGCACACCATCCCGCGGCCCGAGGACTCCTGA	MAETDRPARRDARTPGDVMAAATVSTLIVNANTSAVAILLPAISDDVGMSTETLQWAVTGYLLVGAATIVTSGSLGDVFGRRKVFVGGLLLFIASCVLIALAPGGWAVIVGRCIQGAAGATLVAGGLSILSIASPPGTAQLRAVSYWGSASAVGAAAGPLLGGALVNTVGWQGLFWLDAAIAVLLVPVTVRSVAESFDPTRSRSIDWAGTALIALALAPLILGVTQGATWGWLALPTLLCFAVSVASTVGFVAVENRVSAPLLDLRLFRNRRLVGATLGILIGAAAINSMMFVLSLFFQDPALLGMDPLQAGLATLPATVGMVALTPAVPWLTHRFGVLAVVGAGLIIMTGGFAALALASISWGYLAFLTPIVVVALGLCLSNNPCSSVATGSVDPSEVGGASGLSNMARYVGPAIMTAVVAALYAGIPENRQAAGASAAEAQIAGFQGAAVALAIVSATGILLVYLVRGYRERHAPDGVEVAIAAAAPLHTIPRPEDS				NA	NA	NA	NA	NA
AK001_02853	291			hypothetical protein	ATGTGCCGCAACATCACCACCCTGCGTGGCCTCGAACCGCCCGCCACGGCGGAGGAGATCGAGGCCGCCGCCGCTCAGTTCGTCCGCAAGGTGACCGGCGTCGCCGCCGACGCCGCTCCCGCGTCCCGGGAACCGTGCGAGGCCGCCTCGGCCGAGATCGCGGCGATCGTCACCCGGCTGCTGGACGAGCTGCCGGCCCGCCGGCAGCCGCCGGCCACGGTTCCCCCGTTGCGCCGACCCGAGGTGCAGGCGCGCCTCGCCGCCCGCGACGGCGCGCCGCGCACGGCATGA	MCRNITTLRGLEPPATAEEIEAAAAQFVRKVTGVAADAAPASREPCEAASAEIAAIVTRLLDELPARRQPPATVPPLRRPEVQARLAARDGAPRTA				NA	NA	NA	NA	NA
AK001_02854	717	rosB		8-demethyl-8-aminoriboflavin-5'-phosphate synthase	GTGAACGAGCCGGAGCACGACTTCTCCCCGCTGCGTGCCGCCTTCGTCAACTGCACCCTCAAACCGTCCCCGGAGGTCTCCCACACCCAGGGCCTCTTGGACGTCAGCGCCGCGATCATGCGCAAGCACGGCGTGACCGTGGACGAGATCCGCGCCGTCGACCACGACCTCGCCCCCGGGGTGCAACCGGACATGACCGAGCACGGGTGGGACCGCGACGACTGGCCGGCGCTGGCCGAAAGGATCCTCGCCGCGGACATCCTCGTCCTGGGCACGCCGATCTGGCTGGGCGACAAGTCCAGCGTCTGCACTCGCGTCGTCGAGCGGCTGTACTCGCTGTCCGGGCGGCTCAACGACGCCGGACAGTACCTGTACTACGGCCGCACCGCGGGCGTCGTGATCACCGGGAACGAGGACGGTGCCAAGCACGTGGCGATGAACGTCCTGTACTCCCTGCAGCACCTCGGCTACGCGATCCCGCCCCAGGCGGACGCGGGGTGGGTCGGCGAGGCCGGGCCGGGCCCGTCCTACCTGGACGAGGGATCGGGTGGCCCGCAGAACGAGTTCACGCAGCGCAACACCACGTTCATGACGTGGAACCTCCTGCACCTGGCCGCGATGCTCCGGGCCACCGGAGGCTTCCCCGCGTACGGCAACCAGCGCAGCGCCTGGGACGCCGGCGCCCGGTTCGACCACCCGAACCCGGAGTACCGCTGA	MNEPEHDFSPLRAAFVNCTLKPSPEVSHTQGLLDVSAAIMRKHGVTVDEIRAVDHDLAPGVQPDMTEHGWDRDDWPALAERILAADILVLGTPIWLGDKSSVCTRVVERLYSLSGRLNDAGQYLYYGRTAGVVITGNEDGAKHVAMNVLYSLQHLGYAIPPQADAGWVGEAGPGPSYLDEGSGGPQNEFTQRNTTFMTWNLLHLAAMLRATGGFPAYGNQRSAWDAGARFDHPNPEYR	PGPT0004370_3	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MNT_TRANSPORT_SYSTEM,PGPT0004370-mntH-K03322	NA	NA
AK001_02857	291			hypothetical protein	GTGAACGACCCCAGCGCCGACAGCCCGCCCGCCGTCTCCGCGACGATGCACCGGGCCAAGACCCGGGCACGGGCGTCTCACGTCACCGTGGGGCGCGCGCGGCTGGGGGACGACGGCACCGTCGAGATCGACTGCTCGTGCGGCATGGTGCTGCGCAACGGCCCGCAGTGGTCGCTCGACGAGCACATCCGTCTGCACCGGGCCGAGGCCCGGTACCTCGCGCTGAGCGAGGTCGCGCCGGCCGGCATGCCCCGCCTCATCGCCGTGGGCACCGACCGTCTCCCCCGCTGA	MNDPSADSPPAVSATMHRAKTRARASHVTVGRARLGDDGTVEIDCSCGMVLRNGPQWSLDEHIRLHRAEARYLALSEVAPAGMPRLIAVGTDRLPR				NA	NA	NA	NA	NA
AK001_02858	234			hypothetical protein	ATGAGCAAGGACACACGGGAGGCCGACTCCGACCGAGTTCGGGTCCTCCTCGACGAGTCGATCGCCTCCCAGGCGCGGATCGCGCCCCGACAGCGGTCGGCCACGGACGAGCACGGAGATCCCCGCATCGGCGGTGACGCCACCAAGGCGCCGCTGTCGCTGTCGCAGAGCGAGCGACGCCCGATGGAGGGCGCATCGAGCGGTCACAGCTGGGACGACCCCGACGAGCTCTGA	MSKDTREADSDRVRVLLDESIASQARIAPRQRSATDEHGDPRIGGDATKAPLSLSQSERRPMEGASSGHSWDDPDEL				NA	NA	NA	NA	NA
AK001_02859	1662	glgB_2		1,4-alpha-glucan branching enzyme GlgB	GTGACCGCCGGAGATCGACTCGATGCCGAGCGCTCCCGCGCCACGCCGGCGCCCAGCGAGCGCTTCCACGAACCCTGGCCGGGCCCCCGACCGCTGGTGTGGGCGCCCCGCGCCCACACGGTCGAGGTCGTCCTGACCGACGACGACGGCGCGACCGCACGGCACCCGATGCGTCTCGTCGGCGCGCACGAGCCCGGCTACTGGCGCGCCGACGCCCGGTTCCCCCACGGGACCGCGTACTCCTTCTCCGTCGACGGCGGCCCCGCGCTGACCGACCCGGCCGCCGCGTCGCTGCCCGCGGGCGTGCACGGCCCGGGGCGGATCCTCGACGAGAGCTTCGGCTGGCACGACGACCACTGGCCCGGCGCTGACCTCGCCCAGGGCGCCCTGCTGCACCTCGAGATCCCCTCCGTGACCGCCGAGGGAACCCTCGACGCGGCCGCCCGGCTGCTGCCCGCCGTCGCCGCGCTCGGCGTCGACGGCGTCGAGCTGTCCCCGGTGGCGGCCTTCGACCCGGCGACGGGGCCCCAGGCCGGGGTGCGCCTCTTCGCCGTCCACGAACCGTACGGCGGCTCCCGCGCGCTGCAGCGCTTCGTGGACACGGCCCACCGCGCCGGCCTCGCCGTCGTGCTCACGCTCCCCCACCGCTGGGCCGTGGCCGACCCGCTGCACCTGCACCACTTCGGCCCGTACTCCGCAGGGGCTCGCATCAGGGCGCGGCGCGTGGCCGACGGTGGCGCCGACGCCCCGCGCATCAACCTCGACGGCTCCGGCAGCCGCGGACCCCGCGACCTGTTCATCGCCGACGCCCGGCGCTGGCTGCGCGACTTCCACGTCGACGGGCTGCTGCTGGACGTCGAGGTGCTGGTGGACCGGTCCACCGTGCCGTTCCTCGGCGAGCTGGGCGAGGCGGTGCAGGACGTCGCCGTCCGGACCGGACGCCCGCGCACCCTGCTCACCGACGGCCCCGGGCTCAGCGACCGGCTCACCACCATCGTGCACCGGCTCCTGACCGACGGCGTCGACGGACCGGCCGGTGACCTGCAGCGCCTCGCCGAGGAGACCGGGACGCCCGCCCGGATCCCCGTCGGGCTGCGCCGGGCGCTGCGGGCCACGCAGCGCAGCGGCGGGTTCGTCGGCGACCTGACGCGCCTGCCCGCCGCGACCCGGGCGGTCCCCTGGTCGCGGGCCGACGGCGCACCGCAGAGCGCGTCCGCCGGGGACCACGCCGCGCTGCTCGCCTTCGTCCTCCTGGCCGGCAGCCCCGCGGTGCTGGACACCGAACGGGTCCCGGTCCACCGCGACACCCCCGACGCCCGGCGTCTGACCTCATGGACCCGTCGGCTGCTCGCGCTGCGCCCGTCCGCCCTGGCCGACATCGCCCGGCCCCTGGACGTCACCACCCACGACGGCGTGCTCACGGTGCGCCGCGGCGGCACCGCCGTCGTCCTGCTCGCCGACCCCGCCGTGCGGCACGTCGACCTGTCCGGCCGGCTGCTGCCCCCGATCGGCGACTGGCGCGTGGCGGCGGCCTGGGACGAGGATGACACCCACCTGGTGGCCGGCGCGCTGCGGGCGCCACGACGCTCCGTCGTCGTGCTCCGCGCCGACGCACGCCCGGTCGCCGCCGACCTGCGCACCCCGAGCACGGAGCCCGCATGA	MTAGDRLDAERSRATPAPSERFHEPWPGPRPLVWAPRAHTVEVVLTDDDGATARHPMRLVGAHEPGYWRADARFPHGTAYSFSVDGGPALTDPAAASLPAGVHGPGRILDESFGWHDDHWPGADLAQGALLHLEIPSVTAEGTLDAAARLLPAVAALGVDGVELSPVAAFDPATGPQAGVRLFAVHEPYGGSRALQRFVDTAHRAGLAVVLTLPHRWAVADPLHLHHFGPYSAGARIRARRVADGGADAPRINLDGSGSRGPRDLFIADARRWLRDFHVDGLLLDVEVLVDRSTVPFLGELGEAVQDVAVRTGRPRTLLTDGPGLSDRLTTIVHRLLTDGVDGPAGDLQRLAEETGTPARIPVGLRRALRATQRSGGFVGDLTRLPAATRAVPWSRADGAPQSASAGDHAALLAFVLLAGSPAVLDTERVPVHRDTPDARRLTSWTRRLLALRPSALADIARPLDVTTHDGVLTVRRGGTAVVLLADPAVRHVDLSGRLLPPIGDWRVAAAWDEDDTHLVAGALRAPRRSVVVLRADARPVAADLRTPSTEPA	PGPT0014130_1472	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_GLYCOSIDE_UTILIZATION	PLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0014130-treZ|glgZ-K01236	NA	NA
AK001_02860	852		COG2326	Polyphosphate:AMP/ADP phosphotransferase	ATGACGAAGAGCCCCTGGACCGAGCACCCGACCCGGACCCTGCGCTGGCGTCCCGGCGACCGCCTCGACGCGGTCGACCCGCGCGCCACGCCGGGTTACCACGGGGGCAAACGCGCCGGGAAGAGGCTGCTCGCCGAGCACGGCGCGGAGCTGTCCGACCTGCAGGAACGCCTCTTCGCCCACGGCCGGACCGGCGGCGTGCGCAACGTCCTGCTGGTCCTGCAGGGGATGGACACCTCCGGCAAGGGCGGGATCGTGCGTCACGTGGTCGGCATGGTCGACCCGCAGGGCGTGCGGTGCCGCGGGTTCGGACGCCCCACCCCCGAGGAGCAGGCCCGCGGGTACCTGTGGCGGATCCGCAACGCCCTGCCCGACGCCGGGCTGGTCGGGGTCTTCGACCGGTCGCACTACGAGCAGGTGCTGGTCGTGCGCGTCGACGAGCTCGAGCCGCCCGCCACCTGGCAGGCGCACTACGACGAGATCAACGACTTCGAGGCGGAGATCGCCGACGCCGGCACGGCGATCGTCAAGGTGGTCCTGGCCATCTCCCCCGAGGAACAGCTCGAGCGGCTGGTCTCCCGCCTCGACCGGCCGCACAAGCACTGGAAGTACGACCCGTCCGACCTGCGTGCCCGCGAGCAGTGGGACGAGTACCAGGCGGCCTACCAGGACATGCTGGACCGCACGAGCACCGACGTCGCCCCGTGGTACGTCGTGCCCGCGGACCGCAAGTGGTTCTCCCGCCTCGCGGTGGGCGAGCTGCTGCGGCACACGCTGCGCGGGCTCGACCTCGGCTGGCCGGCGGCCGACTTCGACGTCCAGCGCCAGCGACAGCTGCTCACCGGCCGCTGA	MTKSPWTEHPTRTLRWRPGDRLDAVDPRATPGYHGGKRAGKRLLAEHGAELSDLQERLFAHGRTGGVRNVLLVLQGMDTSGKGGIVRHVVGMVDPQGVRCRGFGRPTPEEQARGYLWRIRNALPDAGLVGVFDRSHYEQVLVVRVDELEPPATWQAHYDEINDFEAEIADAGTAIVKVVLAISPEEQLERLVSRLDRPHKHWKYDPSDLRAREQWDEYQAAYQDMLDRTSTDVAPWYVVPADRKWFSRLAVGELLRHTLRGLDLGWPAADFDVQRQRQLLTGR	PGPT0002695_541	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753	NA	NA
AK001_02861	1062	zapE	COG1485	Cell division protein ZapE	GTGACAGCCGTGCAGTCCTCGGACGCGACCACCACCGGATCTCTGGTGGCGGTGCGTCCTGCCTTCTCCGTCGACCGCCTGCTCGCCGACCTTGTCCCGCCGCGGCACTTCGCCGACGCGCGGTTCGCCACCTATCGCGCGAACCCCGACCACCCCAGCCAGGCCACCACGCTCGCGCGCCTGCAGGAGGTGGCCGAGGAGATCGCCCGCCCGGCCCCCGGCGGCCTGCGCGCCTGGTTCGGCCGGCGTCGTCCCGCACCCGCGGTCTACATGGACGGCGGGTTCGGCGTCGGCAAGACCCACCTGCTGACGTCGTTGGCCCACGCGGTGCGCGAGGAGCTCGGTGCGGACGCGGTCGCCTACGGCACGTTCGTGGAGTACACGAACCTGGTCGGCGCGCTCGGGTTCCTGCCGACGGTGGACGCCCTGTCGACCAAGAAGCTCGTCTGCATCGACGAGTTCGAGCTCGACGACCCCGGTGACACGGTGCTGATGTCGCGCCTGCTGCGCGAGCTCGCCGACCGCGGCGTCGCCCTGGCCGCCACGTCGAACACGCTGCCGGACGCGCTCGGCGAGGGGCGGTTCGCCGCGGAGGACTTCCTGCGCGAGATCCAGGCGCTGTCCGAGCGGTTCGAGGTGCTGCGGGTCGACGGCGAGGACTACCGGCACCGCACCGTGCTCACCGACGCCCCGCCCCTGGCGCGCCAGGCCGTCCGTACCGCGGCCACCGAGCGGCCCGGTGCCGTGCTCGACGACTTCGAGGACCTGCTGGCCCATCTGGCGACCGTGCACCCGAGCCGGTACGGCGCGCTGCTCGACGGCGTCGAGCTCGTCGGGCTCACCGGCGTGCGACCGGTGACCCGTCAGGAGGTCGCGCTGCGGCTGGTCGTGCTGGTCGACCGGCTCTACGACCGCGACGTGCCGGTCCTGCTCGCCGGCGCGGACCCGCGGGCGCTGTTCGGCGACGAGATGCTGCGCGGCGGCTACCGCAAGAAGTACTACCGGGCGTTGTCCCGGCTGGGCGCGCTGGCCGAGGACGGCCGGGCGCTCCTGGACGCCTGA	MTAVQSSDATTTGSLVAVRPAFSVDRLLADLVPPRHFADARFATYRANPDHPSQATTLARLQEVAEEIARPAPGGLRAWFGRRRPAPAVYMDGGFGVGKTHLLTSLAHAVREELGADAVAYGTFVEYTNLVGALGFLPTVDALSTKKLVCIDEFELDDPGDTVLMSRLLRELADRGVALAATSNTLPDALGEGRFAAEDFLREIQALSERFEVLRVDGEDYRHRTVLTDAPPLARQAVRTAATERPGAVLDDFEDLLAHLATVHPSRYGALLDGVELVGLTGVRPVTRQEVALRLVVLVDRLYDRDVPVLLAGADPRALFGDEMLRGGYRKKYYRALSRLGALAEDGRALLDA				NA	NA	NA	NA	NA
AK001_02862	759			hypothetical protein	GTGAGTTCCGACACGCCGACGCTCTCCCGGCTGCTCCCCCACGCCGACGAGATCCCCCCGGACCCCGCCGAGCGCACCCTCGCGGCGCTCTACGCCCTGCCGGAGCACCCGTGGGTCCGGGTGAACATGATCTCCACCGTCGACGGTGCGGCCTGGGGCCCCGACGGGCAGTCGGCCTCGATCAACGACGCCGCGGACTGGCGCGTCTTCCGCGTCCTGCGTGCGCTGGCCGACGTCGTCCTGGTGGGTGCCGGGACCGCGCGCCAGGAGGGCTACTCGCACCTCACGCGGCCGCACGGCCTGGAGCACCTGGCCGGGGCCCCGCTGGAGCTCGCGATTGTCACGCGGTCCGGCCGCGTGCCGTGGTCGACGCTCGACGGCCCCCACCCGCCCGTCGTCGTGACCGGGTCCGCGGGCGCGCTCGAGGCCGGTGCCGCCGTCGGCGACGACCGCGTGCTCGTCTGCCCGGACGGCACCTCCGACGGCGTCGACCTGCGCGCGGCCCGCGACACGCTCGCCGCCCGGGGCCTGGGCCGGGTGCTGTGCGAGGGCGGTCCGGGGCTGCTCGGCGACGTGCTCGCCGCGGGTCTGGTCGACGAGCTGTGCGTGACGACGTCGCCCCGGCTGGCCGGACCCGGGGCGGGCCGGATCGTCGCCGGCCCGGCCGGGAACGAGCCCGGGGGCGGGCACGACCTGCGCCTGGGCCACCTGCTCGTCGGCCCCGCGGGCACGCTGCTGGCCCGGTGGGAGCTGGTGTGA	MSSDTPTLSRLLPHADEIPPDPAERTLAALYALPEHPWVRVNMISTVDGAAWGPDGQSASINDAADWRVFRVLRALADVVLVGAGTARQEGYSHLTRPHGLEHLAGAPLELAIVTRSGRVPWSTLDGPHPPVVVTGSAGALEAGAAVGDDRVLVCPDGTSDGVDLRAARDTLAARGLGRVLCEGGPGLLGDVLAAGLVDELCVTTSPRLAGPGAGRIVAGPAGNEPGGGHDLRLGHLLVGPAGTLLARWELV				NA	NA	NA	NA	NA
AK001_02863	498			hypothetical protein	ATGTCTGCAGATGCCTGGACCGTCGTCGTCCTCACCGAGGACGCGCTGACCTCCGCCGACGTCGACCACATCACCGCCCTGCACACCGACCCGGACGTCGACGTCGCCTACCGGGTGCTGGTCCCCGCCGACACCGAGCACAAGGTGGTGTCCTCCGTCCTGGACCACCTCGGCATGCTCGAGCTGCGCGAGGCGTGGGACGACATCGTCGGCCGCGAGCCCACGCCCGAGCAGGCGACGGAGACCGCCGCCGAGCAGGTCACCGAGTCCGTCGAGCTGCTCCGCGACCGCGGGGTGACCGCCTCCGGCGAGGTGACCGAGGACGACCCGCTGCCCACGCTGCAGCACGCGGTGGCCGACGGCGGCAACGAGGTGGTCGTGGTGACCTACCCGCACGCCGTCGAGGACACGTTCCACACCGACTGGGCCTCGCGCGCCCGCGACGTGCTCCAGGTGCCGGTGCTGCACCTGTACGCCGGCACCAGCGAGCTCGGCTGA	MSADAWTVVVLTEDALTSADVDHITALHTDPDVDVAYRVLVPADTEHKVVSSVLDHLGMLELREAWDDIVGREPTPEQATETAAEQVTESVELLRDRGVTASGEVTEDDPLPTLQHAVADGGNEVVVVTYPHAVEDTFHTDWASRARDVLQVPVLHLYAGTSELG				NA	NA	NA	NA	NA
AK001_02864	738		COG1794	Aspartate racemase	GTGACGACGCCCGGACCGGACGCCGAGGGTCCGACGCCGCCGGTCGGAGTGATCGGCGGCGTCGGCCCCCTGGCCACGGCCTACTTCCTGCAGCGCGTCGTGCAGCTCACCCACGCCGAGCGGGACCAGGACCACGTCGACCTCGTCGTGCTCAACCACGCCACGATCCCCGACCGCACCGACTTCGTGCTCGGGCGCTCGACGGACGACCCCGGCCCGGTGCTCGCGCGCGACGCGCAGCGACTGGAGGCCTTCGGGGTGCGGTTCCTGGTCATGCCCTGCAACACGGCGCACTACTTCACCCAGCAGGTCCTCGACGTGGTGACGGTCCCGTTCGTCTCGATCGTGGACGTCACGGTGGCGGCCGCCCGCGACCGGGTGCCGGGTCTGACGCGGGTCGGGCTGCTGGCCACCGCCGGCACCGTGGCCTCGGGCGTGTACGACGACGCCTTCGCCGCCCACGGCATCGACGTCGTGGTCCCGGAGGCGGACGACCAGGACCGCGTCAACGCCGTGATCTACGACCAGGTCAAGGCGGGCCGGCCCGCCGATCCCGACGCGCTGCGCCAGGTCGCCGGCCGGCTCGTCGAGCGCGGCGCCGGCGTCGTCGTGCTCGGGTGCACCGAGCTGTCGGTGGCGGCCGTCGACCACGGCCTGCTCGACGAGCCGCCGTTCCTCGACTCGATGGACGAGCTGGTGCGCGCCACCATCACCCACGCCGGGCACCGGGTGCGCTGA	MTTPGPDAEGPTPPVGVIGGVGPLATAYFLQRVVQLTHAERDQDHVDLVVLNHATIPDRTDFVLGRSTDDPGPVLARDAQRLEAFGVRFLVMPCNTAHYFTQQVLDVVTVPFVSIVDVTVAAARDRVPGLTRVGLLATAGTVASGVYDDAFAAHGIDVVVPEADDQDRVNAVIYDQVKAGRPADPDALRQVAGRLVERGAGVVVLGCTELSVAAVDHGLLDEPPFLDSMDELVRATITHAGHRVR				NA	NA	NA	NA	NA
AK001_02865	1284			D-aspartate ligase	ATGAGCCGCCGGCTGCAGCCCGTCGTCCTCGGCGGCGACATCGGCGCCTACTCCCTTGCCCGGACGTTCCACGAGGCCTACGGCGTGCGGCCCGTGGTGGTCTCGGGGATGTCGACCGGTCTCGTGCGGCACTCGCGGATCCTGGAGCACGTCGTCGAGCCCGGCATCGACGACCCCGACGCGGTCGTGGCCCGGCTGCGGGCGATCGCCGACGAGCACGCCGACGCCGACCTCGTCGCGGTCGGGTCGGCCGACTGGCTGGTCCGGCTCCTCGTCGAGCAGCGGAGCCGGCTCGAGGACCGCTACGAGATCCCCTACGTCGACGAGAAGCTGCTGCACCGGCTCACCGACAAGGAAGGGTTCGGCGAGCTGTGCGCCGAGCTCGGGATCGCCCACCCGACCACGGTCGTGCACGACGTGGCTACCGGGGGAGAGCCGGACACCTCCGGGCTGACCTTCCCGGTCATCGCCAAGGCGGCCAGCACGGCCGCCTACCACGACGTCGAGTTCGCCGGGAAGAAGAAGGTCTTCCTCGTCGACACCCGGGACGAGCTGGTCGACCTGCTCGCGCGGGTCCGCGCCGCGGGCTACCAGGGCGCGTTCGTGATCCAGGACTACATCCCCGGCGACGACTCCGGCATGCGCATCCTCACGTGCTACTCCGACGCCTCGGGGAAGGTGCGCTTCTCCGCGTACGGCCACGTGCTGCTCGAGGAGCACACGCCGGGAGCCCTGGGGAACCCGGCCGGGATCATCACCCAGGTCAACCACGAGGTCGTCGAGCAGGCCACGCGGCTGCTCGAGCACGTCGGCTGGACCGGCTTCGCGAACTTCGACCTCAAGTACGACCCGCGGGACGGTCGGTACGTGTTCTTCGAGCTCAACCCCCGCCTGGGGCGCTCGAACTTCTACATCACGGCCGCCGGGGCGAACGCGGTCAAGTTCTACGTGCACGAGCACCTGGCCGGTCTCGACCCCGACCCCCGGGACGTCCTCGGCCCGGACGTGCCGCTGACCTCCTCCGGCGAGCTCGAGGCGGAGCACCTGTACACGGTGCTGCCCGGTCCGCTGCTGCGGCGGTACGTGCTGGACGACGACGTACGGGCGCAGGCACGCCGGCTCGCTCGTCGCGGCCGGTCCACCAACCCGCTGTGGTACCGCGCCGAGACGAACCCGCGGCGGCTGGCCTACCTCGCCGTCGCCCAGCTCAACCAGTGGCGCAAGTACGCGCGTCACTACCCGGTGGCCGAGGCGCGGCGCCTGGCCTGGCGGGGGACGGCGTGA	MSRRLQPVVLGGDIGAYSLARTFHEAYGVRPVVVSGMSTGLVRHSRILEHVVEPGIDDPDAVVARLRAIADEHADADLVAVGSADWLVRLLVEQRSRLEDRYEIPYVDEKLLHRLTDKEGFGELCAELGIAHPTTVVHDVATGGEPDTSGLTFPVIAKAASTAAYHDVEFAGKKKVFLVDTRDELVDLLARVRAAGYQGAFVIQDYIPGDDSGMRILTCYSDASGKVRFSAYGHVLLEEHTPGALGNPAGIITQVNHEVVEQATRLLEHVGWTGFANFDLKYDPRDGRYVFFELNPRLGRSNFYITAAGANAVKFYVHEHLAGLDPDPRDVLGPDVPLTSSGELEAEHLYTVLPGPLLRRYVLDDDVRAQARRLARRGRSTNPLWYRAETNPRRLAYLAVAQLNQWRKYARHYPVAEARRLAWRGTA				NA	NA	NA	NA	NA
AK001_02866	1344			D-aspartate ligase	GTGACCACCCCCCAGTCGGGTCCCGGGGCCGCCACGAGCGGCCCCGGGTTCCACCCCGTGATCGTCGGTTCCGACATCGGCGTCTACGCGCTGACGCGGTCCTTCCACGAGGCCTACGGGCTCCGCACCACGGTGGTCGCCTTCGCCGAGCCGGGGCCCATCGCGCACTCGCAGCTCATCGACACGGTGCTGTCCGGCACGGGCGCCGAGGAGATCGTCGCCACCCTGGAGCAGGTGGCCCGTGACCGCCGGGCCGCCGGGCACCGCGAGCCGCTGCTGCTGCAGTCGAACATGGACTGGGTGGTGCGCATCCTCGCGCGGCACCGGTCGGTGCTGCAGACGGCCGGGTACGTGCTGCCGTACGCCGACGAGGCGCTGATCGACCGCATCTGCGACAAGGCGGAGTTCTCCGCGGTCTGCGCCGAGCTGGGCATCCCTACGCCGGCCACGGTGATCCAGGACTTCGCCGGTGCGGACGCGCCCGGGTGGAAGCCGGAGCCGGTCGGCTTCGACTACCCCGTGATCGCCAAGCCGGCCTCCAGCGCCGACTACCACGACGTGCACTTCGCCGGGAAGAAGAAGATCTACGAGATCGCCTCCCGCGCCGAGCTGGACAGCCTGTGGGGGAGCCTGCGGCGCGCCGGGTTCCGCGGACGGTTCCTCGTCCAGGAGATGATCCCGGGCGACGACACCCAGATGCGGTCGGTGACGACCTACTCCGACACCGCGGGACGGGTGACGCTGCGCTGCTCGGCCCGGGTGCTCCTCGAGGAGCGCACGCCCGCGGCCCGGGGCAACCCGTCGGCGATGATCGTCGAGCCGATCGAGGAGATCCTCGACGCGGCCCAGCGGCTGTGCGAGCACGTCGGCTGGCGGGGCTTCGCGAACTTCGACGTCAAGCTCGACCCGCGCGACGGCGTCTACAAGTTCTTCGAGCAGAACCCCCGCATCGGGCGGAACAACTACTACCTGACCGCCGGCGGCCAGAACCCGACCGAGGTGCTCGTCGACGACGTCGTCCACGGCGAGAGCCGCGAACCGGTGACGGCTCGGCGCGAGGTGCTCTACTGCGTCGTGCCGCACCGTCTGCTGCGCCGCTACGTGCTCGACGACGGGCTGCGCGCCCGCGTCGTGGGCCTGATGCGCACCGGCCGCACGGTGCACCCGCTGCGGTACTCCGCCGACGCCTCGCCGCGTCGTCGGCTGTACGTGCTCACCGCCCTGGTCAACCACGTGCGCAAGTATCGCCGCTTCTACCCGGCCAGCGCGCTGCGGGCCAACTTCGAGGCCGCCCGGGCGGCCTCCGCCACGCGGCGCACCGCCGCAGGACAGGAGACCCGATGA	MTTPQSGPGAATSGPGFHPVIVGSDIGVYALTRSFHEAYGLRTTVVAFAEPGPIAHSQLIDTVLSGTGAEEIVATLEQVARDRRAAGHREPLLLQSNMDWVVRILARHRSVLQTAGYVLPYADEALIDRICDKAEFSAVCAELGIPTPATVIQDFAGADAPGWKPEPVGFDYPVIAKPASSADYHDVHFAGKKKIYEIASRAELDSLWGSLRRAGFRGRFLVQEMIPGDDTQMRSVTTYSDTAGRVTLRCSARVLLEERTPAARGNPSAMIVEPIEEILDAAQRLCEHVGWRGFANFDVKLDPRDGVYKFFEQNPRIGRNNYYLTAGGQNPTEVLVDDVVHGESREPVTARREVLYCVVPHRLLRRYVLDDGLRARVVGLMRTGRTVHPLRYSADASPRRRLYVLTALVNHVRKYRRFYPASALRANFEAARAASATRRTAAGQETR				NA	NA	NA	NA	NA
AK001_02867	1437	gndA	COG0362	6-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylating	ATGACAGCACGTGCTCAGATCGGCGTCACCGGACTCGCGGTGATGGGCCGGAACCTGGCGCGGAACTTCGCGCGCCACGGATACACGGTGGCGGTGCACAACCGCAGCTACGGCAAGACCCAGTCGCTCATGGACGAGTCCGGCGACGAGGGCGACTTCGTCCCGTCGGAGTCCATGGCCGACTTCGTCGCCTCCCTCGAGCGCCCCCGCAAGGTCGTCATCATGGTCAAGGCCGGTGCCGCCACCGACGCCGTGATCGACGAGCTGCTGCCGCTGCTGGAGGAGGGCGACATCGTCGTCGACGCCGGCAACGCGCACTTCCCCGACACGATGCGTCGCGAGGAGGCCCTGCGGGCCCGCGGTCTGCACTTCGTCGGCACCGGCGTCTCCGGGGGCGAGGAGGGCGCGCTGCTCGGCCCGTCGATCATGCCCGGCGGGACGCGCGAGTCCTACGAGTCGCTCGGCCCGATCCTGGAGGCCATCTCGGCCAAGGTCGACGGCACGCCGTGCTGCACCTACGTGGGCCCGGGCGGCGCCGGTCACTTCGTCAAGATGGTGCACAACGGCATCGAGTACGCCGACATGCAGCTCATCGCCGAGGCCTACGACCTCCTCCGGTCCGGGCTCGGGGCGTCCGCCGCCGAGATCGGCGAGATCTTCGCGGCGTGGAACGAGGGCGACCTCGAGTCGTTCCTCATCGAGATCACCGCGGACGTGCTCGGTCACGTCGACGCCGAGACCGGCCAGGCGTTCGTGGACATCGTCCTGGACCAGGCCGAGCAGAAGGGCACCGGCCGCTGGACCGTGCAGAACGGTCTCGACCTGGGCGTGCCGATCACGGGCATCGCCGAGGCCACCTTCGCGCGGGCCCTGTCCGGCGGCGTGCCGCAGCGCGAGGCCGGTCGCCGCGCCCTGCCGGCCCACGCCGAGACGCTGCAGGTCGCCGACCGGGACGCCTTCATCGAGGACGTCCGCCAGGCCCTGTACGCCTCCAAGGTCGTCGCCTACTCCCAGGGCTTCGACCAGATCGCGGCGGCCTCGGCCGAGAACGGCTGGGACATCGACCGCGGTGCCATGGCGCGCATCTGGCGCGGTGGCTGCATCATCCGCGCGCGGTTCCTCAACCGCATCACCGAGGCCTACGAGCGCGACCCGCAGCTCCCGCTGCTGCTGTCGGACGAGTACTTCACCGACGCCGTCGGCAACGGTCTGGCCGCGTGGCGCCGGGTCGTGGCGCAGGCCGCGTCCGCCGGCATCCCGGCCCCGGCATTCTCCTCGTCGCTGGCCTACTACGACGGCGTGCGCGCCGAGCGGCTGCCCGCCGCGCTCATCCAGGCGCAGCGTGACTTCTTCGGTGCGCACACCTATCGTCGCACCGACCGCGAGGGCTCGTTCCACACCCTCTGGTCCGGTGACCGCAGCGAGCAGGAGGCCTGA	MTARAQIGVTGLAVMGRNLARNFARHGYTVAVHNRSYGKTQSLMDESGDEGDFVPSESMADFVASLERPRKVVIMVKAGAATDAVIDELLPLLEEGDIVVDAGNAHFPDTMRREEALRARGLHFVGTGVSGGEEGALLGPSIMPGGTRESYESLGPILEAISAKVDGTPCCTYVGPGGAGHFVKMVHNGIEYADMQLIAEAYDLLRSGLGASAAEIGEIFAAWNEGDLESFLIEITADVLGHVDAETGQAFVDIVLDQAEQKGTGRWTVQNGLDLGVPITGIAEATFARALSGGVPQREAGRRALPAHAETLQVADRDAFIEDVRQALYASKVVAYSQGFDQIAAASAENGWDIDRGAMARIWRGGCIIRARFLNRITEAYERDPQLPLLLSDEYFTDAVGNGLAAWRRVVAQAASAGIPAPAFSSSLAYYDGVRAERLPAALIQAQRDFFGAHTYRRTDREGSFHTLWSGDRSEQEA	PGPT0017385_1887	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033	NA	NA
AK001_02868	582			hypothetical protein	GTGACTGCTTCCCCGCCCGACGTGCCGGAGCGGTTCGCCGCCGCGCTGGCGTCGCTGCGCGGCCGTCGCACCCGGCCGGAGGTCCGCCTGTCCGAGATCCCGGGTCCGCGACGGGTCGCGCCCTTCAGCCTGGCGCTCGAGGGCGAGGTCATCAGCGAGGGTGTCGAGATCGCCACGGGGCGGTTCGTCGTCCTGCACGACCCGGCGGGCCAGGAGCAGTGGCACGGCGACTTCCGTGTCGTGACCCTGGTGCGCGCCGAGCTCGAGGCCGAGCTGGCCGCCGACGAGATGCTGGGCGACGTCGCGTGGACGTGGGTGACCGAGAACCTCGAGTCGGCCCAGGTGGGGGCGATCGCGACCGGCGGCACGGTGACGCGGGTGCTGTCGCAGAGCTACGGGGCCCTGGCCTCCACCCCGGACGCGGTGGACCTGGAGATCCGGGCCTCCTGGACGCCGACGGACACCGACCTGGGCGCGCACCTGGAGGTGTGGGCGGACCTGATGTCGACGGCGGGTGGCCTGCCCCCGCTGCCCGACGGCGTGACGGCCCTGGACGTGCGACGCCGTACCGTGGAGCCATGA	MTASPPDVPERFAAALASLRGRRTRPEVRLSEIPGPRRVAPFSLALEGEVISEGVEIATGRFVVLHDPAGQEQWHGDFRVVTLVRAELEAELAADEMLGDVAWTWVTENLESAQVGAIATGGTVTRVLSQSYGALASTPDAVDLEIRASWTPTDTDLGAHLEVWADLMSTAGGLPPLPDGVTALDVRRRTVEP				NA	NA	NA	NA	NA
AK001_02869	1227	rnd	COG0349	Ribonuclease D	ATGAGCTCCGGCGTGACCCAGGTCGACCCCGACGTCGTCCCCCTGACCGAACCCGCCGACGGTGTCGGTGACGTCGTCTCCACCCCGCAGGCGTTCGCCCGTGTCGTCGACGCGTTCGGCGCCGGGTCGGGCCCGGTGGCGGCCGACGCCGAACGGGCCTCCGGGTACCGCTACGGGCAGTCCACCTACCTGGTCCAGCTCCGGCGCGCCGGGGCCGGGACGGCGCTGCTGGACCCCGTGGGGCTGCCGGACATGTCGCGGCTCGCCGACGCGGTGGGCCCCGCGGAGTGGGTCCTGCACGCCGCCTCGCAGGACCTGCCGGGCCTGGCCGAGCACGGCCTGCTCCCGCCGCGCGTCTTCGACACCGAGCTGGCGGCCCGACTGCTGAACCTGCCCCGCGTCGGCCTGGCGGCCGTGGTCGCCGAGACGCTGGGCCTGGGCCTGGCCAAGGAGCACTCGGCCGTCGACTGGTCCACCCGTCCGCTGCCGACGGACTGGCTGCGGTACGCCGCGCTGGACGTCGAGGTGCTCGTCGAGGTGCGCGACGTGCTGGCCGCGCGGCTCGAGGAGGCGGGCAAGACCGAGTGGGCCGCCCAGGAGTTCGAGCACGTGCGCACCCTGCCGCCGCCGGCCCCGCGGCCGGACCCGTGGCGCCGGACGTCGGGCACGCACACGGTGAAGAACCGTCGCGGCCTGGCGGTCGTGCGCTCGCTCTGGGAGGCGCGCGAGCACAACGCCCGCGAGCGCGACGTCTCGCCGGGCCGGGTGCTGCCGGACCGCGCGATCGTGGCGGCCGCCAAGGCCCTGCCGCGCACCGCCGGCCAGCTCGCGGCCGTGCCGGAGTTCGCGACCAAGGGTGCCCGACGACGGATCACGGCCTGGCAGCGCGCGATCGACGCCGCGCTCGCCCTGCCCGAGGCCGAGCTGCCCCCGGTCCGCGGCCCGCGGACCGACGGCCCGCCGCAGCCGCGCACCTGGGGCGACCGAGACCCGGTCGCAGCGCGTCGCCTGCAGGCGGCCCGCGAGATCATCGCCGAGCTGTCCGAGACCCACGCCGTGCCCGCGGAGAACCTGCTGCAGCCCGACGCGATGCGTCGGCTGTGCTGGTCGCCGCCGGAGCCCGCCGGACCGGAGGACATCGCCGACTTCCTGCGCGGACGTCGCGCCCGGGAGTGGCAGATCGGCCTCGTGGCGGACCGGTTCGCCCGCGCCTTCGCCGACGCCTGA	MSSGVTQVDPDVVPLTEPADGVGDVVSTPQAFARVVDAFGAGSGPVAADAERASGYRYGQSTYLVQLRRAGAGTALLDPVGLPDMSRLADAVGPAEWVLHAASQDLPGLAEHGLLPPRVFDTELAARLLNLPRVGLAAVVAETLGLGLAKEHSAVDWSTRPLPTDWLRYAALDVEVLVEVRDVLAARLEEAGKTEWAAQEFEHVRTLPPPAPRPDPWRRTSGTHTVKNRRGLAVVRSLWEAREHNARERDVSPGRVLPDRAIVAAAKALPRTAGQLAAVPEFATKGARRRITAWQRAIDAALALPEAELPPVRGPRTDGPPQPRTWGDRDPVAARRLQAAREIIAELSETHAVPAENLLQPDAMRRLCWSPPEPAGPEDIADFLRGRRAREWQIGLVADRFARAFADA				NA	NA	NA	NA	NA
AK001_02870	1272	fadA_2	COG0183	3-ketoacyl-CoA thiolase FadA	ATGACCGTGGCCCCTCAGGCCCCCGGCACCACCCGAGACCCGGCCCGGCGCGCGCTGCGCGACGTCGTCTTCGTCGAGGGCGTGCGCACCCCCTTCGGCAAGGCGAAGGCCGACGGCCTCCTCGCCGAGACCCGCGCCGACGACCTCGTGGTCAAGGCGCTGCGCGAGCTGCTGCGCCGCCACCCCGAGCTGCCGCTCGACCGCATCGACGAGGTCGCCGTCGCCGCGACGACGCAGCAGGGCGACCAGGGGCTGACGCTCGGGCGCACCGCCGCACTCCTGGCCGGCCTGCCGACGTCGGTCCCGGGCTACGCGATCGACCGCATGTGCGCCGGCGCCATGACCGCCGTGACGACCACCGCCTCGAGCATCGCCGTGGGCGCCTCGGACGTCGTGGTCGCCGGCGGCGTGGAGCACATGGGCCGCCACCCCATGGGCCTGGACGCCGACCCCAACCCGCGGTTCCTCGCCGAGAAGCTCGTGGACCCCGAGGCGCTCAACATGGGGGTCACCGCCGAGAACCTGCACGACAAGTTCCCCCACCTGACCAAGGAGCGGGCGGACGCCTACGCCGTCAACACCCAGGCCAAGTACGCCAAGGCCCTGGCCAACGGCGACATCGGCCCCGAGATCGTGCCCGTCGCCGTCCGGTCGGCCGAGAAGGGCTGGGGGCTGGCCACCGCCGACGAGCTCCCCCGCCCCGGCACCACGGTCGAGGGCATCGCCGACCTCAAGACGCCGTTCCGCCCGGGCGGCCGCGTCACCGCCGGCAACGCCTCGCCGCTGACCGACGGCGCCACCGTCTCGCTGCTCGCCGCCGGCGACACGGCCGACGAGCTCGGCCTGCCCGCCGCGATGCGCCTGGTCTCCTACGCCTTCGCCGGCGTCCCGGCCGAGATCATGGGCTACGGCCCGGTCCCGGCCACCGACAAGGCGCTCGCCAAGACGGGGCTGACCATCGACGACATCGGCCTGTTCGAGATCAACGAGGCCTTCGCCGTCCAGGTGCTCAGTTTCCTGGACCACTACGGCATCGCCGACGACGACGAGCGCGTCAACGCCTACGGCGGCGCCATCGCCGTCGGCCACCCGCTGGCCGGCTCGGGCGTGCGACTGATGACCCAGCTCGCGCGCCAGTTCGCCCAGCACCCCGAGGTCCGCTACGGCATGACGACCATGTGCGTCGGCCTGGGCCAGGGCGGCACCGTCATCTGGGAGAACCCCCACCACGCCGACTACTCCGGCCACGTCCCGTCGACCACGGAGGGCTGA	MTVAPQAPGTTRDPARRALRDVVFVEGVRTPFGKAKADGLLAETRADDLVVKALRELLRRHPELPLDRIDEVAVAATTQQGDQGLTLGRTAALLAGLPTSVPGYAIDRMCAGAMTAVTTTASSIAVGASDVVVAGGVEHMGRHPMGLDADPNPRFLAEKLVDPEALNMGVTAENLHDKFPHLTKERADAYAVNTQAKYAKALANGDIGPEIVPVAVRSAEKGWGLATADELPRPGTTVEGIADLKTPFRPGGRVTAGNASPLTDGATVSLLAAGDTADELGLPAAMRLVSYAFAGVPAEIMGYGPVPATDKALAKTGLTIDDIGLFEINEAFAVQVLSFLDHYGIADDDERVNAYGGAIAVGHPLAGSGVRLMTQLARQFAQHPEVRYGMTTMCVGLGQGGTVIWENPHHADYSGHVPSTTEG	PGPT0001565_590	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632	NA	NA
AK001_02871	2148	fadJ_2	COG1024	Fatty acid oxidation complex subunit alpha	ATGAGCCAGAGCACGACCACCGAACCTCGCGCCGAGCGCGTCACCCACTCCCTCGTCCGGGACGTCGAGCTCCCCGGCGGCCAGGGCACCCTGGCGCTCGTCACGCTCGACAACGGCCTGGACCACACCAAGCCCAGCACCCTCGGCCCCGAGGGGCTGGCCGAGCTGACCGCCGCCCTGCGTGCGCAGCAGCGGCGCGCGGCCGACGGCGAGATCGTCGCCGTGGCCGTCACCGGCAAGCCGTACTTCCTGGCCGCCGGCGCCGACCTGCTCGGCGTGAGCACCGTGACCTCCCACGAGCAGGCCCTCGAGCTCGGTCGCGCCGGGCACGCGGCCTACGAGCTGCTGCACACCATGGGCGTACCGACCTTCGCCTTCGTCAACGGCCTCGCCCTCGGCGGCGGCCTCGAGGTGGCCCTGAACTGCGACTACCGCACCGTCGCCTCCGACGCCGCGGCGCTGGGCCTGCCGGAGACCGGCCTCGGCCTGGTGCCGGGCTGGGGCGGCGCGTACCTCGTGCCCCGCCTGGTCGGGATCGAGAAGGCCGTGGACGTCGTCCTCACCCGGCCGGCGGCGAACAAGCCCTTCAAGCCCGCCGAGGCCCACGAGATCGGCCTGGTCGACGAGGTCTTCGAGGCGGCCGACTTCCTCGAGCGGTCGATCTACTGGGCCACCGAGGTGCTGCGGGGCGACGTCGTCCCCGCGCGACGCGAGCTCGATCCGCAGCCCGTGTGGGACGCCGCCGTGCAGGCGACCCGCGAGCGCCTCGACGCCACGATCCACGGGTCGCGACCCGCGCCGTACCGGGCGCTGGACCTGCTGGCCGGGGCGCGGACCGCCTCGCGCGAGGAGGCCTTCGCCGCCGAGGACCAGGCGCTGGCCGACCTCATCATGACCGACGAGATGCGCTCGAGCGTGTACGCGTTCCAGCTCACCTCCTCGGGCAAGAAGCCGAAGGGCGCGCCCGACAGGTCCCTCGCGAAGCCGGTCACCCGTGTCGGCATCGTCGGTGCCGGTCTCATGGCCGCCCAGATCGCCCTGCTCGTCTCGCAGCGCCTGGGCGTGCCGGTCGTCATGCGCGACCTGGACACCGAGCGCGTCGAGAAGGGCCTCGGCTACGTGCGCTCCACCGTCGAGAAGCTCGTCGGCCGCGGTCGCATGAAGCCGGAGGTCGGCGACCGTGTCGTCGCCAGCATCACCGGTACCACCGAGATCGACGAGTTCGCCTCGTGCGACGTCGTCGTGGAGGCCGTCACCGAGGTGATGGGCCTGAAGAAGAAGGTGTTCGCCGAGCTCGAGGAGATCGTGAGCGAGGACACCGTCCTCGCCACGAACACCTCGGCGCTGTCGATCACCGAGATGGCCTCCGACCTGCGCCACCCCGAGCGCGTGGTCGGCATCCACTTCTTCAACCCGGTGGCCCAGATGCCGCTGGTCGAGGTCGTCAACGCCGAGCACACCTCCGACGAGGCGCTGGCCACGGCGTTCGCCATCACGAAGAAGCTGCGCAAGACGGCCGTGCTCGTCGCCGACCGTCCGGGCTTCGTGGTCAACCGGCTCCTCGTGCTGGTCATGGGCAAGGTCGTCGAGGCCGTGGAGAACGGCACCTCGGTCGAGGTCGCCGACACCGCCCTGTCGCCGCTCGGGTTCCCGATGCCCACGTTCGAGCTGTTCGACCTGGTCGGCCCCGCCGTCGGGCTGCACGTGCTCACCTCGCTGCGCGAGGACCTGGGCGAGCGGTTCCCTCGCTCCCCCGGCCTGGAGAAGCTCGTCGCCGACGGCACCCGCGTGGTGCTCGACGCGCCGGGCCGCGGGCTGCCCAAGCCCGTCGACCCGGCGATCCAGGGCGTCTTCGGCGAGGCACTGCCCGCCGGCACCGAGGGACGCGCCGGCACGCCGGTGCTCGACGCCGACGGCGTGCTGGACTCGGTGCTCACGGCCCTGACCGTGGAGATCGGGCACATGCTGGAGGAGAACGTGGTGGCCGACCCGTCGCAGATCGACCTGTGCATGATCCTGGGCGCCGGGTGGGGCTTCCACACCGGCGGCATCACGCCGTACCTGGACCGGACCGGCTACAGCGAGAAGGTGCTGGGCCGGCGTCTGCTGCCGGACGGCGTCGCGAACGTCCCCGGGGGCTCCGCCTGA	MSQSTTTEPRAERVTHSLVRDVELPGGQGTLALVTLDNGLDHTKPSTLGPEGLAELTAALRAQQRRAADGEIVAVAVTGKPYFLAAGADLLGVSTVTSHEQALELGRAGHAAYELLHTMGVPTFAFVNGLALGGGLEVALNCDYRTVASDAAALGLPETGLGLVPGWGGAYLVPRLVGIEKAVDVVLTRPAANKPFKPAEAHEIGLVDEVFEAADFLERSIYWATEVLRGDVVPARRELDPQPVWDAAVQATRERLDATIHGSRPAPYRALDLLAGARTASREEAFAAEDQALADLIMTDEMRSSVYAFQLTSSGKKPKGAPDRSLAKPVTRVGIVGAGLMAAQIALLVSQRLGVPVVMRDLDTERVEKGLGYVRSTVEKLVGRGRMKPEVGDRVVASITGTTEIDEFASCDVVVEAVTEVMGLKKKVFAELEEIVSEDTVLATNTSALSITEMASDLRHPERVVGIHFFNPVAQMPLVEVVNAEHTSDEALATAFAITKKLRKTAVLVADRPGFVVNRLLVLVMGKVVEAVENGTSVEVADTALSPLGFPMPTFELFDLVGPAVGLHVLTSLREDLGERFPRSPGLEKLVADGTRVVLDAPGRGLPKPVDPAIQGVFGEALPAGTEGRAGTPVLDADGVLDSVLTALTVEIGHMLEENVVADPSQIDLCMILGAGWGFHTGGITPYLDRTGYSEKVLGRRLLPDGVANVPGGSA				NA	NA	NA	NA	NA
AK001_02872	669	gph_6		Phosphoglycolate phosphatase	ATGATCTGGCTCCTGGACCTGGACAACACGCTCGTCTCCCGCGACGCCGCGTTCGCCTCCTGGGCGGACTCGGCGGTGGCGGCCGACGGCGGCACGGCGGCGGACCTGGCGGCGATCGTGGCGGCGGACGACGGCGGGTTCTCGCCCAAGGCCGACGTCGCCCGCGAGCTCATCGCGCGGCTGGGCTGGGTCGACGACGTCCCCGCGGCGATCGACCGGTTCCGGGCCGGCATCCGCGAGCACGTGCGGGCCTACGACGGCGTGCTGGCCGACCTCGACGCGCTGCGGGCCGCCGGGGACCGGGTGGCCGTGGTGACCAACGGCGTCTCCCACCAGCAGCGCGGCAAGATCGCGGCCTGCGGCGTCGAGGCGTCCGTCGACGCGGTCGTCGTCTCCGGCGAGGAGGGCGTGGAGAAGCCGGACCCGGCCATCGTCGAGATCGCGCTCGAGCGGCTCGGGGCGGCGGGCGTCGACCGCGACCAGGTCTGGATGGTCGGCGACGCCGGGCACGCCGACGTCGCCGTGGGCCGGGCCGCCGGGGTGCGCACCGGGTGGGTGTCGCACGGTCGCGCCTGGGACGACGTCCACGGTGCGGCGCCCGACGTCGTGGGCGCGACCACGCGGGACGTGCTGGCGCTCGTGACGGCCGGCGAGCGCGCCGCGTCCTGA	MIWLLDLDNTLVSRDAAFASWADSAVAADGGTAADLAAIVAADDGGFSPKADVARELIARLGWVDDVPAAIDRFRAGIREHVRAYDGVLADLDALRAAGDRVAVVTNGVSHQQRGKIAACGVEASVDAVVVSGEEGVEKPDPAIVEIALERLGAAGVDRDQVWMVGDAGHADVAVGRAAGVRTGWVSHGRAWDDVHGAAPDVVGATTRDVLALVTAGERAAS	PGPT0013410_454	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013410-yjjG-K08723	NA	NA
AK001_02873	861		COG2755	GDSL-like esterase	ATGGGTCGCACACGCACCACGGTCTCCGCGCTCGCGGTCTCCCTGCTCGCCTCGGTGACGGCCGCGGTCACCGTCCAGATGCTGCGCCGGCAGGCCGCGATCGCCCGCCGGCGGATCGGCAAGGCGCTCGGCGAGTCGGCTCCGGACGCCGACCGCGTCTGGCGCGGCACGTACGGCGGCGAACCCCTGGACCTGCTCGTGCTCGGCGACTCCATCGCGGCCGGCCTCGGTGCGGACCGGCGCAAGGACACCCTCGGGGCCCGCATCGCCCGCGGGGTCGGCAAGACGCTGCAGCGCCCCGTGCGCCTGCGCTGCGCCGCCGTCGTCGGCTCCGAGTCCTCCGCGCTGGCCGCGCAGCTCGACGGGCTGGACGACGACTACCGACCCGACGTGACCGTCGTCGTGGTCGGCGGCAACGACGTGACCCACCGGGTACCGGTGGCGGTCTCCGTGCGCTACCTCGTCGAGACGATCGAGCGGCTGCAGGAGCGCGGGAGCGCCGTCGTGGTCGGCACCTGTCCCGACCTCGGGGCGCTGCGGCCGGTCCCGCAGCCGCTGCGCACCCTGGGGTCGCGGGCCTCGCGCCAGCTCGCCGCCGCGCAGTCGGTGGCCGCCCGGCGCGCCGGGGCGCACGCCGTGTCCCTGGCGGTCGTCGTCGGGCCGTTCTTCATCTCCTCTCCGGACGAGGCGTTCAGCCTCGACCGGTTCCACCCCAGCGCCGTCGGCTACCGCCGCACCGCCAAGGAGCTGGTGCCGTCGGTGCTGGTCGCGCTGGGGGAGCGGGACGACCTGCCGCCCGGGCACCGGCCGCCCGATCCGCTGGCCGGGACGCGGCGGCTGCCGTGGCGCCGGTCCGCGTAG	MGRTRTTVSALAVSLLASVTAAVTVQMLRRQAAIARRRIGKALGESAPDADRVWRGTYGGEPLDLLVLGDSIAAGLGADRRKDTLGARIARGVGKTLQRPVRLRCAAVVGSESSALAAQLDGLDDDYRPDVTVVVVGGNDVTHRVPVAVSVRYLVETIERLQERGSAVVVGTCPDLGALRPVPQPLRTLGSRASRQLAAAQSVAARRAGAHAVSLAVVVGPFFISSPDEAFSLDRFHPSAVGYRRTAKELVPSVLVALGERDDLPPGHRPPDPLAGTRRLPWRRSA				NA	NA	NA	NA	NA
AK001_02874	1086	ybdK	COG2170	Putative glutamate--cysteine ligase 2	ATGGGTGTCGAGGAGGAGTTCCTGCTCGTCGGGCCCGACGGCTCGCCGGTGGCCAAGGCCGCCGAGGCGCTGGAGGCCTCGGGGCACTCGACCAAGGGCGGCGGCACCGGCGCGCTGGAGCCGGAGTTCATGGAGGAGCAGCTGGAGACGGCGACGCACCCGCGTTCCGCGCTGGAGGACCTGGCCGCCGAGATCCGCGCGGGCCGCGCTCGGGCGCAGGACGCCGCCGACCGGGTCGACGCCCGCGCGGTCGCCCTGGCCACCTGCCCCGTGCGGTTCACCGGGACCACGATGCCCGGGGTGCGGTACCAGGAGGCGCGGCGGGTCTTCGGCCTGACGGCGCGCGAACAGCTCACCAGCGGCTGCCACGTCCACGTCGCGGTCGCCGACGAGGCCGAGGGCGTCGACGTCCTGGACCGGATCGGCCCCTGGCTGCCCACCTTGCTCGCCCTGAGCACCAACTCGCCGTACTGGCAGGGCGAGGACACCGACTACGCGAGCTTCCGCTCCCAGGTGTGGGCACGGTGGCCGACGGCGGGACCGACCCGACGGTTCGGCACCCCCGAGGCGTACCACGCGGCCGTGGACGCCATCGTGGCCACCGACACCGTGCTGGACCGCGGCATGGTGCACTTCGACGCCCGCCTGTCGCCGAAGTACCCGACCGTGGAGATCCGGGTCGCCGACGTCTGCCTGCACCCGGACACCGCCACACTGCAGGCCGCCCTGAGCAGGGGGCTCGTGGAGACCGCGGCGCGGGAGGCCCGCGAGGGAGCGGAGATGACCCGGACGTATCCCGAGCTGCTGCGGACGGCCGCGTGGCGGGCCGGACGGTCCGGCCTGTCCGGCGACCTCGTCTCGCCGCTGACGTGGCGTCCGGCGGCGGCGCACGACGTCGTCGGCCAGCTCGTGTCGCACGTGCGCGAGGCGCTGATCGACGCGGGCGACCTGGAGGCCGTCACCGAGTTGCTGGGTCGGCTGTGGTCCACGGGCGGCGGTGCGGCGCTGCAGCGCGCCTGGTTCGTCGAGTCCGGAGGGGACCTGCACCACGTCGCCGAGCGGGCCGTCGAGGTGACCCACTCCTGA	MGVEEEFLLVGPDGSPVAKAAEALEASGHSTKGGGTGALEPEFMEEQLETATHPRSALEDLAAEIRAGRARAQDAADRVDARAVALATCPVRFTGTTMPGVRYQEARRVFGLTAREQLTSGCHVHVAVADEAEGVDVLDRIGPWLPTLLALSTNSPYWQGEDTDYASFRSQVWARWPTAGPTRRFGTPEAYHAAVDAIVATDTVLDRGMVHFDARLSPKYPTVEIRVADVCLHPDTATLQAALSRGLVETAAREAREGAEMTRTYPELLRTAAWRAGRSGLSGDLVSPLTWRPAAAHDVVGQLVSHVREALIDAGDLEAVTELLGRLWSTGGGAALQRAWFVESGGDLHHVAERAVEVTHS	PGPT0026300_1857	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048	NA	NA
AK001_02875	726	mca_1		Mycothiol S-conjugate amidase	ATGGATGCTGAGCTCGCACCGCTGGCCGAGGACTGGGACACCGCGCTGGTCGTGGTCGCCCACCCCGACGACATGGAGTTCGGGGGAGCGGCGGCGATCGCCCGCTGGACCGCCCAGGGCAAGCGGATCGGCTACGTCATGGTCACCAGCGGCGAGGCCGGCATCGACGGCATGCACCCCGACGAGTCGCGCCGGGTCCGCGAGGCCGAGCAGGTGGAATCCGCGCGCCTCGTCGGCGTGGACGACGTCGAGTTCCTCGGCTTCCCCGACGGCGTGATCGAGTACGGCCTGCCGCTGCGGGCGGCGATCGCCCACGCCATCCGGCGGCACCGCCCCGAGATCGTCATCACCCTGAACTTCCGCGAGGAGTTCCCCGGCGGCGTCCTCAACCAGGCCGACCACGTCGCCGTCGGACGGGCTGTCGTCGACGCCGTGCGCGACGCCGGCAACCGCTGGGTGTTCACCGACCAGCTCACCGACGGGCTCGAGCGGTGGGACGGGGTCCGCGAGGTCTGGGTCGCGGCCTCGCCGCGGGCCGAGCACGCCGCCGACGTCACCGACACCTTCGACGACGGCGTCGCCTCGCTGCGCGCGCACGCCGCCTACATCGACGGCCTCGGCTGGGAGGACTTCGACCCGGCCGAGTTCCTCGGCCGCATCACGCGCGGCAACGGCGAGGCGTTCGGCACCGAGCACGCCACCGCCTTCGAGGTGCTGAGCATGTGA	MDAELAPLAEDWDTALVVVAHPDDMEFGGAAAIARWTAQGKRIGYVMVTSGEAGIDGMHPDESRRVREAEQVESARLVGVDDVEFLGFPDGVIEYGLPLRAAIAHAIRRHRPEIVITLNFREEFPGGVLNQADHVAVGRAVVDAVRDAGNRWVFTDQLTDGLERWDGVREVWVAASPRAEHAADVTDTFDDGVASLRAHAAYIDGLGWEDFDPAEFLGRITRGNGEAFGTEHATAFEVLSM				NA	NA	NA	NA	NA
AK001_02876	861	pflA	COG1180	Pyruvate formate-lyase 1-activating enzyme	ATGACGACCTGCCCGGTGCCCCTGGACGCCCCCACCGTGCGCCGGGCAGGTGCCGGCCTGCGAGGGCTGGCGACCACCGACGTCGAGCGGTCCGAGCGCCTGGACCTCATGCGCTCGGGCGCGCTCGGCTCGGTGCACTCGTGGGAGCTGGTCACCGCGGTGGACGGCCCGGGGACCCGCATGACGGTGTTCCTGTCGGGCTGCCCGCTGCGGTGCGTGTACTGCCACAACCCCGACACGCTGGCCATGAAGGACGGCGGCCCGGTGCTGGCCGACGACCTGCTGGCCCGCATCGAGCGGTACCGCGGCATCTTCGGCGCCACCGGGGGCGGGATCACGCTCTCGGGCGGCGAGGTGCTCATGCAGCCGGCGTTCGCGGCACGGATCCTGCGCGGGGCCAAGGAGCGCGGCGTGCACACCTGCCTGGACACCTCCGGGTTCCTCGGGGCCAACGCCACCGACGAGATGCTCGACGACACCGACCTCGTGCTGCTGGACATCAAGTCCGGAGACGAGGAGACCTACCAGCACGTGACCGGTCGGCCGCTGGCCCCCACCCTGGCCTTCGGCCGGCGGCTCGCCGAGCGCGGCGTGCCGGTCTGGATCCGGTTCGTGCTGGTGCCGGGCCTGACCGACGACCCGCGCAACGTCGAGCTGGTGGCCGAGCACGCCGCCGCGATCGAGGCCGTCCGGCCCGGCACGGTGCAGCGCGTCGAGGTGCTCCCGTTCCACCAGATGGCCCGTGACAAGTGGGCCGAGCTCGGGCGGACCTACGAGCTGGCGGGCACCGAGCCGCCGACGGCGGAGGACACCGAGGCGGTGCGCGAGGTCTTCCGCGCCCACGGCCTGACGACCTACTGA	MTTCPVPLDAPTVRRAGAGLRGLATTDVERSERLDLMRSGALGSVHSWELVTAVDGPGTRMTVFLSGCPLRCVYCHNPDTLAMKDGGPVLADDLLARIERYRGIFGATGGGITLSGGEVLMQPAFAARILRGAKERGVHTCLDTSGFLGANATDEMLDDTDLVLLDIKSGDEETYQHVTGRPLAPTLAFGRRLAERGVPVWIRFVLVPGLTDDPRNVELVAEHAAAIEAVRPGTVQRVEVLPFHQMARDKWAELGRTYELAGTEPPTAEDTEAVREVFRAHGLTTY				NA	NA	NA	NA	NA
AK001_02877	2262	pflB		Formate acetyltransferase	ATGACCGTCCAGGAAGAACGTACGACCGCCACGAGTGCCGCATGGGAAGGCTTCGTCCCCGGACCGTGGTGCGACACCGTCGACGTCCGAGACTTCATCCAGCGCAACTACACCCCCTACACCGGGGACGGGACGTTCCTCGCCGGCCCGACCGAGCGCACCACCGCGCTGTGGGCACGGCTGAGCGCGATGTTCCCCGCCGAGCGCGAGAAGGGCGTCTACGACGTCTCCTACGACGTACCGGCCGGCATCACCGCCCACGAGCCCGGCTACATCGACTCCGCGAGCGAGATCATCGTCGGCCTGCAGACGGACGCGCCGCTCAAGCGCGCGATCATGCCGAACGGCGGCTGGCGGATGGTCGAGGGGGCGCTGGACACCTACGGCTACCCGGTCGACCAGGACCTGAAGAAGGTCTTCACCGAGTACCGCAAGACCCACAACCAGGGCGTGTTCGACGTCTACCCGCCGAACGTCCGGGCCGCGCGCAGCTCGCACGTCGTGACCGGCCTGCCGGACGCCTATGGCCGCGGCCGCATCATCGGCGACTACCGCCGCGTGGCGCTGTACGGCGTCGACGAGCTGATCGCCGCCAAGAAGCTCGACAAGCTCACCCTCGACGTCGAGCCCTTCAGCGAGTCCGTGGTCCGGGCCCGCGAGGAGCACGCCGAGCAGATCCGCGCCCTGGGCGAGCTCAAGGAGATGGCCGCCTCCTACGGCGTGGACATCTCCGGCCCGGCGCGCACCGCCACCGAGGCCGTGCAGTGGCTGTACTTCGGCTTCCTGGGCGCGGTCAAGGAGCAGAACGGCGCCGCGATGTCGCTCGGGCGCACCTCGACCTTCCTCGACGTGTACCTCGAGCGCGACCTCGCCGCCGGCCGTCTCACCGAGGCCCAGGCCCAGGAGGTCATGGACGACTTCGTCATCAAGCTGCGGATCGTCCGGTTCCTGCGCACCCCCGAGTACGACGCCCTGTTCTCCGGCGACCCCACGTGGGTCACCGAGACCATCGGCGGCATGGGCACCGACGGCCGCACCCTGGTCACGAAGAACTCGTTCCGGATGCTGCAGACCCTGTACAACCTGGGCCCGGCGCCCGAGCCGAACATGACCGTGTTCTGGACGGCCGACCTGCCCCAGGGCTTCAAGGACTTCTGCTCGCAGGTCTCGATCGACACCTCCGCCGTGCAGTACGAGTCGGACGACGAGATCCGCGCCGCCTGGGGCGACGACGCCGGCATCGCTTGCTGCGTCTCGCCCATGGCGATCGGCAAGCAGATGCAGTTCTTCGGCGCCCGCGTCAACCTCGCCAAGACGCTGCTCTACGCGATCAACGGCGGACGCGACGAGGTCAGCGGCAAGCAGGTCTCACCGGCCGTGGCCCCGGTGCCCGAGGGGCAGCCGCTGGACTACGACGACGTGCGGGCCCGGTTCGACAAGACGATGGACTGGCTGGCCGCGACCTACGTCGAGGCGCTGAACTGCATCCACTGGTCGCACGACAAGTACGCCTACGAGCGGCTCGAGATGGCGCTGCACGACAAGGAGGTGCTGCGGACCATGGCCTGCGGCATCGCCGGCCTGTCCGTGGCCACCGACTCGCTGTCGGCCATCCGCTACGCGACCGTCATGCCGGTCTTCGACGACCGTGGCGTCGTCGTCGACTACGTCACCGAGGGCGACTACCCGGCCTACGGCAACGACGACGACCGTGCCGACGAGATCGCCGTGGAGCTGGTCGAGTCGTTCATGGCCAAGGTGCGCACCCACAAGATGTACCGGGACGCGCTGCCCACCCAGTCGGTGCTGACGATCACCTCGAACGTCGTGTACGGCAAGGCCACGGGCAACACGCCCGACGGGCGCCGCGCCGGCGAGCCGTTCTCCCCGGGCGCGAACCCGATGAACGGCCGCGACACGCACGGCATGCTGGCCTCGGCCCTGTCGGTGGCCAAGCTGCCGTACGCCGACGCCCAGGACGGGATCTCCCTGACGAACACCATCGTGCCCTCCGGGCTCGGGCGGACGCGCCAGGAGCAGATCACCAACCTCTCCGGCCTGCTCGATGCCTCCTTCGGCTCCGGCGGCTACCACATGAACGTCAACGTGCTGGTGCGCGAGACGCTCGAGGACGCCATGGAGCACCCGGAGAACTACCCGCAGCTGACCATCCGGGTCTCGGGGTACGCCGTGAACTTCGTGCGGCTGACCCGCGAGCAGCAGCTCGACGTGCTGGCCCGGACCTTCCACGGAGCGATCTGA	MTVQEERTTATSAAWEGFVPGPWCDTVDVRDFIQRNYTPYTGDGTFLAGPTERTTALWARLSAMFPAEREKGVYDVSYDVPAGITAHEPGYIDSASEIIVGLQTDAPLKRAIMPNGGWRMVEGALDTYGYPVDQDLKKVFTEYRKTHNQGVFDVYPPNVRAARSSHVVTGLPDAYGRGRIIGDYRRVALYGVDELIAAKKLDKLTLDVEPFSESVVRAREEHAEQIRALGELKEMAASYGVDISGPARTATEAVQWLYFGFLGAVKEQNGAAMSLGRTSTFLDVYLERDLAAGRLTEAQAQEVMDDFVIKLRIVRFLRTPEYDALFSGDPTWVTETIGGMGTDGRTLVTKNSFRMLQTLYNLGPAPEPNMTVFWTADLPQGFKDFCSQVSIDTSAVQYESDDEIRAAWGDDAGIACCVSPMAIGKQMQFFGARVNLAKTLLYAINGGRDEVSGKQVSPAVAPVPEGQPLDYDDVRARFDKTMDWLAATYVEALNCIHWSHDKYAYERLEMALHDKEVLRTMACGIAGLSVATDSLSAIRYATVMPVFDDRGVVVDYVTEGDYPAYGNDDDRADEIAVELVESFMAKVRTHKMYRDALPTQSVLTITSNVVYGKATGNTPDGRRAGEPFSPGANPMNGRDTHGMLASALSVAKLPYADAQDGISLTNTIVPSGLGRTRQEQITNLSGLLDASFGSGGYHMNVNVLVRETLEDAMEHPENYPQLTIRVSGYAVNFVRLTREQQLDVLARTFHGAI	PGPT0001950_560	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-FORMIC_ACID_BIOSYNTHESIS,PGPT0001950-pflD|ybiW|tdcE-K00656	NA	NA
AK001_02878	1890	dxs		1-deoxy-D-xylulose-5-phosphate synthase	ATGGGGCTGTTGAGCACGATCACCGCGCCCGAGGACGTGCGCAGGCTCGGACCGGCCCAGACGCGCCGGCTGGCCGCCGAGATCCGCGACTTCCTCGTGCACAACGTGTCGCGCACCGGCGGGCACCTGGGGCCGAATCTGGGTGTCGTGGAGCTGACGATCGCGCTGCACCGCGTCTACGACTCGCCGCGGGACTCCATGGTCTTCGACACGGGCCACCAGTCCTACGTGCACAAGCTGCTCACGGGTCGTCAGGACTTCTCCGACCTGCGCAAGCGCGGCGGGCTGTCCGGGTACCCCAGCCGGGCCGAGTCCGAGCACGACGTCGTGGAGAACTCCCACGCCTCGACGGCGCTGTCCTGGGCGGACGGCATCGCCAAGGCGAACACGGTGGGCCGCCACGACGACCGTCACGTCGTGGCCGTCATCGGCGACGGCGCGATGACCGGCGGCATGGCCTGGGAGGCGATCAACAACATCGCCGCCGGCCCGGACCGGCGGCTGGTCATCGTCGTCAACGACAACGGCCGCTCGTACTCGCCGACCATCGGCGGGCTGGCCAACCACCTGGACACGCTGCGCACCACCCGCGGGTACGAGGCGTTCCTGCAGTGGGGCAAGCGCACGCTGCACCGCACCGGCCCGCCCGGACGGTTCGCCTACGACTGGCTGCACGGGCTCAAGAAGGGCCTCAAGGACGTCGTCGCCCCGCAGGGCATGTTCGAGGACCTCGGGCTGAAGTACATCGGTCCGGTCGACGGCCACGACGTGTCCGCGATGGAGCACGCCCTGCGCCGCGCCAAGACGTTCGGCGGGCCGGTCATCGTGCACGCCATCACCGAGAAGGGCCGCGGCTACATCCCCGCCGAGGAGGACGTCGCCGACCGGTTCCACGCGGTGGGCACCATCCATCCCGAGACCGGGCTGCCGGTGGCGCCCTCGCGGTTCGGCTGGACCCAGGTCTTCGCCGAGGAGATCGTCGAGATCGGCCGCCGCCGGCCCGACGTCGTCGCGATCACCGCGGCGATGCTGCACCCGGTGGGGCTGGCCCCGTTCGCCGAGGAGTTCCCCGAGCGCACCTTCGATGTCGGGATCGCCGAGCAGCACGCCGCGACGTCGGCGGCCGGCATGGCGTTCGCCGGGCTGCACCCCGTGGTCGCCGTGTACGCGACCTTCCTCAACCGCGCCTTCGACCAGCTGCTCATGGACGTCGCCCTGCACAAGGCCGGGGTGACGTTCGTGCTGGACCGGGCCGGCATCACCGGCGCCGACGGCGCGAGCCACAACGGCATGTGGGACATGGCGATGCTGCGCATCGTGCCGGGGCTGCGGCTGGCCGCCCCGCGCGACGAGGCGACGCTGCGCGACGCCCTGCGCGCCGCCGTCGACGTCGACGACGCACCCACCGTCGTGCGCTACCCCAAGGGCGCGCTCGACGAGCCGATCGAGGCGCTCGAGACGCTCGAGGGCGTCGACGTCGTGGCCCGGCGCGCGCCGGAGCCGGAGGCCGCCACCGGGGCGAGCGTGCTCGTCGTGGGCGTGGGGGCGATGGCCGCCACGGCGATCGCGGCCGGGGAGTCGCTCGCCGCGCACGGCCTGGCCGTCGAGGTCGTGGCGCCCACGTGGGTGCTGCCGGTGCCCGAGAACCTGGTGAAGATGACCGGGGACCACGACCTCGTGGTGACGCTGGAGGACGGCGTCGTCGACGGCGGCGTGGGGGCGATGCTCGCCCAGCGCGCGGCCGAGCGCGGCGTGCGCACCCCGTTCGTGCACACCGGTCTGCCGGTGGAGTTCCTCGACCACGCCAGCCGCGAGCAGATCATGACGGCGCAGCGGATGCAGGCCGAGGACGCGGTGCGCGACGCGCTCGCCGAGCTCGCCCAGGACTGA	MGLLSTITAPEDVRRLGPAQTRRLAAEIRDFLVHNVSRTGGHLGPNLGVVELTIALHRVYDSPRDSMVFDTGHQSYVHKLLTGRQDFSDLRKRGGLSGYPSRAESEHDVVENSHASTALSWADGIAKANTVGRHDDRHVVAVIGDGAMTGGMAWEAINNIAAGPDRRLVIVVNDNGRSYSPTIGGLANHLDTLRTTRGYEAFLQWGKRTLHRTGPPGRFAYDWLHGLKKGLKDVVAPQGMFEDLGLKYIGPVDGHDVSAMEHALRRAKTFGGPVIVHAITEKGRGYIPAEEDVADRFHAVGTIHPETGLPVAPSRFGWTQVFAEEIVEIGRRRPDVVAITAAMLHPVGLAPFAEEFPERTFDVGIAEQHAATSAAGMAFAGLHPVVAVYATFLNRAFDQLLMDVALHKAGVTFVLDRAGITGADGASHNGMWDMAMLRIVPGLRLAAPRDEATLRDALRAAVDVDDAPTVVRYPKGALDEPIEALETLEGVDVVARRAPEPEAATGASVLVVGVGAMAATAIAAGESLAAHGLAVEVVAPTWVLPVPENLVKMTGDHDLVVTLEDGVVDGGVGAMLAQRAAERGVRTPFVHTGLPVEFLDHASREQIMTAQRMQAEDAVRDALAELAQD	PGPT0008960_2581	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008960-dxs-K01662	NA	NA
AK001_02879	1446	guaB1	COG0516	putative oxidoreductase	GTGCGTTTCCTGCCGGGCCAGCAGCCCACCACCGACCTGACCTACGGCGACGTCTTCATGGTGCCGTCCCGCTCGGACGTCACCAGCCGCTTCGACGTCGACCTCTCCAGCGACGACGGCACGGGCACCACGACGCCGATCGTGGTCGCCAACATGACGGCCGTCGCGGGCCGCCGCATGTCCGAGACCGTGGCCCGCCGCGGCGGGATCGCGATCCTGCCGCAGGACATCCCCGTCGACGTCGTGGCCGACGTCGTGGCGGACGTGAAGTCCAAGGACCCCGTCGTCGAGACGCCCGTCGTGGTGACCCCCGCGGACACCGTCGCCGACGTGCTGTCCCTGCTGGGCAAGCGGTCCCACGGCGCGGCCGTCGTGGTCGACTCCGGCCGCCCCGTGGGCGTGGTCACCGAGGCCGACTGCACCGCCGTGGACCGGTTCGCCCGCGTCGAGGCCGTCATGTCCACCGACCTGGTGACCCTGGACGCCCAGCGGATCGAGGACGACGGCCTGGCGGCCACCTTCGAGCAGCTGCACGCCGCCAAGGTCCAGCTCGCCCCCGTGGTGCGCGACGGCGTCCTGGCCGGGGTGCTGACCCGCAAGGGTGCCGTGCGGTCGACCGTCTACTCCCCCGCGCTCGACGCCCAGGGCCGGCTGCGCGTGGGCGCGGCGGTCGGGATCAACGGCGACGTCGCCGCCAAGACCCGCGACCTGCTCGACGCCGGGATCGACGTGCTCGTCGTCGACACCGCGCACGGGCACCAGGACAAGATGATCGCCGCCCTGGAGGCCGTGCGGTCCGTCGACCCGCAGGTCCCGGTCGTGGCCGGCAACGTGGTCACCGCCCAGGGGGTGCGCGACCTCGCCGCGGCCGGCGCCGACATCCTCAAGGTGGGCGTCGGCCCGGGCGCCATGTGCACCACCCGCATGCAGACCGCCGTCGGACGCCCGCAGTTCTCGGCCGTGCTGGAGTGCGCCGCCGCGGCCCGCGAGCTCGGCAAGCACGTCTGGGCCGACGGCGGCGTGCGCCACCCGCGCGACGTCGCTCTCGCGCTGGCGGCCGGCGCCTCGCAGGTGATGGTCGGCTCCTGGTTCGCCGGGACGTACGAGTCGCCCGGCGACCTGCACGAGGACGGGTCCGGACGCCTCTACAAGGACTCGTTCGGCATGGCCTCGGCCCGCGCCGTGGCCGCCCGCACCGCGGGTGGGTCGGCGTTCGACCGCGCACGCAAGGCGCTGTACGAGGAGGGCATCTCGACGGGCAAGATGTACCTGGACCCGCGCCGCCCGGGCGTGGAGGACCTGCTCGACGAGATCACCTCGGGCCTGCGCTCGAGCTGCACGTACGCCGGGGCGCGGACCCTGGCCGAGTTCGCCGAGCGCGCCACCGTGGGGATCCAGTCGGCCGCCGGGTTCGCCGAGGGCATGCCGGTGGCCACCTCCTGGTGA	MRFLPGQQPTTDLTYGDVFMVPSRSDVTSRFDVDLSSDDGTGTTTPIVVANMTAVAGRRMSETVARRGGIAILPQDIPVDVVADVVADVKSKDPVVETPVVVTPADTVADVLSLLGKRSHGAAVVVDSGRPVGVVTEADCTAVDRFARVEAVMSTDLVTLDAQRIEDDGLAATFEQLHAAKVQLAPVVRDGVLAGVLTRKGAVRSTVYSPALDAQGRLRVGAAVGINGDVAAKTRDLLDAGIDVLVVDTAHGHQDKMIAALEAVRSVDPQVPVVAGNVVTAQGVRDLAAAGADILKVGVGPGAMCTTRMQTAVGRPQFSAVLECAAAARELGKHVWADGGVRHPRDVALALAAGASQVMVGSWFAGTYESPGDLHEDGSGRLYKDSFGMASARAVAARTAGGSAFDRARKALYEEGISTGKMYLDPRRPGVEDLLDEITSGLRSSCTYAGARTLAEFAERATVGIQSAAGFAEGMPVATSW	PGPT0021445_4619	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088	NA	NA
AK001_02880	708	nudL		putative Nudix hydrolase NudL	GTGACGGGCGTGCCCGGCTCCCCCGCCTCGGCGCGCGACCAGCTCGCGGCGCTGGTGCGCGACGACGCCTTCACCGGTCCGTGGCCGCACGCCCGGGGCGACCTCGACCCGCAGGTCGCCCGGCCGGCGTCGGTGCTGGTGCTGTTCGGCGTGCTGGACGGCCTGCCGGCGGACCACCACGCCCAGGCGCAGACCGTCTCGCACGACCTCGACGTGCTGCTGCTCGCCCGGGCGGCGACCCTGAGCTCGCACGCGGGCCAGGTCGCCTTCCCGGGCGGTCGCGCGGACGCGGACGAGGACGCCGTCTCGGCGGCCCTGCGCGAGGCCCGCGAGGAGACCGGCGTCGACCCCGACGGCGTCGACGTGCTCGGCACGCTGGCGGCGCTGCCGATGCCGGTGAGCAACCACGTCGTCACGCCGGTCCTGGCCTGGTGGACCCGCCAGTCCCCCGTCGGCGTGGTCGACCCGGCCGAGTCCGCGCACGTGTTCCGCGCGCCGGTGGCCGACCTGCTCGACCCCGAGCGCCGCGTCACCACCGTGCTGCGCCGCGGCGGCCAGGTCTGGCGCGGTCCGGCGTTCCAGGTGCACGACGGCGGCACGCAGCACCTCGTGTGGGGGTTCACCGCGGGCGTCCTGGACGCGCTCTTCGACCACCTGGGCTGGACCGAGCCCTGGGACCGCGGGCGCGAGCTGGAGATCGACCCCTGA	MTGVPGSPASARDQLAALVRDDAFTGPWPHARGDLDPQVARPASVLVLFGVLDGLPADHHAQAQTVSHDLDVLLLARAATLSSHAGQVAFPGGRADADEDAVSAALREAREETGVDPDGVDVLGTLAALPMPVSNHVVTPVLAWWTRQSPVGVVDPAESAHVFRAPVADLLDPERRVTTVLRRGGQVWRGPAFQVHDGGTQHLVWGFTAGVLDALFDHLGWTEPWDRGRELEIDP				NA	NA	NA	NA	NA
AK001_02881	888			hypothetical protein	ATGGTCGCCGCCGAGGTCGAGATCGACGTCGCGCTGGTGCGGGCGCTGCTCGCCGCCCAGCACCGGGACCTGGCCGACCGCCCGCTGCGCGTCGCCGCCGAGGGCTGGGACAACGTCCTGGTGCTCCTCGGCGACGACCTCGCTGTGCGGCTGCCACGCCGGGAGGCCGCGGCCCCGCTGATCGAGCACGAGCAGCAGGTGCTGCCCCGGCTGGTCGAGCGGCTGCCGGTCCCCGTCCCCGCCCCGGTGCGCCGCGGGAGCCCGAGCACCGACCCGCCCTACCCCTGGTCGTGGTCCGTGGTGCCCTGGTTCGCCGGCCACCGCGCGGCCGCCGTCCCGCGGTGGCGGCGCCGTCGGCTCGCCGGACCGCTGGCGGCGTTCCTCGAGGCCCTGCACCGCCCGGCCGAGGACGCCCCCGTCAACCCGGTCCGGGGCGTGCCGCTGACCACCCGCGACGAGGCCGTCCGACGCCGGCTCGCCGACCCGCGGGTCCGGCAGGCCGACCGGCTCGAGCGCGTGTGGCAGGCCGCCCTGGCCGCCCCCGTCCACGACGGGCACGCGCTCTGGCTGCACGGCGACCCGCACCCCGGCAACCTCGTCGTCGACGACGATGCCGGGCTGGCCGCCGTCGTCGACTTCGGGGACGTCACGGCCGGGGACCCGGCCACGGACCTGGCCACGGCCTGGCTGACCTTCGACACCGCCGGCCGGGAGGCGTTCCGGGCCGGCCTCGCGCACCGCTACCCCGCCGGCGACCCGGTGTGGGTCCGGGCTCGCGGCTGGGCGGTGGCGATGGCGACCGCGATGGTCGTCGACTCCTCGGCCGAGCACGACTGGCTGCCGCCGCTCGGCGCCGCGGCGCTGACCCAGGTGCTCGCCGACTCCTGA	MVAAEVEIDVALVRALLAAQHRDLADRPLRVAAEGWDNVLVLLGDDLAVRLPRREAAAPLIEHEQQVLPRLVERLPVPVPAPVRRGSPSTDPPYPWSWSVVPWFAGHRAAAVPRWRRRRLAGPLAAFLEALHRPAEDAPVNPVRGVPLTTRDEAVRRRLADPRVRQADRLERVWQAALAAPVHDGHALWLHGDPHPGNLVVDDDAGLAAVVDFGDVTAGDPATDLATAWLTFDTAGREAFRAGLAHRYPAGDPVWVRARGWAVAMATAMVVDSSAEHDWLPPLGAAALTQVLADS				NA	NA	NA	NA	NA
AK001_02882	462			hypothetical protein	GTGAGCGCACCAGAACCCCCTGCCGACGTCCCCGCCGACCTCCCCGCCGACGTGGCGGCGTTCGTCGAGGCCGTCGCCCGCCCGGCCCGACGTCGGGACGCCCGGACCCTGCTGGAGCTGATGGCCCGGGTCACCGGCGAGCCCCCGGTGCTGCACGGCACGATCGTCGGGTTCGGGCGCTACCGCTACGAGTACGCCTCGGGACGGTCCGGCGACGCCCCCGCCGCGGCGTTCGCACCGCGCGCGGCGCACAGCGTCGTCTACCTCATGGACGGTGTCGACGCCCATGCCGAGGACCTCGCTCGGCTGGGCCCGCACCGGACCGGCGTCGGCTGCCTGTACCTGACGAACCTGGAGAAGGTCGACCTCGCGGTGCTCGGGAAGATCGTCGCCGACGCCTACGCCAGGCTGACGTCCGGCACCTACGGGCTCCGCGCCCGTGACGGTTCCCCTGACCGGTAG	MSAPEPPADVPADLPADVAAFVEAVARPARRRDARTLLELMARVTGEPPVLHGTIVGFGRYRYEYASGRSGDAPAAAFAPRAAHSVVYLMDGVDAHAEDLARLGPHRTGVGCLYLTNLEKVDLAVLGKIVADAYARLTSGTYGLRARDGSPDR				NA	NA	NA	NA	NA
AK001_02883	1371			hypothetical protein	ATGAGCAGCGACCGGGATCGCGGGACGACGCGGCCGGCGGGTTCCGAGCAGTCGGCGGAGGCCCGTCTCGAGAGCTGGCGGGAGGCGCTGCGGCGGCACGAGGCCGACGACGTCGAGGGACGCACCGAGCGCCTCCGGGCCGGGATGGCCACGCTGCAGGAGGCGGGCCTCGACACCGACGAGGCGTTCCTCGTCGCGATGATGCGCCAGGACCGGGACGACCCGGTCGCGCGCGACGTCGCCCGCGAGCAGGCGGCGGTGTTCTGGCGGCGGTTCGACCGGGCACCCGCCCCCGAGGGCGACACCGCGGTCGACTGGCGGGAGGTCGGTGTCGTGGCGCTGCTGGCCCTCGGTGCCGGCGTCAGCGTCAAGCTGGGGGTCGCCGAGCTCGACAGCACGGCGTTCGGGCACAACGTCGCCCTGCTCGTGGCGCCGTTCCTCGGCGCCTACTTCGCCTGGAAGCGACGGGTGTCGTGGCGCACCGCGGCCGTGCTCCTGCTCGCCACGGCCGTCCTGGCCGTCGCGATCAACGTCTACCCGTTCGACGTCGGCGGGGCGACGGGCTTCCTCGCCGCGCTGCACGCGCCCGTCGTCCTCTGGGGGCTGATCGGCGTCGCCTACGCCGCCGGGCGGTGGCGCTCGACGGCGGGCCGGCTGCGCTACCTGCGGTTCACCGGCGAGCTGGTGGTCTACTACGCCCTCATCGCCCTGGGCGGCAGCCTGCTCGTCGGGCTCACGATCGGCCTCCTGACCCTGGCCGGCGTGGAGTTCCGGAGCGTGATCGAGGACTGGGTGGTGCCGATGGGCGTGCCCGCCGCGCTGCTGGTCGCCGCCTGGCTCGTGGAGGCCAAGCAGGAGGTCGTGGAGAACATCGCCCCGGTGCTGGCGAAGATCTTCGTCCCGCTGACCACCGTCACGCTGCTCGTCAGCGTCGCGGTGCTGGGGGCGGTGGGCAGCCTGACGACCGTCGACCGCGAGTTCCTCATCACCCTGGTCTCGGTCCTCGTCGTCGCGCTGGCGCTGCTGCTGTACGCGGTGGCGGCCCGCCCGGCCGGTCAGCGGCCCGGGTTCTTCGACGGCGTGCTGCTGGCGATGGTGCTGGCCGCCGTGGCCGTCGACGGTGTCGTCGTGACGGCGATGGCGGCCCGGACGGCCGAGTTCGGCTGGAGCCCCGCCAAGACCGCCGCCCTGGGTCTCGGGGTGCTGCTGGCCGTGCACCTGGTGTGGTCGGCGTGGCGGCTCGTCGCGATGCTGCGTCGGCGTGACGGGGTCGCCGCGCTGGACCGGTCGCAGGCGGCGGTGCTGCCGTTCTACGTCGGCTGGGCCTTCGTCGTGGTGGTCGCCGTCGGGCCGGTCTTCGGCTTCGTCTGA	MSSDRDRGTTRPAGSEQSAEARLESWREALRRHEADDVEGRTERLRAGMATLQEAGLDTDEAFLVAMMRQDRDDPVARDVAREQAAVFWRRFDRAPAPEGDTAVDWREVGVVALLALGAGVSVKLGVAELDSTAFGHNVALLVAPFLGAYFAWKRRVSWRTAAVLLLATAVLAVAINVYPFDVGGATGFLAALHAPVVLWGLIGVAYAAGRWRSTAGRLRYLRFTGELVVYYALIALGGSLLVGLTIGLLTLAGVEFRSVIEDWVVPMGVPAALLVAAWLVEAKQEVVENIAPVLAKIFVPLTTVTLLVSVAVLGAVGSLTTVDREFLITLVSVLVVALALLLYAVAARPAGQRPGFFDGVLLAMVLAAVAVDGVVVTAMAARTAEFGWSPAKTAALGLGVLLAVHLVWSAWRLVAMLRRRDGVAALDRSQAAVLPFYVGWAFVVVVAVGPVFGFV				NA	NA	NA	NA	NA
AK001_02884	408			hypothetical protein	ATGCACATCGACAAGGACCTCGTCGCGGCCTCCGCGACACCGCTCGTGCTCGGCATCCTCGCCGAGGGCCAGTCGTACGGGTACGCCATCGCCAAGCGGGTGGCCGATCTGTCCGGCGGCCGGATGAGCTGGACGGACGGCATGCTCTACCCCCTGCTGCACCGCCTGGAGCGCCACGGCCTGGTCGAGGCGTCCTGGGGCCGGTCCGGGTCCGGACGTCGCCGCAAGCACTACGCCCTCACCCCGGCCGGGCACGAGGCCCTGGCCGAACGGCGCCGGCAGTGGGACGTCGTCGCCGAGACCCTGGGCGAGGTCTGGCGCACGCTGTCCGACGGCGCCGCGGACGCCGCCGGCGCGGCGGCCCCGCGGCCGGCTGCGGGCCCGGCGACGGCCGAGGGCACGGCATGA	MHIDKDLVAASATPLVLGILAEGQSYGYAIAKRVADLSGGRMSWTDGMLYPLLHRLERHGLVEASWGRSGSGRRRKHYALTPAGHEALAERRRQWDVVAETLGEVWRTLSDGAADAAGAAAPRPAAGPATAEGTA				NA	NA	NA	NA	NA
AK001_02885	1347			hypothetical protein	ATGAGCGGCACCGACGCCCTCGAGGTGCAGGTCGACCGGTGGCGCGACTACGTGCGCCGCCATCGCGCCGTGGCGCCGGACGACGTCGACGAGATGACCGACCACCTGCGCGAGCGCATCGACGACCTGCGGGCCGCCGGGCTCGACGACGACGAGGCCTTCCTCGTCGCGGTCAAGCGCATGGGACGGCTGGACGCCGTCTCGGCCGAGTTCGCCCGCGCCCACTCCGAACGTCTCTGGAAGCAGCTCGTGCTCCTGCCCGACTCCCCCGCGCCGGACGCCGACCCGGCGCGCCGCGAGCTCGCCGTCGTCGTCGGCTGCGCCGTCGGGGCGGGGCTGGCCGTCAAGGCCGGCACGACGTTCCTCGACGAGACGGCGCTGCTGCTGAACCTCGGCCTGCTCGTCGCCCCGTTCGTGGCCGCCTACCTCGGCTGGAAGCGTCGGCTGGCCGGGCGCACGGTGGCGGCGCTGCTGGCCGGCGCCGTCGTCCTCGGCGTCGTGCTCAACACCTACCCGTTCGACCCGGCCGGGTCGACCCTGCTGCTGGCCGCGCTGCACGCCCCGGTGGTGCTGTGGGCGCTCGTCGGCGTCGCCTACACCGGCGGCCGGTGGCGCTCGCCCGACCGCCGGATGGACTTCGTGCGGTTCACCGGCGAGCTGGCCGTCTACTACGTGCTGCTCGCCCTCGGCGGCGGCGTGCTGGTGGGCCTGACCGCCGGGCTCTTCAGCCTGACCGGCCTGGACCTGGAACCCGCGATGGAGCAGTGGATCCTGCCGCTGTGCGTGCCGGGCGCGTTCCTCGTGGCGGCCTGGCTCGTGGAGGCCAAGCAGGAGGTCGTGGAGAACATCGCCCCGGTCCTGACCCGCGTGTTCACGCCGCTGACGACGCTCATGCTGCTGGCCTGCCTGGTGGTGCTGGCCACCGCCGGGGACCTGACGACGGTCGACCGCGAGCTGCTCATCCTCATGGACGGCGTGCTGCTGCTGGTCCTGGCGCTCGTGCTGTACTCGGTCTCGGCCCGGGACCCGCTGCGCCGGCCCGGCCTGTTCGACGGCCTCCAGCTGGGGCTCGTCGTGGTGGCGCTGACCGTGGACGCGGTCGCGCTGACCGCGATGCTCACCCGGATCGCGGAGTTCGGCGCGAGCCCCAACAAGGTCGCAGCCCTGGGGCTGAACCTGCTCTTGGCGGTCCACCTGGCCCGCTCGGCCTGGCTGCTGCTGGGCCTGCTGCGCCACCGCCGCGCCTTCGGGGACCTGGAGCGGTGGCAGACCGCCTACCTGCCCGTCTACGCGGCCTGGGCGGCGTTCGTGGTCGTCGCGTTCGGGCCGTCGTTCGTGTTCGCCTGA	MSGTDALEVQVDRWRDYVRRHRAVAPDDVDEMTDHLRERIDDLRAAGLDDDEAFLVAVKRMGRLDAVSAEFARAHSERLWKQLVLLPDSPAPDADPARRELAVVVGCAVGAGLAVKAGTTFLDETALLLNLGLLVAPFVAAYLGWKRRLAGRTVAALLAGAVVLGVVLNTYPFDPAGSTLLLAALHAPVVLWALVGVAYTGGRWRSPDRRMDFVRFTGELAVYYVLLALGGGVLVGLTAGLFSLTGLDLEPAMEQWILPLCVPGAFLVAAWLVEAKQEVVENIAPVLTRVFTPLTTLMLLACLVVLATAGDLTTVDRELLILMDGVLLLVLALVLYSVSARDPLRRPGLFDGLQLGLVVVALTVDAVALTAMLTRIAEFGASPNKVAALGLNLLLAVHLARSAWLLLGLLRHRRAFGDLERWQTAYLPVYAAWAAFVVVAFGPSFVFA				NA	NA	NA	NA	NA
AK001_02886	669			hypothetical protein	ATGACGATCCACGGGGCCGAGCCGGAGACCGCCACCACCGTGCCGTCGTCGGACGGCCGGCGGCGACGCGGCGACCGCACGCGCACCGCGGTGCTCGACCATGCCGTGCAGCGCGCCTCCGTGGACGGGCTCGCCGGACTGACCTTCGGCACGCTCGCCGCCGAGGCCCCGGCGACCAAGAGCGCGATCGCGGGACTGTTCGGCAACAAGGAAGGTCTCGAGGTCGCGCTCGTCCAGCACGCGCGAGGAATCTTCCTCGCCGCGGTGATCGAGCCCGCCCGCGCGGCGGCGCCCGGGCTCGACCGTGTGTGGGCGCTCGTGCAGGGATGGTCCACGTACTCCCGGACCCGCACGTTCGCCGGCGGGTGCTTCTTCCGTGCGGTCGAGACCGAGGTCGACTCCCGGCCCGGCCCGGTGCACGACGCCGTCGTGGCGGTCCGGCGCGAGTGGGACGGCTACCTGGAGCACCACGTCGGGCTCGCCGTCGGAGCCGGCGAGCTGGCCGCCGACGTCGACCCGGCCCAGGTCGTCTTCGAGCTCGTCGCCCTGCTCGGCACGGCCAACGACCGCTCGTTGCTGCTGGACGACGACGGCGCCTACGACCGGGCGCTGGCCGCCGTGCGCACCGTGCTGGTGGCCCACGGCGCGGACGCCGCCCGGCTCGCCTGA	MTIHGAEPETATTVPSSDGRRRRGDRTRTAVLDHAVQRASVDGLAGLTFGTLAAEAPATKSAIAGLFGNKEGLEVALVQHARGIFLAAVIEPARAAAPGLDRVWALVQGWSTYSRTRTFAGGCFFRAVETEVDSRPGPVHDAVVAVRREWDGYLEHHVGLAVGAGELAADVDPAQVVFELVALLGTANDRSLLLDDDGAYDRALAAVRTVLVAHGADAARLA				NA	NA	NA	NA	NA
AK001_02887	855			hypothetical protein	GTGGTCCCTGCACCGATGCGCGCGACGTTCCGCACGCTGTCCGTCGTCGCTCCCCCCGTCGCCACCGGCATCGCCGCGCGGCTCTTCACCACCGTCGGCCCGCGGGCCCGGGTGCGCCCCGCCGACCAGGACGTCCACGACAGCGCCCGCCGCGGCACGGTGGACGTCGACGGCTCCCCCGTGACGACGTACCACTGGGGCGAGGACTCCCCGGAGGCACCGAGCGCGCTGCTGGTGCACGGCTGGCAGCGGCGCGCGAGCCGCTTCGGCGCGCTGGTGCGCGCGCTGGTCGACGCCGGGTGGTCGGTGGAGTCCTACGACGGCCCGGCGCACGGGGAGTCGCCCGGCGTCCGGCTCACCGTGCTCGAGCACATGGCGGCCATGCGGGCGATGCAGCAGCGGCACGGCGCCTACACCGCCGTCGTCGGCCACTCCCTGGGCGCCTTCACCGCCGGGATGGCGCTGCACGAGGGATTCCGCGCCGAGCGGTTCGCCGCCCTGGCCGCACCGACGAGCTTCGACTCCGTGGCCGCGACCTACATGCGGCTCGTCGGCATCGCCCCGCGCCTGCACGACCGGGTCTGCGACGACATCGCCCGGACGCTCTTCCCGGAGGTGCCGGACTTCCGCGCCCGGTTCGACCTGCGCCGGCGCACCGTCCCGGACACGGTGCCGACGCTGTTCGTCCAGGACGCCGACGACCGCATGCACGGCGCCGAGGAGGCACAGGCGCTGCACGCCGCCCACCCGGGCAGCGAACTGCTGATCACCGAGGGGCAGGGCCACAACGGCGTCCTGGACGACGAGGTGGTCGTCAAGACCGTCGTCGACCACCTGACCCGCGTCCCCGCCTGA	MVPAPMRATFRTLSVVAPPVATGIAARLFTTVGPRARVRPADQDVHDSARRGTVDVDGSPVTTYHWGEDSPEAPSALLVHGWQRRASRFGALVRALVDAGWSVESYDGPAHGESPGVRLTVLEHMAAMRAMQQRHGAYTAVVGHSLGAFTAGMALHEGFRAERFAALAAPTSFDSVAATYMRLVGIAPRLHDRVCDDIARTLFPEVPDFRARFDLRRRTVPDTVPTLFVQDADDRMHGAEEAQALHAAHPGSELLITEGQGHNGVLDDEVVVKTVVDHLTRVPA				NA	NA	NA	NA	NA
AK001_02888	2766	acnA	COG1048	Aconitate hydratase A	GTGAGCAGCGTGGACACATTCGGATCGAAGGGAACCCTGGACGTCGGAGGGAACTCCTACGAGATCTTCCGGCTCTCCGCGGTCGAGGGGCTCGAGCGCCTCCCGTACTCGCTGAAGATCCTGGCGGAGAACCTGCTGCGTACCGAGGACGGCGCGAACATCACCGCCGACCACGTGCGCGCCCTGGCCGGCTGGGACCCGGACGCCCAGCCGAGCACCGAGATCCAGTTCACCCCGGCGCGCGTGATCATGCAGGACTTCACCGGCGTGCCCTGCGTGGTGGACCTGGCGACGATGCGCGAGGCGGTCGAGGAGCTCGGTGGCGACCCCACCCGCATCAACCCGCTCGCCCCGGCCGAGATGGTCATCGACCACTCGGTGCAGATCGACGTCGCCGGCACCACCGAGGCCTTCGCCCGCAACGTCGAGTTCGAGTACGAGCGCAACCACGAGCGCTACCAGTTCCTGCGCTGGGGCCAGACGGCGTTCGACGACTTCAAGGTCGTCCCCCCGGGCACCGGCATCGTCCACCAGGTCAACATCGAGTACCTGGCCCGGACCGTCATGACCCGCGAGGTCGAGGTGGACGGCGAGACGGTGCTGCGCGCCTACCCGGACACCTGCGTGGGCACCGACTCGCACACCACGATGGTCAACGGCCTCGGCGTGCTCGGCTGGGGCGTCGGCGGCATCGAGGCCGAGGCCGCCATGCTCGGCCAGCCCGTCTCGATGCTCATCCCGCGCGTGGTCGGCTTCAAGCTCACCGGCGAGATCCCCGCCGGCGTCACCGCGACCGACGTCGTCCTCACGATCACGCAGATGCTGCGCCAGCACGGCGCCGTCGGCAAGTTCGTCGAGTTCTACGGTTCCGGCGTCGGCCAGGTCCCGCTGGCCAACCGCGCCACCATCGGCAACATGTCGCCGGAGTTCGGCTCGACCGCCGCGATCTTCCCGATCGACGACATCACCATCGACTACCTGCGCCTGACGGGCCGCAGCGAGGACCAGCTGGCCCTCGTCGAGGCCTACGCCAAGGAGCAGGGCATGTGGCTCGACCCGAGCTCGCCCGACTACGTCGAGCCGACGTTCTCGGAGTACATGGAGCTCGACCTGTCGACCGTCGTGCCCTCGATCGCCGGCCCGAAGCGTCCCCAGGACCGCATCGAGCTGTCGCACGCCAAGGCCGCGTTCGCCCGCGACCTGCCGAACTACGCCTCGGACGTCATCGACTCGGTGGACGAGGCCGAGATGGAGTCCTTCCCGGCCTCCGACTCGCCGTCGACCCACGACCACGTGCGCCCGACGGTGCCCGTCACCGACTCCCAGGGCCGCGAGTTCGAGCTGTTCCACGGCGCCGTGGCGATCGCCTCGATCACGTCGTGCACCAACACCTCCAACCCCTCGGTCATGCTCGCCGCGGCGCTGCTGGCCAAGAACGCCGTCGACAAGGGTCTGGTCTCCAAGCCCTGGGTCAAGACCTCGATGGCGCCCGGCTCGCAGGTCGTGACGAACTACTACGAGAAGGCCGGCCTGTGGCCGTACCTGGAGAAGCTCGGCTTCCACCTGGTCGGCTACGGCTGCACCACCTGCATCGGCAACTCCGGCCCGCTGGACGAGAAGGTCTCCGAGGCCGTCCAGGAGAACGACCTCGCCGTCGTCTCCGTGCTGTCCGGCAACCGCAACTTCGAGGGCCGGATCAACCCGGACGTGAAGATGAACTACCTGGCGTCCCCGCCGCTGGTCATCGCCTACGCCCTGGCCGGGACCATGGAGTTCGACTTCGACGCCGACCCGCTGGGCCGCGACGAGGACGGCAACCCGATCTTCCTCAAGGACATCTGGCCCACGCCGGACGAGGTCCAGGCCACGATCGAGTCCTCCATCGACCGCAAGATGTTCGAGAAGGACTACGCCGACGTCTTCACCGGTGACGACCGCTGGCGCGCGCTGGAGACCCCTGAGGGCTCCACGTTCTCCTGGGACACCGAGTCGACCTACGTGCGTCGTCCCCCGTACTTCGAGGGCATGGGCGCCGAGCCGGCGCCGGTCGAGGACATCACCGGTGCCCGCGTGCTGGCCAAGCTCGGCGACTCGGTCACGACCGACCACATCTCGCCGGCCGGTGCCATCAAGCCGGACAGCCCGGCGGGCAAGTACCTGGCCGAGCACGGCATCGCGCGTCGCGACTTCAACTCCTACGGCTCGCGCCGCGGGAACCACGAGGTCATGATCCGCGGCACGTTCGCCAACATCCGCCTGAAGAACCTGCTGCTGGACGGCGTCGAGGGTGGCTTCACCCACAACTTCGTCACCGGCGAGCAGGACACGATCTACGACGCCGCGCAGGACTACGCCGCGCAGGGCACCCCGCTGGTGGTGCTCGGCGGCAAGGAGTACGGCTCCGGCTCCTCGCGCGACTGGGCGGCCAAGGGCACCAAGCTGCTCGGCGTCAAGGCGGTCATCACCGAGTCGTTCGAGCGCATCCACCGCTCGAACCTCATCGGCATGGGCGTGCTCCCGCTGCAGTTCCCGGCCGGCGAGTCCGCCGACTCCCTCGGCCTGGACGGCACCGAGACGTTCGACATCGCGGGCATCACGGCGCTGAACGACGGCGAGACGCCCGAGACGCTGTCCGTCACGGCCACCAAGGACGACGGCTCCACCGTCGAGTTCGACGCCGTGGTCCGCATCGACACCCCGGGTGAGGCGGACTACTACCGCAACGGCGGCATCCTGCAGTACGTGCTGCGCTCGCTCGTCGACTGA	MSSVDTFGSKGTLDVGGNSYEIFRLSAVEGLERLPYSLKILAENLLRTEDGANITADHVRALAGWDPDAQPSTEIQFTPARVIMQDFTGVPCVVDLATMREAVEELGGDPTRINPLAPAEMVIDHSVQIDVAGTTEAFARNVEFEYERNHERYQFLRWGQTAFDDFKVVPPGTGIVHQVNIEYLARTVMTREVEVDGETVLRAYPDTCVGTDSHTTMVNGLGVLGWGVGGIEAEAAMLGQPVSMLIPRVVGFKLTGEIPAGVTATDVVLTITQMLRQHGAVGKFVEFYGSGVGQVPLANRATIGNMSPEFGSTAAIFPIDDITIDYLRLTGRSEDQLALVEAYAKEQGMWLDPSSPDYVEPTFSEYMELDLSTVVPSIAGPKRPQDRIELSHAKAAFARDLPNYASDVIDSVDEAEMESFPASDSPSTHDHVRPTVPVTDSQGREFELFHGAVAIASITSCTNTSNPSVMLAAALLAKNAVDKGLVSKPWVKTSMAPGSQVVTNYYEKAGLWPYLEKLGFHLVGYGCTTCIGNSGPLDEKVSEAVQENDLAVVSVLSGNRNFEGRINPDVKMNYLASPPLVIAYALAGTMEFDFDADPLGRDEDGNPIFLKDIWPTPDEVQATIESSIDRKMFEKDYADVFTGDDRWRALETPEGSTFSWDTESTYVRRPPYFEGMGAEPAPVEDITGARVLAKLGDSVTTDHISPAGAIKPDSPAGKYLAEHGIARRDFNSYGSRRGNHEVMIRGTFANIRLKNLLLDGVEGGFTHNFVTGEQDTIYDAAQDYAAQGTPLVVLGGKEYGSGSSRDWAAKGTKLLGVKAVITESFERIHRSNLIGMGVLPLQFPAGESADSLGLDGTETFDIAGITALNDGETPETLSVTATKDDGSTVEFDAVVRIDTPGEADYYRNGGILQYVLRSLVD	PGPT0001465_1201	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681	NA	NA
AK001_02889	690			hypothetical protein	ATGACGACCCCCACCGCCGTCGTCGAACGGCCGATCGCGACCTTTCTGCCCAGCCCTTTCCTCGGCCCGGCCGTGTGGGAGCCGGTGGCGCAGCGACTGCGCTCGCACGGCTGGCGGACCCACGTCGCCGACACCGCCGGCACCTCGCCGGCGGAAGTCCTCGACCGGTGCGAGGCCTCGCTGCCCGACGACGACCTCCTCGTGCTCGTGCCCCACTCGAACGCGGGCCTCTACGTCCCGGCGATCGCCGCGGCGGGACCGCTCGCCGGCACGGTGTTCGTCGACGCCGCGCTGCCGCCCGCGTCCGGCACGGCTCCCCTGGTGCCGCCGGCGCTGCGGGAACAGCTGCGCGAGCTCGCGGACGCCGACGGGCTCCTGCCCCCGTGGCCGTCCTGGTGGCCGCGCGAGGAGGTCCGTCGGCTCCTGCCCGACGACGACACGCTGGACCGGCTGCGCGCCGAGGCCCCGCGCCTGCCCGTCACCTACGTCGAGTCCTCCGTGGAGGTCCCCGCCGGCTGGGAGCGCGATCGGCTCGCCTACCTCGCCTTCGGCGACACGTACGCCGCCGAGACACGCCGTGCCGAGGAGTCCGGCTGGCCGACCGCGACGCTGCCCGGCGGGCACCTGCACATGCTCCGGGACCCGGACGACGTCGCCGCCTCGCTGGCCGGCCTCCTCGCCCGGATCTGA	MTTPTAVVERPIATFLPSPFLGPAVWEPVAQRLRSHGWRTHVADTAGTSPAEVLDRCEASLPDDDLLVLVPHSNAGLYVPAIAAAGPLAGTVFVDAALPPASGTAPLVPPALREQLRELADADGLLPPWPSWWPREEVRRLLPDDDTLDRLRAEAPRLPVTYVESSVEVPAGWERDRLAYLAFGDTYAAETRRAEESGWPTATLPGGHLHMLRDPDDVAASLAGLLARI				NA	NA	NA	NA	NA
AK001_02890	432			hypothetical protein	ATGGCGTCCGCCGACGGTCCCCGGGTGCGTCGCTGGCTGCCGCTGCGGCTGGCCGTGATCGCCGCGGTGGTGCTGGCCGCCCTGGTGGTGGCGTTCCTGGTGCGGCAGTCCTCCGACGAGGACCTGGTGCTCACCACGTACGACGGCGTGCCGGCCGGTGTCGAGGGGGACGTCGCCGCCGGCGGCGAGCCGGGCTGGGTGCTGGGCGAGGACGGACGGCTGGCGGTCTACGCCGCCGGGAGCTCGTCGTGCCCGTGGCGCCCGACGTCGGTCACCGCCGACGGCGACCGGGTCACGGTGCGCCTGGAGGTCGACGGGGGACCGGTGTGCACCATGGACTTCGTCTACTCCACCAGCGTCGTGGCGCTGCCCGACGGCGTGGACCCGGACGCGCTCGAGGTCGACCTGGAGCTGGTCCGCGGGCAGAGCTGA	MASADGPRVRRWLPLRLAVIAAVVLAALVVAFLVRQSSDEDLVLTTYDGVPAGVEGDVAAGGEPGWVLGEDGRLAVYAAGSSSCPWRPTSVTADGDRVTVRLEVDGGPVCTMDFVYSTSVVALPDGVDPDALEVDLELVRGQS				NA	NA	NA	NA	NA
AK001_02891	1302	rlmCD	COG2265	23S rRNA (uracil-C(5))-methyltransferase RlmCD	ATGGGGGACGTGCCCCGACCTCGCCGTTCCGCCCCGCGCCCCCGTCCCGTCGACCCGGCCGTCGGTCTCGAGCTCGAGCTCGAGGTCGGACCCGTCGCCCACGGCGGGCACTGCGTCGCCCGCCACGACGGTCGCGTCGTGTTCGTCCGCCACACCCTGCCCGGAGAGCGCGTGCGCGCCCGCGTCACCGAGGGCGGCAAGCGGTTCTGGCGGGCGGACGCCGTCGAGGTGCTCGAGGCCTCGCCCGACCGGGTCGCCCCCGCCTGGCCGGCCGCCGGTCCCGGCGGCGTGGGAGGCGGCGAGCTGTCCCACGTCGCGCTGCCGGCGCAGCGCCGCTGGAAGGCCGACGTGCTGGCCGAGCAGCTGCAGCGCCTGGCCGGGCTCGAGCGCGCGATCACCGTCGATGCGGCGCCCGGCGACGACGCCCGCGGCGGACTCGGCTACCGCACCCGCGTCGAGCTCGTCACCGACCACGCCGGCCGCGCCGGGATGCGGGCCTTCCGCTCCCACGACGTCCTCCCGCTCGAGGCGATGCCGCTGGCGACGCCCGACGTCGCGGCGCTCGCCGACACCGAGGGCGTCTGGGGCGGCGGGTGGCGTCCCGGGCAGCGGCTGGAGCTCGTGGCCCCTGCGTCCGGGTCCCCGCCCGTGCTGCTCGTCGACGGCGTGCCGTGGCGGCGCGGCCGGCCCGACACCCGCCCCAACGCCCGGCGCTCGGTCTCGGAGCATGTGGAGGTGGCCGGCGTCGAGCACCGGTTCCGCGTGACCGCCGACGGGTTCTGGCAGGTGCACCGCGAGGCGCCCGGCGTGCTCGCGAACGCCGTGCTCGACGCGGCCGGCGACCTGGACGGTGCCCGCGTGCTCGACCTGTACTCCGGCGCCGGGCTCTTCACGCTCCCGCTGGCCGCCGCCGTCGGCTCCCGCGGGCGCGTCGTGGCCGTCGAGTCCGACACCCGCGCGGTCAAGGACGCACGCCGCAACGCCCACGACGCGCCGCAGGTCGAGCTGCACCTCGGTGCCGTGGACGCGGTGCTGCTCGACGGGGACGCGGCGGGCGACGCGGGCGGGGACGCCGACGTCGTGGTGCTCGACCCGCCGCGGGCCGGGGCGGGCCGCGCCGTGGTGCAGGCGATCGCGGACCGCCGTCCGACCCGGGTGGTGTACGTGGCGTGCGACCCGGCGGCGCTGGCCCGCGACGTCGGCTACCTCGCCGAGCACGGGTACGGGCTGACGGGGCTGCGCGCCTTCGACCTGTTCCCGATGACTCACCACGTCGAGGCCGTCGCGGTGCTGGAGCGCTGA	MGDVPRPRRSAPRPRPVDPAVGLELELEVGPVAHGGHCVARHDGRVVFVRHTLPGERVRARVTEGGKRFWRADAVEVLEASPDRVAPAWPAAGPGGVGGGELSHVALPAQRRWKADVLAEQLQRLAGLERAITVDAAPGDDARGGLGYRTRVELVTDHAGRAGMRAFRSHDVLPLEAMPLATPDVAALADTEGVWGGGWRPGQRLELVAPASGSPPVLLVDGVPWRRGRPDTRPNARRSVSEHVEVAGVEHRFRVTADGFWQVHREAPGVLANAVLDAAGDLDGARVLDLYSGAGLFTLPLAAAVGSRGRVVAVESDTRAVKDARRNAHDAPQVELHLGAVDAVLLDGDAAGDAGGDADVVVLDPPRAGAGRAVVQAIADRRPTRVVYVACDPAALARDVGYLAEHGYGLTGLRAFDLFPMTHHVEAVAVLER				NA	NA	NA	NA	NA
AK001_02892	1983	kimA	COG0531	Potassium transporter KimA	GTGTCGGACATCGCGGACGCCGCCAAGCGGCTGCTCGTAGGACGCCCGCTGCGCAGCGAGAGCTCCAAGAAGTCTCTCCTGCCCAAGCGGGTCGCCCTGCCCGTGTTCGCCTCGGACGCGCTGTCGTCGATGGCGTACGCCCCGGACGAGATCCTGCTCATGCTGGCCCTCGCCGGCCTGGCCGCCACGGCGCTGTCGCCGTGGGTCGGGCTCGTGGTCGTCGCCGTGCTGCTCGTCGTGGTGGCGTCCTACCGCCAGATCGTGCGCGCCTACCCCTCGGGCGGCGGCGACTACGAGGTCGCCACGACCAACCTCGGGCCGACGGCCGGCATCGGCGTCGCCTCCGCCCTCCTGCTCGACTACGTGCTCACCGTGGCGGTGTCGCTGTCGGCCGCGGCCCAGTACCTCGCGGTCGTGGTGCCGGCGGCGCGCGGCCTGGAGGAGTGGGTGGCCGCCGGGCTCGTCGTCGCGTTGACCGTGGTGAACCTGCGCGGGATCCGGGAGTCCTCCTGGGTGTTCGTCGTCGTCATCTACTGCTTCATGGGGGCGGTCGGGATCCTCGCCGTCGTCGGCGCCGTCCGGCACCTCAGCGGCGCGCTGCCGCAGGCCGCCAGCGCCGAGCTCGAGCTCGTGCCCGGCGCCGGGTTCGAGCAGGGGCTCGTGGGCGTCGCGGGCGCGTTCCTCGTGGCCCGGGCGTTCGCGTCGGGCGCGGTGGCGCTGACCGGCGTCGAGTCGATCACCAGCGGCGTGCCGGCCTTCCGCCGGCCCAAGCGACGCAACGCCGCCTCCACGCTGGCGCTGCTGGGCGGCATCTCCGCCGCGATGCTCATGACCATCCTCTTCCTGGCCCAGGCCACCGGGGTGAAGTTCGTCGAGGACCCCGCCACCCAGCTCACCCGCGGCGGCGAGCTCGTGGGGGAGGAGTACGAGCAGCACCCCGTGCTGGCCCAGCTCGCCGAGACGATCTTCGGCGGGGCCGGGATCGTCGCGATGATCGTCGTCGGCGTCACCGCCCTGGTGCTGCTCCTCGCGGCGAACACGGCGTTCCACGGCTTCCCGGGCCTGGGCTCCATGCTGGCCAAGGACGGCTACCTGCCGCGCCAGCTCCACACCCGCGGCGACCGCATGGCGTTCTCCAACGGCATCGTCACCCTCGCGATCGCGGCCGCGGTGCTCATCGTCGGCTTCGGCGCCGAGGTGACCGCGCTCATCCAGCTCTACATCGTGGGCGTCTTCGTCTCGTTCACCCTGTCCCAGCTCGGGATGCTGCGGCACTGGACCCGCGCGCTGCGCAAGGAGCCCAACCCCCGCGAACGCACCCGCATGAAGTGGTCGCGCGCCGTCAACGGCGTCGGGTTCGTCCTGACCGCCGCGGTGCTGGTCATCGTGCTGGTCACCAAGTTCACCCACGGCGCCTGGATCACGCTCGTCGCGATGGGCGTGCTGTTCGTCCTCATGCGGGCCATCCACCGGCACTACTCGCGCGTGCGCGACGAGCTGGCGCTCGACGACATCTCCGGCGCCCGCGCCCTGCCCAGCCGGGTGCACGCCGTCGTGCTCGTCTCGCGCGTGCACAAGCCGACGATGCGCGCCCTGGCCTACGCCCGGGCCTCGCGCCCCAACGTGCTGGAGGCCGTCACCGTCGGCGTCGACCCGGTGGAGATCGCCGACCTGCGCGACCGCTGGGAGGCGCTGCACCTGCCGGTGCCGCTGCGGGTGCTCGACTCGCCGTACCGGGAGATCACCCGGCCCGTGCTGCAGTACGTGCGCTCGGTGCGGCGCGAGTCCCCGCGCGACCTCGTGGTCGTCTACATCCCCGAGTACGTCGTCGGGCACTGGTGGGAACAGCTGCTGCACAACCAGTCCGCCCTGCGGCTCAAGGGCCGGCTGCTGTTCACCCCGGGCGTCGTGGTCGCGTCCGTGCCGTGGCAGCTCTCCTCCTCCGAGGGGCAGACGGGACTCGAGTCCGACCTTCCCGGGTGA	MSDIADAAKRLLVGRPLRSESSKKSLLPKRVALPVFASDALSSMAYAPDEILLMLALAGLAATALSPWVGLVVVAVLLVVVASYRQIVRAYPSGGGDYEVATTNLGPTAGIGVASALLLDYVLTVAVSLSAAAQYLAVVVPAARGLEEWVAAGLVVALTVVNLRGIRESSWVFVVVIYCFMGAVGILAVVGAVRHLSGALPQAASAELELVPGAGFEQGLVGVAGAFLVARAFASGAVALTGVESITSGVPAFRRPKRRNAASTLALLGGISAAMLMTILFLAQATGVKFVEDPATQLTRGGELVGEEYEQHPVLAQLAETIFGGAGIVAMIVVGVTALVLLLAANTAFHGFPGLGSMLAKDGYLPRQLHTRGDRMAFSNGIVTLAIAAAVLIVGFGAEVTALIQLYIVGVFVSFTLSQLGMLRHWTRALRKEPNPRERTRMKWSRAVNGVGFVLTAAVLVIVLVTKFTHGAWITLVAMGVLFVLMRAIHRHYSRVRDELALDDISGARALPSRVHAVVLVSRVHKPTMRALAYARASRPNVLEAVTVGVDPVEIADLRDRWEALHLPVPLRVLDSPYREITRPVLQYVRSVRRESPRDLVVVYIPEYVVGHWWEQLLHNQSALRLKGRLLFTPGVVVASVPWQLSSSEGQTGLESDLPG				NA	NA	NA	NA	NA
AK001_02893	657			hypothetical protein	ATGGGTTGCGGTCGTGTGGGTTCCACGCTCGCGCAGACCATCGAGGCCAACGGCCACTCCGTGGCCGTCATCGACCAGAACCCCGACGCGTTCCGACGGCTGCCGTCGGACTTCGCCGGGCACAAGGTCACCGGCGTCGGCTTCGACCGCGAGACCCTCACCCAGGCCGGGATCGAGGACACGTTCGGGTTCGCCGCGGTCTCCGACGGTGACAACTCCAACGTGCTCGCGGCCCGCGTGGCCCGCGAGACCTACGGCGTCGAGCACGTCGTGGCCCGGATCTACGACCCGCACCGCGCCGAGATCTACCAGCGGCTCGGCATCCCCACCGTGGCGACCGTGCGCTGGACCGCCGACCAGGTGCTGCGCCGGATGCTGCCCCTGGGCGCGACGGACGAGTACCGCGACCCGTCGGGGACGGTCCGCCTGGCCCAGGTCGACCACCACCCGGGCTGGCTCGGGCTGTCGGTGCGGCGGATCGAGGCCACCACGGGCGCCCGGGTCGCCTTCATCACCCGGTACGCCGAGGCCCTGATCGTCGGGCCGGACACCCTGCTGCAGGAGAACGACGTGCTGCACGTGCTCATGCACGCCGACGACGCCGCGCGCGTCGAACGGCTGCTGACCCACACCCCGGGCCCGGAGGAGGAGGACTGA	MGCGRVGSTLAQTIEANGHSVAVIDQNPDAFRRLPSDFAGHKVTGVGFDRETLTQAGIEDTFGFAAVSDGDNSNVLAARVARETYGVEHVVARIYDPHRAEIYQRLGIPTVATVRWTADQVLRRMLPLGATDEYRDPSGTVRLAQVDHHPGWLGLSVRRIEATTGARVAFITRYAEALIVGPDTLLQENDVLHVLMHADDAARVERLLTHTPGPEEED	PGPT0002710_4328	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499	NA	NA
AK001_02894	675	trkA	COG0569	Trk system potassium uptake protein TrkA	ATGCGCGTCGTCATCGCCGGGGCCGGGTCGGTCGGCCGGTCCATCGCCGCCGAGCTGCTCACCAACGACCACGAGGTCGTCCTGGTCGACAAGAACCCGTCGGCCATGCGCGTGGCCCAGGTGCCCGACGCGGACTGGCTGCTGGCGGACGCCTGCGAGACCGAGGCGCTCACGGGGGCCGACGTCGCCTCGGCGGACGTCGTCGTCGGCGCCACGGGCGACGACAAGGTCAATCTCGTCTTCTCGCTGCTGGCCAAGACGGAGTTCGCGGTACCGCGCACGGTGGCGCGGGTGAACAACCCCCGCAACGAGTGGATGTTCGACGACTCCTGGGGCGTCGACGTGGCGGTCTCCACGCCGCGGATCATGACGGCGATGGTCGAGGAGGCCGTCTCGGTCGGCGACCTGGTGCGCATCTTCACGTTCCACCAGTCCGGTGCGGACATCTTCGAGGTCACGCTGCCCGAGGAGTCGCCGCTGGTCGGCCTGCGGGTGCAGGACGTCAGGTGGCCGGCGGACACGGTGCTGGCGTGCATCGTGCGCGGCATCCAGCCGTTCAACCCCACGGGCGACGACGCCCTGGAGGCCGGTGACGAGCTGATGTTCGTCACGGGGCAGGAGGCCGACCCGGCGGTGCTGCAGCAGCTCGTCGTCGACGGCCCGGAGTTCGGCTGA	MRVVIAGAGSVGRSIAAELLTNDHEVVLVDKNPSAMRVAQVPDADWLLADACETEALTGADVASADVVVGATGDDKVNLVFSLLAKTEFAVPRTVARVNNPRNEWMFDDSWGVDVAVSTPRIMTAMVEEAVSVGDLVRIFTFHQSGADIFEVTLPEESPLVGLRVQDVRWPADTVLACIVRGIQPFNPTGDDALEAGDELMFVTGQEADPAVLQQLVVDGPEFG	PGPT0002710_3178	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499	NA	NA
AK001_02895	804			hypothetical protein	ATGAGCAGCCACCCGCACGACGAGGAGCACCGCGACCTCGCCGCCGACCCGGCCGACGCCGGCGTCCGGCGCGGGGTGCGCGCCGTCACCGGTGACTCGTTCTCCCTGGGCGAGGCGATCGGCGGGGTCCGCGGTGTCGTCGAGGCGATCCTGCCCGGACTCGTCTTCGTCGTCGCCTACGTCCTGACCACCGACCTCACCACCGCACTCGTCGGCTCCGGGGCCGCAGCGCTCGTCACCGTCGGCGCACGCCTCGTGCAGCGCACCCCCGTCACCCAGGCGGTCGGCGGCGTGCTGGGCATCGCCGTCGGCGTGATCTGGGCATGGACGTCGGGGGAGGCCGAGGACTTCTACGTCTGGGGCCTGTGGACCAACGCCGCCTACCTGGTGGCCTTCGTCGTCTCGATCGTCGTGCGCTGGCCCCTGGTGGGTCTCTTCGTCGAGGCCGTGCGGGCCGGGTTCGTCGACCAGTCCGCCGCGCAGCGCCCCGCCGAGGACGGGGGAGCGGCGGCGGACGACACCGCGCAGACCGCGAGCCCGTGGGCCCCGCTGGCCGCGTGGCGCGCCGACGCCGACCTGGTGCGGCGCTACACGATCGCCAGCTGGTTCTGGGTCGGCCTGTTCGGCATACGTCTCGCGGTCAAGGTGCCGCTCTACCTCGACGGCGACGTCGGCTGGCTCGGCACGATGCACCTGGCGCTCGGCCTGCCGCTGTGGGGCCTGGTCCTCTGGCTGACCTGGGTCGTGGTGCGCGGTGCGCACCGCGAGGAGCCGGCCGCGGACGCGGCGGACGACCGGGCCTGA	MSSHPHDEEHRDLAADPADAGVRRGVRAVTGDSFSLGEAIGGVRGVVEAILPGLVFVVAYVLTTDLTTALVGSGAAALVTVGARLVQRTPVTQAVGGVLGIAVGVIWAWTSGEAEDFYVWGLWTNAAYLVAFVVSIVVRWPLVGLFVEAVRAGFVDQSAAQRPAEDGGAAADDTAQTASPWAPLAAWRADADLVRRYTIASWFWVGLFGIRLAVKVPLYLDGDVGWLGTMHLALGLPLWGLVLWLTWVVVRGAHREEPAADAADDRA				NA	NA	NA	NA	NA
AK001_02896	369			hypothetical protein	ATGTCCCTGCGCAGCATGGTCCGGTCCGCGCTGGCCTCCACGGACAGCGTGGTCGCGGACGAGGAACGGCACGCCGCCTCGGCGGTCAGCGGGTGCACCGCCTTGTCCGACGTCTCGCCCCGCCACCGCGCCTCCGCCGCCGGGGTCCTGCGGTCGGTGGTCCTCCACCCGCGCCAGAAGGTCCCCACCGTGGAGGCCGAGCTCTACGACGGCTCCGGGTCGATCGACCTGATCTGGCTGGGCCGCCGCGAGATCGCCGGCATCCAGCCCGGCCGGCGGCTGCGCGTCGAGGGCATGGTGACCACCCGTGAGGGGCGGCGCGCCATGTTCAACCCGCGCTACGAGCTGCGCGCCCGGGCGGGCGAATGA	MSLRSMVRSALASTDSVVADEERHAASAVSGCTALSDVSPRHRASAAGVLRSVVLHPRQKVPTVEAELYDGSGSIDLIWLGRREIAGIQPGRRLRVEGMVTTREGRRAMFNPRYELRARAGE				NA	NA	NA	NA	NA
AK001_02897	771			hypothetical protein	GTGGGTCTGTTCCGGCGCAAGGCGTCGACGAAGGTGACGGAGTCCGCTCCCGCGGAGGACACCTCGACCGCTTCGGCATCGGCCGACTCCCCGGCAGCGGCCGGGGCCGACGCGAGCACCGAGAGCCGCACCCCGAGCGGGCGCGGCCCCTTCGACGCCTCCCAGGTCTCGGCCATGGGCCCGCGGGTCGACCTCGGCGCCATCTGGCTGCCGGTCCTGCCCGGGCTGCAACTGCGCATGGAGGTCGACAAGAAGTCGCAGAAGGTCACCGGCGTGGCGGCCTCGCTCAAGGGCTCCGTCCTGCAGGTCCAGGCGTTCGCCGCCCCGAAGACGATGGGTATCTGGGACGAGGTGCGCGAGGAGATCGCCGCGTCGCTGACCAAGCAGGGCGGCACCGTCGACGACGTGCCCGGGACCTTCGGTCGTGAGCTGCTGGCCCGCATCCCCGCCAAGACGGCCGAGGGCACCACGGGTGTCCGTCCCGCCCGCTTCATCGGGTTCGACGGCCCGCGCTGGTTCCTGCGCGGCGTGCTCTCCGGCCGGGCCGCCGTCGACGCCGAGGCCGCCAAGCCGCTCGAGTCGGTGTTCGCCAACGTCGTGGTCGTGCGCGACGGCAACCCGCGCCCACCGCGCGACCTGCTCACCCTGACGCTGCCGGAGCAGACGCGTGCCCAGGCGGCCGACGGCGCCGCCGGCCCGGTCGGGACGGCTCCCGAGACCCCGAGCTTCGACCCGCTCACGCGTGGTCCCGAGATCACCGAGACGCGCTGA	MGLFRRKASTKVTESAPAEDTSTASASADSPAAAGADASTESRTPSGRGPFDASQVSAMGPRVDLGAIWLPVLPGLQLRMEVDKKSQKVTGVAASLKGSVLQVQAFAAPKTMGIWDEVREEIAASLTKQGGTVDDVPGTFGRELLARIPAKTAEGTTGVRPARFIGFDGPRWFLRGVLSGRAAVDAEAAKPLESVFANVVVVRDGNPRPPRDLLTLTLPEQTRAQAADGAAGPVGTAPETPSFDPLTRGPEITETR				NA	NA	NA	NA	NA
AK001_02898	462	dut		Deoxyuridine 5'-triphosphate nucleotidohydrolase	GTGACCGACCCGACCACGCTCGACGTGCTGGTGACGCTGCTCGACGACGAGGCGGTCGCTCCGTCGTACGCCCACCCCGGCGACGCCGGGGCCGACCTGGTCACCACGGTCGACGTCGACCTCGCTCCCGGTGCCCGCGCCGTCGTGCCGACCGGCCTGGCGATCGCGCTGCCCGAGGGGTTCGCGGCGTTCGTCCACCCCCGGTCGGGCCTGGCCGCGAAGCACGGCGTGACCGTCGTCAACGCCCCCGGGACGATCGACGCCGGCTACCGCGGCGAGATCAAGGTCGTCCTGGCCAACACCGACACCGCCGAGACCGTCCGCCTGCGGCGCGGGGACCGGATCGCCCAGCTCGTCGTCCAGCGCGTCGAGCACGCCCGGTTCCTCGTCGCCGACCGGCTGCCCGGCTCGCAGCGCGACACCGGCGGCTTCGGGTCGAGCGGGGGCTTCGCGCAGGGCTGA	MTDPTTLDVLVTLLDDEAVAPSYAHPGDAGADLVTTVDVDLAPGARAVVPTGLAIALPEGFAAFVHPRSGLAAKHGVTVVNAPGTIDAGYRGEIKVVLANTDTAETVRLRRGDRIAQLVVQRVEHARFLVADRLPGSQRDTGGFGSSGGFAQG	PGPT0021355_2002	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520	NA	NA
AK001_02899	498			hypothetical protein	ATGAACGACGCGCCCGCCCCCTCGGAGACCCCTGCGGGGTCCGCGCCTCCCCCGTTGTTCCGCGAGCGCCTCCTGCCGGGTCCCGGTGCCTGGGTCGCGGCGTTCGGGCTCGGCGTCATCGTCGCCGTCACGGTGCTGCCGCTGGCGCCGCTGGTCGCCCCGGGCGCCGGCGTGCTGGTGGCCGCGGCCGTGGTGGTCACGCTCGTGGCCACGGCCCCGGTGGTGGAGGTGACCGACGACGAGCTGCGCGCCGGGCCGGCCCGGGTGCCGGTGTCGATGCTCGGCGGGGTGGAGCCGATCTTCAGTGCGGAGGAGATGCGGACCGCCCTCGGCCCGGAGCTGGACGCCCGCGCATACGTGTGCCTGCGCAGCTGGGCACGCACGGGGCTGAAGGTGGGGCTGCGCGACCCGCTGGACCCGACCCCCTACTGGCTGGTGTCCACGCGGCGGCCGGACGAGCTGGCGGACGCGCTCGTCCAGGCGGGGGCGGCGTCCTGA	MNDAPAPSETPAGSAPPPLFRERLLPGPGAWVAAFGLGVIVAVTVLPLAPLVAPGAGVLVAAAVVVTLVATAPVVEVTDDELRAGPARVPVSMLGGVEPIFSAEEMRTALGPELDARAYVCLRSWARTGLKVGLRDPLDPTPYWLVSTRRPDELADALVQAGAAS				NA	NA	NA	NA	NA
AK001_02900	300			hypothetical protein	ATGGCAACCGACTACGACGCACCCCGCAAGAACGAGGACGAGGGCGACCAGGACTCGATCCAGGAGCTCCAGGCCCGCCGCTCCGACAAGTCTTCGGGTGTCGTCGACGAGGACGAGACGGAGGCCGCGGAAGGATTCGAGCTTCCCGGCGCCGACCTGTCCGGAGAAGAGCTCGCGGTGCGCGTGCTGCCTCGTCAGGCGGACGAGTTCACGTGCTCGAGCTGCTTCCTCGTCCACCACCGCAGCCAGCTGGCCTACGAGAAGAAGGGTCAGATGGTCTGCACGGAGTGCGCGGCCTGA	MATDYDAPRKNEDEGDQDSIQELQARRSDKSSGVVDEDETEAAEGFELPGADLSGEELAVRVLPRQADEFTCSSCFLVHHRSQLAYEKKGQMVCTECAA				NA	NA	NA	NA	NA
AK001_02901	831	cysQ_2		3'(2'),5'-bisphosphate nucleotidase CysQ	GTGAGCATCGCACCCGCCCTGCCGTCCGCGTCCGAGATCACCGACCTGCGCGCCCTGGCCCGCGCCCTCGCCGTGGAGGCGGGGGCCGTCGTGCGGGGCGGCCGGCCCGACCGGGTCGAGGTGGCCGCCACCAAGTCCACCGACGTCGACCCCGTCACCGCGATGGACCGCTCGGTGGAGGAGCTGCTGCGCCGCCGGATCGCCGACCGCCGGCCGGACGACGCGATCCTGGGCGAGGAGGGCGACGACGTCGCCGGCACGAGCGGACTGACGTGGGTGCTCGACCCGATCGACGGCACCGTCAACTACCTCTACGGCGTCGCCTCGTACGCGATCTCGGTCGCCGTCGTCGCTGGTGACCCCGACCCCGCGGTCTGGACGCCGCTGGCCGGGGCCGTGCACTCCGTGGTCGACGGGGCGACGTGGACCGGCGCGCGCGACCAGGGCGCCGAGCGCGACGGGACGCCGGTGCAGGTGCGCCGCCCCGACTCCCTCGCGACCAGCCTGGTCGGCACCGGGTTCGGCTACCAGGCCGCCCAGCGGGCCGAGCAGGCACGGGTGCTCACCCACGTGCTGCCGCAGGTGCGCGACATCCGCCGGCTGGGCTCCGCCGCCGTCGACCTGTGCCTGGTCGCCGAGGGGCGGCTCGACCTCTACTACGAACGCGGTCTCAACCCGTGGGACATGGCGGCCGGAGGGCTCATCGCCGCCGAGGCGGGTGCCGCCGTGAGCGGGCTGCACGGCGACCCGGCCACCCGACGGATGACCGCCGTCGGCACGCCCGCGCGGCAGGCCGAGCTGGTCGCGCTGCTCGAGGAGGCGGGCGCCTGA	MSIAPALPSASEITDLRALARALAVEAGAVVRGGRPDRVEVAATKSTDVDPVTAMDRSVEELLRRRIADRRPDDAILGEEGDDVAGTSGLTWVLDPIDGTVNYLYGVASYAISVAVVAGDPDPAVWTPLAGAVHSVVDGATWTGARDQGAERDGTPVQVRRPDSLATSLVGTGFGYQAAQRAEQARVLTHVLPQVRDIRRLGSAAVDLCLVAEGRLDLYYERGLNPWDMAAGGLIAAEAGAAVSGLHGDPATRRMTAVGTPARQAELVALLEEAGA	PGPT0018535_803	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092	NA	NA
AK001_02902	1380			hypothetical protein	ATGGCAGAGCTCGAGCTCGTGACGCTGCACGAGGACGCCGAGCGCCTGGTCCTGCGCGGGCCGGACGGCACCGAGCACACGCTCGCGATCTCCGAGGCGCTGCGCGCCGCCGTCCGGCGGGACCGGCCCCGGACCGAGGCGCTCCAGGCCCAGTCGGAGACCCCGCTGCGTCCGCGCGAGCTGCAGGCCCGGCTGCGAGCGGGGGCCACGGCCGAGGACCTGGCCGCCGAGTCGGGCCTCCCCCTGGAGCACGTGCGCCGCTACGAGTGGCCCGTCGCGGCCGAGCGCGACCACGTCATCAGCCAGGTCCGCAACCATCGCGTCGACCCGGAGGGCGACGCGACCCTCGGCGACCTCGCCGACGACCGCCTCGCCGCACGCGACGTGGACACCGCCGAGACCGTCTGGAGCGCCCGCCGCACGGGCACCGCCCCCTGGCACGTGGAGGTCCGGTTCACGGCCGGGGGTCGCGAGCGCAGCGCGGCGTGGACCTTCGACCCGCGCGGTCGCGCCGTGACCGCGGTCGACGACGAGGCGCGGTGGCTGGGGCAGCCGGACGACCCGGTCTCCCCCGAGATCCTCGGCATCCCGGCGGGCGCCGACCGCCGCACCCGCCCGTCCCCGACCCCGGACGCCGCCTCGGAGGCGACGGCGCTGCTCCTGGACGACCTGGCCGGACGCCGCGGGCACCGGACGCCGCGCTCGCGCCCGGCCCCGCGACCGGGTGAGCAGGAGCTGCCGCTGGGCCTGGAACCGGAGCACGGCGCGCGGCCGCCGGAGGACGACGGCGCCAGCGTGGTCGACCTCGGTGCCCGCCGCGACGCGCACCGCTCCTCACGGACCGACAGCGCCTCCTCCGCGCCGGACACCCCCGCGGCGTCGGAGGCGTCCGAACGGCGGGACCGCGCCGAGGACGCCGACGACTCCGACGAACCCGACCGACCCGCGCCCGCACCACCGGCGCCCGGCGACGGGCGGGCCGAGGACCGGAGGCCCGAGGACGAGGCCCCCGACGAGACGGCGCCCGACGCCGGGGCGGCCGAGGACGACGCGCACGACGAGGGCACAGACCACGGTGCCCCGGACGAGGACGGGCCCGCCCCGCGCTCGGGACCGGTGCCGGTCCCCGGACCCGCACCCCGCCCGGCCGCTCCGGACCCGGCGCGCGCGGACAGCACGTCGGACGACGCCGGGCCCGAGGCGTCTGCCCCGGCGGGATCCGCGTCGTCGAGCGGGTCGGCCCCCGAGCGCGAGGCCGCGGCGGGGACCGGGACGGACGACGCCCCGCCGCCCCGCCCGCGGCGCGGTGCCCGCAAGGGACGGGCCCCGATGCCGAGCTGGGACGAGATCGTCTTCGGCGGCGCCCGGCCCTCCTCCTGA	MAELELVTLHEDAERLVLRGPDGTEHTLAISEALRAAVRRDRPRTEALQAQSETPLRPRELQARLRAGATAEDLAAESGLPLEHVRRYEWPVAAERDHVISQVRNHRVDPEGDATLGDLADDRLAARDVDTAETVWSARRTGTAPWHVEVRFTAGGRERSAAWTFDPRGRAVTAVDDEARWLGQPDDPVSPEILGIPAGADRRTRPSPTPDAASEATALLLDDLAGRRGHRTPRSRPAPRPGEQELPLGLEPEHGARPPEDDGASVVDLGARRDAHRSSRTDSASSAPDTPAASEASERRDRAEDADDSDEPDRPAPAPPAPGDGRAEDRRPEDEAPDETAPDAGAAEDDAHDEGTDHGAPDEDGPAPRSGPVPVPGPAPRPAAPDPARADSTSDDAGPEASAPAGSASSSGSAPEREAAAGTGTDDAPPPRPRRGARKGRAPMPSWDEIVFGGARPSS				NA	NA	NA	NA	NA
AK001_02903	642	tdk_3		Thymidine kinase	ATGGCCGAGCTCGTCTTCTTCTCCGGGACCATGGACAGCGGCAAGTCGACGCTGGCCCTGCAGACCGACTACAACCATCGCGCGCGGGGCCGCCACGGGCTCATCTACACCCGCAACGACCGGGCCGGGGCCGCACGCATCTCCTCCCGGCTGGGCCTCGAGGTCGAGGCCCGCGAGGTCGGCGACGACACCGACTTCTGGGACGAGATCTCGGCCGAGCGCCAGCGCGGGCACCTGGTGGACTACCTGGTGTGCGACGAGGCGCAGTTCTACTCCCCGGAGCAGGTCGAGCAGCTCGCACGGCTCGTCGACGAGACCGAGATCGACGTCTTCGCGTTCGGGATCACCGCCGACTTCCGCTCCCGGCTGTTCCCGGGGTCGGCCCGGCTGGTCGAGCTCGCCGACCGCCTCGAGGCCCTGCAGGTGCAGACGCTGTGCTGGTGCGGGGCGCGCGCCACCCACAACGCGCGCACGGTCGGCGGGGTGATGGTCGTCGAGGGCGACCAGGTCGTCGTCGGGGACGTCAGCTCGGCCGCCGAGGTCGCCTACGAGGTGCTGTGCCGGCGCCACCACATGCGCCGCATGACCGCCGGTGTCGCCCGGCGGCTCGCCCCCGCCGACGGCCTCCTCGACGTGCGCTGA	MAELVFFSGTMDSGKSTLALQTDYNHRARGRHGLIYTRNDRAGAARISSRLGLEVEAREVGDDTDFWDEISAERQRGHLVDYLVCDEAQFYSPEQVEQLARLVDETEIDVFAFGITADFRSRLFPGSARLVELADRLEALQVQTLCWCGARATHNARTVGGVMVVEGDQVVVGDVSSAAEVAYEVLCRRHHMRRMTAGVARRLAPADGLLDVR	PGPT0021390_920	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857	NA	NA
AK001_02904	1176			hypothetical protein	ATGCGCCGCGACTTCCTGCTCCTGCTCTGGGGCACGGCCGCCGCCTTCGCGGGCTTCGCCCCGCTGCTGTCCGTGGTGCCGCTGTGGGCCGCCGACGGCGGCGCCGGGTCGGGCGGCGTCGGGGCGACCACCGGGGTGCTGATGGGGGCGACCGTCGCGGTCCAGCTCGCCATGCCGCGCCTGCTGCGCGTGCTGACGCTGCGGTGGGCCTCCGTGCTGGGCGCCCTGCTGCTCGGTGCGCCCACCTTCGCCTACCTGCTCTCCTCGGACGTGGCCTGGGTCCTGGCGTTCTCCGCGGTGCGCGGCGTCGGTTTCGGGATGTTCGTCGTGGCCGGCAGCGCCCTGGTCGCCGAGCTCGTCCCGCCGGAGCGGCGGGGGCGCAGCCTCGGGGCCTACGGCGTGGCCATCGGCGTCCCGCAGGCCCTGCTGCTGCCCATCGGGGTGTGGGCCGCCGAGCACCTCGGCTTCGCCGTCGTCTTCGTCGCCACCGGCGGCGTCGGCGTGCTGGGGGCGGTCGTCCTGCTCGGCATCCGCGAGAGCGGCCGCCCGGCCGGCGCGGCCGACGCCCCCGCGCCCGTCGCCGCCGACCGCCCGGAGCCCTTGCGCTACCGGACCCTGGCCGGCTCGGGAGTCCTGCTGCTGGTGGCCTCGGTGGCCTTCGGCGGCGCCACGTCCTTCGTCCCGCTGGCCTTCCCGGCCGTGACGGCGTCGGCCGTGCTGCTGGCCGTCAGCGTCACGATGACGGTCGGCCGGTGGTGGGCCGGGGTGCGGGCCGACTCCGAGGGGGTCGGTGGCCTGCTGCCCCTGGCGATCGGTGCCTGCGCGGTCGGCACGCTCGGGATCGCCCTCGCGGCCGGCGCGCTGGACGGCGGCCTCGCCCTCGTCGCCGCGTCCGCCGCCGGGCTGCTGTACGGGCTCGGGTTCGGCGCCCTGCAGAACGACACGCTCGTGCTGATGTTCCGGGACGCGGGCCCCGGCGGCACCGGCACGGCCAGCGCGGCCTGGAACATCGCCTACGACGGCGGCACGGGCGCCGGGTCGCTCGGCGTCGGGTTCGTCGCCCAGGGGGTCGGGGTCAGCCCGGGGCTCGGCGTCGCGGCGCTGCCCCTGCTGGCCGTCCTGCCGCACGCCGTGCGCCGGGCCCGCGTCGCCCGGGACGCCGTCGGACCCCGTTGA	MRRDFLLLLWGTAAAFAGFAPLLSVVPLWAADGGAGSGGVGATTGVLMGATVAVQLAMPRLLRVLTLRWASVLGALLLGAPTFAYLLSSDVAWVLAFSAVRGVGFGMFVVAGSALVAELVPPERRGRSLGAYGVAIGVPQALLLPIGVWAAEHLGFAVVFVATGGVGVLGAVVLLGIRESGRPAGAADAPAPVAADRPEPLRYRTLAGSGVLLLVASVAFGGATSFVPLAFPAVTASAVLLAVSVTMTVGRWWAGVRADSEGVGGLLPLAIGACAVGTLGIALAAGALDGGLALVAASAAGLLYGLGFGALQNDTLVLMFRDAGPGGTGTASAAWNIAYDGGTGAGSLGVGFVAQGVGVSPGLGVAALPLLAVLPHAVRRARVARDAVGPR				NA	NA	NA	NA	NA
AK001_02905	1215			hypothetical protein	ATGACGGCGGCGCTCGACCTCCCGGACTCCCTCGTCACGCCGACCTACGGCGCGGACTCGCTCGCCGCGGTGCTGCCCGCCGCGGCCGGCGCCCTGGGCCTGGACCTGTCCACGGCCACCGGGCTGCGCTCGGCGGACGCGGCCGCCGCCCTCGGCCTGCCCGCCGCGCGGCGCGTCGTCGTCGTGCTCGTCGACGGGCTCGGGCTGCACAACCTCGCCGAGCGCGGGGGCCACGCACAGTTCCTGCGCGGCCTGCTGCCCGAGGCGCGGTCGCTGACCACCTGCTTCCCCTCGACGACGGCGTCCGCGCTGGCCACGCTCGGCACCGGGACGAGCCCGGGCCTGACGGGTCTGCTCGGCTACACCCAGCGCAACCCGGACACCGGCGGGCTGGCCACGATGGTGTCCTGGACCGAGCAGTCCGACCCCTACCGACCGGGCACCAAGACCTCCGCCCCGCTCGCCGTCGACCCCACCGTCCTGCAGCGCCAGCCGACCGTCCTGGAGCAGGCGGGCGCCGCCGTCAGCGTCGTCTCGCCCGGACCGCGCAAGTTCGCCGGCTCCGGCATGACGCGGGCGGGGCTGCGCGGTCCCCGGTACGTGGTGGCCGAGACGTTCGCCGACCGTGTCGACGCGACGCTGACGGCGCTGCGCGACGACGGGCTGGTGTACCTGTACCAGGGCGAGGTCGACAAGGTCGGCCACCAGCACGGCCCCGACTCCTGGCAGTGGGGCGACGCCCTGGAGGACACCGACGCCGAGCTGCGACGCCTGGTGCGGTCCGCGCCGCACGGCACCCTCGTGCTCGTCACCGCCGACCACGGCCAGGTCACCTCCGACCTCGAGGCGCAGCACGACGTCGCCACGAACCCCGCGCTCGCCGCTGACGTCGCGCTGCTGGGCGGCGAGCCGCGCATGACGCACGTCTACACCACGCCGGGCGCCGACGTCGGCCGGGTCGCCGAACGCTGGGCCGACGAGCTGGGCGACGACGCGGTGGTGGTCACCGGCCAGGCCGCCGTCGAGGCCGGGTGGTTCGGCCCGGTGGCCGACCACGTGCGACCGATCGTCGGGGACGTGCTCGCGGCCGCCCGCGGCCGGGCCACCGTCGTCGACTCGCGCCTGCACCCGGCCGCCGCGCGGCACATGCCGGGCGTGCACGGCTCGCTCACCGAGACCGAGATGGTGGTCCCCCTCCTCGTCGCGGGCGGGTGA	MTAALDLPDSLVTPTYGADSLAAVLPAAAGALGLDLSTATGLRSADAAAALGLPAARRVVVVLVDGLGLHNLAERGGHAQFLRGLLPEARSLTTCFPSTTASALATLGTGTSPGLTGLLGYTQRNPDTGGLATMVSWTEQSDPYRPGTKTSAPLAVDPTVLQRQPTVLEQAGAAVSVVSPGPRKFAGSGMTRAGLRGPRYVVAETFADRVDATLTALRDDGLVYLYQGEVDKVGHQHGPDSWQWGDALEDTDAELRRLVRSAPHGTLVLVTADHGQVTSDLEAQHDVATNPALAADVALLGGEPRMTHVYTTPGADVGRVAERWADELGDDAVVVTGQAAVEAGWFGPVADHVRPIVGDVLAAARGRATVVDSRLHPAAARHMPGVHGSLTETEMVVPLLVAGG				NA	NA	NA	NA	NA
AK001_02906	603			hypothetical protein	ATGGTGCCTTCCGCGACCACACGCAAGAACCTTCGTGACGAGCTCGGTGCTCACGTCTACCGCGCCGGGTACTACCCCGACCTGGTGACCGACGTCCTGGACGTCGCGCTCGCGGACGAGCCGGTCCTGGCGCACCTGGTCCAGGCCGAGACGACGTTCGACAGCCAGGTGCGCCGCCACCTGACCGTGCTGGCGCTCACCCCCACCCGGCTCGTGGCCGCGCACGTCGACGACCACGAGGGCGACGCGGCCAACCCGTCCTCGGCCGCCGCCACCACCGAGGCCGTGCCGCTGCCCGAGATCCGCTCGGTCGCGCTGACCCACATCGTCGCCGAGCCGGCCGACCACCGCCCCGGTGACAGCGCCGCCGAGCTGAACCTCGCCATCGGGTGGGGCGCCGTCGCGCGGATCGACCTGGAGCCGGCGCAGTGCGCCGACCCGAGCTGCGAGGCCGACCACGGCCTGACCGGCCAGCTCACCCCCGACGACGTCGTGGTGCGCGTCAGCTCGGCCGCCGAGGGCGCGGACGCCGTGCGCCGCGCGGTGGACTTCGCGCGCCAGCTGTCCGCCGCCACCGGCGTCAGCGGGCGCTCCTCGCGATGA	MVPSATTRKNLRDELGAHVYRAGYYPDLVTDVLDVALADEPVLAHLVQAETTFDSQVRRHLTVLALTPTRLVAAHVDDHEGDAANPSSAAATTEAVPLPEIRSVALTHIVAEPADHRPGDSAAELNLAIGWGAVARIDLEPAQCADPSCEADHGLTGQLTPDDVVVRVSSAAEGADAVRRAVDFARQLSAATGVSGRSSR				NA	NA	NA	NA	NA
AK001_02907	2703			hypothetical protein	ATGGACTCCTCGCACGTCGACTACCCCGTGGAGTGGGAGGCCGACGTCGTGCTGCGCGACGGCAGCACGATGCACCTGCGCCCGATCCGCTCCGACGACGCCGAGTCCCTGCAGCGCTTCCACGTCGGCCAGTCCGAGCGCTCGACGTACCTGCGGTTCTTCGCACCGATCGCCCGGCTGACCGACCGCGAGCTGCGGCGCCTGGTCGAGGTCGACCACCGCGAGCGCGTCGCGATCGTCGCCGTGCGGCCCGGTCGCGACGAGGACGGCGCCGACCGCGAGGACATCCTCGGCGTGGCCCGCTTCGACGTCATCGCCGACGGCGAGGCCGAGGTCGCGTTCAACATCGCCGACTCCCTGCAGGGCAAGGGGCTGGCGTCCGTGCTGCTGGAGCACGTGGCCGTGGCGGCGCGCGAGCGCGGCGTACGCCGCTTCACCGCCGAGGTCCTGCCGCAGAACGGTTCCATGCTCGGCGTGTTCCGCGACGCCGGCTACCAGATCAGCCAGCACCTCGACGACGGGTTCGTCGCGGTGAGCATCGACCTGGACCCCACCGAGAAGTCCCGCGCCGTGATGGCCGACCGGGAGCACCGCACCGAGGCGCGGTCCATGGCCGGGCTGCTATCGGCCCGCCGGGTGCTGCTCGTCGGACCGGGCGCCGACGACGGCACGCCCGAGTCGCTGCTCGCCCGCCGGGTGCTGGACGCCTACTCGATCGACCCCGGGAACACCGAGCTGGTCGTGCTGGACCCGCCCGGCGCGGTGCCCAGCAGCGTGCAGCAGGCCGCCGGCTGGGACGACGTCGGTGCGATCGACCTGGCCGTGCTGGCCGTCGCGCCCGAGGACGCCCTGACGGCCGTGCGGCGGCTCGACGGCAGCGGGGCGCGCGGCGTCGTCGTCCTGTCCGGCGGGTACGCCGAGTCCGGGCCGGAGGGGCTGGAGCGCCGCCGGGAGCTCGTGCGCACCGCCCACGCCGCCGGGATGCGGCTCGTCGGCCCCGTCTCCTACGGGCTGCTGACCACGACCCCGGGCTCGGCGCTGCGGGCGAGCCTGGCCGAACGTCCGCCGCCCGCCGGCGTCGTCGGCCTGTTCTGCCAGTCCGCCGCCGCGGCGGTGACGCTCACCGCCACGCTGGAGCGCCGCGGGCTCGGCGTGTCCTCGATGGTCTCGGCCGGGCACCGCGCCGACGTCTCCGGCAACGACCTCATGCAGTACTGGCAGGACGACGACGCCACCGAGGTCGTCTGCCTCTACCTGGAGTCCATCGGCAACCCGCGCAAGTTCTCCCGCATCGCGCGCCGGCTGTCCGCGGTCAAGCCGATCGTCGTCGCCACCGCCGGGCGCTCCGGCCACGTCGTCCCGCCCGGGCACGCCGTGCGCGCCACCCGCGCCCCGCGCCGCCTGCTCGACGAGCTGCTGCGCCAGTCCGGCGTCATCCAGGCCGAGAACACCCACCAGCTCATGGACGTCGCCCAGGTGCTGGCCCACCAGCCGCTGCCCGCCGGCAACCGCGTCGGCATCCTCGCGTCCTCGGCGGCGCTCGCGGCGCTGGTGGCCGAGGCCGCGGCGTCCGCCGGGCTCGAGGTCGCCACGTCCAGCGACTACCTGCCCCCGCACGCCCACGAGGAGGACATCGCCCGCACCGTCGACGCGTTGTACGCCCCGGACGCGTGCGACGTCGTCGTCGCCGTCGACGTGCCCGTGGTCCAGCCGCGCACCGGCGCGATCGCGCACGCCGTCGCCCAGGCCGCCGCCCGCACCGGGCGCACCACCGTGGCCTCGATGCTCGGGCTGCACGGCATGCCCGACGAGCTCGCGGCCGTCGGCCCGGACGGACGGGTCGTGCGCATCCCCGCGTTCTCCACCCCCGAGGACGCCGTCGTCGCGCTCGGCAAGGTGGTCGAGCACGCCGAGCAGCGCACCGAGACCCGGGGGCACGAGGTCGCCCCCGACGGCGTGGACTCGCGGCGCGCCCGGGCGCTGGTCGAGCAGTGGCTCGCCGACGGCGAGGGCCGCGAGCTGGACGGCCGCGAGGCCGCCGATCTGCTCGCCTGCTACGGCATCCGACTGTGGGAGTCCAGGCCCGTGCGCGACCCCGACGAGGCCGTGGCCGCCGCCGAGGAGCTCGGCTGGCCCGTCGCCCTCAAGTCCACCTCTCCCGCGCTGCGGCACCGCAACGACCTCGGGGGAGTGCGCCTGGACATCACCGACGCCGAGGACCTGCGCGAGGACGTCGGCCGGCTGCGCGCCGTCGCCACCGCCCTGCTGGGCGAGGAGTCCCCGGAGTTCGAGGTGCAGTCCATGGCACCCGCCGGGGTGGCGTGCGTCGTGCGCTCGGCCGAGGACCCCCTGTTCGGCCCGATGGTCTCGTTCGGCCTCGCCGGCGACGCCGTCGACCTGCTCGACGACGTCGCGCACGGCATCCCGCCGCTGACCGACGTCGACATCTCCGCCATGGTCAGCACCGTCCGGGCCGCGCCGCGGCTGTACGGCTACGGGGGAGCGCCGCCCGCCGACGTCGACGCCCTCGAGGACGTCCTCGCCCGCGTGTCGGTCATGGCCGACGACCTGCCCGAGCTCGCCTCGCTGGAGATGTACCCCGTCGTCGTCGCCGAGCAGGGAGCCTCCGTCCTGCACGCCGCCGTGCGGCTGCGGCCCGCCGGGCGCCGGGCCGACGGCCTGCGCCGCGCGCTGCCGGGCTGA	MDSSHVDYPVEWEADVVLRDGSTMHLRPIRSDDAESLQRFHVGQSERSTYLRFFAPIARLTDRELRRLVEVDHRERVAIVAVRPGRDEDGADREDILGVARFDVIADGEAEVAFNIADSLQGKGLASVLLEHVAVAARERGVRRFTAEVLPQNGSMLGVFRDAGYQISQHLDDGFVAVSIDLDPTEKSRAVMADREHRTEARSMAGLLSARRVLLVGPGADDGTPESLLARRVLDAYSIDPGNTELVVLDPPGAVPSSVQQAAGWDDVGAIDLAVLAVAPEDALTAVRRLDGSGARGVVVLSGGYAESGPEGLERRRELVRTAHAAGMRLVGPVSYGLLTTTPGSALRASLAERPPPAGVVGLFCQSAAAAVTLTATLERRGLGVSSMVSAGHRADVSGNDLMQYWQDDDATEVVCLYLESIGNPRKFSRIARRLSAVKPIVVATAGRSGHVVPPGHAVRATRAPRRLLDELLRQSGVIQAENTHQLMDVAQVLAHQPLPAGNRVGILASSAALAALVAEAAASAGLEVATSSDYLPPHAHEEDIARTVDALYAPDACDVVVAVDVPVVQPRTGAIAHAVAQAAARTGRTTVASMLGLHGMPDELAAVGPDGRVVRIPAFSTPEDAVVALGKVVEHAEQRTETRGHEVAPDGVDSRRARALVEQWLADGEGRELDGREAADLLACYGIRLWESRPVRDPDEAVAAAEELGWPVALKSTSPALRHRNDLGGVRLDITDAEDLREDVGRLRAVATALLGEESPEFEVQSMAPAGVACVVRSAEDPLFGPMVSFGLAGDAVDLLDDVAHGIPPLTDVDISAMVSTVRAAPRLYGYGGAPPADVDALEDVLARVSVMADDLPELASLEMYPVVVAEQGASVLHAAVRLRPAGRRADGLRRALPG				NA	NA	NA	NA	NA
AK001_02908	687			hypothetical protein	ATGTCACCGACCGACTCCTCACCACCCGGATCGCCGGAGCCCGCCGTCACCTGCGACGCGAGCGGGATGGCCGAGATCCACCGCTACTTCCGCGCCGGCTTCGGTGAGGCACCAGATCTGGTGCGCGGGGTCGAACCGGGAGACGTCTCCCACGTGACGGCCGTGTCCGAGCAGCTGTGGCTGCTGTCGACCGCCCTGCACGCCCATCACGAGGGCGAGGACGAGCGCCTGTGGGACGCCCTCGCATCCCGCGCCCCGGCGTGCGCCCTGCACGTCGAGCGGATGAAGGCCCAGCACGCCCAGATGCTCGGGCACCTCACCGAGCTCGACACGGCGCTGCCCGCCTGGAAGGCGAACCCTGCTCCGGACACCGCCGGCACCGTGCTGAGCGCCCTCGACGGCATCAACGCCGCACTCGCGGTGCACCTGCCGGACGAGGAGCGGGAGATCGTGCCGGTGATGGAGACCACCCTCACCCAGGAGGAGGTCGACTGGTTCAGCGAGCACGGCAGGCGCGCGACTCCGCGCGGGCACATGTGGACCCAGCTGGGAGGCATCATGGCGGCGCAGGACGACCCCGATGCCTGGCTGCGAGCGCACCTGCCGGCGCCCGTCCGGCTCATGTGGCGCGCGGTGGGGCGGCGGCGCTACGCGGCGCAGCGCGCCGTTCTGCGCCGCTCAGGCTGA	MSPTDSSPPGSPEPAVTCDASGMAEIHRYFRAGFGEAPDLVRGVEPGDVSHVTAVSEQLWLLSTALHAHHEGEDERLWDALASRAPACALHVERMKAQHAQMLGHLTELDTALPAWKANPAPDTAGTVLSALDGINAALAVHLPDEEREIVPVMETTLTQEEVDWFSEHGRRATPRGHMWTQLGGIMAAQDDPDAWLRAHLPAPVRLMWRAVGRRRYAAQRAVLRRSG				NA	NA	NA	NA	NA
AK001_02909	2487	gyrA_2	COG0188	DNA gyrase subunit A	ATGGCGCGCAAGAAGGCCGCACCCGTCGCCGACGAGCCGTACGACGAGACCATCGTCGACATCGACGTCGCCGCGGAGATGGAGACGTCGTTCCTCGAGTACGCGTACTCCGTCATCTACTCGCGCGCTCTGCCCGACGCCCGCGACGGCCTCAAGCCGGTGCACCGCCGGATCCTGTACATGATGGCCGACATGGGCCTGCGGCCCGACCGTGCGCACGTGAAGTCCTCGCGCGTCGTCGGCGAGGTGATGGGCAAGCTGCACCCGCACGGCGACGGCGCCATCTACGACGCGCTGGTGCGCCTGGCGCAGGACTTCTCGATGCGTCTGCCGCTGGTGGACGGCCACGGCAACTTCGGCTCGCTCGACGACGGCCCCGCCGCCGCCCGGTACACCGAGGCGCGCCTGGCCGCGCCGTCGATGGCGATGACCGCCGGCCTGGACGAGGACGTCGTCGACTACGTCCCGAACTACGACAACAAGCTCACCCAGCCCGAGGTGCTGCCCTCGGCGATCCCGAACCTGCTGGTCAACGGCGCGTCCGGGATCGCGGTCGGCATGGCCACGAACATGCCGCCGCACAACCTCGTCGAGGTCGTCGCCGCGGCCCAGCACCTGCTGGCGAACCCGGAGGCGACGCTCGACGACGTCATGCGGTTCGTCCCCGGGCCGGACCTGCCCAGCGGCGGCAAGATCATCGGCCTCGACGGCGTGCGCGACGCCTACCGCACCGGCCGCGGCTCGTTCCGCACCCGGGCCACCGCGCGGATCGAGAACGTCACGGCCCGGCGCAAGGGCATCGTCGTCACCGAGCTGCCGTACACGGTGGGCCCGGAGAAGGTGATCGAGAAGATCGCCGACGGCGTGCGCAACAAGAAGATCCAGGGCGTCACCAACGTCCAGGACCTCACCGACCGCACGCACGGCATGCGCGTGGTCATCGAGGTCAAGACCGGGTTCGACCCGGAGGCCGTGCTCGAGCAGCTCTACCGCACCACGCCGCTGGAGGACTCCTTCGGCATCAACAACGTCGCCCTCGTGGACGGCCAGCCGCGCCCGCTGGGGCTGCTGGACCTGCTGCAGGTCTGGGTCGACCACCGCATCGACGTCGTGCGCCGCCGCTCGCAGTACCGCCTGGCCAAGCGCAAGGACCGCCTGCACCTCGTCGAGGGTCTGCTGATCGCGATCCTGGACATCGACGAGGTCATCCAGGTCATCCGCTCCTCGGACGACGCCGCGATCGCCCGCGAGCGCCTGCAGTCGGTGTTCGACCTGTCCGAGCCGCAGGCCTCCTACATCCTGGACCTGCAGCTGCGCCGGCTGACGAAGTTCTCCCGCATCGAGCTGGAGTCGGAGAAGTCCCAGCTCGAGGCGGAGATCGCCGAGCTGGAGGCGATCCTGGCCGACGAGGCACGCCTGCACGGCGTCGTCTCGGACGAGATGGCCGAGGTCGCCGCCACCTACGGCACGCCGCGCCGCACGGTCCTGCTGGACTCCGCGGGCGGGGCCGCGCAGTCGGCCGCGGCGACGCCGGCGCGGGGCAAGAAGGCCCCGGCCCTGGACCTGGAGATCAAGGACACCCCGACCCGGGTGCTGCTGTCCGCGACGGGTCTGCTGGCCCGCACCTCGGGCGAGACCGCGGACGCCCCGGTGGAGCGGGCCGGACGGCGGCACGCGCACGACGCGCTGCGGTCCGACGTCGCGACGACGGCGCGTTCCCAGATCGGTCTGGTCACCTCGGCCGGGCGCCTGTACAAGCTGTCCGCCCTGGAGCTGCCGGCCCTGCCGAGCGTGGACGGGCCGCCGTCGCTGTCCGGCGGGGTGCCGGTCAGCGAGATGGTGTCGCTGGAGTCCGGTGAGCAGGCGCTGGCGGTGGTGTCGCTGGCCGAGGACGCCGCGCCCCTGGCGCTCGGGACCCGCCACGGCGTGGTCAAGCGGGTGACGCCGGGCGACGCGCCGCGCAACGGCGACGCCTGGGAGGTCATCGGTCTCAAGGACGGCGACGCCGTGGTCGGGGCCGCGCCGGCCACCGACGACGACGAGGTGGTCTTCGTCGCCTCGGACGCCAGCCTGCTGCACTTCGACGCCTCGTTGGTCCGCCCGCAGGGCCGCGCCGCCGCGGGCATGGCCGGCATCCGCCTCGGCGGGGGCCAGCACGTGGTGTTCTTCGGGGTGGCGCGGGCCGCCTCGCGGGACCTGCACACGGTGGTGACGGTGGCCGGCTCGGCCGGTGCCCTGCCGGGCACGGGCGGCGGCTCGGTGAAGGTCACCCCGTACGAGCTGTACCCGGGCAAGGGCCGCGGGACCGGCGGCGTGCGCGCCCACCGGTTCCTCAAGGGCGAGGATGCGATCGTGCTGGCCTGGGTCGGCGAGGGTCCGGCGCGGGCGGTGGGCTCGGGCGGTCAGCCGGTCGAGCTGCCCGAGGAGACCACGCGCCGCGACGGTTCCGGGACCCCGGCCTCCGGTCCGCTGGCCGCCATCGGCTGA	MARKKAAPVADEPYDETIVDIDVAAEMETSFLEYAYSVIYSRALPDARDGLKPVHRRILYMMADMGLRPDRAHVKSSRVVGEVMGKLHPHGDGAIYDALVRLAQDFSMRLPLVDGHGNFGSLDDGPAAARYTEARLAAPSMAMTAGLDEDVVDYVPNYDNKLTQPEVLPSAIPNLLVNGASGIAVGMATNMPPHNLVEVVAAAQHLLANPEATLDDVMRFVPGPDLPSGGKIIGLDGVRDAYRTGRGSFRTRATARIENVTARRKGIVVTELPYTVGPEKVIEKIADGVRNKKIQGVTNVQDLTDRTHGMRVVIEVKTGFDPEAVLEQLYRTTPLEDSFGINNVALVDGQPRPLGLLDLLQVWVDHRIDVVRRRSQYRLAKRKDRLHLVEGLLIAILDIDEVIQVIRSSDDAAIARERLQSVFDLSEPQASYILDLQLRRLTKFSRIELESEKSQLEAEIAELEAILADEARLHGVVSDEMAEVAATYGTPRRTVLLDSAGGAAQSAAATPARGKKAPALDLEIKDTPTRVLLSATGLLARTSGETADAPVERAGRRHAHDALRSDVATTARSQIGLVTSAGRLYKLSALELPALPSVDGPPSLSGGVPVSEMVSLESGEQALAVVSLAEDAAPLALGTRHGVVKRVTPGDAPRNGDAWEVIGLKDGDAVVGAAPATDDDEVVFVASDASLLHFDASLVRPQGRAAAGMAGIRLGGGQHVVFFGVARAASRDLHTVVTVAGSAGALPGTGGGSVKVTPYELYPGKGRGTGGVRAHRFLKGEDAIVLAWVGEGPARAVGSGGQPVELPEETTRRDGSGTPASGPLAAIG	PGPT0027705_2689	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621	NA	NA
AK001_02910	1614	stp_3		Multidrug resistance protein Stp	ATGGGGACCGCCCGCGAGGACTCCACGCCGCGTACGCCGTCGGACGCCACCGCCACCGCGCCGTCCGGCTGCGTGCTGGGCACGCTCATCCTCGTCGCCGCCGTGGCCAACCTGAACCTGTCCGTGGCGAACGTCGCCCTGCCCGACATCGGCGACGCCCTGGACGCCTCGCAGGTCCAGCTCAACCTCGTCGCGGTCGCGTACTCCCTCGGCCTGTCGGCCTCGGTGCTGTACTTCGGCGCGATCGGCGACCGGTACGGCCGCAAGGCGCTGCTGCTGACCGGCACCGGGCTCACCGTGCTGTTCAGCCTGCTGGCGGCGTGGTCACTCTCGGTCGAGGTGCTCTTCGTCGCGCGCGTCGGCGGAGGCCTGTGCGCCGGCATGGCGTTCCCGACCACGCTCGCGCTGATCTCGGCCCTGTGGTCCGGACCCGGCCGGACCCGCGCCATCGCCCTGTGGTCCGGCATCGGGGCCGCGTTCGCCGCGCTCGGCCCCCTCGCCGCCGGGTGGGTGCTCACCCAGTTCTGGTGGGGGTCGGTCTTCGCGCTGACGGTGCCGCTCGCGGTGCTGGCGTTCGTGCTGGCCCTGGTGCTCGTGCCCGCGCACGTCCACGAGAGCGTCCAGCCCGTCGACCACCTCGGCGGCACCCTGTCCGTGCTGCTGGTCGGCGCGCTGGTGATGGGCATCAACCTGCTGGCCGTGCCGGACCAGGCCGTGCTCCTCGCCGTGCTGGGCGCCGTCGTCGTCGGGGCCGGCACCTGGTTCGTGCTGCGCCAGCTCCACGCCGACAACCCGCTGTACGACCTGCGGGTGGCCGCCCGCCCCACGTTCTGGGTCGCCGCGGTGGCCGGCCTGATCATCTTCGGCTCGCTGATGGGTGCGATGTACGTCGGCCAGCTGTTCATGCAGAACGTGCTCGGCTACTCCAGCATCGCGGCCGGCGCGGCGATCCTGCCCGGCGCCGTCGGCATGGTGCTCGTCGCGCCGCGGTCGGCCGCCCTCGTCGAACGGCACGGGTCGCGCGTCACGATGCTGTCCGGGTACGTGTTCGTCCTGCTCGGCTTCGCCGCCATGCTGCTGCTGTGGCGCGAGGACGTCGGCTACTGGGCCGTCGGGCTGGCCTACCTGCTCGTCGGGATCGGCGTCGGGCTGTCCGGGACGCCGGCGTCGAACTCGCTGACGGGCTCGGTGCCCGTGCAGCGCGTCGGCATGGCCTCCGGCACCGCCGACCTGCAGCGCGACCTGGGCGGCGCCATCCTGCAGTCCGCCTTCGGGGCGCTGCTCGCCGCCGGGTACGCCGGGTCGATGGCCACGGCCGTCGGGGACGACAGCGACCTGTCCGACCTTACCGCGAGCACGCAGGCCACCCTGGAGAAGTCGTTCGCCGGGGCCGAGTCGATCGCCTCGCAGCACCCGCAGTACAGCGACGAGATCATCGCCGCGGCCCGCGAGTCGTTCCTCGCCGGCGACCAGTGGGCCTACCTCGCCGGGATCGTCGCCGTGCTGCTCGGCTCGCTGCTCGTGCTCGTCGCCTTCCCGCGGCGCGACCGCGAACGCGAGCTGCGCGCCCGCTACCAGCCCGAGCCCGAGTCGGACACCGACGCCGGCCGCTGA	MGTAREDSTPRTPSDATATAPSGCVLGTLILVAAVANLNLSVANVALPDIGDALDASQVQLNLVAVAYSLGLSASVLYFGAIGDRYGRKALLLTGTGLTVLFSLLAAWSLSVEVLFVARVGGGLCAGMAFPTTLALISALWSGPGRTRAIALWSGIGAAFAALGPLAAGWVLTQFWWGSVFALTVPLAVLAFVLALVLVPAHVHESVQPVDHLGGTLSVLLVGALVMGINLLAVPDQAVLLAVLGAVVVGAGTWFVLRQLHADNPLYDLRVAARPTFWVAAVAGLIIFGSLMGAMYVGQLFMQNVLGYSSIAAGAAILPGAVGMVLVAPRSAALVERHGSRVTMLSGYVFVLLGFAAMLLLWREDVGYWAVGLAYLLVGIGVGLSGTPASNSLTGSVPVQRVGMASGTADLQRDLGGAILQSAFGALLAAGYAGSMATAVGDDSDLSDLTASTQATLEKSFAGAESIASQHPQYSDEIIAAARESFLAGDQWAYLAGIVAVLLGSLLVLVAFPRRDRERELRARYQPEPESDTDAGR	PGPT0028045_266	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167	NA	NA
AK001_02911	723			hypothetical protein	ATGGACATCTTCCTGGTACCCGGGTTCTGGCTGAACGCCTCCGCGTGGGACGCCGTCACGCCGCCGCTCGTCGCGGCCGGGCACACCGTGCGCCCGATGACGCTGCCCGGCATGGACTCCGTCGAGGCCGACCGCAGCGGCATCACGCTCGCCGACCACGTCGACGCCGTCGTCGCCGCGATCGACGCGCTGCCCGACGACGCCGAGATCGTGCTCGTGGGGCACTCCGGCGGGGGAGCGGTGATCCACTCCGCGGCCGACCGCCGCCCCGCCCGCATCACGCGCGCCGTCTACACCGACTCGTTCCCCCTCGGCGACGGGGGAGCGATCAACCCCGACCTGCCCGTCGTCGACGGCGAGATCCCGCTGCCGGACTGGTCGGTGTTCGACGAGCCGGACCTCGCCGGCCTCGACGACGCCCTCCAGGCGCGGTTCCGAGCCATGGCGATCCCGACACCCGCCCGGGTCGCGTCGGACCCGGTGCGCCTGACCGACGACCGCCGCTACGACGTGCCGACCACGGTCATCGCCTGCGAGTACTTCGGCTCCTTCGACGGGCCGCGGGCCATGTACGAGCACTTCATCGCCCAGGACGACCCGTTCACCCGCGAGCTCGCCGCGATGCGGGACTGCGAGATCGTCGAGCTGCCCACCGGGCACTGGCCGATGTTCACCCGGCCGGTCGAGCTCGGCGAGGCGATCGCGGCCGCCGTCGCGCGCTGA	MDIFLVPGFWLNASAWDAVTPPLVAAGHTVRPMTLPGMDSVEADRSGITLADHVDAVVAAIDALPDDAEIVLVGHSGGGAVIHSAADRRPARITRAVYTDSFPLGDGGAINPDLPVVDGEIPLPDWSVFDEPDLAGLDDALQARFRAMAIPTPARVASDPVRLTDDRRYDVPTTVIACEYFGSFDGPRAMYEHFIAQDDPFTRELAAMRDCEIVELPTGHWPMFTRPVELGEAIAAAVAR				NA	NA	NA	NA	NA
AK001_02912	417			hypothetical protein	GTGACCGCCTACGAGTTCTCCGCCGACCCCGACCGCCTCGACGTCGACTGGATCCACGAGATCCTGTCCACACAGGCCTTCTGGGCCCGCGGACGCACCCGCTCGGCGCAGGAGACCGCCGTCGCCGGCAGCCGGAACTACGGCCTGTACACGGCCGACGGCACGCAGGTCGCCTACGCCCGCGCCGTGACCGACGGCGTCACGTTCGCCTGGGTGGCCGACGTCATCGTCGACCCGGCCCATCGGCGCCAGGGACTCGGCACCCGCATCGTCGACGGCCTCATGGCCGACCTCGAGAGCCTCGGGCTCAAGCGCGTGCTGCTCAAGGCCTCCCCCGACGGCCACGAGCTCTACCGGCAGGCGGGTTTCGACACCCTCGACGAGCCGGAGACCTGGCTGGGCCGCCGCCTGCGCTGA	MTAYEFSADPDRLDVDWIHEILSTQAFWARGRTRSAQETAVAGSRNYGLYTADGTQVAYARAVTDGVTFAWVADVIVDPAHRRQGLGTRIVDGLMADLESLGLKRVLLKASPDGHELYRQAGFDTLDEPETWLGRRLR				NA	NA	NA	NA	NA
AK001_02913	459			hypothetical protein	ATGACCGAACAGCGACCTTCCCCGGCGGGAGCGGCTTCCCTGCCGGCGTCGTCCCAGCGAACGACGCCGGCCGGCGCCCAGGACCGCCGCGTCCACGGCCGTGCCGTGGTTCTTCAGGCTCTCGCGCTGGGCGCCTGCGCCGGAGCCGTGCTCAGTCTCTGGAACAGCTCGCTGCCGTGGCGCGGGCTCGTCAACGTCGCCCTGCAGTGCGCCCTGCTCGGCGCGATCGTCGCCGCGACGGTCTACCGGGAGCGGCGGACCCGGACCTGGCCCCGGCGCGCCCGGCGCACGGCGCTCGTCGGCGTCCTGGGCACGGGAGTGCTCTTCGTCGCCGTCGCGACGTCCGTGTACCTCGGTGGCACGTCCGCTCCCGCGGCCTGGGTCTCGGTCGGGGTCGGCGCCGTCGTCGCTCTCCCGGGCGTCGTGGCCGGCGTCCTCGTCGCCAGAGACCGTCGGTGA	MTEQRPSPAGAASLPASSQRTTPAGAQDRRVHGRAVVLQALALGACAGAVLSLWNSSLPWRGLVNVALQCALLGAIVAATVYRERRTRTWPRRARRTALVGVLGTGVLFVAVATSVYLGGTSAPAAWVSVGVGAVVALPGVVAGVLVARDRR				NA	NA	NA	NA	NA
AK001_02914	705			hypothetical protein	ATGACCGACGTCGCTCATACCGACCGCCCCCTGCTCCGCCCGGGCGCTGCCCGCGTCGCGGCGGGCGTCTTCGCCGCCCTCGCCGTCGTCCACCTGGTCGCCCAGCTGCTCGACGCCGCCGCGGTCGCGAACTCGACGCAGTGGCTCGTCATGCCGGCGCTCGCGGCCGTGCTCTGGTGCACGACGGCGGCACCCCGGCCGCGCCTCGTGCGGCTGGTGCTGGTGGCGCTCGGTTTCTCCTGGGTCGGTGACACCCTGCCCGACCTGTTCACCGGGGACGCCGCGTTCCTGGCGATGGTCGGCGGGTTCCTCGTCGCCCAGGTGGTCTACGCCGTGGCGGTCTGGCCGTACCGCCGCGAGTCCGTGCTGCACCGGCGCCGGGGAGTCCTGCTCGCCTACGTGGCCCTGGCGGTCGTCCTGGTGGCGCTGTGCCTGCCGGGCGCTCCCGGGGTCCTCGCGGGCGCCGTCGTCGTCTACGCGGTGTGCCTCACCGCGATGGCGGTGCTCGCCACGGGCGTGCACCGGCTGGCCTGGCTCGGCGGTGCGCTGTTCCTCGTCTCGGACGCGATGATCGCGCTGGGTGCCTTCGCGGACGTCGTGCCGCCGCAGTCCGGGTTCTGGATCATGCTCACCTACCTCGCCGGCCAGGCACTGCTCGTCGCCGGCGTCGTCGCGCGGCAGGCGATGTCAGCTCGGGCCGCCTGA	MTDVAHTDRPLLRPGAARVAAGVFAALAVVHLVAQLLDAAAVANSTQWLVMPALAAVLWCTTAAPRPRLVRLVLVALGFSWVGDTLPDLFTGDAAFLAMVGGFLVAQVVYAVAVWPYRRESVLHRRRGVLLAYVALAVVLVALCLPGAPGVLAGAVVVYAVCLTAMAVLATGVHRLAWLGGALFLVSDAMIALGAFADVVPPQSGFWIMLTYLAGQALLVAGVVARQAMSARAA				NA	NA	NA	NA	NA
AK001_02915	534			hypothetical protein	ATGACCGACGCACCCGTGCTTCGCCCGCTCACCGCTGACGACGCCGAGGCGGTGCTGGCGGCGTTCCGTTCGGCGCCCGACATGGCACGCCAGGGCACGGTGACGACGCCGCAGGAGGCCGAGCGCTACGTGGCCCGGCTGACCGACCCCGACGGACCGCATCGCGCCTGGGCCGTTGACGACGGCGGCACCTGCGTCGGGCTCGTCGCCGTCACGGTCGACGCGGCGAACGCCACCGGCTGGTTCTGGTACTGGGTGCACGCCACCCACCGCGGACGAGGGCTGGCCCGGCGGGCCGCGGCGGCGGTGGCCGACTGGGCGCTGTCCGACGGCGGGCTGCACCGCCTGGAGCTCGGGCACCGGATGAACAACCCGGCGTCGGGAGCGGTGGCCCGGGCCGCAGGGTTCGTCCGCGAGGGCACCGAGCGCGAGAAGTTCCTCGTGGACGGTCGGCGAGTCGACGTCGCGACCTACGGCCGACTGCGCACAGATCCGGTGCCCAGCGGCGAGCGACTCGCCATCCGTCCGGCCTGA	MTDAPVLRPLTADDAEAVLAAFRSAPDMARQGTVTTPQEAERYVARLTDPDGPHRAWAVDDGGTCVGLVAVTVDAANATGWFWYWVHATHRGRGLARRAAAAVADWALSDGGLHRLELGHRMNNPASGAVARAAGFVREGTEREKFLVDGRRVDVATYGRLRTDPVPSGERLAIRPA				NA	NA	NA	NA	NA
AK001_02916	444			hypothetical protein	GTGAAAAAGAAAATCCACTGGCGCGAGGACAGCGACAAGCGGCACGACCAGGTCATCGACACGATCCGGTCCGTGGACATCGTCGAGACCGTCGTCGTCGTCATGACCGGATTCACCGTCGACCAGCGCGAGACGCGCCGCCGCCGCAAGGTCCTCGAGCGTTTCCTGTACCAGATTGCCCAGCGCGGCTGCAGCCAGCTGACCTTCGAGTCACGCGGCTCGGTCGAGGATGCCCGAGACTTTGCTGTGGTCGATGCGCTACGTGCCGGTCAGGTGATCCCCGCCCAGCTCAGGGTCGACCACGTACCGGGGCCGGCCGATCCGGCGCTCTGGATCGCTGACGCAGTCTGCGGCGCCATCACCGAGGCGCGATGCGGTCGCCCGCGCTGGCTGGAACAGATCCAGGACGTCACGACCGTGGAGACCGTCACCTACATGTCCTGA	MKKKIHWREDSDKRHDQVIDTIRSVDIVETVVVVMTGFTVDQRETRRRRKVLERFLYQIAQRGCSQLTFESRGSVEDARDFAVVDALRAGQVIPAQLRVDHVPGPADPALWIADAVCGAITEARCGRPRWLEQIQDVTTVETVTYMS				NA	NA	NA	NA	NA
AK001_02917	1125	mshD_4		Mycothiol acetyltransferase	ATGGCCACCGTGGAGACCTCACCGGACCTCGCCCCGATCGCCGAGCGCGCGGACGCCCCGGCGAACCTGCCGCCGCTCGCCGCCGGCGGGCTCACCTGGCGTGCGGCCACCGCCGCCGACGCCCCGGTGCTGCTCGAGCTGCGCAACACCATCGCCGCGGCCGACGCCGAGCCGTACCGCGAGAGCCTCGAGGAGATCACCGAGCTGTTCGACGCCCCGTGGCGCCGGTTCGACGTCGACTCCGTGCTCGGGTTCGACGCCGACGGCGCGCTGGTGGCCTACGGCCACGTCGAGACCATGCCCGGCGACACCCGCACGCTGCGGGCGTTCCTGTTCGGCGGGGTGCACCCGTCCCGTCGCGGCGAGGGCATCGGCCGCGCGCTGTTCGCCTGGCAGGTCGCCCGCGCCCGGCAGGTGCTCGCGGCGTCGGGCAAGGAGCTGCCCGCCCGGATCGGCGTCTTCGCCGAGGACGACGGACCGGCGTCGAAGCTCGGCCTGTACGAGCGGGCAGGCTTCGAGCCCCGCCGGTTCTACTCCGACCTGCGCCGCGACCTGCGCGACCTGGAGACCGCCCCGCTGCCCGACGTCGTCCTCGACGGGTCGCTGCGACTCGTGCCGTTCAGCACCGAGCTCGACGAGGCCACGCGCCTGGCGCACAACGACGCCTTCCGGGACCACTGGGGCAGCGAGCCCAACACCCGCGAGCAGTGGCAGCGCGGGCGCACCGGCTTCGCGCCGCAGTGGAGCCACGTCGTCGTCGACGACGCCCCCGACGTCGAGGCGCTGCTGGCTGACTCCCGCACCGACGACGAGACCGCGGCCGCGCTGCGCGCCGGGGAGCCGCTCGTCGTCGGGTACGCCGTGAACCTCCGGTTCGAGGAGGACTTCGCCGTGCGCGGGTACACCTTCGGGTACACCGGCGTGCTCGGCACCCGGCGGGCCTACCGCGGCCGCAAGGCCGGGCTCGCCGCGCTGCTGGCGAGCATGCGGTCCTTCGCCGCCGACGGCATGGAGTACGCCTGCCTCGACGTCGACACCGCCAACCCGTCCGGCGCCGACGGGCTCTACGCCAGCCTCGGGTACACCACGTCGCACGGTTCGCGGCTGCTCAGCATCGAGCTCTGA	MATVETSPDLAPIAERADAPANLPPLAAGGLTWRAATAADAPVLLELRNTIAAADAEPYRESLEEITELFDAPWRRFDVDSVLGFDADGALVAYGHVETMPGDTRTLRAFLFGGVHPSRRGEGIGRALFAWQVARARQVLAASGKELPARIGVFAEDDGPASKLGLYERAGFEPRRFYSDLRRDLRDLETAPLPDVVLDGSLRLVPFSTELDEATRLAHNDAFRDHWGSEPNTREQWQRGRTGFAPQWSHVVVDDAPDVEALLADSRTDDETAAALRAGEPLVVGYAVNLRFEEDFAVRGYTFGYTGVLGTRRAYRGRKAGLAALLASMRSFAADGMEYACLDVDTANPSGADGLYASLGYTTSHGSRLLSIEL				NA	NA	NA	NA	NA
AK001_02918	3612	metH	COG0646	Methionine synthase	GTGGTGACCTCCACGCTCGACATCGCCGCTGCCGACGCCCGTTCCGCCGCCCTGCGTGAGGCGCTGCGCACTCGGGTGGTGGTGGCCGACGGCGCGATGGGCACCATGATCCAGGCCGCCGACCCGACGATGGAGGACTACCAGCAGCTCGAGGGCTGCAACGAGATCCTCAACGTCACCCGCCCGGACATCGTGCGCGGCGTGCACGACGGTTTCCTCGAGGTCGGCGTGGACGCGATCGAGTCGAACACGTTCGGCGCGAACTGGTCGAACCTGTCGGACTACGGCATCGACGACCGCATCCGCGAGCTGGCCCGCGTCGGCGCGGAGCTGGCCCGTGAGCGCGCCGACGTCTACGCGACGCCGGACCACCCGCGCTGGGTGCTGGGCTCGATGGGTCCGGGCACCAAGCTGCCCTCGCTGGGGCACACCACGTACGAGAACCTGCGCGACACGTTCGCCGAGCAGGCCGCCGGGCTGCTGGAGGGCGGCGCTGACGCGATCCTGGTCGAGACCAGCCAGGACCTGCTGCAGACCAAGGCCGCCGTGACGGGTGCGCACGAGGCGATGCGCGGCGTCGGACGCACCGTGCCCGTGATCGCCTCGGTGACCGTCGAGACCACGGGCACCATGCTCATGGGCTCCGAGATCGGGGCGGCGCTGACCGCGCTGCAGGCGGTCGGCGTGGACGCCATCGGCCTGAACTGCGCCACCGGCCCGGACCAGATGAGCGAGCACCTGCGCTACCTGGCCAAGCACGCCGAAATGCCGGTCACGTGCATGCCGAACGCCGGCCTGCCCGAGCTCGGCCCGCACGGCGCCGTCTACCCGCTGACCCCGGACGAGCTGGCGGCGGCGCACAGCCAGTTCGTCGACGAGTTCGGCCTGGGCATGGTGGGCGGCTGCTGCGGCACGACGCCGGAGCACCTGGCGCGCGTCGTCGAAGCGGTGCGCGGTCGCCCGCTGCCGCAGCGCGAGGTGGAGCGCACATCCGGTGTCGCGTCGCTGTACTCGCACACGGACCTGTCCCAGGACGCCTCGTACCTGGCGATCGGTGAGCGCACCAACGCCAACGGCTCCAAGGCGTTCCGCGAGGCGCTGCTGGAGGGCCGCTGGGACGACATCGTCGACATCGCCCGTGACCAGACGCGGCACGGCGCCCACCTGCTCGACGTGTGCGTCGACTACGTGGGGCGCGACGGCGTCGCGGACGTGCGGGAGGTCGTCTCACGGTTGGCGAGCGCCTCGACGCTGCCGCTGGTCATCGACTCCACCGAGCCGGAGGTGATCCGCGCCGGTCTGGAGCTGGTGGGCGGGCGCGCCGTGGTGAACTCCGTGAACTTCGAGGACTCCGACGGGCCCACCTCGCGGTTCCAGCGGATCATGCCGGCCGTGCGCGAGCACGGTGCCGCCGTCGTCGCCCTGACCATCGACGAGGAGGGCCAGGCCCGCACCACGGAGAAGAAGGTCGCGATCGCCTCGCGCCTCATCGACACCCTCACGGAGCAGTGGGGCATGCGGGTGGACGACATCATCGTCGACGCCCTGACCTTCCCCATCGCGACCGGGCAGGAGGAGACGCGCCGCGACGCCATCGAGACGATCGAGGCGATCCGCGAGATCAACCGGCTCTACCCCGGCGTGCACACCACGCTCGGCGTCTCGAACGTGTCGTTCGGTCTCAACCCGGCCGCGCGCACGGTGCTGAACTCGGTGTTCCTGCACGAGGCGACGCAGGCCGGGCTGGACTCCGCCATCGTGCACGCGGCGAAGATCCTGCCGCGCACCGCCATCGACGACGAGCAGTGGCAGGCCGCCGAGGACCTCGTGTGGGACCGGCGGCAGTACGACGACGAGGGCAACCTGACCCACGACCCGCTGTCGCACCTGCTCGAGGTGTTCTCCGGCGTCGACGCCGCCGCGATGCGCGACCAGCGGGCCGCTGAGCTCGCGGCGCTGCCCGTGGGCGAGCGGCTGGAGCGCCGCATCATCGACGGCGCGCGCAAGGGTCTCGAAGACGATCTGGACACTGCGCTGGCCGACGGCATGAAGGCCCTCGACATCGTCAACACCCACCTGCTGGGCGGGATGAAGGTCGTCGGCGAGCTGTTCGGGTCGGGGCAGATGCAGCTGCCGTTCGTGCTGCAGTCTGCGGAAGTCATGAAGACGGCGGTGGCGCTGCTCGAGCCGCACATGGAGAAGGTCGAGGGCGGCGAGGAGCAGTCCAAGGGCGTCATCGTGCTGGCGACCGTACGGGGCGACGTGCACGACATCGGCAAGAACCTCGTCGACATCATCCTGACGAACAACGGCTACACCGTGGTCAACATCGGCATCAAGCAGCCGATCTCGGCCATGATCGAGGCCGCCGAGGAGCACGGCGCCGACGTCATCGGCATGTCCGGGCTGCTGGTGAAGTCGACCGTGGTGATGAAGGAGAACCTCGAGGAGCTCGTCTCGCGCGGCATGGAGAAGCGCTGGCCGATCCTGCTCGGCGGCGCGGCGCTGACCCGCACCTTCGTCGAGGACGACCTCGCCTCCGCGTTCCCCGGCGTCGTGCGGTACGCCCGCGACGCCTTCGAGGGGCTGCGCCTCATGGAGCCGCTGGTCGCCGTCGCGCGCGGCGCCGACCCCGAGGATGTCGGGCTGCCGGCGCTGCGCAAGCGCCGCCACAACGTCGTCAAGGTGACCGAGACCGCGCCCGAGGACCTGCCCGAGCGGTCCGACGTCGCCACCGACAACGAGGTGCCCGCTCCCCCGTTCTGGGGCACGCGCGTGGTCAAGGGCATCCAGCTCGCCGACTACGCCGCGTTCCTCGACGAGCGCGCCACGTTCATGGGCCAGTGGGGCCTCAAGCCCGGCCGCGGCGAGGACGGCGCGACGTACGAAGAGCTCGTCGAGACCGAGGGTCGGCCACGCCTGGCCCAGTGGCTCGACACGATCCGCACCGACCAGATCATGGACCCGACCGTCGTCTACGGGTACTTCCCCGTGTGGTCCGAGGGCGACGACATCGTCGTCGCCCATCATGGACCAGACCTGAGCGGGCCTTCCGGAGACATCCAAGCGCCCGACGGCGGATCCGGCGGCGAGCCCGGGACCGAGCGGCTGCGCTTCACCTTCCCGCGCCAGAAGCGCGACCGGCACCTGTGCCTGTCCGACTTCGTCCGCCCCAAGTCGTGGGTCGAGGAGACCGGCCGCTACGACGTGCTGCCCATCCAGCTCGCCACCGTCGGCGACCCGGTGTCCGCGTACACGGCGAAGCTGTTCGCCGAGAACAAGTACCGCGAGTACATGGAGCTGCACGGGCTGTCCGTGCAGCTCACCGAAGCGCTGGCCGAGTTCTGGCACTCGCGCGTGCGCTCCGAGCTCGGCTTCGGCGACGAGGACCCCGACGACATCGAGGGCATGTTCAAGCTGGAGTACCGCGGGGCGCGGATGTCACTCGGCTACCCGGCATGCCCGGACATGGAGGACCGCACGAAGGTCGTCGACCTGCTGCGGCCCGAGCGGGTCGGCGTGACGCTCAGCGACGAGCTGCAACTACACCCGGAGCAGTCGACGGACGCATTCGTGCTGCATCATCCCGAGGCCAAATACTACAGCGTGTGA	MVTSTLDIAAADARSAALREALRTRVVVADGAMGTMIQAADPTMEDYQQLEGCNEILNVTRPDIVRGVHDGFLEVGVDAIESNTFGANWSNLSDYGIDDRIRELARVGAELARERADVYATPDHPRWVLGSMGPGTKLPSLGHTTYENLRDTFAEQAAGLLEGGADAILVETSQDLLQTKAAVTGAHEAMRGVGRTVPVIASVTVETTGTMLMGSEIGAALTALQAVGVDAIGLNCATGPDQMSEHLRYLAKHAEMPVTCMPNAGLPELGPHGAVYPLTPDELAAAHSQFVDEFGLGMVGGCCGTTPEHLARVVEAVRGRPLPQREVERTSGVASLYSHTDLSQDASYLAIGERTNANGSKAFREALLEGRWDDIVDIARDQTRHGAHLLDVCVDYVGRDGVADVREVVSRLASASTLPLVIDSTEPEVIRAGLELVGGRAVVNSVNFEDSDGPTSRFQRIMPAVREHGAAVVALTIDEEGQARTTEKKVAIASRLIDTLTEQWGMRVDDIIVDALTFPIATGQEETRRDAIETIEAIREINRLYPGVHTTLGVSNVSFGLNPAARTVLNSVFLHEATQAGLDSAIVHAAKILPRTAIDDEQWQAAEDLVWDRRQYDDEGNLTHDPLSHLLEVFSGVDAAAMRDQRAAELAALPVGERLERRIIDGARKGLEDDLDTALADGMKALDIVNTHLLGGMKVVGELFGSGQMQLPFVLQSAEVMKTAVALLEPHMEKVEGGEEQSKGVIVLATVRGDVHDIGKNLVDIILTNNGYTVVNIGIKQPISAMIEAAEEHGADVIGMSGLLVKSTVVMKENLEELVSRGMEKRWPILLGGAALTRTFVEDDLASAFPGVVRYARDAFEGLRLMEPLVAVARGADPEDVGLPALRKRRHNVVKVTETAPEDLPERSDVATDNEVPAPPFWGTRVVKGIQLADYAAFLDERATFMGQWGLKPGRGEDGATYEELVETEGRPRLAQWLDTIRTDQIMDPTVVYGYFPVWSEGDDIVVAHHGPDLSGPSGDIQAPDGGSGGEPGTERLRFTFPRQKRDRHLCLSDFVRPKSWVEETGRYDVLPIQLATVGDPVSAYTAKLFAENKYREYMELHGLSVQLTEALAEFWHSRVRSELGFGDEDPDDIEGMFKLEYRGARMSLGYPACPDMEDRTKVVDLLRPERVGVTLSDELQLHPEQSTDAFVLHHPEAKYYSV	PGPT0008135_1782	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548	NA	NA
AK001_02919	1302			hypothetical protein	ATGGAGTACACCTGGCTGGTCCTTGGACCGAAAGGTTCCGGCAAGTCTGCAGTTCTTGCGAACCTGCGATTGAACTGGCGAGACCGCTTCGATCGATTCTTCAACAATTGGGATCTGTCGAGTTTTGCAGTTGGGGATGTTACGAGCATTGCGACAGGTCAGCCAGCGGGGGCCGCGAGATCGCAGGCCGCCTGGGAATTCCTGTTGCTGCTTAGAATTGTTGAGACGCTTGCCAGCGATAACGGTTTAACTTGTGGCAATTCGTTCACCAAGTTGGAGGCTGGTCTCAGGAAAAGTGGGCTGCTCGCTGGGGACTGGACCAGCAAACTAGCGCAATGGACGGGTGCAACGGTCAAGTTCGACGCGAAGCTTGTGGGGGTGGAGTCCTCCTGGGGGCCGAGAGAAGTTACTCCCCTCGATGTCAGTGCCTACATCAGGCAAGTGCTTGGGGAGGTACACACCGATAGTTCTCATATCGTCGCGCTGGACGGATTGGACTCATTTTTCTTTGAAGTCGATTCCGAGTGGCGATCCCTGGCAGGATTGATGTCGGCTGTGTACTCTGTCAATAGATTCCTGGCGGATCTAAGTCTCAGGGTTCGTGTAATAGTTGCCGCGCGTTCGGACATTATTGACGTGCTTCCCGGTCCTGAAGTGACAAAATTGAAGCCCCATTCCGTGCATCTAGATTGGCACGCTAATGGTATCGGGCCGCGCAACAATTTGTGGAGCCTCTTGACGATGAAGGCGCAGGTTCGATCGCCCGGGGTTCGAAGTATTGTCAGTCAATATTTGCAGACTAGTGTCGCGATTGGGCCGCATACGTCGTTGCCGGAGTTTCTTCTGGATAACACTCGACTGCTTCCGCGCGATGCTGTCGCACTAATGGGGTATCTGCAGAAATGCTATCGCGGCAACAAGCAAGTGACGGAGCAAAGCGCGAAGAAGGCAGTCAGAATGTACTCAGAGGAGTACTTCGTCAGTGAAATTTTCGACAATCTTGCAGGAGTCTTACCTGCGGCCCGCGCTCGGGCTGTCGCGAGTTTCCGCGATGCACTTCGGACCGCACCATCGCGGCTGTTCGATTTCAAGTACATGTGCGAGGAACTGGAGGGAGAAATGACTCCCAGTGAGATCAAATCACTCCTTAAGCAGATGTTCGAAGTCGGAGGCATCGGCGTCAAGAATGGAGCTTATACCGACTTTGTGTTCAGGCGCGTTTCTGGAGCTGGGTTCACGCATCGCTACGAGTTCATGCTCCATGACGCGCTAACACGTGCCTGGAATCGACCATGGCGATGA	MEYTWLVLGPKGSGKSAVLANLRLNWRDRFDRFFNNWDLSSFAVGDVTSIATGQPAGAARSQAAWEFLLLLRIVETLASDNGLTCGNSFTKLEAGLRKSGLLAGDWTSKLAQWTGATVKFDAKLVGVESSWGPREVTPLDVSAYIRQVLGEVHTDSSHIVALDGLDSFFFEVDSEWRSLAGLMSAVYSVNRFLADLSLRVRVIVAARSDIIDVLPGPEVTKLKPHSVHLDWHANGIGPRNNLWSLLTMKAQVRSPGVRSIVSQYLQTSVAIGPHTSLPEFLLDNTRLLPRDAVALMGYLQKCYRGNKQVTEQSAKKAVRMYSEEYFVSEIFDNLAGVLPAARARAVASFRDALRTAPSRLFDFKYMCEELEGEMTPSEIKSLLKQMFEVGGIGVKNGAYTDFVFRRVSGAGFTHRYEFMLHDALTRAWNRPWR				NA	NA	NA	NA	NA
AK001_02920	1824			hypothetical protein	ATGGATTCTGTGAACGACGATATCCACCCGTCATGGTGGGAGGATGTGTTGGCGGAGGCGTCGCTTGACGACCCCTACGAGCCGCCAGAATTGTTGTCAACGCATCTCGAGCGGGCCGCTGCCGATTCGGCTGTCACGGGGCTTCACGAAGTAGTGCTGCAGGTGTTGGCGATGGTGTCGTCAGCGATGCTGAACGCTACGGACTGGTTGGAGCCGTTCGGACCCGCGATGCAGTTTGGCGGTAAGCGGACAGTGGTACCGGCTGACCTGGGTGCTGACCAGGTGGCGTTGCTGGCGCGTATCGCTCCGCTGGTCGAACGTGATGATCTGCGAGCTCGGGTCGCTGATGTCGCCTGGGTCTATGGGGACCGTTCGGACACCGCGATGCTGGACCGAGCCATCGACGCCTACCGTGCCGCGCCGCTGACGGACGATGTGTGGTTCAGCGTAGGGAAGGACGCGTGGGTTCGGGCCTTCGAGCTTGCGGCGCGGCGCGGCGCGGACGGCACGGCCCGGGTTCAGGAAATGTCGGACGCTCTGAAGGCTCAGATCTTGGCCGGCCAGGCAACGGACAACTTCAAGACGGTGGGATTCGCGGAAACCCTGCGCCAGCACGGTCGTGTTGATGCTGCCGGACGCACTGAGGTGCGCGAGGCGCTGTTCGCGCTCGCGGCACAGACGTCGTCGCGATCCCCGCGACTGTCACGCCATCTCGAGCGTGAGGCACTCGCATGGCTCGGCGGTTCGGATGCGGCGGCGGCGAACTCTGCGACCGAGCGCGTTGCGCGGACCTACATCGCAGACGCTGATCTCCGCATCCGGACGGACCCGAAGGCGGGCGCGCTGGTCGAGGGCCATTTCCTGGAGAAGGCCATCGCAGTCCTCCGCACCATCCCGCGGTCCTACCGGCTCGAGAACGGACTCGACGAGCTCATCGACGACCTCCGCACTCGGCTGCGTGAGAGCCGGGAGTCTTCGATGGAGCAGATGATGCGTGTTCGGTCGGATCCGGTCGATCTGACTGACGCCGTGTCCTACGCGCGGTCGCAAGTCTCGGGTCACGTGGACAAGTTCGACGCGCTCGCTGCATTCGCGACGCTCGCACCGCCGCTAGACGAAGCCAGTACGCGCGAGAGCGCCGCGAAGATGCTGGAGGGAACTATCAGCCACATCTTTGGATCCTCGACGTTTTCCTCGGACCTTCGAAAGATCGCCTCAAGGCCCGGGTCTTCTGGTCAGGCCGATGAGGAGGCGGTTTGGGCTGAGATGGTCCGGACGGTGTTCTTTCGTTCCCAATTGATCGGGAAGGGCGTCATCCAGCCGGCGCAAGAGGTCCTGACTGCTGAGCATCGGTTCAGTCGGCAATACATGGTGTCGCTGTGCGTGGAGTCGCCGATGGTGCCCGAGGGACACGAGATGTTGTGGGGCGACGGGCTGGCGCTTGGATTAGGTGGAAACTATGGCGCCGCAGTCTCTGTTCTGGTCCCGCAGTTGGAGCAGGTCGTGCGGGTCATATTGGGGCGGCACGACGTGCACACGTTGTTCGTCGATGAGCACGGCGTGGAGAGTGAGAAGAGCTTGAATGTGCTTCTCGACATGACCGAGACGGAAGACATCTTTGGTGCAGGGATGGTCACGGAGATGAAGGCAATGCTCGTCGTTCAAGGTGGCCCTAATCTGCGCAACGACATCGCGCACGGCCTTGTTGATGACAACTCGGCGTGGAGTTACTCGGCGCTCTATATGTGGTGGTTTTGCCTGCGTTTGGTGACGTGGCCGGTCATCGAGATGATTGACCCTGCTCGGACGCACGCAGCGGAGTAA	MDSVNDDIHPSWWEDVLAEASLDDPYEPPELLSTHLERAAADSAVTGLHEVVLQVLAMVSSAMLNATDWLEPFGPAMQFGGKRTVVPADLGADQVALLARIAPLVERDDLRARVADVAWVYGDRSDTAMLDRAIDAYRAAPLTDDVWFSVGKDAWVRAFELAARRGADGTARVQEMSDALKAQILAGQATDNFKTVGFAETLRQHGRVDAAGRTEVREALFALAAQTSSRSPRLSRHLEREALAWLGGSDAAAANSATERVARTYIADADLRIRTDPKAGALVEGHFLEKAIAVLRTIPRSYRLENGLDELIDDLRTRLRESRESSMEQMMRVRSDPVDLTDAVSYARSQVSGHVDKFDALAAFATLAPPLDEASTRESAAKMLEGTISHIFGSSTFSSDLRKIASRPGSSGQADEEAVWAEMVRTVFFRSQLIGKGVIQPAQEVLTAEHRFSRQYMVSLCVESPMVPEGHEMLWGDGLALGLGGNYGAAVSVLVPQLEQVVRVILGRHDVHTLFVDEHGVESEKSLNVLLDMTETEDIFGAGMVTEMKAMLVVQGGPNLRNDIAHGLVDDNSAWSYSALYMWWFCLRLVTWPVIEMIDPARTHAAE				NA	NA	NA	NA	NA
AK001_02921	234			IS3 family transposase ISBli33	ATGGGTCAGGTCGCCTCCGCGGGCGACAACGCCGCCATGGAGTCCTTCTTCGCGCTGCTGCAGAAGAACGTCCTGAACCGGCGCCGTTGGACCACCCGCGAGGACCTGCGCATCGCGATCATCACCTGGATCGAACGCACCTACCACCGACGCCGACGCCAGACCCGCCTCGGACGATTGACCCCCATCGAGTACGAAGCCATCATGACCACTCAGGTCGCACTCGCCGCCTGA	MGQVASAGDNAAMESFFALLQKNVLNRRRWTTREDLRIAIITWIERTYHRRRRQTRLGRLTPIEYEAIMTTQVALAA				NA	NA	NA	NA	NA
AK001_02922	909	scrK_2	COG0524	Fructokinase	ATGACCGCGGACATGACCGTGACGGTGATCGGCGAGGCGCTCGTCGACGTCGTGCACCGCGCCGACGGCGCCGTCGAGGAGCTGCCCGGCGGCAGCCCCGCCAACGTGGCCCTCACGCTCGGCCGGCTGGGGAGGTCGCCCCGCCTGGTCACCTGCCTGGCCGACGACGCCCGCGGCCGCCGGGTGCAGACCTGGTTGGAGGCCTCGGACGTCGAGGTGGACACCGCACCCCTGCCGCGCACGTCGACGGCGCTCGCGCGACTCGACGCCGGTGGTGCCGCCACCTACGAGTTCGACCTGGCCTGGGACCTCGGTCAGATCGCCGTCCCGCCCGGACAGGTGCTGCACATCGGGTCGATCGCCGCCGTGCTGGAACCAGGCGGAACCGCGGTGCTGCGCGCGGTGCGTGCGGCGTCGGGCCTGGTCACCTACGACCCGAACGTGCGCCCCACCATCACCCCCGACCGGGAGGCCACCCGTGCTCGCGTGGAGGAGATCGTCGCCGCTGCGGACGTCGTCAAGGTCAGCGACGAGGACCTGGCCTGGCTGGTGCCGGGAATCGATCCGGTCGAGACCGCCTCGCGCTGGTCGCGGTCCGGACCCGCGCTGGTCGTCATGACCGCCGGAGGTGAGGGTTCGTGCCTGCTGCGCCACGGCGTGCAGGTCGCCCACGTGCCGGTGCCGTCCGTGACCGTCGTCGACACCGTCGGGGCAGGGGACACGTACATGGGCGGCCTGATCGACGGCCTGCTGACCCTCGAGCTCGACGACGCCGAACGGATCGCGGACGCCGCCGCCGACCGACTGGAGGCCGCCTGCGCCCACGCCGCCCGTGCCGCCGCGGTCACCGTCTCGCGGCCCGGAGCCGACCCGCCGCGCCGGGACGAGCTCGGCCGACCGCACATCTGA	MTADMTVTVIGEALVDVVHRADGAVEELPGGSPANVALTLGRLGRSPRLVTCLADDARGRRVQTWLEASDVEVDTAPLPRTSTALARLDAGGAATYEFDLAWDLGQIAVPPGQVLHIGSIAAVLEPGGTAVLRAVRAASGLVTYDPNVRPTITPDREATRARVEEIVAAADVVKVSDEDLAWLVPGIDPVETASRWSRSGPALVVMTAGGEGSCLLRHGVQVAHVPVPSVTVVDTVGAGDTYMGGLIDGLLTLELDDAERIADAAADRLEAACAHAARAAAVTVSRPGADPPRRDELGRPHI	PGPT0017625_653	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847	NA	NA
AK001_02923	1251	yihS_2	COG2942	Sulfoquinovose isomerase	GTGATCACCTGGACCCGACGGCCCGAGCACCGTGCCTGGCTGCTCGCCGAGCGCCACCGGTTGCTCGCCTTCGGTCGGCGGACCGCGTTACCCGGCGGCGGGGCGGCCTGGCTCGATGCCGACGGCCGGCCCGACCTGTCGCGGGGGGTGCAGACGTGGATCACGGGGCGCACCGTGCACACCTACGCCCTGGGTGCGCTGCTGGGCGTTCCGGGGGCGTCCGCCGTTGCCCGCGGCGCGATGGCCGGGTTGGCCGGACCCGGTGCGCCGTTGCACGACGACGAGCACGGCGGCTGGTTCGCGCAGGTCTACGACGGCGGCGCGGTGCAGGACGCGAGCAAGCAGTGCTACCAGCACGCGTTCGTCGTCGTGGCCGCCTCGACCGCCGTCGCCGCCGGCCTGGACGGTGCCCAGGGACTGTTCGACGAGGCGACCGAGACGTTCCTCGACCACTTCTGGGACTCCGAGGCCGGGATGTGCGTCGACGCCTACGACCGGTCGTTCACCGACCTGGACCCCTACCGCGGCATCAACGGCAACATGCACGCCGTCGAGGCGATGCTCGCCGCCGGTGACATCACCGGTGACGCGGCCTGGCACGGCCGGGCGCTACGCATCGCACGGCGGGTGATCGCCGAGGCCCGGGCGTGCGACTGGCGCATCCCCGAGCACTACGACGCGACGTGGACCGCCGATCTGGACCTGAACCGGGACCGTCCCGACGACCCGTTCAAGCCATTCGGCGCCACCGTCGGTCACGGGTTCGAGTGGGCGCGCCTGCTGCTGCACCTCGAGGCGAGCACCGGCGCCGACGACCTGCTCGAACCAGCCCGAGCGCTGTTCGACCGCGCCGCTGCCGACGGTTGGGCGGTCGACGGCCACGACGGGTTCGTCTACACCACCGACTGGACCGGCGCCCCGGTGGTGCGCGACCGGATGCACTGGGTGGTCGCCGAGGCGACGGCGACCGCGGCCGCCCTGCACGCCCGGACCGGCGACGACGCCTACGCGCGCTCCTACGCGACCTGGTGGGACCACGCGGCGGCCGCGTTCCGTGACCTCGACCGAGGCTCCTGGCACCACCAGCTCGACCCGTCCGGCGTCCCGACGGACACCGTGTGGCCGGGCAAGCCAGACCTCTACCACGCGGTCCAGGCGACGTTGCTGCCCGTGGCGCCGCTCGCACCAGGACTCGCCGTGGCGGCACGGGACGGACTGATCCCGTCGGTCCCGACCGGGGAGAACGCATGA	MITWTRRPEHRAWLLAERHRLLAFGRRTALPGGGAAWLDADGRPDLSRGVQTWITGRTVHTYALGALLGVPGASAVARGAMAGLAGPGAPLHDDEHGGWFAQVYDGGAVQDASKQCYQHAFVVVAASTAVAAGLDGAQGLFDEATETFLDHFWDSEAGMCVDAYDRSFTDLDPYRGINGNMHAVEAMLAAGDITGDAAWHGRALRIARRVIAEARACDWRIPEHYDATWTADLDLNRDRPDDPFKPFGATVGHGFEWARLLLHLEASTGADDLLEPARALFDRAAADGWAVDGHDGFVYTTDWTGAPVVRDRMHWVVAEATATAAALHARTGDDAYARSYATWWDHAAAAFRDLDRGSWHHQLDPSGVPTDTVWPGKPDLYHAVQATLLPVAPLAPGLAVAARDGLIPSVPTGENA				NA	NA	NA	NA	NA
AK001_02924	1020	ccpA_6	COG1609	Catabolite control protein A	ATGAACGATGACGCCCGCGCCCGGGCCTCGCGTCGGGGCCCCCGCGCGACCCTCGCCGACGTCGCCCGGATGGCGCGGGTGAGCCCCAAGACGGTCTCCCGCGTCGTGTCCGGCTCATCGCACGTGGCCCCGGCCACCCGCCAGGCCGTGCTCGACGCCGCCGAGAGCCTCCGGTTCCGGCCCAACCGGCTCGCGGCCGGGCTGCGCGACGGCGGCGTCTCGCGCAGCGTGGGGTTCGTCGTCGGCGACCTCGGCAACCCGTTCTACGCGGCCGTCGCCGCCGGGATGGAGCGAGAGCTGTCCGCCCACGGGCTCACGCTCGTCCTCGCCGCCACCGAGGACGTCGCCGACGCCGAACGCACCGCCGTCGACGCCCTGCTCGCAGAACGGGTCCGCGCCCTGGTCGTGGTGCCCATTGCTCCCGACCAGTCCGCCCTCGCGCACGAACAACGCCTCGGCACCCCAGTCGTCGCCCTCGACCGACCCGTGCGCGGGCTGGACGCCGACACCGTGGTGCTCGACAACATCGGTGGCGCCCGCGAGGCCGTCCGAGCGCTGGCCGCGGCGGGACACCGCGACATCGCGTTCCTCGGAACGCCTGCCACCCTCGTCACGCTCCGCGAACGCCGCGAAGGGTACCGGCAGGGCCTGCGCGAGGCCGGCATCGCGACCCCGTCGGCATGGGAGCGACTCGGCGACCACGGCGACGACCGGCTGGTCGACGAGGTCCGGGCCCTCACCGACGGTCAACAACGGCCGACAGCGATCCTGGCCGCGAACAACCGGGCGAGCACCGCCGTCGTCCGTGCCCTCGGCCCTGATCCGGAGCTGGTGGTCGTCGGCTTCGACGACTTCGAGCTCGCCGATCCCCTCGGCATCAGCGTCGTCGCCTACGACGCCGCCCGCCTCGGCCGAGAGGCCGCCCGCTGCGTCCTCGATCGCCTCGACACCCCCGGTGCGCCATCCCGCCGTATCGTGGTGCCGACGCAGCTGATTCGCCGCGGGCGCCTCACCCCGTGA	MNDDARARASRRGPRATLADVARMARVSPKTVSRVVSGSSHVAPATRQAVLDAAESLRFRPNRLAAGLRDGGVSRSVGFVVGDLGNPFYAAVAAGMERELSAHGLTLVLAATEDVADAERTAVDALLAERVRALVVVPIAPDQSALAHEQRLGTPVVALDRPVRGLDADTVVLDNIGGAREAVRALAAAGHRDIAFLGTPATLVTLRERREGYRQGLREAGIATPSAWERLGDHGDDRLVDEVRALTDGQQRPTAILAANNRASTAVVRALGPDPELVVVGFDDFELADPLGISVVAYDAARLGREAARCVLDRLDTPGAPSRRIVVPTQLIRRGRLTP	PGPT0017992_535	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_02926	399	ytrA_2	COG1725	HTH-type transcriptional repressor YtrA	GTGGCGCTGCGCATCGCGCTGACCGGCAGCACGCCACCGGCGGACCAGATCCGCGACCAGATCCGGGGCCTCGTCACCACGGGGCAGCTCGGCGCCGACGAGCGCCTGCCCTCGGTCCGCCAGCTCGCCGCCGACCTCGGGGTGGCGGCCGGCACCGTGGCCAAGGCGTACCGCTCGTTGGAGACGGACGGGGTGCTGGTCAGCCGCATCGGGTCCGGCACCCGGGTCAGCGGCAAGGCGGCTGCGGTACCGCGAGCGGTCGTCGAGGGCGCGCAGGGTCTGGTGCGGGCCGGGCGCGGAGCGGGGATCGACCTGGACGAGGCGGTCCGGGTGCTGCGAGCCGTCTGGGCGGACGGTACGCCGGGAGAACTGCATCCGGAGGAGCCGGCCCGGGGATGA	MALRIALTGSTPPADQIRDQIRGLVTTGQLGADERLPSVRQLAADLGVAAGTVAKAYRSLETDGVLVSRIGSGTRVSGKAAAVPRAVVEGAQGLVRAGRGAGIDLDEAVRVLRAVWADGTPGELHPEEPARG				NA	NA	NA	NA	NA
AK001_02927	924			hypothetical protein	GTGCCGCTGTTCCTGTTGCTGACGTTCTCGCAGGAGGCGGTCGGGCTCCTGGCTGCCCTCGTGGTCCTCGTCGTCCGTCGACGGTCCGCCCGCGCACCGCAGGTCACGACGGGCGTCCGCGCGGTGGTGCTCTCCGGCCTGGCGCTCGCCCTGGCCTTCCTGGCCGCGCGCCAGTGGAGCGGCATCGGGCCCTTCGTGAGTATCCCCGACACGCTGCGCGGGTTGTACGGCGCCACCCTCTACACCGGGCCGCTGATCGCCGGACTGATCGCCCTGGCCGTGTTCCTCGTTCCGGTCCGTCGTCGTCGGTCCGGTCGCTCCGCGGTCCTGGCCCGGCGGACCCCTCTGACCTTCGTCCGACCGTGGTGGCTCGTCGCGGCGTCCATGGTGCTGGCCGTGGTCGTCGTCCTCACGGTCGCCCTGGGTATCGTCTCCCGGCCCGACGACCAGGGGCACTACCGGATGTTCCTCATCGAGGCCGGGGAGACCGCGGTCGGGACGCACATCTACGGCTGGTACTACTCCGTGCCGTGCCTCGTGCTGATCGCCGTCCTGCTGCTGCTGGCGTACCTCGACCTCGTGCTCGTCGCGCGTCCGGCGGTGGTGGGCGACCACGAGACGGACGTGGCCCAGCGGACCTGGCGCTCACGCGCCGTCCTCGGGGTCGTCGTCGGCGCGCTGCTGCTGCACCTGTCCGCGGTCCTCCACTCGCTTCGCGGCGCACTGATGGTGCGCGGCTCCTCGTCCGAGACCGGATCGCTGCAGAGCGCGTTCGCGCCGCTCGCGGAACCCCTGCGGCTGGCCGGGGACGTCGTCCAGGCCGGCGGTTGGTTCGTGTGGTTCTTCCTGCTGCTGGCGACGCTGGTGGCCCGCCGCGCCGCGCGGCAGCGTGAGGCGGCTCCCGCACCCGTGACGGAGGGCTGA	MPLFLLLTFSQEAVGLLAALVVLVVRRRSARAPQVTTGVRAVVLSGLALALAFLAARQWSGIGPFVSIPDTLRGLYGATLYTGPLIAGLIALAVFLVPVRRRRSGRSAVLARRTPLTFVRPWWLVAASMVLAVVVVLTVALGIVSRPDDQGHYRMFLIEAGETAVGTHIYGWYYSVPCLVLIAVLLLLAYLDLVLVARPAVVGDHETDVAQRTWRSRAVLGVVVGALLLHLSAVLHSLRGALMVRGSSSETGSLQSAFAPLAEPLRLAGDVVQAGGWFVWFFLLLATLVARRAARQREAAPAPVTEG				NA	NA	NA	NA	NA
AK001_02928	216			hypothetical protein	GTGATCAGCACCGGCCTCGCGGTCGCCGACGGCTTCCGCTGGGGGAACCGGCTCTACCTGTCGACGCAGTTCGCCGACGTCGACCTCGCCTCCGCGGCCGACCTGGCCGCGCACGCCCGGGACGCCCTGACGCACGGCCTGGTCTGGCTCGTCGTCGCGGCCCTGGCGGCCGTCGTCGCGTGGCTCCTGCCTCCGCGCCCACGGCCCGCCGCGTAG	MISTGLAVADGFRWGNRLYLSTQFADVDLASAADLAAHARDALTHGLVWLVVAALAAVVAWLLPPRPRPAA				NA	NA	NA	NA	NA
AK001_02929	975	galR	COG1609	HTH-type transcriptional regulator GalR	ATGCCCGTCACCAGTGCCGACGTCGCACGCGCCGCCGGCGTGTCCCGGACCACCGTCAGCTACGTCCTCAACGACACCCCCGGCACGAACATCTCGACCGCGACGCGTGACCACGTCCTGGCCACGGCGGCGGACCTCGGGTACGCGCCGTCGGCCGCCGCCCGTGCTCTGCGCCGGGGCCAGAGCGACCTGGTCGTTTGCGTCCTGCCCGACTGGCCCACCGGCCCCGTCGTCGACACCGTCCTGGACCTGCTCACCGACAACCTGGCCCGACGCGGACTCTTCCTGCTCGTGCACCACCACCGGTCGACGCGGCCGCTGCGCGAGCTGTGGAAGGCCGTGACACCCCGCGTCGTCGTCGGCCTCACGCACTTCCCCACCGAGGACCTGCGGGCGCTGCGTCAGGCCGGCATCGAGGTCGTGGGGGCAGGGTCCGTGGACGACGGCGGACACCCCGGCATCGACGCCGGCAACCAGCGGGGCCTCGGCGAGCTGCAGGTGGAGCACCTGGTGGCGCAGGGGTACCGACGCCTGGCCATCGCCACCACGCCGGACGATCGGCTGCGCGAGTTCGCCGAGCTGCGCACGGACGGCGTGCGCCGGGCCTGCGCGCAGGCCGGACTGCCCGAGCCGCAGCTCGCCGTCGTCGACCCCGGCGTGCCGGCGACGGAGGTCGTGCGGCGGTGGTCGCGTGACGGCGTCGACGCGGTCGCCTGCTACAACGACGAGGTCGCGCTCGCCGTGCTGGCCGGGGCGCGTGCGGAGGGCGTCGAGGTGCCCGGTCGCCTCGCGGTCGTCGGGCTCGACGACGTGCCGGCCGCCGCGCTGGCAGATCCGCCGCTGACGACGATCGCCCAGCCCAGCGCCGCGCAGGCGCAGCACCTGGCCGCGAGCGTGGAGGCCGTGCTGGACGGCAAACCCCTGCCGCCGGGACCCACGGAGCCGAGCCGAGTCGTCGTCCGCGCCTCGACTTGA	MPVTSADVARAAGVSRTTVSYVLNDTPGTNISTATRDHVLATAADLGYAPSAAARALRRGQSDLVVCVLPDWPTGPVVDTVLDLLTDNLARRGLFLLVHHHRSTRPLRELWKAVTPRVVVGLTHFPTEDLRALRQAGIEVVGAGSVDDGGHPGIDAGNQRGLGELQVEHLVAQGYRRLAIATTPDDRLREFAELRTDGVRRACAQAGLPEPQLAVVDPGVPATEVVRRWSRDGVDAVACYNDEVALAVLAGARAEGVEVPGRLAVVGLDDVPAAALADPPLTTIAQPSAAQAQHLAASVEAVLDGKPLPPGPTEPSRVVVRAST				NA	NA	NA	NA	NA
AK001_02930	603			hypothetical protein	ATGGCCGACGACGCGGCGACGCCGCTCTCGCAGCGCACCGCCGGGACAGCCCGCCGACTGTGGGGGCTCGTCTATCTGCGGGCCGCCGCCTATCTCGTCGTCGGCGTCCTGCTGCTGGTCAACCCGGACGAGGGCATCACCTGGCTGCGCTGGCTCGTGGGACTCGTCATCGTCGCGCAGGGGGCCCTGCTCGCGATCGAGAACCGGCCGGCGAAGGAGTCGGGGCCGGCCGCCCAGGAGGTCACCGTCCGGTTCGTCGCCGGGCTCGCGAGCGTCGTGGCCGGCCTCCTGGTGGTGTTCTGGCCCTCCATGACCGCCGACCTGCTCGTCCTCGTCGTCGGCGTCTGGGCCTGCGTGGCCGGCGCGATGGGCATCGTGGCCGGGCTGCGCGGCCGGACCGCACGCACGATGGCCTGGGATTGGCAGCTCGTCAACGCGGTGCTGTGGGTCGTGCTCGGTGTCGTCCTGCTCGCGCAGCCCGCCGAGGGCGCGACGACGATCGCCCTGCTGCTCTCGCTGTACCTGCTGCTCTCCGGTGCCGTGCTCCTCGTCGGCGCGCTGGCGACCAGCACCCGGCAGAAGGATCTCGACGCCGCCACCTGA	MADDAATPLSQRTAGTARRLWGLVYLRAAAYLVVGVLLLVNPDEGITWLRWLVGLVIVAQGALLAIENRPAKESGPAAQEVTVRFVAGLASVVAGLLVVFWPSMTADLLVLVVGVWACVAGAMGIVAGLRGRTARTMAWDWQLVNAVLWVVLGVVLLAQPAEGATTIALLLSLYLLLSGAVLLVGALATSTRQKDLDAAT				NA	NA	NA	NA	NA
AK001_02931	1200	thcD_2		Rhodocoxin reductase	ATGGACCCGATCGTCGTCGTCGGAGGTGGTCTCGCCGCCGCCCGCGCCACCGAGGGCCTGCGCCACGGCGGCTACGACGGCCCGCTCGTGGTGGTGGCCGGCGAGTCCGCCGTCCCCTACGAACGCCCGCCCCTGTCCAAGGAGTACCTGCGCGGCGAGGCCGAGAAGTCCGACCTGCGCCCCCTCGACGCCGACTGGTACGCCGACCAGAGCGTCGACCTGCGCACCGGCACCAGCGCCACCGGGCTCGACGTCGGCGCGCGGTCCATCACGACGGCGCCCGGCGGGTCCCAGCGGTACTCGCGGCTGATCCTGGCCACCGGCTCGCGCGTGCGGCGGCTGGACGTGCCGGGCGCCGAGCTCGACGGTGTCCACTACCTGCGCTCCGTGCGTGACGCCGACCGGCTCGCCGAGGCGCTCGACGACGACGGCCCGGTCGTGGTGGTCGGCGACGGGTGGATCGGCATGGAGGTCGCGGCGTCGGCCCGTCAGCTCGGCCGGGACGTGGCAGTCGTCGGGCGCGGCCCGCACCCGCTGGCCTCCCTCGGCGACGAGGTCGCCCGGATCTTCACCGGCGTGCACGAGGACAACGGCGTGCGCCTCCTGCACGGCCGGACGGTCATGTCCCTGCGCAGCGACGACGGCCGGGTACGCGGCGTGGAGCTCGACGACGGCACCGTGCTCGACGCCCGCACCGTCGTCGTCGGCATCGGGGTCACCCCGGAGATCGGGCTCGCCGCCGAGGCGGGCCTCGACCTCGTCGACGGCTTCGGCAGCGGGATCGCCGTCGACGGCACGCTGCGCACCTCCGCACCGGACGTGTGGGCCGTCGGCGACATCGCCGCCGTCCCGTCGCGCCGGTACGACCGGCTGCTGCGCATCGAGCACTGGGCCGTCGCCGACGAGACCGGCAAGCACGCCGCCCGGTCGGTGCTGGGCTCCGGCGAGCCGTACGACGTGCTCCCCTACTTCTTCTCCGACCAGTTCGACCTCGGCATGGAGGCCAAGGGCCTGACCGAGGGCGAGGTCGTGATCAGCGGGTCCGCCGAGGACCGCGAGTGCGTCGTGTTCTGGGTCGACGGCGAGCGCGTCAACGGCGCGATGGGCGTCAACGTCTGGGACCGGATGGACGACGCCGAGGAGCTGATCCGCCGCGACGGCCCGGTCGACCGGCGCGAGCTGGAACGCTTCGTCGACTGA	MDPIVVVGGGLAAARATEGLRHGGYDGPLVVVAGESAVPYERPPLSKEYLRGEAEKSDLRPLDADWYADQSVDLRTGTSATGLDVGARSITTAPGGSQRYSRLILATGSRVRRLDVPGAELDGVHYLRSVRDADRLAEALDDDGPVVVVGDGWIGMEVAASARQLGRDVAVVGRGPHPLASLGDEVARIFTGVHEDNGVRLLHGRTVMSLRSDDGRVRGVELDDGTVLDARTVVVGIGVTPEIGLAAEAGLDLVDGFGSGIAVDGTLRTSAPDVWAVGDIAAVPSRRYDRLLRIEHWAVADETGKHAARSVLGSGEPYDVLPYFFSDQFDLGMEAKGLTEGEVVISGSAEDRECVVFWVDGERVNGAMGVNVWDRMDDAEELIRRDGPVDRRELERFVD	PGPT0019730_2017	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529	NA	NA
AK001_02932	1983	dipZ	COG0785	Protein DipZ	ATGGAGACGCTCATCCTCATCGGTCTGCTCGGTGGCCTCGTCACCGGCATCTCGCCGTGCATCCTGCCGATGCTGCCGGTCATCTTCTTCGCCGGCGGCGTCGAGGGGGCGCGGGACCGGGCCGCGACGGGTGAGTCCTCCTCGGACTCCGGAGAGACGCCGGGGCGTGCCGGCGTCGACCCGGCCCTCTTCGCCGGTGCGCCGACCGCCGTCCGGGTCGACCGTGCCGGCCGCGTCTCCAGCAGTCCGCCGGCTCCCTCCGGGGGCACGGCCACGCTCGCGCTCACCGGCGGCAGGCCGTCCGCGCACGACGGCGCCACCTCGCCGCAGCCGGTCGTCGCCCGCGGTGCCGAGCCCCGGCACCGCCGTCGGCGGGCGCCCCGGTCCTGGCGTCCCTTCCTGGTGATCGCGGGCCTGGTCGTCAGCTTCAGCGTCTTCACGCTGCTCGGCTCGCTGATCCTCGGCGCGCTCGGGCTGCCGCAGGACCTGCTGCGCTGGCTCGGCATTGCCCTGCTGACCGCGATCGGCGTCGGCATGATCGTGCCCCGGTTCGAAGGGGTGCTCGAGCGGCCCTTCCAGCGCATCGCCTCCCTGGGGTCGCGGCGCTCCCCGCGCCAGGACCGCGGCGCTATCCTCCTGGGTCTCGGTCTGGGCGTGCTGTACGTGCCGTGCGCCGGGCCCGTGCTGGCCGCGATCACCGTGGCCGGCGCCACCGGGCGGATCGGACCCGGGACGGTCGCGCTGACCGTGAGCTTCGCCGTCGGCGCCGCGATCCCGCTGCTGGTCTTCGCCCTGGCCGGACGGCGGGTGGCCGAGCGGGTGCGCGGGTTCCAGCGGCACCAGCGCGGGATCCGCATCGGCGGCGGCGTCGTGATGATCGCGCTGGCCGGCGCCCTCGCGCTGAACCTGCCCGCGCAGCTCCAGCGAGCCCTGCCGGACTACACCGGCACCCTGCAGCAGCAGATCGACGCCAACGAGGACGTCCAGGACGCCCTGGAGCTCGGCGGCATCGTCACCGACGCCAACCGCGAGCTGTCCAACTGCACCAGCGGGGACGCCGAGCTGGCCGAGTGCGGCACCGCGCCGCCGCTGACCGGCATCACGCAGTGGCTCAACACGCCGGACAACACCCCCGTGGATCTCGAGGACCTGCGCGGGACGGTGGTGCTCATCGACTTCTGGACGTACTCGTGCATCAACTGTCAGCGTGCGCTCCCGCACGTCAACGCCTGGTACGACCGCTACGAGGACGCCGGGCTCGAGGTGATCGGCGTGCACACCCCCGAGTTCGCGTTCGAGCGGGAGACCCGCAACGTGATCGCCGGCGCCGAGGATCTCGGCGTCGACCACCCGATCGCGCAGGACAACGCCTACTCGACGTGGACCGGCTACCGGAACCGGTACTGGCCCGCGGAGTACCTCGTCGACGCCGACGGCACGGTGCGCTACTTGAAGTTCGGCGAGGGGGACTACGCCACGACCGAGCAGCACATCCGCGACCTGCTGCGCGAGGCCGACCCCGACGTCGCGCTCCCCGCGCCGACGGACATCGAGGACACGACCCCGGACGCCGACACGACGCCGGAGACGTACCTCGCGCTGAACAAGGTCTTCAACTATGCCGGGCCGACCGACTACGGCAGCGGAGAACGTCGCTTCGAGGCGCCGGTGGAGCAGCCGGAGGACACCTTCTCCCTCGACGGCCGGTGGGACGTCGACTTCCAGGGCGCGACGGCGGTGTCCGACGACGCGACGTTGCGGCTGGCCTACCGGTCCACCGACGTCTACTCCGTGCTGGGCGGCGAAGGCACCGTGACGGCCCGGGTACTGACCGACGACGGCTCCGTGCGGGCCGAGCGCGAGATCGACGTCGCGGGCAACCCGACGCTGTACGACGTGCTGGGCGGCGAGGAGCACAGCGAGGGCGTCGTGGAGCTCGAGGTGCCCGCCGGGGTGTCCGTGTACACCTTCACCTTCGGCTGA	METLILIGLLGGLVTGISPCILPMLPVIFFAGGVEGARDRAATGESSSDSGETPGRAGVDPALFAGAPTAVRVDRAGRVSSSPPAPSGGTATLALTGGRPSAHDGATSPQPVVARGAEPRHRRRRAPRSWRPFLVIAGLVVSFSVFTLLGSLILGALGLPQDLLRWLGIALLTAIGVGMIVPRFEGVLERPFQRIASLGSRRSPRQDRGAILLGLGLGVLYVPCAGPVLAAITVAGATGRIGPGTVALTVSFAVGAAIPLLVFALAGRRVAERVRGFQRHQRGIRIGGGVVMIALAGALALNLPAQLQRALPDYTGTLQQQIDANEDVQDALELGGIVTDANRELSNCTSGDAELAECGTAPPLTGITQWLNTPDNTPVDLEDLRGTVVLIDFWTYSCINCQRALPHVNAWYDRYEDAGLEVIGVHTPEFAFERETRNVIAGAEDLGVDHPIAQDNAYSTWTGYRNRYWPAEYLVDADGTVRYLKFGEGDYATTEQHIRDLLREADPDVALPAPTDIEDTTPDADTTPETYLALNKVFNYAGPTDYGSGERRFEAPVEQPEDTFSLDGRWDVDFQGATAVSDDATLRLAYRSTDVYSVLGGEGTVTARVLTDDGSVRAEREIDVAGNPTLYDVLGGEEHSEGVVELEVPAGVSVYTFTFG				NA	NA	NA	NA	NA
AK001_02933	636			hypothetical protein	ATGAGCGACATCTGGCGATTCGACGGGCGCATCCTCGGCGTCGGGACGGCGTCCGGGACGCGGGTCGTGGTCGGGATGTGGGACCGCTCGCCGTTCGGGGCCTTCGCCGACGCGATGGTGGAGGACGCCGCCGGGCGCCGCCTGCTGCTGGCCCCGGGACACGTCGCCGACTTCGTCGCCACGACCTACGGGTTCGACGACGTCGTCGAGACGCCGGTGCGGGTCGGGCACGACGGCGGCGGCGCGGCCGACGGCGGCACCCCGGCGCCGGGCGGGTGGCTCACCGCCGAGGCCGGTCCGCTCCGCCTGCGTGCCGCCGTCGGGCACCGCACCGCGCTGGGCCGACTGCTCCGGCTGGTCCCGCAGCGGCTCGCCACCGCGCCGTCGTTCACCGTGCTCACCGACCCGGTCGCCCGGCTCGTGCTCGACGGGGTCCGGACGCGGGGCAGCGCCGGGAACGGGCGGCTCGAGACCTACGGGGCCACGGACGTCCACGCCGTCACGCAGGTCCACGCCACCTGGGAGGGGGAGGAGCTCGGGGCGCTCGCGGACGTCGACCCGCCGGTCCGCTTCGGGTTCGGCTCGACGCCCCGCTCACCGGTCCTGACGAGCGTCACCACGACCGTGCGGGGCTGA	MSDIWRFDGRILGVGTASGTRVVVGMWDRSPFGAFADAMVEDAAGRRLLLAPGHVADFVATTYGFDDVVETPVRVGHDGGGAADGGTPAPGGWLTAEAGPLRLRAAVGHRTALGRLLRLVPQRLATAPSFTVLTDPVARLVLDGVRTRGSAGNGRLETYGATDVHAVTQVHATWEGEELGALADVDPPVRFGFGSTPRSPVLTSVTTTVRG				NA	NA	NA	NA	NA
AK001_02934	708			hypothetical protein	ATGAACGCATCCACTCGCACGCGCACCGCCGCCGCCGGCTTCGCCACCCTGGCCCTGCTGGCCCTGGGCGCCTGCTCCTCCGACGACACCGGCGACGACATGTCGGGCTCGGAGGACACGATGACCGAGGAATCCATGGAGGAGGACATGGAGTCGGAGGACGAGATGGCCGAGGAGGACATGGAGTCCGAGGACGACATGACCATGGACCCCGCCGCGAACCTCGTCGGCCCCGGCTGCGAGGACTACGCCTCGCAGGTGCCGGACGGCGCCGGCTCGATCGAGGGCATGTCCACGGAGCCCGTCGCGGTGGCCGCCTCCAACAACCCGCTGCTGACCACGCTGGTCTCCGCCGTCAGCGGTGAGCTCAACCCCGACGTGAACCTCGTCGACACCCTCAACGGTGGCGAGTTCACCGTGTTCGCCCCGGTGGACGACGCCTTCGCGGCCGTCGACGCCGAGACCATCGACGCGCTGTCCACCGACGCCGACCTGCTGACCTCGGTCCTGACCTACCACGTCGTCGAGGGCCAGGCGCTGCCCGAGGACGTCGTCGGTGAGCACACCACCGTCCAGGGCGACACCGTCGAGGTGACCGGCGAGGGCGACGAGCTCATGGTCAACGACGCCAACGTCGTCTGCGGTGGCGTCATGACGCAGAACGCGACCGTCTACCTCATCGACTCGGTCCTCATGCCGTCGATGTGA	MNASTRTRTAAAGFATLALLALGACSSDDTGDDMSGSEDTMTEESMEEDMESEDEMAEEDMESEDDMTMDPAANLVGPGCEDYASQVPDGAGSIEGMSTEPVAVAASNNPLLTTLVSAVSGELNPDVNLVDTLNGGEFTVFAPVDDAFAAVDAETIDALSTDADLLTSVLTYHVVEGQALPEDVVGEHTTVQGDTVEVTGEGDELMVNDANVVCGGVMTQNATVYLIDSVLMPSM				NA	NA	NA	NA	NA
AK001_02935	972			hypothetical protein	ATGTCTGCCGAGGACGCCACGTTCACCTGGATCCCGGATCCGACCTGCGGTGACTGGGTGCGCGCCGCCCTCGACCCCGAGCAGTTCGACGTCCACGTCCAGTGGACGATCCACACGTTCGTCCCGCGGGGCTTCGAGGCCTACGCGCGGGTCTTCCATCCGCTGGAGCGTGAGACGGCCGACGGAGTCGAGCCCGTGCGATGGTCGGAGGTCGCCGCGGCCTTCGGCACGGCGCTGAGCCCGACGGCGGATCTCGACCGCCTCTGCCGTCGTCCCTGGTCGGGGAACGAGGACGTCGTCACGCCGCAGGGGGTGACGCTCGAGCCGCCGACCGAGGGCTGCGTTCCGTCCGCGCTCCTGGCGCGGACCGCCCGTCATCTTGCTGCCCACACGGCAACACCGGACCGTGGGGTCGTCGGTGTCTGGGAGGGGATCGGTGGCCTCGTCTCGTCGGCCGGTCGCTCGTCTCACATGGTCCGCATTCCACCGAGGTGGCTGGCCGTGCTCCTCGCCCCGTGGGACAAGGCTCGGCGTGCCTGGCGGCGGTACCAGATGCGGCCCCGCCGCATCCGTCCCGGTTTCGTGGCCGGCGTCGCGCCACCCCATCCTGACGCGCCGGCCCCCGGCACCGGCATCCTCGACGCCGAGCCGGCGGCGGGGCCGCGTCTCGATCTGCCGTACCGCAGCCACATCCTCTTCACCGGGGGCATCGACCTCTTTGCCGACCGAGGCTGGATCGACGATGCTCCCTGGCTCGACGACATGGACCGTCGCCAGCAGGATCCGTGGACCCCGGCGCTCTGGTGGCCGGACGACCACGCCTGGTTCGTGGCCAACGACACCGACGACGCCTGGACCCTGGTGGCGGGATCCCACGCGCTGGTCGACGCCCTGGTCGCCGACCCTGACCTGGAAGCGCTCGAGCTGCCCGAGGGCGCGGTGCTCGACCGCCCGGAACCGCCGGAGCGGTAG	MSAEDATFTWIPDPTCGDWVRAALDPEQFDVHVQWTIHTFVPRGFEAYARVFHPLERETADGVEPVRWSEVAAAFGTALSPTADLDRLCRRPWSGNEDVVTPQGVTLEPPTEGCVPSALLARTARHLAAHTATPDRGVVGVWEGIGGLVSSAGRSSHMVRIPPRWLAVLLAPWDKARRAWRRYQMRPRRIRPGFVAGVAPPHPDAPAPGTGILDAEPAAGPRLDLPYRSHILFTGGIDLFADRGWIDDAPWLDDMDRRQQDPWTPALWWPDDHAWFVANDTDDAWTLVAGSHALVDALVADPDLEALELPEGAVLDRPEPPER				NA	NA	NA	NA	NA
AK001_02936	792			hypothetical protein	ATGGCTGACAGCACGCACGACGCCTGGGACCTCCTGCCCGCCTACGCGCTCGACGCCGTCGACGACCTGGAGCGCCGCACGGTCGAGCGGCTCCTCGACACCGATCCGGCGGCCCGGCGGGCCCTGGACGAGTACCGCGAGGTGGTCGCGGCCTTCACGGTCAACACCCAGCCGCCTCCCGCGCTGCGCGACGCCGTGATGTCCCGCATCGAGCAGGGGACGACGGCGGCACCCGGCGAGCGCTCCGTGCTCGACGACGGCGCGTGGCCCGGCCCCGACGGCGAGACCCGGACGGGACCCGGCCACTCCTCGCGCGACGGGAACGTCGTGCCGATGGCTGGTCGCCGTCGGCGCTGGGGACTCGTCGCGGCCGCAGCCGCCGCCGTGGTCGCCGTGGCGGTGCCCACGACCGTCGCGATCCAGGCGACCGTCGAGCAGAACCAGCTCCAGCAGCAGGTCGACACCGTCGCCCAGATGATGGCCGACCCGTCGGCGCAGCTCCTGCGCAGCGAGGTCGCCGGTGGTGGCCAGGCGTCCGTGCTCGTCGCGGGCGAGGACTTCCTGTTCAGCGCGAGCGACCTGCCCGACGTCGGTGCCGACTCGACCTACCAGCTCTGGCTGGTCGGTGCCGAGGGCGGCGTGACGTCGGCGGGCCTGCTGGACCCGCAGGAAGGGTCGGTCGAGCAGCTGCTGCAGGGCGTCGACGGCGTCGGGCTGGCGGTGTCGGTCGAACCGGCCGGCGGCTCCGAGCAGCCGACCACGGACCCGGTCGTCGTGCTCGCGGAGGGATGA	MADSTHDAWDLLPAYALDAVDDLERRTVERLLDTDPAARRALDEYREVVAAFTVNTQPPPALRDAVMSRIEQGTTAAPGERSVLDDGAWPGPDGETRTGPGHSSRDGNVVPMAGRRRRWGLVAAAAAAVVAVAVPTTVAIQATVEQNQLQQQVDTVAQMMADPSAQLLRSEVAGGGQASVLVAGEDFLFSASDLPDVGADSTYQLWLVGAEGGVTSAGLLDPQEGSVEQLLQGVDGVGLAVSVEPAGGSEQPTTDPVVVLAEG				NA	NA	NA	NA	NA
AK001_02937	645	sigK	COG1595	ECF RNA polymerase sigma factor SigK	ATGTCCCGGAACGTCCGGGACACACGACGGGAAAGGGTGCGGATCGACCGCGAGCCGTCGGTGGGGCACACTGTCCGAGTGCCATCACCCGAGACGACGCCGCTCGACGACGCCCTCGTGGCGTGCGCCGCAGGGACGCCGGACGCGTTCGGGCCGGTCTACGACGCACTCGCTCCCGCCGCGTACGGCACGGCGATCGGTGTGCTTCGCGACCCGGACCACGCCGCCGAGGTGACGCAGGAGGTGATGGTCGAGGTGTGGCAGACCGCAGCCAAGTTCGATCCCGCCCGCGCCACGGCGCGCACCTGGGTCGTCACCCTGGCCCGCCGCCGGGCGGTGGACCGCGTCCGTGCCGAGCAGGCGCGCCGCGACCGCGACCAGCGCGACCTCGACACGAGCGTCGCCGGCTCCGGTTACGACGTCGTCTCCGAGGACGTCGAGCGTCGCCTTGAGGGTGCCGCGGTGCGGCGCTGCCTCGAATCGCTGACGGGCACGCAGCGCGAGGCCGTCGTCGACGCCTACTACGGCGGGCGCACCTATCGCGAGGTGGCCGAGCGGCTCGGCGCCGCCCTGCCGACCGTCAAGACCCGCATCCGGGACGGCCTGATCCGGCTCCGCGACTGCCTGGGGGTGAACCATGGCTGA	MSRNVRDTRRERVRIDREPSVGHTVRVPSPETTPLDDALVACAAGTPDAFGPVYDALAPAAYGTAIGVLRDPDHAAEVTQEVMVEVWQTAAKFDPARATARTWVVTLARRRAVDRVRAEQARRDRDQRDLDTSVAGSGYDVVSEDVERRLEGAAVRRCLESLTGTQREAVVDAYYGGRTYREVAERLGAALPTVKTRIRDGLIRLRDCLGVNHG	PGPT0014960_7929	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_02938	996			hypothetical protein	GTGCCCGGCCGCCCCCGCCCCCTCTCCCCGCGCCTGCTCCGCCTGGCTGCGCAGCAGGAGGGGCTGCTGTCGGTGCGTCAGTGCATCGGCTCCGGGATGAGCCACGAGCAGATCGCGGCCAGGGTCCGCAGCAAGGACTGGGAACGCCCGGCACGCGGCGTCGTGGACACCGGCCACCCCGCCACCCGGGACCGGGCCGACGACCTGATCGAGCACCGACGTCGCCGGGCCGCCGTGCTCGGGCTCCTCGCGCACCCGGGGTCGGTCGCCACCGGCGTCTGCGCCCTCGTGCTGCACGGCGTCCAGGGCGCACCGATCGAGGTGAGCCCGGAGGTGGCGATGCCGACCGGGGCACCGCGAGCCGCCCGGCCGCCGGTCCGGCTGCGACGCTCACCGGTCCCCTCGTCGGTCGACGTCGACGGGTTCCGCTGCGTTCCCGTCGAGGTGGCGCTGGCCCAGGCCGTCCCCGAGCTGCGCCGTCGGCCTGCCGTGGCCCTGATGGACTCCGCGCTGCACCGCGGTCTCCTGACGCCGAGCGGCCTGGTGGCGGCGCATCGAGCCGCCGCAGGCCGCCGGGGCGTGGCGCGCACGCGCTCGTGGTGGGGGCTGGCCGACGGCCGGGCCGAGTCACCGGCCGAGACGTGGGCGCGCCTCGGCTGCCTCGACGACGGGTTCCCGCCGGACGCGCTGCAGCTCGCCGTCGCCGGCGCCGCGGGCGACGTGGTCGCCCGGGTCGACCTCGCCTGGCGACTCCCCGACGGCACGGCGCTGCTGGTGGAGATCGACGGGCGCGACGTCCACTCCGCACCGGAGGCCGTCTACCGCGACCGCGTCCGGCAGAACCGGATCGACACGTCACGGACCATCGTCCGTCGCTTCACCGGTGCCGACGCCTGGCACGGACGCGTCGGGGCCGAGGTCGCGAGGGTCCTGCGTCCGGCCGGGTGGCGACCCGCGCCGCTGCCCGCCGGCACCGTGCTACGGGTCGATGCCTGA	MPGRPRPLSPRLLRLAAQQEGLLSVRQCIGSGMSHEQIAARVRSKDWERPARGVVDTGHPATRDRADDLIEHRRRRAAVLGLLAHPGSVATGVCALVLHGVQGAPIEVSPEVAMPTGAPRAARPPVRLRRSPVPSSVDVDGFRCVPVEVALAQAVPELRRRPAVALMDSALHRGLLTPSGLVAAHRAAAGRRGVARTRSWWGLADGRAESPAETWARLGCLDDGFPPDALQLAVAGAAGDVVARVDLAWRLPDGTALLVEIDGRDVHSAPEAVYRDRVRQNRIDTSRTIVRRFTGADAWHGRVGAEVARVLRPAGWRPAPLPAGTVLRVDA				NA	NA	NA	NA	NA
AK001_02939	1137	aroG	COG0722	Phospho-2-dehydro-3-deoxyheptonate aldolase, Phe-sensitive	ATGAGCACCACGACCTCCGACACCACCCCTTCCGCGCGCACCACCGACGTCGAGCGAGATACTGAGCTGATGGCCGAGACCTCCGACCTGCGCGTCCGTGCGCTGGACCCGCTGCCCGCACCGCGTTCCATGCGCGCCCGGCTGCCCCTGGGCACCGCCCGCAGCGACCTCGTGACGACCTCGCGGCGCGAGGTGCGCGACGTGCTGCGCGGCGAGGACGACCGGCTCGTCGTCATCGTGGGGCCCTGCTCCGTGCACGACCCGGAGGCCGCCCTCGACTACGCCCGCCGGCTCGCGCCGCTGGCCCGCGAGCTGTCCGAGGAGCTCGTGGTGGTCATGCGGGTCTACTTCGAGAAGCCGCGCACCACGGTCGGGTGGAAGGGCCTCATCAACGACCCGCACCTGGACGGCTCGCACGACGTCCACCACGGCCTGCGACTCGCCCGCGAGGTCCTGCTGGGCGTGCTCGACGCCGGTGTCCCGGCCGCGTGCGAGTTCCTCGAGCCGACCTCTCCGCAGTACATCGCCGACGCCGTCACGTGGGGTGCGATCGGCGCGCGCAACGCGGAGTCGCAGGTCCACCGCCAGCTCGCGTCGGGGCTGTCGATGCCGGTCGGGTTCAAGAACGCCACGGACGGGGACGTGCAGATCGCCGTGGACGGCTGCATCACCGCCGCCAGCGAGCACACGTTCTTCGGGGCGGACGCCGAGGGTCGGGCGGCCGCCGTCGAGACCGCGGGCAACCCGGACTGCCACGTCATCCTGCGCGGTGGCCGGGGCGGTCCGAATTACGGGGCCTCCGACGTCGCGGACGCGCTGGCCGTGGCCCGCACCTCCGGCCTGGGCGGTGCCGTGGAGGAGGGCGTGGTCGTGGACGCCTCGCACGGCAACTCCGGCAAGGACCACGTGCGCCAGGCCGAGGTCGTGCGCGAGATCGCGGCACGCCTCGCCGACGGGGAGCGGGGCATCACCGGGCTGATGCTGGAGAGCTTCCTCGAGGCGGGCGCGCAGAAGCCGGCGCCGCTGGACGAGCTCGTCTACGGCCAGTCGGTCACGGACAAGTGCATGGACTGGGGCACGACGGCGGAGCTCCTGACGGTCCTGGCCGAGGCGGTCCGCACGCGGCGCGAGGCCTGA	MSTTTSDTTPSARTTDVERDTELMAETSDLRVRALDPLPAPRSMRARLPLGTARSDLVTTSRREVRDVLRGEDDRLVVIVGPCSVHDPEAALDYARRLAPLARELSEELVVVMRVYFEKPRTTVGWKGLINDPHLDGSHDVHHGLRLAREVLLGVLDAGVPAACEFLEPTSPQYIADAVTWGAIGARNAESQVHRQLASGLSMPVGFKNATDGDVQIAVDGCITAASEHTFFGADAEGRAAAVETAGNPDCHVILRGGRGGPNYGASDVADALAVARTSGLGGAVEEGVVVDASHGNSGKDHVRQAEVVREIAARLADGERGITGLMLESFLEAGAQKPAPLDELVYGQSVTDKCMDWGTTAELLTVLAEAVRTRREA	PGPT0012920_2943	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATES	BIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626	NA	NA
AK001_02940	501	rppH		RNA pyrophosphohydrolase	ATGCCGATCCCCGACCACGTCGTGTCCCTGCGTGCCCGCGTCGGCACCGACCTGCTCTGGCTGCCCGGCGTCACCGCCGTCGTGCGGGACGACGACGGTCGCGTGCTGCTGGGGCGGCGCGCCGACTCGGGCGAGTGGGCCCTGCCCAGCGGCATCCTCGACCCCGGCGAGCAGCCCGCCGTCGGGATCGTGCGCGAGGTCCTCGAGGAGACCGCCGTGGAGATCGAGGTGACCGCGCTCGCCGCGGTGTTCAGCACGCCCGTGGTCACCTATCCCAACGGCGACCGGACCACGTACCTGGACTCGTTGTTCTGCGCGCGACCCGTGTCCGCCGAGGCCGCCGCCGGTGCCCGGGTGGCCGACGACGAGTCGCTCGCGGTCGACTGGTTCCCCGACGACGAGCTGCCCGACGTCCTCGCGGACTCGGCGCGCGAACGGCTCGCCCTGGAGCGCACCTTCCGTGCCGACCCCGCCGGGGGAGCCCTGTTCGCGCGCCCGTGA	MPIPDHVVSLRARVGTDLLWLPGVTAVVRDDDGRVLLGRRADSGEWALPSGILDPGEQPAVGIVREVLEETAVEIEVTALAAVFSTPVVTYPNGDRTTYLDSLFCARPVSAEAAAGARVADDESLAVDWFPDDELPDVLADSARERLALERTFRADPAGGALFARP	PGPT0024450_28	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117	NA	NA
AK001_02941	735			hypothetical protein	ATGAAGCCGTTCCTGCTGCTGGCGACGCGGCCCGAGGACGTCGCCGCGGACGGGGAGTACGAGGCGATGTGCCGGTTCGGCGGGCTCGCCCCCGACCATCTCCACCGGGTCCGGCTCGAGGCCGACCCGATGCCGCGCGTCGACCTCGACGCCTACTCGGGGGTCATCGTCGGCGGCGGCCCGTTCAACTCGTCCGACCCCGACGACGTGAAGTCGGACGTGCAGCACCGGGTGGAGCGGGAGATGGCGGGACTGCTCGACGAGGTCGTCGACCGTGACTTCCCGTTCCTCGGCGCCTGCTACGGCGTCGGGACCCTCGGCACCTACATCGGGGGAGTGGTGGACCGCCACTACGGCGAGGACGTCGGCGTCGTCACCGTCGAGCTCACCCAGGAGGGCGCGGACGACCCGCTCCTGGCGGGGGTGCCGCCCGCGTTCGCGGCGTTCGTCGGCCACAAGGAGGCGATCCGCGAGCTGCCGCCCCACGCGGTGCGGCTGGCGTTCTCCCCGTGGTCGCCGGTGCAGATGTTCAAGGTCCGCGAGAACGTCTACGCCACCCAGTTCCACCCGGAGCTCGACCTGGCGGGGCTGACCGAACGGGTCCGCGTCTACCGGCACCACGGGTACTTCGACCCGGAGGAGGCGGGGGCCGTCGTCGCGCGGGCGTCGGCCCGGCCCGTCACCGAGCCGATGCGGGTCCTGCGCAACTTCGTGGCGCGCTACGCCCGCGCCTGA	MKPFLLLATRPEDVAADGEYEAMCRFGGLAPDHLHRVRLEADPMPRVDLDAYSGVIVGGGPFNSSDPDDVKSDVQHRVEREMAGLLDEVVDRDFPFLGACYGVGTLGTYIGGVVDRHYGEDVGVVTVELTQEGADDPLLAGVPPAFAAFVGHKEAIRELPPHAVRLAFSPWSPVQMFKVRENVYATQFHPELDLAGLTERVRVYRHHGYFDPEEAGAVVARASARPVTEPMRVLRNFVARYARA	PGPT0021580_6485	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951	NA	NA
AK001_02942	810			hypothetical protein	ATGACCACGACGACCGCTTCGGTGCGCCGAACCGGCAGCCGCGCCGGATGGCGCGGGTTCCGGCGCCTGCTGACCACCGAGTTCCTGGTGTGGTTCCGGGACTTCGCCGCCCCCTTCTTCGGGGTCGTCTTCCCCACGCTCATCCTGCTCGGGGTGGGGTTCCTCATCCCCGGCATGCGCGAGCCGATCCTGGACGCCCCGCCGGACTCGGTCTGGTACGGCATCACCCCGATCGCGACCTACGTGCCCACCATCCTCGCGATGGCCGTCGGTACAGCGTCGCTCACCGTCATGCCCGTCACCCTCGCGACCTACCGTGAGAAGGGGGTGCTGCGGCGGATGTCCACCACGCCGATGCGACCGCAGGGCATCGTCGCGGCGCACCTGGTCATCAACGCGATCACCACGCTCATCGGTGCCGGGCTGGCGCTGCTCGTCGCGGCCCTGGCCTTCGGGGTCCCCGCGCCGCAGCAGCTCGGTGTCGTCGGGCTCGGCTTCCTGCTGGGGATGGCGGTGATGCTCGCGCTCGGCATGCTCGTCGCGGCGGTGGCGCCCCGGGCGTCGGCCGCCAACGGCATCTCGATGTCGATCTACTTCCCGATGCTGCTGCTCGCGGGGGTGTGGACGCCCGGACCGGTCATGCCGGACCTGCTGCAGCAGATCGGCCAGTTCAGCCCGCTGGGTGCCGCCGCGCAGGCGTTGTCGATCGGGTGGTTCGAGAGCGGGTTCCCGCTGCTGCAGCTCGTCGTCATGGCGGTGTGGACGGCGGTGCTGCTGCCGCTGGCGATCCGGCTCTTCCGCTGGACCTGA	MTTTTASVRRTGSRAGWRGFRRLLTTEFLVWFRDFAAPFFGVVFPTLILLGVGFLIPGMREPILDAPPDSVWYGITPIATYVPTILAMAVGTASLTVMPVTLATYREKGVLRRMSTTPMRPQGIVAAHLVINAITTLIGAGLALLVAALAFGVPAPQQLGVVGLGFLLGMAVMLALGMLVAAVAPRASAANGISMSIYFPMLLLAGVWTPGPVMPDLLQQIGQFSPLGAAAQALSIGWFESGFPLLQLVVMAVWTAVLLPLAIRLFRWT	PGPT0006730_14107	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
AK001_02943	987	drrA_3		Daunorubicin/doxorubicin resistance ATP-binding protein DrrA	ATGACCGAACCCGTCGTGGAGGTCAGCCACCTCCGCAAGACCTACGGCGACAAGGTCGCCGTCGACGACGTGTCCTTCGCCGTCAGCCCCGGGGAGATCTTCGGGATCCTCGGGCCCAACGGGGCCGGCAAGACCACGGCCGTCGAGACCCTGGCCGGCATGCGCCGGGCCGACGGCGGCACCACCCACGTGCTGGGTCACGACACCCAGAAGCACCCCACGGCCGTCCGCGACGTGCTCGGCGTGCAGCTCCAGGAGGCGACGCTGCACGACAAGATCACCGTGGGAGAGGCCATCCGGCTCTTCGCCGGTTTCTACCCCGCCCCGGCCGACCCCGACGAGCTGCTCGCGCTGCTGGACCTGACCGACCACGCGGACAAGCAGTTCCGCAACCTCTCCGGGGGACAGAAGCAGCGGCTGTCGATCGCGCTCGCCCTGGTCGGCAACCCGCAGGTCGCCATCCTCGACGAGCTCACCACCGGGCTCGACCCGCAGGCCCGCCGCAACACCTGGGACCTCATCGACCGAGTGCGCGACACCGGCGTCACCATCCTGCTGGTCACGCACTTCATGGACGAGGCCGAGCGGCTGTGCGACCGGCTCGTGGTCATCGACGGCGGGCGCATCGTGGCCGAGGGGACGCCCCGCGGACTGATCGACGGCCTCGAGGGTGACCGGACCGTCGTCCTGCGCTTCGCCGACGAGGTCGTCGGCGCGGCCCGCGAGGTGCTCGACCGGCTCGCCGCCACGCATCCCGACGTCGCCCGCGTCGAGGAGATGGACGGGGTGCCCGGCGAGAGCGCCGTCACCGGCACGCCCCGGGTCCTCTTCGCCGTCGTCCCCGCCCTGGCCGAGGCCGACCTCGTGCCCGACGACGTGCGCACCGTCACCCGGACGCTCGAGGACGTCTTCCTCGCCGTCACCGGGCGGACCTACGCCGAGCAGGACGAGGAACCCGCGCTCGCCACGGAAGGAGACCGGTCATGA	MTEPVVEVSHLRKTYGDKVAVDDVSFAVSPGEIFGILGPNGAGKTTAVETLAGMRRADGGTTHVLGHDTQKHPTAVRDVLGVQLQEATLHDKITVGEAIRLFAGFYPAPADPDELLALLDLTDHADKQFRNLSGGQKQRLSIALALVGNPQVAILDELTTGLDPQARRNTWDLIDRVRDTGVTILLVTHFMDEAERLCDRLVVIDGGRIVAEGTPRGLIDGLEGDRTVVLRFADEVVGAAREVLDRLAATHPDVARVEEMDGVPGESAVTGTPRVLFAVVPALAEADLVPDDVRTVTRTLEDVFLAVTGRTYAEQDEEPALATEGDRS	PGPT0006725_2533	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02944	768			hypothetical protein	ATGACCGCACCGACCATGGTCCCCGACACCGCACGTCGTCGTCCCACCCGCGTCGACCCCGGGGTCCGTGCCGCTCGGCGGCGCTTCCTCCGCGTGCTCACGATCGTCGGGCTCTGGTTCTGGGCCTTCTGGGCCCTGCTCGTCGTCGGCGTCCTGATCGTCGTCGAGCAGTGGGGCGGCGAGGCCGTCGGGTTCACCTACGACGTCTCCGGCAGCCCGGCCCGGTGGATCCCCTTCGTCGTCGGCATCGTCGTCACCGCGGGCGCGCTGCCCGTGCACGTCGGTGCCGGGGGGACGCGCCGCGCCTGGGTCGACGGCGCCACCCGGGCCGCCGTCGTCGTCGGCCTGGCGTTCGGCGTGCTGACCGTGGTGCTCGCGCTCGTCGAGCAGCAGGTCTACGCCGAGGGCGATCGCCCGTGGCAGGTCGACACCGGGACGGTCGCCCTCGACACGGCCGGCGGGATCGCCGTCGCCGTGACCGCCGAGTCCCTGGTCATGGTCACCTACCTCCTGGTCGGCGTCGCGATCGCCGCCGGCTTCCGACGGTTCGGGCCCTGGCGCGGGACGCTCCTCGTCGCACCGCTCCTCGTTCCCTGCGCGCTCGTCGACATCGCCACCCGGACCGGCATCGCCGGCACCCCGTGGCGCGGCGGGTACGACGACGTCGCCCTCGGCGCGCTGTTCGGCGTCGGCGGCGCCCTGGTCGTCGCCGCGCTCGCCTACGCCGTCGCCCACCTCGTGCTGCGCTCCGCGCCGCTGCGTCCCTGA	MTAPTMVPDTARRRPTRVDPGVRAARRRFLRVLTIVGLWFWAFWALLVVGVLIVVEQWGGEAVGFTYDVSGSPARWIPFVVGIVVTAGALPVHVGAGGTRRAWVDGATRAAVVVGLAFGVLTVVLALVEQQVYAEGDRPWQVDTGTVALDTAGGIAVAVTAESLVMVTYLLVGVAIAAGFRRFGPWRGTLLVAPLLVPCALVDIATRTGIAGTPWRGGYDDVALGALFGVGGALVVAALAYAVAHLVLRSAPLRP				NA	NA	NA	NA	NA
AK001_02945	771			hypothetical protein	ATGAACGGCACAGCAGCCCTCGTCGACCGCGTCGCACTGGTCCGCCGCGCCGAGTCGGCCGCTACCCGGCGCGCCGCGAGGTCGCTCGGCGTCCCGAACGTCGTCGTCGGCTCCGGGTTCTGGGTGGTGCTGGCCGTCGTCGCGGTGACCGTGCCCCTGATCGTCGACCGGGCCGGACACCAGATGGACGTCGGAGTCCTGGCGACCGGCGGGTACAGCGCCCGCTGGTTCGCCTTCGCCCTCGGGTTGATCATGTGCGCCACGATCACTGCCACCCACGTCGCCGCCGGTGGCACGCGCCGGACGTTGTTCCGCGGGGCGCTGCTCGCCACGGCGGGAGGCGGTGTCTTCTACGGACTGGCCTACACCCTCGCGCAGCTCGGGGAGCGCCGACTCTTCGACGAGCTCGGGTGGCCGTGGGAAGCGCCGGACTTCCTGATCTTCGGCGGGCAGTCCGGCGACCTGCTCCTGACGCTCGTCGGTGCCACCCTGACGATCGCGGTGTACATCCTCGTCGGCGTCGCGGTGGCGGTCGGCTACCTGCACCACGGAGCCTGGCGGGGCACGCTGCTGCTCGTCCCGGACGCGGTGCTGCTCGCACTGGCGGAGGTGGCCGGCCGCGCTGCATCCTGGACGGACGACGTCGGTCTCGGGCTCGAGCGCGCGTCCGCCGTCGTGGTGACTCTGCTGGCCCTCGCCGTCGCCGTCGTCCTGGCCGCCGGCTGGCTGCGCGCGATGCTGTTCCGCCTCCCGATCCGGCCGTCGAGGTGA	MNGTAALVDRVALVRRAESAATRRAARSLGVPNVVVGSGFWVVLAVVAVTVPLIVDRAGHQMDVGVLATGGYSARWFAFALGLIMCATITATHVAAGGTRRTLFRGALLATAGGGVFYGLAYTLAQLGERRLFDELGWPWEAPDFLIFGGQSGDLLLTLVGATLTIAVYILVGVAVAVGYLHHGAWRGTLLLVPDAVLLALAEVAGRAASWTDDVGLGLERASAVVVTLLALAVAVVLAAGWLRAMLFRLPIRPSR				NA	NA	NA	NA	NA
AK001_02946	1005			hypothetical protein	ATGACGGCCCCCGCCCCCTTCGGCGCCCGGCTGGACGACGTCGTCGTCCGGTTCGGCCGGCAGCGCCGGGTGACCCGCGACGGCGGCACCTACCGCGAGGACGCCTCGACGGCGCTCGACGGCGCGAGCCTCACGATCCGGCCGGGCACCATCACCGGTGTGCTCGGCCGCAACGGTGCCGGCAAGACCACGATGCTCTCCCTGCTCGCCGCCTACCGGCGCCCGACCAGCGGCCGTGTCGCCGTCGGCCCCGAGGGCGACACGGACTCCTGGGAGGACCCGTGGGAGAACCCATGGGTCACCGCGAACGTCCAGCTCGTCAGCGAGGGCGGCGGCGTCCAGGACGACGAGAAGCTGCGCGAGACGCTGCGGTACTACGCCGACCTGCGCCCGCACTGGGACGTCGACACGGCCGAACGGCTCCTGGACCTGTTCGAGATCAGCACCCGCAAGAAGCCGAACGCCCTGTCGCGGGGCAAGCGGTCTGCCGTCGGTGCTGTCCTCGGCCTCGCGTCCCGGGCACCGCTGACCATCTTCGACGAGGTCTACCTCGGCATGGACGCCCCGACGCGGTACGCGTTCTACGACGAGATCCTCGCGGACTACGCCGCCCACCCGCGCACCATCCTGCTGTCCAGCCACCTCGTCGAGGAGGTCGAGCGGCTGTTCGAGGACGTCGTCGTGCTCGACCGCGGCCGCGTCCTCCTCGCCGAGACCGCGGAGGAGATGGCCCGGCGCGGCTTCAGCCTCACGGGGCCGACGACGGCGGTCGAGCGTCTCGCCGGGGACCGGAAGGTCCTGCACCGCCAGCAGCTCGGCGGCACCGTCCAGGTCACCCTCGAGGGGGCGCCCGACGGCGGCACCCGCGCCGCCGCCCGGGAGGCCGGCGTCGAGCTGGGTCACCTGCCGCTGCAGGACCTGTTCGTGCGTCTCACCGACCCCGCCGCCCACCGGGCGACGGTCACCGGCCGCGACGCCGACGCGTCGAGGGGAGCTGGGCGATGA	MTAPAPFGARLDDVVVRFGRQRRVTRDGGTYREDASTALDGASLTIRPGTITGVLGRNGAGKTTMLSLLAAYRRPTSGRVAVGPEGDTDSWEDPWENPWVTANVQLVSEGGGVQDDEKLRETLRYYADLRPHWDVDTAERLLDLFEISTRKKPNALSRGKRSAVGAVLGLASRAPLTIFDEVYLGMDAPTRYAFYDEILADYAAHPRTILLSSHLVEEVERLFEDVVVLDRGRVLLAETAEEMARRGFSLTGPTTAVERLAGDRKVLHRQQLGGTVQVTLEGAPDGGTRAAAREAGVELGHLPLQDLFVRLTDPAAHRATVTGRDADASRGAGR	PGPT0006725_3597	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_02947	372			hypothetical protein	GTGTTCGACGGGCCTGAACCCCTCTACGTCCAGATCGCCCAGATGATCCGGTCGCAGGTCCTCGCGGGAGAGCTCGCGGAGGACGAGCAGGTCATGTCCACGACCCAGTTCGCCACGACGTTCCGCATCAATCCCGCCACCGCGGCCAAGGCGTTCACCGGCCTGGTCGACGAGGGCGTGCTCTACAAGCGACGGGGCCTGGGCATGTTCGTCGCACCGGGTGCCCGGCAGCGGCTGCTCGAGCACGACCGCCAGGCCTACTTCGCCGAGGTCCTCGCCCCGGCGCTCGCCCAGGCGAAGGTCCTCGGCATCTCCGACGACGAGATCGTCGACCACATCCGCAGCCGCTCGACCACCACGGAGGAGTCATGA	MFDGPEPLYVQIAQMIRSQVLAGELAEDEQVMSTTQFATTFRINPATAAKAFTGLVDEGVLYKRRGLGMFVAPGARQRLLEHDRQAYFAEVLAPALAQAKVLGISDDEIVDHIRSRSTTTEES				NA	NA	NA	NA	NA
AK001_02948	621			hypothetical protein	ATGCCGCTCCACCGCGCCCGTCAGCGGGCCCTGCTCACCCTGACCGCTTTCCTCGCCGCGCTGACGCTGGCCGCCTGCTCCGCGGGCGAGTCCACGCCGACGACGGACGACGAGACCGCCGCTGCCGACACCGCCTCGTCCGCAGCGCTCGCCGACGCCGGCCTCGCCGGTCTCGACGGCCGCGAGATCGTCGACACGCTCGACGCCCTGCCCCTCGCCGACCGCCCGACCGACCTCATGGTCTCGGTCCGCCCCGACGAGCTGCTCGTCACCACGGCCGACGAGGGGGAGACCACGGTCTCCCTGGAGGGCGAGGACTTCTACGTGTCGATCGCGCCCTACGTCGACCAGACGCACGAGTGCTACTTCCACAGCCTGACCACCTGCACCGGCGAGCTGCAGAACGCCGAGGTGGACGTGCTCGTCACCGACGACGCGACCGGCGAGGTCGTGCTCGACGAGACCCGGACGACGTTCGACAACGGCTTCGTCGGGCTCTGGCTCCCGCGCGACCTCGACGCCACCGTGACGATCGAGCACGACGGGCTGAGCGCCAGCACGCCGCTGTCGACGGGCGGCGCCGACGACGCGACCTGCGTCACCACGATGCAGCTGACGTAG	MPLHRARQRALLTLTAFLAALTLAACSAGESTPTTDDETAAADTASSAALADAGLAGLDGREIVDTLDALPLADRPTDLMVSVRPDELLVTTADEGETTVSLEGEDFYVSIAPYVDQTHECYFHSLTTCTGELQNAEVDVLVTDDATGEVVLDETRTTFDNGFVGLWLPRDLDATVTIEHDGLSASTPLSTGGADDATCVTTMQLT				NA	NA	NA	NA	NA
AK001_02949	480			hypothetical protein	GTGAGGCGAGCGCACGGCGCGCGGCCCGGGGGCCGTGACGGACGCTGGCACCACCGTGCCGCGCTCGCCGTCGTCCTCGGCTTCCTCGCCCTCGTGACGGGCCACGGGTTCGCCATGGCGGCACCGCCGGCGGGCGACGGCACCGTCGCCGCGGCCGGACACCACGTCCAGGCACCGGTCGTGCCGACCGACTCCGTCGCACCGGCCGCCGTCGCGTCGGAGGTCTCGGCCGGCGCGGAGGCGCAGGTCGTCCCCGGCGCGGCACCCGCCGCCCCGTGCGTCGACTGCGGCGCCCCGCACCACGACGCGGCCATGATCTGCGCGTTCATGCTGCTCGTCGTCGTGCTCCTGGTCCTGGCGGGGCCGCGTCGTGTCGTCCGGGACCTGCCGTCCGACCTGCCGCGCGTCACCAGCCGTCGTGCGGTGCCGCGGCTCCTCCCCGCCCCGGATCTCCGGGCTCTCGGGATCAGCCGGACGTGA	MRRAHGARPGGRDGRWHHRAALAVVLGFLALVTGHGFAMAAPPAGDGTVAAAGHHVQAPVVPTDSVAPAAVASEVSAGAEAQVVPGAAPAAPCVDCGAPHHDAAMICAFMLLVVVLLVLAGPRRVVRDLPSDLPRVTSRRAVPRLLPAPDLRALGISRT				NA	NA	NA	NA	NA
AK001_02950	567			hypothetical protein	ATGGACGCCGCGGACACCTGGTCGAGCCTGACCTTCGTCGTCGCGGGGATCTGGATCGTCGCCCGACGGCGGCACCCCGGCGACGGCGACGGGCCCGGCTCCGCGGCGCGCACCCGGGCCGCGCTCGGCGTCCTGGCGATCGGCATCGGCGTCGGGTCCGTGATCCAGCACGGTCCTGCACCGTCGTGGAACCCGGTGGTCCACGACCCGCCGCTCCTGGGCGCCTACGCCCTGGTCGCGGCGGACGCGGTCGCGGACCTCACGGGCCGTCGGATGCGCACCTGGTGGTGGCTGGGCCCGACGCTCGCGGACGCGGTCCTGGCCGCCGTCGACCCGTGGGCCTCCATCGTCGCGCAGGGCATCGCCTCGGGGGTCGCCGTGGTGCTGATCCTGCTGCGTGCACTGGCCCGGCCGACGCTGCGCGCCCGGCTCGTGAGCGCCGTCGTCGTCCTGGGCGTCGGAGCGCTGATCGGCTTCGTCGAGCCGTGGGGGCACACCGTGTGGCACCTGCTCGCGGCGGCGGCGATCGTGGTCGCGGCGCCCGCCGTCGGGGCACGCCCGTCCTGA	MDAADTWSSLTFVVAGIWIVARRRHPGDGDGPGSAARTRAALGVLAIGIGVGSVIQHGPAPSWNPVVHDPPLLGAYALVAADAVADLTGRRMRTWWWLGPTLADAVLAAVDPWASIVAQGIASGVAVVLILLRALARPTLRARLVSAVVVLGVGALIGFVEPWGHTVWHLLAAAAIVVAAPAVGARPS				NA	NA	NA	NA	NA
AK001_02951	1113	asd	COG0136	Aspartate-semialdehyde dehydrogenase	ATGGCCCAGATCAACACCACGGGCGTGAACGTCGCCGTCGTCGGCGCCACCGGTCAGGTCGGCGCCGTGATGCGCAAGCTGCTCGCCGAGCGCGCCTTCCCGATCAAGGAGCTGCGGCTGTTCGCCTCGGCACGGTCGGCCGGCTCGACCCTCACCTACGAGGGCGTCGAGGTCACCGTCGAGGACACGGCCGCCACGGCGACCGAGGACCTCGCGGACATCGACATCGCCCTGTTCTCCGCGGGCGGCGGGACGTCGCGCGAGCACGCGCCGCGGTTCGCGGAGGCGGGCGCCGTCGTCATCGACAACTCCTCCGCCTGGCGCCTCGACCCCGAGGTGCCGCTGGTGGTCTCCGAGGTGAACCCGGAGGCGATCAGCGAGGCGGGCAAGGGCATCATCGCCAACCCGAACTGCACCACGATGGCCGCGATGCCGGTGCTCAAGCCCCTGGCTGCCGAGGCCGGGCTGGAGCGCCTGCGGGTCGCCACCTACCAGGCCGTGTCCGGCTCCGGGCTCGGCGGCGTCAAGGAGCTCGCCGACCAGGCGCGCGCCGCGACGTCCGGTGACCTCGAGGGCCTCACCCACGACGGCTCCGCGGTGGAGTTCCCGGCGCCGGAGAAGTACGTGGCGCCGATCGCGTTCGACGTCGTGGCGCTGGCCGGCGCGATCGTCGACGACGGGTCCGAGGAGACGGACGAGGAGCAGAAGCTCCGCAACGAGTCCCGCAAGATCCTCGGTCTGCCCGACCTCGCCGTCGCGGGCACCTGCGTGCGCGTGCCGGTGTTCACCGGCCACTCGCTGGCGATCCACGCCGAGTTCGGCGACGCGATCACGCCGGACCGGGCCCGCGAGCTGCTCGCGGACGCCCCGGGCGTCGAGCTGGCGGACGTCCCGACGCCGCTGGGCGCGGCCGGTGCCGACCCGTCGTTCGTGGGCCGCATCCGCACCGACCAGTCCGTCCCGGACGGTCGCGGGCTGGTGCTGTTCGTCGCGAACGACAACCTGCGCAAGGGTGCCGCGCTCAACGCCATCCAGATCGGCGAGCTCGTGGCGGCCGACATCGCCGAGCTGGCGACCTACGACGCCACGGACGCCGAGTCGGTGACGGCCTGA	MAQINTTGVNVAVVGATGQVGAVMRKLLAERAFPIKELRLFASARSAGSTLTYEGVEVTVEDTAATATEDLADIDIALFSAGGGTSREHAPRFAEAGAVVIDNSSAWRLDPEVPLVVSEVNPEAISEAGKGIIANPNCTTMAAMPVLKPLAAEAGLERLRVATYQAVSGSGLGGVKELADQARAATSGDLEGLTHDGSAVEFPAPEKYVAPIAFDVVALAGAIVDDGSEETDEEQKLRNESRKILGLPDLAVAGTCVRVPVFTGHSLAIHAEFGDAITPDRARELLADAPGVELADVPTPLGAAGADPSFVGRIRTDQSVPDGRGLVLFVANDNLRKGAALNAIQIGELVAADIAELATYDATDAESVTA	PGPT0014045_760	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133	NA	NA
AK001_02952	1305	ask	COG0527	Aspartokinase	ATGGCACTGGTCGTGCAGAAGTACGGCGGGTCGTCCGTGTCGGACGCCCGTTCCATCAAGCGCGTGGCCAAGCGCATCGCCGAGGCCAAGCGCGCCGGCAACGACGTGGTGGTCGTGGTGAGCGCCATGGGCGACACCACCGACGAGCTCCTCGATCTTGCCGCCGACATCAGCCCCCGTCCGCCGCAGCGCGAGATGGACATCCTGCTCACCGCCGGTGAGCGGATCTCGATGTCCCTCCTCGCGATGGCGATCGACAAGCTCGGGGTCAAGGCGAAGTCCTTCACCGGCCAGCAGGCCGGTCTCCTCACCGACGCCGTCCACGGCAAGGCACGGATCGTCGACGTCGTCCCGCACCGCATCCGCCAGACCCTCGAGAAGGGCCAGGTCGCGATCGTCGCGGGCTTCCAGGGCGTCAGCAGCGGCAACGACGTGACCACGCTCGGCCGCGGTGGCTCCGACACGACGGCGGTCGCGCTGGCCGCCGGTCTCGACGCCGACGTCTGCGAGATCTACACCGACGTCGACGGCATCTTCACCGCGGACCCCCGCATCGCGCCGGGCGCTCGCAAGATCGACAAGGTCACCTACGAAGAGATGCTCGAGCTGGCCGCGTCCGGCGCCAAGGTGCTGGCGCTGCGCGCCGTCGAGTACGCGCGCCGCTACCAGGTCCCGGTGCACGTGCGCAGCTCGTTCTCGGGCAAGAACGGGACGCTCGTCAAGGGCACCCACGGAGACCTCATCGACCCGAACGCCAGCTCCGAGGAGCAGGAGGAAGCAGCCATGGAAGACCCGATCATCTCCGGCGTCGCGCACGACCGCAGCGAGGCCAAGATCACCATCGTCGGCGTGCCGGACACGCTGGGCCAGGCGGCCCGCATCTTCGAGGTCGTGGCCGCCGCCGGCACGAACATCGACATGATCGTCCAGAACGTGTCCGCCGCGGACACCGGTCTGACCGACATCTCCTTCACGCTGCCGCACGCCGACATCCGGTCGACGACGGCCGCGCTGAACGCCGTGAAGTCCGAGCTGAAGTTCGACGACCTGCAGGTCGACGACGAGATCGGCAAGGTCTCGCTCGTGGGCGCCGGCATGAAGTCGCACCCGGGCATCTCCGCCCGCCTGTTCGGCGCGCTGCGGGACGCGGGCATCAACATCGAGATGATCTCCACCTCGGAGATCCGCATCTCGGTGGTCACCCGTGCCGACAACCTGGACGACGCCGTGCGCGCCATCCACACCGCGTTCGAGCTCGACTCCGCCGAGGGCGAGGCCGTGGTCTACGCCGGGACGGGGCGGTGA	MALVVQKYGGSSVSDARSIKRVAKRIAEAKRAGNDVVVVVSAMGDTTDELLDLAADISPRPPQREMDILLTAGERISMSLLAMAIDKLGVKAKSFTGQQAGLLTDAVHGKARIVDVVPHRIRQTLEKGQVAIVAGFQGVSSGNDVTTLGRGGSDTTAVALAAGLDADVCEIYTDVDGIFTADPRIAPGARKIDKVTYEEMLELAASGAKVLALRAVEYARRYQVPVHVRSSFSGKNGTLVKGTHGDLIDPNASSEEQEEAAMEDPIISGVAHDRSEAKITIVGVPDTLGQAARIFEVVAAAGTNIDMIVQNVSAADTGLTDISFTLPHADIRSTTAALNAVKSELKFDDLQVDDEIGKVSLVGAGMKSHPGISARLFGALRDAGINIEMISTSEIRISVVTRADNLDDAVRAIHTAFELDSAEGEAVVYAGTGR	PGPT0014040_2607	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928	NA	NA
AK001_02953	780	yfcA	COG0730	putative membrane transporter protein YfcA	GTGCTCGACCTCGACCCCACCACCATCGCGCTGCTCGTGCTGGCCGGACTGGCCGCCGGCTGGGTCGACGCCGTCGTCGGCGGGGGCGGGCTCATCCAGCTCCCGGCGCTGCTGCTCGTGCCGGGGATGTCGCCGGTGCAGGCGCTGGCGACCAACAAGCTCGGCTCGATCATGGGCACCTCGGTCAGCTCGATCACGTACTACCGGCGCGTCGGCCCGGACCTGACCACGGCCGGGCCGATGGCGGCCGCGGCGCTGGCGGGCGCCGTCGGGGGAGCGGCGCTGGCGACGCAGATCCCCGCCGAGCTGTTCACGCCGATCATCCTGGTGGTCCTCATCGGCGTCGCGGTCTTCACGCTCGCCAAGCCGCAGCTCGGTCAGTACGACGACCTGCGCTGGGAGGGCAACCGCCACCGGTGGACGGCGGCCGGGATCGGCCTCGTCATCGGCGCCTACGACGGTCTGCTCGGGCCGGGTACCGGCACCTTCCTCGTCATCTCCCTGGTGAGCGTCCTCGGGTACGCGTTCCTGCCGGCGTCGGCCCTGGCGAAGATCGTGAACTTCGCCACGAACCTGGGCGCGCTGATCTTCTTCGTGCCGGCCGGCGCGGTGGTGTGGGGCCTGGGGCTGGCGATGGGCGTCGCCAACCTCGTCGGCGGCTACGTCGGCGCCCGGATGGCGGTGTCGAAGGGCAGCCGGTTCGTGCGCGCGGTCTTCGTCGTCGTGGTCGGGGCCCTCATCTGCACGCTCGGGTACGACGTCGTCACGGGTGCCGCGTAG	MLDLDPTTIALLVLAGLAAGWVDAVVGGGGLIQLPALLLVPGMSPVQALATNKLGSIMGTSVSSITYYRRVGPDLTTAGPMAAAALAGAVGGAALATQIPAELFTPIILVVLIGVAVFTLAKPQLGQYDDLRWEGNRHRWTAAGIGLVIGAYDGLLGPGTGTFLVISLVSVLGYAFLPASALAKIVNFATNLGALIFFVPAGAVVWGLGLAMGVANLVGGYVGARMAVSKGSRFVRAVFVVVVGALICTLGYDVVTGAA				NA	NA	NA	NA	NA
AK001_02954	2325			hypothetical protein	GTGCCCCGTCGTGGCATCCGTCCCTCGCTCACCCGTGCCGGCGCGGCAGCGCTCGGCCTCACCCTGTGCGGCGGTCTGCTCGCACCGCCCGCCCAGGCGTCCGTCGTCGACGACCTGATCGGCGCCGCCGACGACGCCGCGATCGACCTGCGGCCGCTGGGCTCGTACGAGACCGGCGTGTTCGACGAGTCGGCCGCCGAGATCGTCGCCTTCCACCCCGGCTCGCAGCGCCTGTTCTCGGTCAACGCCCACGTCGGCGAGGTGACGGTCATCGACGTCGCCGACCCGGCCGTGCCGACGCAGCTCTTCGCCGTGCAGACCACCGGCGTCGCGTCCGCCGACGGCTCCACCGTCCCGGCCGGGGCCGTGGCCAACTCCGTCGCGGTGCGCGGCGACGGGCTCGGCGTCGTCGCCGTGGAGTCCGACGTGAAGACCGACGCCGGCTGGCTGGTCTTCTTCGACGCCGCCGGTGACGGGACCGCTCTCGGCGCCGTGCGCGTCGGGTCGCTGCCCGACATGGTCACGGTCACGCCCGACGGTGCCCGCGCCGTCGTCGCCGACGAGGGCGAGCCGAACGACGACTACACCGTGGACCCCGAGGGCGACGTCGCCGTCGTCGACCTGCCCGCCGAGGTCGCCGCGCCGGCGCAGGACGCCGTGCGCCTCGCCGACTTCCACGCGTTCGAGGCCGAGGGCGCCCTCCCGGAGGGCGTGCGCGTCTTCGCGGGGATCGACGGCATCGACCACCCCGTCTCGCGCAACCTCGAGCCCGAGTACGTGTCCGTCTCCGGCGACTCGGCCACCGCCTACGTCGCGCTGCAGGAGAACAACGCCGTGGCCGTCGTCGACCTGGCCGACGCCGAGGTCACCGAGATCTGGCCGCTGGGCGCCAAGGACCACTCGCTGGAGGGCCAGGGCATCGACCCGTCCGACGAGGACGGCCCGGACGGCGAGGGCGTGATCGACATCCGGACCGTCCCGGTCAAGGGGCTGTACATGCCGGACGGCATGGACGCCTACACCGCCGGCGGCGAGACCTACCTGGTCACCGCCAACGAGGGCGACGCCCGCGAGTTCGGCGACTACGAGGAGCCGGCCCGCATCAAGGACCTCGGCGAGGACGGCATCGCGCCGATCTGCGCCGACCACCCCGCTGCGGACCGCACCGACGACGCCGACCTGGGGCGCCTCGACGTCTCGCTGGCCTCCGGGCTCCGGGCCGACGGCGAGTGCTACGACGAGCTGTACGCGTTCGGCGGCCGGTCCTTCTCCATCTGGACCACGGACGGTGAGCAGGTCTTCGACTCCGGCGACGACTTCGAGCAGATCACCGCGCAGGTGGCGCCCGAGTTCTTCAACTCGAACAACGACGAGTCCTCGTTCGAGTCACGGTCGGACAACAAGGGGCCCGAGCCGGAGAGCGTCGTCGTCGGCGCCGTCGACGGGCGCACCTACGCCTTCGTCGGCCTGGAGCGTGTCGGCGGGATCATGGTCTACGACGTGACCGACCCGGCCGGCGCGGCGTTCGTGCAGTACGTCAACAACCGCGACTTCTCCGTCTCGGTGGAGGACCTGGTCGACGCGGGCGCGAGCACGGCGGACGCCGTGGCCGCTGCCGGGGACCTCGGCCCCGAGGGGCTGGCGTTCATCCCCGCCGAGGACTCGCCGACGGGTGAGCCGGTGCTCGCCGTCGGCAACGAGGTCTCGGGCTCCACGACGCTGTACGCGATCGACGGGCCTGCGCCCACCGAGGCCCCGGCCCGCGGCACGATCAGCGACGACAACGCCCACGACGGCGTCCGCGGCGGCGACTACACCGTCTCGGTCGACCTGTGGTGGGGCCAGAACGCCACGTCGGTCCGGCTCTTCGAGGACGGCGAGCTCGTCGCGACCCGGAACCTCGTCGACGCCACGCCGTCGGCCCAGCACGTGGACTTCGCCCTGTCCGGCCGCACGGACGGCACGTACACCTACACCTGCGAGCTGGTGAACGCCGCGGGCGTCACCGACTGCCGCGACCACCGGGTCAAGGTCACCGACGCGGCCCCGGCCCGGCCGAAGCTCAGCCACGACAACTCGGACCAGGACGGCGCCTACACGGTCAGCGCCGACCTGTGGTGGGGCACGAACGCCACGGCGTGGACCCTGCTCGAGGACGGCCTCGAGATCGCCACGGGCGAGCTCGAGGCCGCCACGCCGTCGGCCCAGCACGTCGAGGTGCCGCTCGAGGGCCGCGCACCCGGCCGGTACACCTACCGCGTCGTCTTCACCAACGACCTCGGCGCCACGAGCTCGAAGGAGCTCACGGTCCGCGTGAAGAAGTAG	MPRRGIRPSLTRAGAAALGLTLCGGLLAPPAQASVVDDLIGAADDAAIDLRPLGSYETGVFDESAAEIVAFHPGSQRLFSVNAHVGEVTVIDVADPAVPTQLFAVQTTGVASADGSTVPAGAVANSVAVRGDGLGVVAVESDVKTDAGWLVFFDAAGDGTALGAVRVGSLPDMVTVTPDGARAVVADEGEPNDDYTVDPEGDVAVVDLPAEVAAPAQDAVRLADFHAFEAEGALPEGVRVFAGIDGIDHPVSRNLEPEYVSVSGDSATAYVALQENNAVAVVDLADAEVTEIWPLGAKDHSLEGQGIDPSDEDGPDGEGVIDIRTVPVKGLYMPDGMDAYTAGGETYLVTANEGDAREFGDYEEPARIKDLGEDGIAPICADHPAADRTDDADLGRLDVSLASGLRADGECYDELYAFGGRSFSIWTTDGEQVFDSGDDFEQITAQVAPEFFNSNNDESSFESRSDNKGPEPESVVVGAVDGRTYAFVGLERVGGIMVYDVTDPAGAAFVQYVNNRDFSVSVEDLVDAGASTADAVAAAGDLGPEGLAFIPAEDSPTGEPVLAVGNEVSGSTTLYAIDGPAPTEAPARGTISDDNAHDGVRGGDYTVSVDLWWGQNATSVRLFEDGELVATRNLVDATPSAQHVDFALSGRTDGTYTYTCELVNAAGVTDCRDHRVKVTDAAPARPKLSHDNSDQDGAYTVSADLWWGTNATAWTLLEDGLEIATGELEAATPSAQHVEVPLEGRAPGRYTYRVVFTNDLGATSSKELTVRVKK	PGPT0013395_65	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081	NA	NA
AK001_02955	579			hypothetical protein	ATGAGCACCGTGTCAGAGATCTCCGCAGACTCCGAGCTCCGCGAGGTCGCCGACCAGATGTCGACCCAGGCGCGCACCTTCCTGTCCACGACGTCGCAGGTCGCCGGGGGAGGGTTCCCCGGCGCCGAGCTGTCGCTGCTGATCCTGGCCACCTCGGACCTGCTGGCCGCCGGCGCACGGTTGGCGGCCATCGTCGACGTCGTGCCCGCGCAGCGGTTCGAGCCGGACGCCGGGCGGGAGACCGACGTCGACCCGCTGCGCGTCGCGCTGGCGCAGATGTTCGACGGCTTCGACGACTACGTCGAGGTCGTCGACCCGGTGCTCGGCACCGAGCTGGGGCAGGCCTCGCTCTCCGGCGACCTGGCCTGCGTCACCGAGGAGATCGCCAAGGGGCTGCAGCACTTCGACGACGGCCACGAGCTCGAGGGGCTGTGGTGGTGGCAGTTCTCCTACCTGTCGAGCTGGGGCGAGCGCGCCTCCTCGGCGCTGCGACTGCTGCAGTCGGTGCTCGCGCACCTGCGCCTGGACGTCGAGGCCGACGTCGCCGCCGAGGCGGAGTACGACGCCCTGCACTCCTGA	MSTVSEISADSELREVADQMSTQARTFLSTTSQVAGGGFPGAELSLLILATSDLLAAGARLAAIVDVVPAQRFEPDAGRETDVDPLRVALAQMFDGFDDYVEVVDPVLGTELGQASLSGDLACVTEEIAKGLQHFDDGHELEGLWWWQFSYLSSWGERASSALRLLQSVLAHLRLDVEADVAAEAEYDALHS				NA	NA	NA	NA	NA
AK001_02956	1140			hypothetical protein	GTGCGAGTGCCCCGACCCCGACTCCTCTGCGCGGCAGGCCTGGTGTGTCTCGTGCTCCCGGGCTGCGGACCGCCCGGCCCCGGTGCACCGGCGGACGGCCCGCCCGGCGACTCGCCCGCGTCAGCGACCTCGGCCGACACCGGCTACTCCGAGGCCGAGCGGTCCGACCTGACGGGCTCGGCCCGGTCGTCCGCCGAGCGGAACGGTTACTCCGGGTCGGGGTTCGTCGAAGGCCTTCGTGCGGTCGGCGACGGTGTCTCGTTCACCGTCACCGCCGACGAGGCGGGTCCGCAGCCGGTGAACCTGCGCTACGCCAACGGCCCCACCCCGTTCGAGGGCGCCAAGACCGTCTCGGTGTCCGTGAACGGCAGCGCGGCGGAGCAGTGGGTACTGCCCAGCACCGGCGACCAGGAGAGCTGGGACGTCGCCACGCGCGACCTCGTGCTGGAGGCCGGGACCAACACGATCACGGTGCAGCGCGGCGCGGGCGACGACGGCCACGTGGCCCTCGACGTGCTCTCGCTCGGCGCGGACCCGGACCTGTGCTCCCCGGCGGAGCCGGACCCCGGCTACACCGCGCTGTTCGACGGCACGCTCGCGAGCTTCGACGACTGGCGCCTCGCCGGCGCGGGCTCGTTCGGCCGCCGGGACGACTGCACCCTGGAGACCGCGGGCGGGCTGGGACTGCTCTGGCACACCGACGAGCTGGAGGGTCCCTACAGCCTCCGGCTCGAGTGGAGGCTGGTCGACGACTCCAACGGCGGGGTGTTCGTCGGGTTCCCCGACCCGGGCGACGACCCCTGGGTCGCCGTCGACCAGGGCTACGAGGTCCAGATCGACGCCAGCGACGAGGCCGACCGCACCACCGGTGCGGTCTACACGTTCCAGGGAGCCGACCCGGAGGCCGTGGCCGACGCGCTGAACCCGGTGCCCGCGTGGAACGCGTACGACATCCGCGTCGCGGACGGCACCGTCCGGGTGTTCCTCAACGGGACGCTGGTCAACGACTTCACGGGCACCGACCCGGCACGGGACCTGTCGTCCGGGTTCGTGGGCGTGCAGAACCACGGTCCGGGCGACCGGGTCTCCTACCGGAACATCCAGGTCGCGCCGCTCGACGACCGGCCGGACTCCCCATGA	MRVPRPRLLCAAGLVCLVLPGCGPPGPGAPADGPPGDSPASATSADTGYSEAERSDLTGSARSSAERNGYSGSGFVEGLRAVGDGVSFTVTADEAGPQPVNLRYANGPTPFEGAKTVSVSVNGSAAEQWVLPSTGDQESWDVATRDLVLEAGTNTITVQRGAGDDGHVALDVLSLGADPDLCSPAEPDPGYTALFDGTLASFDDWRLAGAGSFGRRDDCTLETAGGLGLLWHTDELEGPYSLRLEWRLVDDSNGGVFVGFPDPGDDPWVAVDQGYEVQIDASDEADRTTGAVYTFQGADPEAVADALNPVPAWNAYDIRVADGTVRVFLNGTLVNDFTGTDPARDLSSGFVGVQNHGPGDRVSYRNIQVAPLDDRPDSP				NA	NA	NA	NA	NA
AK001_02957	600	recR	COG0353	Recombination protein RecR	GTGTACGAAGGTGCGGTCCAGGACCTGATCGACGAGCTCGGCCGGCTGCCCGGTGTCGGGCCCAAGAGCGCGCAGCGCATCGCGTTCCATCTGCTCGCCACGGACGCCGCCGACGTGCGGCGGCTCGTGGACGCCCTGACCGAGGTCAAGGCCCGCGTGCAGTTCTGCGAGACCTGCGGGAACGTCGCCGAGTCGGCGACGTGCCGGGTGTGCGCCGACCCGCGTCGCAGCGACGAGGTGATCTGCGTCGTCGAGGAACCCAAGGACGTCGTGGCCATCGAGCGCACGCGGGAGTTCCGCGGCAAGTATCACGTGCTCGGCGGGGCCATCAACCCGCTGGAGAACGTCGGGCCCGACGACCTGCGGATCAGCGAGCTCATGTCCCGGCTGGCCGACGGCGCGGTCACCGAGGTGATCATCGCCACCGACCCGAACGTGGAGGGCGAGGCGACGGCGACCTACCTCTCACGGCTCATCGGGCCGATGGGTGTGACGGTGTCGCGCCTCGCGTCCGGGCTGCCGGTCGGGGGAGACCTGGAGTACGCGGACGAGGTCACCCTCGGTCGCGCGTTCGAGGGGCGTCGCGTCGTCGGCAGCTGA	MYEGAVQDLIDELGRLPGVGPKSAQRIAFHLLATDAADVRRLVDALTEVKARVQFCETCGNVAESATCRVCADPRRSDEVICVVEEPKDVVAIERTREFRGKYHVLGGAINPLENVGPDDLRISELMSRLADGAVTEVIIATDPNVEGEATATYLSRLIGPMGVTVSRLASGLPVGGDLEYADEVTLGRAFEGRRVVGS				NA	NA	NA	NA	NA
AK001_02958	546	yfcD		putative Nudix hydrolase YfcD	ATGATGCGAGTCATGGAGTCCGACCCGGCCGACGAGCCCGTCGCGCTGTTCGACGACGCCGGCGCGCCGTGCGGCACCGCCCCGCGCCACCGCGTGCGGTCCGAGAACCTGCGCCACGCGGCCACCGCCGTCGTCGTCCGCAACAGCGCGGGCGAGGTCTACGTGCACCGCCGCACCGACACCAAGGACGTCTACCCCGGGCGCTACGACTTCTGCGCCGGCGGGGTGCTGCGCGCCGGCGAGTCCCCGCTGCAGTCCGCGCGCCGCGAGGTCGCCGAGGAGCTCGGCGTCGAGGGCGTGCCGCTGCTGCGTCTCGGCGAGCGCGACTACGCCGACGACCACACCCGGTACCGCGCGTTCCTGTTCACCTGCACCTGGGACGGGCCCGTGCGTTGGCAGCCCGAGGAGATCGCCTGGGGCCGGTGGGTGTCCCCGCGACGGCTCGTCGAGATGGTCGACGAGCACGCGTTCGTGCCCGACTCGGTCGCGGTGCTGGACCGCTGGCTCGACGCCCTGCGTGCCGCCGGCTCGCGCGGCGCGGTCTGA	MMRVMESDPADEPVALFDDAGAPCGTAPRHRVRSENLRHAATAVVVRNSAGEVYVHRRTDTKDVYPGRYDFCAGGVLRAGESPLQSARREVAEELGVEGVPLLRLGERDYADDHTRYRAFLFTCTWDGPVRWQPEEIAWGRWVSPRRLVEMVDEHAFVPDSVAVLDRWLDALRAAGSRGAV				NA	NA	NA	NA	NA
AK001_02959	831			hypothetical protein	ATGTCGACGCAGGACGCCGAGCACCGGCCGCCCGCCGGGACCGTCGACGACCGGCCGCGCGGGCTCACCGGCTGGGCCGCGGCGCACCCGGTGGCCGCCTTCGTGGTGCTCGCCTACGCGATCTCCTGGACGCTGTGGGTGCCCGTCGTGGTCGGTGCCGGCGGGGCCGTCGCCCAGGTGCTGTTCGTGGTGGGTGGGCTGGGCCCGGCGGTCGCGGCCCTGCTCGTGACCCGCCGCATCGGGGCGCCCCTGGGCCCGTGGGCCCGGCAGATCGTCCGGTGGCGCGTCCCGCTGCGCTACTACCTCTACGCGCTCGGCCTGCCCGCCCTGCTGTTCGCGATCGTCAACGTCGAGCTGGCGATCGTCGGCCAGGAGGTCGACCTCGCCCTGCTCGGGGACCGGCTGCCCGCCTACCTCATGACGTTCCTGGCCGTGGCCACGATCGGCGGCGGGTTCGAGGAGCCCGGCTGGCGCGGGTTCGCGTTGCCCCGGCTGCAGGAGCGCTTCGCCCCGCTGGCCGCGACCTGCCTCCTCGCCCTGGTCTGGGGAGTCTGGCACCTGCCCCTCTACGGGCTCGGGTTCGTCGGCCCGATGGTCTTTGCCTTCTACTACACGTGGCTCTACAACCGCACCGGCAGCGTGCTGCTGTGCATCCTGCTGCACGGGAGCTTCACGCCCGCCCTCGACCACCTCGTGCTGCGTGCGGACAACCTCGCGGTCGACGTCGCCATCGGTGCCACCCTCGTGGCCGGTGCGGTCGTGCTCGTCGTCGTCACCAAGGGGCGCCTCGGTTTCGACGCCGCGAGGAACAGCGCCTACCGCACGGCCTGA	MSTQDAEHRPPAGTVDDRPRGLTGWAAAHPVAAFVVLAYAISWTLWVPVVVGAGGAVAQVLFVVGGLGPAVAALLVTRRIGAPLGPWARQIVRWRVPLRYYLYALGLPALLFAIVNVELAIVGQEVDLALLGDRLPAYLMTFLAVATIGGGFEEPGWRGFALPRLQERFAPLAATCLLALVWGVWHLPLYGLGFVGPMVFAFYYTWLYNRTGSVLLCILLHGSFTPALDHLVLRADNLAVDVAIGATLVAGAVVLVVVTKGRLGFDAARNSAYRTA				NA	NA	NA	NA	NA
AK001_02960	1521			hypothetical protein	GTGACGACGACGCACCGCCTGCCCCGTGCCACCCCGGCGTCCCAGGGCGTCGACCCGGAGTCCCTGCGGCGGCTGGTCGCCGCGCTCGACCAGGTCCGCGACGTGCACAGCCTCATGGTGCTGCGGCACGGCCACGTGGTCGCCGAGGCGTGGTGGGACCCGTTCGCCCCGGACGAGCCGCACCAGATGTTCTCCGTGTCCAAGGCGGTCACCGCCACCGCGATCGGGATGGCCGTGGACGAGGGTCTGCTGAGCATCGACGACCGGGTCGTCGACCTGCTGCCGCACGACGCGCCGTCGGACCCGGACGAGCACCTGGCGGCGATGACGGTGCGGCACCTGCTGACGATGACCAGCGGGCACGGCACCGACACGATGAACTTCACGCTGCGCAACCTCCACCGCCCGGGCGGCAGCTGGGCGCGGGACATCCTCGCGTCCCCGGTGATCCACGCCCCGGGCACCCGGTTCGTCTACAACACCGGGGCGACCTACCTGCTCTCGGCGATCCTGCACCGGCTCACCGGGGAGCGGCTGCTGGACTGGTTGACCCCGCGGCTGCTCGACCCGCTGGGCATCTCGGGCGCCACCTGGGAGCAGTGCGAGCAGGGCATCGACGTCGGCGGGTACGGGCTGACCCTGACCACCGAGGATCTCGCGTCGCTCGGCCAGCTCTGGCTGCAGCGCGGCCGGTGGGGCGAGCAGCAGCTCGTCCCGGCCGCGTGGGTCGACGAGATGACGTCCGCCCAGGTGGACAACGGCCCGGACGAGAAGCCCGACTGGGAGCAGGGTTACGGCTACCAGTTCTGGCGGTGCCGGCACGGCGCTTCCCGGGCCGACGGCGCCTTCGGGCAGTTCGCCGTCGTCTGGCCCGAGCACGACGCCGTGGTCGTGCTGACCAGCGGGACGACGGACACCGCCGCCGAGCTCGACGCGATCTGGGACACGCTCGGTGGTGCGTTCGGCCCGGTGCCGGGCGCCGGGACGGGCGGCGGGGCGTCCGACGCCGGGGACGGCCCGACGTCGGACGCCCCCGGCGACCTCGCGGTCGCCGTGCCGGAGGGGCGCGCGCACGTCGTGCTCGAGGACTTCGTGCGGGGTTCCCGCTTCGTGCTGACGCCCGAGTCCGGGCACGACGCCGCGAGCCCGGGCGGGCCGCTCCTGCACTGGCACGCGATCTCGGTGGACCGTGTCGACGACGAGCTCGCCCTGACCTGGGAGGCCGACGCCGGTGGTGCGGCGCGCACCGTGCTGTGCGGCACCGGGCGCTGGGTGACCGGGCGTGCCGGGCTCGAGCCCGGCGAGGACGTCGCCGTCGCCGGGGCGGCCGCCTGGACCGGGGCGCACGAGCTGACGCTGCGCCTGGTGCGCCGCGGCACGCCGTTCGTCCTCGAGGTCCGGCTGGCCTTCGGCGGCGACGGCGAGGGCCGCTGGGTGGAGGTGGCGGCCGACCAGCCGGTGTCGTTCGGCCGGACCGATCTGCTGCGCGCCACCGGGCTCGGGGTGGGCGCCGGGGTGTGA	MTTTHRLPRATPASQGVDPESLRRLVAALDQVRDVHSLMVLRHGHVVAEAWWDPFAPDEPHQMFSVSKAVTATAIGMAVDEGLLSIDDRVVDLLPHDAPSDPDEHLAAMTVRHLLTMTSGHGTDTMNFTLRNLHRPGGSWARDILASPVIHAPGTRFVYNTGATYLLSAILHRLTGERLLDWLTPRLLDPLGISGATWEQCEQGIDVGGYGLTLTTEDLASLGQLWLQRGRWGEQQLVPAAWVDEMTSAQVDNGPDEKPDWEQGYGYQFWRCRHGASRADGAFGQFAVVWPEHDAVVVLTSGTTDTAAELDAIWDTLGGAFGPVPGAGTGGGASDAGDGPTSDAPGDLAVAVPEGRAHVVLEDFVRGSRFVLTPESGHDAASPGGPLLHWHAISVDRVDDELALTWEADAGGAARTVLCGTGRWVTGRAGLEPGEDVAVAGAAAWTGAHELTLRLVRRGTPFVLEVRLAFGGDGEGRWVEVAADQPVSFGRTDLLRATGLGVGAGV				NA	NA	NA	NA	NA
AK001_02961	459	maa	COG0110	Maltose O-acetyltransferase	ATGGACCTCAGCGCGCAGCGCCGGCACCTCCGCACCGGGGCGATGTACGACGACACGACCGACGAGCTCGTGCAGGCCCGGGAACGCGCCGCGCTGGCCACGGACGCCTACAACGCCGCCTTCGGCCGGCCGGCCGACGCACGGCTCGCCCTGCTGCGCGAGCTCGTCGACCAGGCCGGGGAGAACGCCCACTTCGAGCCGACGTTCCGCTGCGAGTTCGGTGACGGCATCCGCCTCGGCGACAACTTCTACGCGAACTTCGACTGCGTGATGCTCGACGGCGGCGGCATCACGATCGGCGACGACGTGCTCCTCGGGCCGCGCGTCGGGATCTACACCTCGAACCACGCCCTGGACCCGCGCGAGCGGGCGGCCGGGGCGTGCTACGCCCGGCCGGTGCGGATCGGCGACGGCGTCTGGATCGGGGGCGGGGTGGGGTCACGGTCAACCCCGGGGTGA	MDLSAQRRHLRTGAMYDDTTDELVQARERAALATDAYNAAFGRPADARLALLRELVDQAGENAHFEPTFRCEFGDGIRLGDNFYANFDCVMLDGGGITIGDDVLLGPRVGIYTSNHALDPRERAAGACYARPVRIGDGVWIGGGVGSRSTPG	PGPT0018611_523	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0018611-maa|nodL-K00661	NA	NA
AK001_02962	153	lacA	COG0110	Galactoside O-acetyltransferase	GTGACGATCGGCGACGGTGCCGTGATCGGCTCCGGCAGCGTCGTCACGCGCGACGTGCCCGCCCGCACCGTCGCGGCCGGGAACCCCGCCCGCGTCCTGCGCGAGATCACCGCGGCCGACCGCACCGGCTACCTCGACGGCGTCCCGGGCTGA	MTIGDGAVIGSGSVVTRDVPARTVAAGNPARVLREITAADRTGYLDGVPG	PGPT0018611_199	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0018611-maa|nodL-K00661	NA	NA
AK001_02963	435	nudG	COG0494	CTP pyrophosphohydrolase	GTGACGGTCCCGGCGACCACCACCCTGTACATCGTCTCCGCCGTCGTCCGGCGCGACGGCCGGTGGCTCGTGGTGCGCAAACGGCACACGGAGACGTTCATCCAGGTGGGCGGCAAGATCGAGCCGGGGGAGAGCCCCCGGGACGCGCTGGTGCGCGAGTGCCACGAGGAGATCGGCCTGGAGGTCGACCCGCCGCGGGTGCGGGCGCTCGGCCACCACCACGCGGTCGCCGCGAACGAGCCGGACCACGTGGTCGACGCCCACGCGTTCGAGGTCGAGCTGCCGCCGGGCTTCGAGCCGGAACCGCGGGCGGAGCTGGCCGAGGTGAGGTGGATCGACCCGGAGCACCCGGTGACCCCGTACCCGCTGGCGCCGCTGTCGCGGGCGCTGATCGCCCGCTTCGGCGCGGATCAGCCCGGGACGCCGTCGAGGTAG	MTVPATTTLYIVSAVVRRDGRWLVVRKRHTETFIQVGGKIEPGESPRDALVRECHEEIGLEVDPPRVRALGHHHAVAANEPDHVVDAHAFEVELPPGFEPEPRAELAEVRWIDPEHPVTPYPLAPLSRALIARFGADQPGTPSR	PGPT0021230_1524	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876	NA	NA
AK001_02964	2883			hypothetical protein	ATGTTCCTGTCGGCCCCGACGTCTAGAGTTGCAGGGGTGACCACCGCTCTGTACCGCCGCTACCGGCCCGAGACGTTCGCCGAGGTGATCGGCCAGGACCACGTCACCGCGCCCCTGCGGCAGGCGCTGCGCACCGGTCGCGCCAACCACGCCTACCTCTTCTCCGGGCCGCGCGGCTGCGGCAAGACGACGTCCGCGCGGATCCTGGCGCGCACGCTCAACTGCCACCGCAACACCCCCGAGAAGCCGCTCGACACCCCGTGCGGCGAGTGCCCCTCGTGCGTGGAGCTGGCCCGCGGCGGTCCCGGCTCCCTCGACGTCGTCGAGATCGACGCCGCCAGCCACAACGGCGTCGACGACGCCCGTGACCTGCGCGAGCGCGCCACGTTCGCCCCCGCCCGGGATCGGTACAAGATCTTCGTGCTCGACGAGGCCCACATGGTGACCTCGCACGGCTTCAACGCGCTGCTCAAGATCGTCGAGGAGCCGCCGGAGCACATCAAGTTCGTGTTCGCGACGACGGAGCCGGACAAGGTCATCGGCACGATCCGCTCGCGCACCCACCACTACCCGTTCCGCCTGGTCCCGCCGGACGTGCTCGGGCCGTACCTCGAGCAGCTCTGCGCGGCCGAGGGCATCGAGCTCGGCGCCGGGGTGGTGCCGCTGGTCACGCGGGCCGGCGGGGGGTCGGTGCGGGACACCCTCTCGGTGCTGGACCAGCTCATCGCCGGGTCGTCCGGCACGGTCGAGTACGACCTCGCGGTGAGCCTGCTCGGCTTCACCCACGCGACGCTGCTGGACGACGTCGTGGACGGGATCGCCGCCCGTGACGGCGCCTCCATCTTCCGCGTGATCGACCACGTCATCGCCACCGGTCACGAGCCGCGCCGGTTCGTCGAGGACGTCTTGGAACGGCTGCGCGACCTCATCGTCATCGCGGTCTCCGGCGAGGCCGCCGACGCCGTGCTGCGCGACCTGCCCGCCGACCAGCTCGAGCGGATGCGCCACCAGGCCGCTCACCTCGGCTTCTCGGAGCTCTCCCGCGCCGCCGACCTGGTCAACACCGCCCTGACCGAGATGACCGGCGCCACCTCGCCCCGGCTGCACCTCGAGCTGCTGTGCGCCCGCCTGCTGCTGCCGGGCGCCGACGACGGCACGGAGGGCCTCGCCGCCCGCCTCGACCGGCTCGAGCGTGGGGCGGTCGCGGCCGGCCCCGTCGGTGCGGCGCCGGGCACGACGGCGGCACCCGCCGACGGTGCCGAGGACCAGGCTGCCGCCGAGCCGGCAGCCGCCGCGTCCGGGACGTCGGGGCTGTCCGGCGCCGCCGCGGCCCGGGCCGCCCTGGCCCGGAGCCGCCGTCCGGTGGCAGAGGTCTCCCCGCCGGCGTCCGACCCCGCACCGCCGTCGGTGGCCGCGTCCCAGCCCGCCCCGGAGGCCGGGGCCGAGGCGGACACCGAGGCCGAGCCGACGTCGGCACCCGAGCCGCACGCGCCGGTCGAGGACGCCGCGGTGCCGTCGGCGTCCGCCGTCGGCCCGGACGTGGAGGCGCCCCCGGCCGAGGAGCCTCCGACCGAGGCGCCCCCGGCCGAGGAGCCTCCGACCGAGGAGCCCCCGGCCGAGGAGCCTCCGACCGAGGCGCCCCCGGCCGAGGAGCCTCCGACCGAGGAGCCCCCGGCCGAGGAGCCTCCGACCGAGGAGCCCCCGGCCGAAGCGCCCGAGGACTCGGTGCCCGAACCCGTGGAGCCCGCGGGCCCGGCGGCAGAACCTCAGGACCCGCGCCCCGCAGCACCGCCGGCGCCCGCCTCGCCGGCCGGGCACACCCCGGAGCCGACGAGCGCGAGCGGTCCGACGGCGGAGGACCTGCGCCGCCGGTGGGAGGAGATCGTCGCCAACCTCGGCAGCCCCGTGACGCGGGCCCTGGTCGAACAGAACGCCCAGATCGGTGCGCTGTCCGGGGACCGGCTCCAGCTCAGCTTCCAGACCGAGGGGCTGGCGCGGAACTTCTCCCAGCCGCGGCACACCGAGGCGTTCGCCGAGGCCGTCTACCAGACGCTGGGTCTGCGGGCCCAGATCGAGGTGACCGTCGGGGCACCCGGGCCGGCCGACCCGCCGGCGTCGGGGCCGACGTCCGCGTCCGGGCCGCGCCGCGAGCCGCCGGTCGACCGGCCGTCCGCTCCGGAGCCGCCGCGAGGTGCCTCGCCCGGGCCGCACGGGGGCGGGCACGCTGCGGCGTCGCAGGTCTCCGCCGCCTCGGCGGGACAGGGCGGTCTCGCCGTCGCCGAGCGCGTCGAGACCGCGCCGGCCGACACCGCGCCCGACACGACGCCTGACGCAGCGCCCGGACCGTCGCCCGACGCAGCGCCCGATACCGCGGCCGCCGACGCGGCCGACGCCGCCTGGCTCGCCGGGGCCTCGGCCGCGACCTCGCAGAGCGCGGCGTCCGCCGCCTCCGCCGCGCCCGGCCGTGCACCGGCCCGCCCGGAGCCCGCGCGAGCGGTCGCCGCGACCGTCGCCCCGCCGCAGCCGCCGTCGGAGGCCACGGGGTCCCCGGCCGCGCCGGCACCGTCGACGCCCCCCTCGTCCGCGCCGTCGACGCCCCCCTCGTCCGCGCCGTCGACGCCCTCCACGGCGCCGCCGTCGCCCTCCACGGCGTCGGCGGACGCCCCGGTTCCCGCGGCGGAACCGGACCCGTGGCCGCACCGGATGCGCTCGGCGCCGCAGGAGACGGCGTCGGCACCGGACACGGCACCATCCGCCACCGACGGCTACGACGACGCCTCGGACAGCGACCCGGAGCTCGTGTCGTCGGGCCTGGTCGGCGTCCCGCTCGTGGTCAAGATGCTCGAGGGCACGATCATCGACGAGACGACGGACGGCCCGTGA	MFLSAPTSRVAGVTTALYRRYRPETFAEVIGQDHVTAPLRQALRTGRANHAYLFSGPRGCGKTTSARILARTLNCHRNTPEKPLDTPCGECPSCVELARGGPGSLDVVEIDAASHNGVDDARDLRERATFAPARDRYKIFVLDEAHMVTSHGFNALLKIVEEPPEHIKFVFATTEPDKVIGTIRSRTHHYPFRLVPPDVLGPYLEQLCAAEGIELGAGVVPLVTRAGGGSVRDTLSVLDQLIAGSSGTVEYDLAVSLLGFTHATLLDDVVDGIAARDGASIFRVIDHVIATGHEPRRFVEDVLERLRDLIVIAVSGEAADAVLRDLPADQLERMRHQAAHLGFSELSRAADLVNTALTEMTGATSPRLHLELLCARLLLPGADDGTEGLAARLDRLERGAVAAGPVGAAPGTTAAPADGAEDQAAAEPAAAASGTSGLSGAAAARAALARSRRPVAEVSPPASDPAPPSVAASQPAPEAGAEADTEAEPTSAPEPHAPVEDAAVPSASAVGPDVEAPPAEEPPTEAPPAEEPPTEEPPAEEPPTEAPPAEEPPTEEPPAEEPPTEEPPAEAPEDSVPEPVEPAGPAAEPQDPRPAAPPAPASPAGHTPEPTSASGPTAEDLRRRWEEIVANLGSPVTRALVEQNAQIGALSGDRLQLSFQTEGLARNFSQPRHTEAFAEAVYQTLGLRAQIEVTVGAPGPADPPASGPTSASGPRREPPVDRPSAPEPPRGASPGPHGGGHAAASQVSAASAGQGGLAVAERVETAPADTAPDTTPDAAPGPSPDAAPDTAAADAADAAWLAGASAATSQSAASAASAAPGRAPARPEPARAVAATVAPPQPPSEATGSPAAPAPSTPPSSAPSTPPSSAPSTPSTAPPSPSTASADAPVPAAEPDPWPHRMRSAPQETASAPDTAPSATDGYDDASDSDPELVSSGLVGVPLVVKMLEGTIIDETTDGP				NA	NA	NA	NA	NA
AK001_02965	708	rhgT	COG2755	Rhamnogalacturonan acetylesterase RhgT	ATGACGATCCATCTCGCCGGCGACTCGACCGTCGCCCCCACCGACCACGGCGCCACCTCGGGCCACCCGGAGATCCCGCTGCTGGGCTGGGGGGACGAGCTCGTCCCGCTCGTCGCGGACGACGTGCACAACGCCGCGATCGGCGGGGCCACGACGAAGTCGTTCCGCGACGAGGGCCACTGGGCGCGCGTGATCGGCGCCGTGCGCCCCAGGGACACCGTGATCATCCAGTTCGGGCACAACGACCAGAAGGAGCCCGACGAGCTCGCCGCGGACGGCGGGTACCGGCGTCGGCTCGACGAGTTCGTCACCGAGGTGCGGGCGCTCGGGGCCCGACCGGTCCTCGCCACGAGCGTCGAGCGCCGGTGGTTCGCCGACGACGGTTCGCTGCGCTGGTCCCACGGCGCCTACCCGGCGACCGTGCGGGCCCTGGCCGCCGATCGGGACGTCCCGCTCATCGAGCTGACGGTGTTCACGCGCTGGCTGTACACGTGGCTCGGCGTCGAGGCCTCGGCCGCGCTGTTCCCGCACGGCGCGGCCGCCGCGGCCGGCCTCGAGGTGCCGGAGGCCATGCAGCAGGACAACACCCACTTCACGACGGCCGGCGCGCGGTACGTGGCGCAGTACGTCGCCGAGGCGCTGGTCTCGCTCGACGGCGTGCACGACGCCGAGACGCCCGTGGGGCTGGAGATCGCCGCGCGGGGGTGA	MTIHLAGDSTVAPTDHGATSGHPEIPLLGWGDELVPLVADDVHNAAIGGATTKSFRDEGHWARVIGAVRPRDTVIIQFGHNDQKEPDELAADGGYRRRLDEFVTEVRALGARPVLATSVERRWFADDGSLRWSHGAYPATVRALAADRDVPLIELTVFTRWLYTWLGVEASAALFPHGAAAAAGLEVPEAMQQDNTHFTTAGARYVAQYVAEALVSLDGVHDAETPVGLEIAARG	PGPT0027780_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0027780-dndE-K19172	NA	NA
AK001_02966	849	gltC		HTH-type transcriptional regulator GltC	ATGCGCTACGTCCTGGCCGTCGCGGAGACGGGCAGCTTCACCCGGGCCGCCGAGCGGTGCTTCGTGGTGCAGTCCGCGCTGAGCCACCAGGTGGCCGCGCTGGAGCGCGAGCTCGGGGTGCGGCTGTTCGCCCGCACGAGCCGCCGGGTCGAGATCACCGCGGCGGGGGAGGCGTTCCTGCCGTCGGCGCGACGCGCGCTGGAGGCGGCGGACCGGGCGGGCGCCGACGCCGCCGCTGCTGTCGGCCAGGTCCGCGGCACGTTGCGGCTCGGCATCATCCCGTCGGTGACCGCGTTCGACGTGCCGGCGGTCCTGCGACGCTTCCGCGAGGCGCACCCGCAGGTCGGGGTGTCGCTGCGGGTGGACTCCAGCGTCGAGCTCGTGGCCGCGGTGCGGGCGGGCGAGACCGACGTCGCGGTGCTGGGGCTGGCGCAGGGTGAGCCGCCGTCGGGCGTCCGGCACCGCGAGCTCGTCCGCGAGCGGCTGGTGGCGGCCGTCGCGTCGGACCACCCGCTCGCGGGGCGTCAGCGGACCGGCCTCGCGCGGCTCGCTGACGAGACCTTCGCGGACTTCCCGACCGGGTCGCCGGGCCGGGCGCAGCGCGACCGGGCGTTCTCCGCGGCCGGCCTGCGGCGCGAGGTGGCCTTCGAGGTGCCGACCATCGACCTGCTCCTCGGACTGGTCCGCGAGGGCCTCGCCGTGGCGATGCTGTCCGAGCCGCTGGTGGCGGGGGCCGACGGCGTGACCGCCGTCCGCGTCACGCGCGGCCCGCAGCGGGTCCAGTACGTCGTGTGCGACGACCTCAACCCGAGCCCGGCGGCGCTGGAGTTCCTGGCCCTCGTGCCGTGA	MRYVLAVAETGSFTRAAERCFVVQSALSHQVAALERELGVRLFARTSRRVEITAAGEAFLPSARRALEAADRAGADAAAAVGQVRGTLRLGIIPSVTAFDVPAVLRRFREAHPQVGVSLRVDSSVELVAAVRAGETDVAVLGLAQGEPPSGVRHRELVRERLVAAVASDHPLAGRQRTGLARLADETFADFPTGSPGRAQRDRAFSAAGLRREVAFEVPTIDLLLGLVREGLAVAMLSEPLVAGADGVTAVRVTRGPQRVQYVVCDDLNPSPAALEFLALVP	PGPT0012965_1605	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0012965-oxyR-K04761	NA	NA
AK001_02967	975			hypothetical protein	ATGACCACCACCGCTCCGGCGTCACCCGCGACGGCGCCTCCTCACCCTCCGGCCGCGGCGCACGGCGGCACGATCGCCCTGACCGCGATCACACCGGTCGTGTGGGGCACCACCTACCTGGTGACCACCGAGCTGCTCCCTCCGGGTCACCCACTGTTCGCCGCCGCCGCGCGCGCACTGCCCGCCGGGCTGCTCGCCCTCGCGATCGCGCGGACCCTGCCGCGCGGATCCTGGTGGTGGCGGGCGGCGGTCCTCGGCGTGCTGAACATCGGGGCCTTCTTCCCGCTGCTCTTCGTCGCCGCCGAACGCCTGCCCGGCGGGGTCGCCGCGACGCTCGGCGCCGCCCAACCGCTGGTCGCCACCGTCCTGGCCGTCGTCGTCCTCGGCGACCGGTGGTCCGTGTGGCGCCTCGCCTGGGGCGTCGTCGGGGTGCTCGGGGTCGGGCTCGTCGTGCTCGGACCGGACGCCGCCCTCGACCCGGTCGGTCTCGCCGCGGGCGTCGGCGGTGCCGGCGTCATGGCGCTCGGCGTCACGCTCACCAAGAGGTGGGGTCCGCCACCCGGCGTCGGCGCCACCGGGTTCGCCGGATGGCTGCTCACCGCGGGCGGGCTGGCCCTCGTGCCGTTCGCGCTGCTCGAGGGCGGGGTGCCGGCCGGCATCGACGCCCCCGCGCTCGGCGGCTACCTCTGGCTCGGGATCGTCGGCGGGCTCGTGGCGTACACACTGTGGTTCGCCGGGATCCGCCGGCTCTCCGTCGTGGCGGTGGCGTTCCTCGGACTGCTGTCCCCGCTGACCGCCGCCCTCCTCGGTGCCACGGTGCTCGGGGAGTCGATGGGGCCGGCCCAGCTCGCCGGATTCGGTCTGGCGATGCTGGCGCTGGTCGCGGGGCAGCTCGTCCCCCGACGCCGACGAGTCAGCGCCGCAACGCCCGCCGCGCCAGGGAGTTCCCCAGCCACTGCACGAGCTGGACGATGA	MTTTAPASPATAPPHPPAAAHGGTIALTAITPVVWGTTYLVTTELLPPGHPLFAAAARALPAGLLALAIARTLPRGSWWWRAAVLGVLNIGAFFPLLFVAAERLPGGVAATLGAAQPLVATVLAVVVLGDRWSVWRLAWGVVGVLGVGLVVLGPDAALDPVGLAAGVGGAGVMALGVTLTKRWGPPPGVGATGFAGWLLTAGGLALVPFALLEGGVPAGIDAPALGGYLWLGIVGGLVAYTLWFAGIRRLSVVAVAFLGLLSPLTAALLGATVLGESMGPAQLAGFGLAMLALVAGQLVPRRRRVSAATPAAPGSSPATARAGR				NA	NA	NA	NA	NA
AK001_02968	654	metP	COG2011	Methionine import system permease protein MetP	ATGAACCCCGACCTCGTGCCCGTACTGTGGCAGGCGTTCGGCGAGACCGTCTTCATGGTGCTGATCACCCTGGCCGTGGGCGGTGTCTGCGGGCTCGCGCTCGGTCTCGGGCTCTACCTGACGCGGCCCGGCAACCTGCTGGAGCACGGCGGCGTGTTCGCGGTGCTGAACGTGGCCGTCAACGTCGTGCGTCCGATCCCGTTCCTCATCTTCCTCGTGGCGCTGGGTCCCGTGACCCGCGCCGTGGTCGGGACGACGATCGGGACCGGGGCGTTCACGTTCGCGATGTGCGTCATGGCGTCGTTCGTGTTCGCGCGGCTGGTGGAGCAGAACCTCGTCTCGATCGACCCCGGCGTCATCGAGGCGGCCCGGGCGATGGGCGCCTCGCCGCTGCGGATCGTGCGCACCGTCGTCGTCCCCGAGGCGCTGTCCCCGCTGATCCTCGGCTACACCTTCCTGTTCGTCGGGGTGCTCGACATGTCCGCGATCGCCGGGTACCTCGGGGCCGGCGGGCTGGGCGACTTCGCCATCGTGTACGGCTACCGGCAGTACGACTGGGCGCTGACGGCGCTGGTCGTGGTGATCATCATCGTCATCGTCCAGCTCGTGCAGTGGCTGGGGAACTCCCTGGCGCGGCGGGCGTTGCGGCGCTGA	MNPDLVPVLWQAFGETVFMVLITLAVGGVCGLALGLGLYLTRPGNLLEHGGVFAVLNVAVNVVRPIPFLIFLVALGPVTRAVVGTTIGTGAFTFAMCVMASFVFARLVEQNLVSIDPGVIEAARAMGASPLRIVRTVVVPEALSPLILGYTFLFVGVLDMSAIAGYLGAGGLGDFAIVYGYRQYDWALTALVVVIIIVIVQLVQWLGNSLARRALRR	PGPT0020515_3522	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072	NA	NA
AK001_02969	1095	metN2	COG1135	Methionine import ATP-binding protein MetN 2	GTGAGCGAGCCGATCATCAGCTTCCGCGACGCGGTCAAGGAGTTCCCCGCCGCCCGGGGGCCCCGTCGCCGGCGACGCGGACGACGCGACGCCCGCGTGCGTGCCGTCGACGGCGTCACGCTGGACGTCGCCGCCGGCGAGATCTTCGGCGTCATCGGCTACTCCGGAGCCGGCAAGTCCACCCTCGTGCGGCTGGTCAACGCCCTGGAGACGACGACGGCGGGATCGGTCGTCGTGGACGGCACCGACCTGACGGGGCTGAGCGAGGCACGGCTGCGTCCCGTCCGGGCCGGGATCGGCATGATCTTCCAGCAGTTCAACCTGCTGGCCTCCCGGACCGTCGCCGGGAACGTCGCCTACCCGCTGGAGGTGGCCGGCTGGTCGCGCGCCGACCGGGACGCCCGGGTGCGCGAGCTGCTCGACTTCGTCGGCATCGGCGACAAGGCCCACGTCCACCCCGCGCAGCTGTCCGGCGGGCAGAAGCAGCGCGTCGGCATCGCGCGGGCGCTGGCGACCAGCCCCCGGATCCTGCTCGCGGACGAGGCCACGAGCGCGCTCGACCCGGAGACGACGGCGGACGTGCTCGCCCTGCTGCAGCGCGTCAACCGCGAGCTCGGCATCACGGTCGTGGTGATCACCCACGAGATGGAGGTCGTGCGCTCGATCTGCCACCGGGTCGCCGTCATGGAGGCCGGTCGCGTGGTCGAGCTGGGCGACGCCTACCGGGTGTTCAGCGCACCGCAGCACCCGGTCACGCGCCGGTTCGTCGCCTCCGCGCTGCGGGACGTGCCGTCGCCGGCCGTGCTGGACCGGCTGCGCGAGCGCCATCCCGGCCGGGTCGTCACCGTGCGGATCGACGAGGTGGCCGGGTCGTCCGCGCAGGTCATGCGGGTCCTGGCCGAGCACGGCGTGGACGGCACGATCGTCTACGGCGGCATCACCGAGGTCGCCGAGCGCCCCTACGGCTCGCTCACGCTCGAGCTCGTCGGGGACGACGCCGCGGTGCAGGCCGCGCTGGACGGCCTGCGGGACGCCACGACCGTCGTCGACCACGGCACCGCCACCCGACCCGCCGCCGACAGGAGCGACCGATGA	MSEPIISFRDAVKEFPAARGPRRRRRGRRDARVRAVDGVTLDVAAGEIFGVIGYSGAGKSTLVRLVNALETTTAGSVVVDGTDLTGLSEARLRPVRAGIGMIFQQFNLLASRTVAGNVAYPLEVAGWSRADRDARVRELLDFVGIGDKAHVHPAQLSGGQKQRVGIARALATSPRILLADEATSALDPETTADVLALLQRVNRELGITVVVITHEMEVVRSICHRVAVMEAGRVVELGDAYRVFSAPQHPVTRRFVASALRDVPSPAVLDRLRERHPGRVVTVRIDEVAGSSAQVMRVLAEHGVDGTIVYGGITEVAERPYGSLTLELVGDDAAVQAALDGLRDATTVVDHGTATRPAADRSDR	PGPT0020520_22	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071	NA	NA
AK001_02970	888	metQ	COG1464	putative D-methionine-binding lipoprotein MetQ	ATGACCCTGCGCTCCACCCTGCTCACCACCGGCGCCGCCGTCTCCGTCCTGGCCCTGGCCGCCTGCTCCGGCGACGCCGCCGCGACCGCGAGCGGTACCGCCGAGGACCCCGTCCGCATCGGCGTCGTCTCCGCCGGCGAGGCCTACTGGGACACGTTCGCCGAGGCCGCCGCGGCCGAGGGCATCGAGGTCGAGATCGTGAACTTCTCCGACTACCAGCTCCCCAACCAGGGGCTGTCCGACGGCGACCTCGACCTCAACCAGTTCCAGCACCTGCAGTTCCTCGCCGGCTACAACGTGGCGCGCGGCGACGACCTCACCCCGATCGGCGCCACCGCCGTCTACCCGCTGGGTCTGTACTCGACCGCTCACGCGAGCCTCGAGGAGATCCCGGACGGCGGCCAGGTCGCGATCCCCAATGACGAGACGAACCAGGCGCGGGCGCTGCTCGTGCTGCAGGACGCCGGGCTGCTCACCCTGCGCGACGGCGGGAACTCGTTCTCCACGCCGGCCGACGTGGTCGCCGAGGAGTCCCGCGTGTCGGTGACGCCGGTCGACGCTGCGCAGACCGCGATCGCCCTGGCGGACGTCGACGCCTCGATCATCAACAACGACTTCGTGGGCGACGCCGGCCTGGCCGAGGACGACGCGATCTTCACCGACGACCCGGACTCCGCGGCGGCCGAGCCGTACATCAACGTGTGGGTGGCCCGGTCCGCCGACGCCGAGGACGAGACGCTGGCCCGGCTCGTGGACATCTACCACTCGCCGGAGATCGAGGCCCAGGTCCTCGAGGCCTCCGGCGGCACGGGTGTGATCAAGGACAACGACCCGGCCGACCTGCAGGCGATCCTCGACGACATCGAGACCAACCTCGCCGCCGAGTGA	MTLRSTLLTTGAAVSVLALAACSGDAAATASGTAEDPVRIGVVSAGEAYWDTFAEAAAAEGIEVEIVNFSDYQLPNQGLSDGDLDLNQFQHLQFLAGYNVARGDDLTPIGATAVYPLGLYSTAHASLEEIPDGGQVAIPNDETNQARALLVLQDAGLLTLRDGGNSFSTPADVVAEESRVSVTPVDAAQTAIALADVDASIINNDFVGDAGLAEDDAIFTDDPDSAAAEPYINVWVARSADAEDETLARLVDIYHSPEIEAQVLEASGGTGVIKDNDPADLQAILDDIETNLAAE	PGPT0020510_358	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073	NA	NA
AK001_02973	1800	bga		Beta-galactosidase	ATGCCACGCTTCGACATCGGCGACGAAGACTTCCTGCTCGACGGCGAGCGCCTGCAGATCGTCAGCGGCGCGCTGCACTACTTCCGGGTGCACCCCGACCAGTGGGCCGACCGGATCCGCTCCGCCCGGCTCATGGGGCTCGACACCATCGAGACGTACGTGGCGTGGAACCACCACTCCCCCGCACCCGGCGAGTTCCGCACCGACGGCCGCCGCGACCTCGCCCGCTTCCTCGACCTCGTCGCCGCCGAGGGGATGCACGCGATCGTGCGTCCCGGCCCGTACATCTGCGCCGAGTGGACCGGTGGCGGCCTGCCCGCCTGGCTGCTGGCGGACCCCGCCGTCGGCGTCCGGCGCGCCGAGCCGCGCTTCCTCGCGGCGATCGGCGACTACTACCGCGCCGTGGCCGCGATCGTCGCGCCGCGGCAGGTCACCCGGGGCGGCTCGGTGCTGATGATGCAGGTCGAGAACGAGTACGGCGCCTACGGCGACGACCCCGTCCCGGTGCGCCAGGAGTACCTGCGCACGCTGGCCGGGATGCTGCGCGACGCCGGGATCGAGCTCCCGCTGTTCACCTCCGACCAGGCCGACGACGAGCACCTGTCCCGCGGCAGCCTGCCCGAGCTGCACACGACGGCGAACTTCGGCTCCCGCAGCCCCGAACGGCTCGCCCTGCTGCGCCGCCACCAGCCCACCGGGCCCCTGATGTGCATGGAGTACTGGAACGGCTGGTTCGACTCGTGGGGTCTGCACCACCACACGACCGCGCCCGACGCGACGGCGCGAGACCTCGACGCCCTGCTCTCGGCCGGCGCGTCGGTGAACCTGTACATGGTCCACGGCGGCACGAACTTCGGCCTCACCTCCGGCGCCAACGACAAGGGCGTGTACCGCCCCATCACCACGTCCTACGACTACGACGCCCCGCTGGCCGAGCACGGAGCACCGACCGCGAAGTACCGGCTCCTGAAGGAGGTCGTCGCCCGGCACCGGGACGTGCCGCCCGAGTCGCCCGCCGCGGTTCCGCCGGCCCCGCAGCTCGCCGTCACGCTGGACCGGGCCGTCCCGCTCCACGACGTCGTCGGGCTGCTCGGTGACACGCACCGGAGCGAGCACCCGCCGACCCACGACGACCTCGGAGCGTGGGACGGGTTCGTGCGCTACACGACGCAGGTCCGCGCCGACGACGCCGTCGTCACCGTCCAAGGGGTCCGCGACCGCGCGCTCGTCGCGCTCGACGGCGAACCCGTCGGGCTGCTCGACCGCACGGCGGGCATCCACGCGGCCGCCCTGCCTGCTCGCGCCGGGGAGCTCACGCTCCTCGTCGAGGACCAGGGCCGTGTGAACTACGGCTCCCGGATCGGGGAGCCCAAGGGCATCCTCGGCCCGGTCCGCACGGCGACGCGTGAGCTCACCGGCTGGGAGACCACGCCGCTGCGGTTCGACGACGACGGCGGCGCGCTCCGCACCGCGGTCACCGACACCCTGCGTGCCACGCCGCCGTCCGAGGTGACGCCGCCGGGCCGCCCGCTGGCCGGCCCCGCCCTCGCTCGCGGCACCTTCGCGAGCGAGGCCGGGGTCGACCACTTCCTGCGCCTCGACGGCTGGACCAAGGGCGTGGTGTGGGTCAACAGCTTCTGCCTGGGCCGGTACTGGAACGCCGGGCCGACGCGCACGCTCTACCTGCCCGGGCCGGTGGTCCGGGCCGAGAACGAGATCGTCGTGCTCGAGCTGCACGGGGCCACGACGCGCACCGTGCGGTGCGTGCCGGGCCCCGACCTCGGGCACACCGAGGAGTAG	MPRFDIGDEDFLLDGERLQIVSGALHYFRVHPDQWADRIRSARLMGLDTIETYVAWNHHSPAPGEFRTDGRRDLARFLDLVAAEGMHAIVRPGPYICAEWTGGGLPAWLLADPAVGVRRAEPRFLAAIGDYYRAVAAIVAPRQVTRGGSVLMMQVENEYGAYGDDPVPVRQEYLRTLAGMLRDAGIELPLFTSDQADDEHLSRGSLPELHTTANFGSRSPERLALLRRHQPTGPLMCMEYWNGWFDSWGLHHHTTAPDATARDLDALLSAGASVNLYMVHGGTNFGLTSGANDKGVYRPITTSYDYDAPLAEHGAPTAKYRLLKEVVARHRDVPPESPAAVPPAPQLAVTLDRAVPLHDVVGLLGDTHRSEHPPTHDDLGAWDGFVRYTTQVRADDAVVTVQGVRDRALVALDGEPVGLLDRTAGIHAAALPARAGELTLLVEDQGRVNYGSRIGEPKGILGPVRTATRELTGWETTPLRFDDDGGALRTAVTDTLRATPPSEVTPPGRPLAGPALARGTFASEAGVDHFLRLDGWTKGVVWVNSFCLGRYWNAGPTRTLYLPGPVVRAENEIVVLELHGATTRTVRCVPGPDLGHTEE	PGPT0017815_2131	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308	NA	NA
AK001_02974	1296	celB	COG5297	Endoglucanase E-2	ATGTCCCGCCACCTCCGCACCCGCGCGGCCCTGGCCACGGCCGCTCTCGCCGCCACGACCGTCGCGGCGCTCTCCGTCGGACCCGCCCTCGCCGACCCGCCACCCCCCGACGACCCGCGCCTCTGGGTGAACCCCGAGAGCTCGACGCTCGAGCACGTCGCCGAGCTCGGACTCGTGGGGGACGCGCGGGCCGACGCCGTCGCCCTCGCCGCGGTCCCCACGGCGACCTGGTTCACCGGCGGCACGCCGGTCGAGATCAAGCAGGACGTCAAGGACGTCGTCGTGCACGCCCACGCCGCCGACGAGATCCCCGTGCTCGTCGCGTACAACCTGCCGTTCCGGGACTGCGCCCAGTACTCCGCCGGGGGTGCGACGAGCCCGGCCGAGTACGAGGCGTGGATCGACGGGTTCGCGCAGGGGATCGGGAACAAGCAGGCCGTCGTGATCCTCGAGCCCGACGGGCTCGGCATCATCCCCTGGTACACGACGTTCGAGGGCACGCAGGAGTGGTGCCAGCCCGAGGAGGCCGACCCCGAGACCGCCGCGGACGAGCGGTTCGCGATGCTCGGCGACGCCGTCGACACCCTCGGCGAGCTGCCCGGCACGCGTGTCTACCTGGACGCCGGCCACAGCGGGTGGCTCAACGTCGGCGACAACACCGACCGGCTGCTGAAGGCCGGGATCGAGCGGGCCGACGGCTTCTTCCTCAACGCCTCCAACTACCAGTACACCGTGAACTCCGAGGCGTACGGCCGGTGGATCAGCTCGTGCCTCGCGCTGGTCACGGAGGTCGGCGGTGCGCTGGGCGACTGCGGCAACCAGTACTGGAACGGCGGCCCCGCGACGGACTGGCAAGGAGCGGCCATGACGCCCTACGCCGAGTGGACGAGCGGCCCCGTCGACGAGGTGCCGCTGGAGCAGAACACGATCGGGATCGACTCGCGGTACGCCGCCGCCCTCGGCGACGTCGAGCCGAGCGTGTCGTTCGTCGTCGACACCTCCCGCAACGGCCAGGGGCCCTGGGACCCCGCGACGTCGGAGAACACCTACAGCGACCCGGAGGACTGGTGCAATCCGCCCGACCGCGGCCTGGGCGAGCGCCCGACGCTCGACGTCGCCGACCCGCTCGTGGACGGCTACCTGTGGATCAAGGTGCCGGGCGAGTCCGACGGGCAGTGCTTCCGCGGCACCGGCGGCCAGCTCGACCCGGAGCGCGGGATCGTCGACCCGCCGGCCGGGGAGTGGTTCGTCGAGCAGGCCGACGAGCTGATCGACCTGGCGGTCCCGGCGCTCTGA	MSRHLRTRAALATAALAATTVAALSVGPALADPPPPDDPRLWVNPESSTLEHVAELGLVGDARADAVALAAVPTATWFTGGTPVEIKQDVKDVVVHAHAADEIPVLVAYNLPFRDCAQYSAGGATSPAEYEAWIDGFAQGIGNKQAVVILEPDGLGIIPWYTTFEGTQEWCQPEEADPETAADERFAMLGDAVDTLGELPGTRVYLDAGHSGWLNVGDNTDRLLKAGIERADGFFLNASNYQYTVNSEAYGRWISSCLALVTEVGGALGDCGNQYWNGGPATDWQGAAMTPYAEWTSGPVDEVPLEQNTIGIDSRYAAALGDVEPSVSFVVDTSRNGQGPWDPATSENTYSDPEDWCNPPDRGLGERPTLDVADPLVDGYLWIKVPGESDGQCFRGTGGQLDPERGIVDPPAGEWFVEQADELIDLAVPAL	PGPT0018620_4320	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-CELLULASES,PGPT0018620-celJ|eglA|eglS-K01179	NA	NA
AK001_02975	297			hypothetical protein	ATGATCTTCAAGGCCGTGGGCGACGGGCGCCCCTACCCCGACCACGGGCGCGAGGAATCCATGGACTGGTCGGACGTCCCTCCTCGGCAGGTGCGCCTGGACGAGCTGGTCACCACCAAGCGCACTCTGGACCTCGACGCCCTGCTCGCCGAGGACTCGACGTTCTTCGGGGACCTCTTCGCGCACGTCGTCGAGTACCGCGGCATCCTGTACCTGGAGGACGGCCTGCACCGGGCCGTCCGCGCCGCCCTGCAGCAGCGGCCCATCCTGCACGCCCGTGTCCTGACGGTGGGCTGA	MIFKAVGDGRPYPDHGREESMDWSDVPPRQVRLDELVTTKRTLDLDALLAEDSTFFGDLFAHVVEYRGILYLEDGLHRAVRAALQQRPILHARVLTVG				NA	NA	NA	NA	NA
AK001_02976	675			hypothetical protein	GTGACCTCACCAGCCCAGGACCCGGCGCGCGTCACTCGTCGCCGCCGCAAGCACGAACGGCAGGCCGTCGTCTTCGGTCTCCTCATCGCCCTGCTGGTGGTCCTGGGCCTGGGAGCGCTCGCCGTCTACACCGACACGATCGAGGCGCCCTTCAGCGAGCCCATCCACACGCCGAGCGCCGCCGCGGCGACCATCGAGCCCGCCTGCCTGCCGGTGAACGAGAGGTGGCCGGACGGCGCCCCGCCGATGCAGTACAACAACGTCAACGTCCGCGTGTACAACGCTGCCGACATCAACTTCAACCTGGCCGGCGCCAACGCGGACGTGCTCACCGAGCGCGGCTTCAACGTCCGCGACACGGGTGACTTCACCTACGAGATCGAGGGCCGGTCCGAGATCCGCTACGGCCTCAAGGGGATCCGCGAGGCGTACACGCTCGCCGCGCAGTACGCGGACGTGCGCCTCGTGCTGGACGACCGTCCCGGGGAGTTCGTCGACCTGCTCGTCGGCCAGGAGTGGCGCGAGCCGCTGCCGGTCGAGGAGGTCCCCCTGGAGAACGGTGAGCCGATGGCCAACCTGCCCGGCTGCCTCCCGGCCGAGGAGATCGACCCCATCCCGCGCGAGTACGGCTACCAGCGGGGTCCGAACGCGGACGACAGCTCCGAGGAGGCCTGA	MTSPAQDPARVTRRRRKHERQAVVFGLLIALLVVLGLGALAVYTDTIEAPFSEPIHTPSAAAATIEPACLPVNERWPDGAPPMQYNNVNVRVYNAADINFNLAGANADVLTERGFNVRDTGDFTYEIEGRSEIRYGLKGIREAYTLAAQYADVRLVLDDRPGEFVDLLVGQEWREPLPVEEVPLENGEPMANLPGCLPAEEIDPIPREYGYQRGPNADDSSEEA				NA	NA	NA	NA	NA
AK001_02977	1326	rutG	COG2233	Putative pyrimidine permease RutG	ATGCAGCTGGGCTGGACGAAGCACGGCGACGGCGCGAGCATCTCCCCGGGAGCGGTCGTCGCGCCGGGCGAACGGCTCACCTGGCCCCGGACGATCGGGGTGGGGCTGCAGCACATCGTCGCGATGTTCGGGGCGACCTTCCTCGTGCCGCTGCTGACCGGGTTCCCGCCGTCGACGACGCTGTTCTTCTCTGCGATCGGGACGATCGGCTTCCTGCTGATCACCGGGAACCGGCTGCCGAGCTACCTGGGGTCGAGCTTCGCGTTCATCGCGCCGATCAGCGCCGCCACGGCCTCGGACGGGCAGGCGGCCGCGATCGGCGGCATCTTCGTCACGGGCGTCCTGCTGGCGGTCGTCGGCGTGGTCGTCCACCTGGCGGGTTCACGGTGGATCGACCTGGTCATGCCGCCGATCGTCACCGGGGTGATCGTGGCCCTCATCGGGCTCAACCTGGCACCGGCCGCCTGGGGCAACTTCCAGGTCGCGCCGGCCACGGCCGTGGTGACCCTGGTCGCGGTCGTGCTGGTCTCGGTGCTGTTCCGCGGCATCCTCGGACGGCTGGCGATCCTCGTCGGCGTCCTCGTCGGGTACGCCTTCGCCGCGGTGCGGGGCGAGGTGGACTTCACCGCGGTGCAGGACGCGAGCTGGTTCGGGGCCCCCACGTTCACCGCCCCGAGCTTCGAGCCGGGCGTGCTCGGCCTGTTCCTCCCCGTGGTGTTCGTCCTGATCGCCGAGAACGTCGGCCACGTGAAGTCGGTCGCGGCGATGACGGGCCAGAACCTCGACGACCGGATGGGCCGGGCGCTGCTGGCGGACGGTGTCGCCACGACCCTGGCCGGCACCGGTGGCGGGTCCGGCACGACGACGTACGCGGAGAACATCGGGGTCATGGCGGCCACGCGCGTCTACTCGACGGCCGCCTACTGGGTGGCCGGGATCGGCGCCCTGCTGCTGTCGTTCTCGCCGAAGTTCGGCGAGGTGATCAACACGGTGCCGCCGGGGGTGCTCGGCGGGGTGACGACCATCCTGTACGGGATGATCGGCGTGCTGGGCTTCCGCATCTGGGTGCAGAACCGCGTCGACTTCGGCGACCCGGTGAACCTGACGACGGCGGCGGTCCCGCTGGTCATCGCCATCGCGAACTACACGTGGGCGGTCGGCGACCTCGCCTTCGAGGGCATCGCCCTCGGTACAGCGGCGGCGCTCGTCCTGTACCACGGGATGCGGTGGATCGGCCGGTGGCGGGGGACGACGCCGGACGTGGCGTCGCCGGCCTCGGCCGCGCCGCCCGCGGAGACGGACGAGACCGCAGACCGGTCGTCCTGA	MQLGWTKHGDGASISPGAVVAPGERLTWPRTIGVGLQHIVAMFGATFLVPLLTGFPPSTTLFFSAIGTIGFLLITGNRLPSYLGSSFAFIAPISAATASDGQAAAIGGIFVTGVLLAVVGVVVHLAGSRWIDLVMPPIVTGVIVALIGLNLAPAAWGNFQVAPATAVVTLVAVVLVSVLFRGILGRLAILVGVLVGYAFAAVRGEVDFTAVQDASWFGAPTFTAPSFEPGVLGLFLPVVFVLIAENVGHVKSVAAMTGQNLDDRMGRALLADGVATTLAGTGGGSGTTTYAENIGVMAATRVYSTAAYWVAGIGALLLSFSPKFGEVINTVPPGVLGGVTTILYGMIGVLGFRIWVQNRVDFGDPVNLTTAAVPLVIAIANYTWAVGDLAFEGIALGTAAALVLYHGMRWIGRWRGTTPDVASPASAAPPAETDETADRSS				NA	NA	NA	NA	NA
AK001_02978	2136			hypothetical protein	GTGACACGTCGGGCGATCGCCCTGCTGCTCGCCGTGGGCCTGGCCGCTGCCGGGTGCACGACGGCGGAGCCTGCCGGGACGGACGCCTCGTCCGGTTCCGCCCCGCGCACCGGCTCGGTGGCGGGTGCCGAGGCGCCGGCGGTCGACCCCGGAGTGCTCCCGACGGTCGAACGGGAGCCCGGCACGTTGCGGCTGGCCGAGGGGCTGCCGCCGCCGACCAACCGGTGGTTCTCCGGCCTCGTGTTCGGCGACGAGGCGCAGCCGGTCTTCCCGCTCCCGCTCGCCGTCGGGCTCACCGCCTCCGGGTTCGCCTACGGGCTGCCCGAGGTCCGGGCCGACGGCACGCTGGTCGCCGGGGCGTACGCCCCGCAGGTCGAGATCGACCTCGGGGAGGGCGTGACCGGCGTCGTGACCGGGTACGACGCCGCGACGGTGTCGGTCGACCTGGTGGCCGGCGACGAGTCCGTCCGGGGCACCCTGCACCTGACCCGTGGGTCCCCGGTCGTGCGGTACACCGCGCGGGCCGCGCACCCCGTGGGGCTGAGCCGGGCGTTCGGCGTCGACCCCGGCGCGGGCCTGCCCGAGGACACCGCCACCACCGACGTCGACGGGCGCTCCCACGTGCTGACCGGCGTCGCGGGGACCGACGTCGGCGCCGAGCTCGACGAGGCCGGCACGACCCTGGAGCTCGACGCGGGGGAGGCGGTCGCCTGGCTGGTCGCCCCGGACGGCGCCGAGGGTGCCGAGACGCTGGGGAACCTGGCGGAGGCGGCCTCGGATCCCGTCGAGGCGTCCACCGTCGGCTACGCGACCGACCCGGACGCCGTGACCACCTCCGTCGGGTACGCGACGGCGTCGGGCGGCCCGGCCGTCGTCGTGCGCTTCCCGCACCAGCGCGACGTGGCCGACGACGCCACCTGCGGTCTCGGGACGTACGCCACCGTGCTCGGCACGGTCGACGTCTGCCTCGGCTCGGAGCTGTCGTGGCGCTCGACGGCCCGTCACCCGGTGGCCGGCCTGGACCTGTCCGGGATCGACGGGGCCGCCCGCGAGGAGCTCGTCGATCAGGTCGCCGCCGACGCCGAGCGCGTGCTCGACGAGACCCGCCCGGCCGACACGTACTTCGGCGGCAAGGCGCTGGCGCGCGACGCCAACCTGTGGACCCTCGCCCGGGACCTCGGTCTGGACGACGTCGCCGCCGACCTGCGCGAGAGCCTGCTGACCGACCTGCGGCTGTGGACCGACCCCGACGGCTGCGCCGAGCGTCCCGAACGCTGCTTCACCTGGGAGCCGACGCTGCGGACCGTCGTCGGGCAGGCCACGTCGTTCGGTTCCGAGGAGGGCAACGACCACCACTTCCACTACGGCTACTTCCTCTACGCGGCGGGCGTGCTGGCCGCCGACGACGCGGCGCTTGCCGAGGAGGTCGCCCCGGTCGTCGACCTGCTCGCCGCCGACGTCGCCGCCGCGGCCGACGTGCCGGCCGGCGACGGGCCGCCGATCCCGGCGCTGCGGACCCTGGACGTCGTCATGGGGCACTCCTGGGCGTCCGGCCCGTCGCCGTTCGGGGACGGCAACAACCAGGAGTCCGCCTCCGAAGCGGTGTCGGCGTGGCACGGGCTGGCGCTGTGGGCGGACGCTCGCGCGGCCGCCGGGCTGGAGGACCGGGGCCTGACGGCGCAGGCCCGGTGGATGCTGTCGCTGGAGGCGGCGTCGGCCCGGGCCTACTGGACGGACTTCGACCGGTCCGACCCGGCCACCGCGGGTCTGGAGGCCGATGTGACCTCGCTGGTGTGGGACGGCAAGCGCGAGCGGGCGACCTGGTTCTCCGCCGAGCAGAGCGCCGCGCTCGGGATCGTCGTGCTGCCGGTCACCGGGGCGTCCGCCTACCTCGGGGACGACCCGGAGCGCGTGCGGGACAACCTGGCCGAGGCGCTGGGGACCGGCGACCTGTGGGCGCAGGGTTCGGCGTGGGACGTGATGTTCGGCGACCAGCTGCTCATGTACGCCGGGCTGCTCGGACCCGACGACGCGGCGTCTGCCCTCGAGGTGGCACGCGAGCTGCCGGCCGAGCGGGTCGACGACGGCTCGACCCGGTCCTGGATGCTGGCCTGGCTGCACCAGCAGGCCGCCTGA	MTRRAIALLLAVGLAAAGCTTAEPAGTDASSGSAPRTGSVAGAEAPAVDPGVLPTVEREPGTLRLAEGLPPPTNRWFSGLVFGDEAQPVFPLPLAVGLTASGFAYGLPEVRADGTLVAGAYAPQVEIDLGEGVTGVVTGYDAATVSVDLVAGDESVRGTLHLTRGSPVVRYTARAAHPVGLSRAFGVDPGAGLPEDTATTDVDGRSHVLTGVAGTDVGAELDEAGTTLELDAGEAVAWLVAPDGAEGAETLGNLAEAASDPVEASTVGYATDPDAVTTSVGYATASGGPAVVVRFPHQRDVADDATCGLGTYATVLGTVDVCLGSELSWRSTARHPVAGLDLSGIDGAAREELVDQVAADAERVLDETRPADTYFGGKALARDANLWTLARDLGLDDVAADLRESLLTDLRLWTDPDGCAERPERCFTWEPTLRTVVGQATSFGSEEGNDHHFHYGYFLYAAGVLAADDAALAEEVAPVVDLLAADVAAAADVPAGDGPPIPALRTLDVVMGHSWASGPSPFGDGNNQESASEAVSAWHGLALWADARAAAGLEDRGLTAQARWMLSLEAASARAYWTDFDRSDPATAGLEADVTSLVWDGKRERATWFSAEQSAALGIVVLPVTGASAYLGDDPERVRDNLAEALGTGDLWAQGSAWDVMFGDQLLMYAGLLGPDDAASALEVARELPAERVDDGSTRSWMLAWLHQQAA	PGPT0019140_388	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019140-eng1-K01180	NA	NA
AK001_02979	732			hypothetical protein	ATGACCTGGACCACGCGGATCAAGCTGGCCGTCGGCGTCGTGCTCGTGCTCGCGCTCTGCGCGACGCTCACCCTGGTGCTCAACCGGCGCGAGAGCCAGGCCACCTCGGCCCAGGCCACGATCGTGGCCGAGGAGGTCGCCGTCGGGACCGACTACGCCGGCACCATCGTCGAGTCCTACGTGGAACCCGGCGACGCCGTCGACGAGGGCGACCCGGTCTTCACGATGCGCAGCCTGCTGCTCGCGCACGACCTGTCGATCGGGGTCGTCTCGCGCAAGGCGACGACGTACGAGGTCACCGATGCCGGCGAGATGACCGTCGTCGCCCCCTCGGACGGCACGGTCGCCGAGATCAGCTCGACCCCCGGCGGGTTCGTCCAGGCGGGTGACGTCATCGCCCGGCTGCACCGCGAGGGGTCCACCACGGTGGACGCCAAGCTCCTGCTCGACCCGGCGGACTTCGCCCGGATCGCCCCAGGCGCCCCGGTGAGCATCACGATGCCGGACCAGCGCGAAGTCCCGGGAGAGGTGGAGTCGATCTCGGTGGCAAACACGCGCAACCGCGCCGAGGCGACCGTCGTCATCGACAGCGCCACGCTCGAGCAGCAGGCCGGTGACGGCCTGGTCCTGCCCGGGACGCCCGTGGTGGCGAGCGTGGAGCTGCACGACGAGGGAGCGATGGCCGACGTCGACCTGGCGTTCCAGCGGTTCCTGCAGAGGATCGGTCTGTGA	MTWTTRIKLAVGVVLVLALCATLTLVLNRRESQATSAQATIVAEEVAVGTDYAGTIVESYVEPGDAVDEGDPVFTMRSLLLAHDLSIGVVSRKATTYEVTDAGEMTVVAPSDGTVAEISSTPGGFVQAGDVIARLHREGSTTVDAKLLLDPADFARIAPGAPVSITMPDQREVPGEVESISVANTRNRAEATVVIDSATLEQQAGDGLVLPGTPVVASVELHDEGAMADVDLAFQRFLQRIGL				NA	NA	NA	NA	NA
AK001_02980	1752			hypothetical protein	ATGACCACGCTGGACCCTCGAGCCCCGGAGCTCCCGCCTCCGGCCGGCAGCCCCACCGCCACCCCGACGACGACCATCCAGGGAGACCCCCGCGCCGCCGCCCGCCGCCGCGACGCGAACGCCGCCGCCCACTCGCCGTCGCTCATGCTCATCATGCTGCTGGCGACCCTCGGCGCCGTGGCGTACGCGGTCTTCCTGCTCAACCCCGACCACCGCGGCGACTGGCTGCCCTACTCGCTGGTCCTCGTCGCCGAGTCCGTGCTGCTCATGCTCGCCCTGCTGGCGATGTGGACGGTGCTCTCCTCCGGCTACGACCCGCGCGACTTCCCCTACCACCAGGCCCGGGAGCGGCTGTTCGACGCCCCGGAGATCCTGCGCGACGGCGCCACCGACGAGCCGACACGGTGGCGGATGTTCCTGCACGACCGCCCCGTGACCGTCGACATCTTCATCACCACGTGCGGTGAGGACGTCGACACCATCGCCCGCACCGTCCGCGCCGCGGTCGCGGTGCACGGCGAGCACCGCACCTGGGTGCTCGACGACGGACGGGACGACGAGGTCCGCGACCTCGCGGCCACGCTCGGGGCCCGGTACATCCGGCGCCTGTCCAGCGGCGGCCAGAAGGCCGGCAACGTCAACCACGCGCTGAGCATCGCCAAGGGCGACTACTTCGTCATCCTCGACGCGGACTTCGTGCCCCGCACGGACCTGCTCACCGAGACGGTGCCGTTCTTCGTCCGCGACGAGGTCGCGTTCGTCCAGTCGCCGCAGACCTACGGGAACATGAACTCGCTCATCTCCCGCGGCGCCGGCTACATGCAGGCGGTCTTCTACCGGTTCGTCCAGCCGGGCCGGAACCGCTTCAACGCGGCCTTCTGCGTCGGCACGAACGTCGTCTTCCGCCGCGAGGCCATCGACGACATCGGCGGCATGTGCACGGACTCCAAGTCCGAGGACGTCTGGACCTCGATCCACCTCCACGAGCGCGAGTGGCGGTCGATCTACATCCCGCAGACGCTCGCCGTCGGGGACACCCCGGAGACGATCGTGTCCTACGCCAAGCAGCAGCTGCGCTGGGCCACCGGCGGGTTCGAGATCCTCCTGCAGCACAACCCGCTGTCCCCGCGACGCAACCTCACCGTCGACCAGCGGCTGCAGTACTTCGTGACCTCGACCCACTACCTGTCGGGGATCGCGCCGCTGCTGCTCCTGCTCGTGCCGCCGCTGACGATCTACCTGGACCTGACCCCGATGCAGCTCGACGTGTCGGTGGGCACCTGGGCGCTGTACTACCTGGGCTTCTACGGCCTGCAGATCACTCTGGCCTTCTTCACCCTCGGGTCCTTCCGGTGGGAGGTGCTGCTGCTGGCGGCCGTGTCGTGGCCGATCTACGTCAAGGCGTTCTGGAACGCCCTGACCGGCAAGCAGCAGGCCTGGTCGGTCACCGGACGCGCAGGCGGGGCCACCTCCCCGTTCGAGGTGATCGTCCCCCAGACGCTCTGCTTCGTGTTCCTGGCGGTGACCTCCGCGGTCGGGTTCTGGAAGCACTGGGGTGACCCGGTGCCGAACCTCTCCCTCGCCTGGAACCTCACCAACACGATCATCCTCGGCGGCTTCCTCGTCACGGCCGCCAAGGAGCACCGCGAGGCGATGGGCGCCCGACGCAGCGCCCGCCGCGCGCACCGTCGACGCGCCCGTCGGGCCGCCGACTCTCCCGCCCGGACCGTCACCGTCGGAGGTGCCGCATGA	MTTLDPRAPELPPPAGSPTATPTTTIQGDPRAAARRRDANAAAHSPSLMLIMLLATLGAVAYAVFLLNPDHRGDWLPYSLVLVAESVLLMLALLAMWTVLSSGYDPRDFPYHQARERLFDAPEILRDGATDEPTRWRMFLHDRPVTVDIFITTCGEDVDTIARTVRAAVAVHGEHRTWVLDDGRDDEVRDLAATLGARYIRRLSSGGQKAGNVNHALSIAKGDYFVILDADFVPRTDLLTETVPFFVRDEVAFVQSPQTYGNMNSLISRGAGYMQAVFYRFVQPGRNRFNAAFCVGTNVVFRREAIDDIGGMCTDSKSEDVWTSIHLHEREWRSIYIPQTLAVGDTPETIVSYAKQQLRWATGGFEILLQHNPLSPRRNLTVDQRLQYFVTSTHYLSGIAPLLLLLVPPLTIYLDLTPMQLDVSVGTWALYYLGFYGLQITLAFFTLGSFRWEVLLLAAVSWPIYVKAFWNALTGKQQAWSVTGRAGGATSPFEVIVPQTLCFVFLAVTSAVGFWKHWGDPVPNLSLAWNLTNTIILGGFLVTAAKEHREAMGARRSARRAHRRRARRAADSPARTVTVGGAA	PGPT0022275_1473	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-CELLULOSE_METABOLISM	CE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0022275-bcsA|yhjN|celA-K00694	NA	NA
AK001_02981	924	fgd_7		F420-dependent glucose-6-phosphate dehydrogenase	ATGACGCTCGACCTGCGCATCTTCACCGAACCCCAGCAGGGCGCCTCGTACGACACCCAGCTCGCCGTCGCGCAGGCGACCGAGCAGCTCGGGTTCAGCGCCTTCTTCCGGTCCGACCACTACCTCGCCATGGGTGGGGACGGCCTGCCCGGCCCCACCGACTCCTGGACCACGCTCGCCGGCATCGCCCGGGAGACGTCCACGGTGCGCCTCGGCACCCTCGTGTCGTCCGCCACGTTCCGCCTTCCCGGGATCCTCGCGATCCAGGTCGCCCAGGTGGACCAGATGTCCGGCGGTCGGGTCGAGCTCGGCCTGGGCACCGGGTGGTTCGCCGCCGAGCACGCGGCCTACGGGATCCCGTTCCCGGACAAGCGGTTCGGCCTGCTCGAGGAGCAGCTCGAGATCCTCACGGGCCTGTGGGGCACGCCGGTCGGGGAGACCTTCGACTTCGCCGGTGAGCACTACACGCTCACCGACTCCCCGGCGCTGCCCAAGCCCGCCCAGGCGCAGATCCCGCTGATCGTCGGCGGCGGCGGGCCGAAGCGCACGCCGCGGATCGCGGCCCGGTTCGCGACCGAGTACAACCAGTCCTTCCCCGAGATCGACGCCATCGGCCCCCGCATCCAGGTCATCGAGAAGGCGCTGGCTGACGCCGGGCGCGCCTCCGACTCGCTGACCCAGTCGGTGGCGCTGGTGCTCGCCGTCGGCAAGGACGAGGCGGAGTTCACCCGCCGTGCCGACGCCATCGGGCGCGAGCCGGCCGAGCTGCGCGAGCACGGCATCGCGGGCACGGTCTCCGAGGCCGTCGACCGGCTGGCGTCCCTGCGCGACCAGGGCGTCGAGCGGGTGTACCTGCAGGTCCTGGACCAGCAGGATCTCGACCACCTGGAGCTCGTGGCGCGGGAGATCGCCCCGCAGCTCTGA	MTLDLRIFTEPQQGASYDTQLAVAQATEQLGFSAFFRSDHYLAMGGDGLPGPTDSWTTLAGIARETSTVRLGTLVSSATFRLPGILAIQVAQVDQMSGGRVELGLGTGWFAAEHAAYGIPFPDKRFGLLEEQLEILTGLWGTPVGETFDFAGEHYTLTDSPALPKPAQAQIPLIVGGGGPKRTPRIAARFATEYNQSFPEIDAIGPRIQVIEKALADAGRASDSLTQSVALVLAVGKDEAEFTRRADAIGREPAELREHGIAGTVSEAVDRLASLRDQGVERVYLQVLDQQDLDHLELVAREIAPQL				NA	NA	NA	NA	NA
AK001_02982	660			Thioredoxin-like reductase	ATGCCCTCGAACCGATTCGGGTGCCCGGGTATCGTGCCCGTGATGACTTCCACCGACACCACGCCCGTCGTCGACGTCTACATCGACCCCACCTGCCCCTTCGCCTGGGTGACCTCGCGCTGGGCGCTGGAGGTGGCGCAGCACCGCGACGTCGACCTCACGTTCAAGCTGATGAGCCTGTACCTGCTCAACAAGGACAAGGACATCCCCGCCGAGTACCGCGAGCGCGTCGAGGCCGGCCGCGCCCAGGGCCGCGTCGCCGCCGCGGTGCAGACCGACCACGGCCACGACGCCCTGTCGGCGTACTACACGGCCTTCGGCACCCGCTGGCACGACCAGGACGTCAAGGACGTCGACGTCGTGATCCGCGAGTCCCTCGCCGAGGCCGGCCTGCCCGCCGAGCTGGCCGACGCCGCCACCAGCGACGCGTACGACGAGGCGCTGGCCGCGTCCCACCACGCCGGTATGGACCCCGTCGGCCAGGAGGTCGGCACCCCCACGCTGCACGTCGACGGCGTGGCGTTCTTCGGCCCGGTCCTGACCCGCGTGCCGCGCGGCGAGGAGGCGACCCGCCTGTTCGACGCGGCCGTCACCATGGCCGGCAACCCCCACTTCTACGAGCTCAAGCGGTCCCGCGACGAGCACCCGGTCCACTCCTGA	MPSNRFGCPGIVPVMTSTDTTPVVDVYIDPTCPFAWVTSRWALEVAQHRDVDLTFKLMSLYLLNKDKDIPAEYRERVEAGRAQGRVAAAVQTDHGHDALSAYYTAFGTRWHDQDVKDVDVVIRESLAEAGLPAELADAATSDAYDEALAASHHAGMDPVGQEVGTPTLHVDGVAFFGPVLTRVPRGEEATRLFDAAVTMAGNPHFYELKRSRDEHPVHS				NA	NA	NA	NA	NA
AK001_02983	3843			hypothetical protein	ATGCTCGGTGCCGGTGTGTTCGGCGGGGCCGTCGCGGCCCCCGCGGCCGCCGCCACGCCCGACCCGGACCTGCACTACGCGATGGACGACGTCACGGACACCGTGGTGCCGGACTCGTCGGGCAACGGCCTCGACGGGACCCTGGCCGGGGACACCGCCCTGACCACGGCCGCCGACGGGTCCGCCGACGCCGCCCTGGACCTGCTGGGCGGCCACGTGGTCATCCCGCGCGACGCCATCGACGGCGCCGCCGACCTGACCGTCTCCGCTCAGGTGCGCTGGGACGGCGAGGGCGGGCCCTGGCAGCGGGTCTTCGACCTCGGGACCGACACGTCCCGCTACCTGTTCACCACGCCGTCGAACGGCGGGGACCTGCGCACGGCCGTCACCAGCGGCGGCGCCGGCGGCGAGTCGCAGATCACCGGGCACGGGCCGCTGGAGGCCGGGGACTGGGTCACCCTGACCGTCACCCTCGACTCCGGCGCCGGCCAGATCACCACCTACCTCGACGGCGTGGCCGTCGGCTCGGCCGAGACGTCCGTGGCGGGCACCGACCTGCTCACCGACGCCGCGGCGCAGGCCGGCTACATCGGGCGGTCGTTCTACCCGGACCCGGCGTTCGACGGTGCCGTGGACGACTTCCGGATCTACCGCTCGGCCCTCAGCGCCGAGCAGGTGACCGAGCTGACCGAGGAGCTCGGCGGCACGGTCCCGACGCTGGAGGGGCTGAGCACGGACGTGTTCGAGGTGCGCACCTCGGCCGGGTCGGCCCCCGACCTGCCGTCCGCCGTCCGCGCGTCGTACTCCGACGGCTACGATCGGGACGTGCCCGTCACCTGGGACGACGTCGACCCCGCCGACTACGAGACCTCCGGGACGTTCACCGTCGCCGGTGACGCGGCCGGCACGGCCGTGACCGCCGAGGTCACCGTGCACCGCGGCGAGCTGAAGGTCGACCTGGGCACCGACACCGGTGAGTTCTCCGGCGGAGCCTCCGGGCTGCTGTACGGCCTCTACGGCGAGGGCATGCCGACCGACAACCTCGTCGAGGGCATGGGCGTGCAGTCCGTGGCCACCAAGGCCCAGGACGGCGCCCAGCACCCCGGCTCCGACGCCCTCGAGGTGCTCGGACCGCTGGCCCGCACCACCGGCGGGGACGTCTACCTGCGCGTCACCGACTGGTACCGCGGCTTCCCCTACCAGTGGCCGTCGCCCGACCAGCCCGACGCCACGCCCGCCGAGAAGCTCGAGAGCTACCGCTCCGTGCTGGACGAGCAGCTCGACATGATCTCCACGCTCGACGCGGACACCCGCGAGCACCTCGTCATCGAGCCGTACAACGAGCCCGCGGGCAACATGTTCGGCACGGGGCAGTGGAGCCTCGACCGCACCTCGTGGCTGTCCGACCCCACCGACTACTTCGCCGCGTGGGACGAGACGTACCGCACCATCAAGGAGCGGTTCCCGGACATGCGCGTCGCCGGGCCGGGCGCGATCGAGCTCTGGCCCCAGATCGAGGGCTTCCTCGAGCACACGGTCGCCGAGGGCACCGTCCCGGACATCGTCACGTGGCACGAGCTGACCCACCCGCAGGCCATCCGCGAGTCGGTGGCCGAGTACCGCGAGTGGGAGGCCGACGTCTTCGCCGGTACCGAGCACGAGGGCACCGAGCTCCCCGTCAACGTCAACGAGTACGCCTTCAACTACCACACCTCGGTCCCCGGTCAGATGATCCAGTGGATGTCGGCCATCGAGGACGCCAAGGTCCAGGCGATGATCGCGTTCTGGAACATCAACGGCAACCTGTCCGACTCGGCCGTGCAGACCAACCGCGGCAACGGGCAGTGGTGGCTCTACAACGCCTACAGCCGGATGACCGGCCACACCGTCGAGGTCACGCCGCCCTACCCGGGCCAGAACTACAGCCTGCAGGGCCTGGCCACGCTCGACGAGCAGCAGCGGCAGGCCCGCGTCGTCCTCGGCGGGCAGGACGGCCCCGCGCCGGTCGACCTCGTGAACGTCCCGTCGGACGTCTTCGGCGACGAGGTGCGGGTCACCGCCCGCGAGATCCCGTGGACCGGTCAGCTCGGCGACTCCGCCCAGCCCCGGCACCTGGCCGACCTCACCGTCCCGGTGACCGACGGCGTCGCGACCGTGGCCTTCGACGGGTCGCAGCTGCCCGAGCTGGCCGAGTCCAGCGCGTACGAGCTGATCGTCACGCCGGTCGGCGCGGGGGAGACCACGGCGTCGACCCCGACGCTGTGGCAGGGCAGCTACGAGGCCGAGGACGCCGAGTACACCGGTTCCGGCTACTCGCTCAACGGTCCCGAGGGCTCGCCGCAGGACGTGGCGAAGTTCTACACCTCCGGCGGGTACAACGTCGGTGGCCTGCGCACCGGGTCGGACGGCGTCCTCGACTTCGAGGTCACCGTGCCCGAGGACGGCACCTACGACCTGTCGGTGTTCTCCTCCACCATGAACCGGTTCGGGCTGGTCCAGGAGCAGGGGCCGACCAACGTGTTCGTCCGGGTCGACGGAGGGGCCGAGCAGGAGATCCACCTGCCGCTGGCCTACAAGTGGGTCGTGTGGGACCACGCGGACACCACCGTCGAGCTGACCGCCGGCACGCACACCATCTCGCTGGCCGCGCAGAGCCTCGACGGCTCCGGCGCCACGCAGGGTGACGCGATCATCGACCGCATCACCCTGGCCCTGCCGAACCCCGAGGCCGCGACCTCGGTCTACGAGGCCGAGACCGCCGTCCTCGACGGGGGGACCGCCACCTACGAGATCTCCGACGTGTCCGGTCCGGGCGCCGTGGAGCTCGCCGAGGGCGATTCCGCGACGTTCTGGGTGTACTCGCCGGTCGACGGCGAGGCGCACCTGGGTGCGGACCTCGTCGGCTCCGCGGGTGACGGCACCCTGGCCGTCAACGGTGCGGACGTGCTCGACCTGGGCACCTCCCAGGAGGTCGCCGCCCACCTGGCCGGCGGCGTCAACAAGATCGTCGTCACCGCCGGTGCCGACGGCGTCGTCCTGGACCGTCTCACGGTGGCCCCGGGCGAGGGGCTGCTGGAGCCCGCCGAGTACCAGGCCGAGGACGCCGAGCTCACCGGTGACGCGTCCGTGGGCGAGTACTCCCTGGCCGAGGGCGGCGCCGCCGTCACCGGCGTCGGGGGCGAGCCGGGCAACGACAACACGCTGACGTTCCACGTCGAGGCGGCCGAGGCCGGCCGGCACGCGGTCGTCGTGCGGTTCTCCAACCCGGAGCAGGTCGACGGCACGCACTACAACCCGAACCCCGTCGCCCGGCACGCCGACATCTCGGTGAACGGCGGCGACGCCGAGCGGGTGCCGTTCGTGCCGACGTTCCACGAGAACAACTTCTTCGAGCGCACGATCGTGCTCGACCTCGTCGAGGGCGAGAACACGATCTCCCTGCGCGGCCAGGAGATGCCGAACTGGGACGGCGAGACCTACGCGTCCGAGATCTGGCCGGCGGACTACCTGCTGCGCTCGCAGTGGGCCCCGATCGTCGACCGGATCACCGTCTCCCCGCTGGCCCACGTCGTGGTGCCCAGCCCGGTGACGGTCCAGGTCGCCACCGAGTGCCGAGGGAAGGCCGCGTTCGTCGTCGCCGAGGTGACCAACACCTCCGGCGAGCGCACGGACGTCACCGTCACCGGGCTCGGCGACGAGCGGACCCGGGACGTGCTGAAGCCGGGCAAGACCTGGAGGCAGCCGTTCTCGGCCGAGTCGCCGACCCTCGAGGCCGGCGAGCTGACCGTCACCGCGGGCGGGGTCACCACGACCCACCCGTACGAGGCGGTCACCTGCCGGTGA	MLGAGVFGGAVAAPAAAATPDPDLHYAMDDVTDTVVPDSSGNGLDGTLAGDTALTTAADGSADAALDLLGGHVVIPRDAIDGAADLTVSAQVRWDGEGGPWQRVFDLGTDTSRYLFTTPSNGGDLRTAVTSGGAGGESQITGHGPLEAGDWVTLTVTLDSGAGQITTYLDGVAVGSAETSVAGTDLLTDAAAQAGYIGRSFYPDPAFDGAVDDFRIYRSALSAEQVTELTEELGGTVPTLEGLSTDVFEVRTSAGSAPDLPSAVRASYSDGYDRDVPVTWDDVDPADYETSGTFTVAGDAAGTAVTAEVTVHRGELKVDLGTDTGEFSGGASGLLYGLYGEGMPTDNLVEGMGVQSVATKAQDGAQHPGSDALEVLGPLARTTGGDVYLRVTDWYRGFPYQWPSPDQPDATPAEKLESYRSVLDEQLDMISTLDADTREHLVIEPYNEPAGNMFGTGQWSLDRTSWLSDPTDYFAAWDETYRTIKERFPDMRVAGPGAIELWPQIEGFLEHTVAEGTVPDIVTWHELTHPQAIRESVAEYREWEADVFAGTEHEGTELPVNVNEYAFNYHTSVPGQMIQWMSAIEDAKVQAMIAFWNINGNLSDSAVQTNRGNGQWWLYNAYSRMTGHTVEVTPPYPGQNYSLQGLATLDEQQRQARVVLGGQDGPAPVDLVNVPSDVFGDEVRVTAREIPWTGQLGDSAQPRHLADLTVPVTDGVATVAFDGSQLPELAESSAYELIVTPVGAGETTASTPTLWQGSYEAEDAEYTGSGYSLNGPEGSPQDVAKFYTSGGYNVGGLRTGSDGVLDFEVTVPEDGTYDLSVFSSTMNRFGLVQEQGPTNVFVRVDGGAEQEIHLPLAYKWVVWDHADTTVELTAGTHTISLAAQSLDGSGATQGDAIIDRITLALPNPEAATSVYEAETAVLDGGTATYEISDVSGPGAVELAEGDSATFWVYSPVDGEAHLGADLVGSAGDGTLAVNGADVLDLGTSQEVAAHLAGGVNKIVVTAGADGVVLDRLTVAPGEGLLEPAEYQAEDAELTGDASVGEYSLAEGGAAVTGVGGEPGNDNTLTFHVEAAEAGRHAVVVRFSNPEQVDGTHYNPNPVARHADISVNGGDAERVPFVPTFHENNFFERTIVLDLVEGENTISLRGQEMPNWDGETYASEIWPADYLLRSQWAPIVDRITVSPLAHVVVPSPVTVQVATECRGKAAFVVAEVTNTSGERTDVTVTGLGDERTRDVLKPGKTWRQPFSAESPTLEAGELTVTAGGVTTTHPYEAVTCR				NA	NA	NA	NA	NA
AK001_02984	2115			hypothetical protein	GTGACCACACCACCTGTCCCCGGTGACCTGTCCCTGCAGGTCGACGGCGCGCGGCTGACCTGGCGCGGCGAGGGCGAGACGCTGGTCGTCGAGCCGTGGGGCGCCGACGCCGTCCGCGTGCGCTCGACGCTGCAGGGCGACGTCGAGGACGCCGACTGGGCGCTGCTCGCGCCGGCGGCGTCCGACGCCCGCGTCGAGACGCGCGCGGACGGGGCGACCCTGACGGTCGGCCGGCTGCGGGTCGAGCTCACGGTGGCCGCCTGGTTCCACGAGATCGTGGGGTACGAGGTGACCCGGTGCGACCTGGCGTTCTACGACGCCGTCGACGGCCGCCTGCTCCTGCGCGAGCAGGACCGGGGCGGGTCGCTCAACCTCACCGCCCGCCGGCTGCGGCCACGGCTCGGCGGGGACCTCGAGCTCACGGCGTCCTTCGAGACGCCGGCCGACGAGAAGCTCTACGGCATGGGCCTATACCAGCAGGACCTGCTGGACCTGAAGGGCTCCACCCTGGAGCTCGCCCACCGCAACTCCCAGGCGAGCGTGCCGTTCGTGCTGTCCAGCGCGGGCTACGGGTTCCTGTGGCACAACCCCGCCGTCGGCCGGGCGACGTTCGGGCGCAACCGGACCGAGTGGACCGCGGAGTCGACGCGCCGGCTCGACTACTGGGTGACGGCGGGGGACTCCCCGGCGGCGATCACGCGCGCCTACGCGGACGCCACCGGTCACGCCCCGATGATGCCGGAGCGGGGTCTGGGGTTCTGGCAGTGCAAGCTGCGCTACACCTCGCAGGACGAGCTCCTGGCGGTCGCGCGCGAGCACACGCGGCGCGGGCTGCCGCTGGACGTGGTCGTCGCGGACTTCTTCCACTGGCCCCGCATGGGCGACTTCCGCTTCGACGAGGAGTTCTGGCCGGACCCGCAGGCGATGGTCGACGAGCTGGCCGAGATGGGCGTCGAGCTCATGGTGTCGGTCTGGCCGCAGATCGCCACGACGTCGGAGAACTACTCCCACCTGCGGCGGAACAACCTGCTGGTCCGGGCCGAGCGCGGCCCGGACGTGCACATGGCGTTCCAGGGGCCCAGCGCGTTCCTCGACGTGACGAACCCCGAGGCGCGGCGTTGGTTGTGGGACACGTGCCGCGAGAACTACGGCCGGTACGGGATCCGCACGTTCTGGCTGGACGAGGCCGAGCCCGAGTACGGCGTCTACGACTACGACAACTACCGCTACCACGCCGGACCGAACGTCCGGGTCGGCAACCTCTACCCGCAGCACTACGCGCGGGCCTTCGCCGAGGGCCAGTGGTCCGACGGCGAGACGGACGTGGTCAACCTGCTGCGGTGCGCGTGGGCCGGCAGCCAGCGCTACGGCGCCCTGGTGTGGTCGGGGGACATCTCTTCGACGTTCACCGACCTGCGTCGCCAGGTGGTCGCCGGCATCCACATGGGCGTGGCGGGCATCCCGTGGTTCACCACCGACATCGGCGGGTTCCACGACGGGGACGCGACCGATCCGGGCTTCGGTGAGCTGCTCGTGCGCTGGTTCCAGTTCGGTGCGTTCTGCCCGGTGATGCGCCTGCACGGCGACCGGCTGCCGTACCGCGACGTGACCGCGGCCGACGGGTCGCCGCGGCTGCGCAGCGGCGGGCCGAACGAGCTGTGGAGCTTCGGCGAGGAGGTGTACGCCGTCCTCGAGCGTTACGTCCACCTGCGCGAGGACCTGCGCGGCTACGTCCGCGAGGTCATGCGGACGGCCCACGCCGACGGCCAGCCCGCCATGCGCGGGCTCTTCCACGACTTCCCCCACGACCCGGCCTGCTGGGACGTGGCGGACCAGTTCCTGCTCGGTCGCGACCTGCTGGTCGCTCCCGTGCTGGAGGCCGGTGCCCGCGAGCGCGCGGTGTACCTGCCGGCCGGCGCGCGGTGGACCGACGCCGCGAGCGGTGCGGTGCACGACGGCGGGACCACCGCCGTCGTCGACGCACCCCTCGACGTGGTGCCGGTGTTCCTGCGCGACGGCGCGCTCGGCGACATGGTCGGTCGGACTGCCGGTCGGACTGCCGGACGGACCGCGGGTCGGTCCGGGTCCGTGACCGGGGGTTCGCCGGTGAGCTGA	MTTPPVPGDLSLQVDGARLTWRGEGETLVVEPWGADAVRVRSTLQGDVEDADWALLAPAASDARVETRADGATLTVGRLRVELTVAAWFHEIVGYEVTRCDLAFYDAVDGRLLLREQDRGGSLNLTARRLRPRLGGDLELTASFETPADEKLYGMGLYQQDLLDLKGSTLELAHRNSQASVPFVLSSAGYGFLWHNPAVGRATFGRNRTEWTAESTRRLDYWVTAGDSPAAITRAYADATGHAPMMPERGLGFWQCKLRYTSQDELLAVAREHTRRGLPLDVVVADFFHWPRMGDFRFDEEFWPDPQAMVDELAEMGVELMVSVWPQIATTSENYSHLRRNNLLVRAERGPDVHMAFQGPSAFLDVTNPEARRWLWDTCRENYGRYGIRTFWLDEAEPEYGVYDYDNYRYHAGPNVRVGNLYPQHYARAFAEGQWSDGETDVVNLLRCAWAGSQRYGALVWSGDISSTFTDLRRQVVAGIHMGVAGIPWFTTDIGGFHDGDATDPGFGELLVRWFQFGAFCPVMRLHGDRLPYRDVTAADGSPRLRSGGPNELWSFGEEVYAVLERYVHLREDLRGYVREVMRTAHADGQPAMRGLFHDFPHDPACWDVADQFLLGRDLLVAPVLEAGARERAVYLPAGARWTDAASGAVHDGGTTAVVDAPLDVVPVFLRDGALGDMVGRTAGRTAGRTAGRSGSVTGGSPVS	PGPT0019340_1047	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811	NA	NA
AK001_02985	1941	hypBA1_1		Non-reducing end beta-L-arabinofuranosidase	GTGACCGAACCGACGATGACCGACACCACCCCGGCGTCCGTGCTGGCGCGTCCGGTGGTCCCCGCACCGACCTCCGGTGCGACAGCTCGCGGGCTGGGCCTCGGCGAGGCCCACCTGCGCGGCGGGTTCTGGGGCGAGCTCCAGACGACCAACACCGCGGCGACGTTCGACCACTGCCTGCAGTGGATGGAGCACCTGGGCTGGCTGGCGAACTTCGACCGCGTGGCCTCCGGCACGACGTCGACGGAGCGTCCGGGCTGGCAGTTCTCGGACTCCGAGGTCTACAAGCTCCTCGAGGGGCTGGCCTGGGAGTTCGGGCGCACGAAGGACCCGCGGGTCGACGCCACCGTGCGTGCGCTGACCGAGCGGATCGCCGCGGCGCAGGACGAGGACGGCTACCTCAACACCTGCTACGGCCACGCCGAGCAGCAGCCCCGCTGGAGCGACATGGCCATGGGCCACGAGCTGTACTGCGTGGGCCACCTGCTGCAGGCGGCGGTGGCGCGGTACCGGACGGTGGGCGACGACCCGCTGGTCGAGGTCGCTCGCCGGGCGGCCGACCAGGTCTGCGCCGAGTTCGGTCCCGACGGACGCGACGGCCTGTGCGGGCACCCGGAGATCGAGGTCGGTCTGGCCGAGCTCGGCCGGGCGCTCGGCGAGCCGCGGTACACGGCCCAGGCCGGCCTGTTCCTGGACCGGCGCGGCCACGGCCGGCTCGCCCCGATCCCGCTGCTCGCCCCGACCTACTACCAGGACGACGTCCCGGTGCGGGAGGCCGACGTCTGGCGCGGCCACGCCGTGCGTGCCCTGTACCTGGCCGCCGGCGCGGTGGACGTCGCCCTGGACACCGGTGACACCGAGATGCTCTCGGCCGTGCAGCGCCAGTGGGACCGCACCGTGGAGCGTCGCACCTACCTCACCGGCGGCATGGGCTCGCGCCACCAGGACGAGGGCTTCGGCGACGACTGGGAGCTGCCGCCGGACCGCGCCTACTGCGAGACCTGCGCGGGCATCGCCTCGGTGATGGTCTCGTGGCGGCTCCACCTCGCCACGGGAGACGTCCGGTACGCCGACCTCATGGAGCGCACGTTCTTCAACGTCGTGGCGACCTCGCCGCGGGGTGACGGCCGCGCGTTCTTCTACGCCAACCCGCTGCACCAGCGCGAGGCGGGCGAGGACGTGCCGATGGACGCGGAGAACCCGCGGGCCGAGGGCGGCGTGCGCGCCCCCTGGTTCGAGGTCTCCTGCTGCCCCACGAACATCGCCCGCACGTTGGCGTCGTGGCACACCTACCTGGCCGCGGTCGACGGTGACACCGTCTCGCTGGTGCAGTACGCCGCGGCCGACCTGCGGGTCGCCCTCGACGACGGTGCCGCCGTGGCCCTGTCGGTGTCCACCGACTACCCGGTCTCCGGCCGGGTCACGGTGGACGTCACCGAGGCGCCCGGACGTCCCGTCACGCTCCGGCTGCGGGTGCCGCACTGGGCCGACGGCGCGACCGTGAGCACCGACGGCGGCGCCCCCCGCGCCGTCGCGCCCGGCTGGGCGGACGTGACGGTGGCGACCGGCAGCACCGTGGTGCTGGAGCTGCCCGTGGCGCCGCGGCTGACCTGGCCGGACCCGCGGGTCGACGCCGTGCGCGGGTGCGTCGCCGTCGAGCGGGGGCCGCTGGTGCTCTGCCTGGAGTCCACGGACCTGCCCGACGGTGTCGACATCGACCGGGTCCGGATGGACACGTCGATCGCCCCGGTCGCCGCCGGGGACGGGGCGCAGGTGCGCGCGGTCGTGCCGCCGGACTTCGCCCAGCCCGCCGGGCGTCCGCCGTTCGGCCCCCCGGCGCCGCCGGCGGGCGGCGAGCCGGTCGACCTGCCGCTGGTCCCGTACCACCGGTGGGCCGAGCGCGGACCCTCGACCATGCGCGTCTTCCTGCCCACCGTCTGA	MTEPTMTDTTPASVLARPVVPAPTSGATARGLGLGEAHLRGGFWGELQTTNTAATFDHCLQWMEHLGWLANFDRVASGTTSTERPGWQFSDSEVYKLLEGLAWEFGRTKDPRVDATVRALTERIAAAQDEDGYLNTCYGHAEQQPRWSDMAMGHELYCVGHLLQAAVARYRTVGDDPLVEVARRAADQVCAEFGPDGRDGLCGHPEIEVGLAELGRALGEPRYTAQAGLFLDRRGHGRLAPIPLLAPTYYQDDVPVREADVWRGHAVRALYLAAGAVDVALDTGDTEMLSAVQRQWDRTVERRTYLTGGMGSRHQDEGFGDDWELPPDRAYCETCAGIASVMVSWRLHLATGDVRYADLMERTFFNVVATSPRGDGRAFFYANPLHQREAGEDVPMDAENPRAEGGVRAPWFEVSCCPTNIARTLASWHTYLAAVDGDTVSLVQYAAADLRVALDDGAAVALSVSTDYPVSGRVTVDVTEAPGRPVTLRLRVPHWADGATVSTDGGAPRAVAPGWADVTVATGSTVVLELPVAPRLTWPDPRVDAVRGCVAVERGPLVLCLESTDLPDGVDIDRVRMDTSIAPVAAGDGAQVRAVVPPDFAQPAGRPPFGPPAPPAGGEPVDLPLVPYHRWAERGPSTMRVFLPTV	PGPT0019100_932	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955	NA	NA
AK001_02986	819	dasC_5	COG0395	Diacetylchitobiose uptake system permease protein DasC	ATGACCGAGCGCAAGGTCTGGTGGAAGACGGCTCTGGGTCTCGTCTTCACCGCGCTGATGCTGTTCCCCGTCTACTGGATGGTGAACGTCTCCTTCACCCAGACGCGCGACCTGCGCGCGGACCCGCCCCACTGGTTCCCCTGGGACCCCACCTTCGAGGGCTACGAGGCGGTGTTCGCCCAGCAGCTGCCCGCACTGGGCACCAGTCTGCTCATCGGGCTCGGCTCGGTGCTGCTCACCGTGGTGATCGCCGCTCCGGCCGGCTACGCGCTGGCGCTGCTGCACCTGCGGGGCGGCCGCACGCTGAACTTCCTGCTGCTGGTGGCGCAGATGATCCCCGCCGTCGTCATGGCGATGGGCTTCTACGCCGTCTACAACAACCTCGGGCTGCTCAACACGATCCCGGGGCTGATCGTGGCCGACTCGACGATCGCGGTGCCGTTCGGCGTGCTGCTGTTCACGGCGTTCATGTCCGGCATCCCGCGCGAGCTGCTGCAGGCCGCGCGGGTCGACGGGGCGGGGGCGTGGCGCACCTTCTGGGAGATCGTCATGCCGATGTCGCGCAACTCGGTCCTGACGGTGTCGCTGTTCGCGTTCCTGTGGGCCTGGTCGGACTTCATCTTCGCCTCGACGATCAACCGCAACGGCGATCTCATCCCGATCACCCTGAGCATCTACAACTACATCGGCAACAACACGACGCAGTGGAACGCGATCATGGCGACGGCCGTCGTCGCCTCGATCCCGGCGGCGATCCTCCTGGTGATCGCTCAGCGCTACGTCGCCGCGGGTGTGACCGCGGGCGCCATCAAGGACTGA	MTERKVWWKTALGLVFTALMLFPVYWMVNVSFTQTRDLRADPPHWFPWDPTFEGYEAVFAQQLPALGTSLLIGLGSVLLTVVIAAPAGYALALLHLRGGRTLNFLLLVAQMIPAVVMAMGFYAVYNNLGLLNTIPGLIVADSTIAVPFGVLLFTAFMSGIPRELLQAARVDGAGAWRTFWEIVMPMSRNSVLTVSLFAFLWAWSDFIFASTINRNGDLIPITLSIYNYIGNNTTQWNAIMATAVVASIPAAILLVIAQRYVAAGVTAGAIKD	PGPT0016540_6359	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_02987	984	lacF_9		Lactose transport system permease protein LacF	ATGACCAGCACCCCGGCAGACGTCGGGACGCGCGGGGAGTCGCGCGGCGCGGCGGGCACCGAGCCCGCCGCGCCGTCGGCCCCCCGACGCCGACGGACGCTGAGCTCGAGCCAGTGGGCCGCGGTCGGCTTCGCCGCACCGCTCCTGGTGTACCTCGTGCTCTTCTACGCCTACCCGCTGATGCGGAACATCGACCTGTCGGTGCACGACTACACGATCCGCGCGTTCGTGCAGGGCAACGCCGAGTTCGTGGGGCTGCAGAACTACGTCGACGTGTTCAGCTCGTCGACGTTCCCGACAGCCCTGTGGAACACGGCCGTGTTCACCTTCGGGTCGATCGCCTTCCAGTTCACGCTCGGTCTCGCCCTGGCCGTGTTCTTCAAGTCGAGCTTCCGGCTGTCGACCACCCTGCGGGCCATGTTCCTCGTGCCCTGGCTGCTGCCGCTGATCGTGTCGGCCTCCACGTGGGCCTGGATGCTCAACAGCGAGAACGGCATCGTCAACTCGGTGATCACGGCCTTCGGCGGCGAGCAGATCAACTGGCTCACCGACCCCGACACGGCGCTGCTGTCCGTGACGATCGCCAACATCTGGCTCGGCATCCCGTTCAACCTGGTCATCCTGTACTCGGGGCTGCAGAACATCCCTGGGGACGTCTACGAGGCCGCGTCCCTCGACGGCGCCGGTGCCTGGCGGCAGTTCTGGTCCATCACCTTCCCGCTGCTGCGCCCGGTGTCCGCGATCACGATCCTGCTCGGGCTGATCTACACGCTCAAGGTCGTCGACGTCATCTGGGTCATGACGACGGGCGGGCCGGGCGACTCGTCCACGACGCTCGCCATCTGGTCCTACCGGGAGGCGTTCGGCACGGGGCAGCCCGACTTCTCGCCGGCCGCCGCCGTCGGCAACCTGCTCATCGTCATCGCGCTGGTGTTCGGGTTCCTGCACCTGCGCCTCCAGCACCGACAGGAGGCCACGTCATGA	MTSTPADVGTRGESRGAAGTEPAAPSAPRRRRTLSSSQWAAVGFAAPLLVYLVLFYAYPLMRNIDLSVHDYTIRAFVQGNAEFVGLQNYVDVFSSSTFPTALWNTAVFTFGSIAFQFTLGLALAVFFKSSFRLSTTLRAMFLVPWLLPLIVSASTWAWMLNSENGIVNSVITAFGGEQINWLTDPDTALLSVTIANIWLGIPFNLVILYSGLQNIPGDVYEAASLDGAGAWRQFWSITFPLLRPVSAITILLGLIYTLKVVDVIWVMTTGGPGDSSTTLAIWSYREAFGTGQPDFSPAAAVGNLLIVIALVFGFLHLRLQHRQEATS	PGPT0016535_834	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_02988	1272			hypothetical protein	ATGCGAAAGTACACCCTGCGGGGTGCCGGGATCCTGGGGGTCACCGGCCTCACGTTCGCGCTGGCCGCCTGCGGATCCAGCGACGACGGCTCGACCGGCGCCGACGGCGGCGAGTCCGGCGACGCGCCGGGCGGCACCTACACCTGGTGGGACCCGTACCCCCAGCACGACGGCTCCTCCGACTGGGAGGCCCGCGTGCAGGCCTGCGGTGAGGACGCCGGCGTCACCATCGAGCGCACCGCGTACGACACGACCGCGCTGACCAACCAGGCGCTGCTGTCGGCCCAGGAGGGCACGTCGCCCGACGTCATCCTCATCGACAACCCGGCCGTGTCCACGCTCGCCGACACCGGCATGCTGACCACGGTCGACGAGTTCGGGCTGGACACGTCCTCGATCGACCAGAACCTGCTGGACGCGGGCGTCGTCGACGGGAACGCCTACGGCATCCCCATCGGCGCCAACACGCTCTCGCTGTACTACAACGCCGAGATCCTGGACGAGGCCGGTGTCGACCCCGCGTCGATCACCGACTGGGACTCGCTGACCGCCGCCCTCGAGCAGGTCACCGGCGCCGGGAGCAAGGGCATCACCTTCTCCGCCATCGGAACCGAGGAGGGCACCTTCCAGTTCCTCCCGTGGTTCTGGGGCTCCGGTGCCGACCTGGGCCAGCTCGACTCGCCGGAGGCCGTCGAGGCCCTCGAGCTGTGGAAGGGCTGGCTGGACGAGGGCTACGCGCCCAACACCGTGATCAACAACTCCCAGAACACCGTCTGGGAGGAGTTCCTCACCGGTGACTTCGCGTTCGCGGAGAACGGCACCTGGCAGGTCAACAGCGCCGCCGAGGCCGAGTTCGAGACCGGTCTGGTCCAGCTCCCGGCCAAGGACGGCGGCGTCGCCCCCGCGCCGACCGGTGGTGAGTTCATCGTCGCGCCCGTCCAGGAGGACACCGCGCGCTACGACGTGACCCGCCAGATCGTCGAGTGCATGACGACGCCGGAGGGCTTCGTCGAGACGGCGAACACCTTCGCGTACTACATCCCGCCGACGGCCGAGGGCCAGGAGGCGCTCCTCGAGGAGAACCCCGACCTGGAGCCCTGGGTCGAGGCCGTGCAGAGCGCCAAGGGCCGCACCAGCGACGGTCTGGGGACCGACTACCCGCTGATCTCCGAGGCGCTGTGGACCGCCGTCCAGAACGCCATGTCCGGGGCGGCGACCCCGGCCGAGGCCCTCGAGACGGCGCAGGCCGACGCCGAGGCCGCCACCAGCTGA	MRKYTLRGAGILGVTGLTFALAACGSSDDGSTGADGGESGDAPGGTYTWWDPYPQHDGSSDWEARVQACGEDAGVTIERTAYDTTALTNQALLSAQEGTSPDVILIDNPAVSTLADTGMLTTVDEFGLDTSSIDQNLLDAGVVDGNAYGIPIGANTLSLYYNAEILDEAGVDPASITDWDSLTAALEQVTGAGSKGITFSAIGTEEGTFQFLPWFWGSGADLGQLDSPEAVEALELWKGWLDEGYAPNTVINNSQNTVWEEFLTGDFAFAENGTWQVNSAAEAEFETGLVQLPAKDGGVAPAPTGGEFIVAPVQEDTARYDVTRQIVECMTTPEGFVETANTFAYYIPPTAEGQEALLEENPDLEPWVEAVQSAKGRTSDGLGTDYPLISEALWTAVQNAMSGAATPAEALETAQADAEAATS	PGPT0016545_8361	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_02989	1020	rbsR_1	COG1609	Ribose operon repressor	GTGGCCACCATCGGTGACGTTGCCAAGGTCGCGGGAGTGTCCCGCAGCACGGCGTCGTACGCACTGTCCGGCAAGCGGGCGATCTCGCACGACGTCCGTCGTCGTGTCGAGGACGCCGTCCGGCAGCTCGGGTACACGCCGAACGCCGGCGCGCGCGCCCTGGCCACCTCGCAGACGCGGGTGATCGGTCTCCTCGCCCAGTTCTTCGACGACGAGTTCGCCCCCGCGATGATGCAGTACATCCGCGGCGTGACCGACACCGCTCGGGAGCTCGGGTACGACACCCTGCTGGTCTCCGAGGCCGACGGCCCGAACGCCCTGCGCCGCATCACCGACTCGCGCATGGTCGACGGCGTCGTCCTGCTCAACGTCGCCGAGCAGGACGACCGGCTGCCCGTGCTGCGCACCGCCGGCGCCCCGGGCGCCCTGGTCGGGCTGCCGCGCGACACGACCGGCGTCGACGTCTTCGACCTCGACTTCGAGGAGGCCGGCCGCGCGATGGTCGACCACCTCGCCGCGCTGGGGCACCGCGAGCTGCTGCTCGTCTCCCAGCCCGACCACGTCGTCGAGCGCGGCGGCGCGTACGTGTGGCGACTGCGCGACGCCGCCGTCGCCCAGGCCGCGCTGCGCGGGGTGCGTCTGCACACCGCGTCCGCCGCCGCTCACCAGCCGCAGGTCGGGTCCGACCTGCGCACGCTGCTCGAGGAGCACCCGGACGTCACCGGGCTGCTGCTCAACAACGAGGCCGCCGCGGCAGCACTGCCCAGCGTCCTGCAGACCCGCGGGCTCTCCGTCCCGGCCGACCTCTCGGTCGTCGGCCGCTTCTCGGACGAGTTCGCCCGCAACTTCTCGCTGCCGTACTCCTCCGTGGAGAGCGCCCCCGACCGGTTGGGGAGCATGGCCGTGCGCCAGCTCGTCCGCCGCATCGAGGGTGGCGGCGAGGTGACCGAACCGCACGTCGTCCGGTACATCACGCCGGAGATCGTGGACCGAGGAAGTACGGACCGGCCGCGCGTCTGA	MATIGDVAKVAGVSRSTASYALSGKRAISHDVRRRVEDAVRQLGYTPNAGARALATSQTRVIGLLAQFFDDEFAPAMMQYIRGVTDTARELGYDTLLVSEADGPNALRRITDSRMVDGVVLLNVAEQDDRLPVLRTAGAPGALVGLPRDTTGVDVFDLDFEEAGRAMVDHLAALGHRELLLVSQPDHVVERGGAYVWRLRDAAVAQAALRGVRLHTASAAAHQPQVGSDLRTLLEEHPDVTGLLLNNEAAAAALPSVLQTRGLSVPADLSVVGRFSDEFARNFSLPYSSVESAPDRLGSMAVRQLVRRIEGGGEVTEPHVVRYITPEIVDRGSTDRPRV	PGPT0014791_180	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_02990	624			hypothetical protein	ATGGAGCCACGCGAGGTCTCGCAGCCGCCCGGTCGCCGCCACTCCCGCACGTGGGTGTTCGGCGGGATGCTGTTCTCCGCGCTGATCAGCCTGACCGCCTCCCTGGTGCTGTCGATCGACGCCGTCGTGCTGGCCGCGGACCCCGGCACGGAGCTGTCCTGCGACATCAACACGGTGCTCTCCTGCGGCAGCGTCGCGCTGTCGTGGCAGGCGCAGCTGCTCGGGTTCCCCAACGCCTTCCTCGGGCTCATCGCCGAACCCGTGGTCATCACGATCGCGGTCGCCGGCCTCGGCGGCGTCCAGTTCCCCCGCTGGTTCATGGCCGCGGCGCAGGGCGTCTACACGATCGGGCTGCTCTTCGCCTACTGGCTGTTCGCGCAGTCGTACTTCGTCATCCACGCGCTGTGCCCGTGGTGCCTGCTCGTGACGCTGTCCACCACGGTCGTCTTCATGACCCTCCTGCACTGGAACATCATGGAGAACAACCTGTACCTGCCCCGGCGGGTGCAGCGCTGGGCCCTGTCGATGGTCCGCATCGACGCCGACGTCTACCTCACCGCGGCGTGGATCATCCTCCTGGTCGCCGCGGTGCTGCTGCGGTACGGCAACGCCCTGCTCGGCTGA	MEPREVSQPPGRRHSRTWVFGGMLFSALISLTASLVLSIDAVVLAADPGTELSCDINTVLSCGSVALSWQAQLLGFPNAFLGLIAEPVVITIAVAGLGGVQFPRWFMAAAQGVYTIGLLFAYWLFAQSYFVIHALCPWCLLVTLSTTVVFMTLLHWNIMENNLYLPRRVQRWALSMVRIDADVYLTAAWIILLVAAVLLRYGNALLG				NA	NA	NA	NA	NA
AK001_02991	333			hypothetical protein	ATGACGACGACACCGCGGACCTCCGTACCGGGCCTCCTCGCCCACGCCCTCGGCGCGGCACTGCTGGTCAACGCCGTCCCGCACACGGTGCACGGCCTGGCCGGCAAGCCCTTCCCGAGCCCGTTCGCGGACCCGCCGGGCGTCGGGGACTCGACCCCGGTCGAGAACGTCGTGTGGGGCGGCCTCAACGCCCTCGTGGGCGGTGCGCTGCTCCGGGGCGTCGGGGGGTCCCGTCCCCGGACGCGGGTGGACACGGCCGTCACCGTGGCGAGCGGTCTGGCCACGGCGTTCGCCGTCGCCCGCTACTTCACCGCGGCCCGCCGCCGGGGCTGA	MTTTPRTSVPGLLAHALGAALLVNAVPHTVHGLAGKPFPSPFADPPGVGDSTPVENVVWGGLNALVGGALLRGVGGSRPRTRVDTAVTVASGLATAFAVARYFTAARRRG				NA	NA	NA	NA	NA
AK001_02992	2253			hypothetical protein	GTGACCGAGCAGGGGTTCCTGGCTCCCGGTGAGGCGGTCGACCTCGACAACTGCGCGCGCGAGCCCATCCACATCCCCGGGCGGATCCAGCCGCGCGGGGTGCTGCTCGCGCTGCGGACCGACGACGGGCTCGTCCACCAGTGCACCGAGAACATCGCGGACGTCCTCGGCGTCGACCTCGGCACGGTCCTCGGCGCCCCGCTCGCCACCGCCGTCGGCGACGAGGCCGCCCGGACGCTCCTGACGCACGTCGCGAGCGTGGACGACCCCCGCCTGCGCAACCCCGTCGAGATCGACATCGCCGTCCACGGGTCGCCCCGGCGGTTCGAGGCCGTGCTGCACCACGCCCCCGACTCCGCCCTCGACGGCCGCCCCGCGGTCCTGGTCGTCGAGCTCGAGCCCTTCTCCGGCCCCACCTCGCTGACCTACACGAGCACCTTCGAACCCGTGCGCGACGCCCTGACCGAGCTCGACCGGGCCAGCTCGCTGCAGCAGCTCTACGACGTCGCGGTGCGCCGGGTGCGCGAGCTCACCGGCTTCGACCGCGTGATGCTCTACCGCTTCGACCCCGACTACAACGGCGAGGTCGTCGCCGAGGCCCGCCGGGACGACCTCAACCCGTTCCTCGGCCTCCACTACCCGGCCTCGGACATCCCCCCGCAGGCCCGCGCGCTGTACGAGAAGAACTGGATCCGGCTCATCGCCGACGTCGGCTACCGCCCGGCCGACGTCGTCCCCACCGACGACCCGGTCAGCGGCCGGCCGCTCGACCTCACCTACGGCACGCTGCGCAGCGTCTCCCCGATCCACGTCGAGTACCTGCAGAACATGGGCGTCGACGCCTCGATGTCGATCTCCCTGCTCCGCGACGGCCGGCTGTGGGGGCTCATCGCCTGCCACCACTACAGCGGCCCGCACGCGCCGTCCTACGCGGCGCGCGCCGCCGCCGAGTTCCTCGGCTCCACCCTGTCCGCCCGGCTCGTGACCCAGGCCGAGGACGACCGCGCCTCGGCCGCGCGCCGATCGGCCGGCGTCCTGGCGCGTCTGGTGGCCGTCACGCGCGACGACGACGTCCCCCTGACCAGCGCCCTCACCGGCGACCCGGGTCTGCTGGACCTGGTCGACGCGGACGCCGCGTTCGTCGTGGCCGAGGGCCGTGTCGAACGGCAGGGCGACGCACCCGAGGAGGAGGTCTGCCGCCGGCTGGCCCACGCGCTGGCCGAGCTGGACGTCGAGGTGCTGGTCACCGACCGCCTCGCGCGCCAGGAACCCGAGCTGGCGACCCTCGTGCCCGACGCCGCGGGCATGCTGGCGCTCGTCGTGCCCGGCGGGGCCGTGGCCGTGTGGCTGCGCCGCGAGGTCGTCCAGAGCGTCGACTGGGGCGGCGACCCGCGCAACAAGGCGATCGCGCGCCGCGAGGGGGACACCGTGCGCCTCTCCCCCCGCAAGTCCTTCGCCCGGTGGCGCGAGATCGTCCGCGGCACCAGCGAGGCGTGGACCGACGACGAGATCGACGTGGCGACCTCGCTGCGCTCCTACCTCGGCGAAGGCCTGCTGCTGCGCGGCCGGCGAGACATCCGCGCCGCCGCGACCCTCCAGCGCAGCCTGCTGCCCACCGAGCTGCCGACCGTCGAGGGGTGGACCATCGACGCGGTCTACGAGCCCTCGGGCGGCGGCCTGGCCGGTGGGGACTGGTACGACGCGCTCATGCTCACCGACGACCGGCTCGCCGTCGTCGTGGGTGACGTCTCGGGGCACGGCCTCTCCGCCGCCGCCACGATGGGTCAGCTGCGCAACGCTCTGCGCGCCCTGCTGGTCACCGGCAGCACCGCCGGGCAGGCGGTCGAGCAGGTCGACCAGCTGTTGCGCTCCACCCTGCCCGGCCAGGTCGCCACGCTGGTCGTCACGGTCCTCGACCCGGAGACCGGAACGGTGGAGTACGTGACCGCGGGTCACCCGCCGCCCGTCGTGGTCGGTCCCGACGGCGCCGTCGTCGCCGAGGCGCTCGGCACCCCTCCGCTGGGGGTGGGCCGCCGCGAGGCGCGCACGGGGACGGCGCAGGTCGCGCCGGGCGGCTCGCTGGTGCTGTTCAGCGACGGCCTGGTCGAACGCCGCGACGAGTCGATCGTCGACTCCCTGGAGCGGCTACGCCGGGCCAGCGAGGACGGCCAGGGAGCGGCCGCTCTCGTGCGGCTCGTGCGCGACCCGGCGTCCGACGACGACGCCACCGCCGTCGTCGTGCGACGCGACTGA	MTEQGFLAPGEAVDLDNCAREPIHIPGRIQPRGVLLALRTDDGLVHQCTENIADVLGVDLGTVLGAPLATAVGDEAARTLLTHVASVDDPRLRNPVEIDIAVHGSPRRFEAVLHHAPDSALDGRPAVLVVELEPFSGPTSLTYTSTFEPVRDALTELDRASSLQQLYDVAVRRVRELTGFDRVMLYRFDPDYNGEVVAEARRDDLNPFLGLHYPASDIPPQARALYEKNWIRLIADVGYRPADVVPTDDPVSGRPLDLTYGTLRSVSPIHVEYLQNMGVDASMSISLLRDGRLWGLIACHHYSGPHAPSYAARAAAEFLGSTLSARLVTQAEDDRASAARRSAGVLARLVAVTRDDDVPLTSALTGDPGLLDLVDADAAFVVAEGRVERQGDAPEEEVCRRLAHALAELDVEVLVTDRLARQEPELATLVPDAAGMLALVVPGGAVAVWLRREVVQSVDWGGDPRNKAIARREGDTVRLSPRKSFARWREIVRGTSEAWTDDEIDVATSLRSYLGEGLLLRGRRDIRAAATLQRSLLPTELPTVEGWTIDAVYEPSGGGLAGGDWYDALMLTDDRLAVVVGDVSGHGLSAAATMGQLRNALRALLVTGSTAGQAVEQVDQLLRSTLPGQVATLVVTVLDPETGTVEYVTAGHPPPVVVGPDGAVVAEALGTPPLGVGRREARTGTAQVAPGGSLVLFSDGLVERRDESIVDSLERLRRASEDGQGAAALVRLVRDPASDDDATAVVVRRD				NA	NA	NA	NA	NA
AK001_02993	447			hypothetical protein	ATGGTGGACACCAGGATCACCGCCGCCCCCGCACCCGACGGGTTCCGCGAGGTCAGGTCGTGGCCGCTCCTGACGATCGACGAGCTCGCCGCGCTGCGGGGCGACCTGGAGGCGAACCTCCCGGCCGCCCGGAGCGCGAGCCTCGACGAGGTGCCCGAGTCGGTCCTGCTCGTGGCGAGCGAGCTGGCGACCAACGCGATCGAGCACGGCGGCGGCCCGGCGGCCGTGCGGCTGCTCGCCCGGGAGGGGGAGTTCCTCCTCGACGTCGCCGACCGGACCCCGTCCTCCGCACCACAGGTCGCGGAGGACCCCTCCGCCCGCGGCGGCTTCGGCCTCCTGCTGGCCGCCCGGCTGGCCGACGCGGTCGGCTGGTACGCCACGAGCGCCGGCAAGCACGTCTGGGCCCGGTTCACGGCGGCTCGGCGGGAGCCGGCCGTCCCGGCCTGA	MVDTRITAAPAPDGFREVRSWPLLTIDELAALRGDLEANLPAARSASLDEVPESVLLVASELATNAIEHGGGPAAVRLLAREGEFLLDVADRTPSSAPQVAEDPSARGGFGLLLAARLADAVGWYATSAGKHVWARFTAARREPAVPA	PGPT0014950_1497	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757	NA	NA
AK001_02994	321			hypothetical protein	ATGCCTGTGGACGACCAGCAGATCCAGGGCGGGGTGCACATCGACCCCGACCGTGCCCACTGGACGATGTGGGGTGAGGTCGACGCAGCGGTGAAGAAGCGCGTCGGCGAGGAGATCGAGGCGCATCTGGCCGCCACCGCCGACGAGCCGCTGACCGTGAGCCTCGCGGACGTGACCTTCATCGACTCCGGCGGGCTCCGTCTGCTCTACCAGGCCGCGGAGGCCAAGCCCACCCCGCCGGTGCTCACGGGCGTCCCGGATCGTGTGCTCGACCTGCTGAAGCTGAGCGGTGTGGATACGCTGTTCGTTCTCGCGGACTGA	MPVDDQQIQGGVHIDPDRAHWTMWGEVDAAVKKRVGEEIEAHLAATADEPLTVSLADVTFIDSGGLRLLYQAAEAKPTPPVLTGVPDRVLDLLKLSGVDTLFVLAD	PGPT0014350_1228	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
AK001_02995	1092			hypothetical protein	GTGCCGACGACACCGTCCCGGGCCGCTGCCGCGACCGTGCTGACCGGGCTGCTGCTCACCGCGTGCAGCGCGTCCGACGGCGGCGGCTCCGACGGCGCCGCCCCGGAGAGCGCCGCGAGCTCGCTGCCCGCCTCCCCCACCGGCGAGGCGTCGACGGTCGCGACCGGGCTGGCGGCCCCGTGGTCCGTGACGTTCGTCGAGGGCGCCCCGCTGGTCAGCGAGCGCGACAGCGCGCGGATCCTCGAGCTCGCCGACGACGGCGCGGCCCGGGAGGTGGGGGTCGTGACCGGCGTCGACACCGCGGGCGAGGCGGGGCTGCTCGGCCTCGCGGCCCACGACCGCCGGCTGTACGTCTACTCCACGGCGAGCGACGGCAACCGCATCGAACGGTACGACCTCGACGGGGCGCCCGGGACGTTCACGCTCGGCGAGCGGGTCACCCTCGTCGAGGGCATCCCCGCCGCCCGCTTCCACGACGGCGGACGGCTCGCGTTCGGGCCCGACGGGATGCTCTACGCCACCACCGGCGACGCCGGCGAACCGGACCGGGCGCAGGACCCCGACTCGCTCGCCGGCAAGATCCTGCGGATGACGCCCGACGGCGAGCCTCCCGCCGACAACCCGTTCCCCGGCTCGCTCGTCTACAGCCTGGGCCACCGCAACGTGCAGGGGCTGGCGTGGGCCGACGACGGCACCCTGTTCGCGACCGAGTTCGGGCAGAACACCTGGGACGAGCTCAACGTCGTCGAGCCCGGCGCGAACTACGGCTGGCCGGAGGTCGAGGGAGCCGCGGGCGTCGCGGGGTACGTCGACCCGGTCCAGCAGTGGCGCCCCGGCGACGCCAGCCCCAGCGGGCTGGCCCACCTGGACGGCACGCTGTTCGTCGCGAACCTGGGCGGCGAGGTGCTGCGTGCCGTGCCGGTCGACGACCCGTCGACCTCCGCCGTCGTCGTCCAGGACGAGGGACGTCTGCGCGACGCCGTCGTCACGCCGGACGGCGAGCTGTGGATCGTCACCAACAACACCGACGGGCGGGGTTCACCCGGGCCGGACGACGACCGGGTCCTGCAGCTCGAGGTCGCCGGGTCCTGA	MPTTPSRAAAATVLTGLLLTACSASDGGGSDGAAPESAASSLPASPTGEASTVATGLAAPWSVTFVEGAPLVSERDSARILELADDGAAREVGVVTGVDTAGEAGLLGLAAHDRRLYVYSTASDGNRIERYDLDGAPGTFTLGERVTLVEGIPAARFHDGGRLAFGPDGMLYATTGDAGEPDRAQDPDSLAGKILRMTPDGEPPADNPFPGSLVYSLGHRNVQGLAWADDGTLFATEFGQNTWDELNVVEPGANYGWPEVEGAAGVAGYVDPVQQWRPGDASPSGLAHLDGTLFVANLGGEVLRAVPVDDPSTSAVVVQDEGRLRDAVVTPDGELWIVTNNTDGRGSPGPDDDRVLQLEVAGS	PGPT0017700_901	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430	NA	NA
AK001_02996	465			hypothetical protein	ATGACGATCGCCACGACCCGACCGGAGACCGACGCGCTGCCCACCGGTGGCGTCGTCCACCTGCTCGGCGAGGAGGTCCCGGCCCCGGCGTGGCTCGTCCAGGTCGGTGACGACGTCTACCTGCGCTCGGCCGAGCCTCGTTCCGTCGTCGACGCCCGCGGTCGCGGTCGCGTCCGGGTCGGTGGCGCGGAGCACTTCGTCGTGCTGAGCGAGGTCGCGCCGGAGATGCACGACGTGCTCGACGAGGCCTTCCGCGCCACCTACGGCCGGTGCCGCCCGGAGCAGGTCGCCGCGATGGTGTCCGACGACGCCGCCGCCTCGACGTACCGGCTGCGGCAGCGCCGTCCGACCGTCGCCGAGCGCGTCGCGGACCGGTACGCGGCCTGGCAGGAGCGCACCGCCCGCGTCGAGCGGACGACACCGGCCCCGCGCGGCGCCGCGGAGCCCTGCGTCTGCCCCTGCTGA	MTIATTRPETDALPTGGVVHLLGEEVPAPAWLVQVGDDVYLRSAEPRSVVDARGRGRVRVGGAEHFVVLSEVAPEMHDVLDEAFRATYGRCRPEQVAAMVSDDAAASTYRLRQRRPTVAERVADRYAAWQERTARVERTTPAPRGAAEPCVCPC				NA	NA	NA	NA	NA
AK001_02997	513			hypothetical protein	ATGGACGACCGCAGCAAGACCCCTCGGCGCGACACCACCGCGCGAGACGTGACGTGGACCCTGGCCGCCCTGACGTACCTGGGGTTCCTGGCCCTGCTCACGCTCACGCCCCGGCCGTGGGGCCGGGAGGTCGACCAGGAGCCCTGGGGCGTGCTCAACCCCGCCGCCTGGCTCTCGTCCGCCACGTGGACCACGGGGACGGCACGCGAGTTCGTCCTCAACATCCTGCTGTTCGTGCCGGCCGGCCTGCTGGCCGCGCGGTTCCGCGGGGCGTGGGGGCTGGGCGCCGCCGTGCTGCTCACCGGTGCCGTCGAGGTCGCCCAGATCCCGCTGGACAACCGGCTGTCGGACCCCCGCGACATCGTCGCCAACGTCGGCGGCGCCCTGGTCGGCCTCGCCCTCGGCGCCGCCTCGCGGTCCGGCGCGCCACCGTCACCGCCCCCGCGGCCGCCGACCGGGCGGGCGACCGCCGACCCGTCGGCCCCTGAGGGGGACCGCCGGAGCATGTACTGA	MDDRSKTPRRDTTARDVTWTLAALTYLGFLALLTLTPRPWGREVDQEPWGVLNPAAWLSSATWTTGTAREFVLNILLFVPAGLLAARFRGAWGLGAAVLLTGAVEVAQIPLDNRLSDPRDIVANVGGALVGLALGAASRSGAPPSPPPRPPTGRATADPSAPEGDRRSMY				NA	NA	NA	NA	NA
AK001_02998	1023		COG1063	putative zinc-binding alcohol dehydrogenase	ATGCGCGCATCCGTCATCTACGGCGCCGGCGACGTCCGCGTCGAGGACCTGCCGGCCCCGACGATCCAGGAGCCGACCGACGCGGTCGTCCGCGTCACCCTGGCCTGCGTGTGCGGGTCCGACCTGCACCCCTACCACTCCATGCCCGCCTCGGAGCAGGGCGTCCCGATGGGCCACGAGGCCATCGGCGTCGTCGAGGAGATCGGGGACGACGTCACCGGCGTCTCCGTCGGCGACCACGTCGTCGTCCCGTTCGCCTACGCGGACAACACCTGCTCCGTCTGCCGGGACGGCTTCCAGACCGCCTGCTCCCACGGCGGGTTCTTCTCCGGGGCCCAGGCCGAGAAGCTCCGCGTCCCGCAGGCCTCCGGCACGCTCGTGCAGATCCCGGACGACGTCGACGAGGCCCTGCTGCCCTCCCTGCTCACGCTGTCCGACGTGTACCTGACCGGCTACCACGCCGCCTTCATGGCCAAGGTGCAGCCGGGCCAGACCGTCACCGTGATCGGTGACGGCGCCGTCGGCCTCTCCGCCGTCCTCGCGGCGAAGCAGATGGGTGCCTCGACGATCATCCTCATGGGCCGCCACAAGGACCGCACCGACCTCGGCCGCGAGTGGGGTGCCACCGACGTCGTCGCCGAGCGCGGCGAGGAGGGCATCGCGAAGGTCATGGAGCTCACCGGCGGCGAGGGCTCGCACGTCGTGCTCGAGGCCGTCGGCCACATGCCCGCCTACGAGCAGTCGTACGGCGTGGTCCGCCCCGGGGGCGTCATCTCCCGCGTCGGCGTGCCCCAGTACGAGGAGGCCCCCGTCGGGTTCATGTCGCTGTTCGGCAAGAACGTCACCCTCAACGGTGGCCCCGCGCCGGTGCGCGCCTACCTCGAGGCCGCCATCCCGCAGGTCCTCGACGGCACCATCGAGCCCGGCAAGGTCTTCGACGCCGAGGTCTCGCTCGACGACGTCGCCGAGGGCTACCGGCTCATGGACTCGCGCGAGAAGATCAAGGTCCTCGTGCGCCCGTGA	MRASVIYGAGDVRVEDLPAPTIQEPTDAVVRVTLACVCGSDLHPYHSMPASEQGVPMGHEAIGVVEEIGDDVTGVSVGDHVVVPFAYADNTCSVCRDGFQTACSHGGFFSGAQAEKLRVPQASGTLVQIPDDVDEALLPSLLTLSDVYLTGYHAAFMAKVQPGQTVTVIGDGAVGLSAVLAAKQMGASTIILMGRHKDRTDLGREWGATDVVAERGEEGIAKVMELTGGEGSHVVLEAVGHMPAYEQSYGVVRPGGVISRVGVPQYEEAPVGFMSLFGKNVTLNGGPAPVRAYLEAAIPQVLDGTIEPGKVFDAEVSLDDVAEGYRLMDSREKIKVLVRP	PGPT0006375_884	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001	NA	NA
AK001_02999	774			hypothetical protein	ATGGCCTACTTCCGACGCACCGACGCCTCGACCTTCGCCCCGACCGACCTCGTGGGCGGGGCCTGGCGCACCGACGAGCAGCACGTGGCACCCACGTTCGGTCTGCTCACCCATCTCGTCGAGACCGACCGCACCGCCCGCGGACGCGACGACCTCGCACCGGTCCGACTCACCTTCGACGTCTGGGGCCCGTACCCCCTGGCGCCCATGGACACCGTCGTGCGCGTGCTGCGTCCTGGACGCGGGGTCGAGCTCGTCGAGGCGGAGGTGTCGTGCGCAGGCCGCACGGTCGCCACGCTCCGCGCCTGGCTCGCCGGCCGCGCGGACACGACCGAGCTCGCGGACGGCACGCCGGCGACGGTCCCCGGACCCGACGAGACTCCCTCGTGGGACCCCACGACGGACTGGCCCGGCGGTTTCATCTCCTCGCTCGACGTCCGACGGACCCTCGCCGGGCCAGGTCGCGGCACGGCGTGGGTGCGGACGGACGTCCCCCTCGTCGAGGACGAGGAGGTCGGCGCCCTCGCGCGGACCGCCGGCCTGCTCGACGTCGCGAACGGCATGACCGTCCGTGCCGACCCTCGCCGGGTCGCCTACCCCAACCTGGACCTCACCGCCCACCTGTTCCGGCACCCGACGGACGGGTGGCTCGGCCTGGACACCACCGTGACGTTCGGCTCGGGCGGGACCGGGACGACCGCCTCCGTCCTGCACGACACCGCCGGGCCGTTCGGTCGGCTGGCACAGGCGCTCGTCGTCCGGCCGTTCGGCTGA	MAYFRRTDASTFAPTDLVGGAWRTDEQHVAPTFGLLTHLVETDRTARGRDDLAPVRLTFDVWGPYPLAPMDTVVRVLRPGRGVELVEAEVSCAGRTVATLRAWLAGRADTTELADGTPATVPGPDETPSWDPTTDWPGGFISSLDVRRTLAGPGRGTAWVRTDVPLVEDEEVGALARTAGLLDVANGMTVRADPRRVAYPNLDLTAHLFRHPTDGWLGLDTTVTFGSGGTGTTASVLHDTAGPFGRLAQALVVRPFG				NA	NA	NA	NA	NA
AK001_03000	2664	QRSL1_3		Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrial	GTGCCGATCCTCGCCCTCGCACTGGCGGGCAGCAGCCTCGCCGTGCCGGTCCACGCGCTCAGCGACGTCGAGCTCGACTCCGGGGACACCTGGAGCGTCCACGACCTCGCGAGCCCGCGACTGGACACCGGTAGCATCCAGCAGACCAGCAGCCGGGCCCTCATGGGCTACGGCGGGCTCCGGGTGGACGTCGACGGCGGCGAGAGCCCGCTGAACGGCGTCCTCCTGCGCGGATTCGAACTCACCGCCGACGACGCGACCTTCCGGTCCGGACAGGGTGTCGAGATCGACGGGCTCGTGGTCCGTCGGACCCTGACCGTCGACCAGGGCGGCGGCTACGGCCGGTTCTTCGACACCTTCGACAACACCACCGACGAGCCGCTGACCGTCGAGGTGGCGTTCGGAGGTCAGCTCGGGTACGACACGGGCACCAACCAGTCCGAGATCGCCGGCACGTCCGACGGGGACACGACCATCACCGACGCCGACGGCTGGGCCAGCTGGTACACCCCCAGCGACGGCCCGGGGTCCGCCAGCGCCAACGGCCCCTCGGCCACCACGACCGGCACCCCCGGATTCGACGGCGCCCTCGACCGGATGGGGCTGTTCCTGCGGGACCCGTTCTCCACTCCCCTGCCGACGACGGGCGACGAGGCGAACCACCCCGGGTTCGTCAACACCCTGGTCGTCCCGGCCGGCCAGACCTTCTCGCTGGCGCACTTCGTGGTCACCGGCCTGTCCGAGACCGACGGTCCCGACGGTCCGGCCTCCGGGCCGGGCGTGCAGGTCCTCGACGTCCAGGCACGGGCCCAGGCGCTGACCGACTCGCCCGACCTTGCCGGCCTGAGCGCGGCGGAGGTCTGCTCGCTGGCGAACTACGACGTCACGACGCTCGTGGACGCCGGCACGTGCGCCGAGCCGGAGAACGTCCTCGGGTCCGCCGGGCTGGCCGACACCGCCGCCGTGGTGCCCGGCTGGACCAGCTCCGGCTACGACGTCGTCGGCAAGACCATCACCGAGCTGACCGCGGCGATGGACGCGGGCGAGACGACGGCCGAGGAGATCACGCAGGCCTATCTCGACCGGATCGCCGCCTACGACGGCGGTCCGTTCGGCCAGCGGTCGGTGCTCCACGTCGCACCGGACGCGATCGACCAGGCCCGCGCGGCGGACGCCGCACGTGCCGACGGCGACGACCGGCCGCTGCTCGGTGTGCCGATCCTCGTCAAGGACATCATCGACACGAAGGACATGCCCACCACCGGTGGGTCCGAGCTCTTCGACGGGTACGTCCCGGCCGAGGACTCCTTCCAGGTCGCCCGGCTGCGCGACGCGGGCGCGATCATCCTCGGCAAGGCGAACCTGTCGACGTTCGCCTGGAGCGGTCACTACAGCGAGAGCGACTACGGACAGGTCTGGAACGCCTTCGACCCGTCCCGCAGCTCGATCGGTTCGTCGGGCGGCTCGGCCGTGGGCGTGGCCTCGAGCTTCGCGGCAGCGGCGATGGGCACCCAGACCGGTGACTCGCTGTGGGGTCCGGCCGGCGCCGCGAGCCTGGTGTCCCTGCGCGGGACCGACGGGATGCAGTCCTCGGCGGGCACCATGCCGCTGGCGATCATCCAGGACTACGTCGGCTTCATCTCCCAGTCGGTCCAGGACCAGGCTCTGCTGATGCAGGCCGTCGCGGTGGACAACCCCGACGACGTCCTCGACGACGTCGCCAACGGCCACCGCCCCGAGGACTGGAGCGCTGCGCTCTCGGCCGACGCCCTGCAGGGCAAGGTCATCGGGATCCCCGAGGGCGCGTTCGACGACCCGTTCGGCACGACGACGGTCAGCGACGTGCTGCGCAGCCGGATGTCCACCTTCGAGGAGGCGGGCGCCACGCTCGTCGAGATGCCGGCGGCCCCGTCCGGCGGTCCTCAAGACTACATCTCGAGCTGGTACGACATGACCGTCGAGGGCTGGTCCCAGTGGATCGAGGACCACCCGGACAACCCGTACACGGAGGTCGACGAGATCGTCAGCACCGGCAGCGGCCAGCGCATGAGCGAGGAGCAGCAGCGGGCCATGGAGGCGTGGCGCGCCGACTACCGGGCGCTCCTCGGCGACTGGATGGACGAGTCCGGCGTGGACGCCGTCCTGTACCCGACCGAGCTCAGCGAGATCCACCTCAACGACTCGATCAACCCCAGCTTCGGGCGTCGGGACCCGCAGTCGTCGGCGGCCGGCGTGCCCACGGCGATCTTCCCGGCGGGCGCGACGGAGCACGGCAACCCCGTGGGCTTCCAGCTCCAGGGCAAGGAGTTCCAGGACGCCGAGCTGCTCGGCATGGCCTACGCCTTCGAGCAGGTGGCCGACGGGCGCATCCTCCCGTCGATCAACCCGGCCCTGGAGATGCCCACGGTCTCCGACCTGCGGTCGCAGCTCGAGGCGCTCCAGGAGACCGAGGAGGTCACCGGGCAGGTGTCTCACCAGCTCGCGCAGAACCTCGACGTCGCCCAGCGGCATGCCGACCGCGGCCGGACCGACGCGGCCGCCGTCCAGATCGAGACGTTCCTCTCGCGGGTCACGGACCAGCCCGGCGGGTCCGGCGTCGTCAGCGACGCCGCGGCCGACCGGCTGCGTCCCACCGCGGAGACGCTGATCGCGCTCTGGTCCTGA	MPILALALAGSSLAVPVHALSDVELDSGDTWSVHDLASPRLDTGSIQQTSSRALMGYGGLRVDVDGGESPLNGVLLRGFELTADDATFRSGQGVEIDGLVVRRTLTVDQGGGYGRFFDTFDNTTDEPLTVEVAFGGQLGYDTGTNQSEIAGTSDGDTTITDADGWASWYTPSDGPGSASANGPSATTTGTPGFDGALDRMGLFLRDPFSTPLPTTGDEANHPGFVNTLVVPAGQTFSLAHFVVTGLSETDGPDGPASGPGVQVLDVQARAQALTDSPDLAGLSAAEVCSLANYDVTTLVDAGTCAEPENVLGSAGLADTAAVVPGWTSSGYDVVGKTITELTAAMDAGETTAEEITQAYLDRIAAYDGGPFGQRSVLHVAPDAIDQARAADAARADGDDRPLLGVPILVKDIIDTKDMPTTGGSELFDGYVPAEDSFQVARLRDAGAIILGKANLSTFAWSGHYSESDYGQVWNAFDPSRSSIGSSGGSAVGVASSFAAAAMGTQTGDSLWGPAGAASLVSLRGTDGMQSSAGTMPLAIIQDYVGFISQSVQDQALLMQAVAVDNPDDVLDDVANGHRPEDWSAALSADALQGKVIGIPEGAFDDPFGTTTVSDVLRSRMSTFEEAGATLVEMPAAPSGGPQDYISSWYDMTVEGWSQWIEDHPDNPYTEVDEIVSTGSGQRMSEEQQRAMEAWRADYRALLGDWMDESGVDAVLYPTELSEIHLNDSINPSFGRRDPQSSAAGVPTAIFPAGATEHGNPVGFQLQGKEFQDAELLGMAYAFEQVADGRILPSINPALEMPTVSDLRSQLEALQETEEVTGQVSHQLAQNLDVAQRHADRGRTDAAAVQIETFLSRVTDQPGGSGVVSDAAADRLRPTAETLIALWS	PGPT0006115_22	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426	NA	NA
AK001_03001	981	iolS_3	COG0667	Aldo-keto reductase IolS	ATGCACACCCGCACCCTCGGACAGAGCCTCGAGGTCTCGGCGGTCGGTCTCGGCGCGATGGGCATGTCGCAGTCCTACGGTCCCAACCCGGGCAGCCGCGACGACATGGTCGCCGTGCTGCGCGGTGCCGTGGAGCGCGGCGTGACCTTCGTCGACACCGCCGAGGTGTACGGCCCGTACGTCAACGAGGAGCTCGTCGGCGAGGCCCTCGCACCCCTGCGCGACCAGGTGGTCGTCGCGACCAAGTTCGGGTTCGACCTCGCCGGCGGCGGAGGCCTGGACAGCCGCCCGGAGCAGATCCGGCGCGTGGCCGAGGAGTCGCTGCGCCGACTGCGCACCGACCGGATCGACCTGTTCTACCAGCACCGCGTCGACCCCCGGGTCCCGATCGAGGACGTCGCGGGCACGGTCGGCGAGCTGGTCGCCGAGGGCAAGGTCGGCCACCTGGGCCTGTCCGAGCCGGCGGCCGCGACGATCCGGCGCGCGCACGCCGTCCACCCCGTCACGGCCGTGCAGAGCGAGTACTCCCTGTGGACGCGCGACCCCGAACCGGAGGTCCTGCCCACCCTGGCCACGCTCGGTATCGGGTTCGTCCCGTTCAGCCCGCTCGGCAAGGGGTTCCTCACCGGCACGGTCGACGCCACGACCTCCTTCGCCGACGGCGACATCCGCACCACGATCCCGCGGTTCACCGCGGACAACCGGGCGAGAAACCGGGCACTGGTCGACCACGTGCGGACCCTCGCGGCGGCCAAGGGCGCGACCCCCGGGCAGGTCGCCCTGGCCTGGCTGCTCGCGCAGCAGCCGTGGATCGTGCCGATCCCGGGCACCCGCCGGATCGCGCGGGTCGAGGAGAACGCCGCCGCGACCACCGTGGCGCTGTCGGCGGACGAGCGCGCCGACCTCGACGGCCTCGCCGCACGTGTCGGGGTCCGCGGCGACCGGTACGGCGAGCAGCACCTCCGGCTCGTCGGCCGCTGA	MHTRTLGQSLEVSAVGLGAMGMSQSYGPNPGSRDDMVAVLRGAVERGVTFVDTAEVYGPYVNEELVGEALAPLRDQVVVATKFGFDLAGGGGLDSRPEQIRRVAEESLRRLRTDRIDLFYQHRVDPRVPIEDVAGTVGELVAEGKVGHLGLSEPAAATIRRAHAVHPVTAVQSEYSLWTRDPEPEVLPTLATLGIGFVPFSPLGKGFLTGTVDATTSFADGDIRTTIPRFTADNRARNRALVDHVRTLAAAKGATPGQVALAWLLAQQPWIVPIPGTRRIARVEENAAATTVALSADERADLDGLAARVGVRGDRYGEQHLRLVGR	PGPT0009140_363	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275	NA	NA
AK001_03002	1818	nhaA_2		Na(+)/H(+) antiporter NhaA	ATGGCCCGCCTCGACCTGACACAGCGGCTGCGCACCGACACCGGCGCGGCCGTGCTGCTGCTGTCGGTCACGCTGCTCGCGCTGCTGTGGGCCAACTCGCCGCTCTCCGGGGCGTACTCGGCGCTGTGGGAGACCCCGGTCAACCTCGAGATCGGCGACCTGGCCTTCGACATGGACCTGCACCACTGGGTCAACGACGGGCTGATGGTGCTGTTCTTCTTCGTCGTGGGTCTGGAGGTCCGCCAGGAGCTGTCGGTCGGGTCGCTGCGACGGCGCAGCCAGCGCCTCGTCCCGCTGGTGGCGGGCACGGCCGGCGTCGTCGTCCCGGCCCTGATCTACCTGGCGATCGCCGGGGGCACGGCACCCGAGGGATGGGGCGCCGTCGTCGGCACCGACACGGCGTTCCTGCTCGGGGTGCTGGCCCTGGTGGGGCCACGGATGTCCAACCAGCTGCGGGTCTTCCTGCTGACCCTGTCCGTGGTGGACGACTTCCTGGCGGTGACGATCATCGGCGTCGTCTACTCCGAGGACGTCCGGATCGGTCCGCTGCTGATCGCCGCCGCGTGCCTCGGGGCGCTGTGGCTGCTCGGACGGATGCGTGAGTGGCGCAGCACCCCCTACGTGCTGGTCGTCGTCGTCCTCTGGGGCGCCACGATGCAGGCCGGTGTCCACCCCTCCATCGCGGGGATGCTCGCCGGTCTGCTGGTCCCGGCCGCCCTGACCCGGCGGGCCGACGTCGTGCGCACGAAGAACCTCTACCGCGCGTACTGGCAGTCGCCCAGCGCGAGCGTCGCCCGGGACGTCCACCTCGGGCTCTCCCGGTCGATCTCGGTCAACCATCGCCTGCACGAGGTGCTGAACACCCCGGTGAACGTCGTCGTCGTGCCGCTGTTCGCCCTGGCCAACGCCGGGATCGACCTGCGGGGCGGCGCGCTCGGCGAGGCGCTCGCCTCGTCCATCACCTGGGGAGTCGTCGGCGGCCTGGTGGTCGGCAAGCTGGTGGGCATCAGCCTGGGGACCTGGGCGGCGGTCAAGGCGGGGCTGGGGACGCTGCCCGACGGCGTCGGCCCCGGCAGCGTGCTGGGGGGCGCGGCGCTGTCCGGCATCGGCTTCACCGTGTCCCTGCTGGTGATCGGTCTCGCCTTCGACGACGAGTCGCAGGTGCAGGCCGCCACGGTCGGCGTGCTGCTGGCGCTCGTCCTCGCCTCGCTGGTCGCCTGGGCGCTGTTCCGGCTGGCCCGCGTGCGGTGGGGCGAGGAGACCGCCGACCTGCCGACGACGCTCGACCCGCCGGTGGACCCCCGCCACGACCACGTCCAGGGCGAGCCCGACGCCCCGCACACGATCGTCGAGTACCTGGACTACGAGTGCCCGTTCTGCGCCCGCGCCACCGGCATGTGGCGCGACCTGCGCGACGAGCTCGACGGCCGGGTCCGCTACGTGGTGCGGCACCTGCCCCTGGACGACGTGCACCCGCACGCCCACCTGGCCGCCGTCGCCGCCGAGGCCGCGCACCGGCAGGAACGCTTCTGGGACATGCACCACCACCTCTTCGCGCACCAGTCCCGCCTCGAGGCGGAGGACCTGCGCGGCTACGCCGACGAGCTCGGGCTCGACGTCGAGCAGTTCGACGCGGACCTGGCGGACGAGTCGCTGCACGCCCGCGTCCGCGACCACGCCGAGAGCGCCCGCCTCAGCGGGGCCCGGGGCACGCCGACCTTCTTCCTGGACGGCGTGCGCCACCAGGGTCCGCACGACGCGGCGACGCTCATCGCCGCGATCGAGGAGCTGGACGCCGCGGGGCGGACCGGGCGCTGA	MARLDLTQRLRTDTGAAVLLLSVTLLALLWANSPLSGAYSALWETPVNLEIGDLAFDMDLHHWVNDGLMVLFFFVVGLEVRQELSVGSLRRRSQRLVPLVAGTAGVVVPALIYLAIAGGTAPEGWGAVVGTDTAFLLGVLALVGPRMSNQLRVFLLTLSVVDDFLAVTIIGVVYSEDVRIGPLLIAAACLGALWLLGRMREWRSTPYVLVVVVLWGATMQAGVHPSIAGMLAGLLVPAALTRRADVVRTKNLYRAYWQSPSASVARDVHLGLSRSISVNHRLHEVLNTPVNVVVVPLFALANAGIDLRGGALGEALASSITWGVVGGLVVGKLVGISLGTWAAVKAGLGTLPDGVGPGSVLGGAALSGIGFTVSLLVIGLAFDDESQVQAATVGVLLALVLASLVAWALFRLARVRWGEETADLPTTLDPPVDPRHDHVQGEPDAPHTIVEYLDYECPFCARATGMWRDLRDELDGRVRYVVRHLPLDDVHPHAHLAAVAAEAAHRQERFWDMHHHLFAHQSRLEAEDLRGYADELGLDVEQFDADLADESLHARVRDHAESARLSGARGTPTFFLDGVRHQGPHDAATLIAAIEELDAAGRTGR	PGPT0013935_23	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313	NA	NA
AK001_03003	2961			hypothetical protein	ATGAGGTCTCGTCATGCACTCGTCGCGTCGACCGTCGCGGCACTCGTCCTGTCCGCCGCCGTGGTGCCCGCCGGGCACGCGGCCGACGGCGTACCGACCACGGACGACCCGCCGACGTACACGCGGTACGGAGCGATCGACGACCCGGGGCGCACCGCACCCGACTACTTCCAGCCGCTCTGGTACGACACCGACGGTCGGCACGTCCAGGCCCACGGCGGGCAGGTCGTCACGGTCGAGGAGAACGGCCAGACCGTCCACTACTGGTACGGGGAGGACCGCAGCAACGGCTACTGGGACAGCCCCGGCGTCGCGGTCTACCGCTCCACCGACACGCTGAACTGGACGAACGAGGGGATCGCGCTGCGCAGCGTCGCGACGGCGAGCGAGCTGGAGGACCCCTACTTCGACGATCTGTACAACACGGTGGCCGACGACGGTACGGTCGACACCGCGCGTGTCGACGAGCTGGACTACTACCTGAACTCCGCCCAGGCGTCCGACTACACCGCGATCTTCGAACGGCCGAAGGTCCTCTACAACGCCCAGAACGACACCTGGGTGATGTGGTGGCACGCCGACGGGCAGACCAGCGTCGGCGGCAGCACGTACTCGCGGTCGATGGCCGCCGTCGCGGTGTCGGACAGCCCCACGGGCCCGTTCCGCATGACCGGGTCCTTCCGGCTGTACAACCGTGCCGACTACCAGGCGTGCACCGGCTCGGCGGTCCCGGGCCAGGCGCGGGACATGACCGTCTTCCAGGAGGACGACGGCAGCGCCTACATCGTGTACTCCTCCGAGGAGAACCACACCCTCTACATCGCGCGCCTGAACGCCGACTACACGAACGTCGAGCACACCACGACCCAGGACCCCGTCGGCATCCAGTACTCCGAGGACGGGCAGTACCCGTACCTGTTCGCCGACGGGTCGCCGCAGGCCCCCGTGCGCGGAGACGACTTCCAGATCGTCAAGGAGTGCGGCCACCTCGAGGCGCCCGCGGTGTTCGAGCACGGCGGCACCTACTACACGGTCGCGTCCGGGGCGACGGGCTGGGCGCCGAACTCGCAGACCTACTACTCGGCGGACGACCTCTTCGGCACCTGGATCCGCGGCGTCGAGGCCGACGACCCGGCCGAGAACATCTCCTACGACGCCATCCCCGAGGGCGGCGACGGGCGGCTGTCGGTCGGCGACGGCCGCGGGACGACCTTCGGGTCGCAGTCCACGGACGTGCTCTCCCTGGGGGGCGGGCGGCACGTCTACCTCGGCGACCGGTGGAACAACGGCGCGGCCGACTCCACCTACGTGTGGCTGCCGATCACCGTCGGCGAGGGCGGACGGCTCGAGATGCGCAACCCCGCCGACGAGGACCCGACCGCCTGGGGGTCCGGCTGGGACGCGACGTACTGGGACGACCAGGGCGCGGGCGAGGAGATCTGGACCGTCGTCGACGACGGTCTCCCGGAGACCGTCCTGCGCGGTGCCGACCCGGCCGCCGTACTCCCCGCGACCGTGTCCGTCCAGGCAGGGACGACGACGTCGGACGTCGCCGTCACCTGGGACGCCGACCTGGACCTGCTCGGTCGGCAGACCGTGACCGGCACGCTGGCGGCCGGCGACGGGTTCGGCGCCGGGCGCCGGTTCACGCGGGAGCTGACCGTGTGGGAGCACGGCACCGTCAACCTGGCGCGCGACGCGACGGTGTCGGCCTCGAGCCGCACCGGGCTCGCGGCCACCACCGTGGACGGGGACACCCGCCCCAAGGGCTGGGACGACTGGTCCAGCAGCGGGTACCCGCTCGACTCGTGGCTCGAGCTGACCTGGGACGGCCCGCAGGAGCCCGACGAGGTCGTGCTGCACACCTACGCCGACGGGGCGGGTGCGACCTGGCCGTCACGCGTCGACCTCCAGTACCGGGACGCCTCGGGCTCCTGGACCGACGCCGGGGTCGGCGCCGACGTCGTGCAGGACCCCGCGGCCGGAGCGCCGGTCGTGCAGCTCGACGCCGCGGGGATCCCGGCGACCACCGGGCTGCGCGTGCTCCTGCACACCGACACCAGCACCTGGCAGTCCGTCGCCGAGGTCGAGGTGTGGGGACCGCTGGGGGACGTCGACGTGTGCAGCGCCGCGGGGACCACGGTCTCGGCGTCGTTCCACCAGACGCGGTACGAGACGATGCCGGCGCAGCGTGCCTGCGACGACGACGGCGCCACCGCCTGGTCGACCTGGGACGGCGGCACCACGCACGACCCGGTGACGTTCACGGTGGACGCGGGCTCCCCGTTCGGGGCCGACGAGATCGTCTTCACCAACACCGAGGGGACCCTCGCGGACGTCAGCGTCGACCACCGTGCCGCCGACGGCACGTGGCAGCCCACGACGGCGCAGGACGTCGCCCCGGCCGCCAACGGGGCGGTCACCACCGTGGGCTTCGACGCGGTGACCACCGACGCGCTCCGGCTGACCTTCGCCACGCCCGGTTCGTACCTCAAGATCAGCGAGCTGTCGGTCCCGGCGCAGGCCCCCGTCGACCTGTGCACCCTCACCGGGACCCAGGTCGCGGCGTCGTTCCACCAGACGCGGTACGAGGTCATGCCGGCGCAGCGGGCCTGCGACGGTGACACCGGCACGGCGTGGTCCACCTGGGACGGCGGCTCGTCGCCGGACGAGGCGACCTACGAGGTGCTGCCCGAGACCGCCGTCTCGGTGGACGCGCTGTCGTTCACGAACACCGAGGGCACCATCGCCTCGGTCGACGTCGCCGCGCGCGGCACCGACGGCCTGTGGACGACGGTGGCGACGGGGGTGGCCCCCGCGGCGAACGGCCAGCCCACGACCGTCGCGATCGACCCGACCGTCGCGACCGAGTTCCGGCTGACGTTCGCCACGCCGGGCTCCTACCTGAAGGTCTCCGAGGTCACGGTGAGGGGCCTGCCCGCCGCGCCCCCGGGCGCCTGA	MRSRHALVASTVAALVLSAAVVPAGHAADGVPTTDDPPTYTRYGAIDDPGRTAPDYFQPLWYDTDGRHVQAHGGQVVTVEENGQTVHYWYGEDRSNGYWDSPGVAVYRSTDTLNWTNEGIALRSVATASELEDPYFDDLYNTVADDGTVDTARVDELDYYLNSAQASDYTAIFERPKVLYNAQNDTWVMWWHADGQTSVGGSTYSRSMAAVAVSDSPTGPFRMTGSFRLYNRADYQACTGSAVPGQARDMTVFQEDDGSAYIVYSSEENHTLYIARLNADYTNVEHTTTQDPVGIQYSEDGQYPYLFADGSPQAPVRGDDFQIVKECGHLEAPAVFEHGGTYYTVASGATGWAPNSQTYYSADDLFGTWIRGVEADDPAENISYDAIPEGGDGRLSVGDGRGTTFGSQSTDVLSLGGGRHVYLGDRWNNGAADSTYVWLPITVGEGGRLEMRNPADEDPTAWGSGWDATYWDDQGAGEEIWTVVDDGLPETVLRGADPAAVLPATVSVQAGTTTSDVAVTWDADLDLLGRQTVTGTLAAGDGFGAGRRFTRELTVWEHGTVNLARDATVSASSRTGLAATTVDGDTRPKGWDDWSSSGYPLDSWLELTWDGPQEPDEVVLHTYADGAGATWPSRVDLQYRDASGSWTDAGVGADVVQDPAAGAPVVQLDAAGIPATTGLRVLLHTDTSTWQSVAEVEVWGPLGDVDVCSAAGTTVSASFHQTRYETMPAQRACDDDGATAWSTWDGGTTHDPVTFTVDAGSPFGADEIVFTNTEGTLADVSVDHRAADGTWQPTTAQDVAPAANGAVTTVGFDAVTTDALRLTFATPGSYLKISELSVPAQAPVDLCTLTGTQVAASFHQTRYEVMPAQRACDGDTGTAWSTWDGGSSPDEATYEVLPETAVSVDALSFTNTEGTIASVDVAARGTDGLWTTVATGVAPAANGQPTTVAIDPTVATEFRLTFATPGSYLKVSEVTVRGLPAAPPGA				NA	NA	NA	NA	NA
AK001_03004	2868			hypothetical protein	ATGGCGCTGAGACGAACGACGGCCACGGCGACCGCCGTGGCGATGATCGCCGGACTGGGGGCAGCCGTCGGCGCGTTGCCGGCCACGGCCGCCCCCGGGACGGTCGAGGTCGACCTGACCCGGAGCACGGGCGAGATCTACGGCGGCGCCACCGGCGTCCTGTACGGGCTGAGCGACGACGGCGTCCCGAGCGACGACCTCATCGCCGGCCAGCGGCCGCGCACCGTCGCCCAGAAGGCGCCGGGCGGCGAGCAGCACCCCAACGGCGACGCGCTGGAGATCGCCGCCCCGTTCTTCGCCAACGGCGGCGAGCAGGTCGTGGTCTACATGCAGGACGAGTACAGCCGGTGGCCCTACCAGGAGCCGGAGGACGTCCAGGCCGACTACCTGCCCCGCCTGCGCGCGCAGGTCCAGGCGGTGCTGGACTCCGGGCAGGACCCGGAGAGGTTCGCCTGGGTCCCGTTCAACGAGCCCGACTGGATCTGGTACCAGGACTGGTACGGCGGGGACCGGGAGAAGTTCTTCGCCGACTGGGACGCGGCGTACGCCGCGATCCGCTCCGTGGACGACGACGCGCTGATCGTCGGTCCGAACGAGGCCCACTGGCGCCCCGGCCCGGTGCGGGAGTTCCTCACCCACGCCCAGGAGTCCGGCACGGTGCCGGACATCATGGCCTGGCACGAGCTCGGCACCGGGTCGCTGGGCGACGGGACCAACGGCTACCGCACCCGCTACCAGGAGTACCGCGACCTCGAGGCCGAGCTCGGCATCGGGCCGCTGCCGATCAACATCGACGAGTACGGCAACCGGCAGGACATGGGCAACCCCGGGCGCCTGATCCAGTGGCTGTCGATGTTCGAGGACACCAAGGTCGACGCCGACATGGCGTTCTGGACCTACGCGGGCAACCTGTCCGACCACGCCGTCCAGACCTCGATGGGCAACGGCGGCTGGTGGCTCAACACCTGGTACTCCGACCTGACCGGCCACACGGTCGAGCTCACGCCGGAGGCCGAGAACACGCCGGACACGATGCAGGGGATCGCCGCGCTCGACGAGGCCCGGCAGACCGCCACGGTGCTGCTGGGCGGCAACCCCGAGGGCGGCTCCCTGGTCCTGCACGGCGTGGACCAGACCATCGGCGACGAGGTCGACGTCTACCTCGAGACGACCGACTTCACCGGGCAGGAGGGCGAGACCTCGGCCCCGCGCGTGGACCGCGTGCAGCGTCTGGACGCCGTCGGCGGCGACGTCACCGTCACGATCCCGGGCGACGGCGAGCAGGCCGCCTACCGGGTCACCGTCGTCCCGGCGACGTCCGACGCCGTCGACGAGCCGGAGACCGGCTGGTCGGCCTCGTACGAGGCGGAGGACGCCGACCTCGTCGCGGCCCAGGTCTACGACCAGGCCGCCGACTGGGACTACGCCGCGTCCGGGCGGCAGGACGTCGGGTCGTTCAACACCCCGGAGTCCCGGGCCACGTTCGACATCGAGGTGCCGGCCGACGGGACCTACGAGCTGGGGATCCTGCACGGGTCGAACACGCAGTGGGGGCAGCACGCGCTGTACGTCGACGGCGAGTTCCGCGAGCGCATCACGTACTCGGCGACCCTCGGCTGGTCCTACCGCGGCCGGACCGAGGTCCCCGTGGACCTCACCGCGGGGGCGCACACGATCTCGCTGCGCGCGAGCGACGACGACGGTGCGCTGGACGTGCACTACGACATCACCCTCGACCGGATCGACGTCGCCGAGCCGGAGCCCGACACGCTGCACTTCCCGCTGTGGCGCTCGCGACTGTCCGGTGACGTCTCGGTGGACCACTCGACGGCGGCCCGTGCGGTCACCCTCGCGCCGGGTGCGTCGTCCCAGACCTTCGTCGGGGCTCCCGAGGACGGCTACTACGACCTGGTGCGCACCGGCGCCTCCGACGTCGAGGGCACGGTGCAGGTCACGGCCTCGGGCCGTGACCTGGGCGCCGAGGCGGGGCACGTCCCGGCCGGCGCCGCGACGGTCACGACGACGGTCTACCTGCACCGGGGGGTCAACGAGCTGGTGCTGACCAACACCGGTGACACCCCGGTCTCCATCGACGGGCTGCGCACCGTGCGCGACCGGGACGCCGACGCCTCGACCGCGCAGGTGGAGGCGGAGGACCTCGTGCTGGAGGGCGAGGCCGCCGCCCAGGAGAGCCGGTGGGCCTCCCAGGGCACCTACGTCGACGGGCTCGGGCAGAACGGCTCCCTGGTGTGGGAGCGGCCCGCCGACCTCGGCGCGGGGGACTACGTGCTGAACGTCGCGTACGCCAACGCCCAGGTCAACCTCGGGCACCCGTACAACACCGACGTCGTGAGCCGGTTCGTCGACACGACCGAGGACGGCGGGGCGACCACGCGGTCCGTGTACCGGCACAACTACACCTGGGACGGGTTCTGGGACGTGACCTCGGGCCTGACCCTGGAGACCGACGGCGGCACCCTCCGCTTCGGACGGAGCGACGGGGCCGCGCCGAACATCGACCGGCTCTCGCTGTCGCCGCTCACCCTGGGCACGACCGTCGACGACGGTGCGCAGGACGGGCTCGCGCTCGAGGCGAGCGTGCAGCAGCGCTGCCTGGGCGGCAGGGTCTTCGTGGCGGTGCGGGCGGTCAACGGCGAGGACGTGCCGATGGACGTCGAGCTGTCGACGGCCTACGGCTCCCGGACGGTCACGGACGTCGACCCGGGCGGGAACGCCTACCGGTCCTTCCCGGCGCGCACCGGGTCCGTCCCGGCCGGTGAGGCGACGGTGACGGGCACCGCCACGATCGACGGCGAGGAGGTGTCCGCGACCGAGCAGGTGCCGTACGACGCGTTCGACTGCTCCTGA	MALRRTTATATAVAMIAGLGAAVGALPATAAPGTVEVDLTRSTGEIYGGATGVLYGLSDDGVPSDDLIAGQRPRTVAQKAPGGEQHPNGDALEIAAPFFANGGEQVVVYMQDEYSRWPYQEPEDVQADYLPRLRAQVQAVLDSGQDPERFAWVPFNEPDWIWYQDWYGGDREKFFADWDAAYAAIRSVDDDALIVGPNEAHWRPGPVREFLTHAQESGTVPDIMAWHELGTGSLGDGTNGYRTRYQEYRDLEAELGIGPLPINIDEYGNRQDMGNPGRLIQWLSMFEDTKVDADMAFWTYAGNLSDHAVQTSMGNGGWWLNTWYSDLTGHTVELTPEAENTPDTMQGIAALDEARQTATVLLGGNPEGGSLVLHGVDQTIGDEVDVYLETTDFTGQEGETSAPRVDRVQRLDAVGGDVTVTIPGDGEQAAYRVTVVPATSDAVDEPETGWSASYEAEDADLVAAQVYDQAADWDYAASGRQDVGSFNTPESRATFDIEVPADGTYELGILHGSNTQWGQHALYVDGEFRERITYSATLGWSYRGRTEVPVDLTAGAHTISLRASDDDGALDVHYDITLDRIDVAEPEPDTLHFPLWRSRLSGDVSVDHSTAARAVTLAPGASSQTFVGAPEDGYYDLVRTGASDVEGTVQVTASGRDLGAEAGHVPAGAATVTTTVYLHRGVNELVLTNTGDTPVSIDGLRTVRDRDADASTAQVEAEDLVLEGEAAAQESRWASQGTYVDGLGQNGSLVWERPADLGAGDYVLNVAYANAQVNLGHPYNTDVVSRFVDTTEDGGATTRSVYRHNYTWDGFWDVTSGLTLETDGGTLRFGRSDGAAPNIDRLSLSPLTLGTTVDDGAQDGLALEASVQQRCLGGRVFVAVRAVNGEDVPMDVELSTAYGSRTVTDVDPGGNAYRSFPARTGSVPAGEATVTGTATIDGEEVSATEQVPYDAFDCS				NA	NA	NA	NA	NA
AK001_03005	882	melC_3	COG0395	Melibiose/raffinose/stachyose import permease protein MelC	GTGAGCACCACGGCCGTCACCCCCACCCCCGCCCGCACCCGGCGGCGCTCCGTCGCGGACCGCCACGGCGTGTGGCGGCGCCTGCAGCCCGTCGTGGCGGTCGCGGCGGTCGTCGTCCTCGTCGCGGCGCCCCTGTGGGTCGTGCTGGTCACCGCCGGCAAGACCCAGGCCGAGGCGCTCAACCCGAACCTCGCGCTGCCGACCACCTGGCACTACCTGGAGAACTTCACCGAGGTCTGGCAGCAGGGACGCGTCCCGGCGGCGCTCGGCGGCAGCCTCCTCGTCATGGTGCCGGCCGTCCTGGGCGTCCTCGCGCTCGGGTCGCTGGCGTCGTGGATCCTCGCCCGCCGGTCCACCCGTCCGTTCGCCGTGCTCTACGCCCTGGCGATCAGCGGGATCGTGCTGCCCCCGGCGGTCGTCACGATCGTGCTGGTCCTGCGGCAGCTCGGCCTGGCCGGCACCGCCGTCGGCATGATCGGCGTGTACATGGGCATGTACATGTCCACGGTGATCTTCTTCGTCACCGGGTTCGTCCGCACGATCCCGCACGAGCTCGAGGAGGCGGCCCGGGTCGACGGCGCGGGTCCGCTGCGGGTCTTCCGCACGATCATCCTGCCGCTGCTGGTCCCCGTGCTGTCGACGGCGACCATCCTCATCTGCCTCTACGTCTGGAACGACGTCTTCTACGCCTTCTTCGTGGTCGGCGGACGGCTGGACACCCTCCCGCTCAACCTGTTCCAGGTCGCGAGCGCGGGCCTCTACCTCGACAACTGGCATCTCATCTTCGCCTACGTGGTGCTCATGAGCCTGCCGCTGCTGGTCGTCTTCATCGTGGCCCAGCGGCGCATCATCTCCGGCATCACGTCGGGCGCGGTCAAGTAA	MSTTAVTPTPARTRRRSVADRHGVWRRLQPVVAVAAVVVLVAAPLWVVLVTAGKTQAEALNPNLALPTTWHYLENFTEVWQQGRVPAALGGSLLVMVPAVLGVLALGSLASWILARRSTRPFAVLYALAISGIVLPPAVVTIVLVLRQLGLAGTAVGMIGVYMGMYMSTVIFFVTGFVRTIPHELEEAARVDGAGPLRVFRTIILPLLVPVLSTATILICLYVWNDVFYAFFVVGGRLDTLPLNLFQVASAGLYLDNWHLIFAYVVLMSLPLLVVFIVAQRRIISGITSGAVK	PGPT0016340_825	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_03006	954	melD_7	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	GTGACGACCCCAGACCTGGCCACCCGGCCACCACGCACCGAGCCCGCGCCGTCCGCCCGCGGTCCGCAGCGCCGTCGGCCGCAGGACCGCCACCGGGCGAACCACCCCGCGCGGTTCCTGCTCCCGGCGTTCGCCGTGCTCGCGGTGTTCTTCTTCCTGCCGACGCTCTTCAACTTCGTCTACGCGCTGACCGACTGGTCCAGCTTCAAGGCCGAGATCGGCTTCGTCGGGCTGCAGAACTTCCGGGACCTGATCACCAGCGGGACCCTCCTGGCCTCGCTGCGCATCACCCTGGTCTACGCGGTGCTCGTCGCGATCTTCCAGAACCTCTTCGGTCTGCTGCTGGCGCTGCTGCTCGAGCGGGACACCCGGGTCAACCGGTTCGCCCGCGTGATGTTCTTCGTGCCCGTGGTGATGTCGGCCCTCGCCGTCGGCTACGTCTTCCAGGCGCTGCTGAAGCCCGACGGCGCGGTGAACCAGGTGCTGTCGGCGGTGCTCGGGCAGCAGATCCAGATCCCGTGGCTCGGGAGCACCACCTGGACGCTGGTCGTCGTGGCGCTCGTGCACGCCTGGAAGTGGATGGGGCTGTCCATGCTCATCTACCTCGCGGGCCTGAAGACCATCTCCGAGGACGTGCTCGAGGCGGCCCGCCTCGACGGCGCGTCGGCGTGGACCACGTTCCGCGAGATCCGGTTCCCCCTGCTGGCCCCGGCCGTCACCTTCAACGTGGCCACCGCGCTGCTCGGGTCGATGAACGGCTTCGACATCGTCCAGGCGACCACCGGGGGAGGCCCGGCGCGCACCACGGAGGTCCTGAACATCTTCATCTTCCGCACGTTCGGCCAGGGCCTGTTCGCCCAGGCCACGACCATGAGCCTGGTGCTCTTCGTCGTCGTGGTGGCCCTCGCGTTCCCCGTCATCCGGACCCTGCGCAAGCGGGAGGAGGTCCTGTGA	MTTPDLATRPPRTEPAPSARGPQRRRPQDRHRANHPARFLLPAFAVLAVFFFLPTLFNFVYALTDWSSFKAEIGFVGLQNFRDLITSGTLLASLRITLVYAVLVAIFQNLFGLLLALLLERDTRVNRFARVMFFVPVVMSALAVGYVFQALLKPDGAVNQVLSAVLGQQIQIPWLGSTTWTLVVVALVHAWKWMGLSMLIYLAGLKTISEDVLEAARLDGASAWTTFREIRFPLLAPAVTFNVATALLGSMNGFDIVQATTGGGPARTTEVLNIFIFRTFGQGLFAQATTMSLVLFVVVVALAFPVIRTLRKREEVL	PGPT0016335_1271	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_03007	1335			hypothetical protein	ATGAAGAAGTATCTGACAGCGGCCGCCGCCCTGGCCTCGGTCGCGCTCGTCGCGACCGGCTGCAGCGACCCGAGCGTCTCGGGGGCCGAGCCCGCCGCCGGCGACGGCCCGACGGAGGAGGCCGGCTACTGGCCGGAGCCGACCGCCGACCTCAGCGGCACCAGCCTGACGATCTGGGCCGCCCAGAACTCGACCACCGTGCCGGACTCGGTCGTCGGCGAGTTCGAGGCCGCCACCGGCGCCGAGGTCGACGTCGTCACCATCCCGGACCCGTACGAGCAGGGCGTGCAGACCAAGGTCGCCACGGGAGACCTGCCCGACCTGGCCTTCTGGCAGCCGACGGCGTCCATGCTCACGGCACTCAACGCGCCGACGAACCTGCAGCCGCTCGACGACGCACCCTGGCTGGACAGCTTCAGCCCCGGCGTGCGGGACATCACCGGCTTCCTGGACGACACCCGGTACGCGGCCCTCATCAGCAGCCCGGCCGTCGAGGGCGTCTACTACAACAAGGAGGTCTTCGCCGAGCACGGGATCACCGGGACGCCGGCCGACTGGGACGAGTTCCTCCAGATCGCCCGCGACCTCGAGGCCGAGGGCCAGACCCCGTTCTTCGAGATGGCGGGCGACCGGTGGGCGACCCAGTGGTGGGTGCAGGTCCAGCTGGCCGACGCCGCCGCCGACGGCCTCTGGGACCGGATCAACACCGGTGAGGAGGCGTTCACCGACGAGACCGTCCTCGGGGCGATCGAGACCTACCAGGGCCTGATCGACGAGGGCCTGTTCAACGAGGACATCGCCACGGCCACCTTCGAGGACCAGGGCGACGCGCTGCTCGCGGGCGACGCCGCCATGGCGGTCCAGGTCAACTCGTTCTTCGGGCAGCTCCAGGCCAAGGCCGACCCGGCCGAGCTCGACGAGACGATCGGGTTCTTCCCGATCTCGCCGAGCGGCAACGTCGGCACCTTCATCCCGGACCAGTCCAACGCGCTGGTCGCGTTCCGCACCGGCGACGCCGACCGCGAGGCGGCCGCCCGCCAGCTGCTGTCCTTCTGGCTCGGCGACGGGTACGAGGGCTTCGTCGAGGCGCAGAACACCGTCTCGCTGCGCACCGACGTCACGACGCCCGACTCCGTGCCGCAGGCGCTGCTCGACGTGCACGACTCCCTCGGCGACTCCGTCGGGTCGATGCAGGCGCTCGCCGTGGCCAACCCCGACCTCTACATCTACCTGGCCGACATGATCCAGGGGACCACCACCCCCGCCGAGGTCGCCCAGCAGACCCAGGACCAGTTCGCCCAGCTCGCGCGCGCCCAGGGCGTCGAGGGCTTCTGA	MKKYLTAAAALASVALVATGCSDPSVSGAEPAAGDGPTEEAGYWPEPTADLSGTSLTIWAAQNSTTVPDSVVGEFEAATGAEVDVVTIPDPYEQGVQTKVATGDLPDLAFWQPTASMLTALNAPTNLQPLDDAPWLDSFSPGVRDITGFLDDTRYAALISSPAVEGVYYNKEVFAEHGITGTPADWDEFLQIARDLEAEGQTPFFEMAGDRWATQWWVQVQLADAAADGLWDRINTGEEAFTDETVLGAIETYQGLIDEGLFNEDIATATFEDQGDALLAGDAAMAVQVNSFFGQLQAKADPAELDETIGFFPISPSGNVGTFIPDQSNALVAFRTGDADREAAARQLLSFWLGDGYEGFVEAQNTVSLRTDVTTPDSVPQALLDVHDSLGDSVGSMQALAVANPDLYIYLADMIQGTTTPAEVAQQTQDQFAQLARAQGVEGF	PGPT0016330_1029	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117	NA	NA
AK001_03008	2118			hypothetical protein	ATGGACAGCACGACCCACGACCGCACGACCCTTCCCCTGTGGGAGCGGGGTGCGCACCTCGAGGTCTCCTGGTCCGACGACTCCCCGGTGACCGCGTACGTCGGCCACGCGGCGGAGGACGCCGCGGGCCGGCACGTCCAGCCGCTGGTCGAGATCCTCGCCGTGGGGCACGGGCACGCCCACGCGAACCTCCGGCACACCGCGACCGCCGTCGGCGCCCGCCTGCGGTACGTCGACCACGAGGTCGGGACGGGGGCGGGGCGGCGCGTCGTGACGGTCCGCCAGCGGGACGAGGTCACCGGTCTCGAGGTGACCTCGCACCTGGTGCTCCCGGACGACCGCACGTCGCTCCAGGCCTGGACGACGGTGCACCACGGCGGCGAGGAGGAGATCGTCCTCCAGGCGGTGTCGTCCCTCGTCGTGGGAGACCCGGTCGGCGCCGGGCCCGTCGCCGACGTCCAGGTCGTCGAGGGCAGCAGCGAGTGGCTCGCCGAGTCCCGGTGGACGACCCGCGGTCTGCGCGACCAGGGCATGCTCGCCGAGGCCCACCTCGCGGTGCACCAGCAGCAGGACGCGCGGGGGAGCCACGCCGTCGTCGGCCGGGGCGCCTGGTCCTCGGGCGAACGCGTGCCGGCGGGCGCCCTCGCCTCCCGGACGTCCGGGCTGGGGCTCGCCTGGCAGGTCGAGCACAACGGACCGTGGCGTGCGGAGATCGCCGAGCGGCTCACGGCCGCGGGCGACGGGACGGTGTCGCTCGGGCTCTTCGGGCCGACCGACACCGACCACGCGTGGTCCCGCGTGCTGCGCCCCGGCGAGACCTTCACGAGCGTGCCCGTGTCGATCAGCGCCGTCGTCGGCGGCTGGCAGGACGCCGTGGCCGAGATGACGCGCCACCGCCGCCACCTGCGGTCCGCCCCGCGGGCCGGCGGCGCGATCGTCTTCAACGACTACATGAACACCCTGATGGGGGACCCGACCACCGAGAAGCTGCTGCCGCTGATCGACGCCGCGGCCGCGGTCGGCGCGGACTACTTCTGCGTCGACGCGGGCTGGTACGACGACGACGGCGACTGGTGGGACTCGGTCGGGCTCTGGGAACCCTCGCGGGCGCGCTTCCGCGACGGCGGCCTCGACCGGGTGCTCGACCACGTGCGGTCCGCGGGGATGGTGCCGGGCCTGTGGCTCGAGCCCGAGGTCGTCGGTGTGCGGAGCCCGCTGGCCGACTCGCTGCCGCACGAGGCGTTCCTGCAGCGGCGCGGGACCCGGGTGGTCGAGCAGGGACGGTACCTGCTCGACCTGCGCCACGAGAGCTCGCGCAAGCACCTCGACGCCGTGGTCGACCGCCTCGTGGACGACATGGGCGTCGGCTACCTCAAGCTGGACTACAACGTGACGCCGGGCGTCGGCACCGACCGCGCCGCGGACAGCCCCGGCGACGGCCTGCTCCAGCACGCGCTCGCCTACCAGTCGTGGCTCGACGGCGTGCTGCAGCGGCACCCCGACCTCGTCGTCGAGAACTGCGCCTCGGGCGGGCTGCGCGCGGACTTCGCGATGCTGTCCCGTCTCGAGCTGCAGTCGACCTCCGACCAGCAGGACCCGCTGCTGTACCCGCCGATCGCGGCCGGTGCCCTGGTGTCGATCCTGCCGGAGCAGGCCGCGAGCTGGGCCTACCCCCAGCCGGACATGAGCGCCGAGGAGATCGCGTTCACGATGATCACCGGGATCTCCGGGCGCCTCTACCTCTCGGGCCGGCTCGACCAGATGGACGCCGCGCAGCGGCGGCTGGTCCGCGAGGGGGTCGACGTCGCCCGCTCCTGGGACGACGCCGACCTCGACGGCGCACCGTTCTGGCCGATCGGCCTGCCGTCCTGGGAGGACGACTGGGTCGCCGTCGGCAAGTCGTCGGCGACGCACAGCCGGATCGCGCTCTGGGCGCGGTCGGGCTCCGCCACGACGATCGACCTGACCGTGCCCGAGGGCACGGCCGAGATCCTCTACCCGCGCGCGGCCACGGACGACTGGGAGGTCTCCGAGATCGCGCCCGGCCGTCTGCGGGTACGCGCCGGAGCCGCCCGGCCCGGCGCACGCCTGCTGCAGATCACCCACCCGACGGGCTGA	MDSTTHDRTTLPLWERGAHLEVSWSDDSPVTAYVGHAAEDAAGRHVQPLVEILAVGHGHAHANLRHTATAVGARLRYVDHEVGTGAGRRVVTVRQRDEVTGLEVTSHLVLPDDRTSLQAWTTVHHGGEEEIVLQAVSSLVVGDPVGAGPVADVQVVEGSSEWLAESRWTTRGLRDQGMLAEAHLAVHQQQDARGSHAVVGRGAWSSGERVPAGALASRTSGLGLAWQVEHNGPWRAEIAERLTAAGDGTVSLGLFGPTDTDHAWSRVLRPGETFTSVPVSISAVVGGWQDAVAEMTRHRRHLRSAPRAGGAIVFNDYMNTLMGDPTTEKLLPLIDAAAAVGADYFCVDAGWYDDDGDWWDSVGLWEPSRARFRDGGLDRVLDHVRSAGMVPGLWLEPEVVGVRSPLADSLPHEAFLQRRGTRVVEQGRYLLDLRHESSRKHLDAVVDRLVDDMGVGYLKLDYNVTPGVGTDRAADSPGDGLLQHALAYQSWLDGVLQRHPDLVVENCASGGLRADFAMLSRLELQSTSDQQDPLLYPPIAAGALVSILPEQAASWAYPQPDMSAEEIAFTMITGISGRLYLSGRLDQMDAAQRRLVREGVDVARSWDDADLDGAPFWPIGLPSWEDDWVAVGKSSATHSRIALWARSGSATTIDLTVPEGTAEILYPRAATDDWEVSEIAPGRLRVRAGAARPGARLLQITHPTG	PGPT0018835_1454	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407	NA	NA
AK001_03009	1041	lacI_5	COG1609	Lactose operon repressor	ATGGCCGACAGTCGTGGTGTGAAACCGCCCGTCATCGCCGACGTGGCGCGGGTGGCGGGAGTGTCGGTGCCGACGGTGTCGCGTGTCCTGAACGGTTCGGTGCCGGTGAGCGCCGAGCGCAGGGACCGGGTGCTGGCCGCGGTCAAGGAGCTGGGCTTCCGCCCCAACGGGGCCGCGCGGGCCCTGGCCAACCGCGGTCAGCCCATGATCGCGGTCTTCGCCGGCAACACGACGCGCTACGGCTACGCCTCCACGCTGCAGGGCATCGAGGAGGCGGCCCGGCAGGCCGGGTACATGGTCGTGATCTCGGTCGTGGAGTCGGCGCGGCCGGAGGTCGCCGAGCAGGCGATCGACCACGCGCTGCGGCAGCCGCTCGCGGGTGCCGTGGTGCTGGAGTTCGACCCCCCGGGGGCCGCGGCGCTCCGGGCCGTGCCGGCCTGGCTGCCCAAGGTGGCCGCCGCGGCCGGGAGCAGCTCCGGCGGCGAGTCGGTCCCGCACGCCTACATGGACGACCGCCTCGGGGCCTACCGTGCGACGCAGTACCTGCTCGACCTGGGGCACCGGACGGTCCACCACGTGTCCATCCCGTCGGTGGGCACCGAGAGCGCCCGCCTGGTCGGCTGGCGCGAGGCGCTCACGGAGGCCGGTGCACCCGTGCCGCCCGTGATCGGGGCCGACTGGAGCCCGATGTCCGGGTACGACGCCGGGTCCCGCCTCGCCGCCGACGACGAGGTCACCGCCGTCCTGGCGGGCAACGACGAGCTCGCCATGGGCATCGTCAAGGCGCTGGGCGACCAGGGTCGCCGGGTGCCCGACGACGTGTCCGTCGTCGGCTTCGACGACCATCCGCTGAGCGGGCTGTGGTCGCCGCCGCTGACCACCGTCCGGCAGGACTTCGTGGCGCTCGGACGCCGCGTCGTCGGCCTCCTCCTGGACCAGCTCGCCCCGGGCACGACGGCGTCGTCGGTCCGGATGGTGCCCGACCTGGTCGTCCGGGCCTCGACCGGTCGGGTCGAGGCGGCCGTGCACACCGCGTCCTGA	MADSRGVKPPVIADVARVAGVSVPTVSRVLNGSVPVSAERRDRVLAAVKELGFRPNGAARALANRGQPMIAVFAGNTTRYGYASTLQGIEEAARQAGYMVVISVVESARPEVAEQAIDHALRQPLAGAVVLEFDPPGAAALRAVPAWLPKVAAAAGSSSGGESVPHAYMDDRLGAYRATQYLLDLGHRTVHHVSIPSVGTESARLVGWREALTEAGAPVPPVIGADWSPMSGYDAGSRLAADDEVTAVLAGNDELAMGIVKALGDQGRRVPDDVSVVGFDDHPLSGLWSPPLTTVRQDFVALGRRVVGLLLDQLAPGTTASSVRMVPDLVVRASTGRVEAAVHTAS	PGPT0014791_89	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	SESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NA	NA	NA
AK001_03010	1902	hypBA1_2		Non-reducing end beta-L-arabinofuranosidase	ATGAGCGTGACCACGACAGCGACGAGGCGGCCCGTGCCGGTGATCCCGGCCCGCGGTGCCCTGCGTCCCCTGGGGCTCGACGAGGTCGAGCTGACCGGCGGCTTCTGGGCCGAGCGCCAGCGGCGCAACGCCGAGGTGTCCATCCCGCACTGCGACCACTGGGAGTCCCGGGTCGGCTGGATCGACAACTTCCGGCACGCGCTCGCCGGGACGGTCGAGCAGCGCACCGGGCGGGAGTTCGCCGACTCCGACGTCTACAAGCTCCTGGAGGCGATGGCCTGGGAGTCCGGCCGCACGAGCGACCCCCGCCTGGACGCGCGGATCGAGGAGATCGCGCTCCTGGTCGAGGCGGTCCAGGACGACGACGGCTACGTCAGCACCAAGTACGGCCGGCCCGGGCAGGAGCCGCGCTACTCCGACCTGGCCTGGGGGCACGAGCTCTACTGCTTCGGTCACCTGATCCAGGCCGCCGTCGCCCGCCTGCGCACGGGGCACGACGACACCCTCGTGCGGGTGGCGCGGCGCGCCGCCGACCACGTCTGCGTCGAGTTCGGCCCCTCCGGGCGCGACGACGTCTGCGGCCACCCGGAGGTCGAGGTGGCGCTCGTCGAGCTCGCCCGCACCACCGGGGAGGAGCGCTACCTCGAGCAGGCGCGGCTCTTCCTCGAGCGGCGGGGGCGCGGCAGCCTGCCCGACATCGAGTTCGGCCGGGCCTACTACCAGGACGACGTGCCGGTCCGGGAGGCCGAGGTGCTGCGCGGCCACGCGGTCCGCGCGCTGTACCTCACGGCGGCCGCCGTGGACGTCGCGGTCGACACGGGCGACGACGAGCTCCTGCAGACCGTCCGCGACCAGTTCGCCCGGACGCTCGCCCGCCGGACGTACCTGACCGGGGGGATGGGGTCGCACCACCAGGACGAGGCCTACGGCGACGACTTCGAGCTGCCGTCGGACCGCGCCTACAGCGAGACCTGCGCCGGCATCGGGTCGGTGATGGTGGCGTGGCGCCTGCTGCTGGCCACGGGCGACACCCGGTGGGCCGACGTCGTCGAGCGCACGATGTACAACGTGGTGGCGACCTCGCCGTCCCGCGCCGGCGACGCCTTCTTCTACACCAACCCGCTGCACAAGCGGGAGCCGGGGGAGGAGGCCGACCCCGACGAGGCCAGCCCCCGCGCGCTCTCGCGCCTGCGGGCCCCGTGGTTCGAGGTGTCGTGCTGCCCGACCAACGTCGCGCGGACCCTGGCGTCGTTCGCCGCCTACGTCGCGACCGTCTCGGACGACGGCGTGCAGATCCACCAGCACGTGCCGAGCCGGATCGCCACGACGCTCGGCGACGGCCGCGAGGTCGAGCTCGAGGTGGAGACGTCCTACCCCGACGGCGGCGACGTCGTCGTGCGGGTGGTCGCGGCGCCGGCGGGGGAGGTCTCGATCTCCCTGCGGGTGCCCGAGTGGTCGGTGGGTCGGGCGAGCCTGGACGGGGAGCCCGTCGACGGACCGGTGGCCACGACCCGGCGGCGCTTCGCCGCGGGGGACGAGGTCCGGCTGCGCCTCGACGTGCAGCCGCGGCTGACCGTGGCGGACGACCGGGTCGACGCCGTGCGCGGCTGCGCCGCCGTCGAGCGGGGCCCGCTCGTGCTGTGCGTCGAGTCGACCGACCTCCCGGCCGGCGTCGGCGTGGACCGGGTCCGGCTCGCGGCGGACGCCGTCCCGCACGACCTCGACGACGGCGTGCACGTCTCCGGCGAGCTCGTCGAGCGGGAGGAGGGTCCCTGGCCGTACCGGTCGCGTCCCGCGACCACCCCGGGCGCGACCCTCGACGTGCGGCTCGTGCCGTACCACGACTGGGCGAACCGTGGCCCCAGCACGATGCGCGTCTGGATCCCGCAGGACCGCCCGTGA	MSVTTTATRRPVPVIPARGALRPLGLDEVELTGGFWAERQRRNAEVSIPHCDHWESRVGWIDNFRHALAGTVEQRTGREFADSDVYKLLEAMAWESGRTSDPRLDARIEEIALLVEAVQDDDGYVSTKYGRPGQEPRYSDLAWGHELYCFGHLIQAAVARLRTGHDDTLVRVARRAADHVCVEFGPSGRDDVCGHPEVEVALVELARTTGEERYLEQARLFLERRGRGSLPDIEFGRAYYQDDVPVREAEVLRGHAVRALYLTAAAVDVAVDTGDDELLQTVRDQFARTLARRTYLTGGMGSHHQDEAYGDDFELPSDRAYSETCAGIGSVMVAWRLLLATGDTRWADVVERTMYNVVATSPSRAGDAFFYTNPLHKREPGEEADPDEASPRALSRLRAPWFEVSCCPTNVARTLASFAAYVATVSDDGVQIHQHVPSRIATTLGDGREVELEVETSYPDGGDVVVRVVAAPAGEVSISLRVPEWSVGRASLDGEPVDGPVATTRRRFAAGDEVRLRLDVQPRLTVADDRVDAVRGCAAVERGPLVLCVESTDLPAGVGVDRVRLAADAVPHDLDDGVHVSGELVEREEGPWPYRSRPATTPGATLDVRLVPYHDWANRGPSTMRVWIPQDRP	PGPT0019100_1502	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955	NA	NA
AK001_03011	825			hypothetical protein	ATGACTCGACTCAACCGCCTCGCCGGTCGCACACCGTTCTACGTGCTGACCGGTGGACTGGCGATCATCTTCCTCTACCCCATCATCTGGACGTCGATCTCCTCGGTGTCCCCGCAGCCCGGCTCCAACCAGGTCGACGGCTTCGGGTGGGGCAACTACGAGACCCTCGTGGCCTACCAGGACGGCGTCTGGCACTACCTGGGCAACTCGCTCGTCGTGTCGGCCGTGGCCGTGGTGACGACCCTCGTCGTCGCGACGCTGGGCGGGTACGCGTTCGCGCGCTTCACGTTCCCCGGCAAGGACGCCCTGTTCCTGCTCACGCTGGCCATCCTCATGGTCCCGTACGCGGCGCTGCTGGTGCCGCTGGTGATCTGGCTGAAGAACATCGGCCTCAACGACACCCTCGTGGGCGTCGGGCTCGTGCTGGCCGTGTTCCAGCTGCCCTTCGCGACCTTCATGATGCGTATCGCGTTCGAGGCGGTGCCGCGCGAGATGGAGGAGGCGGCGCTGGTCGACGGCTGCGGCACCTTCTCCGCGCTGCGCCGGGTGCTCCTGCACGCGGTCAAGCCGGGTCTGATCACGATCGGGCTGTTCGCGTTCCTCGCCGCGTGGAACGACTTCATGGTGCCGCTGTACCTGGTCAGCGGTGACAACCAGCCGCTGCCGCTGGCGCTGGTCAACATGCGGCAGCAGGTGATGGGCGTCATCGACTACGGGGCCACGCAGGCCGGCGTGGTCGTGCTGACGATCCCCTGCATCCTGCTGTTCCTCGTGCTGCAGCGGCACTACGTCAACGGATTCATGTCAGGAGCGTTGAAGGGATGA	MTRLNRLAGRTPFYVLTGGLAIIFLYPIIWTSISSVSPQPGSNQVDGFGWGNYETLVAYQDGVWHYLGNSLVVSAVAVVTTLVVATLGGYAFARFTFPGKDALFLLTLAILMVPYAALLVPLVIWLKNIGLNDTLVGVGLVLAVFQLPFATFMMRIAFEAVPREMEEAALVDGCGTFSALRRVLLHAVKPGLITIGLFAFLAAWNDFMVPLYLVSGDNQPLPLALVNMRQQVMGVIDYGATQAGVVVLTIPCILLFLVLQRHYVNGFMSGALKG	PGPT0016540_8483	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_03012	951	lacF_10		Lactose transport system permease protein LacF	ATGTCCATCGCTCCCACCCGTCCTCGGGCCGTCGCCGCGGGGACGCCGGACGCCCCGCCGCCACGGCGCCGGCGCCGTGACCGCGGCGTCTGGCAGGGCTGGATCTACGCCAGCCCGACCGCCCTGCTCGTCACGCTGCTCTTCGTCGTGCCGCTCGTCCTCGTCGTGTGGATGTCCGCCGCGGACTGGACGCTGCTCGGCGGCAACTCGGGGGTCAACTTCCCCGAGAACTTCGTCGAGGTCGTCGACCACCGTCTGTTCTGGCCGTCGGTCTGGTTCACCCTGAAGTACACGGTGATCACCACGGCCATCCTCATCGCGCTGGCTCTCGGCCTGGCGATGCTCGTGCAGGAGAGCACGCGCTGGCGCGGCATCCTGCGGACCTCGTTCCTCATCCCCACGTCGCTGGGCCTCGCCTCGGCGTCCCTGCTCTTCTACGCGCTGTACTCGCCGCAGGTGGGACCGGTCTCGCCGGCGCTCGAGGCGCTCGGTCTGGCCGACGCGAACGTCAACGTGCTCGGGACCCCGTCCGGCGCCCTGTGGTCGACGGTCATCCTCATCGTCTGGCGGTTCGCCGGCTTCTTCATGCTCCTGCTGCTCGTGGGCCTGCAGGGGATCCCGCACGAGGTGTACGAGGCGGCACGCATCGACGGCGCCCGGCCGTGGCAGATCTTCGGCCGCATCACGCTCCCGCTGCTGCGCCCGTCGCTGGCGATGAGCACGATCCTGTGCGTCACCGGGTCCCTGCTCGCCTTCGACCAGTTCTTCATCCTGACCAAGGGCGGCCCCGACGGGTCGACGATGACGGTCGTGCAGCTGATCTACAGCTTCGCCTTCGAGTCGAAGCGGGACCTGGGCATGGCCGCCGCGCTGTCGGTGATCGTGCTCGCCGCCCTCGTGATCATCAACATCGTCCAGCTCAAGACGCTGCGGCGTTCGCCGGACGAGTGA	MSIAPTRPRAVAAGTPDAPPPRRRRRDRGVWQGWIYASPTALLVTLLFVVPLVLVVWMSAADWTLLGGNSGVNFPENFVEVVDHRLFWPSVWFTLKYTVITTAILIALALGLAMLVQESTRWRGILRTSFLIPTSLGLASASLLFYALYSPQVGPVSPALEALGLADANVNVLGTPSGALWSTVILIVWRFAGFFMLLLLVGLQGIPHEVYEAARIDGARPWQIFGRITLPLLRPSLAMSTILCVTGSLLAFDQFFILTKGGPDGSTMTVVQLIYSFAFESKRDLGMAAALSVIVLAALVIINIVQLKTLRRSPDE	PGPT0016535_2400	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_03013	1311	dasA_3	COG1653	Diacetylchitobiose binding protein DasA	ATGACGTACCGCACCTTCCGGGGCGCGAAGGGCCTTGCCGCGGTCACCGTGGCCGGTCTGGCGCTCGCCGGACTGACCGCCTGCTCCGACGGCGGCACCAGCGCCGGGAGCGAGCCGGCGGAGATGTCGGCCACCGGCACGGACGACGGCACGACGCTGACGATGTGGACCCGGGCACCGCTGGAGCGCCAGGCGCGCACCCTGGTCGACGCCTACAACGCCTCGCACGAGAACCAGGTCGACCTGGAGATCGTCCCCAACGACGACATGGAGGGCAAGGTCGGCGCCGCCGCCACCAACGGCGAGCTGCCGGACCTCCTGGCCGGCGACGTCGTCCGCCTGCCCTACTGGGTCACCAACGGTCTCTTCACCGACCTGACCGCCCAGATCGACGGGCTCGACTACGTCGACGACATCACCCGCGGCCACGTGGACGCCGGGACCGACGTCGACGGGAACAAGCACACCCTGCCGTTCGTCACCGACATCTCGGTCATGGCGTGGAACAAGGACCTCTACCGCGAGGCCGGTCTGGACCCGGAGCAGGGGCCGACGACCGTGGACGAGTTCCGCGAGCACGCCGAGGCGATCGCCGCCCTGGACAAGGACGGCGTCTCGGGCACGTACTACGGCGGCAACTGCGGCGGGTGCCTGGTCTTCACCTGGTTCCCCTCGATCTGGGCCTCCGGCGAGGAGGTCCTCTCCGAGGACGGTCGCGAGTCGCTGCTCGACTCCGAGACCGCGCAGGCCGTCTACGACGCCTACGCGGCGATGAACGACGCCGGTGCCGTCGGTGCCGGCTCCGAGGAGGAGAACGGCGCCACCTGGACCGCCCCCTTCTCCAACGGCAACGTCGGCGTGATGCAGTACCCGAACACCGCCGTGTACGCCGCCCAGGAGGCCGGCATCGACGTGGGCGTCGGGGGCATCCCGGGCGTCGACGGCGGGCAGTCGACCTTCCTCGGCGGTGACGCCATGGGCATCTCGAAGGACTCCGAGAACGTCGACCAGGCCTGGAACTTCCTGTCCTGGATGCTCTCGGACGAGACGCAGCTCGAGGTCGTCGCCCAGAGCGGCGACGTCCCCGGTCGCAACAGCCTGCTCGACAACGAGTACGCGCAGGAGAACCCGCTGGCGCTCACCATGAACCAGCTCGCGGCCGACGGCCGGACCCCGGTCGCGGACTACTTCTCCGAGGCCTTCAACGCCGCCAACAGCCCGTGGCTGACGCTCACGCGCAACGCCACCTTCGGGCAGACGGGAACCGTGGCCGAGGACAACGAGGCCATCACGGCCGTCCTCGACCAGTGA	MTYRTFRGAKGLAAVTVAGLALAGLTACSDGGTSAGSEPAEMSATGTDDGTTLTMWTRAPLERQARTLVDAYNASHENQVDLEIVPNDDMEGKVGAAATNGELPDLLAGDVVRLPYWVTNGLFTDLTAQIDGLDYVDDITRGHVDAGTDVDGNKHTLPFVTDISVMAWNKDLYREAGLDPEQGPTTVDEFREHAEAIAALDKDGVSGTYYGGNCGGCLVFTWFPSIWASGEEVLSEDGRESLLDSETAQAVYDAYAAMNDAGAVGAGSEEENGATWTAPFSNGNVGVMQYPNTAVYAAQEAGIDVGVGGIPGVDGGQSTFLGGDAMGISKDSENVDQAWNFLSWMLSDETQLEVVAQSGDVPGRNSLLDNEYAQENPLALTMNQLAADGRTPVADYFSEAFNAANSPWLTLTRNATFGQTGTVAEDNEAITAVLDQ	PGPT0016545_4910	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_03014	1029	ccpA_7		Catabolite control protein A	ATGCCGACGAAGCCTGAGAAGAAGCGCAGGCCCGCCACTCTCGCCGACGTCGCCCAGATGGCGGGGGTCTCGATCGCGACGGCCTCGAAAGCCTTGAACGGCCGGAGCCAGGTGAAGGCCGAAACCCGTGCACGAGTTTTCGCCGCTGCCGAGCAGCTGAAGTTCTCCCCGAACGCGATGGCGCAGAACCTCATCAGCGGCCGGTCGGGGACCATCGGGCTGGTGACGCACGACCTCGAGGGCCGCTTCTCGATCCCGACCCTCATGGGTGCCGAGGACGCCGCCGGCAACGGCCGCACCTCCGTGCTGCTCTGCGACGCGCGCGGCGACGCGCTCCGCGAGAAGTACCACGTGCAGACGCTGCTCGGCCGCCGCATCGACGGCCTCATCGTCGTCGGCGCCCGCCCGGACCCGCGCCCCTCCCTCGGACCGCTGCCGGTACCGGTCGTCTACGCCTACGCACCGTCCGAGAACCCGCACGACACCTCGATCGTCACCGACAACCGGCTCGGGGGACGGCAGGCGGCCGAGCACATGCTCGCCTGCGGCCGGCGGCGGATCGCGCTCATCACCGGCGACGCGGACTACGGCGCCGCCCACGACCGTGTCGACGGCGCGCGCGAGGTCCTCGACGCGGCCGGCGCCGAGATCGTGCAGGGCGACGCCCTCTACGGCGCGTGGAGCGAGGAGTGGGGACGCACGGCCGCCGGTCTGGTCGTCGCCCAGCACCCCGACGTCGACGGGATCATCTGCGGCAGCGACCAGATCGCCCGCGGCGTCCTCGACACGCTGCGCGAGACCGGGCGCAAGGTGCCCGACGACGTCGCCGTCACGGGCCACGACAACTGGGAGATCCTCGCGCTCAACGCGCGCCCCCAGCTGACCAGCATCGACATGCGCCTGGAGGAGCTGGGACGACAGGCGGCCGCGCTGCTGTTCGACGCGATCGGCGGACGGGCCGACGAAGGGGTGCACGTCGTGGCCCCGCGCCTCATCCCGCGCGCCTCGACGGGGCCGCGCGTCGCCTGA	MPTKPEKKRRPATLADVAQMAGVSIATASKALNGRSQVKAETRARVFAAAEQLKFSPNAMAQNLISGRSGTIGLVTHDLEGRFSIPTLMGAEDAAGNGRTSVLLCDARGDALREKYHVQTLLGRRIDGLIVVGARPDPRPSLGPLPVPVVYAYAPSENPHDTSIVTDNRLGGRQAAEHMLACGRRRIALITGDADYGAAHDRVDGAREVLDAAGAEIVQGDALYGAWSEEWGRTAAGLVVAQHPDVDGIICGSDQIARGVLDTLRETGRKVPDDVAVTGHDNWEILALNARPQLTSIDMRLEELGRQAAALLFDAIGGRADEGVHVVAPRLIPRASTGPRVA	PGPT0017992_7680	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_03015	3882			hypothetical protein	ATGCTCTCCGCTTCGCTGGCGGCCGCACTGGCCGCTGCGGCAGGCGTGGTCGGCGTGACGGCGACGGCCGCCGCCACCGACGCCACGACCTCCGACGCCACGTCCTGCTACCAGGCGCCGGCTCCGACGACGAACGCGGCCGTGCTCGCGACGCCGACGGCCTCGTACACCGCGGCGTGGAACGACGTCCGCGCCGTGAACGACGGTACCGTGCTGCACACCGACGGGTCCCAGGACCAGATCTGGGGCACCTACTCCGGCGACCGGCCCGCCCAGCAGTGGCTGGAGCTCGACTGGGAGACGCCGCGGACGCTGACGTCCGTCGGCGTGGCGTTCTGGCACGACAACCCGTCCGCGACCGCCGGCGACGGGGTCGCGGTGCCCGCGGCCTGGACGCTGGAGGCGTGGGACGAGGCGTCGGGCGCGTGGCAACCCGTCGAGCCGGCCGCGGGCAGCGAGTACGGCGTCGCCCCGGACGCGATGAACACCGTCGAGCTCGCCGCTCCCGTGTCGACGACGTCGCTGCGCGCGACCTTCGACGCGACCGGCGACGGCACCTCCTACGCCGCCGTCGCCGTCAGCGAGCTCGAGGCCCACGTCGGTGACGAGGACGCGTTCGTCGCGGACGACGATCAGGAGCGGCTGGTCTCCGACAGCTTCCACGTCGGTGTCAGTGCCGAGACCGGTGGTCTCTACACGCTGCAGAACAACGCCGACACCGCGACCTGCACCAACTACACGATGAACCCGGACATCCACCCGGCGTTCGACATCGACGACTCCCGGTGGACCGGCGACGTGACGCTGAAGGTCGACGGGACGCCGCGGGTGACCGGGCTGTCCGACGACGTGCGGACCGTCTCGCGCGAGGGCGACGCGGTGACCGTGGCGTACACCGGCGACGCGGCGCACCCGAACGGTATCCGCGGGTTCGACCTCGACGAGACCTACACCCTGACCGACGGGGGCAGCGCCCTCGACTGGTCCATCACGCTGGACAACACCTCCGGCGAGTCGGTCGAGGTGCAGGACCTCGCGGTGCCGATGCTCATGAACTCCTGGTGGAACGGGGGCGACCAGACCGGCATCTACGAGCAGAACGTGGGACGGCACTCCTTCGTCGCCCAGGACGGTTCCTACGTCTACTGGCAGCGGCCCAACGGCGTCGGGCCGTTCCTGGTGATGACCCCGAACCCCGGTACCTCCCTGGAGTTCCGGGACAAGGCCCGCACCGGCGAGGGGCCGTTCGGCGAGAACGACCCCGCGTGGGAGGGGCTCGTCGAGCTCGCGATCCACTCGGAGTCCCTGCAGCCGACGCGCCAGGGCAAGATCGAGGGCTACCTGCCCCCGAGCTCCCTCACGCTGCCGGCGGGCGAGGCGCAGACCTACGGCTTCTCCTTCCGGTGGGCCGACGGCTACGCCGACCTGCGTGACGTGCTGTACGAGGCGGGCGTCGTCGACGTCGTCTCGCTGCCGGGGATGGTCGTCCCGCAGGACACGGCGGCGACCCTCGCCGTCCGGGCCCGGGACGGGATCGACGAGGTCGTCGGCGAGGACGGCCGCGACGTCTCGATCAGCCCGACCGGGGAGCGGAACGGCTACGAGACCTACGCCGTCGAGTTCGCCGACCAGGGCCCGCACCAGGTCACGGTGCGGTACGCCGGCGGCCGGGAGTCCGTGCTGCAGTACAACTCCGTCGCGCCCGTCGAGGAGCTCGTCGACGCCCGGGCACGCTTCCTCGTCGACCACCAGCAGGCCCGCGACACCGGTCGCGGCTACGAGGGCGCCTTCCTGCAGTGGGACATGAGCCGGGAGCGGCAGATCACGTGGCACGACTACCCGGGCGGCGGCTGGAAGCAGTGGATGGCCGGCGGGTCGGACGACCTGGGCCTGTCCCCGGCGGCGTTCCTGTCGGAGAAGAACCTGCTGGACCCCGACCAGGAACAGGTCAGCGCCCTCGACTACTACCTCGAGGAGTTCATCTGGGGGTACATGCAGACCCAGACGGACGCCGACGGTGAGCGGACCTACCGGATCTACCACTGGTACGACGGCACGGACGGCTCGTCGCCGGGGACCGCCGACGGCCTCGCGACCTGGCGGGTGATGAACTACCCGCACGTGTGGAACACGTACTACGCCATGTACCGCATCGCATCGACGTACCCCGGGGTCGAGACGGCTCTCTCCGCCGACGAGTACCTCCTGCGGGCGTTCCGCACCATGCGGGCCTACTTCACGCACCCGAACGTCGGCACCCTCGACGACGCCTCGCGGGAGATGGGATCGATGGGCGAGATGACGATGCCCGAGATCGTCGACGCCCTGAGTGCGGAGGACTACACCGCCGAGGCCGAGGAGCTGGAGGGGTACATCGCCACGAAGGCCGACGAGATGCTGCAGCGCGAGTACCCCTTCGCCTCCGAGATGAGCATCGACACCACGGCCTTCGAGGCGACCTACACCCTCGCCAAGCGCTACGGCGACGACGAGATGGTCGACAAGGTGACGCGGGCGTCGATGGCGTCGCGCGGCCTGCAGCCGCTCTGGTACTACTACGGCTCCGACAACCGCCACATGGGGGAGTCGTGGTGGAACCTGGGCTACGAGACCCAGCTCGGCGCGTGGCAGCAGCAGGACTTCCTGCTCACCGACGACGCGGCCGACGCCGGGCTCGATCCGGACGAGGTCATGCGGTCCACCTACGGCGCGTACCTGGCCGGATGGTCCAACATCAACACCGGCCAGATCAGCGAGCAGCCGGTGAACCACGGGGCGGCCTCCTGGCAGTTCCAGAGCCAGCAGGGTGCCGGCGAGGGCCAGTGGGGGTTCATGCCCATGCTGGACGGCTGGTGGGCCTGGTCCGGCGAGGCCGACCTCGGGTTCTGGGGCGGTCTGCGCACCGCGTCGGTCAACGTCGTCGACGACTCCGTCGTCGGTCCCTACGCCTACGGCGGCGAGATGACCCACGACGGCGGGACCTTCACGATCGTCCCGCGTGACGGGGTGCGTCAGCGCCTGGCGATGTACAACCTCGACAAGCTCCACCTCGAGCTCGAGGGGGCCACGTACTCCGAGGCACAGGTGGCCGACGACGCCTCCGACCTGCGGCTGGCGGTCGAGGCCGTCGCGCCCGGTGCGTCGGCGCGACTGACGCTCGGCAACCTGCCGGCGGGGGACTACCGGGTCACCGTGGACGGCGGCGACCCGCGGACCGTCGTGAGCGACGGCGACCGGGCGGTCGTCGACCTGGACGGCCTGTCCGGCGAGGGCGTCGTGACGGTGGCCGACGCGACCGCGCCGGCGACGGCGACGCCGCAGGTGTCGGTGGCGCAGCCGGACTGCGAGGCCGGGACGTCCGGGTCGATCGCCGGTGTGCCGGTCGACGGTGTGCAACGGTACGTGCTCAAGGAGTGGGTCGACGGCCAGGCCGGCGGTCACGTCGCGGCCGGCGAGGTCGGTCCGGGGACGTACGTCGTCCGCGCCTGGCCCGCCGATGGCACCGAGCTGCAGGCCGATGGCGACTGGGAGGCGATCTTCCGCGGCCGCACTCAGCTGATCGTCGAGATCGACGCGTGCGGTCCCGTCGTCCCGGCCTGGGACGCGGAGGTCGTCTACCGGGCCGGCGACCGGGTGGTCCTCGACGGCGCGGTCTTCGAGGCGACCTGGTGGACGCAGGACGAGGAACCCGGCGCGTCGGCCCACGGGTCCTGGCAGGAGATCGCCGAGACCGCGGACGGCGATGCCGTCTGGACGCCGTCGCGGATCTTCCACGCGGACGACGTCGTCGTCCACGACGGAGAGCGGTACGCCGCGCGGTGGTGGACGCGGAACGCCGAGCCCGGCACCACCCCGTGGGGTCCGTGGGAGCCGACGGGCTGA	MLSASLAAALAAAAGVVGVTATAAATDATTSDATSCYQAPAPTTNAAVLATPTASYTAAWNDVRAVNDGTVLHTDGSQDQIWGTYSGDRPAQQWLELDWETPRTLTSVGVAFWHDNPSATAGDGVAVPAAWTLEAWDEASGAWQPVEPAAGSEYGVAPDAMNTVELAAPVSTTSLRATFDATGDGTSYAAVAVSELEAHVGDEDAFVADDDQERLVSDSFHVGVSAETGGLYTLQNNADTATCTNYTMNPDIHPAFDIDDSRWTGDVTLKVDGTPRVTGLSDDVRTVSREGDAVTVAYTGDAAHPNGIRGFDLDETYTLTDGGSALDWSITLDNTSGESVEVQDLAVPMLMNSWWNGGDQTGIYEQNVGRHSFVAQDGSYVYWQRPNGVGPFLVMTPNPGTSLEFRDKARTGEGPFGENDPAWEGLVELAIHSESLQPTRQGKIEGYLPPSSLTLPAGEAQTYGFSFRWADGYADLRDVLYEAGVVDVVSLPGMVVPQDTAATLAVRARDGIDEVVGEDGRDVSISPTGERNGYETYAVEFADQGPHQVTVRYAGGRESVLQYNSVAPVEELVDARARFLVDHQQARDTGRGYEGAFLQWDMSRERQITWHDYPGGGWKQWMAGGSDDLGLSPAAFLSEKNLLDPDQEQVSALDYYLEEFIWGYMQTQTDADGERTYRIYHWYDGTDGSSPGTADGLATWRVMNYPHVWNTYYAMYRIASTYPGVETALSADEYLLRAFRTMRAYFTHPNVGTLDDASREMGSMGEMTMPEIVDALSAEDYTAEAEELEGYIATKADEMLQREYPFASEMSIDTTAFEATYTLAKRYGDDEMVDKVTRASMASRGLQPLWYYYGSDNRHMGESWWNLGYETQLGAWQQQDFLLTDDAADAGLDPDEVMRSTYGAYLAGWSNINTGQISEQPVNHGAASWQFQSQQGAGEGQWGFMPMLDGWWAWSGEADLGFWGGLRTASVNVVDDSVVGPYAYGGEMTHDGGTFTIVPRDGVRQRLAMYNLDKLHLELEGATYSEAQVADDASDLRLAVEAVAPGASARLTLGNLPAGDYRVTVDGGDPRTVVSDGDRAVVDLDGLSGEGVVTVADATAPATATPQVSVAQPDCEAGTSGSIAGVPVDGVQRYVLKEWVDGQAGGHVAAGEVGPGTYVVRAWPADGTELQADGDWEAIFRGRTQLIVEIDACGPVVPAWDAEVVYRAGDRVVLDGAVFEATWWTQDEEPGASAHGSWQEIAETADGDAVWTPSRIFHADDVVVHDGERYAARWWTRNAEPGTTPWGPWEPTG				NA	NA	NA	NA	NA
AK001_03016	579			hypothetical protein	ATGGGTGTGCTGCTGGTGGCGACCGTGGGCGCCGGGACCGCAGCCGCCGAGGACGTGGACGACCAGGGGATCGACGTCTCGGTCGACATCACCGACCAGGGCGGCGGCGAGCTGTCCATGACCGTCGCCGCCAACGAGGGGGTCGACCTCGTCGAGGAGGGCTCGGACGAGTCCGCCCGGCAGTTCGTGGGGACGACGCCGACCGTCACCGTGACCGACACCCGCGACCCCGCCGACGTCCCCGAGGGCCACTACTGGGCCGTGCTCGGCCAGGCCGGCGAGTTCGTCGACGCCACCGACGGGACGAAGACGATCGGGGCGGAGTACCTGGGCTGGACCCCGACGCTGCTGTCGGAGAGCTCCACGGGACTCGTCTCCGAGGGCGAGCCGGTGGACAGCGCCGTGGACGCCGGCCCCGGTCTGGCGGGCCAGGAGCTGCTCGTCTCGACCTGGGAGTCGGGCGCGGAGAGCGGGACGTGGGACGTCGCCGCGGACCTCGCGCTGCGCACCCCGGCGGACGTCGAGGCCGGGTCGTACTCGTCCACCATCACCCTGACCCTCATGGAGCAGTCCTTCTGA	MGVLLVATVGAGTAAAEDVDDQGIDVSVDITDQGGGELSMTVAANEGVDLVEEGSDESARQFVGTTPTVTVTDTRDPADVPEGHYWAVLGQAGEFVDATDGTKTIGAEYLGWTPTLLSESSTGLVSEGEPVDSAVDAGPGLAGQELLVSTWESGAESGTWDVAADLALRTPADVEAGSYSSTITLTLMEQSF				NA	NA	NA	NA	NA
AK001_03017	1128			hypothetical protein	GTGGTGCGGGAGCGCACGCCGTCGAGGCACCCCGTCGCGAATGGCGGTCCCAAGCCCCGGAGCCTCGCGCGTCTCGCGGCCGGCGCGGGCACGGCCGCCCTGCTGGTCGCCGGCGTCCCGGGAACGGCCGGTGCGGCCGCGCCCGGACCGGGCGTGACCACGGCCGACACCGACACCATCACCTGGTCGCTGACCCCCGCGGACGCCGAGGGCGCCGACGACCGGCGCCGCATCGCCCTGGAGCTGGAGCCCGGCGGATCGACGACCGAGCACGTCGCGCTGACGAACAGCAGCGCCACGAGCGTCACCTTCGACCTCTCCGCGGCGGACGGCTACCTCACCGCGAACGGCAGCTTCGACCTCCGGGCGGCCGACGTCGAACCCACCGGGGGCGGCGCCTGGATCGGACTCGAGGACGAGATCACCGTCGCCGCCGGCGAGACCAGCGTGATCCCCCTGACCGTGGCCGTCCCCGAGGACGCGGTGCCCGGCGACCACCCGGCGGGCGTGGCCGCCGCCGTCTCGACGAGCGACGGGCCGGTCACGGTCAGCAACCGCGTCGGCGTCCGCATCGACGTCCACGTGCCCGGCGAGGTCTCCGCGGCGGTCGCCGTGGCGGACGTGACGGCGGCGCACGCCTCCTCCTGGAACCCGTTCGAGCCCGGCACCGTGGACGTGGAGGCCACCCTGACGGCCACCGGCAACGTCGCGGTCGCCGTCGACCGGGCGGCCGCGGCGAGCGGAGCGGCCGGGCTGGTCCCGCAGGCCCGCAGCGCCCCGACGACGCCGGTCGACCTCATCCCGGGCTCGAGCGTGCGCACCTCCGTCCAGGTCCCCCGGGTGTGGCCCCTGGGCCCCGTGTCCGTCGACCTGACGGTCACCCCCACCCCCGCGGACGGCGTCGACGCCGCCACGTCGCCGCAGACCGTCACCGTCACCGCCTGGGCGATCCCCTGGCCCCAGCTCCTCCTGGTCCTCCTCGCCGCGGCGACGGTCCTGGGGCTCCGCGCGATGCGCGCCGCGCGCCGCGAGCGCCTGGACGCCCTGCTCGCCGCCGCCCGCGCCGAGGGCGCGGCGTCGGCCGCCCGCGACCGCGCGGAGCGGAGCCCGGTCGGCCCGCCCGGCTGA	MVRERTPSRHPVANGGPKPRSLARLAAGAGTAALLVAGVPGTAGAAAPGPGVTTADTDTITWSLTPADAEGADDRRRIALELEPGGSTTEHVALTNSSATSVTFDLSAADGYLTANGSFDLRAADVEPTGGGAWIGLEDEITVAAGETSVIPLTVAVPEDAVPGDHPAGVAAAVSTSDGPVTVSNRVGVRIDVHVPGEVSAAVAVADVTAAHASSWNPFEPGTVDVEATLTATGNVAVAVDRAAAASGAAGLVPQARSAPTTPVDLIPGSSVRTSVQVPRVWPLGPVSVDLTVTPTPADGVDAATSPQTVTVTAWAIPWPQLLLVLLAAATVLGLRAMRAARRERLDALLAAARAEGAASAARDRAERSPVGPPG				NA	NA	NA	NA	NA
AK001_03018	4701	hypBA2		Beta-L-arabinobiosidase	ATGTCAGCAAGACGCAGAAGCAGGCTCGTCGCGTGCGCGACGACCGGCGCCCTGGCACTGACCGGGCTGGGGGTGGTCCCCGCGGCGGCGGACGACCACGTCGTGCCCGGCAACGAGAGCGACGTCGGCGTGTACACCGACGGCACGACGGACTCCATGGACATCGGCGACCCGACGTACGCGGGCGTCGCCGAGACGACCGCCGCGCTCGAGCCCGGGGTCCCGTGGACCGCCGGCTCGATGCACCAGTCGATCTTCGACCAGGACCTCGCGGCCGGCGGGACCGACTACTACCTGGACCGCGTGCTCGGGGTCTCCGGGACGGCGAACAACGGCGTCCTGCAGACCCGCGGGCGCTCGCTCTACCTGCGTGGCAACAGCAGCTGGGGCGTCATGGGCTTCGCGGGTGACGCGCACGCCGGCGGACCGAACAACCTCGGCGACTTCTACCGCGTGACCGTGCCCGGCGAGGACGTGTCCGAGGTCGGCGCCGAACGCTTCAACGCCCCCAGCCACGCGAAGGCGCGCTACACGGTCGGCTCGACCGGGGTCACGGCCGACCTCAAGAAGTTCATCACGTACGACAACGTGGCCGTCTCCGCGGTCACCTTCACCAACGACGGCGACTCGGACGCCACGTTCACGGTCCGGGCGACGTCGCCCGTCGCGACGGGTACCGGGGAGGCGGCCGACGAGCTGACCGGCCGCCACACCCTCACCAGCGGCGCGAACAACGGTCTGGTCGACACGCCGTGGTCCACGGTGACGGTCGACCTCAAGGCCGCGGGCTTCGAGCGGTCCGGCGCGAACCTCGAGCGGGAGATCACGGTCCCCGCCGGGGGGTCGGTGGACCTGTCCGTCGTCGGCGCCCTGTACAGCGCGTCGATGCCCGACACCCGCCCGAGCCTGGAGGACTACGCCGCGCTCGAGCCCGCGGAGGCCTTCCGCCAGGGCGTCACGGAGTTCAACCGCCGCTGGGCCCAGGACATCCCCTACATCGACGTCCCCAGCGACCCGATCGAGAAGGCGATCGTCTACCGCTGGTGGGGCGAGCGCTACAACATCCTCGACACCAACGAGCCCGGGTACGTCTACCAGTACCCGACGACCGTCGAGGGGTCGAACCTCTACCAGAACTCGGTCGCGCTCACCCAGCCGATGCACCTGCAGGACACCAAGTGGATCCGCAACCCGTACCTCGGGTACGGCCAGGTGCTCAACATCGGTGAGCTGTCCGGCTCGTCCGCGTTCCTGGACAGCCCCGGCCACACGAGCTGGAACAACCACTACTCGCAGTACCTCGGCACGGCGGGCCTGGAGGCCTTCAACGTCCACGGCGGAGGCGCCGACGTCGCCGAGCGGTTCGCGTCCTACTTCGAGTGGGACGGCGTCGGGCAGCTCGAGCACTACGACGGCAACGACGACAAGCTGATCGCCTACGACACCAACTACATGCCGGGCAACGACGCCGACGCGATCAGCTTCGGCTACCCGAAGGACGGCACCGGCGAGCCGGGGGCGTGGACGATCGAACGTCCCGAGTCGGCCTACGTCTGGGGCGACTTCGACGCGGCCCGCCAGCTCTACGAGATGGCCGGCGCCGACGCCGCGAAGGTCCAGGAGATGGGCGACACCGCCGACCAGATCCGTGACGCGATCCTCGGCCGCCTGTGGAGCGAGGAGATGCGGATGTTCCTCGCGGGCACCTCGCACGGCGCCACGTCGGCGGGCAGCCAGAACCCGCTGTCCGAGGCCGAGCGGGACCTCATCCCGGCGAAGGAGTCGAACCTCTACGACATCTACGCCCAGAACCTCATCCCGACCGACCAGGCGGAGCAGTACGTCGACGGGTTCCGGTTCCTGCGCTACGGGGACAACTTCCCGATCTTCCCGTTCTACACGGCGAACCAGTACGACAAGGACAAGTTCGGGATCGGCGGGTCGAACAACTTCTCCAACATCAACTTCACGGTCCAGTACCGCGCGGTGCGCTCCGCCCTGCGCCACTACGACCCGGAGGGGAAGTACATCACCCCCGAGTACGCCGCCCGCCTGCTCGACTGGATGGCGTGGAGCGTGTACCCGGACGGTGACACCCGGATCCCGAACCAGTCCGAGTACTACGCGAACTGGAACCCGGACACGCAGTCGTACAGCCGCGTGAACCCGAACCACGTGATGCTCGGCAACATGAACTACATCTACGTCGAGGACATGGGCGGCATCCAGCCGCGGTCCGACGACAAGATCGAGCTCTGGCCGATCGACCTCGGGTACGACCACTTCATGGTCAACAACCTGCGGTACCACGGCCACGACCTGACGATCGTCTGGGACCCGGACGGCTCGCACTACGGTCTCGGCGAGGGCTACAGCCTCTTCGTCGACGGCGAGCGCAAGGCCGCGGCGGACGGCCTGGGCCGCTTCGTCTACGACCCGGCCGCGCACGAGGTCGTGGAGTCCGACGACGGCCTGACCGTCGCGGTCGACGGGACCGAGGGAGCCGACCTGCCCGCGGCGGTCGACACCCCCATCGAGGACGAGCGCGTGGTCTCCTACCTCAAGACCGCCGGCATCGACGCCACCGAGGACGCACCCGACCTGGCCACTGACGCGGTGCTCTCGTCGTCGGCCACCCAGGACGGTCCGCGCCCGACGCCGTGGCGCGAGTTCCACACGCCCGGCACCGGGTCGATGAACTACACGCCCGGCGCGATCAGCGCGACCGAGCGGCCCGTGTCCCTCGACGCGGTGACGGACGGCGTGACCGCCAACGAGCCGTACTGGGGCAACTACGGCACCGACGGCGACACCGGGTACGTCGAGCTCGACCTCGGCGAGCCGACGTCGTTCGACAACGTCAAGGTGTGGTTCGTCAGCGACCGCCAGGCCGGCGGTTACCACGAGCCCAGCCGGTACTCGATCCAGGTGCCCGACGGCGACGGCGGCTGGACCACCGTGCCGGACACGTACAAGGCGCCGAAGATCCCGGGACCGAAGTTCAACGAGGCCCTGTTCCCGACCGTCACGACGGACCGTGTCCGGGTGGCGTTCACGAACACCCCGGACCGCTGGACCGCGATCTCCGAGATCCAGGTCTTCGACTCCGGGCGCGACGTCCCCGCGGTCGTCAACGACGCACCCGTCGTCACGGCCTCGGCCGACCTGACCCAGGACGGCAACCTGTCCACGCGCCTCGTGGGCACCGTCGTCGACGACGGGCTGCCCGAGGGCGGCGAACTCACCCACGCGTGGTCCGTGGCCTCCACCCCGGAGGGCGCCACCGCCATCGTCAGCGACCCGGACGCCCTGGCCACGACCGTCACCGGGACCGTCGAGGGCACCTACGTCTTCCGCCTCACCGCGGACGACGGCGAGCTGACCACGGAGCGGGACGTCGAGGTCGAGCTGACGGCGAAGGAGGCCTCCGCCGAGTTCGGGGCGGCCGCGTCGATCTCGACCAGCGGCTCGGCGTCGTGGGAGAACCCCTCCCTCGTCAACGACCCGAGCACGCCCTCGAGCTCGGGCCCCGGCGCGGGCAACGGCTGGGGCACCTGGGGCCAGCCGAACAACGGTTCCAGCGAGTCGAACGCGGCGTGGATCCAGTACGCCTGGGACTCGCCGGTCCTGGTCGCCTCGACCGAGATCTACTGGTACGACGACCAGGGCGGCACGCGCATGCCGCAGGCGGACGCGTACACGGTCGAGCACAGCCAGGACGGCGAGAGCTGGACGCCGGTCACCCTGACCGGCGACTCGTCCTACGCCGACGCCCTGCAGCGCGACACGTACAACCGGCTCGAGTTCGAGCCGGTCGAGGCGAGCCACCTGCGGATCCGCATCACCGGCATCCAGGGCGGTGCCGGCGGGACCGGCGTGCTGCGCTGGCGCGTCAACGGCGACACCGTCGACGAGCTGGCCAGCCCGGTGATCATGCGCACGGTCACGGGCACCGTGCCGACCCTGCCGACGTCGCTCGACGTCGTCTACTCCACCGGTCAGCGCGGCACCGTCGACTTCACCTGGCAGGAGATCACGCCGGACATGGTCGCCGAGACCAACGTGGACCCGTTCACCGTCTACGGCTCGAACACCACGTACGGACTGATCGCCGAGGCCCAGATCTACGTGCGGCCCGAGGACTCCCCGGGCGGCATCTCGATCCAGGGCGCGGAGCAGTTCAGCGAGACCGTGGAGGTCGGCGAGGAGCCCTGGCTGCCCACCACGGTCCAGGTCTCGTACAACGACGGCTCGCGCGACAACCAGGCGATCGGCGTCGAGTGGGACTACGACCCGTCGGTGGTGGAGACGCCCGGCGTGTACGAGATCCACGGTGACCTGGTGCTCCCGGAGTACGTCGGCACGGCCGGCACCACGACGACGACCCTGACGCTCACGGTCGGCGACGGTCAGCCCACCGGACCGGAGGTGTCCGTCACGACGCAGACGCGCTGCCTCGGCGGGAAGGTCTACCTCGCGGTGCGGGCCACGAACGACGACGACGCGGCGCTCGCCGTCACGATCGACACGCCGTTCGGGTCGAAGGAGTTCGCCGACGTCGAGCCGGGCAAGAACGCCTACCGGGCGTTCCCGGCCCGCGCGGCGTCGATCGACGCCGGCGAGGCGACCGTGGTCGCGACGGACGCCGAGGGCGCCTCGTCGACGGTCACGAGCGCCTACGAGGCCGCGAGCTGCGGCTGA	MSARRRSRLVACATTGALALTGLGVVPAAADDHVVPGNESDVGVYTDGTTDSMDIGDPTYAGVAETTAALEPGVPWTAGSMHQSIFDQDLAAGGTDYYLDRVLGVSGTANNGVLQTRGRSLYLRGNSSWGVMGFAGDAHAGGPNNLGDFYRVTVPGEDVSEVGAERFNAPSHAKARYTVGSTGVTADLKKFITYDNVAVSAVTFTNDGDSDATFTVRATSPVATGTGEAADELTGRHTLTSGANNGLVDTPWSTVTVDLKAAGFERSGANLEREITVPAGGSVDLSVVGALYSASMPDTRPSLEDYAALEPAEAFRQGVTEFNRRWAQDIPYIDVPSDPIEKAIVYRWWGERYNILDTNEPGYVYQYPTTVEGSNLYQNSVALTQPMHLQDTKWIRNPYLGYGQVLNIGELSGSSAFLDSPGHTSWNNHYSQYLGTAGLEAFNVHGGGADVAERFASYFEWDGVGQLEHYDGNDDKLIAYDTNYMPGNDADAISFGYPKDGTGEPGAWTIERPESAYVWGDFDAARQLYEMAGADAAKVQEMGDTADQIRDAILGRLWSEEMRMFLAGTSHGATSAGSQNPLSEAERDLIPAKESNLYDIYAQNLIPTDQAEQYVDGFRFLRYGDNFPIFPFYTANQYDKDKFGIGGSNNFSNINFTVQYRAVRSALRHYDPEGKYITPEYAARLLDWMAWSVYPDGDTRIPNQSEYYANWNPDTQSYSRVNPNHVMLGNMNYIYVEDMGGIQPRSDDKIELWPIDLGYDHFMVNNLRYHGHDLTIVWDPDGSHYGLGEGYSLFVDGERKAAADGLGRFVYDPAAHEVVESDDGLTVAVDGTEGADLPAAVDTPIEDERVVSYLKTAGIDATEDAPDLATDAVLSSSATQDGPRPTPWREFHTPGTGSMNYTPGAISATERPVSLDAVTDGVTANEPYWGNYGTDGDTGYVELDLGEPTSFDNVKVWFVSDRQAGGYHEPSRYSIQVPDGDGGWTTVPDTYKAPKIPGPKFNEALFPTVTTDRVRVAFTNTPDRWTAISEIQVFDSGRDVPAVVNDAPVVTASADLTQDGNLSTRLVGTVVDDGLPEGGELTHAWSVASTPEGATAIVSDPDALATTVTGTVEGTYVFRLTADDGELTTERDVEVELTAKEASAEFGAAASISTSGSASWENPSLVNDPSTPSSSGPGAGNGWGTWGQPNNGSSESNAAWIQYAWDSPVLVASTEIYWYDDQGGTRMPQADAYTVEHSQDGESWTPVTLTGDSSYADALQRDTYNRLEFEPVEASHLRIRITGIQGGAGGTGVLRWRVNGDTVDELASPVIMRTVTGTVPTLPTSLDVVYSTGQRGTVDFTWQEITPDMVAETNVDPFTVYGSNTTYGLIAEAQIYVRPEDSPGGISIQGAEQFSETVEVGEEPWLPTTVQVSYNDGSRDNQAIGVEWDYDPSVVETPGVYEIHGDLVLPEYVGTAGTTTTTLTLTVGDGQPTGPEVSVTTQTRCLGGKVYLAVRATNDDDAALAVTIDTPFGSKEFADVEPGKNAYRAFPARAASIDAGEATVVATDAEGASSTVTSAYEAASCG				NA	NA	NA	NA	NA
AK001_03019	3147			hypothetical protein	ATGTTCCCTCGCAGCAGGAGCAGGACCCGGTCCGCCGTGCTCGTCGGGGTGCTGGCACCGACCCTCGCGCTGGGCGCGACCGTCGGAACGCTCGCCCCGGCGGCCGCCGCCGACCCGTACACCGTCACGTCCACCGAGAACCCGATCCTCGCCGACGGCAGCTACTACTCGGCCGACCCCGCCCCCCTGGTGGTCCCCGCGGGCGCCCCGGGGAACGACACCGCGCAGGACCAGCTCTTCGTCTACACGGGCCACGACGAGGCGGGCCCGACGCAGAACGACTTCATCATGAACGAGTGGGGGGCGTTCCGGACGACGGACGTCGACGCCGGGGAGTGGACCCACCACCCGTCCCTCATGCGCCCGGAGGAGGTCTTCGACTGGGCGACGCCGGGCCGCGCCTACGCCGGCCAGGTCGTCCAGGGCGTCGACCAGCGCTACTACTGGTACGTCCCCGTGGCCGAGCGGGACACCACCGCGTCCGACGCCTTCGGCATCGGCGTGGCCGTGTCCGACTCGCCGACCGGGCCGTGGACCGACCACGTCGGCGGCCCCCTCATCTCCCAGCGCGTGCCGGAACCGAACACGATCCACAACATCGACCCGACCGTCCTCGTCGACGGCGAGGGCACCGACGCCCGCGTCTACGTCTGGTGGGGCAGCTTCGGCACGCTGCGCATGCTCGAGCTCGAGCCGGACATGCGCACGCCCGTCGGTGACATCCAGGCGGTCTCGGGGCTCGAGGGCTTCTTCGAGGCGGCGTGGGCCTTCGAGCGCGAGGGCACCTACTACCTGGCGTACGCCGGGAACAACGCCGGGCCGACGTCGTCGTGCACCCCCGCGACCTACCACGCGTGCATCGCCTACGCGACGGCTCCCTCGCCCCAGGGTCCGTGGACCTCCCGCGGCAGGATCCTGGCGCCGGTGTCGTCGACGACGAGCCACCCCGGCATCCTGGAGTTCGACGGCGAGTGGTGGATCGCGTACCACACGGCCGACGCCGAGGGCGGCAACCACTTCCGCCGCGCGGTGGCGATCGACCGCGTCGAGTGGGACGACACCCAGTCGCCGCCCCGGATGGAGCCGGTCGTCACGACGCCTGCGGCGGAGCGCGACACGACTCCACGGGCGAACGTCGCGCACGAGGCCACGGTCCGCGTCTCCAACGAGCCCGTCCCGACGCAGTACTGGACGAAGGCGCTCAACGACGAGCTCGTGCGGCCGAACCCCCTGCCCCCGGACATGTGGGGGACGTACACCGGGGACAACCCGCCGCAGCAGTGGGTGCAGTACACCTGGGACCAGCCGATGCGGCTGGCCGGGTCCCGGATCGACTTCTGGAACGACCAGCCCCGGGGCACCGGCATCGGCGTGGCGGCACCCGACGCGTGGCACATCGAGTACTGGGACGCCGACGCCGGCGGCTGGGCCGAGGTCCCGGACGCCGACGGCTACGGCACCGGGACCGACGGGTTCCAGGACACGACCTTCGACCCCGTGACGACCACGCAGGTACGGGCGGTCCTGGACGCCTCGACCGACGGCAGCACGTACTCCGCGGTCGCGGTCGAGGAGTGGGAGGTGCACGCCGAGCAGCCCGTGTCGGTCGGCACGCCCGACCTGACCGTCGAGGTCGGCGAGACCGCCCTGCCGGGGACGGTCCCGCTCACCTTCGCCGACGGGGAGACGCTCGACCTCCCCGCCTGGTGGGACGACGTGACGGCCGAGGACGTCGCCGCCCCCGGCACGTTCGCCGTCGAGGGGTCGGTGCTCGGGTACGCCGGAGGCCGGGTCGGCGCGGACGTGACCGTGATCCCGGCCGAGGCACCGGCGGACGACGACACCGCCCCCGACGTCGCGCTCACCCCGCTCGGCAGCGCCGGCGCCGAGGGCTGGTTCCGCTCCGACGTGCGCGTACGCGTCGACGGCACCGACGACTCCGGCGGGCGCGTGGTGCTGACCACGGCGGTCGACGACGCCGAGCCCGTGGTCACGAACCACGTCCGGTCCACCGAGGTCGACGTCAGCGGCGAGGGCGCCCACCGCGTCGTCGCCACCGCGACCGACCGCGCGGGCAACGTCTCGGCCGAGCAGTCGCTCGACGTCCAGATCGACAGCGTCTCCCCGGAGGCCTCCGGCGAGCTGGACGCCGCGGCACGGACCGTCACGGTCACGGCGAGCGACGAGACCTCGGGCGTGGCGCGCGTGGAGTTCGCCGTCGGCACGGGCGAGTGGCAGGTCTACGACGGTCCGGTCGCCGCACCCGACACGGGGCAGCACCGGGTGTCGTTCCGGGCCGTCGACACCGCCGGGAACGTCGGGACCCCGCGGTCCGTGACGATCCCCGCCGACGTCTCCGGGCCGCTCAGCGGCAACGTCGGGCCGATCGCGACGGTGTCGGCGTCGTACACGGCGGGCTGGAACAGCGTCGACGCCCTCCACGACGACGCCGACCCGTCGAACCCGAGCCAGGCGCAGCTCTGGGGCACCTGGTCGGGCGACCGGCCGTCGTCGCAGTGGGTGCAGTACGAGTGGTCGCGCCCGATCCGGCTCACCGGCACGGAGCTGAAGTTCTGGCAGGACTCCCCCGCCGGCACCGGTGACGGCGTCGCCGCGCCGGACTCCTGGTCGGTGGAGTACTGGGACGACGCGGCCGAGGAGTGGGCGCCCGTGACCGGCGCGGACCCCTACGACGTGAGCACGACGGAGTTCACCACCGTGGGCTTCGACCCGGTGACGACGTCCCGGCTGCGGGCCACGTTCCAGGCGAACGGGGACGGCAGCACGTACTCGGCCGTCGCCGTGACCGAGTGGCGCGTCCTCGCCGACGACCCGGGTGTCGACGGGTCGGAGCCCGACCTCGACGTCACGGCGACGGTGAGCACCCGCTGCCTGGGCGGTCGGGCCTACCTCGCGGTGCGGGCGCTCAACGAGGACGCGGTCCCGGCGGACCTCACCCTCACGACGCCGTTCGGCACCCGGACCGTCGAGGACGTGGCCCCGGGCGAGAACGCCTACCAGGCGTTCCCCACGCGGTCCGTCTCCGCCGCGGCGGGGTCCGTGACCGTGTCCGCGACGGGCGTCGTCGACGGCGAGGAGGTGAGCTCCGAGCAGACGGTCGAGCACGACGCGATCGACTGCTCCTGA	MFPRSRSRTRSAVLVGVLAPTLALGATVGTLAPAAAADPYTVTSTENPILADGSYYSADPAPLVVPAGAPGNDTAQDQLFVYTGHDEAGPTQNDFIMNEWGAFRTTDVDAGEWTHHPSLMRPEEVFDWATPGRAYAGQVVQGVDQRYYWYVPVAERDTTASDAFGIGVAVSDSPTGPWTDHVGGPLISQRVPEPNTIHNIDPTVLVDGEGTDARVYVWWGSFGTLRMLELEPDMRTPVGDIQAVSGLEGFFEAAWAFEREGTYYLAYAGNNAGPTSSCTPATYHACIAYATAPSPQGPWTSRGRILAPVSSTTSHPGILEFDGEWWIAYHTADAEGGNHFRRAVAIDRVEWDDTQSPPRMEPVVTTPAAERDTTPRANVAHEATVRVSNEPVPTQYWTKALNDELVRPNPLPPDMWGTYTGDNPPQQWVQYTWDQPMRLAGSRIDFWNDQPRGTGIGVAAPDAWHIEYWDADAGGWAEVPDADGYGTGTDGFQDTTFDPVTTTQVRAVLDASTDGSTYSAVAVEEWEVHAEQPVSVGTPDLTVEVGETALPGTVPLTFADGETLDLPAWWDDVTAEDVAAPGTFAVEGSVLGYAGGRVGADVTVIPAEAPADDDTAPDVALTPLGSAGAEGWFRSDVRVRVDGTDDSGGRVVLTTAVDDAEPVVTNHVRSTEVDVSGEGAHRVVATATDRAGNVSAEQSLDVQIDSVSPEASGELDAAARTVTVTASDETSGVARVEFAVGTGEWQVYDGPVAAPDTGQHRVSFRAVDTAGNVGTPRSVTIPADVSGPLSGNVGPIATVSASYTAGWNSVDALHDDADPSNPSQAQLWGTWSGDRPSSQWVQYEWSRPIRLTGTELKFWQDSPAGTGDGVAAPDSWSVEYWDDAAEEWAPVTGADPYDVSTTEFTTVGFDPVTTSRLRATFQANGDGSTYSAVAVTEWRVLADDPGVDGSEPDLDVTATVSTRCLGGRAYLAVRALNEDAVPADLTLTTPFGTRTVEDVAPGENAYQAFPTRSVSAAAGSVTVSATGVVDGEEVSSEQTVEHDAIDCS				NA	NA	NA	NA	NA
AK001_03020	1707	qcrB	COG1290	Cytochrome bc1 complex cytochrome b subunit	GTGAGCACCGAGACCACCGCGTCGACCAACGACGCCCCGAAGACCGTGGCAGGCAAGAGCGCCGACTACCTCGACCAGCGCACCAGTGTCGGTGGCGCCGTCAAGGAGTTCGCGCGCAAGGTCTTCCCGGACCACTGGTCGTTCATGCTGGGCGAGATCGCCCTGTTCTCGTTCGTCGTGCTGCTGCTGACGGGCGTGTTCCTGACGATGTTCTTCGACCCGTCGATGGCGCTCGAGGAGTACCACGGCGCCGGCCCGGAGACGATGCAGGGCCAGCTCATGTCCGTGGCCTTCGCCTCGACGCTGGACCTCTCGTTCGAGGTGCGCGGCGGTCTGCTCATGCGGCAGATCCACCACTGGGCGGCCCTGATCTTCATGGCCGCGATCGTGGTGCACATGATGCGCGTGTTCTTCACCGGCGCGTTCCGCAAGCCGCGCGAGATCAACTGGCTCGTCGGCACCGTCCTGCTGATCCTGGGCCTGGCCGCCGGCTTCTCCGGCTACTCCCTGCCGGACGACGTGCTCTCCGGCAACGGCCTGCGCATCACCGACGGCGTCATCAAGTCGATCCCCGTGATCGGCTCGTACATGTCGTACTTCGTCTTCGGCGGCGAGTTCCCGGGCGAGCACATCATCCCGCGCCTGTTCACCGTGCACATCCTGCTGGTGCCGGCGCTGATCCTCGCCCTGATCGGTGTGCACCTGTTCCTCATGGTGCTGCACAAGCACACCCAGTTCCCGGGTGGCGGCCGCACCGACAAGAACGTCGTCGGCTACCCGCTGTTCCCCGTCTACATCGCGAAGATGGGCGGCAACTTCTTCATCGTCTTCGGCATCCTCGCCCTGATGGGTGCCACGATGAGCATCAACAACGTCTGGAACTACGGGCCGTACGACCCCTCGCCCGTCGGCGCCGGTGCGCAGCCCGACTGGTACATGCTGTTCCTCGAGGGATCGTTGCGACTGATGCCAGGTGCGGGCACGGAGTGGGTCATCTTCGGCTACACGTTGTCGCTCAACGTGCTGATCCCCGCCGTGGTGATCCCGGGTCTGCTGTTCCTGTTCCTGTTCGCCTACCCGTTCGTCGAGGCGAAGGTGACCGGTGACAAGCGCGAGCACCACGTCCTGGACCGCCCCCGCAACGTCCCGGTCCGCACCGGGCTGGGTGTCGGGTTCCTGACGGCGTTCATCATCCTGGCGCTCGCCGGGTCGAACGACCTCATCGCGACGCACTTCGGGATGTCGCTCAACCAGATCACCTGGGCGTTCCGCGTCCTGTTCTTCGCCGGACCGGTCATCGCGTTCCTGATCACCAAGCGCATCTGCCTCGGCCTGCAGCGGAAGGACCGCGAGCTCGTGCTCCACGGGCACGAGACCGGTCGGATCGTCCGGTTCGCCAACGGCGAGTACATCGAGGTCCACCGTCCGCTGGACGAGCAGGAGCGGTGGCTGCGCGTCAACTACACCGCGCACAAGCCCCTCGAGATCGAGCCCGCCACGGACGCCCGCGGCGTCAAGCGTCCGGGCTACAAGGCGGAGAAGCGCTGGCAGCGCCTGTCGCGGTTCTTCTACGAGGACCGCGTCGAGCCGGTGACGCCCGCCGAGCTCGCCGCCGCGCACTCGCACGGCGAGCACGACGAGATCGCTGCCGCCCAGACCTCCCCCGAGGTGACCTCGGGGGCGACGAACGTCGAGCAGGAGCGCTGA	MSTETTASTNDAPKTVAGKSADYLDQRTSVGGAVKEFARKVFPDHWSFMLGEIALFSFVVLLLTGVFLTMFFDPSMALEEYHGAGPETMQGQLMSVAFASTLDLSFEVRGGLLMRQIHHWAALIFMAAIVVHMMRVFFTGAFRKPREINWLVGTVLLILGLAAGFSGYSLPDDVLSGNGLRITDGVIKSIPVIGSYMSYFVFGGEFPGEHIIPRLFTVHILLVPALILALIGVHLFLMVLHKHTQFPGGGRTDKNVVGYPLFPVYIAKMGGNFFIVFGILALMGATMSINNVWNYGPYDPSPVGAGAQPDWYMLFLEGSLRLMPGAGTEWVIFGYTLSLNVLIPAVVIPGLLFLFLFAYPFVEAKVTGDKREHHVLDRPRNVPVRTGLGVGFLTAFIILALAGSNDLIATHFGMSLNQITWAFRVLFFAGPVIAFLITKRICLGLQRKDRELVLHGHETGRIVRFANGEYIEVHRPLDEQERWLRVNYTAHKPLEIEPATDARGVKRPGYKAEKRWQRLSRFFYEDRVEPVTPAELAAAHSHGEHDEIAAAQTSPEVTSGATNVEQER				NA	NA	NA	NA	NA
AK001_03021	1050	qcrA	COG0723	Cytochrome bc1 complex Rieske iron-sulfur subunit	GTGAGCGAGAACCAGAACCCCACCCCCGGCCGCGACGTCAGCACGACGTCGGGGGCCCAGCACCCCGAGCGGTTCACCGACCCGGGCGTGCCCGAGCACAAGCCGCGGCTGACCGACACCGACCCGGCGGCGCGCAAGCGCAACGAGCGGATCGTCGTGATCCTGTTCGCGATCTCCTGCGTCGGTGCGATCGCCAGCATCGTGGCCTACTTCGCGTTCCGGCCCGACGGCACCACCGAGGGCACCCGGCTGTCCACGATCATGCTGGGCACCACGATGGCCGTGTCGCTGCTCGGCATCGGTATCGCCGCGATCCACTGGGCCAAGTCGCTCATGAGCGACCACGAGCACGTGGACGAGCGCCACGAGCTCGCGAGCTCGCCGGAGGTCCGTGAGGTCGCCGTCCAGCACCTCACCGACGGTGTCGAGGACTCCGGCATCGCCCGCCGCGGCGTGCTCAAGGGGGCCGCGGTCTCCGCGCTCGCGCTCTTCCCGCTCACCTTCGCCGTGCCGCTGATCTCCAGCGTCGGCGGTGACTGGGACATCTCCAAGTTCCGGCACACCCTGTGGGAGCGGGGCAAGCGCCTCGCCTACGACCCCACGGGTCGGCCGATCAGAGCCGCCGACCTCACCGTCGGCTCCGCGGCGCATGTCATCCCGGAGGAGTCCGAGGAGTACATGCAGTCGCACGACTGGATCACCGAGAAGGCCAAGGCCGTCGTGCTGCTCGTCCGGCTCAACCCGGAGGACCTGCGTTCCGACCAGTCCCCCGAGGGCGAGACCTGGTCGTACGACGGAATCGTGGCATACTCGAAGATCTGCACCCACGTCGGATGCCCGGTGGCACTGTACGAGCAGCAGACTCACCACCTGCTCTGCCCGTGCCACCAGTCCACATTCGACATGGCCGATGGCGCGAAGGTCGTCTTCGGACCGGCGAACCGGCCGCTGCCCCAGCTGCCGATCACGGTCGACGACGAGGGCTACCTCATCGCGCAGGACGACTTCGCCGAGCCCGTCGGACCGAGTTTCTGGGAGCGACTGAAGTGA	MSENQNPTPGRDVSTTSGAQHPERFTDPGVPEHKPRLTDTDPAARKRNERIVVILFAISCVGAIASIVAYFAFRPDGTTEGTRLSTIMLGTTMAVSLLGIGIAAIHWAKSLMSDHEHVDERHELASSPEVREVAVQHLTDGVEDSGIARRGVLKGAAVSALALFPLTFAVPLISSVGGDWDISKFRHTLWERGKRLAYDPTGRPIRAADLTVGSAAHVIPEESEEYMQSHDWITEKAKAVVLLVRLNPEDLRSDQSPEGETWSYDGIVAYSKICTHVGCPVALYEQQTHHLLCPCHQSTFDMADGAKVVFGPANRPLPQLPITVDDEGYLIAQDDFAEPVGPSFWERLK				NA	NA	NA	NA	NA
AK001_03022	783	qcrC	COG2010	Cytochrome bc1 complex cytochrome c subunit	GTGAAGGCACTCGCCGCCCGCCGGCACCACCGGGCCGCCCCGGTCGTGCTGATGCTGCTGGCGCTGCTGCTCACGGGCGGCGTGTACGCCGTCCTGGCACCGAGCTCGGCCACGGCCGACACCGCCAGCACAGCGAACGACGTGGAAGAGGGCGAACGCCTCTTCCAGGCCAACTGCGCCACGTGCCACGGCCCGAACGCCGAGGGCACCTCCGAGGCGCCCTCGCTGGTGGGCGTGGGTGCGGCGTCGGTCGACTTCCAGGTCTCGACCGGTCGGATGCCGATGCAGATGAACGGCCCCCAGGCCGCGGCCAAGCCCCGGCAGATGGACGAGGAGCAGACGGCGCAGCTGGCTGCCTACGTCGCCTCGCTCGGGGCCGGTCCGGCGATCCCGACCGACGAGCAGGTGGACGGCGCCGAGGGCGACCCGTCGAACGGCGCCCTGCTGTTCCGCACCAACTGCGCGATGTGCCACAACGCCGTCGGCGCCGGCGGCGCGCTCTCCGAGGGCAAGTGGGCACCGCCCCTGTACGAGGTCTCGGAGCGGAACATCTACCAGGCCATGCTGACCGGCCCGCAGTCGATGCCGGTCTTCAACGACGCCAACATCACGCCCGACGAGAAGCGCGACATCATCGCGTACCTGATCGAGCAGCGCGACGGGTCGGCCGGTGGGCTGTCCCTCGGCTCTCTCGGGCCCGTCAGCGAAGGCGTGTGGGCATGGGTCGTCGGCCTCGGGCTGATGATCGGTGCCGCTGTGTGGATCGGAGCGAAGTCCTCGTGA	MKALAARRHHRAAPVVLMLLALLLTGGVYAVLAPSSATADTASTANDVEEGERLFQANCATCHGPNAEGTSEAPSLVGVGAASVDFQVSTGRMPMQMNGPQAAAKPRQMDEEQTAQLAAYVASLGAGPAIPTDEQVDGAEGDPSNGALLFRTNCAMCHNAVGAGGALSEGKWAPPLYEVSERNIYQAMLTGPQSMPVFNDANITPDEKRDIIAYLIEQRDGSAGGLSLGSLGPVSEGVWAWVVGLGLMIGAAVWIGAKSS				NA	NA	NA	NA	NA
AK001_03023	654	ctaE	COG1845	putative cytochrome c oxidase subunit 3	ATGGGTCGCGTGTCGACCGCAACGGCTGCTGCCCCCCACGCCCATCAGCACGTGACCGTGAACCGACCGAACACCGTCTCGGTCGGGACGATCGTGTGGCTCGCCAGCGAGCTCATGTTCTTCGCGGGCCTCTTCGCGATGTACTTCACGGTGCGCTCCGTGATGCCCGAGGAGGAGTGGGGCGCCCAGGCCGACAACGTCTCGCTCGTGTTCCCGGCGATCAACACCACGGTCCTGGTCCTGTCCTCGGTGACCTGCCAGCTGGGCGTCTGGGCCGCCGAGCGGTTCCAGCCGGTGCGGACCGGCTCGCTGCTGCAGGTGAACCGGTGGGGCATGAACGAGTGGATGACGCTCACCTACCTCATGGGCTCGTTCTTCATCGCCGGGCAGATCTTCGAGTACGCCGAGCTCGTCGAGCACGGCCTGACGATCTCCTCCAGCGCCTACGGCTCCGTCTTCTACCTCGCCACCGGGTTCCACGGTCTGCACGTGGTCGGCGGCCTGATCGCCTTCCTGTTCCTGCTCGGCCGGTCCTTCCGCGCCAAGCGGTTCTCGCACCACGAGGTGACCACGGGGCTCGTGGTCTCCTACTACTGGCACTTCGTCGACGTCGTGTGGATCGCCCTCTTCGCGGTGATCTACCTGCTGAAGTGA	MGRVSTATAAAPHAHQHVTVNRPNTVSVGTIVWLASELMFFAGLFAMYFTVRSVMPEEEWGAQADNVSLVFPAINTTVLVLSSVTCQLGVWAAERFQPVRTGSLLQVNRWGMNEWMTLTYLMGSFFIAGQIFEYAELVEHGLTISSSAYGSVFYLATGFHGLHVVGGLIAFLFLLGRSFRAKRFSHHEVTTGLVVSYYWHFVDVVWIALFAVIYLLK	PGPT0004035_2090	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276	NA	NA
AK001_03024	390		COG0784	putative response regulatory protein	ATGACGAACGGCCCCCGGGTGCTGCTGTACAGCGACGACCGCACGGTGCGCGAACAGGTGCGACTCGCCGTCGGACCCCGGTTGGGTGCCGACGCTCCGTCGATCGAGTGGTTCGAGGCGGCGACCGCCCCGGCCGTGACGTCCGCGGTGTCCGCCCGCCGGTTCGACCTGCTCGTGCTCGACGGCGAGGCGGACAAGGCCGGCGGCATGGGCCTGTGCCGGCAGCTCAAGAACGAGGTCTACGACTGCCCGCCGATCGTCGTGCTGACCGGCCGCCCCGACGACGCCTGGCTGGCATCATGGTCGCTCGCGGACGCCGTGGTGCCGCGCCCGCTCGAGCCCTTCGCCGTGCAGCGCACCGTCGCGGACGCGCTGGCCCCGGTGGCCTGA	MTNGPRVLLYSDDRTVREQVRLAVGPRLGADAPSIEWFEAATAPAVTSAVSARRFDLLVLDGEADKAGGMGLCRQLKNEVYDCPPIVVLTGRPDDAWLASWSLADAVVPRPLEPFAVQRTVADALAPVA				NA	NA	NA	NA	NA
AK001_03025	1065	trpD	COG0547	Anthranilate phosphoribosyltransferase	GTGCCCACCAGCGACCCGACCGCACCCACCTGGCCCGGCGTGCTCTCCGAGCTCGTCGCGGGCCACGACCTCACCGCCGAGCAGACCGCCTGGGCGATGGACGAGGTCATGGCGGGCGAGGTCCCGCCGGCCCGCCTCGCGGGCTTCCTGGTCGGCCTGCGGGCCAAGGGGGAGACGGCCGCCGAGCTGACGGGTCTGGCCGACGCGATGCTCTCGCACGCGACCCGCATCGCCGTCCCCGGCCCGGCGGTCGACCTCGTCGGCACGGGCGGGGACCGCCACCACACCGTCAACATCTCGACCATGGCCGCGGTCGTGGTGGCCGGGACCGGCACGCGGGTCGTCAAGCACGGCAACCGGGCGGCGTCGTCGTCCTCCGGCTCGGCGGACGTCCTCGAGGCCCTCGGCGTCCGGCTCGACCAGCCGGCCGAACGGGTCGCCGAGATCGCCACCGAGGTCGGCATCACCTTCTGCTTCGCCGGGCTGTTCCACCCATCGATGCGGCACGCCGGTACGGCGCGCCGCGACCTCGGGATCGCCACCGCGTTCAACTTCCTGGGGCCGCTGACGAACCCCGCCCAGCCGGGCGCCACGGCCGTGGGCTGCGCGGACGCGCGGATGGCTCCGTTGATGGCCGGGGTCCTCGCCTCCCGCGGCACCCGTGCCCTGGTGTTCCGCGGCGACGACGGGCTGGACGAGCTCGCGGCCACCGGCGGGACCGACGTGTGGGAGGTGCGCGAGGGCGCGGTGACCGAGGAACGGTTCGACGCCGCCGCCGACCTCGGCCTGCAGCGCATCGAGGTCGCCGACCTGCGCGGCGGCGACGCCGCGCACAACGCGGAGGTGGCGCGCGGGGTGTTCGCCGGCGCCGACCGCGGTCCCGTGCGCGAGACGGTGCTGCTCAACGCGGCGGCGGCGCTGGTGGCCGACGGGTCGTTGGCCGGCACGGCGCAGGGCACGCTCTCGCAGCGGCTGGCCGCGGGGGTCGAGCACGCCGCCCGCAGCATCGACGACGGGCGCACGAGCGACGTGCTGGAACGCTGGGTCGCCGCGACGCAGCGCTGA	MPTSDPTAPTWPGVLSELVAGHDLTAEQTAWAMDEVMAGEVPPARLAGFLVGLRAKGETAAELTGLADAMLSHATRIAVPGPAVDLVGTGGDRHHTVNISTMAAVVVAGTGTRVVKHGNRAASSSSGSADVLEALGVRLDQPAERVAEIATEVGITFCFAGLFHPSMRHAGTARRDLGIATAFNFLGPLTNPAQPGATAVGCADARMAPLMAGVLASRGTRALVFRGDDGLDELAATGGTDVWEVREGAVTEERFDAAADLGLQRIEVADLRGGDAAHNAEVARGVFAGADRGPVRETVLLNAAAALVADGSLAGTAQGTLSQRLAAGVEHAARSIDDGRTSDVLERWVAATQR	PGPT0007090_912	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766	NA	NA
AK001_03026	282			hypothetical protein	ATGCTGACCGCCATCGTGCTGATCGACACCGCCGCCGACCAGATCCCCGAGGTCGCGTCCCGGGTCACCGACCTGCCCGGGGTGAGCGAGGTCTACTCGGTCACCGGCAAGGCGGACCTGGTCGCGATGGTGCGCGTGCGCGAGCACGACGCCCTGTCCGAGGTCATCGCCGACGGGATCAGCAAGGTGCCGGGCGTGCTGCGCACGGAGACGCTCATCGCCTTCCGCGCCTACTCGCACGTGGACCTCGAGCAGGCGTTCGCCCTCGGTCTGGACGACTGA	MLTAIVLIDTAADQIPEVASRVTDLPGVSEVYSVTGKADLVAMVRVREHDALSEVIADGISKVPGVLRTETLIAFRAYSHVDLEQAFALGLDD				NA	NA	NA	NA	NA
AK001_03027	1764		COG0322	Putative bifunctional exonuclease/endonuclease protein	ATGTCGATCACGTCCGCCCGGGCGGAGCCGGGGACGAGCGTCCAGCCGTCGTTCGCCGACCTGGGGACCCCGCTGCAGGACGTCACGTTCGTCGTCGTGGACCTGGAGACCACCGGCAGCCGCGCCGACGACGCCGGGATCACCGAGATCGGCGCGGTCAAGGTCCGCGGCGGCGAGGTGCTCGGCGAGTTCCAGTCGCTGGTCAACCCCGGCCGCCCCGTCCCGGCGTTCGTGGCCCGGCTGACGGGCATCACCACCCAGATGGTGGCCACGGCCCCCGACCCGGACCTGGTCCTGCCGAGCTTCCTGGAGTTCGCCCACGACGCCGTGCTCGTGGCGCACAACGCCCCGTTCGACGTCGGCTTCCTGCGCGCCGCGTGCGCCGAGCTGGGCTACGCGTGGCCAGGGTTCGCCGTCGTCGACACCCTGCCGCTGGCCCGGCGCGTCGTGACGCGCGACGAGGCCCGCAACCACAAGCTGTCCACCCTCGCGGCACTGTTCCGCGCGGGCACGTCGCCCGACCACCGCGCGCTGGCCGACGCCCGCGCGACGGTGGACGTGCTGCACGGGCTGCTGGAACGGCTCGCCCCGCTGGGCGTGACGCACCTGGAGGACCTGGCCACGGCGTCGGACCCGGTGCCCGCCGACGTGCGGCGCAAGGCGACGCTCGCCGACGGCCTGCCGTCCTCCCCCGGCGTCTACCTCTTCCGGGGGCCGGACGAGGAGGTGCTGTACGTGGGCACCTCGACCAACATCCGCCAACGGGTCCGGTCGTACTTCACCGCGGCCGAGAAGCGCCGTCGCATGACGGAGATGGTGCGCATCGCGCACGCCGTGACCCCCGTGGTGTGCGCGACGCCGCTCGAGGCCCGCGTGCGCGAGCTGCGGCTCATCGCCGAGCACTCCCCGCGCTACAACCGGCGCTCCAAGCATCCCGAGCGACGCACCTGGGTGCGCCTGACCGACGAGGCCTACCCCCGGCTCTCGGTCGTGACCGAGGTCCGCGGCGACACGCCGCACATCGGACCGTTCACCTCGCGCCGCACGGCGACCGCCGCCGTCGACGCCCTGCACGACGCGCTCGGGCTGCGGCAGTGCACCCAGCGCCTGCCGCTGGTGGCGCGGGAGCGACGCAGCCCGTGCGCGCTCGCCGGCCTCGACCGGTGCTCGGCGCCGTGCACCGCCGTCGGGACGCCCGACGCCGGCTACGCCGACGTCGTGGCCGAGGCGACCCGGGCGCTGACCGGCGACCCCCAGGTCGTGCTGCGCGCCCTGGGCGACCGGGTGGCACGGCTCGCCGCCGAGGAGCGGTACGAGGAGGCGGGCCAGGTCACGGCCCGGCTGCGCGCCTTCGTCGGCGCGGCGGCGCGCGCCCAGCGGCTGGACCCCCTGAGCCGCTGCGCGGAGCTGGTGGCGGCGCGCCCGACGGCGGACGGAGGCTGGGAGCTGGTCGTCGTGCGGTACGCACGGCTGGCCGCCACCGCGGTCAGCCCGCCCGGCGAGGACCCGTGGCCGGTCGTGCACGCGCTGCGGGCGACCGCCGAGGTGGTCGAGGCGCCCGCACCGCCCGCCCCGGCCGGGCACCCGGAGGAGGCGGCGCTGCTGCTCGACTGGCTCGAGCAGTCGGACGTGCGGCTCGTCGACGTCTCGGACCCGTGGACGTGCCCGGTCCGCTCGGCCGTGGCCCACGCCGACCTCGACGACGTGGCGGCCACGGTGGCGCTGGCGGTGGGCGGCGCCGTCGATACGATGGCGGCATGCTGA	MSITSARAEPGTSVQPSFADLGTPLQDVTFVVVDLETTGSRADDAGITEIGAVKVRGGEVLGEFQSLVNPGRPVPAFVARLTGITTQMVATAPDPDLVLPSFLEFAHDAVLVAHNAPFDVGFLRAACAELGYAWPGFAVVDTLPLARRVVTRDEARNHKLSTLAALFRAGTSPDHRALADARATVDVLHGLLERLAPLGVTHLEDLATASDPVPADVRRKATLADGLPSSPGVYLFRGPDEEVLYVGTSTNIRQRVRSYFTAAEKRRRMTEMVRIAHAVTPVVCATPLEARVRELRLIAEHSPRYNRRSKHPERRTWVRLTDEAYPRLSVVTEVRGDTPHIGPFTSRRTATAAVDALHDALGLRQCTQRLPLVARERRSPCALAGLDRCSAPCTAVGTPDAGYADVVAEATRALTGDPQVVLRALGDRVARLAAEERYEEAGQVTARLRAFVGAAARAQRLDPLSRCAELVAARPTADGGWELVVVRYARLAATAVSPPGEDPWPVVHALRATAEVVEAPAPPAPAGHPEEAALLLDWLEQSDVRLVDVSDPWTCPVRSAVAHADLDDVAATVALAVGGAVDTMAAC				NA	NA	NA	NA	NA
AK001_03028	1809		COG1022	Long-chain-fatty-acid--CoA ligase FadD15	ATGGACGAGATCACCACCCCGCAGCTCGTTGAGCTCCCCGCCACGTCGAACCTCAACGACCTCCTCGCCGAACGCATCGCGCCGGACCCGTCGGCGACGGTGCTCGAGCGCCCCGGACCCTCCGGGTGGGAGGCGATCAGCGGAGCGGACTTCGACTCGCAGGTCGTGGCGGTGGCCAAGGGGCTCGTCGCGAAGGGCGTGCAGCCCGGCGAGGCCGTCGGGATCATGTCGCACACCCGGTACGAGTGGACCCTCCTCGACTTCGCCGCCTGGGCGGCCGGTGCCGTACCGGTCCCGATCTACGAGACCTCCTCGCGCGACCAGGTCGAGTGGATCGTCACCGACTCCGGCACGACGGTCGTCGTGGCCGAGGACGCCGAGATGGCCGGCATCGTCAAGCAGGTCCAGGAGACCGCCCCCTCGCTGCGCGAGGTGTTCTCGATCGAGGACGGCGGGATCGCCGAGCTCACCGCGGCCGGTGCCGAGGTCGAGGACGCCGAGATCGAGCGCCGGCGCGGCCTGGCGAACCTCGACGACGTCGCCACGATCATCTACACCTCGGGCACGACCGGACGCCCCAAGGGTGCGGAGCTCACGCACGGCAACTTCGCGCTGCTGACCAAGAACGCCGTCGCGGCTGTGCCGGAGGTCTTCGCCTCCGGGGGCCGGACGCTGCTGTTCCTGCCGCTGGCGCACGTCTTCGCCCGGTTCGTCGAGGTGCTCGCCGTCGCCGGCGGCACGGTGCTCGGCCACTGGGGCGACACCAAGACGGTCACCGAGGGCCTGGCCGAGTTCAAGCCCACCTACGTGCTCGCCGTCCCGCGCGTGTTCGAGAAGGTCTACAACTCGGCGGAGCAGAAGGCCGCCGCGGGCGGCAAGCTGAAGATCTTCCACTGGGCGTCCGCCACGGCGATCGCGTGGTCGCGGGCCCAGGACACCGGCGGTCCCTCGTTCTGGCTGAACGTGCAGCACAAGGTCGCGGACCGGCTCGTCTACAGCAAGCTGCGCGGGGCGCTCGGTGGCGAGGCACGCCACGCCGTCTCCGGCGGCGGCCCGCTGGGCGAGCGGCTCGGCCACTTCTTCCGGGGCATCGGCCTGACGATCATCGAGGGCTACGGCCTGACCGAGACGACGGCGCCGACCTCCGTCAACCGGCCGGGCAACAACCGCATCGGCAGCGTCGGCGAGCAGCTGCCGGGCTGCGGGGTCAAGATCGCCGAGGACGGCGAGATCCTGCTGCGCGGCGTGCAGGTCTTCCGCGGCTACCACGGCAACCCCGAGGCGACGGCGGAGTCCTTCGACGGCGACTGGTTCCGCACCGGCGACCTCGGCTCGCTGGACGACGACGGCTTCCTGCGGATCACCGGCCGCAAGAAGGAGATCATCGTGACCGCGGGCGGCAAGAACGTCGCCCCCGCCGTGCTCGAGGACCGCATCCGCGCCCACGCGCTGGTCAGCCAGTGCGTCGTCGTCGGCGACAACCGCCCGTTCATCGGCGCCCTGATCACCCTCGACCCGGACGGCCTGCCGGGCTGGTGCAAGATGCACGACAAGCCGGAGCTGAGCGTCGCCGAGGCCAAGAAGGACCCGGACGTGCTGGCCGCCCTGGACCACGCCGTCACCCGGGCCAACGAGGCCGTCTCGCGCGCCGAGTCGATCCGCAAGTTCGCCATCCTGCCGGAGGACCTGACGGTGGAGAACAGCTACCTCACGCCCTCGATGAAGGTCCGTCGCTCCGTCGTGCTCGACGACTTCGCCGCCGACGTCGACGCGCTCTACGAGGACACCCGGGAGCAGTCCCCCAGCTGA	MDEITTPQLVELPATSNLNDLLAERIAPDPSATVLERPGPSGWEAISGADFDSQVVAVAKGLVAKGVQPGEAVGIMSHTRYEWTLLDFAAWAAGAVPVPIYETSSRDQVEWIVTDSGTTVVVAEDAEMAGIVKQVQETAPSLREVFSIEDGGIAELTAAGAEVEDAEIERRRGLANLDDVATIIYTSGTTGRPKGAELTHGNFALLTKNAVAAVPEVFASGGRTLLFLPLAHVFARFVEVLAVAGGTVLGHWGDTKTVTEGLAEFKPTYVLAVPRVFEKVYNSAEQKAAAGGKLKIFHWASATAIAWSRAQDTGGPSFWLNVQHKVADRLVYSKLRGALGGEARHAVSGGGPLGERLGHFFRGIGLTIIEGYGLTETTAPTSVNRPGNNRIGSVGEQLPGCGVKIAEDGEILLRGVQVFRGYHGNPEATAESFDGDWFRTGDLGSLDDDGFLRITGRKKEIIVTAGGKNVAPAVLEDRIRAHALVSQCVVVGDNRPFIGALITLDPDGLPGWCKMHDKPELSVAEAKKDPDVLAALDHAVTRANEAVSRAESIRKFAILPEDLTVENSYLTPSMKVRRSVVLDDFAADVDALYEDTREQSPS	PGPT0008380_6176	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
AK001_03029	945	glkA		Glucokinase	ATGCACGCCATCGGAGTCGACATCGGCGGAACCAAGATCGCCGTCGGCGTCGTGGACGAGGCCGGGCGCATCCTGGCCAAGGTCCGGCGGGACACCGCCGCCGACGACGTCGCGAGCATCGACCGTGCGATCGCCGACGCCTGCACGGAGCTGGCCCGGGAGCACGAGGTCGGCGCGATCGGCCTGGCCGCGGCCGGTTTCGTCAGTCCGGACCGCTCCTCGGTGCTGTTCGCCCCCAACATCGCCTGGCGCGAGTACCCGCTGGCGCAGCGGGTCGGCGACCTGCTCGACGTGGACGTCCCGGTGGTGGTGGAGAACGACGCGAACGCCGCCGGCTGGGCCGAGTTCCGGTTCGGCGCCGCGCACGACGCCACCGACATGATCATGCTGACCGTCGGCACGGGTCTCGGCGGCGCCGTCGTCGTCGACCGCGAGCTGGTGCGCGGCAAGTGGGGCGTGGCCGCCGAGGTCGGGCACATGCGGGTCGTCCCGGGCGGCCACTACTGCGGGTGCGGCCACGAGGGCTGCTGGGAGCAGTACGCCTCCGGCTCCGCGCTGGTGCGCGACGCCCGGCAGGCCGCCGTGGCGAACCCCGACGCGGCCCGGCGCCTGGTGGAGCTCGCGGGCGGCGACCGTGAGGACATCCAGGGGCCGCACGTCACCCAGGCCGCCCAGGAGGGCGACCCGCTGGCGATCGAGCTCCTGGCCACGCTCGGGCGCTGGATCGGCGAGGGTGCCGCGTCGGTGGCCGCGCTGCTCGACCCGGAGCTGTTCGTCATCGGCGGCGGCGTCGGAGCGGCCGGGGACCTGCTGCTCCTGCCGGTCCGCAAGGCCTACGAGGCGCAGCTGTCCGCGCTCGGTCACCGGCCGGTGGCGCAGATCGAGCTCGCCAGGCACGGCAACGAGGCGGGCATCGTGGGCGCCGCGGACCTGGCCCGACGCTGA	MHAIGVDIGGTKIAVGVVDEAGRILAKVRRDTAADDVASIDRAIADACTELAREHEVGAIGLAAAGFVSPDRSSVLFAPNIAWREYPLAQRVGDLLDVDVPVVVENDANAAGWAEFRFGAAHDATDMIMLTVGTGLGGAVVVDRELVRGKWGVAAEVGHMRVVPGGHYCGCGHEGCWEQYASGSALVRDARQAAVANPDAARRLVELAGGDREDIQGPHVTQAAQEGDPLAIELLATLGRWIGEGAASVAALLDPELFVIGGGVGAAGDLLLLPVRKAYEAQLSALGHRPVAQIELARHGNEAGIVGAADLARR				NA	NA	NA	NA	NA
AK001_03030	567			hypothetical protein	ATGGCTTCATCGAACCGGGACGCGGATCCGGACGACCTCCCGGACGCCGACGTCGACGCCCGTTGGACCGACATCGTCGCACGACTGAGCGACGTGGAGCAGTCCGGCCGCGACGTCGCGCGGTCCACGCCGACCGGACCCCGGGGCGAGGACGCCGAGGGGAACGACGACGCGGGCGACGCCGACGCGGGCGACGCCGACGACACGACCGCGACGCCCGAGGTCGCCGCCCCCTCCCCCGCGCCGCGTGCGCCGGGGCCCCGCGACTGGCCCGCCTCGCCGGAGGTCGAGAGGCGGGAAGAGACTGAGTCGCACTTCGTCCCCCCGGACCCCGCGCCCATCGGGCAGCGCGACCCGCTGCTGACCCTGGCCTGGACCGTCGTCGTCGCGGTGCCCGTGCTGACCGTGCTGAGCGTCGTGCTGCGCGCCGCGCTCGCCGAGCTGTCCGTGCCCGGCTGGCTCGGACGGGCCGCCGGCGCCGCGTTCGTCGCCGCCGTCGCCGTCCTGGTCTGGCGGATGCCGAACCGCCGCGACCCCGAGGACGACGACCCCGGGGCGGTCGTCTGA	MASSNRDADPDDLPDADVDARWTDIVARLSDVEQSGRDVARSTPTGPRGEDAEGNDDAGDADAGDADDTTATPEVAAPSPAPRAPGPRDWPASPEVERREETESHFVPPDPAPIGQRDPLLTLAWTVVVAVPVLTVLSVVLRAALAELSVPGWLGRAAGAAFVAAVAVLVWRMPNRRDPEDDDPGAVV				NA	NA	NA	NA	NA
AK001_03031	777			hypothetical protein	TTGTTCTACTGGGTGATGAAGCACGTGCTGGTGGGGCCGTGGCTCCGGCTGGCCTTCCGCCCGTGGACCCGGGGCGTGGACCACCTGCCCGCGACGGGCGGCGCGATCCTCGCGAGCAACCACCTGGCCGTCATCGACTCCTTCGTGCTGCCGCTCGTGCTCGACCGGCAGGTGAAGTTCCTCGGCAAGTCCGACTACTTCACCGGCAGGGGGCTGCGCGGCAGCCTGGTGGCCGGGTTCATGCGCGGCGTCGGCACCATCCCCGTCGACCGCTCGGGCGGCAAGGCCAGCGAGGCCGCCCTGCGCACCGGTCTGCGGGTGCTGGACGAGGGCGACCTGTTCGGCATCTACCCCGAGGGCACGCGCAGCCCCGACGGGCGGCTGTACCGCGGCAAGACCGGGGTGGCCCGGCTCGCCCTGGAGTCCGGCGCCCCGGTGGTGCCCGTCGCCATGGTCGGCACGGACGTCGCCCAGCCGCTGGGGACGGTGCTGCCCAAGCCGATGCCGATCGGCGTCGTCATCGGCGAGCCCCTGGACTTCAGCCGCTACCGCGGCATGGAGAACGACCGGTTCGTGCTGCGCGCGGTGACCGACGAGATCGTCTACGCGATCATGCGGCTGAGCGAGCAGGAGTACGTCGACGTCTACGCGGCCACCGCCAAGGCGCGCCTCGCCCAGGGGCTGCCCGTCGACCCGACGCCGGGGGGCGGGACGCCGGAGCGCCGGCCCGCCCCGGAGCCGTCGCCGCAACCGGAGACGGAGCGACCCGAGCGCTGA	MFYWVMKHVLVGPWLRLAFRPWTRGVDHLPATGGAILASNHLAVIDSFVLPLVLDRQVKFLGKSDYFTGRGLRGSLVAGFMRGVGTIPVDRSGGKASEAALRTGLRVLDEGDLFGIYPEGTRSPDGRLYRGKTGVARLALESGAPVVPVAMVGTDVAQPLGTVLPKPMPIGVVIGEPLDFSRYRGMENDRFVLRAVTDEIVYAIMRLSEQEYVDVYAATAKARLAQGLPVDPTPGGGTPERRPAPEPSPQPETERPER	PGPT0024380_1704	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655	NA	NA
AK001_03032	1227	pfp_2		Pyrophosphate--fructose 6-phosphate 1-phosphotransferase	ATGTCGGTCCGTCGTGTGGCCCTGCTGACCGCCGGTGGCTTCGCCCCGTGCCTGTCGTCCGCGGTCGGTGGCCTCATCGAGCGTTACACCGAGCTCGACCCGTCGATCGAGATCATCGCCTACCAGTACGGCTACCACGGCCTGCTGACCGGCACGAAGATCGAGATCGACGCCGAGGGCCGCCGTCAGGCCGGCATCCTCCACCGCTTCGGCGGCTCGCCGATCGGCAACTCGCGCGTCAAGCTCACCAACGCCGCCGACTGCGTCAAGCGCGGCCTGGTCGCCGAGGGCCAGGACCCGCTGCACGTCGCCGCAGAGCAGCTCAAGGCCGACGGCGTGGACGTGCTGCACACCATCGGTGGCGACGACACCAACACCACCGCCGCCGACCTCGCGGCCTACCTGCACGAGAACGACTACGAGCTCACCGTGGTCGGTCTGCCCAAGACGATCGACAACGACGTGGTGCCGATCAAGCAGTCGCTCGGCGCCTGGACCGCGGCCGAGGAGGCCGCCGGGTTCGCCGCGAACGTCATCGGCGAGCACCGGTCGGGTCCGCGCATGCTCATCGTGCACGAGGTCATGGGCCGCCACTGCGGCTGGCTGACCGCCGCCGCAGCCGCGGAGTACCGCACGTGGCTCGACGCCCAGGAGTTCGCCCCCGCGCTCGGTCTCACGCGCGAGCGCTGGGACGTGCACGCGGTGTTCCTGCCCGAGCTGGCCCTCGACATCGACGGCGAGGCCGAGCGCCTCAAGGCGATCATGGACACGCACGGCAACGTCAACATCTTCCTGTCCGAGGGTGCGGGCATGCACGAGATCGTCGCCCAGCTCGAGGCGGCCGGCGAGGAGGTCCAGCGCGACCCGTTCGGCCACGTCAAGCTCGACACGATCAACCCGGGCCAGTGGTTCGCGAAGCAGTTCGCCGAGAAGCTGGGCGCCGAGAAGGTCATGGTCCAGAAGTCCGGGTACTACTCGCGCGCCGCCGCGGCGAACGCCGAGGACCTGCGGCTCATCAAGTCGATGACCGACCTGGCGGTCGAGTGCGCCCTGCGCGGCGAGCCCGGCGTCATCGGCCACGACGAGGAGGACGAGGACAAGCTCAAGGCGATCGCCTTCCCGCGGATCGCCGGCGGCAAGGCCTTCGACGTCCACCAGGAGTGGTTCGGCGCGCTGCTGGCCGACCTCGGTCAGCCGCTCGTGCCGGCGCAGCCCTCCGAGCACTGA	MSVRRVALLTAGGFAPCLSSAVGGLIERYTELDPSIEIIAYQYGYHGLLTGTKIEIDAEGRRQAGILHRFGGSPIGNSRVKLTNAADCVKRGLVAEGQDPLHVAAEQLKADGVDVLHTIGGDDTNTTAADLAAYLHENDYELTVVGLPKTIDNDVVPIKQSLGAWTAAEEAAGFAANVIGEHRSGPRMLIVHEVMGRHCGWLTAAAAAEYRTWLDAQEFAPALGLTRERWDVHAVFLPELALDIDGEAERLKAIMDTHGNVNIFLSEGAGMHEIVAQLEAAGEEVQRDPFGHVKLDTINPGQWFAKQFAEKLGAEKVMVQKSGYYSRAAAANAEDLRLIKSMTDLAVECALRGEPGVIGHDEEDEDKLKAIAFPRIAGGKAFDVHQEWFGALLADLGQPLVPAQPSEH	PGPT0017640_611	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017640-pfp-K00895	NA	NA
AK001_03033	1365	aroH	COG3200	Phospho-2-dehydro-3-deoxyheptonate aldolase	ATGAGCACCGCCGTCGACGTCGTCGCGCCCGGGACGGACCCGCAGGGGCTGGACCGGTTCCGCGACTTCGAGGCACGTCAGCAGCCGGTCTGGCCGGACGCCGACGCCCTGGACGCCGTCGCCGCCCGGCTGGCGGTCGCGGCGCCGCTCGTGGTGCCCGCCGAGGCGGACACGCTCACCGAACGCCTCGCCGCGGCCGGCCGCGGCGAGGCGTTCCTCCTGCAGGGCGGGGACTGCGCGGAGACGTTCGCCGACGCGAACGCGACGCGCATCCGCAACAAGGTCCGCACCATCCTGCAGATGGCCGTGATCCTCACCCACGGGGCGAGCACCCCCGTGGTGAAGATGGGCCGGCTCGCCGGGCAGTACGCCAAGCCGCGCTCGGCGGACACCGAGACGCGCGACGGCGTCACGCTGCCCTGCTACCGCGGCGACATGGTCAACGGCCACCCGTTCACCCCCGCGTCGCGGATCCCGGACCCCGACCGGCTGGAGCAGGCCTACCGGATCTCCGCCGCGACGGCGAACGTGGTGCGCGCCTTCACGCAGGGCGGCTACGCCGACCTGCGTCGCGTGCACGAGTGGAACCGCGGCTTCATGGAGAACCCGGCCTACGCCCGCTACGAGCGCACGGCCACGGAGATCGACCGGGCGATCCGGTTCATGGACGCCTGCGGGGCCGACTTCGACGCCCTGCGCACGGTCGAGTTCTTCCTCAGCCACGAGGCGCTCATCCTCGACTACGAGCGGGCCCTGACCCGCGTCGACCCCCGTTCCGGGCTGGCCTACGACACCAGCGCCCACTTCCTGTGGATCGGGGAGCGCACCCGCCAGCTCGACGGGGCGCACGTGGAGTTCCTGTCCCGCGTGGCCAACCCCGTGGGCGTCAAGCTCGGGCCGACGACGACGCCGGACGACGCGATCGCGCTGGCCCGGCGGCTCAACCCGGACAACGTCCCCGGGCGTCTGACGTTCATCACGCGCATGGGCGCCGGTCGCGTGCGCGAGGTGCTGCCCGACGTCGTGCACCGGGTGACGGCGGCGGACATCGCGGTGACCTGGGTGACCGACCCGATGCACGGCAACACGATCACCTCGGACAGCGGCTTCAAGACCCGCCGGTTCACCGACGTGCTCGACGAGGTCACCGGTTTCTTCGAGGTGCACCGCGACCTGGGCACGGTGCCCGGCGGCCTGCACATGGAGCTCACCGGCGACGACGTCACCGAGGTCCTCGGCGGCAGCGAGGAGATCTCCGACGCCGGCCTGGCCGAGCGCTACGAGACCCTCGTGGACCCGCGCCTGAACCACCAGCAGTCCCTCGAGACCGCCTTCCAGGTCGCGGAGATGCTCACCAGACGGTGA	MSTAVDVVAPGTDPQGLDRFRDFEARQQPVWPDADALDAVAARLAVAAPLVVPAEADTLTERLAAAGRGEAFLLQGGDCAETFADANATRIRNKVRTILQMAVILTHGASTPVVKMGRLAGQYAKPRSADTETRDGVTLPCYRGDMVNGHPFTPASRIPDPDRLEQAYRISAATANVVRAFTQGGYADLRRVHEWNRGFMENPAYARYERTATEIDRAIRFMDACGADFDALRTVEFFLSHEALILDYERALTRVDPRSGLAYDTSAHFLWIGERTRQLDGAHVEFLSRVANPVGVKLGPTTTPDDAIALARRLNPDNVPGRLTFITRMGAGRVREVLPDVVHRVTAADIAVTWVTDPMHGNTITSDSGFKTRRFTDVLDEVTGFFEVHRDLGTVPGGLHMELTGDDVTEVLGGSEEISDAGLAERYETLVDPRLNHQQSLETAFQVAEMLTRR	PGPT0012920_1523	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATES	BIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626	NA	NA
AK001_03034	2010	spk1		Serine/threonine-protein kinase PK-1	GTGGCCTCCACGACGACCGACCCTCTGCTCGGCCGCCTGGTCGACGGGCGGTACGAGATCGTCGCGCGCGTGGCCCGCGGGGGCATGGCCACCGTCTACCGCGCCAGGGACCGGCGCCTGGGCCGCGAGGTCGCGGTCAAGGTGATGCACCCGCACCTCGCCGACGGCGTGGACGGCGCCAGCTTCGTCTCCCGCTTCCGGCGCGAGGCGCGGGCCGCGGCACGCCTGTCGCACCCCGGCGTCGTCGCGGTGTTCGACCAGGGTCTCGACGGCGACACCTCCTACCTGACGATGGAGTACGTCGAGGGCAGCAACCTGCGCGCCGAGCTGCAGCAGGGACCGCTGCCCGTCGGGCGGGCCCTCGACGTGGCCGCCCAGGTGCTGGAGGCGCTCGCCGCGGCGCACCGCGTCGGTCTCGTGCACCGGGACATCAAGCCGGAGAACGTCCTGCTGGGCTCGGACGGCACCGTGAAGGTCGCCGACTTCGGCCTGGCCCGCGCCGTGACCGAGGTGACCTCGACGGCCAGCGGGACGATCCTCGGCACGGTCGCCTACCTGGCGCCCGAGGTGATCACGTCCGGCGGGACGAGCCCCGCCACGGACGTCTTCGCCGTCGGCGTGCTGCTCTCGGAGATGCTGACGGGCACCGTGCCGTACCCGGGCGAGCCACCGATCGGCGTGGCCTTCCACCACGTCCACGAGGACCTCCCGGCCCCCTCGCAGCGGGTGGACTGGCTGCCCGCGGAGCTCGACCGCCTGGTGGCGTCGTTCACGGCCCGGGACCCGCACCGCCGCCCCCCGAACGCCGGCGCCGCGGGCGCGGCCGTCGCCGGGGCCCGGGCGCTGCTCGACCCGGAGATGCTCGCCCGCCGCGCGGACCGGCCGGTGCTGCCGGCCGAGGACGACCTCGACGGCGACCCGGGCACGGGGCCCGACGACGGCCCCGACGCCCTGCGGACGGGGTCCGCCGACGCCGTCGACGAGATCCCCACGGCGTTCTTCACCGAGGTGCCCACCGGCGAGCACCGCACCGAGCACCTGGTCACCGAGCCGACCCACGCCCTGGCGGGACCGGTCGGAGCCGGTCCCGCCGCCCCGGAGCGGACGCACCGGCGCGGCGCCGTGGTGTGGGCGGTGCTGCTGGTGCTGCTGCTGGGCGGGGGCGGCGCGGGCACCTGGTGGTGGTTCGCCGCCGGTCCCGGGGCCTGGACGACCGTGCCGGCGGGCCTGGTGGGTGCACCGGCCGAGGACGCCGGCGCCGCGCTCGCCGCGCTGGGCCTGGACGCCGAGACCCGGGAGCGGCACCACGACGACGTCCCGGCGGGCGACGTCGTCGCCACCGACCCGGCCTCGGGCGAGCGCGTGCGTCGCGACGGCAGCGTGGAGCTGGTCGTCTCGCTCGGGGTCCGGATGCTCACCGTGCCCGGGGACCTCGTGGGCTCGCCCCGGCAGGACGCCGAGGCCGCCCTGGACGCGGAAGGGTTCGCCGTCGAGGTCGACACCGTCCACGACGACGCCGCGCCCGAGGGCGAGGTCCTCGGCACCTCGGTCCCGGAGGGTTCCCGGCAGCGGCACGACACGGTGGTGACCCTGACGGTGTCCGACGGGCCGGCGCCGGTCAGCGTGCCCCAGGTGGTCGGGCGCTCCGCCGACGAGGCCGAGGAGGACCTGGCCGCGGCCGGTCTCGAGGTCGCCTACGCCGACCCCGAGACCTCGACGGAGGTGGCCGAGGGGCGCGTGCTCGCCCAGGACCCGGAGCAGGGCACGACGGCGCGCCGCACGGACACGGTCACGCTGACGCTGTCCGCGGGTCCGCCGCAGGCCGAGGTGCCCGACGTCACGGGCATGACCGGTGACGAGGCCACGGCCGCGCTGGAGGAGGCAGGTTTCGAGGTCGAGGTGACCGGCCTGCTCGGCGGGTGGCTGCCCGCGTTCCGCGACGAGGTGCGCGAGCAGGAGCCCACCGGCAGCGCGCCGGTGGGCTCGACCGTGACGATCACCGTCTGGTGA	MASTTTDPLLGRLVDGRYEIVARVARGGMATVYRARDRRLGREVAVKVMHPHLADGVDGASFVSRFRREARAAARLSHPGVVAVFDQGLDGDTSYLTMEYVEGSNLRAELQQGPLPVGRALDVAAQVLEALAAAHRVGLVHRDIKPENVLLGSDGTVKVADFGLARAVTEVTSTASGTILGTVAYLAPEVITSGGTSPATDVFAVGVLLSEMLTGTVPYPGEPPIGVAFHHVHEDLPAPSQRVDWLPAELDRLVASFTARDPHRRPPNAGAAGAAVAGARALLDPEMLARRADRPVLPAEDDLDGDPGTGPDDGPDALRTGSADAVDEIPTAFFTEVPTGEHRTEHLVTEPTHALAGPVGAGPAAPERTHRRGAVVWAVLLVLLLGGGGAGTWWWFAAGPGAWTTVPAGLVGAPAEDAGAALAALGLDAETRERHHDDVPAGDVVATDPASGERVRRDGSVELVVSLGVRMLTVPGDLVGSPRQDAEAALDAEGFAVEVDTVHDDAAPEGEVLGTSVPEGSRQRHDTVVTLTVSDGPAPVSVPQVVGRSADEAEEDLAAAGLEVAYADPETSTEVAEGRVLAQDPEQGTTARRTDTVTLTLSAGPPQAEVPDVTGMTGDEATAALEEAGFEVEVTGLLGGWLPAFRDEVREQEPTGSAPVGSTVTITVW				NA	NA	NA	NA	NA
AK001_03035	381			DNA-binding protein	GTGAGCGATGCATCCGCGCAGACCCCCCTGGACGACCTCGTCGGCGAGTGGCTGACCCTGCCCGACCTGGCCGACGCGCTGGGCACCGACGTCAGCCGGGCCCGGGGGCTGGTCGCCTCCCGCCACGTCGTCGGCGTCAAGCGGGGCGAGCGCACCACCTTCCAGGTGCCGGCCGCCTTCGTGGTGGAGACCGACGACGGCCCGGCCGTGCTCGAGACGCTGCGCGGCACGCTGATCCTGCTGGGCGACGCCGGCTTCAGTGACCCCGAGGCGCTGCGGTGGTTGTTCACCGCGGACGAGACGCTCGGACGCAGCCCGGTGGAGGCCCTGCGTGCCGGCCAGCGCGCGCAGGTGCGCCGGCTCGCTCAGGCGATGGGCTGA	MSDASAQTPLDDLVGEWLTLPDLADALGTDVSRARGLVASRHVVGVKRGERTTFQVPAAFVVETDDGPAVLETLRGTLILLGDAGFSDPEALRWLFTADETLGRSPVEALRAGQRAQVRRLAQAMG				NA	NA	NA	NA	NA
AK001_03036	1110	ispB	COG0142	Octaprenyl diphosphate synthase	ATGCCTGCTGCTGCGACCCCGTTGGTCGACCTCGAGAACCTCCGCACCGACGTCGACGCGGCGCTGCGAGCCCACCTCGACCGGCTCCGGGACGAGGCCGTGGGCATCGGCGCCGGCACCACCGCCCTCACCGAGCACGTGTCCACGCTGCTCGCCGGGGGCAAGCGCCTACGAGCCGCGTTCTGCTACTGGTCGTTCCGTGCGCACGGCGGCGCCGCGACCGGGCCCGAGCGCGACGCCGTCGTCCGCATCGGCGCCGCCCTGGAGCTGTTCCAGGCGGCCGCGCTGCTGCACGACGACGTCATGGACGCCTCGGACACCCGCCGGGGCATGCCGACGGCCCACCGCGTCTTCGCCGCGCGGCACGAGGACAACGCCTGGGCCGGAGACGGCGAGCGGTTCGGCACCGCGGCGGCGATCCTGCTCGGCGACCTGTGCCTGGTCGCCTGCCACCGCGAGGCGGCCGCCGCCCTCGACGCCGTGGAGCCGGCCGTCGCCCGCGCGGCGCGCGACCTGTTCGACACCATGACGAGCGAGGTGGTCGTCGGCCAGTACCTCGACGTGCTGGTGCAGGCCGAGCCCTGGGGGCTCGACCCCGCCGGCGACGAGGAGCGCGCCCGCACCGTGCTGCGCTCGAAGTCGGCGCGCTACTCGGTCGAGCGCCCGCTCACCCTGGGCGCCGTCCTGGCCGGCGCCGACCCGGAGCAGGTCGCCGAGATCAGCGCCGTCGGGCTGCCCGTCGGCGAGGCGTTCCAGCTGCGCGACGACCTGCTCGGGGTGTTCGGCGACCCCGCCGTGACCGGCAAGCCCGCCGGGGACGACCTGCGCGAGGGCAAGCACACGGTGCTCGTCGCGCGGACCCTGGCCGACGGCGACGACGAGGCGCGCGCGCTGCTGGCCAAGCACCTCGGGGACCCCGACCTGTCCGACGCGGACGTCACCGCGCTGCGCGAGACGATCACGGCCTCCGGGGCCGTCGAGGACGTCGAGGCGCTCATCGACGAGCTCGCCAGCGGAGCGCTCGGGCGCCTGGAGGCCTCCGACCTGCGCTCCCCCGGCCGCGAGGTGCTCGCCGACCTGGCCCGGGTCGCCGTCAACCGCCGGGCGTGA	MPAAATPLVDLENLRTDVDAALRAHLDRLRDEAVGIGAGTTALTEHVSTLLAGGKRLRAAFCYWSFRAHGGAATGPERDAVVRIGAALELFQAAALLHDDVMDASDTRRGMPTAHRVFAARHEDNAWAGDGERFGTAAAILLGDLCLVACHREAAAALDAVEPAVARAARDLFDTMTSEVVVGQYLDVLVQAEPWGLDPAGDEERARTVLRSKSARYSVERPLTLGAVLAGADPEQVAEISAVGLPVGEAFQLRDDLLGVFGDPAVTGKPAGDDLREGKHTVLVARTLADGDDEARALLAKHLGDPDLSDADVTALRETITASGAVEDVEALIDELASGALGRLEASDLRSPGREVLADLARVAVNRRA	PGPT0007550_531	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007550-idsA-K13787	NA	NA
AK001_03037	4101			hypothetical protein	ATGTCCCTTCACCGAAGAATGCTGCGACCCGCAGGCATCACGCTCGGTCTCGCCCTGGCCGGGACGACGCTCGTCGCCCCCGCGAGCGGCGCCCCGTCCCCCGACGCGGCCGACGTCGCGCAGCGGCTCACCGACGCCCAGCGCCAGACCCTCACCCAGGCCGGCGACCTCACGGTCCCGAGCGCCGTCGTCGACGAGGACATCGACACCACGTCGAGCGAGCCCGTCGACGTCATCGTCGAGCTCGCCACCCCGCCGGCGACCACCGCGCTCGCCCTGGCCGAGGCCGAGGGCCGCGACCTGACCGGCAAGGAGGCGCGCGCCGCGGTCCGTGCCTCCCAGCAGGCGCTCGAGGCCCTGCTGAAGGACACCGGCGCCGACGGCGAGCGCCGCAAGGCGCAGCGCCCCGCCGTGCGCCAGCAGTACACGCAGGCGTTCAACGGCGCTGCCGTCGAGCTGCCCGCCACCGACGTCGAGGCGCTCGCCGCGTCCGACGACGTCGCCGCCGTGTGGGCCAACGACACCTGGACCGTCGACCTGCCCGAGACCGCGACGGCCGCCGTCGGCGCCTCCGCGGAGACCGACGACGTCGCCACGCTGCACGGCGAGGGCCTGACCGGCGCCGGCGTCAAGGTCGGCGTCCTGGACACCGGCATCGACTACACCCACCCGGCGCTCGCCGACGTCTACCAGGGCGGCTACGACCTGGTCGACGACGACGACGACCCGATGGAGACCACCTACGCCGACTGGCAGGAGGCCGGCGGGGCCGAGAAGGACCGCAACGGCAACACCTACTACACCCAGCACGGCACCCACGTGGCCGGCATCATCGCCGGTACCGACGAGCGGGGCACCTGGGGAGCGGCCGGCGTCGCACCCGAGGCCGACATCTACGCCTACCGCGTGCTCGGCCCGTTCGGCGGCGGCTCCACCGAGGACATCCTCGCCGGCATGGAGCGCGCGCTCGCCGACGGCATGGACGTCGTGAACATGTCGCTGGGCGGCAACGTCAACGACACCCAGAGCCCGCTGTCGATCGCCGCGAACCACCTGACGCTCGCGGGGGTGACGACCGTGCTGGCCGCCGGCAACTCCGGCGCGAACGGCGCGTTCTCGCTCGGCTCCCCGGCCGCCGCCCAGCTCGCCCTGACGGTCGGCGCGAACGACTTCGCGATCGAGGTCGCCACGCTCGGCGCCACCGTCGGGACCGCCGCGGCCGACCTGCAGCTCCTCGCCCGACCGACCCAGGACACGATCGCGGAGCTCGACGGCACCACGGCCACGATCGTGGACGCCGGCCTCGGCAAGGCGTCGGACTACCGCTACTACGACAGCGGCTGGCAGGACGTCGCCGCCGAGGGCAACGTCGTGCTGGTCCAGCGAGGTGCGATCTCCTTCCAGGAGAAGATGGAGCGCGCCGCCGACAAGGGCGCCGCCGCGCTGCTGATCGTCAACAACGACCCCGACGAGGAGCACCCGCCGTACTACTTCGGCGAGTCGGACAAGTACGTGCCGACCTTCTCGGTCACGACCGCCCAGGGCGCCGCCCTGACCGCGGCCGTCGCCGACGGCGCGGAGGTCACGTTCTCCGGTTACGGCACGACGACGACCGGTGGCGGCAACCTCGCCGACTTCAGCTCGCGCGGGCCCGCCAAGGGCAACGGCGACATCAAGCCCGAGGTCACCGCCCCCGGTGTCAGCGTGCTGTCCGCGATCCCGGCGCACATGGTCGACCCCGAGAACCTCGACGACCACTCGACGGCCTACGCCCGCCTGTCCGGCACGTCCATGGCGACGCCGTACGTGGCCGGCAGCGCCGCGCTGATGCTCCAGCACGACGAGGACCTCGACCCGATCGAGCTCAAGGCCCGCCTGATGAACACCGCGGACCCGCTCGACGAGGACCACAGCGTCTTCGCGATCGGCGCCGGCGAGGTGGACCCGTACCAGGCGGTGCACGCGGACACGTTCCTGCTGACCGCGGAGAAGGCCAGCACCCTGGCCCAGCGGGACGTCACCACCGCGACCGGCAGCACCCCGTGGTCGGCGGCGTCCGCCGACGACGCCGAGATCGGCAGCGACCTGAGCTTCGGCGTGCACGCCCCGGGCGCGGAGATCTCCGACTCCCGCCGCCTGGAGATCGTCAACGAGTCCACCGAGCGGGCCCGCTACACCGTCGACGTCGTGCTCGACCAGGGCGTCGGCACCCGGGACGCGGCCGCACAGGGCGTGACCGTGTCGACCAAGCACCAGGTGCAGGTGGCGGCCGGCGGCTCCGGCACCGTCCGCGTCGACCTCGACGTCCCCGCGACGGCCGAGGCCGGCACCTACGGCGGCTACGTCGAGGTCACCCGCGAGGGGGACGACAGCGAGGGCTACCGCGTGCCGTTCGGGTTCCGGCTCACCGAGACCGGCTTCGCCGACTTCACGTTCGTCAAGCAGGTCATGACCACGAACGTCACCGACGTGCTCGCCCCGCAGCTCGAGTGGGGCTTCGCGCTGGAGAACCACCTGCGCACGGTCGACTTCTTCGTCGCCGACACCGAGGGCCGCGACGTCGGCTACATCGGGTCCCTGGACACGGTCGCCGCGGCCGAGGGCGTCATGTACGGCCCGTTCGGCTGGATCGGCGGCTACTACGAGCTCACCGGTGACCGCGACTTCCCCGTCAGCCACGCGCTGAGCACGATCGAGCCCGGGGCGCACGTCCTCAAGGTCGTCGGCACCGACGACTCCGGACGCACGTTCACCGCCTCGGAGACCTTCTTCGTCGACAACACCGCACCCGAGATGGTGGTCGACCGTCCCGGCGACGTCATCGAGGTGCCGGCCGGCGAGTCCTCCTACGCCATCGGCGGCACGCTCGTCGACGGCGAGACCGCGGCGATGCGCGCGGCCGGCCTGGACGTCGACCAGAGCGACAACGGGTTCCTCGTGTACACGTACTCGGCGTTCATGCCCTCGGACCAGATCCGGCCCGAGGCGGACGGCGCGTTCTCGTACACGTCGCGCTTCGGCCCCTCGCCGATGGCCACGCACCGGTACCGCGGCATCGACGCGGCCGGGAACGTCGCCGACCAGCTCGAGTACACCGTCATCACCGAGGGCGACCCGTACATCGACGGGCAGAACGATCTGGAGTACGTCGCCCCGGGCGAGGAGCTCACGACGACGTTCACCCACCACGGCGCCGAGGACCTCGGCACCGTGCGGCTCACCTTCCGGTACGACGCCGCACGCACCGAGGTGGTCGACGTCCGCCCGGCCGAGGGGCTGGCCGCGTACGGCGACCCGACCGTCGAGATCGAGATCCCGGAGGGCGGCTCCGGCCTCGTCCAGGCCTCCGCGACCGTCACGTTCGACGGCGAGACGCCGGTGACCGCCGAGGAGCTGCCGCTGCTCGACGTCGTCACCCGGGGCCTCGAGGACGGCCCCTGGTCGCAGAACGCCGGCCCGGTGACGGTCTCGGTGTACGTCCACGACGCCGAGGGCGGGTTCGTCCGCACCTGGCGCCGGTTCGACGTGGCCCGCACGCTGCCGTCGCACGTCGACGTCACGGGCATGTTCCTGGCCCAGGGCCTGTTCACCCCGGAGCTGGCCCACGACCCGGAGCGTGACCACTCCGCCGTCGGCGGCGAGGTCGTTCTGACGGCGCCCGACGGCACGGTGCACCACCCCGAGATCGCCGCCGACGGCAGCATCTCCGTCACGGACGTCCCGGTGACCCTCGAGCCGTACGTGCTCTCCGCGACCCTGCCGGGGCACCTCGACTACCGCACCGAGGTCACGGTCGGGCGCGAGCTCGCCGACGGCCGGGTGCTCGGCACTCCGGCCCAGGGCGTGGTGCAGCTCTACGGCGGCGACGTGAACGGTGACGACGTCGTCGACATCTTCGACGCGCTCGCGATCCAGGACGCGGCCGGCACCGCCGACCGCGCCGCGGACGTGAACGCTGACGGCGTCGTGGACGGCCAGGACCTGACGCTCGTCGAGCGCAACTGGCTGATGCGCAACCCGTCCGCCGAGACCGTCCCGGACCCGCGCGACCGCAAGGGTTCCTGGACTCTGGAGGACGTCCAGGCGGCACTCGCCGGCTGA	MSLHRRMLRPAGITLGLALAGTTLVAPASGAPSPDAADVAQRLTDAQRQTLTQAGDLTVPSAVVDEDIDTTSSEPVDVIVELATPPATTALALAEAEGRDLTGKEARAAVRASQQALEALLKDTGADGERRKAQRPAVRQQYTQAFNGAAVELPATDVEALAASDDVAAVWANDTWTVDLPETATAAVGASAETDDVATLHGEGLTGAGVKVGVLDTGIDYTHPALADVYQGGYDLVDDDDDPMETTYADWQEAGGAEKDRNGNTYYTQHGTHVAGIIAGTDERGTWGAAGVAPEADIYAYRVLGPFGGGSTEDILAGMERALADGMDVVNMSLGGNVNDTQSPLSIAANHLTLAGVTTVLAAGNSGANGAFSLGSPAAAQLALTVGANDFAIEVATLGATVGTAAADLQLLARPTQDTIAELDGTTATIVDAGLGKASDYRYYDSGWQDVAAEGNVVLVQRGAISFQEKMERAADKGAAALLIVNNDPDEEHPPYYFGESDKYVPTFSVTTAQGAALTAAVADGAEVTFSGYGTTTTGGGNLADFSSRGPAKGNGDIKPEVTAPGVSVLSAIPAHMVDPENLDDHSTAYARLSGTSMATPYVAGSAALMLQHDEDLDPIELKARLMNTADPLDEDHSVFAIGAGEVDPYQAVHADTFLLTAEKASTLAQRDVTTATGSTPWSAASADDAEIGSDLSFGVHAPGAEISDSRRLEIVNESTERARYTVDVVLDQGVGTRDAAAQGVTVSTKHQVQVAAGGSGTVRVDLDVPATAEAGTYGGYVEVTREGDDSEGYRVPFGFRLTETGFADFTFVKQVMTTNVTDVLAPQLEWGFALENHLRTVDFFVADTEGRDVGYIGSLDTVAAAEGVMYGPFGWIGGYYELTGDRDFPVSHALSTIEPGAHVLKVVGTDDSGRTFTASETFFVDNTAPEMVVDRPGDVIEVPAGESSYAIGGTLVDGETAAMRAAGLDVDQSDNGFLVYTYSAFMPSDQIRPEADGAFSYTSRFGPSPMATHRYRGIDAAGNVADQLEYTVITEGDPYIDGQNDLEYVAPGEELTTTFTHHGAEDLGTVRLTFRYDAARTEVVDVRPAEGLAAYGDPTVEIEIPEGGSGLVQASATVTFDGETPVTAEELPLLDVVTRGLEDGPWSQNAGPVTVSVYVHDAEGGFVRTWRRFDVARTLPSHVDVTGMFLAQGLFTPELAHDPERDHSAVGGEVVLTAPDGTVHHPEIAADGSISVTDVPVTLEPYVLSATLPGHLDYRTEVTVGRELADGRVLGTPAQGVVQLYGGDVNGDDVVDIFDALAIQDAAGTADRAADVNADGVVDGQDLTLVERNWLMRNPSAETVPDPRDRKGSWTLEDVQAALAG				NA	NA	NA	NA	NA
AK001_03038	984			hypothetical protein	ATGACGCTCGACGTCCTCGGGATCACCGATTCCCAGCAGCGCGTCTACCAGGAGCTCCTCGGGCGCAGCTCGGCCGACGCCACCGAGCTGGCCGCGCGCACGGGTGTTGCACGGCACGCGATCCAGGAGCTGCTGGACCGGCTCGAGGCGATGGGTCTCGTCGCCCGCTCCGGAGCCCGCCACGACCGCTACGTGGCGGCACCGCCGGACGTGGCACTGTCCTCGCTGCTCCTCGACCACGAGGAGCGCACGCGCCGCGCCCGGACGGAGCTCAGCCGCCTCGAGGCCGTCTACCGCGAGGCGGCGCCGCGCCAGACCGAGGACGCGATCGACGTGGTCCGCGGCAGCGAGGCCGTGCGGCAGCGGTTCAACCAGCTCCAGCGCTCCGCTCGGGCCGAGGTGCTGGAGTTCGTCCGCGGCGACGTGGCCGTCGTCGAGCCCTCGCAGAACGTCGAGGAGGAGGCCGCGCTCGAGCGGGGGGTCGCCTACCGGTTCGTCATCGAGCGCCCGGCGGTCGAGCGCGAGGGCGTGATCGAGGCCGTGCGCTCTACCGTCGAGCGCGGCGCGCAGGTCCGGCTGGTGCGCTCGCTGCCGACCCGCCTGCTCGTCGTGGACCGACGGATCGCGATGGTGCCGTTCTCGGCCAGCAGCCGGGACCAGTCCGGCGGTGCCCTGCTGCTGCAGGCCGGGGGGCTGCTCGACATGGCGACGGCCCTGTTCGAGCAGACGTGGCGCAGCGCGTCCCCGCTCGGCGAGGACGACGACGAGCCGTCGCCCGCCGTCGCCCGCGACACCGACCTCGACCCCGCCGACCGGTATCTGCTGCAGCTGCTCAACGCCGGCCTGACCGACCGCACGGTGGCCGCCCGGCTGGGGGTGTCGATGCGGACCGTCCAGCGCCAGGTCCGCACCCTGATGGAGCGGGCCGACGTCGACACCCGGCTCCAGCTCGGCGTCGTGGCCGCGCGGCAGGGCTGGTTGTAG	MTLDVLGITDSQQRVYQELLGRSSADATELAARTGVARHAIQELLDRLEAMGLVARSGARHDRYVAAPPDVALSSLLLDHEERTRRARTELSRLEAVYREAAPRQTEDAIDVVRGSEAVRQRFNQLQRSARAEVLEFVRGDVAVVEPSQNVEEEAALERGVAYRFVIERPAVEREGVIEAVRSTVERGAQVRLVRSLPTRLLVVDRRIAMVPFSASSRDQSGGALLLQAGGLLDMATALFEQTWRSASPLGEDDDEPSPAVARDTDLDPADRYLLQLLNAGLTDRTVAARLGVSMRTVQRQVRTLMERADVDTRLQLGVVAARQGWL				NA	NA	NA	NA	NA
AK001_03039	606			hypothetical protein	GTGAGCGCCGACTACGGTGTCCCCGTGCCCACGACCTCGCGCCAGCGCACCGCCCGTTCGGTGAGCCGGCGTGTGTCCGCCGCCCTGATGGCCACCGCCCTGGCCGCGCTCACCGTCGGCTGCGACGCGCTCGGCAGCGACGGACCGAACCCCGCGACCGCCGCGAGCCGGGCACCGACGCCGACCCCCGCCGACACCCCCACCGCGCTGCCGTCCTTCGACCCGTCCTCCGCCGTCGGCGACTACGCCCGCGGGTTCCCCACCGAGCTGCTCGGCGCACCGCAGCAGGCGACCGTGCTCGCCAGCTCGGCGCTGCCCGCCGAGAACGGCCTCGTCGAGGTCTCCCTGAACCTGGCGACCACCCAGCCGCCGCGCAAGATCGTCAAGCGCTACGCCCGCCGGCTGGACGAGGCCGGGTTCGCCGAGGCCGACGAGGTCGCCGCCTCGGGCCTGGCCGCCCGGTCGGTGTTCACCCGCACCCGCCAGGGCGAGGACGCCGTGGAGACGGTGCTGATCGGGGTGCTCGACGACGGCGAGCGACGGCTCGTCTCGCTGTCCGGCACGGTCGCGGCCGACCCCGAGGACGACACCGCCGCCGAGGACTGA	MSADYGVPVPTTSRQRTARSVSRRVSAALMATALAALTVGCDALGSDGPNPATAASRAPTPTPADTPTALPSFDPSSAVGDYARGFPTELLGAPQQATVLASSALPAENGLVEVSLNLATTQPPRKIVKRYARRLDEAGFAEADEVAASGLAARSVFTRTRQGEDAVETVLIGVLDDGERRLVSLSGTVAADPEDDTAAED				NA	NA	NA	NA	NA
AK001_03040	1215			hypothetical protein	ATGACCACCACCTGCGACCCCACCTACGAGACCATCCGGCTGCGCGACGCCCACGACCTGCTCGCCGCCGTCCCGTACCGGCTCGGCTTCCGGCCCGCCGAGTCCGTCGTCCTGGCCTGCGTGACGGCGTCCGGACGCCTCGGGCTCGTCGCCCGCGTCGGCCTGGCCGACCTCGCCGGGGTCGCGGGCCCGGGAGGCTCGGCGGGCCCTGGAGACTCGGCGATCCCGGGCTCGGCCGGCCCCGAGGCGCTGGAGCCGCTGGCCCGGGCCGTGGCCGACGTCGACCCGGCCTTCTGCCTGCTGGTGCTCTACACCGCGGGGGAGGCCTCCGCGGCGTCCGACCGCGTCGAGGCCGTCCGGCGCGTCGTGGACCCGGCCGTCCGGGTGGAGAGCTGGCTCGTCACGCCCGAGTCCTACCGCGGGCTCGACTGCGACGACCCCGCCTGCTGCCCGCCGGGCGGGTTCCCGACGCGGGCGCTCGAGCACGGGGAGGTCGGGGCCGCGCACGTGCTCGCCGGCCGGGCGCTCGCGGGCTCGGCCGAGGAGGCGTTCCGGATCCCGCCCGCCCCGACCGCGGCCCGCGGGCTGTCCGCACGGGCCGCGCGGCGGCGCGAGGCGTCCCGCCCGACGACCGGGGACGACGACGGCGCCCGGGGCTGGCGGGACGAGGCGTGGGCGGCGTGGCGGGCGGCGCTGCGGCAGGTCGACGACCCGGCGGGCCCCGCGCCGACGCCCCTGGGGCCCGCGCTGCTGGGCCGGGTGGGGGCGGGGCTCGCCGACCGGCGGGTCCGCGACGCGGCACTGCTGAGCCTGGTCCCGCACGGCGACGACGTCGCCGGGGCGGCCCTGGAGGGCCTCGAGGACGAGGCGCGCACGGCCCGCGCGATCTCCGCCGTCGTCGACGCCGACCGGGCCGTCGCGCCCGACCCGGCGCCGGTGCGCCGCGGCTGCGCCGTGCTCGAGCAGGTGGTGGCGCACGTGCCGCGACGCCTGCAGGTCGCGCCGCTGACGCTGCTCGCCTTCCTGGCCTGGTGGCAGGGCGACGGTCCGCGCGCCGCCCGCCGGGTCGAGGACGCCCTGGACGTCGACGCCGACTACCGGCTCGCGCGGCTCGTGCAGGGTGTCGTGGTGGCCGGGCTGCCGCCGGGATGGGTGCGGGCGGAGCAGACGACCGACGGCTCGCGGGGGAGGCCCGCGGGCGGTCGCGTCCGGTAG	MTTTCDPTYETIRLRDAHDLLAAVPYRLGFRPAESVVLACVTASGRLGLVARVGLADLAGVAGPGGSAGPGDSAIPGSAGPEALEPLARAVADVDPAFCLLVLYTAGEASAASDRVEAVRRVVDPAVRVESWLVTPESYRGLDCDDPACCPPGGFPTRALEHGEVGAAHVLAGRALAGSAEEAFRIPPAPTAARGLSARAARRREASRPTTGDDDGARGWRDEAWAAWRAALRQVDDPAGPAPTPLGPALLGRVGAGLADRRVRDAALLSLVPHGDDVAGAALEGLEDEARTARAISAVVDADRAVAPDPAPVRRGCAVLEQVVAHVPRRLQVAPLTLLAFLAWWQGDGPRAARRVEDALDVDADYRLARLVQGVVVAGLPPGWVRAEQTTDGSRGRPAGGRVR				NA	NA	NA	NA	NA
AK001_03041	345			Universal stress protein	ATGGCGATCGTCGTGGGACACCTGAGCACTCCCGAGGGCGCGAAGGCGCTGGCGGCTGCCGAGGCGGAGGCGGCGCAGCGCGGGACGCGACTCGTGGTCATCGGATCCGGCAACGGGGTCGAGGAGGTCGTGCAGCGGCTCGAGGCGGCCGGCGTCGAGCACGCCGTCGTGCCGGGGACCGGCGACCTCGCCGAGGACCTGGTCCGGGAGGCCGTCGAGGCCCGGGCCGAGCTCATCGTGATCGGGCTGCGACGTCGCAGCCCTGTGGGCAAGCTCATCCTGGGCTCCGGTGCGCAGCGGATCCTGCTCGAGGCTCCCTGCCCCGTGCTGGCCGTCAAACCGTGA	MAIVVGHLSTPEGAKALAAAEAEAAQRGTRLVVIGSGNGVEEVVQRLEAAGVEHAVVPGTGDLAEDLVREAVEARAELIVIGLRRRSPVGKLILGSGAQRILLEAPCPVLAVKP				NA	NA	NA	NA	NA
AK001_03042	1599	rpoD		RNA polymerase sigma factor RpoD	GTGGCGTCCACTGCGCAGAACCCCCCGCTGCCCCGAGAGTTCGACCACCCTGCCCTGCAGGAGCTGCTCGACCGCGGCACCGCGAACGGTCGTGTCGACGCGGAGAGCTTCCGCTCTGCCTGCGAGCACGCGTCCGTGGGTGACCCCAAGCGCCTGAAGGCGGTGCTGCGCGCCTTCGCGGGCGCCGGTGTCGAGGTCGGCGTGCCCATGGCGGCGAAGGTCGCCGCGGCGGCCAGCTCCTCCACCAAGACCCAGACGCGGGCCAAGGCCCCGGCGTCGACGTCGGCTGCCAAGAAGTCGACGTCGTCGGCGGACGCGCCCGCGGACGACGCGCCCGCCGACGACAGCGGCTCGACGACGTCGACGACGAAAAAGCCGGCGGCCAAGAAGCCCGCCGCGAAGAAGACGGCGGCCAAGAAGCCGGCCGCGAAGAAGGCTGCCGGGACGGGCACGACCCGCAAGGCGGCCGCCAAGGCGCACAAGCCGGCCCCGGAGCCCGACGGCGTCCCCGTCGAGGACGAGGAGTCCGGCGACCAGCAGCGCGAGATCCACGTCACCGGCATCAAGCTCGGCCGGGGCAAGAAGGACGAGGAGGGCGGCGGCTTCGTCGTCTCCGACACCGACGACGAGGACCAGCCCGCGCAGCAGGTCGTCACCGCCGGCGCCACGGCCGACCCGGTCAAGGACTACCTCAAGCAGATCGGCAAGGTCGCGCTGCTGAACGCCGAGCAGGAGGTCGAGCTCGCCAAGCGCATCGAGGCCGGTCTGTTCGCCGAGGAGCGCCTCGCCCAGGACTACGCCGACTTCGACCGCACCAAGGCCACGGCCGACGAGCGCAAGATGTGGCGCGACCTGCGCTGGATCGCGCACGACGGCCGCCGCGCCAAGAACCACCTGCTCGAGGCGAACCTGCGACTCGTCGTCTCGCTCGCCAAGCGGTACACCGGCCGCGGGATGCTGTTCCTGGACCTCATCCAGGAGGGCAACCTCGGTCTGATCCGCGCGGTCGAGAAGTTCGACTACACCAAGGGCTACAAGTTCTCGACGTACGCCACCTGGTGGATCCGGCAGGCGATCACCCGCGCGATGGCCGACCAGGCCCGCACCATCCGTATCCCGGTGCACATGGTCGAGGTCATCAACAAGCTCGCCCGCGTGCAGCGCCAGATGCTCCAGGACCTGGGCCGCGAGCCCACGCCGGAGGAGCTGGCCAAGGAGCTCGACATGACGCCCGAGAAGGTCGTCGAGGTCCAGAAGTACGGTCGCGAGCCCATCTCGCTGCACACCCCGCTCGGCGAGGACGGCGACAGCGAGTTCGGTGACCTCATCGAGGACTCCGAGGCGATCGTGCCCTCGGACGCGGTGTCGTTCACGCTGCTGCAGGAGCAGCTGCACCAGGTGCTCGACACGCTCTCCGAGCGCGAGGCCGGCGTCGTCTCCATGCGGTTCGGCCTGCAGGACGGCCAGCCCAAGACGCTGGACGAGATCGGCAAGGTCTACGGGGTCACCCGTGAGCGGATCCGCCAGATCGAGTCCAAGACGATGTCGAAGCTGCGCCACCCGTCGCGCTCGCAGGTCCTGCGCGACTACCTCGACTGA	MASTAQNPPLPREFDHPALQELLDRGTANGRVDAESFRSACEHASVGDPKRLKAVLRAFAGAGVEVGVPMAAKVAAAASSSTKTQTRAKAPASTSAAKKSTSSADAPADDAPADDSGSTTSTTKKPAAKKPAAKKTAAKKPAAKKAAGTGTTRKAAAKAHKPAPEPDGVPVEDEESGDQQREIHVTGIKLGRGKKDEEGGGFVVSDTDDEDQPAQQVVTAGATADPVKDYLKQIGKVALLNAEQEVELAKRIEAGLFAEERLAQDYADFDRTKATADERKMWRDLRWIAHDGRRAKNHLLEANLRLVVSLAKRYTGRGMLFLDLIQEGNLGLIRAVEKFDYTKGYKFSTYATWWIRQAITRAMADQARTIRIPVHMVEVINKLARVQRQMLQDLGREPTPEELAKELDMTPEKVVEVQKYGREPISLHTPLGEDGDSEFGDLIEDSEAIVPSDAVSFTLLQEQLHQVLDTLSEREAGVVSMRFGLQDGQPKTLDEIGKVYGVTRERIRQIESKTMSKLRHPSRSQVLRDYLD				NA	NA	NA	NA	NA
AK001_03043	768			hypothetical protein	ATGCGTCTGCTCGGAAGGGTCGTCAGGTTCGCGTTCGCGATCGTCGCCGCGGCGTTCCTCGCTGCCGCGGCGTCCGCGCCGGCCGCCGCGGCGGACGTGTCGCCCGGCCCCGGCCAGCCGAGGGTCGACGGCTTCGTGACGGTGAACGGCGACGTGGCGCCGCCGGGCCTGCGCGTCGCGGTCGTCGCCCTCGACGGCGACCAGGAGACGCGGTGCGGCGACTTCGTCACCGGCGAGGGGGCCACGTTCGAGCTCATCCTTCCCGCCGAGTGCGGCCCCGGCGCGACCGCCGTGTTCCGTGTCGACACCGGGACCCAGTCCGACACCGTCGTCGAGATCACCGAGGACCAGCGGTTCACGACCACCGTCGACTTCCAGCTCTCGGCCACGGAGCTGGTGTCCCTCGGGATCCAGCCGAGCACCACGCCCGAGGTCGCGGTGATCTCCAGCTCTCCCCTGCAGGGGACGGACCTGCGCGTCGTCGTGCTGAGCACCGTCATCCCGGCGACCCTGCTGCTGGTCGTCATGGTGCTGATGAAGGCCAGCTTCTGGCGACGCGGCACGTCCTCCGGCGGCGGGTCGACGCCGGAGGACAAGGGGGACGGCACCTACCGCTCCCAGATCGAGGGCATGGTCCTGGTGATGGTGGTGCTCGCGGTCATCCTGCTGGGAGTCACGGACAAGATCGGCTCCGACGGACTCGTCTCGGTCCTGGCGGCCATCGTCGGGTACACGGTGGGCCGGCAGGTCGGCGCCCGGTCGACGTGA	MRLLGRVVRFAFAIVAAAFLAAAASAPAAAADVSPGPGQPRVDGFVTVNGDVAPPGLRVAVVALDGDQETRCGDFVTGEGATFELILPAECGPGATAVFRVDTGTQSDTVVEITEDQRFTTTVDFQLSATELVSLGIQPSTTPEVAVISSSPLQGTDLRVVVLSTVIPATLLLVVMVLMKASFWRRGTSSGGGSTPEDKGDGTYRSQIEGMVLVMVVLAVILLGVTDKIGSDGLVSVLAAIVGYTVGRQVGARST				NA	NA	NA	NA	NA
AK001_03044	294			hypothetical protein	GTGACCCGAACCGTGATTCGCCGGGAGCGAACCGGGCCCCCGTCCGGGAAGAATTCACGGGCGAGATGGTTTGATGGTGGCGTGAGCACTACGACCGAAGACACGACCCAGATGACCGCCGCCGACCGCTGTGACCGCTGCGGGGCCCAGGCCTACGTGCGTGTCGAGCTTCCCAGCGGGGAGCTGCTGTTCTGCGGCCACCACGCCCGTGCCCACGCCGACGCCTACCAGTCCGTGGCCACGCACATCCAGGACGAGACCGATCGTCTGCACGCCGAGCACGGCGCCGGCTGA	MTRTVIRRERTGPPSGKNSRARWFDGGVSTTTEDTTQMTAADRCDRCGAQAYVRVELPSGELLFCGHHARAHADAYQSVATHIQDETDRLHAEHGAG				NA	NA	NA	NA	NA
AK001_03045	2133	gyrB_2	COG0187	DNA gyrase subunit B	GTGCGCGTGACAGCCACGTCCGAGTCCGGTTACACCGCACGCCATCTCTCCGTCCTCGAGGGCCTCGAGGCGGTCCGCAAGCGACCCGGCATGTACATCGGGTCGACCGACTCCCGCGGCCTGATGCACTGCCTGTGGGAGATCATCGACAACTCCGTCGACGAGGCGCTCGGCGGCCACGCCACCGCGATCCGCGTCGTCCTGCACGCCGACTCCTCGGTGACCGTCGAGGACGACGGCCGCGGCATCCCCGTGGACGCCGAGCCCAAGACGGGCCTGTCCGGCGTCGAGGTGGTCTTCACCAAGCTGCACGCCGGCGGCAAGTTCGGCGGCGGCTCGTACACGGCCTCCGGCGGCCTGCACGGCGTGGGCGCCTCGGTCGTCAACGCCCTGTCCTCGCGCCTCGACGTCGAGGTCGACCGCGGCGGCAAGACCTACGGCATGCGGTTCCACCGCGGTGAGCCCGGCACGTTCGCGGACCCGGCCACCGGTCCGACGCCGGAGGCCCCGTTCGAGCCGTTCGTCGACCACTCCGAGCTCGAGGTCGTGGGCAAGGCGCCGCGCAAGCGCACCGGCACCCGCGTGCGCTACTGGGCCGACCGGCAGATCTTCCCGAAGTCGGCGGTGTTCTCCTACGACGAGCTGGTCACGCGGGCGCGCCAGACGACGTTCCTCGTGCCGGGCCTGCAGATCACCGTGCGCGACGAGCGCGGCCTGCCGGGCACGCCGGGGGAGTCCGGCCCGCACGAGGAGGTCTTCCAGCACTCCGGCGGCGCCGTGGACTTCGTGGAGTTCCTCGCGCCCGACACCCCCGTCACCTCGACGTGGCGGTTGCAGGGCTCGGGCTCCTTCACCGAGACGGTGCCCGTCCTGGACTCCAAGGGCCACATGACCTCCCAGGAGGTCAAGCGCGACTGCGAGGTCGACGTCGCGCTGCGGTGGGGCGTCGGCTACGAGACCGAGCTGCGCACCTTCGTCAACATCATCGCCACGCCCAAGGGCGGCTCGCACCGCACCGGGTTCGAGCAGGGGCTGCTCAAGACCATCCGCAAGCAGGTCGAGGCGAACGCACGCCGGCTGAAGGTCTCCACGAAGGACTCCGCCGAGCGCATCGAGAAGGACGACGCGATGGCCGGCATGACGGCCGTGGTCACCGTGCGCCTGGCCGAGCCGCAGTTCGAGGGCCAGACCAAGGAGGTCCTCGGCACCGCGCCGGTGCGCCAGATCGTCTCGCGCGTGGTGGAGAACGAGCTCAAGGCGCTGCTGACGTCGACCAAGCGCGACGACAAGGCGCAGTCCGCGCTGCTGCTGGACAAGGTCGTCGCCGAGATGCGCGCGCGGGTCACCGCCCGGAAGCAGAAGGAGATCTCGCGGCGCAAGAACGCCCTGGAGTCCTCCTCGCTGCCGGCCAAGCTCGCCGACTGCCGCAGCGACGACGTCGAGCGCTCCGAGCTGTTCATCGTCGAGGGCGACAGCGCCCTCGGCACGGCCAAGCTGGCCCGCTCGTCGGACTTCCAGGCGCTGCTGCCGATCCGCGGCAAGATCCTCAACGTCCAGAAGGCGTCGATCAGCGACATGCTGCGCAACGTCGAGTGCGCCGCGATCATCCAGGTGCTCGGCGCCGGGTCGGGTCGCTCGTTCGACCTGGACGCCGCGCGGTACGGCAAGGTCGTGCTGATGACCGACGCCGACGTCGACGGCGCGCACATCCGCACGCTGCTGCTGACGCTGTTCTACCGGTACATGCGCCCGCTGCTCACCGAGGGCCGCGTCTTCGCCGCCGTGCCGCCGCTGCACCGGATCGAGGTGCTCGGCTCGGGCCGCCGCAAGGGCGAGTACCTGTACACCTACTCCGAGGCCGAGCTCAACGCGACGCTGAAGAAGCTCGACAAGGCCGGCCGCCGCTACAAGGACGACATCCAGCGGTACAAGGGTCTGGGCGAGATGGACGCCGACCAGCTCGCCGAGACGACGATGGACCCGCGCCACCGCACGCTGCGCCGGGTGACCGTGGAGCACGCCGAGGCCGCCGAGCGCGTCTTCGACCTGCTCATGGGGTCCGACGTCGCGCCGCGCAAGGAGTTCATCGTCGCCGGGGCGAATGCCCTGGACCGCGCCCAGATCGACGCCTAA	MRVTATSESGYTARHLSVLEGLEAVRKRPGMYIGSTDSRGLMHCLWEIIDNSVDEALGGHATAIRVVLHADSSVTVEDDGRGIPVDAEPKTGLSGVEVVFTKLHAGGKFGGGSYTASGGLHGVGASVVNALSSRLDVEVDRGGKTYGMRFHRGEPGTFADPATGPTPEAPFEPFVDHSELEVVGKAPRKRTGTRVRYWADRQIFPKSAVFSYDELVTRARQTTFLVPGLQITVRDERGLPGTPGESGPHEEVFQHSGGAVDFVEFLAPDTPVTSTWRLQGSGSFTETVPVLDSKGHMTSQEVKRDCEVDVALRWGVGYETELRTFVNIIATPKGGSHRTGFEQGLLKTIRKQVEANARRLKVSTKDSAERIEKDDAMAGMTAVVTVRLAEPQFEGQTKEVLGTAPVRQIVSRVVENELKALLTSTKRDDKAQSALLLDKVVAEMRARVTARKQKEISRRKNALESSSLPAKLADCRSDDVERSELFIVEGDSALGTAKLARSSDFQALLPIRGKILNVQKASISDMLRNVECAAIIQVLGAGSGRSFDLDAARYGKVVLMTDADVDGAHIRTLLLTLFYRYMRPLLTEGRVFAAVPPLHRIEVLGSGRRKGEYLYTYSEAELNATLKKLDKAGRRYKDDIQRYKGLGEMDADQLAETTMDPRHRTLRRVTVEHAEAAERVFDLLMGSDVAPRKEFIVAGANALDRAQIDA	PGPT0027710_1135	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622	NA	NA
AK001_03046	1212	hipO	COG1473	Hippurate hydrolase	ATGACCGCGAGCGCCAGCGGCCCGGCCACCCCCGGCCCGGGCGACGTGCCCGCGGCGCTCGTCGACCGGGTCCGCGCCTGGCGCCACGACCTGCACCGCATCCCCGAGACGGCCTTCGACGAGCACGCCACCGCCGACTACGCCGCCCGCGTGCTCGACGGGCTCGGGTACGACGTCGTCACCGGCGTGGGCGGCACCGGAGTGGTCGCCTCGCTGACGCGCGGGTCCTCGACGCGGACCGTGGGGCTGCGCTCCGAGCTGGACGGGTTGCCGATCACCGAGGCGAGCGGCGTCGAGTACGCCTCGACCCATCCGGGCGCGATGCACGCCTGCGGCCACGACGGGCACCTGGCGATGCTGCTGGGTGCCGCCGCGCTGCTCGCCGAGGACGGCGGCTTCGACGGCACCGTCCGGGTAATCCTGCAGCCGGCGGAGGAACCCGGGCGCGGGGCGCGGGCGATGCTCGAGGACGGGCTGTTCGCGCGGTTCGGCGTCGACAGGCTGTTCGGGATCCACAACATCCCGGGCCTGCCCGCCGGGACCCTGCACACCCGCCCCGGACCGATCATGGCCGGCGAGGACAACTTCACCATCGCGGTCCGCGGACGCGGGGGCCACGCCTCGGCACCGCACCTGGTGGTCGACGCGCTCGTGGTGGCCGCCGAGATCGTCGTCGCGCTGCAGCACGTCGTGGCACGCAGCGTCGACCCCGTGCACACCGCCGTGCTGTCCTGCACCGACCTGCGCACCGACGGGGCGCGCAACGCCATCCCGACGCACGCCACGATCACCGGCGACACCCGCAGCTTCGACCCGGACGTCAGCGCCCTGCTGGAGCGCCGCATCCTGCAGATCAGCCAGGGCGTCGCCGCCGCGCACGGCGCCGCGGTCGACGTCGAGTACACCCACGAGTTCGAGCCGACCGTGAACGACGCCGGCGCCGTCACGCTGGCCGGGCGCGCGGCGCGGCGGGCTCTCGGCGTCGCGCAGGTCGACGTGGCCGCCGCACCGATCATGGGCAGCGAGGACTTCGGGGTGCTGGCCCGCCGCGTGCCGGCGTGCCTGGTGTTCCTCGGCAACGGCACCGCGCCCGGGGCGGGCGGGGTGCCGCTGCACAGCGCCGACTACGCGTTCAACGACGACGTGCTGGCCGCCGGCATCGCCTTCTACCGCGAGGCCGTCGTCGAGAGCCTGGCCGCACCGACCCCTTAG	MTASASGPATPGPGDVPAALVDRVRAWRHDLHRIPETAFDEHATADYAARVLDGLGYDVVTGVGGTGVVASLTRGSSTRTVGLRSELDGLPITEASGVEYASTHPGAMHACGHDGHLAMLLGAAALLAEDGGFDGTVRVILQPAEEPGRGARAMLEDGLFARFGVDRLFGIHNIPGLPAGTLHTRPGPIMAGEDNFTIAVRGRGGHASAPHLVVDALVVAAEIVVALQHVVARSVDPVHTAVLSCTDLRTDGARNAIPTHATITGDTRSFDPDVSALLERRILQISQGVAAAHGAAVDVEYTHEFEPTVNDAGAVTLAGRAARRALGVAQVDVAAAPIMGSEDFGVLARRVPACLVFLGNGTAPGAGGVPLHSADYAFNDDVLAAGIAFYREAVVESLAAPTP				NA	NA	NA	NA	NA
AK001_03047	1038	ygeX	COG1171	Diaminopropionate ammonia-lyase	ATGATGGGCCACGTGACCCGATGGTTCAGCGCACCCGACGCCCGCACCTGGAACGCGCCGACGACGCACGACAGCCCGCGCGACTTCCACCGCACGCTGCCCGGCTACTCCCCCACGCCGCTGGTCGAGCTCCCCGAGCTCGCTACCGAGCTCGGCGTGGGTCGCTTGTTCGTCAAGGACGAGTCGTCCCGGCTCGGTCTGCCCGCCTTCAAGATCCTCGGCGCCTCCTGGGCCTGCCGGCAGGTGCTGGAACGGCAGCCCGGCGCGGAGCTCGTCACGGCGACCGACGGCAACCACGGCCGGGCCGTGGCCCGCACGGCCCACCAGCTCGGCGTCCCCGCGACGGTCTTCGTGCCCGACGTCATGGAGCAGGCGACCCAGGCAGCCATCGAGGCCGAGGGGGCACGCGTCGTGCGGATCGACGTCGGGTACGACGACGCGGTCCGGGCCGCAGCGGACTACGCGGACGCCGCGGACACCCGGGCGCTGGTCCAGGACACCGCCTGGGAGGGCTACACCGACGTCCCCGCCTGGATCGTCGACGGCTACGGCACCCTGCTGGAGGAGATCGACGAGCAGCTCGGCCGCGCACCGGACCTCGTCGCGGTGCCGGTGGGCGTCGGCTCGCTCGCCGAGGCCGTCGTGCGCCACTACCGCCGTCCCGACGCCCCGCACCCAAGTGTGCTGTCCGTCGAGCCCGACACCGCGGCCTGCACGCTGGAGAGCCTCGCCGCAGACGAGTCCGTGACCGTCCCGACAGGCTCGACGGTGATGGCGGGCCTGAACTGCGGCACCGTCTCCAGCACCGCCTGGCCCGTGCTGCACGCCGGCTGCGACGCCGCCGTGGCCGTCGGCGACGACGAGGCCGAGCGGGCCGTGGCCGACCTCGCGGGGCTCGGCGTCTCGTCCGGTCCCAGCGGTGCCGCCACCCTCGCCGGGGTCCGCGCCGCGCTGTCCGACCCGGAGCGCCGCGACGCGCTCGACCTGCCGACGCACCCCGTCGTCGTCCTGCTCAGCACCGAGGGAGCCCAGGCATGA	MMGHVTRWFSAPDARTWNAPTTHDSPRDFHRTLPGYSPTPLVELPELATELGVGRLFVKDESSRLGLPAFKILGASWACRQVLERQPGAELVTATDGNHGRAVARTAHQLGVPATVFVPDVMEQATQAAIEAEGARVVRIDVGYDDAVRAAADYADAADTRALVQDTAWEGYTDVPAWIVDGYGTLLEEIDEQLGRAPDLVAVPVGVGSLAEAVVRHYRRPDAPHPSVLSVEPDTAACTLESLAADESVTVPTGSTVMAGLNCGTVSSTAWPVLHAGCDAAVAVGDDEAERAVADLAGLGVSSGPSGAATLAGVRAALSDPERRDALDLPTHPVVVLLSTEGAQA				NA	NA	NA	NA	NA
AK001_03048	513			hypothetical protein	ATGGCGGCACGGGGCAGGGCAGAGCGGGGCGCGCGGGCTAGGCTCGTGGACGTGAAGATCGTGATGCGTACGACGTCGACCCGCCTGCTGTCCGCCGCTGCTGCCGGTGCTCTGTCGGTCGGCCTGCTGGCCGCCTGCGGGCAGGACGACACTCCCGCCGCTGACCCCGCGGACACCTCGGCCTCCGTCACCGCCACGCAGGAGACGTCCGACGCCGAGGACTCCGCTGACGCGGAGGACGCCGAGGAGTCGGCCGAGGACGTCACCGAGCTCACCTACCCCGGCCAGGACGGGGAGACCGCCCTGGACCTGCTGCTCGAGGCCGACCCCGAGGCGGAGGTGACCGGCGAGGGCGACATGGCCTACGTGACCGGGATCCAGGGCCACGCGGCGGACGAGGACGAGTTCTGGGGCCTGTACGTCGACGGCGAGATGGCCCAGGTCGGTGCCGGCTCGCTGGAGACCGAGGACGGTCAGGAGATCCAGTGGACGCTGGAGGAGATCACCGAATGA	MAARGRAERGARARLVDVKIVMRTTSTRLLSAAAAGALSVGLLAACGQDDTPAADPADTSASVTATQETSDAEDSADAEDAEESAEDVTELTYPGQDGETALDLLLEADPEAEVTGEGDMAYVTGIQGHAADEDEFWGLYVDGEMAQVGAGSLETEDGQEIQWTLEEITE				NA	NA	NA	NA	NA
AK001_03049	615			hypothetical protein	ATGAGCCACGCACCTGCCGACGGCACGACGCCGGACCTGGGCCTGCGCGAGCTCGGCGAGCGCTGGTGGCGGCCCGCCGTCGCCGTGCTGCTCGTCGTGGCGGCGATCGTGTGGCGGGTCGTCAAGGACGACCTGGGCGCCCCGCCGAACCTGGAGCTGTCCACGGCGGCCGCGTTCGCGGCGGCCGGTCTGCTGCGGCACCGTCTGGCGATGCTCGCGCCGCTCGTCGTGGTCGCGATCAGCGACGTGCTGCTGACCAACTCCGCGATCCTGCTGTTCACGTGGACCGCGTGGGCCGCGATCGGCGTCGGCGCCTGGTGGACCCGCCGGTCGAGCGGCGGTCGCCGGGTCGTGGCCGCGCTCGGGTTCGGCGTCGGCTCCTCGCTGGTGTTCTACCTCTGGACGAACTTCGGCGTCTGGCTGCAGGGCCGCGGCACCTTCTACCCGGCGGGTCTGGACGGGCTGCTGGCCAGCTACGTGGCGGGGCTGCCGTTCCTGCGTCCCATGCTGCTCGGCAACCTCGTGCTCGTACCGGTCGCCGCCGCCGTCGTGGCGCTGGTGGAGCGGCTCGAGCGGGCTCACGCCGTCGGCGCGGTGGCGTCCTTCTCGCGGTAG	MSHAPADGTTPDLGLRELGERWWRPAVAVLLVVAAIVWRVVKDDLGAPPNLELSTAAAFAAAGLLRHRLAMLAPLVVVAISDVLLTNSAILLFTWTAWAAIGVGAWWTRRSSGGRRVVAALGFGVGSSLVFYLWTNFGVWLQGRGTFYPAGLDGLLASYVAGLPFLRPMLLGNLVLVPVAAAVVALVERLERAHAVGAVASFSR				NA	NA	NA	NA	NA
AK001_03050	912			hypothetical protein	ATGACTGGATCAGCGCCGCCCCAGCCGCTCTCCCCCACCCGAGGATTCCTCCTGGGCGCCGGTGCGGCCGTCGTCGGCCTGCTCCCCTGGGTCCTGGCCGGATGGCAGCCGTCGTGGCCGACCTACCCGAACAAGCCCGACCTCTTCGTCCACACGTTCCTGCCGTTCTCGCCGGACCTCCTCGCGCTCATGCTCGGGGTCGTCGTCCTGCCCGGCGCGATCGTCGGCGTCGCCCTCCGCCGTCGCGCCACAGCGATCCCGGGGCGCGTGGACGCCGCCGCGACCGCCGGACTGGTCCTGGTCATCGCCGGCGCGGCACTGCAGAGCGTCGCGGTGACGGCGCCGAGGCTCCGACCGGAGACGTCCGGTCTGCTCGATGTCGCCGTCGGCCTGGCTGCCGTCGCGGTCGCGCTCGCGATCTCCGTCCTCGTCTCCCGAGTACTGGCCCGCCGCACCGTGCCGGCCGCCACCGTCGCCGCCGCCGCTGGTGCCGCGGCTGCCGGGTACTGGCTCGAGAGCGTCCTGCACATCCCGTGGGTCTGGGGGCTTCAGCTACCGGACGAAGTCGTCGTCACGCTCGCCCTCATCACGCAGATCGTCCCCGCCGTCCTCCTCGGAGCCGCCCTGGCGTGGTGCGGCTGGACGCCCCGACGTCGGCTCTGGGCCTGGACGGTCGCCCTGCTGATCGTCTGGGTCGGTCAAGCCGTCCTGGACACGACGACGTACTGGTTCGTCACCACGCGGTCGATGGGTTCCTCGAGCCCCGCGCAGTACGTCGGCGTCGCCCTGGACGGCCTGGTCTGGAGCCTGCCGTACGCCGTCGCAGCGGTCCTGGTCGGTATCGTCGGCCGCCTCGTCCTACCCCGCCTCCAGCGCTACCGCGAGAAGGACGCCACCGCGCCGACGGCGTGA	MTGSAPPQPLSPTRGFLLGAGAAVVGLLPWVLAGWQPSWPTYPNKPDLFVHTFLPFSPDLLALMLGVVVLPGAIVGVALRRRATAIPGRVDAAATAGLVLVIAGAALQSVAVTAPRLRPETSGLLDVAVGLAAVAVALAISVLVSRVLARRTVPAATVAAAAGAAAAGYWLESVLHIPWVWGLQLPDEVVVTLALITQIVPAVLLGAALAWCGWTPRRRLWAWTVALLIVWVGQAVLDTTTYWFVTTRSMGSSSPAQYVGVALDGLVWSLPYAVAAVLVGIVGRLVLPRLQRYREKDATAPTA				NA	NA	NA	NA	NA
AK001_03051	951			Alcohol dehydrogenase	ATGCGTGCCTGGCGATTCCACGGGACCCACGAGCCGCTCACCCTCGAGGAGGTGCCGGAGCCCGAGGCCGGGCCCGGCGAGGTGGTCGTCGAGGTCAAGGCCGCCGGGGTCTGCCACTCCGACGTCAGCGCCCTCGACGACGAGACGTGGATGCCCCTGTTCCCCCAGCTCCCGGTGACGCCCGGTCACGAGAACGCCGGCGTCATCAGCCAGGTCGGTCCCGGCATGGAGCACTGGACGGTGGGCGACCGCGTCGGCCTCTCGCCGCTCACGGGCGACGGGTTCGCCCTCGGGTACGGCACGTGGGACGGCGGGTTCGGCGAGAAGCTGCGCGCCACCGACGAGAACCTGGTCCGGCTCCCGGACGAGGTCAGCTTCGAGATGGGCGCCATGGCCACCGACGCCGGCCTGACCTCGTACCACGCGATCGTCACCGCCGGTGGGCTCCAGCCCGGGATGCGGGTCGGCGTCATCGGCCTCGGCGGCCTGGGCTACATCGGCGCCCGCGTCGGCGTCCTCAAGGGGGCCGAGGTCTACGGCGCGGACATCAGCGCCGGTGCCCGCGAGCTCGCCGACGAGATCGGCCTGGCCGGGGTCGCCGAGTCCATCGAGGAGTTCGCGGACAAGAAGCTCGACCTCATCGTCGACTACGCCGGGTTCGGCACCACCACGACCGGAGCGCTGAACACGCTGGCCGAGTTCGGCACCTTCGTCCAGGTCGGCATGGGCAAGCTGGAGTTCGAGATCAGCACCTACCCGATCATCATCAACCAGCTGACGATCAAGGGCTCGAAGTCCGGCACCAAGCAGGACCTCGTCGAGCTCTACGACCTCATGCGGTCCGGCGACCTCAACCCGCCGGTCAACCACATCACCCACGACGAGATCCCCGCGGCCATCGACCGGCTGCGCGAGGGCGGCGTCGTCGGACGGCTCATCGCCACCTACTGA	MRAWRFHGTHEPLTLEEVPEPEAGPGEVVVEVKAAGVCHSDVSALDDETWMPLFPQLPVTPGHENAGVISQVGPGMEHWTVGDRVGLSPLTGDGFALGYGTWDGGFGEKLRATDENLVRLPDEVSFEMGAMATDAGLTSYHAIVTAGGLQPGMRVGVIGLGGLGYIGARVGVLKGAEVYGADISAGARELADEIGLAGVAESIEEFADKKLDLIVDYAGFGTTTTGALNTLAEFGTFVQVGMGKLEFEISTYPIIINQLTIKGSKSGTKQDLVELYDLMRSGDLNPPVNHITHDEIPAAIDRLREGGVVGRLIATY	PGPT0006365_3065	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953	NA	NA
AK001_03052	666			hypothetical protein	GTGACTGCTACCGACGCTACCGACACCCGCCTCGAGATCGAGGTCTGGTCCGACGTCCTGTGCCCGTGGTGCTACATCGGCGACGCGCGCCTCGAGGCCGCGATCAACGACTCGCCCCAGGCCGACCGTATCGACGTGAAGATCCGCACCTTCCAGCTCGACCCCGACTTCCCGGCCGAGCCGACGCCCGCCGTCGACTACCTCTCGGCGAAGAAGGGGCTGCCGGTCGAGCAGGCTCGCCAGATGGAGGACCAGGTCGCCGACCTGGCCCGCGCCGAGGGGCTCGCCTACGCACCGAACCACCCGGTGCAGAACACCCTGGACATGCTGCGCCTGGTGCACCTGGGCAACGAGCACGGGGTGGGCTGGCAGTACATGACGGGCATGCAGGCGGCCCTGTTCAGCGGCGACCCCGAGGCGTTCGCCGCCGACACCCTGGTGCGGCTCGGCACCGAGCTGGGCATCCCCGAGGCCGAGATCCGCGACGTGCTCGCCGGCGACCGCTACGCCGACGCGGTCCGCGCCGAGCACGACGAGGCGATCGCACTGGGCGCTCGCGGTGTGCCGTTCACCGTGCTCGGACGCCGCCTCGGGATCCCCGGCGCCGTGCCGACCGAGGCCTACGGCCAGGCGATCGCGCAGGCGTGGGAGCAGGTCGATGCCTGA	MTATDATDTRLEIEVWSDVLCPWCYIGDARLEAAINDSPQADRIDVKIRTFQLDPDFPAEPTPAVDYLSAKKGLPVEQARQMEDQVADLARAEGLAYAPNHPVQNTLDMLRLVHLGNEHGVGWQYMTGMQAALFSGDPEAFAADTLVRLGTELGIPEAEIRDVLAGDRYADAVRAEHDEAIALGARGVPFTVLGRRLGIPGAVPTEAYGQAIAQAWEQVDA				NA	NA	NA	NA	NA
AK001_03053	180			hypothetical protein	ATGCCTGATCGCGCCGGAGGGCCGCTGACGTTCGTGACGGCGGACGACGCCGCGGTGTGCGACCCGGTCACCGGCGTCTGCTCGCCCGTGGCCGGGCAGGCCGGCGAGACCGAGGCGGCGCCGCGTGCGGTGGACGGCGACGACGGCGACCCCGACCTCGATACCCCTAGGGGTATCTAG	MPDRAGGPLTFVTADDAAVCDPVTGVCSPVAGQAGETEAAPRAVDGDDGDPDLDTPRGI				NA	NA	NA	NA	NA
AK001_03054	357	glpE		Thiosulfate sulfurtransferase GlpE	ATGCTGGGAATCGGGCTGGCGCTGGCGGGGACCGTGGCGCTCGCCGCGTGCGCGCCGTCGGGCGACGGCGAGACCGCGACGCTGGAGACCGGGACGGTGGTGATCGACGTCCGCACGCCGGCCGAGTTCGCCGACGGCCACCTCGAGGGTGCGCTGAACATCGACGTGCAGTCGCCGGACGCCACCCAGCAGCTCGCCGACCTCGACCCGGACGGCTCGTACGTCCTGTACTGCCGCTCGGGCAACCGCGCCGGCGCCGCGCTCGACTTCCTGCAGGCGCAGGGCTTCGACGACGTCGTCAACGCGGGAAGCGTCCAGGAGGCGGCCGACGAGACGGGCCTCGCGATCGTCGACTGA	MLGIGLALAGTVALAACAPSGDGETATLETGTVVIDVRTPAEFADGHLEGALNIDVQSPDATQQLADLDPDGSYVLYCRSGNRAGAALDFLQAQGFDDVVNAGSVQEAADETGLAIVD	PGPT0014648_368	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014648-pspE-K03972	NA	NA
AK001_03055	1458			hypothetical protein	ATGACCGCTCGCTCCGTGGCTCCGTTCTACGGCCGCTCGGACATCGTCGCGACGCTGACCAAGCATCTCGACGCGGTCCAGACCCATGGGCAAGGACGCATCGTCGCGGTCCGAGGTCGCCGCCAGGTCGGCAAGTCCACGGCGATCGACACCTTCGTCCGCGGCACCGCCGTGCCGTACGTCTTCGCCGCAGGAACACTCGGCGCGCCGACGCGCACCCAGGTCGCCGAAGCGACCGAGGCGCTCACATCGTCGACCCGACCGCTGCCCGGCACCGAGATGGTCGGGGGTCTCCCCCTGCGCACGTGGCGCGACTGGTTCCGCGCGGTCGAGGCCGCAGCACGCCAGGGGCCGACCGTCGTCGTGCTCGACGAGTTCCCCTGGGCCGTCGCCGCCGACCCGTCTCTCGAGGGCACCCTCCAGAACCTCTGGGACCAGACACTGGAAGAGCTTCCGGTGCTGCTCATCCTGGTCGGGTCCGACGTCGCGATGATGGACCGGCTCTCCGAGTACGGCCGAGCGCTGTTCGGGCGCGTCTGCCCGCTCGTCGTCGACCCGCTCAACCCGGCAGAGATCGCCCAGGCGCTCCCCGACGCCACACCGACCGAGGTCTTCGACGCCTACCTCGTCACGGGCGGCTACCCCCGCCTCGTCACCGACCTCGCACGGTCGGGAGGCAGCGTGCCGCGGTACGTGGCCGATTCCTTCGCCGACCTGTACAGCCCGCTGGTCTCGACCGCACGGTTCACGCTCGACGCGGAGTTCCCCGACTCCCCCGCCGCTGCGCGGGTGCTGGCGGCGATCGGCGCGGACGAGACCACCACGCCGCGGTTCAACGACCTCATCCCCGCCGGCCTCGAGGACTCCGAGGTGACGCGCTACCAGACCAGCACCACCCGGGCACTGCGCGTCCTGACTGACGACAAGCGGCTCGTTACGAAGGAGGTTCCCGCCTGGTCGCCGCAGAGGGGACGGCTACGGCGGTACCGCGTCACCGACCCGTATCTGCGCTTCTGGTTCCGCTACGTGGAGCGGAGCCTGGAGCTGATCTCTCGCGGACGGGCCGACCACGCCTTCGGTCGCTTCCAGCGGGACTGGTCGTCCTGGCGAGGGCGCAGCATCGAGCCCGTCGTGCGCGAGTCCTTCGCGCGCCTCGCTCCGGACGACGCTCGCCTCGAGAGCATCGAGGGCGTCGGCGCCTGGTGGACCCGTGACGGGCAGACCGAGGTCGACCTCGTCGGGACGTCCCGCGAGCGCACCGTTCTGCTCGGGACCATCAAGTGGCGCCCCGACGGCGAGATCTCCCGCCGCGAGATCACGCACCTGCGCAGCGTCACCGGCACGGTGCCACGCAGCAGCGACGCCCTCATCGCCGCCATCAGCCCCGGGGGACGACCGGTCGACGGCGCCGATCTCACGTTCGGCGCGGCCGACCTGCTCGGCGCCTGGCCGGTCTGA	MTARSVAPFYGRSDIVATLTKHLDAVQTHGQGRIVAVRGRRQVGKSTAIDTFVRGTAVPYVFAAGTLGAPTRTQVAEATEALTSSTRPLPGTEMVGGLPLRTWRDWFRAVEAAARQGPTVVVLDEFPWAVAADPSLEGTLQNLWDQTLEELPVLLILVGSDVAMMDRLSEYGRALFGRVCPLVVDPLNPAEIAQALPDATPTEVFDAYLVTGGYPRLVTDLARSGGSVPRYVADSFADLYSPLVSTARFTLDAEFPDSPAAARVLAAIGADETTTPRFNDLIPAGLEDSEVTRYQTSTTRALRVLTDDKRLVTKEVPAWSPQRGRLRRYRVTDPYLRFWFRYVERSLELISRGRADHAFGRFQRDWSSWRGRSIEPVVRESFARLAPDDARLESIEGVGAWWTRDGQTEVDLVGTSRERTVLLGTIKWRPDGEISRREITHLRSVTGTVPRSSDALIAAISPGGRPVDGADLTFGAADLLGAWPV				NA	NA	NA	NA	NA
AK001_03056	447	arfB	COG1186	Peptidyl-tRNA hydrolase ArfB	ATGCCCTCACCGACCCGCGACGGACTCGTCGTCAGCCCGTCCCTGACGATCCCCCGCGCCGAGCTGACCGAGCGGTTCTCGCGGTCATCCGGTCCCGGCGGGCAGGGCGTGAACACCACCGACTCGCGGGTGGAACTGTCCTGGGACGTCGGCCGCTCGGCCGTGCTGAGCCGCGCCCAGCACGAGCGGATCGTCACCCGGACAGGTCACCGGCTCGTCGACGGCGTCCTGACGGTCACCGCGTCCGAGCACCGCGAGCAACGGCGCAACAGGGTCGCGGCAGCCCATCGGCTGGCGGCACTCGTCGCCGACGCCGTCGCACCGCCTGGCCCCCGCCGTCGTCCGACCAAGCGCACCCGTGGGTCCCAGGAGCGCCGGCTCACAGCCAAGAAGCAGCGCTCCGCGACCAAGCGGATGCGCTCGTCCCGGCCGTCGCGGGACGACTGA	MPSPTRDGLVVSPSLTIPRAELTERFSRSSGPGGQGVNTTDSRVELSWDVGRSAVLSRAQHERIVTRTGHRLVDGVLTVTASEHREQRRNRVAAAHRLAALVADAVAPPGPRRRPTKRTRGSQERRLTAKKQRSATKRMRSSRPSRDD				NA	NA	NA	NA	NA
AK001_03057	777			hypothetical protein	ATGGCGACCACCGAACCGACCGGACCCAGTACGGCGCAGGCCGCTGCGAGACGCGACTTCCCGTTCTACGCCGGCGACCCGGTGCTGCTGCGGGGCCGGCAGTGGACGGTCGTCCTGCTCGCCGTGGCCGTCGCCTTCGCGCTGCTCGCCCTGCTGCCGGTGCCCGGCCCGCCGCTGCTGGGTCAGTGGGTCCGCGCCCTGCTGTTCATGGCGGTCCCGTTGGCGGCTCTCGCCCTGGTGGCCGGCCGGCACTGGACGGCGTTGTTCCACCGGGTCGGGTGGAAGGACGTCGGCCTGATGGTCGGCTTCGCCGTGCTGAACACGCTGGTCACGCTGGCCATCGGTGCGGTGGTGATCTCGGCGTCGGGCGCCGAGGCGAACCCGGTGGGCGGTGCGCTCCAGGACATGGGGACCGGCGAGCGCGTGCTGATGTTCACCTCGATGATCCCTCAGCTCATCGGCGAGGAGCTGCTGACGATCCTGCCGTTCCTGGCGCTGCTGTACCTGGGTGTGACCAAGCTCGGCCGCTCCCGGCGCGCCACCATCATCGTCGCGTGGCTCGGCACGGCGCTGCTGTTCGGGGCGGTCCACCTGCCCACCTACGACTGGAATCTCGTCCAGTGCTTCGTCGTCATCGGCATCGCGCGCGTCGTCCTGACCATCCCGTTCCTGATCACCAAGAATCTCTGGGTCAGCGCCGGCGCACACATCCTCAACGACTGGCTGCAGTTCGGCTTCGGTCTCCTCATGGGTTCCGCGCTGTTGTTCGCCCTGTAA	MATTEPTGPSTAQAAARRDFPFYAGDPVLLRGRQWTVVLLAVAVAFALLALLPVPGPPLLGQWVRALLFMAVPLAALALVAGRHWTALFHRVGWKDVGLMVGFAVLNTLVTLAIGAVVISASGAEANPVGGALQDMGTGERVLMFTSMIPQLIGEELLTILPFLALLYLGVTKLGRSRRATIIVAWLGTALLFGAVHLPTYDWNLVQCFVVIGIARVVLTIPFLITKNLWVSAGAHILNDWLQFGFGLLMGSALLFAL				NA	NA	NA	NA	NA
AK001_03058	813			hypothetical protein	ATGCTGCTGGTGACGAGACGCGACGGCGCGAGACGTGGACGACTGGGATGGCCCGGGCTCGTGGGTGTCGTCGCAGCGTGGCTGATCCTGCCGGCGTTCGTGGTGCGGCTGGTTCTCCCGGCCGACCAGGTCGCCGGTGGGTACGCGACCGCCGGTAGCACCCTGGCATCGGAGGCTGCGGTCGACGTCGTCGCCGTCCTCCTCGTGGTCCTCGTCGTCTGGCGGCTGCACTGGTGGCGTCAGGTGTGGGTCGAACCACGGACGGTGAACCCGTGGGTGGCGATCGTCCCGGTCACGCTCCTCGTGTTCTGCGCTGCGGTCACCGACTACAGCAACCTCGCGACGCTGCCGGTACCGCTCCTGCTCGCGTTCACCGTGTCGATGGTGACGACCAGCGCGAGCGAGGAGCTGTTGTTCCGCGGGGTGGTTCTCCGATCGCTGCGCGACCGGTACCGCGAAGGCTGGGCCGTCCTGCTCATGTGCGTGCTCTTCGGCGCGCTGCACCTGGTGAACGTCGTCGCGGGTGCCGGAGCTGTCGGCCAGGCGCTGCTCGCGATGCCCGCCGGCTACCTGCTCTATGTCTGTCGGCGCGTCGGAGGCGGACTTCTGCTCCCGATCGTGGTGCACGCTGCCGTCGACTTCGCGGTGCTCAGCGGCGACGTCGGTCATGTTCGACCGCAAGACTCCGACGCGGTGTTCTACCAGTTCCTCGTCATGCTGGGCCTGGTGGTGCTCCTCCTGCTCGCGCGTCGCCGTATCGCTCGCTCCCCGAGCGGCTCGGACGGCCGGGGCGACGCGTCGCCGAGGACCTAG	MLLVTRRDGARRGRLGWPGLVGVVAAWLILPAFVVRLVLPADQVAGGYATAGSTLASEAAVDVVAVLLVVLVVWRLHWWRQVWVEPRTVNPWVAIVPVTLLVFCAAVTDYSNLATLPVPLLLAFTVSMVTTSASEELLFRGVVLRSLRDRYREGWAVLLMCVLFGALHLVNVVAGAGAVGQALLAMPAGYLLYVCRRVGGGLLLPIVVHAAVDFAVLSGDVGHVRPQDSDAVFYQFLVMLGLVVLLLLARRRIARSPSGSDGRGDASPRT				NA	NA	NA	NA	NA
AK001_03059	258			hypothetical protein	ATGCGTCGCTGGCATGCTGTGCGCATGGCCCTCGTCAGCGCTCCCTCACCGTTCAGCGCGCGGGCGCACGGTCCCGGGTACTGGTTCGGCTCGGCGGCCGTCGCCGTCGCTGTCGCGCTCCTCGTGATCCTGCTCGACCTCGTCGAGGGTGAGCACGTCGCGTTCTGGGGTCCCCTGGTGGTCGCGGCGTTCGCCGTCGTGCAGGGCGTCCGATCGGTCGTGCTCCGACGTCGCGGTACGACGGGCGACGGTGACTGA	MRRWHAVRMALVSAPSPFSARAHGPGYWFGSAAVAVAVALLVILLDLVEGEHVAFWGPLVVAAFAVVQGVRSVVLRRRGTTGDGD				NA	NA	NA	NA	NA
AK001_03060	783	drrA_4		Daunorubicin/doxorubicin resistance ATP-binding protein DrrA	GTGACTGACCGCGCCCCCGACGCCCTCGCGGTCCGGGTCACCGGTCTGGTCAAGACGTTCGGCCGGAGACGAGCGGTCGACGGTCTCGACCTGTCCGTGCCCCGTGGGTCGTTCTACGGCCTCGCCGGTCCGAACGGGGCCGGGAAGACGACCGCGATCCGCATGATGACCGGGCTGCTGCGACCGGATGCGGGCACCGTGCGTGTCGGGGACGTCGAGGTCTGGCCCCGGCCGATCCTGGCCAAGACGCGACTGGGTCTCGTGCCGGACAACCCGGTCCTCTTCGACCGCCTCACGGGGCGGGAGATGCTGGAGTACGCCGGCCTGCTCCGCGGGATGCCTGCGGCTGTCGTCGCGGACCGTTCTGCCGAGCTCCTGCGGGTCCTGGCGCTGGAGGAGGCCGCCGACCGTGTCATCGCGGACTACTCGCTCGGCATGACCAAGCGGATCGGTCTCGCGGTCGGCGTCCTGCACGCGCCGGAGGTGCTCGTCCTGGACGAACCGTTCGGCTCGCTGGACCCCGTCAACACCACGGTCATGGAGGAGATGCTGCACCGCTTCCGCGAGGGTGGCGGCACGGTGATCTTCTCGAGCCACGTGCTGGACGTGGTCCAACGGCTCTGCGACCACGTCGCGATCGTCGAGGACGGGCGACTGCGGGTGGAGGGCACGCCGGACGAGCTCGCAGGTGGCTCGACCCTGCAGGAGGCCTTCGTCGACCTCGTCGGACGTCGCGACATCGCTGAGGGTGAGCTCGGATGGCTCTCGTCGTCCTCCGCCTGA	MTDRAPDALAVRVTGLVKTFGRRRAVDGLDLSVPRGSFYGLAGPNGAGKTTAIRMMTGLLRPDAGTVRVGDVEVWPRPILAKTRLGLVPDNPVLFDRLTGREMLEYAGLLRGMPAAVVADRSAELLRVLALEEAADRVIADYSLGMTKRIGLAVGVLHAPEVLVLDEPFGSLDPVNTTVMEEMLHRFREGGGTVIFSSHVLDVVQRLCDHVAIVEDGRLRVEGTPDELAGGSTLQEAFVDLVGRRDIAEGELGWLSSSSA	PGPT0006725_20764	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_03061	1554			hypothetical protein	ATGGCTCTCGTCGTCCTCCGCCTGAAGCTGGCACTCCAGCGCCGGGCGTGGGGATCCTCCCCCGGTCTCCGCCGAGCGAGCTTCGTGGCCGGATGGCTCCTGAGCCTGCTCGCAGGGGTCGCTGTGGCCGAGCTCGTCGCAGTCGTACAGCGCGACGGCGGCGAGGCCGGCGGCCCCACGCTGGTCCTCCTGCTCACCTCCATCTACCTCTGCTGGGTCGTGCTGCCGGTCCTCGTGCCCGGACTCGCCGACACCTCGGTGGATCCGGAGAAGCTCGCGCCCTTCCCGGTGCGGAGTCTCGATCAGGCGCTCGGCCTGACGCTCGGCGCGCTGCTGAGCCCGACGGCGTTGTTCACGTTGCTCGCGGCCGTGGGCGGCGCGGTCGACGGCTCGCTCCTCCCGGCCGTCGCCGTCGTCGGCCTGGCACTCGTCTACGTCGTGCTGTGCGTCACGAGCTCGCGCGCGGTACAGGCGCTGCTCGCCGGACTGCTGCACCGCCGACGCGCGCGCGAGGTGATCGCCGGCACCGTCGTCGTGCTGGGCGCGCTCGCGGTGGTGGTCACGCGGGCGGCGTCGCGGGACGACGGAGCCGTCCAGCTGCTCCTCGACCCCCGGTTCACCGGCGTCGCGGGCTGGATGCCCCCGGGGGCGATGGCCGAGGCGATCGCAGCGGCACGCGATGCTTCCTGGGCGACCGCGGCCACGCACGCCGCCGTGGGTGTGGCGGCGGTGGCGGTCGCGCTGGCCGCATGGACCTGGGCGATCGGGACCTCGGCCGACCGCACGTCCACGGGCCCCCGGCAGCGACGGGAGGGTGTGGGCCGCTCCGAGCAGCTGCACCTCACCGTGTGGCCGCTGAGCCTCGTGCCGCCGCACCCGGCCGTCGCCGCCGCGTCCCAGCAGGTGCGGTACGCGCTCGGACGCTCGCCCCAGGCGATGCAGCTCATGGTGGCCGCGCCCGTGCTCGGCGTCGCCACCGCGCACACCGTGGCGCACGAGATCGGACTGATCGCCGGTGCCGTGGCGTTCGCCGCCTTCGCGTTCACGCTGGTCGGCGTCAACGTCTTCTCGTTCGACGGGACGGCGTTCACGTATCTCGTCACCGCCGGGGCTCCGTACTCCGCGGTGCTGCGCGGCAAGACCTGGGCGCCGATGCTCCTCCTCGGCCCCGTCGCGGTCGTCTTCGTCGTGGTCGAAGCCGGATGGACCGGGGCCTGGCCCGACAGCCCTGCCGCCGTCGTCGCCGCGCTCACGGTCGGCGCGTCGGCGCTGTCGATCGGAGCCCTGCTCTCGGTCCGACGGCCCCTCAACCTCGTCGCGCGCAGCCGAGGTGGCCTGCACGGGCTCGTGACCACCCTGTCAGGGTTCGTGGGGGTCGGTGTTCTTCTCGGTATCGGCGGGTTCCTGTGGAGCGTCGTCGACGATTCGGTCGGGAACACGACCGTCGCGCTGATCCTTGGTGTGGGCTCCGTTCCCGTGCTCTGGGTGCTGAACCGACTGGCGGGGCACGCGGTCGACCGCGATCCCTGGCGGGTCGAGCGGGCGCTCGCCTAA	MALVVLRLKLALQRRAWGSSPGLRRASFVAGWLLSLLAGVAVAELVAVVQRDGGEAGGPTLVLLLTSIYLCWVVLPVLVPGLADTSVDPEKLAPFPVRSLDQALGLTLGALLSPTALFTLLAAVGGAVDGSLLPAVAVVGLALVYVVLCVTSSRAVQALLAGLLHRRRAREVIAGTVVVLGALAVVVTRAASRDDGAVQLLLDPRFTGVAGWMPPGAMAEAIAAARDASWATAATHAAVGVAAVAVALAAWTWAIGTSADRTSTGPRQRREGVGRSEQLHLTVWPLSLVPPHPAVAAASQQVRYALGRSPQAMQLMVAAPVLGVATAHTVAHEIGLIAGAVAFAAFAFTLVGVNVFSFDGTAFTYLVTAGAPYSAVLRGKTWAPMLLLGPVAVVFVVVEAGWTGAWPDSPAAVVAALTVGASALSIGALLSVRRPLNLVARSRGGLHGLVTTLSGFVGVGVLLGIGGFLWSVVDDSVGNTTVALILGVGSVPVLWVLNRLAGHAVDRDPWRVERALA				NA	NA	NA	NA	NA
AK001_03062	831	btuD_14		Vitamin B12 import ATP-binding protein BtuD	ATGATCGAGGTGTCCGGGCTGACCAAGACCTACGGCTCGAAACGGGCCGTCGACGACATCTCCTTCACGGCCCCACCGGGTTCTGTGACCGGGTTCCTGGGGCCCAACGGCGCCGGCAAGTCGACGACGATGCGCATGCTCCTGGGTCTGGACCGTCCCGACTCCGGCACCGCGACGATCGACGGCAAGCCGTTGGCCGCGCACCCGGCACCCATGCGGACCGTCGGTGCGCTGCTCGAGGCCAAGTCCGTGACCCCCGGGCGGACGGCCCGCAACCATCTGCGTGTCCTGGCGGCGACGCACGGCATCGGACGCCGTCGCGTGGACGAGGTGATCCAGATGACGGGACTCGACACCGTCGCGGACCAGCGGGTCAAGGGGTTCTCGCTCGGGATGGGGCAACGTCTGGGCATCGCGACCGCCCTGCTGGGTGATCCCGCGACCCTGATCATGGACGAGCCCGTCAACGGGCTCGACCCGGACGGGGTGCTGTGGGTACGCAACCTCGCCCGACAGTTCGCCGCCGAGGGACGCACGGTGCTGCTGTCGAGCCACCTGATGAGCGAGGTCCAGCTCACCGCGGACCGCGTGGTCGTCATCGGCCGCGGCCGGATCCTGGCGGACGCGACCATCGCCGAGTTCACCGCCCAGGCCGCTTCCGGGACGGTCTCCGTGCGCACCTCGGACGACGTGCGGCTCTCCGAGATCGTGGCGGCCGAGGGCGGCACGGTGACCCGCACCAGCGACGCACTCGTGGTGGCCGGGCTGGAACCACCGCGCATCGCCGCCCTCGCGGTCGGTGCGGGCCTCGACCTGCACGAGCTCGTCTAG	MIEVSGLTKTYGSKRAVDDISFTAPPGSVTGFLGPNGAGKSTTMRMLLGLDRPDSGTATIDGKPLAAHPAPMRTVGALLEAKSVTPGRTARNHLRVLAATHGIGRRRVDEVIQMTGLDTVADQRVKGFSLGMGQRLGIATALLGDPATLIMDEPVNGLDPDGVLWVRNLARQFAAEGRTVLLSSHLMSEVQLTADRVVVIGRGRILADATIAEFTAQAASGTVSVRTSDDVRLSEIVAAEGGTVTRTSDALVVAGLEPPRIAALAVGAGLDLHELV	PGPT0006725_13198	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
AK001_03063	786			hypothetical protein	ATGAGCACGATCACCGCCGACGCCCGGCTGACCTACGGGCACGCCGTGCGAGCCGAGGTCCTCAAGCTCACCACGATGCGCAGCACGTGGTGGCTCGCGGTGGCCGCGATCGCCATCAGCTCGGTCACGGCGGCCACCAACTCGCACAACCCTGCCGAGCCGGGTGCCGAGCTCGACTGGACCATGGCGAACGTCGCCGCCGCGATCGTGGTCGCCTGGGTCATCGTCTCGGTGTACGCGGCGCTGCAGGCGACCGGGGAGTGGAGCTCGGGCATGTACCGGGTGTCGTTCGCCGTCGTCCCGCGCCGCAACCTGTGGCTGGCGGCCAAGGCGACCGTGCTCGGCCTGTTCGCGGGCATCGTGTCGATCGTCGTCATGGCGGCGTCCACCGCCATCATGCTGACGCGATACGCCGCCGAGGGCGCCCTGGTGGACCTCGCCCAGGCCCGCACCTGGGAGACCTTCCTCGGCGTGCCGGCGGTGTGCGTGGCCACGGCGGTCATGGCCGTCGGCATCGGAGCGCTCGTGCGCTCGAGCGGAGTCGCGGTCACCACGGTGGTCGCACTGCTGGTGATCCTGCCGTTCGCCGGCATCATCGGCATCGAGTGGCTGGCGCACATCACGTCCTACCTGCCCAGCGGGGCCGGCGACTCGATCGTGCGCAGCGGGGCGTTCGGCGCTGCCACCGACGACCTCGGGGTGGTGTTCGGCTCCGTCGTCATGCTCGCCTGGGCCGTGGGTGCCTGCCTGATCGCCGCCGTCGCGATGAACCGCCGCGACGCCTGA	MSTITADARLTYGHAVRAEVLKLTTMRSTWWLAVAAIAISSVTAATNSHNPAEPGAELDWTMANVAAAIVVAWVIVSVYAALQATGEWSSGMYRVSFAVVPRRNLWLAAKATVLGLFAGIVSIVVMAASTAIMLTRYAAEGALVDLAQARTWETFLGVPAVCVATAVMAVGIGALVRSSGVAVTTVVALLVILPFAGIIGIEWLAHITSYLPSGAGDSIVRSGAFGAATDDLGVVFGSVVMLAWAVGACLIAAVAMNRRDA				NA	NA	NA	NA	NA
AK001_03064	1992			hypothetical protein	ATGCTCGTCCTGGGCCTGGTGAGCCAGGCCCTGTGGTCCCCCTTCGAGGACTCGGACTGGTTCGATTCGATCGCGTTCGGCGCGCCGGCGTTCGCCGAAGGGCGCTGGTGGACCCCGGTCACGGGGTCGTTGTTCGCGCGAGTCCCGTGGGAGTACGTGCCCGTCGCGGGCGGCTTCCTGGTGCTGGTCGGGTTCGCCGAGCTCCGGCTCGGGACCCGGCGCGCCGCGCTCGTCACGGTCGTGTGCCAGCTCGCCGGCGTCGTCGGCTCCGCCCTGCTGCTGGGGCTCCTCGGCCGGACCACCTGGACCTGGGCCCAGCAGACCTCGCAGGTGCTCGACGTCGGGTTCAGCGCGGGCGCCGTCGGCGCGGTCACCGTCGCGCTCTGGACCCTGCGACCACCCTGGCGCGGGCGGCTGTCCGCCGTCGTCGCCGCCTACGTGCTGGTCTCCGTCGTGTTCTTCGGCGGTATCGCCGACGTCGAGCATCTGGTCGGCTGGCTCGCCGCGCTCGCGCTCGTGCCCGTCGTCGTCCACCCGGCCCTCGGCGTCCGCGCGCCGGCCGGACGCGTCAGGCTGGCCCGCGTCCATGCCGCCGGATACTTCGGGATCTCGGCCCTGATCACCGTGCTCGCCGGGTTCGCCACCGCCGCCGAGGGCCCGCTCGGCACCGTCGGTGGCGATGACTGGCCGACCGGACTGCTCAGCGTCGTCGTGGACCTGGTCCTGGCGGTCGGACTCCTGCGCGGCCGACGACTCTGGTGGCGTGTGGCGCTGGTGCTCACCACGATCTCGCTCGTCCTGCTCTCGCTGCTGCTCGTGGCGGCGATCGTTGCCGAACCCCACGAGCTCCCGCTCGTCGTCGTCATGCTGCTGCTCGACGCCGGCGCGCTCGTCCTGCTCGTCGCGCGCCGCCAGGCCTTCCGCAACCGCCGCGGGGCGGGCCTGGCCGGGACGGACGACTCCTTCGACCAGGAGGACGCCCGCGAGACGCTCGTCCGTCTCGGCGCCGGCCAGCGGCTGGCGTGGATGACGACGTGGGACGGTTCGCAGCGCTGGGCACCGGGCACCCCCGACGGCTACGTCACCCACCAGGTGCACTCCGCCGTCGCCGTCGGGCTGACCGACCCCGTCGGCGACGGGCCGCAGGGGCGCGGCGAGCTGGCCGACGCGTTCGTCGCCGCGGCGCGGCACTCCGGCCTGACCGCCTGCTTCTTCTCCTGCAGCGCCGAGCTGGCCGACCTCGCCTCGGTCCGCGGCTGGACCACCGTCCAGGTGGCCGAGGAGGCCGTCATCGACCTCCCCGGCCTGGAGTTCCGCGGCAAGAAGTGGCAGGACGTGCGCACCGCCATCAACCAGGCGCGCAAGCACGGCGTCGAGCACCGGATGACCCGGTGGCTCGACGAGCCGGAGGAGATCCGGGACCAGCTCCGTGCCATCTCCGCAGCATGGCTCGGCGACAGCGACCTGCCGGAGATGGCGTTCACGCTCGGCGGGCTGCGGGAGGCCTCGGACCCTGCGGTGCGCGTCGGGCTCGCCGTGGATGCTGACGGCCGGGTGCACGGCGTGACGAGCTGGCTGCCCGTGCACGCTCCCGGAGGCAAGGTCGTCGGTTGGACGCTCGACGTCATGCGTCGCGCACCGGAATCGTTCCGCTACACGATGGAGCTGCTCATCGCCTCGGCGCTGACCACCTTCCGCGACGAGGGGGCGCTCGAGGCCTCGCTGTCCGGCAGCCCGCTGGCGCGGACCGGTGACGAGGACCCGCAGGGCATCGACGCCGTGCTCGACCAGCTCTCGACGACCCTGGAACCGCTCTACGGTTTCAGCTCGCTGCACCGGTTCAAGCTGAAGTTCCAGCCGCGCTCCGTCCCCCTCTACCTGGTGGTCCCGGACCCCGCCGCCCTGCCGCTGGTCGGCATCGCGCTCGTGCGGTGCTACCTGCCCGAGGCGCGCGCCAGGGACCTGGTCGCCGCCGCTCGGTCCACGCGCTGA	MLVLGLVSQALWSPFEDSDWFDSIAFGAPAFAEGRWWTPVTGSLFARVPWEYVPVAGGFLVLVGFAELRLGTRRAALVTVVCQLAGVVGSALLLGLLGRTTWTWAQQTSQVLDVGFSAGAVGAVTVALWTLRPPWRGRLSAVVAAYVLVSVVFFGGIADVEHLVGWLAALALVPVVVHPALGVRAPAGRVRLARVHAAGYFGISALITVLAGFATAAEGPLGTVGGDDWPTGLLSVVVDLVLAVGLLRGRRLWWRVALVLTTISLVLLSLLLVAAIVAEPHELPLVVVMLLLDAGALVLLVARRQAFRNRRGAGLAGTDDSFDQEDARETLVRLGAGQRLAWMTTWDGSQRWAPGTPDGYVTHQVHSAVAVGLTDPVGDGPQGRGELADAFVAAARHSGLTACFFSCSAELADLASVRGWTTVQVAEEAVIDLPGLEFRGKKWQDVRTAINQARKHGVEHRMTRWLDEPEEIRDQLRAISAAWLGDSDLPEMAFTLGGLREASDPAVRVGLAVDADGRVHGVTSWLPVHAPGGKVVGWTLDVMRRAPESFRYTMELLIASALTTFRDEGALEASLSGSPLARTGDEDPQGIDAVLDQLSTTLEPLYGFSSLHRFKLKFQPRSVPLYLVVPDPAALPLVGIALVRCYLPEARARDLVAAARSTR	PGPT0024390_1068	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLGLYCEROL_LYSYLTRANSFERASE,PGPT0024390-mprF|fmtC-K14205	NA	NA
AK001_03065	510			hypothetical protein	ATGCCGCTCCCCCCACCCCCCGCCGGCTGGTCCCGTCACATCCTCAAGAGCACGTTCGGCATGGGGCGCGACTTCGCCGTCCTCGACCCGGACACCGAGGAACAGACCTGGTTCGTGGACGGCAAGGTCGGCATGCGCCCCAAGGCCGACGTCCAGGACGCCGCCGGGAACGTCGTCTACACCGTCACCGGGAAGATGTTCGGCATCCCCAAGCAGATGACGATCGCCACCGCCGACGGCACCGAGGTCGCCTCCCTGCGGGCCAAGGCCTTCTCCATGATCAAGGACAAGATGACCATGGAGGTCCCCGGTGGCGAGCCGTGGAGCCTCGAGGGGTCCTTCATCGAGAAGAACTACTCGGTCACCGCGGGCGGGCGTCACGTCGTCCAGATCACCCAGAAGTGGGTGACCATCCGCGACTCGTACACCCTCGACGTCGCCGAGGGCGTCGACGTCGGCCTGGCGCTCGCCGTGGTGTGGGCGATCGACCGCTGGGTCGAACGCGACTGA	MPLPPPPAGWSRHILKSTFGMGRDFAVLDPDTEEQTWFVDGKVGMRPKADVQDAAGNVVYTVTGKMFGIPKQMTIATADGTEVASLRAKAFSMIKDKMTMEVPGGEPWSLEGSFIEKNYSVTAGGRHVVQITQKWVTIRDSYTLDVAEGVDVGLALAVVWAIDRWVERD				NA	NA	NA	NA	NA
AK001_03066	447			hypothetical protein	GTGAGCGTGACGACCGAGCAGGTGGACAAGCTGGCCGACGCCGCGATGGGGTGCACCGAGTACGTCATGGCGCACAGCCGGGCGGGCAAGTGGGGCATGATCAAGGAGGTGTTCGCCATGCGCAGCGCGTTGGGGGACGTCCCGGACGGCCCCGGCCACGAGCTCATCAGCGCCACCCGGCAGCACCTGTCGGACCGGTCGGACTCCGGTCCCGCCATCGACGCCGAGGACAAGGACGCGCTCCGCGCCGACGGGCAGCGCCTCATCGAGTCGTCGCTGCCCGTCATCGCCTCGCTCCCGGCCGACGTCGCCGAGCAGGTACGCGCCTGGCTGATCGGTATCGCCGAGAAGGTCGCCGGTGCGTCCAAGGACAAGGGCGGTTCCGAGAAGGTCTCCGACGCCGAGGCCGCCGCCATCGAGGACCTGCGCCGACTGCTCCGCGCCTGA	MSVTTEQVDKLADAAMGCTEYVMAHSRAGKWGMIKEVFAMRSALGDVPDGPGHELISATRQHLSDRSDSGPAIDAEDKDALRADGQRLIESSLPVIASLPADVAEQVRAWLIGIAEKVAGASKDKGGSEKVSDAEAAAIEDLRRLLRA				NA	NA	NA	NA	NA
AK001_03067	861	murR		HTH-type transcriptional regulator MurR	GTGACCTGGACCGGCTCGGCCGACGCACCGCTGACCGCCCGCATCGTGGCGCTCGCGCCGTCGATGCACCCCGGCGAGCGCCGCGCCGCCGAGGCCATCGCCGCCGACCTGGACGCCGCCGTCGAACGCACCGCTCAGCAGGTCGCCGACGACGTCGGCGTCGGCCGGGCGACCGTCGTGCGTGCCGCGCAGACCCTCGGGTACGAGGGCTACCCGCAGCTGCGCGTCGCCGTCGCCCGCGAGCTCGCGCTGCGCCCGGCGTCGGACGGCTCGCCCGACGGCACCATGCTCGGCGCGGTGCGCGAGTCCGTCGACCGGTTCGCCGCTCGCCTCGGGCACACCGTGGCCGGGCTGACCGAGGACGGCCTGCAGGAGTTCGTGCGCGTCCTCGACGACGCCCGGCGTGTGCTCGTCGTCGCCAACGGGCTCTCCTCCCCGCTCGGCCTCGACCTCGTGCTGCGTCTGACGTCCGCCGGCCGGCCCGCCGAGCTACTCCAGGACGCCCTCGCCCAGCGCATCGCGGCCCGGCAGCTCGGCCCCGAGGCCGTCTGCCTCGTCGTGTCCGGATCCGGGGCCAACGAGGCCACACTGGAGGTGATGCGGGCCGCGCACGACGGCGGCACCCAGGTCGTGGCGATCACCTCGTTCGCGCAGTCCCCCGTCGCCCAGCTCGCCGACACCGTGCTCGTCGTCCCGCCGGTCAACGAGTCGTTCCGCGACGAGCTGCTGCACACCTCCCGCGCGGCGCTGATGCTCATGATCGAGGCGCTCGTCGAGGTCCTGGTCGCCCGGCGCGGCGAACGCGGGCGCGACGCCCGGGCCGCCGTCCTGCACGAGCTGGGATCGGCGATCGAGGAGTAG	MTWTGSADAPLTARIVALAPSMHPGERRAAEAIAADLDAAVERTAQQVADDVGVGRATVVRAAQTLGYEGYPQLRVAVARELALRPASDGSPDGTMLGAVRESVDRFAARLGHTVAGLTEDGLQEFVRVLDDARRVLVVANGLSSPLGLDLVLRLTSAGRPAELLQDALAQRIAARQLGPEAVCLVVSGSGANEATLEVMRAAHDGGTQVVAITSFAQSPVAQLADTVLVVPPVNESFRDELLHTSRAALMLMIEALVEVLVARRGERGRDARAAVLHELGSAIEE	PGPT0017985_632	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337	NA	NA
AK001_03068	849			hypothetical protein	ATGAAGCCCGCCCTGGAGTCCCGGTCCCGCACCGTCACGTCACGCCCCACCAGCGAGCGGCCCGCCTCGGCTCTCCCCCCGCGCCCGTCGCGGCTCGGGCAGACCGTCGCGACCGCCGTCGTCGGCCTCGTGCTGCTCGCCTCCGCCGCGACCCTGGACGTCGAGTGGTCCGACCTGCGCGAGCTGCCCGCCGCCGTGGCCGAGTACGCCGCGCTGATGTTCGCCGACCCCGACTGGTCGCGCCTGCCGCGCGCCCTGTTCGAGATGTGGCGCTCGATCTCCATGGCCTGGCTCGGCGCGATGCTCTGCGTCGTCGTGTCGATCCCGCTCGGCATGCTCGCCGCCGGTGGCGTCGGACCGGCCTGGCTGCGCCTGGCCCTGCGCGGGCTCTTCGCCGTTATCCGCGCCGTGCCCGAGGTGATCATCGCCCTCGTGCTGCTCACCGTCACCGGGCTCACGCCGTTCACCGGCGCGCTCGCCCTCGGCATCGCCGGGATCGGCACGCAGGGCAAGTGGACCTACGAGACCGTCGAGACGCTGCGCGACGGCGCCGCCGACGCCGTCCGGGCCGCGGGCGGAGGCCGCACCGCCGTCGTCCGCTGGGCGCTGTGGCCCGCCGCGCTGCCCGCACTGCTGTCCTTCGCGCTCTACCGGTTCGAGATCAACATCCGCATGTCCGCGGTGCTCGGCATCGTCGGCGCCGGCGGCATCGGCAGCATGCTGGCCAACTACACGAACTATCGTGAATGGGACACGGTCGGCATGCTGCTGATCGTGGTCGTCGTGACCACCATGGCCGTCGACGCCGTCTCGGGCGCGCTGCGCCGCCGCATCATGGAAGGGGCCTGA	MKPALESRSRTVTSRPTSERPASALPPRPSRLGQTVATAVVGLVLLASAATLDVEWSDLRELPAAVAEYAALMFADPDWSRLPRALFEMWRSISMAWLGAMLCVVVSIPLGMLAAGGVGPAWLRLALRGLFAVIRAVPEVIIALVLLTVTGLTPFTGALALGIAGIGTQGKWTYETVETLRDGAADAVRAAGGGRTAVVRWALWPAALPALLSFALYRFEINIRMSAVLGIVGAGGIGSMLANYTNYREWDTVGMLLIVVVVTTMAVDAVSGALRRRIMEGA	PGPT0002530_1467	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042	NA	NA
AK001_03069	825			hypothetical protein	GTGAGCCCGGGCACGACGGCGGAGCCCACCGGGCGCCTCGACGTCCCGCCGCGCCCGCGCACCTGGCCGCGCCGCACCCTGGTCGTCTCGGCGCTGGCGGCGTTCACCGTGGCGACCTGCCTGCCCGCGATCGGCGGCGTCGAGATCGACCTGGGCGCCATCGCGCGCAACTGGCGCCACGGCGCGGCCAACCTGTCCGCGCTGCTGCAGCCCAACTGGGCGTTCGTCCCGCGCACGATCCAGCCCATGCTGGAGACCCTGCAGATGGCGTTCGTCGGCGCCGCCATCGCCGCCGCGCTGTCCGTGCCGCTCACGCTGTGGGCCGCCCGACCCACCAACCCGTACACCGTCACCCGCACCGCAGTGCGCGCCGTCATCAACGTCGTCCGCGCCGTCCCGGACCTCGTCTGGGCGACCATCCTGGTGGCCATGGTGGGCGTCGGAGCCCTGCCCGGCCTGCTCACCCTCGTGCTGTTCGACGTCGGCATCGTCGTCAAGCTCGTCTCCGAGGCGATCGACTCCACCGACCACCCCTACCTCGAGGCGGCCCGCGCCGGCGGCGCCACCCAGGGCCGCATGAACCGTGCCCTCGCGCTGCCCCAGAGCCTGCCGCTGTTCAGCAACCAGTGGCTCTACGCCCTCGAGCTGAACGTCCGCATCTCGGCGATCCTCGGCATCGTCGGCGCCGGCGGCATCGGCCGGCTGCTCGACGAACGGTTCGGGTTCTTCGCCTACGGCGACGTCTCGGTGATCATCCTCGAGATCCTCGTCGTCGTGCTCCTCATCGAGGCCGCCTCGAACGTCCTGCGCCGGAGGCTCGCATGA	MSPGTTAEPTGRLDVPPRPRTWPRRTLVVSALAAFTVATCLPAIGGVEIDLGAIARNWRHGAANLSALLQPNWAFVPRTIQPMLETLQMAFVGAAIAAALSVPLTLWAARPTNPYTVTRTAVRAVINVVRAVPDLVWATILVAMVGVGALPGLLTLVLFDVGIVVKLVSEAIDSTDHPYLEAARAGGATQGRMNRALALPQSLPLFSNQWLYALELNVRISAILGIVGAGGIGRLLDERFGFFAYGDVSVIILEILVVVLLIEAASNVLRRRLA	PGPT0002530_2677	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042	NA	NA
AK001_03070	828	phnC	COG3638	Phosphate-import ATP-binding protein PhnC	ATGACTCACGACACCCAGGCGGCGGAGACCGGGCACGCCCCGGCCTCCGCCGCGTGGCCGATCCGCCTCGACGGCGTCTCGGTCACCTACCCCAACGGCACCACCGCCCTGCGCGACGTCTCCCTGGACATCGACGCCGGCGAGATGGTCTCGATCGTCGGCCTGTCCGGCTCGGGCAAGTCGACGCTGATCCGCACCATCAACGGCCTCGTGCCCGTCACGTCCGGCACGGTGACCGTCGGCCCGCACACGGTCTCCGGTCTGCACGGCCGCCGCCTGCGCGAGGTGCGCGGGCACGTCGGCATGATCTTCCAGGGCTTCAACCTGGCCACCCGGGTCGACGTCTACCGCAACACGCTGGTCGGCCGGTTCGCCCGCGCCGGCCGGCTGCGCACGCTCCTCGGCGTCACCAGCGCGCGCGACCGCGAGGTCGCCCTCACCGCGCTGGACACCGTCGGCATGCTCGACAAGGTCTGGTCGCGGGCGGGCGCGTTGTCCGGCGGGCAGCAGCAGCGCGTGGCCATCGCCCGGGCGCTGTCCCAGGAGCCGAGCATCATGCTCGCCGACGAGCCCGTCGCCAGCCTCGACCCGCCCACCGCGCACGCCGTGATGTCCGAGCTGGAACGCATCAACGCCGAACGCCACCTCACGGTGCTGGTCAACCTGCACCTGATGGACCTCGCCCGGCAGTACACCCGCCGCATGATTGGGCTGCGCGACGGCGAGCTCGTCTACGACGGTCCGGCGGCCGAGGCCACCGAGGCCGACTTCGAGCAGATCTACGGCCGCCGCATCCGCCCGCAGGACCAGCTCGGGGACCGCACGTGA	MTHDTQAAETGHAPASAAWPIRLDGVSVTYPNGTTALRDVSLDIDAGEMVSIVGLSGSGKSTLIRTINGLVPVTSGTVTVGPHTVSGLHGRRLREVRGHVGMIFQGFNLATRVDVYRNTLVGRFARAGRLRTLLGVTSARDREVALTALDTVGMLDKVWSRAGALSGGQQQRVAIARALSQEPSIMLADEPVASLDPPTAHAVMSELERINAERHLTVLVNLHLMDLARQYTRRMIGLRDGELVYDGPAAEATEADFEQIYGRRIRPQDQLGDRT	PGPT0002520_618	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041	NA	NA
AK001_03071	1035			hypothetical protein	ATGCGCAAGTCCCTGCTCGCTCCCGGCGCCGCCGCGGCGCTCGTCCTCGCGCTCGCCGGCTGCGCCGGAGCCGACGACGCCGGCAGCAACGCCGACGGCGACACCACTGCCGAGACCGACGCCGGCACCGAGTGGCCCGAGTCGATCACCATGTCCCTGGTGCCGTCGGTCGAGGGAGAGAACCTCGCCGAGGCGCTCGACCCGCTGACCACCTACCTCTCGGACGGTCTCGGCATCGAGGTCGAGGGCGTCGTCGCCAGCGACTACACCGCCACGGTCGAAGCGCTCGGCGCCGACCAGGCGCAGGTCATCATCACCGACGCCGGGTCGCTGTACCAGGTGACCGAGCGCTACGGCGCCGAGCTCGTCCTGCGCGACGTCCGCTTCGGCGCCACCTCCTACGCGTCGGTCGCGTACACGAACAACCCCGACAAGTACTGCGAGGACGAGCCCGTGCTCGCCACCTACGAGGCGAGCGGCATCGAGCTGTCCTACTGCAACGGCCTGGAGGAGGCCGGCGCTGCGGCGACCGGTCAGGGCCCGGCCGCCGCCGACGTCTTCGGCGACCTGGCCGGCGCGGACGTCGCCCTGCAGGCCGCCACCTCGCCGGCCGGCTACCAGTACCCGGTGGTCCTCATGCGCGAGGCGGGCCTGGACACCGACGCCGACATCACCCAGATCCCCGTCGAGGGCAACAACAACGCCGTGCTCGCCGTCGCCAACGGCGACGCCGAGGTCGGGTTCGCCTACTGGGACGCGCGCACCACGGTCACCGAGGAGGTCCCCGACATCGCCGACAAGGCCGTGGCCTTCGCCTACACCGACATGATCCCCAACGGCGGCGTCGCCGTCACCGACACCCTGCCCGACGACCTCGTCGCCGAGCTCACCACGCTGATGGACGAGTACGCCGAGTCCTCCGACGAGGCCGCCGACGTCATGTTCGAGCTCGTCGGCCTGTCCGACTGGACGGCCGAGACCGCCGACGACGAGATCGCCCGCTACGGCGAGATCCTCGAGCAGTTCGCCGGCTGA	MRKSLLAPGAAAALVLALAGCAGADDAGSNADGDTTAETDAGTEWPESITMSLVPSVEGENLAEALDPLTTYLSDGLGIEVEGVVASDYTATVEALGADQAQVIITDAGSLYQVTERYGAELVLRDVRFGATSYASVAYTNNPDKYCEDEPVLATYEASGIELSYCNGLEEAGAAATGQGPAAADVFGDLAGADVALQAATSPAGYQYPVVLMREAGLDTDADITQIPVEGNNNAVLAVANGDAEVGFAYWDARTTVTEEVPDIADKAVAFAYTDMIPNGGVAVTDTLPDDLVAELTTLMDEYAESSDEAADVMFELVGLSDWTAETADDEIARYGEILEQFAG	PGPT0002525_546	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044	NA	NA
AK001_03072	738			hypothetical protein	GTGACCCCGACCATCCTGTTCGACTTCGACGGCACCCTCGCCGTCGGTGACGGCCCCGTGCTCGCGTTCGCCCGGCAGGTCGCGGGCCACGCCGGGCCCGGCTACCTCGAGCGGGTCATGGCCACGTTGCGCGACCACGACGCGGGCACGGCCACGCAGTTCCGCGACGGGTACGACGTCGTCGGCTCTTTGGCCCGCCAGGACGGCGTCGACCCCACCGACTTGCAGGACGCCTACCTCGCCAGCCGCAACGTCCTCGGCACCCCCGAGGCGCCCGTCGACGCGGCTCCCGGGCTGGCGCAGCTCCTGGACGCACTCCCCCGCGACGTCCGCGTCGTCCTAGCCACGAATGCCCCCGGCGTCGGCATCGAACGCCTCCTGACCAAGTGGGGCGTCCGCGAGCGCTTCGCCGCCCTGCACTACGACGTCGGCAAACCCGCCGGGCTCACCCCGATCGTCGAGGCCGCCCTCGCCGACGGCCCGGTGTTCGCCGTCGGGGACATCTTGGAGAACGACCTGGCGCCCGCCGCAGCGCTCGGCGCCGCGACGGCGCTGGTCGGCCCCACGGCCGACACGCCGCCCGCCACCGTGACGATGCACGCCCGGACCCTCGACGCCCTCGCCCCCGACATCACGGCGTGGGCCCGCCGAGCCAGCAACACGACCACCACCACAGCCACCCTCGCGACCCACCCCGAGTCCGTGCCGACCGGCACGGCCGACTCCCTCGAAAGGTGA	MTPTILFDFDGTLAVGDGPVLAFARQVAGHAGPGYLERVMATLRDHDAGTATQFRDGYDVVGSLARQDGVDPTDLQDAYLASRNVLGTPEAPVDAAPGLAQLLDALPRDVRVVLATNAPGVGIERLLTKWGVRERFAALHYDVGKPAGLTPIVEAALADGPVFAVGDILENDLAPAAALGAATALVGPTADTPPATVTMHARTLDALAPDITAWARRASNTTTTTATLATHPESVPTGTADSLER				NA	NA	NA	NA	NA
AK001_03073	117	nagB_1	COG0363	Glucosamine-6-phosphate deaminase	ATGCAGTTACACCCGCACGCCACGGTGCTGGTGGACGAGGCGGCCGCCTCGCGTCTGCAGCTGGCCGACTACTACCGCCAGACGTACGCCTCCAAGCCGGACTGGCAGGGCCTCTGA	MQLHPHATVLVDEAAASRLQLADYYRQTYASKPDWQGL	PGPT0018865_1734	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564	NA	NA
AK001_03074	807			hypothetical protein	ATGAGCCGTTCGAATCCCCTGCCTCGGGTCCCCACGCCGCCTCAGGGGGACGAGGTCGCCGCCTACGACTCGTACCTCGAGGCGCAGAAGGCCGTCGACTACCTCTCGGACGAGAAGTTCCCCGTCCAGCACGTCACCATCGTGGGCACCGACCTGCGGATGGTCGAGCGCGTCACCGGCCGGCTGACGTACGGCCGGGTGGCGCTGGCCGGCGCCCTGTCCGGCGCCTGGTTCGGCTTCTTCGTGGGCCTGCTCCTGATGTTCTTCGCCGCGGGCGAGACCAGCGTGCTGCTCGTCGCGCTGGCGCTCGGCGCCGGGTTCGGACTGATGTTCTCCGTGCTCTCCTACGCCTTCACCGGCGGGCGGCGGGACTTCACGTCGCAGTCGCAGATCGTGGCGTCCACGTACGCCCTGCTGTGCGCCACCGAGCACGCGGCCGAGGCGCGGACCATGCTGCAGAACGCACCGGGCGGGCTGGGCAAGCCCCGGCGCCGGGAGCGGCCGGCCGCTCCCGCGGCCCCGTCGTCCCCGGACCCGCGATGGACGATGCCCGACGGCGCCCCGCGCTACGGCGCGATGCGGCCCGGCGGGGAACCAGGTCCGGCCGCGACCCCGGGCGGGTCGGGATCGTCGACGTCGGCCGTCGCCGGCGGCGAGGGGCCCTCGCAGCCGCAGCCGGGCCCCGACGAGCTGCCGCCCGCGGTGCCGCCGCAGGGCGGGGAGTCGCCGTCGTCGACCTCCACGCCGACGGCCCCGCCGCCGTCCTCGGACCCCGACGACCCGTACGCGCCGCCGCCGGAGCGCTGA	MSRSNPLPRVPTPPQGDEVAAYDSYLEAQKAVDYLSDEKFPVQHVTIVGTDLRMVERVTGRLTYGRVALAGALSGAWFGFFVGLLLMFFAAGETSVLLVALALGAGFGLMFSVLSYAFTGGRRDFTSQSQIVASTYALLCATEHAAEARTMLQNAPGGLGKPRRRERPAAPAAPSSPDPRWTMPDGAPRYGAMRPGGEPGPAATPGGSGSSTSAVAGGEGPSQPQPGPDELPPAVPPQGGESPSSTSTPTAPPPSSDPDDPYAPPPER				NA	NA	NA	NA	NA
AK001_03075	330			hypothetical protein	GTGTGCCTGCGCGCCGGGATGCCCCGTCCGATCACCCAGGCGCCCGTCAGGACCCGGGTCCGTCTCTACCGCTGCGACCTCGGCTGGCCCGAGCACGGCGTGTACGTCGAGTTCGACGGTCGCATCAAGTACGCGCGGTCCGGCACCGCGGAGCTGCTGCGGGAGAAGAAGCGCTCCGACGACCTGCGCGAGGCGGGAGTGGTCCCGGTCCGGGTGCTGGCGACGCAGCCGTCGGGCGTACCGCGGGTCGTGGGCGCCGTCGCGCGGAGGTTTCCACCGGAGGTGGCGGCGCGATTCCGGGTGAATCCCGTGCTTCCGGCGCCGACCTGA	MCLRAGMPRPITQAPVRTRVRLYRCDLGWPEHGVYVEFDGRIKYARSGTAELLREKKRSDDLREAGVVPVRVLATQPSGVPRVVGAVARRFPPEVAARFRVNPVLPAPT				NA	NA	NA	NA	NA
AK001_03076	1530	pepPI		Xaa-Pro aminopeptidase 1	ATGAGCGACACCACCCCGGTCGACCGGCCCGCGGACGAGCAGATCACCGAGCGCGGGAGCAACCGGTCCCAGCGCCCCACCTCGGACGCCTTCAAGCAGTTCATCACCTCGCAGTGGGGTCCCCGGCAGGACCTCGGCGTCACGCCCGGCCGCGCCGCGCCGTTCACCGCGGCCCGCCGCGCGCGCCTCTCCGCGCGATTCCCCGGCACCCGGCTGGTCCTGCCGGCCGGGCCGCTGAAGCAGCGCTCGAACGACACCGACTACCGGTTCCGGCCGCACTCGGCGTTCGCGCACCTGACCGGGTTCGGCACCGACCAGGAGCCGGACGCCGTGCTCGTGCTGCACCCCACCGCCGAGGGCGAGGGTGACGGCGGGTCGCACCACCACGCCGTGCTGTACGTGCGCCCCCTGGCCCCGCGGGACACCGAGGAGTTCTACGCCGACGCCCGCTACGGCGAGTTCTGGGTGGGCGCCCGGCCCACCCTCGACGACGTCACCACCGCCACCGGCGTCGAGGCGCGGCACGTCGACGAGCTGCGCGAGGCCCTCGCCAAGGACGTCGGCGCCGACGGCGTGCAGGTCCTCGTGATCGCGGAGGCCGACGACGAGATCACCGCCGTGATCGAGGCGATCCGCACCGAGGCCGGCACCGAGGAGTCCGCCTCCGACGACGCGCTGGCCGAGGCGGCCTCCGAGCTGCGCCTGGTCAAGGACGAGCTCGAGATCGAGCTCATGCGTGAGGCCGTGGACCGCACGATCGACGGGTTCGCGGAGGTCGTCCGGGCCCTGCCGCGCGCCGTCGAGCACCGCCGCGGCGAGCGCGTCATCGAGACCACGTTCGACGCGCACGCCCGGCTCGAGGGCAACACGGTCGGCTACGAGACCATCGCCGCGGCCGGCGAGCACGCCACCACGCTGCACTGGATCACCAACGACGGCGTCGTGCGATCCGGCGAGATGGTGCTGCTCGACGCCGGTGTCGAGATCGACGAGCTGTACACCGCCGACGTCACGCGCACGCTGCCCGTGGACGGCGAGTACACCGACGTCCAGCGCCGCATCTACACCGCCGTGCTCGACGCCGCCGACGCCGCGTTCGCCGTGGCGAAGCCCGGCGCGAAGTTCCGCGACATCCACGCCGCCGCGATGGAGGTCATCGCCGCCCGGCTCGAAGAGTGGGGGCTGCTGCCGGTGAGCGCCGAGGAGTCGCTGTCCCCCGAGGGCCAGCAGCACCGTCGCTGGATGGTGCACGGCACCTCGCACCACCTGGGTCTCGACGTGCACGACTGCGCACAGGCCCGCCGGGAGATGTACCTGGACGGCGTGCTCGAGCCGGGGATGGTGTTCACCATCGAGCCGGGGCTCTACTTCAAGGCCGACGACCTGGCCGTGCCCGAGGAGTACCGCGGCATCGGGGTGCGCATCGAGGACGACGTCCTGGTCACCGCCGACGGCAACGAGAACCTCTCCGCGGCGCTCCCCCGGCGCCCCGAGGACGTCGAGGCCTGGATGGCGCGCGTACGCGCCTGA	MSDTTPVDRPADEQITERGSNRSQRPTSDAFKQFITSQWGPRQDLGVTPGRAAPFTAARRARLSARFPGTRLVLPAGPLKQRSNDTDYRFRPHSAFAHLTGFGTDQEPDAVLVLHPTAEGEGDGGSHHHAVLYVRPLAPRDTEEFYADARYGEFWVGARPTLDDVTTATGVEARHVDELREALAKDVGADGVQVLVIAEADDEITAVIEAIRTEAGTEESASDDALAEAASELRLVKDELEIELMREAVDRTIDGFAEVVRALPRAVEHRRGERVIETTFDAHARLEGNTVGYETIAAAGEHATTLHWITNDGVVRSGEMVLLDAGVEIDELYTADVTRTLPVDGEYTDVQRRIYTAVLDAADAAFAVAKPGAKFRDIHAAAMEVIAARLEEWGLLPVSAEESLSPEGQQHRRWMVHGTSHHLGLDVHDCAQARREMYLDGVLEPGMVFTIEPGLYFKADDLAVPEEYRGIGVRIEDDVLVTADGNENLSAALPRRPEDVEAWMARVRA	PGPT0006770_2963	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262	NA	NA
AK001_03077	744	menH_5		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	GTGACTGTTCCGCTGATGTCCCGCACCGACACGCCGACGCCGACCCAGCAGGTCGGCGTCGTGCTCGTGCACGGCATGCGCCAGGACGCCTCGGCCTGGCGGGACCAGGTGGCGCACCTCGAGGACCTCGGCCATGCCGCCGTCCCGGTCGACCTGCCCGGGCACGGCCGCCACCTGGCCGAGCGCTTCTCCTTCCGGCGCGCTTGGGAGCACCTGGACGACGCCGTCGCCTCGTTCCCGCAGGGCACCCCGGTGGTGCTGGTGGGCCAGTCGCTGGGCGGCTACGTGTCGCTGGGCTGGGCCGCCGACCGCGCGCACGACGTCACGCGACCGCTGCTCGGCGTCGTGGCCTCCGGGTGCAGCACCGAGCCGCGCGGCAAGCCCGTCCGGCTGTACCGGGACGTGGCCGACGGCGTCGCCCGGGCCGGGCAGGCCGTCCGCCGTCGGCTGCCCGGGTCCGTCCCGACGACGGACGACCGGCCCGGATGGGACCTCGTCACCGACGCGCTCGGCGAGCTGGCCGGCCGGTCGGCGCTGGCGGACCTCGGGACGATGACGGTGCCGGTGTGGCTCGTCAACGGCTCGCGGTGCCATCTGCGCTGGCAGGAGCAGCGCTTCGCGCGGGCGGCCGACCGGGGGGCGCTCGTCGTCGTCCCCGGGATCGGACACGACGTACACCTCGACGCACCCGACGAGTACAACCGGGTGCTGAGCCGCGCCCTGGCCGACTTCGCGCGCCGGTGA	MTVPLMSRTDTPTPTQQVGVVLVHGMRQDASAWRDQVAHLEDLGHAAVPVDLPGHGRHLAERFSFRRAWEHLDDAVASFPQGTPVVLVGQSLGGYVSLGWAADRAHDVTRPLLGVVASGCSTEPRGKPVRLYRDVADGVARAGQAVRRRLPGSVPTTDDRPGWDLVTDALGELAGRSALADLGTMTVPVWLVNGSRCHLRWQEQRFARAADRGALVVVPGIGHDVHLDAPDEYNRVLSRALADFARR				NA	NA	NA	NA	NA
AK001_03078	801		COG0613	3',5'-nucleoside bisphosphate phosphatase	ATGGAGGCCGCGGCCGCGGCCGGCGTGACCGTCGTCGCCCTCACCGACCACGACACCACCGCCGGCTGGGACGAGGCGGCCGCCGCGGTGCCGGACACGCACGTGGCGCTGGTGCGCGGCGTCGAGATCTCGACGCGCGCGCACACCCCGGCCGGCGGCGTCAGCGTCCACCTGCTCGCCTACCTGCACGACCCGCAGCACCCCACGCTCCGGTCCGAGCTGGAACGGACGCGTGACGACCGCGTGCAGCGTGCCCGGCGCATGGCCGAGCGGCTGGCCGAGGACTTCCCCCTGACGTGGGACGACGTCGTGGCGCAGACCCACGACGGGGCCACGGTGGGGCGTCCGCACCTGGCCGACGCCCTCGTCGCGGCGGGCGTGGTCGCCCACCGCGACGAGGCCTTCGCGACGATGCTGCACCCCGGCGCCCCGTACTACGTGCCGCACTACGCGCCGGACACCGCCGACGCCGTGCGCGCGGTGCTGGCCGCCGGCGGTGTGCCCGTGATGGCGCACCCGCGTGCGGGCACCCGTGGCCGGGTGGTCACCGAGGACACCATCGCCGAGCTGGCGCAGGCCGGGCTGGCCGGGCTGGAGGCCGACCACCGCGACCACACGGACCCCGACCGTGCGCGGATGCGCGACCTCGCGCGCGAGCTGGGGCTGCTCGTCACCGGGTCGAGCGACTACCACGGGGCGGGCAAGCACAACCGTCTGGGCGAGCACCGGACCGACCCCGCGGTGCTGGCCGAGATCGAGGACCGAGGAACGCTGGAGGTGCTGCGCCCGTGGACCAGGTGA	MEAAAAAGVTVVALTDHDTTAGWDEAAAAVPDTHVALVRGVEISTRAHTPAGGVSVHLLAYLHDPQHPTLRSELERTRDDRVQRARRMAERLAEDFPLTWDDVVAQTHDGATVGRPHLADALVAAGVVAHRDEAFATMLHPGAPYYVPHYAPDTADAVRAVLAAGGVPVMAHPRAGTRGRVVTEDTIAELAQAGLAGLEADHRDHTDPDRARMRDLARELGLLVTGSSDYHGAGKHNRLGEHRTDPAVLAEIEDRGTLEVLRPWTR				NA	NA	NA	NA	NA
AK001_03079	636			hypothetical protein	GTGGACCAGGTGATCGAGCTGACCCTCTTCACCCAGGCGTTCGTCACGCTGTGGGTGATCATGGACCCGCCCGGCACCATCCCGGTGTTCCTGGCGCTGACCTCCACCATGGGGGCCAAGCAGCGCAGCCGGGCGGCGCTGCAGGCCGTGACGGTCGCGTTCGGCGTCATCGTGACCTTCGCGCTGTTCGGCCAGCAGCTGCTGTCGTACATGGGCATCTCGCTGGCCGCCCTGCAGGCGTCGGGCGGTCTGCTGCTGCTCATCGTGGCGATGCAGCTGCTGACCGGGCACTTCGAGAACGGCGAGGCGACGGCGGCGACCCCGGGGGCGAACGTCGCGCTGGTTCCGCTGGGGACACCGCTGCTCGCCGGGCCGGGCGCGATCGTGGCGACGATGGTCTTCGTCCAGCAGGCGAACACCGAGGACGACTGGGTCCCGTCGGTGGTCGCTATCGCGCTGGCCATCGTGCTCGTGCACGTCTCGCTCTACCTGGCCATGCGGTTCGCCGAGGTGCTGCACCGGGTGCTCAAGGACTCCGGGGTCACCCTCATCACGCGGATCGCCGGCATCCTGCTGGCCGCCATCGCCGTCCAGCAGATCGCGGACGCCGTCATGGAGTTCATCGCCACCGCGTGA	MDQVIELTLFTQAFVTLWVIMDPPGTIPVFLALTSTMGAKQRSRAALQAVTVAFGVIVTFALFGQQLLSYMGISLAALQASGGLLLLIVAMQLLTGHFENGEATAATPGANVALVPLGTPLLAGPGAIVATMVFVQQANTEDDWVPSVVAIALAIVLVHVSLYLAMRFAEVLHRVLKDSGVTLITRIAGILLAAIAVQQIADAVMEFIATA	PGPT0029250_1274	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029250-marC-K05595	NA	NA
AK001_03080	300			hypothetical protein	ATGCAGCTCACGTTCACCGCGCCCCTGTGGCAGTGGGACGCGCGCCAGGACGACGCCTGGTGGTTCGTGACGGTCCCGCCCGACGAGTCCGACCTGCTCGCCGAGGTGCCTCTGCCTCCCCGCGGCTTCGGGTCGATCCGCGTGCAGGTCACGGTGGGCACCACGACGTGGCGCACCTCCGTGTTCCCCTCGAAGGAGCAGTCCGGCTACGTCCTGCCGATGAAGAAGGCCGTGCGACGCGCGGAGGGGCTCGCCCCCGGGGAGCCGGTCGAGGTCACGCTGACACCGCTCGACCTCTGA	MQLTFTAPLWQWDARQDDAWWFVTVPPDESDLLAEVPLPPRGFGSIRVQVTVGTTTWRTSVFPSKEQSGYVLPMKKAVRRAEGLAPGEPVEVTLTPLDL				NA	NA	NA	NA	NA
AK001_03081	1677	deaD_2		ATP-dependent RNA helicase DeaD	GTGACCACAGACACCACCGCCGAGAACGCCCCCACGGCGCCCGGCACCAGCGACCCCGACTACTCCACCCCGGCGGCGATCCAGGCGCAGGACGTCAGCTTCGCCGACTTCGGGGTCCGCCCCGAGATCGTCGAGGCCCTGCGGGACTCCGGCATCACCCACCCGTTCCCCATCCAGGCCATGACCCTGCCGGTCGCGCTCCAGGCGCACGACATCATCGGCCAGGCCAAGACCGGTACCGGCAAGACCCTCGGGTTCGGTGTGCCGCTGCTGCACCGCGTCGCCGCCCCGGGCGAGCCCGAGTACGACCTGCTGCCGGCCCCCGGCAAGCCGCAGGCGATCGTCGTCGCCCCGACCCGCGAGCTCGCCGTCCAGGTCGCCAAGGACCTCGAGTCGGCCTCGACCCGCCGCTCGGTCCGCATCGTCCAGATCTACGGCGGTCGCGCCTACGAGCCGCAGATCGAGACGCTGAACAGCGGCGTGGAGGTCGTCGTCGGCACGCCGGGGCGCATCGTCGACCTGATGAACCAGGGCCACCTGAACCTGTCCCGCGCCGCCACCGTCGTCCTCGACGAGGCCGACGAGATGCTCGACCTCGGGTTCCTGCCCGACGTCGAGAAGATCCTGGCGCGCACCCCCGCCGTGCGGCACACGATGCTGTTCTCGGCGACCATGCCCGGCCCCGTGGTCTCCATGGCCCGCCGGTACATGAAGCAGCCGACGCACATCCGCGCGGCCGACCCGGACGACGACGGCGCGACGGTGAAGAACACCCGCCAGGTCGTCTACCGCGCCCACGCGCTGGACAAGGTCGAGGTCCTGGCCCGGATCCTGCAGTCCGAGGGCCGCGGCCGCACCATCGTCTTCACCCGGACCAAGCGCACCGCCGCGAAGGTCTCCGACGAGCTGCGCACGCGCGGGTTCGCCGCCGGCGCCATCCACGGCGACCTCGGCCAGGGGGCCCGCGAGCAGGCGTTGCGTGCGCTGCGCCACGGCAACATCGACGTGCTGGTGGCCACCGACGTCGCCGCCCGCGGCATCGACGTCACCGACGTCACGCACGTGATCAACTACCAGTGCCCCGAGGACGAGCGCACCTACCTGCACCGCATCGGCCGCACCGGCCGTGCCGGCAACAAGGGCACCGCGATCACGTTCGTCGACTGGGACGACGTGCCCCGCTGGCAGCTCATCAACAAGGCGCTCGACCTCGGCTTCCCCGAGCCCGTCGAGACCTACTCCTCCTCGCCGCACCTGTACACCGACCTCTCGATCCCCGAGGGCACCAAGGGCCGGCTGCCGAAGGAGAAGCGCCGGCTCGGCGGCCTGGAGGCCGAGGAGCTCGAGGACCTCGGCGAGACCGGCAAGCGCTCGGGCGGCCAGGACCGTCAGGGCGGTCGCGGTGGTCAGGGTCGCGGCGGGCAGGGCGGCCAGGGCGGACAGGGTGGTCGCGGCGGCTCCCGTGGCGGACGCTCCCGCGGCGGCAGTGGCGGCCGTGGTGGCCAGGGTCAGCGGTCCGACGGCGCAGCCCGCCCGGAGCAGTCCGGCCCCGCCGGCCAGGGCTCCGACCAGGCCGCGAACGGCGAGGGTGGTCAGCGCCGTCGTCGCCGTCGTCGTCGCCGCAGCGGTGCCGGCGAGGGCCAGGGCGGCAGCGCGCCGTCGGCCACCACCGACTGA	MTTDTTAENAPTAPGTSDPDYSTPAAIQAQDVSFADFGVRPEIVEALRDSGITHPFPIQAMTLPVALQAHDIIGQAKTGTGKTLGFGVPLLHRVAAPGEPEYDLLPAPGKPQAIVVAPTRELAVQVAKDLESASTRRSVRIVQIYGGRAYEPQIETLNSGVEVVVGTPGRIVDLMNQGHLNLSRAATVVLDEADEMLDLGFLPDVEKILARTPAVRHTMLFSATMPGPVVSMARRYMKQPTHIRAADPDDDGATVKNTRQVVYRAHALDKVEVLARILQSEGRGRTIVFTRTKRTAAKVSDELRTRGFAAGAIHGDLGQGAREQALRALRHGNIDVLVATDVAARGIDVTDVTHVINYQCPEDERTYLHRIGRTGRAGNKGTAITFVDWDDVPRWQLINKALDLGFPEPVETYSSSPHLYTDLSIPEGTKGRLPKEKRRLGGLEAEELEDLGETGKRSGGQDRQGGRGGQGRGGQGGQGGQGGRGGSRGGRSRGGSGGRGGQGQRSDGAARPEQSGPAGQGSDQAANGEGGQRRRRRRRRRSGAGEGQGGSAPSATTD	PGPT0013740_2344	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
AK001_03082	684			hypothetical protein	GTGCCCGCCGCCGTCGTCGACCTGGTGGGTTTCGCCGCCTACTCCGAGCTGGCCGAGTTCGGGCTGCTCGCCACCCGGTCGGTGGACGCTCCCGACCTGGCCGTCCGCCAGGCACTCGCCGACGGCGCCGACCGTGCGCTCGACCGCGAGCGGGCCGTCCTGGCCGTGGTCGAGGGCTCGGCGGCCGAGGTCATGGCCCCCTTCGCCGACGCGCTGACCGGGTTCGACACCCGGACCCGCACCGACGACTGGGCCGAGGGCGTGCTCAAGGGCGTCGTCGGGCACGGGGTCGCCCAGGACTTCTGCCGCGCCCTGGCGGCCGGCGTGGAGGACCCCGTCGGCAAGAAGCTGCGCGAGGTGCTCGACCGGCCCGCACCCGGTCCGGCAGCGGGCGCGGAGGCGGGGGCCGACGCCGAGGCCATCGAGGTGCTGGGCCGTCTCGGGGCCGGCGACGAGGTGCTGGCCTCGCGCCTGGCCCTGTGGGGGCGGCGTGTGGTGGGCGAGGCGCTGAGCCTGGTGACGGTGCTGCTGGACCAGCACCCGGGTCTCGACGAGCTTGCCGTACGGGCCCCCGCCGCCCACGGCGCCGACGAGGTCGAGCCCGACGGCGCGCGCACGTGGCTCGTCGCGCGGCTCACCGCCGAGCACACGCGGCGCATGGACCGGCTCCGGCTCGCGGCCTAG	MPAAVVDLVGFAAYSELAEFGLLATRSVDAPDLAVRQALADGADRALDRERAVLAVVEGSAAEVMAPFADALTGFDTRTRTDDWAEGVLKGVVGHGVAQDFCRALAAGVEDPVGKKLREVLDRPAPGPAAGAEAGADAEAIEVLGRLGAGDEVLASRLALWGRRVVGEALSLVTVLLDQHPGLDELAVRAPAAHGADEVEPDGARTWLVARLTAEHTRRMDRLRLAA				NA	NA	NA	NA	NA
AK001_03083	225			hypothetical protein	GTGGAGATCACGATCGGTGTGCAGAACCTGAACCGCGAGCTGGTGGTGGAGACCGACCAGAAGCCCGAGGAGGTCGCCGAGGCTGTCCGCGCGGCGCTCGAGGGTGGCAAGCCCTTCGAGGTCAAGGACACCAAGGGGCGCCAGATCCTCGTGCCGTCGTCCGTGCTCGGCTACGTGGAGATCGGCAGCGGCGAGCAGCGCCCGGTCGGGTTCGGCTCGCTCTGA	MEITIGVQNLNRELVVETDQKPEEVAEAVRAALEGGKPFEVKDTKGRQILVPSSVLGYVEIGSGEQRPVGFGSL				NA	NA	NA	NA	NA
AK001_03084	3468			hypothetical protein	GTGAACGCCGACGGGGTGTCGGAGGGTCGTGGTCGAATCGTCCCCGTGACAGCCACCGCCCCCTCGCCCGGCGTCCCGACCGGCGCTGCCCGCGCCGCGGTCCGCCTGGTGCCGCCGGCCCCCGCGCAGGACGCCGGGGCCGCGGTCGTGCTGGACGAGACGCAGGAGGCCGCGGTCGCCGAGGCGCTCACGGCGCCCGCCTGCCTCGTCGTGGGCGCGCCGGGCACGGGCCGGACGACGGTCGCGCGCGAGATCGCCGTGCGGGCGATCCGTGACGGTCTGGACCCGGCCCGCGTCCTCGTGCTCGCCGCGACCCGGCGTTCGGCGGCTCGCCTGCGCGACGAGGTGGCCGCCGGTGCGGACCGGACGATCGGGGCGCCGATGGTGCGCACCGCGGCGTCGGCGGCGTTCTCGGTGCTGCGCACCCGGGCCGGGGCGCTGGGCGAACCGGCGCCCACCCTGGTCTCGGGGCCCGAGCAGGACCTCGTGCTCGCCGAGCTCCTGGAGGGCCGGCTCGCGGGGGAGGGGACCCCGCTGCCGCTGCCCGACGGGCTGCCCGAGGAGTCGCTGGGCCTGCGCGGGCTGCGCCAGGAGCTGCGCGACCTGCTGATGCGGGCCGCCGAGCGTGGGCTCGCCCCCGCCGACCTCGCCGCGCTGGGCCGCCGCCACGAGCGGCCCGAGTGGGAGCTCGGGGCGCGCCTGTACGAGGAGTACCTGGACGTCATGGCGCTGCGCCTCGGCACCCCGGACGCCGGGGAGCGGTACGACCCGGCCGTCGTCGTCGACGAGGCGGCGCACGCGCTGGCCACCTGGCGCGACGAGCTCCCCGACACCCCCGCGCCGCGCTGGGACCTCGTCGTGGTTGACGACTACCAGGAGGCCACGGTGGCCACCGCGCGGCTGCTCGGCGTGCTGCACGACGACGGCGCCCGGCTCGCGCTCCTCGCCGACCCGGACGTCGCGGTGCAGGGCTTCCGCGGTGCCGTGCCCGGGCTGGTCGGCCGTGCCGCCGCGCGCCGGGGCGAGGTCGGGGCCTTCGACGCGCGCACCGTCGTCCTGGGGAGCGCGTGGCGTCAGCCCGAGCGGCTGCGCGACGTCACGCGCGCGGTCACGTCCCGCGTCGCGACCGTCTCGGGAGCCCTGCACCGTGGCGCGGCCGCCCGGCCGGACGACGGCGACACCCGAGCGGAGGACGGCGACACCCGGCCGGACGACGCCGCGCGGGCCGACGTCGCCGTGCTCGCCGGCGCCGCCCAGGAGGCCGCGTACATCGCCCGTGAGCTCCGGGCGGAGCACCTGCTGCACGGCACCCCCTGGGAGCGCATGGCCGTGGTCGCCCGCAGCGGCGACCGGCTGGCCTCCCTGCGGCGTGACCTCGTCGCGGCCTCGGTGCCGGTGGCCCTGCTCGGGTCGGACGTTCCGCTGCGCGACGAGCCCGCCGTCGTGCCGCTGCTCGCCGCCCTGCGGGTCTGCGCCGGACCGGGACCCCTGGACCGGATCCTGGCCGAGGGCTCCCCGGAACCGCCGCCGCTGCTCGACCCGGAGACCGCGGCGCTGCTGCTCACCTCACCGGTCGGCGGCCTGGACGTCGTCGCGCTGCGGAGGCTGCGCCGCGCGCTGCGGGCCGAGGAGCTCTCGGGCGGGGGCGGGCGCTCGTCGGACGCGCTGCTGGTCGAGGTGCTCGGCGACCCGGACCGTGCGGCGACCCTGCCGGCCGTCGTGCGCCGCGGGCCCCTCGCCGTGGCGCGGGTGCTCGCCGCGGGCCGGGACGCCGCCGCCGTCGAGGGGGCGACCGCCCAGACCGTGCTGTGGGCCGTGTGGGCCGCCACGGGCCTCGCGGACCGCTGGCGCGACCTGGCGCTCGCGGGCGGTCCGGCCGGTGTGCGGGCCGACCGGGACCTGGACGCCACGCTCGCGCTGTTCCGCGCGGCCGAGACGTACGTCGAGCGCATGCCCGGGGCGCCGGTCGGGGCGTTCGTCGACTACCTCGCCTCCCAGGACCTCCCGGCCGACTCGCTCGCGGCCTCGGCGACCGGGACCCGATCGGTCGAGGCGTTGACACCGGCCGGGGCCGCGGGGCGGGAGTGGGACGTCGTCGTGGTCGCCGGCGTCCAGGACGGTGTGTGGCCCGACCTGCGGCTGCGCGACTCCCTGCTCGGGTCGCAGGCCCTGGTGGAGCTGCTCGCCGGCCGGTCCGCGGACGCCCACGGCGTGGGCAAGGAGGCGCGGGCCCAGGTGCTCGCCGACGAGCTGCGAGCCTTCGCCGTCGCCACCTCGCGGGCCCGCCGCCGTCTGCTCGTCACGGCGGTCGAGGACGCCGAGGACAGCCCCTCGGTGTTCTGCGACCTCGTCGACCCCCGCGGCGACGACGGCGAGGGTCCCGACCCGCGTCGCGTCGGCGTCGGCCCGCCGCTGGACCTGCGCGGGATCGTCGCGGCCGCGCGGGCGGAGCTGGTCCGGGCCGCCACGGCGCGGCTCGCCGCGGGGGACGACACGGGCGAGGAGCCCGCCGCCGACGCCCACGCGGGCAGCGGCGCCGGCCCGGGTGCCGACGGGGGCGAGGGTGCCGACGGGGGCGCCGCTGACGCGGACACCTCCGCCGGGACGGCGGCCGCGCTGCTGGCCCGGCTGGCGGAGGCGGGGATCGCCGAGGCCGACCCGCGGACCTGGTACGGCGTCGCGCACGCCTCCAGCGACGCGCCCCTGTGGGGACCCGAGGACGAGGTGACCGTCTCGCCCTCCAAGGTCGACACGGTGGACTCCTGCGCGCTGCGCTGGGCCTTCGAGTCCGCGGGGGGAACCGCGCCCGACGCCACGCACCAGAGCCTCGGCACGCTGGTGCACAGCATCGCCGAGGAGCACCCCGCCGCGTCGCTGTCGGTGCTGCGCGCCGAGCTCGACCGCCGCTGGCCCGAGCTCGCGCTGTCCGAGGGATGGCCCACCCGCCAGCTCCGGCGCCGCGCCGAGGCCATGATCGAGCGGCTGGCGGCCTACACCGCCGAGCACGGTGAGCCGCTGCTCGTCGAGCCCGCGTTCGACCTGACGGTCGGCCGTGCGCGCCTGCGCGGCAAGATCGACCGGGTCGAGCCCGACGACGACGGCGTGGTCGTCGCCGACCTCAAGACCGGCCGGTCGATGCCCGCGCAGGCGAAGGCGGCGGAGAACCCGCAGCTCGGCGCGTACCAGCTCGCCGTCGAGTCCGGTGCCCTCGACCTGCCCGACGGCGTCCGCAGCGCGGGGGCGCGGCTCGTCTACGTCGCCAACGGCGCCCGCGGTGCCACCCTGCGCACCCAGCCGGCCCTGGAGGTCGAGCCCGACGGGTCGAGCTGGGCGCGTGCGCTCGTCGAGCAGGCGGCCGACGCCATGGCCGCCTCGGCGTTCACCGCCCGGGAGAACGACCTGTGCACCATGTGCCCCGTGCGGCGCAGCTGCCCCGTGCAGACCGAGGGACGGAGCGTGATCTCGTGA	MNADGVSEGRGRIVPVTATAPSPGVPTGAARAAVRLVPPAPAQDAGAAVVLDETQEAAVAEALTAPACLVVGAPGTGRTTVAREIAVRAIRDGLDPARVLVLAATRRSAARLRDEVAAGADRTIGAPMVRTAASAAFSVLRTRAGALGEPAPTLVSGPEQDLVLAELLEGRLAGEGTPLPLPDGLPEESLGLRGLRQELRDLLMRAAERGLAPADLAALGRRHERPEWELGARLYEEYLDVMALRLGTPDAGERYDPAVVVDEAAHALATWRDELPDTPAPRWDLVVVDDYQEATVATARLLGVLHDDGARLALLADPDVAVQGFRGAVPGLVGRAAARRGEVGAFDARTVVLGSAWRQPERLRDVTRAVTSRVATVSGALHRGAAARPDDGDTRAEDGDTRPDDAARADVAVLAGAAQEAAYIARELRAEHLLHGTPWERMAVVARSGDRLASLRRDLVAASVPVALLGSDVPLRDEPAVVPLLAALRVCAGPGPLDRILAEGSPEPPPLLDPETAALLLTSPVGGLDVVALRRLRRALRAEELSGGGGRSSDALLVEVLGDPDRAATLPAVVRRGPLAVARVLAAGRDAAAVEGATAQTVLWAVWAATGLADRWRDLALAGGPAGVRADRDLDATLALFRAAETYVERMPGAPVGAFVDYLASQDLPADSLAASATGTRSVEALTPAGAAGREWDVVVVAGVQDGVWPDLRLRDSLLGSQALVELLAGRSADAHGVGKEARAQVLADELRAFAVATSRARRRLLVTAVEDAEDSPSVFCDLVDPRGDDGEGPDPRRVGVGPPLDLRGIVAAARAELVRAATARLAAGDDTGEEPAADAHAGSGAGPGADGGEGADGGAADADTSAGTAAALLARLAEAGIAEADPRTWYGVAHASSDAPLWGPEDEVTVSPSKVDTVDSCALRWAFESAGGTAPDATHQSLGTLVHSIAEEHPAASLSVLRAELDRRWPELALSEGWPTRQLRRRAEAMIERLAAYTAEHGEPLLVEPAFDLTVGRARLRGKIDRVEPDDDGVVVADLKTGRSMPAQAKAAENPQLGAYQLAVESGALDLPDGVRSAGARLVYVANGARGATLRTQPALEVEPDGSSWARALVEQAADAMAASAFTARENDLCTMCPVRRSCPVQTEGRSVIS				NA	NA	NA	NA	NA
AK001_03085	3516	rep		ATP-dependent DNA helicase Rep	GTGACGACGCCGGACGCCGGCCGGCCGCGCCGCGACGAGGAGCTGCTGCTCGACGACGCCGCCTGGTCCGCCCTGCCGGAGCAGGACCGCAGCGCGCAGCTCGGCTTCCCCGCGCTGGCCGGTCCGGACGACGAGGACGCGCAGCCTTCGGCGCCGCGGCTGTCGGCCCGGGACATCGCCGGGCTGCTCGGGCGTCCCGCCCCCACCGACGAGCAGGTGGCCGTCATCGAGGCGCCGCTGGAGCCGGTGCTGGTCGTGGCCGGCGCCGGGTCGGGCAAGACCGAGACGATGGCGGCCCGCGTCGTGTGGCTCCTGGCCAACGAGCTGGTCGAGCCCGAGGAGGTGCTGGGCCTGACCTTCACCCGCAAGGCGGCCGGTGAGCTGTCCGCGCGGGTGCAGTCCCGCCTGGGGCAGCTCGCGCGGGCGCGGGGAGGGTCGTCGTCCGACCTGGACCTGCTGGCCCGCCCGACCGTCGCCACGTATCACGCGTACGCCGCCTCCCTGGTGGGCGACCACGGGCTGCGCCTCGGCGTGGAGCCCGGGTCGCGACTGCTCGGCGAGGCGAACCAGTGGCAGCTCGCGGCGGAGATCGTCGAGTCCTGGGACGGCGACCTGGGCACCGAGAAGGCGGTCAGCACCGTGGTCGGGGCCGTGCTGTCGCTGTCCGGGGCGCTGGGGGAGCACCTGCGCGACGTCGACGAGGCCCGCGCGGCGCTCGAGGACGTCGTCGAGCGTCTCGAGAACCTGCCGCTCGGTCCGCGCCAGCGGCAGCGCACCAAGGAGGTCGAGGCGCTCATCGGCTCGGTGGCCGAACGAGCCCGCCTGCTCGACCTCGTCGCCGAGTACCGGCGTCGCAAGCGCCACACCGACTCCCTCGACTTCGGCGACCAGGTGGCGTTCGCCGCCGCGCTCGCGCGCACCGTGCCCGCGGTCGGCGCGGCCGAACGCGCGCGCTACCGGGTCGTGCTGCTCGACGAGTACCAGGACACCTCCCACGCGCAGGTCGAGCTGCTCGCCGGCCTGTTCGGCGGGGGGCACCCCGTGACCGCCGTGGGAGACCCGCACCAGTCCATCTACGGCTGGCGCGGGGCCTCCGCGTCCGGTCTGTCGCGGTTCCCCGACCGGTTCCGGCACGCCGACGGCGGCACGGCCGCGGTGCGCTACCTGAGCACGTCGTGGCGGAACGACGCCGCCGTCCTGCAGGCCGCCAACGTGGCGTCCCGCCCGCTGCGCGAGGAGAACGGCGCCGGTGCTGTCCGGGTGCCCCCGCTGGACCTGCGCCCCGGCGCCGGCACGGGGTCCGTCACCGCCCACGTGGCCGCCACCCTGGAGGAGGAGGCCGAGGCCGTCGCGGACTTCGTGGCCGCCCGCTGGCGTCGGTCGAGCCGCCCGGACGACTCCGACCGGGTCACCGCCGCGGTGCTGTGCCGCGTGCGGTCGCAGTTCCCGGCCCTGGAGACGGCGCTGCGCCGGCGCGGGCTGCCCGTGGAGGTGGTCGGCCTCGGCGGCCTGCTGAGCACGCCCGAGGTGGTCGACGTCGTCGCGCTGCTGGAAGCCGTCCACGACCCCTCGCGGGGCGACTCGCTGCTGCGTCTGCTGACCGGGCCGCGCGTGAACCTCGGGGCCGCCGACCTGCACGCGCTGGGATCCTGGGCCGCCGACCTGGCGCGCCGCGACGCCCCGCGGCCCTCCCCGTCGCGCACCGACGCAGCACCCGAGGGGCCCGACGGCCCGGAGGCGGACGACCCCACGGTCGTGGAGGGCGACGTCGTCGACCACCGCTCCCTCGTCGACGCCCTGGACGACCTGCCCGAGCCCGGCCGGGCCGCCCGGGACGGCCGCGTGCTCACCCCCGACGGGCATGCCCGGCTGGCCGCGCTCTCCCGGCTGCTGCGCGGGCTGCGCTCCCTGACGTACCTGTCCCTGCCCGAGCTGGTCGTCGTCGCCGAGCGGGCGCTCGGGCTCGACGTCGAGGTCGCCACGGCGGAGATCCTCGCCGACGGGCTGGTCGCCACCGGCGGTGCGACCGCCGCCGAAGGGGTGAGCCGTCGGGGCCGCGAGCACCTGGACGCGTTCCGCGACGTCGCCGCCGGGTTCGCCCAGTCCGCCGACGTGGCGACGCTGGGCGCGTTCCTGGCCTGGCTCGGCGTCGCCGACGACCAGGAGCGCGGACTGGACATGCCCGTGCGAGAACCCGACCCCGACGCGGTGCAGATCATCACCGCGCACGCCGCCAAGGGCCTGGAGTGGGACGTCGTGGCGGTGCCCGGACTGGTCGACGGCGTCTTCCCGACCATCGCCGAGACCTCGAAGGGTCGCACCGACTCCGGCTGGCTCACGGGCCTCGGCGAGCTGCCCTATCCGCTGCGCGGCGACGCGGACGACCTGCCCGTCTTCCGCCTCGACGAGGCGACCGACACCAAGGACCTCGTCGCCCGCCGGGACGAGTTCGTCCTGGACTGCGGGGCCCACCAGCTCGCCGAGGAGCGCCGGCTCGCCTACGTCGCCTTCACCCGGGCCCGCCGCGAGCTCTTCTGCACCGCGCACTGGTGGGGGACGGGGTCCCGGCCGCGCCAGGTCTCGCCGTTCCTGGTCGAGCTCGCCGCCGAGGGCCTCGTCGACACCAGCGGCTGGCACGCGCTGCCCGACGCCACGGACGGCAACCCCCAGGACGACCTCGAGCGGTCCGGCGTGTGGCCGGCGCCGCGGGACACCGCAGGTCCGGAGGTCTCCCCGCGCGACGTCCTGCGTGCCACCGCCGCCCGCGTCACCGAGGCGGCCCGGCAGGGCGCGGTGCCGGACGACGGCGCCCTGCGCGACGACGCCGGGCACGACCTCGTCGAGCTGTCCCGGATCCTGCTCGCCGAGCAGGCCGAGCACGACGAGCCCACCGTCGAGATGCCCGCGCACGTGTCGGCCTCCGGGCTGGTGCGCCTGTCCCGCGACCGGGACGAGTTCGCGCGCCAGCTGCGCCGGCCCGTGCCCGCCGAACCCACGGTGCACGCCCGCCGCGGGACGCTGTTCCACGCCTGGGTCGAGCAGTTCTACTCCGCGGCCTCCCTCGTGGACGTCGACGACCTGCCCGGTGCCGACGAGCAGGACACCGCCACGGACCTCGCCCTGGACGAGCTGCGCCGGCGCTTCGAGCAGACGCCCTGGGCGGCGCGGACCCCGGTCGCCGTCGAGCAGGACGTGGAGACGCCCATCGGCGGTGTCATGGTGCGCTCGCGGATGGACGCCGTCTTCGTCGATCCCGACGCACCGCCGCCGGCACCGGGCGAGCCGCCGGCCGTCGTCGTCGTGGACTGGAAGACGGGACGCGAACCCACCGACCCCGCCGACCGCGCCCAGCGGGAGGTCCAGCTCGCCGCGTACCGGCTGGCGTGGTCGCGCTGGACGGGGCTGCCCGTGGAGAAGGTCGGCGCGGCGTTCGTCTACGTCACCTCCGGGACGACGGTGCGGCCCGCCGAGCTGCTCGACGAGGCCGGGCTGGAAGCTCTCGTCCGCGGCTCCTAG	MTTPDAGRPRRDEELLLDDAAWSALPEQDRSAQLGFPALAGPDDEDAQPSAPRLSARDIAGLLGRPAPTDEQVAVIEAPLEPVLVVAGAGSGKTETMAARVVWLLANELVEPEEVLGLTFTRKAAGELSARVQSRLGQLARARGGSSSDLDLLARPTVATYHAYAASLVGDHGLRLGVEPGSRLLGEANQWQLAAEIVESWDGDLGTEKAVSTVVGAVLSLSGALGEHLRDVDEARAALEDVVERLENLPLGPRQRQRTKEVEALIGSVAERARLLDLVAEYRRRKRHTDSLDFGDQVAFAAALARTVPAVGAAERARYRVVLLDEYQDTSHAQVELLAGLFGGGHPVTAVGDPHQSIYGWRGASASGLSRFPDRFRHADGGTAAVRYLSTSWRNDAAVLQAANVASRPLREENGAGAVRVPPLDLRPGAGTGSVTAHVAATLEEEAEAVADFVAARWRRSSRPDDSDRVTAAVLCRVRSQFPALETALRRRGLPVEVVGLGGLLSTPEVVDVVALLEAVHDPSRGDSLLRLLTGPRVNLGAADLHALGSWAADLARRDAPRPSPSRTDAAPEGPDGPEADDPTVVEGDVVDHRSLVDALDDLPEPGRAARDGRVLTPDGHARLAALSRLLRGLRSLTYLSLPELVVVAERALGLDVEVATAEILADGLVATGGATAAEGVSRRGREHLDAFRDVAAGFAQSADVATLGAFLAWLGVADDQERGLDMPVREPDPDAVQIITAHAAKGLEWDVVAVPGLVDGVFPTIAETSKGRTDSGWLTGLGELPYPLRGDADDLPVFRLDEATDTKDLVARRDEFVLDCGAHQLAEERRLAYVAFTRARRELFCTAHWWGTGSRPRQVSPFLVELAAEGLVDTSGWHALPDATDGNPQDDLERSGVWPAPRDTAGPEVSPRDVLRATAARVTEAARQGAVPDDGALRDDAGHDLVELSRILLAEQAEHDEPTVEMPAHVSASGLVRLSRDRDEFARQLRRPVPAEPTVHARRGTLFHAWVEQFYSAASLVDVDDLPGADEQDTATDLALDELRRRFEQTPWAARTPVAVEQDVETPIGGVMVRSRMDAVFVDPDAPPPAPGEPPAVVVVDWKTGREPTDPADRAQREVQLAAYRLAWSRWTGLPVEKVGAAFVYVTSGTTVRPAELLDEAGLEALVRGS				NA	NA	NA	NA	NA
AK001_03086	372			hypothetical protein	GTGGTCGCAGCCGTGGGTCTCGTCGTCGTCCTGGCACTGCTCGCTCTGTTCCAGGTGCTGGTCGCCTGCGGTGCCCCGCTGGGTGCATTCGTCTGGGGCGGCCGCCACCGGGTGCTCCCGGCGCGGCTCCGCGTCGGCAGCCTGGTCGCCGTGCTGGTCTACGCGGCGGTCTCCGTCGTCGCGCTGGACCGCGCGGGCATGATCGACGTGCTGCCCGACGGCGTCGCCCGCGTGGCGATGTGGGTGGTCGTCGGGTGGTTCGCGCTGTCGATCGTGCCCAACGCCATCTCCCGCAGCCGTCCCGAGCGGCTCCTGATGACACCCGTCACCGTGGTGCTCGCCGTGCTCGCCCTCCTGGTCGCCCTCTCCTGA	MVAAVGLVVVLALLALFQVLVACGAPLGAFVWGGRHRVLPARLRVGSLVAVLVYAAVSVVALDRAGMIDVLPDGVARVAMWVVVGWFALSIVPNAISRSRPERLLMTPVTVVLAVLALLVALS				NA	NA	NA	NA	NA
AK001_03087	924			hypothetical protein	GTGCCCCGAAGTCCCCTCGCTCTCGCCGCGCTCGCCACGGCTGCCGTGCCCGGCCTCGACGCGCGGTCCGTGCACCCCGACGACGTGCCCGGCGACTACGACGTCGCCATCGTCACGACCGGGGACGGCGCGGAGTGGCTGGTCCGCGCACCGTCGACGACGCTCGCCGGCGCCGCCCTCGAGGCCGAGATCGAGCTGCTCGAGTCGCTGCACCTGTACGTCGAGGCGGGCGTGCTGCCCTTCACCGTGCCCCGCGTCGCCGGGTCGGCGCTGCTGCCCGAGGGCGGTCGCGCCGTCGTCCACCGGCGCCTGAGCGGCAGCCCCCTGGACGTCGCCGCGCTGCGCCCCGGGCCGGGGCTCGCCGCCGACCTGGGGCGCACGCTCGCCGCGGTGCACGAGCTGCCGGTGGCGGTCGTCGAGGCGTGCGGGCTGCCCTGCTACACCGCGGCCGAGTACCGCGAGCGCCGCCTGGTCGAGCTGGACGAGGCGGCCGCGACCCGGCGCGTGCCGACGCGGCTGCTGCGCCGGTGGGAGGCCGCGCTGGAGGACATCAGCCTGTGGCGGTTCCAGCCGGTCGTCGTGCACGGGGACCTCGCCCCCGACCAGGTGCTGGCCTCCGGGAACCGGGTGGGCAGCATCAGCGGATGGTCGGAGGCGCGGGTCGCCGACCCGGCCGACGATCTCGCCTGGCTGCTCGCCGCGGCGCCGCCGGAGTGCGTGGACGCGATCATGGAGGCCTACCGGCTGCGCCGGACCGAGCTGGCGGACCCTCGCCTCGTCGACCGCGCCCTGCTCGTGGGCGAGCTGGCCCTGGCCCGGTGGCTCATGCACGGGGTGCGCCGCGGCCTGCCGGACGTCGTGGCCGACGCGGAGTCGATGCTCGCCGACCTCGACGAGGCCACCCGGGAGGACACCCCCGCGTGA	MPRSPLALAALATAAVPGLDARSVHPDDVPGDYDVAIVTTGDGAEWLVRAPSTTLAGAALEAEIELLESLHLYVEAGVLPFTVPRVAGSALLPEGGRAVVHRRLSGSPLDVAALRPGPGLAADLGRTLAAVHELPVAVVEACGLPCYTAAEYRERRLVELDEAAATRRVPTRLLRRWEAALEDISLWRFQPVVVHGDLAPDQVLASGNRVGSISGWSEARVADPADDLAWLLAAAPPECVDAIMEAYRLRRTELADPRLVDRALLVGELALARWLMHGVRRGLPDVVADAESMLADLDEATREDTPA	PGPT0028010_209	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0028010-mph-K06979	NA	NA
AK001_03088	972	nudC		NADH pyrophosphatase	GTGTCCTGGCGTACGGTCGCAGGCGTGAACCCCCTGGAGCTGCCGTTCTCCCGCACCCGCCACGACCGCGCCGCGCACCGGCGCTCCGAGAGCGACCTCGTCGACCGGCTGCGGCGGGGACCTGACACCCGGGTGCTGGTCCTGCACCGCAAGCGTCTCGCCGTCGTCGGCCACGAGTCGCCGCGCGCGGCGCTGCTCGCCCCGGGCGGGCTGCCCGAGGGGACCTGGGTCTACCTCGGCGAGGACCACGGCGCGTCCTACGCGGCGCTGCTGCTGCCCGACGACGAGGACCTCGCACCGCCGGAGGGCGCCGACGGGTGGTCGGGGCTGCGCGAGCTGACGTCCGGCCAGGCTGAGGCGCTGGCGGAGGACGACGACGCGACGGTCCTGGTGCACGGCCTGTCGGTGGAGGCCGTGGCCCTGGCGGGCTGGCACGCCACGCACCGACGCTGCGGTCGCTGCGGCACACCGACCCTCGTGGTCCAGGGCGGCTGGGCGCGCCACTGCCCGGTGGACGAGCGCGAGACCTATCCGCGCACCGACCCCGCGGTCATCATGGCCGTCGTGGACGACGCCGACCGGCTGCTGCTCGGGCACGCGGCCACGTGGCCGGCGGGACGGTTCTCGACGCTGGCCGGCTTCGTCGAGGCGGGCGAGGCGCTGGAGGACACGGTGCGTCGCGAGGTGGCCGAGGAGTCCGGCGTCGTCGTCGGCACCGAGCCCGGCGACGTGGTCTACCGGGGCTCGCAGGCCTGGCCGTTCCCGGCCTCGCTCATGCTCGGCTTCCGGGCGCGGGCGATCGGGACCGAGGTGCGCACCGACGACGAGGAGGTCACCGACGCGCGCTGGTTCGCGCGCGACGAGCTGTACGACGCGGCCGCCTCCCGCGAGCTGCTGCTGCCCGGGCGGCACTCGATCGCCCGGGCCCTCATCGAGGAGTGGTACGGCGCGGAGCTGCCGGGCACCTGGTGA	MSWRTVAGVNPLELPFSRTRHDRAAHRRSESDLVDRLRRGPDTRVLVLHRKRLAVVGHESPRAALLAPGGLPEGTWVYLGEDHGASYAALLLPDDEDLAPPEGADGWSGLRELTSGQAEALAEDDDATVLVHGLSVEAVALAGWHATHRRCGRCGTPTLVVQGGWARHCPVDERETYPRTDPAVIMAVVDDADRLLLGHAATWPAGRFSTLAGFVEAGEALEDTVRREVAEESGVVVGTEPGDVVYRGSQAWPFPASLMLGFRARAIGTEVRTDDEEVTDARWFARDELYDAAASRELLLPGRHSIARALIEEWYGAELPGTW	PGPT0013440_990	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426	NA	NA
AK001_03089	264		COG0695	Putative glutaredoxin.1	ATGACCCTCGCCCCGACGCTGCCCGAGCCCGGCACCATCACGATGTACTCCACGCCGTGGTGCGGCTACTGCCGGCGCCTGCGCACGCAGCTCGACTCCGAGGGCATCGGCTACACGGTGATCGACATCGAGGAGCAGCCCGAGACGGCCGCGTACGTCGAGCAGGTCAACGGCGGCAACCGCACCGTGCCGACGGTCGTCTACCCCGACGGGTCCGCCGCGACCAACCCGTCGCTGGCCGACGTGCGCTCCGCCCTGTCCTGA	MTLAPTLPEPGTITMYSTPWCGYCRRLRTQLDSEGIGYTVIDIEEQPETAAYVEQVNGGNRTVPTVVYPDGSAATNPSLADVRSALS				NA	NA	NA	NA	NA
AK001_03090	2046	uvrD2	COG0210	ATP-dependent DNA helicase UvrD2	ATGTCCCTCACGACCAACTCACCGGGCGCCCCGCTTCATCCCGACGCGATCCTGGACGCCCTCGACCCCGAGCAGCGCGACGTCGCGCTCGCGCTGACCGGTCCCGTCTGCGTGCTCGCGGGCGCCGGCACGGGCAAGACCCGGGCGATCACCCACCGGATCGCCTACGGCGTGCGCACCGGGGCCTACCCGCCGACGTCGGTGCTCGCCGTGACCTTCACCGCCCGGGCGGCGGGGGAGATGCGCACCCGCCTGCGCGACCTGGGTGCCCACGGCGTGCAGGCGCGCACGTTCCACGCGGCCGCCCTGCGCCAGCTCGGCTACTTCTGGCCGCGCATCGTCGGCGGCGCGCCGCCCCAGATCCTCGAGCACAAGGCACCGGCGGTGGCCGAGGCCGCGCGGCGCGTGGGGGCGAGCGTCGACCGCGTCGCCGTGCGCGACCTGTCCAGCGAGGTCGAGTGGTCCAAGGTGTCGCTCGTCACCGCCGAGGACTACGTGCGGGCCGCCGCGGCCGACGACCGACCGCCGCCGTCGGGCTACGACCACCAGACGGTGGCGCGCCTCATCAGCGCCTACGAGGACGTCAAGACCGAGCGCGGGGTCATCGACTTCGAGGACGTGCTGCTGATGCTCGCCGACATGCTCGGCTCGCACCCGCACGTCGCCGACCAGGTGCGCTCGCAGTACCGCCACTTCGTCGTCGACGAGTTCCAGGACGTCTCGCCGCTGCAGCACTTCCTGCTGAACCAGTGGCTGGGGGACCGGCGCGAGCTGTGCGTGGTGGGCGACCCGTCGCAGACCATCTACTCGTTCACCGGTGCGACGCCGCACTACCTGCTCGACTTCACGCGCACGTACCGCGACGCCCAGGTCGTCAGGCTCGTGCGGGACTACCGCTCCACCCCGCAGGTGGTCTCCCTGGCCAACGACCTGCTGCGCCGTGGCCGGGTCACGGGGGCGCTGGAGCTCGTGGCGCAGCGACCCTCGGGTCCGGCGGTGTCCTTCACCACCCATGACGACGACGAGGCCGAGGCGGCCGGCATCGCCGCCCGGGCCGCGCGCCTCGTCGCCGACGGCGTGCGGCCCAGCGAGATCGCCGTGCTGTACCGCACCAACGCGCAGTCGGCCTCCTTCGAGTCGGCGCTGTCCGAGGCCGGCGTCAGCTATCAGGTGCGCGGCGGCGAACGCTTCTTCACCCGCAAGGACGTCCGCGACGCCATCGTGCTGCTGCGGGGTGCCGCGCGCTCCGCCGACCCCGACCAGCCGATGCCGGAGCAGGTGCGCGACGTGCTCGTCTCGGCCGGCTGGTCCGCCGAGCCGCCCCACGCCCGGGGCGCGGCGCGCGAGCGCTGGGAGGCCATGCAGGCGCTGGTGGCGCTCGCGGACGACCTGGCCGCCGCCGCGCCGGAGGACGCGCCGGCGACGCTGCCGATGCTGGTCGACGAGCTCGCCGAACGGGCGGCCTCCCAGCACGCACCGACGGTCGAGGGCGTCACGCTGGCCTCGCTGCACTCGGCCAAGGGGCTCGAGTGGGACGCGGTGTTCCTCGCGGGCATGAGCGAGGGACTCATGCCGATCTCCCTGGCCGAGACCCCCGAGGGTGTCGAGGAGGAGCGCCGGCTGCTGTACGTCGGGATCACCCGGGCGCGCGAGCACCTGGAGATCTCCTACGCCCGGTCCCGCAACCCCGGCGGACGCGCCTCGCGCAAGCGCACCCGGTTCCTCGACGGTCTGTGGCCCGACGACGGGCGCGGGCGGCGCGGGGGTGCCGGGCGGGGCGCTCGCGGGCAGGCTCGGTCCCAGCTCTCCGGGGAGGCCGACGTGGCGCTGTTCGACGCGCTGCGCGAGTGGCGGCTGTCCGTGGCCCGCGAGGTCGACAAGCCCGCGTTCACGATCCTGGGTGACGCGACGCTGGCCGCGATCGCCGAGCTGCGGCCGTCCTCGACCGCCCAGCTGGCGCGGATCAACGGCATCGGACCGGCCAAGATCGACCGCTACGGCGAGACCCTGCTCGACCTGGTGCGCGGGGCGTCCGAGGCCTCCTGA	MSLTTNSPGAPLHPDAILDALDPEQRDVALALTGPVCVLAGAGTGKTRAITHRIAYGVRTGAYPPTSVLAVTFTARAAGEMRTRLRDLGAHGVQARTFHAAALRQLGYFWPRIVGGAPPQILEHKAPAVAEAARRVGASVDRVAVRDLSSEVEWSKVSLVTAEDYVRAAAADDRPPPSGYDHQTVARLISAYEDVKTERGVIDFEDVLLMLADMLGSHPHVADQVRSQYRHFVVDEFQDVSPLQHFLLNQWLGDRRELCVVGDPSQTIYSFTGATPHYLLDFTRTYRDAQVVRLVRDYRSTPQVVSLANDLLRRGRVTGALELVAQRPSGPAVSFTTHDDDEAEAAGIAARAARLVADGVRPSEIAVLYRTNAQSASFESALSEAGVSYQVRGGERFFTRKDVRDAIVLLRGAARSADPDQPMPEQVRDVLVSAGWSAEPPHARGAARERWEAMQALVALADDLAAAAPEDAPATLPMLVDELAERAASQHAPTVEGVTLASLHSAKGLEWDAVFLAGMSEGLMPISLAETPEGVEEERRLLYVGITRAREHLEISYARSRNPGGRASRKRTRFLDGLWPDDGRGRRGGAGRGARGQARSQLSGEADVALFDALREWRLSVAREVDKPAFTILGDATLAAIAELRPSSTAQLARINGIGPAKIDRYGETLLDLVRGASEAS				NA	NA	NA	NA	NA
AK001_03091	168			hypothetical protein	ATGAACACGATGAAGCAGAACATCGGCGCGACCGGCATCGCGACGGGGGAGAAGTACGCCTTCATCACTGTCGTTCCGGCTGTGCGTCTGCGCACGCGCGGCGGAGCAGGCGTTGCTCTCGTCGATCTCGCACCCGGCTCCGCTCCCTGGAGGCATCCGGTCCACTGA	MNTMKQNIGATGIATGEKYAFITVVPAVRLRTRGGAGVALVDLAPGSAPWRHPVH				NA	NA	NA	NA	NA
AK001_03092	369	whiB_3		Transcriptional regulator WhiB	GTGCGTCTCGCACAGCTGTTGGACGAGCGGCTGGTCGATGCGACCCCCGCCGGCGGCAGCCGCCAGTGGACCCCCCACCAACCCGTGACCCAGGACCCGGCCGAGGTGGCCGCGCTGGACCGGCAGTTCGCCGAGCTGCTGCCGTGCCGGACCAACGACCCCGAGCTCTGGTTCGCGGAGCACACCAGCGAGGTCGAGCGGGCCAAGGCCCTGTGCCGGACCTGCCCGCTGCAGGCGGGCTGCCTGGCCGGCGCCCTCGACCGCAACGAACCCTGGGGCGTCTGGGGCGGCGAGGTGTTCGTCGACGGTGTCGTCGTGGCCCGCAAGCGGGGGCGGGGCCGGCCGCGCAAGAGCGAGCAGGCGGCCTGA	MRLAQLLDERLVDATPAGGSRQWTPHQPVTQDPAEVAALDRQFAELLPCRTNDPELWFAEHTSEVERAKALCRTCPLQAGCLAGALDRNEPWGVWGGEVFVDGVVVARKRGRGRPRKSEQAA				NA	NA	NA	NA	NA
AK001_03093	1095			hypothetical protein	ATGGCTCCCGCCGACACCTCCGCCCCCGCTCGCCGACTGCGGCTGCGCCGGGGGACGCCGGTCCTGGACCGCGGCTCCGGGACGCTCCAGCTCGGGTCGGACCACCGGTGGTCGCTGCTGGTCTCCGGGCTGTCCGACGCCGAGCGGACCTGGTTGCACGAGGCCGCCGCCGCGCGCCACGGCGACCTGGAGCACGGCGCCGCCCGGCACCGGGTCGCGCCGGAGCGACGCGCCCGGATCCTCAGGCTGCTGGCCGACGCCGGCTTCCTCGTCCCGCCGGCCGCCCCCGCCGCGGCGGTCCGGGCCGCGGCCGGCGGTGCGGCGGACGCGCCGACCCTCGCCGCGCTCCGGGTCGACGGCGACGGGCTGCGCACCCTCGCCGGGCGGGCACGCTCCCGGGTGGCCGTGGTCGGGCTGGGGCGGCTCGGAGCGCTGCTGGCGGCACACCTCGCCACCGCCGGGGTCGGCACCGTGCTGCTCGACGACGACTCCCCCGTCCAGCTCGTCGACCTGGGAGTCGGCGCCTACGACGAGGTCGACGTCGGGCACCGGCGCGCGTCGTGCCTGCGGCGCCGGCTGGCGGAGCAGCACCCCGGGACCCGGGTGGCGACGACGTGGCGCGACGAGGCTCCGCCCGACGCGGTGGTCGTCTGCACCGGTGCGGGCCGACCGGAGGACTTCGCCCGGCTGATGAGTCACGGCATCGCCCACCTGCCGGTCGTGGCCGGCGAGGCCGGTCTGGAGGTCGGGCCGTTCGTCCGACCCGGCACGACGGCCTGCGTCGCCTGCCGGTTCCACCACGACGTGGACGCCGACCCCGACTGGCCGCGGCTCGTCGGCCAGCTCGCCGGATGGGCCCTGCACGCCGGGCACGAGACGGTGCTGGCCACGACCGGGGCCGCCCTCGCCACCGGTCAGGTGCTCGCCCACCTGGACGGCGGTCGGCCCGCCGCGGCGGGCGCGGTGCTGCAGGTCGGGCTGCCGGACGCCCTGGCACGGGTCCGCCCGCTGCCGCCGCACCCGGACTGCGGGTGCACGGCGCCGGCGCCTCCCCCGGTCCGCCGGGTCCCGGCGACGCGGCCGGCGCACCCGTAG	MAPADTSAPARRLRLRRGTPVLDRGSGTLQLGSDHRWSLLVSGLSDAERTWLHEAAAARHGDLEHGAARHRVAPERRARILRLLADAGFLVPPAAPAAAVRAAAGGAADAPTLAALRVDGDGLRTLAGRARSRVAVVGLGRLGALLAAHLATAGVGTVLLDDDSPVQLVDLGVGAYDEVDVGHRRASCLRRRLAEQHPGTRVATTWRDEAPPDAVVVCTGAGRPEDFARLMSHGIAHLPVVAGEAGLEVGPFVRPGTTACVACRFHHDVDADPDWPRLVGQLAGWALHAGHETVLATTGAALATGQVLAHLDGGRPAAAGAVLQVGLPDALARVRPLPPHPDCGCTAPAPPPVRRVPATRPAHP				NA	NA	NA	NA	NA
AK001_03094	489			hypothetical protein	GTGAGCGCTTTTCGCGACGGCGACCGCACCGTCGTCGCGATCCCCGCGCGCTTCTCCCAGGCCCAGGAGCGCGAGTGGGTGGCCAAGATGCTCGCTCGCCTCGAGGACAAGGAGCGGCGTCGCCGCCCGTCCGACGACGAGCTCGTCGAGCGGGCGCACGAGCTCTCGGTGAAGTACCTCGACGGCCGGGCGCGGCCCACCAGCGTGCGCTGGGTGTCCAACCAGGAGCGCCGCTGGGGCTCGTGCACGCTCGTGGACGGCTCCATCCGGCTGTCGACCCGCCTGCAGGGGATGCCGGAGTGGGTCATCGACTACGTGCTCCTGCACGAGCTGGCGCACCTGCTGCACGCCGGCCACGGACCCGACTTCTGGCGCCTGCTCGAGTCCTACCCCCGCACCGAGCGGGCGCGAGGGTTCCTCGAGGGCGTGTCCTTCTCCGGGGACGGCGCCCCGGACGACGACGCCGACTCCGGGTCGTCGGCCGGCTGA	MSAFRDGDRTVVAIPARFSQAQEREWVAKMLARLEDKERRRRPSDDELVERAHELSVKYLDGRARPTSVRWVSNQERRWGSCTLVDGSIRLSTRLQGMPEWVIDYVLLHELAHLLHAGHGPDFWRLLESYPRTERARGFLEGVSFSGDGAPDDDADSGSSAG				NA	NA	NA	NA	NA
AK001_03095	1443			hypothetical protein	ATGAGCGACCTGCCCGACGACCACGACGACCGCGAGCAGATGCTGCGGGACGCACTGCGCGGCATCTTCGGCGACCGGACCGACGAGGTGCTGAGCCAGATGCGGGCGCAGGGGCTGGACCCTGCGGCCCTGATGGGCGGCGCCGCCCCCGACCCGGCGACCATGCAGCGGCTGATGTCCCAGCTCCAGCGGGTGTTCACCTCCTCCGAGGGCCCCGTGAACGCCGAGGTCGCGCACGACCTGGCGCGCCAGGTCGCGGTCGCCGAGGGCGACCCGTCCCTGACCGGCGGGCAGGCGAAGTCGGCGACGGAGGCCCTGCGCGTCGCCGAGCTGTGGCTCGACGCCGTCACCGATCTACCGCCGTCGGGCGGTCCGACCCGGGCCTGGAGCCGCAGCGAGTGGGTCGAGGCGACCCTGCCGGCCTGGCAGCGGCTGGTGGCGCCCGTCGCGTCCTCCGTCGCGGACGCGCTGGCCACGGTGCTGCGCGACCAGCTCGGCGACGAGGGCGCGGGGGCGCTGGGCATGCCCGGCATGCCCGTGTTCCCCGGGGGCGGGCTGGGCGACCTGGACCCGGCCTCGATGATGCGCGGGCTCGGGTCCGCGGTCTACGGCATGCAGGTCGGCCAGGCCGCGGGCACGCTGTCGCGCGAGGTCTTCGGCTCGACTGACGTCGGCCTCCCGCTGCTCGAGGACCACGCCACCGTGCTGCTGCCCACCAACGTGGCCGCCTTCGCCGAGGGGCTCGACACCCCCTACGACGAGGTGCAGCTCTACCTGGCGCTGCGCGAGGCGGCCCACGCCCGGCTGTTCGTCCACGTCCCCTGGCTCCGGGCGCACCTGCACGCCCTCGTGGAGCAGTACGCCCGCGGGATCACCATCGACCTCGACGCGCTCGAGGAGCAGGTGCGCGGCGTCGACATGTCCGACCCGGAGGCGCTGCGGGGCGCGCTGTCCGGCGACGTGTTCGGGCTGCACAACACCGACGAGCAGAAGGCGACGCTGCTGCGGCTGGAGACCGCGCTCGCGCTCGTCGAGGGCTGGGTCTCGGAGGTCGCGGCGACCGCGTCCCTGGCGCACCTGCCGCACTCGGTGCCGCTGCGCGAGATGATCCGGCGACGTCGCGCGGCGGGCGGCCCGGCCGAGCACACCTTCAAGTCGCTCGTCGGCCTGGAGCTGCGTCCGCGCCGTTCCCGGGACGCGGCCGCGCTCTTCGCGCACCTGGTGGCCACCGGCGGGCCCGAGTCCCGCGACGCCGTCTGGGACCACCCCGACCTGCTGCCGGGCACCGAGGACCTCGACGACCCGGCCGGCTACCTGGACCGTCGGCGCGCGCAGGCCGAGGAGCAGTCGGACGTGGACGCGGCCCTGGCGCAGATCCTCGGCGAGTCCGACGACGACCGGGGGCCGGACGCGGACGGCCGCGCGGAGGACTCCGGGTCCTGA	MSDLPDDHDDREQMLRDALRGIFGDRTDEVLSQMRAQGLDPAALMGGAAPDPATMQRLMSQLQRVFTSSEGPVNAEVAHDLARQVAVAEGDPSLTGGQAKSATEALRVAELWLDAVTDLPPSGGPTRAWSRSEWVEATLPAWQRLVAPVASSVADALATVLRDQLGDEGAGALGMPGMPVFPGGGLGDLDPASMMRGLGSAVYGMQVGQAAGTLSREVFGSTDVGLPLLEDHATVLLPTNVAAFAEGLDTPYDEVQLYLALREAAHARLFVHVPWLRAHLHALVEQYARGITIDLDALEEQVRGVDMSDPEALRGALSGDVFGLHNTDEQKATLLRLETALALVEGWVSEVAATASLAHLPHSVPLREMIRRRRAAGGPAEHTFKSLVGLELRPRRSRDAAALFAHLVATGGPESRDAVWDHPDLLPGTEDLDDPAGYLDRRRAQAEEQSDVDAALAQILGESDDDRGPDADGRAEDSGS				NA	NA	NA	NA	NA
AK001_03096	1185	ylbL	COG3480	putative protein YlbL	GTGAGCTTCGAGGACCGCAGTCATCAGCCGTACGCGAGCTACGGGCAGGCCCTGGCCCCGATCGACGTGCCCCGCGCCCGCGAGGGCGTGCCGCACCGCCGGATGAGCCCGCGGTCGGTGACGCTCGTCGCCTCGCTGCTGGCCACCGCGATCCTGGCGGCCGTGCTCATGGTGACGCCCGCCCCGTACGCGATCCGCACGCCGGGGCCGACCGAGGACACCCTCGGGGCCCAGGACGCCGGTGACGGGCAGAGCGCCACGGAGGTGCCCCTCATCGAGATCTCGGGCGCCGAGACCTACCCCGCCTCGGGCGAGCTGCGCCTGACCACGGTCTCGGTCTTCGGCGGACCGGGCGGCGACGTGCTCTTCGGCGACGTGCTGTGGGGCTGGACCTCGCAGGAGCGGTCGGTGCAGCCCGTCGAGGCGATCTTCCCCGAGCCGATCACCTCCGAGGAGCAGCAGGAGCAGGGCCAGGCCCAGATGCTCAGCTCCCAGGAGTCCGCGTCGGTCGCGGCGCTGACCGAGCTCGGCTACGAGGTCCCCACCACGATGACGGTGGTCGCCGCGGCCGAGGGCACCGGGGCCGAGGGCGTGGTCGAGGAGGGCGACGTCATCGTCGCCCTGGACGGGGAGCCCGTGGACACCTATCCGCAGCTGCTGGCCGCGCTCGACGACGTGACGCCGGGCGACGACGTCGTGCTGGGCGTGGAGCGCGAGGGCGAGCCCGCCGACCTCACGGTCACCACCGGCCAGGGTGACGACCGGGCCCTGCTCGGCGTGCTCCTCGACCCCGAGTACGACTTCCCGGTGGACGTCACGATCCAGCTCGAGGACATCGGCGGCCCGAGCGCCGGCAGCATGTTCGCCCTGGGGATCGTGGACCTGCTGACCCCGGAGGACGAGCTCGGGGGCGCCGTGGTGGCCGGGACCGGCACGGTGGACGTCGACGGGCGGATCGGGCCCATCGGGGGGATCGAGCAGAAGATGTACGGCGCGCTGCGGGACGGGGCCGGCTGGTTCCTCGCGCCGTCGGACAACTGCCCCCAGGTGGCCGGCCACGTCCCCGACGGGCTCGGGGTGGTGTCGGTGAGCACCCTCGCCGAGGCCCGTGACGCGATGGGGGCGATCGGTGCCGGGGAGACGTCCGGTCTGCCCACCTGCGAGGCCGACGCCGCGGGCGCCTGA	MSFEDRSHQPYASYGQALAPIDVPRAREGVPHRRMSPRSVTLVASLLATAILAAVLMVTPAPYAIRTPGPTEDTLGAQDAGDGQSATEVPLIEISGAETYPASGELRLTTVSVFGGPGGDVLFGDVLWGWTSQERSVQPVEAIFPEPITSEEQQEQGQAQMLSSQESASVAALTELGYEVPTTMTVVAAAEGTGAEGVVEEGDVIVALDGEPVDTYPQLLAALDDVTPGDDVVLGVEREGEPADLTVTTGQGDDRALLGVLLDPEYDFPVDVTIQLEDIGGPSAGSMFALGIVDLLTPEDELGGAVVAGTGTVDVDGRIGPIGGIEQKMYGALRDGAGWFLAPSDNCPQVAGHVPDGLGVVSVSTLAEARDAMGAIGAGETSGLPTCEADAAGA				NA	NA	NA	NA	NA
AK001_03097	3045			hypothetical protein	GTGTCCTTCGCTCCGCCCCGACGTCCAGACGGTCCGCCCCCGGCCCGACGTCGCAGCCCGCTGCTCATCACCCTGGTGGTGCTGGCTGCCCTGGTGGTCGTGCTGCTCTTCCTGACCAACTTCTGGACCGAGGTGCTGTGGTTCACCCAGGTCGGGTACGCCAACGTGGTCTGGACGCACTGGATCTCCCGCGGCGTGCTGTTCACCGTCGGGTTCCTGCTCATGGCGGCCGCCGTCTACAGCTCGTTCGCGATCGGCTACCGGACGCGTCCGGTCTACGCCCCGTCGACACCCGAGCAGGCGACCCTCGACCAGTACCGCGAGGCGGTCGAGCCGCTGCGCAAGGTCGTGACGTACGCGGGCCCCGTGCTCATCGGCTTCTTCGCCGGTGTCGCGGCGTCGGCCCAGTGGGAGACCGTCCTGCTGGCCCTCAACGGGCAGTCGTTCGGCAGCGCGGACCCCGAGTTCGGCATCGACGTCGGCTTCTACGTCTTCACGCTGCCCGCCCTGCGCTTCGTGGTCAGCTTCCTCATGGCGGTGCTCGTCATCTCGGCCATCGCGGCCGTGGTGACCCACTACCTCTACGGCGGCGTCCGCATCGGCGCGATCACCGACGGCTCGCCGCGCACCACCACCGCGGCGCGCGTGCACCTGGCCGTGCTGGGCACGCTGATCATGCTGCTCATCGCCGCGAACTACTGGCTGGACCGGTACTCGATCCTCACCAGCCGGCACGAGCGGTACGACGGCGCCAACTACACCGACGTGCACGCGGTCATCCCGTCCAAGGAGATCCTCACGGGCGTCGCCGTGCTGGTCGCGATCCTCTTCGTGGTCGCCGCCTTCCGGGACACCTGGCGGCTGCCGGCGATCGGCGTGGGACTCATGGTCGTCTCCGCGATCGCGATCGGGGCCATCTACCCGGCCATCGTGCAGCGGTTCCAGGTCGACCCGAACGCCCAGTCGCTCGAGGCGCCGTACATCCAGCGCAACATCGACGCGACCCTCGACGCGTTCGACATCGACGAGGTCGAGTCGCAGCAGTACGAGGCGACCACCGAGGCCGAGGCCGGCCAGCTGCGCGACGACGCGGGCACGACCACCCAGGTGCGGCTCCTCGACCCGCAGGTCGTCAGCCCCTCGTTCCGCCAGCTGCAGCAGAACAAGCAGTACTACAACTTCACGGACAACCTGGCCGTCGACCGCTACGACATCGACGGCGAGTCCCGCGACACCGTCATCGCGGTGCGCGAGCTGAACCTCAGCGGTCTGGCCGACCGGAACTGGACCAACGACCGCACGGTCTACACCCACGGGTTCGGCGTCGTGGCGGCCTACGGCAACCAGCCCGGCCCGGACGGTCAGCCGGCGTTCTTCGAGGGCGGCATCCCCACCCAGGGCGCGCTGACGGACATGTTCTCCGGCGGGTACGAGCCGCGCATCTACTTCAGCCCCGAGGCCCCGCCGTACTCCATCGTGGGCGCCCCCGAGGGCACCGACCCGTGGGAGCTGGACTACCAGGCGGACGCCGAGGGTGGTCAGCAGGAGCTGTACAGCTTCCCGACCGACGAGGTCACGGCCGGTCCCGACATCGGGACCTTCATGCAGCGGCTGCTCTACGCGCTGCGGTTCGGCGACGAGGAGATCTTCTTCTCCGACCGTGTCACCGAGGTCTCGCAGATCCTGTACCACCGCGACCCGCAGGAGCGCGTCGCGAAGGTCGCCCCGTGGCTGACCCTGGACAACAAGGTCTACCCGGCCGTCGTCGACGGCCGCGTGAAGTGGGTCGTGGACGCGTACACCACCTCGGACGCGTACCCGTACTCCGCGAGCACGCAGATGCAGGAGGCCACGACGGACTCGCTGACGGCGGCGGCCCAGGGCCTGCCGGTCGAGGCGCCGCCCGAGGTCAACTACATCCGCAACTCGGTGAAGGCCACCGTGGACGCCTACGACGGCTCGGTGACGCTGTACGCCTGGGACGACGAGGACCCGCTGCTGCAGGCCTGGAACGACGTCTTCCCGGACTCGGTGCGCCCGATCTCGGAGATGTCCGGCAACCTCATGTCGCACGTGCGCTACCCCGAGGACATGTTCAAGGTGCAGCGCACCCTGCTCGAGCGCTACCACGTCACCGAGGCCCAGCAGTTCTTCGCCGGCTCGGACGAGTGGCGGACCCCGGACGACCCGGTGGGCGGTGACGACACGCTGGCCTCCAAGCAGCCGCCGTACTACCTGACGCTGCAGATGCCGGGCGAGGAGGACCCCGCGTTCTCCCTGACGAGCACCTTCATCCCGGGTGGTTTCACCGACCGGGAGATCCTCACCGGATACCTGGCGGCGGACGCCGACGCCGGGTCGACCGACGGGGAGGTCGACGAGGGCTACGGCACGCTCCGGCTGCTCGAGCTGCCGCGTGACTCGACGGTGCCCGGCCCCGGTCAGGTGCAGAACAACTTCAACTCGAACCCGACGATCTCGGAGCAGCTGAACATCCTGGGTCGTGGTGACTCGGAGGTCGTGCGCGGCAACCAGCTGACGCTGCCGGTCGGCGGCGGTCTGCTGTACGTCCAGCCGGTCTACATCCAGTCCGGGTCGGGCACGCAGTTCCCGCTGCTGCGTCGCGTGCTGGTGGCCTTCGGCGACCAGACCGGCTATGCCGAGACCCTCGACGAGGCGCTGGACCAGGTGTTCGGCGGTGACTCGGGTGCCGAGGCCGGGGACGCGGACGAGGCCGAGTCCGAGGTGCCCACCGACCAGGTGGACCCGGAGACCGGCGAGCCGGTGGAGCCGACGGCCGAGCCGACTCCCGAGGAGACGACGGAGCCGACGCCGGAGCCCACCGAGACGCAGGACACCGGTGACGCCACCGACGGGTCGCCGCAGGCCCGGCTCGACGCGGCGCTGCAGGACGCCAACGAGGCGCTCACCGACAGCAACCAGGCGCTGCAGGACGGCGACTGGGCCGCCTACGGCGAGGCGCAGGAGCGTCTGCAGGCGGCGCTGGAGGAGGCGCTGGCGGCCGAGGGTGAGCTGAACCCCTGA	MSFAPPRRPDGPPPARRRSPLLITLVVLAALVVVLLFLTNFWTEVLWFTQVGYANVVWTHWISRGVLFTVGFLLMAAAVYSSFAIGYRTRPVYAPSTPEQATLDQYREAVEPLRKVVTYAGPVLIGFFAGVAASAQWETVLLALNGQSFGSADPEFGIDVGFYVFTLPALRFVVSFLMAVLVISAIAAVVTHYLYGGVRIGAITDGSPRTTTAARVHLAVLGTLIMLLIAANYWLDRYSILTSRHERYDGANYTDVHAVIPSKEILTGVAVLVAILFVVAAFRDTWRLPAIGVGLMVVSAIAIGAIYPAIVQRFQVDPNAQSLEAPYIQRNIDATLDAFDIDEVESQQYEATTEAEAGQLRDDAGTTTQVRLLDPQVVSPSFRQLQQNKQYYNFTDNLAVDRYDIDGESRDTVIAVRELNLSGLADRNWTNDRTVYTHGFGVVAAYGNQPGPDGQPAFFEGGIPTQGALTDMFSGGYEPRIYFSPEAPPYSIVGAPEGTDPWELDYQADAEGGQQELYSFPTDEVTAGPDIGTFMQRLLYALRFGDEEIFFSDRVTEVSQILYHRDPQERVAKVAPWLTLDNKVYPAVVDGRVKWVVDAYTTSDAYPYSASTQMQEATTDSLTAAAQGLPVEAPPEVNYIRNSVKATVDAYDGSVTLYAWDDEDPLLQAWNDVFPDSVRPISEMSGNLMSHVRYPEDMFKVQRTLLERYHVTEAQQFFAGSDEWRTPDDPVGGDDTLASKQPPYYLTLQMPGEEDPAFSLTSTFIPGGFTDREILTGYLAADADAGSTDGEVDEGYGTLRLLELPRDSTVPGPGQVQNNFNSNPTISEQLNILGRGDSEVVRGNQLTLPVGGGLLYVQPVYIQSGSGTQFPLLRRVLVAFGDQTGYAETLDEALDQVFGGDSGAEAGDADEAESEVPTDQVDPETGEPVEPTAEPTPEETTEPTPEPTETQDTGDATDGSPQARLDAALQDANEALTDSNQALQDGDWAAYGEAQERLQAALEEALAAEGELNP				NA	NA	NA	NA	NA
AK001_03099	909	yvgN_2	COG0656	Glyoxal reductase	ATGATCCTGTCCGAGCACTACACGCTGTCCAACGGGGTCGAGATCCCGAAGCTGGGCCTGGGGACCTGGTTCATCAACAGCCGGGACGTCGTCCGGGCCGTCCAGGACGCCGTCGACGTCGGCTACCGCCACATCGACACCGCTCAGGCCTACCGGAACGAGAAGGGCGTCGGCGAGGCGGTCCGCGCCAGCAACGTGCCGCGCGAGGACCTCTTCGTCACCACCAAGCTCGGTGCCGGCGCGAAATCCTACCGCAAGGCCGTCGCCGGGATCGACCGCTCCCTGCGGACGCTGGGCCTGGACCACATCGACCTCATGATCATCCACAGCCCGCAGCCCTGGTCGTCCTTCCGGGGCGACAACCGGTACCTCGAGGAGAACCGCGAGGTGTGGCGCGCGCTGGAGGAGGCCTACGACGACGGCAAGCTCCGGGCGATCGGGGTGTCGAACTTCGACGAGCAGGACCTGGACAACATCCTCGAGACCGCCACGGTCGCGCCGATGGTCAACCAGGTGCTCGCCCACGTCAGCAACACCCCGCACGAGCTGATCGACTACTGCCGGAGCCGGGACGTCCTGGTCGAGGCCTACTCACCCGTGGCCCACGGCGAGCTGCTCACGAACGACCAGGTCGCCGAGATCGCCGCGCGGTACGACGTCTCGGTCCCGCAGCTCTCCATCCGCTACGACCTCCAGCTCGGGCTGCTGCCCCTGCCGAAGACCGCGAAGGTCGCGCACATCAGGAACAACGCGGACCTGGACTTCGTCATCTCCGACGAGGACATGGACACCCTCCGCCACGTCGACCGGATCGAGGACTACGGCGACGCGAGCGTCATGCCGGTCTACGGCGGCCAGATGAACCTGCGCTCGATGGCTCGCATGATCCGGCACTCGATGCGGCGCTGA	MILSEHYTLSNGVEIPKLGLGTWFINSRDVVRAVQDAVDVGYRHIDTAQAYRNEKGVGEAVRASNVPREDLFVTTKLGAGAKSYRKAVAGIDRSLRTLGLDHIDLMIIHSPQPWSSFRGDNRYLEENREVWRALEEAYDDGKLRAIGVSNFDEQDLDNILETATVAPMVNQVLAHVSNTPHELIDYCRSRDVLVEAYSPVAHGELLTNDQVAEIAARYDVSVPQLSIRYDLQLGLLPLPKTAKVAHIRNNADLDFVISDEDMDTLRHVDRIEDYGDASVMPVYGGQMNLRSMARMIRHSMRR	PGPT0014985_76	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0014985-yvgN-K23257	NA	NA
AK001_03100	888			hypothetical protein	ATGACGAGCCGTGACGACGTCCGCGAGTTCCTGTCGAGCCGACGCGCCAAGGTCAGCCCGGCGATGGTCGGCCTGCCCGCGGTCGGTCCACGGCGCGTGCCGGGCCTGCGGCGGGGCGAGGTCGCGACGGTGGCGGGCGTCAGCGTCGAGTACTACACGAAGCTCGAGCGCGGCGACCTGCGCGGGGTCTCCGACGAGGTCGTCGAGGCGATCGCCACCGCCCTGCGCCTCGACGCCGCCGAGCGGTCCCACCTGGTCGACCTCGCCCGGACCGCGAACGCCGGGACCCGGGCACGCCGCCGTCCGGCACCGCGCACCAGCCTGCGACCGAGCCTTCGCCACCTCGTGGACTCGATCACGACGGGGGCCGCCGTCCTGGGCAACCTGCGCGGCGACGCCGTGGCGACCAACGAGCTCGCCCGCGCGCTCTACGACCCCGTCTACAGGTCGCAGCCGGAGCCCCTGAGCTTCCCGCGGTTCACCTTCTTCGACCCGGCCGCGCGGGAGTTCTACCCGGACTGGGCCGAGATCGCCGACTCCTCGGTGGCGAGCCTCCGCACCATCGCCGGCCGCCACCCGTTCGACAAGGAGATCACCGACCTCGTCGGCGAGCTGTCGACGCGGTCCGAGGAGTTCCGCACCCGCTGGGCACGCCACGACGTGCGCCTGCACATCGAGGGGATCAAGCGGATGCGGCACCCGGTGGTCGGGCTGCTGGAGCTCGAGTACAACACCCTCGGCCTGCCCGGCGACGAGGGCCTCGGGATGACCGTGTACACCGCCGCCCCGGGGTCCGAGGCGCAGGAGAAGCTGGCCCTCCTCGCCAGCTGGTGGGCCTCGGAGAAGGCCGCGAGGACCCCCGGAGCCACGACGGCGTCGGAGCGCTGA	MTSRDDVREFLSSRRAKVSPAMVGLPAVGPRRVPGLRRGEVATVAGVSVEYYTKLERGDLRGVSDEVVEAIATALRLDAAERSHLVDLARTANAGTRARRRPAPRTSLRPSLRHLVDSITTGAAVLGNLRGDAVATNELARALYDPVYRSQPEPLSFPRFTFFDPAAREFYPDWAEIADSSVASLRTIAGRHPFDKEITDLVGELSTRSEEFRTRWARHDVRLHIEGIKRMRHPVVGLLELEYNTLGLPGDEGLGMTVYTAAPGSEAQEKLALLASWWASEKAARTPGATTASER				NA	NA	NA	NA	NA
AK001_03101	1059	xynY		Endo-1,4-beta-xylanase Y	ATGAGCACCGCACGACGGACGACCCGCACCCGGACGATCATGGCCGGGCTCGGCGTGACCCTGCTCAGCGCGTGCAGCCCACCGGACCCGTCCCCCGACGTCGAGGGGCGCGAGGCACCGAGCGGCACGGGGACGCACTCCCCCGCCGCGCCGGCACCGGGCGCCACCCCGTCGGGGTGGGAGGCCGTGCCCGACGGGTACTCGACGCCGGCCGAGCAGCGCGGCAGCCTCGTGGAGCTGACCTACACCACGACCCACACCGTCGCGCAGGACGGCGCCCAGGACAAGGACGCACTCGTCTACCTCCCGCCGGGCTACGACCCGGACGACGACGTCACCCGGTATCCCGTCCTCTACCTCATGCACGGGCTCGGAGGGGACCAGTACTCCTGGACGGGCCGTCCGGACCGGCCGACGCCGTTGCCGTCGATCTTCGACCACGCGATCACCGACGGGAGGATCGACCCCGTCATCGTCGTCACCCCGACGTACGACCCGAGCCCGGACTCCTTCGGCACGGCGGTCGCCGCGTTCCACCAGGAGCTGGTCGAGGACCTCGTGCCCGCCGTGGAGAGCACCTACCCCACCTTCGCGGAGACCGTCGACGCCGACGGCCTGCGTGCGTCGCGCGAGCACCGTGCGTTCGGCGGCTTCTCCATGGGGGGCGTGACGACGTGGTACCTGCTGGAGCACGCGCCGGACGTCTTCGCCGGCTTCCTGCCCATGGCCGGCGACAGCTGGAACGTCGTCATGTTCGGCGGGCTCGAACGGCCCGAGGAGACGGCCGCGAGCCTCGCCCGGGGCATCACCGGAGCCGGGTACGGGACCGAGGACCTCGACGTGCTCGCGGCCACGGGGTCGGAGGACTTCACGACCCCGAACATGGAGGCACAGATCCCCGCGATGTCCGAGCACCCGGAGGCCTTCGACCGCACCGACGACGGCTTCGAGGACGGCAACCTCGTGTACCACGTGGTCCCCGGCAACGCCCACGACTACCCCTGGGGGTACGAGTACGTCTACAACGGCCTGCGGATGCTGCCGGCGCTGCGGGACTGA	MSTARRTTRTRTIMAGLGVTLLSACSPPDPSPDVEGREAPSGTGTHSPAAPAPGATPSGWEAVPDGYSTPAEQRGSLVELTYTTTHTVAQDGAQDKDALVYLPPGYDPDDDVTRYPVLYLMHGLGGDQYSWTGRPDRPTPLPSIFDHAITDGRIDPVIVVTPTYDPSPDSFGTAVAAFHQELVEDLVPAVESTYPTFAETVDADGLRASREHRAFGGFSMGGVTTWYLLEHAPDVFAGFLPMAGDSWNVVMFGGLERPEETAASLARGITGAGYGTEDLDVLAATGSEDFTTPNMEAQIPAMSEHPEAFDRTDDGFEDGNLVYHVVPGNAHDYPWGYEYVYNGLRMLPALRD				NA	NA	NA	NA	NA
AK001_03102	1605	bmr3_4		Multidrug resistance protein 3	ATGTTCGCCGGCCTCCTGACGGGCATGATGCTGTCCTCGCTGAGCCAGACGATCTTCGCGACAGCCCTGCCCACGATCGTCGGCGAGCTCCGCGGCGTGGACCAGATGCTGTGGGTGACGACGGCGTACATCCTGGCCGCGACGGTGGTGGTCCCCGTCTACGGCAAGCTCGGCGACCTGGTCGGTCGCAAGGGCCTGTTCGTCGCGGCGATCGGCATCTTCGTCGCGGGCTCGGTCGCGGGCGGGTTCGCCGGGTCCATGCCGGTGCTCGTGGCGGCCCGAGCCGTCCAGGGCCTCGGAGGCGGCGGTCTGATCGTCCTCGCCCAGGCGATCGTCGCCGAGGTGGTCCCGGCCCGTCAGCGCGGGAAGTACCTGGGGATCATGGGGGCCGGGTTCGCGGTGTCGTCGGTCGCGGGCCCGCTGCTCGGGGGCTGGTTCACCGAGGGTCCCGGATGGCGCTGGGGGCTGTGGGTCAACGTCCCCCTCGGCCTCGCGGCGATCGTGCTCGCGAGCGTGTTCCTCCAGCCGTCCGCGCGGCGCCCGGAACGCCCCCGCATCGACGTGGCCGGCATGACGCTGCTGGCCCTGACGACCACGGCGCTCGTGCTGATCACCTCGTTCGGCGGGCGGTCCGTGGAGTGGGTCTCGCTGCCGATCGGTGGTCTCGCCGCGCTCGCCGTGGTGGCGGGCGTCGCCTTCGTCCTCGTCGAGCGACGGGCCGTGGAACCGGTGATCCCGCTGCGGCTCTTCTCCGACCGCACCTTCTGCCTGGTGACGACGGCGGCGCTGCTGACCGGGGTCAGCATGTTCGGCGTGCTCGGCTACATGCCGACCTACCTGCAGATGGTCGGCGGCGTCGACGCCACCGAGGCGGGCCTGCTCACCACGCCGATGATGCTCCTGATGCTCGTCACGTCCACCGTGGCGGGCGCGCTGGTGTCGCGGACCGGGCGCTACCGGGCCTTCCCGGTGGCGGGTAGCGGCGTCATGGCCGTCGCTCTGCTGCTGCTCTCGACGCTCGAGCCGGGCACCTCGGTGCGGATCGCCTGCGGGTACCTCGCACTGTTCGGCGTGGGCCTCGGCCTGACCACCCAGATCCTGGTGCTGATCGTCCAGAACGCGTTCGCGCTGCGCATCGTCGGCACGGCCACGGCCGCGACCAACTACTTCCGGCAGGTCGGCGCCTCGATCGGGACCGCCGTCGTGGGCTCCCTCTTCACCGCCCGCCTGACGACGCTGCTCACCGAACGCCTGCCGCCGGGGGCGACGACGGGACCGAGCGAGGCCGGCTCGTTCACCCCCGCCGCGGTCGCCGGGCTGCCCGGGCCGACGCGCGACGTCGTCACGACCTCCTACGCCGACGCGATGACCCCCGTGTTCCTCGTGCTGCTGCCGCTGGCTCTCGTCGCCGCGGTCCTGCTGCTGTTCGTGCGGGAGGCGCCGTTGCGCACCACCCTCGACGAGGAGGTCGGCGGGGGCGCGACCGGTCCGGACCGGGAGGGGGGGTACTCGGGGGACCCCTCTGCGCAGCCTCTCCCACCGACGGGCCGAGCGGTGCTGAGGTGGTCCGGCACGACGACCGCGGCGAGAGGATCCCGAGCATGA	MFAGLLTGMMLSSLSQTIFATALPTIVGELRGVDQMLWVTTAYILAATVVVPVYGKLGDLVGRKGLFVAAIGIFVAGSVAGGFAGSMPVLVAARAVQGLGGGGLIVLAQAIVAEVVPARQRGKYLGIMGAGFAVSSVAGPLLGGWFTEGPGWRWGLWVNVPLGLAAIVLASVFLQPSARRPERPRIDVAGMTLLALTTTALVLITSFGGRSVEWVSLPIGGLAALAVVAGVAFVLVERRAVEPVIPLRLFSDRTFCLVTTAALLTGVSMFGVLGYMPTYLQMVGGVDATEAGLLTTPMMLLMLVTSTVAGALVSRTGRYRAFPVAGSGVMAVALLLLSTLEPGTSVRIACGYLALFGVGLGLTTQILVLIVQNAFALRIVGTATAATNYFRQVGASIGTAVVGSLFTARLTTLLTERLPPGATTGPSEAGSFTPAAVAGLPGPTRDVVTTSYADAMTPVFLVLLPLALVAAVLLLFVREAPLRTTLDEEVGGGATGPDREGGYSGDPSAQPLPPTGRAVLRWSGTTTAARGSRA				NA	NA	NA	NA	NA
AK001_03103	567			hypothetical protein	ATGGAGCGAGCGGCGCTCGCCCTGGCGCTCGAGCACGGCCTGGACCAGGTGACCGTCGAGATGATCTGCGAGGCGGCCGAGGTCTCGCCCCGCACGTTCTACAACTACTTCGGCACCAAGGAGGCCGTGCTGCTCGGCCCGGCCCCCGCGCCTCCCGCCCCGAGCCTGCTCGAGGAGTTCCTGCACGCCGAGGGACCGCTGTTCGAGGACGTCGTCGCCGTGCTCGTCGCGGCCTTCCTGGCCGCCACGCACGACGCCGAGCTGATGACGCTCCGACGTCGGCTCTTCGACCGGGAGCCACGCCTCCAGGCGCTCCAGCACGCCCGCTGGGCCCCCCAGCGGCAGGTGCTGACCGACCACGTGGTCCGGCGGCTCGCCGTGCAGCAGCCCGACCTCTCCCCCGACGCCGCCCGTGACGAGGCCCGGGTCGTCATGGGCGTGGCGACGAGCACCTACCCGATCCTCAGCCGGCTCTGGCTGGAGGGCGGGGAGGGAGCGCCCGACCCGCACCGCTACGTAGCCGCGGCCGTCGACGGCGTCCGGCGCGCCGTGACCGCGCGTCGGTGA	MERAALALALEHGLDQVTVEMICEAAEVSPRTFYNYFGTKEAVLLGPAPAPPAPSLLEEFLHAEGPLFEDVVAVLVAAFLAATHDAELMTLRRRLFDREPRLQALQHARWAPQRQVLTDHVVRRLAVQQPDLSPDAARDEARVVMGVATSTYPILSRLWLEGGEGAPDPHRYVAAAVDGVRRAVTARR				NA	NA	NA	NA	NA
AK001_03104	252			hypothetical protein	ATGGCTCTGTTCATGGACGTCCACACCCTCGGATCCGGCGTGACGATGGAGGACGTCGCCCAGGCGCACGTCGCCGACCTGCAGAAGCAGGGCGAGCACGACGTGCAGTACCTGCGGTACTGGGTCGACGAGTCGGCGGGCAAGATCTTCTGCCTGGCCGACGCCCCCTCGGCCGACGCCGCGGCCACGGTGCACCGGGAGGCGCACGGCCTGGTCGCCGACGAGATCTACCCGGTCCAGGAAGGCGTCTGA	MALFMDVHTLGSGVTMEDVAQAHVADLQKQGEHDVQYLRYWVDESAGKIFCLADAPSADAAATVHREAHGLVADEIYPVQEGV				NA	NA	NA	NA	NA
AK001_03105	2820			hypothetical protein	ATGGACCTGCGGGAGCGGGACACCCAGCTCGCGGCGCTCGACGGTCTGCTCGGCGACGCCCGGACCGGACGGGGCGCCGTCGTGCTCGTGCCGGGCGAGGCCGGGGCGGGCAAGTCCGTGCTGCTGGCCGCGGCGGAACGCCGCACCCCGTGGGCCCGCTGGGCGTGGGGACACTGCGAGAGCCTGGCCACCCCTCGCCCCCTGGGGCCCCTGCACGACGTCGCCGACGGCCTCGGCGGCGACCTCGCCGCGGCGCTGCGGCGCGACGCCTCGCGCGACGAGCTGTTCGACGCCGCGATCGACGCGGTGACCACCGCGGAGCCCGCAGCACCGGTGGTGCTGGTCGTGGAGGACGTGCACTGGGCCGACGAGGCCACCGTCGACCTGGTCCGCTTCCTCGCCCGCCGCCTGCGCGACCGTCCCGCCGTGCTGGTCCTGACCTACCGCGACGACGAGGGCTCCCGGTCGGCACGGACCGCGACCCTGGGAGAGATCGGCGCCCTGCCGCACGCGCACCGGGTCGACGTGCCACCGCTCAGCCCGTCGGCGGTGGCGGACCTCGCCGCCGACGCCGGGCTGGACCCGACCGCCGTGTTCGAACTCACCGGCGGCAACGCGTTCTTCGTCGCCGAGGTCGTGCGCTCGGGCCGCGCGAGGCTGCCGGCCTCGGTCCGGGACGCCGTGCTGGCGCGGGCGGACCGCCTGGGCGCCGAGGCCCGGCGGACGCTGGACACCGCCGCCCTCATCGGCCGCCGGGTCCCGCCGGACCTGCTGCTCACGGCCACCGATGCCGACCCGCGGGCGGTCGACGAGATGCTGACGTGCGCCGTGGTCCGCTCGGGACCCGACGGGTTCGCCTTCCGCCACGAGCTCGGTCGGCTCGCCGTGGCCGAGGCCCTGCCCGCGCACCGCGCCCGGGAGGTGCACGCCCGGATCCTGGCCGCCTACGAGGGCCGGCCCGAGGACGACGCGATCCGCGCCTTCCACGCCGAGGCGGCCGGGGACGCCCCCGCCACGCTGCGGCACGCGACGGCGGCCGCCGAGCTGGCCGACCGGCTCGGGTCCCACCGGGAGGCGCTCGCCCAGTACGAGCGCGCCCTGCGTGCCGCCCCGGCGGGCCACACGGCGGGCCACACGGCGGGCCACACGGCGGGCCACACGGCGGGCGACACGGCGGGCGACACGGCGCTGCGGGCGCGGCTGCACGACGCCGTGGGGGTCCAGGCCGCGCACCTCGACGAGATCGACCGTGCCGTGCGGGGGCACGAGACGGCGCTCGGGCTGTGGCGCGCCGTCGGTGACCGGCGCCGCGAGGCGGTGACGCTGGCCCGGATCGGCTCGATGCGGTACCGGGAGGGCCGCGGGCGGTCCGCCACCGCGCTCCTCGAGGAGGCCGCGGAGCTGGTCGACGACGTCGACTCCGCGGAGACGGTGGACGTGCTCGCCTCGTTGGCCGCCCGCCGCATGCTGCAGGCGCGCAGCGCCGAGGCCGTGGAGCTGTGCCGCCGGGTGCTGCCGGCCGCGGAGCGGCTCGGCCTCGTCGAGGAGCAGGCGGAGGCCCTCAACACCCTCGGCTGCGCCCTCGCTCCCCTGGGCGGGGACTGGGAGACGCCGCTGCGCCGGTCCCTCGACCTCGCCGTCGAGCACGGTCTGGCGCCGGCCGCGGCCCGGGCGTCGGTCAACCTGCTCAACGAGCTCGTCGATGCCTCCCGGAACGCCGAGGCCGACCAGGTCTTCCAGGACGGCGACCGGTACTGCACCCGGCACGACCTCGACTTCCTGCGATGGTGCCTGCGCCGCGAACGGTGCCGCGCCCTGACCCTCACGGGACGCTGGGACGAGGCGCGCGCCCTGTGCCGCCGGATGGTCGACGACTGCCCCTCACGTTGGAACCGGACGCACGTCACGGCGACCGCGGCGGTGCTGCAGGCGTACCTCGACCCGACCGCCGCGGCCGCGATGCTCGAGGCGGCCCGGCCCGCCGTGCGCGAGATCGGCGAGACCCAGCTCCGGATGCCGCACGCCGTCGCGCGGGCGGAGACGTGCTGGCTCGCGGGCGACGTGGACGCGGCCCGGGCCGCGCTGAGCGAGGTCGCGCCGCTGCTGGACGGGGCAGGCCCCGGCGACACGGCCCGCTTCCTGCTCTGGTCGGATCGCCTGCAGCTGCCGCACCCTGCCGCCGCCGGCGCCCCGCCGGACCCGGTCGCGGCCGAGCTGGACGGCGATCACGCCGCCGCGGCCCGGGCCTGGGACGACGCCGGGAGCCCCTACGGCGCCGCACTGGCGCTGTCCTGGTCCGACGACCCGCACCACCTGCGCGAGGCCGTCGACCGGTGGCGGCGGCTCGGGGCGACCGCCGGCGTCCGCGCGACGCGTCGCCACGCTCGCGAGCTCGGGCACCGGTCGGTTCCCGCCGGGGCACGCCGGGCGACGCGCCGGCACCCGGCCGGCCTCACCGCACGCGAGAGCGAGGTCCTGCGGCTGCTCGCCGAGCACCGGACCAACGCCGAGATCGCCGACGAGCTGGTCCTCAGCGTGCGGACGGTCGAGCACCACGTGGCCTCGGTGCTGGGCCAAGCTGGGCGTGCCGACCCGGCGGGACGCGGCCGCCCGGGCACGTCGGGGCGATCTGCTCACCGGGCTCGACGCGCCCACCGCACATCCCGGGTAGCGACCCCGTCACAAACATGGGTGGTGACCACCGATCCGCGCCGGGCCGGGACGCGGTGTGCTGGACGGACCGCCAGGGCGGCGGGCACGAGACGAAGGAGAGCACGATGGCTCTGTTCATGGACGTCCACACCCTCGGATCCGGCGTGA	MDLRERDTQLAALDGLLGDARTGRGAVVLVPGEAGAGKSVLLAAAERRTPWARWAWGHCESLATPRPLGPLHDVADGLGGDLAAALRRDASRDELFDAAIDAVTTAEPAAPVVLVVEDVHWADEATVDLVRFLARRLRDRPAVLVLTYRDDEGSRSARTATLGEIGALPHAHRVDVPPLSPSAVADLAADAGLDPTAVFELTGGNAFFVAEVVRSGRARLPASVRDAVLARADRLGAEARRTLDTAALIGRRVPPDLLLTATDADPRAVDEMLTCAVVRSGPDGFAFRHELGRLAVAEALPAHRAREVHARILAAYEGRPEDDAIRAFHAEAAGDAPATLRHATAAAELADRLGSHREALAQYERALRAAPAGHTAGHTAGHTAGHTAGDTAGDTALRARLHDAVGVQAAHLDEIDRAVRGHETALGLWRAVGDRRREAVTLARIGSMRYREGRGRSATALLEEAAELVDDVDSAETVDVLASLAARRMLQARSAEAVELCRRVLPAAERLGLVEEQAEALNTLGCALAPLGGDWETPLRRSLDLAVEHGLAPAAARASVNLLNELVDASRNAEADQVFQDGDRYCTRHDLDFLRWCLRRERCRALTLTGRWDEARALCRRMVDDCPSRWNRTHVTATAAVLQAYLDPTAAAAMLEAARPAVREIGETQLRMPHAVARAETCWLAGDVDAARAALSEVAPLLDGAGPGDTARFLLWSDRLQLPHPAAAGAPPDPVAAELDGDHAAAARAWDDAGSPYGAALALSWSDDPHHLREAVDRWRRLGATAGVRATRRHARELGHRSVPAGARRATRRHPAGLTARESEVLRLLAEHRTNAEIADELVLSVRTVEHHVASVLGQAGRADPAGRGRPGTSGRSAHRARRAHRTSRVATPSQTWVVTTDPRRAGTRCAGRTARAAGTRRRRARWLCSWTSTPSDPA				NA	NA	NA	NA	NA
AK001_03106	612			hypothetical protein	GTGACCGAGGACCATCCCGCGGAGCGCCCGGAGGGGTACGCCACCGGACGCGCGACGAAGCAGTCGATCGTGCAGAGCGCGGCCACCGCGTTCTCCCAGAAGGGCTTCTACGGCACGTCCTTGCGCGGCATCGCCCGCGAGGCCGGCGTCGACCACTCCACGCTCCTGCACCACTTCGGCACGAAGACCGCCCTGCTGCTGGCCGTCATCGAGTGGCACGACGCGCAGCAGATGCCGTCCGAGCTCCCGCAGGACCTCTCGGCCGAGTTCATCGCGGACGGTTTCGCCGCCACAGCCGCGCGCAACGCCGAGACACCGGGTCTGGTGCAGCTGCTGTCCGTGCTGACGGCCGAAGCCGGCGCCGAGGGCCATCCGGCCCGCGAGACGCTGCAACGCCGCCACGACGTCGTCACCGCCCTCATCGCGTGGACGATCCGGACCCAGCGCGAGTCGCTGGGCCTCACCGACGACCCCCTCACCCCCGAGGACCGCGCCGCCGTCGTCGTCGCCACCTGGGACGGGCTGCAGATGTACGACGCCCTGCACCCCGGCCGGCTCGACGTGCCCGCCCTGGTCTCCCGGTCGCTGCGCGACGCCTTCGGGCTCGACTGA	MTEDHPAERPEGYATGRATKQSIVQSAATAFSQKGFYGTSLRGIAREAGVDHSTLLHHFGTKTALLLAVIEWHDAQQMPSELPQDLSAEFIADGFAATAARNAETPGLVQLLSVLTAEAGAEGHPARETLQRRHDVVTALIAWTIRTQRESLGLTDDPLTPEDRAAVVVATWDGLQMYDALHPGRLDVPALVSRSLRDAFGLD				NA	NA	NA	NA	NA
AK001_03107	2472	bglB_1	COG1472	Thermostable beta-glucosidase B	ATGACGACGTCCGACACCCGGCACGCGCGCGCCGAGCCCGGCCCGGGGCCCCTGCGCAGCGAGATGACGCTCCGGGAGAAGGCCTCCCTCGCCTCGGGCGCGAACTTCTGGAACACGAAGCCGGTCGACCGACTCGGGGTGCCCTCCGCGATGCTCACGGACGGTCCCCACGGGCTGCGCAAGCAGGGCGGGGCCGCGGACCACCTGGGTCTGCACGCGAGCATCCCGGCGACCTGCTTCCCGCCGGCGGCGACCCTGGCGAACGGCTGGGACCCCGGCCTGGTCGAGCGGGTCGGTGCGGCCCTGGGGGCCGAGGCGGCCGCCGAGGACGTCAGCGTCCTGCTGGGGCCGGGCCTCAACATCAAGCGCAACCCCCTCGCGGGCCGCAGCTTCGAGTACTTCTCCGAGGACCCGCTGCTCTCGGGCACCCTGGCCGCGGCCATGGTCCGCGGGATCCAGTCCCGCGGCGTGGCGGCGTGCGTGAAGCACTTCGCGGTGAACAGCCAGGAGACCCACCGGATGAGCATCGACGAGGTCGTCGACGAGCGCGCGCTCCACGAGGTCTACCTCGAGGGCTTCCGGATCGCGATCGCCGAGGGGCGTCCGTGGACGGTGATGAGCTCCTACAACAAGGTCAACGGCACCTACGCCAACGAGCACCGCGAGCTGCTGACCGGCGTCCTGCGCGACACGTGGGGCTTCGACGGCCTGGTCGTGACGGACTGGGGCGGCAACAACGACCGCGTCGCGGGCCTGCGCGCGGGCAACGCGCTCGAGATGCCCTCGACCGACGGCGTCACCGACCGCGAGATCGTCCGTGCCGTCGAGTCGGGACGCCTGGACGAGGCGGTCCTCGACGCGCGCGTCGACGAGCTGCTCACCCTCCTCGACCGCACGGCCGGCGCGCGCGTCGACGACGGCGCGGTCGACCGTGCCGCCCTGCACGACGCCCACCACGAGCTCGCCGTCGAGGCGGCCCGGCGCTCGCTCGTGCTGCTGCGCAACGAGGGCGACACCCTGCCGCTCGGTCCGGGCGCCGGGCGTGTCGCCGTCGTCGGCGACTTCGCCGCGCGGCCCCGCTACCAGGGTGCCGGCAGCTCGCTCGTCAACCCCACCCGGATCGACGACGCCCTCGAGGCGCTGCGGGCGTCCGACCTCGACGTCGTCGGCTTCGAGCCGGGCTTCGCCCGCCGGGACAAGCCGTCGCGGCGCCGGCGGGACCGCGCGGTGCGCCTCGCCGCGCGCGCCGACGTCGTGCTGCTGTTCCTGGGCCTCGACGAGTCCGCGGAGGCCGAGGGCGTCGACCGGACGCACCTGCGCCTCGCCGAGAACCAGCTCGCCCTGACGCGCGAGATCACGGCGCTCGGCAAGCGCGTGGTGGTCGTGCTCGCCGGAGGCGCGCCGGTCGAGCTGCCGTTCGCCGACGACGTCGACGCGATCCTGCACGCCTACCTGCCCGGTCAGGGCGGCGGCCGTGCCGTCGTCGACCTGCTCACCGGCGTGGCGAACCCCGCGGGGCGGCTCGCCGAGACGTACCCCCTGCGCGGCGAGGACCTCCCCTCCACGGCGACGTTCGGACGGACCGAGGCGTCCTCGGAGCACCGCGAGAGCATCTACGTGGGCTACCGGTGGTTCGACAAGGTCGGGGCGCCCGTGCGCTACCCGTTCGGGCACGGGCTGAGCTACACGACGTTCGACCACTCCGACCTGGTCGCCGGTCCGACGTCGGCCCGTGTCACCGTGACGAACACCGGCGACCGCGCGGGCACCGAGACGGTCCAGCTCTATGCGGAGGCGCCCGGAGCGGCGGTCGGCGCGTTCCGCGCCCCGCGCGAGCTCGTCGGCTTCGCCACGGCCCACCTCGCACCCGGTGAGAGCACGACCGTGGAGATCACCTACCCCGAGCACGCGTTCGACGTCTACGACGCGGCGGCCCACCGGTGGCGCCGGGTCGGCGGAACCTACGCGGTCCTGGGCGGTGCGTCGTCGCGCGACCTGCGTGTGCGCGCCGAGCTCGTCGTGACGGGCGAGGAGTGGACGGCGCCCGACGCCGCGCGCCTGCCGCACTACGTCTCCGGCGACGTCGCCCGCGTCGACGACGCGGAGTTCGAGGCGCTGCTCGGCCGTACCCCGCCCCCGTCCCGCTGGGAGACCGGCCGGCCGCTGACCCGCGACGACATCATCGCGCAGGCCCGCGGCCGCGGCGGGTTCGGAGGGCTGCTCCACGCCTCGATCGAGGGCGTCGGAGCGCTGCTCATGGCGCTGGGTCGCCCGCACGCGGCGAACAACACCCGATTCGTGCTCGACCTGCCGTTCCGGTCGGTCGCGCGCATGAGCGGCGGGCGGGTCGACGACGACATGCTCGACGGCCTGCTGCTCATGGTCAACCGTCGATTCCTCGCCGGCGTGCGCCGGGTGGTGTCGGCCTGGCGCGCTCGTCGACGGAGCGAGCGCGCGTCACGAAGGAACTGA	MTTSDTRHARAEPGPGPLRSEMTLREKASLASGANFWNTKPVDRLGVPSAMLTDGPHGLRKQGGAADHLGLHASIPATCFPPAATLANGWDPGLVERVGAALGAEAAAEDVSVLLGPGLNIKRNPLAGRSFEYFSEDPLLSGTLAAAMVRGIQSRGVAACVKHFAVNSQETHRMSIDEVVDERALHEVYLEGFRIAIAEGRPWTVMSSYNKVNGTYANEHRELLTGVLRDTWGFDGLVVTDWGGNNDRVAGLRAGNALEMPSTDGVTDREIVRAVESGRLDEAVLDARVDELLTLLDRTAGARVDDGAVDRAALHDAHHELAVEAARRSLVLLRNEGDTLPLGPGAGRVAVVGDFAARPRYQGAGSSLVNPTRIDDALEALRASDLDVVGFEPGFARRDKPSRRRRDRAVRLAARADVVLLFLGLDESAEAEGVDRTHLRLAENQLALTREITALGKRVVVVLAGGAPVELPFADDVDAILHAYLPGQGGGRAVVDLLTGVANPAGRLAETYPLRGEDLPSTATFGRTEASSEHRESIYVGYRWFDKVGAPVRYPFGHGLSYTTFDHSDLVAGPTSARVTVTNTGDRAGTETVQLYAEAPGAAVGAFRAPRELVGFATAHLAPGESTTVEITYPEHAFDVYDAAAHRWRRVGGTYAVLGGASSRDLRVRAELVVTGEEWTAPDAARLPHYVSGDVARVDDAEFEALLGRTPPPSRWETGRPLTRDDIIAQARGRGGFGGLLHASIEGVGALLMALGRPHAANNTRFVLDLPFRSVARMSGGRVDDDMLDGLLLMVNRRFLAGVRRVVSAWRARRRSERASRRN	PGPT0019110_2259	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_03108	2748	nagZ_3		Beta-hexosaminidase	ATGGCACGTCGTACAGAGATCAAGCGAGAGGCCGTCGCGCGCGTCAAGGACGAGCGCAGGGCCCGTCGGGCCCGTGCCGCCGAGCTGAAGGCGATGGCGCCCGCGGAGCGCAGGGCTGCCCGCGCCGCGGACAAGGCCGCCGCCCGCGAGGCGAGGGCGGCCGCGAAGGCCGAGCGCGCGGCCTCCCGGTCGGGCCTGTCCCGCGCCGAGCGCCGCGAGGCCAAGCGGCGCGAGCGCGTGTACCGGAAGGTGAAGCACCGTCCCCGCCGCGCCGTCGGCTGGGGAGTCACCGCCGTCGCCGTCGTCGGCGTGGGGGCGCTCGCGGCCCCGTACGCGACCGGCCTCGCCCGCGTCGCCTCGCTGGAGTTCTCCGACGACACCGCCGCGGCCGTCGCGGCGCGCGAGGCCGCCGTCGGCGTCGCCGAGAGCATCTCCGACGAGGGCATCGTCCTGCTGAAGAACGACGGCGACACGCTGCCGCTCGACGGCGGCGTCAACGTCTTCTCGTTCGCGTCGTTCAACCTCCGCCTCGGCGGCGGCGGTTCCGGCGGGTCGAACACCACCGGAGCGCCCACGCTCTACGAGGCCCTCGAGGCGCAGGGCGTCGAGTACAACACCGCGCTGCACGCCGCCACGGAGGACGCCGGCGCGGAGTCCACCGAGGGGTCGGGCAACGCCTTCGTGCAGATCGCCGGCTCGATGCTCGGCGACGGCGACGACGAGCCGGCGCCGGACTACCTCACCGACGACGTCCTGGCCCAGGCGCAGGAGTTCTCGGACACCGCGATCGTCGTGGTCGGCAACGACGGCTCGGAGGGCACCGACTTCTCCGCGGAGCAGCTCCGGCTCACCGCCGCCCAGCGCGAGCTCCTCGACGCGGTGACCTCCGTGCAGGACGACGTGGTGGTCGTCGTGAACTCCGGCAACCAGATGGAGCTCGGTTTCCTCGAGGAGTACCCGGAGATCACCGCCGCCGTCTGGATGGGAACCCCGGGCCCGCAGGGCGCGACGTCGCTCGCCGAGGTGCTGACCGGTGACGTGAACCCGTCGGGCCACCTGACGGACACCTACGCCTACGACGTCGACTCGGCGCCGGCCACGGAGAACTTCGGCGACTACACCTACACGAACGTCCCGCGCGGGTTCCTCGACTACGAGGAAGGCATCTACGTGGGCTACCGGTACTACGAGACGCGGTACGCGGACGACGAGGCGGGCTACGCGGAGGCCGTCCAGTACCCGTTCGGGCACGGTCTGAGCTACACCGACTTCGCCTGGGACGTCGCCGCCCCCGTCGTCACCGACGACACCGTGACCGTCGACGTCACCGTCACCAACACCGGTGCGGTCGCGGGCAAGGACGTCGTCCAGGTCTACTTCTCCGCCCCGTACACCGCCGGCGGCCTCGAGAAGTCGGCGATCGAGCTCGCGGGCTACGCCAAGACCTCGGAGCTCGGGCCCGGCGCCGCCGAGACCGTGACGGTCGAGTTCGCCGTGCGCGACATGGCCTCCTGGGACACCGCTGCGGGCGGCGTCTACGTGCTGGAGTCCGGCGACTACGAGATCTCGGCGCGCACCGACGTGCACACGCCGGTCGACTCCTTCACCACCGCGGTGGACGAGGACGTCGTGTACGAGACCGACGCCGACACCGGGACCGCCTACGAGAACCGCTTCGACCACGTCGAGGGCGACCTCGGTTCCCTCTCCCGCGACGACTGGGAGGGCACCTACCCGGAGTCCCCGGACGGCACCGAGACCGCCTCGGACGAGGAGCTCGCCCTCATGGACCCCGAGATAGCCCCGGCCACCGGTGAGGCGCCGACCTACGGCGCCGACCACGGCCTGGTGCTCGCGGACATGGTCGGCCTCGAGCACGACGACCCGGCGTGGGAGGAGTTCCTCGACCAGCTCACCCTGGACGAGCAGATCGACCTGTTCTCGCACGGCGCCTACCGGTCGGTCGCGGTCGAGCGTCTGGGCGTCCCGTCGATCACGATGCTCGACAGCCCCGCGGGCCTCAACTCGCTGTTCTCGCCGCTGGACGCGGCGGCGTACCCCACCGAGGTGGTTGTGGCGTCGACGTGGAACGACGAGCTGGCCTACGCGCTCGGCGAGTCGGTGGGCGCCGAGGCGAACGCCTACGGTGTCGAGGTCTGGTACTCCCCGGGCATGAACCTGCACCGCACCGCGCTGGGCGGCCGCGGCTTCGAGTACTTCTCGGAGGACCCGCTGCTGACCGGCACGATGGCCGCGGCGATGGTCTCGGGCTCGCAGGACCAGGGCGTGCTGACGACGATCAAGCACTTCGTGCTGAACGACCAGGAGGTCAACGCGCGGTCGGGCATCAACGTGTCCGTCTCGGAGCAGGCGCTGCGCGAGCTCTACCTGCAGCCCTTCGAGATCGCCGTCAAGGACGCCGACCCGGCGGGCGCCATGAGCTCGTTCATCAACCTCGGCGGCAGCTGGGCCGGCGGCGACGAGGCGCTGCTGCAGGAGGTCCTGCGCGGCGAGTGGGGCTTCGACGGCTTCGTGACCACCGACGCCGTGCTCGGCGGGTGGATGGACCCGGGGCTCGCCGCGCGGCACGGCAACGACTGGATGCTCGCCGTGTTCCCGGGCGCGACGGTGGACGCGATCACGGAGGCCGTCGAGGCGGACCCCGTCGGCGTCGGCCAGGGTCTGCGCGACCGCGTGCACACGATCCTGTACACCGTGGCGCGGACGACCGCGATGTCCGCGTCCTGA	MARRTEIKREAVARVKDERRARRARAAELKAMAPAERRAARAADKAAAREARAAAKAERAASRSGLSRAERREAKRRERVYRKVKHRPRRAVGWGVTAVAVVGVGALAAPYATGLARVASLEFSDDTAAAVAAREAAVGVAESISDEGIVLLKNDGDTLPLDGGVNVFSFASFNLRLGGGGSGGSNTTGAPTLYEALEAQGVEYNTALHAATEDAGAESTEGSGNAFVQIAGSMLGDGDDEPAPDYLTDDVLAQAQEFSDTAIVVVGNDGSEGTDFSAEQLRLTAAQRELLDAVTSVQDDVVVVVNSGNQMELGFLEEYPEITAAVWMGTPGPQGATSLAEVLTGDVNPSGHLTDTYAYDVDSAPATENFGDYTYTNVPRGFLDYEEGIYVGYRYYETRYADDEAGYAEAVQYPFGHGLSYTDFAWDVAAPVVTDDTVTVDVTVTNTGAVAGKDVVQVYFSAPYTAGGLEKSAIELAGYAKTSELGPGAAETVTVEFAVRDMASWDTAAGGVYVLESGDYEISARTDVHTPVDSFTTAVDEDVVYETDADTGTAYENRFDHVEGDLGSLSRDDWEGTYPESPDGTETASDEELALMDPEIAPATGEAPTYGADHGLVLADMVGLEHDDPAWEEFLDQLTLDEQIDLFSHGAYRSVAVERLGVPSITMLDSPAGLNSLFSPLDAAAYPTEVVVASTWNDELAYALGESVGAEANAYGVEVWYSPGMNLHRTALGGRGFEYFSEDPLLTGTMAAAMVSGSQDQGVLTTIKHFVLNDQEVNARSGINVSVSEQALRELYLQPFEIAVKDADPAGAMSSFINLGGSWAGGDEALLQEVLRGEWGFDGFVTTDAVLGGWMDPGLAARHGNDWMLAVFPGATVDAITEAVEADPVGVGQGLRDRVHTILYTVARTTAMSAS	PGPT0019110_700	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_03109	312			IS3 family transposase ISPfr13	ATGCCGAAGAAGATCGATCCCGAGCTGCGCGCGAGGTGCGTGCGGTTGGTGCGCGAGCACCTGCAGGAGTACCCCACGCTGACAGCGGCCGTCACGGCGGTGGCGCGCCAGGAGGGTGTATCGCGCGAGTCGGTGCGGCGCTGGCTGGCCCAGGCCGAGGTCGACGACGGCACCCGGCCGGGCGTGACGAGCGAGGAGTCTGCCGAGGTCAAGCGCCTCAAGGCCGAGAACAGGCGCCTGCGGGAGGACAACGAGATCCTGCGCCGGGCGTCGATTTTCTTCGCGGGGGAGCTCGACCCCCGAAACCGCTGA	MPKKIDPELRARCVRLVREHLQEYPTLTAAVTAVARQEGVSRESVRRWLAQAEVDDGTRPGVTSEESAEVKRLKAENRRLREDNEILRRASIFFAGELDPRNR				NA	NA	NA	NA	NA
AK001_03110	930			hypothetical protein	ATGACTTCTCGAAGTAAACAACGCCACTCTAGCCACATTAAAGGAAATAAGGGTGTGCGCATCGTCACCGACGCGCTGCCCGACTTCTGGGCGGTTCGAGAAATCAATCCGGACTACGGCTTAGATCTGCATATCGAAGCGTTCATACCAGACCGCAACGACCCGAATAGCGCAAACGCGCTAGGCGAGCATTTCTACATTCAAGTCAAGTCGACCGAACAGGTGCAAGTCAGGGACGGCATAGCAAGATTCTCAATTGAAACATCCTCCCTTGTTACGATCGAAAGAATGGGAGCCGCAGTTCCCGTCCTTTTGTGCCTAGTGGACTTAGCGGCCAAGAAGGTCTACTACGTTTGCCTCAATGACTACATATCCAAGGTGTTGCTTGTCGAGAAACCGGACTATGACGAGCAAGAGTCGGTCACATTGCGCATTCCGTCTAGGAATATCCTCGACTCGGCGGGACCCGAATTCTCGTACATCTGGCTCCTGGCACGCCGCGGCAAGTACTATGCAGCGTTCAATGTCTTCGGATACCAGCTGAATGAGCTAAAATACGCTCAGGGCTGGTTCATGGCGAGACCAGAAAGCGACGACGCCACCGCAACGATCACCCCCGGCATTCTTGACATCTTGCGCATCTTTCTGCGGTCCACTCTCCGCCTTGACGTATGGGACTTTCCGGGCCCAGGAATGTGGCCACCTCTCGCCGATGTATACACCGATTTTCGATCGCTTCTCAAGGATCTCCCGCGCTACGAGGTGGAACTCCCCCGCCACGATGCGATCATGTTCGAGCACCGAGTCTTCGCAGTGTTTGAACGTGCCGCGAGCCTGGGACGAATGTACGAAGATCTCGTTCGACGGTGGCGGCTTCCCACCGAACTGGCCGAACTCGTCGACGAACGCCCAGCATCCCCGAGCGCCTGA	MTSRSKQRHSSHIKGNKGVRIVTDALPDFWAVREINPDYGLDLHIEAFIPDRNDPNSANALGEHFYIQVKSTEQVQVRDGIARFSIETSSLVTIERMGAAVPVLLCLVDLAAKKVYYVCLNDYISKVLLVEKPDYDEQESVTLRIPSRNILDSAGPEFSYIWLLARRGKYYAAFNVFGYQLNELKYAQGWFMARPESDDATATITPGILDILRIFLRSTLRLDVWDFPGPGMWPPLADVYTDFRSLLKDLPRYEVELPRHDAIMFEHRVFAVFERAASLGRMYEDLVRRWRLPTELAELVDERPASPSA				NA	NA	NA	NA	NA
AK001_03111	1134			hypothetical protein	ATGTCGCGAGATCCTCCCCGTTGGCGGCGGGCTCTGACATGCTCGTGCGGACAGCGTTGCGCAGCGTGGCCATGCCCGGTTCTGCCCTCAATTCTAGATTGCTGGACCAGTGGCGTCTGCCGACCTGCCTACAGCCCCCTGCCGTGGTTTGGTGGGAATATGGACGATGCGTGGAATCCTCCTTTGCCTGATCCTGCCGCGTGGGTTCCTCGCCGCGGCAACGAGAACCTTCGTGGAGCGCTGCAGCGACGATGTCTTGGCGTGGAGCGGCTCGTCCGTCTCCGCGCGCAGCTGGAACGCGAGATGAACATAGACAACTTCGACTCTGGTCCAGGCGTCGAAGATGTGGTGCGAGAGGAATTCAGGCTACTCCTACCGTCGCGCTACGGTGTACGGGCCGGAGTGGTGAACGACAGCGCAGGTCGGACGGTCGGTGACTGCGACGTCCTGATGCTGAACGAGTCATGGTTTCCCTCAATCAAAGCAGGTGCGACTACTTCTTCAAGGCGCTACCATTTTCCTGTCGAGTCCATTTACGGAGTCATAGAAGTCAAGCAGTCTCTCAGTGCTACGACGCTTGACGATGCGATGTCTAAGTTGGTTCGCTTGTCGAGGTTGAAGAAAGACGCGGCTCCTGAATTGATAGTCGAGAATCGCGATGTTCACATCGATACGCATCGCGAAATGCAGCCGCTCTTCACCGCGGTGTTGGCAACGGACTTGCGTCCGGGCGAGAATCTTGACTCGCTTGTCCACCGGTTCGTAGCGATTAACGGACAATTGAAGCGACGCGAGGTTGTCACGGCTCTATGTGTACTTGGCCGAGGATTCGCTTCGTGGTCTATCGCATCGGACGAGGGACAGCCGCGGTTGGCATACTTCAGCGGGGTTGAGGAAACTGAGCATCTTAGCCCAGTCCTGCTAAGGGCCGCTCCCGACGGGCCGGACTCAGCTCTCTATGAACTGTTTACGCTAGTGCTTGGATACGTAAGTACCATGGTGCTGCCAATAGATGATGTGGCGGGCAACTACGGCGCCCCTCAGCAGGTTCAGATCCCGTTGGAAGGAAACTGGGATCTTCATCCAGACGGGTGTACCTGCTGGAGGATGCGCAGTGATGGAAGCAGGGAATAG	MSRDPPRWRRALTCSCGQRCAAWPCPVLPSILDCWTSGVCRPAYSPLPWFGGNMDDAWNPPLPDPAAWVPRRGNENLRGALQRRCLGVERLVRLRAQLEREMNIDNFDSGPGVEDVVREEFRLLLPSRYGVRAGVVNDSAGRTVGDCDVLMLNESWFPSIKAGATTSSRRYHFPVESIYGVIEVKQSLSATTLDDAMSKLVRLSRLKKDAAPELIVENRDVHIDTHREMQPLFTAVLATDLRPGENLDSLVHRFVAINGQLKRREVVTALCVLGRGFASWSIASDEGQPRLAYFSGVEETEHLSPVLLRAAPDGPDSALYELFTLVLGYVSTMVLPIDDVAGNYGAPQQVQIPLEGNWDLHPDGCTCWRMRSDGSRE				NA	NA	NA	NA	NA
AK001_03112	585	dapH_3		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	ATGACCGTGGAGGAGTTCCTGGCGCATGTGAATTGCGGCGCCCTGATCGAGGGCGGCTCGGAGCTGCACGGTGTCATGCACCGCACGGCCCAGGAGGCGCTGCAGATCACCGCGGAGCTGAACACCGGCTATCACCGCCCCGAGGAGGTGAGAGCACTGCTGTCGCGCCTGACCGGGAAGCCGGTCGACGAGTCCGTCACCGTGTTCCCGCCCTTCCACAGCGAGTTCGGCAAGAACCTCACGCTCGGCAAGGACGTGTTCATCAACCAGGGCTGCCGGTTCCAGGACACCGGAGGGATCACGATCGGCGACGGCAGCCTGATCGGTCACGGCTGCACGCTCACGACGCTCGACCATGCGGTCGACCCGGACCGGCGGGCGGACATGAGCCCCGCCCCCGTGACCATCGGGCGCCGGGTGTGGCTGGGCGCCTCCGTCACCGTCGTCCCAGGAGTGACGATCGGCGACGGCGCGATCGTCGGGGCGGGCGCCGTGGTGACCAAGGACGTCCCGGCCTACACCATCGTCGCCGGGGTGCCGGCACGCGTCATCCGCGCGACAGGGTTCACGTCCTCGCCAGCCTGA	MTVEEFLAHVNCGALIEGGSELHGVMHRTAQEALQITAELNTGYHRPEEVRALLSRLTGKPVDESVTVFPPFHSEFGKNLTLGKDVFINQGCRFQDTGGITIGDGSLIGHGCTLTTLDHAVDPDRRADMSPAPVTIGRRVWLGASVTVVPGVTIGDGAIVGAGAVVTKDVPAYTIVAGVPARVIRATGFTSSPA	PGPT0018611_1956	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0018611-maa|nodL-K00661	NA	NA
AK001_03113	1155			hypothetical protein	ATGGCTGTCGGACCGTGGCACGTCGGGCTGGCCGGGATGTCGATCATCGGCGTCTCCTTCGGGTTCGCCCGCTACGGCTACGGACTGTTCGTCCCGGTGTTCGAGGACGAGTTCGGCCTGTCGACCGAGACGCTCGGCCTCGTCGCGGGCGGCAGCTACGCGAGCTACCTCGTGGCGCTGCTCGTGGGCGGGGTGCTCGCTTCGCGCCTCGGCCCGCGGCTGCCCGTGGTCCTGGCCGGAGCGTGCGCGACCGCGGGGATGACGCTCGTGGCTCTGGCTCCGCACGCCGGCGTGATGGCGACCGGTGCCCTGGTCGCGAGCACCAGCCCCGGATGGGCGTGGGCGCCGCTGTCGGACGCCGTGTCCCAGCTGGTGCGTCCGCGGAGCCGGGACCGGGTCCTGTCCGTCGTGAGCACCGGGACCGCCGTCGGGCTGGCGGTGGCCGGGCCCGTCGCGCTGTTCGCCGGGACGTCCTGGCGTCTGGCCTGGCTCGTCTTCGCGATCCTCGCCGTCGGAAGTCTGGTCTGGAACGCGCGGCTGCTGCCCGCCCGGCCCTATCGCCGGCCGACCGCACCACGTCGTGGTCCGGGCTGGCGGTGGTTCGTCCACCGCGACTCGTGGCCGCTCCTCGCGGTGGCGTTCCTCGTCGGGGTGTCGAGCGCCTTCTACTGGACGTACGCCGCCGATCTGGCCCTGGAGAGCGGCCTGCCGGAGTCCGCGCGGTCGGTGCTGTGGACCTGCGTCGGCGTGGCCGGGGCGGTCGGTCTCGTCACGGGCGACCTGGTGAGGCGGTACGGCCTGCGGCGGATCCTGCTGCTCGCCCTGGCTCTGCTGGCCGGTGCCGTCGGGGTGCTCGGGGTGTTCCCGGCGTCCTGGGCCGGCGTCGTGGCCTCCGGTGCGCTCTACGGTCCGGGCTTCATGATGATGTCGGCGCTGCTCGCGGTGTGGAGCGCGCACGTCTTTCCCGAGCGCCCCTCCGCCGGCTTCAGCGCGGCGCTCCTCGCGTTGGCGGTCGGTTCGATCGTCGGCCCCGCGGCACTGGGTCTCCTGGCAGGGTCCACGGACATGGCCGTGCAGTTCCTGGTGGCCGCCGCCGTCACAGTGGTGGGCATGGCCTGCGCCATCCCGGCGACCAAGCGGGTGGCGGTGATGTGA	MAVGPWHVGLAGMSIIGVSFGFARYGYGLFVPVFEDEFGLSTETLGLVAGGSYASYLVALLVGGVLASRLGPRLPVVLAGACATAGMTLVALAPHAGVMATGALVASTSPGWAWAPLSDAVSQLVRPRSRDRVLSVVSTGTAVGLAVAGPVALFAGTSWRLAWLVFAILAVGSLVWNARLLPARPYRRPTAPRRGPGWRWFVHRDSWPLLAVAFLVGVSSAFYWTYAADLALESGLPESARSVLWTCVGVAGAVGLVTGDLVRRYGLRRILLLALALLAGAVGVLGVFPASWAGVVASGALYGPGFMMMSALLAVWSAHVFPERPSAGFSAALLALAVGSIVGPAALGLLAGSTDMAVQFLVAAAVTVVGMACAIPATKRVAVM				NA	NA	NA	NA	NA
AK001_03114	930			hypothetical protein	GTGCCCCAGGGGACTGTCCGATGGTTCGACGCCGACCGAGGGTTCGGTTTCATCGACCGCGGGAACGACGCCGAGGACCTGTTCGTGCACGCGTCCGAGATCGTCGGCGACGACGGTCCGAAGCAGCTTCGTGAGGGGCAGGCCGTCGAGTTCGAGGTGAAGGACAGCGACCGGGGTCCGCAGGCCCGCCGCGTCCGGGTCACGGGCGACCAGCCTGCCGACGCGGCTCTGGGCGTGCTCGGCAGCGTCAACTGGTACGAGCCCACCAAGGGCTACGGGTTCGTCACGCCCGACGACGGTCGCGGCGAGATCTTCGTGCACAGCTCGGCCATCGTCACCGGCGGCGTGATCACGGAAGGGCAGCGCGTGGCGTTCCTCGTCGTCGACGGCGAGAAGGGGCCGCAGGCGGACCACCTGCTCCCGCTCGCCGCGGAGTCCGCACGGTCGGCCGCGGACGGTGCGGACGGCACGGTGTCCTTCTTCGACGAGTCCAAGGGCTTCGGGTTCATCGTCCCCGACGCGGGCGGCGAGGACCTCTTCGTCCACGCCAAGGCGCTCGGCCCGGGCATGACCTCGCTGGCCGAGGGCGCGCGGGTGACCTACGACGTCGTCGACGGCGACCGGGGGCCGAACGCCCGCGACGTGCGGCTCGTGCGTGGCTCCACGGGAGTGCCGGCCGGTCGGGACCGTGGCCGGTCGGGCCGCGCTCCGGCGTCCGGCGGACCGGTGCGGGGCGGCGAGGGCACCGTCGCGCGCTACGACGCGGACCGTGGCTTCGGATTCATCACGCCCGACGCCGGCGGCGACGACCTGTTCGTGCACGTGTCGGTCGTGCGGGGTGACGACTACCTGGAGGAGGGCGACCGGGTCCGCTTCACGGTGCGCCAGAGCGACCGTGGGCCGCAGGCCGACAAGGTCGAGCCGCTCTGA	MPQGTVRWFDADRGFGFIDRGNDAEDLFVHASEIVGDDGPKQLREGQAVEFEVKDSDRGPQARRVRVTGDQPADAALGVLGSVNWYEPTKGYGFVTPDDGRGEIFVHSSAIVTGGVITEGQRVAFLVVDGEKGPQADHLLPLAAESARSAADGADGTVSFFDESKGFGFIVPDAGGEDLFVHAKALGPGMTSLAEGARVTYDVVDGDRGPNARDVRLVRGSTGVPAGRDRGRSGRAPASGGPVRGGEGTVARYDADRGFGFITPDAGGDDLFVHVSVVRGDDYLEEGDRVRFTVRQSDRGPQADKVEPL	PGPT0014675_32	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
AK001_03115	1071			hypothetical protein	ATGACTTCCGCCGCGCTGCGCGCCGACAACCCTGTCACCAGCACCTACGCCGCCCTGTCCCGCACCGTCCGGGACGCCGGGCTGCTGCGCAAGACCCCCCGCTACTACCTGTGGACGCTCGGCGTGCTCACCGCGGCGCTCGGCGGGATCGTCACGGGCTTCGTCCTGCTGGGCGACTCCTGGCTCCAGCTCCTCATGGCCGGCGCCCTGGGTCTCGTCCTGACCCAGTTCTCGTTCGTGGCGCACGAGGCGGCGCACAAGCAGGTGTTCGCCTCCGGCCCGGTGAACGACCGCGTCGGGCGGATCCTCGCCAACGGCGTGGCCGGCATCAGCTACTCGTGGTGGATGACCAAGCACACGCGCCACCACGCCAACCCGAACAAGGTCGGCAAGGACCCGGACATCGCGATGGACACCATCGCGTTCACCGAGGACCAGGCCCGGGAGCAGAAGGGCTTCCTGGCGCTGATCCACCGCTACCAGGGCTGGCTGTTCTTCCCCCTCCTGACCCTGGAGGGCCTGAACCTGCACGTCACGTCGATCCGTTCGCTCTTCACCGGCAAGCCGGACACGCTGCGCGCCCGGATCAACGAGCTCGTCGTCATCGGCCTGCGCCTGAGCCTGTACCTCGCGGTGCTGTTCGTCTTCCTGCCGGTCGGGCTGGCCTTCGCCTTCCTCGGCGTCCAGATGGCCGTCTTCGGTGTGTACATGGGCGCCTCCTTCGCCCCGAACCACAAGGGCATGAAGCTCATCCCCGCGGACAGCAAGCTGGACTTCCTGTCCAAGCAGGTGCTGACCTCGCGCAACATCCGCGGTGGGTGGTGGATGAACATCCTCATGGGCGGCCTGAACTTCCAGATCGAGCACCACCTGTTCCCCTCGATGCCGCGCCCGCACCTGGCCCGCGCCCGGGAGATCGTGCGCGAGCACTGCGCGCACCTGGGGATCCCCTACACCGAGACGAGCCTGATCGCCTCGTACGGCATCGTCGTGCGCTACCTGAACCGGGTCGGCCTGCAGGCCCGCGACCCGTTCGACTGCCCGATGTTCCACCAGCTGCGCAAGCTCTGA	MTSAALRADNPVTSTYAALSRTVRDAGLLRKTPRYYLWTLGVLTAALGGIVTGFVLLGDSWLQLLMAGALGLVLTQFSFVAHEAAHKQVFASGPVNDRVGRILANGVAGISYSWWMTKHTRHHANPNKVGKDPDIAMDTIAFTEDQAREQKGFLALIHRYQGWLFFPLLTLEGLNLHVTSIRSLFTGKPDTLRARINELVVIGLRLSLYLAVLFVFLPVGLAFAFLGVQMAVFGVYMGASFAPNHKGMKLIPADSKLDFLSKQVLTSRNIRGGWWMNILMGGLNFQIEHHLFPSMPRPHLARAREIVREHCAHLGIPYTETSLIASYGIVVRYLNRVGLQARDPFDCPMFHQLRKL				NA	NA	NA	NA	NA
AK001_03116	1101	yhhT	COG0628	Putative transport protein YhhT	ATGAGCCACCCTGCGGACCCCGTCGCGACCGGACGCGGCTCGACGCTGCTGCGCTGGGGGCGCAAGGCGTGGGCGCTCGTCGGCATCGCCCTCGCCGCGGTCGCGGTCTACCTGCTGACGGGCGCGGTCTCCGGACTGTTCGTCCCGTTGCTCGTGGCGCTCGTGGTCGGCGCGCTCTTCGCCCCGCTGTGCGCGGTCCTCGCCCGTTGGGTGCCGCGCTGGTTGGCCGCGCTGGTCGTGCTGGCCGGACTGCTCGCCGTCGCCGTCGGGACGATCGGCCTCGCGGTCCGCGGCGTCGTCCAGCAGGCCAGCGAGATCGGCGCCCAGCTCACCGACGGGTTCGAGGCCCTCCAGGCGTGGGCCCAGGAGCTGGGTCTGACGCTGCCGAGCCTCACCGACACCACCGACGGGCTCCCCGAGTGGGGCACCGCGCTGCTGTCGGGCTTCACCGCCCAGCTCGGGACGGTGTTCTCGGGCACGGCCGCGCTGGTCATGGGCACCTTCGTCGGCGTGTTCCTGCTCTACTTCATCCTCGCCGACTGGGAGCTGCTGATGCGGTGGACCTCCCGCAACATCGGCGTGGACCCGCAGGTGGGGGCGGGCATCATCGACGACGGCACCTGGGCGATGCGCCGGTACTTCCTCGCGCTGACGGCCTCCAGCATCGTGGTGTCGATCATCGTGGGGCTCGCCGCCTGGCTGCTGGGCCTGCCGCTCGCGTTCACCATCGCCGTGATCACCTTCATCACGTCCTACGTGCCGTTCCTGGGCGCGATCGTCTCGGGGGCGTTCGCGGTCCTCATCGCCCTGGGATCCGGCGGGCTGTTCGACGCCGTGGTCATGCTGGCGGTCATCCTCATCGCCCAGAACGCGGTGCAGACGATCATCCAGACGTTCATGACCCAGGGGGCCCTCAAGCTGCACCCGATCGTCATCCTCGGCTCCACGATCGCCGGCGGCGCCCTGTTCGGCCTGCTCGGCGCGGCCCTGTCGACACCGGTCGTCGCGATCGTCATCAAGATCGTCGAGCGGTTCCGCAGCCTGGGCACGGAAGCGGGCCCGCCGACGTCGGCCCCGGGCACCGGGCCCGCGCCCGGCTGA	MSHPADPVATGRGSTLLRWGRKAWALVGIALAAVAVYLLTGAVSGLFVPLLVALVVGALFAPLCAVLARWVPRWLAALVVLAGLLAVAVGTIGLAVRGVVQQASEIGAQLTDGFEALQAWAQELGLTLPSLTDTTDGLPEWGTALLSGFTAQLGTVFSGTAALVMGTFVGVFLLYFILADWELLMRWTSRNIGVDPQVGAGIIDDGTWAMRRYFLALTASSIVVSIIVGLAAWLLGLPLAFTIAVITFITSYVPFLGAIVSGAFAVLIALGSGGLFDAVVMLAVILIAQNAVQTIIQTFMTQGALKLHPIVILGSTIAGGALFGLLGAALSTPVVAIVIKIVERFRSLGTEAGPPTSAPGTGPAPG				NA	NA	NA	NA	NA
AK001_03117	684		COG4122	Catechol O-methyltransferase	ATGATCGAGAGCATGACGAGCGCGGAGCAGGCTTGGTCCGGGGTCGACGCCTACCTGGTCGACGAGGTCGTGGGCGAGGACGACGTCCTCGCCGCGGCGCGTGCGCGCGGGCGGGAGCGGGGTCTGCCGCCGATCGACGTCACGCCGAACCAGGGGGCGTTCCTCGCCCTGGTCGCGCAGCTCGCCGGCGCGCGGCGCGTGCTCGAGCTCGGCACGCTCGCCGGATACTCCACGATCTGGCTCGCCCGGGCCGTGGGGACCGCGGGCCACGTGACGACGGTCGAGCGCGATCCCCGGCACGCCGAGGTGGCGCGGGAGAACCTCGACGAGGCGGGCGTGGGGGAGCGGGTGCGCATCGAGGTCGGTGCGGCGCTGGATGTCCTGGCCGGGCTCGCCGACGCCGGGACCGAGCCGTACGACCTGGTGTTCGTCGACGCCGACAAGGCGAACATGCCCGCCTACCTGGAGCTGGCGCTGCGGCTGACGCGGTCCGGCAGCGTGATCGTCGGAGACAACGTGGTCCGTCGCGGCGCGGTCGTCGACCCGTCGGACCAGAGCCCGGACGTCGCCGGCGTGCGGGCGTTCCTGCACGAGCTGGGGACGGACCCGCGCCTGGAGGCGACCGTGCTGCAGACGGTCGGGTCGAAGGGCTGGGACGGGTTCGCGATCGCCCGCGTGCGCTGA	MIESMTSAEQAWSGVDAYLVDEVVGEDDVLAAARARGRERGLPPIDVTPNQGAFLALVAQLAGARRVLELGTLAGYSTIWLARAVGTAGHVTTVERDPRHAEVARENLDEAGVGERVRIEVGAALDVLAGLADAGTEPYDLVFVDADKANMPAYLELALRLTRSGSVIVGDNVVRRGAVVDPSDQSPDVAGVRAFLHELGTDPRLEATVLQTVGSKGWDGFAIARVR	PGPT0011950_32	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	TUMORICIDAL_COMPOUNDS	TUMORICIDAL-ANSAMITOCIN_P-3_METABOLISM,PGPT0011950-asm17-K16028	NA	NA
AK001_03118	576			hypothetical protein	ATGCTCACCTCGCTCCGTCGCGGCATCGCGCGCCTGTACTGGCTGATCAGCCGCTGGCGGCTGCGGTCCACCCCGGCTCCCGACCGCGCCGGCATCCTCATCGGTGCTCCGCACACGTCGAACTGGGACTTCGTGCTGATGCTCGCCATCGCCTGGCGGCTGGGGATCGACGTGCGCTGGTTGGGCAAGCACACCCTGTTCGCCGGCTGGAAGGGCCCGGTGATGCGGGCGCTGGGGGGCATCCCCGTCGACCGCCGCGACCCGTCGCGCGTCGTGGCCGACATCCTCGCCCGCGTGGCCGCCGGCGAGACCTTCCACCTGGTCATCACCCCCGAGGGCACGCGCTCCGGCGACGGCTGGAAGTCCGGCTTCTACCGGATCTCGCGCGAGGCCGACCTGCCGGTCACCCTCGGCTACGTCGACCGCACCACGATGACGACCGGCCTCGGACCGACCCTCGAGATGACGGGCGACGTCACCGCTGACATGGATCGCATCCGCGCCTTCTACGCCGACAAGGCCGGCGTGAACCCCGAGCTGCGCACGGAGCCCCGGCTGCGGTCCGAAGAAGGCTGA	MLTSLRRGIARLYWLISRWRLRSTPAPDRAGILIGAPHTSNWDFVLMLAIAWRLGIDVRWLGKHTLFAGWKGPVMRALGGIPVDRRDPSRVVADILARVAAGETFHLVITPEGTRSGDGWKSGFYRISREADLPVTLGYVDRTTMTTGLGPTLEMTGDVTADMDRIRAFYADKAGVNPELRTEPRLRSEEG				NA	NA	NA	NA	NA
AK001_03119	594			hypothetical protein	GTGAATGCTTCCTCCGACGACGACGCCGCCTCGGTCCCGCCGGACGACGCCGCAGCCTCTCGGTTGGCCGCCCTGTGGGACGACCACGCCGTGCGCGTGCACGCCTACCTGCTGCGGCACACCGACCCGGACACCGCCCAGGACCTGCTGTCCGAGACCTTCCTGGTGGCATGGCGCCGCCTGGAGGACGTCCCCGACGACGCCCTGCCCTGGCTGCTGGTGGTGGCCCGCAACCTGCGGAACAACAGCCTGCGCGCCCAGGTCCGCCGACGCGAGCTCGACGCCGAGCTGACCCGCCTGGAGGCCGCGGCGCCGGGGGCCGAGAACGCCCCGGAGGCGCTGGCCACCGAACGGGACGACCTGCTGCGCGGGCTCGCCGCCCTGACCGAGCGGGAGCGCGAGGCGATCCTGCTCGTCGCCTGGGACGGCCTCTCGCCGGCGCAGGCGGCCGACGTCGCCGAGTGCAGCACCGCCGCCCTGCACGTCCGCCTGCACCGGGCACGACGACGGCTCGCGGCCGCCGTCGACGACTCCGGCACCGCATCCACCGCGCGCCGCACGAGCGACGCCCCGTCCTCGAGGAGGTCGGCATGA	MNASSDDDAASVPPDDAAASRLAALWDDHAVRVHAYLLRHTDPDTAQDLLSETFLVAWRRLEDVPDDALPWLLVVARNLRNNSLRAQVRRRELDAELTRLEAAAPGAENAPEALATERDDLLRGLAALTEREREAILLVAWDGLSPAQAADVAECSTAALHVRLHRARRRLAAAVDDSGTASTARRTSDAPSSRRSA	PGPT0014960_8271	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
AK001_03120	1350			hypothetical protein	ATGAGCACCCACGACATCGACTCCCGCCTCGCCCGGCTCGCCCCGACCGGGTCTCCCGACCCGGAGCGCTTCGACGCGGCCCGCGCCGAGCTCGAGGCCGCGATCGCCGACCCGCACGGTCCCACCGCGGCCCGGTCCGCTTCCACCACGCCCGGTACGAGCGGCGCGTCGCACCGCCTGGACCTCGACGACGACCAGATCGACGTGGTCACCCCCCTCGACACCGTCCAGCAGGCCCGCCGGCGACGCGGACGACGCTGGACCCTCGCCGCAGCCGTCGCAGGCGTCGTCGCCGTGACCGGCACGGCCGTCGTCCTCTCCCCGGTCGGACCCGACGTGGCCCCGGCGTGGCTGTCGTCCCCCGAGCAGTCGTGCGCGGATCAGGTCCCGGAGATCGCCGACCTGGAGGAGCTGACCGGTGACATCGTGTGGCGGACCATCGCGCGGTCGTCCGCAGGCGCCGACGTCGAGATCGTGACCGATCCCGAGAGCCGGGTTGCCGGCGTCTGCCTCACGTCCCACGACGACGGCACGGTCACCACGGGGTACTGGACGCTGCCGGGCGACACCCCGGACGCCGACGAGGTCCGACCGCAGGGGCAGGTCACCGAACGGGGGATCTTCGTCTGGGGGTTCGCCGGGCAGGACGTGACGTCGGTCGATGTGGAGGCCCGCTGGCGCGACCGCGATCGCGGTGCCGTCATCGAGGCTTTCCTCGACGACGGCACCTGGTGGGCCCACGACGTCGAGGCGGAGGAGATTCCGGAGGACGCAGAGATCCAGGTGCACGCAACCCTCGACGACGGCACCACGACAACCGTCTCGCTCGACGACGCCTGGCCGGGCGCGGACTCGTGGAACCCGCTCGCCGAGGCACGCCGTGCAGAGTGCCGCTCGGTGCGGGACTGGGAGACCGGAGAGCGGGTCTCCCCCGTCCTGGAGGACCGGCGCGGCGATCTCGGCCTGGCCCTGTACGCCGATGTGGACAGCCGCACGATGAGCGCATGCATCCAGGAGGCGGACCCGCCGTACGAGAAACTCTCGTTCACCAGCGCGTCCGAAGCATCGCTGAATCCCGCCGACAACGAAGCCTGGGCAGTGTCCGCTGGTGGATCCGGCCCGCACCAGATCGCGGTCGGCGTCGCCGGCGACGACGTCGAGAGCGTCGAGGTCACCACCGGTACCGGGGACGTGCTGGAAGCGAACGTCTCGAACGGCTACTGGGCGGTCTGGGCCCCCGACAGCTCGAGCAGCGGGAGTGTCGACCCGGCGGACCTCTGGCAGGACGCCACGATCCAGTGGCAACTCACGGACGGGTCACGCAGCCTGACCGGACCGCTGTTCCCCTAG	MSTHDIDSRLARLAPTGSPDPERFDAARAELEAAIADPHGPTAARSASTTPGTSGASHRLDLDDDQIDVVTPLDTVQQARRRRGRRWTLAAAVAGVVAVTGTAVVLSPVGPDVAPAWLSSPEQSCADQVPEIADLEELTGDIVWRTIARSSAGADVEIVTDPESRVAGVCLTSHDDGTVTTGYWTLPGDTPDADEVRPQGQVTERGIFVWGFAGQDVTSVDVEARWRDRDRGAVIEAFLDDGTWWAHDVEAEEIPEDAEIQVHATLDDGTTTTVSLDDAWPGADSWNPLAEARRAECRSVRDWETGERVSPVLEDRRGDLGLALYADVDSRTMSACIQEADPPYEKLSFTSASEASLNPADNEAWAVSAGGSGPHQIAVGVAGDDVESVEVTTGTGDVLEANVSNGYWAVWAPDSSSSGSVDPADLWQDATIQWQLTDGSRSLTGPLFP				NA	NA	NA	NA	NA
AK001_03121	918		COG0589	Universal stress protein	ATGAACAGCACACGAGTGATCGTCGGCGTGGACGGCTCGATCGCCGGGGAGCAGGCCCTGGACTGGGCGGCTGCCGAGGCCGTGCGCCGACAGGGAACCCTGACGGTGGTGAGCGCCTACACGGTCGCGACGACGCCGGCCGACGCCGGCTTCGGGCTCGGCGAGCAGGCGGTCCGTGAGCGGGCGGAGGAGGGCGTGGCGAGCGCGGCCGAACGTCTCGTGGCGCTGCGTGAGCTGCGGCCGACGGCGGCACCCGCCGTCGACGACGTCTCGTGGGAGGTCGTGTCCGGCACGCCGGCCGGCGTGCTCGTGGGACACACCGGTGTCGACAGCCTCGTGGTCGTGGGGCAGCGTGGTCTGGGCGGCATCGACCGGGTCGTCCTGGGCTCGGTCTCCTCGGCCGTGGCGGCGATGGCCCACGGGTCCGTCGTCGTGGTCCCGACCGACCCCGTCGCGCAGCACTCCGTCGGCGCCAACGACCGGGTGGGACCGATCTGGCGGGTCGTGGCGGCGGTGGACACCGACGAGCAGGCCGACCGGGTCCTGGAGCAGGCGTTCGCCGAGGCCGACTTCGCCGCCTCGCCGCTGCACGTGGTGCACGCCGTCCACCCGGACTTCATCGCCGGCCCGTACGCCATGGCCAACGCGCTGTCCCAGGAGTACCGCGACGAGGCGCGGTCGTCCATGCACGACATCATGGCGCGCTGGACCGAGAAGTTCCCGGACGTCGAGGTCACCACGGAGGTCGTGACCGGCGTGCCGATCGACGTCCTGCAGCAGCGCCTCAACCGGCACGACCTCGCCGTCGTCGGCGGGCGCAAGCACTCGCCGATGGTGGGTCGCGTGCTCGGTTCCATGCCGGACCGGCTGGTGCACCACGCACCCTGCCCGGTCCTCATCGCCCACGAGCCGGCGTAG	MNSTRVIVGVDGSIAGEQALDWAAAEAVRRQGTLTVVSAYTVATTPADAGFGLGEQAVRERAEEGVASAAERLVALRELRPTAAPAVDDVSWEVVSGTPAGVLVGHTGVDSLVVVGQRGLGGIDRVVLGSVSSAVAAMAHGSVVVVPTDPVAQHSVGANDRVGPIWRVVAAVDTDEQADRVLEQAFAEADFAASPLHVVHAVHPDFIAGPYAMANALSQEYRDEARSSMHDIMARWTEKFPDVEVTTEVVTGVPIDVLQQRLNRHDLAVVGGRKHSPMVGRVLGSMPDRLVHHAPCPVLIAHEPA				NA	NA	NA	NA	NA
AK001_03122	1626	devS	COG2203	Oxygen sensor histidine kinase response regulator DevS/DosS	GTGCGCGACGACGACGTGGACCTGCTGCTCGCGGCGGTGGTCTCGGTCGGGCGCGGCCTCGACCTCGAGAGCACGCTGCAGCGCCTGGTGCAGGCCGCGACCGACGTCGTCGACGCGCGCTACGGGGCCCTGGGGGTGCTCGGCGACGACCGGCAGATCTCCCGGTTCCTCACGGTCGGGCTGACTCCCGAGGAGATCGAGGCCATCGGCCCCTACCCCCGCGGGAAGGGGCTGCTCGGCGAGCTGATCCGCCACCCCGACCCCCTGCGACTGGCGGACATGTCGAGCGACGCGCGCTCGGTCGGCTTCCCTGCCCACCACCCGCCGATGCGTTCCTTCCTCGGGGTGCCCCTGCGCGTCCGCGGCCGCCCGTTCGGCAACCTCTACCTGACGGAGAAGCGCGGCGGCGGGGAGTTCACCGCCCGTGACGAGCACCTCGCCGAGGCACTGGCCTCCGCCGCGAGCGTCGCCGTCGAGAACGCCCGCCTGTACTCGGCGGCCCGGCTGCGCGAACGCTGGGCGCGCGGCAACCACGCGATCTCCCGGGAGATCGCCGCGGGCTCCTCCCCCCAGTCGGTGATGGACGTCGTCGCCCAGGAGGCGATGAGCGTCGCCGAGGCCGACACGGCCGTCCTCGCCACCCGGGCCGACGACGCCGACCAGCTCGTGATCCGCTCCGTCTCCGGCGCCGGCGTCGACGGCCTCGTCGGGACGACGCTGCCGACCCAGGGGACGTTCGCCGCCGACGCCTACATCTCCGGCCAGCCGGTGATGACCGCCGACGCCGCCACGGACGACCGCACCACCCTCGCCTTCCGGCCGGTCGACATCGTCGGGCCGCTCGCAGCGGTCCCCCTGGGCGGGCCGGGACAGACGATCGGGGTGCTGTCGGTCGGCCGCCGCCGCCACACCCCGCCCTTCTCCAGCGTGGTCATCGACTCGCTGCAGGCCTTCGCGGCCCAGACGGCGGTGGCCCTGGAGCTGGCGCAGCGCCGTCTGGACGGCGAGCGCCTGGCGGTGGTCCGCGAGCGCAACCGCATCGCGCGGGACCTGCACGATCTGGCGATCCAGCGCCTGTACGCCACCGGGCTCAGCCTGCAGGGCGTCGGACGGCGGCTGGACGAGAACGGCCCGCCCGCCGACGCCGACCGGGTGGGCCGCGCCGTGGACGACCTGGACGAGACCATCAGCCTCATCCGCACCACGATCCGCGGTCTGCGCGATGCCGACGAGCCCGACCGCCGCACCGGGGTGCGGGCCCGGCTGATCGCCGAGTCGGACGCCGCACGCCGGTCGTTGGGGTTCCCGCCGGCGCTGCACCTGTCCGGCCCGATCGACGCCGTCGTGCCCGGCGCGACCGCCGACCAGCTCGTGGCGGTGCTGCGCGAGGCGCTGTCCAACGTGGCCCGGCACGCGGCGGCGCGGCACGTGACCATCGACGTCACGGCGACGGACGGCCATCTCGTGCTCTCGGTGCGCGACGACGGCCACGGCATCCCGGACGGGGTGACGCCGAGCGGGCTGCGCAACCTGGAGCAGCGGGCCGTCGACCTGGGCGGGTCGTTCGACGTCGAGACCGCGAGCAGCGGGACGGCGCTGCGCTGGCAGGTCCCGCTCGGCGCGTGA	MRDDDVDLLLAAVVSVGRGLDLESTLQRLVQAATDVVDARYGALGVLGDDRQISRFLTVGLTPEEIEAIGPYPRGKGLLGELIRHPDPLRLADMSSDARSVGFPAHHPPMRSFLGVPLRVRGRPFGNLYLTEKRGGGEFTARDEHLAEALASAASVAVENARLYSAARLRERWARGNHAISREIAAGSSPQSVMDVVAQEAMSVAEADTAVLATRADDADQLVIRSVSGAGVDGLVGTTLPTQGTFAADAYISGQPVMTADAATDDRTTLAFRPVDIVGPLAAVPLGGPGQTIGVLSVGRRRHTPPFSSVVIDSLQAFAAQTAVALELAQRRLDGERLAVVRERNRIARDLHDLAIQRLYATGLSLQGVGRRLDENGPPADADRVGRAVDDLDETISLIRTTIRGLRDADEPDRRTGVRARLIAESDAARRSLGFPPALHLSGPIDAVVPGATADQLVAVLREALSNVARHAAARHVTIDVTATDGHLVLSVRDDGHGIPDGVTPSGLRNLEQRAVDLGGSFDVETASSGTALRWQVPLGA				NA	NA	NA	NA	NA
AK001_03123	645	devR	COG2197	DNA-binding transcriptional activator DevR/DosR	ATGGGCGATACCGTGCGCGTGTTCCTCGTGGACGATCACGAGATCGTCCGTCGCGGCGTCGCCGACCTCATCGAGGCCGAACCGGACCTCGAGGTGGTCGGCGAGGCCGGCACCGCGGCCCAGGCCCTTGCCCGCATCCCCGCTCTCACCCCGGACGTCGTCGTGCTGGACGTGCGCCTGCCCGACGGCGACGGGGTGACCGTGTGCCGGGAGCTGCACTCCCGCATGGACGTGGCCTGTCTGATGCTGACGTCGTTCGACGACGACGAGGCCCTGTTCGACGCCATCATGGCCGGGGCCGCCGGGTACGTCCTCAAGCAGGTCCGCGGCACCGACATCGTGGCCGCCATCCGCACCGTCGCCGCCGGCGGGTCCACGCTCGACCCGCGCACCACCGCCGCCGTGATGGAGCGGATGCGGGCCCAGCAGCGCCACGAGGACGACCCGCTCGACGTGCTGACCGAGCAGGAGCAGCGCGTGCTCGCCCTCATCGGCCGGGGGATGACCAACCGGCAGATCGGTGCCGAGCTGTTCCTGGCCGAGAAGACGGTGAAGAACTACGTCTCCAGCGTGCTGGCCAAGCTCGGGCTGGAGCGTCGGGTGCAGGCCGCGGTGCTCGCGACCCGCCTCGAGGACCGCCACTGA	MGDTVRVFLVDDHEIVRRGVADLIEAEPDLEVVGEAGTAAQALARIPALTPDVVVLDVRLPDGDGVTVCRELHSRMDVACLMLTSFDDDEALFDAIMAGAAGYVLKQVRGTDIVAAIRTVAAGGSTLDPRTTAAVMERMRAQQRHEDDPLDVLTEQEQRVLALIGRGMTNRQIGAELFLAEKTVKNYVSSVLAKLGLERRVQAAVLATRLEDRH	PGPT0014870_95	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618	NA	NA
AK001_03124	540			hypothetical protein	ATGACCACCGCCTCCGCGCACCAGGCCTCGGCCCCCACCGTGCGCGAGACCTCGTTGTCCCCGGTCGCGGCGTTCACGTTCGCGATCGTGCGGCTTCTGCTGGCCGTCGAGTTCCTCTGGGCGTTCTTCGACAAGACGTTCGGCCTGGGCATCGCCACACCGGCCGAGCGCGCCTGGATCGAGGGTGGCTCGCCCACCACCGGCTACCTGGCCAACTCCGAGGGGACGTTCGGCGGCTTCTTCAGCTCGCTCGCCGACAACGTGTTCATCGACTGGCTGTTCATGCTCGGTCTGCTCGGCATCGGCCTCGCGCTGCTGCTCGGCATCGGCATGCGCATCGCCGCGGTCTCCGGCGCCGTCCTCATGATGCTCATGTGGCTCGCCTCGCTGCCGCTGGCGAACAACCCGTTCGTGGACTACCACCTGGTCGACGCCGTGCTGCTGATCGGCCTGGCGGCGATCCTCGCCGGCGACACGCTGGGTCTCGGCAAGCGCTGGGCCTCCACCGACCTGGTGCAGCGCTTCCCCTGGCTGCGCTGA	MTTASAHQASAPTVRETSLSPVAAFTFAIVRLLLAVEFLWAFFDKTFGLGIATPAERAWIEGGSPTTGYLANSEGTFGGFFSSLADNVFIDWLFMLGLLGIGLALLLGIGMRIAAVSGAVLMMLMWLASLPLANNPFVDYHLVDAVLLIGLAAILAGDTLGLGKRWASTDLVQRFPWLR				NA	NA	NA	NA	NA
AK001_03125	2106			hypothetical protein	GTGACACCGAAGGACCGGACCGCACGGATCGACCGGGGGCGGCCGGCCCGTCGCGCCGCCTCCGCCCTGCTCGCCACCGCGCTGGCCCTCGCCGGGCTGGTCGTGCCCGCCGCCGTGCCGACGGCCCTGCCGACCGCCGCCGCCGACACGGCCGGCCTCACCGAGGAGGGGCACGCCCGCTACACCGTCCGCGCGAAGGGGGCGGTGACGGCCGAGGTCACGTCGACGATCACGAACGTCCTGCCCGACCGGGGCGGCCGCTCCTACTACTGGGACTCCTACGGCATCGTGCTGCCGACCAGCGCACGGGACGTCACGGCGACCAGCGGCGGCTACCCGCTGACCGTCCGGTTCGAGGACGGCGCGGACGCGACGACGCACGTCGCCGTCGCCTCCTTCGCGCCGCTGCGCTACGGCCGGACGCGGACCATCGAGTGGCGCTACGACATCGCCGGGGACCCGGTCCGCTCCGAGTCCTGGACTCGGGTCGGCCCCGGCTACGCGACCTTCGCCGCCGTGGCGCCCGGCGACGAGGGACGGGCGACCCTGGAGATCGTCGCGCCGCGGTCGATGCAGCTCGACACCCCGGCCGACGTCCGGCGCGACCGGGACGGCAAGCGGGTGGTGTACACGCTGGCCGCGGACGAGGACGGCGTCGCCTGGGCGCCGGTGTCGTTGCGCGACCCGGACCGGGCCGACACCCGCGACGTGCGCGTCGGCGACCACGTCATGACGGTGCACGGTTTCCGCGGGGACACGGAGTGGTCGCGGTTCGCCGCCGAGCAGGTCGAGGTCGGCATCCCCGTGCTGGAGGACCTCGTGGGCGCCGACTGGCCGGCGAACGTCCACCGGGTGCGCCAGGACTCGTCGCCGAACGTGCTGGGCTACGGCGGCTGGTTCAGCCGGTACGAGCGCGAGATCGTCGTCGACGAGAGCCTCGACGTCGGTCTCCTGCTGCACGAGCTGACCCACGCCTGGTTCAACCACGCCACGCTCGACGACCGTTGGCTCATCGAGGGGGTCACCGAGGTCGTCTCGCAGCGCGCCGTGGAGCGCACCGGCGCGGAGTCCACGGCGCGCGAGGCCCCGCGCCGGAAGTCCGACGCCGCCTTCCCGCTCGCCACCTGGGAGCCCGCCTTCACGCTCGACGACGACGCCGAGGCCTACGGCTACGACGCGGCCTACACCGTCGTGCAGCGGCTGACGGCCGACCTCGACGACGACGCGTTCCGCGCGCTGATGTCCGACGTCCACGACGGTGCCAGCCGGTACGCCGCGCCGGACCGTCCGGGGCAGTTCCGCGGCATCACCGACTGGAGGAGGTTCCTCGACCTCCTCGAGGCGCACGACGTCGGCGAAGGAGCCGAGAAGACGCTGCGGCGCTGGGTGCTGGACCGCCGTGGCAAGGAGGTCCTCGGGGACCGAGCCGAGGCGCGGGAGGCCTACACGGCGCTCGACGCGGCCGACGGCGACTGGCTGCCGCCCCAGGGACTCCGGTCGACGATGACGTGGTGGAGCTTCGGCGCCGCCGAGCAGGCGGTCGAGGCGCTGGGGGACGCGCCGCGCCAGGCCGCCGAGGTCCAGCAGGTCGCCGGGGACACCGGGCTGCCGGTGCCCGACGGCGTCCGGGATGCCTACGAGACGGCGCGGAACGAGGACGCCTACACGGCGCTGGCGCCGATGCTGACCGAGACCGCGACGACCATGGACCGGGTCGCCTCGGTGACGGCGCAGGTCGCGGTCGAGCAGGACCCCGTCACCGAGCTCGGCCGGCACCTGCTGGAGGTCGACGCCTCCGCCGCCGACGCCCGCGCCGCCCTCGCCGCCGGCGAGCTGGAGCAGGCCCGCGACCTGGTCGTCGCCACCATCGAGCAGGCCGACCGCGCGCAGCGGGTCGGTCTCGCCGTCGTCGGCGGTGCGCTCCTCCTCCTCGGGCTCCTCGTGCTCGTGCCGTGGCTGGTCGTCCGGGGGGTGCGCCGTCGTCGGCGCCGCCGGGCCGTGCTCACCGCGCCACGGGTCGTCGCCGTCGTGGCGGCGCCGGAGACCGGCGCGGAGCCCGTCGCCGTCCGCGAGGGGGACGCCGACACCGAGGACGCGATGTCCTGA	MTPKDRTARIDRGRPARRAASALLATALALAGLVVPAAVPTALPTAAADTAGLTEEGHARYTVRAKGAVTAEVTSTITNVLPDRGGRSYYWDSYGIVLPTSARDVTATSGGYPLTVRFEDGADATTHVAVASFAPLRYGRTRTIEWRYDIAGDPVRSESWTRVGPGYATFAAVAPGDEGRATLEIVAPRSMQLDTPADVRRDRDGKRVVYTLAADEDGVAWAPVSLRDPDRADTRDVRVGDHVMTVHGFRGDTEWSRFAAEQVEVGIPVLEDLVGADWPANVHRVRQDSSPNVLGYGGWFSRYEREIVVDESLDVGLLLHELTHAWFNHATLDDRWLIEGVTEVVSQRAVERTGAESTAREAPRRKSDAAFPLATWEPAFTLDDDAEAYGYDAAYTVVQRLTADLDDDAFRALMSDVHDGASRYAAPDRPGQFRGITDWRRFLDLLEAHDVGEGAEKTLRRWVLDRRGKEVLGDRAEAREAYTALDAADGDWLPPQGLRSTMTWWSFGAAEQAVEALGDAPRQAAEVQQVAGDTGLPVPDGVRDAYETARNEDAYTALAPMLTETATTMDRVASVTAQVAVEQDPVTELGRHLLEVDASAADARAALAAGELEQARDLVVATIEQADRAQRVGLAVVGGALLLLGLLVLVPWLVVRGVRRRRRRRAVLTAPRVVAVVAAPETGAEPVAVREGDADTEDAMS				NA	NA	NA	NA	NA
AK001_03126	261			hypothetical protein	ATGCAAATCGATGCCGGAGCCACGACGATCGCACTGCTGACGGCCTGCGCGGAGCCCGACCTCGGGATCCGTTCGGCGATCGTCCAGGAGCTGCTCGACGAGGCGAGCCAGGACCCGCGCCTCGCCCGCCAGGTGATGACCACGATGCTCACGGCCTCGGTGATGTCCCTGCAGGCCTACTCCGAGGCCGCCCACCGGGACCCCCACGACGTGCTGCAGGCGCTCGGGGTCTCCTGGTCGCAGCGGTCCCTCGGCGTCTGA	MQIDAGATTIALLTACAEPDLGIRSAIVQELLDEASQDPRLARQVMTTMLTASVMSLQAYSEAAHRDPHDVLQALGVSWSQRSLGV				NA	NA	NA	NA	NA
AK001_03127	1119			hypothetical protein	ATGGTGAGCGAACGGATCCAGGCCCTGCTGGCCGAGCATCCCGTCTGGGACGGCCACAACGACCTGCCGTGGGAGGCCCGCGAGCAGGCCGGCTACGACTGGGACGTGCTCGACATCGCCGGGCCGACGGCGGACCGCACCCACACCGACATCCCCCGGCTGCGGGCCGGGGGAGTCGGGGCGCAGTTCTGGTCGGTCTACGTGCCGACCACGATCGCGGGGGCCGACGCCGTCGTCGCGACGCTCGAGCAGATCGACGGCGTGCACCGCATGGTCGAGCGGTACCCGGACCAGCTCCGGCTCGCCACCACGGCCGCCGAGGTCGAGGACGCCTGGGCCGCCGGGCGTATCGCCTCCCTGATGGGCGCCGAGGGCGGGCACTCCATCGACGGGTCCCTCGGCGTGCTGCGCATGTTCCACGCCCTCGGCGTGCGGTACATGACGCTGACGCACAACGACAGCACCCCGTGGGCCGACTCGGCCACGGACGCCCCGAGCGAGCACGGCGGCCTGAACGCGTTCGGCCGCGAGGTCGTGCTCGAGATGAACCGCCTGGGGATGCTCGTCGACCTGTCCCACGTCGCCACGGGCACGATGCACGCCGCGCTCGACGTGACGGACGCACCGGTGGTGTTCTCGCACTCCAGCGCCCGCGCCGTCTGCGACGTGCCGCGCAACGTGCCCGACGACGTCCTGGGACGCCTGGCCACGAACGGCGGCGTCTGCATGGTCACCTTCGTGCCGCAGTTCGTCACGCCCGCCGTGGCCGAGTGGAAGGAGGAGGCCGCCGAGGCCGCCGCCGCGCAGGGGATCCGCGCCACCGACTACCTGGCGTTCAGCGGGTTCCTCGCCGACTGGCGCGAGACGCACCCGGCCCCGCCCACGCAGCTGTCCGACGTCGTCGCGCACGTCGAGCACGTGCGCGAGGTCGCCGGGATCGAGCACGTCGGCCTCGGCGGCGACTACGACGGCGCCACGGGGTTCGCCCCCGAGCTCGCGGACGTCTCGGGGTACCCGGCGCTGCTGGCGGCGCTCGCGGACCGCGGCTGGTCCGACGCCGACCTCGGTCGGCTCACCAGCGGCAACGTGCTGCGGGTGCTGCGCGACGCCGAGCGCTGA	MVSERIQALLAEHPVWDGHNDLPWEAREQAGYDWDVLDIAGPTADRTHTDIPRLRAGGVGAQFWSVYVPTTIAGADAVVATLEQIDGVHRMVERYPDQLRLATTAAEVEDAWAAGRIASLMGAEGGHSIDGSLGVLRMFHALGVRYMTLTHNDSTPWADSATDAPSEHGGLNAFGREVVLEMNRLGMLVDLSHVATGTMHAALDVTDAPVVFSHSSARAVCDVPRNVPDDVLGRLATNGGVCMVTFVPQFVTPAVAEWKEEAAEAAAAQGIRATDYLAFSGFLADWRETHPAPPTQLSDVVAHVEHVREVAGIEHVGLGGDYDGATGFAPELADVSGYPALLAALADRGWSDADLGRLTSGNVLRVLRDAER	PGPT0020950_1416	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020950-acdP-K01273	NA	NA
AK001_03128	1572	dauA	COG0659	C4-dicarboxylic acid transporter DauA	GTGTCGAACGACCTGCGTGCCTCCCTGCCCGATCCGGCCCCCGAGCCCCAGCCCGTCACCGGCGCCCCCGAGGCCACCTCCACGGGCTCCTTCCGGGCCGCCTTCAGCTCGATGACGCGGCTGCGCACCGAGGTCCTCGCCGGCCTCGTCGTCGCGCTCGCCCTCATCCCCGAGGCCATCGCCTTCTCGATCATCGCGGGCGTCGACCCGAAGATCGGCCTGTTCGCCTCGTTCACGATGGCCGTCACCATCGCCTTCGTCGGCGGCCGCCCGGCGATGATCTCCGCCGCCACCGGCGCGATCGCCCTGGTCATCGCCCCCGTCGTGCGCGACCACGGGCTCGACTACCTCATCGCCACCGTGATCCTCGGCGGGCTGATCCAGGTCGTGCTCGGCCTGGTCGGCGTCGCGCGGCTCATGCGGTTCATCCCGCGCTCGGTGATGGTCGGGTTCGTCAACGCGCTGGCGATCCTCATATTCACCTCGCAGATCCCGCACCTGTTCGGCGACGCGGTGCCCTCCGAGCAGCGGTGGACGGTCTTCGTGCTGGTGGCCGCCGGCCTGGCGATCATGGTGTTCTTCCCCCGGCTGACCAAGGTCGTCCCGGCGCCCCTGGTGGCCATCGTGCTGCTGACCGTCGTCACCGTCGTGGCCGCGATCGCCGTGCCCACCGTCGGCGACCAGGGCGACCTGCCCGACTCGCTGCCGGCCCTGTTCTTCCCGGACGTGCCCCTGACCCTCGAGACGCTGCAGATCATCGCGCCCTACGCGTTCGCCATGGCGCTGGTCGGCATCATCGAGTCGCTGCTGACGGCCAAGCTCGTCGACGACGTCACCGACACCCACTCGAACAAGACCCGCGAGACCTGGGGCCAGGGCGTGGCCAACCTGGTCACCGGGTTCTTCGGCGGCATGGGCGGCTGCGCCATGATCGGCCAGACCATGATCAACGTGAAGGTCTCCGGCGCCCGCACACGGCTGTCGACGTTCCTGGCGGGCGTCTTCCTGCTCATCCTCGTGGTCACTCTCGGCGACGTCGTCTCCATCATCCCGATGGCGGCCCTGGTCGCCGTGATGATCATGGTCTCCGTGGCCACGTTCGACTGGCACTCGATCCAGCCCTCCACCCTGCGCAACATGCCCGTCCCGGAGACGGTCGTCATGCTCGCCACGGTGGTCGTGACCGTGTGGACCCACAACCTGGCCTACGGCGTCGTCGCCGGCGTCGTGGTCGCCGCGGTGCTGTTCGCCCAGCGCGTGGCGCACCTGACGACCGTCACCCGCCTCGACGCGTCCGACGAGGACGACGAGCGCGTCTACGCGGTCGACGGCGAGCTGTTCTTCGCCTCGTCGAACGACCTGGTGTACCAGTTCGACTACGCGGGCGACCCGCGCCGGGTCGTCATCGACATGTCGAACGCCCACATCTGGGACGCCTCGACGGTCGCCGCGCTGGACGCCGTCGAGCACAAGTACGCCGCGCACGGCAAGACGGTCGAGTTCCGGGGGCTCAACGAGGACAGCCGCGAGCGCCTGGACCGGCTCGCCGGGAAGCTCGGCGCCGAGCACTGA	MSNDLRASLPDPAPEPQPVTGAPEATSTGSFRAAFSSMTRLRTEVLAGLVVALALIPEAIAFSIIAGVDPKIGLFASFTMAVTIAFVGGRPAMISAATGAIALVIAPVVRDHGLDYLIATVILGGLIQVVLGLVGVARLMRFIPRSVMVGFVNALAILIFTSQIPHLFGDAVPSEQRWTVFVLVAAGLAIMVFFPRLTKVVPAPLVAIVLLTVVTVVAAIAVPTVGDQGDLPDSLPALFFPDVPLTLETLQIIAPYAFAMALVGIIESLLTAKLVDDVTDTHSNKTRETWGQGVANLVTGFFGGMGGCAMIGQTMINVKVSGARTRLSTFLAGVFLLILVVTLGDVVSIIPMAALVAVMIMVSVATFDWHSIQPSTLRNMPVPETVVMLATVVVTVWTHNLAYGVVAGVVVAAVLFAQRVAHLTTVTRLDASDEDDERVYAVDGELFFASSNDLVYQFDYAGDPRRVVIDMSNAHIWDASTVAALDAVEHKYAAHGKTVEFRGLNEDSRERLDRLAGKLGAEH	PGPT0003020_4104	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321	NA	NA
AK001_03129	426	mta	COG0789	HTH-type transcriptional activator mta	GTGAGGGTAGAGTTCACCCTCGTGTCTCACGACCCGACCATGCACCACATCGGAGCCGTCGCCGAGCGGACCGGGCTGTCGCTGCGCACGCTGCGCCACTACGACGAGGTCGGCCTGCTGCGCCCGTCGGCGCGGTCCGAGGGCGGGTTCCGCCTGTACACCGAGTCCGACGTGGAGCGGCTGCTCCTCATCCGTCGGATGAAGCCGCTCGGCTTCTCCCTGGAGGAGATGGCCGACCTGCTGCGGGTCGCCGACGAGCTCGGCGCCGAGGGCGCAGGGCGGGACGGCGTCGGCGCGGACGACGGGCACCCCGGCGCCCGGGGCCGGCTCGCCACGTACGTGGCGGCCGCCGAGGAGCGCCGGGCCGACCTGGCCCGCAAGCTGGAGATGGCCGACGAGCTGATCGCCCTGCTGCACCGCCTCTGA	MRVEFTLVSHDPTMHHIGAVAERTGLSLRTLRHYDEVGLLRPSARSEGGFRLYTESDVERLLLIRRMKPLGFSLEEMADLLRVADELGAEGAGRDGVGADDGHPGARGRLATYVAAAEERRADLARKLEMADELIALLHRL	PGPT0004135_2076	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexPQ-OpmE,PGPT0004135-cueR-K19591	NA	NA
AK001_03130	360	hslR	COG1188	Heat shock protein 15	ATGCGGATCGACATCTGGTTGTGGGCCGTCCGGCTGTTCAAGAGCCGGTCGGTCGCGGCCTCGACGTTGCGCTCGGGCAAGGTGCGCGTCAACGGCACCGTCGCCAAGCCGGCGACGCAGGTCCAGGTCGGCGACCGCGTGACCTGGCAGGACCCGTTGCGGCAACGCGTCGTCGTGGTGCGCGAGCTGCTGCCCAAGCGCGTCGGGGCGCCGCTGGCGGTCAAGGCCTACACCGACCAGAGCCCGCCGGTGCCGACGCGTGAGGAGCGCGCCGCCGTCGGTCTGCGCGAGCGGGGTGCCGGACGGCCCACCAAGAAGGAGCGCCGCGAGATCGACAAGCTCCGGGGCCGACGGCGGTAG	MRIDIWLWAVRLFKSRSVAASTLRSGKVRVNGTVAKPATQVQVGDRVTWQDPLRQRVVVVRELLPKRVGAPLAVKAYTDQSPPVPTREERAAVGLRERGAGRPTKKERREIDKLRGRRR	PGPT0014620_2219	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762	NA	NA
AK001_03132	891	ngcG_4	COG0395	Diacetylchitobiose uptake system permease protein NgcG	ATGACCACGTCGACTCAGACACCCGCCGCGCCGACGACGGCGGTCCGACGCCGTCGCCGCGGGAGCGCGGGCAGGTTCCAGGGCGGCAACCCGGTCGTGTACGCGGTCGCGTTCGTGGTGGTCTGCGCGACCCTCGGGCCGGTCGTCTACGGCGTGCTCGGCGGGTTCCGCAGCAACGCCCAGCTCGCCGAGTCCCCGGCATCGCTGCCCGACCCGTGGGTCGTCAGCAACTACACCGGCGTCGTCACCAACCCGGACTTCTGGCAGTACACGCTCAACTCGGTCGTCGTCGCCGTCGTCACGACGGCGCTGGTCGTCGTCTTCGGCGTCATGGCGGCCTACCCCCTGGCGCGGTACGCGTTCAAGGGCCGCGAGGTGCTGTTCATGGTGTTCGTCGCGGGGCTGCTCTTCCCCGCGACCGTGGCCGTGGTGCCCCTGTTCATCCTGCTCACCCAGAACTTCGGGCTGGGCAACACCTGGTGGGGCGTCGCGCTGCCCCAGGCGGCGTTCGCCCTGCCGATGACGGTCGTCATCCTGCGCCCGTTCCTCCAGGCGCTGCCGAAGGAGCTCGAGGAGGCCGCCCAGCTCGACGGCACCAGCCGGATCGGCTTCTTCTGGCGGATCCTCCTGCCGCTGTCCGGCCCGGGCATGGTCACCGTCGGCGTGCTCGCCTTCGTCGGGTCGTGGAACGCCTACCTGCTCCCGCTGCTCCTGCTGCAGGGCGACATGAAGACGCTCCCGCTCGGCGTCGCGGACTTCTCGTCCGAGCACTCGTCCGACACGGCCGGCGTCTTCGCCTTCACCACCCTCGCCATGATCCCGGCGCTGGTGTTCTTCCTGGCGATGCAGAAGCGCATCGTCAACGGTCTGCAGGGCGCGGTGAAGGGATGA	MTTSTQTPAAPTTAVRRRRRGSAGRFQGGNPVVYAVAFVVVCATLGPVVYGVLGGFRSNAQLAESPASLPDPWVVSNYTGVVTNPDFWQYTLNSVVVAVVTTALVVVFGVMAAYPLARYAFKGREVLFMVFVAGLLFPATVAVVPLFILLTQNFGLGNTWWGVALPQAAFALPMTVVILRPFLQALPKELEEAAQLDGTSRIGFFWRILLPLSGPGMVTVGVLAFVGSWNAYLLPLLLLQGDMKTLPLGVADFSSEHSSDTAGVFAFTTLAMIPALVFFLAMQKRIVNGLQGAVKG	PGPT0016340_233	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119	NA	NA
AK001_03133	1014	lacF_11		Lactose transport system permease protein LacF	ATGGCGGACGACGCAGCCGTCCCGACGGCCACCGCGTCGCCTGCCCCCTCCTCCGGTCCGGCTGCCGGGACGACCCCCCAGGGTCGTCCGGCAGCCGGACGTCCGGCGGGGGGTCGGCGGGCGGCTGACTCGACACTTCGCAAGCGTCTGGAGATCGCGTTCTTCGTGACGCCGGCCCTGGCGATGCTCGCCGTCTTCGTGGTGTGGCCGATCCTCACCGCCGTCCAGATGTCGGCGTACCGGTGGAACGGCCGCGGGCCGATGGAGGACTTCGTCGGGATCGGCAACTACGTCTCGGTGCTCACCGACGACGTGTTCCTCGACTCCCTGCTCAACAACCTGTTCATCGTGGCCGCGTCGATCGCCATCCAGCTGCCGCTCGGCCTCGCGATCGCGCTCCTGCTCAACCGCAAGATGTGGGGCCAGGGTGCGCTGCGCACGATCATCTTCGTGCCGTACGTCCTCGCCGAGGTCGTCGCCGGCGTCATCTGGTTCCAGCTCCTGCAGCCGCAGTACGGCCTGCTCGACACGCTGATCAGCGCCGTCGGCCTCGAACCGCCGGCCCAGGGCTGGCTCGGGGACGTCGACCTGGCGCTGTGGACCGTCATGGGCATCCTGACGTGGAAGTTCATCGGCCTCGCCGTGATCCTCTTCCTCGCCGGTCTCCAGGGCGTGCCCGAGGAGCTGTACGAGGCCGCCCAGCTCGACGGTGCCTCGTGGTGGCAGGTGCAGCGCAAGATCACGATCCCGCTGCTCGGCCCGACGATCCGGACCTGGGCCTTCCTGTCCATGATCGGGTCGCTGCAGCTCTTCGACATGGTCTGGATCCTCACCAAGGGCGGTCCGGCCAACGCCACGAGCACCATGGCGATCTTCCTCGTGAACGAGGGCACCCGGAGCAACAACTTCGGGATCGCCGGCGCCGCCTCCGTGGTCCTCTTCGTGATCGCGCTCGTGATGGCGGTGCTCTACCAGCGACTCTTCCTCAGCCGAGACGCCAAGGGGGTGGCGTGA	MADDAAVPTATASPAPSSGPAAGTTPQGRPAAGRPAGGRRAADSTLRKRLEIAFFVTPALAMLAVFVVWPILTAVQMSAYRWNGRGPMEDFVGIGNYVSVLTDDVFLDSLLNNLFIVAASIAIQLPLGLAIALLLNRKMWGQGALRTIIFVPYVLAEVVAGVIWFQLLQPQYGLLDTLISAVGLEPPAQGWLGDVDLALWTVMGILTWKFIGLAVILFLAGLQGVPEELYEAAQLDGASWWQVQRKITIPLLGPTIRTWAFLSMIGSLQLFDMVWILTKGGPANATSTMAIFLVNEGTRSNNFGIAGAASVVLFVIALVMAVLYQRLFLSRDAKGVA	PGPT0016335_89	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118	NA	NA
AK001_03134	1335			hypothetical protein	ATGACGAGGACAACGCGAGGTGCATCTGCCGTCGCTCTGGGTGCGAGCGTCGCGCTGCTGGCCGGTGCCTGCGCCGGCCAGGGCACGGCCGACCAGGAACCGACCGACGACGGCGGCTCCGCCGCCACCTCCGAGGGGGGAGACGTCACCCTCGAGTGGTGGCACAACTCCAACACCGGTGAGGGCAAGGACTACTACGACCAGGTCGCGGCCGACTTCTCCGAGGCCAACCCGGGCGTCACCGTCCAGGTCGAGGCCATGCAGCACGAGGACATGGTCACCAAGCTCCAGGCAGCCATGCAGGCCGGGACCGACGTCCCGGACGTCTTCATGAGCCGTGGTGGCGGTGAGCTGCAGAACGACGTCGACGCCGGGCTGCTGCGCGACCTCAGCGACGACGCCGCCGAGACCATCGACACCATCTCGGGCTTCACCGGCCAGTACACGATCGACGACGGCGTCTACGCCCTGCCCTTCTCCATGGGCATCGTCGGGTTCTGGTACAACAAGGACCTCTTCGCCGAGGCCGGCATCGACGACGTCTCCCCGGACCCCACGTTCGAGGAGTTCTCCGGCTACGTCGAGCAGCTCCAGGCGGCGGGGATCGACCCGATCTCCGTCGGGGCCGGGGACAAGTGGCCCGCCGCGCACTACTGGTACTACGGCGTCGTCCGCGAGTGCGAGTTCGACACCGTCGAGGCCGCCATCGAGAGCGGCGACTACTCCGACGAGTGCTTCCTCGCCGCCGGCGAGGACGTCCAGGCGATCCTCGACCAGGAGCCCTTCAACCCGGGCTTCCTGGCCACCGGGGCGCAGGACGGCCCGACGTCCGCGTCCGGCCTGCTCGCCGCCGAGAAGGTGGGCATGGAGCTCGCCGGTCACTGGGAGCCCGGTGTCGTCGGCGGCCTGCGCGAGGACGAGCAGGTGCCCGACTGGATGGGCTGGTTCGCCTTCCCGACCTTCGAGGGCCAGGCCGGCGACCCGGCCGACCAGATGGGCGGCGGCGACGCCTGGGCCGTGTCCGCCGACGCTCCGGACGAGGCGGTCGACTTCGCCGCGTACCTGCTCTCGGACGAGGTCCAGCAGGGCTTCGCCGAGCTCGACATGGGCCTGCCGACGAACCCGGCCGCGACGGACTCCCTGTCCAACGAGACGCTGGCGCAGCTCATCCCCGTCCGCGACGGCGGCGGCGAGACCCAGCTCTACCTGGACACCCGCCTCGGCCAGTCCGTGGGTGGCGCGATGAACGACGAGATCGCCCTGCTGTTCGCCGGCGAGGCCGGCCCGCAGGACGTCGTCGACGCCATCGAAGAAGCCGCGGCGTCGCAGGGGTGA	MTRTTRGASAVALGASVALLAGACAGQGTADQEPTDDGGSAATSEGGDVTLEWWHNSNTGEGKDYYDQVAADFSEANPGVTVQVEAMQHEDMVTKLQAAMQAGTDVPDVFMSRGGGELQNDVDAGLLRDLSDDAAETIDTISGFTGQYTIDDGVYALPFSMGIVGFWYNKDLFAEAGIDDVSPDPTFEEFSGYVEQLQAAGIDPISVGAGDKWPAAHYWYYGVVRECEFDTVEAAIESGDYSDECFLAAGEDVQAILDQEPFNPGFLATGAQDGPTSASGLLAAEKVGMELAGHWEPGVVGGLREDEQVPDWMGWFAFPTFEGQAGDPADQMGGGDAWAVSADAPDEAVDFAAYLLSDEVQQGFAELDMGLPTNPAATDSLSNETLAQLIPVRDGGGETQLYLDTRLGQSVGGAMNDEIALLFAGEAGPQDVVDAIEEAAASQG	PGPT0016330_2023	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117	NA	NA
AK001_03135	1005	cytR	COG1609	HTH-type transcriptional repressor CytR	GTGACGATCTCCGACGTCGCGCGCGCCGCCGGCGTCTCCGTGGCGACCGTGTCCAAGGTGGTGAACAACCGCTACGGGGTCTCCCCCGCCACCGCCGAGCGGGTCCTCGGCGTCGTGGCCGACCTGGGGTACGAGTCCTCCCTGGTCGCCCGCAGCCTGCGGCAGCAGTCGACGAACGTCGTCGGGGTGCTGGTCGCCGGCTTCGAGCCGTACTCCACCGAGCTGCTCAAGGGGATCTCCAGCGCCGTGGAGGGCACCGGCTACGAGCTCCTCGCCTACTCCGGCGGGTCCGACGGCGGGTCCATGGTGGGCTGGGAGCGCCGGTCGCTGTCCCGGCTGGCCGGGACGCTCATCGACGCCGCGATCGTGGTCACCCCGACCCTGGTGCTGACCGAGGCGCAGGGCATCCCCGTCGTCGCCATCGACCCGCACACGGGCCCGGAGGGCACCCCGACCGTCGACAGCGACAACACCTCCGGTGCGCGGGAGGCCGTCGAGCACCTGATCGGGCTCGGCCACCGTCGCATCGCCCACCTCGGGGGCCGCACGGACCTGGAGTCCGCCCGGCTGCGCGAGCTCGGCTACCGGCAGGCCCTCGCGGCGGCCGGGATCGAGGTCGACCCGGACTGGGTCCGGGTGGGCGGCTACTGGCCGGAGACCGCCGACGCCCCGGCCCGCGAGCTGCTGGACCCGCCGTCCGGCGAGCGCCCCACCGCGGTCTTCGCGGCCAACGACCAGTCCGCGATCCACGTGCTGGAGGTGGCGGCCGAGAAGGGTCTGCGCGTCCCGGAGGACCTGTCCGTGGTCGGGTTCGACGACATCCCCGAGTCCGCCTCGTGCACCCCGCCGCTGACGACCGTCGCCCAGCCGCTGCACCGCATGGGCGCCGAGGCGCTGCGCATGGTGCTCGACCTGCTGCAGGGGACGCCGCGCGAGCAGCACCTGCGGCTGCCGACGTCGCTCGTCGTGCGGTCCAGCACGGGCCCCGCCCCCTCGCCGAGGTAG	MTISDVARAAGVSVATVSKVVNNRYGVSPATAERVLGVVADLGYESSLVARSLRQQSTNVVGVLVAGFEPYSTELLKGISSAVEGTGYELLAYSGGSDGGSMVGWERRSLSRLAGTLIDAAIVVTPTLVLTEAQGIPVVAIDPHTGPEGTPTVDSDNTSGAREAVEHLIGLGHRRIAHLGGRTDLESARLRELGYRQALAAAGIEVDPDWVRVGGYWPETADAPARELLDPPSGERPTAVFAANDQSAIHVLEVAAEKGLRVPEDLSVVGFDDIPESASCTPPLTTVAQPLHRMGAEALRMVLDLLQGTPREQHLRLPTSLVVRSSTGPAPSPR	PGPT0017992_4101	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_03136	642	copR		Transcriptional activator protein CopR	GTGGCCGAGGACGAGGACCGCATCGCGCAGTTCGTGCGCAAGGGGCTCCGGGCCCACGGGTTCGCCCCGACGGTGGTGTCGGACGGGCTGTCGGCGGTGCAGCACGCCCTCGGCGGCGAGTACGACCTCATGGTGCTCGACATCGGGCTGCCGGAGATCGACGGGTTCGAGGTGCTGTCCCGGCTGCGGGGCGCGGGGTCGTCGATGCCGGTCATCATCCTCACCGCCCGGGACTCCATCACGGACCGGGTCACCGGGCTGGAGGGGGGTGCCGACGACTACATGGCCAAGCCGTTCGGCTTCGAGGAGCTGCTGGCGCGGATCCGGCTGCGGCTGCGGGACCCGGGGCGTGCCGAGCGGGAGGTGCTGGAGCACGGCGGGGTCGGCCTCGATCTCGGCGCGCGGCGCATCACGGTCGACGGGCGCGCCGTCGACCTGTCCGCGCGGGAATTCGCGCTGGCCGAGGTGTTCCTGCGCAACCCGGGCCGGGTGCTCTCGCGCGAGCAGCTGCTGTCCCGGGTGTGGGGCTACGACTTCGACCCGGGCTCGAACGTCGTCGACGTGTACGTGCGCTACCTGCGCCGCAAGATCGGGACGGAGCGCATCGAGACGGTGCGGGGGATGGGCTACCGGCTCGTCTGA	MAEDEDRIAQFVRKGLRAHGFAPTVVSDGLSAVQHALGGEYDLMVLDIGLPEIDGFEVLSRLRGAGSSMPVIILTARDSITDRVTGLEGGADDYMAKPFGFEELLARIRLRLRDPGRAEREVLEHGGVGLDLGARRITVDGRAVDLSAREFALAEVFLRNPGRVLSREQLLSRVWGYDFDPGSNVVDVYVRYLRRKIGTERIETVRGMGYRLV	PGPT0003915_1693	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666	NA	NA
AK001_03137	1485	sasA_8		Adaptive-response sensory-kinase SasA	GTGAGCTCCCGCCGTCGCTGGTGGCGGCCGTCGGCGTTGTCGGTGCGCAGCAAGGTCGTGCTGTCGGTGCTGGTGATGTCCGCCCTGGGGATGGCGGTGGCGTGGGTGGTGACGGACGCGATCCAGACGCGCGCCGTGCTCGACCGGATCGACAGCGAGCTCGAGCAGGAGGTGCAGGAGTTCCGGGTGCTCGCCGAGCGGGGCATCGACCCCGACACCGGCGAGGCTTTCACCAGCGTCGAACAGCTGTTGCGGATCGCGATCGAGCGCAACGTGCCCGGCGCCGACGAGATGCTCGTGACGTTCGTCGAGGGCGAGGCGGAGCTCTACTCGCCGTCGTGGGCGGGTGCCGTCCTCGAGGACGCGGAGCTGCAGGAGCTCGTGGACCGCGTCGGGCCGCGGACCGAACGGGTGCTCGAGGACTGGATCGAGACCGATGTCGGGCAGATGCACGTCATCGTCGTGCCGGTGCACGTCGAGGGCAGCGCCGAGTACGGCGCGTACGTGGTCGGGGTGGGCACGGACCGTGCGCTGGCCGCGCAGCGCGAGCTGCGGCAGACCTTCGTGCTCGTCTCGCTCGGCACCCTGGTGCTGGTGGGCGCCGTCGCCTGGTGGGTCGTCGGGCGGCTGCTGCATCCGCTCGAGCTGCTGTCGGCGACGGCGCAGCAGGTCGGAGGGGACGACCTGACCCGGCGGGCACCGGTCCGCGGCGAGGACGACGTCGCCACGCTCGGCCGCGCGTTCAACACGATGCTGGACCGGCTCGCCGCCGCCTTCGACGCCCAGCGGCAGTTCCTGGACGACGCCGGTCACGAGCTGCGCACGCCCCTGACGGTGCTGCGCGGCCACCTGGAGCTGCTGGAGCCCGACGACCCGGCCGACGTAGCCGAGACGCGCGCCCTGCTGCTGGACGAGACACGTCGGATGAGCCGGATCGTCGAGGACCTGGTGCTGCTGGCCAAGTCCGAGCGACCGGACTTCGTCGTGCCCGGCGAGGTGGACCTGGGACCGCTGACCGACGACGTGCTGGACAAGGCCCGGGCGCTGGGCGACCGGACCTGGTTGGTGGACGCCCGGGCGGAGGGGCAGGTGCCCGGCGACGAGCAGCGACTCACCCAGGCCGTGCTCCAGCTCGCCGACAACGCCGTGAAGTTCTCCCGGCCCGGGACCCGGATCGCGGTCGGCAGCGCCGTCGTCGGCTCCACCGCGCGGCTGTGGGTCCGCGACGAGGGGCCGGGGGTGGCGCCGGCCGACCGGGAACGCATCTTCGAGCGGTTCGTGCGGGTCGGCGAGCCGGACGTGCGAGGCTCGGGGCTGGGCCTGGCGATCGTGGCGGCCGTCGCCACCGGGCACGGCGGGACCGTGGCCGCCGGGCCCGGGGTCGCGGCGCACGACGGCGCGGCCGAGCACGGCCTGCAGGTCACCCTGGCCTGGCCGGTGGACGGCGCGACGGACGGCGGGACGGACGAGAGGGCGGACGGGTGA	MSSRRRWWRPSALSVRSKVVLSVLVMSALGMAVAWVVTDAIQTRAVLDRIDSELEQEVQEFRVLAERGIDPDTGEAFTSVEQLLRIAIERNVPGADEMLVTFVEGEAELYSPSWAGAVLEDAELQELVDRVGPRTERVLEDWIETDVGQMHVIVVPVHVEGSAEYGAYVVGVGTDRALAAQRELRQTFVLVSLGTLVLVGAVAWWVVGRLLHPLELLSATAQQVGGDDLTRRAPVRGEDDVATLGRAFNTMLDRLAAAFDAQRQFLDDAGHELRTPLTVLRGHLELLEPDDPADVAETRALLLDETRRMSRIVEDLVLLAKSERPDFVVPGEVDLGPLTDDVLDKARALGDRTWLVDARAEGQVPGDEQRLTQAVLQLADNAVKFSRPGTRIAVGSAVVGSTARLWVRDEGPGVAPADRERIFERFVRVGEPDVRGSGLGLAIVAAVATGHGGTVAAGPGVAAHDGAAEHGLQVTLAWPVDGATDGGTDERADG	PGPT0004100_923	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484	NA	NA
AK001_03138	1212			hypothetical protein	ATGGCACAGAACGACCTGGACCTGCTGACGGGCGAGGAGGCGACCGAGCTGCTCGCGACCGCGGTCTCCACCGCGGGCGGAGAGCTCGTCGACTGGTCGGTCCGGCAGGTGGACCACCGCCCGGGCCGTTCGACGACGGTCGCCTACCGCGCGCGGGTGCGCTGGGCGGACGGCACCGACCCGGGACGGGTGCGCACGGAGACGCTCGGGGCCTCCCTCGGGCGCCCGGGGGACCAGCAGGTCCCCGGCGTGCTCACGCTGGACGACGGCGAGCACGCGGTCGCGGTGTGGCGGTTCCCGGGCGACCCGGCGCTGCCGGCGCTGGCGACCGCCTACGACGCCGAGGCGGTGGCGACCCTGCTGGGGGACCTGGGCGTCCCCGAGGTGGCGCGGGGCCCGGTGACGCTGAAGGTGCGGGCGTACCGTCCGACCCGCCGGGCGGTGATCGAGGCCAGCACACCGGGTGCGCGCGTCTTCCTCAAGGTGGTGCGTCCCGAGAAGGTCGACGACCTGCACGCCCGGCACGCGCTCCTGGCCGGCGCGGGACTGCCCGTGCCCAAGCCGTTGGGTCGCAACGCCGACGGCCTGCTGGTCATCGCCCCGCTGACGGGTGAGTCGATGCGGCACGCCGTGCGCGACGGGGGCCCGGTGCCGACCGCCGCCGAGGTGGTCGCGATGCTCGACCGGCTGCCGGACAGCGTCGCCGAGCTGCCGCTGCGCACGTCCTGGAGCGAGAACGCGGGGCACTACGCCTCGGTCATCGCCGCCGCGATGCCCGCGGAGGCGGAGCGCGCCCTGCACCTGGCGGAGACGATCGTGACCCGGATCGCCGACCAGCGGGCCGAGGACCCGACGCACGGTGACCTGTACGAGGCGCAGATCATGCTGGCCGGCGGTCGCATCACGGGGTTGCTGGACGTCGACTCGGCCGGTCCGGGACGGCGGGCCGACGATCTCGCGTGCCTGGTCGCTCACGTCGAGACGCTGTCGCTGCTGCGGGGATGGGACAGCGAGCGCCTGCACGCCCTGGCGATCGAGTACGCGGCCGGGTTCGCCGGCGTCGTGGACCCGGTCGAGCTGTCGGCGCGGGTCGGCGGTGTCCTGCTGTCCCTGGCCACGGGTCCGCACCGGGTCCAGGAGGCCGACTGGCCGCACCAGACCTCTCGCCGTCTGGACGCCGTCGAACGCTGGCTGGGCGGGGTGCCGGGGTGA	MAQNDLDLLTGEEATELLATAVSTAGGELVDWSVRQVDHRPGRSTTVAYRARVRWADGTDPGRVRTETLGASLGRPGDQQVPGVLTLDDGEHAVAVWRFPGDPALPALATAYDAEAVATLLGDLGVPEVARGPVTLKVRAYRPTRRAVIEASTPGARVFLKVVRPEKVDDLHARHALLAGAGLPVPKPLGRNADGLLVIAPLTGESMRHAVRDGGPVPTAAEVVAMLDRLPDSVAELPLRTSWSENAGHYASVIAAAMPAEAERALHLAETIVTRIADQRAEDPTHGDLYEAQIMLAGGRITGLLDVDSAGPGRRADDLACLVAHVETLSLLRGWDSERLHALAIEYAAGFAGVVDPVELSARVGGVLLSLATGPHRVQEADWPHQTSRRLDAVERWLGGVPG				NA	NA	NA	NA	NA
AK001_03139	417			hypothetical protein	ATGAAGCCGTCCGTGAAGAAGCGTTGGATCGTCGTCGGGACCGCCGCCGCCCTGGGCGTCGGCGCCGTCAGTGCTGCTGCCGCCGGCCTGGACGAGCAGGTCGACACCGCCGACAGCGTCGCCGCGGTCACGCTGGCCGACGATCGCGGCGGCGACGACCCGGCGGACGGCTCCTCCGACCCGTCGGGGCCGGCGTCGACGGACGTCACGGACCCCTCGCCGGCGTCCGCCGACTCGGCGACCGCGCAGAGTGCCTCGCCCGCCCCGCAGCAGGCGCAGAGCGCCCAGAGCGCTCAGTCCTCCCAGAGCGCCGAGAGCGCCGAGTCCGCTCAGAGCGCCGAGTCCGCGCAGTCCGCGCAGTCCGCGCAGTCCGCGCAGTCCGCGCAGTCCGCGCAGTCCGCGGACTCCGGCCGCTGA	MKPSVKKRWIVVGTAAALGVGAVSAAAAGLDEQVDTADSVAAVTLADDRGGDDPADGSSDPSGPASTDVTDPSPASADSATAQSASPAPQQAQSAQSAQSSQSAESAESAQSAESAQSAQSAQSAQSAQSAQSADSGR				NA	NA	NA	NA	NA
AK001_03140	633			hypothetical protein	ATGAATCCGACCGTGACGAAGCGATGGGCCGTGGGAACCGCCGCCGTGCTGGGAGTCGGCGCCGTGGGTGCCGCAGGGACCGGACTGTTCGGCACGTTGCCGCTCGGTGAGAGCGCCGCAGCGGTGACGATCTCGGCGGCCGACAGGGCCGCGGCCCTCGGCGACGACGGTGACGGCGGGACCAGCAGTGCCGGGGCGCCGCCGTCGCCCGCTGCCACGGACGTGGCCGGATCGGTGACGAGCACGACGTCGGCGCGGTCCGCTCAGTCGGCGCGGTCCGCTCAGTCAGCAGGGGCCGCGACCCAGCGCGCCGGGACGGGGTCGGCTCAGAGCGCCCGCTCCGGGCCCGACGCCCAGAGCGCCCAGAGCGCCCGGTCGGCGCGCAGCGCCGACTCCCCGGCCACCGCGCCGAAGCAGTCCGCGCAGTCGGCACCGTCGGCGGAGTCCGCGGCGCCGGCGCCAGAGGAGCGCTCCGCGCAGTCCGCGCAGTCCGCGCAGGCGGTGCCGTCGGCCGCGTCGGCGGAGTCCCCGGTGTCGGCGGCGGCGTCGCCGGTCCAGTCCGCGCAGAGCGCGGAATCGGCCGAGAGTGCGGAGTCCGCCGACAGCGGCGAGTCGGCCGACTCCGGCGACTGA	MNPTVTKRWAVGTAAVLGVGAVGAAGTGLFGTLPLGESAAAVTISAADRAAALGDDGDGGTSSAGAPPSPAATDVAGSVTSTTSARSAQSARSAQSAGAATQRAGTGSAQSARSGPDAQSAQSARSARSADSPATAPKQSAQSAPSAESAAPAPEERSAQSAQSAQAVPSAASAESPVSAAASPVQSAQSAESAESAESADSGESADSGD				NA	NA	NA	NA	NA
AK001_03141	486			hypothetical protein	ATGGCCATGTTCACCGTCTGGAAGTTCGACGATCCGGAGGGCGCCGGCAAGGCCGCCCGCATCGTCAAGGATGCCGCCTCGGAGGGCCTGATCACGCTGGTCGACCACGCGGTCGTCGAGTGGCCCGAGGGCGAGAGCCACCCGAAGACCCACGGGGTGAACGACGACGCCGCGAGGTCCGGGGGCTGGGGCGCGCTGTGGGGCCTCCTGATCGGCGCCCTGTTCTTCATCCCCGTCGTCGGTGCCGTCGCGGGGGCCGCGATCGGCGGGCTCAGCCGCGCGCTGTCGAGCACCGGCATCAAGAAGGACGACCTCGAGCGGATCCGGGCCGAGATCGTGCCCGGGACCTCCGGCCTGTTCCTCATCTCCGAGCAGGGCGACCCGGACCGTTTCCGCGAGCGCCTGCACGGTCTCAAGGCGACCCTGATCAGCTCCAACATGTCGGACGCCGAGACCCGCGAGCTCAAGGAGATGTTCGGTTCCTGA	MAMFTVWKFDDPEGAGKAARIVKDAASEGLITLVDHAVVEWPEGESHPKTHGVNDDAARSGGWGALWGLLIGALFFIPVVGAVAGAAIGGLSRALSSTGIKKDDLERIRAEIVPGTSGLFLISEQGDPDRFRERLHGLKATLISSNMSDAETRELKEMFGS				NA	NA	NA	NA	NA
AK001_03142	1710	pgi	COG0166	Glucose-6-phosphate isomerase	ATGACGACCTCCCCTGTCGACGCCACCACCACGCCCGCCTGGGGCGAGCTGCTGCGCCACCACCAGGAGTTCCGGGGTGACCTGCGCGGATGGTTCGCCACCGACCCGGGGCGCGCCGAGCGGTTCAGCCACACGACGGGCGACCTGATGGTCGACCTGTCCAAGAACCTGGCGACCGACGAGACGTTCGAGCTGCTGGTCCGGCTCGCGCGGGAGGTGAACCTTCCTGATCGCATCGAGGCGATGTTCAGCGGCGAGCACATCAACGTCACCGAGGACCGCGCCGTGCTGCACACCGCCCTGCGCCGCGCGCCCGGCACCGAGCCGCCACTCGTCGTGGACGGTCAGGAGATCGACGTCGACGTCGCCCGCGAGCTCGAGAAGGTCGCCGCGTTCGCCGAGCAGGTGCGCTCGGGCGAGTGGAGCGGCGTCACCGGCAAGCCGGTGCGCACGGTCGTCAACATCGGCATCGGCGGCTCCGACCTCGGGCCGGTCATGGTCTACGAGGCACTGAAGCCGTACGGACGCGAGGACCTCGAGGTCCGGTTCGTGTCCAACATCGACCCGACGGACCTCGCCCAGAAGACCGCCGACCTGGACCCCGAGACGACGCTGTTCATCGTCGCCTCCAAGACCTTCGGCACCCTGGAGACCCTGACCAACGCGCGCATGGCCCGCGCCTGGTTGTGGGACCGGCTGCACGCCGTCGGCGCCATCGAGGACGACCACGACGCCCAGCAGGCCGCCGTGCGCGCCCACTTCGTGGCCGTCTCCACCGCGCTGGACAAGGTCGAGGCGTTCGGCATCGACCCGGCGAACGCGTTCGGGTTCTGGGACTGGGTCGGCGGCCGCTACTCCGTCGACTCCGCGATCGGCACGTCGCTGGCCGTCGCGTTCGGCCCGGACGTCTTCCGCGAGCTGCTCGCGGGCTTCCGCGCCGTCGACGAGCACTTCCGCAGCACGCCGCTGGAGCAGAACGTGCCCGCGCTGATGGGTCTGCTCAACGTCTGGTACACGAACTTCCTCGGCGCGCACACCCACGCGGTGCTCCCCTACGCCCAGCAGCTGCACCGGTTCCCCGCCTACCTGCAGCAGCTCACGATGGAGTCCAACGGCAAGTCGGTGCGCTGGGACGGCTCGGACGTGACGACGCAGACGGGCGAGGTCTTCTGGGGCGAGCCGGGCACCAACGGCCAGCACGCCTTCTATCAGCTCATCCACCAGGGCACCCGGACGATCCCCGCGGACTTCATCGCCTTCGCCACGCCCGCCTACCCCCTGACCGACGACGCCGGCGACGGCAAGGCCGTGGCCGCCGGCGCCGACGTGCACGAGCTGTTCCTCGCGAACTTCTTCGCGCAGACCAAGGCGCTCGCCTTCGGCAAGACCGCCGACGAGGTCCGGGCCGAGGGCACCGCCGAGGAGCTGGTCAGCGCCCGCACCTTCTCCGGCAACCGGCCCACGACGTCGATCATGGCGCCCGCGCTCACGCCGTCCGTGCTGGGGCAGCTCGTCGCGCTGTACGAGCACATCACGTTCGTCGAGGGCGTCGTGTGGGGCATCGACTCCTTCGACCAGTGGGGCGTCGAGCTCGGCAAGAAGCTCGCGCTGGAGGTCGCCCCCGCCGTGTCCGGGGACGACGCCGCGCTGGCTGACCAGGACGCCTCGACGCGCCGCCTCGTGGAGTACTACCGCGCCCACCGCGCCTGA	MTTSPVDATTTPAWGELLRHHQEFRGDLRGWFATDPGRAERFSHTTGDLMVDLSKNLATDETFELLVRLAREVNLPDRIEAMFSGEHINVTEDRAVLHTALRRAPGTEPPLVVDGQEIDVDVARELEKVAAFAEQVRSGEWSGVTGKPVRTVVNIGIGGSDLGPVMVYEALKPYGREDLEVRFVSNIDPTDLAQKTADLDPETTLFIVASKTFGTLETLTNARMARAWLWDRLHAVGAIEDDHDAQQAAVRAHFVAVSTALDKVEAFGIDPANAFGFWDWVGGRYSVDSAIGTSLAVAFGPDVFRELLAGFRAVDEHFRSTPLEQNVPALMGLLNVWYTNFLGAHTHAVLPYAQQLHRFPAYLQQLTMESNGKSVRWDGSDVTTQTGEVFWGEPGTNGQHAFYQLIHQGTRTIPADFIAFATPAYPLTDDAGDGKAVAAGADVHELFLANFFAQTKALAFGKTADEVRAEGTAEELVSARTFSGNRPTTSIMAPALTPSVLGQLVALYEHITFVEGVVWGIDSFDQWGVELGKKLALEVAPAVSGDDAALADQDASTRRLVEYYRAHRA	PGPT0017735_303	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810	NA	NA
AK001_03143	1116			hypothetical protein	GTGTCCGTGCCGCTCGACCCCCGGGCGATCCTCGCGGGACGTCCCACCGCCCGCCCCTCGGTCGGCGTGGTGGTGACCGTCGCCGTGTCGTCGGTGTGCCTGCTCGTGGCGCTGGCGCTCCTGCTGCGCGGCGGCGCGACCGGCGTGGCGACCGCCGTCGTGCTGGCGCTCGTCCCCCTGCCGCTGCTGCTGGCCGGCATCCTCGCGCTGGACCGCCTCGAGCCCGAGCCGCCCGACGCCCTCGTCGCCGCGTTCGGCTGGGGCGCGGGCGTCGCCGTCCTGCTCGCGACCGTCGTCAACACCGCCGGCCTCGACCTGGTGTGGCGGCCGATGCTCGGCGCCGAGCTCGGGCTGTACGCCACGGCGTCGCTCACCGCGCCCGTGGTCGAGGAACTGGCCAAGGGCGCGGTGCTCGTCGGGCTGCTGTGGTTCCGCCGCCACGAGCTGAACGGCCCCACCGACGGGATCATCTACGGGTCCATGGTCGCGCTCGGGTTCGCCACCGTGGAGAACATCAGCTACTACGCCTTCGCCCCGGAGGGCGCCCTGGCGTGGACGTTCGTCCTGCGCGGCGTCGTCTCCCCGCTCCTGCACCCCCTGTGCACGGCACTGATCGGCGTGGGCGTCGCGACGGCGGCGCTGCGTCCGCGGGGCCGACGCGTACTGCCGGTCGTGGCCGGGTTCGCGGGGGCCGTCGCGCTGCACGCCGTGTGGAACGCCTCGACCGCGGCCGGCCTCGTCGGCGTCGGGCTGGCCTATCTGCTCGGCGTCGGGGTGCTCGTGGGACTCGGTGTGGTGCTGCACCGCGACCGGCGCCGCATCGTCGGCCTCGTGCAGCAGCACCTGCCGCAGTACGCCGCGCTCGGCGTCGTCGCCCCCGGTGACCTCCGCATGCTGTCGTCGTTGCGGACCCGGCGTCTCGCGCGCGAACAGGTGCGCAGCACCCGAGGCCACGGCCCGGCCCGCGCGCTGGCGGACTACCAGCAGGCCGCGACCGAGCTGGCGATGCTGCACCGCCGGTACGGCCTGGGCCTCGTGCCCGACGACGAGTTCGTGGCCCGGCGCGACCCCTTGCTGCTGCTCATGGGGCACGCGCGCGCCGTCTTCGTGCGCTGA	MSVPLDPRAILAGRPTARPSVGVVVTVAVSSVCLLVALALLLRGGATGVATAVVLALVPLPLLLAGILALDRLEPEPPDALVAAFGWGAGVAVLLATVVNTAGLDLVWRPMLGAELGLYATASLTAPVVEELAKGAVLVGLLWFRRHELNGPTDGIIYGSMVALGFATVENISYYAFAPEGALAWTFVLRGVVSPLLHPLCTALIGVGVATAALRPRGRRVLPVVAGFAGAVALHAVWNASTAAGLVGVGLAYLLGVGVLVGLGVVLHRDRRRIVGLVQQHLPQYAALGVVAPGDLRMLSSLRTRRLAREQVRSTRGHGPARALADYQQAATELAMLHRRYGLGLVPDDEFVARRDPLLLLMGHARAVFVR				NA	NA	NA	NA	NA
AK001_03144	747	cysA	COG1118	Sulfate/thiosulfate import ATP-binding protein CysA	ATGGCCGGGGCCGAGGGCCTGACCGTGCGCGACGCCGTCGTGCGCTACGAGGGCACGCGCCGCGACGCGGGCACGACGGCGGTCGACCACGTCTCCCTCGACGTCTCCGTGGGGGAGATCGTCGCGCTGCTCGGCCCCAGCGGCTGCGGCAAGTCGTCCCTGCTGCGCGCGGTGGCAGGGCTCGAGCCGCTGGCGGCCGGCACCGTGACGTTCGGCGGGCAGGACCTGGTCCGGGTGCCGGTGCACCGGCGCGGGTTCGGGCTGCTGTTCCAGGACGGCCAGCTGTTCCCGCACCGGGACGTCGGGCGCAACGTCGCCTACGGCCTGGAGATGCAGGGCGTGCCGGCCGCCGAGCAGCGGGCGCGGGTGGCCGAGCTGCTCGAGGACGTCGGGCTCGCCGGCTACGGGCGCCGCGCCGTGGCGACGCTGTCCGGCGGGGAGAAGCAGCGGGTGGCGCTCGTCCGGGCGCTGGCCCCGCGGCCGCGGCTGCTGCTGCTGGACGAGCCGCTGTCCGCCCTGGACCGGCAGCTGCGCGAGAAGCTCGCGATCGACGTGCGCGACACCTTGCGGTCCACGGGCACGACGGCGGTGTTCGTCACGCACGACCACACTGAGGCGTTCACCGTGGCCGACCGCGTCGCCGTCATGGACGCCGGCCGGCTGCTGCAGGTCGACACCCCGGACACCCTGCGGGACCGTCCGGCGACGGACCGGGTGGCGGAGTTCCTGGGGCTGGCCGGCGCCTGA	MAGAEGLTVRDAVVRYEGTRRDAGTTAVDHVSLDVSVGEIVALLGPSGCGKSSLLRAVAGLEPLAAGTVTFGGQDLVRVPVHRRGFGLLFQDGQLFPHRDVGRNVAYGLEMQGVPAAEQRARVAELLEDVGLAGYGRRAVATLSGGEKQRVALVRALAPRPRLLLLDEPLSALDRQLREKLAIDVRDTLRSTGTTAVFVTHDHTEAFTVADRVAVMDAGRLLQVDTPDTLRDRPATDRVAEFLGLAGA	PGPT0009110_404	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009110-thiQ-K02062	NA	NA
AK001_03145	1737			hypothetical protein	GTGACGTCCCCCGCCAGCGGCGGGGCGTCCGTGCGGGCGCCCCGCCGTCGACCGGCCCCGGGGACCTGGCTGTGGTGGGCCCTCGCCGCAGGGCTGCCCCTGCTGTTCCTCGGGGTCTTCTTCGCGTGGCCTGTCGCGGCCCTGGTCGTCCAGGGCTTCTTCGCCGACGACGGCGGCACGCGGGTGCTCGACCTGTCCGGATTCGGGGAGGTTCTGTCCCAGCCGCGCACGTGGCGCGTGGTGGGCCAGACGCTGGCGCAGGCGACCGTCGGCACCGCCCTGGCGGTCCTGCTCGGGCTGCCCGGCGCCTACGTGCTGTACCGGTGCCGGTTCCCCGGCCGGACGCTGGCCCGCGGGCTGGTGACCGTGCCGTTCGTGCTGCCGACCGTCGTCGTCGGCGTGGCCTTCCGGGCGCTGTTCGCCCCCGGGGGCACGTTCGGCTGGCTCGGCGTCGAGGAGTCGTTCGCCGGGGTCGTGATCGCCCTGGTGTTCTTCAACTACGCCGTGGTGGTGCGCACGGTCGGCGGGCTCTGGGAACGGCTCGATCCGCGTGCCGAGCAGGCGGCCCGCTCCCTCGGCGCCAGCCCCTGGCGGGCGTTCCGCACGGTGACGCTGCCCGCCCTCGGGCCCGCGATCGCGTCCGCGGCCGCCGTGGTGTTCCTGTTCTGCGCGACGGCTTTCGGCGTCGTCCTCGTCCTTGGCGGGATGCGCTACGGCACGATCGAGACCGAGATCTGGATCCGCACCACCCAGTTCCTCGACCTGCGCGCGGCCGCGGTGCTCAGCATCCTGCAGCTCGTCGTCGTCACCGGGGCGCTGCTGGTCAGTGCCCGGCTGCGCGCCCGGCGCGAACGCGCCCTGCACCTGAGCAGCGACCGCTCCGCCGCTCACCGGTTCTCCTGGCGCCGGGCCTCCGACGCCGTGCCGGCCCTGGCGACGCTCGTCGTGGTCGGCCTGCTGGTCGTGACGCCGCTGGCGGGTCTGGTGGCCCGTTCGCTGCGCGCCCCGGACGGTAGCTGGGGGCTGGACAACTACGTCGCGCTGGGGACGACCGGCGGCCGCAACGCGCTGTCGGTGACGGTGTGGGAGGCGACGGCGAACTCGCTGCGCACGGCCGCCGTCGCGGCCGTCGTCGCCGTCGTCGTCGGCGGGCTGGTCGCGCTCGTCGTCTCGCGCCGGCCCCGATCGCGCGGGCTGCGCCGCGCCGTCGGGACGCTCGACGCCGTGTTCATGCTGCCGCTCGGCGTCTCGGCCGTGACGGTCGGCTTCGGGTTCCTCATCACCCTGGACCGCCCGCTCGGGTTCGACGTCGACCTGCGCACCTCCGGGCTGCTGGTGCCGATCGCCCAGGCCGTCGTGGCGATCCCGCTGGTGGTGCGCACCGTCCTGCCCGTGCTGCGAGCCATCGACCCCCGGCTGCGGGAGGTCGCCGCCACGCTGGGGGCAGCGCCCGGTCGGGTGCTGCGCACCGTCGACGGGCCTCTGACGGCCCGTTCGCTCGGGCTGGCCATCGGGTTCGCGTTCGCTGTGTCGCTGGGCGAGTTCGGCGCGACGTCGTTCCTCGCCCGCCCGGACACCGCGACGCTGCCCGTGGTCATCTACCGGCTCATCGGGCAGCCGGGCGCGGTGAACTACGGCATGGCGCTCGCGGCGTCGGTCGTGCTCGCGGTGCTCACCGCGACGGTCATGATGGTGGCGGAGCGCCTGCGCGGTGACGCGGGCGGAGGGGAGTTCTGA	MTSPASGGASVRAPRRRPAPGTWLWWALAAGLPLLFLGVFFAWPVAALVVQGFFADDGGTRVLDLSGFGEVLSQPRTWRVVGQTLAQATVGTALAVLLGLPGAYVLYRCRFPGRTLARGLVTVPFVLPTVVVGVAFRALFAPGGTFGWLGVEESFAGVVIALVFFNYAVVVRTVGGLWERLDPRAEQAARSLGASPWRAFRTVTLPALGPAIASAAAVVFLFCATAFGVVLVLGGMRYGTIETEIWIRTTQFLDLRAAAVLSILQLVVVTGALLVSARLRARRERALHLSSDRSAAHRFSWRRASDAVPALATLVVVGLLVVTPLAGLVARSLRAPDGSWGLDNYVALGTTGGRNALSVTVWEATANSLRTAAVAAVVAVVVGGLVALVVSRRPRSRGLRRAVGTLDAVFMLPLGVSAVTVGFGFLITLDRPLGFDVDLRTSGLLVPIAQAVVAIPLVVRTVLPVLRAIDPRLREVAATLGAAPGRVLRTVDGPLTARSLGLAIGFAFAVSLGEFGATSFLARPDTATLPVVIYRLIGQPGAVNYGMALAASVVLAVLTATVMMVAERLRGDAGGGEF	PGPT0009105_90	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009105-thiP-K02063	NA	NA
AK001_03146	1104	thiB	COG4143	Thiamine-binding periplasmic protein	ATGAATCGTCGTACCCGCCGCACGCTGGCGACCACCGCCGTCGTCGCCCTGCTGCCCGCGCTGGCGGCCTGCACGGGCGAGGACACGCCGGGCGAGGCGCAGAGCTCGCCCACGACGTCCGCGAGCGAGAGCGGCACCCCGGAGCTGTCCGGCACCGTCACGCTCGTCACCCACGACTCCTTCGCCCTGAGCGAGGGCCTGCTGGAGTCCTTCGAGTCCGAGACGGGCCTGACGGTGGAGCAGGCCGCCGCGGGCGACGCCGGCACGCTGGTCAACCAGCTCGTGCTGACGGCCGACAGCCCGCTCGGCGACGTCGTCTACGGGGTCGACAACACGTTCGCCTCGCGCGCCGTCGAGGCCGGCGTGTTCGAGCCGTACACCCCGGACGAGCTCGACCCGTCCGTCACCGACCTCGTCGACCCGGCGCTCGAGGGCCTCACCCCGATCGACAAGGGCGACGTCTGCCTCAACGTCGACACCACCTGGTTCGAGGACGAGGGCGTCGAGCCGCCGAGCACGCTCGAGGACCTCACCGACCCGGCCTACGAGGACCTCACGGTCGTGACGAACCCGGCGACCTCGTCGCCCGGGTTCGCGTTCCTGCTCGCCACCGTCGACGCCTTCGGCGAGGACGGCTGGGAGCAGTACTGGGCCGACCTCGCCGACAACGGCCTCAAGGTCACCGACGGCTGGTCGGACGCCTACTACGTCGACTTCTCCGGCGCCGGGGAGGGCGGTGAGCGGCCGATCGTGCTGTCGTACGCGACCTCGCCCGCGTTCACGGTCACCGAGGACGGCAGCGAGACCACGACGGCGGCGCTGCTGGACACCTGCTTCCGCCAGGTCGAGTACGCCGGCGTCCTGGCCGGGACCGACAACCCGGACGGCGCCCGCGCCCTGGTGGACTTCCTCGCCTCCGCCGAGGTGCAGGCCGACGTCCCGCCGAACATGTACATGTACCCGGCCGACGACAGCGTCGAGCTGCCGGCCGAGTGGGAGCAGTTCGCCCCGTTGGCCGAGGACCCGTTCGACGTCGCGCCGGCCGAGATCGACGCGCACCGCGACGAGTGGATCGAGCAGTGGACGGCGACGGTCATCGGGTGA	MNRRTRRTLATTAVVALLPALAACTGEDTPGEAQSSPTTSASESGTPELSGTVTLVTHDSFALSEGLLESFESETGLTVEQAAAGDAGTLVNQLVLTADSPLGDVVYGVDNTFASRAVEAGVFEPYTPDELDPSVTDLVDPALEGLTPIDKGDVCLNVDTTWFEDEGVEPPSTLEDLTDPAYEDLTVVTNPATSSPGFAFLLATVDAFGEDGWEQYWADLADNGLKVTDGWSDAYYVDFSGAGEGGERPIVLSYATSPAFTVTEDGSETTTAALLDTCFRQVEYAGVLAGTDNPDGARALVDFLASAEVQADVPPNMYMYPADDSVELPAEWEQFAPLAEDPFDVAPAEIDAHRDEWIEQWTATVIG	PGPT0009095_185	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009095-thiB|tbpA-K02064	NA	NA
AK001_03148	285			hypothetical protein	GTGGAGCAGTCCGAGAGCACCGAGCCGACGCTGGCCGTCAAGGTCGGGACGATGGCGGCGACGCTCGCTGCCGGTTGGGTGGCCCAGAAGCTCATCAAGACGATCTGGGAGAAGTCCACGGGCAAGGACGCGCCCATCGACCTGGACGCGGACGACATCCCGATCCTCCAGGCCATCACGTTCGCCGCCGTCACCGGTGGCGCCGCGGTGCTCGCGAGGCGGCTCGCCCGCCAGGGCGTCGCCAAGGCCGTCGACCGGCGCGCGCACCAGGTCTCGACGGTCTGA	MEQSESTEPTLAVKVGTMAATLAAGWVAQKLIKTIWEKSTGKDAPIDLDADDIPILQAITFAAVTGGAAVLARRLARQGVAKAVDRRAHQVSTV				NA	NA	NA	NA	NA
AK001_03149	729			hypothetical protein	ATGAGCTCGCCGTCGTCGTCGCGGACCATGAGGGGCTCTGCGCTCTCGAGCGTCACCGACGCCCTGTCCACCGGTACCCAGCTCGTCGTGGGCCGCTATCGGATCGACGCACCGTCGGGGGCGGTCTGGTGGTCGGACGAGGTCTATCGCATGTACGGCTGCGAACCGGGCGAGATCACTCCCACCGTGGACCTCATCCGTGCACGCACCCATCCGGACGACCGCGCGCGCGTGTCCCGGACCGCCATCGTCTCCCTGCGTGCCGGTCGCCCGTTCAGCAGTGCGCACCGCATCATCGACCCGCACGGCAAGGCGCGCACCGTCGTCATCACGGGCCGGGGGCAGGTCGCCGACGACGGCACGATTCAGCAGGTGGGCGGCTACGTCCTCGACGTGAGCCCGGTCGCCCGCGAGACCTTGGAGCGCGAGACGCACCGCGCCGTCGGGCGGGCCATGGTCTCGGCCGCCGCCGTCGAGCAGGTCAAGGGGTCGTTGATGGTCGTGCGGGGCGTCGACGAGTCGGCGGCCGCCGAGCAGATCAGCGAGGTCGCGGCACGCGCCGGGATCCCGGTACAGGCGGCGGCAGCACAGGTCGTCACCGCGCTCCGGTCCGCGACCGGCGAGCCCGACGACCGTCTGCGGACCGCCCTGGAGTCCGTGCACAGCGTGGACCGGCCGCACGGGCACGAGGCCCAGCTGGCGCGCCGGCGTCAGAGCAGCTCGCGCTGA	MSSPSSSRTMRGSALSSVTDALSTGTQLVVGRYRIDAPSGAVWWSDEVYRMYGCEPGEITPTVDLIRARTHPDDRARVSRTAIVSLRAGRPFSSAHRIIDPHGKARTVVITGRGQVADDGTIQQVGGYVLDVSPVARETLERETHRAVGRAMVSAAAVEQVKGSLMVVRGVDESAAAEQISEVAARAGIPVQAAAAQVVTALRSATGEPDDRLRTALESVHSVDRPHGHEAQLARRRQSSSR				NA	NA	NA	NA	NA
AK001_03150	117	nagB_2	COG0363	Glucosamine-6-phosphate deaminase	ATGCAGTTACACCCGCACGCCACGGTGCTGGTGGACGAGGCGGCCGCCTCGCGTCTGCAGCTGGCCGACTACTACCGCCAGACGTACGCCTCCAAGCCGGACTGGCAGGGCCTCTGA	MQLHPHATVLVDEAAASRLQLADYYRQTYASKPDWQGL	PGPT0018865_1734	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564	NA	NA
AK001_03151	318			hypothetical protein	ATGAGCGAGCCCCTCTCCACCCCGCCCGCCGACCCCTCGCAGGACACCGGCTCGGGGACGAGCGTGCTGGAGCGCCCGGACACGCGGGAGCAGTCCGCCGAACCGGGCGACCACGAGCGGTTTGCGCACTATGTGCGCAAGGAGAAGATCATGCAGTCGGCGATGTCCGGCAAGCCCGTGATCGCGCTCTGCGGCAAGGTCTGGGTTCCCGGTCGTGACCCGTCGAAGTTCCCCGTGTGCCCCGTGTGCAAGGAGATCTACGACGGCCTGCGCGACCCGCAGGACGGCGACGACGGCAACTCCGACTCCGAGTCGTGA	MSEPLSTPPADPSQDTGSGTSVLERPDTREQSAEPGDHERFAHYVRKEKIMQSAMSGKPVIALCGKVWVPGRDPSKFPVCPVCKEIYDGLRDPQDGDDGNSDSES				NA	NA	NA	NA	NA
AK001_03152	1851			hypothetical protein	GTGAGCTCGCCGGTTCCCGAGTCCGAGTCCGTCGACCTCTTCGCCGCCGCTGCCGAACCGACCAAGCCGCTCCCGCAGTCCCCGTCGGTCTCGGCCGCGTCCCACCTCAGCCCGGCCTACCCGCGCCGCGCACCGTGGGGCACGGCGTCGAACCTGCGTGCCTGGCAGGCCGAGGCCCTCGAGCTGTACCACCAGAGGTCGGCGCGCGACTTCCTCGCCGTCGCCACCCCGGGCGCGGGCAAGACGACGTTCGCGCTGCGGGTGGCCACCGAGCTGCTCGACGCCGGCGTCGTCCGGCGCGTGACGGTCGTCGCGCCCACGGAGCACCTCAAGCACCAGTGGGCCGACGCCGCGGCGCGGGTCGGCATCCGGATCGACCCGTCGTTCAAGAACGCCCAGGGCCGGCACGGCGCCCACTACGACGGCGTCGCGCTGACCTACGCCCAGGTCGCCTCCAAGCCGGCGCTGCACCGCGCCCGCACCGAGGCCGCCCCCACCCTGGTCATCCTCGACGAGGTGCACCACGGCGGGGACGCGCTGAGCTGGGGTGACGCCATCCGCGACGCGTTCGAGGACGCGACCCGACGCCTCGCCCTGACCGGCACGCCCTTCCGGTCGGACACCGCCTCGATCCCTTTCGTCACCTACGAGGCCGACGCCGAGGGGATCCGCCGCTCGAAGGCCGACTACATCTACGGCTACGGCGACGCGCTGCGCGACCACGTGGTGCGGCCGGTGCTGTTCATGACGTACTCGGGCGAGATGCGCTGGCGCACCCGGGCCGGTGACGAGGTCAGCGCCCGCCTCGGCGAGGACATGACCAAGGACATGCACGCCCAGGCCTGGCGCACCGCCCTGGACCCGCGCGGCGAGTGGATCCCGTCGGTGCTCGCGGCCGCCGACCGGCGCCTGACCGAGATGCGTCGCGCCGTGCCCGACGCCGGCGGGCTGGTCATCGCCTCCGACCAGACCGACGCCCGTGCCTACGCCGGGCACCTGGCCCGGATCACGGGCACCTCGCCGACGGTCGTGCTCAGCGACGACGACGGCGCGAGCGAGCGCATCGACGAGTTCGCGGCCGGGACGCAGCGCTGGATGGTCGCCGTGCGCATGGTCTCCGAGGGCGTCGACGTGCCACGTCTCGCCGTCGGCGTCTACGCCACCAGCACCTCGACGCCGCTGTTCTTCGCCCAGGCCGTGGGCCGGTTCGTCCGTGCCCGCAAGCGCGGCGAGACCGCCTCGGTGTTCCTGCCCAGCGTGCCGCTGCTGCTGGGGCTCGCCAACGAGCTCGAGGCCGAGCGGGACCACGCCCTCGACCGGCCCCAGACCGCCGAGGAGCAGGGCATCGAGTACGACCCCGAGGCCGCCCTGCTGGCCGCGGCGAACAAGGAGGAGAAGGCCTCGGGCGAGCTGACCGGCTCCTTCGAGGCGCTGGACGCCCAGGCCTCCTTCGACCGCGTGCTGTTCGACGGCGGCGAGTTCGGCACCGGTGGCGAGCTCGGGTCCGACGCCGAGCAGGACTTCCTGGGCATCCCCGGCCTGCTGGACGCGGACCAGGTCTCCACGCTGCTGCGTCAGCGCCAGGCGGCCCAGACCCAGGGGCGCGGCGGTGCCACGGACCGTGAGGCGGCCCTGCAGCAGTCCGAGCAGGAGCACCGCCGGGCCGCCGCCCTGCGCAAGGAGCTGTCGAAGCTGGTCTCGGCGTGGGCGCGCAAGAGCGGCACCCCGCACGGCAAGGTGCACGCCGAGCTGCGCCGCCGGTGCGGCGGTCCCGAGGTGCCCCTGGCCACGGCCGACCAGCTCGACTCCCGGGTGGAGATGGTGCGGGGCTGGTTCGTCGGCAAGCGGTGA	MSSPVPESESVDLFAAAAEPTKPLPQSPSVSAASHLSPAYPRRAPWGTASNLRAWQAEALELYHQRSARDFLAVATPGAGKTTFALRVATELLDAGVVRRVTVVAPTEHLKHQWADAAARVGIRIDPSFKNAQGRHGAHYDGVALTYAQVASKPALHRARTEAAPTLVILDEVHHGGDALSWGDAIRDAFEDATRRLALTGTPFRSDTASIPFVTYEADAEGIRRSKADYIYGYGDALRDHVVRPVLFMTYSGEMRWRTRAGDEVSARLGEDMTKDMHAQAWRTALDPRGEWIPSVLAAADRRLTEMRRAVPDAGGLVIASDQTDARAYAGHLARITGTSPTVVLSDDDGASERIDEFAAGTQRWMVAVRMVSEGVDVPRLAVGVYATSTSTPLFFAQAVGRFVRARKRGETASVFLPSVPLLLGLANELEAERDHALDRPQTAEEQGIEYDPEAALLAAANKEEKASGELTGSFEALDAQASFDRVLFDGGEFGTGGELGSDAEQDFLGIPGLLDADQVSTLLRQRQAAQTQGRGGATDREAALQQSEQEHRRAAALRKELSKLVSAWARKSGTPHGKVHAELRRRCGGPEVPLATADQLDSRVEMVRGWFVGKR				NA	NA	NA	NA	NA
AK001_03153	1524	pucI	COG1953	putative allantoin permease	ATGACCGCGACCCTGCCCGCGGAGGAGTTCGACACGCACGTCGGACCCGACCCGAACCCGGCCCTGCACAACGACGACCTCGGCCCGCTGCCGCAGGAGCGTCGGCGCTGGGGGGCGTTCGAGATCTTCAACGTCTGGACGAACGACGTCCAGAGCCTCGCCGGCTACACGCTGGCCGCCAGCCTGTTCATCACCGCCGGCATCAACGGGTGGTGGGTGTTCGCCGCCATCGTCATCGCCGGGTTCTTCGTGAACTGGCTCGTGAACCTCACGGGGAAGCCGAGCGTGAAGTACGGCATCCCCTACGCCGTGATGGCCCGGTCCAGCATGGGGGTGCGCGGAGCCCAGTTCCCGGCCCTCGTCCGCGGGATCGTGGCGATCTTCTGGTACGGCGCGCAGACGTACTTCGCGTCCACCGCCGTCGCCCTCGCGCTCGACGCGATCTTCGGGGACCCGCAGCTGGCGGTGTTCCTCGGCATGGACCTCGTCGACTGGGTCTCCTACGTCGTCGTCGCCGCGCTGCAGGTGGTGCTGTTCGTCCGGGGGATCTCCTGGATCGAGCGGTTCCTGAACTTCGCGGGGCCCGCGGTCTACCTCGTGATGATCACGCTGCTCGTCGCCATCTGGGTCCAGGCCGGTGACCGGCTGCTCCCCGCCGTCGGGTCGATCTTCACGAACGACTCGGTCGCGGGCTGGGCGGCCGTCGGCGCCTTCGTCGGGGTGATCGGCACGATCATCGCCTACTTCTCCGCCGTCGTGATCAACTTCGGCGACTTCGCCCGGTTCTCGCGCAGCGAGAAGGCGATGCGGCGGGGCAACTTCCTCGGTCTGCCGGTGAGCCTGACGTTCTTCACGTTCCTCAGCCTCTTCATCACCGCGGGCGCGTACATCGTGCTGCAGGACGGCCAGGGGGACCCGCTCACCAACCCCGCCGACATCGTCGGGCTCGTGGGGAACGTCTTCCTCACCATCGTCGCGGCGCTGACGTTCGTCGTGGCCACCGTGGGGATCAACCTCGTCGCGAACTTCATCCCGCCGGCCTACGACCTGTCCAACCTGGCACCGCAGCGCATCAGCTTCCGCCGGGGCGGCTACGTCACGGCGGCGGTCGGGTTCGTCGTGGGCGCCCTGTGGGTCGCGACCATCAGCCAGATCGGGCTGCCGACCTTCGTCGACACGCTCGGGGCGATCCTCGCCCCGCTCTACGGCGTGCTCGTCGCCGACTACTACGTCATCCAGCGGCGCAGCCTGAAGGTCGCCGACCTGTTCAGCATGGACCCGCAGAGCCGCTACTACTACCGCCGGGGATGGAACGTCCGGGCCCTGGCCGCGATCGGCATCGCGGGCGTGTTCTCCGTCGCCGCCGTGTGGGTGCCCGCCCTGGCCGTCCTCAGCGGGTTCGCGTGGGTCATCGGCGCCGTCCTCGGGGGGTGCCTGTACCTGCTCGTCATGTGGGGCTACCGCCCGGCCGGTGCGGACACCGGCACCGCACCGACCCCGGCCGCCGCCGAGTCGGACGTCTGA	MTATLPAEEFDTHVGPDPNPALHNDDLGPLPQERRRWGAFEIFNVWTNDVQSLAGYTLAASLFITAGINGWWVFAAIVIAGFFVNWLVNLTGKPSVKYGIPYAVMARSSMGVRGAQFPALVRGIVAIFWYGAQTYFASTAVALALDAIFGDPQLAVFLGMDLVDWVSYVVVAALQVVLFVRGISWIERFLNFAGPAVYLVMITLLVAIWVQAGDRLLPAVGSIFTNDSVAGWAAVGAFVGVIGTIIAYFSAVVINFGDFARFSRSEKAMRRGNFLGLPVSLTFFTFLSLFITAGAYIVLQDGQGDPLTNPADIVGLVGNVFLTIVAALTFVVATVGINLVANFIPPAYDLSNLAPQRISFRRGGYVTAAVGFVVGALWVATISQIGLPTFVDTLGAILAPLYGVLVADYYVIQRRSLKVADLFSMDPQSRYYYRRGWNVRALAAIGIAGVFSVAAVWVPALAVLSGFAWVIGAVLGGCLYLLVMWGYRPAGADTGTAPTPAAAESDV	PGPT0009075_787	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457	NA	NA
AK001_03154	1437	pncB1	COG1488	Nicotinate phosphoribosyltransferase pncB1	ATGACCGACGAGCGACGGGGCAACGGCGTCCCGGCGACGAGCCCGCTGACCGTCCCGCAGTCACTCCCCGCCGCACCTTTGCCGACACTGAGACCTTCCCTGGCCCTGCTCACCGACCGCTACGAGCTGACGATGCTCGCCGCCGCGCTCGCCGACGGCACCGCCCACCGGCACTGCGTGTTCGAGGTGTTCACCCGCCGCCTGCCCGCCGGACGCCGCTACGGCGTCCTGGCCGGGACCGGACGGGTGCTGGAGGCGCTGGCCGCGTTCCGGTTCGGCGACGCCGAGCTGGGCTTCCTCGAGCGCCACCGCGTGGTCGACGACCGCACCCTGGACTTCCTGCGCGGGTTCCGGTTCACCGGCACGATCACCGGGTACGCCGAGGGCGAGACGTTCTTCCCCGGCTCGCCTGTGCTGCAGGTGGAGGGCACCTTCGCCGAGGCGGTGCTGCTGGAGACCCTCGTGCTGTCCATCCTCAACCACGACTCGGCCGTCGCCTCGGCCGCGTCGCGCATGACCAGCGCGGCCGTGGACCGGCCCGTGATGGAGATGGGGTCGCGACGCACCCACGAGCAGGCCGCCGTCGCCGCCGCCCGGGCCGCCGTCGTCGGCGGGTTCGTCGGCACGTCGAACCTCGAGGCCGGCTACCGCTATGGGCTGGAGACCATCGGCACCGCCGCGCACGCCTTCACCATGCTGCACGACGACGAGGCGTCGGCCTTCGCCTCCCAGGTCGCCTGGCACGGGGTCGGGACCACGTTGCTGGTCGACACCTACGACGTGCGTCGCGGCGTCGAGCGGGCGATCGAGGCGGGCGGGACCGGGCTGGGCGCCGTCCGGCTCGACTCGGGCGACCTCGGCGCCATGGCCATCGAGGTGCGCGCTCAGCTCGACGAGCTCGGGGCGACCGGGACCAAGATCGTGGTGACCTCCGACCTCGACGAGCACGCCATCGCCGGCCTCGCCGCCGCTCCGGTGGACTCCTACGGCGTGGGGACCTCGCTGGTGACCGGTTCCGGTACACCGACGTGCGGCATGGTCTACAAGCTCGTCGCCCGCTCCGACGCCGCGGGGCGGATGCAGCCCGTGGCCAAGGCCTCCGCCCACAAGTCGGACCGGGGCGGGCGCAAGGCCGCCGCCCGACGCCTCGACGAGGACGGTCGCGCCCTCGAGGAGGTGCTCTACACCGGGCCCGACGAGGACGTGGTCGCGTGGGAGCCGCGAGCCGGGGGGTCCGGGGACGACGGCGGGCGGCTGCGCCCGCTGCACGTGCCGCTGGTGACCGACGGCGCGACGGACTCGCGATGGGTCGGCGCCTACGGGGTGCAGAACGCTGCCGAGCGGCACGCGTCCTCCCGCGGCGAGCTGCCGCGCGGGGCGCGCCGGCTCTCGGCCGGGGACCCGGCGATCCCCACCGTCGTCGAGTCGCTCGACTGA	MTDERRGNGVPATSPLTVPQSLPAAPLPTLRPSLALLTDRYELTMLAAALADGTAHRHCVFEVFTRRLPAGRRYGVLAGTGRVLEALAAFRFGDAELGFLERHRVVDDRTLDFLRGFRFTGTITGYAEGETFFPGSPVLQVEGTFAEAVLLETLVLSILNHDSAVASAASRMTSAAVDRPVMEMGSRRTHEQAAVAAARAAVVGGFVGTSNLEAGYRYGLETIGTAAHAFTMLHDDEASAFASQVAWHGVGTTLLVDTYDVRRGVERAIEAGGTGLGAVRLDSGDLGAMAIEVRAQLDELGATGTKIVVTSDLDEHAIAGLAAAPVDSYGVGTSLVTGSGTPTCGMVYKLVARSDAAGRMQPVAKASAHKSDRGGRKAAARRLDEDGRALEEVLYTGPDEDVVAWEPRAGGSGDDGGRLRPLHVPLVTDGATDSRWVGAYGVQNAAERHASSRGELPRGARRLSAGDPAIPTVVESLD	PGPT0013375_1462	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763	NA	NA
AK001_03155	315	clpS		ATP-dependent Clp protease adapter protein ClpS	ATGACGGTCTCGGCGACGCAGGAGGACACCAGCACCGAGGAGGTGTCCCGCCTCGCCGACCCGTGGGTCACGATCGTGTGGAACGACCCGGTCAACCTCATGAGCTACGTGTCCTACGTCTTCGAGAGCTACTTCGGGTATCCCGAGGCCAAGGCACGCCGGCTGATGCTGCAGGTCCACCACGAGGGGCGGGCCGTCGTCTCGACCGGGCCCAAGGAGCGCATGGAGGTCGACGTGCAGGCGATGCACGGGTTCGGGCTGTGGGCCACGATGCAGCAGTCGGACGCCCCCGGCGGCTCGGGGGAGGGCGCATGA	MTVSATQEDTSTEEVSRLADPWVTIVWNDPVNLMSYVSYVFESYFGYPEAKARRLMLQVHHEGRAVVSTGPKERMEVDVQAMHGFGLWATMQQSDAPGGSGEGA				NA	NA	NA	NA	NA
AK001_03156	678			hypothetical protein	ATGACACCCTTCCGGTCCACCCCGGCCGGGTACGTCGCGACCTGGGAGCCGGTCGAGCGCGAGGTGCTGGCCCGGGTCGCCCGCGACGTCGCCGGTCTCCTGAGCGCGGACTCCGGGCTGCCCGACGACGCCACGGAGGCCGAGGTGGCGTTCACCGGCGTCGCCCGGGTGCCCCGGGACCCGGCCGTCCAGCGCCTGCTGCCGGACGCCCACCGCGAGGACGCCGAGGCGGCCGCGGAGTTCCGGCACCTGACCCAGACCGACCTGGCCGCGGGCAAGGTCGCCCGGCTGCACGCCTTCGCCGAGACGGTGGACCCCTCCACGGAACCCGTGACGGACGCCGGGGACGGCGACCAGGTGCTGGTCGCACGCGACGACGCCCAGGACTTCGCCGCCGCCCTGACCGACGTCCGGCTCGTGCTCGCCGAGCGGCTGGGGCTCGACGACGACGCGGACGTCGAGCACCTGCACACCGAGGTCCTGGCCGGGCTCGGCCCCGAGCAGGAAGAGGACGACCTCGACCCCGCCGACGACGACCCGGACGACGACGAGGGCGCGGCGATGGACGCCGAGCAGCGGGTCTACTGGGGCGGGGTGTTCGTCGCCGCCGGGTTCGCCCAGGAGTCGCTGATGGACGAGCTCCTCGCCGACCTGCGGGCCCGTCGCAGCGCGGGGTGA	MTPFRSTPAGYVATWEPVEREVLARVARDVAGLLSADSGLPDDATEAEVAFTGVARVPRDPAVQRLLPDAHREDAEAAAEFRHLTQTDLAAGKVARLHAFAETVDPSTEPVTDAGDGDQVLVARDDAQDFAAALTDVRLVLAERLGLDDDADVEHLHTEVLAGLGPEQEEDDLDPADDDPDDDEGAAMDAEQRVYWGGVFVAAGFAQESLMDELLADLRARRSAG				NA	NA	NA	NA	NA
AK001_03157	804	murI	COG0796	Glutamate racemase	GTGAACGACGCCCCGATCGGGATCTTCGACAGCGGGGTGGGTGGTCTCACGGTCGCCCGCTCGATCCTCGACCAGCTCCCGCACGAACAGCTGCACTACATCGGCGACACGGCGAACGGCCCCTACGGGCCCAAGCCGCTCGCCGCCGTGCGCGCGATGGCGCTCGCGGTGATGGACCGGCTGGTCGACGACGGCGTGAAGATGCTCGTCATCGCCTGCAACTCCGCCTCGGCGGTCGCGCTGCGCGACGCACGGGAGCGGTACACCGTGCGCCGGGGCATCCCGGTGGTCGAGGTGATCCTGCCGGCCGCGCGCCGCGCCGTCGTCGCCTCCCGCTCGGGACGCATCGGCGTGATCGGCACGCAGGCCACGGTGGAGTCCCTGGCCTACGACGACGCGTTCGCCGTCACCCCGGGGATCGAGGTGACCAGCCAGGCGTGCCCGGAGTTCGTGCGGCTGGTCGAGGAGGGCACGACGTCGGGACCGGAGGTCCTCGACATCGCGCACCGCTACCTCGACCCGGTCAAGGCGGCCGGCGTGGACACCCTCGTGCTGGGCTGCACGCACTACCCGCTGCTGGCGGGCCCGATCTCGTACGTGATGGGCCAGGACGTGACCCTGGTGTCCTCGGCGGAGGAGACCGCCCAGGACGTGTACCGCAAGCTCGTGGCGCACGACCTCGAGCGGTCGCCGGCGGCGGCGGAGCCCGTGCACCGGTTCGCCGCGACCGGGAGCCCGGCGCCGTTCGCGGACCTGGCCCGCCGGTTCCTCGGACCGGAGGTCGACCTGGTGGAGGCCGCATGA	MNDAPIGIFDSGVGGLTVARSILDQLPHEQLHYIGDTANGPYGPKPLAAVRAMALAVMDRLVDDGVKMLVIACNSASAVALRDARERYTVRRGIPVVEVILPAARRAVVASRSGRIGVIGTQATVESLAYDDAFAVTPGIEVTSQACPEFVRLVEEGTTSGPEVLDIAHRYLDPVKAAGVDTLVLGCTHYPLLAGPISYVMGQDVTLVSSAEETAQDVYRKLVAHDLERSPAAAEPVHRFAATGSPAPFADLARRFLGPEVDLVEAA	PGPT0020200_2834	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776	NA	NA
AK001_03158	807		COG1234	putative protein	ATGAGACTCGTGACCGTCGGTGTGTCCGGCTCGCTGCCGGGCCCGGACTCGCCCGCGTCCTGCTACCTGGTGCAGGCCGACGACGGCGAGCGGACCTGGAACGTCGTGCTGGACCTGGGGTCGGGCGCGCTGGGGCCGCTGCAGCGGCACGTCGACCCGGTGGACGTCGACGCGATCGGCCTGTCGCACCTGCACCCGGACCACTGCTCGGACCTGAGCGGGCTGTACGTCTACCTCAAGTACCACCCCGAGCGCGGCGTCGCCCGCACGGGGGTGCCGCGCGAGCTGCCCGTGCACGGCCCGTCGGGGACGCAGGAGCGTGCGGCGGCGATGTACGGCCTGGAGCCGGACGAGGACATGGCCACCGAGTACGTCTTCCGGACCTGGCGGCCGGGGACGGCGGTGCAGGTCGGTCCGCTGACGCTGGAGCCGTTCACCGTGAACCACCCCGTGGAGGCCTACGGCGTGCGGGTGACCGGGCCGTCGTCGGAGCGTCCGGGGGAGAGCGCGACCCTGGTCTTCTCCGGCGACACCGACGCGTGCCCCGGACTGGTCGAGGGGGCGCGGGGCGCGGACCTGCTGCTGTGCGAGGCGGCGTTCCTCGAGGGGCGCGACGACGGCGTGCAGCGCGGCATCCACCTGACGGGTCGCCGGGCGGGCCGTGTCGCGGCCGAGGCCGGGGTGGGCCGGCTGCTGCTGACGCACCTGCCGGCGTGGACGGACCCGGCCGACACCCTGGTCGAGGCGCGCGGGGAGTTCGACGGTCCGATCGAGGTCGCGGCCGCGGACGGCGTGCACACCCTCTGA	MRLVTVGVSGSLPGPDSPASCYLVQADDGERTWNVVLDLGSGALGPLQRHVDPVDVDAIGLSHLHPDHCSDLSGLYVYLKYHPERGVARTGVPRELPVHGPSGTQERAAAMYGLEPDEDMATEYVFRTWRPGTAVQVGPLTLEPFTVNHPVEAYGVRVTGPSSERPGESATLVFSGDTDACPGLVEGARGADLLLCEAAFLEGRDDGVQRGIHLTGRRAGRVAAEAGVGRLLLTHLPAWTDPADTLVEARGEFDGPIEVAAADGVHTL				NA	NA	NA	NA	NA
AK001_03159	372			hypothetical protein	GTGCAGAAGCTTCCCGCCTGGCCCGCGGTCGTGTGCGACCTGGTCTGCGTCCTCGTGTTCATTCTCGTCGGCACGGCGAGCCACGCCTCGGCCGGCTCCGCCTGGCACCTCGTGGCCGTCGCCGCGCCGTTCGTGATCGGCCTGGCCGTCGGCTGGCTGGCGACGCGCGCCTGGCGTGCCCCGGCGCAGCCCTGGCCCACGGGGGTGGCGATCTGGTTCGCCACCGTGGCGCTCGGCGTGCTGCTGCGCCCGCTGTTCACCGGCGGCTTCGCCTGGACGTTCACGCTGGTCACGGCGGGCTTCCTGGCGCTGACGATGATCGGCTGGCGCCTGCTGGCCACCCTCGCGCAGCGCCGCCGCGCCGCCTCCTGA	MQKLPAWPAVVCDLVCVLVFILVGTASHASAGSAWHLVAVAAPFVIGLAVGWLATRAWRAPAQPWPTGVAIWFATVALGVLLRPLFTGGFAWTFTLVTAGFLALTMIGWRLLATLAQRRRAAS				NA	NA	NA	NA	NA
AK001_03160	669		COG0127	dITP/XTP pyrophosphatase	ATGGCCGGCGCCGCGGCGTCGGCCCCGCACGGCGCACGGCTCGTGCTGGCCACGCACAACCGCAAGAAGCTCGTCGAGCTGCTGGCGATCCTGCGCGCCGAGCCGGGACTCGACGCGCTGCCGGACGACGCCGTCGTCACCGCCGGGGACCTGGAGGCCCCCGAGCCCGTCGAGGACGGCGTGACGTTCGCCGAGAACGCGCTGATCAAGGCCCGCGCCCTGGCGGCCGCGACCGGCCTGCCGGCCGTGGCCGACGACTCGGGCCTGAGCGTCGACGTGCTCGGCGGGGCGCCGGGGATCTTCTCGGCCCGTTGGGCCGGGCGGCACGGCGACGACGTCGCGAACCTGGAGCTGCTGCTCGCCCAGCTCGGCGACGTCCGCGACGAGCACCGCGCGGCGGCGTTCGTGTGCGCGGCGGCGCTGGTCACGCCGGACGGGCGTGAGGAGGTCGCGCTCGGCGAGATGCCCGGCGTGCTGGTCCGTTCCCCGCGCGGTGAGGGCGGTTTCGGCTACGACCCGATCCTCGTGCCGGCCGAGCAGACCGCGGGTCCGGACGGTGCGCCGGGGACGCGCACCTCGGCCGAGCTGAGCCCTGAGGAGAAGAACGCGATCAGCCACCGCGGCAAGGCGCTGAGGTCGCTCGCGCCGGCGGTCGCCGCCGCGCTCTGA	MAGAAASAPHGARLVLATHNRKKLVELLAILRAEPGLDALPDDAVVTAGDLEAPEPVEDGVTFAENALIKARALAAATGLPAVADDSGLSVDVLGGAPGIFSARWAGRHGDDVANLELLLAQLGDVRDEHRAAAFVCAAALVTPDGREEVALGEMPGVLVRSPRGEGGFGYDPILVPAEQTAGPDGAPGTRTSAELSPEEKNAISHRGKALRSLAPAVAAAL	PGPT0021590_1204	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428	NA	NA
AK001_03161	738	rph	COG0689	Ribonuclease PH	ATGACCACTCGCGCTGACGGCCGTACCCCTGACCAGCTCCGCCCCGTGACGATCACCCGCCACTGGAGCGAGAACGCCGAGGGCTCCGTGCTCATCGAGTTCGGCAAGACCCGCGTGCTGTGCACCGCGTCGCTCACCGAGGGCGTGCCGCGCTGGAAGAAGGGCTCCGGCGAGGGCTGGGTGACCGCCGAGTACGCGATGCTGCCGCGCGCCACCAACGAGCGCAGCCCCCGCGAGTCCGTCAAGGGCAAGATCGGCGGCCGCACCCACGAGATCTCGCGGCTCATCGGCCGGTCCCTGCGCGCCGTCGTCGACGTCTCCGCGCTCGGGGAGAACACGATCGTGCTGGACTGCGACGTGCTGCAGGCCGACGGCGGCACCCGCACCGCCGCGATCACCGGCGCCTACGTGGCGCTGGCGGACGCGGTCGCCTGGGGCACCCGCCAGGGCCTGATCACCGCCCGCGGCAAGACCGTGCTCACCGGGTCGGTGGCCGCCGTCAGCGTCGGCATCATCGACGGCACCCCGATGCTGGACCTGCCCTACGTCGAGGACGTCCGCGCCGAGACGGACATGAACGTCGTCACCACCGGCGACGGGGAGTTCGTCGAGATCCAGGGCACCGCCGAGGGCGTGCCGTTCGCGCGCCACGAGCTCGACGCGCTGCTCGACCTGGCCGTGGCGGGCACCACCGAGCTCGCGAAGGCCCAGCAGGCCGCGCTGGCCGAGGACGCCTGA	MTTRADGRTPDQLRPVTITRHWSENAEGSVLIEFGKTRVLCTASLTEGVPRWKKGSGEGWVTAEYAMLPRATNERSPRESVKGKIGGRTHEISRLIGRSLRAVVDVSALGENTIVLDCDVLQADGGTRTAAITGAYVALADAVAWGTRQGLITARGKTVLTGSVAAVSVGIIDGTPMLDLPYVEDVRAETDMNVVTTGDGEFVEIQGTAEGVPFARHELDALLDLAVAGTTELAKAQQAALAEDA	PGPT0021590_9	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428	NA	NA
AK001_03162	819	lytR	COG3279	Sensory transduction protein LytR	GTGCGACCGAAGGCGCTCATCGTGGACGACGAGGCACCCGCCCGGGCCGAGCTGCGCTACCTCCTCGAGGAGGTCGGGCAGGTGCAGGTCGTGGGCGAGGCCACCAACGGCGAGGAAGCACTGCTGCTGCTGGACTCCCTCGACTACGACCTGGTGCTGCTGGACGTGCGCATGCCCGGCGGGTCCGGCCTGGAGGTCGCCGCCGCGCTGCGCGACCGTCCGCACCCGCCCAAGGTCATCTTCACCACCGCGTTCCCCGACCACGCCGTGGACGCCTTCGACCTGGCGGCCGTGGACTACCTGCTCAAGCCGTTCGACGCGGAGCGGCTGCAGCGGGCGCTGGAGCGGGCGCTGCGGTCCGACGGCGCGGGGGCCGGCGAGCAGGCCGCGGAGCGCTCCGCGGACGAGGACAGCGCGACGAGCCCGCCCCCGCCCGGGCCCCGACCGCCGTCGACCGGGCAGCCGTCGTGGCCCGACGACGCCGAGACCCTGGTGCGCATCCCCGTGCAGAAGGACGGGCGCACCGTGCTGGTCGACGGCGACTCGATCGTGTACGCCAGCGCCGCCCGCGGCTACTCCTACCTCAAGCTGGCCGACGAGCGGCTGCTGGTGACGATGTCGCTCAACGAGCTCGAGCGGCGGCTGCGCGGGCACTTCTTCCGCGCCCACCGCTCCTACCTGGTCAACCTCGACCACGTGCGCGAGCTCGTGCCCGACTTCCAGGGCTCGCTCGTCGTCGTCATGGACGACCGGCAGCGCTCGCGGGTCGAGGTCTCGCGGCGCCACGCCCGCGAGCTGCGGCGCCGGTTCGGCATGTGA	MRPKALIVDDEAPARAELRYLLEEVGQVQVVGEATNGEEALLLLDSLDYDLVLLDVRMPGGSGLEVAAALRDRPHPPKVIFTTAFPDHAVDAFDLAAVDYLLKPFDAERLQRALERALRSDGAGAGEQAAERSADEDSATSPPPPGPRPPSTGQPSWPDDAETLVRIPVQKDGRTVLVDGDSIVYASAARGYSYLKLADERLLVTMSLNELERRLRGHFFRAHRSYLVNLDHVRELVPDFQGSLVVVMDDRQRSRVEVSRRHARELRRRFGM	PGPT0026304_550	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026304-lytR|ypdB|yehT-K02477	NA	NA
AK001_03163	1335	ypdA	COG3275	Sensor histidine kinase YpdA	GTGCGCGGCGGTAGCTGGCTGCTGGCGGTCGTCCTCGCCGTCGCCTGGGGGCTGGTGTACCTGGTCACCCAGGTGCTGGTCACGCCCCCGCTGGACGTGCTGGCCACCGTCGCCGCCGGCCTCGTGGTGAGCACCGTCGTCGTGCTCGGCTACCCCTCGGCGCTGCGCGGCCCGCGCTCCGGGGCCACGGCCCGCACCCGCGCGTGGCGGCCCGCGTCCCGCCCGCAGGACCCGCGCGGGATGCGCGACGGGCTGACCATCGCCGCCGCCGGCCGGTCCGTGCCGCTGCGCCATGGCCTGACGCGCGACGCGGCCCGCCGCACCGCCCAGCTCATCCGCCCGCTGCTCGGCGGAGACGCCATCGCCATCACCGACACCGAGCAGGTGCTCGCGTTCGTCGGACCCGGCAGCGACCACCACAAGGTCGGCCAGGCGATGCAGACCCGCGTCTCGCGGCTCGCCCTCGGCAAGGGGCGCACCGTCGTCGTGCACGCCCGCGAGGGCATCGGCTGCCCGGAGCCGGACTGCCCGCTGCGTACCGCCGTCGTCGCCCCGCTGGCCGTGGCCGACCGGATCGTGGGCACGCTGAAGGTCTACCGAACCCAGGACGAGCCGGCCCCGCGCGTGCTCGTCGACGACATGGCCTCGATGCTGTCGCTGCACCTGGAGCTGGCCGAGATGGACCGCGAGCGCCACCTGGCCTCCGACGCCCAGCTCGACGCCCTGCGCGCCCAGATCAACCCGCACTTCCTGTTCAACATCCTCAACACCATCGCCTCGAAGTCGCGCACGGATCCCGAGGAGGCCCGCCAGCTCCTGCTGCGGCTCAGCGACTTCTTCCGCTACGCCGTGCGCCAGGACGGCCACTTCGCGGAGTTCAGCCAGGAGTACTTCTTCGTGCGCACGTACGTCTCCCTGGAGCAGGCGCGGTTCGGCGACCGCCTGCGGGTGCGCTACGACATCGACCCGCAGGTGCTGACCTCGCGGGTGCCGGTGCTGGTCATCCAGCCGCTGGTGGAGAACGCCGTCAAGCACGGGATCGCCGACTCCGTGGACGGCGGCACCGTGCACCTGCGCGCCCGCGTGGACCCGCTGACCCGCACGACCTCGATCCGGGTGAGCGACGACGGCGTCGGCATGCCGCCGGAGACGCTGCAGCGGCTGCTGGCCGGGCGCCGGCCCGACGGCGCCGGCCCGGGGGCACGGCACTCCGGGGTGGGGATGTGGAACATCTCCCAGCGCCTCGACGCGCTGTTCGGGGACCGGTACTCGTTCGACGTCGCCTCGCGGCCGGGCAAGGGCACGACCGTCGACCTGCGGATCCCGCTAAGGTGA	MRGGSWLLAVVLAVAWGLVYLVTQVLVTPPLDVLATVAAGLVVSTVVVLGYPSALRGPRSGATARTRAWRPASRPQDPRGMRDGLTIAAAGRSVPLRHGLTRDAARRTAQLIRPLLGGDAIAITDTEQVLAFVGPGSDHHKVGQAMQTRVSRLALGKGRTVVVHAREGIGCPEPDCPLRTAVVAPLAVADRIVGTLKVYRTQDEPAPRVLVDDMASMLSLHLELAEMDRERHLASDAQLDALRAQINPHFLFNILNTIASKSRTDPEEARQLLLRLSDFFRYAVRQDGHFAEFSQEYFFVRTYVSLEQARFGDRLRVRYDIDPQVLTSRVPVLVIQPLVENAVKHGIADSVDGGTVHLRARVDPLTRTTSIRVSDDGVGMPPETLQRLLAGRRPDGAGPGARHSGVGMWNISQRLDALFGDRYSFDVASRPGKGTTVDLRIPLR	PGPT0026305_963	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026305-lytS|ypdA|yehU-K02478	NA	NA
AK001_03164	1695	actP_1	COG4147	Cation/acetate symporter ActP	GTGACGCTGTCCAGCGGCCTCACCCTGGCCGCCGTGCTGGCCCTGGTGACCGTCGTCGCGGTCGTGATGCGCCCGCGCGGGACCTCGACCGTCGACTTCTACCTCGCCGGCCAGCGCGTGGGGGTGGCGACCAACGCCTGGGCCATCTGCGGCGACTACTTCTCGGCCGCGTCCTTCCTCGGCGTCGCGGCCGCGGTGTACGCCACGGGTCTGGACGGCGCCTGGTACGCCGTCGGGTTCGCCGCCGGGTTCGTGCCCGTGCTGCTGTTCGTCGCCGCGCCGCTGCGCCGGTTCGGGGAGTTCTCCATCCCGGACTTCCTGGGCCGGCGTCTCGGCTCGGAGCGGGTCCGGCTCGTGGCGGTCGGGGTCGTCCAGCTCGTCATCCTGTCCTACCTGGTGCCGCAGACCGTCGGGTCGGGCATCACCTGGGAGCTGCTGGTCGGCCAGGGCGTGGCGGGTCTGAGCCCCTACGCCACCGGCATCGTGGTCTCCACCGCGGTGGTGGCCGCGCTGGTCTCGTTCGGCGGCATGCGCGGCACCACGTGGACGCAGGCGGTGCAGTTCCTGCTGCTGCTCGGCGCGCTGCTGTGGCTCGCCGCCACCGTGCTCGGCGAGGGGTTCCACTACGGCGACGCGGTCGAGCGGATCTCCACCGCCCCGCTGGGCAACCCGGCCCCCGACGGCGGCCTGGCCACCGAGCCGAACGCGCTCCACCCGGGCGAGCCGGCCGTGTTCGGCGAGCCCGGCGCCCGGTACGACGTGCTCGGCCAGCTCGCCCTCATCGTCACCCTGGCGATGGGCACCGCCGGGCTGCCGCACGTGATGAACCGCTACTTCACGTCCCCGACCGGGACGGCCGCGCGCACCACGACCGTGTGGGTGCTGTGCCTGGCCGGCGTCTTCTACGCCGTGGCCGTGATGCTGGGCACGGCGGCCCGCGAGCTGATCCCCCGCGCCGTGGCCGACAACGCGTGGCTCGAGGAGCTCACGGTCGACGGCGTGCTGACGGTCCCCGAGCACGCCCTGCCGGTGCTGGGACGCATCTACGGCGGCGACGCCGGTCTCGGCGTGGTCGCCGCCGGCGCACTCATCGCCGTGCTGTCGACCATCGCCGGCCTGCTGCTGGCCGCCGCGACCTCGTGGGGCCACGACGTCTACGAGCGGCACATCAACCCGCGTGCGACGCAGCGCCAGGCCGTGCTGGCCGGCCGGGTCACCACGCTGACCACGGCGTGCCTCGCGGCCGGCCTGGGGCTCCTGCTCAGTCCCACGACGTTCTCCGCCTCGACGCCGTCCATCGTGGCCACCATGGTCACCTGGGCGTTCGCCATCGCCGGGTCGGCGCTGACCCCCGTGTTCCTGCTGTCGATCTGGTGGCGCCGCACGACGGCGGCCGGCGCCGTGGCGGGGATGTCGACCGGCGTCGCGGTCGCCGTGGGGATGCTCGTCGCCGGGACCGTCGCCGACGGCTCCGTGTGGCCCGACCTGCTGCTCACCCCGACCCTGCTCGCCGCGCCGGTGACCACGGTCGTGACCGTGTTGGTGTCCCGGCGCACGGCTCCCCCGCCGGACGTCGAGCGGTCGTGGCTGATCATGCACGGCACCGCCGCGGACCGGCACGCCGTGGCACTGGCCCGCCTGGTCCTGGCCGAGACCCGGCGACGACGGCGGGAGGTGCGGCGTGCGCGGCGGTAG	MTLSSGLTLAAVLALVTVVAVVMRPRGTSTVDFYLAGQRVGVATNAWAICGDYFSAASFLGVAAAVYATGLDGAWYAVGFAAGFVPVLLFVAAPLRRFGEFSIPDFLGRRLGSERVRLVAVGVVQLVILSYLVPQTVGSGITWELLVGQGVAGLSPYATGIVVSTAVVAALVSFGGMRGTTWTQAVQFLLLLGALLWLAATVLGEGFHYGDAVERISTAPLGNPAPDGGLATEPNALHPGEPAVFGEPGARYDVLGQLALIVTLAMGTAGLPHVMNRYFTSPTGTAARTTTVWVLCLAGVFYAVAVMLGTAARELIPRAVADNAWLEELTVDGVLTVPEHALPVLGRIYGGDAGLGVVAAGALIAVLSTIAGLLLAAATSWGHDVYERHINPRATQRQAVLAGRVTTLTTACLAAGLGLLLSPTTFSASTPSIVATMVTWAFAIAGSALTPVFLLSIWWRRTTAAGAVAGMSTGVAVAVGMLVAGTVADGSVWPDLLLTPTLLAAPVTTVVTVLVSRRTAPPPDVERSWLIMHGTAADRHAVALARLVLAETRRRRREVRRARR	PGPT0001400_1269	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393	NA	NA
AK001_03165	336			hypothetical protein	ATGGACGACGACGACGTCGGGACCCGGGACACGCCTGCGGAGGTGGACGCCGCCTTCCGCACGCTGCGCCGCGTCTCGGTCGGGTACTTCGTCGTGTTCCTGCTCGGCGTGGCGGCCTTCCCGGTGCTCACCCTCACGCTGGACTGGTGGTCGCAGGCCCGCCTGGTGGGCGGCATGAGCCCGGGCTTCCTCGTCGCCGCGTTCGGCCTCTACCTGTTCTTCGCCGTCCTGGGGATCGCGGCCGCGCGGCTGTCCTCGGCCGTCGAGCACCGGATGCTGGGCGAGGCCGAGCAGGGGTCCGACGGCGCGGACGCGGCCGAGGAGGACACCCCGTGA	MDDDDVGTRDTPAEVDAAFRTLRRVSVGYFVVFLLGVAAFPVLTLTLDWWSQARLVGGMSPGFLVAAFGLYLFFAVLGIAAARLSSAVEHRMLGEAEQGSDGADAAEEDTP				NA	NA	NA	NA	NA
AK001_03166	462			hypothetical protein	ATGGCCTCGACGACGAGCACCTCCCTGGGCAACCTGCTGCGCGCCGGCGGTCGGACGCCGGCCCGACGGACCCGGGTGTTCCACCCCGGCAGTCTCGGCATGCTGCTGGGGGCGCTGGCCGTGATCGTGGGCAGCCTGCTGCCGTGGGTCATCACGCCGGTCGGCACCCTCAGCGGGACGGCCGGCCCGGGTCTGTGGACACTGTGCGCGGGGTTCGTCGCCGTCGCCGGGGCCGTCATCCCCCGCCGCTGGGTCGCGGTCTCGCACAGCCTCGTCGCCGGTGGCGCGGTCGCGTTCGTCGTGGCGTGGCAGCTGCTGCGTCTCGGTCAGGTCAGCGCGGCCACGGACTCCTGGGGCCAGGCCATGCCCGGCATCGGGCTGATCATGGCGGCCGGCGGCGCCGTCGTGCTCCTGGCCACCGGGGTCCGGGTGCTGCGCGCGGCCCCCGCGCCGACGTCGTGA	MASTTSTSLGNLLRAGGRTPARRTRVFHPGSLGMLLGALAVIVGSLLPWVITPVGTLSGTAGPGLWTLCAGFVAVAGAVIPRRWVAVSHSLVAGGAVAFVVAWQLLRLGQVSAATDSWGQAMPGIGLIMAAGGAVVLLATGVRVLRAAPAPTS				NA	NA	NA	NA	NA
AK001_03167	324			hypothetical protein	ATGGTCGACACCGAGCGAGGGAGCTCGCCGGATCCTGGGCCGCCGCCCCACAACGGGTGGCGTCAGGAGTACTGGAAGAAGAACCTGCGGCTGATGATCGTCCTGCTCAGCATCTGGTTCCTGGTCTCGTTCGTGTGCGGGATCTTGTTCATCGAGCAGCTCAACACCATCGAGGTCTTCGGCTTCCCCCTGGGGCTGTGGTTCGCCCAGCAGGGCTCGATCTACACGTTCATCGTCCTGATCCTCGTGTACACGCTGCGCATGGACAGGCTCGACGACGAGTACGGCGTGGCCGAGCGTGACGAGGAGGGGAACCGACTGTGA	MVDTERGSSPDPGPPPHNGWRQEYWKKNLRLMIVLLSIWFLVSFVCGILFIEQLNTIEVFGFPLGLWFAQQGSIYTFIVLILVYTLRMDRLDDEYGVAERDEEGNRL				NA	NA	NA	NA	NA
AK001_03168	1677	actP_2	COG4147	Cation/acetate symporter ActP	GTGAGCGACATCCAGATCTGGACCCTCGTCTTCGTGGGCCTGTCCTTCGGGACCTACCTGACCATCGCCTGGCGCAGCCGCGTCCGGGAGACCAAGGGCTTCTACGTCGCCGGCCAGGGCATCCCCGCCGTGGCCAACGGCGCCGCCGTCGCCGCGGACTGGATGTCCGCCGCGTCGTTCATCTCCATGGCGGGCCTCATCGCCTTCCTCGGCTCCGACGGCTCGGTCTACCTCATGGGCTGGACCGGCGGGTACGTGCTGCTGGCCCTGCTGCTCGCCCCCTACCTGCGCAAGTGGGGCAAGTTCACCGTCCCCGAGTTCGTCGGCGACCGGTACTCGGAGTACGTGCGGCTCATCGCCGCGGTCGCCGCGATCATCGTGTCGTTCACCTACGTCGTGGGGCAGATGCGCGGCGGCGGCATCGTGTTCAGCCGGTTCCTCAACCTCACCATCGAGGGCGGCGTGGCCGTGGCCGCGGGCGTCATCTTCCTGTACGCCGTGCTGGGCGGCATGAAGGGCATCACCTGGACCCAGGTCGCCCAGTACACGGTGATGATCGTCGCCTACCTCATTCCCGCGTGGACGATCGCGCAGAAGATGACCGGCTTCCCGGTCCCGCAGGTGACGTTCGGGCAGATCCTCGACGAGCTGAACGCGCTGAGCCAGGAGTTCGGCCTCGAGCAGTACACCGAGGCCTTCGCCGTGCGGCCCCAGCTCGACGTGTTCCTGGTGACGCTGTCGCTGATGATCGGCACGGCGGGCCTGCCGCACGTCATCATCCGCTTCTACACCACCAAGTCGGTGCGCGGTGCGCGGTTCAGCGCGCTGTGGGCGCTGGTGTTCATCGGCCTGCTCTACACCACGGCTCCGGCCGTGGGCGCGTTCACCAAGCTGAACCTCATGCAGTCGGTCAACGGGGTGGCGGTGGACGCCTTGCCGGCCTGGGTGAACAACTGGGCCGCCACGGGGCTGGTGACGGTCTCCGACTCCGCGTCGACGATCACGACGTTGAGCAACGACCCCGCCTCGGGGGCGGACCTCATCGTCAACAACGACATCCTCGTGCTCGCCACCCCGGAGATCGCCGGGCTGCCGGCACCGATCGTCGGGCTGGTCGCGGCCGGCGGCCTGGCCGCCGCGATGTCGACGGCGGCCGGCCTGCTGCTCGTCATCTCCTCCTCGGTGTCGCACGACCTGTACTTCCGGGTCGTGAAGAAGCCGACGTCGGACTCGCGCCGCCTGCTCGTCGGGCGGATCGCGATGGGTGCCGCGGTGCTCGTGGCGATCTACGGCGGCATCAACCCGCCGGCGTACGTGGCCCAGGTGGTCGCCTTCGCCTTCGGGCTGGCGGCGTCGACGTTCTTCCCGATCCTCGTGCTGGGGATCTTCTGGAAGCGCGCCAACGCCGTCGGGGCGGCGTCCGGCATGATCTCCGGCCTGGCGTTCACCGGGGCGTACATGCTCTACACCCTCGAGGTGTTCGGGACGTCGTCCCACGACTACCTGTTCGGCATCTCGCCGGAGGGCATCGGCGCGCTCGGCGCCTTGGTGAACGTCATCGTGACGATCGTCGTCTCCAAGCTGACGACACCACCGACCGAGCACGTCCAGGAGATGGTCGAGGAGCTGCGGTACCCGGCGAGGCGGGTGACGTCGCCGGCGGCCGAGACCGAGTAG	MSDIQIWTLVFVGLSFGTYLTIAWRSRVRETKGFYVAGQGIPAVANGAAVAADWMSAASFISMAGLIAFLGSDGSVYLMGWTGGYVLLALLLAPYLRKWGKFTVPEFVGDRYSEYVRLIAAVAAIIVSFTYVVGQMRGGGIVFSRFLNLTIEGGVAVAAGVIFLYAVLGGMKGITWTQVAQYTVMIVAYLIPAWTIAQKMTGFPVPQVTFGQILDELNALSQEFGLEQYTEAFAVRPQLDVFLVTLSLMIGTAGLPHVIIRFYTTKSVRGARFSALWALVFIGLLYTTAPAVGAFTKLNLMQSVNGVAVDALPAWVNNWAATGLVTVSDSASTITTLSNDPASGADLIVNNDILVLATPEIAGLPAPIVGLVAAGGLAAAMSTAAGLLLVISSSVSHDLYFRVVKKPTSDSRRLLVGRIAMGAAVLVAIYGGINPPAYVAQVVAFAFGLAASTFFPILVLGIFWKRANAVGAASGMISGLAFTGAYMLYTLEVFGTSSHDYLFGISPEGIGALGALVNVIVTIVVSKLTTPPTEHVQEMVEELRYPARRVTSPAAETE	PGPT0001400_1457	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393	NA	NA
AK001_03169	1194	hpxO	COG0654	FAD-dependent urate hydroxylase	ATGAAGATCATCGTGATCGGGGCGGGCGTCGGCGGCACCAGCGCCGCCATCGCCCTGCAGCGGCTGGGGCACGAGGTCGTCGTCTACGACCGGATGCGGGAGAACAAGCCCGTGGGTGCCGCGCTCTCGCTGTGGTCGAACGGCGTCAAGGTGCTCAACTGGCTGGGCCTCGGCGACCAGGTCGCCGCGCTCGGCGGCGCCATGGACGACATGGCCTACCTCGACGGGCACACCGGCGAGACGCTGTGCCGGTTCAGCCTGGCGCCGGTCACCGAGCAGACGGGCCAGAAGCCGTACCCCGTGGCGCGCGCCGACCTGCAACGCCTGCTCATGGAGAGCTTCGGGACCGAGAAGATCCACCTGGGCAGGCGGCTGGTGTCCGTCGCCGACGACGGCGAGCAGGTCACCGCGACCTTCGCCGACGGGTCCACCGACACCGCCGACCTGCTCGTCGGGGCCGACGGCGCCCGGTCCGTGGTGCGCGACCACGTCACCGGCGCGCACGAGGGCGGCGAGCGCATCGAGCGCACGTACTCGGGCTACACGAACTTCAACGGCCTGGTCGCCGCCGACACCGCCGTCGGGCCGAAGAACCAGTGGACGACCTACGTCGCCGAGGGCAAGCGCGCCGCCGTCATGCCCGTGGCCGACGGGCGGTTCTACTTCTGGTTCGACGTGCCGCAGCCTGCCGGACTGCCGTACGACGCCTCGGACGGCGCGGCGCCGCTGCACGAGTCGTTCGGCCACTGGGCGCCCGGGGTCCGGACGCTGCTCGGGGCGATCGACCCGGACCGGTCCCTCAACCGGGTGGAGATCTGGGACATCGACCCGTTCCACACCTGGGTCCGCGGACGCGTCGCGATCCTCGGCGACGCCGCCCACAACACCGCCCCGGACATCGGACAGGGCGCCTGCCTGGCCCTGGAGGACTCCTTCGCCCTGGCGATCAGCCTGGCGACGAACACGGTGAGCGTCGAGGACTCGCTGCGGCGCTACGAGCACAGCCGCACCGGGCGGGCCGCCGACCTCGTGGAGCGGGCCCGCGCGCGCGGCGCAGAGACGCACGGCGAGGACCCCGAGCGGACCGCCGCCTGGTACGCGAGCCTGCGGGGCACCGACGGCAGCGCCATCATCCGCGGCATCGTCGGCAACATCACCGGCAGCCCGGTCAACCTCGGCGCCGGCCCCCTCTGA	MKIIVIGAGVGGTSAAIALQRLGHEVVVYDRMRENKPVGAALSLWSNGVKVLNWLGLGDQVAALGGAMDDMAYLDGHTGETLCRFSLAPVTEQTGQKPYPVARADLQRLLMESFGTEKIHLGRRLVSVADDGEQVTATFADGSTDTADLLVGADGARSVVRDHVTGAHEGGERIERTYSGYTNFNGLVAADTAVGPKNQWTTYVAEGKRAAVMPVADGRFYFWFDVPQPAGLPYDASDGAAPLHESFGHWAPGVRTLLGAIDPDRSLNRVEIWDIDPFHTWVRGRVAILGDAAHNTAPDIGQGACLALEDSFALAISLATNTVSVEDSLRRYEHSRTGRAADLVERARARGAETHGEDPERTAAWYASLRGTDGSAIIRGIVGNITGSPVNLGAGPL	PGPT0021115_96	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0021115-hpxO-K16839	NA	NA
AK001_03170	330	hiuH		5-hydroxyisourate hydrolase	ATGAGCCACCTGACGACCCACGTGCTGGACGCCGGCACGGGCGAACCGGCCACGGGGCTGCGACTCGAGCTGACCGACTCCCACGGGCAGCGCATCGACGACACGGACACCGACGACGACGGCCGCGCCGACCTCGGCCCGAACCTGCTGCCCTCGGGGACCTACACGCTCACCTTCGACACCGGCACGTACTTCGCCGAGCGGGAGGTCGAGACCTTCTACCCGTCGGTGGCGGTGACGTTCGTCGTGACGCCCGAGGGCGCGGGCAGGCACTACCACGTGCCGCTGCTGCTGAGCCCGTTCGCCTACTCGACCTACCGCGGGAGCTGA	MSHLTTHVLDAGTGEPATGLRLELTDSHGQRIDDTDTDDDGRADLGPNLLPSGTYTLTFDTGTYFAEREVETFYPSVAVTFVVTPEGAGRHYHVPLLLSPFAYSTYRGS	PGPT0021125_2032	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0021125-uraH|pucM|hiuH-K07127	NA	NA
AK001_03171	510			hypothetical protein	GTGCACATCGACGAGTTCGACACCCTGGACGACGCGCCCGCCCGCGAGGTCGTGTCCGTCTGGGCCGCCGTCCCCCCCTGGGTCGACGCCGTGGTCGCCGGGCGACCGTACGGGTCCGTCCGGGCGCTGGCCGACCGCGCCACCGCGCTGACCCGCTCGTGGGACGGCGCCACGCTGGACGCGGCGCTGGCCCACCACCCGCGGATCGGCGAGAGGGCCGCGGGCGACGGCGCCGAGGCCGCGGCCTCGCGCCGGGAGCAGGCGAGCATGGCCGACGCCGGCGCGGACGTCGAGACGCGGATGGCCGCGGGCAACCGGGCCTACGAGGAGCGGTTCGGCCGCGTCTTCCTCGTGCGTGCCGCGGGGCGGTCGCCGCAGGAGATGCTCGCCGAGCTCGAGCGGCGCCTGGGCAACGACGAGGCCACCGAGACCGCCGAGGCCTGCGACCAGCTCGCGCAGATCGCGCTGCGGCGGCTGCACGACACGATCACCGAGGAGACGACCCGATGA	MHIDEFDTLDDAPAREVVSVWAAVPPWVDAVVAGRPYGSVRALADRATALTRSWDGATLDAALAHHPRIGERAAGDGAEAAASRREQASMADAGADVETRMAAGNRAYEERFGRVFLVRAAGRSPQEMLAELERRLGNDEATETAEACDQLAQIALRRLHDTITEETTR	PGPT0021135_331	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0021135-hpxQ-K16840	NA	NA
AK001_03172	636			hypothetical protein	GTGGACGAGACCCTGCTCCCCGCCCGCATCGGCGGCCGACTGCGTCGGCTGCGCACCGCGAGCGGTCGGTCGCTGGCGTCGGTCGCGCAGGAGCTCGGCGTCTCGTCCAGCGCCCTCTCCCAGATCGAGAACGGGGTGATGAAGCCGTCGGTCCAGCGTCTGGTCGAGCTCGTCGGCATCCTGGGCGTACCGGTGTCGGCGATCTTCGACGACGTCGCGGTGTCCGTCCCGCGCGTGGACGACGACGTCACCGACGTCTCCGAGCCGCTGCCCGGCGTCCTGGTCGCCACGCGCGAGGCGGACTCGCCGGCGCAGCTGGGGCAGGGGGTCACCTATCGCCGGCTGTCCCCGGCGCCGCTGCCGGGCGTGACCTGGTTCGAGTCCACCTACCCGCCCGGGGCCTCCTCGAGCGAGGACGGCTCCATGCTCGTGCACACCGGGTACGAGAGCGGGCACGTCGTGTCCGGCGAGCTCGTCTTCGAGTTCGCGCAGGGGGCCGTCCGGCTGGGACCGGGCGACTCGCTGTCCTTCGCCGCCAGCCGGCCGCACCGCGTGGTCAACGACGGCGACGTCGTCGCGGTGGCGCTCTGGCTGACCGTGGAGCCGTCGGCCACGGCCGAGGCGGAGGAGGCGTAA	MDETLLPARIGGRLRRLRTASGRSLASVAQELGVSSSALSQIENGVMKPSVQRLVELVGILGVPVSAIFDDVAVSVPRVDDDVTDVSEPLPGVLVATREADSPAQLGQGVTYRRLSPAPLPGVTWFESTYPPGASSSEDGSMLVHTGYESGHVVSGELVFEFAQGAVRLGPGDSLSFAASRPHRVVNDGDVVAVALWLTVEPSATAEAEEA				NA	NA	NA	NA	NA
AK001_03173	1374	allB	COG0044	Allantoinase	GTGACGGCCGCCCGGCAGGTGTTCCGCGCCGAGCGGGCCTTCGTCGCCGGCGCCTTCCGGCCGGCCGCCGTCGTCGTCGAGGACGGCCGGATCGCCGACGTGCTCGACGCCGACGCGCCCGTCCCCGGGGCCGAGACCGTCGTGGTCCCCGACGACGCCGTGCTCCTGCCCGGACTGGTCGACTCCCACGTGCACGTCAACGACCCGGGGCGCGCCGAGTGGGAGGGCTTCGGCTCCGCGACCGCCGCCGCGGCCGCCGGCGGCGTCACCACCATCGTGGACATGCCGCTGAACTCCCTGCCGCCGACGACCACGGCCGACGCGCTCGCGGTCAAGCGGGCCGTGGCCGCGCCCGCGGCGCGTGTCGACGTCGGGTTCTGGGGCGGCGCGGTGCCCGAGAACCTCGGACGCCTCGCCCCCCTGCACGAGGCCGGGGTGTACGGGTTCAAGTGCTTCCTGGCGCCGTCCGGCGTGGACGAGTTCGGCCACCTCGACGCCGACGGGCTCGACGCGGCGGCCGCGGAGGTCGCCCGGCTCGGCTCGCGACTCATCGTGCACGCCGAGGACCCGGGGCTCCTGCACGGCGGCGGGGCCCTCGGCCGCGGCTACGACGCGTTCCTGCGGTCGCGGCCGCCCGCCAGCGAGGCCGCCGCCGTCACGGCCGTCGTCGAGGCAGCGCGGCGCCACGGCGCGCGGGTCCACGTCCTGCACCTCAGCGACGCCGGGTCCCTGCCGGTGATCCGCGCGGCCCGGGCCGACGGCGTCGACCTGACCGTCGAGACGTGCCCGCACTACCTGACGATCACGGCCGAGGAGGTCCCCGACGGGGCGTCCGAGTTCAAGTGCTGCCCGCCGATCCGGGACGCCGCGAACCGGGACCTGCTGTGGGAGGGTCTGCTCGACGGGACCGTCGACGCCGTCGTCAGCGACCACTCGCCCTCCACCGTCGAGCGCAAGCGCGCCGGGGACGGGGACTTCGGCCTCGCCTGGGGCGGGATCTCCGGGCTCCAGGTCGGGCTGTCGGCGGTGTGGACCGAGGCCCGGGCCCGCGGCGTCGCCCTCGAGACCGTGCTGCCGTGGTTCACCACCGGGCCCGCCGGCGTCGCGGGCCTCGACGGGCCGGGGACGATCGCCCCCGGCGCGCCCGCGCACCTGGCCGTCTTCGGCGTCGACGACCCGTTCGTCGTCGACGCCGCCGCTCTCCTGCACAGGAACCCGATCACGGCGTACGACGGGCGCGCGCTGCGCGGCCGGGTCCGCGCCACGTGGCTGCGGGGCCGGCCGGTGTACGCCGTCGACAGCGCCGGCACCGGCGTCGTCGACGGCGACCCCGCGGGCCGTCTGCTGGCCGCTCCGACGGAGGTGCCGGCATGA	MTAARQVFRAERAFVAGAFRPAAVVVEDGRIADVLDADAPVPGAETVVVPDDAVLLPGLVDSHVHVNDPGRAEWEGFGSATAAAAAGGVTTIVDMPLNSLPPTTTADALAVKRAVAAPAARVDVGFWGGAVPENLGRLAPLHEAGVYGFKCFLAPSGVDEFGHLDADGLDAAAAEVARLGSRLIVHAEDPGLLHGGGALGRGYDAFLRSRPPASEAAAVTAVVEAARRHGARVHVLHLSDAGSLPVIRAARADGVDLTVETCPHYLTITAEEVPDGASEFKCCPPIRDAANRDLLWEGLLDGTVDAVVSDHSPSTVERKRAGDGDFGLAWGGISGLQVGLSAVWTEARARGVALETVLPWFTTGPAGVAGLDGPGTIAPGAPAHLAVFGVDDPFVVDAAALLHRNPITAYDGRALRGRVRATWLRGRPVYAVDSAGTGVVDGDPAGRLLAAPTEVPA	PGPT0000870_413	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0000870-allB-K01466	NA	NA
AK001_03174	1128			hypothetical protein	ATGACCACGCCGATCCTGCAGCCGGGACGGGGCGACCTGCCTGGCGACCACTACCTCGCCGCCACGCCCGGCACGGTGTCGTGGGGTCGCCTGCCGTGCGCGGCCGACGCCCCCGTCCTGACGATCGCGTCCGGCGAGACCGTCACCGTCGACACCGTGAGCCACGAGGGCCTGCTCGAGGACCAGGGCTCGGACCCCCGGGCGTACTTCGGCAGTCACGGTGTGCCGCCCGAGAGCGTCCTGGAGGACGCCGTCACGATCACCGCCGAGGTCGCCCGCGACCCCGACCGCGACGGCCCGCACGTCGTCACGGGCCCTGTCCGGGTCGAGGGGGCCGAGCCCGGCGACCTCCTGAAGGTCACCGTCGAGCGCCTCCGGCCCCGGGTGCCCTACGGCGTGGTCTCGAACCGGCACGGCAAGGGGGCGCTCGCCGGCGAGCTGCCGCGCGGTGCGCACAACGTCAGCGTGTTCTGCCCCGTCGCCGACCGGGCGGGCCGGTCGGTCGGCACGCTCCCGGTGACCGACGGCGGACCGCGGGTCGTGGAGTTCCCGCTCGCCCCCTTCCTCGGGATCATGGGCGTCGCGGTACCGGGCGACGAGCGCCCGCACTCCGTGCCGCCCGGCCCGCACGGCGGCAACATCGACATCAACCTGCTCGTCGAGGGCGCCGAGCTGTACCTGCCGGTGCAGGTCGCCGGGGCGCTCGCCTACGTCGGCGACCCGCACTTCGCCCAGGGCGACGGCGAGGTGGCCCTCACCGCGCTGGAGGCCTCGCTGCGCGCGACCCTGCGGTTCGACGTCGTCCCGCGGGCCGAGGCGCTCGCGGCGTTCGGCGAGGTGACGGGGCCCCTGGCGCGGGCCGGCGGCTACCTCGTCCCCACGGGGCTCGACGAGGACCTCGACGAGGCGATGCGCCGTGCCGTGCGCGCCGCGATCGCGCTCGTGCGGGCCCGGTGGGGACTCGACGAGCACCTCGCGTACGCCTACCTCAGCGCGGCGACCGACTTCGACGTCTCGCAGGTGGTCGACGTCGTGTGCGGCGTGCACGCCCGCATCCGCGAGTCCGACTTCGACGGGGTGCCCGGCACCGGCGGTGCCGAGCACCCGAGCGACGGGAGCGAGTCATGA	MTTPILQPGRGDLPGDHYLAATPGTVSWGRLPCAADAPVLTIASGETVTVDTVSHEGLLEDQGSDPRAYFGSHGVPPESVLEDAVTITAEVARDPDRDGPHVVTGPVRVEGAEPGDLLKVTVERLRPRVPYGVVSNRHGKGALAGELPRGAHNVSVFCPVADRAGRSVGTLPVTDGGPRVVEFPLAPFLGIMGVAVPGDERPHSVPPGPHGGNIDINLLVEGAELYLPVQVAGALAYVGDPHFAQGDGEVALTALEASLRATLRFDVVPRAEALAAFGEVTGPLARAGGYLVPTGLDEDLDEAMRRAVRAAIALVRARWGLDEHLAYAYLSAATDFDVSQVVDVVCGVHARIRESDFDGVPGTGGAEHPSDGSES				NA	NA	NA	NA	NA
AK001_03175	1635	QRSL1_4		Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrial	ATGAGCGACATCCGGGGTGCCGACACGGTGCCGGACGACCTGCTCGAGGCGTTCACGAGCTACGAGGCGGCGGTCGTGGCGAACGACCTCGACCACCTCGACGCCGCGTTCGCGCCGGGGGAGTCCACCCTGCGCGGCGACGCCGCCGGGCTGCTCGTCGGCCACGAGGCGATCTCCGCGTTCCGCGGGACCCGCGGCGGCGTGCCCCCGCGTCGGATCGAGCGCGTCGAGCACCGCGAGCTCGGCCCGGACGTGGCGCTGCTGGTCTCCGTCTCGCGCTACGACTCCGGCGGCACCGGGCTGCAGACGCAGGTGTGGCAGCGCGTCGACGGCACGTGGCTCATCACCGCCGCGCACGTGACCCCGCGCGCGACGGCGCTGGACCGGCGGGTCTGGCGCACGGTCGGCGACCCGATGTACCAGGGGGCGTGGGAGGGGCCGCTGGCCGGGCTGACCGTGGCCGTCAAGGACCTCTTCGCGATCTCCGGGTACAGGATCGGCGCCGGGAACCCCACGTTCCTCGACGACGGTCGCGCCGAGACCTCGACGGCCCCGGCCGTCTCCGACCTGCTGCGCGGCGGCGCCTCGCTGCGCGGCATCGCCCGTACCGACGAGCTCGCCTACTCGGTCGCGGGCGACAACGTGCACTACGGCACGCCGCCCAACGGTGCGCTGCCGGGTGCGCTGCCGGGTGGCTCCTCGAGCGGGCCGGCCTCCGCCGTGGCGACCGGCCAGGCCGAGGTCGGACTGGCCACCGACACCGCGGGCTCCGTCCGCGTCCCCGCCTCCTACCAGGGGCTGTGGGGGCTGCGCACGACGCACGGGCTGGTGCCGCGGCAGGGGATGCTGCCGCTGGCGCAGTCCTTCGACACGGTCGGCTGGCTCACGCGCGACGGCGGCACGCTGCAGCGGGTCGCCGACTGGTGCCTGAGCTACGACGGCTCGGAGTCGACCGAGAACGTCTACGGCGAGTCCGGGCACGACCTGCCGTGGCGGTTCGTGGTGCCCACCGAGCTGCTCGCCGTGGCCGAGCCCGACACCCGGGCGGCCCTCGAGGAGCTCGTCGACACGCTCGCACGGCACCCCGAGGCGCCGGCGGTCGGCACCGGCGAGGTCGGGGACCTCGACGAGTACCTCACGGCGTTCCGGACCGTCCAGGGTGCCGAGGCGTGGCGCAACCACGGAGCGTGGCTGCGCCGGCATCCCGACGCCGTCGGCCCCGCCGTCGCCGAGCGCTTCCGGGCCGCGGCGGCGGTGACGGCCGAGCAGGAGTCCGCCGCACGGGCCGCGCTGTCGCCCCTCGCCGCGCGCGTGCACGCCCTCGTCGAGGACGCGGTCCTGCTCCTGCCCACCGTCCCCGGGCCGGCGCCGCTGCGCACGAGCGGCGGCGAGCGGGTCGACGCCGTCCGCGCCGCGACGCTGCGCCTGACCACCCCCGCCGCGGTCGCCGGGCTGCCGGCGCTGTCCGCGCCCCTGCTCACCGTCCCGTCGCTGCTCGGCCCCGCGCCCGTCGGGGTGTGCCTCGTCTCGCGCGCCGGCACCGACATCGCCCTCGTCCGCCTGGCCCGTCGGCTCGCCCGCCTCCTCGGGCCCGGCGACGGCGGCCCCACCACGACCGGAGGAACGATCGCATGA	MSDIRGADTVPDDLLEAFTSYEAAVVANDLDHLDAAFAPGESTLRGDAAGLLVGHEAISAFRGTRGGVPPRRIERVEHRELGPDVALLVSVSRYDSGGTGLQTQVWQRVDGTWLITAAHVTPRATALDRRVWRTVGDPMYQGAWEGPLAGLTVAVKDLFAISGYRIGAGNPTFLDDGRAETSTAPAVSDLLRGGASLRGIARTDELAYSVAGDNVHYGTPPNGALPGALPGGSSSGPASAVATGQAEVGLATDTAGSVRVPASYQGLWGLRTTHGLVPRQGMLPLAQSFDTVGWLTRDGGTLQRVADWCLSYDGSESTENVYGESGHDLPWRFVVPTELLAVAEPDTRAALEELVDTLARHPEAPAVGTGEVGDLDEYLTAFRTVQGAEAWRNHGAWLRRHPDAVGPAVAERFRAAAAVTAEQESAARAALSPLAARVHALVEDAVLLLPTVPGPAPLRTSGGERVDAVRAATLRLTTPAAVAGLPALSAPLLTVPSLLGPAPVGVCLVSRAGTDIALVRLARRLARLLGPGDGGPTTTGGTIA	PGPT0006115_1167	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426	NA	NA
AK001_03176	1260	pucG	COG0075	(S)-ureidoglycine--glyoxylate transaminase	ATGACCGCCGCCCTGCCTGGTTCGAGCCTGCCCCGACCGGGCCTGCCCGGCCCGATCGAGCCGCCCGCCCGCCTGCTCATGGGTCCCGGCCCCGTGTCGGCGTACCCCAGCGTGCTGCGCGCGATGTCGGCGCCGCTGGTGGGCCAGTACGACCCCTTCATGACGGCGTCGATGACCGAGACCCAGGAGCTGTACCGCCAGGTCTGGGGCACGACGAACGAGGCGACCGTGCTCGTCGACGGCACCTCGCGCGCCGGGATCGAGGCGGCGATCGTCTCGCTGGTGCGCCCGGGGGAGCGGGTGCTGGTGCCGGTCTTCGGCCGGTTCGGCCTGCTGCTCGCCGAGATCGCCGAGCGGGCGATGGCCGAGGTGCACACCATCGAGGTGCCGTGGGGGCAGGTCGTGCCCGTCTCGATGATCGCCGAGGCGATCGAGCGGGTGCGCCCCACGCTGCTGGCCCTGGTCCAGGGCGACACGTCGACCACGATGAACCAGCCGCTCGACGAGGTCGGGGCGCTCTGCGAGAAGCACGGCGTGCTGTTCTACTCCGACGCCACCGCCTCGCTGGGCGGCAACGCCTTCGAGGCGGACGCGTGGGGGCTCGACGCCGCCACCGCCGGTCTGCAGAAGTGCCTCGGCGGGCCGTCCGGGTCGGCGCCGATCACGCTGTCGCCCCGCGCCGAGGAGGTCGTGCGGTCGCGCAAGCGGATCGAGGCCGGGATCCGCGAGCCGGACGACCCCGAGGCGACCGACTTCGTGCGCTCCAACTACTTCGACCTCGGCATGATCCTGGACTACTGGGGGCCGCGTCGTCTCAACCACCACACCGAGGCCACGTCGATGCTGTACGCGGCGCGCGAGTGCGCCCGCGTGATCCTGGCCGAGGGGCGGGACGCCGTCGTCGAGCGGCACCGGCTCGCCGGCGAGGCGATGCTCGCGGGCGTGCGCGGCCTCGGGCTGCAGGTCTTCGGCGACGTCGCGCACAAGATGCACAACGTCGTCGCCGTCGAGATCCCCGAGGGGGTCCCCGGCGATGCCGCCCGTGCCGCGCTGCTGGCCGACTACGGGATCGAGATCGGGACCTCCTTCGGTCCGCTGCACGGACGGGTGTGGCGCATCGGCACCATGGGCTACAACGCTCGGCAGGACGCCGTCCTGGCCACGCTGGCCGCGCTCGAGGACGTGCTGCGCCGGTTCGGGTGCTCCGTGCCCGCCGGGGGCGGGACCGAGGCGGCCGCCGACGTCTACCGAGGCGCGTGA	MTAALPGSSLPRPGLPGPIEPPARLLMGPGPVSAYPSVLRAMSAPLVGQYDPFMTASMTETQELYRQVWGTTNEATVLVDGTSRAGIEAAIVSLVRPGERVLVPVFGRFGLLLAEIAERAMAEVHTIEVPWGQVVPVSMIAEAIERVRPTLLALVQGDTSTTMNQPLDEVGALCEKHGVLFYSDATASLGGNAFEADAWGLDAATAGLQKCLGGPSGSAPITLSPRAEEVVRSRKRIEAGIREPDDPEATDFVRSNYFDLGMILDYWGPRRLNHHTEATSMLYAARECARVILAEGRDAVVERHRLAGEAMLAGVRGLGLQVFGDVAHKMHNVVAVEIPEGVPGDAARAALLADYGIEIGTSFGPLHGRVWRIGTMGYNARQDAVLATLAALEDVLRRFGCSVPAGGGTEAAADVYRGA	PGPT0021460_305	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021460-pucG-K00839	NA	NA
AK001_03177	1329	amaB_2		N-carbamoyl-L-amino acid hydrolase	ATGGCAGCGCTGCTGCAGACCGCCCCCGACACCGTCGCCGCGGCCGCCCGCCGGGTGATGGCCCGCTGCGACGAGCTCGCCCGGATCAGCGCCACGGCCGGGGGCATCGAGCGCGTCTACCTCTCCCCGGAGCACGCCCGCGTGAACCGGCTGGCCGCGCAGTGGATGCGCGAGATCGGCATGACCACGCGCCTCGACGCCGCCGGCAACCAGGTCGGGCGGCTGGAACGCTCGACCGCGTCCGGGGCGCCCGACCTCGACGCGCCCGCCCTCGTGCTCGGGTCCCACCTGGACACCGTGCCCGACGCCGGGCGCTACGACGGGATCGTCGGCGTCCTCATGGGTCTGGAGGTCGTGCGGATGCTGCGCGTGCCGGGCCCCGACGGGACGGGGTGGCGGTCCCCGCTGCCGTTCGCCCTGGAGGTCGTCGCCTTCTCGGACGAGGAGGGCACCCGGTTCGGCAAGGCGCTGCTGGGCTCCTCCGCCGTCGCGGGCACCTGGGACCCCGACTGGTGGGACCTCACCGACGCCGACGGCGTCACCCTGCGCGAGGCGTTCGCCGAGTTCGGCCTCGACCCCGGTCGCGTCGGGGAGGCGGCCCGGCGGCCCGAGGAGCTCGCCGGCTACCTCGAGGCCCACATCGAGCAGGGCCCCGAGCTCGACGAGCGGGGGGAGTCGCTCGCCGTCGTGTCCTCGATCGCGTCCGCCCGACGGTTCCAGCTCGTCGTCGAGGGGGAGGCCCGGCACGCCGGCGGGACCCCGTACGACCGCCGTCGCGACGCGCTCCTCGGGGCGAGCGAGGCGGCGCTGGCGATCGAGCGCGTCTGCCGCGCCGAGCACCACATCATCGGCACGGTCGGGCAGCTCGAGGCCTACCCGGGGGCGGTGAACATCGTGCCCGGGGAGGCGCGCCTCAGCCTCGACCTGCGCGGTGAGTTCGACGACGCCCGGGACGACGTGTGGACGTCGATCGAGCGTGAGCTCGACGTGATCACGGGGCGTCGCGGCCTGCGGTGGCACGCCCGCGAGGTCCACAGCGCGCCCGCCGTGTTCTGCGCGCCGCTGCTGCAGGACGTCGTCCGTGAGGGCATCGTCTCGACCCTCGGCCGCGGCGTCGACGACCCGGCGACGATCTTCAGCCGTGCGGGCCACGACGCCATGGCGATCGGGTCGGTGACCGACGTGGGGATGCTGTTCCTGCGCAACCCGGACGGCATCAGCCACCACCCGGACGAGGCGGTGTCCGCCGGGGACGTCGCGTACGGCACCCGCGCGCTGGCGGAGTCGGTGCTGCAGCTGGCGGCCGACCGGGCGGTGTCGGCGGGCTGA	MAALLQTAPDTVAAAARRVMARCDELARISATAGGIERVYLSPEHARVNRLAAQWMREIGMTTRLDAAGNQVGRLERSTASGAPDLDAPALVLGSHLDTVPDAGRYDGIVGVLMGLEVVRMLRVPGPDGTGWRSPLPFALEVVAFSDEEGTRFGKALLGSSAVAGTWDPDWWDLTDADGVTLREAFAEFGLDPGRVGEAARRPEELAGYLEAHIEQGPELDERGESLAVVSSIASARRFQLVVEGEARHAGGTPYDRRRDALLGASEAALAIERVCRAEHHIIGTVGQLEAYPGAVNIVPGEARLSLDLRGEFDDARDDVWTSIERELDVITGRRGLRWHAREVHSAPAVFCAPLLQDVVREGIVSTLGRGVDDPATIFSRAGHDAMAIGSVTDVGMLFLRNPDGISHHPDEAVSAGDVAYGTRALAESVLQLAADRAVSAG	PGPT0000875_151	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0000875-allC-K02083	NA	NA
AK001_03178	600			hypothetical protein	ATGGACCCCCGTCAGCGGCGCACCCGGGCGAGCCTGCGGGCCGCGATCCTCGAGCTCGCTGGTCAGCGGCCCGTCGGCGAGCTCACGGTCGCCGAGGTCGCCCGCGCCGCCGGTGTGACGCGTGACACCTTCTACCGCCACACGACCAGCCCCACCGAGCTGCTCGCCGGCGTCCTCGAGGAGGAGCTGCGGCGGATCGAGCCACCCCAGCACGGCGAGCCCGACGAGTTCGTGCGCGCCGAGACGCAGCTGCTGCACCACGTCGTCGACCACCGGGCCATCTACCGCGCCGCGCTCGTCGACGGCGCGGACGGCCGCCTGCGCGAGGTCCTGCACACCGTCATCGCGGCGCGCCTCGACGAGTACCTGCGCGCGAACCCGCAGGCTGCGCCCGCAATCCCCGGCGGGCTGCCCGCCACGGACGCGCGCGCCGTGCTGGTCGCCTACTCCGCGGCCGGCACCGTGGGCGCGATCAGCGCCTGGCTGCGCGCCGACGGCGACCGGGCCGACATCCCGGCGCTGGCCCGCACCATCGTCGCCGGCGGCCCCCCGGCGTGGTACGAACCCCCGGCGCCGACAGGACAGGGTGCGCACCCCTGA	MDPRQRRTRASLRAAILELAGQRPVGELTVAEVARAAGVTRDTFYRHTTSPTELLAGVLEEELRRIEPPQHGEPDEFVRAETQLLHHVVDHRAIYRAALVDGADGRLREVLHTVIAARLDEYLRANPQAAPAIPGGLPATDARAVLVAYSAAGTVGAISAWLRADGDRADIPALARTIVAGGPPAWYEPPAPTGQGAHP				NA	NA	NA	NA	NA
AK001_03179	1056			D-arabitol-phosphate dehydrogenase	ATGAAGGCCGCAGTGCTCCACGCCCAGGAAGACCTCCGCGTCGAGGACGTCGCCGAGCCCACCCCCGGGCCCGGTCAGGTCAAGCTCCGCAACGCCTACGCGGGCATCTGCGGCTCGGACCTCCACGCGTACTTCGACCCGGCGGGCGCCGGACTCGACCTCGAGAACCCGCACCCGGTGACGGGCTCCACGCCGCCCCAGATCCTCGGCCACGAGTTCTCCGGCACCGTCGCCGAGGTCGGCGAGGGCGTCGAGGGCCTGGCCGTCGGCGACCGCGTCGCCGTCTGGCCCGTCTACTCCTGCGGCGAGTGCACCGCGTGCCGCCGCGGCAGCCCGAACGTCTGCCGCACCATCGGCTTCCACGGCCTGACGTCGCACGGCGGCGGCATGGCCGAGTACACGACCGTCCAGGCCGCGAAGTGCCACCGGCTCCCGGAGAACGTCGACCTCAAGCTCGGCGCGCTCGTCGAGCCCATGGCCGTCGCCTGGCACGCCGTCGACCGGGCCCCCGTCCAGGCGGGCGGGAGCGCCCTCATCGCCGGCGCCGGCCCGATCGGCATCGGCCTGTTCTTCGCGCTGCGCGCCCGGGGTGTGGAGAACATCGTGGTCTCCGAGCCCAGCGCCGAGCGTCGCGCGGCGATCGCCGCCGTCGGCGCCACGAACGTCGTCGACCCGATGACCGAGGACCTCGCCGCCCGCGTGGCCGAGGCCACCGGTGGCGACGGTGTCGACGTCGCGTACGATGCCGCGGGCGTCGGCCCGGCCGTCACGTCGAGCCTGGCCTCGCTGACCCCGGGCGGCACCGTGCTCGTCGTCGCGATCCACGAGCGGACGATGGAGATCCACCCGACGGCCCACCTCGTCATGGGAGAGACCACCATCACCGGTGCGCTCGGCCAGCTGCCCGCGGACTTCGACGCCGTCATCGAGGCGATGTCGAAGGGCCTCTACGAGGTGTCCGAGGCCTGGGTCTCCGAGGTCTCGATCGACGAGGTCCCCGAGGCGATCGCCGACCTGCGTGCCGGCAAGCGCATGAAGGTGCTCGTCCGGGCCTGA	MKAAVLHAQEDLRVEDVAEPTPGPGQVKLRNAYAGICGSDLHAYFDPAGAGLDLENPHPVTGSTPPQILGHEFSGTVAEVGEGVEGLAVGDRVAVWPVYSCGECTACRRGSPNVCRTIGFHGLTSHGGGMAEYTTVQAAKCHRLPENVDLKLGALVEPMAVAWHAVDRAPVQAGGSALIAGAGPIGIGLFFALRARGVENIVVSEPSAERRAAIAAVGATNVVDPMTEDLAARVAEATGGDGVDVAYDAAGVGPAVTSSLASLTPGGTVLVVAIHERTMEIHPTAHLVMGETTITGALGQLPADFDAVIEAMSKGLYEVSEAWVSEVSIDEVPEAIADLRAGKRMKVLVRA	PGPT0008200_631	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008200-butB-K00004	NA	NA
AK001_03180	804	ribX_2		Riboflavin transport system permease protein RibX	ATGACCACCGTGTCCTGGCGCCCCGTGGGGCGCGCCGTCCTCAACGCGCTGCTGACCCTGGTGATCGTGCTGGCCCTGTGGTGGGCGGTCGTCAACCTCACCGGCATGTCCCCCTACGTCGCCAAGGGCCCGGCCGACGTCTGGGAGTTCCTCGTCTCCGGCGAGGAGGCCGTGGCGAACCGTGCGGACCTGACACCGCTGCTGACGCAGACCCTGCAGGACGCCGCACTCGGCTTCGTCGCCGGGATGGGCGTCGCCGGCGTCCTCGCCGTGGCGTTCTCGCTGTCGCGCACCGTCGAGGCCGGTGTCATGCCGCTGGCCCTGCTGCTGCGGGCGATCCCGCTGGTGTCGATCGCGCCGGTGATCATCCTCATCACGGGGCGCGGCACCCAGGCCTCGGTCGCCGTCATCGGCTCGATCGTCGTGCTGTTCCCGGCGCTGGCGTCGATCCTGTTCGGTCTCAACCGGGCGAGCGTGCAGAGCCTGGACCTGGTGCACGTCTACGGCGGCTCCCGCCTGACCGCGATGCGCAAGGTCAACATCCCCGGCGCCCTGCCGTCGCTGTTCGCCGCGGCACGGGTCTCCGTCCCCGGTGCGGTCACGGGCGCGCTGCTCGCCGAGTGGCTGTCGACGGGCACGGGGATCGGCGGGTCGATCGTGAAGTTCACGGCGTCCGCCCGCTTCGACGACCTGTGGGCGTCGGTCGCGCTCATCACGATCGTCACGCTGCTGCTCTACAACGTGGTCCAGGTGATCGAGAACGTGGTGCTGACCCGCATGGCGATGACGTCCGCGCAGCGCTGA	MTTVSWRPVGRAVLNALLTLVIVLALWWAVVNLTGMSPYVAKGPADVWEFLVSGEEAVANRADLTPLLTQTLQDAALGFVAGMGVAGVLAVAFSLSRTVEAGVMPLALLLRAIPLVSIAPVIILITGRGTQASVAVIGSIVVLFPALASILFGLNRASVQSLDLVHVYGGSRLTAMRKVNIPGALPSLFAAARVSVPGAVTGALLAEWLSTGTGIGGSIVKFTASARFDDLWASVALITIVTLLLYNVVQVIENVVLTRMAMTSAQR				NA	NA	NA	NA	NA
AK001_03181	810			hypothetical protein	ATGTCCCGGCGTACACGGATCCCCGGCTGGCTCGCGGGCGTCATCGGCGCGGTCGCGCTGGTGGGCGCCTGGTGGCTGTTCTCGGCCACGATCTTCCAGCCGCCGCCCGGCACCACCTTCACGCCGGTCCCCTCCCCGTGGGTGGTGTTCTCCACGATCGCCGACGACGGTCTGGCGGCCTACCGGGGCGTGTTCTCGGTGACGATCACCGAGGCGCTCATCGGCTTCGCCTGGGGCAACGGCATCGCCCTGCTGCTCGCCGCGACGGTGCTGCTCGCGCCCCGCATCGAGACGGTCGTGACCCAGATCGCCGTGGTCAGCTACTGCCTGCCGGTGGTGGCCGTCGGCGGCATCGCCATCGTGGTCCTCGGCGGGGCGCCGCGCCCGGGCGAGCCGAGCGCGACGGCGATCTTCCTCGCGGCCCTGGCGGTCTTCTTCACGACCGTGGTCGGCGCGCTGCTGGGGTTCAAGTCGGCCGACAAGGCGAGCCTCGACGTCGTGCGCGTCTACGGCGGGACCCGGTTCACGCAGCTGCGCAAGGTGCGGCTCATCGCCGCGACCCCCGCGATCCTCAACGCCTTGCAGATCGCCGTGCCGTCGGCGTTCCTCGGCGCGGTCCTCGGCGAGTACATGGGCGGGATCGACCAAGGCGTCGGCATCACCCTGATCCGCCTGCAGGGCGAGCTCGACTCGCCCCGCGTGTGGGCCGTCTTCCTGCTCACCGCCGCCGTCGCCCTGATCGGCTACGGCATCGTCGGCCTCCTCTCGCGCGTGGCCACCCCGTGGGTGGCAGGACGGAGCACGTCATGA	MSRRTRIPGWLAGVIGAVALVGAWWLFSATIFQPPPGTTFTPVPSPWVVFSTIADDGLAAYRGVFSVTITEALIGFAWGNGIALLLAATVLLAPRIETVVTQIAVVSYCLPVVAVGGIAIVVLGGAPRPGEPSATAIFLAALAVFFTTVVGALLGFKSADKASLDVVRVYGGTRFTQLRKVRLIAATPAILNALQIAVPSAFLGAVLGEYMGGIDQGVGITLIRLQGELDSPRVWAVFLLTAAVALIGYGIVGLLSRVATPWVAGRSTS	PGPT0001145_3920	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
AK001_03182	849	nrtD	COG1116	Nitrate import ATP-binding protein NrtD	ATGAGCCACGACACCACGTCGGGTGCCCGCCCCTCGGGGCTGCCGCAGGAAGCTGCGGCAGCCCCGGGGGGCACCGGCATCCACATCGACGGACTGACCAAGACGTTCCACACCGGTCGCCGCAAGACGGTGACCGCGCTGCAGGACGCCCACCTGCACACCGACAAGGGCTCGTTCCTCGCTCTGCTAGGCCCCTCGGGCTGCGGCAAGTCGACGATCCTGCGGGTGCTGGCCGACCTCGAGCACCCCACCGCCGGTGAGGTGTTCGTCGACGGCAAGACGCCGGCCCAGCTGCGCCGCGACAGCGAGCTCGGCATCGCGTTCCAGGACCACGCCCTGCTGCCGTGGCGCAGCGTGCTCACCAACATCCGCCTCGTCTTCGAGGTCGCCGGCCGCAAGGTCGACAAGGCCTACGTCGAGGAGCTCATCGAGCTCGTCGGGCTGACCGGGTTCGAGAAGGCCAAGCCCGCCCAGCTCTCCGGCGGCATGCGCCAGCGCGTCTCGATCGCGCGCGCCCTGGCCCTCAAGCCGTCCGTGCTGCTCCTGGACGAGCCGTTCGGCGCGTTGGACGACATGACGCGCCAGAGCCTCAACCTGGAGCTGCTGCGCATCTGGACCGAGAAGCCGGCCACGACGCTGCTCGTCACCCACGGCATCTCCGAGGCGATCTTCCTGTCGGACCGGGTCGCGGTGATGTCGGCCCGCCCGGGACGCATCAAGGAGATCATCGAGGTCGACCTCCCGCGCCCGCGCACCCCCGAGATGATGCGCACCCCGGAGTTCCACGCGCTCGTGGACCGCGCCTCCGAGATCCTGTTCGGTGCGCACGGCGCCGCGGCGGAGGCCTGA	MSHDTTSGARPSGLPQEAAAAPGGTGIHIDGLTKTFHTGRRKTVTALQDAHLHTDKGSFLALLGPSGCGKSTILRVLADLEHPTAGEVFVDGKTPAQLRRDSELGIAFQDHALLPWRSVLTNIRLVFEVAGRKVDKAYVEELIELVGLTGFEKAKPAQLSGGMRQRVSIARALALKPSVLLLDEPFGALDDMTRQSLNLELLRIWTEKPATTLLVTHGISEAIFLSDRVAVMSARPGRIKEIIEVDLPRPRTPEMMRTPEFHALVDRASEILFGAHGAAAEA	PGPT0001140_1431	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049	NA	NA
AK001_03183	1113			hypothetical protein	ATGGCAGTCCACAGCAACCTCCCACGCCGCGCCCGGACGGGCGCCGTCGTCGCGGCCGTCGCCGCGAGCACCCTCGCACTCGCCGCCTGCGGCGGCGAGGACACCGCGAGCGGCTCCGGCGAGTCCGAGGACGCCTCGTACGGCGAGATCAGCGTCCAGTACTCCTGGATCAAGAACGAGGAGTTCGCCGGCGAGTTCTACGCCTACGAGAACGGCTACTACGACGAGGCCGGTTTCGACGAGGTCGTGGGCATCTCCGGCCCGGACACCGGCGTCGCCAAGCTCCTGTCCGGCTCCGTCGAGGTCGCCCTGAGCGACGCCGCCTCGATCGGCGCGGCCATCGCCGAGCAGGACGCGCCGCTGAAGATCATCGGCGCCACCTTCCAGAAGAACCCCTTCACGATCCTGTCGCTGGCCGACGGCGCCGACATCTCCTCCCCGGAGGACCTCGTCGGCAAGACGATCGGCGTGCAGGACTCCAACTCCTCGGTGTTCGCGGCGCTGCTGCAGGCCAACGGGATCGACGAGGGCGACGTGACCGTCGTGCCCGTCGACTTCGACCCGACGCCGCTGATGAACGAGGAGGTCGACGGGTTCATGGCCTACCTCACCAACGAGGCCCTGACCGTCGAGCTGGCCGGGTACGACGTCACCAACCTCGCCTACGCCGAGAACGGCGTGCCGTACGTGGCCGAGACGTTCAGCGTCACCGACCAGTACCTCGAGGAGAACCCCGACCTGCTCAAGGCGTTCCTCACCGCCGAGATCAAGGGCTGGACCGACGTCTTCACCGAGCCCGCGGAGGACACCGTGGCGCTCGTCGAGGAGTACTACAACGCGGCGGCGGCCGAGTCCGAGGACGGTCTCGAGGCCGTGTTCGGGGCCCTCGACCCGGTCAAGACCGAGATGGGCCTGGAGGCGGAGAAGGAGCTGATCTCCACCCCGGAGACCGAGGAGAACGGCCTGTTCACGATCTCCGACGAGCTCCAGCAGGAGACCGTCGACTCCCTGGCCGCGGCCGGCTGGGACGTGAGCGTGGACGACCTCTTCGACACCACGCTCATCGACGAGATCTACGCCGAGCAGCCCGAGCTCGTCGACTACCTGCCGTAG	MAVHSNLPRRARTGAVVAAVAASTLALAACGGEDTASGSGESEDASYGEISVQYSWIKNEEFAGEFYAYENGYYDEAGFDEVVGISGPDTGVAKLLSGSVEVALSDAASIGAAIAEQDAPLKIIGATFQKNPFTILSLADGADISSPEDLVGKTIGVQDSNSSVFAALLQANGIDEGDVTVVPVDFDPTPLMNEEVDGFMAYLTNEALTVELAGYDVTNLAYAENGVPYVAETFSVTDQYLEENPDLLKAFLTAEIKGWTDVFTEPAEDTVALVEEYYNAAAAESEDGLEAVFGALDPVKTEMGLEAEKELISTPETEENGLFTISDELQQETVDSLAAAGWDVSVDDLFDTTLIDEIYAEQPELVDYLP				NA	NA	NA	NA	NA
AK001_03184	2832			hypothetical protein	ATGAAGCTGCACGTCAACGGCACCGGCCACGACACCGACCCCCGCCCCGGGCAGTGCCTGCGCACCCTGCTGCGCGAGCACGGCCACACCGAGGTCAAGAAGGGCTGCGACGCCGGGGACTGCGGGGCGTGCGCCGTCCTGCTGGATGGCGAGCCCGTGCACTCGTGCATCGTGCCCGCCCCGCGCGCCGAGGGCGCGCAGGTCACCACCGCCGCCGGGCTCGCCCCGGGCGACGATCTGCACCCCGTGCAGGAGGCGCTGGTCGAGGAGTTCGGCTTCCAGTGCGGGTTCTGCACGCCGGGCATGAGCGTCACCGCGTCCTGCCTGACGGCCGACGACCTGCCCGACCTCGACCGGCGGCTCAAGGGCTCGCTGTGCCGCTGCACCGGCTACCGCCCGATCCGCTCGGCGATCCGCCGGACCCTCGGCGAGAGCGACGCGCCGCCCTCGCCGGTCGACCCGGCCACGAGCGGGCCCGCGACCACGGGCGAACCCGGCACCGGGGACGACGACGGCACCCCGGCGGCCGGCGTCGGACGGTCGGTCTCGCCCGAGCCCGCGCGCCGCGTGGTCCAGGGCCTGGAGCCGTACACCTTCGACACCCCCGAGGCGACGGGCACGCTGGTGCTGCGCGTCCTCGGCTCGAAGCACGCGCACGCCCGGATCACCGCGATCGACACCGCCGCCGCCCGCGCGCTGCCCGGCGTCGTCACCGTCCTCACCCACGCCGACGCCCCCGCGACACGCTTCTCCACCGCCCGGCACGAGCACCGCACCGACGACCCCGACGACACCCGGGTGCTCGACGACACGGTCCGCTTCGTCGGCCAGCGCGTGGCCGCCGTCGTCGCCGAGACCGCCGAGATCGCCGACGCCGCGCTCGGCCTGATCGACGTGACCTACGAGCCCCTGCCGTTCGTCCTCGACGCCGAGGAAGCGCGGCGGCCGGACGCCCCGGCGGTCCACCCGGACCGGCCCGTCGCCGTCCAGGCCGACCCGGACCGCCCGAACGTGCTCGGCAGCCTGCACGCCGGCATCGGCGGCGACGTCGACGCGGCGCTCGCGGCGAGCGCCGTCACGGTCGGCGGGACCTGGCACACCGGACGGGTGGCGCACGCCCAGCTCGAGACCCACGGCGCGCTCGGCCGGCTCGACGACGACGGACGGCTCGTGATCCGCTCCAGCACCCAGGTGCCGTTCCTCACCCGGAACGAGCTCGCGCACGTCTTCGACCTGCCCCGGGACCGCGTCCGCGTGCACGCCGCTCGGGTCGGCGGCGGGTTCGGCGGCAAGCAGGAGATGTTCGTCGAGGACGTCGTGGCGCTCGCGGTGCTCACCACCGGCCGCCCGGTGTCCTACGAGTTCTCCCGCACCGACGAGTTCCGTCGTGCGGCGCTGCGCCACCCCTTCCGGGTGGAGGTCTCCCTCGGCGCGACGGCCGACGGGACGCTGACGGCGATGAAGGTCGACGTGCTGAGCAACACCGGCGCCTACGGCAACCACGGCATCGGGGTGCTGTTCCACTCGGTGGCCGAGTCGATCAACGTCTACCGCTGCGCGGTCAAGCGCGTCGACGCCGAGTCCGTCTACACCCACGCCGTGCCCTCCGGGGCGTTCCGCGGCTACGGGCTGGGCCAGGTGATCCTCGGCGTGGAGTCGGCGATGGACATGCTGGCGCAGCGGCTCGGGATCGACCCGTTCGAGCTGCGCCGTCGCAACGCGGTGCGCGACGGCGACCCGCTGCTGACCGTCGACGACGAGCCCGAGCCGGACCTGCGGTGGGGCAGCTACGGGCTGGACCAGTGCCTCGACCTCGCGCAGGACGCGCTGCGGCGCGGCAACGGCGTCGAGGCCCCGGCGGGCTGGCGCACCGGGGAGGGCATGGCGATCGCGTTCATCGCGGGGGCGGCGCCCGGCGGGCACCATGCGCACGCCGCGGCGTCGCTGCGCCCGGACGGCACGTTCGCGCTGTCGGTCGGGACGGCCGAGTTCGGCAACGGCACCAGCACGGTGCACCGGCAGATCGCGGCGTCGACCCTGGCGGCGACGCCGGACCGGATCGTGCTGCGCGCCGCGGACACCGACCTGGTGGACCACGACACCGGTGCGTTCGCCTCGGCGGGGACGGTGGTGGCGGGCAAGGCGCTGGCGCGGGCGTGCACCGCGCTGCGCGGCCTGATGATCGACGTCGCGCGGCAGGTGTCCGACGGCGACGCACCGGCGGGGGACGCGGCGCGGCCGGCCGAGCTCGTCGCCGAGGGCGTCCGCGTGGGCGACCGGCTCGTCGGGTTCGCCGAGATCGTGACCGCTGCCGGGGACCCCGAGAGCCGGGAGCTGACGACCCACGGCAGCGACGACGGCAAGGAGCGCAGCCTGGCCTTCAACGTGCACGCGGTGCGCGTCGCCGTCGAGGAGGAGACCGGGTCGGTGCGGGTGCTGCAGTCCGTGCAGGCCGCCGACGCCGGGTTCGTCATGAACCCGGCCCAGTGCCGCGGCCAGGTCGAGGGAGGTGCGGCCCAGGGTCTGGGCAGCGCGCTGTACGAGGAGGTGCTGGTCGACGACCGCGGCGCGGTGACCAACCCGGTGTTCCGCACCTACCGTGTCCCGCAGTCCGCCGATATCCCGGACACCGAGGTGTACTTCGCCGACACCGTCGACACGATCGGGCCGTTCGGCGCGAAGTCGATGAGCGAGTCGCCGTACAACCCGGTGGCGCCCGCCGTCGGCAACGCGATCGCCCGCGCGCTGGGACGGCGGCCGTTCCGTCAGCCGTTCACCCGCGAACGGGTGTGGCGGCTGGCGCAGGAGGCACCCGAGCCCCGGGTGAAGTGA	MKLHVNGTGHDTDPRPGQCLRTLLREHGHTEVKKGCDAGDCGACAVLLDGEPVHSCIVPAPRAEGAQVTTAAGLAPGDDLHPVQEALVEEFGFQCGFCTPGMSVTASCLTADDLPDLDRRLKGSLCRCTGYRPIRSAIRRTLGESDAPPSPVDPATSGPATTGEPGTGDDDGTPAAGVGRSVSPEPARRVVQGLEPYTFDTPEATGTLVLRVLGSKHAHARITAIDTAAARALPGVVTVLTHADAPATRFSTARHEHRTDDPDDTRVLDDTVRFVGQRVAAVVAETAEIADAALGLIDVTYEPLPFVLDAEEARRPDAPAVHPDRPVAVQADPDRPNVLGSLHAGIGGDVDAALAASAVTVGGTWHTGRVAHAQLETHGALGRLDDDGRLVIRSSTQVPFLTRNELAHVFDLPRDRVRVHAARVGGGFGGKQEMFVEDVVALAVLTTGRPVSYEFSRTDEFRRAALRHPFRVEVSLGATADGTLTAMKVDVLSNTGAYGNHGIGVLFHSVAESINVYRCAVKRVDAESVYTHAVPSGAFRGYGLGQVILGVESAMDMLAQRLGIDPFELRRRNAVRDGDPLLTVDDEPEPDLRWGSYGLDQCLDLAQDALRRGNGVEAPAGWRTGEGMAIAFIAGAAPGGHHAHAAASLRPDGTFALSVGTAEFGNGTSTVHRQIAASTLAATPDRIVLRAADTDLVDHDTGAFASAGTVVAGKALARACTALRGLMIDVARQVSDGDAPAGDAARPAELVAEGVRVGDRLVGFAEIVTAAGDPESRELTTHGSDDGKERSLAFNVHAVRVAVEEETGSVRVLQSVQAADAGFVMNPAQCRGQVEGGAAQGLGSALYEEVLVDDRGAVTNPVFRTYRVPQSADIPDTEVYFADTVDTIGPFGAKSMSESPYNPVAPAVGNAIARALGRRPFRQPFTRERVWRLAQEAPEPRVK	PGPT0004835_214	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_SELENIUM_RESISTANCE	SELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004835-xdhD-K12528	NA	NA
AK001_03185	855			hypothetical protein	ATGGACGTCACCTCGGTCACCGGGTTCCGGACCGCCCGCACGCGCGAGGACCTCGCGCTGGACCCCGGGGAGGTCTTCCTCGGGGGCGGCACCTGGCTGATGAGCGAGCCGCAGCCGGGCACCACCGGGTTCGTCGACCTCACCACGCTCGGCTGGCCCGACCTGGAGATCCGCGCCGACGGGCTGCGCATCGCCGCGACCTGCACGATCGCCACGCTGCGGGGCTGGGCCGAGGGACGCGGGCCCGAGCCCGTGCCGGCCGACTGGTCGGCGGTCGCGATGATCCCGGACTCCGCGGACGCGCTGCTGGCCTCCTTCAAGATCTGGAACACCGCCACCGTCGGCGGCAACGTCTGCCGGGCCTTCCCCGCCGCCGCGATGGTCTCGCTCGCGGTGGCCCTCGACGGCGTCGCCGAGGTGTGGACGCCCGACGGCGGCAGCCACCGCCTGCCCGTCGCCGAGCTCGTGACCGGCGCCGGCGAGACCGCCCTGCGCCACGGCGAGGTGCTGCGCGCGATCGAGCTGCCCGCGAGCGCCCTGCGCTCCCGCGCCGGGCTGCACAAGATCGCGCTCGCCGAGCTCGGCCGGTCCGGCGCCGTCGTCTCGGGCCGCCGCGACGCCGACGGCACGTGCGTCGTCGCGGTGACGGCCGCCGTCGGGCGGCCCGCCGTGCTGCGGTTCGCCGCGCTGCCCGACGCCGCCGTGCTCGCTGCCGCCGTCGGCGACCTCGACGGCTACTACACCGACTCCCTCGGCGCGGCCGACTGGCGGCGCGGCGTGAGCATCGTGCTCGCCGAACGCCTGCGCGGCGAGCTCGCCGGCGACCCGGAGCAGGACCCGGAGGACCCCGCATGA	MDVTSVTGFRTARTREDLALDPGEVFLGGGTWLMSEPQPGTTGFVDLTTLGWPDLEIRADGLRIAATCTIATLRGWAEGRGPEPVPADWSAVAMIPDSADALLASFKIWNTATVGGNVCRAFPAAAMVSLAVALDGVAEVWTPDGGSHRLPVAELVTGAGETALRHGEVLRAIELPASALRSRAGLHKIALAELGRSGAVVSGRRDADGTCVVAVTAAVGRPAVLRFAALPDAAVLAAAVGDLDGYYTDSLGAADWRRGVSIVLAERLRGELAGDPEQDPEDPA	PGPT0007270_243	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007270-ygeT|xdhB-K13479	NA	NA
AK001_03186	1359		COG0402	8-oxoguanine deaminase	ATGACCCGCACCATCGTCGAGAACGGCTACGTCGCCACGGTGGACGCCGCCGGCACCGAGCACGCCGTCGGGCACGTCGTGCTCGACGGCGGCGAGGTCGTGGCCGTCGGGGCCGGCCCGGCGCCGGAGCACCTGCGCGCCGGGGCCGAGGTCGTCGACGCCTCCGGCTGCCTGGTCACGCCGGGCCTGGTCAACACCCACCACCACCTGTACCAGTGGCTCACCCGCGGCTACGCCCAGGACTCGATCCTGTTCGACTGGCTCACCGCGCTGTACCCGCTGTGGTCGCGCATCGACGCCGACCTGACCGGGACGGGGGCGGCCGGGGCGATGGCGGTCCTGGCCCGCTCGGGCTGCACCACGGTCGGCGACCACCACTACGTCTTCCCGCAGGGGTCCGGCGACATCGTCGGCGCTCTGGTCGAGGCGGCCTCCCGTGTCGGCGTCCGCCTGCACGCCACCCGCGGGTCGATGGACCTCGGTGCCTCGCAGGGCGGGCTCCCGCCGGACTTCGCCGTCGAGACCACGGACGCGGCCCTCGCGGCGTCCGCCGAGGCCGTCGAGCGGTACCACGACCGCTCCCGCGAGGCGATGGTGCGCATCGCGATCGCGCCGTGCTCGCCGTTCTCGGTCACCCCGGACCTGCTGCGCGAGGCGGCCGTCCTCGCCCGCTCCCTCGACGTGCGCCTGCACACCCACGCCTCGGAGACCGCCGAGGAGGACGCCTACTGCCTCGAGCACTTCGGCACGACACCCACGCAGTACCTGGAGGACCAGGGCTGGCTGGGCCCCGACGTCTGGATGGCGCACGCCGTCCACCTCGACGACCCCGCGATCGAGCGGTACGCCGCCACCGGGACGGGCGTGGCGCACTGCCCGTCCTCGAACGGTCGCCTGGCCGCCGGGATCGCGCCCGTGCGCGCCATGCTCGACGCCGGGGTGGCGGTGGGTCTGGGTGTCGACGGCGCCGCCTCCAACGAGTCGGGCCAGCTCGGCGTCGAGATCCGCGAGTCCGTGCTCATGAACCGGCTGCGCACGGGGGCGGACTCGATGAGCGTGCGCGACGGGCTGCGCCTGGCGACGATCGGCGGTGCGCGCGTCCTGGGACGTCAGGACGAGATCGGCTCGCTCGAGGTCGGCAAGCTGGCCGACGTCGCCGTCTGGCGGGTCGACGGCGTGGAGCACGCCGGCATCCTCGACCCCGTCGCCGCCCTGGGGCTCGGCGCGCTGCCGCCGCTGAAGCGCCTCTACGTGGGCGGCCGCGCCGTCGTCGAGGACGCCGCGCTGGTCACGACCGACGAGCCGACGCTCGCCCACGAGGTGGCGCTCGCCTCGCGCGAGCTGGCCGAGCGGCTCTGA	MTRTIVENGYVATVDAAGTEHAVGHVVLDGGEVVAVGAGPAPEHLRAGAEVVDASGCLVTPGLVNTHHHLYQWLTRGYAQDSILFDWLTALYPLWSRIDADLTGTGAAGAMAVLARSGCTTVGDHHYVFPQGSGDIVGALVEAASRVGVRLHATRGSMDLGASQGGLPPDFAVETTDAALAASAEAVERYHDRSREAMVRIAIAPCSPFSVTPDLLREAAVLARSLDVRLHTHASETAEEDAYCLEHFGTTPTQYLEDQGWLGPDVWMAHAVHLDDPAIERYAATGTGVAHCPSSNGRLAAGIAPVRAMLDAGVAVGLGVDGAASNESGQLGVEIRESVLMNRLRTGADSMSVRDGLRLATIGGARVLGRQDEIGSLEVGKLADVAVWRVDGVEHAGILDPVAALGLGALPPLKRLYVGGRAVVEDAALVTTDEPTLAHEVALASRELAERL				NA	NA	NA	NA	NA
AK001_03187	1107	pucA	COG1975	putative xanthine dehydrogenase subunit A	ATGCTTGAACTTGCCCGCGATCTCCTGCCGCTGGTCCGGTCGTCCGCGCCGGTCGCCGTGGTCACGGTGGCGCGCGTCGCCAGCAGCGCGCCGCGCGGCGTCGGCTCGGCGATGGCGGTCACCGGTGACGGCGCGGTGCTCGGGTCGATCTCGGGCGGCTGCGTGGAGAGCGAGGCGGTCGTGCTCGCCCACGCCGCCATCGCGACCGGCCGGGCGCAGACGGCCCGCTTCGGGTTCGACGACGCCACCGCCCACGCCGCGGGCCTCGCCTGCGGCGGCCAGGTGGACGTGGTCGCCCAGCGCCTCGAACCGACCGACACCCGCACGGTGCGGGCGCTGGAGGACGCCGCGGCGGACCGGCCCGCCAGGCTCGGCCTCGTGGTCTCCGGACCGGCGGCCGGACGCACCGTCGACGTCGAGGCCACCGTCGACGCCACCGCCGCGGCGACGCTCGCCGACCGCGCCAGCCGGCTGCTGCCCGGGGCGTACGGCGGCGAGGACCTGCTGGTGGTGCAGCACGCGCCCCGGGCCCGCCTCGTCCTGCTCGGCGCCGGTGAGCACGCCGCGGCCCTGTGCCACGTGGGCGCGGCGGCCGGGTTCGCGGTGACCGTGTGCGACCCGTGGGAGACCCTGGTGACACCCGCGCGGTTCCCCGCAGCGACGGAGCTCGTCACGGCGATCCCCCACGAGTACCTCGCCGGGCTCGACGAGCACGACACCGACGCCCGCACGGCCGTGTGCGTCCTCACCCACGACGAGCGCCTCGACGTCCCGGCGATCCGGCAGGCACTGTCGATGCCGGTGGGCTTCGTCGGCGCGATGGGGGCGCGCGCCACCGTGACGCGTCGTGCCGCCCGGCTGCGCGACGTCGGCGTCGCCGAGGTCGACCTCGCCCGCCTGCACTCCCCCCTCGGGCTCGACCTGGCCGGGTCCTCGCCCGAGGAGACCGCCCTGTCGGTCCTGGCCGAGATCGTCGCCTCGCGGCACGGGGGCTCCGGCCGCCCGCTGCGCGAGACGGCGGGCCGGATCCACCGCGGTCCGTCGACCGCACCCTCGTGCCGGGTCACCGGCCCGGACCGCACCGCCCTCGGAGGTACCCGCGCATGA	MLELARDLLPLVRSSAPVAVVTVARVASSAPRGVGSAMAVTGDGAVLGSISGGCVESEAVVLAHAAIATGRAQTARFGFDDATAHAAGLACGGQVDVVAQRLEPTDTRTVRALEDAAADRPARLGLVVSGPAAGRTVDVEATVDATAAATLADRASRLLPGAYGGEDLLVVQHAPRARLVLLGAGEHAAALCHVGAAAGFAVTVCDPWETLVTPARFPAATELVTAIPHEYLAGLDEHDTDARTAVCVLTHDERLDVPAIRQALSMPVGFVGAMGARATVTRRAARLRDVGVAEVDLARLHSPLGLDLAGSSPEETALSVLAEIVASRHGGSGRPLRETAGRIHRGPSTAPSCRVTGPDRTALGGTRA	PGPT0007280_624	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402	NA	NA
AK001_03188	570	nboR		Nicotine blue oxidoreductase	ATGCGGGTCTGCGGGCTGGTGCTGGCCGCGGGCGCGGGCACCCGGTTCGGCGGCCCCAAGGGCCTGGCGCGCACGACGTCGGGCGATCCGTGGGTGCGACGTGCGGTCGCGATGCTGCAGGACGCGGGGTGCGACGAGGTGCTCGTCGCCGTGGGCGCTCGGGGGCCCGAGGTCGCCGCGCTCGTGCCGCCGTCCGCCCGCGCGGTCACCGCCGCGAGCTGGGCCGACGGGCTGGCCGCCACGCTGCGTGCCGGTCTCGACGCCGCTGCGCGTGGCGACGCCGAGGTGCTGGTCGTGACCCCGGTCGACACCCCCGACGCGCCGCCGGAGGCTGTGCGACGCGTGCTCGACCGGGCCGCACGCGAGGCGGCGACGCCCGACGACGCCCTGGCGCGCGCCGTCTACTCCGGGCGTCCCGGCCACCCGGTGCTCCTGGGACGGGCGCACTGGGGCGAGGTGCGCGCCACGCTGACCGGCGACGCCGGGGCGGGGCGCTACCTCGCCGCCCGCGGGGCGCTGGCCGTCGAGTGCGGCGACCTGTGGTCCGGGCACGACGTCGACCGTGCCTAG	MRVCGLVLAAGAGTRFGGPKGLARTTSGDPWVRRAVAMLQDAGCDEVLVAVGARGPEVAALVPPSARAVTAASWADGLAATLRAGLDAAARGDAEVLVVTPVDTPDAPPEAVRRVLDRAAREAATPDDALARAVYSGRPGHPVLLGRAHWGEVRATLTGDAGAGRYLAARGALAVECGDLWSGHDVDRA				NA	NA	NA	NA	NA
AK001_03189	1647	yheS_2	COG0488	putative ABC transporter ATP-binding protein YheS	GTGCAGCTCGTCGCCACCGACCTCTCCTACGCCTACCCGGAGCACCCCGTGCTCGACCGGGTGGACCTGCGCGTCTCCGACGGGGTCCGCCTCGGCGTCGTGGGGGAGAACGGGTCGGGCAAGTCGACGCTGCTGCACCTGCTGGCCGGCGACCTGCCGACCCAGACCGGCGAGGTGCGCCGCCACGGCTCCGTGGCCCTGGTGACCCAGGAGCTCCACGAAGAACCCGGCCGCACCGTCGGCGACCTGGTCGAGGCCACGCTGGCCGACCTGCGGGCCCTCGCGGGCGAGCTGCAGCGTGCCGCCGAGGCCTTCGACCACGAGCGCGGAGACCTGCGCGAGCTCGGCGAGCTGCTGGGCCGCGTCGAGCACCTGGCGGCGTGGGACGCCGACCGCCGCGTCGACGAGGCCCTGACCCGCCTCGGTGCCGTGCGCGACCTCGACCGCCGCCTCGACACGCTGTCCGTCGGGCAGCGCTACCGGGTGCGCCTGGCGTGCCGGCTGGCCGAACGAGCCGACCTGCTGCTGCTGGACGAACCCACGAACCACCTCGACGACTCCGGCGTCGCGTACCTGACCGAGCAGCTGCGGACCTGGCGCGGCGGCGTCGTGCTCGTCACCCACGACCGAGAGCTGCTCGACGACGTCGCCACCGCGATCTACGACCTCGACCCCTCCATGGACGGGCGGCCCGTGCTCTACGGCCAGCCCGGCTACCACTCCTACCGGCTCGGCAAGGCGGCGATGCTCGCTCGCTGGCAGCAGCGCTACCGGGTCGAGCAGGAACGTGCCGAGGAGCTGTGGTTCCGCCGCGACCGCTCCTACGAGGGGCTCTCCGACGAGTGGCGTCCGCCCAAGGGCTCCCAGAAGCACCGCCGCGGCACCCGTGCCCGCATCCACGTCAAGGCCGCCGACCGGCTGGTGGAGAAGCTCGAGGCCGAGGCGCTCGACGTCCCGCCGCCGCCCCTGGAGCTCGCCTTCCCGGACCTGCCGGCGATGTCACCGGGGTGGGACCCCGGCGAACCGCTGGTCGAGCTGCGCTCGCCCCGGGTCGAGGCGCCCGACGGCACCGCGATGCTGGACCTGCCGGGCACCAGGTTGGCGGTACCGCCGTCGGGCCGGCTGCTCGTCGTCGGGTCGAACGGCACCGGGAAGTCCACGGCGCTGGCGGCGCTCGCCGGCACGGCCGAGCTCGCCCGCGGAGCCCGGACGCTGCGCGACGGCGTCAGGTTCGGGGTCGTCGCCCAGGAGCGCAGGACGGCGGACGGCGGCAGCGCCGGGAGATCCGGGTTCGACGCCTCTGCGGCGGAGGCGCTGGAGCTGTTGTCCCGCGGGGAGCTGGACCCGGACCACCTGGTCCCGGTCGCCGCGCTCGGGCTGCTCACCGAGGACGAGCTGGACCGCCCGCTGCGCGAGCTGAGCGTCGGGCAGCAGCGGCGGTTCGACGTCGCGCTCGCGCTGCTGCACGCCCCGCACCTGCTGATCCTCGACGAGCCGACGAACCACCTGTCCGTGGACCTGGTGGACGCGCTGACGCTGGCGCTGCAGCGCACGTCCGCCGCCGTCGTCGTCGCCACCCACGACCGCCGCATGCGGGCGGACCTGGCGGACTGGCCGATGCTCGACCTGAGCCGTCCCGCGAGGTAG	MQLVATDLSYAYPEHPVLDRVDLRVSDGVRLGVVGENGSGKSTLLHLLAGDLPTQTGEVRRHGSVALVTQELHEEPGRTVGDLVEATLADLRALAGELQRAAEAFDHERGDLRELGELLGRVEHLAAWDADRRVDEALTRLGAVRDLDRRLDTLSVGQRYRVRLACRLAERADLLLLDEPTNHLDDSGVAYLTEQLRTWRGGVVLVTHDRELLDDVATAIYDLDPSMDGRPVLYGQPGYHSYRLGKAAMLARWQQRYRVEQERAEELWFRRDRSYEGLSDEWRPPKGSQKHRRGTRARIHVKAADRLVEKLEAEALDVPPPPLELAFPDLPAMSPGWDPGEPLVELRSPRVEAPDGTAMLDLPGTRLAVPPSGRLLVVGSNGTGKSTALAALAGTAELARGARTLRDGVRFGVVAQERRTADGGSAGRSGFDASAAEALELLSRGELDPDHLVPVAALGLLTEDELDRPLRELSVGQQRRFDVALALLHAPHLLILDEPTNHLSVDLVDALTLALQRTSAAVVVATHDRRMRADLADWPMLDLSRPAR	PGPT0027935_122	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027935-tylC|oleB|carA|srmB-K18230	NA	NA
AK001_03190	252			hypothetical protein	ATGGTCACCGTCACCGTCTACAGCACTGGTCCGTCGTGCATCCGATGCCGCATGACGATCGACAAGCTGCAGGACAAGGGAGTCACGCCGGTCGTGGTCCAGCTGGCCGAGAACCCGGCCGCGCACGAGTACGTGACCGAAGAGCTCGGCTACAGCGAGGCCCCCGTGGTCGTCGTCGAGGACGGCACCGGACAGGACCACTGGAGCGGGTTTCGACCCGACCAGATCGCTCGCGTGGCCCGGGCGGCCTGA	MVTVTVYSTGPSCIRCRMTIDKLQDKGVTPVVVQLAENPAAHEYVTEELGYSEAPVVVVEDGTGQDHWSGFRPDQIARVARAA				NA	NA	NA	NA	NA
AK001_03191	1020	dnaG_3	COG0358	DNA primase	ATGACCACCACGGCACGGGTCCTGGCCGCGAACGCCGCGGCCTGGGACTACTGGCGCTGGCACGCCGGCCAGGCCGACGCCTGGGTGAGCGACTACCTCGCCGCCCGCGGGTTGCGCGGCACGGTCGCCGGCCAGGCCCCGGCCGGGTGGGCGCGGCTGGTGCCCACGCTGACCAAGCGAGGCTTCACCGAGGCTGAGCTGCTCGACGCCGGCCTGGCCGTGCGCGCCGGCAACGGCTCGGTGGGCGATGCCTTCCGGGACCGGATCATGCTGCCCATCTGCGATGACGCAGGGCAGATCATCGGATTCACCGCACGTCGCAACTCGGCCAGCGACGATGCAAACGAGCCGCCGGCGGAGTACCTGAACACCACCAGCACGGCCGTCTACGACAAGAGCCGGGCGCTGTACGGGCTGGACGCCAAGACCACACAGCGACTACGCCGCGGCGCAACACCGGTACTGGTCGAGGGCGCCCTCGACGCCGAGGCCGTGCGCCGCACCGGCGCCGACCTCGTGCCCCTGGCCGCGTGTGGCACCGCCATCACCACCGGCCACCTCGAGGCGCTGCGAGCCATCGACCCCGACAGCGTGGGCCGGCTGATCCTGGCCACCGACGCCGACACCGCGGGCCAGCGGGCCACCTGCCGCCTGGTCGGGCTGCTCACGCCCGACGAGGTCGCCACCGTGCGCGTCGCCGAGCTCGAGCCCGACACCGACCCGGCCGACCTGATCCAGCAGGGCCGGCGCACCGACCTGCGGGCCGCACTGGTCCACCAAGCCCGAACCCTGGCCGAGGTCGCCATCGACGCCACCCTGGCCAGCTACGACCTGACCAGCATCGAGGGCAGCGCCGCCCTGCGGCATGTCACCGCCGCCGTCGCGAGCCAGAACCCGGCCACCCTGGCCCATGCGACGACCCACCTGACCCACCGCCTGGCCCCCGTGCTGGACCACGACATCGTCGCCGGCGAGATGGTCGACGCCATCACCACTTCGAGCAGCGGGGACGGTAAGTGA	MTTTARVLAANAAAWDYWRWHAGQADAWVSDYLAARGLRGTVAGQAPAGWARLVPTLTKRGFTEAELLDAGLAVRAGNGSVGDAFRDRIMLPICDDAGQIIGFTARRNSASDDANEPPAEYLNTTSTAVYDKSRALYGLDAKTTQRLRRGATPVLVEGALDAEAVRRTGADLVPLAACGTAITTGHLEALRAIDPDSVGRLILATDADTAGQRATCRLVGLLTPDEVATVRVAELEPDTDPADLIQQGRRTDLRAALVHQARTLAEVAIDATLASYDLTSIEGSAALRHVTAAVASQNPATLAHATTHLTHRLAPVLDHDIVAGEMVDAITTSSSGDGK				NA	NA	NA	NA	NA
AK001_03192	258			hypothetical protein	GTGATCGACTACCTCATCGCCAGTGTCTGCGGAGTGGCATTCTTTGTGTCGCTCAGGATGATATCCACCCGTCGCGTGTTCGCCGTCGTCCTTGGGGTGCTGGTCTGCGCAACGGCGGTCGCCGTCGTTTACGGGACGCGCATAGCCGACGGATCCGAATGGGCCTGGGAGATCTTCTGGGCACTGGTCTTCGCAGGAACAATATCTGCGGTCCTGCGAAAGCGGAGTAGCGGGAAACTGCGCACTGACGAATCCTGA	MIDYLIASVCGVAFFVSLRMISTRRVFAVVLGVLVCATAVAVVYGTRIADGSEWAWEIFWALVFAGTISAVLRKRSSGKLRTDES				NA	NA	NA	NA	NA
AK001_03193	231			hypothetical protein	GTGAGCGACTGGGGCGAAGACGACATCGACACCCCGGATCGACGGCCCACCGTAGCGAGCGCCTGGTGGCGCGACCACGCCGACCACCAGATGCCCGCGCTCTTGGACCCAGACGGCCCATTCGCGCTGGCGACCGAAGGCAACGAGAACACCTGCACGCACGGCGAACCACTGCCCTACGTCGCGCCGCCAGGCGGCATGTTCCCCGACGTCCGTGAGGACCAGAGGTGA	MSDWGEDDIDTPDRRPTVASAWWRDHADHQMPALLDPDGPFALATEGNENTCTHGEPLPYVAPPGGMFPDVREDQR				NA	NA	NA	NA	NA
AK001_03194	135			hypothetical protein	ATGACCGGACCGCATGCCGCCGCGGTGCAGGCCTCCCTCGACGCCCACGACCCGCAGGCCGCGCGCACGATCCACGAAGCCGAAGAATCGGTCGCCGAGGTGGAGGCCGACGAGTTCGAACGGACCACGGCGTGA	MTGPHAAAVQASLDAHDPQAARTIHEAEESVAEVEADEFERTTA				NA	NA	NA	NA	NA
AK001_03195	555			hypothetical protein	GTGAGCGTGCGGTGGCAGCAGGTCGACTCCGTCGCCGACGTCGAGGCGCCGCTGGGCGACCTGCCCGACCCGGAGAAGCCCGGCTGGGTGCGCCGGTGGCTGTGGGCACCCGCGCTGGCGGCCTCGGTCGCCGTCTACGTCACCCAGCGGCTCGTCGAGAACCCCTCGGGCGAGCTCGAGATGTGGCTGATGCTCGCCCTGCTGGCCCTGCTCATGGTCACCGCGGTCGCGGCGCTGGTCCGCTACCGCGACGACCAGCACGTCGCCCGCGAGACCCGCGACGTCGAGGCGCTGCGGCGCGACGCCCGGGCCACGACGGGGTCGGTGACCGTCTCCGAGCGTCCCGTCGGCGACGGCGTCATGCTGCGGGGGCTGCTCACCTACCCCTGCGAGGACGACACGGCCGAGGACACATGGTCGCTGCTCGTGGCCGACGGCGACGCCCCGGGCCCCCGCCCCGGCGACCCGGCCGCCGTGTGGTGGGCCCCGGGCTCGGACACCGTCGTGGCGCGGTACCACCGCGGCTGGGCGGACGAGCTGCGCCGTCGGGCCTGA	MSVRWQQVDSVADVEAPLGDLPDPEKPGWVRRWLWAPALAASVAVYVTQRLVENPSGELEMWLMLALLALLMVTAVAALVRYRDDQHVARETRDVEALRRDARATTGSVTVSERPVGDGVMLRGLLTYPCEDDTAEDTWSLLVADGDAPGPRPGDPAAVWWAPGSDTVVARYHRGWADELRRRA				NA	NA	NA	NA	NA
AK001_03196	240			hypothetical protein	ATGACCCCGCAGGTACGCGTGGTGCGCGGAGCACCGGACGACCTGGAGGTGGCCGCGCTCGTGGCCGGGCTGGCGGCCGTCACCGCGGACGACGAGCTGCCCGACGACGTCGCGCCCGTGGACGAGTGGACCAACCACGCCCGCAGCCTGCGCGGCAACGGGGCGGCCACGGCCCGCAGCTTCGGCGGCCGGGCCGGCCGCCACAACATGGACGCCTGGCGCTGGAGCTTCCGGTCGTGA	MTPQVRVVRGAPDDLEVAALVAGLAAVTADDELPDDVAPVDEWTNHARSLRGNGAATARSFGGRAGRHNMDAWRWSFRS				NA	NA	NA	NA	NA
AK001_03197	546			hypothetical protein	ATGAGTCACGAGGACGCCACCCACGGTCCGGCACCGCTGGGCGACGTGGACCCCGACCCGATGCACCGCGCCGTGGAGACGCTCGCCGCGGCGCTGCACCAGTACGTCGACGCCGCCGTGGGGGTGCGGGCCGAGTTCGGGGCGACCGAGGCGGACGAGGACCCGCGCATCCTCGCGCTGGAGAACCGGGTCGGCACGCTCAACGCCTCGCTGTTCGACACGCTGCACGACGCGCTCGGCATGCACCCGGACCTGACGACGTCGGTGTGGGAGCCCGAGCCCGGCAGCCAGCCGGAGGAGAGCGGTGAGGAGGACCTGCCCGAGGGCACGATCTCCGCGGAGGTGTTCTACCTCGGGTTCGTGGTCGCGGACCCGCCGCCGGGAGCCTCGATGACGCTGAACGGCGTCATCGAGCTGCTGGACGAGGCCGGTCAGGACGCCGCGACACGGATGGCCGAGGGCGGGTACCAGGTGATGGAGTGGGCCGCCTCGCGCGGTCTGGCACCGGGTTTCGGCAACGACCCCGACGACGAGGAGGACGCATGA	MSHEDATHGPAPLGDVDPDPMHRAVETLAAALHQYVDAAVGVRAEFGATEADEDPRILALENRVGTLNASLFDTLHDALGMHPDLTTSVWEPEPGSQPEESGEEDLPEGTISAEVFYLGFVVADPPPGASMTLNGVIELLDEAGQDAATRMAEGGYQVMEWAASRGLAPGFGNDPDDEEDA				NA	NA	NA	NA	NA
AK001_03198	1578	accD5	COG4799	putative propionyl-CoA carboxylase beta chain 5	GTGAAGACCACTGCCGAGAAGCTCGCCGAGCTCGACCGACGCCGCGCGGCCGCGGTCACCGAGCCCGAGGAGAACGCCCGGACCAAGCAGCACGCGCGCGGCAAGAAGACCGCCCGCGAGCGCATCGACGACCTGCTCGACGAGGGCAGCTTCACCGAGCTGGACGCCCTCGCGATGCACCGCAGCCGCAACTTCGGCATGGACGCCAAGCGGCTGCCGGGTGACGGCGTCGTCGTCGGCCACGGCACCATCGACGGCCGCCAGGTCTGCGTGTTCTCCCAGGACTTCACCGTGTTCGGCGGGTCCCTCGGCGAGGTGCACGGCGAGAAGATCGCCAAGGTGCAGGACCTCGCGCTGCGGATCGGCGTGCCGATCATCGGCATCTCCGACGGCGGCGGCGCCCGCATCCAGGAGGGTGTGGCCGCCCTGACCCAGTTCGCCGAGATGTTCCGCCGCAACGTCGCCGCCTCCGGCGTCGTGCCGCAGATCTCGCTCATCCTCGGCCCGAGCGCCGGCGGGGCGGTCTACTCCCCCGCGCTGACCGACTTCGTCGTGATGGCCGACCAGACGTCGAACATGTTCATCACCGGCCCGGACGTCATCAAGACCGTCACCGGCGAGGACGTCGACTTCGAGACCCTGGGCGGCGGGCACACGCACAACGCCACCTCCGGCGTCGCGCACTACCTGGGCGCCGACGAGGACGACGCGATCGACTACGTCCGCCACCTGGTCGGCTACCTGCCGCAGAACAACCTCTCCGACGCCCCCACGTTCGCGCCCGAGGCGGAGACCGAGCTGGAGGTCACCGGCGACGACGAGGCGCTGGACGCGATCGTGCCCGACGGCGACAACCAGCCCTACGACATGCGCGCCGTCGTCGAGACCGTGCTCGACCCGGACTCGTTCCTCGAGGTCCAGCCGCTGTACGCGCAGAACGTGCTCGTCGGGTTCGGGCACGTCGAGGGCCAGAGCGTCGGCATCGTCGCCAACCAGCCCCAGTCGATGGCCGGCACCCTGGACATCGCCGCCTCGGAGAAGGCCGCACGGTTCGTGCGCACCTGCGACGCGTTCAACATCCCCGTGCTGACGTTCGTCGACGTGCCCGGGTTCCTGCCCGGCGTCGGCCAGGAGCACGACGGCATCATCCGCCGCGGCGCCAAGCTCATCTACGCCTACGCCGAGGCCACGGTCCCGCTGGTCACCGTCATCACGCGCAAGGCCTACGGCGGCGCGTACATCGTCATGGGCTCCAAGCAGCTCGGCGCGGACGTCAACCTGGCCTGGCCGACGGCGCAGATCGCCGTCATGGGCGCCTCCGGTGCGGTGAACATCCTGCACCGCCGGGCGCTGAAGGCCGCCGGCGAGGACGGTCAGGACGTCGAGGCGGAGCGCGGCCGGCTGACCGACGAGTACACCGAGGCCATCGTCAACCCGTGGGACGCGGCCGAGCGCGGCTACGTCGACGCGGTCATCCGGCCCTCCGAGACCCGCGTGCAGGTGGTCCGGTCGCTGCGCGCCCTGCGCACCAAGCGCGCCAGCCTCCCGCCGAAGAAGCACGGCAACATCCCGCTGTGA	MKTTAEKLAELDRRRAAAVTEPEENARTKQHARGKKTARERIDDLLDEGSFTELDALAMHRSRNFGMDAKRLPGDGVVVGHGTIDGRQVCVFSQDFTVFGGSLGEVHGEKIAKVQDLALRIGVPIIGISDGGGARIQEGVAALTQFAEMFRRNVAASGVVPQISLILGPSAGGAVYSPALTDFVVMADQTSNMFITGPDVIKTVTGEDVDFETLGGGHTHNATSGVAHYLGADEDDAIDYVRHLVGYLPQNNLSDAPTFAPEAETELEVTGDDEALDAIVPDGDNQPYDMRAVVETVLDPDSFLEVQPLYAQNVLVGFGHVEGQSVGIVANQPQSMAGTLDIAASEKAARFVRTCDAFNIPVLTFVDVPGFLPGVGQEHDGIIRRGAKLIYAYAEATVPLVTVITRKAYGGAYIVMGSKQLGADVNLAWPTAQIAVMGASGAVNILHRRALKAAGEDGQDVEAERGRLTDEYTEAIVNPWDAAERGYVDAVIRPSETRVQVVRSLRALRTKRASLPPKKHGNIPL	PGPT0001712_887	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0001712-pccB-K01966	NA	NA
AK001_03199	873	birA	COG0340	Bifunctional ligase/repressor BirA	ATGACGCGCCCACCTCTCGACGTCGCCGCCCTGCGGCCCGCCCTGCTCGAGCCCACCGGACCCCTCGCCCGGGTCGACGTGGTGGAGGCCGCCGCCTCGACCAACACCGACCTCGTCGCCCGGGCGCGGGCCGGCGCCGAGATCCCGGCGGCGCTGGTCGCCGAGCACCAGCAGGCCGGGCGTGGGCGCGCCGGCCGGACGTGGGAGACGCCGGCCCGCGCCGCGCTGACGGTCTCGTTCCTGCTGAGACCGCACGTCGCCGCCGACGAGCTCGGGTGGATGCCGCTGCTGACCGGGCTCGCGCTGGCACGCACCCTGCGCGCCGAGGGGGTGCGGGCCCAGGTCAAGTGGCCCAACGACGTGCTGCTCCCGGCCCCGACGGCGGTCGAGGGGCTGGGCCGGTTCCGCAAGGTCGCCGGCGTGCTCGCCGAGGTGGTGCCCGACGCCGCGCCCGTCACCGCACCCGGCGATCCCGGGGACGCCGACGACGCACCCGTCGTCGTGGTCGGCGTCGGGCTCAACGTGGACCAGCGCGCCGAGGAGCTGCCCGTGCCGGCGGCGACCTCCGTGGCGCTCGCGGGCCGCGACCTGGACCGCGGGGAGCTGCTCGTGGGCCTGACCGGCGAGCTCTTCACGCTCGTGGCCCGGTGGGAGGCCGCCGGCGGAGATGCGGTCGAGGCGGGTCTCGCCGGCGAGTACGCCGAGGTCAGCGCGACGCTCGGCCGGTCGGTGCGCGCCGAGCTCGCGGGCGGGGCGGGGTCCGTCGAGGGCGAGGCCGTCCGGGTGGCCGACGACGGCGCCCTGGTACTGGCGACCGCGGCCGGCGAGCGGGTGGTCACCGCGGGCGACGTGCACCACCTGCGGCGCGTCTGA	MTRPPLDVAALRPALLEPTGPLARVDVVEAAASTNTDLVARARAGAEIPAALVAEHQQAGRGRAGRTWETPARAALTVSFLLRPHVAADELGWMPLLTGLALARTLRAEGVRAQVKWPNDVLLPAPTAVEGLGRFRKVAGVLAEVVPDAAPVTAPGDPGDADDAPVVVVGVGLNVDQRAEELPVPAATSVALAGRDLDRGELLVGLTGELFTLVARWEAAGGDAVEAGLAGEYAEVSATLGRSVRAELAGGAGSVEGEAVRVADDGALVLATAAGERVVTAGDVHHLRRV	PGPT0022055_2845	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022055-birA|bpr-K03524	NA	NA
AK001_03200	1044			putative protein	GTGACCAGCCAGACCCCCCAGGAACCGCGCGAGCGCGCTGCTCAGGAACGTGCCGACACGGCGCGCCGCACCGACGAGGCGATCCTCGGCGGCCCCCGCATCTACACGTTCGCCGACCTCGTGGAGGGGACGGGGCTGTCCTCGGAGTTCGTGGAGAACTACTGGCGCTGGCTGGGGCTGCCGGTGACGCACCCCGCCGAGGCGCGGTTCACCGCGGCCGACCTGGAGTCGCTGCGGGAGATCGGCGAGCTCATCGCGGCCGGCGACCTGGACCAGCAGGCGCAGATGACCCTGGTGCGCTCGCTGGGGCACACCTCGGACCGGCTCGCCCTGTGGCAGGTGGAGGCGTTCGTCGAGCACCTGGGGCGGCGGTTCGACCTGGACGACGTCAGCGCCCGGCTGGCGGCGCTGGACCGCATCCCGGGGTTCGCCGACGTGCTGGCCCGCCAGCTCGAGCACGCGTGGCGCCGACAGCTCGCGGCGCTGATGGGCCGGTTCGCCACCGAGTTCGGCGGCTCGCACGGCACCGAGCTGCCCGGCGACCAGCTGCCGCTCCGCCGCGCGATCGGGTTCGCCGACATCGTGTCCTTCACGAAGCGCACGGCCGGGCTCGGCTCGCAGGAGCTGTCCGAGTACGTCCAGCTCTTCGAGTCCCGCGCCCGCGACGTCATCACCGAGGCGGGCGGCCGCGTGGTCAAGACGATCGGCGACGCGGTGCTGTTCGTGGCCGACGACGTCGCCACCGGGGCCGAGTGCGCGCTCGGGCTGGCCGCCCCGCACTCCAGCGAGGAGGAGATCCCGGTGCGGGTCGGCTTCGTGTGGGGCCGGGTGCTGTCCCGCTTCGGCGACGTGTTCGGGCCGGACGTCAACCTGGCCTCGCGCATCTCGGAGCTGGCCGAGCCCGCGAGCGTGCTCGTCGACCCGCCGACGGCGGCGCTGCTCAGCTCGTCGGCCAAGTACGCCCTGACGGCCCAGCCCCCGCAGGACGTGCAGGGGCTGGGGGAGATCACGCCGGTCCGCCTGCAGCGGGCCTACACGGGGTAG	MTSQTPQEPRERAAQERADTARRTDEAILGGPRIYTFADLVEGTGLSSEFVENYWRWLGLPVTHPAEARFTAADLESLREIGELIAAGDLDQQAQMTLVRSLGHTSDRLALWQVEAFVEHLGRRFDLDDVSARLAALDRIPGFADVLARQLEHAWRRQLAALMGRFATEFGGSHGTELPGDQLPLRRAIGFADIVSFTKRTAGLGSQELSEYVQLFESRARDVITEAGGRVVKTIGDAVLFVADDVATGAECALGLAAPHSSEEEIPVRVGFVWGRVLSRFGDVFGPDVNLASRISELAEPASVLVDPPTAALLSSSAKYALTAQPPQDVQGLGEITPVRLQRAYTG	PGPT0021560_5988	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768	NA	NA
AK001_03201	579	dapH_4		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	ATGACCGCGACCATCGACGACCTCCTCGCCGCGCTGCGGGCCGGGAAGACCATCACCGGCGGCTCACCCCTGCACGAGGTGATGCACCGAGCCAGCCAGGAGGCCATGCTCGTCACCGCCGAGCTCAACGGTCCGTACCAGCCGCCCGAGCGTGTCCGCGAGCTGCTCTCCCGACTGACCGGCGCACCCGTCGACGACTCCGTCACGCTGTTCCCGCCGTTCACCGCGGACTTCGGCCGCGGCATCCGCCTCGGCAAGCGGGTGTTCATCAACTCCGGGTGCAGGTTCCAGGACCAGGGCGGCGTGACCATCGGGGACGACTGCCTCGTCGGGCACAACGCCGTCCTGGCGACCCTGAACCACGACCTCGACCCGAGCCGCCGGACCGACCTGCACCCCGCTCCCATCGTGCTGGGGCGCAACGTCTGGGTCGGCGCGAACGTCACGATCCTGCCCGGGGTGACCGTCGGCGACGACGCGGTCATCGGTGCCGGCTCGCTCGTCACCAAGGACGTCCCGTCCGGCGTGGTCGCCGTCGGGTCGCCGGCGCGGGTCGTCCGCTCCGTACGGCCCGGCTGA	MTATIDDLLAALRAGKTITGGSPLHEVMHRASQEAMLVTAELNGPYQPPERVRELLSRLTGAPVDDSVTLFPPFTADFGRGIRLGKRVFINSGCRFQDQGGVTIGDDCLVGHNAVLATLNHDLDPSRRTDLHPAPIVLGRNVWVGANVTILPGVTVGDDAVIGAGSLVTKDVPSGVVAVGSPARVVRSVRPG	PGPT0018611_765	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0018611-maa|nodL-K00661	NA	NA
AK001_03202	783	yedK	COG2135	SOS response-associated protein YedK	ATGTGCGGCCGTTTCGCGTCCTTCACCGACGCCCAGGACCTCGCCGACGAGCTCGCCGTCGCCGAGATCGCCGAGGACGCCCGCCTGCTCGGGCCGCGCTGGAACGTCGCCCCGACCGACCCGGTGCGGATCGTCGTCGAGCGCCCCCGGCGCGAGCCCCTGCCCGACGGCGGCACCACGGCCGGGGAGATCACCCGCTCCCTGCAGGTCGCCCGGTGGGGCCTGGTGCCGTCCTGGGCGAGGGACCCCGGGATCGGCCCACGCATGATCAACGCCCGCCGCGAGACCCTGCTGGACAAGTCCGCGTTCGCCAGGCCGCTGGCCGTGCGGCGCTGCCTCGTGCCCGCCGACGGCTACTACGAGTGGCGGAAGCTCGAGGTGCCGTCCGCGACCCGGAAGACCCCCAAGCAGGCGTACTGGATCCACCCCGCGGACGGCGGCGTCGCGGCCTTCGCCGGGCTGTACGAGTTCTGGCGCGACCGCAGCCACGCCGACGACGACCCCGCACGGTGGCTGGTGTCCACCACCGTGATCACCACGGCCGCGTCCGACGGGCTCGAACGCATCCACGACCGCATGCCCGTGGCCCTGCCCCGCGCGGCGTGGGACGCCTGGCTGGACCCGTCGGTCGGCGCGCAGGACGCGAACGCCCTGCTCGAGGACGCCTCCGCACCCATGAGCACCTACCCGGTCGGCGCACGGGTCGGCAACGTCCGCTTCGACGACGCCGGGCTCCTCACGCCCGACCCCGACCCCCAGGACCCCGACCTCGTGCTGCTGTGA	MCGRFASFTDAQDLADELAVAEIAEDARLLGPRWNVAPTDPVRIVVERPRREPLPDGGTTAGEITRSLQVARWGLVPSWARDPGIGPRMINARRETLLDKSAFARPLAVRRCLVPADGYYEWRKLEVPSATRKTPKQAYWIHPADGGVAAFAGLYEFWRDRSHADDDPARWLVSTTVITTAASDGLERIHDRMPVALPRAAWDAWLDPSVGAQDANALLEDASAPMSTYPVGARVGNVRFDDAGLLTPDPDPQDPDLVLL				NA	NA	NA	NA	NA
AK001_03203	1239	bcr		Bicyclomycin resistance protein	ATGGCGGCCATGCCCGAGAAGACCGCCGTGCCCCAGCGCGCCCGTTCGTCGTTCCGCTGGGTCGTCATGCTCGGTGCGCTGGCGGCGATCCCGGCCTTCACGGTCGACATGTACCTGCCCTCGCTGCCCGAGGTCGCGGCCGACCTCGGGTCCAGCTCGTCCTTCGCGGCGCTGTCGGTCTCGATCATGCTCGTCGGCGGTGCCGCCGGCCAGCTCGTCATCGGGCCGCTGTCCGACCGGTACGGACGCCGGCAGCCCCTGATGATCGGGCTGGGCATGCACGTCGTCATCTCCCTCCTCTGCGCCGTCGCGCCGAGCATGGGCGTCCTCGTCGTGCTCCGGCTCCTCCAGGGGTTCTTCAACGCCGCCTGCGGCGTCGCGGCCATGGCGATCGTGCGCGACCGGTTCGTCGGCGCCGAGGCCGCGCGGATCCTCTCCCGCCTCATGCTCATCATCGGGATCGCCCCGCTGCTCGCCCCGACCTTCGGCTCCGCCGTCGCCGAGGTCGCCTCCTGGCGCTGGGTGTTCGGCTTCCTCGCCCTGATCGGCGTGACGATGGGCGTCATCGTGTGGAAGTTCCTCCCCGAGACCCACCCCGCCCAGCGTCGGGCCACGGGGGGCGCGCGATCCGTCGTCGGCGGCTACGGCCACCTCCTGCGCGACCGGCACTTCATGGCCCTCGCGCTGCTCCCCGGGCTCGGGATGGCGGTGCTCATGAGCTACGTCGTGACGTCGCCGTTCGTCTTCCAGGAGGTCTACGGGCTCAGCCACGGCCAGTTCTCCCTGCTCTTCGCGCTCAACGGGGTGGGGCTCGTGGCCTCCGCCCAGCTCAACGCGGCGCTCGTGCGGCGGGTGGCCCCGATCCGGATCCTGCGCACCGCGCTCGTGCTGCAGGGTCTCTTCGCCGTCGTCCTGGTCGTCGTGGCCGTCACCGGGGCCGGTGGCCTCGTCGGGCTGCTCGTCGCCCTGTGGTGCGTGCTGGCCTTCACCGGGCTCATCCCCGCCAACGCCTCGGCCATCGCGCTGTCCCGGCACGGGGAGCGGGCCGGTACGGCTGCGGCGGTCATCGGCGCGGTGCAGTCCGGGGTCGCCGGCGTCGTCTCGCCGCTCGCCGGCGCGCTCGGCGGTGACGCGGTCGCGATGACCGCCGTCATGCTCGCGGCATGGACCGCCGCGATCGCCGTCCTGGCGTTCGCCACGCCGGCCTTCCGCCGCGGAGGCTGGGTCCAGCTCGCCTGA	MAAMPEKTAVPQRARSSFRWVVMLGALAAIPAFTVDMYLPSLPEVAADLGSSSSFAALSVSIMLVGGAAGQLVIGPLSDRYGRRQPLMIGLGMHVVISLLCAVAPSMGVLVVLRLLQGFFNAACGVAAMAIVRDRFVGAEAARILSRLMLIIGIAPLLAPTFGSAVAEVASWRWVFGFLALIGVTMGVIVWKFLPETHPAQRRATGGARSVVGGYGHLLRDRHFMALALLPGLGMAVLMSYVVTSPFVFQEVYGLSHGQFSLLFALNGVGLVASAQLNAALVRRVAPIRILRTALVLQGLFAVVLVVVAVTGAGGLVGLLVALWCVLAFTGLIPANASAIALSRHGERAGTAAAVIGAVQSGVAGVVSPLAGALGGDAVAMTAVMLAAWTAAIAVLAFATPAFRRGGWVQLA	PGPT0029005_1882	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552	NA	NA
AK001_03204	1338	tagU_3		Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU	GTGAAGGAATCCAGTCCCCGGCACGCGGGACACCATGCCGGGCATCGTGTCCTGCGCTGGGTCGCCCTCGTGCTCACCGGTGTGCTGGCCTTCGTCGGCACCGCCTCCATCGCCGCCTACGTCGACCTGCAGTCGCAGATCGAGGTGTCCGACGTCGACGCGCTGATCGGCCGCGACCGGCCGGTCCCGCAGCCGCAGGCCGAGAGCTCCGAGGAGCCCGCCGACCCGAGCGACCCCTTCGCCGGCCAGGACCGGAACATCCTCGTGATGGGCACCGACTTCCGCGACGCCGAGAACGCGGAGATCGCCGGCTCCGGCGACGAGTTCCACTCCGACACGACCCTGCTGGTGCACATCAGCGGCGACCGGTCGCGCATCGAGGCGGTCTCGATCCCGCGCGACTCGCTCGTCGACATCCCGTCCTGCCCGCGGCCCGACGGCAGCTCGACGGCGCCGCACGACAACGCGATGTTCAACATGGCGTTCGCGCTGGGCGGTGGCCCCGAGCAGGACGTCACCGGTGCCGCAGCCTGCACGATCCTGACCGTCGAGTCGCTGACCGGCCTGACGATCGACGACCACGTCGTGGTGAAGATGACCGGCGTGGTCGACATCGTCGACGCGCTCGGCGGCGTGCCGATGTGCCTGCCCGAGCCGGTCGTGGGCGACTCCCGGTACAGCGACCTCGACCTCGCCGCGGGACGGCAGGTGCTCGACGGCGAGACCTCGATCCAGTTCCTGCGCGTCCGCAAGGGCGAGGGGATGGGTCTCGAGCTCGGCAGCGACCTGCAGCGCATCGAGCGGCAGCAGGCGTTCGTCGACTCCATGCTCCGCGAGGTCCTGGCCCAGAACGTCATCACCGACACCCCGCAGCTGTACCGCATGGTCCGTGCCGCCCTGCAGGCGATGTCCACCAGCCCGGATCTGGCCAGCCCCAGCGCGCTGGCCGGGTTGGCGTGGAGCCTGCGCAACGTCGACCCGTCGAGCATCGTCTTCGAGTCCGTCCCCGTGGCCGACGCCCCCACCGACTCCAACCGCGTCGTGTGGACCTGGGAGGCGGCCGAGCTGTGGGAGAAGTTCGCCGACGACGTCCCGCTGCACGGCGAGCCGTCCCCGAGCCCCAGCGCGTCCGCCCAGGACGGTCAGGTCGAGGCCGGACCGGACGGCGGTGACGGTGACGGCGCCGAGGGCTCGGCCGACGCGGACGGTCCGGACGCGGGCGAGGAAGCCGGCAGCAGCTCCGGGGGTGGCGGCCAGGGCGGTTCGGTGAGCGCCGACGGCGGCGACGGGCCGAGCCCGTCGCCGAGCCCGTCGCTGCTGCCCGGCGTCTGCGGCTGA	MKESSPRHAGHHAGHRVLRWVALVLTGVLAFVGTASIAAYVDLQSQIEVSDVDALIGRDRPVPQPQAESSEEPADPSDPFAGQDRNILVMGTDFRDAENAEIAGSGDEFHSDTTLLVHISGDRSRIEAVSIPRDSLVDIPSCPRPDGSSTAPHDNAMFNMAFALGGGPEQDVTGAAACTILTVESLTGLTIDDHVVVKMTGVVDIVDALGGVPMCLPEPVVGDSRYSDLDLAAGRQVLDGETSIQFLRVRKGEGMGLELGSDLQRIERQQAFVDSMLREVLAQNVITDTPQLYRMVRAALQAMSTSPDLASPSALAGLAWSLRNVDPSSIVFESVPVADAPTDSNRVVWTWEAAELWEKFADDVPLHGEPSPSPSASAQDGQVEAGPDGGDGDGAEGSADADGPDAGEEAGSSSGGGGQGGSVSADGGDGPSPSPSPSLLPGVCG				NA	NA	NA	NA	NA
AK001_03205	921		COG0583	putative HTH-type transcriptional regulator	ATGCGATGGGAGTCCGGACAGCTCGCGGCCCTGGCGGCGGTCGTCAGCGAGGGGTCGTTCGACGCCGCCGCCCGCGTCCTGCACGTCACGCCGTCGGCGCTCAGCCAGCGTGTCCGCGCCCTGGAGAGCGCCGCGGGCGCCGTGCTGGTCCAGCGCACGCGTCCGGTGCGTCCCACCGGTCCGGGTCGGACCCTGCTGCGGCTCGCCCGGCAGGTCGAGCTGCTCGGCAGCGAGGCCGCGGCCGAGCTCGGTCCCGCCGACGACGGCGACCGCCCGGTGACCGTCCCGCTCGCGGTGAACGCGGACTCGCTGGCGACGTGGCTGGTGCCGGCGCTGGCCGCCGTCGACGGCGTCGTGTTCGACCTGCACCTGGCCGACCAGGACCGCACGGTCGACATGCTGCCCGCCGGGGAGGTCATGGCGGCCGTCACCTCGCAGCGCGACCCGGTGCAGGGCTGCACGGTCCAGCCTCTCGGCATGACGCGGTACCAGCCGCGAGCCGACCGGGAGTTCGTGGCCCGGTGGTTCCCACACGGGCCGACCCCGGAGGCGCTGGACGCCGCACCCATGGTCGTCTTCGCCCGCACCGACGACCTGCAGGACGCCTGGCTGCGCCGGGTCGCGGACGCCGCCGGCACCGCCGTGCCCGACCCGCCGCGCCACCACGTGCCGGCCACGGCCGACTTCCTCGCCGCCGTCCGGCACGGGCTCGGCTGGGGCATGTGGGGGCCGCTCCCCCGCCCGGGCGCCCGGTTCGAGGTCCTGGAGGCCGGCGAGCCGGACGTCGTCGCGCTGAGCGACGACACCGTGGACGTGCCGCTCCACCTGCAGCAGTGGCGGCTGCGCTCAGCGGTGCTGGACCGGGTCACCGCGGCGATCCGCACGGCGGCGTCGCGGTCGCTGCCGCTCGCGCCCGGCTGA	MRWESGQLAALAAVVSEGSFDAAARVLHVTPSALSQRVRALESAAGAVLVQRTRPVRPTGPGRTLLRLARQVELLGSEAAAELGPADDGDRPVTVPLAVNADSLATWLVPALAAVDGVVFDLHLADQDRTVDMLPAGEVMAAVTSQRDPVQGCTVQPLGMTRYQPRADREFVARWFPHGPTPEALDAAPMVVFARTDDLQDAWLRRVADAAGTAVPDPPRHHVPATADFLAAVRHGLGWGMWGPLPRPGARFEVLEAGEPDVVALSDDTVDVPLHLQQWRLRSAVLDRVTAAIRTAASRSLPLAPG				NA	NA	NA	NA	NA
AK001_03206	627	argO	COG1279	Arginine exporter protein ArgO	GTGCTCGACGTGCTGGTCTTCTTCGCGGGCTTCGGGCTCGGACTCTCGCTGATCCTGGCCATCGGCGCCCAGAACGCGTTCGTGCTGCGCCAGGGGGTGCGCCGCGAGCACGTCGGCGTCGTCGTGCTGGTCTGCGCCGCCTCGGACGCCGTGCTGTACGCCGCCGGGGGAGCGGGACTCGGGGCCCTTGTCGAGCAGCACCCCGCGGTGGTCGACGTCGCGCGGTGGGCCGGTGCCGCCGTCGTGCTCGGGTACGGGGCGCTCGCGGCGCGGCGCGCCTGGCGCGGCGAGGAGGGGCTGACCGCCGCGGGGGACGCGACCGTCGACGACGCCGGGCGCCGGCTGCGTCCGGTGCTGCTGACGACCCTCGCGCTGACCTGGCTCAACCCGCACGTCTACCTCGACACCGTGGTGCTCCAAGGGTCGGTGGCGGCCACCTACGGCGACGACCGGTGGCTGTTCAGCGCGGGCGCCGTGGTCTCCAGCCTCGTGTGGTTCAGCGCCCTCGGGTACGGCGCGCGGCTGCTCGCGCCGCTGCTGCGGCGGCCGGGAGCCTGGCGTGTGGTCGACGGCGTCATCGCGCTGATCATGCTGGCCGTGGCAGTCTCGCTGGTCGCGGGCCGCTGA	MLDVLVFFAGFGLGLSLILAIGAQNAFVLRQGVRREHVGVVVLVCAASDAVLYAAGGAGLGALVEQHPAVVDVARWAGAAVVLGYGALAARRAWRGEEGLTAAGDATVDDAGRRLRPVLLTTLALTWLNPHVYLDTVVLQGSVAATYGDDRWLFSAGAVVSSLVWFSALGYGARLLAPLLRRPGAWRVVDGVIALIMLAVAVSLVAGR	PGPT0020651_278	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895	NA	NA
AK001_03207	639			hypothetical protein	ATGAGGATCGCCCTGATCGGCGCCACCGGCCGCACCGGTCGCCACGCCCTGGCCGCCGCCGTCGACCGCGGCCACGACGTGACCGTCCTGGTCCGCGACCCGGCCCGCCTGCCGGACGACCTGCCGACGCAGGTCCGCACCGTCGTCGGCGGCGCCACGGACCCGGACGCGCTGCGCGACCTGCTCGACGACGCCGACGCCGTCGTCTCCGCACTGGGTCCCACCGACAAGCAGAGCGACCTGCACACCCGCACGGCCCGCGCCCTCGTCGAGATCATGTCGGCCGCAGGACCACGGCGGTTCGTCGGCGTCAGCGGCGCCGGCATCGACGTGCCCGGGGACCAGAAGGCCGGCAAGGACAAGGTCATCAGCTGGCTGATCCGCACTCTCGGCGGCGCCGTCGTGCAGGACAAGCCCGCCGAGTACGCGGTGTGGGCCGGATCCGACCTGGAATGGACGCTGGTGCGCCCGCCGCGTCTCGTGGACGGCGCAGCGAGCGGCGGGGACCTGGAGCACGACGCGCACCGGTCGACACGGTCGACGACGGTCCGGCGGGCCGACCTCGGGGCCTTCCTCGTCGACGTGGTCGAGCAGGACCTGTACCCGCGGCTCGCACCGTTCGTCGCCACCCCGCGCTGA	MRIALIGATGRTGRHALAAAVDRGHDVTVLVRDPARLPDDLPTQVRTVVGGATDPDALRDLLDDADAVVSALGPTDKQSDLHTRTARALVEIMSAAGPRRFVGVSGAGIDVPGDQKAGKDKVISWLIRTLGGAVVQDKPAEYAVWAGSDLEWTLVRPPRLVDGAASGGDLEHDAHRSTRSTTVRRADLGAFLVDVVEQDLYPRLAPFVATPR				NA	NA	NA	NA	NA
AK001_03208	885	azoB_2		NAD(P)H azoreductase	GTGACGATCCTCGTCACCGGCGCGACCGGGACCGTGGGTTCCGCCGTCGTGAGCGAGCTGCGCGACGCGGGGGCCGACGTCCGGTGCGCCACGCGCGCTGCACCGACGGGGCCCGACCAGGTCCGGTTCGACGTCACCGACCCGGCGACCTGGCCGGAGGCGTTCGCGGGCGCGGAGTCGATGTTCCTCGTGCGGCCACCCGCGATCGGCAACGTCCGCCGCGACCTGCTGCCCGCCGTGGCCGCCGCCCGGGAGGCCGGCGTCCGGCACGTCGTCTTCCTGTCGCTGCAGGGCGCCGAACGCACCAAGGTCGTCCCGCACGCGACCGTCGAGTCGTGGCTGCGCGAGTCCGGGCTGGACTGGACGTTCGTGCGCGCCTCGTTCTTCTGCCAGAACCTGTCCACGACCCACCGGACCGACATCCGCGACCGCGACGAGATCCTCGTACCCGCCGGCCGCGGCGCGACCGCCTTCGTCGACGCCGACGACGTGGCTGCCGTGGCCGCCGCCGCGCTGCAGGACCGCGCCGGCCATGCCGGCCGCGCGTGGACCGTGACCGGACCACGCGCCCTGACCTACACCGAGGTGGCGCAGATCCTCAGTGCCGAGCTCGGCCGCCCGATCGACTACCCGCGACCCGGTCTGCTGCGCTACGCCCGGCACGCCCGGCGCACGCTCGGCATGCCGTGGCCGATGGTCGCCGTGACGGCCGCGATCTACACCACCGCGCGTCTGGGCCTGGCCGCCGGGCTCAGCGAGGACGTGCGCACCGTGCTGGGGCGCGCGCCCCGCGACCTGACCGAGGTCGTGCACCGCGACCGCGACCTCTGGCTCCGCGCCGACGAGCCCGGCGTGCGCCCCACCGACACCGAGGAGACACCATGA	MTILVTGATGTVGSAVVSELRDAGADVRCATRAAPTGPDQVRFDVTDPATWPEAFAGAESMFLVRPPAIGNVRRDLLPAVAAAREAGVRHVVFLSLQGAERTKVVPHATVESWLRESGLDWTFVRASFFCQNLSTTHRTDIRDRDEILVPAGRGATAFVDADDVAAVAAAALQDRAGHAGRAWTVTGPRALTYTEVAQILSAELGRPIDYPRPGLLRYARHARRTLGMPWPMVAVTAAIYTTARLGLAAGLSEDVRTVLGRAPRDLTEVVHRDRDLWLRADEPGVRPTDTEETP				NA	NA	NA	NA	NA
AK001_03209	498			hypothetical protein	ATGTCGTCCGACCGTGCCCTCGTCGACCTTGATCGTGCGCTGCTGGCCCTGCGCCGGTTCACCGCCGCCCCCGACGTCGTCGACGACCGCGGACGTGCGGTCGAGCTGTCCTCGCTGCTGGTCCTCGACGCGTTGCGCGACGGCCCGGCGAGCGTGCGCGACCTCGCCGAGCGGCTCGACGTGGCCCACTCCACCGCCAGCCGGTTCGTCACCCGTGCCGAGCGGGTCGGGCTCGTGGCGCGGAAGGCGTCACCGCACGACGGCCGCGAGTCGTGGGTCGAGGCGACGGACGCCGGACGGACGCTGACCGAGCGCGCCGAGAGCTACCGGATCGACCGGCTCGGCGGCGTCGTGGCCGGATGGGACCCGCAGGACGTGACCGACCTGTCCCGGCTGCTGACCCGGTTCGCGCAGGAGAGCCGCGACGTCAGCGCGCCACGGCCGAACGCAGGCCCCCGAGCCGCTCCACGCCGTCGCGCAGCACCTCGGGACGCTTGA	MSSDRALVDLDRALLALRRFTAAPDVVDDRGRAVELSSLLVLDALRDGPASVRDLAERLDVAHSTASRFVTRAERVGLVARKASPHDGRESWVEATDAGRTLTERAESYRIDRLGGVVAGWDPQDVTDLSRLLTRFAQESRDVSAPRPNAGPRAAPRRRAAPRDA				NA	NA	NA	NA	NA
AK001_03210	1224	dapC	COG0436	putative N-succinyldiaminopimelate aminotransferase DapC	ATGACGTCCACACCTCGGTGGCGCCAGGTCGCCGCCGCCACCGGCCTGCTGTCCGACGACGGGGCGATCGCGCAGACGATCTTCGCCGAGATGACGGTGCTGGCGAACCGCACCGGCGCGGTCAACCTCGGCCAGGGCTTCCCGGACGTCGACGGCCCGGACTGGATCAAGGAGGCGGCCAAGGCCGCCATCGACGCCGGCCGCAACCAGTACGCCCCCGGCGACGGCGTCCCCGAGCTGCGCCGCGCGATCGCCGACCACCAGCACCGCCGCTACGGCCTCGACGTCGACCCGGACGCCGAGGTGCTGGCCACCACCGGCGCCACCGAGGCCCTGACGGCCGCGATCCTCGCGCTGACCGGCCCCGGCGACGAGGTCATCACCCTCGAGCCGTTCTACGACTCGCACGCCGCCGCCATCGCCATGGCAGGCGCCACCCACGTCCCCGTGCCGCTGACCCCCGACCTGCGCCTGGACGCCGAGGCCCTGCGCACCGCGGCCACCGAGCGCACGGCGATGATCCTGGTCAACACCCCGCACAACCCGACCGGCACCGTGCTCACGCGCGCCGAGCTGGAGCAGGTCGCCGCCGTCGCCCGCGAGCGCGACACGGTCGTGCTGACCGACGAGGTCTACGAGCACCTGGTCTACGACGGCGCCGAGCACGTCCCGATGGCGACGCTGCCGGGGATGGCCGAGCGGACCCTCACCGTGTCGAGCTCGGGCAAGACGTTCAGCCTGACGGGCTGGAAGGTCGGCTGGATGCACGGTCCGGCCGAGCTGGTCACGGCGGTGCGCACGGTCAAGCAGTTCATGACCTACACCTCGGGGTCGGCGTTCCAACCGGCGATCGCCCAGGCGCTCGGCGACGACGAGGCGCCCCAGGCCCTGGCGGCGTCGCTCGCCGAGCGCCGCGACCTGCTCTGCGCGGGCCTGGAGCGGGCCGGGTTCGACGTCGTCGTCCCGCAGGGCACCTACTTCGTGGTGGCCGACGGCGCGGCGCACCTCGAGCGTCTCGGTCTGGCCGACGGCCACGACCTGTGCCTGCGCCTGCCCGAGCTGGTCGGGGTGGTCGGGGTGCCGGTCTCGGCCTTCTGCCGGGCCGGGTCGACGGCGGCCGAGACGTTGCGCTCGCGCGTCCGGTTCACGTTCGTCAAGCGTCCCGAGGTGCTGCGCGACGGCGTGGAGCGGCTCGGGGGCCTGCGTTCGGCCGTGGCGCGCTGA	MTSTPRWRQVAAATGLLSDDGAIAQTIFAEMTVLANRTGAVNLGQGFPDVDGPDWIKEAAKAAIDAGRNQYAPGDGVPELRRAIADHQHRRYGLDVDPDAEVLATTGATEALTAAILALTGPGDEVITLEPFYDSHAAAIAMAGATHVPVPLTPDLRLDAEALRTAATERTAMILVNTPHNPTGTVLTRAELEQVAAVARERDTVVLTDEVYEHLVYDGAEHVPMATLPGMAERTLTVSSSGKTFSLTGWKVGWMHGPAELVTAVRTVKQFMTYTSGSAFQPAIAQALGDDEAPQALAASLAERRDLLCAGLERAGFDVVVPQGTYFVVADGAAHLERLGLADGHDLCLRLPELVGVVGVPVSAFCRAGSTAAETLRSRVRFTFVKRPEVLRDGVERLGGLRSAVAR	PGPT0020025_80	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020025-ybdL-K14287	NA	NA
AK001_03211	285			hypothetical protein	ATGGAGAACGTCGTACCACTCGCCCTGGCCTCGCTCGTCGGTGGCGTCCTCGGGAGCATCTCGGCGCACGAGCATTTCGAGCGGGCACGGATTCGCTCGCGCACGGCGATGCTGGCTCTCGTGTCCGTCGTCTTCCTGGTGGGTGCGACGTCTCCGCTCACCATCGCTCTGGTGGCGGGAGCGTTCCTAGGGATGACCATCGAGATGTTTGCCGGATCCAGCACTGCCAGGAGTCGGGCCGGGAGTGCCGACGGCGGTCATGACGCGAACGCCACGGCAGAGTAG	MENVVPLALASLVGGVLGSISAHEHFERARIRSRTAMLALVSVVFLVGATSPLTIALVAGAFLGMTIEMFAGSSTARSRAGSADGGHDANATAE				NA	NA	NA	NA	NA
AK001_03212	435			hypothetical protein	ATGGCCGGTGAGAAGCACACGCTGCACATCCACGTCGACGCCCCCGTGGCGGACGTCTTCGACTATTTCGAGGACCCGGTGCACTTCGTGGCGGGGTTGGCCGAGAACCATCACGCCTCGGTCGTCTCGGTCGAGCGGTCCCCGGACGGCGTGGTGACCTCGTACGCGATGACCTATCGCGAGCTGGGCAGGGATCAGGTGACGCGGCTGACCCGGGAGGAGTACGTGGTCGGTGAGCGGATCGTCGACCACGCGGGGGCCGGTCCGATCCACATGCTCTCCTTCGAGCCGGAGGGCACGGGTACTCGTCTCACCTATGCCTGGGACGCGCCGCGGTGGTTGAAGGCGCTCGACGCGCTGTTCGTGCACTCGGACAAGGACGTGCGCAACGCGCTGGAGACGTTCCAGCGCGAGATCGAGGCGCGGGCGCGGTGA	MAGEKHTLHIHVDAPVADVFDYFEDPVHFVAGLAENHHASVVSVERSPDGVVTSYAMTYRELGRDQVTRLTREEYVVGERIVDHAGAGPIHMLSFEPEGTGTRLTYAWDAPRWLKALDALFVHSDKDVRNALETFQREIEARAR				NA	NA	NA	NA	NA
AK001_03213	819			hypothetical protein	GTGACGACGGATCCCGGGGTCCGACGACGCACTGTCGGTGTCGTGCTGACCGCGGGGGCGCTCGTCCTGACCGGAGGATGTCTCGGTGCCGACTACCGCGACCTGCCCGTGGACCTGTCCGCCTGGGACGACGGGTGGCTCGCCGCCGTCGAGCCGGAGGAGGAGCTCTGGGTCGGCCTCGACGGCAACAACGTCCGCCCGGGCCAGGCGTGGGAGCTCGTCGAGGTGGACGAGGCGGTGCTGCGGCTAACCACGAGCGAGCACGAGGTGCCGCCTCCGGGGTCGGACGATCCGGGAGACCCGCACCTGTCGACGACCGTCTTCGGATTCGTCGGGGTCGAGGTGGGCCGGACGCCGCTGCGTTTCGAGCTCGTCGTCGACGGCGAACGCGTCGACGTCGCGGAGTACACGGTCGACGTGGTCGACGACGCTTGCGCGGCTGAGACCGCCGCCGTGGCCAACCGCTGCGGCGGGGAGCTGTTCTCCTACCAGCCGCAGTACCTCCAGGCGCTGAACCACGGTGAGCAGGTGGACCTGGGCGTCGGGGAGGAGAGCGAGCTGGTCCTGCATGCGAACGCCCTCCACCCGGACGTGGCGTGGGAGATCGCGGACCACGACAGCACGGTGATCGCGGTGGTCGGTCCCGTCGCGCTCGGACCGGCGCGCTCGCCGGGGGGGGCTTCAGCGAGGTCGACCCGGAGGTGCGGCACTCGTTCCTGCCGGCCTGGCGCTTCACCATCACCGGCGTGGCGCCGGGGGAGAGCCCGCTGGTCCTCGAGATGGTCGTGGACGGCCAGCCGATCGACGTCTACGAGCTGA	MTTDPGVRRRTVGVVLTAGALVLTGGCLGADYRDLPVDLSAWDDGWLAAVEPEEELWVGLDGNNVRPGQAWELVEVDEAVLRLTTSEHEVPPPGSDDPGDPHLSTTVFGFVGVEVGRTPLRFELVVDGERVDVAEYTVDVVDDACAAETAAVANRCGGELFSYQPQYLQALNHGEQVDLGVGEESELVLHANALHPDVAWEIADHDSTVIAVVGPVALGPARSPGGASARSTRRCGTRSCRPGASPSPAWRRGRARWSSRWSWTASRSTSTS				NA	NA	NA	NA	NA
AK001_03214	1263			hypothetical protein	GTGGACACCGACGTCCTGACCCGCGACGAGGCGGGGAGCCTGCTGACGGGCGAGGTCCGTGAGCTCGTGCGCCGGCGCGGCATCGATCCCGTGACCGACCGGCACGGCCTCGACCGGCTGGTGGCCGAGGCCGTCGCCGACTACAGCGACCGCGCGACGGCCGGTGTCGTGCCGCCCCTGGTGGATGCGGTCGGGACCACGCGGGCGCTCGTCGACGCCTTCGGCGGGTTCGGGCCGTTGCAGCCCTACCTCGACGACCCGGAGATCGAGGAGGTGTGGATCAACAACCCGGCCCAGGTGTTCGTCGCCCGGCGTGGCGTGAGCGAGCTGACGACGACGTTGCTCACGGCTCAGCAGGTCCGCGACCTCGTCGAGCGGATGCTGAAGTCCAGCGGTCGGCGGCTCGACCTGAGCTCGCCGTTCGTGGACGCCACGCTCCCGGGCGGGGAGCGGCTGCACGTCGTGATCCCCGACGTCACGCGCGAGCACCTGGCGGTGAACATCCGCAAGCACGTCGTGCGGGCGCACCATCTCGACCACCTGGTGCGGCTCGGATCGCTGACGGCGCACGCTGCCGGCTTCCTCGACGCGGCCGTGCGGGCCGGCGCGAACATCCTGGTGGCCGGAGCCACGCAGGCCGGCAAGACCACCATGCTCAACGCGCTTGCCGGGTCCACCCCGGCCGGTCAGCGCGTCGTCTCGTGCGAGGAGGTCTTCGAGCTGCGGCTGCCGGTGCGCGACCACGTCGCGATGCAGTGCCGGCAGCCCAGCCTCGAGGGCACCGGGGAGATCCCGCTGCGGCGCCTGGTCAAGGAGGCCCTGCGGATGCGGCCGGACCGGATCGTCATCGGCGAGGTGCGGGAGGCGGAGAGCCTCGACATGCTCATCGCCCTGAACGCGGGTGTTCCCGGGATGGGCACCGTGCACGCGAACTCGGCGCGCGAGGCGGTCACGAAGATGTGCACGCTGCCGTTGCTCGCCGGAGAGAACATCTCGGACCGCTTCGTCACCCCGACGGTCGCGTCCGCGCTCGACGTCGTGGTCCACCTCGGAGTGACGCCCGACGGCGTGCGGCAGTGCCGCGAGATCGTCGCGATCACCGGTCGTGTCGAGGAAGGACGCGTCGAGACGGCGCAGCTCTTCCGTCGTCGCCCGGCCCGCTTCGGCGGCGACCTCGTCCGGGGGGACGGCTTCCCGGCCGGTGTCGAGAAGTACGAACGCCTCGGTGTCGACGTGCACGCCCTGCTGGCCGGTGAGCGCTGA	MDTDVLTRDEAGSLLTGEVRELVRRRGIDPVTDRHGLDRLVAEAVADYSDRATAGVVPPLVDAVGTTRALVDAFGGFGPLQPYLDDPEIEEVWINNPAQVFVARRGVSELTTTLLTAQQVRDLVERMLKSSGRRLDLSSPFVDATLPGGERLHVVIPDVTREHLAVNIRKHVVRAHHLDHLVRLGSLTAHAAGFLDAAVRAGANILVAGATQAGKTTMLNALAGSTPAGQRVVSCEEVFELRLPVRDHVAMQCRQPSLEGTGEIPLRRLVKEALRMRPDRIVIGEVREAESLDMLIALNAGVPGMGTVHANSAREAVTKMCTLPLLAGENISDRFVTPTVASALDVVVHLGVTPDGVRQCREIVAITGRVEEGRVETAQLFRRRPARFGGDLVRGDGFPAGVEKYERLGVDVHALLAGER	PGPT0016025_2361	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283	NA	NA
AK001_03215	858			hypothetical protein	ATGGGGGTCGTCGTCGGTCTCGTCGGCGGGGCCGGGCTGTTCTGTCTCTGGTGGTCCTGCTGGGAGCGGCCCGACCGCCGACGACGGCGCGGTCGCCGGTACCAGGCTGTGCAGGACCTCCTCGTCCAGGCCGGCGCGCCGACGGTCACGCCGGGAGCACTGTGGGCGGTCAGCGCAGGGATCGCGGTCGTCGTGCTGCTCGTGGGGCTGGCCCTGACCCGGTCACCGGCCATCGCCGCCTGCTTCGCGGTCATGGCTGCGGTGGCACCCGAGGCGCTGGTCCGCACGCGAGCCCGTCGACGACGCGAGGACCTGCGCGAGGTCTGGCCGGACGTCGTGGACCACCTCGCCTCGGGCGTGCGGGCCGGTCTCTCCCTCCCGGAGGCCGTCGCCCAGCTCGGCGAGCGTGGGCCCGAGGCCCTGCGCGAGCCGTTCGCGCAGTTCGCCGCGGACCACCGCGCGACCGGTCGGTTCGGCGAGTGCCTCGACCTGCTCAAGGACCGGCTCGCGGACCCTGTCGCCGACCGGATCATCGAGTCGCTCCGGCTGACCCGCGAGGTCGGTGGCACCGACCTCGGACGGCTGCTCCGCAGCCTGTCGAGCTTTCTGCGCCAGGACCTGCGGACCCGCGGAGAGCTGGAGGCGCGCCAGTCCTGGACCGTCAACGGTGCGCGGGTGGCGGCCGCCGGCCCGTGGGTCGTGCTGGCCCTCCTGGCCAGCCGACCCGAGACCGCACAGGCGTACAACTCCGCGGCCGGGGTGGCCGTGCTGCTCACCGGTGCCGGGTGCTCGGTGGTGGCCTACCGGGTCATGCGACGGATCGGACGCCTGCCGGAAGAAGGGCGGGTGCTGCGATGA	MGVVVGLVGGAGLFCLWWSCWERPDRRRRRGRRYQAVQDLLVQAGAPTVTPGALWAVSAGIAVVVLLVGLALTRSPAIAACFAVMAAVAPEALVRTRARRRREDLREVWPDVVDHLASGVRAGLSLPEAVAQLGERGPEALREPFAQFAADHRATGRFGECLDLLKDRLADPVADRIIESLRLTREVGGTDLGRLLRSLSSFLRQDLRTRGELEARQSWTVNGARVAAAGPWVVLALLASRPETAQAYNSAAGVAVLLTGAGCSVVAYRVMRRIGRLPEEGRVLR	PGPT0022290_2096	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510	NA	NA
AK001_03216	933			hypothetical protein	ATGACGCTCGCCGTGACCGGCGCCCTGCTGGGCCTCCTCGCCGGGGTCGGCCTGCTGCTCGCGCTGGCCGGGGTCCGCGGCCGCCGCATCTCGCTGGACGAACGCCTCGCCCCGGCGCTGCGTCGTCGCGACGCCACTTCCGGCCTGCTGCGCGACCAGGTGACCCGTTCGCCGTTCGGGGTCGTCGACCGTCTCGTCGCCCCGTGGGTCGCGGACGCGGCCGGATGGTTCGAACGCCTCGGCTCCACGCGGGAGGACGTCCAGCGTCGGCTCGACCGGGCCGGGTTGCGCGAGACGGTCGAGCAGTTCCGTGCCCGTCAGCTGGTCTGGACCACGCTGGGTCTGGCCGGCGGACTGCTCCTGTCCGTCGTGCTCGCCGCGACCCGCGGCTCCTCCGTCGTGGTGCTGGCCGCCCTGGTGCTCCTGGCGGGCGCCACCGGTTTTGTCGGGTGCGACCAGCGGCTCTCGGGGGCCGCCCGGCGTCGCGAGGAACGGATGCTCGCCGAGTTCCCCACCGTCGCCGAGCTCCTCGCACTGGCCGTCACCGCCGGCGAGGGGCCGGTGCCGGCTCTCGAGCGCGTCGCGGCCACGGCGCGCGGCGAGCTGTCCGGAGAGCTCGCGACGATGCTCGCGGACGTCCGGGCGGGAGCGCCCATCACCGTGGCCCTCACCGCCATGGCCGACCGCACGGGCCTGCCGTCCCTGACGCGGTTCGCCGAGGGAGTGGCCGTCGCGCTCGAGCGCGGCACCCCGCTCGCCGACGTCCTGCGGGCCCAGGCGCAGGACGTCCGGGAGTCCGGGCGCCGCGCCCTCATGGAGGCCGGAGGCAAGAAGGAGGTCGCCATGATGGTCCCGGTGGTGTTCCTCATCCTGCCGATCACGGTCGTCTTCGCCGTCTTCCCCTCGCTGGCCACGTTGCAGATCGGACTGTGA	MTLAVTGALLGLLAGVGLLLALAGVRGRRISLDERLAPALRRRDATSGLLRDQVTRSPFGVVDRLVAPWVADAAGWFERLGSTREDVQRRLDRAGLRETVEQFRARQLVWTTLGLAGGLLLSVVLAATRGSSVVVLAALVLLAGATGFVGCDQRLSGAARRREERMLAEFPTVAELLALAVTAGEGPVPALERVAATARGELSGELATMLADVRAGAPITVALTAMADRTGLPSLTRFAEGVAVALERGTPLADVLRAQAQDVRESGRRALMEAGGKKEVAMMVPVVFLILPITVVFAVFPSLATLQIGL	PGPT0022295_1124	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511	NA	NA
AK001_03217	192			hypothetical protein	ATGACCACTCCTCAGACCGACGGGCCCGTACGCGATCGGCCTGCTGCCGATGACCCCGAGCGGGGTGACGTCCCCGGCTGGGTCCTCGTCACGCTGATGACGGCCGGCCTGGTCGTCGCGCTGTGGGCGTTGGCCGGACCGTTGCTCGAGGACGCGTTCACCCAGGCGATCGAGAGCGTCACGGGTCTGTGA	MTTPQTDGPVRDRPAADDPERGDVPGWVLVTLMTAGLVVALWALAGPLLEDAFTQAIESVTGL				NA	NA	NA	NA	NA
AK001_03218	423			hypothetical protein	GTGAGGCGGCGCCGGCCGACGTCGCGCGAGTCGTCGACCGCGCGCCGTACCGAGGACGAACGGGGATCGGCCGTCGTCGAGTTCGCGCTCGTCTCGGCGTTGCTCGTCACGCTCTTCCTCGGCGTCGTCCAGGTCGCGCTGGCGCTGCACGTGCGGGCCGTGGTGATCGACGCGGCGGCCGAGGGTGCCCGGCTCGCGGCGCGGACCGACCGTGACCTGTCGGCCGGCGCGCAGCGCACGCACGACCTGCTGAGCTCGGCGCTCAGCGACCGGTATGCCGGTGACATCGCCGTCGGGCGGACCAGCCGCGACGGGTTGGACCTGATCCGGGTGACGGTCAGCGCTCCGCTGCCCGTCGTGGGGATCCTGGGGCCCACCGGCGCGATGACCGTCGACGGTCATGCCGTGGACGAGGCGTCGTGA	MRRRRPTSRESSTARRTEDERGSAVVEFALVSALLVTLFLGVVQVALALHVRAVVIDAAAEGARLAARTDRDLSAGAQRTHDLLSSALSDRYAGDIAVGRTSRDGLDLIRVTVSAPLPVVGILGPTGAMTVDGHAVDEAS				NA	NA	NA	NA	NA
AK001_03219	483			hypothetical protein	GTGACCGGACCGTCCACGACCACAGGGCCCGCGCGCACGAGGACGGCGTCGTCCGGCGAGGAGGGAGCGGCGGTCGTCGAGTTCCTGGGCGTCGGTGTGCTGCTGCTCGTCCCGCTCGTCTACCTGGTGGTGACGCTGGGCCAGCTCCACGCCGCCGGGTTCGCGGTCGAGGGCGCCGCCCGGGATGCCGCGCGGGCCGTGGTGACGGCGGACTCCGCGGCGCAGGGGGCCGTCCATGCCCGCGCCGCGACCGAGGTGGCGCTCGCCGACCAGGGCTTCGCCGTCGACGGCGCTGACCTGCTGCAGCTGGAGTGCTCGGAGAACCCGTGCCTGACGCCGGGGGCGACGGTCGGTGTCCGGGTGCGCTACGAGGTGCCGCTGCCCCTGGCGCCGGCGGCACTGCAGGACTGGGTGCCGCTGAGCATCCCGGTCGAGGCCGCGCACGTGGCACCGGTCGAGGAGCACGTGGCGGCCCGCCCGTGA	MTGPSTTTGPARTRTASSGEEGAAVVEFLGVGVLLLVPLVYLVVTLGQLHAAGFAVEGAARDAARAVVTADSAAQGAVHARAATEVALADQGFAVDGADLLQLECSENPCLTPGATVGVRVRYEVPLPLAPAALQDWVPLSIPVEAAHVAPVEEHVAARP				NA	NA	NA	NA	NA
AK001_03220	426			hypothetical protein	ATGCTGCTCACGGCCGGGTTCGTGGCGGTGGGTCTGATGCTGGTCGGCATGGTCGCCTCGGCGGCGTCGGTGCACCTGGACCGCAAGCACCTGTTCGACCTGGCGGACTCCCTCGCGGTGGCCGGGGCGGACTCGATGTCGCAGGCGACCTACTACGGCGGGGCCGCGGCGCCGGACTCCTCCGGGGTGCTGACCCTGACCGACGCCGGCGTGCGCGCGGCGGTCGTCGAGCACCTGGCGGCACAGCCGACGTCGTCCGCCCCGGGCCTGCGCGGCGTCCGGGTGACGGAGGCGGTGACGCCGGACGGTCGCAGCGCCCGGGTCAGCCTCGTCGGCAGCTCCCACCCGCCGCTGGTGCGGTGGTTCACCGACTCCTTCGGCGAGGGCGTCACCGTGACGGCCACGGCGACCGCACGGGCGGGGTAG	MLLTAGFVAVGLMLVGMVASAASVHLDRKHLFDLADSLAVAGADSMSQATYYGGAAAPDSSGVLTLTDAGVRAAVVEHLAAQPTSSAPGLRGVRVTEAVTPDGRSARVSLVGSSHPPLVRWFTDSFGEGVTVTATATARAG				NA	NA	NA	NA	NA
AK001_03221	888	cysM	COG0031	Cysteine synthase B	ATGGAGGACGTCATCGGCGGCACCCCGCTGGTGCGTCTGCAGCGCCTGCCGGGGCCGGAGAACGAACGCCGCGGCAACGTGCTGCTCGCCAAGCTCGAGGGGAACAACCCGGCCGGCTCGGTGAAGGACCGGCCGGCGATCAGCATGATCCGGGGCGCCGAGGAGCGAGGGGAGATCGCCCCCGGCGACACCCTGCTGGAAGCCACGTCCGGCAACACCGGGATCGCCTTGGCGATGGCGGCGGCGATCAGCGGCTACCCCCTCGTCATCGTGATGCCCGAGGACGCCTCCACCGAGCGGATCCAGACGATGAAGGCGTACGGAGCCGACCTGGTGCTCACCTCGGCGAAGGGCGGCATGGAAGAGGCCCGCGACGTCGTGACGCGGATGGAGCGGGAGGGCCGCGGCCGGGTCCTGGACCAGTTCGGCAACCCGGACAACCCCCGTGCCCACGAGGTCGGCACGGGCCCGGAGCTGTGGCGCCAGACCGACGGACGGATCACGCACTTCGTGTCCGCGATGGGCACCACCGGCACGATCACCGGGGTCTCGCGGTTCCTGAAGTCGCGCAACCCCGAGGTCCAGATCGTCGGGGCCCAGCCCGCGGAGGGCTCGCGGATCCCCGGGATCCGCGCCTGGCCACCGGAGTACGTGCCGAGGATCTTCGACCCGTCGGCGGTGGACCGCACCGTGGAGGTCACCCAGACCGACGCCGAGGCGATGGCCCGCCGGCTGGCCCGCGAGGAGGGCATCTTCGGCGGTGTGTCCGCGGCCGGCGCGTGCTGGACCGCCCTGCAGGTGGCCGAGGAGGTCGAGGGGGCGACGATCGTCTTCGTGGTCTGCGACCGCGGCGACCGGTACCTCTCCAGCGGCGTGTTCCCCGCCTGA	MEDVIGGTPLVRLQRLPGPENERRGNVLLAKLEGNNPAGSVKDRPAISMIRGAEERGEIAPGDTLLEATSGNTGIALAMAAAISGYPLVIVMPEDASTERIQTMKAYGADLVLTSAKGGMEEARDVVTRMEREGRGRVLDQFGNPDNPRAHEVGTGPELWRQTDGRITHFVSAMGTTGTITGVSRFLKSRNPEVQIVGAQPAEGSRIPGIRAWPPEYVPRIFDPSAVDRTVEVTQTDAEAMARRLAREEGIFGGVSAAGACWTALQVAEEVEGATIVFVVCDRGDRYLSSGVFPA	PGPT0002820_1009	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0002820-cysM-K12339	NA	NA
AK001_03222	600			hypothetical protein	GTGACCGCCGTCGACCCGAAGAAGACCTGGCGCTCCCTGTACTCCGCGCCGCGCGAGCCGGAGCTCATGACCGTGCCGCCCCGGCCCTACCTGCTGGTCGACGGCGCGGGAGCGCCGGGTGGCCCGGCGTACCTGGCCGCGGTGACGAGCCTGTACCCGGTGGCCTACGCCCTGCGTGCCGCCGTCAAGGAGGCCACCGGGACCGCGTACACGGTGATGCCGCTGGAGGGCCTGTGGTGGGCCGAGGAGATCGAGCGGTTCCGCGAGCTGCCGCGCTCGGCGTGGCTCTGGACGATGATGATCAGCCTGCCCGACGACGTCGCGGCGGTCCCGGCGGCCGACCTCGTCGAGCGCACGACGGCGGCACGCGACCTGCCGGCTCCCGTCCGGCTGGAGCACTTCGGTGACGGCGAGGCCGCCCAGGTGCTCCACGTCGGGCCGTACTCCGCCGAGGCGCCGACGGTGGACGCGCTGCACTCCTTCGTCGAGGCCTCGGGACGGGAGCTGACCGGACGGCACCACGAGATCTACCTGTCCGACCCGCGGCGGGTCGCGCCTGAACGGTTGCGGACGATCATCCGGCAGCCGGTGACTGCATGA	MTAVDPKKTWRSLYSAPREPELMTVPPRPYLLVDGAGAPGGPAYLAAVTSLYPVAYALRAAVKEATGTAYTVMPLEGLWWAEEIERFRELPRSAWLWTMMISLPDDVAAVPAADLVERTTAARDLPAPVRLEHFGDGEAAQVLHVGPYSAEAPTVDALHSFVEASGRELTGRHHEIYLSDPRRVAPERLRTIIRQPVTA				NA	NA	NA	NA	NA
AK001_03223	246			hypothetical protein	GTGCATATGCGTCCGCTCGTGTTGTCGGACGCCGCCCCTACTCTGCCTGTCATGACCCCTACGGATGCCCTGCGCAACGCCCGTCCGAGGATTCAGGCGGCGGTCGCTCAAGGTTCCTTCCTCGCGTGCCAGGAGGCACAGGCCGCCGGAGCCTCCGAGCATGACGTCGCCGCGATCCTCAAGGCCTACGCCTGGGCGTGGAAGGATCTCGCGGAGTGGCTCGACGAACGTGGCGCGACCGTCTAG	MHMRPLVLSDAAPTLPVMTPTDALRNARPRIQAAVAQGSFLACQEAQAAGASEHDVAAILKAYAWAWKDLAEWLDERGATV				NA	NA	NA	NA	NA
AK001_03224	699			hypothetical protein	ATGGACACCGTGAGCGACGCAGCGGACGGGACGACGGCCTCCAGGACGAGACGACGCGCTGCGGTGGCCGTGCTCGCGGCGCCGGCGGTCGCCGGCCTCACCGCCGCGGCCGGCGTGGTCGCCACCGGTGCGCACCGGAGGCTCGGCACCACCGAGGCCGAGACGCGCGTCTGGCTTCCCGGCGACGAGCTGCTGGAAGGCGGCGTCGTCCAGGCCGACCGGGCGTGCACCATCGCGGCCCCGCCGCCGGACGTCTGGCCGTGGATCGCCCAGCTCGGCCAGGACAAGGCCGGCTTCTACTCGTTCGAGGCGCTGGAGAACCTCGTCGGCTGCCGGATCACCGGCGCGACGACGATCCACCCCGAGTGGCAGGACGTCCAGGTCGGCGACGCCTTCCGTCTCCACCCGGACCTGGCGCTGCGGGTGGCCGAGGTCGTGCCCGGCAGCCACCTGGTGGTGACCTCCCAGAGGGCCGACGGCGCACCCGAGGGTCACGACTTCACCTGGGCGTTCCACCTCGAGTCGGTCTCCGTCGGGCCGGCGCCGGCCACCCGGCTGCACCTGCGCGAGCGGTACGAGTCGAAGCGCCCGGTCGACCGGGCCGTGTCCGAGGCCCTCAGCCTGGTCAGCGCCGCGATGAGCTGGCGCATGATGCGCCGGCTCGCCGAGCTGGCGGCCGCTCCCCCAGCTCGGACGTGA	MDTVSDAADGTTASRTRRRAAVAVLAAPAVAGLTAAAGVVATGAHRRLGTTEAETRVWLPGDELLEGGVVQADRACTIAAPPPDVWPWIAQLGQDKAGFYSFEALENLVGCRITGATTIHPEWQDVQVGDAFRLHPDLALRVAEVVPGSHLVVTSQRADGAPEGHDFTWAFHLESVSVGPAPATRLHLRERYESKRPVDRAVSEALSLVSAAMSWRMMRRLAELAAAPPART				NA	NA	NA	NA	NA
AK001_03225	762			hypothetical protein	ATGCGTCGCACACTCACCGGCCTGATCGCCGTCTTGCTCGCCGCCGTCGTCACCGTCGTGGCCACCGACCTCGACGAGCGGCTGAACCTCGACCTCGGCCTCGGGGATGTGGTCTCCGAGGCGGCGGGCGCCGTCCTCGGCGACGGCGACCTCGCGACCGGCGACTCCGGCGACGACTCGTCCGCCGCCCCGGACGGGTCGGTAGACGTCGAGCAGGTCACCGCCCAGCTCGACGGGATCACCGTCAAGGGCAAGGCACCGCAGACCGGCTACGACCGCGACGAGTTCGACCACTGGACCGACCCGGACGGCAACGGCTGCGACGCCCGCAACGACATGCTCGCCCGCGACCTCGTCGAGGAGACGGTGGACGACGACGGCTGCACCGTCCTGACCGGCACGATGGAGACCGAGCCGTACACCGGGGAGACGGACCGCGCGTTCGAGCGCGGCAGCGACGACCTGGCGCGGTCCCTCGACGCCGAGCACCTCGTCGCCCTGCAGAACGCGTGGATCTCCGGCGCGCACGACTGGACCGAGGACCGCCGCGAGGAGTTCGCCAACGACCCGGCGAACCTGCTCATGGTCGACCCCAGCGAGAACCGCGCCAAGGGCGCGGCGAACGCGGCCGAGTGGCTGCCGCCGAACAGGGCGTTCCGCTGCCAGTACATCGCCGGGCAGATCGCCATCAAGGCCGACTACGAGCTGGCGATCACCCAGCCCGAGAAGGAGGCCATGACGCGCGTGCTCGAGCAGTGCTGA	MRRTLTGLIAVLLAAVVTVVATDLDERLNLDLGLGDVVSEAAGAVLGDGDLATGDSGDDSSAAPDGSVDVEQVTAQLDGITVKGKAPQTGYDRDEFDHWTDPDGNGCDARNDMLARDLVEETVDDDGCTVLTGTMETEPYTGETDRAFERGSDDLARSLDAEHLVALQNAWISGAHDWTEDRREEFANDPANLLMVDPSENRAKGAANAAEWLPPNRAFRCQYIAGQIAIKADYELAITQPEKEAMTRVLEQC				NA	NA	NA	NA	NA
AK001_03226	1116			hypothetical protein	ATGACGCACGAGGACACCGGTGCCACGCCGTCGCGCCGTCGGGACCTGCTGCGGCGACGCGCCGCGGCTGCGCCGCCGTCGGCGCCGGCCGAGGTGCCGCACCTGACCCGGTACGTCGAGGACGGCCGTCCGTCGCCGGCGCCGCCGGGCGCGAGCGTGGCCGACGGCCTGCGGTTCGCCGACTCCGCGGACGACCGCATGACCATGTCCCTCTACCCGCGGCCGACGGAGCCCGCCGTGCGGGAGCTGGCCGAGGCGTGGGACCTGCACCCGCTGGTCGTCGAAGACCTGCTGCACGCCCACCAGCGGCCGAAGCTCGAGCGCTACGGGGACATCCTGTTCCTCGTCGTACGGTCGGCCTGGTACGTCGACGCCGAGGAGGACGTGGTCCTGGGGGAGTTCCACGTCCTCGTGCGGCCGGGGGCCGTGGCGGTCCTGTGTCAGGACGGTCGCTGGATCGACGGCACACCCGCCGCCGGACTCGACGAGGAGACCGTCCGCGCCGACAGGACGGTGGGCACCCTGCTCGCCGACGAGCACCTGCTCCGGCTCGGGCCGGAGGCGGTCGCCTACCGGCTGCTGGACGCGATCGTCGACGGGTACGCGCCCGTGCTGCAGGGCGTCGGGATCGACAAGGAGCAGATCGAGCGGCAGGTCTTCAGCGGGGACGCCGCCGTGGCCGAACGCATCTACCGCCTCAGCCAGGAGGTCATCGACATGCAGCACGCGACGACGTCGCTGACCGAGGTGCTCGAGTCCCTGCGGGCGGGCTTCGCGAAGTACGCCGTCGCGGCCGAGCTGCAGGCCTACCTCCAGGACGTCTCGGACCACCTCACCCGCGCCGACGCGCGCGTGCGGGAGTACCGCGAGGCGCTCGGGCAGATCCTCGACGTCAACGCGACGCTGGTCGCGCAGCGCCAGAACGAGGACATGAAGAAGATCTCCGGCTGGGCCGCGATCCTCTTCGCCCCGACCCTGGTCGCCGCCGTCTACGGCATGAACTTCGAGGTCATGCCCGAGCTGCACTGGGCGTTCGGCTACCCGCTGGCGGTCGGCCTGATGCTGACCTTCTCCGTGGTGCTCTACGTCGTCTTCAAGCGTGGTCGGTGGATGTAG	MTHEDTGATPSRRRDLLRRRAAAAPPSAPAEVPHLTRYVEDGRPSPAPPGASVADGLRFADSADDRMTMSLYPRPTEPAVRELAEAWDLHPLVVEDLLHAHQRPKLERYGDILFLVVRSAWYVDAEEDVVLGEFHVLVRPGAVAVLCQDGRWIDGTPAAGLDEETVRADRTVGTLLADEHLLRLGPEAVAYRLLDAIVDGYAPVLQGVGIDKEQIERQVFSGDAAVAERIYRLSQEVIDMQHATTSLTEVLESLRAGFAKYAVAAELQAYLQDVSDHLTRADARVREYREALGQILDVNATLVAQRQNEDMKKISGWAAILFAPTLVAAVYGMNFEVMPELHWAFGYPLAVGLMLTFSVVLYVVFKRGRWM	PGPT0014010_248	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284	NA	NA
AK001_03227	369			hypothetical protein	ATGAGCGACGACCGGCTGCCCGTCGACCTGGACCAGATGTTCGACCTCGCCCGCGCCGGCGCGGACCTGCTGCTGGAGTTCGTCGACGACGGCGTACCCGTCGACCTCGCCGACGTCCACGGCAACTCCCTGCTCATGCTCGCCGCCTACCACGGCCACGCCGACCTGGTCCGGGGCCTCGCGCAGCGAGGAGCCGACGTCGACCGGCTCAACGAGCGCGGCCAGTCCCCGCTCGCCGGCGCGGTGTTCAAGGGTGACCCGGCCGTCGTCGACGTCCTCGTCGCGGCGGGCGCCGACGTCGACGCCGGTCAGCCGAGCGCCCGCACGACGGCCCGGATGTTCGAGCGTCCGGTGCCGGGAGAGGCGTGA	MSDDRLPVDLDQMFDLARAGADLLLEFVDDGVPVDLADVHGNSLLMLAAYHGHADLVRGLAQRGADVDRLNERGQSPLAGAVFKGDPAVVDVLVAAGADVDAGQPSARTTARMFERPVPGEA				NA	NA	NA	NA	NA
AK001_03228	1110	prfB	COG1186	Peptide chain release factor 2	GTGGCCACTATCGACTTCCCCGCCGAGATCAAGGGGCTCCGCTCCACCCTCGAGTCCATCGAGTCGGTGAGCGACCCCTCTGCCCTGGAGGCGAAGATCGCCGAGCTCTCCGAGCAGGCGGCCGCTCCCGACCTCTGGGACGACCAGGAGAACGCGCAGCGCGTCACCTCGGCCCTGTCGCACGCCCAGGACGAGCTCGACCGGGTCAAGAAGTTCAGCAGCCGCATCGACGACGTCGAGACGCTCGTCGAGCTCGGCCACGAGATGGACGACGCCGACTCGCTCGCCGAGGCCGAGACCGAGGTCGCCGCGCTGCGCAAGGAGCTCGACTCCCTCGAGGTGCGCACCTTGCTCAGCGGCGAGTACGACGCCCGCGAGGCCGTCGTGACGATCCGCGCCGGCGCCGGCGGCGTCGACGCCGCGGACTTCGCCGAGATGCTCATGCGCATGTACCTGCGCTGGGCCGAGCGCCACGGCTACCCGGCCAAGGTCATGGACACCTCCTACGCCGAGGAGGCCGGCCTGAAGTCGGCCACGTTCGAGGTGAACACCCCGTACGCGTTCGGGCACCTGTCGGTCGAGGCCGGCACGCACCGCCTGGTGCGCATCTCGCCGTTCGACAACCAGGGCCGTCGCCAGACGTCGTTCGCCGCGGTCGAGGTCATCCCGCTCATCGAGCAGACGGACCACATCGAGATCGACGAGAACGAGCTGAAGATCGACGTCTTCCGCTCCTCGGGCCCCGGTGGTCAGTCGGTCAACACCACCGACTCGGCCGTGCGCATGACGCACATCCCCACCGGCACCGTGGTCTCGATGCAGAACGAGAAGTCGCAGATCCAGAACCGTGCCGCCGCGCTGCGCGTCATGCAGTCCCGCCTGCTGCTGATCCGTCAGCAGGAGGAGGCCGCCAAGAAGAAGGAGCTCGCCGGCGACATCAAGGCGAGCTGGGGCGACCAGATGCGCTCCTACGTGCTGCACCCGTACCAGATGGTCAAGGACCTGCGCACCGAGCACGAGTCCGGCAACACCCAGAACGTGTTCGACGGCGCGATCGACGACTTCATCGAGGCCGGCATCCGGTGGCGGCGCAACCAGGCGGACGACTGA	MATIDFPAEIKGLRSTLESIESVSDPSALEAKIAELSEQAAAPDLWDDQENAQRVTSALSHAQDELDRVKKFSSRIDDVETLVELGHEMDDADSLAEAETEVAALRKELDSLEVRTLLSGEYDAREAVVTIRAGAGGVDAADFAEMLMRMYLRWAERHGYPAKVMDTSYAEEAGLKSATFEVNTPYAFGHLSVEAGTHRLVRISPFDNQGRRQTSFAAVEVIPLIEQTDHIEIDENELKIDVFRSSGPGGQSVNTTDSAVRMTHIPTGTVVSMQNEKSQIQNRAAALRVMQSRLLLIRQQEEAAKKKELAGDIKASWGDQMRSYVLHPYQMVKDLRTEHESGNTQNVFDGAIDDFIEAGIRWRRNQADD				NA	NA	NA	NA	NA
AK001_03229	906	btuD_15		Vitamin B12 import ATP-binding protein BtuD	GTGATCCGGTTCGAGAACGTCTCGAAGGTCTATGCGCGGGGGGCGCGCCCTGCGCTGGACGACGTCTCCGTCGACGTCGAACGCGGCGAGTTCGTGTTCCTCGTGGGGGCCTCCGGCTCCGGGAAGTCGACGTTCCTGCGCCTCGTGCTGCGCGAGGAGCGCCCGACCGGCGGGCACGTCTACGTCGCCGGCCGTGACCTGACCCGCCTCTCGCCGTGGCGGGTGCCCGGCCTGCGCCGCGGCATCGGCATGGTGTTCCAGGACTTCCGGCTGCTGCCGAACAAGACCGTCTACGAGAACGTCGCCTTCGCCCTGCAGGTCATCGGCCGCCCCCGCCACCACATCCGCACCACCGTGCCCGAGGTGCTCGAGTGGGTGGGCCTGGACGGCAAGGAGAAGCGCCGGCCGCACGAGCTGTCCGGTGGGGAGCAGCAGCGCGTCGCCATCGCGCGCGCCTTCGTCAACCGGCCCAAGATCCTGCTCGCCGACGAGCCCACCGGCAACCTCGACCCCACCACCTCGCAGGGCATCATGCGCCTGCTGGACCGCATCAACCGCACCGGCACCACCGTGGTCATGGCGACGCACGACGACGAGATCGTCAACGAGATGCGTCGCCGCGTCGTCGAGCTGTCCACCGGGCGCATCGTGCGCGACGAGGTCGAGGCCGCCTACGGCCGCCGCGAGGAGATCCTGCCGCAGGTCGGACCCGTCGCCGTCCTCGATGCCCCCGGTCGCGGGGTGCCCGCCCGCCGCATCTCGGTGCGGCCGGAACCGGGCGACGTCGCGGCCGAGCGCGCCGCCGAGCAGGCGGCCGCCCGAGGCGTCGACCCCCCGCCGGTCGAGGTCGACGAGGACTCCCGCGAGATGTCGGGTGCCATGGCGTCCCGGGCCGAGGAGGCCTGA	MIRFENVSKVYARGARPALDDVSVDVERGEFVFLVGASGSGKSTFLRLVLREERPTGGHVYVAGRDLTRLSPWRVPGLRRGIGMVFQDFRLLPNKTVYENVAFALQVIGRPRHHIRTTVPEVLEWVGLDGKEKRRPHELSGGEQQRVAIARAFVNRPKILLADEPTGNLDPTTSQGIMRLLDRINRTGTTVVMATHDDEIVNEMRRRVVELSTGRIVRDEVEAAYGRREEILPQVGPVAVLDAPGRGVPARRISVRPEPGDVAAERAAEQAAARGVDPPPVEVDEDSREMSGAMASRAEEA	PGPT0020520_4226	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071	NA	NA
AK001_03230	912	ftsX	COG2177	Cell division protein FtsX	GTGCGCCTGCAGTTCATCCTCGGCGAGGTCTTCCGCGGACTGCGCCGCAACGCCACGATGGTGGTCTCGGTCGTCCTCGTCACGTTCGTGTCGCTGACGTTCGTCGGGGCCGCGGCGCTGCTCCAGATGCAGATCGACAAGCTCCAGGGCGACTGGTACGACCTGGTCGAGGTGTCGGTCTTCCTCTGCCCGGAGGGGTCGACGGCGTCGACCTGCGCCGGGGGAGAGGCGACCGAGGAGCAGATCAGCACCGTCGAGCGCACGATCAGCACCGAGCTCGACGACGTCGTCTCCACGGTCTACTTCGAGTCGAAGGAAGACGCGTTCGAGGCGTTCTCCGCCCAGTACCCGGACGGTTACCAGGGCACCCAGCTGACCGAAGAAGACATGCAGGCGTCCTTCCGTCTCCAGCTCGCCGACCCCGAGCAGTACCAGGTGGTCGACGAGGTCCTCTCGGGGCGGGACGGCGTCGAGGTGGTCGAGGACCAGCGCGCGATCTTCGAACCGCTGTTCCTGGCCCTGAACCGTTCCTCGCTCGTCGCGGTCGGCCTGGCGGTCGTCATGCTCGTGGCCGCCGCCCTGCTCATCATCACGACCATCCGGCTGTCCGCCGTGTCCCGGCAGCGGGAGACCGGCATCATGCGGCTCGTGGGTGCCTCGACGCTGTTCGTCCAGCTGCCCTTCATGCTCGAGGGCGCCCTCGCGGCGCTGCTCGGCGCCGTGCTGGCGGTGATCGGGCTGTGGGCGGCCGTGCAGTACCTGGTGATCGACTGGCTCGCCGAGTCGGTCGACTGGGTAGAGCACGTCACCACGGCCGACGTGCTGACCATCGCCCCGCTGCTGCTGGGGCTGGCCGTGGCGGTCGCCGCCGTGTCCTCCGCCGTGACGCTCCACCGCTACACGAGGGTGTGA	MRLQFILGEVFRGLRRNATMVVSVVLVTFVSLTFVGAAALLQMQIDKLQGDWYDLVEVSVFLCPEGSTASTCAGGEATEEQISTVERTISTELDDVVSTVYFESKEDAFEAFSAQYPDGYQGTQLTEEDMQASFRLQLADPEQYQVVDEVLSGRDGVEVVEDQRAIFEPLFLALNRSSLVAVGLAVVMLVAAALLIITTIRLSAVSRQRETGIMRLVGASTLFVQLPFMLEGALAALLGAVLAVIGLWAAVQYLVIDWLAESVDWVEHVTTADVLTIAPLLLGLAVAVAAVSSAVTLHRYTRV				NA	NA	NA	NA	NA
AK001_03231	1503			hypothetical protein	GTGCCCGACGCCGTCCGCCTGCGCCGCGCCCTCGCCGGGGTGCTCGCGACCCTGCTGCTGATCGGCCCGACCGCGCCGGTCGTCGCCGACGAGCTCGACGACCAGCGGGCGGCCGCCGAGGAGGAGCAGCGCCAGAAGCGGCAGGAGCGGCAGGACCTGCAGCACGAGCTGGAGGACACCAACGCCGAGTTCGCCCAGGCCGTGCTCGACCTCAACGAGGTCGAGGGCCGGCTGCCCGTCGCCCAGGCCGAGCTCGGCGAGGCCCAGGCGGCCCTCGCCGAGGCGCGGCGCAAGGCCGCCGTCCTCGCCGACCGGCTGGCCGACGCCGAGGAGGAGGAGAAGACGGTCTCGGAGCAGATCGTCGCGGGAGAGGGCAAGGCCGAGGAGGCGCGGGGCGACGTCGCGGCCATGGCGCGCGAGGCGTACCGGCGCGGCGACGACGTGAGCACCATCGGGCTCGTCACCGGCGCGCAGTCGACCGAGGAGTTCCTCCGCGACGTGTCCGTGACGTCCTCGGCGGCGCGCAGCCGCTCGCGGTCGGTGGCCGAGCTGCAGGAGGCGGAGACCGTCGCCCGCAACCAGCAGGCCCGTCTCGACGCGATCCGCGAGACCATCGCCGACCTCAAGGCGGAGGCCGACGCCAACGTCGTCGCCGCTCAGGAGGCCGAGCAGCAGGCGGCGGAGCGCAAGGCCGAGGTCGAGCGGCTGATCGAGGAGCAGCAGCGGCTCAAGGCGTCGATCGCCTCCCAGCGGGACGAGACGATCGCCGAGCTGGAGGAGAACGAGGACGAGCGCGCCCAGCTCCAGTCCGAGATCAAGGACATCATCGCCCAGCAGGCCGAGCGCGACCGCCGGCTCGAGGAGGAGCGCCAGCGCCGCGAGGAGGAGGAACGCCAGCGCCGTGAGGCCGAGGCCCGGCGGCAGGCCGAGCGCGAGGCCGAGCGCCGGGCCGAGCAGCGCGCCGAGCAGAACCAGAACTCCGGCGGCGGTGGGGGCGGTTCCAGCTCCGGCGGGGGCGGCGGCTCCGGCTCGGGCGGCGGTGGCTCGAGCTCCGGCGGAGGCGGGGGTTCCAGCTCGGGCGGTGGGTCGTCGTCCTCGGGGCCGTTCCTCGGCTGGCCCACGAACTACCGGGTCGTCACCAGCAGCTACGGGATGCGGTACCTGGAGATGTACGGCTACACCCGGCTGCACGCCGGGACCGACATCCGCAGCTACTGCGGCACGCCCATCTACTCCTCCCAGAGCGGGTACGTCGAGCAGGCGTACTACGGCTCCGGCCCGGGCAACAACGTCCTGATCAACCACGGCAGGTACCGCGGCGACAGCGTCATGAGCCGCTACCTGCACCTGTCCCGCGACGTGGTGTCGGTGGGCCAGAAGGTCTCCAAGGGCCAGGTGATCGGGTACTCCGGCAGCACCGGGTCCTCCGGCGCGTGCCACCTGCACTACGAGGTGTGGGTCAACGGCAGCACCGTCGACCCGATGGGCGGCTGGCTCAACTGA	MPDAVRLRRALAGVLATLLLIGPTAPVVADELDDQRAAAEEEQRQKRQERQDLQHELEDTNAEFAQAVLDLNEVEGRLPVAQAELGEAQAALAEARRKAAVLADRLADAEEEEKTVSEQIVAGEGKAEEARGDVAAMAREAYRRGDDVSTIGLVTGAQSTEEFLRDVSVTSSAARSRSRSVAELQEAETVARNQQARLDAIRETIADLKAEADANVVAAQEAEQQAAERKAEVERLIEEQQRLKASIASQRDETIAELEENEDERAQLQSEIKDIIAQQAERDRRLEEERQRREEEERQRREAEARRQAEREAERRAEQRAEQNQNSGGGGGGSSSGGGGGSGSGGGGSSSGGGGGSSSGGGSSSSGPFLGWPTNYRVVTSSYGMRYLEMYGYTRLHAGTDIRSYCGTPIYSSQSGYVEQAYYGSGPGNNVLINHGRYRGDSVMSRYLHLSRDVVSVGQKVSKGQVIGYSGSTGSSGACHLHYEVWVNGSTVDPMGGWLN				NA	NA	NA	NA	NA
AK001_03232	507	smpB	COG0691	SsrA-binding protein	GTGTCCAACAAGGCCAAGGGCGCCAAGAAGAAGCAGCAGTCCGCGGACCCGCGCCAGCTCGTGGCGAACAACAAGAAGGCCCGTCACGACTACGTGATCGAGGACGTGCTCGAGGCCGGCATCGTCCTGTCCGGGACCGAGGTCAAGGCTCTGCGCATGGGCCGCGCCTCGCTGGCCGAGAGCTACGTCGCCGTCGACCACGACGAGGCCTGGCTGGAGAACGCGCACATCCCCGAGTACTTCCAGGGGACCTGGAACAACCACGCACCGCGGCGACGGCGCAAGCTGCTGCTGCATCGTGAGGAGATCGACCGCCTCGGGGTGAAGTCCCGCGAGAAGGGCAAGACGATCGTCCCGCTGCGCCTGTACTTCCTGGACGGCCGGGCCAAGGTCGAGATCGCCCTGGCGCGCGGCAAGAAGGAGTACGACAAGCGGCAGACGCTGCGCGAGAAGCAGGACATGCGCGAGGCGCAGCGCGCGATGCGGCGCCAGGAGCTGCTCACCTGA	MSNKAKGAKKKQQSADPRQLVANNKKARHDYVIEDVLEAGIVLSGTEVKALRMGRASLAESYVAVDHDEAWLENAHIPEYFQGTWNNHAPRRRRKLLLHREEIDRLGVKSREKGKTIVPLRLYFLDGRAKVEIALARGKKEYDKRQTLREKQDMREAQRAMRRQELLT	PGPT0014355_560	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0014355-smpB-K03664	NA	NA
AK001_03234	1827	ectP	COG1292	Ectoine/glycine betaine/proline transporter EctP	ATGGCTGAAGGAAAGCTCGATACGCTCGCGAGGAGGCTGGGCCTGCAGACCAACCCGACGATCTTCTTCACGTCGGCCGGGCTCATGATCCTCTTCCTGCTCCTGCTGCTGATCTTCCCCACGCAGATCGGTGACGCCTTCGGGGTGGCACGGGAGTGGATCGTCACGAACCTGGGCTGGTTCTTCATCCTCGGGGTGTCTTTCTGGCTGGTGTTCCTCGCCTATGTCGCCCTGAGCAAGTACGGCAACCTCCGGCTGGGCGACAACGACTCGCGGCCCGAGTACTCGAACCTGTCGTGGTTCGCGATGCTCTTCGCCGGCGGCATCGGCACGGTGCTGATGTTCTGGGGCGTCGCCGAGCCCATCTCGCACTTCTCCTCGCCGCCCTTCGACGACGTCGCCGCGTACTCCGCCGAGGCGGCGAGCGACGCGATGTCGATCTCGCTGTACCACCTGAGCCTGCACACCTGGGCGATCTTCACGCTCCCGGGCCTGGCGTTCGGCTACTTCGTCTACCGCTACAAGCTGCCGCTGCGGGTCAGCTCGGTGTTCTACCCGTTCCTCAAGGAGCGCATCCACGGGCCGATCGGCAAGACGATCGACATCTTCGCCGTCCTGGGCACCCTGTTCGGGCTGGCGGTCTCCCTCGGGCTCGGGACGTCGCAGGTCGGCGCCGGCGTCAACGCGTTGTTCCCGAGCGTCGAGAACGGCACCCTGCTGCAGGTCGGCGTCATCACGGTGCTGACGATCGTCGCGGTGAGCTCGATCGTGGCCGGGCTGGACAAGGGCGTGCGGCGCCTGTCGAACATCAACATCCTCATGGCCGTCGGGCTGATGGTCTTCGTGCTGATCATGGGCGACACGCTGTTCCTGCTCCGCCAGATCCCCGAGAGCGCCGGCGTCTACGTGCAGGACCTCATCGGCCTGTCGTTCTGGAACGACGCGATGGCGCAGTTCACCGACGAGAACGGATGGGGCTGGCAGGGCGGCTGGACGGTCTTCTACTGGACGTGGACCGTCACGTGGGCGCCGTTCATGGGCGTGTTCCTGGCCCGCATCTCGAAGGGGCGCACGATCCGGCAGTTCGTCGGCGGCGTCCTGGTCGCCCCGTCGCTGTTCACGCTGGTGTGGTTCGTCATCTTCGGCTGGTCGGCGATGGAGCTCGACGGCATCGGCGGCAGCGGGGGAGAGATCTCGGCGGCGGTCGCGGACAACGTCGCCCTGGCCATGTTCACCTTCTTCGAGAACTATCCGGCGGCCACGTTGATCTCCGGCATCGCGGTGATCGTGGTGGCGCTGTTCTTCGCCACGTCCTCGGACTCGGCCTCGCTCGTGGTCGACATGCTGTGCGTCGGCACCTCGGAGTCCGGGCCGACCCGTCAGCGGGTGTTCTGGGGCGTCAGCGAGGGCATGCTGGCCGCGTCGCTGATCATCCTGGGCGGGGTCACGGGTCGGGACGGCCTGGCGGCGCTGCAACAGGTCATCACGGTGATCGGGCTACCGATCTTCATCCTGAACTTCCTCATGGTGTTCAGCCTCTACAAGTCCTTGCGGACCGAGCGCCATACCGCCGTCGAGGCGCAGTTCGCCGGCGTGATGGCCCGATGGCGGTTCATGGGCCGGGCCACCGCGGGTGCGCGGGCGACGGCTGAGCGTGCGGCCCAGCACAACGCGTCGGCTCGGTCGCGGTCGACCGCGACGTCCGGTGAGGGGATTCCGGCTGTCGGGTCGACGACGGAGGAGGGTCCGTCCTCGACCGGTGCCACGCCGACGGCCACGTCCACGACGACGGAGGCGGAGACGGACTCCCGGAGCACCACGGACTGA	MAEGKLDTLARRLGLQTNPTIFFTSAGLMILFLLLLLIFPTQIGDAFGVAREWIVTNLGWFFILGVSFWLVFLAYVALSKYGNLRLGDNDSRPEYSNLSWFAMLFAGGIGTVLMFWGVAEPISHFSSPPFDDVAAYSAEAASDAMSISLYHLSLHTWAIFTLPGLAFGYFVYRYKLPLRVSSVFYPFLKERIHGPIGKTIDIFAVLGTLFGLAVSLGLGTSQVGAGVNALFPSVENGTLLQVGVITVLTIVAVSSIVAGLDKGVRRLSNINILMAVGLMVFVLIMGDTLFLLRQIPESAGVYVQDLIGLSFWNDAMAQFTDENGWGWQGGWTVFYWTWTVTWAPFMGVFLARISKGRTIRQFVGGVLVAPSLFTLVWFVIFGWSAMELDGIGGSGGEISAAVADNVALAMFTFFENYPAATLISGIAVIVVALFFATSSDSASLVVDMLCVGTSESGPTRQRVFWGVSEGMLAASLIILGGVTGRDGLAALQQVITVIGLPIFILNFLMVFSLYKSLRTERHTAVEAQFAGVMARWRFMGRATAGARATAERAAQHNASARSRSTATSGEGIPAVGSTTEEGPSSTGATPTATSTTTEAETDSRSTTD	PGPT0021960_475	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021960-TC_BCT-K03451	NA	NA
AK001_03235	987			hypothetical protein	ATGCCGACCCGAGCCCTCGGCCGCCGAGCCACCGCCCTGACCGTCGCCGCGATGCTGACGGTGGGCCTCGCGGCCTGCACCGGCTCCGACGACCGGGTCTCCGCCGGCGTCGACGCCGCCGTCACCGAGGAGTCGGACGGCCGCGCCGCCGCCGACGAGGCGGCCGCCGTCGCCGGGGAGACCGTGGTCGCTCCGGAGCGCGACTCGTCCGCGGTCGTCGACCGCGAGGTCGTCGTCACGGGCTGGATCGAGCTGACCTCGCCGGACCCGTCCCGCACGACGGCGGAGCTGACCCGGATGGTCGAGCAGGCGGGCGGACGTGTCGAGCAGCTCACGGAGTCGCCCGACCACGACGGCGAGCCCGGGGCGGCGTCGATGACCGTGCGGATCCCTGCCGCGCGCACGACCAGCGCCGTCGACGCGATCTCCGACCTCGCGACCGTCCAGCAGGTCGAGATCTCCCGGGACGACGTCACCAGCCAGGGCCAGAACCTCGACGCCCGCATCTCGGCACTGACCACCTCCACCGGCCGTCTGACCGAGCTGCTCTCCGAAGCCGGCTCGACCGAGGACCTGCTCGAGGTCGAGCGCGAGCTCGCGTCGCGTCAGGCCGAGCTCGACTCGCTCGTCGCGCAGCGCGAGGCGCTCAGCGACCGGGTGGCGATGTCCACCCTGCACATCCAGATCACGCCGCTCACGGCCCCGGTCACGGCGCCGTCGAGCGGGTTCACCGACGGTCTGGAGACCGGCTGGAGCGCCCTGGTCGCCTTCGTCCAGACGGTGGTCCTGGTCTTCGGCGTCCTGCTGCCGTGGCTCGTGCTGGCCGGCGCCGGGTTCCTCGTGTTCTGGATCGTGCGCCGGCGTCGGGCGTCCTCTGCCCCGCCGTCCGGCCCGGGGGGTACCGACGACGGCGCCTCGCCCGAGGACCCGCACGATCCGGCACCGGTGGCGGGCTCTCCGGACCGCGAGCCCGAGCTGGTGCGCTGA	MPTRALGRRATALTVAAMLTVGLAACTGSDDRVSAGVDAAVTEESDGRAAADEAAAVAGETVVAPERDSSAVVDREVVVTGWIELTSPDPSRTTAELTRMVEQAGGRVEQLTESPDHDGEPGAASMTVRIPAARTTSAVDAISDLATVQQVEISRDDVTSQGQNLDARISALTTSTGRLTELLSEAGSTEDLLEVERELASRQAELDSLVAQREALSDRVAMSTLHIQITPLTAPVTAPSSGFTDGLETGWSALVAFVQTVVLVFGVLLPWLVLAGAGFLVFWIVRRRRASSAPPSGPGGTDDGASPEDPHDPAPVAGSPDREPELVR				NA	NA	NA	NA	NA
AK001_03236	1155	mlc_3	COG1940	Protein mlc	ATGACGACCACGACGACGCGCACCGGCCGACGAGGACTGGGCAGCGGCCTGCGAGCCACCTCGAAGGTGCTCCCCGAGCATGCTCGGGCGCACAACCGGTCGTTGGTGCTCCAGCAGCTCTTCCACGAGGGTCCGACCTCCCGGGCCGACCTGGCGCGGTCCACCGGCCTGACTCGGGTGACCGTCTCCGACCTCGTCGGCGTCCTGCTCGCCGAGGGGCTCGTGGAGGAGCTCGGCACCCAGCCGGGGCGTCGCGTCGGCAAGCCCGCGATCCTCGTCGGGATGCGGACCGACGCCTACCAGATCGTCGGTCTCGACCTCTCCGACGACACCGTGCTGCGCGGCGCGGTCCTCACCCTGACGGGGGAGGCCGTCGAGCGTCAGTCGCTGCCGGTCGACGGTCGGCGGGGCCAGGACCTCGTCGACCTGCTCGCCCGGTTCGCCCGGCGGCTCGTCGCGGGTGCCACGCGCCCGGTCATCGGCATCGGCGTCGGCTCGCCCGGCGTCGTCGACGCCTCCGGCCGCGTGGTCGAGGCGCCGAACGTCGAGTGGTACGACCTGCCGCTGGCCGAGCTGCTCACCGACCGGCTCGGCCTGCCGGTGCACGTGGCCAACGACGCCAACTCCGCGGCGCTGGCCGAGTACACCTACGGCGGTGCCGGCGACTCCATGCTCATGCTGACCGTGGGCAAGGGCGTCGGCGCGGGGGTCATGGTCGACGGCTCCCGCGTGCACGGGTCCGGCGACGCCGCCGGCGAGCTCGGGCACGTCACCGTCGTCGACGACGGCGGCGAGCCCTGCGCCTGCGGCCGCCGCGGCTGCCTCGAGACCATCCTGTCCGCCCCGGCGCTGCGCCGGGCCGTGGACGGGCTCGAGCGACCGGAGGTCGACGCCGTGCTGGCCGACGTCGGACGCACCCTGGGCAAGGCCCTCGCGCCCGTCGTGAGCGCCCTCAACCTCGGGGAGGTCATCCTCTCCGGACCGCCCGAGCTCCTCGCGGAGCCGCTGCGCGCAGCGGCTCGCGACACCATCACCGAGCGCACGATGCCGGCCACCTCGGCCGGCCTGGACCTGCGCATGGCCGCCCTCGACGACGACGTCGTCCTGGCCGGGGCAGCCGTGCTCGTCCTCGGCGCGCAGCTCGGTGTCTCCTGA	MTTTTTRTGRRGLGSGLRATSKVLPEHARAHNRSLVLQQLFHEGPTSRADLARSTGLTRVTVSDLVGVLLAEGLVEELGTQPGRRVGKPAILVGMRTDAYQIVGLDLSDDTVLRGAVLTLTGEAVERQSLPVDGRRGQDLVDLLARFARRLVAGATRPVIGIGVGSPGVVDASGRVVEAPNVEWYDLPLAELLTDRLGLPVHVANDANSAALAEYTYGGAGDSMLMLTVGKGVGAGVMVDGSRVHGSGDAAGELGHVTVVDDGGEPCACGRRGCLETILSAPALRRAVDGLERPEVDAVLADVGRTLGKALAPVVSALNLGEVILSGPPELLAEPLRAAARDTITERTMPATSAGLDLRMAALDDDVVLAGAAVLVLGAQLGVS				NA	NA	NA	NA	NA
AK001_03237	1356	dasA_4	COG1653	Diacetylchitobiose binding protein DasA	GTGAAGAGAACTCGACTCGTCGCCGCCACCGCGGCGTCGACGATCACCCTGGCCCTGGCGCTGACCGCGTGCAGCAGCGACACCACCGACGCCGGTGCGGAGAGCGGCAGCGACGCGGAGGAGACCACCGACGCCGCGCCGGAGGCCGCCGACCTGACGATGTGGGTCGCCGGTGGCGACACCCCGGACGAGCTGCGCGAGTACCTCATCGACACGTTCGAGGCCGAGAACGAGGGCTCGACGCTGACGATCGAGGAGCAGGACTGGGGCGACCTGGTCACCAAGCTGACCACCGCGCTGCCCGACGCCGAGAACACCCCCGACGTCGTCGAGCTGGGCAACACCCAGGCCCCGACCTTCACCAACGCCGGCGCGTTCCGCGAGATCTCGCCGGAGCTCTACGAGGAGCTGGGCGGGGACAACCTGCTCGAGTCCTTCGTCGAGGCCGGCACGGTCGACGGCACGGTCTACGCCCTGCCGTACTACTTCGGCTCGCGCTACATGTTCTACCGCGCCGACATCTGGTCGGACGCCGGTCTCGAGGTCCCGACCACGCTCGACGAGTTCGGCGAGGCCGTCAAGGAGCTCCGCACCGACGACATGTCCGGCTTCGCCCTCGGCGGCCAGGACTGGCGCAACGGCATCTCCTGGATCTTCGCCCACGACGGCGAGCTCGCCGTCAAGGAGGGCGAGGAGTGGGTCTCGACCCTCTCGGACGAGAACACGATCGCCGGTCTCGAGCAGTGGCAGGACGTCTACTCCGGCGCCTCGAACCTGCCGGCCACCGACCGCGACGTGGCCTACTGGGACTTCCTCAACGACACGGCCGACGGCGGCGCCCCGGACGCGGCGACCATCATGGCGCCGGGCTGGGCCCGCTGGTCGATCGGTGACCTCACCGAGAACGACGAGGGTGAAGAGGTCCGCGACGGCATGGCCGACGCGGAGAAGTTCGACATCTTCGCCCTGCCGGGCGTCGACGGCGGCGTGGCCCCGGTCTTCGCCGGTGGCTCGAACATGGCCATCTCGGCCCAGTCGCAGCACCCCGAGCTGTCCGAGAACCTGATGCGCATCATCTACTCGGACGAGTACCAGACCATGCTCGCCGAGAACGGTCTGGGGCCGGCCAACACCGAGTTCAACTCCATCATGGAGACGGACAAGTTCGGCGAGATCACCGTCGAGACCGCCGAGAGCTCCAAGCTCACGCCGGCCGCGCCGGGCTGGGCCGCCGTCGAGGGCGCCTCGGTCTACGAGGAGCTCTTCCAGAAGATCGCCGAGGGTGGTGACGTGGCCGAGCTCGCCGCCGAGTACGACGAGACGATCACGCCGATGCTCAACGGCCAGGCGGGCTGA	MKRTRLVAATAASTITLALALTACSSDTTDAGAESGSDAEETTDAAPEAADLTMWVAGGDTPDELREYLIDTFEAENEGSTLTIEEQDWGDLVTKLTTALPDAENTPDVVELGNTQAPTFTNAGAFREISPELYEELGGDNLLESFVEAGTVDGTVYALPYYFGSRYMFYRADIWSDAGLEVPTTLDEFGEAVKELRTDDMSGFALGGQDWRNGISWIFAHDGELAVKEGEEWVSTLSDENTIAGLEQWQDVYSGASNLPATDRDVAYWDFLNDTADGGAPDAATIMAPGWARWSIGDLTENDEGEEVRDGMADAEKFDIFALPGVDGGVAPVFAGGSNMAISAQSQHPELSENLMRIIYSDEYQTMLAENGLGPANTEFNSIMETDKFGEITVETAESSKLTPAAPGWAAVEGASVYEELFQKIAEGGDVAELAAEYDETITPMLNGQAG	PGPT0016445_32	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329	NA	NA
AK001_03238	942	dasB	COG1175	Diacetylchitobiose uptake system permease protein DasB	ATGACCACGACCACCGGCGCGAGCACGGCATCGGACGGCATCGCGATCCGCCGTCGGCGCAAGCCGGCCACGCCTTATCTCCTGCTGATCCCTGCGGTCGCCGCCCTCCTGGTCGGCCTCGGCTACCCCGTCTACTGGCAGATCGTCACCTCGCTGCAGGAGTTCGGGCTCATGCAGCAGTTCGGCGCTCCGCCGGAGTTCGTCGGGCTGGACAACTACGCCCGGATCTTCACCGACACCGAGGTCTGGTCCGTCGTCGCGAAGTCCATCGCGTTCTGCCTCGTCAACGCCCTGCTGACCGTCGGCATCGGGCTCGGCCTCGCCGTGCTCATGCGGTCCGTGCACGGCTGGGTGCGCATCACGATGCAGATCACCCTGCTGCTCGCCTGGGCCACGCCGCTGGTCGCGGCCGTGACCGTCTTCCGCTGGCTCTTCGACGACCGCAACGGCGTCGTGAACTGGCTGTTCGTCCAGCTCGGCCAGGAGAACCTCGACGGGTACAACTGGCTCGGCAACGTGTGGACGTTCTTCATGGTGGCGTCCTTCATCGTCATCTGGATGTCGGTGCCGTTCGTGGCCCTGTCCATCTACGCCGGCCTCACCCAGGTCTCCGAGGAGGTCCTCGAGGCCGCCCGCATCGACGGCGCCGGCTCCCGCCAGATCCTGTGGCGGATCATCATGCCGCTGGTGCGGCCCGTCATCGCGATCGTGCTGCTGCTCCAGATCATCTGGGACCTGCGCGTCTTCGCCCAGATCCGGCTCCTGCAGGACGCCGGCGCCCCGATCTCCGAGACGAACCTGCTCGGCAACTACATCTACGAGCTCGGCGTCGGCAGCCAGGACTTCGCCGGTGCCGCCGCCGTCTCGCTCTTCGTCCTGGTGCTGACGATGGTCCTGTCGGGGCCGTACGTCCGCTATCTCATGAAGGAGGACGCGGCATGA	MTTTTGASTASDGIAIRRRRKPATPYLLLIPAVAALLVGLGYPVYWQIVTSLQEFGLMQQFGAPPEFVGLDNYARIFTDTEVWSVVAKSIAFCLVNALLTVGIGLGLAVLMRSVHGWVRITMQITLLLAWATPLVAAVTVFRWLFDDRNGVVNWLFVQLGQENLDGYNWLGNVWTFFMVASFIVIWMSVPFVALSIYAGLTQVSEEVLEAARIDGAGSRQILWRIIMPLVRPVIAIVLLLQIIWDLRVFAQIRLLQDAGAPISETNLLGNYIYELGVGSQDFAGAAAVSLFVLVLTMVLSGPYVRYLMKEDAA	PGPT0016450_308	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016450-dasB-K17330	NA	NA
AK001_03239	912	dasC_6	COG0395	Diacetylchitobiose uptake system permease protein DasC	ATGAGCGCCGTCGTGACGGACACGGACACCCCGGCCCCCACGGCCCCCGCGAGCGGCCTGCGCCCGGTGCGCCGCCGTCGGGTCCGCCCCGGCAAGATCCTCCTCAGCGGGCTCGGGCTGCTGCTGGCCCTGGTGTGGGTCTTCCCGGTCTACTGGATGATGAACTCGGCGCTCACGCCGGACGCGATCCTCGGTGCCGACACCCCGAACTTCTTCCCCGTCCACTTCACGCTGACGAACCTGTCCTCGGTGCTGACCGACTCCGGGTTCCTCAACGCCCTCGGCATGAGCGTGATGGTCACCTTCCTGACGATCGCCCTCGTGCTGGCCTTCGCGTTCCTCGCCGCCCTGGCGATCAGCCGCTGGCGGTTCCGCGGCCGCACCAGCTTCATCCTCGCGGTGCTGTTCATCCAGATGCTGCCGGCCGAGGGCCTGTTCATCGCCCAATACCAGATGATGTCCAGCCTCGGGCTGCTCAACCAGGTCATCGGCATCTCCGTGCTCTACGTCGCGATGCTCGTCCCGTTCACGGTGTGGATGCTGCGCGGCTTCGTCGCCGGCGTCCCGATCGAGCTGGAGGAGGCCGCGATGGTCGACGGCCTCTCCCGCCCGAAGGCCTTCATCCGGATCACGTTCCCCCTGCTGGCCCCCGGCCTCATCGCCTCCGGCGTCTACGCGTTCCTGCAGGCGTGGAACGAGTTCACGACCGCGCTGGTGATCCTGCCGGCCGAGTCGGCCCAGACGCTGCCGATCTGGCTGCGCAGCTTCCTGTCGGCGTCGGCCAACCGGGGCATCAACTGGGCCGAGGTCATGGCGGCCTCCACGCTCATCGCGGTCCCCGTGATCATCTTCTTCCTGTTCGTGCAGGGACGGATGACCTCGGGCCTCGTCTCGGGTGCGGTGAAGGGCTGA	MSAVVTDTDTPAPTAPASGLRPVRRRRVRPGKILLSGLGLLLALVWVFPVYWMMNSALTPDAILGADTPNFFPVHFTLTNLSSVLTDSGFLNALGMSVMVTFLTIALVLAFAFLAALAISRWRFRGRTSFILAVLFIQMLPAEGLFIAQYQMMSSLGLLNQVIGISVLYVAMLVPFTVWMLRGFVAGVPIELEEAAMVDGLSRPKAFIRITFPLLAPGLIASGVYAFLQAWNEFTTALVILPAESAQTLPIWLRSFLSASANRGINWAEVMAASTLIAVPVIIFFLFVQGRMTSGLVSGAVKG	PGPT0016455_112	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016455-dasC-K17331	NA	NA
AK001_03240	996	nanK	COG1940	N-acetylmannosamine kinase	GTGGGCGAGAGCAGCACGGTGACGCCGGTGGCGTCACCCGGTCTCAGCGTGGGCCTGGACATCGGCGGCACCAAGACGCTCGCCGTCGTGCTGGCCCCCGACGGGACCGTCATGGCACAGACGCGGCTCGCCACCTCGCGCGGCCACCACGGGGTCCTCGACGGCGCGGTCCGCGCCGTCGAGGGCGTCGCCCGGGCGGCCGGGGTCCCGGTCGAGGAGATCACCGGCGTCGGCGTCGGCATCCCCGGCCTCGTCGACGCCGACGAGGGCACGGTGCGGCACGCGGTCAACCTCGGCCTGGACGGCGAGCCCCTCGAGCTCGCCACCCTGCTCTCGGCGCGCCTCGGCGGCGTCGGGGTCGGCGTCGAGAACGACCTGAACGTCGCCGCCGTCGGGGCGGCCCACCTCGTCGAGACGAACGAGCCGACGACGGGCTCGACCGACCTGGCCTTCCTCGCCCTCGGCACCGGGCTCGCGGCCGGCATCGTGCTCGACGGCCGGCTGCGCCGCGGCAGCCACGGGGCGGCGGGGGAGATCGGGCACGTCCCGGTCGACCCGTCGGGTCCGCCGTGCGCCTGCGGGCAGCGCGGCTGCCTCGAGCTGTACGCCTCGGGGTCCGCAGTCACCGCCGCCTGGCCGACGACCACGGGACGCCCCGCGCCGGTCGAGCTCTTCGAGGCCGCCGACGCCGGAGACCCCGCAGCCGTCGCGGTGCGCGACCGGTACGCGCGCTCGGTGGCCGCGGCCGTGCGCATGCTCGTCCTGAGCGTCGACGTGCGCTACGTCGTCCTCGGCGGGGGCGTCTCCCAGCTCGGCGAGCCGCTGCTGCGCGTGGTGCAGGAGGCGCTCGAGGACGAGTCCGCGGCGTCGGCGTTCCTGCGCAGCCTCGACCTGCCCGGCCGCGTCCGGCTCGCCCCGGGCCGCGTGCCGGTCGGGGCCGTCGGTGCCGCCGTCGTCGGCCGCGGGTATGCCGCGCGGGTGCCCGACCTGCGCTGA	MGESSTVTPVASPGLSVGLDIGGTKTLAVVLAPDGTVMAQTRLATSRGHHGVLDGAVRAVEGVARAAGVPVEEITGVGVGIPGLVDADEGTVRHAVNLGLDGEPLELATLLSARLGGVGVGVENDLNVAAVGAAHLVETNEPTTGSTDLAFLALGTGLAAGIVLDGRLRRGSHGAAGEIGHVPVDPSGPPCACGQRGCLELYASGSAVTAAWPTTTGRPAPVELFEAADAGDPAAVAVRDRYARSVAAAVRMLVLSVDVRYVVLGGGVSQLGEPLLRVVQEALEDESAASAFLRSLDLPGRVRLAPGRVPVGAVGAAVVGRGYAARVPDLR				NA	NA	NA	NA	NA
AK001_03241	1317	dasA_5	COG1653	Diacetylchitobiose binding protein DasA	GTGCGCATCCGACGGACCTTGGCCGCGACGGTCGCCACCGGCGTCCTGGCCGCCTCCCTGACCGCCTGCGGACCCGAGGAGGTCGTGCCCGAGAGCTCGGACGACATCGTCCTGTGGCTCGTGGGCTCGGACACCGGCGACGAGCTGCGCGACCACCTCGAGACGACGTTCGAGGCGCGCAACCCCGGTGCGACGCTGACCATCGAGGAGAAGCAGTGGCCCACCCTCGTCGACGAGCTCGACGAGGCGCTGGAGGACCCGGCCGCCACCCCCGACGTCGTCGAGCTCGGCAACACCCAGGCGCCGACGTTCACCAACGCGGGCGACTTCCGGGCGGTCTCCCCGGAGCTGTACGCCGAGCTGGGCGGTGACGACCTGCTGCCGTCGTTCGTCGAGGCCGGGTCGGTCGACGGCACCGTCTACGCCCTGCCGTACTACTTCGGCTCGCGCTACGTCTTCTACCGCAAGGACGTGTGGCGCGAGGCCGGGGTCGAGGTGCCGGACACGCTCGACGAGTTCGGCGACGCCGTCGCCGAGCTGACGACCGGCAACCGGGCCGGGTTCGCCATCGGCGGCCAGGACTGGCGCAACGGCATCTCGTGGGTGTTCGCCCACGGCGGCGAGCTGGCGGTCAAGCAGGGCGGCTCGTGGGTCTCGACGCTGTCCGACCGGGACACCGTCGCCGGGCTCGAGGCCTGGCAGGACGTGTACGAGAGCGCCTCCTACCTGCCGGCGACCGAGGTCGACACCGGCTACTGGGCGTTCCTCAACGACGGCGTCGAGTCCGGCGAGCCGGCCGCCGCCGCGATGATGGCGCCCTCCTGGGCGCGGTGGGAGCTCGGGGACTGGGTGCGCAACGACGACGGCGCCGAGGTCCGCGACGGCATGGCCGACGACGAGACCTGGGGCATCTTCCCGCTGCCCGGCGTCGACGGCGGGGTCGCCCCCGTGTTCGCCGGCGGGTCCGTGCTGGCGGTCTCGGCGCTGACCCGCAACGCCGAGCTGTCCGAGGACCTGCTGCGGATCGTGTACGGCGACGAGTACCAGACGATGCTCGGCGAGTCGGGCCTCGGCCCGGCGAACACCGAGCTCACCGACGTGATGACCGGCGACAAGTTCGGGCGCACGCTGGTGGAGACGGCCGAGGCCTCCCAGCTCACCCCGCCGGCGCCGGGATGGGCCGAGATCGAGTCCCGCGGCCTGTACGAGGACATGTTCAAGGAGATCGCCCGCGGCGCCGACGTCGCGACGGTCGCCCGGGAGTACGACGCGCTCATCACCCCGCTCCTCGACGGCCCGGCCGTCGAGGTGGAGTGA	MRIRRTLAATVATGVLAASLTACGPEEVVPESSDDIVLWLVGSDTGDELRDHLETTFEARNPGATLTIEEKQWPTLVDELDEALEDPAATPDVVELGNTQAPTFTNAGDFRAVSPELYAELGGDDLLPSFVEAGSVDGTVYALPYYFGSRYVFYRKDVWREAGVEVPDTLDEFGDAVAELTTGNRAGFAIGGQDWRNGISWVFAHGGELAVKQGGSWVSTLSDRDTVAGLEAWQDVYESASYLPATEVDTGYWAFLNDGVESGEPAAAAMMAPSWARWELGDWVRNDDGAEVRDGMADDETWGIFPLPGVDGGVAPVFAGGSVLAVSALTRNAELSEDLLRIVYGDEYQTMLGESGLGPANTELTDVMTGDKFGRTLVETAEASQLTPPAPGWAEIESRGLYEDMFKEIARGADVATVAREYDALITPLLDGPAVEVE	PGPT0016445_8	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329	NA	NA
AK001_03242	1248	iscS	COG1104	IscS-like cysteine desulfurase	ATGACCGTGACAGCCCCCCAGGCGCCCGGCGCCTACCTCGACCACGCGGCCACGACACCCATGTCGTCGGCGGCGCTCGAGGCCTACGTCGCCGAGGCCTCCCGCACCGGGAACGCCTCGTCCCTGCACTCGGCCGGCCGTGCCGCCCGCCGCACCGTCGAGGAGTCGCGCGAGACGGTCGCCGCCGCCCTCGACGCGCGCCCCAGCGAGGTGATCTTCACCGGCGGCGGCACCGAGTCCGACAACCTCGCCGTCAAGGGCATCTTCTGGGGGCGGCGCTCGCAGGACTCCCGCCGACGCCGCGTGCTGATCTCCGCCGTCGAGCACCACGCCGTCCTGGACCCGGCCTTCTGGCTGGCAGGGCACGCCGGCGCCGAGATCACCCTGCTCGACGTCGACGACACCGGCCGCATCGACCTCGACGCGCTCAAGGCGGAGCTCGCCGTCGCCCCCGAGGAGATCGCGCTCGTCTCGGTCATGTGGGCGAACAACGAGGTCGGCACCGTCCAGCCGATCCGCGACGTCGTCCGTCTCGCCCACGCCCAGGGCATCCCGGTGCACACCGACGCCATCCAGGCCGTCGGGCAGGTCGAGGTCGGCTTCGCCGCCTCGGGCGTGGACGCGCTGACCGTCACGGGGCACAAGCTCGGCGGTCCGGTCGGCGTCGGCGCGCTGCTGGCCCGCCGCGACCTGCCGCTGGAGGCCGTCTCCCACGGTGGCGGCCAGGAGCGCGGCGTCCGCTCCGGCACGCTCGACGGTGCCGCCATCCGCTCCTTCGCCGTCGCGCTGCACGACGCCGTCACCCGCCGCGCCGAGCGTGCCGCCCGGTTCGCCGGGCTCCGCGACGCGCTGGTCGAGGGTGTCCGCGCAGCCGTGCCCGACGCCGTCCTGCGCGGCCCCGACCCGGCCGCGGTCACGCCGTCGGGCGCCCCGGCGCGGCTGCCCGCCAACGCCCACTTCACGTTCCCCGGCGCGGAGGGCGACTCGCTGCTGTACCTGCTCGACTCCGCCGGGGTGCACGCCTCCACCGGGTCGGCCTGTCAGGCGGGGGTGCCGCAGCCCAGCCACGTGCTGCTCGCCATGGGTGTCGACGAGGCCGACGCCCGCGGCGCGCTGCGGTTCTCCCTGGGTGACACCTCCACGCGCGCCGATGTCGACCGGCTCTGCGAGGCACTGCCCGGAGTCGCGGACCGTGCTCGCGCCGCCGGGCTCGTCTCGACCCGCCCGCTGACCGGAGGTACCGCATGA	MTVTAPQAPGAYLDHAATTPMSSAALEAYVAEASRTGNASSLHSAGRAARRTVEESRETVAAALDARPSEVIFTGGGTESDNLAVKGIFWGRRSQDSRRRRVLISAVEHHAVLDPAFWLAGHAGAEITLLDVDDTGRIDLDALKAELAVAPEEIALVSVMWANNEVGTVQPIRDVVRLAHAQGIPVHTDAIQAVGQVEVGFAASGVDALTVTGHKLGGPVGVGALLARRDLPLEAVSHGGGQERGVRSGTLDGAAIRSFAVALHDAVTRRAERAARFAGLRDALVEGVRAAVPDAVLRGPDPAAVTPSGAPARLPANAHFTFPGAEGDSLLYLLDSAGVHASTGSACQAGVPQPSHVLLAMGVDEADARGALRFSLGDTSTRADVDRLCEALPGVADRARAAGLVSTRPLTGGTA	PGPT0000065_1049	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487	NA	NA
AK001_03243	1134	mnmA	COG0482	tRNA-specific 2-thiouridylase MnmA	ATGAGGGTTCTGGCCGCCATGTCCGGGGGAGTGGACTCCGCCGTTGCCGCAGCGCTCGCCGTGGAGGCCGGGCACGAGGTCGTCGGGGTGCACATGGCCCTGAGTCGCAACCGCGACCAGTTCCGCACCGGCTCACGGGGCTGCTGTTCGATCGAGGACGCCGGGGACGCCCGCCGCGCCGCCGACGTGCTCGGCATCCCGTACTACGTGTGGGACCTGTCCGAGACCTTCGAGGAGACCGTCGTCGCGGACTTCCTGTCCGAGTACTCGGCCGGCCGCACGCCCAACCCGTGCGTGCGCTGCAACGAGCACATCAAGTTCACCGCCCTGCTGGACAAGGCCACCGCACTGGGCTTCGACGCCGTCGCCACCGGCCACTACGCGCGCATCGAGCACGGCCCGGACGGCCCCGAGCTGCACCGCTCGCCCAACGACGCCAAGGACCAGTCCTACGTGCTGGCCGTCATGGGGCCGGACCGTCTCGCCCGCTCGGTGTTCCCGCTGGGCCACTTCGCCTCCAAGGACGAGGTGCGCGCCGAGGCCGAGCGTCGCGGGCTGTCCGTCAGCGCCAAGCCGGACTCGTACGACATCTGCTTCGTGGCCGACGGCGACACCAGCGGGTTCCTGCGCGACCGGCTCGGCGAGCAGCCCGGCGACGTGGTCGACACCGACGGCACGGTCGTCGGGGAGCACCGCGGCGCCTACGCCTACACGATCGGCCAGCGCAAGGGCCTCGGACTGGGCCGCCCCGCCGCCGACGGCAAGCCCCGCTACGTCGTCGACGTCGACACCACGTCCAACACGGTGGTCGTGGGCCCGTCCGAGCTGCTCACCGTCGACCGCATCGACGCGGCCCGGGCGACCTGGCTCGTCCCGGCCCCGAGCGAGTGGACCGACGTCACCGTCCAGGTGCGCGCGCACGGCCGCGCCGTCCCCGCCCAGGTCCGGGCCACGTCCGACGACGGCGCCCCGGCCCTGGAGGTCCGCCTCGGCGAGCCGCTGCGGGGGATCGCGTCGGGGCAGTCGATCGTGGTCTACCGCGGCACCCAGGTGCTCGGCCAGGGCACGGTCTCCGGCGCCCGCCGCGAGGGCGCGTCAGCAGCCGCCACGACGGCCGCCGCGGCCCGCGCATGA	MRVLAAMSGGVDSAVAAALAVEAGHEVVGVHMALSRNRDQFRTGSRGCCSIEDAGDARRAADVLGIPYYVWDLSETFEETVVADFLSEYSAGRTPNPCVRCNEHIKFTALLDKATALGFDAVATGHYARIEHGPDGPELHRSPNDAKDQSYVLAVMGPDRLARSVFPLGHFASKDEVRAEAERRGLSVSAKPDSYDICFVADGDTSGFLRDRLGEQPGDVVDTDGTVVGEHRGAYAYTIGQRKGLGLGRPAADGKPRYVVDVDTTSNTVVVGPSELLTVDRIDAARATWLVPAPSEWTDVTVQVRAHGRAVPAQVRATSDDGAPALEVRLGEPLRGIASGQSIVVYRGTQVLGQGTVSGARREGASAAATTAAAARA				NA	NA	NA	NA	NA
AK001_03244	1038			hypothetical protein	ATGACGGCGGTCAGCGGGCACGGGCCGTGGCCCGGGGGAGAGCGGGACGTGCTGGAGGCCCAGCAGACCGTGCTGGGCGACCTGTCCGAGCTGCCCACCGGCGTCCGGGCGGTCCCGTTCCTCGTACAGCTCACCGGCCGCGGTCCGGGCGCGGGGGCGACCGCCCGCACCGCGCTGCTGCTCGCCGAGCACGCCGTCGAGCTCGGTCCGCACGGCTGGAAGCTCGCCGACCACGAGGGCGTCGACGCCCGGCGTGCCCGCTCGCTGCTGGCCGAGGACCTCGCCACCCTGGCGATCGCCGCCCACAGGTACACCGGACCGTTCACCGTCGAGGTGACCGGCCCGTGGACCCTGGCTGCCGAGCTGTGGTCCGCGCGGGGCGACCGCGTGCTGGCCGACGTCGGCGGTCGGGCGGCGCTGGCGGAGGCGCTGGCCGTGGGCCTGGCCGACCACGTCGCCCAGGTCCGCGACCAGGTGCCCGGCGCGGACGTCGTCGTGCAGCTCGCCGAGCCGCTGCTGGGACAGGTGCACGCCGGGGTGCTGCCGACGTTCTCGGGCTACTCGCGCCTCCGCGAGGTGCCGGGTCCGGAGATCGTCGAGGGTCTGCGCCCGGTGGTCCAGGCGGTGCACGACGCCGGTGCCCGGGTCGTCGTGCACCTCGGCGGCACGTGGGTGGGGATCCCGCCGGTGGTGCTCGCCGGTGCCGACGCCGTCGGGCTGGACCTGGCCGAGATGGGCCCCGAGGGCTGGAACGAACGGGCCTGGGAGCTGGTCGCCCGGGCGACCGAGCGGGAGGTCGGGCTCTGGGCCGGGCTGCCGCCGGCCACCGTGTCGCAGTGCGCGGGGCCGGAGCTGGGCGGGCTCGTGCGGCTCGTCGCCGAGCCGTGGCGCCGCATCGGGCTGCCCGCCGCGGGCCTCGACGGGGTCACCGTGCTGGCCGCACCCCGCCGCACGCTCGCCTCCGTGGACGACCACCGGGCCGGCCTGGCGAACCTCGGCCGGGTGGCCGAGACGCTGGCGGAGCGCGCCGAGTCCTGA	MTAVSGHGPWPGGERDVLEAQQTVLGDLSELPTGVRAVPFLVQLTGRGPGAGATARTALLLAEHAVELGPHGWKLADHEGVDARRARSLLAEDLATLAIAAHRYTGPFTVEVTGPWTLAAELWSARGDRVLADVGGRAALAEALAVGLADHVAQVRDQVPGADVVVQLAEPLLGQVHAGVLPTFSGYSRLREVPGPEIVEGLRPVVQAVHDAGARVVVHLGGTWVGIPPVVLAGADAVGLDLAEMGPEGWNERAWELVARATEREVGLWAGLPPATVSQCAGPELGGLVRLVAEPWRRIGLPAAGLDGVTVLAAPRRTLASVDDHRAGLANLGRVAETLAERAES				NA	NA	NA	NA	NA
AK001_03245	2730	adhE	COG1012	Aldehyde-alcohol dehydrogenase	ATGAGCACCGACACCACCACGAGCACCGTCGCAGAGGTCGCGCCGACCGACGTCCCGGCACCCGAGAGCGACGCCCCCGCACCGGAGGTCGCCGTCGACGCGATGGTCCAGCGCGGACTGAAGGCACTGGCCGCCTACGCGGCACTGACCCAGGAGGACGTCGACCGGATCGTCAAGAAGGCCTCCGTCGCGGCGCTGCACGAGCACGGCAACCTCGCCCAGCTCGCCGTCACCGAGACCGGGCGCGGCGTCTTCGAGGACAAGGCCACCAAGAACATCTTCGCCTGCGAGCACGTCACCCACTCGATGGCCGACCTCAAGACCGTCGGCGTCGTCGGACGCGACGAGCTGCGCGGCATCGTCGAGATCGCCGAGCCGGTCGGCGTGGTCGCCGGCGTCACCCCGGTGACCAACCCGACCTCGACCGCGATCTTCAAGAGCCTCATCGCGCTCAAGACCCGCAACCCCATCATCTTCGCGTTCCACCCGAACGCCCAGCACTCCTCGTCGGAGGCAGCGCGCATCGTCCGTGACGCGGCGATCGAGGCCGGCGCCCCCGAGGACTGCATCCAGTGGGTCACCGAGCCCAGCCTCGCGGCGACCAGCGCGCTCATGCACCACGACGGCGTCTCGCTCATCCTGGCCACCGGCGGCAACGCCATGGTCCGCGCCGCCTACTCGGCCGGCAAGCCCGCCCTCGGCGTCGGCGCCGGCAACGTGCCCGCCTACATCGAGTCCACCGCGAAGATCGGCCGCGCTGTCAACGACGTCGTGCTCTCCAAGGGCTTCGACAACGGCGTGGTCTGCGCCTCGGAGCAGGCCGCGATCGTCGACGACGAGATCTACGACGAGGTGATGACCGAGTTCCAGCGGATGCACGCCTACGTGGCCACGCCCGCGGAGAAGGCCCTGCTCGAGGAGTACCTCTTCGGCGCGTGCGCGGACTCGGCGGCGTGCAGCGGGGCGAAGCTCAACGCCGCCGCGGTGGGGAAGTCGGCGTACTGGATCGCCGAGCAGGCCGGCTTCTCGGTCCCCGAGGACACCTCGGTGCTGCTGGCGGAGATCTCCGGCGTCGGCCCCCAGGAGCCGCTGAGCCGGGAGAAGCTGTCGCCCGTGCTCGCCGTGCTGCGCTCGCGCAGCACCGACGAGGGCGTCCGCCTGGCCGAGCAGATGGTGGAGTTCGACGGCCTCGGGCACTCCGCGGCGATCCACACCACCGACGCCGCGCTCGCCGAGCGGTTCGGGCACGCCGTCAAGGCGGTCCGCGTGCTGTGGAACCAGCCGAGCGCCCTGGGCGGCATCGGCGACATCTACAACGCGCTGGTGCCCTCGCTGACGCTCGGCTGCGGCTCCTACGGCCGGAACTCGGTGTCCAACAACGTCAGCGCCGTCAACCTGGTGAACGTCAAGCGGGTCGCGCGGAGGAACAACAACATGCAGTGGTTCAAGGTGCCGCCCAAGACCTACTTCGAGCCGAACGCGATCCAGTACCTGGTCGACATGCCCGAGGTCGAGCGCGTCACCGTCGTCACCGACCGGGTCATGTCCCAGCTCGGCATCGTCGACAAGGTGCTCGACGTGCTCCAGCGCCGCGCCACCAAGGTCGCCGTGCAGATCATCGACACCGTCGAGGCCGAGCCGAGCGTCGAGTGCGTCGAGCGCGGCGCGCTCCTCATGCGGGACCACCGCCCGGACACGATCATCGCGATCGGCGGCGGCTCGCCGATGGACGCCGCCAAGGTGATGTGGCTCAAGTACGAGCACCCCGAGGTCGCGTTCAGCGACCTGCGCGAGAAGTTCTTCGACGTGCGCAAGCGGGCCTTCCGCTACCCGCAGCTCGGGGAGAAGGCCCAGCTGGTCTGCATCCCGACCTCGTCGGGCACCGGGGCCGAGGTGACGCCGTTCGCCGTCATCACCGACAACTCGACCGGGTTCAAGTACCCGCTGGCCGACTACGCGCTGACCCCGTCGGTGGCGATCGTCGACCCGGTGCTCACCGCCACGATGCCCGCGAGGCTCGCCGCGGACTCCGGCATGGACGCCCTGACCCACGCCACCGAGGCGTTCGTGTCGGTCTACGCGAACGACTTCACCGACGGTCTGGCGCTGCACGCCATCAAGCTGGTGTTCGAGAACATCGCCGCCTCCGTCAACGAGGGCGGCGAGGCGCCCGAGGCGCGGGAGAAGATGCACAACGCCGCGACGATGGCCGGCATGGCCTTCGGCAACGCGTTCCTCGGCATCGTGCACGCGATGTCGCACACGGTCGGGGCCACCTTCAAGCTGGTCCACGGCCGCACCAACGCGATCTTCCTGCCGCACGCGATCCGCTACAACGGCCTCATGCCGGGCAAGGTCACCGGCTGGCCGAAGGCGGAGAAGTACGTCGCCCCGGAGCGGTACCAGCAGATCGCGCAGCACCTGGGCCTGCCGGCCGCGACCCCGGCCGAGGGCGTCGAGTCGTACGCCCGGGCCGTCGAGGAGCTGACCCGGAGCATCGGCATCGAACCGTCCTTCCAGGCGCAGGGCGTGTCCGAGCAGGCGTTCGTCGGAGGCCTCGACACCCTGGCGATGCGGGCCTACGAGGACCAGTGCGCCCCGGCCAACCCGCGCCTGCCGATGCTGCAGGACATGAAGGACATCATGGTCGCGGCGTACTACGGCACCACCCAGCAGGCGGCCGCCGTGGCGCGGAAGTCCGACGGCGGGTACACCTCGCTCGGTCGCTGA	MSTDTTTSTVAEVAPTDVPAPESDAPAPEVAVDAMVQRGLKALAAYAALTQEDVDRIVKKASVAALHEHGNLAQLAVTETGRGVFEDKATKNIFACEHVTHSMADLKTVGVVGRDELRGIVEIAEPVGVVAGVTPVTNPTSTAIFKSLIALKTRNPIIFAFHPNAQHSSSEAARIVRDAAIEAGAPEDCIQWVTEPSLAATSALMHHDGVSLILATGGNAMVRAAYSAGKPALGVGAGNVPAYIESTAKIGRAVNDVVLSKGFDNGVVCASEQAAIVDDEIYDEVMTEFQRMHAYVATPAEKALLEEYLFGACADSAACSGAKLNAAAVGKSAYWIAEQAGFSVPEDTSVLLAEISGVGPQEPLSREKLSPVLAVLRSRSTDEGVRLAEQMVEFDGLGHSAAIHTTDAALAERFGHAVKAVRVLWNQPSALGGIGDIYNALVPSLTLGCGSYGRNSVSNNVSAVNLVNVKRVARRNNNMQWFKVPPKTYFEPNAIQYLVDMPEVERVTVVTDRVMSQLGIVDKVLDVLQRRATKVAVQIIDTVEAEPSVECVERGALLMRDHRPDTIIAIGGGSPMDAAKVMWLKYEHPEVAFSDLREKFFDVRKRAFRYPQLGEKAQLVCIPTSSGTGAEVTPFAVITDNSTGFKYPLADYALTPSVAIVDPVLTATMPARLAADSGMDALTHATEAFVSVYANDFTDGLALHAIKLVFENIAASVNEGGEAPEAREKMHNAATMAGMAFGNAFLGIVHAMSHTVGATFKLVHGRTNAIFLPHAIRYNGLMPGKVTGWPKAEKYVAPERYQQIAQHLGLPAATPAEGVESYARAVEELTRSIGIEPSFQAQGVSEQAFVGGLDTLAMRAYEDQCAPANPRLPMLQDMKDIMVAAYYGTTQQAAAVARKSDGGYTSLGR	PGPT0006360_11	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006360-adhE-K04072	NA	NA
AK001_03246	741		COG0637	putative protein	ATGCCTGCCCTGTGTGCCGTCCTGTTCGACCTCGACGGGGTCCTCACCCCGACCGCCGAGGTGCACATGCGGGCCTGGGAGCGGCTCTTCGCCCCGTGGACCGCGCAGCACGGCCTGGAGCCCTACACGGCGGCCGACTACTTCGCCCACATCGACGGCAAGCCGCGCTACGACGGCGTGGCGGCATTCGTCGGGTCCCGCGACGTCAGGCTCCCGTGGGGCGCGGACGGCGACGCTCCGGGCGAGGGCACGGTGTGCGCGCTCGGCAACCGCAAGGACGAGATCGTCAACCGGATGTTCGTCGAGGAGGGCATCGAGCCGTACCCCGGGTCGGTGCGGTTCCTCGACGCCGTGACCGGCGCGGGCGCGCAGGTCGCCGTCGTCTCGTCGTCGCGCAACGCGGCGGCCGTGCTCGCCGCCGCGGGCCTGGCCGACCGGTTCGACGTCGTCGTGGACGGCAACGTCGCGACCCGGGAGGGCATCGCGGGCAAGCCGGCTCCCGACACGTACGTGCGCGCCGCCGAGCTGCTCGGTGTGCCCGTGGGGGAGTCGGTGGTCGTGGAGGACGCGATCTCCGGCGTCCGGGCCGGTGCGGCCGGCGCCTTCGGTCTCGTCCTGGGCATCGATCGCGGGGTGGGGGCCGACGTGCTGCGCGCGCACGGTGCCCACCTGGTCGTGGCCGACCTGGACGAGCTCGACGCGTCGGTGCTCGACGCGCCGCGGGCCGGGGGCGCCGCGTGA	MPALCAVLFDLDGVLTPTAEVHMRAWERLFAPWTAQHGLEPYTAADYFAHIDGKPRYDGVAAFVGSRDVRLPWGADGDAPGEGTVCALGNRKDEIVNRMFVEEGIEPYPGSVRFLDAVTGAGAQVAVVSSSRNAAAVLAAAGLADRFDVVVDGNVATREGIAGKPAPDTYVRAAELLGVPVGESVVVEDAISGVRAGAAGAFGLVLGIDRGVGADVLRAHGAHLVVADLDELDASVLDAPRAGGAA	PGPT0014080_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342	NA	NA
AK001_03247	2478	treP		Alpha,alpha-trehalose phosphorylase	GTGAGCCCGAAGACCCCCGACGAGCAGAGCACCGTCGACCGGCGGCGATTCCCCGCGGACCCGTGGCGGCTCGTCGAGACGCGGTACTCGAGCGAGGACCTCGGCGTCACGGAGACGATGTTCTCGGTCGCCAACGGCTACCTCGGCATGCGGGGGAACGTCGAGGAAGGGCGCGAGTCCCACGCGCACGGCACGTTCGTCAACGGTTTCCACGAGACCTGGCCGATCCGTCACGCCGAGGACGCCTACGGTTTCGCGAAGGTCGGCCAGACGATCGTCAACGTGCCCGACACCAAGGTGATCCGGCTGTACGTCGACGACGAGCCGCTCCTGCTGCCCGTCGCCGACCTGCTCGAGTACGAACGGTCGCTCGACCTGCGCGACGGGATCCTGCGCCGTGAGCTGCTGTGGCGCACGCCGTCGGGCAAGCGGGTGCGGGTCCGCTCGGACCGCATGGTCTCGTTCGTCGAACGGCACCTCGCCGTGATGACCTTCGAGGTCACGCTCCTCGACGCGGCGGCACCGGTCGCGATCTCCTCGCAGATCCTCAACCGGCAGGACGGTGAGGACGAGTACCACGTCCCCTCCGCCGCGCTCGGCGAGGGCTTCGACCCGCGCAAGGCCGAGGACTTCACCGGGCGTGTCCTCCAGCCCCGTGGACACTGGGGCGACGACGAGCGCCTGGTCCTGTCCTACCGCTGCACCGACTCCGGGATGACGCTCGCGGTGGCGGCGGACGACCGGCTGGAGACCGAGAACGCGTGGGACGTGCGCACCCAGGTCGAGGAGGACCTCGCGAAGCACGTGTTCCGCATCCGGGCGGAGCCGGGACGTCCGGTGCGCCTGACGAAGACCGTCGCATACCACACGTCGCGCGGCGTGCCCCCGCGCGAGCTGGTCGACCGGTGCCGACGGACGCTGGACCGGGTGGCGGACGGCGAGCTCGAGGAGCCGTACGCCGACCAGCGGGCCTGGCTGGACGCCTTCTGGGAGCGGTCGGACGTCGAGGTCGGCGGTCAGCAGGAGATCCAGCAGGCGGTGCGCTGGAACCTCTTCCAGCTCGCCCAGGCGACAGCGCGGGCCGAGGGCAGCGGAGTGCCGGCCAAGGGACTGACCGGGTCGGGCTACGGCGGGCACTACTTCTGGGACACGGAGATCTACGTCCTGCCGTTCCTGACCTACACGAGCCCGCGGTTCGCCCGGAACGCGCTGCGCGTGCGCTACCACATGCTCGACGCGGCGCGACGGCGGGCCACCGAGCTGTCCCAGCGCGGGGCGCTCTTCCCGTGGCGGACGATCAACGGCGAGGAGGCGTCCGCCTACTACGCGGCCGGCACGGCGCAGTACCACATCGACGCCGACATCAGCTACGCGCTGATGCAGTACGTCGTGGCGACCGACGACACGGACTTCCTGCGCCGTGAGGGGGTGGACGTCCTCGTGGAGACCGCCCGGCTGTGGGTGGACCTGGGTTTCTGGCGCGCCAACGGCGACCACTCCTTCCACATCCACGGCGTCACCGGGCCCGACGAGTACACGACGGTCGTCAACGACAACCTGTTCACGAACGTCATGGCACGGTTCAACCTGCGGGCCGCGGCGCGCGTGGTGGACGCCCTGCGCGACCGGTTCCCCGAGGACCACGCCCGCCTCGTCGAGCAGCTCGGGCTCGAGCCCTCCGAGCCGGTCGCCTGGGCCCGGGCCGCCGAGCGGATGGCCGTGCCCTTCGCGGACGAGATCGGGATCCACCCCCAGGACTCGCACTTCCTCGAGCGAGAGATCTGGGATGTCGGACGCACCCCTCCGGACCGGCGGCCGCTGCTCCTGCACTACCACCCGCTGGTGATCTACCGCTTCCAGGTGCTCAAGCAGGCCGACGTCGTCGCCGCCCTGGTCCTGCAGGGCAACCACTTCACGCCGGAGCAGAAGCTCGCCGACTTCGAGTACTACGACCCGCTGACGACCGGGGACTCGACGTTGTCCGGCGTCGTGCAGTCGATCGTCGCTGCCGAGGTCGGCTACCAGGAGCTGGCGCTCGAGTACTTCCGGTCGTCGGTGTACGTCGACCTCGCGAACCTGCACGGCAACGCTGCCGACGGCGTGCACGTCGCGTCGGCCGGCGGGTCGTGGGGAGCGGTCGCCTTCGGTTTCGGCGGCACGCGGGACCACGACGGCGATCTCACGTTCGACCCGAGACTCCCGTCGGGCTGGGACTCCCTGACGTTCCGCATCACGTGGAAGGGGTCCCGGCTGCGGGTCACCGTCCTGCCCTCGTCGCTCGAGCTCGTGGCGGAGACGGGCGAGGGGGCGACCGTCGGTGTCCGGGGCGAGCGGGTCACGGTCCGGTCCGGCGAGCCCGTGACGGTCCCGCTCGACGGTCAGGGCCCCGCCCGCGCAGGGCGACCGGGCCTCCGGGCCCTGTCGGGCAACCGCCGCGAGGACGGCACCCTCATCACGGCGATCGTCCCGCACCCCTGA	MSPKTPDEQSTVDRRRFPADPWRLVETRYSSEDLGVTETMFSVANGYLGMRGNVEEGRESHAHGTFVNGFHETWPIRHAEDAYGFAKVGQTIVNVPDTKVIRLYVDDEPLLLPVADLLEYERSLDLRDGILRRELLWRTPSGKRVRVRSDRMVSFVERHLAVMTFEVTLLDAAAPVAISSQILNRQDGEDEYHVPSAALGEGFDPRKAEDFTGRVLQPRGHWGDDERLVLSYRCTDSGMTLAVAADDRLETENAWDVRTQVEEDLAKHVFRIRAEPGRPVRLTKTVAYHTSRGVPPRELVDRCRRTLDRVADGELEEPYADQRAWLDAFWERSDVEVGGQQEIQQAVRWNLFQLAQATARAEGSGVPAKGLTGSGYGGHYFWDTEIYVLPFLTYTSPRFARNALRVRYHMLDAARRRATELSQRGALFPWRTINGEEASAYYAAGTAQYHIDADISYALMQYVVATDDTDFLRREGVDVLVETARLWVDLGFWRANGDHSFHIHGVTGPDEYTTVVNDNLFTNVMARFNLRAAARVVDALRDRFPEDHARLVEQLGLEPSEPVAWARAAERMAVPFADEIGIHPQDSHFLEREIWDVGRTPPDRRPLLLHYHPLVIYRFQVLKQADVVAALVLQGNHFTPEQKLADFEYYDPLTTGDSTLSGVVQSIVAAEVGYQELALEYFRSSVYVDLANLHGNAADGVHVASAGGSWGAVAFGFGGTRDHDGDLTFDPRLPSGWDSLTFRITWKGSRLRVTVLPSSLELVAETGEGATVGVRGERVTVRSGEPVTVPLDGQGPARAGRPGLRALSGNRREDGTLITAIVPHP	PGPT0014080_181	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342	NA	NA
AK001_03248	2172			hypothetical protein	ATGAGTGCCGACCCGCTCCTGCCCCCGTTCGACGCCGACCTGCCGACCCACGGCGCGGACCCGTTCGGCTGGCTCGAGGAGGTCTCGGGCGACGAGCCGCTGGACTGGGTGCGGCAGCGCAACGAGCACGCCCAGGAGACCCTCGGCGGGGACGACCTCGTCGCGACGCGGGCGGCGATCAGGGAGGTGCTGGACTCGGACGACCGCATCCCGGCGGTCTCGCGGATCGGCGACCATCTGTACAACTTCTGGCGGGACGCCGACCACGAGCGCGGGCTCTGGCGACGCACCACCCCGGACTCGTACCGCAGCGCGGACCCGGCGTGGGAGACGGTGCTCGACCTGGACGCCCTGGCGGCGGACGAAGACGAGTCGTGGGTCTGGCACGGTGCGTCCGTGCTGCGTCCGACGCCCGAGCAGCTCGCGGCCGGCGAGCCCTGGCGCCGGGCGCTGGTCGACCTCTCCCCCGGCGGCTCGGACGCCGACGTCACGCGGGAGTTCGACCTCGTCGAGAAGCGGTTCGTGCCGGCCGCCGAGGGCGGCTTCCACCGTCCGTTGGCCAAGGGCGGGCTCGCCTGGGCCGACGAGGACACCGTGTACGCGTTCACGGACCTCGGCGAGGGGACCACGACGTCGTCCGGCTACCCCCGGACCGTCGTGCTCTGGCGGCGCGGGACGCCGCTGGCGTCGGCCCCGGTCGTGTACGAGGGCTCGGTCGACGACATGTACATCATGGGCAGCCGCTCCCGGACGCCGGGCTTCGAGCGCGACCTCGTGCGGCGCTCGATCGCCTTCTACCGCTCCGAGGTGTTCCTCGTCGACGACGTCGGCACCCCCGAGCAGCGCCTGGTCCGGCTCGAGGTGCCCGAGAGCGCCGAGGTCGGTCTGCACCGCGAGTGGCTGACCGTCGAGCTGCGCGAGGACTGGCGGGCCGGCGGGCGCACCTACCCGGGCGGCTCCCTGCTCGGCGTGGTGCTCGACGACTTCCTCGCCGGCTCGCGCGACCTCACGGTGCTCTTCGAGCCCACGTCGTCGACCTCGCTGGTCGGCGCGACGTGGACGCGGCACCACCTCGTCGTCACGGTGCTCGAGGACGTCGCGCACGCCGCGCACGTCCTGACCCCGCCGGACCTGACCGACGACGCCGACGCCCGCGCGCCCTGGGCCCGCGGCGACCTGCCCGTGGGCGGCGAGCTGCTGACGATCGGCGTCGGGGCGGTCTCCGCCGTCGACAGCGACGACGTGTGGGTGACCCGCAGCGGCTACCTGGAGCCGTCGACGCTCGGTGTCACGACCGTCGTCGGCCCCGGTGACCCGCCCCGCGAGCCCGAGGTGCTCAAGTCGGCCCCCGCGTTCTTCGACGCGGACGACATGGTCGCTGCCCAGCACTTCGCGACGTCCGACGACGGCACGCGCGTGCCGTACTTCGTCGTCGGCCGTGCCGACCTCGTGCGACCGGCGGACGACTCCGCACCGGGCGCCGCGCCCACCCTGCTGTACGGCTACGGAGGGTTCGAGATCCCGCTGCTGCCGGGGTACTCCGGCACGGTGGGCCGCGCGTGGCTCGCCCGCGGCGGGGTGTACGTCGTGGCCAACATCCGCGGCGGGGGCGAGTACGGACCGCGGTGGCACCAGGCCGCGCTGCGCGAGAAGCGGCACCGCGCCTACGAGGACTTCGCCGCCGTGGCACGCGACCTCGTCGCGTGGGGGATCACCACCCCGGAGCACCTCGGCGTCCAGGGCGGGTCCAACGGCGGCCTGCTCGCCGGCAACATGCTCACGCAGTACCCCGAGCTGTTCGGCGCCGTGGTGATCCAGGTCCCGCTGCTGGACATGCGGCGGTACTCGCGTCTGCTGGCCGGCGCCTCGTGGGTGGCCGAGTACGGCGACCCGGACGTGGCCGAGGACTGGGACTTTCTGCGGACGATCTCCCCGTACCACCTGCACGACCCGGAGCGCCGGTACCCGCCGGTGCTGCTGACGACGTCGACCAAGGACGACCGCGTGCACCCGGGCCACGCGCGCAAGATGGCGGCGAAGATGCTCGCCGCCGGTCAGGACGTCACGTACTACGAGAACGTCGAGGGCGGCCACGGCGGCGCGGCGAACAACGCCCAGGCCGCGCACATGGCCGCCCTCGCCTGGACGTTCCTGCGCGGCCGGATCACCTGA	MSADPLLPPFDADLPTHGADPFGWLEEVSGDEPLDWVRQRNEHAQETLGGDDLVATRAAIREVLDSDDRIPAVSRIGDHLYNFWRDADHERGLWRRTTPDSYRSADPAWETVLDLDALAADEDESWVWHGASVLRPTPEQLAAGEPWRRALVDLSPGGSDADVTREFDLVEKRFVPAAEGGFHRPLAKGGLAWADEDTVYAFTDLGEGTTTSSGYPRTVVLWRRGTPLASAPVVYEGSVDDMYIMGSRSRTPGFERDLVRRSIAFYRSEVFLVDDVGTPEQRLVRLEVPESAEVGLHREWLTVELREDWRAGGRTYPGGSLLGVVLDDFLAGSRDLTVLFEPTSSTSLVGATWTRHHLVVTVLEDVAHAAHVLTPPDLTDDADARAPWARGDLPVGGELLTIGVGAVSAVDSDDVWVTRSGYLEPSTLGVTTVVGPGDPPREPEVLKSAPAFFDADDMVAAQHFATSDDGTRVPYFVVGRADLVRPADDSAPGAAPTLLYGYGGFEIPLLPGYSGTVGRAWLARGGVYVVANIRGGGEYGPRWHQAALREKRHRAYEDFAAVARDLVAWGITTPEHLGVQGGSNGGLLAGNMLTQYPELFGAVVIQVPLLDMRRYSRLLAGASWVAEYGDPDVAEDWDFLRTISPYHLHDPERRYPPVLLTTSTKDDRVHPGHARKMAAKMLAAGQDVTYYENVEGGHGGAANNAQAAHMAALAWTFLRGRIT	PGPT0020970_858	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020970-PREP-K01322	NA	NA
AK001_03249	1329			hypothetical protein	ATGGTGCTCTGCGTCGCCGCCCTGCCCGTGCTCGGACAGCGCGGACCCACCTGGTCCGTCTGGGTCGTGGCCGCCGCGGCGCTGGTGCTGCCGGTCGTGGCCGCCGCCCTGCTCTCCCGCGCCGCGCGCCGCGAGGAGGAGGCGTTCCGTGCCCTGGTGATCGAGCGCGACGGTCTCGCGGCCGGGCTCGCCGAGGCGTCCCGCGCCCTGGAGGACGCGCACGCCGACCGTCAGCGCACGCAGGACGAGCGGGCCGACGAGCGCGCCGCCGTCGAGACGGCCGTCGTCGCGCTGAGCCGCAAGGTGCAGGCGTCCGCGCACCGCGTCCAGGAAGAGGCGACGCGCATGGCCCAGCGCCACGCCGCCGACCACGACGTGCTCGAGACCTCGATGCGCATCGACCACGCGGCCGCCCAGCACGCGCGGCAGGCGCAGAGCCTCGTCGCCCTGTGCGGCCGCCGGCCCGGGCAGACCTGGGACGCCCCCCTCGCACTGCCCGACGTGGTGCGGGCCGCCGCCGGACGCATCACCGCCTACGGACGCGTCGAGGTCTCCGGTGACCCCGGCCTGGCCGTCACCGGCCGGGCCGTCGAGCCCCTCGTGCACGTCGTGGCCGAGCTGCTCGCGAACGCCACCCAGTGCTCCCCGCCGAACACCCAGGTGCTGGTCGTCATCCGGCAGGTCCAGCGCGGGGCCGTCGTCGAGATCGACGACTGCGGGGTGGGGATGGACCCGCGCGAGCTCGCCCGGGTGCGACGCATCGCCGCCGGTGAGGACCCGGTGACGATCTCCGACCTCGGGGAGGTGCCGCAGACGGGCCTCGCCGTGGTGGGGACCTACGCCCGGTTCCTCGGTCTGCACGTCGAGCTCACGGACTCCGTCTACGGCGGGCTGCGGGCGGTCGTCCGCATCCCCGGGGAGATCACGGAGACCGCCGCCGGCGTGCCCGACACGCTGGCGGCCGGCGTGGAGGAGGCGTCGCCGGTGCCCGCGCCGACCGGTGCCGAGCCGCGCGACCCGCTGACCGCGCCCGTGCCGGCGCCCGCCGTCGACCCGGCGTCGGGCCCGCCCGCGCTCCCGCAGCGCCGGTCACGACGGGCCGCGATGGACCGCACCCCCACGGCCGGCCACGGCACGCCCCGCGTGCCCGAGCCCTCCGCAGGACTGTCGGAACCCCGGCGCCCGGAGCAGACGGCCGAGGAGGCGGGGGCGTGGATCGGCGCGTTCTTCGCCGCTACCGACCCCGCACCGCCGCACGACCCGGACACCCATGACCCGTCCGTCGGGACGGGACCTCGGAGGACAGATGACGACGCAGACCAGCGGTGA	MVLCVAALPVLGQRGPTWSVWVVAAAALVLPVVAAALLSRAARREEEAFRALVIERDGLAAGLAEASRALEDAHADRQRTQDERADERAAVETAVVALSRKVQASAHRVQEEATRMAQRHAADHDVLETSMRIDHAAAQHARQAQSLVALCGRRPGQTWDAPLALPDVVRAAAGRITAYGRVEVSGDPGLAVTGRAVEPLVHVVAELLANATQCSPPNTQVLVVIRQVQRGAVVEIDDCGVGMDPRELARVRRIAAGEDPVTISDLGEVPQTGLAVVGTYARFLGLHVELTDSVYGGLRAVVRIPGEITETAAGVPDTLAAGVEEASPVPAPTGAEPRDPLTAPVPAPAVDPASGPPALPQRRSRRAAMDRTPTAGHGTPRVPEPSAGLSEPRRPEQTAEEAGAWIGAFFAATDPAPPHDPDTHDPSVGTGPRRTDDDADQR				NA	NA	NA	NA	NA
AK001_03250	423		COG2018	Serine protease inhibitor	ATGACGACGCAGACCAGCGGTGACGCACCGCTCGCCACGGACCACCCGGACAGCTGGATGCTCGACCTGGTCGCCGGCGTCCGCGGCGTCCGCCACGCCGTCGTGCTCAGCTCGGACGGCCTGGTCAAGGTCCGCACCGACGTCACCGACCCGGACACCGCCGACAAGGTCGCCGCGGCCTGCGCCGGGCTGGTCGCGCTCGGGATGTCGATGGGCCGTGAGTTCGGAGAGGGCGACCGGCTGCGCCAGGTGGTCGTCGAGTTCGAGGGCGGGTTCCTCTTCGTGCGCGGCGCCGGCGACGGGTCGCGGCTCGCCGTGGTGACCGACGCCGGGATCGACCCCGGTCTGGTCGCCCAGCAGATGCAGGCCCAGGTGCTCATGATCGGCGAGCGGGCGCTCGGCACGGATCCGGTCGAGGACTGA	MTTQTSGDAPLATDHPDSWMLDLVAGVRGVRHAVVLSSDGLVKVRTDVTDPDTADKVAAACAGLVALGMSMGREFGEGDRLRQVVVEFEGGFLFVRGAGDGSRLAVVTDAGIDPGLVAQQMQAQVLMIGERALGTDPVED				NA	NA	NA	NA	NA
AK001_03251	354			hypothetical protein	ATGACCGCCGAGGGGTACCACGACCACCCGGTGCGCTCGTACGTCCTGACCGGCGGGCGGTCGCACCCCACCCGCAACACGCTGCGTCCCGAGACGCTGCTGTGCACCGTCGACGACGGCCGTGAGCTGCCCGGTCACGCCGGCCGCCACCAGCACGCGCTGCTGCGCACCTGCCGCGGGACGCTGGCGCTGGCCGAGGTCGCCGCCTACCTGCGCCTGCCCGTCAGCCTGGCCGCCGTGCTCGCCTCCGACCTGCTGGACGACGGCTACCTGGCCCTGCGGTCCACCCCGACGCACGGCCTGCCGGACACCACGCTGCTCGAGGAGGTGCTCGATGGACTCCGCCGTCTCTGA	MTAEGYHDHPVRSYVLTGGRSHPTRNTLRPETLLCTVDDGRELPGHAGRHQHALLRTCRGTLALAEVAAYLRLPVSLAAVLASDLLDDGYLALRSTPTHGLPDTTLLEEVLDGLRRL				NA	NA	NA	NA	NA
AK001_03252	630			hypothetical protein	ATGGACTCCGCCGTCTCTGAGCCCCAGGGCCGCGGCGCCCACCGCGCGCGGCACCTGGCCGCGGCCGTCGACCGGTCGGTCAAGGTGCTGGTGGTCGGCCCCTTCGGCGTGGGCAAGACGACGCTGATCGAGGCGGTCAGCGAGATCCCGATGCTCCGCACGGAGGAGACCATCACCACGGCGAGCGTGGGGGTCGACCCGCGCGTGGGCGACAAGCGCACGACCACCGTCGCGATGGACTTCGGCCGGCTCACGGTGGGCGGGGACACCGCGCTCTACCTGTTCGGCACCCCCGGCCAGCGCCGGTTCTGGGACCTCTGGTCTGGTCTGGCCGACGGCGCGGTGGGCGCTCTCGTGCTCGTCGACACCCGGCACCTCGCGGACAGCTTCGAGGTCCTGGACCAGCTCGAGGAGCACACGCAGCTGCCGCTGACCGTCGTGGTCAACGAGTTCCCGGACGCGCCGCGGCACAGCGTCGACGAGGTGCGCACCGCCCTGGACCTGCCCGCCGACACCCCGGTCGTCGCCGGGGACGTCCGGGGGCGCCCGCAGGCCGTCGAGGCCCTGACCACTCTCGTGGCCCACGCGCTGCGGCAGCGGGAGCGGGCCGACGAGGAAGCCGCCGCATGA	MDSAVSEPQGRGAHRARHLAAAVDRSVKVLVVGPFGVGKTTLIEAVSEIPMLRTEETITTASVGVDPRVGDKRTTTVAMDFGRLTVGGDTALYLFGTPGQRRFWDLWSGLADGAVGALVLVDTRHLADSFEVLDQLEEHTQLPLTVVVNEFPDAPRHSVDEVRTALDLPADTPVVAGDVRGRPQAVEALTTLVAHALRQRERADEEAAA				NA	NA	NA	NA	NA
AK001_03253	1230		COG2124	Cytochrome P450 107B1	ATGAGCATCACCGCCGCCGGACGTGTCGTGCGGCTGGAGGACGTCGCCGACCGGCCGCTCCTGGCCGACCTCGCCCAGGCCGCCGACCCGCACGCCCGCTACGACGCGCTGCGCTCGCGCTGGGGCGCCGTCGCGCCGGTCGACCTGGAACCCGGCGTCCCTGCCTGGCTGGCGCTCGGGTACGACGAGGTCAGCGCCGTCCTGCGCGACGAGGTGCACTTCACGCGCGAGTTCGGCCGGTGGAGGTACGAGGCGGAGCGGCTGATCGCCTGGCGCTCCCCGGTCCGCGCCGTGCTCGCCGCGCGCGACGCGCTGCTCGACCGCGACGGCGCCGAGCACCGCCGCCTGCGCGGACCGGTGCAGGACGCGCTGGCGACGCTCGAGGACAAGCGCCTCACACGCACCGTGGCGGTAGCGTGCACCTCGGCGCTCGACCGGGCGGCGGCGCGCGGCTCCGCGGACCTGATCGCCGACTACGCCGTCGACGTCCCCGTCCGGGTCCTCGCCGACCTGCTGGGGATGAACCTCGCCGACGCGCGCCGGATGCACGAGCTCAGCGTCGTGCTGGGGGCGGGCGGCGACGACGCCGCGGACGCGGCCGACGAGACCGAGAACCTGCTGGCGACCTTCGTCGCGGCCCGGCGGGCCGAACCCGGCGACGACCTCGCCTCGGGCCTGATTGCCGACCCACGGCACCAGCACGACCTGGAGGTCATGGGTGCCGTCGGAGCGCTCTTCCGCACCGCGCACGACGCCACGATCGCGGCCTCGGCGACGGCGATCCACCGGATCGTGATCGACCCCGGGTTCGGCTCCCGGCTGCACGGCGGGCGCCTGTCCCTGGAGGACGCCCTGGACGAGATCGCCCGCCGCGATCCGCCGATGCCGCACCTGCTGCCGCGGTACGCCGTGACGGACACGGTGCTGGGGAACCAGCCGATCGCGGCGGGCGACGCCGTGGTCCCGGCGGTGGCCGCCGCCAACGCGGACGGCGCCGTGCAGGCCGTCGACCCGTGGGAGCAGGTCGACTCCCGGTTCCACCTGACGTGGGGGCTCGGCGCGCACTCCTGCCCCGCGCACCGCACGGCGCCGCTGATGACGCGGCTGATCGTCGGCCACGTGGTGGCACGGGTCGGCAGCATCGAGACGGCCGCGGCACCGGACCGGGTGCCGTTGGTGCGGTCCGCTTGGTTCCGCTACCCGCGCGAGCTCCCGGTCCGGTTCCGCTGA	MSITAAGRVVRLEDVADRPLLADLAQAADPHARYDALRSRWGAVAPVDLEPGVPAWLALGYDEVSAVLRDEVHFTREFGRWRYEAERLIAWRSPVRAVLAARDALLDRDGAEHRRLRGPVQDALATLEDKRLTRTVAVACTSALDRAAARGSADLIADYAVDVPVRVLADLLGMNLADARRMHELSVVLGAGGDDAADAADETENLLATFVAARRAEPGDDLASGLIADPRHQHDLEVMGAVGALFRTAHDATIAASATAIHRIVIDPGFGSRLHGGRLSLEDALDEIARRDPPMPHLLPRYAVTDTVLGNQPIAAGDAVVPAVAAANADGAVQAVDPWEQVDSRFHLTWGLGAHSCPAHRTAPLMTRLIVGHVVARVGSIETAAAPDRVPLVRSAWFRYPRELPVRFR				NA	NA	NA	NA	NA
AK001_03254	1497			hypothetical protein	ATGAAGATCGCCGTCGTCGGGGCCGGGTTCGCAGGACTGGCCAGCGCGAAGACCCTCCGCGAGTTCGGCCACGAGGTCGCCGTGTTCGAGAAGGCGCCCGACGTCGGCGGCGTCTGGAGCTCCACGCGGCGGTACCAGGGTCTGTACACCCAGAACAACAAGGACTCGTACTCGTTCACCGACCTGCCGATGCCGAAGCACTTCCCCGAGTGGCCCAGCGGGGAGCAGGTGCAGGCCTACCTCGAGCAGTACGTCGAGGTGAACGCGCTGGCGGACTCGCTGCGACTGTCCACCGAGGTGGTGCGCGCCGAGCTCACCGAGGCCGAGGACGGCTGGCTGGTCACCGCACGCCGCTCCGGTGAGGCGGTGCGGGACCCCGAGCGGTTCGACCACCTCGTCGTGGCGAACGGCATCTTCTCCGACCCCGTGATCCCCCCGTTCGAGGGCATGGCCACGCTGCTGCGCGCCGGGGGGAAGGTCGTGGCCTCCGGCCAGCTCGGGTCGGTCGAGGACGCCCGGGGCAAGCACGTCGTCGTGGTCGGCTACGGCAAGTCCGCCTGCGACGTCGCGGCCGAGGTCGCGCCGGTCGCCGCCTCGACGTCCGTCGTGGCGCGCCAGCTGCTGTGGAAGCTGCCCAAGAAGCTCGGCAAGGCGCTGAACTACAAGTACCTGCTGCTGACGCGCCTCGGCGAGGCCCTGTTCCGGTACCAGACGCTCGACAGCTCGGCGGAGCGCTTCCTGCACGGCCCCGGTGACCCGGTCCGCCGCTCGATGGTCTCCAGCGTCGGCGCCGTCTCGCGCAAGCAGCTCCGGCTCGACGACCTCGGCCTCGTCCCGCGCGGCGAGTTCTCCGACATCGCCCGGTCGACGGTGTCGCTGGCCACCGACGGCTTCTACGAGCAGGTGGCCGACGGCGCCATCACCGTGCACCGCGACACCGAGATCGAGCGGTTCGCGACCGACGACGACGGCGCCCCGGTCGCCGTGCTCAGCGACGGTGACACCGTGCGGGCCGACCTGGTCGTGTGCGGCACGGGGTTCCACCAGCGCGTGCCGTTCCTCGACGCCGACCTGACCGCGCGGCTGCTCGACGAGCGCGGCAACTTCCAGCTCTACCGTCAGGTGCTGCCGCACGACGTGCCGCACCTGACGTTCGCCGGGTACAACTCGTCGCTGTTCAGCCCGCTGTCGGCCGAGATGGCCGCCGTCTGGACCGCCGCCTACCTGGCTGGAGCGCTGGACCTGCCGCCGGACGAGGTCCGGCGCGAGCACGTCGCCGACCGCGTGGACTGGATGGAGAAGCGCACCGAGGGCCGGCACGCCCGCGGCACCAACGTCATCCCGTTCTCGCTGCACCAGATCGACGAGATGATGCGCGACCTCGAAGTCGCGCTGCCCCGCCGCACGCAGATGGCCCAGTGGCTGCTGCCCGTGGACCCGGCCGCCTACCGCCGGGTGTCCACCACGGTGCGCGACCGGGTCGCGGCGACGGTCTGA	MKIAVVGAGFAGLASAKTLREFGHEVAVFEKAPDVGGVWSSTRRYQGLYTQNNKDSYSFTDLPMPKHFPEWPSGEQVQAYLEQYVEVNALADSLRLSTEVVRAELTEAEDGWLVTARRSGEAVRDPERFDHLVVANGIFSDPVIPPFEGMATLLRAGGKVVASGQLGSVEDARGKHVVVVGYGKSACDVAAEVAPVAASTSVVARQLLWKLPKKLGKALNYKYLLLTRLGEALFRYQTLDSSAERFLHGPGDPVRRSMVSSVGAVSRKQLRLDDLGLVPRGEFSDIARSTVSLATDGFYEQVADGAITVHRDTEIERFATDDDGAPVAVLSDGDTVRADLVVCGTGFHQRVPFLDADLTARLLDERGNFQLYRQVLPHDVPHLTFAGYNSSLFSPLSAEMAAVWTAAYLAGALDLPPDEVRREHVADRVDWMEKRTEGRHARGTNVIPFSLHQIDEMMRDLEVALPRRTQMAQWLLPVDPAAYRRVSTTVRDRVAATV				NA	NA	NA	NA	NA
AK001_03255	786			hypothetical protein	ATGGAGGACATGTCCACGACGCTCGCCGACCTGGAGATCGACGTCGACCTGCGCGCCACGCCGTGGCGCTACCCGGGCCCCGTCGCCCCCACCTCGGGCCTGCTGCACGGCGGCACGTTCGGCGTGCTGCAGCACGACGGCGGCACGTGGGTGTCCGACGACGGCACCACCCTGGACGAGCTGCTGCACCGCGCCCGGGTCGCCGGGACGCAGGACCGCCAGGCCGTGGTCGCCATCGGCTCGAACGCCGCGCCGGGCGTCATGCACCGCAAGTTCACCCGGCTGGGGGTGAGCACCACGGTGCCCATGGTGCACGGCACCCTCACCGACGTGTCGGTCGGCCACATCCCCCGCGTCAACCCCGCCGGGTACGTCGCCGCGGTCCCCCGGTCCGCGCCCGACGTCCGCAGCGCCGTCGTCGTCTCGCTGCTCACGCCCGACCAGGTCGCCGCGCTCGACGTCACCGAGCACAGCTACGTGCGTCGCACCGGCACCGACGGCCTGCACCTGGCGGGGCACGACGGCGCGTGGTCGCTCTACGTCTCGGAGATCGGCGCGATCTCCGGCGACGACGGGTCGGCCCTGCCGCTCGGCACCCAGTCCGAGCTGTGGGAGCTGCTCCACCTCGATTCCGCGCTGGCGGCGCTGACCGGGCGCGGGGGCCACCGCGAGGTCGCGCGCCGGCTCGCCGGGGACGAGCGGCTGCGCGACCGCGTCCGGGCCCATCTCATCGAGCGCGACCGGGTCGTCGACACCGGGCTGGAGTGGCTCGACCCCGCCGCCTGA	MEDMSTTLADLEIDVDLRATPWRYPGPVAPTSGLLHGGTFGVLQHDGGTWVSDDGTTLDELLHRARVAGTQDRQAVVAIGSNAAPGVMHRKFTRLGVSTTVPMVHGTLTDVSVGHIPRVNPAGYVAAVPRSAPDVRSAVVVSLLTPDQVAALDVTEHSYVRRTGTDGLHLAGHDGAWSLYVSEIGAISGDDGSALPLGTQSELWELLHLDSALAALTGRGGHREVARRLAGDERLRDRVRAHLIERDRVVDTGLEWLDPAA				NA	NA	NA	NA	NA
AK001_03256	9648			hypothetical protein	ATGCTCGCAGGCACCGCCCGGCAGGAGACGCGCACGGTCGCGCGTCGGTGGACGACGGCGACGGCGATGATGGCCTCGGCCGCGCTCGTGGTGACGCTCAGCGCCGCGCCCGGTACCGCCGAACCGCTCGCGGACCCCTCCGTCGGTGCGCTCGACGACGTCCCCGGCACCTCGCCGGACGACCTCGGCGGCGTCGACCTGACCGACCTCGACGACGGCGACCCCACCGAGGCGCTCTCGCTGGTCACCGAGCCCGAGCCCACCAACGCCGGCTCCGTGCAGACCTCCATCCCCGTGCTCGTGCCGCCGGGCCGGGCCGGCATCGAACCCGATCTCGACCTCGCCTACGACTCCTCGGGCGGCAACGGCTGGCTGGGCCTGGGCTGGGACCTCGACGCCGGGGCGATCGCGGTGGACCCCACCTTCGGTGCGCCGCGTTTCTCGGCCGACGTCGAGACCGAGACGTACACGCTCGACGGTGCGCGGCTGTTCCCGCACTCGATCGTGCCCGGCGGTGACTACGGCGCGCGCCAGGACGGCCCCCGCAGCGACTTCGTGCGGCAGACCGAGACCGAGTTCGAGCGCGTCGTCCGGCACGGCGACGGCCCCGGCGCCTACTGGTGGCAGGTGACCGACAAGGACGGTACCGACCGCTGGTACGGCGGCGACCCGGACGGCCAGGGCCAGGTGCTCTCCACGGTCGGCGGGAACGCGTTCCACTGGCCGCTGACCTACGTCGAGGACATCTCCGGCAACGTCATGGAGTACGAGTACGACACGGCGACGGGTGTCGGGTTCGGCGGTTCGTCGACCGGCCCGGGCCTCGAGATGTACCTGCGCGAGATCACCTACACCGGGTTCGACGTCGAGCCCGGCTCGACCGGCGTCGTCGACGAGCCGCCCTACAGCGTGTACTTCCTGCGCGACAGCGACGTGGGCGTCAGGACGGTCGCCTCCGGCGGCTCGGTGAGTGCCCGGCCCGACGCCCTGGTCGACGCGTCCGGCGGCGCACCGGTGGTCACCGCTGACCTGCTGCGCGAGATCCAGGTGCGGCACTTCCCCGCAGGCGCTCGCACGGACGACGCGCCCGGCGCGATCGACCAGACCAATCTCGGCGAGCTGCTCGGCGGGTACGTGCTCGAGTACGAGACCAACCCGTTCGACAAGTCCCTGCTGAAGCGCCTCGGCCAGTTCGGCGGCGACGGCGCGGTCGCGGCCACGCACGCCCTGCGCTGGTACGACGACGTCCCCCGCAAGGACAACGGTGGTCTGGACCTCTTCGGCGACCCCGTGCGGTGGGGTGCGAGCGACGACAGCACGGGCTCGAACGTCTCCGCCTCGAGCGCGCTGTCGACGTCCTTCCGCGGTGGGGCCGAGGGCGGTGCCTACATCGGTTTCAACCCGGTGGCGCCCAGCAAGATCGGGTCGTTCGGAGGGTCCTTCAACCTCTCCGGCGGCAACAGCGAGGACGTGACGACCCTCATGGACATGGACGGCGACAGCCTGCCGGACCGGGTCTGGGTCGACAACGGGGCCGTGAAGTACGCCCGCAACCTCTCCCAGCCCGGTGACGACCTGTCGGTCGACGACACCCGGTTCGGGTCGGAGCGGACGATCGACGAGGCCAAGCTCGGCACCGGGACCGACTTCGGCGTCGACCTGCACGCCGAGTTCTACCCGTTGGTCTCCATCCAGGTCGGCGGTTCCTTCGGGTTCGACTGGGCCGACCGCTACTTCTCGGACGTCAACGCGGACGGGCGGCCCGACCTCATCAAGCAGGGGTCCGACGGGTGGCAGGTGTTCTTCAACATCCTCGACCCCTCGGACGGGTCGATCGAGTTCGTCGCCTCCTCCGCGGGCACCGCGGTGCCGATGGGCGACTTCTCCTCCGAGCTCGCCGCCGCCGAACCGGAAGGGGTCGCCGAGCTGCTCGAGGCCTCGGCGCCCCGCTACGACAGCGTGCGCCGGTGGGTCGCGCCGTTCGACGGCACGGTCGACGTCACCGGCACCCCGACCCTCGCCGCCGGCAGCTACGACGGTGACGGCGTCCGCGTCATGATCGAGACGCTGGACACCACCTCGAAGCGGCCGTTCGACGAGACGCTCGACGGCGGGAGCACGAGCGCCGCCCACGACGTCTCGGTGACCGTCGACGCCGGCGACGAGATCTTCTTCCGCACCCACGTGATCGACAACGGCCAGCGCGACCTCGTCGACTGGGCGCCGGCGATCGTGTACACCTCCGTCTCCTCGGGCGTGTCCACCAGCGCCCCCCTGCTGGACGCCCAGGGCCGCGACGTCTTCTCCTACGACGCCGCCGAGGACTTCACCCTGTTCGGACGCGACGGCGGCCGGACGGCGCTGTCGAACCCGGGCGAGGCGACGCTGACCGTCACCCTGGAGCGCACCGGGCTGCTCACCGACGACGTGAAGGTCGTCGCGAGCCACGGGGTCAACGCCGGGTTCATCGAGGGCACGTCCGAGGTCCTCACGCTCACCCCCGACGGGGCGGACACCGAGGAGCTGCTGGGGGCCGGACCGGCACCCGGGGACGAGCCCGTGGCGGCCGAGGGCGAGGACCCGATCGAGATCGCCCCCACCTCGGTCGAGCTCACCTACACCTTCGACGTCTCCGAGGTCGGCAAGGTCGCCGAACCGTTCGGATGCTACGACGACGGCGACGCCGAGGACTGCGACTCCGTCACGGACAACCCCGACTGGCTCGCGCTCGACATCGTCTCCGACTCGCCCGTCGACCCGCGCTCGGTGGCCCTCGACGTCCAGCTCGAGGTGGCCGACCCGGCCACGGAGTCGGGTCCGAACGGCGAGGCCACCCCGGACGACCTGCCCGCCGACGCGGTGCTGCCGTCCTCGACGGGCCCCGTGGTCATCCCCTCGGTCCGTGTCTTCTCCGTCTCCGACGAGGTCGCCGGACCGTACGTGCCGTGGTCGCCGGACGCCGACGGGACCTTCTCACTCGAGGTCGACGTGGTCGCCGACAAGATCTGGAACTATCTCGAGGTGGAGCCCGACGACGAGGCCTGGGCGTCCTCCTCGGCCGTGGTGACCGTGAAGAGCGAGGACGAGCACGGCATCGTGGGCGTGGTCGCGAGGTCCGCGGAGTTCACCGTCGAGCACAACCACGACGACGGACCGTTCACGCTGCCGGCCGAGTACCAGGTCGAGGGCTCCACCGCCCTGGACTTCGACGCCGTGACCGGCCAGGACTACTGGGTCGAGGTGTCCCTGCACGACGCCCCGCTGGCGGCACACGTGCTCGAGAAGGGCGGCGTGAGCGTCCAGGCGACGTCGGACGACGACGAGGACGACAAGGGCGCCGACGACCTGACGGCCCGCCTCGTGGCCCCGGACGTCCAGTCCGTCTTCGCCTCCGGCAACCGCGGGTGGACCGCGGCCGGCTACGACGCCGACCACCCCGACGTCCCCCGCGACGAGGCCGACGAGCCCCGGGGCGACGCCCTGCTCCAGCGCGAGCACTTCGAGCTCGAGCCGGAGGGGGTCGACGACTTCGACGAGGACACCGAGATCCCCGACGCGAAGCCCGCGACGGACGTCGTCGGGGAGCCCGGCGACCTGTCCGGGTCGGCGGACGAGGTGGCGGACTCGTTCGACAAGGCGCTGCCGTACTTCCCGCTGCCCGGTCCGGACGGCGGACCGGCCGACCGTTGGCGCGCGGCGAGCGAGGAAGGGCTGTTCGTCACCGCCACCGGCATCCGGTCGACCCGGATCGGCGAGGAGATCGCCGTCCTCGACCCGGAGCCCGAGGAGGGGTCGACGAGCGCCGGCAGCAGCGGCGACGCCCGCCCGGCGCCACGCGTGCTGACCATCGACGGCGACTTCAACGCCGCACTCGGTCTCGGACCGGCCAGCCTGAGCGGCGCCATCGGCGGAGGCCGGACCGTCACCGACTTCCAGGACCTCAACGGCGACGGGTTCCCGGACATCCGCTCCGAGTCCGACGCCGACTACACCGGACCCCGCGGAGGCAGCCTCGACAGCGGCTCCGAGCTCGAGAACACCGTCTCGACCGCGGTGTCGGTCGGGGGCGGCCTGGGCGGCTCGCCGGTCTCGATCGAGGGCAGCGAGCAGACCAAGACGTCCGCGGGCAGCGCCACCGTCGGCGCGGAGAACGGGACCTCCAAGAACAAGTCCCGTGGCATGAGCATCGGTCTGGGCTTCACCGTCCAGGGTCAGTGGACCAACCCGTTCGGGGACAACACCGAGGGTCTCGACGGCGGGGTGTCCGACCTGCTGCCCGACGACGAGAGCACCGGGCAGGGCGTCCAGGTCAGCGTCGACCTCGACGACGTCAACGGCGACGGCGTGACCGACCTCGTGGAGACCTGGTCCGGGTCCGGCGTGCAGGTGGCGCTGGGCACCGGGTACGGGTTCGCCGACCCCGTGAAGTGGTCCGACGGCGTGTTCGAGGCCTCCGAGAGCGTCTCCGGCGCGCTCTCCGGCGGGTTCCAGCTCAACGCCTACGAGTTCGGCGGCGGTGTCGGCGGGTCCGAGGGCGGCTCCCTCGCCGAGGCGTCCTGGGCGGACGTCGACGGCGACGGCGTCCTGGACCGCATGGTGTACGCCGACGGCAACGAGAGTGCGCCGACGACGATCTTCGGCGCGGCCGAGGGCAACGACCGCGACCCCGAGGTGCTGGGGACCTACGCGTCGCCCGACTTCGGCGTGGGGGACCTGACGATCGACAACCGCGCCGACCTCGGTCGCAGCACGTCGGTGAACGGCGGGTTCGACTTCACGGTCTCCGTGGGCCCGATCTGCCTCGTGGCCTGCTACATCATCATCAACCCCGGCGTGCACGGCGGCTACGAGCGCTCGCGGACCGTGGTCGACATGGTCGACATGAACGGTGACGGCTACCTCGACGTCGTCGAGAGCCTGAACGAGGAGCACGTCGAGGTCCGCCTCAACCAGGCCGGGCGCACCGGCCTGCTCAAGGCGGTCGAGAACCCGCTCGGCGGCACGATCCGTGTCGACTACGAGCGCACGGGCAACATCGAGGAGCAGCCGAACTCGCTGTGGGTCATGAGCGAGGTGGAGTACGACGACGGCCGCCCCGGCGACGGCACCGACGTCCAGCGGCGCGAGTTCTCCTACGACGGCAACGCCTACGACCACCTGCACCGCACGACGCTCGGCTTCTCCGAGGTGGTGCAGCGCGAGTACGACGACCCCGATGTCGACCCGACCAACGGGACGACCGACGACCCGGAGGTCCTCCGGATCACCCGGTGGGACTACCGCAACCAGAGCCCGTTCGACGCCGGCCTGCTTGAACGCACCCGCCTGTTCGCCCCCGATTCGGCGGGCGGCGACGGCGATCTCCTGGAGCTGACGGAGACGACCTGGGAGCACGCATACGTCGTCGTCGGCGATCCCGGCTCCGGCCCCGCCAACGGTGACGTCTTCACCGACGTGGTGCCCGACGTCGGCGACCCGGCCCGCACGGCGCTGTTCGACCTGGCGCTCGCGCCCCGGCTGGCGACGGAGACGTTCACCCGCTACGACGGCGACGGGGACGCCCACGCCCGCACCACGGACTTCACCTACGACGGGCTGGGCAACACCGTCCAGGTCGTCGACCACGCCGAGACGGGCACCACCGACGACGACACGACCACGGTGACGACGTACCCGCCGTGCACCACGGCCGCCCGCGACGCGGACACGTCCTGGGTCCAGGTGCCCGCCACAGTGGCGGTGCACGCCGGCACCGACGACTCCGGCGAGCTGCTCAAGTACCGCGACGGCAGCCTCGACCTGTGCGCCAACGCCGTCCCGGTCCGGATCGTCGAGACCCAGGGCCAGGACGTCTGCGGTGACGACATCCTCGCGGTCACCGAGCTGGCGTTCGAGCCCTACGGCAACTACGACGCCGTGCGGTACCCCGCGAACGTGCTCACCGGCGAGACCGACGAGTCGGCCTGCGGCGGTGCGCCACCGGCGCTGCCCGAGGAGCCCGTGTTCGACGGCTGCGTGCCGGCGTCCGACGCCCCGGACGCGGAGAAGGCGGCCGCCCAGCAGGCGGCCGACGAGCAGCGCTACTGCGTGGACTACGTCTACGACGACCACCGCGTGACCGACATCGCGCAGGTGACGGACTCCCACGGGGTGACGTCGACCGCGACGTACGATCACACGGTCGGCCTGCCGGCGACGACCACGGATGCGAACGGCCACACCACCGAGTACTGCTACGACGCGCTCGGGCGCATCGCCGCCGTGGCGACGCCGCGGGAGTCGGGCGACTTCGCCTGCGACGGCAGCGGGTCCGGACCGGCGACCGTCACCTACGCCTACGGAGGTCTGCGCATCGGCACGAACGCCTCCGACGGGCACGCGTGGGCCGTCGCCCGGCACCACGACGCCGTGCGCGCCGACGGGACGCCCGCGGCCGACACCCTGGACACCGCCACGTTCGTCGACGGCATGGCCCGGGTGGTCCAGCGCAAGCGGGACGCCCAGGTCGTCGCGCTCGGCGACACGCCCGCCGTCGTCGTCGAGGGTGCGGTCGACTTCGACGCCCTGGGCAAGGAGGTGCGGGAGTGGTACCCGGTCGTGGAGGAGGCCACCTACCCCGGCGGAGGCGACCTGCCGCCGCACCTGACGACCTACAACACGTTGAACTCCTCGATGGACCCGGCCGACACGCACGTGCCGCGGACGGACCCGACGATCCGTGAGTACGGGTTGCTCGGCGGCCCCACGCGCACCGAGCTGCCCGACGGCAGCGTGGTGACGTGGACCTACGACACGACCGAGCCTCCGCACCTGGACTTCAAGGTGCCCAGCACGACCGTGACCGACCCGCTCGGCCGGGCTGTGCAGCGCTTCTCGGACGTGCGCGGCGCGGTGCTGGCCGTGGTCGAGAACCCGGCACCCACCGAGGGCACGACCGACGGGCTGCTGGACGCCCTGCCGGCCGCGGGGATCGGGGACTCCCGGATCGTGGAGTCCGCCCGCACCGGGACGGACCCGCTGATCACCACCTATGCGTACGACCCGATCGCCCGGCTGACCCAGGTCACCGACACGGCGGGAGCGGTGACCGGCTACGAGTACGACATGCTCGACCTCGGCACGGCGGTCGAGACGCCCGACTCGGGTCTGCTGGAACGTGCGTGGACCCCGGCCGGCGACGTCGCGGCGACCGTCGACGAGGTGCGGCGTGCCGCGGGCACGTCGGTGGCGTACGCCTACGACTTCGACCGGCTGCGCAGCATCACCTACCCGGACGACACCGGCGACGTGGAGTACACCTACGGTGACGAGCTGGGCGCCGCGGCACCGGGCAACAGCCAGGGCCGGGTCGCGCGCGAGGCCACTCCCGCGGTCGCCCGCGAGTACGCCTACGACGTCGACGGCAACGTGTCCACCGAGGCGGTGACCCGCGGCATCGACCCGTTCGGGATCGGGCAGGACGAGCCGCAGCCCACCTGGGCCACGCGGTGGCAGTACGACTCGCTGCAGCGTCTCGTCCGGCTCACCTACCCGGGCGACGACGGCGGGCACGGGGAGGTGCTGCACCACGAGTACGACCTCGGCGGCCAGGTCTCCGGGCTGTGGTCCGAGGCCCCGCAGCACGACGCCTACACGGTCGAGGGCGACCCCGTGCCCCGCGAGGACCGCGAGATCGAGTACGTGGCGCACGCCGGGTACGACGAGTTCGGCGACCTCCGCACCGTGACCACCGGTACCGGCGTCACCACCGAGCACGACTACGACCCGGACCGCCGGTTCCTCACCGGGGTCTCCACCGACGTCGCGGCACAGGAGCAGTGGGACGGCACGACCTCGGTCGCCCGCGAGCTGCAGGAGCTGCGCTACTCCTACGACGTCGTCGGCAACGTGATCGACGTCGCCAACGCGCTCTACGACGGCGGCTCGGCCGGCACGCTGGACGAGCTCGACGACATCCCGGCGAACAACCTGCCCGGTCCGGCGCAGCAGTCCTACACCTACGACCAGCACTACCGGCTGGCCGCGGCGGAGGGCCGCTACATCGACCGGCAGGAGGACCGCAGCTACACCTACGCGGCCGACCGGACGCCCAACGGCAACCTCGTCGACGTCTCGCAGGCGACCGTCACCGAGTCGACCACCGGCAAGGGCGGCGGCAAGGGACCGGGCCGGTCGCAGCAGAAGACGAACTCGAAGAAGGGTGACGGTTCCCTGCCCAAGGACGGGTCCACGGACGAGCCGCAGTGCGACCCGTACAGCGGGTCCGGCGGCGGCTCGGACAACCAGGACCCGGAGTCGACCTACGCGTGGCTCGACCAGCAGTTCGACCCGGACCACCCGCACCGGGTGGTGCAGGCGGGCGGGCGGACGTACACCCACGACGCCAACGGCAACGTGACCGGGTGGACCGAACCGTGCGCGAGCTCGGACTCCTCCGAGCTCGACCGCCGCATGGTGTGGGACGCCGAGGACCGCCTCGTGGAGATCGGCCAGGACGGCAACGACACCGAGTACCGCTACGACGCCGACGGCAACCGGGTCCTCGAACGGGGACCCGGGGGCACGTACTTCTTCGTCAACGAGACCTGGCGGCTGCACAACGACGGTCACCGCTACGCGGAGATCTACCTGGGCGCCACGAAGATCGCCGGCCACCGCACGGCCCCGGCCCCGGAGCCGCCGGTGGGCTGCGACCCGCTGGTGGACGAGAACTGCGTGTGCGACCCGGAGACGCAGGCCTGCGCCTGCGACGTCGGTCAGGCCGACCCGGACGGGGACGGGCTGTGCCCGCCGGTCGAGGACCTCACCGTGCAGTTCTTCCACACCGACCTGCAGGGCAGCCTGCGCGTGGTGACCGACGAGGTCGGCAGCGTCTTCCAGTACCTGGAGTACCTGCCGTCCGGGCAGAAGTGGGTGGCGGGACAGAGCCGCATCAAGGACACCCCGTACCTGTTCGCCGGCGGGTGGACCGACGCCACGTACAAGCTCACGAGCTTCGGCGAGCGGTGGTACTCGTGGCGGGACCAGCGGTTCCTGTCCACCGAGCCGCTGCTCACCGAGGACCCGGACGCGGTCGTCGCCGATCCCGGCCTGCTCTCGGCCTACACCTACGCGGCGGCCAACCCGCTGCGGTATGTCGACACGACCGGACGTGCCCCGTTGCCGGCCAGCAAGGACCCGAGCAAGAGCGACTACCAGCTGAACCAGGCGGGCACGTTCACGGTCAGCGACTCGACCCGGGCGAACCGGCCCTCGCCGGCCAAGTTCGGGCAGCTGCTGCTCAGCTACGACGAGGCGGGCCAGGCGCGCGCCGCGAAGTGGGGCAAGAAGAGCGAGAAGATCGACAAGTACACGACGTTGATCCGCCTGAAGGCGTCGGGGTCGCTGAAGAAGCCGTCGGTCAAGCTCGATGGCATCCTCGGGTGGAACATCGGCAAGTCCTCCGACTCGTCCGGTGCACCCTCCGGAGGCGGCCAGCAGGGAGGCGCGTCCACCGGACCGAACCCCGGCCCGGGCAGCTCCGGCAGCACCGGCGGCACGGGGGCACCGCCGGCGGGCAGCCAGCCCTCGGGCGGCAGCACGGCGTCGTCCACCTCGTCGTCGGGCTCGTCGTCCGGCGCCTCCTCGTTGCGGAAGCAGAAGCCGTGA	MLAGTARQETRTVARRWTTATAMMASAALVVTLSAAPGTAEPLADPSVGALDDVPGTSPDDLGGVDLTDLDDGDPTEALSLVTEPEPTNAGSVQTSIPVLVPPGRAGIEPDLDLAYDSSGGNGWLGLGWDLDAGAIAVDPTFGAPRFSADVETETYTLDGARLFPHSIVPGGDYGARQDGPRSDFVRQTETEFERVVRHGDGPGAYWWQVTDKDGTDRWYGGDPDGQGQVLSTVGGNAFHWPLTYVEDISGNVMEYEYDTATGVGFGGSSTGPGLEMYLREITYTGFDVEPGSTGVVDEPPYSVYFLRDSDVGVRTVASGGSVSARPDALVDASGGAPVVTADLLREIQVRHFPAGARTDDAPGAIDQTNLGELLGGYVLEYETNPFDKSLLKRLGQFGGDGAVAATHALRWYDDVPRKDNGGLDLFGDPVRWGASDDSTGSNVSASSALSTSFRGGAEGGAYIGFNPVAPSKIGSFGGSFNLSGGNSEDVTTLMDMDGDSLPDRVWVDNGAVKYARNLSQPGDDLSVDDTRFGSERTIDEAKLGTGTDFGVDLHAEFYPLVSIQVGGSFGFDWADRYFSDVNADGRPDLIKQGSDGWQVFFNILDPSDGSIEFVASSAGTAVPMGDFSSELAAAEPEGVAELLEASAPRYDSVRRWVAPFDGTVDVTGTPTLAAGSYDGDGVRVMIETLDTTSKRPFDETLDGGSTSAAHDVSVTVDAGDEIFFRTHVIDNGQRDLVDWAPAIVYTSVSSGVSTSAPLLDAQGRDVFSYDAAEDFTLFGRDGGRTALSNPGEATLTVTLERTGLLTDDVKVVASHGVNAGFIEGTSEVLTLTPDGADTEELLGAGPAPGDEPVAAEGEDPIEIAPTSVELTYTFDVSEVGKVAEPFGCYDDGDAEDCDSVTDNPDWLALDIVSDSPVDPRSVALDVQLEVADPATESGPNGEATPDDLPADAVLPSSTGPVVIPSVRVFSVSDEVAGPYVPWSPDADGTFSLEVDVVADKIWNYLEVEPDDEAWASSSAVVTVKSEDEHGIVGVVARSAEFTVEHNHDDGPFTLPAEYQVEGSTALDFDAVTGQDYWVEVSLHDAPLAAHVLEKGGVSVQATSDDDEDDKGADDLTARLVAPDVQSVFASGNRGWTAAGYDADHPDVPRDEADEPRGDALLQREHFELEPEGVDDFDEDTEIPDAKPATDVVGEPGDLSGSADEVADSFDKALPYFPLPGPDGGPADRWRAASEEGLFVTATGIRSTRIGEEIAVLDPEPEEGSTSAGSSGDARPAPRVLTIDGDFNAALGLGPASLSGAIGGGRTVTDFQDLNGDGFPDIRSESDADYTGPRGGSLDSGSELENTVSTAVSVGGGLGGSPVSIEGSEQTKTSAGSATVGAENGTSKNKSRGMSIGLGFTVQGQWTNPFGDNTEGLDGGVSDLLPDDESTGQGVQVSVDLDDVNGDGVTDLVETWSGSGVQVALGTGYGFADPVKWSDGVFEASESVSGALSGGFQLNAYEFGGGVGGSEGGSLAEASWADVDGDGVLDRMVYADGNESAPTTIFGAAEGNDRDPEVLGTYASPDFGVGDLTIDNRADLGRSTSVNGGFDFTVSVGPICLVACYIIINPGVHGGYERSRTVVDMVDMNGDGYLDVVESLNEEHVEVRLNQAGRTGLLKAVENPLGGTIRVDYERTGNIEEQPNSLWVMSEVEYDDGRPGDGTDVQRREFSYDGNAYDHLHRTTLGFSEVVQREYDDPDVDPTNGTTDDPEVLRITRWDYRNQSPFDAGLLERTRLFAPDSAGGDGDLLELTETTWEHAYVVVGDPGSGPANGDVFTDVVPDVGDPARTALFDLALAPRLATETFTRYDGDGDAHARTTDFTYDGLGNTVQVVDHAETGTTDDDTTTVTTYPPCTTAARDADTSWVQVPATVAVHAGTDDSGELLKYRDGSLDLCANAVPVRIVETQGQDVCGDDILAVTELAFEPYGNYDAVRYPANVLTGETDESACGGAPPALPEEPVFDGCVPASDAPDAEKAAAQQAADEQRYCVDYVYDDHRVTDIAQVTDSHGVTSTATYDHTVGLPATTTDANGHTTEYCYDALGRIAAVATPRESGDFACDGSGSGPATVTYAYGGLRIGTNASDGHAWAVARHHDAVRADGTPAADTLDTATFVDGMARVVQRKRDAQVVALGDTPAVVVEGAVDFDALGKEVREWYPVVEEATYPGGGDLPPHLTTYNTLNSSMDPADTHVPRTDPTIREYGLLGGPTRTELPDGSVVTWTYDTTEPPHLDFKVPSTTVTDPLGRAVQRFSDVRGAVLAVVENPAPTEGTTDGLLDALPAAGIGDSRIVESARTGTDPLITTYAYDPIARLTQVTDTAGAVTGYEYDMLDLGTAVETPDSGLLERAWTPAGDVAATVDEVRRAAGTSVAYAYDFDRLRSITYPDDTGDVEYTYGDELGAAAPGNSQGRVAREATPAVAREYAYDVDGNVSTEAVTRGIDPFGIGQDEPQPTWATRWQYDSLQRLVRLTYPGDDGGHGEVLHHEYDLGGQVSGLWSEAPQHDAYTVEGDPVPREDREIEYVAHAGYDEFGDLRTVTTGTGVTTEHDYDPDRRFLTGVSTDVAAQEQWDGTTSVARELQELRYSYDVVGNVIDVANALYDGGSAGTLDELDDIPANNLPGPAQQSYTYDQHYRLAAAEGRYIDRQEDRSYTYAADRTPNGNLVDVSQATVTESTTGKGGGKGPGRSQQKTNSKKGDGSLPKDGSTDEPQCDPYSGSGGGSDNQDPESTYAWLDQQFDPDHPHRVVQAGGRTYTHDANGNVTGWTEPCASSDSSELDRRMVWDAEDRLVEIGQDGNDTEYRYDADGNRVLERGPGGTYFFVNETWRLHNDGHRYAEIYLGATKIAGHRTAPAPEPPVGCDPLVDENCVCDPETQACACDVGQADPDGDGLCPPVEDLTVQFFHTDLQGSLRVVTDEVGSVFQYLEYLPSGQKWVAGQSRIKDTPYLFAGGWTDATYKLTSFGERWYSWRDQRFLSTEPLLTEDPDAVVADPGLLSAYTYAAANPLRYVDTTGRAPLPASKDPSKSDYQLNQAGTFTVSDSTRANRPSPAKFGQLLLSYDEAGQARAAKWGKKSEKIDKYTTLIRLKASGSLKKPSVKLDGILGWNIGKSSDSSGAPSGGGQQGGASTGPNPGPGSSGSTGGTGAPPAGSQPSGGSTASSTSSSGSSSGASSLRKQKP				NA	NA	NA	NA	NA
AK001_03257	2433	ligA	COG0272	DNA ligase A	GTGACCGACACCGACCGCGCCGTCGACCCGTCCGCGCTCGACGAGGGCTCGGCCCAGCGCCGCTGGGCCGAGCTCGTCGCCCTCGTCGAGGAGGACCAGGCCGCCTACTACCAGCACGACGCCCCGAAGGTGTCAGACGCCGCGTACGACGCGCGGATGCACGAGCTCGAAGCGCTCGAGGCCGCCCATCCGGCGCTGCGCCGGCCGGACTCGCCGACCCAGCGCGTCGGCGGGCAGGCCTCGACCGCGTTCGCGAACGTCGACCACCTCGAGCCGATGCTCTCGCTCGACAACGTGTTCAGCACGGACGAGCTGCGCGCCTGGGACGCCCGCGTCGCCCGGGACCTCGACGTGCCCGGCGGCGCCGTCGGCTACCTGTCGGAGGTCAAGATCGACGGCCTGGCGATCGCGCTGCTGTACGAGCAGGGACGCCTGGTCCGCGCCGCCACCCGCGGGGACGGCCGCACGGGTGAGGACATCACCGCCAACGCGCTGCGCATCGCACAGATCCCCCACCGCCTCGACGGTGACGAGCACCCGGACGTTGTCGAGATCCGCGGGGAGGTGTTCATCCCGACGGCGTCCTTCGCCCGGCTCAACGAGCTGCAGGTCGAGCTGCGGGACCGTGCCGTCGGCGAGGCGCGGGAGCGTGCGGCCACCCGCGAGTTCGACGAGGAGCGCGCCCGCGTGGCCGCGCTGCGCCGCTTCCCCCAGTTCGCCAACCCGCGCAACGCCGCCGCCGGCGGGCTGCGTCAGCTCCTGGACAAGAAGACCGGGCTCGAGCACGAGGCGGGGCTCGCCCGCATCGAGGCGCTGCGCCTGTACGCGCACGGCGTCGGCGCGCTCCAGTGGACGGAAGGGCAGCACGAGGAGCTGGCCAACCTCTCGGACGCCTACGACCTCTTCGCGCGGTGGGGCATCCCGATCTCGCCGCACAACCGGGTCGTCGAGGGCGTCGACGCGGTGCTCGAGATGATCGACCACTTCGGCGAGCACCGCCACGACATCGAGCACGAGCTGGACGGCATCGTGGTGAAGGTCGATGCCCTGGCCGACCAGCGCCTCCTGGGCGCCACCAGCCGTGCGCCGCGCTGGGCGACGGCCTACAAGTACCCGCCCGAGGAGGTGAACACCCGCCTGCTGGCCATCCAGGTCGGCGTCGGGCGGACCGGTCGGGCCACGCCGTACGCCGTCATGGAGCCCGTCCTGGTGGCCGGCTCCACGGTGCGGCAGGCCACCCTGCACAACCAGGACGTCGTCAAGGCCAAGGGGGTGCGCATCGGCGACATGGTCGTGCTGCGCAAGGCCGGCGACGTCATCCCCGAGATCCTCGGTCCGGTCACGGCGCTGGCCGACGACGGGTACCCCCGCGAGGACTTCGTCATGCCCGAGCGGTGCCCCGAGTGCGGCACGCCGCTGCGGCCGATGAAGGAGGGCGACGTCGACCTGCGGTGCCCGAACGCCGAGTCCTGCCCGGCGCAGGTGCGCGGGCGCGTCGAGCACATCGGTTCCCGTGGCGGGCTCGACGTCGACGCGCTCGGCGAGGTCACCGCGGCGGCGTTGACGCAGCCGCTGGAGCCGAGCGAACCGCCGCTGCGCACCGAGGCGCGGCTGTTCGACCTCACGCTCGACGAGCTCGCGCCGATCCGGGCCGTCGTGCGGGACTCCGAGACCGGCCTGCCGAAGGAGTGGGACGGTCGGGGGGAGTCGGCCGAGTACGAGATGCCGGACGGTTCCGTCCAGACGGTCAAGGCCGTGCGGCCGTTCCAGAAGAAGCGCAAGCTGTCCAAGGCCGACGAACGAGCAGCCGTCGAGGCGGGGGAGTCGCTGTACGAGCCCAACGCCCAGGCCACCAAGCTCCTCGACGAGCTCGAGCGGGCGAGGACCAAGGATCTCTGGCGGATCCTGGTCTCCCTGAACATCCGGCACGTCGGGCCGGTGGCGGCCCGGGCGCTCGCGGACTGGTTCGGCTCCCTCGACGCCGTCCGGGAGGCCTCCCGGGAGGACCTCGCCGCCGTGGAGGGCGTCGGTCCGGTGATCGCCGACGAGGTCCAGGCCTGGTTCGACGTCGACTGGCACCGCGAGATCGTCGACACCTGGGCCCGCGCCGGCGTCCGCTTCTCGACCCCGGGGCACCCCGGACCGGCGGCGATGGCCGAGCGGGCCACCGAGGAACCCACCGGCCCGCTCGCCGGGCTGACGGTCGTCGTCACGGGCTCGTTGGAGGGCTACTCGCGCGACGGCGCCAAGGAGGCCATCCTCCAGGCCGGCGGCAAGGCCGCGGGGTCGGTCTCGAAGAAGACCGACTACGTCGTGGCGGGGGAGAAGGCCGGCTCCAAGGCGGCCAAGGCCGAGCAGCTCGGCGTGCCGGTCCTCGACGAGGAGCGGTTCACGGCGTTGCTGACCGGCGGTCCGGAGGCGCTGGGCGAGTGA	MTDTDRAVDPSALDEGSAQRRWAELVALVEEDQAAYYQHDAPKVSDAAYDARMHELEALEAAHPALRRPDSPTQRVGGQASTAFANVDHLEPMLSLDNVFSTDELRAWDARVARDLDVPGGAVGYLSEVKIDGLAIALLYEQGRLVRAATRGDGRTGEDITANALRIAQIPHRLDGDEHPDVVEIRGEVFIPTASFARLNELQVELRDRAVGEARERAATREFDEERARVAALRRFPQFANPRNAAAGGLRQLLDKKTGLEHEAGLARIEALRLYAHGVGALQWTEGQHEELANLSDAYDLFARWGIPISPHNRVVEGVDAVLEMIDHFGEHRHDIEHELDGIVVKVDALADQRLLGATSRAPRWATAYKYPPEEVNTRLLAIQVGVGRTGRATPYAVMEPVLVAGSTVRQATLHNQDVVKAKGVRIGDMVVLRKAGDVIPEILGPVTALADDGYPREDFVMPERCPECGTPLRPMKEGDVDLRCPNAESCPAQVRGRVEHIGSRGGLDVDALGEVTAAALTQPLEPSEPPLRTEARLFDLTLDELAPIRAVVRDSETGLPKEWDGRGESAEYEMPDGSVQTVKAVRPFQKKRKLSKADERAAVEAGESLYEPNAQATKLLDELERARTKDLWRILVSLNIRHVGPVAARALADWFGSLDAVREASREDLAAVEGVGPVIADEVQAWFDVDWHREIVDTWARAGVRFSTPGHPGPAAMAERATEEPTGPLAGLTVVVTGSLEGYSRDGAKEAILQAGGKAAGSVSKKTDYVVAGEKAGSKAAKAEQLGVPVLDEERFTALLTGGPEALGE				NA	NA	NA	NA	NA
AK001_03258	1149	nagC_2	COG1940	N-acetylglucosamine repressor	ATGTTTCAGCTGTTCCGGGACGGTCGACCCCGCACACGTGCATCCCTGGTCGCAGCCACGGGACAGTCACGGTCCACCGTCGCCGCGCGCATCGACGCGCTGCGCGCCGTCGGGCTGCTCGCCCCCGCAGGCGAGGCCTCGAGCACCGGCGGTCGCCCGCCGTCCACCTTCGCCTTCGACCCGACCTCGCGGATCGTGCTCGGCGTGGACCTCGGCGCCTCGCACGCGCGGCTCGCGATCACCGACCTCGCCGGAGAGCCCATCGGCGTGCTCCAGGAGCCCCTGGCCATCGCCGACGGCCCCGCGCACGTGCTCGACTGGGTCGCCGAAGCGGGTTCCAAGGTCATCGCGCAGGCCGGTCGGCGGGTCGACGAGCTCGCCGGTATCGGCATCGGGCTCCCCGGACCCGTGGACCACACCACCGGCCGACCGGTGAACCCGCCGATCATGCCCGGCTGGGACGGCACCGACGTCCCGGCCGAGCTCTTCGCCCGGCTCAGAGCGCCCGTCCTCGTGGACAACGACGTCAACATCATGGCTCTGGGCGAGCACCGGACCCTCTGCTCCGAGGTCGACGACCTGCTGTTCGTCAAGGTCGCGACGGGCATCGGGGCCGGCGTCATCATGGACGGCGAGCTGCGGCGCGGCGCCCAGGGCGCCGCCGGCGACCTCGGTCACATCACCGTGCCGCGCGGTTCGGACATCCCCTGCCGGTGCGGGAACACCGGATGCCTCGAAGCCGTGGCCGGTGGCGCCGCCCTCGTGGCGGACCTGCGGGCCCGCGGCGCGGACGTCAGCAGCACCAGCGACGTCGTGGACCTCGTACGGGCCGGGGACGTCGCGGCCGGACAGGCGGTCCGCCAGGCCGGACGCGACATCGGCAGCGTGCTGGCGGCCTCCGTGAGCCTGCTCAACCCGGCGCGCATCGTCATCGGCGGCATCCTGTCCGACGCCGGCGAGCACCTCATGGCCGGCATCCGCGAGATCGTCTACCAGCGCTCCCTGCCCCTGGCGACCCAGCACCTGCGGATCGCCACCACCGGCGCCGGCGCGCAGGCCGGTGTCGTGGGCGCGGCGTTCCTCGTCACCGAGCAGTACCTCGCGGCACCGTCGATCGACGCCCTCATCGCCTCGGCCGAGAGCGCCTGA	MFQLFRDGRPRTRASLVAATGQSRSTVAARIDALRAVGLLAPAGEASSTGGRPPSTFAFDPTSRIVLGVDLGASHARLAITDLAGEPIGVLQEPLAIADGPAHVLDWVAEAGSKVIAQAGRRVDELAGIGIGLPGPVDHTTGRPVNPPIMPGWDGTDVPAELFARLRAPVLVDNDVNIMALGEHRTLCSEVDDLLFVKVATGIGAGVIMDGELRRGAQGAAGDLGHITVPRGSDIPCRCGNTGCLEAVAGGAALVADLRARGADVSSTSDVVDLVRAGDVAAGQAVRQAGRDIGSVLAASVSLLNPARIVIGGILSDAGEHLMAGIREIVYQRSLPLATQHLRIATTGAGAQAGVVGAAFLVTEQYLAAPSIDALIASAESA				NA	NA	NA	NA	NA
AK001_03259	1521	araG	COG1129	Arabinose import ATP-binding protein AraG	ATGGTCACAGAAGACCCCGCAGCGCCGCTGCTGCAGATGCAAGGGATCGTCAAGCACTTCCCGGGCGCCAAGGCCCTCGACGGTGTGGACCTCGACGTCCGCGCCGGCGAGGTGCACTGTCTGCTCGGGCAGAACGGTGCCGGCAAGTCCACGCTCATCAAGGTGCTGGCCGGCGCCCACCAGCCCACGTCCGGCACCATCCGATTCGACGGCGAAGAGATCGCCATCCCGCACCCCGACGCCGCGCTCGAGCACGGCGTGGCCACGATGTACCAGGAGCTGGACGTCGTCGACGGTCTGACCGTCGCCGAGAACATCTTCCTCGGTCACGAGCTGGCCTCGGCCGGGTTCACCAAGCGCCGCTTCGCCGCGCAGCGGACCCGAGAGCTCATGGCCCGGCTCGGGCACCCGGAGATCTCGCCGCACCGCGAGGTCGGGTCGCTCTCCGCCGCGGGCAAGCAGATCGTGTCGATGGCCCGTGCGCTGTCGCGCGACGTGCGCGTGATCGTCATGGACGAACCGTCGGCCGTCCTGGACTCGGGCGAGGTGGACAACCTCTTCCGCGTCGTCGCCGAGCTCACCGAGCAGGGCGTCGCCATCGTCTACATCTCGCACCGGCTCGAGGAGATCCGCCGGATCGGCGACCGGATCACCGTGCTCAAGGACGGCGTGACGGTGGGGCGCAACCTCGACGTGGCGACCACGCCGACGGACGAGCTCATCAAGCTCATGACCGGCAAGTCGATGGAGTACTCCTTCCCCGAGCGCCCCGGCGTGCCGGACGACGCCCCGTTGCGGCTCCAGGTCGAGAACCTCTCGCTGGCGGGCGTCTTCTCCGACGTGAGCCTGTCCATCCGTGCCGGGGAGATCGTCGGCCTGGCCGGTCTGGTCGGCTCGGGGCGCTCCGAGATCCTCGAGACGATCTACGGCGCGCGCCGGGCCACGCACGGCCGCGTGGAGCTGGACGGCAAGAGGCTCCGCCGCGGTTCCGTGGGGGCGGCCGTGGCCGCCGACATCGGCCTCGCACCCGAGGAGCGCAAGAGCCAGGGGCTGCTGCTCGACGAGCCCGTCTACCGCAACATCACCCTGTCCTCCTTCGCGCGGACCGCCCGGGGCGGCTGGCTCGACGAGAAGGCGGAGAAGGCCGCTGCCGAAGAGCAGGCGAAGGCCCTGGACCTGCGGCCGCCGGACGTCGACCGCGCCATCCGCACCCTCTCCGGCGGAAACCAGCAGAAGGCGATGCTCGCCCGCTGGCTGGTCCACGGCTGCGAGGTGCTGCTGCTCGACGAACCGACCCGCGGCGTCGACGTCGGCGCGAGGTCCGAGATCTACGACCTGGTACGACGGCTCGCCGACGCCGGCACCGCCGTGCTGGTCGTCTCCAGCGAGATCCCCGAAGTTCTGGGCCTCGCCGACCGTGTCCTCGTCATCTCCGACGGACAGGTCGTGCACGAAGGGTCCGCCGAGTCGATCGACGAGCACCAGGTGCTCGACATGGTCATGGAAGGAAGTGCCGCGTGA	MVTEDPAAPLLQMQGIVKHFPGAKALDGVDLDVRAGEVHCLLGQNGAGKSTLIKVLAGAHQPTSGTIRFDGEEIAIPHPDAALEHGVATMYQELDVVDGLTVAENIFLGHELASAGFTKRRFAAQRTRELMARLGHPEISPHREVGSLSAAGKQIVSMARALSRDVRVIVMDEPSAVLDSGEVDNLFRVVAELTEQGVAIVYISHRLEEIRRIGDRITVLKDGVTVGRNLDVATTPTDELIKLMTGKSMEYSFPERPGVPDDAPLRLQVENLSLAGVFSDVSLSIRAGEIVGLAGLVGSGRSEILETIYGARRATHGRVELDGKRLRRGSVGAAVAADIGLAPEERKSQGLLLDEPVYRNITLSSFARTARGGWLDEKAEKAAAEEQAKALDLRPPDVDRAIRTLSGGNQQKAMLARWLVHGCEVLLLDEPTRGVDVGARSEIYDLVRRLADAGTAVLVVSSEIPEVLGLADRVLVISDGQVVHEGSAESIDEHQVLDMVMEGSAA	PGPT0016600_2405	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441	NA	NA
AK001_03260	1035	rbsC	COG1172	Ribose import permease protein RbsC	GTGAGCGAGCAGCAGACGCCGTCGAGTTCGGCGACAGAAACCCCCACGAACCACAAGGAGAGCTCCCGCTCCCGCCTGGGGCTCTCGGGTACGACGGTCCGGAACCTCGGTCTGGTCGCCGCCCTGGTCCTGCTGTGCCTGGTCGGGCTCCTCACCGGCGGCGACCGGTTCGCCAGCGTGCAGAACCTCATGATCGTGCTCAGCCTCGCGTCGGTGACCGGCGTGCTGGCGATCGGCATGACCTTCGTCATCACCACCGGCGGCATCGACCTGTCGGTCGGCTCCGTGCTCGGCCTGACCACCGTGTGGGCCTCGACCCTGGCCACGCAGACCATGGCCGACCAGTACGGCTGGATCGTCATGGTCGGCTGCGCGCTCCTGGTCGGCCTCGCCGCCGGGCTGGTCAACGGCGTGATCATCGCCTACGGCAACGTGGTGGCGTTCATCGCCACGCTGGCGATGCTGGTCGCGGCCCGCGGGCTGGCCGAGCTCATCGCCAACCGGCGCACGCAGATCGTCGACCAGCCGTCGTTCGAGAGCACCTTCCAGGGTGACCTGCTCGGCGTGCCGAAGATCGTCTGGATCTTCGTCGTCGTCGCCATCGCCGGCTGGTTCCTGCTCAACCGGACCACCTTCGGGCGCCGCACGGTGGCCATCGGCGGCAACCGGGAGGCGGCCCGGCTCGCCGGCATCAACGTCAAGCGCCACCTGCTCTACGTCTACGGCTTCTCGGGCCTGGCGGCCGGCATCGGCGGTGTGATGATGCTCGCCCGGACCGGAGCGGGGTCGTCCACCAACGGTCTCCTGATGGAGCTCGACGTGATCGCCATGGTCGTCGTCGGCGGCACCCTGCTCGCCGGTGGGCGCGGCACCATCATCGGCACGATCATCGGCGTCCTCATCTTCGCGACCCTGCAGAACGTCTTCATCATCAACAACGTCGACAGCTCGGTGCAGCAGATCGCCCGCGGCGCGATCATCGTCGCCGCCGTGCTGCTCCAGCAGCGGTTCGCCGGCCGCTCCAAGTCCAGTTGA	MSEQQTPSSSATETPTNHKESSRSRLGLSGTTVRNLGLVAALVLLCLVGLLTGGDRFASVQNLMIVLSLASVTGVLAIGMTFVITTGGIDLSVGSVLGLTTVWASTLATQTMADQYGWIVMVGCALLVGLAAGLVNGVIIAYGNVVAFIATLAMLVAARGLAELIANRRTQIVDQPSFESTFQGDLLGVPKIVWIFVVVAIAGWFLLNRTTFGRRTVAIGGNREAARLAGINVKRHLLYVYGFSGLAAGIGGVMMLARTGAGSSTNGLLMELDVIAMVVVGGTLLAGGRGTIIGTIIGVLIFATLQNVFIINNVDSSVQQIARGAIIVAAVLLQQRFAGRSKSS	PGPT0016590_1368	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440	NA	NA
AK001_03261	1071			hypothetical protein	ATGTCCGCACGAACCATGCGCCGTCGTCTCATCGCGGCACCGCTCGCCCTGGCCGCCTCGGCTGCCCTGCTGGCCGGTTGCGTCAGCAACGAGCCTGCCGAGGAGGAGGGCACCGACTCCTCCGAGGAGATGAGCTCCGAGGGCGGGGCCGCCGGCACCGCCAACGACGAGCCGGGAGAGCCCGTCACCATCGGCTTCTCCGCCCCCGCCGCCGACCACGGCTGGATGGGTGCGATCACCTCCGCCGCCGAGGCCGAGGCCGACAACTACGAGGACGTCGAGCTCCGCGTCGCCGAGGGCACGAACGACGTCAACGTCCAGATCAGCCAGATCGAGACGTTCATCGCCGACGGCGTGGACGCCATCGTGCTCCTGCCGTTCGACGGCGCCGCGCTGACCGACGTCGCGATCGAGGCGATGGAGGCCGGCATCCCGGTCGTCAACGTCGACCGCGAGTTCACCAGCCCGTTCGCCGCCCGCACCACCGTGCTCGGCGACAACTACGGCATGGGCGTCAGCGCCGGCACCTACATCTGCGAGCAGCTCGGCGACCAGCCCGACGCGGTCATCGCCGAGATCCAGGGCATCGCCTCGCTGCCGCTGACGCAGGACCGGTCGCAGGGCTTCGCCGACGCGCTGTCCGACTGCGGCCTCGACGTCGACAACCAGGTCTCCGCGGAGTTCACCGTCCAGAGCGGTGAGCAGGTGACCGCCAACCTCCTGCAGGCGGCTCCCGAGATCGACGCCATCTGGAACCACGACGACGACCAGGGTGTCGGCGTCCTGCAGGCGATCGAGAACGCCGGTCGCGACGAGTTCTTCATGGTCGGCGGCGCCGGCTCGCTCGACGTGATGGAGCACATCCAGTCCGGTGACACCGTGCTGCAGGCCACGGTCGTCTACCCGTCGACCCAGGCGGCCGACGGCATCAAGCTCGCCCGCCTGATCGCGCAGGACAAGAACATGTCCGACCTGGCCTCGGCGGCCGTCCCGCGCACCGTGCAGCTCTTCGCCCCGGTGGTCACGGCGGACAACGTCGACCAGTACATGGGCATCGGGTTCCGTTCCTGA	MSARTMRRRLIAAPLALAASAALLAGCVSNEPAEEEGTDSSEEMSSEGGAAGTANDEPGEPVTIGFSAPAADHGWMGAITSAAEAEADNYEDVELRVAEGTNDVNVQISQIETFIADGVDAIVLLPFDGAALTDVAIEAMEAGIPVVNVDREFTSPFAARTTVLGDNYGMGVSAGTYICEQLGDQPDAVIAEIQGIASLPLTQDRSQGFADALSDCGLDVDNQVSAEFTVQSGEQVTANLLQAAPEIDAIWNHDDDQGVGVLQAIENAGRDEFFMVGGAGSLDVMEHIQSGDTVLQATVVYPSTQAADGIKLARLIAQDKNMSDLASAAVPRTVQLFAPVVTADNVDQYMGIGFRS	PGPT0015740_1372	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439	NA	NA
AK001_03262	1179	iolG_4		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGGCTGCAGCAGACGGCGCTCGCCTCGGCGTCGGCATGGTCGGCTACTCGTTCATGGGCGCGGCGCACTCCCACGCGTGGCGCACCGCCCCCCGCTTCTTCGACCTGCCGCTGCGCACGGAGATGACGGCGGTCGCCGGCAGGGACCCGGAGAAGGTCGCGGCGGCCGCGGACCGGCTCGGATGGCAGTCCTCCGAGACGGACTGGCGTCGCTTGCTCGAGCGGGACGACATCGACCTCATCGACATCTGCACACCGGGCAACACCCACGCCGAGATCGCCGTCGCGGCGCTCGACGCCGGCAAGCACGTGCTGTGCGAGAAGCCGCTGGCCAACTCGGTCGCCGAGGCCGAGCAGATGGTGGCGGCAGCAGACCGCGCGGCGCAGCGGGGTGTGCACGCCATGGTGGGGTTCACCTACCGGCGTGTCCCCGCCATCCAGCTCGCGCGCCAGCTCGTCGCCGACGGTCGTCTCGGCCAGGTCCGGCACGTGAGGGCCCAGTACCTGCAGGACTGGCTGTCGGACGCGTCGACACCGCTGAACTGGCGCCTGCAGAAGGACAAGGCAGGGTCGGGTGCGCTCGGTGACATCGGTGCGCACGTCGTCGATCTCACCCAGTTCATCACCGGTGAGCGGCTCACGGGCGTCGCCGGGATGCTCGAGACCTTCGTGCCCGAGCGCCCGGTGGCCACCGAGTTCTCCGGGCTGTCCGGCACGGCGGGCACGGAGACCGGTCCGGTGACCGTCGACGACGCCGCCGTCTTCTTCGGCCGCATGTCCGGCGGGGCCATGGCCAGCTACGAGGCCACGCGCTACGCCAACGGCCGCAAGAACGCCATCCGCATCGAGATCAACGGGTCGGCGGGCTCTCTCGCCTTCGACTTCGAGGACATGAACGTCCTGCACTTCTACGACGCGACCGAGCCGCCGGCGACGGCAGGGTTCCGCAGGATCGTGGTCACCGAGGCCGAGCACCCCTTCGTGGCGGCCTGGTGGCCCCCGGGCCACGGCCTGGGCTACGAGCACGCCTTCACCCACCAGGTCGTCGATCTGGTGGGAGCGCTCGCAGCCGGCGACGAGCCGGCGCCGTCGTTCGCCGAGGGGCTCGCCGTGCAGCGCGTCCTCGACGCCGTCGAGCGCAGCGCGTCCGACAAGCACCGCTGGATCGACCTCTCCTGA	MAAADGARLGVGMVGYSFMGAAHSHAWRTAPRFFDLPLRTEMTAVAGRDPEKVAAAADRLGWQSSETDWRRLLERDDIDLIDICTPGNTHAEIAVAALDAGKHVLCEKPLANSVAEAEQMVAAADRAAQRGVHAMVGFTYRRVPAIQLARQLVADGRLGQVRHVRAQYLQDWLSDASTPLNWRLQKDKAGSGALGDIGAHVVDLTQFITGERLTGVAGMLETFVPERPVATEFSGLSGTAGTETGPVTVDDAAVFFGRMSGGAMASYEATRYANGRKNAIRIEINGSAGSLAFDFEDMNVLHFYDATEPPATAGFRRIVVTEAEHPFVAAWWPPGHGLGYEHAFTHQVVDLVGALAAGDEPAPSFAEGLAVQRVLDAVERSASDKHRWIDLS				NA	NA	NA	NA	NA
AK001_03263	1002			hypothetical protein	ATGACACGACCGATCAGCCTGTTCACCGGTCAGTGGGCCGACATGCCGCTGGAGGAGCTGGCGGGTCTGGCGTCCGGCTGGGGCTACGACGGCCTCGAGCTGTGCTGCTGGGGGGACCACCTCGACGTGACCCGCTGGGACGACGCCGAGTACGTCCAGGGACGCAAGGACCTCATGGCCCGGCACGGTCTGCAGATCGTGGCGATCTCCAACCACCTCACGGGTCAGGCGGTCTGCGACGACCCGATCGACCGGCGGCACGAGGAGATCCTCTCGCCGGAGGTGTGGGGGGACGGCGACCCGGAGGGCGTCCGGCAGCGGGCCGCCGAGGCGATGAAGGACACCGCGCGCATGGCCGCGAAGCTCGGTGTGCGCACCGTCGTCGGATTCACCGGCTCCTCGATCTGGAAGACCGTCGCGATGTTCCCGCCGGTGCCCGCGGACATGGTCGAGGCCGGCTACCAGGACTTCGCCGACCGCTGGAACCCCATCCTCGACGTCTTCGAGGAGGTCGGTGTGCGGTTCGCCCTCGAGGTCCACCCGAGCGAGATCGCCTACGACTACTGGACCACCCAGCGCACGCTCGAGGCGATCGGGCACCGGGAGTCGTTCGGCCTGAACTGGGACCCGAGCCACATGGTCTGGCAGGACGTCGACCCCGTGGGCTTCCTCTGGGACTTCCAGGACCGCATCTACCACGCGCACTGCAAGGACACGAAGAAGCGCCTCAACGGCCGCAACGGCCGGCTCTCGTCGCACCTGGCGTGGGCGGACCCGCGGCGCGGCTGGGACTTCATCTCGACCGGCCACGGTGACGTGCCGTGGGAGGACTCGTTCCGGATGCTCAACGCCATCGGGTACGACGGACCGCTCTCGGTCGAGTGGGAGGACGCCGGGATGGACCGTCTCGTCGGGGCGCCCGAGGGCCTGGCCTTCGTGCGCCGGCTCGCGTTCGACGCCCCGGACGCGGCCTTCGACGCGGCCTTCTCCTCCAAGGACTGA	MTRPISLFTGQWADMPLEELAGLASGWGYDGLELCCWGDHLDVTRWDDAEYVQGRKDLMARHGLQIVAISNHLTGQAVCDDPIDRRHEEILSPEVWGDGDPEGVRQRAAEAMKDTARMAAKLGVRTVVGFTGSSIWKTVAMFPPVPADMVEAGYQDFADRWNPILDVFEEVGVRFALEVHPSEIAYDYWTTQRTLEAIGHRESFGLNWDPSHMVWQDVDPVGFLWDFQDRIYHAHCKDTKKRLNGRNGRLSSHLAWADPRRGWDFISTGHGDVPWEDSFRMLNAIGYDGPLSVEWEDAGMDRLVGAPEGLAFVRRLAFDAPDAAFDAAFSSKD				NA	NA	NA	NA	NA
AK001_03264	576		COG0454	putative N-acetyltransferase	GTGACCGCACCCTCCGTCGTCGTCCGTCCCGCCCGTCCCGACGAGGCCGCCGAGCTCGCCTGGCTCGCCGCCCTCACGTTCCCCCTCGCGTGCCCGCCGGGGACCTCCACGGCCACCATGGCTCGGCACATCGCCGAGCACCTGACGCCGGAGCACTTCCGCGCGTGGAGCCTCGACCCCGGCTGCGCGCTGCTCGTGGCCGACGGAGGCGGGTCCCCTGCCGGCTACGTGCTGCTGCTGCGGGGCGAGCCGGACGGGGACGCCGAGCGGGACGTGCTGCGGTCCACGGTCGGGTCCGGCCCCTACGTCGAGCTGTCGAAGATCTACGTCCACCCCGCTCGTCAGGGAGACGGCACGGCGAACGCGCTGATGTCCGCAGCCGTCCGGACGGCGGACGAGCTCGCACCCGATCGTCCGTTCTGGCTCGGCACCAACGGGGACAACGGGCGCGCCCAGGCCTTCTACCGCAAGCACGGGTTCACCGTCGTCGGCAGCCGCACCTACGACGTCGGGGGTGTGCAGCACGACGACGTGGTCATGCTGCACACCCCCGGTGCGCAGGCGGCGCGCTCCTGA	MTAPSVVVRPARPDEAAELAWLAALTFPLACPPGTSTATMARHIAEHLTPEHFRAWSLDPGCALLVADGGGSPAGYVLLLRGEPDGDAERDVLRSTVGSGPYVELSKIYVHPARQGDGTANALMSAAVRTADELAPDRPFWLGTNGDNGRAQAFYRKHGFTVVGSRTYDVGGVQHDDVVMLHTPGAQAARS	PGPT0007785_41	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007785-paiA-K22441	NA	NA
AK001_03265	927			IS481 family transposase IS3514	GTGGGGTCTGGGCACGGGACACATCCTTCCAGCAGCACCCGCAGGCACCACAGGTCAGGTGTCACCTATCCGTGCAGCAGTCCCGAGCCTGCCAAGCGCCCCCGCAGCTCCTACATCCGCTTCGCCGCCGACCAGCCCAACGAGACCTGGCAGTCCGACTTCACCCACTACCGCCTGACCCACCCGGGCGGCCGGCCCGGCAGCGACGTCGAGATCGTCACCTGGCTCGACGACCACTCTCGCTACGCCCTGCACATCACGGCTCACCGGCGCGTCACCGCCGCAATCGTGCTCGACACCTTCATCCAGGCCTGCGAACAGCACGAACACCCGGCATCAGTGCTGACGGACAACGGCATGGTCTACACCGTGCGATTCGCCGGCCGACCCGGAGGACGCAACCATCTCGAGCACGAGCTCTACCGCCAGGGCATCATCCAGAAGAACGGCCGCCCCAACCACCCCACCACCCAGGGCAAGGTCGAACGCTTCCAGCAGACGATGAAGAAGTGGCTGCGAGCCCAGCGCCACCAGCCGGCCACCCTTGCCCAGCTCCAGGCCCTGCTGGCGCAGTTCGCCGAGTACTACAACCACGCCCGACCCCACCGGGCCCTGCCCCACCGCTGCACACCCGCGACCGCCTACGCCGCCACACCCAGGGCCACGCCCCACCCCCACGCACGCACCGACAGCCACGACCGCCTCCGCCGCGACAAGATCGACAAGACAGGCTGCGTCACCCTGCGCATCGCCGGCAAGCTACGCCACATCGGCATCGGACGACCCCACGCCGGAACCCACGTCCTGCTCCTGATCCACGACCACGACGTGCGGGTCATCAACGCCGCGACCGGCGAGATCCTGCGCGAGCTCGCCATCGACCTCACCCGCGACTACCAGCCACGGGGCACCAACACCCGAAAATGA	MGSGHGTHPSSSTRRHHRSGVTYPCSSPEPAKRPRSSYIRFAADQPNETWQSDFTHYRLTHPGGRPGSDVEIVTWLDDHSRYALHITAHRRVTAAIVLDTFIQACEQHEHPASVLTDNGMVYTVRFAGRPGGRNHLEHELYRQGIIQKNGRPNHPTTQGKVERFQQTMKKWLRAQRHQPATLAQLQALLAQFAEYYNHARPHRALPHRCTPATAYAATPRATPHPHARTDSHDRLRRDKIDKTGCVTLRIAGKLRHIGIGRPHAGTHVLLLIHDHDVRVINAATGEILRELAIDLTRDYQPRGTNTRK				NA	NA	NA	NA	NA
AK001_03267	858	yghA		putative oxidoreductase YghA	ATGGCCGAGAACGCCTTTCCGCCGCAGCAGCAGGAGCCGCCGGGCTGGACCGCGCAGATGGACCCGGTCCCCGACCACGGCGAGGACTCCTACCGGGGCAGCGGCAAGCTCGCGGGCAAGTCGGCGCTCATCACCGGGGGAGACTCGGGGATCGGGCGGGCCGTGGCGATCGCATTCGCCCGCGAAGGCGCCGACGTCGCCATCGGGTACCTGCCCGAGGAGCAGGAGGACGCCGAGGAGACGGCGCGCTGGGTGCGCGGGACGGGTCGGACGGCGGTGCTGCTGCCCGGTGACCTGACCGACGAGGCCACCGCGCGGGCGCTGCCCGGCAAGGCCGCGTCCGAGCTGGGCGGTCTCGACGTGCTCGTCAACAACGCCGGCTTCCAGATGGCGCGGCGCGAGTCCTTCGAGGACGTCACGACCGACGAGATCGACCGGATCCTCAAGACCAACCTGTACGCGCTGATGTGGGTGACGCAGGCGGCCCTGGAGCACCTGAACGAGGGCGCCAGCATCATCAACAACTCCTCGATCCAGGCGTACCAGCCCTCGACGTCGCTGGTCGACTACGCCTCGACCAAGGCGGCGATCAACAACCTCACCGTGAACCTGGCCGCCGAGCTGGGGCCGCGCGGGGTGCGGGTCAACGCCGTGGCACCGGGTCCGATCTGGACGCCGCTGCAGCCCTCGACGCAGCCGGAGGGCAAGCTGGAGTCGTTCGGGCAGGACACCCCGCTGGGTCGCGCCGGGCAGCCGGCCGAGGTCGCCCCCGCGTTCGTTTTCCTGGCCTCCTCGACCGACGCGAGCTACGTCTCGGCCACCGTGCTGGGCGTCACGGGCGGCAAGCCGGTCTTCTGA	MAENAFPPQQQEPPGWTAQMDPVPDHGEDSYRGSGKLAGKSALITGGDSGIGRAVAIAFAREGADVAIGYLPEEQEDAEETARWVRGTGRTAVLLPGDLTDEATARALPGKAASELGGLDVLVNNAGFQMARRESFEDVTTDEIDRILKTNLYALMWVTQAALEHLNEGASIINNSSIQAYQPSTSLVDYASTKAAINNLTVNLAAELGPRGVRVNAVAPGPIWTPLQPSTQPEGKLESFGQDTPLGRAGQPAEVAPAFVFLASSTDASYVSATVLGVTGGKPVF				NA	NA	NA	NA	NA
AK001_03268	618			hypothetical protein	ATGACACCCGCCCTGCTCTACGCGTTCGACGCCCTCGCCGTCACGATCCTGGTCTTCGCGCTGTACTTCCCCCGGCACCGCCGCCGCGACCTCGTCGTGGCCTACCTGGGGGTGAACGTCGGTGTGCTGGCCGTGGCGACGGTCCTCGCGCAGAGCAGCGTCGGCGCCGGCCTCGGGCTGGGCCTCTTCGGCGTGCTGTCGATCATCCGGCTGCGGTCCCGCGAGCTGTCCCAGCACGAGGTCGCCTACTACTTCGCCGCCCTCGCCCTCGGACTGCTCGGCGGACTCGGATCCTCGGTCGGCTGGCTGGCGGTCGCCGGCATGGGCCTGGTCGTCCTGGTCATGGCCGTCGCGGACCACCCTCGGCTCTTCGCCCGGCACCGCACCGCCCAGATCGTCGTCGACCGGGCCCTGCCGGAACACGACACCCTCGTGGAGCACCTCGAACAGCTCCTCGGCGCCCGGATCCTCGGAGCCTCGGTGGTCAAGCTCGACCTGGCCAACGACACGACCGTCGTCGACGTCCGCTACCGGGTCGCCCCGGGCACGACGGCGGCACGCCCGACGGCGGCACCGGCCGCTGCCGAGCGGCCCCGCGCCCTGGAGACGACCCGATGA	MTPALLYAFDALAVTILVFALYFPRHRRRDLVVAYLGVNVGVLAVATVLAQSSVGAGLGLGLFGVLSIIRLRSRELSQHEVAYYFAALALGLLGGLGSSVGWLAVAGMGLVVLVMAVADHPRLFARHRTAQIVVDRALPEHDTLVEHLEQLLGARILGASVVKLDLANDTTVVDVRYRVAPGTTAARPTAAPAAAERPRALETTR				NA	NA	NA	NA	NA
AK001_03269	771			hypothetical protein	ATGAGCACCGTGGAGCACCTGGCGCCGGTCACCCTCGACGAGCTGAACGCCGAGGCCGCGCTGCAGACCCGGGTCGACCGCAAGTACGTCCTCACCGCCGACGAGACCCGCGGCCTCCTGGCTGCGCTCGACCCGTCCACCCGGGCGCTGGAGATCGGCGACACCCGCACCTTCACCTACTCCTCGACCTACTTCGACACCCCCGACCTCGTGACGTTCCACCAGGCCGCGCGCCGTCGGCGGCGGCGGTTCAAGGTCCGCACGCGCACCTACGTCGACACCGGCGGGACGTTCCTCGAGGTCAAGACCCGCGCCGCGCGCGGCGTCACCGTCAAGGAGCGGTGCCCCGCCGACCCCGCGGCGTGCACCCTCGACGACGACGCCGTCGAGTTCGTCGACGACCGGCTGGCGGCCGCCCGGCTGGCCGCCCCGCCGTCGTCCGGGCTGGCACCGGTGCTGCGCTCGCGCTACCGGCGCACCACCCTGCTGACGCCGGACGCCCGCGTCACGCTCGACACCGCCCTGACGTGGCGGCACCTCGCGTCCGACGGCGGCGGGCACGACGGCGCCCGGGACCGCGCCGACATCGGCGACCTGGTGGTCGTCGAGACCAAGGCCGGCACCGCGCCGTCGTCCGTCGACCGTCTCCTGTGGCGATCGGGCCACCGCCCCGACCGCATCTCCAAGTACGCGACGGGACTCGCCGTCCTGCGCCCCGACCTGCCCGACCATCCCTGGCGACGCCTGCGCCGCGAGCGCCTGGCCGCCTGA	MSTVEHLAPVTLDELNAEAALQTRVDRKYVLTADETRGLLAALDPSTRALEIGDTRTFTYSSTYFDTPDLVTFHQAARRRRRRFKVRTRTYVDTGGTFLEVKTRAARGVTVKERCPADPAACTLDDDAVEFVDDRLAAARLAAPPSSGLAPVLRSRYRRTTLLTPDARVTLDTALTWRHLASDGGGHDGARDRADIGDLVVVETKAGTAPSSVDRLLWRSGHRPDRISKYATGLAVLRPDLPDHPWRRLRRERLAA				NA	NA	NA	NA	NA
AK001_03270	1641			hypothetical protein	ATGAACCCCAAGACCCTGCCCCGCTGGACCCGTTCGACCTGGTCGAAGTCCCTGGGAGGAGCTGCCGCCGCGGCGCTGGCCGTCGGCGCGCTCGGCGCCTGCAGCACCACCTCCGAGGAGTCGGCCGCAGCGACGACCTCCGAGAGCTCGACCACCACCGAGGACTCGACATCCTCCGACGACGCCACGGTCCTCACCGCCTCCTCCGCCGGCCTGACGGCCGCGGAGGTGCTCGCCGAGAACCTCGACGCCTCGGAGACCGTGGCCCTGGCCGACAGCTCCTGGGACTCCGCCGACGAGATCGCGATCGACCTGTCCTCGCCGAGCGCCGCCGACGGGGTCGAGGTGGACGGTGACACGGTCACCATCACCCAGCCGGGGACCTACCGGCTGTCCGGTGAGCTCGCCGGCCAGGTCGTCGTCGAGTCCGAGGACGACGGCGTGGTGCGGCTCGTGCTCGACGGCGCGGACATCACGTCCTCCACAGGCGCGGCGATCGACGTCCAGGACGCCGACCAGGTGTCGGTGGTGCTGGCCGACGGCTCGACGAACCGGCTCGAGGACGCCTCCGAGTACGCGGACACGGAGAGCGACAACGCGGCCAACGCCGCCCTGTACTCGACCGCCGACCTGGCGATCTCCAGCACCGGCTCCCTCGAGGTCGTCGGCAACAGCAACGACGGCATCACCGGCAAGGACGGGCTGGCGATCACCGCGGGCGACATCACGGTCGACGCGGTCGACGACGCGGTCCGAGGCAAGGACTACCTGGTCGTCACCGGGGGCACGATCGACGTCACCGCCGGCGGCGACGGCCTGAAGTCGGACGAGGACTCGGACGCCACCGCCGGGTACGTCGCGCTGCTGGGCGGCGAGGTGACCGTCGCGGCGGGCTCCGACGGCGTGCAGGGCTTCACCGACGTCGCGGTCGCCGGCGGGACGCTGAGCGTCACCGAGTCCGAGGAGGGCCTCGAGGCCGCGGTCATCGCGATCTCCGACGGGACCGTCGACATCACCTCGTCCGACGACGGGCTCAACGCGACGGTCAAGGAGGCCGACGACGACACCGAGGACGCCGCGTCGACCGAGGAGTCGACCGAGATGGCCGGCCCCGGCGGGGGCGGGGGCGGCGAGGCCGTCCAGGCGGGCGCCTCCCTGACGGTCACCGGCGGGTCCGTGACGGTGGCGGCCGGCGGTGACGGCCTCGACTCGAACGGGGTCATCGACGTGACCGGTGGCGAGATCGTCATCGCCGCGGCGGCGAACGGCGGCGAGGGCCCGGTCGACGCCAACGGCACGGTGACGAGCGCGAACGGCTGGCTCACGCTGGACGGCTCGGCCGACGCCGGGTCGACGATCACCGTGCTCGACGCCGACGGCCAGGAGGTCGCCTCGGTCGCGGCCGGGCAGTCGCTGTCCTCCCTCCACCTCACCGCGGACGGGATCGTCGCCGGACAGAGCTACACCGTGCAGGTCGACGGCACCGACGTCGGCACGGCGACCGCCGTGGAGTCGATCGCCACGACGATGGGCCCGGGCGGGGGCGGCGCGCCCGGTGACCGCGAGATGCCCGGGGGCGGGGGCCGACCCGGTGGGGGTCAGCCCCCGGCCGAGGGCTCCATGCCCGGCGACGGCGCCTGA	MNPKTLPRWTRSTWSKSLGGAAAAALAVGALGACSTTSEESAAATTSESSTTTEDSTSSDDATVLTASSAGLTAAEVLAENLDASETVALADSSWDSADEIAIDLSSPSAADGVEVDGDTVTITQPGTYRLSGELAGQVVVESEDDGVVRLVLDGADITSSTGAAIDVQDADQVSVVLADGSTNRLEDASEYADTESDNAANAALYSTADLAISSTGSLEVVGNSNDGITGKDGLAITAGDITVDAVDDAVRGKDYLVVTGGTIDVTAGGDGLKSDEDSDATAGYVALLGGEVTVAAGSDGVQGFTDVAVAGGTLSVTESEEGLEAAVIAISDGTVDITSSDDGLNATVKEADDDTEDAASTEESTEMAGPGGGGGGEAVQAGASLTVTGGSVTVAAGGDGLDSNGVIDVTGGEIVIAAAANGGEGPVDANGTVTSANGWLTLDGSADAGSTITVLDADGQEVASVAAGQSLSSLHLTADGIVAGQSYTVQVDGTDVGTATAVESIATTMGPGGGGAPGDREMPGGGGRPGGGQPPAEGSMPGDGA				NA	NA	NA	NA	NA
AK001_03271	3735			hypothetical protein	ATGACACCGACAGGCAAGCGCATCCGCTCGTCGCTGGCCGTGCTGACGGCCGCGGCCCTGACCGCGACGGGGGCGGTGACCGCAGCCGCGGTCGGACCCGCCACGGCCCTGAACGCCGACGACCTGACGCCCGGCGACTTCACGGCCGACTTCGTGGCCACCGAGGACTTCACCGTCCGGGCCACCGAGGCCAAGAAGGTGACCGTCGGGGACACCGACCGCCTCTCCGATCGCGGGGAGGTCTACACCCAGCGGCTCAAGCTCAACGGCTCGGGCAGCGCGGAGTACCGGTCGATCCACTTCACCGCCACCGAGCCGACCGAGCTCGTCGTCCAGACCCGCAGCAGCTCCGGCAGCAGCGACCGGGTCCTCGCGCTGCACGACGCCACCGGCGAGATCGCCCAGATCCCGGCGCTCGCGGACGACAGCGGCGAGCCGATCGTCACCGAGACCGTCGACATCCCGGCCGCCGGCGACTACTTCCTCACCTCTCCGAGCTCCGGGGTCAACGTCTTCTCCGCCCAGCTCGGCGCGAGCGACCCGGTCGAGCGGGCGCCCTGGGCCGACGTCGCGGCACCGGTGATCGGCGGCGTCGCCCTCGACCCCGAGGACCCCGCCGACCTGGAGGTCGACTACACCGGCCTCCTCGGCGACGACGGCGGCGACGTCGCCTACGCGACCCTCTACGACGCCTCCGGCGCGAAGGTCGACCAGGCGATCACCGGCGAGGACGGACCCGGCGGCACCCTGACCCTCACCCCGCCGGCCTCCGGCGACTACGAGGTCGAGGTGCGGCTCACCCGCGCCGGCGAGGCCGAGCCGAAGACCTCCGAGCGCGCCGGGTTCAGCGACTTCTCCCTGCCGCTGGTCGGACCGGAGATCACCGGGGCCCTGACCTCCGCCGTCGACGGCACCGACGCCACGGTGAGCCTCGAGTGGACCGCCACCGACGAGGCCGAGACCTACTCCGTCGAGACGAGCCAGGGCGGGGCGGACTTCGCCACGGCCGTCGACGGCGTGACCAGCACGGCCGTGGACGTGCCGGGCCTCACGGCCGGCGCCACGTACCAGGTCCGCGTCGTGGCGCACCGCGGTGCGGACGCGGCGGCCGGTCCGGCGACGGACGTCGAGGTCGCCACCTCCGTGGAACGCTGGCAGATCGCCGACGTCGGCTCCAACGCCGGCTCCGGGGGTCAGGTCGTCGACCACGGCGACGGCACGATCACCTTCGACGCCAAGGACAGCTCCACGAAGTTCGCGAGCTCCGAGGACGGCTTCCAGTACTACTTCACCGAGATCGACCCGGAAGAGGAGAACTTCACGCTGAACGCCACCTTCGAGGTGGTCGACGGCTCGACGAAGGACAACCAGTCCGGGTTCGGCATCATCGCCATCGACGACCTGGTCGCCGAGTCCTCCCCGCACCGCTACTTCAACTCCGCGGGCGCGGTGGTCACCCGCTACAACGGCGGCACCGACGACGTCGTCAACGGCACCCCGGGCGCTCGGTTCGTCCAGGGGTACACGGGAGCCACCGACGACAACACCGCCGGCTCGCGCGACGACAGCGACTCGGAGGAGTTCGACCCCGACTACCGCCCCGAGATCACCTCGGGACCGAAGTTCGCCGAGGGCGACGTCTACGAGTTCACGCTGCGCCGGTCCAACACCGGCTTCCACGCGATCTGGCGCGGCGCCGGCGACGGCGGCGAGGACATCGAGGTCATCCAGTACGACCCCGAGATGCTGCTGCAGCAGAACGCCGACACCTTCTACGTCGGCATGGCCACGGCCCGCAAGATCGTCGTGGACGTCACCTCGTGGGACTTCACCACGATCCACCCGGACGACGACGAGCCCGCCCAGGAGCCGCCGACGGAGTACGTGCCGACGAACCTGTCGGTCGACGTCACCCGGACGACGCCGGAGCAGCAGCTCGACGTCCCGCTCGTGGCCGACTTCCACGGCACCGGGCAGATCCTCGACGCGGCCGGTGACGTCGTCGTCGACGGCCTGGAGCTCGTCCCCGGCGAGCAGGCCCTCGGCACGGTCGATCTCGAGCCGGGCGTCAACGAGCTCACCGCGCGGGCCACGCCGGAGGGGGACCAGCCGCAGCTCGGAGAGTACGAGGAGCTGGAGTCGTTCGACCCGGTCGACGTGCCCGTCACGATCACCGTGGACTCCTACGGCGAGCCGGGCGAGTCGATCTGGGTCGCGCCCGACGGCACCGCGGACGGCGCGGGGACGCAGGACGACCCGCTGGACATCCACACCGCGGTCGACTTCGCGCAGGCCGGTCAGCAGATCGTGCTGACGGGCGGCACGTACACGCCGCAGCACAACATCGTGGCCGAGCGGGGCCGCGACGGCACCGAGGGCGCCCCGATCACCCTGATGTCCGAGCCCGGCGACCGTGCCGTGCTGGACCTCGGCGAGTCGCCCGACGGCGGCCTGGTGATCCGCGGTGACTGGTGGCACGTCTACGACCTGGAGATCACCGGGTCGGCCGACAAGGCCAAGCCGATGCTCGTCCAGGGCCACCACAACGTCGTCGAGCGGGTGGAGTCCCACCACAACAAGGACACGGGAATCCAGATCTCGGGGCTCTCCGCCGAGCCGCCGTCGATGTGGCCGTCGCACAACACGATCCTGTCCTCGGTGTCGCACAACAACGCGGACACCGGCGGGAACGACGCCGACGGGTTCGGGGTCAAGCTCACCGTCGGCGAGGGCAACGTGCTGCGGTACAACATCGCCCACCACAACATCGACGACGGCTGGGACCTGTACGCCAAGTCCACCACCGGCCCGATCGGCACCGTCGTCGTCGAGGACTCCGTGGCCTACGCCAACGGGTTCCTCGAGGACGACCCGACGTGGACCGGCGAGGGCAACGGGTTCAAGCTCGGCGGCGAGTCCATGCCGGGCGACCACCTGCTGCGCAACGCGCTCAGCTACGGCAACCTCGCCACCGGCGCGACGTCGAACTCGGGCCCGGACGTCCGGCTCGACGGCGTCACCACCGTCGACAACGAGCGGGGCGTGCGGCTGGAGACCAACGCCGGCACCACCGCCTACGAGGCGAGCGGCGTCATCTCCTGGCAGAACCCGGACTCCGACGCCCTCGGGCTGAAGCAGGACGACACGTCGCTGCTGACGGACCCGTCGAACTACTTCGACGGCACGACGGCGGACGCGTCCGACGGGCGGCCCGCCTCCGTCGGCGCGGACTGGTTCGTCTCCGTCGACGCCTCGGCCGTGACGCCGGAGATCGCGGCGGACGGCTCGATCGAGATGCACGGGCTCTACGAGCTCACCGACGTGGCGCCGTCGGACACCGGGGCGCGGTTCACGCCGAACCCGGACCCGACGACCATCGAGCTGCTGCCCGAGGTGTCGGGCGGCGAGCCCGGTCCGAGCCTCTGGTACGCCAGCGCCGTCTACGTGGCGGGCGACGTCGTGCAGCACGAGGGCACGGTCTACGAGGCCCGGTGGTGGACCCGCAACCAGGAGCCCGGTGCCTCCGCGTGGGGCCCCTGGACCGAGGTCGGCTCCGCCGAGGCCGCTCCGGCGGTCGCCGAGTGCGTCGAGTCGTGGGACGCCTCGACGGTGTACGTCGGCGGCGACCTGGTGTCGTCCGACGGCGTCACCTACCGGGCGCTGTGGTGGACTCGCGGGCAGGAACCCGGCGACAGCGTCTGGGGCCCCTGGACCGCGGTGGAGCAGTGCGCCTGA	MTPTGKRIRSSLAVLTAAALTATGAVTAAAVGPATALNADDLTPGDFTADFVATEDFTVRATEAKKVTVGDTDRLSDRGEVYTQRLKLNGSGSAEYRSIHFTATEPTELVVQTRSSSGSSDRVLALHDATGEIAQIPALADDSGEPIVTETVDIPAAGDYFLTSPSSGVNVFSAQLGASDPVERAPWADVAAPVIGGVALDPEDPADLEVDYTGLLGDDGGDVAYATLYDASGAKVDQAITGEDGPGGTLTLTPPASGDYEVEVRLTRAGEAEPKTSERAGFSDFSLPLVGPEITGALTSAVDGTDATVSLEWTATDEAETYSVETSQGGADFATAVDGVTSTAVDVPGLTAGATYQVRVVAHRGADAAAGPATDVEVATSVERWQIADVGSNAGSGGQVVDHGDGTITFDAKDSSTKFASSEDGFQYYFTEIDPEEENFTLNATFEVVDGSTKDNQSGFGIIAIDDLVAESSPHRYFNSAGAVVTRYNGGTDDVVNGTPGARFVQGYTGATDDNTAGSRDDSDSEEFDPDYRPEITSGPKFAEGDVYEFTLRRSNTGFHAIWRGAGDGGEDIEVIQYDPEMLLQQNADTFYVGMATARKIVVDVTSWDFTTIHPDDDEPAQEPPTEYVPTNLSVDVTRTTPEQQLDVPLVADFHGTGQILDAAGDVVVDGLELVPGEQALGTVDLEPGVNELTARATPEGDQPQLGEYEELESFDPVDVPVTITVDSYGEPGESIWVAPDGTADGAGTQDDPLDIHTAVDFAQAGQQIVLTGGTYTPQHNIVAERGRDGTEGAPITLMSEPGDRAVLDLGESPDGGLVIRGDWWHVYDLEITGSADKAKPMLVQGHHNVVERVESHHNKDTGIQISGLSAEPPSMWPSHNTILSSVSHNNADTGGNDADGFGVKLTVGEGNVLRYNIAHHNIDDGWDLYAKSTTGPIGTVVVEDSVAYANGFLEDDPTWTGEGNGFKLGGESMPGDHLLRNALSYGNLATGATSNSGPDVRLDGVTTVDNERGVRLETNAGTTAYEASGVISWQNPDSDALGLKQDDTSLLTDPSNYFDGTTADASDGRPASVGADWFVSVDASAVTPEIAADGSIEMHGLYELTDVAPSDTGARFTPNPDPTTIELLPEVSGGEPGPSLWYASAVYVAGDVVQHEGTVYEARWWTRNQEPGASAWGPWTEVGSAEAAPAVAECVESWDASTVYVGGDLVSSDGVTYRALWWTRGQEPGDSVWGPWTAVEQCA	PGPT0018240_22	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONS	PLANT_MEMBRANE_PECTATE_LYASE|ESTERASE,PGPT0018240-pelX-K22994	NA	NA
AK001_03272	909	cobB	COG0846	NAD-dependent protein deacetylase	GTGGAACCCGCCGTCCGACTGCTCGCCCCGACGTACCAGGACCGTCGCTGGGAGCTCCCGCCGGACGCGGTGATCCACCACGGGACCGTCGACGACGCCGCGCGGCTTCTCGACGGCCGCACGGTCACCGCCCTGACCGGTGCCGGCATCTCCACCGACTCCGGCATCCCCGACTACCGCAGCCCCGACTCGCCGCCGCGCAACCCGATGACGTACCAGCAGTTCGTCGGCGACGCGGACTTCCGGCGCCACTACTGGGCCCGCAACCACGTCGGCTGGCAGCACGTGCACCGCACCCACCCCAACGCCGGGCACCGCGCCCTCGCCGACCTCGAGGACCGGGGCATCGTGCGCGGCGTCATCACCCAGAACGTCGACCTGCTGCACGAGGACGCCGGCCAGCGCACCGTCATCGACCTGCACGGACGCTACGACTCCGTGATCTGCCTGCAGTGCGGCCGCACGATCAGCCGGTCCCACCTCGCCGAACGCCTCGACGCGCTCAACCCGGGATTCGTCGAGTCCGTGCTCGACGGCGGCACCACCGTCGCCGACATCGAGGTCGCCCCCGACGCCGACGCCGTCATCGCCAAGACCTCCCACTTCCACCCGGCCGACTGCGAGTTCTGCGGCGGGGTCCTCAAGCCCGAGATCGTCTACTTCGGCGAGAACGTGCCGCGCGAACGGGTCGACCGGGCGTTCGCGCTCGTGGAGTCCGCCGACGCCCTGCTCGTGGCGGGCACGTCCCTGACCGTGATGAGCGGGCTGCGGTTCGTGCGTCGGGCGGCCAAGAACGGCCAGCCCGTGGTCATCGTCAACCGCGGCGAGACCCGCGGCGACCCGCTCGCCACCGTCAAGGTCGACGCCGGGGCGACCGAGACGCTGACAGCCCTCGCCGATCTGCTCTGA	MEPAVRLLAPTYQDRRWELPPDAVIHHGTVDDAARLLDGRTVTALTGAGISTDSGIPDYRSPDSPPRNPMTYQQFVGDADFRRHYWARNHVGWQHVHRTHPNAGHRALADLEDRGIVRGVITQNVDLLHEDAGQRTVIDLHGRYDSVICLQCGRTISRSHLAERLDALNPGFVESVLDGGTTVADIEVAPDADAVIAKTSHFHPADCEFCGGVLKPEIVYFGENVPRERVDRAFALVESADALLVAGTSLTVMSGLRFVRRAAKNGQPVVIVNRGETRGDPLATVKVDAGATETLTALADLL				NA	NA	NA	NA	NA
AK001_03273	2082			hypothetical protein	GTGTCCACACCCTCCTCCCCGCGGACCGACATCCAGGGTCTGCGGGCCGTCGCCGTCGCCGCGGTGCTCGGCTTCCACCTGTGGCCCGCCGCGGTCACCGGCGGGTACGTCGGCGTGGACGTGTTCTTCGTGGTCTCCGGCTTCCTCATCACCAGCCACCTGCTGCGCCGCCCCATCCGCAGCGGCCGCGACCTGCTCGACTTCTGGGGACGCCGGGTGCGCCGCCTCATCCCGGCGGCCAGCCTCGTGCTGCTGGCCACGCTGCTCGCCGCCGCCGTCTGGCTGCCCGTCACCACGCTGCCGTCCGTCGGCCGCGAGGTGCTCGCCTCGGCGCTGTACGTCGAGAACTGGGTGCTGGCCGCGACCGAGACGGACTACCTCGCGGCCGAGGAGCTCCACTCCCCCGTGCAGCACTACTGGTCGCTGTCCATCGAGGAGCAGTTCTACCTGCTGTGGCCGATCCTGTTCGCCGCGGTCGCCTGGCTCGGTCTGCGTCGCAGCCGACGCGCCGGCCGCGACGGCGGACGCCCGACGGCGGTGCTCGCCGTCGGGCTGACCGCGACGGTGGTCGCGGCCTCTCTCGGCTGGTCCGTGTGGGCCACGAGCACCGAGCCGGCCGCGGCCTACTTCGTCTCCACGACCCGGTTCTGGGAGCTCGGGCTCGGTGGCCTGCTCGCGGCGGTGCTCGCGCTCCGCGCCGGGGCGTCCAGCGCGCTGCTGCGCCACGACGGGCTCCGGGCGGCGACGGCGTGGCTCGGTCTGGCGATGATCGTCACGGCCGTCCTCACCTACGACGCCGCGACCGCGTTCCCGGGGTACACGGCGCTGCTGCCGACCGTCGGCGCCCTGCTCGTCATCGCCGCCGACGCCGACGAGACCCGCGCGGGACCGGGCGCCCTGCTGCGGTGGCGGCCCGCGCAGTGGCTCGGCGACAGCTCCTACTCGGCCTACCTGTGGCACTGGCCGCTGGTGGTCATCGTGCCGTTCGCGATCGGACGCGACCTGACCGCGCTCGACATGGTGGCCGTCCTCGCCGCCACGCTGGTGCTGGCGGGCCTGTCCCGGCGGCACGTCGAGGAGCGCCTGCGCTGGCAGCCGCTGCTCACCCGCCGCCTGGCCGCCACCTTCGTGCTGCTGGCCGGGTGCGTCGTCGTGGTCGGCGGAGGTGCCGTCGTCGTGCAGCAGCAGGCGGTCGCGGCGGAACGCCAGGCCGTGACCGAGGCCCGCGCCGCCGTCGCCGCGGCCGCGCCCTGCGTGGGTGCCGCCGTCGTGCGCGACGACACCTGCGACGACCCGGGCCTGGTGTGGCCGCCCGAGGCGGCGGCCGAGGACAAGCCGGCCGTGTACGCCGACGGCTGCTGGAACAATGCCCCCTTCACCACGCGCAACACCTGCACCTACGGCGAGGAGGAGGACCCGACGGCGCGGATCGCCCTGGTCGGCAACTCCCACGCCGGGCACTGGCTGCCGGCGCTCCAGGACGCGATCGACACCGAGGGCTGGCGGCTCGACACCTACCTGCAGTCCGTCTGCTACACCGTGGACCGGCCGCTGGCCTTCCCCGACGCGTCGGACTCGGCGGCCTGCCGAGACATCAACCGGTGGGCCGTGGAGAGCGTCGTGGCCGGCGACTACGACCTCGTGGTCATGTCCGACCGCACGAACCAGCCGCTGGCCGGCGTGGCGCCGTCGGACCAGGAAGCGGTGGCCCAGGAGGCCTACGCCGAGACCTTGGCGGCCTTCACGGACGCCGGGATCGGCGTCGTCGTGCTGCGGGACACGCCCGCGATGCCGGAGAACGTCCCCGAGTGCCTGCAGCTCCACCGCGACGCGGAGGCCTGCGGCGCGCCGCCCGCGACGGCGCTGGAGCCGGACCCGCTGGCCGCGGCGGCGAGCGCCGACACCACCGGCGCGGTGAGCGTCACGAGCGTCGAGGACCTGATGTGCGACGACGTCTGCCACCCGGTCGTCGGCGGGGTGACGGCGTACTTCGACCACGGGCACCTCACGGCGACGTTCGCCCGCACCCTCGCCCCGGAGGTGACCGGGGCCGTGCGCGCGGGGCTCGACCGCTCGCCCTAG	MSTPSSPRTDIQGLRAVAVAAVLGFHLWPAAVTGGYVGVDVFFVVSGFLITSHLLRRPIRSGRDLLDFWGRRVRRLIPAASLVLLATLLAAAVWLPVTTLPSVGREVLASALYVENWVLAATETDYLAAEELHSPVQHYWSLSIEEQFYLLWPILFAAVAWLGLRRSRRAGRDGGRPTAVLAVGLTATVVAASLGWSVWATSTEPAAAYFVSTTRFWELGLGGLLAAVLALRAGASSALLRHDGLRAATAWLGLAMIVTAVLTYDAATAFPGYTALLPTVGALLVIAADADETRAGPGALLRWRPAQWLGDSSYSAYLWHWPLVVIVPFAIGRDLTALDMVAVLAATLVLAGLSRRHVEERLRWQPLLTRRLAATFVLLAGCVVVVGGGAVVVQQQAVAAERQAVTEARAAVAAAAPCVGAAVVRDDTCDDPGLVWPPEAAAEDKPAVYADGCWNNAPFTTRNTCTYGEEEDPTARIALVGNSHAGHWLPALQDAIDTEGWRLDTYLQSVCYTVDRPLAFPDASDSAACRDINRWAVESVVAGDYDLVVMSDRTNQPLAGVAPSDQEAVAQEAYAETLAAFTDAGIGVVVLRDTPAMPENVPECLQLHRDAEACGAPPATALEPDPLAAAASADTTGAVSVTSVEDLMCDDVCHPVVGGVTAYFDHGHLTATFARTLAPEVTGAVRAGLDRSP				NA	NA	NA	NA	NA
AK001_03274	1503			hypothetical protein	ATGGAGGACGTGGTCGTCGTCGGATCAGGACCCAACGGGCTGGCAGCCGCCGTGACGCTGGCCCGGGTCGGCTTGTCCGTGACGGTGCTCGAGGCGCGGTCGACCGCCGGCGGCGGCGCGCGCACGCTCGACCTGGACCTGGCGCCCGGGCTGCAGCACGACGTCTGCTCGGCCGTGCACCCGATGGCGTGGGCGTCACCGTTCTTCCGCGCGTTCGACCTGCCCGCCCACGGGGTCGAGCTGCTCACGCCCGAGGTCTCCTACGCCCAGCCGCTGCCCGACGGACGCGCGGGGATCGCCTACCGCGACCTGGAGCGCACGGCCGAGCGGCTGGGGTCCGACGGCGGGGCGTGGCGGTCGCTGCTCGGCCCGCTGGCCGCACGGTGGGAGGCCGTGGTCGCCGTCGGGATGAGCGACAAGCGGTCGCTGCCGCGGGGGGTGTCCGACGTCGGGGGCCTGGTGGGCGCGGCCCGGTTCGGCGCCGCCATGCTCGAGCAGGGCACAGGAGCGTGGGGGGCGAGGTTCCGCACCGAGGAGGCGGCCGCGCTGCTGACCGGCGTCGCGGCGCACACGATCGCCCCGATGCCGTCCCTCGGCGCCGCGGGGACGGCGCTGCTGCTCGGGGCGCTCGCGCACGCCACGCCCGACGGCACCCCCTCGGAGGCCACGGCCCCCGGCGGGTTCGACGGCGGCTGGCCGATCCCGCGCGGCGGCTCGGGGGCGATCGCGACGGCGCTGCTGGCCGACCTTGAGGCGCACAGCGGCACGGTGGTCACCGACCATCCCGTGCGCGTCTGCACCGACCTGCCCTCGGCGCACGTCTACCTGTTCGACACCCCCGCCAGCACCCTGGTCGACGTCATCGGTGACGCCCTGTTCCCCACCTGCCACCGCGCGCTGTCCCGGTTCCCCACCGGCAACGCCGCCGCCAAGGTCGACCTGGTCACGGACGGGCCGATCCCCTGGGCGGACCCCGAGGTCGCCCGGGCCGGCACCGTGCACGTGGGCGGCACCCGGGCCGACATGGCGCGCGCCGAGTCCGCCGTCGCCGCCGGGGAGCACGCGGAGGCGCCCGTCTGCCTGGTCAGCGACCCGGTCGTCGTCGACCCGGACCGCGAGGTCGGGGGCCGGCGACCGGTGTGGGCGTACACGCACGTGCCGTCCGGGTCGACGGTGGACGTCACCGAGACGGTGCTGGCCCAGCTCGAGCGGTTCGCCCCCGGGGTGCGGGACGCCGTCGTCGCGACGCGGTGCACCCCCGCGGCCGAGCTGGCGGGCCACAACCTGAACCTCGTCGACGGCGACATCGCGGGCGGGCGCACGAGCCTGTGGCGGATGATCGCCCGCCCGACCGCCGCGGCGAACCCGTACCGGCAGGCCGGGCACGTGTACCTGTGCTCCGCGTCGACGCCGCCGGGCCCCGGCGTGCACGGGATGTCCGGCTGGCACGCGGCCCGCCGGGCGGCGTACGAGGTCTTCGGGATCCGCGTCCCCGCGCTCTGA	MEDVVVVGSGPNGLAAAVTLARVGLSVTVLEARSTAGGGARTLDLDLAPGLQHDVCSAVHPMAWASPFFRAFDLPAHGVELLTPEVSYAQPLPDGRAGIAYRDLERTAERLGSDGGAWRSLLGPLAARWEAVVAVGMSDKRSLPRGVSDVGGLVGAARFGAAMLEQGTGAWGARFRTEEAAALLTGVAAHTIAPMPSLGAAGTALLLGALAHATPDGTPSEATAPGGFDGGWPIPRGGSGAIATALLADLEAHSGTVVTDHPVRVCTDLPSAHVYLFDTPASTLVDVIGDALFPTCHRALSRFPTGNAAAKVDLVTDGPIPWADPEVARAGTVHVGGTRADMARAESAVAAGEHAEAPVCLVSDPVVVDPDREVGGRRPVWAYTHVPSGSTVDVTETVLAQLERFAPGVRDAVVATRCTPAAELAGHNLNLVDGDIAGGRTSLWRMIARPTAAANPYRQAGHVYLCSASTPPGPGVHGMSGWHAARRAAYEVFGIRVPAL				NA	NA	NA	NA	NA
AK001_03275	894			hypothetical protein	ATGAGCCACGACCTCTCGACCACGCAGCCGCGACGCAGCGGCGCCGCCCGGGTGCTCCTCGCCCTCGGCCTCGCCGTCGGCGTGCTGATGGTCGTCTGGGGCGCCCTGCACGTGATCGACTGGGCGCTGTCCGAGACACGCACCAGCCAGGAGTCCTACGACGCCGCCGAGCAGGTGGAGCTGGTCGCCGACGGCGACGTGACCGTGCGGGCCGACGACGGCGCGACCGACGTGAGCGTCGAGGTCGTCTCCCGCGGAGGGCTGGCCACACCGGAGTACACCGTCTCGACCGGCGACGGGTCGCTGGTGCTGGAGAACACCTGCCCGGACCGGGTGTGGTGGTCGTGGACGTGCGCCGGCGAGCTGCACGCCGTCGTCCCCGCCGACACGGTGGTGAGGGTCGACACGGCGAACGGCGAGGTGCGGGCCGAGGGGCCGGCCGGCGCCGTCGACCTGCGGACGTCGAACGGCGACGTGGTCGCGACGGACCTCGGCGGGTCGTTGGAGGCGCGCACCTCCAACGGCGAGATCGAGGCGACCCGGGTCGGCGGGGACGTCGACGCGCAGACCTCGAACGGCCGGATCGACGTCGCCGACGTGGCCGGCGGGGCCGTCGCCCGGTCCTCCAACGGCGACGTCGAGCTGCGGGACGTCGGCGGGGACGCCGAGGCGAGGACCTCCAACGGCGAGGTCGACGTCGCGGGTGCCGGGGGCGACGTCTTCGCCCGGACGAGCAACGGCGACGTCGCGGTGGTCGGCGACGGCGAGCCGGTGGCGCTGACCATCGAGACGTCGAACGGGCAGCAGATCATCGAGGGGCCCACCGACCCGGCGGCCTCGCGGAGCGTGGAGATCCACAGCTCGAACGGGGACGTGGCCTACCGGGCGCCCTGA	MSHDLSTTQPRRSGAARVLLALGLAVGVLMVVWGALHVIDWALSETRTSQESYDAAEQVELVADGDVTVRADDGATDVSVEVVSRGGLATPEYTVSTGDGSLVLENTCPDRVWWSWTCAGELHAVVPADTVVRVDTANGEVRAEGPAGAVDLRTSNGDVVATDLGGSLEARTSNGEIEATRVGGDVDAQTSNGRIDVADVAGGAVARSSNGDVELRDVGGDAEARTSNGEVDVAGAGGDVFARTSNGDVAVVGDGEPVALTIETSNGQQIIEGPTDPAASRSVEIHSSNGDVAYRAP				NA	NA	NA	NA	NA
AK001_03276	660	lnrK_3	COG2197	Transcriptional regulatory protein LnrK	GTGCGCATCGTGATCGCCGAGGACTCCGTCCTGCTGCTGGACGGACTGACCCGGCTGCTGCAGACCGAGGGGCACGACGTCGTCGGCCACCGCACCGCCGAGGAGATGGTCGCCGCCCTCACCGAGCCGGGCGCCACGCTGCCGGACCTGCTCGTCACCGACGTGCGGATGCCGCCGTCGCACACCGACGAGGGGCTGCGCGCCGCGGTGCACCTGCGCAGCCTGCACCCCGAGCTACCGGTGCTGGTGCTCTCGCAGTACGTCGAGCAGCGGTACGCCGCCGAGCTGTTCACGCACGGCACCCGATCCGTGGGCTACGTGCTCAAGGACCGCGTGGCCGACGTCGACGAGTTCCTCGACGGCGTCGAGCGGGTCGCGGGCGGCGGCACCGTCCTCGACCCCGAGGTCGTCTCGCAGGTGCTCGCCCGCTCCCGCCACGACCTCGACGAGCTGACCGCCCGGGAGCGCGAGGTCCTCGGGCTCATGGCCGAAGGGCTGTCCAACACCGCGATCGCGGACCGGCTCGTGGTCGGGTCCGCGGCCGTGGAGAAGCACGTGACCAACATCCTCACCAAGCTGGGGCTGCCCGTGGACGCGGACACCCACCGCCGCGTCCTGGCGGTGCTGCGCTGGCTGGACCGGAACGGAGACGCACGATGA	MRIVIAEDSVLLLDGLTRLLQTEGHDVVGHRTAEEMVAALTEPGATLPDLLVTDVRMPPSHTDEGLRAAVHLRSLHPELPVLVLSQYVEQRYAAELFTHGTRSVGYVLKDRVADVDEFLDGVERVAGGGTVLDPEVVSQVLARSRHDLDELTAREREVLGLMAEGLSNTAIADRLVVGSAAVEKHVTNILTKLGLPVDADTHRRVLAVLRWLDRNGDAR				NA	NA	NA	NA	NA
AK001_03277	1356			hypothetical protein	ATGACCAGCACAACTGCGGCACCGCGCGACACCGCGCCGGCCGTCACGAGCCTGCCGGGACTGCTGCGTGCACCCTGGGCGGCGGCCACGTGGCGGGGCCTCGCCCAGCTCGCGCTGGGTTACCTCTGGCTCGTCTCCGTCGGGCTGGTGGTCTTCGACCTCGTGCTCGTGGCGGTCTCCCTGGTGCCCGCGCTCGGGCTCGGGCTCCTCCTGCTGCCGCCGACCCTGTGGGTGGCCCGGTGGTTCGCCACCGCCGAGCGCGCTCGCCTCGCCGCGCAGACCGGCGTCGCGCTGCGCGACCCGGGACGACGACGCCCGACCCGGCCCGGCTGGTGGGGGTGGACGAAGGCCGAGCTCACCGACCGGCGCGGCTGGCTCGCCACCGCGTACACCCTGGCCGGACTGGTCGTGGCGACGGTTTTCCTCACGCTCGCCGTGGCCGCGGCGAGCGGCGCCGTCGCCGCCGTCGTCCTCGGGGTGCGCCGCGTGGCCGACACCGACCTCTCCGCGCTGTGGGCGCTCCCGATCGCCGTCGTGCTCGCCTGGCTCGCCGCCGTCCTGGCCCAGCTCGGCAACCTGGCCACCACCGCGCTGGCCCAGGCGATGCTCGGTGTCTCCCCGGCGGCCGCGGCGCGCGCCGCCCAGCGTGCCGCCGAGGCCGAGGCGCGCGCTGCGGAGACCGACGCCGACACGGCCCGCCGGCGTGCCGTCGAGCTCACCGCCACCCGAGCCGCCGCTCTGGAGGCCGCCGACGCGGAACGACGCCGCATCGAGCGGGACCTGCACGACGGCGCCCAGCAGCGCCTCGTCGCCCTCGGCGTTGCGCTCGGCTCGGCCCGCCGGTCCGCCGACCGGGACCCGTCGGCCGCGGTGGCGGCCGTCGAGCACGCGCACACGGAGGTCAAGGAGACGCTGGCCGAGCTGCGCGACCTCGTGCGCGGCATCCATCCCGCGGTGCTGGCCGACCGCGGCCTCGACGACGCCCTGTCGGCCCTGGCGGCCCGCAGCCCCGTGCCGGTCCGGGTGGAGGCCGGCCCCGACCTCGACAGCGCGGGGGCCGGGGTGCAGGCCGCCGCCTACTTCGTCGTCGCCGAGGCGCTGACCAACGTCGCCCGGCACGCCGGGGCGACCCGCGCCCACGTGCGTGCCACCGTCGTCCCCGGGCCCGGGACCCCGGGGCCGGACCGCCTGCTGATCGAGGTGTCCGACGACGGCCGCGGCGGTGCCGAGGCACGGTCCGGTTCCGGGCTCGCCGGCCTGCGGGGCCGGGTCGCCGCCCTGGACGGCACGTTCGACCTGACCAGCCCGCCCGGTGCGGGGACCCGCCTGCGAGTGGAGCTGCCGTGCGCATCGTGA	MTSTTAAPRDTAPAVTSLPGLLRAPWAAATWRGLAQLALGYLWLVSVGLVVFDLVLVAVSLVPALGLGLLLLPPTLWVARWFATAERARLAAQTGVALRDPGRRRPTRPGWWGWTKAELTDRRGWLATAYTLAGLVVATVFLTLAVAAASGAVAAVVLGVRRVADTDLSALWALPIAVVLAWLAAVLAQLGNLATTALAQAMLGVSPAAAARAAQRAAEAEARAAETDADTARRRAVELTATRAAALEAADAERRRIERDLHDGAQQRLVALGVALGSARRSADRDPSAAVAAVEHAHTEVKETLAELRDLVRGIHPAVLADRGLDDALSALAARSPVPVRVEAGPDLDSAGAGVQAAAYFVVAEALTNVARHAGATRAHVRATVVPGPGTPGPDRLLIEVSDDGRGGAEARSGSGLAGLRGRVAALDGTFDLTSPPGAGTRLRVELPCAS				NA	NA	NA	NA	NA
AK001_03278	522	tadA		tRNA-specific adenosine deaminase	GTGGACGAGCGTGGCCTGGCCCTGCCGTGGGCGGAGGACGCCTTCCCGCCGCGCACCCTGAACGAGCGCCGCGCCGTGTGGGGGCACCTCATGGGCGTCGCGCTGCACGAGGCGACCCACGCCCTGGCGACCGACGACGTCCCGGTCGGCGCCGTCGTCGTCTCCCCGGACGGGAGGCTGCTCGGGCTGGGGCACAACCGCCGCGAGGAGACCGGGGACCCCACCGCCCACGCCGAGGTGCTGGCGCTGCGGCAGGCCGCCGTGAGCTGGCGGGAGTGGCGGCTGACGGACTGCACGCTCGTGGTCACCCTGGAGCCGTGCGTGATGTGCGCGGGCGCTCTCGTCGCGGCCCGTGTCGGGCGGCTGGTGCTCGGCGCCTGGGACCCGAAGGCGGGGGCGACCGGGTCCGTGTGGGACATGGTGCGCGACCAGCGCGCCCTGCACGAGGTCGAGGTGATCGCGGGCGTGCGGGCCGACGAGTGCGCCGCGGTGCTGCAGGAGTTCTTCGCGGCCCGTCGCTGA	MDERGLALPWAEDAFPPRTLNERRAVWGHLMGVALHEATHALATDDVPVGAVVVSPDGRLLGLGHNRREETGDPTAHAEVLALRQAAVSWREWRLTDCTLVVTLEPCVMCAGALVAARVGRLVLGAWDPKAGATGSVWDMVRDQRALHEVEVIAGVRADECAAVLQEFFAARR	PGPT0006855_48	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563	NA	NA
AK001_03279	1698			hypothetical protein	GTGCGCGCCGTCCTGCCGAAGGGATCGATCACCATCGTGAAGAAGCTGCTCGCGAGCGTCGCGACCACGACGCTCGCGCTCGGAGGGCTCCTCGTCGCCACCGCGACACCCGCCTCCGCGCACACCCCCGACATCGACGCCACCTGCGACTCGCTCGCGGTCGACCTGCGCTACTACTCCGGCGCGCAGGTCACGGTCACCGTCGACGACGAGACCCGCGACGACTCGACCTTCACGTCGAGCTACGCCGCGACGTTCACGCTCGACGACAGCGTCGCGCACACCTGGCACGTCGACGTGGACGCCCACGACGACGACCAGTGGGACCGGGAGTGGTCCGGGCTGACGGAGCCCTGCACCACCGACGTCGAGCCCGCCGACGAGCTCGTCACCGGCCTGTACCTGTACGAGAAGGTGCACCCGGACCAGCCGGCCGCGTGGCACAACTCGGGTCCGCAGGAGCTGATCGTCCAGCGGGACGGCCACAGCTTCTGGGACGCCGACGACTTCCCCGTCGAGGAGCTCCCGCAGGAGGTCTGCGGCACGGGCTGGGGCGTCCAGCAGGACGTCGCCGACGTCACGGACGGGTTCGAGATCCCCCTCGAGATCGTCTGGCCGGAGGGCGGCTTCGACGGCCACCTCGTGGACTGGCGCCACGACGACCTGACCGACCTCGTCGAGGTCCCCGCGTGCGACGCGCCGGAACCGGTGACGCTGCCCGCGCCCACCCCCGTCGAGGAGTGCGACGCCGAGGCCCGCGTGGACCTCCCCTCCTCCGAGCTCGCGGACTACTCCACCACCTGGAGCGACGACCGTTCCGAGGCCGTCGTCACGGCGACCCCGGCGGAGGGCGTGGTGCTCGCCGACGGTGCGCAGACCTCGTGGACCTTCGCGTTCACCGGGGCCGAGTGCGACGTCGAACCGGTCCTCGTCGTGCCCGAGCCGCCCACCGTCGTCGACGTCTGCGGCACCGACAACGACGATCTCGTCGTCCCGCAGGACAGCGAGCAGGTCACCTACTCCTCCACGCACGAGGGTGTCGTGGCCACGGCCGCCGAGGGCGCCGTCTTCGGCGACCTGCCGGACGGGTACACCGCGGTCGACGACACGACGGCCCGCTACCCCGTGGACGGGACCTTCACCGACACGTCGTGCGAGCTCGTGCCGGGCGACGTCGCCGCCGTCTGCGAGGGGGAGGTCCCGTTCCTCGCCTACGAGGTGAACCTGCCCGAGGGCGTCGAGGCCGACGGCGAGACGCCGCTGACCGTGACGTTCCTCCACCCGGGCGACGGTGACGACGTCGTGCTCACCGACCAGCCGCTCGCCGGACGCGTGGTGTGGCCCGGAGCGTCGACCACCGAGCCGCTGCAGTGGCCGGGCTGGGAGCTCCAGGAGGACGGCACCTACGTCGAGACCGAGGGCAACTACGCCTGGACCCGCGACGGCGTCCGGGTGCTGTTCGAGGTCAACCCGGACCACTCGACCGTCGTCGAGTACCCGGCGGCGTCGGACACCTGCGCGAACCCGCCGTCGGACGACGGCACCGAGGTCCCCGCGGAGACCGTCGCCGAGAGCACTCCCGAGGCCGAGCTGCCGCGCACCGGCGCCACGGTGGGCGTGGTCGCCGGCGTCGCCGCGCTGCTCGTGGCGGCGGGCGTGAGCCTGTTCGTCGCACGCCGCCGCCTGCACCGGGGCTGA	MRAVLPKGSITIVKKLLASVATTTLALGGLLVATATPASAHTPDIDATCDSLAVDLRYYSGAQVTVTVDDETRDDSTFTSSYAATFTLDDSVAHTWHVDVDAHDDDQWDREWSGLTEPCTTDVEPADELVTGLYLYEKVHPDQPAAWHNSGPQELIVQRDGHSFWDADDFPVEELPQEVCGTGWGVQQDVADVTDGFEIPLEIVWPEGGFDGHLVDWRHDDLTDLVEVPACDAPEPVTLPAPTPVEECDAEARVDLPSSELADYSTTWSDDRSEAVVTATPAEGVVLADGAQTSWTFAFTGAECDVEPVLVVPEPPTVVDVCGTDNDDLVVPQDSEQVTYSSTHEGVVATAAEGAVFGDLPDGYTAVDDTTARYPVDGTFTDTSCELVPGDVAAVCEGEVPFLAYEVNLPEGVEADGETPLTVTFLHPGDGDDVVLTDQPLAGRVVWPGASTTEPLQWPGWELQEDGTYVETEGNYAWTRDGVRVLFEVNPDHSTVVEYPAASDTCANPPSDDGTEVPAETVAESTPEAELPRTGATVGVVAGVAALLVAAGVSLFVARRRLHRG				NA	NA	NA	NA	NA
AK001_03280	636	upp	COG0035	Uracil phosphoribosyltransferase	ATGCGCCTGCACATCGCCGACCACCCGCTCGTCGCCCACAAGCTGTCCGTGCTGCGCGACGAGTCGACGCCGTCCCCGATCTTCCGGCTGCTGGTCGACGAGCTCGTGACCCTGCTCGCCTACGAGGCGACCCGGCACGTGCGGACCGAGCCGAAGGAGATCATCACCCCGGTCACCACGACCACCGGGGTCCGGATGAGCCATCCGAGCCCGATCGTCATCCCGATCCTGCGCGCCGGGCTCGGCATGCTCGACGGCCTGACGCGGCTGCTGCCGACGGCCGAGGTCGGGTTCCTCGGGCTCCAGCGCGACGAGTCGACGTTCGAGGCCGTCACGTACGCCAACCGGCTGCCGGACGACCTCACCGACCGGCAGGTCTTCCTCCTGGACCCGATGCTCGCGACCGGCGGCACGCTGGTGGCGGCGATCGACTACGCCCTGGAGCGCGGCGCCCGCGACGTGACCGCGGTGTGCCTGCTGGCCGCGCCCGAGGGGCTGCAGGTCGTCCAGGAGGCGATCGGCGAACGCGCCGACGTCCAGGTCGTCGTGGCCGCCGTCGACGAGCGGCTCAACGAGCACAAGTTCATCGTGCCGGGACTCGGCGACGCGGGCGACCGCCTCTACGGCGTGGTCTGA	MRLHIADHPLVAHKLSVLRDESTPSPIFRLLVDELVTLLAYEATRHVRTEPKEIITPVTTTTGVRMSHPSPIVIPILRAGLGMLDGLTRLLPTAEVGFLGLQRDESTFEAVTYANRLPDDLTDRQVFLLDPMLATGGTLVAAIDYALERGARDVTAVCLLAAPEGLQVVQEAIGERADVQVVVAAVDERLNEHKFIVPGLGDAGDRLYGVV	PGPT0021240_1917	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761	NA	NA
AK001_03281	4086			hypothetical protein	GTGACCGACGTCTACGTGGGATCAGGCGGAACAGCCCCCAGCGACGGGGAGCTGATCCTCGAGGTGCGCGGAGGCAGCCTCGACGCGTACGGCGCCCTCTACGAGCGGCACAGCGGTGCCGCCCGGGTCCTGGCCCGGCAGTACGTCCGGTGCGACGGCGACGCGGACGACGTCGTCTCCGACGCCTTCCAGCGCGTCCTCGGCATGCTGCAGCAGGGCAACGGCCCCGACACGCACTTCCGCGCCTACCTCTTCACCGTGGTGCGACGCCTGGCCGCCGACGTCGCGCACGGTGCACGCCGGACCCGCCCGACGGCCGACGACGGCACCTTCGAGCACGCCCTCGGGCCGTCGGCGTCGCCGGAGGACCCGGCACTGGCCGGGTTCGAGAACTCGGTGGTCGCCCGCGCCTACGAGTCGCTGCCCGAACGATGGCAGGCCGTGCTCTGGTACACCGAGGTCGAAGGGCTCTCCCCGGCCGAGGTCGCGCCCATCCTCGGGCTGACGCCGAACGGCGTCTCGGCGCTGGCCTACCGGGCTCGAGAGGGTCTGCGGGTCGGCTACCTGCAGCAGCACCTGAGCAGCGAGCCTGCCGACTCGTGCCGGGTCGTCAACCCGCTGCTCGGCGGGTACGTGCGCGGCAGCCTGGCCCGCCGCGAGGTCACCAAGGTCGACCGCCACCTCGAGGTGTGCGCCGAGTGCCGCACGCTGGTGCTCGAGCTCGGGGACGTCGCCCACGGCATGCGGGCCGTCGTGGCCCCGCTCGTGGTGGGCCTGGCCGGCACGGCGATCCTCGGTGCGCTCCCGCTGGGTGCGGCGACGTTCGGTGCCGGTGCGGGCGCGGGCGCGGGTGCCGGGGTCGCCGGGGCGGGGGCCTCCGGAGCGGCCGGCACGGGCGCTGCCGCGGGCACCGGGACCGGTGCTGCGGGTGCTGCGGGAGCCGGGACCGGTGCTGCGGGCGCCGGCACGGGGACGGCGGTCGGGACCTCGGCCGCCACCGGCGCTGCGGGCGCAGGGGCCACCGGAGCCGGTGCCGCCGGCGCAGGTGCGGGAGCTGCCGGTGCCGGTGCCGCGGGGGCGAGCGCGGGGGCCGGTGCGGGAGCTGCCGGGGCCGGTGCGGGAGCTGCCGGGGCCGGTGCGGCGACGGCGGCGAGCACCACCGCGGCCGGGGCCACCACGGTGACGCTCACCTCGGCCGGGACCGCGACGGCCGCGACGGGGACCGCGGCGACGGCCGCCGGAGCCACGGCTGCCGGGGCCACCGCCGCCGGCGTCTCCGGGGCGACGGTCGCCGCGTCCACCGGGGCCGTCGCCGCCGCTACGGTCGGCGTCGTCTCCGTCCTGGGCGCGATCGGCGACGCGGACGTCTCGCAGGAGATCCCGGACGGCCCGCTCCTGGCCGTCGAGTCGACGCCCTGGCCCACCACCGACGGTGACGAGGCCGCGGCATCGCCCGCGCCGAGCCCGGAGCCCAGCGAGGACCCCACCGACCCGGCGAACCTGCTCGTGGACCCGTCGGCGCAGGACGAGCTCGGTGTGGTGGACCCGGCGGTCGTCAGCGTGCTCGTGCCGCAGGCCGCCGAGGAGCTCCAGCCGCGGGCGACCGAGTACCTGACCTTCCAGGTGACCAACCCGGGCGGGCGTCCTGCCGTCGACGCCCACGTGCGGCTCACCCTGCCGGCCGGCATGCAGCACGCCCGGGCCGCGACCGTCCGCGGTGCCGCGCCGGTGCCGCGCCCCCTGACGCTCGAGACTCTGCCCTGCACCGCGACCGCGCAGCCGCAGGAGGTGCTCTGCCGGCTCGGCACCATCGAGGCCGACGAGCTCGCCACGGTGCGGGTGCCCGTGTTCGTGCGCGACGGCGGCTCCTACGACGTCGTGGCCGAGGTCTGGGCGGAGGGTCTGGAGGCGCGCCGGCTGGCGCTGCCGCCCACCCGCGTCGACATGTTCGGCCCGGAGCTGACGACGCGGGCCGCCGACGTCGAGGTGGCGGCCAACCCCGGGCTGGCGGCTGTGCCGTTCTCGGTCCGCAACACCGGGGACCAGGTGACCGCCGAGGACTGGGCCGTCCGCGTCCGCGTCCCGGCCGGCCTCGTCCCGCACTCGGTGTCCGGGGGGCTGGGGTGCGAGGTGGCCGACGTCGGCGCGTGGCTCTGCACCGGCGGTGCGCTGCAGCCCGGCGAGGTCGTCGAGGCGACCGCGACGGTGGTCGCCGACGGCCGCACCGCGGCGGGCGCCTACGCCGTCGCGGTCGAGCCGACGGCGACCGACGGCCCGACCATCTCCTCGGCGTCCTCGGTCGAGGTGCCGAGGGGCTGGGCCGGGGTCCTCGCCGGGGTCGGCGGGATCCGGGCCGAGTGCCGCGCCACGGGTGGCGTCGGCGAGGCCGACGCGGTGGTGATCGGCAGCTACACGAACACGACGGGGCGGACGGTCACCGCGGTGCTGCGTGCCGCCGGGTCCACGGCGTCGAAGAACCCGGAGCTGGCACCGGGGGAGCGGGCCACGCTCACGGTCCCCGACGGTCTGCGCGTGCCGGCGGGCAGCGGCTCGTGGACGGTCTCGACGACCGTGGCGGGCGTGACCTACAGCCGCACGGTGGGCTCCGGGACGCACGGCGCGGCCGAGTGCTACGACCCGCGCTGGGACGTGGAGACCTCCGCTCGGGTGGTCAACGACGGCGGCCGCGTGACGGTCCAGGGCACGATCGTGAACCATGGCGACGAGCCGATGCAGGCCGGGATGTCGGCGCTCGGGTCCGAGGCCGACCGCATCCGGCTCGACGCCGGCGAGCGCAGCACGTTCTCCGTCGCCACCGGCAGCACCAGCACGGACGCGGGCGAGGTGTCCTTCGACCTGTACCGGTGGGTCACCGACGCCGACGGGGACCAGCCCGCTGCGGGCGTCGTGCCGGCCACCACGCCGACCGCGACGTTCCCGGCGGCGACGATCTCCCCGGCGGCGGGCAAGGTCGTGCCCGCCGGTGCCTGCCGCTACGACCCGGTCGCCGAGACGTCCACGCGCACCTTCACCGTCCCGCTCGACAACCGGGACTCGACGCTGCCGGTGGTGTTCACGATCGATCTCGGCGACCACGTCGAGGAGGTCCGGCTCGCCGGCGGAGAGTCCGCCCGGGTGGACGTGGACGTGCCGTGGGGCACCGGCGAGGCGGAGGTCCTGGCCGACGGCCGGCCGCTGGCCACGGTCGACCTGGAGTTCGCGGGCTGCTCGACCGCCCCGGACTGGCCGGACGCCGAGGTCGAGGCGGCGCCGCAGTGCGAGGGTGGCGACGCGCGGCTCGTGGTCGACGTGGTCGCCGACGGCGGGCGCACGTGGCGTGCGACGCTGCTGCGCGACGGCGACGCGGTCACGACCCGGAAGCTGCCGGCCGACGGCGCGGTCCGGTTCGTCGACGCCGCCGGCGGGGCGCGGCTCGATGCCGGAGCGGTCACGGTGCGCCTGACCCGGACCATCGAGGGCACCGCGTACTCCGTGCAGCGGACGGTCGAGCACGAGGGCACCTCGTGCATCGTCGTCGCCCCCGGGGCGTCGCTCGACGAGAGCGCTGTCCAGATGGACCGCTACGGCGACTACGCGAAGTCCTGGCGGGAGGTCGGCGTCGTCCTCGACAACACCGCGTCGACCGTGGACGTCGTCTTCCACGTCCACGGTCCCCGAGGGCTGGACACCGACGTGGCGGTGCCGGCCGGGACGACCCGCACCGTCGAGCCGCGACGGATCGACGGCCGCCAGGGCGGACGGTGGACCGTGTCCGCCGGGAGCTGGTCGACCGCTCTCGAGGCCGACACGTTCACCGCCGCCGAGGCCGGCTGGTGCAGCCCGCGCATCGCCTGGGGCGAGCACTACGAGGCCGGTGACGTGCGCTCCTGGAACGGCTTCGACTACCGCTACGAGGGCTGGGACGACGAGGGGCTGCCTGCGGCGGACCGGAGCCGGGCTGCGGAGAAGAAGGGGCGCGGCCAGGGCGGCGCCGACGAGTCGTGGTACGACGCCGCCGAGTGGGAGGGCGTCTGGATGGGCCAGTGGCGCCAGTGGGAGCGGGTCGGGCTCTGCGAGTACCGCTGA	MTDVYVGSGGTAPSDGELILEVRGGSLDAYGALYERHSGAARVLARQYVRCDGDADDVVSDAFQRVLGMLQQGNGPDTHFRAYLFTVVRRLAADVAHGARRTRPTADDGTFEHALGPSASPEDPALAGFENSVVARAYESLPERWQAVLWYTEVEGLSPAEVAPILGLTPNGVSALAYRAREGLRVGYLQQHLSSEPADSCRVVNPLLGGYVRGSLARREVTKVDRHLEVCAECRTLVLELGDVAHGMRAVVAPLVVGLAGTAILGALPLGAATFGAGAGAGAGAGVAGAGASGAAGTGAAAGTGTGAAGAAGAGTGAAGAGTGTAVGTSAATGAAGAGATGAGAAGAGAGAAGAGAAGASAGAGAGAAGAGAGAAGAGAATAASTTAAGATTVTLTSAGTATAATGTAATAAGATAAGATAAGVSGATVAASTGAVAAATVGVVSVLGAIGDADVSQEIPDGPLLAVESTPWPTTDGDEAAASPAPSPEPSEDPTDPANLLVDPSAQDELGVVDPAVVSVLVPQAAEELQPRATEYLTFQVTNPGGRPAVDAHVRLTLPAGMQHARAATVRGAAPVPRPLTLETLPCTATAQPQEVLCRLGTIEADELATVRVPVFVRDGGSYDVVAEVWAEGLEARRLALPPTRVDMFGPELTTRAADVEVAANPGLAAVPFSVRNTGDQVTAEDWAVRVRVPAGLVPHSVSGGLGCEVADVGAWLCTGGALQPGEVVEATATVVADGRTAAGAYAVAVEPTATDGPTISSASSVEVPRGWAGVLAGVGGIRAECRATGGVGEADAVVIGSYTNTTGRTVTAVLRAAGSTASKNPELAPGERATLTVPDGLRVPAGSGSWTVSTTVAGVTYSRTVGSGTHGAAECYDPRWDVETSARVVNDGGRVTVQGTIVNHGDEPMQAGMSALGSEADRIRLDAGERSTFSVATGSTSTDAGEVSFDLYRWVTDADGDQPAAGVVPATTPTATFPAATISPAAGKVVPAGACRYDPVAETSTRTFTVPLDNRDSTLPVVFTIDLGDHVEEVRLAGGESARVDVDVPWGTGEAEVLADGRPLATVDLEFAGCSTAPDWPDAEVEAAPQCEGGDARLVVDVVADGGRTWRATLLRDGDAVTTRKLPADGAVRFVDAAGGARLDAGAVTVRLTRTIEGTAYSVQRTVEHEGTSCIVVAPGASLDESAVQMDRYGDYAKSWREVGVVLDNTASTVDVVFHVHGPRGLDTDVAVPAGTTRTVEPRRIDGRQGGRWTVSAGSWSTALEADTFTAAEAGWCSPRIAWGEHYEAGDVRSWNGFDYRYEGWDDEGLPAADRSRAAEKKGRGQGGADESWYDAAEWEGVWMGQWRQWERVGLCEYR	PGPT0022155_2244	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_V_SECRETION_SYSTEMS	CE-T5c_TRIMERIC_AUTOTRANSPORTER_ADHESINS-SECRETION,PGPT0022155-ata|sadA|emaA-K21449	NA	NA
AK001_03282	762			hypothetical protein	ATGAGCCTGCCCACCGGCGACACCTTTGCCGTCGACACGCGCGAACGCTGGCGCACCATGAGCCTGACCGAGGTCTGGCTGCGCCCGGGCGACTGGTACCACCCTGCGGTGGACGCCGTGGTCGAGGCGATCATCGACGGCAGGTCGCCCGAGGCTCCCGCGCACCGCCTCGGCGGGGCACGCAGCGCCGCCGGCATCGGCCTCGACGAGACCCTCGAGGACGTCGCCTGCCTGTACCGCACGGTGGGCGCCCCCGTGGACGTCGACGTGGTCCGCGGCGCGGCGCTGGGCTGGGTGCAGGGCCGTGACGGTCGCCCCACCCTGAGCGGGGTGCGCGATCCGGCGACCGGCCTGCCGACCGCCGACTACCTCGGTGAACGGCTCCGCGAGACCTACGGCCGGGCGGCGCGGGACACCGCCGCGGTGACCGACTCGCACTGCCTCGTCGTCGTCGACGTCGCGGTCGAGGCTCTCGACCCGTGGCAGCGCATGGCGCGGGCCGCCTCGGTCGGCCGGACGCTGGACCAGGTCTTCGGCGACGGGCACCCCATGGCCTCGTTGAGCGACGGCGTCTTCACCGTGCTGTGCGAACGCACGCCCGACCTCCCCCGCCTGTCCCAGAGCGTGCGCCGCATCATCGAGCGCAACGCCCAGATCCTCGGGGTCGCCGAGACGATGCGGCGACCGGTCCGGGTGTGGATGGAGCGGCTGCCGCAGGACCACGCGGCGGCGCTGAACCTGCTCGAGCACCTGCGGCGCTGA	MSLPTGDTFAVDTRERWRTMSLTEVWLRPGDWYHPAVDAVVEAIIDGRSPEAPAHRLGGARSAAGIGLDETLEDVACLYRTVGAPVDVDVVRGAALGWVQGRDGRPTLSGVRDPATGLPTADYLGERLRETYGRAARDTAAVTDSHCLVVVDVAVEALDPWQRMARAASVGRTLDQVFGDGHPMASLSDGVFTVLCERTPDLPRLSQSVRRIIERNAQILGVAETMRRPVRVWMERLPQDHAAALNLLEHLRR				NA	NA	NA	NA	NA
AK001_03283	309			hypothetical protein	ATGACCACGCTGATGGAGATGCCCGAGGTCACCGAGTGTTCGGTGGACGGCTGCAGCTACAACCACGACCACGACTGCCACGCGGGTGCCGTCACCATCGCCGGGGTCCCCGGCGACGCCGCCTGCGCGACGTTCATCCCGCTGGGCACCAAGGGTGGCCTCGACAAGGTCGTCGCCCACGTCGGCGCGTGCCAGCGCCTCGACTGCGTGCACAACAAGGATCTCGAGTGCTCGGCCTCGTCGATCCGCGTCGGCGCCGGTCCGCAGGACGACCGCCACGCCGACTGCCTGACGTTCAGCCAGGCCTGA	MTTLMEMPEVTECSVDGCSYNHDHDCHAGAVTIAGVPGDAACATFIPLGTKGGLDKVVAHVGACQRLDCVHNKDLECSASSIRVGAGPQDDRHADCLTFSQA				NA	NA	NA	NA	NA
AK001_03284	468			hypothetical protein	ATGGTCACCGACGACGCACCCGTGCTCACGGTCTCGCAGGCCGCGCAGCTCTCCGGCATGCACCCCCAGACCCTGCGGCAGTACGACCGGCTCGGACTGGTGGTCCCCCGGCGTGCCCGGGGGAGGGGTCGGCGCTACTCGCGGCGCGACGTCGCGCGGCTGCTCGAGGTGCAGCGCCTCGCCCAGGAGGAGGGCATCAACCTCGCCGGGATCAAGCGGATCCTCGACCTGGAGCACCAGGTCCTCCAGCTCGAGCGGCGGCTCTCCGAGCTCGCGGGGCTGATCGCCGCCCGCGAGGAGGCGGAGGGGCGCGTCTTCGCCGCCGGGTCCGGCGGCGACGTCGTGGCCGTCCCGCTGGGCCGGCGGGTGCGGCGCTCCGAGCTGCGCCTCGACGTCGACACCCGCCGTGAGCGCGGCGGCGCTCTGGTGCTGTGGCGACCCTCCGGCGGGCGCGGTCGGTCCGCGTGA	MVTDDAPVLTVSQAAQLSGMHPQTLRQYDRLGLVVPRRARGRGRRYSRRDVARLLEVQRLAQEEGINLAGIKRILDLEHQVLQLERRLSELAGLIAAREEAEGRVFAAGSGGDVVAVPLGRRVRRSELRLDVDTRRERGGALVLWRPSGGRGRSA	PGPT0014625_224	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014625-hspR-K13640	NA	NA
AK001_03285	1005	cbpA	COG2214	Curved DNA-binding protein	GTGACCGGCCAGGACTGGATCGAGAAGGACTTCTACGCCGCGCTCGGCGTTCCCAAGGACGCCGACGAGGCGGCCCTGAAGAAGGCGTACCGCAAGCTGGCGCGCCAGTACCACCCGGACCAGAACCCGGGTGACGCCGCCGCCGAGGCGAAGTTCAAGGAGATCGGCGAGGCCTACGCCGTGCTCTCCGACCCCGAGCAGCGGCAGCAGTACGACGCGCTGCGCTCCATGGCCGGCGGCGGCGCCCGGTTCGCCGGGGCCCCCGGAGGCGGCGCCGGCCAGGCCGGGTTCGAGGACGTCTTCAGCTCGATGTTCGGCGGCGGCGCCGGGCGGGCCGGCGGCCCGGGCGGGCCGCGTGTCCAGTACCAGCAGACCGGCGGGTTCGAGGACATCCTCGGCTCGATGTTCGGCGGCGGGATGGGCGGACGCTCGGCCGGTTTCGGCGGCCCGCAGCGCCAGAAGGGCGCCGACGTCGAGACCCGCGCGACGCTGCCCTTCCGCGCCGCGGTCGAGGGCACGACGGTCGAGCTGACCGTCGACGGCCGGACGATGACCGCGCGCATCCCGGCGGGGGTCCACGACGGGCAGAAGATCCGTCTGCGCGGCAAGGGCCGTCCGGGCATGAACGGCGGGCCCGACGGCGACCTCCTGATCGCCGTGCACGTCGAGACCCATCCCGTGTACACGATGGACGGCGTCAACCTGCGCATGACCCTGCCGGTCACGTTCGCCGAGGCGGCGCTGGGCACGACCGTCGAGGTCCCGACGCTCTCGGGCGAGACGGTGCGGCTCAAGGTCGCGGCCGGGACGCCGTCGGGCCGGGTGCTGCGGGTCAAGGGCCGGGGCGTCGCGACCAAGAAGCGCACCGGCGACCTGCTCGCCACGATCCAGGTCGTGGTGCCGCAGAAGCTCAGCCGCTCGGCAAAGAAGGCGCTGGAGGAGTTCGCCGCGGAGGTCGACACGGGCGACGTGCGCGCCGAGCTCGCCGCCAAGGCCGCGCAGTAG	MTGQDWIEKDFYAALGVPKDADEAALKKAYRKLARQYHPDQNPGDAAAEAKFKEIGEAYAVLSDPEQRQQYDALRSMAGGGARFAGAPGGGAGQAGFEDVFSSMFGGGAGRAGGPGGPRVQYQQTGGFEDILGSMFGGGMGGRSAGFGGPQRQKGADVETRATLPFRAAVEGTTVELTVDGRTMTARIPAGVHDGQKIRLRGKGRPGMNGGPDGDLLIAVHVETHPVYTMDGVNLRMTLPVTFAEAALGTTVEVPTLSGETVRLKVAAGTPSGRVLRVKGRGVATKKRTGDLLATIQVVVPQKLSRSAKKALEEFAAEVDTGDVRAELAAKAAQ	PGPT0014545_6318	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686	NA	NA
AK001_03286	657	grpE	COG0576	Protein GrpE	GTGACGTCCGACGAGACGCAGGGCACCCCCGAGCCGGAGGAGAACGCCGGCTCGGGGGACACCCCCTTCCACTTCAGCGACAAGCGCAAGGTCGACCCCGCCACGGGCCACAAGCGCGAGACGACCGAGGGCGGGACGCCTGCCGACGACGCCGCGACGTCGTCCGGCGAGGGCGACCCGCTGGAGGCGCTCGACTTCGAGCCCGCCGGCGAGGCCGCCGAGGACTCCGAGCTGCTGGCGGCCAAGGCCGAGGCGGCCGAGAACCTCGACGCGCTCCAGCGCGAGCGGGCGAGCTTCACGAACTACCGCAACCGGGCGCTGCGCGACCAGGAGGCCGCGCGCACCCAGGGCACCCAGGACGTCCTGGCGGCCCTGCTGCCGGTGCTCGACGACATCGAGCGTGCCAAGGCGCACGCCGAGCTGTCGGGCCCGATGGCGGCGATCGCGGAGAAGCTCGACGCGACGCTCGGCAAGTTCGGCATCGAGCGGTTCGGTGCCGTGGGCGAGGAGTTCGACCCGACCGTGCACGAGGCACTCATGCACAACACGGACGCCGACGCGCAGTCCACCACGGTCAACCTGGTGGTCGAGCCCGGCTACCGCATCGGTGACAAGGTGGTCCGCGCCGCCCGCGTGGGCGTCGTCGGCCCCGAGTGA	MTSDETQGTPEPEENAGSGDTPFHFSDKRKVDPATGHKRETTEGGTPADDAATSSGEGDPLEALDFEPAGEAAEDSELLAAKAEAAENLDALQRERASFTNYRNRALRDQEAARTQGTQDVLAALLPVLDDIERAKAHAELSGPMAAIAEKLDATLGKFGIERFGAVGEEFDPTVHEALMHNTDADAQSTTVNLVVEPGYRIGDKVVRAARVGVVGPE	PGPT0014650_2201	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687	NA	NA
AK001_03287	1890	dnaK	COG0443	Chaperone protein DnaK	ATGTCCCGTGCTGTCGGTATCGACCTCGGCACCACCAACTCGGTGGTCGCCGTCCTGGAGGGTGGCGAGCCCACCGTCATCGCCAACGCCGAGGGCGCCCGCACGACCCCGTCGGTCGTCGCGTTCTCCAAGACCGGTGAGGTCCTCGTCGGCGAGGTCGCCAAGCGCCAGGCCGTCACGAACGTCGACCGGACCATCTCCTCGGTCAAGCGCCACATGGGCACCGACTGGTCCACCGAGATCGACGACAAGAAGTACACCGCGCAGGAGATCAGCGCCCGCATCCTGGGCAAGCTGAAGCGCGACGCCGAGGAGTACCTGGGCGAGCCCGTCACCGACGCGGTCGTCACGGTCCCGGCGTACTTCAACGACGCCGAGCGCCAGGCCACCAAGGACGCCGGCCAGATCGCGGGCCTGAACGTCCAGCGCATCGTCAACGAGCCCACCGCGGCCGCCCTGGCCTACGGCCTCGACAAGTCCAAGCAGGACGAGCTCATCCTCGTCTTCGACCTCGGTGGCGGCACCTTCGACGTCTCCCTGCTCGAGGTCGGCAAGGACGACGACGACTTCTCGACCATCCAGGTCCGCGCCACCTCCGGCGACAACCGCCTCGGCGGCGACGACTGGGACCAGCGGATCGTCGAGCACCTCATCAAGCAGGTGAAGAACACCGAGGGCGTCGACCTGTCCAAGGACAAGATCGCCCTGCAGCGTCTGCGCGAGGCGGCCGAGCAGGCCAAGAAGGAGCTCTCCTCCGCGACGAGCACCAACATCTCGATGCAGTACCTGTCGATGAGCGAGAACGGCCCGGTCCACCTGGACGAGAAGCTGACCCGCGCGCAGTTCCAGCAGCTGACGCAGGACCTGGTCGACCGCACCAAGGAGCCGTTCCACGCCGTCATCCGCGACGCCGGCATCTCCGTCTCGGAGATCGACCACGTCGTGCTCGTCGGCGGCTCGACCCGCATGCCGGCCGTGGCCGACGTCGTGCGCGAGCTCACCGGTGGCAAGGACCCGAACAAGGGCGTCAACCCGGACGAGGTCGTCGCCGTCGGCGCCGCCCTGCAGGCCGGTGTCATCGGCGGTGAGCGCAAGGACGTGCTGCTCATCGACGTCACCCCGCTCTCCCTCGGCATCGAGACCAAGGGCGGCGTGATGACCAAGCTCATCGAGCGCAACACGGCCATCCCGACCAAGCGCAGCGAGATCTTCTCCACGGCCGAGGACAACCAGCCCTCGGTGGCGATCCAGGTGTTCCAGGGCGAGCGCGAGTTCACCCGGGACAACAAGCCGCTGGGCACCTTCGAGCTCACCGGCATCGCCCCGGCCCCGCGCGGCGTCCCGCAGATCGAGGTCACCTTCGACATCGACGCCAACGGCATCGTGCACGTGTCCGCCAAGGACCGCGGCACCGGCACCGAGCAGTCGATGAAGATCACCGGCGGCTCCGCGCTGCCGCAGGAGGACATCGACCGCATGGTCAAGGACGCCGAGGAGCACGCCGAGGAGGACAAGAAGCGTCGCGAGGAGGCCGAGACCCGCAACCAGGCGGAGTCCTTCGCCTACTCGATGGAGAAGCAGATCGCGGACAACCGCGACAAGCTCCCCGCCGACGTGGTCTCCGAGGTCGAGGGTGACATCGCCGCGGTGAAGACCGCCCTGGAGGGCGAGGACGCCGAGGCCATCAAGTCCGCCTACGAGAAGCTCGGCGCCTCCTCGCAGAAGATCGGCGAGGCGCTGTACTCGGCCGAGCAGGCCGCGGGTGCGGACGCGGGCGCCGAGGGCGCCACCGCCGGCGACGCGCCGTCGTCGGAGCAGGAGAGCTCCGACGAGGACGTCGTCGACGCCGAGATCGTGGACGACGAGGACGACAAGAAGGACTCCAAGTGA	MSRAVGIDLGTTNSVVAVLEGGEPTVIANAEGARTTPSVVAFSKTGEVLVGEVAKRQAVTNVDRTISSVKRHMGTDWSTEIDDKKYTAQEISARILGKLKRDAEEYLGEPVTDAVVTVPAYFNDAERQATKDAGQIAGLNVQRIVNEPTAAALAYGLDKSKQDELILVFDLGGGTFDVSLLEVGKDDDDFSTIQVRATSGDNRLGGDDWDQRIVEHLIKQVKNTEGVDLSKDKIALQRLREAAEQAKKELSSATSTNISMQYLSMSENGPVHLDEKLTRAQFQQLTQDLVDRTKEPFHAVIRDAGISVSEIDHVVLVGGSTRMPAVADVVRELTGGKDPNKGVNPDEVVAVGAALQAGVIGGERKDVLLIDVTPLSLGIETKGGVMTKLIERNTAIPTKRSEIFSTAEDNQPSVAIQVFQGEREFTRDNKPLGTFELTGIAPAPRGVPQIEVTFDIDANGIVHVSAKDRGTGTEQSMKITGGSALPQEDIDRMVKDAEEHAEEDKKRREEAETRNQAESFAYSMEKQIADNRDKLPADVVSEVEGDIAAVKTALEGEDAEAIKSAYEKLGASSQKIGEALYSAEQAAGADAGAEGATAGDAPSSEQESSDEDVVDAEIVDDEDDKKDSK	PGPT0014555_4610	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043	NA	NA
AK001_03288	1971			hypothetical protein	GTGAGCAAGCTCAGCAGCTTCGTGTGGTCGATCGCGGACCAGCTGCGTGGCCCGTTCCAGCAGCACGAGTACGGGTCGGTGATCCTGCCGATGACGATCCTGCGCCGGCTGGACGCGATCCTCGAACCGCACAAGGAGGTTATCGCCGGCCTGATCGAGGGCGTCGACTCGGAGATTCGCCGCACCTCGGAGGTTCGCAAGGCGACGGGGCTGCGGTTCTACAACACGTCGAAGTTCACCCTGAACACGCTCCTCGCGGACCCGGACGGGCTGGAGGCGAACCTCACGGAGTACGTGAGCTCCTTCTCCTCGGCGATCGACGTGTTCGACCGGTTCAAGTTCACCGAGACCATCGCGGACCTCGCCGAGAAGAACCGGCTGTTCATCGTGGTGGAGCGGTTCGCGAAGGTCGACCTGCACCCGGACGTCCTGTCGAACTCGGACATGGGTGACCTGTTCGAGGACCTGATCCGACGATTCGCGGAAGCGTCCAACGCGACGGCCGGTGACCACTTCACCCCGCGTGATGCGGTCCGCCTCGTGGTGGACCTGCTGTTCGCCGAGGACGGCGCTGGCCTGGTGGACAAGGGAGTCATCCGCACCGTCTACGACCCGACGGCCGGTACCGGCGGCATGCTCTCTCTTGCCGAGGAGCACCTGCTAGCGCAGAACCCCGACGCTCGCCTACGCCTGTACGGGCAGGAGATCAACCCGCAGTCGTACGCGATCTGCAAATCCGACCTGCTCGCCAAGGGCCAGGACCCGGACAACATCAAGCTCGGCGACACCCTCGCCCACGACAAGTTCCCCGGCCGCACCTTCGACTACTGCCTGTCCAACCCGCCCTACGGGGTCGAGTGGAAGGCCGCGGAGAAGGCCGTCAAGGATGAGCACAAGCTCGGGTTCGCCGGCCGCTTCGGCCCCGGACTCCCCGGTGTGGGTGATGGGCAGATGCTGTTCCTGCTGCACCTGGCGGCCAAGATGCGCCCCCGCGGTGAGGGCGGCGGGCGCGTCGGCGTCGTGATGAACGGGTCCCCGCTGTTCAACGGCGGCGCCGGGTCGGGGCAGTCGGAGATCCGCCGCTGGCTGCTGGAGAACGACATGGTCGAGGCGATCGTCGCGCTGCCGAACGACATGTTCTACAACACCGGCATCTCCACCTACGTGTGGGTGCTCGACAACACCAAGGTCGACGAGCGGCGCGGCAAGGTCCAGCTCATCGACGCGTCCAAGCGCTCCACCAGGATGCGCAAGTCCCTCGGATCCAAGCGGGTCGAGATCAGCGACACCGACCGCAAGGACGTCGTCGCCACCTACGACGCGTTCGAGACCAGCGACACGTCGAAGATCTTCGACAACGAGGACTTCGGCTACTGGACCATCACGGTCGAGCGTCCGCTGCGCCTCAACTTCGCCTGCATCCCTGAACGCCTCAGCCGAGTGCGGGTGGAGCCAAAACTCAGGGCCACCGATCGTGACCGGCTCGCCGAGGTGCTGGCGACGTTCGGCGACGAGATCTACCGCAACCAGGACGAGTTCGCAGGACTCGTGGGCAAACACCTCGGATCGAACGGCGTGACCCTGACCCTGCCGCAGCGCCGAGCTCTGTGGCGCGCGCTCGGGGACCGGGACAAGACCGCCGACGAAGTTCCCGACGGCAAGGGCGGATTCGAACCCGACACCAAGCTCCGCGACACCGAGAACATCGCTTTCGGCTGGAACGACACCACCAAGACCGCCCACGCCGACGGCACCGCCCGCGACGTCATCGACGCCTACTTCGACGCCGAGGTCCGCCCCCACGTCCCCGACGCCTGGGTCGACCACACCAAGACCAAGGTCGGCTACGAGATCCCCTTCACCCGCCACTTCTACACCTACGTCCCCCCGCGCCCGCTCGAGGAGATCGACGCCGACCTCAACAAGGTCGTCGCCGAGATCATGGAACTCCTCCAGGAGGTCGAAGCATGA	MSKLSSFVWSIADQLRGPFQQHEYGSVILPMTILRRLDAILEPHKEVIAGLIEGVDSEIRRTSEVRKATGLRFYNTSKFTLNTLLADPDGLEANLTEYVSSFSSAIDVFDRFKFTETIADLAEKNRLFIVVERFAKVDLHPDVLSNSDMGDLFEDLIRRFAEASNATAGDHFTPRDAVRLVVDLLFAEDGAGLVDKGVIRTVYDPTAGTGGMLSLAEEHLLAQNPDARLRLYGQEINPQSYAICKSDLLAKGQDPDNIKLGDTLAHDKFPGRTFDYCLSNPPYGVEWKAAEKAVKDEHKLGFAGRFGPGLPGVGDGQMLFLLHLAAKMRPRGEGGGRVGVVMNGSPLFNGGAGSGQSEIRRWLLENDMVEAIVALPNDMFYNTGISTYVWVLDNTKVDERRGKVQLIDASKRSTRMRKSLGSKRVEISDTDRKDVVATYDAFETSDTSKIFDNEDFGYWTITVERPLRLNFACIPERLSRVRVEPKLRATDRDRLAEVLATFGDEIYRNQDEFAGLVGKHLGSNGVTLTLPQRRALWRALGDRDKTADEVPDGKGGFEPDTKLRDTENIAFGWNDTTKTAHADGTARDVIDAYFDAEVRPHVPDAWVDHTKTKVGYEIPFTRHFYTYVPPRPLEEIDADLNKVVAEIMELLQEVEA	PGPT0027180_1475	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027180-hsdM-K03427	NA	NA
AK001_03289	1257	hsdS	COG0732	Type-1 restriction enzyme EcoKI specificity protein	ATGAGCGGCCCGTTTGTCGAATTGCCGCTTAAACGACTCGCCGACTGCACGCTCGGAAAGATGGTTCAGTCCGGCCAGCGTGGCCCAGATGATGTCTTCGCGCCCTACTTACGCGCCGCCCACGTCCAACCCGACGGCCGTCTGATCGAACTCGACAAGCAGCCGATGTGGTTCTCGCCTGCCGAGGTTGATGCACTGGACCTTAGATCGGGCGACGTCGTCGTCGTCGAGGGAGGAGCTGGCTATGGGCGCTCCGCTGTCCTCACCCAGAATCTTCCGGGCTGGGGCTTCCAGAACTCGATTATCCGCGTGCGTCCACACGAGGGACGCACTGACGGGCGATTCATCGACTACACACTTCAGGCTGCACTTCAGTCTGGTCAGATCGAAAATCTCTGCAACACCGCGACTATCCCCCATTTCACCGCGGAGAAGGTTGCGAACCTTCAGATTCCTGCCCCCGCTCAACCTGAGCAGCGAGCGATCGCGGACTTCCTGGACGAGCAGACGTCGCGGATCGACACGCTGATCGGCAAGCAGACCCAGCTCATCGACACTCTCCGCGAACGCAGAATCGCGGTCATCGAAAGCGTCATCGAAGCGCGTGAACCGACCACGCTCGTAAGACGGCATGTGGTCGGTATTCGCCAGGGCGCAAGCCCGAACTGCCATGCCGAACCCGCAGACGGCATCTTGGAGTGGGGTGTCCTCAAGACCGGATGTTCGAACGGTGGAGTTTTCCGACCCGGAGAGAACAAGCGACTCCCTGAAACCGAGGCGCCTCGCCCCGAACACGTCGTCCGCCGTGGCGAAGTCGTGATGTCGCGGGCCAGCACGCGCGCATATGTCGGATCGGCGGCCGCAGTGAAAGATGACTTTCCGCGGCTAATGCTCAGCGACCTCAACTACGCCGTAACGGTTCGATCGACGCTCAACGCAGAGTACCTTGTATACGCGCTGGCAAGTCGACGAGCGCGTAGCGAAATCGAGAGTCGGACAAAGGGAACTAGCCCATCGATGCAGAAACTCTCTCAGGGCGACATCCTGAGCCTTCCGCTCCATGTTCCGCCGGTTGAGGACCAGGCGAGTGTCGTCGCCCGCTTGGACGCGCAGACCGCGCAAATAGACGCGCTGATCGCAAAGGCCGAGGAGTTCATCGGACTGGCGCGTGAGCGTCGGGCGGCGTTGATCACGGCTGCGGTGACAGGACAGATCGACGTGCGCACGGCGGGACGTACTGCGAGCGTGGGGGCGTGA	MSGPFVELPLKRLADCTLGKMVQSGQRGPDDVFAPYLRAAHVQPDGRLIELDKQPMWFSPAEVDALDLRSGDVVVVEGGAGYGRSAVLTQNLPGWGFQNSIIRVRPHEGRTDGRFIDYTLQAALQSGQIENLCNTATIPHFTAEKVANLQIPAPAQPEQRAIADFLDEQTSRIDTLIGKQTQLIDTLRERRIAVIESVIEAREPTTLVRRHVVGIRQGASPNCHAEPADGILEWGVLKTGCSNGGVFRPGENKRLPETEAPRPEHVVRRGEVVMSRASTRAYVGSAAAVKDDFPRLMLSDLNYAVTVRSTLNAEYLVYALASRRARSEIESRTKGTSPSMQKLSQGDILSLPLHVPPVEDQASVVARLDAQTAQIDALIAKAEEFIGLARERRAALITAAVTGQIDVRTAGRTASVGA	PGPT0027175_2584	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027175-hsdS-K01154	NA	NA
AK001_03290	3180			hypothetical protein	ATGGCGGACTACCAGGAGAAGTCGTTCGAGGCGGAACTGTGTGCTCACCTGGAGGTAAACGGCTGGTTGTACTCGCCGTCGGATCATGAGCCGGGTGCGGTGTACGACGCTGATCGGGCTCTGATCCCCGATGACGTCTTCACGTGGCTAGAGCAGACGCAACCGGTCGAGTTCGCGAAAGCGATCAAGGCAGGAACGTCACAGGAGCCGAAAGCTCGTGCGGCGCTGCTGGACCGCTTGTGCAAGGTGCTGGACACGGATGTCGCGCAGGGCGGCGGAACGTTGAACGTGCTGCGGCGCGGCTTCAAGCACGTCTCGTCGTCGTTGCGGATGTGCCAGTTCAAGCCGGCGACGACGCTCAACGCGACGACCACGGCTGACTATGCGGCCAACAAGGTCCGGGTGATGCGGCAGGTCCACTTCTCCACGAAGGACAACCGGTCATTGGACCTGGTGCTGTTCGTCAACGGGCTGCCGGTGGCGACGCTGGAGCTGAAGACGGACTTCACGCAGTCGGTGGATGATGCGAAGGAGCAGTACAAGAAGGACCGGCTCCCGAAGGACCCGGGCGGACATGTCCAGCCGCTGTTGGGGTTTGGCAATCGCGCGTTGGTGCACTTCGCGGTGTCCAACGAGGAAGTCTGGATGACCACGAAGCTGGCGGGTCCGAAGACGTACTTCCTGCCGTTCAACGCCGGGGACGGGCACGGCGGCAAGGGCAACGTTCCGAACCCGGCCGGGTCGGCGACGTCGTACCTCTGGGAGAAGGTCCTCGACCGGGACAACTGGCTGATGATCCTGGGCAAGTTCTGCCATGTCGAGACCCGGGACCGTCGCGACCCGATCACGGGTGCGGTGGAGAAGTCCACGACGCTGCTGTTTCCGCGGTTTCACCAGTGGGAGGCCGTCACCACGATGGTCGCCCATGCCCGCGAGAACGGGCCGGGGCACAAGTACCTGATCCAGCATTCGGCTGGGTCAGGCAAGACCAACTCGATCGCGTGGACGGCGCACCGCCTGGCCCGTCTGTTCGACGAGCAGGACCACAAGGTGTTCGACACGGTCATCGTGGTCACCGACCGCACCGTGCTGGACGACCAGCTCCAGACGGCGGTGCGGCAGATCGACGCCGCGGACACGGGCTCGTCCTCGGGCGAGGGCATCATCACCACGGTCGACGAAGTCGAGGCTCGCAAGCACGGATCCAAGTCCGGGGCGCTGGCGCAGGCCCTGACGGGCGGGAAGCTGATCGTGGTCGTCACCTTGCAGACGTTCCCGTTCGCGATGGATGCCATCGCGGAGAACGCCGGCCTGGCGGGCAAGACGTTCGCCGTCATCGCCGACGAGGCGCACTCCTCGCAGTCGGGTGCCACGGCGGGCAAGATCCGCGAGATCCTCTCCGACGCGGAGCTCGCCGATCTGGACGACGGCGGTGAGGTGTCCGCCGAGGACGAGCTGGCCGCCCAGATGACCGCGCGTGCCACGACGCCGAACGTGTCGTTCTTCGCGTTCACCGCGACCCCGAAGGCCAAGACCCTGGAGCTGTTCGGCACGCCGGACGCGGACCGGATCCCGCACCCGTTCCACATGTACACGATGAAGCAGGCCATCGAGGAGGAGTTCATCCTCGACGTGCTGCGCGGATACCAGACGTACGACACCGCGTTCGAGATCGCTCGCAAGACCGCCGTCGGGGCTGAGACGGCCGAATCGCGACCACGTGGAGAGAGCAGTCCGGAGGACACCTTCGAGGACATGCTCGTCGACCAGGCAGTCGCGACCAAGGGCCTGATGCGGTGGGTCAAGCTCCACCCGACGAACATCGCCCAGAAGTGCGCCATCATCGTCGAGCACTTCCGCCAGAACGTGGCCCACCTGCTCGACGGGCACGCCAAGGCGATGGTGGTCACCGACTCCCGCAAGGCCGCCGTCCGGTACAAGACGGAGATCGACGCCTACATCGCCAAGCACGGGTACACCGACATCGGCACGCTGGTCGCGTTCTCCGGCTCTGTCGACGACCCCCAGACCGGCCCGGAGCCGTTCACCGAGACGTCGATGAACCCCACCAAGGTCGGGACCCAGATTGCGTCCGCGTTCGCCGGCCCGCAGTACAAGGTCATGCTCGTCGCCAACAAGTTCCAGACCGGGTTCGACCAGCCGCTGCTGTGCGCGATGTACGTCGACAAGCGCCTCTCCGGCGTCCTGGCGGTCCAGACCTTGTCCCGTCTCAACCGCACCTACCGGGCACCGTCGGGCGAACGCAAGGACGTCACGTTCGTCCTGGACTTCGTCAACGACCCAGAGGAGATCCGGAAGTCGTTCGAGCCGTACTACACCGACGCCCGCCTTGAGATGACGACCGACCCCAACATCGTCCACGACATCTCCGCCAAGCTCGACCAGGCAGCGATCTTCACCGACGCCCAGGTCGACGCCTGCGCTGACGCATGGGTCGAGAGGGCAGGGAACAACGCCCTGGCGGCGACCATCAAGCCCGCCCGGGACGAGTACGCCAAGCGGTACTCCGACGCTCTCAAGCGCGACGACACGGCCGAGGTCGAAGCACTCGATCAGTTCCGCAAGGACGTCGCTACGTTCGTGCGGCTCTACGACTTCATGAGCCAGGTCGTCGACTACGCCGACACCCAGCTCGAGAAGCGCGCCATCTTCCTGCGCCTGCTCGAGCGGTACCTCCGCTCACCGTCCGAGACCGCGGAGATCGACCTGTCCGACGTCGTGCTCAAGAAGATCAAGCACACCAAGGGCGAGCAGCTCGACATCACCCTCGGGGACGGCACCGGACTCCGCGGCGTCGTCGCCGCCGGCTCCGGCTCCACCCCAGACCCCGTCCTCGTGGCGTTCCAGGCCGTCATCGACCGCCTCAACGACTTGTTCGGCTCCGAGTTTTCCCGCAGCCAGGTCGAAGGCTTCGTCGACACCCTCGGCGCCGTCCTCCTCGAGCACGAAGACCTCGTCGACCAAGCCAGGGCCAACTCCCGTGCCCAGTTCCTCGAATCGCCCGACCTGCCCGACGCCGTCGTCGACGCCGTGTTCTCCAACCAGCACTCGCACAACGCCATCGCCGACTACATCGCCTCCGGCCACGCTGATGCCGACAAGGTCATCAACGAGATCGGCGCCATGATCCACGCTGCGGTCACAACCGTGCCCCAGTGA	MADYQEKSFEAELCAHLEVNGWLYSPSDHEPGAVYDADRALIPDDVFTWLEQTQPVEFAKAIKAGTSQEPKARAALLDRLCKVLDTDVAQGGGTLNVLRRGFKHVSSSLRMCQFKPATTLNATTTADYAANKVRVMRQVHFSTKDNRSLDLVLFVNGLPVATLELKTDFTQSVDDAKEQYKKDRLPKDPGGHVQPLLGFGNRALVHFAVSNEEVWMTTKLAGPKTYFLPFNAGDGHGGKGNVPNPAGSATSYLWEKVLDRDNWLMILGKFCHVETRDRRDPITGAVEKSTTLLFPRFHQWEAVTTMVAHARENGPGHKYLIQHSAGSGKTNSIAWTAHRLARLFDEQDHKVFDTVIVVTDRTVLDDQLQTAVRQIDAADTGSSSGEGIITTVDEVEARKHGSKSGALAQALTGGKLIVVVTLQTFPFAMDAIAENAGLAGKTFAVIADEAHSSQSGATAGKIREILSDAELADLDDGGEVSAEDELAAQMTARATTPNVSFFAFTATPKAKTLELFGTPDADRIPHPFHMYTMKQAIEEEFILDVLRGYQTYDTAFEIARKTAVGAETAESRPRGESSPEDTFEDMLVDQAVATKGLMRWVKLHPTNIAQKCAIIVEHFRQNVAHLLDGHAKAMVVTDSRKAAVRYKTEIDAYIAKHGYTDIGTLVAFSGSVDDPQTGPEPFTETSMNPTKVGTQIASAFAGPQYKVMLVANKFQTGFDQPLLCAMYVDKRLSGVLAVQTLSRLNRTYRAPSGERKDVTFVLDFVNDPEEIRKSFEPYYTDARLEMTTDPNIVHDISAKLDQAAIFTDAQVDACADAWVERAGNNALAATIKPARDEYAKRYSDALKRDDTAEVEALDQFRKDVATFVRLYDFMSQVVDYADTQLEKRAIFLRLLERYLRSPSETAEIDLSDVVLKKIKHTKGEQLDITLGDGTGLRGVVAAGSGSTPDPVLVAFQAVIDRLNDLFGSEFSRSQVEGFVDTLGAVLLEHEDLVDQARANSRAQFLESPDLPDAVVDAVFSNQHSHNAIADYIASGHADADKVINEIGAMIHAAVTTVPQ	PGPT0027170_1653	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027170-hsdR-K01153	NA	NA
AK001_03291	2877			hypothetical protein	ATGGGACTGACCGACGACCTGAGCCGGACGCTCGGCACCGAGCGGGTGCTGACCAGGGCGCTCGATCGCCACGCGCGGGCTCATGATGCCTCCCACTACCTGCTCGTCCCGGAGGTCGTCGCCGTGGCGGAGGACGCCGGCGACGTGGCACGGACGATGACGACGGCCCGTGCGCACGCCACGCCGGTCACCTTCAGGTCCGGCGGCACGAGCCTGTCCGGGCAGGCCGCCGGAGCGGGCGTCCTGGTCGACACCCGACGCGGGTTCCGGCGAGTGGAGGTGCTCGACGACGGACGACGGGTCCGCGTCCAGCCCGGCGCCACGCTGCGCACGGTGAACGCCCGGCTCGCGCCGTTCGGCCGCGCGCTCGGTCCCGACCCTGCCAGCGAGGCGGCGTGCACGATCGGCGGCGTGATCGCCAACAACTCGTCCGGGATGGCGGCGGGGACGGAGCACAACAGCTATCGCACCCTGGAGTCGATGGTCGTGGTGCTCGCCTCGGGAACCGTCCTGGATACCGGGGCGCCCGGAGCGACGGACCGGCTGCGCGCCGAGGAGCCGGCGCTGTGCGCGGAGCTGGAGACCCTGCGCGACCGGGTGCGTTCCGACCCGGTCGTTGCGGAGGAGATCCGTCGACGGTTCGCCATGAAGAACACGATGGGCTACGCGCTCGACGCCTTCTGCGACTACAGCGACCCGGTCGACCTGCTGGCGCACCTGCTGGTCGGCTCCGAGGGGACGCTCGGCTTCGTGGCCGAGGCCGTGTTCCGCACTGTCCAGGTCCAGGGGGCCGCCGCGACAGGGCTGCTGGTGTTCGAGTCGGTCGATGACGCGACCCGCGCACTGCCCGCGCTGGTGGGCACCGGGGCGGCAGCGCTGGAGTTCATGGACTCGACCTCGTTGCGCGTCGCCCGGCGGTCCCCGGGGGCCCCCGAGTCGGTCACGGGCTTCCCTGTCGACGAGCACGCGGCGATCCTGGTCGAGTACCGCGCCGACGACGCGGACCTGCTCGCCGAGACCGTCGGAGCCGCCGAGGGGGTGCTCGACGGTCTCCCGACGGTCCTGCCGCTCCGCCTGACCCGTGACGATGCCGAACGAAGCGCGCTCTGGAAGGTGCGCAAGGGGCTCTACGCGACCGTCGCGGGGGCCCGGCCGCCGGGTACCACGGCTCTGCTCGAGGACATTGTGGTGCCCGTCGCCGAGCTCGCGGATACCTGTCGCGAGCTCCGTGACCTGCTGGCCGTGCACGGCTACGTCGACCCCGTCGTCTTCGGGCACGCGAAGGACGGAAACCTGCACTTCATGCTCACGCAGGACACGGAGGACCCGGCAGCCGTGTCGCGGCTGGCGGCGTTCACCGACGACCTCGTCGAGCTGGTGCTCCGGCACGGGGGCAACCTCAAGGCCGAGCACGGCACCGGCCGTGCGATGGCACCGTTCGTGGAGCGGCAGTACTCGCCCGCCCTGGTGGACGTCCTGTGGCGGGTCAAACGTGCCTTCGACCCGGCCGGGATCCTCAATCCCGGGGTCGTGCTCACCACGGACCGGCGCGCACACCTCACGGACCTCAAGCCGGTCGAGCCGGTCGACGCCGAGGTCGACCGGTGCGTCGAGTGCGGCTACTGCGAGCCGGTCTGCCCGAGCCGGGACCTGACGCTCACGCCACGGCAACGCATCGTGGCGCGGCGTGCCCGTGCCCGGGCCGAGGCACGTGGCGACGGCGCCCTGGTCGCCGAGCTCGACGAGCAGTTCGGCTACGACGGCGTGGACACCTGCGCGGCTGACGGCATGTGTGCGACGTCCTGCCCCGTCCAGATCGACACCGGTGCCCTCGTCAAGAGGCTGCGGCAGGAGCAGCGTGGCCGGTCCGAGCAGCGTGCATGGAGCGCCGCAGCATCGCACTGGGGCGCGGCGACCACGGTCGCCCGTGCCACGTTGAGCACCGCTGCTCGGCTCCCGGCGCCGTTCGTCCAGGTCCCGAACCGCGCGGCACGAGCCGTCGCGGGAGCCGACGACGTGCCGTGGTGGACGCCTGACTTGCCGGCAGGCGGCCGACCTCGCAGCCGGACCGACGGGGGCAGGGGGCTGCCGGGCGAGCCGGCGGCGATCTTCCTGCCCTCCTGCCAGGGTGCGATGTTCGCTCCGGCCACCGCGTCCGGCGGCGTCCAGACCGCGCTCGCCGTGCTGTGCCGCGCTGCCGGCGTCGGCCTCGTGCCGCTCGACGACGTCGACGCGCTGTGCTGCGGCACGCCGTGGTCGTCGAAGGGCTTCGACGACGGGCATCGTGTCATGGCCGAGCGCGTCCTCGATGCCGTCGACCGTGCTCGACGGGCGGCACGGCGATGGACCGGGCGGGACCTACCCGTCGTGGTCGACGCCACCTCGTGCACGGAGGGTGTAGCAGGTGTCATGGCGACCGCGCGTGCCTCGGGCGACCCGAGAGCCGCTCGCGTCGTCGACGCCGTTACGTTCGCCGTCGAGCACGTGCTGCCCCGCCTCGACATCGACGACGATCGTCGCGTCGACTCGGTGACGGTGCACCCGACCTGTTCCTCGACCCGTGCAGGGCTCGACGGTGACCTGCGTGTGCTGGCGAGTGCCGTCGCGCGCGACGTCCACGTGCCCGTCGACTGGGGATGCTGCGGGTTCGCCGGTGATCGCGGCATGCTCCACCCGGAGCTGACTGCCGCGGCGACGGCCGCGGAGGCTGCCGAGGTGTCGCGTCTGGCCGGTGCCGAACATGCGTCGTGCAACCGGGCCTGCGAGATCGGCATGAGCCGTGCGACCGGACGGTCCTACCGACATCTGCTCGAGATCGCCGCGGACGTCGTCGAGAGCTCAGTGTCGCTCGACGGTCCGGCCGTCGAGGTGGAGTGA	MGLTDDLSRTLGTERVLTRALDRHARAHDASHYLLVPEVVAVAEDAGDVARTMTTARAHATPVTFRSGGTSLSGQAAGAGVLVDTRRGFRRVEVLDDGRRVRVQPGATLRTVNARLAPFGRALGPDPASEAACTIGGVIANNSSGMAAGTEHNSYRTLESMVVVLASGTVLDTGAPGATDRLRAEEPALCAELETLRDRVRSDPVVAEEIRRRFAMKNTMGYALDAFCDYSDPVDLLAHLLVGSEGTLGFVAEAVFRTVQVQGAAATGLLVFESVDDATRALPALVGTGAAALEFMDSTSLRVARRSPGAPESVTGFPVDEHAAILVEYRADDADLLAETVGAAEGVLDGLPTVLPLRLTRDDAERSALWKVRKGLYATVAGARPPGTTALLEDIVVPVAELADTCRELRDLLAVHGYVDPVVFGHAKDGNLHFMLTQDTEDPAAVSRLAAFTDDLVELVLRHGGNLKAEHGTGRAMAPFVERQYSPALVDVLWRVKRAFDPAGILNPGVVLTTDRRAHLTDLKPVEPVDAEVDRCVECGYCEPVCPSRDLTLTPRQRIVARRARARAEARGDGALVAELDEQFGYDGVDTCAADGMCATSCPVQIDTGALVKRLRQEQRGRSEQRAWSAAASHWGAATTVARATLSTAARLPAPFVQVPNRAARAVAGADDVPWWTPDLPAGGRPRSRTDGGRGLPGEPAAIFLPSCQGAMFAPATASGGVQTALAVLCRAAGVGLVPLDDVDALCCGTPWSSKGFDDGHRVMAERVLDAVDRARRAARRWTGRDLPVVVDATSCTEGVAGVMATARASGDPRAARVVDAVTFAVEHVLPRLDIDDDRRVDSVTVHPTCSSTRAGLDGDLRVLASAVARDVHVPVDWGCCGFAGDRGMLHPELTAAATAAEAAEVSRLAGAEHASCNRACEIGMSRATGRSYRHLLEIAADVVESSVSLDGPAVEVE	PGPT0018110_416	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018110-dld2-K18930	NA	NA
AK001_03292	936	murK	COG2971	N-acetylmuramic acid/N-acetylglucosamine kinase	GTGATCACGATGGGTGTCGACCTCGGCGGGTCCGGGAGCCGGGTGGCGCTGAACCGCGGCGACGACGGCCCCCGGGAGGAGCTCGTCGGTCCGCCGATCGCCGTGGGGGAGACGGGCGCGACCGTCCCTGGGCTGCTGCAGCACCTCCTGCGGGAGGCTGCGACGCGGTGGCCCGTCGAGCTGTCGCAGGTCACCGGCGTCGGGGTCGGCGCCACCGGGCTCGCCTCCCTGGTCGAGAGCCCGTCGGCGGTCGCCGAGCAGGTCCGCACCGCGCTGGACGCGCCCGTCGTCGTCGCGATCGACGCCGTCGCCGCGCACCTTGGCGCCCTGGCAGGAGCCGAGGGGGCCGTCGTGGCGCTCGGCACCGGGGCGGTCGCCATCGGCCGGGGTGCGGACGGTCGGTGGCGGCGTGTCGACGGCTGGGGTCATCTCCTCGGCGACCGGGGCGGGGGCGCCTGGCTGGGACGTCGGGGTCTGGAGGCAGCGTTGCGAGCGTACGACGGGGTCGACGACGCCGGGTCCGCCCTGCTCGCGGCCGGCCGCCGCCGACTCGGCGAGCCGGTCACCTGGCCGGCCCAGCTCTACCCGCGGGCCGACCGTGCCGCGGTGCTGGCAGGCTTCGCCCCCGACGTCGTCGCCGCGGCGGCGACCGGGGACGAGGCTGCCCGGGCGCTCCTGACGGAGGCGGGCCGCGAGGCGGCCGACAGCGTCCTCGCCGCTCTCGATCCCGAGACGACGCCCCGGGTCGCCCTCACCGGTGGCCTGGCCAGGGCGGGAGGCGACCTGTCCGCCGGGTTCTCCGCACGCGTCGCGCAGCGCCGTCCGGACGTCGTCGTCCGCCCGCCGGCCGGGGACCCGCTCGACGGAGCGATGCACCTCGCGCGCCGTGCGGCGCGAGGCACGATCGTGACGCAGGAGGGATTCGTATGGGACTGA	MITMGVDLGGSGSRVALNRGDDGPREELVGPPIAVGETGATVPGLLQHLLREAATRWPVELSQVTGVGVGATGLASLVESPSAVAEQVRTALDAPVVVAIDAVAAHLGALAGAEGAVVALGTGAVAIGRGADGRWRRVDGWGHLLGDRGGGAWLGRRGLEAALRAYDGVDDAGSALLAAGRRRLGEPVTWPAQLYPRADRAAVLAGFAPDVVAAAATGDEAARALLTEAGREAADSVLAALDPETTPRVALTGGLARAGGDLSAGFSARVAQRRPDVVVRPPAGDPLDGAMHLARRAARGTIVTQEGFVWD				NA	NA	NA	NA	NA
AK001_03293	918	murQ	COG2103	N-acetylmuramic acid 6-phosphate etherase	ATGACGCGCACCCTCCCGCCCACCGAGTCCCGCAACCCCCGGTCCGAGGGGCTCGACGATCTCAGCACCGCGGAGGTCCTGCGTCTGCTCAACGCCGAGGACCGGCACGCCGTCGACGCCGTCGGGCAGGTGCTGCCCGACCTCGCCCACGTCGTGGACGTCGCCGCGGAACGCTTCCGGCGGGGCGGCACCGTCCACTACTTCGGCGCAGGGACATCGGGACGCCTCGGGGTGCTCGACGCCAGCGAGCTCCTGCCCACCTTCAACCTCGAGCCCGGACGGGTCGAGGGCCACGTCGCGGGTGGCGAGGCAGCGCTCGTGCAGGCCGTGGAGAACGCCGAGGACTCCGAAGCGGACGGACGCCGGGAGGCGGCGGGCCTGACCGCCGACGACCTCGCGATCGGGCTCGCGGCGAGCGGCTCGACGCCGTACGTCGGTGGAGCGCTCGCGGCCGCGCGTTCCGCCGGCGCGTACACGGTGCTGGTCTCGAGCAACCCGGAGGCCCCCCTGGAGGGTCTGGCGGACACGAACATCGTGCTGCCGACCGGCCCCGAGGTGATCACCGGTTCGACACGGCTGAAGGCCGGCACGGCGCAGAAGCTCGTGCTGAACGGCTTTTCCACCGCGCTCATGATCGCGGTCGGACGCACGTGGAAGAACCTCATGGTCTCGGTGGTGGCGACGAACGCGAAGCTGCGGGAACGGACCGTCCGCATCCTGCGCGAGGCGACCGGACTGGACGACACCGCCGCCCGCGAGCTCCTGGACCGCACCGACGGCGAGCTCAAGACGGCGATCGTCGTGGCGCTCGGCGGGATCGGTGTCGACCGGTCGCGCGAGCTCCTCGGCACCTGGTCCGGTTCGGTCCGGGACGCGTTGACGGCCGCGTACGGCCGCGCACCGGAGGCACGCTCGTGA	MTRTLPPTESRNPRSEGLDDLSTAEVLRLLNAEDRHAVDAVGQVLPDLAHVVDVAAERFRRGGTVHYFGAGTSGRLGVLDASELLPTFNLEPGRVEGHVAGGEAALVQAVENAEDSEADGRREAAGLTADDLAIGLAASGSTPYVGGALAAARSAGAYTVLVSSNPEAPLEGLADTNIVLPTGPEVITGSTRLKAGTAQKLVLNGFSTALMIAVGRTWKNLMVSVVATNAKLRERTVRILREATGLDDTAARELLDRTDGELKTAIVVALGGIGVDRSRELLGTWSGSVRDALTAAYGRAPEARS	PGPT0019040_206	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION	CE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0019040-murQ-K07106	NA	NA
AK001_03294	1500			hypothetical protein	GTGCTGCACACAGTCGACCTCTTGGTCATCATCGCCTACCTCGCCGCGACCGCCTGGCTCGGTCTCAAGCTCAGCGGACGGCAGTCCGGGCTGCGGGACTACTTCCTCGGCGGCCGGAACCTTCCGTGGTGGGCGGTCTGCCTGTCCGTGGTCGCCACCGAGACCAGCGCCCTGACGGTGGTCGGGATCCCGGTGATGAGCTTCCTCGGGGACATCTCCTACCTGCAGGTGGCGATCGGCTACATCATCGGTCGCGTCATCGTGGCGTTCTTCATGCTGCCGCGCTACTACGACGGCGAGATGGTCACGGCCTACGCCTACCTGGGCAAGCGGTTCGGCCAGAGCACCCAGACGACGGCGGGCATCACCTTCCTCGTCACTCGGCTGATGGCCGACGGCGTGCGCGTGCTGGCCGCGGCGATCCCGCTGAAATTGATCCTCGACGGGATGGGGATCGAGACGAACTACTTCACGATCATCGTCGTGCTCGCGGTCGTGACGATCCTCTACACGTTCATCGGTGGCATCAAGGCCGTGGTGTGGGTCGATGTCGCGCAGATGTTCCTCTACGTGCTCGGGGGAGTCCTCACGATCGTCGTCGTGTCCGCCACCACCGGCGGCGGCTGGTTCACGGACGCCGCGGAGGCCGGCAAGCTCTCGATGTTCGTCTTCTCCGGAAACCCGATCTCGGACGCGTCGTCGTTCGTGCCCTCGCTCGTCGGCGGTGCCGTGTTCGCGATGGCTTCCCACGGCGCCGACCAGCTCGTGGTCCAGCGACTGCTGGCGTGCCGGACGAAGGTCGAGGCGCAGAAGGCGCTCATCTGGTCGGGGGTCGTGGTCTTCGTCCAGTTCGCCGTCTTCCTCGTCGTCGGCCTCGCCCTGTGGGGCTACTACGAGCAGCAGACCCCCGCGCAGCTCGGCCTGACCCGTGACGACGAGATCTTCCCGCTGTTCATCATCGAGGGGCTGCCGCAGGGCGTCTCGGGCCTGCTGCTCGCGGGCATCCTCGCAGCAGCGATGTCGACCCTGTCCTCCTCGCTGTCCGCGCTGTCCTCGTCGACGGTGACGGACGTCTACGGCCGGCTCAAGAAGTCGCCCGTCACGGACGCGCAGGGACTCCGCGTCGGGCGCTGGGCCACGATCGGTTGGGGCCTGGCCTTCATCGTCCCCGCGGCGTTCTTCCGGTCCGACGAAGGCAGCATCGTCATCCTGGCGCTGGGGATCGCCGGCATCACCTACGGCGGGCTGCTCGGTGCCTTCGTGTTCGGCATCGTCAACAAGCGTGCCGACGCGGTCGACGCCAACGTGGCCTTCGTGGTGGCGGTCGCCGTCAACGCGTTCTTCTTCGTGATGGAGAAGTTCGTCACGGGAGAGGTCTGGGTCGCCTGGCAGTGGTACCCGTTGCTCGGGGTGCTGGTGACGTTCGCCGTCGGCGGGCTGCTGTCGCTGCGTCACCCGGCCGCTGCCGTCGCCGCGCGTGACCGGGAGACCGTGCGATGA	MLHTVDLLVIIAYLAATAWLGLKLSGRQSGLRDYFLGGRNLPWWAVCLSVVATETSALTVVGIPVMSFLGDISYLQVAIGYIIGRVIVAFFMLPRYYDGEMVTAYAYLGKRFGQSTQTTAGITFLVTRLMADGVRVLAAAIPLKLILDGMGIETNYFTIIVVLAVVTILYTFIGGIKAVVWVDVAQMFLYVLGGVLTIVVVSATTGGGWFTDAAEAGKLSMFVFSGNPISDASSFVPSLVGGAVFAMASHGADQLVVQRLLACRTKVEAQKALIWSGVVVFVQFAVFLVVGLALWGYYEQQTPAQLGLTRDDEIFPLFIIEGLPQGVSGLLLAGILAAAMSTLSSSLSALSSSTVTDVYGRLKKSPVTDAQGLRVGRWATIGWGLAFIVPAAFFRSDEGSIVILALGIAGITYGGLLGAFVFGIVNKRADAVDANVAFVVAVAVNAFFFVMEKFVTGEVWVAWQWYPLLGVLVTFAVGGLLSLRHPAAAVAARDRETVR	PGPT0013955_3442	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013955-TC_SSS|yerK|opuE-K03307	NA	NA
AK001_03295	1182	anmK	COG2377	Anhydro-N-acetylmuramic acid kinase	ATGATCGTCGCGGGGACGATGGGTGGTACCTCGGCGGACGGGCTCGACGTGGCCCTGGTCGAGATCGGCCCGGAGGAAACGACGGACGACGCGCTGGTGATGCGTGTTCTGGCGACGCGTGAGGTGGCCTTCGACGACGCGCTCGCGCTCGACATCCTGCGCCTGATCGCGCCTGGCGACGTGCCGCTCGACCTGGTCAGCAGCGTCGACACGCGGCTCGGCCAGGCCTGTGCGGCGGCTGTCGACGAGCTGTGCCGGACGACCGGGCTCTCGTGCGAGCTCGTCGTGATGCACGGACAGACGATCCGGCACGACGTGGTGGACGGACGGGTCACGGGCACGTGGCAGATCGGCCAGCCTGCCTGGGTCGCCGAGACGACGGGAGCGCCCGTGCTGTCCGACGTCCGTGCGCGCGACGTCACCGCGGGCGGCCAAGGCGCTCCGCTCGCCGGGATCCTCGACGGGCTGCTCCTTGCGGGGGCCGAGGAGCCCTCTGCGCTGCTCAACCTCGGCGGCATCGCAAATCTCACCGTGGTCGCCCCGGGCCGTGACCTGGTCGCGTTCGACACGGGACCGGCGAACGCGCTGATCGACCTCATGGCCCGGCGCATCACCGGGGATCGGCGCGGGTACGACCGTGACGGAGCGCTGGCAGCCCGAGGGCAGGTCGACCCCGCGCTGCTCGACGACCTGCTCGCCGAGCCCTACTACGGTCGCGCGACCCCGAAGTCGACCGGCAAGGAGCTCTTCCACGGCGGCTATCTCGACCGGTACCTGGACGGGCGCCGGGACGTGTCGGATCTCGACGTGATCGCTACGCTCACCCGGCTCACCGCCCGCACGGTGGCCGACGCGTGCCGCCAGCACGACGTCCGGACGGTCGTCGCCTCCGGCGGCGGTACGCGCAACCCGTCGCTGATGGCTGCGCTGCGCGAGGAGCTCGGTCCCCGGGTGCCGCTCTCGACGACGGACGAGACTCTCGGCCTGCCCGAAGGTGCGAAGGAAGCCTGCCTCATGGCCCTCCTCGGATGGATGACGTGGCACGGCGTCCCCGCCACCACCCCGGCCGTGACCGGTGCGCGGCACGCCACGCTCGCCGGGCGCCTGACCCCCGGATCGGGTCCGCTCCGGTTGCCCGACCCGATCCCCCGCCCCCCGGTGCGACTGCGCGTCGCCCGCTGA	MIVAGTMGGTSADGLDVALVEIGPEETTDDALVMRVLATREVAFDDALALDILRLIAPGDVPLDLVSSVDTRLGQACAAAVDELCRTTGLSCELVVMHGQTIRHDVVDGRVTGTWQIGQPAWVAETTGAPVLSDVRARDVTAGGQGAPLAGILDGLLLAGAEEPSALLNLGGIANLTVVAPGRDLVAFDTGPANALIDLMARRITGDRRGYDRDGALAARGQVDPALLDDLLAEPYYGRATPKSTGKELFHGGYLDRYLDGRRDVSDLDVIATLTRLTARTVADACRQHDVRTVVASGGGTRNPSLMAALREELGPRVPLSTTDETLGLPEGAKEACLMALLGWMTWHGVPATTPAVTGARHATLAGRLTPGSGPLRLPDPIPRPPVRLRVAR				NA	NA	NA	NA	NA
AK001_03296	765	dasR	COG2188	HTH-type transcriptional repressor DasR	GTGGTCTTGATTTATGGGGTGAGTGTGTGCCTGAATGAACCGGTGACCAAGTACCACGCCGTCCGGGACCAGATCCTCGACCGCCTCGAACAGATGGCTGCCGGAGAGCAGCTGCCGCCGGAGCGCGATCTCGCTCCTGAGCTCGGCGTCTCGCGCATGACCCTGCGGCGCGCCATCGACGAGCTCGTGGCGCGCGGTGTCGTCCGGCGCCGGCACGGTGCGGGCGTGTTCGCCCTCGGACCCAAGGTGGACCAGGGGCTGATGGCGACCTCGTTCACTGCCGACATGCGCGCGCGGGGGCTGCGGGCAGGTTCTCGGGTGCTGGCCTTCGAGGTCGGCAGCGCCGGCGTCCGCATCGGGCGCAGGCTGCAGATCGACCCGGCGGAGGAGGTCGTGCAGATCACCCGTCTCCGGCTGGCCGACGACGTGCCGATGGCCCTCGAGGAGCTGCACGTGCCCCGGAGTCTCGTGCCCGGGCTCGTGGCGGAGGACCTCGAGGGCGGCTCCTTCTACGAGCTGCTGGACTCCCGCTACGGCCAGGTCGTCGCGCGCGGCGTCCAGACCATCGAGCCCACCGTGCTGGACGACCAGGAGGCCGGCGACCTCGACGTGCCCGTGCACTCGCCGGCCCTGCAGTTCGAGCGCACCTCCTGGAATCCCGACGGTGACGTGGTCGAGTTCGTCCGGTCGGTCTACCGCGGTGACCGCTACAAGATCCGCACCGAGCTGCCGGTGCGCGTCGGCCGGGACGGAGGATCGGCATGA	MVLIYGVSVCLNEPVTKYHAVRDQILDRLEQMAAGEQLPPERDLAPELGVSRMTLRRAIDELVARGVVRRRHGAGVFALGPKVDQGLMATSFTADMRARGLRAGSRVLAFEVGSAGVRIGRRLQIDPAEEVVQITRLRLADDVPMALEELHVPRSLVPGLVAEDLEGGSFYELLDSRYGQVVARGVQTIEPTVLDDQEAGDLDVPVHSPALQFERTSWNPDGDVVEFVRSVYRGDRYKIRTELPVRVGRDGGSA				NA	NA	NA	NA	NA
AK001_03297	1152	mrp	COG0489	Iron-sulfur cluster carrier protein	ATGAGCACCACCGATCTCGAGGCCCGCGTCCGCGACGCCCTGTCCGGGGTCGTCGACCCGGAGATCCGCCGCCCCCTGACCGAGCTGGACATGATCCGCTCGATCGAGGTCGAGGCCGCGCAGGACCCCGCGGACGGCGCCCACGTCACCGTGGGGGTGGACCTCACCATCGCCGGGTGCCCGATGAAGAACACGCTCGTGACCGACGTGACGGCGGCGACCCGCGCGGTCGAGGGCGTCGGCCGGGTCGACGTCGACCTGGGCGTCATGACCCCCGAGCAGCGCCAGTCGCTGCGGTCCCGGCTCCGGGGCGGCAGCGGGGACCCGAGCATCCCGTTCGCGCAGCCGGACAGCCTGACGAAGGTCTACGCGGTGGCCTCGGGCAAGGGCGGGGTCGGCAAGTCGAGCGTCACGGCCAACCTCGCCGCGGCGATGGCGGCCGACGGGCTCACCGTCGGGGTCGTCGACGCCGACATCTACGGCTTCTCCATCCCCCGCATGCTCGGCGTCGACCGGCAGCCCACCCGGGTCGACTCCATGCTGCTGCCGCCGATCGCGCACGGCGTCAAGGTGGTGTCCATCGGCATGTTCGTGCCCCAGGGCCAGCCGGTCGTGTGGCGCGGGCCCATGCTGCACCGCGCGCTCGAGCAGTTCCTCTCCGACGTGTTCTGGGGCGACCTGGACGTGCTGCTGCTCGACCTGCCGCCCGGCACCGGCGACATCGCCATCTCGGTCGCCCAGCTCCTGCCCGGCAGCGAGATCCTCGTGGTCACGACCCCCCAGACGGCCGCCGCCGAGGTTGCCGAGCGGGCCGGGTCGGTGGCCACCCAGACCTCGCAGGGCGTGATCGGCGTCGTCGAGAACATGTCGTGGCTGGAGCAGCACGACGGCACGCGCCTCGAGGTCTTCGGCGCCGGCGGCGGGAGCACCGTCGCGCAGCGGCTCAGCACCGTCGTCGGGCAGGACGTCCCGCTGCTCGGCCAGGTGCCGCTCGACGTGGCCGTGCGCGAGGGTGGTGACGAGGGCACCCCGGTCGTCCTCAGCGACCCGGAGGCTCCCGGGGCCCGTGTGCTGCGCGACGTCGCCCGGCAGCTCGCCGGGCGGGAGCGTGGCCTGGCCGGCCGCCGGCTCGGGGTCACCCCGGTCGGCTGA	MSTTDLEARVRDALSGVVDPEIRRPLTELDMIRSIEVEAAQDPADGAHVTVGVDLTIAGCPMKNTLVTDVTAATRAVEGVGRVDVDLGVMTPEQRQSLRSRLRGGSGDPSIPFAQPDSLTKVYAVASGKGGVGKSSVTANLAAAMAADGLTVGVVDADIYGFSIPRMLGVDRQPTRVDSMLLPPIAHGVKVVSIGMFVPQGQPVVWRGPMLHRALEQFLSDVFWGDLDVLLLDLPPGTGDIAISVAQLLPGSEILVVTTPQTAAAEVAERAGSVATQTSQGVIGVVENMSWLEQHDGTRLEVFGAGGGSTVAQRLSTVVGQDVPLLGQVPLDVAVREGGDEGTPVVLSDPEAPGARVLRDVARQLAGRERGLAGRRLGVTPVG	PGPT0013215_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528	NA	NA
AK001_03298	1230	galK	COG0153	Galactokinase	ATGACGTCTCCCGAGTGGCTCGAGTCCTGGTCCGCCGACGACGGCGCCGCACGCGTCCGCACCCTGTTCCGCGAGGTCTTCGGCAGCGACGCCGACCTCGACGGGGTCTGGTCCGCGCCGGGCCGCGTGAACCTGATCGGCGAGCACACCGACTACAACGCCGGCCTGGCCCTGCCGGTGGCTCTCCCCCACCGCACGTACGTGGCGCTGCGGGGCCGCCCGGACGACGTCGTGCGGCTCTCGTCCGCGCAGGCCCGGGGCGAGACCTGGGAGACCCGCCTGGCCGACGTCGCCCCCGGTGACACCAAGGGCTGGGGCGCCTACGTGGCCGGCGTGGCCTGGGCGCTGCGCGCCGCGGGGCACGACGTCGGAGGCTTCGACGCCGTCGTGGACTCCTGCGTCCCGTTCGGTGCCGGCCTGTCGTCCTCCGCGGCGCTCGAGTGCGCCGTCGCGGTGGCGCTCGACGCCGTGCACGGGCTCGGCCTCGCGGCCGACGACGCCGGTCGCGCCGACCTGGCCGCCGCGTGCGTGCGTGCCGAGAACGAGATCGCCGGGGCACCGACCGGCGGCATGGACCAGGCGGCGTCGCTGCGCTGCTCGACCGGCCACGCGCTCCTGCTCGACTGCCGGCCGGGCCTGTCCGCGCTGGAGTCGGCCGACGCCGTCCCGTTCGACCTCGCCGGGGCCGGTCTGACCCTGCTCGTGGTCGACACCCGCGCCGAGCACGCCCTGGTGGACGGCCAGTACGCCGCGCGACGCGCGTCCTGCGAGCGCGCCGCCGACACGCTCGGAGTCGGCTCGCTCAGGGAGATCTCCCCGGGCGATCTCGAGGAGCAGCTGACCCGGCTCGCGGAAGCCGACGACGGCGACGTGTTGCGCCGGCGGGTGCGTCACGTGGTCACCGAGATCGCCCGCACCGAGGACTTCGCGGCTCTCGTGCGCGACGGACGCGTCGACGAGGTCGGGCCGCTGATGAACGCCTCGCACGTCTCGTTGCGCGACGACTACGAGGTCTCGGCCCGCGAGCTGGACCTCGTCGTCGACACGGCGCTCGCCGCCGGCGCGCTCGGGGCCCGGATGACGGGTGGCGGCTTCGGCGGCTCGGCGATCGCGCTGGTGCGCGCCGATCAGGTCGACGCGGTCGCGGCCGCCGTGCACGAGGCGTTCGTCGCCGCCGGTCTCACGGCTCCCGGGTTCCTGCTCGCGCCGCCGTCGTCCCCGGCGCACTGA	MTSPEWLESWSADDGAARVRTLFREVFGSDADLDGVWSAPGRVNLIGEHTDYNAGLALPVALPHRTYVALRGRPDDVVRLSSAQARGETWETRLADVAPGDTKGWGAYVAGVAWALRAAGHDVGGFDAVVDSCVPFGAGLSSSAALECAVAVALDAVHGLGLAADDAGRADLAAACVRAENEIAGAPTGGMDQAASLRCSTGHALLLDCRPGLSALESADAVPFDLAGAGLTLLVVDTRAEHALVDGQYAARRASCERAADTLGVGSLREISPGDLEEQLTRLAEADDGDVLRRRVRHVVTEIARTEDFAALVRDGRVDEVGPLMNASHVSLRDDYEVSARELDLVVDTALAAGALGARMTGGGFGGSAIALVRADQVDAVAAAVHEAFVAAGLTAPGFLLAPPSSPAH	PGPT0017840_520	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017840-galM-K00849	NA	NA
AK001_03299	348			hypothetical protein	GTGACCACGCCGCACGACCGGCCCGACCGGTCCTCGACGGAGCGCATCGAGGACATCGCCGCGCTGGAGCAGGAGCTGGCCCGCGTCGTGGCCGAGGCGGAGGCCCGCCTGGCCGAGGTGCGTCGAGAGCTGGCCGAGCGGCGCCTGCAGGAGGCCCAGCACGCCGAGATCGACCGGCTCGAGGAGCATCTCGCCAACGCCACCGTGCGCTGGCGCGAGGTGGGGGAGTTCTTCGAGGACGCGCTGCAGCAGCTGCGTAGCGGTCGGCCCGACGACGAGCCTGCGCCGGGAGCGGCACCGGCGTCCGACGACCTGGGCCCGTCGCCGGCGGAGGACTCCCCGGCCTGA	MTTPHDRPDRSSTERIEDIAALEQELARVVAEAEARLAEVRRELAERRLQEAQHAEIDRLEEHLANATVRWREVGEFFEDALQQLRSGRPDDEPAPGAAPASDDLGPSPAEDSPA				NA	NA	NA	NA	NA
AK001_03300	1233			hypothetical protein	ATGACCGACGTCGTCCCCCAGACGTCCTTGACCGCCGCGAACGACGCGCAGGTCGAGCCGAAGCGTCTGCGCAGTCCTTTCGAACGGTTCGGGCTGACCGGCCGGCCGCTGCGCACCGCGAACTGGCTCGGCGTCGTCGCCGGCGTCTACGTGCTCATCACGGCCGTGGAGCTCATCGGCTCCGGGTTCAAGGCGTCGACGGGCAGCGCGGCCGAGGACCTCTTCGCGTTCGCGTCGAACCCGTTCGTGGCCCTCATGGTCGGCGTGCTGTTCACCGCCGCCACCCAGTCGAGCTCGACCACGACCTCGGTCACCGTCGGTCTCGTGGCCGGCGGGCTCCCGATCGAGATCGCGATCCCGATGCTCATGGGCGCCAACATCGGCACCACGCTGACCAACACGCTGGTCAGCCTGGGCATGGCGCGCGACCGGGAGAGCTTCCGGCGGGCCTTCTCCGCGGCGACCGTGCACGACTTCTTCAACCTGCTCGCCGTCGCGATCTTCCTCCCGCTCGAGATCGCGTTCGGCCTGCTGCAGCGTGCTTCCTCCTGGCTCGCCGCCTCCACCTCGGGCGGTGACGGCGGATTCGTCGCGACCGCCTTCTCCGCGGTCGGCACCGCCGTGGACACGGTCACCGAGCCGCTGGCGGACCTGCTCGAGGCCGGGACCTCGTTCCTGCCCGACCCCTGGCACGGGGTGCTGATGATCGTCCTCGGTATCGCGCTGATCCTGGGTGTCATCAACTGGCTCGGACGCCTGCTCAAGGTGCTCATGGTGGGCAAGGCCGCCGAGATGCTCCACGCGTCCGTGGGTCGCGGCCCGATCAGCGGCGTCGCCAGCGGCGCGGCCGTGACGATGATGGTCCAGTCCTCCTCGACGACGACGAGCCTGATGATCCCGCTGGCCGGTTCGGGGACCTTCTCCCTGAAGCAGGTCTACCCGTTCACCGTCGGCGCCAACATCGGCACCACGATCACCGCGCTCATCGCCGCCTTCGCCTTCACCGGTGCCGAGGGCGAGCTCGCGCTGCAGGCTGCGTTCGTGCACGTGCTGTTCAACGTCTTCGCCGCGCTGGTGATCTTCGGTCTGCCGCTCCTGCGTCAGGTGCCGCTGCGCGGGGCCGTGTGGCTGGGCGACGTCGCCGCCACGAACAAGCTCTGGGCGGCCGGTTGGGTGCTCGGTGTGTTCGTCGGCGTCCCGATGGCGCTCATCGCCCTGACCGCCGTCCTGTGA	MTDVVPQTSLTAANDAQVEPKRLRSPFERFGLTGRPLRTANWLGVVAGVYVLITAVELIGSGFKASTGSAAEDLFAFASNPFVALMVGVLFTAATQSSSTTTSVTVGLVAGGLPIEIAIPMLMGANIGTTLTNTLVSLGMARDRESFRRAFSAATVHDFFNLLAVAIFLPLEIAFGLLQRASSWLAASTSGGDGGFVATAFSAVGTAVDTVTEPLADLLEAGTSFLPDPWHGVLMIVLGIALILGVINWLGRLLKVLMVGKAAEMLHASVGRGPISGVASGAAVTMMVQSSSTTTSLMIPLAGSGTFSLKQVYPFTVGANIGTTITALIAAFAFTGAEGELALQAAFVHVLFNVFAALVIFGLPLLRQVPLRGAVWLGDVAATNKLWAAGWVLGVFVGVPMALIALTAVL				NA	NA	NA	NA	NA
AK001_03301	822	xthA	COG0708	Exodeoxyribonuclease III	ATGGCGCGCGTGCTGACTGTCGCCACCGCCAACGTCAACGGGATCCGAGCCGCCGTCCGCCGCGGCATCGACGACTGGATCGCCCGGTGGGATCCGGACGTCCTGCTCCTGCAGGAGGTCCGTGCTCCCGACGAGCTGGTCCGGGCCCACTTCGCCGACCGCCACGTCGCGCACGTGCCGAGCCGGCTCAAGGGACGGGCGGGTGTCGCGGTGGTCTCGCGGCTGCCCCTCGCCGCGGTGCGCGACGGCGTCGAGGCGGACGACGTCGCCGAGCCCGACGTCGACAGCGGGCGCTGGCTCGAGGCCGACCTCGAGCTCGGTGACGGGGGCCGTCTCACGGTCGTCTCGGCCTACCTCCACTCGGGGTCCGCCAAGCCCGGCCAGGAGCACACGATGACCGCGAAGTACGCCCATCTCGACAAGGTCTCCCGGCGGCTGGACGCGCTCGCCGCGGGGTCGGACCCGGTCCTGGTGGCGGGTGACGTGAACATCGCCCACCGCGAGGTCGACATCGCGAACTGGAAAGGCAACCTGAAGAGCTCGGGGTTCCTGCCGGACGAACGGGCGTACCTCGACCGCTGGTTCGAGGCGGGCTGGACGGACCTGGGCCGCGCCCACGGCGGCGAGGGGCCGGGGCCGTACACCTGGTGGACCTGGCGGGGGCAGGCGTTCGACAACGACCGGGGCTGGCGGATCGACTACCAGCTCGCCAACCCGCCGCTCGCGGACCGGGCTGTGAAGGTGCAGGTGGACCGGGCGCCGTCCTACGACGCGCGGTGGAGCGACCACGCCCCGGTGGTGGCGACCTACGACCTCGGCTGA	MARVLTVATANVNGIRAAVRRGIDDWIARWDPDVLLLQEVRAPDELVRAHFADRHVAHVPSRLKGRAGVAVVSRLPLAAVRDGVEADDVAEPDVDSGRWLEADLELGDGGRLTVVSAYLHSGSAKPGQEHTMTAKYAHLDKVSRRLDALAAGSDPVLVAGDVNIAHREVDIANWKGNLKSSGFLPDERAYLDRWFEAGWTDLGRAHGGEGPGPYTWWTWRGQAFDNDRGWRIDYQLANPPLADRAVKVQVDRAPSYDARWSDHAPVVATYDLG				NA	NA	NA	NA	NA
AK001_03302	483			hypothetical protein	ATGATCACCGTGCGACCGCACCTGTGGTTCGGGAACGACCGGGCGCTCGAGGCGGCGGCGTTCTACGCCGACCACATCCCCGGTTCCAGCGTGGACCGTGTGCTGACGGCATCGGAGGGCATCCCGGGAGCGACGGCGGGCGCTCCGTTCATCGTCGAGTTCACCGTCTGCGGGCTCGAGGTCGTGGGGCTCAACGCCGGACCCGCGCTGCAGCTCGACGAGGCGTTCAGCCTCTACCTGCTTTGCGACGACCAGGCGGAGGTCGACCACTACTGGGACCTCCTGACCGCCGACGGCGGCAAGCCCGGGCCGTGCGGCTGGTGCACGGACCGCTTCGGCGTGAGCTGGCAGGTGATCCCCCGCCAGCTCGAGGAGCTGTGCGGCGACTACACCACGGCCGCGAACCAGCGCACCGTGCAGGCCATGCTGCAGATGGGCAAGATCGACGTCGCGACGCTGGAGGCCGCCCACCGCGGTGAGTGA	MITVRPHLWFGNDRALEAAAFYADHIPGSSVDRVLTASEGIPGATAGAPFIVEFTVCGLEVVGLNAGPALQLDEAFSLYLLCDDQAEVDHYWDLLTADGGKPGPCGWCTDRFGVSWQVIPRQLEELCGDYTTAANQRTVQAMLQMGKIDVATLEAAHRGE				NA	NA	NA	NA	NA
AK001_03303	420			hypothetical protein	ATGCGCACCACACGCCTCTGGGCCACCGCCGCCACGGCCGCGTTGGCCGTCGGCACCCTGACCGCCTGCGGCGGCGACTCCCCCGAGGAGAACACCGCCGACGCCTGCACCGACTGGGACACCTACACGGCGGCCCTCGGCGATCTCGTCGGCACGCTCGGGTCCGAACCGACCGTCGGCGAGGTCGAGGACGCCCGCGACGCCGTCGACGACGCCTGGGACGACCTGGAGGAGTCGCTGGGCGACGTGGCCGAGGACCGCGCCGAGGAGCTGGAGAACGCCTGGGACGAGCTGAGCGACGCCGTCGACGACCTGGACGACGACGCCACGCTGGGCGAGGCCGCGCAGCAGATCTCCGCCCAGGCTCAGGAGGTGCAGTCCGCGAACACGGACGTCACCGCCGAGCTCGGCTGCGAGTAG	MRTTRLWATAATAALAVGTLTACGGDSPEENTADACTDWDTYTAALGDLVGTLGSEPTVGEVEDARDAVDDAWDDLEESLGDVAEDRAEELENAWDELSDAVDDLDDDATLGEAAQQISAQAQEVQSANTDVTAELGCE				NA	NA	NA	NA	NA
AK001_03304	882	folD	COG0190	Bifunctional protein FolD protein	GTGACCGCGCAGAAGCTGGACGGCAAGGCGACCGCCGCCGCGATCAAGGACGAGCTCCGCGGGCGTGTCGCCGCGCTGCGCGAGCAGGGGATCACGCCGGGCCTGGGCACGCTGCTCGTGGGCGACGACCCCGGCTCCCAGTGGTACGTCGCCGGCAAGCACCGCGACTGCGCCGAGGTCGGCATCGAGTCCCTCCGCGAGGACCTGCCGGCCGACGCCACGCAGGCCGACATCGAGGCCGCCGTCGCGCGCCTCAACGACGACCCGGCCTGCACCGGCTTCATCGTCCAGCTCCCGCTCCCGCCGGGGATCGACACGAACCGCGTCCTCGAGCTCGTCGACCCGGCCAAGGACGCCGACGGGCTGCACCCGACGAACCTGGGCCGGCTCGTGCTGCGCGTGAGCGGGGACATCACCTCCCCGCTGCCGTGCACGCCGCGCGGCATCGTCGAGCTGGTCGAGCGGCACGGCGTCGACTGGGCGGGCAAGGAGGTCGTGGTCCTCGGCCGCGGCGTGACCGTGGGCCGCCCGATCGGGCTGCTGCTGACCCGCAAGTCCGTCAACGCCACCGTGACGCTGACGCACACCGGCACCCGTGACCTGCCGGACCTGGTGCGCCGGGCCGACGTCGTGATCGCGGCGGCGGGGGTCGAGGGCATCGTCACCGCCGACATGGTCAAGCCGGGTGCGGTGCTCATCGACGTCGGCGTCTCGCGGCGCACCGACCCCGAGACCGGCAAGTCCCGGGTGGTGGGCGACATCGCGCCCGAGGCCCGCGAGCAGGCGGCCTGGTACTCGCCGAACCCCGGGGGAGTGGGCCCGATGACTCGGGCGATGCTCCTGGCGAACGTCGTCGACACCGCCGAGCGTCAGGCCGGTTGA	MTAQKLDGKATAAAIKDELRGRVAALREQGITPGLGTLLVGDDPGSQWYVAGKHRDCAEVGIESLREDLPADATQADIEAAVARLNDDPACTGFIVQLPLPPGIDTNRVLELVDPAKDADGLHPTNLGRLVLRVSGDITSPLPCTPRGIVELVERHGVDWAGKEVVVLGRGVTVGRPIGLLLTRKSVNATVTLTHTGTRDLPDLVRRADVVIAAAGVEGIVTADMVKPGAVLIDVGVSRRTDPETGKSRVVGDIAPEAREQAAWYSPNPGGVGPMTRAMLLANVVDTAERQAG	PGPT0008075_1548	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491	NA	NA
AK001_03305	1284	glyA1	COG0112	Serine hydroxymethyltransferase 1	ATGAGCACTCCCGACCCCACGTTCGACGCCCCTCTCGCCGAGGTCGACCCGGAGATCGCCGCCGTCCTCGACGGCGAGCTGGCCCGGCAGCGCGACACCCTCGAGATGATCGCGTCGGAGAACTTCGTCCCCCGCGCCGTGCTGCAGGCACAGGGCTCGGTGCTGACGAACAAGTACGCCGAGGGCTACCCCGGTCGCCGCTACTACGGCGGCTGCGAGCAGGTCGACATCGCGGAGAACCTCGCGATCGAGCGGGCCAAGGCGCTGTTCGGCGCCGAGTACGCCAACGTCCAGCCGCACTCCGGCGCCCAGGCGAACGCCGCCGTCCTGCACGCGCTCATCAAGCCCGGCGACAAGATCATGGGTCTCGAGCTGGCGCACGGCGGCCACCTCACGCACGGCATGAAGATCAACTTCTCCGGCAAGCTCTACGACGTCGCCGGGTACGGCGTCGACCCGCAGACCTACCGGATCGAGATGGACGAGGTGCGCAAGCGGGCCCTGGAGCACCGCCCCGACGTCATCATCGCCGGCTGGTCGGCCTACCCGCGCGAGCTCGACTTCGCGGCCTTCCGCGAGATCGCCGACGAGGTCGGCGCCAAGCTCTGGGTTGACATGGCCCACTTCGCCGGCCTCGTGGCCGCGGGTCTGCACCCGTCGCCGGTGCCGCACGCCGACGTCGTCTCCTCGACCGTGCACAAGACCATCGGCGGCCCGCGCTCCGGTTTCATCCTGTCCTCGGACGAGCACGCCAAGAAGCTCAACTCCGCGGTGTTCCCCGGCCAGCAGGGCGGCCCGCTCATGCACGTCATCGCCGGCAAGGCGGTGGCGTTCAAGATCGCGGGCACCGACGCGTTCGTCGAGCGTCAGGAGCGCACCCGCCGCGGCGCGCGCATCATCGCCGACCGTCTCGCCCAGGCCGACGTCGCCGAGACGGGGGTGTCGGTGCTCACCGGCGGCACCGACGTCCACCTGGTGCTCGTGGACCTGCGGAACTCCGCGATGGACGGCCAGCAGGCCGAGGACCTCCTGCACTCGGTCGGCATCACGGTGAACCGCAACGCGGTCCCGTTCGACCCGCGCCCGCCGCGCGTGACCTCGGGTCTGCGGATCGGTACCCCGGCGCTGGCGACCCGCGGGTTCGGCGACGCCGAGTTCACCGAGGTGGCCGACATCATCGCCGCCGCCCTGCGCGAGGGCACCGCGGCCGACGCCGAGGCGCTCAAGGCCCGCGTCGCGAAGCTCACCGCGGACTTCCCGCTCTACCCGGGGCTGTCCCAGTGA	MSTPDPTFDAPLAEVDPEIAAVLDGELARQRDTLEMIASENFVPRAVLQAQGSVLTNKYAEGYPGRRYYGGCEQVDIAENLAIERAKALFGAEYANVQPHSGAQANAAVLHALIKPGDKIMGLELAHGGHLTHGMKINFSGKLYDVAGYGVDPQTYRIEMDEVRKRALEHRPDVIIAGWSAYPRELDFAAFREIADEVGAKLWVDMAHFAGLVAAGLHPSPVPHADVVSSTVHKTIGGPRSGFILSSDEHAKKLNSAVFPGQQGGPLMHVIAGKAVAFKIAGTDAFVERQERTRRGARIIADRLAQADVAETGVSVLTGGTDVHLVLVDLRNSAMDGQQAEDLLHSVGITVNRNAVPFDPRPPRVTSGLRIGTPALATRGFGDAEFTEVADIIAAALREGTAADAEALKARVAKLTADFPLYPGLSQ	PGPT0008090_3305	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600	NA	NA
AK001_03307	1038	abn-ts		Intracellular endo-alpha-(1->5)-L-arabinanase	GTGAGCCGCTGGCGCGCCGTCGTCGGCCTCGTCGCCGTCGTCGTGATCGGTGCCGGGGTCGCGCTCGCCGCGCTCCGGCCCTGGCAGACGGCGAGCGAGCCCGAGCCGCTGGCCCTGGAGGGCGACCTGGCCGCCCACGACCCGGCGCTCGTCGTCGGGGACGAGGGCGAGCCCTGGTTCGTCTACTCCACCGGCGCCCCGGGCAAGTCCCGGGGCGCCCCGCTGGTCCACCGGTCCGACGACGGCGGGACCACCTGGGAGGCCGCCGGGACGGCCTGGTCGACCGACGAGGACCCGCAGTGGGTCCGCGACTCGATCGACGGTGTCGAGCACTTCTGGGCGCCGGAGCTCGTCGAGCACGACGGCACCTGGTACCTGTACTACTCGGCCTCGACCTTCGGCTCGAACACGTCGGCCATCGGACTGGCCACCGGGTCCACGCTGGACCCGGAGGACCCGGACTACGGCTGGACCCACCAGGGCGCGGTCTGGCGCTCGCAGGCCGGCGACCCCTACAACGCCATCGACCCCGGGGTGATCACGGACGCCGACGGCACGCCGTGGTTGTTCTACGGCTCCTTCTGGGAGGGCATCCACGTGCTGCCCCTCGACCGGCCCTCGGGGATGCCGGCGGAGGACGCCGACCCCGTGCAGGTGGCGAGCCGGCCCGGCGTCACGCACAACCCGATCGAGGCGCCGTACGTCGTCGAGCGGGACGGCTGGTACTACCTGTTCGTCTCGTGGGGGAAGTGCTGCTCCGGCGTCAGCTCGACCTACTCGATCCACGTCGGGCGCTCCCGCGACGTCACCGGTCCCTTCGTGGACGCCGACGGCGTGGACATGGCCGACGGCGGCGGGACGCTCGTGCTCGGGTCGCGCGACTCCCTGATCGGCCCGGGAGGGCAGTCCCTCTCGGGGGGCTACCTCGCTTACCACTTCTACGACGGCGACAACGCCGGCGCCCATCGGCTCGCGATCCAGCGGCTCGGCTGGGACGACGGCTGGCCGGTGGCGACGACGACGGTGCCGGAGCCCTGA	MSRWRAVVGLVAVVVIGAGVALAALRPWQTASEPEPLALEGDLAAHDPALVVGDEGEPWFVYSTGAPGKSRGAPLVHRSDDGGTTWEAAGTAWSTDEDPQWVRDSIDGVEHFWAPELVEHDGTWYLYYSASTFGSNTSAIGLATGSTLDPEDPDYGWTHQGAVWRSQAGDPYNAIDPGVITDADGTPWLFYGSFWEGIHVLPLDRPSGMPAEDADPVQVASRPGVTHNPIEAPYVVERDGWYYLFVSWGKCCSGVSSTYSIHVGRSRDVTGPFVDADGVDMADGGGTLVLGSRDSLIGPGGQSLSGGYLAYHFYDGDNAGAHRLAIQRLGWDDGWPVATTTVPEP	PGPT0019090_529	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ARABINANASE,PGPT0019090-abnA-K06113	NA	NA
AK001_03308	1515	abfA_1		Intracellular exo-alpha-(1->5)-L-arabinofuranosidase	ATGCTGTCCGCATCCGTCACCGTCGACCCGGCCTTCGTCGTCGGACCCGTGCGTCGTCGCACGTTCGGTTCGTTCGTCGAGCACCTGGGCCGTTCCGTCTACACCGGGATCCACGACCCCGAGCACCCGACCGCCGACGCCGACGGGTTCCGCGGCGACGTCGTCGAGCTCACCCGAGAGCTCGGCGTCTCGACCGTCCGCTACCCGGGCGGCAACTTCGTCTCCGGCTACCGCTGGGAGGACGGCATCGGCCCGGTCGAGGACCGCCCGCGCCGTCTCGACCTGGCCTGGCACTCCACCGACCCCAACCTGGTCGGGGTCGACGAGTTCATGCGCTGGGCCGAGCGCACCGGCGTCGAGCCCATGATGGCCGTCAACCTCGGCACGCGCGGCGTGCAGGAGGCGCTCGACCTGCTCGAGTACTGCAACGTCCCCGGCGGCACCGCCTGGAGCGACCTCCGTCGGGCGAACGGCGCCGAGGAGCCGTACCGCGTGTCGATGTGGTGCCTGGGCAACGAGATGGACGGGCCGTGGCAGATCGGCGCGAAGACCGCCGCCGAGTACGGCCGCCTCGCCGCCGAGACCGCGCGGGCCATGCGCATGATCGACCCGGACCTCGAGCTGGTCGTGTGCGGGTCGTCCAACTCCGGCATGCCCACCTTCGGCGCCTGGGAGCACACGGTGCTCACCGAGGCGTACGAGCACGTCGACCACGTCTCGGCGCACGCCTACTACTACGAGGAGGACGGCGACCTCGCCTCGTTCCTCGCGTCGGCCGTCGACATGGACCACTTCGTCGACTCCGTCGCGGCCACCGCCGACGCCGTGCGGGCAGCCGGCAAGCACACCAAGCGGATCCACATCTCGTTCGACGAGTGGAACGTCTGGTACCAGAAGCGCGCCGAGTCCCGTCCGCCGTCGGGCGACGACTGGCCGGTCGCACCCGTGCTCCTCGAGGACCGGTACAACGTGGCCGACGCCGTCGTGGTGGGCAACCTGCTCATCAGCCTGCTGCGGCACACCGACCGCGTGCACGCGGCCTCGCAGGCCCAGCTCGTCAACGTCATCGCGCCGATCATGACCGAGCCGGGCGGCCGGAGCTGGAAGCAGACGATCTTCCACCCGTTCGCCCTGACCTCCCGGCACGCGGCGGGCGAGGTGCTGCGTCTGGCGATCGACGCGCCGACGACCGACACGGCCCGCTTCGGCGAGGTCCCCGTGCTCGACGCCGTGGCCACCCACGACGCCGGGACCGGGGAGGTCGTGGTGCTGGCGACGAACCGGTCGGTCACCGACGAGGTCACGCTCGACGTCGACCTGCGCGGCTTCGAGGGGCTGCGGGTCGTCGAGGCGCTCACCCTGTCCAACCCCGACCACACCTGGACGGCCACCGCCGACGACGACTCGTCGGTCGCACCCCGGCCCAACGCGACCGCGCAGGTCGCCGACGGTCGGCTCGGCGCCGTCCTGCCGCCGGTGTCGTGGAGCATCGTCAGGCTCGGGCCCGCGGCGTGA	MLSASVTVDPAFVVGPVRRRTFGSFVEHLGRSVYTGIHDPEHPTADADGFRGDVVELTRELGVSTVRYPGGNFVSGYRWEDGIGPVEDRPRRLDLAWHSTDPNLVGVDEFMRWAERTGVEPMMAVNLGTRGVQEALDLLEYCNVPGGTAWSDLRRANGAEEPYRVSMWCLGNEMDGPWQIGAKTAAEYGRLAAETARAMRMIDPDLELVVCGSSNSGMPTFGAWEHTVLTEAYEHVDHVSAHAYYYEEDGDLASFLASAVDMDHFVDSVAATADAVRAAGKHTKRIHISFDEWNVWYQKRAESRPPSGDDWPVAPVLLEDRYNVADAVVVGNLLISLLRHTDRVHAASQAQLVNVIAPIMTEPGGRSWKQTIFHPFALTSRHAAGEVLRLAIDAPTTDTARFGEVPVLDAVATHDAGTGEVVVLATNRSVTDEVTLDVDLRGFEGLRVVEALTLSNPDHTWTATADDDSSVAPRPNATAQVADGRLGAVLPPVSWSIVRLGPAA	PGPT0018655_1402	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209	NA	NA
AK001_03309	909	araQ_8	COG0395	L-arabinose transport system permease protein AraQ	ATGACTACGGACCTCGAGACGACCCAGGCCCCGTCGCGTCGTACCCGGCGCGCGAGCTCCAAGAACAGCCGGCGGATCGGTTCGCACGCGTTCCTGCTGATCATGGCGCTGTACTTCGTCATCCCGCTGTGGTTCCTCATCGTCGGCTCGACCAAGTCCAACAGCGGGCTGTTCGTCGGGTCCGGCGGGGCGCTGTGGTTCAACGACGAGTTCAACCTCGTCGAGAACATCCGCGGGCTCTTCGAGCACCAGGGCGGGATCTACTGGATCTGGCTGCGCAACTCGTTCGTCTACGCCTTCGCCGGCGGGGTGGGCGCCACCGTGCTGGCGGTCTTCGCCGGGTACGGCCTGGCCAAGTACCGGTTCCGGGGACGCGGTGCCTACTTCACCGTGCTGCTCGGGTCCGTCATGGTGCCGCTGACGGCGCTGACGATCCCCACGTTCGTGCTGCTCAGCGACATCGGCCTGATCAACACCATGTGGGCGGTCATCCTGCCCTCCCTGCTCAGCCCGATCGGCGTCTACCTGATCCGCGTCTACTCCCAGGACGCGATCCCGGACGAGATGCTCGACGCGGGTCGCGTGGACGGCGCCGGGGAGCTGCGGCTCTTCTTCCGGGTGTCGTTGCCGCTGCTGCGTCCCGCCATGGTGACGGTGCTGCTGCTCGCGACGGTGTTCAGCTGGAACAACTTCTTCCTCCCGCTGGCCGTGCTGCGCGACACCGACCTGCTGCCGGTGACGGTCGGCCTGAATCAGTGGCAGGCCCTGTCGAACGCCGGTGCCGGCGGCGAGCAGGTGTGGAACCTCATCGTCACCGGTGCGCTGGTGTCGATCATCCCGCTGATCGCCGCGTTCCTCGGCCTGCAGAAGTACTGGCAGGGCGGGCTCTCCCTCGGGTCGATCAAGTAG	MTTDLETTQAPSRRTRRASSKNSRRIGSHAFLLIMALYFVIPLWFLIVGSTKSNSGLFVGSGGALWFNDEFNLVENIRGLFEHQGGIYWIWLRNSFVYAFAGGVGATVLAVFAGYGLAKYRFRGRGAYFTVLLGSVMVPLTALTIPTFVLLSDIGLINTMWAVILPSLLSPIGVYLIRVYSQDAIPDEMLDAGRVDGAGELRLFFRVSLPLLRPAMVTVLLLATVFSWNNFFLPLAVLRDTDLLPVTVGLNQWQALSNAGAGGEQVWNLIVTGALVSIIPLIAAFLGLQKYWQGGLSLGSIK	PGPT0016540_1155	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026	NA	NA
AK001_03310	981	lacF_12		Lactose transport system permease protein LacF	ATGACAACGTCGTCGACGGCAGTCGACCAGACTGCCGGACCCGCGGCTGCGGGTGCACGCGGCGGCAAGCTCCGCAGGAGCTCGTCCACCAGCACCATCGACAGCAAGCGGCAGTGGTGGGGATGGATCTTCACCACCCCGTTCACCATCGTCTTCGTGCTGTTCCTCATCGTGCCGCTCTCCTACGCGTTCTGGATGAGCCTGCACAACAAGGGGATCGCCACCGGCGGTGAGTCGGTCTTCGTCGGGATCGACAACTACGTCCGCGCCTTCACCGACCCGATCTTCCTCGACGGGCTGCTGCTGGTGGCACGGTTCGTGGCCGTGATGGTCCCGATCCAGATCGGCGTCGCGCTGCTGTGCGCGCTGGTGCTCGACACGCTCGCCACGCAGCTCAGCAAGGCCTCGCGGCTGCTCATCTTCGTGCCGTACGCCGTCCCGGCGGTCATCGGCGCCCTGATGTGGGGCTTCCTCTACAGCCCGCGCTTCGGGCCCGCCCAGGACCTCTTCGGGCTCTTCGGCCTCACGGCGCCCGACTTCCTCAGCTCGTCGATGATCTTCACCTCGCTGGTGAACATCGTGACGTGGCAGTGGGTCGGCTACTACATGATCATCATCTACGCCGCCCTGCGGACCATCGACCCCTCGGTCTACGAGGCCGCCCGCATCGACGGCGCGAACGGCGCCCAGATCGCGCTGCGCATCAAGGTGCCGATGGTGTCGTCGTCGATGGTCATGGTCGTGATCTTCTCGTTGATCGGCACGCTGCAGTTCTTCACCGAGCCCACGGTGCTGCGCTCCGTCGCGCAGGGCGCGATCCCGCCGGACTACACGCCGAACATGTACGCGTACTCGCTGGCGTTCTCGTACAGCCAGTTCAACTACGCGTCCACGATCGCCTTCGCACTGGGCATCTTCGTGTTCATCGGGTCGTACCTCTTCCTGTACCTGACCCGCAAGCAGAGCGGACTGAAGTCATGA	MTTSSTAVDQTAGPAAAGARGGKLRRSSSTSTIDSKRQWWGWIFTTPFTIVFVLFLIVPLSYAFWMSLHNKGIATGGESVFVGIDNYVRAFTDPIFLDGLLLVARFVAVMVPIQIGVALLCALVLDTLATQLSKASRLLIFVPYAVPAVIGALMWGFLYSPRFGPAQDLFGLFGLTAPDFLSSSMIFTSLVNIVTWQWVGYYMIIIYAALRTIDPSVYEAARIDGANGAQIALRIKVPMVSSSMVMVVIFSLIGTLQFFTEPTVLRSVAQGAIPPDYTPNMYAYSLAFSYSQFNYASTIAFALGIFVFIGSYLFLYLTRKQSGLKS	PGPT0016535_2286	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025	NA	NA
AK001_03311	1443			hypothetical protein	GTGGTCGGTGACCTTTCGCCGGAGGCCAAGGCGGCCCCCGCGCACATCAAGGAGGAACTTCGAATGCGCATCTCACAGCGACGTGGAGCAGCAGCCGTCGCGGCCACCGTGGCGGCCGGTGCGATCCTCACCGCCTGCTCGTCCGGCGGGTCCGAGGACGTCCAGACCGACGCAGGGTCCGCCGCCGGCGGCGAGGACGCGACCTGCACGAACGAGATCCTGAACGCCGACGCTCCCCAGGTGAGCGTCTGGGCCTGGTACCCCGCCTTCGAGTCGGTCGTGGACCTCTTCAACGAGACCCACGACGACGTCCAGGTCTGCTGGACGAACGCCGGTCAGGGCGCCGACGAGTACAACAAGTTCTCGACGACCATCGAGGCCGGCAGCGGTGCGCCCGACGTCATCATGCTCGAGTCCGAGATCCTGCCGACCTACACGATCCTCGACTCGCTGGTCGACCTGTCGGAGTACGGTGCCGGCGAGCTGGAGAGCCAGTTCACCACCGGTTCCTGGTCGGACGTCTCCAACGGCGACTCGGTCTACGCCGTCCCCGTGGACGGCGGCCCGATGGGCATGCTGTACCGCGCCGACATCTTCGACGAGTACGGCGTCGAGCCCCCCACCACGTGGGACGAGTTCGCCCAGGCGGCCCAGGACCTGCGGGACGCCGGCTACGACGGCTACATCACGAACTACCCGACCAACGGCAATGCGCTGAACTACGCGCTGTTCGCCCAGAACGGCTGGTCGCCGTTCGAGTACGACAACGCGAACCCGGCCGAGATCGGCATCGACGTCGCCACGCCGGAGGCCGAGGAGGTCCTGTCCTACTGGAACGACCTCATCGAGTCCGACCTGGTCGCCACCGACGACGCCTTCACCTCCGACTACAACACGAGCCTGGTCGACGGCACCTACGCCGTCTACCTCGCCGCCGCGTGGGGCCCGGGCTACCTGCAGGGTCTGTCCGACGCCGACTCGGGCGCCGAGTGGAAGGCGGCACCGCTGCCGCAGTGGGACCCGGCGAACCCGGTCCAGGTCAACTGGGGCGGCTCGACCTTCGCCGTGACCGAGCAGGCCGCCGACCCCGAGCTGTCCTACACCGTCGCCAGCGAGCTGTTCGGCACGATGGACGCCTGGGAGCTCGGCATCGACGAGGCGGCGCTGTTCCCGCAGTGGCTCGAGGCGCTGGAGTCGGACTTCTTCGTCGAGAAGGAGTACGAGTTCTTCGGCGGGCAGCAGATCAACAAGGACGTCTTCATCGAGGCCGCGAACGGCTACGAGGGCTTCTCCTTCAGCCCGTTCCAGGTCTACGCCTACGACCAGCAGACGCAGGCGCTGTACGACATGGTCGAGTCCGGCGGCGACGCCGCCGGCGCGCTGCAGACCATCCAGGACGCCCTGGTGACCTACGCCCAGCAGCAGGGCTTCACCGTCAAGTGA	MVGDLSPEAKAAPAHIKEELRMRISQRRGAAAVAATVAAGAILTACSSGGSEDVQTDAGSAAGGEDATCTNEILNADAPQVSVWAWYPAFESVVDLFNETHDDVQVCWTNAGQGADEYNKFSTTIEAGSGAPDVIMLESEILPTYTILDSLVDLSEYGAGELESQFTTGSWSDVSNGDSVYAVPVDGGPMGMLYRADIFDEYGVEPPTTWDEFAQAAQDLRDAGYDGYITNYPTNGNALNYALFAQNGWSPFEYDNANPAEIGIDVATPEAEEVLSYWNDLIESDLVATDDAFTSDYNTSLVDGTYAVYLAAAWGPGYLQGLSDADSGAEWKAAPLPQWDPANPVQVNWGGSTFAVTEQAADPELSYTVASELFGTMDAWELGIDEAALFPQWLEALESDFFVEKEYEFFGGQQINKDVFIEAANGYEGFSFSPFQVYAYDQQTQALYDMVESGGDAAGALQTIQDALVTYAQQQGFTVK	PGPT0016545_3806	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027	NA	NA
AK001_03312	1017	ccpA_8	COG1609	Catabolite control protein A	ATGGCAGTGACCATGCACGACGTGGCGCAACGGGCCGGCGTCTCGATCAAGACCGTCTCGAACGTCGTCAACGGGTACCCGCACATCCGGCCCGAGACGCGGCGTCGTGTCCAGGACGCGATCGACGAGCTGGGCTACCGGCTCAACACGACCGCCCGCAACCTGCGCCAGGGGCGCACCGGCATGATCGGGCTGGCTCTGCCGGAGCTGTCCCTGCCGTACTTCGCCGAGCTGGCGGACTCCGTCATGCGCGCCGCCGAGGCCCGCGGCGTGGTGGTGCTGCTGGAGCAGACGGGCGCGCAGCGGGAGCGCGAGCTCCAGGCGCTCGACTCGCCCCACCGTCGGCTCACCGACGGGCTGCTGTTCTCCCCGCTGGCCCTCGAGCCCGAGGAGACCGAGCGGCTCCAGGTCGACTACCCGATGGTCCTCCTCGGCGAGCGCATGTTCGGCCCGGTCGACCACGTCACGATGGCCAACGTCGAGGCGGCCAGGGCGGCCACCCTGCATCTCGTCGAGCGCGGGTGCCGCCGGATCGCGACGGTCGGTGCGCACCCCGGCGAGACCATGGGGTCCGCCCGGCTGCGCCTCGACGGGTACCGCAAGGCGCTCGCCGAGGCGGGGCTACCCTTCGACCCCGACCTAATCGCCGACGCCGGGCTCTGGCACCGCTCGACCGGCGCCGAGGCCATGACACGGCTGCTCGACGCCGGGGTGCAGCTCGACGGCGTCTTCGCCATGAACGACGCCCTCGCGCTCGGTGCGCTGCACGTGCTCCACACCCGGGGCGTCGCGGTGCCGCGCGACGTGGCGGTCATCGGCTTCGACGACATCGACGACGCCCGCTACTCCGAGCCGCTGCTGAGCACGGTCGACCCCGGGCGGGAGCAGATCGCCGGCACCGCCGTGGACCTGCTGCTGGAGCGCATCGCCGGATCCACGGTCGCGCCTCGACGCGTCGTCGCGGACTTCCGCATCGTCGCCCGGGAGTCGTGCCTGCTGGGGCAGGACGTGCACTGA	MAVTMHDVAQRAGVSIKTVSNVVNGYPHIRPETRRRVQDAIDELGYRLNTTARNLRQGRTGMIGLALPELSLPYFAELADSVMRAAEARGVVVLLEQTGAQRERELQALDSPHRRLTDGLLFSPLALEPEETERLQVDYPMVLLGERMFGPVDHVTMANVEAARAATLHLVERGCRRIATVGAHPGETMGSARLRLDGYRKALAEAGLPFDPDLIADAGLWHRSTGAEAMTRLLDAGVQLDGVFAMNDALALGALHVLHTRGVAVPRDVAVIGFDDIDDARYSEPLLSTVDPGREQIAGTAVDLLLERIAGSTVAPRRVVADFRIVARESCLLGQDVH	PGPT0021075_439	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499	NA	NA
AK001_03313	1530	abfA_2		Intracellular exo-alpha-(1->5)-L-arabinofuranosidase	ATGGCTGACGCCCGCATCACCCTCCACCCCGACTTCCGGCGGGGCACCGTCGATCGGCGCCTGTTCGGCTCGTTCGTCGAGCACCTCGGCCGCGCGGTCTACACCGGCATCTACGAGCCCGACCACGCGCAGGCCGACGAGCACGGCTTCCGCCGCGACGTCGCGGACCTCATCACCGAGCTCGGCGTCCCGATGGTGCGCTACCCCGGCGGCAACTTCGTGTCCAACTACGTCTGGGAGGACGCCGTCGGCCCGGTGGAGGACCGCAAGCCCTTCCTGGACCTGGCCTGGCGCACCGTCGAACCCAACCTCGTGGGCACCGACGAGTTCCTGCAGTGGGCCGAGCGCGAGGGCATCGAACCGATGATGGCCGTCAACCTCGGCACCCGTGGCGTCGACGCCGCCGCGGCCCTCCTCGAGTACTGCAACGGCGACGCCGGCACCCGCTGGGCCGACCTGCGGATCGCCAACGGCCGCACCGAGCCCTACGGCGTGAAGCTGTGGTGCCTCGGCAACGAGATGGACGGCCCGTGGCAGATCGGCCACAAGGACGCCCACGAGTACGGCAAGCTGGCCGCCGAGGCCGGCAAGGCCATGAAGCTCGTCGACCCGTCGATCGAGCTGGTGGTCTGCGGGTCCAGCTCGATGCAGATGCCGACCTTCGGCGAGTGGGAACGCGTCGTGCTGTCCTACACCTACGACATCGTCGACCACATCTCCATGCACGCGTACTACGAGGAGCACGGCGGCGACCGCCGGTCCTTCCTCGCGTCCGGCACGGCGATGGACCAGTTCATCGACCGCGTCGTCGCCTCGGCCGACGCCGTCGGGGCCGAGCGGCGGTCGGACAAGAAGATCACGATCTCCTTCGACGAGTGGAACGTCTGGTACCTCGAGACCCGGTTCCCCGGCGAGTCCAACCTGCCCATCCAGCGTGACGCCCCCCGCATCATCGAGGACGTCTACTCCGGGCTGGACGCCGTCGTCGTGGGCGACCTCCTGGTCACCCTGCTCAACCACGCCGACCGCGTCCCGGTCGCCGCGCTGGCGCAGCTCGTCAACGTCATCGCCCCGATCATGACCGAGCCCGGCGGGGAGGCGTGGCGTCAGCCCACCTTCCACCCGTTCGCCACCACCGCGCGGCTCGCCCGGGGCACCGCGCTGGACGTGCGCGTCGAGGCGCCGACGTACGAGAGCACGCGCCACGGCGCGGCCCCCACCGTCACGGCGGCCGCGACCGTCGACGACGACGGCGCGCTGGGACTGTTCCTCACGAACCGCACCGACCGGGCCGTCGAGGTCGACCTGGCGCACGTCGGCGCCGCGCTCGCGCTCACCGAGGGTCATCAGATGGTCGCCGACCACGAGCCGGCCGTGCACGGTCCCGAGCACGCGGCGAAGGTCGCCGAGACGTGCTGGTCCTCCGTCGACGTGGCGTCCGCCGTCACCGGCACCGCGGGCGGGACGACGACGGTCCGCCTGGCGCCGGAGTCCTGGACGGCGTTCTCCGGGGCGTTCGCCCGCGCCTGA	MADARITLHPDFRRGTVDRRLFGSFVEHLGRAVYTGIYEPDHAQADEHGFRRDVADLITELGVPMVRYPGGNFVSNYVWEDAVGPVEDRKPFLDLAWRTVEPNLVGTDEFLQWAEREGIEPMMAVNLGTRGVDAAAALLEYCNGDAGTRWADLRIANGRTEPYGVKLWCLGNEMDGPWQIGHKDAHEYGKLAAEAGKAMKLVDPSIELVVCGSSSMQMPTFGEWERVVLSYTYDIVDHISMHAYYEEHGGDRRSFLASGTAMDQFIDRVVASADAVGAERRSDKKITISFDEWNVWYLETRFPGESNLPIQRDAPRIIEDVYSGLDAVVVGDLLVTLLNHADRVPVAALAQLVNVIAPIMTEPGGEAWRQPTFHPFATTARLARGTALDVRVEAPTYESTRHGAAPTVTAAATVDDDGALGLFLTNRTDRAVEVDLAHVGAALALTEGHQMVADHEPAVHGPEHAAKVAETCWSSVDVASAVTGTAGGTTTVRLAPESWTAFSGAFARA	PGPT0018655_1119	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209	NA	NA
AK001_03314	1551			hypothetical protein	GTGACTCAGCAGGACATGCCCGCTTCGACCGCAGGCGATGCCCCGCCGAGAGTGCGCTACCGCGGTCGGCACCTGCCCATGGTGGCCGTGGTCATCGCCGCGTTCATCGCGACCGCGCTGGCCTACAGCGGCATGGTCCTGTTCGGGCTCGAGGTCGCCAACATGGCGCCCCTGGAGGCCTATGCGCTCGCCGGCTTCCTCGAGGTCAGCCTGGTCGCCGTCGCGCTCATGGCGCGCAACGCCGCCCTCGAGGGCCGGCCTTACGGCGTCCTGCTGACCCTGACGTGGATCCTGTCCGGCACGTCCGGCGTGTTCGCCGCGCTGCACGAGATCGCGGTGCCCAACGAGTCGACGCCGTACATGGTGGTCTTCCGGTTCGTGCCGCCGCTGGTCGCCGCCCTGATGTGGCACCTGGCCCTCGTGGGGGAGCGGCACCTCGTCACGGGCCACACGCTCGACGAGCGCCGACGCGAGCACCGGGTGCACCAGTACGTCACCGCGCTGGAGGAGTGGCGCGACGCGCGGCTCGACAACAGCGGCAACCGCCGCGGGACGCAGAAGGTCCGGGCGGCGCACCAGCGCCAGCGGGCGGCGCGCGACCGTGCCCTGAAGCTGCTCACGGTCGAGGACTTCGAGCGTCGGATGCAGGTCTGGGTCCAGCGCCTCGAGGCCGCCGAGCGCCACGGCAGCCGGCTGGACTCCATCGGGGCGAGCTCGGTCAAGCGCGGCATGGTTCGTGGTGTCACGGGCTGGTCGGACGAGCCCGCACCTGCACCTGCCGCGGCGCCCGCCCCGGCCGGCGCCGAGGACGGACGACCTGCTCCGGCACGGGCCGCGACGCCGTTCGACGCCGCCGGCGAGCAGCCCTACGAGCCCGCAACGGCGTTCGAGGAGCTGCCCGCGTTCGAGTCGCGCGTCCGCCAGGCCTTCGCCATGCACGAGCCCGCCGTGCCGGTCGAGGCTCCCGCCGCGCCCGAGGAGCAGGCGACCGCTCCGGTCCCCAGCCCGGCGACGACCGGGCAGGCCTCCGCCGGCACCACGAAGCGGACCGAGCCGCTGCCGGAGACGGGCCACACCCGTCGCGTCGAGGTGTTCGACCTCGCCGACCGCGCCGCCGCCCCGACGGCGCCGAGCGCCGACGTGCCGGACTGGTCCTCGGTGCACGAGCCGGCCGAGGGCTCCTCGGCGACGACCACCACGCAGGACGCGGCCGACGACGCGGCGGCGCCGAGCAGCGAGTCGACCAGCGAGTCGACCAGCGAGTCGACCAGCGAGTCGACCACCGAGACGACGACCATGGACCCGGTGGACGGGGCCGAGGCGCCCGACCCCGGGGCGTCGGACGAGAGCGGGGTGCAGGGCACCGACGCGTCGCCGACGGCGGAGCGCGACCGGCTCATCGTCGAGCTCGCCACCGAGGGGCTGACGCAGCGCGAGATCGCGGAGAAGGTCTCGGCCTCCCGTTCCACGGTCAGCCGCGTCGTGCGCCGCTACGAGGACCAGAAGGCCGAGCGCGGCCGCGACGAGGAGCTGGAGCTCGCTCCCGCCTGA	MTQQDMPASTAGDAPPRVRYRGRHLPMVAVVIAAFIATALAYSGMVLFGLEVANMAPLEAYALAGFLEVSLVAVALMARNAALEGRPYGVLLTLTWILSGTSGVFAALHEIAVPNESTPYMVVFRFVPPLVAALMWHLALVGERHLVTGHTLDERRREHRVHQYVTALEEWRDARLDNSGNRRGTQKVRAAHQRQRAARDRALKLLTVEDFERRMQVWVQRLEAAERHGSRLDSIGASSVKRGMVRGVTGWSDEPAPAPAAAPAPAGAEDGRPAPARAATPFDAAGEQPYEPATAFEELPAFESRVRQAFAMHEPAVPVEAPAAPEEQATAPVPSPATTGQASAGTTKRTEPLPETGHTRRVEVFDLADRAAAPTAPSADVPDWSSVHEPAEGSSATTTTQDAADDAAAPSSESTSESTSESTSESTTETTTMDPVDGAEAPDPGASDESGVQGTDASPTAERDRLIVELATEGLTQREIAEKVSASRSTVSRVVRRYEDQKAERGRDEELELAPA				NA	NA	NA	NA	NA
AK001_03315	1047	yjfF		Inner membrane ABC transporter permease protein YjfF	ATGACCGCGACGACGCCCCAGAAGACGGCGACCCCGTCCGGCCCCGACGGGCCGGGAGGGAACGGGTCGCGGCTGCCGGCGCTCACGCGACGGCTGCGCGTCGACCGGCGGTACCTGCCGGTGCTCGGCACCTTCGTGGTGCTCGCCCTGATCCTCGCGATCGGCGGCGTGCGCTACGAGAACTTCCTGTCGACCGGAGTCCTGGCGAACCTGTTCATCAACAACTCGTTCCTCATCGTGCTCGCGGTGGGCATGACGTTCGTCATCCTGACCGGCGGCATCGACCTGTCGGTCGGGGCGGTGCTGGCCCTGTCGGCGGTCTCGACCGCGTTCCTGCTGGACGCCGGCCTCCCCGTGGCGGTCGTCCTCCCCGGCGCGGTGCTCATCGGCTCGATCATCGGGCTCCTCATCGGGCTGATGGTGCACGTGTTCGAGGTGCAACCGTTCATCGCGACGCTGGCCGGGATGTTCTTCGCCCGCGGGCTCTGCTTCGTCATCGCCCCGGAGTCGATCCCGATCACCGACGAGGCGTTCGTGGCGCTCGCCGGCTGGGACACCTGGATCGGCGGCCAGTGGCGGATGACCACGAGCGTGATCATCGCGCTGGTCGTCATCGCGGTCGCCTTCTACCTGCTGCACTACACGCAGTTCGGGCGGACGGTGTACGCGATCGGCGGCGGCGAGCAGTCGGCCCAGCTCATGGGTCTGCCCGTGGCGCGCACCAAGGTGCTGGTCTACGTGATCTCCGGCACCTGCGCCGGTCTCGGCGGTCTGCTCTTCGCGATGTACTCGCGGTCCGGGTACTCGCTGACCGGTGTCGCGATGGAGCTCGACGCGATCGCCGCGGTCGTCATCGGCGGCACCCTGCTCACCGGTGGCACCGGTTTCGTCCTCGGGTCGGTGCTCGGTGTCCTGGTGCTGGGCCTGATCCAGACGATCATCACCTTCGAGGGCACGCTGAGCTCCTGGTGGACGAAGATCTTCATCGGCGTGCTGCTGCTGGTGTTCGTCGTCCTGCAGCGGGTGCTCAGCCTCCGCAAGACCTGA	MTATTPQKTATPSGPDGPGGNGSRLPALTRRLRVDRRYLPVLGTFVVLALILAIGGVRYENFLSTGVLANLFINNSFLIVLAVGMTFVILTGGIDLSVGAVLALSAVSTAFLLDAGLPVAVVLPGAVLIGSIIGLLIGLMVHVFEVQPFIATLAGMFFARGLCFVIAPESIPITDEAFVALAGWDTWIGGQWRMTTSVIIALVVIAVAFYLLHYTQFGRTVYAIGGGEQSAQLMGLPVARTKVLVYVISGTCAGLGGLLFAMYSRSGYSLTGVAMELDAIAAVVIGGTLLTGGTGFVLGSVLGVLVLGLIQTIITFEGTLSSWWTKIFIGVLLLVFVVLQRVLSLRKT	PGPT0016630_262	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509	NA	NA
AK001_03316	1077	fruF		Fructose import permease protein FruF	ATGCCTGCGACCACGGGAGCGTCGACGCGCACCGCAGGCCCGGGCGGGCTGCGGCGCCTCGCGCACCACACCATCTTCTGGCCCGTCGTGGCGCTGATCGCGCTGCTGGTGGCCAACACCCTGTACAGCCCCGACTTCCTGGCCGTGTCGATCCTCGACGGGCACCTGTTCGGCGCGCCGATCGACATCCTGCGCAACTCGGCGCCGCTGCTGCTGGTCTCGCTGGGCATGACCCTGGTCATCGCCACCCGCGGCATCGACCTCTCCGTCGGCGCGGTGGTCGCGATCGCCGGGGCGCTGTCGCTGAGCTTCATCGCGACCTCGCCGAACCCGGGCTCGGTGACGACGGTGCTCGTCGCCATCGCGATCGCCCTGGGCCTGTGCCTGCTGCTCGGCGTGTGGAACGGGTTCCTGGTCTCGGTGGTGGGCATCCAGCCGATCATCGCGACCCTGATCCTCATGACCGCGGGACGCGGCGTGGCGATGCTCATCACCGAGGGGCAGATCACCACGGTGAACAGCGCGCCCTTCAAGACGCTCGGCGCCGGGTTCTGGCTCGGGCTGCCCGCGGCGGCGCTCATCGCCTACGGCGTCTACGTCGTCGTCGCGCTGATCACCCGCCGCACCGCCCTCGGCATGCTGGTCGAGTCCGTCGGCATCAACCCGTCGGCGAGCCGGCTGGCCGGCGTCAGGGCGCGCACCATCGTGTGGACGGTGTTCGCCCTGTCCGGGCTCTTCTCCGGGCTGGCCGGACTGATCCTGGCGTCCAACGTCATGGCGGCCGACGCCAACAACGCCGGCCTGTTCATCGAGCTCGACGCGATCCTCGCCGTCGTCATCGGCGGCACCTCGCTCCAGGGCGGCAAGTTCTCGCTGTCCGGGACGCTCGTCGGCGTGCTCATCATCACGACCCTGACCCTGACCGTGACGATCGTGGGGATCTCCCCGCTGGTCACCCCGCTGTTCAAGGCGCTCGTGGTGATCGCGGTGACCCTGCTGCAGTCGCCCAGGGTCCGCGAGAGACTCGCCGCCCGCCAACGGCAGCGCGTGGCGAAGCCCGAGGAGGTGGCGGCCTGA	MPATTGASTRTAGPGGLRRLAHHTIFWPVVALIALLVANTLYSPDFLAVSILDGHLFGAPIDILRNSAPLLLVSLGMTLVIATRGIDLSVGAVVAIAGALSLSFIATSPNPGSVTTVLVAIAIALGLCLLLGVWNGFLVSVVGIQPIIATLILMTAGRGVAMLITEGQITTVNSAPFKTLGAGFWLGLPAAALIAYGVYVVVALITRRTALGMLVESVGINPSASRLAGVRARTIVWTVFALSGLFSGLAGLILASNVMAADANNAGLFIELDAILAVVIGGTSLQGGKFSLSGTLVGVLIITTLTLTVTIVGISPLVTPLFKALVVIAVTLLQSPRVRERLAARQRQRVAKPEEVAA	PGPT0016630_197	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509	NA	NA
AK001_03317	1539	fruK_2	COG1129	Fructose import ATP-binding protein FruK	ATGACGAGCTCCACGAGCGCGGACCGGCCGGTCGTCGAGATGTCCGGGATCTCCATCGAGTTCCCGGGCGTCAAGGCGCTCGACCAGGTCGACTTCAGGCTCTTCCCCGGTGAGGTGCACGCCCTGATGGGCGAGAACGGGGCCGGGAAGTCCACCCTCATCAAGGCACTCACGGGTGTCTACGGCATCGACGCCGGCCAGATCGTCGTCGACGGCGCCCCGCACCGCTTCTCGGGACCGGGCGAGGCGCAGGACGCCGGGATCGCGACGGTGTACCAGGAGGTCAACCTCTGCGAGAACCTCACGGTCGCCGAGAACATCATGCTCGGCCACGAGCCGCGCCGGCTCGGGGCGATCGACTGGCGGGCCACCCGGCGCGCCGCGTCGGACTACCTGGCCACCATGGGTCTCGACCTCGACCCCGCCTCGTCGCTGGGCTCGCACTCGATCGCCATCCAGCAGCTGGTCGCGATCAGCCGCGCCATGGTCGTCGACGCCAAGGTCCTGATCCTCGACGAACCGACGTCCAGCCTGGACGCCGACGAGGTCGCCCAGCTCTTCGCCGTCGTGCGGCGGCTGCGGGACCAGGGCGTGGTGATCCTGTTCGTCTCGCACTTCATCGAGCAGGTCTACGAGATCTCCGACCGCATGACCGTGCTCCGCAACGGTCAGCGGGTCGGCGAGTACCGCACGAGCGAGCTCGACCGGCTGGAGCTGGTCTCGACGATGATCGGGCGCTCGATGGAGCTGCTCGACGACCTGCAGGTCTCCACCGATCACGCGGTCGACGTCGAGCAGGGGACCGTCCCGTTCCTCCAGGCCGTCGGTCTGGGCCGCAAGGGCGACGTCCAGCCGTTCGACCTCGAGGTGTACGCCGGCGAGGTCGTCGGGCTCGCCGGGCTGCTGGGGTCGGGGCGCACGGAGGTCGCGCGGCTGCTCGCCGGCGCCGACCGCGCCGACGCCGGCTCCACCCGCATCAAGGACGTGCTGACGCGGCTGCGGAACCCGCGCTCGGCGATCTCCCGCGGCATCGCGTTCTCCTCGGAGGACCGCAAGGCCGAAGGAGTCGTCGGCGACCTGACGGTCCGCGAGAACATCGTCCTCGGCCTGCAGGCCGGCCGCGGCTGGATGCGGCGGCTGCCGCGCCGGCAGGTCGACGAGATCGTCAACAAGTACATGGCGGCGCTCAACGTGCGCCCGGCGAACCCGGACGCGCTGCTGCGGAACCTCTCGGGCGGCAACCAGCAGAAGGTGCTGCTCGCCCGCTGGCTGGCGACCGCCCCCGAGCTGCTCATCCTCGACGAGCCCACCCGCGGGATCGACGTGGGGGCCAAGGCGGAGATCCAGAAGCTCGTCGCCGAGCTCGCCTCCCAGGGCATGGCCGTCGTGTTCATCTCGGCCGAGCTGGAGGAGGTCCTGCGCCTGAGCCACCGGATCGGCGTCATGCGCGACCGGCAGAAGGTGGCCGAGATCGTCAACTCCGAGGACGTCGGCGTCGACGACGTCGTCACCCTCATCGCGAGCGGAGGTGGGCACTGA	MTSSTSADRPVVEMSGISIEFPGVKALDQVDFRLFPGEVHALMGENGAGKSTLIKALTGVYGIDAGQIVVDGAPHRFSGPGEAQDAGIATVYQEVNLCENLTVAENIMLGHEPRRLGAIDWRATRRAASDYLATMGLDLDPASSLGSHSIAIQQLVAISRAMVVDAKVLILDEPTSSLDADEVAQLFAVVRRLRDQGVVILFVSHFIEQVYEISDRMTVLRNGQRVGEYRTSELDRLELVSTMIGRSMELLDDLQVSTDHAVDVEQGTVPFLQAVGLGRKGDVQPFDLEVYAGEVVGLAGLLGSGRTEVARLLAGADRADAGSTRIKDVLTRLRNPRSAISRGIAFSSEDRKAEGVVGDLTVRENIVLGLQAGRGWMRRLPRRQVDEIVNKYMAALNVRPANPDALLRNLSGGNQQKVLLARWLATAPELLILDEPTRGIDVGAKAEIQKLVAELASQGMAVVFISAELEEVLRLSHRIGVMRDRQKVAEIVNSEDVGVDDVVTLIASGGGH	PGPT0016635_260	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016635-ytfR-K10820	NA	NA
AK001_03318	1158			hypothetical protein	GTGCCGACGATCTATCGCACTCCCGAGACCGATCTCGAGGACTCGGGTGTGGTCGCCGAGATCCGCGACCTGCGGGACTCGCTCGCCATGATGCTGCGGACGCCGCGTCGCTGGACCAGCGGCATGCGGAGGACGACGCAGGCACGCGCCATCCAGGGATCGAACGCCATCGAGGGATACACCGTCTCGGACCAGGACGCGCTCGCTGCCGTGGACGACGAACCCCCGAGGAGCGCCGACCAGCGCACCTGGTCCGAGATCCTCGGCTACCGACGCATGATGACGTACATCCTGCGCATGGCGCCCGACGACGGGTTCACCGTGGACTCACAGACGTTGCGGTCGCTGCACTTCATGCTGCTCGAGCACGACCTCTCCGTGGACCCGGGGCGGTTTCGCCCCGGCCCGATCTACGTCCGTGACGAGGCCGCCGACGCCACCGTCTATGAAGGACCGTCGGCGGACGACGTCCCCGGGCTGGTCGACGAACTGGTCCGCTCCCTGCGCACCGACGGAACCGAAACGCTGGTCGACGCGGCGATGGCGCACTTGAACTTGGTGATGATCCATCCGTTCAAGGACGGCAACGGTCGGATGGCGCGCGCACTGCAGACCCTCGTGCTCGCCCAGGACCGCGTGCTGGAACCCACGTTCTCCAGCATCGAGGAATGGCTCGGCAACAACACGGACGACTACTACCGCGTGCTCGCGGTCACCGGCGAGGGCTCCTGGCGCCCCGAGAACGACGCCGGGCTGTGGATCAAGTTCAGTCTGCGCGCCCACCACATGCAGGCACAGACGCTGCGCCGCCGATTCGACGAGGCCGACCGCACCTGGGTCGAGCTCGACGACCTCATCGCCCAGCACGGGCTCCACGAGCGGACCGGCGACGCGCTGTTCGATGCTGTGCGCGGACTGCGCGTCGTGCGTCCGACCTACGTCAAGCAGAGCGGTGTCGAAGAGCAGACGGCGAGCCGCGACCTCCGGGGGCTGGTCAGTGCAGGGCTTCTCCAGGCGCACGGGCAGACACGGGGGCGGTACTACACCGCGAACGGGGCGCTCCGCGCGCTGGCGGAGGAGATCCGGTCCGACCGGACGGCGCTGGTCGATCCGTACCCATGGCTGCTCGGGGAGCTGAGGCAGCGCGCCGGGCGGTAA	MPTIYRTPETDLEDSGVVAEIRDLRDSLAMMLRTPRRWTSGMRRTTQARAIQGSNAIEGYTVSDQDALAAVDDEPPRSADQRTWSEILGYRRMMTYILRMAPDDGFTVDSQTLRSLHFMLLEHDLSVDPGRFRPGPIYVRDEAADATVYEGPSADDVPGLVDELVRSLRTDGTETLVDAAMAHLNLVMIHPFKDGNGRMARALQTLVLAQDRVLEPTFSSIEEWLGNNTDDYYRVLAVTGEGSWRPENDAGLWIKFSLRAHHMQAQTLRRRFDEADRTWVELDDLIAQHGLHERTGDALFDAVRGLRVVRPTYVKQSGVEEQTASRDLRGLVSAGLLQAHGQTRGRYYTANGALRALAEEIRSDRTALVDPYPWLLGELRQRAGR				NA	NA	NA	NA	NA
AK001_03319	1461	uacT	COG2233	Uric acid transporter UacT	ATGAGCGACGCGACGACCACCACGGAACCAGCAGCTCCGCCCGGCAAGCACCCGGTGGACGAGATCCCCCGTCTCGCACGGCTCTTCCCGCTCGGGCTGCAGCACGTGCTCGCCATGTACGCGGGAGCCGTCGCGGTCCCGCTCATCGTGGGCGGCGCCCTGGGCTACTCGGCCGAGGACCTGGCGTTCCTCATCAGCGCCGACCTGTTCGTCGCCGGCATCGCCTCGATCATCCAGTCCGTCGGCTTCTGGCGGTTCGGTGTCCGGCTGCCGCTGATGCAGGGTGTCACGTTCGCGGCGGTTGGCCCGATGATCAGCATCGGCACCACCTACGACATCACCGCGGTCTTCGGCGCCACCATCGCCTGCGGGTTGTTCATGATCCTCGTCGCGCCGTTCTTCTCGGCGCTGCTCCGGTTCTTCCCGCCGCTGGTCACCGGCACGGTCATCCTCATCATCGGCGTCTCGCTCATGGACGTCGCCGCGGGCTGGATCACGAACCAGAACGAGTCCGCCGCGCCGTCGGACCTCGGCCTCGCTGCCGGGACCCTGCTGTTCATCGTGCTGATCGAGCGGTTCGCCCCGGCCGCCATCGCCCGGGTCTCGGTGCTGATCGGCCTCGTGCTGGGCACCCTCGCCGCGCTGCCGATGGGCAAGGTCGACTGGTCGGGCGTGGGCGAGGCCGGCTGGTTCGCCGTGGTCACCCCGCTGCACTTCGGCGTGCCGACCTTCCCGCCGGCCGCCGTGCTCTCGATACTGGTCGTGGGCCTGGTGATCATGGTCGAGACCACCGGCGACATGATCGCCGTCGGCGAGATCGTCGACAAGAAGGTCACGAAGAAGCGCCTCGCCGACGGCCTGCGCGCCGACGGCCTGTCCACCGTGCTCGGCGGCTTCTTCAACACCTTCCCCTACACGGCGTTCGCCCAGAACGTCGGCCTGGTCAGCCTCACGGGCGTCGCCTCGCGGTTCGTCGCGACGATGGCCGGCCTCATCCTCATCGTCCTCGGTCTGGTGCCGAAGGTCAGCGCCGTCGTCGAGGGCGTGCCGAGCGCCGTGCTCGGCGGCGCCGGGATCGCGCTGTTCGGCATGGTCGCGGCCTCGGGCATCCGGTCGCTGACGCGGGTCCGCTTCAACAACAAGAACATCCTGGTGGTGGCCGTCTCCCTCGGCGTCGCGATGCTCCCGACGGTCACGCCCGAGATCTACGCCGAGTTCCCCACCTGGTTCCAGCTGATCTTCGACTCCGGCATCAGCGCCGGTGCGATCACCGCGATCCTGCTCAACCTGCTCCTCAACGGGGACCAGCTCACCGAGCAGGACACGCAGGAGATGGCACCGCACGACGCCGTCCGCGGCGTGCAGCCCGCCGTGCTGGGCCACGTCTCGCCCCCGGACCCGGCACCTGCCGAGCCGGACGGCGAGCCGGAGACCGCCGGCGAGACGAGCGAACGCCCCTGA	MSDATTTTEPAAPPGKHPVDEIPRLARLFPLGLQHVLAMYAGAVAVPLIVGGALGYSAEDLAFLISADLFVAGIASIIQSVGFWRFGVRLPLMQGVTFAAVGPMISIGTTYDITAVFGATIACGLFMILVAPFFSALLRFFPPLVTGTVILIIGVSLMDVAAGWITNQNESAAPSDLGLAAGTLLFIVLIERFAPAAIARVSVLIGLVLGTLAALPMGKVDWSGVGEAGWFAVVTPLHFGVPTFPPAAVLSILVVGLVIMVETTGDMIAVGEIVDKKVTKKRLADGLRADGLSTVLGGFFNTFPYTAFAQNVGLVSLTGVASRFVATMAGLILIVLGLVPKVSAVVEGVPSAVLGGAGIALFGMVAASGIRSLTRVRFNNKNILVVAVSLGVAMLPTVTPEIYAEFPTWFQLIFDSGISAGAITAILLNLLLNGDQLTEQDTQEMAPHDAVRGVQPAVLGHVSPPDPAPAEPDGEPETAGETSERP	PGPT0007330_273	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169	NA	NA
AK001_03320	1452			hypothetical protein	ATGATCGACCGTTACGACTGGCCGCGCGTCGAGCAGTTCCGCAACCGCACCGCCGAACTGCGCCGGATCGAGGCCTGGTGGACGGCGGACAGCCCCGAACCCCTGGCCGTCTCCGGACGTCGGCGCGTCGGCAAGTCCTGGCTGCTGCACCGCGCCGCTCACGGCAAGCCTGCCGTCATGCTCGTCGCCGACCGGATCGCCCCCGGTATGCAGCTCGACCGGCTCGCCGCCCAGCTCGCCCCGCACCTCGGCGTGACACCACGGCTGGAGAACGCCGCCGACCTCCTGCGAACGCTGTTCCGGCTGGGCCGCGACCAGAAGATCCTCGCGGTGGTCGACGAGTTCCCCTATCTCCTGGGAACGTCGGCCGCGGAGCAGGACCGTCAGCTGACCGAGGTCCAGGCCGTCCTGGAGGAGGAGCGCGACCGGTCGCGGCTGCAGCTCGTCCTCGCGGGTTCGACCCTGTCGGTCATGGAGTCGCTGCAGGCCGAGAAGAACCCGCTGCACGGGCGGACCGTGCCGCTGCGGCTGCGCCCCCTGCGGTTCGCGCACGCCGCGAAGTTCATGCCCGACGACGACCCCGAGACGCGCCTGCAGCGCTACGCCGTCGCCGGCGGGATGCCGCGCTACCTCGCAGCCCTCTCGGGACGTCCGCTGCTGGAAGCCGTCACCGATCAGGTCGTCGATCCCTACGGACCGCTCTTCAACGAGCCGTTCGCGCTGCTCTCGGCAGAGCTCCGCGAGCCCACGACCTACCTGTCGATCCTCGCCGCGCTCGCTGCCCGACCGCAGAGCGTCGGGGACGTCGCGAACGCCCTGCACACTCCCGCGCAGAGACTGAGCGAGTACCTCGCGACGCTTGAGGAGCTCCACCTGGTCTCGCGCCACCGGCCCGTCGGTGCACCCTCCCGGAGTCGCAGCACCCAGTGGCGGTGCGACGACGACTTCCTGCGGTTCTGGTTCCGGTTCGTGCACCCCCGCCGGGGAGACCTCGAGGCCGGGCTGGACCCTCGCGGATATGTCGAGACCCAGGTGGCGCCGTCGTTGGCCGACCACGTGGCCCCCACCTTCGAGCGGGTGCTCCGCGACTGGATCCGTGCCCAGCGGGGAGCGGACGCCCCCGAGGTCGGCGGCTGGTGGGGGTCCGCGCTGCACCCGCTGCGCCGCGCCCGGACGCGGTTCACCGAGGAGATCGACGGCGTCGCGCTCGACGGCTCGTCCGTGCGGGTCGTGGCCGAGGCGAAGTGGACGTCCGCGCCGATGGACGTCGACGTGCTGCGCGACCTGCGCGGGTACAAGATCCCCGCGCTGGCGCAGGCCGGCCTCGAGGTGGGCGAGGCGGAGATCGTGCTGGCCGCGCGGTCGGGATTCACCGAGCGGCTGGAGGCGGCTGCAGCGTCAGACCCCTCCGTGCGGCTCGTCCCCGCGGCCGAGGTGCTGACCGTCGGGTGA	MIDRYDWPRVEQFRNRTAELRRIEAWWTADSPEPLAVSGRRRVGKSWLLHRAAHGKPAVMLVADRIAPGMQLDRLAAQLAPHLGVTPRLENAADLLRTLFRLGRDQKILAVVDEFPYLLGTSAAEQDRQLTEVQAVLEEERDRSRLQLVLAGSTLSVMESLQAEKNPLHGRTVPLRLRPLRFAHAAKFMPDDDPETRLQRYAVAGGMPRYLAALSGRPLLEAVTDQVVDPYGPLFNEPFALLSAELREPTTYLSILAALAARPQSVGDVANALHTPAQRLSEYLATLEELHLVSRHRPVGAPSRSRSTQWRCDDDFLRFWFRFVHPRRGDLEAGLDPRGYVETQVAPSLADHVAPTFERVLRDWIRAQRGADAPEVGGWWGSALHPLRRARTRFTEEIDGVALDGSSVRVVAEAKWTSAPMDVDVLRDLRGYKIPALAQAGLEVGEAEIVLAARSGFTERLEAAAASDPSVRLVPAAEVLTVG				NA	NA	NA	NA	NA
AK001_03321	1233	sotB_2		Sugar efflux transporter B	ATGAGCACTGCCGGGCCCGCCGTCGACCCCCGCCGCGCCACCGTCATCCTGCTGGCGATGGCCTCGTCGACGTTCCTGTTCGTCACCGTCGAACAGCTCCCCGCGGGCCTGCTCACCCTCATGGCGCCCGACCTCGACCGCACCACGGCTGCCATCGGGCTGCTCGTGACCGTCTACGCGCTCGTCGTCCTGGTGACCTCGGTGCCGCTGGCGCACCTGACCCGGCACCTGCAACGCCGTTGGGTGCTCGCCGCCTGTGCGGGCGTCGCCGCGGTGGCGACCCTGTGGGCCGCGCTGACGCCGTCGTACGAGCAGCTCATGGCGGCGCGCGTGGTGACCGCGATGGCGCAGGCGCTGTTCTGGGTCGCCGTCGTCCCGGCGACGGCCGGGCTCTTCCCGCCCGGCGTCCGCGGCCGGGCGATGGCCCGGCTGGCGATCGGCAACTCGCTCGGCCCGGTGCTCGGCGTGCCGGCCGGGACGTGGCTCGGCGAGGCGACGTCGTGGCGGTGGTCGTTCGCCGCCGTCGCCGCCGTGTCCGCGGTCATCATGGTCGTCGTCATCGTGCTGTTCCCGGCGGTGTCGCCGCGGTCCGGCGGGGCGAGCGAGGCGCCGTTCCCCTCGATGCGGCGGTACGTCTCGCTCATGGTCGTCACCGTGCTCGCCGTGACGGGGTCGTTCGGCATGATCACGTTCGTCACCCAGTTCCTCATCGACGTCGCCGGGTTCTCGCAGTCCGACCTGCCCGTGCTCCTGCTGCTGCAGGGCGGGGCGGGTGTCGTCGGGGCCGTGACGGTCGGGCGGTTCCTCGACCGGCGGCCCGTGGGGGCGCTCCTGGTGGGCATGATCGTGCTGGTCGTGGCGCTCGTCGGGCTGTGGACCCTCGGGTCGTGGCCCGTCGCCGCGGTGGCGTTCCTCGCGCTGTTCGGGTTCTCGTTCTCCACGGTGCCGCCCGTGCTGTCGCACCGGGTGCTGCTGATCTCGCCGCGCGGGACGAACATGGGCCAGGCGATCTCGTCGTCGCTGTTCAACCTCGGGATCGCCGGCGGGTCCGGCCTCGGGGCGCTGCTCGTGTCGCTCGTCGGGGTGCGGTCCGTGCCGCTGGTGGGGGCCGGGATCGTGGTGCTGGCGCTCGCCGTGGCGCTGTGGGAGGAGCGGACGAACCCGCCGATCGGGTCGCTCGTGGAGCGCGGGGTCGGGGAGGTTCTGGCCGAGGACGGCGGTGGCTCGCGCTAA	MSTAGPAVDPRRATVILLAMASSTFLFVTVEQLPAGLLTLMAPDLDRTTAAIGLLVTVYALVVLVTSVPLAHLTRHLQRRWVLAACAGVAAVATLWAALTPSYEQLMAARVVTAMAQALFWVAVVPATAGLFPPGVRGRAMARLAIGNSLGPVLGVPAGTWLGEATSWRWSFAAVAAVSAVIMVVVIVLFPAVSPRSGGASEAPFPSMRRYVSLMVVTVLAVTGSFGMITFVTQFLIDVAGFSQSDLPVLLLLQGGAGVVGAVTVGRFLDRRPVGALLVGMIVLVVALVGLWTLGSWPVAAVAFLALFGFSFSTVPPVLSHRVLLISPRGTNMGQAISSSLFNLGIAGGSGLGALLVSLVGVRSVPLVGAGIVVLALAVALWEERTNPPIGSLVERGVGEVLAEDGGGSR	PGPT0016620_15	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOSE_TRANSPORT_II,PGPT0016620-sotB-K08159	NA	NA
AK001_03322	570		COG1670	Acetyltransferase	GTGACCGATCCGACCGCTCCCCTGCGCGCCGTCCTGCCTGTGCGGACGAGCCGCCTGGTGCTGCGCACCTACCGGGAGGACGACGTCGAGCCGATGCTCGCGTACTACAGCGACCCGGAGGTCGCCCGGTTCCTGCTCGAGGAGCCGTGGACGCGCGAGGAGGCGGAGATCAACGTCGCGCGGCGGATGCTGCGCGACGGGATCCACGAGCCGGGGTCGGCGCTGGCGCTGGTCGTGGAGCACGAGGGGGTCGTCGTCGGCGACATCGCCCTGTGGACGACCGGGGACACGTCCTCGCGCGGCGAGGTCGGCTGGGCGTTCCACCCGCAGCACACCGGCAAGGGGTACGCGACCGAGGCGCTGCGGTCGCTGCTGGCGATCGCGTTCGACCGGTACCGGATGCACCGCGTGGTGGCCCAGCTCGACGCCCGCAACACGGCGTCGGCGAAGCTCTGCGAGCGTGTCGGGATGCAGCGCGAGGGGTACCTGCGCGCGGACTGGTGGTCCAAGGGCGAGTGGACCGACACCCTGGTCTACGGGATGCTCGACAGCGACTGGAAGCGTCCCTGA	MTDPTAPLRAVLPVRTSRLVLRTYREDDVEPMLAYYSDPEVARFLLEEPWTREEAEINVARRMLRDGIHEPGSALALVVEHEGVVVGDIALWTTGDTSSRGEVGWAFHPQHTGKGYATEALRSLLAIAFDRYRMHRVVAQLDARNTASAKLCERVGMQREGYLRADWWSKGEWTDTLVYGMLDSDWKRP	PGPT0028650_24	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028650-aacA-K00663	NA	NA
AK001_03323	1200			hypothetical protein	ATGGCGTCCGCGCCACGCTCCGGTCATCGTGGAGTCATGCACTGGCGCATCGTCGAGGCCCCGCACGCGGACGGCCCCGACCACCCGGACGCGTGGGCCTACCGCGGGATCGCGGAGGTCGAGCGCGCGGTCTCCCTCGCCGACCGCGGCCTCGCCGACGGCGCCCCCACGGCGCGGGAGATCACGGTCGCCATGGCCGACCAGACCTACCGCCGCCGCCACCGCCTCGTCGCGGTGGACGACGGCGCCACACCGGCCGACGGCGGCACCCTGCCCGACGGCGGCACCCCGGCGGGCGGGCCGCGCGTCCTCGGGCACGGGGTCGTCGGCTGCGACCTGCTCGACAACGTCGACGTCGCCGACGTGCACGTCGCCGTCCACCCGGACCACCGGGGCCGGGGGATCGGTGCGGCGCTGGTCGACGCCGTCGTCGACCGCTCCCGCGCCGTGGGGCGCAGCCGTCTCCTGGTCGAGGTCGAGTTCGCCGTCGAGCCGCCCGCCGACGCCCCGGACGCCGTCGTCGCGCCCACCGGCAACGGCCGGATCTCGGCCGGACTGCCCGGGCTCCGGCTCGCCCGCGCCGCCGGCCTGGACCTGAAGATGATCGCCCGCCGCTCCGTCCTCGACCTGCCCGCCGACGCCGACGTCGTCGCCCGCCTCGAGCACGAGGCGCGCGCCGCCGCGGGGTCGGACTACCGCCTGCACGTGTGGGAGGACGACATCCCCGACCGGTGGCTCGCCGGGTACGCGGCCCTCATCGAGCGGCTGACCATCGACGAGCCCAACCCGGGTCTCGATCTCGAGCCCGAGTACTGGGACGCCGCCCGGCTGCGCTACGAGATCGAGCAGGCCCGCGCCGTGGGGAGCCGGTTCGTCACCACCTGCGCCGAGCACGAGCCCACCGGCGAGCTCGTCGCGGCGACGCTGCTCGACCACGACCCGCAGCACCCGGCCTACTCCGACCAGCAGACCACCGTCGTCATGCCGGAGCACCGCGGGCGCCGGCTCGGGATGCTGGTCAAGTGCGCCAACCTGCGCGAGCACGCCCGGCGGTGGCCCGACGCCGAACGCATCTGGACGTGGAACAACGAGGACAACCCGCACATGCTCGCGATCAACGTCGCGATGGGGTTCCGGCCGGCCGGCGGGTCGGCGGTCCTCGAGGGCGACGTCGCCGCCGTGGGCCCGCTGTCCCGCTGA	MASAPRSGHRGVMHWRIVEAPHADGPDHPDAWAYRGIAEVERAVSLADRGLADGAPTAREITVAMADQTYRRRHRLVAVDDGATPADGGTLPDGGTPAGGPRVLGHGVVGCDLLDNVDVADVHVAVHPDHRGRGIGAALVDAVVDRSRAVGRSRLLVEVEFAVEPPADAPDAVVAPTGNGRISAGLPGLRLARAAGLDLKMIARRSVLDLPADADVVARLEHEARAAAGSDYRLHVWEDDIPDRWLAGYAALIERLTIDEPNPGLDLEPEYWDAARLRYEIEQARAVGSRFVTTCAEHEPTGELVAATLLDHDPQHPAYSDQQTTVVMPEHRGRRLGMLVKCANLREHARRWPDAERIWTWNNEDNPHMLAINVAMGFRPAGGSAVLEGDVAAVGPLSR				NA	NA	NA	NA	NA
AK001_03324	1116			hypothetical protein	ATGCGACGGAGCATCCCGCCCACCCGGTTCCGCGCGCTGCCGGCCGCCCTGGCCGTGGCCCTGCTCGCCGCCGTCCCCACGGCGCCCGCCCAGGCCACGCCGCCAGGCGGGGACGACCTGGTGGTCATGACCCAGAACCTCTACGTGGGGACCAGCCTGGACCCCGCCCTGACGGCGACGACGCCGGACCAGCTCGTGGCGGCCGTGGCGCAGATGTACGCCACGGTCCAGTACACCGACTTCCCGGCCCGTGCCGAGGCCGTCGCCGACGAGATCGAGGCGCACGGCCCGGACCTGATCGGCCTCCAGGAGGTCGCCCGCTGGACCACCACGGGGCCCGGTGCGCCAGAGGGCTACGACTTCCTGGCGATCCTCCAGGCGGCGCTCGACGAGCGCGGTCTGGACTACTCGGTCGCCGCGGTGTCGGAGAACGCCTCGATCGGGCCGGTCCCGTTGGCGCTCCCCGGCTGCCTGGTCCCCACGCCTCCCTTCGTCACGTGCGCGGTGCAGCTGGACGACCGTGACGTCATCCTCGTCAACGACGACACGCCCGGCCTGCGCTGGGACGACCCCCGCAGCGGTCGGTACGCGGCGCAGGGGGCCTTCGACACCCCCATCGGTCCGATCTCCTTCGACCGGGGCTGGGCCAGCATCGACGCGACCCTGGACAGACAGCCGTTCCGGTTCGTCACCACCCACCTCGAGATCGCGGCCTTCCCGGAGATCCAGCAGGCCCAGGCGGCCGAGCTCCTGGCCGGCCCGGCGCGCGGCGGCACGGTCATCGTGGTGGGCGACGTCAACTCCGCCGCCGACGGGTCGACCACGACGAGCTACGCACAGCTCACCGCACCGGGCAAGCTCCGGGACGCCTGGGACGAGGACGTGCTGGGCGCGGGCTCCACCTGCTGCCAGCGGTCGAACACGCCGCCGCTGGCCCCCGGGGCGCTCAACAACGTCGACTCGACGCTGGACCACCGGATCGACCTCGTCCTCGGACGCGGCGCCGCGCGGTCGGACGGCAGCCGGGCCGAGCTCGTCGGGGACCAGCCGTTCCAGGCGGCGCCGCCCTTCTGGCTCTCGGACCACGCGGGCGTCGTGGCCGAGTTCCGGCTCTAG	MRRSIPPTRFRALPAALAVALLAAVPTAPAQATPPGGDDLVVMTQNLYVGTSLDPALTATTPDQLVAAVAQMYATVQYTDFPARAEAVADEIEAHGPDLIGLQEVARWTTTGPGAPEGYDFLAILQAALDERGLDYSVAAVSENASIGPVPLALPGCLVPTPPFVTCAVQLDDRDVILVNDDTPGLRWDDPRSGRYAAQGAFDTPIGPISFDRGWASIDATLDRQPFRFVTTHLEIAAFPEIQQAQAAELLAGPARGGTVIVVGDVNSAADGSTTTSYAQLTAPGKLRDAWDEDVLGAGSTCCQRSNTPPLAPGALNNVDSTLDHRIDLVLGRGAARSDGSRAELVGDQPFQAAPPFWLSDHAGVVAEFRL				NA	NA	NA	NA	NA
AK001_03325	2067			hypothetical protein	ATGGCCGACCGACTTCGCTCCGCCACGTCCCCCTACCTGAGGCAGCACGCCGACAACCCGGTCGACTGGTGGCCGTGGAGCGAGGCCGCCTTCGCCGAGGCCCGCCGTCGTGACGTGCCCGTCCTGCTCTCCGTCGGCTACGCCGCCTGCCACTGGTGCCACGTCATGGCGCACGAGTCCTTCGAGGACGACGAGGTCGCCGCGGTGATCAACGAGCACTTCGTGCCGATCAAGGTCGACCGCGAGGAGCGCCCCGACGTCGACGCCGTCTACATGGCCGCCACCACCGCCATGACCGGGCAGGGCGGCTGGCCGATGACGGCGTTCCTCACGCCGGACGCCGAGGCCTTCCACTGCGGCACCTATTTCCCGCGCGAGCAGTTCCTCGAGGTGCTCGGCGCCGTCCGCGACGCCTGGGCCGACGCCCGCGACGCCGTCACCCAGCGCGCCGGCGCCGTCACCGAGGCGATCGCACGGACCACGTCGGGCATGCCGGCCGCCCCGCTGGACGACGCCGAGCTCGCCGCCGCCGTGCAGACCCTGCGCGGCGAGGCGGACACCACGCACGGCGGGTTCGGCGGCGCCCCCAAGTTCCCGCCGTCGATGACCCTCGACCACCTGCTGCGCCACCACGCCCGCACCGGCGACCCCGCGGCGCTGGAGATGGTGGAGCGCACCTGCACCGCGATGGCCCGCGGCGGCATCTACGACCAGCTCGGCGGCGGGTTCGCCCGGTACGCCGTCGACGCCGCCTGGGTCGTGCCGCACTTCGAGAAGATGCTGGCCGACAACGCCCAGCTCCTCGGCGTCTACGCCCGCTGGTGGCGCGCCACCGGCTCTCCGCTCGCCGAGCGCGTCGCCCAGGAGACCGCGGGCTTCATCCTGCGCGACCTGGCCACCTCCTCGCGCGGCTTCGCCTCCTCCCTCGACGCGGACACGGTGGTCGACGGACGCGGCGTCGAGGGCCTCACCTACGTCTGGACGCCCGCCCAGCTGCGCGAGGTCCTCGGGGACGACGACGGCGCCCGCGCCGCGCAGGTCCTCGGCGTCACCGAGGAGGGCACCTTCGAGCACGGCACCTCCACGCTGCAGATGCCGACCGACCCCGACCCGGTCTGGTGGGACGACGTCCGGGCCCGGCTGCGCGTCGCCCGCCTGGAGCGCCCGCAGCCGCACCGGGACGACAAGGTCGTCACCGCCTGGAACGGCATCGCGATCGCGACCCTCGCCGACGCCGGCGCCATGATGGACCAGCCGCTGTGGGTGGCCGCCGCCCGCCACTGCGCCTCGTTCCTGCTCGCCGAGCACGTCGTCGAGGGGCGGCTGCGGCGGGCGTCCCGCGGCGGCCTCGTCGGGGACGCGCCGGCCGTCGCCGCCGACCACGGCGACCTGGCGCGCGGGCTGCTGTGCCTGCACCAGGCCACCGGCGAGGCGCAGTGGCTCGACTCCGCGGTGCAGCTGCTGGACACCGCGATCGAGCTGTTCGCGGCGGAGGACGGCAGCTTCTACGACGTCGGGTCCGACGCCGAGCGCCTCGTCGTGCGCCTCCGCGACCCCAGCGACGGCCCCGAGCCGTCGGGCCAGTCGGCGATGGCCGAGGCGCTGTTCACCGCCGCCGCGCTCACCGGGTCCGAGCGGTACCGCCGGCTCGCCGAGGACGCCGTGCGGGCCTCCGGCACCCTCGCCCGGCGCGCCCCCCGGTTCGCCGGCGGGGTCCTCGCCGCCGCCGAGGCGCTCGCGGACGGGCCGCGGCAGGTCGCCGTGGTCGGGGCGCGGGCCGGCGGTGACGGCGGTGTGCTCCTGGACGCGAGCCGCGCCGGGATCGGGGTGCGCCACGTGGACGACGACGTCGGGTCCGGCCGGGCGGCCGAGCTGCTGCACGCCGCACGCCGCGCGCACACCGCGGGCGCCGTCGTCGTCCCCGGGATGCCGGACATGTCCGGGGTGCCGCTGCTCGCCGACCGGCCGCTCGTAGACGGCGAACCCGCCGCCTACGTGTGCCGCGGGTTCGTGTGCGACCGACCCGTGACCACCCCCGAGGAGCTCACCGCGGTCCTCGAACGCTGA	MADRLRSATSPYLRQHADNPVDWWPWSEAAFAEARRRDVPVLLSVGYAACHWCHVMAHESFEDDEVAAVINEHFVPIKVDREERPDVDAVYMAATTAMTGQGGWPMTAFLTPDAEAFHCGTYFPREQFLEVLGAVRDAWADARDAVTQRAGAVTEAIARTTSGMPAAPLDDAELAAAVQTLRGEADTTHGGFGGAPKFPPSMTLDHLLRHHARTGDPAALEMVERTCTAMARGGIYDQLGGGFARYAVDAAWVVPHFEKMLADNAQLLGVYARWWRATGSPLAERVAQETAGFILRDLATSSRGFASSLDADTVVDGRGVEGLTYVWTPAQLREVLGDDDGARAAQVLGVTEEGTFEHGTSTLQMPTDPDPVWWDDVRARLRVARLERPQPHRDDKVVTAWNGIAIATLADAGAMMDQPLWVAAARHCASFLLAEHVVEGRLRRASRGGLVGDAPAVAADHGDLARGLLCLHQATGEAQWLDSAVQLLDTAIELFAAEDGSFYDVGSDAERLVVRLRDPSDGPEPSGQSAMAEALFTAAALTGSERYRRLAEDAVRASGTLARRAPRFAGGVLAAAEALADGPRQVAVVGARAGGDGGVLLDASRAGIGVRHVDDDVGSGRAAELLHAARRAHTAGAVVVPGMPDMSGVPLLADRPLVDGEPAAYVCRGFVCDRPVTTPEELTAVLER				NA	NA	NA	NA	NA
AK001_03326	759			hypothetical protein	ATGGGCGTGCGGAGGGCCGGACGACGGTGGTGGCTGCGGTGGACGGCGGCGGGTCTCGGCGCGCTCGCGCTGGTGACGGGGGTGCTGGCGGTGCTGGTGTGGAACGGCGTGGTGTGGCCGAACCGGTTCCTGGTCGGCGGCTACGAGGTGCGCGGCGTCGACGTCTCGAGCTACCAGGGCGAGATCGACTGGCCGGTCCTCGCCGCCCAGGACCTCGACTTCGCGTTCATGAAGGCGACCGAGGGCTCCAGCCACGTCGACGAGCGGTTCGCGGCCAACTGGGACGGCGCACGGAGCACGGACCTGGTGGTCGGCGCCTACCACTTCCTCAGCTTCGAGAGCCCCGGGGAGCGCCAGGCGGCGCACGTCGTCTCCCAGGTGCCGGCCGACGCCGGCACGCTGCCGCCCGTGGTGGACGTGGAGTACTACGGCGAGTTCCTCACCGACCCGCCGAGCCGGGACGAGCTGCGCGGCATCCTCGACCCCCTGCTGGCCGACCTCGAGGCGCACTACGGCGCGCCGCCGATCATCTACACGACCCAGGAGCTGCGCAGCTCCTACCTCGGCGACGACTACGACCGGTACCCGCTGTGGATCCGGTCGGTCGCGCTCACCCCGGACCTGCCGCGCGAGAGCTGGGAGTTCTGGCAGTACTCCGACCGGGACCACCTGGACGGGTACGTCGGCGAGGAGGAGCACATCGACATGAACGTCTTCGACGGCTCGCTCGGCGACCTGGACGCCCTCACGCTGCCCTGA	MGVRRAGRRWWLRWTAAGLGALALVTGVLAVLVWNGVVWPNRFLVGGYEVRGVDVSSYQGEIDWPVLAAQDLDFAFMKATEGSSHVDERFAANWDGARSTDLVVGAYHFLSFESPGERQAAHVVSQVPADAGTLPPVVDVEYYGEFLTDPPSRDELRGILDPLLADLEAHYGAPPIIYTTQELRSSYLGDDYDRYPLWIRSVALTPDLPRESWEFWQYSDRDHLDGYVGEEEHIDMNVFDGSLGDLDALTLP	PGPT0019160_1334	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASES	PLANT_DEGRADATIVE_GS|GH-LYSOZYME,PGPT0019160-acm-K07273	NA	NA
AK001_03327	381			hypothetical protein	ATGCCCGCGCCTGCCACCGCCGTCCCGCCGCTGACCGGCCTCGGCCGCCTCTTCGCCGTCGTCGCCTGGGTCGAGGCCTTCACCTGGGCCGGGCTGCTCGTGGGCATGTACCTCGAGCACGTCGCGGGCGTCACCGACCTCGGCGTCTGGCTGTTCGGGCGGCTGCACGGCGGGGCGTTCGTCGCGTACGGCGTCGTCGCGCTGGTCGTCGCCGTGCGGTACCGGTGGGGGTTGTGGCGCACCCTCGTGGCGCTCGCCGCCGCGGTCCCGCCGCTGACGACGATCCTCGCCGAGGTGTGGCTGCGCCGCACGGGACACCTCACCGCGCCCGAGGCGCGCGCCGAGCGCGAGCCCGTCGCCGGGGCGGCCCCGCGCGGATGA	MPAPATAVPPLTGLGRLFAVVAWVEAFTWAGLLVGMYLEHVAGVTDLGVWLFGRLHGGAFVAYGVVALVVAVRYRWGLWRTLVALAAAVPPLTTILAEVWLRRTGHLTAPEARAEREPVAGAAPRG				NA	NA	NA	NA	NA
AK001_03328	654			hypothetical protein	ATGACCGAGCCAGCGTTGCGGATCGTCACGCACCACCACGCCTGCCTCGAGATCGTGGCCGACGGCGGCCGGGTCCTGATCGACCCGGGGGTGTTCGGACCCGCCCCCGACCTCGACCGGGTCGACGCCGTGCTGGTCACGCACGAGCACCCCGACCACGCCGACCCCGCGGTCCTGGCCGACGCGCTGCGGCGCGGGATCCCGGTCCTCGGACCGGCCTCGGTGCGCGCCGCGCTCGACGCGGAGACCGCCGCGCGGTGGCAGGTCCTCTCCCCCGGCGACGAGGTGTCCGTCGCCGGGCTCGACGTCGTCGTCGGCGGTGGTGAGCACGCCGCGATGCACCCCGAGACGGCCGGGCCGGAGAACCTCGCCTACTTCGTCGCCGGGACGGTCCTCGTCACCGGCGACCGGCACACGCCCTGGGACGGGCCGGTCCCCGTGCTGGTCACCCCGGTCGACGCCCCGTGGCTGCGGGCCGTGGACCTCGTCCGGTACGTCCGCGAGATCGCGCCGCACACCGTCGTCGGCGTGCACGACGGGCTGCTCAACGACACCGGTCTGTCGATCGCCGACCGCGTGCTGACCTCGCTGCAGCGCGAGGGCGTGACCCGCACGGTGCGGCCCGCCGTCGGCGAGGAGATCACGGTCCCCTGA	MTEPALRIVTHHHACLEIVADGGRVLIDPGVFGPAPDLDRVDAVLVTHEHPDHADPAVLADALRRGIPVLGPASVRAALDAETAARWQVLSPGDEVSVAGLDVVVGGGEHAAMHPETAGPENLAYFVAGTVLVTGDRHTPWDGPVPVLVTPVDAPWLRAVDLVRYVREIAPHTVVGVHDGLLNDTGLSIADRVLTSLQREGVTRTVRPAVGEEITVP				NA	NA	NA	NA	NA
AK001_03329	3801			hypothetical protein	ATGACGCGTGCCGCTCGGGAGATCCGCCGTTCCGTCCGCCGCGCGACGGCCCGGCTCGGGGCCCTCGCCGTCGCCACGGGACTCGTGGGGGCCGCGGCGGTCGCCCCGGCCCAGGCCGTCGTCGAGCGGTACGACCCCTTCGCGGTGAACCAGGGCTTCTCCGCCGTGGCGACCGGCGACGCCCGGCTCAACAACGGCGAGTTCGAGGGGTCGGTCGCCGCGTTCGGCAGCCTGTCCACGACCAGCCAGAACTACCCGTTCATCCACCAGGCCGCGGGCAGCCCGGACTACACCGTGCCGACCGTCGACGGGGACCCGGTGCGGGCGCTCGCGGACCGCTTCACCGGCGCCGGGGCGTTCACGGTGACCAACCGCGACGACTCGGGAACGATCGCCCCGTACTCGCCCGAGGCCACCGCGACGGCGAAGCTCGTCGACCTCGCGGGCGTCTCGGCGGCCGAGCGGGGTTCGGGGTACACGCGCCTGACCAACGCCGCCGGGGGTACCTTCGACCTGGAGCGCCTGCCGTACGACGGGGCGACCTGGCAGGACGACGTGGCGACGGAGCGCGCGAGCGTCGCCGACTACTTCGACGACCTCGACGCCCAGGTCGCCCGGACGAACCAGTGCCTGGCCGACATGTTCCTCGACCCGGAGCTCGGCCACGAGGTCACGGTGACCGGCGACGGGAACCTGACGTCCGTCTCCGACTTCTCGACCACGATCCCCAACTGGATCGACTACGAGGACGTGGCCGGCACCGTCGTCAAGCTCGACGACGCCGGCGGGTACACCCCGTCGGCGCAGGCGCCGCTGGTCGTGCGCGTCTCGGACCCGACGACGACGGTCGGTCCGCTGAACTTCGAGGGCTGGAACGACCAGGACCTGTCGTCCTTCATCATGCTCGACATGTCCGAGGCCTCCGGTCCGGTGACCGTCGACGGTCTCGAGTACGGCGCCGTCTGGGCGCCCGGGGTGGACGTCGTCTACACGTCCTCGCGCACGACGAACGGCCAGTGGTTCACCGACGACTTCACCACCGGCGGTGAGAACGGTGGTGGCGGCGGCGAGCTGCACCACCACACGTTCCTCGGCGAGCTCCTGTGCGACGTCGACGACACCCCGGAGATCACCTCGCAGGCCGTGGTCGCGGACTCCGCGGACGGACTGCTGCCGGCCGACGGCGGCACGGTCGTGGACACGGTCTCCTACACCGGGCTGGAGCCGGAGACCGAGTACACCGTCACCGCGACCGTCATGGCCGCCGACGGCACCGACACCGGGATCACCGCGACGACGACGTTCACCCCCACGTCGTCCAGCGGCACCGTGGACGTCGCGATTCCGGTGACGCCGGAGCAGGCGGCGCTGTACGCCGGGCAGGACCTCGTCATCTTCCAGTCCGTCGCTCTGGACGGCACGGAGGTGGCCGGCCACGAGGACCTGCAGGACCCGGACCAGACGTTCGGGGTCGCCCCGATCCCGGCCACCGGTGGTTTCGACGTCGTCAAGGCGATCGACGGCAACGGGGCACCACTCGTCGACCCGACCACGACGTTCACCGTCACCTGGGAGGTCGTCGACGGCCCCTCCACCGGGCGGTCCGGCACGCTCGAGGTGCAGGCCGACGGCACCGTCGTCGCCGGACCGGACGACCTGCTCGAGGGCGACGTCGTGGAGTTCTCGGAGCTGACCGCCCCGGACGTCGAGAACGCCGACTTCTCCGACGTGACCATCGACCCGGAGTCGATCACCATCGACCCGGCGTCCCCGACGACGCCGGTCATCACGGTGACGAACACCTACGAGGCTGCCGACGTGCCCTTCTCGATCCACAAGGAGTTCGCCGAGGGCTCCGTGGTCGACGCCTCCGACTTCGAGGGTGAGTTCTTCACCGTGGAATGGGAGGTCACCGTCGGACCCGACGTCGACGAGAGCGGCACCGTCGAGCTCCCGGCCGACGGCGATCCCGTCGTCGTGGAGGGGCTGCGGCACGGCGACGCCGTCTCCTTCACGGAGGTCTCCCTGCCGGAGCCCCCCGAGGGTGTCGTCTGGGGAACGCCCGTCATCACGCCGGACCCGCTGGTTCTCGACGCGGGCGCCGCCGAGCCGGCGACCGTCACCGTCACCAACAGGGCGTCCTCCGAACGCACCTCCGCAGGGGACATCTCGATCGCCAAGTACCTGGCCGGTGAGGGCGCCGGTGTCGTCTACCCGGACTTCGACAACCCGGACTGCGCCCCTCAGGGCGACGGCGGCGACTGCGCGGACCCGCCCGAGTACCGGTTCCGCTGGACGGTGATCGAATCGGCTGACCCCGAGAGCACGGGGCGCACCGGGACCGTCGACGTCCCCGCGGACGGCAGCGCGATCGACATTCCCGGCGAGGACGTGGAACCCTTCGACATCGGGGACGTCGTGGAGATCGACGAGGTGGGGTGCGTCGCGAACTGCCCGGACGGCGGTGTGGACCTGACCGATGTGACCTACTCCCCGGCGCGGACCGTGATCGTCGACCAGCGGGTCGACATCACCGTCGACGTCACCAACACCTACGACATCGCCGACGCGACGTTCACCGCGCACAAGGAGATCGTGGGGTCGGGGGCCGACCTGGTGCCGGACGACGCGACGTTCGGCCTGCACTACGAGGTGGTCGACGGACCGTCCGCCGGCGTGGTCGGCACGCTCGACCTGCCGGCCGACGGCACCGTCGTGGACGGCCCGACGTTGACGGACGGCGACGTCCTGGAGCTCTCCGAGGCGTCGACCCCGACGGTCGACGGCATCACCTGGGGCGAGGTCACGATCGATCCGACCGAGCTGACGCTCGACTCCGAGGCGGAGACGGTCGACGTGACGGTGACGAACACCGCCGAGCCGGCCCCGACGCTGTCGTCCCAGGTCACCGTCCTCGACCAGACCGCCTCCGGGATGCTGGCCTACTCCGGCGGCACCGTCGTCGACACTCTCACGTACACCGGCCTCGAGCCGGGTGTCGAGTACACGGTCGCGGGACTGCTCGCGACCCCGGACGGCACCTCCACCGGGATCACGGCCGGGCCGGAGACGTTCGTGCCGGAGTCGTCCAGCGGCACGGTGGATGTCACGTTCGAGCTCACGCAGCAGCAGGCCGACACCTATGCCGACCAGGATCTCGTCGCCCTGCAGGCCGTCTGGGTCGACGGCGAGGTCGTCGTCGTGCACGCCGACCCGACCGACCAGGACCAGACCTTCACGGTCGCTGTGCCACCGACCCTGTCCTCGCAGGTGGCCGTCGTCGGCACCGATGGCAAGAGGGTCGGCCTGGAGGGCGCCACCGTGGTCGACACGATCAGCTACACGGGTCTGACCCCCGGGCTGGAGTACACGGTGGCCGGTGCCGTGGTGACCGACGGGCCGGCCTCCGTCGGCCCCGTCGGGGCGACGGCGTTCGTCCCGGACAGCCCGGACGGCACCGTGGACGTGACCTTCGAGGTCACGGCGGCGCAGGCGGCGGCGTACGCGGGGGAGTCGTTGGTGGTGTTCCAGGCCATCTTCCTCGACGGCGAGCTCGTGGTCGGGCACGCCGACCTGGCCGACGAGGCGCAGACGTTCGAGATCGTCGTCCCGCGGCCCGCGCCGTCCCCGGCGCCATCGCCGAGCCCGAGCACCCCGGCGCCGGTGCCGACCGCGCCCGACGGCGGCGGCGACCTCCCGGTCACCGGGCCCGGGGCGGTGGGCGCCCTCCTGGCGGTCGCGGTGCTCAGCCTGCTGGCCGGGCTGGGCCTGCTGCGGTGGCGCCGTCGGACCCTCGGCTGA	MTRAAREIRRSVRRATARLGALAVATGLVGAAAVAPAQAVVERYDPFAVNQGFSAVATGDARLNNGEFEGSVAAFGSLSTTSQNYPFIHQAAGSPDYTVPTVDGDPVRALADRFTGAGAFTVTNRDDSGTIAPYSPEATATAKLVDLAGVSAAERGSGYTRLTNAAGGTFDLERLPYDGATWQDDVATERASVADYFDDLDAQVARTNQCLADMFLDPELGHEVTVTGDGNLTSVSDFSTTIPNWIDYEDVAGTVVKLDDAGGYTPSAQAPLVVRVSDPTTTVGPLNFEGWNDQDLSSFIMLDMSEASGPVTVDGLEYGAVWAPGVDVVYTSSRTTNGQWFTDDFTTGGENGGGGGELHHHTFLGELLCDVDDTPEITSQAVVADSADGLLPADGGTVVDTVSYTGLEPETEYTVTATVMAADGTDTGITATTTFTPTSSSGTVDVAIPVTPEQAALYAGQDLVIFQSVALDGTEVAGHEDLQDPDQTFGVAPIPATGGFDVVKAIDGNGAPLVDPTTTFTVTWEVVDGPSTGRSGTLEVQADGTVVAGPDDLLEGDVVEFSELTAPDVENADFSDVTIDPESITIDPASPTTPVITVTNTYEAADVPFSIHKEFAEGSVVDASDFEGEFFTVEWEVTVGPDVDESGTVELPADGDPVVVEGLRHGDAVSFTEVSLPEPPEGVVWGTPVITPDPLVLDAGAAEPATVTVTNRASSERTSAGDISIAKYLAGEGAGVVYPDFDNPDCAPQGDGGDCADPPEYRFRWTVIESADPESTGRTGTVDVPADGSAIDIPGEDVEPFDIGDVVEIDEVGCVANCPDGGVDLTDVTYSPARTVIVDQRVDITVDVTNTYDIADATFTAHKEIVGSGADLVPDDATFGLHYEVVDGPSAGVVGTLDLPADGTVVDGPTLTDGDVLELSEASTPTVDGITWGEVTIDPTELTLDSEAETVDVTVTNTAEPAPTLSSQVTVLDQTASGMLAYSGGTVVDTLTYTGLEPGVEYTVAGLLATPDGTSTGITAGPETFVPESSSGTVDVTFELTQQQADTYADQDLVALQAVWVDGEVVVVHADPTDQDQTFTVAVPPTLSSQVAVVGTDGKRVGLEGATVVDTISYTGLTPGLEYTVAGAVVTDGPASVGPVGATAFVPDSPDGTVDVTFEVTAAQAAAYAGESLVVFQAIFLDGELVVGHADLADEAQTFEIVVPRPAPSPAPSPSPSTPAPVPTAPDGGGDLPVTGPGAVGALLAVAVLSLLAGLGLLRWRRRTLG				NA	NA	NA	NA	NA
AK001_03330	837	ybjI	COG0561	5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjI	ATGCTTCTCCCCCCGGTTCCCCGCCCGGCCGACGTGCGCCTCGTCGTCACCGACATGGACGGCACGCTGCTCGACCCCGACGGCCGGGTGCCCGACGGCCTGTGGCCGCTGCTGGCCCGGATGCACGACGCGGGCATCACCCTCGTGCCGGCCTCGGGACGACAGCACGCCACCATCGCCGCCGCGTTCCCGCCCGAGCGCACCCCCGGGCACGAGGAGCTGGTGATCATCGCGGAGAACGGCACCTACGTGACCCGCGGCGGGGCGGCCGTCGCGACCGACGACCTGGCCCCCGAGGCGGTCGGCGCGATCGTCCGTGCCGTGCGCGGCATCGATCCCGTCCGCGGCGGCGCCGTGGTCGCCGGACGTCGCTCGGCCTACGTCGAGCGGGCCGACCCGGGGTTCGTCGACCACGTGCGCACCTACTACACCGACCTCACGGTGGTCGACGACCTCCTCGCGGTCGACGACCAGGTGCTCAAGGTGGCGGTGTACGACGACGTCGACTCCGCGACCGGCACCTACCCCTCCCTGGAGCACCTCGCCGGCACGCTGCAGGTGGTCGTGTCGAGCCCGCACTGGGTCGACGTGATGAACCCGGGCGTCAACAAGGGGGTCGCGCTGCGTCGGCTGCAGGCGGCGCTCGGGGTCACCCCGGCGCAGACGGTGGCGTTCGGGGACTACCTCAACGACCTCGAGATGCTCGACGCCGCCGACTGGTCGTACGCGATGGCCGGCGCCCACCCGGACGTGCTGGCCCGCGCCGCGCACACCGCCCCGGGCAACGCCGACCACGGCGTCGTCCAGGTGCTCGCGGCGATGCTCGACGAGCGCTGA	MLLPPVPRPADVRLVVTDMDGTLLDPDGRVPDGLWPLLARMHDAGITLVPASGRQHATIAAAFPPERTPGHEELVIIAENGTYVTRGGAAVATDDLAPEAVGAIVRAVRGIDPVRGGAVVAGRRSAYVERADPGFVDHVRTYYTDLTVVDDLLAVDDQVLKVAVYDDVDSATGTYPSLEHLAGTLQVVVSSPHWVDVMNPGVNKGVALRRLQAALGVTPAQTVAFGDYLNDLEMLDAADWSYAMAGAHPDVLARAAHTAPGNADHGVVQVLAAMLDER				NA	NA	NA	NA	NA
AK001_03331	2322	bglB_2	COG1472	Thermostable beta-glucosidase B	ATGGCTGTCGACACCACCGCGACGACGCGTCTCGCCGTCGCCGACGTCCCCCGGCTCGTCGCCGAGCTGACCCTGGAGGAGAAGGCCTCCCTCTGCTCCGGGCAGGACTTCTGGAACACCCAGGCGGTCGAGCGCCTCGGGATCCCGGCCGTGATGGTCACGGACGGACCGCACGGGCTGCGCAAGCAGGCCGGCGCCGCCGACCACGTCGGGCTGAACGACTCGGTCCCCGCCACCTGCTTCCCGCCCGCCGCCGGGCTCGCCTCCACCTGGGACCGCTCCGTGGTCCGCCGCGTGGGCGAGGCGCTCGGCGTCGAGACCCGCGCGAACGACGTCGGCGTGCTGCTCGGGCCCGGCGTCAACATGAAGCGCAGCCCCCTGTGCGGCCGCAACTTCGAGTACTTCAGCGAGGACCCGCACCTCGCCGGCGAGCTCGCCGCCGACCTCGTGGACGGCATCCAGTCCCAGGGCGTCGGCACCTCGCTCAAGCACTTCGCGGCCAACAACCAGGAGACCGACCGCATGCGCGTCTCCGCCGAGGTCGACGAGCGCACCCTGCGCGAGATCTACCTGCCCGCGTTCGAGACCGTCGTCACCCGCTCCCAGCCCTGGACGGTGATGTGCGCCTACAACAAGATCAACGGCGTCTACGCCTCCCAGGACCTCTGGCTGCTCACCGAGGTCCTGCGTGACGAGTGGGGCTTCGAGGGTCTCGTCGTCTCCGACTGGGGCGCGGTCGACGACCGCGTCGAGGGCGTCGCCGCCGGTCTCGACCTCGAGATGCCGTCCTCCGCCGGGATCAACGACGCCCGCGTCGTCGCCGCCGTGCGCGCCGGCGAGCTCGACGAGGCCGTCGTGGACCAGGCCGCCACCCGGGTCCTGACGATGGTCGCCCGTGCGCTGGAGGCCGCGGCCGACCCGGGCACGTTCGACGCCGCCACCCACCACGCCCTCGCGCACGAGGTCGCCACCCGCACGGCCGTGCTGCTCAAGAACGACGGCGACGTGCTGCCGCTCGACCCGTCCGCGGCCGCCGACCTCGTCGTCGTCGGCGAGATGGCGCGCACCCCGCGCTACCAGGGCGCCGGGTCCTCGCAGGTCAACCCCACCCGCCTGGTCAGCGCTCTCGACGCGTTCGCCGAGCGCGGCCTCGACGTGCCGTTCCACCCCGGCTACGTGCTGGCCGAGGCCGCCGGGAAGCCGGGGCAGGACCGCACCGACGCCGAGCTCCGGGCCGAGGCCGTCGCGGCCGCGGACGGGCGCACCGCCGTCGTCTTCGCCGGGCTGCCGGCGGTCGACGAGTCCGAGGGCTACGACCGCGAGCACATGGACCTCCCGGCCGCGCACCTCGCCCTGGTCCGCGAGGTCGCCGCCGTCGCCGCGCGCACGGTCGTCGTGCTCTCCAACGGCTCGGCCGTGACGGTCTCCGGCTGGGAGGACGCCGCCGACGCGATCCTGGAGACGTGGCTCGGCGGTCAGGCCTCCGGGTCGGCGACGGTCGCGCTGCTGCTCGGCGAGGCCTCGCCGTCCGGCCGCCTGGCCGAGTCGATCCCCGTCGCGCTCACCGACGTGCCCGCCCAGCTCAACTTCCCGGGCGAGAACGGTGCCGTCCGGTACGGCGAGGGGCTGTTCATCGGCTACCGCGGGCTCGACGCCACCGGGGCCGACGTCTCCTACCCGTTCGGCCACGGCCTGACCTACACCTCGTTCGGGTACGCCGACCTGACCGTCGACGCCGACGCGGTGACCCCGGCGACGGCCCCGGACGACGTCGTCGGGCGCGTCGCGTTCACCGTCACCAACACCGGGTCCCGCGAGGGTGTCGCCGTGCCGCAGCTCTACGTGGGCCGGCCCGGCTCCGCCGTCGCGCGGGCCCCGCGCGAGCTGCGGGGCTTCCGGACCGTCGCGCTGCAGCCGGGCGAGACGAAGCGGGTCGAGCTGGCGCTGACCCGCCGCGACCTGTCCCACTGGGACACCGCCACCCACGGCTGGGTCGTCGAGCCCGGCGCGGTCGAGGTCGCCGTCGGCGCCTCGTCCCGCGACCTGCCGCTGACCGCCGCGGTCGACCTCGTCGCGCCGACGGCGGAGGTGCCGCTGCGCGCCGACTCCACCATCGACGAGTGGCGTCGTCGGCCGGAGGCGTGGGCGGCCCTGTCGGCGGCCATGGGCGACGCCGCGCAGATGTTCGACACCGAGTCCGACCCCGCCATGGCGGCCATGCTCTCCGCGATCCCCGCGGTCAAGGTCACCACGATGGGCTTCGCCGAGGGGCTCACCCCCGAGAAGTTCTCGGAGCTGCTCGCGCAGCACGGCCAGGACTGA	MAVDTTATTRLAVADVPRLVAELTLEEKASLCSGQDFWNTQAVERLGIPAVMVTDGPHGLRKQAGAADHVGLNDSVPATCFPPAAGLASTWDRSVVRRVGEALGVETRANDVGVLLGPGVNMKRSPLCGRNFEYFSEDPHLAGELAADLVDGIQSQGVGTSLKHFAANNQETDRMRVSAEVDERTLREIYLPAFETVVTRSQPWTVMCAYNKINGVYASQDLWLLTEVLRDEWGFEGLVVSDWGAVDDRVEGVAAGLDLEMPSSAGINDARVVAAVRAGELDEAVVDQAATRVLTMVARALEAAADPGTFDAATHHALAHEVATRTAVLLKNDGDVLPLDPSAAADLVVVGEMARTPRYQGAGSSQVNPTRLVSALDAFAERGLDVPFHPGYVLAEAAGKPGQDRTDAELRAEAVAAADGRTAVVFAGLPAVDESEGYDREHMDLPAAHLALVREVAAVAARTVVVLSNGSAVTVSGWEDAADAILETWLGGQASGSATVALLLGEASPSGRLAESIPVALTDVPAQLNFPGENGAVRYGEGLFIGYRGLDATGADVSYPFGHGLTYTSFGYADLTVDADAVTPATAPDDVVGRVAFTVTNTGSREGVAVPQLYVGRPGSAVARAPRELRGFRTVALQPGETKRVELALTRRDLSHWDTATHGWVVEPGAVEVAVGASSRDLPLTAAVDLVAPTAEVPLRADSTIDEWRRRPEAWAALSAAMGDAAQMFDTESDPAMAAMLSAIPAVKVTTMGFAEGLTPEKFSELLAQHGQD	PGPT0019110_3078	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
AK001_03332	1017	rbsR_2	COG1609	Ribose operon repressor	GTGGGCCAAGTGAGTGTCCGGGACGTCGCGCGGCACGCCGGCGTGTCCGTCGGGACGGTGTCCAACGCGCTGAACCGACCGGACAGCGTCTCCCCGGACGCGCTGGCACGCGTGCGCGCCTCCATCGGCGAGCTCGGCTACGTGCGCAACGAGGCCGCGCGGAACCTCCGGTCCGGCGTCACGGCCAGCATCGGGCTGATCGTCGTCGACAGCCAGGTGCCGTTCTTCCAGGACGTCGGACGCGGTGCGGCCGACGAGGCGGCCGACCGCGGCATCGCCCTCCTCTACGGCAGCTCGGCCGAGGACCCCGCCCGCGAGCGCATGTACCTCGACCTGTTCGAGGAGCACCGCGTCCGCGGTCTGCTCATCGCTCCGGTCGGCGACGTGAGCCGACGCCTCCACCAGCTGCGGGAACGCGGGATCCGGACGGTCCTGGTCGACCGGTTCAGCGGGGAGGAGCCGGTCTCGTCGGTCTCGGTGGACAACGTGGCCGGCGGGCGCATGGCCGTCGAGCACCTGCTGGCGACCGGCCGGCGTCGGATCGCCTTCGTCGGCGGGCCGCTGACCCTGCGTCAGGTGACCGACCGGCTCGCCGGGGCGCGGGTCGCGGCGGACGAGTCCGGCCTGCCCGTGTCGGTCGAGGTCGTCGCGACCGAGACCACGAGCGTCGCCGCCGGCGTGGGAGCCGGCGAGCGTCTCCTCGCGAGGGAGCCCGCCGACCGGCCCGACGCCGTCTTCGCGGCGAACGACCTGGTGGCGCTCGGGCTGCTGCAGGCCATCGTGGGCGACGGCCGTCTCCGGGTCCCCGAGGACGTCGCGATCATGGGGTTCGACGACATCTCGTTCGCCGCGGCCGCCGCCGTACCGCTGTCCTCGATGCGGCAGCCCAGCACGACGATCGGCGCCACGGCGCTGCGGATCCTCCTCGAGGAGTCGGAGGACCCCGACACGATCCCGCGCCAGACCGTCTACCAGCCGGAGCTGGTCGTGCGACGCTCCACCGTCGCGAGCGCGTGA	MGQVSVRDVARHAGVSVGTVSNALNRPDSVSPDALARVRASIGELGYVRNEAARNLRSGVTASIGLIVVDSQVPFFQDVGRGAADEAADRGIALLYGSSAEDPARERMYLDLFEEHRVRGLLIAPVGDVSRRLHQLRERGIRTVLVDRFSGEEPVSSVSVDNVAGGRMAVEHLLATGRRRIAFVGGPLTLRQVTDRLAGARVAADESGLPVSVEVVATETTSVAAGVGAGERLLAREPADRPDAVFAANDLVALGLLQAIVGDGRLRVPEDVAIMGFDDISFAAAAAVPLSSMRQPSTTIGATALRILLEESEDPDTIPRQTVYQPELVVRRSTVASA	PGPT0017992_10531	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_03333	1521	rbsA	COG1129	Ribose import ATP-binding protein RbsA	GTGCAGTCGGACACCACGTCGGCGACGCCAGCGTTGGAGCTGTCGCGCGTCGTCAAGTCGTTCGGTGCCGTGGTGGCGCTGCGATCCGGGAGCCTCCGGCTCCACGACGGGTCGATCCATGCGCTCATCGGCGAGAACGGGGCCGGGAAGTCGACCCTGGTCAAGATCATCGCGGGGCTCTACCGGCGCGACGGCGGTGAGTTCCGGCTGCGCGGCGAGGAGGTCGACTTCCACAGCACCGCCCAGTCGAAGGCCAACGGCATCGCCGTCATCTACCAGGAGCCCACCCTCTTCCCGGACCTGTCCGTGGTGGAGAACATCTTCATGGGGCGCCAGCCCACCGGTCGGCTCGGCCGGATCGACCGGGCGGCCATGCGCGCCGAGGCGACCGAGATCTTCGAGCGCCTGGGCGTGTCGATCGATCCCGACCGTCCCACCGACGGGCTCTCGATCGCGGACCAGCAGATCATCGAGATCGCCAAGGCGATCTCCCTGGACGCGAGCGTCCTGGTGATGGACGAGCCGACGGCCGCGCTGAGCGGCGTCGAGGTCGACCGGCTGTTCTCGGTCGCCCGCAGCTTGCGTGACGAGGGCCGTGCGCTGGTCTTCATCTCCCACCGCTTCGACGAGGTCTTCGACCTGTGCGACACCGTCACGGTGATGCGCGACGGCGCCCACGTGGACACGATGCCGATCGCGGAGACGACCGTCGACGACATGGTGCGCATGATGGTCGGTCGCGACGTGACCGAGATGTTCCCCAAGCTCCCCGCCGAGATCGGCGAGGAGGTGCTCGCCGTCGACGGGCTCACCCAGCCCGGCGTGTTCCACGACGTCTCCTTCACCGTGCACGCCGGCGAGATCGTCGGCCTGGCCGGCCTCGTCGGCGCCGGTCGCAGCGAGGTCGCCCGTGCCGTGTTCGGCGTCGACCCCTACCGCGAGGGCACCGTGCACGTCGGCGGCGCACCCCTGCCCAAGGGGCGTCCGCGGGCCGCGATGGCCCGCGGCCTCGCCCTCGTGCCCGAGGACCGCCGGCGCCAGGGACTGGTGCTCGACCTCCCGGTGACCCGCAACATCACGCTCGCGGTCCGCGACCGGCTCGCCCGTTTCGGGCTCATCTGGGGGAGCCGCGAGAACGAGTCCGCCCGCGTCTGGGCCAGCCGCCTCGAGGTCAAGACGGCGGCGCTCGACACCGAGTCCGGCACCCTCAGCGGCGGCAACCAGCAGAAGGTCGTCCTCGGCAAGTGGCTCGCCACCGACCCGAAGGTCCTCATCGTCGACGAGCCCACCCGCGGCATCGACGTCGGGACCAAGGCCGAGGTCCACCGGCTGCTGTCGCAGCTCGCCCAGCAGGGCATCGCCATCCTCATGATCTCCTCCGAGCTGCCCGAGGTGCTCGGCATGGCCGACCGGGTCCTCGTCATGCGCGAGGGCCGGCTGACCGGCGAGTTCAAGCGGGAGCAGGCGACCCCCGAGGCCGTGATGCTCGCCGCCACCGCAGACGAGGAGCCCGCCCGATGA	MQSDTTSATPALELSRVVKSFGAVVALRSGSLRLHDGSIHALIGENGAGKSTLVKIIAGLYRRDGGEFRLRGEEVDFHSTAQSKANGIAVIYQEPTLFPDLSVVENIFMGRQPTGRLGRIDRAAMRAEATEIFERLGVSIDPDRPTDGLSIADQQIIEIAKAISLDASVLVMDEPTAALSGVEVDRLFSVARSLRDEGRALVFISHRFDEVFDLCDTVTVMRDGAHVDTMPIAETTVDDMVRMMVGRDVTEMFPKLPAEIGEEVLAVDGLTQPGVFHDVSFTVHAGEIVGLAGLVGAGRSEVARAVFGVDPYREGTVHVGGAPLPKGRPRAAMARGLALVPEDRRRQGLVLDLPVTRNITLAVRDRLARFGLIWGSRENESARVWASRLEVKTAALDTESGTLSGGNQQKVVLGKWLATDPKVLIVDEPTRGIDVGTKAEVHRLLSQLAQQGIAILMISSELPEVLGMADRVLVMREGRLTGEFKREQATPEAVMLAATADEEPAR	PGPT0016705_252	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016705-rhaT-K10562	NA	NA
AK001_03334	1029	lsrC	COG1172	Autoinducer 2 import system permease protein LsrC	ATGACCACCACGGCCACCACTCCGACGCATCCCGTCCTGGCGGGCCTCGGTCGCCTGATCCGCGCCCGCGAGACCGGGATCGCGATCGCCATCGTCGCCGTCGTCACGCTCGCGACGGTGCTCAACCCGAGCTTCCTGTTCTCGAACGACGGCTTCCGGGACCTCCTGCTGACGCCGTCGCTGCTCATGGTCGTCGCGATCGGGCAGGCGATCGTCATCATCACGCGGAACGTCGACCTGTCGGTCGGCTCCGTCGTGGGCCTCACGGCGTACCTGACCGGCACGCTGTTCGTGCAGGTGCCCGGGCTCCCGATCGTCCTCGTCTTCGTCGCGGGCATCGCGCTCGGCGCCGTGCTCGGCCTGATCAACGGCGCCCTCGTCGCCTTCGCCAAGGTGCCCGCGCTGGTGATCACCCTCGGCACGATGTACATCTACCGCGGCATCAACGTCGCGTGGACCGGCTCCGACCGGATCAACGCCTCCGACATGCCGGCGTCCTTCCGGGGCCTCGGCACCGACACGGTGCTCGGGCTGCCCGTCCTCACCCTGCTCGCCCTGGTGGTCCTCGTGTACGCCGCCTGGCACCTGCGCAACCTGCGCAGCGGCCGTGAGCTCTACGCGATCGGGTCCGACCCGGCCGCCGCCCAGCTCTACGGGCTGCGCGTGACCCGTCGCGTCCTGGCGGCCTTCGTGGTCAGCGGCTCGGCGGCCGGACTGGCGGGCGTCCTCTACGCCGCCCGGTACGGCACCGTCAGCTCGAACGCCGGGTTCGGCTGGGAGCTCGAGGCCATCGGCGCGGCCGTCATCGGCGGCGTGGCGATCTTCGGCGGTGTCGGCACCGTCTGGGGAGCGGCGCTCGGCGCGTTCCTGCTCCTGACCATCAACCGTGCCCTGCCGATCATCGGCGTGGACGACTTCTGGCAGCGCGCCGTCGTGGGCGTGCTCATCATCGGCGCCATCGTGCTCGACCGCATCGCCGCGCAGCGCCAGCACCGACGACTCGTCGCACAGAGGGAGGAGACCCGATGA	MTTTATTPTHPVLAGLGRLIRARETGIAIAIVAVVTLATVLNPSFLFSNDGFRDLLLTPSLLMVVAIGQAIVIITRNVDLSVGSVVGLTAYLTGTLFVQVPGLPIVLVFVAGIALGAVLGLINGALVAFAKVPALVITLGTMYIYRGINVAWTGSDRINASDMPASFRGLGTDTVLGLPVLTLLALVVLVYAAWHLRNLRSGRELYAIGSDPAAAQLYGLRVTRRVLAAFVVSGSAAGLAGVLYAARYGTVSSNAGFGWELEAIGAAVIGGVAIFGGVGTVWGAALGAFLLLTINRALPIIGVDDFWQRAVVGVLIIGAIVLDRIAAQRQHRRLVAQREETR	PGPT0016690_138	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016690-rhaP-K10560	NA	NA
AK001_03335	1056	lsrD		Autoinducer 2 import system permease protein LsrD	ATGACCGCCACCACGGAGGCAGCGGCGCCCCGCACGTACGCCGCCCACGCCCAGCCGCTCTGGCGCCGCGTCCTCGTGACGCGGGAGGCGTCCATCATCGGTCTCCTGCTCGCGGTGATCGCCGTCGCGATGGCGACGGTCCCGAACTTCGACAGCCCGCTGACGGTGACCTACCTGCTGCGCGAGACCGCGCCGATCCTGCTCATCGCGCTGCCGATGACCCTGATCATCATCACCGCCGAGATCGACCTCTCGGTGGCCAGCGTGCTGGGGCTGGCCAGCGTCGTCACCGGGCTCGGGGTCCAGGCCGGCTGGCCGCTCCCCGTGGCCATGGTGGTCGCCGTCCTGGTCGGTGCGATGGCCGGGGCGATCAACGGTGCCCTGGTGACCGTCGTCGGGCTCCCGTCCCTCGCGGTGACCATCGGGACGCTCGCGCTGTTCCGCGGCATCGCCGTGGGGCTCCTGGGGACGACCGCCATCAGCGACTTCCCTGAGACGTGGACCGACCTGGCCCGCACCAACATCCCCGGGACGCCCGTCCCGGTCGTCATCATCGCGTTCGCCGTGCTGGCGCTCGGGTTCGCGGTGCTGCTGCACTTCACCCCGTTCGGCCGGTCGCTCTACGCGATCGGGCTCAACAAGGAGGCCGCGGCCTTCTCCGGCATCGACGTCGGACGGTCGAAGTTCTGGCTCTTCGTGATGAGCGGGACGGTGGCCGGTTTCGCCGGCGTCTACTTCACCCTGCTGTACAACAACGCCCGCGGTGACAACGCCATCGGCATGGAGCTGCAGATCATCGCCGCCGTCCTGCTCGGCGGGGTGTCCATCTTCGGCGGCCGCGGCGCCCTGCACGGCGTCATCGCCGGTGTCCTGCTCATCGGGACGCTCGGCAGCGCACTGCGCCTGGCCGGCGTGACCAGCGACATCATCAACGTCCTGACCGGCCTGCTGCTCGTGCTGTCGGTCGTCTCCGCCAGTGCCCTGAGCTGGGTCCACCAGCGACGGGTCGCCGCCCTGGGCCGACGGCGCGGCCGATCGCCCGGGACCTCGTCCTGA	MTATTEAAAPRTYAAHAQPLWRRVLVTREASIIGLLLAVIAVAMATVPNFDSPLTVTYLLRETAPILLIALPMTLIIITAEIDLSVASVLGLASVVTGLGVQAGWPLPVAMVVAVLVGAMAGAINGALVTVVGLPSLAVTIGTLALFRGIAVGLLGTTAISDFPETWTDLARTNIPGTPVPVVIIAFAVLALGFAVLLHFTPFGRSLYAIGLNKEAAAFSGIDVGRSKFWLFVMSGTVAGFAGVYFTLLYNNARGDNAIGMELQIIAAVLLGGVSIFGGRGALHGVIAGVLLIGTLGSALRLAGVTSDIINVLTGLLLVLSVVSASALSWVHQRRVAALGRRRGRSPGTSS	PGPT0016695_42	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016695-rhaQ-K10561	NA	NA
AK001_03336	1056	lsrB		Autoinducer 2-binding protein LsrB	ATGTTCTCCTTCCAGCACCGTGCACGCCGCGGTCTCGCGCTGACGGCCTTCGCCGCCGGCACCGCGCTCGCCCTGTCCGCCTGCTCCGGCGGTGACGACGCCGGGTCCGACGGCGGGGACGCCGGCGGCGGCGGCAGCGAGGAGGCCGCCTCGATCACCTTCCTGCCGAAGAGCCTGGGCAACCCGTACTTCGACACGTCGAACGCCGGGGGCGCCGACGCCGTCGAGGAGCTCGGCGGCACCTTCGAGGAGGTCGGTCCCTCCGAGGCGAGCCCGACCTCGCAGGTCAGCTTCATCGAGACCGCCGCCCAGCAGGGAGTCGACGCGCTCGTGGTGTCGGCGAACGACCCGGAGGCGATCTGCGACGCCCTGAACGAGGCGCGGGACGTCGGCGTCGCCGTCGTCACCTTCGACTCCGACACCAACCCGGAGTGCCGCGACCTGTTCGTCAACCAGGCCACGGCCGAGGGCATCGCCCAGGCCCAGGTGGACCTCATCACCGAGCAGATCGACGACTCGGGCCAGATCGCGATCCTGTCGGCCTCGGCGAACGCGACGAACCAGAACGCGTGGATCGAGCTCATGGAGGCCGAGCTCGACGCCAACCACCCGGACGTCGAGCTGGTCGAGGTCGCCTACGGCGACGACGACGACCAGACCTCGTTCGACAAGACGGCCGCGCTGCTGCAGACGTACCCGGAGCTCGAGGGCATCGTCTCGCCGACCACGGTCGGCATCGCGGCGGCCGCGCGCTACCTGTCCACGTCGGAGTACCAGGGCGAGGTCGCGCTGACCGGCCTGGGCACGCCGAACCAGATGCGCGAGTACGTCGAGGACGGCACCGTCGAGGCCTTCGCGCTCTGGAACCCCGCGGACCTCGGCTACCTGTCGGCCTACGCCGCCAACGCCCTGGCGACCGGTGAGATCTCGGGCGAGGCCGGCGACACGTTCGAGGCGGGCGAGCTCGGGTCCTACGAGGTCGACGAGGAGGGCACCGTGCTGCTCGGCGACCCGTTCGTGTTCGACGCGGACAACATCGGAGACTTCGACTTCTGA	MFSFQHRARRGLALTAFAAGTALALSACSGGDDAGSDGGDAGGGGSEEAASITFLPKSLGNPYFDTSNAGGADAVEELGGTFEEVGPSEASPTSQVSFIETAAQQGVDALVVSANDPEAICDALNEARDVGVAVVTFDSDTNPECRDLFVNQATAEGIAQAQVDLITEQIDDSGQIAILSASANATNQNAWIELMEAELDANHPDVELVEVAYGDDDDQTSFDKTAALLQTYPELEGIVSPTTVGIAAAARYLSTSEYQGEVALTGLGTPNQMREYVEDGTVEAFALWNPADLGYLSAYAANALATGEISGEAGDTFEAGELGSYEVDEEGTVLLGDPFVFDADNIGDFDF	PGPT0016700_140	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016700-rhaS-K10559	NA	NA
AK001_03337	3459			hypothetical protein	ATGAACCGCATCGCACGAACCACCATCGTCACCGCCGCCGCCGCGGCGCTCACCCTGCCCCTCGCCACGGTGCCGGCGTCCGCCGGTCCGGGCGACCACCCCGTGTCCGTCTCCGGGCTGAGCGTCGACGGACGCGACGACACCCCGCTCGACGTCGACAGCGACCGTCCGCTGCTCGGCTGGACGATGTCGAGCGAGGACACCCCCGGGAACCCCTGCTACGACGCGTCGGCCGCGGGCACCTGCGCGATCGACGAGCAGACGGCCTACGAGATCGAGGCCGCGTCCTCGGTCGCCGACCTGGAGGCCGGCGACCTGCTCTGGGACTCGGGCAAGATCTCCTCCGACCGGCAGGCCAACATCGCCTACGGCGGGGACGACCCGCTGGAGTCCCGCGACAGCGTGGCGTGGCGGGTGCGCGTCTGGGACGCGCTCGGTCACCCCTCGGAGTGGAGCGAGCCGGCCACCTTCAAGATCGGGCTGCTCCAGCAGAGCGACTGGGGCGACGCCCGCTGGATCGAGCAGGCGGACCGCGACCCGGCGGACCCGCTGCCGATCTTCGCGCGTCAGTTCGACCTCGACGAGGACAAGGACGTCGCCTCGGCCCACCTCTACGTGTCGGGCGCGGGGCTGCACCACGCCACCGTCAACGGCGAGAAGGTCACCGAGGAGCACCTGGCCCCCGGCAACACCAACTACCAGCTCTCGACCGAGTACCGCACCTACGACGTCTCGTCCGTGCTCGAGCCGGGGGAGAACGCCGTCGGCGTCGAGCTCGGCAACGGCACGGCGTACGTGCGGCGCTCGATCCACAACGAGGAGGTCGGTCGCACCTCCCCGTACGCCTGGTGGCAGAGCCAGATCAAGGGCAGCGGCGAGCTCGTCGCACCGGTGGAGGCCGGGGCGACGACCGTGCTCCTGACCAGCACCGAGGACTACCACGTCGGCGGCACGATCAACATCGACACCGGCGACGGCGGTGACCGCCTCGAGTCGCGCGTCATCACCGACATCGGCACCGCGGGCGAGGACGGGACCGGTATCTCGTTCGAGCCGGGCCTGGACGCGGCGCACGCCGTCGGCGCGCACGTGACGGCGTCGGGCAACAACATCGCCGAGACCGACCCCAGCGCGGGCGCCGCGGTGACCCCGCGGATGATCGCGCGTCTCGAGGTGTCCTACGCCGACGGGTCGAGCGACGTCGTCGTGTCGGACCGTGACTGGCGGGCCGCATCCGGTGCGCTCGTCACCGACGCCTGGTACTCCGGCGAGGACTACGACGCCCGCCGCGAGCAGGTCGGCTGGAACACGCCGGGCGCCGACCTCACGGACGGGGCCGAGCGTCGCGACGGGTCGGCCATGAACTGGGCCGCGGCCGGGATCGCCCCGCCGCCGAACCTCGCCACCGAGCTGGTCGCGCGCCAGGCGGAGGGCATCTACGAGGCCGAGCGGTTCACCCCGCAGAACATCACGAACCCCGCCGAGGGCGTGTGGGTCTTCGACTTCGGCCAGAACTTCGCCGGGTTCGCCCAGCTGGACCTGCCGGAGCTGCCCGAGGGCACCGTCGTCAAGGTCAAGCCGGCGGAGAGCCTCGCCGAGGACGGCACGGTCGACCAGGGCTCGCTCGGGCCCGGGTTCCGCGGCAACGACCTGTTCAACTCCTACATCACCGCCGGTCTCGAGGGCGGCGAGTCGCGCACGCCGATGTTCAACTACTTCGGCATGCAGTGGGTCCAGATCGAGGGTCTGCCCGCGGACTACACCCCGACGGCCGACATCGTCACGGGCCTGCGCCTGCAGGCGGCGACGCCGGAGGTCGGGACGTTCGACTCGTCGAACGACCGGATCAACCGCATCAACAAGATGGCCCGCTACTCCATGGCGTCGCAGATCTTCTCGACGTTCACGGACTGCCCGGGTCGTGAGAAGCAGTCCTACCCGGCGGACTACACCATGCCGATGGACGGCTTCTCGCGGATGTTCGAGTTCGACGCCTACCTGCGCACGACGCAGCGCCACCTGGTGGAGGGGCAGTCGATCGCGGACTCGTACATGTTCGGCAACGTCGCGCTGAAGACGCCGGTCCACGACTGGGGCTACACCCGGCGCTTCGGCGACGAGATCAACTGGGGCAACGGCATCATCCTGGTGCCGGCGTTCCTGTACGAGTACTACGGCGACACCCGGGTCATGACCGAGACCTACGACCGGATGGTCTACTTCGTCGAGTACATCCAGCGCGAGAAGGCGGAGGGCCACATCGTCGACGGCGCTCTCGCCGACTGGGTCTCGGCCGAGCAGACCTCCGGGCGCATCACCGGCACCTGGGGCTACTACGTCATGATGACCAAGATGGCCATGATGGCGGAGCTGACCGGCCACGACGAGGACGCCGCCGAGTTCGCCCAGACGGCGGAGGACATCAAGGCCGCGTTCAACGACGCGTTCCTCAACACCGACCTCGGGTACTACACCGAGGACGGCACCGGCGCCGACGGGGCCACCCAGGCCGCGCAGGCGCTGCCGCTCGACGCGGGCATCGTGCCCGACGAGTACCGCGAGTCGGTGCTCGAGCGGCTCGTAGAGGACGTCCAGGAGTTCGGTCCCGACGACGGCCCGCACTTCAGCGCGGGGACGATCGGGCTGGCCGCCGTCGTGCGGCAGCTGACCGACAACGGTCACGGCGAGGTCCTGTTCGACGCGCTGCAGACGGACACCGAGCCCGGCTACGGCTACTTCATGGAGTCGACGACGGCGAACCCGGACGGGTTCACCACGATCGGCGAGCGGTGGACGCGTGGCAGCTCGAAGAACCACATGATCCTCGCCCAGATCGTGGAGTGGTTCCAGACGGGTCTGGTCGGCATCGACCGCGCGGACGGCTCGGTCGGGTACGACGAGCTCGTCTTCAAGCCGCAGCCCGCCGGCGACCTGACCTGGGTCGAGGGCAGCTTCGACACCCCGCGCGGGGTGGCGAGCAGCCGGTGGGACAAGACCGACGAGCACTTCACCCTCACGATCGAGGTGCCGGCGAACACGACGGCCGAGGTCTGGGTGCCGACCGGTGGCGACCAGGCGGTGCTCACCCCCTCGCGGGCGACCTTCGAGCGCGTCGAGGGCGAGTTCGCGGTGTACTCCGTGGGCGCCGGCGAGTTCACCTTCGTCGCCGCGGAGGAGGGCTACGACGACATCGCCGCGGCGGTGGAGTCCTTCGCCGGTGACGGGGCCCTGTCGGAGCAGCTCGCCGACAATCTGAGCAAGTTCATCGACCGGGCCCGCGAGGCCTCGGCCGAGGGCAAGGCCCAGACCGCGGACAGCGCGCTGCGTGCGTTCCGCAACCAGATCGAGAACGCGAACTCGAAGCGCGCCTCCGACGAGGCGGTGGCGGAGCTCGCGGAGATGGCCGCGGATCTGCAGGCCCTGCTGCGCCAGGAGGGAGGCATCCCGGTCGACCGGTGA	MNRIARTTIVTAAAAALTLPLATVPASAGPGDHPVSVSGLSVDGRDDTPLDVDSDRPLLGWTMSSEDTPGNPCYDASAAGTCAIDEQTAYEIEAASSVADLEAGDLLWDSGKISSDRQANIAYGGDDPLESRDSVAWRVRVWDALGHPSEWSEPATFKIGLLQQSDWGDARWIEQADRDPADPLPIFARQFDLDEDKDVASAHLYVSGAGLHHATVNGEKVTEEHLAPGNTNYQLSTEYRTYDVSSVLEPGENAVGVELGNGTAYVRRSIHNEEVGRTSPYAWWQSQIKGSGELVAPVEAGATTVLLTSTEDYHVGGTINIDTGDGGDRLESRVITDIGTAGEDGTGISFEPGLDAAHAVGAHVTASGNNIAETDPSAGAAVTPRMIARLEVSYADGSSDVVVSDRDWRAASGALVTDAWYSGEDYDARREQVGWNTPGADLTDGAERRDGSAMNWAAAGIAPPPNLATELVARQAEGIYEAERFTPQNITNPAEGVWVFDFGQNFAGFAQLDLPELPEGTVVKVKPAESLAEDGTVDQGSLGPGFRGNDLFNSYITAGLEGGESRTPMFNYFGMQWVQIEGLPADYTPTADIVTGLRLQAATPEVGTFDSSNDRINRINKMARYSMASQIFSTFTDCPGREKQSYPADYTMPMDGFSRMFEFDAYLRTTQRHLVEGQSIADSYMFGNVALKTPVHDWGYTRRFGDEINWGNGIILVPAFLYEYYGDTRVMTETYDRMVYFVEYIQREKAEGHIVDGALADWVSAEQTSGRITGTWGYYVMMTKMAMMAELTGHDEDAAEFAQTAEDIKAAFNDAFLNTDLGYYTEDGTGADGATQAAQALPLDAGIVPDEYRESVLERLVEDVQEFGPDDGPHFSAGTIGLAAVVRQLTDNGHGEVLFDALQTDTEPGYGYFMESTTANPDGFTTIGERWTRGSSKNHMILAQIVEWFQTGLVGIDRADGSVGYDELVFKPQPAGDLTWVEGSFDTPRGVASSRWDKTDEHFTLTIEVPANTTAEVWVPTGGDQAVLTPSRATFERVEGEFAVYSVGAGEFTFVAAEEGYDDIAAAVESFAGDGALSEQLADNLSKFIDRAREASAEGKAQTADSALRAFRNQIENANSKRASDEAVAELAEMAADLQALLRQEGGIPVDR	PGPT0019195_217	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-RHAMNOSIDASE,PGPT0019195-ramA-K05989	NA	NA
AK001_03340	1734	choD	COG2303	Cholesterol oxidase	ATGACGCGCACCACAGACGGTGAGGACTACGACGTCCTGGTCATCGGCTCCGGGTTCGGCGGCAGCGTGGCCGCGCTCCGCCTCACCGAGCGCGGGTACCGCGTCGGTGTCCTGGAGGCCGGGCGCCGGTTCGCGGACGACGAGTTCCCTCGCACGTCCTGGGACCTGCGTCGATTCCTCTGGGCACCGGCCCTCGGATGTTTCGGGATCCAACGCATCCACCGGCTGCGCGACGTCGTGGTGCTGGCCGGGGCAGGTGTCGGCGGCGGGTCGCTCGTCTACGCCAACACGCTGTACCGGCCCGTCGGACGCTTCTGGCAGGACCCGGCCTGGCGAGGCATCACCGACTGGGAGGCCGAGCTCGACCCGTACTTCGACCAGGCCGAGCGCATGCTCGGCGTCGTGGACTACTCCCGCACCACGCCCGCCGACGAGGTGGTCCGCGACGTCGCCGAGCAGATGGGCGTCCGTGCGACGTGCCGCACGGCCCGCGTCGGCGTGCATCTCGGGGATCCTGCGTCGACGGAGCCGGGTGCCGCCCGGCCGGACCCCTACTTCGGCGGCGCGGGGCCCGACCGCCACGCCTGCCTGCACTGCGGCGAGTGCATGACGGGGTGCCGGCACGACGCCAAGAACACCCTCGTGAAGAACTACCTGCACCTGGCCGAGCGGGCAGGCGCCCAGGTGCACGCCCTGACCACGGCCACGGCCGTCGTTCCCCGGTCCGACGGCGGCTACACCGTCCGGACGCACCGCACCGGGCGCCCCTGGTCACGACGCCGGGCACTGCGCGCCGGGCAGGTCGTCCTCGCGGCCGGCACGCTCGGGACGCAGCGACTGCTGCACGCGATGCGCGACGACGGGACGCTCCCCCGGCTGTCCGACCGCCTCGGCGAGCTCACCCGCACCAACTCCGAGGCGCTGCTCGGGGCGGTGCGCCCACCCGGCGGACCGGACGCGCCCGACTACTCCCGCGGCGTCGCGATCACCTCGGAGTTCGCACCCGACGCCGACACGCACGTCGAGCCGGTCCGCTACGGCCACGGTTCGAACGCGATGGGTCTCCTGCAGACCGTGCTGGTCGACGGCCGGCGCCGTCCCGACGACCGTCCGCGGTTCCGGCGCTGGCTGGCCGAGCTGTGGCGACAGCGTCGGCACCTGCCCACGCTGCTGAACCTGCGCGGTTGGTCGCGCCGGACGGTCATCGCCCTCGTGATGCAGAACCGCGACAACTCCCTGACCACGGTCACCCGGCGGGGGCTGTTCGGCCGCCGACTGACGTCCCGCCAGGGGACGGGCGAACCGAACCCGACCTGGATCCCGGTCGCCCACGACGTCGTGCGGGCCATGGCCGACCGGATGGGCGGGGTGGCCGGCGGGAGCATCGGCGACCCGTTCGACGTCCCGATGACCGCGCACATCCTCGGCGGGTGCACCATCGGGGTCTCGGCGGAGTCCGGGGTGATCGACCCCTACCACCGCGTGCACGGGTATCCCGGTCTGCACGTCGTCGACGGCTCGGCCGTGACCGCCAACCTCGGGGTCAACCCGTCGCTGACGATCACCGCCATGGCCGAGCGCGCCTGCGCACTCTGGCCCAACCGGGACGAGCCCGACCGCCGGCCCGCCCCGGGCAACGCGTACACCCCGGTCGCGACCACCGCTCCCCGGCGACCGGCCGTGCCACCGACGGCACCAGGGGCCCTGCGGCTGCCCCTCGTCGAGATCCGCTGA	MTRTTDGEDYDVLVIGSGFGGSVAALRLTERGYRVGVLEAGRRFADDEFPRTSWDLRRFLWAPALGCFGIQRIHRLRDVVVLAGAGVGGGSLVYANTLYRPVGRFWQDPAWRGITDWEAELDPYFDQAERMLGVVDYSRTTPADEVVRDVAEQMGVRATCRTARVGVHLGDPASTEPGAARPDPYFGGAGPDRHACLHCGECMTGCRHDAKNTLVKNYLHLAERAGAQVHALTTATAVVPRSDGGYTVRTHRTGRPWSRRRALRAGQVVLAAGTLGTQRLLHAMRDDGTLPRLSDRLGELTRTNSEALLGAVRPPGGPDAPDYSRGVAITSEFAPDADTHVEPVRYGHGSNAMGLLQTVLVDGRRRPDDRPRFRRWLAELWRQRRHLPTLLNLRGWSRRTVIALVMQNRDNSLTTVTRRGLFGRRLTSRQGTGEPNPTWIPVAHDVVRAMADRMGGVAGGSIGDPFDVPMTAHILGGCTIGVSAESGVIDPYHRVHGYPGLHVVDGSAVTANLGVNPSLTITAMAERACALWPNRDEPDRRPAPGNAYTPVATTAPRRPAVPPTAPGALRLPLVEIR	PGPT0006645_257	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STEROID|DERIVATE_DEGRADATION	XENOBIOTIC_CHOLESTEROL_DEGRADATION_,PGPT0006645-choD-K03333	NA	NA
AK001_03342	969			hypothetical protein	ATGGCATTTCCGCCCTCTGACAGTGCGTCGCCCGCAGGCTCGGGCGGGTTCGCTCCCAGCTGGGCGCCGGTCTCGCAGCCTGCCGGTGCGATGAGCGCGTCGACGGGCGGCGCGGCTCCTTCCGTCGGTGCGAGCGGCGGCCCGGCGCGCCAGAGCGTCCTCGGCGGCGCCGCGTCGGCTCCGGCCGCCCCCGCGGCGTCGGCCGCCCCGCAGCAGGGTGGTGCGGTCGCGGAGACCGAGTCGGCCGCACCCCCCGGCCCGGCGCAGAACCAGCACCCCGCCCCGCCGGCGCAGAGCGCCCCGGCGGCGGAGACGCCTGCCGCCCCGCAGTCCTCGAGCGGTGCGGCCTCCGCGCCCGCGCAGACCGCCGGGCCGGCGCAGTCGACGGCGGGGGAGAACAGCTCCGCCCCGACCGTCACGAAGATCGTGGTCGCCGGCGGCTTCGCCGTGGGCAAGACGACGTTCATCGGGTCCATCTCGGACGTCGAGCCGCTGAACACCGAGGCGGCGATGACCGAGCACTCCATGGGTGTCGACGACGCCGGCGGTGTGACCGACCGCAAGACCACGACCACCGTGGCGATGGACTTCGGGCGCGTGTCGCTGCCGGGCAACCTGTGGCTGTACCTGTTCGGCACTCCCGGTCAGGACCGCTTCCTGTTCATGTGGGACGACCTGGTCCGCGGCGCGATCGGTGCCGTGGTGCTCGTGGACACCGACCGCCTCGAGCAGTGCTTCCCGGCGATCGACTACTTCGAGTCGCGCGGCGTCCCGTTCGTCGTGGGCGTCAACTGCTTCGACGGCGTCGCCAAGCACCGCCTCGAGGACGTGCGGGAGGCGCTGCAGATCCCGGCGCACGTGCCGATGCTCTACACCGACGCGCGGTCGCGTGCGGCGACGAAGCAGACGCTGATCTCTCTGGTGCAGCTCGCGATGCGGCAGCTGCGATCGGGCAGCCAGCCGGCCTGA	MAFPPSDSASPAGSGGFAPSWAPVSQPAGAMSASTGGAAPSVGASGGPARQSVLGGAASAPAAPAASAAPQQGGAVAETESAAPPGPAQNQHPAPPAQSAPAAETPAAPQSSSGAASAPAQTAGPAQSTAGENSSAPTVTKIVVAGGFAVGKTTFIGSISDVEPLNTEAAMTEHSMGVDDAGGVTDRKTTTTVAMDFGRVSLPGNLWLYLFGTPGQDRFLFMWDDLVRGAIGAVVLVDTDRLEQCFPAIDYFESRGVPFVVGVNCFDGVAKHRLEDVREALQIPAHVPMLYTDARSRAATKQTLISLVQLAMRQLRSGSQPA				NA	NA	NA	NA	NA
AK001_03343	417			hypothetical protein	ATGACGCACGCACCGTTCGGTTCCCTGGGCGCGCAATCCGCGGACGGCTACGAGGCTGCCACGGTGCGTCCCTACGCGGTCACGGGAGGTCGTGTCCGCTCGTCGATGTCCGACCTGCCGCTCGAGGCGCTCGTCGAGGTGATGCCGGGGGCGGTGAGCAGCCACGGTCTGACACCGGAGAAGCGCGCGATCCTGCAGCACGCCGCGCACACCTACGTGTCGATCGCCGAACTGTCGGCGCTGCTCAAGCTCCCCCTCGGTGTGGTCCGCGTCCTGGTCGCGGACATGCAGGAGGAGGGGCACATCACCGTGCACACCTCGGCCCCGGTGAACGTCCACACGGGCCACGGCAGCAACCACTCGGGACTTTCCCTGAGCGTCTTGGAGAGTGTTCTCAATGGCATTTCCGCCCTCTGA	MTHAPFGSLGAQSADGYEAATVRPYAVTGGRVRSSMSDLPLEALVEVMPGAVSSHGLTPEKRAILQHAAHTYVSIAELSALLKLPLGVVRVLVADMQEEGHITVHTSAPVNVHTGHGSNHSGLSLSVLESVLNGISAL				NA	NA	NA	NA	NA
AK001_03344	450			hypothetical protein	GTGACCCTCAGTACTGAAGCGACCAACTTCGGGTGGCTTCTCGACAACTTCGTCCGGACCGTTCCGGGCAGCCGCCACACCCTGGTGGTCTCGGCCGACGGTCTCCTGATGGCGATGTCGGACCAGCTCGACCGGACGAGCGGCGACCAGCTCGCCGCCATCGTGTCGGGGATGTCGAGCCTGACCCGTGGTGCCTCGCGCCAGCTCAACGGCGGCAACGTCCGCCAGGCCATCATCGAGATGGACAACGGGTACCTCTTCCTGATGAACGTCTCGAACGGCTCGGTCCTCGCGGTCGTGGCCGACGGGAACTGCGACATCGGGCTCGTGGGATACGAGATGGCTCTTCTGGTGTCCCGCACGGAGTCGACGCTGACGCCGCAGCTGATCTCCGAGATGCGCGGCAACCTTCCGGTCGACGGCAACCAGCGCTCCGCACAGGTGGGATGA	MTLSTEATNFGWLLDNFVRTVPGSRHTLVVSADGLLMAMSDQLDRTSGDQLAAIVSGMSSLTRGASRQLNGGNVRQAIIEMDNGYLFLMNVSNGSVLAVVADGNCDIGLVGYEMALLVSRTESTLTPQLISEMRGNLPVDGNQRSAQVG				NA	NA	NA	NA	NA
AK001_03345	3987			hypothetical protein	ATGCTCCGCAGGTTGGGCGTTCGCGGGAAGATCCTGGCGACACTCGCCGTGCCGATCTTCGTCCTGATGCTGGCGGCGGCCTACATCTCCTGGGGCGCGCTGCAGGATGCCGTCAGCGCGGACCAGACGTCCGAGCTCGTGGACAGCCTCGAGGCGCAGGACGCCGCGGGCACCGCAGTGGCGACCGAGCGCGCGCTCGCCATCGCCGCGCTCAACGGTGCCGACGGTGCGATGGAACAGCTCGTCGCCGCGCAGGAGCAGACCGACGAGGCCGTCGATGCTCGCGACGAAGAGCTGCGTGCTCTCGAGACGGACGCCCTGAGCGTCAACGTCCAGGACGCCATCGACGTGACCCTCGAGGACCGGCGCGCGCTCGACGAGCTGCAGCGCAAGGTCATCGCGGGCCAGATCACCGAGACCGCCGCCACCGGTCAGTACACCGACATCATCCAGCGGGCCCTGGACATCCCGCGCGCGGTGTCGGCGTCGTCCACGGACTCCGGGCTGGCCGAGCTGCTCAACGCCTACGTCGCGATGGACGAGGTGATGCTGGCCAACACGATCGAGCGTCCGATCGTGGGTCTGGCGCTGGCCGACGCCGCCCGCGCGGCGCAGCAGGGCGAGGACCGCGACGGCGAGCTGGTCGGCCGGATGGTCAACGCCATCGAGACCACCGACGAGCTGCAGGTGGCCGCGCAGGCGCAGGCCGACCGCCTCGGCCTGGACATCACGGTCCCGCCGTTCTCCGACGAGCTGGACGAGCTGCGGTTCAAGCTCCGCTACGTGAACTTCTCCTCCATCGACCCGGAGACCGCGAACAGCTGGTCCGAGCTCTCCGCCGGCTGGATCGACTCGATGCGCCCGGTGCGCGACGAGGTCCGGACCGAGACCGTCAGCTACGCCGCGCAGGCCTCGGCCGACGCGCGCAACCAGGCGATCGGCACGGTCGCCGCGACGTTCGGCATCGTGCTCATCTCGCTGGTCCTGGCGCTGGTCATCGCCCGCCGGATCGTCACGCCGCTGCGGCGCCTGACCGTCGCGACGGCGGACGTGCGCGACCGCCTGCCGCAGATGGTCGAGCAGATGGCGGTGCCGGGCCAGGCGCCCGAGATGGACGTGGTCCAGATCCCGGTCGAGTCCACGGACGAGATCGGCCGTCTGGCCAACGCGTTCAACGAGGTCAACGCCACCACGATCGAGGTGGCGCGGGAGCAGGCCGCGCTGCGCGGCTCGATCGCGGAGATGTTCGTCAACGTGGCCCGCCGCGACCAGGTGCTCCTGAACCGTCAGCTCGCGTTCCTCGACGAGCTGGAGCGGTCCGAGGAGGACCCGGGCACGCTGTCCAACCTGTTCCGGCTGGACCACCTCGCGACCCGTATGCGCCGCAACGCCGAGTCGCTGCTGGTCCTGGCGGGCATCGACTCCGGCCGCCGCGTGCGCACCCCGATGCCGATCTCCGACGTCATCCGGACGGCGTCCTCCGAGATCGAGCTGTACGACCGGGTCCGGCTGAACCTGCAGGCCGACCCGCACATGCTCGGCCACAACGCGCTGAACGCGGCACACCTGCTGGCCGAGCTGCTGGAGAACGCGACGATGTTCTCCGAGCCGCACACCGCCGTCGAGGTCACGGCCTCGCGCGACACGCGCGGCGTCGTCGTCTCCGTGGTCGACCAGGGCCTGGGCATGTCGGCGGCCGAGATCGCCGACGCCAACGCCAAGGTCGCCTCGTCCGCGGCCTCCGACGCGGTCGGCGCCCAGCGCCTGGGCCTGTTCGTGGTCGGCCGCCTGGCGCAGCGTCTGCGCGTCCACGTCGACTTCTCGAGCGGTCGGGACGGCAAGGGCACGGTCGCGACCGTGACCTTCCCCGACGAGCTCTTCGTGGCCGACGAGGCGATGCCGCTGCCGCAGCCGACCGACCCGCTGGAGGCGTCGACCCAGGCCTCCGTGGCCCAGCTGACGAGCCCGTCGACCGACACCCCGCTGCCGCAGGGCGAGCCGTCGACCGTCCCGGTGCCGGGGGAGGACCACGCGCCGGCGTCGGCTCCCGCGCCGGCTGAGCCCGCTCCGGCTCCCGCTCCCGCTCCGGCCGAGCCTGCACCCGCGGCTCCGGCCCCGGCCACGTCGTCGATGCAGAGCGTCGCCCCCGAGGCGCCCGAGGTCGAACCGGTCGACATCGCGGCGCTGACGGACGGCACGACCCGCGCCGGCATGCCGCGTCGCCGCCGTTCGGAGACCACCGCGACCCCGACCGAGGCGATCGTGCTGCCGCCGCTCGAGACGCCGCACCTCGAGGAGTCGGACCCTGGAGACAGCGCGTGGGCCCCGCCGACCGCGGTCGAGCCGGCCGCGGCGTCGCTGCCGAGCCGCCGGCCGTCCCCGACCGGGCCGCCGGAGCCGGAGGCGCAGTCGGGTGCCATCGCGCTGCCCGACGCCGAGCCGACGACGGAGCCCGTCGCCCCGCAGCAGCGCACGGGCCTGTTCTCCAGCTTCCGGACGATGGACAACCTCGCCGAGAGCACCCTGCAGCTCGACGCGGTGACGGACGACCCGGCCGACGTCCCCGAGCTGGAGACCTCGACGTCCGAGTCGGCCCCGGCCCCGCGGGTCGAGGAGGAGGCGCCGTCCGAGCGCCCGGAGTCCGACCAGGTCGTGCCGCCGTCGCCGGTCCCGGCTCCCGCGCCGGCGTCCGCCCCGGTCCCTGCGCCGGCACCCGTCCCGGAGCGTCCGGCCGCGTCGGAGCCGACGTCCGCGAGCTCGGCTCCCGCGCCGGAGCGGACCGCGGCGACGCCCGCTCCTGCTCCGGCCTGGCAGCCGCCTGCGGAACCGGCCCCGGCCGTCCCGGCCGCACCGGTGGCGGACCACCGGCCGGCACCCGCGACGCAGCCCGAGGCGGCCTCCGCCGACTCGGCCCCCGCCTCGTCCGCCGCCGAGTCCGCGCCCGCCGCGTCGAGCGCTGCGTTCGCGGCGTTGCCCGCCTTCGAGGAGCTCATGTCGGACCTCCCGACGCGACGCACCGAGGGCGGTTCGTCGACGGCGCACCGCAAGCGTGGGCTGTTCGGTCGCAAGCCGGCCCCCAAGGACGCCCCGGAGTCCGCCGTCGGGTCCGTGACCCGCGGAGACTCCGCGCAGCCGGTCGGCTCGGCCGGCGGTGTGGACCCGTTGACCGCGCCGACCGCCGACTCCTCGGCGACGCCGTCGACCGTGCCTGCACCCCGTGACGGCGGCCCGGCCCGAGTCGAGGACGCCGCCCCGCAGGACGGCGCCGCACCGGTGCCGGCACCGCGTCCCGACGAGCTCCCGCTGCCCTCCGCCCAGCGTCGACCGGCCGACCGGCCGTTCGACGAGGCCTGGGGAGCGGCGCGTCCGGCCGGCTCCGCGCCGTCGGCGTTCTCCCCGCCCGTGGCGGACGAGGTGCCGTTCCGGCCGGAGCCCGCCGCCTCGTCGACGCCGGCGTCCGCATCGGCGGAGCCTGCTCCGGCGGCGGGGGAGACCCAGACCGACCCGACGGTGAACGGGGAGCGTCCGTCCCGGACGTCCTACGGCGACTCCGTCCTTCCGCTGCGATCCACCGAGACGGCCGACGTCGACGCGTTCGACCCGCAGGACGTCTCCGACACCGTCGAGGCGCGGTCGGAGTGGATGGCCTCGGCCGTCCTGTACGAGGAGATGTCCACGCTGATGCAGCGCGGCGTCTTCCAGGAAGAGAACGTGACGACGACCAACGAGGAGCAGACCTATCGTCCCGCCAGCGTGGCGCCGGCAGCCAACGGGCTGACGCGCCGCGACCGACGCGACGAGACCGTGGAGCCCCCGGAGCGCTTCACCGCCCGAATCGAGCGTGACCCGGAGCAGCTGCGCGCTCGGTTGTCGGCCTTCCAGACCGCCACGGCGCGTGGCCGTTCGGAGAAGACCGACGAGGGGGCCTCGACGGATGGGCCCCTGAGCGTGAATGATGTCCAAGGATCGGCTCCGCACCAGCGGTGA	MLRRLGVRGKILATLAVPIFVLMLAAAYISWGALQDAVSADQTSELVDSLEAQDAAGTAVATERALAIAALNGADGAMEQLVAAQEQTDEAVDARDEELRALETDALSVNVQDAIDVTLEDRRALDELQRKVIAGQITETAATGQYTDIIQRALDIPRAVSASSTDSGLAELLNAYVAMDEVMLANTIERPIVGLALADAARAAQQGEDRDGELVGRMVNAIETTDELQVAAQAQADRLGLDITVPPFSDELDELRFKLRYVNFSSIDPETANSWSELSAGWIDSMRPVRDEVRTETVSYAAQASADARNQAIGTVAATFGIVLISLVLALVIARRIVTPLRRLTVATADVRDRLPQMVEQMAVPGQAPEMDVVQIPVESTDEIGRLANAFNEVNATTIEVAREQAALRGSIAEMFVNVARRDQVLLNRQLAFLDELERSEEDPGTLSNLFRLDHLATRMRRNAESLLVLAGIDSGRRVRTPMPISDVIRTASSEIELYDRVRLNLQADPHMLGHNALNAAHLLAELLENATMFSEPHTAVEVTASRDTRGVVVSVVDQGLGMSAAEIADANAKVASSAASDAVGAQRLGLFVVGRLAQRLRVHVDFSSGRDGKGTVATVTFPDELFVADEAMPLPQPTDPLEASTQASVAQLTSPSTDTPLPQGEPSTVPVPGEDHAPASAPAPAEPAPAPAPAPAEPAPAAPAPATSSMQSVAPEAPEVEPVDIAALTDGTTRAGMPRRRRSETTATPTEAIVLPPLETPHLEESDPGDSAWAPPTAVEPAAASLPSRRPSPTGPPEPEAQSGAIALPDAEPTTEPVAPQQRTGLFSSFRTMDNLAESTLQLDAVTDDPADVPELETSTSESAPAPRVEEEAPSERPESDQVVPPSPVPAPAPASAPVPAPAPVPERPAASEPTSASSAPAPERTAATPAPAPAWQPPAEPAPAVPAAPVADHRPAPATQPEAASADSAPASSAAESAPAASSAAFAALPAFEELMSDLPTRRTEGGSSTAHRKRGLFGRKPAPKDAPESAVGSVTRGDSAQPVGSAGGVDPLTAPTADSSATPSTVPAPRDGGPARVEDAAPQDGAAPVPAPRPDELPLPSAQRRPADRPFDEAWGAARPAGSAPSAFSPPVADEVPFRPEPAASSTPASASAEPAPAAGETQTDPTVNGERPSRTSYGDSVLPLRSTETADVDAFDPQDVSDTVEARSEWMASAVLYEEMSTLMQRGVFQEENVTTTNEEQTYRPASVAPAANGLTRRDRRDETVEPPERFTARIERDPEQLRARLSAFQTATARGRSEKTDEGASTDGPLSVNDVQGSAPHQR				NA	NA	NA	NA	NA
AK001_03346	753	ppsC_3		Phthiocerol synthesis polyketide synthase type I PpsC	GTGTCGGACAGGCGTGTCGGCGACGAGGTCGTCGCCCTGCTCGACGGGGGCGGCTACGCGGAGCAGGTCGTCGTCCGCGCGAGCCAGACCCTCCCCCGACCGGACGGCGTCGATCTGGTCGACGCGGCCGCGCTGCCCGAAGCGGTCTGCACGGCCTGGACGAACCTCGTGGACACCGCGCGGCTGCAGGCGGACGAGACGCTGCTGGTCCTCGGCGGGTCCGGCGGCGTCGGGAGCATGGCCGTCCAGCTCGGCCACGCCCTCGGGGCCCGCGTGGTCGCCACCGCGGGCGGACCCGAGCGCACCGCGCGCTGCCGCGAGCTCGGGGCCGACGTCGTCGTCGACCACCGCGCCGAGGACGTCGTCGACGCGGTACGGGCCGCCACCGACGGCCGGGGCGCCGACGTCGTCCTGGACGTGCTCGGCGGCGGGGCGCTCGGCGACAACGTGCGCGCCCTCGCCCCGGGTGGCCGCCTCGTCGTCATCGGGCTGCAGCAGGGGCGCACCGGCGAGCTCGACCTCGCCCGCCTCATGGCGAAGCGCGCCCTCGTCACCGGGACCCTGCTGCGGTCGCGCAGCCCGCAGGAGAAGGCCGCCATCGTCGAGGCCGTCGGGGAGCACGTGTGGCCGCTCGTCGCCGCGGGCCGGATCCGCCCGGTCGTGCACGCCCGGCTGTCCTTCGACGAGGCGGACCGGGCCCTGGGGATGCTCGAGTCCGGCGAGGCCTTCGGCAAGGTGCTCCTGCTGCCCTGA	MSDRRVGDEVVALLDGGGYAEQVVVRASQTLPRPDGVDLVDAAALPEAVCTAWTNLVDTARLQADETLLVLGGSGGVGSMAVQLGHALGARVVATAGGPERTARCRELGADVVVDHRAEDVVDAVRAATDGRGADVVLDVLGGGALGDNVRALAPGGRLVVIGLQQGRTGELDLARLMAKRALVTGTLLRSRSPQEKAAIVEAVGEHVWPLVAAGRIRPVVHARLSFDEADRALGMLESGEAFGKVLLLP	PGPT0013255_1720	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
AK001_03347	510	bpa		Bacterial proteasome activator	ATGACGGACGAGCATCCCGGCGAGGCGTCGGCACCGGAGACCGCGGAGACCTCACCCGCCGCACCGGAGACCTCCCGCATCTCCGAACCGGCCAAGGTCATGCGGATCGGGAGCATGGTCAAGAAGCTCCTCGACGAGGCACGGGCCGCCCCGCTGGACGCCGCGGCGCGCGGGCGGCTCGCCGAGATCCACGAGAGGTCGCTCACCGAGCTGGAGGACGGGCTCTCGGAGGATCTCGTCGCCGAGCTGCACCGCATCACGTTGCCGCTGACCGACCACGACCCGCCGTCGGACGCGGAGCTGCGGGTCGCCCAGGCGCAGCTCGTCGGCTGGCTCGAGGGCCTCTTCCACGGCATCCAGACCGCTCTGGTCGCCCAGCAGATGGAGGCGCACCACCAGCTCGACCAGATGCGTCGCCAGCTCCCCCGCGGCGCACGCCCCGGACCGGGTCTCGCGGGCAGGGGGCCGGACGACGGAGACGACGCCGCGTCGCCGGGCCAGTACCTCTGA	MTDEHPGEASAPETAETSPAAPETSRISEPAKVMRIGSMVKKLLDEARAAPLDAAARGRLAEIHERSLTELEDGLSEDLVAELHRITLPLTDHDPPSDAELRVAQAQLVGWLEGLFHGIQTALVAQQMEAHHQLDQMRRQLPRGARPGPGLAGRGPDDGDDAASPGQYL				NA	NA	NA	NA	NA
AK001_03348	906			hypothetical protein	GTGCCCGACGCGACCTCCCCCGCCCGGCCCGGCTCGCCGCCGTCGGCCCCTGGCGGCCTTGCCGACCGTGTGCCGGCACCGCTGCTGTTCGTCGCCTCCGGGCTGACGCTCTACCTGGGGGCGGCCGTCGCGGTCGGTCTCTTCGACACCCTCGGCGCGCCCACGGTGAGCTGGTGGCGGATCGTGCTCGCCGCCGTCGTCCTGGTGGCCTGGCGCCGTCCCTGGCGCCGGCGCTGGACCCGCCAGGAGCTCGTCGGCGCCGGGCTGTTCGGCGTGGCGCTGGCCGCGATGAACATCGTCTTCTACGTGGGCATCGACCATCTGCCGCTGGGCGTGGCGGTGGCGATCGAGTTCACCGGTCCCATCGCCGTGGCCGCGATCACCGGGCGCGGCTGGCGCGAGCGCGGCGCGATCGTCGTCGCCGCGGCCGGCGTGATCCTGCTCGCCGGCGTCACGCTCGAGGGGGACCTGGCCCGGTCCGACGCGCTGGTCGGCCTGGTCGCCGTGCTCGCCGCCGCTGCCTGCTGGGCGGGGTACATCGTGCTCGGCAAGCGCGTGGCCGGCGGCGGGGCGGGGATCGACGGGCTCGCCGTGGGCATGGCGACCGGTGCCGTCGTGTTCGCGCCGTTCTTCGCGGGCTCGGTCACCACGGTGGTCCCGGACCTGCGCCTGCTCGGATTCCTGCTCGTGGTCGCCGTGTGCTCGTCCGTGGTGCCGTACGTGCTCGACCAGGTGGTGCTGCGGCGGATCGGCACGGCGACCTTCGCCGTGCTGCTCGCTCTGCTGCCGGCGACGGCCACGGTGGTCGGCGCCGTCGTCCTGGGGCAGCTGCCGAGCTGGCCGGAGATCGTCGGCCTGGTGCTGGTGTCCGGAGCCATCGCGATGACGGCGACCGGGCGCGAGTAG	MPDATSPARPGSPPSAPGGLADRVPAPLLFVASGLTLYLGAAVAVGLFDTLGAPTVSWWRIVLAAVVLVAWRRPWRRRWTRQELVGAGLFGVALAAMNIVFYVGIDHLPLGVAVAIEFTGPIAVAAITGRGWRERGAIVVAAAGVILLAGVTLEGDLARSDALVGLVAVLAAAACWAGYIVLGKRVAGGGAGIDGLAVGMATGAVVFAPFFAGSVTTVVPDLRLLGFLLVVAVCSSVVPYVLDQVVLRRIGTATFAVLLALLPATATVVGAVVLGQLPSWPEIVGLVLVSGAIAMTATGRE				NA	NA	NA	NA	NA
AK001_03349	444	yhaI_1	COG3152	Inner membrane protein YhaI	ATGTCCATCGACCTGCACGAGGAGCTCGGCATGGGGTTCGGCGAGGCCGTCACGACCGTCTTCGGCAAGTACGCGACCTTCTCGGGGCGGGCACGCCGCGCGGAGTTCTGGTGGTGGTACCTGTTCGTGCTGCTCGTCAGCATCGCGCTCTCCGTGATCGCGGCCGCCACGGGTGGCTTCACCCTCGACCCGGACACCGGAATGCCCGAGATCGGCGGCATGTACTACGTGACGCTCCTGGTCGGTCTGGCGCTGCTGCTCCCCAACCTGGCGGTGACCGTGCGCCGTCTGCACGACACCGACCGCTCCGGCTTCTGGTGGTTCATCAGTCTGGTCCCCCTCGTCGGATGGATCATCCTGCTCGTGCTCGTGGTGCTGGAGGGAACCACGGGACCGAACCGCTTCGGCCGCGACCCGAGGTACCGGTCCGACCTGCCGAGCTGA	MSIDLHEELGMGFGEAVTTVFGKYATFSGRARRAEFWWWYLFVLLVSIALSVIAAATGGFTLDPDTGMPEIGGMYYVTLLVGLALLLPNLAVTVRRLHDTDRSGFWWFISLVPLVGWIILLVLVVLEGTTGPNRFGRDPRYRSDLPS				NA	NA	NA	NA	NA
AK001_03350	423	yhaI_2	COG3152	Inner membrane protein YhaI	ATGGGATTCGGCGAAGCCGTCAAGACCGTCTTCAGCAAGTACGCGACCTTCTCGGGCCGAGCCCGCCGCTCGGAGTTCTGGTGGTGGGCGCTGTTCCTGTTCCTGGTCAACATCGTGGTCTCGGTCGTCGTCGCCGCCACCGGCGGCTACTCGATCAACGCCGAGACGATGATGCCGGAGTTCGGCGCCAGCTACCTGCTCGTCGTCGTCGTCGGCCTCGCGCTCCTCCTGCCCAACCTCGCCGTGACCGTCCGCCGCCTGCACGACACGGACCGCTCCGGCTTCTGGTGGTTCATCGGCCTCGTGCCGTTCGTCGGCCCCATCGTCCTGCTGGTCTTCATGGTGCTGGAGGGCTCGCTCGGCCAGAACCGCTTCGGCCCCAGCCCGAAGGGTGCCGCCGCGCCGGTGCAGCACACCGTCTGA	MGFGEAVKTVFSKYATFSGRARRSEFWWWALFLFLVNIVVSVVVAATGGYSINAETMMPEFGASYLLVVVVGLALLLPNLAVTVRRLHDTDRSGFWWFIGLVPFVGPIVLLVFMVLEGSLGQNRFGPSPKGAAAPVQHTV				NA	NA	NA	NA	NA
AK001_03351	147			hypothetical protein	ATGCGCAAGGCCTTCGCGACGTCGTCGTCCCCGAAGTGGAGGCCGCCCTGCGGCCGTGAACGCGACGTCGCGAAGGCCTTGCGCATCCCCGCCAGGGACGAGAGCTACCCCTTCACCGCCCCCGCCAGCATCCCGCGCACGAAGTAG	MRKAFATSSSPKWRPPCGRERDVAKALRIPARDESYPFTAPASIPRTK				NA	NA	NA	NA	NA
AK001_03352	954	araQ_9	COG0395	L-arabinose transport system permease protein AraQ	ATGAGTACGACGCCGCCCGTTCCCACGACGAACCCCGAGACCGAGGACACCGCTCCGGTCAAGGAACGCAAGCTCACCCGCCTCGAGAAGCGGGCCATCGCCACCAAGGGCCGGCTGACCTCGCCGTGGGCTTCCCTGACCGCGGTGATCCTGGCGATCCTGTGGACGATCCCCACGGTCGGGCTGCTCGTGACGTCGTTCCGGCCGGAGATCGACATCCGCCGCAGCGGCTGGTGGACGGTCATCCCCGGCATCTTCACGGGCGAGACGGAGTTCACGCTCGACAACTACGACCAGGCTCTCTACGGCAGCGGGACGGGACTGTCGGAGGTGTTCATCAACACCTTCGTCATCACGATCCCGGCGGTGATCATCCCGATCACCGTCGCGTTGCTGGCTGCCTACGGGTTCGCGTGGATCGAGTTCCCCGGCCGCAACCTGCTGTTCGTGGCGGTCTTCGCGCTGCAGGTGGTGCCCATCCAGGTCACCCTCGTGCCGCTGCTGACCAACTACAACAACTGGGGCATGGCCGGGTCGTTCTGGGCCGTGTGGTTGTCCCACTCGATCTTCGCGCTGCCGCTCGCGGTGTTCCTGCTGCACAACTTCATGAAGGACATCCCGCGCTCGCTCGTCGAGGCGGCCCGCGTCGACGGCGCCGGCCACGTGAAGATCTTCTTCCGCGTGCTGTTCCCGCTGCTCGTGCCGGCGATCGCGGCGTTCGGGATCTTCCAGTTCCTCTGGGTCTGGAACGACCTGCTCGTCGGCCTGACCTTCGCGGCACCGGAGTACCGGCCGCTGACGGTGGCCGTCGCCGAGCTCGCGGGTACCCGCGGCGGTGACTGGCACATCCTGACCGCCGGGGCGTTCATCTCGATGATCGTGCCGCTGATCGTGTTCCTGCTGCTCCAGCGCTACTTCGTGCGCGGGATGCTGGCGGGGGCGGTGAAGGGGTAG	MSTTPPVPTTNPETEDTAPVKERKLTRLEKRAIATKGRLTSPWASLTAVILAILWTIPTVGLLVTSFRPEIDIRRSGWWTVIPGIFTGETEFTLDNYDQALYGSGTGLSEVFINTFVITIPAVIIPITVALLAAYGFAWIEFPGRNLLFVAVFALQVVPIQVTLVPLLTNYNNWGMAGSFWAVWLSHSIFALPLAVFLLHNFMKDIPRSLVEAARVDGAGHVKIFFRVLFPLLVPAIAAFGIFQFLWVWNDLLVGLTFAAPEYRPLTVAVAELAGTRGGDWHILTAGAFISMIVPLIVFLLLQRYFVRGMLAGAVKG	PGPT0016405_299	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016405-aglG|ggtD-K10234	NA	NA
AK001_03353	990	melD_8	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	GTGGACTGGTTGCTGAATCCTGACACGGTCACCCAGAAGTTCGTCGTCATGGGCGTCGGCATCGCGCTGTTCGTCGCGGTGATGAGCCTGATCCTGTTCCTGGTCGACCGGCCGAAGCGCATCCCGTCGTGGGTGGTCGCCGTGGGCTTCGTCGGCCCCGCCCTGCTGCTCATCGCCTACGGTCTGCTGCGCCCGGGGCTCGAGACGCTGTTCAACTCGTTCTTCAACCGCACCACCACGGAGTTCGTCGGGTTCGACAACTACGTGACGATGTTCACCGGTGCGCAGTTCCAGAAGGTGCTCGTCGTGACCGCGGCCTGGGTGATCCTGGCCCCGCTGGTGAGCACGTTCGTCGGGCTGGTCTACGCGGTGCTGGTCGACCGTGCCCGCTTCGAGAAGATCGCCAAGACGCTGATCTTCATCCCGATGGCGATCTCCATGGTCGGCGCCTCGATCATCTGGGGATTCGTGTACGAGTTCCGGCCCGACCAGCCGGGCATCGAGCAGATCGGTCTGCTCAACCAGCTGCTGGTCTGGCTCGGACTGCCACCCCAGCAGTTCCTCATCGGTGAGCCGTGGAACACCGGTTTCCTCATCGTCGTCATGATCTGGATCCAGACCGGTTTCGCCATGACGGTGCTCGCGGCGGCGATCAAGGCCATCCCGGACGACATCGTCGAGGCGGCTCGCCTCGACGGGCTGCACGGGATGGGGATGTTCCGCTACATCACCGTGCCGAGCATCCGGCCGGCCCTCGTCGTCGTCCTGACCACCATCGCCATGACGACGCTCAAGGCGTTCGACATCGTCCGCACCATGACCGGCGGCCAGTTCGGCACCCAGATCATCGCGAACGAGTTCTACACGCAGGCGTTCCGCCAGAACAACCAGGGACTGGCCGCTGCGCTCGCCGTGGTCCTGTTCATCCTGGTCGTGCCGATCGTCGCCTACAACGTGCGGCAGATGCGTAGGTCGGAGGAGATTCGATGA	MDWLLNPDTVTQKFVVMGVGIALFVAVMSLILFLVDRPKRIPSWVVAVGFVGPALLLIAYGLLRPGLETLFNSFFNRTTTEFVGFDNYVTMFTGAQFQKVLVVTAAWVILAPLVSTFVGLVYAVLVDRARFEKIAKTLIFIPMAISMVGASIIWGFVYEFRPDQPGIEQIGLLNQLLVWLGLPPQQFLIGEPWNTGFLIVVMIWIQTGFAMTVLAAAIKAIPDDIVEAARLDGLHGMGMFRYITVPSIRPALVVVLTTIAMTTLKAFDIVRTMTGGQFGTQIIANEFYTQAFRQNNQGLAAALAVVLFILVVPIVAYNVRQMRRSEEIR	PGPT0016400_442	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016400-aglF|ggtC-K10233	NA	NA
AK001_03354	1398			hypothetical protein	ATGACACGAAGGACCACGACGAGCGCACGCCGACGGCTGGCGGCGGTGGCCGCCGGTGCCGGTCTCGCCCTCGTGCTCGCCGCGTGCGGCGGCGGGGACGACGACGGCGGTGGCGGCGACGACATGGGCGAGGGCGGTGGCGGAGGTGCCGCCGCGGACATCGACTGTGCCGCGTACGACGAGTTCGGTGACCTCGAGGGCACGAGCGTCAGCATCTACACCTCGATCGTCGACCCCGAGCAGACGCAGCAGGAGAACTCCTACGACGCGTTCGAGGAGTGCACCGGGGTCACGGTGGAGTACGAGGGTTCGCGCGAGTTCGAGGCGCAGCTGCTCGTCCGCATCCAGGCGGGGAACACGCCCGACATCGCCTACATGCCGCAGCCGGGCCTGCTGAACACGATCGTGTCCGACTTCCCGGACGCCGTCGTGGAGGCTCCGGAGGCGACCGCGGCCAACGTCGACGAGTACTTCAGCGAGGACTGGAAGGAGTACGGCTCGGTCGACGGCACCTTCTACGCCGCCCCGCTGGGCGCGAACGCGAAGTCGTTCGTCTGGTACAACCCGGCGATGTTCGCCGACGCCGGCTACGAGGTCCCCGAGACCTGGGACGAGCTGATGGAGCTCAGCGAGACGATCGCCACCGAGCAGGAGGTCCTGCCGTGGTGCGTCGGCTTCGAGTCCGGTGACGCGACCGGCTGGCCCGGTACGGACTGGATCGAGGACGTCGTGCTCCGCACGGCCGGCCCCGACGTGTACGACCAGTGGTACATGCACGACATCCCGTTCAACGACCCCCAGATCGTGGACGCGTTCGACACCGCCGGGGAGATCCTCAAGAACCCGGACTACGTCAACGCGGGACTGGGCGGCGTGGACTCGATCGCCACCACGCCGTGGGACCAGGCCGGCGTCGGTGTCCTGGACGGCACCTGCTGGATGTACCGCATGGCCAACTTCTACGCCACGCAGTGGCCGGAGGGGACCGAGGTCGGGTCGGACGGTGACGTCTACGCCTTCTACCTGCCCGGCGACGGGGAGACCCAGCCGATGCTGGGCGGCGGGGAGTTCGTGCTGGCGTTCGAGGACCGCCCGGAGGTGCAGGCGTTCCAGACCTACCTCGCCAGCGCCGACTGGGCCAACCAGAAGGCCATCGCCACGCCCGACGGCGGCTGGATCAGCGCGAACAACGGCCTGGACGTCAACAACCTCGCCACGGAGTTCGACCAGGACGCCGCCGCGATCCTCGCGGACGAGAACACCGTGTTCCGGTTCGACGGCTCGGACCTGATGCCCGGTGAGGTCGGTGCCGGGACCTTCTGGACCGGGATGGTCAACTGGGTGACCGGCTCCTCCACCCAGGAGGTCACCGACCAGATCGAGAACAGCTGGCCGTGA	MTRRTTTSARRRLAAVAAGAGLALVLAACGGGDDDGGGGDDMGEGGGGGAAADIDCAAYDEFGDLEGTSVSIYTSIVDPEQTQQENSYDAFEECTGVTVEYEGSREFEAQLLVRIQAGNTPDIAYMPQPGLLNTIVSDFPDAVVEAPEATAANVDEYFSEDWKEYGSVDGTFYAAPLGANAKSFVWYNPAMFADAGYEVPETWDELMELSETIATEQEVLPWCVGFESGDATGWPGTDWIEDVVLRTAGPDVYDQWYMHDIPFNDPQIVDAFDTAGEILKNPDYVNAGLGGVDSIATTPWDQAGVGVLDGTCWMYRMANFYATQWPEGTEVGSDGDVYAFYLPGDGETQPMLGGGEFVLAFEDRPEVQAFQTYLASADWANQKAIATPDGGWISANNGLDVNNLATEFDQDAAAILADENTVFRFDGSDLMPGEVGAGTFWTGMVNWVTGSSTQEVTDQIENSWP	PGPT0016395_74	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016395-aglE|ggtB-K10232	NA	NA
AK001_03355	783	map	COG0024	Methionine aminopeptidase 1	ATGATCGAGCTGAGGACGCCCCGTGAGATCGAGGAGATGCGTCCTGCCGGCCGGTTCGTCGCCGAGACGCTGCAGGCTGTCCGGCAGGCCGCCGAGCCCGGCGTCAACCTGCTCGAGCTCGACGCCCTGGCGCACCGGCTCATCAAGGAGCGCGGTGCGGAGTCCTGCTACATCGACTACCACCCCTCCTTCGGCGCGAGCCCGTTCGGCAAGGTGATCTGCACCTCCGTCAACGACGCCGTGCTCCACGGGCTCCCGCACGACTACGACCTCGTCGACGGGGACCTGCTCACCCTCGACTTCGCCGTCGCCGTGGACGGCTGGGTCTCGGACTCGGCGATGTCCTTCGTCGTCGGCGAGTCGCCGTCGGAGGAGCGGGCCGCCGCGGACGAGAAGCTGATCCGCACCACCGAGGTCGCGCTCGAGGCCGGGATCGCCGCCGCGCAGCCGGGGAAGAAGGTCGGGGACATCTCCGCCGCGATCGCCGCCGTCGCGCGCGAGGCCGGCTACTCGATCAACACCGACTTCGGTGGCCACGGTGTCGGGCGCACGATGCACGGCGACCCGCACGTGCCGAACGACGGCCGCGCCGGGCGCGGCTTCCCGCTGCGTCCCGGGCTCGTCATCGCCATCGAGCCGTGGTTCCTGGAGACCACCGACGAGATCTACACCGACGACGACGGCTGGACGCTGCGCTCGGTCGACGGCTCGCGCGGGGCGCACAGCGAGCACACGATCGCCATCACCGCCGACGGTCCGATCGTCCTCACCGCCCGCGACTGA	MIELRTPREIEEMRPAGRFVAETLQAVRQAAEPGVNLLELDALAHRLIKERGAESCYIDYHPSFGASPFGKVICTSVNDAVLHGLPHDYDLVDGDLLTLDFAVAVDGWVSDSAMSFVVGESPSEERAAADEKLIRTTEVALEAGIAAAQPGKKVGDISAAIAAVAREAGYSINTDFGGHGVGRTMHGDPHVPNDGRAGRGFPLRPGLVIAIEPWFLETTDEIYTDDDGWTLRSVDGSRGAHSEHTIAITADGPIVLTARD	PGPT0020010_6524	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265	NA	NA
AK001_03356	792	ybhA	COG0561	Pyridoxal phosphate phosphatase YbhA	ATGCTCGTCGCCCTCGACATCGACGGGACCCTGCTGTCCTACGACGGCGACCTCACCGACGCCGTGCGCGAGGCCGTCGGGGCGGTCCGCGAGGCCGGGCACGAGGTCGTGCTCGCCTCCGGACGGTCGCTGCTGGCCATGCTCCCGGTCGCGTCCGCGCTCGGGATCGAGACCGGGTGGATGGTGTGCTCGAACGGTGCCGTCACGGTCCGGCTGGACCCGGCGTCGTCGCAGGGGTGGGCCACCGAGGACGTCGTGACGTTCGACCCCGAGCCGGCGCTGCGCCTGCTGCGCGAGCAGCTCCCGGACGCGCGGTACGCCGTCGAGGACCTCGGCGTCGGGTTCCGGATGACGGAGCACTTCCCGGACGGCGAGCTGGAGGGCGAGCACGTCATCGTCCCCATGGAGGACCTCTGGTCCACCGAGGTCACCCGTGTCATCGTGCGCCGGCCGGACTCGACGTCGGGGCACTTCCACGAGCTGGTCGAGCACCTCGGCCTCGAGGACGTCACCTACGCCGTGGGGTGGAGCGCCTGGATGGACCTCGCCCCGCTGGGGGTGTCCAAGGCGACGGCGCTCGAGCAGGTGCGGCGACGGCGCCACCTGCAGCCGCACCGCACGGTCGCGATCGGCGACGGGCACAACGACCTCGAGATGCTGCGCTGGGCGGCCCGCGGCGTCGCGATGGGGCACGCGGACGACGCCGTGCAGGCGGCCGCGGACGAGGTCACCGGGCCGATCGAGGACGACGGCGCGGTCGAGGTGCTCCGCTCCCTCCTCCCGCCGAGGTAG	MLVALDIDGTLLSYDGDLTDAVREAVGAVREAGHEVVLASGRSLLAMLPVASALGIETGWMVCSNGAVTVRLDPASSQGWATEDVVTFDPEPALRLLREQLPDARYAVEDLGVGFRMTEHFPDGELEGEHVIVPMEDLWSTEVTRVIVRRPDSTSGHFHELVEHLGLEDVTYAVGWSAWMDLAPLGVSKATALEQVRRRRHLQPHRTVAIGDGHNDLEMLRWAARGVAMGHADDAVQAAADEVTGPIEDDGAVEVLRSLLPPR	PGPT0008595_672	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008595-ycsE|yitU|ywtE-K21064	NA	NA
AK001_03357	1269	serS	COG0172	Serine--tRNA ligase	GTGATCGACATCCGTCTCCTGCGCGACAACCCCGACGCCGCCCGCGCGAGCCAGCGTGCCCGCGGCGAGGACCTCGACCTGGTGGACGCGGCGCTGGCCGCCGACGCCCGCCGGCGCTCCTCCCTGGCGGAGTTCGAGTCCCGGCGGGCCGAGCAGAAGGCGATGGGCAAGCAGGTCGCCCAGGCGACCGGCGACGAGAAGGCCGCGCTCATCGGCCGGACCAAGCAGCTCGCCCAGGAGGTCAAGGACCACCAGGCCGCCGCGAACGAGGCCGAGGCCGAGCTCGACGAGCTGCTGTTCCGGATCCCGAACATCGTCGAGGGCGCCCCGGCGGGCGGCGAGGAGGACTTCGTCACCGTCAAGGCCGTCGGCACGCCGCGCGACTTCGCGGCCGAGGGCTTCGAGCCGCGTGACCACCTCGACCTCGGTGAGGGTCTCGGCGCGATCGACACCCAGCGCGGCGCGAAGGTCTCCGGCTCGCGGTTCTACTTCCTCACCGGTGTCGGCGCCCGCCTCGAGCTCGCCATCCTGCAGGCCGCGATGGACAAGGCCGTCGCCGAGGGCTTCACCCCGATGATCACGCCCACGCTCGTCACCCCGGAGACGATGCGGGGCACCGGGTTCCTGGGGGAGCACTCCGACGAGGTGTACCGCCTCGAGCGGGACGACCTGTACCTGGTCGGCACCTCCGAGGTGGCGCTCGCGGGCTACCACGGCGACGAGATCATCGACCTGTCCGACGGCCCGAAGCGGTACGCCGGCTGGAGCGCCTGCTACCGACGCGAGGCGGGCTCGCACGGCAAGGACGTGCGCGGCATCATCCGCGTCCACCAGTTCCACAAGGTGGAGATGTTCAGCTACTGCTCCGTGGACGACGCCGAGGCCGAGCACCAGCGTCTGCTCGCCTGGGAGGAGGCCATGATGGCCGCGGTCGAGCTGCCCTACCGGGTGATCGACACGGCGGCCGGCGACCTCGGCACCAGCGCGGCGCGCAAGTTCGACTGCGAGGCGTGGCTGCCCACCCAGCAGCGCTACCTCGAGCTGACCTCGACCTCCAACTGCACCACGTTCCAGGCGCGGCGGCTCAACGTGCGCGAGCGCGCCGAGCACGGCACGCGGACCGTGGCGACCCTCAACGGCACCCTCGGCACCACCCGGTGGATCGTCGCGATCCTGGAGAACCACCAGCAGCCGGACGGCTCGGTGCGGGTCCCCGAGGGGCTGCGCCCCTACCTCGGCGGACTCGAGGTCCTCGAGCCGGTGCGCTGA	MIDIRLLRDNPDAARASQRARGEDLDLVDAALAADARRRSSLAEFESRRAEQKAMGKQVAQATGDEKAALIGRTKQLAQEVKDHQAAANEAEAELDELLFRIPNIVEGAPAGGEEDFVTVKAVGTPRDFAAEGFEPRDHLDLGEGLGAIDTQRGAKVSGSRFYFLTGVGARLELAILQAAMDKAVAEGFTPMITPTLVTPETMRGTGFLGEHSDEVYRLERDDLYLVGTSEVALAGYHGDEIIDLSDGPKRYAGWSACYRREAGSHGKDVRGIIRVHQFHKVEMFSYCSVDDAEAEHQRLLAWEEAMMAAVELPYRVIDTAAGDLGTSAARKFDCEAWLPTQQRYLELTSTSNCTTFQARRLNVRERAEHGTRTVATLNGTLGTTRWIVAILENHQQPDGSVRVPEGLRPYLGGLEVLEPVR				NA	NA	NA	NA	NA
AK001_03358	1086	yegS		lipid kinase YegS	ATGCCCTGGGAACTCACCGTCGGGATCGTCGCACTGGTCGTCGGCCTGACCGCACTGGTGGTCGCGCTGGTCGTCCTGCGACGCAGCCGGCACGCCGCCGCCCCGTCGTCGGGTCGGGCGACGCCGGCCGACCGTCCGCAGCGTCCCCAGCTCGCCGTGGTGGTGAACCCCTCCAAGGAGAGCACGCAGCAGGCGATGGAGACCGTGCGCCGGGTCGCCGGGGAGGCGGCGCTGCCGGCACCACGCTTCTACGAGACGACCGTCGACGACCCCGGCATCGGGCAGGCCCGCGCCGCCGTGCGCGACGGGGCCGACATCGTCGTCGCGGCCGGCGGGGACGGCACCGTCCGCGCCGTCGCCGAGGGCATGCTCGGGTCCGAGGTGCCGATGGGCATCATCCCGGCCGGGACGGGCAACCTGCTGGCACGCAACCTCGACCTGCCGCTGACGGACCCGAAGGACGCGCTGGCGGTCGTCCTCGGCGGGATCGACCGGTCGATCGACGTGGGCCGCGTCCGCGTCACCGAGCGGCCGCCCGACGAGGAGCCGGACGACACCGACCACCTGTTCCTCGTCATCGCCGGCCTCGGCTTCGACGCCGCGATGGTGGCCGACGCCGACGACCAGCTCAAGGCGAAGATGGGCTGGGTCGCCTACTTCCTGGCCGGGGCGCGCCACCTGCACGGTCGGCGCATGGCCACCCGCATCACCGTCGACGACGAGGAACCGGTCGAGGCCAGGCTGCGCAGCATCATGGTCGGCAACTGCGGCCGGCTGCCGGGCGGCATCAACCTGCTGCCGGACGCGGCGCTGGACGACGGCGTGCTCGACGTCGCGGCGATCGACACGCGTGGCGGGCTGGCCGGCTGGGCACAGCTCTTCGGCGAGGTCGTCGCGCAGGGCATGGGCGTGCAGAACGACATGCGGGCCAAGATCGGCCGGATCGACCACGTCAAGGCCCGGCGGGCCACGATCCGCGTCGAGGACGGCGAGCAGGCGCAGGTCGACGGCGAGGTGCTCGGCAAGGCGGTCCAGATCCAGACGTGGGTCGAGCCCGGGGCGCTGGTGGTCCGCGCGCCCGCCTGA	MPWELTVGIVALVVGLTALVVALVVLRRSRHAAAPSSGRATPADRPQRPQLAVVVNPSKESTQQAMETVRRVAGEAALPAPRFYETTVDDPGIGQARAAVRDGADIVVAAGGDGTVRAVAEGMLGSEVPMGIIPAGTGNLLARNLDLPLTDPKDALAVVLGGIDRSIDVGRVRVTERPPDEEPDDTDHLFLVIAGLGFDAAMVADADDQLKAKMGWVAYFLAGARHLHGRRMATRITVDDEEPVEARLRSIMVGNCGRLPGGINLLPDAALDDGVLDVAAIDTRGGLAGWAQLFGEVVAQGMGVQNDMRAKIGRIDHVKARRATIRVEDGEQAQVDGEVLGKAVQIQTWVEPGALVVRAPA	PGPT0024345_188	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029	NA	NA
AK001_03359	4494			hypothetical protein	GTGCGTCTCCTCGTCCGACTCGTCGTCGCCGTGGTGGCGCTCCTGGTCACCGCCGCGTCCGTCGTCCTGCCGACGAGCGCGCACGCCGAGGAGTCCGCCGCCCCGACCGACACGCCGCTCGTGCTGGCCGGCGTCGCCGGGCTGCAGTGGACGGACATCGACGCCGCGCGCACCCCGCACCTGTGGCGGCTGGTGGGCGGCGGGTCGGTCGCGTCGGTCTCGGTCCGCACCCTGACCCCGACCTGCCCGCGGGACGCCTGGCTCTCGCTCTCCGCGGGCAGCCGGGTCGTGACCGAGAGGCCCGAGGACACCGGCGCGGGCGCGAACGGAGACAGCACCGGCGGAGGCGACGACGGCGAGGACGACGGCCGCGCGACGGCCGGGGAGCCGGAGCAGCCCTGCCCGCCGTTGCCTGCGGTCCGGGGGGCGGACGACGCCGGGCCCACGCAGGTGCCCGGCTGGGGCGCGCTCGTCGACGAGGACGCCCTGGCCTCCACGGGTGCCGAGCCCGGCACCCTCGGCGAGCTGGCCCGCACGGTGGGCACGTGCACGACGGCGGTCGGCCCGGGCGCTGCCCTCGCGACGGCGGACCGGTCCGGCGACGTGCCCCGCTACCTCGCCGGCCCCGACGACGTCACGGCGGCGGAGGACCTGACCACCTGCCCCGTGACGGTGGTCGACCTCGGCGAGCTCCCGGACGCGGCCACCGAGCGGGCCGACGCCGTCGCCGCCGTCGACGCGGCCGTCGGACGGATCGCCGACCTGCTGCCCGCCGGCGGCCGGCTCGTCGTGGCCGGTCTGGCCGACACCCCGCTGGGACCCGCCGACCTGCAGGTGGTGGTGGACTGGACGCGTCCGGGCGGCCAGGCCACCTGGCTGACCTCCACCTCGTCACGCTGGCCCGGCGTGGTGGTGGCCGGCGACCTGTCCGCGACGCTGGCCGACGCCCTGCTCACCGACGCCGATCCCGACGAGCTGGCCGCCGCCGAGCAGGACCCCGACAGCAGGCTGGCCGGGCTCGTCTCCGCGTTCACCGGGTCCCCGCTGGAACGCGGCGAGGACCGTCGGCTGTCGGTGTTCCGCACCGTCGAGAACCGGCAGTACCTGTCCGTCCTGACCGAGACCCTGCCGCGCATGACGCCGGTGCTGGTCGGCGTGCTCGCGCTCGGCGTGGTCGGCGTCGTGACCGGGCTGCTGCTCGGGCGTCGCCGGCGCACCGGCGACGCCGCGTCCGCGGGGTCCCCCGCGGCCGTCCCGCCGCCGTGGCGCACGGGGCTGGCGATCGCGGTGCTGACCGTCGTGGCCTCGCTGCCCGCCGCCGCCACCCTGGCCACGCTGTCGCGCTGGTGGGTGTGGCCGGTCCCGGTCGCGGTCCTGTGCCTCGCGATCGGTGCCGCCGCGCTCGCCGTGGCGCTCGGCGCGTGGTGGGCCCGGCTGCTGCTGCCGCGCACGCCGTGGCGGCTGCCCACGGCCCTCGCGGCGATCACCTGGCTCGTGCTCACGGTGGACGGCCTGACCGGCACCACGCTGCAGCAGGGGTCGCTGCTCGGCCCCGCCCCCTCGCTCGGGGCGCGCTTCTACGGGTTCTCCAACTCGGTGTTCGCCGTGTACGCCGTCGTCGGCCTCGTGCTCGCCGCCGGCATCGCCGCGCTGCTGCGCGACCGGGGCGCTTCCCGCCGCGCCCAGGCGTGGTCGGCCGCCGCGGTCGGCACGGTCACCGTGCTCGTCGACGGGCTGCCGCCGTTCGGCGCCGACCTCGGCGGAATCCTCGCGCTCGTGCCCGCCTTCGCCGTGCTGGTCCTCGGCGTCGCCGGGATCCGGCTGACCTGGCGGCGCGTGCTGCTCGTGCTGGCCGCCTCCGCCCTCGTGGTCGCCGTCGTCGCCGTCCTGGACTGGGCCCTGCCCCCGGCGACGCACCTGGGCGGGTTCGTCGACTCCGTCCTGGACGGCACCGCCCTGGCGGTGATCGCCGGCAAGGCGGCCGGAGCCTGGGCCACGGTGGCGAACCCCGCCGGGGCGTTCGCCGCCGTCGTCTGCGCGCTCGCGGCCTGGGCCGTGATCGACCCGCGCCGGGCCCGGCTCGACGGCGTCGCCGCGGCCTACGCCCGCGAGCCCCTGCTGCGCCGTGCCGTCCTGGCGGTCGTCACCGTCGGCGTCGTCGGCACCGTCGTCAACGACTCGGGCGTCGTGGTGGCGATGTACGTGCTGCTCGTCGGCACCCCGCTGCTGCTTGTCGGCCGCCTCGAGGCGGCGCTCACCCCGCCCGCCGCGCCCTCCGGCGCCGCCCGGGGCACGGGACGCCGGATCCTCGGCGTGGCCGCCGGCGTCGTGGTCGCGCTGCAGCTCGGCGGCGCCGCGGTGCCGGCGGGCGGCATGTCCCACGCCGGGGACGTCACCGCCGGAGGTGATCCCGTGCTGACCGACGAGGAACCGGTCGTCGTCGTCGGCACGAACGGTCTGCGCTGGCAGGACGTCTCCCCCACCCGCACCCCGACCCTGTGGGGCCTGCTGCGCGACGGCGCGAGCGCCGGCGGGATGACGACGACCGTCACCGGACCGTCCGGGGACTGCCGGGCCGCCGGGTGGCTCAGCCTGTCGGCCGGCCGCAGCACCGTCACCGGCGCGTTCGACGACGGCACCTGGCGCTGCACGGACTGGGGGGTGACGGCGGACGGCGAGGGCGCCGTCGTCGACGGCTGGGACGCGCTGCAGGCCGAGCAGGCGGCCTCGGAGTTCAACCCGCACCCCGGGGTGCTGGGCGAGACCCTGTCCGCGGGCGACGTCTGCACGACGGCGGTCGGCCCCGCGGCCGCCCTGACGCTCGCGGGCCGCGACGGCACCGTCGAGCGGTACCGGACCCTGGACGCCGCGCTGCAGGACCCGGACGACGTGTTCTCGTGCCCGGTGACCGTCGTGGACGCCGGCGCCGCGCCCTACCACCCGACCGGCGAGGGATCGGACGCCCGGCCCGTGCCGACGGACGCCACGCAGCCCGGCCCGGAGCGGGACGACGCGCTGCGCGAGGTCGATGCGACGGTGCGCAGCGTCCTGCTCGCCGCCCCGCGGGACGTCACCGTGCTCGTCGCCGACATGGGGAACCCCGCGCCCACGCGGCCGGCGCTCGGCGTGGGGGTCGCCCGCACGCACACCGACGCCCAGCCGTCCTACCTGGCCTCCTCCGCCACCCGGTGGGTCGGCGTCGTCCGGCTGCTGGACCTGCCCCCGACCCTCGTCGCGGACTTCGACCTGCCACGGCCGACGGACTTCTCCGGGGCGCCCGTGACGCTCAGCGAGCAGCGTCCGAGCGGCACGGGCGCCACGGTCCGCGACCTGTCGTCCCTGACGGAGCGGGACCACGGCCTGCGCGAGGTCACCGGCGCCGTGACCGGGCTGCCGACCTACGTCGCCCTCGCCGCCTTCGGCCTGGTCGTGCTCCTGCTGCCGACGGTCCGACGACGCGCCTCCGACCGCACCACCCGGCTGTGGACGGGTGCGCTGGAGACGGTCCTGCTGGTGTGCGCGGCGATCCCGGCGGCCTCGTTCCTCATGACGACCTGGTCGTGGTGGCGGATGCCGGACCCGCAGGCGGGCCTGTGGCTGGCGCTCGCGGGCGGCACCGCGCTGGTGGCTCTCGTCGGGACCCTGGCGCCGCGTCGCCCGGCGTGGGCGGGCACGGTCGTGCTCGCCACGGTCACGTTCGTGGTGCTCACCCTGGACGCGGTGCTGGGCACGCCCCTGCACCGCGGCAGCCCGCTCGGCGCGGCGCCCACGCTGGGCGGCCGGTTCTACGGCTTCGGCAACCCGACGTACTCGGTCTACGCGGTCGTGGCGGTGCTCGCCGCCGCGGGGCTCGCGACCGTCGTCGCACGGCGGTGGGGTCGGGTCGCCGGCGCCGTCGTCGCGGGCGTCGTGGGCCTCGTCGCGCTGGTCGTGACGGTCTGGCCCACGTTCGGCGTCGACGTCGGGGGCGGGCTGGTCCTGGTCCCGGTGTTCGCCGTCGTGGTGCTCGCGGCGCTCGGCGCGCGGCTGACCTGGCGCAAGCTGCTGGTCGCCGGGGGCGCCGGCGTGCTGCTGGTCGCCGTCATCGGCGTCCTGGACTGGCTGCGGCCGCCGGCGGAGCGCTCGCACCTGGGCGCCTTCGTGCAGTCCGTGGTGGACGGGACCGCCGTCGAGACGATCTGGCGCAAGGCGGGCTACGCCCTCGGCTCCCTGGACGGCGGTCCGCCGGCCTGGCTGTCGCTGGCCGTCCTGCTCGGGGTCGTGGCTGCCCTGTGGGCGGGTCCACGCTTCTCCGCGCGATGGCTCGAGCGGGCCGAGGAGGCGTGGCCGCTGCTGCGCCCGGTGCTGGTGGCGCTGCTCATCGCGGGCGTGGGCGGCGCGCTCGCGAACGACTACGGCATCCGGGTCGTGACGATCATGCTGTTCCCCGCGGTGCCGCTCATCGGTCTGCTCGTGCTCCGCACCGACGATTCTCGACAGATGTCTGCCAACTGA	MRLLVRLVVAVVALLVTAASVVLPTSAHAEESAAPTDTPLVLAGVAGLQWTDIDAARTPHLWRLVGGGSVASVSVRTLTPTCPRDAWLSLSAGSRVVTERPEDTGAGANGDSTGGGDDGEDDGRATAGEPEQPCPPLPAVRGADDAGPTQVPGWGALVDEDALASTGAEPGTLGELARTVGTCTTAVGPGAALATADRSGDVPRYLAGPDDVTAAEDLTTCPVTVVDLGELPDAATERADAVAAVDAAVGRIADLLPAGGRLVVAGLADTPLGPADLQVVVDWTRPGGQATWLTSTSSRWPGVVVAGDLSATLADALLTDADPDELAAAEQDPDSRLAGLVSAFTGSPLERGEDRRLSVFRTVENRQYLSVLTETLPRMTPVLVGVLALGVVGVVTGLLLGRRRRTGDAASAGSPAAVPPPWRTGLAIAVLTVVASLPAAATLATLSRWWVWPVPVAVLCLAIGAAALAVALGAWWARLLLPRTPWRLPTALAAITWLVLTVDGLTGTTLQQGSLLGPAPSLGARFYGFSNSVFAVYAVVGLVLAAGIAALLRDRGASRRAQAWSAAAVGTVTVLVDGLPPFGADLGGILALVPAFAVLVLGVAGIRLTWRRVLLVLAASALVVAVVAVLDWALPPATHLGGFVDSVLDGTALAVIAGKAAGAWATVANPAGAFAAVVCALAAWAVIDPRRARLDGVAAAYAREPLLRRAVLAVVTVGVVGTVVNDSGVVVAMYVLLVGTPLLLVGRLEAALTPPAAPSGAARGTGRRILGVAAGVVVALQLGGAAVPAGGMSHAGDVTAGGDPVLTDEEPVVVVGTNGLRWQDVSPTRTPTLWGLLRDGASAGGMTTTVTGPSGDCRAAGWLSLSAGRSTVTGAFDDGTWRCTDWGVTADGEGAVVDGWDALQAEQAASEFNPHPGVLGETLSAGDVCTTAVGPAAALTLAGRDGTVERYRTLDAALQDPDDVFSCPVTVVDAGAAPYHPTGEGSDARPVPTDATQPGPERDDALREVDATVRSVLLAAPRDVTVLVADMGNPAPTRPALGVGVARTHTDAQPSYLASSATRWVGVVRLLDLPPTLVADFDLPRPTDFSGAPVTLSEQRPSGTGATVRDLSSLTERDHGLREVTGAVTGLPTYVALAAFGLVVLLLPTVRRRASDRTTRLWTGALETVLLVCAAIPAASFLMTTWSWWRMPDPQAGLWLALAGGTALVALVGTLAPRRPAWAGTVVLATVTFVVLTLDAVLGTPLHRGSPLGAAPTLGGRFYGFGNPTYSVYAVVAVLAAAGLATVVARRWGRVAGAVVAGVVGLVALVVTVWPTFGVDVGGGLVLVPVFAVVVLAALGARLTWRKLLVAGGAGVLLVAVIGVLDWLRPPAERSHLGAFVQSVVDGTAVETIWRKAGYALGSLDGGPPAWLSLAVLLGVVAALWAGPRFSARWLERAEEAWPLLRPVLVALLIAGVGGALANDYGIRVVTIMLFPAVPLIGLLVLRTDDSRQMSAN				NA	NA	NA	NA	NA
AK001_03360	3321			hypothetical protein	ATGTCCCATTCTATGCGTTCACGTGCTCTCGCGGCGGTAGCCACCGCGGCGTTGGCACTGCCGATCGCAGCGGCGACGGCGTCGGCCCACGACGGTGTCGACCACGGCTCCGAGGAAGGCGCCGAGGCGGCGCTCGACTGGTCCAACTACGAGAAGATCCTGCTCACCGAGAACACCGGTGAGCCCATCGCCATGGCCGTGATGCCCGACGGGTCGGTGCTGCACACCGCTCGCGACGGCGCGATCCGGCACACCGACCCCAGCACGGGCGTCACCGAGGTGGTCAACACCGTCGACGTCTACGCCAACTCCGAGGACGGCATGCAGGGCATCGCCCTGGCCCCGGACTTCTCCGAGTCCGGCTGGGTGTACCTGTACTACGCGCCCCGCGTCATGGACGTCGAGGGCTACCCCACCACGACGCCGTCCGGCTCGGCCCCCAACTCCCTGCCCGAGGGCGAGGACGAGTCCTACTGGGACCAGTGGAAGGGCTACAACCAGCTGACCCGCGTGCAGTGGGACGCCGAGGCCGGCGCCCTGGACATGAGCACCGAGCAGGACCTCCTCGAGGTCGAGGTCCAGCGCGGGCAGTGCTGCCACGTCGGTGGTGACATCGACTTCGACGCCGAGGGCAACGTCTACGTGTCCACCGGCGACAACACGCCGGCCGGCACCCCGGGTTCCAACGGCTTCGCCCCCAACAACAACGCTCCCGGCATGAACCCCGGGTTCGACTCGCGGCGCGGCGCCGGCAACACCAACGACCTGCGCGGCGCGATCCTGCGGATCCACCCCGAGGAGGACGGCAGCTACACGATCCCCGAGGGGAACCTGTTCGAGCCGGGCACCGAGGGCACCCGTCCCGAGATCTTCGTGATGGGCCTGCGCAACCCGTTCCGGATCGACGTCGACGACGTCACCGGTGCGGTGAGCTGGGGCGACTACGGTCCCGACTCCGGTGTCGCCAGCGACGAGCGTGGCCCGATGGGCTACGTCGAGTGGCAGAGCACGACGACGCCGCTCAACGGCGGCTGGCCGTACTGCCACGGCCCGAACGCCAACTACAACGAGTGGGACTTCGAGACCGCGACGCCGGGCGACTGGTTCGACTGCGAGGCCGGGGCGGAGAACAACTCCACCTGGAACACGGGTCTCGACGTCCTGCCGCCGGCGACGGCGCCGCAGGTCTACTACGGCGACAACCCGGGCGACCAGCCGTTCGACGAGTTCGTCGAGTTCGACCCGCAGGGCGGCCAGGGCCCGATGGGCGGCCCGACCTTCGCCTTCGACCCGGAGGGTCCCGAGACCCAGTGGCCGGAGTACTGGGACGGCAAGGCGTTCTTCTACGAGTTCTCCCAGGACTACATCGCCGGGCTGACCATCCCCGACCGTGACGGGCCCGTCACCCACGTCGAGCACGTGCTGCCCAACGCGGCGCTGACGGACAACGTGCAGGCCATCACCGACGGCCCGATCGACATGGAGTTCGGTCCCGACGGGTCGCTGTACATCCTCGACTACGGCAACGGCTTCTTCCGGCAGAACCCGGAGGCGGGCCTGTACCGCGTCGACTACGCCGAGGGCAACAAGGCCCCGACCGCGGTCATCGAAGCCGACCCGATCTCGTCCTCCGAGGCGCCGCTGACGGTGACCCTGGACGGCTCGGGCTCGACCGACCCCGAGGGCGAGGAGCTCACCTACGAGTGGGACACCAACGGTGACGGCACGTTCGACGAGACCGGCGTGGAGATCACCACGACCTACTCCGAGCTCGGCCAGTACACCGCTCGCCTGCGGGTCACCGACCCGGCCGGCCGCATCGGCCTCACCTCCGAGCTGATCACGGTCGGCAACGTGGCGCCGACGCTGACCGCCGACTACCCGGCCGACGGCGCGTTCTTCGCCTGGGGCGACGCCGTGCCGTACGCGTTCAGCACCTCGGACCCGGAGGACGGCACCGACACGGTGTGCTCGAACCTGTCCTGGACGCTGGGTCTGGGCCACGACACGCACGCCCACCCCGAGGTGCTCGGCAGCGGTTGCTCCGGCGCCTGGGTCACCCCGGCCGACGCCCCGGAGCACGGCGAGACGGAGAAGCTGTACGCCGTCGTCGTGGCGAACTACACCGACCAGGGCAACGGGGACATCCCGCCGGCCGTGGCCGAGACGTCGCTGCTGCTCAACACCTTCACCCAGGAGGCCGAGCACGCCGACACGTTCTCCGGCGTCGAGGTCGTCAGCGACGACACCGCGGGCGCACTGTCCAAGGTCGTCTCGTTCGACGCCGGTGACCACCTCGCCTGGGACCCGGTGAACTTCGCCGGGATCGACGGCGTCGAGGTGACCGGGGCCGGGACCGGCACGATCGCGCTCCGCTGGGGCGCGGCCGACGCCGAGCCCTTCGCCACCGCCGACCTCGACTCGTCCGGCTGGTCCACCGTGGCCGCGGACGTGACCGCGTTCCCCGAGGGCACCGGCGAGCTCTTCGTCACCTCCACCGGCGGCGTCGAGCTCGACACCCTGGAGTTCCAGGGCGACGGCGTCAGCGACGTCACCCCGCCCGAGGCGAGCCACTCGCTGAACCCGTCCGAGCCGACCGGTGACAACGGCTGGTACACGGGCTCCGTGTCGCTCTCCGTCAACGGGACCGACGACGGCGAGATCGGCGACGCGGAGGTGTCGTACGACGGCGGCGAGACCTGGGACAGCATCCGCCACCCCTGGTTCGGCATCCGTCCGGTCACGCTGTCCGACGACGGCGTGCACGAGGTCCAGTACCGCGTCATCGACACCGGCGGCAACGTCTCCGAGCCCGGCGAGGTGACCGTCTCCATCGACACCACGGCCCCCGAGGTCGCAGTGACCGGTGTGGCCGACGGTGACGAGCTCGGCTCCTCCGAGGTCCTCGACCTCGGCGCCGAGGCCTCGGACGCCACCTCCGGTGTCGCGTCGTGGAGCCTCACGCTCGACGGCGAGGAGATCGAGGCCGGCGAGATCGAGCTGTGGACGCTCGACCTCGGCGACCACGAGGTCGTCGCGACCGCGACCGACGAGGCCGGCAACACGGCCGAGGCGACCGCGAGCTTCACGGTCACCACCTCGGCCGCCGACCTCGCGGCGCACCTCGAGCGCCTCGACGAGGCCGGCGAGCTGTCGACGTCCGAGTCGGCCCGCCTGCACGCCTTCCTCGAGCAGGCCGAGCGGCACTCCGACGCCGGCCGCGACGCCCAGGCGGCGAACGCCCTGCAGCGGTTCGCCGACGCCACCGACGAGGAGGTGCTGATCCGCGACGCCGAGGCGCTCATCGCCCAGCTCGGCTGA	MSHSMRSRALAAVATAALALPIAAATASAHDGVDHGSEEGAEAALDWSNYEKILLTENTGEPIAMAVMPDGSVLHTARDGAIRHTDPSTGVTEVVNTVDVYANSEDGMQGIALAPDFSESGWVYLYYAPRVMDVEGYPTTTPSGSAPNSLPEGEDESYWDQWKGYNQLTRVQWDAEAGALDMSTEQDLLEVEVQRGQCCHVGGDIDFDAEGNVYVSTGDNTPAGTPGSNGFAPNNNAPGMNPGFDSRRGAGNTNDLRGAILRIHPEEDGSYTIPEGNLFEPGTEGTRPEIFVMGLRNPFRIDVDDVTGAVSWGDYGPDSGVASDERGPMGYVEWQSTTTPLNGGWPYCHGPNANYNEWDFETATPGDWFDCEAGAENNSTWNTGLDVLPPATAPQVYYGDNPGDQPFDEFVEFDPQGGQGPMGGPTFAFDPEGPETQWPEYWDGKAFFYEFSQDYIAGLTIPDRDGPVTHVEHVLPNAALTDNVQAITDGPIDMEFGPDGSLYILDYGNGFFRQNPEAGLYRVDYAEGNKAPTAVIEADPISSSEAPLTVTLDGSGSTDPEGEELTYEWDTNGDGTFDETGVEITTTYSELGQYTARLRVTDPAGRIGLTSELITVGNVAPTLTADYPADGAFFAWGDAVPYAFSTSDPEDGTDTVCSNLSWTLGLGHDTHAHPEVLGSGCSGAWVTPADAPEHGETEKLYAVVVANYTDQGNGDIPPAVAETSLLLNTFTQEAEHADTFSGVEVVSDDTAGALSKVVSFDAGDHLAWDPVNFAGIDGVEVTGAGTGTIALRWGAADAEPFATADLDSSGWSTVAADVTAFPEGTGELFVTSTGGVELDTLEFQGDGVSDVTPPEASHSLNPSEPTGDNGWYTGSVSLSVNGTDDGEIGDAEVSYDGGETWDSIRHPWFGIRPVTLSDDGVHEVQYRVIDTGGNVSEPGEVTVSIDTTAPEVAVTGVADGDELGSSEVLDLGAEASDATSGVASWSLTLDGEEIEAGEIELWTLDLGDHEVVATATDEAGNTAEATASFTVTTSAADLAAHLERLDEAGELSTSESARLHAFLEQAERHSDAGRDAQAANALQRFADATDEEVLIRDAEALIAQLG	PGPT0004005_34	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738	NA	NA
AK001_03361	1185			hypothetical protein	ATGGCCCTCTTGTCCCCCACCAAGCCCGCGCAGCCGCGCGACGGCTCCGACGACCGTCCGCCGCGACGGCTCGGCTTCTCCCAACGACTCGGACGCCTGGACGTCAAGGTCTCGCCGTACCTGTACATCTCCCCGTTCTTCCTGCTCTTCGCCGTCGTCGGCCTGTTCCCTCTCGCCTACACCGCCGTGGTGTCGGTGTACGAGTGGAACCTGCTCGGCGGGCAGGGCGAGTTCGTCGGCATGCAGAACTACGTCGACGTCCTGCAGCAGCCGACCTTCTGGAAGTCGGTCGGGAACACCTTCTCGATCTTCCTGTTCTCCTCGGTCCCGCAGGTGATCATGGCGATCACGATCGCCGCCCTGCTGGACCAGAACCTGCGCGCGGCCACCTTCTGGCGCATGGGCGTGCTGGTGCCGTTCATCGTGGCCCCGGTCGCCATCTCGATGATCTTCGGCCGCCTCTTCGCCGACCAGTACGGCTTCATCAACGAGCTGCTCGGCCTCGTCGGGATCGACCCGATCGCCTGGCACGGCGACCGGATCGCCAGCCACGTCGCGATCGCCACGATGGTCAACTACCGGTGGACCGGCTACAACACCCTGATCTTCCTGGCGGCCATGCAGGCCGTCCCGCGCGACCTCTACGAGGCGGCCGTCATCGACGGCGCCGGCCGGGTCCGACAGTTCTTCTCGGTCACCGTCCCGCAGATCCGCGCGACCGTCATCTTCGTGGTCATCACCTCCACCGTCGGCGGCATGCAGATCTTCGACGAGGTCCGCATGTACGACGCCGGCGGCCTCGGCGGCCCGAACCGCGACTGGATGACCACGGTCGTCTACCTCTACGACGTCGCGTGGGGCAACCAGAAGAACTTCGGCCGCGCCGCCGCGGTCGCCTGGCTGCTGTTCCTCATCATCGTCGCCGTCGGCATGGTCAACTTCCTCATGACCCAGCGGATCGCCACCGCCGGGCCGAAGGGCGCCAAGATCAGCCGCCGGCACACCAAGCGGCTGATGGCCGAGGCCCGCGCCGCCGCGGCCCGGGGCGAGACCCCGACGACGTCGGCCCCGCCGGGCGGCACCCCCGGCCCCCAGCCCGGGTCGCCGCCACCACCCCCGGTGGACCCGCCCCCGCAGCCGTCCGCCGACTCGCCCACCACGAACTCCGGGGAGGACGTCCGATGA	MALLSPTKPAQPRDGSDDRPPRRLGFSQRLGRLDVKVSPYLYISPFFLLFAVVGLFPLAYTAVVSVYEWNLLGGQGEFVGMQNYVDVLQQPTFWKSVGNTFSIFLFSSVPQVIMAITIAALLDQNLRAATFWRMGVLVPFIVAPVAISMIFGRLFADQYGFINELLGLVGIDPIAWHGDRIASHVAIATMVNYRWTGYNTLIFLAAMQAVPRDLYEAAVIDGAGRVRQFFSVTVPQIRATVIFVVITSTVGGMQIFDEVRMYDAGGLGGPNRDWMTTVVYLYDVAWGNQKNFGRAAAVAWLLFLIIVAVGMVNFLMTQRIATAGPKGAKISRRHTKRLMAEARAAAARGETPTTSAPPGGTPGPQPGSPPPPPVDPPPQPSADSPTTNSGEDVR	PGPT0016435_7	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016435-cebF-K10241	NA	NA
AK001_03362	921	araQ_10	COG0395	L-arabinose transport system permease protein AraQ	ATGAGCTCCGTCGCCGTCACCGCACAGACCGCCGGGGCGGGCGCCGCGCGAGCCGCCGCCAAGCGTCGCCAGCGCAAGGTGCCGCTCGGCGGGTCGGCCCGCCGTGCCGGACGCCTGACCTACTTCCTGCTCGGCGCCGTCCTGCTGATCTCGATCTTCCCGCTGTACTACACGCTCCTGCTCGGGTCCTCCGACCCGGTCGCGATCGCGCAGAACCCGATCCCGCAGTGGCTGCCCGACTCCAGCCTCTTCTCGCAGTTCGCCACGGTCATCACCGACTCGAACATCAACTTCTGGAAGGCGCTGTGGAACTCCACGCTGATCGGCGTCTTCTCGTCGCTGTCGGTGGTGTTCTTCTCGACGCTCGCCGGGTACTCCTTCGCCAAGCTGAACTTCCGGGGACGGGGCCCGCTGCTCGTCTTCGTCATCGCCACGATGGCGGTGCCGGTCCAGCTCGGCATCATCCCGCTGTACATCCTCATGAGCGAGATCGGCTGGTACGGCCAGGTCCAGGCGGTCATCGTGCCCGGTCTGGTCACCGCGTTCGGCGTGTTCTGGATGACCCAGTACCTCTCGGAGGCGCTGCCGTACGAGCTCATCGAGGCCGCCCGCGTCGACGGGGCGTCGATGTTCCGGACCTTCTGGTCGGTCGCGATGCCGGCGGCGCTGCCCGCGGCGGCGATGCTCGGGCTCTTCCAGTTCGTGCAGCAGTGGACCAACTACTTCTGGCCGTCGATCATCCTCACCTCGGACAACCCGACGCTGCCGCTGGTGGTGCAGTCGCTGCGCGACAACTATTTCGTCGACTACTCGCTGGTGATGGGTGGCGTGTTCCTCGTGACGCTGCCGCTGCTGATCATGTTCTTCTTCGTCGGCCGCCAGCTCGTCGCCGGGATCATGGCGGGTGCGGTGAAGGGCTGA	MSSVAVTAQTAGAGAARAAAKRRQRKVPLGGSARRAGRLTYFLLGAVLLISIFPLYYTLLLGSSDPVAIAQNPIPQWLPDSSLFSQFATVITDSNINFWKALWNSTLIGVFSSLSVVFFSTLAGYSFAKLNFRGRGPLLVFVIATMAVPVQLGIIPLYILMSEIGWYGQVQAVIVPGLVTAFGVFWMTQYLSEALPYELIEAARVDGASMFRTFWSVAMPAALPAAAMLGLFQFVQQWTNYFWPSIILTSDNPTLPLVVQSLRDNYFVDYSLVMGGVFLVTLPLLIMFFFVGRQLVAGIMAGAVKG	PGPT0016440_58	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016440-cebG-K10242	NA	NA
AK001_03363	1572	bglB_3		Beta-glucosidase B	ATGACTCTGATCGCACCGGGCGCCGGAGCCCGGACCGCAGCCCCCGGGACGCCCGTCCCCTTCACCCCGTCCTCCCCGCTCACCGAGCCGACGGCCAACGCCCGTGGCCGCGTCGCGTTCCCCGAGGGCTTCCTGTGGGGAGCGGCCACCGCCGCCTACCAGATCGAGGGCGCCGGGGCCGAGGGCGGCCGGGGCGACTCCATCTGGGACGTCTTCTGCCGGGTCCCCGGTGCGGTCGTCCACGGTGACGACGGCATGGTCGCCTGCGACCACTACCACCGGTACCGCGAGGACGTCGCGCTGATGTCCCGGCTGAACCTGGGCGCCTACCGGTTCTCGAGCTCCTGGGCCCGGGTGATGCCGGACGGCCGCACCCCGAACCCGGAGGGGCTGGACTTCTACTCCCGCCTCGTCGACGAGCTGCTGGGCGCCGGCATCACCCCCTGGCTCACGCTGTATCACTGGGACCTGCCGCAGGCTCTCGAGGAGGCCGGCGGCTGGCCGGCCCGGGACACGGCCTACCGGTTCGCGGACTACGCCGCCACCATGCACGAGGCCCTGGGCGACCGGGTGAAGATCTGGGCGACGCTCAACGAGCCGTACTGCTCGGCGTTCCTCGGCTACACGGCCGGGGTGCACGCCCCCGGCCGGACGTCCCCCGAGCTCGGCCTCGCCGCAGCGCACCACCTCATGCTCGGGCACGGCCTGGCCGTGGAGGCGCTGCGGGACCGTGACCCCGAGGCGACGCTGGGGCTGACGCTCAACTTCACCGTCTCCGACCCCGTCGACCCGACGGACCCGGCCGACGTGGACGCCGCGCGCCGTGACGACGCCGTGTTCAACCGGATCTTCCTCGACCCGATCTTCCGGGGCGCCTACCCGCAGGACCTCCTGGAGGACGTCGCCCACCTGGGCCTGGCCGACCACGTCCGCCCCGGCGACCTGGAGATCATCTCCACGCCGATCGACGTGCTCGGCGTGAACTACTACAACGGCGGCGCCGTCTCCGCGACGCCGCAGGCCGGGACCCGTCCCGACGGCACCGCGAGCCCCGAGGGCACCGCCGGTCCCGACGGCGAACGCACCCCGGACGCGTCCGGGCCGGTGCGCGAGACCCGCTCGCCGAACCCGGTGCCGGACGGCGTGCACCCGCACAGCCGCGGCCTGCCCCTGACCGACATGGGCTGGGAGGTGCAGCCGGAGGGACTGACGCGCCTGCTGACGCGGCTGCAGCGGGACTACGCGGGGCCGCGCGGCACGGCGCTGGTCGTCACCGAGAACGGCGCGGCCTACCCCGACGTCGTCGAGGCGGACGGCAGCGTCGACGACCAGGACCGCCTGGAGTTCATCGACCGTCACCTGCGCGCGGTCAAGGACGCTGTCGACGCCGGCGCCGACGTGCGCGGATACTTCGCCTGGTCGCTGATGGACAACTTCGAGTGGGCGCTGGGCTACACCAAGCGGTTCGGCCTCACCCGGGTCGACTACGAGACCCAGGAGCGTATCGTGAAGGCTTCGGGCCGCTGGTACGCCGAGGTCGCCCGCGACAACGCCGTCCCGGCACAGGATTGA	MTLIAPGAGARTAAPGTPVPFTPSSPLTEPTANARGRVAFPEGFLWGAATAAYQIEGAGAEGGRGDSIWDVFCRVPGAVVHGDDGMVACDHYHRYREDVALMSRLNLGAYRFSSSWARVMPDGRTPNPEGLDFYSRLVDELLGAGITPWLTLYHWDLPQALEEAGGWPARDTAYRFADYAATMHEALGDRVKIWATLNEPYCSAFLGYTAGVHAPGRTSPELGLAAAHHLMLGHGLAVEALRDRDPEATLGLTLNFTVSDPVDPTDPADVDAARRDDAVFNRIFLDPIFRGAYPQDLLEDVAHLGLADHVRPGDLEIISTPIDVLGVNYYNGGAVSATPQAGTRPDGTASPEGTAGPDGERTPDASGPVRETRSPNPVPDGVHPHSRGLPLTDMGWEVQPEGLTRLLTRLQRDYAGPRGTALVVTENGAAYPDVVEADGSVDDQDRLEFIDRHLRAVKDAVDAGADVRGYFAWSLMDNFEWALGYTKRFGLTRVDYETQERIVKASGRWYAEVARDNAVPAQD	PGPT0019165_216	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350	NA	NA
AK001_03364	1011	ccpA_9	COG1609	Catabolite control protein A	GTGGTCACGAAGCACATCGCACCGACGCTCGACGACGTCGCGCGCACCGCCGGCGTCTCGCGCTCGACCGCATCGCGGGCGATCAACGGCGGCGACCGGGTCTCGCCCGAGGCGCAGCAAGCCGTGGACTCCGCCATCGTGCGCCTCGGGTACGCACCCAACCGGGCGGCCCGGTCGCTCGTGACCCGACGGACGGACTCCATCGCCCTGGTGGTCCCGGAGCCGGACGCGAGGATCCTCACCGACCCGTTCCTCGCCGGCGTCGTGCGCGGCGTCAGCGAGGGGCTGGGGGGCACGGACCTGCAGCTCGTCCTGCTGCTGGCCCGCCAGGGCGAGCGCCCCGGGCACCTCGCCCGGTACCTGACCAGCGGGCACGTGGACGGCGTCATCGTCGCCTCGCACCACAAGGACGACAACCTCGAGCCCGAGCTGCGGTCCGGCTCGCTGCCCGCGATCTTCGTCGGGCGCCCGTTCGACGCCGCCGGCCTGCACTACGTGGACGTCGACAACCGGGCCGGCGCCCGGGTCGCCACGCAGCGGCTCATCGACCGAGGGTGCCGGTCGATCGCGACCCTGACCGGGCCGCGGGACATGACCGCCACCCTCGACCGTTTCGACGGGTGGCGGCAGACGCTGACCCGGGCGGACCTGCCCACGGACGCCGTCGCCGACGGCGACTTCACGGTCGAGGGCGGGGCCGCCGCGATGGAGCAGATCCTGGCCGAGCACCCCGACGTCGACGGCGTCTTCGCCGCGTCGGACCTCATGGCCACCGGCGCGCTGCAGGTGCTGCAGGCGCACGGCAAGCGGGTGCCCGAGGACGTCGCCGTGGTCGGTTTCGACGCTCTCGGTGCGGAGCGGACCACACCGCGGCTGACCACCGTGCTGCAGCCCGTGGTGGAGATGGTCGCGGCGGCGACGTCGTCCCTGCTCGACATGCTGGCCGGCGAGGACGTCCACCCCGAGCCGCGCATCTTCATCCCGCGTCTGGTCGAGGGTGACTCGGCCTGA	MVTKHIAPTLDDVARTAGVSRSTASRAINGGDRVSPEAQQAVDSAIVRLGYAPNRAARSLVTRRTDSIALVVPEPDARILTDPFLAGVVRGVSEGLGGTDLQLVLLLARQGERPGHLARYLTSGHVDGVIVASHHKDDNLEPELRSGSLPAIFVGRPFDAAGLHYVDVDNRAGARVATQRLIDRGCRSIATLTGPRDMTATLDRFDGWRQTLTRADLPTDAVADGDFTVEGGAAAMEQILAEHPDVDGVFAASDLMATGALQVLQAHGKRVPEDVAVVGFDALGAERTTPRLTTVLQPVVEMVAAATSSLLDMLAGEDVHPEPRIFIPRLVEGDSA	PGPT0017992_5908	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529	NA	NA
AK001_03365	1020			hypothetical protein	GTGCTGCCACCGCGGTGGGTCCGCCGGGTCGTCCTCGCCCCGCTGGTCGTCGCGCTCGCCGTCCTCATGGTCCCGACCACGCTGATGTTCGCGATCGTCGTCGGCGGCGTGCTGACCTGGGTCGTCCCCGGCGGGCTGCGCGCGCTGCGGTTGCTCTGGATGGCGGCGTTCTACGTCGTGTGGGACGCGACGGCGCTGCTCGCGATGTTCGGCCTCTGGCTCGCCGCGGGGTGCGGTCTGTTCACCGACCGGCCGTGGTACCGCCGTGCGCACGTGCGGCTGGCCCGCGGGATGCTGGCGCTGTTCTTCTGGCAGGTGCGCTGGACCCTGCGACTGCGGATCCAGCTCGACCTGCCGTCGCCGGGGACGCTGCCGGACGCGCCGGTGGTGGTGCTGAGCCGGCACGCGGGGCCGGGCGACTCGTTCATCATCGTCGACCGGTTGCTGGGGTTGTCGGGGCGTGCGCCGGCGATCGTGCTCAAGGACACGATGCAGTGGGACCCGGCGATCGACGTGCTGCTGAACCGGCTGCCCTCGGCCTTCGTGACGCCGGCGTCACGGCGTCCTGCGGGTCGGCCGGGTGCGCGCGAGACGGTGCACCGGATCGCCGCCGGGCTGACCGTCGACGACGCCCTCGTGCTCTTCCCCGAGGGCGGGAACATCACGCCGCGTCGCCGCGCGGAGCGCATCGAGGCGCTGCGCCGGGCCGGGCACGAGACCTTGGCGCGCCAGGCCGAGGAGATGACCGAGGTGATGGCACCGCACGTGGGCGGCTTCGACGCCGCGATGGAGGGATCTCCCGACGCCGCGGTCCTGGTGGTCGCGCACACCGGGCTCGAGCGGCTCGTGACCGTCCGGGACGTGTGGCGCGAGCTGCCCATGGACAAGACCATCACCATGCGTGCCTGGCTGCACCCGGCCGGAGCCGTGCCGACCGCCCAGGACGCGCGTCGGACCTGGTTGTTCGACCAGTGGCGGACGATCGACGACTGGGTCGTCAGGCGGAGCCCGGCGGCCTGA	MLPPRWVRRVVLAPLVVALAVLMVPTTLMFAIVVGGVLTWVVPGGLRALRLLWMAAFYVVWDATALLAMFGLWLAAGCGLFTDRPWYRRAHVRLARGMLALFFWQVRWTLRLRIQLDLPSPGTLPDAPVVVLSRHAGPGDSFIIVDRLLGLSGRAPAIVLKDTMQWDPAIDVLLNRLPSAFVTPASRRPAGRPGARETVHRIAAGLTVDDALVLFPEGGNITPRRRAERIEALRRAGHETLARQAEEMTEVMAPHVGGFDAAMEGSPDAAVLVVAHTGLERLVTVRDVWRELPMDKTITMRAWLHPAGAVPTAQDARRTWLFDQWRTIDDWVVRRSPAA				NA	NA	NA	NA	NA
AK001_03366	831			hypothetical protein	ATGGCGGACGTGACGACAGCGTTCGTGATGGGTGGAGGGGGCGTCCGCGGTGCCGTGCAGGTCGGGATGCTGCAGGCCCTCTTCGAGGCAGACGTCCACCCGGACCTGATCGTCGGGACGTCCGTCGGGGCCATCAACGGCGCGGCGGTCGCCGCCGACCCGACCCTCTCCGTCGTCGACCGGCTGCTGGAGGCCTGGGCGTCCCCGACGGCGGCGGCCGTCTACGCCGAGCCCTGGTACCGGCAGGTCCGCCACCTGGCGCGCTCGCGGGTCCACGTGTACGACCCGGCGAAGCTGCGCGCGCTCGTCGAGGAGGCCGTGGGGGAGCACCACACCTTCGCGGACCTCGAGGTGCCGTTGGTCGTGGCCGCGGCCAGCATCGAGCGGGCGTCGGAGCACTGGTTCGACTCCGGGCCGCTGGTCGACGCCGTGCTGGCCTCGGCGTCCGTGCCGGGGGCGATGCCGCCCACGGTCGTGGACGGCGAGCACTTCGTCGACGGTGGCCTGGTGAACTCCATCCCCCTGGGGGAGGCGGTCCGTCGCGGAGCCACCACCGTCTACGTGCTGCAGGTGGGACGGATCGAGGAACCGCTGACCGCCCCGCGCAGCCCCTCCGACGTGGCGAAGGTCGCCTTCGAGATCTCCCGGCGGCACCGGTTCCACCGCGAGCTCGCCGACGTGCCCGCGGACGTCACCGTGCACGTGCTGCCCTCGGGCGGATCGCTGCCCGGCGACGAGAAGGTCCGGGCCTACAAGCGGCTGGACGTCACCCGGCACCGGATCGAGCGGTCCTACGACCGGACCCGGACCTACCTCGCCGGCGAGGCGTGA	MADVTTAFVMGGGGVRGAVQVGMLQALFEADVHPDLIVGTSVGAINGAAVAADPTLSVVDRLLEAWASPTAAAVYAEPWYRQVRHLARSRVHVYDPAKLRALVEEAVGEHHTFADLEVPLVVAAASIERASEHWFDSGPLVDAVLASASVPGAMPPTVVDGEHFVDGGLVNSIPLGEAVRRGATTVYVLQVGRIEEPLTAPRSPSDVAKVAFEISRRHRFHRELADVPADVTVHVLPSGGSLPGDEKVRAYKRLDVTRHRIERSYDRTRTYLAGEA				NA	NA	NA	NA	NA
AK001_03367	3534	rocA		1-pyrroline-5-carboxylate dehydrogenase	ATGAGCACCCATGCCACCGACCGCGGCACCGGCGACCCCGGGACCCGCCGCGACGCGACCGTGAGCCCCGCGGACCTGGTCGAGGACGCCGTCGCCCTCGCCCACTCCTGGATCGAGGCGGCCGGGCGGTCCGACGGCGTCGCCACCCGCTCCGACCGTCGCACCCGCGCCACCGCCGAGCGGCTCGGCGCGCTGGTCGCCGACCCGGCCGGCCTCGACCTCGCCGTCGGCTTCGTCGACGACGTCGCCCGGCCCCAGGACGTCCACGTCGCCGCCAAGGCGCTCGCCGGCCTCGGCCGCGACGCCGGCGCCGCCTCGTTCCTCTCGCCCGTCGACCGGACCCTGTTCCGCGTCGGCGCCGCCGTGGCGCCCGTGCTGCCCTCCGTCGTCGTGCCGGCCGCCCGGGTGCGGCTGCGTCAGCTCGTCGGCCACCTCGTCGCCGACGCCGGGCGCGGCCTGGGCAAGCACCTCGCCCGCACCCGCGCCGAGGGCTACACCCTCAACGTGAACCTGCTGGGCGAGGCCGTCCTCGGCGACGAGGAGGCGGCCGCGCGGCTCGAGCGCACCGTCGCGCTGGTGGAGCGCCCCGACGTGGACTACGTCTCGGTCAAGGTCTCCTCCGTGGCCGCCCAGCTGGTCACCTGGGACCTGGAGGGTTCCCGCGACCGCGTGGTCGAGCACCTCCTGCCGCTGTACCGCGCCGCGCGCGACCACGGCGTGTTCGTCAACCTCGACATGGAGGAGTACAAGGACCTCGCGCTGACCACCGCCGTCTTCCGCGACGTCCTCGAGCACCCCGAGCTGCGCGACCTGTCCGCGGGCATCGTGCTGCAGGCCTACCTCCCCGACGCGCTCGGTGCCCTCGACGAGCTCACCGCCTGGGCGCAGCAGCGGGTCGCCGACGGCGGAGCGCCGGTCAAGGTGCGCCTCGTCAAGGGCGCCAACCTCGCCATGGAGCACGTCGAGGCCGAGCTGCACGACTGGGCGCCCGCCCCCTACGGCACCAAGGCCGAGGTCGACGCCAACTACGTGCGCATCCTCGACCGTCACCTGACCCCCGCGCGCACGGCCGCCGTCCGCCTCGGCGTCGCCTCGCACAACCTGTTCGACGTGGCGCTCGCGATCCTGCTCGGCCGGGCGCGCGACGTCAGCGCCGGCCTCGACATCGAGATGCTGCAGGGCATGGCCCCGATCGAGGCCCGGCTCGTGCGCGCGGAGGTCTCCCGTGATGGCGGCGAGGTGGTCCTCTACACCCCGGCCGTGCGCGACGAGGACTTCGACGTCGCGATCTCCTACCTCGTGCGCCGCCTCGAGGAGAACTCCGCCGAGCAGAACTTCGTGCACGCCGCCTTCGCCCCGGCGTCGTCCGAGCCTGGCGTGCGCGGCACCCCGATGGAGCGCCAGGAGGTCGCGTTCCGCGCCTCCGTCACCGACGGCCTGCGCGACGACCCGGACGCCGTCGTCCCGCGACGCGTCTCCCGGTTCGACGTCCCTGCGTCCCGCCCGGCGGCGACCGCGCACGACGCCGCCCGGCCCGGGTCGCCGACCGGGTTCCACAACGCCACGGACACCGACCCGGCCGTCGCCGCGCACCGCGAGTGGGCCGCCCGCCTCGTCGGGCCCGACAGCGGGTTCGTGCCCGTGCAGACCCCCGAGACCACCGACACCGGGCAGATCGACGCCGTCGTCGCCCGCGCCGTCGAGGTCCGCGAGCAGTGGGCCGCCGTCCCGGCCGCCGGTCGTGCCCGGGTCCTGCGCGAGGCCGCCCGGCAGCTCGAGCTGCGCCGCGGCGACCTCGTCGCCGCCGCCGTGCACGAGCCCGGCAAGACCGTCGCCGAGACCGACCCCGAGGTCACCGAGGCCATCGACTTCGCCGCCTACTACGCGGCGGCCGCCGAGGCGCTCGACACCGTCGACGGCGCCGACTTCGCCCCCGAGGGCGTCACCCTCGTCACCCCGCCGTGGAACTTCCCGGTGGCCATCCCGATCGGCGGCGTGCTCGCGGCGCTCGCGGCCGGCTCGACCGTGCTCGCCAAGCCGGCACCGCCCACACCCCGCTGCTACGAGCTCGCGGTCGAGGCCGTGCAGGCCGCCCTCGAGGCGGTCGCCCCGGAGATCGGGCTGCCCGTCGACGTCGCCCGCGACGCCGTGCAGCTGCTGCGCGTGCCCGACGGCGAGGCCGGCAAGCACCTGGTCACTCATCCGGCCGTGTCCCGCGTGGTGCTGACCGGCGCGCTGGAGACCGCCCAGATGTTCTCCCGGTGGAACCCGGAGCGTCCCGTCCTCGCCGAGACCTCGGGCAAGAACGCCCTGGTCGTCACGCCATCGGCCGACCTCGACCTCGCGGTGGCCGACGTGGTGCGCAGCGCCTTCGGTCACGCCGGGCAGAAGTGCTCGGCGTCGTCGCTGGTGATCCTCGTCGGCTCGGTCGGCGACGAGACCACCGTGACGGGCGAGCGGTTCCGCCGCCAGCTCGTCGACGCCGTCCGCTCCCTCGCCGTCGGCCCCGCCACGTCGCTGTCGACGGTCATGGGTCCGCTGACCGAACCGGCCACCGGCAAGCTGCACCGGGCGCTGACCTCGCTGGAGCCGGGGGAGAGCTGGCTCGTGGAGCCCCGGCGCCTGGACGACGTGGCGGACGCCGCGGGGATCGACCCGGACCGGCTGTGGTCGCCCGGGCTGCGCGACGGCGTGGCACCCGGGTCGTTCTTCCACCTCACCGAGGTCTTCGGCCCGGTGCTCGGCATCCTGCGCGCCGCCACGCTGGAGGAGGCGATCGAGCTGCAGAACGCCGTCTCCTACGGCCTGACCGGCGGGATCCACTCCCTCGACGCCGACGAGATCGCGACGTGGCTCGACCGCGTCGAGGTCGGCAACGCCTACGTCAACCGGCACATCACCGGTGCCATCGTGCAGCGGCAGTCGTTCGGCGGTTGGAAGGGCTCGGTCGTCGGTCCCGGCGCCAAGGCGGGCGGACCGAACTACGTGGCCCAGCTCGGCCGCTGGAGCGACGGCGCCGACGTGCCGTCGCGCACCGCCGACCCCGAGGGCTGGCTCGCGTGGGCCGAGGACTCCGACGCCGTCGCGTGGGACACCGAGTTCGGCGTCGTGCACGACCCGACCGGCCTGGCCGTCGAGGAGAACAGCTTCCGCTACCGGCCCGTGCCCGAGGTGACGGTCCGCGTCGGTGACGGCGCCCTGCCCATCGAGGTGCGCCGCGTGCTGGCCGGTGCCCGTCGGGCCGGGGTCCGCGCCGTCGTCGTGCCCGAGTCCGACGCCGGCTGGGGTGTGCCGCACGAGGCCCCGATGTCGCACGAGGACTTCGCCGACGCCGTCACCGAGGGCCGGATCACCGGGCGGATCCGCGTGATCGGTCAGGCACCCGGACTGCGTGCCGCCGCGGTCGAGCGCGTCGGCGAGACGACCGTGCTCGACCAGCCCGTGGTGGCGGCGGGACGCCGGGAGCTGCTGCCGTTCCTGCGCGAGCAGGCCGTCAGCCGGACGAAGCACCGGTACGGGCACCTGCGCGCCTGA	MSTHATDRGTGDPGTRRDATVSPADLVEDAVALAHSWIEAAGRSDGVATRSDRRTRATAERLGALVADPAGLDLAVGFVDDVARPQDVHVAAKALAGLGRDAGAASFLSPVDRTLFRVGAAVAPVLPSVVVPAARVRLRQLVGHLVADAGRGLGKHLARTRAEGYTLNVNLLGEAVLGDEEAAARLERTVALVERPDVDYVSVKVSSVAAQLVTWDLEGSRDRVVEHLLPLYRAARDHGVFVNLDMEEYKDLALTTAVFRDVLEHPELRDLSAGIVLQAYLPDALGALDELTAWAQQRVADGGAPVKVRLVKGANLAMEHVEAELHDWAPAPYGTKAEVDANYVRILDRHLTPARTAAVRLGVASHNLFDVALAILLGRARDVSAGLDIEMLQGMAPIEARLVRAEVSRDGGEVVLYTPAVRDEDFDVAISYLVRRLEENSAEQNFVHAAFAPASSEPGVRGTPMERQEVAFRASVTDGLRDDPDAVVPRRVSRFDVPASRPAATAHDAARPGSPTGFHNATDTDPAVAAHREWAARLVGPDSGFVPVQTPETTDTGQIDAVVARAVEVREQWAAVPAAGRARVLREAARQLELRRGDLVAAAVHEPGKTVAETDPEVTEAIDFAAYYAAAAEALDTVDGADFAPEGVTLVTPPWNFPVAIPIGGVLAALAAGSTVLAKPAPPTPRCYELAVEAVQAALEAVAPEIGLPVDVARDAVQLLRVPDGEAGKHLVTHPAVSRVVLTGALETAQMFSRWNPERPVLAETSGKNALVVTPSADLDLAVADVVRSAFGHAGQKCSASSLVILVGSVGDETTVTGERFRRQLVDAVRSLAVGPATSLSTVMGPLTEPATGKLHRALTSLEPGESWLVEPRRLDDVADAAGIDPDRLWSPGLRDGVAPGSFFHLTEVFGPVLGILRAATLEEAIELQNAVSYGLTGGIHSLDADEIATWLDRVEVGNAYVNRHITGAIVQRQSFGGWKGSVVGPGAKAGGPNYVAQLGRWSDGADVPSRTADPEGWLAWAEDSDAVAWDTEFGVVHDPTGLAVEENSFRYRPVPEVTVRVGDGALPIEVRRVLAGARRAGVRAVVVPESDAGWGVPHEAPMSHEDFADAVTEGRITGRIRVIGQAPGLRAAAVERVGETTVLDQPVVAAGRRELLPFLREQAVSRTKHRYGHLRA	PGPT0020210_1428	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821	NA	NA
AK001_03368	1278	gdhA	COG0334	Glutamate dehydrogenase	GTGACGACGATGTCGACCCGCCCGGCCCCGGCGGGCGAGGCCTCGGCCCTGGAGACGGCGCAGTCCCAGCTCGCGACCGCCGTCGCGCACCTGGGCTACGACGACGGCCTGCACCAGATGCTGGCCACCCCGCGCCGCGAGATCCAGGTCGCGGTCCCGCTGCACCGCGACGACGGGTCCCGGGTGCTCTTCCAGGGCTATCGGGTCCAGCACAACGTCTCGCGGGGTCCCGGCAAGGGCGGGCTGCGGTTCCACCCCAGCGTGCACGTCGACGAGGTGCGGGCGCTGGCGATGTGGATGACCTGGAAGTGCGGCATCGTCGACCTGCCGTTCGGGGGCGCGAAGGGCGGCGTCGGCATCGACCCCGCCGACTACACCCCGGGCGAGCTGGAGCGGGTGACGCGTCGGTACACCTCCGAGATCATGCCGCTGATCGGCCCGGACACCGACATCATGGCGCCCGACATGGGCACCGACGACCGCACGATGGCGTGGGTCATGGACACCTACTCGGTCAACCGCGGCTACACGATCCCGGCGGTGGTCACGGGCAAGCCGCTCGCCGTGGGCGGGTCGCTGGGCCGTGGCACGGCCACGAGCGCCGGCATCGTGCACGTCACCGCGGCCGCGCTCAAGGAGGCGGACGCGCAGATGAGCGACGTGTCCGTCGCGATCCAGGGCTTCGGCAAGGTCGGCGGCAACGCGGCGCGGATCTTCGCCGAGCGCGGTGCGCGGGTGGTCGCCGTCAGCGACCGGTACGGCGGCGTCCGGGCGGACGACGGGCTGGACCTGGACCGGCTGGCCGACCACGTGGCCGAGACGGGCAGCGTGGCGGGGTTCGCCGACGCCGACCCGATCTCCAACGCCGAGCTGATCGCCCTGGACGTGGACGTGCTGGTACCCGCCGCGGTCGAGGGCGTGCTCACCGCCGAGTCCTCACGCACGGTGCGGGCACGGTGGGTGGTCGAGGGTGCGAACGGGCCGACCACCACCGCCGGCGACGCCGTCCTGGCCGAGCGCGGGATCACGGTGGTGCCCGACGTGCTGGCCAACGCCGGCGGCGTCGTCGTCTCCTACTTCGAGTGGGTGCAGGCGAACCAGACCTACTGGTGGTCGGCGCAGGAGATCGCCGAGAAGCTCGCGCGGCGCATGGCCTCGGCCTACGCGGACGTGTCCGGGCTGGCCCGGCGGGACGGCGTCTCGCTCCGTGACGCCGCCACGATCATCGGCGTCCGGCGGACCGCCGAGGCGCACGAGATCCGCGGGCTCTACCCCTGA	MTTMSTRPAPAGEASALETAQSQLATAVAHLGYDDGLHQMLATPRREIQVAVPLHRDDGSRVLFQGYRVQHNVSRGPGKGGLRFHPSVHVDEVRALAMWMTWKCGIVDLPFGGAKGGVGIDPADYTPGELERVTRRYTSEIMPLIGPDTDIMAPDMGTDDRTMAWVMDTYSVNRGYTIPAVVTGKPLAVGGSLGRGTATSAGIVHVTAAALKEADAQMSDVSVAIQGFGKVGGNAARIFAERGARVVAVSDRYGGVRADDGLDLDRLADHVAETGSVAGFADADPISNAELIALDVDVLVPAAVEGVLTAESSRTVRARWVVEGANGPTTTAGDAVLAERGITVVPDVLANAGGVVVSYFEWVQANQTYWWSAQEIAEKLARRMASAYADVSGLARRDGVSLRDAATIIGVRRTAEAHEIRGLYP	PGPT0000695_1160	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000695-gdhA-K00261	NA	NA
AK001_03369	669	prmC_3	COG2890	Release factor glutamine methyltransferase	GTGGCGCGGCGCACGGCCGGCGAGCCGCTGGAGCACGTGCTCGGGCGGGTCGAGCTGGCCGGGCGGTCGTGGGCGGTGGGCCCCGGGGTGTTCGTGCCGCGGCGTCGCAGCGAGGCGCTGGTGCACCTCGCGCTGGACCGTGCCGCGCCACGGCCCGACGCGACCGTCGTCGACCTGTGCTGCGGCTGCGGCGTCGTCGGCGGGGCGGTGCTGGCGGGCCGGTCGGCGGCCGGGACGTCGGCGACGCTGCACGCCGTGGACGTCGACCCGGTGGCGGCCGCGTACGCGCGCCGCAACCTGGAGCCGCTGGGCGGGGTCGCCCTGGTCGGCGACCTGTTCGCCCCGCTCCCGCACGACCTGCACGGCCGGGTCGACCTGCTGCTGTGCCACGCGCCCTACGTCCCGACGGACGCGGTCGCCACGATGCCGCCGGAGGCCCGCGAGCACGAGCCGCGACGCGCGCTCGACGGCGGCGACGACGGCCTCGACGTGCTGCGCCGGGTGCTCGCGGACGCTCCGGCGTGGCTGGCTCCGGACGGTGCGCTGCTGTTCGAGATCGCCGAGCACCAGTGGGCCGGGGCGCGCCGTGCGGTCGAGCAGGCCGGCCTCGCCGCCCGGAGGGTCCGGGACGAGGCCCTCGACGCGACGGTCGTGGTGACGAGCCGCTAG	MARRTAGEPLEHVLGRVELAGRSWAVGPGVFVPRRRSEALVHLALDRAAPRPDATVVDLCCGCGVVGGAVLAGRSAAGTSATLHAVDVDPVAAAYARRNLEPLGGVALVGDLFAPLPHDLHGRVDLLLCHAPYVPTDAVATMPPEAREHEPRRALDGGDDGLDVLRRVLADAPAWLAPDGALLFEIAEHQWAGARRAVEQAGLAARRVRDEALDATVVVTSR				NA	NA	NA	NA	NA
AK001_03370	828			hypothetical protein	ATGACGACCTACGACACGACACCCCAGCAGGCCACCGCCCGCGACCGCGTCCGGCAGGTCGTGGTCGCCGTCGGCGCCGTCCTGGCGATCCTCGGTGCCGCCGTCGGCTCCGGGGCGTTCGGCGGCCAGCCGATCCAGGACGCCGCCGGCGGCGCCCTGTCCGCCGAGGCGACCGTCGTGGCCCCCGACAACCCGGCGTTCTCCATCTGGTCGGTCATCTACACGGGCCTCGTCCTCTTCGCCGTCGTGCAGGCGCTGCCCGGGCGCGGGGCCGACGCCCGGCTGCGGTCCGTGTCCTGGTGGATCCTCGCCTCGATGCTCCTCAACGCCGCGTGGATCGGCGTCGTGCAGGCCGGCTGGCTGTGGGCCAGCGTCGCCGTGATCGCCCTCCTCGTCGCCGTGCTGTCCCTCGTGCTCGTCCGCCTGGTCCGCACCCCCGCGCCGAACGTGCTCGACGCCGTCGTCACCGACGTCACGGTCGGCCTCTACCTGGGCTGGGCGTCCGTGGCGACGCTCGCCAACACCACCGCCGCCCTCACCGCCGCCGACGTCGGCGAGCTGGGCCTGGGTGCCAGCGGGTGGGGCGCGGTCCTGGCCGCCGTCGCCGCCGTGCTCGCCCTGGCCATGGCGAGGTACGGCGCTGCCCGCCCCGCCGTCGTGGTCCCGGTCGGTCTGGCCATGGGCTGGGGTCTCGCCTGGATCGCGGTCGGCCGCACCGAGGGCCCGCTGACGGACTCCGTCGTGGCGGTCGCCGCCGGGGTCGCCGCCGCCGTGGCCGCCGTCGGCCCGGTCGTGATCAGCCTGCTGCGGCGCCGGACCCGGTCCTAG	MTTYDTTPQQATARDRVRQVVVAVGAVLAILGAAVGSGAFGGQPIQDAAGGALSAEATVVAPDNPAFSIWSVIYTGLVLFAVVQALPGRGADARLRSVSWWILASMLLNAAWIGVVQAGWLWASVAVIALLVAVLSLVLVRLVRTPAPNVLDAVVTDVTVGLYLGWASVATLANTTAALTAADVGELGLGASGWGAVLAAVAAVLALAMARYGAARPAVVVPVGLAMGWGLAWIAVGRTEGPLTDSVVAVAAGVAAAVAAVGPVVISLLRRRTRS	PGPT0014330_13	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014330-ytaB-K05770	NA	NA
AK001_03371	768		COG3253	putative protein/MSMEI_2713	GTGAGCGACCAGCACATCCACGCCGACACGGGCGAGGCCGTCGACACCGCCGCGATCAACTCCTCGATCCGCTACGCGATGATCTCGGTGTTCTCGCTGTCCGGCGAGGTCCCCGCCGACGCCGACGCGCGGTCGGCGCTCGCCGCCGAGGCCGCGGACGCCCTGTGGGACGGCGCTGCCGACGCGGACCGCGACCCGGCCCGCCCCGACGGTGACGTGGTGGTGCGCGGCGTGTACGACGTCGCCGGTCTGCGCGCCGACGCCGACCTCATGGTCTGGGTGCACGGCCCCTCGGTGGAGGCGGTGCAGGGCGCCTACCAGCGGCTGCGGGCCTCGCGGCTCGGCCGGGTCCTGACCCCGGTGTGGTCGGTCGTGGCCCTGCACCGGGCGGCGGAGTTCAACAAGGGGCACGTGCCGGCCTTCCTCGCCGGCGAGGCGCCGCGCGACTACCTGTGCGTGTACCCGTTCGTGCGGTCCTACGAGTGGTACCTGCTGCCCGACGACGAGCGCCGCACCATGCTGCGCGACCACGGCATCGCGGCCGCCGGGTACAAGGACGTGCGGGCCAACACGATGAGCACGTTCGCGCTGAGCGACTACGAGTGGCTGCTGCCGTTCGAGGCGGACGCGCTCGACCGCATCGTCGACCTGATGCGGGACCTGCGGGCGACCGAGGCGCGGCTCCACGTGCGCGAGGAGGTGCCGTTCTTCACCGGCCCGCGCGTGGAGCTGGCCGCGTGGGTGGAGCGCCTGCCGCGCTCGGTGTGA	MSDQHIHADTGEAVDTAAINSSIRYAMISVFSLSGEVPADADARSALAAEAADALWDGAADADRDPARPDGDVVVRGVYDVAGLRADADLMVWVHGPSVEAVQGAYQRLRASRLGRVLTPVWSVVALHRAAEFNKGHVPAFLAGEAPRDYLCVYPFVRSYEWYLLPDDERRTMLRDHGIAAAGYKDVRANTMSTFALSDYEWLLPFEADALDRIVDLMRDLRATEARLHVREEVPFFTGPRVELAAWVERLPRSV	PGPT0008490_103	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	OTHER_BIOTIC_STRESS_RESISTANCE_GENES	BIOTIC_STRESS_RESISTANCE-BACILYSIN_METABOLISM,PGPT0008490-hemQ-K00435	NA	NA
AK001_03372	1149	hemH	COG0276	Ferrochelatase	ATGTCGACGACCCACCGGCCGACCTCTGACGTCACCCCGTACGACGCGCTGCTGCTCTTCTCCTTCGGCGGTCCGAACAAGCCGGAGGACGTGGTCCCGTTCCTCCGCAACGTGACCGCCGGCAAGGGCATCCCCGACTCCCGCCTCGAGGAGGTCGGCGAGCACTACTACGCGTTCGGCGGCAAGAGCCCGATCAACGGCCAGAACCTCGCCCTCAAGGCCGCGATCGAGGCCGAGCTCGCCGAGCGCGGCATCGAGCTGCCGGTCGTGTGGGGCAACCGCAACTGGGAGCCGTACACCGACGACGCCGTCACCGAGCTCGAGAACCTGGGGGCCGAGCGCGCCGTCGCGCTCGTGACCTCCGCCTACTCCAGCTACTCCGGCTGCCGCCAGTACCGCGAGGACCTGGCCGTGACGCTGCAGGAGCGCGGCCAGCTCGACGAGCACGGCTCGACGGGCGTCCAGTTCGACAAGGTGCGTTCGTACTTCAACCACCCGGGGTTCGTCCAGGCCAACGTCGAGGCGGTGCTCGACGGCTACGCCGCGCTGGAGGAGAAGGGCGGGTCGCCCGCGGACGCGACGCTGGTGTTCGTCACGCACTCCATCCCCGACACGATGGAGGCCGCCTCGCGCATCTCGCAGGCCACCTACTCCGCCCAGCACCTCGACGTCGCGGCGGTCATCGCCGAGCGGGTCGCCGAGGCGCGCGGGCACGAGGTGCCGTGGGAGCTGTCGTACTGCTCGCGCTCCGGCCCGCCGACCCAGCCCTGGCTGGAGCCCGACGTCAACGACCTGCTCACGGAGCGGGCCGGCGAGGGGCTGCGGAACGTCGTCATGGCGCCGATCGGCTTCATCTCCGACCACATGGAGGTCGCCTACGACCTCGACACCGAGGCCATGGAGACCGCGACCCAGCTCGGGATGATGGCGGTGCGTGCCGGGACCGTGGGCACCCGGCCCGCCTTCGTGGCCGGGCTGGTGGACCTGCTGCTGGAGCGGGCGGCCATCGCCCGCGGCGAGGACGTCGACCAGGCGACCGTCGGGACCCTGCCCCCGTTCCGGTCCGTGTGCGAGGTCGACTGCTGCCTGCGTCGAGACGGCGAGCCGAGCGGCGTCCCGGCGCTGTGCTCCCGCGACGTCACCCGCTGA	MSTTHRPTSDVTPYDALLLFSFGGPNKPEDVVPFLRNVTAGKGIPDSRLEEVGEHYYAFGGKSPINGQNLALKAAIEAELAERGIELPVVWGNRNWEPYTDDAVTELENLGAERAVALVTSAYSSYSGCRQYREDLAVTLQERGQLDEHGSTGVQFDKVRSYFNHPGFVQANVEAVLDGYAALEEKGGSPADATLVFVTHSIPDTMEAASRISQATYSAQHLDVAAVIAERVAEARGHEVPWELSYCSRSGPPTQPWLEPDVNDLLTERAGEGLRNVVMAPIGFISDHMEVAYDLDTEAMETATQLGMMAVRAGTVGTRPAFVAGLVDLLLERAAIARGEDVDQATVGTLPPFRSVCEVDCCLRRDGEPSGVPALCSRDVTR	PGPT0008485_965	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008485-hemH|ywfI-K01772	NA	NA
AK001_03373	1953			hypothetical protein	GTGACGAGCACGCGCACCGCTCCCGCACCGGGCCGGACGGCGCGGCCCCGCCCGCCCGCCGAGGTCGGCCAGGTGCGCACGACGGCGCAGGCCGAGGAGCTCGCCGCCCGCCTGCAGCACCCCGACCGCGCCTGGCCCGTCGTGGTCGTCTCCACGCCGCGCGACCGCGGCCGTCCGTACGTCGACCCGCACCGCGTGCTGGACGACGTGCGCGGCCTGGCCGAGGTCGTCGTGATCCACACCGGCGACCCGTCGTGGGCCTTCTCCCACGGGATGCCGGACGCCACCCAGGTCTACGGCGGCGCCTCGCGGGTCTATCCCGTCGGCGTCGGGTGGGTGCACGACGTCGCCCGGTCGCCGCTGTGGATCGCCTACGACGACGCCGAGGGCACGCGGGTGCACGACCGGCTCGTGCAGGACGCCCTGGCCGCCGCCACCCGCGCAGGGCTGGTCGGCCTGGACCTGCTGCCCCCGACGCCGGCCACGACGACGGGCACGGTGCTGGGCCTGGTGGGCACCCGGGCGCTGGTGCAGACCGCCGACGGCACGACGGCGCAGGTCGCCCAGGAGCTGACGCTGCCGATCGTGCCGATCGACCGCCTCCTGGCCCCGGGGATGCGCGTCCGCGGCGTGCTGGACGTCGACACGCGCCGCCTGGACGTCCGGGACATGCTGCCCGACGCCCTCGAGCAGACGTCCCGGGTGCTGTCGGGCTACCCGGCAGGGGCGGTCGTGCCGGCCCAGGTGCACCGCGTGGACGCCGACGAGGTCACGGTCGCCCTCGCCCCGGCGGTCACCGTGCGCGTGCGGCGCGAGCACGCGAGCCGGGGCGACGACGACCTGCGCGACCTGTTCACCGTGGGCGAGGTGGTCGCGGCCCGGATGCAGGCCGCCCGCCCGGTCCCGGGCCCCGAGGGCGGCCACCGGCACCCGTCCCTGCGGCTCGACGACGTGGACGACGCCGGCGGCGTGCGGCCCGCGATCAGCCTGCTCGACGGCGGCCCACCCTGGCTCCCGGCCCCCGCCGTCGTCCCCGACGACGAGCTCTCGGCCGACTCGGCGCCGTCGGGCCCGGCACCCACCCCGGCCCTGCTCGACCGGCACCATCCGTCGTCCGCCCCCACGCCCGCCCCGCAGCGGCCGGCACCGGCGCAGAGGACGAGGCCGGGCCCCAAGCCGGGCCCCGGACCGTGCCGGGCGGTGCCGCCCCCGGGGCGAGCCCCGGCCCCGGCGCCCGAGGCGTCGGACCCGCCGGACGCCGCGCCGGACCCGTCGCCGGACCGCAAGACGCTGGTCAACCAGCTCGAGCTGTCCGTCCACGAGCAGCGTGCCCGGGCGGACCTCGCCGAACGGGAGTCGATCGAGCTGCGCGCCTCCGTCAAGGCCCTGGAGGTGGAGGTGGCCGGGCTGCGCGACCTGGCCCGCGAGCAGCGCGACCACCTGGACCGGCTCTACCGGGACGTCGAGCGGTACAAGGCCAGGATCCGGTCGGCGCGCAAGCAGCGTGGCGCCGACCCGGCCCCGGCACCGACCTCCGACCGGCTGTTCGCGGACCCGGTCGACCAGCTCCGCCACGACGTCTACTGCACGTGGGCCCAGGTGGTCGGCGCCACCGAGAAGACCGACTACCCACTGCCCGACTTCGCGGTGGGCCCGCAGTTCTGCGACTCGCTGGCCACGACCGGCCGCGGCCTCGAGGAGAGGGTGCACCGCGCGATCGTCATGGTGCTCACCGGCCGGGCCCAGGACATCGCCGGCTACGAGCTGCACCGCCTGCGCCAGGGCGACGGCGGCGGCGACCCGTACCGGGTGCGCGAGTCGGACGGCGCCCAGGCCATGCGCCTGTCGCTGCAGGTCAGCGCGCCGCAGGCGCGACGGCTGCACTACTGGGTGCTGCCCGGGGGCGGCGTCGAGCTGTCCCGCGTCGTGCTGCACGACGACGTCGAGCCGTGA	MTSTRTAPAPGRTARPRPPAEVGQVRTTAQAEELAARLQHPDRAWPVVVVSTPRDRGRPYVDPHRVLDDVRGLAEVVVIHTGDPSWAFSHGMPDATQVYGGASRVYPVGVGWVHDVARSPLWIAYDDAEGTRVHDRLVQDALAAATRAGLVGLDLLPPTPATTTGTVLGLVGTRALVQTADGTTAQVAQELTLPIVPIDRLLAPGMRVRGVLDVDTRRLDVRDMLPDALEQTSRVLSGYPAGAVVPAQVHRVDADEVTVALAPAVTVRVRREHASRGDDDLRDLFTVGEVVAARMQAARPVPGPEGGHRHPSLRLDDVDDAGGVRPAISLLDGGPPWLPAPAVVPDDELSADSAPSGPAPTPALLDRHHPSSAPTPAPQRPAPAQRTRPGPKPGPGPCRAVPPPGRAPAPAPEASDPPDAAPDPSPDRKTLVNQLELSVHEQRARADLAERESIELRASVKALEVEVAGLRDLAREQRDHLDRLYRDVERYKARIRSARKQRGADPAPAPTSDRLFADPVDQLRHDVYCTWAQVVGATEKTDYPLPDFAVGPQFCDSLATTGRGLEERVHRAIVMVLTGRAQDIAGYELHRLRQGDGGGDPYRVRESDGAQAMRLSLQVSAPQARRLHYWVLPGGGVELSRVVLHDDVEP				NA	NA	NA	NA	NA
AK001_03374	426			18 kDa heat shock protein	ATGGCTACGTACTGGGACCCGTTCCAGGAGATGGACCGACTCTTCGGTTCGATCCCCCTCACCACGCGGAACGCCTCGGCGATGCCGATGGACCTGTTCCGCGAGGACGACCACTTCGTCCTGGCCGCCGACCTGCCCGGGATCGACCCCGGGAGCATCGACGTCTCGGTCGAGGATCGCACCCTGACCGTCCGGGCCGAGCGGACCGCACGCTCCGCCGAGGGTCAGTGGCTGCTGCGCGAGCGCCCGGCGGGCACCGTCGCACGGCAGATCACCCTCGGGCGCGGGCTGGCGCTCGACCACATCACGGCGGCCTACGCCGACGGCGTGCTCACGCTGACGATCCCCGTGGCCGAGGAGGCCAAGCCGCGCCGGATCGAGGTGGAGCACAGCTCGCACCCCCACACGATCGAGGCCGGCGGCTGA	MATYWDPFQEMDRLFGSIPLTTRNASAMPMDLFREDDHFVLAADLPGIDPGSIDVSVEDRTLTVRAERTARSAEGQWLLRERPAGTVARQITLGRGLALDHITAAYADGVLTLTIPVAEEAKPRRIEVEHSSHPHTIEAGG	PGPT0014635_6895	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993	NA	NA
AK001_03375	1194	garK	COG1929	Glycerate 2-kinase	GTGACATCGACGCCGACCGCCGCCCCGCCCCCGACCGCCGAGCCGCCGCACGTCGTCCTCGTCCCCGACTCGTTCAAGGGCAGCCTGGACGCCACCGAGGTCGCCGCCGCCCTGCGGGAGGGCGTCCTGGCGGCCGCACCGGACGCCCGCGTCACGTCGCTGGCGATGGCCGACGGCGGGGAGGGCACGCTGGACGCCCTCGTCGCGTCCTGGCAGTCGGCCGTGCACACCGTCGAGACCGTCGACGCCATCGGCCGTCCGACCACCGCCCGCTGGACCGTGTCGCCCGACGGCGGCGTCGGGGTCGTCGAGCTGGCGGAGGCCAGCGGCCTGCCGGGCGTGAGCGACGAGCCGTTGCAGCCCCTGCACGCGGGCACGCGCGGGACCGGTGACGTCGCCTCGGCCGTCCTGGACGCCGGGGTGAGCGAGGTGCTCGTCTGCCTCGGCGGATCGGCCTCGACGGACGGCGGTGCGGGCATCCTCTCCGGGCTCGGCGCCCGGATGCTCGACGCCGACGGCCAGGTGGTCCCCGACGGCGGCGAGGGCTTGGCCCGCGTCACCTCCGTCGACCTGTCCGGGTTGCACCCCCGAGCGCGCGAGGTGCGCTGGCGCCTGGCCGTGGACGTCACCAACCCCTTGCTCGGCGAGCTCGGTGCGGCGGCGGTCTTCTCCCCGCAGAAGGGCGCCGGTCCGGGAGAGGTCGCGTTCCTCGACGAGGCGCTGACCCGGTGGGCCAACCTGCTCGAGCGCGAGACCAGCGTCCGCGTGCACGAGCTGCCCGGCGCCGGGGCCGCCGGGGGAGTGCCCGCCGGTCTCGCCGCCGTCCTCGGCGCCGAGCTGGAGCCGGGGGCGCTGCTCGTGGCCGAGGCGGTCGGGCTGCCCGCCGTGCTCGCGGACGCCGCCCTCGTCCTCACCGGCGAGGGCTCGTTCGACTCCCAGTCCGTGCGCGGCAAGGTGGCCGACGGCGTGGCGCGCCTGGCCGCCGCGTCCCCGGCCCGGCCGCCCGTGGTCGTCGTGGCCGGGCAGGTGCTGCTGCCGGTGGAGCAGACCCGTGCGGCCGGCATCACCGCGGCCTTCTCGATCGCCCCGGGACCGATCGGCCTCGACGAGCTGATCCCCCGGACGGCGACGCGTCTGGCGGAGGTCGCGGCGTCGGCGACGAACCTGCTGTTCGCGGGGCGCCGGCGGGGCTGA	MTSTPTAAPPPTAEPPHVVLVPDSFKGSLDATEVAAALREGVLAAAPDARVTSLAMADGGEGTLDALVASWQSAVHTVETVDAIGRPTTARWTVSPDGGVGVVELAEASGLPGVSDEPLQPLHAGTRGTGDVASAVLDAGVSEVLVCLGGSASTDGGAGILSGLGARMLDADGQVVPDGGEGLARVTSVDLSGLHPRAREVRWRLAVDVTNPLLGELGAAAVFSPQKGAGPGEVAFLDEALTRWANLLERETSVRVHELPGAGAAGGVPAGLAAVLGAELEPGALLVAEAVGLPAVLADAALVLTGEGSFDSQSVRGKVADGVARLAAASPARPPVVVVAGQVLLPVEQTRAAGITAAFSIAPGPIGLDELIPRTATRLAEVAASATNLLFAGRRRG	PGPT0018175_676	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865	NA	NA
AK001_03376	483			hypothetical protein	ATGACCACGCAGCCGGTTCCCGGGTCGGCGCGACGCGCCGCGACGACCTGGGAGGCGTTGTTCCGCGCCCAGGTCACGCTGATGCGCCGGTTCCAGGCCGACGACGTCTGGGTCGAGCTGTCCATCCGTGAGTACGACGTGCTGTTCACGCTGTCCCGCGCGGAAGACGGCAGGATGCGCCTGCGCGACCTCAACGAGAACGTGCTGCTGGCCCAGTCGTCGCTGTCGCGGATGGTCGAGCGGCTGGAGGGCCGGGGTCTGGTGACCCGGGCGCCGGCACCGGACGACGCCCGCGGCACGCTGGTGGGGCTGACCGACGCCGGGAGCCGGCTGCAGCGACAGGTCGGACGCCGGCACGTGCGCGCGATGGGCCAGTACGTGGGCCGTGCTCTCGACGACGACGAGCAGGCCGAGCTCGTGCGCCTGCTGACCAAGCTGCGCGCGGCCCAGGCCGGGATCCCGGACTGGACCCCGCACGATTGA	MTTQPVPGSARRAATTWEALFRAQVTLMRRFQADDVWVELSIREYDVLFTLSRAEDGRMRLRDLNENVLLAQSSLSRMVERLEGRGLVTRAPAPDDARGTLVGLTDAGSRLQRQVGRRHVRAMGQYVGRALDDDEQAELVRLLTKLRAAQAGIPDWTPHD	PGPT0013155_4520	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
AK001_03377	762		COG0020	(2Z,6E)-farnesyl diphosphate synthase	GTGCGCCTGCCCCATCCGCTGTACAGCCTGTACGAGCGTCGGCTCGCGGCGTCGCTGCCGTCCGCGCAGATGCCTCGGCACGTCGGGGTCATCCTCGACGGCAACCGCCGCTGGGCCAAGTCGTTCGGCGAGACCGCCGCCACCGGGCACCGTCGCGGCGCGGACAAGATCACCGAGTTCCTGGGCTGGGCCGAGGAGCTCGGCATCGAGGTCGTCACCCTGTGGATGCTGTCCACGGACAACCTCGCCCGCTCCGACGACGAGCTGGCCGACCTGCTCGACATCATCTCCGACGCCGTGCGCGACCTGGCCGAGTCGGGGCGGTGGCGCCTGCGGATCGTGGGCCGGCTGGACCTGCTCCCCGAGCGTCTCGTGGGCACGCTGCGCGAGGCCGCGGCCGCCACCGCCGACGTCGAGGGGCTGCACGTCAACGTCGCCGTCGGGTACGGGGGACGGCACGAGATCGCCGACGCCGTGCGGTCCTACCTGCGCGCCGAGGAGGCGCGCGGCACCACGCTGACCGAGCTGGCGGAGCGGCTCGACGTCGAGGACATCGCCGCCCACCTGTACACCAAGGGCCAGCCCGATCCCGAGCTGGTGATCCGCACCTCCGGCGAGCTGCGGGTGGGTGGGTTCCTCATGTGGCAGAGCGCGCACAGCGAGCTGTCGTTCTGCGAGGCGTACTGGCCCGACTTCCGCCGGGTGGATTTCCTGCGTGCGCTGCGCGACTTCTCGCGTCGTGAGCGCAGACTGGGTCGGTGA	MRLPHPLYSLYERRLAASLPSAQMPRHVGVILDGNRRWAKSFGETAATGHRRGADKITEFLGWAEELGIEVVTLWMLSTDNLARSDDELADLLDIISDAVRDLAESGRWRLRIVGRLDLLPERLVGTLREAAAATADVEGLHVNVAVGYGGRHEIADAVRSYLRAEEARGTTLTELAERLDVEDIAAHLYTKGQPDPELVIRTSGELRVGGFLMWQSAHSELSFCEAYWPDFRRVDFLRALRDFSRRERRLGR	PGPT0007535_608	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007535-uppS-K12503	NA	NA
AK001_03378	798			hypothetical protein	GTGACCGGAACCGCGCCGCACGAACGGCGGCACGTCGCCGTCCCCGACGCTGCCGACGTCGGCTCGGCGGCCAAGGACGCCGCCCGCGACGCCGCCCACGGCGCGCGCGAGACCGTCTCCGGCGTCGTGCAGACCGTCGCGGTGGGCGCCACCGCGCAGGCCCGACGGCTCAAGCCGAAGCTGCGCGGGTGGATCCACGCCGTGACCACGCCGCTCGCCCTGGCCGCCAGCATCGTGCTCGTCGTCCTGGCCGAACCCGTGGCCGGCAAGGTCGCGGCCGCGATCTTCGGCCTCAGCGCCCTGATGCTGTTCGGCACCAGCGCCGTGTACCACCGCGGCACCTGGTCGCCGCGGGTCGAGGCCGTGCTGCGCCGGATGGACCACGCCAACATCTTCCTCATCATCGCCGGCACCTACACCCCGCTGGCCGTCGCGCTCTTGGACCAGCGGTCGGCGACGATCCTGCTCACCATCGTGTGGAGCGGCGCCGTCGCCGGCCTCCTCGCGCGCGTGCTGTGGATGAACGCGCCGCGCTGGCTGTACGTGCCGGTCTACGTCGCCCTCGGATGGGTCGCGGTGGCCTATCTCGGCCAGTTCGGCGCCACGGGCGGACCCGCCGTCGTCTGGCTCGTCGCCGGCGGCGGCCTGGCCTACACCCTCGGCGCGGTCGTCTACGGCACCAAGTACCCCGACCCCTCGCCGCGCTGGTTCGGCTTCCACGAGATCTTCCACGTGCTGACGGTGATCGGGTTCGCCTGCCACACCGTGGCGATCTACCTGGCCTCGCTCGCCGTCTGA	MTGTAPHERRHVAVPDAADVGSAAKDAARDAAHGARETVSGVVQTVAVGATAQARRLKPKLRGWIHAVTTPLALAASIVLVVLAEPVAGKVAAAIFGLSALMLFGTSAVYHRGTWSPRVEAVLRRMDHANIFLIIAGTYTPLAVALLDQRSATILLTIVWSGAVAGLLARVLWMNAPRWLYVPVYVALGWVAVAYLGQFGATGGPAVVWLVAGGGLAYTLGAVVYGTKYPDPSPRWFGFHEIFHVLTVIGFACHTVAIYLASLAV				NA	NA	NA	NA	NA
AK001_03379	822	ybeM		Deaminated glutathione amidase	ATGACGGCGCGCGTCACGGTCGCCCAGGTCACGATCGCCGACGACCACGAGGCCAACCGGTATCTCGTCGTCGACGCGTTCGCCCAGGCCGCGAAGCTCTCGGCGGACCTGCTGGTCCTGCCGGAGTACGCCTCCGGCTACCACCGCTCGGGCGTGGGGATCGAGCACGCCGAGGACCTCGACGGCCCGTTCGTGAGCCTGCTGCGCGAGCAGGCGGCGGCCACCGGCGTCGCCGTGATCGCCGGGGTCACGCTGCCCGGGGACGAGCCCGGGCCCGACGGCGGGCCCCGCAAGGGCGTCAACGCCGTCGTGGCGGTCGACGGTGCCGGCGAGCTGGTCGGCGTCTACCGCAAGGTGCACCTGTACGACGCCTTCGGCACCCGGGAGTCGGACCGGCTGCAGGCAGGGCCCGTGGACGCCGAGCCCCTCACGATCCGCGTCGGCGACCTGACGTTCGGCGTCATCACCTGCTACGACCTGCGGTTCCCGGAGTCGGCGCGGCGCGTGGTCGACGCCGGGGCGGACGTGCTCGTGGTGCCCGCCGCCTGGGTGGCCGGCCCGCTGAAGGCCGAGCACTGGCGCACCCTGCTCACCGCCCGCGCGATCGAGAACACGGTCGTGACCATCGGCGTCGGCATGGCGGGCAAGGGCGTCACGGGCCGCTCCACGCTCGTGGGGCCGGACGGCGTCGTCGGCCTCGAGATGGACGACAAGCCGCAGTACCGCACGGTCGACCTCGACGCCGAGGAGCTGACGAAGGCCCGTGAGGCCAACCCCTCCCTGGTGAACCGGCGCTACACCGTCGTCCCCCGCGAGGCCTGA	MTARVTVAQVTIADDHEANRYLVVDAFAQAAKLSADLLVLPEYASGYHRSGVGIEHAEDLDGPFVSLLREQAAATGVAVIAGVTLPGDEPGPDGGPRKGVNAVVAVDGAGELVGVYRKVHLYDAFGTRESDRLQAGPVDAEPLTIRVGDLTFGVITCYDLRFPESARRVVDAGADVLVVPAAWVAGPLKAEHWRTLLTARAIENTVVTIGVGMAGKGVTGRSTLVGPDGVVGLEMDDKPQYRTVDLDAEELTKAREANPSLVNRRYTVVPREA				NA	NA	NA	NA	NA
AK001_03380	402			hypothetical protein	ATGCCGACGGCGCTGCTCGCGCGGGTCGCGGCGGACGTCGTACCGGCCCCGTCGCCCAGCCCGACGGCGCGGGTGCTGGAGGACTGGGAGGTCACCCCGGGTCTGGAGGGCTTCCTCGCGACCTTCGCGATCGCCGTCGCCGCCGTCCTGCTGTTCCTGTCGCTCAGCCGCCACCTGCGCAAGGCCGACAACTACGCGCGCGAGCACGGCATCGAGATCCCGGAGCGGCGCAGCATCGGCGTCCGGCGCGACGCGACCGGCGACGGCGGGCCCTCCGAGGCCACGCCGACCTCGCCCGACGTCGCTCCCGGCCCGGCGGCCGACGGGCCCGCCGAGGAGGGGCAGCAGGACGTCGGCACGCCGGACGCCGGGTCTCCCGACGACGGTCGGGAGCCGCGATGA	MPTALLARVAADVVPAPSPSPTARVLEDWEVTPGLEGFLATFAIAVAAVLLFLSLSRHLRKADNYAREHGIEIPERRSIGVRRDATGDGGPSEATPTSPDVAPGPAADGPAEEGQQDVGTPDAGSPDDGREPR				NA	NA	NA	NA	NA
AK001_03381	897	mca_2	COG2120	Mycothiol S-conjugate amidase	TTGACCGGCGAGCCACTGCGCCTGATGGCCGTGCACGCACACCCCGACGACGAGTCGAGCAAGGGGGCCGCCACCACGGCCCGCTACGCCGCCGAGGGCGTGGAGGTGCTGATCGTCACGTGCACCGGCGGCGAGCGCGGCGACGTGCTCAACCCGTCGTTCGAGGTGCCGGCGGGGCACGAGTTCGAGACGGTCGAGGGCCGACTGGCCGTGCGACGCCTGGAGATGGCGGCCGCCGCCGAGGCGCTGGGCGTGCGTCAGCACTGGCTGGGGTTCGTCGACTCCGGCCTGCCCGAGGGCGACCCGAAGCCGCCGCTCCCGGAGGGCTGCTTCGCCCTCGTGCCGCTGGAGGAGGCCTCGGCGCCGCTGGTGGAGCTCGTCCGCGAGTTCCGCCCGCACGTCATGACGACCTACGACCCCACGGGCGGCTATCCCCACCCGGACCACATCAAGTGCCACGAGGTGGCGTTCGAGGCCTACCACGCGGCCGGTGACGCGAGCCGGTACGTCGTCGACGGCGGCGCGGACGCCTGGACGCCCTCGAAGCTCTACTACAACCACGGCTTCTCCCTGGACCGGCTGCGCGCCGTGCACGAGGCGATGGAGGGCGCCGGGCTGGAGTCGCCGTTCGGCGACTGGATCGAGTCCCGGGCCGCGCGCGAGATCCCGGAGCGGGAGGTGACCACGCACATCGAGGTGGCCCCGTACTTCGCCCGTCGCGACGCCGCGCTGACCGCGCACGCCTCGCAGATCGACCCCGACGGGTTCTTCTTCGCCGTCCCCCGCGACATCGAGGCGGACGTGTGGTCCACCGAGGAGTTCGAGCTCGCGGACTCCCGCGTGCCGGTCAGCACGCCGGAGGACGACCTCTTCGCCGGCGTGCGGACGGGGTCCTGA	MTGEPLRLMAVHAHPDDESSKGAATTARYAAEGVEVLIVTCTGGERGDVLNPSFEVPAGHEFETVEGRLAVRRLEMAAAAEALGVRQHWLGFVDSGLPEGDPKPPLPEGCFALVPLEEASAPLVELVREFRPHVMTTYDPTGGYPHPDHIKCHEVAFEAYHAAGDASRYVVDGGADAWTPSKLYYNHGFSLDRLRAVHEAMEGAGLESPFGDWIESRAAREIPEREVTTHIEVAPYFARRDAALTAHASQIDPDGFFFAVPRDIEADVWSTEEFELADSRVPVSTPEDDLFAGVRTGS				NA	NA	NA	NA	NA
AK001_03382	438			hypothetical protein	ATGAGCCAGACGCAGCATCCCGCCGCCCCCGCCGACCGGTACGGCACCGCCGGACCCGCCGGCGGCTCGGCCCGCCGGGGCGGGCCGTTGGGACGGGGCGCGAAGGCGGCGATCGCGGCGGCACTGACGGCGGCGGTCGCCGGCACGGCCTGGTTCGCGACGCTGCGGCAGGCCGACGACCCGGTCGCCCACGACATGGTGTCGTTCGACGTGCTCGGCCCCGAGGAGATCGAGGTCACGTTCCAGGTGCACATGCCGGTCGGGACGACGGCGACGTGCACGATCGAGGCGCTGGCGCCCAGCTATGCCCAGGTCGGCACGCTGGACGTCCCGGTCGGCCCGGCGCAGACCCGGACCAGCGCCTACGAGGTCACGGTCGGCACCTCCCAGGAGGCGACGTCGGCCGTCGTCGCCGGGTGCACCGCGACCGCGCCGTGA	MSQTQHPAAPADRYGTAGPAGGSARRGGPLGRGAKAAIAAALTAAVAGTAWFATLRQADDPVAHDMVSFDVLGPEEIEVTFQVHMPVGTTATCTIEALAPSYAQVGTLDVPVGPAQTRTSAYEVTVGTSQEATSAVVAGCTATAP				NA	NA	NA	NA	NA
AK001_03383	483	greA	COG0782	Transcription elongation factor GreA	GTGACCGAGAGCAACGTCACCTGGCTCACCCAGGAAGCTCACGACCGGTTGACGGCGGAGCTGGAACACCTCTCCGGACCTGCCCGGACCGCTATCGCCGAGCGTATCGCCGCCGCCCGTGACGAGGGCGACCTCAAGGAGAACGGCGGTTACCACGCCGCGCGCGAGGAGCAGGCGAAGAACGAGGCCCGGATCCGCGAGCTCACCGAGAAGCTGCGGCACGTCGCCGTCGGCCGGCCCGCCGACGACGGCACCGTCGAGGCCGGCATGGTCGTGACCGCGGAGGTCGCCGGGGACGAGATGACGTTCCTGCTCGGCTCCCGCGAGATCGCCGGCACCACCGACCTGGACGTGTACTCCCCCACCTCGCCCCTCGGCGCCGCGATCGACGGCAAGAAGGTCGGCGACGAGGTGAGCTACACCGCCCCCAACGGGCGGGACATCCCGGTCAAGGTCACGTCCGCCAAGCCGTTCTCCGGCTGA	MTESNVTWLTQEAHDRLTAELEHLSGPARTAIAERIAAARDEGDLKENGGYHAAREEQAKNEARIRELTEKLRHVAVGRPADDGTVEAGMVVTAEVAGDEMTFLLGSREIAGTTDLDVYSPTSPLGAAIDGKKVGDEVSYTAPNGRDIPVKVTSAKPFSG	PGPT0030495_1540	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-TRANSCRIPTIONAL_CONTROL	PUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
AK001_03384	540	ectA		L-2,4-diaminobutyric acid acetyltransferase	ATGACGATCCCAGAGACAGGTCCGAACGCCCCCACGACCGCCGACTCGGTGTCAGGGGCGCCCGATGCAACCCTCACGATCCGTCGACCGGATGTCTCCGACGGCGCCGCCATGTGGCGCGTCGCCCGCGACTCCGGCTCGCTCGATCTCAACTCCTCGTACGCCTATCTGCTGCTGGCCGACCACTTCGCCGACACGTGCCGGATCGCCCTCATGGGCGACGACGTCGTCGGCTTCGTGACCGGCTACCGGCTGCCGGCGGACCCGACCCGCTACTTCCTGTGGCAGGTCGCCGTCGACGAGCGCGCCCGGGGCCACCGCCTCGCCGGCCGACTCATCGACGCCGTGATCGACGACCAGCCGGAGGTGAGCTCCCTGGTGACCACCGTGACCGAGGACAACACGTCCTCCCGCCGCGTCTTCCAGCGGTGGGCCGAGCAGCGCGGAGCGACTCTCGACGAGGTCACCGGGTTCGAGGCGCACCACTTCCCCGACGGCCACGAGGCCGAGCCCCTGCTGGTGATCGACGGCATCCGCTAA	MTIPETGPNAPTTADSVSGAPDATLTIRRPDVSDGAAMWRVARDSGSLDLNSSYAYLLLADHFADTCRIALMGDDVVGFVTGYRLPADPTRYFLWQVAVDERARGHRLAGRLIDAVIDDQPEVSSLVTTVTEDNTSSRRVFQRWAEQRGATLDEVTGFEAHHFPDGHEAEPLLVIDGIR	PGPT0014055_73	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014055-ectA-K06718	NA	NA
AK001_03385	1302	ectB_2		Diaminobutyrate--2-oxoglutarate transaminase	GTGACAACCCTGTCCGCACCGACCCCCGACGCGTCCTCCCACGACGACCCCACGGGTTTCTCTGCCCTCGAGTCCGAGGTCCGCAGCTACTCCCGTGCCTGGCCTGTGGTGTTCGACCGCGCGACCGGCGCGACGGTCTTTGCCGAAGACGGCACGGCCTACCTGGACTTCTTCGCGGGCGCCGGCTCGCTCAACTACGGGCACAACAACCCCGTGCTGAAGAAGGTCCTGATCGACTACCTCGCCGACGACCGCATGGTCCACTCGCTGGACATGTTCACGACCGCACGTCGCGAGTTCCTCGAGACCTTCCGCTCGCACATCCTCGAGCCGCGCGGTCTGGACCACAAGGTCATCTTCCCCGGCCCGGGTGGCGCCAACTCCGTCGAGGCGGCCCTGAAGCTGGCCCGCAAGGTGACCGGCCGCGAGTCGATCATCAACTTCACCAACGCGTTCCACGGCATGACGCTGGGCGCGCTGTCGGTGACGGGCAACTCCATGAAGCGCGGCGGCGCGGGCATCCCGCTGGTCCACGCGACGCCGATGCCCTACGACGACTACCTCGCCGGCGCCGAGGACGACTTCGCCTACCTGGAGCGTCTGCTCCAGGACGCCGGCAGCGGTCTGAACGAGCCGGCGGCGATCATCGTCGAGTCGGTGCAGGGCGAGGGCGGCATCAACGCGGCCCGCGCCGAGTGGCTGCGTGCGCTGTCCGACCTGTGCAAGCGCCACGAGATCCTGCTCATCCTGGACGACATCCAGATGGGCTGCGGCCGCACCGGCGGGTTCTTCTCCTTCGAGGAGGCCGGGATCTACCCGGACATGATCTGCCTGTCGAAGTCGATCTCGGGCTACGGCCTGCCGCTGGCCATCACGCTGGTGCGCCCCGAGCTCGACATCTTCGAGCCCGGCGAGCACAACGGCACGTTCCGCGGCTTCGCCCCGGCCTTCGCCACGGCGTCCGAGGCCATCCGCACCTACTGGTCGGACGACACCCTCGAGAAGGAGACCCTGGCCAAGGGCGCCATCATCGAGGGCTTCTTCAACGAGATCGTGGCGCGCTACCCGAAGCTCGACCTGGTCAGCAAGGGTCGCGGCCTGGCCCGCGGTCTGCAGTTCCCCGACGGCGAGACGGCCGACAAGGTGACCACCGGCGCGTTCGAGCGTCACATGCTCGTGGAGACCTCCGGTCCCGAGGACGAGGTCGTCAAGCTGCTGCCGCCGCTGACCATCACCGAGGACGAGCTGCGTCAGGGTCTGGCGATCCTGGACGAGGCCATCACGGCCGCTCTGGGTTCCTGA	MTTLSAPTPDASSHDDPTGFSALESEVRSYSRAWPVVFDRATGATVFAEDGTAYLDFFAGAGSLNYGHNNPVLKKVLIDYLADDRMVHSLDMFTTARREFLETFRSHILEPRGLDHKVIFPGPGGANSVEAALKLARKVTGRESIINFTNAFHGMTLGALSVTGNSMKRGGAGIPLVHATPMPYDDYLAGAEDDFAYLERLLQDAGSGLNEPAAIIVESVQGEGGINAARAEWLRALSDLCKRHEILLILDDIQMGCGRTGGFFSFEEAGIYPDMICLSKSISGYGLPLAITLVRPELDIFEPGEHNGTFRGFAPAFATASEAIRTYWSDDTLEKETLAKGAIIEGFFNEIVARYPKLDLVSKGRGLARGLQFPDGETADKVTTGAFERHMLVETSGPEDEVVKLLPPLTITEDELRQGLAILDEAITAALGS	PGPT0014050_948	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836	NA	NA
AK001_03386	411	ectC		L-ectoine synthase	ATGCTCGTTCGCACGCTCGACGAGATCACCGACACCGACGCCGACATCAAGACCGAGAACTGGCGTTCCAAGCGCATCATCCTGGCCAAGGAGGGTGTCGGCTTCTCCGTCCACGAGACCACGCTGTACGCGGGGACCGACAACTACTTCTGGTACGCGAACCACTACGAGGCCGTGTTCATCACCTCGGGCGAGGGTGAGATCGAGGACCTCGCCACGGGTGAGGTGCACGAGCTCAAGCCGGGCACGCTGTACCTGCTCAACGACCACGACAAGCACAAGGTGCGGCCGAAGACCGACATCACGTGCGTGTGCGTGTTCAACCCGCCGGTCACCGGCCGCGAGGTCCACGACGAGAACGGCGTGTACCCGCTGATCACCGAGCCGGAGTCCCAGCCCGCCGCCGGCTGA	MLVRTLDEITDTDADIKTENWRSKRIILAKEGVGFSVHETTLYAGTDNYFWYANHYEAVFITSGEGEIEDLATGEVHELKPGTLYLLNDHDKHKVRPKTDITCVCVFNPPVTGREVHDENGVYPLITEPESQPAAG	PGPT0014060_427	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014060-ectC-K06720	NA	NA
AK001_03387	321			IS3 family transposase ISBli28	ATGCCGGCACCGAAGAAGTACAGCGAGGAGTTACGTGAGCGGGCCACGCGGATGGCGTTGGACGCGATCGCGGTCGAGGGACAGCGGATGGTCGTGATCCGTCGGGTCGCGGGCCAGCTGGGCGTGCACCCGGAGGCGTTGCGCACGTGGGTCAAGCGGGCCGAGGTCGACGCGGGCCAGCGGCCCGGAACCACGAGCGGTGACGCGGCGCGGATCGTGGAGCTGGAGCGGGAGGTCGCCGAGCTGCGGCGGGCGAACCACATCTTGAAGCAGGCTTCAGCTTTCTTCGCGGCGGAGCTCGACCGCCCGTCCAGCAGGTAG	MPAPKKYSEELRERATRMALDAIAVEGQRMVVIRRVAGQLGVHPEALRTWVKRAEVDAGQRPGTTSGDAARIVELEREVAELRRANHILKQASAFFAAELDRPSSR				NA	NA	NA	NA	NA
AK001_03388	1086			hypothetical protein	GTGCAGCGTGGACAAGAGGCACGGCGACCTGGCGGCGACGAGGTAGCCCGCCGTGCACGAGAACTCCTTCGCGCTCGACTGCCGTCGAGGTGGGCGCTCACCGAGGCTCCCCTCGAGGACCTCTCGGCCGACACCTCATGGGAGATTGAATCCCCTGATGGTCGCCGGGCCGGGATCGGTGTCGTCCTGAAACCTGCTCTCGGTGTGCGCGACCTGGTCGACGTCGCAAACCGCGCCACCAGGATCAGGGACCGCTACGACGTCGATGCGGTCGTGGTCGCGGCACGCTATGTCGCGACGCAGGTCGGCGAGGGGCTCGAACGTCAAGGCATCGGATATGTCGACGCGACGGGCAATATGCGTGTCAGTCTGACGCTGCCCGGCTTGTTCGTCTCTGACAAGGGGGCGACCGCCGACCCGTGGCGCGGTCCAGGGCGTCGGCGCGACACCCTCAAGGGAGAGCCGGCAGCACGAGTCGTCCGAACACTTGCTGATCGCGTTGGGCCGTGGCGCATCAGTCGGCTCATCAAGGAGTCGGGAGCGTCAACCGGGTCCGTCTATCGAGTCGTCGAGCTCCTCGAGGCCGAGGAGCTCGTCCAGCGCACTTCGGATGGCGAGATCGCGGTCGAAGACTGGCCGACCATGCTTCGGCGCTGGGCCTCCGACTACCAGTTTCTTGAGACCAATGCGATCACGCGGTGGATTGCTCCGCGCGGAGTGGAAAGTGTGCTCCAGAAGCTCAGCCAAGGGACAACGGGCGACTACGCCGTGACGGGTTCCTTTGCTGCGTCTGCTTGGGAGAGCTATGCGCCGGCGCGTTCATTGTGGGTCTATGCAGAGGATCCCGACGGACTGGCCAGAAGCGTAGGTCTTCGGGAGTCGGAGACGGGTGTCAACGTGCTCGTCGCCAGGCCCGCCTATCCGGTCGTCATGGCTGCGGGTTCCCGAACACTCGACGGGGTGCGTTTGTCGTGTCCGACGCAGGTCGCCGTCGACCTCATGAACGGACCGGGTCGAGCGCCGTCAGAAGCAGAGGCACTCATGACGTGGTTGGAGAGGAACGTAGATGAATGGCGAGTCCCCTGA	MQRGQEARRPGGDEVARRARELLRARLPSRWALTEAPLEDLSADTSWEIESPDGRRAGIGVVLKPALGVRDLVDVANRATRIRDRYDVDAVVVAARYVATQVGEGLERQGIGYVDATGNMRVSLTLPGLFVSDKGATADPWRGPGRRRDTLKGEPAARVVRTLADRVGPWRISRLIKESGASTGSVYRVVELLEAEELVQRTSDGEIAVEDWPTMLRRWASDYQFLETNAITRWIAPRGVESVLQKLSQGTTGDYAVTGSFAASAWESYAPARSLWVYAEDPDGLARSVGLRESETGVNVLVARPAYPVVMAAGSRTLDGVRLSCPTQVAVDLMNGPGRAPSEAEALMTWLERNVDEWRVP				NA	NA	NA	NA	NA
AK001_03389	3129			hypothetical protein	GTGACGACCGACGTCTTCGGGACCGCCGCGCTGCGGCACGCGGTCACGGAGGCGTGGCTCGGGTCCGCCACACGCTTCCGTGAGGACGCGAACTCGGAGGAGGACCACGCGCGCGGGCACTACCGCGACCGCGTCGTGGTCGAGCTCCTGCAGAACGCCGCCGATGCCGCGGCCCGCGCGGGTGCTGCCGGCCGGGTCGAGGTCGTCCTCGACCCCGAGCGCCGCGTGCTGCGTGTGGCGAACACCGGTCACGCCCTCGACGCCGACGGGGTCGCCTCGCTGGCGTCGCTGCGCGCCTCCGCGAAGGACGACGCGGCCGGGCAGGTCGGCCGGTTCGGCGTCGGGTTCGCGGCGGTGCGGGCGGTGTCCGACGACGTCTCGGTCGTCTCGCGCGACGGCGGCGTGCGCTTCGCCCTGGACGAGACCCGCGCGGCGCTCGCGTCGCTGACCAGCGAGGGCGCTGCCGACGCGGCGGCGCAGCGGCTGGCGGCCGACGTCGCGGGCCGCGGTGACGACCTGCCGGTGCTCCGCCTGCCCTTCCCGGCCCCGGGACTGGACGCCGACGCCGCGTTCGACACCGTCGTGGAGGTGCGGCTGCGCGACGCCGCCGCCGCGGAGGCGGTGCGCGACCAGCTCGACGCGATCGACGACGTGCTGCTGCTCGCGTTCCCCGGGATCGCCACCCTGCACGTCGTGGTGACCACGGACACCGGCGTGGAGCACCAGGCCACCTGGGACGGCTCGGCCCAGAAGGCCGCCCCGCAGGTGCACCGCAGCGGGCGGTTCACCGAGGCGGACGTCGCCGAGCTGCCGCGCGAGCACCGCCGGACGGACTGGTCGCTGGTCTGGACGGTGCCGGACGGCGGCATCCCGGGCAGCGGCACCTCGGACGACGGCGGCACCCCGGGTGGGCCCGCCGCTCGGCGCCGGGTGCTGCACGCCCCGACGCCCACCGACGTCGTCGTCGACCTGCCCGCCGTGCTGCTCGCGACGTTCCCGATGGACGCCGGCCGCCGCCGGGTGCTGCCCGGGGCGGCCACCGACCACCTGGCGGCCGAGGCGGGCGTCGCCTACGCCGAGCTCCTCGGCACCCTGGCCGCGGACCGCGCGCGGGCCGCCGACCCGACCGCCGTGCCGGACCCCCTGGACCTGGTGCCGACGGGCCTGCCCGGCTCCGACCTGGACGCCGCGGTCCGCGAGGCCGCCACCTCGGCGCTGACCCGCACGCCGCTGCTGGCGGCGCCCGGCGGCGAGGACGGCGACCACCCGGGCCACGGCAGCCGTCCCGCGCTCGAGACCCCGCAGGACGCGCTGGTCGTCGCGGGCGAGCCGGGCGGCGACGCCGACCTCGTCGCGGCGCTCGCGCCGGTCCTGCCGGGCCTGGTGCTCGTCCCGGCCCGCCACCAGGCCACCGTGCGCAGCCTGGGGGCGACGGTCGCGTCGCTGGCGGACCTGGTCGACGACCTGCCCGGCGGGCTGCCGGCCGAGCGCTGGCACGCCCTGCTGGACGCCCTGGCCCCGTACGCGAACGAGCCGGGGGTGCTGGAGTCGCTGGCCGGTGCCCGCGTCCCGCTGGCCGACGGCCGGGTGGCCGGGGTGCGCAGCGCCGTCGTGCTGCCCGAGGGGTCGGTGGACGACGGCGACGAGGCTTCCCTGGCGGCCACGGCCCGCGTGCTGGGGCTGCGGGTGGTGCACCCGGACGTCGCGCACCCGCTGCTCGTCCGTGCCGGGGCGGTGGCCACGGACGCCTACCGGATGCTGCAGGACCCCGAGGTCCGCCGCGCCGCCCTGGACGCCGCCGAGACGGTCCTGGACGGCGACGAGGACGACGGCGCCCGGGAGATCGTCGCCTCGGCGCTGGCCCTGGTGCGGCTCACCGGGGGAGCGGACGCCCCGTTCTGGGCGGGTGAGCTGCCCGTGCCGACGGCGGACGGCGACCTGGTGGCGCTGCGCGAGGCGACGCTGCCCGGCACGTGGGCGGCGGAGGTGCTGGACGGCCTGGCCCCGGTCAGCGCCGAGTACGTGGCCCGCTACGGCGCGCCGGTGCTGACGGCGGCGGGGGCGCGCACCGACCCGGACGTGTACATCGTGCCGGACGTCGTCACCCCGGAGGCGGACGAGGAGGACGACGACGGCGGCCCGGACGACGCCGCGGGCTGGCTCGGCGGGTGGTCGGACTACCTGCGCCTGCTCGGGGCGCGGTTCGGACCCGGCGTCGCGGTCGGCGACCTGGTGGCCGTGGCGGACCTCGACGCCGTGGCGGACGACGCCTGGCCGCGGGTGCTGGCCCGTCTGGCCGGCGAGCCGGACACCCGCCGCGCCCTGCTGACGCCGGTGCGGCGCGGGCGGGTCTCGGCGCCGTCGTACTCGGCGTGGTGGCTGCGCGAGCGCTTCGGCGCGCCCTTCGCCCTGCACGACGGCGTCCCGCTGCTGCCCGCCGAGCCGCGGGCGGTGGCCGGGCTCGACGTCGCGGTGCGGCGCGCCCTGGGCGGTGCCGACGCGCTCGGCGACCTGGATGCGACGGACTGGCCGGCCGCGCTCGAGCGGCTGCCCGTCGTCGGCTCCGCGCTGCCGCTGCGCGACGCGCTGGTGGTGTGGCGGGGGCTGGCGAGCCTGGCCGCGCGCCTGGACGCCGACGACCGGTCGACGGCCCTAGACCCGCTGCCGGACCGGCTGCCCGTGCTGGACGCGAGCGACGTCGTCGTGCACCGGGCCGAGGACGTCGTGGTGGCCGGGACGGCCCGCTGGGCGGCGCTGGGTGCCGTGGTCCCCGCCCCGGCGGCCGAGGCCGAGGGGCTGGCCGAGCTGCTCGACCTGCCGCTGGCCGGGCAGGACGGGCTGCCGTCACCGGACTCGCTGGGCACCGAGCGCGAGCTGGACCCGCGGGTGACCGCGCTGGACCACCGGATGCCGTCGGTGTGGTTCCACCACGAGCGGCTGTCTGTGGCCGGCGGGCCGGTGCCGTGGTGGGTGGACGCCCGGTCCCGCGTGCACGCGACCTCCGAGGCCGGGCTGGCCGCGGGGCTGGCGGACGTGCTGGGCCGGCCGGACCGCGTCGCGCTGCTCACCGCGGTGCTGCGCGAGCCGGAGCGTGCCGTGGCGCTCTGGGCGACGACCGCCTGGGGCTGA	MTTDVFGTAALRHAVTEAWLGSATRFREDANSEEDHARGHYRDRVVVELLQNAADAAARAGAAGRVEVVLDPERRVLRVANTGHALDADGVASLASLRASAKDDAAGQVGRFGVGFAAVRAVSDDVSVVSRDGGVRFALDETRAALASLTSEGAADAAAQRLAADVAGRGDDLPVLRLPFPAPGLDADAAFDTVVEVRLRDAAAAEAVRDQLDAIDDVLLLAFPGIATLHVVVTTDTGVEHQATWDGSAQKAAPQVHRSGRFTEADVAELPREHRRTDWSLVWTVPDGGIPGSGTSDDGGTPGGPAARRRVLHAPTPTDVVVDLPAVLLATFPMDAGRRRVLPGAATDHLAAEAGVAYAELLGTLAADRARAADPTAVPDPLDLVPTGLPGSDLDAAVREAATSALTRTPLLAAPGGEDGDHPGHGSRPALETPQDALVVAGEPGGDADLVAALAPVLPGLVLVPARHQATVRSLGATVASLADLVDDLPGGLPAERWHALLDALAPYANEPGVLESLAGARVPLADGRVAGVRSAVVLPEGSVDDGDEASLAATARVLGLRVVHPDVAHPLLVRAGAVATDAYRMLQDPEVRRAALDAAETVLDGDEDDGAREIVASALALVRLTGGADAPFWAGELPVPTADGDLVALREATLPGTWAAEVLDGLAPVSAEYVARYGAPVLTAAGARTDPDVYIVPDVVTPEADEEDDDGGPDDAAGWLGGWSDYLRLLGARFGPGVAVGDLVAVADLDAVADDAWPRVLARLAGEPDTRRALLTPVRRGRVSAPSYSAWWLRERFGAPFALHDGVPLLPAEPRAVAGLDVAVRRALGGADALGDLDATDWPAALERLPVVGSALPLRDALVVWRGLASLAARLDADDRSTALDPLPDRLPVLDASDVVVHRAEDVVVAGTARWAALGAVVPAPAAEAEGLAELLDLPLAGQDGLPSPDSLGTERELDPRVTALDHRMPSVWFHHERLSVAGGPVPWWVDARSRVHATSEAGLAAGLADVLGRPDRVALLTAVLREPERAVALWATTAWG				NA	NA	NA	NA	NA
AK001_03390	852			hypothetical protein	ATGGCATCCGCCGAGGCGCCCGCGAAGGCACGCCGCGTGAGCTCGCGCGCCCGCAACGACGCCGTCCTGCTCGGCGCCGCCGAGCTGGCGCGCGCGGCGGCGCTGGAGGTCGCGTCCGGCCCGGACGACGTCGGCGAGCACCTCGGGACCGTCGCCGAGGGCGAGCGCCTGATGTCGCACCGGTTCGCGGCCGGGATGCGCGGCTACCACGGCTGGCACTGGACCGTGACGGTGGCACGCGTGCCGCGCGGCCGCACGGCCACGGTCTGCGAGGTCGAGCTGTTGCCGGGCGACGAGGCGATCCTGGCCCCGGCCTGGGTGCCGTGGTCGGAGCGGCTGCGTCCGGGGGACGTCCGCCCGGGCGACACGCTGCCCTTCCGCGCGGACGACCCGCGCCTCGAGCCCGGCTGGACGCCGACGGGCGACGAGGAGCAGGACGAGGTCGCCATCGACGAGCTGGCGCTGGCCCGCCAGCGGGTGCTGTCCCCGCAGGGTCGCGACGAGGCCGCCGAGCGCTGGTACCGCGGGTCGCAGGGACCGACGTCGCGGGGCGCGGTCGCCTCGGACGCCGAGTGCACGACATGCGGCTTCCTCGTGCCGCTGCAGGGCCCGCTGGGCCAGCTGTTCGGCGTGTGCGCGAACGCGTGGTCGCCCGACGACGGCAAGGTGGTCTCCCTCGACCACGGCTGCGGGGCGCACTCCGAGACGGACGTGAGCCGCCGCCGCAGCGAGTGGCCGGACCCGGACCCGATCATCGACGAGTCCACGGTCGAGCAGGTGGACCTGGGCCCCCGGGAGCCGGAGCAGCCGGCAGCCCCGTCCGACGAGCCGGAAGGTGACGAGAGCGCGTGA	MASAEAPAKARRVSSRARNDAVLLGAAELARAAALEVASGPDDVGEHLGTVAEGERLMSHRFAAGMRGYHGWHWTVTVARVPRGRTATVCEVELLPGDEAILAPAWVPWSERLRPGDVRPGDTLPFRADDPRLEPGWTPTGDEEQDEVAIDELALARQRVLSPQGRDEAAERWYRGSQGPTSRGAVASDAECTTCGFLVPLQGPLGQLFGVCANAWSPDDGKVVSLDHGCGAHSETDVSRRRSEWPDPDPIIDESTVEQVDLGPREPEQPAAPSDEPEGDESA				NA	NA	NA	NA	NA
AK001_03391	384			hypothetical protein	GTGCCCACCGGCAAGGTCAAGTGGTACGACGCGGATCGCGGTTTCGGTTTCATCGCCCACGCCGACGGCGGCGAAGTGTTCCTGCACGCCTCCGCGCTGCCGGCCGACGTGCCGAACCCGAAGCCGGGCACCCGCGTGGAGTTCGGCGTCGCGGACGGGCGCCGTGGCCCGTCGGCGCTCGCCGTGCGGGTCGTCGACCCCCAGCCGTCGGTGGCGAAGGCGAAGCGCAAGCCGCCGTCGGAGATGGCCGGCATCGTCGAGGACCTCATCCGCGTGCTCGACCGCACGGGCGACCAGCTCAAGCGTGGCAAGTACCCCGAGGGCGAGGCGGGCCAGCGCGTCGCCACCATGCTGCGCGCCGTCGCCGACAACCTCGATTCCTGA	MPTGKVKWYDADRGFGFIAHADGGEVFLHASALPADVPNPKPGTRVEFGVADGRRGPSALAVRVVDPQPSVAKAKRKPPSEMAGIVEDLIRVLDRTGDQLKRGKYPEGEAGQRVATMLRAVADNLDS	PGPT0014675_1361	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
AK001_03392	681			putative HTH-type transcriptional regulator	ATGTCCGCCCGCGAGATCGCCCGCACCGAGATCACCCGGCGGATCCACGCTGCGGCCCGGGAACGCCTCGGCGCCGAGGGACCCGCCGCGCTGTCCCTGCGCGCCGTCGCCCGCGACGTGGGGATGGTGTCCTCGGCGGTGTACCGGTACGTCGAGTCCCGCGACGCCCTGCTGACCGCGCTGCTGGTGGAGTGCTACGACGAGCTCGGTGCCGCCGTCGAGCAGGCGGAGAGCGACGCGCCCCGCACCGACCACGCGGCCCGTTGGCTGGCCGCCTGCCGTGCGGCGCGCACCTGGTGCGTCGAGCACCCGGGGGAGTTCGCCCTGCTCTACGGCACCCCCGTGCCCGGGTACGCGGCACCGCAGGACACCGTGGAGCCCGCGATCCGGGTGGTCCTCGTGCTGGCCGGCATCGCCGCGGAGGCGGGCGGGGACCCGGGGCAGCCGGCGTCCGACGTCGCCGCCGTCGTCGCGCCGGCGCGTGCCGCCGTCGTGCAGCGCGGCTTCCCCGCACCGGCCCCGGAGGTCGTGGCCCGCACGCTCATGGCCTGGTCGGGGTTGTTCGGCACGATCTCCTTCGAGCTGTTCGGCCACCTGCACAACGCGGTGTCCGACCCGGCGGACTGGTTCGACGCCGTCGCCGCCCGGCTCGGCGCCGACGCCGGCATCGTGCCCGCCTGA	MSAREIARTEITRRIHAAARERLGAEGPAALSLRAVARDVGMVSSAVYRYVESRDALLTALLVECYDELGAAVEQAESDAPRTDHAARWLAACRAARTWCVEHPGEFALLYGTPVPGYAAPQDTVEPAIRVVLVLAGIAAEAGGDPGQPASDVAAVVAPARAAVVQRGFPAPAPEVVARTLMAWSGLFGTISFELFGHLHNAVSDPADWFDAVAARLGADAGIVPA				NA	NA	NA	NA	NA
AK001_03393	1563			hypothetical protein	ATGACGATCGCGGAGTCGCAGAAGAGGCTGCCCCGCACCTGGGCGTGGGTGCGGCGCAGCAGGAGCCCGTCGTGGCGCGCCCGCGCTCGGGTCGACGTCTGGCAGACCGGCTACCGGCACCGACTGATGGCCACGGACGTGCTGCTGGTGTCCGCCGCCTGCGTCGTGGCGCTGGTGGTGCGGGACGCCGTGGTCGCCGCGCCGCCCTCCGGTGCCGCGACGGCCGTGCTGCTCGCGCTGGTGGCCGTGGGCGTCGTCGGGTGGCCCGTCGCGATCGCGTTGAGCGGTGGCTACGACCCTCGCGTCCTCGGCGAGGGAGGCCAGGAGCTCCACCGCATCGCCGATGCCGCCCTGCGGACGTTCGTCGCGGCCGCGGTGCTGGCACTCCTGGTCCCCGCTCCCGGTGTCCAGGCCTTCGCCCTCACCGCGTTCCCCCTCGGGCTGGCCTTGCTGATCGCGGGACGGTCGGCGTGGCGGGCGCGCCTTCTGCGTGCCCGCGCTCGCGGCGCGTGCACGACGGAGGTCGTGGCCGTGGGATCCCGCCGACAGGTCGAGCGGCTCGTCGACGAGCTGCACGACCGGCCGTCCGGGTACCGGGTCGTGGCCGCCTGCGTGCCGGACGGCGCGGCCGCGGGGCCGTACGGCGATGTCGACGGGCCCCGTCCCGCGGCCGACGGGCCGGGAGAGGGAGCCTCCGCGCCACCCGAGGTGGCCGGCGTACCCGTGCTCGGCGGGCTGTCCGACGTGCCGGCGGTGGCCTCCGGCACCGCTGCGCGGGCGGTCGTGGTGTGCGGCTCCGAGGCGGTCGACGCCGACGAGGTGCACCGTCTGGGGTGGGAGCTGGAGCCGCTGGGCGTGAGCCTGATGCTGACCGCCGCGCTGGAGGGTGTCACCCGGCCCCGGATCACGGTGGTCCCCGAGCGTTCGGTGTCTCTGCTGCACGTGACCGCTCCGCGGTTCGCCGGCCCGAAGTACGTCGCGAAGTCGCTCATCGACCGGGTCGGCGCGATCCTGCTGATCCTGCTGGTCCTGCCGGTGCTCGTGGTGGTCGCGGTCGTCGTCGCGACCACGAGCAAGGGCCCGATCCTGTACCCGCAGGAGCGGGTGGGGCGCGACGGCACGATGTTCCGGATGCTGAAGTTCCGCACCATGCGGGTGGGGGCCGAAGCCGAGGACTACCTGCAGGGGCGCAACGACGCCGACGGTCTGCTCTTCAAGCGGCGCGACGACCCGCGGGTCACCCGGCCGGGTCGCATGCTGCGCCGGTACTCGCTCGACGAGCTGCCTCAGCTGTTCAACGTGCTGCGGGGCCAGATGTCCCTGGTCGGCCCCCGGCCGCCGCTGCCGCACGAGGCGGCGAAGTACGAGGCGCACGTCCGCCGCCGTCTCCTGGTCAAGCCGGGCATGACCGGGCTCTGGCAGGTCAGCGGGCGGTGCGACCTGCCGTGGGACGAGGCGGTGCGGCTGGACATCTTCTACGCGGAGAACTGGACCCCGCTGGACGACCTGCTGGTCCTCGCGCGCACGGTGCGGGCGGTGCTCTCGGGCCGGGGCGCGTACTGA	MTIAESQKRLPRTWAWVRRSRSPSWRARARVDVWQTGYRHRLMATDVLLVSAACVVALVVRDAVVAAPPSGAATAVLLALVAVGVVGWPVAIALSGGYDPRVLGEGGQELHRIADAALRTFVAAAVLALLVPAPGVQAFALTAFPLGLALLIAGRSAWRARLLRARARGACTTEVVAVGSRRQVERLVDELHDRPSGYRVVAACVPDGAAAGPYGDVDGPRPAADGPGEGASAPPEVAGVPVLGGLSDVPAVASGTAARAVVVCGSEAVDADEVHRLGWELEPLGVSLMLTAALEGVTRPRITVVPERSVSLLHVTAPRFAGPKYVAKSLIDRVGAILLILLVLPVLVVVAVVVATTSKGPILYPQERVGRDGTMFRMLKFRTMRVGAEAEDYLQGRNDADGLLFKRRDDPRVTRPGRMLRRYSLDELPQLFNVLRGQMSLVGPRPPLPHEAAKYEAHVRRRLLVKPGMTGLWQVSGRCDLPWDEAVRLDIFYAENWTPLDDLLVLARTVRAVLSGRGAY				NA	NA	NA	NA	NA
AK001_03394	918			hypothetical protein	ATGTCTCGTCATCTCGTCGTGGGCGCCGGCCCCGTCGGCCGACAGGTCGCCACCCTCCTCGCCGCCACCGGCGAGGAGGTCACCGTCGCCACCCGCTCGGGCCGGGACACCGGCCTGGAGGGCGTGCGCCACGTCGCCGTCGACGCGGCCGATCCGGACGCCCTCTGCGCCGTCGACCCGAACGCCGACGTGCTCTACAACTGCGCCAACCCGGCCGACTACACCCGCTGGGACGAGCTCTGGCCGCCGCTGGCCGCCTCGCTGCTGAGCAGCGCCGAGCGGCTCGGCGCCGTGTACGCGATCACCGGGAACCTCTACCCCTACGGCCCCGTGGACGGCCCGATGACCGAGGGGCTGCCCGACGCCGCCACCGACCACAAGGGCCGGCTGCGGGCCCAGATGTGGGCCGACGCGATCGCCGCGCACCGGGCCGGGCGCCTGCGGGCCGTCGAGGTCCGCGGCTCCGACTACGTCGGGCCCGGCGTCGGCGAGAACGGCCACGTCTCGCGCGTGCTGCCCGCCGCCCGGCAGGGCCGCGCCGTGAGCATGTTCGGCCGCACCGACCAGCCGCACACCTTCACCGACGTGCGCGACGTCGCCCGCACCCTGGTGGCCGCCGCCGCGGACCACGACGCGCACGGACGGGTCTGGCACGTGCCCTCCAACCCGCCGGTCAGCCAGCGCCAGGTGCTCACCGACGCGCTCGCCGCCGTCGGGGAGCCGCCCGTGAAGGTGCGCGAGCTGCGCGGCGCCACCGTCGCCGTGGCCTCCTGGTTCTCCCCTCTGGTACGAGAGCTGCGCCAGCTGATGTACCAGTGGGAGCGGCCGTACGTGCTGGACTCCACCGCCGCCCGGGAACGGTTCGGGATCGCCCCGACCCCGTGGCCCGAGGTGTGCCGGGGGACCGCCGCGGACTGA	MSRHLVVGAGPVGRQVATLLAATGEEVTVATRSGRDTGLEGVRHVAVDAADPDALCAVDPNADVLYNCANPADYTRWDELWPPLAASLLSSAERLGAVYAITGNLYPYGPVDGPMTEGLPDAATDHKGRLRAQMWADAIAAHRAGRLRAVEVRGSDYVGPGVGENGHVSRVLPAARQGRAVSMFGRTDQPHTFTDVRDVARTLVAAAADHDAHGRVWHVPSNPPVSQRQVLTDALAAVGEPPVKVRELRGATVAVASWFSPLVRELRQLMYQWERPYVLDSTAARERFGIAPTPWPEVCRGTAAD				NA	NA	NA	NA	NA
AK001_03395	2310			hypothetical protein	ATGGCCGGTACGTTCACCGAGTGGGTGCGCTCGCGCACGGACGACGAGCTCGTGACGTTGCTCCGCGTGCGCCCCGACCTCGGCACCCCCTCCCCGTCGACGCTGCGCTCCCTCGCCGCGCGCGCCGCCAGCCGCACCAGCACCGAGCGGGCCGTCGCCCACCTAAACGCCGGCACGCTGCAGGTCCTGGAGTCGCTGCTCGCGCTGTCCGACGGCGACACCCCCGTCGGGGCGGGAGCGGTCACCGACGCGCTCGGCGCACCGCGGTCCGCCGACGCCGTCGGTCGCGTCCTGGCCGCCGCCCGCGACGCGGCCCTGGTGTGGGACGACGACGGCGGGGTGCGGCCCGCACCCGGCCTCGACGAGGTGCTCGGCCCCTACCCCGCCGGCCTCGGCCCCGTCCGGGAGGACGACGCCCCGACCGTCGACGTCGGGGCCCTGTCCCCCGCCGCCCGGCAGGTCCTCGACGCGCTCGCCTGGGGGCCGCCCGTCGGCGTCGTCCCGCCCGCCGGCTCCGCGCCCCGCGCCGCCGTCGACCAGCTCGTCGGCGACGGGCTGCTGCAACGCTCCGACGCCCGGCACGTGGTGCTGCCCCGCGACGTCGGTCTGGCCCTGCGGGGCGGTCGCACCCACCGGGCACCCGACCTCGACCCGCCCCGTCCGGACGGACGCACCGTCCCGGAGCCGACCGTGGACGCCGAGGCCGCCGGCGCCGCGCTGGAGATCGTGCGTCAGGTCGCGCACGTCCTCGTCGCCTGGGACGACACCCCGCCCGTCGTGCTGCGCGCCGGCGGGCTCGGCGTCCGCGACCTGCGCCGCACGGCGCGGCTGCTCGAGACCGACGAGGCCACCGCCGCGACCGTCGTCGAGCTGGCCGCGAGCGCCGGACTGGTCGCGGACGACGGCGACGCTCCCGCGTCGTTCCGGCCGACCACGCGCGCCGACGGCTGGGAGGAGGCCGACGACGCCGACCGGTGGGCCACGCTGGCCGAGGCCTGGCGACGCTCCCGCCGCACAGCGTGGCAGGTCGGTACCCGCGACGAGAAGGGCACGGTGCGCGCGCCGCTGTCCGCGGACCTGCAGCGACCCTGGGTGCCGCGGCTGCGCCAGCAGGTGCTCGAGGTGCTCGACGCCCAGCCGGGCGTGGCGCTCGGGGTCGACGACGTGCTCGCCGTGCTGCGGTGGCGGTCGCCGCGGGCAGTGCCCCCGGAGGCCGCGGTGGCGGGGCTGCTGCGCGAGGCCGCGATGCTGGGCGTCACCGGCGCCGGGGTGCTGTCCACCCCCGGGCGCGCGGTGCGCGAGCCCGGGGAGGACGCCCCGGCCACGGATCTCGGCACGGTCATGCGGTCGGTCTTCCCCGAGGAGGTGCACGAGTTCCTCCTGCAGGGCGACCTGACCGGGATCGTGCCCGGGCGTCCCTCGCCCGACCTCGCGCGGCTCATCGACCAGTCCGCCGAGGTCGAGTCCCGGGGCGCCGCCACCACGGTGCGGTTCACGACCGGGTCCGTGACCCGGGCGCTGGACCACGGCCGCAGCGGGGAGGACCTGCTGGCCGAGATCGCCCAACGGTCCGCCGTCCCGGTGCCGCAGCCGCTGGAGTACCTGGTCAAGGACACCGCACGCCGTCACGAGGCGCTGCGGGTCGGCTCGGCGCAGTCCTACGTGCGGGCCGCCGACCCCGCGATGCTCGCCGGCCTGGCCGAGGACCCGCGGCTGTCGGCCCTGGGACTGGTCCGGCTCGCCCCGACGGTGCTCGCGGCGTCGGTCCCGGCCGCCGAGCTGCACGAGGTGCTGCGCGACCGGGGCCTGCTCTCGGCGCTCGAGGGTCCGGACGGCCGGCCGCTCGGCCGGGTCCGCCGTCCCGACCGGCTGGACCGCGACGCCTGGTCCCGACGCCGCGGGAGCGGGGCGGTCCGCGGCGTCACCGACGCCGCACGGCGCGAGCTGGTCGACCGGATGCGGGGTAAGAGCACGGGTCGCGGTGCCGGGACACCGTCGGACGGCGCGGGCCAGGATCTGCCGCCGGCGACCGGGGGCGCCCCACCCGGCCCCGGGGGCGCCGTCGGGCCGGGTGCCGTCGTCGGGGAGCCCGTGCGCGAGCCCGGGGACGTGCAGGCCGAGCTGAGCGAGGCGCTGCGCGACGGGCGCTCCGTGTGGGTCGAGCTGGTCGGGGCGTCCGGCGGGCTGGAGCGGCGCGAGCTGCGTCCGATGCGGCTCGAGGGCGGCCGGCTGCGCGCGCTGGACGCCGTGCGGGAGGCCGAGCTGACGATCGCCGTGCACCGCATCGCCTCGGTGCAGCCGACCGACTGA	MAGTFTEWVRSRTDDELVTLLRVRPDLGTPSPSTLRSLAARAASRTSTERAVAHLNAGTLQVLESLLALSDGDTPVGAGAVTDALGAPRSADAVGRVLAAARDAALVWDDDGGVRPAPGLDEVLGPYPAGLGPVREDDAPTVDVGALSPAARQVLDALAWGPPVGVVPPAGSAPRAAVDQLVGDGLLQRSDARHVVLPRDVGLALRGGRTHRAPDLDPPRPDGRTVPEPTVDAEAAGAALEIVRQVAHVLVAWDDTPPVVLRAGGLGVRDLRRTARLLETDEATAATVVELAASAGLVADDGDAPASFRPTTRADGWEEADDADRWATLAEAWRRSRRTAWQVGTRDEKGTVRAPLSADLQRPWVPRLRQQVLEVLDAQPGVALGVDDVLAVLRWRSPRAVPPEAAVAGLLREAAMLGVTGAGVLSTPGRAVREPGEDAPATDLGTVMRSVFPEEVHEFLLQGDLTGIVPGRPSPDLARLIDQSAEVESRGAATTVRFTTGSVTRALDHGRSGEDLLAEIAQRSAVPVPQPLEYLVKDTARRHEALRVGSAQSYVRAADPAMLAGLAEDPRLSALGLVRLAPTVLAASVPAAELHEVLRDRGLLSALEGPDGRPLGRVRRPDRLDRDAWSRRRGSGAVRGVTDAARRELVDRMRGKSTGRGAGTPSDGAGQDLPPATGGAPPGPGGAVGPGAVVGEPVREPGDVQAELSEALRDGRSVWVELVGASGGLERRELRPMRLEGGRLRALDAVREAELTIAVHRIASVQPTD				NA	NA	NA	NA	NA
AK001_03396	1083			hypothetical protein	ATGGCGCGATGGATGCGGCACAACGGATATTGGGACGCCCGGACGACTGGAGGATCCTCCGACGGAGGAATCGACATCGAGAGTGTCTACGGGATTGCCCAGGTGAAGTTTCACAATAAACCGACCGGGCGACCCGACCTACAACGTCTCGTAGGTGCCAGAATGAATCGCCAAAACGTTGATCTTCTATTCTTTTCCTTCAGTGGATTCACGCAGTCTGCTACGAAATACGCTGACGAGATGCGCATCGCCGCCATCCGTTTCGACACGGACGGTAGCGCAGAGGTTGTCAATAAGTCGGCAGAGTCCGTCGTGCGCTCAAGACGCCTTCGGCGAGAGAAGCTGCACCGAAGAGCAGCTCGAGTCGGCATTGACCCGGTCGAAGACATCGAGAAGCTGGCTCGGGCAGTAGTCGCCGCGGAAAAGCAGTGGGAGCGCGAGCGACAAGAAGCCGAAGCAAGGGAGAAAGCGGCGAGGCGCGCCGCGCGTGCTCAGAAACGCGCCGCGCGTGCTCAGAGGAAACGTGAACGCTCGGCGGAGAATACCCGCCCAACCATCCGGCCAAGGGACCCTGACACGTCGACGATGTCCGTCGCTGGCGATGAGGGGCTCCCCAGCAGTTCTGGGGAAGCACGCGCGGAGCAGATCGACGAGAGTCCACCTCGAGCAGAAAACGCGGACTCGACGCAGCCAGATCGAGAGCTGCTTCTCGTAGCCTTTGTTGCAACGCTCTACGCCTGGGTGCTCATCGCGTTCTTTGACGACTGGCTGACCGCCCACGTCGCACCACTGCTCGTCTACTGGTTCGCCTACGTTCCTGCGGGACTGCTCAGCTTTTCGCTCCTCGCCCGCCTACTCGTCAACCCGCCTCCGAAGAAGCAGCCTGATCCAGGTCAAGACGTCGGCCACGTCGTCGGATTCATCATCGCAGCAATTCTGGGGGCCGCGATGCTGCTCATCGTGACCGCCGTTGGGAACCTCATCCTGCTTGGATTCCTCGCACCGGGCCTAGCGATCTCTCAGCTACGGCGAACATTCATTCGTCAGACATCCCACGAGGTTCAGGATTCAGGCACCGAGTAG	MARWMRHNGYWDARTTGGSSDGGIDIESVYGIAQVKFHNKPTGRPDLQRLVGARMNRQNVDLLFFSFSGFTQSATKYADEMRIAAIRFDTDGSAEVVNKSAESVVRSRRLRREKLHRRAARVGIDPVEDIEKLARAVVAAEKQWERERQEAEAREKAARRAARAQKRAARAQRKRERSAENTRPTIRPRDPDTSTMSVAGDEGLPSSSGEARAEQIDESPPRAENADSTQPDRELLLVAFVATLYAWVLIAFFDDWLTAHVAPLLVYWFAYVPAGLLSFSLLARLLVNPPPKKQPDPGQDVGHVVGFIIAAILGAAMLLIVTAVGNLILLGFLAPGLAISQLRRTFIRQTSHEVQDSGTE				NA	NA	NA	NA	NA
AK001_03397	1680			hypothetical protein	ATGCCCGACGGCCCCCTGATCGTCCAGAGCGACAAGTCGATCCTGCTCGAGGTCGACCACGCGCACGCCGAGGAGGCGCGCCGCGCCATCGCGCCGTTCGCCGAGCTCGAGCGCGCCCCCGAGCACGTGCACACCTACCGGCTGACGAACCTCGGCCTGTGGAACGCGCGCGCCGCCGGCCACGACGCCGAGCAGGTCGTCGACACCCTCATCGCGTACTCGCGCTACCCCGTCCCGCACTCGCTGCTGGTCGACGTCGCCGAGACGATGGGCCGCTACGGCCGCCTGACCCTGCACTCCCACCCCACGCACGGGCTCGTGCTGGAGTCCACCGACGCCGCGGTGCTGGCCGAGGTGCTCAAGTCCAAGCGGACCACCGGGCTCGTGGGCGAGCGGGTCGACGGCAGCTCCGTGGTCGTCCACCCCTCCGAGCGCGGCAACCTCAAGCAGGCCCTGGTCAAGCTCGGCTGGCCCGCCGAGGACCTCGCCGGGTACGTCGACGGCGAGGCGCACGCGATCGACCTGCGGACCACCACGACGCCGGTCTACCCGGGCGAGGAGGCCTCCGACTGGACGCCGCGGCCCTACCAGCAGCAGGCCGTCGACGGGTTCTTCCACGGCGGGTCCGGCGTCGTCGTGCTGCCCTGCGGTGCCGGCAAGACGATCGTCGGGGCCGGGGCGATGGCCGAGGCGAAGACCACCACGCTGATCCTGGTGACCAACACCGTCTCCGCGCGCCAGTGGCGCGACGAGCTGGTGCGCCGGACCTCGCTCACCGAGGACGAGATCGGCGAGTACTCGGGCTCGCGCAAGGAGATCCGCCCGGTCACCATCGCGACCTACCAGGTGCTGACGACCAAGCGGAAGGGCGTCTACACCCACCTGGAGCTGCTCGACGCCCGCGACTGGGGCCTCATCGTCTACGACGAGGTGCACCTGCTGCCCGCCCCGATCTTCCGCATGACCGCCGACCTGCAGGCCCGGCGTCGGCTCGGCCTGACGGCGACGCTCGTGCGCGAGGACGGCCGCGAGGACGAGGTGTTCTCCCTCATCGGCCCCAAGCGGTACGACGCGCCGTGGAAGGACATCGAGGCGCAGGGCTACATCGCGCCCGCCGACTGCGTCGAGGTGCGGCTCACCCTGCCCGAGCACGAGCGGATGCTCTACGCGACGGCCGAGCCGGAGGACAAGTACCGGCTCGCCGCGTGCGCCCCGGGCAAGAACCGCGTCGTCGAGCAGATCGTCGCCGACCACCCCGACGACCAGGTGCTGGTGATCGGGCAGTACATCGACCAGCTCGAGGAGCTCGCCGAGCACCTGGACTCCCCGCTGATCACCGGGTCGACCACCGTCCGCGAGCGCCAGAAGCTGTTCGCGGCGTTCCGGGCGGGCGAGATCTCCCGGCTCGTGGTGAGCAAGGTCGCGAACTTCTCCATCGACCTGCCCGAGGCGTCGGTGGCGATCCAGGTCTCCGGCTCGTTCGGCTCCCGGCAGGAGGAGGCCCAGCGCCTCGGCCGGGTCATGCGCCCCAAGCAGGACGGCCGCACGGCGCACTTCTACGCCGTCGTCGCCCGGGACACCGTCGACCAGGACTTCGCGGCGCACCGCCAGCGGTTCCTGGCCGAGCAGGGCTACGCCTACCGCATCGTCGACGCCGAGGACCTGGACGCCGTGCCGTAG	MPDGPLIVQSDKSILLEVDHAHAEEARRAIAPFAELERAPEHVHTYRLTNLGLWNARAAGHDAEQVVDTLIAYSRYPVPHSLLVDVAETMGRYGRLTLHSHPTHGLVLESTDAAVLAEVLKSKRTTGLVGERVDGSSVVVHPSERGNLKQALVKLGWPAEDLAGYVDGEAHAIDLRTTTTPVYPGEEASDWTPRPYQQQAVDGFFHGGSGVVVLPCGAGKTIVGAGAMAEAKTTTLILVTNTVSARQWRDELVRRTSLTEDEIGEYSGSRKEIRPVTIATYQVLTTKRKGVYTHLELLDARDWGLIVYDEVHLLPAPIFRMTADLQARRRLGLTATLVREDGREDEVFSLIGPKRYDAPWKDIEAQGYIAPADCVEVRLTLPEHERMLYATAEPEDKYRLAACAPGKNRVVEQIVADHPDDQVLVIGQYIDQLEELAEHLDSPLITGSTTVRERQKLFAAFRAGEISRLVVSKVANFSIDLPEASVAIQVSGSFGSRQEEAQRLGRVMRPKQDGRTAHFYAVVARDTVDQDFAAHRQRFLAEQGYAYRIVDAEDLDAVP				NA	NA	NA	NA	NA
AK001_03398	1254		COG0628	Putative transport protein	ATGGCCGATGACGACGCCGCACCGGAGACGGACCCGGACGCGGCGGAGGCCGGTTCGCCGGCAGCACCGCCGCACGACGACGACCGCCCGCTCCAGCACGACGACCGCCGTCCACCGCGCTGGGTGCCGCGCGTGCTCGTCATGGGCGCCGCCGCCGTGTTCGCCGCCGTCTGGGTCTGGGGGGCGATCCAGCAGCTCAACACCCTCTTCGTCTACCTGCTCATCGCAGGCTTCGTCGCCCTCGCCCTCGAACCGGTCGTCGTGTGGCTCGTGCGGCACGGCTGGCGGCGCGGTGTCGCGGCCGCCGCCGCGTTCTTCGGGTCCGTCCTCCTCGGGATCGGGATCCTGGCACTGTTCGGCAACCTGTTCATCCAGCAGCTGATCCAGCTCGTCGGCACCCTGCCCGACGTCTACGTGGCGGCCCAGGAACGCCTGCAGGCCAACCTCGACGTCGAGCTGCCGTCCTCCGACGACCTCCTGCAGCAGCTCGTCGAGGAGTACGGCTCCGACGTCGCGTCCGGCACCCTTGCCGTCGGCACCACCGTCGTCGGGTTCGTGTTCGCCGCGCTGACGATCGGGCTCGTCACCTACTACCTCATGGCGGCCGGGCCGCAGTTCCGCGCCGCCGTGTGCCGGTGGCTCAGCCCGGACCGGCAGACCGAGGTGCTGCGGATGTGGGAGATCACGCAGGTGAAGGTCTCGGACTTCATCAGCTCCCGCGTCGTGCTCGCGGCGCTGTCGGCGGCGTTCACCGCGGTGTTCCTCATCATCCTCGGCACGCCCTACGCGCTCCCGCTGGCCCTGTTCACCGGACTGGTCTCGCAGTTCATCCCCACCATCGGCACGTACATCGGCGGCGCGCTGCCCGTCGCCGTCGCGCTGACCTCGCAGGGCGTGCCCCAGGCCCTCGCCGTGCTGGCCTTCATCATCGCCTACCAGCAGCTGGAGAACCTCTACTTCTCACCGAAGATCTCCGCGCGGGCGCTCGAGATGAACCCCGCCGTCAGCTTCGTCGTCGTGCTCGCGTTCGGGGCGGTGTTCGGGGCGCTGGGGGCGTTCCTGGCGCTGCCGGTGGCCGCGACCATCCAGGCGATCGCCAACACGTACCTGACGCGGCACGAGCTGGTCGACTCCGACATGCTGCGGGACCCGGACCGGCAGCCGCCGAAGGGGTCACGCCGGTCGCGCAACCTGCGCGCCGCGCGGGAGGCCGCGCGCACGGTCGCCGAGCGCCGGGCCGACGGCGTCGGGTGA	MADDDAAPETDPDAAEAGSPAAPPHDDDRPLQHDDRRPPRWVPRVLVMGAAAVFAAVWVWGAIQQLNTLFVYLLIAGFVALALEPVVVWLVRHGWRRGVAAAAAFFGSVLLGIGILALFGNLFIQQLIQLVGTLPDVYVAAQERLQANLDVELPSSDDLLQQLVEEYGSDVASGTLAVGTTVVGFVFAALTIGLVTYYLMAAGPQFRAAVCRWLSPDRQTEVLRMWEITQVKVSDFISSRVVLAALSAAFTAVFLIILGTPYALPLALFTGLVSQFIPTIGTYIGGALPVAVALTSQGVPQALAVLAFIIAYQQLENLYFSPKISARALEMNPAVSFVVVLAFGAVFGALGAFLALPVAATIQAIANTYLTRHELVDSDMLRDPDRQPPKGSRRSRNLRAAREAARTVAERRADGVG				NA	NA	NA	NA	NA
AK001_03399	780			hypothetical protein	GTGCTGAGAACCGCAACCACCGCCCTGCTGGGCGCCGGGGCCGTGACGCTGGTGCTGACCGGCTGCGGGGCCGACGAGGGGGCTGACGTCGTCGACCTGGCGGCGCTGTCGCAGCGGATGGACGAGGCGCAGGCCGAGCAGGGGTCGGTGCACGTCGAGACCACCTTCGCCGGGGAGCTCGCCGAGCGGACCGGGATGACCGAGTCCGCGCAGAGCGGGGACGTGATCGTCGGGGAGGGCCTCGAGGACTCCGCCTTCGCGATGTCGATCGGCGCGGTGGGGACCGAGATGGAGATGATCCTGCTCGAGGGCACCATGTACGTCGACATGAGCGCCCTCAGCGGCGGCGAGGTCGACTGGGTCGCCATGTCGGCGGACGAGGTCGCCCAGGACCCGACGTTCGCCGGGACCATGGACTCGATGCTCGCGATGGACCCCGCCGGGCAGGCGGAGATGATGGCCGACGCCGTGACGGCGTTCGCGCACGGGGGCACCGAGGAGCTCGACGGGCGGACGGTGGACGTGTACACGATGACGCTCGACCCGACACGTCTCGAGGCCGCGGCCGGAGCCGCGCCGGCGGCCGTCGACCAGATGGACGACATGACGGCGGAGTTCCGCGTCACCGAGGACGGCCTGCCGCTGGCGGTGGACACGACGGTGGAGATCGACGGTCAGGAGCTCGTGACCGCGACCACCTTCTCGGGCTGGGGCGAGCCGGTCGAGATCGAGGCGCCGCCCGCCGACCGGGTCACCGACTACGGCGAGCTGATGGGCTGA	MLRTATTALLGAGAVTLVLTGCGADEGADVVDLAALSQRMDEAQAEQGSVHVETTFAGELAERTGMTESAQSGDVIVGEGLEDSAFAMSIGAVGTEMEMILLEGTMYVDMSALSGGEVDWVAMSADEVAQDPTFAGTMDSMLAMDPAGQAEMMADAVTAFAHGGTEELDGRTVDVYTMTLDPTRLEAAAGAAPAAVDQMDDMTAEFRVTEDGLPLAVDTTVEIDGQELVTATTFSGWGEPVEIEAPPADRVTDYGELMG				NA	NA	NA	NA	NA
AK001_03400	2172			hypothetical protein	ATGCAGATCGTGATCCCCTCTCTCCGGACCGAGCGGCGACGCCCGGTCTCACCGGTCGTCGCCGTCCTGACGCTCGCCGTCGCGGTCGCCGCCCTCGGGGCGGTCGCCACCGGCCCCGCCCACGCCGTCGGCCCCGTGACCGCCGAGGCTCCGCTCTCCGAGCTCGACGGAGACGTCACCGACGTCGCCGGCGTGCTGGACGAGACCGGTGCCGCGGCCGTGCAGAGCTCCCTGGACGAGCTCGCCACGGAGACGCCGTACCAGCTGTTCGTCGTCTACGTCGACCGGTTCGACGGCCTCGACGGCCGCGAGTGGGCGGACGCCACCGCGAACAACGCCCGGCTCGGCACCGAGGACGTCCTGCTCGCCGTCGCGACCGAGGACCGGCTGTACGGCATGAGCTGGGACAACAACATCGACCTCAGCGAGCAGCAGCTCGACGCCGTCCGCGACGCCGCCGTCGACGCGCTGCGCGCCGACGACTGGGCCGGTGCCACCGTCGCCGCCGTCGACACCCTGCTCGCCGTCACCGGGTCCGACGGCGCCTCCAGCGGGGCCGCCGCCGGCACAGGTACCGACGACGGAGGCGGCGGGGGCGTCCCCGGGATCCTCGTGTGGGTCGCGATCGGCGCCGTGGTCGTCGTCGGCGGATTCTTCCTCGTGCGCCGCGCCCGGCAGAAGGACGCCGACCTCGCCCGGCGCGGGGCCGCCGCGGCAGCACGCCGACGTCGGACCGCCTCCTCCGCAGCGAAGCGCCCCGGTCGGGGCCGGACCGCGGGACCCGACCCGGACCGCTTCGCCGGGCTCGGCCTGGAGGAGATGCGGCAGCGGGCCGGCAGCGCGCTGGTGGCGGTCGACGACGCCGTCAAGACCTCCGAGCAGGAGCTCGCGTTCGCCGAGGCCGAGTTCGGTGTCGAGGAGACCCGCGAGTTCAGCGCCGCTCTGGACGCCGCGCGCCAGGAGGTCGCTGCGGCCTTCCACGCCCGCCAGGTCCTCGAGGAGACACCGGACGACACGTTCGGCGAGCACGAGGAGCTGGCAGCGATCATCACCCGCTGCGAGACCGCCGCCGCCTCCCTGGACGCCCAGACCGACGCCTTCGACGAGCTGCGGCGCATCCGGGCCCGCGCACCGGAGATCCTCGACGAGGCCGAGCGGCGCGCCGGGGAGATCAGCGCGCGCATCGAGATCGCCCGTCACACCGTCGCCGGGCTGGCCGCGACCTACCCGGCCTCGGCGCTGGCCTCGATCAGCACCAACCCCGACCAGGCCGAGACGCTCGTCGCCAACGCGCGCGAGATCGTCGAGTCCGGACGCGAAGCGGTGCGCAAGCGCAAGCGGGCCGTCGCCGTCATCGACGCGCGGGCCGCCCAGAACGCGCTCGGCCAGGCCATGACCCTGCTCGAGTCCGTCGCGAGCGCCGGGGACGATCTCGCCGACGCCGGCACCCGCCTCGAGACGGGGATCGCCTCCATCACCCAGGACATCGTCGACGCCGACCGGCTGGCCCCCGGCGACGAGCGGGTCCGGTCCGCCGCCGCCGAGGCCCGCGAGGCCGCGGACCAGGCCCGGGACGCGAAGGAGGGCGGAGACCCGCTGGCCGCCCTCACGCGGCTCGCCGCGGCCGAGGCCGCCCTCGACGACGCCCTCGCCCCGTCACGGCAGCAGGCCGAGTCCGACGCCCGCGCCCGCGCCCTGCTGCGCGACGTCCTCGGGCGCACAGAGTCCCACCTGCGCTCCACGCGGGACTACATCACCACCCGGCGTGGCGCCGTCGGAGCCGACGCCCGCACCCGGCTGGCCGAGGCCGAGCGGCTCGTCGCCGAGGCCCGGTCGCTGCAGCGCACCGACCCGCAGGCGGCCCTGGCTGCCGCGCAGCAGGCCGAGCGCTACGGGCAGCAGGCCGCGCAGATGGCCCAGCAGGACACCACCGGGTGGGACATGCGCTACGGCAGCGGCGGGCCACGCCGGGGGGCCGACGTCGGCGGCATGATCCTCGGCGGCATCCTCATCGACTCGATGATGCGCGGCGGGCGGCGGCGAGGCCGCTTCGGCTCGACCGGCGGGTTCGGCGGCGGCTTCGGTGGTGGTCTCGGTGGTGGCGGCCGCGGTGGCTTCGGCGGCGGCTTCGGCGGCGGCTTCGGTAGCGGCGGAGCCGGAGGCCGGTTCTGA	MQIVIPSLRTERRRPVSPVVAVLTLAVAVAALGAVATGPAHAVGPVTAEAPLSELDGDVTDVAGVLDETGAAAVQSSLDELATETPYQLFVVYVDRFDGLDGREWADATANNARLGTEDVLLAVATEDRLYGMSWDNNIDLSEQQLDAVRDAAVDALRADDWAGATVAAVDTLLAVTGSDGASSGAAAGTGTDDGGGGGVPGILVWVAIGAVVVVGGFFLVRRARQKDADLARRGAAAAARRRRTASSAAKRPGRGRTAGPDPDRFAGLGLEEMRQRAGSALVAVDDAVKTSEQELAFAEAEFGVEETREFSAALDAARQEVAAAFHARQVLEETPDDTFGEHEELAAIITRCETAAASLDAQTDAFDELRRIRARAPEILDEAERRAGEISARIEIARHTVAGLAATYPASALASISTNPDQAETLVANAREIVESGREAVRKRKRAVAVIDARAAQNALGQAMTLLESVASAGDDLADAGTRLETGIASITQDIVDADRLAPGDERVRSAAAEAREAADQARDAKEGGDPLAALTRLAAAEAALDDALAPSRQQAESDARARALLRDVLGRTESHLRSTRDYITTRRGAVGADARTRLAEAERLVAEARSLQRTDPQAALAAAQQAERYGQQAAQMAQQDTTGWDMRYGSGGPRRGADVGGMILGGILIDSMMRGGRRRGRFGSTGGFGGGFGGGLGGGGRGGFGGGFGGGFGSGGAGGRF				NA	NA	NA	NA	NA
AK001_03401	741			hypothetical protein	ATGAACCAGAAGCAGAGCATCCTCGGCCGGATCGGCCAGCTCGCGAAGGCGAACATCAACGCGCTCATCGACCGCGCCGAGGACCCGCAGAAGATGCTCGACCAGCTCATCCGCGACTACACGAACAACATCGCCGAGGCCGAGCAGGCGATCGCCCAGACCATCGGCAACCTGCGCATGGCCGAGCAGGACTACCACGAGGACACCCAGTCGGTGCAGGAGTGGGGCGCCAAGGCGCTGGCGGCGTCGCGCAAGGCCGACGAGCGGCGGGCGGCCGGCGACACCCCGAACGCCGACAAGTTCGACCAGCTCGCGAAGATCGCGCTGCGCAAGCAGCTCGACGCCGAGAACGAGGTCACCACCGCCCGGCCGATGATCGAGCAGCAGCGGGTCACGGTCGAGAAGCTCAAGACCGGTCTGGCGCAGATGAAGGACAAGCTGGTCGACCTCAAGTCCAAGCGCGACCAGCTCGTCGCGCGGCAGAAGGCGGCCGAGGCGCAGCAGACCGTGCAGGGTGCGATCAGCTCGATCAACGTCATGGACCCGACCAGCGAGCTCAACCGCTTCGAGGAGGCCGTCCGGCGCGAGGAGGCGCAGGCCATGGGGCAGGCGGAGATCGCGGCGTCGTCGCTGGACTCGCAGTTCGCCGAGCTGGAGGGGTCGATGGAGGACCTCGAACTCGAGGCCCGGCTCGCGGCCCTGAAGTCCGGGTCCCCGAAGCCGGGTCAGATCGAGTCCTGA	MNQKQSILGRIGQLAKANINALIDRAEDPQKMLDQLIRDYTNNIAEAEQAIAQTIGNLRMAEQDYHEDTQSVQEWGAKALAASRKADERRAAGDTPNADKFDQLAKIALRKQLDAENEVTTARPMIEQQRVTVEKLKTGLAQMKDKLVDLKSKRDQLVARQKAAEAQQTVQGAISSINVMDPTSELNRFEEAVRREEAQAMGQAEIAASSLDSQFAELEGSMEDLELEARLAALKSGSPKPGQIES	PGPT0014646_743	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014646-pspA-K03969	NA	NA
AK001_03402	231			hypothetical protein	GTGCTCTCGATCGTGCGCAACGTCCGCTGGGCGAGCGTCCTGACCGTCGTCGTGGCGGGGGCGTTCACCCTGGTCGCCCTCTTCGCCGCGCTGCGGGGACGGCCGTGGGCCTGGGTGATCTTCGGGCTCTCCGCGGCCGTGCTGATCCGCGAGGTCCGGTACCTGCAGCGGGACCGACGGCGGCACGCCGGCTTCGACGCCCCCGACCGCCGCGACAACCCGCCGACGTAG	MLSIVRNVRWASVLTVVVAGAFTLVALFAALRGRPWAWVIFGLSAAVLIREVRYLQRDRRRHAGFDAPDRRDNPPT				NA	NA	NA	NA	NA
AK001_03403	573			hypothetical protein	ATGTCGTCGTTGACCACCCGCTACCTCATGACCTGCGCCGCCATCGGCGCGGCCGTGGGCGTGCTCCTCGTCCCCGCGAACTTCGTCAGCACGCCGCTGGCGGCCACCGTCCCGCTCGCCTACGCGCCGCTGGTCGGGCTGTGGGTGATCGGTCCGGTGCTCGCCCTGGCGCTGATCCGCCGCCCGGGCGCCGCGGTGCTGACGACGTTCGTCGCGGGGGTCATCAGCTCCGCCTCCCCGGTGGGCGCCTGGTCGATCGTCACCTGCCTCATGGCCGGCGTCGCGGTCGAGCTGGCGTTCCTCGTGACCCGGTACCGGGTGTGGCGGCCGTGGCTGTTCTACGTCGACGCCCTGGTGTTCGGCGCCGCCTACGTGGCCTCGGGCTGGGTGGCGTTCGGCATGGAGACCATGAGCACGGCCGTGCTGGTGGCGTTCGTGGTGCTGATGATGGGCAGCTTCGTGCTGTTCACCGGGGTCGGGCTGCTGCTCGCGAAGCGGCTCGCCCGGGCGGGTGTCGCCCGTGGGCTCACCCCGGCGTCGGACCGCGAGGTGTCCGAGGCCCTGTCGAGGTAG	MSSLTTRYLMTCAAIGAAVGVLLVPANFVSTPLAATVPLAYAPLVGLWVIGPVLALALIRRPGAAVLTTFVAGVISSASPVGAWSIVTCLMAGVAVELAFLVTRYRVWRPWLFYVDALVFGAAYVASGWVAFGMETMSTAVLVAFVVLMMGSFVLFTGVGLLLAKRLARAGVARGLTPASDREVSEALSR				NA	NA	NA	NA	NA
AK001_03404	765	ykoC		Putative HMP/thiamine permease protein YkoC	ATGAGCGTGCTCGACCTGCGCACCGTCAACCCGCTGGTCAAGGTGCTCGGCCCGATCCCCGTGATGATCTACGTCGTCACGACCCGCGACGTGCTCACCCCGGCGCTCGTCGGGCTGCTCGCCTTCGCCCTCCTGGCGCTGCTGGGTCACCAGCGTCCGCGCGTGCTCGCCGCCGTCGCGCTGGGCACGGTCGCGCTCGTGGCGGTCATGACCGTCTCGTTCGGCCTGCTGACCGACCCCGCGACCGTGGACGACACCACCCTGCTGGCCCGGGTGGGGCCGCTCGAGGTGTGGTCCGGCGCGCTGGCCACGGGTCTGGCCACCGCCGTGCGGACCGCCGCGCTGCTGCTGCTCGTGCTGCTCGGCGGGCTGACGACGTCGGGCGCGGACCTCGTGCGGGCCATGACCCAGCAGCTGCGGCTGCCGTACCGCGTCGGGTACGCGGCGCTCGCGGCCCTGCGGTTCGTGCCCCGCTTCTCCCACGAGCTGGAGGTCGTCCGCGGCGCCCACCGGGTGCGCGGGGTCACCGCGGGACGAGGGCCGGTCGGCGCCGTGCAGCGCCAGGCCGGGTACGTCGTCCCGCTGCTGGCCGGCGGCATCCGGCACGCCGAACGGGTCTCCCTGGCGATGGAGGCCCGCGGGTTCGGCGCGCACCCGACCCGGACCGAACGGGTCGTGGTGCCCTTCGGTGCGCGCGACCTCGTCCTGCTCGCCGTCCTGTGGGCGGGGGCCGCCGCCTGCGTCCTGCTCGCCGCCTCCGTCTGA	MSVLDLRTVNPLVKVLGPIPVMIYVVTTRDVLTPALVGLLAFALLALLGHQRPRVLAAVALGTVALVAVMTVSFGLLTDPATVDDTTLLARVGPLEVWSGALATGLATAVRTAALLLLVLLGGLTTSGADLVRAMTQQLRLPYRVGYAALAALRFVPRFSHELEVVRGAHRVRGVTAGRGPVGAVQRQAGYVVPLLAGGIRHAERVSLAMEARGFGAHPTRTERVVVPFGARDLVLLAVLWAGAAACVLLAASV	PGPT0004015_1269	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785	NA	NA
AK001_03405	1776	ykoD_2	COG1122	Putative HMP/thiamine import ATP-binding protein YkoD	GTGACCTACCCCCTGCTCGACGTGCGCGGCCTGCGCGTGCGGCACCACGTGCCGCACGACGACGGCGGCCACACGCTCGGCGCGCCCGCGCCCGACGCCGTGGACCTCGCCGTCGCGCCCGGGGAGGTCGTGCTGCTCCTCGGGCCGTCCGGCTGTGGCAAGTCCACCCTCGCGCTGGCCACCAACGGGCTCGTGCCGCACGTCCTTCCCGCCGAGGTCACCGGGACCGTCACCACCGCGGGCCGCGACGTCGCCACCACCCGGACGCCCGAGCTCGCCGGGGACGTCGCGATGGTCTTCCAGGACCCCGACGCCCAGGTCGTCACCGGCTCCGTGCTCGACGAGGTCTGCTTCGCCCCGGAGAACCTGTGCCGGCCCGCCGACGAGGTGCTCGCCCGCGCCGAGACCGCGCTGCGGCAGGTCGGGCTGTGGGAGCGGCGCGGCGACGACCCCGCCGTGCTGTCCGGCGGCGGACGGCAGCGGCTCGCGATCGCCTGCGCGCTCGCCGCCGGGGCCCGGATGCTCGTCCTCGACGAACCCACCGCCAACCTCGACCCCGCCGGCGTCGAGGAGGTGTACGCCGTCCTGCGCTCCGTCGTCGGCGCGGGGGACCGGGGCGTGCTACTCGTCGAGCACGACCTCGACGTCGCCGCGGCGTTCGCCGACCGGGTCGTGGTGCTCGACGGCGCCGGCCGGCCGGCCGCCGACGGCCCCGCGCGCGAGGTGCTCACCGGGCAGGCCGAGCGACTGGCCGCCCTCGGCGTGTGGCTGCCCACCGCGACGCTCGCCGGCCTGCGGCTGCGCGCGGCCGGGGTCGGGATCGACCCGCTGCCCCTGACCCCCGACGAGCTCGCCACCGGGCTCGAGCGCCTCGACACCGCCGGGCGGCTGCCCGCCCCGGCGACCGCCGTCCACCCGACCGCCGCCGCACCGGAGCCGGCCCGCGACACCGTGCTCGCCGTCGACCACCTCACCGTCCGCCGCGGCGGACGCACCGTCCTGGACGACGTGTCCCTCGCCGTCGGCCGCGGCGAGCTCCTCGCCGTCGTCGGCGCCAACGGCGCCGGCAAGAGCACCCTGGCCCAGCTCGCCACCGGCGTGCTGCGCCCCCGGCGCCGCGACGTGGCCGGCACCGTCCGGGTCGCCGGGCTCGACCTCCGGCGCGCCGACGTGCGCGACCTCAGCGCCGCCGTCGGCTTCGTGTTCCAGAACCCCGAGCACCAGTTCGTCACCGGCCGCGTCGACGACGAGCTCGCCGTCGGGCTCCGCGCCCGCGGCCTGCCCGCGGACGAGGTCGCCGACCGGGTCGACCAGGTCCTCGACCGCCTCGGCCTGACCGCTCTGCGTGACCGGCACCCGTTCTGGCTCTCCGGCGGTCAGAAGCGCCGGTTGTCCGTCGGCACCGCGCTGGTCTGCCGCCCCGAGGTGCTCGTCCTCGACGAACCCACCTACGGCCAGGACCGCGAGCGCGCCGTCGAGCTCCTCGACCTGCTCACCGCGCTGCACGACGACGGCACCACCGTCGTCGTGGTCTCCCACGACATGCAGCTCGTGGCCGAGCACGCCACCCGCGTCGTGGCGCTCGCGGACGGTCGCGTCGTGGCCGACGGACGTCCCGACGTCGTGCTCGGCCGGCCCGACCTGCTCGCCGCCGCCGGGCTGCGACCCCCGCCGCTGGCCCGCGCCACCCGCGACCTGCGCGACCCCGCCTGGCGGGCCGTGACCCGGCTCGCGGACCTGCCGCTCACCCCCGCCCTGGCGGAGGTGGGCCGATGA	MTYPLLDVRGLRVRHHVPHDDGGHTLGAPAPDAVDLAVAPGEVVLLLGPSGCGKSTLALATNGLVPHVLPAEVTGTVTTAGRDVATTRTPELAGDVAMVFQDPDAQVVTGSVLDEVCFAPENLCRPADEVLARAETALRQVGLWERRGDDPAVLSGGGRQRLAIACALAAGARMLVLDEPTANLDPAGVEEVYAVLRSVVGAGDRGVLLVEHDLDVAAAFADRVVVLDGAGRPAADGPAREVLTGQAERLAALGVWLPTATLAGLRLRAAGVGIDPLPLTPDELATGLERLDTAGRLPAPATAVHPTAAAPEPARDTVLAVDHLTVRRGGRTVLDDVSLAVGRGELLAVVGANGAGKSTLAQLATGVLRPRRRDVAGTVRVAGLDLRRADVRDLSAAVGFVFQNPEHQFVTGRVDDELAVGLRARGLPADEVADRVDQVLDRLGLTALRDRHPFWLSGGQKRRLSVGTALVCRPEVLVLDEPTYGQDRERAVELLDLLTALHDDGTTVVVVSHDMQLVAEHATRVVALADGRVVADGRPDVVLGRPDLLAAAGLRPPPLARATRDLRDPAWRAVTRLADLPLTPALAEVGR				NA	NA	NA	NA	NA
AK001_03406	2001	ubiB		protein kinase UbiB	ATGTCCTGGCTCTCGGGTCTGTTCGCCCTGGTCGTCACGCTCGCCTCCGGGCTGCTCCTGGCGGCCGCCGCACGCCGCACGCTCGACGCCCCCGTGGGCTGGATGCGCTCGATCGCCACGACGCTCGTCGTGTTCGGCCTCGGTTCCGCGCTGCTGGAGACCGGCACCGACGCCCTGGCGGTGGACATCACCAGCACCGGCTCGGCGCTCGGCCTGGGACTGCTGCTCCTGGTCGCCTGGGCCTGGATGTTCGCCGTCGCGCTCGGCGTGCTGCTCGTCCTCGAGGTCCTGGTACCCACCGGCCGGCTGCCCACCCCGCTGCAGGCGCTGCGTGGCCTGCGCGAGGGACGGCAGGAGTCCCGCCGGTACGCCCAGGTCGTGGCGATCCTCGTCCGCCGCGGCCTGGGCGGGTTCCTGCGCCGCGGGGCCGACGGCGAGACCGAGCGCTCGGCCGGCGCGCTCGCCGCGCACGCCCGGTCGTTGCGCCTGGCGCTGTCCGACGCCGGCGTGACCTACGTGAAGTTCGGCCAGATGCTCTCCAGCCGCCGCGACCTCGTGCCCGACGTCGTCGCCGACGAGCTCACCCAGCTGCAGGCCCGGGTGCCGCCCGAGTCGTGGGAGACGGTGCGCACCGCCGTCGACGACGCCCTCGGCCGCCCCCTGGAGGAGGCGTTCGCCCGGTTCGACCGGACCCCGCTCGCCAGCGCCTCGGTGGGCCAGGTGCACACCGCCCGGCTGCTCGACGGGCGGGAGGTCGTGGTCAAGGTGCTGCGACCCGGCGCCCGCGCCCAGGTCGAGGTGGACCTGCGCATCCTCGGCCGGCTCGCCCGGCGGCTCGAGCGGGACACCCAGTGGGCCCGCTCGCTGGGCGTCGTGGGCCTCGTCGCCGGGTTCGCGGCGTCGCTGAGCGAGGAGCTCGACTACACCGTCGAGCTCGGCAACACGCTCAACCTCGACCGGGCGCTGGCCGCGACGTCGGGGGGCGTCGACCCTCGCGTCCAGCTGCCCGTCATGCACCCGGAGCTCTCCGGCCCGACGTTGCTCGTCATGGACCGCATGGAGGGCGTCCCGCTCGGCGAGGCCGCCGACGTGCTCGCCGGGATCGACGCCGAGGAGCGCCGGCACATGGCGGACGCCCTGCTCGGCAGCGCGATGCGCCAGCTCGTGGTCACCGGGGTCTTCCACGCCGACCTGCACCCCGGCAACATCCTCGTGCGCCCGGACGGCACGCTCGGCCTGCTGGACCTCGGCGCCGTGGGCCGTATGGACGAGTCCGAGCGCATGGCGCTGGGCGCGTTCCTGCTCGCCGTCCAGGGCGACGACTCGATCGCGGCCCTCGACGCCCTGCGCGAGCTGCTCGACCAGCCCGGCCACCTGGACGCCCGCGACGTCGAACGGCGGCTCGGCGCCATCATCGTCCGGTTCCGGCACGGCACGGGGCCGTCCGGCTCCGGCGACCTGTTCGGCGCGATGATCTCCCTGTTCGCCGACGCCGGCATGACGGTCCCGCCCGGCCCCGCCTCGGCCCTGCGCACGATGGCGTCGCTGGAGGGGGCGCTCGCCCTGGTCGCGCCGGGCTACGACCTCGTCGCGGCCGCGCAGGAGATCGGCGCGCCGCTGCTGCGGTCCACGACGGGCCCCCGCGCCGTCCGGGACCGGGTGACCCGCCAGCTCGCGGGCATGGCGCCGTCGCTGCAGCGCCTGCCGCGCCGCCTGACGCAGGTCGTCGAGGACCTCCAGGACGGGAACCTGACCGTCACCGTGCGCTCCTTCGCCCACCCCGAGGACCGCACGTTCCTCACCTCGCTGGTCCAGCAGCTCGTCACCGCGGTCATCGCCGCCGCCTCGCTGGTGGGCGCCGTCCTGATGATCGTCTCCCCCACCGGGCCGATGCTCATGCCCGGCATCGACCTGTACTGGGTGCTCGGCGCGGGCCTGGCCTTCGTCGGCACGCTGCTCAGCGTCCGGGTCCTGGTCTTCGCGCTGCGCGCGCGGCGGTGA	MSWLSGLFALVVTLASGLLLAAAARRTLDAPVGWMRSIATTLVVFGLGSALLETGTDALAVDITSTGSALGLGLLLLVAWAWMFAVALGVLLVLEVLVPTGRLPTPLQALRGLREGRQESRRYAQVVAILVRRGLGGFLRRGADGETERSAGALAAHARSLRLALSDAGVTYVKFGQMLSSRRDLVPDVVADELTQLQARVPPESWETVRTAVDDALGRPLEEAFARFDRTPLASASVGQVHTARLLDGREVVVKVLRPGARAQVEVDLRILGRLARRLERDTQWARSLGVVGLVAGFAASLSEELDYTVELGNTLNLDRALAATSGGVDPRVQLPVMHPELSGPTLLVMDRMEGVPLGEAADVLAGIDAEERRHMADALLGSAMRQLVVTGVFHADLHPGNILVRPDGTLGLLDLGAVGRMDESERMALGAFLLAVQGDDSIAALDALRELLDQPGHLDARDVERRLGAIIVRFRHGTGPSGSGDLFGAMISLFADAGMTVPPGPASALRTMASLEGALALVAPGYDLVAAAQEIGAPLLRSTTGPRAVRDRVTRQLAGMAPSLQRLPRRLTQVVEDLQDGNLTVTVRSFAHPEDRTFLTSLVQQLVTAVIAAASLVGAVLMIVSPTGPMLMPGIDLYWVLGAGLAFVGTLLSVRVLVFALRARR	PGPT0009520_25	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009520-ubiB|aarF-K03688	NA	NA
AK001_03407	783			hypothetical protein	ATGACCGCCGCACGGACGCAAGCTCACGCCCAGGCCGTCGACGCCGCCATCGACCTGTTTTCCCGCCAGGGTTACGAGCGGACCACCGTCGAGGAGATCGCCGACGCCGCGCAGGTCAGCCGGGCCACGTTCTTCCGGCGGTTCCGGTCCAAGGAGGACGTGGTCTTCGCCGACCACGAGCTGCTGCTGGAGGAGGTCGTGGTGATGCTCGCCGCGACGCGTCCCGAGGCCCGGGCCAGCGAGGAGTCCAACAACCGCGACGCCGCGTGGGACCCCGCCGTCGACCCGTACCTGGAGGTGTGCCGGGCCGCGCGCCTCGTGTTCGACCACCACGTCGGCCAGCGCGAGACCTCCCTGGCCCGGCACCGGCTGCTGCAGCAGGTCCCGGCCCTGCGCGACCGCGAGCTCGTCACCACCCACCGCTACGAGCGGGCGTTCACCGCCTACCTGCGCGACACCCTGCCGGCCGAACGGTCGTCGTCGACGATGTCGATCGCCTTCGCCGCCTCGGTGGTCGCCGTCCACAACGCGGTGCTGCGCCGCTGGCTGCGCAACCCGTACCTGGACCTGCGCCCCGACCTGGAGGAGGCGTTCGCGGACCTGCGCCGCGTCGCCGCCGCGCCGTCGGAGGCGACCGCCGACCCGGCCGCGCTCGCCCCGTCGGAGGCTCCCCCGGAGCCGGACGGCCGCGGACCGGGCAGCAAGCGCGTGGTCGTGGCCGTCCTGGAGGAGGGCGCCGGGCCGGACGACGTCGCCCGCGCCGTCCGCGACGTGCTCGCCTGA	MTAARTQAHAQAVDAAIDLFSRQGYERTTVEEIADAAQVSRATFFRRFRSKEDVVFADHELLLEEVVVMLAATRPEARASEESNNRDAAWDPAVDPYLEVCRAARLVFDHHVGQRETSLARHRLLQQVPALRDRELVTTHRYERAFTAYLRDTLPAERSSSTMSIAFAASVVAVHNAVLRRWLRNPYLDLRPDLEEAFADLRRVAAAPSEATADPAALAPSEAPPEPDGRGPGSKRVVVAVLEEGAGPDDVARAVRDVLA				NA	NA	NA	NA	NA
AK001_03408	699	ribM		Riboflavin/roseoflavin transporter RibM	ATGATCGAGTGGTTGTTCGACGCCACCTTCACGATCGGCGACGAGCAGATCCTGTGGCGCGAGGTGATCGGCAACGCCTTCGGGCTCGCGTCGGCCCTCGGCGGGATGCGCCGCAAGGTGTGGGCGTGGCCGGTGGGCATCGTCGGCAACGTGCTGCTGCTGACCGTGTTCCTCGGGTCGGTGTTCGGCGACGCGAGCCGGGCCGACATGCTCGGTCAGGCCGGCCGGCAGGTGATGTTCATCGCCGTGTCCGTCTACGGCTGGATGCGGTGGCGCGAGACCCGGCGCCAGGACCTGGAGGTCCGCGCGGACGGCAAGGTGCCGTCGTCGGGCGCCGAGGGGGTGCACCCGCACTGGGCGACGTGGCCGCAGCGGGCGTTCCTCGTCGGGGCGATGGTCGTCGGCACGCTGGCGCTGACGCCGCTGTTCCGGGCGCTGGGCTCCTACGAGCCGGTGTGGGCCGACGCGTGGATCTTCATGGGCTCGCTCCTGGCCACCTACGGCATGGCTCGCGGCTGGGTGGAGTTCTGGCTGGTCTGGGTCGCCGTCGACCTGGTCGGGGTGCCGCTGCTGTGGTCGGCCGGCTACTTCGCGACGTCGCTGATGTACGTGTTCTACGGCGCGTTCACCCTGGTCGGCTTCTTCGTGTGGTGGCGGGTGCACCGCCGCGAGCAGGCCGCGGTGCCCGACCCGGGCTGA	MIEWLFDATFTIGDEQILWREVIGNAFGLASALGGMRRKVWAWPVGIVGNVLLLTVFLGSVFGDASRADMLGQAGRQVMFIAVSVYGWMRWRETRRQDLEVRADGKVPSSGAEGVHPHWATWPQRAFLVGAMVVGTLALTPLFRALGSYEPVWADAWIFMGSLLATYGMARGWVEFWLVWVAVDLVGVPLLWSAGYFATSLMYVFYGAFTLVGFFVWWRVHRREQAAVPDPG				NA	NA	NA	NA	NA
AK001_03409	690			hypothetical protein	ATGCTCATCGCCGAGGACCTGCTGCTGCTCACCTACGACGACGACACCGGCACCCCCGACGCCTGGGTGACCAACCTGGACTACCGCCTCGGCGGTGCGCTGCTGCTCGAGCTCGCCCTGGCCGGTCGCGTGGACGTGGCCGGACCGGGCACGACGACGGCCGCGGGCTCGGCCGCGCGGGCCGGCACCGTCGTCGTGGTGGACCCCTCCCCCACGGGCCACCCGGTCCTGGACGGGGCGCTCGCCGTCGTCGGACGCCGGCCCCGCAAGCCCAAGAACCTCGTCGCGCCGCTGTCGAAGGGCGTGCGACGGTCCCTCCTGGCCGGGCTGGCCGAGCAGCGGGTGCTGCGGCGCGAGGAGGGTCGCGTGCTGGGGATCTTCCCGCGGACGACGTGGCCGGCCGCGGACTCCTCGCACGAGCTGGCGCTGCGCGCCGAGTGCGAGGCGGTGCTGCTCGGAACCCGGCAGCCCCGCCCGGAGACGGCCGGACTGCTCGCGGTGGCGCAGGGGACGTCGCTGGTGAAGCGGCTCGTGCCGCGCGAGCGTCGGCGCGAGGCCGAGGCACGCGCGAAGCAGCTCGTGAGGTCGTCCTGGGCGCACGAGGCCGTGAAGAAGGCCGTGGACGAGATCAACGCGGCGGTGATGACCGCGGTGATCATCCCGGCCGCGGTCGGGTCGAGCGGGACCTGA	MLIAEDLLLLTYDDDTGTPDAWVTNLDYRLGGALLLELALAGRVDVAGPGTTTAAGSAARAGTVVVVDPSPTGHPVLDGALAVVGRRPRKPKNLVAPLSKGVRRSLLAGLAEQRVLRREEGRVLGIFPRTTWPAADSSHELALRAECEAVLLGTRQPRPETAGLLAVAQGTSLVKRLVPRERRREAEARAKQLVRSSWAHEAVKKAVDEINAAVMTAVIIPAAVGSSGT				NA	NA	NA	NA	NA
AK001_03410	1260	mmgC_2	COG1960	Acyl-CoA dehydrogenase	ATGAGCCGCCCGGCACCCACCCAGATCGGCGTCACCGCGCCCGACTACGACCTCTCGGCGCCCTCGGACGTCGACTACGCCCGCGCGTTCGCCGACGTCGCCCCGGAGGTGCGCGAGCACCAGCTCCGCGCGCGCCGGTTCGTCCAGGACGAGGTGCTGCCGGTCATCGACGGGTACTGGGAGCGCGCCGAGGTGCCGTTCGACCTGGTGAAGAAGCTCGCCGAGCACGACCTGCTGCGCGACGGCGTCGACGTCGCCGGCCGCCCGACGATCTCCCTCATGGCCGAGGGACTGGCCAGCATGGAGATCTCCCGCGGCGACGGCTCCGTCGCGACGATCTGCGGCGTGCAGGGCGGGCTGGCGCTGCGCTCCATCGTCATGCACGGCTCGCCCGAGCAGGTCGAGCAGTACGCCGAGCCGATGGCGCGCGGCGAGATCCTCGGCGCCTTCGCCCTGACCGAGCCCACGCACGGCTCCGACTCGGTCTCCCTGGAGACGACGGCGCGGCGCACCGTGCGCGACGGGGTCGAGGGCTACGTGCTCGACGGTGAGAAGAAGTGGATCGGGTTCGGCTCCTGCGGTGACATCACCGTGGTGTGGGCCCGCCTGGTCGACTCGGCCGAGGGCGCCGGGGACGGCGACGGCCAGGTGCACGGCTTCATCGTCCCGCAGGACGCCCCCGGGTACACCGGCACCACCATCGAGGGGAAGATGTCGCTGCGTGCCATCTGGCAGGCGCACATCGAGCTCGACGACGTGTTCGTGCCCGCCGACGCCGCCCTGCCCGGTGCCACCTCGTTCAAGGCGACCTCCGCCGTGCTGTTCGCGACGCGGCTGACCGTCGCGTGGTCCGCCGTCGGGCACGCCGTCGCCTGCTACGAGGCCGCGCTGGCCTACTCCACGCAGCGCGTCCAGTTCGGCAAGCCCCTGGCCGCCCGGCAGATGGTCCAGGAGCGGCTGACCCGGATGCTGTCCACCGTGACGCAGATGCAGCTGCTCGTGGGGCGCCTGACCGAGCTCGCCGAGGCCGGCGAGCTCACCGGCGAGCAGGCGTCGCTGGCCAAGTACACCTGCACCCGTGGCGCCCGCGAGGTCGCCTCGATCGCCCGCGACATGCTCGGCGGCAACGGCATCCTGCTGGGCAACCGCGTGGCGCGGCACTTCGCCGACATCGAGGCGCTGCACACCTACGAGGGCACCGAGTCGATGAACGCGCTGATCATCGGCCGCGACCTCACGGGGATCTCCTCCTTCGCCTGA	MSRPAPTQIGVTAPDYDLSAPSDVDYARAFADVAPEVREHQLRARRFVQDEVLPVIDGYWERAEVPFDLVKKLAEHDLLRDGVDVAGRPTISLMAEGLASMEISRGDGSVATICGVQGGLALRSIVMHGSPEQVEQYAEPMARGEILGAFALTEPTHGSDSVSLETTARRTVRDGVEGYVLDGEKKWIGFGSCGDITVVWARLVDSAEGAGDGDGQVHGFIVPQDAPGYTGTTIEGKMSLRAIWQAHIELDDVFVPADAALPGATSFKATSAVLFATRLTVAWSAVGHAVACYEAALAYSTQRVQFGKPLAARQMVQERLTRMLSTVTQMQLLVGRLTELAEAGELTGEQASLAKYTCTRGAREVASIARDMLGGNGILLGNRVARHFADIEALHTYEGTESMNALIIGRDLTGISSFA	PGPT0021815_501	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252	NA	NA
AK001_03411	1314	mntH	COG1914	Divalent metal cation transporter MntH	ATGAGCTCGCGTACCGCTTCGCCCCGGGGAGTCCGACGCCGCCTGCGCGTCCTGGCCCTGCTCGGGCCCGCCTTCGTCGCCGCCATCGCCTACGTGGATCCCGGCAACGTCGCGGCCAACCTCACCGCGGGCGCCGAGTTCGGCTACCTGCTGGTGTGGGTGCTGGTCATGGCCAACGCGATGGCGGTGCTCGTGCAGTACCTGTCGGCCAAGCTCGGCGTCGTCACGGGGCGCTCGCTGCCCGAGGTGCTCGGCGACCGCATGTCCCGCCGGGGACGGATCGCGTACTGGCTGCAGGCCGAGGCCGTCGCGATGGCCACCGACCTGGCGGAGGTCATCGGCGGCGCCCTGGCCCTGCGTCTGCTCTTCGACGTGCCCCTGCTGCTCGGCGGTCTGATCACCGGGGTGGTCTCGATGCTGGTCCTGGCGATCCAGCAGCGTCGCGGCCAGCGGGTCTTCGAGACGGTCGTGCTGACGATGCTCGGGGTGATCGTCGTCGGGTTCTGCGCCGGGCTGCTCGTCGCCCCTCCGGACCCGGCCGCCGTCGTCGAGGGGCTCGTGCCACGGTTCGCCGGCACCGACTCCGTGCTGCTGGCGGCCTCCATGCTCGGCGCCACGGTCATGCCGCACGCGATCTACCTGCACAGCTCGCTCGCCCGCGACCGGGTGCGGCACGACCTCGCCGTGCGGCGCGCGATCGCCGACGTCGCCGGATCCGACGCCCGGTCTGACGGCGGGGCCGACGCGGCGCCCGACGAGGCGATGGTGCGGCGCCTGCTGCGGGCCACCCGGGTCGACGTCGTGGCGGCGCTGATCATCGCCGGCGGGGTCAACATCGCGATGCTGCTGCTCGCCGCGGCCAACCTGCCCGGACGGACCGGCACCGACACGATCGAGGGGGCGCACGCCGCTATCGCCGACGCCCTCGGGCCCGTCGTGGCGGTGCTGTTCGGCGTGGGACTGCTCGCCTCGGGGCTGGCGTCCACGGCGGTGGGCGCCTATGCGGGCTCGGAGATCATGGCCGGGCTGCTGCACGCCCGCGTCCCCCTGGTCACGCGGCGGGTGGTCACGCTGGTACCCGCGCTGCTCCTGCTCGCGACGGACGTCTCGCCGACGTACCTTCTCGTCCTCAGCCAGGTGGTGCTCAGCTTCGGCATCCCGTTCGCGATGATCCCGCTGGTGCGCGTCACCGCCGACGCGGGCCTGCTCGGCCGGTTCCGCAACACCCGTGCCACCCAGGGCGCGGCCTGGCTTGTCGCCGCGATCATCGTGGCGCTCAACGTGGCGCTGCTCTGGCTCACGATCGTGGCGTGA	MSSRTASPRGVRRRLRVLALLGPAFVAAIAYVDPGNVAANLTAGAEFGYLLVWVLVMANAMAVLVQYLSAKLGVVTGRSLPEVLGDRMSRRGRIAYWLQAEAVAMATDLAEVIGGALALRLLFDVPLLLGGLITGVVSMLVLAIQQRRGQRVFETVVLTMLGVIVVGFCAGLLVAPPDPAAVVEGLVPRFAGTDSVLLAASMLGATVMPHAIYLHSSLARDRVRHDLAVRRAIADVAGSDARSDGGADAAPDEAMVRRLLRATRVDVVAALIIAGGVNIAMLLLAAANLPGRTGTDTIEGAHAAIADALGPVVAVLFGVGLLASGLASTAVGAYAGSEIMAGLLHARVPLVTRRVVTLVPALLLLATDVSPTYLLVLSQVVLSFGIPFAMIPLVRVTADAGLLGRFRNTRATQGAAWLVAAIIVALNVALLWLTIVA	PGPT0004370_1709	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MNT_TRANSPORT_SYSTEM,PGPT0004370-mntH-K03322	NA	NA
AK001_03412	1347			hypothetical protein	GTGGCCGTGCCCGACGCCGCGGACCCCCGCTCGCCCGAGACGCCGCCCACCCCGACACCGGCCCCGCCGGCCGACCGCGGCGGGCGGCTGCTCGCCTCGCCCTGGCTGCTCGCGCTCGCCTTCGTCGTCGTGCACGCCCGGCTCGTCCACGAGGCGATCACCTGGCAGAACACGATCTTCGGCGACGTCACCCTCTACGAGTGGTGGGCCCGCCACGGCCTGGCGAACGGCGACTGGCCCGTCCTGGACTACGCGTGGGTCTACCCGGCCGGCGCGCTCGTCCCCGTCGGGCTGCCCGGGGTGTTCACCGACGACCTGCTCGGCTACGAGATCGCCTGGACGGCGATGATCGTGCTGCTCGACGCCGTCGCGACCGTGGTGCTGGTGCGCATGACGCCGCGCGGCGTCCTCGGCGCCTGGTGGTGGCTGCTGTTCCTGCTCGCCCTCGGCCCGATCTTCCTCGGCCGGCTCGACGGCGTCGTCGCCCCGATGATCCTCGTCGCGCTGGTCGTGGCACGCCGCCACCCGCGCGTCGCGGTCGCCGTCGCCACCGCGGGTGCGTGGGTGAAGATCGCCCCGGGCGCCCTCGTCGTCGCGATCGCCGCCACCCGCCGCAGTCTGCGCGACCTGCTGCGCACCGTCGTCGTCCCCGGGACCGCGGTGAGCGCCGTCGTCGTCGGGCTGGCCCTGGCCGGCGGCGCGGGCGTGCGCGCGCTGAGCGTGTTCGGCGAGCAGGGCAGCCGCACCCTGCAGGTCGAGTCCGTGGCCGCCACGTGGTTCTCCGTCGCCCGCTGGTGGGACCCCGGCGTGCGCATCGAGTACAACGACGAGATCTTCACCTACGAGGTCCTCGGCGACACCGCCCGCGCCGTGGCGAACACGCTGGACTGGCTGCTGATCCTCGCCGTCCTGGCCGTCGCCGCGCTGACCTGGTGGGCCGCGCGGCGCCACCCGGAGCGGGTGTACGAGATCGTGCTGCTCTCGTCCGCGGCGCAGCTCGTCGCCCTCATCGTGTTCAACAAGGTCGGCTCGCCGCAGTTCGTCGCCTGGCTCGGCCCGGCCGTCGCCGTCGCCCTGGCATCCCTGCCCGAGGGGCGGTCCCAGCAGGCGTGGTGGCCGCCGGCCCTCGGCATGATCCTCGTCGCCTACGCGACCTACCTCGTCTACCCGGTGGCCTACGGCCCGTTCCTCGGCGGCGAGACGTGGATCGTCGTCGTCGAGGCGCTGCGCAACCTCGCGCTCGTCGTGCTCCTGGCCGGCGCCGTCTGGCAGCTCGTGCGTCTCGGCCGGCGGGACCCCGGGGCCCGGGTCGCGGCCACGTCGCCCGGCGGCGCCCGGTCCGCGTAG	MAVPDAADPRSPETPPTPTPAPPADRGGRLLASPWLLALAFVVVHARLVHEAITWQNTIFGDVTLYEWWARHGLANGDWPVLDYAWVYPAGALVPVGLPGVFTDDLLGYEIAWTAMIVLLDAVATVVLVRMTPRGVLGAWWWLLFLLALGPIFLGRLDGVVAPMILVALVVARRHPRVAVAVATAGAWVKIAPGALVVAIAATRRSLRDLLRTVVVPGTAVSAVVVGLALAGGAGVRALSVFGEQGSRTLQVESVAATWFSVARWWDPGVRIEYNDEIFTYEVLGDTARAVANTLDWLLILAVLAVAALTWWAARRHPERVYEIVLLSSAAQLVALIVFNKVGSPQFVAWLGPAVAVALASLPEGRSQQAWWPPALGMILVAYATYLVYPVAYGPFLGGETWIVVVEALRNLALVVLLAGAVWQLVRLGRRDPGARVAATSPGGARSA				NA	NA	NA	NA	NA
AK001_03413	1125	mgtA	COG0438	GDP-mannose-dependent alpha-mannosyltransferase	GTGAGGGTAGCGATCGTCGCAGAGTCCTTCCTTCCGCAGGTCAACGGGGTGACGAACTCCGTCCTGCGGGTCCTCGAGCATCTCCGGCGCACCGGGCACGACGCGCTGGTCCTGGCTCCCGACACCGACGACGGCGAGATCCCGCCGTTCGTGCACGGCGCACCCGTCGTCGAGGTGCCCTCCGTCGGCCTGCCAGGTTATCCCGACGTCCGTGTCGTCCTCGGCCAGCGCACCCGGATCGAACGCACGCTCGCCGCGTTCGAACCCGACGTCGTGCACCTGGCTTCCCCGTTCACGCTCGGGTGGCGCGGCATGCAGGCCGCCGAGTCCCTGGGCGTGCCGACGGTGGCGATCTACCAGACCGAGGTCCCGAGCTACGCGGCCCGGTACGGGATGCGCCACCTCGAGCCGCTGCTGTGGCGACGGGTGCGCAACCTGCACGAGCGCGCCACCGTCACGCTCGCGCCGTCGACGCCCACCATCGACCACCTCCGCGCACGCAGCATCCCGCGCCTGCACCGCTGGGGACGCGGGGTGGACACCGAGCTGTTCCGGCCCGGTGCCCGCGACGCCGCCTGGCGGCGCGACGTCGGCGCCGGCCGGCCGCTGCTCGTCGGGTACGTCGGGCGGCTCGCCGCGGAGAAACAGGTCGAGGCGCTGCGGGTGCTGCACGACCGCGAGGACGTCCGGCTCGTCGTCGCCGGCGAGGGACCCGAGCGGCCGCTGCTGGAGAGCATCCTGCCGGACGCCCACTTCACCGGGCTGCTGCGCGGCGAGGAGCTGGCGCGGGCCATGGCGAGCCTGGACGTGTTCGTCCACCCCGGCGAACTGGAGACGTTCGGCCAGACGCTGCAGGAGGCGCACGCCTCCGGGGTGCCCGTCGTCGCGCCGGCTGCGGGCGGACCGATCGACGTCGTCTCCCACTCGCACACGGGCTGGCTGTACCCGCCGGGCGACCACCGGGCGCTGCGCGCGCACGTCGACGACCTGCTCGGCGACGGCCGCAAGCGCCGGGCGTTCGGTGCGGCCGCCCGCGAACGGGCGCTGGGGCGCACCTGGGCGAAGGTCTGCCACGAGCTGGTGGAGCACTACGAGGCGGCGATCCGAGTGCGTTCGGGGGTGTGA	MRVAIVAESFLPQVNGVTNSVLRVLEHLRRTGHDALVLAPDTDDGEIPPFVHGAPVVEVPSVGLPGYPDVRVVLGQRTRIERTLAAFEPDVVHLASPFTLGWRGMQAAESLGVPTVAIYQTEVPSYAARYGMRHLEPLLWRRVRNLHERATVTLAPSTPTIDHLRARSIPRLHRWGRGVDTELFRPGARDAAWRRDVGAGRPLLVGYVGRLAAEKQVEALRVLHDREDVRLVVAGEGPERPLLESILPDAHFTGLLRGEELARAMASLDVFVHPGELETFGQTLQEAHASGVPVVAPAAGGPIDVVSHSHTGWLYPPGDHRALRAHVDDLLGDGRKRRAFGAAARERALGRTWAKVCHELVEHYEAAIRVRSGV	PGPT0017895_539	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583	NA	NA
AK001_03414	1278	pimC		GDP-mannose-dependent alpha-(1-6)-phosphatidylinositol dimannoside mannosyltransferase	ATGCGGATCGTGCACGTGGCCAACGCCTACGCGCCGCGGTCCGGCGGGATCCGCACGGCGATGCACGCGCTGGCCGGCGAGTACCTCGCGCACGGTCACGAGCCGGTGCTCGTCGTCCCGGGTCCGACGGCGCAGGTCCGGTGGGCCGCGGACGTCCGGGTCGTGCAGGTCCCGGCCCCGCGGGTGCCGGGTGTGCCGGGCTACCGGATGGTCACCCGCCCCGGGCTGGTGCGGACGGTCCTTGAGGACCTGGCACCCGACCGGGTGGAGGTCTCCGACCGGGCCTCGCTGACCGGCGTCGGACTGTGGGCGCGCGACGCCGGCGTGCCGTCGCTGCTCATGCTGCACGAGCGTCTCGACGGGGTGCTGTCCTCCTTCTGGCCGGGCGCCGGGCGCGGCGCCCGGCCCGGGGCGGCGCGGGGTGCGGCCACGCCGCTCGCCGACGGGTGGAACCTGCGCACGCTGTCCCGGTTCGACCGGCTGGTCGCCACGACCGGGTTCGCGGCCGGCGAGGTGACGCGGCTCGTCGAGCAGCGGCCCACGACGGCGCTGCCGCCGCTGCACCGGGTGCCGCTCGGCGTCGACCTGGAGCGGTTCACCCCCGACCGGTACGACGGCGCGGTGTCCCGCCGGCTGGCGCCGTCCGGCGAGGCGACGGTGCTGGTGATGAGCCGGCTGTCCACGGAGAAGCGGGTCGACCTGGCCGTCGACGCCGTCGCCCGGCTGACCACGGAGGGCGTCCGGGTGCGGCTCGTCGTCGCCGGCAGCGGACCGCGGCTGGCCTCGCTGCACGACCGGGCCGAGCGGCTCGGGATCGCCCACCGGTTCTGCGGTTTCGTGCCCGACCGGGACGAGGTGGCGGCGATGCTGGCCAGCGCCGATGTCGTGCTCGCCCCCGGTCCGATCGAGACCTTCGGGCTGGCCGCGCTGGAGGCCCTGGCCTCCGGCACGCCGGTGGTGTGCAGCGACACCAGCGCGCTGCCCGAGGTGGTCGGTGCGGCCGGGGCGTCGGCCGCACCCGAGCCGGAGGCGCTGGCGCTGGCCCTGGCCGACGTGCTCTCCCGGCCGGTGGCCGAGCGCCGGGAGGCGGCGCGCGAGCGGGCCGAGCTGTTCCCCTGGTCGGCGACGGGGCGCGCGATGCTCACCCTGCACGGCGCGGCTCCCCCACCCGCTGCGCCCCCACCGGCTGCTCCCCCACCTGTTGTGGGCGTGAAATCTGCAGTGTCGACCCCGGTTCGGCCTGCAGATTTCATGCCCACAACCGGAGGTGTGCGATGA	MRIVHVANAYAPRSGGIRTAMHALAGEYLAHGHEPVLVVPGPTAQVRWAADVRVVQVPAPRVPGVPGYRMVTRPGLVRTVLEDLAPDRVEVSDRASLTGVGLWARDAGVPSLLMLHERLDGVLSSFWPGAGRGARPGAARGAATPLADGWNLRTLSRFDRLVATTGFAAGEVTRLVEQRPTTALPPLHRVPLGVDLERFTPDRYDGAVSRRLAPSGEATVLVMSRLSTEKRVDLAVDAVARLTTEGVRVRLVVAGSGPRLASLHDRAERLGIAHRFCGFVPDRDEVAAMLASADVVLAPGPIETFGLAALEALASGTPVVCSDTSALPEVVGAAGASAAPEPEALALALADVLSRPVAERREAARERAELFPWSATGRAMLTLHGAAPPPAAPPPAAPPPVVGVKSAVSTPVRPADFMPTTGGVR	PGPT0024305_86	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024305-pimC-K14335	NA	NA
AK001_03415	930			hypothetical protein	ATGAGCGCGGGACCCGTCGTCGTCGGCCTCGGCGACTCCATCACGGCCGGGGTCGGCGACGCCGTCACCGCCGACGCCCCCTACGGTCCCGGCTGGGCGGCGCACCTGGCCACGCTCGCCGGGGCGGCCCGTTTCACCAACGTAGCCCGGAACGGGGCGCGAGCCCATCTCGTCGTGGCCGAACAGCTCGACGCGGCGCTGGCCGTGCAGGCCGACGTCGCCACCCTCGTCGTGGGTGGCAACGACGCGCTGCGGACCGAGTTCTCACCGGTCGACGTCGGCCGCCACCTGTCCACCTGCGTGCGGGCGCTGCGGGCCCGGGGCACCGCCGTCGTGCTGGCGACACTGCCGCCGATCGGCCTGTTCGAGCTGTTCCCCGGCCGGGCCCGGAAGGTCATGCGCGCACGCATGGACGCCGTCAACGCCATGGTGCGCGCCACCGCGGCGCGCGACCAGGGCACCCGCGGGCCGTCCGTGGTGCTGTTCGACATCGCCGAGGCCGTCCGGCGCGCTGGGCTCGGGGCCTGGTACGTCGACCGGGTCCACCCCTCGCCGCTCGGGCACCGGCACATCGCCGCGGCGGGCTGCGCTGCCCTGCGGACGGCGCTGCCGGAGCTCACCGGACCCGCTAGCGTCGGTGGCGCTCAGGGTGCGCCGGTTACCGAGCGGGAGACATGCCGCGTGCTGCTCGACCGGCTCCCCGCACCTCCACCACCGCCGTCGGCCTGGCAACGGGCCGCCTGGCTGACGATCGCCGGCTTCCCCTGGGCGGTGCGGCGCGGGCACGACTTCCTGCCCGGGCTGATCCGCGCCGTGCTCGACGACCTGCGCGGTACCGCCGTAGGCCCGGTCGACCTGGACCTCCCGGCGTTGTCTGACGTCGGGGCTCCCGGGTCGGCGACGGCGGACTCGCTGCTGCCCGGGCGCTGA	MSAGPVVVGLGDSITAGVGDAVTADAPYGPGWAAHLATLAGAARFTNVARNGARAHLVVAEQLDAALAVQADVATLVVGGNDALRTEFSPVDVGRHLSTCVRALRARGTAVVLATLPPIGLFELFPGRARKVMRARMDAVNAMVRATAARDQGTRGPSVVLFDIAEAVRRAGLGAWYVDRVHPSPLGHRHIAAAGCAALRTALPELTGPASVGGAQGAPVTERETCRVLLDRLPAPPPPPSAWQRAAWLTIAGFPWAVRRGHDFLPGLIRAVLDDLRGTAVGPVDLDLPALSDVGAPGSATADSLLPGR				NA	NA	NA	NA	NA
AK001_03416	438			hypothetical protein	ATGACTGAGATCTTCGAGGCGCTCTCAGGAGACCCCACCGCCCAAGCGGAGAAGCGACTCACGGCACTGCCCGGCGACTTCGTGCACGCGCCGACAGGCACGTTCGTCGAGATCGACGAGTCACAGCACTTCACCTCGCATCGCTTGACGACGCTCGACCTGTACCCCGCCGGTGCACCACTGGCGTTCGATCTCGAGCAGTACCGCGACCTTTGCGTCCGATGGGCGCCACGGTCGGACAGGTACTTCGCGTCGAAGGCAGCCGTCGCCTTCGGACCAGGCGGGCGCCAGCGACAGCGCGCGTATCACGACGCGCTCCGCGACCTCGCGACCCCACCGATGGGTCACCCGCCGGTCGTGCGCGTTCCCGCTCCCGACCGGGACGGTGTCGCGGCCTATGCACGGGTCCGTCAGCAGCTGCGTTCGCTGATCCGCTGA	MTEIFEALSGDPTAQAEKRLTALPGDFVHAPTGTFVEIDESQHFTSHRLTTLDLYPAGAPLAFDLEQYRDLCVRWAPRSDRYFASKAAVAFGPGGRQRQRAYHDALRDLATPPMGHPPVVRVPAPDRDGVAAYARVRQQLRSLIR				NA	NA	NA	NA	NA
AK001_03417	513			hypothetical protein	ATGCTCATCGCGCGGCCGTTCACCTCGGCAGCCATCAAGCTCCATCCGTTCGACTGCGGAGAACCGGAGCTCAACGAATGGCTCGCTCGCTACGCCGGCCAGAGCGAGAAGAAGGACAACGTCCGCACCACTCTGCTGCTCGACGAGGAAGCCCAGCGCGTCGCCGGCTACTTCTCCATGCGCACCTTCGAGCTGTCAGCGGCCGATGGCGAGTCAGCGATGGGACTCAGGCGTCGCTACCCGGTGCCGGCGATGCTCCTTGCGCGGCTCGCTGTCGACAACGACTACAAGGGTCAGGGCGTCGGCAAGCTGCTGCTCGTCGACGCCCTCCAACGGCTGCTAGCAGCGGCGGACAACGTCGGCTTCGAGGTCGTCGTCGTGCACGCGCTCCACGAGGACGCTGCCTGCTTCTACCTCAAGCACGGCTTTCGCCGGTTTCTGGACCACGAGCTCAGTCTGTTCCTCACGACGAAGGACCTGCGAGCGACGTTCGCTGCAGCGCAATCCAGTTGA	MLIARPFTSAAIKLHPFDCGEPELNEWLARYAGQSEKKDNVRTTLLLDEEAQRVAGYFSMRTFELSAADGESAMGLRRRYPVPAMLLARLAVDNDYKGQGVGKLLLVDALQRLLAAADNVGFEVVVVHALHEDAACFYLKHGFRRFLDHELSLFLTTKDLRATFAAAQSS				NA	NA	NA	NA	NA
AK001_03418	309			hypothetical protein	ATGCCTACCGCCAACGCGCGGTCAGAGCGTCTGCACATGCGCCTGTCGCCCGATGCTCTCGCGACCATCCGTGAGGCCGCCGCGGCGCAGCAACAGGACGTGTCGGCATTTGTGCTCGGGGCGGCTATGGAGCACGCCCGTGAGGTCCTGCTACGTGACCGCGTCCTGCAGCTCACCCCTCGCGAGCTCGACCAGGTCGACAGCGCACTCGACGCCGAGCCTCACGTGGTCCCGGAACTTGCCGCGCTGATCGCTGCGGTCCGACGGGACACGCCGCAGCACGGCAAGCAGGAGCTGACGTCGCACTGA	MPTANARSERLHMRLSPDALATIREAAAAQQQDVSAFVLGAAMEHAREVLLRDRVLQLTPRELDQVDSALDAEPHVVPELAALIAAVRRDTPQHGKQELTSH				NA	NA	NA	NA	NA
AK001_03419	144	sodA_2	COG0605	Superoxide dismutase [Mn]	ATGTGGGAGCACGCCTTCTACCTGGACTACCTCAACGTCAAGGCCGAGTACGTCAAGGCGTTCTGGAACCTCGCCAACTGGCAGGACGTCGCCGCCCGCCTCGAGCGCGCCCGCACCGCCACGAACGGCCTCCTGACCGCCTGA	MWEHAFYLDYLNVKAEYVKAFWNLANWQDVAARLERARTATNGLLTA	PGPT0004190_2628	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564	NA	NA
AK001_03420	402			hypothetical protein	GTGAAGATCGAGATCCGGCTCTTCGTCTGGACCGCGCCGTTCTTCGTGGTCGTCGGCGTGCTGTACGGGCTGTTCACCGGCTTCACCGAGCCGGTCGGCTACCTGGGCATCCCGCTCGTCGGAGCCCTCATGGCCATGATCGGCGCCTACCTGGTCGTCCAGGCGAAGCACACCGACCCGCGTCCGGAGGACGACGAGAACGGCGAGATCGAGCAGGGCGCCGGCGACCAGGGCGTCTACGCCCCGTGGTCCTGGTGGCCGCTCGTCATCGGTGCCGCCGCGGCCGCCGCCTTCCTCGGGCTCGCCGTCGGCTGGTGGGTGTTCTACATCGCCACGATCGTCGGCGTCATCGGGCTCGTCGGCTGGGTCTTCGAGTTCAGCCGGGGCCAGCACGCCCACTGA	MKIEIRLFVWTAPFFVVVGVLYGLFTGFTEPVGYLGIPLVGALMAMIGAYLVVQAKHTDPRPEDDENGEIEQGAGDQGVYAPWSWWPLVIGAAAAAAFLGLAVGWWVFYIATIVGVIGLVGWVFEFSRGQHAH	PGPT0004025_23	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274	NA	NA
AK001_03421	1836	ctaD	COG0843	putative cytochrome c oxidase subunit 1	ATGGCCACCACCGAGACCGCCTACGGCGCCGAGGTCGTCCCCGGCCTGCAGCCGAGGCGCCAGACGCTGGGTCGCACCGTGGTCAAGTGGATCACCTCCACCGACCACAAGACGATCGGGTACATGTACCTCATCACGTCGTTCCTCTGGTTCGCCGTGGGAGGCATCCTCGCGCTGCTCATCCGCGCCGAGCTCTTCGAGCCGGGCATCCAGCTCGTGCAGAGCAAGGAGCAGTACAACCAGCTCTTCACGATGCACGGCACGATCATGCTGCTGCTGTTCGCGACGCCGCTGTTCGCGGGCTTCGCCAACGTCATCATGCCGCTGCAGATCGGTGCGCCGGACGTCGCGTTCCCGCGTCTGAACATGTTCGCGTACTGGCTGTTCCTGTTCGGCGGGCTCATCGCCGCCGGCGGCTTCTTCACCCCGCAGGGCGCGGCCTCCTTCGGCTGGTTCGCCTATGCGCCGCTGTCGAACACGACGTTCAGTCCAGGCCTCGGGGGAGACCTGTGGGTCTTCGGCCTCGCCCTGGGTGGTTTCGGCACCATCCTCGGTGCCGTCAACTTCATCACCACGATCATCTGCATGCGTGCGCCCGGCATGACGATGTTCCGGATGCCGATCTTCACCTGGAACACCCTGGTCACCAGCCTGCTGGTCCTCATGGCGTTCCCGCCGCTGGCCTCGGCGCTGTTCGCGCTCGGTGCGGACCGCCGGTTCAACGCCCAGGTGTTCAACCCGGACAACGGGGGAGCGGTGCTGTGGCAGCACCTGTTCTGGTTCTTCGGCCACCCCGAGGTGTACATCATCGCGCTGCCGTTCTTCGGCATCGTGTCCGAGATCTTCCCGGTCTTCAGCCGGAAGCCGATCTTCGGCTACAAGGGCCTCGTCTACGCGACGATCGCGATCGCCGCCCTGTCGGTCACCGTGTGGGCCCACCACATGTACGTCACCGGTGCGGTGCTGCTGCCGTTCTTCGCCTTCATGACGATGCTCATCGCGATCCCGACCGGCGTGAAGTTCTTCAACTGGATCGGCACGCTCTGGCGAGGGAAGATCACCTTCGAGACACCGATGCTCTGGTCGATCGGCTTCCTGGTGACCTTCCTCTTCGGTGGTCTGACCGGCATCATCCTGTCCAGCCCGGCGCTCGACTTCCACCTGTCCGACTCGTACTTCGTCGTGGCGCACTTCCACTACGTCGTCTTCGGCACCGTGGTGTTCGCGATGTTCGCCGGCTTCTACTTCTGGTGGCCGAAGTTCACCGGGCGCATGCTCAACGAGCGCCTCGGCAAGATCCACTTCTGGATCCTGTTCGTCGGATTCCACATGACGTTCCTCGTCCAGCACTGGCTGGGCGTCGAGGGCATGGCCCGTCGGTACGCGGACTACCTGCCCGAGGAGGGCTTCACCTGGGAGAACCAGCTCTCGACGGTCGGTGCTTTCATCCTCGCCGCCTCGACGCTGCCGTTCCTGTGGAACGTGTACACCACGTGGCGGAACGCCCCCAAGGTGCAGGTCGACGACCCGTGGGGCTACGGCCGCTCGCTCGAGTGGGCGACGTCCTGCCCGCCGCCGCGGCACAACTTCACCTCGCTGCCGCGGATCCGCTCGGAGTCGCCGGCGTTCGACCTCCACCACCCGGAGGTCGCCGCGATGGAGGACCCTCACCTGAACGAGGGCGCCCTGGAGCGCGTCTACGGCGGAGCGGACCGCACCGGCCAGCACGAGATGGTCGAGGAGCTCAGCTGGAAGGACTACCCCGAGAAGCACCAGTCGAGCACGACCGTCCTCGACGCTGACCGCCCGGCCGAGGGCGAGGAGGACTCCAAGTGA	MATTETAYGAEVVPGLQPRRQTLGRTVVKWITSTDHKTIGYMYLITSFLWFAVGGILALLIRAELFEPGIQLVQSKEQYNQLFTMHGTIMLLLFATPLFAGFANVIMPLQIGAPDVAFPRLNMFAYWLFLFGGLIAAGGFFTPQGAASFGWFAYAPLSNTTFSPGLGGDLWVFGLALGGFGTILGAVNFITTIICMRAPGMTMFRMPIFTWNTLVTSLLVLMAFPPLASALFALGADRRFNAQVFNPDNGGAVLWQHLFWFFGHPEVYIIALPFFGIVSEIFPVFSRKPIFGYKGLVYATIAIAALSVTVWAHHMYVTGAVLLPFFAFMTMLIAIPTGVKFFNWIGTLWRGKITFETPMLWSIGFLVTFLFGGLTGIILSSPALDFHLSDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKFTGRMLNERLGKIHFWILFVGFHMTFLVQHWLGVEGMARRYADYLPEEGFTWENQLSTVGAFILAASTLPFLWNVYTTWRNAPKVQVDDPWGYGRSLEWATSCPPPRHNFTSLPRIRSESPAFDLHHPEVAAMEDPHLNEGALERVYGGADRTGQHEMVEELSWKDYPEKHQSSTTVLDADRPAEGEEDSK	PGPT0004025_452	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274	NA	NA
AK001_03422	924	ctaC	COG1622	Cytochrome c oxidase subunit 2	TTGCACTCGAAGAGCACCACCCGCACCCGGCGGAAGATGGCGCTGCGTGCGACGGCGCTCGCCGTCGCGGTCGCGGCGTTCGCCACCGGCTGCGCCAGCGACGCCGTCCAGCGCGGATACCTCCCGGGATACACCGACGGGGAGGTGACGAACCAGACCGAGCGGATCACCAACCTGTGGAACGGCTCGTGGGTCGCCGCGCTCGCCGTCGGCGTCATCACCTGGGGCCTCATGCTCTGGTGCGTCGCCGCCTACCGGAAGCGCCGCGGCGACGAGCGCCTGCCGGTCCAGACGCGGTACCACATGCCGCTCGAGATCATGTACACGATCGTGCCGACGCTCATGATCCTCGTGCTGTTCTTCTACACGAACCGCGACATGACGGCGATCCTCGACACCTCCGAGGAGCCCGACGTCAACATCCAGGTCATCGGCAAGCAGTGGAGCTGGGACTTCAACTATCTCGACGACGACGTCTACGAGACCGGCCAGCACCTGCTGGAGCCGGGTTCCGTGACGGAGGACGAGACGGTCAACGACGCTCCCGGGACCTCCGAGGACCTGCCGACGCTGTACCTGCCCGTCGGTGAGCGCGTCGAGTTCACCGTCGACTCCCGTGACGTCATCCACTCCTTCTGGATCCCGGCGTTCCTGTTCAAGATGGACATGATCCCGGGCAAGACGAACACGTTCCAGGTCGTCCCCGAGCGTGAAGGCACCTACGCCGGCAAGTGCGCCGAGCTCTGCGGCGAGTTCCACTCCGGCATGCTCTTCAACGTCGAGGTCGTCGACCGCGCCGAGTACGACGCACAGATGGAGGAGCTGCGCGCGCAGGGGCAGACCGGCGAGCTCGGTCTGGACCTGAACCGCCAGCAGCACTCCGAGTTCTCTACTGACGAGACGATCCCGGAGGTCGAGGGCTGA	MHSKSTTRTRRKMALRATALAVAVAAFATGCASDAVQRGYLPGYTDGEVTNQTERITNLWNGSWVAALAVGVITWGLMLWCVAAYRKRRGDERLPVQTRYHMPLEIMYTIVPTLMILVLFFYTNRDMTAILDTSEEPDVNIQVIGKQWSWDFNYLDDDVYETGQHLLEPGSVTEDETVNDAPGTSEDLPTLYLPVGERVEFTVDSRDVIHSFWIPAFLFKMDMIPGKTNTFQVVPEREGTYAGKCAELCGEFHSGMLFNVEVVDRAEYDAQMEELRAQGQTGELGLDLNRQQHSEFSTDETIPEVEG	PGPT0004030_2615	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275	NA	NA
AK001_03423	1158	nifS	COG1104	Cysteine desulfurase NifS	GTGACACATCCCACCTCGTCGACGCCGACCCGGACCCACCTGGACAACGGCGGCTCGGCACCCCTGCACCCCCTGGCCCGGCAGGCGCTGGTCCAGGCCCTCGACGAGGGCTGGGCGGACCCCCGGCGCCTGCACGCCGAGGGGCGGCGCGCGGCCGCGCTGCTCGACGGCGCGCGGGAGGCCGTGGCCGGCGTGCTGGGCGTGCGCACCGAGGAGGTCCGGTTCACCCCGTCGCACACGGCCTCGCTGCACTCCGCGGTGGCGCAGGTGGTCCGGGCCCGACGGCGGCACGGGCGCGGCGTCGTCGTCGGTGCGGCCGAGCGCGCGGCGATCCTGCACGCGGCCGACCACGTCGCGGGCCCCGGCGGACGCACCACGACCGGCGTCGACCGGCAGGGGCGCGTGGACGCCGACGAGCTCTCCCGGGCCGCCCGCACCGACGGCGTCGCCCTGGCGGCGCTGCAGCACGCCAACGGCGAGGTCGGCACGCACCAGCCCGTCGCGGCGGTGCACGCCGCGCTGGAGGGCTCGGGCGTGCCCCTGCTCGTGGACGCGGGCGCGTCGGTCGGGCACACGGAGCTGCCGACGGCGTGGGACCTGCTGGCGGCGGACCCGGCGGACTGGGGCGGGCCGCGGGGCGTGGGCGTCCTGGCGGTGCGGCACCGCACCCGGACGGTCCCCGACGGGCCCGAGGACCCGGATCCCTGGGCCCCCGGCGGCGTCAGCGTGCCCGCGGCGTTCGCCGCGGCCGTCTCCCTGCAGGCGGTCGCCCGGGACGTCGCCGCCGAGGACGTGCGCCGCCGCGCCCTGGTCGACCGGATCCGGTCCGCCGTCGCACAGATCCCGGACGTCGAGGTGGTGGGCGACCCGGTCGACCGGCTCCCCCACGTCGTGACGTTCTCGTTCCTCTACGTCGACGGCGAGGCGATGGTGACCGAGCTGGACCGAGCCGGGTTCGCCATCGGCTCCGGGTCGGCCTGCACGGCGAGCACCCTGGAGCCGTCGCACGTCCTGGCGGCGATGGGCGTCCTCACGCACGGCAACGTGCGCGTCGCCCTGGACCGGTCGACCACGGCCGAGGACGTCGACCGGTTCCTCGCCGTGCTGCCGGGCGCGGTCGCGCGCGTGCGCGACGCGCTGGGGGTGTCCGGGCTGTGA	MTHPTSSTPTRTHLDNGGSAPLHPLARQALVQALDEGWADPRRLHAEGRRAAALLDGAREAVAGVLGVRTEEVRFTPSHTASLHSAVAQVVRARRRHGRGVVVGAAERAAILHAADHVAGPGGRTTTGVDRQGRVDADELSRAARTDGVALAALQHANGEVGTHQPVAAVHAALEGSGVPLLVDAGASVGHTELPTAWDLLAADPADWGGPRGVGVLAVRHRTRTVPDGPEDPDPWAPGGVSVPAAFAAAVSLQAVARDVAAEDVRRRALVDRIRSAVAQIPDVEVVGDPVDRLPHVVTFSFLYVDGEAMVTELDRAGFAIGSGSACTASTLEPSHVLAAMGVLTHGNVRVALDRSTTAEDVDRFLAVLPGAVARVRDALGVSGL	PGPT0000065_4590	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487	NA	NA
AK001_03424	258	tusA		Sulfur carrier protein TusA	GTGAGCACCGTGCCGGAGGTCGTCGACGCGCGCGGGCTGCGCTGCCCGCTGCCCGTGGTGCGGCTGGCCGCCCGCGCGAAGGAGCTGGCCGCCGGCAGCGAGGTCACGGTGCTGGCGACCGACCCGGCCGCGCGGTACGACGTGCCGGCCTGGGCCCGGCTGCGGGGCCACGTGATGGTGTCCGAGGAGCACCACCCCGAGAACGACGAAGCGGACGGCGGGCCCTGGTGGGCCCTGACCGTCCGCCTCGAGGACTAG	MSTVPEVVDARGLRCPLPVVRLAARAKELAAGSEVTVLATDPAARYDVPAWARLRGHVMVSEEHHPENDEADGGPWWALTVRLED				NA	NA	NA	NA	NA
AK001_03425	351			Protein	ATGACCGACACCACCGAGATCGCCACGCACGGCGTCGAGCTCTCCGAGGTCGCCGCGAACAAGGTCCGCAGCCTCCTCGATCAGGAGGGGCGTGACGACCTGCGCCTGCGCGTCGCCGTCCAGCCCGGCGGCTGCTCCGGCCTCATCTACCAGCTGTACTTCGACGAGCGACTGCTCGACGGGGACGCGCTGCGCGACTACGACGGCGTCGAGGTCGTCGTGGACCGCATGAGCGTGCCCTACCTCGACGGCGCGAAGATCGACTTCGCCGACACGATCGAGAAGCAGGGCTTCACGATCGACAACCCGAACGCCGGCGAGTCCTGCGCCTGCGGCGGCTCCTTCGGCTGA	MTDTTEIATHGVELSEVAANKVRSLLDQEGRDDLRLRVAVQPGGCSGLIYQLYFDERLLDGDALRDYDGVEVVVDRMSVPYLDGAKIDFADTIEKQGFTIDNPNAGESCACGGSFG				NA	NA	NA	NA	NA
AK001_03426	531			hypothetical protein	GTGCACGTACTGCTGCTGGCCACCGCCGACGGTGGACCGGACGACCCCGACCGCACCGCCGCGACGGCGCTGGCCGCCGCCTGGACCGCCGCCGCTCCCCGCTGCGTCGTCGAACCCATGGTGCTGCCGCCCGGCCCCGCGGCGTCGACCGGCCCGCCCGACGGGTCGCCGTCGCCCGGCGTGTTCGTCCCCACGACCGAGCTCGGGCTGTCCAGCGTCGCCCCGCCCGCCCCGCGGCCGGAGGTGCGGCTGCTGCACGAGCGCGTCGCGGAGGCCGACCTCGTCGTCGTGCACACGCCCGTCCTGGACGGCGCCGCGCTGCACGCCGGACCGGTGCACTCCGCTGCGCAGGCCGCCGCGCCCCACGCCGTGCCCGTCGTCGTGCTGGCCGGACGCAGCGAGGCCACCCGCCGCGAGCTCGCCGGAGCAGGGGTCGCCGGGGCGCACGAGGTCGGTCCCGTGCCCGGCGAGGACGCCGTCGCCCGCGTCGCGCGGACCTGGTCGCCCGCGTGGGCCGCCGACGACGAGTGA	MHVLLLATADGGPDDPDRTAATALAAAWTAAAPRCVVEPMVLPPGPAASTGPPDGSPSPGVFVPTTELGLSSVAPPAPRPEVRLLHERVAEADLVVVHTPVLDGAALHAGPVHSAAQAAAPHAVPVVVLAGRSEATRRELAGAGVAGAHEVGPVPGEDAVARVARTWSPAWAADDE				NA	NA	NA	NA	NA
AK001_03427	1203	nadA		Quinolinate synthase A	GTGACTGTGCTGAACGAGACGTCGAACTTCGTCGAGCCGGCGCCCTCGGCGCTGCTGCTGCTCGGTCAGGGCCGCGACCTCGCCTCCGAGCGCGGGGTGGAGTGCACCGGCGCGCTGCCGGCGCCGTCGGACCCCGACCTGGTGGACCGCGCCCGCGCCGCCCGCGCGGCGCTGGGTGAGCGCGCCTTCGTGCTGGGCCACCACTACCAGCGTGACGAGGTGATCGACTTCGCCGACGTCACCGGTGACTCCTTCAAGCTCGCCCAGCGGGCGGCGGCCCGCCCCGAGGCCGAGTTCGTCCTCTTCTGCGGCGTGCACTTCATGGCCGAGTCGGCCGACATCCTCACCGCGGACTCCCAGCAGGTCGTGCTGCCGGACATGGCGGCCGGCTGCTCGATGGCGGACATGGCCGAGATCTCCCAGGTCGAGGAGGCCTGGGACGTGCTGGCCGACGCCGGGGTCGCGGGTGACACCGTGCCGGTGACCTACATGAACTCCTCGGCGGCGATCAAGGCGTTCACCGGCCGCCACGGCGGCACCGTGTGCACGTCGTCGAACGCCCAGGTGGCCCTGCGCTGGGCCTTCGACCAGGTCGGCGGCGTCGACGGCACGGGCAAGGTGCTGTTCATGCCGGACCAGCACCTGGGCCGCAACACCGCGGTGAACCAGCTCGGCCTGTCCCTCGACGACTGCGTCGTGTTCGACCCGCGCAAGCCGAACGGCGGCCTGACCGACGCCGAGCTGCGCGACGCCCGGATGATCCTGTGGCGCGGGCACTGCTCGGTGCACGGACGGTTCTCGGTGCAGAACGTCGAGGCGATCCGCGCCACGGCGCCGGACGTCAACGTCATGGTCCACCCGGAGTGCCGCCACGAGGTCGTCGCGGCGGCGGACCGGGTCGGCTCGACGGAGTACATCATCAAGGCCCTCGACGCCGCCGAGCCCGGCTCGACCTGGGCGATCGGCACCGAGCTGAACCTCGTGCGCCGGCTCGCGGCCGCGCACCCGGACAAGCAGGTGCACTACCTGGACTCGACGGTGTGCTTCTGCTCCACGATGAACCGGATCGACCTGCCGCACCTGGTGTGGGCGATGGAGTCGCTCGCCGAGGGACGCGTGGTCAACCGGATCGTCGTCGACGCCGACGACGCCCACTGGGCCCGCGTGGCCCTCGACCAGATGTTGGCGCTGCCGGGGATCTGA	MTVLNETSNFVEPAPSALLLLGQGRDLASERGVECTGALPAPSDPDLVDRARAARAALGERAFVLGHHYQRDEVIDFADVTGDSFKLAQRAAARPEAEFVLFCGVHFMAESADILTADSQQVVLPDMAAGCSMADMAEISQVEEAWDVLADAGVAGDTVPVTYMNSSAAIKAFTGRHGGTVCTSSNAQVALRWAFDQVGGVDGTGKVLFMPDQHLGRNTAVNQLGLSLDDCVVFDPRKPNGGLTDAELRDARMILWRGHCSVHGRFSVQNVEAIRATAPDVNVMVHPECRHEVVAAADRVGSTEYIIKALDAAEPGSTWAIGTELNLVRRLAAAHPDKQVHYLDSTVCFCSTMNRIDLPHLVWAMESLAEGRVVNRIVVDADDAHWARVALDQMLALPGI	PGPT0013365_341	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517	NA	NA
AK001_03428	591	inhA_2		Isonitrile hydratase	GTGAGTACCGACGGCGGGCTGCACATCGGGATCTTCCTGTTCGACGACGCCGAGGAGCTCGACGTCGTGGGTCCCTTCGAGGTCCTGGCGGCGTGGGAGGAGCACTCCGCGCTCAAGCCGCACGTGAGCACCTTCTCGCGCGACGGCGACGGCGTGCGCCTCGCCAAGGGGATGCGGCTGGTGCCGGCCCGGTCGGCGGACGACGTCGGCCCCCTGCACGTGCTGGTGCACCCCGGCGGGTGGGGCACCCGGGCCCTCGTCGGCGACCACGGGCACCTCGAGTGGCTGCGCCAGGTCCACGCCCAGACCGCGGTCGTGGCGAGCGTGTGCACCGGGGCGCTCGTGCTCGCCGCCGCGGGGCTGCTGGCGGGACGTCCGTCGACCACCCACCGCCACCACTACGACGAGCTGGCGCAGATCGACCCCTCGACGGTCATCGACACCGAGGCGCGGTTCGTCGACGACGGCGACGTCGTTACCTCCGCCGGCGTGACGGCGGGGATCGACATGGCGCTGCACCTGGTCGAGCGCCTGGAGTCGGCCGAGGTCGCCGACGCGGTGCGCGGCGCCCTGCAGTACGGGGATACCTGA	MSTDGGLHIGIFLFDDAEELDVVGPFEVLAAWEEHSALKPHVSTFSRDGDGVRLAKGMRLVPARSADDVGPLHVLVHPGGWGTRALVGDHGHLEWLRQVHAQTAVVASVCTGALVLAAAGLLAGRPSTTHRHHYDELAQIDPSTVIDTEARFVDDGDVVTSAGVTAGIDMALHLVERLESAEVADAVRGALQYGDT				NA	NA	NA	NA	NA
AK001_03429	546			hypothetical protein	ATGACCCGGATGCTCCAGCTCGCCCAGGCCACGCTCCTGCCCCGCCGCCCGCGCCCCGGCATGGCACCCCTGGACACCTCGACCACGGTGCTGCGCGTCCACCCGGGCGACCTGGACCTGTACCTCCACGTCAACAACGGCTCGTACCTGCAGATGATGGACGTGGCCCGGTCCAACCTCCTCGCCGACCTCGGCGGCCTCGCCCGGCTCAAGGCGCACGGCTGGTACCCCGTCGTGGCGGCCTCCACGATGACGTACAAGCGGTCGCTGCAGCTCTTCGACCGGGTGACGATCGCGACGCGGGTCGTCGGCTGGGACCAGCGGGTCGTCTACCTCGAGCAGGTCTTCACGCGGCGCGACGGCGAGTTCTGCGCGCGCGGCTGGGTCGCGGGCCGGTTCCTCGGCCGCGACGGGGTCCGCGTGGCTCCGCAGGAGGTCGTGGCCCTGCTCGCCGACGCCGAGCTCGAGAGCCCCGAGCTGCCGGCCGACCTGGCCGCCTGGGCCCGCTCGGTCGACGTCGCGCACCGCGACGTCGACCGAGCCTGA	MTRMLQLAQATLLPRRPRPGMAPLDTSTTVLRVHPGDLDLYLHVNNGSYLQMMDVARSNLLADLGGLARLKAHGWYPVVAASTMTYKRSLQLFDRVTIATRVVGWDQRVVYLEQVFTRRDGEFCARGWVAGRFLGRDGVRVAPQEVVALLADAELESPELPADLAAWARSVDVAHRDVDRA				NA	NA	NA	NA	NA
AK001_03430	1389	dapE_4		Succinyl-diaminopimelate desuccinylase	GTGGGCGCCGTGACTCACACCGATGCGGACGTCGCCGCCCTGCGCGCGCACGTCGACCAGTTGTTCCCCGCCGTCCAGGCCGACCTCGAGTCCCTCGTACGCATCCCGAGCGTCTCGGCGAGCGCCTTCGACCCGTCGCACGTCGTGGCCAGCGCCGAGGCCGTGGCCGCGCTGCTGCGCGACGTCGGGCTGCCCGAGGTCCAGATCCTGCGCTCCGAGCGGCCCGACGGCACTCCCGGCGCGCCCGCCGTCGTCGCCCGGCGACCCGCCCCGGCCGGGGCGCCGACCGTGCTGCTCTACGCCCACCACGACGTCCAGCCGCCCGGGGACGCCGCCACCTGGGACACCGAGCCCTTCGAGCCCGTCCAGTGCGGCGAGCGGCTCTTCGGACGCGGCGCGGCCGACGACAAGGCCGGGGTCATGGCGCACGTCGGTGCGCTGCGGGCCTTGGCCGCGCTGGGCGAGGAGCCCGGCGTCGGCGTGACCGTGTTCGTCGAGGGCGAGGAGGAGGCCGGCTCGCCCAGCTTCTCGCGCTTCCTCGCCGACCACCACGCGCTGCTCTCCGCCGACGTCATCGTGGTGGCCGACTCCACCAACTGGAAGGTCGGCGTCCCGGCGCTCACGACGTCGCTGCGCGGCCTCGTCGACGGCGTGGTCGGCGTCGAGGTGCTCGACCACGCCGTGCACTCCGGCATGTTCGGCGGGCCGGTGCTGGACGCCAACCTGCTGCTGGCGCGCCTGCTCACCACGCTCCACGACGACGCGGGCACCGTGGCCGTCGAGGGCCTGACCAGTGCCGGCGAGCCGGAGGTGGACTACGCGGAGGCCGACTTCCGCGCCGACTCCTCGGTGCTCGACGGCGTGCGGCTGGCCGGCGAGGGCACGATCGCGGGCCGGCTGTGGACCAAGCCCGCGATCTCGGTGATCGGCGTGGACGCTACCGACGTCGCCCACGCGTCGAACACGCTGGCGCCGCGGGCGGCGGCCAAGCTGTCGGTGCGGATCCCGCCGGGTCTGGACCCCCAGGCCGCCGAGGACGCGCTGCGCGCGCACCTGACGGCGCACGCCCCGTTCGGGGCCCGGGTGACGTGGACGCCGGGGGAGCAGGGCAAGGCCTTCGGGGCGCCGGACGACTCCGCGGCCATGCGGGCCGCGCGCTCGGCGTTCGCCGCGGCGTGGGGCACCGACCCGGTCGACATCGGCGTCGGCGGCTCGATCCCGTTCATCGCCGACCTGCTCGAGGCCTTCCCGGAGGCGGCCGTGCTCGTCACCGGCGTGGAGGACCCGGACTCGCGCGCCCACGGCGCGAACGAGTCGGTGCACCTCGGTGAGCTGCGCAAGGTCCTGGTGGCCGAGGCGCTGCTCCTGCGGGGACTCGGCGGACGCTGA	MGAVTHTDADVAALRAHVDQLFPAVQADLESLVRIPSVSASAFDPSHVVASAEAVAALLRDVGLPEVQILRSERPDGTPGAPAVVARRPAPAGAPTVLLYAHHDVQPPGDAATWDTEPFEPVQCGERLFGRGAADDKAGVMAHVGALRALAALGEEPGVGVTVFVEGEEEAGSPSFSRFLADHHALLSADVIVVADSTNWKVGVPALTTSLRGLVDGVVGVEVLDHAVHSGMFGGPVLDANLLLARLLTTLHDDAGTVAVEGLTSAGEPEVDYAEADFRADSSVLDGVRLAGEGTIAGRLWTKPAISVIGVDATDVAHASNTLAPRAAAKLSVRIPPGLDPQAAEDALRAHLTAHAPFGARVTWTPGEQGKAFGAPDDSAAMRAARSAFAAAWGTDPVDIGVGGSIPFIADLLEAFPEAAVLVTGVEDPDSRAHGANESVHLGELRKVLVAEALLLRGLGGR				NA	NA	NA	NA	NA
AK001_03431	681			putative protein	GTGTTCTCCCGCAAGCGTGATCTCGCCGATTCTCCCGCGACGTCCCCCGCAGCGGGGCAGTCCGCCTCGTCCGCCGACGTCGCGGCGACGTCCTCCGCCGCCGACTCCACCGACACGCCCTCGTCCGGGGCGCCGTCGAAGGGCCGCCCGACGCCGAAGCGCAGCGAGTCCCAGGCGAAGAACAAGCGCCCGCTGGTCCCGAACGACCGCAAGGCCGCCCGCAAGGCGTCCAAGGAGAAGGTGCGCGCGGAGCGCAACCGCGAGTACCAGGCGATGCAGACCGGTGACGAGCGGTTCATGCCGGCGCGCGACAAGGGCCCCGTCCGCCGCTACGTGCGCGACTACGTCGACGCCCGCTGGAACGTCGGCGAGTTCTTCCTGCCGGTGGCGTTCGTCTTCATCTTCATGAACCTGATCTTCCTGCAGAACCCGACGATGGCGACGCTGGTGCTGCTCGCGCTGTACGCGGTGGTGTTCATCACGCTGATCGACGTCGTCGTCATGTGGCAGCGTCTCAAGCGCCGGCTGCGCGACAAGTTCGGCACGCTCGGCACGGACGGGAAGAAGGAATACTACGTCCCGCGCGGCACGATGATGTACGCGGCGATGCGTGCACTGCAGATCCGTCGGTCCCGGCTGCCGAAGCCGATGCACAAGAAGCACGGTCACTGGCCCGAGTGA	MFSRKRDLADSPATSPAAGQSASSADVAATSSAADSTDTPSSGAPSKGRPTPKRSESQAKNKRPLVPNDRKAARKASKEKVRAERNREYQAMQTGDERFMPARDKGPVRRYVRDYVDARWNVGEFFLPVAFVFIFMNLIFLQNPTMATLVLLALYAVVFITLIDVVVMWQRLKRRLRDKFGTLGTDGKKEYYVPRGTMMYAAMRALQIRRSRLPKPMHKKHGHWPE				NA	NA	NA	NA	NA
AK001_03432	1014	gpr_3	COG0667	L-glyceraldehyde 3-phosphate reductase	ATGGTCAACTACCGGTACCTCGGCAACAGTGGTCTCAAGATCTCCGAGATCACCTACGGCAACTGGCTCACCCACGGCTCCCAGGTCGAGAACGACGTCGCCACGCAGTGCGTGCGCGCCGCCCTCGACGCGGGCATCACGTCCTTCGACACCGCGGACGTCTACGCGAACACCAAGGCGGAGCAGGTCCTCGGCGACGCGCTGAAGGGCGAGCGCCGCGAGTCGCTGGAGATCTTCACCAAGGTCTACTGGCCCACGGGCCCGGGCGGCCCCAACGACACCGGCCTGTCGCGCAAGCACGTCATGGAGTCGATCAACGGCTCGCTGCGTCGCCTCGGCACCGACTACGTCGACCTGTACCAGGCGCACCGGTACGACACCGAGACGCCGCTCGAGGAGACGATGCAGGCCTTCGCCGACATCGTGCGCCAGGGCAAGGCGCTCTACATCGGCGTCTCGGAGTGGTCGGCCGACCAGATCCGTGCCGGCGCCGCGCTGGCCAAGGACCTCGGCTTCCAGCTCATCAGCTCCCAGCCGCAGTACTCGATGCTGTGGCGGGTCATCGAGGACGAGGTCGTCCCGGCCTCCCGCGAGAACGGCCTGTCCCAGATCGTCTGGTCCCCCGTCGCCCAGGGCGTGCTCACCGGCAAGTACGTGCCCGGCCAGCCGCTGCCGTCCGGGTCCCGCGCCACGGACGACAAGGGCGGGGCCAAGATGATCCAGCGGTTCATGAACGACGACGTCCTGGGCCGCGTGCAGCAGCTCAAGCCGGTCGCGGACGAGCTCGGCCTGACGATGGCCCAGCTCGCCGTGGCGTGGGTGCTGCAGAACGACAACGTCGCGGCAGCGATCGTGGGCGCGTCGCGTCCGGAGCAGGTGGCCGAGAACGTCAAGGCCTCCGGCGTCGAGATCCCCGCGGCGCTCATGTCGCAGATCGACGAGGCCCTCGGCGACGTGGTCGAGCGCGACCCCGCCAAGACCCTCGAGGGGGCACCGCAGACGCGCGTCGTCTGA	MVNYRYLGNSGLKISEITYGNWLTHGSQVENDVATQCVRAALDAGITSFDTADVYANTKAEQVLGDALKGERRESLEIFTKVYWPTGPGGPNDTGLSRKHVMESINGSLRRLGTDYVDLYQAHRYDTETPLEETMQAFADIVRQGKALYIGVSEWSADQIRAGAALAKDLGFQLISSQPQYSMLWRVIEDEVVPASRENGLSQIVWSPVAQGVLTGKYVPGQPLPSGSRATDDKGGAKMIQRFMNDDVLGRVQQLKPVADELGLTMAQLAVAWVLQNDNVAAAIVGASRPEQVAENVKASGVEIPAALMSQIDEALGDVVERDPAKTLEGAPQTRVV	PGPT0010570_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	TUMORICIDAL_COMPOUNDS	TUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967	NA	NA
AK001_03436	1335	msmE	COG1653	Multiple sugar-binding protein	ATGTCTGCGCACACACATCGAGCAGGTCCGGTCGCACTGGCCGGGCTGGCGGCCACGGGTCTCGTGCTGGCCGGCTGCGCCGGAGACGGGGACTCGAGCGACGCCGAGGCGTCGGCCGAGGGCCCGGTGACGCTGGAGTGGTTCCAGGGATCGGGCGTCGAGACCAACATCGCGACCGCCGAGGCGCTCGCTGACACGTTCAACGCATCGCAGTCGGACATCGTCGTCGAGGTCGACGCGTCGGGGCCCAGCGACTCCGCCGAGCTGGACAACCTCATGAAGACCCGCCTGGCGACCGGCGAGATGCCCGACATGTTCTGGTACAACAGCGGGTCCTTGCTGCAGGCGCTGAACCCCGACCAGACGATGCTCGACATCTCCGACGAGGGCTTCGTCGGCGACCTGGACGACTCGTGGGTCTCGGCCGTGTCGACGGACGAGGGCATCTTCGGCGTCCCGGTCCAGACGGCCGGCGGCGGCGGGATGTTCTACAGCATCCCGATCTACGAGGAGCTGGGGCTGGAGGTGCCGACCACCTGGGACGAGTTCCTGGAGAACTCCGACGCCATCCGGGACGCCGGCTACACGGCCGTCCAGCAGACGCACGGCGACGCCTGGACCGCCCAGATCATCGTCCTCGCCGACTACTACAACGTGTGGGCGAACGACAACGACTGGGCGTCGAAGTACACCGCCAACGAGGTGAACTTCGCCGACGACCCGGTCGCGGTCAAGGGCTTCACGAAGCTCCAGGACGTCTACGAGCGCGACTACCTGAACGAGGACTACGCGTCGGCCCTGCTGAACGACGGGCTCGAGGCCGTCGCGACCGGCGAGGCCGGGCACTACCCGATGCTCGGGTTCGCGCAGGCGACGATCGCCACCAACTGGCCCGACCAGGCCGAGGACGTCGGCTTCTTCGGCGTCCCGGGCGAGGCCGACACGGAGCCCGGCACGACGATCTGGATGCCGCCCGCGCTCTACGCGCCGGCCGACACCGAGCACCCGGACGCCGTCAAGGAGTTCATGGCCTTCGTCGCCAGCCCGGCGGGTTGCGACGCGGTCACCGAGGCGCTCGGCGCGACCGGTCAGTACCTGGTCGACGGGTGCACCGTGCCGGACGAGGCCCCGCGGATCGTGGCGGACTTCGGTCCGTACTTCGAGTCCGGCAACGTCGCGCCCGCGCTGGAGTTCCTCTCGCCCGTCAAGGGTCCGAACCTCATGCAGATCTCCGTCGAGGTGGGCTCGGGAGTCCGTGACGGCCAGAGCGGCGCCGAGCTGTACGACGCGGACGCCGCCAAGCAGGCGCAGCAGCTCGGCCTTCCGGGCTGGTAA	MSAHTHRAGPVALAGLAATGLVLAGCAGDGDSSDAEASAEGPVTLEWFQGSGVETNIATAEALADTFNASQSDIVVEVDASGPSDSAELDNLMKTRLATGEMPDMFWYNSGSLLQALNPDQTMLDISDEGFVGDLDDSWVSAVSTDEGIFGVPVQTAGGGGMFYSIPIYEELGLEVPTTWDEFLENSDAIRDAGYTAVQQTHGDAWTAQIIVLADYYNVWANDNDWASKYTANEVNFADDPVAVKGFTKLQDVYERDYLNEDYASALLNDGLEAVATGEAGHYPMLGFAQATIATNWPDQAEDVGFFGVPGEADTEPGTTIWMPPALYAPADTEHPDAVKEFMAFVASPAGCDAVTEALGATGQYLVDGCTVPDEAPRIVADFGPYFESGNVAPALEFLSPVKGPNLMQISVEVGSGVRDGQSGAELYDADAAKQAQQLGLPGW	PGPT0016330_1403	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117	NA	NA
AK001_03437	1071			IS110 family transposase ISBli6	GTGAACACCAGCGAGCAGCACAGGTCCGGACATGTCGTCGTCGGGGTCGACACGCACAAGCACGTGCACGTCGCCGCGGTCATGGACACGATCGGCGGGATCGCCGCCACGCTCACGATCCCGACGGACACCGGCGGGTTCCAGCAACTGCTGGACTGGGCGACCTCGCACGGGCGGATCCTGGCCTTCGGGATCGAGGGCACCGGCTCATACGGTTCAACCCTGGCCTCGTTCCTGCGCCGGGCCGGGCACAAGGTCGTCGAGGCCGGACGCCCGGACCGACGCCTGCGGCGGATGAATGGCAAGTCGGACACCCTGGACGCGGAGAACGCCGCCCGCGCGGTCCTGGCCGGGTTCGCGACCGCGACGCCCAAGAGCGCCGACGGTGAGGCCGAGATGATCCGTCAGCTCAAGGTCGCCCACGACCAGGCCGTCGAACAGCGCTCGGCCGCGATGGTCACGATCAAAGCGATGCTCGTCCACGGCAGCGACTCGCTGCGTCGTGAGACCGCGGGCAAGAGCCAGATCGCCCTCGCCCGGCACCTGGCCGCGCTGCGCCCCCGCGAGCTGCAGGACCCCGACGACTCGCTGCGGCACGCGCTGCGCGCGCTGGCCAAGCGGTGGCAGTACCTGAACACCGAAGCCGCCGAGCTGACGAAGATGATCGCCGAGCTCGTCAACCGGGCCGCGCCGCAGTTGCTCGAGCCGTTCGGCATCGGCGTGGACACCGCCGCCGAGATCCTCGTCGTTGCCGGCGACAACCCCGAGCGCATCAGGTCCGAGGCTGCCCTGGCCAAACTCGCCGGCATCGCGCCGGTCCCCACGGGCTCCGGGATGACAGCGGGCCGGCACCGCATCAACCACGGGGGACACCGCCAGCTCAACGCCGCGATCTACCGCACCGTCATCGTCCGCATGCGCTTCCATCAACCGACGATCGACTACGTTGCCCGCCGCACCGCCGAGGGCAAGACCAAACGAGAGATCATCCGCTGCCTCAAGCGATACGTCATCCGCGAGGTCTACCACCTGCTCCGGCCAGCCCCGCGAGCGGCCATAGCGACGAGTTGA	MNTSEQHRSGHVVVGVDTHKHVHVAAVMDTIGGIAATLTIPTDTGGFQQLLDWATSHGRILAFGIEGTGSYGSTLASFLRRAGHKVVEAGRPDRRLRRMNGKSDTLDAENAARAVLAGFATATPKSADGEAEMIRQLKVAHDQAVEQRSAAMVTIKAMLVHGSDSLRRETAGKSQIALARHLAALRPRELQDPDDSLRHALRALAKRWQYLNTEAAELTKMIAELVNRAAPQLLEPFGIGVDTAAEILVVAGDNPERIRSEAALAKLAGIAPVPTGSGMTAGRHRINHGGHRQLNAAIYRTVIVRMRFHQPTIDYVARRTAEGKTKREIIRCLKRYVIREVYHLLRPAPRAAIATS	PGPT0030635_2294	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486	NA	NA
AK001_03438	246			hypothetical protein	ATGGCGGAGGCGTTCAACTCGCTGTTCAAGGCCGAATGCATCCGCAACCCGGTCATGCGCCCGCACGGCGGCTGGAAGACCATCACGGACGTTGAGATCGCCGTGGCCGAGTACGTCGACTGGTTCAACCACCGACGCCTGCACGGCGAGATCGGACTCGTACCACCGGCCGAGCTCGAGCAGCAACACTGGGAGCACCACTACGCTCCAGACAACCCGGCCGAACTCACGGCCGGAGCCAGATAA	MAEAFNSLFKAECIRNPVMRPHGGWKTITDVEIAVAEYVDWFNHRRLHGEIGLVPPAELEQQHWEHHYAPDNPAELTAGAR				NA	NA	NA	NA	NA
AK001_03439	126			hypothetical protein	GTGACGAAGTCCGAGTCGGCCGAGCTGCGCGAGGCCAGGAAGCGTGTGCGGCTGTTGGAGCAGGAGAACGAGGTGCTGCGCCGCGCGGCGGCGTACTTCGCCCAGGCGCACCTGCCGGGAAAATGA	MTKSESAELREARKRVRLLEQENEVLRRAAAYFAQAHLPGK				NA	NA	NA	NA	NA
AK001_03440	102			hypothetical protein	ATGCAGCCGGCCACCGTGCGGCCCTCGACGGCCCTCCTGGCCACGGCGTTCTCGAGCGCGGCGACGGCCAGGGAGGACTTCATGCGGTCGCTGATGGAGTAG	MQPATVRPSTALLATAFSSAATAREDFMRSLME				NA	NA	NA	NA	NA
AK001_03441	222			IS3 family transposase ISPfr13	ATGGAGACGATCAACGGTCTGTTCAAGACCGAGTGCATCCGCACCACCGTCTTCCATCCCGGCCCCTACCGCACCCTCGCCGACGTCGAGTACGCGACCGCAGGATGGGTCGATTGGTACAACAACCGCCGTCTCCACGGCTCTCTCGGGATGCTCACCCCGATAGAGTTCGAGACGCTCCACTACGCGGCCCTCACCCGAGAGCCCGAACCCGCAAAGTAG	METINGLFKTECIRTTVFHPGPYRTLADVEYATAGWVDWYNNRRLHGSLGMLTPIEFETLHYAALTREPEPAK				NA	NA	NA	NA	NA
AK001_03442	291			hypothetical protein	ATGGAGTCACCCAAGATCGTGGTCCAGGTCAAGTCGGGCGCCCAGGTGTCCGACAACGTCGTGCGAGACCTGAGTGGCGTGGTGCACGAGCAGGATGCCGATCATGGCCTTCTCGTCGCCTGGGGTGGGCTCACCAAGCCCGCGCGTGACTCCGTCTACAAGCAGCAGTTCAGAATCCGCGCCTGGACGGCGGACGAGGTCGTCGACGCCGCCATGCGTGTGTACGACCGACTCCCGGACGACGTCCAGACGCGACTACCGCTACAGCGGGTCTGGATGCTCGTGGAGTAG	MESPKIVVQVKSGAQVSDNVVRDLSGVVHEQDADHGLLVAWGGLTKPARDSVYKQQFRIRAWTADEVVDAAMRVYDRLPDDVQTRLPLQRVWMLVE	PGPT0027250_330	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027250-mrr-K07448	NA	NA
AK001_03443	783	nagB_3	COG0363	Glucosamine-6-phosphate deaminase	ATGGAGGTCGTCATCGCTCCCGAGCGGGAGCTGGCGGCGCTGGCCGCCGACGCGATCGAGTCGTTGCTGCGTCGTCGTCCCCGGACCGTGCTGGGGCTGGCCACGGGCTCGAGCCCGCTGAAGGTCTACGACGAGCTGGCTCGCCGTCACGCCGAGGAGGGGCTGTCCTTCGCCGAGGCGCGGGGGTTCATGCTCGACGAGTACGTGGGTCTGGCCGCCGATCACCCGGAGCGGTACCGCAACGTCATCGCGACCGAGATCGCCGAGCGGGTGGACTGGCCCGCCGACCAGGTCCGGGGCCCGGACGGGCTGGCGTCGGACCTGCCGGCGGCGTGCGCGGCCTACGAGGAGTCGATCCGGGCGGCCGGGGGAGTGGACCTGCAGCTGCTGGGGATCGGGACCGACGGGCACATCGCGTTCAACGAGCCGGGGTCGTCGTTGGCCTCGCGCACGCGGATCAAGACGCTGACGCGTCAGACGCGGGTGGACAACGCCCGGTTCTTCGACGGTGACGTCGAGCGGGTGCCCACGCACTGTCTGACTCAGGGTCTCGGCACGATCATGGAGGCTCGTCACCTGGTGCTGCTGGCCACGGGCAAGCACAAGGCCGAGGCGGTGCACCAGCTCGTCGAGGGCCCGGTCTCGGCGCTGTGGCCGGCGACGGTGATGCAGTTACACCCGCACGCCACGGTGCTGGTGGACGAGGCGGCCGCCTCGCGTCTGCAGCTGGCCGACTACTACCGCCAGACGTACGCCTCCAAGCCGGACTGGCAGGGCCTCTGA	MEVVIAPERELAALAADAIESLLRRRPRTVLGLATGSSPLKVYDELARRHAEEGLSFAEARGFMLDEYVGLAADHPERYRNVIATEIAERVDWPADQVRGPDGLASDLPAACAAYEESIRAAGGVDLQLLGIGTDGHIAFNEPGSSLASRTRIKTLTRQTRVDNARFFDGDVERVPTHCLTQGLGTIMEARHLVLLATGKHKAEAVHQLVEGPVSALWPATVMQLHPHATVLVDEAAASRLQLADYYRQTYASKPDWQGL	PGPT0018865_1734	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564	NA	NA
